Merge branches 'timers/clocksource', 'timers/hrtimers', 'timers/nohz', 'timers/ntp', 'timers/posixtimers' and 'timers/debug' into v28-timers-for-linus
diff --git a/Documentation/ABI/stable/sysfs-driver-usb-usbtmc b/Documentation/ABI/stable/sysfs-driver-usb-usbtmc
new file mode 100644
index 0000000..9a75fb2
--- /dev/null
+++ b/Documentation/ABI/stable/sysfs-driver-usb-usbtmc
@@ -0,0 +1,62 @@
+What:		/sys/bus/usb/drivers/usbtmc/devices/*/interface_capabilities
+What:		/sys/bus/usb/drivers/usbtmc/devices/*/device_capabilities
+Date:		August 2008
+Contact:	Greg Kroah-Hartman <gregkh@suse.de>
+Description:
+		These files show the various USB TMC capabilities as described
+		by the device itself.  The full description of the bitfields
+		can be found in the USB TMC documents from the USB-IF entitled
+		"Universal Serial Bus Test and Measurement Class Specification
+		(USBTMC) Revision 1.0" section 4.2.1.8.
+
+		The files are read only.
+
+
+What:		/sys/bus/usb/drivers/usbtmc/devices/*/usb488_interface_capabilities
+What:		/sys/bus/usb/drivers/usbtmc/devices/*/usb488_device_capabilities
+Date:		August 2008
+Contact:	Greg Kroah-Hartman <gregkh@suse.de>
+Description:
+		These files show the various USB TMC capabilities as described
+		by the device itself.  The full description of the bitfields
+		can be found in the USB TMC documents from the USB-IF entitled
+		"Universal Serial Bus Test and Measurement Class, Subclass
+		USB488 Specification (USBTMC-USB488) Revision 1.0" section
+		4.2.2.
+
+		The files are read only.
+
+
+What:		/sys/bus/usb/drivers/usbtmc/devices/*/TermChar
+Date:		August 2008
+Contact:	Greg Kroah-Hartman <gregkh@suse.de>
+Description:
+		This file is the TermChar value to be sent to the USB TMC
+		device as described by the document, "Universal Serial Bus Test
+		and Measurement Class Specification
+		(USBTMC) Revision 1.0" as published by the USB-IF.
+
+		Note that the TermCharEnabled file determines if this value is
+		sent to the device or not.
+
+
+What:		/sys/bus/usb/drivers/usbtmc/devices/*/TermCharEnabled
+Date:		August 2008
+Contact:	Greg Kroah-Hartman <gregkh@suse.de>
+Description:
+		This file determines if the TermChar is to be sent to the
+		device on every transaction or not.  For more details about
+		this, please see the document, "Universal Serial Bus Test and
+		Measurement Class Specification (USBTMC) Revision 1.0" as
+		published by the USB-IF.
+
+
+What:		/sys/bus/usb/drivers/usbtmc/devices/*/auto_abort
+Date:		August 2008
+Contact:	Greg Kroah-Hartman <gregkh@suse.de>
+Description:
+		This file determines if the the transaction of the USB TMC
+		device is to be automatically aborted if there is any error.
+		For more details about this, please see the document,
+		"Universal Serial Bus Test and Measurement Class Specification
+		(USBTMC) Revision 1.0" as published by the USB-IF.
diff --git a/Documentation/ABI/testing/sysfs-bus-usb b/Documentation/ABI/testing/sysfs-bus-usb
index 11a3c16..df6c8a0 100644
--- a/Documentation/ABI/testing/sysfs-bus-usb
+++ b/Documentation/ABI/testing/sysfs-bus-usb
@@ -85,3 +85,19 @@
 Users:
 		PowerTOP <power@bughost.org>
 		http://www.lesswatts.org/projects/powertop/
+
+What:		/sys/bus/usb/device/<busnum>-<devnum>...:<config num>-<interface num>/supports_autosuspend
+Date:		January 2008
+KernelVersion:	2.6.27
+Contact:	Sarah Sharp <sarah.a.sharp@intel.com>
+Description:
+		When read, this file returns 1 if the interface driver
+		for this interface supports autosuspend.  It also
+		returns 1 if no driver has claimed this interface, as an
+		unclaimed interface will not stop the device from being
+		autosuspended if all other interface drivers are idle.
+		The file returns 0 if autosuspend support has not been
+		added to the driver.
+Users:
+		USB PM tool
+		git://git.moblin.org/users/sarah/usb-pm-tool/
diff --git a/Documentation/ABI/testing/sysfs-bus-usb-devices-usbsevseg b/Documentation/ABI/testing/sysfs-bus-usb-devices-usbsevseg
new file mode 100644
index 0000000..cb830df
--- /dev/null
+++ b/Documentation/ABI/testing/sysfs-bus-usb-devices-usbsevseg
@@ -0,0 +1,43 @@
+Where:		/sys/bus/usb/.../powered
+Date:		August 2008
+Kernel Version:	2.6.26
+Contact:	Harrison Metzger <harrisonmetz@gmail.com>
+Description:	Controls whether the device's display will powered.
+		A value of 0 is off and a non-zero value is on.
+
+Where:		/sys/bus/usb/.../mode_msb
+Where:		/sys/bus/usb/.../mode_lsb
+Date:		August 2008
+Kernel Version:	2.6.26
+Contact:	Harrison Metzger <harrisonmetz@gmail.com>
+Description:	Controls the devices display mode.
+		For a 6 character display the values are
+			MSB 0x06; LSB 0x3F, and
+		for an 8 character display the values are
+			MSB 0x08; LSB 0xFF.
+
+Where:		/sys/bus/usb/.../textmode
+Date:		August 2008
+Kernel Version:	2.6.26
+Contact:	Harrison Metzger <harrisonmetz@gmail.com>
+Description:	Controls the way the device interprets its text buffer.
+		raw:	each character controls its segment manually
+		hex:	each character is between 0-15
+		ascii:	each character is between '0'-'9' and 'A'-'F'.
+
+Where:		/sys/bus/usb/.../text
+Date:		August 2008
+Kernel Version:	2.6.26
+Contact:	Harrison Metzger <harrisonmetz@gmail.com>
+Description:	The text (or data) for the device to display
+
+Where:		/sys/bus/usb/.../decimals
+Date:		August 2008
+Kernel Version:	2.6.26
+Contact:	Harrison Metzger <harrisonmetz@gmail.com>
+Description:	Controls the decimal places on the device.
+		To set the nth decimal place, give this field
+		the value of 10 ** n. Assume this field has
+		the value k and has 1 or more decimal places set,
+		to set the mth place (where m is not already set),
+		change this fields value to k + 10 ** m.
\ No newline at end of file
diff --git a/Documentation/DocBook/gadget.tmpl b/Documentation/DocBook/gadget.tmpl
index ea3bc95..6ef2f00 100644
--- a/Documentation/DocBook/gadget.tmpl
+++ b/Documentation/DocBook/gadget.tmpl
@@ -557,6 +557,9 @@
 </para>
 
 !Edrivers/usb/gadget/f_acm.c
+!Edrivers/usb/gadget/f_ecm.c
+!Edrivers/usb/gadget/f_subset.c
+!Edrivers/usb/gadget/f_obex.c
 !Edrivers/usb/gadget/f_serial.c
 
 </sect1>
diff --git a/Documentation/devices.txt b/Documentation/devices.txt
index 05c8064..2be0824 100644
--- a/Documentation/devices.txt
+++ b/Documentation/devices.txt
@@ -2571,6 +2571,9 @@
 		160 = /dev/usb/legousbtower0	1st USB Legotower device
 		    ...
 		175 = /dev/usb/legousbtower15	16th USB Legotower device
+		176 = /dev/usb/usbtmc1	First USB TMC device
+		   ...
+		192 = /dev/usb/usbtmc16	16th USB TMC device
 		240 = /dev/usb/dabusb0	First daubusb device
 		    ...
 		243 = /dev/usb/dabusb3	Fourth dabusb device
diff --git a/Documentation/filesystems/ext4.txt b/Documentation/filesystems/ext4.txt
index eb154ef..174eaff 100644
--- a/Documentation/filesystems/ext4.txt
+++ b/Documentation/filesystems/ext4.txt
@@ -2,19 +2,24 @@
 Ext4 Filesystem
 ===============
 
-This is a development version of the ext4 filesystem, an advanced level
-of the ext3 filesystem which incorporates scalability and reliability
-enhancements for supporting large filesystems (64 bit) in keeping with
-increasing disk capacities and state-of-the-art feature requirements.
+Ext4 is an an advanced level of the ext3 filesystem which incorporates
+scalability and reliability enhancements for supporting large filesystems
+(64 bit) in keeping with increasing disk capacities and state-of-the-art
+feature requirements.
 
-Mailing list: linux-ext4@vger.kernel.org
+Mailing list:	linux-ext4@vger.kernel.org
+Web site:	http://ext4.wiki.kernel.org
 
 
 1. Quick usage instructions:
 ===========================
 
+Note: More extensive information for getting started with ext4 can be
+      found at the ext4 wiki site at the URL:
+      http://ext4.wiki.kernel.org/index.php/Ext4_Howto
+
   - Compile and install the latest version of e2fsprogs (as of this
-    writing version 1.41) from:
+    writing version 1.41.3) from:
 
     http://sourceforge.net/project/showfiles.php?group_id=2406
 	
@@ -36,11 +41,9 @@
 
     	# mke2fs -t ext4 /dev/hda1
 
-    Or configure an existing ext3 filesystem to support extents and set
-    the test_fs flag to indicate that it's ok for an in-development
-    filesystem to touch this filesystem:
+    Or to configure an existing ext3 filesystem to support extents: 
 
-	# tune2fs -O extents -E test_fs /dev/hda1
+	# tune2fs -O extents /dev/hda1
 
     If the filesystem was created with 128 byte inodes, it can be
     converted to use 256 byte for greater efficiency via:
@@ -104,8 +107,8 @@
 The big performance win will come with mballoc, delalloc and flex_bg
 grouping of bitmaps and inode tables.  Some test results available here:
 
- - http://www.bullopensource.org/ext4/20080530/ffsb-write-2.6.26-rc2.html
- - http://www.bullopensource.org/ext4/20080530/ffsb-readwrite-2.6.26-rc2.html
+ - http://www.bullopensource.org/ext4/20080818-ffsb/ffsb-write-2.6.27-rc1.html
+ - http://www.bullopensource.org/ext4/20080818-ffsb/ffsb-readwrite-2.6.27-rc1.html
 
 3. Options
 ==========
@@ -214,9 +217,6 @@
 bsddf		(*)	Make 'df' act like BSD.
 minixdf			Make 'df' act like Minix.
 
-check=none		Don't do extra checking of bitmaps on mount.
-nocheck
-
 debug			Extra debugging information is sent to syslog.
 
 errors=remount-ro(*)	Remount the filesystem read-only on an error.
@@ -253,8 +253,6 @@
 			"nobh" option tries to avoid associating buffer
 			heads (supported only for "writeback" mode).
 
-mballoc		(*)	Use the multiple block allocator for block allocation
-nomballoc		disabled multiple block allocator for block allocation.
 stripe=n		Number of filesystem blocks that mballoc will try
 			to use for allocation size and alignment. For RAID5/6
 			systems this should be the number of data
diff --git a/Documentation/hwmon/adt7470 b/Documentation/hwmon/adt7470
new file mode 100644
index 0000000..75d13ca
--- /dev/null
+++ b/Documentation/hwmon/adt7470
@@ -0,0 +1,76 @@
+Kernel driver adt7470
+=====================
+
+Supported chips:
+  * Analog Devices ADT7470
+    Prefix: 'adt7470'
+    Addresses scanned: I2C 0x2C, 0x2E, 0x2F
+    Datasheet: Publicly available at the Analog Devices website
+
+Author: Darrick J. Wong
+
+Description
+-----------
+
+This driver implements support for the Analog Devices ADT7470 chip.  There may
+be other chips that implement this interface.
+
+The ADT7470 uses the 2-wire interface compatible with the SMBus 2.0
+specification. Using an analog to digital converter it measures up to ten (10)
+external temperatures. It has four (4) 16-bit counters for measuring fan speed.
+There are four (4) PWM outputs that can be used to control fan speed.
+
+A sophisticated control system for the PWM outputs is designed into the ADT7470
+that allows fan speed to be adjusted automatically based on any of the ten
+temperature sensors. Each PWM output is individually adjustable and
+programmable. Once configured, the ADT7470 will adjust the PWM outputs in
+response to the measured temperatures with further host intervention.  This
+feature can also be disabled for manual control of the PWM's.
+
+Each of the measured inputs (temperature, fan speed) has corresponding high/low
+limit values. The ADT7470 will signal an ALARM if any measured value exceeds
+either limit.
+
+The ADT7470 DOES NOT sample all inputs continuously.  A single pin on the
+ADT7470 is connected to a multitude of thermal diodes, but the chip must be
+instructed explicitly to read the multitude of diodes.  If you want to use
+automatic fan control mode, you must manually read any of the temperature
+sensors or the fan control algorithm will not run.  The chip WILL NOT DO THIS
+AUTOMATICALLY; this must be done from userspace.  This may be a bug in the chip
+design, given that many other AD chips take care of this.  The driver will not
+read the registers more often than once every 5 seconds.  Further,
+configuration data is only read once per minute.
+
+Special Features
+----------------
+
+The ADT7470 has a 8-bit ADC and is capable of measuring temperatures with 1
+degC resolution.
+
+The Analog Devices datasheet is very detailed and describes a procedure for
+determining an optimal configuration for the automatic PWM control.
+
+Configuration Notes
+-------------------
+
+Besides standard interfaces driver adds the following:
+
+* PWM Control
+
+* pwm#_auto_point1_pwm and pwm#_auto_point1_temp and
+* pwm#_auto_point2_pwm and pwm#_auto_point2_temp -
+
+point1: Set the pwm speed at a lower temperature bound.
+point2: Set the pwm speed at a higher temperature bound.
+
+The ADT7470 will scale the pwm between the lower and higher pwm speed when
+the temperature is between the two temperature boundaries.  PWM values range
+from 0 (off) to 255 (full speed).  Fan speed will be set to maximum when the
+temperature sensor associated with the PWM control exceeds
+pwm#_auto_point2_temp.
+
+Notes
+-----
+
+As stated above, the temperature inputs must be read periodically from
+userspace in order for the automatic pwm algorithm to run.
diff --git a/Documentation/hwmon/it87 b/Documentation/hwmon/it87
index 3496b70..042c041 100644
--- a/Documentation/hwmon/it87
+++ b/Documentation/hwmon/it87
@@ -136,10 +136,10 @@
 The IT87xx only updates its values each 1.5 seconds; reading it more often
 will do no harm, but will return 'old' values.
 
-To change sensor N to a thermistor, 'echo 2 > tempN_type' where N is 1, 2,
+To change sensor N to a thermistor, 'echo 4 > tempN_type' where N is 1, 2,
 or 3. To change sensor N to a thermal diode, 'echo 3 > tempN_type'.
 Give 0 for unused sensor. Any other value is invalid. To configure this at
-startup, consult lm_sensors's /etc/sensors.conf. (2 = thermistor;
+startup, consult lm_sensors's /etc/sensors.conf. (4 = thermistor;
 3 = thermal diode)
 
 
diff --git a/Documentation/hwmon/lm85 b/Documentation/hwmon/lm85
index 6d41db7..4006207 100644
--- a/Documentation/hwmon/lm85
+++ b/Documentation/hwmon/lm85
@@ -163,16 +163,6 @@
 * pwm#_auto_pwm_min - this specifies the PWM value for temp#_auto_temp_off
                       temperature. (PWM value from 0 to 255)
 
-* pwm#_auto_pwm_freq - select base frequency of PWM output. You can select
-                       in range of 10.0 to 94.0 Hz in .1 Hz units.
-		       (Values 100 to 940).
-
-The pwm#_auto_pwm_freq can be set to one of the following 8 values. Setting the
-frequency to a value not on this list, will result in the next higher frequency
-being selected. The actual device frequency may vary slightly from this
-specification as designed by the manufacturer. Consult the datasheet for more
-details. (PWM Frequency values:  100, 150, 230, 300, 380, 470, 620, 940)
-
 * pwm#_auto_pwm_minctl - this flags selects for temp#_auto_temp_off temperature
                          the bahaviour of fans. Write 1 to let fans spinning at
 			 pwm#_auto_pwm_min or write 0 to let them off.
diff --git a/Documentation/hwmon/lm87 b/Documentation/hwmon/lm87
index ec27aa1..6b47b67 100644
--- a/Documentation/hwmon/lm87
+++ b/Documentation/hwmon/lm87
@@ -65,11 +65,10 @@
 depending on the hardware configuration.
 
 Some functions share pins, so not all functions are available at the same
-time. Which are depends on the hardware setup. This driver assumes that
-the BIOS configured the chip correctly. In that respect, it differs from
-the original driver (from lm_sensors for Linux 2.4), which would force the
-LM87 to an arbitrary, compile-time chosen mode, regardless of the actual
-chipset wiring.
+time. Which are depends on the hardware setup. This driver normally
+assumes that firmware configured the chip correctly. Where this is not
+the case, platform code must set the I2C client's platform_data to point
+to a u8 value to be written to the channel register.
 
 For reference, here is the list of exclusive functions:
  - in0+in5 (default) or temp3
diff --git a/Documentation/hwmon/lm90 b/Documentation/hwmon/lm90
index aa4a0ec..e0d5206 100644
--- a/Documentation/hwmon/lm90
+++ b/Documentation/hwmon/lm90
@@ -11,7 +11,7 @@
     Prefix: 'lm99'
     Addresses scanned: I2C 0x4c and 0x4d
     Datasheet: Publicly available at the National Semiconductor website
-               http://www.national.com/pf/LM/LM89.html
+               http://www.national.com/mpf/LM/LM89.html
   * National Semiconductor LM99
     Prefix: 'lm99'
     Addresses scanned: I2C 0x4c and 0x4d
@@ -21,18 +21,32 @@
     Prefix: 'lm86'
     Addresses scanned: I2C 0x4c
     Datasheet: Publicly available at the National Semiconductor website
-               http://www.national.com/pf/LM/LM86.html
+               http://www.national.com/mpf/LM/LM86.html
   * Analog Devices ADM1032
     Prefix: 'adm1032'
     Addresses scanned: I2C 0x4c and 0x4d
-    Datasheet: Publicly available at the Analog Devices website
-               http://www.analog.com/en/prod/0,2877,ADM1032,00.html
+    Datasheet: Publicly available at the ON Semiconductor website
+               http://www.onsemi.com/PowerSolutions/product.do?id=ADM1032
   * Analog Devices ADT7461
     Prefix: 'adt7461'
     Addresses scanned: I2C 0x4c and 0x4d
-    Datasheet: Publicly available at the Analog Devices website
-               http://www.analog.com/en/prod/0,2877,ADT7461,00.html
-    Note: Only if in ADM1032 compatibility mode
+    Datasheet: Publicly available at the ON Semiconductor website
+               http://www.onsemi.com/PowerSolutions/product.do?id=ADT7461
+  * Maxim MAX6646
+    Prefix: 'max6646'
+    Addresses scanned: I2C 0x4d
+    Datasheet: Publicly available at the Maxim website
+               http://www.maxim-ic.com/quick_view2.cfm/qv_pk/3497
+  * Maxim MAX6647
+    Prefix: 'max6646'
+    Addresses scanned: I2C 0x4e
+    Datasheet: Publicly available at the Maxim website
+               http://www.maxim-ic.com/quick_view2.cfm/qv_pk/3497
+  * Maxim MAX6649
+    Prefix: 'max6646'
+    Addresses scanned: I2C 0x4c
+    Datasheet: Publicly available at the Maxim website
+               http://www.maxim-ic.com/quick_view2.cfm/qv_pk/3497
   * Maxim MAX6657
     Prefix: 'max6657'
     Addresses scanned: I2C 0x4c
@@ -70,25 +84,21 @@
 
 The LM90 is a digital temperature sensor. It senses its own temperature as
 well as the temperature of up to one external diode. It is compatible
-with many other devices such as the LM86, the LM89, the LM99, the ADM1032,
-the MAX6657, MAX6658, MAX6659, MAX6680 and the MAX6681 all of which are
-supported by this driver.
+with many other devices, many of which are supported by this driver.
 
 Note that there is no easy way to differentiate between the MAX6657,
 MAX6658 and MAX6659 variants. The extra address and features of the
 MAX6659 are not supported by this driver. The MAX6680 and MAX6681 only
 differ in their pinout, therefore they obviously can't (and don't need to)
-be distinguished. Additionally, the ADT7461 is supported if found in
-ADM1032 compatibility mode.
+be distinguished.
 
 The specificity of this family of chipsets over the ADM1021/LM84
 family is that it features critical limits with hysteresis, and an
 increased resolution of the remote temperature measurement.
 
 The different chipsets of the family are not strictly identical, although
-very similar. This driver doesn't handle any specific feature for now,
-with the exception of SMBus PEC. For reference, here comes a non-exhaustive
-list of specific features:
+very similar. For reference, here comes a non-exhaustive list of specific
+features:
 
 LM90:
   * Filter and alert configuration register at 0xBF.
@@ -114,9 +124,11 @@
   * Lower resolution for remote temperature
 
 MAX6657 and MAX6658:
+  * Better local resolution
   * Remote sensor type selection
 
 MAX6659:
+  * Better local resolution
   * Selectable address
   * Second critical temperature limit
   * Remote sensor type selection
@@ -127,7 +139,8 @@
 
 All temperature values are given in degrees Celsius. Resolution
 is 1.0 degree for the local temperature, 0.125 degree for the remote
-temperature.
+temperature, except for the MAX6657, MAX6658 and MAX6659 which have a
+resolution of 0.125 degree for both temperatures.
 
 Each sensor has its own high and low limits, plus a critical limit.
 Additionally, there is a relative hysteresis value common to both critical
diff --git a/Documentation/hwmon/pc87360 b/Documentation/hwmon/pc87360
index 89a8fcf..cbac32b 100644
--- a/Documentation/hwmon/pc87360
+++ b/Documentation/hwmon/pc87360
@@ -5,12 +5,7 @@
   * National Semiconductor PC87360, PC87363, PC87364, PC87365 and PC87366
     Prefixes: 'pc87360', 'pc87363', 'pc87364', 'pc87365', 'pc87366'
     Addresses scanned: none, address read from Super I/O config space
-    Datasheets:
-        http://www.national.com/pf/PC/PC87360.html
-        http://www.national.com/pf/PC/PC87363.html
-        http://www.national.com/pf/PC/PC87364.html
-        http://www.national.com/pf/PC/PC87365.html
-        http://www.national.com/pf/PC/PC87366.html
+    Datasheets: No longer available
 
 Authors: Jean Delvare <khali@linux-fr.org>
 
diff --git a/Documentation/hwmon/pc87427 b/Documentation/hwmon/pc87427
index 9a0708f..d1ebbe5 100644
--- a/Documentation/hwmon/pc87427
+++ b/Documentation/hwmon/pc87427
@@ -5,7 +5,7 @@
   * National Semiconductor PC87427
     Prefix: 'pc87427'
     Addresses scanned: none, address read from Super I/O config space
-    Datasheet: http://www.winbond.com.tw/E-WINBONDHTM/partner/apc_007.html
+    Datasheet: No longer available
 
 Author: Jean Delvare <khali@linux-fr.org>
 
diff --git a/Documentation/hwmon/w83781d b/Documentation/hwmon/w83781d
index 6f800a0..c91e0b6 100644
--- a/Documentation/hwmon/w83781d
+++ b/Documentation/hwmon/w83781d
@@ -353,7 +353,7 @@
 
 # PWM
 
-Additional info about PWM on the AS99127F (may apply to other Asus
+* Additional info about PWM on the AS99127F (may apply to other Asus
 chips as well) by Jean Delvare as of 2004-04-09:
 
 AS99127F revision 2 seems to have two PWM registers at 0x59 and 0x5A,
@@ -396,7 +396,7 @@
 long as we don't know more, the w83781d driver doesn't handle PWM on
 AS99127F chips at all.
 
-Additional info about PWM on the AS99127F rev.1 by Hector Martin:
+* Additional info about PWM on the AS99127F rev.1 by Hector Martin:
 
 I've been fiddling around with the (in)famous 0x59 register and
 found out the following values do work as a form of coarse pwm:
@@ -418,3 +418,36 @@
 My mobo is an ASUS A7V266-E. This behavior is similar to what I got
 with speedfan under Windows, where 0-15% would be off, 15-2x% (can't
 remember the exact value) would be 70% and higher would be full on.
+
+* Additional info about PWM on the AS99127F rev.1 from lm-sensors
+  ticket #2350:
+
+I conducted some experiment on Asus P3B-F motherboard with AS99127F
+(Ver. 1).
+
+I confirm that 0x59 register control the CPU_Fan Header on this
+motherboard, and 0x5a register control PWR_Fan.
+
+In order to reduce the dependency of specific fan, the measurement is
+conducted with a digital scope without fan connected. I found out that
+P3B-F actually output variable DC voltage on fan header center pin,
+looks like PWM is filtered on this motherboard.
+
+Here are some of measurements:
+
+0x80     20 mV
+0x81     20 mV
+0x82    232 mV
+0x83   1.2  V
+0x84   2.31 V
+0x85   3.44 V
+0x86   4.62 V
+0x87   5.81 V
+0x88   7.01 V
+9x89   8.22 V
+0x8a   9.42 V
+0x8b  10.6  V
+0x8c  11.9  V
+0x8d  12.4  V
+0x8e  12.4  V
+0x8f  12.4  V
diff --git a/Documentation/hwmon/w83791d b/Documentation/hwmon/w83791d
index a67d3b7..5663e49 100644
--- a/Documentation/hwmon/w83791d
+++ b/Documentation/hwmon/w83791d
@@ -58,29 +58,35 @@
 currently selected). If you know the address of the chip, use a 'force'
 parameter; this will put it into a more well-behaved state first.
 
-The driver implements three temperature sensors, five fan rotation speed
-sensors, and ten voltage sensors.
+The driver implements three temperature sensors, ten voltage sensors,
+five fan rotation speed sensors and manual PWM control of each fan.
 
 Temperatures are measured in degrees Celsius and measurement resolution is 1
 degC for temp1 and 0.5 degC for temp2 and temp3. An alarm is triggered when
 the temperature gets higher than the Overtemperature Shutdown value; it stays
 on until the temperature falls below the Hysteresis value.
 
+Voltage sensors (also known as IN sensors) report their values in millivolts.
+An alarm is triggered if the voltage has crossed a programmable minimum
+or maximum limit.
+
 Fan rotation speeds are reported in RPM (rotations per minute). An alarm is
 triggered if the rotation speed has dropped below a programmable limit. Fan
 readings can be divided by a programmable divider (1, 2, 4, 8, 16,
 32, 64 or 128 for all fans) to give the readings more range or accuracy.
 
-Voltage sensors (also known as IN sensors) report their values in millivolts.
-An alarm is triggered if the voltage has crossed a programmable minimum
-or maximum limit.
+Each fan controlled is controlled by PWM. The PWM duty cycle can be read and
+set for each fan separately. Valid values range from 0 (stop) to 255 (full).
+PWM 1-3 support Thermal Cruise mode, in which the PWMs are automatically
+regulated to keep respectively temp 1-3 at a certain target temperature.
+See below for the description of the sysfs-interface.
 
 The w83791d has a global bit used to enable beeping from the speaker when an
 alarm is triggered as well as a bitmask to enable or disable the beep for
 specific alarms. You need both the global beep enable bit and the
 corresponding beep bit to be on for a triggered alarm to sound a beep.
 
-The sysfs interface to the gloabal enable is via the sysfs beep_enable file.
+The sysfs interface to the global enable is via the sysfs beep_enable file.
 This file is used for both legacy and new code.
 
 The sysfs interface to the beep bitmask has migrated from the original legacy
@@ -105,6 +111,27 @@
 The driver reads the hardware chip values at most once every three seconds.
 User mode code requesting values more often will receive cached values.
 
+/sys files
+----------
+The sysfs-interface is documented in the 'sysfs-interface' file. Only
+chip-specific options are documented here.
+
+pwm[1-3]_enable -	this file controls mode of fan/temperature control for
+			fan 1-3. Fan/PWM 4-5 only support manual mode.
+		            * 1 Manual mode
+		            * 2 Thermal Cruise mode
+		            * 3 Fan Speed Cruise mode (no further support)
+
+temp[1-3]_target -	defines the target temperature for Thermal Cruise mode.
+			Unit: millidegree Celsius
+			RW
+
+temp[1-3]_tolerance -	temperature tolerance for Thermal Cruise mode.
+			Specifies an interval around the target temperature
+			in which the fan speed is not changed.
+			Unit: millidegree Celsius
+			RW
+
 Alarms bitmap vs. beep_mask bitmask
 ------------------------------------
 For legacy code using the alarms and beep_mask files:
@@ -132,7 +159,3 @@
 tart3        :  alarms: 0x040000 beep_mask: 0x100000 <== mismatch
 case_open    :  alarms: 0x001000 beep_mask: 0x001000
 global_enable:  alarms: -------- beep_mask: 0x800000 (modified via beep_enable)
-
-W83791D TODO:
----------------
-Provide a patch for smart-fan control (still need appropriate motherboard/fans)
diff --git a/Documentation/ioctl-number.txt b/Documentation/ioctl-number.txt
index 1c6b545..b880ce5 100644
--- a/Documentation/ioctl-number.txt
+++ b/Documentation/ioctl-number.txt
@@ -92,6 +92,7 @@
 'J'	00-1F	drivers/scsi/gdth_ioctl.h
 'K'	all	linux/kd.h
 'L'	00-1F	linux/loop.h
+'L'	20-2F	driver/usb/misc/vstusb.h
 'L'	E0-FF	linux/ppdd.h		encrypted disk device driver
 					<http://linux01.gwdg.de/~alatham/ppdd.html>
 'M'	all	linux/soundcard.h
@@ -110,6 +111,8 @@
 'W'	00-1F	linux/wanrouter.h	conflict!
 'X'	all	linux/xfs_fs.h
 'Y'	all	linux/cyclades.h
+'['	00-07	linux/usb/usbtmc.h	USB Test and Measurement Devices
+					<mailto:gregkh@suse.de>
 'a'	all				ATM on linux
 					<http://lrcwww.epfl.ch/linux-atm/magic.html>
 'b'	00-FF				bit3 vme host bridge
diff --git a/Documentation/kernel-parameters.txt b/Documentation/kernel-parameters.txt
index dd28a0d..d4f4875 100644
--- a/Documentation/kernel-parameters.txt
+++ b/Documentation/kernel-parameters.txt
@@ -2253,6 +2253,25 @@
 			autosuspended.  Devices for which the delay is set
 			to a negative value won't be autosuspended at all.
 
+	usbcore.usbfs_snoop=
+			[USB] Set to log all usbfs traffic (default 0 = off).
+
+	usbcore.blinkenlights=
+			[USB] Set to cycle leds on hubs (default 0 = off).
+
+	usbcore.old_scheme_first=
+			[USB] Start with the old device initialization
+			scheme (default 0 = off).
+
+	usbcore.use_both_schemes=
+			[USB] Try the other device initialization scheme
+			if the first one fails (default 1 = enabled).
+
+	usbcore.initial_descriptor_timeout=
+			[USB] Specifies timeout for the initial 64-byte
+                        USB_REQ_GET_DESCRIPTOR request in milliseconds
+			(default 5000 = 5.0 seconds).
+
 	usbhid.mousepoll=
 			[USBHID] The interval which mice are to be polled at.
 
diff --git a/Documentation/sysctl/kernel.txt b/Documentation/sysctl/kernel.txt
index e1ff0d9..bde799e 100644
--- a/Documentation/sysctl/kernel.txt
+++ b/Documentation/sysctl/kernel.txt
@@ -369,4 +369,5 @@
   2 - A module was force loaded by insmod -f.
       Set by modutils >= 2.4.9 and module-init-tools.
   4 - Unsafe SMP processors: SMP with CPUs not designed for SMP.
+ 64 - A module from drivers/staging was loaded.
 
diff --git a/Documentation/sysrq.txt b/Documentation/sysrq.txt
index 5ce0952..7b3b069 100644
--- a/Documentation/sysrq.txt
+++ b/Documentation/sysrq.txt
@@ -95,7 +95,8 @@
 
 'p'     - Will dump the current registers and flags to your console.
 
-'q'     - Will dump a list of all running timers.
+'q'     - Will dump per CPU lists of all armed hrtimers (not timer_list timers)
+	  and detailed information about all clockevent devices.
 
 'r'     - Turns off keyboard raw mode and sets it to XLATE.
 
diff --git a/Documentation/usb/anchors.txt b/Documentation/usb/anchors.txt
index 5e6b64c..6f24f56 100644
--- a/Documentation/usb/anchors.txt
+++ b/Documentation/usb/anchors.txt
@@ -52,6 +52,11 @@
 the call returns. They may be unlinked later but will be unlinked in
 finite time.
 
+usb_scuttle_anchored_urbs()
+---------------------------
+
+All URBs of an anchor are unanchored en masse.
+
 usb_wait_anchor_empty_timeout()
 -------------------------------
 
@@ -59,4 +64,16 @@
 or a timeout, whichever comes first. Its return value will tell you
 whether the timeout was reached.
 
+usb_anchor_empty()
+------------------
 
+Returns true if no URBs are associated with an anchor. Locking
+is the caller's responsibility.
+
+usb_get_from_anchor()
+---------------------
+
+Returns the oldest anchored URB of an anchor. The URB is unanchored
+and returned with a reference. As you may mix URBs to several
+destinations in one anchor you have no guarantee the chronologically
+first submitted URB is returned.
\ No newline at end of file
diff --git a/Documentation/usb/misc_usbsevseg.txt b/Documentation/usb/misc_usbsevseg.txt
new file mode 100644
index 0000000..0f6be4f
--- /dev/null
+++ b/Documentation/usb/misc_usbsevseg.txt
@@ -0,0 +1,46 @@
+USB 7-Segment Numeric Display
+Manufactured by Delcom Engineering
+
+Device Information
+------------------
+USB VENDOR_ID	0x0fc5
+USB PRODUCT_ID	0x1227
+Both the 6 character and 8 character displays have PRODUCT_ID,
+and according to Delcom Engineering no queryable information
+can be obtained from the device to tell them apart.
+
+Device Modes
+------------
+By default, the driver assumes the display is only 6 characters
+The mode for 6 characters is:
+	MSB 0x06; LSB 0x3f
+For the 8 character display:
+	MSB 0x08; LSB 0xff
+The device can accept "text" either in raw, hex, or ascii textmode.
+raw controls each segment manually,
+hex expects a value between 0-15 per character,
+ascii expects a value between '0'-'9' and 'A'-'F'.
+The default is ascii.
+
+Device Operation
+----------------
+1.	Turn on the device:
+	echo 1 > /sys/bus/usb/.../powered
+2.	Set the device's mode:
+	echo $mode_msb > /sys/bus/usb/.../mode_msb
+	echo $mode_lsb > /sys/bus/usb/.../mode_lsb
+3.	Set the textmode:
+	echo $textmode > /sys/bus/usb/.../textmode
+4.	set the text (for example):
+	echo "123ABC" > /sys/bus/usb/.../text (ascii)
+	echo "A1B2" > /sys/bus/usb/.../text (ascii)
+	echo -ne "\x01\x02\x03" > /sys/bus/usb/.../text (hex)
+5.	Set the decimal places.
+	The device has either 6 or 8 decimal points.
+	to set the nth decimal place calculate 10 ** n
+	and echo it in to /sys/bus/usb/.../decimals
+	To set multiple decimals points sum up each power.
+	For example, to set the 0th and 3rd decimal place
+	echo 1001 > /sys/bus/usb/.../decimals
+
+
diff --git a/Documentation/usb/power-management.txt b/Documentation/usb/power-management.txt
index 9d31140..e48ea1d 100644
--- a/Documentation/usb/power-management.txt
+++ b/Documentation/usb/power-management.txt
@@ -350,12 +350,12 @@
 
 There also are a couple of utility routines drivers can use:
 
-	usb_autopm_enable() sets pm_usage_cnt to 1 and then calls
-	usb_autopm_set_interface(), which will attempt an autoresume.
-
-	usb_autopm_disable() sets pm_usage_cnt to 0 and then calls
+	usb_autopm_enable() sets pm_usage_cnt to 0 and then calls
 	usb_autopm_set_interface(), which will attempt an autosuspend.
 
+	usb_autopm_disable() sets pm_usage_cnt to 1 and then calls
+	usb_autopm_set_interface(), which will attempt an autoresume.
+
 The conventional usage pattern is that a driver calls
 usb_autopm_get_interface() in its open routine and
 usb_autopm_put_interface() in its close or release routine.  But
diff --git a/Documentation/video4linux/CARDLIST.au0828 b/Documentation/video4linux/CARDLIST.au0828
index aa05e5b..d5cb4ea 100644
--- a/Documentation/video4linux/CARDLIST.au0828
+++ b/Documentation/video4linux/CARDLIST.au0828
@@ -1,5 +1,5 @@
   0 -> Unknown board                            (au0828)
-  1 -> Hauppauge HVR950Q                        (au0828)        [2040:7200,2040:7210,2040:7217,2040:721b,2040:721f,2040:7280,0fd9:0008]
+  1 -> Hauppauge HVR950Q                        (au0828)        [2040:7200,2040:7210,2040:7217,2040:721b,2040:721e,2040:721f,2040:7280,0fd9:0008]
   2 -> Hauppauge HVR850                         (au0828)        [2040:7240]
   3 -> DViCO FusionHDTV USB                     (au0828)        [0fe9:d620]
   4 -> Hauppauge HVR950Q rev xxF8               (au0828)        [2040:7201,2040:7211,2040:7281]
diff --git a/Documentation/video4linux/CARDLIST.tuner b/Documentation/video4linux/CARDLIST.tuner
index 30bbdda..691d2f3 100644
--- a/Documentation/video4linux/CARDLIST.tuner
+++ b/Documentation/video4linux/CARDLIST.tuner
@@ -75,3 +75,4 @@
 tuner=75 - Philips TEA5761 FM Radio
 tuner=76 - Xceive 5000 tuner
 tuner=77 - TCL tuner MF02GIP-5N-E
+tuner=78 - Philips FMD1216MEX MK3 Hybrid Tuner
diff --git a/MAINTAINERS b/MAINTAINERS
index 52702b0..355c192 100644
--- a/MAINTAINERS
+++ b/MAINTAINERS
@@ -3937,7 +3937,7 @@
 L:	linux-kernel@vger.kernel.org
 S:	Maintained
 
-STABLE BRANCH:
+STABLE BRANCH
 P:	Greg Kroah-Hartman
 M:	greg@kroah.com
 P:	Chris Wright
@@ -3945,6 +3945,13 @@
 L:	stable@kernel.org
 S:	Maintained
 
+STAGING SUBSYSTEM
+P:	Greg Kroah-Hartman
+M:	gregkh@suse.de
+L:	linux-kernel@vger.kernel.org
+T:	quilt kernel.org/pub/linux/kernel/people/gregkh/gregkh-2.6/
+S:	Maintained
+
 STARFIRE/DURALAN NETWORK DRIVER
 P:	Ion Badulescu
 M:	ionut@cs.columbia.edu
diff --git a/arch/cris/Makefile b/arch/cris/Makefile
index 838cd2a..c6f5f5a 100644
--- a/arch/cris/Makefile
+++ b/arch/cris/Makefile
@@ -10,6 +10,8 @@
 # License.  See the file "COPYING" in the main directory of this archive
 # for more details.
 
+KBUILD_DEFCONFIG := etrax-100lx_v2_defconfig
+
 arch-y := v10
 arch-$(CONFIG_ETRAX_ARCH_V10) := v10
 arch-$(CONFIG_ETRAX_ARCH_V32) := v32
diff --git a/arch/cris/arch-v10/boot/compressed/Makefile b/arch/cris/arch-v10/boot/compressed/Makefile
index 08d943c..6fe0ffa 100644
--- a/arch/cris/arch-v10/boot/compressed/Makefile
+++ b/arch/cris/arch-v10/boot/compressed/Makefile
@@ -4,7 +4,7 @@
 
 asflags-y += $(LINUXINCLUDE)
 ccflags-y += -O2 $(LINUXINCLUDE)
-ldflags-y += -T $(srctree)/$(obj)/decompress.ld
+ldflags-y += -T $(srctree)/$(src)/decompress.lds
 OBJECTS = $(obj)/head.o $(obj)/misc.o
 OBJCOPYFLAGS = -O binary --remove-section=.bss
 
diff --git a/arch/cris/arch-v10/boot/compressed/decompress.ld b/arch/cris/arch-v10/boot/compressed/decompress.lds
similarity index 100%
rename from arch/cris/arch-v10/boot/compressed/decompress.ld
rename to arch/cris/arch-v10/boot/compressed/decompress.lds
diff --git a/arch/cris/arch-v10/boot/rescue/Makefile b/arch/cris/arch-v10/boot/rescue/Makefile
index 07688da..82ab59b 100644
--- a/arch/cris/arch-v10/boot/rescue/Makefile
+++ b/arch/cris/arch-v10/boot/rescue/Makefile
@@ -4,7 +4,7 @@
 
 ccflags-y += -O2 $(LINUXINCLUDE)
 asflags-y += $(LINUXINCLUDE)
-ldflags-y += -T $(srctree)/$(obj)/rescue.ld
+ldflags-y += -T $(srctree)/$(src)/rescue.lds
 OBJCOPYFLAGS = -O binary --remove-section=.bss
 obj-$(CONFIG_ETRAX_AXISFLASHMAP) = head.o
 OBJECT := $(obj)/head.o
diff --git a/arch/cris/arch-v10/boot/rescue/rescue.ld b/arch/cris/arch-v10/boot/rescue/rescue.lds
similarity index 100%
rename from arch/cris/arch-v10/boot/rescue/rescue.ld
rename to arch/cris/arch-v10/boot/rescue/rescue.lds
diff --git a/arch/cris/arch-v32/boot/compressed/Makefile b/arch/cris/arch-v32/boot/compressed/Makefile
index d6335f2..5a1b31c 100644
--- a/arch/cris/arch-v32/boot/compressed/Makefile
+++ b/arch/cris/arch-v32/boot/compressed/Makefile
@@ -4,7 +4,7 @@
 
 asflags-y += -I $(srctree)/include/asm/mach/ -I $(srctree)/include/asm/arch
 ccflags-y += -O2 -I $(srctree)/include/asm/mach/ -I $(srctree)/include/asm/arch
-ldflags-y += -T $(srctree)/$(obj)/decompress.ld
+ldflags-y += -T $(srctree)/$(src)/decompress.lds
 OBJECTS = $(obj)/head.o $(obj)/misc.o
 OBJCOPYFLAGS = -O binary --remove-section=.bss
 
diff --git a/arch/cris/arch-v32/boot/compressed/decompress.ld b/arch/cris/arch-v32/boot/compressed/decompress.lds
similarity index 100%
rename from arch/cris/arch-v32/boot/compressed/decompress.ld
rename to arch/cris/arch-v32/boot/compressed/decompress.lds
diff --git a/arch/cris/arch-v32/boot/rescue/Makefile b/arch/cris/arch-v32/boot/rescue/Makefile
index 44ae0ad..566aac6 100644
--- a/arch/cris/arch-v32/boot/rescue/Makefile
+++ b/arch/cris/arch-v32/boot/rescue/Makefile
@@ -7,7 +7,7 @@
 		-I $(srctree)/include/asm/arch
 asflags-y += -I $(srctree)/include/asm/arch/mach/ -I $(srctree)/include/asm/arch
 LD = gcc-cris -mlinux -march=v32 -nostdlib
-ldflags-y += -T $(srctree)/$(obj)/rescue.ld
+ldflags-y += -T $(srctree)/$(src)/rescue.lds
 LDPOSTFLAGS = -lgcc
 OBJCOPYFLAGS = -O binary --remove-section=.bss
 obj-$(CONFIG_ETRAX_AXISFLASHMAP) = head.o
diff --git a/arch/cris/arch-v32/boot/rescue/rescue.ld b/arch/cris/arch-v32/boot/rescue/rescue.lds
similarity index 100%
rename from arch/cris/arch-v32/boot/rescue/rescue.ld
rename to arch/cris/arch-v32/boot/rescue/rescue.lds
diff --git a/arch/cris/artpec_3_defconfig b/arch/cris/configs/artpec_3_defconfig
similarity index 100%
rename from arch/cris/artpec_3_defconfig
rename to arch/cris/configs/artpec_3_defconfig
diff --git a/arch/cris/arch-v10/defconfig b/arch/cris/configs/etrax-100lx_defconfig
similarity index 100%
rename from arch/cris/arch-v10/defconfig
rename to arch/cris/configs/etrax-100lx_defconfig
diff --git a/arch/cris/defconfig b/arch/cris/configs/etrax-100lx_v2_defconfig
similarity index 100%
rename from arch/cris/defconfig
rename to arch/cris/configs/etrax-100lx_v2_defconfig
diff --git a/arch/cris/etraxfs_defconfig b/arch/cris/configs/etraxfs_defconfig
similarity index 100%
rename from arch/cris/etraxfs_defconfig
rename to arch/cris/configs/etraxfs_defconfig
diff --git a/arch/x86/mm/highmem_32.c b/arch/x86/mm/highmem_32.c
index 165c871..bcc079c 100644
--- a/arch/x86/mm/highmem_32.c
+++ b/arch/x86/mm/highmem_32.c
@@ -137,6 +137,7 @@
 
 	return (void*) vaddr;
 }
+EXPORT_SYMBOL_GPL(kmap_atomic_pfn); /* temporarily in use by i915 GEM until vmap */
 
 struct page *kmap_atomic_to_page(void *ptr)
 {
diff --git a/block/blk-core.c b/block/blk-core.c
index 2d053b5..c3df30c 100644
--- a/block/blk-core.c
+++ b/block/blk-core.c
@@ -257,7 +257,6 @@
 
 	q->request_fn(q);
 }
-EXPORT_SYMBOL(__generic_unplug_device);
 
 /**
  * generic_unplug_device - fire a request queue
@@ -325,6 +324,9 @@
 
 static void blk_invoke_request_fn(struct request_queue *q)
 {
+	if (unlikely(blk_queue_stopped(q)))
+		return;
+
 	/*
 	 * one level of recursion is ok and is much faster than kicking
 	 * the unplug handling
@@ -399,8 +401,13 @@
 EXPORT_SYMBOL(blk_sync_queue);
 
 /**
- * blk_run_queue - run a single device queue
+ * __blk_run_queue - run a single device queue
  * @q:	The queue to run
+ *
+ * Description:
+ *    See @blk_run_queue. This variant must be called with the queue lock
+ *    held and interrupts disabled.
+ *
  */
 void __blk_run_queue(struct request_queue *q)
 {
@@ -418,6 +425,12 @@
 /**
  * blk_run_queue - run a single device queue
  * @q: The queue to run
+ *
+ * Description:
+ *    Invoke request handling on this queue, if it has pending work to do.
+ *    May be used to restart queueing when a request has completed. Also
+ *    See @blk_start_queueing.
+ *
  */
 void blk_run_queue(struct request_queue *q)
 {
@@ -501,6 +514,7 @@
 	init_timer(&q->unplug_timer);
 	setup_timer(&q->timeout, blk_rq_timed_out_timer, (unsigned long) q);
 	INIT_LIST_HEAD(&q->timeout_list);
+	INIT_WORK(&q->unplug_work, blk_unplug_work);
 
 	kobject_init(&q->kobj, &blk_queue_ktype);
 
@@ -884,7 +898,8 @@
  *
  * This is basically a helper to remove the need to know whether a queue
  * is plugged or not if someone just wants to initiate dispatch of requests
- * for this queue.
+ * for this queue. Should be used to start queueing on a device outside
+ * of ->request_fn() context. Also see @blk_run_queue.
  *
  * The queue lock must be held with interrupts disabled.
  */
@@ -1003,8 +1018,9 @@
 }
 
 /**
- * part_round_stats()	- Round off the performance stats on a struct
- * disk_stats.
+ * part_round_stats() - Round off the performance stats on a struct disk_stats.
+ * @cpu: cpu number for stats access
+ * @part: target partition
  *
  * The average IO queue length and utilisation statistics are maintained
  * by observing the current state of the queue length and the amount of
@@ -1075,8 +1091,15 @@
 	/*
 	 * inherit FAILFAST from bio (for read-ahead, and explicit FAILFAST)
 	 */
-	if (bio_rw_ahead(bio) || bio_failfast(bio))
-		req->cmd_flags |= REQ_FAILFAST;
+	if (bio_rw_ahead(bio))
+		req->cmd_flags |= (REQ_FAILFAST_DEV | REQ_FAILFAST_TRANSPORT |
+				   REQ_FAILFAST_DRIVER);
+	if (bio_failfast_dev(bio))
+		req->cmd_flags |= REQ_FAILFAST_DEV;
+	if (bio_failfast_transport(bio))
+		req->cmd_flags |= REQ_FAILFAST_TRANSPORT;
+	if (bio_failfast_driver(bio))
+		req->cmd_flags |= REQ_FAILFAST_DRIVER;
 
 	/*
 	 * REQ_BARRIER implies no merging, but lets make it explicit
diff --git a/block/blk-merge.c b/block/blk-merge.c
index 908d3e1..8681cd6 100644
--- a/block/blk-merge.c
+++ b/block/blk-merge.c
@@ -77,12 +77,20 @@
 			continue;
 		}
 new_segment:
+		if (nr_phys_segs == 1 && seg_size > rq->bio->bi_seg_front_size)
+			rq->bio->bi_seg_front_size = seg_size;
+
 		nr_phys_segs++;
 		bvprv = bv;
 		seg_size = bv->bv_len;
 		highprv = high;
 	}
 
+	if (nr_phys_segs == 1 && seg_size > rq->bio->bi_seg_front_size)
+		rq->bio->bi_seg_front_size = seg_size;
+	if (seg_size > rq->biotail->bi_seg_back_size)
+		rq->biotail->bi_seg_back_size = seg_size;
+
 	rq->nr_phys_segments = nr_phys_segs;
 }
 
@@ -106,7 +114,8 @@
 	if (!test_bit(QUEUE_FLAG_CLUSTER, &q->queue_flags))
 		return 0;
 
-	if (bio->bi_size + nxt->bi_size > q->max_segment_size)
+	if (bio->bi_seg_back_size + nxt->bi_seg_front_size >
+	    q->max_segment_size)
 		return 0;
 
 	if (!bio_has_data(bio))
@@ -309,6 +318,8 @@
 				struct request *next)
 {
 	int total_phys_segments;
+	unsigned int seg_size =
+		req->biotail->bi_seg_back_size + next->bio->bi_seg_front_size;
 
 	/*
 	 * First check if the either of the requests are re-queued
@@ -324,8 +335,13 @@
 		return 0;
 
 	total_phys_segments = req->nr_phys_segments + next->nr_phys_segments;
-	if (blk_phys_contig_segment(q, req->biotail, next->bio))
+	if (blk_phys_contig_segment(q, req->biotail, next->bio)) {
+		if (req->nr_phys_segments == 1)
+			req->bio->bi_seg_front_size = seg_size;
+		if (next->nr_phys_segments == 1)
+			next->biotail->bi_seg_back_size = seg_size;
 		total_phys_segments--;
+	}
 
 	if (total_phys_segments > q->max_phys_segments)
 		return 0;
diff --git a/block/blk-settings.c b/block/blk-settings.c
index b21dcdb..41392fb 100644
--- a/block/blk-settings.c
+++ b/block/blk-settings.c
@@ -141,8 +141,6 @@
 	if (q->unplug_delay == 0)
 		q->unplug_delay = 1;
 
-	INIT_WORK(&q->unplug_work, blk_unplug_work);
-
 	q->unplug_timer.function = blk_unplug_timeout;
 	q->unplug_timer.data = (unsigned long)q;
 
diff --git a/block/blk.h b/block/blk.h
index e5c5797..d2e49af 100644
--- a/block/blk.h
+++ b/block/blk.h
@@ -20,6 +20,7 @@
 void blk_rq_timed_out_timer(unsigned long data);
 void blk_delete_timer(struct request *);
 void blk_add_timer(struct request *);
+void __generic_unplug_device(struct request_queue *);
 
 /*
  * Internal atomic flags for request handling
diff --git a/block/elevator.c b/block/elevator.c
index 0451892..59173a6 100644
--- a/block/elevator.c
+++ b/block/elevator.c
@@ -612,7 +612,7 @@
 		 *   processing.
 		 */
 		blk_remove_plug(q);
-		q->request_fn(q);
+		blk_start_queueing(q);
 		break;
 
 	case ELEVATOR_INSERT_SORT:
@@ -950,7 +950,7 @@
 		    blk_ordered_cur_seq(q) == QUEUE_ORDSEQ_DRAIN &&
 		    blk_ordered_req_seq(first_rq) > QUEUE_ORDSEQ_DRAIN) {
 			blk_ordered_complete_seq(q, QUEUE_ORDSEQ_DRAIN, 0);
-			q->request_fn(q);
+			blk_start_queueing(q);
 		}
 	}
 }
@@ -1109,8 +1109,7 @@
 	elv_drain_elevator(q);
 
 	while (q->rq.elvpriv) {
-		blk_remove_plug(q);
-		q->request_fn(q);
+		blk_start_queueing(q);
 		spin_unlock_irq(q->queue_lock);
 		msleep(10);
 		spin_lock_irq(q->queue_lock);
@@ -1166,15 +1165,10 @@
 			  size_t count)
 {
 	char elevator_name[ELV_NAME_MAX];
-	size_t len;
 	struct elevator_type *e;
 
-	elevator_name[sizeof(elevator_name) - 1] = '\0';
-	strncpy(elevator_name, name, sizeof(elevator_name) - 1);
-	len = strlen(elevator_name);
-
-	if (len && elevator_name[len - 1] == '\n')
-		elevator_name[len - 1] = '\0';
+	strlcpy(elevator_name, name, sizeof(elevator_name));
+	strstrip(elevator_name);
 
 	e = elevator_get(elevator_name);
 	if (!e) {
diff --git a/block/genhd.c b/block/genhd.c
index 4cd3433..646e1d2 100644
--- a/block/genhd.c
+++ b/block/genhd.c
@@ -358,7 +358,6 @@
 /**
  * blk_alloc_devt - allocate a dev_t for a partition
  * @part: partition to allocate dev_t for
- * @gfp_mask: memory allocation flag
  * @devt: out parameter for resulting dev_t
  *
  * Allocate a dev_t for block device.
@@ -535,7 +534,7 @@
 /**
  * get_gendisk - get partitioning information for a given device
  * @devt: device to get partitioning information for
- * @part: returned partition index
+ * @partno: returned partition index
  *
  * This function gets the structure containing partitioning
  * information for the given device @devt.
diff --git a/drivers/Kconfig b/drivers/Kconfig
index 59f33fa..d19b6f5 100644
--- a/drivers/Kconfig
+++ b/drivers/Kconfig
@@ -101,4 +101,6 @@
 source "drivers/uio/Kconfig"
 
 source "drivers/xen/Kconfig"
+
+source "drivers/staging/Kconfig"
 endmenu
diff --git a/drivers/Makefile b/drivers/Makefile
index 2735bde..46c8681 100644
--- a/drivers/Makefile
+++ b/drivers/Makefile
@@ -99,3 +99,4 @@
 obj-$(CONFIG_SSB)		+= ssb/
 obj-$(CONFIG_VIRTIO)		+= virtio/
 obj-$(CONFIG_REGULATOR)		+= regulator/
+obj-$(CONFIG_STAGING)		+= staging/
diff --git a/drivers/block/ub.c b/drivers/block/ub.c
index 3a281ef..f60e418 100644
--- a/drivers/block/ub.c
+++ b/drivers/block/ub.c
@@ -349,8 +349,6 @@
 
 	struct work_struct reset_work;
 	wait_queue_head_t reset_wait;
-
-	int sg_stat[6];
 };
 
 /*
@@ -685,7 +683,6 @@
 		goto drop;
 	}
 	urq->nsg = n_elem;
-	sc->sg_stat[n_elem < 5 ? n_elem : 5]++;
 
 	if (blk_pc_request(rq)) {
 		ub_cmd_build_packet(sc, lun, cmd, urq);
diff --git a/drivers/char/sysrq.c b/drivers/char/sysrq.c
index dce4cc0..ce0d9da 100644
--- a/drivers/char/sysrq.c
+++ b/drivers/char/sysrq.c
@@ -168,7 +168,7 @@
 static struct sysrq_key_op sysrq_show_timers_op = {
 	.handler	= sysrq_handle_show_timers,
 	.help_msg	= "show-all-timers(Q)",
-	.action_msg	= "Show Pending Timers",
+	.action_msg	= "Show clockevent devices & pending hrtimers (no others)",
 };
 
 static void sysrq_handle_mountro(int key, struct tty_struct *tty)
diff --git a/drivers/clocksource/acpi_pm.c b/drivers/clocksource/acpi_pm.c
index 71d2ac4..c201710 100644
--- a/drivers/clocksource/acpi_pm.c
+++ b/drivers/clocksource/acpi_pm.c
@@ -237,9 +237,12 @@
 
 	if (strict_strtoul(arg, 16, &base))
 		return -EINVAL;
-
+#ifdef CONFIG_X86_64
+	if (base > UINT_MAX)
+		return -ERANGE;
+#endif
 	printk(KERN_INFO "PMTMR IOPort override: 0x%04x -> 0x%04lx\n",
-	       (unsigned int)pmtmr_ioport, base);
+	       pmtmr_ioport, base);
 	pmtmr_ioport = base;
 
 	return 1;
diff --git a/drivers/gpu/drm/Kconfig b/drivers/gpu/drm/Kconfig
index 610d6fd..9097500 100644
--- a/drivers/gpu/drm/Kconfig
+++ b/drivers/gpu/drm/Kconfig
@@ -6,7 +6,7 @@
 #
 menuconfig DRM
 	tristate "Direct Rendering Manager (XFree86 4.1.0 and higher DRI support)"
-	depends on (AGP || AGP=n) && PCI && !EMULATED_CMPXCHG
+	depends on (AGP || AGP=n) && PCI && !EMULATED_CMPXCHG && SHMEM
 	help
 	  Kernel-level support for the Direct Rendering Infrastructure (DRI)
 	  introduced in XFree86 4.0. If you say Y here, you need to select
@@ -87,6 +87,7 @@
 config DRM_SIS
 	tristate "SiS video cards"
 	depends on DRM && AGP
+	depends on FB_SIS || FB_SIS=n
 	help
 	  Choose this option if you have a SiS 630 or compatible video
           chipset. If M is selected the module will be called sis. AGP
diff --git a/drivers/gpu/drm/Makefile b/drivers/gpu/drm/Makefile
index e9f9a97..74da994 100644
--- a/drivers/gpu/drm/Makefile
+++ b/drivers/gpu/drm/Makefile
@@ -4,8 +4,9 @@
 
 ccflags-y := -Iinclude/drm
 
-drm-y       :=	drm_auth.o drm_bufs.o drm_context.o drm_dma.o drm_drawable.o \
-		drm_drv.o drm_fops.o drm_ioctl.o drm_irq.o \
+drm-y       :=	drm_auth.o drm_bufs.o drm_cache.o \
+		drm_context.o drm_dma.o drm_drawable.o \
+		drm_drv.o drm_fops.o drm_gem.o drm_ioctl.o drm_irq.o \
 		drm_lock.o drm_memory.o drm_proc.o drm_stub.o drm_vm.o \
 		drm_agpsupport.o drm_scatter.o ati_pcigart.o drm_pci.o \
 		drm_sysfs.o drm_hashtab.o drm_sman.o drm_mm.o
diff --git a/drivers/gpu/drm/drm_agpsupport.c b/drivers/gpu/drm/drm_agpsupport.c
index aefa5ac..3d33b82 100644
--- a/drivers/gpu/drm/drm_agpsupport.c
+++ b/drivers/gpu/drm/drm_agpsupport.c
@@ -33,6 +33,7 @@
 
 #include "drmP.h"
 #include <linux/module.h>
+#include <asm/agp.h>
 
 #if __OS_HAS_AGP
 
@@ -452,4 +453,53 @@
 	return agp_unbind_memory(handle);
 }
 
-#endif				/* __OS_HAS_AGP */
+/**
+ * Binds a collection of pages into AGP memory at the given offset, returning
+ * the AGP memory structure containing them.
+ *
+ * No reference is held on the pages during this time -- it is up to the
+ * caller to handle that.
+ */
+DRM_AGP_MEM *
+drm_agp_bind_pages(struct drm_device *dev,
+		   struct page **pages,
+		   unsigned long num_pages,
+		   uint32_t gtt_offset,
+		   u32 type)
+{
+	DRM_AGP_MEM *mem;
+	int ret, i;
+
+	DRM_DEBUG("\n");
+
+	mem = drm_agp_allocate_memory(dev->agp->bridge, num_pages,
+				      type);
+	if (mem == NULL) {
+		DRM_ERROR("Failed to allocate memory for %ld pages\n",
+			  num_pages);
+		return NULL;
+	}
+
+	for (i = 0; i < num_pages; i++)
+		mem->memory[i] = phys_to_gart(page_to_phys(pages[i]));
+	mem->page_count = num_pages;
+
+	mem->is_flushed = true;
+	ret = drm_agp_bind_memory(mem, gtt_offset / PAGE_SIZE);
+	if (ret != 0) {
+		DRM_ERROR("Failed to bind AGP memory: %d\n", ret);
+		agp_free_memory(mem);
+		return NULL;
+	}
+
+	return mem;
+}
+EXPORT_SYMBOL(drm_agp_bind_pages);
+
+void drm_agp_chipset_flush(struct drm_device *dev)
+{
+	agp_flush_chipset(dev->agp->bridge);
+}
+EXPORT_SYMBOL(drm_agp_chipset_flush);
+
+#endif /* __OS_HAS_AGP */
diff --git a/drivers/gpu/drm/drm_cache.c b/drivers/gpu/drm/drm_cache.c
new file mode 100644
index 0000000..0e994a0
--- /dev/null
+++ b/drivers/gpu/drm/drm_cache.c
@@ -0,0 +1,69 @@
+/**************************************************************************
+ *
+ * Copyright (c) 2006-2007 Tungsten Graphics, Inc., Cedar Park, TX., USA
+ * All Rights Reserved.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the
+ * "Software"), to deal in the Software without restriction, including
+ * without limitation the rights to use, copy, modify, merge, publish,
+ * distribute, sub license, and/or sell copies of the Software, and to
+ * permit persons to whom the Software is furnished to do so, subject to
+ * the following conditions:
+ *
+ * The above copyright notice and this permission notice (including the
+ * next paragraph) shall be included in all copies or substantial portions
+ * of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
+ * THE COPYRIGHT HOLDERS, AUTHORS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM,
+ * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
+ * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
+ * USE OR OTHER DEALINGS IN THE SOFTWARE.
+ *
+ **************************************************************************/
+/*
+ * Authors: Thomas Hellström <thomas-at-tungstengraphics-dot-com>
+ */
+
+#include "drmP.h"
+
+#if defined(CONFIG_X86)
+static void
+drm_clflush_page(struct page *page)
+{
+	uint8_t *page_virtual;
+	unsigned int i;
+
+	if (unlikely(page == NULL))
+		return;
+
+	page_virtual = kmap_atomic(page, KM_USER0);
+	for (i = 0; i < PAGE_SIZE; i += boot_cpu_data.x86_clflush_size)
+		clflush(page_virtual + i);
+	kunmap_atomic(page_virtual, KM_USER0);
+}
+#endif
+
+void
+drm_clflush_pages(struct page *pages[], unsigned long num_pages)
+{
+
+#if defined(CONFIG_X86)
+	if (cpu_has_clflush) {
+		unsigned long i;
+
+		mb();
+		for (i = 0; i < num_pages; ++i)
+			drm_clflush_page(*pages++);
+		mb();
+
+		return;
+	}
+
+	wbinvd();
+#endif
+}
+EXPORT_SYMBOL(drm_clflush_pages);
diff --git a/drivers/gpu/drm/drm_drv.c b/drivers/gpu/drm/drm_drv.c
index 452c2d8..96f416a 100644
--- a/drivers/gpu/drm/drm_drv.c
+++ b/drivers/gpu/drm/drm_drv.c
@@ -116,7 +116,13 @@
 
 	DRM_IOCTL_DEF(DRM_IOCTL_WAIT_VBLANK, drm_wait_vblank, 0),
 
+	DRM_IOCTL_DEF(DRM_IOCTL_MODESET_CTL, drm_modeset_ctl, 0),
+
 	DRM_IOCTL_DEF(DRM_IOCTL_UPDATE_DRAW, drm_update_drawable_info, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
+
+	DRM_IOCTL_DEF(DRM_IOCTL_GEM_CLOSE, drm_gem_close_ioctl, 0),
+	DRM_IOCTL_DEF(DRM_IOCTL_GEM_FLINK, drm_gem_flink_ioctl, DRM_AUTH),
+	DRM_IOCTL_DEF(DRM_IOCTL_GEM_OPEN, drm_gem_open_ioctl, DRM_AUTH),
 };
 
 #define DRM_CORE_IOCTL_COUNT	ARRAY_SIZE( drm_ioctls )
diff --git a/drivers/gpu/drm/drm_fops.c b/drivers/gpu/drm/drm_fops.c
index 851a53f..0d46627 100644
--- a/drivers/gpu/drm/drm_fops.c
+++ b/drivers/gpu/drm/drm_fops.c
@@ -246,7 +246,7 @@
 	memset(priv, 0, sizeof(*priv));
 	filp->private_data = priv;
 	priv->filp = filp;
-	priv->uid = current->euid;
+	priv->uid = current_euid();
 	priv->pid = task_pid_nr(current);
 	priv->minor = idr_find(&drm_minors_idr, minor_id);
 	priv->ioctl_count = 0;
@@ -256,6 +256,9 @@
 
 	INIT_LIST_HEAD(&priv->lhead);
 
+	if (dev->driver->driver_features & DRIVER_GEM)
+		drm_gem_open(dev, priv);
+
 	if (dev->driver->open) {
 		ret = dev->driver->open(dev, priv);
 		if (ret < 0)
@@ -400,6 +403,9 @@
 		dev->driver->reclaim_buffers(dev, file_priv);
 	}
 
+	if (dev->driver->driver_features & DRIVER_GEM)
+		drm_gem_release(dev, file_priv);
+
 	drm_fasync(-1, filp, 0);
 
 	mutex_lock(&dev->ctxlist_mutex);
diff --git a/drivers/gpu/drm/drm_gem.c b/drivers/gpu/drm/drm_gem.c
new file mode 100644
index 0000000..ccd1afd
--- /dev/null
+++ b/drivers/gpu/drm/drm_gem.c
@@ -0,0 +1,421 @@
+/*
+ * Copyright © 2008 Intel Corporation
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice (including the next
+ * paragraph) shall be included in all copies or substantial portions of the
+ * Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
+ * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
+ * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
+ * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
+ * IN THE SOFTWARE.
+ *
+ * Authors:
+ *    Eric Anholt <eric@anholt.net>
+ *
+ */
+
+#include <linux/types.h>
+#include <linux/slab.h>
+#include <linux/mm.h>
+#include <linux/uaccess.h>
+#include <linux/fs.h>
+#include <linux/file.h>
+#include <linux/module.h>
+#include <linux/mman.h>
+#include <linux/pagemap.h>
+#include "drmP.h"
+
+/** @file drm_gem.c
+ *
+ * This file provides some of the base ioctls and library routines for
+ * the graphics memory manager implemented by each device driver.
+ *
+ * Because various devices have different requirements in terms of
+ * synchronization and migration strategies, implementing that is left up to
+ * the driver, and all that the general API provides should be generic --
+ * allocating objects, reading/writing data with the cpu, freeing objects.
+ * Even there, platform-dependent optimizations for reading/writing data with
+ * the CPU mean we'll likely hook those out to driver-specific calls.  However,
+ * the DRI2 implementation wants to have at least allocate/mmap be generic.
+ *
+ * The goal was to have swap-backed object allocation managed through
+ * struct file.  However, file descriptors as handles to a struct file have
+ * two major failings:
+ * - Process limits prevent more than 1024 or so being used at a time by
+ *   default.
+ * - Inability to allocate high fds will aggravate the X Server's select()
+ *   handling, and likely that of many GL client applications as well.
+ *
+ * This led to a plan of using our own integer IDs (called handles, following
+ * DRM terminology) to mimic fds, and implement the fd syscalls we need as
+ * ioctls.  The objects themselves will still include the struct file so
+ * that we can transition to fds if the required kernel infrastructure shows
+ * up at a later date, and as our interface with shmfs for memory allocation.
+ */
+
+/**
+ * Initialize the GEM device fields
+ */
+
+int
+drm_gem_init(struct drm_device *dev)
+{
+	spin_lock_init(&dev->object_name_lock);
+	idr_init(&dev->object_name_idr);
+	atomic_set(&dev->object_count, 0);
+	atomic_set(&dev->object_memory, 0);
+	atomic_set(&dev->pin_count, 0);
+	atomic_set(&dev->pin_memory, 0);
+	atomic_set(&dev->gtt_count, 0);
+	atomic_set(&dev->gtt_memory, 0);
+	return 0;
+}
+
+/**
+ * Allocate a GEM object of the specified size with shmfs backing store
+ */
+struct drm_gem_object *
+drm_gem_object_alloc(struct drm_device *dev, size_t size)
+{
+	struct drm_gem_object *obj;
+
+	BUG_ON((size & (PAGE_SIZE - 1)) != 0);
+
+	obj = kcalloc(1, sizeof(*obj), GFP_KERNEL);
+
+	obj->dev = dev;
+	obj->filp = shmem_file_setup("drm mm object", size, 0);
+	if (IS_ERR(obj->filp)) {
+		kfree(obj);
+		return NULL;
+	}
+
+	kref_init(&obj->refcount);
+	kref_init(&obj->handlecount);
+	obj->size = size;
+	if (dev->driver->gem_init_object != NULL &&
+	    dev->driver->gem_init_object(obj) != 0) {
+		fput(obj->filp);
+		kfree(obj);
+		return NULL;
+	}
+	atomic_inc(&dev->object_count);
+	atomic_add(obj->size, &dev->object_memory);
+	return obj;
+}
+EXPORT_SYMBOL(drm_gem_object_alloc);
+
+/**
+ * Removes the mapping from handle to filp for this object.
+ */
+static int
+drm_gem_handle_delete(struct drm_file *filp, int handle)
+{
+	struct drm_device *dev;
+	struct drm_gem_object *obj;
+
+	/* This is gross. The idr system doesn't let us try a delete and
+	 * return an error code.  It just spews if you fail at deleting.
+	 * So, we have to grab a lock around finding the object and then
+	 * doing the delete on it and dropping the refcount, or the user
+	 * could race us to double-decrement the refcount and cause a
+	 * use-after-free later.  Given the frequency of our handle lookups,
+	 * we may want to use ida for number allocation and a hash table
+	 * for the pointers, anyway.
+	 */
+	spin_lock(&filp->table_lock);
+
+	/* Check if we currently have a reference on the object */
+	obj = idr_find(&filp->object_idr, handle);
+	if (obj == NULL) {
+		spin_unlock(&filp->table_lock);
+		return -EINVAL;
+	}
+	dev = obj->dev;
+
+	/* Release reference and decrement refcount. */
+	idr_remove(&filp->object_idr, handle);
+	spin_unlock(&filp->table_lock);
+
+	mutex_lock(&dev->struct_mutex);
+	drm_gem_object_handle_unreference(obj);
+	mutex_unlock(&dev->struct_mutex);
+
+	return 0;
+}
+
+/**
+ * Create a handle for this object. This adds a handle reference
+ * to the object, which includes a regular reference count. Callers
+ * will likely want to dereference the object afterwards.
+ */
+int
+drm_gem_handle_create(struct drm_file *file_priv,
+		       struct drm_gem_object *obj,
+		       int *handlep)
+{
+	int	ret;
+
+	/*
+	 * Get the user-visible handle using idr.
+	 */
+again:
+	/* ensure there is space available to allocate a handle */
+	if (idr_pre_get(&file_priv->object_idr, GFP_KERNEL) == 0)
+		return -ENOMEM;
+
+	/* do the allocation under our spinlock */
+	spin_lock(&file_priv->table_lock);
+	ret = idr_get_new_above(&file_priv->object_idr, obj, 1, handlep);
+	spin_unlock(&file_priv->table_lock);
+	if (ret == -EAGAIN)
+		goto again;
+
+	if (ret != 0)
+		return ret;
+
+	drm_gem_object_handle_reference(obj);
+	return 0;
+}
+EXPORT_SYMBOL(drm_gem_handle_create);
+
+/** Returns a reference to the object named by the handle. */
+struct drm_gem_object *
+drm_gem_object_lookup(struct drm_device *dev, struct drm_file *filp,
+		      int handle)
+{
+	struct drm_gem_object *obj;
+
+	spin_lock(&filp->table_lock);
+
+	/* Check if we currently have a reference on the object */
+	obj = idr_find(&filp->object_idr, handle);
+	if (obj == NULL) {
+		spin_unlock(&filp->table_lock);
+		return NULL;
+	}
+
+	drm_gem_object_reference(obj);
+
+	spin_unlock(&filp->table_lock);
+
+	return obj;
+}
+EXPORT_SYMBOL(drm_gem_object_lookup);
+
+/**
+ * Releases the handle to an mm object.
+ */
+int
+drm_gem_close_ioctl(struct drm_device *dev, void *data,
+		    struct drm_file *file_priv)
+{
+	struct drm_gem_close *args = data;
+	int ret;
+
+	if (!(dev->driver->driver_features & DRIVER_GEM))
+		return -ENODEV;
+
+	ret = drm_gem_handle_delete(file_priv, args->handle);
+
+	return ret;
+}
+
+/**
+ * Create a global name for an object, returning the name.
+ *
+ * Note that the name does not hold a reference; when the object
+ * is freed, the name goes away.
+ */
+int
+drm_gem_flink_ioctl(struct drm_device *dev, void *data,
+		    struct drm_file *file_priv)
+{
+	struct drm_gem_flink *args = data;
+	struct drm_gem_object *obj;
+	int ret;
+
+	if (!(dev->driver->driver_features & DRIVER_GEM))
+		return -ENODEV;
+
+	obj = drm_gem_object_lookup(dev, file_priv, args->handle);
+	if (obj == NULL)
+		return -EBADF;
+
+again:
+	if (idr_pre_get(&dev->object_name_idr, GFP_KERNEL) == 0)
+		return -ENOMEM;
+
+	spin_lock(&dev->object_name_lock);
+	if (obj->name) {
+		args->name = obj->name;
+		spin_unlock(&dev->object_name_lock);
+		return 0;
+	}
+	ret = idr_get_new_above(&dev->object_name_idr, obj, 1,
+				 &obj->name);
+	spin_unlock(&dev->object_name_lock);
+	if (ret == -EAGAIN)
+		goto again;
+
+	if (ret != 0) {
+		mutex_lock(&dev->struct_mutex);
+		drm_gem_object_unreference(obj);
+		mutex_unlock(&dev->struct_mutex);
+		return ret;
+	}
+
+	/*
+	 * Leave the reference from the lookup around as the
+	 * name table now holds one
+	 */
+	args->name = (uint64_t) obj->name;
+
+	return 0;
+}
+
+/**
+ * Open an object using the global name, returning a handle and the size.
+ *
+ * This handle (of course) holds a reference to the object, so the object
+ * will not go away until the handle is deleted.
+ */
+int
+drm_gem_open_ioctl(struct drm_device *dev, void *data,
+		   struct drm_file *file_priv)
+{
+	struct drm_gem_open *args = data;
+	struct drm_gem_object *obj;
+	int ret;
+	int handle;
+
+	if (!(dev->driver->driver_features & DRIVER_GEM))
+		return -ENODEV;
+
+	spin_lock(&dev->object_name_lock);
+	obj = idr_find(&dev->object_name_idr, (int) args->name);
+	if (obj)
+		drm_gem_object_reference(obj);
+	spin_unlock(&dev->object_name_lock);
+	if (!obj)
+		return -ENOENT;
+
+	ret = drm_gem_handle_create(file_priv, obj, &handle);
+	mutex_lock(&dev->struct_mutex);
+	drm_gem_object_unreference(obj);
+	mutex_unlock(&dev->struct_mutex);
+	if (ret)
+		return ret;
+
+	args->handle = handle;
+	args->size = obj->size;
+
+	return 0;
+}
+
+/**
+ * Called at device open time, sets up the structure for handling refcounting
+ * of mm objects.
+ */
+void
+drm_gem_open(struct drm_device *dev, struct drm_file *file_private)
+{
+	idr_init(&file_private->object_idr);
+	spin_lock_init(&file_private->table_lock);
+}
+
+/**
+ * Called at device close to release the file's
+ * handle references on objects.
+ */
+static int
+drm_gem_object_release_handle(int id, void *ptr, void *data)
+{
+	struct drm_gem_object *obj = ptr;
+
+	drm_gem_object_handle_unreference(obj);
+
+	return 0;
+}
+
+/**
+ * Called at close time when the filp is going away.
+ *
+ * Releases any remaining references on objects by this filp.
+ */
+void
+drm_gem_release(struct drm_device *dev, struct drm_file *file_private)
+{
+	mutex_lock(&dev->struct_mutex);
+	idr_for_each(&file_private->object_idr,
+		     &drm_gem_object_release_handle, NULL);
+
+	idr_destroy(&file_private->object_idr);
+	mutex_unlock(&dev->struct_mutex);
+}
+
+/**
+ * Called after the last reference to the object has been lost.
+ *
+ * Frees the object
+ */
+void
+drm_gem_object_free(struct kref *kref)
+{
+	struct drm_gem_object *obj = (struct drm_gem_object *) kref;
+	struct drm_device *dev = obj->dev;
+
+	BUG_ON(!mutex_is_locked(&dev->struct_mutex));
+
+	if (dev->driver->gem_free_object != NULL)
+		dev->driver->gem_free_object(obj);
+
+	fput(obj->filp);
+	atomic_dec(&dev->object_count);
+	atomic_sub(obj->size, &dev->object_memory);
+	kfree(obj);
+}
+EXPORT_SYMBOL(drm_gem_object_free);
+
+/**
+ * Called after the last handle to the object has been closed
+ *
+ * Removes any name for the object. Note that this must be
+ * called before drm_gem_object_free or we'll be touching
+ * freed memory
+ */
+void
+drm_gem_object_handle_free(struct kref *kref)
+{
+	struct drm_gem_object *obj = container_of(kref,
+						  struct drm_gem_object,
+						  handlecount);
+	struct drm_device *dev = obj->dev;
+
+	/* Remove any name for this object */
+	spin_lock(&dev->object_name_lock);
+	if (obj->name) {
+		idr_remove(&dev->object_name_idr, obj->name);
+		spin_unlock(&dev->object_name_lock);
+		/*
+		 * The object name held a reference to this object, drop
+		 * that now.
+		 */
+		drm_gem_object_unreference(obj);
+	} else
+		spin_unlock(&dev->object_name_lock);
+
+}
+EXPORT_SYMBOL(drm_gem_object_handle_free);
+
diff --git a/drivers/gpu/drm/drm_irq.c b/drivers/gpu/drm/drm_irq.c
index 53f0e5a..4091b9e 100644
--- a/drivers/gpu/drm/drm_irq.c
+++ b/drivers/gpu/drm/drm_irq.c
@@ -63,7 +63,7 @@
 	    p->devnum != PCI_SLOT(dev->pdev->devfn) || p->funcnum != PCI_FUNC(dev->pdev->devfn))
 		return -EINVAL;
 
-	p->irq = dev->irq;
+	p->irq = dev->pdev->irq;
 
 	DRM_DEBUG("%d:%d:%d => IRQ %d\n", p->busnum, p->devnum, p->funcnum,
 		  p->irq);
@@ -71,25 +71,137 @@
 	return 0;
 }
 
+static void vblank_disable_fn(unsigned long arg)
+{
+	struct drm_device *dev = (struct drm_device *)arg;
+	unsigned long irqflags;
+	int i;
+
+	if (!dev->vblank_disable_allowed)
+		return;
+
+	for (i = 0; i < dev->num_crtcs; i++) {
+		spin_lock_irqsave(&dev->vbl_lock, irqflags);
+		if (atomic_read(&dev->vblank_refcount[i]) == 0 &&
+		    dev->vblank_enabled[i]) {
+			DRM_DEBUG("disabling vblank on crtc %d\n", i);
+			dev->last_vblank[i] =
+				dev->driver->get_vblank_counter(dev, i);
+			dev->driver->disable_vblank(dev, i);
+			dev->vblank_enabled[i] = 0;
+		}
+		spin_unlock_irqrestore(&dev->vbl_lock, irqflags);
+	}
+}
+
+static void drm_vblank_cleanup(struct drm_device *dev)
+{
+	/* Bail if the driver didn't call drm_vblank_init() */
+	if (dev->num_crtcs == 0)
+		return;
+
+	del_timer(&dev->vblank_disable_timer);
+
+	vblank_disable_fn((unsigned long)dev);
+
+	drm_free(dev->vbl_queue, sizeof(*dev->vbl_queue) * dev->num_crtcs,
+		 DRM_MEM_DRIVER);
+	drm_free(dev->vbl_sigs, sizeof(*dev->vbl_sigs) * dev->num_crtcs,
+		 DRM_MEM_DRIVER);
+	drm_free(dev->_vblank_count, sizeof(*dev->_vblank_count) *
+		 dev->num_crtcs, DRM_MEM_DRIVER);
+	drm_free(dev->vblank_refcount, sizeof(*dev->vblank_refcount) *
+		 dev->num_crtcs, DRM_MEM_DRIVER);
+	drm_free(dev->vblank_enabled, sizeof(*dev->vblank_enabled) *
+		 dev->num_crtcs, DRM_MEM_DRIVER);
+	drm_free(dev->last_vblank, sizeof(*dev->last_vblank) * dev->num_crtcs,
+		 DRM_MEM_DRIVER);
+	drm_free(dev->vblank_inmodeset, sizeof(*dev->vblank_inmodeset) *
+		 dev->num_crtcs, DRM_MEM_DRIVER);
+
+	dev->num_crtcs = 0;
+}
+
+int drm_vblank_init(struct drm_device *dev, int num_crtcs)
+{
+	int i, ret = -ENOMEM;
+
+	setup_timer(&dev->vblank_disable_timer, vblank_disable_fn,
+		    (unsigned long)dev);
+	spin_lock_init(&dev->vbl_lock);
+	atomic_set(&dev->vbl_signal_pending, 0);
+	dev->num_crtcs = num_crtcs;
+
+	dev->vbl_queue = drm_alloc(sizeof(wait_queue_head_t) * num_crtcs,
+				   DRM_MEM_DRIVER);
+	if (!dev->vbl_queue)
+		goto err;
+
+	dev->vbl_sigs = drm_alloc(sizeof(struct list_head) * num_crtcs,
+				  DRM_MEM_DRIVER);
+	if (!dev->vbl_sigs)
+		goto err;
+
+	dev->_vblank_count = drm_alloc(sizeof(atomic_t) * num_crtcs,
+				      DRM_MEM_DRIVER);
+	if (!dev->_vblank_count)
+		goto err;
+
+	dev->vblank_refcount = drm_alloc(sizeof(atomic_t) * num_crtcs,
+					 DRM_MEM_DRIVER);
+	if (!dev->vblank_refcount)
+		goto err;
+
+	dev->vblank_enabled = drm_calloc(num_crtcs, sizeof(int),
+					 DRM_MEM_DRIVER);
+	if (!dev->vblank_enabled)
+		goto err;
+
+	dev->last_vblank = drm_calloc(num_crtcs, sizeof(u32), DRM_MEM_DRIVER);
+	if (!dev->last_vblank)
+		goto err;
+
+	dev->vblank_inmodeset = drm_calloc(num_crtcs, sizeof(int),
+					 DRM_MEM_DRIVER);
+	if (!dev->vblank_inmodeset)
+		goto err;
+
+	/* Zero per-crtc vblank stuff */
+	for (i = 0; i < num_crtcs; i++) {
+		init_waitqueue_head(&dev->vbl_queue[i]);
+		INIT_LIST_HEAD(&dev->vbl_sigs[i]);
+		atomic_set(&dev->_vblank_count[i], 0);
+		atomic_set(&dev->vblank_refcount[i], 0);
+	}
+
+	dev->vblank_disable_allowed = 0;
+
+	return 0;
+
+err:
+	drm_vblank_cleanup(dev);
+	return ret;
+}
+EXPORT_SYMBOL(drm_vblank_init);
+
 /**
  * Install IRQ handler.
  *
  * \param dev DRM device.
- * \param irq IRQ number.
  *
- * Initializes the IRQ related data, and setups drm_device::vbl_queue. Installs the handler, calling the driver
+ * Initializes the IRQ related data. Installs the handler, calling the driver
  * \c drm_driver_irq_preinstall() and \c drm_driver_irq_postinstall() functions
  * before and after the installation.
  */
-static int drm_irq_install(struct drm_device * dev)
+int drm_irq_install(struct drm_device *dev)
 {
-	int ret;
+	int ret = 0;
 	unsigned long sh_flags = 0;
 
 	if (!drm_core_check_feature(dev, DRIVER_HAVE_IRQ))
 		return -EINVAL;
 
-	if (dev->irq == 0)
+	if (dev->pdev->irq == 0)
 		return -EINVAL;
 
 	mutex_lock(&dev->struct_mutex);
@@ -107,18 +219,7 @@
 	dev->irq_enabled = 1;
 	mutex_unlock(&dev->struct_mutex);
 
-	DRM_DEBUG("irq=%d\n", dev->irq);
-
-	if (drm_core_check_feature(dev, DRIVER_IRQ_VBL)) {
-		init_waitqueue_head(&dev->vbl_queue);
-
-		spin_lock_init(&dev->vbl_lock);
-
-		INIT_LIST_HEAD(&dev->vbl_sigs);
-		INIT_LIST_HEAD(&dev->vbl_sigs2);
-
-		dev->vbl_pending = 0;
-	}
+	DRM_DEBUG("irq=%d\n", dev->pdev->irq);
 
 	/* Before installing handler */
 	dev->driver->irq_preinstall(dev);
@@ -127,8 +228,9 @@
 	if (drm_core_check_feature(dev, DRIVER_IRQ_SHARED))
 		sh_flags = IRQF_SHARED;
 
-	ret = request_irq(dev->irq, dev->driver->irq_handler,
+	ret = request_irq(drm_dev_to_irq(dev), dev->driver->irq_handler,
 			  sh_flags, dev->devname, dev);
+
 	if (ret < 0) {
 		mutex_lock(&dev->struct_mutex);
 		dev->irq_enabled = 0;
@@ -137,10 +239,16 @@
 	}
 
 	/* After installing handler */
-	dev->driver->irq_postinstall(dev);
+	ret = dev->driver->irq_postinstall(dev);
+	if (ret < 0) {
+		mutex_lock(&dev->struct_mutex);
+		dev->irq_enabled = 0;
+		mutex_unlock(&dev->struct_mutex);
+	}
 
-	return 0;
+	return ret;
 }
+EXPORT_SYMBOL(drm_irq_install);
 
 /**
  * Uninstall the IRQ handler.
@@ -164,17 +272,18 @@
 	if (!irq_enabled)
 		return -EINVAL;
 
-	DRM_DEBUG("irq=%d\n", dev->irq);
+	DRM_DEBUG("irq=%d\n", dev->pdev->irq);
 
 	dev->driver->irq_uninstall(dev);
 
-	free_irq(dev->irq, dev);
+	free_irq(dev->pdev->irq, dev);
+
+	drm_vblank_cleanup(dev);
 
 	dev->locked_tasklet_func = NULL;
 
 	return 0;
 }
-
 EXPORT_SYMBOL(drm_irq_uninstall);
 
 /**
@@ -201,7 +310,7 @@
 		if (!drm_core_check_feature(dev, DRIVER_HAVE_IRQ))
 			return 0;
 		if (dev->if_version < DRM_IF_VERSION(1, 2) &&
-		    ctl->irq != dev->irq)
+		    ctl->irq != dev->pdev->irq)
 			return -EINVAL;
 		return drm_irq_install(dev);
 	case DRM_UNINST_HANDLER:
@@ -214,6 +323,174 @@
 }
 
 /**
+ * drm_vblank_count - retrieve "cooked" vblank counter value
+ * @dev: DRM device
+ * @crtc: which counter to retrieve
+ *
+ * Fetches the "cooked" vblank count value that represents the number of
+ * vblank events since the system was booted, including lost events due to
+ * modesetting activity.
+ */
+u32 drm_vblank_count(struct drm_device *dev, int crtc)
+{
+	return atomic_read(&dev->_vblank_count[crtc]);
+}
+EXPORT_SYMBOL(drm_vblank_count);
+
+/**
+ * drm_update_vblank_count - update the master vblank counter
+ * @dev: DRM device
+ * @crtc: counter to update
+ *
+ * Call back into the driver to update the appropriate vblank counter
+ * (specified by @crtc).  Deal with wraparound, if it occurred, and
+ * update the last read value so we can deal with wraparound on the next
+ * call if necessary.
+ *
+ * Only necessary when going from off->on, to account for frames we
+ * didn't get an interrupt for.
+ *
+ * Note: caller must hold dev->vbl_lock since this reads & writes
+ * device vblank fields.
+ */
+static void drm_update_vblank_count(struct drm_device *dev, int crtc)
+{
+	u32 cur_vblank, diff;
+
+	/*
+	 * Interrupts were disabled prior to this call, so deal with counter
+	 * wrap if needed.
+	 * NOTE!  It's possible we lost a full dev->max_vblank_count events
+	 * here if the register is small or we had vblank interrupts off for
+	 * a long time.
+	 */
+	cur_vblank = dev->driver->get_vblank_counter(dev, crtc);
+	diff = cur_vblank - dev->last_vblank[crtc];
+	if (cur_vblank < dev->last_vblank[crtc]) {
+		diff += dev->max_vblank_count;
+
+		DRM_DEBUG("last_vblank[%d]=0x%x, cur_vblank=0x%x => diff=0x%x\n",
+			  crtc, dev->last_vblank[crtc], cur_vblank, diff);
+	}
+
+	DRM_DEBUG("enabling vblank interrupts on crtc %d, missed %d\n",
+		  crtc, diff);
+
+	atomic_add(diff, &dev->_vblank_count[crtc]);
+}
+
+/**
+ * drm_vblank_get - get a reference count on vblank events
+ * @dev: DRM device
+ * @crtc: which CRTC to own
+ *
+ * Acquire a reference count on vblank events to avoid having them disabled
+ * while in use.
+ *
+ * RETURNS
+ * Zero on success, nonzero on failure.
+ */
+int drm_vblank_get(struct drm_device *dev, int crtc)
+{
+	unsigned long irqflags;
+	int ret = 0;
+
+	spin_lock_irqsave(&dev->vbl_lock, irqflags);
+	/* Going from 0->1 means we have to enable interrupts again */
+	if (atomic_add_return(1, &dev->vblank_refcount[crtc]) == 1 &&
+	    !dev->vblank_enabled[crtc]) {
+		ret = dev->driver->enable_vblank(dev, crtc);
+		DRM_DEBUG("enabling vblank on crtc %d, ret: %d\n", crtc, ret);
+		if (ret)
+			atomic_dec(&dev->vblank_refcount[crtc]);
+		else {
+			dev->vblank_enabled[crtc] = 1;
+			drm_update_vblank_count(dev, crtc);
+		}
+	}
+	spin_unlock_irqrestore(&dev->vbl_lock, irqflags);
+
+	return ret;
+}
+EXPORT_SYMBOL(drm_vblank_get);
+
+/**
+ * drm_vblank_put - give up ownership of vblank events
+ * @dev: DRM device
+ * @crtc: which counter to give up
+ *
+ * Release ownership of a given vblank counter, turning off interrupts
+ * if possible.
+ */
+void drm_vblank_put(struct drm_device *dev, int crtc)
+{
+	/* Last user schedules interrupt disable */
+	if (atomic_dec_and_test(&dev->vblank_refcount[crtc]))
+		mod_timer(&dev->vblank_disable_timer, jiffies + 5*DRM_HZ);
+}
+EXPORT_SYMBOL(drm_vblank_put);
+
+/**
+ * drm_modeset_ctl - handle vblank event counter changes across mode switch
+ * @DRM_IOCTL_ARGS: standard ioctl arguments
+ *
+ * Applications should call the %_DRM_PRE_MODESET and %_DRM_POST_MODESET
+ * ioctls around modesetting so that any lost vblank events are accounted for.
+ *
+ * Generally the counter will reset across mode sets.  If interrupts are
+ * enabled around this call, we don't have to do anything since the counter
+ * will have already been incremented.
+ */
+int drm_modeset_ctl(struct drm_device *dev, void *data,
+		    struct drm_file *file_priv)
+{
+	struct drm_modeset_ctl *modeset = data;
+	unsigned long irqflags;
+	int crtc, ret = 0;
+
+	/* If drm_vblank_init() hasn't been called yet, just no-op */
+	if (!dev->num_crtcs)
+		goto out;
+
+	crtc = modeset->crtc;
+	if (crtc >= dev->num_crtcs) {
+		ret = -EINVAL;
+		goto out;
+	}
+
+	/*
+	 * To avoid all the problems that might happen if interrupts
+	 * were enabled/disabled around or between these calls, we just
+	 * have the kernel take a reference on the CRTC (just once though
+	 * to avoid corrupting the count if multiple, mismatch calls occur),
+	 * so that interrupts remain enabled in the interim.
+	 */
+	switch (modeset->cmd) {
+	case _DRM_PRE_MODESET:
+		if (!dev->vblank_inmodeset[crtc]) {
+			dev->vblank_inmodeset[crtc] = 1;
+			drm_vblank_get(dev, crtc);
+		}
+		break;
+	case _DRM_POST_MODESET:
+		if (dev->vblank_inmodeset[crtc]) {
+			spin_lock_irqsave(&dev->vbl_lock, irqflags);
+			dev->vblank_disable_allowed = 1;
+			dev->vblank_inmodeset[crtc] = 0;
+			spin_unlock_irqrestore(&dev->vbl_lock, irqflags);
+			drm_vblank_put(dev, crtc);
+		}
+		break;
+	default:
+		ret = -EINVAL;
+		break;
+	}
+
+out:
+	return ret;
+}
+
+/**
  * Wait for VBLANK.
  *
  * \param inode device inode.
@@ -232,14 +509,14 @@
  *
  * If a signal is not requested, then calls vblank_wait().
  */
-int drm_wait_vblank(struct drm_device *dev, void *data, struct drm_file *file_priv)
+int drm_wait_vblank(struct drm_device *dev, void *data,
+		    struct drm_file *file_priv)
 {
 	union drm_wait_vblank *vblwait = data;
-	struct timeval now;
 	int ret = 0;
-	unsigned int flags, seq;
+	unsigned int flags, seq, crtc;
 
-	if ((!dev->irq) || (!dev->irq_enabled))
+	if ((!dev->pdev->irq) || (!dev->irq_enabled))
 		return -EINVAL;
 
 	if (vblwait->request.type &
@@ -251,13 +528,17 @@
 	}
 
 	flags = vblwait->request.type & _DRM_VBLANK_FLAGS_MASK;
+	crtc = flags & _DRM_VBLANK_SECONDARY ? 1 : 0;
 
-	if (!drm_core_check_feature(dev, (flags & _DRM_VBLANK_SECONDARY) ?
-				    DRIVER_IRQ_VBL2 : DRIVER_IRQ_VBL))
+	if (crtc >= dev->num_crtcs)
 		return -EINVAL;
 
-	seq = atomic_read((flags & _DRM_VBLANK_SECONDARY) ? &dev->vbl_received2
-			  : &dev->vbl_received);
+	ret = drm_vblank_get(dev, crtc);
+	if (ret) {
+		DRM_ERROR("failed to acquire vblank counter, %d\n", ret);
+		return ret;
+	}
+	seq = drm_vblank_count(dev, crtc);
 
 	switch (vblwait->request.type & _DRM_VBLANK_TYPES_MASK) {
 	case _DRM_VBLANK_RELATIVE:
@@ -266,7 +547,8 @@
 	case _DRM_VBLANK_ABSOLUTE:
 		break;
 	default:
-		return -EINVAL;
+		ret = -EINVAL;
+		goto done;
 	}
 
 	if ((flags & _DRM_VBLANK_NEXTONMISS) &&
@@ -276,8 +558,7 @@
 
 	if (flags & _DRM_VBLANK_SIGNAL) {
 		unsigned long irqflags;
-		struct list_head *vbl_sigs = (flags & _DRM_VBLANK_SECONDARY)
-				      ? &dev->vbl_sigs2 : &dev->vbl_sigs;
+		struct list_head *vbl_sigs = &dev->vbl_sigs[crtc];
 		struct drm_vbl_sig *vbl_sig;
 
 		spin_lock_irqsave(&dev->vbl_lock, irqflags);
@@ -298,22 +579,29 @@
 			}
 		}
 
-		if (dev->vbl_pending >= 100) {
+		if (atomic_read(&dev->vbl_signal_pending) >= 100) {
 			spin_unlock_irqrestore(&dev->vbl_lock, irqflags);
-			return -EBUSY;
+			ret = -EBUSY;
+			goto done;
 		}
 
-		dev->vbl_pending++;
-
 		spin_unlock_irqrestore(&dev->vbl_lock, irqflags);
 
-		if (!
-		    (vbl_sig =
-		     drm_alloc(sizeof(struct drm_vbl_sig), DRM_MEM_DRIVER))) {
-			return -ENOMEM;
+		vbl_sig = drm_calloc(1, sizeof(struct drm_vbl_sig),
+				     DRM_MEM_DRIVER);
+		if (!vbl_sig) {
+			ret = -ENOMEM;
+			goto done;
 		}
 
-		memset((void *)vbl_sig, 0, sizeof(*vbl_sig));
+		ret = drm_vblank_get(dev, crtc);
+		if (ret) {
+			drm_free(vbl_sig, sizeof(struct drm_vbl_sig),
+				 DRM_MEM_DRIVER);
+			return ret;
+		}
+
+		atomic_inc(&dev->vbl_signal_pending);
 
 		vbl_sig->sequence = vblwait->request.sequence;
 		vbl_sig->info.si_signo = vblwait->request.signal;
@@ -327,20 +615,29 @@
 
 		vblwait->reply.sequence = seq;
 	} else {
-		if (flags & _DRM_VBLANK_SECONDARY) {
-			if (dev->driver->vblank_wait2)
-				ret = dev->driver->vblank_wait2(dev, &vblwait->request.sequence);
-		} else if (dev->driver->vblank_wait)
-			ret =
-			    dev->driver->vblank_wait(dev,
-						     &vblwait->request.sequence);
+		DRM_DEBUG("waiting on vblank count %d, crtc %d\n",
+			  vblwait->request.sequence, crtc);
+		DRM_WAIT_ON(ret, dev->vbl_queue[crtc], 3 * DRM_HZ,
+			    ((drm_vblank_count(dev, crtc)
+			      - vblwait->request.sequence) <= (1 << 23)));
 
-		do_gettimeofday(&now);
-		vblwait->reply.tval_sec = now.tv_sec;
-		vblwait->reply.tval_usec = now.tv_usec;
+		if (ret != -EINTR) {
+			struct timeval now;
+
+			do_gettimeofday(&now);
+
+			vblwait->reply.tval_sec = now.tv_sec;
+			vblwait->reply.tval_usec = now.tv_usec;
+			vblwait->reply.sequence = drm_vblank_count(dev, crtc);
+			DRM_DEBUG("returning %d to client\n",
+				  vblwait->reply.sequence);
+		} else {
+			DRM_DEBUG("vblank wait interrupted by signal\n");
+		}
 	}
 
-      done:
+done:
+	drm_vblank_put(dev, crtc);
 	return ret;
 }
 
@@ -348,44 +645,57 @@
  * Send the VBLANK signals.
  *
  * \param dev DRM device.
+ * \param crtc CRTC where the vblank event occurred
  *
  * Sends a signal for each task in drm_device::vbl_sigs and empties the list.
  *
  * If a signal is not requested, then calls vblank_wait().
  */
-void drm_vbl_send_signals(struct drm_device * dev)
+static void drm_vbl_send_signals(struct drm_device *dev, int crtc)
 {
+	struct drm_vbl_sig *vbl_sig, *tmp;
+	struct list_head *vbl_sigs;
+	unsigned int vbl_seq;
 	unsigned long flags;
-	int i;
 
 	spin_lock_irqsave(&dev->vbl_lock, flags);
 
-	for (i = 0; i < 2; i++) {
-		struct drm_vbl_sig *vbl_sig, *tmp;
-		struct list_head *vbl_sigs = i ? &dev->vbl_sigs2 : &dev->vbl_sigs;
-		unsigned int vbl_seq = atomic_read(i ? &dev->vbl_received2 :
-						   &dev->vbl_received);
+	vbl_sigs = &dev->vbl_sigs[crtc];
+	vbl_seq = drm_vblank_count(dev, crtc);
 
-		list_for_each_entry_safe(vbl_sig, tmp, vbl_sigs, head) {
-			if ((vbl_seq - vbl_sig->sequence) <= (1 << 23)) {
-				vbl_sig->info.si_code = vbl_seq;
-				send_sig_info(vbl_sig->info.si_signo,
-					      &vbl_sig->info, vbl_sig->task);
+	list_for_each_entry_safe(vbl_sig, tmp, vbl_sigs, head) {
+	    if ((vbl_seq - vbl_sig->sequence) <= (1 << 23)) {
+		vbl_sig->info.si_code = vbl_seq;
+		send_sig_info(vbl_sig->info.si_signo,
+			      &vbl_sig->info, vbl_sig->task);
 
-				list_del(&vbl_sig->head);
+		list_del(&vbl_sig->head);
 
-				drm_free(vbl_sig, sizeof(*vbl_sig),
-					 DRM_MEM_DRIVER);
-
-				dev->vbl_pending--;
-			}
-		}
+		drm_free(vbl_sig, sizeof(*vbl_sig),
+			 DRM_MEM_DRIVER);
+		atomic_dec(&dev->vbl_signal_pending);
+		drm_vblank_put(dev, crtc);
+	    }
 	}
 
 	spin_unlock_irqrestore(&dev->vbl_lock, flags);
 }
 
-EXPORT_SYMBOL(drm_vbl_send_signals);
+/**
+ * drm_handle_vblank - handle a vblank event
+ * @dev: DRM device
+ * @crtc: where this event occurred
+ *
+ * Drivers should call this routine in their vblank interrupt handlers to
+ * update the vblank counter and send any signals that may be pending.
+ */
+void drm_handle_vblank(struct drm_device *dev, int crtc)
+{
+	atomic_inc(&dev->_vblank_count[crtc]);
+	DRM_WAKEUP(&dev->vbl_queue[crtc]);
+	drm_vbl_send_signals(dev, crtc);
+}
+EXPORT_SYMBOL(drm_handle_vblank);
 
 /**
  * Tasklet wrapper function.
diff --git a/drivers/gpu/drm/drm_memory.c b/drivers/gpu/drm/drm_memory.c
index 0177012..803bc9e 100644
--- a/drivers/gpu/drm/drm_memory.c
+++ b/drivers/gpu/drm/drm_memory.c
@@ -133,6 +133,7 @@
 {
 	return drm_agp_free_memory(handle) ? 0 : -EINVAL;
 }
+EXPORT_SYMBOL(drm_free_agp);
 
 /** Wrapper around agp_bind_memory() */
 int drm_bind_agp(DRM_AGP_MEM * handle, unsigned int start)
@@ -145,6 +146,7 @@
 {
 	return drm_agp_unbind_memory(handle);
 }
+EXPORT_SYMBOL(drm_unbind_agp);
 
 #else  /*  __OS_HAS_AGP  */
 static inline void *agp_remap(unsigned long offset, unsigned long size,
diff --git a/drivers/gpu/drm/drm_mm.c b/drivers/gpu/drm/drm_mm.c
index dcff9e9..217ad7d 100644
--- a/drivers/gpu/drm/drm_mm.c
+++ b/drivers/gpu/drm/drm_mm.c
@@ -169,6 +169,7 @@
 
 	return child;
 }
+EXPORT_SYMBOL(drm_mm_get_block);
 
 /*
  * Put a block. Merge with the previous and / or next block if they are free.
@@ -217,6 +218,7 @@
 		drm_free(cur, sizeof(*cur), DRM_MEM_MM);
 	}
 }
+EXPORT_SYMBOL(drm_mm_put_block);
 
 struct drm_mm_node *drm_mm_search_free(const struct drm_mm * mm,
 				  unsigned long size,
@@ -265,6 +267,7 @@
 
 	return (head->next->next == head);
 }
+EXPORT_SYMBOL(drm_mm_search_free);
 
 int drm_mm_init(struct drm_mm * mm, unsigned long start, unsigned long size)
 {
@@ -273,7 +276,7 @@
 
 	return drm_mm_create_tail_node(mm, start, size);
 }
-
+EXPORT_SYMBOL(drm_mm_init);
 
 void drm_mm_takedown(struct drm_mm * mm)
 {
diff --git a/drivers/gpu/drm/drm_proc.c b/drivers/gpu/drm/drm_proc.c
index 93b1e04..d490db4 100644
--- a/drivers/gpu/drm/drm_proc.c
+++ b/drivers/gpu/drm/drm_proc.c
@@ -49,6 +49,10 @@
 			   int request, int *eof, void *data);
 static int drm_bufs_info(char *buf, char **start, off_t offset,
 			 int request, int *eof, void *data);
+static int drm_gem_name_info(char *buf, char **start, off_t offset,
+			     int request, int *eof, void *data);
+static int drm_gem_object_info(char *buf, char **start, off_t offset,
+			       int request, int *eof, void *data);
 #if DRM_DEBUG_CODE
 static int drm_vma_info(char *buf, char **start, off_t offset,
 			int request, int *eof, void *data);
@@ -60,13 +64,16 @@
 static struct drm_proc_list {
 	const char *name;	/**< file name */
 	int (*f) (char *, char **, off_t, int, int *, void *);		/**< proc callback*/
+	u32 driver_features; /**< Required driver features for this entry */
 } drm_proc_list[] = {
-	{"name", drm_name_info},
-	{"mem", drm_mem_info},
-	{"vm", drm_vm_info},
-	{"clients", drm_clients_info},
-	{"queues", drm_queues_info},
-	{"bufs", drm_bufs_info},
+	{"name", drm_name_info, 0},
+	{"mem", drm_mem_info, 0},
+	{"vm", drm_vm_info, 0},
+	{"clients", drm_clients_info, 0},
+	{"queues", drm_queues_info, 0},
+	{"bufs", drm_bufs_info, 0},
+	{"gem_names", drm_gem_name_info, DRIVER_GEM},
+	{"gem_objects", drm_gem_object_info, DRIVER_GEM},
 #if DRM_DEBUG_CODE
 	{"vma", drm_vma_info},
 #endif
@@ -90,8 +97,9 @@
 int drm_proc_init(struct drm_minor *minor, int minor_id,
 		  struct proc_dir_entry *root)
 {
+	struct drm_device *dev = minor->dev;
 	struct proc_dir_entry *ent;
-	int i, j;
+	int i, j, ret;
 	char name[64];
 
 	sprintf(name, "%d", minor_id);
@@ -102,23 +110,42 @@
 	}
 
 	for (i = 0; i < DRM_PROC_ENTRIES; i++) {
+		u32 features = drm_proc_list[i].driver_features;
+
+		if (features != 0 &&
+		    (dev->driver->driver_features & features) != features)
+			continue;
+
 		ent = create_proc_entry(drm_proc_list[i].name,
 					S_IFREG | S_IRUGO, minor->dev_root);
 		if (!ent) {
 			DRM_ERROR("Cannot create /proc/dri/%s/%s\n",
 				  name, drm_proc_list[i].name);
-			for (j = 0; j < i; j++)
-				remove_proc_entry(drm_proc_list[i].name,
-						  minor->dev_root);
-			remove_proc_entry(name, root);
-			minor->dev_root = NULL;
-			return -1;
+			ret = -1;
+			goto fail;
 		}
 		ent->read_proc = drm_proc_list[i].f;
 		ent->data = minor;
 	}
 
+	if (dev->driver->proc_init) {
+		ret = dev->driver->proc_init(minor);
+		if (ret) {
+			DRM_ERROR("DRM: Driver failed to initialize "
+				  "/proc/dri.\n");
+			goto fail;
+		}
+	}
+
 	return 0;
+ fail:
+
+	for (j = 0; j < i; j++)
+		remove_proc_entry(drm_proc_list[i].name,
+				  minor->dev_root);
+	remove_proc_entry(name, root);
+	minor->dev_root = NULL;
+	return ret;
 }
 
 /**
@@ -133,12 +160,16 @@
  */
 int drm_proc_cleanup(struct drm_minor *minor, struct proc_dir_entry *root)
 {
+	struct drm_device *dev = minor->dev;
 	int i;
 	char name[64];
 
 	if (!root || !minor->dev_root)
 		return 0;
 
+	if (dev->driver->proc_cleanup)
+		dev->driver->proc_cleanup(minor);
+
 	for (i = 0; i < DRM_PROC_ENTRIES; i++)
 		remove_proc_entry(drm_proc_list[i].name, minor->dev_root);
 	sprintf(name, "%d", minor->index);
@@ -480,6 +511,84 @@
 	return ret;
 }
 
+struct drm_gem_name_info_data {
+       int                     len;
+       char                    *buf;
+       int                     eof;
+};
+
+static int drm_gem_one_name_info(int id, void *ptr, void *data)
+{
+	struct drm_gem_object *obj = ptr;
+	struct drm_gem_name_info_data   *nid = data;
+
+	DRM_INFO("name %d size %d\n", obj->name, obj->size);
+	if (nid->eof)
+		return 0;
+
+	nid->len += sprintf(&nid->buf[nid->len],
+			    "%6d%9d%8d%9d\n",
+			    obj->name, obj->size,
+			    atomic_read(&obj->handlecount.refcount),
+			    atomic_read(&obj->refcount.refcount));
+	if (nid->len > DRM_PROC_LIMIT) {
+		nid->eof = 1;
+		return 0;
+	}
+	return 0;
+}
+
+static int drm_gem_name_info(char *buf, char **start, off_t offset,
+			     int request, int *eof, void *data)
+{
+	struct drm_minor *minor = (struct drm_minor *) data;
+	struct drm_device *dev = minor->dev;
+	struct drm_gem_name_info_data nid;
+
+	if (offset > DRM_PROC_LIMIT) {
+		*eof = 1;
+		return 0;
+	}
+
+	nid.len = sprintf(buf, "  name     size handles refcount\n");
+	nid.buf = buf;
+	nid.eof = 0;
+	idr_for_each(&dev->object_name_idr, drm_gem_one_name_info, &nid);
+
+	*start = &buf[offset];
+	*eof = 0;
+	if (nid.len > request + offset)
+		return request;
+	*eof = 1;
+	return nid.len - offset;
+}
+
+static int drm_gem_object_info(char *buf, char **start, off_t offset,
+			       int request, int *eof, void *data)
+{
+	struct drm_minor *minor = (struct drm_minor *) data;
+	struct drm_device *dev = minor->dev;
+	int len = 0;
+
+	if (offset > DRM_PROC_LIMIT) {
+		*eof = 1;
+		return 0;
+	}
+
+	*start = &buf[offset];
+	*eof = 0;
+	DRM_PROC_PRINT("%d objects\n", atomic_read(&dev->object_count));
+	DRM_PROC_PRINT("%d object bytes\n", atomic_read(&dev->object_memory));
+	DRM_PROC_PRINT("%d pinned\n", atomic_read(&dev->pin_count));
+	DRM_PROC_PRINT("%d pin bytes\n", atomic_read(&dev->pin_memory));
+	DRM_PROC_PRINT("%d gtt bytes\n", atomic_read(&dev->gtt_memory));
+	DRM_PROC_PRINT("%d gtt total\n", dev->gtt_total);
+	if (len > request + offset)
+		return request;
+	*eof = 1;
+	return len - offset;
+}
+
 #if DRM_DEBUG_CODE
 
 static int drm__vma_info(char *buf, char **start, off_t offset, int request,
diff --git a/drivers/gpu/drm/drm_stub.c b/drivers/gpu/drm/drm_stub.c
index c2f584f..141e330 100644
--- a/drivers/gpu/drm/drm_stub.c
+++ b/drivers/gpu/drm/drm_stub.c
@@ -107,7 +107,6 @@
 #ifdef __alpha__
 	dev->hose = pdev->sysdata;
 #endif
-	dev->irq = pdev->irq;
 
 	if (drm_ht_create(&dev->map_hash, 12)) {
 		return -ENOMEM;
@@ -152,6 +151,15 @@
 		goto error_out_unreg;
 	}
 
+	if (driver->driver_features & DRIVER_GEM) {
+		retcode = drm_gem_init(dev);
+		if (retcode) {
+			DRM_ERROR("Cannot initialize graphics execution "
+				  "manager (GEM)\n");
+			goto error_out_unreg;
+		}
+	}
+
 	return 0;
 
       error_out_unreg:
@@ -317,6 +325,7 @@
 int drm_put_minor(struct drm_minor **minor_p)
 {
 	struct drm_minor *minor = *minor_p;
+
 	DRM_DEBUG("release secondary minor %d\n", minor->index);
 
 	if (minor->type == DRM_MINOR_LEGACY)
diff --git a/drivers/gpu/drm/drm_sysfs.c b/drivers/gpu/drm/drm_sysfs.c
index af211a0..1611b9b 100644
--- a/drivers/gpu/drm/drm_sysfs.c
+++ b/drivers/gpu/drm/drm_sysfs.c
@@ -184,7 +184,7 @@
 err_out_files:
 	if (i > 0)
 		for (j = 0; j < i; j++)
-			device_remove_file(&minor->kdev, &device_attrs[i]);
+			device_remove_file(&minor->kdev, &device_attrs[j]);
 	device_unregister(&minor->kdev);
 err_out:
 
diff --git a/drivers/gpu/drm/i915/Makefile b/drivers/gpu/drm/i915/Makefile
index a9e6046..5ba78e4 100644
--- a/drivers/gpu/drm/i915/Makefile
+++ b/drivers/gpu/drm/i915/Makefile
@@ -3,7 +3,12 @@
 # Direct Rendering Infrastructure (DRI) in XFree86 4.1.0 and higher.
 
 ccflags-y := -Iinclude/drm
-i915-y := i915_drv.o i915_dma.o i915_irq.o i915_mem.o
+i915-y := i915_drv.o i915_dma.o i915_irq.o i915_mem.o i915_opregion.o \
+          i915_suspend.o \
+	  i915_gem.o \
+	  i915_gem_debug.o \
+	  i915_gem_proc.o \
+	  i915_gem_tiling.o
 
 i915-$(CONFIG_COMPAT)   += i915_ioc32.o
 
diff --git a/drivers/gpu/drm/i915/i915_dma.c b/drivers/gpu/drm/i915/i915_dma.c
index 9ac4720..db34780 100644
--- a/drivers/gpu/drm/i915/i915_dma.c
+++ b/drivers/gpu/drm/i915/i915_dma.c
@@ -40,40 +40,96 @@
 {
 	drm_i915_private_t *dev_priv = dev->dev_private;
 	drm_i915_ring_buffer_t *ring = &(dev_priv->ring);
-	u32 last_head = I915_READ(LP_RING + RING_HEAD) & HEAD_ADDR;
+	u32 acthd_reg = IS_I965G(dev) ? ACTHD_I965 : ACTHD;
+	u32 last_acthd = I915_READ(acthd_reg);
+	u32 acthd;
+	u32 last_head = I915_READ(PRB0_HEAD) & HEAD_ADDR;
 	int i;
 
-	for (i = 0; i < 10000; i++) {
-		ring->head = I915_READ(LP_RING + RING_HEAD) & HEAD_ADDR;
+	for (i = 0; i < 100000; i++) {
+		ring->head = I915_READ(PRB0_HEAD) & HEAD_ADDR;
+		acthd = I915_READ(acthd_reg);
 		ring->space = ring->head - (ring->tail + 8);
 		if (ring->space < 0)
 			ring->space += ring->Size;
 		if (ring->space >= n)
 			return 0;
 
-		dev_priv->sarea_priv->perf_boxes |= I915_BOX_WAIT;
+		if (dev_priv->sarea_priv)
+			dev_priv->sarea_priv->perf_boxes |= I915_BOX_WAIT;
 
 		if (ring->head != last_head)
 			i = 0;
+		if (acthd != last_acthd)
+			i = 0;
 
 		last_head = ring->head;
+		last_acthd = acthd;
+		msleep_interruptible(10);
+
 	}
 
 	return -EBUSY;
 }
 
+/**
+ * Sets up the hardware status page for devices that need a physical address
+ * in the register.
+ */
+static int i915_init_phys_hws(struct drm_device *dev)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	/* Program Hardware Status Page */
+	dev_priv->status_page_dmah =
+		drm_pci_alloc(dev, PAGE_SIZE, PAGE_SIZE, 0xffffffff);
+
+	if (!dev_priv->status_page_dmah) {
+		DRM_ERROR("Can not allocate hardware status page\n");
+		return -ENOMEM;
+	}
+	dev_priv->hw_status_page = dev_priv->status_page_dmah->vaddr;
+	dev_priv->dma_status_page = dev_priv->status_page_dmah->busaddr;
+
+	memset(dev_priv->hw_status_page, 0, PAGE_SIZE);
+
+	I915_WRITE(HWS_PGA, dev_priv->dma_status_page);
+	DRM_DEBUG("Enabled hardware status page\n");
+	return 0;
+}
+
+/**
+ * Frees the hardware status page, whether it's a physical address or a virtual
+ * address set up by the X Server.
+ */
+static void i915_free_hws(struct drm_device *dev)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	if (dev_priv->status_page_dmah) {
+		drm_pci_free(dev, dev_priv->status_page_dmah);
+		dev_priv->status_page_dmah = NULL;
+	}
+
+	if (dev_priv->status_gfx_addr) {
+		dev_priv->status_gfx_addr = 0;
+		drm_core_ioremapfree(&dev_priv->hws_map, dev);
+	}
+
+	/* Need to rewrite hardware status page */
+	I915_WRITE(HWS_PGA, 0x1ffff000);
+}
+
 void i915_kernel_lost_context(struct drm_device * dev)
 {
 	drm_i915_private_t *dev_priv = dev->dev_private;
 	drm_i915_ring_buffer_t *ring = &(dev_priv->ring);
 
-	ring->head = I915_READ(LP_RING + RING_HEAD) & HEAD_ADDR;
-	ring->tail = I915_READ(LP_RING + RING_TAIL) & TAIL_ADDR;
+	ring->head = I915_READ(PRB0_HEAD) & HEAD_ADDR;
+	ring->tail = I915_READ(PRB0_TAIL) & TAIL_ADDR;
 	ring->space = ring->head - (ring->tail + 8);
 	if (ring->space < 0)
 		ring->space += ring->Size;
 
-	if (ring->head == ring->tail)
+	if (ring->head == ring->tail && dev_priv->sarea_priv)
 		dev_priv->sarea_priv->perf_boxes |= I915_BOX_RING_EMPTY;
 }
 
@@ -84,28 +140,19 @@
 	 * may not have been called from userspace and after dev_private
 	 * is freed, it's too late.
 	 */
-	if (dev->irq)
+	if (dev->irq_enabled)
 		drm_irq_uninstall(dev);
 
 	if (dev_priv->ring.virtual_start) {
 		drm_core_ioremapfree(&dev_priv->ring.map, dev);
-		dev_priv->ring.virtual_start = 0;
-		dev_priv->ring.map.handle = 0;
+		dev_priv->ring.virtual_start = NULL;
+		dev_priv->ring.map.handle = NULL;
 		dev_priv->ring.map.size = 0;
 	}
 
-	if (dev_priv->status_page_dmah) {
-		drm_pci_free(dev, dev_priv->status_page_dmah);
-		dev_priv->status_page_dmah = NULL;
-		/* Need to rewrite hardware status page */
-		I915_WRITE(0x02080, 0x1ffff000);
-	}
-
-	if (dev_priv->status_gfx_addr) {
-		dev_priv->status_gfx_addr = 0;
-		drm_core_ioremapfree(&dev_priv->hws_map, dev);
-		I915_WRITE(0x2080, 0x1ffff000);
-	}
+	/* Clear the HWS virtual address at teardown */
+	if (I915_NEED_GFX_HWS(dev))
+		i915_free_hws(dev);
 
 	return 0;
 }
@@ -121,34 +168,34 @@
 		return -EINVAL;
 	}
 
-	dev_priv->mmio_map = drm_core_findmap(dev, init->mmio_offset);
-	if (!dev_priv->mmio_map) {
-		i915_dma_cleanup(dev);
-		DRM_ERROR("can not find mmio map!\n");
-		return -EINVAL;
-	}
-
 	dev_priv->sarea_priv = (drm_i915_sarea_t *)
 	    ((u8 *) dev_priv->sarea->handle + init->sarea_priv_offset);
 
-	dev_priv->ring.Start = init->ring_start;
-	dev_priv->ring.End = init->ring_end;
-	dev_priv->ring.Size = init->ring_size;
-	dev_priv->ring.tail_mask = dev_priv->ring.Size - 1;
+	if (init->ring_size != 0) {
+		if (dev_priv->ring.ring_obj != NULL) {
+			i915_dma_cleanup(dev);
+			DRM_ERROR("Client tried to initialize ringbuffer in "
+				  "GEM mode\n");
+			return -EINVAL;
+		}
 
-	dev_priv->ring.map.offset = init->ring_start;
-	dev_priv->ring.map.size = init->ring_size;
-	dev_priv->ring.map.type = 0;
-	dev_priv->ring.map.flags = 0;
-	dev_priv->ring.map.mtrr = 0;
+		dev_priv->ring.Size = init->ring_size;
+		dev_priv->ring.tail_mask = dev_priv->ring.Size - 1;
 
-	drm_core_ioremap(&dev_priv->ring.map, dev);
+		dev_priv->ring.map.offset = init->ring_start;
+		dev_priv->ring.map.size = init->ring_size;
+		dev_priv->ring.map.type = 0;
+		dev_priv->ring.map.flags = 0;
+		dev_priv->ring.map.mtrr = 0;
 
-	if (dev_priv->ring.map.handle == NULL) {
-		i915_dma_cleanup(dev);
-		DRM_ERROR("can not ioremap virtual address for"
-			  " ring buffer\n");
-		return -ENOMEM;
+		drm_core_ioremap(&dev_priv->ring.map, dev);
+
+		if (dev_priv->ring.map.handle == NULL) {
+			i915_dma_cleanup(dev);
+			DRM_ERROR("can not ioremap virtual address for"
+				  " ring buffer\n");
+			return -ENOMEM;
+		}
 	}
 
 	dev_priv->ring.virtual_start = dev_priv->ring.map.handle;
@@ -159,34 +206,10 @@
 	dev_priv->current_page = 0;
 	dev_priv->sarea_priv->pf_current_page = dev_priv->current_page;
 
-	/* We are using separate values as placeholders for mechanisms for
-	 * private backbuffer/depthbuffer usage.
-	 */
-	dev_priv->use_mi_batchbuffer_start = 0;
-	if (IS_I965G(dev)) /* 965 doesn't support older method */
-		dev_priv->use_mi_batchbuffer_start = 1;
-
 	/* Allow hardware batchbuffers unless told otherwise.
 	 */
 	dev_priv->allow_batchbuffer = 1;
 
-	/* Program Hardware Status Page */
-	if (!I915_NEED_GFX_HWS(dev)) {
-		dev_priv->status_page_dmah =
-			drm_pci_alloc(dev, PAGE_SIZE, PAGE_SIZE, 0xffffffff);
-
-		if (!dev_priv->status_page_dmah) {
-			i915_dma_cleanup(dev);
-			DRM_ERROR("Can not allocate hardware status page\n");
-			return -ENOMEM;
-		}
-		dev_priv->hw_status_page = dev_priv->status_page_dmah->vaddr;
-		dev_priv->dma_status_page = dev_priv->status_page_dmah->busaddr;
-
-		memset(dev_priv->hw_status_page, 0, PAGE_SIZE);
-		I915_WRITE(0x02080, dev_priv->dma_status_page);
-	}
-	DRM_DEBUG("Enabled hardware status page\n");
 	return 0;
 }
 
@@ -201,11 +224,6 @@
 		return -EINVAL;
 	}
 
-	if (!dev_priv->mmio_map) {
-		DRM_ERROR("can not find mmio map!\n");
-		return -EINVAL;
-	}
-
 	if (dev_priv->ring.map.handle == NULL) {
 		DRM_ERROR("can not ioremap virtual address for"
 			  " ring buffer\n");
@@ -220,9 +238,9 @@
 	DRM_DEBUG("hw status page @ %p\n", dev_priv->hw_status_page);
 
 	if (dev_priv->status_gfx_addr != 0)
-		I915_WRITE(0x02080, dev_priv->status_gfx_addr);
+		I915_WRITE(HWS_PGA, dev_priv->status_gfx_addr);
 	else
-		I915_WRITE(0x02080, dev_priv->dma_status_page);
+		I915_WRITE(HWS_PGA, dev_priv->dma_status_page);
 	DRM_DEBUG("Enabled hardware status page\n");
 
 	return 0;
@@ -367,9 +385,10 @@
 	return 0;
 }
 
-static int i915_emit_box(struct drm_device * dev,
-			 struct drm_clip_rect __user * boxes,
-			 int i, int DR1, int DR4)
+int
+i915_emit_box(struct drm_device *dev,
+	      struct drm_clip_rect __user *boxes,
+	      int i, int DR1, int DR4)
 {
 	drm_i915_private_t *dev_priv = dev->dev_private;
 	struct drm_clip_rect box;
@@ -415,14 +434,15 @@
 	drm_i915_private_t *dev_priv = dev->dev_private;
 	RING_LOCALS;
 
-	dev_priv->sarea_priv->last_enqueue = ++dev_priv->counter;
-
+	dev_priv->counter++;
 	if (dev_priv->counter > 0x7FFFFFFFUL)
-		dev_priv->sarea_priv->last_enqueue = dev_priv->counter = 1;
+		dev_priv->counter = 0;
+	if (dev_priv->sarea_priv)
+		dev_priv->sarea_priv->last_enqueue = dev_priv->counter;
 
 	BEGIN_LP_RING(4);
-	OUT_RING(CMD_STORE_DWORD_IDX);
-	OUT_RING(20);
+	OUT_RING(MI_STORE_DWORD_INDEX);
+	OUT_RING(5 << MI_STORE_DWORD_INDEX_SHIFT);
 	OUT_RING(dev_priv->counter);
 	OUT_RING(0);
 	ADVANCE_LP_RING();
@@ -486,7 +506,7 @@
 				return ret;
 		}
 
-		if (dev_priv->use_mi_batchbuffer_start) {
+		if (!IS_I830(dev) && !IS_845G(dev)) {
 			BEGIN_LP_RING(2);
 			if (IS_I965G(dev)) {
 				OUT_RING(MI_BATCH_BUFFER_START | (2 << 6) | MI_BATCH_NON_SECURE_I965);
@@ -516,6 +536,9 @@
 	drm_i915_private_t *dev_priv = dev->dev_private;
 	RING_LOCALS;
 
+	if (!dev_priv->sarea_priv)
+		return -EINVAL;
+
 	DRM_DEBUG("%s: page=%d pfCurrentPage=%d\n",
 		  __func__,
 		  dev_priv->current_page,
@@ -524,7 +547,7 @@
 	i915_kernel_lost_context(dev);
 
 	BEGIN_LP_RING(2);
-	OUT_RING(INST_PARSER_CLIENT | INST_OP_FLUSH | INST_FLUSH_MAP_CACHE);
+	OUT_RING(MI_FLUSH | MI_READ_FLUSH);
 	OUT_RING(0);
 	ADVANCE_LP_RING();
 
@@ -549,8 +572,8 @@
 	dev_priv->sarea_priv->last_enqueue = dev_priv->counter++;
 
 	BEGIN_LP_RING(4);
-	OUT_RING(CMD_STORE_DWORD_IDX);
-	OUT_RING(20);
+	OUT_RING(MI_STORE_DWORD_INDEX);
+	OUT_RING(5 << MI_STORE_DWORD_INDEX_SHIFT);
 	OUT_RING(dev_priv->counter);
 	OUT_RING(0);
 	ADVANCE_LP_RING();
@@ -570,9 +593,15 @@
 static int i915_flush_ioctl(struct drm_device *dev, void *data,
 			    struct drm_file *file_priv)
 {
-	LOCK_TEST_WITH_RETURN(dev, file_priv);
+	int ret;
 
-	return i915_quiescent(dev);
+	RING_LOCK_TEST_WITH_RETURN(dev, file_priv);
+
+	mutex_lock(&dev->struct_mutex);
+	ret = i915_quiescent(dev);
+	mutex_unlock(&dev->struct_mutex);
+
+	return ret;
 }
 
 static int i915_batchbuffer(struct drm_device *dev, void *data,
@@ -593,16 +622,19 @@
 	DRM_DEBUG("i915 batchbuffer, start %x used %d cliprects %d\n",
 		  batch->start, batch->used, batch->num_cliprects);
 
-	LOCK_TEST_WITH_RETURN(dev, file_priv);
+	RING_LOCK_TEST_WITH_RETURN(dev, file_priv);
 
 	if (batch->num_cliprects && DRM_VERIFYAREA_READ(batch->cliprects,
 						       batch->num_cliprects *
 						       sizeof(struct drm_clip_rect)))
 		return -EFAULT;
 
+	mutex_lock(&dev->struct_mutex);
 	ret = i915_dispatch_batchbuffer(dev, batch);
+	mutex_unlock(&dev->struct_mutex);
 
-	sarea_priv->last_dispatch = (int)hw_status[5];
+	if (sarea_priv)
+		sarea_priv->last_dispatch = (int)hw_status[5];
 	return ret;
 }
 
@@ -619,7 +651,7 @@
 	DRM_DEBUG("i915 cmdbuffer, buf %p sz %d cliprects %d\n",
 		  cmdbuf->buf, cmdbuf->sz, cmdbuf->num_cliprects);
 
-	LOCK_TEST_WITH_RETURN(dev, file_priv);
+	RING_LOCK_TEST_WITH_RETURN(dev, file_priv);
 
 	if (cmdbuf->num_cliprects &&
 	    DRM_VERIFYAREA_READ(cmdbuf->cliprects,
@@ -629,24 +661,33 @@
 		return -EFAULT;
 	}
 
+	mutex_lock(&dev->struct_mutex);
 	ret = i915_dispatch_cmdbuffer(dev, cmdbuf);
+	mutex_unlock(&dev->struct_mutex);
 	if (ret) {
 		DRM_ERROR("i915_dispatch_cmdbuffer failed\n");
 		return ret;
 	}
 
-	sarea_priv->last_dispatch = (int)hw_status[5];
+	if (sarea_priv)
+		sarea_priv->last_dispatch = (int)hw_status[5];
 	return 0;
 }
 
 static int i915_flip_bufs(struct drm_device *dev, void *data,
 			  struct drm_file *file_priv)
 {
+	int ret;
+
 	DRM_DEBUG("%s\n", __func__);
 
-	LOCK_TEST_WITH_RETURN(dev, file_priv);
+	RING_LOCK_TEST_WITH_RETURN(dev, file_priv);
 
-	return i915_dispatch_flip(dev);
+	mutex_lock(&dev->struct_mutex);
+	ret = i915_dispatch_flip(dev);
+	mutex_unlock(&dev->struct_mutex);
+
+	return ret;
 }
 
 static int i915_getparam(struct drm_device *dev, void *data,
@@ -663,7 +704,7 @@
 
 	switch (param->param) {
 	case I915_PARAM_IRQ_ACTIVE:
-		value = dev->irq ? 1 : 0;
+		value = dev->pdev->irq ? 1 : 0;
 		break;
 	case I915_PARAM_ALLOW_BATCHBUFFER:
 		value = dev_priv->allow_batchbuffer ? 1 : 0;
@@ -671,6 +712,12 @@
 	case I915_PARAM_LAST_DISPATCH:
 		value = READ_BREADCRUMB(dev_priv);
 		break;
+	case I915_PARAM_CHIPSET_ID:
+		value = dev->pci_device;
+		break;
+	case I915_PARAM_HAS_GEM:
+		value = 1;
+		break;
 	default:
 		DRM_ERROR("Unknown parameter %d\n", param->param);
 		return -EINVAL;
@@ -697,8 +744,6 @@
 
 	switch (param->param) {
 	case I915_SETPARAM_USE_MI_BATCHBUFFER_START:
-		if (!IS_I965G(dev))
-			dev_priv->use_mi_batchbuffer_start = param->value;
 		break;
 	case I915_SETPARAM_TEX_LRU_LOG_GRANULARITY:
 		dev_priv->tex_lru_log_granularity = param->value;
@@ -749,8 +794,8 @@
 	dev_priv->hw_status_page = dev_priv->hws_map.handle;
 
 	memset(dev_priv->hw_status_page, 0, PAGE_SIZE);
-	I915_WRITE(0x02080, dev_priv->status_gfx_addr);
-	DRM_DEBUG("load hws 0x2080 with gfx mem 0x%x\n",
+	I915_WRITE(HWS_PGA, dev_priv->status_gfx_addr);
+	DRM_DEBUG("load hws HWS_PGA with gfx mem 0x%x\n",
 			dev_priv->status_gfx_addr);
 	DRM_DEBUG("load hws at %p\n", dev_priv->hw_status_page);
 	return 0;
@@ -776,14 +821,38 @@
 	memset(dev_priv, 0, sizeof(drm_i915_private_t));
 
 	dev->dev_private = (void *)dev_priv;
+	dev_priv->dev = dev;
 
 	/* Add register map (needed for suspend/resume) */
 	base = drm_get_resource_start(dev, mmio_bar);
 	size = drm_get_resource_len(dev, mmio_bar);
 
-	ret = drm_addmap(dev, base, size, _DRM_REGISTERS,
-			 _DRM_KERNEL | _DRM_DRIVER,
-			 &dev_priv->mmio_map);
+	dev_priv->regs = ioremap(base, size);
+
+	i915_gem_load(dev);
+
+	/* Init HWS */
+	if (!I915_NEED_GFX_HWS(dev)) {
+		ret = i915_init_phys_hws(dev);
+		if (ret != 0)
+			return ret;
+	}
+
+	/* On the 945G/GM, the chipset reports the MSI capability on the
+	 * integrated graphics even though the support isn't actually there
+	 * according to the published specs.  It doesn't appear to function
+	 * correctly in testing on 945G.
+	 * This may be a side effect of MSI having been made available for PEG
+	 * and the registers being closely associated.
+	 */
+	if (!IS_I945G(dev) && !IS_I945GM(dev))
+		if (pci_enable_msi(dev->pdev))
+			DRM_ERROR("failed to enable MSI\n");
+
+	intel_opregion_init(dev);
+
+	spin_lock_init(&dev_priv->user_irq_lock);
+
 	return ret;
 }
 
@@ -791,8 +860,15 @@
 {
 	struct drm_i915_private *dev_priv = dev->dev_private;
 
-	if (dev_priv->mmio_map)
-		drm_rmmap(dev, dev_priv->mmio_map);
+	if (dev->pdev->msi_enabled)
+		pci_disable_msi(dev->pdev);
+
+	i915_free_hws(dev);
+
+	if (dev_priv->regs != NULL)
+		iounmap(dev_priv->regs);
+
+	intel_opregion_free(dev);
 
 	drm_free(dev->dev_private, sizeof(drm_i915_private_t),
 		 DRM_MEM_DRIVER);
@@ -800,6 +876,25 @@
 	return 0;
 }
 
+int i915_driver_open(struct drm_device *dev, struct drm_file *file_priv)
+{
+	struct drm_i915_file_private *i915_file_priv;
+
+	DRM_DEBUG("\n");
+	i915_file_priv = (struct drm_i915_file_private *)
+	    drm_alloc(sizeof(*i915_file_priv), DRM_MEM_FILES);
+
+	if (!i915_file_priv)
+		return -ENOMEM;
+
+	file_priv->driver_priv = i915_file_priv;
+
+	i915_file_priv->mm.last_gem_seqno = 0;
+	i915_file_priv->mm.last_gem_throttle_seqno = 0;
+
+	return 0;
+}
+
 void i915_driver_lastclose(struct drm_device * dev)
 {
 	drm_i915_private_t *dev_priv = dev->dev_private;
@@ -807,6 +902,8 @@
 	if (!dev_priv)
 		return;
 
+	i915_gem_lastclose(dev);
+
 	if (dev_priv->agp_heap)
 		i915_mem_takedown(&(dev_priv->agp_heap));
 
@@ -819,6 +916,13 @@
 	i915_mem_release(dev, file_priv, dev_priv->agp_heap);
 }
 
+void i915_driver_postclose(struct drm_device *dev, struct drm_file *file_priv)
+{
+	struct drm_i915_file_private *i915_file_priv = file_priv->driver_priv;
+
+	drm_free(i915_file_priv, sizeof(*i915_file_priv), DRM_MEM_FILES);
+}
+
 struct drm_ioctl_desc i915_ioctls[] = {
 	DRM_IOCTL_DEF(DRM_I915_INIT, i915_dma_init, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
 	DRM_IOCTL_DEF(DRM_I915_FLUSH, i915_flush_ioctl, DRM_AUTH),
@@ -836,7 +940,23 @@
 	DRM_IOCTL_DEF(DRM_I915_SET_VBLANK_PIPE,  i915_vblank_pipe_set, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY ),
 	DRM_IOCTL_DEF(DRM_I915_GET_VBLANK_PIPE,  i915_vblank_pipe_get, DRM_AUTH ),
 	DRM_IOCTL_DEF(DRM_I915_VBLANK_SWAP, i915_vblank_swap, DRM_AUTH),
-	DRM_IOCTL_DEF(DRM_I915_HWS_ADDR, i915_set_status_page, DRM_AUTH),
+	DRM_IOCTL_DEF(DRM_I915_HWS_ADDR, i915_set_status_page, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
+	DRM_IOCTL_DEF(DRM_I915_GEM_INIT, i915_gem_init_ioctl, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
+	DRM_IOCTL_DEF(DRM_I915_GEM_EXECBUFFER, i915_gem_execbuffer, DRM_AUTH),
+	DRM_IOCTL_DEF(DRM_I915_GEM_PIN, i915_gem_pin_ioctl, DRM_AUTH|DRM_ROOT_ONLY),
+	DRM_IOCTL_DEF(DRM_I915_GEM_UNPIN, i915_gem_unpin_ioctl, DRM_AUTH|DRM_ROOT_ONLY),
+	DRM_IOCTL_DEF(DRM_I915_GEM_BUSY, i915_gem_busy_ioctl, DRM_AUTH),
+	DRM_IOCTL_DEF(DRM_I915_GEM_THROTTLE, i915_gem_throttle_ioctl, DRM_AUTH),
+	DRM_IOCTL_DEF(DRM_I915_GEM_ENTERVT, i915_gem_entervt_ioctl, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
+	DRM_IOCTL_DEF(DRM_I915_GEM_LEAVEVT, i915_gem_leavevt_ioctl, DRM_AUTH|DRM_MASTER|DRM_ROOT_ONLY),
+	DRM_IOCTL_DEF(DRM_I915_GEM_CREATE, i915_gem_create_ioctl, 0),
+	DRM_IOCTL_DEF(DRM_I915_GEM_PREAD, i915_gem_pread_ioctl, 0),
+	DRM_IOCTL_DEF(DRM_I915_GEM_PWRITE, i915_gem_pwrite_ioctl, 0),
+	DRM_IOCTL_DEF(DRM_I915_GEM_MMAP, i915_gem_mmap_ioctl, 0),
+	DRM_IOCTL_DEF(DRM_I915_GEM_SET_DOMAIN, i915_gem_set_domain_ioctl, 0),
+	DRM_IOCTL_DEF(DRM_I915_GEM_SW_FINISH, i915_gem_sw_finish_ioctl, 0),
+	DRM_IOCTL_DEF(DRM_I915_GEM_SET_TILING, i915_gem_set_tiling, 0),
+	DRM_IOCTL_DEF(DRM_I915_GEM_GET_TILING, i915_gem_get_tiling, 0),
 };
 
 int i915_max_ioctl = DRM_ARRAY_SIZE(i915_ioctls);
diff --git a/drivers/gpu/drm/i915/i915_drv.c b/drivers/gpu/drm/i915/i915_drv.c
index 93aed1c..a80ead2 100644
--- a/drivers/gpu/drm/i915/i915_drv.c
+++ b/drivers/gpu/drm/i915/i915_drv.c
@@ -38,211 +38,9 @@
 	i915_PCI_IDS
 };
 
-enum pipe {
-    PIPE_A = 0,
-    PIPE_B,
-};
-
-static bool i915_pipe_enabled(struct drm_device *dev, enum pipe pipe)
-{
-	struct drm_i915_private *dev_priv = dev->dev_private;
-
-	if (pipe == PIPE_A)
-		return (I915_READ(DPLL_A) & DPLL_VCO_ENABLE);
-	else
-		return (I915_READ(DPLL_B) & DPLL_VCO_ENABLE);
-}
-
-static void i915_save_palette(struct drm_device *dev, enum pipe pipe)
-{
-	struct drm_i915_private *dev_priv = dev->dev_private;
-	unsigned long reg = (pipe == PIPE_A ? PALETTE_A : PALETTE_B);
-	u32 *array;
-	int i;
-
-	if (!i915_pipe_enabled(dev, pipe))
-		return;
-
-	if (pipe == PIPE_A)
-		array = dev_priv->save_palette_a;
-	else
-		array = dev_priv->save_palette_b;
-
-	for(i = 0; i < 256; i++)
-		array[i] = I915_READ(reg + (i << 2));
-}
-
-static void i915_restore_palette(struct drm_device *dev, enum pipe pipe)
-{
-	struct drm_i915_private *dev_priv = dev->dev_private;
-	unsigned long reg = (pipe == PIPE_A ? PALETTE_A : PALETTE_B);
-	u32 *array;
-	int i;
-
-	if (!i915_pipe_enabled(dev, pipe))
-		return;
-
-	if (pipe == PIPE_A)
-		array = dev_priv->save_palette_a;
-	else
-		array = dev_priv->save_palette_b;
-
-	for(i = 0; i < 256; i++)
-		I915_WRITE(reg + (i << 2), array[i]);
-}
-
-static u8 i915_read_indexed(u16 index_port, u16 data_port, u8 reg)
-{
-	outb(reg, index_port);
-	return inb(data_port);
-}
-
-static u8 i915_read_ar(u16 st01, u8 reg, u16 palette_enable)
-{
-	inb(st01);
-	outb(palette_enable | reg, VGA_AR_INDEX);
-	return inb(VGA_AR_DATA_READ);
-}
-
-static void i915_write_ar(u8 st01, u8 reg, u8 val, u16 palette_enable)
-{
-	inb(st01);
-	outb(palette_enable | reg, VGA_AR_INDEX);
-	outb(val, VGA_AR_DATA_WRITE);
-}
-
-static void i915_write_indexed(u16 index_port, u16 data_port, u8 reg, u8 val)
-{
-	outb(reg, index_port);
-	outb(val, data_port);
-}
-
-static void i915_save_vga(struct drm_device *dev)
-{
-	struct drm_i915_private *dev_priv = dev->dev_private;
-	int i;
-	u16 cr_index, cr_data, st01;
-
-	/* VGA color palette registers */
-	dev_priv->saveDACMASK = inb(VGA_DACMASK);
-	/* DACCRX automatically increments during read */
-	outb(0, VGA_DACRX);
-	/* Read 3 bytes of color data from each index */
-	for (i = 0; i < 256 * 3; i++)
-		dev_priv->saveDACDATA[i] = inb(VGA_DACDATA);
-
-	/* MSR bits */
-	dev_priv->saveMSR = inb(VGA_MSR_READ);
-	if (dev_priv->saveMSR & VGA_MSR_CGA_MODE) {
-		cr_index = VGA_CR_INDEX_CGA;
-		cr_data = VGA_CR_DATA_CGA;
-		st01 = VGA_ST01_CGA;
-	} else {
-		cr_index = VGA_CR_INDEX_MDA;
-		cr_data = VGA_CR_DATA_MDA;
-		st01 = VGA_ST01_MDA;
-	}
-
-	/* CRT controller regs */
-	i915_write_indexed(cr_index, cr_data, 0x11,
-			   i915_read_indexed(cr_index, cr_data, 0x11) &
-			   (~0x80));
-	for (i = 0; i <= 0x24; i++)
-		dev_priv->saveCR[i] =
-			i915_read_indexed(cr_index, cr_data, i);
-	/* Make sure we don't turn off CR group 0 writes */
-	dev_priv->saveCR[0x11] &= ~0x80;
-
-	/* Attribute controller registers */
-	inb(st01);
-	dev_priv->saveAR_INDEX = inb(VGA_AR_INDEX);
-	for (i = 0; i <= 0x14; i++)
-		dev_priv->saveAR[i] = i915_read_ar(st01, i, 0);
-	inb(st01);
-	outb(dev_priv->saveAR_INDEX, VGA_AR_INDEX);
-	inb(st01);
-
-	/* Graphics controller registers */
-	for (i = 0; i < 9; i++)
-		dev_priv->saveGR[i] =
-			i915_read_indexed(VGA_GR_INDEX, VGA_GR_DATA, i);
-
-	dev_priv->saveGR[0x10] =
-		i915_read_indexed(VGA_GR_INDEX, VGA_GR_DATA, 0x10);
-	dev_priv->saveGR[0x11] =
-		i915_read_indexed(VGA_GR_INDEX, VGA_GR_DATA, 0x11);
-	dev_priv->saveGR[0x18] =
-		i915_read_indexed(VGA_GR_INDEX, VGA_GR_DATA, 0x18);
-
-	/* Sequencer registers */
-	for (i = 0; i < 8; i++)
-		dev_priv->saveSR[i] =
-			i915_read_indexed(VGA_SR_INDEX, VGA_SR_DATA, i);
-}
-
-static void i915_restore_vga(struct drm_device *dev)
-{
-	struct drm_i915_private *dev_priv = dev->dev_private;
-	int i;
-	u16 cr_index, cr_data, st01;
-
-	/* MSR bits */
-	outb(dev_priv->saveMSR, VGA_MSR_WRITE);
-	if (dev_priv->saveMSR & VGA_MSR_CGA_MODE) {
-		cr_index = VGA_CR_INDEX_CGA;
-		cr_data = VGA_CR_DATA_CGA;
-		st01 = VGA_ST01_CGA;
-	} else {
-		cr_index = VGA_CR_INDEX_MDA;
-		cr_data = VGA_CR_DATA_MDA;
-		st01 = VGA_ST01_MDA;
-	}
-
-	/* Sequencer registers, don't write SR07 */
-	for (i = 0; i < 7; i++)
-		i915_write_indexed(VGA_SR_INDEX, VGA_SR_DATA, i,
-				   dev_priv->saveSR[i]);
-
-	/* CRT controller regs */
-	/* Enable CR group 0 writes */
-	i915_write_indexed(cr_index, cr_data, 0x11, dev_priv->saveCR[0x11]);
-	for (i = 0; i <= 0x24; i++)
-		i915_write_indexed(cr_index, cr_data, i, dev_priv->saveCR[i]);
-
-	/* Graphics controller regs */
-	for (i = 0; i < 9; i++)
-		i915_write_indexed(VGA_GR_INDEX, VGA_GR_DATA, i,
-				   dev_priv->saveGR[i]);
-
-	i915_write_indexed(VGA_GR_INDEX, VGA_GR_DATA, 0x10,
-			   dev_priv->saveGR[0x10]);
-	i915_write_indexed(VGA_GR_INDEX, VGA_GR_DATA, 0x11,
-			   dev_priv->saveGR[0x11]);
-	i915_write_indexed(VGA_GR_INDEX, VGA_GR_DATA, 0x18,
-			   dev_priv->saveGR[0x18]);
-
-	/* Attribute controller registers */
-	inb(st01);
-	for (i = 0; i <= 0x14; i++)
-		i915_write_ar(st01, i, dev_priv->saveAR[i], 0);
-	inb(st01); /* switch back to index mode */
-	outb(dev_priv->saveAR_INDEX | 0x20, VGA_AR_INDEX);
-	inb(st01);
-
-	/* VGA color palette registers */
-	outb(dev_priv->saveDACMASK, VGA_DACMASK);
-	/* DACCRX automatically increments during read */
-	outb(0, VGA_DACWX);
-	/* Read 3 bytes of color data from each index */
-	for (i = 0; i < 256 * 3; i++)
-		outb(dev_priv->saveDACDATA[i], VGA_DACDATA);
-
-}
-
 static int i915_suspend(struct drm_device *dev, pm_message_t state)
 {
 	struct drm_i915_private *dev_priv = dev->dev_private;
-	int i;
 
 	if (!dev || !dev_priv) {
 		printk(KERN_ERR "dev: %p, dev_priv: %p\n", dev, dev_priv);
@@ -254,122 +52,10 @@
 		return 0;
 
 	pci_save_state(dev->pdev);
-	pci_read_config_byte(dev->pdev, LBB, &dev_priv->saveLBB);
 
-	/* Display arbitration control */
-	dev_priv->saveDSPARB = I915_READ(DSPARB);
+	i915_save_state(dev);
 
-	/* Pipe & plane A info */
-	dev_priv->savePIPEACONF = I915_READ(PIPEACONF);
-	dev_priv->savePIPEASRC = I915_READ(PIPEASRC);
-	dev_priv->saveFPA0 = I915_READ(FPA0);
-	dev_priv->saveFPA1 = I915_READ(FPA1);
-	dev_priv->saveDPLL_A = I915_READ(DPLL_A);
-	if (IS_I965G(dev))
-		dev_priv->saveDPLL_A_MD = I915_READ(DPLL_A_MD);
-	dev_priv->saveHTOTAL_A = I915_READ(HTOTAL_A);
-	dev_priv->saveHBLANK_A = I915_READ(HBLANK_A);
-	dev_priv->saveHSYNC_A = I915_READ(HSYNC_A);
-	dev_priv->saveVTOTAL_A = I915_READ(VTOTAL_A);
-	dev_priv->saveVBLANK_A = I915_READ(VBLANK_A);
-	dev_priv->saveVSYNC_A = I915_READ(VSYNC_A);
-	dev_priv->saveBCLRPAT_A = I915_READ(BCLRPAT_A);
-
-	dev_priv->saveDSPACNTR = I915_READ(DSPACNTR);
-	dev_priv->saveDSPASTRIDE = I915_READ(DSPASTRIDE);
-	dev_priv->saveDSPASIZE = I915_READ(DSPASIZE);
-	dev_priv->saveDSPAPOS = I915_READ(DSPAPOS);
-	dev_priv->saveDSPABASE = I915_READ(DSPABASE);
-	if (IS_I965G(dev)) {
-		dev_priv->saveDSPASURF = I915_READ(DSPASURF);
-		dev_priv->saveDSPATILEOFF = I915_READ(DSPATILEOFF);
-	}
-	i915_save_palette(dev, PIPE_A);
-	dev_priv->savePIPEASTAT = I915_READ(I915REG_PIPEASTAT);
-
-	/* Pipe & plane B info */
-	dev_priv->savePIPEBCONF = I915_READ(PIPEBCONF);
-	dev_priv->savePIPEBSRC = I915_READ(PIPEBSRC);
-	dev_priv->saveFPB0 = I915_READ(FPB0);
-	dev_priv->saveFPB1 = I915_READ(FPB1);
-	dev_priv->saveDPLL_B = I915_READ(DPLL_B);
-	if (IS_I965G(dev))
-		dev_priv->saveDPLL_B_MD = I915_READ(DPLL_B_MD);
-	dev_priv->saveHTOTAL_B = I915_READ(HTOTAL_B);
-	dev_priv->saveHBLANK_B = I915_READ(HBLANK_B);
-	dev_priv->saveHSYNC_B = I915_READ(HSYNC_B);
-	dev_priv->saveVTOTAL_B = I915_READ(VTOTAL_B);
-	dev_priv->saveVBLANK_B = I915_READ(VBLANK_B);
-	dev_priv->saveVSYNC_B = I915_READ(VSYNC_B);
-	dev_priv->saveBCLRPAT_A = I915_READ(BCLRPAT_A);
-
-	dev_priv->saveDSPBCNTR = I915_READ(DSPBCNTR);
-	dev_priv->saveDSPBSTRIDE = I915_READ(DSPBSTRIDE);
-	dev_priv->saveDSPBSIZE = I915_READ(DSPBSIZE);
-	dev_priv->saveDSPBPOS = I915_READ(DSPBPOS);
-	dev_priv->saveDSPBBASE = I915_READ(DSPBBASE);
-	if (IS_I965GM(dev) || IS_IGD_GM(dev)) {
-		dev_priv->saveDSPBSURF = I915_READ(DSPBSURF);
-		dev_priv->saveDSPBTILEOFF = I915_READ(DSPBTILEOFF);
-	}
-	i915_save_palette(dev, PIPE_B);
-	dev_priv->savePIPEBSTAT = I915_READ(I915REG_PIPEBSTAT);
-
-	/* CRT state */
-	dev_priv->saveADPA = I915_READ(ADPA);
-
-	/* LVDS state */
-	dev_priv->savePP_CONTROL = I915_READ(PP_CONTROL);
-	dev_priv->savePFIT_PGM_RATIOS = I915_READ(PFIT_PGM_RATIOS);
-	dev_priv->saveBLC_PWM_CTL = I915_READ(BLC_PWM_CTL);
-	if (IS_I965G(dev))
-		dev_priv->saveBLC_PWM_CTL2 = I915_READ(BLC_PWM_CTL2);
-	if (IS_MOBILE(dev) && !IS_I830(dev))
-		dev_priv->saveLVDS = I915_READ(LVDS);
-	if (!IS_I830(dev) && !IS_845G(dev))
-		dev_priv->savePFIT_CONTROL = I915_READ(PFIT_CONTROL);
-	dev_priv->saveLVDSPP_ON = I915_READ(LVDSPP_ON);
-	dev_priv->saveLVDSPP_OFF = I915_READ(LVDSPP_OFF);
-	dev_priv->savePP_CYCLE = I915_READ(PP_CYCLE);
-
-	/* FIXME: save TV & SDVO state */
-
-	/* FBC state */
-	dev_priv->saveFBC_CFB_BASE = I915_READ(FBC_CFB_BASE);
-	dev_priv->saveFBC_LL_BASE = I915_READ(FBC_LL_BASE);
-	dev_priv->saveFBC_CONTROL2 = I915_READ(FBC_CONTROL2);
-	dev_priv->saveFBC_CONTROL = I915_READ(FBC_CONTROL);
-
-	/* Interrupt state */
-	dev_priv->saveIIR = I915_READ(I915REG_INT_IDENTITY_R);
-	dev_priv->saveIER = I915_READ(I915REG_INT_ENABLE_R);
-	dev_priv->saveIMR = I915_READ(I915REG_INT_MASK_R);
-
-	/* VGA state */
-	dev_priv->saveVCLK_DIVISOR_VGA0 = I915_READ(VCLK_DIVISOR_VGA0);
-	dev_priv->saveVCLK_DIVISOR_VGA1 = I915_READ(VCLK_DIVISOR_VGA1);
-	dev_priv->saveVCLK_POST_DIV = I915_READ(VCLK_POST_DIV);
-	dev_priv->saveVGACNTRL = I915_READ(VGACNTRL);
-
-	/* Clock gating state */
-	dev_priv->saveD_STATE = I915_READ(D_STATE);
-	dev_priv->saveDSPCLK_GATE_D = I915_READ(DSPCLK_GATE_D);
-
-	/* Cache mode state */
-	dev_priv->saveCACHE_MODE_0 = I915_READ(CACHE_MODE_0);
-
-	/* Memory Arbitration state */
-	dev_priv->saveMI_ARB_STATE = I915_READ(MI_ARB_STATE);
-
-	/* Scratch space */
-	for (i = 0; i < 16; i++) {
-		dev_priv->saveSWF0[i] = I915_READ(SWF0 + (i << 2));
-		dev_priv->saveSWF1[i] = I915_READ(SWF10 + (i << 2));
-	}
-	for (i = 0; i < 3; i++)
-		dev_priv->saveSWF2[i] = I915_READ(SWF30 + (i << 2));
-
-	i915_save_vga(dev);
+	intel_opregion_free(dev);
 
 	if (state.event == PM_EVENT_SUSPEND) {
 		/* Shut down the device */
@@ -382,155 +68,15 @@
 
 static int i915_resume(struct drm_device *dev)
 {
-	struct drm_i915_private *dev_priv = dev->dev_private;
-	int i;
-
 	pci_set_power_state(dev->pdev, PCI_D0);
 	pci_restore_state(dev->pdev);
 	if (pci_enable_device(dev->pdev))
 		return -1;
 	pci_set_master(dev->pdev);
 
-	pci_write_config_byte(dev->pdev, LBB, dev_priv->saveLBB);
+	i915_restore_state(dev);
 
-	I915_WRITE(DSPARB, dev_priv->saveDSPARB);
-
-	/* Pipe & plane A info */
-	/* Prime the clock */
-	if (dev_priv->saveDPLL_A & DPLL_VCO_ENABLE) {
-		I915_WRITE(DPLL_A, dev_priv->saveDPLL_A &
-			   ~DPLL_VCO_ENABLE);
-		udelay(150);
-	}
-	I915_WRITE(FPA0, dev_priv->saveFPA0);
-	I915_WRITE(FPA1, dev_priv->saveFPA1);
-	/* Actually enable it */
-	I915_WRITE(DPLL_A, dev_priv->saveDPLL_A);
-	udelay(150);
-	if (IS_I965G(dev))
-		I915_WRITE(DPLL_A_MD, dev_priv->saveDPLL_A_MD);
-	udelay(150);
-
-	/* Restore mode */
-	I915_WRITE(HTOTAL_A, dev_priv->saveHTOTAL_A);
-	I915_WRITE(HBLANK_A, dev_priv->saveHBLANK_A);
-	I915_WRITE(HSYNC_A, dev_priv->saveHSYNC_A);
-	I915_WRITE(VTOTAL_A, dev_priv->saveVTOTAL_A);
-	I915_WRITE(VBLANK_A, dev_priv->saveVBLANK_A);
-	I915_WRITE(VSYNC_A, dev_priv->saveVSYNC_A);
-	I915_WRITE(BCLRPAT_A, dev_priv->saveBCLRPAT_A);
-
-	/* Restore plane info */
-	I915_WRITE(DSPASIZE, dev_priv->saveDSPASIZE);
-	I915_WRITE(DSPAPOS, dev_priv->saveDSPAPOS);
-	I915_WRITE(PIPEASRC, dev_priv->savePIPEASRC);
-	I915_WRITE(DSPABASE, dev_priv->saveDSPABASE);
-	I915_WRITE(DSPASTRIDE, dev_priv->saveDSPASTRIDE);
-	if (IS_I965G(dev)) {
-		I915_WRITE(DSPASURF, dev_priv->saveDSPASURF);
-		I915_WRITE(DSPATILEOFF, dev_priv->saveDSPATILEOFF);
-	}
-
-	I915_WRITE(PIPEACONF, dev_priv->savePIPEACONF);
-
-	i915_restore_palette(dev, PIPE_A);
-	/* Enable the plane */
-	I915_WRITE(DSPACNTR, dev_priv->saveDSPACNTR);
-	I915_WRITE(DSPABASE, I915_READ(DSPABASE));
-
-	/* Pipe & plane B info */
-	if (dev_priv->saveDPLL_B & DPLL_VCO_ENABLE) {
-		I915_WRITE(DPLL_B, dev_priv->saveDPLL_B &
-			   ~DPLL_VCO_ENABLE);
-		udelay(150);
-	}
-	I915_WRITE(FPB0, dev_priv->saveFPB0);
-	I915_WRITE(FPB1, dev_priv->saveFPB1);
-	/* Actually enable it */
-	I915_WRITE(DPLL_B, dev_priv->saveDPLL_B);
-	udelay(150);
-	if (IS_I965G(dev))
-		I915_WRITE(DPLL_B_MD, dev_priv->saveDPLL_B_MD);
-	udelay(150);
-
-	/* Restore mode */
-	I915_WRITE(HTOTAL_B, dev_priv->saveHTOTAL_B);
-	I915_WRITE(HBLANK_B, dev_priv->saveHBLANK_B);
-	I915_WRITE(HSYNC_B, dev_priv->saveHSYNC_B);
-	I915_WRITE(VTOTAL_B, dev_priv->saveVTOTAL_B);
-	I915_WRITE(VBLANK_B, dev_priv->saveVBLANK_B);
-	I915_WRITE(VSYNC_B, dev_priv->saveVSYNC_B);
-	I915_WRITE(BCLRPAT_B, dev_priv->saveBCLRPAT_B);
-
-	/* Restore plane info */
-	I915_WRITE(DSPBSIZE, dev_priv->saveDSPBSIZE);
-	I915_WRITE(DSPBPOS, dev_priv->saveDSPBPOS);
-	I915_WRITE(PIPEBSRC, dev_priv->savePIPEBSRC);
-	I915_WRITE(DSPBBASE, dev_priv->saveDSPBBASE);
-	I915_WRITE(DSPBSTRIDE, dev_priv->saveDSPBSTRIDE);
-	if (IS_I965G(dev)) {
-		I915_WRITE(DSPBSURF, dev_priv->saveDSPBSURF);
-		I915_WRITE(DSPBTILEOFF, dev_priv->saveDSPBTILEOFF);
-	}
-
-	I915_WRITE(PIPEBCONF, dev_priv->savePIPEBCONF);
-
-	i915_restore_palette(dev, PIPE_B);
-	/* Enable the plane */
-	I915_WRITE(DSPBCNTR, dev_priv->saveDSPBCNTR);
-	I915_WRITE(DSPBBASE, I915_READ(DSPBBASE));
-
-	/* CRT state */
-	I915_WRITE(ADPA, dev_priv->saveADPA);
-
-	/* LVDS state */
-	if (IS_I965G(dev))
-		I915_WRITE(BLC_PWM_CTL2, dev_priv->saveBLC_PWM_CTL2);
-	if (IS_MOBILE(dev) && !IS_I830(dev))
-		I915_WRITE(LVDS, dev_priv->saveLVDS);
-	if (!IS_I830(dev) && !IS_845G(dev))
-		I915_WRITE(PFIT_CONTROL, dev_priv->savePFIT_CONTROL);
-
-	I915_WRITE(PFIT_PGM_RATIOS, dev_priv->savePFIT_PGM_RATIOS);
-	I915_WRITE(BLC_PWM_CTL, dev_priv->saveBLC_PWM_CTL);
-	I915_WRITE(LVDSPP_ON, dev_priv->saveLVDSPP_ON);
-	I915_WRITE(LVDSPP_OFF, dev_priv->saveLVDSPP_OFF);
-	I915_WRITE(PP_CYCLE, dev_priv->savePP_CYCLE);
-	I915_WRITE(PP_CONTROL, dev_priv->savePP_CONTROL);
-
-	/* FIXME: restore TV & SDVO state */
-
-	/* FBC info */
-	I915_WRITE(FBC_CFB_BASE, dev_priv->saveFBC_CFB_BASE);
-	I915_WRITE(FBC_LL_BASE, dev_priv->saveFBC_LL_BASE);
-	I915_WRITE(FBC_CONTROL2, dev_priv->saveFBC_CONTROL2);
-	I915_WRITE(FBC_CONTROL, dev_priv->saveFBC_CONTROL);
-
-	/* VGA state */
-	I915_WRITE(VGACNTRL, dev_priv->saveVGACNTRL);
-	I915_WRITE(VCLK_DIVISOR_VGA0, dev_priv->saveVCLK_DIVISOR_VGA0);
-	I915_WRITE(VCLK_DIVISOR_VGA1, dev_priv->saveVCLK_DIVISOR_VGA1);
-	I915_WRITE(VCLK_POST_DIV, dev_priv->saveVCLK_POST_DIV);
-	udelay(150);
-
-	/* Clock gating state */
-	I915_WRITE (D_STATE, dev_priv->saveD_STATE);
-	I915_WRITE (DSPCLK_GATE_D, dev_priv->saveDSPCLK_GATE_D);
-
-	/* Cache mode state */
-	I915_WRITE (CACHE_MODE_0, dev_priv->saveCACHE_MODE_0 | 0xffff0000);
-
-	/* Memory arbitration state */
-	I915_WRITE (MI_ARB_STATE, dev_priv->saveMI_ARB_STATE | 0xffff0000);
-
-	for (i = 0; i < 16; i++) {
-		I915_WRITE(SWF0 + (i << 2), dev_priv->saveSWF0[i]);
-		I915_WRITE(SWF10 + (i << 2), dev_priv->saveSWF1[i+7]);
-	}
-	for (i = 0; i < 3; i++)
-		I915_WRITE(SWF30 + (i << 2), dev_priv->saveSWF2[i]);
-
-	i915_restore_vga(dev);
+	intel_opregion_init(dev);
 
 	return 0;
 }
@@ -541,17 +87,19 @@
 	 */
 	.driver_features =
 	    DRIVER_USE_AGP | DRIVER_REQUIRE_AGP | /* DRIVER_USE_MTRR |*/
-	    DRIVER_HAVE_IRQ | DRIVER_IRQ_SHARED | DRIVER_IRQ_VBL |
-	    DRIVER_IRQ_VBL2,
+	    DRIVER_HAVE_IRQ | DRIVER_IRQ_SHARED | DRIVER_GEM,
 	.load = i915_driver_load,
 	.unload = i915_driver_unload,
+	.open = i915_driver_open,
 	.lastclose = i915_driver_lastclose,
 	.preclose = i915_driver_preclose,
+	.postclose = i915_driver_postclose,
 	.suspend = i915_suspend,
 	.resume = i915_resume,
 	.device_is_agp = i915_driver_device_is_agp,
-	.vblank_wait = i915_driver_vblank_wait,
-	.vblank_wait2 = i915_driver_vblank_wait2,
+	.get_vblank_counter = i915_get_vblank_counter,
+	.enable_vblank = i915_enable_vblank,
+	.disable_vblank = i915_disable_vblank,
 	.irq_preinstall = i915_driver_irq_preinstall,
 	.irq_postinstall = i915_driver_irq_postinstall,
 	.irq_uninstall = i915_driver_irq_uninstall,
@@ -559,6 +107,10 @@
 	.reclaim_buffers = drm_core_reclaim_buffers,
 	.get_map_ofs = drm_core_get_map_ofs,
 	.get_reg_ofs = drm_core_get_reg_ofs,
+	.proc_init = i915_gem_proc_init,
+	.proc_cleanup = i915_gem_proc_cleanup,
+	.gem_init_object = i915_gem_init_object,
+	.gem_free_object = i915_gem_free_object,
 	.ioctls = i915_ioctls,
 	.fops = {
 		 .owner = THIS_MODULE,
diff --git a/drivers/gpu/drm/i915/i915_drv.h b/drivers/gpu/drm/i915/i915_drv.h
index d7326d9..eae4ed3 100644
--- a/drivers/gpu/drm/i915/i915_drv.h
+++ b/drivers/gpu/drm/i915/i915_drv.h
@@ -30,6 +30,8 @@
 #ifndef _I915_DRV_H_
 #define _I915_DRV_H_
 
+#include "i915_reg.h"
+
 /* General customization:
  */
 
@@ -37,7 +39,12 @@
 
 #define DRIVER_NAME		"i915"
 #define DRIVER_DESC		"Intel Graphics"
-#define DRIVER_DATE		"20060119"
+#define DRIVER_DATE		"20080730"
+
+enum pipe {
+	PIPE_A = 0,
+	PIPE_B,
+};
 
 /* Interface history:
  *
@@ -53,16 +60,23 @@
 #define DRIVER_MINOR		6
 #define DRIVER_PATCHLEVEL	0
 
+#define WATCH_COHERENCY	0
+#define WATCH_BUF	0
+#define WATCH_EXEC	0
+#define WATCH_LRU	0
+#define WATCH_RELOC	0
+#define WATCH_INACTIVE	0
+#define WATCH_PWRITE	0
+
 typedef struct _drm_i915_ring_buffer {
 	int tail_mask;
-	unsigned long Start;
-	unsigned long End;
 	unsigned long Size;
 	u8 *virtual_start;
 	int head;
 	int tail;
 	int space;
 	drm_local_map_t map;
+	struct drm_gem_object *ring_obj;
 } drm_i915_ring_buffer_t;
 
 struct mem_block {
@@ -76,13 +90,28 @@
 typedef struct _drm_i915_vbl_swap {
 	struct list_head head;
 	drm_drawable_t drw_id;
-	unsigned int pipe;
+	unsigned int plane;
 	unsigned int sequence;
 } drm_i915_vbl_swap_t;
 
+struct opregion_header;
+struct opregion_acpi;
+struct opregion_swsci;
+struct opregion_asle;
+
+struct intel_opregion {
+	struct opregion_header *header;
+	struct opregion_acpi *acpi;
+	struct opregion_swsci *swsci;
+	struct opregion_asle *asle;
+	int enabled;
+};
+
 typedef struct drm_i915_private {
+	struct drm_device *dev;
+
+	void __iomem *regs;
 	drm_local_map_t *sarea;
-	drm_local_map_t *mmio_map;
 
 	drm_i915_sarea_t *sarea_priv;
 	drm_i915_ring_buffer_t ring;
@@ -90,20 +119,25 @@
 	drm_dma_handle_t *status_page_dmah;
 	void *hw_status_page;
 	dma_addr_t dma_status_page;
-	unsigned long counter;
+	uint32_t counter;
 	unsigned int status_gfx_addr;
 	drm_local_map_t hws_map;
+	struct drm_gem_object *hws_obj;
 
 	unsigned int cpp;
 	int back_offset;
 	int front_offset;
 	int current_page;
 	int page_flipping;
-	int use_mi_batchbuffer_start;
 
 	wait_queue_head_t irq_queue;
 	atomic_t irq_received;
-	atomic_t irq_emitted;
+	/** Protects user_irq_refcount and irq_mask_reg */
+	spinlock_t user_irq_lock;
+	/** Refcount for i915_user_irq_get() versus i915_user_irq_put(). */
+	int user_irq_refcount;
+	/** Cached value of IMR to avoid reads in updating the bitfield */
+	u32 irq_mask_reg;
 
 	int tex_lru_log_granularity;
 	int allow_batchbuffer;
@@ -115,6 +149,8 @@
 	drm_i915_vbl_swap_t vbl_swaps;
 	unsigned int swaps_pending;
 
+	struct intel_opregion opregion;
+
 	/* Register state */
 	u8 saveLBB;
 	u32 saveDSPACNTR;
@@ -139,7 +175,7 @@
 	u32 saveDSPASTRIDE;
 	u32 saveDSPASIZE;
 	u32 saveDSPAPOS;
-	u32 saveDSPABASE;
+	u32 saveDSPAADDR;
 	u32 saveDSPASURF;
 	u32 saveDSPATILEOFF;
 	u32 savePFIT_PGM_RATIOS;
@@ -160,24 +196,24 @@
 	u32 saveDSPBSTRIDE;
 	u32 saveDSPBSIZE;
 	u32 saveDSPBPOS;
-	u32 saveDSPBBASE;
+	u32 saveDSPBADDR;
 	u32 saveDSPBSURF;
 	u32 saveDSPBTILEOFF;
-	u32 saveVCLK_DIVISOR_VGA0;
-	u32 saveVCLK_DIVISOR_VGA1;
-	u32 saveVCLK_POST_DIV;
+	u32 saveVGA0;
+	u32 saveVGA1;
+	u32 saveVGA_PD;
 	u32 saveVGACNTRL;
 	u32 saveADPA;
 	u32 saveLVDS;
-	u32 saveLVDSPP_ON;
-	u32 saveLVDSPP_OFF;
+	u32 savePP_ON_DELAYS;
+	u32 savePP_OFF_DELAYS;
 	u32 saveDVOA;
 	u32 saveDVOB;
 	u32 saveDVOC;
 	u32 savePP_ON;
 	u32 savePP_OFF;
 	u32 savePP_CONTROL;
-	u32 savePP_CYCLE;
+	u32 savePP_DIVISOR;
 	u32 savePFIT_CONTROL;
 	u32 save_palette_a[256];
 	u32 save_palette_b[256];
@@ -190,7 +226,7 @@
 	u32 saveIMR;
 	u32 saveCACHE_MODE_0;
 	u32 saveD_STATE;
-	u32 saveDSPCLK_GATE_D;
+	u32 saveCG_2D_DIS;
 	u32 saveMI_ARB_STATE;
 	u32 saveSWF0[16];
 	u32 saveSWF1[16];
@@ -203,8 +239,180 @@
 	u8 saveDACMASK;
 	u8 saveDACDATA[256*3]; /* 256 3-byte colors */
 	u8 saveCR[37];
+
+	struct {
+		struct drm_mm gtt_space;
+
+		/**
+		 * List of objects currently involved in rendering from the
+		 * ringbuffer.
+		 *
+		 * A reference is held on the buffer while on this list.
+		 */
+		struct list_head active_list;
+
+		/**
+		 * List of objects which are not in the ringbuffer but which
+		 * still have a write_domain which needs to be flushed before
+		 * unbinding.
+		 *
+		 * A reference is held on the buffer while on this list.
+		 */
+		struct list_head flushing_list;
+
+		/**
+		 * LRU list of objects which are not in the ringbuffer and
+		 * are ready to unbind, but are still in the GTT.
+		 *
+		 * A reference is not held on the buffer while on this list,
+		 * as merely being GTT-bound shouldn't prevent its being
+		 * freed, and we'll pull it off the list in the free path.
+		 */
+		struct list_head inactive_list;
+
+		/**
+		 * List of breadcrumbs associated with GPU requests currently
+		 * outstanding.
+		 */
+		struct list_head request_list;
+
+		/**
+		 * We leave the user IRQ off as much as possible,
+		 * but this means that requests will finish and never
+		 * be retired once the system goes idle. Set a timer to
+		 * fire periodically while the ring is running. When it
+		 * fires, go retire requests.
+		 */
+		struct delayed_work retire_work;
+
+		/** Work task for vblank-related ring access */
+		struct work_struct vblank_work;
+
+		uint32_t next_gem_seqno;
+
+		/**
+		 * Waiting sequence number, if any
+		 */
+		uint32_t waiting_gem_seqno;
+
+		/**
+		 * Last seq seen at irq time
+		 */
+		uint32_t irq_gem_seqno;
+
+		/**
+		 * Flag if the X Server, and thus DRM, is not currently in
+		 * control of the device.
+		 *
+		 * This is set between LeaveVT and EnterVT.  It needs to be
+		 * replaced with a semaphore.  It also needs to be
+		 * transitioned away from for kernel modesetting.
+		 */
+		int suspended;
+
+		/**
+		 * Flag if the hardware appears to be wedged.
+		 *
+		 * This is set when attempts to idle the device timeout.
+		 * It prevents command submission from occuring and makes
+		 * every pending request fail
+		 */
+		int wedged;
+
+		/** Bit 6 swizzling required for X tiling */
+		uint32_t bit_6_swizzle_x;
+		/** Bit 6 swizzling required for Y tiling */
+		uint32_t bit_6_swizzle_y;
+	} mm;
 } drm_i915_private_t;
 
+/** driver private structure attached to each drm_gem_object */
+struct drm_i915_gem_object {
+	struct drm_gem_object *obj;
+
+	/** Current space allocated to this object in the GTT, if any. */
+	struct drm_mm_node *gtt_space;
+
+	/** This object's place on the active/flushing/inactive lists */
+	struct list_head list;
+
+	/**
+	 * This is set if the object is on the active or flushing lists
+	 * (has pending rendering), and is not set if it's on inactive (ready
+	 * to be unbound).
+	 */
+	int active;
+
+	/**
+	 * This is set if the object has been written to since last bound
+	 * to the GTT
+	 */
+	int dirty;
+
+	/** AGP memory structure for our GTT binding. */
+	DRM_AGP_MEM *agp_mem;
+
+	struct page **page_list;
+
+	/**
+	 * Current offset of the object in GTT space.
+	 *
+	 * This is the same as gtt_space->start
+	 */
+	uint32_t gtt_offset;
+
+	/** Boolean whether this object has a valid gtt offset. */
+	int gtt_bound;
+
+	/** How many users have pinned this object in GTT space */
+	int pin_count;
+
+	/** Breadcrumb of last rendering to the buffer. */
+	uint32_t last_rendering_seqno;
+
+	/** Current tiling mode for the object. */
+	uint32_t tiling_mode;
+
+	/** AGP mapping type (AGP_USER_MEMORY or AGP_USER_CACHED_MEMORY */
+	uint32_t agp_type;
+
+	/**
+	 * Flagging of which individual pages are valid in GEM_DOMAIN_CPU when
+	 * GEM_DOMAIN_CPU is not in the object's read domain.
+	 */
+	uint8_t *page_cpu_valid;
+};
+
+/**
+ * Request queue structure.
+ *
+ * The request queue allows us to note sequence numbers that have been emitted
+ * and may be associated with active buffers to be retired.
+ *
+ * By keeping this list, we can avoid having to do questionable
+ * sequence-number comparisons on buffer last_rendering_seqnos, and associate
+ * an emission time with seqnos for tracking how far ahead of the GPU we are.
+ */
+struct drm_i915_gem_request {
+	/** GEM sequence number associated with this request. */
+	uint32_t seqno;
+
+	/** Time at which this request was emitted, in jiffies. */
+	unsigned long emitted_jiffies;
+
+	/** Cache domains that were flushed at the start of the request. */
+	uint32_t flush_domains;
+
+	struct list_head list;
+};
+
+struct drm_i915_file_private {
+	struct {
+		uint32_t last_gem_seqno;
+		uint32_t last_gem_throttle_seqno;
+	} mm;
+};
+
 extern struct drm_ioctl_desc i915_ioctls[];
 extern int i915_max_ioctl;
 
@@ -212,31 +420,42 @@
 extern void i915_kernel_lost_context(struct drm_device * dev);
 extern int i915_driver_load(struct drm_device *, unsigned long flags);
 extern int i915_driver_unload(struct drm_device *);
+extern int i915_driver_open(struct drm_device *dev, struct drm_file *file_priv);
 extern void i915_driver_lastclose(struct drm_device * dev);
 extern void i915_driver_preclose(struct drm_device *dev,
 				 struct drm_file *file_priv);
+extern void i915_driver_postclose(struct drm_device *dev,
+				  struct drm_file *file_priv);
 extern int i915_driver_device_is_agp(struct drm_device * dev);
 extern long i915_compat_ioctl(struct file *filp, unsigned int cmd,
 			      unsigned long arg);
+extern int i915_emit_box(struct drm_device *dev,
+			 struct drm_clip_rect __user *boxes,
+			 int i, int DR1, int DR4);
 
 /* i915_irq.c */
 extern int i915_irq_emit(struct drm_device *dev, void *data,
 			 struct drm_file *file_priv);
 extern int i915_irq_wait(struct drm_device *dev, void *data,
 			 struct drm_file *file_priv);
+void i915_user_irq_get(struct drm_device *dev);
+void i915_user_irq_put(struct drm_device *dev);
 
-extern int i915_driver_vblank_wait(struct drm_device *dev, unsigned int *sequence);
-extern int i915_driver_vblank_wait2(struct drm_device *dev, unsigned int *sequence);
+extern void i915_gem_vblank_work_handler(struct work_struct *work);
 extern irqreturn_t i915_driver_irq_handler(DRM_IRQ_ARGS);
 extern void i915_driver_irq_preinstall(struct drm_device * dev);
-extern void i915_driver_irq_postinstall(struct drm_device * dev);
+extern int i915_driver_irq_postinstall(struct drm_device *dev);
 extern void i915_driver_irq_uninstall(struct drm_device * dev);
 extern int i915_vblank_pipe_set(struct drm_device *dev, void *data,
 				struct drm_file *file_priv);
 extern int i915_vblank_pipe_get(struct drm_device *dev, void *data,
 				struct drm_file *file_priv);
+extern int i915_enable_vblank(struct drm_device *dev, int crtc);
+extern void i915_disable_vblank(struct drm_device *dev, int crtc);
+extern u32 i915_get_vblank_counter(struct drm_device *dev, int crtc);
 extern int i915_vblank_swap(struct drm_device *dev, void *data,
 			    struct drm_file *file_priv);
+extern void i915_enable_irq(drm_i915_private_t *dev_priv, u32 mask);
 
 /* i915_mem.c */
 extern int i915_mem_alloc(struct drm_device *dev, void *data,
@@ -250,11 +469,99 @@
 extern void i915_mem_takedown(struct mem_block **heap);
 extern void i915_mem_release(struct drm_device * dev,
 			     struct drm_file *file_priv, struct mem_block *heap);
+/* i915_gem.c */
+int i915_gem_init_ioctl(struct drm_device *dev, void *data,
+			struct drm_file *file_priv);
+int i915_gem_create_ioctl(struct drm_device *dev, void *data,
+			  struct drm_file *file_priv);
+int i915_gem_pread_ioctl(struct drm_device *dev, void *data,
+			 struct drm_file *file_priv);
+int i915_gem_pwrite_ioctl(struct drm_device *dev, void *data,
+			  struct drm_file *file_priv);
+int i915_gem_mmap_ioctl(struct drm_device *dev, void *data,
+			struct drm_file *file_priv);
+int i915_gem_set_domain_ioctl(struct drm_device *dev, void *data,
+			      struct drm_file *file_priv);
+int i915_gem_sw_finish_ioctl(struct drm_device *dev, void *data,
+			     struct drm_file *file_priv);
+int i915_gem_execbuffer(struct drm_device *dev, void *data,
+			struct drm_file *file_priv);
+int i915_gem_pin_ioctl(struct drm_device *dev, void *data,
+		       struct drm_file *file_priv);
+int i915_gem_unpin_ioctl(struct drm_device *dev, void *data,
+			 struct drm_file *file_priv);
+int i915_gem_busy_ioctl(struct drm_device *dev, void *data,
+			struct drm_file *file_priv);
+int i915_gem_throttle_ioctl(struct drm_device *dev, void *data,
+			    struct drm_file *file_priv);
+int i915_gem_entervt_ioctl(struct drm_device *dev, void *data,
+			   struct drm_file *file_priv);
+int i915_gem_leavevt_ioctl(struct drm_device *dev, void *data,
+			   struct drm_file *file_priv);
+int i915_gem_set_tiling(struct drm_device *dev, void *data,
+			struct drm_file *file_priv);
+int i915_gem_get_tiling(struct drm_device *dev, void *data,
+			struct drm_file *file_priv);
+void i915_gem_load(struct drm_device *dev);
+int i915_gem_proc_init(struct drm_minor *minor);
+void i915_gem_proc_cleanup(struct drm_minor *minor);
+int i915_gem_init_object(struct drm_gem_object *obj);
+void i915_gem_free_object(struct drm_gem_object *obj);
+int i915_gem_object_pin(struct drm_gem_object *obj, uint32_t alignment);
+void i915_gem_object_unpin(struct drm_gem_object *obj);
+void i915_gem_lastclose(struct drm_device *dev);
+uint32_t i915_get_gem_seqno(struct drm_device *dev);
+void i915_gem_retire_requests(struct drm_device *dev);
+void i915_gem_retire_work_handler(struct work_struct *work);
+void i915_gem_clflush_object(struct drm_gem_object *obj);
 
-#define I915_READ(reg)          DRM_READ32(dev_priv->mmio_map, (reg))
-#define I915_WRITE(reg,val)     DRM_WRITE32(dev_priv->mmio_map, (reg), (val))
-#define I915_READ16(reg)	DRM_READ16(dev_priv->mmio_map, (reg))
-#define I915_WRITE16(reg,val)	DRM_WRITE16(dev_priv->mmio_map, (reg), (val))
+/* i915_gem_tiling.c */
+void i915_gem_detect_bit_6_swizzle(struct drm_device *dev);
+
+/* i915_gem_debug.c */
+void i915_gem_dump_object(struct drm_gem_object *obj, int len,
+			  const char *where, uint32_t mark);
+#if WATCH_INACTIVE
+void i915_verify_inactive(struct drm_device *dev, char *file, int line);
+#else
+#define i915_verify_inactive(dev, file, line)
+#endif
+void i915_gem_object_check_coherency(struct drm_gem_object *obj, int handle);
+void i915_gem_dump_object(struct drm_gem_object *obj, int len,
+			  const char *where, uint32_t mark);
+void i915_dump_lru(struct drm_device *dev, const char *where);
+
+/* i915_suspend.c */
+extern int i915_save_state(struct drm_device *dev);
+extern int i915_restore_state(struct drm_device *dev);
+
+/* i915_suspend.c */
+extern int i915_save_state(struct drm_device *dev);
+extern int i915_restore_state(struct drm_device *dev);
+
+/* i915_opregion.c */
+extern int intel_opregion_init(struct drm_device *dev);
+extern void intel_opregion_free(struct drm_device *dev);
+extern void opregion_asle_intr(struct drm_device *dev);
+extern void opregion_enable_asle(struct drm_device *dev);
+
+/**
+ * Lock test for when it's just for synchronization of ring access.
+ *
+ * In that case, we don't need to do it when GEM is initialized as nobody else
+ * has access to the ring.
+ */
+#define RING_LOCK_TEST_WITH_RETURN(dev, file_priv) do {			\
+	if (((drm_i915_private_t *)dev->dev_private)->ring.ring_obj == NULL) \
+		LOCK_TEST_WITH_RETURN(dev, file_priv);			\
+} while (0)
+
+#define I915_READ(reg)          readl(dev_priv->regs + (reg))
+#define I915_WRITE(reg, val)     writel(val, dev_priv->regs + (reg))
+#define I915_READ16(reg)	readw(dev_priv->regs + (reg))
+#define I915_WRITE16(reg, val)	writel(val, dev_priv->regs + (reg))
+#define I915_READ8(reg)		readb(dev_priv->regs + (reg))
+#define I915_WRITE8(reg, val)	writeb(val, dev_priv->regs + (reg))
 
 #define I915_VERBOSE 0
 
@@ -284,816 +591,29 @@
 	if (I915_VERBOSE) DRM_DEBUG("ADVANCE_LP_RING %x\n", outring);	\
 	dev_priv->ring.tail = outring;					\
 	dev_priv->ring.space -= outcount * 4;				\
-	I915_WRITE(LP_RING + RING_TAIL, outring);			\
+	I915_WRITE(PRB0_TAIL, outring);			\
 } while(0)
 
-extern int i915_wait_ring(struct drm_device * dev, int n, const char *caller);
-
-/* Extended config space */
-#define LBB 0xf4
-
-/* VGA stuff */
-
-#define VGA_ST01_MDA 0x3ba
-#define VGA_ST01_CGA 0x3da
-
-#define VGA_MSR_WRITE 0x3c2
-#define VGA_MSR_READ 0x3cc
-#define   VGA_MSR_MEM_EN (1<<1)
-#define   VGA_MSR_CGA_MODE (1<<0)
-
-#define VGA_SR_INDEX 0x3c4
-#define VGA_SR_DATA 0x3c5
-
-#define VGA_AR_INDEX 0x3c0
-#define   VGA_AR_VID_EN (1<<5)
-#define VGA_AR_DATA_WRITE 0x3c0
-#define VGA_AR_DATA_READ 0x3c1
-
-#define VGA_GR_INDEX 0x3ce
-#define VGA_GR_DATA 0x3cf
-/* GR05 */
-#define   VGA_GR_MEM_READ_MODE_SHIFT 3
-#define     VGA_GR_MEM_READ_MODE_PLANE 1
-/* GR06 */
-#define   VGA_GR_MEM_MODE_MASK 0xc
-#define   VGA_GR_MEM_MODE_SHIFT 2
-#define   VGA_GR_MEM_A0000_AFFFF 0
-#define   VGA_GR_MEM_A0000_BFFFF 1
-#define   VGA_GR_MEM_B0000_B7FFF 2
-#define   VGA_GR_MEM_B0000_BFFFF 3
-
-#define VGA_DACMASK 0x3c6
-#define VGA_DACRX 0x3c7
-#define VGA_DACWX 0x3c8
-#define VGA_DACDATA 0x3c9
-
-#define VGA_CR_INDEX_MDA 0x3b4
-#define VGA_CR_DATA_MDA 0x3b5
-#define VGA_CR_INDEX_CGA 0x3d4
-#define VGA_CR_DATA_CGA 0x3d5
-
-#define GFX_OP_USER_INTERRUPT		((0<<29)|(2<<23))
-#define GFX_OP_BREAKPOINT_INTERRUPT	((0<<29)|(1<<23))
-#define CMD_REPORT_HEAD			(7<<23)
-#define CMD_STORE_DWORD_IDX		((0x21<<23) | 0x1)
-#define CMD_OP_BATCH_BUFFER  ((0x0<<29)|(0x30<<23)|0x1)
-
-#define INST_PARSER_CLIENT   0x00000000
-#define INST_OP_FLUSH        0x02000000
-#define INST_FLUSH_MAP_CACHE 0x00000001
-
-#define BB1_START_ADDR_MASK   (~0x7)
-#define BB1_PROTECTED         (1<<0)
-#define BB1_UNPROTECTED       (0<<0)
-#define BB2_END_ADDR_MASK     (~0x7)
-
-/* Framebuffer compression */
-#define FBC_CFB_BASE		0x03200 /* 4k page aligned */
-#define FBC_LL_BASE		0x03204 /* 4k page aligned */
-#define FBC_CONTROL		0x03208
-#define   FBC_CTL_EN		(1<<31)
-#define   FBC_CTL_PERIODIC	(1<<30)
-#define   FBC_CTL_INTERVAL_SHIFT (16)
-#define   FBC_CTL_UNCOMPRESSIBLE (1<<14)
-#define   FBC_CTL_STRIDE_SHIFT	(5)
-#define   FBC_CTL_FENCENO	(1<<0)
-#define FBC_COMMAND		0x0320c
-#define   FBC_CMD_COMPRESS	(1<<0)
-#define FBC_STATUS		0x03210
-#define   FBC_STAT_COMPRESSING	(1<<31)
-#define   FBC_STAT_COMPRESSED	(1<<30)
-#define   FBC_STAT_MODIFIED	(1<<29)
-#define   FBC_STAT_CURRENT_LINE	(1<<0)
-#define FBC_CONTROL2		0x03214
-#define   FBC_CTL_FENCE_DBL	(0<<4)
-#define   FBC_CTL_IDLE_IMM	(0<<2)
-#define   FBC_CTL_IDLE_FULL	(1<<2)
-#define   FBC_CTL_IDLE_LINE	(2<<2)
-#define   FBC_CTL_IDLE_DEBUG	(3<<2)
-#define   FBC_CTL_CPU_FENCE	(1<<1)
-#define   FBC_CTL_PLANEA	(0<<0)
-#define   FBC_CTL_PLANEB	(1<<0)
-#define FBC_FENCE_OFF		0x0321b
-
-#define FBC_LL_SIZE		(1536)
-#define FBC_LL_PAD		(32)
-
-/* Interrupt bits:
- */
-#define USER_INT_FLAG    (1<<1)
-#define VSYNC_PIPEB_FLAG (1<<5)
-#define VSYNC_PIPEA_FLAG (1<<7)
-#define HWB_OOM_FLAG     (1<<13) /* binner out of memory */
-
-#define I915REG_HWSTAM		0x02098
-#define I915REG_INT_IDENTITY_R	0x020a4
-#define I915REG_INT_MASK_R	0x020a8
-#define I915REG_INT_ENABLE_R	0x020a0
-
-#define I915REG_PIPEASTAT	0x70024
-#define I915REG_PIPEBSTAT	0x71024
-
-#define I915_VBLANK_INTERRUPT_ENABLE	(1UL<<17)
-#define I915_VBLANK_CLEAR		(1UL<<1)
-
-#define SRX_INDEX		0x3c4
-#define SRX_DATA		0x3c5
-#define SR01			1
-#define SR01_SCREEN_OFF		(1<<5)
-
-#define PPCR			0x61204
-#define PPCR_ON			(1<<0)
-
-#define DVOB			0x61140
-#define DVOB_ON			(1<<31)
-#define DVOC			0x61160
-#define DVOC_ON			(1<<31)
-#define LVDS			0x61180
-#define LVDS_ON			(1<<31)
-
-#define ADPA			0x61100
-#define ADPA_DPMS_MASK		(~(3<<10))
-#define ADPA_DPMS_ON		(0<<10)
-#define ADPA_DPMS_SUSPEND	(1<<10)
-#define ADPA_DPMS_STANDBY	(2<<10)
-#define ADPA_DPMS_OFF		(3<<10)
-
-#define NOPID                   0x2094
-#define LP_RING			0x2030
-#define HP_RING			0x2040
-/* The binner has its own ring buffer:
- */
-#define HWB_RING		0x2400
-
-#define RING_TAIL		0x00
-#define TAIL_ADDR		0x001FFFF8
-#define RING_HEAD		0x04
-#define HEAD_WRAP_COUNT		0xFFE00000
-#define HEAD_WRAP_ONE		0x00200000
-#define HEAD_ADDR		0x001FFFFC
-#define RING_START		0x08
-#define START_ADDR		0x0xFFFFF000
-#define RING_LEN		0x0C
-#define RING_NR_PAGES		0x001FF000
-#define RING_REPORT_MASK	0x00000006
-#define RING_REPORT_64K		0x00000002
-#define RING_REPORT_128K	0x00000004
-#define RING_NO_REPORT		0x00000000
-#define RING_VALID_MASK		0x00000001
-#define RING_VALID		0x00000001
-#define RING_INVALID		0x00000000
-
-/* Instruction parser error reg:
- */
-#define IPEIR			0x2088
-
-/* Scratch pad debug 0 reg:
- */
-#define SCPD0			0x209c
-
-/* Error status reg:
- */
-#define ESR			0x20b8
-
-/* Secondary DMA fetch address debug reg:
- */
-#define DMA_FADD_S		0x20d4
-
-/* Memory Interface Arbitration State
- */
-#define MI_ARB_STATE		0x20e4
-
-/* Cache mode 0 reg.
- *  - Manipulating render cache behaviour is central
- *    to the concept of zone rendering, tuning this reg can help avoid
- *    unnecessary render cache reads and even writes (for z/stencil)
- *    at beginning and end of scene.
+/**
+ * Reads a dword out of the status page, which is written to from the command
+ * queue by automatic updates, MI_REPORT_HEAD, MI_STORE_DATA_INDEX, or
+ * MI_STORE_DATA_IMM.
  *
- * - To change a bit, write to this reg with a mask bit set and the
- * bit of interest either set or cleared.  EG: (BIT<<16) | BIT to set.
+ * The following dwords have a reserved meaning:
+ * 0x00: ISR copy, updated when an ISR bit not set in the HWSTAM changes.
+ * 0x04: ring 0 head pointer
+ * 0x05: ring 1 head pointer (915-class)
+ * 0x06: ring 2 head pointer (915-class)
+ * 0x10-0x1b: Context status DWords (GM45)
+ * 0x1f: Last written status offset. (GM45)
+ *
+ * The area from dword 0x20 to 0x3ff is available for driver usage.
  */
-#define Cache_Mode_0		0x2120
-#define CACHE_MODE_0		0x2120
-#define CM0_MASK_SHIFT          16
-#define CM0_IZ_OPT_DISABLE      (1<<6)
-#define CM0_ZR_OPT_DISABLE      (1<<5)
-#define CM0_DEPTH_EVICT_DISABLE (1<<4)
-#define CM0_COLOR_EVICT_DISABLE (1<<3)
-#define CM0_DEPTH_WRITE_DISABLE (1<<1)
-#define CM0_RC_OP_FLUSH_DISABLE (1<<0)
-
-
-/* Graphics flush control.  A CPU write flushes the GWB of all writes.
- * The data is discarded.
- */
-#define GFX_FLSH_CNTL		0x2170
-
-/* Binner control.  Defines the location of the bin pointer list:
- */
-#define BINCTL			0x2420
-#define BC_MASK			(1 << 9)
-
-/* Binned scene info.
- */
-#define BINSCENE		0x2428
-#define BS_OP_LOAD		(1 << 8)
-#define BS_MASK			(1 << 22)
-
-/* Bin command parser debug reg:
- */
-#define BCPD			0x2480
-
-/* Bin memory control debug reg:
- */
-#define BMCD			0x2484
-
-/* Bin data cache debug reg:
- */
-#define BDCD			0x2488
-
-/* Binner pointer cache debug reg:
- */
-#define BPCD			0x248c
-
-/* Binner scratch pad debug reg:
- */
-#define BINSKPD			0x24f0
-
-/* HWB scratch pad debug reg:
- */
-#define HWBSKPD			0x24f4
-
-/* Binner memory pool reg:
- */
-#define BMP_BUFFER		0x2430
-#define BMP_PAGE_SIZE_4K	(0 << 10)
-#define BMP_BUFFER_SIZE_SHIFT	1
-#define BMP_ENABLE		(1 << 0)
-
-/* Get/put memory from the binner memory pool:
- */
-#define BMP_GET			0x2438
-#define BMP_PUT			0x2440
-#define BMP_OFFSET_SHIFT	5
-
-/* 3D state packets:
- */
-#define GFX_OP_RASTER_RULES    ((0x3<<29)|(0x7<<24))
-
-#define GFX_OP_SCISSOR         ((0x3<<29)|(0x1c<<24)|(0x10<<19))
-#define SC_UPDATE_SCISSOR       (0x1<<1)
-#define SC_ENABLE_MASK          (0x1<<0)
-#define SC_ENABLE               (0x1<<0)
-
-#define GFX_OP_LOAD_INDIRECT   ((0x3<<29)|(0x1d<<24)|(0x7<<16))
-
-#define GFX_OP_SCISSOR_INFO    ((0x3<<29)|(0x1d<<24)|(0x81<<16)|(0x1))
-#define SCI_YMIN_MASK      (0xffff<<16)
-#define SCI_XMIN_MASK      (0xffff<<0)
-#define SCI_YMAX_MASK      (0xffff<<16)
-#define SCI_XMAX_MASK      (0xffff<<0)
-
-#define GFX_OP_SCISSOR_ENABLE	 ((0x3<<29)|(0x1c<<24)|(0x10<<19))
-#define GFX_OP_SCISSOR_RECT	 ((0x3<<29)|(0x1d<<24)|(0x81<<16)|1)
-#define GFX_OP_COLOR_FACTOR      ((0x3<<29)|(0x1d<<24)|(0x1<<16)|0x0)
-#define GFX_OP_STIPPLE           ((0x3<<29)|(0x1d<<24)|(0x83<<16))
-#define GFX_OP_MAP_INFO          ((0x3<<29)|(0x1d<<24)|0x4)
-#define GFX_OP_DESTBUFFER_VARS   ((0x3<<29)|(0x1d<<24)|(0x85<<16)|0x0)
-#define GFX_OP_DRAWRECT_INFO     ((0x3<<29)|(0x1d<<24)|(0x80<<16)|(0x3))
-
-#define GFX_OP_DRAWRECT_INFO_I965 ((0x7900<<16)|0x2)
-
-#define SRC_COPY_BLT_CMD                ((2<<29)|(0x43<<22)|4)
-#define XY_SRC_COPY_BLT_CMD		((2<<29)|(0x53<<22)|6)
-#define XY_SRC_COPY_BLT_WRITE_ALPHA	(1<<21)
-#define XY_SRC_COPY_BLT_WRITE_RGB	(1<<20)
-#define XY_SRC_COPY_BLT_SRC_TILED	(1<<15)
-#define XY_SRC_COPY_BLT_DST_TILED	(1<<11)
-
-#define MI_BATCH_BUFFER		((0x30<<23)|1)
-#define MI_BATCH_BUFFER_START	(0x31<<23)
-#define MI_BATCH_BUFFER_END	(0xA<<23)
-#define MI_BATCH_NON_SECURE	(1)
-#define MI_BATCH_NON_SECURE_I965 (1<<8)
-
-#define MI_WAIT_FOR_EVENT       ((0x3<<23))
-#define MI_WAIT_FOR_PLANE_B_FLIP      (1<<6)
-#define MI_WAIT_FOR_PLANE_A_FLIP      (1<<2)
-#define MI_WAIT_FOR_PLANE_A_SCANLINES (1<<1)
-
-#define MI_LOAD_SCAN_LINES_INCL  ((0x12<<23))
-
-#define CMD_OP_DISPLAYBUFFER_INFO ((0x0<<29)|(0x14<<23)|2)
-#define ASYNC_FLIP                (1<<22)
-#define DISPLAY_PLANE_A           (0<<20)
-#define DISPLAY_PLANE_B           (1<<20)
-
-/* Display regs */
-#define DSPACNTR                0x70180
-#define DSPBCNTR                0x71180
-#define DISPPLANE_SEL_PIPE_MASK                 (1<<24)
-
-/* Define the region of interest for the binner:
- */
-#define CMD_OP_BIN_CONTROL	 ((0x3<<29)|(0x1d<<24)|(0x84<<16)|4)
-
-#define CMD_OP_DESTBUFFER_INFO	 ((0x3<<29)|(0x1d<<24)|(0x8e<<16)|1)
-
-#define CMD_MI_FLUSH         (0x04 << 23)
-#define MI_NO_WRITE_FLUSH    (1 << 2)
-#define MI_READ_FLUSH        (1 << 0)
-#define MI_EXE_FLUSH         (1 << 1)
-#define MI_END_SCENE         (1 << 4) /* flush binner and incr scene count */
-#define MI_SCENE_COUNT       (1 << 3) /* just increment scene count */
-
-#define BREADCRUMB_BITS 31
-#define BREADCRUMB_MASK ((1U << BREADCRUMB_BITS) - 1)
-
-#define READ_BREADCRUMB(dev_priv)  (((volatile u32*)(dev_priv->hw_status_page))[5])
 #define READ_HWSP(dev_priv, reg)  (((volatile u32*)(dev_priv->hw_status_page))[reg])
+#define READ_BREADCRUMB(dev_priv) READ_HWSP(dev_priv, 5)
+#define I915_GEM_HWS_INDEX		0x20
 
-#define BLC_PWM_CTL		0x61254
-#define BACKLIGHT_MODULATION_FREQ_SHIFT		(17)
-
-#define BLC_PWM_CTL2		0x61250
-/**
- * This is the most significant 15 bits of the number of backlight cycles in a
- * complete cycle of the modulated backlight control.
- *
- * The actual value is this field multiplied by two.
- */
-#define BACKLIGHT_MODULATION_FREQ_MASK		(0x7fff << 17)
-#define BLM_LEGACY_MODE				(1 << 16)
-/**
- * This is the number of cycles out of the backlight modulation cycle for which
- * the backlight is on.
- *
- * This field must be no greater than the number of cycles in the complete
- * backlight modulation cycle.
- */
-#define BACKLIGHT_DUTY_CYCLE_SHIFT		(0)
-#define BACKLIGHT_DUTY_CYCLE_MASK		(0xffff)
-
-#define I915_GCFGC			0xf0
-#define I915_LOW_FREQUENCY_ENABLE		(1 << 7)
-#define I915_DISPLAY_CLOCK_190_200_MHZ		(0 << 4)
-#define I915_DISPLAY_CLOCK_333_MHZ		(4 << 4)
-#define I915_DISPLAY_CLOCK_MASK			(7 << 4)
-
-#define I855_HPLLCC			0xc0
-#define I855_CLOCK_CONTROL_MASK			(3 << 0)
-#define I855_CLOCK_133_200			(0 << 0)
-#define I855_CLOCK_100_200			(1 << 0)
-#define I855_CLOCK_100_133			(2 << 0)
-#define I855_CLOCK_166_250			(3 << 0)
-
-/* p317, 319
- */
-#define VCLK2_VCO_M        0x6008 /* treat as 16 bit? (includes msbs) */
-#define VCLK2_VCO_N        0x600a
-#define VCLK2_VCO_DIV_SEL  0x6012
-
-#define VCLK_DIVISOR_VGA0   0x6000
-#define VCLK_DIVISOR_VGA1   0x6004
-#define VCLK_POST_DIV	    0x6010
-/** Selects a post divisor of 4 instead of 2. */
-# define VGA1_PD_P2_DIV_4	(1 << 15)
-/** Overrides the p2 post divisor field */
-# define VGA1_PD_P1_DIV_2	(1 << 13)
-# define VGA1_PD_P1_SHIFT	8
-/** P1 value is 2 greater than this field */
-# define VGA1_PD_P1_MASK	(0x1f << 8)
-/** Selects a post divisor of 4 instead of 2. */
-# define VGA0_PD_P2_DIV_4	(1 << 7)
-/** Overrides the p2 post divisor field */
-# define VGA0_PD_P1_DIV_2	(1 << 5)
-# define VGA0_PD_P1_SHIFT	0
-/** P1 value is 2 greater than this field */
-# define VGA0_PD_P1_MASK	(0x1f << 0)
-
-/* PCI D state control register */
-#define D_STATE		0x6104
-#define DSPCLK_GATE_D	0x6200
-
-/* I830 CRTC registers */
-#define HTOTAL_A	0x60000
-#define HBLANK_A	0x60004
-#define HSYNC_A		0x60008
-#define VTOTAL_A	0x6000c
-#define VBLANK_A	0x60010
-#define VSYNC_A		0x60014
-#define PIPEASRC	0x6001c
-#define BCLRPAT_A	0x60020
-#define VSYNCSHIFT_A	0x60028
-
-#define HTOTAL_B	0x61000
-#define HBLANK_B	0x61004
-#define HSYNC_B		0x61008
-#define VTOTAL_B	0x6100c
-#define VBLANK_B	0x61010
-#define VSYNC_B		0x61014
-#define PIPEBSRC	0x6101c
-#define BCLRPAT_B	0x61020
-#define VSYNCSHIFT_B	0x61028
-
-#define PP_STATUS	0x61200
-# define PP_ON					(1 << 31)
-/**
- * Indicates that all dependencies of the panel are on:
- *
- * - PLL enabled
- * - pipe enabled
- * - LVDS/DVOB/DVOC on
- */
-# define PP_READY				(1 << 30)
-# define PP_SEQUENCE_NONE			(0 << 28)
-# define PP_SEQUENCE_ON				(1 << 28)
-# define PP_SEQUENCE_OFF			(2 << 28)
-# define PP_SEQUENCE_MASK			0x30000000
-#define PP_CONTROL	0x61204
-# define POWER_TARGET_ON			(1 << 0)
-
-#define LVDSPP_ON       0x61208
-#define LVDSPP_OFF      0x6120c
-#define PP_CYCLE        0x61210
-
-#define PFIT_CONTROL	0x61230
-# define PFIT_ENABLE				(1 << 31)
-# define PFIT_PIPE_MASK				(3 << 29)
-# define PFIT_PIPE_SHIFT			29
-# define VERT_INTERP_DISABLE			(0 << 10)
-# define VERT_INTERP_BILINEAR			(1 << 10)
-# define VERT_INTERP_MASK			(3 << 10)
-# define VERT_AUTO_SCALE			(1 << 9)
-# define HORIZ_INTERP_DISABLE			(0 << 6)
-# define HORIZ_INTERP_BILINEAR			(1 << 6)
-# define HORIZ_INTERP_MASK			(3 << 6)
-# define HORIZ_AUTO_SCALE			(1 << 5)
-# define PANEL_8TO6_DITHER_ENABLE		(1 << 3)
-
-#define PFIT_PGM_RATIOS	0x61234
-# define PFIT_VERT_SCALE_MASK			0xfff00000
-# define PFIT_HORIZ_SCALE_MASK			0x0000fff0
-
-#define PFIT_AUTO_RATIOS	0x61238
-
-
-#define DPLL_A		0x06014
-#define DPLL_B		0x06018
-# define DPLL_VCO_ENABLE			(1 << 31)
-# define DPLL_DVO_HIGH_SPEED			(1 << 30)
-# define DPLL_SYNCLOCK_ENABLE			(1 << 29)
-# define DPLL_VGA_MODE_DIS			(1 << 28)
-# define DPLLB_MODE_DAC_SERIAL			(1 << 26) /* i915 */
-# define DPLLB_MODE_LVDS			(2 << 26) /* i915 */
-# define DPLL_MODE_MASK				(3 << 26)
-# define DPLL_DAC_SERIAL_P2_CLOCK_DIV_10	(0 << 24) /* i915 */
-# define DPLL_DAC_SERIAL_P2_CLOCK_DIV_5		(1 << 24) /* i915 */
-# define DPLLB_LVDS_P2_CLOCK_DIV_14		(0 << 24) /* i915 */
-# define DPLLB_LVDS_P2_CLOCK_DIV_7		(1 << 24) /* i915 */
-# define DPLL_P2_CLOCK_DIV_MASK			0x03000000 /* i915 */
-# define DPLL_FPA01_P1_POST_DIV_MASK		0x00ff0000 /* i915 */
-/**
- *  The i830 generation, in DAC/serial mode, defines p1 as two plus this
- * bitfield, or just 2 if PLL_P1_DIVIDE_BY_TWO is set.
- */
-# define DPLL_FPA01_P1_POST_DIV_MASK_I830	0x001f0000
-/**
- * The i830 generation, in LVDS mode, defines P1 as the bit number set within
- * this field (only one bit may be set).
- */
-# define DPLL_FPA01_P1_POST_DIV_MASK_I830_LVDS	0x003f0000
-# define DPLL_FPA01_P1_POST_DIV_SHIFT		16
-# define PLL_P2_DIVIDE_BY_4			(1 << 23) /* i830, required in DVO non-gang */
-# define PLL_P1_DIVIDE_BY_TWO			(1 << 21) /* i830 */
-# define PLL_REF_INPUT_DREFCLK			(0 << 13)
-# define PLL_REF_INPUT_TVCLKINA			(1 << 13) /* i830 */
-# define PLL_REF_INPUT_TVCLKINBC		(2 << 13) /* SDVO TVCLKIN */
-# define PLLB_REF_INPUT_SPREADSPECTRUMIN	(3 << 13)
-# define PLL_REF_INPUT_MASK			(3 << 13)
-# define PLL_LOAD_PULSE_PHASE_SHIFT		9
-/*
- * Parallel to Serial Load Pulse phase selection.
- * Selects the phase for the 10X DPLL clock for the PCIe
- * digital display port. The range is 4 to 13; 10 or more
- * is just a flip delay. The default is 6
- */
-# define PLL_LOAD_PULSE_PHASE_MASK		(0xf << PLL_LOAD_PULSE_PHASE_SHIFT)
-# define DISPLAY_RATE_SELECT_FPA1		(1 << 8)
-
-/**
- * SDVO multiplier for 945G/GM. Not used on 965.
- *
- * \sa DPLL_MD_UDI_MULTIPLIER_MASK
- */
-# define SDVO_MULTIPLIER_MASK			0x000000ff
-# define SDVO_MULTIPLIER_SHIFT_HIRES		4
-# define SDVO_MULTIPLIER_SHIFT_VGA		0
-
-/** @defgroup DPLL_MD
- * @{
- */
-/** Pipe A SDVO/UDI clock multiplier/divider register for G965. */
-#define DPLL_A_MD		0x0601c
-/** Pipe B SDVO/UDI clock multiplier/divider register for G965. */
-#define DPLL_B_MD		0x06020
-/**
- * UDI pixel divider, controlling how many pixels are stuffed into a packet.
- *
- * Value is pixels minus 1.  Must be set to 1 pixel for SDVO.
- */
-# define DPLL_MD_UDI_DIVIDER_MASK		0x3f000000
-# define DPLL_MD_UDI_DIVIDER_SHIFT		24
-/** UDI pixel divider for VGA, same as DPLL_MD_UDI_DIVIDER_MASK. */
-# define DPLL_MD_VGA_UDI_DIVIDER_MASK		0x003f0000
-# define DPLL_MD_VGA_UDI_DIVIDER_SHIFT		16
-/**
- * SDVO/UDI pixel multiplier.
- *
- * SDVO requires that the bus clock rate be between 1 and 2 Ghz, and the bus
- * clock rate is 10 times the DPLL clock.  At low resolution/refresh rate
- * modes, the bus rate would be below the limits, so SDVO allows for stuffing
- * dummy bytes in the datastream at an increased clock rate, with both sides of
- * the link knowing how many bytes are fill.
- *
- * So, for a mode with a dotclock of 65Mhz, we would want to double the clock
- * rate to 130Mhz to get a bus rate of 1.30Ghz.  The DPLL clock rate would be
- * set to 130Mhz, and the SDVO multiplier set to 2x in this register and
- * through an SDVO command.
- *
- * This register field has values of multiplication factor minus 1, with
- * a maximum multiplier of 5 for SDVO.
- */
-# define DPLL_MD_UDI_MULTIPLIER_MASK		0x00003f00
-# define DPLL_MD_UDI_MULTIPLIER_SHIFT		8
-/** SDVO/UDI pixel multiplier for VGA, same as DPLL_MD_UDI_MULTIPLIER_MASK.
- * This best be set to the default value (3) or the CRT won't work. No,
- * I don't entirely understand what this does...
- */
-# define DPLL_MD_VGA_UDI_MULTIPLIER_MASK	0x0000003f
-# define DPLL_MD_VGA_UDI_MULTIPLIER_SHIFT	0
-/** @} */
-
-#define DPLL_TEST		0x606c
-# define DPLLB_TEST_SDVO_DIV_1			(0 << 22)
-# define DPLLB_TEST_SDVO_DIV_2			(1 << 22)
-# define DPLLB_TEST_SDVO_DIV_4			(2 << 22)
-# define DPLLB_TEST_SDVO_DIV_MASK		(3 << 22)
-# define DPLLB_TEST_N_BYPASS			(1 << 19)
-# define DPLLB_TEST_M_BYPASS			(1 << 18)
-# define DPLLB_INPUT_BUFFER_ENABLE		(1 << 16)
-# define DPLLA_TEST_N_BYPASS			(1 << 3)
-# define DPLLA_TEST_M_BYPASS			(1 << 2)
-# define DPLLA_INPUT_BUFFER_ENABLE		(1 << 0)
-
-#define ADPA			0x61100
-#define ADPA_DAC_ENABLE		(1<<31)
-#define ADPA_DAC_DISABLE	0
-#define ADPA_PIPE_SELECT_MASK	(1<<30)
-#define ADPA_PIPE_A_SELECT	0
-#define ADPA_PIPE_B_SELECT	(1<<30)
-#define ADPA_USE_VGA_HVPOLARITY (1<<15)
-#define ADPA_SETS_HVPOLARITY	0
-#define ADPA_VSYNC_CNTL_DISABLE (1<<11)
-#define ADPA_VSYNC_CNTL_ENABLE	0
-#define ADPA_HSYNC_CNTL_DISABLE (1<<10)
-#define ADPA_HSYNC_CNTL_ENABLE	0
-#define ADPA_VSYNC_ACTIVE_HIGH	(1<<4)
-#define ADPA_VSYNC_ACTIVE_LOW	0
-#define ADPA_HSYNC_ACTIVE_HIGH	(1<<3)
-#define ADPA_HSYNC_ACTIVE_LOW	0
-
-#define FPA0		0x06040
-#define FPA1		0x06044
-#define FPB0		0x06048
-#define FPB1		0x0604c
-# define FP_N_DIV_MASK				0x003f0000
-# define FP_N_DIV_SHIFT				16
-# define FP_M1_DIV_MASK				0x00003f00
-# define FP_M1_DIV_SHIFT			8
-# define FP_M2_DIV_MASK				0x0000003f
-# define FP_M2_DIV_SHIFT			0
-
-
-#define PORT_HOTPLUG_EN		0x61110
-# define SDVOB_HOTPLUG_INT_EN			(1 << 26)
-# define SDVOC_HOTPLUG_INT_EN			(1 << 25)
-# define TV_HOTPLUG_INT_EN			(1 << 18)
-# define CRT_HOTPLUG_INT_EN			(1 << 9)
-# define CRT_HOTPLUG_FORCE_DETECT		(1 << 3)
-
-#define PORT_HOTPLUG_STAT	0x61114
-# define CRT_HOTPLUG_INT_STATUS			(1 << 11)
-# define TV_HOTPLUG_INT_STATUS			(1 << 10)
-# define CRT_HOTPLUG_MONITOR_MASK		(3 << 8)
-# define CRT_HOTPLUG_MONITOR_COLOR		(3 << 8)
-# define CRT_HOTPLUG_MONITOR_MONO		(2 << 8)
-# define CRT_HOTPLUG_MONITOR_NONE		(0 << 8)
-# define SDVOC_HOTPLUG_INT_STATUS		(1 << 7)
-# define SDVOB_HOTPLUG_INT_STATUS		(1 << 6)
-
-#define SDVOB			0x61140
-#define SDVOC			0x61160
-#define SDVO_ENABLE				(1 << 31)
-#define SDVO_PIPE_B_SELECT			(1 << 30)
-#define SDVO_STALL_SELECT			(1 << 29)
-#define SDVO_INTERRUPT_ENABLE			(1 << 26)
-/**
- * 915G/GM SDVO pixel multiplier.
- *
- * Programmed value is multiplier - 1, up to 5x.
- *
- * \sa DPLL_MD_UDI_MULTIPLIER_MASK
- */
-#define SDVO_PORT_MULTIPLY_MASK			(7 << 23)
-#define SDVO_PORT_MULTIPLY_SHIFT		23
-#define SDVO_PHASE_SELECT_MASK			(15 << 19)
-#define SDVO_PHASE_SELECT_DEFAULT		(6 << 19)
-#define SDVO_CLOCK_OUTPUT_INVERT		(1 << 18)
-#define SDVOC_GANG_MODE				(1 << 16)
-#define SDVO_BORDER_ENABLE			(1 << 7)
-#define SDVOB_PCIE_CONCURRENCY			(1 << 3)
-#define SDVO_DETECTED				(1 << 2)
-/* Bits to be preserved when writing */
-#define SDVOB_PRESERVE_MASK			((1 << 17) | (1 << 16) | (1 << 14))
-#define SDVOC_PRESERVE_MASK			(1 << 17)
-
-/** @defgroup LVDS
- * @{
- */
-/**
- * This register controls the LVDS output enable, pipe selection, and data
- * format selection.
- *
- * All of the clock/data pairs are force powered down by power sequencing.
- */
-#define LVDS			0x61180
-/**
- * Enables the LVDS port.  This bit must be set before DPLLs are enabled, as
- * the DPLL semantics change when the LVDS is assigned to that pipe.
- */
-# define LVDS_PORT_EN			(1 << 31)
-/** Selects pipe B for LVDS data.  Must be set on pre-965. */
-# define LVDS_PIPEB_SELECT		(1 << 30)
-
-/**
- * Enables the A0-A2 data pairs and CLKA, containing 18 bits of color data per
- * pixel.
- */
-# define LVDS_A0A2_CLKA_POWER_MASK	(3 << 8)
-# define LVDS_A0A2_CLKA_POWER_DOWN	(0 << 8)
-# define LVDS_A0A2_CLKA_POWER_UP	(3 << 8)
-/**
- * Controls the A3 data pair, which contains the additional LSBs for 24 bit
- * mode.  Only enabled if LVDS_A0A2_CLKA_POWER_UP also indicates it should be
- * on.
- */
-# define LVDS_A3_POWER_MASK		(3 << 6)
-# define LVDS_A3_POWER_DOWN		(0 << 6)
-# define LVDS_A3_POWER_UP		(3 << 6)
-/**
- * Controls the CLKB pair.  This should only be set when LVDS_B0B3_POWER_UP
- * is set.
- */
-# define LVDS_CLKB_POWER_MASK		(3 << 4)
-# define LVDS_CLKB_POWER_DOWN		(0 << 4)
-# define LVDS_CLKB_POWER_UP		(3 << 4)
-
-/**
- * Controls the B0-B3 data pairs.  This must be set to match the DPLL p2
- * setting for whether we are in dual-channel mode.  The B3 pair will
- * additionally only be powered up when LVDS_A3_POWER_UP is set.
- */
-# define LVDS_B0B3_POWER_MASK		(3 << 2)
-# define LVDS_B0B3_POWER_DOWN		(0 << 2)
-# define LVDS_B0B3_POWER_UP		(3 << 2)
-
-#define PIPEACONF 0x70008
-#define PIPEACONF_ENABLE	(1<<31)
-#define PIPEACONF_DISABLE	0
-#define PIPEACONF_DOUBLE_WIDE	(1<<30)
-#define I965_PIPECONF_ACTIVE	(1<<30)
-#define PIPEACONF_SINGLE_WIDE	0
-#define PIPEACONF_PIPE_UNLOCKED 0
-#define PIPEACONF_PIPE_LOCKED	(1<<25)
-#define PIPEACONF_PALETTE	0
-#define PIPEACONF_GAMMA		(1<<24)
-#define PIPECONF_FORCE_BORDER	(1<<25)
-#define PIPECONF_PROGRESSIVE	(0 << 21)
-#define PIPECONF_INTERLACE_W_FIELD_INDICATION	(6 << 21)
-#define PIPECONF_INTERLACE_FIELD_0_ONLY		(7 << 21)
-
-#define DSPARB	  0x70030
-#define DSPARB_CSTART_MASK	(0x7f << 7)
-#define DSPARB_CSTART_SHIFT	7
-#define DSPARB_BSTART_MASK	(0x7f)		 
-#define DSPARB_BSTART_SHIFT	0
-
-#define PIPEBCONF 0x71008
-#define PIPEBCONF_ENABLE	(1<<31)
-#define PIPEBCONF_DISABLE	0
-#define PIPEBCONF_DOUBLE_WIDE	(1<<30)
-#define PIPEBCONF_DISABLE	0
-#define PIPEBCONF_GAMMA		(1<<24)
-#define PIPEBCONF_PALETTE	0
-
-#define PIPEBGCMAXRED		0x71010
-#define PIPEBGCMAXGREEN		0x71014
-#define PIPEBGCMAXBLUE		0x71018
-#define PIPEBSTAT		0x71024
-#define PIPEBFRAMEHIGH		0x71040
-#define PIPEBFRAMEPIXEL		0x71044
-
-#define DSPACNTR		0x70180
-#define DSPBCNTR		0x71180
-#define DISPLAY_PLANE_ENABLE			(1<<31)
-#define DISPLAY_PLANE_DISABLE			0
-#define DISPPLANE_GAMMA_ENABLE			(1<<30)
-#define DISPPLANE_GAMMA_DISABLE			0
-#define DISPPLANE_PIXFORMAT_MASK		(0xf<<26)
-#define DISPPLANE_8BPP				(0x2<<26)
-#define DISPPLANE_15_16BPP			(0x4<<26)
-#define DISPPLANE_16BPP				(0x5<<26)
-#define DISPPLANE_32BPP_NO_ALPHA		(0x6<<26)
-#define DISPPLANE_32BPP				(0x7<<26)
-#define DISPPLANE_STEREO_ENABLE			(1<<25)
-#define DISPPLANE_STEREO_DISABLE		0
-#define DISPPLANE_SEL_PIPE_MASK			(1<<24)
-#define DISPPLANE_SEL_PIPE_A			0
-#define DISPPLANE_SEL_PIPE_B			(1<<24)
-#define DISPPLANE_SRC_KEY_ENABLE		(1<<22)
-#define DISPPLANE_SRC_KEY_DISABLE		0
-#define DISPPLANE_LINE_DOUBLE			(1<<20)
-#define DISPPLANE_NO_LINE_DOUBLE		0
-#define DISPPLANE_STEREO_POLARITY_FIRST		0
-#define DISPPLANE_STEREO_POLARITY_SECOND	(1<<18)
-/* plane B only */
-#define DISPPLANE_ALPHA_TRANS_ENABLE		(1<<15)
-#define DISPPLANE_ALPHA_TRANS_DISABLE		0
-#define DISPPLANE_SPRITE_ABOVE_DISPLAYA		0
-#define DISPPLANE_SPRITE_ABOVE_OVERLAY		(1)
-
-#define DSPABASE		0x70184
-#define DSPASTRIDE		0x70188
-
-#define DSPBBASE		0x71184
-#define DSPBADDR		DSPBBASE
-#define DSPBSTRIDE		0x71188
-
-#define DSPAKEYVAL		0x70194
-#define DSPAKEYMASK		0x70198
-
-#define DSPAPOS			0x7018C /* reserved */
-#define DSPASIZE		0x70190
-#define DSPBPOS			0x7118C
-#define DSPBSIZE		0x71190
-
-#define DSPASURF		0x7019C
-#define DSPATILEOFF		0x701A4
-
-#define DSPBSURF		0x7119C
-#define DSPBTILEOFF		0x711A4
-
-#define VGACNTRL		0x71400
-# define VGA_DISP_DISABLE			(1 << 31)
-# define VGA_2X_MODE				(1 << 30)
-# define VGA_PIPE_B_SELECT			(1 << 29)
-
-/*
- * Some BIOS scratch area registers.  The 845 (and 830?) store the amount
- * of video memory available to the BIOS in SWF1.
- */
-
-#define SWF0			0x71410
-
-/*
- * 855 scratch registers.
- */
-#define SWF10			0x70410
-
-#define SWF30			0x72414
-
-/*
- * Overlay registers.  These are overlay registers accessed via MMIO.
- * Those loaded via the overlay register page are defined in i830_video.c.
- */
-#define OVADD			0x30000
-
-#define DOVSTA			0x30008
-#define OC_BUF			(0x3<<20)
-
-#define OGAMC5			0x30010
-#define OGAMC4			0x30014
-#define OGAMC3			0x30018
-#define OGAMC2			0x3001c
-#define OGAMC1			0x30020
-#define OGAMC0			0x30024
-/*
- * Palette registers
- */
-#define PALETTE_A		0x0a000
-#define PALETTE_B		0x0a800
+extern int i915_wait_ring(struct drm_device * dev, int n, const char *caller);
 
 #define IS_I830(dev) ((dev)->pci_device == 0x3577)
 #define IS_845G(dev) ((dev)->pci_device == 0x2562)
@@ -1119,7 +639,7 @@
 
 #define IS_I965GM(dev) ((dev)->pci_device == 0x2A02)
 
-#define IS_IGD_GM(dev) ((dev)->pci_device == 0x2A42)
+#define IS_GM45(dev) ((dev)->pci_device == 0x2A42)
 
 #define IS_G4X(dev) ((dev)->pci_device == 0x2E02 || \
 		     (dev)->pci_device == 0x2E12 || \
@@ -1133,9 +653,9 @@
 		      IS_I945GM(dev) || IS_I965G(dev) || IS_G33(dev))
 
 #define IS_MOBILE(dev) (IS_I830(dev) || IS_I85X(dev) || IS_I915GM(dev) || \
-			IS_I945GM(dev) || IS_I965GM(dev) || IS_IGD_GM(dev))
+			IS_I945GM(dev) || IS_I965GM(dev) || IS_GM45(dev))
 
-#define I915_NEED_GFX_HWS(dev) (IS_G33(dev) || IS_IGD_GM(dev) || IS_G4X(dev))
+#define I915_NEED_GFX_HWS(dev) (IS_G33(dev) || IS_GM45(dev) || IS_G4X(dev))
 
 #define PRIMARY_RINGBUFFER_SIZE         (128*1024)
 
diff --git a/drivers/gpu/drm/i915/i915_gem.c b/drivers/gpu/drm/i915/i915_gem.c
new file mode 100644
index 0000000..9ac73dd
--- /dev/null
+++ b/drivers/gpu/drm/i915/i915_gem.c
@@ -0,0 +1,2558 @@
+/*
+ * Copyright © 2008 Intel Corporation
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice (including the next
+ * paragraph) shall be included in all copies or substantial portions of the
+ * Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
+ * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
+ * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
+ * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
+ * IN THE SOFTWARE.
+ *
+ * Authors:
+ *    Eric Anholt <eric@anholt.net>
+ *
+ */
+
+#include "drmP.h"
+#include "drm.h"
+#include "i915_drm.h"
+#include "i915_drv.h"
+#include <linux/swap.h>
+
+static int
+i915_gem_object_set_domain(struct drm_gem_object *obj,
+			    uint32_t read_domains,
+			    uint32_t write_domain);
+static int
+i915_gem_object_set_domain_range(struct drm_gem_object *obj,
+				 uint64_t offset,
+				 uint64_t size,
+				 uint32_t read_domains,
+				 uint32_t write_domain);
+static int
+i915_gem_set_domain(struct drm_gem_object *obj,
+		    struct drm_file *file_priv,
+		    uint32_t read_domains,
+		    uint32_t write_domain);
+static int i915_gem_object_get_page_list(struct drm_gem_object *obj);
+static void i915_gem_object_free_page_list(struct drm_gem_object *obj);
+static int i915_gem_object_wait_rendering(struct drm_gem_object *obj);
+
+static void
+i915_gem_cleanup_ringbuffer(struct drm_device *dev);
+
+int
+i915_gem_init_ioctl(struct drm_device *dev, void *data,
+		    struct drm_file *file_priv)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_i915_gem_init *args = data;
+
+	mutex_lock(&dev->struct_mutex);
+
+	if (args->gtt_start >= args->gtt_end ||
+	    (args->gtt_start & (PAGE_SIZE - 1)) != 0 ||
+	    (args->gtt_end & (PAGE_SIZE - 1)) != 0) {
+		mutex_unlock(&dev->struct_mutex);
+		return -EINVAL;
+	}
+
+	drm_mm_init(&dev_priv->mm.gtt_space, args->gtt_start,
+	    args->gtt_end - args->gtt_start);
+
+	dev->gtt_total = (uint32_t) (args->gtt_end - args->gtt_start);
+
+	mutex_unlock(&dev->struct_mutex);
+
+	return 0;
+}
+
+
+/**
+ * Creates a new mm object and returns a handle to it.
+ */
+int
+i915_gem_create_ioctl(struct drm_device *dev, void *data,
+		      struct drm_file *file_priv)
+{
+	struct drm_i915_gem_create *args = data;
+	struct drm_gem_object *obj;
+	int handle, ret;
+
+	args->size = roundup(args->size, PAGE_SIZE);
+
+	/* Allocate the new object */
+	obj = drm_gem_object_alloc(dev, args->size);
+	if (obj == NULL)
+		return -ENOMEM;
+
+	ret = drm_gem_handle_create(file_priv, obj, &handle);
+	mutex_lock(&dev->struct_mutex);
+	drm_gem_object_handle_unreference(obj);
+	mutex_unlock(&dev->struct_mutex);
+
+	if (ret)
+		return ret;
+
+	args->handle = handle;
+
+	return 0;
+}
+
+/**
+ * Reads data from the object referenced by handle.
+ *
+ * On error, the contents of *data are undefined.
+ */
+int
+i915_gem_pread_ioctl(struct drm_device *dev, void *data,
+		     struct drm_file *file_priv)
+{
+	struct drm_i915_gem_pread *args = data;
+	struct drm_gem_object *obj;
+	struct drm_i915_gem_object *obj_priv;
+	ssize_t read;
+	loff_t offset;
+	int ret;
+
+	obj = drm_gem_object_lookup(dev, file_priv, args->handle);
+	if (obj == NULL)
+		return -EBADF;
+	obj_priv = obj->driver_private;
+
+	/* Bounds check source.
+	 *
+	 * XXX: This could use review for overflow issues...
+	 */
+	if (args->offset > obj->size || args->size > obj->size ||
+	    args->offset + args->size > obj->size) {
+		drm_gem_object_unreference(obj);
+		return -EINVAL;
+	}
+
+	mutex_lock(&dev->struct_mutex);
+
+	ret = i915_gem_object_set_domain_range(obj, args->offset, args->size,
+					       I915_GEM_DOMAIN_CPU, 0);
+	if (ret != 0) {
+		drm_gem_object_unreference(obj);
+		mutex_unlock(&dev->struct_mutex);
+		return ret;
+	}
+
+	offset = args->offset;
+
+	read = vfs_read(obj->filp, (char __user *)(uintptr_t)args->data_ptr,
+			args->size, &offset);
+	if (read != args->size) {
+		drm_gem_object_unreference(obj);
+		mutex_unlock(&dev->struct_mutex);
+		if (read < 0)
+			return read;
+		else
+			return -EINVAL;
+	}
+
+	drm_gem_object_unreference(obj);
+	mutex_unlock(&dev->struct_mutex);
+
+	return 0;
+}
+
+static int
+i915_gem_gtt_pwrite(struct drm_device *dev, struct drm_gem_object *obj,
+		    struct drm_i915_gem_pwrite *args,
+		    struct drm_file *file_priv)
+{
+	struct drm_i915_gem_object *obj_priv = obj->driver_private;
+	ssize_t remain;
+	loff_t offset;
+	char __user *user_data;
+	char __iomem *vaddr;
+	char *vaddr_atomic;
+	int i, o, l;
+	int ret = 0;
+	unsigned long pfn;
+	unsigned long unwritten;
+
+	user_data = (char __user *) (uintptr_t) args->data_ptr;
+	remain = args->size;
+	if (!access_ok(VERIFY_READ, user_data, remain))
+		return -EFAULT;
+
+
+	mutex_lock(&dev->struct_mutex);
+	ret = i915_gem_object_pin(obj, 0);
+	if (ret) {
+		mutex_unlock(&dev->struct_mutex);
+		return ret;
+	}
+	ret = i915_gem_set_domain(obj, file_priv,
+				  I915_GEM_DOMAIN_GTT, I915_GEM_DOMAIN_GTT);
+	if (ret)
+		goto fail;
+
+	obj_priv = obj->driver_private;
+	offset = obj_priv->gtt_offset + args->offset;
+	obj_priv->dirty = 1;
+
+	while (remain > 0) {
+		/* Operation in this page
+		 *
+		 * i = page number
+		 * o = offset within page
+		 * l = bytes to copy
+		 */
+		i = offset >> PAGE_SHIFT;
+		o = offset & (PAGE_SIZE-1);
+		l = remain;
+		if ((o + l) > PAGE_SIZE)
+			l = PAGE_SIZE - o;
+
+		pfn = (dev->agp->base >> PAGE_SHIFT) + i;
+
+#ifdef CONFIG_HIGHMEM
+		/* This is a workaround for the low performance of iounmap
+		 * (approximate 10% cpu cost on normal 3D workloads).
+		 * kmap_atomic on HIGHMEM kernels happens to let us map card
+		 * memory without taking IPIs.  When the vmap rework lands
+		 * we should be able to dump this hack.
+		 */
+		vaddr_atomic = kmap_atomic_pfn(pfn, KM_USER0);
+#if WATCH_PWRITE
+		DRM_INFO("pwrite i %d o %d l %d pfn %ld vaddr %p\n",
+			 i, o, l, pfn, vaddr_atomic);
+#endif
+		unwritten = __copy_from_user_inatomic_nocache(vaddr_atomic + o,
+							      user_data, l);
+		kunmap_atomic(vaddr_atomic, KM_USER0);
+
+		if (unwritten)
+#endif /* CONFIG_HIGHMEM */
+		{
+			vaddr = ioremap_wc(pfn << PAGE_SHIFT, PAGE_SIZE);
+#if WATCH_PWRITE
+			DRM_INFO("pwrite slow i %d o %d l %d "
+				 "pfn %ld vaddr %p\n",
+				 i, o, l, pfn, vaddr);
+#endif
+			if (vaddr == NULL) {
+				ret = -EFAULT;
+				goto fail;
+			}
+			unwritten = __copy_from_user(vaddr + o, user_data, l);
+#if WATCH_PWRITE
+			DRM_INFO("unwritten %ld\n", unwritten);
+#endif
+			iounmap(vaddr);
+			if (unwritten) {
+				ret = -EFAULT;
+				goto fail;
+			}
+		}
+
+		remain -= l;
+		user_data += l;
+		offset += l;
+	}
+#if WATCH_PWRITE && 1
+	i915_gem_clflush_object(obj);
+	i915_gem_dump_object(obj, args->offset + args->size, __func__, ~0);
+	i915_gem_clflush_object(obj);
+#endif
+
+fail:
+	i915_gem_object_unpin(obj);
+	mutex_unlock(&dev->struct_mutex);
+
+	return ret;
+}
+
+static int
+i915_gem_shmem_pwrite(struct drm_device *dev, struct drm_gem_object *obj,
+		      struct drm_i915_gem_pwrite *args,
+		      struct drm_file *file_priv)
+{
+	int ret;
+	loff_t offset;
+	ssize_t written;
+
+	mutex_lock(&dev->struct_mutex);
+
+	ret = i915_gem_set_domain(obj, file_priv,
+				  I915_GEM_DOMAIN_CPU, I915_GEM_DOMAIN_CPU);
+	if (ret) {
+		mutex_unlock(&dev->struct_mutex);
+		return ret;
+	}
+
+	offset = args->offset;
+
+	written = vfs_write(obj->filp,
+			    (char __user *)(uintptr_t) args->data_ptr,
+			    args->size, &offset);
+	if (written != args->size) {
+		mutex_unlock(&dev->struct_mutex);
+		if (written < 0)
+			return written;
+		else
+			return -EINVAL;
+	}
+
+	mutex_unlock(&dev->struct_mutex);
+
+	return 0;
+}
+
+/**
+ * Writes data to the object referenced by handle.
+ *
+ * On error, the contents of the buffer that were to be modified are undefined.
+ */
+int
+i915_gem_pwrite_ioctl(struct drm_device *dev, void *data,
+		      struct drm_file *file_priv)
+{
+	struct drm_i915_gem_pwrite *args = data;
+	struct drm_gem_object *obj;
+	struct drm_i915_gem_object *obj_priv;
+	int ret = 0;
+
+	obj = drm_gem_object_lookup(dev, file_priv, args->handle);
+	if (obj == NULL)
+		return -EBADF;
+	obj_priv = obj->driver_private;
+
+	/* Bounds check destination.
+	 *
+	 * XXX: This could use review for overflow issues...
+	 */
+	if (args->offset > obj->size || args->size > obj->size ||
+	    args->offset + args->size > obj->size) {
+		drm_gem_object_unreference(obj);
+		return -EINVAL;
+	}
+
+	/* We can only do the GTT pwrite on untiled buffers, as otherwise
+	 * it would end up going through the fenced access, and we'll get
+	 * different detiling behavior between reading and writing.
+	 * pread/pwrite currently are reading and writing from the CPU
+	 * perspective, requiring manual detiling by the client.
+	 */
+	if (obj_priv->tiling_mode == I915_TILING_NONE &&
+	    dev->gtt_total != 0)
+		ret = i915_gem_gtt_pwrite(dev, obj, args, file_priv);
+	else
+		ret = i915_gem_shmem_pwrite(dev, obj, args, file_priv);
+
+#if WATCH_PWRITE
+	if (ret)
+		DRM_INFO("pwrite failed %d\n", ret);
+#endif
+
+	drm_gem_object_unreference(obj);
+
+	return ret;
+}
+
+/**
+ * Called when user space prepares to use an object
+ */
+int
+i915_gem_set_domain_ioctl(struct drm_device *dev, void *data,
+			  struct drm_file *file_priv)
+{
+	struct drm_i915_gem_set_domain *args = data;
+	struct drm_gem_object *obj;
+	int ret;
+
+	if (!(dev->driver->driver_features & DRIVER_GEM))
+		return -ENODEV;
+
+	obj = drm_gem_object_lookup(dev, file_priv, args->handle);
+	if (obj == NULL)
+		return -EBADF;
+
+	mutex_lock(&dev->struct_mutex);
+#if WATCH_BUF
+	DRM_INFO("set_domain_ioctl %p(%d), %08x %08x\n",
+		 obj, obj->size, args->read_domains, args->write_domain);
+#endif
+	ret = i915_gem_set_domain(obj, file_priv,
+				  args->read_domains, args->write_domain);
+	drm_gem_object_unreference(obj);
+	mutex_unlock(&dev->struct_mutex);
+	return ret;
+}
+
+/**
+ * Called when user space has done writes to this buffer
+ */
+int
+i915_gem_sw_finish_ioctl(struct drm_device *dev, void *data,
+		      struct drm_file *file_priv)
+{
+	struct drm_i915_gem_sw_finish *args = data;
+	struct drm_gem_object *obj;
+	struct drm_i915_gem_object *obj_priv;
+	int ret = 0;
+
+	if (!(dev->driver->driver_features & DRIVER_GEM))
+		return -ENODEV;
+
+	mutex_lock(&dev->struct_mutex);
+	obj = drm_gem_object_lookup(dev, file_priv, args->handle);
+	if (obj == NULL) {
+		mutex_unlock(&dev->struct_mutex);
+		return -EBADF;
+	}
+
+#if WATCH_BUF
+	DRM_INFO("%s: sw_finish %d (%p %d)\n",
+		 __func__, args->handle, obj, obj->size);
+#endif
+	obj_priv = obj->driver_private;
+
+	/* Pinned buffers may be scanout, so flush the cache */
+	if ((obj->write_domain & I915_GEM_DOMAIN_CPU) && obj_priv->pin_count) {
+		i915_gem_clflush_object(obj);
+		drm_agp_chipset_flush(dev);
+	}
+	drm_gem_object_unreference(obj);
+	mutex_unlock(&dev->struct_mutex);
+	return ret;
+}
+
+/**
+ * Maps the contents of an object, returning the address it is mapped
+ * into.
+ *
+ * While the mapping holds a reference on the contents of the object, it doesn't
+ * imply a ref on the object itself.
+ */
+int
+i915_gem_mmap_ioctl(struct drm_device *dev, void *data,
+		   struct drm_file *file_priv)
+{
+	struct drm_i915_gem_mmap *args = data;
+	struct drm_gem_object *obj;
+	loff_t offset;
+	unsigned long addr;
+
+	if (!(dev->driver->driver_features & DRIVER_GEM))
+		return -ENODEV;
+
+	obj = drm_gem_object_lookup(dev, file_priv, args->handle);
+	if (obj == NULL)
+		return -EBADF;
+
+	offset = args->offset;
+
+	down_write(&current->mm->mmap_sem);
+	addr = do_mmap(obj->filp, 0, args->size,
+		       PROT_READ | PROT_WRITE, MAP_SHARED,
+		       args->offset);
+	up_write(&current->mm->mmap_sem);
+	mutex_lock(&dev->struct_mutex);
+	drm_gem_object_unreference(obj);
+	mutex_unlock(&dev->struct_mutex);
+	if (IS_ERR((void *)addr))
+		return addr;
+
+	args->addr_ptr = (uint64_t) addr;
+
+	return 0;
+}
+
+static void
+i915_gem_object_free_page_list(struct drm_gem_object *obj)
+{
+	struct drm_i915_gem_object *obj_priv = obj->driver_private;
+	int page_count = obj->size / PAGE_SIZE;
+	int i;
+
+	if (obj_priv->page_list == NULL)
+		return;
+
+
+	for (i = 0; i < page_count; i++)
+		if (obj_priv->page_list[i] != NULL) {
+			if (obj_priv->dirty)
+				set_page_dirty(obj_priv->page_list[i]);
+			mark_page_accessed(obj_priv->page_list[i]);
+			page_cache_release(obj_priv->page_list[i]);
+		}
+	obj_priv->dirty = 0;
+
+	drm_free(obj_priv->page_list,
+		 page_count * sizeof(struct page *),
+		 DRM_MEM_DRIVER);
+	obj_priv->page_list = NULL;
+}
+
+static void
+i915_gem_object_move_to_active(struct drm_gem_object *obj)
+{
+	struct drm_device *dev = obj->dev;
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_i915_gem_object *obj_priv = obj->driver_private;
+
+	/* Add a reference if we're newly entering the active list. */
+	if (!obj_priv->active) {
+		drm_gem_object_reference(obj);
+		obj_priv->active = 1;
+	}
+	/* Move from whatever list we were on to the tail of execution. */
+	list_move_tail(&obj_priv->list,
+		       &dev_priv->mm.active_list);
+}
+
+
+static void
+i915_gem_object_move_to_inactive(struct drm_gem_object *obj)
+{
+	struct drm_device *dev = obj->dev;
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_i915_gem_object *obj_priv = obj->driver_private;
+
+	i915_verify_inactive(dev, __FILE__, __LINE__);
+	if (obj_priv->pin_count != 0)
+		list_del_init(&obj_priv->list);
+	else
+		list_move_tail(&obj_priv->list, &dev_priv->mm.inactive_list);
+
+	if (obj_priv->active) {
+		obj_priv->active = 0;
+		drm_gem_object_unreference(obj);
+	}
+	i915_verify_inactive(dev, __FILE__, __LINE__);
+}
+
+/**
+ * Creates a new sequence number, emitting a write of it to the status page
+ * plus an interrupt, which will trigger i915_user_interrupt_handler.
+ *
+ * Must be called with struct_lock held.
+ *
+ * Returned sequence numbers are nonzero on success.
+ */
+static uint32_t
+i915_add_request(struct drm_device *dev, uint32_t flush_domains)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_i915_gem_request *request;
+	uint32_t seqno;
+	int was_empty;
+	RING_LOCALS;
+
+	request = drm_calloc(1, sizeof(*request), DRM_MEM_DRIVER);
+	if (request == NULL)
+		return 0;
+
+	/* Grab the seqno we're going to make this request be, and bump the
+	 * next (skipping 0 so it can be the reserved no-seqno value).
+	 */
+	seqno = dev_priv->mm.next_gem_seqno;
+	dev_priv->mm.next_gem_seqno++;
+	if (dev_priv->mm.next_gem_seqno == 0)
+		dev_priv->mm.next_gem_seqno++;
+
+	BEGIN_LP_RING(4);
+	OUT_RING(MI_STORE_DWORD_INDEX);
+	OUT_RING(I915_GEM_HWS_INDEX << MI_STORE_DWORD_INDEX_SHIFT);
+	OUT_RING(seqno);
+
+	OUT_RING(MI_USER_INTERRUPT);
+	ADVANCE_LP_RING();
+
+	DRM_DEBUG("%d\n", seqno);
+
+	request->seqno = seqno;
+	request->emitted_jiffies = jiffies;
+	request->flush_domains = flush_domains;
+	was_empty = list_empty(&dev_priv->mm.request_list);
+	list_add_tail(&request->list, &dev_priv->mm.request_list);
+
+	if (was_empty && !dev_priv->mm.suspended)
+		schedule_delayed_work(&dev_priv->mm.retire_work, HZ);
+	return seqno;
+}
+
+/**
+ * Command execution barrier
+ *
+ * Ensures that all commands in the ring are finished
+ * before signalling the CPU
+ */
+static uint32_t
+i915_retire_commands(struct drm_device *dev)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	uint32_t cmd = MI_FLUSH | MI_NO_WRITE_FLUSH;
+	uint32_t flush_domains = 0;
+	RING_LOCALS;
+
+	/* The sampler always gets flushed on i965 (sigh) */
+	if (IS_I965G(dev))
+		flush_domains |= I915_GEM_DOMAIN_SAMPLER;
+	BEGIN_LP_RING(2);
+	OUT_RING(cmd);
+	OUT_RING(0); /* noop */
+	ADVANCE_LP_RING();
+	return flush_domains;
+}
+
+/**
+ * Moves buffers associated only with the given active seqno from the active
+ * to inactive list, potentially freeing them.
+ */
+static void
+i915_gem_retire_request(struct drm_device *dev,
+			struct drm_i915_gem_request *request)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+
+	/* Move any buffers on the active list that are no longer referenced
+	 * by the ringbuffer to the flushing/inactive lists as appropriate.
+	 */
+	while (!list_empty(&dev_priv->mm.active_list)) {
+		struct drm_gem_object *obj;
+		struct drm_i915_gem_object *obj_priv;
+
+		obj_priv = list_first_entry(&dev_priv->mm.active_list,
+					    struct drm_i915_gem_object,
+					    list);
+		obj = obj_priv->obj;
+
+		/* If the seqno being retired doesn't match the oldest in the
+		 * list, then the oldest in the list must still be newer than
+		 * this seqno.
+		 */
+		if (obj_priv->last_rendering_seqno != request->seqno)
+			return;
+#if WATCH_LRU
+		DRM_INFO("%s: retire %d moves to inactive list %p\n",
+			 __func__, request->seqno, obj);
+#endif
+
+		if (obj->write_domain != 0) {
+			list_move_tail(&obj_priv->list,
+				       &dev_priv->mm.flushing_list);
+		} else {
+			i915_gem_object_move_to_inactive(obj);
+		}
+	}
+
+	if (request->flush_domains != 0) {
+		struct drm_i915_gem_object *obj_priv, *next;
+
+		/* Clear the write domain and activity from any buffers
+		 * that are just waiting for a flush matching the one retired.
+		 */
+		list_for_each_entry_safe(obj_priv, next,
+					 &dev_priv->mm.flushing_list, list) {
+			struct drm_gem_object *obj = obj_priv->obj;
+
+			if (obj->write_domain & request->flush_domains) {
+				obj->write_domain = 0;
+				i915_gem_object_move_to_inactive(obj);
+			}
+		}
+
+	}
+}
+
+/**
+ * Returns true if seq1 is later than seq2.
+ */
+static int
+i915_seqno_passed(uint32_t seq1, uint32_t seq2)
+{
+	return (int32_t)(seq1 - seq2) >= 0;
+}
+
+uint32_t
+i915_get_gem_seqno(struct drm_device *dev)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+
+	return READ_HWSP(dev_priv, I915_GEM_HWS_INDEX);
+}
+
+/**
+ * This function clears the request list as sequence numbers are passed.
+ */
+void
+i915_gem_retire_requests(struct drm_device *dev)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	uint32_t seqno;
+
+	seqno = i915_get_gem_seqno(dev);
+
+	while (!list_empty(&dev_priv->mm.request_list)) {
+		struct drm_i915_gem_request *request;
+		uint32_t retiring_seqno;
+
+		request = list_first_entry(&dev_priv->mm.request_list,
+					   struct drm_i915_gem_request,
+					   list);
+		retiring_seqno = request->seqno;
+
+		if (i915_seqno_passed(seqno, retiring_seqno) ||
+		    dev_priv->mm.wedged) {
+			i915_gem_retire_request(dev, request);
+
+			list_del(&request->list);
+			drm_free(request, sizeof(*request), DRM_MEM_DRIVER);
+		} else
+			break;
+	}
+}
+
+void
+i915_gem_retire_work_handler(struct work_struct *work)
+{
+	drm_i915_private_t *dev_priv;
+	struct drm_device *dev;
+
+	dev_priv = container_of(work, drm_i915_private_t,
+				mm.retire_work.work);
+	dev = dev_priv->dev;
+
+	mutex_lock(&dev->struct_mutex);
+	i915_gem_retire_requests(dev);
+	if (!dev_priv->mm.suspended &&
+	    !list_empty(&dev_priv->mm.request_list))
+		schedule_delayed_work(&dev_priv->mm.retire_work, HZ);
+	mutex_unlock(&dev->struct_mutex);
+}
+
+/**
+ * Waits for a sequence number to be signaled, and cleans up the
+ * request and object lists appropriately for that event.
+ */
+static int
+i915_wait_request(struct drm_device *dev, uint32_t seqno)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	int ret = 0;
+
+	BUG_ON(seqno == 0);
+
+	if (!i915_seqno_passed(i915_get_gem_seqno(dev), seqno)) {
+		dev_priv->mm.waiting_gem_seqno = seqno;
+		i915_user_irq_get(dev);
+		ret = wait_event_interruptible(dev_priv->irq_queue,
+					       i915_seqno_passed(i915_get_gem_seqno(dev),
+								 seqno) ||
+					       dev_priv->mm.wedged);
+		i915_user_irq_put(dev);
+		dev_priv->mm.waiting_gem_seqno = 0;
+	}
+	if (dev_priv->mm.wedged)
+		ret = -EIO;
+
+	if (ret && ret != -ERESTARTSYS)
+		DRM_ERROR("%s returns %d (awaiting %d at %d)\n",
+			  __func__, ret, seqno, i915_get_gem_seqno(dev));
+
+	/* Directly dispatch request retiring.  While we have the work queue
+	 * to handle this, the waiter on a request often wants an associated
+	 * buffer to have made it to the inactive list, and we would need
+	 * a separate wait queue to handle that.
+	 */
+	if (ret == 0)
+		i915_gem_retire_requests(dev);
+
+	return ret;
+}
+
+static void
+i915_gem_flush(struct drm_device *dev,
+	       uint32_t invalidate_domains,
+	       uint32_t flush_domains)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	uint32_t cmd;
+	RING_LOCALS;
+
+#if WATCH_EXEC
+	DRM_INFO("%s: invalidate %08x flush %08x\n", __func__,
+		  invalidate_domains, flush_domains);
+#endif
+
+	if (flush_domains & I915_GEM_DOMAIN_CPU)
+		drm_agp_chipset_flush(dev);
+
+	if ((invalidate_domains | flush_domains) & ~(I915_GEM_DOMAIN_CPU |
+						     I915_GEM_DOMAIN_GTT)) {
+		/*
+		 * read/write caches:
+		 *
+		 * I915_GEM_DOMAIN_RENDER is always invalidated, but is
+		 * only flushed if MI_NO_WRITE_FLUSH is unset.  On 965, it is
+		 * also flushed at 2d versus 3d pipeline switches.
+		 *
+		 * read-only caches:
+		 *
+		 * I915_GEM_DOMAIN_SAMPLER is flushed on pre-965 if
+		 * MI_READ_FLUSH is set, and is always flushed on 965.
+		 *
+		 * I915_GEM_DOMAIN_COMMAND may not exist?
+		 *
+		 * I915_GEM_DOMAIN_INSTRUCTION, which exists on 965, is
+		 * invalidated when MI_EXE_FLUSH is set.
+		 *
+		 * I915_GEM_DOMAIN_VERTEX, which exists on 965, is
+		 * invalidated with every MI_FLUSH.
+		 *
+		 * TLBs:
+		 *
+		 * On 965, TLBs associated with I915_GEM_DOMAIN_COMMAND
+		 * and I915_GEM_DOMAIN_CPU in are invalidated at PTE write and
+		 * I915_GEM_DOMAIN_RENDER and I915_GEM_DOMAIN_SAMPLER
+		 * are flushed at any MI_FLUSH.
+		 */
+
+		cmd = MI_FLUSH | MI_NO_WRITE_FLUSH;
+		if ((invalidate_domains|flush_domains) &
+		    I915_GEM_DOMAIN_RENDER)
+			cmd &= ~MI_NO_WRITE_FLUSH;
+		if (!IS_I965G(dev)) {
+			/*
+			 * On the 965, the sampler cache always gets flushed
+			 * and this bit is reserved.
+			 */
+			if (invalidate_domains & I915_GEM_DOMAIN_SAMPLER)
+				cmd |= MI_READ_FLUSH;
+		}
+		if (invalidate_domains & I915_GEM_DOMAIN_INSTRUCTION)
+			cmd |= MI_EXE_FLUSH;
+
+#if WATCH_EXEC
+		DRM_INFO("%s: queue flush %08x to ring\n", __func__, cmd);
+#endif
+		BEGIN_LP_RING(2);
+		OUT_RING(cmd);
+		OUT_RING(0); /* noop */
+		ADVANCE_LP_RING();
+	}
+}
+
+/**
+ * Ensures that all rendering to the object has completed and the object is
+ * safe to unbind from the GTT or access from the CPU.
+ */
+static int
+i915_gem_object_wait_rendering(struct drm_gem_object *obj)
+{
+	struct drm_device *dev = obj->dev;
+	struct drm_i915_gem_object *obj_priv = obj->driver_private;
+	int ret;
+
+	/* If there are writes queued to the buffer, flush and
+	 * create a new seqno to wait for.
+	 */
+	if (obj->write_domain & ~(I915_GEM_DOMAIN_CPU|I915_GEM_DOMAIN_GTT)) {
+		uint32_t write_domain = obj->write_domain;
+#if WATCH_BUF
+		DRM_INFO("%s: flushing object %p from write domain %08x\n",
+			  __func__, obj, write_domain);
+#endif
+		i915_gem_flush(dev, 0, write_domain);
+
+		i915_gem_object_move_to_active(obj);
+		obj_priv->last_rendering_seqno = i915_add_request(dev,
+								  write_domain);
+		BUG_ON(obj_priv->last_rendering_seqno == 0);
+#if WATCH_LRU
+		DRM_INFO("%s: flush moves to exec list %p\n", __func__, obj);
+#endif
+	}
+
+	/* If there is rendering queued on the buffer being evicted, wait for
+	 * it.
+	 */
+	if (obj_priv->active) {
+#if WATCH_BUF
+		DRM_INFO("%s: object %p wait for seqno %08x\n",
+			  __func__, obj, obj_priv->last_rendering_seqno);
+#endif
+		ret = i915_wait_request(dev, obj_priv->last_rendering_seqno);
+		if (ret != 0)
+			return ret;
+	}
+
+	return 0;
+}
+
+/**
+ * Unbinds an object from the GTT aperture.
+ */
+static int
+i915_gem_object_unbind(struct drm_gem_object *obj)
+{
+	struct drm_device *dev = obj->dev;
+	struct drm_i915_gem_object *obj_priv = obj->driver_private;
+	int ret = 0;
+
+#if WATCH_BUF
+	DRM_INFO("%s:%d %p\n", __func__, __LINE__, obj);
+	DRM_INFO("gtt_space %p\n", obj_priv->gtt_space);
+#endif
+	if (obj_priv->gtt_space == NULL)
+		return 0;
+
+	if (obj_priv->pin_count != 0) {
+		DRM_ERROR("Attempting to unbind pinned buffer\n");
+		return -EINVAL;
+	}
+
+	/* Wait for any rendering to complete
+	 */
+	ret = i915_gem_object_wait_rendering(obj);
+	if (ret) {
+		DRM_ERROR("wait_rendering failed: %d\n", ret);
+		return ret;
+	}
+
+	/* Move the object to the CPU domain to ensure that
+	 * any possible CPU writes while it's not in the GTT
+	 * are flushed when we go to remap it. This will
+	 * also ensure that all pending GPU writes are finished
+	 * before we unbind.
+	 */
+	ret = i915_gem_object_set_domain(obj, I915_GEM_DOMAIN_CPU,
+					 I915_GEM_DOMAIN_CPU);
+	if (ret) {
+		DRM_ERROR("set_domain failed: %d\n", ret);
+		return ret;
+	}
+
+	if (obj_priv->agp_mem != NULL) {
+		drm_unbind_agp(obj_priv->agp_mem);
+		drm_free_agp(obj_priv->agp_mem, obj->size / PAGE_SIZE);
+		obj_priv->agp_mem = NULL;
+	}
+
+	BUG_ON(obj_priv->active);
+
+	i915_gem_object_free_page_list(obj);
+
+	if (obj_priv->gtt_space) {
+		atomic_dec(&dev->gtt_count);
+		atomic_sub(obj->size, &dev->gtt_memory);
+
+		drm_mm_put_block(obj_priv->gtt_space);
+		obj_priv->gtt_space = NULL;
+	}
+
+	/* Remove ourselves from the LRU list if present. */
+	if (!list_empty(&obj_priv->list))
+		list_del_init(&obj_priv->list);
+
+	return 0;
+}
+
+static int
+i915_gem_evict_something(struct drm_device *dev)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_gem_object *obj;
+	struct drm_i915_gem_object *obj_priv;
+	int ret = 0;
+
+	for (;;) {
+		/* If there's an inactive buffer available now, grab it
+		 * and be done.
+		 */
+		if (!list_empty(&dev_priv->mm.inactive_list)) {
+			obj_priv = list_first_entry(&dev_priv->mm.inactive_list,
+						    struct drm_i915_gem_object,
+						    list);
+			obj = obj_priv->obj;
+			BUG_ON(obj_priv->pin_count != 0);
+#if WATCH_LRU
+			DRM_INFO("%s: evicting %p\n", __func__, obj);
+#endif
+			BUG_ON(obj_priv->active);
+
+			/* Wait on the rendering and unbind the buffer. */
+			ret = i915_gem_object_unbind(obj);
+			break;
+		}
+
+		/* If we didn't get anything, but the ring is still processing
+		 * things, wait for one of those things to finish and hopefully
+		 * leave us a buffer to evict.
+		 */
+		if (!list_empty(&dev_priv->mm.request_list)) {
+			struct drm_i915_gem_request *request;
+
+			request = list_first_entry(&dev_priv->mm.request_list,
+						   struct drm_i915_gem_request,
+						   list);
+
+			ret = i915_wait_request(dev, request->seqno);
+			if (ret)
+				break;
+
+			/* if waiting caused an object to become inactive,
+			 * then loop around and wait for it. Otherwise, we
+			 * assume that waiting freed and unbound something,
+			 * so there should now be some space in the GTT
+			 */
+			if (!list_empty(&dev_priv->mm.inactive_list))
+				continue;
+			break;
+		}
+
+		/* If we didn't have anything on the request list but there
+		 * are buffers awaiting a flush, emit one and try again.
+		 * When we wait on it, those buffers waiting for that flush
+		 * will get moved to inactive.
+		 */
+		if (!list_empty(&dev_priv->mm.flushing_list)) {
+			obj_priv = list_first_entry(&dev_priv->mm.flushing_list,
+						    struct drm_i915_gem_object,
+						    list);
+			obj = obj_priv->obj;
+
+			i915_gem_flush(dev,
+				       obj->write_domain,
+				       obj->write_domain);
+			i915_add_request(dev, obj->write_domain);
+
+			obj = NULL;
+			continue;
+		}
+
+		DRM_ERROR("inactive empty %d request empty %d "
+			  "flushing empty %d\n",
+			  list_empty(&dev_priv->mm.inactive_list),
+			  list_empty(&dev_priv->mm.request_list),
+			  list_empty(&dev_priv->mm.flushing_list));
+		/* If we didn't do any of the above, there's nothing to be done
+		 * and we just can't fit it in.
+		 */
+		return -ENOMEM;
+	}
+	return ret;
+}
+
+static int
+i915_gem_object_get_page_list(struct drm_gem_object *obj)
+{
+	struct drm_i915_gem_object *obj_priv = obj->driver_private;
+	int page_count, i;
+	struct address_space *mapping;
+	struct inode *inode;
+	struct page *page;
+	int ret;
+
+	if (obj_priv->page_list)
+		return 0;
+
+	/* Get the list of pages out of our struct file.  They'll be pinned
+	 * at this point until we release them.
+	 */
+	page_count = obj->size / PAGE_SIZE;
+	BUG_ON(obj_priv->page_list != NULL);
+	obj_priv->page_list = drm_calloc(page_count, sizeof(struct page *),
+					 DRM_MEM_DRIVER);
+	if (obj_priv->page_list == NULL) {
+		DRM_ERROR("Faled to allocate page list\n");
+		return -ENOMEM;
+	}
+
+	inode = obj->filp->f_path.dentry->d_inode;
+	mapping = inode->i_mapping;
+	for (i = 0; i < page_count; i++) {
+		page = read_mapping_page(mapping, i, NULL);
+		if (IS_ERR(page)) {
+			ret = PTR_ERR(page);
+			DRM_ERROR("read_mapping_page failed: %d\n", ret);
+			i915_gem_object_free_page_list(obj);
+			return ret;
+		}
+		obj_priv->page_list[i] = page;
+	}
+	return 0;
+}
+
+/**
+ * Finds free space in the GTT aperture and binds the object there.
+ */
+static int
+i915_gem_object_bind_to_gtt(struct drm_gem_object *obj, unsigned alignment)
+{
+	struct drm_device *dev = obj->dev;
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_i915_gem_object *obj_priv = obj->driver_private;
+	struct drm_mm_node *free_space;
+	int page_count, ret;
+
+	if (alignment == 0)
+		alignment = PAGE_SIZE;
+	if (alignment & (PAGE_SIZE - 1)) {
+		DRM_ERROR("Invalid object alignment requested %u\n", alignment);
+		return -EINVAL;
+	}
+
+ search_free:
+	free_space = drm_mm_search_free(&dev_priv->mm.gtt_space,
+					obj->size, alignment, 0);
+	if (free_space != NULL) {
+		obj_priv->gtt_space = drm_mm_get_block(free_space, obj->size,
+						       alignment);
+		if (obj_priv->gtt_space != NULL) {
+			obj_priv->gtt_space->private = obj;
+			obj_priv->gtt_offset = obj_priv->gtt_space->start;
+		}
+	}
+	if (obj_priv->gtt_space == NULL) {
+		/* If the gtt is empty and we're still having trouble
+		 * fitting our object in, we're out of memory.
+		 */
+#if WATCH_LRU
+		DRM_INFO("%s: GTT full, evicting something\n", __func__);
+#endif
+		if (list_empty(&dev_priv->mm.inactive_list) &&
+		    list_empty(&dev_priv->mm.flushing_list) &&
+		    list_empty(&dev_priv->mm.active_list)) {
+			DRM_ERROR("GTT full, but LRU list empty\n");
+			return -ENOMEM;
+		}
+
+		ret = i915_gem_evict_something(dev);
+		if (ret != 0) {
+			DRM_ERROR("Failed to evict a buffer %d\n", ret);
+			return ret;
+		}
+		goto search_free;
+	}
+
+#if WATCH_BUF
+	DRM_INFO("Binding object of size %d at 0x%08x\n",
+		 obj->size, obj_priv->gtt_offset);
+#endif
+	ret = i915_gem_object_get_page_list(obj);
+	if (ret) {
+		drm_mm_put_block(obj_priv->gtt_space);
+		obj_priv->gtt_space = NULL;
+		return ret;
+	}
+
+	page_count = obj->size / PAGE_SIZE;
+	/* Create an AGP memory structure pointing at our pages, and bind it
+	 * into the GTT.
+	 */
+	obj_priv->agp_mem = drm_agp_bind_pages(dev,
+					       obj_priv->page_list,
+					       page_count,
+					       obj_priv->gtt_offset,
+					       obj_priv->agp_type);
+	if (obj_priv->agp_mem == NULL) {
+		i915_gem_object_free_page_list(obj);
+		drm_mm_put_block(obj_priv->gtt_space);
+		obj_priv->gtt_space = NULL;
+		return -ENOMEM;
+	}
+	atomic_inc(&dev->gtt_count);
+	atomic_add(obj->size, &dev->gtt_memory);
+
+	/* Assert that the object is not currently in any GPU domain. As it
+	 * wasn't in the GTT, there shouldn't be any way it could have been in
+	 * a GPU cache
+	 */
+	BUG_ON(obj->read_domains & ~(I915_GEM_DOMAIN_CPU|I915_GEM_DOMAIN_GTT));
+	BUG_ON(obj->write_domain & ~(I915_GEM_DOMAIN_CPU|I915_GEM_DOMAIN_GTT));
+
+	return 0;
+}
+
+void
+i915_gem_clflush_object(struct drm_gem_object *obj)
+{
+	struct drm_i915_gem_object	*obj_priv = obj->driver_private;
+
+	/* If we don't have a page list set up, then we're not pinned
+	 * to GPU, and we can ignore the cache flush because it'll happen
+	 * again at bind time.
+	 */
+	if (obj_priv->page_list == NULL)
+		return;
+
+	drm_clflush_pages(obj_priv->page_list, obj->size / PAGE_SIZE);
+}
+
+/*
+ * Set the next domain for the specified object. This
+ * may not actually perform the necessary flushing/invaliding though,
+ * as that may want to be batched with other set_domain operations
+ *
+ * This is (we hope) the only really tricky part of gem. The goal
+ * is fairly simple -- track which caches hold bits of the object
+ * and make sure they remain coherent. A few concrete examples may
+ * help to explain how it works. For shorthand, we use the notation
+ * (read_domains, write_domain), e.g. (CPU, CPU) to indicate the
+ * a pair of read and write domain masks.
+ *
+ * Case 1: the batch buffer
+ *
+ *	1. Allocated
+ *	2. Written by CPU
+ *	3. Mapped to GTT
+ *	4. Read by GPU
+ *	5. Unmapped from GTT
+ *	6. Freed
+ *
+ *	Let's take these a step at a time
+ *
+ *	1. Allocated
+ *		Pages allocated from the kernel may still have
+ *		cache contents, so we set them to (CPU, CPU) always.
+ *	2. Written by CPU (using pwrite)
+ *		The pwrite function calls set_domain (CPU, CPU) and
+ *		this function does nothing (as nothing changes)
+ *	3. Mapped by GTT
+ *		This function asserts that the object is not
+ *		currently in any GPU-based read or write domains
+ *	4. Read by GPU
+ *		i915_gem_execbuffer calls set_domain (COMMAND, 0).
+ *		As write_domain is zero, this function adds in the
+ *		current read domains (CPU+COMMAND, 0).
+ *		flush_domains is set to CPU.
+ *		invalidate_domains is set to COMMAND
+ *		clflush is run to get data out of the CPU caches
+ *		then i915_dev_set_domain calls i915_gem_flush to
+ *		emit an MI_FLUSH and drm_agp_chipset_flush
+ *	5. Unmapped from GTT
+ *		i915_gem_object_unbind calls set_domain (CPU, CPU)
+ *		flush_domains and invalidate_domains end up both zero
+ *		so no flushing/invalidating happens
+ *	6. Freed
+ *		yay, done
+ *
+ * Case 2: The shared render buffer
+ *
+ *	1. Allocated
+ *	2. Mapped to GTT
+ *	3. Read/written by GPU
+ *	4. set_domain to (CPU,CPU)
+ *	5. Read/written by CPU
+ *	6. Read/written by GPU
+ *
+ *	1. Allocated
+ *		Same as last example, (CPU, CPU)
+ *	2. Mapped to GTT
+ *		Nothing changes (assertions find that it is not in the GPU)
+ *	3. Read/written by GPU
+ *		execbuffer calls set_domain (RENDER, RENDER)
+ *		flush_domains gets CPU
+ *		invalidate_domains gets GPU
+ *		clflush (obj)
+ *		MI_FLUSH and drm_agp_chipset_flush
+ *	4. set_domain (CPU, CPU)
+ *		flush_domains gets GPU
+ *		invalidate_domains gets CPU
+ *		wait_rendering (obj) to make sure all drawing is complete.
+ *		This will include an MI_FLUSH to get the data from GPU
+ *		to memory
+ *		clflush (obj) to invalidate the CPU cache
+ *		Another MI_FLUSH in i915_gem_flush (eliminate this somehow?)
+ *	5. Read/written by CPU
+ *		cache lines are loaded and dirtied
+ *	6. Read written by GPU
+ *		Same as last GPU access
+ *
+ * Case 3: The constant buffer
+ *
+ *	1. Allocated
+ *	2. Written by CPU
+ *	3. Read by GPU
+ *	4. Updated (written) by CPU again
+ *	5. Read by GPU
+ *
+ *	1. Allocated
+ *		(CPU, CPU)
+ *	2. Written by CPU
+ *		(CPU, CPU)
+ *	3. Read by GPU
+ *		(CPU+RENDER, 0)
+ *		flush_domains = CPU
+ *		invalidate_domains = RENDER
+ *		clflush (obj)
+ *		MI_FLUSH
+ *		drm_agp_chipset_flush
+ *	4. Updated (written) by CPU again
+ *		(CPU, CPU)
+ *		flush_domains = 0 (no previous write domain)
+ *		invalidate_domains = 0 (no new read domains)
+ *	5. Read by GPU
+ *		(CPU+RENDER, 0)
+ *		flush_domains = CPU
+ *		invalidate_domains = RENDER
+ *		clflush (obj)
+ *		MI_FLUSH
+ *		drm_agp_chipset_flush
+ */
+static int
+i915_gem_object_set_domain(struct drm_gem_object *obj,
+			    uint32_t read_domains,
+			    uint32_t write_domain)
+{
+	struct drm_device		*dev = obj->dev;
+	struct drm_i915_gem_object	*obj_priv = obj->driver_private;
+	uint32_t			invalidate_domains = 0;
+	uint32_t			flush_domains = 0;
+	int				ret;
+
+#if WATCH_BUF
+	DRM_INFO("%s: object %p read %08x -> %08x write %08x -> %08x\n",
+		 __func__, obj,
+		 obj->read_domains, read_domains,
+		 obj->write_domain, write_domain);
+#endif
+	/*
+	 * If the object isn't moving to a new write domain,
+	 * let the object stay in multiple read domains
+	 */
+	if (write_domain == 0)
+		read_domains |= obj->read_domains;
+	else
+		obj_priv->dirty = 1;
+
+	/*
+	 * Flush the current write domain if
+	 * the new read domains don't match. Invalidate
+	 * any read domains which differ from the old
+	 * write domain
+	 */
+	if (obj->write_domain && obj->write_domain != read_domains) {
+		flush_domains |= obj->write_domain;
+		invalidate_domains |= read_domains & ~obj->write_domain;
+	}
+	/*
+	 * Invalidate any read caches which may have
+	 * stale data. That is, any new read domains.
+	 */
+	invalidate_domains |= read_domains & ~obj->read_domains;
+	if ((flush_domains | invalidate_domains) & I915_GEM_DOMAIN_CPU) {
+#if WATCH_BUF
+		DRM_INFO("%s: CPU domain flush %08x invalidate %08x\n",
+			 __func__, flush_domains, invalidate_domains);
+#endif
+		/*
+		 * If we're invaliding the CPU cache and flushing a GPU cache,
+		 * then pause for rendering so that the GPU caches will be
+		 * flushed before the cpu cache is invalidated
+		 */
+		if ((invalidate_domains & I915_GEM_DOMAIN_CPU) &&
+		    (flush_domains & ~(I915_GEM_DOMAIN_CPU |
+				       I915_GEM_DOMAIN_GTT))) {
+			ret = i915_gem_object_wait_rendering(obj);
+			if (ret)
+				return ret;
+		}
+		i915_gem_clflush_object(obj);
+	}
+
+	if ((write_domain | flush_domains) != 0)
+		obj->write_domain = write_domain;
+
+	/* If we're invalidating the CPU domain, clear the per-page CPU
+	 * domain list as well.
+	 */
+	if (obj_priv->page_cpu_valid != NULL &&
+	    (write_domain != 0 ||
+	     read_domains & I915_GEM_DOMAIN_CPU)) {
+		drm_free(obj_priv->page_cpu_valid, obj->size / PAGE_SIZE,
+			 DRM_MEM_DRIVER);
+		obj_priv->page_cpu_valid = NULL;
+	}
+	obj->read_domains = read_domains;
+
+	dev->invalidate_domains |= invalidate_domains;
+	dev->flush_domains |= flush_domains;
+#if WATCH_BUF
+	DRM_INFO("%s: read %08x write %08x invalidate %08x flush %08x\n",
+		 __func__,
+		 obj->read_domains, obj->write_domain,
+		 dev->invalidate_domains, dev->flush_domains);
+#endif
+	return 0;
+}
+
+/**
+ * Set the read/write domain on a range of the object.
+ *
+ * Currently only implemented for CPU reads, otherwise drops to normal
+ * i915_gem_object_set_domain().
+ */
+static int
+i915_gem_object_set_domain_range(struct drm_gem_object *obj,
+				 uint64_t offset,
+				 uint64_t size,
+				 uint32_t read_domains,
+				 uint32_t write_domain)
+{
+	struct drm_i915_gem_object *obj_priv = obj->driver_private;
+	int ret, i;
+
+	if (obj->read_domains & I915_GEM_DOMAIN_CPU)
+		return 0;
+
+	if (read_domains != I915_GEM_DOMAIN_CPU ||
+	    write_domain != 0)
+		return i915_gem_object_set_domain(obj,
+						  read_domains, write_domain);
+
+	/* Wait on any GPU rendering to the object to be flushed. */
+	if (obj->write_domain & ~(I915_GEM_DOMAIN_CPU | I915_GEM_DOMAIN_GTT)) {
+		ret = i915_gem_object_wait_rendering(obj);
+		if (ret)
+			return ret;
+	}
+
+	if (obj_priv->page_cpu_valid == NULL) {
+		obj_priv->page_cpu_valid = drm_calloc(1, obj->size / PAGE_SIZE,
+						      DRM_MEM_DRIVER);
+	}
+
+	/* Flush the cache on any pages that are still invalid from the CPU's
+	 * perspective.
+	 */
+	for (i = offset / PAGE_SIZE; i <= (offset + size - 1) / PAGE_SIZE; i++) {
+		if (obj_priv->page_cpu_valid[i])
+			continue;
+
+		drm_clflush_pages(obj_priv->page_list + i, 1);
+
+		obj_priv->page_cpu_valid[i] = 1;
+	}
+
+	return 0;
+}
+
+/**
+ * Once all of the objects have been set in the proper domain,
+ * perform the necessary flush and invalidate operations.
+ *
+ * Returns the write domains flushed, for use in flush tracking.
+ */
+static uint32_t
+i915_gem_dev_set_domain(struct drm_device *dev)
+{
+	uint32_t flush_domains = dev->flush_domains;
+
+	/*
+	 * Now that all the buffers are synced to the proper domains,
+	 * flush and invalidate the collected domains
+	 */
+	if (dev->invalidate_domains | dev->flush_domains) {
+#if WATCH_EXEC
+		DRM_INFO("%s: invalidate_domains %08x flush_domains %08x\n",
+			  __func__,
+			 dev->invalidate_domains,
+			 dev->flush_domains);
+#endif
+		i915_gem_flush(dev,
+			       dev->invalidate_domains,
+			       dev->flush_domains);
+		dev->invalidate_domains = 0;
+		dev->flush_domains = 0;
+	}
+
+	return flush_domains;
+}
+
+/**
+ * Pin an object to the GTT and evaluate the relocations landing in it.
+ */
+static int
+i915_gem_object_pin_and_relocate(struct drm_gem_object *obj,
+				 struct drm_file *file_priv,
+				 struct drm_i915_gem_exec_object *entry)
+{
+	struct drm_device *dev = obj->dev;
+	struct drm_i915_gem_relocation_entry reloc;
+	struct drm_i915_gem_relocation_entry __user *relocs;
+	struct drm_i915_gem_object *obj_priv = obj->driver_private;
+	int i, ret;
+	uint32_t last_reloc_offset = -1;
+	void __iomem *reloc_page = NULL;
+
+	/* Choose the GTT offset for our buffer and put it there. */
+	ret = i915_gem_object_pin(obj, (uint32_t) entry->alignment);
+	if (ret)
+		return ret;
+
+	entry->offset = obj_priv->gtt_offset;
+
+	relocs = (struct drm_i915_gem_relocation_entry __user *)
+		 (uintptr_t) entry->relocs_ptr;
+	/* Apply the relocations, using the GTT aperture to avoid cache
+	 * flushing requirements.
+	 */
+	for (i = 0; i < entry->relocation_count; i++) {
+		struct drm_gem_object *target_obj;
+		struct drm_i915_gem_object *target_obj_priv;
+		uint32_t reloc_val, reloc_offset;
+		uint32_t __iomem *reloc_entry;
+
+		ret = copy_from_user(&reloc, relocs + i, sizeof(reloc));
+		if (ret != 0) {
+			i915_gem_object_unpin(obj);
+			return ret;
+		}
+
+		target_obj = drm_gem_object_lookup(obj->dev, file_priv,
+						   reloc.target_handle);
+		if (target_obj == NULL) {
+			i915_gem_object_unpin(obj);
+			return -EBADF;
+		}
+		target_obj_priv = target_obj->driver_private;
+
+		/* The target buffer should have appeared before us in the
+		 * exec_object list, so it should have a GTT space bound by now.
+		 */
+		if (target_obj_priv->gtt_space == NULL) {
+			DRM_ERROR("No GTT space found for object %d\n",
+				  reloc.target_handle);
+			drm_gem_object_unreference(target_obj);
+			i915_gem_object_unpin(obj);
+			return -EINVAL;
+		}
+
+		if (reloc.offset > obj->size - 4) {
+			DRM_ERROR("Relocation beyond object bounds: "
+				  "obj %p target %d offset %d size %d.\n",
+				  obj, reloc.target_handle,
+				  (int) reloc.offset, (int) obj->size);
+			drm_gem_object_unreference(target_obj);
+			i915_gem_object_unpin(obj);
+			return -EINVAL;
+		}
+		if (reloc.offset & 3) {
+			DRM_ERROR("Relocation not 4-byte aligned: "
+				  "obj %p target %d offset %d.\n",
+				  obj, reloc.target_handle,
+				  (int) reloc.offset);
+			drm_gem_object_unreference(target_obj);
+			i915_gem_object_unpin(obj);
+			return -EINVAL;
+		}
+
+		if (reloc.write_domain && target_obj->pending_write_domain &&
+		    reloc.write_domain != target_obj->pending_write_domain) {
+			DRM_ERROR("Write domain conflict: "
+				  "obj %p target %d offset %d "
+				  "new %08x old %08x\n",
+				  obj, reloc.target_handle,
+				  (int) reloc.offset,
+				  reloc.write_domain,
+				  target_obj->pending_write_domain);
+			drm_gem_object_unreference(target_obj);
+			i915_gem_object_unpin(obj);
+			return -EINVAL;
+		}
+
+#if WATCH_RELOC
+		DRM_INFO("%s: obj %p offset %08x target %d "
+			 "read %08x write %08x gtt %08x "
+			 "presumed %08x delta %08x\n",
+			 __func__,
+			 obj,
+			 (int) reloc.offset,
+			 (int) reloc.target_handle,
+			 (int) reloc.read_domains,
+			 (int) reloc.write_domain,
+			 (int) target_obj_priv->gtt_offset,
+			 (int) reloc.presumed_offset,
+			 reloc.delta);
+#endif
+
+		target_obj->pending_read_domains |= reloc.read_domains;
+		target_obj->pending_write_domain |= reloc.write_domain;
+
+		/* If the relocation already has the right value in it, no
+		 * more work needs to be done.
+		 */
+		if (target_obj_priv->gtt_offset == reloc.presumed_offset) {
+			drm_gem_object_unreference(target_obj);
+			continue;
+		}
+
+		/* Now that we're going to actually write some data in,
+		 * make sure that any rendering using this buffer's contents
+		 * is completed.
+		 */
+		i915_gem_object_wait_rendering(obj);
+
+		/* As we're writing through the gtt, flush
+		 * any CPU writes before we write the relocations
+		 */
+		if (obj->write_domain & I915_GEM_DOMAIN_CPU) {
+			i915_gem_clflush_object(obj);
+			drm_agp_chipset_flush(dev);
+			obj->write_domain = 0;
+		}
+
+		/* Map the page containing the relocation we're going to
+		 * perform.
+		 */
+		reloc_offset = obj_priv->gtt_offset + reloc.offset;
+		if (reloc_page == NULL ||
+		    (last_reloc_offset & ~(PAGE_SIZE - 1)) !=
+		    (reloc_offset & ~(PAGE_SIZE - 1))) {
+			if (reloc_page != NULL)
+				iounmap(reloc_page);
+
+			reloc_page = ioremap_wc(dev->agp->base +
+						(reloc_offset &
+						 ~(PAGE_SIZE - 1)),
+						PAGE_SIZE);
+			last_reloc_offset = reloc_offset;
+			if (reloc_page == NULL) {
+				drm_gem_object_unreference(target_obj);
+				i915_gem_object_unpin(obj);
+				return -ENOMEM;
+			}
+		}
+
+		reloc_entry = (uint32_t __iomem *)(reloc_page +
+					   (reloc_offset & (PAGE_SIZE - 1)));
+		reloc_val = target_obj_priv->gtt_offset + reloc.delta;
+
+#if WATCH_BUF
+		DRM_INFO("Applied relocation: %p@0x%08x %08x -> %08x\n",
+			  obj, (unsigned int) reloc.offset,
+			  readl(reloc_entry), reloc_val);
+#endif
+		writel(reloc_val, reloc_entry);
+
+		/* Write the updated presumed offset for this entry back out
+		 * to the user.
+		 */
+		reloc.presumed_offset = target_obj_priv->gtt_offset;
+		ret = copy_to_user(relocs + i, &reloc, sizeof(reloc));
+		if (ret != 0) {
+			drm_gem_object_unreference(target_obj);
+			i915_gem_object_unpin(obj);
+			return ret;
+		}
+
+		drm_gem_object_unreference(target_obj);
+	}
+
+	if (reloc_page != NULL)
+		iounmap(reloc_page);
+
+#if WATCH_BUF
+	if (0)
+		i915_gem_dump_object(obj, 128, __func__, ~0);
+#endif
+	return 0;
+}
+
+/** Dispatch a batchbuffer to the ring
+ */
+static int
+i915_dispatch_gem_execbuffer(struct drm_device *dev,
+			      struct drm_i915_gem_execbuffer *exec,
+			      uint64_t exec_offset)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_clip_rect __user *boxes = (struct drm_clip_rect __user *)
+					     (uintptr_t) exec->cliprects_ptr;
+	int nbox = exec->num_cliprects;
+	int i = 0, count;
+	uint32_t	exec_start, exec_len;
+	RING_LOCALS;
+
+	exec_start = (uint32_t) exec_offset + exec->batch_start_offset;
+	exec_len = (uint32_t) exec->batch_len;
+
+	if ((exec_start | exec_len) & 0x7) {
+		DRM_ERROR("alignment\n");
+		return -EINVAL;
+	}
+
+	if (!exec_start)
+		return -EINVAL;
+
+	count = nbox ? nbox : 1;
+
+	for (i = 0; i < count; i++) {
+		if (i < nbox) {
+			int ret = i915_emit_box(dev, boxes, i,
+						exec->DR1, exec->DR4);
+			if (ret)
+				return ret;
+		}
+
+		if (IS_I830(dev) || IS_845G(dev)) {
+			BEGIN_LP_RING(4);
+			OUT_RING(MI_BATCH_BUFFER);
+			OUT_RING(exec_start | MI_BATCH_NON_SECURE);
+			OUT_RING(exec_start + exec_len - 4);
+			OUT_RING(0);
+			ADVANCE_LP_RING();
+		} else {
+			BEGIN_LP_RING(2);
+			if (IS_I965G(dev)) {
+				OUT_RING(MI_BATCH_BUFFER_START |
+					 (2 << 6) |
+					 MI_BATCH_NON_SECURE_I965);
+				OUT_RING(exec_start);
+			} else {
+				OUT_RING(MI_BATCH_BUFFER_START |
+					 (2 << 6));
+				OUT_RING(exec_start | MI_BATCH_NON_SECURE);
+			}
+			ADVANCE_LP_RING();
+		}
+	}
+
+	/* XXX breadcrumb */
+	return 0;
+}
+
+/* Throttle our rendering by waiting until the ring has completed our requests
+ * emitted over 20 msec ago.
+ *
+ * This should get us reasonable parallelism between CPU and GPU but also
+ * relatively low latency when blocking on a particular request to finish.
+ */
+static int
+i915_gem_ring_throttle(struct drm_device *dev, struct drm_file *file_priv)
+{
+	struct drm_i915_file_private *i915_file_priv = file_priv->driver_priv;
+	int ret = 0;
+	uint32_t seqno;
+
+	mutex_lock(&dev->struct_mutex);
+	seqno = i915_file_priv->mm.last_gem_throttle_seqno;
+	i915_file_priv->mm.last_gem_throttle_seqno =
+		i915_file_priv->mm.last_gem_seqno;
+	if (seqno)
+		ret = i915_wait_request(dev, seqno);
+	mutex_unlock(&dev->struct_mutex);
+	return ret;
+}
+
+int
+i915_gem_execbuffer(struct drm_device *dev, void *data,
+		    struct drm_file *file_priv)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_i915_file_private *i915_file_priv = file_priv->driver_priv;
+	struct drm_i915_gem_execbuffer *args = data;
+	struct drm_i915_gem_exec_object *exec_list = NULL;
+	struct drm_gem_object **object_list = NULL;
+	struct drm_gem_object *batch_obj;
+	int ret, i, pinned = 0;
+	uint64_t exec_offset;
+	uint32_t seqno, flush_domains;
+
+#if WATCH_EXEC
+	DRM_INFO("buffers_ptr %d buffer_count %d len %08x\n",
+		  (int) args->buffers_ptr, args->buffer_count, args->batch_len);
+#endif
+
+	if (args->buffer_count < 1) {
+		DRM_ERROR("execbuf with %d buffers\n", args->buffer_count);
+		return -EINVAL;
+	}
+	/* Copy in the exec list from userland */
+	exec_list = drm_calloc(sizeof(*exec_list), args->buffer_count,
+			       DRM_MEM_DRIVER);
+	object_list = drm_calloc(sizeof(*object_list), args->buffer_count,
+				 DRM_MEM_DRIVER);
+	if (exec_list == NULL || object_list == NULL) {
+		DRM_ERROR("Failed to allocate exec or object list "
+			  "for %d buffers\n",
+			  args->buffer_count);
+		ret = -ENOMEM;
+		goto pre_mutex_err;
+	}
+	ret = copy_from_user(exec_list,
+			     (struct drm_i915_relocation_entry __user *)
+			     (uintptr_t) args->buffers_ptr,
+			     sizeof(*exec_list) * args->buffer_count);
+	if (ret != 0) {
+		DRM_ERROR("copy %d exec entries failed %d\n",
+			  args->buffer_count, ret);
+		goto pre_mutex_err;
+	}
+
+	mutex_lock(&dev->struct_mutex);
+
+	i915_verify_inactive(dev, __FILE__, __LINE__);
+
+	if (dev_priv->mm.wedged) {
+		DRM_ERROR("Execbuf while wedged\n");
+		mutex_unlock(&dev->struct_mutex);
+		return -EIO;
+	}
+
+	if (dev_priv->mm.suspended) {
+		DRM_ERROR("Execbuf while VT-switched.\n");
+		mutex_unlock(&dev->struct_mutex);
+		return -EBUSY;
+	}
+
+	/* Zero the gloabl flush/invalidate flags. These
+	 * will be modified as each object is bound to the
+	 * gtt
+	 */
+	dev->invalidate_domains = 0;
+	dev->flush_domains = 0;
+
+	/* Look up object handles and perform the relocations */
+	for (i = 0; i < args->buffer_count; i++) {
+		object_list[i] = drm_gem_object_lookup(dev, file_priv,
+						       exec_list[i].handle);
+		if (object_list[i] == NULL) {
+			DRM_ERROR("Invalid object handle %d at index %d\n",
+				   exec_list[i].handle, i);
+			ret = -EBADF;
+			goto err;
+		}
+
+		object_list[i]->pending_read_domains = 0;
+		object_list[i]->pending_write_domain = 0;
+		ret = i915_gem_object_pin_and_relocate(object_list[i],
+						       file_priv,
+						       &exec_list[i]);
+		if (ret) {
+			DRM_ERROR("object bind and relocate failed %d\n", ret);
+			goto err;
+		}
+		pinned = i + 1;
+	}
+
+	/* Set the pending read domains for the batch buffer to COMMAND */
+	batch_obj = object_list[args->buffer_count-1];
+	batch_obj->pending_read_domains = I915_GEM_DOMAIN_COMMAND;
+	batch_obj->pending_write_domain = 0;
+
+	i915_verify_inactive(dev, __FILE__, __LINE__);
+
+	for (i = 0; i < args->buffer_count; i++) {
+		struct drm_gem_object *obj = object_list[i];
+		struct drm_i915_gem_object *obj_priv = obj->driver_private;
+
+		if (obj_priv->gtt_space == NULL) {
+			/* We evicted the buffer in the process of validating
+			 * our set of buffers in.  We could try to recover by
+			 * kicking them everything out and trying again from
+			 * the start.
+			 */
+			ret = -ENOMEM;
+			goto err;
+		}
+
+		/* make sure all previous memory operations have passed */
+		ret = i915_gem_object_set_domain(obj,
+						 obj->pending_read_domains,
+						 obj->pending_write_domain);
+		if (ret)
+			goto err;
+	}
+
+	i915_verify_inactive(dev, __FILE__, __LINE__);
+
+	/* Flush/invalidate caches and chipset buffer */
+	flush_domains = i915_gem_dev_set_domain(dev);
+
+	i915_verify_inactive(dev, __FILE__, __LINE__);
+
+#if WATCH_COHERENCY
+	for (i = 0; i < args->buffer_count; i++) {
+		i915_gem_object_check_coherency(object_list[i],
+						exec_list[i].handle);
+	}
+#endif
+
+	exec_offset = exec_list[args->buffer_count - 1].offset;
+
+#if WATCH_EXEC
+	i915_gem_dump_object(object_list[args->buffer_count - 1],
+			      args->batch_len,
+			      __func__,
+			      ~0);
+#endif
+
+	(void)i915_add_request(dev, flush_domains);
+
+	/* Exec the batchbuffer */
+	ret = i915_dispatch_gem_execbuffer(dev, args, exec_offset);
+	if (ret) {
+		DRM_ERROR("dispatch failed %d\n", ret);
+		goto err;
+	}
+
+	/*
+	 * Ensure that the commands in the batch buffer are
+	 * finished before the interrupt fires
+	 */
+	flush_domains = i915_retire_commands(dev);
+
+	i915_verify_inactive(dev, __FILE__, __LINE__);
+
+	/*
+	 * Get a seqno representing the execution of the current buffer,
+	 * which we can wait on.  We would like to mitigate these interrupts,
+	 * likely by only creating seqnos occasionally (so that we have
+	 * *some* interrupts representing completion of buffers that we can
+	 * wait on when trying to clear up gtt space).
+	 */
+	seqno = i915_add_request(dev, flush_domains);
+	BUG_ON(seqno == 0);
+	i915_file_priv->mm.last_gem_seqno = seqno;
+	for (i = 0; i < args->buffer_count; i++) {
+		struct drm_gem_object *obj = object_list[i];
+		struct drm_i915_gem_object *obj_priv = obj->driver_private;
+
+		i915_gem_object_move_to_active(obj);
+		obj_priv->last_rendering_seqno = seqno;
+#if WATCH_LRU
+		DRM_INFO("%s: move to exec list %p\n", __func__, obj);
+#endif
+	}
+#if WATCH_LRU
+	i915_dump_lru(dev, __func__);
+#endif
+
+	i915_verify_inactive(dev, __FILE__, __LINE__);
+
+	/* Copy the new buffer offsets back to the user's exec list. */
+	ret = copy_to_user((struct drm_i915_relocation_entry __user *)
+			   (uintptr_t) args->buffers_ptr,
+			   exec_list,
+			   sizeof(*exec_list) * args->buffer_count);
+	if (ret)
+		DRM_ERROR("failed to copy %d exec entries "
+			  "back to user (%d)\n",
+			   args->buffer_count, ret);
+err:
+	if (object_list != NULL) {
+		for (i = 0; i < pinned; i++)
+			i915_gem_object_unpin(object_list[i]);
+
+		for (i = 0; i < args->buffer_count; i++)
+			drm_gem_object_unreference(object_list[i]);
+	}
+	mutex_unlock(&dev->struct_mutex);
+
+pre_mutex_err:
+	drm_free(object_list, sizeof(*object_list) * args->buffer_count,
+		 DRM_MEM_DRIVER);
+	drm_free(exec_list, sizeof(*exec_list) * args->buffer_count,
+		 DRM_MEM_DRIVER);
+
+	return ret;
+}
+
+int
+i915_gem_object_pin(struct drm_gem_object *obj, uint32_t alignment)
+{
+	struct drm_device *dev = obj->dev;
+	struct drm_i915_gem_object *obj_priv = obj->driver_private;
+	int ret;
+
+	i915_verify_inactive(dev, __FILE__, __LINE__);
+	if (obj_priv->gtt_space == NULL) {
+		ret = i915_gem_object_bind_to_gtt(obj, alignment);
+		if (ret != 0) {
+			DRM_ERROR("Failure to bind: %d", ret);
+			return ret;
+		}
+	}
+	obj_priv->pin_count++;
+
+	/* If the object is not active and not pending a flush,
+	 * remove it from the inactive list
+	 */
+	if (obj_priv->pin_count == 1) {
+		atomic_inc(&dev->pin_count);
+		atomic_add(obj->size, &dev->pin_memory);
+		if (!obj_priv->active &&
+		    (obj->write_domain & ~(I915_GEM_DOMAIN_CPU |
+					   I915_GEM_DOMAIN_GTT)) == 0 &&
+		    !list_empty(&obj_priv->list))
+			list_del_init(&obj_priv->list);
+	}
+	i915_verify_inactive(dev, __FILE__, __LINE__);
+
+	return 0;
+}
+
+void
+i915_gem_object_unpin(struct drm_gem_object *obj)
+{
+	struct drm_device *dev = obj->dev;
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_i915_gem_object *obj_priv = obj->driver_private;
+
+	i915_verify_inactive(dev, __FILE__, __LINE__);
+	obj_priv->pin_count--;
+	BUG_ON(obj_priv->pin_count < 0);
+	BUG_ON(obj_priv->gtt_space == NULL);
+
+	/* If the object is no longer pinned, and is
+	 * neither active nor being flushed, then stick it on
+	 * the inactive list
+	 */
+	if (obj_priv->pin_count == 0) {
+		if (!obj_priv->active &&
+		    (obj->write_domain & ~(I915_GEM_DOMAIN_CPU |
+					   I915_GEM_DOMAIN_GTT)) == 0)
+			list_move_tail(&obj_priv->list,
+				       &dev_priv->mm.inactive_list);
+		atomic_dec(&dev->pin_count);
+		atomic_sub(obj->size, &dev->pin_memory);
+	}
+	i915_verify_inactive(dev, __FILE__, __LINE__);
+}
+
+int
+i915_gem_pin_ioctl(struct drm_device *dev, void *data,
+		   struct drm_file *file_priv)
+{
+	struct drm_i915_gem_pin *args = data;
+	struct drm_gem_object *obj;
+	struct drm_i915_gem_object *obj_priv;
+	int ret;
+
+	mutex_lock(&dev->struct_mutex);
+
+	obj = drm_gem_object_lookup(dev, file_priv, args->handle);
+	if (obj == NULL) {
+		DRM_ERROR("Bad handle in i915_gem_pin_ioctl(): %d\n",
+			  args->handle);
+		mutex_unlock(&dev->struct_mutex);
+		return -EBADF;
+	}
+	obj_priv = obj->driver_private;
+
+	ret = i915_gem_object_pin(obj, args->alignment);
+	if (ret != 0) {
+		drm_gem_object_unreference(obj);
+		mutex_unlock(&dev->struct_mutex);
+		return ret;
+	}
+
+	/* XXX - flush the CPU caches for pinned objects
+	 * as the X server doesn't manage domains yet
+	 */
+	if (obj->write_domain & I915_GEM_DOMAIN_CPU) {
+		i915_gem_clflush_object(obj);
+		drm_agp_chipset_flush(dev);
+		obj->write_domain = 0;
+	}
+	args->offset = obj_priv->gtt_offset;
+	drm_gem_object_unreference(obj);
+	mutex_unlock(&dev->struct_mutex);
+
+	return 0;
+}
+
+int
+i915_gem_unpin_ioctl(struct drm_device *dev, void *data,
+		     struct drm_file *file_priv)
+{
+	struct drm_i915_gem_pin *args = data;
+	struct drm_gem_object *obj;
+
+	mutex_lock(&dev->struct_mutex);
+
+	obj = drm_gem_object_lookup(dev, file_priv, args->handle);
+	if (obj == NULL) {
+		DRM_ERROR("Bad handle in i915_gem_unpin_ioctl(): %d\n",
+			  args->handle);
+		mutex_unlock(&dev->struct_mutex);
+		return -EBADF;
+	}
+
+	i915_gem_object_unpin(obj);
+
+	drm_gem_object_unreference(obj);
+	mutex_unlock(&dev->struct_mutex);
+	return 0;
+}
+
+int
+i915_gem_busy_ioctl(struct drm_device *dev, void *data,
+		    struct drm_file *file_priv)
+{
+	struct drm_i915_gem_busy *args = data;
+	struct drm_gem_object *obj;
+	struct drm_i915_gem_object *obj_priv;
+
+	mutex_lock(&dev->struct_mutex);
+	obj = drm_gem_object_lookup(dev, file_priv, args->handle);
+	if (obj == NULL) {
+		DRM_ERROR("Bad handle in i915_gem_busy_ioctl(): %d\n",
+			  args->handle);
+		mutex_unlock(&dev->struct_mutex);
+		return -EBADF;
+	}
+
+	obj_priv = obj->driver_private;
+	args->busy = obj_priv->active;
+
+	drm_gem_object_unreference(obj);
+	mutex_unlock(&dev->struct_mutex);
+	return 0;
+}
+
+int
+i915_gem_throttle_ioctl(struct drm_device *dev, void *data,
+			struct drm_file *file_priv)
+{
+    return i915_gem_ring_throttle(dev, file_priv);
+}
+
+int i915_gem_init_object(struct drm_gem_object *obj)
+{
+	struct drm_i915_gem_object *obj_priv;
+
+	obj_priv = drm_calloc(1, sizeof(*obj_priv), DRM_MEM_DRIVER);
+	if (obj_priv == NULL)
+		return -ENOMEM;
+
+	/*
+	 * We've just allocated pages from the kernel,
+	 * so they've just been written by the CPU with
+	 * zeros. They'll need to be clflushed before we
+	 * use them with the GPU.
+	 */
+	obj->write_domain = I915_GEM_DOMAIN_CPU;
+	obj->read_domains = I915_GEM_DOMAIN_CPU;
+
+	obj_priv->agp_type = AGP_USER_MEMORY;
+
+	obj->driver_private = obj_priv;
+	obj_priv->obj = obj;
+	INIT_LIST_HEAD(&obj_priv->list);
+	return 0;
+}
+
+void i915_gem_free_object(struct drm_gem_object *obj)
+{
+	struct drm_i915_gem_object *obj_priv = obj->driver_private;
+
+	while (obj_priv->pin_count > 0)
+		i915_gem_object_unpin(obj);
+
+	i915_gem_object_unbind(obj);
+
+	drm_free(obj_priv->page_cpu_valid, 1, DRM_MEM_DRIVER);
+	drm_free(obj->driver_private, 1, DRM_MEM_DRIVER);
+}
+
+static int
+i915_gem_set_domain(struct drm_gem_object *obj,
+		    struct drm_file *file_priv,
+		    uint32_t read_domains,
+		    uint32_t write_domain)
+{
+	struct drm_device *dev = obj->dev;
+	int ret;
+	uint32_t flush_domains;
+
+	BUG_ON(!mutex_is_locked(&dev->struct_mutex));
+
+	ret = i915_gem_object_set_domain(obj, read_domains, write_domain);
+	if (ret)
+		return ret;
+	flush_domains = i915_gem_dev_set_domain(obj->dev);
+
+	if (flush_domains & ~(I915_GEM_DOMAIN_CPU|I915_GEM_DOMAIN_GTT))
+		(void) i915_add_request(dev, flush_domains);
+
+	return 0;
+}
+
+/** Unbinds all objects that are on the given buffer list. */
+static int
+i915_gem_evict_from_list(struct drm_device *dev, struct list_head *head)
+{
+	struct drm_gem_object *obj;
+	struct drm_i915_gem_object *obj_priv;
+	int ret;
+
+	while (!list_empty(head)) {
+		obj_priv = list_first_entry(head,
+					    struct drm_i915_gem_object,
+					    list);
+		obj = obj_priv->obj;
+
+		if (obj_priv->pin_count != 0) {
+			DRM_ERROR("Pinned object in unbind list\n");
+			mutex_unlock(&dev->struct_mutex);
+			return -EINVAL;
+		}
+
+		ret = i915_gem_object_unbind(obj);
+		if (ret != 0) {
+			DRM_ERROR("Error unbinding object in LeaveVT: %d\n",
+				  ret);
+			mutex_unlock(&dev->struct_mutex);
+			return ret;
+		}
+	}
+
+
+	return 0;
+}
+
+static int
+i915_gem_idle(struct drm_device *dev)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	uint32_t seqno, cur_seqno, last_seqno;
+	int stuck, ret;
+
+	mutex_lock(&dev->struct_mutex);
+
+	if (dev_priv->mm.suspended || dev_priv->ring.ring_obj == NULL) {
+		mutex_unlock(&dev->struct_mutex);
+		return 0;
+	}
+
+	/* Hack!  Don't let anybody do execbuf while we don't control the chip.
+	 * We need to replace this with a semaphore, or something.
+	 */
+	dev_priv->mm.suspended = 1;
+
+	/* Cancel the retire work handler, wait for it to finish if running
+	 */
+	mutex_unlock(&dev->struct_mutex);
+	cancel_delayed_work_sync(&dev_priv->mm.retire_work);
+	mutex_lock(&dev->struct_mutex);
+
+	i915_kernel_lost_context(dev);
+
+	/* Flush the GPU along with all non-CPU write domains
+	 */
+	i915_gem_flush(dev, ~(I915_GEM_DOMAIN_CPU|I915_GEM_DOMAIN_GTT),
+		       ~(I915_GEM_DOMAIN_CPU|I915_GEM_DOMAIN_GTT));
+	seqno = i915_add_request(dev, ~(I915_GEM_DOMAIN_CPU |
+					I915_GEM_DOMAIN_GTT));
+
+	if (seqno == 0) {
+		mutex_unlock(&dev->struct_mutex);
+		return -ENOMEM;
+	}
+
+	dev_priv->mm.waiting_gem_seqno = seqno;
+	last_seqno = 0;
+	stuck = 0;
+	for (;;) {
+		cur_seqno = i915_get_gem_seqno(dev);
+		if (i915_seqno_passed(cur_seqno, seqno))
+			break;
+		if (last_seqno == cur_seqno) {
+			if (stuck++ > 100) {
+				DRM_ERROR("hardware wedged\n");
+				dev_priv->mm.wedged = 1;
+				DRM_WAKEUP(&dev_priv->irq_queue);
+				break;
+			}
+		}
+		msleep(10);
+		last_seqno = cur_seqno;
+	}
+	dev_priv->mm.waiting_gem_seqno = 0;
+
+	i915_gem_retire_requests(dev);
+
+	/* Active and flushing should now be empty as we've
+	 * waited for a sequence higher than any pending execbuffer
+	 */
+	BUG_ON(!list_empty(&dev_priv->mm.active_list));
+	BUG_ON(!list_empty(&dev_priv->mm.flushing_list));
+
+	/* Request should now be empty as we've also waited
+	 * for the last request in the list
+	 */
+	BUG_ON(!list_empty(&dev_priv->mm.request_list));
+
+	/* Move all buffers out of the GTT. */
+	ret = i915_gem_evict_from_list(dev, &dev_priv->mm.inactive_list);
+	if (ret) {
+		mutex_unlock(&dev->struct_mutex);
+		return ret;
+	}
+
+	BUG_ON(!list_empty(&dev_priv->mm.active_list));
+	BUG_ON(!list_empty(&dev_priv->mm.flushing_list));
+	BUG_ON(!list_empty(&dev_priv->mm.inactive_list));
+	BUG_ON(!list_empty(&dev_priv->mm.request_list));
+
+	i915_gem_cleanup_ringbuffer(dev);
+	mutex_unlock(&dev->struct_mutex);
+
+	return 0;
+}
+
+static int
+i915_gem_init_hws(struct drm_device *dev)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_gem_object *obj;
+	struct drm_i915_gem_object *obj_priv;
+	int ret;
+
+	/* If we need a physical address for the status page, it's already
+	 * initialized at driver load time.
+	 */
+	if (!I915_NEED_GFX_HWS(dev))
+		return 0;
+
+	obj = drm_gem_object_alloc(dev, 4096);
+	if (obj == NULL) {
+		DRM_ERROR("Failed to allocate status page\n");
+		return -ENOMEM;
+	}
+	obj_priv = obj->driver_private;
+	obj_priv->agp_type = AGP_USER_CACHED_MEMORY;
+
+	ret = i915_gem_object_pin(obj, 4096);
+	if (ret != 0) {
+		drm_gem_object_unreference(obj);
+		return ret;
+	}
+
+	dev_priv->status_gfx_addr = obj_priv->gtt_offset;
+
+	dev_priv->hw_status_page = kmap(obj_priv->page_list[0]);
+	if (dev_priv->hw_status_page == NULL) {
+		DRM_ERROR("Failed to map status page.\n");
+		memset(&dev_priv->hws_map, 0, sizeof(dev_priv->hws_map));
+		drm_gem_object_unreference(obj);
+		return -EINVAL;
+	}
+	dev_priv->hws_obj = obj;
+	memset(dev_priv->hw_status_page, 0, PAGE_SIZE);
+	I915_WRITE(HWS_PGA, dev_priv->status_gfx_addr);
+	I915_READ(HWS_PGA); /* posting read */
+	DRM_DEBUG("hws offset: 0x%08x\n", dev_priv->status_gfx_addr);
+
+	return 0;
+}
+
+static int
+i915_gem_init_ringbuffer(struct drm_device *dev)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_gem_object *obj;
+	struct drm_i915_gem_object *obj_priv;
+	int ret;
+	u32 head;
+
+	ret = i915_gem_init_hws(dev);
+	if (ret != 0)
+		return ret;
+
+	obj = drm_gem_object_alloc(dev, 128 * 1024);
+	if (obj == NULL) {
+		DRM_ERROR("Failed to allocate ringbuffer\n");
+		return -ENOMEM;
+	}
+	obj_priv = obj->driver_private;
+
+	ret = i915_gem_object_pin(obj, 4096);
+	if (ret != 0) {
+		drm_gem_object_unreference(obj);
+		return ret;
+	}
+
+	/* Set up the kernel mapping for the ring. */
+	dev_priv->ring.Size = obj->size;
+	dev_priv->ring.tail_mask = obj->size - 1;
+
+	dev_priv->ring.map.offset = dev->agp->base + obj_priv->gtt_offset;
+	dev_priv->ring.map.size = obj->size;
+	dev_priv->ring.map.type = 0;
+	dev_priv->ring.map.flags = 0;
+	dev_priv->ring.map.mtrr = 0;
+
+	drm_core_ioremap_wc(&dev_priv->ring.map, dev);
+	if (dev_priv->ring.map.handle == NULL) {
+		DRM_ERROR("Failed to map ringbuffer.\n");
+		memset(&dev_priv->ring, 0, sizeof(dev_priv->ring));
+		drm_gem_object_unreference(obj);
+		return -EINVAL;
+	}
+	dev_priv->ring.ring_obj = obj;
+	dev_priv->ring.virtual_start = dev_priv->ring.map.handle;
+
+	/* Stop the ring if it's running. */
+	I915_WRITE(PRB0_CTL, 0);
+	I915_WRITE(PRB0_TAIL, 0);
+	I915_WRITE(PRB0_HEAD, 0);
+
+	/* Initialize the ring. */
+	I915_WRITE(PRB0_START, obj_priv->gtt_offset);
+	head = I915_READ(PRB0_HEAD) & HEAD_ADDR;
+
+	/* G45 ring initialization fails to reset head to zero */
+	if (head != 0) {
+		DRM_ERROR("Ring head not reset to zero "
+			  "ctl %08x head %08x tail %08x start %08x\n",
+			  I915_READ(PRB0_CTL),
+			  I915_READ(PRB0_HEAD),
+			  I915_READ(PRB0_TAIL),
+			  I915_READ(PRB0_START));
+		I915_WRITE(PRB0_HEAD, 0);
+
+		DRM_ERROR("Ring head forced to zero "
+			  "ctl %08x head %08x tail %08x start %08x\n",
+			  I915_READ(PRB0_CTL),
+			  I915_READ(PRB0_HEAD),
+			  I915_READ(PRB0_TAIL),
+			  I915_READ(PRB0_START));
+	}
+
+	I915_WRITE(PRB0_CTL,
+		   ((obj->size - 4096) & RING_NR_PAGES) |
+		   RING_NO_REPORT |
+		   RING_VALID);
+
+	head = I915_READ(PRB0_HEAD) & HEAD_ADDR;
+
+	/* If the head is still not zero, the ring is dead */
+	if (head != 0) {
+		DRM_ERROR("Ring initialization failed "
+			  "ctl %08x head %08x tail %08x start %08x\n",
+			  I915_READ(PRB0_CTL),
+			  I915_READ(PRB0_HEAD),
+			  I915_READ(PRB0_TAIL),
+			  I915_READ(PRB0_START));
+		return -EIO;
+	}
+
+	/* Update our cache of the ring state */
+	i915_kernel_lost_context(dev);
+
+	return 0;
+}
+
+static void
+i915_gem_cleanup_ringbuffer(struct drm_device *dev)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+
+	if (dev_priv->ring.ring_obj == NULL)
+		return;
+
+	drm_core_ioremapfree(&dev_priv->ring.map, dev);
+
+	i915_gem_object_unpin(dev_priv->ring.ring_obj);
+	drm_gem_object_unreference(dev_priv->ring.ring_obj);
+	dev_priv->ring.ring_obj = NULL;
+	memset(&dev_priv->ring, 0, sizeof(dev_priv->ring));
+
+	if (dev_priv->hws_obj != NULL) {
+		struct drm_gem_object *obj = dev_priv->hws_obj;
+		struct drm_i915_gem_object *obj_priv = obj->driver_private;
+
+		kunmap(obj_priv->page_list[0]);
+		i915_gem_object_unpin(obj);
+		drm_gem_object_unreference(obj);
+		dev_priv->hws_obj = NULL;
+		memset(&dev_priv->hws_map, 0, sizeof(dev_priv->hws_map));
+		dev_priv->hw_status_page = NULL;
+
+		/* Write high address into HWS_PGA when disabling. */
+		I915_WRITE(HWS_PGA, 0x1ffff000);
+	}
+}
+
+int
+i915_gem_entervt_ioctl(struct drm_device *dev, void *data,
+		       struct drm_file *file_priv)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	int ret;
+
+	if (dev_priv->mm.wedged) {
+		DRM_ERROR("Reenabling wedged hardware, good luck\n");
+		dev_priv->mm.wedged = 0;
+	}
+
+	ret = i915_gem_init_ringbuffer(dev);
+	if (ret != 0)
+		return ret;
+
+	mutex_lock(&dev->struct_mutex);
+	BUG_ON(!list_empty(&dev_priv->mm.active_list));
+	BUG_ON(!list_empty(&dev_priv->mm.flushing_list));
+	BUG_ON(!list_empty(&dev_priv->mm.inactive_list));
+	BUG_ON(!list_empty(&dev_priv->mm.request_list));
+	dev_priv->mm.suspended = 0;
+	mutex_unlock(&dev->struct_mutex);
+
+	drm_irq_install(dev);
+
+	return 0;
+}
+
+int
+i915_gem_leavevt_ioctl(struct drm_device *dev, void *data,
+		       struct drm_file *file_priv)
+{
+	int ret;
+
+	ret = i915_gem_idle(dev);
+	drm_irq_uninstall(dev);
+
+	return ret;
+}
+
+void
+i915_gem_lastclose(struct drm_device *dev)
+{
+	int ret;
+
+	ret = i915_gem_idle(dev);
+	if (ret)
+		DRM_ERROR("failed to idle hardware: %d\n", ret);
+}
+
+void
+i915_gem_load(struct drm_device *dev)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+
+	INIT_LIST_HEAD(&dev_priv->mm.active_list);
+	INIT_LIST_HEAD(&dev_priv->mm.flushing_list);
+	INIT_LIST_HEAD(&dev_priv->mm.inactive_list);
+	INIT_LIST_HEAD(&dev_priv->mm.request_list);
+	INIT_DELAYED_WORK(&dev_priv->mm.retire_work,
+			  i915_gem_retire_work_handler);
+	INIT_WORK(&dev_priv->mm.vblank_work,
+		  i915_gem_vblank_work_handler);
+	dev_priv->mm.next_gem_seqno = 1;
+
+	i915_gem_detect_bit_6_swizzle(dev);
+}
diff --git a/drivers/gpu/drm/i915/i915_gem_debug.c b/drivers/gpu/drm/i915/i915_gem_debug.c
new file mode 100644
index 0000000..131c088
--- /dev/null
+++ b/drivers/gpu/drm/i915/i915_gem_debug.c
@@ -0,0 +1,201 @@
+/*
+ * Copyright © 2008 Intel Corporation
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice (including the next
+ * paragraph) shall be included in all copies or substantial portions of the
+ * Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
+ * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
+ * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
+ * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
+ * IN THE SOFTWARE.
+ *
+ * Authors:
+ *    Keith Packard <keithp@keithp.com>
+ *
+ */
+
+#include "drmP.h"
+#include "drm.h"
+#include "i915_drm.h"
+#include "i915_drv.h"
+
+#if WATCH_INACTIVE
+void
+i915_verify_inactive(struct drm_device *dev, char *file, int line)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_gem_object *obj;
+	struct drm_i915_gem_object *obj_priv;
+
+	list_for_each_entry(obj_priv, &dev_priv->mm.inactive_list, list) {
+		obj = obj_priv->obj;
+		if (obj_priv->pin_count || obj_priv->active ||
+		    (obj->write_domain & ~(I915_GEM_DOMAIN_CPU |
+					   I915_GEM_DOMAIN_GTT)))
+			DRM_ERROR("inactive %p (p %d a %d w %x)  %s:%d\n",
+				  obj,
+				  obj_priv->pin_count, obj_priv->active,
+				  obj->write_domain, file, line);
+	}
+}
+#endif /* WATCH_INACTIVE */
+
+
+#if WATCH_BUF | WATCH_EXEC | WATCH_PWRITE
+static void
+i915_gem_dump_page(struct page *page, uint32_t start, uint32_t end,
+		   uint32_t bias, uint32_t mark)
+{
+	uint32_t *mem = kmap_atomic(page, KM_USER0);
+	int i;
+	for (i = start; i < end; i += 4)
+		DRM_INFO("%08x: %08x%s\n",
+			  (int) (bias + i), mem[i / 4],
+			  (bias + i == mark) ? " ********" : "");
+	kunmap_atomic(mem, KM_USER0);
+	/* give syslog time to catch up */
+	msleep(1);
+}
+
+void
+i915_gem_dump_object(struct drm_gem_object *obj, int len,
+		     const char *where, uint32_t mark)
+{
+	struct drm_i915_gem_object *obj_priv = obj->driver_private;
+	int page;
+
+	DRM_INFO("%s: object at offset %08x\n", where, obj_priv->gtt_offset);
+	for (page = 0; page < (len + PAGE_SIZE-1) / PAGE_SIZE; page++) {
+		int page_len, chunk, chunk_len;
+
+		page_len = len - page * PAGE_SIZE;
+		if (page_len > PAGE_SIZE)
+			page_len = PAGE_SIZE;
+
+		for (chunk = 0; chunk < page_len; chunk += 128) {
+			chunk_len = page_len - chunk;
+			if (chunk_len > 128)
+				chunk_len = 128;
+			i915_gem_dump_page(obj_priv->page_list[page],
+					   chunk, chunk + chunk_len,
+					   obj_priv->gtt_offset +
+					   page * PAGE_SIZE,
+					   mark);
+		}
+	}
+}
+#endif
+
+#if WATCH_LRU
+void
+i915_dump_lru(struct drm_device *dev, const char *where)
+{
+	drm_i915_private_t		*dev_priv = dev->dev_private;
+	struct drm_i915_gem_object	*obj_priv;
+
+	DRM_INFO("active list %s {\n", where);
+	list_for_each_entry(obj_priv, &dev_priv->mm.active_list,
+			    list)
+	{
+		DRM_INFO("    %p: %08x\n", obj_priv,
+			 obj_priv->last_rendering_seqno);
+	}
+	DRM_INFO("}\n");
+	DRM_INFO("flushing list %s {\n", where);
+	list_for_each_entry(obj_priv, &dev_priv->mm.flushing_list,
+			    list)
+	{
+		DRM_INFO("    %p: %08x\n", obj_priv,
+			 obj_priv->last_rendering_seqno);
+	}
+	DRM_INFO("}\n");
+	DRM_INFO("inactive %s {\n", where);
+	list_for_each_entry(obj_priv, &dev_priv->mm.inactive_list, list) {
+		DRM_INFO("    %p: %08x\n", obj_priv,
+			 obj_priv->last_rendering_seqno);
+	}
+	DRM_INFO("}\n");
+}
+#endif
+
+
+#if WATCH_COHERENCY
+void
+i915_gem_object_check_coherency(struct drm_gem_object *obj, int handle)
+{
+	struct drm_device *dev = obj->dev;
+	struct drm_i915_gem_object *obj_priv = obj->driver_private;
+	int page;
+	uint32_t *gtt_mapping;
+	uint32_t *backing_map = NULL;
+	int bad_count = 0;
+
+	DRM_INFO("%s: checking coherency of object %p@0x%08x (%d, %dkb):\n",
+		 __func__, obj, obj_priv->gtt_offset, handle,
+		 obj->size / 1024);
+
+	gtt_mapping = ioremap(dev->agp->base + obj_priv->gtt_offset,
+			      obj->size);
+	if (gtt_mapping == NULL) {
+		DRM_ERROR("failed to map GTT space\n");
+		return;
+	}
+
+	for (page = 0; page < obj->size / PAGE_SIZE; page++) {
+		int i;
+
+		backing_map = kmap_atomic(obj_priv->page_list[page], KM_USER0);
+
+		if (backing_map == NULL) {
+			DRM_ERROR("failed to map backing page\n");
+			goto out;
+		}
+
+		for (i = 0; i < PAGE_SIZE / 4; i++) {
+			uint32_t cpuval = backing_map[i];
+			uint32_t gttval = readl(gtt_mapping +
+						page * 1024 + i);
+
+			if (cpuval != gttval) {
+				DRM_INFO("incoherent CPU vs GPU at 0x%08x: "
+					 "0x%08x vs 0x%08x\n",
+					 (int)(obj_priv->gtt_offset +
+					       page * PAGE_SIZE + i * 4),
+					 cpuval, gttval);
+				if (bad_count++ >= 8) {
+					DRM_INFO("...\n");
+					goto out;
+				}
+			}
+		}
+		kunmap_atomic(backing_map, KM_USER0);
+		backing_map = NULL;
+	}
+
+ out:
+	if (backing_map != NULL)
+		kunmap_atomic(backing_map, KM_USER0);
+	iounmap(gtt_mapping);
+
+	/* give syslog time to catch up */
+	msleep(1);
+
+	/* Directly flush the object, since we just loaded values with the CPU
+	 * from the backing pages and we don't want to disturb the cache
+	 * management that we're trying to observe.
+	 */
+
+	i915_gem_clflush_object(obj);
+}
+#endif
diff --git a/drivers/gpu/drm/i915/i915_gem_proc.c b/drivers/gpu/drm/i915/i915_gem_proc.c
new file mode 100644
index 0000000..15d4160
--- /dev/null
+++ b/drivers/gpu/drm/i915/i915_gem_proc.c
@@ -0,0 +1,292 @@
+/*
+ * Copyright © 2008 Intel Corporation
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice (including the next
+ * paragraph) shall be included in all copies or substantial portions of the
+ * Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
+ * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
+ * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
+ * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
+ * IN THE SOFTWARE.
+ *
+ * Authors:
+ *    Eric Anholt <eric@anholt.net>
+ *    Keith Packard <keithp@keithp.com>
+ *
+ */
+
+#include "drmP.h"
+#include "drm.h"
+#include "i915_drm.h"
+#include "i915_drv.h"
+
+static int i915_gem_active_info(char *buf, char **start, off_t offset,
+				int request, int *eof, void *data)
+{
+	struct drm_minor *minor = (struct drm_minor *) data;
+	struct drm_device *dev = minor->dev;
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_i915_gem_object *obj_priv;
+	int len = 0;
+
+	if (offset > DRM_PROC_LIMIT) {
+		*eof = 1;
+		return 0;
+	}
+
+	*start = &buf[offset];
+	*eof = 0;
+	DRM_PROC_PRINT("Active:\n");
+	list_for_each_entry(obj_priv, &dev_priv->mm.active_list,
+			    list)
+	{
+		struct drm_gem_object *obj = obj_priv->obj;
+		if (obj->name) {
+			DRM_PROC_PRINT("    %p(%d): %08x %08x %d\n",
+				       obj, obj->name,
+				       obj->read_domains, obj->write_domain,
+				       obj_priv->last_rendering_seqno);
+		} else {
+			DRM_PROC_PRINT("       %p: %08x %08x %d\n",
+				       obj,
+				       obj->read_domains, obj->write_domain,
+				       obj_priv->last_rendering_seqno);
+		}
+	}
+	if (len > request + offset)
+		return request;
+	*eof = 1;
+	return len - offset;
+}
+
+static int i915_gem_flushing_info(char *buf, char **start, off_t offset,
+				  int request, int *eof, void *data)
+{
+	struct drm_minor *minor = (struct drm_minor *) data;
+	struct drm_device *dev = minor->dev;
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_i915_gem_object *obj_priv;
+	int len = 0;
+
+	if (offset > DRM_PROC_LIMIT) {
+		*eof = 1;
+		return 0;
+	}
+
+	*start = &buf[offset];
+	*eof = 0;
+	DRM_PROC_PRINT("Flushing:\n");
+	list_for_each_entry(obj_priv, &dev_priv->mm.flushing_list,
+			    list)
+	{
+		struct drm_gem_object *obj = obj_priv->obj;
+		if (obj->name) {
+			DRM_PROC_PRINT("    %p(%d): %08x %08x %d\n",
+				       obj, obj->name,
+				       obj->read_domains, obj->write_domain,
+				       obj_priv->last_rendering_seqno);
+		} else {
+			DRM_PROC_PRINT("       %p: %08x %08x %d\n", obj,
+				       obj->read_domains, obj->write_domain,
+				       obj_priv->last_rendering_seqno);
+		}
+	}
+	if (len > request + offset)
+		return request;
+	*eof = 1;
+	return len - offset;
+}
+
+static int i915_gem_inactive_info(char *buf, char **start, off_t offset,
+				  int request, int *eof, void *data)
+{
+	struct drm_minor *minor = (struct drm_minor *) data;
+	struct drm_device *dev = minor->dev;
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_i915_gem_object *obj_priv;
+	int len = 0;
+
+	if (offset > DRM_PROC_LIMIT) {
+		*eof = 1;
+		return 0;
+	}
+
+	*start = &buf[offset];
+	*eof = 0;
+	DRM_PROC_PRINT("Inactive:\n");
+	list_for_each_entry(obj_priv, &dev_priv->mm.inactive_list,
+			    list)
+	{
+		struct drm_gem_object *obj = obj_priv->obj;
+		if (obj->name) {
+			DRM_PROC_PRINT("    %p(%d): %08x %08x %d\n",
+				       obj, obj->name,
+				       obj->read_domains, obj->write_domain,
+				       obj_priv->last_rendering_seqno);
+		} else {
+			DRM_PROC_PRINT("       %p: %08x %08x %d\n", obj,
+				       obj->read_domains, obj->write_domain,
+				       obj_priv->last_rendering_seqno);
+		}
+	}
+	if (len > request + offset)
+		return request;
+	*eof = 1;
+	return len - offset;
+}
+
+static int i915_gem_request_info(char *buf, char **start, off_t offset,
+				 int request, int *eof, void *data)
+{
+	struct drm_minor *minor = (struct drm_minor *) data;
+	struct drm_device *dev = minor->dev;
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_i915_gem_request *gem_request;
+	int len = 0;
+
+	if (offset > DRM_PROC_LIMIT) {
+		*eof = 1;
+		return 0;
+	}
+
+	*start = &buf[offset];
+	*eof = 0;
+	DRM_PROC_PRINT("Request:\n");
+	list_for_each_entry(gem_request, &dev_priv->mm.request_list,
+			    list)
+	{
+		DRM_PROC_PRINT("    %d @ %d %08x\n",
+			       gem_request->seqno,
+			       (int) (jiffies - gem_request->emitted_jiffies),
+			       gem_request->flush_domains);
+	}
+	if (len > request + offset)
+		return request;
+	*eof = 1;
+	return len - offset;
+}
+
+static int i915_gem_seqno_info(char *buf, char **start, off_t offset,
+			       int request, int *eof, void *data)
+{
+	struct drm_minor *minor = (struct drm_minor *) data;
+	struct drm_device *dev = minor->dev;
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	int len = 0;
+
+	if (offset > DRM_PROC_LIMIT) {
+		*eof = 1;
+		return 0;
+	}
+
+	*start = &buf[offset];
+	*eof = 0;
+	DRM_PROC_PRINT("Current sequence: %d\n", i915_get_gem_seqno(dev));
+	DRM_PROC_PRINT("Waiter sequence:  %d\n",
+		       dev_priv->mm.waiting_gem_seqno);
+	DRM_PROC_PRINT("IRQ sequence:     %d\n", dev_priv->mm.irq_gem_seqno);
+	if (len > request + offset)
+		return request;
+	*eof = 1;
+	return len - offset;
+}
+
+
+static int i915_interrupt_info(char *buf, char **start, off_t offset,
+			       int request, int *eof, void *data)
+{
+	struct drm_minor *minor = (struct drm_minor *) data;
+	struct drm_device *dev = minor->dev;
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	int len = 0;
+
+	if (offset > DRM_PROC_LIMIT) {
+		*eof = 1;
+		return 0;
+	}
+
+	*start = &buf[offset];
+	*eof = 0;
+	DRM_PROC_PRINT("Interrupt enable:    %08x\n",
+		       I915_READ(IER));
+	DRM_PROC_PRINT("Interrupt identity:  %08x\n",
+		       I915_READ(IIR));
+	DRM_PROC_PRINT("Interrupt mask:      %08x\n",
+		       I915_READ(IMR));
+	DRM_PROC_PRINT("Pipe A stat:         %08x\n",
+		       I915_READ(PIPEASTAT));
+	DRM_PROC_PRINT("Pipe B stat:         %08x\n",
+		       I915_READ(PIPEBSTAT));
+	DRM_PROC_PRINT("Interrupts received: %d\n",
+		       atomic_read(&dev_priv->irq_received));
+	DRM_PROC_PRINT("Current sequence:    %d\n",
+		       i915_get_gem_seqno(dev));
+	DRM_PROC_PRINT("Waiter sequence:     %d\n",
+		       dev_priv->mm.waiting_gem_seqno);
+	DRM_PROC_PRINT("IRQ sequence:        %d\n",
+		       dev_priv->mm.irq_gem_seqno);
+	if (len > request + offset)
+		return request;
+	*eof = 1;
+	return len - offset;
+}
+
+static struct drm_proc_list {
+	/** file name */
+	const char *name;
+	/** proc callback*/
+	int (*f) (char *, char **, off_t, int, int *, void *);
+} i915_gem_proc_list[] = {
+	{"i915_gem_active", i915_gem_active_info},
+	{"i915_gem_flushing", i915_gem_flushing_info},
+	{"i915_gem_inactive", i915_gem_inactive_info},
+	{"i915_gem_request", i915_gem_request_info},
+	{"i915_gem_seqno", i915_gem_seqno_info},
+	{"i915_gem_interrupt", i915_interrupt_info},
+};
+
+#define I915_GEM_PROC_ENTRIES ARRAY_SIZE(i915_gem_proc_list)
+
+int i915_gem_proc_init(struct drm_minor *minor)
+{
+	struct proc_dir_entry *ent;
+	int i, j;
+
+	for (i = 0; i < I915_GEM_PROC_ENTRIES; i++) {
+		ent = create_proc_entry(i915_gem_proc_list[i].name,
+					S_IFREG | S_IRUGO, minor->dev_root);
+		if (!ent) {
+			DRM_ERROR("Cannot create /proc/dri/.../%s\n",
+				  i915_gem_proc_list[i].name);
+			for (j = 0; j < i; j++)
+				remove_proc_entry(i915_gem_proc_list[i].name,
+						  minor->dev_root);
+			return -1;
+		}
+		ent->read_proc = i915_gem_proc_list[i].f;
+		ent->data = minor;
+	}
+	return 0;
+}
+
+void i915_gem_proc_cleanup(struct drm_minor *minor)
+{
+	int i;
+
+	if (!minor->dev_root)
+		return;
+
+	for (i = 0; i < I915_GEM_PROC_ENTRIES; i++)
+		remove_proc_entry(i915_gem_proc_list[i].name, minor->dev_root);
+}
diff --git a/drivers/gpu/drm/i915/i915_gem_tiling.c b/drivers/gpu/drm/i915/i915_gem_tiling.c
new file mode 100644
index 0000000..e8b85ac
--- /dev/null
+++ b/drivers/gpu/drm/i915/i915_gem_tiling.c
@@ -0,0 +1,257 @@
+/*
+ * Copyright © 2008 Intel Corporation
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the "Software"),
+ * to deal in the Software without restriction, including without limitation
+ * the rights to use, copy, modify, merge, publish, distribute, sublicense,
+ * and/or sell copies of the Software, and to permit persons to whom the
+ * Software is furnished to do so, subject to the following conditions:
+ *
+ * The above copyright notice and this permission notice (including the next
+ * paragraph) shall be included in all copies or substantial portions of the
+ * Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
+ * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
+ * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
+ * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
+ * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
+ * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS
+ * IN THE SOFTWARE.
+ *
+ * Authors:
+ *    Eric Anholt <eric@anholt.net>
+ *
+ */
+
+#include "drmP.h"
+#include "drm.h"
+#include "i915_drm.h"
+#include "i915_drv.h"
+
+/** @file i915_gem_tiling.c
+ *
+ * Support for managing tiling state of buffer objects.
+ *
+ * The idea behind tiling is to increase cache hit rates by rearranging
+ * pixel data so that a group of pixel accesses are in the same cacheline.
+ * Performance improvement from doing this on the back/depth buffer are on
+ * the order of 30%.
+ *
+ * Intel architectures make this somewhat more complicated, though, by
+ * adjustments made to addressing of data when the memory is in interleaved
+ * mode (matched pairs of DIMMS) to improve memory bandwidth.
+ * For interleaved memory, the CPU sends every sequential 64 bytes
+ * to an alternate memory channel so it can get the bandwidth from both.
+ *
+ * The GPU also rearranges its accesses for increased bandwidth to interleaved
+ * memory, and it matches what the CPU does for non-tiled.  However, when tiled
+ * it does it a little differently, since one walks addresses not just in the
+ * X direction but also Y.  So, along with alternating channels when bit
+ * 6 of the address flips, it also alternates when other bits flip --  Bits 9
+ * (every 512 bytes, an X tile scanline) and 10 (every two X tile scanlines)
+ * are common to both the 915 and 965-class hardware.
+ *
+ * The CPU also sometimes XORs in higher bits as well, to improve
+ * bandwidth doing strided access like we do so frequently in graphics.  This
+ * is called "Channel XOR Randomization" in the MCH documentation.  The result
+ * is that the CPU is XORing in either bit 11 or bit 17 to bit 6 of its address
+ * decode.
+ *
+ * All of this bit 6 XORing has an effect on our memory management,
+ * as we need to make sure that the 3d driver can correctly address object
+ * contents.
+ *
+ * If we don't have interleaved memory, all tiling is safe and no swizzling is
+ * required.
+ *
+ * When bit 17 is XORed in, we simply refuse to tile at all.  Bit
+ * 17 is not just a page offset, so as we page an objet out and back in,
+ * individual pages in it will have different bit 17 addresses, resulting in
+ * each 64 bytes being swapped with its neighbor!
+ *
+ * Otherwise, if interleaved, we have to tell the 3d driver what the address
+ * swizzling it needs to do is, since it's writing with the CPU to the pages
+ * (bit 6 and potentially bit 11 XORed in), and the GPU is reading from the
+ * pages (bit 6, 9, and 10 XORed in), resulting in a cumulative bit swizzling
+ * required by the CPU of XORing in bit 6, 9, 10, and potentially 11, in order
+ * to match what the GPU expects.
+ */
+
+/**
+ * Detects bit 6 swizzling of address lookup between IGD access and CPU
+ * access through main memory.
+ */
+void
+i915_gem_detect_bit_6_swizzle(struct drm_device *dev)
+{
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	uint32_t swizzle_x = I915_BIT_6_SWIZZLE_UNKNOWN;
+	uint32_t swizzle_y = I915_BIT_6_SWIZZLE_UNKNOWN;
+
+	if (!IS_I9XX(dev)) {
+		/* As far as we know, the 865 doesn't have these bit 6
+		 * swizzling issues.
+		 */
+		swizzle_x = I915_BIT_6_SWIZZLE_NONE;
+		swizzle_y = I915_BIT_6_SWIZZLE_NONE;
+	} else if ((!IS_I965G(dev) && !IS_G33(dev)) || IS_I965GM(dev) ||
+		   IS_GM45(dev)) {
+		uint32_t dcc;
+
+		/* On 915-945 and GM965, channel interleave by the CPU is
+		 * determined by DCC.  The CPU will alternate based on bit 6
+		 * in interleaved mode, and the GPU will then also alternate
+		 * on bit 6, 9, and 10 for X, but the CPU may also optionally
+		 * alternate based on bit 17 (XOR not disabled and XOR
+		 * bit == 17).
+		 */
+		dcc = I915_READ(DCC);
+		switch (dcc & DCC_ADDRESSING_MODE_MASK) {
+		case DCC_ADDRESSING_MODE_SINGLE_CHANNEL:
+		case DCC_ADDRESSING_MODE_DUAL_CHANNEL_ASYMMETRIC:
+			swizzle_x = I915_BIT_6_SWIZZLE_NONE;
+			swizzle_y = I915_BIT_6_SWIZZLE_NONE;
+			break;
+		case DCC_ADDRESSING_MODE_DUAL_CHANNEL_INTERLEAVED:
+			if (IS_I915G(dev) || IS_I915GM(dev) ||
+			    dcc & DCC_CHANNEL_XOR_DISABLE) {
+				swizzle_x = I915_BIT_6_SWIZZLE_9_10;
+				swizzle_y = I915_BIT_6_SWIZZLE_9;
+			} else if (IS_I965GM(dev) || IS_GM45(dev)) {
+				/* GM965 only does bit 11-based channel
+				 * randomization
+				 */
+				swizzle_x = I915_BIT_6_SWIZZLE_9_10_11;
+				swizzle_y = I915_BIT_6_SWIZZLE_9_11;
+			} else {
+				/* Bit 17 or perhaps other swizzling */
+				swizzle_x = I915_BIT_6_SWIZZLE_UNKNOWN;
+				swizzle_y = I915_BIT_6_SWIZZLE_UNKNOWN;
+			}
+			break;
+		}
+		if (dcc == 0xffffffff) {
+			DRM_ERROR("Couldn't read from MCHBAR.  "
+				  "Disabling tiling.\n");
+			swizzle_x = I915_BIT_6_SWIZZLE_UNKNOWN;
+			swizzle_y = I915_BIT_6_SWIZZLE_UNKNOWN;
+		}
+	} else {
+		/* The 965, G33, and newer, have a very flexible memory
+		 * configuration.  It will enable dual-channel mode
+		 * (interleaving) on as much memory as it can, and the GPU
+		 * will additionally sometimes enable different bit 6
+		 * swizzling for tiled objects from the CPU.
+		 *
+		 * Here's what I found on the G965:
+		 *    slot fill         memory size  swizzling
+		 * 0A   0B   1A   1B    1-ch   2-ch
+		 * 512  0    0    0     512    0     O
+		 * 512  0    512  0     16     1008  X
+		 * 512  0    0    512   16     1008  X
+		 * 0    512  0    512   16     1008  X
+		 * 1024 1024 1024 0     2048   1024  O
+		 *
+		 * We could probably detect this based on either the DRB
+		 * matching, which was the case for the swizzling required in
+		 * the table above, or from the 1-ch value being less than
+		 * the minimum size of a rank.
+		 */
+		if (I915_READ16(C0DRB3) != I915_READ16(C1DRB3)) {
+			swizzle_x = I915_BIT_6_SWIZZLE_NONE;
+			swizzle_y = I915_BIT_6_SWIZZLE_NONE;
+		} else {
+			swizzle_x = I915_BIT_6_SWIZZLE_9_10;
+			swizzle_y = I915_BIT_6_SWIZZLE_9;
+		}
+	}
+
+	dev_priv->mm.bit_6_swizzle_x = swizzle_x;
+	dev_priv->mm.bit_6_swizzle_y = swizzle_y;
+}
+
+/**
+ * Sets the tiling mode of an object, returning the required swizzling of
+ * bit 6 of addresses in the object.
+ */
+int
+i915_gem_set_tiling(struct drm_device *dev, void *data,
+		   struct drm_file *file_priv)
+{
+	struct drm_i915_gem_set_tiling *args = data;
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_gem_object *obj;
+	struct drm_i915_gem_object *obj_priv;
+
+	obj = drm_gem_object_lookup(dev, file_priv, args->handle);
+	if (obj == NULL)
+		return -EINVAL;
+	obj_priv = obj->driver_private;
+
+	mutex_lock(&dev->struct_mutex);
+
+	if (args->tiling_mode == I915_TILING_NONE) {
+		obj_priv->tiling_mode = I915_TILING_NONE;
+		args->swizzle_mode = I915_BIT_6_SWIZZLE_NONE;
+	} else {
+		if (args->tiling_mode == I915_TILING_X)
+			args->swizzle_mode = dev_priv->mm.bit_6_swizzle_x;
+		else
+			args->swizzle_mode = dev_priv->mm.bit_6_swizzle_y;
+		/* If we can't handle the swizzling, make it untiled. */
+		if (args->swizzle_mode == I915_BIT_6_SWIZZLE_UNKNOWN) {
+			args->tiling_mode = I915_TILING_NONE;
+			args->swizzle_mode = I915_BIT_6_SWIZZLE_NONE;
+		}
+	}
+	obj_priv->tiling_mode = args->tiling_mode;
+
+	mutex_unlock(&dev->struct_mutex);
+
+	drm_gem_object_unreference(obj);
+
+	return 0;
+}
+
+/**
+ * Returns the current tiling mode and required bit 6 swizzling for the object.
+ */
+int
+i915_gem_get_tiling(struct drm_device *dev, void *data,
+		   struct drm_file *file_priv)
+{
+	struct drm_i915_gem_get_tiling *args = data;
+	drm_i915_private_t *dev_priv = dev->dev_private;
+	struct drm_gem_object *obj;
+	struct drm_i915_gem_object *obj_priv;
+
+	obj = drm_gem_object_lookup(dev, file_priv, args->handle);
+	if (obj == NULL)
+		return -EINVAL;
+	obj_priv = obj->driver_private;
+
+	mutex_lock(&dev->struct_mutex);
+
+	args->tiling_mode = obj_priv->tiling_mode;
+	switch (obj_priv->tiling_mode) {
+	case I915_TILING_X:
+		args->swizzle_mode = dev_priv->mm.bit_6_swizzle_x;
+		break;
+	case I915_TILING_Y:
+		args->swizzle_mode = dev_priv->mm.bit_6_swizzle_y;
+		break;
+	case I915_TILING_NONE:
+		args->swizzle_mode = I915_BIT_6_SWIZZLE_NONE;
+		break;
+	default:
+		DRM_ERROR("unknown tiling mode\n");
+	}
+
+	mutex_unlock(&dev->struct_mutex);
+
+	drm_gem_object_unreference(obj);
+
+	return 0;
+}
diff --git a/drivers/gpu/drm/i915/i915_irq.c b/drivers/gpu/drm/i915/i915_irq.c
index df03611..baae511 100644
--- a/drivers/gpu/drm/i915/i915_irq.c
+++ b/drivers/gpu/drm/i915/i915_irq.c
@@ -31,12 +31,92 @@
 #include "i915_drm.h"
 #include "i915_drv.h"
 
-#define USER_INT_FLAG (1<<1)
-#define VSYNC_PIPEB_FLAG (1<<5)
-#define VSYNC_PIPEA_FLAG (1<<7)
-
 #define MAX_NOPID ((u32)~0)
 
+/** These are the interrupts used by the driver */
+#define I915_INTERRUPT_ENABLE_MASK (I915_USER_INTERRUPT |		\
+				    I915_ASLE_INTERRUPT |		\
+				    I915_DISPLAY_PIPE_A_EVENT_INTERRUPT | \
+				    I915_DISPLAY_PIPE_B_EVENT_INTERRUPT)
+
+void
+i915_enable_irq(drm_i915_private_t *dev_priv, u32 mask)
+{
+	if ((dev_priv->irq_mask_reg & mask) != 0) {
+		dev_priv->irq_mask_reg &= ~mask;
+		I915_WRITE(IMR, dev_priv->irq_mask_reg);
+		(void) I915_READ(IMR);
+	}
+}
+
+static inline void
+i915_disable_irq(drm_i915_private_t *dev_priv, u32 mask)
+{
+	if ((dev_priv->irq_mask_reg & mask) != mask) {
+		dev_priv->irq_mask_reg |= mask;
+		I915_WRITE(IMR, dev_priv->irq_mask_reg);
+		(void) I915_READ(IMR);
+	}
+}
+
+/**
+ * i915_get_pipe - return the the pipe associated with a given plane
+ * @dev: DRM device
+ * @plane: plane to look for
+ *
+ * The Intel Mesa & 2D drivers call the vblank routines with a plane number
+ * rather than a pipe number, since they may not always be equal.  This routine
+ * maps the given @plane back to a pipe number.
+ */
+static int
+i915_get_pipe(struct drm_device *dev, int plane)
+{
+	drm_i915_private_t *dev_priv = (drm_i915_private_t *) dev->dev_private;
+	u32 dspcntr;
+
+	dspcntr = plane ? I915_READ(DSPBCNTR) : I915_READ(DSPACNTR);
+
+	return dspcntr & DISPPLANE_SEL_PIPE_MASK ? 1 : 0;
+}
+
+/**
+ * i915_get_plane - return the the plane associated with a given pipe
+ * @dev: DRM device
+ * @pipe: pipe to look for
+ *
+ * The Intel Mesa & 2D drivers call the vblank routines with a plane number
+ * rather than a plane number, since they may not always be equal.  This routine
+ * maps the given @pipe back to a plane number.
+ */
+static int
+i915_get_plane(struct drm_device *dev, int pipe)
+{
+	if (i915_get_pipe(dev, 0) == pipe)
+		return 0;
+	return 1;
+}
+
+/**
+ * i915_pipe_enabled - check if a pipe is enabled
+ * @dev: DRM device
+ * @pipe: pipe to check
+ *
+ * Reading certain registers when the pipe is disabled can hang the chip.
+ * Use this routine to make sure the PLL is running and the pipe is active
+ * before reading such registers if unsure.
+ */
+static int
+i915_pipe_enabled(struct drm_device *dev, int pipe)
+{
+	drm_i915_private_t *dev_priv = (drm_i915_private_t *) dev->dev_private;
+	unsigned long pipeconf = pipe ? PIPEBCONF : PIPEACONF;
+
+	if (I915_READ(pipeconf) & PIPEACONF_ENABLE)
+		return 1;
+
+	return 0;
+}
+
 /**
  * Emit blits for scheduled buffer swaps.
  *
@@ -48,8 +128,7 @@
 	unsigned long irqflags;
 	struct list_head *list, *tmp, hits, *hit;
 	int nhits, nrects, slice[2], upper[2], lower[2], i;
-	unsigned counter[2] = { atomic_read(&dev->vbl_received),
-				atomic_read(&dev->vbl_received2) };
+	unsigned counter[2];
 	struct drm_drawable_info *drw;
 	drm_i915_sarea_t *sarea_priv = dev_priv->sarea_priv;
 	u32 cpp = dev_priv->cpp;
@@ -71,6 +150,9 @@
 		src_pitch >>= 2;
 	}
 
+	counter[0] = drm_vblank_count(dev, 0);
+	counter[1] = drm_vblank_count(dev, 1);
+
 	DRM_DEBUG("\n");
 
 	INIT_LIST_HEAD(&hits);
@@ -83,12 +165,14 @@
 	list_for_each_safe(list, tmp, &dev_priv->vbl_swaps.head) {
 		drm_i915_vbl_swap_t *vbl_swap =
 			list_entry(list, drm_i915_vbl_swap_t, head);
+		int pipe = i915_get_pipe(dev, vbl_swap->plane);
 
-		if ((counter[vbl_swap->pipe] - vbl_swap->sequence) > (1<<23))
+		if ((counter[pipe] - vbl_swap->sequence) > (1<<23))
 			continue;
 
 		list_del(list);
 		dev_priv->swaps_pending--;
+		drm_vblank_put(dev, pipe);
 
 		spin_unlock(&dev_priv->swaps_lock);
 		spin_lock(&dev->drw_lock);
@@ -181,7 +265,7 @@
 			drm_i915_vbl_swap_t *swap_hit =
 				list_entry(hit, drm_i915_vbl_swap_t, head);
 			struct drm_clip_rect *rect;
-			int num_rects, pipe;
+			int num_rects, plane;
 			unsigned short top, bottom;
 
 			drw = drm_get_drawable_info(dev, swap_hit->drw_id);
@@ -190,9 +274,9 @@
 				continue;
 
 			rect = drw->rects;
-			pipe = swap_hit->pipe;
-			top = upper[pipe];
-			bottom = lower[pipe];
+			plane = swap_hit->plane;
+			top = upper[plane];
+			bottom = lower[plane];
 
 			for (num_rects = drw->num_rects; num_rects--; rect++) {
 				int y1 = max(rect->y1, top);
@@ -229,61 +313,139 @@
 	}
 }
 
+u32 i915_get_vblank_counter(struct drm_device *dev, int plane)
+{
+	drm_i915_private_t *dev_priv = (drm_i915_private_t *) dev->dev_private;
+	unsigned long high_frame;
+	unsigned long low_frame;
+	u32 high1, high2, low, count;
+	int pipe;
+
+	pipe = i915_get_pipe(dev, plane);
+	high_frame = pipe ? PIPEBFRAMEHIGH : PIPEAFRAMEHIGH;
+	low_frame = pipe ? PIPEBFRAMEPIXEL : PIPEAFRAMEPIXEL;
+
+	if (!i915_pipe_enabled(dev, pipe)) {
+		DRM_ERROR("trying to get vblank count for disabled pipe %d\n", pipe);
+		return 0;
+	}
+
+	/*
+	 * High & low register fields aren't synchronized, so make sure
+	 * we get a low value that's stable across two reads of the high
+	 * register.
+	 */
+	do {
+		high1 = ((I915_READ(high_frame) & PIPE_FRAME_HIGH_MASK) >>
+			 PIPE_FRAME_HIGH_SHIFT);
+		low =  ((I915_READ(low_frame) & PIPE_FRAME_LOW_MASK) >>
+			PIPE_FRAME_LOW_SHIFT);
+		high2 = ((I915_READ(high_frame) & PIPE_FRAME_HIGH_MASK) >>
+			 PIPE_FRAME_HIGH_SHIFT);
+	} while (high1 != high2);
+
+	count = (high1 << 8) | low;
+
+	return count;
+}
+
+void
+i915_gem_vblank_work_handler(struct work_struct *work)
+{
+	drm_i915_private_t *dev_priv;
+	struct drm_device *dev;
+
+	dev_priv = container_of(work, drm_i915_private_t,
+				mm.vblank_work);
+	dev = dev_priv->dev;
+
+	mutex_lock(&dev->struct_mutex);
+	i915_vblank_tasklet(dev);
+	mutex_unlock(&dev->struct_mutex);
+}
+
 irqreturn_t i915_driver_irq_handler(DRM_IRQ_ARGS)
 {
 	struct drm_device *dev = (struct drm_device *) arg;
 	drm_i915_private_t *dev_priv = (drm_i915_private_t *) dev->dev_private;
-	u16 temp;
+	u32 iir;
 	u32 pipea_stats, pipeb_stats;
+	int vblank = 0;
 
-	pipea_stats = I915_READ(I915REG_PIPEASTAT);
-	pipeb_stats = I915_READ(I915REG_PIPEBSTAT);
+	atomic_inc(&dev_priv->irq_received);
 
-	temp = I915_READ16(I915REG_INT_IDENTITY_R);
+	if (dev->pdev->msi_enabled)
+		I915_WRITE(IMR, ~0);
+	iir = I915_READ(IIR);
 
-	temp &= (USER_INT_FLAG | VSYNC_PIPEA_FLAG | VSYNC_PIPEB_FLAG);
-
-	DRM_DEBUG("%s flag=%08x\n", __FUNCTION__, temp);
-
-	if (temp == 0)
+	if (iir == 0) {
+		if (dev->pdev->msi_enabled) {
+			I915_WRITE(IMR, dev_priv->irq_mask_reg);
+			(void) I915_READ(IMR);
+		}
 		return IRQ_NONE;
+	}
 
-	I915_WRITE16(I915REG_INT_IDENTITY_R, temp);
-	(void) I915_READ16(I915REG_INT_IDENTITY_R);
-	DRM_READMEMORYBARRIER();
+	/*
+	 * Clear the PIPE(A|B)STAT regs before the IIR otherwise
+	 * we may get extra interrupts.
+	 */
+	if (iir & I915_DISPLAY_PIPE_A_EVENT_INTERRUPT) {
+		pipea_stats = I915_READ(PIPEASTAT);
+		if (!(dev_priv->vblank_pipe & DRM_I915_VBLANK_PIPE_A))
+			pipea_stats &= ~(PIPE_START_VBLANK_INTERRUPT_ENABLE |
+					 PIPE_VBLANK_INTERRUPT_ENABLE);
+		else if (pipea_stats & (PIPE_START_VBLANK_INTERRUPT_STATUS|
+					PIPE_VBLANK_INTERRUPT_STATUS)) {
+			vblank++;
+			drm_handle_vblank(dev, i915_get_plane(dev, 0));
+		}
 
-	dev_priv->sarea_priv->last_dispatch = READ_BREADCRUMB(dev_priv);
+		I915_WRITE(PIPEASTAT, pipea_stats);
+	}
+	if (iir & I915_DISPLAY_PIPE_B_EVENT_INTERRUPT) {
+		pipeb_stats = I915_READ(PIPEBSTAT);
+		/* Ack the event */
+		I915_WRITE(PIPEBSTAT, pipeb_stats);
 
-	if (temp & USER_INT_FLAG)
+		/* The vblank interrupt gets enabled even if we didn't ask for
+		   it, so make sure it's shut down again */
+		if (!(dev_priv->vblank_pipe & DRM_I915_VBLANK_PIPE_B))
+			pipeb_stats &= ~(PIPE_START_VBLANK_INTERRUPT_ENABLE |
+					 PIPE_VBLANK_INTERRUPT_ENABLE);
+		else if (pipeb_stats & (PIPE_START_VBLANK_INTERRUPT_STATUS|
+					PIPE_VBLANK_INTERRUPT_STATUS)) {
+			vblank++;
+			drm_handle_vblank(dev, i915_get_plane(dev, 1));
+		}
+
+		if (pipeb_stats & I915_LEGACY_BLC_EVENT_STATUS)
+			opregion_asle_intr(dev);
+		I915_WRITE(PIPEBSTAT, pipeb_stats);
+	}
+
+	I915_WRITE(IIR, iir);
+	if (dev->pdev->msi_enabled)
+		I915_WRITE(IMR, dev_priv->irq_mask_reg);
+	(void) I915_READ(IIR); /* Flush posted writes */
+
+	if (dev_priv->sarea_priv)
+		dev_priv->sarea_priv->last_dispatch =
+			READ_BREADCRUMB(dev_priv);
+
+	if (iir & I915_USER_INTERRUPT) {
+		dev_priv->mm.irq_gem_seqno = i915_get_gem_seqno(dev);
 		DRM_WAKEUP(&dev_priv->irq_queue);
+	}
 
-	if (temp & (VSYNC_PIPEA_FLAG | VSYNC_PIPEB_FLAG)) {
-		int vblank_pipe = dev_priv->vblank_pipe;
+	if (iir & I915_ASLE_INTERRUPT)
+		opregion_asle_intr(dev);
 
-		if ((vblank_pipe &
-		     (DRM_I915_VBLANK_PIPE_A | DRM_I915_VBLANK_PIPE_B))
-		    == (DRM_I915_VBLANK_PIPE_A | DRM_I915_VBLANK_PIPE_B)) {
-			if (temp & VSYNC_PIPEA_FLAG)
-				atomic_inc(&dev->vbl_received);
-			if (temp & VSYNC_PIPEB_FLAG)
-				atomic_inc(&dev->vbl_received2);
-		} else if (((temp & VSYNC_PIPEA_FLAG) &&
-			    (vblank_pipe & DRM_I915_VBLANK_PIPE_A)) ||
-			   ((temp & VSYNC_PIPEB_FLAG) &&
-			    (vblank_pipe & DRM_I915_VBLANK_PIPE_B)))
-			atomic_inc(&dev->vbl_received);
-
-		DRM_WAKEUP(&dev->vbl_queue);
-		drm_vbl_send_signals(dev);
-
-		if (dev_priv->swaps_pending > 0)
+	if (vblank && dev_priv->swaps_pending > 0) {
+		if (dev_priv->ring.ring_obj == NULL)
 			drm_locked_tasklet(dev, i915_vblank_tasklet);
-		I915_WRITE(I915REG_PIPEASTAT,
-			pipea_stats|I915_VBLANK_INTERRUPT_ENABLE|
-			I915_VBLANK_CLEAR);
-		I915_WRITE(I915REG_PIPEBSTAT,
-			pipeb_stats|I915_VBLANK_INTERRUPT_ENABLE|
-			I915_VBLANK_CLEAR);
+		else
+			schedule_work(&dev_priv->mm.vblank_work);
 	}
 
 	return IRQ_HANDLED;
@@ -298,23 +460,45 @@
 
 	DRM_DEBUG("\n");
 
-	dev_priv->sarea_priv->last_enqueue = ++dev_priv->counter;
-
+	dev_priv->counter++;
 	if (dev_priv->counter > 0x7FFFFFFFUL)
-		dev_priv->sarea_priv->last_enqueue = dev_priv->counter = 1;
+		dev_priv->counter = 1;
+	if (dev_priv->sarea_priv)
+		dev_priv->sarea_priv->last_enqueue = dev_priv->counter;
 
 	BEGIN_LP_RING(6);
-	OUT_RING(CMD_STORE_DWORD_IDX);
-	OUT_RING(20);
+	OUT_RING(MI_STORE_DWORD_INDEX);
+	OUT_RING(5 << MI_STORE_DWORD_INDEX_SHIFT);
 	OUT_RING(dev_priv->counter);
 	OUT_RING(0);
 	OUT_RING(0);
-	OUT_RING(GFX_OP_USER_INTERRUPT);
+	OUT_RING(MI_USER_INTERRUPT);
 	ADVANCE_LP_RING();
 
 	return dev_priv->counter;
 }
 
+void i915_user_irq_get(struct drm_device *dev)
+{
+	drm_i915_private_t *dev_priv = (drm_i915_private_t *) dev->dev_private;
+
+	spin_lock(&dev_priv->user_irq_lock);
+	if (dev->irq_enabled && (++dev_priv->user_irq_refcount == 1))
+		i915_enable_irq(dev_priv, I915_USER_INTERRUPT);
+	spin_unlock(&dev_priv->user_irq_lock);
+}
+
+void i915_user_irq_put(struct drm_device *dev)
+{
+	drm_i915_private_t *dev_priv = (drm_i915_private_t *) dev->dev_private;
+
+	spin_lock(&dev_priv->user_irq_lock);
+	BUG_ON(dev->irq_enabled && dev_priv->user_irq_refcount <= 0);
+	if (dev->irq_enabled && (--dev_priv->user_irq_refcount == 0))
+		i915_disable_irq(dev_priv, I915_USER_INTERRUPT);
+	spin_unlock(&dev_priv->user_irq_lock);
+}
+
 static int i915_wait_irq(struct drm_device * dev, int irq_nr)
 {
 	drm_i915_private_t *dev_priv = (drm_i915_private_t *) dev->dev_private;
@@ -323,55 +507,34 @@
 	DRM_DEBUG("irq_nr=%d breadcrumb=%d\n", irq_nr,
 		  READ_BREADCRUMB(dev_priv));
 
-	if (READ_BREADCRUMB(dev_priv) >= irq_nr)
+	if (READ_BREADCRUMB(dev_priv) >= irq_nr) {
+		if (dev_priv->sarea_priv) {
+			dev_priv->sarea_priv->last_dispatch =
+				READ_BREADCRUMB(dev_priv);
+		}
 		return 0;
+	}
 
-	dev_priv->sarea_priv->perf_boxes |= I915_BOX_WAIT;
+	if (dev_priv->sarea_priv)
+		dev_priv->sarea_priv->perf_boxes |= I915_BOX_WAIT;
 
+	i915_user_irq_get(dev);
 	DRM_WAIT_ON(ret, dev_priv->irq_queue, 3 * DRM_HZ,
 		    READ_BREADCRUMB(dev_priv) >= irq_nr);
+	i915_user_irq_put(dev);
 
 	if (ret == -EBUSY) {
 		DRM_ERROR("EBUSY -- rec: %d emitted: %d\n",
 			  READ_BREADCRUMB(dev_priv), (int)dev_priv->counter);
 	}
 
-	dev_priv->sarea_priv->last_dispatch = READ_BREADCRUMB(dev_priv);
-	return ret;
-}
-
-static int i915_driver_vblank_do_wait(struct drm_device *dev, unsigned int *sequence,
-				      atomic_t *counter)
-{
-	drm_i915_private_t *dev_priv = dev->dev_private;
-	unsigned int cur_vblank;
-	int ret = 0;
-
-	if (!dev_priv) {
-		DRM_ERROR("called with no initialization\n");
-		return -EINVAL;
-	}
-
-	DRM_WAIT_ON(ret, dev->vbl_queue, 3 * DRM_HZ,
-		    (((cur_vblank = atomic_read(counter))
-			- *sequence) <= (1<<23)));
-
-	*sequence = cur_vblank;
+	if (dev_priv->sarea_priv)
+		dev_priv->sarea_priv->last_dispatch =
+			READ_BREADCRUMB(dev_priv);
 
 	return ret;
 }
 
-
-int i915_driver_vblank_wait(struct drm_device *dev, unsigned int *sequence)
-{
-	return i915_driver_vblank_do_wait(dev, sequence, &dev->vbl_received);
-}
-
-int i915_driver_vblank_wait2(struct drm_device *dev, unsigned int *sequence)
-{
-	return i915_driver_vblank_do_wait(dev, sequence, &dev->vbl_received2);
-}
-
 /* Needs the lock as it touches the ring.
  */
 int i915_irq_emit(struct drm_device *dev, void *data,
@@ -381,14 +544,15 @@
 	drm_i915_irq_emit_t *emit = data;
 	int result;
 
-	LOCK_TEST_WITH_RETURN(dev, file_priv);
+	RING_LOCK_TEST_WITH_RETURN(dev, file_priv);
 
 	if (!dev_priv) {
 		DRM_ERROR("called with no initialization\n");
 		return -EINVAL;
 	}
-
+	mutex_lock(&dev->struct_mutex);
 	result = i915_emit_irq(dev);
+	mutex_unlock(&dev->struct_mutex);
 
 	if (DRM_COPY_TO_USER(emit->irq_seq, &result, sizeof(int))) {
 		DRM_ERROR("copy_to_user\n");
@@ -414,18 +578,74 @@
 	return i915_wait_irq(dev, irqwait->irq_seq);
 }
 
-static void i915_enable_interrupt (struct drm_device *dev)
+int i915_enable_vblank(struct drm_device *dev, int plane)
 {
 	drm_i915_private_t *dev_priv = (drm_i915_private_t *) dev->dev_private;
-	u16 flag;
+	int pipe = i915_get_pipe(dev, plane);
+	u32	pipestat_reg = 0;
+	u32	pipestat;
 
-	flag = 0;
-	if (dev_priv->vblank_pipe & DRM_I915_VBLANK_PIPE_A)
-		flag |= VSYNC_PIPEA_FLAG;
-	if (dev_priv->vblank_pipe & DRM_I915_VBLANK_PIPE_B)
-		flag |= VSYNC_PIPEB_FLAG;
+	switch (pipe) {
+	case 0:
+		pipestat_reg = PIPEASTAT;
+		i915_enable_irq(dev_priv, I915_DISPLAY_PIPE_A_EVENT_INTERRUPT);
+		break;
+	case 1:
+		pipestat_reg = PIPEBSTAT;
+		i915_enable_irq(dev_priv, I915_DISPLAY_PIPE_B_EVENT_INTERRUPT);
+		break;
+	default:
+		DRM_ERROR("tried to enable vblank on non-existent pipe %d\n",
+			  pipe);
+		break;
+	}
 
-	I915_WRITE16(I915REG_INT_ENABLE_R, USER_INT_FLAG | flag);
+	if (pipestat_reg) {
+		pipestat = I915_READ(pipestat_reg);
+		if (IS_I965G(dev))
+			pipestat |= PIPE_START_VBLANK_INTERRUPT_ENABLE;
+		else
+			pipestat |= PIPE_VBLANK_INTERRUPT_ENABLE;
+		/* Clear any stale interrupt status */
+		pipestat |= (PIPE_START_VBLANK_INTERRUPT_STATUS |
+			     PIPE_VBLANK_INTERRUPT_STATUS);
+		I915_WRITE(pipestat_reg, pipestat);
+	}
+
+	return 0;
+}
+
+void i915_disable_vblank(struct drm_device *dev, int plane)
+{
+	drm_i915_private_t *dev_priv = (drm_i915_private_t *) dev->dev_private;
+	int pipe = i915_get_pipe(dev, plane);
+	u32	pipestat_reg = 0;
+	u32	pipestat;
+
+	switch (pipe) {
+	case 0:
+		pipestat_reg = PIPEASTAT;
+		i915_disable_irq(dev_priv, I915_DISPLAY_PIPE_A_EVENT_INTERRUPT);
+		break;
+	case 1:
+		pipestat_reg = PIPEBSTAT;
+		i915_disable_irq(dev_priv, I915_DISPLAY_PIPE_B_EVENT_INTERRUPT);
+		break;
+	default:
+		DRM_ERROR("tried to disable vblank on non-existent pipe %d\n",
+			  pipe);
+		break;
+	}
+
+	if (pipestat_reg) {
+		pipestat = I915_READ(pipestat_reg);
+		pipestat &= ~(PIPE_START_VBLANK_INTERRUPT_ENABLE |
+			      PIPE_VBLANK_INTERRUPT_ENABLE);
+		/* Clear any stale interrupt status */
+		pipestat |= (PIPE_START_VBLANK_INTERRUPT_STATUS |
+			     PIPE_VBLANK_INTERRUPT_STATUS);
+		I915_WRITE(pipestat_reg, pipestat);
+	}
 }
 
 /* Set the vblank monitor pipe
@@ -434,22 +654,12 @@
 			 struct drm_file *file_priv)
 {
 	drm_i915_private_t *dev_priv = dev->dev_private;
-	drm_i915_vblank_pipe_t *pipe = data;
 
 	if (!dev_priv) {
 		DRM_ERROR("called with no initialization\n");
 		return -EINVAL;
 	}
 
-	if (pipe->pipe & ~(DRM_I915_VBLANK_PIPE_A|DRM_I915_VBLANK_PIPE_B)) {
-		DRM_ERROR("called with invalid pipe 0x%x\n", pipe->pipe);
-		return -EINVAL;
-	}
-
-	dev_priv->vblank_pipe = pipe->pipe;
-
-	i915_enable_interrupt (dev);
-
 	return 0;
 }
 
@@ -458,19 +668,13 @@
 {
 	drm_i915_private_t *dev_priv = dev->dev_private;
 	drm_i915_vblank_pipe_t *pipe = data;
-	u16 flag;
 
 	if (!dev_priv) {
 		DRM_ERROR("called with no initialization\n");
 		return -EINVAL;
 	}
 
-	flag = I915_READ(I915REG_INT_ENABLE_R);
-	pipe->pipe = 0;
-	if (flag & VSYNC_PIPEA_FLAG)
-		pipe->pipe |= DRM_I915_VBLANK_PIPE_A;
-	if (flag & VSYNC_PIPEB_FLAG)
-		pipe->pipe |= DRM_I915_VBLANK_PIPE_B;
+	pipe->pipe = DRM_I915_VBLANK_PIPE_A | DRM_I915_VBLANK_PIPE_B;
 
 	return 0;
 }
@@ -484,11 +688,12 @@
 	drm_i915_private_t *dev_priv = dev->dev_private;
 	drm_i915_vblank_swap_t *swap = data;
 	drm_i915_vbl_swap_t *vbl_swap;
-	unsigned int pipe, seqtype, curseq;
+	unsigned int pipe, seqtype, curseq, plane;
 	unsigned long irqflags;
 	struct list_head *list;
+	int ret;
 
-	if (!dev_priv) {
+	if (!dev_priv || !dev_priv->sarea_priv) {
 		DRM_ERROR("%s called with no initialization\n", __func__);
 		return -EINVAL;
 	}
@@ -504,7 +709,8 @@
 		return -EINVAL;
 	}
 
-	pipe = (swap->seqtype & _DRM_VBLANK_SECONDARY) ? 1 : 0;
+	plane = (swap->seqtype & _DRM_VBLANK_SECONDARY) ? 1 : 0;
+	pipe = i915_get_pipe(dev, plane);
 
 	seqtype = swap->seqtype & (_DRM_VBLANK_RELATIVE | _DRM_VBLANK_ABSOLUTE);
 
@@ -523,7 +729,14 @@
 
 	spin_unlock_irqrestore(&dev->drw_lock, irqflags);
 
-	curseq = atomic_read(pipe ? &dev->vbl_received2 : &dev->vbl_received);
+	/*
+	 * We take the ref here and put it when the swap actually completes
+	 * in the tasklet.
+	 */
+	ret = drm_vblank_get(dev, pipe);
+	if (ret)
+		return ret;
+	curseq = drm_vblank_count(dev, pipe);
 
 	if (seqtype == _DRM_VBLANK_RELATIVE)
 		swap->sequence += curseq;
@@ -533,6 +746,7 @@
 			swap->sequence = curseq + 1;
 		} else {
 			DRM_DEBUG("Missed target sequence\n");
+			drm_vblank_put(dev, pipe);
 			return -EINVAL;
 		}
 	}
@@ -543,7 +757,7 @@
 		vbl_swap = list_entry(list, drm_i915_vbl_swap_t, head);
 
 		if (vbl_swap->drw_id == swap->drawable &&
-		    vbl_swap->pipe == pipe &&
+		    vbl_swap->plane == plane &&
 		    vbl_swap->sequence == swap->sequence) {
 			spin_unlock_irqrestore(&dev_priv->swaps_lock, irqflags);
 			DRM_DEBUG("Already scheduled\n");
@@ -555,6 +769,7 @@
 
 	if (dev_priv->swaps_pending >= 100) {
 		DRM_DEBUG("Too many swaps queued\n");
+		drm_vblank_put(dev, pipe);
 		return -EBUSY;
 	}
 
@@ -562,13 +777,14 @@
 
 	if (!vbl_swap) {
 		DRM_ERROR("Failed to allocate memory to queue swap\n");
+		drm_vblank_put(dev, pipe);
 		return -ENOMEM;
 	}
 
 	DRM_DEBUG("\n");
 
 	vbl_swap->drw_id = swap->drawable;
-	vbl_swap->pipe = pipe;
+	vbl_swap->plane = plane;
 	vbl_swap->sequence = swap->sequence;
 
 	spin_lock_irqsave(&dev_priv->swaps_lock, irqflags);
@@ -587,37 +803,63 @@
 {
 	drm_i915_private_t *dev_priv = (drm_i915_private_t *) dev->dev_private;
 
-	I915_WRITE16(I915REG_HWSTAM, 0xfffe);
-	I915_WRITE16(I915REG_INT_MASK_R, 0x0);
-	I915_WRITE16(I915REG_INT_ENABLE_R, 0x0);
+	I915_WRITE(HWSTAM, 0xeffe);
+	I915_WRITE(IMR, 0xffffffff);
+	I915_WRITE(IER, 0x0);
 }
 
-void i915_driver_irq_postinstall(struct drm_device * dev)
+int i915_driver_irq_postinstall(struct drm_device *dev)
 {
 	drm_i915_private_t *dev_priv = (drm_i915_private_t *) dev->dev_private;
+	int ret, num_pipes = 2;
 
 	spin_lock_init(&dev_priv->swaps_lock);
 	INIT_LIST_HEAD(&dev_priv->vbl_swaps.head);
 	dev_priv->swaps_pending = 0;
 
-	if (!dev_priv->vblank_pipe)
-		dev_priv->vblank_pipe = DRM_I915_VBLANK_PIPE_A;
-	i915_enable_interrupt(dev);
+	/* Set initial unmasked IRQs to just the selected vblank pipes. */
+	dev_priv->irq_mask_reg = ~0;
+
+	ret = drm_vblank_init(dev, num_pipes);
+	if (ret)
+		return ret;
+
+	dev_priv->vblank_pipe = DRM_I915_VBLANK_PIPE_A | DRM_I915_VBLANK_PIPE_B;
+	dev_priv->irq_mask_reg &= ~I915_DISPLAY_PIPE_A_VBLANK_INTERRUPT;
+	dev_priv->irq_mask_reg &= ~I915_DISPLAY_PIPE_B_VBLANK_INTERRUPT;
+
+	dev->max_vblank_count = 0xffffff; /* only 24 bits of frame count */
+
+	dev_priv->irq_mask_reg &= I915_INTERRUPT_ENABLE_MASK;
+
+	I915_WRITE(IMR, dev_priv->irq_mask_reg);
+	I915_WRITE(IER, I915_INTERRUPT_ENABLE_MASK);
+	(void) I915_READ(IER);
+
+	opregion_enable_asle(dev);
 	DRM_INIT_WAITQUEUE(&dev_priv->irq_queue);
+
+	return 0;
 }
 
 void i915_driver_irq_uninstall(struct drm_device * dev)
 {
 	drm_i915_private_t *dev_priv = (drm_i915_private_t *) dev->dev_private;
-	u16 temp;
+	u32 temp;
 
 	if (!dev_priv)
 		return;
 
-	I915_WRITE16(I915REG_HWSTAM, 0xffff);
-	I915_WRITE16(I915REG_INT_MASK_R, 0xffff);
-	I915_WRITE16(I915REG_INT_ENABLE_R, 0x0);
+	dev_priv->vblank_pipe = 0;
 
-	temp = I915_READ16(I915REG_INT_IDENTITY_R);
-	I915_WRITE16(I915REG_INT_IDENTITY_R, temp);
+	I915_WRITE(HWSTAM, 0xffffffff);
+	I915_WRITE(IMR, 0xffffffff);
+	I915_WRITE(IER, 0x0);
+
+	temp = I915_READ(PIPEASTAT);
+	I915_WRITE(PIPEASTAT, temp);
+	temp = I915_READ(PIPEBSTAT);
+	I915_WRITE(PIPEBSTAT, temp);
+	temp = I915_READ(IIR);
+	I915_WRITE(IIR, temp);
 }
diff --git a/drivers/gpu/drm/i915/i915_opregion.c b/drivers/gpu/drm/i915/i915_opregion.c
new file mode 100644
index 0000000..1787a0c
--- /dev/null
+++ b/drivers/gpu/drm/i915/i915_opregion.c
@@ -0,0 +1,371 @@
+/*
+ * Copyright 2008 Intel Corporation <hong.liu@intel.com>
+ * Copyright 2008 Red Hat <mjg@redhat.com>
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining
+ * a copy of this software and associated documentation files (the
+ * "Software"), to deal in the Software without restriction, including
+ * without limitation the rights to use, copy, modify, merge, publish,
+ * distribute, sub license, and/or sell copies of the Software, and to
+ * permit persons to whom the Software is furnished to do so, subject to
+ * the following conditions:
+ *
+ * The above copyright notice and this permission notice (including the
+ * next paragraph) shall be included in all copies or substantial
+ * portions of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND,
+ * EXPRESS OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND
+ * NON-INFRINGEMENT.  IN NO EVENT SHALL INTEL AND/OR ITS SUPPLIERS BE
+ * LIABLE FOR ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN
+ * ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN
+ * CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER DEALINGS IN THE
+ * SOFTWARE.
+ *
+ */
+
+#include <linux/acpi.h>
+
+#include "drmP.h"
+#include "i915_drm.h"
+#include "i915_drv.h"
+
+#define PCI_ASLE 0xe4
+#define PCI_LBPC 0xf4
+#define PCI_ASLS 0xfc
+
+#define OPREGION_SZ            (8*1024)
+#define OPREGION_HEADER_OFFSET 0
+#define OPREGION_ACPI_OFFSET   0x100
+#define OPREGION_SWSCI_OFFSET  0x200
+#define OPREGION_ASLE_OFFSET   0x300
+#define OPREGION_VBT_OFFSET    0x1000
+
+#define OPREGION_SIGNATURE "IntelGraphicsMem"
+#define MBOX_ACPI      (1<<0)
+#define MBOX_SWSCI     (1<<1)
+#define MBOX_ASLE      (1<<2)
+
+struct opregion_header {
+       u8 signature[16];
+       u32 size;
+       u32 opregion_ver;
+       u8 bios_ver[32];
+       u8 vbios_ver[16];
+       u8 driver_ver[16];
+       u32 mboxes;
+       u8 reserved[164];
+} __attribute__((packed));
+
+/* OpRegion mailbox #1: public ACPI methods */
+struct opregion_acpi {
+       u32 drdy;       /* driver readiness */
+       u32 csts;       /* notification status */
+       u32 cevt;       /* current event */
+       u8 rsvd1[20];
+       u32 didl[8];    /* supported display devices ID list */
+       u32 cpdl[8];    /* currently presented display list */
+       u32 cadl[8];    /* currently active display list */
+       u32 nadl[8];    /* next active devices list */
+       u32 aslp;       /* ASL sleep time-out */
+       u32 tidx;       /* toggle table index */
+       u32 chpd;       /* current hotplug enable indicator */
+       u32 clid;       /* current lid state*/
+       u32 cdck;       /* current docking state */
+       u32 sxsw;       /* Sx state resume */
+       u32 evts;       /* ASL supported events */
+       u32 cnot;       /* current OS notification */
+       u32 nrdy;       /* driver status */
+       u8 rsvd2[60];
+} __attribute__((packed));
+
+/* OpRegion mailbox #2: SWSCI */
+struct opregion_swsci {
+       u32 scic;       /* SWSCI command|status|data */
+       u32 parm;       /* command parameters */
+       u32 dslp;       /* driver sleep time-out */
+       u8 rsvd[244];
+} __attribute__((packed));
+
+/* OpRegion mailbox #3: ASLE */
+struct opregion_asle {
+       u32 ardy;       /* driver readiness */
+       u32 aslc;       /* ASLE interrupt command */
+       u32 tche;       /* technology enabled indicator */
+       u32 alsi;       /* current ALS illuminance reading */
+       u32 bclp;       /* backlight brightness to set */
+       u32 pfit;       /* panel fitting state */
+       u32 cblv;       /* current brightness level */
+       u16 bclm[20];   /* backlight level duty cycle mapping table */
+       u32 cpfm;       /* current panel fitting mode */
+       u32 epfm;       /* enabled panel fitting modes */
+       u8 plut[74];    /* panel LUT and identifier */
+       u32 pfmb;       /* PWM freq and min brightness */
+       u8 rsvd[102];
+} __attribute__((packed));
+
+/* ASLE irq request bits */
+#define ASLE_SET_ALS_ILLUM     (1 << 0)
+#define ASLE_SET_BACKLIGHT     (1 << 1)
+#define ASLE_SET_PFIT          (1 << 2)
+#define ASLE_SET_PWM_FREQ      (1 << 3)
+#define ASLE_REQ_MSK           0xf
+
+/* response bits of ASLE irq request */
+#define ASLE_ALS_ILLUM_FAIL    (2<<10)
+#define ASLE_BACKLIGHT_FAIL    (2<<12)
+#define ASLE_PFIT_FAIL         (2<<14)
+#define ASLE_PWM_FREQ_FAIL     (2<<16)
+
+/* ASLE backlight brightness to set */
+#define ASLE_BCLP_VALID                (1<<31)
+#define ASLE_BCLP_MSK          (~(1<<31))
+
+/* ASLE panel fitting request */
+#define ASLE_PFIT_VALID         (1<<31)
+#define ASLE_PFIT_CENTER (1<<0)
+#define ASLE_PFIT_STRETCH_TEXT (1<<1)
+#define ASLE_PFIT_STRETCH_GFX (1<<2)
+
+/* PWM frequency and minimum brightness */
+#define ASLE_PFMB_BRIGHTNESS_MASK (0xff)
+#define ASLE_PFMB_BRIGHTNESS_VALID (1<<8)
+#define ASLE_PFMB_PWM_MASK (0x7ffffe00)
+#define ASLE_PFMB_PWM_VALID (1<<31)
+
+#define ASLE_CBLV_VALID         (1<<31)
+
+static u32 asle_set_backlight(struct drm_device *dev, u32 bclp)
+{
+	struct drm_i915_private *dev_priv = dev->dev_private;
+	struct opregion_asle *asle = dev_priv->opregion.asle;
+	u32 blc_pwm_ctl, blc_pwm_ctl2;
+
+	if (!(bclp & ASLE_BCLP_VALID))
+		return ASLE_BACKLIGHT_FAIL;
+
+	bclp &= ASLE_BCLP_MSK;
+	if (bclp < 0 || bclp > 255)
+		return ASLE_BACKLIGHT_FAIL;
+
+	blc_pwm_ctl = I915_READ(BLC_PWM_CTL);
+	blc_pwm_ctl &= ~BACKLIGHT_DUTY_CYCLE_MASK;
+	blc_pwm_ctl2 = I915_READ(BLC_PWM_CTL2);
+
+	if (blc_pwm_ctl2 & BLM_COMBINATION_MODE)
+		pci_write_config_dword(dev->pdev, PCI_LBPC, bclp);
+	else
+		I915_WRITE(BLC_PWM_CTL, blc_pwm_ctl | ((bclp * 0x101)-1));
+
+	asle->cblv = (bclp*0x64)/0xff | ASLE_CBLV_VALID;
+
+	return 0;
+}
+
+static u32 asle_set_als_illum(struct drm_device *dev, u32 alsi)
+{
+	/* alsi is the current ALS reading in lux. 0 indicates below sensor
+	   range, 0xffff indicates above sensor range. 1-0xfffe are valid */
+	return 0;
+}
+
+static u32 asle_set_pwm_freq(struct drm_device *dev, u32 pfmb)
+{
+	struct drm_i915_private *dev_priv = dev->dev_private;
+	if (pfmb & ASLE_PFMB_PWM_VALID) {
+		u32 blc_pwm_ctl = I915_READ(BLC_PWM_CTL);
+		u32 pwm = pfmb & ASLE_PFMB_PWM_MASK;
+		blc_pwm_ctl &= BACKLIGHT_DUTY_CYCLE_MASK;
+		pwm = pwm >> 9;
+		/* FIXME - what do we do with the PWM? */
+	}
+	return 0;
+}
+
+static u32 asle_set_pfit(struct drm_device *dev, u32 pfit)
+{
+	/* Panel fitting is currently controlled by the X code, so this is a
+	   noop until modesetting support works fully */
+	if (!(pfit & ASLE_PFIT_VALID))
+		return ASLE_PFIT_FAIL;
+	return 0;
+}
+
+void opregion_asle_intr(struct drm_device *dev)
+{
+	struct drm_i915_private *dev_priv = dev->dev_private;
+	struct opregion_asle *asle = dev_priv->opregion.asle;
+	u32 asle_stat = 0;
+	u32 asle_req;
+
+	if (!asle)
+		return;
+
+	asle_req = asle->aslc & ASLE_REQ_MSK;
+
+	if (!asle_req) {
+		DRM_DEBUG("non asle set request??\n");
+		return;
+	}
+
+	if (asle_req & ASLE_SET_ALS_ILLUM)
+		asle_stat |= asle_set_als_illum(dev, asle->alsi);
+
+	if (asle_req & ASLE_SET_BACKLIGHT)
+		asle_stat |= asle_set_backlight(dev, asle->bclp);
+
+	if (asle_req & ASLE_SET_PFIT)
+		asle_stat |= asle_set_pfit(dev, asle->pfit);
+
+	if (asle_req & ASLE_SET_PWM_FREQ)
+		asle_stat |= asle_set_pwm_freq(dev, asle->pfmb);
+
+	asle->aslc = asle_stat;
+}
+
+#define ASLE_ALS_EN    (1<<0)
+#define ASLE_BLC_EN    (1<<1)
+#define ASLE_PFIT_EN   (1<<2)
+#define ASLE_PFMB_EN   (1<<3)
+
+void opregion_enable_asle(struct drm_device *dev)
+{
+	struct drm_i915_private *dev_priv = dev->dev_private;
+	struct opregion_asle *asle = dev_priv->opregion.asle;
+
+	if (asle) {
+		u32 pipeb_stats = I915_READ(PIPEBSTAT);
+		if (IS_MOBILE(dev)) {
+			/* Many devices trigger events with a write to the
+			   legacy backlight controller, so we need to ensure
+			   that it's able to generate interrupts */
+			I915_WRITE(PIPEBSTAT, pipeb_stats |=
+				   I915_LEGACY_BLC_EVENT_ENABLE);
+			i915_enable_irq(dev_priv, I915_ASLE_INTERRUPT |
+					I915_DISPLAY_PIPE_B_EVENT_INTERRUPT);
+		} else
+			i915_enable_irq(dev_priv, I915_ASLE_INTERRUPT);
+
+		asle->tche = ASLE_ALS_EN | ASLE_BLC_EN | ASLE_PFIT_EN |
+			ASLE_PFMB_EN;
+		asle->ardy = 1;
+	}
+}
+
+#define ACPI_EV_DISPLAY_SWITCH (1<<0)
+#define ACPI_EV_LID            (1<<1)
+#define ACPI_EV_DOCK           (1<<2)
+
+static struct intel_opregion *system_opregion;
+
+int intel_opregion_video_event(struct notifier_block *nb, unsigned long val,
+			       void *data)
+{
+	/* The only video events relevant to opregion are 0x80. These indicate
+	   either a docking event, lid switch or display switch request. In
+	   Linux, these are handled by the dock, button and video drivers.
+	   We might want to fix the video driver to be opregion-aware in
+	   future, but right now we just indicate to the firmware that the
+	   request has been handled */
+
+	struct opregion_acpi *acpi;
+
+	if (!system_opregion)
+		return NOTIFY_DONE;
+
+	acpi = system_opregion->acpi;
+	acpi->csts = 0;
+
+	return NOTIFY_OK;
+}
+
+static struct notifier_block intel_opregion_notifier = {
+	.notifier_call = intel_opregion_video_event,
+};
+
+int intel_opregion_init(struct drm_device *dev)
+{
+	struct drm_i915_private *dev_priv = dev->dev_private;
+	struct intel_opregion *opregion = &dev_priv->opregion;
+	void *base;
+	u32 asls, mboxes;
+	int err = 0;
+
+	pci_read_config_dword(dev->pdev, PCI_ASLS, &asls);
+	DRM_DEBUG("graphic opregion physical addr: 0x%x\n", asls);
+	if (asls == 0) {
+		DRM_DEBUG("ACPI OpRegion not supported!\n");
+		return -ENOTSUPP;
+	}
+
+	base = ioremap(asls, OPREGION_SZ);
+	if (!base)
+		return -ENOMEM;
+
+	opregion->header = base;
+	if (memcmp(opregion->header->signature, OPREGION_SIGNATURE, 16)) {
+		DRM_DEBUG("opregion signature mismatch\n");
+		err = -EINVAL;
+		goto err_out;
+	}
+
+	mboxes = opregion->header->mboxes;
+	if (mboxes & MBOX_ACPI) {
+		DRM_DEBUG("Public ACPI methods supported\n");
+		opregion->acpi = base + OPREGION_ACPI_OFFSET;
+	} else {
+		DRM_DEBUG("Public ACPI methods not supported\n");
+		err = -ENOTSUPP;
+		goto err_out;
+	}
+	opregion->enabled = 1;
+
+	if (mboxes & MBOX_SWSCI) {
+		DRM_DEBUG("SWSCI supported\n");
+		opregion->swsci = base + OPREGION_SWSCI_OFFSET;
+	}
+	if (mboxes & MBOX_ASLE) {
+		DRM_DEBUG("ASLE supported\n");
+		opregion->asle = base + OPREGION_ASLE_OFFSET;
+	}
+
+	/* Notify BIOS we are ready to handle ACPI video ext notifs.
+	 * Right now, all the events are handled by the ACPI video module.
+	 * We don't actually need to do anything with them. */
+	opregion->acpi->csts = 0;
+	opregion->acpi->drdy = 1;
+
+	system_opregion = opregion;
+	register_acpi_notifier(&intel_opregion_notifier);
+
+	return 0;
+
+err_out:
+	iounmap(opregion->header);
+	opregion->header = NULL;
+	return err;
+}
+
+void intel_opregion_free(struct drm_device *dev)
+{
+	struct drm_i915_private *dev_priv = dev->dev_private;
+	struct intel_opregion *opregion = &dev_priv->opregion;
+
+	if (!opregion->enabled)
+		return;
+
+	opregion->acpi->drdy = 0;
+
+	system_opregion = NULL;
+	unregister_acpi_notifier(&intel_opregion_notifier);
+
+	/* just clear all opregion memory pointers now */
+	iounmap(opregion->header);
+	opregion->header = NULL;
+	opregion->acpi = NULL;
+	opregion->swsci = NULL;
+	opregion->asle = NULL;
+
+	opregion->enabled = 0;
+}
diff --git a/drivers/gpu/drm/i915/i915_reg.h b/drivers/gpu/drm/i915/i915_reg.h
new file mode 100644
index 0000000..5c2d9f2
--- /dev/null
+++ b/drivers/gpu/drm/i915/i915_reg.h
@@ -0,0 +1,1417 @@
+/* Copyright 2003 Tungsten Graphics, Inc., Cedar Park, Texas.
+ * All Rights Reserved.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the
+ * "Software"), to deal in the Software without restriction, including
+ * without limitation the rights to use, copy, modify, merge, publish,
+ * distribute, sub license, and/or sell copies of the Software, and to
+ * permit persons to whom the Software is furnished to do so, subject to
+ * the following conditions:
+ *
+ * The above copyright notice and this permission notice (including the
+ * next paragraph) shall be included in all copies or substantial portions
+ * of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
+ * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT.
+ * IN NO EVENT SHALL TUNGSTEN GRAPHICS AND/OR ITS SUPPLIERS BE LIABLE FOR
+ * ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
+ * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
+ * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
+ */
+
+#ifndef _I915_REG_H_
+#define _I915_REG_H_
+
+/*
+ * The Bridge device's PCI config space has information about the
+ * fb aperture size and the amount of pre-reserved memory.
+ */
+#define INTEL_GMCH_CTRL		0x52
+#define INTEL_GMCH_ENABLED	0x4
+#define INTEL_GMCH_MEM_MASK	0x1
+#define INTEL_GMCH_MEM_64M	0x1
+#define INTEL_GMCH_MEM_128M	0
+
+#define INTEL_855_GMCH_GMS_MASK		(0x7 << 4)
+#define INTEL_855_GMCH_GMS_DISABLED	(0x0 << 4)
+#define INTEL_855_GMCH_GMS_STOLEN_1M	(0x1 << 4)
+#define INTEL_855_GMCH_GMS_STOLEN_4M	(0x2 << 4)
+#define INTEL_855_GMCH_GMS_STOLEN_8M	(0x3 << 4)
+#define INTEL_855_GMCH_GMS_STOLEN_16M	(0x4 << 4)
+#define INTEL_855_GMCH_GMS_STOLEN_32M	(0x5 << 4)
+
+#define INTEL_915G_GMCH_GMS_STOLEN_48M	(0x6 << 4)
+#define INTEL_915G_GMCH_GMS_STOLEN_64M	(0x7 << 4)
+
+/* PCI config space */
+
+#define HPLLCC	0xc0 /* 855 only */
+#define   GC_CLOCK_CONTROL_MASK		(3 << 0)
+#define   GC_CLOCK_133_200		(0 << 0)
+#define   GC_CLOCK_100_200		(1 << 0)
+#define   GC_CLOCK_100_133		(2 << 0)
+#define   GC_CLOCK_166_250		(3 << 0)
+#define GCFGC	0xf0 /* 915+ only */
+#define   GC_LOW_FREQUENCY_ENABLE	(1 << 7)
+#define   GC_DISPLAY_CLOCK_190_200_MHZ	(0 << 4)
+#define   GC_DISPLAY_CLOCK_333_MHZ	(4 << 4)
+#define   GC_DISPLAY_CLOCK_MASK		(7 << 4)
+#define LBB	0xf4
+
+/* VGA stuff */
+
+#define VGA_ST01_MDA 0x3ba
+#define VGA_ST01_CGA 0x3da
+
+#define VGA_MSR_WRITE 0x3c2
+#define VGA_MSR_READ 0x3cc
+#define   VGA_MSR_MEM_EN (1<<1)
+#define   VGA_MSR_CGA_MODE (1<<0)
+
+#define VGA_SR_INDEX 0x3c4
+#define VGA_SR_DATA 0x3c5
+
+#define VGA_AR_INDEX 0x3c0
+#define   VGA_AR_VID_EN (1<<5)
+#define VGA_AR_DATA_WRITE 0x3c0
+#define VGA_AR_DATA_READ 0x3c1
+
+#define VGA_GR_INDEX 0x3ce
+#define VGA_GR_DATA 0x3cf
+/* GR05 */
+#define   VGA_GR_MEM_READ_MODE_SHIFT 3
+#define     VGA_GR_MEM_READ_MODE_PLANE 1
+/* GR06 */
+#define   VGA_GR_MEM_MODE_MASK 0xc
+#define   VGA_GR_MEM_MODE_SHIFT 2
+#define   VGA_GR_MEM_A0000_AFFFF 0
+#define   VGA_GR_MEM_A0000_BFFFF 1
+#define   VGA_GR_MEM_B0000_B7FFF 2
+#define   VGA_GR_MEM_B0000_BFFFF 3
+
+#define VGA_DACMASK 0x3c6
+#define VGA_DACRX 0x3c7
+#define VGA_DACWX 0x3c8
+#define VGA_DACDATA 0x3c9
+
+#define VGA_CR_INDEX_MDA 0x3b4
+#define VGA_CR_DATA_MDA 0x3b5
+#define VGA_CR_INDEX_CGA 0x3d4
+#define VGA_CR_DATA_CGA 0x3d5
+
+/*
+ * Memory interface instructions used by the kernel
+ */
+#define MI_INSTR(opcode, flags) (((opcode) << 23) | (flags))
+
+#define MI_NOOP			MI_INSTR(0, 0)
+#define MI_USER_INTERRUPT	MI_INSTR(0x02, 0)
+#define MI_WAIT_FOR_EVENT       MI_INSTR(0x03, 0)
+#define   MI_WAIT_FOR_PLANE_B_FLIP      (1<<6)
+#define   MI_WAIT_FOR_PLANE_A_FLIP      (1<<2)
+#define   MI_WAIT_FOR_PLANE_A_SCANLINES (1<<1)
+#define MI_FLUSH		MI_INSTR(0x04, 0)
+#define   MI_READ_FLUSH		(1 << 0)
+#define   MI_EXE_FLUSH		(1 << 1)
+#define   MI_NO_WRITE_FLUSH	(1 << 2)
+#define   MI_SCENE_COUNT	(1 << 3) /* just increment scene count */
+#define   MI_END_SCENE		(1 << 4) /* flush binner and incr scene count */
+#define MI_BATCH_BUFFER_END	MI_INSTR(0x0a, 0)
+#define MI_REPORT_HEAD		MI_INSTR(0x07, 0)
+#define MI_LOAD_SCAN_LINES_INCL MI_INSTR(0x12, 0)
+#define MI_STORE_DWORD_IMM	MI_INSTR(0x20, 1)
+#define   MI_MEM_VIRTUAL	(1 << 22) /* 965+ only */
+#define MI_STORE_DWORD_INDEX	MI_INSTR(0x21, 1)
+#define   MI_STORE_DWORD_INDEX_SHIFT 2
+#define MI_LOAD_REGISTER_IMM	MI_INSTR(0x22, 1)
+#define MI_BATCH_BUFFER		MI_INSTR(0x30, 1)
+#define   MI_BATCH_NON_SECURE	(1)
+#define   MI_BATCH_NON_SECURE_I965 (1<<8)
+#define MI_BATCH_BUFFER_START	MI_INSTR(0x31, 0)
+
+/*
+ * 3D instructions used by the kernel
+ */
+#define GFX_INSTR(opcode, flags) ((0x3 << 29) | ((opcode) << 24) | (flags))
+
+#define GFX_OP_RASTER_RULES    ((0x3<<29)|(0x7<<24))
+#define GFX_OP_SCISSOR         ((0x3<<29)|(0x1c<<24)|(0x10<<19))
+#define   SC_UPDATE_SCISSOR       (0x1<<1)
+#define   SC_ENABLE_MASK          (0x1<<0)
+#define   SC_ENABLE               (0x1<<0)
+#define GFX_OP_LOAD_INDIRECT   ((0x3<<29)|(0x1d<<24)|(0x7<<16))
+#define GFX_OP_SCISSOR_INFO    ((0x3<<29)|(0x1d<<24)|(0x81<<16)|(0x1))
+#define   SCI_YMIN_MASK      (0xffff<<16)
+#define   SCI_XMIN_MASK      (0xffff<<0)
+#define   SCI_YMAX_MASK      (0xffff<<16)
+#define   SCI_XMAX_MASK      (0xffff<<0)
+#define GFX_OP_SCISSOR_ENABLE	 ((0x3<<29)|(0x1c<<24)|(0x10<<19))
+#define GFX_OP_SCISSOR_RECT	 ((0x3<<29)|(0x1d<<24)|(0x81<<16)|1)
+#define GFX_OP_COLOR_FACTOR      ((0x3<<29)|(0x1d<<24)|(0x1<<16)|0x0)
+#define GFX_OP_STIPPLE           ((0x3<<29)|(0x1d<<24)|(0x83<<16))
+#define GFX_OP_MAP_INFO          ((0x3<<29)|(0x1d<<24)|0x4)
+#define GFX_OP_DESTBUFFER_VARS   ((0x3<<29)|(0x1d<<24)|(0x85<<16)|0x0)
+#define GFX_OP_DESTBUFFER_INFO	 ((0x3<<29)|(0x1d<<24)|(0x8e<<16)|1)
+#define GFX_OP_DRAWRECT_INFO     ((0x3<<29)|(0x1d<<24)|(0x80<<16)|(0x3))
+#define GFX_OP_DRAWRECT_INFO_I965  ((0x7900<<16)|0x2)
+#define SRC_COPY_BLT_CMD                ((2<<29)|(0x43<<22)|4)
+#define XY_SRC_COPY_BLT_CMD		((2<<29)|(0x53<<22)|6)
+#define XY_MONO_SRC_COPY_IMM_BLT	((2<<29)|(0x71<<22)|5)
+#define XY_SRC_COPY_BLT_WRITE_ALPHA	(1<<21)
+#define XY_SRC_COPY_BLT_WRITE_RGB	(1<<20)
+#define   BLT_DEPTH_8			(0<<24)
+#define   BLT_DEPTH_16_565		(1<<24)
+#define   BLT_DEPTH_16_1555		(2<<24)
+#define   BLT_DEPTH_32			(3<<24)
+#define   BLT_ROP_GXCOPY		(0xcc<<16)
+#define XY_SRC_COPY_BLT_SRC_TILED	(1<<15) /* 965+ only */
+#define XY_SRC_COPY_BLT_DST_TILED	(1<<11) /* 965+ only */
+#define CMD_OP_DISPLAYBUFFER_INFO ((0x0<<29)|(0x14<<23)|2)
+#define   ASYNC_FLIP                (1<<22)
+#define   DISPLAY_PLANE_A           (0<<20)
+#define   DISPLAY_PLANE_B           (1<<20)
+
+/*
+ * Instruction and interrupt control regs
+ */
+
+#define PRB0_TAIL	0x02030
+#define PRB0_HEAD	0x02034
+#define PRB0_START	0x02038
+#define PRB0_CTL	0x0203c
+#define   TAIL_ADDR		0x001FFFF8
+#define   HEAD_WRAP_COUNT	0xFFE00000
+#define   HEAD_WRAP_ONE		0x00200000
+#define   HEAD_ADDR		0x001FFFFC
+#define   RING_NR_PAGES		0x001FF000
+#define   RING_REPORT_MASK	0x00000006
+#define   RING_REPORT_64K	0x00000002
+#define   RING_REPORT_128K	0x00000004
+#define   RING_NO_REPORT	0x00000000
+#define   RING_VALID_MASK	0x00000001
+#define   RING_VALID		0x00000001
+#define   RING_INVALID		0x00000000
+#define PRB1_TAIL	0x02040 /* 915+ only */
+#define PRB1_HEAD	0x02044 /* 915+ only */
+#define PRB1_START	0x02048 /* 915+ only */
+#define PRB1_CTL	0x0204c /* 915+ only */
+#define ACTHD_I965	0x02074
+#define HWS_PGA		0x02080
+#define HWS_ADDRESS_MASK	0xfffff000
+#define HWS_START_ADDRESS_SHIFT	4
+#define IPEIR		0x02088
+#define NOPID		0x02094
+#define HWSTAM		0x02098
+#define SCPD0		0x0209c /* 915+ only */
+#define IER		0x020a0
+#define IIR		0x020a4
+#define IMR		0x020a8
+#define ISR		0x020ac
+#define   I915_PIPE_CONTROL_NOTIFY_INTERRUPT		(1<<18)
+#define   I915_DISPLAY_PORT_INTERRUPT			(1<<17)
+#define   I915_RENDER_COMMAND_PARSER_ERROR_INTERRUPT	(1<<15)
+#define   I915_GMCH_THERMAL_SENSOR_EVENT_INTERRUPT	(1<<14)
+#define   I915_HWB_OOM_INTERRUPT			(1<<13)
+#define   I915_SYNC_STATUS_INTERRUPT			(1<<12)
+#define   I915_DISPLAY_PLANE_A_FLIP_PENDING_INTERRUPT	(1<<11)
+#define   I915_DISPLAY_PLANE_B_FLIP_PENDING_INTERRUPT	(1<<10)
+#define   I915_OVERLAY_PLANE_FLIP_PENDING_INTERRUPT	(1<<9)
+#define   I915_DISPLAY_PLANE_C_FLIP_PENDING_INTERRUPT	(1<<8)
+#define   I915_DISPLAY_PIPE_A_VBLANK_INTERRUPT		(1<<7)
+#define   I915_DISPLAY_PIPE_A_EVENT_INTERRUPT		(1<<6)
+#define   I915_DISPLAY_PIPE_B_VBLANK_INTERRUPT		(1<<5)
+#define   I915_DISPLAY_PIPE_B_EVENT_INTERRUPT		(1<<4)
+#define   I915_DEBUG_INTERRUPT				(1<<2)
+#define   I915_USER_INTERRUPT				(1<<1)
+#define   I915_ASLE_INTERRUPT				(1<<0)
+#define EIR		0x020b0
+#define EMR		0x020b4
+#define ESR		0x020b8
+#define INSTPM	        0x020c0
+#define ACTHD	        0x020c8
+#define FW_BLC		0x020d8
+#define FW_BLC_SELF	0x020e0 /* 915+ only */
+#define MI_ARB_STATE	0x020e4 /* 915+ only */
+#define CACHE_MODE_0	0x02120 /* 915+ only */
+#define   CM0_MASK_SHIFT          16
+#define   CM0_IZ_OPT_DISABLE      (1<<6)
+#define   CM0_ZR_OPT_DISABLE      (1<<5)
+#define   CM0_DEPTH_EVICT_DISABLE (1<<4)
+#define   CM0_COLOR_EVICT_DISABLE (1<<3)
+#define   CM0_DEPTH_WRITE_DISABLE (1<<1)
+#define   CM0_RC_OP_FLUSH_DISABLE (1<<0)
+#define GFX_FLSH_CNTL	0x02170 /* 915+ only */
+
+/*
+ * Framebuffer compression (915+ only)
+ */
+
+#define FBC_CFB_BASE		0x03200 /* 4k page aligned */
+#define FBC_LL_BASE		0x03204 /* 4k page aligned */
+#define FBC_CONTROL		0x03208
+#define   FBC_CTL_EN		(1<<31)
+#define   FBC_CTL_PERIODIC	(1<<30)
+#define   FBC_CTL_INTERVAL_SHIFT (16)
+#define   FBC_CTL_UNCOMPRESSIBLE (1<<14)
+#define   FBC_CTL_STRIDE_SHIFT	(5)
+#define   FBC_CTL_FENCENO	(1<<0)
+#define FBC_COMMAND		0x0320c
+#define   FBC_CMD_COMPRESS	(1<<0)
+#define FBC_STATUS		0x03210
+#define   FBC_STAT_COMPRESSING	(1<<31)
+#define   FBC_STAT_COMPRESSED	(1<<30)
+#define   FBC_STAT_MODIFIED	(1<<29)
+#define   FBC_STAT_CURRENT_LINE	(1<<0)
+#define FBC_CONTROL2		0x03214
+#define   FBC_CTL_FENCE_DBL	(0<<4)
+#define   FBC_CTL_IDLE_IMM	(0<<2)
+#define   FBC_CTL_IDLE_FULL	(1<<2)
+#define   FBC_CTL_IDLE_LINE	(2<<2)
+#define   FBC_CTL_IDLE_DEBUG	(3<<2)
+#define   FBC_CTL_CPU_FENCE	(1<<1)
+#define   FBC_CTL_PLANEA	(0<<0)
+#define   FBC_CTL_PLANEB	(1<<0)
+#define FBC_FENCE_OFF		0x0321b
+
+#define FBC_LL_SIZE		(1536)
+
+/*
+ * GPIO regs
+ */
+#define GPIOA			0x5010
+#define GPIOB			0x5014
+#define GPIOC			0x5018
+#define GPIOD			0x501c
+#define GPIOE			0x5020
+#define GPIOF			0x5024
+#define GPIOG			0x5028
+#define GPIOH			0x502c
+# define GPIO_CLOCK_DIR_MASK		(1 << 0)
+# define GPIO_CLOCK_DIR_IN		(0 << 1)
+# define GPIO_CLOCK_DIR_OUT		(1 << 1)
+# define GPIO_CLOCK_VAL_MASK		(1 << 2)
+# define GPIO_CLOCK_VAL_OUT		(1 << 3)
+# define GPIO_CLOCK_VAL_IN		(1 << 4)
+# define GPIO_CLOCK_PULLUP_DISABLE	(1 << 5)
+# define GPIO_DATA_DIR_MASK		(1 << 8)
+# define GPIO_DATA_DIR_IN		(0 << 9)
+# define GPIO_DATA_DIR_OUT		(1 << 9)
+# define GPIO_DATA_VAL_MASK		(1 << 10)
+# define GPIO_DATA_VAL_OUT		(1 << 11)
+# define GPIO_DATA_VAL_IN		(1 << 12)
+# define GPIO_DATA_PULLUP_DISABLE	(1 << 13)
+
+/*
+ * Clock control & power management
+ */
+
+#define VGA0	0x6000
+#define VGA1	0x6004
+#define VGA_PD	0x6010
+#define   VGA0_PD_P2_DIV_4	(1 << 7)
+#define   VGA0_PD_P1_DIV_2	(1 << 5)
+#define   VGA0_PD_P1_SHIFT	0
+#define   VGA0_PD_P1_MASK	(0x1f << 0)
+#define   VGA1_PD_P2_DIV_4	(1 << 15)
+#define   VGA1_PD_P1_DIV_2	(1 << 13)
+#define   VGA1_PD_P1_SHIFT	8
+#define   VGA1_PD_P1_MASK	(0x1f << 8)
+#define DPLL_A	0x06014
+#define DPLL_B	0x06018
+#define   DPLL_VCO_ENABLE		(1 << 31)
+#define   DPLL_DVO_HIGH_SPEED		(1 << 30)
+#define   DPLL_SYNCLOCK_ENABLE		(1 << 29)
+#define   DPLL_VGA_MODE_DIS		(1 << 28)
+#define   DPLLB_MODE_DAC_SERIAL		(1 << 26) /* i915 */
+#define   DPLLB_MODE_LVDS		(2 << 26) /* i915 */
+#define   DPLL_MODE_MASK		(3 << 26)
+#define   DPLL_DAC_SERIAL_P2_CLOCK_DIV_10 (0 << 24) /* i915 */
+#define   DPLL_DAC_SERIAL_P2_CLOCK_DIV_5 (1 << 24) /* i915 */
+#define   DPLLB_LVDS_P2_CLOCK_DIV_14	(0 << 24) /* i915 */
+#define   DPLLB_LVDS_P2_CLOCK_DIV_7	(1 << 24) /* i915 */
+#define   DPLL_P2_CLOCK_DIV_MASK	0x03000000 /* i915 */
+#define   DPLL_FPA01_P1_POST_DIV_MASK	0x00ff0000 /* i915 */
+
+#define I915_FIFO_UNDERRUN_STATUS		(1UL<<31)
+#define I915_CRC_ERROR_ENABLE			(1UL<<29)
+#define I915_CRC_DONE_ENABLE			(1UL<<28)
+#define I915_GMBUS_EVENT_ENABLE			(1UL<<27)
+#define I915_VSYNC_INTERRUPT_ENABLE		(1UL<<25)
+#define I915_DISPLAY_LINE_COMPARE_ENABLE	(1UL<<24)
+#define I915_DPST_EVENT_ENABLE			(1UL<<23)
+#define I915_LEGACY_BLC_EVENT_ENABLE		(1UL<<22)
+#define I915_ODD_FIELD_INTERRUPT_ENABLE		(1UL<<21)
+#define I915_EVEN_FIELD_INTERRUPT_ENABLE	(1UL<<20)
+#define I915_START_VBLANK_INTERRUPT_ENABLE	(1UL<<18)	/* 965 or later */
+#define I915_VBLANK_INTERRUPT_ENABLE		(1UL<<17)
+#define I915_OVERLAY_UPDATED_ENABLE		(1UL<<16)
+#define I915_CRC_ERROR_INTERRUPT_STATUS		(1UL<<13)
+#define I915_CRC_DONE_INTERRUPT_STATUS		(1UL<<12)
+#define I915_GMBUS_INTERRUPT_STATUS		(1UL<<11)
+#define I915_VSYNC_INTERRUPT_STATUS		(1UL<<9)
+#define I915_DISPLAY_LINE_COMPARE_STATUS	(1UL<<8)
+#define I915_DPST_EVENT_STATUS			(1UL<<7)
+#define I915_LEGACY_BLC_EVENT_STATUS		(1UL<<6)
+#define I915_ODD_FIELD_INTERRUPT_STATUS		(1UL<<5)
+#define I915_EVEN_FIELD_INTERRUPT_STATUS	(1UL<<4)
+#define I915_START_VBLANK_INTERRUPT_STATUS	(1UL<<2)	/* 965 or later */
+#define I915_VBLANK_INTERRUPT_STATUS		(1UL<<1)
+#define I915_OVERLAY_UPDATED_STATUS		(1UL<<0)
+
+#define SRX_INDEX		0x3c4
+#define SRX_DATA		0x3c5
+#define SR01			1
+#define SR01_SCREEN_OFF		(1<<5)
+
+#define PPCR			0x61204
+#define PPCR_ON			(1<<0)
+
+#define DVOB			0x61140
+#define DVOB_ON			(1<<31)
+#define DVOC			0x61160
+#define DVOC_ON			(1<<31)
+#define LVDS			0x61180
+#define LVDS_ON			(1<<31)
+
+#define ADPA			0x61100
+#define ADPA_DPMS_MASK		(~(3<<10))
+#define ADPA_DPMS_ON		(0<<10)
+#define ADPA_DPMS_SUSPEND	(1<<10)
+#define ADPA_DPMS_STANDBY	(2<<10)
+#define ADPA_DPMS_OFF		(3<<10)
+
+#define RING_TAIL		0x00
+#define TAIL_ADDR		0x001FFFF8
+#define RING_HEAD		0x04
+#define HEAD_WRAP_COUNT		0xFFE00000
+#define HEAD_WRAP_ONE		0x00200000
+#define HEAD_ADDR		0x001FFFFC
+#define RING_START		0x08
+#define START_ADDR		0xFFFFF000
+#define RING_LEN		0x0C
+#define RING_NR_PAGES		0x001FF000
+#define RING_REPORT_MASK	0x00000006
+#define RING_REPORT_64K		0x00000002
+#define RING_REPORT_128K	0x00000004
+#define RING_NO_REPORT		0x00000000
+#define RING_VALID_MASK		0x00000001
+#define RING_VALID		0x00000001
+#define RING_INVALID		0x00000000
+
+/* Scratch pad debug 0 reg:
+ */
+#define   DPLL_FPA01_P1_POST_DIV_MASK_I830	0x001f0000
+/*
+ * The i830 generation, in LVDS mode, defines P1 as the bit number set within
+ * this field (only one bit may be set).
+ */
+#define   DPLL_FPA01_P1_POST_DIV_MASK_I830_LVDS	0x003f0000
+#define   DPLL_FPA01_P1_POST_DIV_SHIFT	16
+/* i830, required in DVO non-gang */
+#define   PLL_P2_DIVIDE_BY_4		(1 << 23)
+#define   PLL_P1_DIVIDE_BY_TWO		(1 << 21) /* i830 */
+#define   PLL_REF_INPUT_DREFCLK		(0 << 13)
+#define   PLL_REF_INPUT_TVCLKINA	(1 << 13) /* i830 */
+#define   PLL_REF_INPUT_TVCLKINBC	(2 << 13) /* SDVO TVCLKIN */
+#define   PLLB_REF_INPUT_SPREADSPECTRUMIN (3 << 13)
+#define   PLL_REF_INPUT_MASK		(3 << 13)
+#define   PLL_LOAD_PULSE_PHASE_SHIFT		9
+/*
+ * Parallel to Serial Load Pulse phase selection.
+ * Selects the phase for the 10X DPLL clock for the PCIe
+ * digital display port. The range is 4 to 13; 10 or more
+ * is just a flip delay. The default is 6
+ */
+#define   PLL_LOAD_PULSE_PHASE_MASK		(0xf << PLL_LOAD_PULSE_PHASE_SHIFT)
+#define   DISPLAY_RATE_SELECT_FPA1		(1 << 8)
+/*
+ * SDVO multiplier for 945G/GM. Not used on 965.
+ */
+#define   SDVO_MULTIPLIER_MASK			0x000000ff
+#define   SDVO_MULTIPLIER_SHIFT_HIRES		4
+#define   SDVO_MULTIPLIER_SHIFT_VGA		0
+#define DPLL_A_MD 0x0601c /* 965+ only */
+/*
+ * UDI pixel divider, controlling how many pixels are stuffed into a packet.
+ *
+ * Value is pixels minus 1.  Must be set to 1 pixel for SDVO.
+ */
+#define   DPLL_MD_UDI_DIVIDER_MASK		0x3f000000
+#define   DPLL_MD_UDI_DIVIDER_SHIFT		24
+/* UDI pixel divider for VGA, same as DPLL_MD_UDI_DIVIDER_MASK. */
+#define   DPLL_MD_VGA_UDI_DIVIDER_MASK		0x003f0000
+#define   DPLL_MD_VGA_UDI_DIVIDER_SHIFT		16
+/*
+ * SDVO/UDI pixel multiplier.
+ *
+ * SDVO requires that the bus clock rate be between 1 and 2 Ghz, and the bus
+ * clock rate is 10 times the DPLL clock.  At low resolution/refresh rate
+ * modes, the bus rate would be below the limits, so SDVO allows for stuffing
+ * dummy bytes in the datastream at an increased clock rate, with both sides of
+ * the link knowing how many bytes are fill.
+ *
+ * So, for a mode with a dotclock of 65Mhz, we would want to double the clock
+ * rate to 130Mhz to get a bus rate of 1.30Ghz.  The DPLL clock rate would be
+ * set to 130Mhz, and the SDVO multiplier set to 2x in this register and
+ * through an SDVO command.
+ *
+ * This register field has values of multiplication factor minus 1, with
+ * a maximum multiplier of 5 for SDVO.
+ */
+#define   DPLL_MD_UDI_MULTIPLIER_MASK		0x00003f00
+#define   DPLL_MD_UDI_MULTIPLIER_SHIFT		8
+/*
+ * SDVO/UDI pixel multiplier for VGA, same as DPLL_MD_UDI_MULTIPLIER_MASK.
+ * This best be set to the default value (3) or the CRT won't work. No,
+ * I don't entirely understand what this does...
+ */
+#define   DPLL_MD_VGA_UDI_MULTIPLIER_MASK	0x0000003f
+#define   DPLL_MD_VGA_UDI_MULTIPLIER_SHIFT	0
+#define DPLL_B_MD 0x06020 /* 965+ only */
+#define FPA0	0x06040
+#define FPA1	0x06044
+#define FPB0	0x06048
+#define FPB1	0x0604c
+#define   FP_N_DIV_MASK		0x003f0000
+#define   FP_N_DIV_SHIFT		16
+#define   FP_M1_DIV_MASK	0x00003f00
+#define   FP_M1_DIV_SHIFT		 8
+#define   FP_M2_DIV_MASK	0x0000003f
+#define   FP_M2_DIV_SHIFT		 0
+#define DPLL_TEST	0x606c
+#define   DPLLB_TEST_SDVO_DIV_1		(0 << 22)
+#define   DPLLB_TEST_SDVO_DIV_2		(1 << 22)
+#define   DPLLB_TEST_SDVO_DIV_4		(2 << 22)
+#define   DPLLB_TEST_SDVO_DIV_MASK	(3 << 22)
+#define   DPLLB_TEST_N_BYPASS		(1 << 19)
+#define   DPLLB_TEST_M_BYPASS		(1 << 18)
+#define   DPLLB_INPUT_BUFFER_ENABLE	(1 << 16)
+#define   DPLLA_TEST_N_BYPASS		(1 << 3)
+#define   DPLLA_TEST_M_BYPASS		(1 << 2)
+#define   DPLLA_INPUT_BUFFER_ENABLE	(1 << 0)
+#define D_STATE		0x6104
+#define CG_2D_DIS	0x6200
+#define CG_3D_DIS	0x6204
+
+/*
+ * Palette regs
+ */
+
+#define PALETTE_A		0x0a000
+#define PALETTE_B		0x0a800
+
+/* MCH MMIO space */
+
+/*
+ * MCHBAR mirror.
+ *
+ * This mirrors the MCHBAR MMIO space whose location is determined by
+ * device 0 function 0's pci config register 0x44 or 0x48 and matches it in
+ * every way.  It is not accessible from the CP register read instructions.
+ *
+ */
+#define MCHBAR_MIRROR_BASE	0x10000
+
+/** 915-945 and GM965 MCH register controlling DRAM channel access */
+#define DCC			0x10200
+#define DCC_ADDRESSING_MODE_SINGLE_CHANNEL		(0 << 0)
+#define DCC_ADDRESSING_MODE_DUAL_CHANNEL_ASYMMETRIC	(1 << 0)
+#define DCC_ADDRESSING_MODE_DUAL_CHANNEL_INTERLEAVED	(2 << 0)
+#define DCC_ADDRESSING_MODE_MASK			(3 << 0)
+#define DCC_CHANNEL_XOR_DISABLE				(1 << 10)
+
+/** 965 MCH register controlling DRAM channel configuration */
+#define C0DRB3			0x10206
+#define C1DRB3			0x10606
+
+/*
+ * Overlay regs
+ */
+
+#define OVADD			0x30000
+#define DOVSTA			0x30008
+#define OC_BUF			(0x3<<20)
+#define OGAMC5			0x30010
+#define OGAMC4			0x30014
+#define OGAMC3			0x30018
+#define OGAMC2			0x3001c
+#define OGAMC1			0x30020
+#define OGAMC0			0x30024
+
+/*
+ * Display engine regs
+ */
+
+/* Pipe A timing regs */
+#define HTOTAL_A	0x60000
+#define HBLANK_A	0x60004
+#define HSYNC_A		0x60008
+#define VTOTAL_A	0x6000c
+#define VBLANK_A	0x60010
+#define VSYNC_A		0x60014
+#define PIPEASRC	0x6001c
+#define BCLRPAT_A	0x60020
+
+/* Pipe B timing regs */
+#define HTOTAL_B	0x61000
+#define HBLANK_B	0x61004
+#define HSYNC_B		0x61008
+#define VTOTAL_B	0x6100c
+#define VBLANK_B	0x61010
+#define VSYNC_B		0x61014
+#define PIPEBSRC	0x6101c
+#define BCLRPAT_B	0x61020
+
+/* VGA port control */
+#define ADPA			0x61100
+#define   ADPA_DAC_ENABLE	(1<<31)
+#define   ADPA_DAC_DISABLE	0
+#define   ADPA_PIPE_SELECT_MASK	(1<<30)
+#define   ADPA_PIPE_A_SELECT	0
+#define   ADPA_PIPE_B_SELECT	(1<<30)
+#define   ADPA_USE_VGA_HVPOLARITY (1<<15)
+#define   ADPA_SETS_HVPOLARITY	0
+#define   ADPA_VSYNC_CNTL_DISABLE (1<<11)
+#define   ADPA_VSYNC_CNTL_ENABLE 0
+#define   ADPA_HSYNC_CNTL_DISABLE (1<<10)
+#define   ADPA_HSYNC_CNTL_ENABLE 0
+#define   ADPA_VSYNC_ACTIVE_HIGH (1<<4)
+#define   ADPA_VSYNC_ACTIVE_LOW	0
+#define   ADPA_HSYNC_ACTIVE_HIGH (1<<3)
+#define   ADPA_HSYNC_ACTIVE_LOW	0
+#define   ADPA_DPMS_MASK	(~(3<<10))
+#define   ADPA_DPMS_ON		(0<<10)
+#define   ADPA_DPMS_SUSPEND	(1<<10)
+#define   ADPA_DPMS_STANDBY	(2<<10)
+#define   ADPA_DPMS_OFF		(3<<10)
+
+/* Hotplug control (945+ only) */
+#define PORT_HOTPLUG_EN		0x61110
+#define   SDVOB_HOTPLUG_INT_EN			(1 << 26)
+#define   SDVOC_HOTPLUG_INT_EN			(1 << 25)
+#define   TV_HOTPLUG_INT_EN			(1 << 18)
+#define   CRT_HOTPLUG_INT_EN			(1 << 9)
+#define   CRT_HOTPLUG_FORCE_DETECT		(1 << 3)
+
+#define PORT_HOTPLUG_STAT	0x61114
+#define   CRT_HOTPLUG_INT_STATUS		(1 << 11)
+#define   TV_HOTPLUG_INT_STATUS			(1 << 10)
+#define   CRT_HOTPLUG_MONITOR_MASK		(3 << 8)
+#define   CRT_HOTPLUG_MONITOR_COLOR		(3 << 8)
+#define   CRT_HOTPLUG_MONITOR_MONO		(2 << 8)
+#define   CRT_HOTPLUG_MONITOR_NONE		(0 << 8)
+#define   SDVOC_HOTPLUG_INT_STATUS		(1 << 7)
+#define   SDVOB_HOTPLUG_INT_STATUS		(1 << 6)
+
+/* SDVO port control */
+#define SDVOB			0x61140
+#define SDVOC			0x61160
+#define   SDVO_ENABLE		(1 << 31)
+#define   SDVO_PIPE_B_SELECT	(1 << 30)
+#define   SDVO_STALL_SELECT	(1 << 29)
+#define   SDVO_INTERRUPT_ENABLE	(1 << 26)
+/**
+ * 915G/GM SDVO pixel multiplier.
+ *
+ * Programmed value is multiplier - 1, up to 5x.
+ *
+ * \sa DPLL_MD_UDI_MULTIPLIER_MASK
+ */
+#define   SDVO_PORT_MULTIPLY_MASK	(7 << 23)
+#define   SDVO_PORT_MULTIPLY_SHIFT		23
+#define   SDVO_PHASE_SELECT_MASK	(15 << 19)
+#define   SDVO_PHASE_SELECT_DEFAULT	(6 << 19)
+#define   SDVO_CLOCK_OUTPUT_INVERT	(1 << 18)
+#define   SDVOC_GANG_MODE		(1 << 16)
+#define   SDVO_BORDER_ENABLE		(1 << 7)
+#define   SDVOB_PCIE_CONCURRENCY	(1 << 3)
+#define   SDVO_DETECTED			(1 << 2)
+/* Bits to be preserved when writing */
+#define   SDVOB_PRESERVE_MASK ((1 << 17) | (1 << 16) | (1 << 14) | (1 << 26))
+#define   SDVOC_PRESERVE_MASK ((1 << 17) | (1 << 26))
+
+/* DVO port control */
+#define DVOA			0x61120
+#define DVOB			0x61140
+#define DVOC			0x61160
+#define   DVO_ENABLE			(1 << 31)
+#define   DVO_PIPE_B_SELECT		(1 << 30)
+#define   DVO_PIPE_STALL_UNUSED		(0 << 28)
+#define   DVO_PIPE_STALL		(1 << 28)
+#define   DVO_PIPE_STALL_TV		(2 << 28)
+#define   DVO_PIPE_STALL_MASK		(3 << 28)
+#define   DVO_USE_VGA_SYNC		(1 << 15)
+#define   DVO_DATA_ORDER_I740		(0 << 14)
+#define   DVO_DATA_ORDER_FP		(1 << 14)
+#define   DVO_VSYNC_DISABLE		(1 << 11)
+#define   DVO_HSYNC_DISABLE		(1 << 10)
+#define   DVO_VSYNC_TRISTATE		(1 << 9)
+#define   DVO_HSYNC_TRISTATE		(1 << 8)
+#define   DVO_BORDER_ENABLE		(1 << 7)
+#define   DVO_DATA_ORDER_GBRG		(1 << 6)
+#define   DVO_DATA_ORDER_RGGB		(0 << 6)
+#define   DVO_DATA_ORDER_GBRG_ERRATA	(0 << 6)
+#define   DVO_DATA_ORDER_RGGB_ERRATA	(1 << 6)
+#define   DVO_VSYNC_ACTIVE_HIGH		(1 << 4)
+#define   DVO_HSYNC_ACTIVE_HIGH		(1 << 3)
+#define   DVO_BLANK_ACTIVE_HIGH		(1 << 2)
+#define   DVO_OUTPUT_CSTATE_PIXELS	(1 << 1)	/* SDG only */
+#define   DVO_OUTPUT_SOURCE_SIZE_PIXELS	(1 << 0)	/* SDG only */
+#define   DVO_PRESERVE_MASK		(0x7<<24)
+#define DVOA_SRCDIM		0x61124
+#define DVOB_SRCDIM		0x61144
+#define DVOC_SRCDIM		0x61164
+#define   DVO_SRCDIM_HORIZONTAL_SHIFT	12
+#define   DVO_SRCDIM_VERTICAL_SHIFT	0
+
+/* LVDS port control */
+#define LVDS			0x61180
+/*
+ * Enables the LVDS port.  This bit must be set before DPLLs are enabled, as
+ * the DPLL semantics change when the LVDS is assigned to that pipe.
+ */
+#define   LVDS_PORT_EN			(1 << 31)
+/* Selects pipe B for LVDS data.  Must be set on pre-965. */
+#define   LVDS_PIPEB_SELECT		(1 << 30)
+/*
+ * Enables the A0-A2 data pairs and CLKA, containing 18 bits of color data per
+ * pixel.
+ */
+#define   LVDS_A0A2_CLKA_POWER_MASK	(3 << 8)
+#define   LVDS_A0A2_CLKA_POWER_DOWN	(0 << 8)
+#define   LVDS_A0A2_CLKA_POWER_UP	(3 << 8)
+/*
+ * Controls the A3 data pair, which contains the additional LSBs for 24 bit
+ * mode.  Only enabled if LVDS_A0A2_CLKA_POWER_UP also indicates it should be
+ * on.
+ */
+#define   LVDS_A3_POWER_MASK		(3 << 6)
+#define   LVDS_A3_POWER_DOWN		(0 << 6)
+#define   LVDS_A3_POWER_UP		(3 << 6)
+/*
+ * Controls the CLKB pair.  This should only be set when LVDS_B0B3_POWER_UP
+ * is set.
+ */
+#define   LVDS_CLKB_POWER_MASK		(3 << 4)
+#define   LVDS_CLKB_POWER_DOWN		(0 << 4)
+#define   LVDS_CLKB_POWER_UP		(3 << 4)
+/*
+ * Controls the B0-B3 data pairs.  This must be set to match the DPLL p2
+ * setting for whether we are in dual-channel mode.  The B3 pair will
+ * additionally only be powered up when LVDS_A3_POWER_UP is set.
+ */
+#define   LVDS_B0B3_POWER_MASK		(3 << 2)
+#define   LVDS_B0B3_POWER_DOWN		(0 << 2)
+#define   LVDS_B0B3_POWER_UP		(3 << 2)
+
+/* Panel power sequencing */
+#define PP_STATUS	0x61200
+#define   PP_ON		(1 << 31)
+/*
+ * Indicates that all dependencies of the panel are on:
+ *
+ * - PLL enabled
+ * - pipe enabled
+ * - LVDS/DVOB/DVOC on
+ */
+#define   PP_READY		(1 << 30)
+#define   PP_SEQUENCE_NONE	(0 << 28)
+#define   PP_SEQUENCE_ON	(1 << 28)
+#define   PP_SEQUENCE_OFF	(2 << 28)
+#define   PP_SEQUENCE_MASK	0x30000000
+#define PP_CONTROL	0x61204
+#define   POWER_TARGET_ON	(1 << 0)
+#define PP_ON_DELAYS	0x61208
+#define PP_OFF_DELAYS	0x6120c
+#define PP_DIVISOR	0x61210
+
+/* Panel fitting */
+#define PFIT_CONTROL	0x61230
+#define   PFIT_ENABLE		(1 << 31)
+#define   PFIT_PIPE_MASK	(3 << 29)
+#define   PFIT_PIPE_SHIFT	29
+#define   VERT_INTERP_DISABLE	(0 << 10)
+#define   VERT_INTERP_BILINEAR	(1 << 10)
+#define   VERT_INTERP_MASK	(3 << 10)
+#define   VERT_AUTO_SCALE	(1 << 9)
+#define   HORIZ_INTERP_DISABLE	(0 << 6)
+#define   HORIZ_INTERP_BILINEAR	(1 << 6)
+#define   HORIZ_INTERP_MASK	(3 << 6)
+#define   HORIZ_AUTO_SCALE	(1 << 5)
+#define   PANEL_8TO6_DITHER_ENABLE (1 << 3)
+#define PFIT_PGM_RATIOS	0x61234
+#define   PFIT_VERT_SCALE_MASK			0xfff00000
+#define   PFIT_HORIZ_SCALE_MASK			0x0000fff0
+#define PFIT_AUTO_RATIOS 0x61238
+
+/* Backlight control */
+#define BLC_PWM_CTL		0x61254
+#define   BACKLIGHT_MODULATION_FREQ_SHIFT		(17)
+#define BLC_PWM_CTL2		0x61250 /* 965+ only */
+#define   BLM_COMBINATION_MODE (1 << 30)
+/*
+ * This is the most significant 15 bits of the number of backlight cycles in a
+ * complete cycle of the modulated backlight control.
+ *
+ * The actual value is this field multiplied by two.
+ */
+#define   BACKLIGHT_MODULATION_FREQ_MASK		(0x7fff << 17)
+#define   BLM_LEGACY_MODE				(1 << 16)
+/*
+ * This is the number of cycles out of the backlight modulation cycle for which
+ * the backlight is on.
+ *
+ * This field must be no greater than the number of cycles in the complete
+ * backlight modulation cycle.
+ */
+#define   BACKLIGHT_DUTY_CYCLE_SHIFT		(0)
+#define   BACKLIGHT_DUTY_CYCLE_MASK		(0xffff)
+
+/* TV port control */
+#define TV_CTL			0x68000
+/** Enables the TV encoder */
+# define TV_ENC_ENABLE			(1 << 31)
+/** Sources the TV encoder input from pipe B instead of A. */
+# define TV_ENC_PIPEB_SELECT		(1 << 30)
+/** Outputs composite video (DAC A only) */
+# define TV_ENC_OUTPUT_COMPOSITE	(0 << 28)
+/** Outputs SVideo video (DAC B/C) */
+# define TV_ENC_OUTPUT_SVIDEO		(1 << 28)
+/** Outputs Component video (DAC A/B/C) */
+# define TV_ENC_OUTPUT_COMPONENT	(2 << 28)
+/** Outputs Composite and SVideo (DAC A/B/C) */
+# define TV_ENC_OUTPUT_SVIDEO_COMPOSITE	(3 << 28)
+# define TV_TRILEVEL_SYNC		(1 << 21)
+/** Enables slow sync generation (945GM only) */
+# define TV_SLOW_SYNC			(1 << 20)
+/** Selects 4x oversampling for 480i and 576p */
+# define TV_OVERSAMPLE_4X		(0 << 18)
+/** Selects 2x oversampling for 720p and 1080i */
+# define TV_OVERSAMPLE_2X		(1 << 18)
+/** Selects no oversampling for 1080p */
+# define TV_OVERSAMPLE_NONE		(2 << 18)
+/** Selects 8x oversampling */
+# define TV_OVERSAMPLE_8X		(3 << 18)
+/** Selects progressive mode rather than interlaced */
+# define TV_PROGRESSIVE			(1 << 17)
+/** Sets the colorburst to PAL mode.  Required for non-M PAL modes. */
+# define TV_PAL_BURST			(1 << 16)
+/** Field for setting delay of Y compared to C */
+# define TV_YC_SKEW_MASK		(7 << 12)
+/** Enables a fix for 480p/576p standard definition modes on the 915GM only */
+# define TV_ENC_SDP_FIX			(1 << 11)
+/**
+ * Enables a fix for the 915GM only.
+ *
+ * Not sure what it does.
+ */
+# define TV_ENC_C0_FIX			(1 << 10)
+/** Bits that must be preserved by software */
+# define TV_CTL_SAVE			((3 << 8) | (3 << 6))
+# define TV_FUSE_STATE_MASK		(3 << 4)
+/** Read-only state that reports all features enabled */
+# define TV_FUSE_STATE_ENABLED		(0 << 4)
+/** Read-only state that reports that Macrovision is disabled in hardware*/
+# define TV_FUSE_STATE_NO_MACROVISION	(1 << 4)
+/** Read-only state that reports that TV-out is disabled in hardware. */
+# define TV_FUSE_STATE_DISABLED		(2 << 4)
+/** Normal operation */
+# define TV_TEST_MODE_NORMAL		(0 << 0)
+/** Encoder test pattern 1 - combo pattern */
+# define TV_TEST_MODE_PATTERN_1		(1 << 0)
+/** Encoder test pattern 2 - full screen vertical 75% color bars */
+# define TV_TEST_MODE_PATTERN_2		(2 << 0)
+/** Encoder test pattern 3 - full screen horizontal 75% color bars */
+# define TV_TEST_MODE_PATTERN_3		(3 << 0)
+/** Encoder test pattern 4 - random noise */
+# define TV_TEST_MODE_PATTERN_4		(4 << 0)
+/** Encoder test pattern 5 - linear color ramps */
+# define TV_TEST_MODE_PATTERN_5		(5 << 0)
+/**
+ * This test mode forces the DACs to 50% of full output.
+ *
+ * This is used for load detection in combination with TVDAC_SENSE_MASK
+ */
+# define TV_TEST_MODE_MONITOR_DETECT	(7 << 0)
+# define TV_TEST_MODE_MASK		(7 << 0)
+
+#define TV_DAC			0x68004
+/**
+ * Reports that DAC state change logic has reported change (RO).
+ *
+ * This gets cleared when TV_DAC_STATE_EN is cleared
+*/
+# define TVDAC_STATE_CHG		(1 << 31)
+# define TVDAC_SENSE_MASK		(7 << 28)
+/** Reports that DAC A voltage is above the detect threshold */
+# define TVDAC_A_SENSE			(1 << 30)
+/** Reports that DAC B voltage is above the detect threshold */
+# define TVDAC_B_SENSE			(1 << 29)
+/** Reports that DAC C voltage is above the detect threshold */
+# define TVDAC_C_SENSE			(1 << 28)
+/**
+ * Enables DAC state detection logic, for load-based TV detection.
+ *
+ * The PLL of the chosen pipe (in TV_CTL) must be running, and the encoder set
+ * to off, for load detection to work.
+ */
+# define TVDAC_STATE_CHG_EN		(1 << 27)
+/** Sets the DAC A sense value to high */
+# define TVDAC_A_SENSE_CTL		(1 << 26)
+/** Sets the DAC B sense value to high */
+# define TVDAC_B_SENSE_CTL		(1 << 25)
+/** Sets the DAC C sense value to high */
+# define TVDAC_C_SENSE_CTL		(1 << 24)
+/** Overrides the ENC_ENABLE and DAC voltage levels */
+# define DAC_CTL_OVERRIDE		(1 << 7)
+/** Sets the slew rate.  Must be preserved in software */
+# define ENC_TVDAC_SLEW_FAST		(1 << 6)
+# define DAC_A_1_3_V			(0 << 4)
+# define DAC_A_1_1_V			(1 << 4)
+# define DAC_A_0_7_V			(2 << 4)
+# define DAC_A_OFF			(3 << 4)
+# define DAC_B_1_3_V			(0 << 2)
+# define DAC_B_1_1_V			(1 << 2)
+# define DAC_B_0_7_V			(2 << 2)
+# define DAC_B_OFF			(3 << 2)
+# define DAC_C_1_3_V			(0 << 0)
+# define DAC_C_1_1_V			(1 << 0)
+# define DAC_C_0_7_V			(2 << 0)
+# define DAC_C_OFF			(3 << 0)
+
+/**
+ * CSC coefficients are stored in a floating point format with 9 bits of
+ * mantissa and 2 or 3 bits of exponent.  The exponent is represented as 2**-n,
+ * where 2-bit exponents are unsigned n, and 3-bit exponents are signed n with
+ * -1 (0x3) being the only legal negative value.
+ */
+#define TV_CSC_Y		0x68010
+# define TV_RY_MASK			0x07ff0000
+# define TV_RY_SHIFT			16
+# define TV_GY_MASK			0x00000fff
+# define TV_GY_SHIFT			0
+
+#define TV_CSC_Y2		0x68014
+# define TV_BY_MASK			0x07ff0000
+# define TV_BY_SHIFT			16
+/**
+ * Y attenuation for component video.
+ *
+ * Stored in 1.9 fixed point.
+ */
+# define TV_AY_MASK			0x000003ff
+# define TV_AY_SHIFT			0
+
+#define TV_CSC_U		0x68018
+# define TV_RU_MASK			0x07ff0000
+# define TV_RU_SHIFT			16
+# define TV_GU_MASK			0x000007ff
+# define TV_GU_SHIFT			0
+
+#define TV_CSC_U2		0x6801c
+# define TV_BU_MASK			0x07ff0000
+# define TV_BU_SHIFT			16
+/**
+ * U attenuation for component video.
+ *
+ * Stored in 1.9 fixed point.
+ */
+# define TV_AU_MASK			0x000003ff
+# define TV_AU_SHIFT			0
+
+#define TV_CSC_V		0x68020
+# define TV_RV_MASK			0x0fff0000
+# define TV_RV_SHIFT			16
+# define TV_GV_MASK			0x000007ff
+# define TV_GV_SHIFT			0
+
+#define TV_CSC_V2		0x68024
+# define TV_BV_MASK			0x07ff0000
+# define TV_BV_SHIFT			16
+/**
+ * V attenuation for component video.
+ *
+ * Stored in 1.9 fixed point.
+ */
+# define TV_AV_MASK			0x000007ff
+# define TV_AV_SHIFT			0
+
+#define TV_CLR_KNOBS		0x68028
+/** 2s-complement brightness adjustment */
+# define TV_BRIGHTNESS_MASK		0xff000000
+# define TV_BRIGHTNESS_SHIFT		24
+/** Contrast adjustment, as a 2.6 unsigned floating point number */
+# define TV_CONTRAST_MASK		0x00ff0000
+# define TV_CONTRAST_SHIFT		16
+/** Saturation adjustment, as a 2.6 unsigned floating point number */
+# define TV_SATURATION_MASK		0x0000ff00
+# define TV_SATURATION_SHIFT		8
+/** Hue adjustment, as an integer phase angle in degrees */
+# define TV_HUE_MASK			0x000000ff
+# define TV_HUE_SHIFT			0
+
+#define TV_CLR_LEVEL		0x6802c
+/** Controls the DAC level for black */
+# define TV_BLACK_LEVEL_MASK		0x01ff0000
+# define TV_BLACK_LEVEL_SHIFT		16
+/** Controls the DAC level for blanking */
+# define TV_BLANK_LEVEL_MASK		0x000001ff
+# define TV_BLANK_LEVEL_SHIFT		0
+
+#define TV_H_CTL_1		0x68030
+/** Number of pixels in the hsync. */
+# define TV_HSYNC_END_MASK		0x1fff0000
+# define TV_HSYNC_END_SHIFT		16
+/** Total number of pixels minus one in the line (display and blanking). */
+# define TV_HTOTAL_MASK			0x00001fff
+# define TV_HTOTAL_SHIFT		0
+
+#define TV_H_CTL_2		0x68034
+/** Enables the colorburst (needed for non-component color) */
+# define TV_BURST_ENA			(1 << 31)
+/** Offset of the colorburst from the start of hsync, in pixels minus one. */
+# define TV_HBURST_START_SHIFT		16
+# define TV_HBURST_START_MASK		0x1fff0000
+/** Length of the colorburst */
+# define TV_HBURST_LEN_SHIFT		0
+# define TV_HBURST_LEN_MASK		0x0001fff
+
+#define TV_H_CTL_3		0x68038
+/** End of hblank, measured in pixels minus one from start of hsync */
+# define TV_HBLANK_END_SHIFT		16
+# define TV_HBLANK_END_MASK		0x1fff0000
+/** Start of hblank, measured in pixels minus one from start of hsync */
+# define TV_HBLANK_START_SHIFT		0
+# define TV_HBLANK_START_MASK		0x0001fff
+
+#define TV_V_CTL_1		0x6803c
+/** XXX */
+# define TV_NBR_END_SHIFT		16
+# define TV_NBR_END_MASK		0x07ff0000
+/** XXX */
+# define TV_VI_END_F1_SHIFT		8
+# define TV_VI_END_F1_MASK		0x00003f00
+/** XXX */
+# define TV_VI_END_F2_SHIFT		0
+# define TV_VI_END_F2_MASK		0x0000003f
+
+#define TV_V_CTL_2		0x68040
+/** Length of vsync, in half lines */
+# define TV_VSYNC_LEN_MASK		0x07ff0000
+# define TV_VSYNC_LEN_SHIFT		16
+/** Offset of the start of vsync in field 1, measured in one less than the
+ * number of half lines.
+ */
+# define TV_VSYNC_START_F1_MASK		0x00007f00
+# define TV_VSYNC_START_F1_SHIFT	8
+/**
+ * Offset of the start of vsync in field 2, measured in one less than the
+ * number of half lines.
+ */
+# define TV_VSYNC_START_F2_MASK		0x0000007f
+# define TV_VSYNC_START_F2_SHIFT	0
+
+#define TV_V_CTL_3		0x68044
+/** Enables generation of the equalization signal */
+# define TV_EQUAL_ENA			(1 << 31)
+/** Length of vsync, in half lines */
+# define TV_VEQ_LEN_MASK		0x007f0000
+# define TV_VEQ_LEN_SHIFT		16
+/** Offset of the start of equalization in field 1, measured in one less than
+ * the number of half lines.
+ */
+# define TV_VEQ_START_F1_MASK		0x0007f00
+# define TV_VEQ_START_F1_SHIFT		8
+/**
+ * Offset of the start of equalization in field 2, measured in one less than
+ * the number of half lines.
+ */
+# define TV_VEQ_START_F2_MASK		0x000007f
+# define TV_VEQ_START_F2_SHIFT		0
+
+#define TV_V_CTL_4		0x68048
+/**
+ * Offset to start of vertical colorburst, measured in one less than the
+ * number of lines from vertical start.
+ */
+# define TV_VBURST_START_F1_MASK	0x003f0000
+# define TV_VBURST_START_F1_SHIFT	16
+/**
+ * Offset to the end of vertical colorburst, measured in one less than the
+ * number of lines from the start of NBR.
+ */
+# define TV_VBURST_END_F1_MASK		0x000000ff
+# define TV_VBURST_END_F1_SHIFT		0
+
+#define TV_V_CTL_5		0x6804c
+/**
+ * Offset to start of vertical colorburst, measured in one less than the
+ * number of lines from vertical start.
+ */
+# define TV_VBURST_START_F2_MASK	0x003f0000
+# define TV_VBURST_START_F2_SHIFT	16
+/**
+ * Offset to the end of vertical colorburst, measured in one less than the
+ * number of lines from the start of NBR.
+ */
+# define TV_VBURST_END_F2_MASK		0x000000ff
+# define TV_VBURST_END_F2_SHIFT		0
+
+#define TV_V_CTL_6		0x68050
+/**
+ * Offset to start of vertical colorburst, measured in one less than the
+ * number of lines from vertical start.
+ */
+# define TV_VBURST_START_F3_MASK	0x003f0000
+# define TV_VBURST_START_F3_SHIFT	16
+/**
+ * Offset to the end of vertical colorburst, measured in one less than the
+ * number of lines from the start of NBR.
+ */
+# define TV_VBURST_END_F3_MASK		0x000000ff
+# define TV_VBURST_END_F3_SHIFT		0
+
+#define TV_V_CTL_7		0x68054
+/**
+ * Offset to start of vertical colorburst, measured in one less than the
+ * number of lines from vertical start.
+ */
+# define TV_VBURST_START_F4_MASK	0x003f0000
+# define TV_VBURST_START_F4_SHIFT	16
+/**
+ * Offset to the end of vertical colorburst, measured in one less than the
+ * number of lines from the start of NBR.
+ */
+# define TV_VBURST_END_F4_MASK		0x000000ff
+# define TV_VBURST_END_F4_SHIFT		0
+
+#define TV_SC_CTL_1		0x68060
+/** Turns on the first subcarrier phase generation DDA */
+# define TV_SC_DDA1_EN			(1 << 31)
+/** Turns on the first subcarrier phase generation DDA */
+# define TV_SC_DDA2_EN			(1 << 30)
+/** Turns on the first subcarrier phase generation DDA */
+# define TV_SC_DDA3_EN			(1 << 29)
+/** Sets the subcarrier DDA to reset frequency every other field */
+# define TV_SC_RESET_EVERY_2		(0 << 24)
+/** Sets the subcarrier DDA to reset frequency every fourth field */
+# define TV_SC_RESET_EVERY_4		(1 << 24)
+/** Sets the subcarrier DDA to reset frequency every eighth field */
+# define TV_SC_RESET_EVERY_8		(2 << 24)
+/** Sets the subcarrier DDA to never reset the frequency */
+# define TV_SC_RESET_NEVER		(3 << 24)
+/** Sets the peak amplitude of the colorburst.*/
+# define TV_BURST_LEVEL_MASK		0x00ff0000
+# define TV_BURST_LEVEL_SHIFT		16
+/** Sets the increment of the first subcarrier phase generation DDA */
+# define TV_SCDDA1_INC_MASK		0x00000fff
+# define TV_SCDDA1_INC_SHIFT		0
+
+#define TV_SC_CTL_2		0x68064
+/** Sets the rollover for the second subcarrier phase generation DDA */
+# define TV_SCDDA2_SIZE_MASK		0x7fff0000
+# define TV_SCDDA2_SIZE_SHIFT		16
+/** Sets the increent of the second subcarrier phase generation DDA */
+# define TV_SCDDA2_INC_MASK		0x00007fff
+# define TV_SCDDA2_INC_SHIFT		0
+
+#define TV_SC_CTL_3		0x68068
+/** Sets the rollover for the third subcarrier phase generation DDA */
+# define TV_SCDDA3_SIZE_MASK		0x7fff0000
+# define TV_SCDDA3_SIZE_SHIFT		16
+/** Sets the increent of the third subcarrier phase generation DDA */
+# define TV_SCDDA3_INC_MASK		0x00007fff
+# define TV_SCDDA3_INC_SHIFT		0
+
+#define TV_WIN_POS		0x68070
+/** X coordinate of the display from the start of horizontal active */
+# define TV_XPOS_MASK			0x1fff0000
+# define TV_XPOS_SHIFT			16
+/** Y coordinate of the display from the start of vertical active (NBR) */
+# define TV_YPOS_MASK			0x00000fff
+# define TV_YPOS_SHIFT			0
+
+#define TV_WIN_SIZE		0x68074
+/** Horizontal size of the display window, measured in pixels*/
+# define TV_XSIZE_MASK			0x1fff0000
+# define TV_XSIZE_SHIFT			16
+/**
+ * Vertical size of the display window, measured in pixels.
+ *
+ * Must be even for interlaced modes.
+ */
+# define TV_YSIZE_MASK			0x00000fff
+# define TV_YSIZE_SHIFT			0
+
+#define TV_FILTER_CTL_1		0x68080
+/**
+ * Enables automatic scaling calculation.
+ *
+ * If set, the rest of the registers are ignored, and the calculated values can
+ * be read back from the register.
+ */
+# define TV_AUTO_SCALE			(1 << 31)
+/**
+ * Disables the vertical filter.
+ *
+ * This is required on modes more than 1024 pixels wide */
+# define TV_V_FILTER_BYPASS		(1 << 29)
+/** Enables adaptive vertical filtering */
+# define TV_VADAPT			(1 << 28)
+# define TV_VADAPT_MODE_MASK		(3 << 26)
+/** Selects the least adaptive vertical filtering mode */
+# define TV_VADAPT_MODE_LEAST		(0 << 26)
+/** Selects the moderately adaptive vertical filtering mode */
+# define TV_VADAPT_MODE_MODERATE	(1 << 26)
+/** Selects the most adaptive vertical filtering mode */
+# define TV_VADAPT_MODE_MOST		(3 << 26)
+/**
+ * Sets the horizontal scaling factor.
+ *
+ * This should be the fractional part of the horizontal scaling factor divided
+ * by the oversampling rate.  TV_HSCALE should be less than 1, and set to:
+ *
+ * (src width - 1) / ((oversample * dest width) - 1)
+ */
+# define TV_HSCALE_FRAC_MASK		0x00003fff
+# define TV_HSCALE_FRAC_SHIFT		0
+
+#define TV_FILTER_CTL_2		0x68084
+/**
+ * Sets the integer part of the 3.15 fixed-point vertical scaling factor.
+ *
+ * TV_VSCALE should be (src height - 1) / ((interlace * dest height) - 1)
+ */
+# define TV_VSCALE_INT_MASK		0x00038000
+# define TV_VSCALE_INT_SHIFT		15
+/**
+ * Sets the fractional part of the 3.15 fixed-point vertical scaling factor.
+ *
+ * \sa TV_VSCALE_INT_MASK
+ */
+# define TV_VSCALE_FRAC_MASK		0x00007fff
+# define TV_VSCALE_FRAC_SHIFT		0
+
+#define TV_FILTER_CTL_3		0x68088
+/**
+ * Sets the integer part of the 3.15 fixed-point vertical scaling factor.
+ *
+ * TV_VSCALE should be (src height - 1) / (1/4 * (dest height - 1))
+ *
+ * For progressive modes, TV_VSCALE_IP_INT should be set to zeroes.
+ */
+# define TV_VSCALE_IP_INT_MASK		0x00038000
+# define TV_VSCALE_IP_INT_SHIFT		15
+/**
+ * Sets the fractional part of the 3.15 fixed-point vertical scaling factor.
+ *
+ * For progressive modes, TV_VSCALE_IP_INT should be set to zeroes.
+ *
+ * \sa TV_VSCALE_IP_INT_MASK
+ */
+# define TV_VSCALE_IP_FRAC_MASK		0x00007fff
+# define TV_VSCALE_IP_FRAC_SHIFT		0
+
+#define TV_CC_CONTROL		0x68090
+# define TV_CC_ENABLE			(1 << 31)
+/**
+ * Specifies which field to send the CC data in.
+ *
+ * CC data is usually sent in field 0.
+ */
+# define TV_CC_FID_MASK			(1 << 27)
+# define TV_CC_FID_SHIFT		27
+/** Sets the horizontal position of the CC data.  Usually 135. */
+# define TV_CC_HOFF_MASK		0x03ff0000
+# define TV_CC_HOFF_SHIFT		16
+/** Sets the vertical position of the CC data.  Usually 21 */
+# define TV_CC_LINE_MASK		0x0000003f
+# define TV_CC_LINE_SHIFT		0
+
+#define TV_CC_DATA		0x68094
+# define TV_CC_RDY			(1 << 31)
+/** Second word of CC data to be transmitted. */
+# define TV_CC_DATA_2_MASK		0x007f0000
+# define TV_CC_DATA_2_SHIFT		16
+/** First word of CC data to be transmitted. */
+# define TV_CC_DATA_1_MASK		0x0000007f
+# define TV_CC_DATA_1_SHIFT		0
+
+#define TV_H_LUMA_0		0x68100
+#define TV_H_LUMA_59		0x681ec
+#define TV_H_CHROMA_0		0x68200
+#define TV_H_CHROMA_59		0x682ec
+#define TV_V_LUMA_0		0x68300
+#define TV_V_LUMA_42		0x683a8
+#define TV_V_CHROMA_0		0x68400
+#define TV_V_CHROMA_42		0x684a8
+
+/* Display & cursor control */
+
+/* Pipe A */
+#define PIPEADSL		0x70000
+#define PIPEACONF		0x70008
+#define   PIPEACONF_ENABLE	(1<<31)
+#define   PIPEACONF_DISABLE	0
+#define   PIPEACONF_DOUBLE_WIDE	(1<<30)
+#define   I965_PIPECONF_ACTIVE	(1<<30)
+#define   PIPEACONF_SINGLE_WIDE	0
+#define   PIPEACONF_PIPE_UNLOCKED 0
+#define   PIPEACONF_PIPE_LOCKED	(1<<25)
+#define   PIPEACONF_PALETTE	0
+#define   PIPEACONF_GAMMA		(1<<24)
+#define   PIPECONF_FORCE_BORDER	(1<<25)
+#define   PIPECONF_PROGRESSIVE	(0 << 21)
+#define   PIPECONF_INTERLACE_W_FIELD_INDICATION	(6 << 21)
+#define   PIPECONF_INTERLACE_FIELD_0_ONLY		(7 << 21)
+#define PIPEASTAT		0x70024
+#define   PIPE_FIFO_UNDERRUN_STATUS		(1UL<<31)
+#define   PIPE_CRC_ERROR_ENABLE			(1UL<<29)
+#define   PIPE_CRC_DONE_ENABLE			(1UL<<28)
+#define   PIPE_GMBUS_EVENT_ENABLE		(1UL<<27)
+#define   PIPE_HOTPLUG_INTERRUPT_ENABLE		(1UL<<26)
+#define   PIPE_VSYNC_INTERRUPT_ENABLE		(1UL<<25)
+#define   PIPE_DISPLAY_LINE_COMPARE_ENABLE	(1UL<<24)
+#define   PIPE_DPST_EVENT_ENABLE		(1UL<<23)
+#define   PIPE_LEGACY_BLC_EVENT_ENABLE		(1UL<<22)
+#define   PIPE_ODD_FIELD_INTERRUPT_ENABLE	(1UL<<21)
+#define   PIPE_EVEN_FIELD_INTERRUPT_ENABLE	(1UL<<20)
+#define   PIPE_HOTPLUG_TV_INTERRUPT_ENABLE	(1UL<<18) /* pre-965 */
+#define   PIPE_START_VBLANK_INTERRUPT_ENABLE	(1UL<<18) /* 965 or later */
+#define   PIPE_VBLANK_INTERRUPT_ENABLE		(1UL<<17)
+#define   PIPE_OVERLAY_UPDATED_ENABLE		(1UL<<16)
+#define   PIPE_CRC_ERROR_INTERRUPT_STATUS	(1UL<<13)
+#define   PIPE_CRC_DONE_INTERRUPT_STATUS	(1UL<<12)
+#define   PIPE_GMBUS_INTERRUPT_STATUS		(1UL<<11)
+#define   PIPE_HOTPLUG_INTERRUPT_STATUS		(1UL<<10)
+#define   PIPE_VSYNC_INTERRUPT_STATUS		(1UL<<9)
+#define   PIPE_DISPLAY_LINE_COMPARE_STATUS	(1UL<<8)
+#define   PIPE_DPST_EVENT_STATUS		(1UL<<7)
+#define   PIPE_LEGACY_BLC_EVENT_STATUS		(1UL<<6)
+#define   PIPE_ODD_FIELD_INTERRUPT_STATUS	(1UL<<5)
+#define   PIPE_EVEN_FIELD_INTERRUPT_STATUS	(1UL<<4)
+#define   PIPE_HOTPLUG_TV_INTERRUPT_STATUS	(1UL<<2) /* pre-965 */
+#define   PIPE_START_VBLANK_INTERRUPT_STATUS	(1UL<<2) /* 965 or later */
+#define   PIPE_VBLANK_INTERRUPT_STATUS		(1UL<<1)
+#define   PIPE_OVERLAY_UPDATED_STATUS		(1UL<<0)
+
+#define DSPARB			0x70030
+#define   DSPARB_CSTART_MASK	(0x7f << 7)
+#define   DSPARB_CSTART_SHIFT	7
+#define   DSPARB_BSTART_MASK	(0x7f)
+#define   DSPARB_BSTART_SHIFT	0
+/*
+ * The two pipe frame counter registers are not synchronized, so
+ * reading a stable value is somewhat tricky. The following code
+ * should work:
+ *
+ *  do {
+ *    high1 = ((INREG(PIPEAFRAMEHIGH) & PIPE_FRAME_HIGH_MASK) >>
+ *             PIPE_FRAME_HIGH_SHIFT;
+ *    low1 =  ((INREG(PIPEAFRAMEPIXEL) & PIPE_FRAME_LOW_MASK) >>
+ *             PIPE_FRAME_LOW_SHIFT);
+ *    high2 = ((INREG(PIPEAFRAMEHIGH) & PIPE_FRAME_HIGH_MASK) >>
+ *             PIPE_FRAME_HIGH_SHIFT);
+ *  } while (high1 != high2);
+ *  frame = (high1 << 8) | low1;
+ */
+#define PIPEAFRAMEHIGH          0x70040
+#define   PIPE_FRAME_HIGH_MASK    0x0000ffff
+#define   PIPE_FRAME_HIGH_SHIFT   0
+#define PIPEAFRAMEPIXEL         0x70044
+#define   PIPE_FRAME_LOW_MASK     0xff000000
+#define   PIPE_FRAME_LOW_SHIFT    24
+#define   PIPE_PIXEL_MASK         0x00ffffff
+#define   PIPE_PIXEL_SHIFT        0
+
+/* Cursor A & B regs */
+#define CURACNTR		0x70080
+#define   CURSOR_MODE_DISABLE   0x00
+#define   CURSOR_MODE_64_32B_AX 0x07
+#define   CURSOR_MODE_64_ARGB_AX ((1 << 5) | CURSOR_MODE_64_32B_AX)
+#define   MCURSOR_GAMMA_ENABLE  (1 << 26)
+#define CURABASE		0x70084
+#define CURAPOS			0x70088
+#define   CURSOR_POS_MASK       0x007FF
+#define   CURSOR_POS_SIGN       0x8000
+#define   CURSOR_X_SHIFT        0
+#define   CURSOR_Y_SHIFT        16
+#define CURBCNTR		0x700c0
+#define CURBBASE		0x700c4
+#define CURBPOS			0x700c8
+
+/* Display A control */
+#define DSPACNTR                0x70180
+#define   DISPLAY_PLANE_ENABLE			(1<<31)
+#define   DISPLAY_PLANE_DISABLE			0
+#define   DISPPLANE_GAMMA_ENABLE		(1<<30)
+#define   DISPPLANE_GAMMA_DISABLE		0
+#define   DISPPLANE_PIXFORMAT_MASK		(0xf<<26)
+#define   DISPPLANE_8BPP			(0x2<<26)
+#define   DISPPLANE_15_16BPP			(0x4<<26)
+#define   DISPPLANE_16BPP			(0x5<<26)
+#define   DISPPLANE_32BPP_NO_ALPHA		(0x6<<26)
+#define   DISPPLANE_32BPP			(0x7<<26)
+#define   DISPPLANE_STEREO_ENABLE		(1<<25)
+#define   DISPPLANE_STEREO_DISABLE		0
+#define   DISPPLANE_SEL_PIPE_MASK		(1<<24)
+#define   DISPPLANE_SEL_PIPE_A			0
+#define   DISPPLANE_SEL_PIPE_B			(1<<24)
+#define   DISPPLANE_SRC_KEY_ENABLE		(1<<22)
+#define   DISPPLANE_SRC_KEY_DISABLE		0
+#define   DISPPLANE_LINE_DOUBLE			(1<<20)
+#define   DISPPLANE_NO_LINE_DOUBLE		0
+#define   DISPPLANE_STEREO_POLARITY_FIRST	0
+#define   DISPPLANE_STEREO_POLARITY_SECOND	(1<<18)
+#define DSPAADDR		0x70184
+#define DSPASTRIDE		0x70188
+#define DSPAPOS			0x7018C /* reserved */
+#define DSPASIZE		0x70190
+#define DSPASURF		0x7019C /* 965+ only */
+#define DSPATILEOFF		0x701A4 /* 965+ only */
+
+/* VBIOS flags */
+#define SWF00			0x71410
+#define SWF01			0x71414
+#define SWF02			0x71418
+#define SWF03			0x7141c
+#define SWF04			0x71420
+#define SWF05			0x71424
+#define SWF06			0x71428
+#define SWF10			0x70410
+#define SWF11			0x70414
+#define SWF14			0x71420
+#define SWF30			0x72414
+#define SWF31			0x72418
+#define SWF32			0x7241c
+
+/* Pipe B */
+#define PIPEBDSL		0x71000
+#define PIPEBCONF		0x71008
+#define PIPEBSTAT		0x71024
+#define PIPEBFRAMEHIGH		0x71040
+#define PIPEBFRAMEPIXEL		0x71044
+
+/* Display B control */
+#define DSPBCNTR		0x71180
+#define   DISPPLANE_ALPHA_TRANS_ENABLE		(1<<15)
+#define   DISPPLANE_ALPHA_TRANS_DISABLE		0
+#define   DISPPLANE_SPRITE_ABOVE_DISPLAY	0
+#define   DISPPLANE_SPRITE_ABOVE_OVERLAY	(1)
+#define DSPBADDR		0x71184
+#define DSPBSTRIDE		0x71188
+#define DSPBPOS			0x7118C
+#define DSPBSIZE		0x71190
+#define DSPBSURF		0x7119C
+#define DSPBTILEOFF		0x711A4
+
+/* VBIOS regs */
+#define VGACNTRL		0x71400
+# define VGA_DISP_DISABLE			(1 << 31)
+# define VGA_2X_MODE				(1 << 30)
+# define VGA_PIPE_B_SELECT			(1 << 29)
+
+#endif /* _I915_REG_H_ */
diff --git a/drivers/gpu/drm/i915/i915_suspend.c b/drivers/gpu/drm/i915/i915_suspend.c
new file mode 100644
index 0000000..603fe74
--- /dev/null
+++ b/drivers/gpu/drm/i915/i915_suspend.c
@@ -0,0 +1,509 @@
+/*
+ *
+ * Copyright 2008 (c) Intel Corporation
+ *   Jesse Barnes <jbarnes@virtuousgeek.org>
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and associated documentation files (the
+ * "Software"), to deal in the Software without restriction, including
+ * without limitation the rights to use, copy, modify, merge, publish,
+ * distribute, sub license, and/or sell copies of the Software, and to
+ * permit persons to whom the Software is furnished to do so, subject to
+ * the following conditions:
+ *
+ * The above copyright notice and this permission notice (including the
+ * next paragraph) shall be included in all copies or substantial portions
+ * of the Software.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
+ * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT.
+ * IN NO EVENT SHALL TUNGSTEN GRAPHICS AND/OR ITS SUPPLIERS BE LIABLE FOR
+ * ANY CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
+ * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
+ * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
+ */
+
+#include "drmP.h"
+#include "drm.h"
+#include "i915_drm.h"
+#include "i915_drv.h"
+
+static bool i915_pipe_enabled(struct drm_device *dev, enum pipe pipe)
+{
+	struct drm_i915_private *dev_priv = dev->dev_private;
+
+	if (pipe == PIPE_A)
+		return (I915_READ(DPLL_A) & DPLL_VCO_ENABLE);
+	else
+		return (I915_READ(DPLL_B) & DPLL_VCO_ENABLE);
+}
+
+static void i915_save_palette(struct drm_device *dev, enum pipe pipe)
+{
+	struct drm_i915_private *dev_priv = dev->dev_private;
+	unsigned long reg = (pipe == PIPE_A ? PALETTE_A : PALETTE_B);
+	u32 *array;
+	int i;
+
+	if (!i915_pipe_enabled(dev, pipe))
+		return;
+
+	if (pipe == PIPE_A)
+		array = dev_priv->save_palette_a;
+	else
+		array = dev_priv->save_palette_b;
+
+	for(i = 0; i < 256; i++)
+		array[i] = I915_READ(reg + (i << 2));
+}
+
+static void i915_restore_palette(struct drm_device *dev, enum pipe pipe)
+{
+	struct drm_i915_private *dev_priv = dev->dev_private;
+	unsigned long reg = (pipe == PIPE_A ? PALETTE_A : PALETTE_B);
+	u32 *array;
+	int i;
+
+	if (!i915_pipe_enabled(dev, pipe))
+		return;
+
+	if (pipe == PIPE_A)
+		array = dev_priv->save_palette_a;
+	else
+		array = dev_priv->save_palette_b;
+
+	for(i = 0; i < 256; i++)
+		I915_WRITE(reg + (i << 2), array[i]);
+}
+
+static u8 i915_read_indexed(struct drm_device *dev, u16 index_port, u16 data_port, u8 reg)
+{
+	struct drm_i915_private *dev_priv = dev->dev_private;
+
+	I915_WRITE8(index_port, reg);
+	return I915_READ8(data_port);
+}
+
+static u8 i915_read_ar(struct drm_device *dev, u16 st01, u8 reg, u16 palette_enable)
+{
+	struct drm_i915_private *dev_priv = dev->dev_private;
+
+	I915_READ8(st01);
+	I915_WRITE8(VGA_AR_INDEX, palette_enable | reg);
+	return I915_READ8(VGA_AR_DATA_READ);
+}
+
+static void i915_write_ar(struct drm_device *dev, u16 st01, u8 reg, u8 val, u16 palette_enable)
+{
+	struct drm_i915_private *dev_priv = dev->dev_private;
+
+	I915_READ8(st01);
+	I915_WRITE8(VGA_AR_INDEX, palette_enable | reg);
+	I915_WRITE8(VGA_AR_DATA_WRITE, val);
+}
+
+static void i915_write_indexed(struct drm_device *dev, u16 index_port, u16 data_port, u8 reg, u8 val)
+{
+	struct drm_i915_private *dev_priv = dev->dev_private;
+
+	I915_WRITE8(index_port, reg);
+	I915_WRITE8(data_port, val);
+}
+
+static void i915_save_vga(struct drm_device *dev)
+{
+	struct drm_i915_private *dev_priv = dev->dev_private;
+	int i;
+	u16 cr_index, cr_data, st01;
+
+	/* VGA color palette registers */
+	dev_priv->saveDACMASK = I915_READ8(VGA_DACMASK);
+	/* DACCRX automatically increments during read */
+	I915_WRITE8(VGA_DACRX, 0);
+	/* Read 3 bytes of color data from each index */
+	for (i = 0; i < 256 * 3; i++)
+		dev_priv->saveDACDATA[i] = I915_READ8(VGA_DACDATA);
+
+	/* MSR bits */
+	dev_priv->saveMSR = I915_READ8(VGA_MSR_READ);
+	if (dev_priv->saveMSR & VGA_MSR_CGA_MODE) {
+		cr_index = VGA_CR_INDEX_CGA;
+		cr_data = VGA_CR_DATA_CGA;
+		st01 = VGA_ST01_CGA;
+	} else {
+		cr_index = VGA_CR_INDEX_MDA;
+		cr_data = VGA_CR_DATA_MDA;
+		st01 = VGA_ST01_MDA;
+	}
+
+	/* CRT controller regs */
+	i915_write_indexed(dev, cr_index, cr_data, 0x11,
+			   i915_read_indexed(dev, cr_index, cr_data, 0x11) &
+			   (~0x80));
+	for (i = 0; i <= 0x24; i++)
+		dev_priv->saveCR[i] =
+			i915_read_indexed(dev, cr_index, cr_data, i);
+	/* Make sure we don't turn off CR group 0 writes */
+	dev_priv->saveCR[0x11] &= ~0x80;
+
+	/* Attribute controller registers */
+	I915_READ8(st01);
+	dev_priv->saveAR_INDEX = I915_READ8(VGA_AR_INDEX);
+	for (i = 0; i <= 0x14; i++)
+		dev_priv->saveAR[i] = i915_read_ar(dev, st01, i, 0);
+	I915_READ8(st01);
+	I915_WRITE8(VGA_AR_INDEX, dev_priv->saveAR_INDEX);
+	I915_READ8(st01);
+
+	/* Graphics controller registers */
+	for (i = 0; i < 9; i++)
+		dev_priv->saveGR[i] =
+			i915_read_indexed(dev, VGA_GR_INDEX, VGA_GR_DATA, i);
+
+	dev_priv->saveGR[0x10] =
+		i915_read_indexed(dev, VGA_GR_INDEX, VGA_GR_DATA, 0x10);
+	dev_priv->saveGR[0x11] =
+		i915_read_indexed(dev, VGA_GR_INDEX, VGA_GR_DATA, 0x11);
+	dev_priv->saveGR[0x18] =
+		i915_read_indexed(dev, VGA_GR_INDEX, VGA_GR_DATA, 0x18);
+
+	/* Sequencer registers */
+	for (i = 0; i < 8; i++)
+		dev_priv->saveSR[i] =
+			i915_read_indexed(dev, VGA_SR_INDEX, VGA_SR_DATA, i);
+}
+
+static void i915_restore_vga(struct drm_device *dev)
+{
+	struct drm_i915_private *dev_priv = dev->dev_private;
+	int i;
+	u16 cr_index, cr_data, st01;
+
+	/* MSR bits */
+	I915_WRITE8(VGA_MSR_WRITE, dev_priv->saveMSR);
+	if (dev_priv->saveMSR & VGA_MSR_CGA_MODE) {
+		cr_index = VGA_CR_INDEX_CGA;
+		cr_data = VGA_CR_DATA_CGA;
+		st01 = VGA_ST01_CGA;
+	} else {
+		cr_index = VGA_CR_INDEX_MDA;
+		cr_data = VGA_CR_DATA_MDA;
+		st01 = VGA_ST01_MDA;
+	}
+
+	/* Sequencer registers, don't write SR07 */
+	for (i = 0; i < 7; i++)
+		i915_write_indexed(dev, VGA_SR_INDEX, VGA_SR_DATA, i,
+				   dev_priv->saveSR[i]);
+
+	/* CRT controller regs */
+	/* Enable CR group 0 writes */
+	i915_write_indexed(dev, cr_index, cr_data, 0x11, dev_priv->saveCR[0x11]);
+	for (i = 0; i <= 0x24; i++)
+		i915_write_indexed(dev, cr_index, cr_data, i, dev_priv->saveCR[i]);
+
+	/* Graphics controller regs */
+	for (i = 0; i < 9; i++)
+		i915_write_indexed(dev, VGA_GR_INDEX, VGA_GR_DATA, i,
+				   dev_priv->saveGR[i]);
+
+	i915_write_indexed(dev, VGA_GR_INDEX, VGA_GR_DATA, 0x10,
+			   dev_priv->saveGR[0x10]);
+	i915_write_indexed(dev, VGA_GR_INDEX, VGA_GR_DATA, 0x11,
+			   dev_priv->saveGR[0x11]);
+	i915_write_indexed(dev, VGA_GR_INDEX, VGA_GR_DATA, 0x18,
+			   dev_priv->saveGR[0x18]);
+
+	/* Attribute controller registers */
+	I915_READ8(st01); /* switch back to index mode */
+	for (i = 0; i <= 0x14; i++)
+		i915_write_ar(dev, st01, i, dev_priv->saveAR[i], 0);
+	I915_READ8(st01); /* switch back to index mode */
+	I915_WRITE8(VGA_AR_INDEX, dev_priv->saveAR_INDEX | 0x20);
+	I915_READ8(st01);
+
+	/* VGA color palette registers */
+	I915_WRITE8(VGA_DACMASK, dev_priv->saveDACMASK);
+	/* DACCRX automatically increments during read */
+	I915_WRITE8(VGA_DACWX, 0);
+	/* Read 3 bytes of color data from each index */
+	for (i = 0; i < 256 * 3; i++)
+		I915_WRITE8(VGA_DACDATA, dev_priv->saveDACDATA[i]);
+
+}
+
+int i915_save_state(struct drm_device *dev)
+{
+	struct drm_i915_private *dev_priv = dev->dev_private;
+	int i;
+
+	pci_read_config_byte(dev->pdev, LBB, &dev_priv->saveLBB);
+
+	/* Display arbitration control */
+	dev_priv->saveDSPARB = I915_READ(DSPARB);
+
+	/* Pipe & plane A info */
+	dev_priv->savePIPEACONF = I915_READ(PIPEACONF);
+	dev_priv->savePIPEASRC = I915_READ(PIPEASRC);
+	dev_priv->saveFPA0 = I915_READ(FPA0);
+	dev_priv->saveFPA1 = I915_READ(FPA1);
+	dev_priv->saveDPLL_A = I915_READ(DPLL_A);
+	if (IS_I965G(dev))
+		dev_priv->saveDPLL_A_MD = I915_READ(DPLL_A_MD);
+	dev_priv->saveHTOTAL_A = I915_READ(HTOTAL_A);
+	dev_priv->saveHBLANK_A = I915_READ(HBLANK_A);
+	dev_priv->saveHSYNC_A = I915_READ(HSYNC_A);
+	dev_priv->saveVTOTAL_A = I915_READ(VTOTAL_A);
+	dev_priv->saveVBLANK_A = I915_READ(VBLANK_A);
+	dev_priv->saveVSYNC_A = I915_READ(VSYNC_A);
+	dev_priv->saveBCLRPAT_A = I915_READ(BCLRPAT_A);
+
+	dev_priv->saveDSPACNTR = I915_READ(DSPACNTR);
+	dev_priv->saveDSPASTRIDE = I915_READ(DSPASTRIDE);
+	dev_priv->saveDSPASIZE = I915_READ(DSPASIZE);
+	dev_priv->saveDSPAPOS = I915_READ(DSPAPOS);
+	dev_priv->saveDSPAADDR = I915_READ(DSPAADDR);
+	if (IS_I965G(dev)) {
+		dev_priv->saveDSPASURF = I915_READ(DSPASURF);
+		dev_priv->saveDSPATILEOFF = I915_READ(DSPATILEOFF);
+	}
+	i915_save_palette(dev, PIPE_A);
+	dev_priv->savePIPEASTAT = I915_READ(PIPEASTAT);
+
+	/* Pipe & plane B info */
+	dev_priv->savePIPEBCONF = I915_READ(PIPEBCONF);
+	dev_priv->savePIPEBSRC = I915_READ(PIPEBSRC);
+	dev_priv->saveFPB0 = I915_READ(FPB0);
+	dev_priv->saveFPB1 = I915_READ(FPB1);
+	dev_priv->saveDPLL_B = I915_READ(DPLL_B);
+	if (IS_I965G(dev))
+		dev_priv->saveDPLL_B_MD = I915_READ(DPLL_B_MD);
+	dev_priv->saveHTOTAL_B = I915_READ(HTOTAL_B);
+	dev_priv->saveHBLANK_B = I915_READ(HBLANK_B);
+	dev_priv->saveHSYNC_B = I915_READ(HSYNC_B);
+	dev_priv->saveVTOTAL_B = I915_READ(VTOTAL_B);
+	dev_priv->saveVBLANK_B = I915_READ(VBLANK_B);
+	dev_priv->saveVSYNC_B = I915_READ(VSYNC_B);
+	dev_priv->saveBCLRPAT_A = I915_READ(BCLRPAT_A);
+
+	dev_priv->saveDSPBCNTR = I915_READ(DSPBCNTR);
+	dev_priv->saveDSPBSTRIDE = I915_READ(DSPBSTRIDE);
+	dev_priv->saveDSPBSIZE = I915_READ(DSPBSIZE);
+	dev_priv->saveDSPBPOS = I915_READ(DSPBPOS);
+	dev_priv->saveDSPBADDR = I915_READ(DSPBADDR);
+	if (IS_I965GM(dev) || IS_GM45(dev)) {
+		dev_priv->saveDSPBSURF = I915_READ(DSPBSURF);
+		dev_priv->saveDSPBTILEOFF = I915_READ(DSPBTILEOFF);
+	}
+	i915_save_palette(dev, PIPE_B);
+	dev_priv->savePIPEBSTAT = I915_READ(PIPEBSTAT);
+
+	/* CRT state */
+	dev_priv->saveADPA = I915_READ(ADPA);
+
+	/* LVDS state */
+	dev_priv->savePP_CONTROL = I915_READ(PP_CONTROL);
+	dev_priv->savePFIT_PGM_RATIOS = I915_READ(PFIT_PGM_RATIOS);
+	dev_priv->saveBLC_PWM_CTL = I915_READ(BLC_PWM_CTL);
+	if (IS_I965G(dev))
+		dev_priv->saveBLC_PWM_CTL2 = I915_READ(BLC_PWM_CTL2);
+	if (IS_MOBILE(dev) && !IS_I830(dev))
+		dev_priv->saveLVDS = I915_READ(LVDS);
+	if (!IS_I830(dev) && !IS_845G(dev))
+		dev_priv->savePFIT_CONTROL = I915_READ(PFIT_CONTROL);
+	dev_priv->savePP_ON_DELAYS = I915_READ(PP_ON_DELAYS);
+	dev_priv->savePP_OFF_DELAYS = I915_READ(PP_OFF_DELAYS);
+	dev_priv->savePP_DIVISOR = I915_READ(PP_DIVISOR);
+
+	/* FIXME: save TV & SDVO state */
+
+	/* FBC state */
+	dev_priv->saveFBC_CFB_BASE = I915_READ(FBC_CFB_BASE);
+	dev_priv->saveFBC_LL_BASE = I915_READ(FBC_LL_BASE);
+	dev_priv->saveFBC_CONTROL2 = I915_READ(FBC_CONTROL2);
+	dev_priv->saveFBC_CONTROL = I915_READ(FBC_CONTROL);
+
+	/* Interrupt state */
+	dev_priv->saveIIR = I915_READ(IIR);
+	dev_priv->saveIER = I915_READ(IER);
+	dev_priv->saveIMR = I915_READ(IMR);
+
+	/* VGA state */
+	dev_priv->saveVGA0 = I915_READ(VGA0);
+	dev_priv->saveVGA1 = I915_READ(VGA1);
+	dev_priv->saveVGA_PD = I915_READ(VGA_PD);
+	dev_priv->saveVGACNTRL = I915_READ(VGACNTRL);
+
+	/* Clock gating state */
+	dev_priv->saveD_STATE = I915_READ(D_STATE);
+	dev_priv->saveCG_2D_DIS = I915_READ(CG_2D_DIS);
+
+	/* Cache mode state */
+	dev_priv->saveCACHE_MODE_0 = I915_READ(CACHE_MODE_0);
+
+	/* Memory Arbitration state */
+	dev_priv->saveMI_ARB_STATE = I915_READ(MI_ARB_STATE);
+
+	/* Scratch space */
+	for (i = 0; i < 16; i++) {
+		dev_priv->saveSWF0[i] = I915_READ(SWF00 + (i << 2));
+		dev_priv->saveSWF1[i] = I915_READ(SWF10 + (i << 2));
+	}
+	for (i = 0; i < 3; i++)
+		dev_priv->saveSWF2[i] = I915_READ(SWF30 + (i << 2));
+
+	i915_save_vga(dev);
+
+	return 0;
+}
+
+int i915_restore_state(struct drm_device *dev)
+{
+	struct drm_i915_private *dev_priv = dev->dev_private;
+	int i;
+
+	pci_write_config_byte(dev->pdev, LBB, dev_priv->saveLBB);
+
+	I915_WRITE(DSPARB, dev_priv->saveDSPARB);
+
+	/* Pipe & plane A info */
+	/* Prime the clock */
+	if (dev_priv->saveDPLL_A & DPLL_VCO_ENABLE) {
+		I915_WRITE(DPLL_A, dev_priv->saveDPLL_A &
+			   ~DPLL_VCO_ENABLE);
+		DRM_UDELAY(150);
+	}
+	I915_WRITE(FPA0, dev_priv->saveFPA0);
+	I915_WRITE(FPA1, dev_priv->saveFPA1);
+	/* Actually enable it */
+	I915_WRITE(DPLL_A, dev_priv->saveDPLL_A);
+	DRM_UDELAY(150);
+	if (IS_I965G(dev))
+		I915_WRITE(DPLL_A_MD, dev_priv->saveDPLL_A_MD);
+	DRM_UDELAY(150);
+
+	/* Restore mode */
+	I915_WRITE(HTOTAL_A, dev_priv->saveHTOTAL_A);
+	I915_WRITE(HBLANK_A, dev_priv->saveHBLANK_A);
+	I915_WRITE(HSYNC_A, dev_priv->saveHSYNC_A);
+	I915_WRITE(VTOTAL_A, dev_priv->saveVTOTAL_A);
+	I915_WRITE(VBLANK_A, dev_priv->saveVBLANK_A);
+	I915_WRITE(VSYNC_A, dev_priv->saveVSYNC_A);
+	I915_WRITE(BCLRPAT_A, dev_priv->saveBCLRPAT_A);
+
+	/* Restore plane info */
+	I915_WRITE(DSPASIZE, dev_priv->saveDSPASIZE);
+	I915_WRITE(DSPAPOS, dev_priv->saveDSPAPOS);
+	I915_WRITE(PIPEASRC, dev_priv->savePIPEASRC);
+	I915_WRITE(DSPAADDR, dev_priv->saveDSPAADDR);
+	I915_WRITE(DSPASTRIDE, dev_priv->saveDSPASTRIDE);
+	if (IS_I965G(dev)) {
+		I915_WRITE(DSPASURF, dev_priv->saveDSPASURF);
+		I915_WRITE(DSPATILEOFF, dev_priv->saveDSPATILEOFF);
+	}
+
+	I915_WRITE(PIPEACONF, dev_priv->savePIPEACONF);
+
+	i915_restore_palette(dev, PIPE_A);
+	/* Enable the plane */
+	I915_WRITE(DSPACNTR, dev_priv->saveDSPACNTR);
+	I915_WRITE(DSPAADDR, I915_READ(DSPAADDR));
+
+	/* Pipe & plane B info */
+	if (dev_priv->saveDPLL_B & DPLL_VCO_ENABLE) {
+		I915_WRITE(DPLL_B, dev_priv->saveDPLL_B &
+			   ~DPLL_VCO_ENABLE);
+		DRM_UDELAY(150);
+	}
+	I915_WRITE(FPB0, dev_priv->saveFPB0);
+	I915_WRITE(FPB1, dev_priv->saveFPB1);
+	/* Actually enable it */
+	I915_WRITE(DPLL_B, dev_priv->saveDPLL_B);
+	DRM_UDELAY(150);
+	if (IS_I965G(dev))
+		I915_WRITE(DPLL_B_MD, dev_priv->saveDPLL_B_MD);
+	DRM_UDELAY(150);
+
+	/* Restore mode */
+	I915_WRITE(HTOTAL_B, dev_priv->saveHTOTAL_B);
+	I915_WRITE(HBLANK_B, dev_priv->saveHBLANK_B);
+	I915_WRITE(HSYNC_B, dev_priv->saveHSYNC_B);
+	I915_WRITE(VTOTAL_B, dev_priv->saveVTOTAL_B);
+	I915_WRITE(VBLANK_B, dev_priv->saveVBLANK_B);
+	I915_WRITE(VSYNC_B, dev_priv->saveVSYNC_B);
+	I915_WRITE(BCLRPAT_B, dev_priv->saveBCLRPAT_B);
+
+	/* Restore plane info */
+	I915_WRITE(DSPBSIZE, dev_priv->saveDSPBSIZE);
+	I915_WRITE(DSPBPOS, dev_priv->saveDSPBPOS);
+	I915_WRITE(PIPEBSRC, dev_priv->savePIPEBSRC);
+	I915_WRITE(DSPBADDR, dev_priv->saveDSPBADDR);
+	I915_WRITE(DSPBSTRIDE, dev_priv->saveDSPBSTRIDE);
+	if (IS_I965G(dev)) {
+		I915_WRITE(DSPBSURF, dev_priv->saveDSPBSURF);
+		I915_WRITE(DSPBTILEOFF, dev_priv->saveDSPBTILEOFF);
+	}
+
+	I915_WRITE(PIPEBCONF, dev_priv->savePIPEBCONF);
+
+	i915_restore_palette(dev, PIPE_B);
+	/* Enable the plane */
+	I915_WRITE(DSPBCNTR, dev_priv->saveDSPBCNTR);
+	I915_WRITE(DSPBADDR, I915_READ(DSPBADDR));
+
+	/* CRT state */
+	I915_WRITE(ADPA, dev_priv->saveADPA);
+
+	/* LVDS state */
+	if (IS_I965G(dev))
+		I915_WRITE(BLC_PWM_CTL2, dev_priv->saveBLC_PWM_CTL2);
+	if (IS_MOBILE(dev) && !IS_I830(dev))
+		I915_WRITE(LVDS, dev_priv->saveLVDS);
+	if (!IS_I830(dev) && !IS_845G(dev))
+		I915_WRITE(PFIT_CONTROL, dev_priv->savePFIT_CONTROL);
+
+	I915_WRITE(PFIT_PGM_RATIOS, dev_priv->savePFIT_PGM_RATIOS);
+	I915_WRITE(BLC_PWM_CTL, dev_priv->saveBLC_PWM_CTL);
+	I915_WRITE(PP_ON_DELAYS, dev_priv->savePP_ON_DELAYS);
+	I915_WRITE(PP_OFF_DELAYS, dev_priv->savePP_OFF_DELAYS);
+	I915_WRITE(PP_DIVISOR, dev_priv->savePP_DIVISOR);
+	I915_WRITE(PP_CONTROL, dev_priv->savePP_CONTROL);
+
+	/* FIXME: restore TV & SDVO state */
+
+	/* FBC info */
+	I915_WRITE(FBC_CFB_BASE, dev_priv->saveFBC_CFB_BASE);
+	I915_WRITE(FBC_LL_BASE, dev_priv->saveFBC_LL_BASE);
+	I915_WRITE(FBC_CONTROL2, dev_priv->saveFBC_CONTROL2);
+	I915_WRITE(FBC_CONTROL, dev_priv->saveFBC_CONTROL);
+
+	/* VGA state */
+	I915_WRITE(VGACNTRL, dev_priv->saveVGACNTRL);
+	I915_WRITE(VGA0, dev_priv->saveVGA0);
+	I915_WRITE(VGA1, dev_priv->saveVGA1);
+	I915_WRITE(VGA_PD, dev_priv->saveVGA_PD);
+	DRM_UDELAY(150);
+
+	/* Clock gating state */
+	I915_WRITE (D_STATE, dev_priv->saveD_STATE);
+	I915_WRITE (CG_2D_DIS, dev_priv->saveCG_2D_DIS);
+
+	/* Cache mode state */
+	I915_WRITE (CACHE_MODE_0, dev_priv->saveCACHE_MODE_0 | 0xffff0000);
+
+	/* Memory arbitration state */
+	I915_WRITE (MI_ARB_STATE, dev_priv->saveMI_ARB_STATE | 0xffff0000);
+
+	for (i = 0; i < 16; i++) {
+		I915_WRITE(SWF00 + (i << 2), dev_priv->saveSWF0[i]);
+		I915_WRITE(SWF10 + (i << 2), dev_priv->saveSWF1[i+7]);
+	}
+	for (i = 0; i < 3; i++)
+		I915_WRITE(SWF30 + (i << 2), dev_priv->saveSWF2[i]);
+
+	i915_restore_vga(dev);
+
+	return 0;
+}
+
diff --git a/drivers/gpu/drm/mga/mga_drv.c b/drivers/gpu/drm/mga/mga_drv.c
index 5572939..97ee566 100644
--- a/drivers/gpu/drm/mga/mga_drv.c
+++ b/drivers/gpu/drm/mga/mga_drv.c
@@ -45,15 +45,16 @@
 static struct drm_driver driver = {
 	.driver_features =
 	    DRIVER_USE_AGP | DRIVER_USE_MTRR | DRIVER_PCI_DMA |
-	    DRIVER_HAVE_DMA | DRIVER_HAVE_IRQ | DRIVER_IRQ_SHARED |
-	    DRIVER_IRQ_VBL,
+	    DRIVER_HAVE_DMA | DRIVER_HAVE_IRQ | DRIVER_IRQ_SHARED,
 	.dev_priv_size = sizeof(drm_mga_buf_priv_t),
 	.load = mga_driver_load,
 	.unload = mga_driver_unload,
 	.lastclose = mga_driver_lastclose,
 	.dma_quiescent = mga_driver_dma_quiescent,
 	.device_is_agp = mga_driver_device_is_agp,
-	.vblank_wait = mga_driver_vblank_wait,
+	.get_vblank_counter = mga_get_vblank_counter,
+	.enable_vblank = mga_enable_vblank,
+	.disable_vblank = mga_disable_vblank,
 	.irq_preinstall = mga_driver_irq_preinstall,
 	.irq_postinstall = mga_driver_irq_postinstall,
 	.irq_uninstall = mga_driver_irq_uninstall,
@@ -64,20 +65,20 @@
 	.ioctls = mga_ioctls,
 	.dma_ioctl = mga_dma_buffers,
 	.fops = {
-		 .owner = THIS_MODULE,
-		 .open = drm_open,
-		 .release = drm_release,
-		 .ioctl = drm_ioctl,
-		 .mmap = drm_mmap,
-		 .poll = drm_poll,
-		 .fasync = drm_fasync,
+		.owner = THIS_MODULE,
+		.open = drm_open,
+		.release = drm_release,
+		.ioctl = drm_ioctl,
+		.mmap = drm_mmap,
+		.poll = drm_poll,
+		.fasync = drm_fasync,
 #ifdef CONFIG_COMPAT
-		 .compat_ioctl = mga_compat_ioctl,
+		.compat_ioctl = mga_compat_ioctl,
 #endif
-		 },
+	},
 	.pci_driver = {
-		 .name = DRIVER_NAME,
-		 .id_table = pciidlist,
+		.name = DRIVER_NAME,
+		.id_table = pciidlist,
 	},
 
 	.name = DRIVER_NAME,
diff --git a/drivers/gpu/drm/mga/mga_drv.h b/drivers/gpu/drm/mga/mga_drv.h
index f6ebd24..88257c2 100644
--- a/drivers/gpu/drm/mga/mga_drv.h
+++ b/drivers/gpu/drm/mga/mga_drv.h
@@ -120,6 +120,7 @@
 	u32 clear_cmd;
 	u32 maccess;
 
+	atomic_t vbl_received;          /**< Number of vblanks received. */
 	wait_queue_head_t fence_queue;
 	atomic_t last_fence_retired;
 	u32 next_fence_to_post;
@@ -181,11 +182,14 @@
 extern int mga_warp_init(drm_mga_private_t * dev_priv);
 
 				/* mga_irq.c */
+extern int mga_enable_vblank(struct drm_device *dev, int crtc);
+extern void mga_disable_vblank(struct drm_device *dev, int crtc);
+extern u32 mga_get_vblank_counter(struct drm_device *dev, int crtc);
 extern int mga_driver_fence_wait(struct drm_device * dev, unsigned int *sequence);
 extern int mga_driver_vblank_wait(struct drm_device * dev, unsigned int *sequence);
 extern irqreturn_t mga_driver_irq_handler(DRM_IRQ_ARGS);
 extern void mga_driver_irq_preinstall(struct drm_device * dev);
-extern void mga_driver_irq_postinstall(struct drm_device * dev);
+extern int mga_driver_irq_postinstall(struct drm_device *dev);
 extern void mga_driver_irq_uninstall(struct drm_device * dev);
 extern long mga_compat_ioctl(struct file *filp, unsigned int cmd,
 			     unsigned long arg);
diff --git a/drivers/gpu/drm/mga/mga_irq.c b/drivers/gpu/drm/mga/mga_irq.c
index 9302cb8..bab42f4 100644
--- a/drivers/gpu/drm/mga/mga_irq.c
+++ b/drivers/gpu/drm/mga/mga_irq.c
@@ -1,5 +1,6 @@
 /* mga_irq.c -- IRQ handling for radeon -*- linux-c -*-
- *
+ */
+/*
  * Copyright (C) The Weather Channel, Inc.  2002.  All Rights Reserved.
  *
  * The Weather Channel (TM) funded Tungsten Graphics to develop the
@@ -35,6 +36,18 @@
 #include "mga_drm.h"
 #include "mga_drv.h"
 
+u32 mga_get_vblank_counter(struct drm_device *dev, int crtc)
+{
+	const drm_mga_private_t *const dev_priv =
+		(drm_mga_private_t *) dev->dev_private;
+
+	if (crtc != 0)
+		return 0;
+
+	return atomic_read(&dev_priv->vbl_received);
+}
+
+
 irqreturn_t mga_driver_irq_handler(DRM_IRQ_ARGS)
 {
 	struct drm_device *dev = (struct drm_device *) arg;
@@ -47,9 +60,8 @@
 	/* VBLANK interrupt */
 	if (status & MGA_VLINEPEN) {
 		MGA_WRITE(MGA_ICLEAR, MGA_VLINEICLR);
-		atomic_inc(&dev->vbl_received);
-		DRM_WAKEUP(&dev->vbl_queue);
-		drm_vbl_send_signals(dev);
+		atomic_inc(&dev_priv->vbl_received);
+		drm_handle_vblank(dev, 0);
 		handled = 1;
 	}
 
@@ -58,6 +70,7 @@
 		const u32 prim_start = MGA_READ(MGA_PRIMADDRESS);
 		const u32 prim_end = MGA_READ(MGA_PRIMEND);
 
+
 		MGA_WRITE(MGA_ICLEAR, MGA_SOFTRAPICLR);
 
 		/* In addition to clearing the interrupt-pending bit, we
@@ -72,28 +85,39 @@
 		handled = 1;
 	}
 
-	if (handled) {
+	if (handled)
 		return IRQ_HANDLED;
-	}
 	return IRQ_NONE;
 }
 
-int mga_driver_vblank_wait(struct drm_device * dev, unsigned int *sequence)
+int mga_enable_vblank(struct drm_device *dev, int crtc)
 {
-	unsigned int cur_vblank;
-	int ret = 0;
+	drm_mga_private_t *dev_priv = (drm_mga_private_t *) dev->dev_private;
 
-	/* Assume that the user has missed the current sequence number
-	 * by about a day rather than she wants to wait for years
-	 * using vertical blanks...
+	if (crtc != 0) {
+		DRM_ERROR("tried to enable vblank on non-existent crtc %d\n",
+			  crtc);
+		return 0;
+	}
+
+	MGA_WRITE(MGA_IEN, MGA_VLINEIEN | MGA_SOFTRAPEN);
+	return 0;
+}
+
+
+void mga_disable_vblank(struct drm_device *dev, int crtc)
+{
+	if (crtc != 0) {
+		DRM_ERROR("tried to disable vblank on non-existent crtc %d\n",
+			  crtc);
+	}
+
+	/* Do *NOT* disable the vertical refresh interrupt.  MGA doesn't have
+	 * a nice hardware counter that tracks the number of refreshes when
+	 * the interrupt is disabled, and the kernel doesn't know the refresh
+	 * rate to calculate an estimate.
 	 */
-	DRM_WAIT_ON(ret, dev->vbl_queue, 3 * DRM_HZ,
-		    (((cur_vblank = atomic_read(&dev->vbl_received))
-		      - *sequence) <= (1 << 23)));
-
-	*sequence = cur_vblank;
-
-	return ret;
+	/* MGA_WRITE(MGA_IEN, MGA_VLINEIEN | MGA_SOFTRAPEN); */
 }
 
 int mga_driver_fence_wait(struct drm_device * dev, unsigned int *sequence)
@@ -125,14 +149,22 @@
 	MGA_WRITE(MGA_ICLEAR, ~0);
 }
 
-void mga_driver_irq_postinstall(struct drm_device * dev)
+int mga_driver_irq_postinstall(struct drm_device *dev)
 {
 	drm_mga_private_t *dev_priv = (drm_mga_private_t *) dev->dev_private;
+	int ret;
+
+	ret = drm_vblank_init(dev, 1);
+	if (ret)
+		return ret;
 
 	DRM_INIT_WAITQUEUE(&dev_priv->fence_queue);
 
-	/* Turn on vertical blank interrupt and soft trap interrupt. */
-	MGA_WRITE(MGA_IEN, MGA_VLINEIEN | MGA_SOFTRAPEN);
+	/* Turn on soft trap interrupt.  Vertical blank interrupts are enabled
+	 * in mga_enable_vblank.
+	 */
+	MGA_WRITE(MGA_IEN, MGA_SOFTRAPEN);
+	return 0;
 }
 
 void mga_driver_irq_uninstall(struct drm_device * dev)
diff --git a/drivers/gpu/drm/mga/mga_state.c b/drivers/gpu/drm/mga/mga_state.c
index d3f8aad..b710fab 100644
--- a/drivers/gpu/drm/mga/mga_state.c
+++ b/drivers/gpu/drm/mga/mga_state.c
@@ -1022,7 +1022,7 @@
 
 	switch (param->param) {
 	case MGA_PARAM_IRQ_NR:
-		value = dev->irq;
+		value = drm_dev_to_irq(dev);
 		break;
 	case MGA_PARAM_CARD_TYPE:
 		value = dev_priv->chipset;
diff --git a/drivers/gpu/drm/r128/r128_drv.c b/drivers/gpu/drm/r128/r128_drv.c
index 6108e75..3265d53 100644
--- a/drivers/gpu/drm/r128/r128_drv.c
+++ b/drivers/gpu/drm/r128/r128_drv.c
@@ -43,12 +43,13 @@
 static struct drm_driver driver = {
 	.driver_features =
 	    DRIVER_USE_AGP | DRIVER_USE_MTRR | DRIVER_PCI_DMA | DRIVER_SG |
-	    DRIVER_HAVE_DMA | DRIVER_HAVE_IRQ | DRIVER_IRQ_SHARED |
-	    DRIVER_IRQ_VBL,
+	    DRIVER_HAVE_DMA | DRIVER_HAVE_IRQ | DRIVER_IRQ_SHARED,
 	.dev_priv_size = sizeof(drm_r128_buf_priv_t),
 	.preclose = r128_driver_preclose,
 	.lastclose = r128_driver_lastclose,
-	.vblank_wait = r128_driver_vblank_wait,
+	.get_vblank_counter = r128_get_vblank_counter,
+	.enable_vblank = r128_enable_vblank,
+	.disable_vblank = r128_disable_vblank,
 	.irq_preinstall = r128_driver_irq_preinstall,
 	.irq_postinstall = r128_driver_irq_postinstall,
 	.irq_uninstall = r128_driver_irq_uninstall,
@@ -59,21 +60,20 @@
 	.ioctls = r128_ioctls,
 	.dma_ioctl = r128_cce_buffers,
 	.fops = {
-		 .owner = THIS_MODULE,
-		 .open = drm_open,
-		 .release = drm_release,
-		 .ioctl = drm_ioctl,
-		 .mmap = drm_mmap,
-		 .poll = drm_poll,
-		 .fasync = drm_fasync,
+		.owner = THIS_MODULE,
+		.open = drm_open,
+		.release = drm_release,
+		.ioctl = drm_ioctl,
+		.mmap = drm_mmap,
+		.poll = drm_poll,
+		.fasync = drm_fasync,
 #ifdef CONFIG_COMPAT
-		 .compat_ioctl = r128_compat_ioctl,
+		.compat_ioctl = r128_compat_ioctl,
 #endif
 	},
-
 	.pci_driver = {
-		 .name = DRIVER_NAME,
-		 .id_table = pciidlist,
+		.name = DRIVER_NAME,
+		.id_table = pciidlist,
 	},
 
 	.name = DRIVER_NAME,
@@ -87,6 +87,7 @@
 static int __init r128_init(void)
 {
 	driver.num_ioctls = r128_max_ioctl;
+
 	return drm_init(&driver);
 }
 
diff --git a/drivers/gpu/drm/r128/r128_drv.h b/drivers/gpu/drm/r128/r128_drv.h
index 011105e..5898b27 100644
--- a/drivers/gpu/drm/r128/r128_drv.h
+++ b/drivers/gpu/drm/r128/r128_drv.h
@@ -29,7 +29,7 @@
  *    Rickard E. (Rik) Faith <faith@valinux.com>
  *    Kevin E. Martin <martin@valinux.com>
  *    Gareth Hughes <gareth@valinux.com>
- *    Michel Dänzer <daenzerm@student.ethz.ch>
+ *    Michel D�zer <daenzerm@student.ethz.ch>
  */
 
 #ifndef __R128_DRV_H__
@@ -97,6 +97,8 @@
 	u32 crtc_offset;
 	u32 crtc_offset_cntl;
 
+	atomic_t vbl_received;
+
 	u32 color_fmt;
 	unsigned int front_offset;
 	unsigned int front_pitch;
@@ -149,11 +151,12 @@
 extern int r128_do_cce_idle(drm_r128_private_t * dev_priv);
 extern int r128_do_cleanup_cce(struct drm_device * dev);
 
-extern int r128_driver_vblank_wait(struct drm_device * dev, unsigned int *sequence);
-
+extern int r128_enable_vblank(struct drm_device *dev, int crtc);
+extern void r128_disable_vblank(struct drm_device *dev, int crtc);
+extern u32 r128_get_vblank_counter(struct drm_device *dev, int crtc);
 extern irqreturn_t r128_driver_irq_handler(DRM_IRQ_ARGS);
 extern void r128_driver_irq_preinstall(struct drm_device * dev);
-extern void r128_driver_irq_postinstall(struct drm_device * dev);
+extern int r128_driver_irq_postinstall(struct drm_device *dev);
 extern void r128_driver_irq_uninstall(struct drm_device * dev);
 extern void r128_driver_lastclose(struct drm_device * dev);
 extern void r128_driver_preclose(struct drm_device * dev,
diff --git a/drivers/gpu/drm/r128/r128_irq.c b/drivers/gpu/drm/r128/r128_irq.c
index c76fdca..d734901 100644
--- a/drivers/gpu/drm/r128/r128_irq.c
+++ b/drivers/gpu/drm/r128/r128_irq.c
@@ -35,6 +35,16 @@
 #include "r128_drm.h"
 #include "r128_drv.h"
 
+u32 r128_get_vblank_counter(struct drm_device *dev, int crtc)
+{
+	const drm_r128_private_t *dev_priv = dev->dev_private;
+
+	if (crtc != 0)
+		return 0;
+
+	return atomic_read(&dev_priv->vbl_received);
+}
+
 irqreturn_t r128_driver_irq_handler(DRM_IRQ_ARGS)
 {
 	struct drm_device *dev = (struct drm_device *) arg;
@@ -46,30 +56,38 @@
 	/* VBLANK interrupt */
 	if (status & R128_CRTC_VBLANK_INT) {
 		R128_WRITE(R128_GEN_INT_STATUS, R128_CRTC_VBLANK_INT_AK);
-		atomic_inc(&dev->vbl_received);
-		DRM_WAKEUP(&dev->vbl_queue);
-		drm_vbl_send_signals(dev);
+		atomic_inc(&dev_priv->vbl_received);
+		drm_handle_vblank(dev, 0);
 		return IRQ_HANDLED;
 	}
 	return IRQ_NONE;
 }
 
-int r128_driver_vblank_wait(struct drm_device * dev, unsigned int *sequence)
+int r128_enable_vblank(struct drm_device *dev, int crtc)
 {
-	unsigned int cur_vblank;
-	int ret = 0;
+	drm_r128_private_t *dev_priv = dev->dev_private;
 
-	/* Assume that the user has missed the current sequence number
-	 * by about a day rather than she wants to wait for years
-	 * using vertical blanks...
+	if (crtc != 0) {
+		DRM_ERROR("%s:  bad crtc %d\n", __func__, crtc);
+		return -EINVAL;
+	}
+
+	R128_WRITE(R128_GEN_INT_CNTL, R128_CRTC_VBLANK_INT_EN);
+	return 0;
+}
+
+void r128_disable_vblank(struct drm_device *dev, int crtc)
+{
+	if (crtc != 0)
+		DRM_ERROR("%s:  bad crtc %d\n", __func__, crtc);
+
+	/*
+	 * FIXME: implement proper interrupt disable by using the vblank
+	 * counter register (if available)
+	 *
+	 * R128_WRITE(R128_GEN_INT_CNTL,
+	 *            R128_READ(R128_GEN_INT_CNTL) & ~R128_CRTC_VBLANK_INT_EN);
 	 */
-	DRM_WAIT_ON(ret, dev->vbl_queue, 3 * DRM_HZ,
-		    (((cur_vblank = atomic_read(&dev->vbl_received))
-		      - *sequence) <= (1 << 23)));
-
-	*sequence = cur_vblank;
-
-	return ret;
 }
 
 void r128_driver_irq_preinstall(struct drm_device * dev)
@@ -82,12 +100,9 @@
 	R128_WRITE(R128_GEN_INT_STATUS, R128_CRTC_VBLANK_INT_AK);
 }
 
-void r128_driver_irq_postinstall(struct drm_device * dev)
+int r128_driver_irq_postinstall(struct drm_device *dev)
 {
-	drm_r128_private_t *dev_priv = (drm_r128_private_t *) dev->dev_private;
-
-	/* Turn on VBL interrupt */
-	R128_WRITE(R128_GEN_INT_CNTL, R128_CRTC_VBLANK_INT_EN);
+	return drm_vblank_init(dev, 1);
 }
 
 void r128_driver_irq_uninstall(struct drm_device * dev)
diff --git a/drivers/gpu/drm/r128/r128_state.c b/drivers/gpu/drm/r128/r128_state.c
index 51a9afc..f7a5b57 100644
--- a/drivers/gpu/drm/r128/r128_state.c
+++ b/drivers/gpu/drm/r128/r128_state.c
@@ -1629,7 +1629,7 @@
 
 	switch (param->param) {
 	case R128_PARAM_IRQ_NR:
-		value = dev->irq;
+		value = drm_dev_to_irq(dev);
 		break;
 	default:
 		return -EINVAL;
diff --git a/drivers/gpu/drm/radeon/radeon_cp.c b/drivers/gpu/drm/radeon/radeon_cp.c
index 248ab4a..59a2132 100644
--- a/drivers/gpu/drm/radeon/radeon_cp.c
+++ b/drivers/gpu/drm/radeon/radeon_cp.c
@@ -71,7 +71,8 @@
 
 static u32 IGP_READ_MCIND(drm_radeon_private_t *dev_priv, int addr)
 {
-	if ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690)
+	if (((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690) ||
+	    ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS740))
 		return RS690_READ_MCIND(dev_priv, addr);
 	else
 		return RS480_READ_MCIND(dev_priv, addr);
@@ -82,7 +83,8 @@
 
 	if ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RV515)
 		return R500_READ_MCIND(dev_priv, RV515_MC_FB_LOCATION);
-	else if ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690)
+	else if (((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690) ||
+		 ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS740))
 		return RS690_READ_MCIND(dev_priv, RS690_MC_FB_LOCATION);
 	else if ((dev_priv->flags & RADEON_FAMILY_MASK) > CHIP_RV515)
 		return R500_READ_MCIND(dev_priv, R520_MC_FB_LOCATION);
@@ -94,7 +96,8 @@
 {
 	if ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RV515)
 		R500_WRITE_MCIND(RV515_MC_FB_LOCATION, fb_loc);
-	else if ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690)
+	else if (((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690) ||
+		 ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS740))
 		RS690_WRITE_MCIND(RS690_MC_FB_LOCATION, fb_loc);
 	else if ((dev_priv->flags & RADEON_FAMILY_MASK) > CHIP_RV515)
 		R500_WRITE_MCIND(R520_MC_FB_LOCATION, fb_loc);
@@ -106,7 +109,8 @@
 {
 	if ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RV515)
 		R500_WRITE_MCIND(RV515_MC_AGP_LOCATION, agp_loc);
-	else if ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690)
+	else if (((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690) ||
+		 ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS740))
 		RS690_WRITE_MCIND(RS690_MC_AGP_LOCATION, agp_loc);
 	else if ((dev_priv->flags & RADEON_FAMILY_MASK) > CHIP_RV515)
 		R500_WRITE_MCIND(R520_MC_AGP_LOCATION, agp_loc);
@@ -122,15 +126,17 @@
 	if ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RV515) {
 		R500_WRITE_MCIND(RV515_MC_AGP_BASE, agp_base_lo);
 		R500_WRITE_MCIND(RV515_MC_AGP_BASE_2, agp_base_hi);
-	} else if ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690) {
+	} else if (((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690) ||
+		 ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS740)) {
 		RS690_WRITE_MCIND(RS690_MC_AGP_BASE, agp_base_lo);
 		RS690_WRITE_MCIND(RS690_MC_AGP_BASE_2, agp_base_hi);
 	} else if ((dev_priv->flags & RADEON_FAMILY_MASK) > CHIP_RV515) {
 		R500_WRITE_MCIND(R520_MC_AGP_BASE, agp_base_lo);
 		R500_WRITE_MCIND(R520_MC_AGP_BASE_2, agp_base_hi);
-	} else if ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS480) {
+	} else if (((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS400) ||
+		   ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS480)) {
 		RADEON_WRITE(RADEON_AGP_BASE, agp_base_lo);
-		RADEON_WRITE(RS480_AGP_BASE_2, 0);
+		RADEON_WRITE(RS480_AGP_BASE_2, agp_base_hi);
 	} else {
 		RADEON_WRITE(RADEON_AGP_BASE, agp_base_lo);
 		if ((dev_priv->flags & RADEON_FAMILY_MASK) >= CHIP_R200)
@@ -347,6 +353,7 @@
 		   ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_R350) ||
 		   ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RV350) ||
 		   ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RV380) ||
+		   ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS400) ||
 		   ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS480)) {
 		DRM_INFO("Loading R300 Microcode\n");
 		for (i = 0; i < 256; i++) {
@@ -356,6 +363,7 @@
 				     R300_cp_microcode[i][0]);
 		}
 	} else if (((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_R420) ||
+		   ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_R423) ||
 		   ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RV410)) {
 		DRM_INFO("Loading R400 Microcode\n");
 		for (i = 0; i < 256; i++) {
@@ -364,8 +372,9 @@
 			RADEON_WRITE(RADEON_CP_ME_RAM_DATAL,
 				     R420_cp_microcode[i][0]);
 		}
-	} else if ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690) {
-		DRM_INFO("Loading RS690 Microcode\n");
+	} else if (((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690) ||
+		   ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS740)) {
+		DRM_INFO("Loading RS690/RS740 Microcode\n");
 		for (i = 0; i < 256; i++) {
 			RADEON_WRITE(RADEON_CP_ME_RAM_DATAH,
 				     RS690_cp_microcode[i][1]);
@@ -626,8 +635,6 @@
 		     dev_priv->ring.size_l2qw);
 #endif
 
-	/* Start with assuming that writeback doesn't work */
-	dev_priv->writeback_works = 0;
 
 	/* Initialize the scratch register pointer.  This will cause
 	 * the scratch register values to be written out to memory
@@ -646,8 +653,18 @@
 	RADEON_WRITE(RADEON_SCRATCH_UMSK, 0x7);
 
 	/* Turn on bus mastering */
-	tmp = RADEON_READ(RADEON_BUS_CNTL) & ~RADEON_BUS_MASTER_DIS;
-	RADEON_WRITE(RADEON_BUS_CNTL, tmp);
+	if (((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS400) ||
+	    ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690) ||
+	    ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS740)) {
+		/* rs400, rs690/rs740 */
+		tmp = RADEON_READ(RADEON_BUS_CNTL) & ~RS400_BUS_MASTER_DIS;
+		RADEON_WRITE(RADEON_BUS_CNTL, tmp);
+	} else if (!(((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RV380) ||
+		    ((dev_priv->flags & RADEON_FAMILY_MASK) >= CHIP_R423))) {
+		/* r1xx, r2xx, r300, r(v)350, r420/r481, rs480 */
+		tmp = RADEON_READ(RADEON_BUS_CNTL) & ~RADEON_BUS_MASTER_DIS;
+		RADEON_WRITE(RADEON_BUS_CNTL, tmp);
+	} /* PCIE cards appears to not need this */
 
 	dev_priv->sarea_priv->last_frame = dev_priv->scratch[0] = 0;
 	RADEON_WRITE(RADEON_LAST_FRAME_REG, dev_priv->sarea_priv->last_frame);
@@ -674,6 +691,9 @@
 {
 	u32 tmp;
 
+	/* Start with assuming that writeback doesn't work */
+	dev_priv->writeback_works = 0;
+
 	/* Writeback doesn't seem to work everywhere, test it here and possibly
 	 * enable it if it appears to work
 	 */
@@ -719,7 +739,8 @@
 			  dev_priv->gart_size);
 
 		temp = IGP_READ_MCIND(dev_priv, RS480_MC_MISC_CNTL);
-		if ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690)
+		if (((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690) ||
+		    ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS740))
 			IGP_WRITE_MCIND(RS480_MC_MISC_CNTL, (RS480_GART_INDEX_REG_EN |
 							     RS690_BLOCK_GFX_D3_EN));
 		else
@@ -812,6 +833,7 @@
 	u32 tmp;
 
 	if (((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690) ||
+	    ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS740) ||
 	    (dev_priv->flags & RADEON_IS_IGPGART)) {
 		radeon_set_igpgart(dev_priv, on);
 		return;
@@ -1286,7 +1308,7 @@
 	radeon_cp_init_ring_buffer(dev, dev_priv);
 
 	radeon_do_engine_reset(dev);
-	radeon_enable_interrupt(dev);
+	radeon_irq_set_state(dev, RADEON_SW_INT_ENABLE, 1);
 
 	DRM_DEBUG("radeon_do_resume_cp() complete\n");
 
@@ -1708,6 +1730,7 @@
 	case CHIP_R300:
 	case CHIP_R350:
 	case CHIP_R420:
+	case CHIP_R423:
 	case CHIP_RV410:
 	case CHIP_RV515:
 	case CHIP_R520:
diff --git a/drivers/gpu/drm/radeon/radeon_drv.c b/drivers/gpu/drm/radeon/radeon_drv.c
index 637bd7f..71af746 100644
--- a/drivers/gpu/drm/radeon/radeon_drv.c
+++ b/drivers/gpu/drm/radeon/radeon_drv.c
@@ -52,6 +52,28 @@
 		        "r300"));
 }
 
+static int radeon_suspend(struct drm_device *dev, pm_message_t state)
+{
+	drm_radeon_private_t *dev_priv = dev->dev_private;
+
+	/* Disable *all* interrupts */
+	if ((dev_priv->flags & RADEON_FAMILY_MASK) >= CHIP_RS690)
+		RADEON_WRITE(R500_DxMODE_INT_MASK, 0);
+	RADEON_WRITE(RADEON_GEN_INT_CNTL, 0);
+	return 0;
+}
+
+static int radeon_resume(struct drm_device *dev)
+{
+	drm_radeon_private_t *dev_priv = dev->dev_private;
+
+	/* Restore interrupt registers */
+	if ((dev_priv->flags & RADEON_FAMILY_MASK) >= CHIP_RS690)
+		RADEON_WRITE(R500_DxMODE_INT_MASK, dev_priv->r500_disp_irq_reg);
+	RADEON_WRITE(RADEON_GEN_INT_CNTL, dev_priv->irq_enable_reg);
+	return 0;
+}
+
 static struct pci_device_id pciidlist[] = {
 	radeon_PCI_IDS
 };
@@ -59,8 +81,7 @@
 static struct drm_driver driver = {
 	.driver_features =
 	    DRIVER_USE_AGP | DRIVER_USE_MTRR | DRIVER_PCI_DMA | DRIVER_SG |
-	    DRIVER_HAVE_IRQ | DRIVER_HAVE_DMA | DRIVER_IRQ_SHARED |
-	    DRIVER_IRQ_VBL | DRIVER_IRQ_VBL2,
+	    DRIVER_HAVE_IRQ | DRIVER_HAVE_DMA | DRIVER_IRQ_SHARED,
 	.dev_priv_size = sizeof(drm_radeon_buf_priv_t),
 	.load = radeon_driver_load,
 	.firstopen = radeon_driver_firstopen,
@@ -69,8 +90,11 @@
 	.postclose = radeon_driver_postclose,
 	.lastclose = radeon_driver_lastclose,
 	.unload = radeon_driver_unload,
-	.vblank_wait = radeon_driver_vblank_wait,
-	.vblank_wait2 = radeon_driver_vblank_wait2,
+	.suspend = radeon_suspend,
+	.resume = radeon_resume,
+	.get_vblank_counter = radeon_get_vblank_counter,
+	.enable_vblank = radeon_enable_vblank,
+	.disable_vblank = radeon_disable_vblank,
 	.dri_library_name = dri_library_name,
 	.irq_preinstall = radeon_driver_irq_preinstall,
 	.irq_postinstall = radeon_driver_irq_postinstall,
diff --git a/drivers/gpu/drm/radeon/radeon_drv.h b/drivers/gpu/drm/radeon/radeon_drv.h
index 0993816..4dbb813 100644
--- a/drivers/gpu/drm/radeon/radeon_drv.h
+++ b/drivers/gpu/drm/radeon/radeon_drv.h
@@ -122,9 +122,12 @@
 	CHIP_RV350,
 	CHIP_RV380,
 	CHIP_R420,
+	CHIP_R423,
 	CHIP_RV410,
+	CHIP_RS400,
 	CHIP_RS480,
 	CHIP_RS690,
+	CHIP_RS740,
 	CHIP_RV515,
 	CHIP_R520,
 	CHIP_RV530,
@@ -378,17 +381,17 @@
 			       struct mem_block *heap);
 
 				/* radeon_irq.c */
+extern void radeon_irq_set_state(struct drm_device *dev, u32 mask, int state);
 extern int radeon_irq_emit(struct drm_device *dev, void *data, struct drm_file *file_priv);
 extern int radeon_irq_wait(struct drm_device *dev, void *data, struct drm_file *file_priv);
 
 extern void radeon_do_release(struct drm_device * dev);
-extern int radeon_driver_vblank_wait(struct drm_device * dev,
-				     unsigned int *sequence);
-extern int radeon_driver_vblank_wait2(struct drm_device * dev,
-				      unsigned int *sequence);
+extern u32 radeon_get_vblank_counter(struct drm_device *dev, int crtc);
+extern int radeon_enable_vblank(struct drm_device *dev, int crtc);
+extern void radeon_disable_vblank(struct drm_device *dev, int crtc);
 extern irqreturn_t radeon_driver_irq_handler(DRM_IRQ_ARGS);
 extern void radeon_driver_irq_preinstall(struct drm_device * dev);
-extern void radeon_driver_irq_postinstall(struct drm_device * dev);
+extern int radeon_driver_irq_postinstall(struct drm_device *dev);
 extern void radeon_driver_irq_uninstall(struct drm_device * dev);
 extern void radeon_enable_interrupt(struct drm_device *dev);
 extern int radeon_vblank_crtc_get(struct drm_device *dev);
@@ -397,19 +400,22 @@
 extern int radeon_driver_load(struct drm_device *dev, unsigned long flags);
 extern int radeon_driver_unload(struct drm_device *dev);
 extern int radeon_driver_firstopen(struct drm_device *dev);
-extern void radeon_driver_preclose(struct drm_device * dev, struct drm_file *file_priv);
-extern void radeon_driver_postclose(struct drm_device * dev, struct drm_file * filp);
+extern void radeon_driver_preclose(struct drm_device *dev,
+				   struct drm_file *file_priv);
+extern void radeon_driver_postclose(struct drm_device *dev,
+				    struct drm_file *file_priv);
 extern void radeon_driver_lastclose(struct drm_device * dev);
-extern int radeon_driver_open(struct drm_device * dev, struct drm_file * filp_priv);
+extern int radeon_driver_open(struct drm_device *dev,
+			      struct drm_file *file_priv);
 extern long radeon_compat_ioctl(struct file *filp, unsigned int cmd,
 				unsigned long arg);
 
 /* r300_cmdbuf.c */
 extern void r300_init_reg_flags(struct drm_device *dev);
 
-extern int r300_do_cp_cmdbuf(struct drm_device * dev,
+extern int r300_do_cp_cmdbuf(struct drm_device *dev,
 			     struct drm_file *file_priv,
-			     drm_radeon_kcmd_buffer_t * cmdbuf);
+			     drm_radeon_kcmd_buffer_t *cmdbuf);
 
 /* Flags for stats.boxes
  */
@@ -434,8 +440,31 @@
 #	define RADEON_SCISSOR_1_ENABLE		(1 << 29)
 #	define RADEON_SCISSOR_2_ENABLE		(1 << 30)
 
+/*
+ * PCIE radeons (rv370/rv380, rv410, r423/r430/r480, r5xx)
+ * don't have an explicit bus mastering disable bit.  It's handled
+ * by the PCI D-states.  PMI_BM_DIS disables D-state bus master
+ * handling, not bus mastering itself.
+ */
 #define RADEON_BUS_CNTL			0x0030
+/* r1xx, r2xx, r300, r(v)350, r420/r481, rs480 */
 #	define RADEON_BUS_MASTER_DIS		(1 << 6)
+/* rs400, rs690/rs740 */
+#	define RS400_BUS_MASTER_DIS		(1 << 14)
+#	define RS400_MSI_REARM		        (1 << 20)
+/* see RS480_MSI_REARM in AIC_CNTL for rs480 */
+
+#define RADEON_BUS_CNTL1		0x0034
+#	define RADEON_PMI_BM_DIS		(1 << 2)
+#	define RADEON_PMI_INT_DIS		(1 << 3)
+
+#define RV370_BUS_CNTL			0x004c
+#	define RV370_PMI_BM_DIS		        (1 << 5)
+#	define RV370_PMI_INT_DIS		(1 << 6)
+
+#define RADEON_MSI_REARM_EN		0x0160
+/* rv370/rv380, rv410, r423/r430/r480, r5xx */
+#	define RV370_MSI_REARM_EN		(1 << 0)
 
 #define RADEON_CLOCK_CNTL_DATA		0x000c
 #	define RADEON_PLL_WR_EN			(1 << 7)
@@ -623,6 +652,7 @@
 #	define RADEON_SW_INT_TEST		(1 << 25)
 #	define RADEON_SW_INT_TEST_ACK		(1 << 25)
 #	define RADEON_SW_INT_FIRE		(1 << 26)
+#       define R500_DISPLAY_INT_STATUS          (1 << 0)
 
 #define RADEON_HOST_PATH_CNTL		0x0130
 #	define RADEON_HDP_SOFT_RESET		(1 << 26)
@@ -907,6 +937,7 @@
 
 #define RADEON_AIC_CNTL			0x01d0
 #	define RADEON_PCIGART_TRANSLATE_EN	(1 << 0)
+#	define RS480_MSI_REARM	                (1 << 3)
 #define RADEON_AIC_STAT			0x01d4
 #define RADEON_AIC_PT_BASE		0x01d8
 #define RADEON_AIC_LO_ADDR		0x01dc
@@ -1116,6 +1147,9 @@
 
 #define R200_VAP_PVS_CNTL_1               0x22D0
 
+#define RADEON_CRTC_CRNT_FRAME 0x0214
+#define RADEON_CRTC2_CRNT_FRAME 0x0314
+
 #define R500_D1CRTC_STATUS 0x609c
 #define R500_D2CRTC_STATUS 0x689c
 #define R500_CRTC_V_BLANK (1<<0)
@@ -1200,7 +1234,8 @@
 
 #define IGP_WRITE_MCIND(addr, val)				\
 do {									\
-	if ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690)       \
+	if (((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS690) ||   \
+	    ((dev_priv->flags & RADEON_FAMILY_MASK) == CHIP_RS740))      \
 		RS690_WRITE_MCIND(addr, val);				\
 	else								\
 		RS480_WRITE_MCIND(addr, val);				\
diff --git a/drivers/gpu/drm/radeon/radeon_irq.c b/drivers/gpu/drm/radeon/radeon_irq.c
index ee40d19..5079f70 100644
--- a/drivers/gpu/drm/radeon/radeon_irq.c
+++ b/drivers/gpu/drm/radeon/radeon_irq.c
@@ -27,7 +27,7 @@
  *
  * Authors:
  *    Keith Whitwell <keith@tungstengraphics.com>
- *    Michel Dänzer <michel@daenzer.net>
+ *    Michel D�zer <michel@daenzer.net>
  */
 
 #include "drmP.h"
@@ -35,12 +35,128 @@
 #include "radeon_drm.h"
 #include "radeon_drv.h"
 
-static __inline__ u32 radeon_acknowledge_irqs(drm_radeon_private_t * dev_priv,
-					      u32 mask)
+void radeon_irq_set_state(struct drm_device *dev, u32 mask, int state)
 {
-	u32 irqs = RADEON_READ(RADEON_GEN_INT_STATUS) & mask;
+	drm_radeon_private_t *dev_priv = dev->dev_private;
+
+	if (state)
+		dev_priv->irq_enable_reg |= mask;
+	else
+		dev_priv->irq_enable_reg &= ~mask;
+
+	RADEON_WRITE(RADEON_GEN_INT_CNTL, dev_priv->irq_enable_reg);
+}
+
+static void r500_vbl_irq_set_state(struct drm_device *dev, u32 mask, int state)
+{
+	drm_radeon_private_t *dev_priv = dev->dev_private;
+
+	if (state)
+		dev_priv->r500_disp_irq_reg |= mask;
+	else
+		dev_priv->r500_disp_irq_reg &= ~mask;
+
+	RADEON_WRITE(R500_DxMODE_INT_MASK, dev_priv->r500_disp_irq_reg);
+}
+
+int radeon_enable_vblank(struct drm_device *dev, int crtc)
+{
+	drm_radeon_private_t *dev_priv = dev->dev_private;
+
+	if ((dev_priv->flags & RADEON_FAMILY_MASK) >= CHIP_RS690) {
+		switch (crtc) {
+		case 0:
+			r500_vbl_irq_set_state(dev, R500_D1MODE_INT_MASK, 1);
+			break;
+		case 1:
+			r500_vbl_irq_set_state(dev, R500_D2MODE_INT_MASK, 1);
+			break;
+		default:
+			DRM_ERROR("tried to enable vblank on non-existent crtc %d\n",
+				  crtc);
+			return EINVAL;
+		}
+	} else {
+		switch (crtc) {
+		case 0:
+			radeon_irq_set_state(dev, RADEON_CRTC_VBLANK_MASK, 1);
+			break;
+		case 1:
+			radeon_irq_set_state(dev, RADEON_CRTC2_VBLANK_MASK, 1);
+			break;
+		default:
+			DRM_ERROR("tried to enable vblank on non-existent crtc %d\n",
+				  crtc);
+			return EINVAL;
+		}
+	}
+
+	return 0;
+}
+
+void radeon_disable_vblank(struct drm_device *dev, int crtc)
+{
+	drm_radeon_private_t *dev_priv = dev->dev_private;
+
+	if ((dev_priv->flags & RADEON_FAMILY_MASK) >= CHIP_RS690) {
+		switch (crtc) {
+		case 0:
+			r500_vbl_irq_set_state(dev, R500_D1MODE_INT_MASK, 0);
+			break;
+		case 1:
+			r500_vbl_irq_set_state(dev, R500_D2MODE_INT_MASK, 0);
+			break;
+		default:
+			DRM_ERROR("tried to enable vblank on non-existent crtc %d\n",
+				  crtc);
+			break;
+		}
+	} else {
+		switch (crtc) {
+		case 0:
+			radeon_irq_set_state(dev, RADEON_CRTC_VBLANK_MASK, 0);
+			break;
+		case 1:
+			radeon_irq_set_state(dev, RADEON_CRTC2_VBLANK_MASK, 0);
+			break;
+		default:
+			DRM_ERROR("tried to enable vblank on non-existent crtc %d\n",
+				  crtc);
+			break;
+		}
+	}
+}
+
+static inline u32 radeon_acknowledge_irqs(drm_radeon_private_t *dev_priv, u32 *r500_disp_int)
+{
+	u32 irqs = RADEON_READ(RADEON_GEN_INT_STATUS);
+	u32 irq_mask = RADEON_SW_INT_TEST;
+
+	*r500_disp_int = 0;
+	if ((dev_priv->flags & RADEON_FAMILY_MASK) >= CHIP_RS690) {
+		/* vbl interrupts in a different place */
+
+		if (irqs & R500_DISPLAY_INT_STATUS) {
+			/* if a display interrupt */
+			u32 disp_irq;
+
+			disp_irq = RADEON_READ(R500_DISP_INTERRUPT_STATUS);
+
+			*r500_disp_int = disp_irq;
+			if (disp_irq & R500_D1_VBLANK_INTERRUPT)
+				RADEON_WRITE(R500_D1MODE_VBLANK_STATUS, R500_VBLANK_ACK);
+			if (disp_irq & R500_D2_VBLANK_INTERRUPT)
+				RADEON_WRITE(R500_D2MODE_VBLANK_STATUS, R500_VBLANK_ACK);
+		}
+		irq_mask |= R500_DISPLAY_INT_STATUS;
+	} else
+		irq_mask |= RADEON_CRTC_VBLANK_STAT | RADEON_CRTC2_VBLANK_STAT;
+
+	irqs &=	irq_mask;
+
 	if (irqs)
 		RADEON_WRITE(RADEON_GEN_INT_STATUS, irqs);
+
 	return irqs;
 }
 
@@ -68,44 +184,33 @@
 	drm_radeon_private_t *dev_priv =
 	    (drm_radeon_private_t *) dev->dev_private;
 	u32 stat;
+	u32 r500_disp_int;
 
 	/* Only consider the bits we're interested in - others could be used
 	 * outside the DRM
 	 */
-	stat = radeon_acknowledge_irqs(dev_priv, (RADEON_SW_INT_TEST_ACK |
-						  RADEON_CRTC_VBLANK_STAT |
-						  RADEON_CRTC2_VBLANK_STAT));
+	stat = radeon_acknowledge_irqs(dev_priv, &r500_disp_int);
 	if (!stat)
 		return IRQ_NONE;
 
 	stat &= dev_priv->irq_enable_reg;
 
 	/* SW interrupt */
-	if (stat & RADEON_SW_INT_TEST) {
+	if (stat & RADEON_SW_INT_TEST)
 		DRM_WAKEUP(&dev_priv->swi_queue);
-	}
 
 	/* VBLANK interrupt */
-	if (stat & (RADEON_CRTC_VBLANK_STAT|RADEON_CRTC2_VBLANK_STAT)) {
-		int vblank_crtc = dev_priv->vblank_crtc;
-
-		if ((vblank_crtc &
-		     (DRM_RADEON_VBLANK_CRTC1 | DRM_RADEON_VBLANK_CRTC2)) ==
-		    (DRM_RADEON_VBLANK_CRTC1 | DRM_RADEON_VBLANK_CRTC2)) {
-			if (stat & RADEON_CRTC_VBLANK_STAT)
-				atomic_inc(&dev->vbl_received);
-			if (stat & RADEON_CRTC2_VBLANK_STAT)
-				atomic_inc(&dev->vbl_received2);
-		} else if (((stat & RADEON_CRTC_VBLANK_STAT) &&
-			   (vblank_crtc & DRM_RADEON_VBLANK_CRTC1)) ||
-			   ((stat & RADEON_CRTC2_VBLANK_STAT) &&
-			    (vblank_crtc & DRM_RADEON_VBLANK_CRTC2)))
-			atomic_inc(&dev->vbl_received);
-
-		DRM_WAKEUP(&dev->vbl_queue);
-		drm_vbl_send_signals(dev);
+	if ((dev_priv->flags & RADEON_FAMILY_MASK) >= CHIP_RS690) {
+		if (r500_disp_int & R500_D1_VBLANK_INTERRUPT)
+			drm_handle_vblank(dev, 0);
+		if (r500_disp_int & R500_D2_VBLANK_INTERRUPT)
+			drm_handle_vblank(dev, 1);
+	} else {
+		if (stat & RADEON_CRTC_VBLANK_STAT)
+			drm_handle_vblank(dev, 0);
+		if (stat & RADEON_CRTC2_VBLANK_STAT)
+			drm_handle_vblank(dev, 1);
 	}
-
 	return IRQ_HANDLED;
 }
 
@@ -144,54 +249,31 @@
 	return ret;
 }
 
-static int radeon_driver_vblank_do_wait(struct drm_device * dev,
-					unsigned int *sequence, int crtc)
+u32 radeon_get_vblank_counter(struct drm_device *dev, int crtc)
 {
-	drm_radeon_private_t *dev_priv =
-	    (drm_radeon_private_t *) dev->dev_private;
-	unsigned int cur_vblank;
-	int ret = 0;
-	int ack = 0;
-	atomic_t *counter;
+	drm_radeon_private_t *dev_priv = dev->dev_private;
+
 	if (!dev_priv) {
 		DRM_ERROR("called with no initialization\n");
 		return -EINVAL;
 	}
 
-	if (crtc == DRM_RADEON_VBLANK_CRTC1) {
-		counter = &dev->vbl_received;
-		ack |= RADEON_CRTC_VBLANK_STAT;
-	} else if (crtc == DRM_RADEON_VBLANK_CRTC2) {
-		counter = &dev->vbl_received2;
-		ack |= RADEON_CRTC2_VBLANK_STAT;
-	} else
+	if (crtc < 0 || crtc > 1) {
+		DRM_ERROR("Invalid crtc %d\n", crtc);
 		return -EINVAL;
+	}
 
-	radeon_acknowledge_irqs(dev_priv, ack);
-
-	dev_priv->stats.boxes |= RADEON_BOX_WAIT_IDLE;
-
-	/* Assume that the user has missed the current sequence number
-	 * by about a day rather than she wants to wait for years
-	 * using vertical blanks...
-	 */
-	DRM_WAIT_ON(ret, dev->vbl_queue, 3 * DRM_HZ,
-		    (((cur_vblank = atomic_read(counter))
-		      - *sequence) <= (1 << 23)));
-
-	*sequence = cur_vblank;
-
-	return ret;
-}
-
-int radeon_driver_vblank_wait(struct drm_device *dev, unsigned int *sequence)
-{
-	return radeon_driver_vblank_do_wait(dev, sequence, DRM_RADEON_VBLANK_CRTC1);
-}
-
-int radeon_driver_vblank_wait2(struct drm_device *dev, unsigned int *sequence)
-{
-	return radeon_driver_vblank_do_wait(dev, sequence, DRM_RADEON_VBLANK_CRTC2);
+	if ((dev_priv->flags & RADEON_FAMILY_MASK) >= CHIP_RS690) {
+		if (crtc == 0)
+			return RADEON_READ(R500_D1CRTC_FRAME_COUNT);
+		else
+			return RADEON_READ(R500_D2CRTC_FRAME_COUNT);
+	} else {
+		if (crtc == 0)
+			return RADEON_READ(RADEON_CRTC_CRNT_FRAME);
+		else
+			return RADEON_READ(RADEON_CRTC2_CRNT_FRAME);
+	}
 }
 
 /* Needs the lock as it touches the ring.
@@ -234,46 +316,41 @@
 	return radeon_wait_irq(dev, irqwait->irq_seq);
 }
 
-void radeon_enable_interrupt(struct drm_device *dev)
-{
-	drm_radeon_private_t *dev_priv = (drm_radeon_private_t *) dev->dev_private;
-
-	dev_priv->irq_enable_reg = RADEON_SW_INT_ENABLE;
-	if (dev_priv->vblank_crtc & DRM_RADEON_VBLANK_CRTC1)
-		dev_priv->irq_enable_reg |= RADEON_CRTC_VBLANK_MASK;
-
-	if (dev_priv->vblank_crtc & DRM_RADEON_VBLANK_CRTC2)
-		dev_priv->irq_enable_reg |= RADEON_CRTC2_VBLANK_MASK;
-
-	RADEON_WRITE(RADEON_GEN_INT_CNTL, dev_priv->irq_enable_reg);
-	dev_priv->irq_enabled = 1;
-}
-
 /* drm_dma.h hooks
 */
 void radeon_driver_irq_preinstall(struct drm_device * dev)
 {
 	drm_radeon_private_t *dev_priv =
 	    (drm_radeon_private_t *) dev->dev_private;
+	u32 dummy;
 
 	/* Disable *all* interrupts */
+	if ((dev_priv->flags & RADEON_FAMILY_MASK) >= CHIP_RS690)
+		RADEON_WRITE(R500_DxMODE_INT_MASK, 0);
 	RADEON_WRITE(RADEON_GEN_INT_CNTL, 0);
 
 	/* Clear bits if they're already high */
-	radeon_acknowledge_irqs(dev_priv, (RADEON_SW_INT_TEST_ACK |
-					   RADEON_CRTC_VBLANK_STAT |
-					   RADEON_CRTC2_VBLANK_STAT));
+	radeon_acknowledge_irqs(dev_priv, &dummy);
 }
 
-void radeon_driver_irq_postinstall(struct drm_device * dev)
+int radeon_driver_irq_postinstall(struct drm_device *dev)
 {
 	drm_radeon_private_t *dev_priv =
 	    (drm_radeon_private_t *) dev->dev_private;
+	int ret;
 
 	atomic_set(&dev_priv->swi_emitted, 0);
 	DRM_INIT_WAITQUEUE(&dev_priv->swi_queue);
 
-	radeon_enable_interrupt(dev);
+	ret = drm_vblank_init(dev, 2);
+	if (ret)
+		return ret;
+
+	dev->max_vblank_count = 0x001fffff;
+
+	radeon_irq_set_state(dev, RADEON_SW_INT_ENABLE, 1);
+
+	return 0;
 }
 
 void radeon_driver_irq_uninstall(struct drm_device * dev)
@@ -285,6 +362,8 @@
 
 	dev_priv->irq_enabled = 0;
 
+	if ((dev_priv->flags & RADEON_FAMILY_MASK) >= CHIP_RS690)
+		RADEON_WRITE(R500_DxMODE_INT_MASK, 0);
 	/* Disable *all* interrupts */
 	RADEON_WRITE(RADEON_GEN_INT_CNTL, 0);
 }
@@ -293,18 +372,8 @@
 int radeon_vblank_crtc_get(struct drm_device *dev)
 {
 	drm_radeon_private_t *dev_priv = (drm_radeon_private_t *) dev->dev_private;
-	u32 flag;
-	u32 value;
 
-	flag = RADEON_READ(RADEON_GEN_INT_CNTL);
-	value = 0;
-
-	if (flag & RADEON_CRTC_VBLANK_MASK)
-		value |= DRM_RADEON_VBLANK_CRTC1;
-
-	if (flag & RADEON_CRTC2_VBLANK_MASK)
-		value |= DRM_RADEON_VBLANK_CRTC2;
-	return value;
+	return dev_priv->vblank_crtc;
 }
 
 int radeon_vblank_crtc_set(struct drm_device *dev, int64_t value)
@@ -315,6 +384,5 @@
 		return -EINVAL;
 	}
 	dev_priv->vblank_crtc = (unsigned int)value;
-	radeon_enable_interrupt(dev);
 	return 0;
 }
diff --git a/drivers/gpu/drm/radeon/radeon_state.c b/drivers/gpu/drm/radeon/radeon_state.c
index 11c146b..5d7153f 100644
--- a/drivers/gpu/drm/radeon/radeon_state.c
+++ b/drivers/gpu/drm/radeon/radeon_state.c
@@ -2997,7 +2997,7 @@
 		value = GET_SCRATCH(2);
 		break;
 	case RADEON_PARAM_IRQ_NR:
-		value = dev->irq;
+		value = drm_dev_to_irq(dev);
 		break;
 	case RADEON_PARAM_GART_BASE:
 		value = dev_priv->gart_vm_start;
diff --git a/drivers/gpu/drm/sis/sis_mm.c b/drivers/gpu/drm/sis/sis_mm.c
index b387877..af22111 100644
--- a/drivers/gpu/drm/sis/sis_mm.c
+++ b/drivers/gpu/drm/sis/sis_mm.c
@@ -41,7 +41,7 @@
 #define AGP_TYPE 1
 
 
-#if defined(CONFIG_FB_SIS)
+#if defined(CONFIG_FB_SIS) || defined(CONFIG_FB_SIS_MODULE)
 /* fb management via fb device */
 
 #define SIS_MM_ALIGN_SHIFT 0
@@ -57,7 +57,7 @@
 	if (req.size == 0)
 		return NULL;
 	else
-		return (void *)~req.offset;
+		return (void *)(unsigned long)~req.offset;
 }
 
 static void sis_sman_mm_free(void *private, void *ref)
@@ -75,12 +75,12 @@
 	return ~((unsigned long)ref);
 }
 
-#else /* CONFIG_FB_SIS */
+#else /* CONFIG_FB_SIS[_MODULE] */
 
 #define SIS_MM_ALIGN_SHIFT 4
 #define SIS_MM_ALIGN_MASK ( (1 << SIS_MM_ALIGN_SHIFT) - 1)
 
-#endif /* CONFIG_FB_SIS */
+#endif /* CONFIG_FB_SIS[_MODULE] */
 
 static int sis_fb_init(struct drm_device *dev, void *data, struct drm_file *file_priv)
 {
@@ -89,7 +89,7 @@
 	int ret;
 
 	mutex_lock(&dev->struct_mutex);
-#if defined(CONFIG_FB_SIS)
+#if defined(CONFIG_FB_SIS) || defined(CONFIG_FB_SIS_MODULE)
 	{
 		struct drm_sman_mm sman_mm;
 		sman_mm.private = (void *)0xFFFFFFFF;
diff --git a/drivers/gpu/drm/via/via_drv.c b/drivers/gpu/drm/via/via_drv.c
index 80c01cd..0993b44 100644
--- a/drivers/gpu/drm/via/via_drv.c
+++ b/drivers/gpu/drm/via/via_drv.c
@@ -40,11 +40,13 @@
 static struct drm_driver driver = {
 	.driver_features =
 	    DRIVER_USE_AGP | DRIVER_USE_MTRR | DRIVER_HAVE_IRQ |
-	    DRIVER_IRQ_SHARED | DRIVER_IRQ_VBL,
+	    DRIVER_IRQ_SHARED,
 	.load = via_driver_load,
 	.unload = via_driver_unload,
 	.context_dtor = via_final_context,
-	.vblank_wait = via_driver_vblank_wait,
+	.get_vblank_counter = via_get_vblank_counter,
+	.enable_vblank = via_enable_vblank,
+	.disable_vblank = via_disable_vblank,
 	.irq_preinstall = via_driver_irq_preinstall,
 	.irq_postinstall = via_driver_irq_postinstall,
 	.irq_uninstall = via_driver_irq_uninstall,
@@ -59,17 +61,17 @@
 	.get_reg_ofs = drm_core_get_reg_ofs,
 	.ioctls = via_ioctls,
 	.fops = {
-		 .owner = THIS_MODULE,
-		 .open = drm_open,
-		 .release = drm_release,
-		 .ioctl = drm_ioctl,
-		 .mmap = drm_mmap,
-		 .poll = drm_poll,
-		 .fasync = drm_fasync,
-	},
+		.owner = THIS_MODULE,
+		.open = drm_open,
+		.release = drm_release,
+		.ioctl = drm_ioctl,
+		.mmap = drm_mmap,
+		.poll = drm_poll,
+		.fasync = drm_fasync,
+		},
 	.pci_driver = {
-		 .name = DRIVER_NAME,
-		 .id_table = pciidlist,
+		.name = DRIVER_NAME,
+		.id_table = pciidlist,
 	},
 
 	.name = DRIVER_NAME,
diff --git a/drivers/gpu/drm/via/via_drv.h b/drivers/gpu/drm/via/via_drv.h
index 2daae81..cafcb84 100644
--- a/drivers/gpu/drm/via/via_drv.h
+++ b/drivers/gpu/drm/via/via_drv.h
@@ -75,6 +75,7 @@
 	struct timeval last_vblank;
 	int last_vblank_valid;
 	unsigned usec_per_vblank;
+	atomic_t vbl_received;
 	drm_via_state_t hc_state;
 	char pci_buf[VIA_PCI_BUF_SIZE];
 	const uint32_t *fire_offsets[VIA_FIRE_BUF_SIZE];
@@ -130,21 +131,24 @@
 extern int via_final_context(struct drm_device * dev, int context);
 
 extern int via_do_cleanup_map(struct drm_device * dev);
-extern int via_driver_vblank_wait(struct drm_device * dev, unsigned int *sequence);
+extern u32 via_get_vblank_counter(struct drm_device *dev, int crtc);
+extern int via_enable_vblank(struct drm_device *dev, int crtc);
+extern void via_disable_vblank(struct drm_device *dev, int crtc);
 
 extern irqreturn_t via_driver_irq_handler(DRM_IRQ_ARGS);
 extern void via_driver_irq_preinstall(struct drm_device * dev);
-extern void via_driver_irq_postinstall(struct drm_device * dev);
+extern int via_driver_irq_postinstall(struct drm_device *dev);
 extern void via_driver_irq_uninstall(struct drm_device * dev);
 
 extern int via_dma_cleanup(struct drm_device * dev);
 extern void via_init_command_verifier(void);
 extern int via_driver_dma_quiescent(struct drm_device * dev);
-extern void via_init_futex(drm_via_private_t * dev_priv);
-extern void via_cleanup_futex(drm_via_private_t * dev_priv);
-extern void via_release_futex(drm_via_private_t * dev_priv, int context);
+extern void via_init_futex(drm_via_private_t *dev_priv);
+extern void via_cleanup_futex(drm_via_private_t *dev_priv);
+extern void via_release_futex(drm_via_private_t *dev_priv, int context);
 
-extern void via_reclaim_buffers_locked(struct drm_device *dev, struct drm_file *file_priv);
+extern void via_reclaim_buffers_locked(struct drm_device *dev,
+				       struct drm_file *file_priv);
 extern void via_lastclose(struct drm_device *dev);
 
 extern void via_dmablit_handler(struct drm_device *dev, int engine, int from_irq);
diff --git a/drivers/gpu/drm/via/via_irq.c b/drivers/gpu/drm/via/via_irq.c
index c6bb978..665d319 100644
--- a/drivers/gpu/drm/via/via_irq.c
+++ b/drivers/gpu/drm/via/via_irq.c
@@ -43,7 +43,7 @@
 #define VIA_REG_INTERRUPT       0x200
 
 /* VIA_REG_INTERRUPT */
-#define VIA_IRQ_GLOBAL          (1 << 31)
+#define VIA_IRQ_GLOBAL	  (1 << 31)
 #define VIA_IRQ_VBLANK_ENABLE   (1 << 19)
 #define VIA_IRQ_VBLANK_PENDING  (1 << 3)
 #define VIA_IRQ_HQV0_ENABLE     (1 << 11)
@@ -68,16 +68,15 @@
 
 static maskarray_t via_pro_group_a_irqs[] = {
 	{VIA_IRQ_HQV0_ENABLE, VIA_IRQ_HQV0_PENDING, 0x000003D0, 0x00008010,
-	 0x00000000},
+	 0x00000000 },
 	{VIA_IRQ_HQV1_ENABLE, VIA_IRQ_HQV1_PENDING, 0x000013D0, 0x00008010,
-	 0x00000000},
+	 0x00000000 },
 	{VIA_IRQ_DMA0_TD_ENABLE, VIA_IRQ_DMA0_TD_PENDING, VIA_PCI_DMA_CSR0,
 	 VIA_DMA_CSR_TA | VIA_DMA_CSR_TD, 0x00000008},
 	{VIA_IRQ_DMA1_TD_ENABLE, VIA_IRQ_DMA1_TD_PENDING, VIA_PCI_DMA_CSR1,
 	 VIA_DMA_CSR_TA | VIA_DMA_CSR_TD, 0x00000008},
 };
-static int via_num_pro_group_a =
-    sizeof(via_pro_group_a_irqs) / sizeof(maskarray_t);
+static int via_num_pro_group_a = ARRAY_SIZE(via_pro_group_a_irqs);
 static int via_irqmap_pro_group_a[] = {0, 1, -1, 2, -1, 3};
 
 static maskarray_t via_unichrome_irqs[] = {
@@ -86,14 +85,24 @@
 	{VIA_IRQ_DMA1_TD_ENABLE, VIA_IRQ_DMA1_TD_PENDING, VIA_PCI_DMA_CSR1,
 	 VIA_DMA_CSR_TA | VIA_DMA_CSR_TD, 0x00000008}
 };
-static int via_num_unichrome = sizeof(via_unichrome_irqs) / sizeof(maskarray_t);
+static int via_num_unichrome = ARRAY_SIZE(via_unichrome_irqs);
 static int via_irqmap_unichrome[] = {-1, -1, -1, 0, -1, 1};
 
+
 static unsigned time_diff(struct timeval *now, struct timeval *then)
 {
 	return (now->tv_usec >= then->tv_usec) ?
-	    now->tv_usec - then->tv_usec :
-	    1000000 - (then->tv_usec - now->tv_usec);
+		now->tv_usec - then->tv_usec :
+		1000000 - (then->tv_usec - now->tv_usec);
+}
+
+u32 via_get_vblank_counter(struct drm_device *dev, int crtc)
+{
+	drm_via_private_t *dev_priv = dev->dev_private;
+	if (crtc != 0)
+		return 0;
+
+	return atomic_read(&dev_priv->vbl_received);
 }
 
 irqreturn_t via_driver_irq_handler(DRM_IRQ_ARGS)
@@ -108,23 +117,22 @@
 
 	status = VIA_READ(VIA_REG_INTERRUPT);
 	if (status & VIA_IRQ_VBLANK_PENDING) {
-		atomic_inc(&dev->vbl_received);
-		if (!(atomic_read(&dev->vbl_received) & 0x0F)) {
+		atomic_inc(&dev_priv->vbl_received);
+		if (!(atomic_read(&dev_priv->vbl_received) & 0x0F)) {
 			do_gettimeofday(&cur_vblank);
 			if (dev_priv->last_vblank_valid) {
 				dev_priv->usec_per_vblank =
-				    time_diff(&cur_vblank,
-					      &dev_priv->last_vblank) >> 4;
+					time_diff(&cur_vblank,
+						  &dev_priv->last_vblank) >> 4;
 			}
 			dev_priv->last_vblank = cur_vblank;
 			dev_priv->last_vblank_valid = 1;
 		}
-		if (!(atomic_read(&dev->vbl_received) & 0xFF)) {
+		if (!(atomic_read(&dev_priv->vbl_received) & 0xFF)) {
 			DRM_DEBUG("US per vblank is: %u\n",
 				  dev_priv->usec_per_vblank);
 		}
-		DRM_WAKEUP(&dev->vbl_queue);
-		drm_vbl_send_signals(dev);
+		drm_handle_vblank(dev, 0);
 		handled = 1;
 	}
 
@@ -145,6 +153,7 @@
 	/* Acknowlege interrupts */
 	VIA_WRITE(VIA_REG_INTERRUPT, status);
 
+
 	if (handled)
 		return IRQ_HANDLED;
 	else
@@ -163,31 +172,34 @@
 	}
 }
 
-int via_driver_vblank_wait(struct drm_device * dev, unsigned int *sequence)
+int via_enable_vblank(struct drm_device *dev, int crtc)
 {
-	drm_via_private_t *dev_priv = (drm_via_private_t *) dev->dev_private;
-	unsigned int cur_vblank;
-	int ret = 0;
+	drm_via_private_t *dev_priv = dev->dev_private;
+	u32 status;
 
-	DRM_DEBUG("\n");
-	if (!dev_priv) {
-		DRM_ERROR("called with no initialization\n");
+	if (crtc != 0) {
+		DRM_ERROR("%s:  bad crtc %d\n", __func__, crtc);
 		return -EINVAL;
 	}
 
-	viadrv_acknowledge_irqs(dev_priv);
+	status = VIA_READ(VIA_REG_INTERRUPT);
+	VIA_WRITE(VIA_REG_INTERRUPT, status & VIA_IRQ_VBLANK_ENABLE);
 
-	/* Assume that the user has missed the current sequence number
-	 * by about a day rather than she wants to wait for years
-	 * using vertical blanks...
-	 */
+	VIA_WRITE8(0x83d4, 0x11);
+	VIA_WRITE8(0x83d5, VIA_READ8(0x83d5) | 0x30);
 
-	DRM_WAIT_ON(ret, dev->vbl_queue, 3 * DRM_HZ,
-		    (((cur_vblank = atomic_read(&dev->vbl_received)) -
-		      *sequence) <= (1 << 23)));
+	return 0;
+}
 
-	*sequence = cur_vblank;
-	return ret;
+void via_disable_vblank(struct drm_device *dev, int crtc)
+{
+	drm_via_private_t *dev_priv = dev->dev_private;
+
+	VIA_WRITE8(0x83d4, 0x11);
+	VIA_WRITE8(0x83d5, VIA_READ8(0x83d5) & ~0x30);
+
+	if (crtc != 0)
+		DRM_ERROR("%s:  bad crtc %d\n", __func__, crtc);
 }
 
 static int
@@ -239,6 +251,7 @@
 	return ret;
 }
 
+
 /*
  * drm_dma.h hooks
  */
@@ -292,23 +305,25 @@
 	}
 }
 
-void via_driver_irq_postinstall(struct drm_device * dev)
+int via_driver_irq_postinstall(struct drm_device *dev)
 {
 	drm_via_private_t *dev_priv = (drm_via_private_t *) dev->dev_private;
 	u32 status;
 
-	DRM_DEBUG("\n");
-	if (dev_priv) {
-		status = VIA_READ(VIA_REG_INTERRUPT);
-		VIA_WRITE(VIA_REG_INTERRUPT, status | VIA_IRQ_GLOBAL
-			  | dev_priv->irq_enable_mask);
+	DRM_DEBUG("via_driver_irq_postinstall\n");
+	if (!dev_priv)
+		return -EINVAL;
 
-		/* Some magic, oh for some data sheets ! */
+	drm_vblank_init(dev, 1);
+	status = VIA_READ(VIA_REG_INTERRUPT);
+	VIA_WRITE(VIA_REG_INTERRUPT, status | VIA_IRQ_GLOBAL
+		  | dev_priv->irq_enable_mask);
 
-		VIA_WRITE8(0x83d4, 0x11);
-		VIA_WRITE8(0x83d5, VIA_READ8(0x83d5) | 0x30);
+	/* Some magic, oh for some data sheets ! */
+	VIA_WRITE8(0x83d4, 0x11);
+	VIA_WRITE8(0x83d5, VIA_READ8(0x83d5) | 0x30);
 
-	}
+	return 0;
 }
 
 void via_driver_irq_uninstall(struct drm_device * dev)
@@ -339,9 +354,6 @@
 	drm_via_irq_t *cur_irq = dev_priv->via_irqs;
 	int force_sequence;
 
-	if (!dev->irq)
-		return -EINVAL;
-
 	if (irqwait->request.irq >= dev_priv->num_irqs) {
 		DRM_ERROR("Trying to wait on unknown irq %d\n",
 			  irqwait->request.irq);
@@ -352,7 +364,8 @@
 
 	switch (irqwait->request.type & ~VIA_IRQ_FLAGS_MASK) {
 	case VIA_IRQ_RELATIVE:
-		irqwait->request.sequence += atomic_read(&cur_irq->irq_received);
+		irqwait->request.sequence +=
+			atomic_read(&cur_irq->irq_received);
 		irqwait->request.type &= ~_DRM_VBLANK_RELATIVE;
 	case VIA_IRQ_ABSOLUTE:
 		break;
diff --git a/drivers/gpu/drm/via/via_mm.c b/drivers/gpu/drm/via/via_mm.c
index e640949..f694cb5 100644
--- a/drivers/gpu/drm/via/via_mm.c
+++ b/drivers/gpu/drm/via/via_mm.c
@@ -93,8 +93,7 @@
 	/* Last context, perform cleanup */
 	if (dev->ctx_count == 1 && dev->dev_private) {
 		DRM_DEBUG("Last Context\n");
-		if (dev->irq)
-			drm_irq_uninstall(dev);
+		drm_irq_uninstall(dev);
 		via_cleanup_futex(dev_priv);
 		via_do_cleanup_map(dev);
 	}
diff --git a/drivers/hid/usbhid/hid-core.c b/drivers/hid/usbhid/hid-core.c
index 1d3b8a3..705a43c 100644
--- a/drivers/hid/usbhid/hid-core.c
+++ b/drivers/hid/usbhid/hid-core.c
@@ -428,7 +428,7 @@
 		usbhid->out[usbhid->outhead].raw_report = kmalloc(len, GFP_ATOMIC);
 		if (!usbhid->out[usbhid->outhead].raw_report) {
 			spin_unlock_irqrestore(&usbhid->outlock, flags);
-			warn("output queueing failed");
+			dev_warn(&hid->dev, "output queueing failed\n");
 			return;
 		}
 		hid_output_report(report, usbhid->out[usbhid->outhead].raw_report);
@@ -455,7 +455,7 @@
 		usbhid->ctrl[usbhid->ctrlhead].raw_report = kmalloc(len, GFP_ATOMIC);
 		if (!usbhid->ctrl[usbhid->ctrlhead].raw_report) {
 			spin_unlock_irqrestore(&usbhid->ctrllock, flags);
-			warn("control queueing failed");
+			dev_warn(&hid->dev, "control queueing failed\n");
 			return;
 		}
 		hid_output_report(report, usbhid->ctrl[usbhid->ctrlhead].raw_report);
diff --git a/drivers/hwmon/Kconfig b/drivers/hwmon/Kconfig
index ebacc0a..6de1e0f 100644
--- a/drivers/hwmon/Kconfig
+++ b/drivers/hwmon/Kconfig
@@ -510,11 +510,9 @@
 	depends on I2C
 	help
 	  If you say yes here you get support for National Semiconductor LM90,
-	  LM86, LM89 and LM99, Analog Devices ADM1032 and Maxim MAX6657,
-	  MAX6658, MAX6659, MAX6680 and MAX6681 sensor chips.
-
-	  The Analog Devices ADT7461 sensor chip is also supported, but only
-	  if found in ADM1032 compatibility mode.
+	  LM86, LM89 and LM99, Analog Devices ADM1032 and ADT7461, and Maxim
+	  MAX6646, MAX6647, MAX6649, MAX6657, MAX6658, MAX6659, MAX6680 and
+	  MAX6681 sensor chips.
 
 	  This driver can also be built as a module.  If so, the module
 	  will be called lm90.
diff --git a/drivers/hwmon/adm1026.c b/drivers/hwmon/adm1026.c
index 7fe2441..ff7de40 100644
--- a/drivers/hwmon/adm1026.c
+++ b/drivers/hwmon/adm1026.c
@@ -279,7 +279,6 @@
 	u8 fan_min[8];		/* Register value */
 	u8 fan_div[8];		/* Decoded value */
 	struct pwm_data pwm1;	/* Pwm control values */
-	int vid;		/* Decoded value */
 	u8 vrm;			/* VRM version */
 	u8 analog_out;		/* Register value (DAC) */
 	long alarms;		/* Register encoding, combined */
@@ -455,7 +454,7 @@
 	struct adm1026_data *data = i2c_get_clientdata(client);
 	int i;
 
-	dev_dbg(&client->dev, "GPIO config is:");
+	dev_dbg(&client->dev, "GPIO config is:\n");
 	for (i = 0;i <= 7;++i) {
 		if (data->config2 & (1 << i)) {
 			dev_dbg(&client->dev, "\t%sGP%s%d\n",
@@ -697,8 +696,6 @@
 		data->last_config = jiffies;
 	}; /* last_config */
 
-	dev_dbg(&client->dev, "Setting VID from GPIO11-15.\n");
-	data->vid = (data->gpio >> 11) & 0x1f;
 	data->valid = 1;
 	mutex_unlock(&data->update_lock);
 	return data;
@@ -1215,7 +1212,10 @@
 static ssize_t show_vid_reg(struct device *dev, struct device_attribute *attr, char *buf)
 {
 	struct adm1026_data *data = adm1026_update_device(dev);
-	return sprintf(buf, "%d\n", vid_from_reg(data->vid & 0x3f, data->vrm));
+	int vid = (data->gpio >> 11) & 0x1f;
+
+	dev_dbg(dev, "Setting VID from GPIO11-15.\n");
+	return sprintf(buf, "%d\n", vid_from_reg(vid, data->vrm));
 }
 static DEVICE_ATTR(cpu0_vid, S_IRUGO, show_vid_reg, NULL);
 
@@ -1681,17 +1681,16 @@
 			kind = adm1026;
 		} else if (company == ADM1026_COMPANY_ANALOG_DEV
 			&& (verstep & 0xf0) == ADM1026_VERSTEP_GENERIC) {
-			dev_err(&adapter->dev, ": Unrecognized stepping "
+			dev_err(&adapter->dev, "Unrecognized stepping "
 				"0x%02x. Defaulting to ADM1026.\n", verstep);
 			kind = adm1026;
 		} else if ((verstep & 0xf0) == ADM1026_VERSTEP_GENERIC) {
-			dev_err(&adapter->dev, ": Found version/stepping "
+			dev_err(&adapter->dev, "Found version/stepping "
 				"0x%02x. Assuming generic ADM1026.\n",
 				verstep);
 			kind = any_chip;
 		} else {
-			dev_dbg(&adapter->dev, ": Autodetection "
-				"failed\n");
+			dev_dbg(&adapter->dev, "Autodetection failed\n");
 			/* Not an ADM1026 ... */
 			if (kind == 0) { /* User used force=x,y */
 				dev_err(&adapter->dev, "Generic ADM1026 not "
diff --git a/drivers/hwmon/adm1029.c b/drivers/hwmon/adm1029.c
index ba84ca5..3671815 100644
--- a/drivers/hwmon/adm1029.c
+++ b/drivers/hwmon/adm1029.c
@@ -179,7 +179,8 @@
 	struct sensor_device_attribute *attr = to_sensor_dev_attr(devattr);
 	struct adm1029_data *data = adm1029_update_device(dev);
 	u16 val;
-	if (data->fan[attr->index] == 0 || data->fan_div[attr->index] == 0
+	if (data->fan[attr->index] == 0
+	    || (data->fan_div[attr->index] & 0xC0) == 0
 	    || data->fan[attr->index] == 255) {
 		return sprintf(buf, "0\n");
 	}
@@ -194,7 +195,7 @@
 {
 	struct sensor_device_attribute *attr = to_sensor_dev_attr(devattr);
 	struct adm1029_data *data = adm1029_update_device(dev);
-	if (data->fan_div[attr->index] == 0)
+	if ((data->fan_div[attr->index] & 0xC0) == 0)
 		return sprintf(buf, "0\n");
 	return sprintf(buf, "%d\n", DIV_FROM_REG(data->fan_div[attr->index]));
 }
diff --git a/drivers/hwmon/ams/ams-core.c b/drivers/hwmon/ams/ams-core.c
index fbefa82..6c9ace1 100644
--- a/drivers/hwmon/ams/ams-core.c
+++ b/drivers/hwmon/ams/ams-core.c
@@ -99,40 +99,32 @@
  */
 static void ams_worker(struct work_struct *work)
 {
+	unsigned long flags;
+	u8 irqs_to_clear;
+
 	mutex_lock(&ams_info.lock);
 
-	if (ams_info.has_device) {
-		unsigned long flags;
+	spin_lock_irqsave(&ams_info.irq_lock, flags);
+	irqs_to_clear = ams_info.worker_irqs;
 
-		spin_lock_irqsave(&ams_info.irq_lock, flags);
+	if (ams_info.worker_irqs & AMS_IRQ_FREEFALL) {
+		if (verbose)
+			printk(KERN_INFO "ams: freefall detected!\n");
 
-		if (ams_info.worker_irqs & AMS_IRQ_FREEFALL) {
-			if (verbose)
-				printk(KERN_INFO "ams: freefall detected!\n");
-
-			ams_info.worker_irqs &= ~AMS_IRQ_FREEFALL;
-
-			/* we must call this with interrupts enabled */
-			spin_unlock_irqrestore(&ams_info.irq_lock, flags);
-			ams_info.clear_irq(AMS_IRQ_FREEFALL);
-			spin_lock_irqsave(&ams_info.irq_lock, flags);
-		}
-
-		if (ams_info.worker_irqs & AMS_IRQ_SHOCK) {
-			if (verbose)
-				printk(KERN_INFO "ams: shock detected!\n");
-
-			ams_info.worker_irqs &= ~AMS_IRQ_SHOCK;
-
-			/* we must call this with interrupts enabled */
-			spin_unlock_irqrestore(&ams_info.irq_lock, flags);
-			ams_info.clear_irq(AMS_IRQ_SHOCK);
-			spin_lock_irqsave(&ams_info.irq_lock, flags);
-		}
-
-		spin_unlock_irqrestore(&ams_info.irq_lock, flags);
+		ams_info.worker_irqs &= ~AMS_IRQ_FREEFALL;
 	}
 
+	if (ams_info.worker_irqs & AMS_IRQ_SHOCK) {
+		if (verbose)
+			printk(KERN_INFO "ams: shock detected!\n");
+
+		ams_info.worker_irqs &= ~AMS_IRQ_SHOCK;
+	}
+
+	spin_unlock_irqrestore(&ams_info.irq_lock, flags);
+
+	ams_info.clear_irq(irqs_to_clear);
+
 	mutex_unlock(&ams_info.lock);
 }
 
@@ -223,34 +215,28 @@
 
 void ams_exit(void)
 {
-	mutex_lock(&ams_info.lock);
+	/* Remove input device */
+	ams_input_exit();
 
-	if (ams_info.has_device) {
-		/* Remove input device */
-		ams_input_exit();
+	/* Remove attributes */
+	device_remove_file(&ams_info.of_dev->dev, &dev_attr_current);
 
-		/* Shut down implementation */
-		ams_info.exit();
+	/* Shut down implementation */
+	ams_info.exit();
 
-		/* Flush interrupt worker
-		 *
-		 * We do this after ams_info.exit(), because an interrupt might
-		 * have arrived before disabling them.
-		 */
-		flush_scheduled_work();
+	/* Flush interrupt worker
+	 *
+	 * We do this after ams_info.exit(), because an interrupt might
+	 * have arrived before disabling them.
+	 */
+	flush_scheduled_work();
 
-		/* Remove attributes */
-		device_remove_file(&ams_info.of_dev->dev, &dev_attr_current);
+	/* Remove device */
+	of_device_unregister(ams_info.of_dev);
 
-		/* Remove device */
-		of_device_unregister(ams_info.of_dev);
-
-		/* Remove handler */
-		pmf_unregister_irq_client(&ams_shock_client);
-		pmf_unregister_irq_client(&ams_freefall_client);
-	}
-
-	mutex_unlock(&ams_info.lock);
+	/* Remove handler */
+	pmf_unregister_irq_client(&ams_shock_client);
+	pmf_unregister_irq_client(&ams_freefall_client);
 }
 
 MODULE_AUTHOR("Stelian Pop, Michael Hanselmann");
diff --git a/drivers/hwmon/ams/ams-i2c.c b/drivers/hwmon/ams/ams-i2c.c
index 95776053..2cbf8a65 100644
--- a/drivers/hwmon/ams/ams-i2c.c
+++ b/drivers/hwmon/ams/ams-i2c.c
@@ -60,26 +60,34 @@
 	AMS_CMD_START,
 };
 
-static int ams_i2c_attach(struct i2c_adapter *adapter);
-static int ams_i2c_detach(struct i2c_adapter *adapter);
+static int ams_i2c_probe(struct i2c_client *client,
+			 const struct i2c_device_id *id);
+static int ams_i2c_remove(struct i2c_client *client);
+
+static const struct i2c_device_id ams_id[] = {
+	{ "ams", 0 },
+	{ }
+};
+MODULE_DEVICE_TABLE(i2c, ams_id);
 
 static struct i2c_driver ams_i2c_driver = {
 	.driver = {
 		.name   = "ams",
 		.owner  = THIS_MODULE,
 	},
-	.attach_adapter = ams_i2c_attach,
-	.detach_adapter = ams_i2c_detach,
+	.probe          = ams_i2c_probe,
+	.remove         = ams_i2c_remove,
+	.id_table       = ams_id,
 };
 
 static s32 ams_i2c_read(u8 reg)
 {
-	return i2c_smbus_read_byte_data(&ams_info.i2c_client, reg);
+	return i2c_smbus_read_byte_data(ams_info.i2c_client, reg);
 }
 
 static int ams_i2c_write(u8 reg, u8 value)
 {
-	return i2c_smbus_write_byte_data(&ams_info.i2c_client, reg, value);
+	return i2c_smbus_write_byte_data(ams_info.i2c_client, reg, value);
 }
 
 static int ams_i2c_cmd(enum ams_i2c_cmd cmd)
@@ -152,9 +160,9 @@
 	*z = ams_i2c_read(AMS_DATAZ);
 }
 
-static int ams_i2c_attach(struct i2c_adapter *adapter)
+static int ams_i2c_probe(struct i2c_client *client,
+			 const struct i2c_device_id *id)
 {
-	unsigned long bus;
 	int vmaj, vmin;
 	int result;
 
@@ -162,17 +170,7 @@
 	if (unlikely(ams_info.has_device))
 		return -ENODEV;
 
-	if (strncmp(adapter->name, "uni-n", 5))
-		return -ENODEV;
-
-	bus = simple_strtoul(adapter->name + 6, NULL, 10);
-	if (bus != ams_info.i2c_bus)
-		return -ENODEV;
-
-	ams_info.i2c_client.addr = ams_info.i2c_address;
-	ams_info.i2c_client.adapter = adapter;
-	ams_info.i2c_client.driver = &ams_i2c_driver;
-	strcpy(ams_info.i2c_client.name, "Apple Motion Sensor");
+	ams_info.i2c_client = client;
 
 	if (ams_i2c_cmd(AMS_CMD_RESET)) {
 		printk(KERN_INFO "ams: Failed to reset the device\n");
@@ -237,7 +235,7 @@
 	return 0;
 }
 
-static int ams_i2c_detach(struct i2c_adapter *adapter)
+static int ams_i2c_remove(struct i2c_client *client)
 {
 	if (ams_info.has_device) {
 		/* Disable interrupts */
@@ -261,11 +259,7 @@
 
 int __init ams_i2c_init(struct device_node *np)
 {
-	char *tmp_bus;
 	int result;
-	const u32 *prop;
-
-	mutex_lock(&ams_info.lock);
 
 	/* Set implementation stuff */
 	ams_info.of_node = np;
@@ -275,25 +269,7 @@
 	ams_info.clear_irq = ams_i2c_clear_irq;
 	ams_info.bustype = BUS_I2C;
 
-	/* look for bus either using "reg" or by path */
-	prop = of_get_property(ams_info.of_node, "reg", NULL);
-	if (!prop) {
-		result = -ENODEV;
-
-		goto exit;
-	}
-
-	tmp_bus = strstr(ams_info.of_node->full_name, "/i2c-bus@");
-	if (tmp_bus)
-		ams_info.i2c_bus = *(tmp_bus + 9) - '0';
-	else
-		ams_info.i2c_bus = ((*prop) >> 8) & 0x0f;
-	ams_info.i2c_address = ((*prop) & 0xff) >> 1;
-
 	result = i2c_add_driver(&ams_i2c_driver);
 
-exit:
-	mutex_unlock(&ams_info.lock);
-
 	return result;
 }
diff --git a/drivers/hwmon/ams/ams-input.c b/drivers/hwmon/ams/ams-input.c
index 7b81e0c2..8a71239 100644
--- a/drivers/hwmon/ams/ams-input.c
+++ b/drivers/hwmon/ams/ams-input.c
@@ -20,13 +20,15 @@
 #include "ams.h"
 
 static unsigned int joystick;
-module_param(joystick, bool, 0644);
+module_param(joystick, bool, S_IRUGO);
 MODULE_PARM_DESC(joystick, "Enable the input class device on module load");
 
 static unsigned int invert;
-module_param(invert, bool, 0644);
+module_param(invert, bool, S_IWUSR | S_IRUGO);
 MODULE_PARM_DESC(invert, "Invert input data on X and Y axis");
 
+static DEFINE_MUTEX(ams_input_mutex);
+
 static void ams_idev_poll(struct input_polled_dev *dev)
 {
 	struct input_dev *idev = dev->input;
@@ -50,13 +52,11 @@
 }
 
 /* Call with ams_info.lock held! */
-static void ams_input_enable(void)
+static int ams_input_enable(void)
 {
 	struct input_dev *input;
 	s8 x, y, z;
-
-	if (ams_info.idev)
-		return;
+	int error;
 
 	ams_sensors(&x, &y, &z);
 	ams_info.xcalib = x;
@@ -65,7 +65,7 @@
 
 	ams_info.idev = input_allocate_polled_device();
 	if (!ams_info.idev)
-		return;
+		return -ENOMEM;
 
 	ams_info.idev->poll = ams_idev_poll;
 	ams_info.idev->poll_interval = 25;
@@ -84,14 +84,18 @@
 	set_bit(EV_KEY, input->evbit);
 	set_bit(BTN_TOUCH, input->keybit);
 
-	if (input_register_polled_device(ams_info.idev)) {
+	error = input_register_polled_device(ams_info.idev);
+	if (error) {
 		input_free_polled_device(ams_info.idev);
 		ams_info.idev = NULL;
-		return;
+		return error;
 	}
+
+	joystick = 1;
+
+	return 0;
 }
 
-/* Call with ams_info.lock held! */
 static void ams_input_disable(void)
 {
 	if (ams_info.idev) {
@@ -99,6 +103,8 @@
 		input_free_polled_device(ams_info.idev);
 		ams_info.idev = NULL;
 	}
+
+	joystick = 0;
 }
 
 static ssize_t ams_input_show_joystick(struct device *dev,
@@ -110,39 +116,42 @@
 static ssize_t ams_input_store_joystick(struct device *dev,
 	struct device_attribute *attr, const char *buf, size_t count)
 {
-	if (sscanf(buf, "%d\n", &joystick) != 1)
+	unsigned long enable;
+	int error = 0;
+
+	if (strict_strtoul(buf, 0, &enable) || enable > 1)
 		return -EINVAL;
 
-	mutex_lock(&ams_info.lock);
+	mutex_lock(&ams_input_mutex);
 
-	if (joystick)
-		ams_input_enable();
-	else
-		ams_input_disable();
+	if (enable != joystick) {
+		if (enable)
+			error = ams_input_enable();
+		else
+			ams_input_disable();
+	}
 
-	mutex_unlock(&ams_info.lock);
+	mutex_unlock(&ams_input_mutex);
 
-	return count;
+	return error ? error : count;
 }
 
 static DEVICE_ATTR(joystick, S_IRUGO | S_IWUSR,
 	ams_input_show_joystick, ams_input_store_joystick);
 
-/* Call with ams_info.lock held! */
 int ams_input_init(void)
 {
-	int result;
-
-	result = device_create_file(&ams_info.of_dev->dev, &dev_attr_joystick);
-
-	if (!result && joystick)
+	if (joystick)
 		ams_input_enable();
-	return result;
+
+	return device_create_file(&ams_info.of_dev->dev, &dev_attr_joystick);
 }
 
-/* Call with ams_info.lock held! */
 void ams_input_exit(void)
 {
-	ams_input_disable();
 	device_remove_file(&ams_info.of_dev->dev, &dev_attr_joystick);
+
+	mutex_lock(&ams_input_mutex);
+	ams_input_disable();
+	mutex_unlock(&ams_input_mutex);
 }
diff --git a/drivers/hwmon/ams/ams-pmu.c b/drivers/hwmon/ams/ams-pmu.c
index 9463e97..fb18b3d 100644
--- a/drivers/hwmon/ams/ams-pmu.c
+++ b/drivers/hwmon/ams/ams-pmu.c
@@ -149,8 +149,6 @@
 	const u32 *prop;
 	int result;
 
-	mutex_lock(&ams_info.lock);
-
 	/* Set implementation stuff */
 	ams_info.of_node = np;
 	ams_info.exit = ams_pmu_exit;
@@ -161,10 +159,9 @@
 
 	/* Get PMU command, should be 0x4e, but we can never know */
 	prop = of_get_property(ams_info.of_node, "reg", NULL);
-	if (!prop) {
-		result = -ENODEV;
-		goto exit;
-	}
+	if (!prop)
+		return -ENODEV;
+
 	ams_pmu_cmd = ((*prop) >> 8) & 0xff;
 
 	/* Disable interrupts */
@@ -175,7 +172,7 @@
 
 	result = ams_sensor_attach();
 	if (result < 0)
-		goto exit;
+		return result;
 
 	/* Set default values */
 	ams_pmu_set_register(AMS_FF_LOW_LIMIT, 0x15);
@@ -198,10 +195,5 @@
 
 	printk(KERN_INFO "ams: Found PMU based motion sensor\n");
 
-	result = 0;
-
-exit:
-	mutex_unlock(&ams_info.lock);
-
-	return result;
+	return 0;
 }
diff --git a/drivers/hwmon/ams/ams.h b/drivers/hwmon/ams/ams.h
index 221ef69..5ed387b 100644
--- a/drivers/hwmon/ams/ams.h
+++ b/drivers/hwmon/ams/ams.h
@@ -46,9 +46,7 @@
 
 #ifdef CONFIG_SENSORS_AMS_I2C
 	/* I2C properties */
-	int i2c_bus;
-	int i2c_address;
-	struct i2c_client i2c_client;
+	struct i2c_client *i2c_client;
 #endif
 
 	/* Joystick emulation */
diff --git a/drivers/hwmon/ibmaem.c b/drivers/hwmon/ibmaem.c
index 0f70dc2..7b0ed5d 100644
--- a/drivers/hwmon/ibmaem.c
+++ b/drivers/hwmon/ibmaem.c
@@ -1118,3 +1118,10 @@
 
 module_init(aem_init);
 module_exit(aem_exit);
+
+MODULE_ALIAS("dmi:bvnIBM:*:pnIBMSystemx3350-*");
+MODULE_ALIAS("dmi:bvnIBM:*:pnIBMSystemx3550-*");
+MODULE_ALIAS("dmi:bvnIBM:*:pnIBMSystemx3650-*");
+MODULE_ALIAS("dmi:bvnIBM:*:pnIBMSystemx3655-*");
+MODULE_ALIAS("dmi:bvnIBM:*:pnIBMSystemx3755-*");
+MODULE_ALIAS("dmi:bvnIBM:*:pnIBM3850M2/x3950M2-*");
diff --git a/drivers/hwmon/ibmpex.c b/drivers/hwmon/ibmpex.c
index 4e9b19c..537d9fb 100644
--- a/drivers/hwmon/ibmpex.c
+++ b/drivers/hwmon/ibmpex.c
@@ -608,3 +608,9 @@
 
 module_init(ibmpex_init);
 module_exit(ibmpex_exit);
+
+MODULE_ALIAS("dmi:bvnIBM:*:pnIBMSystemx3350-*");
+MODULE_ALIAS("dmi:bvnIBM:*:pnIBMSystemx3550-*");
+MODULE_ALIAS("dmi:bvnIBM:*:pnIBMSystemx3650-*");
+MODULE_ALIAS("dmi:bvnIBM:*:pnIBMSystemx3655-*");
+MODULE_ALIAS("dmi:bvnIBM:*:pnIBMSystemx3755-*");
diff --git a/drivers/hwmon/it87.c b/drivers/hwmon/it87.c
index d793cc0..b74c957 100644
--- a/drivers/hwmon/it87.c
+++ b/drivers/hwmon/it87.c
@@ -477,7 +477,7 @@
 	if (reg & (1 << nr))
 		return sprintf(buf, "3\n");  /* thermal diode */
 	if (reg & (8 << nr))
-		return sprintf(buf, "2\n");  /* thermistor */
+		return sprintf(buf, "4\n");  /* thermistor */
 	return sprintf(buf, "0\n");      /* disabled */
 }
 static ssize_t set_sensor(struct device *dev, struct device_attribute *attr,
@@ -493,10 +493,15 @@
 
 	data->sensor &= ~(1 << nr);
 	data->sensor &= ~(8 << nr);
-	/* 3 = thermal diode; 2 = thermistor; 0 = disabled */
+	if (val == 2) {	/* backwards compatibility */
+		dev_warn(dev, "Sensor type 2 is deprecated, please use 4 "
+			 "instead\n");
+		val = 4;
+	}
+	/* 3 = thermal diode; 4 = thermistor; 0 = disabled */
 	if (val == 3)
 	    data->sensor |= 1 << nr;
-	else if (val == 2)
+	else if (val == 4)
 	    data->sensor |= 8 << nr;
 	else if (val != 0) {
 		mutex_unlock(&data->update_lock);
diff --git a/drivers/hwmon/lm78.c b/drivers/hwmon/lm78.c
index ed7859f..b5e3b28 100644
--- a/drivers/hwmon/lm78.c
+++ b/drivers/hwmon/lm78.c
@@ -114,25 +114,16 @@
 
 #define DIV_FROM_REG(val) (1 << (val))
 
-/* There are some complications in a module like this. First off, LM78 chips
-   may be both present on the SMBus and the ISA bus, and we have to handle
-   those cases separately at some places. Second, there might be several
-   LM78 chips available (well, actually, that is probably never done; but
-   it is a clean illustration of how to handle a case like that). Finally,
-   a specific chip may be attached to *both* ISA and SMBus, and we would
-   not like to detect it double. Fortunately, in the case of the LM78 at
-   least, a register tells us what SMBus address we are on, so that helps
-   a bit - except if there could be more than one SMBus. Groan. No solution
-   for this yet. */
-
-/* For ISA chips, we abuse the i2c_client addr and name fields. We also use
-   the driver field to differentiate between I2C and ISA chips. */
 struct lm78_data {
-	struct i2c_client client;
+	struct i2c_client *client;
 	struct device *hwmon_dev;
 	struct mutex lock;
 	enum chips type;
 
+	/* For ISA device only */
+	const char *name;
+	int isa_addr;
+
 	struct mutex update_lock;
 	char valid;		/* !=0 if following fields are valid */
 	unsigned long last_updated;	/* In jiffies */
@@ -151,9 +142,11 @@
 };
 
 
-static int lm78_attach_adapter(struct i2c_adapter *adapter);
-static int lm78_detect(struct i2c_adapter *adapter, int address, int kind);
-static int lm78_detach_client(struct i2c_client *client);
+static int lm78_i2c_detect(struct i2c_client *client, int kind,
+			   struct i2c_board_info *info);
+static int lm78_i2c_probe(struct i2c_client *client,
+			  const struct i2c_device_id *id);
+static int lm78_i2c_remove(struct i2c_client *client);
 
 static int __devinit lm78_isa_probe(struct platform_device *pdev);
 static int __devexit lm78_isa_remove(struct platform_device *pdev);
@@ -164,12 +157,23 @@
 static void lm78_init_device(struct lm78_data *data);
 
 
+static const struct i2c_device_id lm78_i2c_id[] = {
+	{ "lm78", lm78 },
+	{ "lm79", lm79 },
+	{ }
+};
+MODULE_DEVICE_TABLE(i2c, lm78_i2c_id);
+
 static struct i2c_driver lm78_driver = {
+	.class		= I2C_CLASS_HWMON,
 	.driver = {
 		.name	= "lm78",
 	},
-	.attach_adapter	= lm78_attach_adapter,
-	.detach_client	= lm78_detach_client,
+	.probe		= lm78_i2c_probe,
+	.remove		= lm78_i2c_remove,
+	.id_table	= lm78_i2c_id,
+	.detect		= lm78_i2c_detect,
+	.address_data	= &addr_data,
 };
 
 static struct platform_driver lm78_isa_driver = {
@@ -454,17 +458,6 @@
 static SENSOR_DEVICE_ATTR(fan3_alarm, S_IRUGO, show_alarm, NULL, 11);
 static SENSOR_DEVICE_ATTR(temp1_alarm, S_IRUGO, show_alarm, NULL, 4);
 
-/* This function is called when:
-     * lm78_driver is inserted (when this module is loaded), for each
-       available adapter
-     * when a new adapter is inserted (and lm78_driver is still present) */
-static int lm78_attach_adapter(struct i2c_adapter *adapter)
-{
-	if (!(adapter->class & I2C_CLASS_HWMON))
-		return 0;
-	return i2c_probe(adapter, &addr_data, lm78_detect);
-}
-
 static struct attribute *lm78_attributes[] = {
 	&sensor_dev_attr_in0_input.dev_attr.attr,
 	&sensor_dev_attr_in0_min.dev_attr.attr,
@@ -527,54 +520,77 @@
 {
 	struct lm78_data *data = dev_get_drvdata(dev);
 
-	return sprintf(buf, "%s\n", data->client.name);
+	return sprintf(buf, "%s\n", data->name);
 }
 static DEVICE_ATTR(name, S_IRUGO, show_name, NULL);
 
-/* This function is called by i2c_probe */
-static int lm78_detect(struct i2c_adapter *adapter, int address, int kind)
+/* Returns 1 if the I2C chip appears to be an alias of the ISA chip */
+static int lm78_alias_detect(struct i2c_client *client, u8 chipid)
 {
-	int i, err;
-	struct i2c_client *new_client;
-	struct lm78_data *data;
-	const char *client_name = "";
+	struct lm78_data *isa;
+	int i;
 
-	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA)) {
-		err = -ENODEV;
-		goto ERROR1;
+	if (!pdev)	/* No ISA chip */
+		return 0;
+	isa = platform_get_drvdata(pdev);
+
+	if (lm78_read_value(isa, LM78_REG_I2C_ADDR) != client->addr)
+		return 0;	/* Address doesn't match */
+	if ((lm78_read_value(isa, LM78_REG_CHIPID) & 0xfe) != (chipid & 0xfe))
+		return 0;	/* Chip type doesn't match */
+
+	/* We compare all the limit registers, the config register and the
+	 * interrupt mask registers */
+	for (i = 0x2b; i <= 0x3d; i++) {
+		if (lm78_read_value(isa, i) !=
+		    i2c_smbus_read_byte_data(client, i))
+			return 0;
+	}
+	if (lm78_read_value(isa, LM78_REG_CONFIG) !=
+	    i2c_smbus_read_byte_data(client, LM78_REG_CONFIG))
+		return 0;
+	for (i = 0x43; i <= 0x46; i++) {
+		if (lm78_read_value(isa, i) !=
+		    i2c_smbus_read_byte_data(client, i))
+			return 0;
 	}
 
-	/* OK. For now, we presume we have a valid client. We now create the
-	   client structure, even though we cannot fill it completely yet.
-	   But it allows us to access lm78_{read,write}_value. */
+	return 1;
+}
 
-	if (!(data = kzalloc(sizeof(struct lm78_data), GFP_KERNEL))) {
-		err = -ENOMEM;
-		goto ERROR1;
-	}
+static int lm78_i2c_detect(struct i2c_client *client, int kind,
+			   struct i2c_board_info *info)
+{
+	int i;
+	struct lm78_data *isa = pdev ? platform_get_drvdata(pdev) : NULL;
+	const char *client_name;
+	struct i2c_adapter *adapter = client->adapter;
+	int address = client->addr;
 
-	new_client = &data->client;
-	i2c_set_clientdata(new_client, data);
-	new_client->addr = address;
-	new_client->adapter = adapter;
-	new_client->driver = &lm78_driver;
+	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA))
+		return -ENODEV;
 
-	/* Now, we do the remaining detection. */
+	/* We block updates of the ISA device to minimize the risk of
+	   concurrent access to the same LM78 chip through different
+	   interfaces. */
+	if (isa)
+		mutex_lock(&isa->update_lock);
+
 	if (kind < 0) {
-		if (lm78_read_value(data, LM78_REG_CONFIG) & 0x80) {
-			err = -ENODEV;
-			goto ERROR2;
-		}
-		if (lm78_read_value(data, LM78_REG_I2C_ADDR) !=
-		    address) {
-			err = -ENODEV;
-			goto ERROR2;
-		}
+		if ((i2c_smbus_read_byte_data(client, LM78_REG_CONFIG) & 0x80)
+		 || i2c_smbus_read_byte_data(client, LM78_REG_I2C_ADDR)
+		    != address)
+			goto err_nodev;
+
+		/* Explicitly prevent the misdetection of Winbond chips */
+		i = i2c_smbus_read_byte_data(client, 0x4f);
+		if (i == 0xa3 || i == 0x5c)
+			goto err_nodev;
 	}
 
 	/* Determine the chip type. */
 	if (kind <= 0) {
-		i = lm78_read_value(data, LM78_REG_CHIPID);
+		i = i2c_smbus_read_byte_data(client, LM78_REG_CHIPID);
 		if (i == 0x00 || i == 0x20	/* LM78 */
 		 || i == 0x40)			/* LM78-J */
 			kind = lm78;
@@ -586,33 +602,59 @@
 					"parameter for unknown chip at "
 					"adapter %d, address 0x%02x\n",
 					i2c_adapter_id(adapter), address);
-			err = -ENODEV;
-			goto ERROR2;
+			goto err_nodev;
+		}
+
+		if (lm78_alias_detect(client, i)) {
+			dev_dbg(&adapter->dev, "Device at 0x%02x appears to "
+				"be the same as ISA device\n", address);
+			goto err_nodev;
 		}
 	}
 
-	if (kind == lm78) {
-		client_name = "lm78";
-	} else if (kind == lm79) {
+	if (isa)
+		mutex_unlock(&isa->update_lock);
+
+	switch (kind) {
+	case lm79:
 		client_name = "lm79";
+		break;
+	default:
+		client_name = "lm78";
 	}
+	strlcpy(info->type, client_name, I2C_NAME_SIZE);
 
-	/* Fill in the remaining client fields and put into the global list */
-	strlcpy(new_client->name, client_name, I2C_NAME_SIZE);
-	data->type = kind;
+	return 0;
 
-	/* Tell the I2C layer a new client has arrived */
-	if ((err = i2c_attach_client(new_client)))
-		goto ERROR2;
+ err_nodev:
+	if (isa)
+		mutex_unlock(&isa->update_lock);
+	return -ENODEV;
+}
+
+static int lm78_i2c_probe(struct i2c_client *client,
+			  const struct i2c_device_id *id)
+{
+	struct lm78_data *data;
+	int err;
+
+	data = kzalloc(sizeof(struct lm78_data), GFP_KERNEL);
+	if (!data)
+		return -ENOMEM;
+
+	i2c_set_clientdata(client, data);
+	data->client = client;
+	data->type = id->driver_data;
 
 	/* Initialize the LM78 chip */
 	lm78_init_device(data);
 
 	/* Register sysfs hooks */
-	if ((err = sysfs_create_group(&new_client->dev.kobj, &lm78_group)))
+	err = sysfs_create_group(&client->dev.kobj, &lm78_group);
+	if (err)
 		goto ERROR3;
 
-	data->hwmon_dev = hwmon_device_register(&new_client->dev);
+	data->hwmon_dev = hwmon_device_register(&client->dev);
 	if (IS_ERR(data->hwmon_dev)) {
 		err = PTR_ERR(data->hwmon_dev);
 		goto ERROR4;
@@ -621,26 +663,18 @@
 	return 0;
 
 ERROR4:
-	sysfs_remove_group(&new_client->dev.kobj, &lm78_group);
+	sysfs_remove_group(&client->dev.kobj, &lm78_group);
 ERROR3:
-	i2c_detach_client(new_client);
-ERROR2:
 	kfree(data);
-ERROR1:
 	return err;
 }
 
-static int lm78_detach_client(struct i2c_client *client)
+static int lm78_i2c_remove(struct i2c_client *client)
 {
 	struct lm78_data *data = i2c_get_clientdata(client);
-	int err;
 
 	hwmon_device_unregister(data->hwmon_dev);
 	sysfs_remove_group(&client->dev.kobj, &lm78_group);
-
-	if ((err = i2c_detach_client(client)))
-		return err;
-
 	kfree(data);
 
 	return 0;
@@ -651,11 +685,10 @@
 	int err;
 	struct lm78_data *data;
 	struct resource *res;
-	const char *name;
 
 	/* Reserve the ISA region */
 	res = platform_get_resource(pdev, IORESOURCE_IO, 0);
-	if (!request_region(res->start, LM78_EXTENT, "lm78")) {
+	if (!request_region(res->start + LM78_ADDR_REG_OFFSET, 2, "lm78")) {
 		err = -EBUSY;
 		goto exit;
 	}
@@ -665,18 +698,16 @@
 		goto exit_release_region;
 	}
 	mutex_init(&data->lock);
-	data->client.addr = res->start;
-	i2c_set_clientdata(&data->client, data);
+	data->isa_addr = res->start;
 	platform_set_drvdata(pdev, data);
 
 	if (lm78_read_value(data, LM78_REG_CHIPID) & 0x80) {
 		data->type = lm79;
-		name = "lm79";
+		data->name = "lm79";
 	} else {
 		data->type = lm78;
-		name = "lm78";
+		data->name = "lm78";
 	}
-	strlcpy(data->client.name, name, I2C_NAME_SIZE);
 
 	/* Initialize the LM78 chip */
 	lm78_init_device(data);
@@ -699,7 +730,7 @@
 	device_remove_file(&pdev->dev, &dev_attr_name);
 	kfree(data);
  exit_release_region:
-	release_region(res->start, LM78_EXTENT);
+	release_region(res->start + LM78_ADDR_REG_OFFSET, 2);
  exit:
 	return err;
 }
@@ -707,13 +738,16 @@
 static int __devexit lm78_isa_remove(struct platform_device *pdev)
 {
 	struct lm78_data *data = platform_get_drvdata(pdev);
+	struct resource *res;
 
 	hwmon_device_unregister(data->hwmon_dev);
 	sysfs_remove_group(&pdev->dev.kobj, &lm78_group);
 	device_remove_file(&pdev->dev, &dev_attr_name);
-	release_region(data->client.addr, LM78_EXTENT);
 	kfree(data);
 
+	res = platform_get_resource(pdev, IORESOURCE_IO, 0);
+	release_region(res->start + LM78_ADDR_REG_OFFSET, 2);
+
 	return 0;
 }
 
@@ -724,13 +758,13 @@
    would slow down the LM78 access and should not be necessary.  */
 static int lm78_read_value(struct lm78_data *data, u8 reg)
 {
-	struct i2c_client *client = &data->client;
+	struct i2c_client *client = data->client;
 
-	if (!client->driver) { /* ISA device */
+	if (!client) { /* ISA device */
 		int res;
 		mutex_lock(&data->lock);
-		outb_p(reg, client->addr + LM78_ADDR_REG_OFFSET);
-		res = inb_p(client->addr + LM78_DATA_REG_OFFSET);
+		outb_p(reg, data->isa_addr + LM78_ADDR_REG_OFFSET);
+		res = inb_p(data->isa_addr + LM78_DATA_REG_OFFSET);
 		mutex_unlock(&data->lock);
 		return res;
 	} else
@@ -746,12 +780,12 @@
    nowhere else be necessary! */
 static int lm78_write_value(struct lm78_data *data, u8 reg, u8 value)
 {
-	struct i2c_client *client = &data->client;
+	struct i2c_client *client = data->client;
 
-	if (!client->driver) { /* ISA device */
+	if (!client) { /* ISA device */
 		mutex_lock(&data->lock);
-		outb_p(reg, client->addr + LM78_ADDR_REG_OFFSET);
-		outb_p(value, client->addr + LM78_DATA_REG_OFFSET);
+		outb_p(reg, data->isa_addr + LM78_ADDR_REG_OFFSET);
+		outb_p(value, data->isa_addr + LM78_DATA_REG_OFFSET);
 		mutex_unlock(&data->lock);
 		return 0;
 	} else
@@ -837,8 +871,17 @@
 {
 	int val, save, found = 0;
 
-	if (!request_region(address, LM78_EXTENT, "lm78"))
+	/* We have to request the region in two parts because some
+	   boards declare base+4 to base+7 as a PNP device */
+	if (!request_region(address, 4, "lm78")) {
+		pr_debug("lm78: Failed to request low part of region\n");
 		return 0;
+	}
+	if (!request_region(address + 4, 4, "lm78")) {
+		pr_debug("lm78: Failed to request high part of region\n");
+		release_region(address, 4);
+		return 0;
+	}
 
 #define REALLY_SLOW_IO
 	/* We need the timeouts for at least some LM78-like
@@ -901,7 +944,8 @@
 			val & 0x80 ? "LM79" : "LM78", (int)address);
 
  release:
-	release_region(address, LM78_EXTENT);
+	release_region(address + 4, 4);
+	release_region(address, 4);
 	return found;
 }
 
@@ -949,14 +993,12 @@
 {
 	int res;
 
-	res = i2c_add_driver(&lm78_driver);
-	if (res)
-		goto exit;
-
+	/* We register the ISA device first, so that we can skip the
+	 * registration of an I2C interface to the same device. */
 	if (lm78_isa_found(isa_address)) {
 		res = platform_driver_register(&lm78_isa_driver);
 		if (res)
-			goto exit_unreg_i2c_driver;
+			goto exit;
 
 		/* Sets global pdev as a side effect */
 		res = lm78_isa_device_add(isa_address);
@@ -964,12 +1006,16 @@
 			goto exit_unreg_isa_driver;
 	}
 
+	res = i2c_add_driver(&lm78_driver);
+	if (res)
+		goto exit_unreg_isa_device;
+
 	return 0;
 
+ exit_unreg_isa_device:
+	platform_device_unregister(pdev);
  exit_unreg_isa_driver:
 	platform_driver_unregister(&lm78_isa_driver);
- exit_unreg_i2c_driver:
-	i2c_del_driver(&lm78_driver);
  exit:
 	return res;
 }
diff --git a/drivers/hwmon/lm85.c b/drivers/hwmon/lm85.c
index 12d446f..3ff0285 100644
--- a/drivers/hwmon/lm85.c
+++ b/drivers/hwmon/lm85.c
@@ -5,6 +5,7 @@
     Copyright (c) 2002, 2003  Philip Pokorny <ppokorny@penguincomputing.com>
     Copyright (c) 2003        Margit Schubert-While <margitsw@t-online.de>
     Copyright (c) 2004        Justin Thiessen <jthiessen@penguincomputing.com>
+    Copyright (C) 2007, 2008  Jean Delvare <khali@linux-fr.org>
 
     Chip details at	      <http://www.national.com/ds/LM/LM85.pdf>
 
@@ -173,40 +174,39 @@
 {
 	int i;
 
-	if (range >= lm85_range_map[15])
-		return 15;
-
 	/* Find the closest match */
-	for (i = 14; i >= 0; --i) {
-		if (range >= lm85_range_map[i]) {
-			if ((lm85_range_map[i + 1] - range) <
-					(range - lm85_range_map[i]))
-				return i + 1;
-			return i;
-		}
+	for (i = 0; i < 15; ++i) {
+		if (range <= (lm85_range_map[i] + lm85_range_map[i + 1]) / 2)
+			break;
 	}
 
-	return 0;
+	return i;
 }
 #define RANGE_FROM_REG(val)	lm85_range_map[(val) & 0x0f]
 
 /* These are the PWM frequency encodings */
-static const int lm85_freq_map[] = { /* .1 Hz */
-	100, 150, 230, 300, 380, 470, 620, 940
+static const int lm85_freq_map[8] = { /* 1 Hz */
+	10, 15, 23, 30, 38, 47, 61, 94
+};
+static const int adm1027_freq_map[8] = { /* 1 Hz */
+	11, 15, 22, 29, 35, 44, 59, 88
 };
 
-static int FREQ_TO_REG(int freq)
+static int FREQ_TO_REG(const int *map, int freq)
 {
 	int i;
 
-	if (freq >= lm85_freq_map[7])
-		return 7;
+	/* Find the closest match */
 	for (i = 0; i < 7; ++i)
-		if (freq <= lm85_freq_map[i])
+		if (freq <= (map[i] + map[i + 1]) / 2)
 			break;
 	return i;
 }
-#define FREQ_FROM_REG(val)	lm85_freq_map[(val) & 0x07]
+
+static int FREQ_FROM_REG(const int *map, u8 reg)
+{
+	return map[reg & 0x07];
+}
 
 /* Since we can't use strings, I'm abusing these numbers
  *   to stand in for the following meanings:
@@ -275,7 +275,6 @@
 
 struct lm85_autofan {
 	u8 config;	/* Register value */
-	u8 freq;	/* PWM frequency, encoded */
 	u8 min_pwm;	/* Minimum PWM value, encoded */
 	u8 min_off;	/* Min PWM or OFF below "limit", flag */
 };
@@ -283,8 +282,8 @@
 /* For each registered chip, we need to keep some data in memory.
    The structure is dynamically allocated. */
 struct lm85_data {
-	struct i2c_client client;
 	struct device *hwmon_dev;
+	const int *freq_map;
 	enum chips type;
 
 	struct mutex update_lock;
@@ -301,6 +300,7 @@
 	u16 fan[4];		/* Register value */
 	u16 fan_min[4];		/* Register value */
 	u8 pwm[3];		/* Register value */
+	u8 pwm_freq[3];		/* Register encoding */
 	u8 temp_ext[3];		/* Decoded values */
 	u8 in_ext[8];		/* Decoded values */
 	u8 vid;			/* Register value */
@@ -310,22 +310,40 @@
 	struct lm85_zone zone[3];
 };
 
-static int lm85_attach_adapter(struct i2c_adapter *adapter);
-static int lm85_detect(struct i2c_adapter *adapter, int address,
-			int kind);
-static int lm85_detach_client(struct i2c_client *client);
+static int lm85_detect(struct i2c_client *client, int kind,
+		       struct i2c_board_info *info);
+static int lm85_probe(struct i2c_client *client,
+		      const struct i2c_device_id *id);
+static int lm85_remove(struct i2c_client *client);
 
 static int lm85_read_value(struct i2c_client *client, u8 reg);
 static void lm85_write_value(struct i2c_client *client, u8 reg, int value);
 static struct lm85_data *lm85_update_device(struct device *dev);
 
 
+static const struct i2c_device_id lm85_id[] = {
+	{ "adm1027", adm1027 },
+	{ "adt7463", adt7463 },
+	{ "lm85", any_chip },
+	{ "lm85b", lm85b },
+	{ "lm85c", lm85c },
+	{ "emc6d100", emc6d100 },
+	{ "emc6d101", emc6d100 },
+	{ "emc6d102", emc6d102 },
+	{ }
+};
+MODULE_DEVICE_TABLE(i2c, lm85_id);
+
 static struct i2c_driver lm85_driver = {
+	.class		= I2C_CLASS_HWMON,
 	.driver = {
 		.name   = "lm85",
 	},
-	.attach_adapter = lm85_attach_adapter,
-	.detach_client  = lm85_detach_client,
+	.probe		= lm85_probe,
+	.remove		= lm85_remove,
+	.id_table	= lm85_id,
+	.detect		= lm85_detect,
+	.address_data	= &addr_data,
 };
 
 
@@ -528,11 +546,39 @@
 	return count;
 }
 
+static ssize_t show_pwm_freq(struct device *dev,
+		struct device_attribute *attr, char *buf)
+{
+	int nr = to_sensor_dev_attr(attr)->index;
+	struct lm85_data *data = lm85_update_device(dev);
+	return sprintf(buf, "%d\n", FREQ_FROM_REG(data->freq_map,
+						  data->pwm_freq[nr]));
+}
+
+static ssize_t set_pwm_freq(struct device *dev,
+		struct device_attribute *attr, const char *buf, size_t count)
+{
+	int nr = to_sensor_dev_attr(attr)->index;
+	struct i2c_client *client = to_i2c_client(dev);
+	struct lm85_data *data = i2c_get_clientdata(client);
+	long val = simple_strtol(buf, NULL, 10);
+
+	mutex_lock(&data->update_lock);
+	data->pwm_freq[nr] = FREQ_TO_REG(data->freq_map, val);
+	lm85_write_value(client, LM85_REG_AFAN_RANGE(nr),
+		(data->zone[nr].range << 4)
+		| data->pwm_freq[nr]);
+	mutex_unlock(&data->update_lock);
+	return count;
+}
+
 #define show_pwm_reg(offset)						\
 static SENSOR_DEVICE_ATTR(pwm##offset, S_IRUGO | S_IWUSR,		\
 		show_pwm, set_pwm, offset - 1);				\
 static SENSOR_DEVICE_ATTR(pwm##offset##_enable, S_IRUGO | S_IWUSR,	\
-		show_pwm_enable, set_pwm_enable, offset - 1)
+		show_pwm_enable, set_pwm_enable, offset - 1);		\
+static SENSOR_DEVICE_ATTR(pwm##offset##_freq, S_IRUGO | S_IWUSR,	\
+		show_pwm_freq, set_pwm_freq, offset - 1)
 
 show_pwm_reg(1);
 show_pwm_reg(2);
@@ -761,31 +807,6 @@
 	return count;
 }
 
-static ssize_t show_pwm_auto_pwm_freq(struct device *dev,
-		struct device_attribute *attr, char *buf)
-{
-	int nr = to_sensor_dev_attr(attr)->index;
-	struct lm85_data *data = lm85_update_device(dev);
-	return sprintf(buf, "%d\n", FREQ_FROM_REG(data->autofan[nr].freq));
-}
-
-static ssize_t set_pwm_auto_pwm_freq(struct device *dev,
-		struct device_attribute *attr, const char *buf, size_t count)
-{
-	int nr = to_sensor_dev_attr(attr)->index;
-	struct i2c_client *client = to_i2c_client(dev);
-	struct lm85_data *data = i2c_get_clientdata(client);
-	long val = simple_strtol(buf, NULL, 10);
-
-	mutex_lock(&data->update_lock);
-	data->autofan[nr].freq = FREQ_TO_REG(val);
-	lm85_write_value(client, LM85_REG_AFAN_RANGE(nr),
-		(data->zone[nr].range << 4)
-		| data->autofan[nr].freq);
-	mutex_unlock(&data->update_lock);
-	return count;
-}
-
 #define pwm_auto(offset)						\
 static SENSOR_DEVICE_ATTR(pwm##offset##_auto_channels,			\
 		S_IRUGO | S_IWUSR, show_pwm_auto_channels,		\
@@ -795,10 +816,7 @@
 		set_pwm_auto_pwm_min, offset - 1);			\
 static SENSOR_DEVICE_ATTR(pwm##offset##_auto_pwm_minctl,		\
 		S_IRUGO | S_IWUSR, show_pwm_auto_pwm_minctl,		\
-		set_pwm_auto_pwm_minctl, offset - 1);			\
-static SENSOR_DEVICE_ATTR(pwm##offset##_auto_pwm_freq,			\
-		S_IRUGO | S_IWUSR, show_pwm_auto_pwm_freq,		\
-		set_pwm_auto_pwm_freq, offset - 1);
+		set_pwm_auto_pwm_minctl, offset - 1)
 
 pwm_auto(1);
 pwm_auto(2);
@@ -867,7 +885,7 @@
 		TEMP_FROM_REG(data->zone[nr].limit));
 	lm85_write_value(client, LM85_REG_AFAN_RANGE(nr),
 		((data->zone[nr].range & 0x0f) << 4)
-		| (data->autofan[nr].freq & 0x07));
+		| (data->pwm_freq[nr] & 0x07));
 
 /* Update temp_auto_hyst and temp_auto_off */
 	data->zone[nr].hyst = HYST_TO_REG(TEMP_FROM_REG(
@@ -910,7 +928,7 @@
 		val - min);
 	lm85_write_value(client, LM85_REG_AFAN_RANGE(nr),
 		((data->zone[nr].range & 0x0f) << 4)
-		| (data->autofan[nr].freq & 0x07));
+		| (data->pwm_freq[nr] & 0x07));
 	mutex_unlock(&data->update_lock);
 	return count;
 }
@@ -957,13 +975,6 @@
 temp_auto(2);
 temp_auto(3);
 
-static int lm85_attach_adapter(struct i2c_adapter *adapter)
-{
-	if (!(adapter->class & I2C_CLASS_HWMON))
-		return 0;
-	return i2c_probe(adapter, &addr_data, lm85_detect);
-}
-
 static struct attribute *lm85_attributes[] = {
 	&sensor_dev_attr_fan1_input.dev_attr.attr,
 	&sensor_dev_attr_fan2_input.dev_attr.attr,
@@ -984,6 +995,9 @@
 	&sensor_dev_attr_pwm1_enable.dev_attr.attr,
 	&sensor_dev_attr_pwm2_enable.dev_attr.attr,
 	&sensor_dev_attr_pwm3_enable.dev_attr.attr,
+	&sensor_dev_attr_pwm1_freq.dev_attr.attr,
+	&sensor_dev_attr_pwm2_freq.dev_attr.attr,
+	&sensor_dev_attr_pwm3_freq.dev_attr.attr,
 
 	&sensor_dev_attr_in0_input.dev_attr.attr,
 	&sensor_dev_attr_in1_input.dev_attr.attr,
@@ -1026,9 +1040,6 @@
 	&sensor_dev_attr_pwm1_auto_pwm_minctl.dev_attr.attr,
 	&sensor_dev_attr_pwm2_auto_pwm_minctl.dev_attr.attr,
 	&sensor_dev_attr_pwm3_auto_pwm_minctl.dev_attr.attr,
-	&sensor_dev_attr_pwm1_auto_pwm_freq.dev_attr.attr,
-	&sensor_dev_attr_pwm2_auto_pwm_freq.dev_attr.attr,
-	&sensor_dev_attr_pwm3_auto_pwm_freq.dev_attr.attr,
 
 	&sensor_dev_attr_temp1_auto_temp_off.dev_attr.attr,
 	&sensor_dev_attr_temp2_auto_temp_off.dev_attr.attr,
@@ -1103,109 +1114,74 @@
 		dev_warn(&client->dev, "Device is not ready\n");
 }
 
-static int lm85_detect(struct i2c_adapter *adapter, int address,
-		int kind)
+/* Return 0 if detection is successful, -ENODEV otherwise */
+static int lm85_detect(struct i2c_client *client, int kind,
+		       struct i2c_board_info *info)
 {
-	int company, verstep;
-	struct i2c_client *client;
-	struct lm85_data *data;
-	int err = 0;
+	struct i2c_adapter *adapter = client->adapter;
+	int address = client->addr;
 	const char *type_name;
 
 	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA)) {
 		/* We need to be able to do byte I/O */
-		goto ERROR0;
+		return -ENODEV;
 	}
 
-	/* OK. For now, we presume we have a valid client. We now create the
-	   client structure, even though we cannot fill it completely yet.
-	   But it allows us to access lm85_{read,write}_value. */
+	/* If auto-detecting, determine the chip type */
+	if (kind < 0) {
+		int company = lm85_read_value(client, LM85_REG_COMPANY);
+		int verstep = lm85_read_value(client, LM85_REG_VERSTEP);
 
-	if (!(data = kzalloc(sizeof(struct lm85_data), GFP_KERNEL))) {
-		err = -ENOMEM;
-		goto ERROR0;
-	}
+		dev_dbg(&adapter->dev, "Detecting device at 0x%02x with "
+			"COMPANY: 0x%02x and VERSTEP: 0x%02x\n",
+			address, company, verstep);
 
-	client = &data->client;
-	i2c_set_clientdata(client, data);
-	client->addr = address;
-	client->adapter = adapter;
-	client->driver = &lm85_driver;
+		/* All supported chips have the version in common */
+		if ((verstep & LM85_VERSTEP_VMASK) != LM85_VERSTEP_GENERIC) {
+			dev_dbg(&adapter->dev, "Autodetection failed: "
+				"unsupported version\n");
+			return -ENODEV;
+		}
+		kind = any_chip;
 
-	/* Now, we do the remaining detection. */
-
-	company = lm85_read_value(client, LM85_REG_COMPANY);
-	verstep = lm85_read_value(client, LM85_REG_VERSTEP);
-
-	dev_dbg(&adapter->dev, "Detecting device at %d,0x%02x with"
-		" COMPANY: 0x%02x and VERSTEP: 0x%02x\n",
-		i2c_adapter_id(client->adapter), client->addr,
-		company, verstep);
-
-	/* If auto-detecting, Determine the chip type. */
-	if (kind <= 0) {
-		dev_dbg(&adapter->dev, "Autodetecting device at %d,0x%02x ...\n",
-			i2c_adapter_id(adapter), address);
-		if (company == LM85_COMPANY_NATIONAL
-		    && verstep == LM85_VERSTEP_LM85C) {
-			kind = lm85c;
-		} else if (company == LM85_COMPANY_NATIONAL
-		    && verstep == LM85_VERSTEP_LM85B) {
-			kind = lm85b;
-		} else if (company == LM85_COMPANY_NATIONAL
-		    && (verstep & LM85_VERSTEP_VMASK) == LM85_VERSTEP_GENERIC) {
-			dev_err(&adapter->dev, "Unrecognized version/stepping 0x%02x"
-				" Defaulting to LM85.\n", verstep);
-			kind = any_chip;
-		} else if (company == LM85_COMPANY_ANALOG_DEV
-		    && verstep == LM85_VERSTEP_ADM1027) {
-			kind = adm1027;
-		} else if (company == LM85_COMPANY_ANALOG_DEV
-		    && (verstep == LM85_VERSTEP_ADT7463
-			 || verstep == LM85_VERSTEP_ADT7463C)) {
-			kind = adt7463;
-		} else if (company == LM85_COMPANY_ANALOG_DEV
-		    && (verstep & LM85_VERSTEP_VMASK) == LM85_VERSTEP_GENERIC) {
-			dev_err(&adapter->dev, "Unrecognized version/stepping 0x%02x"
-				" Defaulting to Generic LM85.\n", verstep);
-			kind = any_chip;
-		} else if (company == LM85_COMPANY_SMSC
-		    && (verstep == LM85_VERSTEP_EMC6D100_A0
-			 || verstep == LM85_VERSTEP_EMC6D100_A1)) {
-			/* Unfortunately, we can't tell a '100 from a '101
-			 * from the registers.  Since a '101 is a '100
-			 * in a package with fewer pins and therefore no
-			 * 3.3V, 1.5V or 1.8V inputs, perhaps if those
-			 * inputs read 0, then it's a '101.
-			 */
-			kind = emc6d100;
-		} else if (company == LM85_COMPANY_SMSC
-		    && verstep == LM85_VERSTEP_EMC6D102) {
-			kind = emc6d102;
-		} else if (company == LM85_COMPANY_SMSC
-		    && (verstep & LM85_VERSTEP_VMASK) == LM85_VERSTEP_GENERIC) {
-			dev_err(&adapter->dev, "lm85: Detected SMSC chip\n");
-			dev_err(&adapter->dev, "lm85: Unrecognized version/stepping 0x%02x"
-			    " Defaulting to Generic LM85.\n", verstep);
-			kind = any_chip;
-		} else if (kind == any_chip
-		    && (verstep & LM85_VERSTEP_VMASK) == LM85_VERSTEP_GENERIC) {
-			dev_err(&adapter->dev, "Generic LM85 Version 6 detected\n");
-			/* Leave kind as "any_chip" */
-		} else {
-			dev_dbg(&adapter->dev, "Autodetection failed\n");
-			/* Not an LM85... */
-			if (kind == any_chip) {  /* User used force=x,y */
-				dev_err(&adapter->dev, "Generic LM85 Version 6 not"
-					" found at %d,0x%02x. Try force_lm85c.\n",
-					i2c_adapter_id(adapter), address);
+		/* Now, refine the detection */
+		if (company == LM85_COMPANY_NATIONAL) {
+			switch (verstep) {
+			case LM85_VERSTEP_LM85C:
+				kind = lm85c;
+				break;
+			case LM85_VERSTEP_LM85B:
+				kind = lm85b;
+				break;
 			}
-			err = 0;
-			goto ERROR1;
+		} else if (company == LM85_COMPANY_ANALOG_DEV) {
+			switch (verstep) {
+			case LM85_VERSTEP_ADM1027:
+				kind = adm1027;
+				break;
+			case LM85_VERSTEP_ADT7463:
+			case LM85_VERSTEP_ADT7463C:
+				kind = adt7463;
+				break;
+			}
+		} else if (company == LM85_COMPANY_SMSC) {
+			switch (verstep) {
+			case LM85_VERSTEP_EMC6D100_A0:
+			case LM85_VERSTEP_EMC6D100_A1:
+				/* Note: we can't tell a '100 from a '101 */
+				kind = emc6d100;
+				break;
+			case LM85_VERSTEP_EMC6D102:
+				kind = emc6d102;
+				break;
+			}
+		} else {
+			dev_dbg(&adapter->dev, "Autodetection failed: "
+				"unknown vendor\n");
+			return -ENODEV;
 		}
 	}
 
-	/* Fill in the chip specific driver values */
 	switch (kind) {
 	case lm85b:
 		type_name = "lm85b";
@@ -1228,16 +1204,36 @@
 	default:
 		type_name = "lm85";
 	}
-	strlcpy(client->name, type_name, I2C_NAME_SIZE);
+	strlcpy(info->type, type_name, I2C_NAME_SIZE);
 
-	/* Fill in the remaining client fields */
-	data->type = kind;
+	return 0;
+}
+
+static int lm85_probe(struct i2c_client *client,
+		      const struct i2c_device_id *id)
+{
+	struct lm85_data *data;
+	int err;
+
+	data = kzalloc(sizeof(struct lm85_data), GFP_KERNEL);
+	if (!data)
+		return -ENOMEM;
+
+	i2c_set_clientdata(client, data);
+	data->type = id->driver_data;
 	mutex_init(&data->update_lock);
 
-	/* Tell the I2C layer a new client has arrived */
-	err = i2c_attach_client(client);
-	if (err)
-		goto ERROR1;
+	/* Fill in the chip specific driver values */
+	switch (data->type) {
+	case adm1027:
+	case adt7463:
+	case emc6d100:
+	case emc6d102:
+		data->freq_map = adm1027_freq_map;
+		break;
+	default:
+		data->freq_map = lm85_freq_map;
+	}
 
 	/* Set the VRM version */
 	data->vrm = vid_which_vrm();
@@ -1248,45 +1244,42 @@
 	/* Register sysfs hooks */
 	err = sysfs_create_group(&client->dev.kobj, &lm85_group);
 	if (err)
-		goto ERROR2;
+		goto err_kfree;
 
 	/* The ADT7463 has an optional VRM 10 mode where pin 21 is used
 	   as a sixth digital VID input rather than an analog input. */
 	data->vid = lm85_read_value(client, LM85_REG_VID);
-	if (!(kind == adt7463 && (data->vid & 0x80)))
+	if (!(data->type == adt7463 && (data->vid & 0x80)))
 		if ((err = sysfs_create_group(&client->dev.kobj,
 					&lm85_group_in4)))
-			goto ERROR3;
+			goto err_remove_files;
 
 	/* The EMC6D100 has 3 additional voltage inputs */
-	if (kind == emc6d100)
+	if (data->type == emc6d100)
 		if ((err = sysfs_create_group(&client->dev.kobj,
 					&lm85_group_in567)))
-			goto ERROR3;
+			goto err_remove_files;
 
 	data->hwmon_dev = hwmon_device_register(&client->dev);
 	if (IS_ERR(data->hwmon_dev)) {
 		err = PTR_ERR(data->hwmon_dev);
-		goto ERROR3;
+		goto err_remove_files;
 	}
 
 	return 0;
 
 	/* Error out and cleanup code */
- ERROR3:
+ err_remove_files:
 	sysfs_remove_group(&client->dev.kobj, &lm85_group);
 	sysfs_remove_group(&client->dev.kobj, &lm85_group_in4);
-	if (kind == emc6d100)
+	if (data->type == emc6d100)
 		sysfs_remove_group(&client->dev.kobj, &lm85_group_in567);
- ERROR2:
-	i2c_detach_client(client);
- ERROR1:
+ err_kfree:
 	kfree(data);
- ERROR0:
 	return err;
 }
 
-static int lm85_detach_client(struct i2c_client *client)
+static int lm85_remove(struct i2c_client *client)
 {
 	struct lm85_data *data = i2c_get_clientdata(client);
 	hwmon_device_unregister(data->hwmon_dev);
@@ -1294,7 +1287,6 @@
 	sysfs_remove_group(&client->dev.kobj, &lm85_group_in4);
 	if (data->type == emc6d100)
 		sysfs_remove_group(&client->dev.kobj, &lm85_group_in567);
-	i2c_detach_client(client);
 	kfree(data);
 	return 0;
 }
@@ -1481,7 +1473,7 @@
 			data->autofan[i].config =
 			    lm85_read_value(client, LM85_REG_AFAN_CONFIG(i));
 			val = lm85_read_value(client, LM85_REG_AFAN_RANGE(i));
-			data->autofan[i].freq = val & 0x07;
+			data->pwm_freq[i] = val & 0x07;
 			data->zone[i].range = val >> 4;
 			data->autofan[i].min_pwm =
 			    lm85_read_value(client, LM85_REG_AFAN_MINPWM(i));
diff --git a/drivers/hwmon/lm87.c b/drivers/hwmon/lm87.c
index 21970f0..2e4a3ce 100644
--- a/drivers/hwmon/lm87.c
+++ b/drivers/hwmon/lm87.c
@@ -21,11 +21,10 @@
  *   http://www.national.com/pf/LM/LM87.html
  *
  * Some functions share pins, so not all functions are available at the same
- * time. Which are depends on the hardware setup. This driver assumes that
- * the BIOS configured the chip correctly. In that respect, it  differs from
- * the original driver (from lm_sensors for Linux 2.4), which would force the
- * LM87 to an arbitrary, compile-time chosen mode, regardless of the actual
- * chipset wiring.
+ * time. Which are depends on the hardware setup. This driver normally
+ * assumes that firmware configured the chip correctly. Where this is not
+ * the case, platform code must set the I2C client's platform_data to point
+ * to a u8 value to be written to the channel register.
  * For reference, here is the list of exclusive functions:
  *  - in0+in5 (default) or temp3
  *  - fan1 (default) or in6
@@ -199,6 +198,7 @@
 	unsigned long last_updated; /* In jiffies */
 
 	u8 channel;		/* register value */
+	u8 config;		/* original register value */
 
 	u8 in[8];		/* register value */
 	u8 in_max[8];		/* register value */
@@ -832,6 +832,7 @@
 	sysfs_remove_group(&new_client->dev.kobj, &lm87_group);
 	sysfs_remove_group(&new_client->dev.kobj, &lm87_group_opt);
 exit_free:
+	lm87_write_value(new_client, LM87_REG_CONFIG, data->config);
 	kfree(data);
 exit:
 	return err;
@@ -840,12 +841,17 @@
 static void lm87_init_client(struct i2c_client *client)
 {
 	struct lm87_data *data = i2c_get_clientdata(client);
-	u8 config;
 
-	data->channel = lm87_read_value(client, LM87_REG_CHANNEL_MODE);
+	if (client->dev.platform_data) {
+		data->channel = *(u8 *)client->dev.platform_data;
+		lm87_write_value(client,
+				 LM87_REG_CHANNEL_MODE, data->channel);
+	} else {
+		data->channel = lm87_read_value(client, LM87_REG_CHANNEL_MODE);
+	}
+	data->config = lm87_read_value(client, LM87_REG_CONFIG) & 0x6F;
 
-	config = lm87_read_value(client, LM87_REG_CONFIG);
-	if (!(config & 0x01)) {
+	if (!(data->config & 0x01)) {
 		int i;
 
 		/* Limits are left uninitialized after power-up */
@@ -867,11 +873,11 @@
 			lm87_write_value(client, LM87_REG_IN_MAX(0), 0xFF);
 		}
 	}
-	if ((config & 0x81) != 0x01) {
-		/* Start monitoring */
+
+	/* Make sure Start is set and INT#_Clear is clear */
+	if ((data->config & 0x09) != 0x01)
 		lm87_write_value(client, LM87_REG_CONFIG,
-				 (config & 0xF7) | 0x01);
-	}
+				 (data->config & 0x77) | 0x01);
 }
 
 static int lm87_remove(struct i2c_client *client)
@@ -882,6 +888,7 @@
 	sysfs_remove_group(&client->dev.kobj, &lm87_group);
 	sysfs_remove_group(&client->dev.kobj, &lm87_group_opt);
 
+	lm87_write_value(client, LM87_REG_CONFIG, data->config);
 	kfree(data);
 	return 0;
 }
diff --git a/drivers/hwmon/lm90.c b/drivers/hwmon/lm90.c
index c24fe36..3edeebc 100644
--- a/drivers/hwmon/lm90.c
+++ b/drivers/hwmon/lm90.c
@@ -1,14 +1,12 @@
 /*
  * lm90.c - Part of lm_sensors, Linux kernel modules for hardware
  *          monitoring
- * Copyright (C) 2003-2006  Jean Delvare <khali@linux-fr.org>
+ * Copyright (C) 2003-2008  Jean Delvare <khali@linux-fr.org>
  *
  * Based on the lm83 driver. The LM90 is a sensor chip made by National
  * Semiconductor. It reports up to two temperatures (its own plus up to
  * one external one) with a 0.125 deg resolution (1 deg for local
- * temperature) and a 3-4 deg accuracy. Complete datasheet can be
- * obtained from National's website at:
- *   http://www.national.com/pf/LM/LM90.html
+ * temperature) and a 3-4 deg accuracy.
  *
  * This driver also supports the LM89 and LM99, two other sensor chips
  * made by National Semiconductor. Both have an increased remote
@@ -16,48 +14,38 @@
  * additionally shifts remote temperatures (measured and limits) by 16
  * degrees, which allows for higher temperatures measurement. The
  * driver doesn't handle it since it can be done easily in user-space.
- * Complete datasheets can be obtained from National's website at:
- *   http://www.national.com/pf/LM/LM89.html
- *   http://www.national.com/pf/LM/LM99.html
  * Note that there is no way to differentiate between both chips.
  *
  * This driver also supports the LM86, another sensor chip made by
  * National Semiconductor. It is exactly similar to the LM90 except it
  * has a higher accuracy.
- * Complete datasheet can be obtained from National's website at:
- *   http://www.national.com/pf/LM/LM86.html
  *
  * This driver also supports the ADM1032, a sensor chip made by Analog
  * Devices. That chip is similar to the LM90, with a few differences
- * that are not handled by this driver. Complete datasheet can be
- * obtained from Analog's website at:
- *   http://www.analog.com/en/prod/0,2877,ADM1032,00.html
- * Among others, it has a higher accuracy than the LM90, much like the
- * LM86 does.
+ * that are not handled by this driver. Among others, it has a higher
+ * accuracy than the LM90, much like the LM86 does.
  *
  * This driver also supports the MAX6657, MAX6658 and MAX6659 sensor
- * chips made by Maxim. These chips are similar to the LM86. Complete
- * datasheet can be obtained at Maxim's website at:
- *   http://www.maxim-ic.com/quick_view2.cfm/qv_pk/2578
+ * chips made by Maxim. These chips are similar to the LM86.
  * Note that there is no easy way to differentiate between the three
  * variants. The extra address and features of the MAX6659 are not
  * supported by this driver. These chips lack the remote temperature
  * offset feature.
  *
+ * This driver also supports the MAX6646, MAX6647 and MAX6649 chips
+ * made by Maxim.  These are again similar to the LM86, but they use
+ * unsigned temperature values and can report temperatures from 0 to
+ * 145 degrees.
+ *
  * This driver also supports the MAX6680 and MAX6681, two other sensor
  * chips made by Maxim. These are quite similar to the other Maxim
- * chips. Complete datasheet can be obtained at:
- *   http://www.maxim-ic.com/quick_view2.cfm/qv_pk/3370
- * The MAX6680 and MAX6681 only differ in the pinout so they can be
- * treated identically.
+ * chips. The MAX6680 and MAX6681 only differ in the pinout so they can
+ * be treated identically.
  *
- * This driver also supports the ADT7461 chip from Analog Devices but
- * only in its "compatability mode". If an ADT7461 chip is found but
- * is configured in non-compatible mode (where its temperature
- * register values are decoded differently) it is ignored by this
- * driver. Complete datasheet can be obtained from Analog's website
- * at:
- *   http://www.analog.com/en/prod/0,2877,ADT7461,00.html
+ * This driver also supports the ADT7461 chip from Analog Devices.
+ * It's supported in both compatibility and extended mode. It is mostly
+ * compatible with LM90 except for a data format difference for the
+ * temperature value registers.
  *
  * Since the LM90 was the first chipset supported by this driver, most
  * comments will refer to this chipset, but are actually general and
@@ -93,9 +81,10 @@
  * Addresses to scan
  * Address is fully defined internally and cannot be changed except for
  * MAX6659, MAX6680 and MAX6681.
- * LM86, LM89, LM90, LM99, ADM1032, ADM1032-1, ADT7461, MAX6657 and MAX6658
- * have address 0x4c.
- * ADM1032-2, ADT7461-2, LM89-1, and LM99-1 have address 0x4d.
+ * LM86, LM89, LM90, LM99, ADM1032, ADM1032-1, ADT7461, MAX6649, MAX6657
+ * and MAX6658 have address 0x4c.
+ * ADM1032-2, ADT7461-2, LM89-1, LM99-1 and MAX6646 have address 0x4d.
+ * MAX6647 has address 0x4e.
  * MAX6659 can have address 0x4c, 0x4d or 0x4e (unsupported).
  * MAX6680 and MAX6681 can have address 0x18, 0x19, 0x1a, 0x29, 0x2a, 0x2b,
  * 0x4c, 0x4d or 0x4e.
@@ -108,7 +97,8 @@
  * Insmod parameters
  */
 
-I2C_CLIENT_INSMOD_7(lm90, adm1032, lm99, lm86, max6657, adt7461, max6680);
+I2C_CLIENT_INSMOD_8(lm90, adm1032, lm99, lm86, max6657, adt7461, max6680,
+		    max6646);
 
 /*
  * The LM90 registers
@@ -149,39 +139,14 @@
 #define LM90_REG_R_TCRIT_HYST		0x21
 #define LM90_REG_W_TCRIT_HYST		0x21
 
+/* MAX6646/6647/6649/6657/6658/6659 registers */
+
+#define MAX6657_REG_R_LOCAL_TEMPL	0x11
+
 /*
- * Conversions and various macros
- * For local temperatures and limits, critical limits and the hysteresis
- * value, the LM90 uses signed 8-bit values with LSB = 1 degree Celsius.
- * For remote temperatures and limits, it uses signed 11-bit values with
- * LSB = 0.125 degree Celsius, left-justified in 16-bit registers.
+ * Device flags
  */
-
-#define TEMP1_FROM_REG(val)	((val) * 1000)
-#define TEMP1_TO_REG(val)	((val) <= -128000 ? -128 : \
-				 (val) >= 127000 ? 127 : \
-				 (val) < 0 ? ((val) - 500) / 1000 : \
-				 ((val) + 500) / 1000)
-#define TEMP2_FROM_REG(val)	((val) / 32 * 125)
-#define TEMP2_TO_REG(val)	((val) <= -128000 ? 0x8000 : \
-				 (val) >= 127875 ? 0x7FE0 : \
-				 (val) < 0 ? ((val) - 62) / 125 * 32 : \
-				 ((val) + 62) / 125 * 32)
-#define HYST_TO_REG(val)	((val) <= 0 ? 0 : (val) >= 30500 ? 31 : \
-				 ((val) + 500) / 1000)
-
-/* 
- * ADT7461 is almost identical to LM90 except that attempts to write
- * values that are outside the range 0 < temp < 127 are treated as
- * the boundary value. 
- */
-
-#define TEMP1_TO_REG_ADT7461(val) ((val) <= 0 ? 0 : \
-				 (val) >= 127000 ? 127 : \
-				 ((val) + 500) / 1000)
-#define TEMP2_TO_REG_ADT7461(val) ((val) <= 0 ? 0 : \
-				 (val) >= 127750 ? 0x7FC0 : \
-				 ((val) + 125) / 250 * 64)
+#define LM90_FLAG_ADT7461_EXT		0x01	/* ADT7461 extended mode */
 
 /*
  * Functions declaration
@@ -206,6 +171,9 @@
 	{ "lm86", lm86 },
 	{ "lm89", lm99 },
 	{ "lm99", lm99 },	/* Missing temperature offset */
+	{ "max6646", max6646 },
+	{ "max6647", max6646 },
+	{ "max6649", max6646 },
 	{ "max6657", max6657 },
 	{ "max6658", max6657 },
 	{ "max6659", max6657 },
@@ -237,22 +205,150 @@
 	char valid; /* zero until following fields are valid */
 	unsigned long last_updated; /* in jiffies */
 	int kind;
+	int flags;
 
 	/* registers values */
-	s8 temp8[5];	/* 0: local input
-			   1: local low limit
-			   2: local high limit
-			   3: local critical limit
-			   4: remote critical limit */
-	s16 temp11[4];	/* 0: remote input
+	s8 temp8[4];	/* 0: local low limit
+			   1: local high limit
+			   2: local critical limit
+			   3: remote critical limit */
+	s16 temp11[5];	/* 0: remote input
 			   1: remote low limit
 			   2: remote high limit
-			   3: remote offset (except max6657) */
+			   3: remote offset (except max6646 and max6657)
+			   4: local input */
 	u8 temp_hyst;
 	u8 alarms; /* bitvector */
 };
 
 /*
+ * Conversions
+ * For local temperatures and limits, critical limits and the hysteresis
+ * value, the LM90 uses signed 8-bit values with LSB = 1 degree Celsius.
+ * For remote temperatures and limits, it uses signed 11-bit values with
+ * LSB = 0.125 degree Celsius, left-justified in 16-bit registers.  Some
+ * Maxim chips use unsigned values.
+ */
+
+static inline int temp_from_s8(s8 val)
+{
+	return val * 1000;
+}
+
+static inline int temp_from_u8(u8 val)
+{
+	return val * 1000;
+}
+
+static inline int temp_from_s16(s16 val)
+{
+	return val / 32 * 125;
+}
+
+static inline int temp_from_u16(u16 val)
+{
+	return val / 32 * 125;
+}
+
+static s8 temp_to_s8(long val)
+{
+	if (val <= -128000)
+		return -128;
+	if (val >= 127000)
+		return 127;
+	if (val < 0)
+		return (val - 500) / 1000;
+	return (val + 500) / 1000;
+}
+
+static u8 temp_to_u8(long val)
+{
+	if (val <= 0)
+		return 0;
+	if (val >= 255000)
+		return 255;
+	return (val + 500) / 1000;
+}
+
+static s16 temp_to_s16(long val)
+{
+	if (val <= -128000)
+		return 0x8000;
+	if (val >= 127875)
+		return 0x7FE0;
+	if (val < 0)
+		return (val - 62) / 125 * 32;
+	return (val + 62) / 125 * 32;
+}
+
+static u8 hyst_to_reg(long val)
+{
+	if (val <= 0)
+		return 0;
+	if (val >= 30500)
+		return 31;
+	return (val + 500) / 1000;
+}
+
+/*
+ * ADT7461 in compatibility mode is almost identical to LM90 except that
+ * attempts to write values that are outside the range 0 < temp < 127 are
+ * treated as the boundary value.
+ *
+ * ADT7461 in "extended mode" operation uses unsigned integers offset by
+ * 64 (e.g., 0 -> -64 degC).  The range is restricted to -64..191 degC.
+ */
+static inline int temp_from_u8_adt7461(struct lm90_data *data, u8 val)
+{
+	if (data->flags & LM90_FLAG_ADT7461_EXT)
+		return (val - 64) * 1000;
+	else
+		return temp_from_s8(val);
+}
+
+static inline int temp_from_u16_adt7461(struct lm90_data *data, u16 val)
+{
+	if (data->flags & LM90_FLAG_ADT7461_EXT)
+		return (val - 0x4000) / 64 * 250;
+	else
+		return temp_from_s16(val);
+}
+
+static u8 temp_to_u8_adt7461(struct lm90_data *data, long val)
+{
+	if (data->flags & LM90_FLAG_ADT7461_EXT) {
+		if (val <= -64000)
+			return 0;
+		if (val >= 191000)
+			return 0xFF;
+		return (val + 500 + 64000) / 1000;
+	} else {
+		if (val <= 0)
+			return 0;
+		if (val >= 127000)
+			return 127;
+		return (val + 500) / 1000;
+	}
+}
+
+static u16 temp_to_u16_adt7461(struct lm90_data *data, long val)
+{
+	if (data->flags & LM90_FLAG_ADT7461_EXT) {
+		if (val <= -64000)
+			return 0;
+		if (val >= 191750)
+			return 0xFFC0;
+		return (val + 64000 + 125) / 250 * 64;
+	} else {
+		if (val <= 0)
+			return 0;
+		if (val >= 127750)
+			return 0x7FC0;
+		return (val + 125) / 250 * 64;
+	}
+}
+
+/*
  * Sysfs stuff
  */
 
@@ -261,7 +357,16 @@
 {
 	struct sensor_device_attribute *attr = to_sensor_dev_attr(devattr);
 	struct lm90_data *data = lm90_update_device(dev);
-	return sprintf(buf, "%d\n", TEMP1_FROM_REG(data->temp8[attr->index]));
+	int temp;
+
+	if (data->kind == adt7461)
+		temp = temp_from_u8_adt7461(data, data->temp8[attr->index]);
+	else if (data->kind == max6646)
+		temp = temp_from_u8(data->temp8[attr->index]);
+	else
+		temp = temp_from_s8(data->temp8[attr->index]);
+
+	return sprintf(buf, "%d\n", temp);
 }
 
 static ssize_t set_temp8(struct device *dev, struct device_attribute *devattr,
@@ -282,10 +387,12 @@
 
 	mutex_lock(&data->update_lock);
 	if (data->kind == adt7461)
-		data->temp8[nr] = TEMP1_TO_REG_ADT7461(val);
+		data->temp8[nr] = temp_to_u8_adt7461(data, val);
+	else if (data->kind == max6646)
+		data->temp8[nr] = temp_to_u8(val);
 	else
-		data->temp8[nr] = TEMP1_TO_REG(val);
-	i2c_smbus_write_byte_data(client, reg[nr - 1], data->temp8[nr]);
+		data->temp8[nr] = temp_to_s8(val);
+	i2c_smbus_write_byte_data(client, reg[nr], data->temp8[nr]);
 	mutex_unlock(&data->update_lock);
 	return count;
 }
@@ -295,7 +402,16 @@
 {
 	struct sensor_device_attribute *attr = to_sensor_dev_attr(devattr);
 	struct lm90_data *data = lm90_update_device(dev);
-	return sprintf(buf, "%d\n", TEMP2_FROM_REG(data->temp11[attr->index]));
+	int temp;
+
+	if (data->kind == adt7461)
+		temp = temp_from_u16_adt7461(data, data->temp11[attr->index]);
+	else if (data->kind == max6646)
+		temp = temp_from_u16(data->temp11[attr->index]);
+	else
+		temp = temp_from_s16(data->temp11[attr->index]);
+
+	return sprintf(buf, "%d\n", temp);
 }
 
 static ssize_t set_temp11(struct device *dev, struct device_attribute *devattr,
@@ -318,13 +434,20 @@
 
 	mutex_lock(&data->update_lock);
 	if (data->kind == adt7461)
-		data->temp11[nr] = TEMP2_TO_REG_ADT7461(val);
+		data->temp11[nr] = temp_to_u16_adt7461(data, val);
+	else if (data->kind == max6657 || data->kind == max6680)
+		data->temp11[nr] = temp_to_s8(val) << 8;
+	else if (data->kind == max6646)
+		data->temp11[nr] = temp_to_u8(val) << 8;
 	else
-		data->temp11[nr] = TEMP2_TO_REG(val);
+		data->temp11[nr] = temp_to_s16(val);
+
 	i2c_smbus_write_byte_data(client, reg[(nr - 1) * 2],
 				  data->temp11[nr] >> 8);
-	i2c_smbus_write_byte_data(client, reg[(nr - 1) * 2 + 1],
-				  data->temp11[nr] & 0xff);
+	if (data->kind != max6657 && data->kind != max6680
+	    && data->kind != max6646)
+		i2c_smbus_write_byte_data(client, reg[(nr - 1) * 2 + 1],
+					  data->temp11[nr] & 0xff);
 	mutex_unlock(&data->update_lock);
 	return count;
 }
@@ -334,8 +457,14 @@
 {
 	struct sensor_device_attribute *attr = to_sensor_dev_attr(devattr);
 	struct lm90_data *data = lm90_update_device(dev);
-	return sprintf(buf, "%d\n", TEMP1_FROM_REG(data->temp8[attr->index])
-		       - TEMP1_FROM_REG(data->temp_hyst));
+	int temp;
+
+	if (data->kind == adt7461)
+		temp = temp_from_u8_adt7461(data, data->temp8[attr->index]);
+	else
+		temp = temp_from_s8(data->temp8[attr->index]);
+
+	return sprintf(buf, "%d\n", temp - temp_from_s8(data->temp_hyst));
 }
 
 static ssize_t set_temphyst(struct device *dev, struct device_attribute *dummy,
@@ -347,9 +476,9 @@
 	long hyst;
 
 	mutex_lock(&data->update_lock);
-	hyst = TEMP1_FROM_REG(data->temp8[3]) - val;
+	hyst = temp_from_s8(data->temp8[2]) - val;
 	i2c_smbus_write_byte_data(client, LM90_REG_W_TCRIT_HYST,
-				  HYST_TO_REG(hyst));
+				  hyst_to_reg(hyst));
 	mutex_unlock(&data->update_lock);
 	return count;
 }
@@ -371,23 +500,23 @@
 	return sprintf(buf, "%d\n", (data->alarms >> bitnr) & 1);
 }
 
-static SENSOR_DEVICE_ATTR(temp1_input, S_IRUGO, show_temp8, NULL, 0);
+static SENSOR_DEVICE_ATTR(temp1_input, S_IRUGO, show_temp11, NULL, 4);
 static SENSOR_DEVICE_ATTR(temp2_input, S_IRUGO, show_temp11, NULL, 0);
 static SENSOR_DEVICE_ATTR(temp1_min, S_IWUSR | S_IRUGO, show_temp8,
-	set_temp8, 1);
+	set_temp8, 0);
 static SENSOR_DEVICE_ATTR(temp2_min, S_IWUSR | S_IRUGO, show_temp11,
 	set_temp11, 1);
 static SENSOR_DEVICE_ATTR(temp1_max, S_IWUSR | S_IRUGO, show_temp8,
-	set_temp8, 2);
+	set_temp8, 1);
 static SENSOR_DEVICE_ATTR(temp2_max, S_IWUSR | S_IRUGO, show_temp11,
 	set_temp11, 2);
 static SENSOR_DEVICE_ATTR(temp1_crit, S_IWUSR | S_IRUGO, show_temp8,
-	set_temp8, 3);
+	set_temp8, 2);
 static SENSOR_DEVICE_ATTR(temp2_crit, S_IWUSR | S_IRUGO, show_temp8,
-	set_temp8, 4);
+	set_temp8, 3);
 static SENSOR_DEVICE_ATTR(temp1_crit_hyst, S_IWUSR | S_IRUGO, show_temphyst,
-	set_temphyst, 3);
-static SENSOR_DEVICE_ATTR(temp2_crit_hyst, S_IRUGO, show_temphyst, NULL, 4);
+	set_temphyst, 2);
+static SENSOR_DEVICE_ATTR(temp2_crit_hyst, S_IRUGO, show_temphyst, NULL, 3);
 static SENSOR_DEVICE_ATTR(temp2_offset, S_IWUSR | S_IRUGO, show_temp11,
 	set_temp11, 3);
 
@@ -568,7 +697,7 @@
 				kind = adm1032;
 			} else
 			if (chip_id == 0x51 /* ADT7461 */
-			 && (reg_config1 & 0x1F) == 0x00 /* check compat mode */
+			 && (reg_config1 & 0x1B) == 0x00
 			 && reg_convrate <= 0x0A) {
 				kind = adt7461;
 			}
@@ -599,13 +728,23 @@
 			 && (reg_config1 & 0x03) == 0x00
 			 && reg_convrate <= 0x07) {
 			 	kind = max6680;
+			} else
+			/* The chip_id register of the MAX6646/6647/6649
+			 * holds the revision of the chip.
+			 * The lowest 6 bits of the config1 register are
+			 * unused and should return zero when read.
+			 */
+			if (chip_id == 0x59
+			 && (reg_config1 & 0x3f) == 0x00
+			 && reg_convrate <= 0x07) {
+				kind = max6646;
 			}
 		}
 
 		if (kind <= 0) { /* identification failed */
-			dev_info(&adapter->dev,
-			    "Unsupported chip (man_id=0x%02X, "
-			    "chip_id=0x%02X).\n", man_id, chip_id);
+			dev_dbg(&adapter->dev,
+				"Unsupported chip at 0x%02x (man_id=0x%02X, "
+				"chip_id=0x%02X)\n", address, man_id, chip_id);
 			return -ENODEV;
 		}
 	}
@@ -629,6 +768,8 @@
 		name = "max6680";
 	} else if (kind == adt7461) {
 		name = "adt7461";
+	} else if (kind == max6646) {
+		name = "max6646";
 	}
 	strlcpy(info->type, name, I2C_NAME_SIZE);
 
@@ -668,7 +809,7 @@
 					      &dev_attr_pec)))
 			goto exit_remove_files;
 	}
-	if (data->kind != max6657) {
+	if (data->kind != max6657 && data->kind != max6646) {
 		if ((err = device_create_file(&new_client->dev,
 				&sensor_dev_attr_temp2_offset.dev_attr)))
 			goto exit_remove_files;
@@ -707,6 +848,12 @@
 	}
 	config_orig = config;
 
+	/* Check Temperature Range Select */
+	if (data->kind == adt7461) {
+		if (config & 0x04)
+			data->flags |= LM90_FLAG_ADT7461_EXT;
+	}
+
 	/*
 	 * Put MAX6680/MAX8881 into extended resolution (bit 0x10,
 	 * 0.125 degree resolution) and range (0x08, extend range
@@ -728,7 +875,7 @@
 	hwmon_device_unregister(data->hwmon_dev);
 	sysfs_remove_group(&client->dev.kobj, &lm90_group);
 	device_remove_file(&client->dev, &dev_attr_pec);
-	if (data->kind != max6657)
+	if (data->kind != max6657 && data->kind != max6646)
 		device_remove_file(&client->dev,
 				   &sensor_dev_attr_temp2_offset.dev_attr);
 
@@ -736,6 +883,38 @@
 	return 0;
 }
 
+static int lm90_read16(struct i2c_client *client, u8 regh, u8 regl, u16 *value)
+{
+	int err;
+	u8 oldh, newh, l;
+
+	/*
+	 * There is a trick here. We have to read two registers to have the
+	 * sensor temperature, but we have to beware a conversion could occur
+	 * inbetween the readings. The datasheet says we should either use
+	 * the one-shot conversion register, which we don't want to do
+	 * (disables hardware monitoring) or monitor the busy bit, which is
+	 * impossible (we can't read the values and monitor that bit at the
+	 * exact same time). So the solution used here is to read the high
+	 * byte once, then the low byte, then the high byte again. If the new
+	 * high byte matches the old one, then we have a valid reading. Else
+	 * we have to read the low byte again, and now we believe we have a
+	 * correct reading.
+	 */
+	if ((err = lm90_read_reg(client, regh, &oldh))
+	 || (err = lm90_read_reg(client, regl, &l))
+	 || (err = lm90_read_reg(client, regh, &newh)))
+		return err;
+	if (oldh != newh) {
+		err = lm90_read_reg(client, regl, &l);
+		if (err)
+			return err;
+	}
+	*value = (newh << 8) | l;
+
+	return 0;
+}
+
 static struct lm90_data *lm90_update_device(struct device *dev)
 {
 	struct i2c_client *client = to_i2c_client(dev);
@@ -744,49 +923,50 @@
 	mutex_lock(&data->update_lock);
 
 	if (time_after(jiffies, data->last_updated + HZ * 2) || !data->valid) {
-		u8 oldh, newh, l;
+		u8 h, l;
 
 		dev_dbg(&client->dev, "Updating lm90 data.\n");
-		lm90_read_reg(client, LM90_REG_R_LOCAL_TEMP, &data->temp8[0]);
-		lm90_read_reg(client, LM90_REG_R_LOCAL_LOW, &data->temp8[1]);
-		lm90_read_reg(client, LM90_REG_R_LOCAL_HIGH, &data->temp8[2]);
-		lm90_read_reg(client, LM90_REG_R_LOCAL_CRIT, &data->temp8[3]);
-		lm90_read_reg(client, LM90_REG_R_REMOTE_CRIT, &data->temp8[4]);
+		lm90_read_reg(client, LM90_REG_R_LOCAL_LOW, &data->temp8[0]);
+		lm90_read_reg(client, LM90_REG_R_LOCAL_HIGH, &data->temp8[1]);
+		lm90_read_reg(client, LM90_REG_R_LOCAL_CRIT, &data->temp8[2]);
+		lm90_read_reg(client, LM90_REG_R_REMOTE_CRIT, &data->temp8[3]);
 		lm90_read_reg(client, LM90_REG_R_TCRIT_HYST, &data->temp_hyst);
 
-		/*
-		 * There is a trick here. We have to read two registers to
-		 * have the remote sensor temperature, but we have to beware
-		 * a conversion could occur inbetween the readings. The
-		 * datasheet says we should either use the one-shot
-		 * conversion register, which we don't want to do (disables
-		 * hardware monitoring) or monitor the busy bit, which is
-		 * impossible (we can't read the values and monitor that bit
-		 * at the exact same time). So the solution used here is to
-		 * read the high byte once, then the low byte, then the high
-		 * byte again. If the new high byte matches the old one,
-		 * then we have a valid reading. Else we have to read the low
-		 * byte again, and now we believe we have a correct reading.
-		 */
-		if (lm90_read_reg(client, LM90_REG_R_REMOTE_TEMPH, &oldh) == 0
-		 && lm90_read_reg(client, LM90_REG_R_REMOTE_TEMPL, &l) == 0
-		 && lm90_read_reg(client, LM90_REG_R_REMOTE_TEMPH, &newh) == 0
-		 && (newh == oldh
-		  || lm90_read_reg(client, LM90_REG_R_REMOTE_TEMPL, &l) == 0))
-			data->temp11[0] = (newh << 8) | l;
+		if (data->kind == max6657 || data->kind == max6646) {
+			lm90_read16(client, LM90_REG_R_LOCAL_TEMP,
+				    MAX6657_REG_R_LOCAL_TEMPL,
+				    &data->temp11[4]);
+		} else {
+			if (lm90_read_reg(client, LM90_REG_R_LOCAL_TEMP,
+					  &h) == 0)
+				data->temp11[4] = h << 8;
+		}
+		lm90_read16(client, LM90_REG_R_REMOTE_TEMPH,
+			    LM90_REG_R_REMOTE_TEMPL, &data->temp11[0]);
 
-		if (lm90_read_reg(client, LM90_REG_R_REMOTE_LOWH, &newh) == 0
-		 && lm90_read_reg(client, LM90_REG_R_REMOTE_LOWL, &l) == 0)
-			data->temp11[1] = (newh << 8) | l;
-		if (lm90_read_reg(client, LM90_REG_R_REMOTE_HIGHH, &newh) == 0
-		 && lm90_read_reg(client, LM90_REG_R_REMOTE_HIGHL, &l) == 0)
-			data->temp11[2] = (newh << 8) | l;
-		if (data->kind != max6657) {
+		if (lm90_read_reg(client, LM90_REG_R_REMOTE_LOWH, &h) == 0) {
+			data->temp11[1] = h << 8;
+			if (data->kind != max6657 && data->kind != max6680
+			 && data->kind != max6646
+			 && lm90_read_reg(client, LM90_REG_R_REMOTE_LOWL,
+					  &l) == 0)
+				data->temp11[1] |= l;
+		}
+		if (lm90_read_reg(client, LM90_REG_R_REMOTE_HIGHH, &h) == 0) {
+			data->temp11[2] = h << 8;
+			if (data->kind != max6657 && data->kind != max6680
+			 && data->kind != max6646
+			 && lm90_read_reg(client, LM90_REG_R_REMOTE_HIGHL,
+					  &l) == 0)
+				data->temp11[2] |= l;
+		}
+
+		if (data->kind != max6657 && data->kind != max6646) {
 			if (lm90_read_reg(client, LM90_REG_R_REMOTE_OFFSH,
-					  &newh) == 0
+					  &h) == 0
 			 && lm90_read_reg(client, LM90_REG_R_REMOTE_OFFSL,
 					  &l) == 0)
-				data->temp11[3] = (newh << 8) | l;
+				data->temp11[3] = (h << 8) | l;
 		}
 		lm90_read_reg(client, LM90_REG_R_STATUS, &data->alarms);
 
diff --git a/drivers/hwmon/max1619.c b/drivers/hwmon/max1619.c
index 1ab1cac..7897754 100644
--- a/drivers/hwmon/max1619.c
+++ b/drivers/hwmon/max1619.c
@@ -69,11 +69,18 @@
 #define MAX1619_REG_W_TCRIT_HYST	0x13
 
 /*
- * Conversions and various macros
+ * Conversions
  */
 
-#define TEMP_FROM_REG(val)	((val & 0x80 ? val-0x100 : val) * 1000)
-#define TEMP_TO_REG(val)	((val < 0 ? val+0x100*1000 : val) / 1000)
+static int temp_from_reg(int val)
+{
+	return (val & 0x80 ? val-0x100 : val) * 1000;
+}
+
+static int temp_to_reg(int val)
+{
+	return (val < 0 ? val+0x100*1000 : val) / 1000;
+}
 
 /*
  * Functions declaration
@@ -135,7 +142,7 @@
 static ssize_t show_##value(struct device *dev, struct device_attribute *attr, char *buf) \
 { \
 	struct max1619_data *data = max1619_update_device(dev); \
-	return sprintf(buf, "%d\n", TEMP_FROM_REG(data->value)); \
+	return sprintf(buf, "%d\n", temp_from_reg(data->value)); \
 }
 show_temp(temp_input1);
 show_temp(temp_input2);
@@ -153,7 +160,7 @@
 	long val = simple_strtol(buf, NULL, 10); \
  \
 	mutex_lock(&data->update_lock); \
-	data->value = TEMP_TO_REG(val); \
+	data->value = temp_to_reg(val); \
 	i2c_smbus_write_byte_data(client, reg, data->value); \
 	mutex_unlock(&data->update_lock); \
 	return count; \
diff --git a/drivers/hwmon/w83781d.c b/drivers/hwmon/w83781d.c
index f942ecd..d4d1b85 100644
--- a/drivers/hwmon/w83781d.c
+++ b/drivers/hwmon/w83781d.c
@@ -4,7 +4,7 @@
     Copyright (c) 1998 - 2001  Frodo Looijaard <frodol@dds.nl>,
                                Philip Edelbrock <phil@netroedge.com>,
                                and Mark Studebaker <mdsxyz123@yahoo.com>
-    Copyright (c) 2007         Jean Delvare <khali@linux-fr.org>
+    Copyright (c) 2007 - 2008  Jean Delvare <khali@linux-fr.org>
 
     This program is free software; you can redistribute it and/or modify
     it under the terms of the GNU General Public License as published by
@@ -38,25 +38,24 @@
 #include <linux/slab.h>
 #include <linux/jiffies.h>
 #include <linux/i2c.h>
-#include <linux/platform_device.h>
-#include <linux/ioport.h>
 #include <linux/hwmon.h>
 #include <linux/hwmon-vid.h>
 #include <linux/hwmon-sysfs.h>
 #include <linux/sysfs.h>
 #include <linux/err.h>
 #include <linux/mutex.h>
-#include <asm/io.h>
-#include "lm75.h"
 
-/* ISA device, if found */
-static struct platform_device *pdev;
+#ifdef CONFIG_ISA
+#include <linux/platform_device.h>
+#include <linux/ioport.h>
+#include <asm/io.h>
+#endif
+
+#include "lm75.h"
 
 /* Addresses to scan */
 static const unsigned short normal_i2c[] = { 0x28, 0x29, 0x2a, 0x2b, 0x2c, 0x2d,
 						0x2e, 0x2f, I2C_CLIENT_END };
-static unsigned short isa_address = 0x290;
-
 /* Insmod parameters */
 I2C_CLIENT_INSMOD_4(w83781d, w83782d, w83783s, as99127f);
 I2C_CLIENT_MODULE_PARM(force_subclients, "List of subclient addresses: "
@@ -178,9 +177,9 @@
 #define TEMP_FROM_REG(val)		((val) * 1000)
 
 #define BEEP_MASK_FROM_REG(val,type)	((type) == as99127f ? \
-					 (val) ^ 0x7fff : (val))
+					 (~(val)) & 0x7fff : (val) & 0xff7fff)
 #define BEEP_MASK_TO_REG(val,type)	((type) == as99127f ? \
-					 (~(val)) & 0x7fff : (val) & 0xffffff)
+					 (~(val)) & 0x7fff : (val) & 0xff7fff)
 
 #define DIV_FROM_REG(val)		(1 << (val))
 
@@ -199,25 +198,16 @@
 	return i;
 }
 
-/* There are some complications in a module like this. First off, W83781D chips
-   may be both present on the SMBus and the ISA bus, and we have to handle
-   those cases separately at some places. Second, there might be several
-   W83781D chips available (well, actually, that is probably never done; but
-   it is a clean illustration of how to handle a case like that). Finally,
-   a specific chip may be attached to *both* ISA and SMBus, and we would
-   not like to detect it double. Fortunately, in the case of the W83781D at
-   least, a register tells us what SMBus address we are on, so that helps
-   a bit - except if there could be more than one SMBus. Groan. No solution
-   for this yet. */
-
-/* For ISA chips, we abuse the i2c_client addr and name fields. We also use
-   the driver field to differentiate between I2C and ISA chips. */
 struct w83781d_data {
-	struct i2c_client client;
+	struct i2c_client *client;
 	struct device *hwmon_dev;
 	struct mutex lock;
 	enum chips type;
 
+	/* For ISA device only */
+	const char *name;
+	int isa_addr;
+
 	struct mutex update_lock;
 	char valid;		/* !=0 if following fields are valid */
 	unsigned long last_updated;	/* In jiffies */
@@ -240,7 +230,6 @@
 	u8 vid;			/* Register encoding, combined */
 	u32 alarms;		/* Register encoding, combined */
 	u32 beep_mask;		/* Register encoding, combined */
-	u8 beep_enable;		/* Boolean */
 	u8 pwm[4];		/* Register value */
 	u8 pwm2_enable;		/* Boolean */
 	u16 sens[3];		/* 782D/783S only.
@@ -249,36 +238,14 @@
 	u8 vrm;
 };
 
-static int w83781d_attach_adapter(struct i2c_adapter *adapter);
-static int w83781d_detect(struct i2c_adapter *adapter, int address, int kind);
-static int w83781d_detach_client(struct i2c_client *client);
-
-static int __devinit w83781d_isa_probe(struct platform_device *pdev);
-static int __devexit w83781d_isa_remove(struct platform_device *pdev);
+static struct w83781d_data *w83781d_data_if_isa(void);
+static int w83781d_alias_detect(struct i2c_client *client, u8 chipid);
 
 static int w83781d_read_value(struct w83781d_data *data, u16 reg);
 static int w83781d_write_value(struct w83781d_data *data, u16 reg, u16 value);
 static struct w83781d_data *w83781d_update_device(struct device *dev);
 static void w83781d_init_device(struct device *dev);
 
-static struct i2c_driver w83781d_driver = {
-	.driver = {
-		.name = "w83781d",
-	},
-	.attach_adapter = w83781d_attach_adapter,
-	.detach_client = w83781d_detach_client,
-};
-
-static struct platform_driver w83781d_isa_driver = {
-	.driver = {
-		.owner = THIS_MODULE,
-		.name = "w83781d",
-	},
-	.probe = w83781d_isa_probe,
-	.remove = w83781d_isa_remove,
-};
-
-
 /* following are the sysfs callback functions */
 #define show_in_reg(reg) \
 static ssize_t show_##reg (struct device *dev, struct device_attribute *da, \
@@ -513,11 +480,6 @@
 	return sprintf(buf, "%ld\n",
 		       (long)BEEP_MASK_FROM_REG(data->beep_mask, data->type));
 }
-static ssize_t show_beep_enable (struct device *dev, struct device_attribute *attr, char *buf)
-{
-	struct w83781d_data *data = w83781d_update_device(dev);
-	return sprintf(buf, "%ld\n", (long)data->beep_enable);
-}
 
 static ssize_t
 store_beep_mask(struct device *dev, struct device_attribute *attr,
@@ -529,12 +491,12 @@
 	val = simple_strtoul(buf, NULL, 10);
 
 	mutex_lock(&data->update_lock);
-	data->beep_mask = BEEP_MASK_TO_REG(val, data->type);
+	data->beep_mask &= 0x8000; /* preserve beep enable */
+	data->beep_mask |= BEEP_MASK_TO_REG(val, data->type);
 	w83781d_write_value(data, W83781D_REG_BEEP_INTS1,
 			    data->beep_mask & 0xff);
 	w83781d_write_value(data, W83781D_REG_BEEP_INTS2,
-			    ((data->beep_mask >> 8) & 0x7f)
-			    | data->beep_enable << 7);
+			    (data->beep_mask >> 8) & 0xff);
 	if (data->type != w83781d && data->type != as99127f) {
 		w83781d_write_value(data, W83781D_REG_BEEP_INTS3,
 				    ((data->beep_mask) >> 16) & 0xff);
@@ -544,31 +506,8 @@
 	return count;
 }
 
-static ssize_t
-store_beep_enable(struct device *dev, struct device_attribute *attr,
-		const char *buf, size_t count)
-{
-	struct w83781d_data *data = dev_get_drvdata(dev);
-	u32 val;
-
-	val = simple_strtoul(buf, NULL, 10);
-	if (val != 0 && val != 1)
-		return -EINVAL;
-
-	mutex_lock(&data->update_lock);
-	data->beep_enable = val;
-	val = w83781d_read_value(data, W83781D_REG_BEEP_INTS2) & 0x7f;
-	val |= data->beep_enable << 7;
-	w83781d_write_value(data, W83781D_REG_BEEP_INTS2, val);
-	mutex_unlock(&data->update_lock);
-
-	return count;
-}
-
 static DEVICE_ATTR(beep_mask, S_IRUGO | S_IWUSR,
 		show_beep_mask, store_beep_mask);
-static DEVICE_ATTR(beep_enable, S_IRUGO | S_IWUSR,
-		show_beep_enable, store_beep_enable);
 
 static ssize_t show_beep(struct device *dev, struct device_attribute *attr,
 		char *buf)
@@ -663,6 +602,8 @@
 			show_beep, store_beep, 5);
 static SENSOR_DEVICE_ATTR(temp3_beep, S_IRUGO,
 			show_temp3_beep, store_beep, 13);
+static SENSOR_DEVICE_ATTR(beep_enable, S_IRUGO | S_IWUSR,
+			show_beep, store_beep, 15);
 
 static ssize_t
 show_fan_div(struct device *dev, struct device_attribute *da, char *buf)
@@ -866,45 +807,19 @@
 static SENSOR_DEVICE_ATTR(temp3_type, S_IRUGO | S_IWUSR,
 	show_sensor, store_sensor, 2);
 
-/* I2C devices get this name attribute automatically, but for ISA devices
-   we must create it by ourselves. */
-static ssize_t
-show_name(struct device *dev, struct device_attribute *devattr, char *buf)
-{
-	struct w83781d_data *data = dev_get_drvdata(dev);
-	return sprintf(buf, "%s\n", data->client.name);
-}
-static DEVICE_ATTR(name, S_IRUGO, show_name, NULL);
-
-/* This function is called when:
-     * w83781d_driver is inserted (when this module is loaded), for each
-       available adapter
-     * when a new adapter is inserted (and w83781d_driver is still present) */
-static int
-w83781d_attach_adapter(struct i2c_adapter *adapter)
-{
-	if (!(adapter->class & I2C_CLASS_HWMON))
-		return 0;
-	return i2c_probe(adapter, &addr_data, w83781d_detect);
-}
-
 /* Assumes that adapter is of I2C, not ISA variety.
  * OTHERWISE DON'T CALL THIS
  */
 static int
-w83781d_detect_subclients(struct i2c_adapter *adapter, int address, int kind,
-		struct i2c_client *new_client)
+w83781d_detect_subclients(struct i2c_client *new_client)
 {
 	int i, val1 = 0, id;
 	int err;
-	const char *client_name = "";
+	int address = new_client->addr;
+	unsigned short sc_addr[2];
+	struct i2c_adapter *adapter = new_client->adapter;
 	struct w83781d_data *data = i2c_get_clientdata(new_client);
-
-	data->lm75[0] = kzalloc(sizeof(struct i2c_client), GFP_KERNEL);
-	if (!(data->lm75[0])) {
-		err = -ENOMEM;
-		goto ERROR_SC_0;
-	}
+	enum chips kind = data->type;
 
 	id = i2c_adapter_id(adapter);
 
@@ -922,55 +837,35 @@
 		w83781d_write_value(data, W83781D_REG_I2C_SUBADDR,
 				(force_subclients[2] & 0x07) |
 				((force_subclients[3] & 0x07) << 4));
-		data->lm75[0]->addr = force_subclients[2];
+		sc_addr[0] = force_subclients[2];
 	} else {
 		val1 = w83781d_read_value(data, W83781D_REG_I2C_SUBADDR);
-		data->lm75[0]->addr = 0x48 + (val1 & 0x07);
+		sc_addr[0] = 0x48 + (val1 & 0x07);
 	}
 
 	if (kind != w83783s) {
-		data->lm75[1] = kzalloc(sizeof(struct i2c_client), GFP_KERNEL);
-		if (!(data->lm75[1])) {
-			err = -ENOMEM;
-			goto ERROR_SC_1;
-		}
-
 		if (force_subclients[0] == id &&
 		    force_subclients[1] == address) {
-			data->lm75[1]->addr = force_subclients[3];
+			sc_addr[1] = force_subclients[3];
 		} else {
-			data->lm75[1]->addr = 0x48 + ((val1 >> 4) & 0x07);
+			sc_addr[1] = 0x48 + ((val1 >> 4) & 0x07);
 		}
-		if (data->lm75[0]->addr == data->lm75[1]->addr) {
+		if (sc_addr[0] == sc_addr[1]) {
 			dev_err(&new_client->dev,
 			       "Duplicate addresses 0x%x for subclients.\n",
-			       data->lm75[0]->addr);
+			       sc_addr[0]);
 			err = -EBUSY;
 			goto ERROR_SC_2;
 		}
 	}
 
-	if (kind == w83781d)
-		client_name = "w83781d subclient";
-	else if (kind == w83782d)
-		client_name = "w83782d subclient";
-	else if (kind == w83783s)
-		client_name = "w83783s subclient";
-	else if (kind == as99127f)
-		client_name = "as99127f subclient";
-
 	for (i = 0; i <= 1; i++) {
-		/* store all data in w83781d */
-		i2c_set_clientdata(data->lm75[i], NULL);
-		data->lm75[i]->adapter = adapter;
-		data->lm75[i]->driver = &w83781d_driver;
-		data->lm75[i]->flags = 0;
-		strlcpy(data->lm75[i]->name, client_name,
-			I2C_NAME_SIZE);
-		if ((err = i2c_attach_client(data->lm75[i]))) {
+		data->lm75[i] = i2c_new_dummy(adapter, sc_addr[i]);
+		if (!data->lm75[i]) {
 			dev_err(&new_client->dev, "Subclient %d "
 				"registration at address 0x%x "
-				"failed.\n", i, data->lm75[i]->addr);
+				"failed.\n", i, sc_addr[i]);
+			err = -ENOMEM;
 			if (i == 1)
 				goto ERROR_SC_3;
 			goto ERROR_SC_2;
@@ -983,12 +878,9 @@
 
 /* Undo inits in case of errors */
 ERROR_SC_3:
-	i2c_detach_client(data->lm75[0]);
+	i2c_unregister_device(data->lm75[0]);
 ERROR_SC_2:
-	kfree(data->lm75[1]);
 ERROR_SC_1:
-	kfree(data->lm75[0]);
-ERROR_SC_0:
 	return err;
 }
 
@@ -1029,7 +921,7 @@
 	&dev_attr_vrm.attr,
 	&dev_attr_alarms.attr,
 	&dev_attr_beep_mask.attr,
-	&dev_attr_beep_enable.attr,
+	&sensor_dev_attr_beep_enable.dev_attr.attr,
 	NULL
 };
 static const struct attribute_group w83781d_group = {
@@ -1151,96 +1043,74 @@
 		}
 	}
 
-	if (is_isa) {
-		err = device_create_file(&pdev->dev, &dev_attr_name);
-		if (err)
-			return err;
-	}
-
 	return 0;
 }
 
+/* Return 0 if detection is successful, -ENODEV otherwise */
 static int
-w83781d_detect(struct i2c_adapter *adapter, int address, int kind)
+w83781d_detect(struct i2c_client *client, int kind,
+	       struct i2c_board_info *info)
 {
 	int val1 = 0, val2;
-	struct i2c_client *client;
-	struct device *dev;
-	struct w83781d_data *data;
-	int err;
+	struct w83781d_data *isa = w83781d_data_if_isa();
+	struct i2c_adapter *adapter = client->adapter;
+	int address = client->addr;
 	const char *client_name = "";
 	enum vendor { winbond, asus } vendid;
 
-	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA)) {
-		err = -EINVAL;
-		goto ERROR1;
-	}
+	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA))
+		return -ENODEV;
 
-	/* OK. For now, we presume we have a valid client. We now create the
-	   client structure, even though we cannot fill it completely yet.
-	   But it allows us to access w83781d_{read,write}_value. */
-
-	if (!(data = kzalloc(sizeof(struct w83781d_data), GFP_KERNEL))) {
-		err = -ENOMEM;
-		goto ERROR1;
-	}
-
-	client = &data->client;
-	i2c_set_clientdata(client, data);
-	client->addr = address;
-	mutex_init(&data->lock);
-	client->adapter = adapter;
-	client->driver = &w83781d_driver;
-	dev = &client->dev;
-
-	/* Now, we do the remaining detection. */
+	/* We block updates of the ISA device to minimize the risk of
+	   concurrent access to the same W83781D chip through different
+	   interfaces. */
+	if (isa)
+		mutex_lock(&isa->update_lock);
 
 	/* The w8378?d may be stuck in some other bank than bank 0. This may
 	   make reading other information impossible. Specify a force=... or
 	   force_*=... parameter, and the Winbond will be reset to the right
 	   bank. */
 	if (kind < 0) {
-		if (w83781d_read_value(data, W83781D_REG_CONFIG) & 0x80) {
+		if (i2c_smbus_read_byte_data
+		    (client, W83781D_REG_CONFIG) & 0x80) {
 			dev_dbg(&adapter->dev, "Detection of w83781d chip "
 				"failed at step 3\n");
-			err = -ENODEV;
-			goto ERROR2;
+			goto err_nodev;
 		}
-		val1 = w83781d_read_value(data, W83781D_REG_BANK);
-		val2 = w83781d_read_value(data, W83781D_REG_CHIPMAN);
+		val1 = i2c_smbus_read_byte_data(client, W83781D_REG_BANK);
+		val2 = i2c_smbus_read_byte_data(client, W83781D_REG_CHIPMAN);
 		/* Check for Winbond or Asus ID if in bank 0 */
 		if ((!(val1 & 0x07)) &&
 		    (((!(val1 & 0x80)) && (val2 != 0xa3) && (val2 != 0xc3))
 		     || ((val1 & 0x80) && (val2 != 0x5c) && (val2 != 0x12)))) {
 			dev_dbg(&adapter->dev, "Detection of w83781d chip "
 				"failed at step 4\n");
-			err = -ENODEV;
-			goto ERROR2;
+			goto err_nodev;
 		}
 		/* If Winbond SMBus, check address at 0x48.
 		   Asus doesn't support, except for as99127f rev.2 */
 		if ((!(val1 & 0x80) && (val2 == 0xa3)) ||
 		    ((val1 & 0x80) && (val2 == 0x5c))) {
-			if (w83781d_read_value
-			    (data, W83781D_REG_I2C_ADDR) != address) {
+			if (i2c_smbus_read_byte_data
+			    (client, W83781D_REG_I2C_ADDR) != address) {
 				dev_dbg(&adapter->dev, "Detection of w83781d "
 					"chip failed at step 5\n");
-				err = -ENODEV;
-				goto ERROR2;
+				goto err_nodev;
 			}
 		}
 	}
 
 	/* We have either had a force parameter, or we have already detected the
 	   Winbond. Put it now into bank 0 and Vendor ID High Byte */
-	w83781d_write_value(data, W83781D_REG_BANK,
-			    (w83781d_read_value(data, W83781D_REG_BANK)
-			     & 0x78) | 0x80);
+	i2c_smbus_write_byte_data(client, W83781D_REG_BANK,
+		(i2c_smbus_read_byte_data(client, W83781D_REG_BANK)
+		 & 0x78) | 0x80);
 
 	/* Determine the chip type. */
 	if (kind <= 0) {
 		/* get vendor ID */
-		val2 = w83781d_read_value(data, W83781D_REG_CHIPMAN);
+		val2 = i2c_smbus_read_byte_data(client, W83781D_REG_CHIPMAN);
 		if (val2 == 0x5c)
 			vendid = winbond;
 		else if (val2 == 0x12)
@@ -1248,11 +1118,10 @@
 		else {
 			dev_dbg(&adapter->dev, "w83781d chip vendor is "
 				"neither Winbond nor Asus\n");
-			err = -ENODEV;
-			goto ERROR2;
+			goto err_nodev;
 		}
 
-		val1 = w83781d_read_value(data, W83781D_REG_WCHIPID);
+		val1 = i2c_smbus_read_byte_data(client, W83781D_REG_WCHIPID);
 		if ((val1 == 0x10 || val1 == 0x11) && vendid == winbond)
 			kind = w83781d;
 		else if (val1 == 0x30 && vendid == winbond)
@@ -1266,11 +1135,20 @@
 				dev_warn(&adapter->dev, "Ignoring 'force' "
 					 "parameter for unknown chip at "
 					 "address 0x%02x\n", address);
-			err = -EINVAL;
-			goto ERROR2;
+			goto err_nodev;
+		}
+
+		if ((kind == w83781d || kind == w83782d)
+		 && w83781d_alias_detect(client, val1)) {
+			dev_dbg(&adapter->dev, "Device at 0x%02x appears to "
+				"be the same as ISA device\n", address);
+			goto err_nodev;
 		}
 	}
 
+	if (isa)
+		mutex_unlock(&isa->update_lock);
+
 	if (kind == w83781d) {
 		client_name = "w83781d";
 	} else if (kind == w83782d) {
@@ -1281,24 +1159,46 @@
 		client_name = "as99127f";
 	}
 
-	/* Fill in the remaining client fields and put into the global list */
-	strlcpy(client->name, client_name, I2C_NAME_SIZE);
-	data->type = kind;
+	strlcpy(info->type, client_name, I2C_NAME_SIZE);
 
-	/* Tell the I2C layer a new client has arrived */
-	if ((err = i2c_attach_client(client)))
-		goto ERROR2;
+	return 0;
+
+ err_nodev:
+	if (isa)
+		mutex_unlock(&isa->update_lock);
+	return -ENODEV;
+}
+
+static int
+w83781d_probe(struct i2c_client *client, const struct i2c_device_id *id)
+{
+	struct device *dev = &client->dev;
+	struct w83781d_data *data;
+	int err;
+
+	data = kzalloc(sizeof(struct w83781d_data), GFP_KERNEL);
+	if (!data) {
+		err = -ENOMEM;
+		goto ERROR1;
+	}
+
+	i2c_set_clientdata(client, data);
+	mutex_init(&data->lock);
+	mutex_init(&data->update_lock);
+
+	data->type = id->driver_data;
+	data->client = client;
 
 	/* attach secondary i2c lm75-like clients */
-	if ((err = w83781d_detect_subclients(adapter, address,
-			kind, client)))
+	err = w83781d_detect_subclients(client);
+	if (err)
 		goto ERROR3;
 
 	/* Initialize the chip */
 	w83781d_init_device(dev);
 
 	/* Register sysfs hooks */
-	err = w83781d_create_files(dev, kind, 0);
+	err = w83781d_create_files(dev, data->type, 0);
 	if (err)
 		goto ERROR4;
 
@@ -1314,264 +1214,113 @@
 	sysfs_remove_group(&dev->kobj, &w83781d_group);
 	sysfs_remove_group(&dev->kobj, &w83781d_group_opt);
 
-	if (data->lm75[1]) {
-		i2c_detach_client(data->lm75[1]);
-		kfree(data->lm75[1]);
-	}
-	if (data->lm75[0]) {
-		i2c_detach_client(data->lm75[0]);
-		kfree(data->lm75[0]);
-	}
+	if (data->lm75[0])
+		i2c_unregister_device(data->lm75[0]);
+	if (data->lm75[1])
+		i2c_unregister_device(data->lm75[1]);
 ERROR3:
-	i2c_detach_client(client);
-ERROR2:
+	i2c_set_clientdata(client, NULL);
 	kfree(data);
 ERROR1:
 	return err;
 }
 
 static int
-w83781d_detach_client(struct i2c_client *client)
+w83781d_remove(struct i2c_client *client)
 {
 	struct w83781d_data *data = i2c_get_clientdata(client);
-	int err;
-
-	/* main client */
-	if (data) {
-		hwmon_device_unregister(data->hwmon_dev);
-		sysfs_remove_group(&client->dev.kobj, &w83781d_group);
-		sysfs_remove_group(&client->dev.kobj, &w83781d_group_opt);
-	}
-
-	if ((err = i2c_detach_client(client)))
-		return err;
-
-	/* main client */
-	if (data)
-		kfree(data);
-
-	/* subclient */
-	else
-		kfree(client);
-
-	return 0;
-}
-
-static int __devinit
-w83781d_isa_probe(struct platform_device *pdev)
-{
-	int err, reg;
-	struct w83781d_data *data;
-	struct resource *res;
-	const char *name;
-
-	/* Reserve the ISA region */
-	res = platform_get_resource(pdev, IORESOURCE_IO, 0);
-	if (!request_region(res->start + W83781D_ADDR_REG_OFFSET, 2,
-			    "w83781d")) {
-		err = -EBUSY;
-		goto exit;
-	}
-
-	if (!(data = kzalloc(sizeof(struct w83781d_data), GFP_KERNEL))) {
-		err = -ENOMEM;
-		goto exit_release_region;
-	}
-	mutex_init(&data->lock);
-	data->client.addr = res->start;
-	i2c_set_clientdata(&data->client, data);
-	platform_set_drvdata(pdev, data);
-
-	reg = w83781d_read_value(data, W83781D_REG_WCHIPID);
-	switch (reg) {
-	case 0x30:
-		data->type = w83782d;
-		name = "w83782d";
-		break;
-	default:
-		data->type = w83781d;
-		name = "w83781d";
-	}
-	strlcpy(data->client.name, name, I2C_NAME_SIZE);
-
-	/* Initialize the W83781D chip */
-	w83781d_init_device(&pdev->dev);
-
-	/* Register sysfs hooks */
-	err = w83781d_create_files(&pdev->dev, data->type, 1);
-	if (err)
-		goto exit_remove_files;
-
-	data->hwmon_dev = hwmon_device_register(&pdev->dev);
-	if (IS_ERR(data->hwmon_dev)) {
-		err = PTR_ERR(data->hwmon_dev);
-		goto exit_remove_files;
-	}
-
-	return 0;
-
- exit_remove_files:
-	sysfs_remove_group(&pdev->dev.kobj, &w83781d_group);
-	sysfs_remove_group(&pdev->dev.kobj, &w83781d_group_opt);
-	device_remove_file(&pdev->dev, &dev_attr_name);
-	kfree(data);
- exit_release_region:
-	release_region(res->start + W83781D_ADDR_REG_OFFSET, 2);
- exit:
-	return err;
-}
-
-static int __devexit
-w83781d_isa_remove(struct platform_device *pdev)
-{
-	struct w83781d_data *data = platform_get_drvdata(pdev);
+	struct device *dev = &client->dev;
 
 	hwmon_device_unregister(data->hwmon_dev);
-	sysfs_remove_group(&pdev->dev.kobj, &w83781d_group);
-	sysfs_remove_group(&pdev->dev.kobj, &w83781d_group_opt);
-	device_remove_file(&pdev->dev, &dev_attr_name);
-	release_region(data->client.addr + W83781D_ADDR_REG_OFFSET, 2);
+
+	sysfs_remove_group(&dev->kobj, &w83781d_group);
+	sysfs_remove_group(&dev->kobj, &w83781d_group_opt);
+
+	if (data->lm75[0])
+		i2c_unregister_device(data->lm75[0]);
+	if (data->lm75[1])
+		i2c_unregister_device(data->lm75[1]);
+
+	i2c_set_clientdata(client, NULL);
 	kfree(data);
 
 	return 0;
 }
 
-/* The SMBus locks itself, usually, but nothing may access the Winbond between
-   bank switches. ISA access must always be locked explicitly!
-   We ignore the W83781D BUSY flag at this moment - it could lead to deadlocks,
-   would slow down the W83781D access and should not be necessary.
-   There are some ugly typecasts here, but the good news is - they should
-   nowhere else be necessary! */
 static int
-w83781d_read_value(struct w83781d_data *data, u16 reg)
+w83781d_read_value_i2c(struct w83781d_data *data, u16 reg)
 {
-	struct i2c_client *client = &data->client;
-	int res, word_sized, bank;
+	struct i2c_client *client = data->client;
+	int res, bank;
 	struct i2c_client *cl;
 
-	mutex_lock(&data->lock);
-	if (!client->driver) { /* ISA device */
-		word_sized = (((reg & 0xff00) == 0x100)
-			      || ((reg & 0xff00) == 0x200))
-		    && (((reg & 0x00ff) == 0x50)
-			|| ((reg & 0x00ff) == 0x53)
-			|| ((reg & 0x00ff) == 0x55));
-		if (reg & 0xff00) {
-			outb_p(W83781D_REG_BANK,
-			       client->addr + W83781D_ADDR_REG_OFFSET);
-			outb_p(reg >> 8,
-			       client->addr + W83781D_DATA_REG_OFFSET);
-		}
-		outb_p(reg & 0xff, client->addr + W83781D_ADDR_REG_OFFSET);
-		res = inb_p(client->addr + W83781D_DATA_REG_OFFSET);
-		if (word_sized) {
-			outb_p((reg & 0xff) + 1,
-			       client->addr + W83781D_ADDR_REG_OFFSET);
-			res =
-			    (res << 8) + inb_p(client->addr +
-					       W83781D_DATA_REG_OFFSET);
-		}
-		if (reg & 0xff00) {
-			outb_p(W83781D_REG_BANK,
-			       client->addr + W83781D_ADDR_REG_OFFSET);
-			outb_p(0, client->addr + W83781D_DATA_REG_OFFSET);
-		}
+	bank = (reg >> 8) & 0x0f;
+	if (bank > 2)
+		/* switch banks */
+		i2c_smbus_write_byte_data(client, W83781D_REG_BANK,
+					  bank);
+	if (bank == 0 || bank > 2) {
+		res = i2c_smbus_read_byte_data(client, reg & 0xff);
 	} else {
-		bank = (reg >> 8) & 0x0f;
-		if (bank > 2)
-			/* switch banks */
-			i2c_smbus_write_byte_data(client, W83781D_REG_BANK,
-						  bank);
-		if (bank == 0 || bank > 2) {
-			res = i2c_smbus_read_byte_data(client, reg & 0xff);
-		} else {
-			/* switch to subclient */
-			cl = data->lm75[bank - 1];
-			/* convert from ISA to LM75 I2C addresses */
-			switch (reg & 0xff) {
-			case 0x50:	/* TEMP */
-				res = swab16(i2c_smbus_read_word_data(cl, 0));
-				break;
-			case 0x52:	/* CONFIG */
-				res = i2c_smbus_read_byte_data(cl, 1);
-				break;
-			case 0x53:	/* HYST */
-				res = swab16(i2c_smbus_read_word_data(cl, 2));
-				break;
-			case 0x55:	/* OVER */
-			default:
-				res = swab16(i2c_smbus_read_word_data(cl, 3));
-				break;
-			}
+		/* switch to subclient */
+		cl = data->lm75[bank - 1];
+		/* convert from ISA to LM75 I2C addresses */
+		switch (reg & 0xff) {
+		case 0x50:	/* TEMP */
+			res = swab16(i2c_smbus_read_word_data(cl, 0));
+			break;
+		case 0x52:	/* CONFIG */
+			res = i2c_smbus_read_byte_data(cl, 1);
+			break;
+		case 0x53:	/* HYST */
+			res = swab16(i2c_smbus_read_word_data(cl, 2));
+			break;
+		case 0x55:	/* OVER */
+		default:
+			res = swab16(i2c_smbus_read_word_data(cl, 3));
+			break;
 		}
-		if (bank > 2)
-			i2c_smbus_write_byte_data(client, W83781D_REG_BANK, 0);
 	}
-	mutex_unlock(&data->lock);
+	if (bank > 2)
+		i2c_smbus_write_byte_data(client, W83781D_REG_BANK, 0);
+
 	return res;
 }
 
 static int
-w83781d_write_value(struct w83781d_data *data, u16 reg, u16 value)
+w83781d_write_value_i2c(struct w83781d_data *data, u16 reg, u16 value)
 {
-	struct i2c_client *client = &data->client;
-	int word_sized, bank;
+	struct i2c_client *client = data->client;
+	int bank;
 	struct i2c_client *cl;
 
-	mutex_lock(&data->lock);
-	if (!client->driver) { /* ISA device */
-		word_sized = (((reg & 0xff00) == 0x100)
-			      || ((reg & 0xff00) == 0x200))
-		    && (((reg & 0x00ff) == 0x53)
-			|| ((reg & 0x00ff) == 0x55));
-		if (reg & 0xff00) {
-			outb_p(W83781D_REG_BANK,
-			       client->addr + W83781D_ADDR_REG_OFFSET);
-			outb_p(reg >> 8,
-			       client->addr + W83781D_DATA_REG_OFFSET);
-		}
-		outb_p(reg & 0xff, client->addr + W83781D_ADDR_REG_OFFSET);
-		if (word_sized) {
-			outb_p(value >> 8,
-			       client->addr + W83781D_DATA_REG_OFFSET);
-			outb_p((reg & 0xff) + 1,
-			       client->addr + W83781D_ADDR_REG_OFFSET);
-		}
-		outb_p(value & 0xff, client->addr + W83781D_DATA_REG_OFFSET);
-		if (reg & 0xff00) {
-			outb_p(W83781D_REG_BANK,
-			       client->addr + W83781D_ADDR_REG_OFFSET);
-			outb_p(0, client->addr + W83781D_DATA_REG_OFFSET);
-		}
+	bank = (reg >> 8) & 0x0f;
+	if (bank > 2)
+		/* switch banks */
+		i2c_smbus_write_byte_data(client, W83781D_REG_BANK,
+					  bank);
+	if (bank == 0 || bank > 2) {
+		i2c_smbus_write_byte_data(client, reg & 0xff,
+					  value & 0xff);
 	} else {
-		bank = (reg >> 8) & 0x0f;
-		if (bank > 2)
-			/* switch banks */
-			i2c_smbus_write_byte_data(client, W83781D_REG_BANK,
-						  bank);
-		if (bank == 0 || bank > 2) {
-			i2c_smbus_write_byte_data(client, reg & 0xff,
-						  value & 0xff);
-		} else {
-			/* switch to subclient */
-			cl = data->lm75[bank - 1];
-			/* convert from ISA to LM75 I2C addresses */
-			switch (reg & 0xff) {
-			case 0x52:	/* CONFIG */
-				i2c_smbus_write_byte_data(cl, 1, value & 0xff);
-				break;
-			case 0x53:	/* HYST */
-				i2c_smbus_write_word_data(cl, 2, swab16(value));
-				break;
-			case 0x55:	/* OVER */
-				i2c_smbus_write_word_data(cl, 3, swab16(value));
-				break;
-			}
+		/* switch to subclient */
+		cl = data->lm75[bank - 1];
+		/* convert from ISA to LM75 I2C addresses */
+		switch (reg & 0xff) {
+		case 0x52:	/* CONFIG */
+			i2c_smbus_write_byte_data(cl, 1, value & 0xff);
+			break;
+		case 0x53:	/* HYST */
+			i2c_smbus_write_word_data(cl, 2, swab16(value));
+			break;
+		case 0x55:	/* OVER */
+			i2c_smbus_write_word_data(cl, 3, swab16(value));
+			break;
 		}
-		if (bank > 2)
-			i2c_smbus_write_byte_data(client, W83781D_REG_BANK, 0);
 	}
-	mutex_unlock(&data->lock);
+	if (bank > 2)
+		i2c_smbus_write_byte_data(client, W83781D_REG_BANK, 0);
+
 	return 0;
 }
 
@@ -1678,7 +1427,7 @@
 static struct w83781d_data *w83781d_update_device(struct device *dev)
 {
 	struct w83781d_data *data = dev_get_drvdata(dev);
-	struct i2c_client *client = &data->client;
+	struct i2c_client *client = data->client;
 	int i;
 
 	mutex_lock(&data->update_lock);
@@ -1775,8 +1524,7 @@
 						W83781D_REG_ALARM2) << 8);
 		}
 		i = w83781d_read_value(data, W83781D_REG_BEEP_INTS2);
-		data->beep_enable = i >> 7;
-		data->beep_mask = ((i & 0x7f) << 8) +
+		data->beep_mask = (i << 8) +
 		    w83781d_read_value(data, W83781D_REG_BEEP_INTS1);
 		if ((data->type != w83781d) && (data->type != as99127f)) {
 			data->beep_mask |=
@@ -1792,6 +1540,275 @@
 	return data;
 }
 
+static const struct i2c_device_id w83781d_ids[] = {
+	{ "w83781d", w83781d, },
+	{ "w83782d", w83782d, },
+	{ "w83783s", w83783s, },
+	{ "as99127f", as99127f },
+	{ /* LIST END */ }
+};
+MODULE_DEVICE_TABLE(i2c, w83781d_ids);
+
+static struct i2c_driver w83781d_driver = {
+	.class		= I2C_CLASS_HWMON,
+	.driver = {
+		.name = "w83781d",
+	},
+	.probe		= w83781d_probe,
+	.remove		= w83781d_remove,
+	.id_table	= w83781d_ids,
+	.detect		= w83781d_detect,
+	.address_data	= &addr_data,
+};
+
+/*
+ * ISA related code
+ */
+#ifdef CONFIG_ISA
+
+/* ISA device, if found */
+static struct platform_device *pdev;
+
+static unsigned short isa_address = 0x290;
+
+/* I2C devices get this name attribute automatically, but for ISA devices
+   we must create it by ourselves. */
+static ssize_t
+show_name(struct device *dev, struct device_attribute *devattr, char *buf)
+{
+	struct w83781d_data *data = dev_get_drvdata(dev);
+	return sprintf(buf, "%s\n", data->name);
+}
+static DEVICE_ATTR(name, S_IRUGO, show_name, NULL);
+
+static struct w83781d_data *w83781d_data_if_isa(void)
+{
+	return pdev ? platform_get_drvdata(pdev) : NULL;
+}
+
+/* Returns 1 if the I2C chip appears to be an alias of the ISA chip */
+static int w83781d_alias_detect(struct i2c_client *client, u8 chipid)
+{
+	struct w83781d_data *isa;
+	int i;
+
+	if (!pdev)	/* No ISA chip */
+		return 0;
+
+	isa = platform_get_drvdata(pdev);
+
+	if (w83781d_read_value(isa, W83781D_REG_I2C_ADDR) != client->addr)
+		return 0;	/* Address doesn't match */
+	if (w83781d_read_value(isa, W83781D_REG_WCHIPID) != chipid)
+		return 0;	/* Chip type doesn't match */
+
+	/* We compare all the limit registers, the config register and the
+	 * interrupt mask registers */
+	for (i = 0x2b; i <= 0x3d; i++) {
+		if (w83781d_read_value(isa, i) !=
+		    i2c_smbus_read_byte_data(client, i))
+			return 0;
+	}
+	if (w83781d_read_value(isa, W83781D_REG_CONFIG) !=
+	    i2c_smbus_read_byte_data(client, W83781D_REG_CONFIG))
+		return 0;
+	for (i = 0x43; i <= 0x46; i++) {
+		if (w83781d_read_value(isa, i) !=
+		    i2c_smbus_read_byte_data(client, i))
+			return 0;
+	}
+
+	return 1;
+}
+
+static int
+w83781d_read_value_isa(struct w83781d_data *data, u16 reg)
+{
+	int word_sized, res;
+
+	word_sized = (((reg & 0xff00) == 0x100)
+		      || ((reg & 0xff00) == 0x200))
+	    && (((reg & 0x00ff) == 0x50)
+		|| ((reg & 0x00ff) == 0x53)
+		|| ((reg & 0x00ff) == 0x55));
+	if (reg & 0xff00) {
+		outb_p(W83781D_REG_BANK,
+		       data->isa_addr + W83781D_ADDR_REG_OFFSET);
+		outb_p(reg >> 8,
+		       data->isa_addr + W83781D_DATA_REG_OFFSET);
+	}
+	outb_p(reg & 0xff, data->isa_addr + W83781D_ADDR_REG_OFFSET);
+	res = inb_p(data->isa_addr + W83781D_DATA_REG_OFFSET);
+	if (word_sized) {
+		outb_p((reg & 0xff) + 1,
+		       data->isa_addr + W83781D_ADDR_REG_OFFSET);
+		res =
+		    (res << 8) + inb_p(data->isa_addr +
+				       W83781D_DATA_REG_OFFSET);
+	}
+	if (reg & 0xff00) {
+		outb_p(W83781D_REG_BANK,
+		       data->isa_addr + W83781D_ADDR_REG_OFFSET);
+		outb_p(0, data->isa_addr + W83781D_DATA_REG_OFFSET);
+	}
+	return res;
+}
+
+static void
+w83781d_write_value_isa(struct w83781d_data *data, u16 reg, u16 value)
+{
+	int word_sized;
+
+	word_sized = (((reg & 0xff00) == 0x100)
+		      || ((reg & 0xff00) == 0x200))
+	    && (((reg & 0x00ff) == 0x53)
+		|| ((reg & 0x00ff) == 0x55));
+	if (reg & 0xff00) {
+		outb_p(W83781D_REG_BANK,
+		       data->isa_addr + W83781D_ADDR_REG_OFFSET);
+		outb_p(reg >> 8,
+		       data->isa_addr + W83781D_DATA_REG_OFFSET);
+	}
+	outb_p(reg & 0xff, data->isa_addr + W83781D_ADDR_REG_OFFSET);
+	if (word_sized) {
+		outb_p(value >> 8,
+		       data->isa_addr + W83781D_DATA_REG_OFFSET);
+		outb_p((reg & 0xff) + 1,
+		       data->isa_addr + W83781D_ADDR_REG_OFFSET);
+	}
+	outb_p(value & 0xff, data->isa_addr + W83781D_DATA_REG_OFFSET);
+	if (reg & 0xff00) {
+		outb_p(W83781D_REG_BANK,
+		       data->isa_addr + W83781D_ADDR_REG_OFFSET);
+		outb_p(0, data->isa_addr + W83781D_DATA_REG_OFFSET);
+	}
+}
+
+/* The SMBus locks itself, usually, but nothing may access the Winbond between
+   bank switches. ISA access must always be locked explicitly!
+   We ignore the W83781D BUSY flag at this moment - it could lead to deadlocks,
+   would slow down the W83781D access and should not be necessary.
+   There are some ugly typecasts here, but the good news is - they should
+   nowhere else be necessary! */
+static int
+w83781d_read_value(struct w83781d_data *data, u16 reg)
+{
+	struct i2c_client *client = data->client;
+	int res;
+
+	mutex_lock(&data->lock);
+	if (client)
+		res = w83781d_read_value_i2c(data, reg);
+	else
+		res = w83781d_read_value_isa(data, reg);
+	mutex_unlock(&data->lock);
+	return res;
+}
+
+static int
+w83781d_write_value(struct w83781d_data *data, u16 reg, u16 value)
+{
+	struct i2c_client *client = data->client;
+
+	mutex_lock(&data->lock);
+	if (client)
+		w83781d_write_value_i2c(data, reg, value);
+	else
+		w83781d_write_value_isa(data, reg, value);
+	mutex_unlock(&data->lock);
+	return 0;
+}
+
+static int __devinit
+w83781d_isa_probe(struct platform_device *pdev)
+{
+	int err, reg;
+	struct w83781d_data *data;
+	struct resource *res;
+
+	/* Reserve the ISA region */
+	res = platform_get_resource(pdev, IORESOURCE_IO, 0);
+	if (!request_region(res->start + W83781D_ADDR_REG_OFFSET, 2,
+			    "w83781d")) {
+		err = -EBUSY;
+		goto exit;
+	}
+
+	data = kzalloc(sizeof(struct w83781d_data), GFP_KERNEL);
+	if (!data) {
+		err = -ENOMEM;
+		goto exit_release_region;
+	}
+	mutex_init(&data->lock);
+	data->isa_addr = res->start;
+	platform_set_drvdata(pdev, data);
+
+	reg = w83781d_read_value(data, W83781D_REG_WCHIPID);
+	switch (reg) {
+	case 0x30:
+		data->type = w83782d;
+		data->name = "w83782d";
+		break;
+	default:
+		data->type = w83781d;
+		data->name = "w83781d";
+	}
+
+	/* Initialize the W83781D chip */
+	w83781d_init_device(&pdev->dev);
+
+	/* Register sysfs hooks */
+	err = w83781d_create_files(&pdev->dev, data->type, 1);
+	if (err)
+		goto exit_remove_files;
+
+	err = device_create_file(&pdev->dev, &dev_attr_name);
+	if (err)
+		goto exit_remove_files;
+
+	data->hwmon_dev = hwmon_device_register(&pdev->dev);
+	if (IS_ERR(data->hwmon_dev)) {
+		err = PTR_ERR(data->hwmon_dev);
+		goto exit_remove_files;
+	}
+
+	return 0;
+
+ exit_remove_files:
+	sysfs_remove_group(&pdev->dev.kobj, &w83781d_group);
+	sysfs_remove_group(&pdev->dev.kobj, &w83781d_group_opt);
+	device_remove_file(&pdev->dev, &dev_attr_name);
+	kfree(data);
+ exit_release_region:
+	release_region(res->start + W83781D_ADDR_REG_OFFSET, 2);
+ exit:
+	return err;
+}
+
+static int __devexit
+w83781d_isa_remove(struct platform_device *pdev)
+{
+	struct w83781d_data *data = platform_get_drvdata(pdev);
+
+	hwmon_device_unregister(data->hwmon_dev);
+	sysfs_remove_group(&pdev->dev.kobj, &w83781d_group);
+	sysfs_remove_group(&pdev->dev.kobj, &w83781d_group_opt);
+	device_remove_file(&pdev->dev, &dev_attr_name);
+	release_region(data->isa_addr + W83781D_ADDR_REG_OFFSET, 2);
+	kfree(data);
+
+	return 0;
+}
+
+static struct platform_driver w83781d_isa_driver = {
+	.driver = {
+		.owner = THIS_MODULE,
+		.name = "w83781d",
+	},
+	.probe = w83781d_isa_probe,
+	.remove = __devexit_p(w83781d_isa_remove),
+};
+
 /* return 1 if a supported chip is found, 0 otherwise */
 static int __init
 w83781d_isa_found(unsigned short address)
@@ -1928,18 +1945,14 @@
 }
 
 static int __init
-sensors_w83781d_init(void)
+w83781d_isa_register(void)
 {
 	int res;
 
-	res = i2c_add_driver(&w83781d_driver);
-	if (res)
-		goto exit;
-
 	if (w83781d_isa_found(isa_address)) {
 		res = platform_driver_register(&w83781d_isa_driver);
 		if (res)
-			goto exit_unreg_i2c_driver;
+			goto exit;
 
 		/* Sets global pdev as a side effect */
 		res = w83781d_isa_device_add(isa_address);
@@ -1949,10 +1962,86 @@
 
 	return 0;
 
- exit_unreg_isa_driver:
+exit_unreg_isa_driver:
 	platform_driver_unregister(&w83781d_isa_driver);
- exit_unreg_i2c_driver:
-	i2c_del_driver(&w83781d_driver);
+exit:
+	return res;
+}
+
+static void __exit
+w83781d_isa_unregister(void)
+{
+	if (pdev) {
+		platform_device_unregister(pdev);
+		platform_driver_unregister(&w83781d_isa_driver);
+	}
+}
+#else /* !CONFIG_ISA */
+
+static struct w83781d_data *w83781d_data_if_isa(void)
+{
+	return NULL;
+}
+
+static int
+w83781d_alias_detect(struct i2c_client *client, u8 chipid)
+{
+	return 0;
+}
+
+static int
+w83781d_read_value(struct w83781d_data *data, u16 reg)
+{
+	int res;
+
+	mutex_lock(&data->lock);
+	res = w83781d_read_value_i2c(data, reg);
+	mutex_unlock(&data->lock);
+
+	return res;
+}
+
+static int
+w83781d_write_value(struct w83781d_data *data, u16 reg, u16 value)
+{
+	mutex_lock(&data->lock);
+	w83781d_write_value_i2c(data, reg, value);
+	mutex_unlock(&data->lock);
+
+	return 0;
+}
+
+static int __init
+w83781d_isa_register(void)
+{
+	return 0;
+}
+
+static void __exit
+w83781d_isa_unregister(void)
+{
+}
+#endif /* CONFIG_ISA */
+
+static int __init
+sensors_w83781d_init(void)
+{
+	int res;
+
+	/* We register the ISA device first, so that we can skip the
+	 * registration of an I2C interface to the same device. */
+	res = w83781d_isa_register();
+	if (res)
+		goto exit;
+
+	res = i2c_add_driver(&w83781d_driver);
+	if (res)
+		goto exit_unreg_isa;
+
+	return 0;
+
+ exit_unreg_isa:
+	w83781d_isa_unregister();
  exit:
 	return res;
 }
@@ -1960,10 +2049,7 @@
 static void __exit
 sensors_w83781d_exit(void)
 {
-	if (pdev) {
-		platform_device_unregister(pdev);
-		platform_driver_unregister(&w83781d_isa_driver);
-	}
+	w83781d_isa_unregister();
 	i2c_del_driver(&w83781d_driver);
 }
 
diff --git a/drivers/hwmon/w83791d.c b/drivers/hwmon/w83791d.c
index de21142..5768def 100644
--- a/drivers/hwmon/w83791d.c
+++ b/drivers/hwmon/w83791d.c
@@ -23,7 +23,7 @@
     Supports following chips:
 
     Chip	#vin	#fanin	#pwm	#temp	wchipid	vendid	i2c	ISA
-    w83791d	10	5	3	3	0x71	0x5ca3	yes	no
+    w83791d	10	5	5	3	0x71	0x5ca3	yes	no
 
     The w83791d chip appears to be part way between the 83781d and the
     83792d. Thus, this file is derived from both the w83792d.c and
@@ -45,6 +45,7 @@
 #define NUMBER_OF_VIN		10
 #define NUMBER_OF_FANIN		5
 #define NUMBER_OF_TEMPIN	3
+#define NUMBER_OF_PWM		5
 
 /* Addresses to scan */
 static const unsigned short normal_i2c[] = { 0x2c, 0x2d, 0x2e, 0x2f,
@@ -116,6 +117,25 @@
 	0xBD,			/* FAN 5 Count Low Limit in DataSheet */
 };
 
+static const u8 W83791D_REG_PWM[NUMBER_OF_PWM] = {
+	0x81,			/* PWM 1 duty cycle register in DataSheet */
+	0x83,			/* PWM 2 duty cycle register in DataSheet */
+	0x94,			/* PWM 3 duty cycle register in DataSheet */
+	0xA0,			/* PWM 4 duty cycle register in DataSheet */
+	0xA1,			/* PWM 5 duty cycle register in DataSheet */
+};
+
+static const u8 W83791D_REG_TEMP_TARGET[3] = {
+	0x85,			/* PWM 1 target temperature for temp 1 */
+	0x86,			/* PWM 2 target temperature for temp 2 */
+	0x96,			/* PWM 3 target temperature for temp 3 */
+};
+
+static const u8 W83791D_REG_TEMP_TOL[2] = {
+	0x87,			/* PWM 1/2 temperature tolerance */
+	0x97,			/* PWM 3 temperature tolerance */
+};
+
 static const u8 W83791D_REG_FAN_CFG[2] = {
 	0x84,			/* FAN 1/2 configuration */
 	0x95,			/* FAN 3 configuration */
@@ -160,6 +180,7 @@
 	0xA3,			/* BEEP Control Register 3 */
 };
 
+#define W83791D_REG_GPIO		0x15
 #define W83791D_REG_CONFIG		0x40
 #define W83791D_REG_VID_FANDIV		0x47
 #define W83791D_REG_DID_VID4		0x49
@@ -224,6 +245,15 @@
 				 (val) < 0 ? ((val) - 250) / 500 * 128 : \
 				 ((val) + 250) / 500 * 128)
 
+/* for thermal cruise target temp, 7-bits, LSB = 1 degree Celsius */
+#define TARGET_TEMP_TO_REG(val)		((val) < 0 ? 0 : \
+					(val) >= 127000 ? 127 : \
+					((val) + 500) / 1000)
+
+/* for thermal cruise temp tolerance, 4-bits, LSB = 1 degree Celsius */
+#define TOL_TEMP_TO_REG(val)		((val) < 0 ? 0 : \
+					(val) >= 15000 ? 15 : \
+					((val) + 500) / 1000)
 
 #define BEEP_MASK_TO_REG(val)		((val) & 0xffffff)
 #define BEEP_MASK_FROM_REG(val)		((val) & 0xffffff)
@@ -275,6 +305,14 @@
 				   two sensors with three values
 				   (cur, over, hyst)  */
 
+	/* PWMs */
+	u8 pwm[5];		/* pwm duty cycle */
+	u8 pwm_enable[3];	/* pwm enable status for fan 1-3
+					(fan 4-5 only support manual mode) */
+
+	u8 temp_target[3];	/* pwm 1-3 target temperature */
+	u8 temp_tolerance[3];	/* pwm 1-3 temperature tolerance */
+
 	/* Misc */
 	u32 alarms;		/* realtime status register encoding,combined */
 	u8 beep_enable;		/* Global beep enable */
@@ -652,6 +690,217 @@
 	SENSOR_ATTR(fan5_alarm, S_IRUGO, show_alarm, NULL, 22),
 };
 
+/* read/write PWMs */
+static ssize_t show_pwm(struct device *dev, struct device_attribute *attr,
+				char *buf)
+{
+	struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
+	int nr = sensor_attr->index;
+	struct w83791d_data *data = w83791d_update_device(dev);
+	return sprintf(buf, "%u\n", data->pwm[nr]);
+}
+
+static ssize_t store_pwm(struct device *dev, struct device_attribute *attr,
+		const char *buf, size_t count)
+{
+	struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
+	struct i2c_client *client = to_i2c_client(dev);
+	struct w83791d_data *data = i2c_get_clientdata(client);
+	int nr = sensor_attr->index;
+	unsigned long val;
+
+	if (strict_strtoul(buf, 10, &val))
+		return -EINVAL;
+
+	mutex_lock(&data->update_lock);
+	data->pwm[nr] = SENSORS_LIMIT(val, 0, 255);
+	w83791d_write(client, W83791D_REG_PWM[nr], data->pwm[nr]);
+	mutex_unlock(&data->update_lock);
+	return count;
+}
+
+static struct sensor_device_attribute sda_pwm[] = {
+	SENSOR_ATTR(pwm1, S_IWUSR | S_IRUGO,
+			show_pwm, store_pwm, 0),
+	SENSOR_ATTR(pwm2, S_IWUSR | S_IRUGO,
+			show_pwm, store_pwm, 1),
+	SENSOR_ATTR(pwm3, S_IWUSR | S_IRUGO,
+			show_pwm, store_pwm, 2),
+	SENSOR_ATTR(pwm4, S_IWUSR | S_IRUGO,
+			show_pwm, store_pwm, 3),
+	SENSOR_ATTR(pwm5, S_IWUSR | S_IRUGO,
+			show_pwm, store_pwm, 4),
+};
+
+static ssize_t show_pwmenable(struct device *dev, struct device_attribute *attr,
+				char *buf)
+{
+	struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
+	int nr = sensor_attr->index;
+	struct w83791d_data *data = w83791d_update_device(dev);
+	return sprintf(buf, "%u\n", data->pwm_enable[nr] + 1);
+}
+
+static ssize_t store_pwmenable(struct device *dev,
+		struct device_attribute *attr, const char *buf, size_t count)
+{
+	struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
+	struct i2c_client *client = to_i2c_client(dev);
+	struct w83791d_data *data = i2c_get_clientdata(client);
+	int nr = sensor_attr->index;
+	unsigned long val;
+	u8 reg_cfg_tmp;
+	u8 reg_idx = 0;
+	u8 val_shift = 0;
+	u8 keep_mask = 0;
+
+	int ret = strict_strtoul(buf, 10, &val);
+
+	if (ret || val < 1 || val > 3)
+		return -EINVAL;
+
+	mutex_lock(&data->update_lock);
+	data->pwm_enable[nr] = val - 1;
+	switch (nr) {
+	case 0:
+		reg_idx = 0;
+		val_shift = 2;
+		keep_mask = 0xf3;
+		break;
+	case 1:
+		reg_idx = 0;
+		val_shift = 4;
+		keep_mask = 0xcf;
+		break;
+	case 2:
+		reg_idx = 1;
+		val_shift = 2;
+		keep_mask = 0xf3;
+		break;
+	}
+
+	reg_cfg_tmp = w83791d_read(client, W83791D_REG_FAN_CFG[reg_idx]);
+	reg_cfg_tmp = (reg_cfg_tmp & keep_mask) |
+					data->pwm_enable[nr] << val_shift;
+
+	w83791d_write(client, W83791D_REG_FAN_CFG[reg_idx], reg_cfg_tmp);
+	mutex_unlock(&data->update_lock);
+
+	return count;
+}
+static struct sensor_device_attribute sda_pwmenable[] = {
+	SENSOR_ATTR(pwm1_enable, S_IWUSR | S_IRUGO,
+			show_pwmenable, store_pwmenable, 0),
+	SENSOR_ATTR(pwm2_enable, S_IWUSR | S_IRUGO,
+			show_pwmenable, store_pwmenable, 1),
+	SENSOR_ATTR(pwm3_enable, S_IWUSR | S_IRUGO,
+			show_pwmenable, store_pwmenable, 2),
+};
+
+/* For Smart Fan I / Thermal Cruise */
+static ssize_t show_temp_target(struct device *dev,
+			struct device_attribute *attr, char *buf)
+{
+	struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
+	struct w83791d_data *data = w83791d_update_device(dev);
+	int nr = sensor_attr->index;
+	return sprintf(buf, "%d\n", TEMP1_FROM_REG(data->temp_target[nr]));
+}
+
+static ssize_t store_temp_target(struct device *dev,
+		struct device_attribute *attr, const char *buf, size_t count)
+{
+	struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
+	struct i2c_client *client = to_i2c_client(dev);
+	struct w83791d_data *data = i2c_get_clientdata(client);
+	int nr = sensor_attr->index;
+	unsigned long val;
+	u8 target_mask;
+
+	if (strict_strtoul(buf, 10, &val))
+		return -EINVAL;
+
+	mutex_lock(&data->update_lock);
+	data->temp_target[nr] = TARGET_TEMP_TO_REG(val);
+	target_mask = w83791d_read(client,
+				W83791D_REG_TEMP_TARGET[nr]) & 0x80;
+	w83791d_write(client, W83791D_REG_TEMP_TARGET[nr],
+				data->temp_target[nr] | target_mask);
+	mutex_unlock(&data->update_lock);
+	return count;
+}
+
+static struct sensor_device_attribute sda_temp_target[] = {
+	SENSOR_ATTR(temp1_target, S_IWUSR | S_IRUGO,
+			show_temp_target, store_temp_target, 0),
+	SENSOR_ATTR(temp2_target, S_IWUSR | S_IRUGO,
+			show_temp_target, store_temp_target, 1),
+	SENSOR_ATTR(temp3_target, S_IWUSR | S_IRUGO,
+			show_temp_target, store_temp_target, 2),
+};
+
+static ssize_t show_temp_tolerance(struct device *dev,
+			struct device_attribute *attr, char *buf)
+{
+	struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
+	struct w83791d_data *data = w83791d_update_device(dev);
+	int nr = sensor_attr->index;
+	return sprintf(buf, "%d\n", TEMP1_FROM_REG(data->temp_tolerance[nr]));
+}
+
+static ssize_t store_temp_tolerance(struct device *dev,
+		struct device_attribute *attr, const char *buf, size_t count)
+{
+	struct sensor_device_attribute *sensor_attr = to_sensor_dev_attr(attr);
+	struct i2c_client *client = to_i2c_client(dev);
+	struct w83791d_data *data = i2c_get_clientdata(client);
+	int nr = sensor_attr->index;
+	unsigned long val;
+	u8 target_mask;
+	u8 reg_idx = 0;
+	u8 val_shift = 0;
+	u8 keep_mask = 0;
+
+	if (strict_strtoul(buf, 10, &val))
+		return -EINVAL;
+
+	switch (nr) {
+	case 0:
+		reg_idx = 0;
+		val_shift = 0;
+		keep_mask = 0xf0;
+		break;
+	case 1:
+		reg_idx = 0;
+		val_shift = 4;
+		keep_mask = 0x0f;
+		break;
+	case 2:
+		reg_idx = 1;
+		val_shift = 0;
+		keep_mask = 0xf0;
+		break;
+	}
+
+	mutex_lock(&data->update_lock);
+	data->temp_tolerance[nr] = TOL_TEMP_TO_REG(val);
+	target_mask = w83791d_read(client,
+			W83791D_REG_TEMP_TOL[reg_idx]) & keep_mask;
+	w83791d_write(client, W83791D_REG_TEMP_TOL[reg_idx],
+			(data->temp_tolerance[nr] << val_shift) | target_mask);
+	mutex_unlock(&data->update_lock);
+	return count;
+}
+
+static struct sensor_device_attribute sda_temp_tolerance[] = {
+	SENSOR_ATTR(temp1_tolerance, S_IWUSR | S_IRUGO,
+			show_temp_tolerance, store_temp_tolerance, 0),
+	SENSOR_ATTR(temp2_tolerance, S_IWUSR | S_IRUGO,
+			show_temp_tolerance, store_temp_tolerance, 1),
+	SENSOR_ATTR(temp3_tolerance, S_IWUSR | S_IRUGO,
+			show_temp_tolerance, store_temp_tolerance, 2),
+};
+
 /* read/write the temperature1, includes measured value and limits */
 static ssize_t show_temp1(struct device *dev, struct device_attribute *devattr,
 				char *buf)
@@ -908,8 +1157,6 @@
 	FAN_UNIT_ATTRS(0),
 	FAN_UNIT_ATTRS(1),
 	FAN_UNIT_ATTRS(2),
-	FAN_UNIT_ATTRS(3),
-	FAN_UNIT_ATTRS(4),
 	TEMP_UNIT_ATTRS(0),
 	TEMP_UNIT_ATTRS(1),
 	TEMP_UNIT_ATTRS(2),
@@ -918,6 +1165,18 @@
 	&sda_beep_ctrl[1].dev_attr.attr,
 	&dev_attr_cpu0_vid.attr,
 	&dev_attr_vrm.attr,
+	&sda_pwm[0].dev_attr.attr,
+	&sda_pwm[1].dev_attr.attr,
+	&sda_pwm[2].dev_attr.attr,
+	&sda_pwmenable[0].dev_attr.attr,
+	&sda_pwmenable[1].dev_attr.attr,
+	&sda_pwmenable[2].dev_attr.attr,
+	&sda_temp_target[0].dev_attr.attr,
+	&sda_temp_target[1].dev_attr.attr,
+	&sda_temp_target[2].dev_attr.attr,
+	&sda_temp_tolerance[0].dev_attr.attr,
+	&sda_temp_tolerance[1].dev_attr.attr,
+	&sda_temp_tolerance[2].dev_attr.attr,
 	NULL
 };
 
@@ -925,6 +1184,20 @@
 	.attrs = w83791d_attributes,
 };
 
+/* Separate group of attributes for fan/pwm 4-5. Their pins can also be
+   in use for GPIO in which case their sysfs-interface should not be made
+   available */
+static struct attribute *w83791d_attributes_fanpwm45[] = {
+	FAN_UNIT_ATTRS(3),
+	FAN_UNIT_ATTRS(4),
+	&sda_pwm[3].dev_attr.attr,
+	&sda_pwm[4].dev_attr.attr,
+	NULL
+};
+
+static const struct attribute_group w83791d_group_fanpwm45 = {
+	.attrs = w83791d_attributes_fanpwm45,
+};
 
 static int w83791d_detect_subclients(struct i2c_client *client)
 {
@@ -1056,6 +1329,7 @@
 	struct w83791d_data *data;
 	struct device *dev = &client->dev;
 	int i, err;
+	u8 has_fanpwm45;
 
 #ifdef DEBUG
 	int val1;
@@ -1090,15 +1364,27 @@
 	if ((err = sysfs_create_group(&client->dev.kobj, &w83791d_group)))
 		goto error3;
 
+	/* Check if pins of fan/pwm 4-5 are in use as GPIO */
+	has_fanpwm45 = w83791d_read(client, W83791D_REG_GPIO) & 0x10;
+	if (has_fanpwm45) {
+		err = sysfs_create_group(&client->dev.kobj,
+					 &w83791d_group_fanpwm45);
+		if (err)
+			goto error4;
+	}
+
 	/* Everything is ready, now register the working device */
 	data->hwmon_dev = hwmon_device_register(dev);
 	if (IS_ERR(data->hwmon_dev)) {
 		err = PTR_ERR(data->hwmon_dev);
-		goto error4;
+		goto error5;
 	}
 
 	return 0;
 
+error5:
+	if (has_fanpwm45)
+		sysfs_remove_group(&client->dev.kobj, &w83791d_group_fanpwm45);
 error4:
 	sysfs_remove_group(&client->dev.kobj, &w83791d_group);
 error3:
@@ -1236,6 +1522,36 @@
 		for (i = 0; i < 3; i++)
 			data->fan_div[i] |= (vbat_reg >> (3 + i)) & 0x04;
 
+		/* Update PWM duty cycle */
+		for (i = 0; i < NUMBER_OF_PWM; i++) {
+			data->pwm[i] =  w83791d_read(client,
+						W83791D_REG_PWM[i]);
+		}
+
+		/* Update PWM enable status */
+		for (i = 0; i < 2; i++) {
+			reg_array_tmp[i] = w83791d_read(client,
+						W83791D_REG_FAN_CFG[i]);
+		}
+		data->pwm_enable[0] = (reg_array_tmp[0] >> 2) & 0x03;
+		data->pwm_enable[1] = (reg_array_tmp[0] >> 4) & 0x03;
+		data->pwm_enable[2] = (reg_array_tmp[1] >> 2) & 0x03;
+
+		/* Update PWM target temperature */
+		for (i = 0; i < 3; i++) {
+			data->temp_target[i] = w83791d_read(client,
+				W83791D_REG_TEMP_TARGET[i]) & 0x7f;
+		}
+
+		/* Update PWM temperature tolerance */
+		for (i = 0; i < 2; i++) {
+			reg_array_tmp[i] = w83791d_read(client,
+					W83791D_REG_TEMP_TOL[i]);
+		}
+		data->temp_tolerance[0] = reg_array_tmp[0] & 0x0f;
+		data->temp_tolerance[1] = (reg_array_tmp[0] >> 4) & 0x0f;
+		data->temp_tolerance[2] = reg_array_tmp[1] & 0x0f;
+
 		/* Update the first temperature sensor */
 		for (i = 0; i < 3; i++) {
 			data->temp1[i] = w83791d_read(client,
diff --git a/drivers/i2c/busses/i2c-powermac.c b/drivers/i2c/busses/i2c-powermac.c
index 0e7b1c6..60ca917 100644
--- a/drivers/i2c/busses/i2c-powermac.c
+++ b/drivers/i2c/busses/i2c-powermac.c
@@ -259,6 +259,35 @@
 	}
 
 	printk(KERN_INFO "PowerMac i2c bus %s registered\n", name);
+
+	if (!strncmp(basename, "uni-n", 5)) {
+		struct device_node *np;
+		const u32 *prop;
+		struct i2c_board_info info;
+
+		/* Instantiate I2C motion sensor if present */
+		np = of_find_node_by_name(NULL, "accelerometer");
+		if (np && of_device_is_compatible(np, "AAPL,accelerometer_1") &&
+		    (prop = of_get_property(np, "reg", NULL))) {
+			int i2c_bus;
+			const char *tmp_bus;
+
+			/* look for bus either using "reg" or by path */
+			tmp_bus = strstr(np->full_name, "/i2c-bus@");
+			if (tmp_bus)
+				i2c_bus = *(tmp_bus + 9) - '0';
+			else
+				i2c_bus = ((*prop) >> 8) & 0x0f;
+
+			if (pmac_i2c_get_channel(bus) == i2c_bus) {
+				memset(&info, 0, sizeof(struct i2c_board_info));
+				info.addr = ((*prop) & 0xff) >> 1;
+				strlcpy(info.type, "ams", I2C_NAME_SIZE);
+				i2c_new_device(adapter, &info);
+			}
+		}
+	}
+
 	return rc;
 }
 
diff --git a/drivers/ide/ide-io.c b/drivers/ide/ide-io.c
index 77c6eae..7162d67 100644
--- a/drivers/ide/ide-io.c
+++ b/drivers/ide/ide-io.c
@@ -1493,8 +1493,8 @@
 
 	spin_lock_irqsave(&ide_lock, flags);
 	hwgroup->rq = NULL;
-	__elv_add_request(drive->queue, rq, ELEVATOR_INSERT_FRONT, 1);
-	__generic_unplug_device(drive->queue);
+	__elv_add_request(drive->queue, rq, ELEVATOR_INSERT_FRONT, 0);
+	blk_start_queueing(drive->queue);
 	spin_unlock_irqrestore(&ide_lock, flags);
 }
 
diff --git a/drivers/infiniband/ulp/iser/iscsi_iser.c b/drivers/infiniband/ulp/iser/iscsi_iser.c
index 5a1cf25..1e5b644 100644
--- a/drivers/infiniband/ulp/iser/iscsi_iser.c
+++ b/drivers/infiniband/ulp/iser/iscsi_iser.c
@@ -378,6 +378,7 @@
 {
 	struct Scsi_Host *shost = iscsi_session_to_shost(cls_session);
 
+	iscsi_session_teardown(cls_session);
 	iscsi_host_remove(shost);
 	iscsi_host_free(shost);
 }
@@ -597,7 +598,7 @@
 	.cmd_per_lun            = ISCSI_MAX_CMD_PER_LUN,
 	.eh_abort_handler       = iscsi_eh_abort,
 	.eh_device_reset_handler= iscsi_eh_device_reset,
-	.eh_host_reset_handler	= iscsi_eh_host_reset,
+	.eh_target_reset_handler= iscsi_eh_target_reset,
 	.use_clustering         = DISABLE_CLUSTERING,
 	.proc_name              = "iscsi_iser",
 	.this_id                = -1,
diff --git a/drivers/input/joystick/iforce/iforce-ff.c b/drivers/input/joystick/iforce/iforce-ff.c
index 7839b7b..0de9a09 100644
--- a/drivers/input/joystick/iforce/iforce-ff.c
+++ b/drivers/input/joystick/iforce/iforce-ff.c
@@ -197,13 +197,16 @@
  * Analyse the changes in an effect, and tell if we need to send an condition
  * parameter packet
  */
-static int need_condition_modifier(struct ff_effect *old, struct ff_effect *new)
+static int need_condition_modifier(struct iforce *iforce,
+				   struct ff_effect *old,
+				   struct ff_effect *new)
 {
 	int ret = 0;
 	int i;
 
 	if (new->type != FF_SPRING && new->type != FF_FRICTION) {
-		warn("bad effect type in need_condition_modifier");
+		dev_warn(&iforce->dev->dev, "bad effect type in %s\n",
+			 __func__);
 		return 0;
 	}
 
@@ -222,10 +225,13 @@
  * Analyse the changes in an effect, and tell if we need to send a magnitude
  * parameter packet
  */
-static int need_magnitude_modifier(struct ff_effect *old, struct ff_effect *effect)
+static int need_magnitude_modifier(struct iforce *iforce,
+				   struct ff_effect *old,
+				   struct ff_effect *effect)
 {
 	if (effect->type != FF_CONSTANT) {
-		warn("bad effect type in need_envelope_modifier");
+		dev_warn(&iforce->dev->dev, "bad effect type in %s\n",
+			 __func__);
 		return 0;
 	}
 
@@ -236,7 +242,8 @@
  * Analyse the changes in an effect, and tell if we need to send an envelope
  * parameter packet
  */
-static int need_envelope_modifier(struct ff_effect *old, struct ff_effect *effect)
+static int need_envelope_modifier(struct iforce *iforce, struct ff_effect *old,
+				  struct ff_effect *effect)
 {
 	switch (effect->type) {
 	case FF_CONSTANT:
@@ -256,7 +263,8 @@
 		break;
 
 	default:
-		warn("bad effect type in need_envelope_modifier");
+		dev_warn(&iforce->dev->dev, "bad effect type in %s\n",
+			 __func__);
 	}
 
 	return 0;
@@ -266,10 +274,12 @@
  * Analyse the changes in an effect, and tell if we need to send a periodic
  * parameter effect
  */
-static int need_period_modifier(struct ff_effect *old, struct ff_effect *new)
+static int need_period_modifier(struct iforce *iforce, struct ff_effect *old,
+				struct ff_effect *new)
 {
 	if (new->type != FF_PERIODIC) {
-		warn("bad effect type in need_period_modifier");
+		dev_warn(&iforce->dev->dev, "bad effect type in %s\n",
+			 __func__);
 		return 0;
 	}
 	return (old->u.periodic.period != new->u.periodic.period
@@ -355,7 +365,7 @@
 	int param2_err = 1;
 	int core_err = 0;
 
-	if (!old || need_period_modifier(old, effect)) {
+	if (!old || need_period_modifier(iforce, old, effect)) {
 		param1_err = make_period_modifier(iforce, mod1_chunk,
 			old != NULL,
 			effect->u.periodic.magnitude, effect->u.periodic.offset,
@@ -365,7 +375,7 @@
 		set_bit(FF_MOD1_IS_USED, core_effect->flags);
 	}
 
-	if (!old || need_envelope_modifier(old, effect)) {
+	if (!old || need_envelope_modifier(iforce, old, effect)) {
 		param2_err = make_envelope_modifier(iforce, mod2_chunk,
 			old !=NULL,
 			effect->u.periodic.envelope.attack_length,
@@ -425,7 +435,7 @@
 	int param2_err = 1;
 	int core_err = 0;
 
-	if (!old || need_magnitude_modifier(old, effect)) {
+	if (!old || need_magnitude_modifier(iforce, old, effect)) {
 		param1_err = make_magnitude_modifier(iforce, mod1_chunk,
 			old != NULL,
 			effect->u.constant.level);
@@ -434,7 +444,7 @@
 		set_bit(FF_MOD1_IS_USED, core_effect->flags);
 	}
 
-	if (!old || need_envelope_modifier(old, effect)) {
+	if (!old || need_envelope_modifier(iforce, old, effect)) {
 		param2_err = make_envelope_modifier(iforce, mod2_chunk,
 			old != NULL,
 			effect->u.constant.envelope.attack_length,
@@ -487,7 +497,7 @@
 		default: return -1;
 	}
 
-	if (!old || need_condition_modifier(old, effect)) {
+	if (!old || need_condition_modifier(iforce, old, effect)) {
 		param_err = make_condition_modifier(iforce, mod1_chunk,
 			old != NULL,
 			effect->u.condition[0].right_saturation,
diff --git a/drivers/input/joystick/iforce/iforce-main.c b/drivers/input/joystick/iforce/iforce-main.c
index 61ee6e3..baabf83 100644
--- a/drivers/input/joystick/iforce/iforce-main.c
+++ b/drivers/input/joystick/iforce/iforce-main.c
@@ -218,7 +218,9 @@
 		/* Check: no effects should be present in memory */
 		for (i = 0; i < dev->ff->max_effects; i++) {
 			if (test_bit(FF_CORE_IS_USED, iforce->core_effects[i].flags)) {
-				warn("iforce_release: Device still owns effects");
+				dev_warn(&dev->dev,
+					"%s: Device still owns effects\n",
+					__func__);
 				break;
 			}
 		}
@@ -335,26 +337,26 @@
 	if (!iforce_get_id_packet(iforce, "M"))
 		input_dev->id.vendor = (iforce->edata[2] << 8) | iforce->edata[1];
 	else
-		warn("Device does not respond to id packet M");
+		dev_warn(&iforce->dev->dev, "Device does not respond to id packet M\n");
 
 	if (!iforce_get_id_packet(iforce, "P"))
 		input_dev->id.product = (iforce->edata[2] << 8) | iforce->edata[1];
 	else
-		warn("Device does not respond to id packet P");
+		dev_warn(&iforce->dev->dev, "Device does not respond to id packet P\n");
 
 	if (!iforce_get_id_packet(iforce, "B"))
 		iforce->device_memory.end = (iforce->edata[2] << 8) | iforce->edata[1];
 	else
-		warn("Device does not respond to id packet B");
+		dev_warn(&iforce->dev->dev, "Device does not respond to id packet B\n");
 
 	if (!iforce_get_id_packet(iforce, "N"))
 		ff_effects = iforce->edata[1];
 	else
-		warn("Device does not respond to id packet N");
+		dev_warn(&iforce->dev->dev, "Device does not respond to id packet N\n");
 
 	/* Check if the device can store more effects than the driver can really handle */
 	if (ff_effects > IFORCE_EFFECTS_MAX) {
-		warn("Limiting number of effects to %d (device reports %d)",
+		dev_warn(&iforce->dev->dev, "Limiting number of effects to %d (device reports %d)\n",
 		       IFORCE_EFFECTS_MAX, ff_effects);
 		ff_effects = IFORCE_EFFECTS_MAX;
 	}
diff --git a/drivers/input/joystick/iforce/iforce-packets.c b/drivers/input/joystick/iforce/iforce-packets.c
index 015b50a..a17b500 100644
--- a/drivers/input/joystick/iforce/iforce-packets.c
+++ b/drivers/input/joystick/iforce/iforce-packets.c
@@ -65,7 +65,8 @@
 
 
 	if (CIRC_SPACE(head, tail, XMIT_SIZE) < n+2) {
-		warn("not enough space in xmit buffer to send new packet");
+		dev_warn(&iforce->dev->dev,
+			 "not enough space in xmit buffer to send new packet\n");
 		spin_unlock_irqrestore(&iforce->xmit_lock, flags);
 		return -1;
 	}
@@ -148,7 +149,7 @@
 			return 0;
 		}
 	}
-	warn("unused effect %04x updated !!!", addr);
+	dev_warn(&iforce->dev->dev, "unused effect %04x updated !!!\n", addr);
 	return -1;
 }
 
@@ -159,7 +160,8 @@
 	static int being_used = 0;
 
 	if (being_used)
-		warn("re-entrant call to iforce_process %d", being_used);
+		dev_warn(&iforce->dev->dev,
+			 "re-entrant call to iforce_process %d\n", being_used);
 	being_used++;
 
 #ifdef CONFIG_JOYSTICK_IFORCE_232
diff --git a/drivers/input/joystick/iforce/iforce-usb.c b/drivers/input/joystick/iforce/iforce-usb.c
index 851cc40..f83185a 100644
--- a/drivers/input/joystick/iforce/iforce-usb.c
+++ b/drivers/input/joystick/iforce/iforce-usb.c
@@ -64,7 +64,7 @@
 
 	if ( (n=usb_submit_urb(iforce->out, GFP_ATOMIC)) ) {
 		clear_bit(IFORCE_XMIT_RUNNING, iforce->xmit_flags);
-		warn("usb_submit_urb failed %d\n", n);
+		dev_warn(&iforce->dev->dev, "usb_submit_urb failed %d\n", n);
 	}
 
 	/* The IFORCE_XMIT_RUNNING bit is not cleared here. That's intended.
diff --git a/drivers/input/joystick/xpad.c b/drivers/input/joystick/xpad.c
index 839d1c9..b868b8d 100644
--- a/drivers/input/joystick/xpad.c
+++ b/drivers/input/joystick/xpad.c
@@ -911,7 +911,7 @@
 {
 	int result = usb_register(&xpad_driver);
 	if (result == 0)
-		info(DRIVER_DESC);
+		printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_DESC "\n");
 	return result;
 }
 
diff --git a/drivers/input/misc/ati_remote.c b/drivers/input/misc/ati_remote.c
index debfc1a..e290fde 100644
--- a/drivers/input/misc/ati_remote.c
+++ b/drivers/input/misc/ati_remote.c
@@ -285,7 +285,6 @@
 };
 
 /* Local function prototypes */
-static void ati_remote_dump		(unsigned char *data, unsigned int actual_length);
 static int ati_remote_open		(struct input_dev *inputdev);
 static void ati_remote_close		(struct input_dev *inputdev);
 static int ati_remote_sendpacket	(struct ati_remote *ati_remote, u16 cmd, unsigned char *data);
@@ -307,15 +306,16 @@
 /*
  *	ati_remote_dump_input
  */
-static void ati_remote_dump(unsigned char *data, unsigned int len)
+static void ati_remote_dump(struct device *dev, unsigned char *data,
+			    unsigned int len)
 {
 	if ((len == 1) && (data[0] != (unsigned char)0xff) && (data[0] != 0x00))
-		warn("Weird byte 0x%02x", data[0]);
+		dev_warn(dev, "Weird byte 0x%02x\n", data[0]);
 	else if (len == 4)
-		warn("Weird key %02x %02x %02x %02x",
+		dev_warn(dev, "Weird key %02x %02x %02x %02x\n",
 		     data[0], data[1], data[2], data[3]);
 	else
-		warn("Weird data, len=%d %02x %02x %02x %02x %02x %02x ...",
+		dev_warn(dev, "Weird data, len=%d %02x %02x %02x %02x %02x %02x ...\n",
 		     len, data[0], data[1], data[2], data[3], data[4], data[5]);
 }
 
@@ -470,7 +470,7 @@
 	/* Deal with strange looking inputs */
 	if ( (urb->actual_length != 4) || (data[0] != 0x14) ||
 		((data[3] & 0x0f) != 0x00) ) {
-		ati_remote_dump(data, urb->actual_length);
+		ati_remote_dump(&urb->dev->dev, data, urb->actual_length);
 		return;
 	}
 
@@ -814,7 +814,7 @@
 	ati_remote = usb_get_intfdata(interface);
 	usb_set_intfdata(interface, NULL);
 	if (!ati_remote) {
-		warn("%s - null device?\n", __func__);
+		dev_warn(&interface->dev, "%s - null device?\n", __func__);
 		return;
 	}
 
@@ -834,9 +834,11 @@
 
 	result = usb_register(&ati_remote_driver);
 	if (result)
-		err("usb_register error #%d\n", result);
+		printk(KERN_ERR KBUILD_MODNAME
+		       ": usb_register error #%d\n", result);
 	else
-		info("Registered USB driver " DRIVER_DESC " v. " DRIVER_VERSION);
+		printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+		       DRIVER_DESC "\n");
 
 	return result;
 }
diff --git a/drivers/input/misc/yealink.c b/drivers/input/misc/yealink.c
index 11b5c7e..93a22ac 100644
--- a/drivers/input/misc/yealink.c
+++ b/drivers/input/misc/yealink.c
@@ -999,7 +999,8 @@
 {
 	int ret = usb_register(&yealink_driver);
 	if (ret == 0)
-		info(DRIVER_DESC ":" DRIVER_VERSION);
+		printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+		       DRIVER_DESC "\n");
 	return ret;
 }
 
diff --git a/drivers/input/tablet/acecad.c b/drivers/input/tablet/acecad.c
index 570e0e8..670c61c 100644
--- a/drivers/input/tablet/acecad.c
+++ b/drivers/input/tablet/acecad.c
@@ -280,7 +280,8 @@
 {
 	int result = usb_register(&usb_acecad_driver);
 	if (result == 0)
-		info(DRIVER_VERSION ":" DRIVER_DESC);
+		printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+		       DRIVER_DESC "\n");
 	return result;
 }
 
diff --git a/drivers/input/tablet/aiptek.c b/drivers/input/tablet/aiptek.c
index e53c838..7d005a3 100644
--- a/drivers/input/tablet/aiptek.c
+++ b/drivers/input/tablet/aiptek.c
@@ -1706,20 +1706,21 @@
 	aiptek = kzalloc(sizeof(struct aiptek), GFP_KERNEL);
 	inputdev = input_allocate_device();
 	if (!aiptek || !inputdev) {
-		warn("aiptek: cannot allocate memory or input device");
+		dev_warn(&intf->dev,
+			 "cannot allocate memory or input device\n");
 		goto fail1;
         }
 
 	aiptek->data = usb_buffer_alloc(usbdev, AIPTEK_PACKET_LENGTH,
 					GFP_ATOMIC, &aiptek->data_dma);
         if (!aiptek->data) {
-		warn("aiptek: cannot allocate usb buffer");
+		dev_warn(&intf->dev, "cannot allocate usb buffer\n");
 		goto fail1;
 	}
 
 	aiptek->urb = usb_alloc_urb(0, GFP_KERNEL);
 	if (!aiptek->urb) {
-	        warn("aiptek: cannot allocate urb");
+	        dev_warn(&intf->dev, "cannot allocate urb\n");
 		goto fail2;
 	}
 
@@ -1843,8 +1844,9 @@
 		aiptek->curSetting.programmableDelay = speeds[i];
 		(void)aiptek_program_tablet(aiptek);
 		if (aiptek->inputdev->absmax[ABS_X] > 0) {
-			info("input: Aiptek using %d ms programming speed\n",
-			     aiptek->curSetting.programmableDelay);
+			dev_info(&intf->dev,
+				 "Aiptek using %d ms programming speed\n",
+				 aiptek->curSetting.programmableDelay);
 			break;
 		}
 	}
@@ -1852,7 +1854,8 @@
 	/* Murphy says that some day someone will have a tablet that fails the
 	   above test. That's you, Frederic Rodrigo */
 	if (i == ARRAY_SIZE(speeds)) {
-		info("input: Aiptek tried all speeds, no sane response");
+		dev_info(&intf->dev,
+			 "Aiptek tried all speeds, no sane response\n");
 		goto fail2;
 	}
 
@@ -1864,7 +1867,8 @@
 	 */
 	err = sysfs_create_group(&intf->dev.kobj, &aiptek_attribute_group);
 	if (err) {
-		warn("aiptek: cannot create sysfs group err: %d", err);
+		dev_warn(&intf->dev, "cannot create sysfs group err: %d\n",
+			 err);
 		goto fail3;
         }
 
@@ -1872,7 +1876,8 @@
 	 */
 	err = input_register_device(aiptek->inputdev);
 	if (err) {
-		warn("aiptek: input_register_device returned err: %d", err);
+		dev_warn(&intf->dev,
+			 "input_register_device returned err: %d\n", err);
 		goto fail4;
         }
 	return 0;
@@ -1922,8 +1927,9 @@
 {
 	int result = usb_register(&aiptek_driver);
 	if (result == 0) {
-		info(DRIVER_VERSION ": " DRIVER_AUTHOR);
-		info(DRIVER_DESC);
+		printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+		       DRIVER_DESC "\n");
+		printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_AUTHOR "\n");
 	}
 	return result;
 }
diff --git a/drivers/input/tablet/gtco.c b/drivers/input/tablet/gtco.c
index 7df0228..5524e01 100644
--- a/drivers/input/tablet/gtco.c
+++ b/drivers/input/tablet/gtco.c
@@ -2,7 +2,7 @@
 
 GTCO digitizer USB driver
 
-Use the err(), dbg() and info() macros from usb.h for system logging
+Use the err() and dbg() macros from usb.h for system logging
 
 TO CHECK:  Is pressure done right on report 5?
 
@@ -1010,7 +1010,7 @@
 		kfree(gtco);
 	}
 
-	info("gtco driver disconnected");
+	dev_info(&interface->dev, "gtco driver disconnected\n");
 }
 
 /*   STANDARD MODULE LOAD ROUTINES  */
diff --git a/drivers/input/tablet/kbtab.c b/drivers/input/tablet/kbtab.c
index d89112f..6682b17 100644
--- a/drivers/input/tablet/kbtab.c
+++ b/drivers/input/tablet/kbtab.c
@@ -215,7 +215,8 @@
 	retval = usb_register(&kbtab_driver);
 	if (retval)
 		goto out;
-	info(DRIVER_VERSION ":" DRIVER_DESC);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 out:
 	return retval;
 }
diff --git a/drivers/input/tablet/wacom_sys.c b/drivers/input/tablet/wacom_sys.c
index 5fbc463..09e227a 100644
--- a/drivers/input/tablet/wacom_sys.c
+++ b/drivers/input/tablet/wacom_sys.c
@@ -385,7 +385,8 @@
 	wacom_driver.id_table = get_device_table();
 	result = usb_register(&wacom_driver);
 	if (result == 0)
-		info(DRIVER_VERSION ":" DRIVER_DESC);
+		printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+		       DRIVER_DESC "\n");
 	return result;
 }
 
diff --git a/drivers/md/dm-mpath.c b/drivers/md/dm-mpath.c
index 103304c..9bf3460c 100644
--- a/drivers/md/dm-mpath.c
+++ b/drivers/md/dm-mpath.c
@@ -849,7 +849,7 @@
 	dm_bio_record(&mpio->details, bio);
 
 	map_context->ptr = mpio;
-	bio->bi_rw |= (1 << BIO_RW_FAILFAST);
+	bio->bi_rw |= (1 << BIO_RW_FAILFAST_TRANSPORT);
 	r = map_io(m, bio, mpio, 0);
 	if (r < 0 || r == DM_MAPIO_REQUEUE)
 		mempool_free(mpio, m->mpio_pool);
diff --git a/drivers/md/multipath.c b/drivers/md/multipath.c
index 8744014..d4ac47d 100644
--- a/drivers/md/multipath.c
+++ b/drivers/md/multipath.c
@@ -167,7 +167,7 @@
 	mp_bh->bio = *bio;
 	mp_bh->bio.bi_sector += multipath->rdev->data_offset;
 	mp_bh->bio.bi_bdev = multipath->rdev->bdev;
-	mp_bh->bio.bi_rw |= (1 << BIO_RW_FAILFAST);
+	mp_bh->bio.bi_rw |= (1 << BIO_RW_FAILFAST_TRANSPORT);
 	mp_bh->bio.bi_end_io = multipath_end_request;
 	mp_bh->bio.bi_private = mp_bh;
 	generic_make_request(&mp_bh->bio);
@@ -393,7 +393,7 @@
 			*bio = *(mp_bh->master_bio);
 			bio->bi_sector += conf->multipaths[mp_bh->path].rdev->data_offset;
 			bio->bi_bdev = conf->multipaths[mp_bh->path].rdev->bdev;
-			bio->bi_rw |= (1 << BIO_RW_FAILFAST);
+			bio->bi_rw |= (1 << BIO_RW_FAILFAST_TRANSPORT);
 			bio->bi_end_io = multipath_end_request;
 			bio->bi_private = mp_bh;
 			generic_make_request(bio);
diff --git a/drivers/media/common/tuners/mxl5005s.c b/drivers/media/common/tuners/mxl5005s.c
index 227642b..a887824 100644
--- a/drivers/media/common/tuners/mxl5005s.c
+++ b/drivers/media/common/tuners/mxl5005s.c
@@ -3481,7 +3481,9 @@
 					}
 					ctrlVal = 0;
 					for (k = 0; k < state->MXL_Ctrl[i].size; k++)
-						ctrlVal += state->MXL_Ctrl[i].val[k] * (1 << k);
+						ctrlVal += state->
+							MXL_Ctrl[i].val[k] *
+							(1 << k);
 				} else
 					return -1;
 			}
@@ -3581,7 +3583,7 @@
 
 static u32 MXL_Ceiling(u32 value, u32 resolution)
 {
-	return (value/resolution + (value % resolution > 0 ? 1 : 0));
+	return value / resolution + (value % resolution > 0 ? 1 : 0);
 }
 
 /* Retrieve the Initialzation Registers */
@@ -3910,7 +3912,10 @@
 
 static int mxl5005s_init(struct dvb_frontend *fe)
 {
+	struct mxl5005s_state *state = fe->tuner_priv;
+
 	dprintk(1, "%s()\n", __func__);
+	state->current_mode = MXL_QAM;
 	return mxl5005s_reconfigure(fe, MXL_QAM, MXL5005S_BANDWIDTH_6MHZ);
 }
 
@@ -4092,7 +4097,6 @@
 	state->frontend = fe;
 	state->config = config;
 	state->i2c = i2c;
-	state->current_mode = MXL_QAM;
 
 	printk(KERN_INFO "MXL5005S: Attached at address 0x%02x\n",
 		config->i2c_address);
diff --git a/drivers/media/common/tuners/tuner-simple.c b/drivers/media/common/tuners/tuner-simple.c
index 2a1aac1..fb3f3b3 100644
--- a/drivers/media/common/tuners/tuner-simple.c
+++ b/drivers/media/common/tuners/tuner-simple.c
@@ -493,6 +493,7 @@
 	case TUNER_PHILIPS_FM1216ME_MK3:
 	case TUNER_PHILIPS_FM1236_MK3:
 	case TUNER_PHILIPS_FMD1216ME_MK3:
+	case TUNER_PHILIPS_FMD1216MEX_MK3:
 	case TUNER_LG_NTSC_TAPE:
 	case TUNER_PHILIPS_FM1256_IH3:
 	case TUNER_TCL_MF02GIP_5N:
@@ -767,6 +768,7 @@
 
 	switch (priv->type) {
 	case TUNER_PHILIPS_FMD1216ME_MK3:
+	case TUNER_PHILIPS_FMD1216MEX_MK3:
 		if (params->u.ofdm.bandwidth == BANDWIDTH_8_MHZ &&
 		    params->frequency >= 158870000)
 			buf[3] |= 0x08;
diff --git a/drivers/media/common/tuners/tuner-types.c b/drivers/media/common/tuners/tuner-types.c
index 04961a1..7c0bc06 100644
--- a/drivers/media/common/tuners/tuner-types.c
+++ b/drivers/media/common/tuners/tuner-types.c
@@ -946,7 +946,7 @@
 	},
 };
 
-/* ------------ TUNER_PHILIPS_FMD1216ME_MK3 - Philips PAL ------------ */
+/* ------------ TUNER_PHILIPS_FMD1216ME(X)_MK3 - Philips PAL ------------ */
 
 static struct tuner_range tuner_philips_fmd1216me_mk3_pal_ranges[] = {
 	{ 16 * 160.00 /*MHz*/, 0x86, 0x51, },
@@ -984,6 +984,27 @@
 	},
 };
 
+static struct tuner_params tuner_philips_fmd1216mex_mk3_params[] = {
+	{
+		.type   = TUNER_PARAM_TYPE_PAL,
+		.ranges = tuner_philips_fmd1216me_mk3_pal_ranges,
+		.count  = ARRAY_SIZE(tuner_philips_fmd1216me_mk3_pal_ranges),
+		.has_tda9887 = 1,
+		.port1_active = 1,
+		.port2_active = 1,
+		.port2_fm_high_sensitivity = 1,
+		.port2_invert_for_secam_lc = 1,
+		.port1_set_for_fm_mono = 1,
+		.radio_if = 1,
+		.fm_gain_normal = 1,
+	},
+	{
+		.type   = TUNER_PARAM_TYPE_DIGITAL,
+		.ranges = tuner_philips_fmd1216me_mk3_dvb_ranges,
+		.count  = ARRAY_SIZE(tuner_philips_fmd1216me_mk3_dvb_ranges),
+		.iffreq = 16 * 36.125, /*MHz*/
+	},
+};
 
 /* ------ TUNER_LG_TDVS_H06XF - LG INNOTEK / INFINEON ATSC ----- */
 
@@ -1663,6 +1684,16 @@
 		.params = tuner_tcl_mf02gip_5n_params,
 		.count  = ARRAY_SIZE(tuner_tcl_mf02gip_5n_params),
 	},
+	[TUNER_PHILIPS_FMD1216MEX_MK3] = { /* Philips PAL */
+		.name   = "Philips FMD1216MEX MK3 Hybrid Tuner",
+		.params = tuner_philips_fmd1216mex_mk3_params,
+		.count  = ARRAY_SIZE(tuner_philips_fmd1216mex_mk3_params),
+		.min = 16 *  50.87,
+		.max = 16 * 858.00,
+		.stepsize = 166667,
+		.initdata = tua603x_agc112,
+		.sleepdata = (u8[]){ 4, 0x9c, 0x60, 0x85, 0x54 },
+	},
 };
 EXPORT_SYMBOL(tuners);
 
diff --git a/drivers/media/common/tuners/xc5000.c b/drivers/media/common/tuners/xc5000.c
index f9c2bb9..e12d13e 100644
--- a/drivers/media/common/tuners/xc5000.c
+++ b/drivers/media/common/tuners/xc5000.c
@@ -43,7 +43,7 @@
 static DEFINE_MUTEX(xc5000_list_mutex);
 static LIST_HEAD(hybrid_tuner_instance_list);
 
-#define dprintk(level,fmt, arg...) if (debug >= level) \
+#define dprintk(level, fmt, arg...) if (debug >= level) \
 	printk(KERN_INFO "%s: " fmt, "xc5000", ## arg)
 
 #define XC5000_DEFAULT_FIRMWARE "dvb-fe-xc5000-1.1.fw"
@@ -138,11 +138,11 @@
    immediately the length of the following transaction.
 
 */
-typedef struct {
+struct XC_TV_STANDARD {
 	char *Name;
 	u16 AudioMode;
 	u16 VideoMode;
-} XC_TV_STANDARD;
+};
 
 /* Tuner standards */
 #define MN_NTSC_PAL_BTSC	0
@@ -169,7 +169,7 @@
 #define FM_Radio_INPUT2 	21
 #define FM_Radio_INPUT1 	22
 
-static XC_TV_STANDARD XC5000_Standard[MAX_TV_STANDARD] = {
+static struct XC_TV_STANDARD XC5000_Standard[MAX_TV_STANDARD] = {
 	{"M/N-NTSC/PAL-BTSC", 0x0400, 0x8020},
 	{"M/N-NTSC/PAL-A2",   0x0600, 0x8020},
 	{"M/N-NTSC/PAL-EIAJ", 0x0440, 0x8020},
@@ -183,7 +183,7 @@
 	{"D/K-PAL-NICAM",     0x0E80, 0x8009},
 	{"D/K-PAL-MONO",      0x1478, 0x8009},
 	{"D/K-SECAM-A2 DK1",  0x1200, 0x8009},
-	{"D/K-SECAM-A2 L/DK3",0x0E00, 0x8009},
+	{"D/K-SECAM-A2 L/DK3", 0x0E00, 0x8009},
 	{"D/K-SECAM-A2 MONO", 0x1478, 0x8009},
 	{"L-SECAM-NICAM",     0x8E82, 0x0009},
 	{"L'-SECAM-NICAM",    0x8E82, 0x4009},
@@ -307,9 +307,10 @@
 	unsigned int len, pos, index;
 	u8 buf[XC_MAX_I2C_WRITE_LENGTH];
 
-	index=0;
-	while ((i2c_sequence[index]!=0xFF) || (i2c_sequence[index+1]!=0xFF)) {
-		len = i2c_sequence[index]* 256 + i2c_sequence[index+1];
+	index = 0;
+	while ((i2c_sequence[index] != 0xFF) ||
+		(i2c_sequence[index + 1] != 0xFF)) {
+		len = i2c_sequence[index] * 256 + i2c_sequence[index+1];
 		if (len == 0x0000) {
 			/* RESET command */
 			result = xc_reset(fe);
@@ -329,15 +330,17 @@
 			buf[1] = i2c_sequence[index + 1];
 			pos = 2;
 			while (pos < len) {
-				if ((len - pos) > XC_MAX_I2C_WRITE_LENGTH - 2) {
-					nbytes_to_send = XC_MAX_I2C_WRITE_LENGTH;
-				} else {
+				if ((len - pos) > XC_MAX_I2C_WRITE_LENGTH - 2)
+					nbytes_to_send =
+						XC_MAX_I2C_WRITE_LENGTH;
+				else
 					nbytes_to_send = (len - pos + 2);
+				for (i = 2; i < nbytes_to_send; i++) {
+					buf[i] = i2c_sequence[index + pos +
+						i - 2];
 				}
-				for (i=2; i<nbytes_to_send; i++) {
-					buf[i] = i2c_sequence[index + pos + i - 2];
-				}
-				result = xc_send_i2c_data(priv, buf, nbytes_to_send);
+				result = xc_send_i2c_data(priv, buf,
+					nbytes_to_send);
 
 				if (result != XC_RESULT_SUCCESS)
 					return result;
@@ -386,8 +389,7 @@
 	dprintk(1, "%s(%d) Source = %s\n", __func__, rf_mode,
 		rf_mode == XC_RF_MODE_AIR ? "ANTENNA" : "CABLE");
 
-	if ((rf_mode != XC_RF_MODE_AIR) && (rf_mode != XC_RF_MODE_CABLE))
-	{
+	if ((rf_mode != XC_RF_MODE_AIR) && (rf_mode != XC_RF_MODE_CABLE)) {
 		rf_mode = XC_RF_MODE_CABLE;
 		printk(KERN_ERR
 			"%s(), Invalid mode, defaulting to CABLE",
@@ -560,13 +562,13 @@
 		.flags = I2C_M_RD, .buf = buf, .len = len };
 
 	if (i2c_transfer(priv->i2c_props.adap, &msg, 1) != 1) {
-		printk(KERN_ERR "xc5000 I2C read failed (len=%i)\n",(int)len);
+		printk(KERN_ERR "xc5000 I2C read failed (len=%i)\n", (int)len);
 		return -EREMOTEIO;
 	}
 	return 0;
 }
 
-static int xc5000_fwupload(struct dvb_frontend* fe)
+static int xc5000_fwupload(struct dvb_frontend *fe)
 {
 	struct xc5000_priv *priv = fe->tuner_priv;
 	const struct firmware *fw;
@@ -576,7 +578,8 @@
 	printk(KERN_INFO "xc5000: waiting for firmware upload (%s)...\n",
 		XC5000_DEFAULT_FIRMWARE);
 
-	ret = request_firmware(&fw, XC5000_DEFAULT_FIRMWARE, &priv->i2c_props.adap->dev);
+	ret = request_firmware(&fw, XC5000_DEFAULT_FIRMWARE,
+		&priv->i2c_props.adap->dev);
 	if (ret) {
 		printk(KERN_ERR "xc5000: Upload failed. (file not found?)\n");
 		ret = XC_RESULT_RESET_FAILURE;
@@ -592,7 +595,7 @@
 		ret = XC_RESULT_RESET_FAILURE;
 	} else {
 		printk(KERN_INFO "xc5000: firmware upload\n");
-		ret = xc_load_i2c_sequence(fe,  fw->data );
+		ret = xc_load_i2c_sequence(fe,  fw->data);
 	}
 
 out:
@@ -651,7 +654,7 @@
 
 	dprintk(1, "%s() frequency=%d (Hz)\n", __func__, params->frequency);
 
-	switch(params->u.vsb.modulation) {
+	switch (params->u.vsb.modulation) {
 	case VSB_8:
 	case VSB_16:
 		dprintk(1, "%s() VSB modulation\n", __func__);
@@ -748,42 +751,42 @@
 	/* FIX ME: Some video standards may have several possible audio
 		   standards. We simply default to one of them here.
 	 */
-	if(params->std & V4L2_STD_MN) {
+	if (params->std & V4L2_STD_MN) {
 		/* default to BTSC audio standard */
 		priv->video_standard = MN_NTSC_PAL_BTSC;
 		goto tune_channel;
 	}
 
-	if(params->std & V4L2_STD_PAL_BG) {
+	if (params->std & V4L2_STD_PAL_BG) {
 		/* default to NICAM audio standard */
 		priv->video_standard = BG_PAL_NICAM;
 		goto tune_channel;
 	}
 
-	if(params->std & V4L2_STD_PAL_I) {
+	if (params->std & V4L2_STD_PAL_I) {
 		/* default to NICAM audio standard */
 		priv->video_standard = I_PAL_NICAM;
 		goto tune_channel;
 	}
 
-	if(params->std & V4L2_STD_PAL_DK) {
+	if (params->std & V4L2_STD_PAL_DK) {
 		/* default to NICAM audio standard */
 		priv->video_standard = DK_PAL_NICAM;
 		goto tune_channel;
 	}
 
-	if(params->std & V4L2_STD_SECAM_DK) {
+	if (params->std & V4L2_STD_SECAM_DK) {
 		/* default to A2 DK1 audio standard */
 		priv->video_standard = DK_SECAM_A2DK1;
 		goto tune_channel;
 	}
 
-	if(params->std & V4L2_STD_SECAM_L) {
+	if (params->std & V4L2_STD_SECAM_L) {
 		priv->video_standard = L_SECAM_NICAM;
 		goto tune_channel;
 	}
 
-	if(params->std & V4L2_STD_SECAM_LC) {
+	if (params->std & V4L2_STD_SECAM_LC) {
 		priv->video_standard = LC_SECAM_NICAM;
 		goto tune_channel;
 	}
@@ -791,7 +794,7 @@
 tune_channel:
 	ret = xc_SetSignalSource(priv, priv->rf_mode);
 	if (ret != XC_RESULT_SUCCESS) {
-	printk(KERN_ERR
+		printk(KERN_ERR
 			"xc5000: xc_SetSignalSource(%d) failed\n",
 			priv->rf_mode);
 		return -EREMOTEIO;
@@ -863,7 +866,7 @@
 	 * I2C transactions until calibration is complete.  This way we
 	 * don't have to rely on clock stretching working.
 	 */
-	xc_wait( 100 );
+	xc_wait(100);
 
 	/* Default to "CABLE" mode */
 	ret |= xc_write_reg(priv, XREG_SIGNALSOURCE, XC_RF_MODE_CABLE);
@@ -885,15 +888,13 @@
 	 */
 
 	ret = xc_shutdown(priv);
-	if(ret != XC_RESULT_SUCCESS) {
+	if (ret != XC_RESULT_SUCCESS) {
 		printk(KERN_ERR
 			"xc5000: %s() unable to shutdown tuner\n",
 			__func__);
 		return -EREMOTEIO;
-	}
-	else {
+	} else
 		return XC_RESULT_SUCCESS;
-	}
 }
 
 static int xc5000_init(struct dvb_frontend *fe)
@@ -989,7 +990,7 @@
 	if (xc5000_readreg(priv, XREG_PRODUCT_ID, &id) != 0)
 		goto fail;
 
-	switch(id) {
+	switch (id) {
 	case XC_PRODUCT_ID_FW_LOADED:
 		printk(KERN_INFO
 			"xc5000: Successfully identified at address 0x%02x\n",
diff --git a/drivers/media/common/tuners/xc5000.h b/drivers/media/common/tuners/xc5000.h
index cf1a558..f4c1466 100644
--- a/drivers/media/common/tuners/xc5000.h
+++ b/drivers/media/common/tuners/xc5000.h
@@ -45,17 +45,17 @@
 
 #if defined(CONFIG_MEDIA_TUNER_XC5000) || \
     (defined(CONFIG_MEDIA_TUNER_XC5000_MODULE) && defined(MODULE))
-extern struct dvb_frontend* xc5000_attach(struct dvb_frontend *fe,
+extern struct dvb_frontend *xc5000_attach(struct dvb_frontend *fe,
 					  struct i2c_adapter *i2c,
 					  struct xc5000_config *cfg);
 #else
-static inline struct dvb_frontend* xc5000_attach(struct dvb_frontend *fe,
+static inline struct dvb_frontend *xc5000_attach(struct dvb_frontend *fe,
 						 struct i2c_adapter *i2c,
 						 struct xc5000_config *cfg)
 {
 	printk(KERN_WARNING "%s: driver disabled by Kconfig\n", __func__);
 	return NULL;
 }
-#endif // CONFIG_MEDIA_TUNER_XC5000
+#endif
 
-#endif // __XC5000_H__
+#endif
diff --git a/drivers/media/dvb/dm1105/dm1105.c b/drivers/media/dvb/dm1105/dm1105.c
index f732144..14e627e 100644
--- a/drivers/media/dvb/dm1105/dm1105.c
+++ b/drivers/media/dvb/dm1105/dm1105.c
@@ -595,6 +595,18 @@
 	dm1105dvb_dma_unmap(dm1105dvb);
 }
 
+static struct stv0299_config sharp_z0194a_config = {
+	.demod_address = 0x68,
+	.inittab = sharp_z0194a_inittab,
+	.mclk = 88000000UL,
+	.invert = 1,
+	.skip_reinit = 0,
+	.lock_output = STV0299_LOCKOUTPUT_1,
+	.volt13_op0_op1 = STV0299_VOLT13_OP1,
+	.min_delay_ms = 100,
+	.set_symbol_rate = sharp_z0194a_set_symbol_rate,
+};
+
 static struct stv0288_config earda_config = {
 	.demod_address = 0x68,
 	.min_delay_ms = 100,
diff --git a/drivers/media/dvb/dvb-core/dvb_frontend.c b/drivers/media/dvb/dvb-core/dvb_frontend.c
index f170e82..5689d1f 100644
--- a/drivers/media/dvb/dvb-core/dvb_frontend.c
+++ b/drivers/media/dvb/dvb-core/dvb_frontend.c
@@ -47,6 +47,7 @@
 static int dvb_force_auto_inversion;
 static int dvb_override_tune_delay;
 static int dvb_powerdown_on_sleep = 1;
+static int dvb_mfe_wait_time = 5;
 
 module_param_named(frontend_debug, dvb_frontend_debug, int, 0644);
 MODULE_PARM_DESC(frontend_debug, "Turn on/off frontend core debugging (default:off).");
@@ -58,6 +59,8 @@
 MODULE_PARM_DESC(dvb_override_tune_delay, "0: normal (default), >0 => delay in milliseconds to wait for lock after a tune attempt");
 module_param(dvb_powerdown_on_sleep, int, 0644);
 MODULE_PARM_DESC(dvb_powerdown_on_sleep, "0: do not power down, 1: turn LNB voltage off on sleep (default)");
+module_param(dvb_mfe_wait_time, int, 0644);
+MODULE_PARM_DESC(dvb_mfe_wait_time, "Wait up to <mfe_wait_time> seconds on open() for multi-frontend to become available (default:5 seconds)");
 
 #define dprintk if (dvb_frontend_debug) printk
 
@@ -212,8 +215,9 @@
 
 static void dvb_frontend_init(struct dvb_frontend *fe)
 {
-	dprintk ("DVB: initialising frontend %i (%s)...\n",
+	dprintk ("DVB: initialising adapter %i frontend %i (%s)...\n",
 		 fe->dvb->num,
+		 fe->id,
 		 fe->ops.info.name);
 
 	if (fe->ops.init)
@@ -686,7 +690,7 @@
 	mb();
 
 	fe_thread = kthread_run(dvb_frontend_thread, fe,
-		"kdvb-fe-%i", fe->dvb->num);
+		"kdvb-ad-%i-fe-%i", fe->dvb->num,fe->id);
 	if (IS_ERR(fe_thread)) {
 		ret = PTR_ERR(fe_thread);
 		printk("dvb_frontend_start: failed to start kthread (%d)\n", ret);
@@ -710,8 +714,8 @@
 		*freq_max = min(fe->ops.info.frequency_max, fe->ops.tuner_ops.info.frequency_max);
 
 	if (*freq_min == 0 || *freq_max == 0)
-		printk(KERN_WARNING "DVB: frontend %u frequency limits undefined - fix the driver\n",
-		       fe->dvb->num);
+		printk(KERN_WARNING "DVB: adapter %i frontend %u frequency limits undefined - fix the driver\n",
+		       fe->dvb->num,fe->id);
 }
 
 static int dvb_frontend_check_parameters(struct dvb_frontend *fe,
@@ -724,8 +728,8 @@
 	dvb_frontend_get_frequeny_limits(fe, &freq_min, &freq_max);
 	if ((freq_min && parms->frequency < freq_min) ||
 	    (freq_max && parms->frequency > freq_max)) {
-		printk(KERN_WARNING "DVB: frontend %u frequency %u out of range (%u..%u)\n",
-		       fe->dvb->num, parms->frequency, freq_min, freq_max);
+		printk(KERN_WARNING "DVB: adapter %i frontend %i frequency %u out of range (%u..%u)\n",
+		       fe->dvb->num, fe->id, parms->frequency, freq_min, freq_max);
 		return -EINVAL;
 	}
 
@@ -735,8 +739,8 @@
 		     parms->u.qpsk.symbol_rate < fe->ops.info.symbol_rate_min) ||
 		    (fe->ops.info.symbol_rate_max &&
 		     parms->u.qpsk.symbol_rate > fe->ops.info.symbol_rate_max)) {
-			printk(KERN_WARNING "DVB: frontend %u symbol rate %u out of range (%u..%u)\n",
-			       fe->dvb->num, parms->u.qpsk.symbol_rate,
+			printk(KERN_WARNING "DVB: adapter %i frontend %i symbol rate %u out of range (%u..%u)\n",
+			       fe->dvb->num, fe->id, parms->u.qpsk.symbol_rate,
 			       fe->ops.info.symbol_rate_min, fe->ops.info.symbol_rate_max);
 			return -EINVAL;
 		}
@@ -746,8 +750,8 @@
 		     parms->u.qam.symbol_rate < fe->ops.info.symbol_rate_min) ||
 		    (fe->ops.info.symbol_rate_max &&
 		     parms->u.qam.symbol_rate > fe->ops.info.symbol_rate_max)) {
-			printk(KERN_WARNING "DVB: frontend %u symbol rate %u out of range (%u..%u)\n",
-			       fe->dvb->num, parms->u.qam.symbol_rate,
+			printk(KERN_WARNING "DVB: adapter %i frontend %i symbol rate %u out of range (%u..%u)\n",
+			       fe->dvb->num, fe->id, parms->u.qam.symbol_rate,
 			       fe->ops.info.symbol_rate_min, fe->ops.info.symbol_rate_max);
 			return -EINVAL;
 		}
@@ -899,30 +903,30 @@
 	int i;
 
 	if (tvp->cmd <= 0 || tvp->cmd > DTV_MAX_COMMAND) {
-		printk("%s: tvp.cmd = 0x%08x (undefined/unknown/invalid)\n",
+		printk(KERN_WARNING "%s: tvp.cmd = 0x%08x undefined\n",
 			__func__, tvp->cmd);
 		return;
 	}
 
-	printk("%s() tvp.cmd    = 0x%08x (%s)\n"
-		,__FUNCTION__
+	dprintk("%s() tvp.cmd    = 0x%08x (%s)\n"
+		,__func__
 		,tvp->cmd
 		,dtv_cmds[ tvp->cmd ].name);
 
 	if(dtv_cmds[ tvp->cmd ].buffer) {
 
-		printk("%s() tvp.u.buffer.len = 0x%02x\n"
-			,__FUNCTION__
+		dprintk("%s() tvp.u.buffer.len = 0x%02x\n"
+			,__func__
 			,tvp->u.buffer.len);
 
 		for(i = 0; i < tvp->u.buffer.len; i++)
-			printk("%s() tvp.u.buffer.data[0x%02x] = 0x%02x\n"
-				,__FUNCTION__
+			dprintk("%s() tvp.u.buffer.data[0x%02x] = 0x%02x\n"
+				,__func__
 				,i
 				,tvp->u.buffer.data[i]);
 
 	} else
-		printk("%s() tvp.u.data = 0x%08x\n", __FUNCTION__, tvp->u.data);
+		dprintk("%s() tvp.u.data = 0x%08x\n", __func__, tvp->u.data);
 }
 
 int is_legacy_delivery_system(fe_delivery_system_t s)
@@ -942,8 +946,6 @@
 {
 	struct dtv_frontend_properties *c = &fe->dtv_property_cache;
 
-	printk("%s()\n", __FUNCTION__);
-
 	c->frequency = p->frequency;
 	c->inversion = p->inversion;
 
@@ -998,27 +1000,25 @@
 	struct dvb_frontend_private *fepriv = fe->frontend_priv;
 	struct dvb_frontend_parameters *p = &fepriv->parameters;
 
-	printk("%s()\n", __FUNCTION__);
-
 	p->frequency = c->frequency;
 	p->inversion = c->inversion;
 
 	switch (fe->ops.info.type) {
 	case FE_QPSK:
-		printk("%s() Preparing QPSK req\n", __FUNCTION__);
+		dprintk("%s() Preparing QPSK req\n", __func__);
 		p->u.qpsk.symbol_rate = c->symbol_rate;
 		p->u.qpsk.fec_inner = c->fec_inner;
 		c->delivery_system = SYS_DVBS;
 		break;
 	case FE_QAM:
-		printk("%s() Preparing QAM req\n", __FUNCTION__);
+		dprintk("%s() Preparing QAM req\n", __func__);
 		p->u.qam.symbol_rate = c->symbol_rate;
 		p->u.qam.fec_inner = c->fec_inner;
 		p->u.qam.modulation = c->modulation;
 		c->delivery_system = SYS_DVBC_ANNEX_AC;
 		break;
 	case FE_OFDM:
-		printk("%s() Preparing OFDM req\n", __FUNCTION__);
+		dprintk("%s() Preparing OFDM req\n", __func__);
 		if (c->bandwidth_hz == 6000000)
 			p->u.ofdm.bandwidth = BANDWIDTH_6_MHZ;
 		else if (c->bandwidth_hz == 7000000)
@@ -1036,7 +1036,7 @@
 		c->delivery_system = SYS_DVBT;
 		break;
 	case FE_ATSC:
-		printk("%s() Preparing VSB req\n", __FUNCTION__);
+		dprintk("%s() Preparing VSB req\n", __func__);
 		p->u.vsb.modulation = c->modulation;
 		if ((c->modulation == VSB_8) || (c->modulation == VSB_16))
 			c->delivery_system = SYS_ATSC;
@@ -1055,14 +1055,13 @@
 	struct dvb_frontend_private *fepriv = fe->frontend_priv;
 	struct dvb_frontend_parameters *p = &fepriv->parameters;
 
-	printk("%s()\n", __FUNCTION__);
-
 	p->frequency = c->frequency;
 	p->inversion = c->inversion;
 
 	switch(c->modulation) {
 	case PSK_8:
 	case APSK_16:
+	case APSK_32:
 	case QPSK:
 		p->u.qpsk.symbol_rate = c->symbol_rate;
 		p->u.qpsk.fec_inner = c->fec_inner;
@@ -1089,19 +1088,17 @@
 {
 	struct dtv_frontend_properties *c = &fe->dtv_property_cache;
 
-	printk("%s()\n", __FUNCTION__);
-
 	/* For legacy delivery systems we don't need the delivery_system to
 	 * be specified, but we populate the older structures from the cache
 	 * so we can call set_frontend on older drivers.
 	 */
 	if(is_legacy_delivery_system(c->delivery_system)) {
 
-		printk("%s() legacy, modulation = %d\n", __FUNCTION__, c->modulation);
+		dprintk("%s() legacy, modulation = %d\n", __func__, c->modulation);
 		dtv_property_legacy_params_sync(fe);
 
 	} else {
-		printk("%s() adv, modulation = %d\n", __FUNCTION__, c->modulation);
+		dprintk("%s() adv, modulation = %d\n", __func__, c->modulation);
 
 		/* For advanced delivery systems / modulation types ...
 		 * we seed the lecacy dvb_frontend_parameters structure
@@ -1123,8 +1120,6 @@
 {
 	int r = 0;
 
-	printk("%s()\n", __FUNCTION__);
-
 	dtv_property_dump(tvp);
 
 	/* Allow the frontend to validate incoming properties */
@@ -1198,7 +1193,6 @@
 {
 	int r = 0;
 	struct dvb_frontend_private *fepriv = fe->frontend_priv;
-	printk("%s()\n", __FUNCTION__);
 	dtv_property_dump(tvp);
 
 	/* Allow the frontend to validate incoming properties */
@@ -1213,7 +1207,7 @@
 		/* Reset a cache of data specific to the frontend here. This does
 		 * not effect hardware.
 		 */
-		printk("%s() Flushing property cache\n", __FUNCTION__);
+		dprintk("%s() Flushing property cache\n", __func__);
 		memset(&fe->dtv_property_cache, 0, sizeof(struct dtv_frontend_properties));
 		fe->dtv_property_cache.state = tvp->cmd;
 		fe->dtv_property_cache.delivery_system = SYS_UNDEFINED;
@@ -1224,7 +1218,7 @@
 		 * ioctl.
 		 */
 		fe->dtv_property_cache.state = tvp->cmd;
-		printk("%s() Finalised property cache\n", __FUNCTION__);
+		dprintk("%s() Finalised property cache\n", __func__);
 		dtv_property_cache_submit(fe);
 
 		r |= dvb_frontend_ioctl_legacy(inode, file, FE_SET_FRONTEND,
@@ -1335,12 +1329,10 @@
 	dprintk("%s\n", __func__);
 
 	if(cmd == FE_SET_PROPERTY) {
-		printk("%s() FE_SET_PROPERTY\n", __FUNCTION__);
-
 		tvps = (struct dtv_properties __user *)parg;
 
-		printk("%s() properties.num = %d\n", __FUNCTION__, tvps->num);
-		printk("%s() properties.props = %p\n", __FUNCTION__, tvps->props);
+		dprintk("%s() properties.num = %d\n", __func__, tvps->num);
+		dprintk("%s() properties.props = %p\n", __func__, tvps->props);
 
 		/* Put an arbitrary limit on the number of messages that can
 		 * be sent at once */
@@ -1364,18 +1356,16 @@
 			err |= (tvp + i)->result;
 		}
 
-		if(fe->dtv_property_cache.state == DTV_TUNE) {
-			printk("%s() Property cache is full, tuning\n", __FUNCTION__);
-		}
+		if(fe->dtv_property_cache.state == DTV_TUNE)
+			dprintk("%s() Property cache is full, tuning\n", __func__);
 
 	} else
 	if(cmd == FE_GET_PROPERTY) {
-		printk("%s() FE_GET_PROPERTY\n", __FUNCTION__);
 
 		tvps = (struct dtv_properties __user *)parg;
 
-		printk("%s() properties.num = %d\n", __FUNCTION__, tvps->num);
-		printk("%s() properties.props = %p\n", __FUNCTION__, tvps->props);
+		dprintk("%s() properties.num = %d\n", __func__, tvps->num);
+		dprintk("%s() properties.props = %p\n", __func__, tvps->props);
 
 		/* Put an arbitrary limit on the number of messages that can
 		 * be sent at once */
@@ -1704,13 +1694,53 @@
 	struct dvb_device *dvbdev = file->private_data;
 	struct dvb_frontend *fe = dvbdev->priv;
 	struct dvb_frontend_private *fepriv = fe->frontend_priv;
+	struct dvb_adapter *adapter = fe->dvb;
 	int ret;
 
 	dprintk ("%s\n", __func__);
 
+	if (adapter->mfe_shared) {
+		mutex_lock (&adapter->mfe_lock);
+
+		if (adapter->mfe_dvbdev == NULL)
+			adapter->mfe_dvbdev = dvbdev;
+
+		else if (adapter->mfe_dvbdev != dvbdev) {
+			struct dvb_device
+				*mfedev = adapter->mfe_dvbdev;
+			struct dvb_frontend
+				*mfe = mfedev->priv;
+			struct dvb_frontend_private
+				*mfepriv = mfe->frontend_priv;
+			int mferetry = (dvb_mfe_wait_time << 1);
+
+			mutex_unlock (&adapter->mfe_lock);
+			while (mferetry-- && (mfedev->users != -1 ||
+					mfepriv->thread != NULL)) {
+				if(msleep_interruptible(500)) {
+					if(signal_pending(current))
+						return -EINTR;
+				}
+			}
+
+			mutex_lock (&adapter->mfe_lock);
+			if(adapter->mfe_dvbdev != dvbdev) {
+				mfedev = adapter->mfe_dvbdev;
+				mfe = mfedev->priv;
+				mfepriv = mfe->frontend_priv;
+				if (mfedev->users != -1 ||
+						mfepriv->thread != NULL) {
+					mutex_unlock (&adapter->mfe_lock);
+					return -EBUSY;
+				}
+				adapter->mfe_dvbdev = dvbdev;
+			}
+		}
+	}
+
 	if (dvbdev->users == -1 && fe->ops.ts_bus_ctrl) {
 		if ((ret = fe->ops.ts_bus_ctrl(fe, 1)) < 0)
-			return ret;
+			goto err0;
 	}
 
 	if ((ret = dvb_generic_open (inode, file)) < 0)
@@ -1730,6 +1760,8 @@
 		fepriv->events.eventr = fepriv->events.eventw = 0;
 	}
 
+	if (adapter->mfe_shared)
+		mutex_unlock (&adapter->mfe_lock);
 	return ret;
 
 err2:
@@ -1737,6 +1769,9 @@
 err1:
 	if (dvbdev->users == -1 && fe->ops.ts_bus_ctrl)
 		fe->ops.ts_bus_ctrl(fe, 0);
+err0:
+	if (adapter->mfe_shared)
+		mutex_unlock (&adapter->mfe_lock);
 	return ret;
 }
 
@@ -1806,8 +1841,9 @@
 	fe->dvb = dvb;
 	fepriv->inversion = INVERSION_OFF;
 
-	printk ("DVB: registering frontend %i (%s)...\n",
+	printk ("DVB: registering adapter %i frontend %i (%s)...\n",
 		fe->dvb->num,
+		fe->id,
 		fe->ops.info.name);
 
 	dvb_register_device (fe->dvb, &fepriv->dvbdev, &dvbdev_template,
diff --git a/drivers/media/dvb/dvb-core/dvb_frontend.h b/drivers/media/dvb/dvb-core/dvb_frontend.h
index 3055301..db4a63b 100644
--- a/drivers/media/dvb/dvb-core/dvb_frontend.h
+++ b/drivers/media/dvb/dvb-core/dvb_frontend.h
@@ -222,6 +222,7 @@
 	struct dtv_frontend_properties dtv_property_cache;
 #define DVB_FRONTEND_COMPONENT_TUNER 0
 	int (*callback)(void *adapter_priv, int component, int cmd, int arg);
+	int id;
 };
 
 extern int dvb_register_frontend(struct dvb_adapter *dvb,
diff --git a/drivers/media/dvb/dvb-core/dvbdev.c b/drivers/media/dvb/dvb-core/dvbdev.c
index 665776d..a113744 100644
--- a/drivers/media/dvb/dvb-core/dvbdev.c
+++ b/drivers/media/dvb/dvb-core/dvbdev.c
@@ -326,6 +326,9 @@
 	adap->name = name;
 	adap->module = module;
 	adap->device = device;
+	adap->mfe_shared = 0;
+	adap->mfe_dvbdev = NULL;
+	mutex_init (&adap->mfe_lock);
 
 	list_add_tail (&adap->list_head, &dvb_adapter_list);
 
diff --git a/drivers/media/dvb/dvb-core/dvbdev.h b/drivers/media/dvb/dvb-core/dvbdev.h
index 89d12dc..574e336 100644
--- a/drivers/media/dvb/dvb-core/dvbdev.h
+++ b/drivers/media/dvb/dvb-core/dvbdev.h
@@ -62,6 +62,10 @@
 	struct device *device;
 
 	struct module *module;
+
+	int mfe_shared;			/* indicates mutually exclusive frontends */
+	struct dvb_device *mfe_dvbdev;	/* frontend device in use */
+	struct mutex mfe_lock;		/* access lock for thread creation */
 };
 
 
diff --git a/drivers/media/dvb/dvb-usb/dw2102.c b/drivers/media/dvb/dvb-usb/dw2102.c
index ca53df6..6286fbb 100644
--- a/drivers/media/dvb/dvb-usb/dw2102.c
+++ b/drivers/media/dvb/dvb-usb/dw2102.c
@@ -422,6 +422,18 @@
 	return 0;
 }
 
+static struct stv0299_config sharp_z0194a_config = {
+	.demod_address = 0x68,
+	.inittab = sharp_z0194a_inittab,
+	.mclk = 88000000UL,
+	.invert = 1,
+	.skip_reinit = 0,
+	.lock_output = STV0299_LOCKOUTPUT_1,
+	.volt13_op0_op1 = STV0299_VOLT13_OP1,
+	.min_delay_ms = 100,
+	.set_symbol_rate = sharp_z0194a_set_symbol_rate,
+};
+
 static struct cx24116_config dw2104_config = {
 	.demod_address = 0x55,
 	.mpg_clk_pos_pol = 0x01,
diff --git a/drivers/media/dvb/frontends/cx22702.c b/drivers/media/dvb/frontends/cx22702.c
index 9430e03..5d1abe3 100644
--- a/drivers/media/dvb/frontends/cx22702.c
+++ b/drivers/media/dvb/frontends/cx22702.c
@@ -34,13 +34,12 @@
 #include "dvb_frontend.h"
 #include "cx22702.h"
 
-
 struct cx22702_state {
 
-	struct i2c_adapter* i2c;
+	struct i2c_adapter *i2c;
 
 	/* configuration settings */
-	const struct cx22702_config* config;
+	const struct cx22702_config *config;
 
 	struct dvb_frontend frontend;
 
@@ -49,10 +48,13 @@
 };
 
 static int debug;
+module_param(debug, int, 0644);
+MODULE_PARM_DESC(debug, "Enable verbose debug messages");
+
 #define dprintk	if (debug) printk
 
 /* Register values to initialise the demod */
-static u8 init_tab [] = {
+static u8 init_tab[] = {
 	0x00, 0x00, /* Stop aquisition */
 	0x0B, 0x06,
 	0x09, 0x01,
@@ -80,65 +82,67 @@
 	0xfd, 0x00,
 };
 
-static int cx22702_writereg (struct cx22702_state* state, u8 reg, u8 data)
+static int cx22702_writereg(struct cx22702_state *state, u8 reg, u8 data)
 {
 	int ret;
-	u8 buf [] = { reg, data };
-	struct i2c_msg msg = { .addr = state->config->demod_address, .flags = 0, .buf = buf, .len = 2 };
+	u8 buf[] = { reg, data };
+	struct i2c_msg msg = {
+		.addr = state->config->demod_address, .flags = 0,
+			.buf = buf, .len = 2 };
 
 	ret = i2c_transfer(state->i2c, &msg, 1);
 
 	if (ret != 1)
-		printk("%s: writereg error (reg == 0x%02x, val == 0x%02x, ret == %i)\n",
+		printk(KERN_ERR
+			"%s: error (reg == 0x%02x, val == 0x%02x, ret == %i)\n",
 			__func__, reg, data, ret);
 
 	return (ret != 1) ? -1 : 0;
 }
 
-static u8 cx22702_readreg (struct cx22702_state* state, u8 reg)
+static u8 cx22702_readreg(struct cx22702_state *state, u8 reg)
 {
 	int ret;
-	u8 b0 [] = { reg };
-	u8 b1 [] = { 0 };
+	u8 b0[] = { reg };
+	u8 b1[] = { 0 };
 
-	struct i2c_msg msg [] = {
-		{ .addr = state->config->demod_address, .flags = 0, .buf = b0, .len = 1 },
-		{ .addr = state->config->demod_address, .flags = I2C_M_RD, .buf = b1, .len = 1 } };
+	struct i2c_msg msg[] = {
+		{ .addr = state->config->demod_address, .flags = 0,
+			.buf = b0, .len = 1 },
+		{ .addr = state->config->demod_address, .flags = I2C_M_RD,
+			.buf = b1, .len = 1 } };
 
 	ret = i2c_transfer(state->i2c, msg, 2);
 
 	if (ret != 2)
-		printk("%s: readreg error (ret == %i)\n", __func__, ret);
+		printk(KERN_ERR "%s: readreg error (ret == %i)\n",
+			__func__, ret);
 
 	return b1[0];
 }
 
-static int cx22702_set_inversion (struct cx22702_state *state, int inversion)
+static int cx22702_set_inversion(struct cx22702_state *state, int inversion)
 {
 	u8 val;
 
 	switch (inversion) {
-
-		case INVERSION_AUTO:
-			return -EOPNOTSUPP;
-
-		case INVERSION_ON:
-			val = cx22702_readreg (state, 0x0C);
-			return cx22702_writereg (state, 0x0C, val | 0x01);
-
-		case INVERSION_OFF:
-			val = cx22702_readreg (state, 0x0C);
-			return cx22702_writereg (state, 0x0C, val & 0xfe);
-
-		default:
-			return -EINVAL;
-
+	case INVERSION_AUTO:
+		return -EOPNOTSUPP;
+	case INVERSION_ON:
+		val = cx22702_readreg(state, 0x0C);
+		return cx22702_writereg(state, 0x0C, val | 0x01);
+	case INVERSION_OFF:
+		val = cx22702_readreg(state, 0x0C);
+		return cx22702_writereg(state, 0x0C, val & 0xfe);
+	default:
+		return -EINVAL;
 	}
 
 }
 
 /* Retrieve the demod settings */
-static int cx22702_get_tps (struct cx22702_state *state, struct dvb_ofdm_parameters *p)
+static int cx22702_get_tps(struct cx22702_state *state,
+	struct dvb_ofdm_parameters *p)
 {
 	u8 val;
 
@@ -146,180 +150,281 @@
 	if (!(cx22702_readreg(state, 0x0A) & 0x20))
 		return -EAGAIN;
 
-	val = cx22702_readreg (state, 0x01);
-	switch( (val&0x18)>>3) {
-		case 0: p->constellation =   QPSK; break;
-		case 1: p->constellation = QAM_16; break;
-		case 2: p->constellation = QAM_64; break;
+	val = cx22702_readreg(state, 0x01);
+	switch ((val & 0x18) >> 3) {
+	case 0:
+		p->constellation = QPSK;
+		break;
+	case 1:
+		p->constellation = QAM_16;
+		break;
+	case 2:
+		p->constellation = QAM_64;
+		break;
 	}
-	switch( val&0x07 ) {
-		case 0: p->hierarchy_information = HIERARCHY_NONE; break;
-		case 1: p->hierarchy_information =    HIERARCHY_1; break;
-		case 2: p->hierarchy_information =    HIERARCHY_2; break;
-		case 3: p->hierarchy_information =    HIERARCHY_4; break;
+	switch (val & 0x07) {
+	case 0:
+		p->hierarchy_information = HIERARCHY_NONE;
+		break;
+	case 1:
+		p->hierarchy_information = HIERARCHY_1;
+		break;
+	case 2:
+		p->hierarchy_information = HIERARCHY_2;
+		break;
+	case 3:
+		p->hierarchy_information = HIERARCHY_4;
+		break;
 	}
 
 
-	val = cx22702_readreg (state, 0x02);
-	switch( (val&0x38)>>3 ) {
-		case 0: p->code_rate_HP = FEC_1_2; break;
-		case 1: p->code_rate_HP = FEC_2_3; break;
-		case 2: p->code_rate_HP = FEC_3_4; break;
-		case 3: p->code_rate_HP = FEC_5_6; break;
-		case 4: p->code_rate_HP = FEC_7_8; break;
+	val = cx22702_readreg(state, 0x02);
+	switch ((val & 0x38) >> 3) {
+	case 0:
+		p->code_rate_HP = FEC_1_2;
+		break;
+	case 1:
+		p->code_rate_HP = FEC_2_3;
+		break;
+	case 2:
+		p->code_rate_HP = FEC_3_4;
+		break;
+	case 3:
+		p->code_rate_HP = FEC_5_6;
+		break;
+	case 4:
+		p->code_rate_HP = FEC_7_8;
+		break;
 	}
-	switch( val&0x07 ) {
-		case 0: p->code_rate_LP = FEC_1_2; break;
-		case 1: p->code_rate_LP = FEC_2_3; break;
-		case 2: p->code_rate_LP = FEC_3_4; break;
-		case 3: p->code_rate_LP = FEC_5_6; break;
-		case 4: p->code_rate_LP = FEC_7_8; break;
+	switch (val & 0x07) {
+	case 0:
+		p->code_rate_LP = FEC_1_2;
+		break;
+	case 1:
+		p->code_rate_LP = FEC_2_3;
+		break;
+	case 2:
+		p->code_rate_LP = FEC_3_4;
+		break;
+	case 3:
+		p->code_rate_LP = FEC_5_6;
+		break;
+	case 4:
+		p->code_rate_LP = FEC_7_8;
+		break;
 	}
 
-
-	val = cx22702_readreg (state, 0x03);
-	switch( (val&0x0c)>>2 ) {
-		case 0: p->guard_interval = GUARD_INTERVAL_1_32; break;
-		case 1: p->guard_interval = GUARD_INTERVAL_1_16; break;
-		case 2: p->guard_interval =  GUARD_INTERVAL_1_8; break;
-		case 3: p->guard_interval =  GUARD_INTERVAL_1_4; break;
+	val = cx22702_readreg(state, 0x03);
+	switch ((val & 0x0c) >> 2) {
+	case 0:
+		p->guard_interval = GUARD_INTERVAL_1_32;
+		break;
+	case 1:
+		p->guard_interval = GUARD_INTERVAL_1_16;
+		break;
+	case 2:
+		p->guard_interval = GUARD_INTERVAL_1_8;
+		break;
+	case 3:
+		p->guard_interval = GUARD_INTERVAL_1_4;
+		break;
 	}
-	switch( val&0x03 ) {
-		case 0: p->transmission_mode = TRANSMISSION_MODE_2K; break;
-		case 1: p->transmission_mode = TRANSMISSION_MODE_8K; break;
+	switch (val & 0x03) {
+	case 0:
+		p->transmission_mode = TRANSMISSION_MODE_2K;
+		break;
+	case 1:
+		p->transmission_mode = TRANSMISSION_MODE_8K;
+		break;
 	}
 
 	return 0;
 }
 
-static int cx22702_i2c_gate_ctrl(struct dvb_frontend* fe, int enable)
+static int cx22702_i2c_gate_ctrl(struct dvb_frontend *fe, int enable)
 {
-	struct cx22702_state* state = fe->demodulator_priv;
-	dprintk ("%s(%d)\n", __func__, enable);
+	struct cx22702_state *state = fe->demodulator_priv;
+	dprintk("%s(%d)\n", __func__, enable);
 	if (enable)
-		return cx22702_writereg (state, 0x0D, cx22702_readreg(state, 0x0D) & 0xfe);
+		return cx22702_writereg(state, 0x0D,
+			cx22702_readreg(state, 0x0D) & 0xfe);
 	else
-		return cx22702_writereg (state, 0x0D, cx22702_readreg(state, 0x0D) | 1);
+		return cx22702_writereg(state, 0x0D,
+			cx22702_readreg(state, 0x0D) | 1);
 }
 
 /* Talk to the demod, set the FEC, GUARD, QAM settings etc */
-static int cx22702_set_tps (struct dvb_frontend* fe, struct dvb_frontend_parameters *p)
+static int cx22702_set_tps(struct dvb_frontend *fe,
+	struct dvb_frontend_parameters *p)
 {
 	u8 val;
-	struct cx22702_state* state = fe->demodulator_priv;
+	struct cx22702_state *state = fe->demodulator_priv;
 
 	if (fe->ops.tuner_ops.set_params) {
 		fe->ops.tuner_ops.set_params(fe, p);
-		if (fe->ops.i2c_gate_ctrl) fe->ops.i2c_gate_ctrl(fe, 0);
+		if (fe->ops.i2c_gate_ctrl)
+			fe->ops.i2c_gate_ctrl(fe, 0);
 	}
 
 	/* set inversion */
-	cx22702_set_inversion (state, p->inversion);
+	cx22702_set_inversion(state, p->inversion);
 
 	/* set bandwidth */
-	switch(p->u.ofdm.bandwidth) {
+	switch (p->u.ofdm.bandwidth) {
 	case BANDWIDTH_6_MHZ:
-		cx22702_writereg(state, 0x0C, (cx22702_readreg(state, 0x0C) & 0xcf) | 0x20 );
+		cx22702_writereg(state, 0x0C,
+			(cx22702_readreg(state, 0x0C) & 0xcf) | 0x20);
 		break;
 	case BANDWIDTH_7_MHZ:
-		cx22702_writereg(state, 0x0C, (cx22702_readreg(state, 0x0C) & 0xcf) | 0x10 );
+		cx22702_writereg(state, 0x0C,
+			(cx22702_readreg(state, 0x0C) & 0xcf) | 0x10);
 		break;
 	case BANDWIDTH_8_MHZ:
-		cx22702_writereg(state, 0x0C, cx22702_readreg(state, 0x0C) &0xcf );
+		cx22702_writereg(state, 0x0C,
+			cx22702_readreg(state, 0x0C) & 0xcf);
 		break;
 	default:
-		dprintk ("%s: invalid bandwidth\n",__func__);
+		dprintk("%s: invalid bandwidth\n", __func__);
 		return -EINVAL;
 	}
 
-
-	p->u.ofdm.code_rate_LP = FEC_AUTO; //temp hack as manual not working
+	p->u.ofdm.code_rate_LP = FEC_AUTO; /* temp hack as manual not working */
 
 	/* use auto configuration? */
-	if((p->u.ofdm.hierarchy_information==HIERARCHY_AUTO) ||
-	   (p->u.ofdm.constellation==QAM_AUTO) ||
-	   (p->u.ofdm.code_rate_HP==FEC_AUTO) ||
-	   (p->u.ofdm.code_rate_LP==FEC_AUTO) ||
-	   (p->u.ofdm.guard_interval==GUARD_INTERVAL_AUTO) ||
-	   (p->u.ofdm.transmission_mode==TRANSMISSION_MODE_AUTO) ) {
+	if ((p->u.ofdm.hierarchy_information == HIERARCHY_AUTO) ||
+	   (p->u.ofdm.constellation == QAM_AUTO) ||
+	   (p->u.ofdm.code_rate_HP == FEC_AUTO) ||
+	   (p->u.ofdm.code_rate_LP == FEC_AUTO) ||
+	   (p->u.ofdm.guard_interval == GUARD_INTERVAL_AUTO) ||
+	   (p->u.ofdm.transmission_mode == TRANSMISSION_MODE_AUTO)) {
 
 		/* TPS Source - use hardware driven values */
 		cx22702_writereg(state, 0x06, 0x10);
 		cx22702_writereg(state, 0x07, 0x9);
 		cx22702_writereg(state, 0x08, 0xC1);
-		cx22702_writereg(state, 0x0B, cx22702_readreg(state, 0x0B) & 0xfc );
-		cx22702_writereg(state, 0x0C, (cx22702_readreg(state, 0x0C) & 0xBF) | 0x40 );
+		cx22702_writereg(state, 0x0B, cx22702_readreg(state, 0x0B)
+			& 0xfc);
+		cx22702_writereg(state, 0x0C,
+			(cx22702_readreg(state, 0x0C) & 0xBF) | 0x40);
 		cx22702_writereg(state, 0x00, 0x01); /* Begin aquisition */
-		dprintk("%s: Autodetecting\n",__func__);
+		dprintk("%s: Autodetecting\n", __func__);
 		return 0;
 	}
 
 	/* manually programmed values */
-	val=0;
-	switch(p->u.ofdm.constellation) {
-		case   QPSK: val = (val&0xe7); break;
-		case QAM_16: val = (val&0xe7)|0x08; break;
-		case QAM_64: val = (val&0xe7)|0x10; break;
-		default:
-			dprintk ("%s: invalid constellation\n",__func__);
-			return -EINVAL;
+	val = 0;
+	switch (p->u.ofdm.constellation) {
+	case QPSK:
+		val = (val & 0xe7);
+		break;
+	case QAM_16:
+		val = (val & 0xe7) | 0x08;
+		break;
+	case QAM_64:
+		val = (val & 0xe7) | 0x10;
+		break;
+	default:
+		dprintk("%s: invalid constellation\n", __func__);
+		return -EINVAL;
 	}
-	switch(p->u.ofdm.hierarchy_information) {
-		case HIERARCHY_NONE: val = (val&0xf8); break;
-		case    HIERARCHY_1: val = (val&0xf8)|1; break;
-		case    HIERARCHY_2: val = (val&0xf8)|2; break;
-		case    HIERARCHY_4: val = (val&0xf8)|3; break;
-		default:
-			dprintk ("%s: invalid hierarchy\n",__func__);
-			return -EINVAL;
+	switch (p->u.ofdm.hierarchy_information) {
+	case HIERARCHY_NONE:
+		val = (val & 0xf8);
+		break;
+	case HIERARCHY_1:
+		val = (val & 0xf8) | 1;
+		break;
+	case HIERARCHY_2:
+		val = (val & 0xf8) | 2;
+		break;
+	case HIERARCHY_4:
+		val = (val & 0xf8) | 3;
+		break;
+	default:
+		dprintk("%s: invalid hierarchy\n", __func__);
+		return -EINVAL;
 	}
-	cx22702_writereg (state, 0x06, val);
+	cx22702_writereg(state, 0x06, val);
 
-	val=0;
-	switch(p->u.ofdm.code_rate_HP) {
-		case FEC_NONE:
-		case FEC_1_2: val = (val&0xc7); break;
-		case FEC_2_3: val = (val&0xc7)|0x08; break;
-		case FEC_3_4: val = (val&0xc7)|0x10; break;
-		case FEC_5_6: val = (val&0xc7)|0x18; break;
-		case FEC_7_8: val = (val&0xc7)|0x20; break;
-		default:
-			dprintk ("%s: invalid code_rate_HP\n",__func__);
-			return -EINVAL;
+	val = 0;
+	switch (p->u.ofdm.code_rate_HP) {
+	case FEC_NONE:
+	case FEC_1_2:
+		val = (val & 0xc7);
+		break;
+	case FEC_2_3:
+		val = (val & 0xc7) | 0x08;
+		break;
+	case FEC_3_4:
+		val = (val & 0xc7) | 0x10;
+		break;
+	case FEC_5_6:
+		val = (val & 0xc7) | 0x18;
+		break;
+	case FEC_7_8:
+		val = (val & 0xc7) | 0x20;
+		break;
+	default:
+		dprintk("%s: invalid code_rate_HP\n", __func__);
+		return -EINVAL;
 	}
-	switch(p->u.ofdm.code_rate_LP) {
-		case FEC_NONE:
-		case FEC_1_2: val = (val&0xf8); break;
-		case FEC_2_3: val = (val&0xf8)|1; break;
-		case FEC_3_4: val = (val&0xf8)|2; break;
-		case FEC_5_6: val = (val&0xf8)|3; break;
-		case FEC_7_8: val = (val&0xf8)|4; break;
-		default:
-			dprintk ("%s: invalid code_rate_LP\n",__func__);
-			return -EINVAL;
+	switch (p->u.ofdm.code_rate_LP) {
+	case FEC_NONE:
+	case FEC_1_2:
+		val = (val & 0xf8);
+		break;
+	case FEC_2_3:
+		val = (val & 0xf8) | 1;
+		break;
+	case FEC_3_4:
+		val = (val & 0xf8) | 2;
+		break;
+	case FEC_5_6:
+		val = (val & 0xf8) | 3;
+		break;
+	case FEC_7_8:
+		val = (val & 0xf8) | 4;
+		break;
+	default:
+		dprintk("%s: invalid code_rate_LP\n", __func__);
+		return -EINVAL;
 	}
-	cx22702_writereg (state, 0x07, val);
+	cx22702_writereg(state, 0x07, val);
 
-	val=0;
-	switch(p->u.ofdm.guard_interval) {
-		case GUARD_INTERVAL_1_32: val = (val&0xf3); break;
-		case GUARD_INTERVAL_1_16: val = (val&0xf3)|0x04; break;
-		case  GUARD_INTERVAL_1_8: val = (val&0xf3)|0x08; break;
-		case  GUARD_INTERVAL_1_4: val = (val&0xf3)|0x0c; break;
-		default:
-			dprintk ("%s: invalid guard_interval\n",__func__);
-			return -EINVAL;
+	val = 0;
+	switch (p->u.ofdm.guard_interval) {
+	case GUARD_INTERVAL_1_32:
+		val = (val & 0xf3);
+		break;
+	case GUARD_INTERVAL_1_16:
+		val = (val & 0xf3) | 0x04;
+		break;
+	case GUARD_INTERVAL_1_8:
+		val = (val & 0xf3) | 0x08;
+		break;
+	case GUARD_INTERVAL_1_4:
+		val = (val & 0xf3) | 0x0c;
+		break;
+	default:
+		dprintk("%s: invalid guard_interval\n", __func__);
+		return -EINVAL;
 	}
-	switch(p->u.ofdm.transmission_mode) {
-		case TRANSMISSION_MODE_2K: val = (val&0xfc); break;
-		case TRANSMISSION_MODE_8K: val = (val&0xfc)|1; break;
-		default:
-			dprintk ("%s: invalid transmission_mode\n",__func__);
-			return -EINVAL;
+	switch (p->u.ofdm.transmission_mode) {
+	case TRANSMISSION_MODE_2K:
+		val = (val & 0xfc);
+		break;
+	case TRANSMISSION_MODE_8K:
+		val = (val & 0xfc) | 1;
+		break;
+	default:
+		dprintk("%s: invalid transmission_mode\n", __func__);
+		return -EINVAL;
 	}
 	cx22702_writereg(state, 0x08, val);
-	cx22702_writereg(state, 0x0B, (cx22702_readreg(state, 0x0B) & 0xfc) | 0x02 );
-	cx22702_writereg(state, 0x0C, (cx22702_readreg(state, 0x0C) & 0xBF) | 0x40 );
+	cx22702_writereg(state, 0x0B,
+		(cx22702_readreg(state, 0x0B) & 0xfc) | 0x02);
+	cx22702_writereg(state, 0x0C,
+		(cx22702_readreg(state, 0x0C) & 0xBF) | 0x40);
 
 	/* Begin channel aquisition */
 	cx22702_writereg(state, 0x00, 0x01);
@@ -329,109 +434,111 @@
 
 /* Reset the demod hardware and reset all of the configuration registers
    to a default state. */
-static int cx22702_init (struct dvb_frontend* fe)
+static int cx22702_init(struct dvb_frontend *fe)
 {
 	int i;
-	struct cx22702_state* state = fe->demodulator_priv;
+	struct cx22702_state *state = fe->demodulator_priv;
 
-	cx22702_writereg (state, 0x00, 0x02);
+	cx22702_writereg(state, 0x00, 0x02);
 
 	msleep(10);
 
-	for (i=0; i<sizeof(init_tab); i+=2)
-		cx22702_writereg (state, init_tab[i], init_tab[i+1]);
+	for (i = 0; i < ARRAY_SIZE(init_tab); i += 2)
+		cx22702_writereg(state, init_tab[i], init_tab[i + 1]);
 
-	cx22702_writereg (state, 0xf8, (state->config->output_mode << 1) & 0x02);
+	cx22702_writereg(state, 0xf8, (state->config->output_mode << 1)
+		& 0x02);
 
 	cx22702_i2c_gate_ctrl(fe, 0);
 
 	return 0;
 }
 
-static int cx22702_read_status(struct dvb_frontend* fe, fe_status_t* status)
+static int cx22702_read_status(struct dvb_frontend *fe, fe_status_t *status)
 {
-	struct cx22702_state* state = fe->demodulator_priv;
+	struct cx22702_state *state = fe->demodulator_priv;
 	u8 reg0A;
 	u8 reg23;
 
 	*status = 0;
 
-	reg0A = cx22702_readreg (state, 0x0A);
-	reg23 = cx22702_readreg (state, 0x23);
+	reg0A = cx22702_readreg(state, 0x0A);
+	reg23 = cx22702_readreg(state, 0x23);
 
-	dprintk ("%s: status demod=0x%02x agc=0x%02x\n"
-		,__func__,reg0A,reg23);
+	dprintk("%s: status demod=0x%02x agc=0x%02x\n"
+		, __func__, reg0A, reg23);
 
-	if(reg0A & 0x10) {
+	if (reg0A & 0x10) {
 		*status |= FE_HAS_LOCK;
 		*status |= FE_HAS_VITERBI;
 		*status |= FE_HAS_SYNC;
 	}
 
-	if(reg0A & 0x20)
+	if (reg0A & 0x20)
 		*status |= FE_HAS_CARRIER;
 
-	if(reg23 < 0xf0)
+	if (reg23 < 0xf0)
 		*status |= FE_HAS_SIGNAL;
 
 	return 0;
 }
 
-static int cx22702_read_ber(struct dvb_frontend* fe, u32* ber)
+static int cx22702_read_ber(struct dvb_frontend *fe, u32 *ber)
 {
-	struct cx22702_state* state = fe->demodulator_priv;
+	struct cx22702_state *state = fe->demodulator_priv;
 
-	if(cx22702_readreg (state, 0xE4) & 0x02) {
+	if (cx22702_readreg(state, 0xE4) & 0x02) {
 		/* Realtime statistics */
-		*ber = (cx22702_readreg (state, 0xDE) & 0x7F) << 7
-			| (cx22702_readreg (state, 0xDF)&0x7F);
+		*ber = (cx22702_readreg(state, 0xDE) & 0x7F) << 7
+			| (cx22702_readreg(state, 0xDF) & 0x7F);
 	} else {
 		/* Averagtine statistics */
-		*ber = (cx22702_readreg (state, 0xDE) & 0x7F) << 7
-			| cx22702_readreg (state, 0xDF);
+		*ber = (cx22702_readreg(state, 0xDE) & 0x7F) << 7
+			| cx22702_readreg(state, 0xDF);
 	}
 
 	return 0;
 }
 
-static int cx22702_read_signal_strength(struct dvb_frontend* fe, u16* signal_strength)
+static int cx22702_read_signal_strength(struct dvb_frontend *fe,
+	u16 *signal_strength)
 {
-	struct cx22702_state* state = fe->demodulator_priv;
+	struct cx22702_state *state = fe->demodulator_priv;
 
 	u16 rs_ber = 0;
-	rs_ber = cx22702_readreg (state, 0x23);
+	rs_ber = cx22702_readreg(state, 0x23);
 	*signal_strength = (rs_ber << 8) | rs_ber;
 
 	return 0;
 }
 
-static int cx22702_read_snr(struct dvb_frontend* fe, u16* snr)
+static int cx22702_read_snr(struct dvb_frontend *fe, u16 *snr)
 {
-	struct cx22702_state* state = fe->demodulator_priv;
+	struct cx22702_state *state = fe->demodulator_priv;
 
-	u16 rs_ber=0;
-	if(cx22702_readreg (state, 0xE4) & 0x02) {
+	u16 rs_ber = 0;
+	if (cx22702_readreg(state, 0xE4) & 0x02) {
 		/* Realtime statistics */
-		rs_ber = (cx22702_readreg (state, 0xDE) & 0x7F) << 7
-			| (cx22702_readreg (state, 0xDF)& 0x7F);
+		rs_ber = (cx22702_readreg(state, 0xDE) & 0x7F) << 7
+			| (cx22702_readreg(state, 0xDF) & 0x7F);
 	} else {
 		/* Averagine statistics */
-		rs_ber = (cx22702_readreg (state, 0xDE) & 0x7F) << 8
-			| cx22702_readreg (state, 0xDF);
+		rs_ber = (cx22702_readreg(state, 0xDE) & 0x7F) << 8
+			| cx22702_readreg(state, 0xDF);
 	}
 	*snr = ~rs_ber;
 
 	return 0;
 }
 
-static int cx22702_read_ucblocks(struct dvb_frontend* fe, u32* ucblocks)
+static int cx22702_read_ucblocks(struct dvb_frontend *fe, u32 *ucblocks)
 {
-	struct cx22702_state* state = fe->demodulator_priv;
+	struct cx22702_state *state = fe->demodulator_priv;
 
 	u8 _ucblocks;
 
 	/* RS Uncorrectable Packet Count then reset */
-	_ucblocks = cx22702_readreg (state, 0xE3);
+	_ucblocks = cx22702_readreg(state, 0xE3);
 	if (state->prevUCBlocks < _ucblocks)
 		*ucblocks = (_ucblocks - state->prevUCBlocks);
 	else
@@ -441,34 +548,36 @@
 	return 0;
 }
 
-static int cx22702_get_frontend(struct dvb_frontend* fe, struct dvb_frontend_parameters *p)
+static int cx22702_get_frontend(struct dvb_frontend *fe,
+	struct dvb_frontend_parameters *p)
 {
-	struct cx22702_state* state = fe->demodulator_priv;
+	struct cx22702_state *state = fe->demodulator_priv;
 
-	u8 reg0C = cx22702_readreg (state, 0x0C);
+	u8 reg0C = cx22702_readreg(state, 0x0C);
 
 	p->inversion = reg0C & 0x1 ? INVERSION_ON : INVERSION_OFF;
-	return cx22702_get_tps (state, &p->u.ofdm);
+	return cx22702_get_tps(state, &p->u.ofdm);
 }
 
-static int cx22702_get_tune_settings(struct dvb_frontend* fe, struct dvb_frontend_tune_settings *tune)
+static int cx22702_get_tune_settings(struct dvb_frontend *fe,
+	struct dvb_frontend_tune_settings *tune)
 {
 	tune->min_delay_ms = 1000;
 	return 0;
 }
 
-static void cx22702_release(struct dvb_frontend* fe)
+static void cx22702_release(struct dvb_frontend *fe)
 {
-	struct cx22702_state* state = fe->demodulator_priv;
+	struct cx22702_state *state = fe->demodulator_priv;
 	kfree(state);
 }
 
 static struct dvb_frontend_ops cx22702_ops;
 
-struct dvb_frontend* cx22702_attach(const struct cx22702_config* config,
-				    struct i2c_adapter* i2c)
+struct dvb_frontend *cx22702_attach(const struct cx22702_config *config,
+	struct i2c_adapter *i2c)
 {
-	struct cx22702_state* state = NULL;
+	struct cx22702_state *state = NULL;
 
 	/* allocate memory for the internal state */
 	state = kmalloc(sizeof(struct cx22702_state), GFP_KERNEL);
@@ -485,7 +594,8 @@
 		goto error;
 
 	/* create dvb_frontend */
-	memcpy(&state->frontend.ops, &cx22702_ops, sizeof(struct dvb_frontend_ops));
+	memcpy(&state->frontend.ops, &cx22702_ops,
+		sizeof(struct dvb_frontend_ops));
 	state->frontend.demodulator_priv = state;
 	return &state->frontend;
 
@@ -493,6 +603,7 @@
 	kfree(state);
 	return NULL;
 }
+EXPORT_SYMBOL(cx22702_attach);
 
 static struct dvb_frontend_ops cx22702_ops = {
 
@@ -525,11 +636,6 @@
 	.read_ucblocks = cx22702_read_ucblocks,
 };
 
-module_param(debug, int, 0644);
-MODULE_PARM_DESC(debug, "Enable verbose debug messages");
-
 MODULE_DESCRIPTION("Conexant CX22702 DVB-T Demodulator driver");
 MODULE_AUTHOR("Steven Toth");
 MODULE_LICENSE("GPL");
-
-EXPORT_SYMBOL(cx22702_attach);
diff --git a/drivers/media/dvb/frontends/cx22702.h b/drivers/media/dvb/frontends/cx22702.h
index b1e465c..f154e1f 100644
--- a/drivers/media/dvb/frontends/cx22702.h
+++ b/drivers/media/dvb/frontends/cx22702.h
@@ -30,8 +30,7 @@
 
 #include <linux/dvb/frontend.h>
 
-struct cx22702_config
-{
+struct cx22702_config {
 	/* the demodulator's i2c address */
 	u8 demod_address;
 
@@ -41,16 +40,19 @@
 	u8 output_mode;
 };
 
-#if defined(CONFIG_DVB_CX22702) || (defined(CONFIG_DVB_CX22702_MODULE) && defined(MODULE))
-extern struct dvb_frontend* cx22702_attach(const struct cx22702_config* config,
-					   struct i2c_adapter* i2c);
+#if defined(CONFIG_DVB_CX22702) || (defined(CONFIG_DVB_CX22702_MODULE) \
+	&& defined(MODULE))
+extern struct dvb_frontend *cx22702_attach(
+	const struct cx22702_config *config,
+	struct i2c_adapter *i2c);
 #else
-static inline struct dvb_frontend* cx22702_attach(const struct cx22702_config* config,
-					   struct i2c_adapter* i2c)
+static inline struct dvb_frontend *cx22702_attach(
+	const struct cx22702_config *config,
+	struct i2c_adapter *i2c)
 {
 	printk(KERN_WARNING "%s: driver disabled by Kconfig\n", __func__);
 	return NULL;
 }
-#endif // CONFIG_DVB_CX22702
+#endif
 
-#endif // CX22702_H
+#endif
diff --git a/drivers/media/dvb/frontends/cx24116.c b/drivers/media/dvb/frontends/cx24116.c
index deb36f4..b144b30 100644
--- a/drivers/media/dvb/frontends/cx24116.c
+++ b/drivers/media/dvb/frontends/cx24116.c
@@ -41,10 +41,14 @@
 #include "dvb_frontend.h"
 #include "cx24116.h"
 
-static int debug = 0;
+static int debug;
+module_param(debug, int, 0644);
+MODULE_PARM_DESC(debug, "Activates frontend debugging (default:0)");
+
 #define dprintk(args...) \
 	do { \
-		if (debug) printk ("cx24116: " args); \
+		if (debug) \
+			printk(KERN_INFO "cx24116: " args); \
 	} while (0)
 
 #define CX24116_DEFAULT_FIRMWARE "dvb-fe-cx24116.fw"
@@ -68,13 +72,20 @@
 #define CX24116_REG_UCB8    (0xca)
 #define CX24116_REG_CLKDIV  (0xf3)
 #define CX24116_REG_RATEDIV (0xf9)
-#define CX24116_REG_FECSTATUS (0x9c)    /* configured fec (not tuned) or actual FEC (tuned) 1=1/2 2=2/3 etc */
+
+/* configured fec (not tuned) or actual FEC (tuned) 1=1/2 2=2/3 etc */
+#define CX24116_REG_FECSTATUS (0x9c)
 
 /* FECSTATUS bits */
-#define CX24116_FEC_FECMASK   (0x1f)    /* mask to determine configured fec (not tuned) or actual fec (tuned) */
-#define CX24116_FEC_DVBS      (0x20)    /* Select DVB-S demodulator, else DVB-S2 */
+/* mask to determine configured fec (not tuned) or actual fec (tuned) */
+#define CX24116_FEC_FECMASK   (0x1f)
+
+/* Select DVB-S demodulator, else DVB-S2 */
+#define CX24116_FEC_DVBS      (0x20)
 #define CX24116_FEC_UNKNOWN   (0x40)    /* Unknown/unused */
-#define CX24116_FEC_PILOT     (0x80)    /* Pilot mode requested when tuning else always reset when tuned */
+
+/* Pilot mode requested when tuning else always reset when tuned */
+#define CX24116_FEC_PILOT     (0x80)
 
 /* arg buffer size */
 #define CX24116_ARGLEN (0x1e)
@@ -116,12 +127,17 @@
 
 /* DiSEqC tone burst */
 static int toneburst = 1;
+module_param(toneburst, int, 0644);
+MODULE_PARM_DESC(toneburst, "DiSEqC toneburst 0=OFF, 1=TONE CACHE, "\
+	"2=MESSAGE CACHE (default:1)");
 
 /* SNR measurements */
-static int esno_snr = 0;
+static int esno_snr;
+module_param(esno_snr, int, 0644);
+MODULE_PARM_DESC(debug, "SNR return units, 0=PERCENTAGE 0-100, "\
+	"1=ESNO(db * 10) (default:0)");
 
-enum cmds
-{
+enum cmds {
 	CMD_SET_VCO     = 0x10,
 	CMD_TUNEREQUEST = 0x11,
 	CMD_MPEGCONFIG  = 0x13,
@@ -138,8 +154,7 @@
 };
 
 /* The Demod/Tuner can't easily provide these, we cache them */
-struct cx24116_tuning
-{
+struct cx24116_tuning {
 	u32 frequency;
 	u32 symbol_rate;
 	fe_spectral_inversion_t inversion;
@@ -158,16 +173,14 @@
 };
 
 /* Basic commands that are sent to the firmware */
-struct cx24116_cmd
-{
+struct cx24116_cmd {
 	u8 len;
 	u8 args[CX24116_ARGLEN];
 };
 
-struct cx24116_state
-{
-	struct i2c_adapter* i2c;
-	const struct cx24116_config* config;
+struct cx24116_state {
+	struct i2c_adapter *i2c;
+	const struct cx24116_config *config;
 
 	struct dvb_frontend frontend;
 
@@ -179,19 +192,20 @@
 	struct cx24116_cmd dsec_cmd;
 };
 
-static int cx24116_writereg(struct cx24116_state* state, int reg, int data)
+static int cx24116_writereg(struct cx24116_state *state, int reg, int data)
 {
 	u8 buf[] = { reg, data };
 	struct i2c_msg msg = { .addr = state->config->demod_address,
 		.flags = 0, .buf = buf, .len = 2 };
 	int err;
 
-	if (debug>1)
+	if (debug > 1)
 		printk("cx24116: %s: write reg 0x%02x, value 0x%02x\n",
-						__func__,reg, data);
+			__func__, reg, data);
 
-	if ((err = i2c_transfer(state->i2c, &msg, 1)) != 1) {
-		printk("%s: writereg error(err == %i, reg == 0x%02x,"
+	err = i2c_transfer(state->i2c, &msg, 1);
+	if (err != 1) {
+		printk(KERN_ERR "%s: writereg error(err == %i, reg == 0x%02x,"
 			 " value == 0x%02x)\n", __func__, err, reg, data);
 		return -EREMOTEIO;
 	}
@@ -200,7 +214,8 @@
 }
 
 /* Bulk byte writes to a single I2C address, for 32k firmware load */
-static int cx24116_writeregN(struct cx24116_state* state, int reg, u8 *data, u16 len)
+static int cx24116_writeregN(struct cx24116_state *state, int reg,
+			     const u8 *data, u16 len)
 {
 	int ret = -EREMOTEIO;
 	struct i2c_msg msg;
@@ -221,12 +236,13 @@
 	msg.buf = buf;
 	msg.len = len + 1;
 
-	if (debug>1)
-		printk("cx24116: %s:  write regN 0x%02x, len = %d\n",
-						__func__,reg, len);
+	if (debug > 1)
+		printk(KERN_INFO "cx24116: %s:  write regN 0x%02x, len = %d\n",
+			__func__, reg, len);
 
-	if ((ret = i2c_transfer(state->i2c, &msg, 1)) != 1) {
-		printk("%s: writereg error(err == %i, reg == 0x%02x\n",
+	ret = i2c_transfer(state->i2c, &msg, 1);
+	if (ret != 1) {
+		printk(KERN_ERR "%s: writereg error(err == %i, reg == 0x%02x\n",
 			 __func__, ret, reg);
 		ret = -EREMOTEIO;
 	}
@@ -237,30 +253,35 @@
 	return ret;
 }
 
-static int cx24116_readreg(struct cx24116_state* state, u8 reg)
+static int cx24116_readreg(struct cx24116_state *state, u8 reg)
 {
 	int ret;
 	u8 b0[] = { reg };
 	u8 b1[] = { 0 };
 	struct i2c_msg msg[] = {
-		{ .addr = state->config->demod_address, .flags = 0, .buf = b0, .len = 1 },
-		{ .addr = state->config->demod_address, .flags = I2C_M_RD, .buf = b1, .len = 1 }
+		{ .addr = state->config->demod_address, .flags = 0,
+			.buf = b0, .len = 1 },
+		{ .addr = state->config->demod_address, .flags = I2C_M_RD,
+			.buf = b1, .len = 1 }
 	};
 
 	ret = i2c_transfer(state->i2c, msg, 2);
 
 	if (ret != 2) {
-		printk("%s: reg=0x%x (error=%d)\n", __func__, reg, ret);
+		printk(KERN_ERR "%s: reg=0x%x (error=%d)\n",
+			__func__, reg, ret);
 		return ret;
 	}
 
-	if (debug>1)
-		printk("cx24116: read reg 0x%02x, value 0x%02x\n",reg, b1[0]);
+	if (debug > 1)
+		printk(KERN_INFO "cx24116: read reg 0x%02x, value 0x%02x\n",
+			reg, b1[0]);
 
 	return b1[0];
 }
 
-static int cx24116_set_inversion(struct cx24116_state* state, fe_spectral_inversion_t inversion)
+static int cx24116_set_inversion(struct cx24116_state *state,
+	fe_spectral_inversion_t inversion)
 {
 	dprintk("%s(%d)\n", __func__, inversion);
 
@@ -308,10 +329,10 @@
  * Eg.(2/3) szap "Zone Horror"
  *
  * mask/val = 0x04, 0x20
- * status 1f | signal c3c0 | snr a333 | ber 00000098 | unc 00000000 | FE_HAS_LOCK
+ * status 1f | signal c3c0 | snr a333 | ber 00000098 | unc 0 | FE_HAS_LOCK
  *
  * mask/val = 0x04, 0x30
- * status 1f | signal c3c0 | snr a333 | ber 00000000 | unc 00000000 | FE_HAS_LOCK
+ * status 1f | signal c3c0 | snr a333 | ber 00000000 | unc 0 | FE_HAS_LOCK
  *
  * After tuning FECSTATUS contains actual FEC
  * in use numbered 1 through to 8 for 1/2 .. 2/3 etc
@@ -389,18 +410,16 @@
   */
 };
 
-static int cx24116_lookup_fecmod(struct cx24116_state* state,
+static int cx24116_lookup_fecmod(struct cx24116_state *state,
 	fe_modulation_t m, fe_code_rate_t f)
 {
 	int i, ret = -EOPNOTSUPP;
 
 	dprintk("%s(0x%02x,0x%02x)\n", __func__, m, f);
 
-	for(i=0 ; i < sizeof(CX24116_MODFEC_MODES) / sizeof(struct cx24116_modfec) ; i++)
-	{
-		if( (m == CX24116_MODFEC_MODES[i].modulation) &&
-			(f == CX24116_MODFEC_MODES[i].fec) )
-			{
+	for (i = 0; i < ARRAY_SIZE(CX24116_MODFEC_MODES); i++) {
+		if ((m == CX24116_MODFEC_MODES[i].modulation) &&
+			(f == CX24116_MODFEC_MODES[i].fec)) {
 				ret = i;
 				break;
 			}
@@ -409,7 +428,8 @@
 	return ret;
 }
 
-static int cx24116_set_fec(struct cx24116_state* state, fe_modulation_t mod, fe_code_rate_t fec)
+static int cx24116_set_fec(struct cx24116_state *state,
+	fe_modulation_t mod, fe_code_rate_t fec)
 {
 	int ret = 0;
 
@@ -417,7 +437,7 @@
 
 	ret = cx24116_lookup_fecmod(state, mod, fec);
 
-	if(ret < 0)
+	if (ret < 0)
 		return ret;
 
 	state->dnxt.fec = fec;
@@ -429,7 +449,7 @@
 	return 0;
 }
 
-static int cx24116_set_symbolrate(struct cx24116_state* state, u32 rate)
+static int cx24116_set_symbolrate(struct cx24116_state *state, u32 rate)
 {
 	dprintk("%s(%d)\n", __func__, rate);
 
@@ -446,42 +466,49 @@
 	return 0;
 }
 
-static int cx24116_load_firmware (struct dvb_frontend* fe, const struct firmware *fw);
+static int cx24116_load_firmware(struct dvb_frontend *fe,
+	const struct firmware *fw);
 
-static int cx24116_firmware_ondemand(struct dvb_frontend* fe)
+static int cx24116_firmware_ondemand(struct dvb_frontend *fe)
 {
 	struct cx24116_state *state = fe->demodulator_priv;
 	const struct firmware *fw;
 	int ret = 0;
 
-	dprintk("%s()\n",__func__);
+	dprintk("%s()\n", __func__);
 
-	if (cx24116_readreg(state, 0x20) > 0)
-	{
+	if (cx24116_readreg(state, 0x20) > 0) {
 
 		if (state->skip_fw_load)
 			return 0;
 
 		/* Load firmware */
-		/* request the firmware, this will block until someone uploads it */
-		printk("%s: Waiting for firmware upload (%s)...\n", __func__, CX24116_DEFAULT_FIRMWARE);
-		ret = request_firmware(&fw, CX24116_DEFAULT_FIRMWARE, &state->i2c->dev);
-		printk("%s: Waiting for firmware upload(2)...\n", __func__);
+		/* request the firmware, this will block until loaded */
+		printk(KERN_INFO "%s: Waiting for firmware upload (%s)...\n",
+			__func__, CX24116_DEFAULT_FIRMWARE);
+		ret = request_firmware(&fw, CX24116_DEFAULT_FIRMWARE,
+			&state->i2c->dev);
+		printk(KERN_INFO "%s: Waiting for firmware upload(2)...\n",
+			__func__);
 		if (ret) {
-			printk("%s: No firmware uploaded (timeout or file not found?)\n", __func__);
+			printk(KERN_ERR "%s: No firmware uploaded "
+				"(timeout or file not found?)\n", __func__);
 			return ret;
 		}
 
-		/* Make sure we don't recurse back through here during loading */
+		/* Make sure we don't recurse back through here
+		 * during loading */
 		state->skip_fw_load = 1;
 
 		ret = cx24116_load_firmware(fe, fw);
 		if (ret)
-			printk("%s: Writing firmware to device failed\n", __func__);
+			printk(KERN_ERR "%s: Writing firmware to device failed\n",
+				__func__);
 
 		release_firmware(fw);
 
-		printk("%s: Firmware upload %s\n", __func__, ret == 0 ? "complete" : "failed");
+		printk(KERN_INFO "%s: Firmware upload %s\n", __func__,
+			ret == 0 ? "complete" : "failed");
 
 		/* Ensure firmware is always loaded if required */
 		state->skip_fw_load = 0;
@@ -490,8 +517,10 @@
 	return ret;
 }
 
-/* Take a basic firmware command structure, format it and forward it for processing */
-static int cx24116_cmd_execute(struct dvb_frontend* fe, struct cx24116_cmd *cmd)
+/* Take a basic firmware command structure, format it
+ * and forward it for processing
+ */
+static int cx24116_cmd_execute(struct dvb_frontend *fe, struct cx24116_cmd *cmd)
 {
 	struct cx24116_state *state = fe->demodulator_priv;
 	int i, ret;
@@ -499,49 +528,49 @@
 	dprintk("%s()\n", __func__);
 
 	/* Load the firmware if required */
-	if ( (ret = cx24116_firmware_ondemand(fe)) != 0)
-	{
-		printk("%s(): Unable initialise the firmware\n", __func__);
+	ret = cx24116_firmware_ondemand(fe);
+	if (ret != 0) {
+		printk(KERN_ERR "%s(): Unable initialise the firmware\n",
+			__func__);
 		return ret;
 	}
 
 	/* Write the command */
-	for(i = 0; i < cmd->len ; i++)
-	{
+	for (i = 0; i < cmd->len ; i++) {
 		dprintk("%s: 0x%02x == 0x%02x\n", __func__, i, cmd->args[i]);
 		cx24116_writereg(state, i, cmd->args[i]);
 	}
 
 	/* Start execution and wait for cmd to terminate */
 	cx24116_writereg(state, CX24116_REG_EXECUTE, 0x01);
-	while( cx24116_readreg(state, CX24116_REG_EXECUTE) )
-	{
+	while (cx24116_readreg(state, CX24116_REG_EXECUTE)) {
 		msleep(10);
-		if(i++ > 64)
-		{
-			/* Avoid looping forever if the firmware does no respond */
-			printk("%s() Firmware not responding\n", __func__);
+		if (i++ > 64) {
+			/* Avoid looping forever if the firmware does
+				not respond */
+			printk(KERN_WARNING "%s() Firmware not responding\n",
+				__func__);
 			return -EREMOTEIO;
 		}
 	}
 	return 0;
 }
 
-static int cx24116_load_firmware (struct dvb_frontend* fe, const struct firmware *fw)
+static int cx24116_load_firmware(struct dvb_frontend *fe,
+	const struct firmware *fw)
 {
-	struct cx24116_state* state = fe->demodulator_priv;
+	struct cx24116_state *state = fe->demodulator_priv;
 	struct cx24116_cmd cmd;
 	int i, ret;
 	unsigned char vers[4];
 
 	dprintk("%s\n", __func__);
-	dprintk("Firmware is %zu bytes (%02x %02x .. %02x %02x)\n"
-			,fw->size
-			,fw->data[0]
-			,fw->data[1]
-			,fw->data[ fw->size-2 ]
-			,fw->data[ fw->size-1 ]
-			);
+	dprintk("Firmware is %zu bytes (%02x %02x .. %02x %02x)\n",
+			fw->size,
+			fw->data[0],
+			fw->data[1],
+			fw->data[fw->size-2],
+			fw->data[fw->size-1]);
 
 	/* Toggle 88x SRST pin to reset demod */
 	if (state->config->reset_device)
@@ -587,7 +616,7 @@
 	cmd.args[0x07] = 0x9d;
 	cmd.args[0x08] = 0xfc;
 	cmd.args[0x09] = 0x06;
-	cmd.len= 0x0a;
+	cmd.len = 0x0a;
 	ret = cx24116_cmd_execute(fe, &cmd);
 	if (ret != 0)
 		return ret;
@@ -598,7 +627,7 @@
 	cmd.args[0x00] = CMD_TUNERINIT;
 	cmd.args[0x01] = 0x00;
 	cmd.args[0x02] = 0x00;
-	cmd.len= 0x03;
+	cmd.len = 0x03;
 	ret = cx24116_cmd_execute(fe, &cmd);
 	if (ret != 0)
 		return ret;
@@ -615,36 +644,38 @@
 	else
 		cmd.args[0x04] = 0x02;
 	cmd.args[0x05] = 0x00;
-	cmd.len= 0x06;
+	cmd.len = 0x06;
 	ret = cx24116_cmd_execute(fe, &cmd);
 	if (ret != 0)
 		return ret;
 
 	/* Firmware CMD 35: Get firmware version */
 	cmd.args[0x00] = CMD_UPDFWVERS;
-	cmd.len= 0x02;
-	for(i=0; i<4; i++) {
+	cmd.len = 0x02;
+	for (i = 0; i < 4; i++) {
 		cmd.args[0x01] = i;
 		ret = cx24116_cmd_execute(fe, &cmd);
 		if (ret != 0)
 			return ret;
-		vers[i]= cx24116_readreg(state, CX24116_REG_MAILBOX);
+		vers[i] = cx24116_readreg(state, CX24116_REG_MAILBOX);
 	}
-	printk("%s: FW version %i.%i.%i.%i\n", __func__,
+	printk(KERN_INFO "%s: FW version %i.%i.%i.%i\n", __func__,
 		vers[0], vers[1], vers[2], vers[3]);
 
 	return 0;
 }
 
-static int cx24116_set_voltage(struct dvb_frontend* fe, fe_sec_voltage_t voltage)
+static int cx24116_set_voltage(struct dvb_frontend *fe,
+	fe_sec_voltage_t voltage)
 {
 	/* The isl6421 module will override this function in the fops. */
-	dprintk("%s() This should never appear if the isl6421 module is loaded correctly\n",__func__);
+	dprintk("%s() This should never appear if the isl6421 module "
+		"is loaded correctly\n", __func__);
 
 	return -EOPNOTSUPP;
 }
 
-static int cx24116_read_status(struct dvb_frontend* fe, fe_status_t* status)
+static int cx24116_read_status(struct dvb_frontend *fe, fe_status_t *status)
 {
 	struct cx24116_state *state = fe->demodulator_priv;
 
@@ -666,22 +697,23 @@
 	return 0;
 }
 
-static int cx24116_read_ber(struct dvb_frontend* fe, u32* ber)
+static int cx24116_read_ber(struct dvb_frontend *fe, u32 *ber)
 {
 	struct cx24116_state *state = fe->demodulator_priv;
 
 	dprintk("%s()\n", __func__);
 
-	*ber =  ( cx24116_readreg(state, CX24116_REG_BER24) << 24 ) |
-		( cx24116_readreg(state, CX24116_REG_BER16) << 16 ) |
-		( cx24116_readreg(state, CX24116_REG_BER8 ) << 8  ) |
-		  cx24116_readreg(state, CX24116_REG_BER0 );
+	*ber =  (cx24116_readreg(state, CX24116_REG_BER24) << 24) |
+		(cx24116_readreg(state, CX24116_REG_BER16) << 16) |
+		(cx24116_readreg(state, CX24116_REG_BER8)  << 8)  |
+		 cx24116_readreg(state, CX24116_REG_BER0);
 
 	return 0;
 }
 
 /* TODO Determine function and scale appropriately */
-static int cx24116_read_signal_strength(struct dvb_frontend* fe, u16* signal_strength)
+static int cx24116_read_signal_strength(struct dvb_frontend *fe,
+	u16 *signal_strength)
 {
 	struct cx24116_state *state = fe->demodulator_priv;
 	struct cx24116_cmd cmd;
@@ -692,39 +724,43 @@
 
 	/* Firmware CMD 19: Get AGC */
 	cmd.args[0x00] = CMD_GETAGC;
-	cmd.len= 0x01;
+	cmd.len = 0x01;
 	ret = cx24116_cmd_execute(fe, &cmd);
 	if (ret != 0)
 		return ret;
 
-	sig_reading = ( cx24116_readreg(state, CX24116_REG_SSTATUS) & CX24116_SIGNAL_MASK ) |
-		( cx24116_readreg(state, CX24116_REG_SIGNAL) << 6 );
-	*signal_strength= 0 - sig_reading;
+	sig_reading =
+		(cx24116_readreg(state,
+			CX24116_REG_SSTATUS) & CX24116_SIGNAL_MASK) |
+		(cx24116_readreg(state, CX24116_REG_SIGNAL) << 6);
+	*signal_strength = 0 - sig_reading;
 
-	dprintk("%s: raw / cooked = 0x%04x / 0x%04x\n", __func__, sig_reading, *signal_strength);
+	dprintk("%s: raw / cooked = 0x%04x / 0x%04x\n",
+		__func__, sig_reading, *signal_strength);
 
 	return 0;
 }
 
 /* SNR (0..100)% = (sig & 0xf0) * 10 + (sig & 0x0f) * 10 / 16 */
-static int cx24116_read_snr_pct(struct dvb_frontend* fe, u16* snr)
+static int cx24116_read_snr_pct(struct dvb_frontend *fe, u16 *snr)
 {
 	struct cx24116_state *state = fe->demodulator_priv;
 	u8 snr_reading;
 	static const u32 snr_tab[] = { /* 10 x Table (rounded up) */
-		0x00000,0x0199A,0x03333,0x04ccD,0x06667,
-			0x08000,0x0999A,0x0b333,0x0cccD,0x0e667,
-		0x10000,0x1199A,0x13333,0x14ccD,0x16667,0x18000 };
+		0x00000, 0x0199A, 0x03333, 0x04ccD, 0x06667,
+		0x08000, 0x0999A, 0x0b333, 0x0cccD, 0x0e667,
+		0x10000, 0x1199A, 0x13333, 0x14ccD, 0x16667,
+		0x18000 };
 
 	dprintk("%s()\n", __func__);
 
 	snr_reading = cx24116_readreg(state, CX24116_REG_QUALITY0);
 
-	if(snr_reading >= 0xa0 /* 100% */)
+	if (snr_reading >= 0xa0 /* 100% */)
 		*snr = 0xffff;
 	else
-		*snr = snr_tab [ ( snr_reading & 0xf0 )   >> 4 ] +
-			( snr_tab [ ( snr_reading & 0x0f ) ] >> 4 );
+		*snr = snr_tab[(snr_reading & 0xf0) >> 4] +
+			(snr_tab[(snr_reading & 0x0f)] >> 4);
 
 	dprintk("%s: raw / cooked = 0x%02x / 0x%04x\n", __func__,
 		snr_reading, *snr);
@@ -736,7 +772,7 @@
  * ESNO, from 0->30db (values 0->300). We provide this value by
  * default.
  */
-static int cx24116_read_snr_esno(struct dvb_frontend* fe, u16* snr)
+static int cx24116_read_snr_esno(struct dvb_frontend *fe, u16 *snr)
 {
 	struct cx24116_state *state = fe->demodulator_priv;
 
@@ -750,7 +786,7 @@
 	return 0;
 }
 
-static int cx24116_read_snr(struct dvb_frontend* fe, u16* snr)
+static int cx24116_read_snr(struct dvb_frontend *fe, u16 *snr)
 {
 	if (esno_snr == 1)
 		return cx24116_read_snr_esno(fe, snr);
@@ -758,27 +794,27 @@
 		return cx24116_read_snr_pct(fe, snr);
 }
 
-static int cx24116_read_ucblocks(struct dvb_frontend* fe, u32* ucblocks)
+static int cx24116_read_ucblocks(struct dvb_frontend *fe, u32 *ucblocks)
 {
 	struct cx24116_state *state = fe->demodulator_priv;
 
 	dprintk("%s()\n", __func__);
 
-	*ucblocks = ( cx24116_readreg(state, CX24116_REG_UCB8) << 8 ) |
+	*ucblocks = (cx24116_readreg(state, CX24116_REG_UCB8) << 8) |
 		cx24116_readreg(state, CX24116_REG_UCB0);
 
 	return 0;
 }
 
 /* Overwrite the current tuning params, we are about to tune */
-static void cx24116_clone_params(struct dvb_frontend* fe)
+static void cx24116_clone_params(struct dvb_frontend *fe)
 {
 	struct cx24116_state *state = fe->demodulator_priv;
 	memcpy(&state->dcur, &state->dnxt, sizeof(state->dcur));
 }
 
 /* Wait for LNB */
-static int cx24116_wait_for_lnb(struct dvb_frontend* fe)
+static int cx24116_wait_for_lnb(struct dvb_frontend *fe)
 {
 	struct cx24116_state *state = fe->demodulator_priv;
 	int i;
@@ -787,7 +823,7 @@
 		cx24116_readreg(state, CX24116_REG_QSTATUS));
 
 	/* Wait for up to 300 ms */
-	for(i = 0; i < 30 ; i++) {
+	for (i = 0; i < 30 ; i++) {
 		if (cx24116_readreg(state, CX24116_REG_QSTATUS) & 0x20)
 			return 0;
 		msleep(10);
@@ -798,20 +834,21 @@
 	return -ETIMEDOUT; /* -EBUSY ? */
 }
 
-static int cx24116_set_tone(struct dvb_frontend* fe, fe_sec_tone_mode_t tone)
+static int cx24116_set_tone(struct dvb_frontend *fe,
+	fe_sec_tone_mode_t tone)
 {
 	struct cx24116_cmd cmd;
 	int ret;
 
 	dprintk("%s(%d)\n", __func__, tone);
-	if ( (tone != SEC_TONE_ON) && (tone != SEC_TONE_OFF) ) {
-		printk("%s: Invalid, tone=%d\n", __func__, tone);
+	if ((tone != SEC_TONE_ON) && (tone != SEC_TONE_OFF)) {
+		printk(KERN_ERR "%s: Invalid, tone=%d\n", __func__, tone);
 		return -EINVAL;
 	}
 
 	/* Wait for LNB ready */
 	ret = cx24116_wait_for_lnb(fe);
-	if(ret != 0)
+	if (ret != 0)
 		return ret;
 
 	/* Min delay time after DiSEqC send */
@@ -820,7 +857,7 @@
 	/* This is always done before the tone is set */
 	cmd.args[0x00] = CMD_SET_TONEPRE;
 	cmd.args[0x01] = 0x00;
-	cmd.len= 0x02;
+	cmd.len = 0x02;
 	ret = cx24116_cmd_execute(fe, &cmd);
 	if (ret != 0)
 		return ret;
@@ -836,11 +873,11 @@
 		cmd.args[0x03] = 0x01;
 		break;
 	case SEC_TONE_OFF:
-		dprintk("%s: setting tone off\n",__func__);
+		dprintk("%s: setting tone off\n", __func__);
 		cmd.args[0x03] = 0x00;
 		break;
 	}
-	cmd.len= 0x04;
+	cmd.len = 0x04;
 
 	/* Min delay time before DiSEqC send */
 	msleep(15); /* XXX determine is FW does this, see send_diseqc/burst */
@@ -849,7 +886,7 @@
 }
 
 /* Initialise DiSEqC */
-static int cx24116_diseqc_init(struct dvb_frontend* fe)
+static int cx24116_diseqc_init(struct dvb_frontend *fe)
 {
 	struct cx24116_state *state = fe->demodulator_priv;
 	struct cx24116_cmd cmd;
@@ -864,7 +901,7 @@
 	cmd.args[0x05] = 0x28;
 	cmd.args[0x06] = (toneburst == CX24116_DISEQC_TONEOFF) ? 0x00 : 0x01;
 	cmd.args[0x07] = 0x01;
-	cmd.len= 0x08;
+	cmd.len = 0x08;
 	ret = cx24116_cmd_execute(fe, &cmd);
 	if (ret != 0)
 		return ret;
@@ -878,36 +915,38 @@
 	/* Unknown */
 	state->dsec_cmd.args[CX24116_DISEQC_ARG2_2] = 0x02;
 	state->dsec_cmd.args[CX24116_DISEQC_ARG3_0] = 0x00;
-	state->dsec_cmd.args[CX24116_DISEQC_ARG4_0] = 0x00; /* Continuation flag? */
+	/* Continuation flag? */
+	state->dsec_cmd.args[CX24116_DISEQC_ARG4_0] = 0x00;
 
 	/* DiSEqC message length */
 	state->dsec_cmd.args[CX24116_DISEQC_MSGLEN] = 0x00;
 
 	/* Command length */
-	state->dsec_cmd.len= CX24116_DISEQC_MSGOFS;
+	state->dsec_cmd.len = CX24116_DISEQC_MSGOFS;
 
 	return 0;
 }
 
 /* Send DiSEqC message with derived burst (hack) || previous burst */
-static int cx24116_send_diseqc_msg(struct dvb_frontend* fe, struct dvb_diseqc_master_cmd *d)
+static int cx24116_send_diseqc_msg(struct dvb_frontend *fe,
+	struct dvb_diseqc_master_cmd *d)
 {
 	struct cx24116_state *state = fe->demodulator_priv;
 	int i, ret;
 
 	/* Dump DiSEqC message */
 	if (debug) {
-		printk("cx24116: %s(", __func__);
-		for(i = 0 ; i < d->msg_len ;) {
-			printk("0x%02x", d->msg[i]);
-			if(++i < d->msg_len)
-				printk(", ");
-			}
+		printk(KERN_INFO "cx24116: %s(", __func__);
+		for (i = 0 ; i < d->msg_len ;) {
+			printk(KERN_INFO "0x%02x", d->msg[i]);
+			if (++i < d->msg_len)
+				printk(KERN_INFO ", ");
+		}
 		printk(") toneburst=%d\n", toneburst);
 	}
 
 	/* Validate length */
-	if(d->msg_len > (CX24116_ARGLEN - CX24116_DISEQC_MSGOFS))
+	if (d->msg_len > (CX24116_ARGLEN - CX24116_DISEQC_MSGOFS))
 		return -EINVAL;
 
 	/* DiSEqC message */
@@ -918,18 +957,19 @@
 	state->dsec_cmd.args[CX24116_DISEQC_MSGLEN] = d->msg_len;
 
 	/* Command length */
-	state->dsec_cmd.len= CX24116_DISEQC_MSGOFS + state->dsec_cmd.args[CX24116_DISEQC_MSGLEN];
+	state->dsec_cmd.len = CX24116_DISEQC_MSGOFS +
+		state->dsec_cmd.args[CX24116_DISEQC_MSGLEN];
 
 	/* DiSEqC toneburst */
-	if(toneburst == CX24116_DISEQC_MESGCACHE)
+	if (toneburst == CX24116_DISEQC_MESGCACHE)
 		/* Message is cached */
 		return 0;
 
-	else if(toneburst == CX24116_DISEQC_TONEOFF)
+	else if (toneburst == CX24116_DISEQC_TONEOFF)
 		/* Message is sent without burst */
 		state->dsec_cmd.args[CX24116_DISEQC_BURST] = 0;
 
-	else if(toneburst == CX24116_DISEQC_TONECACHE) {
+	else if (toneburst == CX24116_DISEQC_TONECACHE) {
 		/*
 		 * Message is sent with derived else cached burst
 		 *
@@ -948,15 +988,17 @@
 		 *              Y = VOLTAGE             (0=13V, 1=18V)
 		 *              Z = BAND                (0=LOW, 1=HIGH(22K))
 		 */
-		if(d->msg_len >= 4 && d->msg[2] == 0x38)
-			state->dsec_cmd.args[CX24116_DISEQC_BURST] = ((d->msg[3] & 4) >> 2);
-		if(debug)
-			dprintk("%s burst=%d\n", __func__, state->dsec_cmd.args[CX24116_DISEQC_BURST]);
+		if (d->msg_len >= 4 && d->msg[2] == 0x38)
+			state->dsec_cmd.args[CX24116_DISEQC_BURST] =
+				((d->msg[3] & 4) >> 2);
+		if (debug)
+			dprintk("%s burst=%d\n", __func__,
+				state->dsec_cmd.args[CX24116_DISEQC_BURST]);
 	}
 
 	/* Wait for LNB ready */
 	ret = cx24116_wait_for_lnb(fe);
-	if(ret != 0)
+	if (ret != 0)
 		return ret;
 
 	/* Wait for voltage/min repeat delay */
@@ -964,7 +1006,7 @@
 
 	/* Command */
 	ret = cx24116_cmd_execute(fe, &state->dsec_cmd);
-	if(ret != 0)
+	if (ret != 0)
 		return ret;
 	/*
 	 * Wait for send
@@ -976,29 +1018,33 @@
 	 *  12.5ms burst        +
 	 * >15ms delay            (XXX determine if FW does this, see set_tone)
 	 */
-	msleep( (state->dsec_cmd.args[CX24116_DISEQC_MSGLEN] << 4) + ((toneburst == CX24116_DISEQC_TONEOFF) ? 30 : 60) );
+	msleep((state->dsec_cmd.args[CX24116_DISEQC_MSGLEN] << 4) +
+		((toneburst == CX24116_DISEQC_TONEOFF) ? 30 : 60));
 
 	return 0;
 }
 
 /* Send DiSEqC burst */
-static int cx24116_diseqc_send_burst(struct dvb_frontend* fe, fe_sec_mini_cmd_t burst)
+static int cx24116_diseqc_send_burst(struct dvb_frontend *fe,
+	fe_sec_mini_cmd_t burst)
 {
 	struct cx24116_state *state = fe->demodulator_priv;
 	int ret;
 
-	dprintk("%s(%d) toneburst=%d\n",__func__, burst, toneburst);
+	dprintk("%s(%d) toneburst=%d\n", __func__, burst, toneburst);
 
 	/* DiSEqC burst */
 	if (burst == SEC_MINI_A)
-		state->dsec_cmd.args[CX24116_DISEQC_BURST] = CX24116_DISEQC_MINI_A;
-	else if(burst == SEC_MINI_B)
-		state->dsec_cmd.args[CX24116_DISEQC_BURST] = CX24116_DISEQC_MINI_B;
+		state->dsec_cmd.args[CX24116_DISEQC_BURST] =
+			CX24116_DISEQC_MINI_A;
+	else if (burst == SEC_MINI_B)
+		state->dsec_cmd.args[CX24116_DISEQC_BURST] =
+			CX24116_DISEQC_MINI_B;
 	else
 		return -EINVAL;
 
 	/* DiSEqC toneburst */
-	if(toneburst != CX24116_DISEQC_MESGCACHE)
+	if (toneburst != CX24116_DISEQC_MESGCACHE)
 		/* Burst is cached */
 		return 0;
 
@@ -1006,7 +1052,7 @@
 
 	/* Wait for LNB ready */
 	ret = cx24116_wait_for_lnb(fe);
-	if(ret != 0)
+	if (ret != 0)
 		return ret;
 
 	/* Wait for voltage/min repeat delay */
@@ -1014,7 +1060,7 @@
 
 	/* Command */
 	ret = cx24116_cmd_execute(fe, &state->dsec_cmd);
-	if(ret != 0)
+	if (ret != 0)
 		return ret;
 
 	/*
@@ -1027,34 +1073,32 @@
 	 *  12.5ms burst        +
 	 * >15ms delay            (XXX determine if FW does this, see set_tone)
 	 */
-	msleep( (state->dsec_cmd.args[CX24116_DISEQC_MSGLEN] << 4) + 60 );
+	msleep((state->dsec_cmd.args[CX24116_DISEQC_MSGLEN] << 4) + 60);
 
 	return 0;
 }
 
-static void cx24116_release(struct dvb_frontend* fe)
+static void cx24116_release(struct dvb_frontend *fe)
 {
-	struct cx24116_state* state = fe->demodulator_priv;
-	dprintk("%s\n",__func__);
+	struct cx24116_state *state = fe->demodulator_priv;
+	dprintk("%s\n", __func__);
 	kfree(state);
 }
 
 static struct dvb_frontend_ops cx24116_ops;
 
-struct dvb_frontend* cx24116_attach(const struct cx24116_config* config,
-				    struct i2c_adapter* i2c)
+struct dvb_frontend *cx24116_attach(const struct cx24116_config *config,
+	struct i2c_adapter *i2c)
 {
-	struct cx24116_state* state = NULL;
+	struct cx24116_state *state = NULL;
 	int ret;
 
-	dprintk("%s\n",__func__);
+	dprintk("%s\n", __func__);
 
 	/* allocate memory for the internal state */
 	state = kmalloc(sizeof(struct cx24116_state), GFP_KERNEL);
-	if (state == NULL) {
-		printk("Unable to kmalloc\n");
+	if (state == NULL)
 		goto error1;
-	}
 
 	/* setup the state */
 	memset(state, 0, sizeof(struct cx24116_state));
@@ -1063,32 +1107,36 @@
 	state->i2c = i2c;
 
 	/* check if the demod is present */
-	ret = (cx24116_readreg(state, 0xFF) << 8) | cx24116_readreg(state, 0xFE);
+	ret = (cx24116_readreg(state, 0xFF) << 8) |
+		cx24116_readreg(state, 0xFE);
 	if (ret != 0x0501) {
-		printk("Invalid probe, probably not a CX24116 device\n");
+		printk(KERN_INFO "Invalid probe, probably not a CX24116 device\n");
 		goto error2;
 	}
 
 	/* create dvb_frontend */
-	memcpy(&state->frontend.ops, &cx24116_ops, sizeof(struct dvb_frontend_ops));
+	memcpy(&state->frontend.ops, &cx24116_ops,
+		sizeof(struct dvb_frontend_ops));
 	state->frontend.demodulator_priv = state;
 	return &state->frontend;
 
 error2: kfree(state);
 error1: return NULL;
 }
+EXPORT_SYMBOL(cx24116_attach);
+
 /*
  * Initialise or wake up device
  *
  * Power config will reset and load initial firmware if required
  */
-static int cx24116_initfe(struct dvb_frontend* fe)
+static int cx24116_initfe(struct dvb_frontend *fe)
 {
-	struct cx24116_state* state = fe->demodulator_priv;
+	struct cx24116_state *state = fe->demodulator_priv;
 	struct cx24116_cmd cmd;
 	int ret;
 
-	dprintk("%s()\n",__func__);
+	dprintk("%s()\n", __func__);
 
 	/* Power on */
 	cx24116_writereg(state, 0xe0, 0);
@@ -1098,9 +1146,9 @@
 	/* Firmware CMD 36: Power config */
 	cmd.args[0x00] = CMD_TUNERSLEEP;
 	cmd.args[0x01] = 0;
-	cmd.len= 0x02;
+	cmd.len = 0x02;
 	ret = cx24116_cmd_execute(fe, &cmd);
-	if(ret != 0)
+	if (ret != 0)
 		return ret;
 
 	return cx24116_diseqc_init(fe);
@@ -1109,20 +1157,20 @@
 /*
  * Put device to sleep
  */
-static int cx24116_sleep(struct dvb_frontend* fe)
+static int cx24116_sleep(struct dvb_frontend *fe)
 {
-	struct cx24116_state* state = fe->demodulator_priv;
+	struct cx24116_state *state = fe->demodulator_priv;
 	struct cx24116_cmd cmd;
 	int ret;
 
-	dprintk("%s()\n",__func__);
+	dprintk("%s()\n", __func__);
 
 	/* Firmware CMD 36: Power config */
 	cmd.args[0x00] = CMD_TUNERSLEEP;
 	cmd.args[0x01] = 1;
-	cmd.len= 0x02;
+	cmd.len = 0x02;
 	ret = cx24116_cmd_execute(fe, &cmd);
-	if(ret != 0)
+	if (ret != 0)
 		return ret;
 
 	/* Power off (Shutdown clocks) */
@@ -1133,13 +1181,15 @@
 	return 0;
 }
 
-static int cx24116_set_property(struct dvb_frontend *fe, struct dtv_property* tvp)
+static int cx24116_set_property(struct dvb_frontend *fe,
+	struct dtv_property *tvp)
 {
 	dprintk("%s(..)\n", __func__);
 	return 0;
 }
 
-static int cx24116_get_property(struct dvb_frontend *fe, struct dtv_property* tvp)
+static int cx24116_get_property(struct dvb_frontend *fe,
+	struct dtv_property *tvp)
 {
 	dprintk("%s(..)\n", __func__);
 	return 0;
@@ -1148,7 +1198,8 @@
 /* dvb-core told us to tune, the tv property cache will be complete,
  * it's safe for is to pull values and use them for tuning purposes.
  */
-static int cx24116_set_frontend(struct dvb_frontend* fe, struct dvb_frontend_parameters *p)
+static int cx24116_set_frontend(struct dvb_frontend *fe,
+	struct dvb_frontend_parameters *p)
 {
 	struct cx24116_state *state = fe->demodulator_priv;
 	struct dtv_frontend_properties *c = &fe->dtv_property_cache;
@@ -1156,96 +1207,102 @@
 	fe_status_t tunerstat;
 	int i, status, ret, retune;
 
-	dprintk("%s()\n",__func__);
+	dprintk("%s()\n", __func__);
 
-	switch(c->delivery_system) {
-		case SYS_DVBS:
-			dprintk("%s: DVB-S delivery system selected\n",__func__);
+	switch (c->delivery_system) {
+	case SYS_DVBS:
+		dprintk("%s: DVB-S delivery system selected\n", __func__);
 
-			/* Only QPSK is supported for DVB-S */
-			if(c->modulation != QPSK) {
-				dprintk("%s: unsupported modulation selected (%d)\n",
-					__func__, c->modulation);
-				return -EOPNOTSUPP;
-			}
+		/* Only QPSK is supported for DVB-S */
+		if (c->modulation != QPSK) {
+			dprintk("%s: unsupported modulation selected (%d)\n",
+				__func__, c->modulation);
+			return -EOPNOTSUPP;
+		}
 
-			/* Pilot doesn't exist in DVB-S, turn bit off */
+		/* Pilot doesn't exist in DVB-S, turn bit off */
+		state->dnxt.pilot_val = CX24116_PILOT_OFF;
+		retune = 1;
+
+		/* DVB-S only supports 0.35 */
+		if (c->rolloff != ROLLOFF_35) {
+			dprintk("%s: unsupported rolloff selected (%d)\n",
+				__func__, c->rolloff);
+			return -EOPNOTSUPP;
+		}
+		state->dnxt.rolloff_val = CX24116_ROLLOFF_035;
+		break;
+
+	case SYS_DVBS2:
+		dprintk("%s: DVB-S2 delivery system selected\n", __func__);
+
+		/*
+		 * NBC 8PSK/QPSK with DVB-S is supported for DVB-S2,
+		 * but not hardware auto detection
+		 */
+		if (c->modulation != PSK_8 && c->modulation != QPSK) {
+			dprintk("%s: unsupported modulation selected (%d)\n",
+				__func__, c->modulation);
+			return -EOPNOTSUPP;
+		}
+
+		switch (c->pilot) {
+		case PILOT_AUTO:	/* Not supported but emulated */
+			state->dnxt.pilot_val = (c->modulation == QPSK)
+				? CX24116_PILOT_OFF : CX24116_PILOT_ON;
+			retune = 2;
+			break;
+		case PILOT_OFF:
 			state->dnxt.pilot_val = CX24116_PILOT_OFF;
-			retune = 1;
+			break;
+		case PILOT_ON:
+			state->dnxt.pilot_val = CX24116_PILOT_ON;
+			break;
+		default:
+			dprintk("%s: unsupported pilot mode selected (%d)\n",
+				__func__, c->pilot);
+			return -EOPNOTSUPP;
+		}
 
-			/* DVB-S only supports 0.35 */
-			if(c->rolloff != ROLLOFF_35) {
-				dprintk("%s: unsupported rolloff selected (%d)\n",
-					__func__, c->rolloff);
-				return -EOPNOTSUPP;
-			}
+		switch (c->rolloff) {
+		case ROLLOFF_20:
+			state->dnxt.rolloff_val = CX24116_ROLLOFF_020;
+			break;
+		case ROLLOFF_25:
+			state->dnxt.rolloff_val = CX24116_ROLLOFF_025;
+			break;
+		case ROLLOFF_35:
 			state->dnxt.rolloff_val = CX24116_ROLLOFF_035;
 			break;
-
-		case SYS_DVBS2:
-			dprintk("%s: DVB-S2 delivery system selected\n",__func__);
-
-			/*
-			 * NBC 8PSK/QPSK with DVB-S is supported for DVB-S2,
-			 * but not hardware auto detection
-			 */
-			if(c->modulation != PSK_8 && c->modulation != QPSK) {
-				dprintk("%s: unsupported modulation selected (%d)\n",
-					__func__, c->modulation);
-				return -EOPNOTSUPP;
-			}
-
-			switch(c->pilot) {
-				case PILOT_AUTO:	/* Not supported but emulated */
-					retune = 2;	/* Fall-through */
-				case PILOT_OFF:
-					state->dnxt.pilot_val = CX24116_PILOT_OFF;
-					break;
-				case PILOT_ON:
-					state->dnxt.pilot_val = CX24116_PILOT_ON;
-					break;
-				default:
-					dprintk("%s: unsupported pilot mode selected (%d)\n",
-						__func__, c->pilot);
-					return -EOPNOTSUPP;
-			}
-
-			switch(c->rolloff) {
-				case ROLLOFF_20:
-					state->dnxt.rolloff_val= CX24116_ROLLOFF_020;
-					break;
-				case ROLLOFF_25:
-					state->dnxt.rolloff_val= CX24116_ROLLOFF_025;
-					break;
-				case ROLLOFF_35:
-					state->dnxt.rolloff_val= CX24116_ROLLOFF_035;
-					break;
-				case ROLLOFF_AUTO:	/* Rolloff must be explicit */
-				default:
-					dprintk("%s: unsupported rolloff selected (%d)\n",
-						__func__, c->rolloff);
-					return -EOPNOTSUPP;
-			}
-			break;
-
+		case ROLLOFF_AUTO:	/* Rolloff must be explicit */
 		default:
-			dprintk("%s: unsupported delivery system selected (%d)\n",
-				__func__, c->delivery_system);
+			dprintk("%s: unsupported rolloff selected (%d)\n",
+				__func__, c->rolloff);
 			return -EOPNOTSUPP;
+		}
+		break;
+
+	default:
+		dprintk("%s: unsupported delivery system selected (%d)\n",
+			__func__, c->delivery_system);
+		return -EOPNOTSUPP;
 	}
 	state->dnxt.modulation = c->modulation;
 	state->dnxt.frequency = c->frequency;
 	state->dnxt.pilot = c->pilot;
 	state->dnxt.rolloff = c->rolloff;
 
-	if ((ret = cx24116_set_inversion(state, c->inversion)) !=  0)
+	ret = cx24116_set_inversion(state, c->inversion);
+	if (ret !=  0)
 		return ret;
 
 	/* FEC_NONE/AUTO for DVB-S2 is not supported and detected here */
-	if ((ret = cx24116_set_fec(state, c->modulation, c->fec_inner)) !=  0)
+	ret = cx24116_set_fec(state, c->modulation, c->fec_inner);
+	if (ret !=  0)
 		return ret;
 
-	if ((ret = cx24116_set_symbolrate(state, c->symbol_rate)) !=  0)
+	ret = cx24116_set_symbolrate(state, c->symbol_rate);
+	if (ret !=  0)
 		return ret;
 
 	/* discard the 'current' tuning parameters and prepare to tune */
@@ -1271,7 +1328,7 @@
 	/* Set/Reset B/W */
 	cmd.args[0x00] = CMD_BANDWIDTH;
 	cmd.args[0x01] = 0x01;
-	cmd.len= 0x02;
+	cmd.len = 0x02;
 	ret = cx24116_cmd_execute(fe, &cmd);
 	if (ret != 0)
 		return ret;
@@ -1319,7 +1376,7 @@
 		cx24116_writereg(state, CX24116_REG_RATEDIV, 0x00);
 	}
 
-	cmd.len= 0x13;
+	cmd.len = 0x13;
 
 	/* We need to support pilot and non-pilot tuning in the
 	 * driver automatically. This is a workaround for because
@@ -1327,12 +1384,13 @@
 	 */
 	do {
 		/* Reset status register */
-		status = cx24116_readreg(state, CX24116_REG_SSTATUS) & CX24116_SIGNAL_MASK;
+		status = cx24116_readreg(state, CX24116_REG_SSTATUS)
+			& CX24116_SIGNAL_MASK;
 		cx24116_writereg(state, CX24116_REG_SSTATUS, status);
 
 		/* Tune */
 		ret = cx24116_cmd_execute(fe, &cmd);
-		if( ret != 0 )
+		if (ret != 0)
 			break;
 
 		/*
@@ -1341,28 +1399,27 @@
 		 * If we are able to tune then generally it occurs within 100ms.
 		 * If it takes longer, try a different toneburst setting.
 		 */
-		for(i = 0; i < 50 ; i++) {
+		for (i = 0; i < 50 ; i++) {
 			cx24116_read_status(fe, &tunerstat);
 			status = tunerstat & (FE_HAS_SIGNAL | FE_HAS_SYNC);
-			if(status == (FE_HAS_SIGNAL | FE_HAS_SYNC)) {
-				dprintk("%s: Tuned\n",__func__);
+			if (status == (FE_HAS_SIGNAL | FE_HAS_SYNC)) {
+				dprintk("%s: Tuned\n", __func__);
 				goto tuned;
 			}
 			msleep(10);
 		}
 
-		dprintk("%s: Not tuned\n",__func__);
+		dprintk("%s: Not tuned\n", __func__);
 
 		/* Toggle pilot bit when in auto-pilot */
-		if(state->dcur.pilot == PILOT_AUTO)
+		if (state->dcur.pilot == PILOT_AUTO)
 			cmd.args[0x07] ^= CX24116_PILOT_ON;
-	}
-	while(--retune);
+	} while (--retune);
 
 tuned:  /* Set/Reset B/W */
 	cmd.args[0x00] = CMD_BANDWIDTH;
 	cmd.args[0x01] = 0x00;
-	cmd.len= 0x02;
+	cmd.len = 0x02;
 	ret = cx24116_cmd_execute(fe, &cmd);
 	if (ret != 0)
 		return ret;
@@ -1407,17 +1464,7 @@
 	.set_frontend = cx24116_set_frontend,
 };
 
-module_param(debug, int, 0644);
-MODULE_PARM_DESC(debug, "Activates frontend debugging (default:0)");
-
-module_param(toneburst, int, 0644);
-MODULE_PARM_DESC(toneburst, "DiSEqC toneburst 0=OFF, 1=TONE CACHE, 2=MESSAGE CACHE (default:1)");
-
-module_param(esno_snr, int, 0644);
-MODULE_PARM_DESC(debug, "SNR return units, 0=PERCENTAGE 0-100, 1=ESNO(db * 10) (default:0)");
-
 MODULE_DESCRIPTION("DVB Frontend module for Conexant cx24116/cx24118 hardware");
 MODULE_AUTHOR("Steven Toth");
 MODULE_LICENSE("GPL");
 
-EXPORT_SYMBOL(cx24116_attach);
diff --git a/drivers/media/dvb/frontends/cx24116.h b/drivers/media/dvb/frontends/cx24116.h
index 8dbcec2..4cb3ddd 100644
--- a/drivers/media/dvb/frontends/cx24116.h
+++ b/drivers/media/dvb/frontends/cx24116.h
@@ -23,31 +23,32 @@
 
 #include <linux/dvb/frontend.h>
 
-struct cx24116_config
-{
+struct cx24116_config {
 	/* the demodulator's i2c address */
 	u8 demod_address;
 
 	/* Need to set device param for start_dma */
-	int (*set_ts_params)(struct dvb_frontend* fe, int is_punctured);
+	int (*set_ts_params)(struct dvb_frontend *fe, int is_punctured);
 
 	/* Need to reset device during firmware loading */
-	int (*reset_device)(struct dvb_frontend* fe);
+	int (*reset_device)(struct dvb_frontend *fe);
 
 	/* Need to set MPEG parameters */
 	u8 mpg_clk_pos_pol:0x02;
 };
 
 #if defined(CONFIG_DVB_CX24116) || defined(CONFIG_DVB_CX24116_MODULE)
-extern struct dvb_frontend* cx24116_attach(const struct cx24116_config* config,
-					   struct i2c_adapter* i2c);
+extern struct dvb_frontend *cx24116_attach(
+	const struct cx24116_config *config,
+	struct i2c_adapter *i2c);
 #else
-static inline struct dvb_frontend* cx24116_attach(const struct cx24116_config* config,
-						  struct i2c_adapter* i2c)
+static inline struct dvb_frontend *cx24116_attach(
+	const struct cx24116_config *config,
+	struct i2c_adapter *i2c)
 {
-	printk(KERN_WARNING "%s: driver disabled by Kconfig\n", __FUNCTION__);
+	printk(KERN_WARNING "%s: driver disabled by Kconfig\n", __func__);
 	return NULL;
 }
-#endif // CONFIG_DVB_CX24116
+#endif
 
 #endif /* CX24116_H */
diff --git a/drivers/media/dvb/frontends/cx24123.c b/drivers/media/dvb/frontends/cx24123.c
index 7156157..1a8c36f 100644
--- a/drivers/media/dvb/frontends/cx24123.c
+++ b/drivers/media/dvb/frontends/cx24123.c
@@ -33,7 +33,13 @@
 #define XTAL 10111000
 
 static int force_band;
+module_param(force_band, int, 0644);
+MODULE_PARM_DESC(force_band, "Force a specific band select "\
+	"(1-9, default:off).");
+
 static int debug;
+module_param(debug, int, 0644);
+MODULE_PARM_DESC(debug, "Activates frontend debugging (default:0)");
 
 #define info(args...) do { printk(KERN_INFO "CX24123: " args); } while (0)
 #define err(args...)  do { printk(KERN_ERR  "CX24123: " args); } while (0)
@@ -46,10 +52,9 @@
 		} \
 	} while (0)
 
-struct cx24123_state
-{
-	struct i2c_adapter* i2c;
-	const struct cx24123_config* config;
+struct cx24123_state {
+	struct i2c_adapter *i2c;
+	const struct cx24123_config *config;
 
 	struct dvb_frontend frontend;
 
@@ -70,8 +75,7 @@
 };
 
 /* Various tuner defaults need to be established for a given symbol rate Sps */
-static struct
-{
+static struct cx24123_AGC_val {
 	u32 symbolrate_low;
 	u32 symbolrate_high;
 	u32 VCAprogdata;
@@ -109,8 +113,7 @@
  * fixme: The bounds on the bands do not match the doc in real life.
  * fixme: Some of them have been moved, other might need adjustment.
  */
-static struct
-{
+static struct cx24123_bandselect_val {
 	u32 freq_low;
 	u32 freq_high;
 	u32 VCOdivider;
@@ -249,7 +252,8 @@
 
 	/* printk(KERN_DEBUG "wr(%02x): %02x %02x\n", i2c_addr, reg, data); */
 
-	if ((err = i2c_transfer(state->i2c, &msg, 1)) != 1) {
+	err = i2c_transfer(state->i2c, &msg, 1);
+	if (err != 1) {
 		printk("%s: writereg error(err == %i, reg == 0x%02x,"
 			 " data == 0x%02x)\n", __func__, err, reg, data);
 		return err;
@@ -284,7 +288,8 @@
 #define cx24123_writereg(state, reg, val) \
 	cx24123_i2c_writereg(state, state->config->demod_address, reg, val)
 
-static int cx24123_set_inversion(struct cx24123_state* state, fe_spectral_inversion_t inversion)
+static int cx24123_set_inversion(struct cx24123_state *state,
+	fe_spectral_inversion_t inversion)
 {
 	u8 nom_reg = cx24123_readreg(state, 0x0e);
 	u8 auto_reg = cx24123_readreg(state, 0x10);
@@ -311,7 +316,8 @@
 	return 0;
 }
 
-static int cx24123_get_inversion(struct cx24123_state* state, fe_spectral_inversion_t *inversion)
+static int cx24123_get_inversion(struct cx24123_state *state,
+	fe_spectral_inversion_t *inversion)
 {
 	u8 val;
 
@@ -328,18 +334,20 @@
 	return 0;
 }
 
-static int cx24123_set_fec(struct cx24123_state* state, fe_code_rate_t fec)
+static int cx24123_set_fec(struct cx24123_state *state, fe_code_rate_t fec)
 {
 	u8 nom_reg = cx24123_readreg(state, 0x0e) & ~0x07;
 
-	if ( (fec < FEC_NONE) || (fec > FEC_AUTO) )
+	if ((fec < FEC_NONE) || (fec > FEC_AUTO))
 		fec = FEC_AUTO;
 
 	/* Set the soft decision threshold */
-	if(fec == FEC_1_2)
-		cx24123_writereg(state, 0x43, cx24123_readreg(state, 0x43) | 0x01);
+	if (fec == FEC_1_2)
+		cx24123_writereg(state, 0x43,
+			cx24123_readreg(state, 0x43) | 0x01);
 	else
-		cx24123_writereg(state, 0x43, cx24123_readreg(state, 0x43) & ~0x01);
+		cx24123_writereg(state, 0x43,
+			cx24123_readreg(state, 0x43) & ~0x01);
 
 	switch (fec) {
 	case FEC_1_2:
@@ -388,11 +396,11 @@
 	return 0;
 }
 
-static int cx24123_get_fec(struct cx24123_state* state, fe_code_rate_t *fec)
+static int cx24123_get_fec(struct cx24123_state *state, fe_code_rate_t *fec)
 {
 	int ret;
 
-	ret = cx24123_readreg (state, 0x1b);
+	ret = cx24123_readreg(state, 0x1b);
 	if (ret < 0)
 		return ret;
 	ret = ret & 0x07;
@@ -433,16 +441,16 @@
 {
 	u32 exp, nearest = 0;
 	u32 div = a / b;
-	if(a % b >= b / 2) ++div;
-	if(div < (1 << 31))
-	{
-		for(exp = 1; div > exp; nearest++)
+	if (a % b >= b / 2)
+		++div;
+	if (div < (1 << 31)) {
+		for (exp = 1; div > exp; nearest++)
 			exp += exp;
 	}
 	return nearest;
 }
 
-static int cx24123_set_symbolrate(struct cx24123_state* state, u32 srate)
+static int cx24123_set_symbolrate(struct cx24123_state *state, u32 srate)
 {
 	u32 tmp, sample_rate, ratio, sample_gain;
 	u8 pll_mult;
@@ -498,9 +506,9 @@
 
 	cx24123_writereg(state, 0x01, pll_mult * 6);
 
-	cx24123_writereg(state, 0x08, (ratio >> 16) & 0x3f );
-	cx24123_writereg(state, 0x09, (ratio >>  8) & 0xff );
-	cx24123_writereg(state, 0x0a, (ratio      ) & 0xff );
+	cx24123_writereg(state, 0x08, (ratio >> 16) & 0x3f);
+	cx24123_writereg(state, 0x09, (ratio >> 8) & 0xff);
+	cx24123_writereg(state, 0x0a, ratio & 0xff);
 
 	/* also set the demodulator sample gain */
 	sample_gain = cx24123_int_log2(sample_rate, srate);
@@ -514,10 +522,12 @@
 }
 
 /*
- * Based on the required frequency and symbolrate, the tuner AGC has to be configured
- * and the correct band selected. Calculate those values
+ * Based on the required frequency and symbolrate, the tuner AGC has
+ * to be configured and the correct band selected.
+ * Calculate those values.
  */
-static int cx24123_pll_calculate(struct dvb_frontend* fe, struct dvb_frontend_parameters *p)
+static int cx24123_pll_calculate(struct dvb_frontend *fe,
+	struct dvb_frontend_parameters *p)
 {
 	struct cx24123_state *state = fe->demodulator_priv;
 	u32 ndiv = 0, adiv = 0, vco_div = 0;
@@ -525,6 +535,8 @@
 	int pump = 2;
 	int band = 0;
 	int num_bands = ARRAY_SIZE(cx24123_bandselect_vals);
+	struct cx24123_bandselect_val *bsv = NULL;
+	struct cx24123_AGC_val *agcv = NULL;
 
 	/* Defaults for low freq, low rate */
 	state->VCAarg = cx24123_AGC_vals[0].VCAprogdata;
@@ -532,58 +544,65 @@
 	state->bandselectarg = cx24123_bandselect_vals[0].progdata;
 	vco_div = cx24123_bandselect_vals[0].VCOdivider;
 
-	/* For the given symbol rate, determine the VCA, VGA and FILTUNE programming bits */
-	for (i = 0; i < ARRAY_SIZE(cx24123_AGC_vals); i++)
-	{
-		if ((cx24123_AGC_vals[i].symbolrate_low <= p->u.qpsk.symbol_rate) &&
-		    (cx24123_AGC_vals[i].symbolrate_high >= p->u.qpsk.symbol_rate) ) {
-			state->VCAarg = cx24123_AGC_vals[i].VCAprogdata;
-			state->VGAarg = cx24123_AGC_vals[i].VGAprogdata;
-			state->FILTune = cx24123_AGC_vals[i].FILTune;
+	/* For the given symbol rate, determine the VCA, VGA and
+	 * FILTUNE programming bits */
+	for (i = 0; i < ARRAY_SIZE(cx24123_AGC_vals); i++) {
+		agcv = &cx24123_AGC_vals[i];
+		if ((agcv->symbolrate_low <= p->u.qpsk.symbol_rate) &&
+		    (agcv->symbolrate_high >= p->u.qpsk.symbol_rate)) {
+			state->VCAarg = agcv->VCAprogdata;
+			state->VGAarg = agcv->VGAprogdata;
+			state->FILTune = agcv->FILTune;
 		}
 	}
 
 	/* determine the band to use */
-	if(force_band < 1 || force_band > num_bands)
-	{
-		for (i = 0; i < num_bands; i++)
-		{
-			if ((cx24123_bandselect_vals[i].freq_low <= p->frequency) &&
-			    (cx24123_bandselect_vals[i].freq_high >= p->frequency) )
+	if (force_band < 1 || force_band > num_bands) {
+		for (i = 0; i < num_bands; i++) {
+			bsv = &cx24123_bandselect_vals[i];
+			if ((bsv->freq_low <= p->frequency) &&
+				(bsv->freq_high >= p->frequency))
 				band = i;
 		}
-	}
-	else
+	} else
 		band = force_band - 1;
 
 	state->bandselectarg = cx24123_bandselect_vals[band].progdata;
 	vco_div = cx24123_bandselect_vals[band].VCOdivider;
 
 	/* determine the charge pump current */
-	if ( p->frequency < (cx24123_bandselect_vals[band].freq_low + cx24123_bandselect_vals[band].freq_high)/2 )
+	if (p->frequency < (cx24123_bandselect_vals[band].freq_low +
+		cx24123_bandselect_vals[band].freq_high) / 2)
 		pump = 0x01;
 	else
 		pump = 0x02;
 
 	/* Determine the N/A dividers for the requested lband freq (in kHz). */
-	/* Note: the reference divider R=10, frequency is in KHz, XTAL is in Hz */
-	ndiv = ( ((p->frequency * vco_div * 10) / (2 * XTAL / 1000)) / 32) & 0x1ff;
-	adiv = ( ((p->frequency * vco_div * 10) / (2 * XTAL / 1000)) % 32) & 0x1f;
+	/* Note: the reference divider R=10, frequency is in KHz,
+	 * XTAL is in Hz */
+	ndiv = (((p->frequency * vco_div * 10) /
+		(2 * XTAL / 1000)) / 32) & 0x1ff;
+	adiv = (((p->frequency * vco_div * 10) /
+		(2 * XTAL / 1000)) % 32) & 0x1f;
 
 	if (adiv == 0 && ndiv > 0)
 		ndiv--;
 
-	/* control bits 11, refdiv 11, charge pump polarity 1, charge pump current, ndiv, adiv */
-	state->pllarg = (3 << 19) | (3 << 17) | (1 << 16) | (pump << 14) | (ndiv << 5) | adiv;
+	/* control bits 11, refdiv 11, charge pump polarity 1,
+	 * charge pump current, ndiv, adiv */
+	state->pllarg = (3 << 19) | (3 << 17) | (1 << 16) |
+		(pump << 14) | (ndiv << 5) | adiv;
 
 	return 0;
 }
 
 /*
  * Tuner data is 21 bits long, must be left-aligned in data.
- * Tuner cx24109 is written through a dedicated 3wire interface on the demod chip.
+ * Tuner cx24109 is written through a dedicated 3wire interface
+ * on the demod chip.
  */
-static int cx24123_pll_writereg(struct dvb_frontend* fe, struct dvb_frontend_parameters *p, u32 data)
+static int cx24123_pll_writereg(struct dvb_frontend *fe,
+	struct dvb_frontend_parameters *p, u32 data)
 {
 	struct cx24123_state *state = fe->demodulator_priv;
 	unsigned long timeout;
@@ -610,7 +629,7 @@
 
 	/* send another 8 bytes, wait for the send to be completed */
 	timeout = jiffies + msecs_to_jiffies(40);
-	cx24123_writereg(state, 0x22, (data>>8) & 0xff );
+	cx24123_writereg(state, 0x22, (data >> 8) & 0xff);
 	while ((cx24123_readreg(state, 0x20) & 0x40) == 0) {
 		if (time_after(jiffies, timeout)) {
 			err("%s:  demodulator is not responding, "\
@@ -620,9 +639,10 @@
 		msleep(10);
 	}
 
-	/* send the lower 5 bits of this byte, padded with 3 LBB, wait for the send to be completed */
+	/* send the lower 5 bits of this byte, padded with 3 LBB,
+	 * wait for the send to be completed */
 	timeout = jiffies + msecs_to_jiffies(40);
-	cx24123_writereg(state, 0x22, (data) & 0xff );
+	cx24123_writereg(state, 0x22, (data) & 0xff);
 	while ((cx24123_readreg(state, 0x20) & 0x80)) {
 		if (time_after(jiffies, timeout)) {
 			err("%s:  demodulator is not responding," \
@@ -639,7 +659,8 @@
 	return 0;
 }
 
-static int cx24123_pll_tune(struct dvb_frontend* fe, struct dvb_frontend_parameters *p)
+static int cx24123_pll_tune(struct dvb_frontend *fe,
+	struct dvb_frontend_parameters *p)
 {
 	struct cx24123_state *state = fe->demodulator_priv;
 	u8 val;
@@ -690,7 +711,7 @@
 	return cx24123_writereg(state, 0x23, r);
 }
 
-static int cx24123_initfe(struct dvb_frontend* fe)
+static int cx24123_initfe(struct dvb_frontend *fe)
 {
 	struct cx24123_state *state = fe->demodulator_priv;
 	int i;
@@ -699,19 +720,22 @@
 
 	/* Configure the demod to a good set of defaults */
 	for (i = 0; i < ARRAY_SIZE(cx24123_regdata); i++)
-		cx24123_writereg(state, cx24123_regdata[i].reg, cx24123_regdata[i].data);
+		cx24123_writereg(state, cx24123_regdata[i].reg,
+			cx24123_regdata[i].data);
 
 	/* Set the LNB polarity */
-	if(state->config->lnb_polarity)
-		cx24123_writereg(state, 0x32, cx24123_readreg(state, 0x32) | 0x02);
+	if (state->config->lnb_polarity)
+		cx24123_writereg(state, 0x32,
+			cx24123_readreg(state, 0x32) | 0x02);
 
 	if (state->config->dont_use_pll)
-	cx24123_repeater_mode(state, 1, 0);
+		cx24123_repeater_mode(state, 1, 0);
 
 	return 0;
 }
 
-static int cx24123_set_voltage(struct dvb_frontend* fe, fe_sec_voltage_t voltage)
+static int cx24123_set_voltage(struct dvb_frontend *fe,
+	fe_sec_voltage_t voltage)
 {
 	struct cx24123_state *state = fe->demodulator_priv;
 	u8 val;
@@ -740,7 +764,7 @@
 {
 	unsigned long timeout = jiffies + msecs_to_jiffies(200);
 	while (!(cx24123_readreg(state, 0x29) & 0x40)) {
-		if(time_after(jiffies, timeout)) {
+		if (time_after(jiffies, timeout)) {
 			err("%s: diseqc queue not ready, " \
 				"command may be lost.\n", __func__);
 			break;
@@ -749,7 +773,8 @@
 	}
 }
 
-static int cx24123_send_diseqc_msg(struct dvb_frontend* fe, struct dvb_diseqc_master_cmd *cmd)
+static int cx24123_send_diseqc_msg(struct dvb_frontend *fe,
+	struct dvb_diseqc_master_cmd *cmd)
 {
 	struct cx24123_state *state = fe->demodulator_priv;
 	int i, val, tone;
@@ -771,20 +796,21 @@
 		cx24123_writereg(state, 0x2C + i, cmd->msg[i]);
 
 	val = cx24123_readreg(state, 0x29);
-	cx24123_writereg(state, 0x29, ((val & 0x90) | 0x40) | ((cmd->msg_len-3) & 3));
+	cx24123_writereg(state, 0x29, ((val & 0x90) | 0x40) |
+		((cmd->msg_len-3) & 3));
 
 	/* wait for diseqc message to finish sending */
 	cx24123_wait_for_diseqc(state);
 
 	/* restart continuous tone if enabled */
-	if (tone & 0x10) {
+	if (tone & 0x10)
 		cx24123_writereg(state, 0x29, tone & ~0x40);
-	}
 
 	return 0;
 }
 
-static int cx24123_diseqc_send_burst(struct dvb_frontend* fe, fe_sec_mini_cmd_t burst)
+static int cx24123_diseqc_send_burst(struct dvb_frontend *fe,
+	fe_sec_mini_cmd_t burst)
 {
 	struct cx24123_state *state = fe->demodulator_priv;
 	int val, tone;
@@ -814,13 +840,13 @@
 	cx24123_writereg(state, 0x2a, cx24123_readreg(state, 0x2a) & 0xfb);
 
 	/* restart continuous tone if enabled */
-	if (tone & 0x10) {
+	if (tone & 0x10)
 		cx24123_writereg(state, 0x29, tone & ~0x40);
-	}
+
 	return 0;
 }
 
-static int cx24123_read_status(struct dvb_frontend* fe, fe_status_t* status)
+static int cx24123_read_status(struct dvb_frontend *fe, fe_status_t *status)
 {
 	struct cx24123_state *state = fe->demodulator_priv;
 	int sync = cx24123_readreg(state, 0x14);
@@ -853,8 +879,9 @@
 }
 
 /*
- * Configured to return the measurement of errors in blocks, because no UCBLOCKS value
- * is available, so this value doubles up to satisfy both measurements
+ * Configured to return the measurement of errors in blocks,
+ * because no UCBLOCKS value is available, so this value doubles up
+ * to satisfy both measurements.
  */
 static int cx24123_read_ber(struct dvb_frontend *fe, u32 *ber)
 {
@@ -876,7 +903,8 @@
 {
 	struct cx24123_state *state = fe->demodulator_priv;
 
-	*signal_strength = cx24123_readreg(state, 0x3b) << 8; /* larger = better */
+	/* larger = better */
+	*signal_strength = cx24123_readreg(state, 0x3b) << 8;
 
 	dprintk("Signal strength = %d\n", *signal_strength);
 
@@ -907,7 +935,7 @@
 	if (state->config->set_ts_params)
 		state->config->set_ts_params(fe, 0);
 
-	state->currentfreq=p->frequency;
+	state->currentfreq = p->frequency;
 	state->currentsymbolrate = p->u.qpsk.symbol_rate;
 
 	cx24123_set_inversion(state, p->inversion);
@@ -932,7 +960,8 @@
 	return 0;
 }
 
-static int cx24123_get_frontend(struct dvb_frontend* fe, struct dvb_frontend_parameters *p)
+static int cx24123_get_frontend(struct dvb_frontend *fe,
+	struct dvb_frontend_parameters *p)
 {
 	struct cx24123_state *state = fe->demodulator_priv;
 
@@ -952,7 +981,7 @@
 	return 0;
 }
 
-static int cx24123_set_tone(struct dvb_frontend* fe, fe_sec_tone_mode_t tone)
+static int cx24123_set_tone(struct dvb_frontend *fe, fe_sec_tone_mode_t tone)
 {
 	struct cx24123_state *state = fe->demodulator_priv;
 	u8 val;
@@ -977,8 +1006,8 @@
 	return 0;
 }
 
-static int cx24123_tune(struct dvb_frontend* fe,
-			struct dvb_frontend_parameters* params,
+static int cx24123_tune(struct dvb_frontend *fe,
+			struct dvb_frontend_parameters *params,
 			unsigned int mode_flags,
 			unsigned int *delay,
 			fe_status_t *status)
@@ -997,12 +1026,12 @@
 
 static int cx24123_get_algo(struct dvb_frontend *fe)
 {
-	return 1; //FE_ALGO_HW
+	return 1; /* FE_ALGO_HW */
 }
 
-static void cx24123_release(struct dvb_frontend* fe)
+static void cx24123_release(struct dvb_frontend *fe)
 {
-	struct cx24123_state* state = fe->demodulator_priv;
+	struct cx24123_state *state = fe->demodulator_priv;
 	dprintk("\n");
 	i2c_del_adapter(&state->tuner_i2c_adapter);
 	kfree(state);
@@ -1013,7 +1042,7 @@
 {
 	struct cx24123_state *state = i2c_get_adapdata(i2c_adap);
 	/* this repeater closes after the first stop */
-    cx24123_repeater_mode(state, 1, 1);
+	cx24123_repeater_mode(state, 1, 1);
 	return i2c_transfer(state->i2c, msg, num);
 }
 
@@ -1037,8 +1066,8 @@
 
 static struct dvb_frontend_ops cx24123_ops;
 
-struct dvb_frontend* cx24123_attach(const struct cx24123_config* config,
-				    struct i2c_adapter* i2c)
+struct dvb_frontend *cx24123_attach(const struct cx24123_config *config,
+				    struct i2c_adapter *i2c)
 {
 	struct cx24123_state *state =
 		kzalloc(sizeof(struct cx24123_state), GFP_KERNEL);
@@ -1057,20 +1086,25 @@
 	/* check if the demod is there */
 	state->demod_rev = cx24123_readreg(state, 0x00);
 	switch (state->demod_rev) {
-	case 0xe1: info("detected CX24123C\n"); break;
-	case 0xd1: info("detected CX24123\n"); break;
+	case 0xe1:
+		info("detected CX24123C\n");
+		break;
+	case 0xd1:
+		info("detected CX24123\n");
+		break;
 	default:
 		err("wrong demod revision: %x\n", state->demod_rev);
 		goto error;
 	}
 
 	/* create dvb_frontend */
-	memcpy(&state->frontend.ops, &cx24123_ops, sizeof(struct dvb_frontend_ops));
+	memcpy(&state->frontend.ops, &cx24123_ops,
+		sizeof(struct dvb_frontend_ops));
 	state->frontend.demodulator_priv = state;
 
-    /* create tuner i2c adapter */
-    if (config->dont_use_pll)
-	cx24123_repeater_mode(state, 1, 0);
+	/* create tuner i2c adapter */
+	if (config->dont_use_pll)
+		cx24123_repeater_mode(state, 1, 0);
 
 	strlcpy(state->tuner_i2c_adapter.name, "CX24123 tuner I2C bus",
 		sizeof(state->tuner_i2c_adapter.name));
@@ -1079,7 +1113,7 @@
 	state->tuner_i2c_adapter.algo_data = NULL;
 	i2c_set_adapdata(&state->tuner_i2c_adapter, state);
 	if (i2c_add_adapter(&state->tuner_i2c_adapter) < 0) {
-	err("tuner i2c bus could not be initialized\n");
+		err("tuner i2c bus could not be initialized\n");
 		goto error;
 	}
 
@@ -1090,6 +1124,7 @@
 
 	return NULL;
 }
+EXPORT_SYMBOL(cx24123_attach);
 
 static struct dvb_frontend_ops cx24123_ops = {
 
@@ -1126,15 +1161,8 @@
 	.get_frontend_algo = cx24123_get_algo,
 };
 
-module_param(debug, int, 0644);
-MODULE_PARM_DESC(debug, "Activates frontend debugging (default:0)");
-
-module_param(force_band, int, 0644);
-MODULE_PARM_DESC(force_band, "Force a specific band select (1-9, default:off).");
-
 MODULE_DESCRIPTION("DVB Frontend module for Conexant " \
 	"CX24123/CX24109/CX24113 hardware");
 MODULE_AUTHOR("Steven Toth");
 MODULE_LICENSE("GPL");
 
-EXPORT_SYMBOL(cx24123_attach);
diff --git a/drivers/media/dvb/frontends/cx24123.h b/drivers/media/dvb/frontends/cx24123.h
index cc6b411..51ae866 100644
--- a/drivers/media/dvb/frontends/cx24123.h
+++ b/drivers/media/dvb/frontends/cx24123.h
@@ -23,13 +23,12 @@
 
 #include <linux/dvb/frontend.h>
 
-struct cx24123_config
-{
+struct cx24123_config {
 	/* the demodulator's i2c address */
 	u8 demod_address;
 
 	/* Need to set device param for start_dma */
-	int (*set_ts_params)(struct dvb_frontend* fe, int is_punctured);
+	int (*set_ts_params)(struct dvb_frontend *fe, int is_punctured);
 
 	/* 0 = LNB voltage normal, 1 = LNB voltage inverted */
 	int lnb_polarity;
@@ -39,7 +38,8 @@
 	void (*agc_callback) (struct dvb_frontend *);
 };
 
-#if defined(CONFIG_DVB_CX24123) || (defined(CONFIG_DVB_CX24123_MODULE) && defined(MODULE))
+#if defined(CONFIG_DVB_CX24123) || (defined(CONFIG_DVB_CX24123_MODULE) \
+	&& defined(MODULE))
 extern struct dvb_frontend *cx24123_attach(const struct cx24123_config *config,
 					   struct i2c_adapter *i2c);
 extern struct i2c_adapter *cx24123_get_tuner_i2c_adapter(struct dvb_frontend *);
@@ -56,6 +56,6 @@
 	printk(KERN_WARNING "%s: driver disabled by Kconfig\n", __func__);
 	return NULL;
 }
-#endif // CONFIG_DVB_CX24123
+#endif
 
 #endif /* CX24123_H */
diff --git a/drivers/media/dvb/frontends/s5h1409.c b/drivers/media/dvb/frontends/s5h1409.c
index 7500a1c..cf4d893 100644
--- a/drivers/media/dvb/frontends/s5h1409.c
+++ b/drivers/media/dvb/frontends/s5h1409.c
@@ -30,10 +30,10 @@
 
 struct s5h1409_state {
 
-	struct i2c_adapter* i2c;
+	struct i2c_adapter *i2c;
 
 	/* configuration settings */
-	const struct s5h1409_config* config;
+	const struct s5h1409_config *config;
 
 	struct dvb_frontend frontend;
 
@@ -48,6 +48,9 @@
 };
 
 static int debug;
+module_param(debug, int, 0644);
+MODULE_PARM_DESC(debug, "Enable verbose debug messages");
+
 #define dprintk	if (debug) printk
 
 /* Register values to initialise the demod, this will set VSB by default */
@@ -299,10 +302,10 @@
 };
 
 /* 8 bit registers, 16 bit values */
-static int s5h1409_writereg(struct s5h1409_state* state, u8 reg, u16 data)
+static int s5h1409_writereg(struct s5h1409_state *state, u8 reg, u16 data)
 {
 	int ret;
-	u8 buf [] = { reg, data >> 8,  data & 0xff };
+	u8 buf[] = { reg, data >> 8,  data & 0xff };
 
 	struct i2c_msg msg = { .addr = state->config->demod_address,
 			       .flags = 0, .buf = buf, .len = 3 };
@@ -310,19 +313,19 @@
 	ret = i2c_transfer(state->i2c, &msg, 1);
 
 	if (ret != 1)
-		printk("%s: writereg error (reg == 0x%02x, val == 0x%04x, "
+		printk(KERN_ERR "%s: error (reg == 0x%02x, val == 0x%04x, "
 		       "ret == %i)\n", __func__, reg, data, ret);
 
 	return (ret != 1) ? -1 : 0;
 }
 
-static u16 s5h1409_readreg(struct s5h1409_state* state, u8 reg)
+static u16 s5h1409_readreg(struct s5h1409_state *state, u8 reg)
 {
 	int ret;
-	u8 b0 [] = { reg };
-	u8 b1 [] = { 0, 0 };
+	u8 b0[] = { reg };
+	u8 b1[] = { 0, 0 };
 
-	struct i2c_msg msg [] = {
+	struct i2c_msg msg[] = {
 		{ .addr = state->config->demod_address, .flags = 0,
 		  .buf = b0, .len = 1 },
 		{ .addr = state->config->demod_address, .flags = I2C_M_RD,
@@ -335,9 +338,9 @@
 	return (b1[0] << 8) | b1[1];
 }
 
-static int s5h1409_softreset(struct dvb_frontend* fe)
+static int s5h1409_softreset(struct dvb_frontend *fe)
 {
-	struct s5h1409_state* state = fe->demodulator_priv;
+	struct s5h1409_state *state = fe->demodulator_priv;
 
 	dprintk("%s()\n", __func__);
 
@@ -349,11 +352,11 @@
 }
 
 #define S5H1409_VSB_IF_FREQ 5380
-#define S5H1409_QAM_IF_FREQ state->config->qam_if
+#define S5H1409_QAM_IF_FREQ (state->config->qam_if)
 
-static int s5h1409_set_if_freq(struct dvb_frontend* fe, int KHz)
+static int s5h1409_set_if_freq(struct dvb_frontend *fe, int KHz)
 {
-	struct s5h1409_state* state = fe->demodulator_priv;
+	struct s5h1409_state *state = fe->demodulator_priv;
 
 	dprintk("%s(%d KHz)\n", __func__, KHz);
 
@@ -376,26 +379,26 @@
 	return 0;
 }
 
-static int s5h1409_set_spectralinversion(struct dvb_frontend* fe, int inverted)
+static int s5h1409_set_spectralinversion(struct dvb_frontend *fe, int inverted)
 {
-	struct s5h1409_state* state = fe->demodulator_priv;
+	struct s5h1409_state *state = fe->demodulator_priv;
 
 	dprintk("%s(%d)\n", __func__, inverted);
 
-	if(inverted == 1)
+	if (inverted == 1)
 		return s5h1409_writereg(state, 0x1b, 0x1101); /* Inverted */
 	else
 		return s5h1409_writereg(state, 0x1b, 0x0110); /* Normal */
 }
 
-static int s5h1409_enable_modulation(struct dvb_frontend* fe,
+static int s5h1409_enable_modulation(struct dvb_frontend *fe,
 				     fe_modulation_t m)
 {
-	struct s5h1409_state* state = fe->demodulator_priv;
+	struct s5h1409_state *state = fe->demodulator_priv;
 
 	dprintk("%s(0x%08x)\n", __func__, m);
 
-	switch(m) {
+	switch (m) {
 	case VSB_8:
 		dprintk("%s() VSB_8\n", __func__);
 		if (state->if_freq != S5H1409_VSB_IF_FREQ)
@@ -422,9 +425,9 @@
 	return 0;
 }
 
-static int s5h1409_i2c_gate_ctrl(struct dvb_frontend* fe, int enable)
+static int s5h1409_i2c_gate_ctrl(struct dvb_frontend *fe, int enable)
 {
-	struct s5h1409_state* state = fe->demodulator_priv;
+	struct s5h1409_state *state = fe->demodulator_priv;
 
 	dprintk("%s(%d)\n", __func__, enable);
 
@@ -434,9 +437,9 @@
 		return s5h1409_writereg(state, 0xf3, 0);
 }
 
-static int s5h1409_set_gpio(struct dvb_frontend* fe, int enable)
+static int s5h1409_set_gpio(struct dvb_frontend *fe, int enable)
 {
-	struct s5h1409_state* state = fe->demodulator_priv;
+	struct s5h1409_state *state = fe->demodulator_priv;
 
 	dprintk("%s(%d)\n", __func__, enable);
 
@@ -448,18 +451,18 @@
 			s5h1409_readreg(state, 0xe3) & 0xfeff);
 }
 
-static int s5h1409_sleep(struct dvb_frontend* fe, int enable)
+static int s5h1409_sleep(struct dvb_frontend *fe, int enable)
 {
-	struct s5h1409_state* state = fe->demodulator_priv;
+	struct s5h1409_state *state = fe->demodulator_priv;
 
 	dprintk("%s(%d)\n", __func__, enable);
 
 	return s5h1409_writereg(state, 0xf2, enable);
 }
 
-static int s5h1409_register_reset(struct dvb_frontend* fe)
+static int s5h1409_register_reset(struct dvb_frontend *fe)
 {
-	struct s5h1409_state* state = fe->demodulator_priv;
+	struct s5h1409_state *state = fe->demodulator_priv;
 
 	dprintk("%s()\n", __func__);
 
@@ -483,7 +486,7 @@
 		reg &= 0xff;
 
 		s5h1409_writereg(state, 0x96, 0x00c);
-		if ((reg < 0x38) || (reg > 0x68) ) {
+		if ((reg < 0x38) || (reg > 0x68)) {
 			s5h1409_writereg(state, 0x93, 0x3332);
 			s5h1409_writereg(state, 0x9e, 0x2c37);
 		} else {
@@ -514,7 +517,7 @@
 
 			s5h1409_writereg(state, 0x96, 0x20);
 			s5h1409_writereg(state, 0xad,
-				( ((reg1 & 0xf000) >> 4) | (reg2 & 0xf0ff)) );
+				(((reg1 & 0xf000) >> 4) | (reg2 & 0xf0ff)));
 			s5h1409_writereg(state, 0xab,
 				s5h1409_readreg(state, 0xab) & 0xeffe);
 		}
@@ -529,10 +532,10 @@
 }
 
 /* Talk to the demod, set the FEC, GUARD, QAM settings etc */
-static int s5h1409_set_frontend (struct dvb_frontend* fe,
+static int s5h1409_set_frontend(struct dvb_frontend *fe,
 				 struct dvb_frontend_parameters *p)
 {
-	struct s5h1409_state* state = fe->demodulator_priv;
+	struct s5h1409_state *state = fe->demodulator_priv;
 
 	dprintk("%s(frequency=%d)\n", __func__, p->frequency);
 
@@ -546,9 +549,11 @@
 	msleep(100);
 
 	if (fe->ops.tuner_ops.set_params) {
-		if (fe->ops.i2c_gate_ctrl) fe->ops.i2c_gate_ctrl(fe, 1);
+		if (fe->ops.i2c_gate_ctrl)
+			fe->ops.i2c_gate_ctrl(fe, 1);
 		fe->ops.tuner_ops.set_params(fe, p);
-		if (fe->ops.i2c_gate_ctrl) fe->ops.i2c_gate_ctrl(fe, 0);
+		if (fe->ops.i2c_gate_ctrl)
+			fe->ops.i2c_gate_ctrl(fe, 0);
 	}
 
 	/* Optimize the demod for QAM */
@@ -592,17 +597,17 @@
 
 /* Reset the demod hardware and reset all of the configuration registers
    to a default state. */
-static int s5h1409_init (struct dvb_frontend* fe)
+static int s5h1409_init(struct dvb_frontend *fe)
 {
 	int i;
 
-	struct s5h1409_state* state = fe->demodulator_priv;
+	struct s5h1409_state *state = fe->demodulator_priv;
 	dprintk("%s()\n", __func__);
 
 	s5h1409_sleep(fe, 0);
 	s5h1409_register_reset(fe);
 
-	for (i=0; i < ARRAY_SIZE(init_tab); i++)
+	for (i = 0; i < ARRAY_SIZE(init_tab); i++)
 		s5h1409_writereg(state, init_tab[i].reg, init_tab[i].data);
 
 	/* The datasheet says that after initialisation, VSB is default */
@@ -627,9 +632,9 @@
 	return 0;
 }
 
-static int s5h1409_read_status(struct dvb_frontend* fe, fe_status_t* status)
+static int s5h1409_read_status(struct dvb_frontend *fe, fe_status_t *status)
 {
-	struct s5h1409_state* state = fe->demodulator_priv;
+	struct s5h1409_state *state = fe->demodulator_priv;
 	u16 reg;
 	u32 tuner_status = 0;
 
@@ -637,12 +642,12 @@
 
 	/* Get the demodulator status */
 	reg = s5h1409_readreg(state, 0xf1);
-	if(reg & 0x1000)
+	if (reg & 0x1000)
 		*status |= FE_HAS_VITERBI;
-	if(reg & 0x8000)
+	if (reg & 0x8000)
 		*status |= FE_HAS_LOCK | FE_HAS_SYNC;
 
-	switch(state->config->status_mode) {
+	switch (state->config->status_mode) {
 	case S5H1409_DEMODLOCKING:
 		if (*status & FE_HAS_VITERBI)
 			*status |= FE_HAS_CARRIER | FE_HAS_SIGNAL;
@@ -668,12 +673,12 @@
 	return 0;
 }
 
-static int s5h1409_qam256_lookup_snr(struct dvb_frontend* fe, u16* snr, u16 v)
+static int s5h1409_qam256_lookup_snr(struct dvb_frontend *fe, u16 *snr, u16 v)
 {
 	int i, ret = -EINVAL;
 	dprintk("%s()\n", __func__);
 
-	for (i=0; i < ARRAY_SIZE(qam256_snr_tab); i++) {
+	for (i = 0; i < ARRAY_SIZE(qam256_snr_tab); i++) {
 		if (v < qam256_snr_tab[i].val) {
 			*snr = qam256_snr_tab[i].data;
 			ret = 0;
@@ -683,12 +688,12 @@
 	return ret;
 }
 
-static int s5h1409_qam64_lookup_snr(struct dvb_frontend* fe, u16* snr, u16 v)
+static int s5h1409_qam64_lookup_snr(struct dvb_frontend *fe, u16 *snr, u16 v)
 {
 	int i, ret = -EINVAL;
 	dprintk("%s()\n", __func__);
 
-	for (i=0; i < ARRAY_SIZE(qam64_snr_tab); i++) {
+	for (i = 0; i < ARRAY_SIZE(qam64_snr_tab); i++) {
 		if (v < qam64_snr_tab[i].val) {
 			*snr = qam64_snr_tab[i].data;
 			ret = 0;
@@ -698,12 +703,12 @@
 	return ret;
 }
 
-static int s5h1409_vsb_lookup_snr(struct dvb_frontend* fe, u16* snr, u16 v)
+static int s5h1409_vsb_lookup_snr(struct dvb_frontend *fe, u16 *snr, u16 v)
 {
 	int i, ret = -EINVAL;
 	dprintk("%s()\n", __func__);
 
-	for (i=0; i < ARRAY_SIZE(vsb_snr_tab); i++) {
+	for (i = 0; i < ARRAY_SIZE(vsb_snr_tab); i++) {
 		if (v > vsb_snr_tab[i].val) {
 			*snr = vsb_snr_tab[i].data;
 			ret = 0;
@@ -714,13 +719,13 @@
 	return ret;
 }
 
-static int s5h1409_read_snr(struct dvb_frontend* fe, u16* snr)
+static int s5h1409_read_snr(struct dvb_frontend *fe, u16 *snr)
 {
-	struct s5h1409_state* state = fe->demodulator_priv;
+	struct s5h1409_state *state = fe->demodulator_priv;
 	u16 reg;
 	dprintk("%s()\n", __func__);
 
-	switch(state->current_modulation) {
+	switch (state->current_modulation) {
 	case QAM_64:
 		reg = s5h1409_readreg(state, 0xf0) & 0xff;
 		return s5h1409_qam64_lookup_snr(fe, snr, reg);
@@ -737,30 +742,30 @@
 	return -EINVAL;
 }
 
-static int s5h1409_read_signal_strength(struct dvb_frontend* fe,
-					u16* signal_strength)
+static int s5h1409_read_signal_strength(struct dvb_frontend *fe,
+					u16 *signal_strength)
 {
 	return s5h1409_read_snr(fe, signal_strength);
 }
 
-static int s5h1409_read_ucblocks(struct dvb_frontend* fe, u32* ucblocks)
+static int s5h1409_read_ucblocks(struct dvb_frontend *fe, u32 *ucblocks)
 {
-	struct s5h1409_state* state = fe->demodulator_priv;
+	struct s5h1409_state *state = fe->demodulator_priv;
 
 	*ucblocks = s5h1409_readreg(state, 0xb5);
 
 	return 0;
 }
 
-static int s5h1409_read_ber(struct dvb_frontend* fe, u32* ber)
+static int s5h1409_read_ber(struct dvb_frontend *fe, u32 *ber)
 {
 	return s5h1409_read_ucblocks(fe, ber);
 }
 
-static int s5h1409_get_frontend(struct dvb_frontend* fe,
+static int s5h1409_get_frontend(struct dvb_frontend *fe,
 				struct dvb_frontend_parameters *p)
 {
-	struct s5h1409_state* state = fe->demodulator_priv;
+	struct s5h1409_state *state = fe->demodulator_priv;
 
 	p->frequency = state->current_frequency;
 	p->u.vsb.modulation = state->current_modulation;
@@ -768,25 +773,25 @@
 	return 0;
 }
 
-static int s5h1409_get_tune_settings(struct dvb_frontend* fe,
+static int s5h1409_get_tune_settings(struct dvb_frontend *fe,
 				     struct dvb_frontend_tune_settings *tune)
 {
 	tune->min_delay_ms = 1000;
 	return 0;
 }
 
-static void s5h1409_release(struct dvb_frontend* fe)
+static void s5h1409_release(struct dvb_frontend *fe)
 {
-	struct s5h1409_state* state = fe->demodulator_priv;
+	struct s5h1409_state *state = fe->demodulator_priv;
 	kfree(state);
 }
 
 static struct dvb_frontend_ops s5h1409_ops;
 
-struct dvb_frontend* s5h1409_attach(const struct s5h1409_config* config,
-				    struct i2c_adapter* i2c)
+struct dvb_frontend *s5h1409_attach(const struct s5h1409_config *config,
+				    struct i2c_adapter *i2c)
 {
-	struct s5h1409_state* state = NULL;
+	struct s5h1409_state *state = NULL;
 	u16 reg;
 
 	/* allocate memory for the internal state */
@@ -825,6 +830,7 @@
 	kfree(state);
 	return NULL;
 }
+EXPORT_SYMBOL(s5h1409_attach);
 
 static struct dvb_frontend_ops s5h1409_ops = {
 
@@ -850,14 +856,10 @@
 	.release              = s5h1409_release,
 };
 
-module_param(debug, int, 0644);
-MODULE_PARM_DESC(debug, "Enable verbose debug messages");
-
 MODULE_DESCRIPTION("Samsung S5H1409 QAM-B/ATSC Demodulator driver");
 MODULE_AUTHOR("Steven Toth");
 MODULE_LICENSE("GPL");
 
-EXPORT_SYMBOL(s5h1409_attach);
 
 /*
  * Local variables:
diff --git a/drivers/media/dvb/frontends/s5h1409.h b/drivers/media/dvb/frontends/s5h1409.h
index d1a1d2e..070d974 100644
--- a/drivers/media/dvb/frontends/s5h1409.h
+++ b/drivers/media/dvb/frontends/s5h1409.h
@@ -24,8 +24,7 @@
 
 #include <linux/dvb/frontend.h>
 
-struct s5h1409_config
-{
+struct s5h1409_config {
 	/* the demodulator's i2c address */
 	u8 demod_address;
 
@@ -60,12 +59,14 @@
 	u16 mpeg_timing;
 };
 
-#if defined(CONFIG_DVB_S5H1409) || (defined(CONFIG_DVB_S5H1409_MODULE) && defined(MODULE))
-extern struct dvb_frontend* s5h1409_attach(const struct s5h1409_config* config,
-					   struct i2c_adapter* i2c);
+#if defined(CONFIG_DVB_S5H1409) || (defined(CONFIG_DVB_S5H1409_MODULE) \
+	&& defined(MODULE))
+extern struct dvb_frontend *s5h1409_attach(const struct s5h1409_config *config,
+					   struct i2c_adapter *i2c);
 #else
-static inline struct dvb_frontend* s5h1409_attach(const struct s5h1409_config* config,
-						  struct i2c_adapter* i2c)
+static inline struct dvb_frontend *s5h1409_attach(
+	const struct s5h1409_config *config,
+	struct i2c_adapter *i2c)
 {
 	printk(KERN_WARNING "%s: driver disabled by Kconfig\n", __func__);
 	return NULL;
diff --git a/drivers/media/dvb/frontends/s5h1411.c b/drivers/media/dvb/frontends/s5h1411.c
index 2da1a37..2febfb5 100644
--- a/drivers/media/dvb/frontends/s5h1411.c
+++ b/drivers/media/dvb/frontends/s5h1411.c
@@ -343,7 +343,7 @@
 	u8 addr, u8 reg, u16 data)
 {
 	int ret;
-	u8 buf [] = { reg, data >> 8,  data & 0xff };
+	u8 buf[] = { reg, data >> 8,  data & 0xff };
 
 	struct i2c_msg msg = { .addr = addr, .flags = 0, .buf = buf, .len = 3 };
 
@@ -359,10 +359,10 @@
 static u16 s5h1411_readreg(struct s5h1411_state *state, u8 addr, u8 reg)
 {
 	int ret;
-	u8 b0 [] = { reg };
-	u8 b1 [] = { 0, 0 };
+	u8 b0[] = { reg };
+	u8 b1[] = { 0, 0 };
 
-	struct i2c_msg msg [] = {
+	struct i2c_msg msg[] = {
 		{ .addr = addr, .flags = 0, .buf = b0, .len = 1 },
 		{ .addr = addr, .flags = I2C_M_RD, .buf = b1, .len = 2 } };
 
diff --git a/drivers/media/dvb/frontends/tda10048.c b/drivers/media/dvb/frontends/tda10048.c
index 04e7f1c..2a8bbcd 100644
--- a/drivers/media/dvb/frontends/tda10048.c
+++ b/drivers/media/dvb/frontends/tda10048.c
@@ -195,7 +195,7 @@
 static int tda10048_writereg(struct tda10048_state *state, u8 reg, u8 data)
 {
 	int ret;
-	u8 buf [] = { reg, data };
+	u8 buf[] = { reg, data };
 	struct i2c_msg msg = {
 		.addr = state->config->demod_address,
 		.flags = 0, .buf = buf, .len = 2 };
@@ -213,9 +213,9 @@
 static u8 tda10048_readreg(struct tda10048_state *state, u8 reg)
 {
 	int ret;
-	u8 b0 [] = { reg };
-	u8 b1 [] = { 0 };
-	struct i2c_msg msg [] = {
+	u8 b0[] = { reg };
+	u8 b1[] = { 0 };
+	struct i2c_msg msg[] = {
 		{ .addr = state->config->demod_address,
 			.flags = 0, .buf = b0, .len = 1 },
 		{ .addr = state->config->demod_address,
@@ -393,43 +393,89 @@
 
 	val = tda10048_readreg(state, TDA10048_OUT_CONF2);
 	switch ((val & 0x60) >> 5) {
-	case 0: p->constellation =   QPSK; break;
-	case 1: p->constellation = QAM_16; break;
-	case 2: p->constellation = QAM_64; break;
+	case 0:
+		p->constellation = QPSK;
+		break;
+	case 1:
+		p->constellation = QAM_16;
+		break;
+	case 2:
+		p->constellation = QAM_64;
+		break;
 	}
 	switch ((val & 0x18) >> 3) {
-	case 0: p->hierarchy_information = HIERARCHY_NONE; break;
-	case 1: p->hierarchy_information =    HIERARCHY_1; break;
-	case 2: p->hierarchy_information =    HIERARCHY_2; break;
-	case 3: p->hierarchy_information =    HIERARCHY_4; break;
+	case 0:
+		p->hierarchy_information = HIERARCHY_NONE;
+		break;
+	case 1:
+		p->hierarchy_information = HIERARCHY_1;
+		break;
+	case 2:
+		p->hierarchy_information = HIERARCHY_2;
+		break;
+	case 3:
+		p->hierarchy_information = HIERARCHY_4;
+		break;
 	}
 	switch (val & 0x07) {
-	case 0: p->code_rate_HP = FEC_1_2; break;
-	case 1: p->code_rate_HP = FEC_2_3; break;
-	case 2: p->code_rate_HP = FEC_3_4; break;
-	case 3: p->code_rate_HP = FEC_5_6; break;
-	case 4: p->code_rate_HP = FEC_7_8; break;
+	case 0:
+		p->code_rate_HP = FEC_1_2;
+		break;
+	case 1:
+		p->code_rate_HP = FEC_2_3;
+		break;
+	case 2:
+		p->code_rate_HP = FEC_3_4;
+		break;
+	case 3:
+		p->code_rate_HP = FEC_5_6;
+		break;
+	case 4:
+		p->code_rate_HP = FEC_7_8;
+		break;
 	}
 
 	val = tda10048_readreg(state, TDA10048_OUT_CONF3);
 	switch (val & 0x07) {
-	case 0: p->code_rate_LP = FEC_1_2; break;
-	case 1: p->code_rate_LP = FEC_2_3; break;
-	case 2: p->code_rate_LP = FEC_3_4; break;
-	case 3: p->code_rate_LP = FEC_5_6; break;
-	case 4: p->code_rate_LP = FEC_7_8; break;
+	case 0:
+		p->code_rate_LP = FEC_1_2;
+		break;
+	case 1:
+		p->code_rate_LP = FEC_2_3;
+		break;
+	case 2:
+		p->code_rate_LP = FEC_3_4;
+		break;
+	case 3:
+		p->code_rate_LP = FEC_5_6;
+		break;
+	case 4:
+		p->code_rate_LP = FEC_7_8;
+		break;
 	}
 
 	val = tda10048_readreg(state, TDA10048_OUT_CONF1);
 	switch ((val & 0x0c) >> 2) {
-	case 0: p->guard_interval = GUARD_INTERVAL_1_32; break;
-	case 1: p->guard_interval = GUARD_INTERVAL_1_16; break;
-	case 2: p->guard_interval =  GUARD_INTERVAL_1_8; break;
-	case 3: p->guard_interval =  GUARD_INTERVAL_1_4; break;
+	case 0:
+		p->guard_interval = GUARD_INTERVAL_1_32;
+		break;
+	case 1:
+		p->guard_interval = GUARD_INTERVAL_1_16;
+		break;
+	case 2:
+		p->guard_interval =  GUARD_INTERVAL_1_8;
+		break;
+	case 3:
+		p->guard_interval =  GUARD_INTERVAL_1_4;
+		break;
 	}
 	switch (val & 0x02) {
-	case 0: p->transmission_mode = TRANSMISSION_MODE_2K; break;
-	case 1: p->transmission_mode = TRANSMISSION_MODE_8K; break;
+	case 0:
+		p->transmission_mode = TRANSMISSION_MODE_2K;
+		break;
+	case 1:
+		p->transmission_mode = TRANSMISSION_MODE_8K;
+		break;
 	}
 
 	return 0;
diff --git a/drivers/media/dvb/frontends/z0194a.h b/drivers/media/dvb/frontends/z0194a.h
index d2876d2..07f3fc0 100644
--- a/drivers/media/dvb/frontends/z0194a.h
+++ b/drivers/media/dvb/frontends/z0194a.h
@@ -12,7 +12,7 @@
 #ifndef Z0194A
 #define Z0194A
 
-static int sharp_z0194a__set_symbol_rate(struct dvb_frontend *fe,
+static int sharp_z0194a_set_symbol_rate(struct dvb_frontend *fe,
 					 u32 srate, u32 ratio)
 {
 	u8 aclk = 0;
@@ -40,7 +40,7 @@
 	return 0;
 }
 
-static u8 sharp_z0194a__inittab[] = {
+static u8 sharp_z0194a_inittab[] = {
 	0x01, 0x15,
 	0x02, 0x00,
 	0x03, 0x00,
@@ -82,16 +82,4 @@
 	0xff, 0xff
 };
 
-static struct stv0299_config sharp_z0194a_config = {
-	.demod_address = 0x68,
-	.inittab = sharp_z0194a__inittab,
-	.mclk = 88000000UL,
-	.invert = 1,
-	.skip_reinit = 0,
-	.lock_output = STV0299_LOCKOUTPUT_1,
-	.volt13_op0_op1 = STV0299_VOLT13_OP1,
-	.min_delay_ms = 100,
-	.set_symbol_rate = sharp_z0194a__set_symbol_rate,
-};
-
 #endif
diff --git a/drivers/media/dvb/siano/sms-cards.c b/drivers/media/dvb/siano/sms-cards.c
index 9da260f..6f9b773 100644
--- a/drivers/media/dvb/siano/sms-cards.c
+++ b/drivers/media/dvb/siano/sms-cards.c
@@ -42,6 +42,10 @@
 		.driver_info = SMS1XXX_BOARD_HAUPPAUGE_WINDHAM },
 	{ USB_DEVICE(0x2040, 0x5510),
 		.driver_info = SMS1XXX_BOARD_HAUPPAUGE_WINDHAM },
+	{ USB_DEVICE(0x2040, 0x5520),
+		.driver_info = SMS1XXX_BOARD_HAUPPAUGE_WINDHAM },
+	{ USB_DEVICE(0x2040, 0x5530),
+		.driver_info = SMS1XXX_BOARD_HAUPPAUGE_WINDHAM },
 	{ USB_DEVICE(0x2040, 0x5580),
 		.driver_info = SMS1XXX_BOARD_HAUPPAUGE_WINDHAM },
 	{ USB_DEVICE(0x2040, 0x5590),
diff --git a/drivers/media/radio/Kconfig b/drivers/media/radio/Kconfig
index e51d707..04cd7c0 100644
--- a/drivers/media/radio/Kconfig
+++ b/drivers/media/radio/Kconfig
@@ -359,7 +359,7 @@
 	  computer's USB port.
 
 	  To compile this driver as a module, choose M here: the
-	  module will be called radio-silabs.
+	  module will be called radio-si470x.
 
 config USB_MR800
 	tristate "AverMedia MR 800 USB FM radio support"
diff --git a/drivers/media/radio/dsbr100.c b/drivers/media/radio/dsbr100.c
index 66783ff..78f5694 100644
--- a/drivers/media/radio/dsbr100.c
+++ b/drivers/media/radio/dsbr100.c
@@ -310,7 +310,7 @@
 
 	radio->curfreq = f->frequency;
 	if (dsbr100_setfreq(radio, radio->curfreq)==-1)
-		warn("Set frequency failed");
+		dev_warn(&radio->usbdev->dev, "Set frequency failed\n");
 	return 0;
 }
 
@@ -361,12 +361,14 @@
 	case V4L2_CID_AUDIO_MUTE:
 		if (ctrl->value) {
 			if (dsbr100_stop(radio) == -1) {
-				warn("Radio did not respond properly");
+				dev_warn(&radio->usbdev->dev,
+					 "Radio did not respond properly\n");
 				return -EBUSY;
 			}
 		} else {
 			if (dsbr100_start(radio) == -1) {
-				warn("Radio did not respond properly");
+				dev_warn(&radio->usbdev->dev,
+					 "Radio did not respond properly\n");
 				return -EBUSY;
 			}
 		}
@@ -416,7 +418,8 @@
 	radio->muted = 1;
 
 	if (dsbr100_start(radio)<0) {
-		warn("Radio did not start up properly");
+		dev_warn(&radio->usbdev->dev,
+			 "Radio did not start up properly\n");
 		radio->users = 0;
 		unlock_kernel();
 		return -EIO;
@@ -501,7 +504,7 @@
 	radio->curfreq = FREQ_MIN*FREQ_MUL;
 	video_set_drvdata(radio->videodev, radio);
 	if (video_register_device(radio->videodev, VFL_TYPE_RADIO, radio_nr) < 0) {
-		warn("Could not register video device");
+		dev_warn(&intf->dev, "Could not register video device\n");
 		video_device_release(radio->videodev);
 		kfree(radio->transfer_buffer);
 		kfree(radio);
diff --git a/drivers/media/radio/radio-si470x.c b/drivers/media/radio/radio-si470x.c
index f6cedcd..5920cd30 100644
--- a/drivers/media/radio/radio-si470x.c
+++ b/drivers/media/radio/radio-si470x.c
@@ -104,6 +104,7 @@
  *		- hardware frequency seek support
  *		- afc indication
  *		- more safety checks, let si470x_get_freq return errno
+ *		- vidioc behavior corrected according to v4l2 spec
  *
  * ToDo:
  * - add firmware download/update support
@@ -141,9 +142,9 @@
 /* USB Device ID List */
 static struct usb_device_id si470x_usb_driver_id_table[] = {
 	/* Silicon Labs USB FM Radio Reference Design */
-	{ USB_DEVICE_AND_INTERFACE_INFO(0x10c4, 0x818a,	USB_CLASS_HID, 0, 0) },
+	{ USB_DEVICE_AND_INTERFACE_INFO(0x10c4, 0x818a, USB_CLASS_HID, 0, 0) },
 	/* ADS/Tech FM Radio Receiver (formerly Instant FM Music) */
-	{ USB_DEVICE_AND_INTERFACE_INFO(0x06e1, 0xa155,	USB_CLASS_HID, 0, 0) },
+	{ USB_DEVICE_AND_INTERFACE_INFO(0x06e1, 0xa155, USB_CLASS_HID, 0, 0) },
 	/* Terminating entry */
 	{ }
 };
@@ -157,7 +158,7 @@
 
 /* Radio Nr */
 static int radio_nr = -1;
-module_param(radio_nr, int, 0);
+module_param(radio_nr, int, 0444);
 MODULE_PARM_DESC(radio_nr, "Radio Nr");
 
 /* Spacing (kHz) */
@@ -165,42 +166,42 @@
 /* 1: 100 kHz (Europe, Japan) */
 /* 2:  50 kHz */
 static unsigned short space = 2;
-module_param(space, ushort, 0);
-MODULE_PARM_DESC(radio_nr, "Spacing: 0=200kHz 1=100kHz *2=50kHz*");
+module_param(space, ushort, 0444);
+MODULE_PARM_DESC(space, "Spacing: 0=200kHz 1=100kHz *2=50kHz*");
 
 /* Bottom of Band (MHz) */
 /* 0: 87.5 - 108 MHz (USA, Europe)*/
 /* 1: 76   - 108 MHz (Japan wide band) */
 /* 2: 76   -  90 MHz (Japan) */
 static unsigned short band = 1;
-module_param(band, ushort, 0);
-MODULE_PARM_DESC(radio_nr, "Band: 0=87.5..108MHz *1=76..108MHz* 2=76..90MHz");
+module_param(band, ushort, 0444);
+MODULE_PARM_DESC(band, "Band: 0=87.5..108MHz *1=76..108MHz* 2=76..90MHz");
 
 /* De-emphasis */
 /* 0: 75 us (USA) */
 /* 1: 50 us (Europe, Australia, Japan) */
 static unsigned short de = 1;
-module_param(de, ushort, 0);
-MODULE_PARM_DESC(radio_nr, "De-emphasis: 0=75us *1=50us*");
+module_param(de, ushort, 0444);
+MODULE_PARM_DESC(de, "De-emphasis: 0=75us *1=50us*");
 
 /* USB timeout */
 static unsigned int usb_timeout = 500;
-module_param(usb_timeout, uint, 0);
+module_param(usb_timeout, uint, 0644);
 MODULE_PARM_DESC(usb_timeout, "USB timeout (ms): *500*");
 
 /* Tune timeout */
 static unsigned int tune_timeout = 3000;
-module_param(tune_timeout, uint, 0);
+module_param(tune_timeout, uint, 0644);
 MODULE_PARM_DESC(tune_timeout, "Tune timeout: *3000*");
 
 /* Seek timeout */
 static unsigned int seek_timeout = 5000;
-module_param(seek_timeout, uint, 0);
+module_param(seek_timeout, uint, 0644);
 MODULE_PARM_DESC(seek_timeout, "Seek timeout: *5000*");
 
 /* RDS buffer blocks */
 static unsigned int rds_buf = 100;
-module_param(rds_buf, uint, 0);
+module_param(rds_buf, uint, 0444);
 MODULE_PARM_DESC(rds_buf, "RDS buffer entries: *100*");
 
 /* RDS maximum block errors */
@@ -209,7 +210,7 @@
 /* 1 means 1-2  errors requiring correction (used by original USBRadio.exe) */
 /* 2 means 3-5  errors requiring correction */
 /* 3 means   6+ errors or errors in checkword, correction not possible */
-module_param(max_rds_errors, ushort, 0);
+module_param(max_rds_errors, ushort, 0644);
 MODULE_PARM_DESC(max_rds_errors, "RDS maximum block errors: *1*");
 
 /* RDS poll frequency */
@@ -218,7 +219,7 @@
 /* 50 is used by radio-cadet */
 /* 75 should be okay */
 /* 80 is the usual RDS receive interval */
-module_param(rds_poll_time, uint, 0);
+module_param(rds_poll_time, uint, 0644);
 MODULE_PARM_DESC(rds_poll_time, "RDS poll time (ms): *40*");
 
 
@@ -667,23 +668,29 @@
 	int retval;
 
 	/* Spacing (kHz) */
-	switch (space) {
+	switch ((radio->registers[SYSCONFIG2] & SYSCONFIG2_SPACE) >> 4) {
 	/* 0: 200 kHz (USA, Australia) */
-	case 0 : spacing = 0.200 * FREQ_MUL; break;
+	case 0:
+		spacing = 0.200 * FREQ_MUL; break;
 	/* 1: 100 kHz (Europe, Japan) */
-	case 1 : spacing = 0.100 * FREQ_MUL; break;
+	case 1:
+		spacing = 0.100 * FREQ_MUL; break;
 	/* 2:  50 kHz */
-	default: spacing = 0.050 * FREQ_MUL; break;
+	default:
+		spacing = 0.050 * FREQ_MUL; break;
 	};
 
 	/* Bottom of Band (MHz) */
-	switch (band) {
+	switch ((radio->registers[SYSCONFIG2] & SYSCONFIG2_BAND) >> 6) {
 	/* 0: 87.5 - 108 MHz (USA, Europe) */
-	case 0 : band_bottom = 87.5 * FREQ_MUL; break;
+	case 0:
+		band_bottom = 87.5 * FREQ_MUL; break;
 	/* 1: 76   - 108 MHz (Japan wide band) */
-	default: band_bottom = 76   * FREQ_MUL; break;
+	default:
+		band_bottom = 76   * FREQ_MUL; break;
 	/* 2: 76   -  90 MHz (Japan) */
-	case 2 : band_bottom = 76   * FREQ_MUL; break;
+	case 2:
+		band_bottom = 76   * FREQ_MUL; break;
 	};
 
 	/* read channel */
@@ -706,23 +713,29 @@
 	unsigned short chan;
 
 	/* Spacing (kHz) */
-	switch (space) {
+	switch ((radio->registers[SYSCONFIG2] & SYSCONFIG2_SPACE) >> 4) {
 	/* 0: 200 kHz (USA, Australia) */
-	case 0 : spacing = 0.200 * FREQ_MUL; break;
+	case 0:
+		spacing = 0.200 * FREQ_MUL; break;
 	/* 1: 100 kHz (Europe, Japan) */
-	case 1 : spacing = 0.100 * FREQ_MUL; break;
+	case 1:
+		spacing = 0.100 * FREQ_MUL; break;
 	/* 2:  50 kHz */
-	default: spacing = 0.050 * FREQ_MUL; break;
+	default:
+		spacing = 0.050 * FREQ_MUL; break;
 	};
 
 	/* Bottom of Band (MHz) */
-	switch (band) {
+	switch ((radio->registers[SYSCONFIG2] & SYSCONFIG2_BAND) >> 6) {
 	/* 0: 87.5 - 108 MHz (USA, Europe) */
-	case 0 : band_bottom = 87.5 * FREQ_MUL; break;
+	case 0:
+		band_bottom = 87.5 * FREQ_MUL; break;
 	/* 1: 76   - 108 MHz (Japan wide band) */
-	default: band_bottom = 76   * FREQ_MUL; break;
+	default:
+		band_bottom = 76   * FREQ_MUL; break;
 	/* 2: 76   -  90 MHz (Japan) */
-	case 2 : band_bottom = 76   * FREQ_MUL; break;
+	case 2:
+		band_bottom = 76   * FREQ_MUL; break;
 	};
 
 	/* Chan = [ Freq (Mhz) - Bottom of Band (MHz) ] / Spacing (kHz) */
@@ -1164,7 +1177,6 @@
  * si470x_v4l2_queryctrl - query control
  */
 static struct v4l2_queryctrl si470x_v4l2_queryctrl[] = {
-/* HINT: the disabled controls are only here to satify kradio and such apps */
 	{
 		.id		= V4L2_CID_AUDIO_VOLUME,
 		.type		= V4L2_CTRL_TYPE_INTEGER,
@@ -1175,18 +1187,6 @@
 		.default_value	= 15,
 	},
 	{
-		.id		= V4L2_CID_AUDIO_BALANCE,
-		.flags		= V4L2_CTRL_FLAG_DISABLED,
-	},
-	{
-		.id		= V4L2_CID_AUDIO_BASS,
-		.flags		= V4L2_CTRL_FLAG_DISABLED,
-	},
-	{
-		.id		= V4L2_CID_AUDIO_TREBLE,
-		.flags		= V4L2_CTRL_FLAG_DISABLED,
-	},
-	{
 		.id		= V4L2_CID_AUDIO_MUTE,
 		.type		= V4L2_CTRL_TYPE_BOOLEAN,
 		.name		= "Mute",
@@ -1195,10 +1195,6 @@
 		.step		= 1,
 		.default_value	= 1,
 	},
-	{
-		.id		= V4L2_CID_AUDIO_LOUDNESS,
-		.flags		= V4L2_CTRL_FLAG_DISABLED,
-	},
 };
 
 
@@ -1220,56 +1216,34 @@
 
 
 /*
- * si470x_vidioc_g_input - get input
- */
-static int si470x_vidioc_g_input(struct file *file, void *priv,
-		unsigned int *i)
-{
-	*i = 0;
-
-	return 0;
-}
-
-
-/*
- * si470x_vidioc_s_input - set input
- */
-static int si470x_vidioc_s_input(struct file *file, void *priv, unsigned int i)
-{
-	int retval = 0;
-
-	/* safety checks */
-	if (i != 0)
-		retval = -EINVAL;
-
-	if (retval < 0)
-		printk(KERN_WARNING DRIVER_NAME
-			": set input failed with %d\n", retval);
-	return retval;
-}
-
-
-/*
  * si470x_vidioc_queryctrl - enumerate control items
  */
 static int si470x_vidioc_queryctrl(struct file *file, void *priv,
 		struct v4l2_queryctrl *qc)
 {
-	unsigned char i;
+	unsigned char i = 0;
 	int retval = -EINVAL;
 
-	/* safety checks */
-	if (!qc->id)
+	/* abort if qc->id is below V4L2_CID_BASE */
+	if (qc->id < V4L2_CID_BASE)
 		goto done;
 
+	/* search video control */
 	for (i = 0; i < ARRAY_SIZE(si470x_v4l2_queryctrl); i++) {
 		if (qc->id == si470x_v4l2_queryctrl[i].id) {
 			memcpy(qc, &(si470x_v4l2_queryctrl[i]), sizeof(*qc));
-			retval = 0;
+			retval = 0; /* found */
 			break;
 		}
 	}
 
+	/* disable unsupported base controls */
+	/* to satisfy kradio and such apps */
+	if ((retval == -EINVAL) && (qc->id < V4L2_CID_LASTP1)) {
+		qc->flags = V4L2_CTRL_FLAG_DISABLED;
+		retval = 0;
+	}
+
 done:
 	if (retval < 0)
 		printk(KERN_WARNING DRIVER_NAME
@@ -1360,44 +1334,13 @@
 static int si470x_vidioc_g_audio(struct file *file, void *priv,
 		struct v4l2_audio *audio)
 {
-	int retval = 0;
-
-	/* safety checks */
-	if (audio->index != 0) {
-		retval = -EINVAL;
-		goto done;
-	}
-
+	/* driver constants */
+	audio->index = 0;
 	strcpy(audio->name, "Radio");
 	audio->capability = V4L2_AUDCAP_STEREO;
+	audio->mode = 0;
 
-done:
-	if (retval < 0)
-		printk(KERN_WARNING DRIVER_NAME
-			": get audio failed with %d\n", retval);
-	return retval;
-}
-
-
-/*
- * si470x_vidioc_s_audio - set audio attributes
- */
-static int si470x_vidioc_s_audio(struct file *file, void *priv,
-		struct v4l2_audio *audio)
-{
-	int retval = 0;
-
-	/* safety checks */
-	if (audio->index != 0) {
-		retval = -EINVAL;
-		goto done;
-	}
-
-done:
-	if (retval < 0)
-		printk(KERN_WARNING DRIVER_NAME
-			": set audio failed with %d\n", retval);
-	return retval;
+	return 0;
 }
 
 
@@ -1415,7 +1358,7 @@
 		retval = -EIO;
 		goto done;
 	}
-	if ((tuner->index != 0) && (tuner->type != V4L2_TUNER_RADIO)) {
+	if (tuner->index != 0) {
 		retval = -EINVAL;
 		goto done;
 	}
@@ -1424,8 +1367,13 @@
 	if (retval < 0)
 		goto done;
 
+	/* driver constants */
 	strcpy(tuner->name, "FM");
-	switch (band) {
+	tuner->type = V4L2_TUNER_RADIO;
+	tuner->capability = V4L2_TUNER_CAP_LOW | V4L2_TUNER_CAP_STEREO;
+
+	/* range limits */
+	switch ((radio->registers[SYSCONFIG2] & SYSCONFIG2_BAND) >> 6) {
 	/* 0: 87.5 - 108 MHz (USA, Europe, default) */
 	default:
 		tuner->rangelow  =  87.5 * FREQ_MUL;
@@ -1442,14 +1390,18 @@
 		tuner->rangehigh =  90   * FREQ_MUL;
 		break;
 	};
-	tuner->rxsubchans = V4L2_TUNER_SUB_MONO | V4L2_TUNER_SUB_STEREO;
-	tuner->capability = V4L2_TUNER_CAP_LOW;
 
-	/* Stereo indicator == Stereo (instead of Mono) */
+	/* stereo indicator == stereo (instead of mono) */
 	if ((radio->registers[STATUSRSSI] & STATUSRSSI_ST) == 1)
-		tuner->audmode = V4L2_TUNER_MODE_STEREO;
+		tuner->rxsubchans = V4L2_TUNER_SUB_MONO | V4L2_TUNER_SUB_STEREO;
 	else
+		tuner->rxsubchans = V4L2_TUNER_SUB_MONO;
+
+	/* mono/stereo selector */
+	if ((radio->registers[POWERCFG] & POWERCFG_MONO) == 1)
 		tuner->audmode = V4L2_TUNER_MODE_MONO;
+	else
+		tuner->audmode = V4L2_TUNER_MODE_STEREO;
 
 	/* min is worst, max is best; signal:0..0xffff; rssi: 0..0xff */
 	tuner->signal = (radio->registers[STATUSRSSI] & STATUSRSSI_RSSI)
@@ -1474,23 +1426,28 @@
 		struct v4l2_tuner *tuner)
 {
 	struct si470x_device *radio = video_drvdata(file);
-	int retval = 0;
+	int retval = -EINVAL;
 
 	/* safety checks */
 	if (radio->disconnected) {
 		retval = -EIO;
 		goto done;
 	}
-	if ((tuner->index != 0) && (tuner->type != V4L2_TUNER_RADIO)) {
-		retval = -EINVAL;
+	if (tuner->index != 0)
+		goto done;
+
+	/* mono/stereo selector */
+	switch (tuner->audmode) {
+	case V4L2_TUNER_MODE_MONO:
+		radio->registers[POWERCFG] |= POWERCFG_MONO;  /* force mono */
+		break;
+	case V4L2_TUNER_MODE_STEREO:
+		radio->registers[POWERCFG] &= ~POWERCFG_MONO; /* try stereo */
+		break;
+	default:
 		goto done;
 	}
 
-	if (tuner->audmode == V4L2_TUNER_MODE_MONO)
-		radio->registers[POWERCFG] |= POWERCFG_MONO;  /* force mono */
-	else
-		radio->registers[POWERCFG] &= ~POWERCFG_MONO; /* try stereo */
-
 	retval = si470x_set_register(radio, POWERCFG);
 
 done:
@@ -1515,11 +1472,12 @@
 		retval = -EIO;
 		goto done;
 	}
-	if ((freq->tuner != 0) && (freq->type != V4L2_TUNER_RADIO)) {
+	if (freq->tuner != 0) {
 		retval = -EINVAL;
 		goto done;
 	}
 
+	freq->type = V4L2_TUNER_RADIO;
 	retval = si470x_get_freq(radio, &freq->frequency);
 
 done:
@@ -1544,7 +1502,7 @@
 		retval = -EIO;
 		goto done;
 	}
-	if ((freq->tuner != 0) && (freq->type != V4L2_TUNER_RADIO)) {
+	if (freq->tuner != 0) {
 		retval = -EINVAL;
 		goto done;
 	}
@@ -1573,7 +1531,7 @@
 		retval = -EIO;
 		goto done;
 	}
-	if ((seek->tuner != 0) && (seek->type != V4L2_TUNER_RADIO)) {
+	if (seek->tuner != 0) {
 		retval = -EINVAL;
 		goto done;
 	}
@@ -1588,15 +1546,16 @@
 	return retval;
 }
 
+
+/*
+ * si470x_ioctl_ops - video device ioctl operations
+ */
 static const struct v4l2_ioctl_ops si470x_ioctl_ops = {
 	.vidioc_querycap	= si470x_vidioc_querycap,
-	.vidioc_g_input		= si470x_vidioc_g_input,
-	.vidioc_s_input		= si470x_vidioc_s_input,
 	.vidioc_queryctrl	= si470x_vidioc_queryctrl,
 	.vidioc_g_ctrl		= si470x_vidioc_g_ctrl,
 	.vidioc_s_ctrl		= si470x_vidioc_s_ctrl,
 	.vidioc_g_audio		= si470x_vidioc_g_audio,
-	.vidioc_s_audio		= si470x_vidioc_s_audio,
 	.vidioc_g_tuner		= si470x_vidioc_g_tuner,
 	.vidioc_s_tuner		= si470x_vidioc_s_tuner,
 	.vidioc_g_frequency	= si470x_vidioc_g_frequency,
@@ -1604,14 +1563,15 @@
 	.vidioc_s_hw_freq_seek	= si470x_vidioc_s_hw_freq_seek,
 };
 
+
 /*
- * si470x_viddev_tamples - video device interface
+ * si470x_viddev_template - video device interface
  */
 static struct video_device si470x_viddev_template = {
 	.fops			= &si470x_fops,
-	.ioctl_ops 		= &si470x_ioctl_ops,
 	.name			= DRIVER_NAME,
 	.release		= video_device_release,
+	.ioctl_ops		= &si470x_ioctl_ops,
 };
 
 
diff --git a/drivers/media/video/adv7170.c b/drivers/media/video/adv7170.c
index f794f2d..e0eb4f3 100644
--- a/drivers/media/video/adv7170.c
+++ b/drivers/media/video/adv7170.c
@@ -29,43 +29,24 @@
  */
 
 #include <linux/module.h>
-#include <linux/init.h>
-#include <linux/delay.h>
-#include <linux/errno.h>
-#include <linux/fs.h>
-#include <linux/kernel.h>
-#include <linux/major.h>
-#include <linux/slab.h>
-#include <linux/mm.h>
-#include <linux/signal.h>
 #include <linux/types.h>
-#include <linux/i2c.h>
-#include <asm/io.h>
-#include <asm/pgtable.h>
-#include <asm/page.h>
+#include <linux/ioctl.h>
 #include <asm/uaccess.h>
-
+#include <linux/i2c.h>
+#include <linux/i2c-id.h>
 #include <linux/videodev.h>
 #include <linux/video_encoder.h>
+#include <media/v4l2-common.h>
+#include <media/v4l2-i2c-drv-legacy.h>
 
 MODULE_DESCRIPTION("Analog Devices ADV7170 video encoder driver");
 MODULE_AUTHOR("Maxim Yevtyushkin");
 MODULE_LICENSE("GPL");
 
-
-#define I2C_NAME(x) (x)->name
-
-
 static int debug;
 module_param(debug, int, 0);
 MODULE_PARM_DESC(debug, "Debug level (0-1)");
 
-#define dprintk(num, format, args...) \
-	do { \
-		if (debug >= num) \
-			printk(format, ##args); \
-	} while (0)
-
 /* ----------------------------------------------------------------------- */
 
 struct adv7170 {
@@ -80,21 +61,12 @@
 	int sat;
 };
 
-#define   I2C_ADV7170        0xd4
-#define   I2C_ADV7171        0x54
-
-static char adv7170_name[] = "adv7170";
-static char adv7171_name[] = "adv7171";
-
 static char *inputs[] = { "pass_through", "play_back" };
 static char *norms[] = { "PAL", "NTSC" };
 
 /* ----------------------------------------------------------------------- */
 
-static inline int
-adv7170_write (struct i2c_client *client,
-	       u8                 reg,
-	       u8                 value)
+static inline int adv7170_write(struct i2c_client *client, u8 reg, u8 value)
 {
 	struct adv7170 *encoder = i2c_get_clientdata(client);
 
@@ -102,17 +74,13 @@
 	return i2c_smbus_write_byte_data(client, reg, value);
 }
 
-static inline int
-adv7170_read (struct i2c_client *client,
-	      u8                 reg)
+static inline int adv7170_read(struct i2c_client *client, u8 reg)
 {
 	return i2c_smbus_read_byte_data(client, reg);
 }
 
-static int
-adv7170_write_block (struct i2c_client *client,
-		     const u8          *data,
-		     unsigned int       len)
+static int adv7170_write_block(struct i2c_client *client,
+		     const u8 *data, unsigned int len)
 {
 	int ret = -1;
 	u8 reg;
@@ -133,33 +101,25 @@
 				    encoder->reg[reg++] = data[1];
 				len -= 2;
 				data += 2;
-			} while (len >= 2 && data[0] == reg &&
-				 block_len < 32);
-			if ((ret = i2c_master_send(client, block_data,
-						   block_len)) < 0)
+			} while (len >= 2 && data[0] == reg && block_len < 32);
+			ret = i2c_master_send(client, block_data, block_len);
+			if (ret < 0)
 				break;
 		}
 	} else {
 		/* do some slow I2C emulation kind of thing */
 		while (len >= 2) {
 			reg = *data++;
-			if ((ret = adv7170_write(client, reg,
-						 *data++)) < 0)
+			ret = adv7170_write(client, reg, *data++);
+			if (ret < 0)
 				break;
 			len -= 2;
 		}
 	}
-
 	return ret;
 }
 
 /* ----------------------------------------------------------------------- */
-// Output filter:  S-Video  Composite
-
-#define MR050       0x11	//0x09
-#define MR060       0x14	//0x0c
-
-//---------------------------------------------------------------------------
 
 #define TR0MODE     0x4c
 #define TR0RST	    0x80
@@ -167,7 +127,6 @@
 #define TR1CAPT	    0x00
 #define TR1PLAY	    0x00
 
-
 static const unsigned char init_NTSC[] = {
 	0x00, 0x10,		// MR0
 	0x01, 0x20,		// MR1
@@ -227,15 +186,11 @@
 };
 
 
-static int
-adv7170_command (struct i2c_client *client,
-		 unsigned int       cmd,
-		 void *             arg)
+static int adv7170_command(struct i2c_client *client, unsigned cmd, void *arg)
 {
 	struct adv7170 *encoder = i2c_get_clientdata(client);
 
 	switch (cmd) {
-
 	case 0:
 #if 0
 		/* This is just for testing!!! */
@@ -254,18 +209,16 @@
 			     VIDEO_ENCODER_NTSC;
 		cap->inputs = 2;
 		cap->outputs = 1;
-	}
 		break;
+	}
 
 	case ENCODER_SET_NORM:
 	{
 		int iarg = *(int *) arg;
 
-		dprintk(1, KERN_DEBUG "%s_command: set norm %d",
-			I2C_NAME(client), iarg);
+		v4l_dbg(1, debug, client, "set norm %d\n", iarg);
 
 		switch (iarg) {
-
 		case VIDEO_MODE_NTSC:
 			adv7170_write_block(client, init_NTSC,
 					    sizeof(init_NTSC));
@@ -285,16 +238,13 @@
 			break;
 
 		default:
-			dprintk(1, KERN_ERR "%s: illegal norm: %d\n",
-			       I2C_NAME(client), iarg);
+			v4l_dbg(1, debug, client, "illegal norm: %d\n", iarg);
 			return -EINVAL;
-
 		}
-		dprintk(1, KERN_DEBUG "%s: switched to %s\n", I2C_NAME(client),
-			norms[iarg]);
+		v4l_dbg(1, debug, client, "switched to %s\n", norms[iarg]);
 		encoder->norm = iarg;
-	}
 		break;
+	}
 
 	case ENCODER_SET_INPUT:
 	{
@@ -304,19 +254,17 @@
 		 *iarg = 1: input is from ZR36060
 		 *iarg = 2: color bar */
 
-		dprintk(1, KERN_DEBUG "%s_command: set input from %s\n",
-			I2C_NAME(client),
+		v4l_dbg(1, debug, client, "set input from %s\n",
 			iarg == 0 ? "decoder" : "ZR36060");
 
 		switch (iarg) {
-
 		case 0:
 			adv7170_write(client, 0x01, 0x20);
 			adv7170_write(client, 0x08, TR1CAPT);	/* TR1 */
 			adv7170_write(client, 0x02, 0x0e);	// Enable genlock
 			adv7170_write(client, 0x07, TR0MODE | TR0RST);
 			adv7170_write(client, 0x07, TR0MODE);
-			//udelay(10);
+			/* udelay(10); */
 			break;
 
 		case 1:
@@ -325,20 +273,17 @@
 			adv7170_write(client, 0x02, 0x08);
 			adv7170_write(client, 0x07, TR0MODE | TR0RST);
 			adv7170_write(client, 0x07, TR0MODE);
-			//udelay(10);
+			/* udelay(10); */
 			break;
 
 		default:
-			dprintk(1, KERN_ERR "%s: illegal input: %d\n",
-				I2C_NAME(client), iarg);
+			v4l_dbg(1, debug, client, "illegal input: %d\n", iarg);
 			return -EINVAL;
-
 		}
-		dprintk(1, KERN_DEBUG "%s: switched to %s\n", I2C_NAME(client),
-			inputs[iarg]);
+		v4l_dbg(1, debug, client, "switched to %s\n", inputs[iarg]);
 		encoder->input = iarg;
-	}
 		break;
+	}
 
 	case ENCODER_SET_OUTPUT:
 	{
@@ -348,16 +293,16 @@
 		if (*iarg != 0) {
 			return -EINVAL;
 		}
-	}
 		break;
+	}
 
 	case ENCODER_ENABLE_OUTPUT:
 	{
 		int *iarg = arg;
 
 		encoder->enable = !!*iarg;
-	}
 		break;
+	}
 
 	default:
 		return -EINVAL;
@@ -368,149 +313,67 @@
 
 /* ----------------------------------------------------------------------- */
 
-/*
- * Generic i2c probe
- * concerning the addresses: i2c wants 7 bit (without the r/w bit), so '>>1'
- */
-static unsigned short normal_i2c[] =
-    { I2C_ADV7170 >> 1, (I2C_ADV7170 >> 1) + 1,
-	I2C_ADV7171 >> 1, (I2C_ADV7171 >> 1) + 1,
+static unsigned short normal_i2c[] = {
+	0xd4 >> 1, 0xd6 >> 1,	/* adv7170 IDs */
+	0x54 >> 1, 0x56 >> 1,	/* adv7171 IDs */
 	I2C_CLIENT_END
 };
 
-static unsigned short ignore = I2C_CLIENT_END;
+I2C_CLIENT_INSMOD;
 
-static struct i2c_client_address_data addr_data = {
-	.normal_i2c		= normal_i2c,
-	.probe			= &ignore,
-	.ignore			= &ignore,
-};
-
-static struct i2c_driver i2c_driver_adv7170;
-
-static int
-adv7170_detect_client (struct i2c_adapter *adapter,
-		       int                 address,
-		       int                 kind)
+static int adv7170_probe(struct i2c_client *client,
+			const struct i2c_device_id *id)
 {
-	int i;
-	struct i2c_client *client;
 	struct adv7170 *encoder;
-	char *dname;
-
-	dprintk(1,
-		KERN_INFO
-		"adv7170.c: detecting adv7170 client on address 0x%x\n",
-		address << 1);
+	int i;
 
 	/* Check if the adapter supports the needed features */
-	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA))
-		return 0;
+	if (!i2c_check_functionality(client->adapter, I2C_FUNC_SMBUS_BYTE_DATA))
+		return -ENODEV;
 
-	client = kzalloc(sizeof(struct i2c_client), GFP_KERNEL);
-	if (!client)
-		return -ENOMEM;
-	client->addr = address;
-	client->adapter = adapter;
-	client->driver = &i2c_driver_adv7170;
-	if ((client->addr == I2C_ADV7170 >> 1) ||
-	    (client->addr == (I2C_ADV7170 >> 1) + 1)) {
-		dname = adv7170_name;
-	} else if ((client->addr == I2C_ADV7171 >> 1) ||
-		   (client->addr == (I2C_ADV7171 >> 1) + 1)) {
-		dname = adv7171_name;
-	} else {
-		/* We should never get here!!! */
-		kfree(client);
-		return 0;
-	}
-	strlcpy(I2C_NAME(client), dname, sizeof(I2C_NAME(client)));
+	v4l_info(client, "chip found @ 0x%x (%s)\n",
+			client->addr << 1, client->adapter->name);
 
 	encoder = kzalloc(sizeof(struct adv7170), GFP_KERNEL);
-	if (encoder == NULL) {
-		kfree(client);
+	if (encoder == NULL)
 		return -ENOMEM;
-	}
 	encoder->norm = VIDEO_MODE_NTSC;
 	encoder->input = 0;
 	encoder->enable = 1;
 	i2c_set_clientdata(client, encoder);
 
-	i = i2c_attach_client(client);
-	if (i) {
-		kfree(client);
-		kfree(encoder);
-		return i;
-	}
-
 	i = adv7170_write_block(client, init_NTSC, sizeof(init_NTSC));
 	if (i >= 0) {
 		i = adv7170_write(client, 0x07, TR0MODE | TR0RST);
 		i = adv7170_write(client, 0x07, TR0MODE);
 		i = adv7170_read(client, 0x12);
-		dprintk(1, KERN_INFO "%s_attach: rev. %d at 0x%02x\n",
-			I2C_NAME(client), i & 1, client->addr << 1);
+		v4l_dbg(1, debug, client, "revision %d\n", i & 1);
 	}
-	if (i < 0) {
-		dprintk(1, KERN_ERR "%s_attach: init error 0x%x\n",
-		       I2C_NAME(client), i);
-	}
-
+	if (i < 0)
+		v4l_dbg(1, debug, client, "init error 0x%x\n", i);
 	return 0;
 }
 
-static int
-adv7170_attach_adapter (struct i2c_adapter *adapter)
+static int adv7170_remove(struct i2c_client *client)
 {
-	dprintk(1,
-		KERN_INFO
-		"adv7170.c: starting probe for adapter %s (0x%x)\n",
-		I2C_NAME(adapter), adapter->id);
-	return i2c_probe(adapter, &addr_data, &adv7170_detect_client);
-}
-
-static int
-adv7170_detach_client (struct i2c_client *client)
-{
-	struct adv7170 *encoder = i2c_get_clientdata(client);
-	int err;
-
-	err = i2c_detach_client(client);
-	if (err) {
-		return err;
-	}
-
-	kfree(encoder);
-	kfree(client);
-
+	kfree(i2c_get_clientdata(client));
 	return 0;
 }
 
 /* ----------------------------------------------------------------------- */
 
-static struct i2c_driver i2c_driver_adv7170 = {
-	.driver = {
-		.name = "adv7170",	/* name */
-	},
-
-	.id = I2C_DRIVERID_ADV7170,
-
-	.attach_adapter = adv7170_attach_adapter,
-	.detach_client = adv7170_detach_client,
-	.command = adv7170_command,
+static const struct i2c_device_id adv7170_id[] = {
+	{ "adv7170", 0 },
+	{ "adv7171", 0 },
+	{ }
 };
+MODULE_DEVICE_TABLE(i2c, adv7170_id);
 
-static int __init
-adv7170_init (void)
-{
-	return i2c_add_driver(&i2c_driver_adv7170);
-}
-
-static void __exit
-adv7170_exit (void)
-{
-	i2c_del_driver(&i2c_driver_adv7170);
-}
-
-module_init(adv7170_init);
-module_exit(adv7170_exit);
+static struct v4l2_i2c_driver_data v4l2_i2c_data = {
+	.name = "adv7170",
+	.driverid = I2C_DRIVERID_ADV7170,
+	.command = adv7170_command,
+	.probe = adv7170_probe,
+	.remove = adv7170_remove,
+	.id_table = adv7170_id,
+};
diff --git a/drivers/media/video/adv7175.c b/drivers/media/video/adv7175.c
index 8ee07a6..6008e84 100644
--- a/drivers/media/video/adv7175.c
+++ b/drivers/media/video/adv7175.c
@@ -25,43 +25,24 @@
  */
 
 #include <linux/module.h>
-#include <linux/init.h>
-#include <linux/delay.h>
-#include <linux/errno.h>
-#include <linux/fs.h>
-#include <linux/kernel.h>
-#include <linux/major.h>
-#include <linux/slab.h>
-#include <linux/mm.h>
-#include <linux/signal.h>
 #include <linux/types.h>
-#include <linux/i2c.h>
-#include <asm/io.h>
-#include <asm/pgtable.h>
-#include <asm/page.h>
+#include <linux/ioctl.h>
 #include <asm/uaccess.h>
-
+#include <linux/i2c.h>
+#include <linux/i2c-id.h>
 #include <linux/videodev.h>
 #include <linux/video_encoder.h>
+#include <media/v4l2-common.h>
+#include <media/v4l2-i2c-drv-legacy.h>
 
 MODULE_DESCRIPTION("Analog Devices ADV7175 video encoder driver");
 MODULE_AUTHOR("Dave Perks");
 MODULE_LICENSE("GPL");
 
-
-#define I2C_NAME(s) (s)->name
-
-
 static int debug;
 module_param(debug, int, 0);
 MODULE_PARM_DESC(debug, "Debug level (0-1)");
 
-#define dprintk(num, format, args...) \
-	do { \
-		if (debug >= num) \
-			printk(format, ##args); \
-	} while (0)
-
 /* ----------------------------------------------------------------------- */
 
 struct adv7175 {
@@ -77,33 +58,23 @@
 #define   I2C_ADV7175        0xd4
 #define   I2C_ADV7176        0x54
 
-static char adv7175_name[] = "adv7175";
-static char adv7176_name[] = "adv7176";
-
 static char *inputs[] = { "pass_through", "play_back", "color_bar" };
 static char *norms[] = { "PAL", "NTSC", "SECAM->PAL (may not work!)" };
 
 /* ----------------------------------------------------------------------- */
 
-static inline int
-adv7175_write (struct i2c_client *client,
-	       u8                 reg,
-	       u8                 value)
+static inline int adv7175_write(struct i2c_client *client, u8 reg, u8 value)
 {
 	return i2c_smbus_write_byte_data(client, reg, value);
 }
 
-static inline int
-adv7175_read (struct i2c_client *client,
-	      u8                 reg)
+static inline int adv7175_read(struct i2c_client *client, u8 reg)
 {
 	return i2c_smbus_read_byte_data(client, reg);
 }
 
-static int
-adv7175_write_block (struct i2c_client *client,
-		     const u8          *data,
-		     unsigned int       len)
+static int adv7175_write_block(struct i2c_client *client,
+		     const u8 *data, unsigned int len)
 {
 	int ret = -1;
 	u8 reg;
@@ -123,18 +94,17 @@
 				reg++;
 				len -= 2;
 				data += 2;
-			} while (len >= 2 && data[0] == reg &&
-				 block_len < 32);
-			if ((ret = i2c_master_send(client, block_data,
-						   block_len)) < 0)
+			} while (len >= 2 && data[0] == reg && block_len < 32);
+			ret = i2c_master_send(client, block_data, block_len);
+			if (ret < 0)
 				break;
 		}
 	} else {
 		/* do some slow I2C emulation kind of thing */
 		while (len >= 2) {
 			reg = *data++;
-			if ((ret = adv7175_write(client, reg,
-						 *data++)) < 0)
+			ret = adv7175_write(client, reg, *data++);
+			if (ret < 0)
 				break;
 			len -= 2;
 		}
@@ -143,13 +113,11 @@
 	return ret;
 }
 
-static void
-set_subcarrier_freq (struct i2c_client *client,
-		     int                pass_through)
+static void set_subcarrier_freq(struct i2c_client *client, int pass_through)
 {
 	/* for some reason pass_through NTSC needs
 	 * a different sub-carrier freq to remain stable. */
-	if(pass_through)
+	if (pass_through)
 		adv7175_write(client, 0x02, 0x00);
 	else
 		adv7175_write(client, 0x02, 0x55);
@@ -160,12 +128,12 @@
 }
 
 /* ----------------------------------------------------------------------- */
-// Output filter:  S-Video  Composite
+/* Output filter:  S-Video  Composite */
 
-#define MR050       0x11	//0x09
-#define MR060       0x14	//0x0c
+#define MR050       0x11	/* 0x09 */
+#define MR060       0x14	/* 0x0c */
 
-//---------------------------------------------------------------------------
+/* ----------------------------------------------------------------------- */
 
 #define TR0MODE     0x46
 #define TR0RST	    0x80
@@ -216,15 +184,11 @@
 	0x06, 0x1a,		/* subc. phase */
 };
 
-static int
-adv7175_command (struct i2c_client *client,
-		 unsigned int       cmd,
-		 void              *arg)
+static int adv7175_command(struct i2c_client *client, unsigned cmd, void *arg)
 {
 	struct adv7175 *encoder = i2c_get_clientdata(client);
 
 	switch (cmd) {
-
 	case 0:
 		/* This is just for testing!!! */
 		adv7175_write_block(client, init_common,
@@ -242,15 +206,14 @@
 			     VIDEO_ENCODER_SECAM; /* well, hacky */
 		cap->inputs = 2;
 		cap->outputs = 1;
-	}
 		break;
+	}
 
 	case ENCODER_SET_NORM:
 	{
 		int iarg = *(int *) arg;
 
 		switch (iarg) {
-
 		case VIDEO_MODE_NTSC:
 			adv7175_write_block(client, init_ntsc,
 					    sizeof(init_ntsc));
@@ -284,16 +247,13 @@
 			adv7175_write(client, 0x07, TR0MODE);
 			break;
 		default:
-			dprintk(1, KERN_ERR "%s: illegal norm: %d\n",
-				I2C_NAME(client), iarg);
+			v4l_dbg(1, debug, client, "illegal norm: %d\n", iarg);
 			return -EINVAL;
-
 		}
-		dprintk(1, KERN_INFO "%s: switched to %s\n", I2C_NAME(client),
-			norms[iarg]);
+		v4l_dbg(1, debug, client, "switched to %s\n", norms[iarg]);
 		encoder->norm = iarg;
-	}
 		break;
+	}
 
 	case ENCODER_SET_INPUT:
 	{
@@ -304,7 +264,6 @@
 		 *iarg = 2: color bar */
 
 		switch (iarg) {
-
 		case 0:
 			adv7175_write(client, 0x01, 0x00);
 
@@ -331,7 +290,7 @@
 			adv7175_write(client, 0x0d, 0x49);
 			adv7175_write(client, 0x07, TR0MODE | TR0RST);
 			adv7175_write(client, 0x07, TR0MODE);
-			//udelay(10);
+			/* udelay(10); */
 			break;
 
 		case 2:
@@ -343,39 +302,35 @@
 			adv7175_write(client, 0x0d, 0x49);
 			adv7175_write(client, 0x07, TR0MODE | TR0RST);
 			adv7175_write(client, 0x07, TR0MODE);
-			//udelay(10);
+			/* udelay(10); */
 			break;
 
 		default:
-			dprintk(1, KERN_ERR "%s: illegal input: %d\n",
-				I2C_NAME(client), iarg);
+			v4l_dbg(1, debug, client, "illegal input: %d\n", iarg);
 			return -EINVAL;
-
 		}
-		dprintk(1, KERN_INFO "%s: switched to %s\n", I2C_NAME(client),
-			inputs[iarg]);
+		v4l_dbg(1, debug, client, "switched to %s\n", inputs[iarg]);
 		encoder->input = iarg;
-	}
 		break;
+	}
 
 	case ENCODER_SET_OUTPUT:
 	{
 		int *iarg = arg;
 
 		/* not much choice of outputs */
-		if (*iarg != 0) {
+		if (*iarg != 0)
 			return -EINVAL;
-		}
-	}
 		break;
+	}
 
 	case ENCODER_ENABLE_OUTPUT:
 	{
 		int *iarg = arg;
 
 		encoder->enable = !!*iarg;
-	}
 		break;
+	}
 
 	default:
 		return -EINVAL;
@@ -390,145 +345,67 @@
  * Generic i2c probe
  * concerning the addresses: i2c wants 7 bit (without the r/w bit), so '>>1'
  */
-static unsigned short normal_i2c[] =
-    { I2C_ADV7175 >> 1, (I2C_ADV7175 >> 1) + 1,
+static unsigned short normal_i2c[] = {
+	I2C_ADV7175 >> 1, (I2C_ADV7175 >> 1) + 1,
 	I2C_ADV7176 >> 1, (I2C_ADV7176 >> 1) + 1,
 	I2C_CLIENT_END
 };
 
-static unsigned short ignore = I2C_CLIENT_END;
+I2C_CLIENT_INSMOD;
 
-static struct i2c_client_address_data addr_data = {
-	.normal_i2c		= normal_i2c,
-	.probe			= &ignore,
-	.ignore			= &ignore,
-};
-
-static struct i2c_driver i2c_driver_adv7175;
-
-static int
-adv7175_detect_client (struct i2c_adapter *adapter,
-		       int                 address,
-		       int                 kind)
+static int adv7175_probe(struct i2c_client *client,
+			const struct i2c_device_id *id)
 {
 	int i;
-	struct i2c_client *client;
 	struct adv7175 *encoder;
-	char *dname;
-
-	dprintk(1,
-		KERN_INFO
-		"adv7175.c: detecting adv7175 client on address 0x%x\n",
-		address << 1);
 
 	/* Check if the adapter supports the needed features */
-	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA))
-		return 0;
+	if (!i2c_check_functionality(client->adapter, I2C_FUNC_SMBUS_BYTE_DATA))
+		return -ENODEV;
 
-	client = kzalloc(sizeof(struct i2c_client), GFP_KERNEL);
-	if (!client)
-		return -ENOMEM;
-	client->addr = address;
-	client->adapter = adapter;
-	client->driver = &i2c_driver_adv7175;
-	if ((client->addr == I2C_ADV7175 >> 1) ||
-	    (client->addr == (I2C_ADV7175 >> 1) + 1)) {
-		dname = adv7175_name;
-	} else if ((client->addr == I2C_ADV7176 >> 1) ||
-		   (client->addr == (I2C_ADV7176 >> 1) + 1)) {
-		dname = adv7176_name;
-	} else {
-		/* We should never get here!!! */
-		kfree(client);
-		return 0;
-	}
-	strlcpy(I2C_NAME(client), dname, sizeof(I2C_NAME(client)));
+	v4l_info(client, "chip found @ 0x%x (%s)\n",
+			client->addr << 1, client->adapter->name);
 
 	encoder = kzalloc(sizeof(struct adv7175), GFP_KERNEL);
-	if (encoder == NULL) {
-		kfree(client);
+	if (encoder == NULL)
 		return -ENOMEM;
-	}
 	encoder->norm = VIDEO_MODE_PAL;
 	encoder->input = 0;
 	encoder->enable = 1;
 	i2c_set_clientdata(client, encoder);
 
-	i = i2c_attach_client(client);
-	if (i) {
-		kfree(client);
-		kfree(encoder);
-		return i;
-	}
-
 	i = adv7175_write_block(client, init_common, sizeof(init_common));
 	if (i >= 0) {
 		i = adv7175_write(client, 0x07, TR0MODE | TR0RST);
 		i = adv7175_write(client, 0x07, TR0MODE);
 		i = adv7175_read(client, 0x12);
-		dprintk(1, KERN_INFO "%s_attach: rev. %d at 0x%x\n",
-			I2C_NAME(client), i & 1, client->addr << 1);
+		v4l_dbg(1, debug, client, "revision %d\n", i & 1);
 	}
-	if (i < 0) {
-		dprintk(1, KERN_ERR "%s_attach: init error 0x%x\n",
-			I2C_NAME(client), i);
-	}
-
+	if (i < 0)
+		v4l_dbg(1, debug, client, "init error 0x%x\n", i);
 	return 0;
 }
 
-static int
-adv7175_attach_adapter (struct i2c_adapter *adapter)
+static int adv7175_remove(struct i2c_client *client)
 {
-	dprintk(1,
-		KERN_INFO
-		"adv7175.c: starting probe for adapter %s (0x%x)\n",
-		I2C_NAME(adapter), adapter->id);
-	return i2c_probe(adapter, &addr_data, &adv7175_detect_client);
-}
-
-static int
-adv7175_detach_client (struct i2c_client *client)
-{
-	struct adv7175 *encoder = i2c_get_clientdata(client);
-	int err;
-
-	err = i2c_detach_client(client);
-	if (err) {
-		return err;
-	}
-
-	kfree(encoder);
-	kfree(client);
-
+	kfree(i2c_get_clientdata(client));
 	return 0;
 }
 
 /* ----------------------------------------------------------------------- */
 
-static struct i2c_driver i2c_driver_adv7175 = {
-	.driver = {
-		.name = "adv7175",	/* name */
-	},
-
-	.id = I2C_DRIVERID_ADV7175,
-
-	.attach_adapter = adv7175_attach_adapter,
-	.detach_client = adv7175_detach_client,
-	.command = adv7175_command,
+static const struct i2c_device_id adv7175_id[] = {
+	{ "adv7175", 0 },
+	{ "adv7176", 0 },
+	{ }
 };
+MODULE_DEVICE_TABLE(i2c, adv7175_id);
 
-static int __init
-adv7175_init (void)
-{
-	return i2c_add_driver(&i2c_driver_adv7175);
-}
-
-static void __exit
-adv7175_exit (void)
-{
-	i2c_del_driver(&i2c_driver_adv7175);
-}
-
-module_init(adv7175_init);
-module_exit(adv7175_exit);
+static struct v4l2_i2c_driver_data v4l2_i2c_data = {
+	.name = "adv7175",
+	.driverid = I2C_DRIVERID_ADV7175,
+	.command = adv7175_command,
+	.probe = adv7175_probe,
+	.remove = adv7175_remove,
+	.id_table = adv7175_id,
+};
diff --git a/drivers/media/video/au0828/au0828-cards.c b/drivers/media/video/au0828/au0828-cards.c
index 5f07a8a..d60123b 100644
--- a/drivers/media/video/au0828/au0828-cards.c
+++ b/drivers/media/video/au0828/au0828-cards.c
@@ -90,6 +90,7 @@
 	case 72221: /* WinTV-HVR950q (OEM, IR, ATSC/QAM and basic analog video */
 	case 72231: /* WinTV-HVR950q (OEM, IR, ATSC/QAM and basic analog video */
 	case 72241: /* WinTV-HVR950q (OEM, No IR, ATSC/QAM and basic analog video */
+	case 72251: /* WinTV-HVR950q (Retail, IR, ATSC/QAM and basic analog video */
 	case 72301: /* WinTV-HVR850 (Retail, IR, ATSC and basic analog video */
 	case 72500: /* WinTV-HVR950q (OEM, No IR, ATSC/QAM */
 		break;
@@ -185,7 +186,7 @@
 }
 
 /* table of devices that work with this driver */
-struct usb_device_id au0828_usb_id_table [] = {
+struct usb_device_id au0828_usb_id_table[] = {
 	{ USB_DEVICE(0x2040, 0x7200),
 		.driver_info = AU0828_BOARD_HAUPPAUGE_HVR950Q },
 	{ USB_DEVICE(0x2040, 0x7240),
@@ -198,6 +199,8 @@
 		.driver_info = AU0828_BOARD_HAUPPAUGE_HVR950Q },
 	{ USB_DEVICE(0x2040, 0x721b),
 		.driver_info = AU0828_BOARD_HAUPPAUGE_HVR950Q },
+	{ USB_DEVICE(0x2040, 0x721e),
+		.driver_info = AU0828_BOARD_HAUPPAUGE_HVR950Q },
 	{ USB_DEVICE(0x2040, 0x721f),
 		.driver_info = AU0828_BOARD_HAUPPAUGE_HVR950Q },
 	{ USB_DEVICE(0x2040, 0x7280),
diff --git a/drivers/media/video/au0828/au0828-core.c b/drivers/media/video/au0828/au0828-core.c
index d856de9..5765e86 100644
--- a/drivers/media/video/au0828/au0828-core.c
+++ b/drivers/media/video/au0828/au0828-core.c
@@ -91,7 +91,8 @@
 		status = usb_control_msg(dev->usbdev,
 				usb_sndctrlpipe(dev->usbdev, 0),
 				request,
-				USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
+				USB_DIR_OUT | USB_TYPE_VENDOR |
+					USB_RECIP_DEVICE,
 				value, index,
 				cp, size, 1000);
 
diff --git a/drivers/media/video/au0828/au0828-dvb.c b/drivers/media/video/au0828/au0828-dvb.c
index f0fcdb4..a882cf5 100644
--- a/drivers/media/video/au0828/au0828-dvb.c
+++ b/drivers/media/video/au0828/au0828-dvb.c
@@ -173,7 +173,8 @@
 		purb->status = -EINPROGRESS;
 		usb_fill_bulk_urb(purb,
 				  dev->usbdev,
-				  usb_rcvbulkpipe(dev->usbdev, _AU0828_BULKPIPE),
+				  usb_rcvbulkpipe(dev->usbdev,
+					_AU0828_BULKPIPE),
 				  purb->transfer_buffer,
 				  URB_BUFSIZE,
 				  urb_completion,
diff --git a/drivers/media/video/bt819.c b/drivers/media/video/bt819.c
index ddd2a79..a07b7b8 100644
--- a/drivers/media/video/bt819.c
+++ b/drivers/media/video/bt819.c
@@ -29,44 +29,25 @@
  */
 
 #include <linux/module.h>
-#include <linux/init.h>
 #include <linux/delay.h>
-#include <linux/errno.h>
-#include <linux/fs.h>
-#include <linux/kernel.h>
-#include <linux/major.h>
-#include <linux/slab.h>
-#include <linux/mm.h>
-#include <linux/signal.h>
 #include <linux/types.h>
-#include <linux/i2c.h>
-#include <asm/io.h>
-#include <asm/pgtable.h>
-#include <asm/page.h>
+#include <linux/ioctl.h>
 #include <asm/uaccess.h>
-
+#include <linux/i2c.h>
+#include <linux/i2c-id.h>
 #include <linux/videodev.h>
 #include <linux/video_decoder.h>
-
+#include <media/v4l2-common.h>
+#include <media/v4l2-i2c-drv-legacy.h>
 
 MODULE_DESCRIPTION("Brooktree-819 video decoder driver");
 MODULE_AUTHOR("Mike Bernson & Dave Perks");
 MODULE_LICENSE("GPL");
 
-
-#define I2C_NAME(s) (s)->name
-
-
 static int debug;
 module_param(debug, int, 0);
 MODULE_PARM_DESC(debug, "Debug level (0-1)");
 
-#define dprintk(num, format, args...) \
-	do { \
-		if (debug >= num) \
-			printk(format, ##args); \
-	} while (0)
-
 /* ----------------------------------------------------------------------- */
 
 struct bt819 {
@@ -97,14 +78,9 @@
 	{858 - 24, 20, 525 - 2, 1, 0x00f8, 0x0000},
 };
 
-#define   I2C_BT819        0x8a
-
 /* ----------------------------------------------------------------------- */
 
-static inline int
-bt819_write (struct i2c_client *client,
-	     u8                 reg,
-	     u8                 value)
+static inline int bt819_write(struct i2c_client *client, u8 reg, u8 value)
 {
 	struct bt819 *decoder = i2c_get_clientdata(client);
 
@@ -112,24 +88,15 @@
 	return i2c_smbus_write_byte_data(client, reg, value);
 }
 
-static inline int
-bt819_setbit (struct i2c_client *client,
-	      u8                 reg,
-	      u8                 bit,
-	      u8                 value)
+static inline int bt819_setbit(struct i2c_client *client, u8 reg, u8 bit, u8 value)
 {
 	struct bt819 *decoder = i2c_get_clientdata(client);
 
 	return bt819_write(client, reg,
-			   (decoder->
-			    reg[reg] & ~(1 << bit)) |
-			    (value ? (1 << bit) : 0));
+		(decoder->reg[reg] & ~(1 << bit)) | (value ? (1 << bit) : 0));
 }
 
-static int
-bt819_write_block (struct i2c_client *client,
-		   const u8          *data,
-		   unsigned int       len)
+static int bt819_write_block(struct i2c_client *client, const u8 *data, unsigned int len)
 {
 	int ret = -1;
 	u8 reg;
@@ -150,10 +117,9 @@
 				    decoder->reg[reg++] = data[1];
 				len -= 2;
 				data += 2;
-			} while (len >= 2 && data[0] == reg &&
-				 block_len < 32);
-			if ((ret = i2c_master_send(client, block_data,
-						   block_len)) < 0)
+			} while (len >= 2 && data[0] == reg && block_len < 32);
+			ret = i2c_master_send(client, block_data, block_len);
+			if (ret < 0)
 				break;
 		}
 	} else {
@@ -169,20 +135,17 @@
 	return ret;
 }
 
-static inline int
-bt819_read (struct i2c_client *client,
-	    u8                 reg)
+static inline int bt819_read(struct i2c_client *client, u8 reg)
 {
 	return i2c_smbus_read_byte_data(client, reg);
 }
 
-static int
-bt819_init (struct i2c_client *client)
+static int bt819_init(struct i2c_client *client)
 {
 	struct bt819 *decoder = i2c_get_clientdata(client);
 
 	static unsigned char init[] = {
-		//0x1f, 0x00,     /* Reset */
+		/*0x1f, 0x00,*/     /* Reset */
 		0x01, 0x59,	/* 0x01 input format */
 		0x02, 0x00,	/* 0x02 temporal decimation */
 		0x03, 0x12,	/* 0x03 Cropping msb */
@@ -218,12 +181,10 @@
 	struct timing *timing = &timing_data[decoder->norm];
 
 	init[0x03 * 2 - 1] =
-	    (((timing->vdelay >> 8) & 0x03) << 6) | (((timing->
-						       vactive >> 8) &
-						      0x03) << 4) |
-	    (((timing->hdelay >> 8) & 0x03) << 2) | ((timing->
-						      hactive >> 8) &
-						     0x03);
+	    (((timing->vdelay >> 8) & 0x03) << 6) |
+	    (((timing->vactive >> 8) & 0x03) << 4) |
+	    (((timing->hdelay >> 8) & 0x03) << 2) |
+	    ((timing->hactive >> 8) & 0x03);
 	init[0x04 * 2 - 1] = timing->vdelay & 0xff;
 	init[0x05 * 2 - 1] = timing->vactive & 0xff;
 	init[0x06 * 2 - 1] = timing->hdelay & 0xff;
@@ -238,27 +199,22 @@
 
 	/* init */
 	return bt819_write_block(client, init, sizeof(init));
-
 }
 
 /* ----------------------------------------------------------------------- */
 
-static int
-bt819_command (struct i2c_client *client,
-	       unsigned int       cmd,
-	       void              *arg)
+static int bt819_command(struct i2c_client *client, unsigned cmd, void *arg)
 {
 	int temp;
 
 	struct bt819 *decoder = i2c_get_clientdata(client);
 
-	if (!decoder->initialized) {	// First call to bt819_init could be
-		bt819_init(client);	// without #FRST = 0
+	if (!decoder->initialized) {	/* First call to bt819_init could be */
+		bt819_init(client);	/* without #FRST = 0 */
 		decoder->initialized = 1;
 	}
 
 	switch (cmd) {
-
 	case 0:
 		/* This is just for testing!!! */
 		bt819_init(client);
@@ -274,8 +230,8 @@
 			     VIDEO_DECODER_CCIR;
 		cap->inputs = 8;
 		cap->outputs = 1;
-	}
 		break;
+	}
 
 	case DECODER_GET_STATUS:
 	{
@@ -285,9 +241,9 @@
 
 		status = bt819_read(client, 0x00);
 		res = 0;
-		if ((status & 0x80)) {
+		if ((status & 0x80))
 			res |= DECODER_STATUS_GOOD;
-		}
+
 		switch (decoder->norm) {
 		case VIDEO_MODE_NTSC:
 			res |= DECODER_STATUS_NTSC;
@@ -297,28 +253,25 @@
 			break;
 		default:
 		case VIDEO_MODE_AUTO:
-			if ((status & 0x10)) {
+			if ((status & 0x10))
 				res |= DECODER_STATUS_PAL;
-			} else {
+			else
 				res |= DECODER_STATUS_NTSC;
-			}
 			break;
 		}
 		res |= DECODER_STATUS_COLOR;
 		*iarg = res;
 
-		dprintk(1, KERN_INFO "%s: get status %x\n", I2C_NAME(client),
-			*iarg);
-	}
+		v4l_dbg(1, debug, client, "get status %x\n", *iarg);
 		break;
+	}
 
 	case DECODER_SET_NORM:
 	{
 		int *iarg = arg;
 		struct timing *timing = NULL;
 
-		dprintk(1, KERN_INFO "%s: set norm %x\n", I2C_NAME(client),
-			*iarg);
+		v4l_dbg(1, debug, client, "set norm %x\n", *iarg);
 
 		switch (*iarg) {
 		case VIDEO_MODE_NTSC:
@@ -327,7 +280,7 @@
 			bt819_setbit(client, 0x01, 5, 0);
 			bt819_write(client, 0x18, 0x68);
 			bt819_write(client, 0x19, 0x5d);
-			//bt819_setbit(client, 0x1a,  5, 1);
+			/* bt819_setbit(client, 0x1a,  5, 1); */
 			timing = &timing_data[VIDEO_MODE_NTSC];
 			break;
 		case VIDEO_MODE_PAL:
@@ -336,7 +289,7 @@
 			bt819_setbit(client, 0x01, 5, 1);
 			bt819_write(client, 0x18, 0x7f);
 			bt819_write(client, 0x19, 0x72);
-			//bt819_setbit(client, 0x1a,  5, 0);
+			/* bt819_setbit(client, 0x1a,  5, 0); */
 			timing = &timing_data[VIDEO_MODE_PAL];
 			break;
 		case VIDEO_MODE_AUTO:
@@ -344,10 +297,7 @@
 			bt819_setbit(client, 0x01, 1, 0);
 			break;
 		default:
-			dprintk(1,
-				KERN_ERR
-				"%s: unsupported norm %d\n",
-				I2C_NAME(client), *iarg);
+			v4l_dbg(1, debug, client, "unsupported norm %x\n", *iarg);
 			return -EINVAL;
 		}
 
@@ -366,19 +316,17 @@
 		}
 
 		decoder->norm = *iarg;
-	}
 		break;
+	}
 
 	case DECODER_SET_INPUT:
 	{
 		int *iarg = arg;
 
-		dprintk(1, KERN_INFO "%s: set input %x\n", I2C_NAME(client),
-			*iarg);
+		v4l_dbg(1, debug, client, "set input %x\n", *iarg);
 
-		if (*iarg < 0 || *iarg > 7) {
+		if (*iarg < 0 || *iarg > 7)
 			return -EINVAL;
-		}
 
 		if (decoder->input != *iarg) {
 			decoder->input = *iarg;
@@ -391,52 +339,42 @@
 				bt819_setbit(client, 0x1a, 1, 0);
 			}
 		}
-	}
 		break;
+	}
 
 	case DECODER_SET_OUTPUT:
 	{
 		int *iarg = arg;
 
-		dprintk(1, KERN_INFO "%s: set output %x\n", I2C_NAME(client),
-			*iarg);
+		v4l_dbg(1, debug, client, "set output %x\n", *iarg);
 
 		/* not much choice of outputs */
-		if (*iarg != 0) {
+		if (*iarg != 0)
 			return -EINVAL;
-		}
-	}
 		break;
+	}
 
 	case DECODER_ENABLE_OUTPUT:
 	{
 		int *iarg = arg;
 		int enable = (*iarg != 0);
 
-		dprintk(1, KERN_INFO "%s: enable output %x\n",
-			I2C_NAME(client), *iarg);
+		v4l_dbg(1, debug, client, "enable output %x\n", *iarg);
 
 		if (decoder->enable != enable) {
 			decoder->enable = enable;
-
-			if (decoder->enable) {
-				bt819_setbit(client, 0x16, 7, 0);
-			} else {
-				bt819_setbit(client, 0x16, 7, 1);
-			}
+			bt819_setbit(client, 0x16, 7, !enable);
 		}
-	}
 		break;
+	}
 
 	case DECODER_SET_PICTURE:
 	{
 		struct video_picture *pic = arg;
 
-		dprintk(1,
-			KERN_INFO
-			"%s: set picture brightness %d contrast %d colour %d\n",
-			I2C_NAME(client), pic->brightness, pic->contrast,
-			pic->colour);
+		v4l_dbg(1, debug, client,
+			"set picture brightness %d contrast %d colour %d\n",
+			pic->brightness, pic->contrast, pic->colour);
 
 
 		if (decoder->bright != pic->brightness) {
@@ -474,8 +412,8 @@
 			bt819_write(client, 0x0f,
 				    128 - (decoder->hue >> 8));
 		}
-	}
 		break;
+	}
 
 	default:
 		return -EINVAL;
@@ -486,55 +424,44 @@
 
 /* ----------------------------------------------------------------------- */
 
-/*
- * Generic i2c probe
- * concerning the addresses: i2c wants 7 bit (without the r/w bit), so '>>1'
- */
-static unsigned short normal_i2c[] = {
-	I2C_BT819 >> 1,
-	I2C_CLIENT_END,
-};
+static unsigned short normal_i2c[] = { 0x8a >> 1, I2C_CLIENT_END };
 
-static unsigned short ignore = I2C_CLIENT_END;
+I2C_CLIENT_INSMOD;
 
-static struct i2c_client_address_data addr_data = {
-	.normal_i2c		= normal_i2c,
-	.probe			= &ignore,
-	.ignore			= &ignore,
-};
-
-static struct i2c_driver i2c_driver_bt819;
-
-static int
-bt819_detect_client (struct i2c_adapter *adapter,
-		     int                 address,
-		     int                 kind)
+static int bt819_probe(struct i2c_client *client,
+			const struct i2c_device_id *id)
 {
-	int i, id;
+	int i, ver;
 	struct bt819 *decoder;
-	struct i2c_client *client;
-
-	dprintk(1,
-		KERN_INFO
-		"bt819: detecting bt819 client on address 0x%x\n",
-		address << 1);
+	const char *name;
 
 	/* Check if the adapter supports the needed features */
-	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA))
-		return 0;
+	if (!i2c_check_functionality(client->adapter, I2C_FUNC_SMBUS_BYTE_DATA))
+		return -ENODEV;
 
-	client = kzalloc(sizeof(struct i2c_client), GFP_KERNEL);
-	if (!client)
-		return -ENOMEM;
-	client->addr = address;
-	client->adapter = adapter;
-	client->driver = &i2c_driver_bt819;
+	ver = bt819_read(client, 0x17);
+	switch (ver & 0xf0) {
+	case 0x70:
+		name = "bt819a";
+		break;
+	case 0x60:
+		name = "bt817a";
+		break;
+	case 0x20:
+		name = "bt815a";
+		break;
+	default:
+		v4l_dbg(1, debug, client,
+			"unknown chip version 0x%02x\n", ver);
+		return -ENODEV;
+	}
+
+	v4l_info(client, "%s found @ 0x%x (%s)\n", name,
+			client->addr << 1, client->adapter->name);
 
 	decoder = kzalloc(sizeof(struct bt819), GFP_KERNEL);
-	if (decoder == NULL) {
-		kfree(client);
+	if (decoder == NULL)
 		return -ENOMEM;
-	}
 	decoder->norm = VIDEO_MODE_NTSC;
 	decoder->input = 0;
 	decoder->enable = 1;
@@ -545,97 +472,33 @@
 	decoder->initialized = 0;
 	i2c_set_clientdata(client, decoder);
 
-	id = bt819_read(client, 0x17);
-	switch (id & 0xf0) {
-	case 0x70:
-		strlcpy(I2C_NAME(client), "bt819a", sizeof(I2C_NAME(client)));
-		break;
-	case 0x60:
-		strlcpy(I2C_NAME(client), "bt817a", sizeof(I2C_NAME(client)));
-		break;
-	case 0x20:
-		strlcpy(I2C_NAME(client), "bt815a", sizeof(I2C_NAME(client)));
-		break;
-	default:
-		dprintk(1,
-			KERN_ERR
-			"bt819: unknown chip version 0x%x (ver 0x%x)\n",
-			id & 0xf0, id & 0x0f);
-		kfree(decoder);
-		kfree(client);
-		return 0;
-	}
-
-	i = i2c_attach_client(client);
-	if (i) {
-		kfree(client);
-		kfree(decoder);
-		return i;
-	}
-
 	i = bt819_init(client);
-	if (i < 0) {
-		dprintk(1, KERN_ERR "%s_attach: init status %d\n",
-			I2C_NAME(client), i);
-	} else {
-		dprintk(1,
-			KERN_INFO
-			"%s_attach: chip version 0x%x at address 0x%x\n",
-			I2C_NAME(client), id & 0x0f,
-			client->addr << 1);
-	}
-
+	if (i < 0)
+		v4l_dbg(1, debug, client, "init status %d\n", i);
 	return 0;
 }
 
-static int
-bt819_attach_adapter (struct i2c_adapter *adapter)
+static int bt819_remove(struct i2c_client *client)
 {
-	return i2c_probe(adapter, &addr_data, &bt819_detect_client);
-}
-
-static int
-bt819_detach_client (struct i2c_client *client)
-{
-	struct bt819 *decoder = i2c_get_clientdata(client);
-	int err;
-
-	err = i2c_detach_client(client);
-	if (err) {
-		return err;
-	}
-
-	kfree(decoder);
-	kfree(client);
-
+	kfree(i2c_get_clientdata(client));
 	return 0;
 }
 
 /* ----------------------------------------------------------------------- */
 
-static struct i2c_driver i2c_driver_bt819 = {
-	.driver = {
-		.name = "bt819",
-	},
-
-	.id = I2C_DRIVERID_BT819,
-
-	.attach_adapter = bt819_attach_adapter,
-	.detach_client = bt819_detach_client,
-	.command = bt819_command,
+static const struct i2c_device_id bt819_id[] = {
+	{ "bt819a", 0 },
+	{ "bt817a", 0 },
+	{ "bt815a", 0 },
+	{ }
 };
+MODULE_DEVICE_TABLE(i2c, bt819_id);
 
-static int __init
-bt819_init_module (void)
-{
-	return i2c_add_driver(&i2c_driver_bt819);
-}
-
-static void __exit
-bt819_exit (void)
-{
-	i2c_del_driver(&i2c_driver_bt819);
-}
-
-module_init(bt819_init_module);
-module_exit(bt819_exit);
+static struct v4l2_i2c_driver_data v4l2_i2c_data = {
+	.name = "bt819",
+	.driverid = I2C_DRIVERID_BT819,
+	.command = bt819_command,
+	.probe = bt819_probe,
+	.remove = bt819_remove,
+	.id_table = bt819_id,
+};
diff --git a/drivers/media/video/bt856.c b/drivers/media/video/bt856.c
index ab2ce4d..4213867 100644
--- a/drivers/media/video/bt856.c
+++ b/drivers/media/video/bt856.c
@@ -29,43 +29,24 @@
  */
 
 #include <linux/module.h>
-#include <linux/init.h>
-#include <linux/delay.h>
-#include <linux/errno.h>
-#include <linux/fs.h>
-#include <linux/kernel.h>
-#include <linux/major.h>
-#include <linux/slab.h>
-#include <linux/mm.h>
-#include <linux/signal.h>
 #include <linux/types.h>
-#include <linux/i2c.h>
-#include <linux/video_encoder.h>
-#include <asm/io.h>
-#include <asm/pgtable.h>
-#include <asm/page.h>
+#include <linux/ioctl.h>
 #include <asm/uaccess.h>
-
+#include <linux/i2c.h>
+#include <linux/i2c-id.h>
 #include <linux/videodev.h>
+#include <linux/video_encoder.h>
+#include <media/v4l2-common.h>
+#include <media/v4l2-i2c-drv-legacy.h>
 
 MODULE_DESCRIPTION("Brooktree-856A video encoder driver");
 MODULE_AUTHOR("Mike Bernson & Dave Perks");
 MODULE_LICENSE("GPL");
 
-
-#define I2C_NAME(s) (s)->name
-
-
 static int debug;
 module_param(debug, int, 0);
 MODULE_PARM_DESC(debug, "Debug level (0-1)");
 
-#define dprintk(num, format, args...) \
-	do { \
-		if (debug >= num) \
-			printk(format, ##args); \
-	} while (0)
-
 /* ----------------------------------------------------------------------- */
 
 #define BT856_REG_OFFSET	0xDA
@@ -78,14 +59,9 @@
 	int enable;
 };
 
-#define   I2C_BT856        0x88
-
 /* ----------------------------------------------------------------------- */
 
-static inline int
-bt856_write (struct i2c_client *client,
-	     u8                 reg,
-	     u8                 value)
+static inline int bt856_write(struct i2c_client *client, u8 reg, u8 value)
 {
 	struct bt856 *encoder = i2c_get_clientdata(client);
 
@@ -93,46 +69,36 @@
 	return i2c_smbus_write_byte_data(client, reg, value);
 }
 
-static inline int
-bt856_setbit (struct i2c_client *client,
-	      u8                 reg,
-	      u8                 bit,
-	      u8                 value)
+static inline int bt856_setbit(struct i2c_client *client, u8 reg, u8 bit, u8 value)
 {
 	struct bt856 *encoder = i2c_get_clientdata(client);
 
 	return bt856_write(client, reg,
-			   (encoder->
-			    reg[reg - BT856_REG_OFFSET] & ~(1 << bit)) |
-			    (value ? (1 << bit) : 0));
+		(encoder->reg[reg - BT856_REG_OFFSET] & ~(1 << bit)) |
+				(value ? (1 << bit) : 0));
 }
 
-static void
-bt856_dump (struct i2c_client *client)
+static void bt856_dump(struct i2c_client *client)
 {
 	int i;
 	struct bt856 *encoder = i2c_get_clientdata(client);
 
-	printk(KERN_INFO "%s: register dump:", I2C_NAME(client));
+	v4l_info(client, "register dump:\n");
 	for (i = 0; i < BT856_NR_REG; i += 2)
-		printk(" %02x", encoder->reg[i]);
-	printk("\n");
+		printk(KERN_CONT " %02x", encoder->reg[i]);
+	printk(KERN_CONT "\n");
 }
 
 /* ----------------------------------------------------------------------- */
 
-static int
-bt856_command (struct i2c_client *client,
-	       unsigned int       cmd,
-	       void              *arg)
+static int bt856_command(struct i2c_client *client, unsigned cmd, void *arg)
 {
 	struct bt856 *encoder = i2c_get_clientdata(client);
 
 	switch (cmd) {
-
 	case 0:
 		/* This is just for testing!!! */
-		dprintk(1, KERN_INFO "bt856: init\n");
+		v4l_dbg(1, debug, client, "init\n");
 		bt856_write(client, 0xdc, 0x18);
 		bt856_write(client, 0xda, 0);
 		bt856_write(client, 0xde, 0);
@@ -142,7 +108,6 @@
 		bt856_setbit(client, 0xdc, 4, 1);
 
 		switch (encoder->norm) {
-
 		case VIDEO_MODE_NTSC:
 			bt856_setbit(client, 0xdc, 2, 0);
 			break;
@@ -163,26 +128,23 @@
 	{
 		struct video_encoder_capability *cap = arg;
 
-		dprintk(1, KERN_INFO "%s: get capabilities\n",
-			I2C_NAME(client));
+		v4l_dbg(1, debug, client, "get capabilities\n");
 
 		cap->flags = VIDEO_ENCODER_PAL |
 			     VIDEO_ENCODER_NTSC |
 			     VIDEO_ENCODER_CCIR;
 		cap->inputs = 2;
 		cap->outputs = 1;
-	}
 		break;
+	}
 
 	case ENCODER_SET_NORM:
 	{
 		int *iarg = arg;
 
-		dprintk(1, KERN_INFO "%s: set norm %d\n", I2C_NAME(client),
-			*iarg);
+		v4l_dbg(1, debug, client, "set norm %d\n", *iarg);
 
 		switch (*iarg) {
-
 		case VIDEO_MODE_NTSC:
 			bt856_setbit(client, 0xdc, 2, 0);
 			break;
@@ -195,27 +157,23 @@
 
 		default:
 			return -EINVAL;
-
 		}
 		encoder->norm = *iarg;
 		if (debug != 0)
 			bt856_dump(client);
-	}
 		break;
+	}
 
 	case ENCODER_SET_INPUT:
 	{
 		int *iarg = arg;
 
-		dprintk(1, KERN_INFO "%s: set input %d\n", I2C_NAME(client),
-			*iarg);
+		v4l_dbg(1, debug, client, "set input %d\n", *iarg);
 
 		/* We only have video bus.
 		 * iarg = 0: input is from bt819
 		 * iarg = 1: input is from ZR36060 */
-
 		switch (*iarg) {
-
 		case 0:
 			bt856_setbit(client, 0xde, 4, 0);
 			bt856_setbit(client, 0xde, 3, 1);
@@ -234,27 +192,24 @@
 			break;
 		default:
 			return -EINVAL;
-
 		}
 
 		if (debug != 0)
 			bt856_dump(client);
-	}
 		break;
+	}
 
 	case ENCODER_SET_OUTPUT:
 	{
 		int *iarg = arg;
 
-		dprintk(1, KERN_INFO "%s: set output %d\n", I2C_NAME(client),
-			*iarg);
+		v4l_dbg(1, debug, client, "set output %d\n", *iarg);
 
 		/* not much choice of outputs */
-		if (*iarg != 0) {
+		if (*iarg != 0)
 			return -EINVAL;
-		}
-	}
 		break;
+	}
 
 	case ENCODER_ENABLE_OUTPUT:
 	{
@@ -262,10 +217,9 @@
 
 		encoder->enable = !!*iarg;
 
-		dprintk(1, KERN_INFO "%s: enable output %d\n",
-			I2C_NAME(client), encoder->enable);
-	}
+		v4l_dbg(1, debug, client, "enable output %d\n", encoder->enable);
 		break;
+	}
 
 	default:
 		return -EINVAL;
@@ -276,64 +230,29 @@
 
 /* ----------------------------------------------------------------------- */
 
-/*
- * Generic i2c probe
- * concerning the addresses: i2c wants 7 bit (without the r/w bit), so '>>1'
- */
-static unsigned short normal_i2c[] = { I2C_BT856 >> 1, I2C_CLIENT_END };
+static unsigned short normal_i2c[] = { 0x88 >> 1, I2C_CLIENT_END };
 
-static unsigned short ignore = I2C_CLIENT_END;
+I2C_CLIENT_INSMOD;
 
-static struct i2c_client_address_data addr_data = {
-	.normal_i2c		= normal_i2c,
-	.probe			= &ignore,
-	.ignore			= &ignore,
-};
-
-static struct i2c_driver i2c_driver_bt856;
-
-static int
-bt856_detect_client (struct i2c_adapter *adapter,
-		     int                 address,
-		     int                 kind)
+static int bt856_probe(struct i2c_client *client,
+			const struct i2c_device_id *id)
 {
-	int i;
-	struct i2c_client *client;
 	struct bt856 *encoder;
 
-	dprintk(1,
-		KERN_INFO
-		"bt856.c: detecting bt856 client on address 0x%x\n",
-		address << 1);
-
 	/* Check if the adapter supports the needed features */
-	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA))
-		return 0;
+	if (!i2c_check_functionality(client->adapter, I2C_FUNC_SMBUS_BYTE_DATA))
+		return -ENODEV;
 
-	client = kzalloc(sizeof(struct i2c_client), GFP_KERNEL);
-	if (!client)
-		return -ENOMEM;
-	client->addr = address;
-	client->adapter = adapter;
-	client->driver = &i2c_driver_bt856;
-	strlcpy(I2C_NAME(client), "bt856", sizeof(I2C_NAME(client)));
+	v4l_info(client, "chip found @ 0x%x (%s)\n",
+			client->addr << 1, client->adapter->name);
 
 	encoder = kzalloc(sizeof(struct bt856), GFP_KERNEL);
-	if (encoder == NULL) {
-		kfree(client);
+	if (encoder == NULL)
 		return -ENOMEM;
-	}
 	encoder->norm = VIDEO_MODE_NTSC;
 	encoder->enable = 1;
 	i2c_set_clientdata(client, encoder);
 
-	i = i2c_attach_client(client);
-	if (i) {
-		kfree(client);
-		kfree(encoder);
-		return i;
-	}
-
 	bt856_write(client, 0xdc, 0x18);
 	bt856_write(client, 0xda, 0);
 	bt856_write(client, 0xde, 0);
@@ -359,65 +278,26 @@
 
 	if (debug != 0)
 		bt856_dump(client);
-
-	dprintk(1, KERN_INFO "%s_attach: at address 0x%x\n", I2C_NAME(client),
-		client->addr << 1);
-
 	return 0;
 }
 
-static int
-bt856_attach_adapter (struct i2c_adapter *adapter)
+static int bt856_remove(struct i2c_client *client)
 {
-	dprintk(1,
-		KERN_INFO
-		"bt856.c: starting probe for adapter %s (0x%x)\n",
-		I2C_NAME(adapter), adapter->id);
-	return i2c_probe(adapter, &addr_data, &bt856_detect_client);
-}
-
-static int
-bt856_detach_client (struct i2c_client *client)
-{
-	struct bt856 *encoder = i2c_get_clientdata(client);
-	int err;
-
-	err = i2c_detach_client(client);
-	if (err) {
-		return err;
-	}
-
-	kfree(encoder);
-	kfree(client);
-
+	kfree(i2c_get_clientdata(client));
 	return 0;
 }
 
-/* ----------------------------------------------------------------------- */
-
-static struct i2c_driver i2c_driver_bt856 = {
-	.driver = {
-		.name = "bt856",
-	},
-
-	.id = I2C_DRIVERID_BT856,
-
-	.attach_adapter = bt856_attach_adapter,
-	.detach_client = bt856_detach_client,
-	.command = bt856_command,
+static const struct i2c_device_id bt856_id[] = {
+	{ "bt856", 0 },
+	{ }
 };
+MODULE_DEVICE_TABLE(i2c, bt856_id);
 
-static int __init
-bt856_init (void)
-{
-	return i2c_add_driver(&i2c_driver_bt856);
-}
-
-static void __exit
-bt856_exit (void)
-{
-	i2c_del_driver(&i2c_driver_bt856);
-}
-
-module_init(bt856_init);
-module_exit(bt856_exit);
+static struct v4l2_i2c_driver_data v4l2_i2c_data = {
+	.name = "bt856",
+	.driverid = I2C_DRIVERID_BT856,
+	.command = bt856_command,
+	.probe = bt856_probe,
+	.remove = bt856_remove,
+	.id_table = bt856_id,
+};
diff --git a/drivers/media/video/bt866.c b/drivers/media/video/bt866.c
index 96b4155..596f9e2 100644
--- a/drivers/media/video/bt866.c
+++ b/drivers/media/video/bt866.c
@@ -29,42 +29,28 @@
 */
 
 #include <linux/module.h>
-#include <linux/init.h>
-#include <linux/delay.h>
-#include <linux/errno.h>
-#include <linux/fs.h>
-#include <linux/kernel.h>
-#include <linux/major.h>
-#include <linux/slab.h>
-#include <linux/mm.h>
-#include <linux/signal.h>
-#include <asm/io.h>
-#include <asm/pgtable.h>
-#include <asm/page.h>
-#include <linux/sched.h>
 #include <linux/types.h>
-#include <linux/i2c.h>
-
-#include <linux/videodev.h>
+#include <linux/ioctl.h>
 #include <asm/uaccess.h>
-
+#include <linux/i2c.h>
+#include <linux/i2c-id.h>
+#include <linux/videodev.h>
 #include <linux/video_encoder.h>
+#include <media/v4l2-common.h>
+#include <media/v4l2-i2c-drv-legacy.h>
 
+MODULE_DESCRIPTION("Brooktree-866 video encoder driver");
+MODULE_AUTHOR("Mike Bernson & Dave Perks");
 MODULE_LICENSE("GPL");
 
-#define	BT866_DEVNAME	"bt866"
-#define I2C_BT866	0x88
-
-MODULE_LICENSE("GPL");
-
-#define DEBUG(x)		/* Debug driver */
+static int debug;
+module_param(debug, int, 0);
+MODULE_PARM_DESC(debug, "Debug level (0-1)");
 
 /* ----------------------------------------------------------------------- */
 
 struct bt866 {
-	struct i2c_client *i2c;
-	int addr;
-	unsigned char reg[256];
+	u8 reg[256];
 
 	int norm;
 	int enable;
@@ -74,20 +60,45 @@
 	int sat;
 };
 
-static int bt866_write(struct bt866 *dev,
-			unsigned char subaddr, unsigned char data);
-
-static int bt866_do_command(struct bt866 *encoder,
-			unsigned int cmd, void *arg)
+static int bt866_write(struct i2c_client *client, u8 subaddr, u8 data)
 {
+	struct bt866 *encoder = i2c_get_clientdata(client);
+	u8 buffer[2];
+	int err;
+
+	buffer[0] = subaddr;
+	buffer[1] = data;
+
+	encoder->reg[subaddr] = data;
+
+	v4l_dbg(1, debug, client, "write 0x%02x = 0x%02x\n", subaddr, data);
+
+	for (err = 0; err < 3;) {
+		if (i2c_master_send(client, buffer, 2) == 2)
+			break;
+		err++;
+		v4l_warn(client, "error #%d writing to 0x%02x\n",
+				err, subaddr);
+		schedule_timeout_interruptible(msecs_to_jiffies(100));
+	}
+	if (err == 3) {
+		v4l_warn(client, "giving up\n");
+		return -1;
+	}
+
+	return 0;
+}
+
+static int bt866_command(struct i2c_client *client, unsigned cmd, void *arg)
+{
+	struct bt866 *encoder = i2c_get_clientdata(client);
+
 	switch (cmd) {
 	case ENCODER_GET_CAPABILITIES:
 	{
 		struct video_encoder_capability *cap = arg;
 
-		DEBUG(printk
-		      (KERN_INFO "%s: get capabilities\n",
-		       encoder->i2c->name));
+		v4l_dbg(1, debug, client, "get capabilities\n");
 
 		cap->flags
 			= VIDEO_ENCODER_PAL
@@ -95,18 +106,16 @@
 			| VIDEO_ENCODER_CCIR;
 		cap->inputs = 2;
 		cap->outputs = 1;
+		break;
 	}
-	break;
 
 	case ENCODER_SET_NORM:
 	{
 		int *iarg = arg;
 
-		DEBUG(printk(KERN_INFO "%s: set norm %d\n",
-			     encoder->i2c->name, *iarg));
+		v4l_dbg(1, debug, client, "set norm %d\n", *iarg);
 
 		switch (*iarg) {
-
 		case VIDEO_MODE_NTSC:
 			break;
 
@@ -115,11 +124,10 @@
 
 		default:
 			return -EINVAL;
-
 		}
 		encoder->norm = *iarg;
+		break;
 	}
-	break;
 
 	case ENCODER_SET_INPUT:
 	{
@@ -155,7 +163,7 @@
 		u8 val;
 
 		for (i = 0; i < ARRAY_SIZE(init) / 2; i += 2)
-			bt866_write(encoder, init[i], init[i+1]);
+			bt866_write(client, init[i], init[i+1]);
 
 		val = encoder->reg[0xdc];
 
@@ -164,17 +172,16 @@
 		else
 			val &= ~0x40; /* !CBSWAP */
 
-		bt866_write(encoder, 0xdc, val);
+		bt866_write(client, 0xdc, val);
 
 		val = encoder->reg[0xcc];
 		if (*iarg == 2)
 			val |= 0x01; /* OSDBAR */
 		else
 			val &= ~0x01; /* !OSDBAR */
-		bt866_write(encoder, 0xcc, val);
+		bt866_write(client, 0xcc, val);
 
-		DEBUG(printk(KERN_INFO "%s: set input %d\n",
-			     encoder->i2c->name, *iarg));
+		v4l_dbg(1, debug, client, "set input %d\n", *iarg);
 
 		switch (*iarg) {
 		case 0:
@@ -183,48 +190,44 @@
 			break;
 		default:
 			return -EINVAL;
-
 		}
+		break;
 	}
-	break;
 
 	case ENCODER_SET_OUTPUT:
 	{
 		int *iarg = arg;
 
-		DEBUG(printk(KERN_INFO "%s: set output %d\n",
-			     encoder->i2c->name, *iarg));
+		v4l_dbg(1, debug, client, "set output %d\n", *iarg);
 
 		/* not much choice of outputs */
 		if (*iarg != 0)
 			return -EINVAL;
+		break;
 	}
-	break;
 
 	case ENCODER_ENABLE_OUTPUT:
 	{
 		int *iarg = arg;
 		encoder->enable = !!*iarg;
 
-		DEBUG(printk
-		      (KERN_INFO "%s: enable output %d\n",
-		       encoder->i2c->name, encoder->enable));
+		v4l_dbg(1, debug, client, "enable output %d\n", encoder->enable);
+		break;
 	}
-	break;
 
 	case 4711:
 	{
 		int *iarg = arg;
 		__u8 val;
 
-		printk("bt866: square = %d\n", *iarg);
+		v4l_dbg(1, debug, client, "square %d\n", *iarg);
 
 		val = encoder->reg[0xdc];
 		if (*iarg)
 			val |= 1; /* SQUARE */
 		else
 			val &= ~1; /* !SQUARE */
-		bt866_write(encoder, 0xdc, val);
+		bt866_write(client, 0xdc, val);
 		break;
 	}
 
@@ -235,141 +238,49 @@
 	return 0;
 }
 
-static int bt866_write(struct bt866 *encoder,
-			unsigned char subaddr, unsigned char data)
-{
-	unsigned char buffer[2];
-	int err;
+static unsigned short normal_i2c[] = { 0x88 >> 1, I2C_CLIENT_END };
 
-	buffer[0] = subaddr;
-	buffer[1] = data;
+I2C_CLIENT_INSMOD;
 
-	encoder->reg[subaddr] = data;
-
-	DEBUG(printk
-	      ("%s: write 0x%02X = 0x%02X\n",
-	       encoder->i2c->name, subaddr, data));
-
-	for (err = 0; err < 3;) {
-		if (i2c_master_send(encoder->i2c, buffer, 2) == 2)
-			break;
-		err++;
-		printk(KERN_WARNING "%s: I/O error #%d "
-		       "(write 0x%02x/0x%02x)\n",
-		       encoder->i2c->name, err, encoder->addr, subaddr);
-		schedule_timeout_interruptible(msecs_to_jiffies(100));
-	}
-	if (err == 3) {
-		printk(KERN_WARNING "%s: giving up\n",
-		       encoder->i2c->name);
-		return -1;
-	}
-
-	return 0;
-}
-
-static int bt866_attach(struct i2c_adapter *adapter);
-static int bt866_detach(struct i2c_client *client);
-static int bt866_command(struct i2c_client *client,
-			 unsigned int cmd, void *arg);
-
-
-/* Addresses to scan */
-static unsigned short normal_i2c[]	= {I2C_BT866>>1, I2C_CLIENT_END};
-static unsigned short probe[2]		= {I2C_CLIENT_END, I2C_CLIENT_END};
-static unsigned short ignore[2]		= {I2C_CLIENT_END, I2C_CLIENT_END};
-
-static struct i2c_client_address_data addr_data = {
-	normal_i2c,
-	probe,
-	ignore,
-};
-
-static struct i2c_driver i2c_driver_bt866 = {
-	.driver.name = BT866_DEVNAME,
-	.id = I2C_DRIVERID_BT866,
-	.attach_adapter = bt866_attach,
-	.detach_client = bt866_detach,
-	.command = bt866_command
-};
-
-
-static struct i2c_client bt866_client_tmpl =
-{
-	.name = "(nil)",
-	.addr = 0,
-	.adapter = NULL,
-	.driver = &i2c_driver_bt866,
-};
-
-static int bt866_found_proc(struct i2c_adapter *adapter,
-			    int addr, int kind)
+static int bt866_probe(struct i2c_client *client,
+			const struct i2c_device_id *id)
 {
 	struct bt866 *encoder;
-	struct i2c_client *client;
 
-	client = kzalloc(sizeof(*client), GFP_KERNEL);
-	if (client == NULL)
-		return -ENOMEM;
-	memcpy(client, &bt866_client_tmpl, sizeof(*client));
+	v4l_info(client, "chip found @ 0x%x (%s)\n",
+			client->addr << 1, client->adapter->name);
 
 	encoder = kzalloc(sizeof(*encoder), GFP_KERNEL);
-	if (encoder == NULL) {
-		kfree(client);
+	if (encoder == NULL)
 		return -ENOMEM;
-	}
 
 	i2c_set_clientdata(client, encoder);
-	client->adapter = adapter;
-	client->addr = addr;
-	sprintf(client->name, "%s-%02x", BT866_DEVNAME, adapter->id);
-
-	encoder->i2c = client;
-	encoder->addr = addr;
-	//encoder->encoder_type = ENCODER_TYPE_UNKNOWN;
-
-	/* initialize */
-
-	i2c_attach_client(client);
-
 	return 0;
 }
 
-static int bt866_attach(struct i2c_adapter *adapter)
+static int bt866_remove(struct i2c_client *client)
 {
-	if (adapter->id == I2C_HW_B_ZR36067)
-		return i2c_probe(adapter, &addr_data, bt866_found_proc);
+	kfree(i2c_get_clientdata(client));
 	return 0;
 }
 
-static int bt866_detach(struct i2c_client *client)
+static int bt866_legacy_probe(struct i2c_adapter *adapter)
 {
-	struct bt866 *encoder = i2c_get_clientdata(client);
-
-	i2c_detach_client(client);
-	kfree(encoder);
-	kfree(client);
-
-	return 0;
+	return adapter->id == I2C_HW_B_ZR36067;
 }
 
-static int bt866_command(struct i2c_client *client,
-			 unsigned int cmd, void *arg)
-{
-	struct bt866 *encoder = i2c_get_clientdata(client);
-	return bt866_do_command(encoder, cmd, arg);
-}
+static const struct i2c_device_id bt866_id[] = {
+	{ "bt866", 0 },
+	{ }
+};
+MODULE_DEVICE_TABLE(i2c, bt866_id);
 
-static int __devinit bt866_init(void)
-{
-	i2c_add_driver(&i2c_driver_bt866);
-	return 0;
-}
-
-static void __devexit bt866_exit(void)
-{
-	i2c_del_driver(&i2c_driver_bt866);
-}
-
-module_init(bt866_init);
-module_exit(bt866_exit);
+static struct v4l2_i2c_driver_data v4l2_i2c_data = {
+	.name = "bt866",
+	.driverid = I2C_DRIVERID_BT866,
+	.command = bt866_command,
+	.probe = bt866_probe,
+	.remove = bt866_remove,
+	.legacy_probe = bt866_legacy_probe,
+	.id_table = bt866_id,
+};
diff --git a/drivers/media/video/cx23885/cx23885-cards.c b/drivers/media/video/cx23885/cx23885-cards.c
index 2cda15f..dac5ccc 100644
--- a/drivers/media/video/cx23885/cx23885-cards.c
+++ b/drivers/media/video/cx23885/cx23885-cards.c
@@ -39,16 +39,16 @@
 		.input          = {{
 			.type   = CX23885_VMUX_COMPOSITE1,
 			.vmux   = 0,
-		},{
+		}, {
 			.type   = CX23885_VMUX_COMPOSITE2,
 			.vmux   = 1,
-		},{
+		}, {
 			.type   = CX23885_VMUX_COMPOSITE3,
 			.vmux   = 2,
-		},{
+		}, {
 			.type   = CX23885_VMUX_COMPOSITE4,
 			.vmux   = 3,
-		}},
+		} },
 	},
 	[CX23885_BOARD_HAUPPAUGE_HVR1800lp] = {
 		.name		= "Hauppauge WinTV-HVR1800lp",
@@ -57,19 +57,19 @@
 			.type   = CX23885_VMUX_TELEVISION,
 			.vmux   = 0,
 			.gpio0  = 0xff00,
-		},{
+		}, {
 			.type   = CX23885_VMUX_DEBUG,
 			.vmux   = 0,
 			.gpio0  = 0xff01,
-		},{
+		}, {
 			.type   = CX23885_VMUX_COMPOSITE1,
 			.vmux   = 1,
 			.gpio0  = 0xff02,
-		},{
+		}, {
 			.type   = CX23885_VMUX_SVIDEO,
 			.vmux   = 2,
 			.gpio0  = 0xff02,
-		}},
+		} },
 	},
 	[CX23885_BOARD_HAUPPAUGE_HVR1800] = {
 		.name		= "Hauppauge WinTV-HVR1800",
@@ -84,20 +84,20 @@
 					CX25840_VIN5_CH2 |
 					CX25840_VIN2_CH1,
 			.gpio0  = 0,
-		},{
+		}, {
 			.type   = CX23885_VMUX_COMPOSITE1,
 			.vmux   =	CX25840_VIN7_CH3 |
 					CX25840_VIN4_CH2 |
 					CX25840_VIN6_CH1,
 			.gpio0  = 0,
-		},{
+		}, {
 			.type   = CX23885_VMUX_SVIDEO,
 			.vmux   =	CX25840_VIN7_CH3 |
 					CX25840_VIN4_CH2 |
 					CX25840_VIN8_CH1 |
 					CX25840_SVIDEO_ON,
 			.gpio0  = 0,
-		}},
+		} },
 	},
 	[CX23885_BOARD_HAUPPAUGE_HVR1250] = {
 		.name		= "Hauppauge WinTV-HVR1250",
@@ -106,19 +106,19 @@
 			.type   = CX23885_VMUX_TELEVISION,
 			.vmux   = 0,
 			.gpio0  = 0xff00,
-		},{
+		}, {
 			.type   = CX23885_VMUX_DEBUG,
 			.vmux   = 0,
 			.gpio0  = 0xff01,
-		},{
+		}, {
 			.type   = CX23885_VMUX_COMPOSITE1,
 			.vmux   = 1,
 			.gpio0  = 0xff02,
-		},{
+		}, {
 			.type   = CX23885_VMUX_SVIDEO,
 			.vmux   = 2,
 			.gpio0  = 0xff02,
-		}},
+		} },
 	},
 	[CX23885_BOARD_DVICO_FUSIONHDTV_5_EXP] = {
 		.name		= "DViCO FusionHDTV5 Express",
@@ -169,43 +169,43 @@
 		.subvendor = 0x0070,
 		.subdevice = 0x3400,
 		.card      = CX23885_BOARD_UNKNOWN,
-	},{
+	}, {
 		.subvendor = 0x0070,
 		.subdevice = 0x7600,
 		.card      = CX23885_BOARD_HAUPPAUGE_HVR1800lp,
-	},{
+	}, {
 		.subvendor = 0x0070,
 		.subdevice = 0x7800,
 		.card      = CX23885_BOARD_HAUPPAUGE_HVR1800,
-	},{
+	}, {
 		.subvendor = 0x0070,
 		.subdevice = 0x7801,
 		.card      = CX23885_BOARD_HAUPPAUGE_HVR1800,
-	},{
+	}, {
 		.subvendor = 0x0070,
 		.subdevice = 0x7809,
 		.card      = CX23885_BOARD_HAUPPAUGE_HVR1800,
-	},{
+	}, {
 		.subvendor = 0x0070,
 		.subdevice = 0x7911,
 		.card      = CX23885_BOARD_HAUPPAUGE_HVR1250,
-	},{
+	}, {
 		.subvendor = 0x18ac,
 		.subdevice = 0xd500,
 		.card      = CX23885_BOARD_DVICO_FUSIONHDTV_5_EXP,
-	},{
+	}, {
 		.subvendor = 0x0070,
 		.subdevice = 0x7790,
 		.card      = CX23885_BOARD_HAUPPAUGE_HVR1500Q,
-	},{
+	}, {
 		.subvendor = 0x0070,
 		.subdevice = 0x7797,
 		.card      = CX23885_BOARD_HAUPPAUGE_HVR1500Q,
-	},{
+	}, {
 		.subvendor = 0x0070,
 		.subdevice = 0x7710,
 		.card      = CX23885_BOARD_HAUPPAUGE_HVR1500,
-	},{
+	}, {
 		.subvendor = 0x0070,
 		.subdevice = 0x7717,
 		.card      = CX23885_BOARD_HAUPPAUGE_HVR1500,
@@ -225,11 +225,11 @@
 		.subvendor = 0x0070,
 		.subdevice = 0x8010,
 		.card      = CX23885_BOARD_HAUPPAUGE_HVR1400,
-	},{
+	}, {
 		.subvendor = 0x18ac,
 		.subdevice = 0xd618,
 		.card      = CX23885_BOARD_DVICO_FUSIONHDTV_7_DUAL_EXP,
-	},{
+	}, {
 		.subvendor = 0x18ac,
 		.subdevice = 0xdb78,
 		.card      = CX23885_BOARD_DVICO_FUSIONHDTV_DVB_T_DUAL_EXP,
@@ -247,23 +247,25 @@
 
 	if (0 == dev->pci->subsystem_vendor &&
 	    0 == dev->pci->subsystem_device) {
-		printk("%s: Your board has no valid PCIe Subsystem ID and thus can't\n"
-		       "%s: be autodetected.  Please pass card=<n> insmod option to\n"
-		       "%s: workaround that.  Redirect complaints to the vendor of\n"
-		       "%s: the TV card.  Best regards,\n"
+		printk(KERN_INFO
+			"%s: Board has no valid PCIe Subsystem ID and can't\n"
+		       "%s: be autodetected. Pass card=<n> insmod option\n"
+		       "%s: to workaround that. Redirect complaints to the\n"
+		       "%s: vendor of the TV card.  Best regards,\n"
 		       "%s:         -- tux\n",
 		       dev->name, dev->name, dev->name, dev->name, dev->name);
 	} else {
-		printk("%s: Your board isn't known (yet) to the driver.  You can\n"
-		       "%s: try to pick one of the existing card configs via\n"
+		printk(KERN_INFO
+			"%s: Your board isn't known (yet) to the driver.\n"
+		       "%s: Try to pick one of the existing card configs via\n"
 		       "%s: card=<n> insmod option.  Updating to the latest\n"
 		       "%s: version might help as well.\n",
 		       dev->name, dev->name, dev->name, dev->name);
 	}
-	printk("%s: Here is a list of valid choices for the card=<n> insmod option:\n",
+	printk(KERN_INFO "%s: Here is a list of valid choices for the card=<n> insmod option:\n",
 	       dev->name);
 	for (i = 0; i < cx23885_bcount; i++)
-		printk("%s:    card=%d -> %s\n",
+		printk(KERN_INFO "%s:    card=%d -> %s\n",
 		       dev->name, i, cx23885_boards[i].name);
 }
 
@@ -271,11 +273,11 @@
 {
 	struct tveeprom tv;
 
-	tveeprom_hauppauge_analog(&dev->i2c_bus[0].i2c_client, &tv, eeprom_data);
+	tveeprom_hauppauge_analog(&dev->i2c_bus[0].i2c_client, &tv,
+		eeprom_data);
 
 	/* Make sure we support the board model */
-	switch (tv.model)
-	{
+	switch (tv.model) {
 	case 71009:
 		/* WinTV-HVR1200 (PCIe, Retail, full height)
 		 * DVB-T and basic analog */
@@ -303,21 +305,51 @@
 	case 71999:
 		/* WinTV-HVR1200 (PCIe, OEM, full height)
 		 * DVB-T and basic analog */
-	case 76601: /* WinTV-HVR1800lp (PCIe, Retail, No IR, Dual channel ATSC and MPEG2 HW Encoder */
-	case 77001: /* WinTV-HVR1500 (Express Card, OEM, No IR, ATSC and Basic analog */
-	case 77011: /* WinTV-HVR1500 (Express Card, Retail, No IR, ATSC and Basic analog */
-	case 77041: /* WinTV-HVR1500Q (Express Card, OEM, No IR, ATSC/QAM and Basic analog */
-	case 77051: /* WinTV-HVR1500Q (Express Card, Retail, No IR, ATSC/QAM and Basic analog */
-	case 78011: /* WinTV-HVR1800 (PCIe, Retail, 3.5mm in, IR, No FM, Dual channel ATSC and MPEG2 HW Encoder */
-	case 78501: /* WinTV-HVR1800 (PCIe, OEM, RCA in, No IR, FM, Dual channel ATSC and MPEG2 HW Encoder */
-	case 78521: /* WinTV-HVR1800 (PCIe, OEM, RCA in, No IR, FM, Dual channel ATSC and MPEG2 HW Encoder */
-	case 78531: /* WinTV-HVR1800 (PCIe, OEM, RCA in, No IR, No FM, Dual channel ATSC and MPEG2 HW Encoder */
-	case 78631: /* WinTV-HVR1800 (PCIe, OEM, No IR, No FM, Dual channel ATSC and MPEG2 HW Encoder */
-	case 79001: /* WinTV-HVR1250 (PCIe, Retail, IR, full height, ATSC and Basic analog */
-	case 79101: /* WinTV-HVR1250 (PCIe, Retail, IR, half height, ATSC and Basic analog */
-	case 79561: /* WinTV-HVR1250 (PCIe, OEM, No IR, half height, ATSC and Basic analog */
-	case 79571: /* WinTV-HVR1250 (PCIe, OEM, No IR, full height, ATSC and Basic analog */
-	case 79671: /* WinTV-HVR1250 (PCIe, OEM, No IR, half height, ATSC and Basic analog */
+	case 76601:
+		/* WinTV-HVR1800lp (PCIe, Retail, No IR, Dual
+			channel ATSC and MPEG2 HW Encoder */
+	case 77001:
+		/* WinTV-HVR1500 (Express Card, OEM, No IR, ATSC
+			and Basic analog */
+	case 77011:
+		/* WinTV-HVR1500 (Express Card, Retail, No IR, ATSC
+			and Basic analog */
+	case 77041:
+		/* WinTV-HVR1500Q (Express Card, OEM, No IR, ATSC/QAM
+			and Basic analog */
+	case 77051:
+		/* WinTV-HVR1500Q (Express Card, Retail, No IR, ATSC/QAM
+			and Basic analog */
+	case 78011:
+		/* WinTV-HVR1800 (PCIe, Retail, 3.5mm in, IR, No FM,
+			Dual channel ATSC and MPEG2 HW Encoder */
+	case 78501:
+		/* WinTV-HVR1800 (PCIe, OEM, RCA in, No IR, FM,
+			Dual channel ATSC and MPEG2 HW Encoder */
+	case 78521:
+		/* WinTV-HVR1800 (PCIe, OEM, RCA in, No IR, FM,
+			Dual channel ATSC and MPEG2 HW Encoder */
+	case 78531:
+		/* WinTV-HVR1800 (PCIe, OEM, RCA in, No IR, No FM,
+			Dual channel ATSC and MPEG2 HW Encoder */
+	case 78631:
+		/* WinTV-HVR1800 (PCIe, OEM, No IR, No FM,
+			Dual channel ATSC and MPEG2 HW Encoder */
+	case 79001:
+		/* WinTV-HVR1250 (PCIe, Retail, IR, full height,
+			ATSC and Basic analog */
+	case 79101:
+		/* WinTV-HVR1250 (PCIe, Retail, IR, half height,
+			ATSC and Basic analog */
+	case 79561:
+		/* WinTV-HVR1250 (PCIe, OEM, No IR, half height,
+			ATSC and Basic analog */
+	case 79571:
+		/* WinTV-HVR1250 (PCIe, OEM, No IR, full height,
+		 ATSC and Basic analog */
+	case 79671:
+		/* WinTV-HVR1250 (PCIe, OEM, No IR, half height,
+			ATSC and Basic analog */
 	case 80019:
 		/* WinTV-HVR1400 (Express Card, Retail, IR,
 		 * DVB-T and Basic analog */
@@ -329,7 +361,8 @@
 		 * DVB-T and MPEG2 HW Encoder */
 		break;
 	default:
-		printk("%s: warning: unknown hauppauge model #%d\n", dev->name, tv.model);
+		printk(KERN_WARNING "%s: warning: unknown hauppauge model #%d\n",
+			dev->name, tv.model);
 		break;
 	}
 
@@ -352,7 +385,7 @@
 		return -EINVAL;
 	}
 
-	switch(dev->board) {
+	switch (dev->board) {
 	case CX23885_BOARD_HAUPPAUGE_HVR1400:
 	case CX23885_BOARD_HAUPPAUGE_HVR1500:
 	case CX23885_BOARD_HAUPPAUGE_HVR1500Q:
@@ -383,7 +416,7 @@
 
 void cx23885_gpio_setup(struct cx23885_dev *dev)
 {
-	switch(dev->board) {
+	switch (dev->board) {
 	case CX23885_BOARD_HAUPPAUGE_HVR1250:
 		/* GPIO-0 cx24227 demodulator reset */
 		cx_set(GP0_IO, 0x00010001); /* Bring the part out of reset */
@@ -617,10 +650,3 @@
 }
 
 /* ------------------------------------------------------------------ */
-
-/*
- * Local variables:
- * c-basic-offset: 8
- * End:
- * kate: eol "unix"; indent-width 3; remove-trailing-space on; replace-trailing-space-save on; tab-width 8; replace-tabs off; space-indent off; mixed-indent off
- */
diff --git a/drivers/media/video/cx23885/cx23885-core.c b/drivers/media/video/cx23885/cx23885-core.c
index beb3e61..8f6fb2a 100644
--- a/drivers/media/video/cx23885/cx23885-core.c
+++ b/drivers/media/video/cx23885/cx23885-core.c
@@ -37,12 +37,12 @@
 MODULE_LICENSE("GPL");
 
 static unsigned int debug;
-module_param(debug,int,0644);
-MODULE_PARM_DESC(debug,"enable debug messages");
+module_param(debug, int, 0644);
+MODULE_PARM_DESC(debug, "enable debug messages");
 
 static unsigned int card[]  = {[0 ... (CX23885_MAXBOARDS - 1)] = UNSET };
 module_param_array(card,  int, NULL, 0444);
-MODULE_PARM_DESC(card,"card type");
+MODULE_PARM_DESC(card, "card type");
 
 #define dprintk(level, fmt, arg...)\
 	do { if (debug >= level)\
@@ -364,13 +364,12 @@
 		list_del(&buf->vb.queue);
 		wake_up(&buf->vb.done);
 	}
-	if (list_empty(&q->active)) {
+	if (list_empty(&q->active))
 		del_timer(&q->timeout);
-	} else {
+	else
 		mod_timer(&q->timeout, jiffies + BUFFER_TIMEOUT);
-	}
 	if (bc != 1)
-		printk("%s: %d buffers handled (should be 1)\n",
+		printk(KERN_WARNING "%s: %d buffers handled (should be 1)\n",
 		       __func__, bc);
 }
 
@@ -381,8 +380,7 @@
 	unsigned int i, lines;
 	u32 cdt;
 
-	if (ch->cmds_start == 0)
-	{
+	if (ch->cmds_start == 0) {
 		dprintk(1, "%s() Erasing channel [%s]\n", __func__,
 			ch->name);
 		cx_write(ch->ptr1_reg, 0);
@@ -418,15 +416,15 @@
 
 	/* write CMDS */
 	if (ch->jumponly)
-		cx_write(ch->cmds_start +  0, 8);
+		cx_write(ch->cmds_start + 0, 8);
 	else
-		cx_write(ch->cmds_start +  0, risc);
+		cx_write(ch->cmds_start + 0, risc);
 	cx_write(ch->cmds_start +  4, 0); /* 64 bits 63-32 */
 	cx_write(ch->cmds_start +  8, cdt);
 	cx_write(ch->cmds_start + 12, (lines*16) >> 3);
 	cx_write(ch->cmds_start + 16, ch->ctrl_start);
 	if (ch->jumponly)
-		cx_write(ch->cmds_start + 20, 0x80000000 | (64 >> 2) );
+		cx_write(ch->cmds_start + 20, 0x80000000 | (64 >> 2));
 	else
 		cx_write(ch->cmds_start + 20, 64 >> 2);
 	for (i = 24; i < 80; i += 4)
@@ -436,9 +434,9 @@
 	cx_write(ch->ptr1_reg, ch->fifo_start);
 	cx_write(ch->ptr2_reg, cdt);
 	cx_write(ch->cnt2_reg, (lines*16) >> 3);
-	cx_write(ch->cnt1_reg, (bpl >> 3) -1);
+	cx_write(ch->cnt1_reg, (bpl >> 3) - 1);
 
-	dprintk(2,"[bridge %d] sram setup %s: bpl=%d lines=%d\n",
+	dprintk(2, "[bridge %d] sram setup %s: bpl=%d lines=%d\n",
 		dev->bridge,
 		ch->name,
 		bpl,
@@ -469,43 +467,43 @@
 	u32 risc;
 	unsigned int i, j, n;
 
-	printk("%s: %s - dma channel status dump\n",
+	printk(KERN_WARNING "%s: %s - dma channel status dump\n",
 	       dev->name, ch->name);
 	for (i = 0; i < ARRAY_SIZE(name); i++)
-		printk("%s:   cmds: %-15s: 0x%08x\n",
+		printk(KERN_WARNING "%s:   cmds: %-15s: 0x%08x\n",
 		       dev->name, name[i],
 		       cx_read(ch->cmds_start + 4*i));
 
 	for (i = 0; i < 4; i++) {
 		risc = cx_read(ch->cmds_start + 4 * (i + 14));
-		printk("%s:   risc%d: ", dev->name, i);
+		printk(KERN_WARNING "%s:   risc%d: ", dev->name, i);
 		cx23885_risc_decode(risc);
 	}
 	for (i = 0; i < (64 >> 2); i += n) {
 		risc = cx_read(ch->ctrl_start + 4 * i);
 		/* No consideration for bits 63-32 */
 
-		printk("%s:   (0x%08x) iq %x: ", dev->name,
+		printk(KERN_WARNING "%s:   (0x%08x) iq %x: ", dev->name,
 		       ch->ctrl_start + 4 * i, i);
 		n = cx23885_risc_decode(risc);
 		for (j = 1; j < n; j++) {
 			risc = cx_read(ch->ctrl_start + 4 * (i + j));
-			printk("%s:   iq %x: 0x%08x [ arg #%d ]\n",
+			printk(KERN_WARNING "%s:   iq %x: 0x%08x [ arg #%d ]\n",
 			       dev->name, i+j, risc, j);
 		}
 	}
 
-	printk("%s: fifo: 0x%08x -> 0x%x\n",
+	printk(KERN_WARNING "%s: fifo: 0x%08x -> 0x%x\n",
 	       dev->name, ch->fifo_start, ch->fifo_start+ch->fifo_size);
-	printk("%s: ctrl: 0x%08x -> 0x%x\n",
+	printk(KERN_WARNING "%s: ctrl: 0x%08x -> 0x%x\n",
 	       dev->name, ch->ctrl_start, ch->ctrl_start + 6*16);
-	printk("%s:   ptr1_reg: 0x%08x\n",
+	printk(KERN_WARNING "%s:   ptr1_reg: 0x%08x\n",
 	       dev->name, cx_read(ch->ptr1_reg));
-	printk("%s:   ptr2_reg: 0x%08x\n",
+	printk(KERN_WARNING "%s:   ptr2_reg: 0x%08x\n",
 	       dev->name, cx_read(ch->ptr2_reg));
-	printk("%s:   cnt1_reg: 0x%08x\n",
+	printk(KERN_WARNING "%s:   cnt1_reg: 0x%08x\n",
 	       dev->name, cx_read(ch->cnt1_reg));
-	printk("%s:   cnt2_reg: 0x%08x\n",
+	printk(KERN_WARNING "%s:   cnt2_reg: 0x%08x\n",
 	       dev->name, cx_read(ch->cnt2_reg));
 }
 
@@ -515,13 +513,13 @@
 	struct cx23885_dev *dev = port->dev;
 	unsigned int i, j, n;
 
-	printk("%s: risc disasm: %p [dma=0x%08lx]\n",
+	printk(KERN_INFO "%s: risc disasm: %p [dma=0x%08lx]\n",
 	       dev->name, risc->cpu, (unsigned long)risc->dma);
 	for (i = 0; i < (risc->size >> 2); i += n) {
-		printk("%s:   %04d: ", dev->name, i);
+		printk(KERN_INFO "%s:   %04d: ", dev->name, i);
 		n = cx23885_risc_decode(le32_to_cpu(risc->cpu[i]));
 		for (j = 1; j < n; j++)
-			printk("%s:   %04d: 0x%08x [ arg #%d ]\n",
+			printk(KERN_INFO "%s:   %04d: 0x%08x [ arg #%d ]\n",
 			       dev->name, i + j, risc->cpu[i + j], j);
 		if (risc->cpu[i] == cpu_to_le32(RISC_JUMP))
 			break;
@@ -600,7 +598,7 @@
 	 * when DMA begins if RDR_TLCTL0 bit4 is not cleared. It does not
 	 * occur on the cx23887 bridge.
 	 */
-	if(dev->bridge == CX23885_BRIDGE_885)
+	if (dev->bridge == CX23885_BRIDGE_885)
 		cx_clear(RDR_TLCTL0, 1 << 4);
 
 	return 0;
@@ -608,13 +606,13 @@
 
 static int get_resources(struct cx23885_dev *dev)
 {
-	if (request_mem_region(pci_resource_start(dev->pci,0),
-			       pci_resource_len(dev->pci,0),
+	if (request_mem_region(pci_resource_start(dev->pci, 0),
+			       pci_resource_len(dev->pci, 0),
 			       dev->name))
 		return 0;
 
 	printk(KERN_ERR "%s: can't get MMIO memory @ 0x%llx\n",
-		dev->name, (unsigned long long)pci_resource_start(dev->pci,0));
+		dev->name, (unsigned long long)pci_resource_start(dev->pci, 0));
 
 	return -EBUSY;
 }
@@ -623,7 +621,8 @@
 int cx23885_risc_stopper(struct pci_dev *pci, struct btcx_riscmem *risc,
 				u32 reg, u32 mask, u32 value);
 
-static int cx23885_init_tsport(struct cx23885_dev *dev, struct cx23885_tsport *port, int portno)
+static int cx23885_init_tsport(struct cx23885_dev *dev,
+	struct cx23885_tsport *port, int portno)
 {
 	dprintk(1, "%s(portno=%d)\n", __func__, portno);
 
@@ -643,7 +642,18 @@
 	port->mpegq.timeout.data = (unsigned long)port;
 	init_timer(&port->mpegq.timeout);
 
-	switch(portno) {
+	mutex_init(&port->frontends.lock);
+	INIT_LIST_HEAD(&port->frontends.felist);
+	port->frontends.active_fe_id = 0;
+
+	/* This should be hardcoded allow a single frontend
+	 * attachment to this tsport, keeping the -dvb.c
+	 * code clean and safe.
+	 */
+	if (!port->num_frontends)
+		port->num_frontends = 1;
+
+	switch (portno) {
 	case 1:
 		port->reg_gpcnt          = VID_B_GPCNT;
 		port->reg_gpcnt_ctl      = VID_B_GPCNT_CTL;
@@ -744,13 +754,13 @@
 	mutex_unlock(&devlist);
 
 	/* Configure the internal memory */
-	if(dev->pci->device == 0x8880) {
+	if (dev->pci->device == 0x8880) {
 		dev->bridge = CX23885_BRIDGE_887;
 		/* Apply a sensible clock frequency for the PCIe bridge */
 		dev->clk_freq = 25000000;
 		dev->sram_channels = cx23887_sram_channels;
 	} else
-	if(dev->pci->device == 0x8852) {
+	if (dev->pci->device == 0x8852) {
 		dev->bridge = CX23885_BRIDGE_885;
 		/* Apply a sensible clock frequency for the PCIe bridge */
 		dev->clk_freq = 28000000;
@@ -831,8 +841,8 @@
 	}
 
 	/* PCIe stuff */
-	dev->lmmio = ioremap(pci_resource_start(dev->pci,0),
-			     pci_resource_len(dev->pci,0));
+	dev->lmmio = ioremap(pci_resource_start(dev->pci, 0),
+			     pci_resource_len(dev->pci, 0));
 
 	dev->bmmio = (u8 __iomem *)dev->lmmio;
 
@@ -862,7 +872,7 @@
 	cx23885_i2c_register(&dev->i2c_bus[1]);
 	cx23885_i2c_register(&dev->i2c_bus[2]);
 	cx23885_card_setup(dev);
-	cx23885_call_i2c_clients (&dev->i2c_bus[0], TUNER_SET_STANDBY, NULL);
+	cx23885_call_i2c_clients(&dev->i2c_bus[0], TUNER_SET_STANDBY, NULL);
 	cx23885_ir_init(dev);
 
 	if (cx23885_boards[dev->board].porta == CX23885_ANALOG_VIDEO) {
@@ -908,8 +918,8 @@
 
 static void cx23885_dev_unregister(struct cx23885_dev *dev)
 {
-	release_mem_region(pci_resource_start(dev->pci,0),
-			   pci_resource_len(dev->pci,0));
+	release_mem_region(pci_resource_start(dev->pci, 0),
+			   pci_resource_len(dev->pci, 0));
 
 	if (!atomic_dec_and_test(&dev->refcount))
 		return;
@@ -936,7 +946,7 @@
 	iounmap(dev->lmmio);
 }
 
-static __le32* cx23885_risc_field(__le32 *rp, struct scatterlist *sglist,
+static __le32 *cx23885_risc_field(__le32 *rp, struct scatterlist *sglist,
 			       unsigned int offset, u32 sync_line,
 			       unsigned int bpl, unsigned int padding,
 			       unsigned int lines)
@@ -957,31 +967,31 @@
 		}
 		if (bpl <= sg_dma_len(sg)-offset) {
 			/* fits into current chunk */
-			*(rp++)=cpu_to_le32(RISC_WRITE|RISC_SOL|RISC_EOL|bpl);
-			*(rp++)=cpu_to_le32(sg_dma_address(sg)+offset);
-			*(rp++)=cpu_to_le32(0); /* bits 63-32 */
-			offset+=bpl;
+			*(rp++) = cpu_to_le32(RISC_WRITE|RISC_SOL|RISC_EOL|bpl);
+			*(rp++) = cpu_to_le32(sg_dma_address(sg)+offset);
+			*(rp++) = cpu_to_le32(0); /* bits 63-32 */
+			offset += bpl;
 		} else {
 			/* scanline needs to be split */
 			todo = bpl;
-			*(rp++)=cpu_to_le32(RISC_WRITE|RISC_SOL|
+			*(rp++) = cpu_to_le32(RISC_WRITE|RISC_SOL|
 					    (sg_dma_len(sg)-offset));
-			*(rp++)=cpu_to_le32(sg_dma_address(sg)+offset);
-			*(rp++)=cpu_to_le32(0); /* bits 63-32 */
+			*(rp++) = cpu_to_le32(sg_dma_address(sg)+offset);
+			*(rp++) = cpu_to_le32(0); /* bits 63-32 */
 			todo -= (sg_dma_len(sg)-offset);
 			offset = 0;
 			sg++;
 			while (todo > sg_dma_len(sg)) {
-				*(rp++)=cpu_to_le32(RISC_WRITE|
+				*(rp++) = cpu_to_le32(RISC_WRITE|
 						    sg_dma_len(sg));
-				*(rp++)=cpu_to_le32(sg_dma_address(sg));
-				*(rp++)=cpu_to_le32(0); /* bits 63-32 */
+				*(rp++) = cpu_to_le32(sg_dma_address(sg));
+				*(rp++) = cpu_to_le32(0); /* bits 63-32 */
 				todo -= sg_dma_len(sg);
 				sg++;
 			}
-			*(rp++)=cpu_to_le32(RISC_WRITE|RISC_EOL|todo);
-			*(rp++)=cpu_to_le32(sg_dma_address(sg));
-			*(rp++)=cpu_to_le32(0); /* bits 63-32 */
+			*(rp++) = cpu_to_le32(RISC_WRITE|RISC_EOL|todo);
+			*(rp++) = cpu_to_le32(sg_dma_address(sg));
+			*(rp++) = cpu_to_le32(0); /* bits 63-32 */
 			offset += todo;
 		}
 		offset += padding;
@@ -1010,9 +1020,11 @@
 	   can cause next bpl to start close to a page border.  First DMA
 	   region may be smaller than PAGE_SIZE */
 	/* write and jump need and extra dword */
-	instructions  = fields * (1 + ((bpl + padding) * lines) / PAGE_SIZE + lines);
+	instructions  = fields * (1 + ((bpl + padding) * lines)
+		/ PAGE_SIZE + lines);
 	instructions += 2;
-	if ((rc = btcx_riscmem_alloc(pci,risc,instructions*12)) < 0)
+	rc = btcx_riscmem_alloc(pci, risc, instructions*12);
+	if (rc < 0)
 		return rc;
 
 	/* write risc instructions */
@@ -1026,7 +1038,7 @@
 
 	/* save pointer to jmp instruction address */
 	risc->jmp = rp;
-	BUG_ON((risc->jmp - risc->cpu + 2) * sizeof (*risc->cpu) > risc->size);
+	BUG_ON((risc->jmp - risc->cpu + 2) * sizeof(*risc->cpu) > risc->size);
 	return 0;
 }
 
@@ -1048,7 +1060,8 @@
 	instructions  = 1 + (bpl * lines) / PAGE_SIZE + lines;
 	instructions += 1;
 
-	if ((rc = btcx_riscmem_alloc(pci,risc,instructions*12)) < 0)
+	rc = btcx_riscmem_alloc(pci, risc, instructions*12);
+	if (rc < 0)
 		return rc;
 
 	/* write risc instructions */
@@ -1057,7 +1070,7 @@
 
 	/* save pointer to jmp instruction address */
 	risc->jmp = rp;
-	BUG_ON((risc->jmp - risc->cpu + 2) * sizeof (*risc->cpu) > risc->size);
+	BUG_ON((risc->jmp - risc->cpu + 2) * sizeof(*risc->cpu) > risc->size);
 	return 0;
 }
 
@@ -1067,7 +1080,8 @@
 	__le32 *rp;
 	int rc;
 
-	if ((rc = btcx_riscmem_alloc(pci, risc, 4*16)) < 0)
+	rc = btcx_riscmem_alloc(pci, risc, 4*16);
+	if (rc < 0)
 		return rc;
 
 	/* write risc instructions */
@@ -1161,22 +1175,23 @@
 
 	/* setup fifo + format */
 	cx23885_sram_channel_setup(dev,
-				   &dev->sram_channels[ port->sram_chno ],
+				   &dev->sram_channels[port->sram_chno],
 				   port->ts_packet_size, buf->risc.dma);
-	if(debug > 5) {
-		cx23885_sram_channel_dump(dev, &dev->sram_channels[ port->sram_chno ] );
+	if (debug > 5) {
+		cx23885_sram_channel_dump(dev,
+			&dev->sram_channels[port->sram_chno]);
 		cx23885_risc_disasm(port, &buf->risc);
 	}
 
 	/* write TS length to chip */
 	cx_write(port->reg_lngth, buf->vb.width);
 
-	if ( (!(cx23885_boards[dev->board].portb & CX23885_MPEG_DVB)) &&
-		(!(cx23885_boards[dev->board].portc & CX23885_MPEG_DVB)) ) {
-		printk( "%s() Failed. Unsupported value in .portb/c (0x%08x)/(0x%08x)\n",
+	if ((!(cx23885_boards[dev->board].portb & CX23885_MPEG_DVB)) &&
+		(!(cx23885_boards[dev->board].portc & CX23885_MPEG_DVB))) {
+		printk("%s() Unsupported .portb/c (0x%08x)/(0x%08x)\n",
 			__func__,
 			cx23885_boards[dev->board].portb,
-			cx23885_boards[dev->board].portc );
+			cx23885_boards[dev->board].portc);
 		return -EINVAL;
 	}
 
@@ -1186,7 +1201,7 @@
 	udelay(100);
 
 	/* If the port supports SRC SELECT, configure it */
-	if(port->reg_src_sel)
+	if (port->reg_src_sel)
 		cx_write(port->reg_src_sel, port->src_sel_val);
 
 	cx_write(port->reg_hw_sop_ctrl, port->hw_sop_ctrl_val);
@@ -1195,7 +1210,7 @@
 	cx_write(port->reg_gen_ctrl, port->gen_ctrl_val);
 	udelay(100);
 
-	// NOTE: this is 2 (reserved) for portb, does it matter?
+	/* NOTE: this is 2 (reserved) for portb, does it matter? */
 	/* reset counter to zero */
 	cx_write(port->reg_gpcnt_ctl, 3);
 	q->count = 1;
@@ -1229,11 +1244,11 @@
 		cx_write(ALT_PIN_OUT_SEL, 0x10100045);
 	}
 
-	switch(dev->bridge) {
+	switch (dev->bridge) {
 	case CX23885_BRIDGE_885:
 	case CX23885_BRIDGE_887:
 		/* enable irqs */
-		dprintk(1, "%s() enabling TS int's and DMA\n", __func__ );
+		dprintk(1, "%s() enabling TS int's and DMA\n", __func__);
 		cx_set(port->reg_ts_int_msk,  port->ts_int_msk_val);
 		cx_set(port->reg_dma_ctl, port->dma_ctl_val);
 		cx_set(PCI_INT_MSK, dev->pci_irqmask | port->pci_irqmask);
@@ -1292,8 +1307,7 @@
 	struct cx23885_buffer *buf;
 
 	dprintk(5, "%s()\n", __func__);
-	if (list_empty(&q->active))
-	{
+	if (list_empty(&q->active)) {
 		struct cx23885_buffer *prev;
 		prev = NULL;
 
@@ -1311,7 +1325,7 @@
 				buf->vb.state = VIDEOBUF_ACTIVE;
 				buf->count    = q->count++;
 				mod_timer(&q->timeout, jiffies+BUFFER_TIMEOUT);
-				dprintk(5, "[%p/%d] restart_queue - first active\n",
+				dprintk(5, "[%p/%d] restart_queue - f/active\n",
 					buf, buf->vb.i);
 
 			} else if (prev->vb.width  == buf->vb.width  &&
@@ -1322,8 +1336,9 @@
 				buf->vb.state = VIDEOBUF_ACTIVE;
 				buf->count    = q->count++;
 				prev->risc.jmp[1] = cpu_to_le32(buf->risc.dma);
-				prev->risc.jmp[2] = cpu_to_le32(0); /* 64 bit bits 63-32 */
-				dprintk(5,"[%p/%d] restart_queue - move to active\n",
+				/* 64 bit bits 63-32 */
+				prev->risc.jmp[2] = cpu_to_le32(0);
+				dprintk(5, "[%p/%d] restart_queue - m/active\n",
 					buf, buf->vb.i);
 			} else {
 				return 0;
@@ -1362,7 +1377,8 @@
 		buf->vb.size   = size;
 		buf->vb.field  = field /*V4L2_FIELD_TOP*/;
 
-		if (0 != (rc = videobuf_iolock(q, &buf->vb, NULL)))
+		rc = videobuf_iolock(q, &buf->vb, NULL);
+		if (0 != rc)
 			goto fail;
 		cx23885_risc_databuffer(dev->pci, &buf->risc,
 					videobuf_to_dma(&buf->vb)->sglist,
@@ -1388,7 +1404,7 @@
 	buf->risc.jmp[2] = cpu_to_le32(0); /* bits 63-32 */
 
 	if (list_empty(&cx88q->active)) {
-		dprintk( 1, "queue is empty - first active\n" );
+		dprintk(1, "queue is empty - first active\n");
 		list_add_tail(&buf->vb.queue, &cx88q->active);
 		cx23885_start_dma(port, cx88q, buf);
 		buf->vb.state = VIDEOBUF_ACTIVE;
@@ -1397,7 +1413,7 @@
 		dprintk(1, "[%p/%d] %s - first active\n",
 			buf, buf->vb.i, __func__);
 	} else {
-		dprintk( 1, "queue is not empty - append to active\n" );
+		dprintk(1, "queue is not empty - append to active\n");
 		prev = list_entry(cx88q->active.prev, struct cx23885_buffer,
 				  vb.queue);
 		list_add_tail(&buf->vb.queue, &cx88q->active);
@@ -1405,7 +1421,7 @@
 		buf->count    = cx88q->count++;
 		prev->risc.jmp[1] = cpu_to_le32(buf->risc.dma);
 		prev->risc.jmp[2] = cpu_to_le32(0); /* 64 bit bits 63-32 */
-		dprintk( 1, "[%p/%d] %s - append to active\n",
+		dprintk(1, "[%p/%d] %s - append to active\n",
 			 buf, buf->vb.i, __func__);
 	}
 }
@@ -1431,7 +1447,7 @@
 			buf, buf->vb.i, reason, (unsigned long)buf->risc.dma);
 	}
 	if (restart) {
-		dprintk(1, "restarting queue\n" );
+		dprintk(1, "restarting queue\n");
 		cx23885_restart_queue(port, q);
 	}
 	spin_unlock_irqrestore(&port->slock, flags);
@@ -1453,10 +1469,11 @@
 	struct cx23885_tsport *port = (struct cx23885_tsport *)data;
 	struct cx23885_dev *dev = port->dev;
 
-	dprintk(1, "%s()\n",__func__);
+	dprintk(1, "%s()\n", __func__);
 
 	if (debug > 5)
-		cx23885_sram_channel_dump(dev, &dev->sram_channels[ port->sram_chno ]);
+		cx23885_sram_channel_dump(dev,
+			&dev->sram_channels[port->sram_chno]);
 
 	cx23885_stop_dma(port);
 	do_cancel_buffers(port, "timeout", 1);
@@ -1532,16 +1549,23 @@
 	if ((status & VID_BC_MSK_OPC_ERR) ||
 		(status & VID_BC_MSK_BAD_PKT) ||
 		(status & VID_BC_MSK_SYNC) ||
-		(status & VID_BC_MSK_OF))
-	{
+		(status & VID_BC_MSK_OF)) {
+
 		if (status & VID_BC_MSK_OPC_ERR)
-			dprintk(7, " (VID_BC_MSK_OPC_ERR 0x%08x)\n", VID_BC_MSK_OPC_ERR);
+			dprintk(7, " (VID_BC_MSK_OPC_ERR 0x%08x)\n",
+				VID_BC_MSK_OPC_ERR);
+
 		if (status & VID_BC_MSK_BAD_PKT)
-			dprintk(7, " (VID_BC_MSK_BAD_PKT 0x%08x)\n", VID_BC_MSK_BAD_PKT);
+			dprintk(7, " (VID_BC_MSK_BAD_PKT 0x%08x)\n",
+				VID_BC_MSK_BAD_PKT);
+
 		if (status & VID_BC_MSK_SYNC)
-			dprintk(7, " (VID_BC_MSK_SYNC    0x%08x)\n", VID_BC_MSK_SYNC);
+			dprintk(7, " (VID_BC_MSK_SYNC    0x%08x)\n",
+				VID_BC_MSK_SYNC);
+
 		if (status & VID_BC_MSK_OF)
-			dprintk(7, " (VID_BC_MSK_OF      0x%08x)\n", VID_BC_MSK_OF);
+			dprintk(7, " (VID_BC_MSK_OF      0x%08x)\n",
+				VID_BC_MSK_OF);
 
 		printk(KERN_ERR "%s: mpeg risc op code error\n", dev->name);
 
@@ -1595,7 +1619,7 @@
 	ts2_status = cx_read(VID_C_INT_STAT);
 	ts2_mask = cx_read(VID_C_INT_MSK);
 
-	if ( (pci_status == 0) && (ts2_status == 0) && (ts1_status == 0) )
+	if ((pci_status == 0) && (ts2_status == 0) && (ts1_status == 0))
 		goto out;
 
 	vida_count = cx_read(VID_A_GPCNT);
@@ -1610,38 +1634,56 @@
 	dprintk(7, "ts2_status: 0x%08x  ts2_mask: 0x%08x count: 0x%x\n",
 		ts2_status, ts2_mask, ts2_count);
 
-	if ( (pci_status & PCI_MSK_RISC_RD) ||
-	     (pci_status & PCI_MSK_RISC_WR) ||
-	     (pci_status & PCI_MSK_AL_RD) ||
-	     (pci_status & PCI_MSK_AL_WR) ||
-	     (pci_status & PCI_MSK_APB_DMA) ||
-	     (pci_status & PCI_MSK_VID_C) ||
-	     (pci_status & PCI_MSK_VID_B) ||
-	     (pci_status & PCI_MSK_VID_A) ||
-	     (pci_status & PCI_MSK_AUD_INT) ||
-	     (pci_status & PCI_MSK_AUD_EXT) )
-	{
+	if ((pci_status & PCI_MSK_RISC_RD) ||
+	    (pci_status & PCI_MSK_RISC_WR) ||
+	    (pci_status & PCI_MSK_AL_RD) ||
+	    (pci_status & PCI_MSK_AL_WR) ||
+	    (pci_status & PCI_MSK_APB_DMA) ||
+	    (pci_status & PCI_MSK_VID_C) ||
+	    (pci_status & PCI_MSK_VID_B) ||
+	    (pci_status & PCI_MSK_VID_A) ||
+	    (pci_status & PCI_MSK_AUD_INT) ||
+	    (pci_status & PCI_MSK_AUD_EXT)) {
 
 		if (pci_status & PCI_MSK_RISC_RD)
-			dprintk(7, " (PCI_MSK_RISC_RD   0x%08x)\n", PCI_MSK_RISC_RD);
+			dprintk(7, " (PCI_MSK_RISC_RD   0x%08x)\n",
+				PCI_MSK_RISC_RD);
+
 		if (pci_status & PCI_MSK_RISC_WR)
-			dprintk(7, " (PCI_MSK_RISC_WR   0x%08x)\n", PCI_MSK_RISC_WR);
+			dprintk(7, " (PCI_MSK_RISC_WR   0x%08x)\n",
+				PCI_MSK_RISC_WR);
+
 		if (pci_status & PCI_MSK_AL_RD)
-			dprintk(7, " (PCI_MSK_AL_RD     0x%08x)\n", PCI_MSK_AL_RD);
+			dprintk(7, " (PCI_MSK_AL_RD     0x%08x)\n",
+				PCI_MSK_AL_RD);
+
 		if (pci_status & PCI_MSK_AL_WR)
-			dprintk(7, " (PCI_MSK_AL_WR     0x%08x)\n", PCI_MSK_AL_WR);
+			dprintk(7, " (PCI_MSK_AL_WR     0x%08x)\n",
+				PCI_MSK_AL_WR);
+
 		if (pci_status & PCI_MSK_APB_DMA)
-			dprintk(7, " (PCI_MSK_APB_DMA   0x%08x)\n", PCI_MSK_APB_DMA);
+			dprintk(7, " (PCI_MSK_APB_DMA   0x%08x)\n",
+				PCI_MSK_APB_DMA);
+
 		if (pci_status & PCI_MSK_VID_C)
-			dprintk(7, " (PCI_MSK_VID_C     0x%08x)\n", PCI_MSK_VID_C);
+			dprintk(7, " (PCI_MSK_VID_C     0x%08x)\n",
+				PCI_MSK_VID_C);
+
 		if (pci_status & PCI_MSK_VID_B)
-			dprintk(7, " (PCI_MSK_VID_B     0x%08x)\n", PCI_MSK_VID_B);
+			dprintk(7, " (PCI_MSK_VID_B     0x%08x)\n",
+				PCI_MSK_VID_B);
+
 		if (pci_status & PCI_MSK_VID_A)
-			dprintk(7, " (PCI_MSK_VID_A     0x%08x)\n", PCI_MSK_VID_A);
+			dprintk(7, " (PCI_MSK_VID_A     0x%08x)\n",
+				PCI_MSK_VID_A);
+
 		if (pci_status & PCI_MSK_AUD_INT)
-			dprintk(7, " (PCI_MSK_AUD_INT   0x%08x)\n", PCI_MSK_AUD_INT);
+			dprintk(7, " (PCI_MSK_AUD_INT   0x%08x)\n",
+				PCI_MSK_AUD_INT);
+
 		if (pci_status & PCI_MSK_AUD_EXT)
-			dprintk(7, " (PCI_MSK_AUD_EXT   0x%08x)\n", PCI_MSK_AUD_EXT);
+			dprintk(7, " (PCI_MSK_AUD_EXT   0x%08x)\n",
+				PCI_MSK_AUD_EXT);
 
 	}
 
@@ -1753,13 +1795,13 @@
 		.device       = 0x8852,
 		.subvendor    = PCI_ANY_ID,
 		.subdevice    = PCI_ANY_ID,
-	},{
+	}, {
 		/* CX23887 Rev 2 */
 		.vendor       = 0x14f1,
 		.device       = 0x8880,
 		.subvendor    = PCI_ANY_ID,
 		.subdevice    = PCI_ANY_ID,
-	},{
+	}, {
 		/* --- end of list --- */
 	}
 };
@@ -1797,9 +1839,3 @@
 module_exit(cx23885_fini);
 
 /* ----------------------------------------------------------- */
-/*
- * Local variables:
- * c-basic-offset: 8
- * End:
- * kate: eol "unix"; indent-width 3; remove-trailing-space on; replace-trailing-space-save on; tab-width 8; replace-tabs off; space-indent off; mixed-indent off
- */
diff --git a/drivers/media/video/cx23885/cx23885-dvb.c b/drivers/media/video/cx23885/cx23885-dvb.c
index 24bd183..e1aac07 100644
--- a/drivers/media/video/cx23885/cx23885-dvb.c
+++ b/drivers/media/video/cx23885/cx23885-dvb.c
@@ -78,19 +78,19 @@
 			   struct videobuf_buffer *vb, enum v4l2_field field)
 {
 	struct cx23885_tsport *port = q->priv_data;
-	return cx23885_buf_prepare(q, port, (struct cx23885_buffer*)vb, field);
+	return cx23885_buf_prepare(q, port, (struct cx23885_buffer *)vb, field);
 }
 
 static void dvb_buf_queue(struct videobuf_queue *q, struct videobuf_buffer *vb)
 {
 	struct cx23885_tsport *port = q->priv_data;
-	cx23885_buf_queue(port, (struct cx23885_buffer*)vb);
+	cx23885_buf_queue(port, (struct cx23885_buffer *)vb);
 }
 
 static void dvb_buf_release(struct videobuf_queue *q,
 			    struct videobuf_buffer *vb)
 {
-	cx23885_free_buffer(q, (struct cx23885_buffer*)vb);
+	cx23885_free_buffer(q, (struct cx23885_buffer *)vb);
 }
 
 static struct videobuf_queue_ops dvb_qops = {
@@ -312,19 +312,25 @@
 {
 	struct cx23885_dev *dev = port->dev;
 	struct cx23885_i2c *i2c_bus = NULL;
+	struct videobuf_dvb_frontend *fe0;
+
+	/* Get the first frontend */
+	fe0 = videobuf_dvb_get_frontend(&port->frontends, 1);
+	if (!fe0)
+		return -EINVAL;
 
 	/* init struct videobuf_dvb */
-	port->dvb.name = dev->name;
+	fe0->dvb.name = dev->name;
 
 	/* init frontend */
 	switch (dev->board) {
 	case CX23885_BOARD_HAUPPAUGE_HVR1250:
 		i2c_bus = &dev->i2c_bus[0];
-		port->dvb.frontend = dvb_attach(s5h1409_attach,
+		fe0->dvb.frontend = dvb_attach(s5h1409_attach,
 						&hauppauge_generic_config,
 						&i2c_bus->i2c_adap);
-		if (port->dvb.frontend != NULL) {
-			dvb_attach(mt2131_attach, port->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			dvb_attach(mt2131_attach, fe0->dvb.frontend,
 				   &i2c_bus->i2c_adap,
 				   &hauppauge_generic_tunerconfig, 0);
 		}
@@ -333,27 +339,27 @@
 		i2c_bus = &dev->i2c_bus[0];
 		switch (alt_tuner) {
 		case 1:
-			port->dvb.frontend =
+			fe0->dvb.frontend =
 				dvb_attach(s5h1409_attach,
 					   &hauppauge_ezqam_config,
 					   &i2c_bus->i2c_adap);
-			if (port->dvb.frontend != NULL) {
-				dvb_attach(tda829x_attach, port->dvb.frontend,
+			if (fe0->dvb.frontend != NULL) {
+				dvb_attach(tda829x_attach, fe0->dvb.frontend,
 					   &dev->i2c_bus[1].i2c_adap, 0x42,
 					   &tda829x_no_probe);
-				dvb_attach(tda18271_attach, port->dvb.frontend,
+				dvb_attach(tda18271_attach, fe0->dvb.frontend,
 					   0x60, &dev->i2c_bus[1].i2c_adap,
 					   &hauppauge_tda18271_config);
 			}
 			break;
 		case 0:
 		default:
-			port->dvb.frontend =
+			fe0->dvb.frontend =
 				dvb_attach(s5h1409_attach,
 					   &hauppauge_generic_config,
 					   &i2c_bus->i2c_adap);
-			if (port->dvb.frontend != NULL)
-				dvb_attach(mt2131_attach, port->dvb.frontend,
+			if (fe0->dvb.frontend != NULL)
+				dvb_attach(mt2131_attach, fe0->dvb.frontend,
 					   &i2c_bus->i2c_adap,
 					   &hauppauge_generic_tunerconfig, 0);
 			break;
@@ -361,42 +367,42 @@
 		break;
 	case CX23885_BOARD_HAUPPAUGE_HVR1800lp:
 		i2c_bus = &dev->i2c_bus[0];
-		port->dvb.frontend = dvb_attach(s5h1409_attach,
+		fe0->dvb.frontend = dvb_attach(s5h1409_attach,
 						&hauppauge_hvr1800lp_config,
 						&i2c_bus->i2c_adap);
-		if (port->dvb.frontend != NULL) {
-			dvb_attach(mt2131_attach, port->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			dvb_attach(mt2131_attach, fe0->dvb.frontend,
 				   &i2c_bus->i2c_adap,
 				   &hauppauge_generic_tunerconfig, 0);
 		}
 		break;
 	case CX23885_BOARD_DVICO_FUSIONHDTV_5_EXP:
 		i2c_bus = &dev->i2c_bus[0];
-		port->dvb.frontend = dvb_attach(lgdt330x_attach,
+		fe0->dvb.frontend = dvb_attach(lgdt330x_attach,
 						&fusionhdtv_5_express,
 						&i2c_bus->i2c_adap);
-		if (port->dvb.frontend != NULL) {
-			dvb_attach(simple_tuner_attach, port->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			dvb_attach(simple_tuner_attach, fe0->dvb.frontend,
 				   &i2c_bus->i2c_adap, 0x61,
 				   TUNER_LG_TDVS_H06XF);
 		}
 		break;
 	case CX23885_BOARD_HAUPPAUGE_HVR1500Q:
 		i2c_bus = &dev->i2c_bus[1];
-		port->dvb.frontend = dvb_attach(s5h1409_attach,
+		fe0->dvb.frontend = dvb_attach(s5h1409_attach,
 						&hauppauge_hvr1500q_config,
 						&dev->i2c_bus[0].i2c_adap);
-		if (port->dvb.frontend != NULL)
-			dvb_attach(xc5000_attach, port->dvb.frontend,
+		if (fe0->dvb.frontend != NULL)
+			dvb_attach(xc5000_attach, fe0->dvb.frontend,
 				   &i2c_bus->i2c_adap,
 				   &hauppauge_hvr1500q_tunerconfig);
 		break;
 	case CX23885_BOARD_HAUPPAUGE_HVR1500:
 		i2c_bus = &dev->i2c_bus[1];
-		port->dvb.frontend = dvb_attach(s5h1409_attach,
+		fe0->dvb.frontend = dvb_attach(s5h1409_attach,
 						&hauppauge_hvr1500_config,
 						&dev->i2c_bus[0].i2c_adap);
-		if (port->dvb.frontend != NULL) {
+		if (fe0->dvb.frontend != NULL) {
 			struct dvb_frontend *fe;
 			struct xc2028_config cfg = {
 				.i2c_adap  = &i2c_bus->i2c_adap,
@@ -409,7 +415,7 @@
 			};
 
 			fe = dvb_attach(xc2028_attach,
-					port->dvb.frontend, &cfg);
+					fe0->dvb.frontend, &cfg);
 			if (fe != NULL && fe->ops.tuner_ops.set_config != NULL)
 				fe->ops.tuner_ops.set_config(fe, &ctl);
 		}
@@ -417,24 +423,24 @@
 	case CX23885_BOARD_HAUPPAUGE_HVR1200:
 	case CX23885_BOARD_HAUPPAUGE_HVR1700:
 		i2c_bus = &dev->i2c_bus[0];
-		port->dvb.frontend = dvb_attach(tda10048_attach,
+		fe0->dvb.frontend = dvb_attach(tda10048_attach,
 			&hauppauge_hvr1200_config,
 			&i2c_bus->i2c_adap);
-		if (port->dvb.frontend != NULL) {
-			dvb_attach(tda829x_attach, port->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			dvb_attach(tda829x_attach, fe0->dvb.frontend,
 				&dev->i2c_bus[1].i2c_adap, 0x42,
 				&tda829x_no_probe);
-			dvb_attach(tda18271_attach, port->dvb.frontend,
+			dvb_attach(tda18271_attach, fe0->dvb.frontend,
 				0x60, &dev->i2c_bus[1].i2c_adap,
 				&hauppauge_hvr1200_tuner_config);
 		}
 		break;
 	case CX23885_BOARD_HAUPPAUGE_HVR1400:
 		i2c_bus = &dev->i2c_bus[0];
-		port->dvb.frontend = dvb_attach(dib7000p_attach,
+		fe0->dvb.frontend = dvb_attach(dib7000p_attach,
 			&i2c_bus->i2c_adap,
 			0x12, &hauppauge_hvr1400_dib7000_config);
-		if (port->dvb.frontend != NULL) {
+		if (fe0->dvb.frontend != NULL) {
 			struct dvb_frontend *fe;
 			struct xc2028_config cfg = {
 				.i2c_adap  = &dev->i2c_bus[1].i2c_adap,
@@ -444,12 +450,13 @@
 				.fname   = XC3028L_DEFAULT_FIRMWARE,
 				.max_len = 64,
 				.demod   = 5000,
-				/* This is true for all demods with v36 firmware? */
+				/* This is true for all demods with
+					v36 firmware? */
 				.type    = XC2028_D2633,
 			};
 
 			fe = dvb_attach(xc2028_attach,
-					port->dvb.frontend, &cfg);
+					fe0->dvb.frontend, &cfg);
 			if (fe != NULL && fe->ops.tuner_ops.set_config != NULL)
 				fe->ops.tuner_ops.set_config(fe, &ctl);
 		}
@@ -457,25 +464,25 @@
 	case CX23885_BOARD_DVICO_FUSIONHDTV_7_DUAL_EXP:
 		i2c_bus = &dev->i2c_bus[port->nr - 1];
 
-		port->dvb.frontend = dvb_attach(s5h1409_attach,
+		fe0->dvb.frontend = dvb_attach(s5h1409_attach,
 						&dvico_s5h1409_config,
 						&i2c_bus->i2c_adap);
-		if (port->dvb.frontend == NULL)
-			port->dvb.frontend = dvb_attach(s5h1411_attach,
+		if (fe0->dvb.frontend == NULL)
+			fe0->dvb.frontend = dvb_attach(s5h1411_attach,
 							&dvico_s5h1411_config,
 							&i2c_bus->i2c_adap);
-		if (port->dvb.frontend != NULL)
-			dvb_attach(xc5000_attach, port->dvb.frontend,
+		if (fe0->dvb.frontend != NULL)
+			dvb_attach(xc5000_attach, fe0->dvb.frontend,
 				   &i2c_bus->i2c_adap,
 				   &dvico_xc5000_tunerconfig);
 		break;
 	case CX23885_BOARD_DVICO_FUSIONHDTV_DVB_T_DUAL_EXP: {
 		i2c_bus = &dev->i2c_bus[port->nr - 1];
 
-		port->dvb.frontend = dvb_attach(zl10353_attach,
+		fe0->dvb.frontend = dvb_attach(zl10353_attach,
 					       &dvico_fusionhdtv_xc3028,
 					       &i2c_bus->i2c_adap);
-		if (port->dvb.frontend != NULL) {
+		if (fe0->dvb.frontend != NULL) {
 			struct dvb_frontend      *fe;
 			struct xc2028_config	  cfg = {
 				.i2c_adap  = &i2c_bus->i2c_adap,
@@ -487,7 +494,7 @@
 				.demod       = XC3028_FE_ZARLINK456,
 			};
 
-			fe = dvb_attach(xc2028_attach, port->dvb.frontend,
+			fe = dvb_attach(xc2028_attach, fe0->dvb.frontend,
 					&cfg);
 			if (fe != NULL && fe->ops.tuner_ops.set_config != NULL)
 				fe->ops.tuner_ops.set_config(fe, &ctl);
@@ -497,10 +504,10 @@
 	case CX23885_BOARD_LEADTEK_WINFAST_PXDVR3200_H:
 		i2c_bus = &dev->i2c_bus[0];
 
-		port->dvb.frontend = dvb_attach(zl10353_attach,
+		fe0->dvb.frontend = dvb_attach(zl10353_attach,
 			&dvico_fusionhdtv_xc3028,
 			&i2c_bus->i2c_adap);
-		if (port->dvb.frontend != NULL) {
+		if (fe0->dvb.frontend != NULL) {
 			struct dvb_frontend      *fe;
 			struct xc2028_config	  cfg = {
 				.i2c_adap  = &dev->i2c_bus[1].i2c_adap,
@@ -512,73 +519,108 @@
 				.demod       = XC3028_FE_ZARLINK456,
 			};
 
-			fe = dvb_attach(xc2028_attach, port->dvb.frontend,
+			fe = dvb_attach(xc2028_attach, fe0->dvb.frontend,
 				&cfg);
 			if (fe != NULL && fe->ops.tuner_ops.set_config != NULL)
 				fe->ops.tuner_ops.set_config(fe, &ctl);
 		}
 		break;
 	default:
-		printk("%s: The frontend of your DVB/ATSC card isn't supported yet\n",
+		printk(KERN_INFO "%s: The frontend of your DVB/ATSC card "
+			" isn't supported yet\n",
 		       dev->name);
 		break;
 	}
-	if (NULL == port->dvb.frontend) {
-		printk("%s: frontend initialization failed\n", dev->name);
+	if (NULL == fe0->dvb.frontend) {
+		printk(KERN_ERR "%s: frontend initialization failed\n",
+			dev->name);
 		return -1;
 	}
 	/* define general-purpose callback pointer */
-	port->dvb.frontend->callback = cx23885_tuner_callback;
+	fe0->dvb.frontend->callback = cx23885_tuner_callback;
 
 	/* Put the analog decoder in standby to keep it quiet */
 	cx23885_call_i2c_clients(i2c_bus, TUNER_SET_STANDBY, NULL);
 
-	if (port->dvb.frontend->ops.analog_ops.standby)
-		port->dvb.frontend->ops.analog_ops.standby(port->dvb.frontend);
+	if (fe0->dvb.frontend->ops.analog_ops.standby)
+		fe0->dvb.frontend->ops.analog_ops.standby(fe0->dvb.frontend);
 
 	/* register everything */
-	return videobuf_dvb_register(&port->dvb, THIS_MODULE, port,
-				     &dev->pci->dev, adapter_nr);
+	return videobuf_dvb_register_bus(&port->frontends, THIS_MODULE, port,
+		&dev->pci->dev, adapter_nr, 0);
+
 }
 
 int cx23885_dvb_register(struct cx23885_tsport *port)
 {
+
+	struct videobuf_dvb_frontend *fe0;
 	struct cx23885_dev *dev = port->dev;
-	int err;
+	int err, i;
 
-	dprintk(1, "%s\n", __func__);
-	dprintk(1, " ->being probed by Card=%d Name=%s, PCI %02x:%02x\n",
-		dev->board,
-		dev->name,
-		dev->pci_bus,
-		dev->pci_slot);
+	/* Here we need to allocate the correct number of frontends,
+	 * as reflected in the cards struct. The reality is that currrently
+	 * no cx23885 boards support this - yet. But, if we don't modify this
+	 * code then the second frontend would never be allocated (later)
+	 * and fail with error before the attach in dvb_register().
+	 * Without these changes we risk an OOPS later. The changes here
+	 * are for safety, and should provide a good foundation for the
+	 * future addition of any multi-frontend cx23885 based boards.
+	 */
+	printk(KERN_INFO "%s() allocating %d frontend(s)\n", __func__,
+		port->num_frontends);
 
-	err = -ENODEV;
+	for (i = 1; i <= port->num_frontends; i++) {
+		if (videobuf_dvb_alloc_frontend(
+			&port->frontends, i) == NULL) {
+			printk(KERN_ERR "%s() failed to alloc\n", __func__);
+			return -ENOMEM;
+		}
 
-	/* dvb stuff */
-	printk("%s: cx23885 based dvb card\n", dev->name);
-	videobuf_queue_sg_init(&port->dvb.dvbq, &dvb_qops, &dev->pci->dev, &port->slock,
+		fe0 = videobuf_dvb_get_frontend(&port->frontends, i);
+		if (!fe0)
+			err = -EINVAL;
+
+		dprintk(1, "%s\n", __func__);
+		dprintk(1, " ->probed by Card=%d Name=%s, PCI %02x:%02x\n",
+			dev->board,
+			dev->name,
+			dev->pci_bus,
+			dev->pci_slot);
+
+		err = -ENODEV;
+
+		/* dvb stuff */
+		/* We have to init the queue for each frontend on a port. */
+		printk(KERN_INFO "%s: cx23885 based dvb card\n", dev->name);
+		videobuf_queue_sg_init(&fe0->dvb.dvbq, &dvb_qops,
+			    &dev->pci->dev, &port->slock,
 			    V4L2_BUF_TYPE_VIDEO_CAPTURE, V4L2_FIELD_TOP,
 			    sizeof(struct cx23885_buffer), port);
+	}
 	err = dvb_register(port);
 	if (err != 0)
-		printk("%s() dvb_register failed err = %d\n", __func__, err);
+		printk(KERN_ERR "%s() dvb_register failed err = %d\n",
+			__func__, err);
 
 	return err;
 }
 
 int cx23885_dvb_unregister(struct cx23885_tsport *port)
 {
-	/* dvb */
-	if(port->dvb.frontend)
-		videobuf_dvb_unregister(&port->dvb);
+	struct videobuf_dvb_frontend *fe0;
+
+	/* FIXME: in an error condition where the we have
+	 * an expected number of frontends (attach problem)
+	 * then this might not clean up correctly, if 1
+	 * is invalid.
+	 * This comment only applies to future boards IF they
+	 * implement MFE support.
+	 */
+	fe0 = videobuf_dvb_get_frontend(&port->frontends, 1);
+	if (fe0->dvb.frontend)
+		videobuf_dvb_unregister_bus(&port->frontends);
 
 	return 0;
 }
 
-/*
- * Local variables:
- * c-basic-offset: 8
- * End:
- * kate: eol "unix"; indent-width 3; remove-trailing-space on; replace-trailing-space-save on; tab-width 8; replace-tabs off; space-indent off; mixed-indent off
-*/
diff --git a/drivers/media/video/cx23885/cx23885-i2c.c b/drivers/media/video/cx23885/cx23885-i2c.c
index f98e476..bb7f71a 100644
--- a/drivers/media/video/cx23885/cx23885-i2c.c
+++ b/drivers/media/video/cx23885/cx23885-i2c.c
@@ -131,7 +131,7 @@
 			printk(" >\n");
 	}
 
-	for (cnt = 1; cnt < msg->len; cnt++ ) {
+	for (cnt = 1; cnt < msg->len; cnt++) {
 		/* following bytes */
 		wdata = msg->buf[cnt];
 		ctrl = bus->i2c_period | (1 << 12) | (1 << 2);
@@ -151,9 +151,9 @@
 		if (retval == 0)
 			goto eio;
 		if (i2c_debug) {
-			printk(" %02x", msg->buf[cnt]);
+			dprintk(1, " %02x", msg->buf[cnt]);
 			if (!(ctrl & I2C_NOSTOP))
-				printk(" >\n");
+				dprintk(1, " >\n");
 		}
 	}
 	return msg->len;
@@ -162,7 +162,7 @@
 	retval = -EIO;
  err:
 	if (i2c_debug)
-		printk(" ERR: %d\n", retval);
+		printk(KERN_ERR " ERR: %d\n", retval);
 	return retval;
 }
 
@@ -194,12 +194,12 @@
 
 	if (i2c_debug) {
 		if (joined)
-			printk(" R");
+			dprintk(1, " R");
 		else
-			printk(" <R %02x", (msg->addr << 1) + 1);
+			dprintk(1, " <R %02x", (msg->addr << 1) + 1);
 	}
 
-	for(cnt = 0; cnt < msg->len; cnt++) {
+	for (cnt = 0; cnt < msg->len; cnt++) {
 
 		ctrl = bus->i2c_period | (1 << 12) | (1 << 2) | 1;
 
@@ -216,9 +216,9 @@
 			goto eio;
 		msg->buf[cnt] = cx_read(bus->reg_rdata) & 0xff;
 		if (i2c_debug) {
-			printk(" %02x", msg->buf[cnt]);
+			dprintk(1, " %02x", msg->buf[cnt]);
 			if (!(ctrl & I2C_NOSTOP))
-				printk(" >\n");
+				dprintk(1, " >\n");
 		}
 	}
 	return msg->len;
@@ -227,7 +227,7 @@
 	retval = -EIO;
  err:
 	if (i2c_debug)
-		printk(" ERR: %d\n", retval);
+		printk(KERN_ERR " ERR: %d\n", retval);
 	return retval;
 }
 
@@ -353,17 +353,17 @@
 };
 
 static char *i2c_devs[128] = {
-	[0x10 >> 1]   = "tda10048",
-	[0x12 >> 1]   = "dib7000pc",
-	[ 0x1c >> 1 ] = "lgdt3303",
-	[ 0x86 >> 1 ] = "tda9887",
-	[ 0x32 >> 1 ] = "cx24227",
-	[ 0x88 >> 1 ] = "cx25837",
-	[ 0x84 >> 1 ] = "tda8295",
-	[ 0xa0 >> 1 ] = "eeprom",
-	[ 0xc0 >> 1 ] = "tuner/mt2131/tda8275",
+	[0x10 >> 1] = "tda10048",
+	[0x12 >> 1] = "dib7000pc",
+	[0x1c >> 1] = "lgdt3303",
+	[0x86 >> 1] = "tda9887",
+	[0x32 >> 1] = "cx24227",
+	[0x88 >> 1] = "cx25837",
+	[0x84 >> 1] = "tda8295",
+	[0xa0 >> 1] = "eeprom",
+	[0xc0 >> 1] = "tuner/mt2131/tda8275",
 	[0xc2 >> 1] = "tuner/mt2131/tda8275/xc5000/xc3028",
-	[0xc8 >> 1]   = "tuner/xc3028L",
+	[0xc8 >> 1] = "tuner/xc3028L",
 };
 
 static void do_i2c_scan(char *name, struct i2c_client *c)
@@ -376,7 +376,7 @@
 		rc = i2c_master_recv(c, &buf, 0);
 		if (rc < 0)
 			continue;
-		printk("%s: i2c scan: found device @ 0x%x  [%s]\n",
+		printk(KERN_INFO "%s: i2c scan: found device @ 0x%x  [%s]\n",
 		       name, i << 1, i2c_devs[i] ? i2c_devs[i] : "???");
 	}
 }
@@ -408,11 +408,12 @@
 	bus->i2c_client.adapter = &bus->i2c_adap;
 
 	if (0 == bus->i2c_rc) {
-		printk("%s: i2c bus %d registered\n", dev->name, bus->nr);
+		dprintk(1, "%s: i2c bus %d registered\n", dev->name, bus->nr);
 		if (i2c_scan)
 			do_i2c_scan(dev->name, &bus->i2c_client);
 	} else
-		printk("%s: i2c bus %d register FAILED\n", dev->name, bus->nr);
+		printk(KERN_WARNING "%s: i2c bus %d register FAILED\n",
+			dev->name, bus->nr);
 
 	return bus->i2c_rc;
 }
diff --git a/drivers/media/video/cx23885/cx23885-video.c b/drivers/media/video/cx23885/cx23885-video.c
index f75ed1c..ab3110d 100644
--- a/drivers/media/video/cx23885/cx23885-video.c
+++ b/drivers/media/video/cx23885/cx23885-video.c
@@ -285,11 +285,10 @@
 		list_del(&buf->vb.queue);
 		wake_up(&buf->vb.done);
 	}
-	if (list_empty(&q->active)) {
+	if (list_empty(&q->active))
 		del_timer(&q->timeout);
-	} else {
+	else
 		mod_timer(&q->timeout, jiffies+BUFFER_TIMEOUT);
-	}
 	if (bc != 1)
 		printk(KERN_ERR "%s: %d buffers handled (should be 1)\n",
 			__func__, bc);
@@ -379,12 +378,12 @@
 
 static int res_check(struct cx23885_fh *fh, unsigned int bit)
 {
-	return (fh->resources & bit);
+	return fh->resources & bit;
 }
 
 static int res_locked(struct cx23885_dev *dev, unsigned int bit)
 {
-	return (dev->resources & bit);
+	return dev->resources & bit;
 }
 
 static void res_free(struct cx23885_dev *dev, struct cx23885_fh *fh,
@@ -887,14 +886,16 @@
 /* ------------------------------------------------------------------ */
 /* VIDEO CTRL IOCTLS                                                  */
 
-static int cx23885_get_control(struct cx23885_dev *dev, struct v4l2_control *ctl)
+static int cx23885_get_control(struct cx23885_dev *dev,
+	struct v4l2_control *ctl)
 {
 	dprintk(1, "%s() calling cx25840(VIDIOC_G_CTRL)\n", __func__);
 	cx23885_call_i2c_clients(&dev->i2c_bus[2], VIDIOC_G_CTRL, ctl);
 	return 0;
 }
 
-static int cx23885_set_control(struct cx23885_dev *dev, struct v4l2_control *ctl)
+static int cx23885_set_control(struct cx23885_dev *dev,
+	struct v4l2_control *ctl)
 {
 	dprintk(1, "%s() calling cx25840(VIDIOC_S_CTRL)"
 		" (disabled - no action)\n", __func__);
@@ -1073,29 +1074,29 @@
 	struct v4l2_requestbuffers *p)
 {
 	struct cx23885_fh *fh = priv;
-	return (videobuf_reqbufs(get_queue(fh), p));
+	return videobuf_reqbufs(get_queue(fh), p);
 }
 
 static int vidioc_querybuf(struct file *file, void *priv,
 	struct v4l2_buffer *p)
 {
 	struct cx23885_fh *fh = priv;
-	return (videobuf_querybuf(get_queue(fh), p));
+	return videobuf_querybuf(get_queue(fh), p);
 }
 
 static int vidioc_qbuf(struct file *file, void *priv,
 	struct v4l2_buffer *p)
 {
 	struct cx23885_fh *fh = priv;
-	return (videobuf_qbuf(get_queue(fh), p));
+	return videobuf_qbuf(get_queue(fh), p);
 }
 
 static int vidioc_dqbuf(struct file *file, void *priv,
 	struct v4l2_buffer *p)
 {
 	struct cx23885_fh *fh = priv;
-	return (videobuf_dqbuf(get_queue(fh), p,
-				file->f_flags & O_NONBLOCK));
+	return videobuf_dqbuf(get_queue(fh), p,
+				file->f_flags & O_NONBLOCK);
 }
 
 static int vidioc_streamon(struct file *file, void *priv,
diff --git a/drivers/media/video/cx23885/cx23885.h b/drivers/media/video/cx23885/cx23885.h
index ba4e0aa..1d53f54 100644
--- a/drivers/media/video/cx23885/cx23885.h
+++ b/drivers/media/video/cx23885/cx23885.h
@@ -37,7 +37,7 @@
 #include <linux/version.h>
 #include <linux/mutex.h>
 
-#define CX23885_VERSION_CODE KERNEL_VERSION(0,0,1)
+#define CX23885_VERSION_CODE KERNEL_VERSION(0, 0, 1)
 
 #define UNSET (-1U)
 
@@ -225,7 +225,7 @@
 	int                        nr;
 	int                        sram_chno;
 
-	struct videobuf_dvb        dvb;
+	struct videobuf_dvb_frontends frontends;
 
 	/* dma queues */
 	struct cx23885_dmaqueue    mpegq;
@@ -262,6 +262,9 @@
 	u32                        src_sel_val;
 	u32                        vld_misc_val;
 	u32                        hw_sop_ctrl_val;
+
+	/* Allow a single tsport to have multiple frontends */
+	u32                        num_frontends;
 };
 
 struct cx23885_dev {
@@ -367,14 +370,14 @@
 /* ----------------------------------------------------------- */
 
 #define cx_read(reg)             readl(dev->lmmio + ((reg)>>2))
-#define cx_write(reg,value)      writel((value), dev->lmmio + ((reg)>>2))
+#define cx_write(reg, value)     writel((value), dev->lmmio + ((reg)>>2))
 
-#define cx_andor(reg,mask,value) \
+#define cx_andor(reg, mask, value) \
   writel((readl(dev->lmmio+((reg)>>2)) & ~(mask)) |\
   ((value) & (mask)), dev->lmmio+((reg)>>2))
 
-#define cx_set(reg,bit)          cx_andor((reg),(bit),(bit))
-#define cx_clear(reg,bit)        cx_andor((reg),(bit),0)
+#define cx_set(reg, bit)          cx_andor((reg), (bit), (bit))
+#define cx_clear(reg, bit)        cx_andor((reg), (bit), 0)
 
 /* ----------------------------------------------------------- */
 /* cx23885-core.c                                              */
@@ -411,7 +414,8 @@
 extern struct cx23885_subid cx23885_subids[];
 extern const unsigned int cx23885_idcount;
 
-extern int cx23885_tuner_callback(void *priv, int component, int command, int arg);
+extern int cx23885_tuner_callback(void *priv, int component,
+	int command, int arg);
 extern void cx23885_card_list(struct cx23885_dev *dev);
 extern int  cx23885_ir_init(struct cx23885_dev *dev);
 extern void cx23885_gpio_setup(struct cx23885_dev *dev);
@@ -479,11 +483,3 @@
 {
 	return (norm & (V4L2_STD_MN & ~V4L2_STD_PAL_Nc)) ? 754 : 922;
 }
-
-
-/*
- * Local variables:
- * c-basic-offset: 8
- * End:
- * kate: eol "unix"; indent-width 3; remove-trailing-space on; replace-trailing-space-save on; tab-width 8; replace-tabs off; space-indent off; mixed-indent off
- */
diff --git a/drivers/media/video/cx88/cx88-cards.c b/drivers/media/video/cx88/cx88-cards.c
index 5da04e8..fbc224f 100644
--- a/drivers/media/video/cx88/cx88-cards.c
+++ b/drivers/media/video/cx88/cx88-cards.c
@@ -1270,27 +1270,40 @@
 		.mpeg           = CX88_MPEG_DVB,
 	},
 	[CX88_BOARD_HAUPPAUGE_HVR3000] = {
-		/* FIXME: Add dvb & radio support */
 		.name           = "Hauppauge WinTV-HVR3000 TriMode Analog/DVB-S/DVB-T",
 		.tuner_type     = TUNER_PHILIPS_FMD1216ME_MK3,
 		.radio_type     = UNSET,
 		.tuner_addr     = ADDR_UNSET,
 		.radio_addr     = ADDR_UNSET,
 		.tda9887_conf   = TDA9887_PRESENT,
+		.audio_chip     = V4L2_IDENT_WM8775,
 		.input          = {{
 			.type   = CX88_VMUX_TELEVISION,
 			.vmux   = 0,
 			.gpio0  = 0x84bf,
+			/* 1: TV Audio / FM Mono */
+			.audioroute = 1,
 		},{
 			.type   = CX88_VMUX_COMPOSITE1,
 			.vmux   = 1,
 			.gpio0  = 0x84bf,
+			/* 2: Line-In */
+			.audioroute = 2,
 		},{
 			.type   = CX88_VMUX_SVIDEO,
 			.vmux   = 2,
 			.gpio0  = 0x84bf,
+			/* 2: Line-In */
+			.audioroute = 2,
 		}},
+		.radio = {
+			.type   = CX88_RADIO,
+			.gpio0	= 0x84bf,
+			/* 4: FM Stereo (untested) */
+			.audioroute = 8,
+		},
 		.mpeg           = CX88_MPEG_DVB,
+		.num_frontends	= 2,
 	},
 	[CX88_BOARD_NORWOOD_MICRO] = {
 		.name           = "Norwood Micro TV Tuner",
@@ -1356,23 +1369,27 @@
 			.type   = CX88_VMUX_TELEVISION,
 			.vmux   = 0,
 			.gpio0	= 0xef88,
+			/* 1: TV Audio / FM Mono */
 			.audioroute = 1,
 		},{
 			.type	= CX88_VMUX_COMPOSITE1,
 			.vmux	= 1,
 			.gpio0	= 0xef88,
+			/* 2: Line-In */
 			.audioroute = 2,
 		},{
 			.type	= CX88_VMUX_SVIDEO,
 			.vmux	= 2,
 			.gpio0	= 0xef88,
+			/* 2: Line-In */
 			.audioroute = 2,
 		}},
-		/* fixme: Add radio support */
 		.mpeg           = CX88_MPEG_DVB | CX88_MPEG_BLACKBIRD,
 		.radio = {
 			.type   = CX88_RADIO,
 			.gpio0	= 0xef88,
+			/* 4: FM Stereo (untested) */
+			.audioroute = 8,
 		},
 	},
 	[CX88_BOARD_ADSTECH_PTV_390] = {
@@ -1716,6 +1733,7 @@
 		.tuner_addr     = ADDR_UNSET,
 		.radio_addr     = ADDR_UNSET,
 		.tda9887_conf   = TDA9887_PRESENT,
+		.audio_chip     = V4L2_IDENT_WM8775,
 		/*
 		 * GPIO0 (WINTV2000)
 		 *
@@ -1729,7 +1747,7 @@
 		 * BIT  VALUE   FUNCTION GP{x}_IO
 		 * 0    1       I:?
 		 * 1    1       I:?
-		 * 2    1       O:DVB-T DEMOD ENABLE LOW/ANALOG DEMOD ENABLE HIGH
+		 * 2    1       O:MPEG PORT 0=DVB-T 1=DVB-S
 		 * 3    1       I:?
 		 * 4    1       I:?
 		 * 5    1       I:?
@@ -1745,22 +1763,41 @@
 		 * d    0       I
 		 * e    1       O
 		 * f    1       O
+		 *
+		 * WM8775 ADC
+		 *
+		 * 1: TV Audio / FM Mono
+		 * 2: Line-In
+		 * 3: Line-In Expansion
+		 * 4: FM Stereo
 		 */
 		.input          = {{
 			.type   = CX88_VMUX_TELEVISION,
 			.vmux   = 0,
 			.gpio0  = 0xc4bf,
+			/* 1: TV Audio / FM Mono */
+			.audioroute = 1,
 		}, {
 			.type   = CX88_VMUX_COMPOSITE1,
 			.vmux   = 1,
 			.gpio0  = 0xc4bf,
+			/* 2: Line-In */
+			.audioroute = 2,
 		}, {
 			.type   = CX88_VMUX_SVIDEO,
 			.vmux   = 2,
 			.gpio0  = 0xc4bf,
+			/* 2: Line-In */
+			.audioroute = 2,
 		} },
-		/* fixme: Add radio support */
+		.radio = {
+			.type   = CX88_RADIO,
+			.gpio0	= 0xc4bf,
+			/* 4: FM Stereo */
+			.audioroute = 8,
+		},
 		.mpeg           = CX88_MPEG_DVB,
+		.num_frontends	= 2,
 	},
 	[CX88_BOARD_HAUPPAUGE_HVR4000LITE] = {
 		.name           = "Hauppauge WinTV-HVR4000(Lite) DVB-S/S2",
@@ -2662,10 +2699,13 @@
 
 	case CX88_BOARD_HAUPPAUGE_HVR3000:
 	case CX88_BOARD_HAUPPAUGE_HVR4000:
-	case CX88_BOARD_HAUPPAUGE_HVR4000LITE:
 		/* Init GPIO */
 		cx_write(MO_GP0_IO, core->board.input[0].gpio0);
 		udelay(1000);
+		cx_clear(MO_GP0_IO, 0x00000080);
+		udelay(50);
+		cx_set(MO_GP0_IO, 0x00000080); /* 702 out of reset */
+		udelay(1000);
 		break;
 	}
 }
@@ -3004,10 +3044,14 @@
 
 	memcpy(&core->board, &cx88_boards[core->boardnr], sizeof(core->board));
 
-	info_printk(core, "subsystem: %04x:%04x, board: %s [card=%d,%s]\n",
+	if (!core->board.num_frontends)
+		core->board.num_frontends=1;
+
+	info_printk(core, "subsystem: %04x:%04x, board: %s [card=%d,%s], frontend(s): %d\n",
 		pci->subsystem_vendor, pci->subsystem_device, core->board.name,
 		core->boardnr, card[core->nr] == core->boardnr ?
-		"insmod option" : "autodetected");
+		"insmod option" : "autodetected",
+		core->board.num_frontends);
 
 	if (tuner[core->nr] != UNSET)
 		core->board.tuner_type = tuner[core->nr];
diff --git a/drivers/media/video/cx88/cx88-core.c b/drivers/media/video/cx88/cx88-core.c
index d656fec..60705b0 100644
--- a/drivers/media/video/cx88/cx88-core.c
+++ b/drivers/media/video/cx88/cx88-core.c
@@ -549,7 +549,8 @@
 		mod_timer(&q->timeout, jiffies+BUFFER_TIMEOUT);
 	}
 	if (bc != 1)
-		printk("%s: %d buffers handled (should be 1)\n",__func__,bc);
+		dprintk(2, "%s: %d buffers handled (should be 1)\n",
+			__func__, bc);
 }
 
 void cx88_shutdown(struct cx88_core *core)
diff --git a/drivers/media/video/cx88/cx88-dvb.c b/drivers/media/video/cx88/cx88-dvb.c
index 344ed26..6968ab0 100644
--- a/drivers/media/video/cx88/cx88-dvb.c
+++ b/drivers/media/video/cx88/cx88-dvb.c
@@ -116,13 +116,23 @@
 	struct cx8802_dev *dev= fe->dvb->priv;
 	struct cx8802_driver *drv = NULL;
 	int ret = 0;
+	int fe_id;
+
+	fe_id = videobuf_dvb_find_frontend(&dev->frontends, fe);
+	if (!fe_id) {
+		printk(KERN_ERR "%s() No frontend found\n", __func__);
+		return -EINVAL;
+	}
 
 	drv = cx8802_get_driver(dev, CX88_MPEG_DVB);
 	if (drv) {
-		if (acquire)
+		if (acquire){
+			dev->frontends.active_fe_id = fe_id;
 			ret = drv->request_acquire(drv);
-		else
+		} else {
 			ret = drv->request_release(drv);
+			dev->frontends.active_fe_id = 0;
+		}
 	}
 
 	return ret;
@@ -396,7 +406,7 @@
 			cx_write(MO_GP0_IO, 0x00006060);
 			break;
 		case SEC_VOLTAGE_OFF:
-			printk("LNB Voltage SEC_VOLTAGE_off\n");
+		   	printk("LNB Voltage SEC_VOLTAGE_off\n");
 			break;
 	}
 
@@ -483,6 +493,7 @@
 static int attach_xc3028(u8 addr, struct cx8802_dev *dev)
 {
 	struct dvb_frontend *fe;
+	struct videobuf_dvb_frontend *fe0 = NULL;
 	struct xc2028_ctrl ctl;
 	struct xc2028_config cfg = {
 		.i2c_adap  = &dev->core->i2c_adap,
@@ -490,7 +501,12 @@
 		.ctrl      = &ctl,
 	};
 
-	if (!dev->dvb.frontend) {
+	/* Get the first frontend */
+	fe0 = videobuf_dvb_get_frontend(&dev->frontends, 1);
+	if (!fe0)
+		return -EINVAL;
+
+	if (!fe0->dvb.frontend) {
 		printk(KERN_ERR "%s/2: dvb frontend not attached. "
 				"Can't attach xc3028\n",
 		       dev->core->name);
@@ -504,10 +520,13 @@
 	 */
 	cx88_setup_xc3028(dev->core, &ctl);
 
-	fe = dvb_attach(xc2028_attach, dev->dvb.frontend, &cfg);
+	fe = dvb_attach(xc2028_attach, fe0->dvb.frontend, &cfg);
 	if (!fe) {
 		printk(KERN_ERR "%s/2: xc3028 attach failed\n",
 		       dev->core->name);
+		dvb_frontend_detach(fe0->dvb.frontend);
+		dvb_unregister_frontend(fe0->dvb.frontend);
+		fe0->dvb.frontend = NULL;
 		return -EINVAL;
 	}
 
@@ -532,8 +551,10 @@
 	struct cx88_core *core = dev->core;
 
 	/* Reset the part */
+	/* Put the cx24116 into reset */
 	cx_write(MO_SRST_IO, 0);
 	msleep(10);
+	/* Take the cx24116 out of reset */
 	cx_write(MO_SRST_IO, 1);
 	msleep(10);
 
@@ -554,14 +575,14 @@
 
 static struct stv0299_config tevii_tuner_sharp_config = {
 	.demod_address = 0x68,
-	.inittab = sharp_z0194a__inittab,
+	.inittab = sharp_z0194a_inittab,
 	.mclk = 88000000UL,
 	.invert = 1,
 	.skip_reinit = 0,
 	.lock_output = 1,
 	.volt13_op0_op1 = STV0299_VOLT13_OP1,
 	.min_delay_ms = 100,
-	.set_symbol_rate = sharp_z0194a__set_symbol_rate,
+	.set_symbol_rate = sharp_z0194a_set_symbol_rate,
 	.set_ts_params = cx24116_set_ts_param,
 };
 
@@ -574,19 +595,25 @@
 static int dvb_register(struct cx8802_dev *dev)
 {
 	struct cx88_core *core = dev->core;
+	struct videobuf_dvb_frontend *fe0, *fe1 = NULL;
+	int mfe_shared = 0; /* bus not shared by default */
 
-	/* init struct videobuf_dvb */
-	dev->dvb.name = core->name;
-	dev->ts_gen_cntrl = 0x0c;
+	/* Get the first frontend */
+	fe0 = videobuf_dvb_get_frontend(&dev->frontends, 1);
+	if (!fe0)
+		return -EINVAL;
 
-	/* init frontend */
+	/* multi-frontend gate control is undefined or defaults to fe0 */
+	dev->frontends.gate = 0;
+
+	/* init frontend(s) */
 	switch (core->boardnr) {
 	case CX88_BOARD_HAUPPAUGE_DVB_T1:
-		dev->dvb.frontend = dvb_attach(cx22702_attach,
+		fe0->dvb.frontend = dvb_attach(cx22702_attach,
 					       &connexant_refboard_config,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(dvb_pll_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(dvb_pll_attach, fe0->dvb.frontend,
 					0x61, &core->i2c_adap,
 					DVB_PLL_THOMSON_DTT759X))
 				goto frontend_detach;
@@ -596,11 +623,11 @@
 	case CX88_BOARD_CONEXANT_DVB_T1:
 	case CX88_BOARD_KWORLD_DVB_T_CX22702:
 	case CX88_BOARD_WINFAST_DTV1000:
-		dev->dvb.frontend = dvb_attach(cx22702_attach,
+		fe0->dvb.frontend = dvb_attach(cx22702_attach,
 					       &connexant_refboard_config,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(dvb_pll_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(dvb_pll_attach, fe0->dvb.frontend,
 					0x60, &core->i2c_adap,
 					DVB_PLL_THOMSON_DTT7579))
 				goto frontend_detach;
@@ -610,33 +637,67 @@
 	case CX88_BOARD_HAUPPAUGE_HVR1100:
 	case CX88_BOARD_HAUPPAUGE_HVR1100LP:
 	case CX88_BOARD_HAUPPAUGE_HVR1300:
-	case CX88_BOARD_HAUPPAUGE_HVR3000:
-		dev->dvb.frontend = dvb_attach(cx22702_attach,
+		fe0->dvb.frontend = dvb_attach(cx22702_attach,
 					       &hauppauge_hvr_config,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(simple_tuner_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(simple_tuner_attach, fe0->dvb.frontend,
 				   &core->i2c_adap, 0x61,
 				   TUNER_PHILIPS_FMD1216ME_MK3))
 				goto frontend_detach;
 		}
 		break;
+	case CX88_BOARD_HAUPPAUGE_HVR3000:
+		/* DVB-S init */
+		fe0->dvb.frontend = dvb_attach(cx24123_attach,
+			       &hauppauge_novas_config,
+			       &dev->core->i2c_adap);
+		if (fe0->dvb.frontend) {
+			if (!dvb_attach(isl6421_attach, fe0->dvb.frontend,
+			&dev->core->i2c_adap, 0x08, ISL6421_DCL, 0x00)) {
+				dprintk( 1, "%s(): HVR3000 - DVB-S LNB Init: failed\n", __func__);
+			}
+		} else {
+			dprintk( 1, "%s(): HVR3000 - DVB-S Init: failed\n", __func__);
+		}
+		/* DVB-T init */
+		fe1 = videobuf_dvb_get_frontend(&dev->frontends, 2);
+		if (fe1) {
+			dev->frontends.gate = 2;
+			mfe_shared = 1;
+			fe1->dvb.frontend = dvb_attach(cx22702_attach,
+				&hauppauge_hvr_config,
+				&dev->core->i2c_adap);
+			if (fe1->dvb.frontend) {
+				fe1->dvb.frontend->id = 1;
+				if(!dvb_attach(simple_tuner_attach, fe1->dvb.frontend,
+						&dev->core->i2c_adap, 0x61,
+						TUNER_PHILIPS_FMD1216ME_MK3)) {
+					dprintk( 1, "%s(): HVR3000 - DVB-T misc Init: failed\n", __func__);
+				}
+			} else {
+				dprintk( 1, "%s(): HVR3000 - DVB-T Init: failed\n", __func__);
+			}
+		} else {
+			dprintk( 1, "%s(): HVR3000 - DVB-T Init: can't find frontend 2.\n", __func__);
+		}
+		break;
 	case CX88_BOARD_DVICO_FUSIONHDTV_DVB_T_PLUS:
-		dev->dvb.frontend = dvb_attach(mt352_attach,
+		fe0->dvb.frontend = dvb_attach(mt352_attach,
 					       &dvico_fusionhdtv,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(dvb_pll_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(dvb_pll_attach, fe0->dvb.frontend,
 					0x60, NULL, DVB_PLL_THOMSON_DTT7579))
 				goto frontend_detach;
 			break;
 		}
 		/* ZL10353 replaces MT352 on later cards */
-		dev->dvb.frontend = dvb_attach(zl10353_attach,
+		fe0->dvb.frontend = dvb_attach(zl10353_attach,
 					       &dvico_fusionhdtv_plus_v1_1,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(dvb_pll_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(dvb_pll_attach, fe0->dvb.frontend,
 					0x60, NULL, DVB_PLL_THOMSON_DTT7579))
 				goto frontend_detach;
 		}
@@ -644,31 +705,31 @@
 	case CX88_BOARD_DVICO_FUSIONHDTV_DVB_T_DUAL:
 		/* The tin box says DEE1601, but it seems to be DTT7579
 		 * compatible, with a slightly different MT352 AGC gain. */
-		dev->dvb.frontend = dvb_attach(mt352_attach,
+		fe0->dvb.frontend = dvb_attach(mt352_attach,
 					       &dvico_fusionhdtv_dual,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(dvb_pll_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(dvb_pll_attach, fe0->dvb.frontend,
 					0x61, NULL, DVB_PLL_THOMSON_DTT7579))
 				goto frontend_detach;
 			break;
 		}
 		/* ZL10353 replaces MT352 on later cards */
-		dev->dvb.frontend = dvb_attach(zl10353_attach,
+		fe0->dvb.frontend = dvb_attach(zl10353_attach,
 					       &dvico_fusionhdtv_plus_v1_1,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(dvb_pll_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(dvb_pll_attach, fe0->dvb.frontend,
 					0x61, NULL, DVB_PLL_THOMSON_DTT7579))
 				goto frontend_detach;
 		}
 		break;
 	case CX88_BOARD_DVICO_FUSIONHDTV_DVB_T1:
-		dev->dvb.frontend = dvb_attach(mt352_attach,
+		fe0->dvb.frontend = dvb_attach(mt352_attach,
 					       &dvico_fusionhdtv,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(dvb_pll_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(dvb_pll_attach, fe0->dvb.frontend,
 					0x61, NULL, DVB_PLL_LG_Z201))
 				goto frontend_detach;
 		}
@@ -676,11 +737,11 @@
 	case CX88_BOARD_KWORLD_DVB_T:
 	case CX88_BOARD_DNTV_LIVE_DVB_T:
 	case CX88_BOARD_ADSTECH_DVB_T_PCI:
-		dev->dvb.frontend = dvb_attach(mt352_attach,
+		fe0->dvb.frontend = dvb_attach(mt352_attach,
 					       &dntv_live_dvbt_config,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(dvb_pll_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(dvb_pll_attach, fe0->dvb.frontend,
 					0x61, NULL, DVB_PLL_UNKNOWN_1))
 				goto frontend_detach;
 		}
@@ -688,10 +749,10 @@
 	case CX88_BOARD_DNTV_LIVE_DVB_T_PRO:
 #if defined(CONFIG_VIDEO_CX88_VP3054) || (defined(CONFIG_VIDEO_CX88_VP3054_MODULE) && defined(MODULE))
 		/* MT352 is on a secondary I2C bus made from some GPIO lines */
-		dev->dvb.frontend = dvb_attach(mt352_attach, &dntv_live_dvbt_pro_config,
+		fe0->dvb.frontend = dvb_attach(mt352_attach, &dntv_live_dvbt_pro_config,
 					       &dev->vp3054->adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(simple_tuner_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(simple_tuner_attach, fe0->dvb.frontend,
 					&core->i2c_adap, 0x61,
 					TUNER_PHILIPS_FMD1216ME_MK3))
 				goto frontend_detach;
@@ -702,22 +763,22 @@
 #endif
 		break;
 	case CX88_BOARD_DVICO_FUSIONHDTV_DVB_T_HYBRID:
-		dev->dvb.frontend = dvb_attach(zl10353_attach,
+		fe0->dvb.frontend = dvb_attach(zl10353_attach,
 					       &dvico_fusionhdtv_hybrid,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(simple_tuner_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(simple_tuner_attach, fe0->dvb.frontend,
 				   &core->i2c_adap, 0x61,
 				   TUNER_THOMSON_FE6600))
 				goto frontend_detach;
 		}
 		break;
 	case CX88_BOARD_DVICO_FUSIONHDTV_DVB_T_PRO:
-		dev->dvb.frontend = dvb_attach(zl10353_attach,
+		fe0->dvb.frontend = dvb_attach(zl10353_attach,
 					       &dvico_fusionhdtv_xc3028,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend == NULL)
-			dev->dvb.frontend = dvb_attach(mt352_attach,
+		if (fe0->dvb.frontend == NULL)
+			fe0->dvb.frontend = dvb_attach(mt352_attach,
 						&dvico_fusionhdtv_mt352_xc3028,
 						&core->i2c_adap);
 		/*
@@ -725,16 +786,16 @@
 		 * We must not permit gate_ctrl to be performed, or
 		 * the xc3028 cannot communicate on the bus.
 		 */
-		if (dev->dvb.frontend)
-			dev->dvb.frontend->ops.i2c_gate_ctrl = NULL;
+		if (fe0->dvb.frontend)
+			fe0->dvb.frontend->ops.i2c_gate_ctrl = NULL;
 		if (attach_xc3028(0x61, dev) < 0)
 			return -EINVAL;
 		break;
 	case CX88_BOARD_PCHDTV_HD3000:
-		dev->dvb.frontend = dvb_attach(or51132_attach, &pchdtv_hd3000,
+		fe0->dvb.frontend = dvb_attach(or51132_attach, &pchdtv_hd3000,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(simple_tuner_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(simple_tuner_attach, fe0->dvb.frontend,
 					&core->i2c_adap, 0x61,
 					TUNER_THOMSON_DTT761X))
 				goto frontend_detach;
@@ -751,11 +812,11 @@
 
 		/* Select RF connector callback */
 		fusionhdtv_3_gold.pll_rf_set = lgdt330x_pll_rf_set;
-		dev->dvb.frontend = dvb_attach(lgdt330x_attach,
+		fe0->dvb.frontend = dvb_attach(lgdt330x_attach,
 					       &fusionhdtv_3_gold,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(simple_tuner_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(simple_tuner_attach, fe0->dvb.frontend,
 					&core->i2c_adap, 0x61,
 					TUNER_MICROTUNE_4042FI5))
 				goto frontend_detach;
@@ -769,11 +830,11 @@
 		mdelay(100);
 		cx_set(MO_GP0_IO, 9);
 		mdelay(200);
-		dev->dvb.frontend = dvb_attach(lgdt330x_attach,
+		fe0->dvb.frontend = dvb_attach(lgdt330x_attach,
 					       &fusionhdtv_3_gold,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(simple_tuner_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(simple_tuner_attach, fe0->dvb.frontend,
 					&core->i2c_adap, 0x61,
 					TUNER_THOMSON_DTT761X))
 				goto frontend_detach;
@@ -787,15 +848,15 @@
 		mdelay(100);
 		cx_set(MO_GP0_IO, 1);
 		mdelay(200);
-		dev->dvb.frontend = dvb_attach(lgdt330x_attach,
+		fe0->dvb.frontend = dvb_attach(lgdt330x_attach,
 					       &fusionhdtv_5_gold,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(simple_tuner_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(simple_tuner_attach, fe0->dvb.frontend,
 					&core->i2c_adap, 0x61,
 					TUNER_LG_TDVS_H06XF))
 				goto frontend_detach;
-			if (!dvb_attach(tda9887_attach, dev->dvb.frontend,
+			if (!dvb_attach(tda9887_attach, fe0->dvb.frontend,
 				   &core->i2c_adap, 0x43))
 				goto frontend_detach;
 		}
@@ -808,25 +869,25 @@
 		mdelay(100);
 		cx_set(MO_GP0_IO, 1);
 		mdelay(200);
-		dev->dvb.frontend = dvb_attach(lgdt330x_attach,
+		fe0->dvb.frontend = dvb_attach(lgdt330x_attach,
 					       &pchdtv_hd5500,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(simple_tuner_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(simple_tuner_attach, fe0->dvb.frontend,
 					&core->i2c_adap, 0x61,
 					TUNER_LG_TDVS_H06XF))
 				goto frontend_detach;
-			if (!dvb_attach(tda9887_attach, dev->dvb.frontend,
+			if (!dvb_attach(tda9887_attach, fe0->dvb.frontend,
 				   &core->i2c_adap, 0x43))
 				goto frontend_detach;
 		}
 		break;
 	case CX88_BOARD_ATI_HDTVWONDER:
-		dev->dvb.frontend = dvb_attach(nxt200x_attach,
+		fe0->dvb.frontend = dvb_attach(nxt200x_attach,
 					       &ati_hdtvwonder,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(simple_tuner_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(simple_tuner_attach, fe0->dvb.frontend,
 					&core->i2c_adap, 0x61,
 					TUNER_PHILIPS_TUV1236D))
 				goto frontend_detach;
@@ -834,49 +895,49 @@
 		break;
 	case CX88_BOARD_HAUPPAUGE_NOVASPLUS_S1:
 	case CX88_BOARD_HAUPPAUGE_NOVASE2_S1:
-		dev->dvb.frontend = dvb_attach(cx24123_attach,
+		fe0->dvb.frontend = dvb_attach(cx24123_attach,
 					       &hauppauge_novas_config,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend) {
-			if (!dvb_attach(isl6421_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend) {
+			if (!dvb_attach(isl6421_attach, fe0->dvb.frontend,
 					&core->i2c_adap, 0x08, ISL6421_DCL, 0x00))
 				goto frontend_detach;
 		}
 		break;
 	case CX88_BOARD_KWORLD_DVBS_100:
-		dev->dvb.frontend = dvb_attach(cx24123_attach,
+		fe0->dvb.frontend = dvb_attach(cx24123_attach,
 					       &kworld_dvbs_100_config,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend) {
-			core->prev_set_voltage = dev->dvb.frontend->ops.set_voltage;
-			dev->dvb.frontend->ops.set_voltage = kworld_dvbs_100_set_voltage;
+		if (fe0->dvb.frontend) {
+			core->prev_set_voltage = fe0->dvb.frontend->ops.set_voltage;
+			fe0->dvb.frontend->ops.set_voltage = kworld_dvbs_100_set_voltage;
 		}
 		break;
 	case CX88_BOARD_GENIATECH_DVBS:
-		dev->dvb.frontend = dvb_attach(cx24123_attach,
+		fe0->dvb.frontend = dvb_attach(cx24123_attach,
 					       &geniatech_dvbs_config,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend) {
-			core->prev_set_voltage = dev->dvb.frontend->ops.set_voltage;
-			dev->dvb.frontend->ops.set_voltage = geniatech_dvbs_set_voltage;
+		if (fe0->dvb.frontend) {
+			core->prev_set_voltage = fe0->dvb.frontend->ops.set_voltage;
+			fe0->dvb.frontend->ops.set_voltage = geniatech_dvbs_set_voltage;
 		}
 		break;
 	case CX88_BOARD_PINNACLE_PCTV_HD_800i:
-		dev->dvb.frontend = dvb_attach(s5h1409_attach,
+		fe0->dvb.frontend = dvb_attach(s5h1409_attach,
 					       &pinnacle_pctv_hd_800i_config,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(xc5000_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(xc5000_attach, fe0->dvb.frontend,
 					&core->i2c_adap,
 					&pinnacle_pctv_hd_800i_tuner_config))
 				goto frontend_detach;
 		}
 		break;
 	case CX88_BOARD_DVICO_FUSIONHDTV_5_PCI_NANO:
-		dev->dvb.frontend = dvb_attach(s5h1409_attach,
+		fe0->dvb.frontend = dvb_attach(s5h1409_attach,
 						&dvico_hdtv5_pci_nano_config,
 						&core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
+		if (fe0->dvb.frontend != NULL) {
 			struct dvb_frontend *fe;
 			struct xc2028_config cfg = {
 				.i2c_adap  = &core->i2c_adap,
@@ -889,17 +950,17 @@
 			};
 
 			fe = dvb_attach(xc2028_attach,
-					dev->dvb.frontend, &cfg);
+					fe0->dvb.frontend, &cfg);
 			if (fe != NULL && fe->ops.tuner_ops.set_config != NULL)
 				fe->ops.tuner_ops.set_config(fe, &ctl);
 		}
 		break;
 	 case CX88_BOARD_PINNACLE_HYBRID_PCTV:
-		dev->dvb.frontend = dvb_attach(zl10353_attach,
+		fe0->dvb.frontend = dvb_attach(zl10353_attach,
 					       &cx88_pinnacle_hybrid_pctv,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend) {
-			dev->dvb.frontend->ops.i2c_gate_ctrl = NULL;
+		if (fe0->dvb.frontend) {
+			fe0->dvb.frontend->ops.i2c_gate_ctrl = NULL;
 			if (attach_xc3028(0x61, dev) < 0)
 				goto frontend_detach;
 		}
@@ -907,85 +968,118 @@
 	 case CX88_BOARD_GENIATECH_X8000_MT:
 		dev->ts_gen_cntrl = 0x00;
 
-		dev->dvb.frontend = dvb_attach(zl10353_attach,
+		fe0->dvb.frontend = dvb_attach(zl10353_attach,
 					       &cx88_geniatech_x8000_mt,
 					       &core->i2c_adap);
 		if (attach_xc3028(0x61, dev) < 0)
 			goto frontend_detach;
 		break;
 	 case CX88_BOARD_KWORLD_ATSC_120:
-		dev->dvb.frontend = dvb_attach(s5h1409_attach,
+		fe0->dvb.frontend = dvb_attach(s5h1409_attach,
 					       &kworld_atsc_120_config,
 					       &core->i2c_adap);
 		if (attach_xc3028(0x61, dev) < 0)
 			goto frontend_detach;
 		break;
 	case CX88_BOARD_DVICO_FUSIONHDTV_7_GOLD:
-		dev->dvb.frontend = dvb_attach(s5h1411_attach,
+		fe0->dvb.frontend = dvb_attach(s5h1411_attach,
 					       &dvico_fusionhdtv7_config,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(xc5000_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(xc5000_attach, fe0->dvb.frontend,
 					&core->i2c_adap,
 					&dvico_fusionhdtv7_tuner_config))
 				goto frontend_detach;
 		}
 		break;
 	case CX88_BOARD_HAUPPAUGE_HVR4000:
-	case CX88_BOARD_HAUPPAUGE_HVR4000LITE:
-		/* Support for DVB-S only, not DVB-T support */
-		dev->dvb.frontend = dvb_attach(cx24116_attach,
+		/* DVB-S/S2 Init */
+		fe0->dvb.frontend = dvb_attach(cx24116_attach,
 			&hauppauge_hvr4000_config,
 			&dev->core->i2c_adap);
-		if (dev->dvb.frontend) {
-			dvb_attach(isl6421_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend) {
+			if(!dvb_attach(isl6421_attach, fe0->dvb.frontend,
+				&dev->core->i2c_adap, 0x08, ISL6421_DCL, 0x00)) {
+				dprintk( 1, "%s(): HVR4000 - DVB-S LNB Init: failed\n", __func__);
+			}
+		} else {
+			dprintk( 1, "%s(): HVR4000 - DVB-S Init: failed\n", __func__);
+		}
+		/* DVB-T Init */
+		fe1 = videobuf_dvb_get_frontend(&dev->frontends, 2);
+		if (fe1) {
+			dev->frontends.gate = 2;
+			mfe_shared = 1;
+			fe1->dvb.frontend = dvb_attach(cx22702_attach,
+				&hauppauge_hvr_config,
+				&dev->core->i2c_adap);
+			if (fe1->dvb.frontend) {
+				fe1->dvb.frontend->id = 1;
+				if(!dvb_attach(simple_tuner_attach, fe1->dvb.frontend,
+					&dev->core->i2c_adap, 0x61,
+					TUNER_PHILIPS_FMD1216ME_MK3)) {
+					dprintk( 1, "%s(): HVR4000 - DVB-T misc Init: failed\n", __func__);
+				}
+			} else {
+				dprintk( 1, "%s(): HVR4000 - DVB-T Init: failed\n", __func__);
+			}
+		} else {
+			dprintk( 1, "%s(): HVR4000 - DVB-T Init: can't find frontend 2.\n", __func__);
+		}
+		break;
+	case CX88_BOARD_HAUPPAUGE_HVR4000LITE:
+		fe0->dvb.frontend = dvb_attach(cx24116_attach,
+			&hauppauge_hvr4000_config,
+			&dev->core->i2c_adap);
+		if (fe0->dvb.frontend) {
+			dvb_attach(isl6421_attach, fe0->dvb.frontend,
 				&dev->core->i2c_adap,
 				0x08, ISL6421_DCL, 0x00);
 		}
 		break;
 	case CX88_BOARD_TEVII_S420:
-		dev->dvb.frontend = dvb_attach(stv0299_attach,
+		fe0->dvb.frontend = dvb_attach(stv0299_attach,
 						&tevii_tuner_sharp_config,
 						&core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			if (!dvb_attach(dvb_pll_attach, dev->dvb.frontend, 0x60,
+		if (fe0->dvb.frontend != NULL) {
+			if (!dvb_attach(dvb_pll_attach, fe0->dvb.frontend, 0x60,
 					&core->i2c_adap, DVB_PLL_OPERA1))
 				goto frontend_detach;
-			core->prev_set_voltage = dev->dvb.frontend->ops.set_voltage;
-			dev->dvb.frontend->ops.set_voltage = tevii_dvbs_set_voltage;
+			core->prev_set_voltage = fe0->dvb.frontend->ops.set_voltage;
+			fe0->dvb.frontend->ops.set_voltage = tevii_dvbs_set_voltage;
 
 		} else {
-			dev->dvb.frontend = dvb_attach(stv0288_attach,
+			fe0->dvb.frontend = dvb_attach(stv0288_attach,
 							    &tevii_tuner_earda_config,
 							    &core->i2c_adap);
-				if (dev->dvb.frontend != NULL) {
-					if (!dvb_attach(stb6000_attach, dev->dvb.frontend, 0x61,
+				if (fe0->dvb.frontend != NULL) {
+					if (!dvb_attach(stb6000_attach, fe0->dvb.frontend, 0x61,
 						&core->i2c_adap))
 					goto frontend_detach;
-				core->prev_set_voltage = dev->dvb.frontend->ops.set_voltage;
-				dev->dvb.frontend->ops.set_voltage = tevii_dvbs_set_voltage;
+				core->prev_set_voltage = fe0->dvb.frontend->ops.set_voltage;
+				fe0->dvb.frontend->ops.set_voltage = tevii_dvbs_set_voltage;
 
 			}
 		}
 		break;
 	case CX88_BOARD_TEVII_S460:
-		dev->dvb.frontend = dvb_attach(cx24116_attach,
+		fe0->dvb.frontend = dvb_attach(cx24116_attach,
 					       &tevii_s460_config,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			core->prev_set_voltage = dev->dvb.frontend->ops.set_voltage;
-			dev->dvb.frontend->ops.set_voltage = tevii_dvbs_set_voltage;
+		if (fe0->dvb.frontend != NULL) {
+			core->prev_set_voltage = fe0->dvb.frontend->ops.set_voltage;
+			fe0->dvb.frontend->ops.set_voltage = tevii_dvbs_set_voltage;
 		}
 		break;
 	case CX88_BOARD_OMICOM_SS4_PCI:
 	case CX88_BOARD_TBS_8920:
 	case CX88_BOARD_PROF_7300:
-		dev->dvb.frontend = dvb_attach(cx24116_attach,
+		fe0->dvb.frontend = dvb_attach(cx24116_attach,
 					       &hauppauge_hvr4000_config,
 					       &core->i2c_adap);
-		if (dev->dvb.frontend != NULL) {
-			core->prev_set_voltage = dev->dvb.frontend->ops.set_voltage;
-			dev->dvb.frontend->ops.set_voltage = tevii_dvbs_set_voltage;
+		if (fe0->dvb.frontend != NULL) {
+			core->prev_set_voltage = fe0->dvb.frontend->ops.set_voltage;
+			fe0->dvb.frontend->ops.set_voltage = tevii_dvbs_set_voltage;
 		}
 		break;
 	default:
@@ -993,29 +1087,32 @@
 		       core->name);
 		break;
 	}
-	if (NULL == dev->dvb.frontend) {
+
+        if ( (NULL == fe0->dvb.frontend) || (fe1 && NULL == fe1->dvb.frontend) ) {
 		printk(KERN_ERR
 		       "%s/2: frontend initialization failed\n",
 		       core->name);
 		return -EINVAL;
 	}
 	/* define general-purpose callback pointer */
-	dev->dvb.frontend->callback = cx88_tuner_callback;
+	fe0->dvb.frontend->callback = cx88_tuner_callback;
 
 	/* Ensure all frontends negotiate bus access */
-	dev->dvb.frontend->ops.ts_bus_ctrl = cx88_dvb_bus_ctrl;
+	fe0->dvb.frontend->ops.ts_bus_ctrl = cx88_dvb_bus_ctrl;
+	if (fe1)
+		fe1->dvb.frontend->ops.ts_bus_ctrl = cx88_dvb_bus_ctrl;
 
 	/* Put the analog decoder in standby to keep it quiet */
 	cx88_call_i2c_clients(core, TUNER_SET_STANDBY, NULL);
 
 	/* register everything */
-	return videobuf_dvb_register(&dev->dvb, THIS_MODULE, dev,
-				     &dev->pci->dev, adapter_nr);
+	return videobuf_dvb_register_bus(&dev->frontends, THIS_MODULE, dev,
+		&dev->pci->dev, adapter_nr, mfe_shared);
 
 frontend_detach:
-	if (dev->dvb.frontend) {
-		dvb_frontend_detach(dev->dvb.frontend);
-		dev->dvb.frontend = NULL;
+	if (fe0->dvb.frontend) {
+		dvb_frontend_detach(fe0->dvb.frontend);
+		fe0->dvb.frontend = NULL;
 	}
 	return -EINVAL;
 }
@@ -1039,6 +1136,38 @@
 		cx_clear(MO_GP0_IO, 0x00000004);
 		udelay(1000);
 		break;
+
+	case CX88_BOARD_HAUPPAUGE_HVR3000:
+	case CX88_BOARD_HAUPPAUGE_HVR4000:
+		if(core->dvbdev->frontends.active_fe_id == 1) {
+			/* DVB-S/S2 Enabled */
+
+			/* Toggle reset on cx22702 leaving i2c active */
+			cx_write(MO_GP0_IO, (core->board.input[0].gpio0 & 0x0000ff00) | 0x00000080);
+			udelay(1000);
+			cx_clear(MO_GP0_IO, 0x00000080);
+			udelay(50);
+			cx_set(MO_GP0_IO, 0x00000080); /* cx22702 out of reset */
+			cx_set(MO_GP0_IO, 0x00000004); /* tri-state the cx22702 pins */
+			udelay(1000);
+
+			cx_write(MO_SRST_IO, 1); /* Take the cx24116/cx24123 out of reset */
+			core->dvbdev->ts_gen_cntrl = 0x02; /* Parallel IO */
+		} else
+		if (core->dvbdev->frontends.active_fe_id == 2) {
+			/* DVB-T Enabled */
+
+			/* Put the cx24116/cx24123 into reset */
+			cx_write(MO_SRST_IO, 0);
+
+			/* cx22702 out of reset and enable it */
+			cx_set(MO_GP0_IO,   0x00000080);
+			cx_clear(MO_GP0_IO, 0x00000004);
+			core->dvbdev->ts_gen_cntrl = 0x0c; /* Serial IO */
+			udelay(1000);
+		}
+		break;
+
 	default:
 		err = -ENODEV;
 	}
@@ -1056,6 +1185,9 @@
 	case CX88_BOARD_HAUPPAUGE_HVR1300:
 		/* Do Nothing, leave the cx22702 on the bus. */
 		break;
+	case CX88_BOARD_HAUPPAUGE_HVR3000:
+	case CX88_BOARD_HAUPPAUGE_HVR4000:
+		break;
 	default:
 		err = -ENODEV;
 	}
@@ -1066,7 +1198,8 @@
 {
 	struct cx88_core *core = drv->core;
 	struct cx8802_dev *dev = drv->core->dvbdev;
-	int err;
+	int err, i;
+	struct videobuf_dvb_frontend *fe;
 
 	dprintk( 1, "%s\n", __func__);
 	dprintk( 1, " ->being probed by Card=%d Name=%s, PCI %02x:%02x\n",
@@ -1086,18 +1219,28 @@
 
 	/* dvb stuff */
 	printk(KERN_INFO "%s/2: cx2388x based DVB/ATSC card\n", core->name);
-	videobuf_queue_sg_init(&dev->dvb.dvbq, &dvb_qops,
+	dev->ts_gen_cntrl = 0x0c;
+
+	for (i = 1; i <= core->board.num_frontends; i++) {
+		fe = videobuf_dvb_get_frontend(&core->dvbdev->frontends, i);
+		if (!fe) {
+			printk(KERN_ERR "%s() failed to get frontend(%d)\n", __func__, i);
+			continue;
+		}
+		videobuf_queue_sg_init(&fe->dvb.dvbq, &dvb_qops,
 			    &dev->pci->dev, &dev->slock,
 			    V4L2_BUF_TYPE_VIDEO_CAPTURE,
 			    V4L2_FIELD_TOP,
 			    sizeof(struct cx88_buffer),
 			    dev);
+		/* init struct videobuf_dvb */
+		fe->dvb.name = dev->core->name;
+	}
 	err = dvb_register(dev);
 	if (err != 0)
 		printk(KERN_ERR "%s/2: dvb_register failed (err = %d)\n",
 		       core->name, err);
-
- fail_core:
+fail_core:
 	return err;
 }
 
@@ -1105,9 +1248,7 @@
 {
 	struct cx8802_dev *dev = drv->core->dvbdev;
 
-	/* dvb */
-	if (dev->dvb.frontend)
-		videobuf_dvb_unregister(&dev->dvb);
+	videobuf_dvb_unregister_bus(&dev->frontends);
 
 	vp3054_i2c_remove(dev);
 
diff --git a/drivers/media/video/cx88/cx88-i2c.c b/drivers/media/video/cx88/cx88-i2c.c
index 8e74d64..01de230 100644
--- a/drivers/media/video/cx88/cx88-i2c.c
+++ b/drivers/media/video/cx88/cx88-i2c.c
@@ -116,18 +116,25 @@
 
 void cx88_call_i2c_clients(struct cx88_core *core, unsigned int cmd, void *arg)
 {
+	struct videobuf_dvb_frontends *f = &core->dvbdev->frontends;
+	struct videobuf_dvb_frontend *fe = NULL;
 	if (0 != core->i2c_rc)
 		return;
 
 #if defined(CONFIG_VIDEO_CX88_DVB) || defined(CONFIG_VIDEO_CX88_DVB_MODULE)
-	if ( (core->dvbdev) && (core->dvbdev->dvb.frontend) ) {
-		if (core->dvbdev->dvb.frontend->ops.i2c_gate_ctrl)
-			core->dvbdev->dvb.frontend->ops.i2c_gate_ctrl(core->dvbdev->dvb.frontend, 1);
+	if (core->dvbdev && f) {
+		if(f->gate <= 1) /* undefined or fe0 */
+			fe = videobuf_dvb_get_frontend(f, 1);
+		else
+			fe = videobuf_dvb_get_frontend(f, f->gate);
+
+		if (fe && fe->dvb.frontend && fe->dvb.frontend->ops.i2c_gate_ctrl)
+			fe->dvb.frontend->ops.i2c_gate_ctrl(fe->dvb.frontend, 1);
 
 		i2c_clients_command(&core->i2c_adap, cmd, arg);
 
-		if (core->dvbdev->dvb.frontend->ops.i2c_gate_ctrl)
-			core->dvbdev->dvb.frontend->ops.i2c_gate_ctrl(core->dvbdev->dvb.frontend, 0);
+		if (fe && fe->dvb.frontend && fe->dvb.frontend->ops.i2c_gate_ctrl)
+			fe->dvb.frontend->ops.i2c_gate_ctrl(fe->dvb.frontend, 0);
 	} else
 #endif
 		i2c_clients_command(&core->i2c_adap, cmd, arg);
diff --git a/drivers/media/video/cx88/cx88-mpeg.c b/drivers/media/video/cx88/cx88-mpeg.c
index a6b061c..6df5cf3 100644
--- a/drivers/media/video/cx88/cx88-mpeg.c
+++ b/drivers/media/video/cx88/cx88-mpeg.c
@@ -768,7 +768,8 @@
 {
 	struct cx8802_dev *dev;
 	struct cx88_core  *core;
-	int err;
+	struct videobuf_dvb_frontend *demod;
+	int err,i;
 
 	/* general setup */
 	core = cx88_core_get(pci_dev);
@@ -781,6 +782,11 @@
 	if (!core->board.mpeg)
 		goto fail_core;
 
+	if (!core->board.num_frontends) {
+		printk(KERN_ERR "%s() .num_frontends should be non-zero, err = %d\n", __func__, err);
+		goto fail_core;
+	}
+
 	err = -ENOMEM;
 	dev = kzalloc(sizeof(*dev),GFP_KERNEL);
 	if (NULL == dev)
@@ -795,6 +801,20 @@
 	INIT_LIST_HEAD(&dev->drvlist);
 	list_add_tail(&dev->devlist,&cx8802_devlist);
 
+	mutex_init(&dev->frontends.lock);
+	INIT_LIST_HEAD(&dev->frontends.felist);
+
+	printk(KERN_INFO "%s() allocating %d frontend(s)\n", __func__, core->board.num_frontends);
+
+	for (i = 1; i <= core->board.num_frontends; i++) {
+		demod = videobuf_dvb_alloc_frontend(&dev->frontends, i);
+		if(demod == NULL) {
+			printk(KERN_ERR "%s() failed to alloc\n", __func__);
+			err = -ENOMEM;
+			goto fail_free;
+		}
+	}
+
 	/* Maintain a reference so cx88-video can query the 8802 device. */
 	core->dvbdev = dev;
 
diff --git a/drivers/media/video/cx88/cx88-tvaudio.c b/drivers/media/video/cx88/cx88-tvaudio.c
index 3a1977f..7dd506b 100644
--- a/drivers/media/video/cx88/cx88-tvaudio.c
+++ b/drivers/media/video/cx88/cx88-tvaudio.c
@@ -767,6 +767,14 @@
 	case WW_FM:
 		set_audio_standard_FM(core, radio_deemphasis);
 		break;
+	case WW_I2SADC:
+		set_audio_start(core, 0x01);
+		/* Slave/Philips/Autobaud */
+		cx_write(AUD_I2SINPUTCNTL, 0);
+		/* Switch to "I2S ADC mode" */
+		cx_write(AUD_I2SCNTL, 0x1);
+		set_audio_finish(core, EN_I2SIN_ENABLE);
+		break;
 	case WW_NONE:
 	default:
 		printk("%s/0: unknown tv audio mode [%d]\n",
@@ -895,6 +903,9 @@
 			break;
 		}
 		break;
+	case WW_I2SADC:
+		/* DO NOTHING */
+		break;
 	}
 
 	if (UNSET != ctl) {
diff --git a/drivers/media/video/cx88/cx88-video.c b/drivers/media/video/cx88/cx88-video.c
index be45955..3904b73 100644
--- a/drivers/media/video/cx88/cx88-video.c
+++ b/drivers/media/video/cx88/cx88-video.c
@@ -426,24 +426,7 @@
 
 	/* if there are audioroutes defined, we have an external
 	   ADC to deal with audio */
-
 	if (INPUT(input).audioroute) {
-
-		/* cx2388's C-ADC is connected to the tuner only.
-		   When used with S-Video, that ADC is busy dealing with
-		   chroma, so an external must be used for baseband audio */
-
-		if (INPUT(input).type != CX88_VMUX_TELEVISION &&
-			INPUT(input).type != CX88_RADIO) {
-			/* "ADC mode" */
-			cx_write(AUD_I2SCNTL, 0x1);
-			cx_set(AUD_CTL, EN_I2SIN_ENABLE);
-		} else {
-			/* Normal mode */
-			cx_write(AUD_I2SCNTL, 0x0);
-			cx_clear(AUD_CTL, EN_I2SIN_ENABLE);
-		}
-
 		/* The wm8775 module has the "2" route hardwired into
 		   the initialization. Some boards may use different
 		   routes for different inputs. HVR-1300 surely does */
@@ -454,9 +437,19 @@
 			route.input = INPUT(input).audioroute;
 			cx88_call_i2c_clients(core,
 				VIDIOC_INT_S_AUDIO_ROUTING, &route);
-
 		}
-
+		/* cx2388's C-ADC is connected to the tuner only.
+		   When used with S-Video, that ADC is busy dealing with
+		   chroma, so an external must be used for baseband audio */
+		if (INPUT(input).type != CX88_VMUX_TELEVISION ) {
+			/* "I2S ADC mode" */
+			core->tvaudio = WW_I2SADC;
+			cx88_set_tvaudio(core);
+		} else {
+			/* Normal mode */
+			cx_write(AUD_I2SCNTL, 0x0);
+			cx_clear(AUD_CTL, EN_I2SIN_ENABLE);
+		}
 	}
 
 	return 0;
@@ -832,9 +825,24 @@
 		cx_write(MO_GP0_IO, core->board.radio.gpio0);
 		cx_write(MO_GP1_IO, core->board.radio.gpio1);
 		cx_write(MO_GP2_IO, core->board.radio.gpio2);
-		core->tvaudio = WW_FM;
-		cx88_set_tvaudio(core);
-		cx88_set_stereo(core,V4L2_TUNER_MODE_STEREO,1);
+		if (core->board.radio.audioroute) {
+			if(core->board.audio_chip &&
+				core->board.audio_chip == V4L2_IDENT_WM8775) {
+				struct v4l2_routing route;
+
+				route.input = core->board.radio.audioroute;
+				cx88_call_i2c_clients(core,
+					VIDIOC_INT_S_AUDIO_ROUTING, &route);
+			}
+			/* "I2S ADC mode" */
+			core->tvaudio = WW_I2SADC;
+			cx88_set_tvaudio(core);
+		} else {
+			/* FM Mode */
+			core->tvaudio = WW_FM;
+			cx88_set_tvaudio(core);
+			cx88_set_stereo(core,V4L2_TUNER_MODE_STEREO,1);
+		}
 		cx88_call_i2c_clients(core,AUDC_SET_RADIO,NULL);
 	}
 	unlock_kernel();
diff --git a/drivers/media/video/cx88/cx88.h b/drivers/media/video/cx88/cx88.h
index dbf01b8..76207c2 100644
--- a/drivers/media/video/cx88/cx88.h
+++ b/drivers/media/video/cx88/cx88.h
@@ -247,7 +247,7 @@
 	enum cx88_itype type;
 	u32             gpio0, gpio1, gpio2, gpio3;
 	unsigned int    vmux:2;
-	unsigned int    audioroute:2;
+	unsigned int    audioroute:4;
 };
 
 struct cx88_board {
@@ -261,6 +261,7 @@
 	struct cx88_input       radio;
 	enum cx88_board_type    mpeg;
 	unsigned int            audio_chip;
+	int			num_frontends;
 };
 
 struct cx88_subid {
@@ -356,6 +357,7 @@
 	struct cx8802_dev          *dvbdev;
 	enum cx88_board_type       active_type_id;
 	int			   active_ref;
+	int			   active_fe_id;
 };
 
 struct cx8800_dev;
@@ -490,7 +492,7 @@
 
 #if defined(CONFIG_VIDEO_CX88_DVB) || defined(CONFIG_VIDEO_CX88_DVB_MODULE)
 	/* for dvb only */
-	struct videobuf_dvb        dvb;
+	struct videobuf_dvb_frontends frontends;
 #endif
 
 #if defined(CONFIG_VIDEO_CX88_VP3054) || \
@@ -628,6 +630,7 @@
 #define WW_EIAJ		 7
 #define WW_I2SPT	 8
 #define WW_FM		 9
+#define WW_I2SADC	 10
 
 void cx88_set_tvaudio(struct cx88_core *core);
 void cx88_newstation(struct cx88_core *core);
diff --git a/drivers/media/video/dabusb.c b/drivers/media/video/dabusb.c
index 3aa538a..298810d 100644
--- a/drivers/media/video/dabusb.c
+++ b/drivers/media/video/dabusb.c
@@ -192,7 +192,7 @@
 					err("dabusb_iso_complete: invalid len %d", len);
 			}
 			else
-				warn("dabusb_iso_complete: corrupted packet status: %d", purb->iso_frame_desc[i].status);
+				dev_warn(&purb->dev->dev, "dabusb_iso_complete: corrupted packet status: %d\n", purb->iso_frame_desc[i].status);
 		if (dst != purb->actual_length)
 			err("dst!=purb->actual_length:%d!=%d", dst, purb->actual_length);
 	}
@@ -289,7 +289,7 @@
 	}
 
 	if( ret == -EPIPE ) {
-		warn("CLEAR_FEATURE request to remove STALL condition.");
+		dev_warn(&s->usbdev->dev, "CLEAR_FEATURE request to remove STALL condition.\n");
 		if(usb_clear_halt(s->usbdev, usb_pipeendpoint(pipe)))
 			err("request failed");
 	}
diff --git a/drivers/media/video/gspca/gspca.c b/drivers/media/video/gspca/gspca.c
index c21af31..e48fbfc 100644
--- a/drivers/media/video/gspca/gspca.c
+++ b/drivers/media/video/gspca/gspca.c
@@ -21,6 +21,7 @@
 #define MODULE_NAME "gspca"
 
 #include <linux/init.h>
+#include <linux/version.h>
 #include <linux/fs.h>
 #include <linux/vmalloc.h>
 #include <linux/sched.h>
@@ -403,7 +404,7 @@
 	unsigned int i;
 
 	PDEBUG(D_STREAM, "kill transfer");
-	for (i = 0; i < MAX_NURBS; ++i) {
+	for (i = 0; i < MAX_NURBS; i++) {
 		urb = gspca_dev->urb[i];
 		if (urb == NULL)
 			break;
diff --git a/drivers/media/video/gspca/gspca.h b/drivers/media/video/gspca/gspca.h
index 4779dd0..1d9dc90 100644
--- a/drivers/media/video/gspca/gspca.h
+++ b/drivers/media/video/gspca/gspca.h
@@ -2,7 +2,6 @@
 #define GSPCAV2_H
 
 #include <linux/module.h>
-#include <linux/version.h>
 #include <linux/kernel.h>
 #include <linux/usb.h>
 #include <linux/videodev2.h>
diff --git a/drivers/media/video/gspca/m5602/m5602_bridge.h b/drivers/media/video/gspca/m5602/m5602_bridge.h
index c786d7d..1a37ae4 100644
--- a/drivers/media/video/gspca/m5602/m5602_bridge.h
+++ b/drivers/media/video/gspca/m5602/m5602_bridge.h
@@ -1,7 +1,7 @@
 /*
  * USB Driver for ALi m5602 based webcams
  *
- * Copyright (C) 2008 Erik Andren
+ * Copyright (C) 2008 Erik Andrén
  * Copyright (C) 2007 Ilyes Gouta. Based on the m5603x Linux Driver Project.
  * Copyright (C) 2005 m5603x Linux Driver Project <m5602@x3ng.com.br>
  *
@@ -25,33 +25,6 @@
 
 /*****************************************************************************/
 
-#undef PDEBUG
-#undef info
-#undef err
-
-#define err(format, arg...) printk(KERN_ERR KBUILD_MODNAME ": " \
-	format "\n" , ## arg)
-#define info(format, arg...) printk(KERN_INFO KBUILD_MODNAME ": " \
-	format "\n" , ## arg)
-
-/* Debug parameters */
-#define DBG_INIT 0x1
-#define DBG_PROBE 0x2
-#define DBG_V4L2 0x4
-#define DBG_TRACE 0x8
-#define DBG_DATA 0x10
-#define DBG_V4L2_CID 0x20
-#define DBG_GSPCA 0x40
-
-#define PDEBUG(level, fmt, args...) \
-	do { \
-		if (m5602_debug & level)     \
-			info("[%s:%d] " fmt, __func__, __LINE__ , \
-			## args); \
-	} while (0)
-
-/*****************************************************************************/
-
 #define M5602_XB_SENSOR_TYPE 0x00
 #define M5602_XB_SENSOR_CTRL 0x01
 #define M5602_XB_LINE_OF_FRAME_H 0x02
diff --git a/drivers/media/video/gspca/m5602/m5602_core.c b/drivers/media/video/gspca/m5602/m5602_core.c
index 19d5e35..fd6ce38 100644
--- a/drivers/media/video/gspca/m5602/m5602_core.c
+++ b/drivers/media/video/gspca/m5602/m5602_core.c
@@ -1,7 +1,7 @@
-/*
+ /*
  * USB Driver for ALi m5602 based webcams
  *
- * Copyright (C) 2008 Erik Andren
+ * Copyright (C) 2008 Erik Andrén
  * Copyright (C) 2007 Ilyes Gouta. Based on the m5603x Linux Driver Project.
  * Copyright (C) 2005 m5603x Linux Driver Project <m5602@x3ng.com.br>
  *
@@ -26,7 +26,6 @@
 int force_sensor;
 int dump_bridge;
 int dump_sensor;
-unsigned int m5602_debug;
 
 static const __devinitdata struct usb_device_id m5602_table[] = {
 	{USB_DEVICE(0x0402, 0x5602)},
@@ -48,7 +47,7 @@
 			      1, M5602_URB_MSG_TIMEOUT);
 	*i2c_data = buf[0];
 
-	PDEBUG(DBG_TRACE, "Reading bridge register 0x%x containing 0x%x",
+	PDEBUG(D_CONF, "Reading bridge register 0x%x containing 0x%x",
 	       address, *i2c_data);
 
 	/* usb_control_msg(...) returns the number of bytes sent upon success,
@@ -63,7 +62,7 @@
 	struct usb_device *udev = sd->gspca_dev.dev;
 	__u8 *buf = sd->gspca_dev.usb_buf;
 
-	PDEBUG(DBG_TRACE, "Writing bridge register 0x%x with 0x%x",
+	PDEBUG(D_CONF, "Writing bridge register 0x%x with 0x%x",
 	       address, i2c_data);
 
 	memcpy(buf, bridge_urb_skeleton,
@@ -91,7 +90,8 @@
 		m5602_read_bridge(sd, i, &val);
 		info("ALi m5602 address 0x%x contains 0x%x", i, val);
 	}
-	info("Warning: The camera probably won't work until it's power cycled");
+	info("Warning: The ALi m5602 webcam probably won't work "
+		"until it's power cycled");
 }
 
 static int m5602_probe_sensor(struct sd *sd)
@@ -135,7 +135,7 @@
 	struct sd *sd = (struct sd *) gspca_dev;
 	int err;
 
-	PDEBUG(DBG_TRACE, "Initializing ALi m5602 webcam");
+	PDEBUG(D_CONF, "Initializing ALi m5602 webcam");
 	/* Run the init sequence */
 	err = sd->sensor->init(sd);
 
@@ -146,16 +146,18 @@
 {
 	struct sd *sd = (struct sd *) gspca_dev;
 	__u8 *buf = sd->gspca_dev.usb_buf;
+	int err;
 
 	/* Send start command to the camera */
 	const u8 buffer[4] = {0x13, 0xf9, 0x0f, 0x01};
 	memcpy(buf, buffer, sizeof(buffer));
-	usb_control_msg(gspca_dev->dev, usb_sndctrlpipe(gspca_dev->dev, 0),
-			0x04, 0x40, 0x19, 0x0000, buf,
-			4, M5602_URB_MSG_TIMEOUT);
+	err = usb_control_msg(gspca_dev->dev,
+			      usb_sndctrlpipe(gspca_dev->dev, 0),
+			      0x04, 0x40, 0x19, 0x0000, buf,
+			      4, M5602_URB_MSG_TIMEOUT);
 
-	PDEBUG(DBG_V4L2, "Transfer started");
-	return 0;
+	PDEBUG(D_STREAM, "Transfer started");
+	return (err < 0) ? err : 0;
 }
 
 static void m5602_urb_complete(struct gspca_dev *gspca_dev,
@@ -165,14 +167,14 @@
 	struct sd *sd = (struct sd *) gspca_dev;
 
 	if (len < 6) {
-		PDEBUG(DBG_DATA, "Packet is less than 6 bytes");
+		PDEBUG(D_PACK, "Packet is less than 6 bytes");
 		return;
 	}
 
 	/* Frame delimiter: ff xx xx xx ff ff */
 	if (data[0] == 0xff && data[4] == 0xff && data[5] == 0xff &&
 	    data[2] != sd->frame_id) {
-		PDEBUG(DBG_DATA, "Frame delimiter detected");
+		PDEBUG(D_FRAM, "Frame delimiter detected");
 		sd->frame_id = data[2];
 
 		/* Remove the extra fluff appended on each header */
@@ -187,7 +189,7 @@
 		/* Create a new frame */
 		gspca_frame_add(gspca_dev, FIRST_PACKET, frame, data, len);
 
-		PDEBUG(DBG_V4L2, "Starting new frame %d",
+		PDEBUG(D_FRAM, "Starting new frame %d",
 		       sd->frame_count);
 
 	} else {
@@ -198,7 +200,7 @@
 		len -= 4;
 
 		if (cur_frame_len + len <= frame->v4l2_buf.length) {
-			PDEBUG(DBG_DATA, "Continuing frame %d copying %d bytes",
+			PDEBUG(D_FRAM, "Continuing frame %d copying %d bytes",
 			       sd->frame_count, len);
 
 			gspca_frame_add(gspca_dev, INTER_PACKET, frame,
@@ -234,8 +236,6 @@
 	struct cam *cam;
 	int err;
 
-	PDEBUG(DBG_GSPCA, "m5602_configure start");
-
 	cam = &gspca_dev->cam;
 	cam->epaddr = M5602_ISOC_ENDPOINT_ADDR;
 	sd->desc = &sd_desc;
@@ -248,11 +248,10 @@
 	if (err)
 		goto fail;
 
-	PDEBUG(DBG_GSPCA, "m5602_configure end");
 	return 0;
 
 fail:
-	PDEBUG(DBG_GSPCA, "m5602_configure failed");
+	PDEBUG(D_ERR, "ALi m5602 webcam failed");
 	cam->cam_mode = NULL;
 	cam->nmodes = 0;
 
@@ -282,13 +281,13 @@
 {
 	if (usb_register(&sd_driver) < 0)
 		return -1;
-	PDEBUG(D_PROBE, "m5602 module registered");
+	PDEBUG(D_PROBE, "registered");
 	return 0;
 }
 static void __exit mod_m5602_exit(void)
 {
 	usb_deregister(&sd_driver);
-	PDEBUG(D_PROBE, "m5602 module deregistered");
+	PDEBUG(D_PROBE, "deregistered");
 }
 
 module_init(mod_m5602_init);
@@ -297,9 +296,6 @@
 MODULE_AUTHOR(DRIVER_AUTHOR);
 MODULE_DESCRIPTION(DRIVER_DESC);
 MODULE_LICENSE("GPL");
-module_param_named(debug, m5602_debug, int, S_IRUGO | S_IWUSR);
-MODULE_PARM_DESC(debug, "toggles debug on/off");
-
 module_param(force_sensor, int, S_IRUGO | S_IWUSR);
 MODULE_PARM_DESC(force_sensor,
 		"force detection of sensor, "
diff --git a/drivers/media/video/gspca/m5602/m5602_mt9m111.c b/drivers/media/video/gspca/m5602/m5602_mt9m111.c
index 566d492..fb700c2 100644
--- a/drivers/media/video/gspca/m5602/m5602_mt9m111.c
+++ b/drivers/media/video/gspca/m5602/m5602_mt9m111.c
@@ -1,7 +1,7 @@
 /*
  * Driver for the mt9m111 sensor
  *
- * Copyright (C) 2008 Erik Andren
+ * Copyright (C) 2008 Erik Andrén
  * Copyright (C) 2007 Ilyes Gouta. Based on the m5603x Linux Driver Project.
  * Copyright (C) 2005 m5603x Linux Driver Project <m5602@x3ng.com.br>
  *
@@ -107,7 +107,7 @@
 	err = mt9m111_read_sensor(sd, MT9M111_SC_R_MODE_CONTEXT_B,
 				  data, 2);
 	*val = data[0] & MT9M111_RMB_MIRROR_ROWS;
-	PDEBUG(DBG_V4L2_CID, "Read vertical flip %d", *val);
+	PDEBUG(D_V4L2, "Read vertical flip %d", *val);
 
 	return (err < 0) ? err : 0;
 }
@@ -118,7 +118,7 @@
 	u8 data[2] = {0x00, 0x00};
 	struct sd *sd = (struct sd *) gspca_dev;
 
-	PDEBUG(DBG_V4L2_CID, "Set vertical flip to %d", val);
+	PDEBUG(D_V4L2, "Set vertical flip to %d", val);
 
 	/* Set the correct page map */
 	err = mt9m111_write_sensor(sd, MT9M111_PAGE_MAP, data, 2);
@@ -145,7 +145,7 @@
 	err = mt9m111_read_sensor(sd, MT9M111_SC_R_MODE_CONTEXT_B,
 				  data, 2);
 	*val = data[0] & MT9M111_RMB_MIRROR_COLS;
-	PDEBUG(DBG_V4L2_CID, "Read horizontal flip %d", *val);
+	PDEBUG(D_V4L2, "Read horizontal flip %d", *val);
 
 	return (err < 0) ? err : 0;
 }
@@ -156,7 +156,7 @@
 	u8 data[2] = {0x00, 0x00};
 	struct sd *sd = (struct sd *) gspca_dev;
 
-	PDEBUG(DBG_V4L2_CID, "Set horizontal flip to %d", val);
+	PDEBUG(D_V4L2, "Set horizontal flip to %d", val);
 
 	/* Set the correct page map */
 	err = mt9m111_write_sensor(sd, MT9M111_PAGE_MAP, data, 2);
@@ -188,7 +188,7 @@
 	      ((tmp & (1 <<  8)) * 2) |
 	       (tmp & 0x7f);
 
-	PDEBUG(DBG_V4L2_CID, "Read gain %d", *val);
+	PDEBUG(D_V4L2, "Read gain %d", *val);
 
 	return (err < 0) ? err : 0;
 }
@@ -222,7 +222,7 @@
 
 	data[1] = (tmp & 0xff00) >> 8;
 	data[0] = (tmp & 0xff);
-	PDEBUG(DBG_V4L2_CID, "tmp=%d, data[1]=%d, data[0]=%d", tmp,
+	PDEBUG(D_V4L2, "tmp=%d, data[1]=%d, data[0]=%d", tmp,
 	       data[1], data[0]);
 
 	err = mt9m111_write_sensor(sd, MT9M111_SC_GLOBAL_GAIN,
@@ -257,7 +257,7 @@
 	for (i = 0; i < len && !err; i++) {
 		err = m5602_read_bridge(sd, M5602_XB_I2C_DATA, &(i2c_data[i]));
 
-		PDEBUG(DBG_TRACE, "Reading sensor register "
+		PDEBUG(D_CONF, "Reading sensor register "
 		       "0x%x contains 0x%x ", address, *i2c_data);
 	}
 out:
@@ -290,7 +290,7 @@
 		memcpy(p, sensor_urb_skeleton + 16, 4);
 		p[3] = i2c_data[i];
 		p += 4;
-		PDEBUG(DBG_TRACE, "Writing sensor register 0x%x with 0x%x",
+		PDEBUG(D_CONF, "Writing sensor register 0x%x with 0x%x",
 		       address, i2c_data[i]);
 	}
 
diff --git a/drivers/media/video/gspca/m5602/m5602_mt9m111.h b/drivers/media/video/gspca/m5602/m5602_mt9m111.h
index 79a5d88..315209d5 100644
--- a/drivers/media/video/gspca/m5602/m5602_mt9m111.h
+++ b/drivers/media/video/gspca/m5602/m5602_mt9m111.h
@@ -1,7 +1,7 @@
 /*
  * Driver for the mt9m111 sensor
  *
- * Copyright (C) 2008 Erik Andren
+ * Copyright (C) 2008 Erik Andrén
  * Copyright (C) 2007 Ilyes Gouta. Based on the m5603x Linux Driver Project.
  * Copyright (C) 2005 m5603x Linux Driver Project <m5602@x3ng.com.br>
  *
@@ -82,7 +82,6 @@
 /* Kernel module parameters */
 extern int force_sensor;
 extern int dump_sensor;
-extern unsigned int m5602_debug;
 
 int mt9m111_probe(struct sd *sd);
 int mt9m111_init(struct sd *sd);
@@ -152,8 +151,8 @@
 			.default_value  = DEFAULT_GAIN,
 			.flags          = V4L2_CTRL_FLAG_SLIDER
 		},
-		.set = mt9m111_set_hflip,
-		.get = mt9m111_get_hflip
+		.set = mt9m111_set_gain,
+		.get = mt9m111_get_gain
 	}
 	},
 
diff --git a/drivers/media/video/gspca/m5602/m5602_ov9650.c b/drivers/media/video/gspca/m5602/m5602_ov9650.c
index 31c5896..837c7e47 100644
--- a/drivers/media/video/gspca/m5602/m5602_ov9650.c
+++ b/drivers/media/video/gspca/m5602/m5602_ov9650.c
@@ -1,7 +1,7 @@
 /*
  * Driver for the ov9650 sensor
  *
- * Copyright (C) 2008 Erik Andren
+ * Copyright (C) 2008 Erik Andrén
  * Copyright (C) 2007 Ilyes Gouta. Based on the m5603x Linux Driver Project.
  * Copyright (C) 2005 m5603x Linux Driver Project <m5602@x3ng.com.br>
  *
@@ -40,7 +40,7 @@
 	for (i = 0; i < len; i++) {
 		err = m5602_read_bridge(sd, M5602_XB_I2C_DATA, &(i2c_data[i]));
 
-		PDEBUG(DBG_TRACE, "Reading sensor register "
+		PDEBUG(D_CONF, "Reading sensor register "
 				"0x%x containing 0x%x ", address, *i2c_data);
 	}
 	return (err < 0) ? err : 0;
@@ -72,7 +72,7 @@
 		memcpy(p, sensor_urb_skeleton + 16, 4);
 		p[3] = i2c_data[i];
 		p += 4;
-		PDEBUG(DBG_TRACE, "Writing sensor register 0x%x with 0x%x",
+		PDEBUG(D_CONF, "Writing sensor register 0x%x with 0x%x",
 		       address, i2c_data[i]);
 	}
 
@@ -199,7 +199,7 @@
 		goto out;
 	*val |= (i2c_data & 0x3f) << 10;
 
-	PDEBUG(DBG_V4L2_CID, "Read exposure %d", *val);
+	PDEBUG(D_V4L2, "Read exposure %d", *val);
 out:
 	return (err < 0) ? err : 0;
 }
@@ -210,7 +210,7 @@
 	u8 i2c_data;
 	int err;
 
-	PDEBUG(DBG_V4L2_CID, "Set exposure to %d",
+	PDEBUG(D_V4L2, "Set exposure to %d",
 	       val & 0xffff);
 
 	/* The 6 MSBs */
@@ -246,7 +246,7 @@
 
 	err = ov9650_read_sensor(sd, OV9650_GAIN, &i2c_data, 1);
 	*val |= i2c_data;
-	PDEBUG(DBG_V4L2_CID, "Read gain %d", *val);
+	PDEBUG(D_V4L2, "Read gain %d", *val);
 	return (err < 0) ? err : 0;
 }
 
@@ -280,7 +280,7 @@
 	err = ov9650_read_sensor(sd, OV9650_RED, &i2c_data, 1);
 	*val = i2c_data;
 
-	PDEBUG(DBG_V4L2_CID, "Read red gain %d", *val);
+	PDEBUG(D_V4L2, "Read red gain %d", *val);
 
 	return (err < 0) ? err : 0;
 }
@@ -291,7 +291,7 @@
 	u8 i2c_data;
 	struct sd *sd = (struct sd *) gspca_dev;
 
-	PDEBUG(DBG_V4L2_CID, "Set red gain to %d",
+	PDEBUG(D_V4L2, "Set red gain to %d",
 			     val & 0xff);
 
 	i2c_data = val & 0xff;
@@ -309,7 +309,7 @@
 	err = ov9650_read_sensor(sd, OV9650_BLUE, &i2c_data, 1);
 	*val = i2c_data;
 
-	PDEBUG(DBG_V4L2_CID, "Read blue gain %d", *val);
+	PDEBUG(D_V4L2, "Read blue gain %d", *val);
 
 	return (err < 0) ? err : 0;
 }
@@ -320,7 +320,7 @@
 	u8 i2c_data;
 	struct sd *sd = (struct sd *) gspca_dev;
 
-	PDEBUG(DBG_V4L2_CID, "Set blue gain to %d",
+	PDEBUG(D_V4L2, "Set blue gain to %d",
 	       val & 0xff);
 
 	i2c_data = val & 0xff;
@@ -340,7 +340,7 @@
 		*val = ((i2c_data & OV9650_HFLIP) >> 5) ? 0 : 1;
 	else
 		*val = (i2c_data & OV9650_HFLIP) >> 5;
-	PDEBUG(DBG_V4L2_CID, "Read horizontal flip %d", *val);
+	PDEBUG(D_V4L2, "Read horizontal flip %d", *val);
 
 	return (err < 0) ? err : 0;
 }
@@ -351,7 +351,7 @@
 	u8 i2c_data;
 	struct sd *sd = (struct sd *) gspca_dev;
 
-	PDEBUG(DBG_V4L2_CID, "Set horizontal flip to %d", val);
+	PDEBUG(D_V4L2, "Set horizontal flip to %d", val);
 	err = ov9650_read_sensor(sd, OV9650_MVFP, &i2c_data, 1);
 	if (err < 0)
 		goto out;
@@ -379,7 +379,7 @@
 		*val = ((i2c_data & 0x10) >> 4) ? 0 : 1;
 	else
 		*val = (i2c_data & 0x10) >> 4;
-	PDEBUG(DBG_V4L2_CID, "Read vertical flip %d", *val);
+	PDEBUG(D_V4L2, "Read vertical flip %d", *val);
 
 	return (err < 0) ? err : 0;
 }
@@ -390,7 +390,7 @@
 	u8 i2c_data;
 	struct sd *sd = (struct sd *) gspca_dev;
 
-	PDEBUG(DBG_V4L2_CID, "Set vertical flip to %d", val);
+	PDEBUG(D_V4L2, "Set vertical flip to %d", val);
 	err = ov9650_read_sensor(sd, OV9650_MVFP, &i2c_data, 1);
 	if (err < 0)
 		goto out;
@@ -420,7 +420,7 @@
 
 	err = ov9650_read_sensor(sd, OV9650_GAIN, &i2c_data, 1);
 	*val |= i2c_data;
-	PDEBUG(DBG_V4L2_CID, "Read gain %d", *val);
+	PDEBUG(D_V4L2, "Read gain %d", *val);
 out:
 	return (err < 0) ? err : 0;
 }
@@ -431,7 +431,7 @@
 	u8 i2c_data;
 	struct sd *sd = (struct sd *) gspca_dev;
 
-	PDEBUG(DBG_V4L2_CID, "Set gain to %d", val & 0x3ff);
+	PDEBUG(D_V4L2, "Set gain to %d", val & 0x3ff);
 
 	/* Read the OV9650_VREF register first to avoid
 		corrupting the VREF high and low bits */
@@ -461,7 +461,7 @@
 
 	err = ov9650_read_sensor(sd, OV9650_COM8, &i2c_data, 1);
 	*val = (i2c_data & OV9650_AWB_EN) >> 1;
-	PDEBUG(DBG_V4L2_CID, "Read auto white balance %d", *val);
+	PDEBUG(D_V4L2, "Read auto white balance %d", *val);
 
 	return (err < 0) ? err : 0;
 }
@@ -472,7 +472,7 @@
 	u8 i2c_data;
 	struct sd *sd = (struct sd *) gspca_dev;
 
-	PDEBUG(DBG_V4L2_CID, "Set auto white balance to %d", val);
+	PDEBUG(D_V4L2, "Set auto white balance to %d", val);
 	err = ov9650_read_sensor(sd, OV9650_COM8, &i2c_data, 1);
 	if (err < 0)
 		goto out;
@@ -491,7 +491,7 @@
 
 	err = ov9650_read_sensor(sd, OV9650_COM8, &i2c_data, 1);
 	*val = (i2c_data & OV9650_AGC_EN) >> 2;
-	PDEBUG(DBG_V4L2_CID, "Read auto gain control %d", *val);
+	PDEBUG(D_V4L2, "Read auto gain control %d", *val);
 
 	return (err < 0) ? err : 0;
 }
@@ -502,7 +502,7 @@
 	u8 i2c_data;
 	struct sd *sd = (struct sd *) gspca_dev;
 
-	PDEBUG(DBG_V4L2_CID, "Set auto gain control to %d", val);
+	PDEBUG(D_V4L2, "Set auto gain control to %d", val);
 	err = ov9650_read_sensor(sd, OV9650_COM8, &i2c_data, 1);
 	if (err < 0)
 		goto out;
diff --git a/drivers/media/video/gspca/m5602/m5602_ov9650.h b/drivers/media/video/gspca/m5602/m5602_ov9650.h
index 2f29cb0..065632f 100644
--- a/drivers/media/video/gspca/m5602/m5602_ov9650.h
+++ b/drivers/media/video/gspca/m5602/m5602_ov9650.h
@@ -1,7 +1,7 @@
 /*
  * Driver for the ov9650 sensor
  *
- * Copyright (C) 2008 Erik Andren
+ * Copyright (C) 2008 Erik Andrén
  * Copyright (C) 2007 Ilyes Gouta. Based on the m5603x Linux Driver Project.
  * Copyright (C) 2005 m5603x Linux Driver Project <m5602@x3ng.com.br>
  *
@@ -121,7 +121,6 @@
 /* Kernel module parameters */
 extern int force_sensor;
 extern int dump_sensor;
-extern unsigned int m5602_debug;
 
 int ov9650_probe(struct sd *sd);
 int ov9650_init(struct sd *sd);
diff --git a/drivers/media/video/gspca/m5602/m5602_po1030.c b/drivers/media/video/gspca/m5602/m5602_po1030.c
index 08c015b..d17ac52 100644
--- a/drivers/media/video/gspca/m5602/m5602_po1030.c
+++ b/drivers/media/video/gspca/m5602/m5602_po1030.c
@@ -1,7 +1,7 @@
 /*
  * Driver for the po1030 sensor
  *
- * Copyright (c) 2008 Erik Andren
+ * Copyright (c) 2008 Erik Andrén
  * Copyright (c) 2007 Ilyes Gouta. Based on the m5603x Linux Driver Project.
  * Copyright (c) 2005 m5603x Linux Driver Project <m5602@x3ng.com.br>
  *
@@ -82,7 +82,7 @@
 	for (i = 0; i < len; i++) {
 		err = m5602_read_bridge(sd, M5602_XB_I2C_DATA, &(i2c_data[i]));
 
-		PDEBUG(DBG_TRACE, "Reading sensor register "
+		PDEBUG(D_CONF, "Reading sensor register "
 				"0x%x containing 0x%x ", address, *i2c_data);
 	}
 	return (err < 0) ? err : 0;
@@ -112,7 +112,7 @@
 		memcpy(p, sensor_urb_skeleton + 16, 4);
 		p[3] = i2c_data[i];
 		p += 4;
-		PDEBUG(DBG_TRACE, "Writing sensor register 0x%x with 0x%x",
+		PDEBUG(D_CONF, "Writing sensor register 0x%x with 0x%x",
 		       address, i2c_data[i]);
 	}
 
@@ -185,7 +185,7 @@
 				 &i2c_data, 1);
 	*val |= i2c_data;
 
-	PDEBUG(DBG_V4L2_CID, "Exposure read as %d", *val);
+	PDEBUG(D_V4L2, "Exposure read as %d", *val);
 out:
 	return (err < 0) ? err : 0;
 }
@@ -196,10 +196,10 @@
 	u8 i2c_data;
 	int err;
 
-	PDEBUG(DBG_V4L2, "Set exposure to %d", val & 0xffff);
+	PDEBUG(D_V4L2, "Set exposure to %d", val & 0xffff);
 
 	i2c_data = ((val & 0xff00) >> 8);
-	PDEBUG(DBG_V4L2, "Set exposure to high byte to 0x%x",
+	PDEBUG(D_V4L2, "Set exposure to high byte to 0x%x",
 	       i2c_data);
 
 	err = po1030_write_sensor(sd, PO1030_REG_INTEGLINES_H,
@@ -208,7 +208,7 @@
 		goto out;
 
 	i2c_data = (val & 0xff);
-	PDEBUG(DBG_V4L2, "Set exposure to low byte to 0x%x",
+	PDEBUG(D_V4L2, "Set exposure to low byte to 0x%x",
 	       i2c_data);
 	err = po1030_write_sensor(sd, PO1030_REG_INTEGLINES_M,
 				  &i2c_data, 1);
@@ -226,7 +226,71 @@
 	err = po1030_read_sensor(sd, PO1030_REG_GLOBALGAIN,
 				 &i2c_data, 1);
 	*val = i2c_data;
-	PDEBUG(DBG_V4L2_CID, "Read global gain %d", *val);
+	PDEBUG(D_V4L2, "Read global gain %d", *val);
+
+	return (err < 0) ? err : 0;
+}
+
+int po1030_get_hflip(struct gspca_dev *gspca_dev, __s32 *val)
+{
+	struct sd *sd = (struct sd *) gspca_dev;
+	u8 i2c_data;
+	int err;
+
+	err = po1030_read_sensor(sd, PO1030_REG_CONTROL2,
+				 &i2c_data, 1);
+
+	*val = (i2c_data >> 7) & 0x01 ;
+
+	PDEBUG(D_V4L2, "Read hflip %d", *val);
+
+	return (err < 0) ? err : 0;
+}
+
+int po1030_set_hflip(struct gspca_dev *gspca_dev, __s32 val)
+{
+	struct sd *sd = (struct sd *) gspca_dev;
+	u8 i2c_data;
+	int err;
+
+	PDEBUG(D_V4L2, "Set hflip %d", val);
+
+	i2c_data = (val & 0x01) << 7;
+
+	err = po1030_write_sensor(sd, PO1030_REG_CONTROL2,
+				  &i2c_data, 1);
+
+	return (err < 0) ? err : 0;
+}
+
+int po1030_get_vflip(struct gspca_dev *gspca_dev, __s32 *val)
+{
+	struct sd *sd = (struct sd *) gspca_dev;
+	u8 i2c_data;
+	int err;
+
+	err = po1030_read_sensor(sd, PO1030_REG_GLOBALGAIN,
+				 &i2c_data, 1);
+
+	*val = (i2c_data >> 6) & 0x01;
+
+	PDEBUG(D_V4L2, "Read vflip %d", *val);
+
+	return (err < 0) ? err : 0;
+}
+
+int po1030_set_vflip(struct gspca_dev *gspca_dev, __s32 val)
+{
+	struct sd *sd = (struct sd *) gspca_dev;
+	u8 i2c_data;
+	int err;
+
+	PDEBUG(D_V4L2, "Set vflip %d", val);
+
+	i2c_data = (val & 0x01) << 6;
+
+	err = po1030_write_sensor(sd, PO1030_REG_CONTROL2,
+				  &i2c_data, 1);
 
 	return (err < 0) ? err : 0;
 }
@@ -238,7 +302,7 @@
 	int err;
 
 	i2c_data = val & 0xff;
-	PDEBUG(DBG_V4L2, "Set global gain to %d", i2c_data);
+	PDEBUG(D_V4L2, "Set global gain to %d", i2c_data);
 	err = po1030_write_sensor(sd, PO1030_REG_GLOBALGAIN,
 				  &i2c_data, 1);
 	return (err < 0) ? err : 0;
@@ -253,7 +317,7 @@
 	err = po1030_read_sensor(sd, PO1030_REG_RED_GAIN,
 				 &i2c_data, 1);
 	*val = i2c_data;
-	PDEBUG(DBG_V4L2_CID, "Read red gain %d", *val);
+	PDEBUG(D_V4L2, "Read red gain %d", *val);
 	return (err < 0) ? err : 0;
 }
 
@@ -264,7 +328,7 @@
 	int err;
 
 	i2c_data = val & 0xff;
-	PDEBUG(DBG_V4L2, "Set red gain to %d", i2c_data);
+	PDEBUG(D_V4L2, "Set red gain to %d", i2c_data);
 	err = po1030_write_sensor(sd, PO1030_REG_RED_GAIN,
 				  &i2c_data, 1);
 	return (err < 0) ? err : 0;
@@ -279,7 +343,7 @@
 	err = po1030_read_sensor(sd, PO1030_REG_BLUE_GAIN,
 				 &i2c_data, 1);
 	*val = i2c_data;
-	PDEBUG(DBG_V4L2_CID, "Read blue gain %d", *val);
+	PDEBUG(D_V4L2, "Read blue gain %d", *val);
 
 	return (err < 0) ? err : 0;
 }
@@ -290,7 +354,7 @@
 	u8 i2c_data;
 	int err;
 	i2c_data = val & 0xff;
-	PDEBUG(DBG_V4L2, "Set blue gain to %d", i2c_data);
+	PDEBUG(D_V4L2, "Set blue gain to %d", i2c_data);
 	err = po1030_write_sensor(sd, PO1030_REG_BLUE_GAIN,
 				  &i2c_data, 1);
 
diff --git a/drivers/media/video/gspca/m5602/m5602_po1030.h b/drivers/media/video/gspca/m5602/m5602_po1030.h
index 68f34c9..a0b75ff 100644
--- a/drivers/media/video/gspca/m5602/m5602_po1030.h
+++ b/drivers/media/video/gspca/m5602/m5602_po1030.h
@@ -1,8 +1,7 @@
 /*
  * Driver for the po1030 sensor.
- * This is probably a pixel plus sensor but we haven't identified it yet
  *
- * Copyright (c) 2008 Erik Andren
+ * Copyright (c) 2008 Erik Andrén
  * Copyright (c) 2007 Ilyes Gouta. Based on the m5603x Linux Driver Project.
  * Copyright (c) 2005 m5603x Linux Driver Project <m5602@x3ng.com.br>
  *
@@ -109,10 +108,13 @@
 #define PO1030_REG_YCONTRAST		0x74
 #define PO1030_REG_YSATURATION		0x75
 
+#define PO1030_HFLIP			(1 << 7)
+#define PO1030_VFLIP			(1 << 6)
+
 /*****************************************************************************/
 
 #define PO1030_GLOBAL_GAIN_DEFAULT	0x12
-#define PO1030_EXPOSURE_DEFAULT		0xf0ff
+#define PO1030_EXPOSURE_DEFAULT		0x0085
 #define PO1030_BLUE_GAIN_DEFAULT 	0x40
 #define PO1030_RED_GAIN_DEFAULT 	0x40
 
@@ -121,7 +123,6 @@
 /* Kernel module parameters */
 extern int force_sensor;
 extern int dump_sensor;
-extern unsigned int m5602_debug;
 
 int po1030_probe(struct sd *sd);
 int po1030_init(struct sd *sd);
@@ -142,6 +143,10 @@
 int po1030_set_red_balance(struct gspca_dev *gspca_dev, __s32 val);
 int po1030_get_blue_balance(struct gspca_dev *gspca_dev, __s32 *val);
 int po1030_set_blue_balance(struct gspca_dev *gspca_dev, __s32 val);
+int po1030_get_hflip(struct gspca_dev *gspca_dev, __s32 *val);
+int po1030_set_hflip(struct gspca_dev *gspca_dev, __s32 val);
+int po1030_get_vflip(struct gspca_dev *gspca_dev, __s32 *val);
+int po1030_set_vflip(struct gspca_dev *gspca_dev, __s32 val);
 
 static struct m5602_sensor po1030 = {
 	.name = "PO1030",
@@ -152,7 +157,7 @@
 	.init = po1030_init,
 	.power_down = po1030_power_down,
 
-	.nctrls = 4,
+	.nctrls = 6,
 	.ctrls = {
 	{
 		{
@@ -160,7 +165,7 @@
 			.type 		= V4L2_CTRL_TYPE_INTEGER,
 			.name 		= "gain",
 			.minimum 	= 0x00,
-			.maximum 	= 0xff,
+			.maximum 	= 0x4f,
 			.step 		= 0x1,
 			.default_value 	= PO1030_GLOBAL_GAIN_DEFAULT,
 			.flags         	= V4L2_CTRL_FLAG_SLIDER
@@ -173,7 +178,7 @@
 			.type 		= V4L2_CTRL_TYPE_INTEGER,
 			.name 		= "exposure",
 			.minimum 	= 0x00,
-			.maximum 	= 0xffff,
+			.maximum 	= 0x02ff,
 			.step 		= 0x1,
 			.default_value 	= PO1030_EXPOSURE_DEFAULT,
 			.flags         	= V4L2_CTRL_FLAG_SLIDER
@@ -206,8 +211,33 @@
 		},
 		.set = po1030_set_blue_balance,
 		.get = po1030_get_blue_balance
+	}, {
+		{
+			.id 		= V4L2_CID_HFLIP,
+			.type 		= V4L2_CTRL_TYPE_BOOLEAN,
+			.name 		= "horizontal flip",
+			.minimum 	= 0,
+			.maximum 	= 1,
+			.step 		= 1,
+			.default_value 	= 0,
+		},
+		.set = po1030_set_hflip,
+		.get = po1030_get_hflip
+	}, {
+		{
+			.id 		= V4L2_CID_VFLIP,
+			.type 		= V4L2_CTRL_TYPE_BOOLEAN,
+			.name 		= "vertical flip",
+			.minimum 	= 0,
+			.maximum 	= 1,
+			.step 		= 1,
+			.default_value 	= 0,
+		},
+		.set = po1030_set_vflip,
+		.get = po1030_get_vflip
 	}
 	},
+
 	.nmodes = 1,
 	.modes = {
 	{
@@ -381,7 +411,7 @@
 
 	/* Set the y window to 1 */
 	{SENSOR, PO1030_REG_WINDOWY_H, 0x00},
-	{SENSOR, PO1030_REG_WINDOWX_L, 0x01},
+	{SENSOR, PO1030_REG_WINDOWY_L, 0x01},
 
 	{SENSOR, PO1030_REG_WINDOWWIDTH_H, 0x02},
 	{SENSOR, PO1030_REG_WINDOWWIDTH_L, 0x87},
diff --git a/drivers/media/video/gspca/m5602/m5602_s5k4aa.c b/drivers/media/video/gspca/m5602/m5602_s5k4aa.c
index 6820256..14b1eac 100644
--- a/drivers/media/video/gspca/m5602/m5602_s5k4aa.c
+++ b/drivers/media/video/gspca/m5602/m5602_s5k4aa.c
@@ -1,7 +1,7 @@
 /*
  * Driver for the s5k4aa sensor
  *
- * Copyright (C) 2008 Erik Andren
+ * Copyright (C) 2008 Erik Andrén
  * Copyright (C) 2007 Ilyes Gouta. Based on the m5603x Linux Driver Project.
  * Copyright (C) 2005 m5603x Linux Driver Project <m5602@x3ng.com.br>
  *
@@ -117,7 +117,7 @@
 	for (i = 0; (i < len) & !err; i++) {
 		err = m5602_read_bridge(sd, M5602_XB_I2C_DATA, &(i2c_data[i]));
 
-		PDEBUG(DBG_TRACE, "Reading sensor register "
+		PDEBUG(D_CONF, "Reading sensor register "
 				  "0x%x containing 0x%x ", address, *i2c_data);
 	}
 out:
@@ -150,7 +150,7 @@
 		memcpy(p, sensor_urb_skeleton + 16, 4);
 		p[3] = i2c_data[i];
 		p += 4;
-		PDEBUG(DBG_TRACE, "Writing sensor register 0x%x with 0x%x",
+		PDEBUG(D_CONF, "Writing sensor register 0x%x with 0x%x",
 		       address, i2c_data[i]);
 	}
 
@@ -248,7 +248,7 @@
 	*val = data << 8;
 	err = s5k4aa_read_sensor(sd, S5K4AA_EXPOSURE_LO, &data, 1);
 	*val |= data;
-	PDEBUG(DBG_V4L2_CID, "Read exposure %d", *val);
+	PDEBUG(D_V4L2, "Read exposure %d", *val);
 out:
 	return (err < 0) ? err : 0;
 }
@@ -259,7 +259,7 @@
 	u8 data = S5K4AA_PAGE_MAP_2;
 	int err;
 
-	PDEBUG(DBG_V4L2_CID, "Set exposure to %d", val);
+	PDEBUG(D_V4L2, "Set exposure to %d", val);
 	err = s5k4aa_write_sensor(sd, S5K4AA_PAGE_MAP, &data, 1);
 	if (err < 0)
 		goto out;
@@ -285,7 +285,7 @@
 
 	err = s5k4aa_read_sensor(sd, S5K4AA_PAGE_MAP, &data, 1);
 	*val = (data & S5K4AA_RM_V_FLIP) >> 7;
-	PDEBUG(DBG_V4L2_CID, "Read vertical flip %d", *val);
+	PDEBUG(D_V4L2, "Read vertical flip %d", *val);
 
 out:
 	return (err < 0) ? err : 0;
@@ -297,7 +297,7 @@
 	u8 data = S5K4AA_PAGE_MAP_2;
 	int err;
 
-	PDEBUG(DBG_V4L2_CID, "Set vertical flip to %d", val);
+	PDEBUG(D_V4L2, "Set vertical flip to %d", val);
 	err = s5k4aa_write_sensor(sd, S5K4AA_PAGE_MAP, &data, 1);
 	if (err < 0)
 		goto out;
@@ -341,7 +341,7 @@
 
 	err = s5k4aa_read_sensor(sd, S5K4AA_PAGE_MAP, &data, 1);
 	*val = (data & S5K4AA_RM_H_FLIP) >> 6;
-	PDEBUG(DBG_V4L2_CID, "Read horizontal flip %d", *val);
+	PDEBUG(D_V4L2, "Read horizontal flip %d", *val);
 out:
 	return (err < 0) ? err : 0;
 }
@@ -352,7 +352,7 @@
 	u8 data = S5K4AA_PAGE_MAP_2;
 	int err;
 
-	PDEBUG(DBG_V4L2_CID, "Set horizontal flip to %d",
+	PDEBUG(D_V4L2, "Set horizontal flip to %d",
 	       val);
 	err = s5k4aa_write_sensor(sd, S5K4AA_PAGE_MAP, &data, 1);
 	if (err < 0)
@@ -397,7 +397,7 @@
 
 	err = s5k4aa_read_sensor(sd, S5K4AA_GAIN_2, &data, 1);
 	*val = data;
-	PDEBUG(DBG_V4L2_CID, "Read gain %d", *val);
+	PDEBUG(D_V4L2, "Read gain %d", *val);
 
 out:
 	return (err < 0) ? err : 0;
@@ -409,7 +409,7 @@
 	u8 data = S5K4AA_PAGE_MAP_2;
 	int err;
 
-	PDEBUG(DBG_V4L2_CID, "Set gain to %d", val);
+	PDEBUG(D_V4L2, "Set gain to %d", val);
 	err = s5k4aa_write_sensor(sd, S5K4AA_PAGE_MAP, &data, 1);
 	if (err < 0)
 		goto out;
diff --git a/drivers/media/video/gspca/m5602/m5602_s5k4aa.h b/drivers/media/video/gspca/m5602/m5602_s5k4aa.h
index bb7f7e3..eaef676 100644
--- a/drivers/media/video/gspca/m5602/m5602_s5k4aa.h
+++ b/drivers/media/video/gspca/m5602/m5602_s5k4aa.h
@@ -1,7 +1,7 @@
 /*
  * Driver for the s5k4aa sensor
  *
- * Copyright (C) 2008 Erik Andren
+ * Copyright (C) 2008 Erik Andrén
  * Copyright (C) 2007 Ilyes Gouta. Based on the m5603x Linux Driver Project.
  * Copyright (C) 2005 m5603x Linux Driver Project <m5602@x3ng.com.br>
  *
@@ -63,7 +63,6 @@
 /* Kernel module parameters */
 extern int force_sensor;
 extern int dump_sensor;
-extern unsigned int m5602_debug;
 
 int s5k4aa_probe(struct sd *sd);
 int s5k4aa_init(struct sd *sd);
diff --git a/drivers/media/video/gspca/m5602/m5602_s5k83a.c b/drivers/media/video/gspca/m5602/m5602_s5k83a.c
index b4b33c2..8988a72 100644
--- a/drivers/media/video/gspca/m5602/m5602_s5k83a.c
+++ b/drivers/media/video/gspca/m5602/m5602_s5k83a.c
@@ -1,7 +1,7 @@
 /*
  * Driver for the s5k83a sensor
  *
- * Copyright (C) 2008 Erik Andren
+ * Copyright (C) 2008 Erik Andrén
  * Copyright (C) 2007 Ilyes Gouta. Based on the m5603x Linux Driver Project.
  * Copyright (C) 2005 m5603x Linux Driver Project <m5602@x3ng.com.br>
  *
@@ -101,7 +101,7 @@
 	for (i = 0; i < len && !len; i++) {
 		err = m5602_read_bridge(sd, M5602_XB_I2C_DATA, &(i2c_data[i]));
 
-		PDEBUG(DBG_TRACE, "Reading sensor register "
+		PDEBUG(D_CONF, "Reading sensor register "
 				  "0x%x containing 0x%x ", address, *i2c_data);
 	}
 
@@ -135,7 +135,7 @@
 		memcpy(p, sensor_urb_skeleton + 16, 4);
 		p[3] = i2c_data[i];
 		p += 4;
-		PDEBUG(DBG_TRACE, "Writing sensor register 0x%x with 0x%x",
+		PDEBUG(D_CONF, "Writing sensor register 0x%x with 0x%x",
 		       address, i2c_data[i]);
 	}
 
diff --git a/drivers/media/video/gspca/m5602/m5602_s5k83a.h b/drivers/media/video/gspca/m5602/m5602_s5k83a.h
index 833708e..ee3ee9c 100644
--- a/drivers/media/video/gspca/m5602/m5602_s5k83a.h
+++ b/drivers/media/video/gspca/m5602/m5602_s5k83a.h
@@ -1,7 +1,7 @@
 /*
  * Driver for the s5k83a sensor
  *
- * Copyright (C) 2008 Erik Andren
+ * Copyright (C) 2008 Erik Andrén
  * Copyright (C) 2007 Ilyes Gouta. Based on the m5603x Linux Driver Project.
  * Copyright (C) 2005 m5603x Linux Driver Project <m5602@x3ng.com.br>
  *
@@ -41,8 +41,6 @@
 /* Kernel module parameters */
 extern int force_sensor;
 extern int dump_sensor;
-extern unsigned int m5602_debug;
-
 
 int s5k83a_probe(struct sd *sd);
 int s5k83a_init(struct sd *sd);
diff --git a/drivers/media/video/gspca/m5602/m5602_sensor.h b/drivers/media/video/gspca/m5602/m5602_sensor.h
index 930fcaa..60c9a48 100644
--- a/drivers/media/video/gspca/m5602/m5602_sensor.h
+++ b/drivers/media/video/gspca/m5602/m5602_sensor.h
@@ -1,7 +1,7 @@
 /*
  * USB Driver for ALi m5602 based webcams
  *
- * Copyright (C) 2008 Erik Andren
+ * Copyright (C) 2008 Erik Andrén
  * Copyright (C) 2007 Ilyes Gouta. Based on the m5603x Linux Driver Project.
  * Copyright (C) 2005 m5603x Linux Driver Project <m5602@x3ng.com.br>
  *
diff --git a/drivers/media/video/gspca/t613.c b/drivers/media/video/gspca/t613.c
index b561f7c..eac245d 100644
--- a/drivers/media/video/gspca/t613.c
+++ b/drivers/media/video/gspca/t613.c
@@ -50,7 +50,7 @@
 
 	__u8 sensor;
 #define SENSOR_TAS5130A 0
-#define SENSOR_OTHER 1
+#define SENSOR_OM6802 1
 };
 
 /* V4L2 controls supported by the driver */
@@ -188,7 +188,7 @@
 	  .minimum = 0,
 	  .maximum = 1,
 	  .step = 1,
-	  .default_value = 1,
+	  .default_value = 0,
 	  },
 	 .set = sd_setwhitebalance,
 	 .get = sd_getwhitebalance
@@ -261,6 +261,59 @@
 		.priv = 0},
 };
 
+/* sensor specific data */
+struct additional_sensor_data {
+	const __u8 data1[20];
+	const __u8 data2[18];
+	const __u8 data3[18];
+	const __u8 data4[4];
+	const __u8 data5[6];
+	const __u8 stream[4];
+};
+
+const static struct additional_sensor_data sensor_data[] = {
+    {				/* TAS5130A */
+	.data1 =
+		{0xd0, 0xbb, 0xd1, 0x28, 0xd2, 0x10, 0xd3, 0x10,
+		 0xd4, 0xbb, 0xd5, 0x28, 0xd6, 0x1e, 0xd7, 0x27,
+		 0xd8, 0xc8, 0xd9, 0xfc},
+	.data2 =
+		{0xe0, 0x60, 0xe1, 0xa8, 0xe2, 0xe0, 0xe3, 0x60,
+		 0xe4, 0xa8, 0xe5, 0xe0, 0xe6, 0x60, 0xe7, 0xa8,
+		 0xe8, 0xe0},
+	.data3 =
+		{0xc7, 0x60, 0xc8, 0xa8, 0xc9, 0xe0, 0xca, 0x60,
+		 0xcb, 0xa8, 0xcc, 0xe0, 0xcd, 0x60, 0xce, 0xa8,
+		 0xcf, 0xe0},
+	.data4 =	/* Freq (50/60Hz). Splitted for test purpose */
+		{0x66, 0x00, 0xa8, 0xe8},
+	.data5 =
+		{0x0c, 0x03, 0xab, 0x10, 0x81, 0x20},
+	.stream =
+		{0x0b, 0x04, 0x0a, 0x40},
+    },
+    {				/* OM6802 */
+	.data1 =
+		{0xd0, 0xc2, 0xd1, 0x28, 0xd2, 0x0f, 0xd3, 0x22,
+		 0xd4, 0xcd, 0xd5, 0x27, 0xd6, 0x2c, 0xd7, 0x06,
+		 0xd8, 0xb3, 0xd9, 0xfc},
+	.data2 =
+		{0xe0, 0x80, 0xe1, 0xff, 0xe2, 0xff, 0xe3, 0x80,
+		 0xe4, 0xff, 0xe5, 0xff, 0xe6, 0x80, 0xe7, 0xff,
+		 0xe8, 0xff},
+	.data3 =
+		{0xc7, 0x80, 0xc8, 0xff, 0xc9, 0xff, 0xca, 0x80,
+		 0xcb, 0xff, 0xcc, 0xff, 0xcd, 0x80, 0xce, 0xff,
+		 0xcf, 0xff},
+	.data4 =	/*Freq (50/60Hz). Splitted for test purpose */
+		{0x66, 0xca, 0xa8, 0xf0 },
+	.data5 =	/* this could be removed later */
+		{0x0c, 0x03, 0xab, 0x13, 0x81, 0x23},
+	.stream =
+		{0x0b, 0x04, 0x0a, 0x78},
+    }
+};
+
 #define MAX_EFFECTS 7
 /* easily done by soft, this table could be removed,
  * i keep it here just in case */
@@ -365,6 +418,8 @@
 	{},
 };
 
+static __u8 sensor_reset[] = {0x61, 0x68, 0x62, 0xff, 0x60, 0x07};
+
 /* read 1 byte */
 static int reg_r(struct gspca_dev *gspca_dev,
 		   __u16 index)
@@ -385,12 +440,12 @@
 	usb_control_msg(gspca_dev->dev,
 			usb_sndctrlpipe(gspca_dev->dev, 0),
 			0,
-			USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_INTERFACE,
+			USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
 			0, index,
 			NULL, 0, 500);
 }
 
-static void i2c_w(struct gspca_dev *gspca_dev,
+static void reg_w_buf(struct gspca_dev *gspca_dev,
 		  const __u8 *buffer, __u16 len)
 {
 	if (len <= USB_BUF_SZ) {
@@ -398,7 +453,7 @@
 		usb_control_msg(gspca_dev->dev,
 				usb_sndctrlpipe(gspca_dev->dev, 0),
 				0,
-			   USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_INTERFACE,
+			   USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
 				0x01, 0,
 				gspca_dev->usb_buf, len, 500);
 	} else {
@@ -409,14 +464,15 @@
 		usb_control_msg(gspca_dev->dev,
 				usb_sndctrlpipe(gspca_dev->dev, 0),
 				0,
-			   USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_INTERFACE,
+			   USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_DEVICE,
 				0x01, 0,
 				tmpbuf, len, 500);
 		kfree(tmpbuf);
 	}
 }
 
-static void other_sensor_init(struct gspca_dev *gspca_dev)
+/* Reported as OM6802*/
+static void om6802_sensor_init(struct gspca_dev *gspca_dev)
 {
 	int i;
 	const __u8 *p;
@@ -436,19 +492,32 @@
 		0x90, 0x24,
 		0x91, 0xb2,
 		0x82, 0x32,
-		0xfd, 0x00,
-		0xfd, 0x01,
 		0xfd, 0x41,
 		0x00			/* table end */
 	};
 
+	reg_w_buf(gspca_dev, sensor_reset, sizeof sensor_reset);
+	msleep(5);
+	i = 4;
+	while (--i < 0) {
+		byte = reg_r(gspca_dev, 0x0060);
+		if (!(byte & 0x01))
+			break;
+		msleep(100);
+	}
+	byte = reg_r(gspca_dev, 0x0063);
+	if (byte != 0x17) {
+		err("Bad sensor reset %02x", byte);
+		/* continue? */
+	}
+
 	p = sensor_init;
 	while (*p != 0) {
 		val[1] = *p++;
 		val[3] = *p++;
 		if (*p == 0)
 			reg_w(gspca_dev, 0x3c80);
-		i2c_w(gspca_dev, val, sizeof val);
+		reg_w_buf(gspca_dev, val, sizeof val);
 		i = 4;
 		while (--i >= 0) {
 			msleep(15);
@@ -457,7 +526,8 @@
 				break;
 		}
 	}
-			reg_w(gspca_dev, 0x3c80);
+	msleep(15);
+	reg_w(gspca_dev, 0x3c80);
 }
 
 /* this function is called at probe time */
@@ -485,12 +555,75 @@
 	return 0;
 }
 
+static void setbrightness(struct gspca_dev *gspca_dev)
+{
+	struct sd *sd = (struct sd *) gspca_dev;
+	unsigned int brightness;
+	__u8 set6[4] = { 0x8f, 0x24, 0xc3, 0x00 };
+
+	brightness = sd->brightness;
+	if (brightness < 7) {
+		set6[1] = 0x26;
+		set6[3] = 0x70 - brightness * 0x10;
+	} else {
+		set6[3] = 0x00 + ((brightness - 7) * 0x10);
+	}
+
+	reg_w_buf(gspca_dev, set6, sizeof set6);
+}
+
+static void setcontrast(struct gspca_dev *gspca_dev)
+{
+	struct sd *sd = (struct sd *) gspca_dev;
+	unsigned int contrast = sd->contrast;
+	__u16 reg_to_write;
+
+	if (contrast < 7)
+		reg_to_write = 0x8ea9 - contrast * 0x200;
+	else
+		reg_to_write = 0x00a9 + (contrast - 7) * 0x200;
+
+	reg_w(gspca_dev, reg_to_write);
+}
+
+static void setcolors(struct gspca_dev *gspca_dev)
+{
+	struct sd *sd = (struct sd *) gspca_dev;
+	__u16 reg_to_write;
+
+	reg_to_write = 0x80bb + sd->colors * 0x100;	/* was 0xc0 */
+	reg_w(gspca_dev, reg_to_write);
+}
+
 static void setgamma(struct gspca_dev *gspca_dev)
 {
 	struct sd *sd = (struct sd *) gspca_dev;
 
 	PDEBUG(D_CONF, "Gamma: %d", sd->gamma);
-	i2c_w(gspca_dev, gamma_table[sd->gamma], sizeof gamma_table[0]);
+	reg_w_buf(gspca_dev, gamma_table[sd->gamma], sizeof gamma_table[0]);
+}
+
+static void setwhitebalance(struct gspca_dev *gspca_dev)
+{
+	struct sd *sd = (struct sd *) gspca_dev;
+
+	__u8 white_balance[8] =
+		{0x87, 0x20, 0x88, 0x20, 0x89, 0x20, 0x80, 0x38};
+
+	if (sd->whitebalance)
+		white_balance[7] = 0x3c;
+
+	reg_w_buf(gspca_dev, white_balance, sizeof white_balance);
+}
+
+static void setsharpness(struct gspca_dev *gspca_dev)
+{
+	struct sd *sd = (struct sd *) gspca_dev;
+	__u16 reg_to_write;
+
+	reg_to_write = 0x0aa6 + 0x1000 * sd->sharpness;
+
+	reg_w(gspca_dev, reg_to_write);
 }
 
 /* this function is called at probe and resume time */
@@ -511,8 +644,6 @@
 			{0x08, 0x03, 0x09, 0x03, 0x12, 0x04};
 	static const __u8 n2[] =
 			{0x08, 0x00};
-	static const __u8 nset[] =
-			{ 0x61, 0x68, 0x62, 0xff, 0x60, 0x07 };
 	static const __u8 n3[] =
 			{0x61, 0x68, 0x65, 0x0a, 0x60, 0x04};
 	static const __u8 n4[] =
@@ -525,51 +656,29 @@
 		 0x65, 0x0a, 0xbb, 0x86, 0xaf, 0x58, 0xb0, 0x68,
 		 0x87, 0x40, 0x89, 0x2b, 0x8d, 0xff, 0x83, 0x40,
 		 0xac, 0x84, 0xad, 0x86, 0xaf, 0x46};
-	static const __u8 nset4[] = {
-		0xe0, 0x60, 0xe1, 0xa8, 0xe2, 0xe0, 0xe3, 0x60, 0xe4, 0xa8,
-		0xe5, 0xe0, 0xe6, 0x60, 0xe7, 0xa8,
-		0xe8, 0xe0
-	};
-	/* ojo puede ser 0xe6 en vez de 0xe9 */
-	static const __u8 nset2[] = {
-		0xd0, 0xbb, 0xd1, 0x28, 0xd2, 0x10, 0xd3, 0x10, 0xd4, 0xbb,
-		0xd5, 0x28, 0xd6, 0x1e, 0xd7, 0x27,
-		0xd8, 0xc8, 0xd9, 0xfc
-	};
-	static const __u8 missing[] =
-		{ 0x87, 0x20, 0x88, 0x20, 0x89, 0x20, 0x80, 0x38 };
-	static const __u8 nset3[] = {
-		0xc7, 0x60, 0xc8, 0xa8, 0xc9, 0xe0, 0xca, 0x60, 0xcb, 0xa8,
-		0xcc, 0xe0, 0xcd, 0x60, 0xce, 0xa8,
-		0xcf, 0xe0
-	};
-	static const __u8 nset5[] =
-			{ 0x8f, 0x24, 0xc3, 0x00 };	/* bright */
-	static const __u8 nset7[4] =
-			{ 0x66, 0xca, 0xa8, 0xf8 };	/* 50/60 Hz */
 	static const __u8 nset9[4] =
 			{ 0x0b, 0x04, 0x0a, 0x78 };
 	static const __u8 nset8[6] =
 			{ 0xa8, 0xf0, 0xc6, 0x88, 0xc0, 0x00 };
-	static const __u8 nset10[6] =
-			{ 0x0c, 0x03, 0xab, 0x10, 0x81, 0x20 };
 
 	byte = reg_r(gspca_dev, 0x06);
 	test_byte = reg_r(gspca_dev, 0x07);
 	if (byte == 0x08 && test_byte == 0x07) {
-		PDEBUG(D_CONF, "other sensor");
-		sd->sensor = SENSOR_OTHER;
+		PDEBUG(D_CONF, "sensor om6802");
+		sd->sensor = SENSOR_OM6802;
+	} else if (byte == 0x08 && test_byte == 0x01) {
+		PDEBUG(D_CONF, "sensor tas5130a");
+		sd->sensor = SENSOR_TAS5130A;
 	} else {
-		PDEBUG(D_CONF, "sensor %02x %02x", byte, test_byte);
+		PDEBUG(D_CONF, "unknown sensor %02x %02x", byte, test_byte);
 		sd->sensor = SENSOR_TAS5130A;
 	}
 
-	i2c_w(gspca_dev, n1, sizeof n1);
+	reg_w_buf(gspca_dev, n1, sizeof n1);
 	test_byte = 0;
 	i = 5;
 	while (--i >= 0) {
-		i2c_w(gspca_dev, nset, sizeof nset);
-		msleep(5);
+		reg_w_buf(gspca_dev, sensor_reset, sizeof sensor_reset);
 		test_byte = reg_r(gspca_dev, 0x0063);
 		msleep(100);
 		if (test_byte == 0x17)
@@ -580,7 +689,7 @@
 /*		return -EIO; */
 /*fixme: test - continue */
 	}
-	i2c_w(gspca_dev, n2, sizeof n2);
+	reg_w_buf(gspca_dev, n2, sizeof n2);
 
 	i = 0;
 	while (read_indexs[i] != 0x00) {
@@ -590,58 +699,52 @@
 		i++;
 	}
 
-	i2c_w(gspca_dev, n3, sizeof n3);
-	i2c_w(gspca_dev, n4, sizeof n4);
+	reg_w_buf(gspca_dev, n3, sizeof n3);
+	reg_w_buf(gspca_dev, n4, sizeof n4);
 	reg_r(gspca_dev, 0x0080);
 	reg_w(gspca_dev, 0x2c80);
-	i2c_w(gspca_dev, nset2, sizeof nset2);
-	i2c_w(gspca_dev, nset3, sizeof nset3);
-	i2c_w(gspca_dev, nset4, sizeof nset4);
+
+	reg_w_buf(gspca_dev, sensor_data[sd->sensor].data1,
+			sizeof sensor_data[sd->sensor].data1);
+	reg_w_buf(gspca_dev, sensor_data[sd->sensor].data3,
+			sizeof sensor_data[sd->sensor].data3);
+	reg_w_buf(gspca_dev, sensor_data[sd->sensor].data2,
+			sizeof sensor_data[sd->sensor].data2);
+
 	reg_w(gspca_dev, 0x3880);
 	reg_w(gspca_dev, 0x3880);
 	reg_w(gspca_dev, 0x338e);
-	i2c_w(gspca_dev, nset5, sizeof nset5);
-	reg_w(gspca_dev, 0x00a9);
+
+	setbrightness(gspca_dev);
+	setcontrast(gspca_dev);
 	setgamma(gspca_dev);
-	reg_w(gspca_dev, 0x86bb);
-	reg_w(gspca_dev, 0x4aa6);
+	setcolors(gspca_dev);
+	setsharpness(gspca_dev);
+	setwhitebalance(gspca_dev);
 
-	i2c_w(gspca_dev, missing, sizeof missing);
-
-	reg_w(gspca_dev, 0x2087);
+	reg_w(gspca_dev, 0x2087);	/* tied to white balance? */
 	reg_w(gspca_dev, 0x2088);
 	reg_w(gspca_dev, 0x2089);
 
-	i2c_w(gspca_dev, nset7, sizeof nset7);
-	i2c_w(gspca_dev, nset10, sizeof nset10);
-	i2c_w(gspca_dev, nset8, sizeof nset8);
-	i2c_w(gspca_dev, nset9, sizeof nset9);
+	reg_w_buf(gspca_dev, sensor_data[sd->sensor].data4,
+			sizeof sensor_data[sd->sensor].data4);
+	reg_w_buf(gspca_dev, sensor_data[sd->sensor].data5,
+			sizeof sensor_data[sd->sensor].data5);
+	reg_w_buf(gspca_dev, nset8, sizeof nset8);
+	reg_w_buf(gspca_dev, nset9, sizeof nset9);
 
 	reg_w(gspca_dev, 0x2880);
-	i2c_w(gspca_dev, nset2, sizeof nset2);
-	i2c_w(gspca_dev, nset3, sizeof nset3);
-	i2c_w(gspca_dev, nset4, sizeof nset4);
+
+	reg_w_buf(gspca_dev, sensor_data[sd->sensor].data1,
+			sizeof sensor_data[sd->sensor].data1);
+	reg_w_buf(gspca_dev, sensor_data[sd->sensor].data3,
+			sizeof sensor_data[sd->sensor].data3);
+	reg_w_buf(gspca_dev, sensor_data[sd->sensor].data2,
+			sizeof sensor_data[sd->sensor].data2);
 
 	return 0;
 }
 
-static void setbrightness(struct gspca_dev *gspca_dev)
-{
-	struct sd *sd = (struct sd *) gspca_dev;
-	unsigned int brightness;
-	__u8 set6[4] = { 0x8f, 0x26, 0xc3, 0x00 };
-
-	brightness = sd->brightness;
-	if (brightness < 7) {
-		set6[3] = 0x70 - brightness * 0x10;
-	} else {
-		set6[1] = 0x24;
-		set6[3] = 0x00 + ((brightness - 7) * 0x10);
-	}
-
-	i2c_w(gspca_dev, set6, sizeof set6);
-}
-
 static void setflip(struct gspca_dev *gspca_dev)
 {
 	struct sd *sd = (struct sd *) gspca_dev;
@@ -651,14 +754,15 @@
 	if (sd->mirror)
 		flipcmd[3] = 0x01;
 
-	i2c_w(gspca_dev, flipcmd, sizeof flipcmd);
+	reg_w_buf(gspca_dev, flipcmd, sizeof flipcmd);
 }
 
 static void seteffect(struct gspca_dev *gspca_dev)
 {
 	struct sd *sd = (struct sd *) gspca_dev;
 
-	i2c_w(gspca_dev, effects_table[sd->effect], sizeof effects_table[0]);
+	reg_w_buf(gspca_dev, effects_table[sd->effect],
+				sizeof effects_table[0]);
 	if (sd->effect == 1 || sd->effect == 5) {
 		PDEBUG(D_CONF,
 		       "This effect have been disabled for webcam \"safety\"");
@@ -671,19 +775,6 @@
 		reg_w(gspca_dev, 0xfaa6);
 }
 
-static void setwhitebalance(struct gspca_dev *gspca_dev)
-{
-	struct sd *sd = (struct sd *) gspca_dev;
-
-	__u8 white_balance[8] =
-	    { 0x87, 0x20, 0x88, 0x20, 0x89, 0x20, 0x80, 0x38 };
-
-	if (sd->whitebalance == 1)
-		white_balance[7] = 0x3c;
-
-	i2c_w(gspca_dev, white_balance, sizeof white_balance);
-}
-
 static void setlightfreq(struct gspca_dev *gspca_dev)
 {
 	struct sd *sd = (struct sd *) gspca_dev;
@@ -692,52 +783,46 @@
 	if (sd->freq == 2)	/* 60hz */
 		freq[1] = 0x00;
 
-	i2c_w(gspca_dev, freq, sizeof freq);
+	reg_w_buf(gspca_dev, freq, sizeof freq);
 }
 
-static void setcontrast(struct gspca_dev *gspca_dev)
+/* Is this really needed?
+ * i added some module parameters for test with some users */
+static void poll_sensor(struct gspca_dev *gspca_dev)
 {
 	struct sd *sd = (struct sd *) gspca_dev;
-	unsigned int contrast = sd->contrast;
-	__u16 reg_to_write;
+	static const __u8 poll1[] =
+		{0x67, 0x05, 0x68, 0x81, 0x69, 0x80, 0x6a, 0x82,
+		 0x6b, 0x68, 0x6c, 0x69, 0x72, 0xd9, 0x73, 0x34,
+		 0x74, 0x32, 0x75, 0x92, 0x76, 0x00, 0x09, 0x01,
+		 0x60, 0x14};
+	static const __u8 poll2[] =
+		{0x67, 0x02, 0x68, 0x71, 0x69, 0x72, 0x72, 0xa9,
+		 0x73, 0x02, 0x73, 0x02, 0x60, 0x14};
+	static const __u8 poll3[] =
+		{0x87, 0x3f, 0x88, 0x20, 0x89, 0x2d};
+	static const __u8 poll4[] =
+		{0xa6, 0x0a, 0xea, 0xcf, 0xbe, 0x26, 0xb1, 0x5f,
+		 0xa1, 0xb1, 0xda, 0x6b, 0xdb, 0x98, 0xdf, 0x0c,
+		 0xc2, 0x80, 0xc3, 0x10};
 
-	if (contrast < 7)
-		reg_to_write = 0x8ea9 - (0x200 * contrast);
-	else
-		reg_to_write = (0x00a9 + ((contrast - 7) * 0x200));
-
-	reg_w(gspca_dev, reg_to_write);
-}
-
-static void setcolors(struct gspca_dev *gspca_dev)
-{
-	struct sd *sd = (struct sd *) gspca_dev;
-	__u16 reg_to_write;
-
-	reg_to_write = 0xc0bb + sd->colors * 0x100;
-	reg_w(gspca_dev, reg_to_write);
-}
-
-static void setsharpness(struct gspca_dev *gspca_dev)
-{
-	struct sd *sd = (struct sd *) gspca_dev;
-	__u16 reg_to_write;
-
-	reg_to_write = 0x0aa6 + 0x1000 * sd->sharpness;
-
-	reg_w(gspca_dev, reg_to_write);
+	if (sd->sensor != SENSOR_TAS5130A) {
+		PDEBUG(D_STREAM, "[Sensor requires polling]");
+		reg_w_buf(gspca_dev, poll1, sizeof poll1);
+		reg_w_buf(gspca_dev, poll2, sizeof poll2);
+		reg_w_buf(gspca_dev, poll3, sizeof poll3);
+		reg_w_buf(gspca_dev, poll4, sizeof poll4);
+	}
 }
 
 static int sd_start(struct gspca_dev *gspca_dev)
 {
 	struct sd *sd = (struct sd *) gspca_dev;
 	int i, mode;
-	static const __u8 t1[] = { 0x66, 0x00, 0xa8, 0xe8 };
 	__u8 t2[] = { 0x07, 0x00, 0x0d, 0x60, 0x0e, 0x80 };
 	static const __u8 t3[] =
 		{ 0xb3, 0x07, 0xb4, 0x00, 0xb5, 0x88, 0xb6, 0x02, 0xb7, 0x06,
 		  0xb8, 0x00, 0xb9, 0xe7, 0xba, 0x01 };
-	static const __u8 t4[] = { 0x0b, 0x04, 0x0a, 0x40 };
 
 	mode = gspca_dev->cam.cam_mode[(int) gspca_dev->curr_mode]. priv;
 	switch (mode) {
@@ -760,25 +845,29 @@
 	if (sd->sensor == SENSOR_TAS5130A) {
 		i = 0;
 		while (tas5130a_sensor_init[i][0] != 0) {
-			i2c_w(gspca_dev, tas5130a_sensor_init[i],
+			reg_w_buf(gspca_dev, tas5130a_sensor_init[i],
 					 sizeof tas5130a_sensor_init[0]);
 			i++;
 		}
 		reg_w(gspca_dev, 0x3c80);
 		/* just in case and to keep sync with logs (for mine) */
-		i2c_w(gspca_dev, tas5130a_sensor_init[3],
+		reg_w_buf(gspca_dev, tas5130a_sensor_init[3],
 				 sizeof tas5130a_sensor_init[0]);
 		reg_w(gspca_dev, 0x3c80);
 	} else {
-		other_sensor_init(gspca_dev);
+		om6802_sensor_init(gspca_dev);
 	}
-	/* just in case and to keep sync with logs  (for mine) */
-	i2c_w(gspca_dev, t1, sizeof t1);
-	i2c_w(gspca_dev, t2, sizeof t2);
+	reg_w_buf(gspca_dev, sensor_data[sd->sensor].data4,
+			sizeof sensor_data[sd->sensor].data4);
 	reg_r(gspca_dev, 0x0012);
-	i2c_w(gspca_dev, t3, sizeof t3);
+	reg_w_buf(gspca_dev, t2, sizeof t2);
+	reg_w_buf(gspca_dev, t3, sizeof t3);
 	reg_w(gspca_dev, 0x0013);
-	i2c_w(gspca_dev, t4, sizeof t4);
+	msleep(15);
+	reg_w_buf(gspca_dev, sensor_data[sd->sensor].stream,
+			sizeof sensor_data[sd->sensor].stream);
+	poll_sensor(gspca_dev);
+
 	/* restart on each start, just in case, sometimes regs goes wrong
 	 * when using controls from app */
 	setbrightness(gspca_dev);
@@ -787,6 +876,19 @@
 	return 0;
 }
 
+static void sd_stopN(struct gspca_dev *gspca_dev)
+{
+	struct sd *sd = (struct sd *) gspca_dev;
+
+	reg_w_buf(gspca_dev, sensor_data[sd->sensor].stream,
+			sizeof sensor_data[sd->sensor].stream);
+	msleep(20);
+	reg_w_buf(gspca_dev, sensor_data[sd->sensor].stream,
+			sizeof sensor_data[sd->sensor].stream);
+	msleep(20);
+	reg_w(gspca_dev, 0x0309);
+}
+
 static void sd_pkt_scan(struct gspca_dev *gspca_dev,
 			struct gspca_frame *frame,	/* target */
 			__u8 *data,			/* isoc packet */
@@ -1036,6 +1138,7 @@
 	.config = sd_config,
 	.init = sd_init,
 	.start = sd_start,
+	.stopN = sd_stopN,
 	.pkt_scan = sd_pkt_scan,
 	.querymenu = sd_querymenu,
 };
diff --git a/drivers/media/video/ivtv/ivtv-fileops.c b/drivers/media/video/ivtv/ivtv-fileops.c
index b7457fc..1c404e4 100644
--- a/drivers/media/video/ivtv/ivtv-fileops.c
+++ b/drivers/media/video/ivtv/ivtv-fileops.c
@@ -600,13 +600,14 @@
 	since we may get here before the stream has been fully set-up */
 	if (mode == OUT_YUV && s->q_full.length == 0 && itv->dma_data_req_size) {
 		while (count >= itv->dma_data_req_size) {
-			if (!ivtv_yuv_udma_stream_frame (itv, (void __user *)user_buf)) {
-				bytes_written += itv->dma_data_req_size;
-				user_buf += itv->dma_data_req_size;
-				count -= itv->dma_data_req_size;
-			} else {
-				break;
-			}
+			rc = ivtv_yuv_udma_stream_frame(itv, (void __user *)user_buf);
+
+			if (rc < 0)
+				return rc;
+
+			bytes_written += itv->dma_data_req_size;
+			user_buf += itv->dma_data_req_size;
+			count -= itv->dma_data_req_size;
 		}
 		if (count == 0) {
 			IVTV_DEBUG_HI_FILE("Wrote %d bytes to %s (%d)\n", bytes_written, s->name, s->q_full.bytesused);
diff --git a/drivers/media/video/ivtv/ivtv-ioctl.c b/drivers/media/video/ivtv/ivtv-ioctl.c
index 8696527..208fb54 100644
--- a/drivers/media/video/ivtv/ivtv-ioctl.c
+++ b/drivers/media/video/ivtv/ivtv-ioctl.c
@@ -509,7 +509,6 @@
 static int ivtv_try_fmt_vid_out(struct file *file, void *fh, struct v4l2_format *fmt)
 {
 	struct ivtv_open_id *id = fh;
-	struct ivtv *itv = id->itv;
 	s32 w = fmt->fmt.pix.width;
 	s32 h = fmt->fmt.pix.height;
 	int field = fmt->fmt.pix.field;
@@ -517,7 +516,22 @@
 
 	w = min(w, 720);
 	w = max(w, 2);
-	h = min(h, itv->is_out_50hz ? 576 : 480);
+	/* Why can the height be 576 even when the output is NTSC?
+
+	   Internally the buffers of the PVR350 are always set to 720x576. The
+	   decoded video frame will always be placed in the top left corner of
+	   this buffer. For any video which is not 720x576, the buffer will
+	   then be cropped to remove the unused right and lower areas, with
+	   the remaining image being scaled by the hardware to fit the display
+	   area. The video can be scaled both up and down, so a 720x480 video
+	   can be displayed full-screen on PAL and a 720x576 video can be
+	   displayed without cropping on NTSC.
+
+	   Note that the scaling only occurs on the video stream, the osd
+	   resolution is locked to the broadcast standard and not scaled.
+
+	   Thanks to Ian Armstrong for this explanation. */
+	h = min(h, 576);
 	h = max(h, 2);
 	if (id->type == IVTV_DEC_STREAM_TYPE_YUV)
 		fmt->fmt.pix.field = field;
diff --git a/drivers/media/video/ks0127.c b/drivers/media/video/ks0127.c
index 2fd4b4a..bae2d2b 100644
--- a/drivers/media/video/ks0127.c
+++ b/drivers/media/video/ks0127.c
@@ -33,27 +33,20 @@
  * V1.1 Gerard v.d. Horst  Added some debugoutput, reset the video-standard
  */
 
-#ifndef __KERNEL__
-#define __KERNEL__
-#endif
-
 #include <linux/init.h>
 #include <linux/module.h>
 #include <linux/delay.h>
 #include <linux/errno.h>
 #include <linux/kernel.h>
-#include <linux/slab.h>
-#include <linux/proc_fs.h>
-#include "ks0127.h"
-
 #include <linux/i2c.h>
 #include <linux/video_decoder.h>
+#include <media/v4l2-common.h>
+#include <media/v4l2-i2c-drv-legacy.h>
+#include "ks0127.h"
 
-#define dprintk     if (debug) printk
-
-/* i2c identification */
-#define I2C_KS0127_ADDON   0xD8
-#define I2C_KS0127_ONBOARD 0xDA
+MODULE_DESCRIPTION("KS0127 video decoder driver");
+MODULE_AUTHOR("Ryan Drake");
+MODULE_LICENSE("GPL");
 
 #define KS_TYPE_UNKNOWN	0
 #define KS_TYPE_0122S	1
@@ -204,8 +197,6 @@
 };
 
 struct ks0127 {
-	struct i2c_client *client;
-	unsigned char	addr;
 	int		format_width;
 	int		format_height;
 	int		cap_width;
@@ -220,16 +211,18 @@
 
 module_param(debug, int, 0);
 MODULE_PARM_DESC(debug, "Debug output");
-MODULE_LICENSE("GPL");
 
 static u8 reg_defaults[64];
 
-
-
 static void init_reg_defaults(void)
 {
+	static int initialized;
 	u8 *table = reg_defaults;
 
+	if (initialized)
+		return;
+	initialized = 1;
+
 	table[KS_CMDA]     = 0x2c;  /* VSE=0, CCIR 601, autodetect standard */
 	table[KS_CMDB]     = 0x12;  /* VALIGN=0, AGC control and input */
 	table[KS_CMDC]     = 0x00;  /* Test options */
@@ -308,50 +301,53 @@
  * An explanation from kayork@mail.utexas.edu:
  *
  * During I2C reads, the KS0127 only samples for a stop condition
- * during the place where the acknoledge bit should be. Any standard
+ * during the place where the acknowledge bit should be. Any standard
  * I2C implementation (correctly) throws in another clock transition
  * at the 9th bit, and the KS0127 will not recognize the stop condition
  * and will continue to clock out data.
  *
  * So we have to do the read ourself.  Big deal.
-	   workaround in i2c-algo-bit
+ *	   workaround in i2c-algo-bit
  */
 
 
-static u8 ks0127_read(struct ks0127 *ks, u8 reg)
+static u8 ks0127_read(struct i2c_client *c, u8 reg)
 {
-	struct i2c_client *c = ks->client;
 	char val = 0;
 	struct i2c_msg msgs[] = {
-		{c->addr, 0, sizeof(reg), &reg},
-		{c->addr, I2C_M_RD | I2C_M_NO_RD_ACK, sizeof(val), &val}};
+		{ c->addr, 0, sizeof(reg), &reg },
+		{ c->addr, I2C_M_RD | I2C_M_NO_RD_ACK, sizeof(val), &val }
+	};
 	int ret;
 
 	ret = i2c_transfer(c->adapter, msgs, ARRAY_SIZE(msgs));
 	if (ret != ARRAY_SIZE(msgs))
-		dprintk("ks0127_write error\n");
+		v4l_dbg(1, debug, c, "read error\n");
 
 	return val;
 }
 
 
-static void ks0127_write(struct ks0127 *ks, u8 reg, u8 val)
+static void ks0127_write(struct i2c_client *c, u8 reg, u8 val)
 {
-	char msg[] = {reg, val};
+	struct ks0127 *ks = i2c_get_clientdata(c);
+	char msg[] = { reg, val };
 
-	if (i2c_master_send(ks->client, msg, sizeof(msg)) != sizeof(msg))
-		dprintk("ks0127_write error\n");
+	if (i2c_master_send(c, msg, sizeof(msg)) != sizeof(msg))
+		v4l_dbg(1, debug, c, "write error\n");
 
 	ks->regs[reg] = val;
 }
 
 
 /* generic bit-twiddling */
-static void ks0127_and_or(struct ks0127 *ks, u8 reg, u8 and_v, u8 or_v)
+static void ks0127_and_or(struct i2c_client *client, u8 reg, u8 and_v, u8 or_v)
 {
+	struct ks0127 *ks = i2c_get_clientdata(client);
+
 	u8 val = ks->regs[reg];
 	val = (val & and_v) | or_v;
-	ks0127_write(ks, reg, val);
+	ks0127_write(client, reg, val);
 }
 
 
@@ -359,73 +355,69 @@
 /****************************************************************************
 * ks0127 private api
 ****************************************************************************/
-static void ks0127_reset(struct ks0127* ks)
+static void ks0127_reset(struct i2c_client *c)
 {
-	int i;
+	struct ks0127 *ks = i2c_get_clientdata(c);
 	u8 *table = reg_defaults;
+	int i;
 
 	ks->ks_type = KS_TYPE_UNKNOWN;
 
-	dprintk("ks0127: reset\n");
+	v4l_dbg(1, debug, c, "reset\n");
 	msleep(1);
 
 	/* initialize all registers to known values */
 	/* (except STAT, 0x21, 0x22, TEST and 0x38,0x39) */
 
-	for(i = 1; i < 33; i++)
-		ks0127_write(ks, i, table[i]);
+	for (i = 1; i < 33; i++)
+		ks0127_write(c, i, table[i]);
 
-	for(i = 35; i < 40; i++)
-		ks0127_write(ks, i, table[i]);
+	for (i = 35; i < 40; i++)
+		ks0127_write(c, i, table[i]);
 
-	for(i = 41; i < 56; i++)
-		ks0127_write(ks, i, table[i]);
+	for (i = 41; i < 56; i++)
+		ks0127_write(c, i, table[i]);
 
-	for(i = 58; i < 64; i++)
-		ks0127_write(ks, i, table[i]);
+	for (i = 58; i < 64; i++)
+		ks0127_write(c, i, table[i]);
 
 
-	if ((ks0127_read(ks, KS_STAT) & 0x80) == 0) {
+	if ((ks0127_read(c, KS_STAT) & 0x80) == 0) {
 		ks->ks_type = KS_TYPE_0122S;
-		dprintk("ks0127: ks0122s Found\n");
+		v4l_dbg(1, debug, c, "ks0122s found\n");
 		return;
 	}
 
-	switch(ks0127_read(ks, KS_CMDE) & 0x0f) {
-
+	switch (ks0127_read(c, KS_CMDE) & 0x0f) {
 	case 0:
 		ks->ks_type = KS_TYPE_0127;
-		dprintk("ks0127: ks0127 found\n");
+		v4l_dbg(1, debug, c, "ks0127 found\n");
 		break;
 
 	case 9:
 		ks->ks_type = KS_TYPE_0127B;
-		dprintk("ks0127: ks0127B Revision A found\n");
+		v4l_dbg(1, debug, c, "ks0127B Revision A found\n");
 		break;
 
 	default:
-		dprintk("ks0127: unknown revision\n");
+		v4l_dbg(1, debug, c, "unknown revision\n");
 		break;
 	}
 }
 
-static int ks0127_command(struct i2c_client *client,
-			  unsigned int cmd, void *arg)
+static int ks0127_command(struct i2c_client *c, unsigned cmd, void *arg)
 {
-	struct ks0127 *ks = i2c_get_clientdata(client);
-
-	int		*iarg = (int*)arg;
-
+	struct ks0127 *ks = i2c_get_clientdata(c);
+	int		*iarg = (int *)arg;
 	int		status;
 
 	if (!ks)
 		return -ENODEV;
 
 	switch (cmd) {
-
 	case DECODER_INIT:
-		dprintk("ks0127: command DECODER_INIT\n");
-		ks0127_reset(ks);
+		v4l_dbg(1, debug, c, "DECODER_INIT\n");
+		ks0127_reset(c);
 		break;
 
 	case DECODER_SET_INPUT:
@@ -436,161 +428,160 @@
 		case KS_INPUT_COMPOSITE_4:
 		case KS_INPUT_COMPOSITE_5:
 		case KS_INPUT_COMPOSITE_6:
-			dprintk("ks0127: command DECODER_SET_INPUT %d: "
-				"Composite\n", *iarg);
+			v4l_dbg(1, debug, c,
+				"DECODER_SET_INPUT %d: Composite\n", *iarg);
 			/* autodetect 50/60 Hz */
-			ks0127_and_or(ks, KS_CMDA,   0xfc, 0x00);
+			ks0127_and_or(c, KS_CMDA,   0xfc, 0x00);
 			/* VSE=0 */
-			ks0127_and_or(ks, KS_CMDA,   ~0x40, 0x00);
+			ks0127_and_or(c, KS_CMDA,   ~0x40, 0x00);
 			/* set input line */
-			ks0127_and_or(ks, KS_CMDB,   0xb0, *iarg);
+			ks0127_and_or(c, KS_CMDB,   0xb0, *iarg);
 			/* non-freerunning mode */
-			ks0127_and_or(ks, KS_CMDC,   0x70, 0x0a);
+			ks0127_and_or(c, KS_CMDC,   0x70, 0x0a);
 			/* analog input */
-			ks0127_and_or(ks, KS_CMDD,   0x03, 0x00);
+			ks0127_and_or(c, KS_CMDD,   0x03, 0x00);
 			/* enable chroma demodulation */
-			ks0127_and_or(ks, KS_CTRACK, 0xcf, 0x00);
+			ks0127_and_or(c, KS_CTRACK, 0xcf, 0x00);
 			/* chroma trap, HYBWR=1 */
-			ks0127_and_or(ks, KS_LUMA,   0x00,
+			ks0127_and_or(c, KS_LUMA,   0x00,
 				       (reg_defaults[KS_LUMA])|0x0c);
 			/* scaler fullbw, luma comb off */
-			ks0127_and_or(ks, KS_VERTIA, 0x08, 0x81);
+			ks0127_and_or(c, KS_VERTIA, 0x08, 0x81);
 			/* manual chroma comb .25 .5 .25 */
-			ks0127_and_or(ks, KS_VERTIC, 0x0f, 0x90);
+			ks0127_and_or(c, KS_VERTIC, 0x0f, 0x90);
 
 			/* chroma path delay */
-			ks0127_and_or(ks, KS_CHROMB, 0x0f, 0x90);
+			ks0127_and_or(c, KS_CHROMB, 0x0f, 0x90);
 
-			ks0127_write(ks, KS_UGAIN, reg_defaults[KS_UGAIN]);
-			ks0127_write(ks, KS_VGAIN, reg_defaults[KS_VGAIN]);
-			ks0127_write(ks, KS_UVOFFH, reg_defaults[KS_UVOFFH]);
-			ks0127_write(ks, KS_UVOFFL, reg_defaults[KS_UVOFFL]);
+			ks0127_write(c, KS_UGAIN, reg_defaults[KS_UGAIN]);
+			ks0127_write(c, KS_VGAIN, reg_defaults[KS_VGAIN]);
+			ks0127_write(c, KS_UVOFFH, reg_defaults[KS_UVOFFH]);
+			ks0127_write(c, KS_UVOFFL, reg_defaults[KS_UVOFFL]);
 			break;
 
 		case KS_INPUT_SVIDEO_1:
 		case KS_INPUT_SVIDEO_2:
 		case KS_INPUT_SVIDEO_3:
-			dprintk("ks0127: command DECODER_SET_INPUT %d: "
-				"S-Video\n", *iarg);
+			v4l_dbg(1, debug, c,
+				"DECODER_SET_INPUT %d: S-Video\n", *iarg);
 			/* autodetect 50/60 Hz */
-			ks0127_and_or(ks, KS_CMDA,   0xfc, 0x00);
+			ks0127_and_or(c, KS_CMDA,   0xfc, 0x00);
 			/* VSE=0 */
-			ks0127_and_or(ks, KS_CMDA,   ~0x40, 0x00);
+			ks0127_and_or(c, KS_CMDA,   ~0x40, 0x00);
 			/* set input line */
-			ks0127_and_or(ks, KS_CMDB,   0xb0, *iarg);
+			ks0127_and_or(c, KS_CMDB,   0xb0, *iarg);
 			/* non-freerunning mode */
-			ks0127_and_or(ks, KS_CMDC,   0x70, 0x0a);
+			ks0127_and_or(c, KS_CMDC,   0x70, 0x0a);
 			/* analog input */
-			ks0127_and_or(ks, KS_CMDD,   0x03, 0x00);
+			ks0127_and_or(c, KS_CMDD,   0x03, 0x00);
 			/* enable chroma demodulation */
-			ks0127_and_or(ks, KS_CTRACK, 0xcf, 0x00);
-			ks0127_and_or(ks, KS_LUMA, 0x00,
+			ks0127_and_or(c, KS_CTRACK, 0xcf, 0x00);
+			ks0127_and_or(c, KS_LUMA, 0x00,
 				       reg_defaults[KS_LUMA]);
 			/* disable luma comb */
-			ks0127_and_or(ks, KS_VERTIA, 0x08,
+			ks0127_and_or(c, KS_VERTIA, 0x08,
 				       (reg_defaults[KS_VERTIA]&0xf0)|0x01);
-			ks0127_and_or(ks, KS_VERTIC, 0x0f,
+			ks0127_and_or(c, KS_VERTIC, 0x0f,
 				       reg_defaults[KS_VERTIC]&0xf0);
 
-			ks0127_and_or(ks, KS_CHROMB, 0x0f,
+			ks0127_and_or(c, KS_CHROMB, 0x0f,
 				       reg_defaults[KS_CHROMB]&0xf0);
 
-			ks0127_write(ks, KS_UGAIN, reg_defaults[KS_UGAIN]);
-			ks0127_write(ks, KS_VGAIN, reg_defaults[KS_VGAIN]);
-			ks0127_write(ks, KS_UVOFFH, reg_defaults[KS_UVOFFH]);
-			ks0127_write(ks, KS_UVOFFL, reg_defaults[KS_UVOFFL]);
+			ks0127_write(c, KS_UGAIN, reg_defaults[KS_UGAIN]);
+			ks0127_write(c, KS_VGAIN, reg_defaults[KS_VGAIN]);
+			ks0127_write(c, KS_UVOFFH, reg_defaults[KS_UVOFFH]);
+			ks0127_write(c, KS_UVOFFL, reg_defaults[KS_UVOFFL]);
 			break;
 
 		case KS_INPUT_YUV656:
-			dprintk("ks0127: command DECODER_SET_INPUT 15: "
-				"YUV656\n");
+			v4l_dbg(1, debug, c,
+				"DECODER_SET_INPUT 15: YUV656\n");
 			if (ks->norm == VIDEO_MODE_NTSC ||
 			    ks->norm == KS_STD_PAL_M)
 				/* force 60 Hz */
-				ks0127_and_or(ks, KS_CMDA,   0xfc, 0x03);
+				ks0127_and_or(c, KS_CMDA,   0xfc, 0x03);
 			else
 				/* force 50 Hz */
-				ks0127_and_or(ks, KS_CMDA,   0xfc, 0x02);
+				ks0127_and_or(c, KS_CMDA,   0xfc, 0x02);
 
-			ks0127_and_or(ks, KS_CMDA,   0xff, 0x40); /* VSE=1 */
+			ks0127_and_or(c, KS_CMDA,   0xff, 0x40); /* VSE=1 */
 			/* set input line and VALIGN */
-			ks0127_and_or(ks, KS_CMDB,   0xb0, (*iarg | 0x40));
+			ks0127_and_or(c, KS_CMDB,   0xb0, (*iarg | 0x40));
 			/* freerunning mode, */
 			/* TSTGEN = 1 TSTGFR=11 TSTGPH=0 TSTGPK=0  VMEM=1*/
-			ks0127_and_or(ks, KS_CMDC,   0x70, 0x87);
+			ks0127_and_or(c, KS_CMDC,   0x70, 0x87);
 			/* digital input, SYNDIR = 0 INPSL=01 CLKDIR=0 EAV=0 */
-			ks0127_and_or(ks, KS_CMDD,   0x03, 0x08);
+			ks0127_and_or(c, KS_CMDD,   0x03, 0x08);
 			/* disable chroma demodulation */
-			ks0127_and_or(ks, KS_CTRACK, 0xcf, 0x30);
+			ks0127_and_or(c, KS_CTRACK, 0xcf, 0x30);
 			/* HYPK =01 CTRAP = 0 HYBWR=0 PED=1 RGBH=1 UNIT=1 */
-			ks0127_and_or(ks, KS_LUMA,   0x00, 0x71);
-			ks0127_and_or(ks, KS_VERTIC, 0x0f,
+			ks0127_and_or(c, KS_LUMA,   0x00, 0x71);
+			ks0127_and_or(c, KS_VERTIC, 0x0f,
 				       reg_defaults[KS_VERTIC]&0xf0);
 
 			/* scaler fullbw, luma comb off */
-			ks0127_and_or(ks, KS_VERTIA, 0x08, 0x81);
+			ks0127_and_or(c, KS_VERTIA, 0x08, 0x81);
 
-			ks0127_and_or(ks, KS_CHROMB, 0x0f,
+			ks0127_and_or(c, KS_CHROMB, 0x0f,
 				       reg_defaults[KS_CHROMB]&0xf0);
 
-			ks0127_and_or(ks, KS_CON, 0x00, 0x00);
-			ks0127_and_or(ks, KS_BRT, 0x00, 32);	/* spec: 34 */
+			ks0127_and_or(c, KS_CON, 0x00, 0x00);
+			ks0127_and_or(c, KS_BRT, 0x00, 32);	/* spec: 34 */
 				/* spec: 229 (e5) */
-			ks0127_and_or(ks, KS_SAT, 0x00, 0xe8);
-			ks0127_and_or(ks, KS_HUE, 0x00, 0);
+			ks0127_and_or(c, KS_SAT, 0x00, 0xe8);
+			ks0127_and_or(c, KS_HUE, 0x00, 0);
 
-			ks0127_and_or(ks, KS_UGAIN, 0x00, 238);
-			ks0127_and_or(ks, KS_VGAIN, 0x00, 0x00);
+			ks0127_and_or(c, KS_UGAIN, 0x00, 238);
+			ks0127_and_or(c, KS_VGAIN, 0x00, 0x00);
 
 			/*UOFF:0x30, VOFF:0x30, TSTCGN=1 */
-			ks0127_and_or(ks, KS_UVOFFH, 0x00, 0x4f);
-			ks0127_and_or(ks, KS_UVOFFL, 0x00, 0x00);
+			ks0127_and_or(c, KS_UVOFFH, 0x00, 0x4f);
+			ks0127_and_or(c, KS_UVOFFL, 0x00, 0x00);
 			break;
 
 		default:
-			dprintk("ks0127: command DECODER_SET_INPUT: "
-				"Unknown input %d\n", *iarg);
+			v4l_dbg(1, debug, c,
+				"DECODER_SET_INPUT: Unknown input %d\n", *iarg);
 			break;
 		}
 
 		/* hack: CDMLPF sometimes spontaneously switches on; */
 		/* force back off */
-		ks0127_write(ks, KS_DEMOD, reg_defaults[KS_DEMOD]);
+		ks0127_write(c, KS_DEMOD, reg_defaults[KS_DEMOD]);
 		break;
 
 	case DECODER_SET_OUTPUT:
 		switch(*iarg) {
 		case KS_OUTPUT_YUV656E:
-			dprintk("ks0127: command DECODER_SET_OUTPUT: "
-				"OUTPUT_YUV656E (Missing)\n");
+			v4l_dbg(1, debug, c,
+				"DECODER_SET_OUTPUT: OUTPUT_YUV656E (Missing)\n");
 			return -EINVAL;
-			break;
 
 		case KS_OUTPUT_EXV:
-			dprintk("ks0127: command DECODER_SET_OUTPUT: "
-				"OUTPUT_EXV\n");
-			ks0127_and_or(ks, KS_OFMTA, 0xf0, 0x09);
+			v4l_dbg(1, debug, c,
+				"DECODER_SET_OUTPUT: OUTPUT_EXV\n");
+			ks0127_and_or(c, KS_OFMTA, 0xf0, 0x09);
 			break;
 		}
 		break;
 
-	case DECODER_SET_NORM: //sam This block mixes old and new norm names...
+	case DECODER_SET_NORM: /* sam This block mixes old and new norm names... */
 		/* Set to automatic SECAM/Fsc mode */
-		ks0127_and_or(ks, KS_DEMOD, 0xf0, 0x00);
+		ks0127_and_or(c, KS_DEMOD, 0xf0, 0x00);
 
 		ks->norm = *iarg;
-		switch(*iarg)
-		{
+		switch (*iarg) {
 		/* this is untested !! */
 		/* It just detects PAL_N/NTSC_M (no special frequencies) */
 		/* And you have to set the standard a second time afterwards */
 		case VIDEO_MODE_AUTO:
-			dprintk("ks0127: command DECODER_SET_NORM: AUTO\n");
+			v4l_dbg(1, debug, c,
+				"DECODER_SET_NORM: AUTO\n");
 
 			/* The chip determines the format */
 			/* based on the current field rate */
-			ks0127_and_or(ks, KS_CMDA,   0xfc, 0x00);
-			ks0127_and_or(ks, KS_CHROMA, 0x9f, 0x20);
+			ks0127_and_or(c, KS_CMDA,   0xfc, 0x00);
+			ks0127_and_or(c, KS_CHROMA, 0x9f, 0x20);
 			/* This is wrong for PAL ! As I said, */
 			/* you need to set the standard once again !! */
 			ks->format_height = 240;
@@ -598,84 +589,86 @@
 			break;
 
 		case VIDEO_MODE_NTSC:
-			dprintk("ks0127: command DECODER_SET_NORM: NTSC_M\n");
-			ks0127_and_or(ks, KS_CHROMA, 0x9f, 0x20);
+			v4l_dbg(1, debug, c,
+				"DECODER_SET_NORM: NTSC_M\n");
+			ks0127_and_or(c, KS_CHROMA, 0x9f, 0x20);
 			ks->format_height = 240;
 			ks->format_width = 704;
 			break;
 
 		case KS_STD_NTSC_N:
-			dprintk("ks0127: command KS0127_SET_STANDARD: "
-				"NTSC_N (fixme)\n");
-			ks0127_and_or(ks, KS_CHROMA, 0x9f, 0x40);
+			v4l_dbg(1, debug, c,
+				"KS0127_SET_NORM: NTSC_N (fixme)\n");
+			ks0127_and_or(c, KS_CHROMA, 0x9f, 0x40);
 			ks->format_height = 240;
 			ks->format_width = 704;
 			break;
 
 		case VIDEO_MODE_PAL:
-			dprintk("ks0127: command DECODER_SET_NORM: PAL_N\n");
-			ks0127_and_or(ks, KS_CHROMA, 0x9f, 0x20);
+			v4l_dbg(1, debug, c,
+				"DECODER_SET_NORM: PAL_N\n");
+			ks0127_and_or(c, KS_CHROMA, 0x9f, 0x20);
 			ks->format_height = 290;
 			ks->format_width = 704;
 			break;
 
 		case KS_STD_PAL_M:
-			dprintk("ks0127: command KS0127_SET_STANDARD: "
-				"PAL_M (fixme)\n");
-			ks0127_and_or(ks, KS_CHROMA, 0x9f, 0x40);
+			v4l_dbg(1, debug, c,
+				"KS0127_SET_NORM: PAL_M (fixme)\n");
+			ks0127_and_or(c, KS_CHROMA, 0x9f, 0x40);
 			ks->format_height = 290;
 			ks->format_width = 704;
 			break;
 
 		case VIDEO_MODE_SECAM:
-			dprintk("ks0127: command KS0127_SET_STANDARD: "
-				"SECAM\n");
+			v4l_dbg(1, debug, c,
+				"KS0127_SET_NORM: SECAM\n");
 			ks->format_height = 290;
 			ks->format_width = 704;
 
 			/* set to secam autodetection */
-			ks0127_and_or(ks, KS_CHROMA, 0xdf, 0x20);
-			ks0127_and_or(ks, KS_DEMOD, 0xf0, 0x00);
+			ks0127_and_or(c, KS_CHROMA, 0xdf, 0x20);
+			ks0127_and_or(c, KS_DEMOD, 0xf0, 0x00);
 			schedule_timeout_interruptible(HZ/10+1);
 
 			/* did it autodetect? */
-			if (ks0127_read(ks, KS_DEMOD) & 0x40)
+			if (ks0127_read(c, KS_DEMOD) & 0x40)
 				break;
 
 			/* force to secam mode */
-			ks0127_and_or(ks, KS_DEMOD, 0xf0, 0x0f);
+			ks0127_and_or(c, KS_DEMOD, 0xf0, 0x0f);
 			break;
 
 		default:
-			dprintk("ks0127: command DECODER_SET_NORM: "
-				"Unknown norm %d\n", *iarg);
+			v4l_dbg(1, debug, c,
+				"DECODER_SET_NORM: Unknown norm %d\n", *iarg);
 			break;
 		}
 		break;
 
 	case DECODER_SET_PICTURE:
-		dprintk("ks0127: command DECODER_SET_PICTURE "
-			"not yet supported (fixme)\n");
+		v4l_dbg(1, debug, c,
+			"DECODER_SET_PICTURE: not yet supported\n");
 		return -EINVAL;
 
-	//sam todo: KS0127_SET_BRIGHTNESS: Merge into DECODER_SET_PICTURE
-	//sam todo: KS0127_SET_CONTRAST: Merge into DECODER_SET_PICTURE
-	//sam todo: KS0127_SET_HUE: Merge into DECODER_SET_PICTURE?
-	//sam todo: KS0127_SET_SATURATION: Merge into DECODER_SET_PICTURE
-	//sam todo: KS0127_SET_AGC_MODE:
-	//sam todo: KS0127_SET_AGC:
-	//sam todo: KS0127_SET_CHROMA_MODE:
-	//sam todo: KS0127_SET_PIXCLK_MODE:
-	//sam todo: KS0127_SET_GAMMA_MODE:
-	//sam todo: KS0127_SET_UGAIN:
-	//sam todo: KS0127_SET_VGAIN:
-	//sam todo: KS0127_SET_INVALY:
-	//sam todo: KS0127_SET_INVALU:
-	//sam todo: KS0127_SET_INVALV:
-	//sam todo: KS0127_SET_UNUSEY:
-	//sam todo: KS0127_SET_UNUSEU:
-	//sam todo: KS0127_SET_UNUSEV:
-	//sam todo: KS0127_SET_VSALIGN_MODE:
+	/* sam todo: KS0127_SET_BRIGHTNESS: Merge into DECODER_SET_PICTURE */
+	/* sam todo: KS0127_SET_CONTRAST: Merge into DECODER_SET_PICTURE */
+	/* sam todo: KS0127_SET_HUE: Merge into DECODER_SET_PICTURE? */
+	/* sam todo: KS0127_SET_SATURATION: Merge into DECODER_SET_PICTURE */
+	/* sam todo: KS0127_SET_AGC_MODE: */
+	/* sam todo: KS0127_SET_AGC: */
+	/* sam todo: KS0127_SET_CHROMA_MODE: */
+	/* sam todo: KS0127_SET_PIXCLK_MODE: */
+	/* sam todo: KS0127_SET_GAMMA_MODE: */
+	/* sam todo: KS0127_SET_UGAIN: */
+	/* sam todo: KS0127_SET_VGAIN: */
+	/* sam todo: KS0127_SET_INVALY: */
+	/* sam todo: KS0127_SET_INVALU: */
+	/* sam todo: KS0127_SET_INVALV: */
+	/* sam todo: KS0127_SET_UNUSEY: */
+	/* sam todo: KS0127_SET_UNUSEU: */
+	/* sam todo: KS0127_SET_UNUSEV: */
+	/* sam todo: KS0127_SET_VSALIGN_MODE: */
 
 	case DECODER_ENABLE_OUTPUT:
 	{
@@ -684,34 +677,32 @@
 		iarg = arg;
 		enable = (*iarg != 0);
 		if (enable) {
-			dprintk("ks0127: command "
-					"DECODER_ENABLE_OUTPUT on "
-					"(%d)\n", enable);
+			v4l_dbg(1, debug, c,
+				"DECODER_ENABLE_OUTPUT on\n");
 			/* All output pins on */
-			ks0127_and_or(ks, KS_OFMTA, 0xcf, 0x30);
+			ks0127_and_or(c, KS_OFMTA, 0xcf, 0x30);
 			/* Obey the OEN pin */
-			ks0127_and_or(ks, KS_CDEM, 0x7f, 0x00);
+			ks0127_and_or(c, KS_CDEM, 0x7f, 0x00);
 		} else {
-			dprintk("ks0127: command "
-					"DECODER_ENABLE_OUTPUT off "
-					"(%d)\n", enable);
+			v4l_dbg(1, debug, c,
+				"DECODER_ENABLE_OUTPUT off\n");
 			/* Video output pins off */
-			ks0127_and_or(ks, KS_OFMTA, 0xcf, 0x00);
+			ks0127_and_or(c, KS_OFMTA, 0xcf, 0x00);
 			/* Ignore the OEN pin */
-			ks0127_and_or(ks, KS_CDEM, 0x7f, 0x80);
+			ks0127_and_or(c, KS_CDEM, 0x7f, 0x80);
 		}
-	}
 		break;
+	}
 
-	//sam todo: KS0127_SET_OUTPUT_MODE:
-	//sam todo: KS0127_SET_WIDTH:
-	//sam todo: KS0127_SET_HEIGHT:
-	//sam todo: KS0127_SET_HSCALE:
+	/* sam todo: KS0127_SET_OUTPUT_MODE: */
+	/* sam todo: KS0127_SET_WIDTH: */
+	/* sam todo: KS0127_SET_HEIGHT: */
+	/* sam todo: KS0127_SET_HSCALE: */
 
 	case DECODER_GET_STATUS:
-		dprintk("ks0127: command DECODER_GET_STATUS\n");
+		v4l_dbg(1, debug, c, "DECODER_GET_STATUS\n");
 		*iarg = 0;
-		status = ks0127_read(ks, KS_STAT);
+		status = ks0127_read(c, KS_STAT);
 		if (!(status & 0x20))		 /* NOVID not set */
 			*iarg = (*iarg | DECODER_STATUS_GOOD);
 		if ((status & 0x01))		      /* CLOCK set */
@@ -722,124 +713,81 @@
 			*iarg = (*iarg | DECODER_STATUS_NTSC);
 		break;
 
-	//Catch any unknown command
+	/* Catch any unknown command */
 	default:
-		dprintk("ks0127: command unknown: %04X\n", cmd);
+		v4l_dbg(1, debug, c, "unknown: 0x%08x\n", cmd);
 		return -EINVAL;
 	}
 	return 0;
 }
 
 
-
-
-static int ks0127_probe(struct i2c_adapter *adapter);
-static int ks0127_detach(struct i2c_client *client);
-static int ks0127_command(struct i2c_client *client,
-			  unsigned int cmd, void *arg);
-
-
-
 /* Addresses to scan */
-static unsigned short normal_i2c[] = {I2C_KS0127_ADDON>>1,
-				       I2C_KS0127_ONBOARD>>1, I2C_CLIENT_END};
-static unsigned short probe[2] =	{I2C_CLIENT_END, I2C_CLIENT_END};
-static unsigned short ignore[2] = 	{I2C_CLIENT_END, I2C_CLIENT_END};
-static struct i2c_client_address_data addr_data = {
-	normal_i2c,
-	probe,
-	ignore,
+#define I2C_KS0127_ADDON   0xD8
+#define I2C_KS0127_ONBOARD 0xDA
+
+static unsigned short normal_i2c[] = {
+	I2C_KS0127_ADDON >> 1,
+	I2C_KS0127_ONBOARD >> 1,
+	I2C_CLIENT_END
 };
 
-static struct i2c_driver i2c_driver_ks0127 = {
-	.driver.name = "ks0127",
-	.id             = I2C_DRIVERID_KS0127,
-	.attach_adapter = ks0127_probe,
-	.detach_client  = ks0127_detach,
-	.command        = ks0127_command
-};
+I2C_CLIENT_INSMOD;
 
-static struct i2c_client ks0127_client_tmpl =
-{
-	.name = "(ks0127 unset)",
-	.addr = 0,
-	.adapter = NULL,
-	.driver = &i2c_driver_ks0127,
-};
-
-static int ks0127_found_proc(struct i2c_adapter *adapter, int addr, int kind)
+static int ks0127_probe(struct i2c_client *c, const struct i2c_device_id *id)
 {
 	struct ks0127 *ks;
-	struct i2c_client *client;
 
-	client = kzalloc(sizeof(*client), GFP_KERNEL);
-	if (client == NULL)
-		return -ENOMEM;
-	memcpy(client, &ks0127_client_tmpl, sizeof(*client));
+	v4l_info(c, "%s chip found @ 0x%x (%s)\n",
+		c->addr == (I2C_KS0127_ADDON >> 1) ? "addon" : "on-board",
+		c->addr << 1, c->adapter->name);
 
 	ks = kzalloc(sizeof(*ks), GFP_KERNEL);
-	if (ks == NULL) {
-		kfree(client);
+	if (ks == NULL)
 		return -ENOMEM;
-	}
 
-	i2c_set_clientdata(client, ks);
-	client->adapter = adapter;
-	client->addr = addr;
-	sprintf(client->name, "ks0127-%02x", adapter->id);
+	i2c_set_clientdata(c, ks);
 
-	ks->client = client;
-	ks->addr = addr;
 	ks->ks_type = KS_TYPE_UNKNOWN;
 
 	/* power up */
-	ks0127_write(ks, KS_CMDA, 0x2c);
+	init_reg_defaults();
+	ks0127_write(c, KS_CMDA, 0x2c);
 	mdelay(10);
 
 	/* reset the device */
-	ks0127_reset(ks);
-	printk(KERN_INFO "ks0127: attach: %s video decoder\n",
-	       ks->addr==(I2C_KS0127_ADDON>>1) ? "addon" : "on-board");
-
-	i2c_attach_client(client);
+	ks0127_reset(c);
 	return 0;
 }
 
-
-static int ks0127_probe(struct i2c_adapter *adapter)
+static int ks0127_remove(struct i2c_client *c)
 {
-	if (adapter->id == I2C_HW_B_ZR36067)
-		return i2c_probe(adapter, &addr_data, ks0127_found_proc);
-	return 0;
-}
+	struct ks0127 *ks = i2c_get_clientdata(c);
 
-static int ks0127_detach(struct i2c_client *client)
-{
-	struct ks0127 *ks = i2c_get_clientdata(client);
+	ks0127_write(c, KS_OFMTA, 0x20); /* tristate */
+	ks0127_write(c, KS_CMDA, 0x2c | 0x80); /* power down */
 
-	ks0127_write(ks, KS_OFMTA, 0x20); /*tristate*/
-	ks0127_write(ks, KS_CMDA, 0x2c | 0x80); /* power down */
-
-	i2c_detach_client(client);
 	kfree(ks);
-	kfree(client);
-
-	dprintk("ks0127: detach\n");
 	return 0;
 }
 
-
-static int __devinit ks0127_init_module(void)
+static int ks0127_legacy_probe(struct i2c_adapter *adapter)
 {
-	init_reg_defaults();
-	return i2c_add_driver(&i2c_driver_ks0127);
+	return adapter->id == I2C_HW_B_ZR36067;
 }
 
-static void __devexit ks0127_cleanup_module(void)
-{
-	i2c_del_driver(&i2c_driver_ks0127);
-}
+static const struct i2c_device_id ks0127_id[] = {
+	{ "ks0127", 0 },
+	{ }
+};
+MODULE_DEVICE_TABLE(i2c, ks0127_id);
 
-
-module_init(ks0127_init_module);
-module_exit(ks0127_cleanup_module);
+static struct v4l2_i2c_driver_data v4l2_i2c_data = {
+	.name = "ks0127",
+	.driverid = I2C_DRIVERID_KS0127,
+	.command = ks0127_command,
+	.probe = ks0127_probe,
+	.remove = ks0127_remove,
+	.legacy_probe = ks0127_legacy_probe,
+	.id_table = ks0127_id,
+};
diff --git a/drivers/media/video/ov511.c b/drivers/media/video/ov511.c
index 935d73d..210f124 100644
--- a/drivers/media/video/ov511.c
+++ b/drivers/media/video/ov511.c
@@ -1098,9 +1098,10 @@
 		reg_w(ov, R51x_SYS_SNAP, 0x02);
 		reg_w(ov, R51x_SYS_SNAP, 0x00);
 	} else if (ov->bclass == BCL_OV518) {
-		warn("snapshot reset not supported yet on OV518(+)");
+		dev_warn(&ov->dev->dev,
+			 "snapshot reset not supported yet on OV518(+)\n");
 	} else {
-		err("clear snap: invalid bridge type");
+		dev_err(&ov->dev->dev, "clear snap: invalid bridge type\n");
 	}
 }
 
@@ -1115,14 +1116,16 @@
 	if (ov->bclass == BCL_OV511) {
 		ret = reg_r(ov, R51x_SYS_SNAP);
 		if (ret < 0) {
-			err("Error checking snspshot status (%d)", ret);
+			dev_err(&ov->dev->dev,
+				"Error checking snspshot status (%d)\n", ret);
 		} else if (ret & 0x08) {
 			status = 1;
 		}
 	} else if (ov->bclass == BCL_OV518) {
-		warn("snapshot check not supported yet on OV518(+)");
+		dev_warn(&ov->dev->dev,
+			 "snapshot check not supported yet on OV518(+)\n");
 	} else {
-		err("check snap: invalid bridge type");
+		dev_err(&ov->dev->dev, "clear snap: invalid bridge type\n");
 	}
 
 	return status;
@@ -5217,7 +5220,8 @@
 	if (ov->bclass == BCL_OV511)
 		reg_w(ov, 0x11, 0x00);
 	else
-		warn("SAA7111A not yet supported with OV518/OV518+");
+		dev_warn(&ov->dev->dev,
+			 "SAA7111A not yet supported with OV518/OV518+\n");
 
 	return 0;
 }
@@ -5456,7 +5460,8 @@
 	 * required. OV518 has no uncompressed mode, to save RAM. */
 	if (!dumppix && !ov->compress) {
 		ov->compress = 1;
-		warn("Compression required with OV518...enabling");
+		dev_warn(&ov->dev->dev,
+			 "Compression required with OV518...enabling\n");
 	}
 
 	if (ov->bridge == BRG_OV518) {
diff --git a/drivers/media/video/saa7110.c b/drivers/media/video/saa7110.c
index 4aa82b3..adf2ba7 100644
--- a/drivers/media/video/saa7110.c
+++ b/drivers/media/video/saa7110.c
@@ -31,36 +31,24 @@
 #include <linux/delay.h>
 #include <linux/slab.h>
 #include <linux/wait.h>
-#include <asm/io.h>
 #include <asm/uaccess.h>
+#include <linux/i2c.h>
+#include <linux/videodev.h>
+#include <linux/video_decoder.h>
+#include <media/v4l2-common.h>
+#include <media/v4l2-i2c-drv-legacy.h>
 
 MODULE_DESCRIPTION("Philips SAA7110 video decoder driver");
 MODULE_AUTHOR("Pauline Middelink");
 MODULE_LICENSE("GPL");
 
-#include <linux/i2c.h>
-
-#define I2C_NAME(s) (s)->name
-
-#include <linux/videodev.h>
-#include <media/v4l2-common.h>
-#include <linux/video_decoder.h>
-
 static int debug;
 module_param(debug, int, 0);
 MODULE_PARM_DESC(debug, "Debug level (0-1)");
 
-#define dprintk(num, format, args...) \
-	do { \
-		if (debug >= num) \
-			printk(format, ##args); \
-	} while (0)
-
 #define SAA7110_MAX_INPUT	9	/* 6 CVBS, 3 SVHS */
 #define SAA7110_MAX_OUTPUT	0	/* its a decoder only */
 
-#define	I2C_SAA7110		0x9C	/* or 0x9E */
-
 #define SAA7110_NR_REG		0x35
 
 struct saa7110 {
@@ -81,10 +69,7 @@
 /* I2C support functions						   */
 /* ----------------------------------------------------------------------- */
 
-static int
-saa7110_write (struct i2c_client *client,
-	       u8                 reg,
-	       u8                 value)
+static int saa7110_write(struct i2c_client *client, u8 reg, u8 value)
 {
 	struct saa7110 *decoder = i2c_get_clientdata(client);
 
@@ -92,10 +77,7 @@
 	return i2c_smbus_write_byte_data(client, reg, value);
 }
 
-static int
-saa7110_write_block (struct i2c_client *client,
-		     const u8          *data,
-		     unsigned int       len)
+static int saa7110_write_block(struct i2c_client *client, const u8 *data, unsigned int len)
 {
 	int ret = -1;
 	u8 reg = *data;		/* first register to write to */
@@ -115,8 +97,8 @@
 		memcpy(decoder->reg + reg, data + 1, len - 1);
 	} else {
 		for (++data, --len; len; len--) {
-			if ((ret = saa7110_write(client, reg++,
-						 *data++)) < 0)
+			ret = saa7110_write(client, reg++, *data++);
+			if (ret < 0)
 				break;
 		}
 	}
@@ -124,8 +106,7 @@
 	return ret;
 }
 
-static inline int
-saa7110_read (struct i2c_client *client)
+static inline int saa7110_read(struct i2c_client *client)
 {
 	return i2c_smbus_read_byte(client);
 }
@@ -138,9 +119,7 @@
 #define FRESP_06H_SVIDEO 0x83	//0xC0
 
 
-static int
-saa7110_selmux (struct i2c_client *client,
-		int                chan)
+static int saa7110_selmux(struct i2c_client *client, int chan)
 {
 	static const unsigned char modes[9][8] = {
 		/* mode 0 */
@@ -197,8 +176,7 @@
 	/* 0x30 */ 0x44, 0x71, 0x02, 0x8C, 0x02
 };
 
-static int
-determine_norm (struct i2c_client *client)
+static int determine_norm(struct i2c_client *client)
 {
 	DEFINE_WAIT(wait);
 	struct saa7110 *decoder = i2c_get_clientdata(client);
@@ -212,29 +190,23 @@
 	finish_wait(&decoder->wq, &wait);
 	status = saa7110_read(client);
 	if (status & 0x40) {
-		dprintk(1, KERN_INFO "%s: status=0x%02x (no signal)\n",
-			I2C_NAME(client), status);
+		v4l_dbg(1, debug, client, "status=0x%02x (no signal)\n", status);
 		return decoder->norm;	// no change
 	}
 	if ((status & 3) == 0) {
 		saa7110_write(client, 0x06, 0x83);
 		if (status & 0x20) {
-			dprintk(1,
-				KERN_INFO
-				"%s: status=0x%02x (NTSC/no color)\n",
-				I2C_NAME(client), status);
+			v4l_dbg(1, debug, client, "status=0x%02x (NTSC/no color)\n", status);
 			//saa7110_write(client,0x2E,0x81);
 			return VIDEO_MODE_NTSC;
 		}
-		dprintk(1, KERN_INFO "%s: status=0x%02x (PAL/no color)\n",
-			I2C_NAME(client), status);
+		v4l_dbg(1, debug, client, "status=0x%02x (PAL/no color)\n", status);
 		//saa7110_write(client,0x2E,0x9A);
 		return VIDEO_MODE_PAL;
 	}
 	//saa7110_write(client,0x06,0x03);
 	if (status & 0x20) {	/* 60Hz */
-		dprintk(1, KERN_INFO "%s: status=0x%02x (NTSC)\n",
-			I2C_NAME(client), status);
+		v4l_dbg(1, debug, client, "status=0x%02x (NTSC)\n", status);
 		saa7110_write(client, 0x0D, 0x86);
 		saa7110_write(client, 0x0F, 0x50);
 		saa7110_write(client, 0x11, 0x2C);
@@ -254,13 +226,11 @@
 
 	status = saa7110_read(client);
 	if ((status & 0x03) == 0x01) {
-		dprintk(1, KERN_INFO "%s: status=0x%02x (SECAM)\n",
-			I2C_NAME(client), status);
+		v4l_dbg(1, debug, client, "status=0x%02x (SECAM)\n", status);
 		saa7110_write(client, 0x0D, 0x87);
 		return VIDEO_MODE_SECAM;
 	}
-	dprintk(1, KERN_INFO "%s: status=0x%02x (PAL)\n", I2C_NAME(client),
-		status);
+	v4l_dbg(1, debug, client, "status=0x%02x (PAL)\n", status);
 	return VIDEO_MODE_PAL;
 }
 
@@ -286,8 +256,8 @@
 		    VIDEO_DECODER_SECAM | VIDEO_DECODER_AUTO;
 		dc->inputs = SAA7110_MAX_INPUT;
 		dc->outputs = SAA7110_MAX_OUTPUT;
-	}
 		break;
+	}
 
 	case DECODER_GET_STATUS:
 	{
@@ -295,8 +265,8 @@
 		int res = 0;
 
 		status = saa7110_read(client);
-		dprintk(1, KERN_INFO "%s: status=0x%02x norm=%d\n",
-			I2C_NAME(client), status, decoder->norm);
+		v4l_dbg(1, debug, client, "status=0x%02x norm=%d\n",
+			       status, decoder->norm);
 		if (!(status & 0x40))
 			res |= DECODER_STATUS_GOOD;
 		if (status & 0x03)
@@ -314,8 +284,8 @@
 			break;
 		}
 		*(int *) arg = res;
-	}
 		break;
+	}
 
 	case DECODER_SET_NORM:
 		v = *(int *) arg;
@@ -328,34 +298,24 @@
 				saa7110_write(client, 0x0F, 0x50);
 				saa7110_write(client, 0x11, 0x2C);
 				//saa7110_write(client, 0x2E, 0x81);
-				dprintk(1,
-					KERN_INFO "%s: switched to NTSC\n",
-					I2C_NAME(client));
+				v4l_dbg(1, debug, client, "switched to NTSC\n");
 				break;
 			case VIDEO_MODE_PAL:
 				saa7110_write(client, 0x0D, 0x86);
 				saa7110_write(client, 0x0F, 0x10);
 				saa7110_write(client, 0x11, 0x59);
 				//saa7110_write(client, 0x2E, 0x9A);
-				dprintk(1,
-					KERN_INFO "%s: switched to PAL\n",
-					I2C_NAME(client));
+				v4l_dbg(1, debug, client, "switched to PAL\n");
 				break;
 			case VIDEO_MODE_SECAM:
 				saa7110_write(client, 0x0D, 0x87);
 				saa7110_write(client, 0x0F, 0x10);
 				saa7110_write(client, 0x11, 0x59);
 				//saa7110_write(client, 0x2E, 0x9A);
-				dprintk(1,
-					KERN_INFO
-					"%s: switched to SECAM\n",
-					I2C_NAME(client));
+				v4l_dbg(1, debug, client, "switched to SECAM\n");
 				break;
 			case VIDEO_MODE_AUTO:
-				dprintk(1,
-					KERN_INFO
-					"%s: TV standard detection...\n",
-					I2C_NAME(client));
+				v4l_dbg(1, debug, client, "switched to AUTO\n");
 				decoder->norm = determine_norm(client);
 				*(int *) arg = decoder->norm;
 				break;
@@ -368,15 +328,12 @@
 	case DECODER_SET_INPUT:
 		v = *(int *) arg;
 		if (v < 0 || v > SAA7110_MAX_INPUT) {
-			dprintk(1,
-				KERN_INFO "%s: input=%d not available\n",
-				I2C_NAME(client), v);
+			v4l_dbg(1, debug, client, "input=%d not available\n", v);
 			return -EINVAL;
 		}
 		if (decoder->input != v) {
 			saa7110_selmux(client, v);
-			dprintk(1, KERN_INFO "%s: switched to input=%d\n",
-				I2C_NAME(client), v);
+			v4l_dbg(1, debug, client, "switched to input=%d\n", v);
 		}
 		break;
 
@@ -392,8 +349,7 @@
 		if (decoder->enable != v) {
 			decoder->enable = v;
 			saa7110_write(client, 0x0E, v ? 0x18 : 0x80);
-			dprintk(1, KERN_INFO "%s: YUV %s\n", I2C_NAME(client),
-				v ? "on" : "off");
+			v4l_dbg(1, debug, client, "YUV %s\n", v ? "on" : "off");
 		}
 		break;
 
@@ -423,23 +379,23 @@
 			saa7110_write(client, 0x07,
 				      (decoder->hue >> 8) - 128);
 		}
-	}
 		break;
+	}
 
 	case DECODER_DUMP:
+		if (!debug)
+			break;
 		for (v = 0; v < SAA7110_NR_REG; v += 16) {
 			int j;
-			dprintk(1, KERN_DEBUG "%s: %02x:", I2C_NAME(client),
-				v);
+			v4l_dbg(1, debug, client, "%02x:", v);
 			for (j = 0; j < 16 && v + j < SAA7110_NR_REG; j++)
-				dprintk(1, " %02x", decoder->reg[v + j]);
-			dprintk(1, "\n");
+				printk(KERN_CONT " %02x", decoder->reg[v + j]);
+			printk(KERN_CONT "\n");
 		}
 		break;
 
 	default:
-		dprintk(1, KERN_INFO "unknown saa7110_command??(%d)\n",
-			cmd);
+		v4l_dbg(1, debug, client, "unknown command %08x\n", cmd);
 		return -EINVAL;
 	}
 	return 0;
@@ -451,55 +407,28 @@
  * Generic i2c probe
  * concerning the addresses: i2c wants 7 bit (without the r/w bit), so '>>1'
  */
-static unsigned short normal_i2c[] = {
-	I2C_SAA7110 >> 1,
-	(I2C_SAA7110 >> 1) + 1,
-	I2C_CLIENT_END
-};
 
-static unsigned short ignore = I2C_CLIENT_END;
+static unsigned short normal_i2c[] = { 0x9c >> 1, 0x9e >> 1, I2C_CLIENT_END };
 
-static struct i2c_client_address_data addr_data = {
-	.normal_i2c		= normal_i2c,
-	.probe			= &ignore,
-	.ignore			= &ignore,
-};
+I2C_CLIENT_INSMOD;
 
-static struct i2c_driver i2c_driver_saa7110;
-
-static int
-saa7110_detect_client (struct i2c_adapter *adapter,
-		       int                 address,
-		       int                 kind)
+static int saa7110_probe(struct i2c_client *client,
+			const struct i2c_device_id *id)
 {
-	struct i2c_client *client;
 	struct saa7110 *decoder;
 	int rv;
 
-	dprintk(1,
-		KERN_INFO
-		"saa7110.c: detecting saa7110 client on address 0x%x\n",
-		address << 1);
-
 	/* Check if the adapter supports the needed features */
-	if (!i2c_check_functionality
-	    (adapter,
-	     I2C_FUNC_SMBUS_READ_BYTE | I2C_FUNC_SMBUS_WRITE_BYTE_DATA))
-		return 0;
+	if (!i2c_check_functionality(client->adapter,
+		I2C_FUNC_SMBUS_READ_BYTE | I2C_FUNC_SMBUS_WRITE_BYTE_DATA))
+		return -ENODEV;
 
-	client = kzalloc(sizeof(struct i2c_client), GFP_KERNEL);
-	if (!client)
-		return -ENOMEM;
-	client->addr = address;
-	client->adapter = adapter;
-	client->driver = &i2c_driver_saa7110;
-	strlcpy(I2C_NAME(client), "saa7110", sizeof(I2C_NAME(client)));
+	v4l_info(client, "chip found @ 0x%x (%s)\n",
+			client->addr << 1, client->adapter->name);
 
 	decoder = kzalloc(sizeof(struct saa7110), GFP_KERNEL);
-	if (!decoder) {
-		kfree(client);
+	if (!decoder)
 		return -ENOMEM;
-	}
 	decoder->norm = VIDEO_MODE_PAL;
 	decoder->input = 0;
 	decoder->enable = 1;
@@ -510,18 +439,10 @@
 	init_waitqueue_head(&decoder->wq);
 	i2c_set_clientdata(client, decoder);
 
-	rv = i2c_attach_client(client);
-	if (rv) {
-		kfree(client);
-		kfree(decoder);
-		return rv;
-	}
-
 	rv = saa7110_write_block(client, initseq, sizeof(initseq));
-	if (rv < 0)
-		dprintk(1, KERN_ERR "%s_attach: init status %d\n",
-			I2C_NAME(client), rv);
-	else {
+	if (rv < 0) {
+		v4l_dbg(1, debug, client, "init status %d\n", rv);
+	} else {
 		int ver, status;
 		saa7110_write(client, 0x21, 0x10);
 		saa7110_write(client, 0x0e, 0x18);
@@ -530,10 +451,8 @@
 		saa7110_write(client, 0x0D, 0x06);
 		//mdelay(150);
 		status = saa7110_read(client);
-		dprintk(1,
-			KERN_INFO
-			"%s_attach: SAA7110A version %x at 0x%02x, status=0x%02x\n",
-			I2C_NAME(client), ver, client->addr << 1, status);
+		v4l_dbg(1, debug, client, "version %x, status=0x%02x\n",
+			       ver, status);
 		saa7110_write(client, 0x0D, 0x86);
 		saa7110_write(client, 0x0F, 0x10);
 		saa7110_write(client, 0x11, 0x59);
@@ -547,58 +466,25 @@
 	return 0;
 }
 
-static int
-saa7110_attach_adapter (struct i2c_adapter *adapter)
+static int saa7110_remove(struct i2c_client *client)
 {
-	dprintk(1,
-		KERN_INFO
-		"saa7110.c: starting probe for adapter %s (0x%x)\n",
-		I2C_NAME(adapter), adapter->id);
-	return i2c_probe(adapter, &addr_data, &saa7110_detect_client);
-}
-
-static int
-saa7110_detach_client (struct i2c_client *client)
-{
-	struct saa7110 *decoder = i2c_get_clientdata(client);
-	int err;
-
-	err = i2c_detach_client(client);
-	if (err) {
-		return err;
-	}
-
-	kfree(decoder);
-	kfree(client);
-
+	kfree(i2c_get_clientdata(client));
 	return 0;
 }
 
 /* ----------------------------------------------------------------------- */
 
-static struct i2c_driver i2c_driver_saa7110 = {
-	.driver = {
-		.name = "saa7110",
-	},
-
-	.id = I2C_DRIVERID_SAA7110,
-
-	.attach_adapter = saa7110_attach_adapter,
-	.detach_client = saa7110_detach_client,
-	.command = saa7110_command,
+static const struct i2c_device_id saa7110_id[] = {
+	{ "saa7110", 0 },
+	{ }
 };
+MODULE_DEVICE_TABLE(i2c, saa7110_id);
 
-static int __init
-saa7110_init (void)
-{
-	return i2c_add_driver(&i2c_driver_saa7110);
-}
-
-static void __exit
-saa7110_exit (void)
-{
-	i2c_del_driver(&i2c_driver_saa7110);
-}
-
-module_init(saa7110_init);
-module_exit(saa7110_exit);
+static struct v4l2_i2c_driver_data v4l2_i2c_data = {
+	.name = "saa7110",
+	.driverid = I2C_DRIVERID_SAA7110,
+	.command = saa7110_command,
+	.probe = saa7110_probe,
+	.remove = saa7110_remove,
+	.id_table = saa7110_id,
+};
diff --git a/drivers/media/video/saa7111.c b/drivers/media/video/saa7111.c
index 96c3d43..a4738a2 100644
--- a/drivers/media/video/saa7111.c
+++ b/drivers/media/video/saa7111.c
@@ -28,43 +28,24 @@
  */
 
 #include <linux/module.h>
-#include <linux/init.h>
-#include <linux/delay.h>
-#include <linux/errno.h>
-#include <linux/fs.h>
-#include <linux/kernel.h>
-#include <linux/major.h>
-#include <linux/slab.h>
-#include <linux/mm.h>
-#include <linux/signal.h>
 #include <linux/types.h>
-#include <linux/i2c.h>
-#include <asm/io.h>
-#include <asm/pgtable.h>
-#include <asm/page.h>
+#include <linux/ioctl.h>
 #include <asm/uaccess.h>
-
+#include <linux/i2c.h>
+#include <linux/i2c-id.h>
 #include <linux/videodev.h>
 #include <linux/video_decoder.h>
+#include <media/v4l2-common.h>
+#include <media/v4l2-i2c-drv-legacy.h>
 
 MODULE_DESCRIPTION("Philips SAA7111 video decoder driver");
 MODULE_AUTHOR("Dave Perks");
 MODULE_LICENSE("GPL");
 
-
-#define I2C_NAME(s) (s)->name
-
-
 static int debug;
 module_param(debug, int, 0644);
 MODULE_PARM_DESC(debug, "Debug level (0-1)");
 
-#define dprintk(num, format, args...) \
-	do { \
-		if (debug >= num) \
-			printk(format, ##args); \
-	} while (0)
-
 /* ----------------------------------------------------------------------- */
 
 #define SAA7111_NR_REG		0x18
@@ -77,14 +58,9 @@
 	int enable;
 };
 
-#define   I2C_SAA7111        0x48
-
 /* ----------------------------------------------------------------------- */
 
-static inline int
-saa7111_write (struct i2c_client *client,
-	       u8                 reg,
-	       u8                 value)
+static inline int saa7111_write(struct i2c_client *client, u8 reg, u8 value)
 {
 	struct saa7111 *decoder = i2c_get_clientdata(client);
 
@@ -92,8 +68,7 @@
 	return i2c_smbus_write_byte_data(client, reg, value);
 }
 
-static inline void
-saa7111_write_if_changed(struct i2c_client *client, u8 reg, u8 value)
+static inline void saa7111_write_if_changed(struct i2c_client *client, u8 reg, u8 value)
 {
 	struct saa7111 *decoder = i2c_get_clientdata(client);
 
@@ -103,10 +78,7 @@
 	}
 }
 
-static int
-saa7111_write_block (struct i2c_client *client,
-		     const u8          *data,
-		     unsigned int       len)
+static int saa7111_write_block(struct i2c_client *client, const u8 *data, unsigned int len)
 {
 	int ret = -1;
 	u8 reg;
@@ -127,18 +99,17 @@
 				    decoder->reg[reg++] = data[1];
 				len -= 2;
 				data += 2;
-			} while (len >= 2 && data[0] == reg &&
-				 block_len < 32);
-			if ((ret = i2c_master_send(client, block_data,
-						   block_len)) < 0)
+			} while (len >= 2 && data[0] == reg && block_len < 32);
+			ret = i2c_master_send(client, block_data, block_len);
+			if (ret < 0)
 				break;
 		}
 	} else {
 		/* do some slow I2C emulation kind of thing */
 		while (len >= 2) {
 			reg = *data++;
-			if ((ret = saa7111_write(client, reg,
-						 *data++)) < 0)
+			ret = saa7111_write(client, reg, *data++);
+			if (ret < 0)
 				break;
 			len -= 2;
 		}
@@ -147,16 +118,13 @@
 	return ret;
 }
 
-static int
-saa7111_init_decoder (struct i2c_client *client,
-	      struct video_decoder_init *init)
+static int saa7111_init_decoder(struct i2c_client *client,
+		struct video_decoder_init *init)
 {
 	return saa7111_write_block(client, init->data, init->len);
 }
 
-static inline int
-saa7111_read (struct i2c_client *client,
-	      u8                 reg)
+static inline int saa7111_read(struct i2c_client *client, u8 reg)
 {
 	return i2c_smbus_read_byte_data(client, reg);
 }
@@ -203,28 +171,23 @@
 	0x17, 0x00,		/* 17 - VBI */
 };
 
-static int
-saa7111_command (struct i2c_client *client,
-		 unsigned int       cmd,
-		 void              *arg)
+static int saa7111_command(struct i2c_client *client, unsigned cmd, void *arg)
 {
 	struct saa7111 *decoder = i2c_get_clientdata(client);
 
 	switch (cmd) {
-
 	case 0:
 		break;
 	case DECODER_INIT:
 	{
 		struct video_decoder_init *init = arg;
+		struct video_decoder_init vdi;
+
 		if (NULL != init)
 			return saa7111_init_decoder(client, init);
-		else {
-			struct video_decoder_init vdi;
-			vdi.data = saa7111_i2c_init;
-			vdi.len = sizeof(saa7111_i2c_init);
-			return saa7111_init_decoder(client, &vdi);
-		}
+		vdi.data = saa7111_i2c_init;
+		vdi.len = sizeof(saa7111_i2c_init);
+		return saa7111_init_decoder(client, &vdi);
 	}
 
 	case DECODER_DUMP:
@@ -234,15 +197,15 @@
 		for (i = 0; i < SAA7111_NR_REG; i += 16) {
 			int j;
 
-			printk(KERN_DEBUG "%s: %03x", I2C_NAME(client), i);
+			v4l_info(client, "%03x", i);
 			for (j = 0; j < 16 && i + j < SAA7111_NR_REG; ++j) {
-				printk(" %02x",
+				printk(KERN_CONT " %02x",
 				       saa7111_read(client, i + j));
 			}
-			printk("\n");
+			printk(KERN_CONT "\n");
 		}
-	}
 		break;
+	}
 
 	case DECODER_GET_CAPABILITIES:
 	{
@@ -255,8 +218,8 @@
 			     VIDEO_DECODER_CCIR;
 		cap->inputs = 8;
 		cap->outputs = 1;
-	}
 		break;
+	}
 
 	case DECODER_GET_STATUS:
 	{
@@ -265,8 +228,7 @@
 		int res;
 
 		status = saa7111_read(client, 0x1f);
-		dprintk(1, KERN_DEBUG "%s status: 0x%02x\n", I2C_NAME(client),
-			status);
+		v4l_dbg(1, debug, client, "status: 0x%02x\n", status);
 		res = 0;
 		if ((status & (1 << 6)) == 0) {
 			res |= DECODER_STATUS_GOOD;
@@ -294,8 +256,8 @@
 			res |= DECODER_STATUS_COLOR;
 		}
 		*iarg = res;
-	}
 		break;
+	}
 
 	case DECODER_SET_GPIO:
 	{
@@ -362,8 +324,8 @@
 
 		}
 		decoder->norm = *iarg;
-	}
 		break;
+	}
 
 	case DECODER_SET_INPUT:
 	{
@@ -387,8 +349,8 @@
 							     3) ? 0x80 :
 							    0));
 		}
-	}
 		break;
+	}
 
 	case DECODER_SET_OUTPUT:
 	{
@@ -398,8 +360,8 @@
 		if (*iarg != 0) {
 			return -EINVAL;
 		}
-	}
 		break;
+	}
 
 	case DECODER_ENABLE_OUTPUT:
 	{
@@ -439,8 +401,8 @@
 					      (decoder->reg[0x11] & 0xf3));
 			}
 		}
-	}
 		break;
+	}
 
 	case DECODER_SET_PICTURE:
 	{
@@ -454,8 +416,8 @@
 		saa7111_write(client, 0x0c, pic->colour >> 9);
 		/* We want -128 to 127 we get 0-65535 */
 		saa7111_write(client, 0x0d, (pic->hue - 32768) >> 8);
-	}
 		break;
+	}
 
 	default:
 		return -EINVAL;
@@ -466,48 +428,23 @@
 
 /* ----------------------------------------------------------------------- */
 
-/*
- * Generic i2c probe
- * concerning the addresses: i2c wants 7 bit (without the r/w bit), so '>>1'
- */
-static unsigned short normal_i2c[] = { I2C_SAA7111 >> 1, I2C_CLIENT_END };
+static unsigned short normal_i2c[] = { 0x48 >> 1, I2C_CLIENT_END };
 
-static unsigned short ignore = I2C_CLIENT_END;
+I2C_CLIENT_INSMOD;
 
-static struct i2c_client_address_data addr_data = {
-	.normal_i2c		= normal_i2c,
-	.probe			= &ignore,
-	.ignore			= &ignore,
-};
-
-static struct i2c_driver i2c_driver_saa7111;
-
-static int
-saa7111_detect_client (struct i2c_adapter *adapter,
-		       int                 address,
-		       int                 kind)
+static int saa7111_probe(struct i2c_client *client,
+			const struct i2c_device_id *id)
 {
 	int i;
-	struct i2c_client *client;
 	struct saa7111 *decoder;
 	struct video_decoder_init vdi;
 
-	dprintk(1,
-		KERN_INFO
-		"saa7111.c: detecting saa7111 client on address 0x%x\n",
-		address << 1);
-
 	/* Check if the adapter supports the needed features */
-	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA))
-		return 0;
+	if (!i2c_check_functionality(client->adapter, I2C_FUNC_SMBUS_BYTE_DATA))
+		return -ENODEV;
 
-	client = kzalloc(sizeof(struct i2c_client), GFP_KERNEL);
-	if (!client)
-		return -ENOMEM;
-	client->addr = address;
-	client->adapter = adapter;
-	client->driver = &i2c_driver_saa7111;
-	strlcpy(I2C_NAME(client), "saa7111", sizeof(I2C_NAME(client)));
+	v4l_info(client, "chip found @ 0x%x (%s)\n",
+			client->addr << 1, client->adapter->name);
 
 	decoder = kzalloc(sizeof(struct saa7111), GFP_KERNEL);
 	if (decoder == NULL) {
@@ -519,82 +456,37 @@
 	decoder->enable = 1;
 	i2c_set_clientdata(client, decoder);
 
-	i = i2c_attach_client(client);
-	if (i) {
-		kfree(client);
-		kfree(decoder);
-		return i;
-	}
-
 	vdi.data = saa7111_i2c_init;
 	vdi.len = sizeof(saa7111_i2c_init);
 	i = saa7111_init_decoder(client, &vdi);
 	if (i < 0) {
-		dprintk(1, KERN_ERR "%s_attach error: init status %d\n",
-			I2C_NAME(client), i);
+		v4l_dbg(1, debug, client, "init status %d\n", i);
 	} else {
-		dprintk(1,
-			KERN_INFO
-			"%s_attach: chip version %x at address 0x%x\n",
-			I2C_NAME(client), saa7111_read(client, 0x00) >> 4,
-			client->addr << 1);
+		v4l_dbg(1, debug, client, "revision %x\n",
+			saa7111_read(client, 0x00) >> 4);
 	}
-
 	return 0;
 }
 
-static int
-saa7111_attach_adapter (struct i2c_adapter *adapter)
+static int saa7111_remove(struct i2c_client *client)
 {
-	dprintk(1,
-		KERN_INFO
-		"saa7111.c: starting probe for adapter %s (0x%x)\n",
-		I2C_NAME(adapter), adapter->id);
-	return i2c_probe(adapter, &addr_data, &saa7111_detect_client);
-}
-
-static int
-saa7111_detach_client (struct i2c_client *client)
-{
-	struct saa7111 *decoder = i2c_get_clientdata(client);
-	int err;
-
-	err = i2c_detach_client(client);
-	if (err) {
-		return err;
-	}
-
-	kfree(decoder);
-	kfree(client);
-
+	kfree(i2c_get_clientdata(client));
 	return 0;
 }
 
 /* ----------------------------------------------------------------------- */
 
-static struct i2c_driver i2c_driver_saa7111 = {
-	.driver = {
-		.name = "saa7111",
-	},
-
-	.id = I2C_DRIVERID_SAA7111A,
-
-	.attach_adapter = saa7111_attach_adapter,
-	.detach_client = saa7111_detach_client,
-	.command = saa7111_command,
+static const struct i2c_device_id saa7111_id[] = {
+	{ "saa7111_old", 0 },	/* "saa7111" maps to the saa7115 driver */
+	{ }
 };
+MODULE_DEVICE_TABLE(i2c, saa7111_id);
 
-static int __init
-saa7111_init (void)
-{
-	return i2c_add_driver(&i2c_driver_saa7111);
-}
-
-static void __exit
-saa7111_exit (void)
-{
-	i2c_del_driver(&i2c_driver_saa7111);
-}
-
-module_init(saa7111_init);
-module_exit(saa7111_exit);
+static struct v4l2_i2c_driver_data v4l2_i2c_data = {
+	.name = "saa7111",
+	.driverid = I2C_DRIVERID_SAA7111A,
+	.command = saa7111_command,
+	.probe = saa7111_probe,
+	.remove = saa7111_remove,
+	.id_table = saa7111_id,
+};
diff --git a/drivers/media/video/saa7114.c b/drivers/media/video/saa7114.c
index e790755..7ca709f 100644
--- a/drivers/media/video/saa7114.c
+++ b/drivers/media/video/saa7114.c
@@ -29,43 +29,24 @@
  */
 
 #include <linux/module.h>
-#include <linux/init.h>
-#include <linux/delay.h>
-#include <linux/errno.h>
-#include <linux/fs.h>
-#include <linux/kernel.h>
-#include <linux/major.h>
-#include <linux/slab.h>
-#include <linux/mm.h>
-#include <linux/signal.h>
 #include <linux/types.h>
-#include <linux/i2c.h>
-#include <asm/io.h>
-#include <asm/pgtable.h>
-#include <asm/page.h>
+#include <linux/ioctl.h>
 #include <asm/uaccess.h>
-
+#include <linux/i2c.h>
+#include <linux/i2c-id.h>
 #include <linux/videodev.h>
 #include <linux/video_decoder.h>
+#include <media/v4l2-common.h>
+#include <media/v4l2-i2c-drv-legacy.h>
 
 MODULE_DESCRIPTION("Philips SAA7114H video decoder driver");
 MODULE_AUTHOR("Maxim Yevtyushkin");
 MODULE_LICENSE("GPL");
 
-
-#define I2C_NAME(x) (x)->name
-
-
 static int debug;
 module_param(debug, int, 0);
 MODULE_PARM_DESC(debug, "Debug level (0-1)");
 
-#define dprintk(num, format, args...) \
-	do { \
-		if (debug >= num) \
-			printk(format, ##args); \
-	} while (0)
-
 /* ----------------------------------------------------------------------- */
 
 struct saa7114 {
@@ -81,9 +62,6 @@
 	int playback;
 };
 
-#define   I2C_SAA7114        0x42
-#define   I2C_SAA7114A       0x40
-
 #define   I2C_DELAY   10
 
 
@@ -129,18 +107,12 @@
 
 /* ----------------------------------------------------------------------- */
 
-static inline int
-saa7114_write (struct i2c_client *client,
-	       u8                 reg,
-	       u8                 value)
+static inline int saa7114_write(struct i2c_client *client, u8 reg, u8 value)
 {
 	return i2c_smbus_write_byte_data(client, reg, value);
 }
 
-static int
-saa7114_write_block (struct i2c_client *client,
-		     const u8          *data,
-		     unsigned int       len)
+static int saa7114_write_block(struct i2c_client *client, const u8 *data, unsigned int len)
 {
 	int ret = -1;
 	u8 reg;
@@ -160,18 +132,17 @@
 				reg++;
 				len -= 2;
 				data += 2;
-			} while (len >= 2 && data[0] == reg &&
-				 block_len < 32);
-			if ((ret = i2c_master_send(client, block_data,
-						   block_len)) < 0)
+			} while (len >= 2 && data[0] == reg && block_len < 32);
+			ret = i2c_master_send(client, block_data, block_len);
+			if (ret < 0)
 				break;
 		}
 	} else {
 		/* do some slow I2C emulation kind of thing */
 		while (len >= 2) {
 			reg = *data++;
-			if ((ret = saa7114_write(client, reg,
-						 *data++)) < 0)
+			ret = saa7114_write(client, reg, *data++);
+			if (ret < 0)
 				break;
 			len -= 2;
 		}
@@ -180,9 +151,7 @@
 	return ret;
 }
 
-static inline int
-saa7114_read (struct i2c_client *client,
-	      u8                 reg)
+static inline int saa7114_read(struct i2c_client *client, u8 reg)
 {
 	return i2c_smbus_read_byte_data(client, reg);
 }
@@ -452,15 +421,11 @@
 	0xef, 0x00
 };
 
-static int
-saa7114_command (struct i2c_client *client,
-		 unsigned int       cmd,
-		 void              *arg)
+static int saa7114_command(struct i2c_client *client, unsigned cmd, void *arg)
 {
 	struct saa7114 *decoder = i2c_get_clientdata(client);
 
 	switch (cmd) {
-
 	case 0:
 		//dprintk(1, KERN_INFO "%s: writing init\n", I2C_NAME(client));
 		//saa7114_write_block(client, init, sizeof(init));
@@ -470,27 +435,28 @@
 	{
 		int i;
 
-		dprintk(1, KERN_INFO "%s: decoder dump\n", I2C_NAME(client));
+		if (!debug)
+			break;
+		v4l_info(client, "decoder dump\n");
 
 		for (i = 0; i < 32; i += 16) {
 			int j;
 
-			printk(KERN_DEBUG "%s: %03x", I2C_NAME(client), i);
+			v4l_info(client, "%03x", i);
 			for (j = 0; j < 16; ++j) {
-				printk(" %02x",
+				printk(KERN_CONT " %02x",
 				       saa7114_read(client, i + j));
 			}
-			printk("\n");
+			printk(KERN_CONT "\n");
 		}
-	}
 		break;
+	}
 
 	case DECODER_GET_CAPABILITIES:
 	{
 		struct video_decoder_capability *cap = arg;
 
-		dprintk(1, KERN_DEBUG "%s: decoder get capabilities\n",
-			I2C_NAME(client));
+		v4l_dbg(1, debug, client, "get capabilities\n");
 
 		cap->flags = VIDEO_DECODER_PAL |
 			     VIDEO_DECODER_NTSC |
@@ -498,8 +464,8 @@
 			     VIDEO_DECODER_CCIR;
 		cap->inputs = 8;
 		cap->outputs = 1;
-	}
 		break;
+	}
 
 	case DECODER_GET_STATUS:
 	{
@@ -509,8 +475,7 @@
 
 		status = saa7114_read(client, 0x1f);
 
-		dprintk(1, KERN_DEBUG "%s status: 0x%02x\n", I2C_NAME(client),
-			status);
+		v4l_dbg(1, debug, client, "status: 0x%02x\n", status);
 		res = 0;
 		if ((status & (1 << 6)) == 0) {
 			res |= DECODER_STATUS_GOOD;
@@ -538,8 +503,8 @@
 			res |= DECODER_STATUS_COLOR;
 		}
 		*iarg = res;
-	}
 		break;
+	}
 
 	case DECODER_SET_NORM:
 	{
@@ -547,12 +512,11 @@
 
 		short int hoff = 0, voff = 0, w = 0, h = 0;
 
-		dprintk(1, KERN_DEBUG "%s: decoder set norm ",
-			I2C_NAME(client));
-		switch (*iarg) {
+		v4l_dbg(1, debug, client, "set norm\n");
 
+		switch (*iarg) {
 		case VIDEO_MODE_NTSC:
-			dprintk(1, "NTSC\n");
+			v4l_dbg(1, debug, client, "NTSC\n");
 			decoder->reg[REG_ADDR(0x06)] =
 			    SAA_7114_NTSC_HSYNC_START;
 			decoder->reg[REG_ADDR(0x07)] =
@@ -571,7 +535,7 @@
 			break;
 
 		case VIDEO_MODE_PAL:
-			dprintk(1, "PAL\n");
+			v4l_dbg(1, debug, client, "PAL\n");
 			decoder->reg[REG_ADDR(0x06)] =
 			    SAA_7114_PAL_HSYNC_START;
 			decoder->reg[REG_ADDR(0x07)] =
@@ -590,9 +554,8 @@
 			break;
 
 		default:
-			dprintk(1, " Unknown video mode!!!\n");
+			v4l_dbg(1, debug, client, "Unknown video mode\n");
 			return -EINVAL;
-
 		}
 
 
@@ -644,22 +607,20 @@
 		saa7114_write(client, 0x80, 0x36);	// i-port and scaler back end clock selection
 
 		decoder->norm = *iarg;
-	}
 		break;
+	}
 
 	case DECODER_SET_INPUT:
 	{
 		int *iarg = arg;
 
-		dprintk(1, KERN_DEBUG "%s: decoder set input (%d)\n",
-			I2C_NAME(client), *iarg);
+		v4l_dbg(1, debug, client, "set input (%d)\n", *iarg);
 		if (*iarg < 0 || *iarg > 7) {
 			return -EINVAL;
 		}
 
 		if (decoder->input != *iarg) {
-			dprintk(1, KERN_DEBUG "%s: now setting %s input\n",
-				I2C_NAME(client),
+			v4l_dbg(1, debug, client, "now setting %s input\n",
 				*iarg >= 6 ? "S-Video" : "Composite");
 			decoder->input = *iarg;
 
@@ -690,30 +651,29 @@
 			saa7114_write(client, 0x0e,
 				      decoder->reg[REG_ADDR(0x0e)]);
 		}
-	}
 		break;
+	}
 
 	case DECODER_SET_OUTPUT:
 	{
 		int *iarg = arg;
 
-		dprintk(1, KERN_DEBUG "%s: decoder set output\n",
-			I2C_NAME(client));
+		v4l_dbg(1, debug, client, "set output\n");
 
 		/* not much choice of outputs */
 		if (*iarg != 0) {
 			return -EINVAL;
 		}
-	}
 		break;
+	}
 
 	case DECODER_ENABLE_OUTPUT:
 	{
 		int *iarg = arg;
 		int enable = (*iarg != 0);
 
-		dprintk(1, KERN_DEBUG "%s: decoder %s output\n",
-			I2C_NAME(client), enable ? "enable" : "disable");
+		v4l_dbg(1, debug, client, "%s output\n",
+			enable ? "enable" : "disable");
 
 		decoder->playback = !enable;
 
@@ -754,18 +714,16 @@
 			saa7114_write(client, 0x80, 0x36);
 
 		}
-	}
 		break;
+	}
 
 	case DECODER_SET_PICTURE:
 	{
 		struct video_picture *pic = arg;
 
-		dprintk(1,
-			KERN_DEBUG
-			"%s: decoder set picture bright=%d contrast=%d saturation=%d hue=%d\n",
-			I2C_NAME(client), pic->brightness, pic->contrast,
-			pic->colour, pic->hue);
+		v4l_dbg(1, debug, client,
+			"decoder set picture bright=%d contrast=%d saturation=%d hue=%d\n",
+			pic->brightness, pic->contrast, pic->colour, pic->hue);
 
 		if (decoder->bright != pic->brightness) {
 			/* We want 0 to 255 we get 0-65535 */
@@ -789,8 +747,8 @@
 			saa7114_write(client, 0x0d,
 				      (decoder->hue - 32768) >> 8);
 		}
-	}
 		break;
+	}
 
 	default:
 		return -EINVAL;
@@ -801,58 +759,30 @@
 
 /* ----------------------------------------------------------------------- */
 
-/*
- * Generic i2c probe
- * concerning the addresses: i2c wants 7 bit (without the r/w bit), so '>>1'
- */
-static unsigned short normal_i2c[] =
-    { I2C_SAA7114 >> 1, I2C_SAA7114A >> 1, I2C_CLIENT_END };
+static unsigned short normal_i2c[] = { 0x42 >> 1, 0x40 >> 1, I2C_CLIENT_END };
 
-static unsigned short ignore = I2C_CLIENT_END;
+I2C_CLIENT_INSMOD;
 
-static struct i2c_client_address_data addr_data = {
-	.normal_i2c		= normal_i2c,
-	.probe			= &ignore,
-	.ignore			= &ignore,
-};
-
-static struct i2c_driver i2c_driver_saa7114;
-
-static int
-saa7114_detect_client (struct i2c_adapter *adapter,
-		       int                 address,
-		       int                 kind)
+static int saa7114_probe(struct i2c_client *client,
+			const struct i2c_device_id *id)
 {
 	int i, err[30];
 	short int hoff = SAA_7114_NTSC_HOFFSET;
 	short int voff = SAA_7114_NTSC_VOFFSET;
 	short int w = SAA_7114_NTSC_WIDTH;
 	short int h = SAA_7114_NTSC_HEIGHT;
-	struct i2c_client *client;
 	struct saa7114 *decoder;
 
-	dprintk(1,
-		KERN_INFO
-		"saa7114.c: detecting saa7114 client on address 0x%x\n",
-		address << 1);
-
 	/* Check if the adapter supports the needed features */
-	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA))
-		return 0;
+	if (!i2c_check_functionality(client->adapter, I2C_FUNC_SMBUS_BYTE_DATA))
+		return -ENODEV;
 
-	client = kzalloc(sizeof(struct i2c_client), GFP_KERNEL);
-	if (!client)
-		return -ENOMEM;
-	client->addr = address;
-	client->adapter = adapter;
-	client->driver = &i2c_driver_saa7114;
-	strlcpy(I2C_NAME(client), "saa7114", sizeof(I2C_NAME(client)));
+	v4l_info(client, "chip found @ 0x%x (%s)\n",
+			client->addr << 1, client->adapter->name);
 
 	decoder = kzalloc(sizeof(struct saa7114), GFP_KERNEL);
-	if (decoder == NULL) {
-		kfree(client);
+	if (decoder == NULL)
 		return -ENOMEM;
-	}
 	decoder->norm = VIDEO_MODE_NTSC;
 	decoder->input = -1;
 	decoder->enable = 1;
@@ -937,8 +867,7 @@
 	decoder->reg[REG_ADDR(0x0e)] |= 1;	// combfilter on
 
 
-	dprintk(1, KERN_DEBUG "%s_attach: starting decoder init\n",
-		I2C_NAME(client));
+	v4l_dbg(1, debug, client, "starting init\n");
 
 	err[0] =
 	    saa7114_write_block(client, decoder->reg + (0x20 << 1),
@@ -962,28 +891,23 @@
 
 	for (i = 0; i <= 5; i++) {
 		if (err[i] < 0) {
-			dprintk(1,
-				KERN_ERR
-				"%s_attach: init error %d at stage %d, leaving attach.\n",
-				I2C_NAME(client), i, err[i]);
+			v4l_dbg(1, debug, client,
+				"init error %d at stage %d, leaving attach.\n",
+				i, err[i]);
 			kfree(decoder);
-			kfree(client);
-			return 0;
+			return -EIO;
 		}
 	}
 
 	for (i = 6; i < 8; i++) {
-		dprintk(1,
-			KERN_DEBUG
-			"%s_attach: reg[0x%02x] = 0x%02x (0x%02x)\n",
-			I2C_NAME(client), i, saa7114_read(client, i),
+		v4l_dbg(1, debug, client,
+			"reg[0x%02x] = 0x%02x (0x%02x)\n",
+			i, saa7114_read(client, i),
 			decoder->reg[REG_ADDR(i)]);
 	}
 
-	dprintk(1,
-		KERN_DEBUG
-		"%s_attach: performing decoder reset sequence\n",
-		I2C_NAME(client));
+	v4l_dbg(1, debug, client,
+		"performing decoder reset sequence\n");
 
 	err[6] = saa7114_write(client, 0x80, 0x06);	// i-port and scaler backend clock selection, task A&B off
 	err[7] = saa7114_write(client, 0x88, 0xd8);	// sw reset scaler
@@ -991,19 +915,15 @@
 
 	for (i = 6; i <= 8; i++) {
 		if (err[i] < 0) {
-			dprintk(1,
-				KERN_ERR
-				"%s_attach: init error %d at stage %d, leaving attach.\n",
-				I2C_NAME(client), i, err[i]);
+			v4l_dbg(1, debug, client,
+				"init error %d at stage %d, leaving attach.\n",
+				i, err[i]);
 			kfree(decoder);
-			kfree(client);
-			return 0;
+			return -EIO;
 		}
 	}
 
-	dprintk(1, KERN_INFO "%s_attach: performing the rest of init\n",
-		I2C_NAME(client));
-
+	v4l_dbg(1, debug, client, "performing the rest of init\n");
 
 	err[9] = saa7114_write(client, 0x01, decoder->reg[REG_ADDR(0x01)]);
 	err[10] = saa7114_write_block(client, decoder->reg + (0x03 << 1), (0x1e + 1 - 0x03) << 1);	// big seq
@@ -1039,37 +959,32 @@
 
 	for (i = 9; i <= 18; i++) {
 		if (err[i] < 0) {
-			dprintk(1,
-				KERN_ERR
-				"%s_attach: init error %d at stage %d, leaving attach.\n",
-				I2C_NAME(client), i, err[i]);
+			v4l_dbg(1, debug, client,
+				"init error %d at stage %d, leaving attach.\n",
+				i, err[i]);
 			kfree(decoder);
-			kfree(client);
-			return 0;
+			return -EIO;
 		}
 	}
 
 
 	for (i = 6; i < 8; i++) {
-		dprintk(1,
-			KERN_DEBUG
-			"%s_attach: reg[0x%02x] = 0x%02x (0x%02x)\n",
-			I2C_NAME(client), i, saa7114_read(client, i),
+		v4l_dbg(1, debug, client,
+			"reg[0x%02x] = 0x%02x (0x%02x)\n",
+			i, saa7114_read(client, i),
 			decoder->reg[REG_ADDR(i)]);
 	}
 
 
 	for (i = 0x11; i <= 0x13; i++) {
-		dprintk(1,
-			KERN_DEBUG
-			"%s_attach: reg[0x%02x] = 0x%02x (0x%02x)\n",
-			I2C_NAME(client), i, saa7114_read(client, i),
+		v4l_dbg(1, debug, client,
+			"reg[0x%02x] = 0x%02x (0x%02x)\n",
+			i, saa7114_read(client, i),
 			decoder->reg[REG_ADDR(i)]);
 	}
 
 
-	dprintk(1, KERN_DEBUG "%s_attach: setting video input\n",
-		I2C_NAME(client));
+	v4l_dbg(1, debug, client, "setting video input\n");
 
 	err[19] =
 	    saa7114_write(client, 0x02, decoder->reg[REG_ADDR(0x02)]);
@@ -1080,20 +995,15 @@
 
 	for (i = 19; i <= 21; i++) {
 		if (err[i] < 0) {
-			dprintk(1,
-				KERN_ERR
-				"%s_attach: init error %d at stage %d, leaving attach.\n",
-				I2C_NAME(client), i, err[i]);
+			v4l_dbg(1, debug, client,
+				"init error %d at stage %d, leaving attach.\n",
+				i, err[i]);
 			kfree(decoder);
-			kfree(client);
-			return 0;
+			return -EIO;
 		}
 	}
 
-	dprintk(1,
-		KERN_DEBUG
-		"%s_attach: performing decoder reset sequence\n",
-		I2C_NAME(client));
+	v4l_dbg(1, debug, client, "performing decoder reset sequence\n");
 
 	err[22] = saa7114_write(client, 0x88, 0xd8);	// sw reset scaler
 	err[23] = saa7114_write(client, 0x88, 0xf8);	// sw reset scaler release
@@ -1102,13 +1012,11 @@
 
 	for (i = 22; i <= 24; i++) {
 		if (err[i] < 0) {
-			dprintk(1,
-				KERN_ERR
-				"%s_attach: init error %d at stage %d, leaving attach.\n",
-				I2C_NAME(client), i, err[i]);
+			v4l_dbg(1, debug, client,
+				"init error %d at stage %d, leaving attach.\n",
+				i, err[i]);
 			kfree(decoder);
-			kfree(client);
-			return 0;
+			return -EIO;
 		}
 	}
 
@@ -1116,101 +1024,45 @@
 	err[26] = saa7114_write(client, 0x07, init[REG_ADDR(0x07)]);
 	err[27] = saa7114_write(client, 0x10, init[REG_ADDR(0x10)]);
 
-	dprintk(1,
-		KERN_INFO
-		"%s_attach: chip version %x, decoder status 0x%02x\n",
-		I2C_NAME(client), saa7114_read(client, 0x00) >> 4,
+	v4l_dbg(1, debug, client, "chip version %x, decoder status 0x%02x\n",
+		saa7114_read(client, 0x00) >> 4,
 		saa7114_read(client, 0x1f));
-	dprintk(1,
-		KERN_DEBUG
-		"%s_attach: power save control: 0x%02x, scaler status: 0x%02x\n",
-		I2C_NAME(client), saa7114_read(client, 0x88),
+	v4l_dbg(1, debug, client,
+		"power save control: 0x%02x, scaler status: 0x%02x\n",
+		saa7114_read(client, 0x88),
 		saa7114_read(client, 0x8f));
 
 
 	for (i = 0x94; i < 0x96; i++) {
-		dprintk(1,
-			KERN_DEBUG
-			"%s_attach: reg[0x%02x] = 0x%02x (0x%02x)\n",
-			I2C_NAME(client), i, saa7114_read(client, i),
+		v4l_dbg(1, debug, client,
+			"reg[0x%02x] = 0x%02x (0x%02x)\n",
+			i, saa7114_read(client, i),
 			decoder->reg[REG_ADDR(i)]);
 	}
 
-	i = i2c_attach_client(client);
-	if (i) {
-		kfree(client);
-		kfree(decoder);
-		return i;
-	}
-
 	//i = saa7114_write_block(client, init, sizeof(init));
-	i = 0;
-	if (i < 0) {
-		dprintk(1, KERN_ERR "%s_attach error: init status %d\n",
-			I2C_NAME(client), i);
-	} else {
-		dprintk(1,
-			KERN_INFO
-			"%s_attach: chip version %x at address 0x%x\n",
-			I2C_NAME(client), saa7114_read(client, 0x00) >> 4,
-			client->addr << 1);
-	}
-
 	return 0;
 }
 
-static int
-saa7114_attach_adapter (struct i2c_adapter *adapter)
+static int saa7114_remove(struct i2c_client *client)
 {
-	dprintk(1,
-		KERN_INFO
-		"saa7114.c: starting probe for adapter %s (0x%x)\n",
-		I2C_NAME(adapter), adapter->id);
-	return i2c_probe(adapter, &addr_data, &saa7114_detect_client);
-}
-
-static int
-saa7114_detach_client (struct i2c_client *client)
-{
-	struct saa7114 *decoder = i2c_get_clientdata(client);
-	int err;
-
-	err = i2c_detach_client(client);
-	if (err) {
-		return err;
-	}
-
-	kfree(decoder);
-	kfree(client);
-
+	kfree(i2c_get_clientdata(client));
 	return 0;
 }
 
 /* ----------------------------------------------------------------------- */
 
-static struct i2c_driver i2c_driver_saa7114 = {
-	.driver = {
-		.name = "saa7114",
-	},
-
-	.id = I2C_DRIVERID_SAA7114,
-
-	.attach_adapter = saa7114_attach_adapter,
-	.detach_client = saa7114_detach_client,
-	.command = saa7114_command,
+static const struct i2c_device_id saa7114_id[] = {
+	{ "saa7114_old", 0 },	/* "saa7114" maps to the saa7115 driver */
+	{ }
 };
+MODULE_DEVICE_TABLE(i2c, saa7114_id);
 
-static int __init
-saa7114_init (void)
-{
-	return i2c_add_driver(&i2c_driver_saa7114);
-}
-
-static void __exit
-saa7114_exit (void)
-{
-	i2c_del_driver(&i2c_driver_saa7114);
-}
-
-module_init(saa7114_init);
-module_exit(saa7114_exit);
+static struct v4l2_i2c_driver_data v4l2_i2c_data = {
+	.name = "saa7114",
+	.driverid = I2C_DRIVERID_SAA7114,
+	.command = saa7114_command,
+	.probe = saa7114_probe,
+	.remove = saa7114_remove,
+	.id_table = saa7114_id,
+};
diff --git a/drivers/media/video/saa7127.c b/drivers/media/video/saa7127.c
index d0e83fe..cc02fb1 100644
--- a/drivers/media/video/saa7127.c
+++ b/drivers/media/video/saa7127.c
@@ -29,7 +29,7 @@
  * Note: the saa7126 is identical to the saa7127, and the saa7128 is
  * identical to the saa7129, except that the saa7126 and saa7128 have
  * macrovision anti-taping support. This driver will almost certainly
- * work find for those chips, except of course for the missing anti-taping
+ * work fine for those chips, except of course for the missing anti-taping
  * support.
  *
  * This program is free software; you can redistribute it and/or modify
diff --git a/drivers/media/video/saa7134/saa7134-dvb.c b/drivers/media/video/saa7134/saa7134-dvb.c
index 87c1098..8c46115 100644
--- a/drivers/media/video/saa7134/saa7134-dvb.c
+++ b/drivers/media/video/saa7134/saa7134-dvb.c
@@ -535,11 +535,16 @@
 				struct tda1004x_config *cdec_conf,
 				struct tda827x_config *tuner_conf)
 {
-	dev->dvb.frontend = dvb_attach(tda10046_attach, cdec_conf, &dev->i2c_adap);
-	if (dev->dvb.frontend) {
+	struct videobuf_dvb_frontend *fe0;
+
+	/* Get the first frontend */
+	fe0 = videobuf_dvb_get_frontend(&dev->frontends, 1);
+
+	fe0->dvb.frontend = dvb_attach(tda10046_attach, cdec_conf, &dev->i2c_adap);
+	if (fe0->dvb.frontend) {
 		if (cdec_conf->i2c_gate)
-			dev->dvb.frontend->ops.i2c_gate_ctrl = tda8290_i2c_gate_ctrl;
-		if (dvb_attach(tda827x_attach, dev->dvb.frontend,
+			fe0->dvb.frontend->ops.i2c_gate_ctrl = tda8290_i2c_gate_ctrl;
+		if (dvb_attach(tda827x_attach, fe0->dvb.frontend,
 			       cdec_conf->tuner_address,
 			       &dev->i2c_adap, tuner_conf))
 			return 0;
@@ -944,12 +949,30 @@
 {
 	int ret;
 	int attach_xc3028 = 0;
+	struct videobuf_dvb_frontend *fe0;
+
+	/* FIXME: add support for multi-frontend */
+	mutex_init(&dev->frontends.lock);
+	INIT_LIST_HEAD(&dev->frontends.felist);
+	dev->frontends.active_fe_id = 0;
+
+	printk(KERN_INFO "%s() allocating 1 frontend\n", __func__);
+
+	if (videobuf_dvb_alloc_frontend(&dev->frontends, 1) == NULL) {
+		printk(KERN_ERR "%s() failed to alloc\n", __func__);
+		return -ENOMEM;
+	}
+
+	/* Get the first frontend */
+	fe0 = videobuf_dvb_get_frontend(&dev->frontends, 1);
+	if (!fe0)
+		return -EINVAL;
 
 	/* init struct videobuf_dvb */
 	dev->ts.nr_bufs    = 32;
 	dev->ts.nr_packets = 32*4;
-	dev->dvb.name = dev->name;
-	videobuf_queue_sg_init(&dev->dvb.dvbq, &saa7134_ts_qops,
+	fe0->dvb.name = dev->name;
+	videobuf_queue_sg_init(&fe0->dvb.dvbq, &saa7134_ts_qops,
 			    &dev->pci->dev, &dev->slock,
 			    V4L2_BUF_TYPE_VIDEO_CAPTURE,
 			    V4L2_FIELD_ALTERNATE,
@@ -959,47 +982,47 @@
 	switch (dev->board) {
 	case SAA7134_BOARD_PINNACLE_300I_DVBT_PAL:
 		dprintk("pinnacle 300i dvb setup\n");
-		dev->dvb.frontend = dvb_attach(mt352_attach, &pinnacle_300i,
+		fe0->dvb.frontend = dvb_attach(mt352_attach, &pinnacle_300i,
 					       &dev->i2c_adap);
-		if (dev->dvb.frontend) {
-			dev->dvb.frontend->ops.tuner_ops.set_params = mt352_pinnacle_tuner_set_params;
+		if (fe0->dvb.frontend) {
+			fe0->dvb.frontend->ops.tuner_ops.set_params = mt352_pinnacle_tuner_set_params;
 		}
 		break;
 	case SAA7134_BOARD_AVERMEDIA_777:
 	case SAA7134_BOARD_AVERMEDIA_A16AR:
 		dprintk("avertv 777 dvb setup\n");
-		dev->dvb.frontend = dvb_attach(mt352_attach, &avermedia_777,
+		fe0->dvb.frontend = dvb_attach(mt352_attach, &avermedia_777,
 					       &dev->i2c_adap);
-		if (dev->dvb.frontend) {
-			dvb_attach(simple_tuner_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend) {
+			dvb_attach(simple_tuner_attach, fe0->dvb.frontend,
 				   &dev->i2c_adap, 0x61,
 				   TUNER_PHILIPS_TD1316);
 		}
 		break;
 	case SAA7134_BOARD_AVERMEDIA_A16D:
 		dprintk("AverMedia A16D dvb setup\n");
-		dev->dvb.frontend = dvb_attach(mt352_attach,
+		fe0->dvb.frontend = dvb_attach(mt352_attach,
 						&avermedia_xc3028_mt352_dev,
 						&dev->i2c_adap);
 		attach_xc3028 = 1;
 		break;
 	case SAA7134_BOARD_MD7134:
-		dev->dvb.frontend = dvb_attach(tda10046_attach,
+		fe0->dvb.frontend = dvb_attach(tda10046_attach,
 					       &medion_cardbus,
 					       &dev->i2c_adap);
-		if (dev->dvb.frontend) {
-			dvb_attach(simple_tuner_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend) {
+			dvb_attach(simple_tuner_attach, fe0->dvb.frontend,
 				   &dev->i2c_adap, medion_cardbus.tuner_address,
 				   TUNER_PHILIPS_FMD1216ME_MK3);
 		}
 		break;
 	case SAA7134_BOARD_PHILIPS_TOUGH:
-		dev->dvb.frontend = dvb_attach(tda10046_attach,
+		fe0->dvb.frontend = dvb_attach(tda10046_attach,
 					       &philips_tu1216_60_config,
 					       &dev->i2c_adap);
-		if (dev->dvb.frontend) {
-			dev->dvb.frontend->ops.tuner_ops.init = philips_tu1216_init;
-			dev->dvb.frontend->ops.tuner_ops.set_params = philips_tda6651_pll_set;
+		if (fe0->dvb.frontend) {
+			fe0->dvb.frontend->ops.tuner_ops.init = philips_tu1216_init;
+			fe0->dvb.frontend->ops.tuner_ops.set_params = philips_tda6651_pll_set;
 		}
 		break;
 	case SAA7134_BOARD_FLYDVBTDUO:
@@ -1010,24 +1033,24 @@
 		break;
 	case SAA7134_BOARD_PHILIPS_EUROPA:
 	case SAA7134_BOARD_VIDEOMATE_DVBT_300:
-		dev->dvb.frontend = dvb_attach(tda10046_attach,
+		fe0->dvb.frontend = dvb_attach(tda10046_attach,
 					       &philips_europa_config,
 					       &dev->i2c_adap);
-		if (dev->dvb.frontend) {
-			dev->original_demod_sleep = dev->dvb.frontend->ops.sleep;
-			dev->dvb.frontend->ops.sleep = philips_europa_demod_sleep;
-			dev->dvb.frontend->ops.tuner_ops.init = philips_europa_tuner_init;
-			dev->dvb.frontend->ops.tuner_ops.sleep = philips_europa_tuner_sleep;
-			dev->dvb.frontend->ops.tuner_ops.set_params = philips_td1316_tuner_set_params;
+		if (fe0->dvb.frontend) {
+			dev->original_demod_sleep = fe0->dvb.frontend->ops.sleep;
+			fe0->dvb.frontend->ops.sleep = philips_europa_demod_sleep;
+			fe0->dvb.frontend->ops.tuner_ops.init = philips_europa_tuner_init;
+			fe0->dvb.frontend->ops.tuner_ops.sleep = philips_europa_tuner_sleep;
+			fe0->dvb.frontend->ops.tuner_ops.set_params = philips_td1316_tuner_set_params;
 		}
 		break;
 	case SAA7134_BOARD_VIDEOMATE_DVBT_200:
-		dev->dvb.frontend = dvb_attach(tda10046_attach,
+		fe0->dvb.frontend = dvb_attach(tda10046_attach,
 					       &philips_tu1216_61_config,
 					       &dev->i2c_adap);
-		if (dev->dvb.frontend) {
-			dev->dvb.frontend->ops.tuner_ops.init = philips_tu1216_init;
-			dev->dvb.frontend->ops.tuner_ops.set_params = philips_tda6651_pll_set;
+		if (fe0->dvb.frontend) {
+			fe0->dvb.frontend->ops.tuner_ops.init = philips_tu1216_init;
+			fe0->dvb.frontend->ops.tuner_ops.set_params = philips_tda6651_pll_set;
 		}
 		break;
 	case SAA7134_BOARD_KWORLD_DVBT_210:
@@ -1066,14 +1089,14 @@
 						 &tda827x_cfg_0) < 0)
 				goto dettach_frontend;
 		} else {  		/* satellite */
-			dev->dvb.frontend = dvb_attach(tda10086_attach, &flydvbs, &dev->i2c_adap);
-			if (dev->dvb.frontend) {
-				if (dvb_attach(tda826x_attach, dev->dvb.frontend, 0x63,
+			fe0->dvb.frontend = dvb_attach(tda10086_attach, &flydvbs, &dev->i2c_adap);
+			if (fe0->dvb.frontend) {
+				if (dvb_attach(tda826x_attach, fe0->dvb.frontend, 0x63,
 									&dev->i2c_adap, 0) == NULL) {
 					wprintk("%s: Lifeview Trio, No tda826x found!\n", __func__);
 					goto dettach_frontend;
 				}
-				if (dvb_attach(isl6421_attach, dev->dvb.frontend, &dev->i2c_adap,
+				if (dvb_attach(isl6421_attach, fe0->dvb.frontend, &dev->i2c_adap,
 										0x08, 0, 0) == NULL) {
 					wprintk("%s: Lifeview Trio, No ISL6421 found!\n", __func__);
 					goto dettach_frontend;
@@ -1083,11 +1106,11 @@
 		break;
 	case SAA7134_BOARD_ADS_DUO_CARDBUS_PTV331:
 	case SAA7134_BOARD_FLYDVBT_HYBRID_CARDBUS:
-		dev->dvb.frontend = dvb_attach(tda10046_attach,
+		fe0->dvb.frontend = dvb_attach(tda10046_attach,
 					       &ads_tech_duo_config,
 					       &dev->i2c_adap);
-		if (dev->dvb.frontend) {
-			if (dvb_attach(tda827x_attach,dev->dvb.frontend,
+		if (fe0->dvb.frontend) {
+			if (dvb_attach(tda827x_attach,fe0->dvb.frontend,
 				   ads_tech_duo_config.tuner_address, &dev->i2c_adap,
 								&ads_duo_cfg) == NULL) {
 				wprintk("no tda827x tuner found at addr: %02x\n",
@@ -1108,15 +1131,15 @@
 						 &tda827x_cfg_0) < 0)
 				goto dettach_frontend;
 		} else {        /* satellite */
-			dev->dvb.frontend = dvb_attach(tda10086_attach,
+			fe0->dvb.frontend = dvb_attach(tda10086_attach,
 							&flydvbs, &dev->i2c_adap);
-			if (dev->dvb.frontend) {
-				struct dvb_frontend *fe = dev->dvb.frontend;
+			if (fe0->dvb.frontend) {
+				struct dvb_frontend *fe = fe0->dvb.frontend;
 				u8 dev_id = dev->eedata[2];
 				u8 data = 0xc4;
 				struct i2c_msg msg = {.addr = 0x08, .flags = 0, .len = 1};
 
-				if (dvb_attach(tda826x_attach, dev->dvb.frontend,
+				if (dvb_attach(tda826x_attach, fe0->dvb.frontend,
 						0x60, &dev->i2c_adap, 0) == NULL) {
 					wprintk("%s: Medion Quadro, no tda826x "
 						"found !\n", __func__);
@@ -1150,31 +1173,31 @@
 		}
 		break;
 	case SAA7134_BOARD_AVERMEDIA_AVERTVHD_A180:
-		dev->dvb.frontend = dvb_attach(nxt200x_attach, &avertvhda180,
+		fe0->dvb.frontend = dvb_attach(nxt200x_attach, &avertvhda180,
 					       &dev->i2c_adap);
-		if (dev->dvb.frontend)
-			dvb_attach(dvb_pll_attach, dev->dvb.frontend, 0x61,
+		if (fe0->dvb.frontend)
+			dvb_attach(dvb_pll_attach, fe0->dvb.frontend, 0x61,
 				   NULL, DVB_PLL_TDHU2);
 		break;
 	case SAA7134_BOARD_ADS_INSTANT_HDTV_PCI:
 	case SAA7134_BOARD_KWORLD_ATSC110:
-		dev->dvb.frontend = dvb_attach(nxt200x_attach, &kworldatsc110,
+		fe0->dvb.frontend = dvb_attach(nxt200x_attach, &kworldatsc110,
 					       &dev->i2c_adap);
-		if (dev->dvb.frontend)
-			dvb_attach(simple_tuner_attach, dev->dvb.frontend,
+		if (fe0->dvb.frontend)
+			dvb_attach(simple_tuner_attach, fe0->dvb.frontend,
 				   &dev->i2c_adap, 0x61,
 				   TUNER_PHILIPS_TUV1236D);
 		break;
 	case SAA7134_BOARD_FLYDVBS_LR300:
-		dev->dvb.frontend = dvb_attach(tda10086_attach, &flydvbs,
+		fe0->dvb.frontend = dvb_attach(tda10086_attach, &flydvbs,
 					       &dev->i2c_adap);
-		if (dev->dvb.frontend) {
-			if (dvb_attach(tda826x_attach, dev->dvb.frontend, 0x60,
+		if (fe0->dvb.frontend) {
+			if (dvb_attach(tda826x_attach, fe0->dvb.frontend, 0x60,
 				       &dev->i2c_adap, 0) == NULL) {
 				wprintk("%s: No tda826x found!\n", __func__);
 				goto dettach_frontend;
 			}
-			if (dvb_attach(isl6421_attach, dev->dvb.frontend,
+			if (dvb_attach(isl6421_attach, fe0->dvb.frontend,
 				       &dev->i2c_adap, 0x08, 0, 0) == NULL) {
 				wprintk("%s: No ISL6421 found!\n", __func__);
 				goto dettach_frontend;
@@ -1182,25 +1205,25 @@
 		}
 		break;
 	case SAA7134_BOARD_ASUS_EUROPA2_HYBRID:
-		dev->dvb.frontend = dvb_attach(tda10046_attach,
+		fe0->dvb.frontend = dvb_attach(tda10046_attach,
 					       &medion_cardbus,
 					       &dev->i2c_adap);
-		if (dev->dvb.frontend) {
-			dev->original_demod_sleep = dev->dvb.frontend->ops.sleep;
-			dev->dvb.frontend->ops.sleep = philips_europa_demod_sleep;
+		if (fe0->dvb.frontend) {
+			dev->original_demod_sleep = fe0->dvb.frontend->ops.sleep;
+			fe0->dvb.frontend->ops.sleep = philips_europa_demod_sleep;
 
-			dvb_attach(simple_tuner_attach, dev->dvb.frontend,
+			dvb_attach(simple_tuner_attach, fe0->dvb.frontend,
 				   &dev->i2c_adap, medion_cardbus.tuner_address,
 				   TUNER_PHILIPS_FMD1216ME_MK3);
 		}
 		break;
 	case SAA7134_BOARD_VIDEOMATE_DVBT_200A:
-		dev->dvb.frontend = dvb_attach(tda10046_attach,
+		fe0->dvb.frontend = dvb_attach(tda10046_attach,
 				&philips_europa_config,
 				&dev->i2c_adap);
-		if (dev->dvb.frontend) {
-			dev->dvb.frontend->ops.tuner_ops.init = philips_td1316_tuner_init;
-			dev->dvb.frontend->ops.tuner_ops.set_params = philips_td1316_tuner_set_params;
+		if (fe0->dvb.frontend) {
+			fe0->dvb.frontend->ops.tuner_ops.init = philips_td1316_tuner_init;
+			fe0->dvb.frontend->ops.tuner_ops.set_params = philips_td1316_tuner_set_params;
 		}
 		break;
 	case SAA7134_BOARD_CINERGY_HT_PCMCIA:
@@ -1239,15 +1262,15 @@
 			goto dettach_frontend;
 		break;
 	case SAA7134_BOARD_PHILIPS_SNAKE:
-		dev->dvb.frontend = dvb_attach(tda10086_attach, &flydvbs,
+		fe0->dvb.frontend = dvb_attach(tda10086_attach, &flydvbs,
 						&dev->i2c_adap);
-		if (dev->dvb.frontend) {
-			if (dvb_attach(tda826x_attach, dev->dvb.frontend, 0x60,
+		if (fe0->dvb.frontend) {
+			if (dvb_attach(tda826x_attach, fe0->dvb.frontend, 0x60,
 					&dev->i2c_adap, 0) == NULL) {
 				wprintk("%s: No tda826x found!\n", __func__);
 				goto dettach_frontend;
 			}
-			if (dvb_attach(lnbp21_attach, dev->dvb.frontend,
+			if (dvb_attach(lnbp21_attach, fe0->dvb.frontend,
 					&dev->i2c_adap, 0, 0) == NULL) {
 				wprintk("%s: No lnbp21 found!\n", __func__);
 				goto dettach_frontend;
@@ -1269,24 +1292,24 @@
 		saa7134_set_gpio(dev, 25, 0);
 		msleep(10);
 		saa7134_set_gpio(dev, 25, 1);
-		dev->dvb.frontend = dvb_attach(mt352_attach,
+		fe0->dvb.frontend = dvb_attach(mt352_attach,
 						&avermedia_xc3028_mt352_dev,
 						&dev->i2c_adap);
 		attach_xc3028 = 1;
 		break;
 	case SAA7134_BOARD_MD7134_BRIDGE_2:
-		dev->dvb.frontend = dvb_attach(tda10086_attach,
+		fe0->dvb.frontend = dvb_attach(tda10086_attach,
 						&sd1878_4m, &dev->i2c_adap);
-		if (dev->dvb.frontend) {
+		if (fe0->dvb.frontend) {
 			struct dvb_frontend *fe;
-			if (dvb_attach(dvb_pll_attach, dev->dvb.frontend, 0x60,
+			if (dvb_attach(dvb_pll_attach, fe0->dvb.frontend, 0x60,
 				  &dev->i2c_adap, DVB_PLL_PHILIPS_SD1878_TDA8261) == NULL) {
 				wprintk("%s: MD7134 DVB-S, no SD1878 "
 					"found !\n", __func__);
 				goto dettach_frontend;
 			}
 			/* we need to open the i2c gate (we know it exists) */
-			fe = dev->dvb.frontend;
+			fe = fe0->dvb.frontend;
 			fe->ops.i2c_gate_ctrl(fe, 1);
 			if (dvb_attach(isl6405_attach, fe,
 					&dev->i2c_adap, 0x08, 0, 0) == NULL) {
@@ -1305,7 +1328,7 @@
 		saa7134_set_gpio(dev, 25, 0);
 		msleep(10);
 		saa7134_set_gpio(dev, 25, 1);
-		dev->dvb.frontend = dvb_attach(mt352_attach,
+		fe0->dvb.frontend = dvb_attach(mt352_attach,
 						&avermedia_xc3028_mt352_dev,
 						&dev->i2c_adap);
 		attach_xc3028 = 1;
@@ -1316,17 +1339,17 @@
 							&tda827x_cfg_2) < 0)
 				goto dettach_frontend;
 		} else {  		/* satellite */
-			dev->dvb.frontend = dvb_attach(tda10086_attach,
+			fe0->dvb.frontend = dvb_attach(tda10086_attach,
 						&flydvbs, &dev->i2c_adap);
-			if (dev->dvb.frontend) {
+			if (fe0->dvb.frontend) {
 				if (dvb_attach(tda826x_attach,
-						dev->dvb.frontend, 0x60,
+						fe0->dvb.frontend, 0x60,
 						&dev->i2c_adap, 0) == NULL) {
 					wprintk("%s: Asus Tiger 3in1, no "
 						"tda826x found!\n", __func__);
 					goto dettach_frontend;
 				}
-				if (dvb_attach(lnbp21_attach, dev->dvb.frontend,
+				if (dvb_attach(lnbp21_attach, fe0->dvb.frontend,
 						&dev->i2c_adap, 0, 0) == NULL) {
 					wprintk("%s: Asus Tiger 3in1, no lnbp21"
 						" found!\n", __func__);
@@ -1352,10 +1375,10 @@
 			.i2c_addr  = 0x61,
 		};
 
-		if (!dev->dvb.frontend)
+		if (!fe0->dvb.frontend)
 			return -1;
 
-		fe = dvb_attach(xc2028_attach, dev->dvb.frontend, &cfg);
+		fe = dvb_attach(xc2028_attach, fe0->dvb.frontend, &cfg);
 		if (!fe) {
 			printk(KERN_ERR "%s/2: xc3028 attach failed\n",
 			       dev->name);
@@ -1363,40 +1386,47 @@
 		}
 	}
 
-	if (NULL == dev->dvb.frontend) {
+	if (NULL == fe0->dvb.frontend) {
 		printk(KERN_ERR "%s/dvb: frontend initialization failed\n", dev->name);
 		return -1;
 	}
 	/* define general-purpose callback pointer */
-	dev->dvb.frontend->callback = saa7134_tuner_callback;
+	fe0->dvb.frontend->callback = saa7134_tuner_callback;
 
 	/* register everything else */
-	ret = videobuf_dvb_register(&dev->dvb, THIS_MODULE, dev, &dev->pci->dev,
-				    adapter_nr);
+	ret = videobuf_dvb_register_bus(&dev->frontends, THIS_MODULE, dev,
+		&dev->pci->dev, adapter_nr, 0);
 
 	/* this sequence is necessary to make the tda1004x load its firmware
 	 * and to enter analog mode of hybrid boards
 	 */
 	if (!ret) {
-		if (dev->dvb.frontend->ops.init)
-			dev->dvb.frontend->ops.init(dev->dvb.frontend);
-		if (dev->dvb.frontend->ops.sleep)
-			dev->dvb.frontend->ops.sleep(dev->dvb.frontend);
-		if (dev->dvb.frontend->ops.tuner_ops.sleep)
-			dev->dvb.frontend->ops.tuner_ops.sleep(dev->dvb.frontend);
+		if (fe0->dvb.frontend->ops.init)
+			fe0->dvb.frontend->ops.init(fe0->dvb.frontend);
+		if (fe0->dvb.frontend->ops.sleep)
+			fe0->dvb.frontend->ops.sleep(fe0->dvb.frontend);
+		if (fe0->dvb.frontend->ops.tuner_ops.sleep)
+			fe0->dvb.frontend->ops.tuner_ops.sleep(fe0->dvb.frontend);
 	}
 	return ret;
 
 dettach_frontend:
-	if (dev->dvb.frontend)
-		dvb_frontend_detach(dev->dvb.frontend);
-	dev->dvb.frontend = NULL;
+	if (fe0->dvb.frontend)
+		dvb_frontend_detach(fe0->dvb.frontend);
+	fe0->dvb.frontend = NULL;
 
 	return -1;
 }
 
 static int dvb_fini(struct saa7134_dev *dev)
 {
+	struct videobuf_dvb_frontend *fe0;
+
+	/* Get the first frontend */
+	fe0 = videobuf_dvb_get_frontend(&dev->frontends, 1);
+	if (!fe0)
+		return -EINVAL;
+
 	/* FIXME: I suspect that this code is bogus, since the entry for
 	   Pinnacle 300I DVB-T PAL already defines the proper init to allow
 	   the detection of mt2032 (TDA9887_PORT2_INACTIVE)
@@ -1416,7 +1446,7 @@
 			u8 data = 0x80;
 			struct i2c_msg msg = {.addr = 0x08, .buf = &data, .flags = 0, .len = 1};
 			struct dvb_frontend *fe;
-			fe = dev->dvb.frontend;
+			fe = fe0->dvb.frontend;
 			if (fe->ops.i2c_gate_ctrl) {
 				fe->ops.i2c_gate_ctrl(fe, 1);
 				i2c_transfer(&dev->i2c_adap, &msg, 1);
@@ -1424,8 +1454,8 @@
 			}
 		}
 	}
-	if (dev->dvb.frontend)
-		videobuf_dvb_unregister(&dev->dvb);
+	if (fe0->dvb.frontend)
+		videobuf_dvb_unregister_bus(&dev->frontends);
 	return 0;
 }
 
diff --git a/drivers/media/video/saa7134/saa7134.h b/drivers/media/video/saa7134/saa7134.h
index 491ab1f..24096d6 100644
--- a/drivers/media/video/saa7134/saa7134.h
+++ b/drivers/media/video/saa7134/saa7134.h
@@ -581,7 +581,7 @@
 
 #if defined(CONFIG_VIDEO_SAA7134_DVB) || defined(CONFIG_VIDEO_SAA7134_DVB_MODULE)
 	/* SAA7134_MPEG_DVB only */
-	struct videobuf_dvb        dvb;
+	struct videobuf_dvb_frontends frontends;
 	int (*original_demod_sleep)(struct dvb_frontend *fe);
 	int (*original_set_voltage)(struct dvb_frontend *fe, fe_sec_voltage_t voltage);
 	int (*original_set_high_voltage)(struct dvb_frontend *fe, long arg);
diff --git a/drivers/media/video/saa7185.c b/drivers/media/video/saa7185.c
index 02fda4e..6debb65 100644
--- a/drivers/media/video/saa7185.c
+++ b/drivers/media/video/saa7185.c
@@ -25,43 +25,25 @@
  */
 
 #include <linux/module.h>
-#include <linux/init.h>
-#include <linux/delay.h>
-#include <linux/errno.h>
-#include <linux/fs.h>
-#include <linux/kernel.h>
-#include <linux/major.h>
-#include <linux/slab.h>
-#include <linux/mm.h>
-#include <linux/signal.h>
 #include <linux/types.h>
-#include <linux/i2c.h>
-#include <asm/io.h>
-#include <asm/pgtable.h>
-#include <asm/page.h>
+#include <linux/ioctl.h>
 #include <asm/uaccess.h>
-
+#include <linux/i2c.h>
+#include <linux/i2c-id.h>
 #include <linux/videodev.h>
 #include <linux/video_encoder.h>
+#include <media/v4l2-common.h>
+#include <media/v4l2-i2c-drv-legacy.h>
 
 MODULE_DESCRIPTION("Philips SAA7185 video encoder driver");
 MODULE_AUTHOR("Dave Perks");
 MODULE_LICENSE("GPL");
 
 
-#define I2C_NAME(s) (s)->name
-
-
 static int debug;
 module_param(debug, int, 0);
 MODULE_PARM_DESC(debug, "Debug level (0-1)");
 
-#define dprintk(num, format, args...) \
-	do { \
-		if (debug >= num) \
-			printk(format, ##args); \
-	} while (0)
-
 /* ----------------------------------------------------------------------- */
 
 struct saa7185 {
@@ -75,32 +57,24 @@
 	int sat;
 };
 
-#define   I2C_SAA7185        0x88
-
 /* ----------------------------------------------------------------------- */
 
-static inline int
-saa7185_read (struct i2c_client *client)
+static inline int saa7185_read(struct i2c_client *client)
 {
 	return i2c_smbus_read_byte(client);
 }
 
-static int
-saa7185_write (struct i2c_client *client,
-	       u8                 reg,
-	       u8                 value)
+static int saa7185_write(struct i2c_client *client, u8 reg, u8 value)
 {
 	struct saa7185 *encoder = i2c_get_clientdata(client);
 
-	dprintk(1, KERN_DEBUG "SAA7185: %02x set to %02x\n", reg, value);
+	v4l_dbg(1, debug, client, "%02x set to %02x\n", reg, value);
 	encoder->reg[reg] = value;
 	return i2c_smbus_write_byte_data(client, reg, value);
 }
 
-static int
-saa7185_write_block (struct i2c_client *client,
-		     const u8          *data,
-		     unsigned int       len)
+static int saa7185_write_block(struct i2c_client *client,
+		const u8 *data, unsigned int len)
 {
 	int ret = -1;
 	u8 reg;
@@ -121,18 +95,17 @@
 				    encoder->reg[reg++] = data[1];
 				len -= 2;
 				data += 2;
-			} while (len >= 2 && data[0] == reg &&
-				 block_len < 32);
-			if ((ret = i2c_master_send(client, block_data,
-						   block_len)) < 0)
+			} while (len >= 2 && data[0] == reg && block_len < 32);
+			ret = i2c_master_send(client, block_data, block_len);
+			if (ret < 0)
 				break;
 		}
 	} else {
 		/* do some slow I2C emulation kind of thing */
 		while (len >= 2) {
 			reg = *data++;
-			if ((ret = saa7185_write(client, reg,
-						 *data++)) < 0)
+			ret = saa7185_write(client, reg, *data++);
+			if (ret < 0)
 				break;
 			len -= 2;
 		}
@@ -240,15 +213,11 @@
 	0x66, 0x21,		/* FSC3 */
 };
 
-static int
-saa7185_command (struct i2c_client *client,
-		 unsigned int       cmd,
-		 void              *arg)
+static int saa7185_command(struct i2c_client *client, unsigned cmd, void *arg)
 {
 	struct saa7185 *encoder = i2c_get_clientdata(client);
 
 	switch (cmd) {
-
 	case 0:
 		saa7185_write_block(client, init_common,
 				    sizeof(init_common));
@@ -264,7 +233,6 @@
 					    sizeof(init_pal));
 			break;
 		}
-
 		break;
 
 	case ENCODER_GET_CAPABILITIES:
@@ -276,8 +244,8 @@
 		    VIDEO_ENCODER_SECAM | VIDEO_ENCODER_CCIR;
 		cap->inputs = 1;
 		cap->outputs = 1;
-	}
 		break;
+	}
 
 	case ENCODER_SET_NORM:
 	{
@@ -286,7 +254,6 @@
 		//saa7185_write_block(client, init_common, sizeof(init_common));
 
 		switch (*iarg) {
-
 		case VIDEO_MODE_NTSC:
 			saa7185_write_block(client, init_ntsc,
 					    sizeof(init_ntsc));
@@ -300,11 +267,10 @@
 		case VIDEO_MODE_SECAM:
 		default:
 			return -EINVAL;
-
 		}
 		encoder->norm = *iarg;
-	}
 		break;
+	}
 
 	case ENCODER_SET_INPUT:
 	{
@@ -314,7 +280,6 @@
 		 *iarg = 1: input is from ZR36060 */
 
 		switch (*iarg) {
-
 		case 0:
 			/* Switch RTCE to 1 */
 			saa7185_write(client, 0x61,
@@ -332,21 +297,19 @@
 
 		default:
 			return -EINVAL;
-
 		}
-	}
 		break;
+	}
 
 	case ENCODER_SET_OUTPUT:
 	{
 		int *iarg = arg;
 
 		/* not much choice of outputs */
-		if (*iarg != 0) {
+		if (*iarg != 0)
 			return -EINVAL;
-		}
-	}
 		break;
+	}
 
 	case ENCODER_ENABLE_OUTPUT:
 	{
@@ -356,8 +319,8 @@
 		saa7185_write(client, 0x61,
 			      (encoder->reg[0x61] & 0xbf) |
 			      (encoder->enable ? 0x00 : 0x40));
-	}
 		break;
+	}
 
 	default:
 		return -EINVAL;
@@ -368,138 +331,65 @@
 
 /* ----------------------------------------------------------------------- */
 
-/*
- * Generic i2c probe
- * concerning the addresses: i2c wants 7 bit (without the r/w bit), so '>>1'
- */
-static unsigned short normal_i2c[] = { I2C_SAA7185 >> 1, I2C_CLIENT_END };
+static unsigned short normal_i2c[] = { 0x88 >> 1, I2C_CLIENT_END };
 
-static unsigned short ignore = I2C_CLIENT_END;
+I2C_CLIENT_INSMOD;
 
-static struct i2c_client_address_data addr_data = {
-	.normal_i2c		= normal_i2c,
-	.probe			= &ignore,
-	.ignore			= &ignore,
-};
-
-static struct i2c_driver i2c_driver_saa7185;
-
-static int
-saa7185_detect_client (struct i2c_adapter *adapter,
-		       int                 address,
-		       int                 kind)
+static int saa7185_probe(struct i2c_client *client,
+			const struct i2c_device_id *id)
 {
 	int i;
-	struct i2c_client *client;
 	struct saa7185 *encoder;
 
-	dprintk(1,
-		KERN_INFO
-		"saa7185.c: detecting saa7185 client on address 0x%x\n",
-		address << 1);
-
 	/* Check if the adapter supports the needed features */
-	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA))
-		return 0;
+	if (!i2c_check_functionality(client->adapter, I2C_FUNC_SMBUS_BYTE_DATA))
+		return -ENODEV;
 
-	client = kzalloc(sizeof(struct i2c_client), GFP_KERNEL);
-	if (!client)
-		return -ENOMEM;
-	client->addr = address;
-	client->adapter = adapter;
-	client->driver = &i2c_driver_saa7185;
-	strlcpy(I2C_NAME(client), "saa7185", sizeof(I2C_NAME(client)));
+	v4l_info(client, "chip found @ 0x%x (%s)\n",
+			client->addr << 1, client->adapter->name);
 
 	encoder = kzalloc(sizeof(struct saa7185), GFP_KERNEL);
-	if (encoder == NULL) {
-		kfree(client);
+	if (encoder == NULL)
 		return -ENOMEM;
-	}
 	encoder->norm = VIDEO_MODE_NTSC;
 	encoder->enable = 1;
 	i2c_set_clientdata(client, encoder);
 
-	i = i2c_attach_client(client);
-	if (i) {
-		kfree(client);
-		kfree(encoder);
-		return i;
-	}
-
 	i = saa7185_write_block(client, init_common, sizeof(init_common));
-	if (i >= 0) {
-		i = saa7185_write_block(client, init_ntsc,
-					sizeof(init_ntsc));
-	}
-	if (i < 0) {
-		dprintk(1, KERN_ERR "%s_attach: init error %d\n",
-			I2C_NAME(client), i);
-	} else {
-		dprintk(1,
-			KERN_INFO
-			"%s_attach: chip version %d at address 0x%x\n",
-			I2C_NAME(client), saa7185_read(client) >> 5,
-			client->addr << 1);
-	}
-
+	if (i >= 0)
+		i = saa7185_write_block(client, init_ntsc, sizeof(init_ntsc));
+	if (i < 0)
+		v4l_dbg(1, debug, client, "init error %d\n", i);
+	else
+		v4l_dbg(1, debug, client, "revision 0x%x\n",
+				saa7185_read(client) >> 5);
 	return 0;
 }
 
-static int
-saa7185_attach_adapter (struct i2c_adapter *adapter)
-{
-	dprintk(1,
-		KERN_INFO
-		"saa7185.c: starting probe for adapter %s (0x%x)\n",
-		I2C_NAME(adapter), adapter->id);
-	return i2c_probe(adapter, &addr_data, &saa7185_detect_client);
-}
-
-static int
-saa7185_detach_client (struct i2c_client *client)
+static int saa7185_remove(struct i2c_client *client)
 {
 	struct saa7185 *encoder = i2c_get_clientdata(client);
-	int err;
-
-	err = i2c_detach_client(client);
-	if (err) {
-		return err;
-	}
 
 	saa7185_write(client, 0x61, (encoder->reg[0x61]) | 0x40);	/* SW: output off is active */
 	//saa7185_write(client, 0x3a, (encoder->reg[0x3a]) | 0x80); /* SW: color bar */
 
 	kfree(encoder);
-	kfree(client);
-
 	return 0;
 }
 
 /* ----------------------------------------------------------------------- */
 
-static struct i2c_driver i2c_driver_saa7185 = {
-	.driver = {
-		.name = "saa7185",	/* name */
-	},
-
-	.id = I2C_DRIVERID_SAA7185B,
-
-	.attach_adapter = saa7185_attach_adapter,
-	.detach_client = saa7185_detach_client,
-	.command = saa7185_command,
+static const struct i2c_device_id saa7185_id[] = {
+	{ "saa7185", 0 },
+	{ }
 };
+MODULE_DEVICE_TABLE(i2c, saa7185_id);
 
-static int __init
-saa7185_init (void)
-{
-	return i2c_add_driver(&i2c_driver_saa7185);
-}
-
-static void __exit
-saa7185_exit (void)
-{
-	i2c_del_driver(&i2c_driver_saa7185);
-}
-
-module_init(saa7185_init);
-module_exit(saa7185_exit);
+static struct v4l2_i2c_driver_data v4l2_i2c_data = {
+	.name = "saa7185",
+	.driverid = I2C_DRIVERID_SAA7185B,
+	.command = saa7185_command,
+	.probe = saa7185_probe,
+	.remove = saa7185_remove,
+	.id_table = saa7185_id,
+};
diff --git a/drivers/media/video/sh_mobile_ceu_camera.c b/drivers/media/video/sh_mobile_ceu_camera.c
index 7683809..2407607 100644
--- a/drivers/media/video/sh_mobile_ceu_camera.c
+++ b/drivers/media/video/sh_mobile_ceu_camera.c
@@ -40,39 +40,39 @@
 
 /* register offsets for sh7722 / sh7723 */
 
-#define CAPSR  0x00
-#define CAPCR  0x04
-#define CAMCR  0x08
-#define CMCYR  0x0c
-#define CAMOR  0x10
-#define CAPWR  0x14
-#define CAIFR  0x18
-#define CSTCR  0x20 /* not on sh7723 */
-#define CSECR  0x24 /* not on sh7723 */
-#define CRCNTR 0x28
-#define CRCMPR 0x2c
-#define CFLCR  0x30
-#define CFSZR  0x34
-#define CDWDR  0x38
-#define CDAYR  0x3c
-#define CDACR  0x40
-#define CDBYR  0x44
-#define CDBCR  0x48
-#define CBDSR  0x4c
-#define CFWCR  0x5c
-#define CLFCR  0x60
-#define CDOCR  0x64
-#define CDDCR  0x68
-#define CDDAR  0x6c
-#define CEIER  0x70
-#define CETCR  0x74
-#define CSTSR  0x7c
-#define CSRTR  0x80
-#define CDSSR  0x84
-#define CDAYR2 0x90
-#define CDACR2 0x94
-#define CDBYR2 0x98
-#define CDBCR2 0x9c
+#define CAPSR  0x00 /* Capture start register */
+#define CAPCR  0x04 /* Capture control register */
+#define CAMCR  0x08 /* Capture interface control register */
+#define CMCYR  0x0c /* Capture interface cycle  register */
+#define CAMOR  0x10 /* Capture interface offset register */
+#define CAPWR  0x14 /* Capture interface width register */
+#define CAIFR  0x18 /* Capture interface input format register */
+#define CSTCR  0x20 /* Camera strobe control register (<= sh7722) */
+#define CSECR  0x24 /* Camera strobe emission count register (<= sh7722) */
+#define CRCNTR 0x28 /* CEU register control register */
+#define CRCMPR 0x2c /* CEU register forcible control register */
+#define CFLCR  0x30 /* Capture filter control register */
+#define CFSZR  0x34 /* Capture filter size clip register */
+#define CDWDR  0x38 /* Capture destination width register */
+#define CDAYR  0x3c /* Capture data address Y register */
+#define CDACR  0x40 /* Capture data address C register */
+#define CDBYR  0x44 /* Capture data bottom-field address Y register */
+#define CDBCR  0x48 /* Capture data bottom-field address C register */
+#define CBDSR  0x4c /* Capture bundle destination size register */
+#define CFWCR  0x5c /* Firewall operation control register */
+#define CLFCR  0x60 /* Capture low-pass filter control register */
+#define CDOCR  0x64 /* Capture data output control register */
+#define CDDCR  0x68 /* Capture data complexity level register */
+#define CDDAR  0x6c /* Capture data complexity level address register */
+#define CEIER  0x70 /* Capture event interrupt enable register */
+#define CETCR  0x74 /* Capture event flag clear register */
+#define CSTSR  0x7c /* Capture status register */
+#define CSRTR  0x80 /* Capture software reset register */
+#define CDSSR  0x84 /* Capture data size register */
+#define CDAYR2 0x90 /* Capture data address Y register 2 */
+#define CDACR2 0x94 /* Capture data address C register 2 */
+#define CDBYR2 0x98 /* Capture data bottom-field address Y register 2 */
+#define CDBCR2 0x9c /* Capture data bottom-field address C register 2 */
 
 static DEFINE_MUTEX(camera_lock);
 
@@ -165,6 +165,7 @@
 	ceu_write(pcdev, CETCR, 0x0317f313 ^ 0x10);
 
 	if (pcdev->active) {
+		pcdev->active->state = VIDEOBUF_ACTIVE;
 		ceu_write(pcdev, CDAYR, videobuf_to_dma_contig(pcdev->active));
 		ceu_write(pcdev, CAPSR, 0x1); /* start capture */
 	}
@@ -236,7 +237,7 @@
 	dev_dbg(&icd->dev, "%s (vb=0x%p) 0x%08lx %zd\n", __func__,
 		vb, vb->baddr, vb->bsize);
 
-	vb->state = VIDEOBUF_ACTIVE;
+	vb->state = VIDEOBUF_QUEUED;
 	spin_lock_irqsave(&pcdev->lock, flags);
 	list_add_tail(&vb->queue, &pcdev->capture);
 
@@ -323,12 +324,24 @@
 {
 	struct soc_camera_host *ici = to_soc_camera_host(icd->dev.parent);
 	struct sh_mobile_ceu_dev *pcdev = ici->priv;
+	unsigned long flags;
 
 	BUG_ON(icd != pcdev->icd);
 
 	/* disable capture, disable interrupts */
 	ceu_write(pcdev, CEIER, 0);
 	ceu_write(pcdev, CAPSR, 1 << 16); /* reset */
+
+	/* make sure active buffer is canceled */
+	spin_lock_irqsave(&pcdev->lock, flags);
+	if (pcdev->active) {
+		list_del(&pcdev->active->queue);
+		pcdev->active->state = VIDEOBUF_ERROR;
+		wake_up_all(&pcdev->active->done);
+		pcdev->active = NULL;
+	}
+	spin_unlock_irqrestore(&pcdev->lock, flags);
+
 	icd->ops->release(icd);
 
 	dev_info(&icd->dev,
@@ -391,7 +404,20 @@
 	ceu_write(pcdev, CFLCR, 0); /* data fetch mode - no scaling */
 	ceu_write(pcdev, CFSZR, (icd->height << 16) | cfszr_width);
 	ceu_write(pcdev, CLFCR, 0); /* data fetch mode - no lowpass filter */
-	ceu_write(pcdev, CDOCR, 0x00000016);
+
+	/* A few words about byte order (observed in Big Endian mode)
+	 *
+	 * In data fetch mode bytes are received in chunks of 8 bytes.
+	 * D0, D1, D2, D3, D4, D5, D6, D7 (D0 received first)
+	 *
+	 * The data is however by default written to memory in reverse order:
+	 * D7, D6, D5, D4, D3, D2, D1, D0 (D7 written to lowest byte)
+	 *
+	 * The lowest three bits of CDOCR allows us to do swapping,
+	 * using 7 we swap the data bytes to match the incoming order:
+	 * D0, D1, D2, D3, D4, D5, D6, D7
+	 */
+	ceu_write(pcdev, CDOCR, 0x00000017);
 
 	ceu_write(pcdev, CDWDR, cdwdr_width);
 	ceu_write(pcdev, CFWCR, 0); /* keep "datafetch firewall" disabled */
diff --git a/drivers/media/video/soc_camera_platform.c b/drivers/media/video/soc_camera_platform.c
index 1adc257..bb7a9d4 100644
--- a/drivers/media/video/soc_camera_platform.c
+++ b/drivers/media/video/soc_camera_platform.c
@@ -18,15 +18,7 @@
 #include <linux/videodev2.h>
 #include <media/v4l2-common.h>
 #include <media/soc_camera.h>
-
-struct soc_camera_platform_info {
-	int iface;
-	char *format_name;
-	unsigned long format_depth;
-	struct v4l2_pix_format format;
-	unsigned long bus_param;
-	int (*set_capture)(struct soc_camera_platform_info *info, int enable);
-};
+#include <media/soc_camera_platform.h>
 
 struct soc_camera_platform_priv {
 	struct soc_camera_platform_info *info;
@@ -44,11 +36,21 @@
 
 static int soc_camera_platform_init(struct soc_camera_device *icd)
 {
+	struct soc_camera_platform_info *p = soc_camera_platform_get_info(icd);
+
+	if (p->power)
+		p->power(1);
+
 	return 0;
 }
 
 static int soc_camera_platform_release(struct soc_camera_device *icd)
 {
+	struct soc_camera_platform_info *p = soc_camera_platform_get_info(icd);
+
+	if (p->power)
+		p->power(0);
+
 	return 0;
 }
 
diff --git a/drivers/media/video/stk-webcam.c b/drivers/media/video/stk-webcam.c
index db69bc5..edaea49 100644
--- a/drivers/media/video/stk-webcam.c
+++ b/drivers/media/video/stk-webcam.c
@@ -27,7 +27,6 @@
 #include <linux/kernel.h>
 #include <linux/errno.h>
 #include <linux/slab.h>
-#include <linux/kref.h>
 
 #include <linux/usb.h>
 #include <linux/mm.h>
@@ -560,7 +559,7 @@
 
 		urb = dev->isobufs[i].urb;
 		if (urb) {
-			if (atomic_read(&dev->urbs_used))
+			if (atomic_read(&dev->urbs_used) && is_present(dev))
 				usb_kill_urb(urb);
 			usb_free_urb(urb);
 		}
@@ -689,18 +688,14 @@
 {
 	struct stk_camera *dev = fp->private_data;
 
-	if (dev->owner != fp) {
-		usb_autopm_put_interface(dev->interface);
-		return 0;
+	if (dev->owner == fp) {
+		stk_stop_stream(dev);
+		stk_free_buffers(dev);
+		dev->owner = NULL;
 	}
 
-	stk_stop_stream(dev);
-
-	stk_free_buffers(dev);
-
-	dev->owner = NULL;
-
-	usb_autopm_put_interface(dev->interface);
+	if(is_present(dev))
+		usb_autopm_put_interface(dev->interface);
 
 	return 0;
 }
@@ -714,9 +709,6 @@
 	struct stk_sio_buffer *sbuf;
 	struct stk_camera *dev = fp->private_data;
 
-	if (dev == NULL)
-		return -EIO;
-
 	if (!is_present(dev))
 		return -EIO;
 	if (dev->owner && dev->owner != fp)
@@ -773,9 +765,6 @@
 {
 	struct stk_camera *dev = fp->private_data;
 
-	if (dev == NULL)
-		return -ENODEV;
-
 	poll_wait(fp, &dev->wait_frame, wait);
 
 	if (!is_present(dev))
@@ -1436,7 +1425,7 @@
 	wake_up_interruptible(&dev->wait_frame);
 	stk_remove_sysfs_files(&dev->vdev);
 
-	STK_INFO("Syntek USB2.0 Camera release resources"
+	STK_INFO("Syntek USB2.0 Camera release resources "
 		"video device /dev/video%d\n", dev->vdev.minor);
 
 	video_unregister_device(&dev->vdev);
diff --git a/drivers/media/video/stk-webcam.h b/drivers/media/video/stk-webcam.h
index 084a85b..9f67366 100644
--- a/drivers/media/video/stk-webcam.h
+++ b/drivers/media/video/stk-webcam.h
@@ -122,7 +122,6 @@
 
 #define vdev_to_camera(d) container_of(d, struct stk_camera, vdev)
 
-void stk_camera_delete(struct kref *);
 int stk_camera_write_reg(struct stk_camera *, u16, u8);
 int stk_camera_read_reg(struct stk_camera *, u16, int *);
 
diff --git a/drivers/media/video/tveeprom.c b/drivers/media/video/tveeprom.c
index bcc32fa..3b0b84c 100644
--- a/drivers/media/video/tveeprom.c
+++ b/drivers/media/video/tveeprom.c
@@ -242,7 +242,7 @@
 	{ TUNER_ABSENT,        		"TCL M2523_3DBH_E"},
 	{ TUNER_ABSENT,        		"TCL M2523_3DIH_E"},
 	{ TUNER_ABSENT,        		"TCL MFPE05_2_U"},
-	{ TUNER_PHILIPS_FMD1216ME_MK3,	"Philips FMD1216MEX"},
+	{ TUNER_PHILIPS_FMD1216MEX_MK3,	"Philips FMD1216MEX"},
 	{ TUNER_ABSENT,        		"Philips FRH2036B"},
 	{ TUNER_ABSENT,        		"Panasonic ENGF75_01GF"},
 	{ TUNER_ABSENT,        		"MaxLinear MXL5005"},
diff --git a/drivers/media/video/usbvideo/konicawc.c b/drivers/media/video/usbvideo/konicawc.c
index e986c28..da27a52 100644
--- a/drivers/media/video/usbvideo/konicawc.c
+++ b/drivers/media/video/usbvideo/konicawc.c
@@ -229,7 +229,8 @@
 
 	cam->input = input_dev = input_allocate_device();
 	if (!input_dev) {
-		warn("Not enough memory for camera's input device\n");
+		dev_warn(&dev->dev,
+			 "Not enough memory for camera's input device\n");
 		return;
 	}
 
@@ -243,8 +244,9 @@
 
 	error = input_register_device(cam->input);
 	if (error) {
-		warn("Failed to register camera's input device, err: %d\n",
-		     error);
+		dev_warn(&dev->dev,
+			 "Failed to register camera's input device, err: %d\n",
+			 error);
 		input_free_device(cam->input);
 		cam->input = NULL;
 	}
diff --git a/drivers/media/video/usbvideo/quickcam_messenger.c b/drivers/media/video/usbvideo/quickcam_messenger.c
index 05c61b5..4459b8a 100644
--- a/drivers/media/video/usbvideo/quickcam_messenger.c
+++ b/drivers/media/video/usbvideo/quickcam_messenger.c
@@ -93,7 +93,7 @@
 
 	cam->input = input_dev = input_allocate_device();
 	if (!input_dev) {
-		warn("insufficient mem for cam input device");
+		dev_warn(&dev->dev, "insufficient mem for cam input device\n");
 		return;
 	}
 
@@ -107,8 +107,9 @@
 
 	error = input_register_device(cam->input);
 	if (error) {
-		warn("Failed to register camera's input device, err: %d\n",
-		     error);
+		dev_warn(&dev->dev,
+			 "Failed to register camera's input device, err: %d\n",
+			 error);
 		input_free_device(cam->input);
 		cam->input = NULL;
 	}
@@ -587,8 +588,9 @@
 			dataurb->iso_frame_desc[i].offset;
 
 		if (st < 0) {
-			warn("Data error: packet=%d. len=%d. status=%d.",
-			      i, n, st);
+			dev_warn(&uvd->dev->dev,
+				 "Data error: packet=%d. len=%d. status=%d.\n",
+				 i, n, st);
 			uvd->stats.iso_err_count++;
 			continue;
 		}
@@ -699,7 +701,7 @@
 
 	ret = qcm_camera_off(uvd);
 	if (ret)
-		warn("couldn't turn the cam off.");
+		dev_warn(&uvd->dev->dev, "couldn't turn the cam off.\n");
 
 	uvd->streaming = 0;
 
diff --git a/drivers/media/video/videobuf-dvb.c b/drivers/media/video/videobuf-dvb.c
index b56cffc..917277d 100644
--- a/drivers/media/video/videobuf-dvb.c
+++ b/drivers/media/video/videobuf-dvb.c
@@ -126,7 +126,6 @@
 	mutex_lock(&dvb->lock);
 	dvb->nfeeds--;
 	if (0 == dvb->nfeeds  &&  NULL != dvb->thread) {
-		// FIXME: cx8802_cancel_buffers(dev);
 		err = kthread_stop(dvb->thread);
 		dvb->thread = NULL;
 	}
@@ -134,30 +133,38 @@
 	return err;
 }
 
-/* ------------------------------------------------------------------ */
-
-int videobuf_dvb_register(struct videobuf_dvb *dvb,
+static int videobuf_dvb_register_adapter(struct videobuf_dvb_frontends *fe,
 			  struct module *module,
 			  void *adapter_priv,
 			  struct device *device,
-			  short *adapter_nr)
+			  char *adapter_name,
+			  short *adapter_nr,
+			  int mfe_shared)
 {
 	int result;
 
-	mutex_init(&dvb->lock);
+	mutex_init(&fe->lock);
 
 	/* register adapter */
-	result = dvb_register_adapter(&dvb->adapter, dvb->name, module, device,
-				      adapter_nr);
+	result = dvb_register_adapter(&fe->adapter, adapter_name, module,
+		device, adapter_nr);
 	if (result < 0) {
 		printk(KERN_WARNING "%s: dvb_register_adapter failed (errno = %d)\n",
-		       dvb->name, result);
-		goto fail_adapter;
+		       adapter_name, result);
 	}
-	dvb->adapter.priv = adapter_priv;
+	fe->adapter.priv = adapter_priv;
+	fe->adapter.mfe_shared = mfe_shared;
+
+	return result;
+}
+
+static int videobuf_dvb_register_frontend(struct dvb_adapter *adapter,
+	struct videobuf_dvb *dvb)
+{
+	int result;
 
 	/* register frontend */
-	result = dvb_register_frontend(&dvb->adapter, dvb->frontend);
+	result = dvb_register_frontend(adapter, dvb->frontend);
 	if (result < 0) {
 		printk(KERN_WARNING "%s: dvb_register_frontend failed (errno = %d)\n",
 		       dvb->name, result);
@@ -183,7 +190,8 @@
 	dvb->dmxdev.filternum    = 256;
 	dvb->dmxdev.demux        = &dvb->demux.dmx;
 	dvb->dmxdev.capabilities = 0;
-	result = dvb_dmxdev_init(&dvb->dmxdev, &dvb->adapter);
+	result = dvb_dmxdev_init(&dvb->dmxdev, adapter);
+
 	if (result < 0) {
 		printk(KERN_WARNING "%s: dvb_dmxdev_init failed (errno = %d)\n",
 		       dvb->name, result);
@@ -214,7 +222,11 @@
 	}
 
 	/* register network adapter */
-	dvb_net_init(&dvb->adapter, &dvb->net, &dvb->demux.dmx);
+	dvb_net_init(adapter, &dvb->net, &dvb->demux.dmx);
+	if (dvb->net.dvbdev == NULL) {
+		result = -ENOMEM;
+		goto fail_fe_conn;
+	}
 	return 0;
 
 fail_fe_conn:
@@ -229,30 +241,151 @@
 	dvb_unregister_frontend(dvb->frontend);
 fail_frontend:
 	dvb_frontend_detach(dvb->frontend);
-	dvb_unregister_adapter(&dvb->adapter);
-fail_adapter:
+	dvb->frontend = NULL;
+
 	return result;
 }
 
-void videobuf_dvb_unregister(struct videobuf_dvb *dvb)
-{
-	dvb_net_release(&dvb->net);
-	dvb->demux.dmx.remove_frontend(&dvb->demux.dmx, &dvb->fe_mem);
-	dvb->demux.dmx.remove_frontend(&dvb->demux.dmx, &dvb->fe_hw);
-	dvb_dmxdev_release(&dvb->dmxdev);
-	dvb_dmx_release(&dvb->demux);
-	dvb_unregister_frontend(dvb->frontend);
-	dvb_frontend_detach(dvb->frontend);
-	dvb_unregister_adapter(&dvb->adapter);
-}
-
-EXPORT_SYMBOL(videobuf_dvb_register);
-EXPORT_SYMBOL(videobuf_dvb_unregister);
-
 /* ------------------------------------------------------------------ */
-/*
- * Local variables:
- * c-basic-offset: 8
- * compile-command: "make DVB=1"
- * End:
- */
+/* Register a single adapter and one or more frontends */
+int videobuf_dvb_register_bus(struct videobuf_dvb_frontends *f,
+			  struct module *module,
+			  void *adapter_priv,
+			  struct device *device,
+			  short *adapter_nr,
+			  int mfe_shared)
+{
+	struct list_head *list, *q;
+	struct videobuf_dvb_frontend *fe;
+	int res;
+
+	fe = videobuf_dvb_get_frontend(f, 1);
+	if (!fe) {
+		printk(KERN_WARNING "Unable to register the adapter which has no frontends\n");
+		return -EINVAL;
+	}
+
+	/* Bring up the adapter */
+	res = videobuf_dvb_register_adapter(f, module, adapter_priv, device,
+		fe->dvb.name, adapter_nr, mfe_shared);
+	if (res < 0) {
+		printk(KERN_WARNING "videobuf_dvb_register_adapter failed (errno = %d)\n", res);
+		return res;
+	}
+
+	/* Attach all of the frontends to the adapter */
+	mutex_lock(&f->lock);
+	list_for_each_safe(list, q, &f->felist) {
+		fe = list_entry(list, struct videobuf_dvb_frontend, felist);
+		res = videobuf_dvb_register_frontend(&f->adapter, &fe->dvb);
+		if (res < 0) {
+			printk(KERN_WARNING "%s: videobuf_dvb_register_frontend failed (errno = %d)\n",
+				fe->dvb.name, res);
+			goto err;
+		}
+	}
+	mutex_unlock(&f->lock);
+	return 0;
+
+err:
+	mutex_unlock(&f->lock);
+	videobuf_dvb_unregister_bus(f);
+	return res;
+}
+EXPORT_SYMBOL(videobuf_dvb_register_bus);
+
+void videobuf_dvb_unregister_bus(struct videobuf_dvb_frontends *f)
+{
+	struct list_head *list, *q;
+	struct videobuf_dvb_frontend *fe;
+
+	mutex_lock(&f->lock);
+	list_for_each_safe(list, q, &f->felist) {
+		fe = list_entry(list, struct videobuf_dvb_frontend, felist);
+		if (fe->dvb.net.dvbdev) {
+			dvb_net_release(&fe->dvb.net);
+			fe->dvb.demux.dmx.remove_frontend(&fe->dvb.demux.dmx,
+				&fe->dvb.fe_mem);
+			fe->dvb.demux.dmx.remove_frontend(&fe->dvb.demux.dmx,
+				&fe->dvb.fe_hw);
+			dvb_dmxdev_release(&fe->dvb.dmxdev);
+			dvb_dmx_release(&fe->dvb.demux);
+			dvb_unregister_frontend(fe->dvb.frontend);
+		}
+		if (fe->dvb.frontend)
+			/* always allocated, may have been reset */
+			dvb_frontend_detach(fe->dvb.frontend);
+		list_del(list);
+		kfree(fe);
+	}
+	mutex_unlock(&f->lock);
+
+	dvb_unregister_adapter(&f->adapter);
+}
+EXPORT_SYMBOL(videobuf_dvb_unregister_bus);
+
+struct videobuf_dvb_frontend *videobuf_dvb_get_frontend(
+	struct videobuf_dvb_frontends *f, int id)
+{
+	struct list_head *list, *q;
+	struct videobuf_dvb_frontend *fe, *ret = NULL;
+
+	mutex_lock(&f->lock);
+
+	list_for_each_safe(list, q, &f->felist) {
+		fe = list_entry(list, struct videobuf_dvb_frontend, felist);
+		if (fe->id == id) {
+			ret = fe;
+			break;
+		}
+	}
+
+	mutex_unlock(&f->lock);
+
+	return ret;
+}
+EXPORT_SYMBOL(videobuf_dvb_get_frontend);
+
+int videobuf_dvb_find_frontend(struct videobuf_dvb_frontends *f,
+	struct dvb_frontend *p)
+{
+	struct list_head *list, *q;
+	struct videobuf_dvb_frontend *fe = NULL;
+	int ret = 0;
+
+	mutex_lock(&f->lock);
+
+	list_for_each_safe(list, q, &f->felist) {
+		fe = list_entry(list, struct videobuf_dvb_frontend, felist);
+		if (fe->dvb.frontend == p) {
+			ret = fe->id;
+			break;
+		}
+	}
+
+	mutex_unlock(&f->lock);
+
+	return ret;
+}
+EXPORT_SYMBOL(videobuf_dvb_find_frontend);
+
+struct videobuf_dvb_frontend *videobuf_dvb_alloc_frontend(
+	struct videobuf_dvb_frontends *f, int id)
+{
+	struct videobuf_dvb_frontend *fe;
+
+	fe = kzalloc(sizeof(struct videobuf_dvb_frontend), GFP_KERNEL);
+	if (fe == NULL)
+		goto fail_alloc;
+
+	fe->id = id;
+	mutex_init(&fe->dvb.lock);
+
+	mutex_lock(&f->lock);
+	list_add_tail(&fe->felist, &f->felist);
+	mutex_unlock(&f->lock);
+
+fail_alloc:
+	return fe;
+}
+EXPORT_SYMBOL(videobuf_dvb_alloc_frontend);
diff --git a/drivers/media/video/vivi.c b/drivers/media/video/vivi.c
index 65c8af1..7d7e51d 100644
--- a/drivers/media/video/vivi.c
+++ b/drivers/media/video/vivi.c
@@ -128,12 +128,56 @@
 	int   depth;
 };
 
-static struct vivi_fmt format = {
-	.name     = "4:2:2, packed, YUYV",
-	.fourcc   = V4L2_PIX_FMT_YUYV,
-	.depth    = 16,
+static struct vivi_fmt formats[] = {
+	{
+		.name     = "4:2:2, packed, YUYV",
+		.fourcc   = V4L2_PIX_FMT_YUYV,
+		.depth    = 16,
+	},
+	{
+		.name     = "4:2:2, packed, UYVY",
+		.fourcc   = V4L2_PIX_FMT_UYVY,
+		.depth    = 16,
+	},
+	{
+		.name     = "RGB565 (LE)",
+		.fourcc   = V4L2_PIX_FMT_RGB565, /* gggbbbbb rrrrrggg */
+		.depth    = 16,
+	},
+	{
+		.name     = "RGB565 (BE)",
+		.fourcc   = V4L2_PIX_FMT_RGB565X, /* rrrrrggg gggbbbbb */
+		.depth    = 16,
+	},
+	{
+		.name     = "RGB555 (LE)",
+		.fourcc   = V4L2_PIX_FMT_RGB555, /* gggbbbbb arrrrrgg */
+		.depth    = 16,
+	},
+	{
+		.name     = "RGB555 (BE)",
+		.fourcc   = V4L2_PIX_FMT_RGB555X, /* arrrrrgg gggbbbbb */
+		.depth    = 16,
+	},
 };
 
+static struct vivi_fmt *get_format(struct v4l2_format *f)
+{
+	struct vivi_fmt *fmt;
+	unsigned int k;
+
+	for (k = 0; k < ARRAY_SIZE(formats); k++) {
+		fmt = &formats[k];
+		if (fmt->fourcc == f->fmt.pix.pixelformat)
+			break;
+	}
+
+	if (k == ARRAY_SIZE(formats))
+		return NULL;
+
+	return &formats[k];
+}
+
 struct sg_to_addr {
 	int pos;
 	struct scatterlist *sg;
@@ -190,6 +234,7 @@
 	struct videobuf_queue      vb_vidq;
 
 	enum v4l2_buf_type         type;
+	unsigned char              bars[8][3];
 };
 
 /* ------------------------------------------------------------------
@@ -234,13 +279,107 @@
 #define TSTAMP_MAX_Y TSTAMP_MIN_Y+15
 #define TSTAMP_MIN_X 64
 
-static void gen_line(char *basep, int inipos, int wmax,
+static void gen_twopix(struct vivi_fh *fh, unsigned char *buf, int colorpos)
+{
+	unsigned char r_y, g_u, b_v;
+	unsigned char *p;
+	int color;
+
+	r_y = fh->bars[colorpos][0]; /* R or precalculated Y */
+	g_u = fh->bars[colorpos][1]; /* G or precalculated U */
+	b_v = fh->bars[colorpos][2]; /* B or precalculated V */
+
+	for (color = 0; color < 4; color++) {
+		p = buf + color;
+
+		switch (fh->fmt->fourcc) {
+		case V4L2_PIX_FMT_YUYV:
+			switch (color) {
+			case 0:
+			case 2:
+				*p = r_y;
+				break;
+			case 1:
+				*p = g_u;
+				break;
+			case 3:
+				*p = b_v;
+				break;
+			}
+			break;
+		case V4L2_PIX_FMT_UYVY:
+			switch (color) {
+			case 1:
+			case 3:
+				*p = r_y;
+				break;
+			case 0:
+				*p = g_u;
+				break;
+			case 2:
+				*p = b_v;
+				break;
+			}
+			break;
+		case V4L2_PIX_FMT_RGB565:
+			switch (color) {
+			case 0:
+			case 2:
+				*p = (g_u << 5) | b_v;
+				break;
+			case 1:
+			case 3:
+				*p = (r_y << 3) | (g_u >> 3);
+				break;
+			}
+			break;
+		case V4L2_PIX_FMT_RGB565X:
+			switch (color) {
+			case 0:
+			case 2:
+				*p = (r_y << 3) | (g_u >> 3);
+				break;
+			case 1:
+			case 3:
+				*p = (g_u << 5) | b_v;
+				break;
+			}
+			break;
+		case V4L2_PIX_FMT_RGB555:
+			switch (color) {
+			case 0:
+			case 2:
+				*p = (g_u << 5) | b_v;
+				break;
+			case 1:
+			case 3:
+				*p = (r_y << 2) | (g_u >> 3);
+				break;
+			}
+			break;
+		case V4L2_PIX_FMT_RGB555X:
+			switch (color) {
+			case 0:
+			case 2:
+				*p = (r_y << 2) | (g_u >> 3);
+				break;
+			case 1:
+			case 3:
+				*p = (g_u << 5) | b_v;
+				break;
+			}
+			break;
+		}
+	}
+}
+
+static void gen_line(struct vivi_fh *fh, char *basep, int inipos, int wmax,
 		int hmax, int line, int count, char *timestr)
 {
-	int  w, i, j, y;
+	int  w, i, j;
 	int pos = inipos;
-	char *p, *s;
-	u8   chr, r, g, b, color;
+	char *s;
+	u8 chr;
 
 	/* We will just duplicate the second pixel at the packet */
 	wmax /= 2;
@@ -248,27 +387,9 @@
 	/* Generate a standard color bar pattern */
 	for (w = 0; w < wmax; w++) {
 		int colorpos = ((w + count) * 8/(wmax + 1)) % 8;
-		r = bars[colorpos][0];
-		g = bars[colorpos][1];
-		b = bars[colorpos][2];
 
-		for (color = 0; color < 4; color++) {
-			p = basep + pos;
-
-			switch (color) {
-			case 0:
-			case 2:
-				*p = TO_Y(r, g, b);	/* Luma */
-				break;
-			case 1:
-				*p = TO_U(r, g, b);	/* Cb */
-				break;
-			case 3:
-				*p = TO_V(r, g, b);	/* Cr */
-				break;
-			}
-			pos++;
-		}
+		gen_twopix(fh, basep + pos, colorpos);
+		pos += 4; /* only 16 bpp supported for now */
 	}
 
 	/* Checks if it is possible to show timestamp */
@@ -283,38 +404,12 @@
 		for (s = timestr; *s; s++) {
 			chr = rom8x16_bits[(*s-0x30)*16+line-TSTAMP_MIN_Y];
 			for (i = 0; i < 7; i++) {
-				if (chr & 1 << (7 - i)) {
-					/* Font color*/
-					r = 0;
-					g = 198;
-					b = 0;
-				} else {
-					/* Background color */
-					r = bars[BLACK][0];
-					g = bars[BLACK][1];
-					b = bars[BLACK][2];
-				}
-
 				pos = inipos + j * 2;
-				for (color = 0; color < 4; color++) {
-					p = basep + pos;
-
-					y = TO_Y(r, g, b);
-
-					switch (color) {
-					case 0:
-					case 2:
-						*p = TO_Y(r, g, b); /* Luma */
-						break;
-					case 1:
-						*p = TO_U(r, g, b); /* Cb */
-						break;
-					case 3:
-						*p = TO_V(r, g, b); /* Cr */
-						break;
-					}
-					pos++;
-				}
+				/* Draw white font on black background */
+				if (chr & 1 << (7 - i))
+					gen_twopix(fh, basep + pos, WHITE);
+				else
+					gen_twopix(fh, basep + pos, BLACK);
 				j++;
 			}
 		}
@@ -324,8 +419,9 @@
 	return;
 }
 
-static void vivi_fillbuff(struct vivi_dev *dev, struct vivi_buffer *buf)
+static void vivi_fillbuff(struct vivi_fh *fh, struct vivi_buffer *buf)
 {
+	struct vivi_dev *dev = fh->dev;
 	int h , pos = 0;
 	int hmax  = buf->vb.height;
 	int wmax  = buf->vb.width;
@@ -341,7 +437,7 @@
 		return;
 
 	for (h = 0; h < hmax; h++) {
-		gen_line(tmpbuf, 0, wmax, hmax, h, dev->mv_count,
+		gen_line(fh, tmpbuf, 0, wmax, hmax, h, dev->mv_count,
 			 dev->timestr);
 		memcpy(vbuf + pos, tmpbuf, wmax * 2);
 		pos += wmax*2;
@@ -410,7 +506,7 @@
 	do_gettimeofday(&buf->vb.ts);
 
 	/* Fill buffer */
-	vivi_fillbuff(dev, buf);
+	vivi_fillbuff(fh, buf);
 	dprintk(dev, 1, "filled buffer %p\n", buf);
 
 	wake_up(&buf->vb.done);
@@ -636,11 +732,15 @@
 static int vidioc_enum_fmt_vid_cap(struct file *file, void  *priv,
 					struct v4l2_fmtdesc *f)
 {
-	if (f->index > 0)
+	struct vivi_fmt *fmt;
+
+	if (f->index >= ARRAY_SIZE(formats))
 		return -EINVAL;
 
-	strlcpy(f->description, format.name, sizeof(f->description));
-	f->pixelformat = format.fourcc;
+	fmt = &formats[f->index];
+
+	strlcpy(f->description, fmt->name, sizeof(f->description));
+	f->pixelformat = fmt->fourcc;
 	return 0;
 }
 
@@ -670,13 +770,12 @@
 	enum v4l2_field field;
 	unsigned int maxw, maxh;
 
-	if (format.fourcc != f->fmt.pix.pixelformat) {
-		dprintk(dev, 1, "Fourcc format (0x%08x) invalid. "
-			"Driver accepts only 0x%08x\n",
-			f->fmt.pix.pixelformat, format.fourcc);
+	fmt = get_format(f);
+	if (!fmt) {
+		dprintk(dev, 1, "Fourcc format (0x%08x) invalid.\n",
+			f->fmt.pix.pixelformat);
 		return -EINVAL;
 	}
-	fmt = &format;
 
 	field = f->fmt.pix.field;
 
@@ -714,6 +813,8 @@
 {
 	struct vivi_fh  *fh = priv;
 	struct videobuf_queue *q = &fh->vb_vidq;
+	unsigned char r, g, b;
+	int k, is_yuv;
 
 	int ret = vidioc_try_fmt_vid_cap(file, fh, f);
 	if (ret < 0)
@@ -727,12 +828,49 @@
 		goto out;
 	}
 
-	fh->fmt           = &format;
+	fh->fmt           = get_format(f);
 	fh->width         = f->fmt.pix.width;
 	fh->height        = f->fmt.pix.height;
 	fh->vb_vidq.field = f->fmt.pix.field;
 	fh->type          = f->type;
 
+	/* precalculate color bar values to speed up rendering */
+	for (k = 0; k < 8; k++) {
+		r = bars[k][0];
+		g = bars[k][1];
+		b = bars[k][2];
+		is_yuv = 0;
+
+		switch (fh->fmt->fourcc) {
+		case V4L2_PIX_FMT_YUYV:
+		case V4L2_PIX_FMT_UYVY:
+			is_yuv = 1;
+			break;
+		case V4L2_PIX_FMT_RGB565:
+		case V4L2_PIX_FMT_RGB565X:
+			r >>= 3;
+			g >>= 2;
+			b >>= 3;
+			break;
+		case V4L2_PIX_FMT_RGB555:
+		case V4L2_PIX_FMT_RGB555X:
+			r >>= 3;
+			g >>= 3;
+			b >>= 3;
+			break;
+		}
+
+		if (is_yuv) {
+			fh->bars[k][0] = TO_Y(r, g, b);	/* Luma */
+			fh->bars[k][1] = TO_U(r, g, b);	/* Cb */
+			fh->bars[k][2] = TO_V(r, g, b);	/* Cr */
+		} else {
+			fh->bars[k][0] = r;
+			fh->bars[k][1] = g;
+			fh->bars[k][2] = b;
+		}
+	}
+
 	ret = 0;
 out:
 	mutex_unlock(&q->vb_lock);
@@ -886,8 +1024,6 @@
 	File operations for the device
    ------------------------------------------------------------------*/
 
-#define line_buf_size(norm) (norm_maxw(norm)*(format.depth+7)/8)
-
 static int vivi_open(struct inode *inode, struct file *file)
 {
 	int minor = iminor(inode);
@@ -936,7 +1072,7 @@
 	fh->dev      = dev;
 
 	fh->type     = V4L2_BUF_TYPE_VIDEO_CAPTURE;
-	fh->fmt      = &format;
+	fh->fmt      = &formats[0];
 	fh->width    = 640;
 	fh->height   = 480;
 
diff --git a/drivers/media/video/vpx3220.c b/drivers/media/video/vpx3220.c
index 45be9ec..67aa0db 100644
--- a/drivers/media/video/vpx3220.c
+++ b/drivers/media/video/vpx3220.c
@@ -22,32 +22,21 @@
 #include <linux/init.h>
 #include <linux/delay.h>
 #include <linux/types.h>
-#include <linux/slab.h>
-
-#include <asm/io.h>
 #include <asm/uaccess.h>
-
 #include <linux/i2c.h>
-
-#define I2C_NAME(x) (x)->name
-
-#include <linux/videodev.h>
 #include <media/v4l2-common.h>
+#include <media/v4l2-i2c-drv-legacy.h>
+#include <linux/videodev.h>
 #include <linux/video_decoder.h>
 
-#define I2C_VPX3220        0x86
-#define VPX3220_DEBUG	KERN_DEBUG "vpx3220: "
+MODULE_DESCRIPTION("vpx3220a/vpx3216b/vpx3214c video decoder driver");
+MODULE_AUTHOR("Laurent Pinchart");
+MODULE_LICENSE("GPL");
 
 static int debug;
 module_param(debug, int, 0);
 MODULE_PARM_DESC(debug, "Debug level (0-1)");
 
-#define dprintk(num, format, args...) \
-	do { \
-		if (debug >= num) \
-			printk(format, ##args); \
-	} while (0)
-
 #define VPX_TIMEOUT_COUNT  10
 
 /* ----------------------------------------------------------------------- */
@@ -67,10 +56,8 @@
 static char *inputs[] = { "internal", "composite", "svideo" };
 
 /* ----------------------------------------------------------------------- */
-static inline int
-vpx3220_write (struct i2c_client *client,
-	       u8                 reg,
-	       u8                 value)
+
+static inline int vpx3220_write(struct i2c_client *client, u8 reg, u8 value)
 {
 	struct vpx3220 *decoder = i2c_get_clientdata(client);
 
@@ -78,15 +65,12 @@
 	return i2c_smbus_write_byte_data(client, reg, value);
 }
 
-static inline int
-vpx3220_read (struct i2c_client *client,
-	      u8                 reg)
+static inline int vpx3220_read(struct i2c_client *client, u8 reg)
 {
 	return i2c_smbus_read_byte_data(client, reg);
 }
 
-static int
-vpx3220_fp_status (struct i2c_client *client)
+static int vpx3220_fp_status(struct i2c_client *client)
 {
 	unsigned char status;
 	unsigned int i;
@@ -106,14 +90,11 @@
 	return -1;
 }
 
-static int
-vpx3220_fp_write (struct i2c_client *client,
-		  u8                 fpaddr,
-		  u16                data)
+static int vpx3220_fp_write(struct i2c_client *client, u8 fpaddr, u16 data)
 {
 	/* Write the 16-bit address to the FPWR register */
 	if (i2c_smbus_write_word_data(client, 0x27, swab16(fpaddr)) == -1) {
-		dprintk(1, VPX3220_DEBUG "%s: failed\n", __func__);
+		v4l_dbg(1, debug, client, "%s: failed\n", __func__);
 		return -1;
 	}
 
@@ -122,22 +103,20 @@
 
 	/* Write the 16-bit data to the FPDAT register */
 	if (i2c_smbus_write_word_data(client, 0x28, swab16(data)) == -1) {
-		dprintk(1, VPX3220_DEBUG "%s: failed\n", __func__);
+		v4l_dbg(1, debug, client, "%s: failed\n", __func__);
 		return -1;
 	}
 
 	return 0;
 }
 
-static u16
-vpx3220_fp_read (struct i2c_client *client,
-		 u16                fpaddr)
+static u16 vpx3220_fp_read(struct i2c_client *client, u16 fpaddr)
 {
 	s16 data;
 
 	/* Write the 16-bit address to the FPRD register */
 	if (i2c_smbus_write_word_data(client, 0x26, swab16(fpaddr)) == -1) {
-		dprintk(1, VPX3220_DEBUG "%s: failed\n", __func__);
+		v4l_dbg(1, debug, client, "%s: failed\n", __func__);
 		return -1;
 	}
 
@@ -147,25 +126,22 @@
 	/* Read the 16-bit data from the FPDAT register */
 	data = i2c_smbus_read_word_data(client, 0x28);
 	if (data == -1) {
-		dprintk(1, VPX3220_DEBUG "%s: failed\n", __func__);
+		v4l_dbg(1, debug, client, "%s: failed\n", __func__);
 		return -1;
 	}
 
 	return swab16(data);
 }
 
-static int
-vpx3220_write_block (struct i2c_client *client,
-		     const u8          *data,
-		     unsigned int       len)
+static int vpx3220_write_block(struct i2c_client *client, const u8 *data, unsigned int len)
 {
 	u8 reg;
 	int ret = -1;
 
 	while (len >= 2) {
 		reg = *data++;
-		if ((ret =
-		     vpx3220_write(client, reg, *data++)) < 0)
+		ret = vpx3220_write(client, reg, *data++);
+		if (ret < 0)
 			break;
 		len -= 2;
 	}
@@ -173,10 +149,8 @@
 	return ret;
 }
 
-static int
-vpx3220_write_fp_block (struct i2c_client *client,
-			const u16         *data,
-			unsigned int       len)
+static int vpx3220_write_fp_block(struct i2c_client *client,
+		const u16 *data, unsigned int len)
 {
 	u8 reg;
 	int ret = 0;
@@ -285,25 +259,20 @@
 	0x4b, 0x298,		/* PLL gain */
 };
 
-static void
-vpx3220_dump_i2c (struct i2c_client *client)
+static void vpx3220_dump_i2c(struct i2c_client *client)
 {
 	int len = sizeof(init_common);
 	const unsigned char *data = init_common;
 
 	while (len > 1) {
-		dprintk(1,
-			KERN_DEBUG "vpx3216b i2c reg 0x%02x data 0x%02x\n",
+		v4l_dbg(1, debug, client, "i2c reg 0x%02x data 0x%02x\n",
 			*data, vpx3220_read(client, *data));
 		data += 2;
 		len -= 2;
 	}
 }
 
-static int
-vpx3220_command (struct i2c_client *client,
-		 unsigned int       cmd,
-		 void              *arg)
+static int vpx3220_command(struct i2c_client *client, unsigned cmd, void *arg)
 {
 	struct vpx3220 *decoder = i2c_get_clientdata(client);
 
@@ -315,7 +284,6 @@
 		vpx3220_write_fp_block(client, init_fp,
 				       sizeof(init_fp) >> 1);
 		switch (decoder->norm) {
-
 		case VIDEO_MODE_NTSC:
 			vpx3220_write_fp_block(client, init_ntsc,
 					       sizeof(init_ntsc) >> 1);
@@ -334,21 +302,20 @@
 					       sizeof(init_pal) >> 1);
 			break;
 		}
-	}
 		break;
+	}
 
 	case DECODER_DUMP:
 	{
 		vpx3220_dump_i2c(client);
-	}
 		break;
+	}
 
 	case DECODER_GET_CAPABILITIES:
 	{
 		struct video_decoder_capability *cap = arg;
 
-		dprintk(1, KERN_DEBUG "%s: DECODER_GET_CAPABILITIES\n",
-			I2C_NAME(client));
+		v4l_dbg(1, debug, client, "DECODER_GET_CAPABILITIES\n");
 
 		cap->flags = VIDEO_DECODER_PAL |
 			     VIDEO_DECODER_NTSC |
@@ -357,20 +324,18 @@
 			     VIDEO_DECODER_CCIR;
 		cap->inputs = 3;
 		cap->outputs = 1;
-	}
 		break;
+	}
 
 	case DECODER_GET_STATUS:
 	{
 		int res = 0, status;
 
-		dprintk(1, KERN_INFO "%s: DECODER_GET_STATUS\n",
-			I2C_NAME(client));
+		v4l_dbg(1, debug, client, "DECODER_GET_STATUS\n");
 
 		status = vpx3220_fp_read(client, 0x0f3);
 
-		dprintk(1, KERN_INFO "%s: status: 0x%04x\n", I2C_NAME(client),
-			status);
+		v4l_dbg(1, debug, client, "status: 0x%04x\n", status);
 
 		if (status < 0)
 			return status;
@@ -379,7 +344,6 @@
 			res |= DECODER_STATUS_GOOD | DECODER_STATUS_COLOR;
 
 			switch (status & 0x18) {
-
 			case 0x00:
 			case 0x10:
 			case 0x14:
@@ -400,8 +364,8 @@
 		}
 
 		*(int *) arg = res;
-	}
 		break;
+	}
 
 	case DECODER_SET_NORM:
 	{
@@ -413,50 +377,43 @@
 		   choosen video norm */
 		temp_input = vpx3220_fp_read(client, 0xf2);
 
-		dprintk(1, KERN_DEBUG "%s: DECODER_SET_NORM %d\n",
-			I2C_NAME(client), *iarg);
+		v4l_dbg(1, debug, client, "DECODER_SET_NORM %d\n", *iarg);
 		switch (*iarg) {
-
 		case VIDEO_MODE_NTSC:
 			vpx3220_write_fp_block(client, init_ntsc,
 					       sizeof(init_ntsc) >> 1);
-			dprintk(1, KERN_INFO "%s: norm switched to NTSC\n",
-				I2C_NAME(client));
+			v4l_dbg(1, debug, client, "norm switched to NTSC\n");
 			break;
 
 		case VIDEO_MODE_PAL:
 			vpx3220_write_fp_block(client, init_pal,
 					       sizeof(init_pal) >> 1);
-			dprintk(1, KERN_INFO "%s: norm switched to PAL\n",
-				I2C_NAME(client));
+			v4l_dbg(1, debug, client, "norm switched to PAL\n");
 			break;
 
 		case VIDEO_MODE_SECAM:
 			vpx3220_write_fp_block(client, init_secam,
 					       sizeof(init_secam) >> 1);
-			dprintk(1, KERN_INFO "%s: norm switched to SECAM\n",
-				I2C_NAME(client));
+			v4l_dbg(1, debug, client, "norm switched to SECAM\n");
 			break;
 
 		case VIDEO_MODE_AUTO:
 			/* FIXME This is only preliminary support */
 			data = vpx3220_fp_read(client, 0xf2) & 0x20;
 			vpx3220_fp_write(client, 0xf2, 0x00c0 | data);
-			dprintk(1, KERN_INFO "%s: norm switched to Auto\n",
-				I2C_NAME(client));
+			v4l_dbg(1, debug, client, "norm switched to AUTO\n");
 			break;
 
 		default:
 			return -EINVAL;
-
 		}
 		decoder->norm = *iarg;
 
 		/* And here we set the backed up video input again */
 		vpx3220_fp_write(client, 0xf2, temp_input | 0x0010);
 		udelay(10);
-	}
 		break;
+	}
 
 	case DECODER_SET_INPUT:
 	{
@@ -475,8 +432,7 @@
 		if (*iarg < 0 || *iarg > 2)
 			return -EINVAL;
 
-		dprintk(1, KERN_INFO "%s: input switched to %s\n",
-			I2C_NAME(client), inputs[*iarg]);
+		v4l_dbg(1, debug, client, "input switched to %s\n", inputs[*iarg]);
 
 		vpx3220_write(client, 0x33, input[*iarg][0]);
 
@@ -488,8 +444,8 @@
 				 data | (input[*iarg][1] << 5) | 0x0010);
 
 		udelay(10);
-	}
 		break;
+	}
 
 	case DECODER_SET_OUTPUT:
 	{
@@ -499,19 +455,18 @@
 		if (*iarg != 0) {
 			return -EINVAL;
 		}
-	}
 		break;
+	}
 
 	case DECODER_ENABLE_OUTPUT:
 	{
 		int *iarg = arg;
 
-		dprintk(1, KERN_DEBUG "%s: DECODER_ENABLE_OUTPUT %d\n",
-			I2C_NAME(client), *iarg);
+		v4l_dbg(1, debug, client, "DECODER_ENABLE_OUTPUT %d\n", *iarg);
 
 		vpx3220_write(client, 0xf2, (*iarg ? 0x1b : 0x00));
-	}
 		break;
+	}
 
 	case DECODER_SET_PICTURE:
 	{
@@ -542,8 +497,8 @@
 			vpx3220_fp_write(client, 0x1c,
 					 ((decoder->hue - 32768) >> 6) & 0xFFF);
 		}
-	}
 		break;
+	}
 
 	default:
 		return -EINVAL;
@@ -552,8 +507,7 @@
 	return 0;
 }
 
-static int
-vpx3220_init_client (struct i2c_client *client)
+static int vpx3220_init_client(struct i2c_client *client)
 {
 	vpx3220_write_block(client, init_common, sizeof(init_common));
 	vpx3220_write_fp_block(client, init_fp, sizeof(init_fp) >> 1);
@@ -567,115 +521,26 @@
  * Client management code
  */
 
-/*
- * Generic i2c probe
- * concerning the addresses: i2c wants 7 bit (without the r/w bit), so '>>1'
- */
-static unsigned short normal_i2c[] =
-    { I2C_VPX3220 >> 1, (I2C_VPX3220 >> 1) + 4,
-	I2C_CLIENT_END
-};
+static unsigned short normal_i2c[] = { 0x86 >> 1, 0x8e >> 1, I2C_CLIENT_END };
 
-static unsigned short ignore = I2C_CLIENT_END;
+I2C_CLIENT_INSMOD;
 
-static struct i2c_client_address_data addr_data = {
-	.normal_i2c		= normal_i2c,
-	.probe			= &ignore,
-	.ignore			= &ignore,
-};
-
-static struct i2c_driver vpx3220_i2c_driver;
-
-static int
-vpx3220_detach_client (struct i2c_client *client)
+static int vpx3220_probe(struct i2c_client *client,
+			const struct i2c_device_id *id)
 {
-	struct vpx3220 *decoder = i2c_get_clientdata(client);
-	int err;
-
-	err = i2c_detach_client(client);
-	if (err) {
-		return err;
-	}
-
-	kfree(decoder);
-	kfree(client);
-
-	return 0;
-}
-
-static int
-vpx3220_detect_client (struct i2c_adapter *adapter,
-		       int                 address,
-		       int                 kind)
-{
-	int err;
-	struct i2c_client *client;
 	struct vpx3220 *decoder;
-
-	dprintk(1, VPX3220_DEBUG "%s\n", __func__);
+	const char *name = NULL;
+	u8 ver;
+	u16 pn;
 
 	/* Check if the adapter supports the needed features */
-	if (!i2c_check_functionality
-	    (adapter, I2C_FUNC_SMBUS_BYTE_DATA | I2C_FUNC_SMBUS_WORD_DATA))
-		return 0;
-
-	client = kzalloc(sizeof(struct i2c_client), GFP_KERNEL);
-	if (client == NULL) {
-		return -ENOMEM;
-	}
-
-	client->addr = address;
-	client->adapter = adapter;
-	client->driver = &vpx3220_i2c_driver;
-
-	/* Check for manufacture ID and part number */
-	if (kind < 0) {
-		u8 id;
-		u16 pn;
-
-		id = vpx3220_read(client, 0x00);
-		if (id != 0xec) {
-			dprintk(1,
-				KERN_INFO
-				"vpx3220_attach: Wrong manufacturer ID (0x%02x)\n",
-				id);
-			kfree(client);
-			return 0;
-		}
-
-		pn = (vpx3220_read(client, 0x02) << 8) +
-		    vpx3220_read(client, 0x01);
-		switch (pn) {
-		case 0x4680:
-			strlcpy(I2C_NAME(client), "vpx3220a",
-				sizeof(I2C_NAME(client)));
-			break;
-		case 0x4260:
-			strlcpy(I2C_NAME(client), "vpx3216b",
-				sizeof(I2C_NAME(client)));
-			break;
-		case 0x4280:
-			strlcpy(I2C_NAME(client), "vpx3214c",
-				sizeof(I2C_NAME(client)));
-			break;
-		default:
-			dprintk(1,
-				KERN_INFO
-				"%s: Wrong part number (0x%04x)\n",
-				__func__, pn);
-			kfree(client);
-			return 0;
-		}
-	} else {
-		strlcpy(I2C_NAME(client), "forced vpx32xx",
-			sizeof(I2C_NAME(client)));
-	}
+	if (!i2c_check_functionality(client->adapter,
+		I2C_FUNC_SMBUS_BYTE_DATA | I2C_FUNC_SMBUS_WORD_DATA))
+		return -ENODEV;
 
 	decoder = kzalloc(sizeof(struct vpx3220), GFP_KERNEL);
-	if (decoder == NULL) {
-		kfree(client);
+	if (decoder == NULL)
 		return -ENOMEM;
-	}
 	decoder->norm = VIDEO_MODE_PAL;
 	decoder->input = 0;
 	decoder->enable = 1;
@@ -685,63 +550,52 @@
 	decoder->sat = 32768;
 	i2c_set_clientdata(client, decoder);
 
-	err = i2c_attach_client(client);
-	if (err) {
-		kfree(client);
-		kfree(decoder);
-		return err;
+	ver = i2c_smbus_read_byte_data(client, 0x00);
+	pn = (i2c_smbus_read_byte_data(client, 0x02) << 8) +
+		i2c_smbus_read_byte_data(client, 0x01);
+	if (ver == 0xec) {
+		switch (pn) {
+		case 0x4680:
+			name = "vpx3220a";
+			break;
+		case 0x4260:
+			name = "vpx3216b";
+			break;
+		case 0x4280:
+			name = "vpx3214c";
+			break;
+		}
 	}
-
-	dprintk(1, KERN_INFO "%s: vpx32xx client found at address 0x%02x\n",
-		I2C_NAME(client), client->addr << 1);
+	if (name)
+		v4l_info(client, "%s found @ 0x%x (%s)\n", name,
+			client->addr << 1, client->adapter->name);
+	else
+		v4l_info(client, "chip (%02x:%04x) found @ 0x%x (%s)\n",
+			ver, pn, client->addr << 1, client->adapter->name);
 
 	vpx3220_init_client(client);
-
 	return 0;
 }
 
-static int
-vpx3220_attach_adapter (struct i2c_adapter *adapter)
+static int vpx3220_remove(struct i2c_client *client)
 {
-	int ret;
-
-	ret = i2c_probe(adapter, &addr_data, &vpx3220_detect_client);
-	dprintk(1, VPX3220_DEBUG "%s: i2c_probe returned %d\n",
-		__func__, ret);
-	return ret;
+	kfree(i2c_get_clientdata(client));
+	return 0;
 }
 
-/* -----------------------------------------------------------------------
- * Driver initialization and cleanup code
- */
-
-static struct i2c_driver vpx3220_i2c_driver = {
-	.driver = {
-		.name = "vpx3220",
-	},
-
-	.id = I2C_DRIVERID_VPX3220,
-
-	.attach_adapter = vpx3220_attach_adapter,
-	.detach_client = vpx3220_detach_client,
-	.command = vpx3220_command,
+static const struct i2c_device_id vpx3220_id[] = {
+	{ "vpx3220a", 0 },
+	{ "vpx3216b", 0 },
+	{ "vpx3214c", 0 },
+	{ }
 };
+MODULE_DEVICE_TABLE(i2c, vpx3220_id);
 
-static int __init
-vpx3220_init (void)
-{
-	return i2c_add_driver(&vpx3220_i2c_driver);
-}
-
-static void __exit
-vpx3220_cleanup (void)
-{
-	i2c_del_driver(&vpx3220_i2c_driver);
-}
-
-module_init(vpx3220_init);
-module_exit(vpx3220_cleanup);
-
-MODULE_DESCRIPTION("vpx3220a/vpx3216b/vpx3214c video decoder driver");
-MODULE_AUTHOR("Laurent Pinchart");
-MODULE_LICENSE("GPL");
+static struct v4l2_i2c_driver_data v4l2_i2c_data = {
+	.name = "vpx3220",
+	.driverid = I2C_DRIVERID_VPX3220,
+	.command = vpx3220_command,
+	.probe = vpx3220_probe,
+	.remove = vpx3220_remove,
+	.id_table = vpx3220_id,
+};
diff --git a/drivers/media/video/zoran/zoran_card.c b/drivers/media/video/zoran/zoran_card.c
index 3282be7..fa5f2f8 100644
--- a/drivers/media/video/zoran/zoran_card.c
+++ b/drivers/media/video/zoran/zoran_card.c
@@ -817,6 +817,7 @@
 	memcpy(&zr->i2c_algo, &zoran_i2c_bit_data_template,
 	       sizeof(struct i2c_algo_bit_data));
 	zr->i2c_algo.data = zr;
+	zr->i2c_adapter.class = I2C_CLASS_TV_ANALOG;
 	zr->i2c_adapter.id = I2C_HW_B_ZR36067;
 	zr->i2c_adapter.client_register = zoran_i2c_client_register;
 	zr->i2c_adapter.client_unregister = zoran_i2c_client_unregister;
diff --git a/drivers/media/video/zoran/zoran_driver.c b/drivers/media/video/zoran/zoran_driver.c
index 25de763..db11ab9 100644
--- a/drivers/media/video/zoran/zoran_driver.c
+++ b/drivers/media/video/zoran/zoran_driver.c
@@ -2996,7 +2996,6 @@
 			break;
 
 		default:
-			dprintk(3, "unsupported\n");
 			dprintk(1,
 				KERN_ERR
 				"%s: VIDIOC_S_FMT - unsupported type %d\n",
diff --git a/drivers/mtd/nand/alauda.c b/drivers/mtd/nand/alauda.c
index 257937c..9623803 100644
--- a/drivers/mtd/nand/alauda.c
+++ b/drivers/mtd/nand/alauda.c
@@ -691,7 +691,7 @@
 	al[0].port = ALAUDA_PORT_XD;
 	al[1].port = ALAUDA_PORT_SM;
 
-	info("alauda probed");
+	dev_info(&interface->dev, "alauda probed\n");
 	alauda_check_media(al);
 	alauda_check_media(al+1);
 
@@ -716,7 +716,7 @@
 	if (al)
 		kref_put(&al->kref, alauda_delete);
 
-	info("alauda gone");
+	dev_info(&interface->dev, "alauda gone");
 }
 
 static struct usb_driver alauda_driver = {
diff --git a/drivers/net/Kconfig b/drivers/net/Kconfig
index 1d8af33..ad301ac 100644
--- a/drivers/net/Kconfig
+++ b/drivers/net/Kconfig
@@ -2410,7 +2410,6 @@
 	tristate "Intel(R) 10GbE PCI Express adapters support"
 	depends on PCI && INET
 	select INET_LRO
-	select INTEL_IOATDMA
 	---help---
 	  This driver supports Intel(R) 10GbE PCI Express family of
 	  adapters.  For more information on how to identify your adapter, go
@@ -2426,6 +2425,11 @@
 	  To compile this driver as a module, choose M here. The module
 	  will be called ixgbe.
 
+config IXGBE_DCA
+	bool
+	default y
+	depends on IXGBE && DCA && !(IXGBE=y && DCA=m)
+
 config IXGB
 	tristate "Intel(R) PRO/10GbE support"
 	depends on PCI
@@ -2462,7 +2466,6 @@
 	select FW_LOADER
 	select CRC32
 	select INET_LRO
-	select INTEL_IOATDMA
 	---help---
 	  This driver supports Myricom Myri-10G Dual Protocol interface in
 	  Ethernet mode. If the eeprom on your board is not recent enough,
@@ -2474,6 +2477,11 @@
 	  To compile this driver as a module, choose M here. The module
 	  will be called myri10ge.
 
+config MYRI10GE_DCA
+	bool
+	default y
+	depends on MYRI10GE && DCA && !(MYRI10GE=y && DCA=m)
+
 config NETXEN_NIC
 	tristate "NetXen Multi port (1/10) Gigabit Ethernet NIC"
 	depends on PCI
diff --git a/drivers/net/irda/kingsun-sir.c b/drivers/net/irda/kingsun-sir.c
index 73fe83b..e1429fc 100644
--- a/drivers/net/irda/kingsun-sir.c
+++ b/drivers/net/irda/kingsun-sir.c
@@ -540,7 +540,8 @@
 	if (ret != 0)
 		goto free_mem;
 
-	info("IrDA: Registered KingSun/DonShine device %s", net->name);
+	dev_info(&net->dev, "IrDA: Registered KingSun/DonShine device %s\n",
+		 net->name);
 
 	usb_set_intfdata(intf, kingsun);
 
diff --git a/drivers/net/irda/ks959-sir.c b/drivers/net/irda/ks959-sir.c
index 8c257a5..2482d61 100644
--- a/drivers/net/irda/ks959-sir.c
+++ b/drivers/net/irda/ks959-sir.c
@@ -801,7 +801,8 @@
 	if (ret != 0)
 		goto free_mem;
 
-	info("IrDA: Registered KingSun KS-959 device %s", net->name);
+	dev_info(&net->dev, "IrDA: Registered KingSun KS-959 device %s\n",
+		 net->name);
 
 	usb_set_intfdata(intf, kingsun);
 
diff --git a/drivers/net/irda/ksdazzle-sir.c b/drivers/net/irda/ksdazzle-sir.c
index d01a285..1e0de93 100644
--- a/drivers/net/irda/ksdazzle-sir.c
+++ b/drivers/net/irda/ksdazzle-sir.c
@@ -705,7 +705,8 @@
 	if (ret != 0)
 		goto free_mem;
 
-	info("IrDA: Registered KingSun/Dazzle device %s", net->name);
+	dev_info(&net->dev, "IrDA: Registered KingSun/Dazzle device %s\n",
+		 net->name);
 
 	usb_set_intfdata(intf, kingsun);
 
diff --git a/drivers/net/irda/stir4200.c b/drivers/net/irda/stir4200.c
index 0519637..3575804 100644
--- a/drivers/net/irda/stir4200.c
+++ b/drivers/net/irda/stir4200.c
@@ -506,7 +506,7 @@
 			goto found;
 	}
 
-	warn("%s: invalid speed %d", stir->netdev->name, speed);
+	dev_warn(&stir->netdev->dev, "invalid speed %d\n", speed);
 	return -EINVAL;
 
  found:
@@ -598,8 +598,8 @@
 		err = read_reg(stir, REG_FIFOCTL, stir->fifo_status, 
 				   FIFO_REGS_SIZE);
 		if (unlikely(err != FIFO_REGS_SIZE)) {
-			warn("%s: FIFO register read error: %d", 
-			     stir->netdev->name, err);
+			dev_warn(&stir->netdev->dev,
+				 "FIFO register read error: %d\n", err);
 
 			return err;
 		}
@@ -783,8 +783,9 @@
 
 			if (unlikely(receive_start(stir))) {
 				if (net_ratelimit())
-					info("%s: receive usb submit failed",
-					     stir->netdev->name);
+					dev_info(&dev->dev,
+						 "%s: receive usb submit failed\n",
+						 stir->netdev->name);
 				stir->receiving = 0;
 				msleep(10);
 				continue;
@@ -836,8 +837,8 @@
 
 	/* in case of error, the kernel thread will restart us */
 	if (err) {
-		warn("%s: usb receive submit error: %d",
-			stir->netdev->name, err);
+		dev_warn(&stir->netdev->dev, "usb receive submit error: %d\n",
+			 err);
 		stir->receiving = 0;
 		wake_up_process(stir->thread);
 	}
@@ -1073,7 +1074,8 @@
 	if (ret != 0)
 		goto err_out2;
 
-	info("IrDA: Registered SigmaTel device %s", net->name);
+	dev_info(&intf->dev, "IrDA: Registered SigmaTel device %s\n",
+		 net->name);
 
 	usb_set_intfdata(intf, stir);
 
diff --git a/drivers/net/ixgbe/ixgbe.h b/drivers/net/ixgbe/ixgbe.h
index 2198b77..e116d34 100644
--- a/drivers/net/ixgbe/ixgbe.h
+++ b/drivers/net/ixgbe/ixgbe.h
@@ -36,7 +36,7 @@
 #include "ixgbe_type.h"
 #include "ixgbe_common.h"
 
-#if defined(CONFIG_DCA) || defined(CONFIG_DCA_MODULE)
+#ifdef CONFIG_IXGBE_DCA
 #include <linux/dca.h>
 #endif
 
@@ -136,7 +136,7 @@
 		      * offset associated with this ring, which is different
 		      * for DCE and RSS modes */
 
-#if defined(CONFIG_DCA) || defined(CONFIG_DCA_MODULE)
+#ifdef CONFIG_IXGBE_DCA
 	/* cpu for tx queue */
 	int cpu;
 #endif
diff --git a/drivers/net/ixgbe/ixgbe_main.c b/drivers/net/ixgbe/ixgbe_main.c
index ca17af4..7548fb73 100644
--- a/drivers/net/ixgbe/ixgbe_main.c
+++ b/drivers/net/ixgbe/ixgbe_main.c
@@ -80,7 +80,7 @@
 };
 MODULE_DEVICE_TABLE(pci, ixgbe_pci_tbl);
 
-#if defined(CONFIG_DCA) || defined(CONFIG_DCA_MODULE)
+#ifdef CONFIG_IXGBE_DCA
 static int ixgbe_notify_dca(struct notifier_block *, unsigned long event,
                             void *p);
 static struct notifier_block dca_notifier = {
@@ -296,7 +296,7 @@
 	return (total_packets ? true : false);
 }
 
-#if defined(CONFIG_DCA) || defined(CONFIG_DCA_MODULE)
+#ifdef CONFIG_IXGBE_DCA
 static void ixgbe_update_rx_dca(struct ixgbe_adapter *adapter,
                                 struct ixgbe_ring *rx_ring)
 {
@@ -383,7 +383,7 @@
 	return 0;
 }
 
-#endif /* CONFIG_DCA or CONFIG_DCA_MODULE */
+#endif /* CONFIG_IXGBE_DCA */
 /**
  * ixgbe_receive_skb - Send a completed packet up the stack
  * @adapter: board private structure
@@ -947,7 +947,7 @@
 	r_idx = find_first_bit(q_vector->txr_idx, adapter->num_tx_queues);
 	for (i = 0; i < q_vector->txr_count; i++) {
 		tx_ring = &(adapter->tx_ring[r_idx]);
-#if defined(CONFIG_DCA) || defined(CONFIG_DCA_MODULE)
+#ifdef CONFIG_IXGBE_DCA
 		if (adapter->flags & IXGBE_FLAG_DCA_ENABLED)
 			ixgbe_update_tx_dca(adapter, tx_ring);
 #endif
@@ -1022,7 +1022,7 @@
 
 	r_idx = find_first_bit(q_vector->rxr_idx, adapter->num_rx_queues);
 	rx_ring = &(adapter->rx_ring[r_idx]);
-#if defined(CONFIG_DCA) || defined(CONFIG_DCA_MODULE)
+#ifdef CONFIG_IXGBE_DCA
 	if (adapter->flags & IXGBE_FLAG_DCA_ENABLED)
 		ixgbe_update_rx_dca(adapter, rx_ring);
 #endif
@@ -1066,7 +1066,7 @@
 	r_idx = find_first_bit(q_vector->rxr_idx, adapter->num_rx_queues);
 	for (i = 0; i < q_vector->rxr_count; i++) {
 		rx_ring = &(adapter->rx_ring[r_idx]);
-#if defined(CONFIG_DCA) || defined(CONFIG_DCA_MODULE)
+#ifdef CONFIG_IXGBE_DCA
 		if (adapter->flags & IXGBE_FLAG_DCA_ENABLED)
 			ixgbe_update_rx_dca(adapter, rx_ring);
 #endif
@@ -2155,7 +2155,7 @@
 
 	netif_carrier_off(netdev);
 
-#if defined(CONFIG_DCA) || defined(CONFIG_DCA_MODULE)
+#ifdef CONFIG_IXGBE_DCA
 	if (adapter->flags & IXGBE_FLAG_DCA_ENABLED) {
 		adapter->flags &= ~IXGBE_FLAG_DCA_ENABLED;
 		dca_remove_requester(&adapter->pdev->dev);
@@ -2167,7 +2167,7 @@
 	ixgbe_clean_all_tx_rings(adapter);
 	ixgbe_clean_all_rx_rings(adapter);
 
-#if defined(CONFIG_DCA) || defined(CONFIG_DCA_MODULE)
+#ifdef CONFIG_IXGBE_DCA
 	/* since we reset the hardware DCA settings were cleared */
 	if (dca_add_requester(&adapter->pdev->dev) == 0) {
 		adapter->flags |= IXGBE_FLAG_DCA_ENABLED;
@@ -2193,7 +2193,7 @@
 	struct ixgbe_adapter *adapter = q_vector->adapter;
 	int tx_cleaned, work_done = 0;
 
-#if defined(CONFIG_DCA) || defined(CONFIG_DCA_MODULE)
+#ifdef CONFIG_IXGBE_DCA
 	if (adapter->flags & IXGBE_FLAG_DCA_ENABLED) {
 		ixgbe_update_tx_dca(adapter, adapter->tx_ring);
 		ixgbe_update_rx_dca(adapter, adapter->rx_ring);
@@ -3922,7 +3922,7 @@
 	if (err)
 		goto err_register;
 
-#if defined(CONFIG_DCA) || defined(CONFIG_DCA_MODULE)
+#ifdef CONFIG_IXGBE_DCA
 	if (dca_add_requester(&pdev->dev) == 0) {
 		adapter->flags |= IXGBE_FLAG_DCA_ENABLED;
 		/* always use CB2 mode, difference is masked
@@ -3972,7 +3972,7 @@
 
 	flush_scheduled_work();
 
-#if defined(CONFIG_DCA) || defined(CONFIG_DCA_MODULE)
+#ifdef CONFIG_IXGBE_DCA
 	if (adapter->flags & IXGBE_FLAG_DCA_ENABLED) {
 		adapter->flags &= ~IXGBE_FLAG_DCA_ENABLED;
 		dca_remove_requester(&pdev->dev);
@@ -4105,10 +4105,10 @@
 
 	printk(KERN_INFO "%s: %s\n", ixgbe_driver_name, ixgbe_copyright);
 
-#if defined(CONFIG_DCA) || defined(CONFIG_DCA_MODULE)
+#ifdef CONFIG_IXGBE_DCA
 	dca_register_notify(&dca_notifier);
-
 #endif
+
 	ret = pci_register_driver(&ixgbe_driver);
 	return ret;
 }
@@ -4123,13 +4123,13 @@
  **/
 static void __exit ixgbe_exit_module(void)
 {
-#if defined(CONFIG_DCA) || defined(CONFIG_DCA_MODULE)
+#ifdef CONFIG_IXGBE_DCA
 	dca_unregister_notify(&dca_notifier);
 #endif
 	pci_unregister_driver(&ixgbe_driver);
 }
 
-#if defined(CONFIG_DCA) || defined(CONFIG_DCA_MODULE)
+#ifdef CONFIG_IXGBE_DCA
 static int ixgbe_notify_dca(struct notifier_block *nb, unsigned long event,
                             void *p)
 {
@@ -4140,7 +4140,7 @@
 
 	return ret_val ? NOTIFY_BAD : NOTIFY_DONE;
 }
-#endif /* CONFIG_DCA or CONFIG_DCA_MODULE */
+#endif /* CONFIG_IXGBE_DCA */
 
 module_exit(ixgbe_exit_module);
 
diff --git a/drivers/net/myri10ge/myri10ge.c b/drivers/net/myri10ge/myri10ge.c
index 6dce901..a9aebad 100644
--- a/drivers/net/myri10ge/myri10ge.c
+++ b/drivers/net/myri10ge/myri10ge.c
@@ -188,7 +188,7 @@
 	dma_addr_t fw_stats_bus;
 	int watchdog_tx_done;
 	int watchdog_tx_req;
-#if (defined CONFIG_DCA) || (defined CONFIG_DCA_MODULE)
+#ifdef CONFIG_MYRI10GE_DCA
 	int cached_dca_tag;
 	int cpu;
 	__be32 __iomem *dca_tag;
@@ -220,7 +220,7 @@
 	int msi_enabled;
 	int msix_enabled;
 	struct msix_entry *msix_vectors;
-#if (defined CONFIG_DCA) || (defined CONFIG_DCA_MODULE)
+#ifdef CONFIG_MYRI10GE_DCA
 	int dca_enabled;
 #endif
 	u32 link_state;
@@ -902,7 +902,7 @@
 	struct myri10ge_slice_state *ss;
 	int i, status;
 	size_t bytes;
-#if (defined CONFIG_DCA) || (defined CONFIG_DCA_MODULE)
+#ifdef CONFIG_MYRI10GE_DCA
 	unsigned long dca_tag_off;
 #endif
 
@@ -1012,7 +1012,7 @@
 	}
 	put_be32(htonl(mgp->intr_coal_delay), mgp->intr_coal_delay_ptr);
 
-#if (defined CONFIG_DCA) || (defined CONFIG_DCA_MODULE)
+#ifdef CONFIG_MYRI10GE_DCA
 	status = myri10ge_send_cmd(mgp, MXGEFW_CMD_GET_DCA_OFFSET, &cmd, 0);
 	dca_tag_off = cmd.data0;
 	for (i = 0; i < mgp->num_slices; i++) {
@@ -1051,7 +1051,7 @@
 	return status;
 }
 
-#if (defined CONFIG_DCA) || (defined CONFIG_DCA_MODULE)
+#ifdef CONFIG_MYRI10GE_DCA
 static void
 myri10ge_write_dca(struct myri10ge_slice_state *ss, int cpu, int tag)
 {
@@ -1505,7 +1505,7 @@
 	struct net_device *netdev = ss->mgp->dev;
 	int work_done;
 
-#if (defined CONFIG_DCA) || (defined CONFIG_DCA_MODULE)
+#ifdef CONFIG_MYRI10GE_DCA
 	if (ss->mgp->dca_enabled)
 		myri10ge_update_dca(ss);
 #endif
@@ -1736,7 +1736,7 @@
 	"tx_boundary", "WC", "irq", "MSI", "MSIX",
 	"read_dma_bw_MBs", "write_dma_bw_MBs", "read_write_dma_bw_MBs",
 	"serial_number", "watchdog_resets",
-#if (defined CONFIG_DCA) || (defined CONFIG_DCA_MODULE)
+#ifdef CONFIG_MYRI10GE_DCA
 	"dca_capable_firmware", "dca_device_present",
 #endif
 	"link_changes", "link_up", "dropped_link_overflow",
@@ -1815,7 +1815,7 @@
 	data[i++] = (unsigned int)mgp->read_write_dma;
 	data[i++] = (unsigned int)mgp->serial_number;
 	data[i++] = (unsigned int)mgp->watchdog_resets;
-#if (defined CONFIG_DCA) || (defined CONFIG_DCA_MODULE)
+#ifdef CONFIG_MYRI10GE_DCA
 	data[i++] = (unsigned int)(mgp->ss[0].dca_tag != NULL);
 	data[i++] = (unsigned int)(mgp->dca_enabled);
 #endif
@@ -3844,7 +3844,7 @@
 		dev_err(&pdev->dev, "failed reset\n");
 		goto abort_with_slices;
 	}
-#if (defined CONFIG_DCA) || (defined CONFIG_DCA_MODULE)
+#ifdef CONFIG_MYRI10GE_DCA
 	myri10ge_setup_dca(mgp);
 #endif
 	pci_set_drvdata(pdev, mgp);
@@ -3948,7 +3948,7 @@
 	netdev = mgp->dev;
 	unregister_netdev(netdev);
 
-#if (defined CONFIG_DCA) || (defined CONFIG_DCA_MODULE)
+#ifdef CONFIG_MYRI10GE_DCA
 	myri10ge_teardown_dca(mgp);
 #endif
 	myri10ge_dummy_rdma(mgp, 0);
@@ -3993,7 +3993,7 @@
 #endif
 };
 
-#if (defined CONFIG_DCA) || (defined CONFIG_DCA_MODULE)
+#ifdef CONFIG_MYRI10GE_DCA
 static int
 myri10ge_notify_dca(struct notifier_block *nb, unsigned long event, void *p)
 {
@@ -4024,7 +4024,7 @@
 		       myri10ge_driver.name, myri10ge_rss_hash);
 		myri10ge_rss_hash = MXGEFW_RSS_HASH_TYPE_SRC_PORT;
 	}
-#if (defined CONFIG_DCA) || (defined CONFIG_DCA_MODULE)
+#ifdef CONFIG_MYRI10GE_DCA
 	dca_register_notify(&myri10ge_dca_notifier);
 #endif
 	if (myri10ge_max_slices > MYRI10GE_MAX_SLICES)
@@ -4037,7 +4037,7 @@
 
 static __exit void myri10ge_cleanup_module(void)
 {
-#if (defined CONFIG_DCA) || (defined CONFIG_DCA_MODULE)
+#ifdef CONFIG_MYRI10GE_DCA
 	dca_unregister_notify(&myri10ge_dca_notifier);
 #endif
 	pci_unregister_driver(&myri10ge_driver);
diff --git a/drivers/net/pcmcia/Kconfig b/drivers/net/pcmcia/Kconfig
index e8f55d8..9b8f793 100644
--- a/drivers/net/pcmcia/Kconfig
+++ b/drivers/net/pcmcia/Kconfig
@@ -111,7 +111,7 @@
 
 config PCMCIA_IBMTR
 	tristate "IBM PCMCIA tokenring adapter support"
-	depends on IBMTR!=y && TR && !64BIT
+	depends on IBMTR!=y && TR
 	help
 	  Say Y here if you intend to attach this type of Token Ring PCMCIA
 	  card to your computer. You then also need to say Y to "Token Ring
diff --git a/drivers/net/usb/catc.c b/drivers/net/usb/catc.c
index 22c17bb..466a89e 100644
--- a/drivers/net/usb/catc.c
+++ b/drivers/net/usb/catc.c
@@ -456,7 +456,7 @@
 {
 	struct catc *catc = netdev_priv(netdev);
 
-	warn("Transmit timed out.");
+	dev_warn(&netdev->dev, "Transmit timed out.\n");
 	usb_unlink_urb(catc->tx_urb);
 }
 
@@ -847,7 +847,8 @@
 			dbg("64k Memory\n");
 			break;
 		default:
-			warn("Couldn't detect memory size, assuming 32k");
+			dev_warn(&intf->dev,
+				 "Couldn't detect memory size, assuming 32k\n");
 		case 0x87654321:
 			catc_set_reg(catc, TxBufCount, 4);
 			catc_set_reg(catc, RxBufCount, 16);
@@ -953,7 +954,8 @@
 {
 	int result = usb_register(&catc_driver);
 	if (result == 0)
-		info(DRIVER_VERSION " " DRIVER_DESC);
+		printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+		       DRIVER_DESC "\n");
 	return result;
 }
 
diff --git a/drivers/net/usb/kaweth.c b/drivers/net/usb/kaweth.c
index d6829db..fdbf3be 100644
--- a/drivers/net/usb/kaweth.c
+++ b/drivers/net/usb/kaweth.c
@@ -832,7 +832,7 @@
 
 	if((res = usb_submit_urb(kaweth->tx_urb, GFP_ATOMIC)))
 	{
-		warn("kaweth failed tx_urb %d", res);
+		dev_warn(&net->dev, "kaweth failed tx_urb %d\n", res);
 skip:
 		kaweth->stats.tx_errors++;
 
@@ -924,7 +924,7 @@
 {
 	struct kaweth_device *kaweth = netdev_priv(net);
 
-	warn("%s: Tx timed out. Resetting.", net->name);
+	dev_warn(&net->dev, "%s: Tx timed out. Resetting.\n", net->name);
 	kaweth->stats.tx_errors++;
 	net->trans_start = jiffies;
 
@@ -1016,10 +1016,10 @@
 	 */
 
 	if (le16_to_cpu(dev->descriptor.bcdDevice) >> 8) {
-		info("Firmware present in device.");
+		dev_info(&intf->dev, "Firmware present in device.\n");
 	} else {
 		/* Download the firmware */
-		info("Downloading firmware...");
+		dev_info(&intf->dev, "Downloading firmware...\n");
 		kaweth->firmware_buf = (__u8 *)__get_free_page(GFP_KERNEL);
 		if ((result = kaweth_download_firmware(kaweth,
 						      "kaweth/new_code.bin",
@@ -1061,7 +1061,7 @@
 		}
 
 		/* Device will now disappear for a moment...  */
-		info("Firmware loaded.  I'll be back...");
+		dev_info(&intf->dev, "Firmware loaded.  I'll be back...\n");
 err_fw:
 		free_page((unsigned long)kaweth->firmware_buf);
 		free_netdev(netdev);
@@ -1075,10 +1075,10 @@
 		goto err_free_netdev;
 	}
 
-	info("Statistics collection: %x", kaweth->configuration.statistics_mask);
-	info("Multicast filter limit: %x", kaweth->configuration.max_multicast_filters & ((1 << 15) - 1));
-	info("MTU: %d", le16_to_cpu(kaweth->configuration.segment_size));
-	info("Read MAC address %2.2x:%2.2x:%2.2x:%2.2x:%2.2x:%2.2x",
+	dev_info(&intf->dev, "Statistics collection: %x\n", kaweth->configuration.statistics_mask);
+	dev_info(&intf->dev, "Multicast filter limit: %x\n", kaweth->configuration.max_multicast_filters & ((1 << 15) - 1));
+	dev_info(&intf->dev, "MTU: %d\n", le16_to_cpu(kaweth->configuration.segment_size));
+	dev_info(&intf->dev, "Read MAC address %2.2x:%2.2x:%2.2x:%2.2x:%2.2x:%2.2x\n",
 		 (int)kaweth->configuration.hw_addr[0],
 		 (int)kaweth->configuration.hw_addr[1],
 		 (int)kaweth->configuration.hw_addr[2],
@@ -1174,7 +1174,8 @@
 		goto err_intfdata;
 	}
 
-	info("kaweth interface created at %s", kaweth->net->name);
+	dev_info(&intf->dev, "kaweth interface created at %s\n",
+		 kaweth->net->name);
 
 	dbg("Kaweth probe returning.");
 
@@ -1205,11 +1206,11 @@
 	struct kaweth_device *kaweth = usb_get_intfdata(intf);
 	struct net_device *netdev;
 
-	info("Unregistering");
+	dev_info(&intf->dev, "Unregistering\n");
 
 	usb_set_intfdata(intf, NULL);
 	if (!kaweth) {
-		warn("unregistering non-existant device");
+		dev_warn(&intf->dev, "unregistering non-existant device\n");
 		return;
 	}
 	netdev = kaweth->net;
@@ -1269,7 +1270,7 @@
 
 	if (!wait_event_timeout(awd.wqh, awd.done, timeout)) {
                 // timeout
-                warn("usb_control/bulk_msg: timeout");
+                dev_warn(&urb->dev->dev, "usb_control/bulk_msg: timeout\n");
                 usb_kill_urb(urb);  // remove urb safely
                 status = -ETIMEDOUT;
         }
diff --git a/drivers/net/usb/rtl8150.c b/drivers/net/usb/rtl8150.c
index df56a51..6133401 100644
--- a/drivers/net/usb/rtl8150.c
+++ b/drivers/net/usb/rtl8150.c
@@ -221,7 +221,7 @@
 	case -ENOENT:
 		break;
 	default:
-		warn("ctrl urb status %d", urb->status);
+		dev_warn(&urb->dev->dev, "ctrl urb status %d\n", urb->status);
 	}
 	dev = urb->context;
 	clear_bit(RX_REG_SET, &dev->flags);
@@ -441,10 +441,10 @@
 	case -ENOENT:
 		return;	/* the urb is in unlink state */
 	case -ETIME:
-		warn("may be reset is needed?..");
+		dev_warn(&urb->dev->dev, "may be reset is needed?..\n");
 		goto goon;
 	default:
-		warn("Rx status %d", urb->status);
+		dev_warn(&urb->dev->dev, "Rx status %d\n", urb->status);
 		goto goon;
 	}
 
@@ -538,7 +538,8 @@
 	if (!netif_device_present(dev->netdev))
 		return;
 	if (urb->status)
-		info("%s: Tx status %d", dev->netdev->name, urb->status);
+		dev_info(&urb->dev->dev, "%s: Tx status %d\n",
+			 dev->netdev->name, urb->status);
 	dev->netdev->trans_start = jiffies;
 	netif_wake_queue(dev->netdev);
 }
@@ -561,7 +562,8 @@
 		return;
 	/* -EPIPE:  should clear the halt */
 	default:
-		info("%s: intr status %d", dev->netdev->name, urb->status);
+		dev_info(&urb->dev->dev, "%s: intr status %d\n",
+			 dev->netdev->name, urb->status);
 		goto resubmit;
 	}
 
@@ -665,7 +667,7 @@
 	u8 cr, tcr, rcr, msr;
 
 	if (!rtl8150_reset(dev)) {
-		warn("%s - device reset failed", __FUNCTION__);
+		dev_warn(&dev->udev->dev, "device reset failed\n");
 	}
 	/* RCR bit7=1 attach Rx info at the end;  =0 HW CRC (which is broken) */
 	rcr = 0x9e;
@@ -699,7 +701,7 @@
 static void rtl8150_tx_timeout(struct net_device *netdev)
 {
 	rtl8150_t *dev = netdev_priv(netdev);
-	warn("%s: Tx timeout.", netdev->name);
+	dev_warn(&netdev->dev, "Tx timeout.\n");
 	usb_unlink_urb(dev->tx_urb);
 	dev->stats.tx_errors++;
 }
@@ -710,12 +712,12 @@
 	netif_stop_queue(netdev);
 	if (netdev->flags & IFF_PROMISC) {
 		dev->rx_creg |= cpu_to_le16(0x0001);
-		info("%s: promiscuous mode", netdev->name);
+		dev_info(&netdev->dev, "%s: promiscuous mode\n", netdev->name);
 	} else if (netdev->mc_count ||
 		   (netdev->flags & IFF_ALLMULTI)) {
 		dev->rx_creg &= cpu_to_le16(0xfffe);
 		dev->rx_creg |= cpu_to_le16(0x0002);
-		info("%s: allmulti set", netdev->name);
+		dev_info(&netdev->dev, "%s: allmulti set\n", netdev->name);
 	} else {
 		/* ~RX_MULTICAST, ~RX_PROMISCUOUS */
 		dev->rx_creg &= cpu_to_le16(0x00fc);
@@ -740,7 +742,7 @@
 		if (res == -ENODEV)
 			netif_device_detach(dev->netdev);
 		else {
-			warn("failed tx_urb %d\n", res);
+			dev_warn(&netdev->dev, "failed tx_urb %d\n", res);
 			dev->stats.tx_errors++;
 			netif_start_queue(netdev);
 		}
@@ -783,7 +785,7 @@
 	if ((res = usb_submit_urb(dev->rx_urb, GFP_KERNEL))) {
 		if (res == -ENODEV)
 			netif_device_detach(dev->netdev);
-		warn("%s: rx_urb submit failed: %d", __FUNCTION__, res);
+		dev_warn(&netdev->dev, "rx_urb submit failed: %d\n", res);
 		return res;
 	}
 	usb_fill_int_urb(dev->intr_urb, dev->udev, usb_rcvintpipe(dev->udev, 3),
@@ -792,7 +794,7 @@
 	if ((res = usb_submit_urb(dev->intr_urb, GFP_KERNEL))) {
 		if (res == -ENODEV)
 			netif_device_detach(dev->netdev);
-		warn("%s: intr_urb submit failed: %d", __FUNCTION__, res);
+		dev_warn(&netdev->dev, "intr_urb submit failed: %d\n", res);
 		usb_kill_urb(dev->rx_urb);
 		return res;
 	}
@@ -947,7 +949,7 @@
 		goto out2;
 	}
 
-	info("%s: rtl8150 is detected", netdev->name);
+	dev_info(&intf->dev, "%s: rtl8150 is detected\n", netdev->name);
 
 	return 0;
 
@@ -984,7 +986,8 @@
 
 static int __init usb_rtl8150_init(void)
 {
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return usb_register(&rtl8150_driver);
 }
 
diff --git a/drivers/net/wan/lmc/lmc_main.c b/drivers/net/wan/lmc/lmc_main.c
index f80640f..d7bb63e 100644
--- a/drivers/net/wan/lmc/lmc_main.c
+++ b/drivers/net/wan/lmc/lmc_main.c
@@ -122,7 +122,6 @@
      * Most functions mess with the structure
      * Disable interrupts while we do the polling
      */
-    spin_lock_irqsave(&sc->lmc_lock, flags);
 
     switch (cmd) {
         /*
@@ -152,6 +151,7 @@
 		break;
 	}
 
+	spin_lock_irqsave(&sc->lmc_lock, flags);
         sc->lmc_media->set_status (sc, &ctl);
 
         if(ctl.crc_length != sc->ictl.crc_length) {
@@ -161,6 +161,7 @@
 	    else
 		sc->TxDescriptControlInit &= ~LMC_TDES_ADD_CRC_DISABLE;
         }
+	spin_unlock_irqrestore(&sc->lmc_lock, flags);
 
         ret = 0;
         break;
@@ -187,15 +188,18 @@
 		break;				/* no change */
             }
             
+	    spin_lock_irqsave(&sc->lmc_lock, flags);
             lmc_proto_close(sc);
 
             sc->if_type = new_type;
             lmc_proto_attach(sc);
 	    ret = lmc_proto_open(sc);
+	    spin_unlock_irqrestore(&sc->lmc_lock, flags);
 	    break;
 	}
 
     case LMCIOCGETXINFO: /*fold01*/
+	spin_lock_irqsave(&sc->lmc_lock, flags);
         sc->lmc_xinfo.Magic0 = 0xBEEFCAFE;
 
         sc->lmc_xinfo.PciCardType = sc->lmc_cardtype;
@@ -208,6 +212,7 @@
         sc->lmc_xinfo.MaxFrameSize = LMC_PKT_BUF_SZ;
         sc->lmc_xinfo.link_status = sc->lmc_media->get_link_status (sc);
         sc->lmc_xinfo.mii_reg16 = lmc_mii_readreg (sc, 0, 16);
+	spin_unlock_irqrestore(&sc->lmc_lock, flags);
 
         sc->lmc_xinfo.Magic1 = 0xDEADBEEF;
 
@@ -220,6 +225,7 @@
         break;
 
     case LMCIOCGETLMCSTATS:
+	    spin_lock_irqsave(&sc->lmc_lock, flags);
 	    if (sc->lmc_cardtype == LMC_CARDTYPE_T1) {
 		    lmc_mii_writereg(sc, 0, 17, T1FRAMER_FERR_LSB);
 		    sc->extra_stats.framingBitErrorCount +=
@@ -243,6 +249,7 @@
 		    sc->extra_stats.severelyErroredFrameCount +=
 			    regVal & T1FRAMER_SEF_MASK;
 	    }
+	    spin_unlock_irqrestore(&sc->lmc_lock, flags);
 	    if (copy_to_user(ifr->ifr_data, &sc->lmc_device->stats,
 			     sizeof(sc->lmc_device->stats)) ||
 		copy_to_user(ifr->ifr_data + sizeof(sc->lmc_device->stats),
@@ -258,12 +265,14 @@
 		    break;
 	    }
 
+	    spin_lock_irqsave(&sc->lmc_lock, flags);
 	    memset(&sc->lmc_device->stats, 0, sizeof(sc->lmc_device->stats));
 	    memset(&sc->extra_stats, 0, sizeof(sc->extra_stats));
 	    sc->extra_stats.check = STATCHECK;
 	    sc->extra_stats.version_size = (DRIVER_VERSION << 16) +
 		    sizeof(sc->lmc_device->stats) + sizeof(sc->extra_stats);
 	    sc->extra_stats.lmc_cardtype = sc->lmc_cardtype;
+	    spin_unlock_irqrestore(&sc->lmc_lock, flags);
 	    ret = 0;
 	    break;
 
@@ -282,8 +291,10 @@
 		ret = -EFAULT;
 		break;
 	}
+	spin_lock_irqsave(&sc->lmc_lock, flags);
         sc->lmc_media->set_circuit_type(sc, ctl.circuit_type);
         sc->ictl.circuit_type = ctl.circuit_type;
+	spin_unlock_irqrestore(&sc->lmc_lock, flags);
         ret = 0;
 
         break;
@@ -294,12 +305,14 @@
             break;
         }
 
+	spin_lock_irqsave(&sc->lmc_lock, flags);
         /* Reset driver and bring back to current state */
         printk (" REG16 before reset +%04x\n", lmc_mii_readreg (sc, 0, 16));
         lmc_running_reset (dev);
         printk (" REG16 after reset +%04x\n", lmc_mii_readreg (sc, 0, 16));
 
         LMC_EVENT_LOG(LMC_EVENT_FORCEDRESET, LMC_CSR_READ (sc, csr_status), lmc_mii_readreg (sc, 0, 16));
+	spin_unlock_irqrestore(&sc->lmc_lock, flags);
 
         ret = 0;
         break;
@@ -338,14 +351,15 @@
              */
             netif_stop_queue(dev);
 
-	if (copy_from_user(&xc, ifr->ifr_data, sizeof(struct lmc_xilinx_control))) {
+	    if (copy_from_user(&xc, ifr->ifr_data, sizeof(struct lmc_xilinx_control))) {
 		ret = -EFAULT;
 		break;
-	}
+	    }
             switch(xc.command){
             case lmc_xilinx_reset: /*fold02*/
                 {
                     u16 mii;
+		    spin_lock_irqsave(&sc->lmc_lock, flags);
                     mii = lmc_mii_readreg (sc, 0, 16);
 
                     /*
@@ -404,6 +418,7 @@
                             lmc_led_off(sc, LMC_DS3_LED2);
                         }
                     }
+		    spin_unlock_irqrestore(&sc->lmc_lock, flags);
                     
                     
 
@@ -416,6 +431,7 @@
                 {
                     u16 mii;
                     int timeout = 500000;
+		    spin_lock_irqsave(&sc->lmc_lock, flags);
                     mii = lmc_mii_readreg (sc, 0, 16);
 
                     /*
@@ -451,13 +467,14 @@
                      */
                     while( (LMC_CSR_READ(sc, csr_gp) & LMC_GEP_INIT) == 0 &&
                            (timeout-- > 0))
-                        ;
+                        cpu_relax();
 
 
                     /*
                      * stop driving Xilinx-related signals
                      */
                     lmc_gpio_mkinput(sc, 0xff);
+		    spin_unlock_irqrestore(&sc->lmc_lock, flags);
 
                     ret = 0x0;
                     
@@ -493,6 +510,7 @@
 
                     printk("%s: Starting load of data Len: %d at 0x%p == 0x%p\n", dev->name, xc.len, xc.data, data);
 
+		    spin_lock_irqsave(&sc->lmc_lock, flags);
                     lmc_gpio_mkinput(sc, 0xff);
 
                     /*
@@ -545,7 +563,7 @@
                      */
                     while( (LMC_CSR_READ(sc, csr_gp) & LMC_GEP_INIT) == 0 &&
                            (timeout-- > 0))
-                        ;
+                        cpu_relax();
 
                     printk(KERN_DEBUG "%s: Waited %d for the Xilinx to clear it's memory\n", dev->name, 500000-timeout);
 
@@ -588,6 +606,7 @@
 
                     sc->lmc_miireg16 &= ~LMC_MII16_FIFO_RESET;
                     lmc_mii_writereg(sc, 0, 16, sc->lmc_miireg16);
+		    spin_unlock_irqrestore(&sc->lmc_lock, flags);
 
                     kfree(data);
                     
@@ -611,8 +630,6 @@
         break;
     }
 
-    spin_unlock_irqrestore(&sc->lmc_lock, flags); /*fold01*/
-
     lmc_trace(dev, "lmc_ioctl out");
 
     return ret;
diff --git a/drivers/net/xen-netfront.c b/drivers/net/xen-netfront.c
index 5c7a87e..c6948d8 100644
--- a/drivers/net/xen-netfront.c
+++ b/drivers/net/xen-netfront.c
@@ -239,11 +239,14 @@
 	 */
 	batch_target = np->rx_target - (req_prod - np->rx.rsp_cons);
 	for (i = skb_queue_len(&np->rx_batch); i < batch_target; i++) {
-		skb = __netdev_alloc_skb(dev, RX_COPY_THRESHOLD,
+		skb = __netdev_alloc_skb(dev, RX_COPY_THRESHOLD + NET_IP_ALIGN,
 					 GFP_ATOMIC | __GFP_NOWARN);
 		if (unlikely(!skb))
 			goto no_skb;
 
+		/* Align ip header to a 16 bytes boundary */
+		skb_reserve(skb, NET_IP_ALIGN);
+
 		page = alloc_page(GFP_ATOMIC | __GFP_NOWARN);
 		if (!page) {
 			kfree_skb(skb);
diff --git a/drivers/s390/block/dasd_diag.c b/drivers/s390/block/dasd_diag.c
index 85fcb43..7844461 100644
--- a/drivers/s390/block/dasd_diag.c
+++ b/drivers/s390/block/dasd_diag.c
@@ -544,7 +544,7 @@
 	}
 	cqr->retries = DIAG_MAX_RETRIES;
 	cqr->buildclk = get_clock();
-	if (req->cmd_flags & REQ_FAILFAST)
+	if (blk_noretry_request(req))
 		set_bit(DASD_CQR_FLAGS_FAILFAST, &cqr->flags);
 	cqr->startdev = memdev;
 	cqr->memdev = memdev;
diff --git a/drivers/s390/block/dasd_eckd.c b/drivers/s390/block/dasd_eckd.c
index 49f9d22..2e60d5f 100644
--- a/drivers/s390/block/dasd_eckd.c
+++ b/drivers/s390/block/dasd_eckd.c
@@ -1700,7 +1700,7 @@
 			recid++;
 		}
 	}
-	if (req->cmd_flags & REQ_FAILFAST)
+	if (blk_noretry_request(req))
 		set_bit(DASD_CQR_FLAGS_FAILFAST, &cqr->flags);
 	cqr->startdev = startdev;
 	cqr->memdev = startdev;
diff --git a/drivers/s390/block/dasd_fba.c b/drivers/s390/block/dasd_fba.c
index 93d9b64..7d442ae 100644
--- a/drivers/s390/block/dasd_fba.c
+++ b/drivers/s390/block/dasd_fba.c
@@ -355,7 +355,7 @@
 			recid++;
 		}
 	}
-	if (req->cmd_flags & REQ_FAILFAST)
+	if (blk_noretry_request(req))
 		set_bit(DASD_CQR_FLAGS_FAILFAST, &cqr->flags);
 	cqr->startdev = memdev;
 	cqr->memdev = memdev;
diff --git a/drivers/s390/scsi/zfcp_def.h b/drivers/s390/scsi/zfcp_def.h
index 8a13071..9ce4c75 100644
--- a/drivers/s390/scsi/zfcp_def.h
+++ b/drivers/s390/scsi/zfcp_def.h
@@ -583,6 +583,8 @@
 	unsigned long long     issued;         /* request sent time (STCK) */
 	struct zfcp_unit       *unit;
 	void			(*handler)(struct zfcp_fsf_req *);
+	u16			qdio_outb_usage;/* usage of outbound queue */
+	u16			qdio_inb_usage;	/* usage of inbound queue */
 };
 
 /* driver data */
diff --git a/drivers/s390/scsi/zfcp_fsf.c b/drivers/s390/scsi/zfcp_fsf.c
index 739356a..5ae1d49 100644
--- a/drivers/s390/scsi/zfcp_fsf.c
+++ b/drivers/s390/scsi/zfcp_fsf.c
@@ -6,6 +6,7 @@
  * Copyright IBM Corporation 2002, 2008
  */
 
+#include <linux/blktrace_api.h>
 #include "zfcp_ext.h"
 
 static void zfcp_fsf_request_timeout_handler(unsigned long data)
@@ -777,6 +778,7 @@
 	list_add_tail(&req->list, &adapter->req_list[idx]);
 	spin_unlock(&adapter->req_list_lock);
 
+	req->qdio_outb_usage = atomic_read(&req_q->count);
 	req->issued = get_clock();
 	if (zfcp_qdio_send(req)) {
 		/* Queues are down..... */
@@ -2082,6 +2084,36 @@
 	spin_unlock_irqrestore(&unit->latencies.lock, flags);
 }
 
+#ifdef CONFIG_BLK_DEV_IO_TRACE
+static void zfcp_fsf_trace_latency(struct zfcp_fsf_req *fsf_req)
+{
+	struct fsf_qual_latency_info *lat_inf;
+	struct scsi_cmnd *scsi_cmnd = (struct scsi_cmnd *)fsf_req->data;
+	struct request *req = scsi_cmnd->request;
+	struct zfcp_blk_drv_data trace;
+	int ticks = fsf_req->adapter->timer_ticks;
+
+	trace.flags = 0;
+	trace.magic = ZFCP_BLK_DRV_DATA_MAGIC;
+	if (fsf_req->adapter->adapter_features & FSF_FEATURE_MEASUREMENT_DATA) {
+		trace.flags |= ZFCP_BLK_LAT_VALID;
+		lat_inf = &fsf_req->qtcb->prefix.prot_status_qual.latency_info;
+		trace.channel_lat = lat_inf->channel_lat * ticks;
+		trace.fabric_lat = lat_inf->fabric_lat * ticks;
+	}
+	if (fsf_req->status & ZFCP_STATUS_FSFREQ_ERROR)
+		trace.flags |= ZFCP_BLK_REQ_ERROR;
+	trace.inb_usage = fsf_req->qdio_inb_usage;
+	trace.outb_usage = fsf_req->qdio_outb_usage;
+
+	blk_add_driver_data(req->q, req, &trace, sizeof(trace));
+}
+#else
+static inline void zfcp_fsf_trace_latency(struct zfcp_fsf_req *fsf_req)
+{
+}
+#endif
+
 static void zfcp_fsf_send_fcp_command_task_handler(struct zfcp_fsf_req *req)
 {
 	struct scsi_cmnd *scpnt = req->data;
@@ -2114,6 +2146,8 @@
 	if (req->adapter->adapter_features & FSF_FEATURE_MEASUREMENT_DATA)
 		zfcp_fsf_req_latency(req);
 
+	zfcp_fsf_trace_latency(req);
+
 	if (unlikely(fcp_rsp_iu->validity.bits.fcp_rsp_len_valid)) {
 		if (fcp_rsp_info[3] == RSP_CODE_GOOD)
 			set_host_byte(scpnt, DID_OK);
diff --git a/drivers/s390/scsi/zfcp_fsf.h b/drivers/s390/scsi/zfcp_fsf.h
index fd3a887..fa2a317 100644
--- a/drivers/s390/scsi/zfcp_fsf.h
+++ b/drivers/s390/scsi/zfcp_fsf.h
@@ -439,4 +439,16 @@
 	u8 log[FSF_QTCB_LOG_SIZE];
 } __attribute__ ((packed));
 
+struct zfcp_blk_drv_data {
+#define ZFCP_BLK_DRV_DATA_MAGIC			0x1
+	u32 magic;
+#define ZFCP_BLK_LAT_VALID			0x1
+#define ZFCP_BLK_REQ_ERROR			0x2
+	u16 flags;
+	u8 inb_usage;
+	u8 outb_usage;
+	u64 channel_lat;
+	u64 fabric_lat;
+} __attribute__ ((packed));
+
 #endif				/* FSF_H */
diff --git a/drivers/s390/scsi/zfcp_qdio.c b/drivers/s390/scsi/zfcp_qdio.c
index 3e05080..664752f 100644
--- a/drivers/s390/scsi/zfcp_qdio.c
+++ b/drivers/s390/scsi/zfcp_qdio.c
@@ -115,6 +115,7 @@
 	spin_unlock_irqrestore(&adapter->req_list_lock, flags);
 
 	fsf_req->sbal_response = sbal_idx;
+	fsf_req->qdio_inb_usage = atomic_read(&adapter->resp_q.count);
 	zfcp_fsf_req_complete(fsf_req);
 }
 
diff --git a/drivers/scsi/constants.c b/drivers/scsi/constants.c
index 9785d73..4003dee 100644
--- a/drivers/scsi/constants.c
+++ b/drivers/scsi/constants.c
@@ -1364,7 +1364,8 @@
 static const char * const hostbyte_table[]={
 "DID_OK", "DID_NO_CONNECT", "DID_BUS_BUSY", "DID_TIME_OUT", "DID_BAD_TARGET",
 "DID_ABORT", "DID_PARITY", "DID_ERROR", "DID_RESET", "DID_BAD_INTR",
-"DID_PASSTHROUGH", "DID_SOFT_ERROR", "DID_IMM_RETRY", "DID_REQUEUE"};
+"DID_PASSTHROUGH", "DID_SOFT_ERROR", "DID_IMM_RETRY", "DID_REQUEUE",
+"DID_TRANSPORT_DISRUPTED", "DID_TRANSPORT_FAILFAST" };
 #define NUM_HOSTBYTE_STRS ARRAY_SIZE(hostbyte_table)
 
 static const char * const driverbyte_table[]={
diff --git a/drivers/scsi/device_handler/scsi_dh_alua.c b/drivers/scsi/device_handler/scsi_dh_alua.c
index 708e475..e356b43 100644
--- a/drivers/scsi/device_handler/scsi_dh_alua.c
+++ b/drivers/scsi/device_handler/scsi_dh_alua.c
@@ -109,7 +109,8 @@
 	}
 
 	rq->cmd_type = REQ_TYPE_BLOCK_PC;
-	rq->cmd_flags |= REQ_FAILFAST | REQ_NOMERGE;
+	rq->cmd_flags |= REQ_FAILFAST_DEV | REQ_FAILFAST_TRANSPORT |
+			 REQ_FAILFAST_DRIVER;
 	rq->retries = ALUA_FAILOVER_RETRIES;
 	rq->timeout = ALUA_FAILOVER_TIMEOUT;
 
diff --git a/drivers/scsi/device_handler/scsi_dh_emc.c b/drivers/scsi/device_handler/scsi_dh_emc.c
index 8f45570..0e572d2 100644
--- a/drivers/scsi/device_handler/scsi_dh_emc.c
+++ b/drivers/scsi/device_handler/scsi_dh_emc.c
@@ -303,7 +303,8 @@
 
 	rq->cmd[4] = len;
 	rq->cmd_type = REQ_TYPE_BLOCK_PC;
-	rq->cmd_flags |= REQ_FAILFAST;
+	rq->cmd_flags |= REQ_FAILFAST_DEV | REQ_FAILFAST_TRANSPORT |
+			 REQ_FAILFAST_DRIVER;
 	rq->timeout = CLARIION_TIMEOUT;
 	rq->retries = CLARIION_RETRIES;
 
diff --git a/drivers/scsi/device_handler/scsi_dh_hp_sw.c b/drivers/scsi/device_handler/scsi_dh_hp_sw.c
index 5e93c88..9aec4ca 100644
--- a/drivers/scsi/device_handler/scsi_dh_hp_sw.c
+++ b/drivers/scsi/device_handler/scsi_dh_hp_sw.c
@@ -112,7 +112,8 @@
 		return SCSI_DH_RES_TEMP_UNAVAIL;
 
 	req->cmd_type = REQ_TYPE_BLOCK_PC;
-	req->cmd_flags |= REQ_FAILFAST;
+	req->cmd_flags |= REQ_FAILFAST_DEV | REQ_FAILFAST_TRANSPORT |
+			  REQ_FAILFAST_DRIVER;
 	req->cmd_len = COMMAND_SIZE(TEST_UNIT_READY);
 	req->cmd[0] = TEST_UNIT_READY;
 	req->timeout = HP_SW_TIMEOUT;
@@ -204,7 +205,8 @@
 		return SCSI_DH_RES_TEMP_UNAVAIL;
 
 	req->cmd_type = REQ_TYPE_BLOCK_PC;
-	req->cmd_flags |= REQ_FAILFAST;
+	req->cmd_flags |= REQ_FAILFAST_DEV | REQ_FAILFAST_TRANSPORT |
+			  REQ_FAILFAST_DRIVER;
 	req->cmd_len = COMMAND_SIZE(START_STOP);
 	req->cmd[0] = START_STOP;
 	req->cmd[4] = 1;	/* Start spin cycle */
diff --git a/drivers/scsi/device_handler/scsi_dh_rdac.c b/drivers/scsi/device_handler/scsi_dh_rdac.c
index 50bf95f..a43c3ed 100644
--- a/drivers/scsi/device_handler/scsi_dh_rdac.c
+++ b/drivers/scsi/device_handler/scsi_dh_rdac.c
@@ -226,7 +226,8 @@
 	}
 
 	rq->cmd_type = REQ_TYPE_BLOCK_PC;
-	rq->cmd_flags |= REQ_FAILFAST | REQ_NOMERGE;
+	rq->cmd_flags |= REQ_FAILFAST_DEV | REQ_FAILFAST_TRANSPORT |
+			 REQ_FAILFAST_DRIVER;
 	rq->retries = RDAC_RETRIES;
 	rq->timeout = RDAC_TIMEOUT;
 
diff --git a/drivers/scsi/ibmvscsi/ibmvfc.c b/drivers/scsi/ibmvscsi/ibmvfc.c
index 4e0b7c8..7650707 100644
--- a/drivers/scsi/ibmvscsi/ibmvfc.c
+++ b/drivers/scsi/ibmvscsi/ibmvfc.c
@@ -2031,8 +2031,6 @@
 		spin_unlock_irqrestore(shost->host_lock, flags);
 	} else
 		ibmvfc_issue_fc_host_lip(shost);
-
-	scsi_target_unblock(&rport->dev);
 	LEAVE;
 }
 
diff --git a/drivers/scsi/iscsi_tcp.c b/drivers/scsi/iscsi_tcp.c
index 2a2f009..ed6c54c 100644
--- a/drivers/scsi/iscsi_tcp.c
+++ b/drivers/scsi/iscsi_tcp.c
@@ -523,22 +523,20 @@
 }
 
 /**
- * iscsi_data_rsp - SCSI Data-In Response processing
+ * iscsi_data_in - SCSI Data-In Response processing
  * @conn: iscsi connection
  * @task: scsi command task
  **/
 static int
-iscsi_data_rsp(struct iscsi_conn *conn, struct iscsi_task *task)
+iscsi_data_in(struct iscsi_conn *conn, struct iscsi_task *task)
 {
 	struct iscsi_tcp_conn *tcp_conn = conn->dd_data;
 	struct iscsi_tcp_task *tcp_task = task->dd_data;
 	struct iscsi_data_rsp *rhdr = (struct iscsi_data_rsp *)tcp_conn->in.hdr;
-	struct iscsi_session *session = conn->session;
-	struct scsi_cmnd *sc = task->sc;
 	int datasn = be32_to_cpu(rhdr->datasn);
-	unsigned total_in_length = scsi_in(sc)->length;
+	unsigned total_in_length = scsi_in(task->sc)->length;
 
-	iscsi_update_cmdsn(session, (struct iscsi_nopin*)rhdr);
+	iscsi_update_cmdsn(conn->session, (struct iscsi_nopin*)rhdr);
 	if (tcp_conn->in.datalen == 0)
 		return 0;
 
@@ -558,23 +556,6 @@
 		return ISCSI_ERR_DATA_OFFSET;
 	}
 
-	if (rhdr->flags & ISCSI_FLAG_DATA_STATUS) {
-		sc->result = (DID_OK << 16) | rhdr->cmd_status;
-		conn->exp_statsn = be32_to_cpu(rhdr->statsn) + 1;
-		if (rhdr->flags & (ISCSI_FLAG_DATA_UNDERFLOW |
-		                   ISCSI_FLAG_DATA_OVERFLOW)) {
-			int res_count = be32_to_cpu(rhdr->residual_count);
-
-			if (res_count > 0 &&
-			    (rhdr->flags & ISCSI_FLAG_CMD_OVERFLOW ||
-			     res_count <= total_in_length))
-				scsi_in(sc)->resid = res_count;
-			else
-				sc->result = (DID_BAD_TARGET << 16) |
-					rhdr->cmd_status;
-		}
-	}
-
 	conn->datain_pdus_cnt++;
 	return 0;
 }
@@ -774,7 +755,7 @@
 		if (!task)
 			rc = ISCSI_ERR_BAD_ITT;
 		else
-			rc = iscsi_data_rsp(conn, task);
+			rc = iscsi_data_in(conn, task);
 		if (rc) {
 			spin_unlock(&conn->session->lock);
 			break;
@@ -998,7 +979,7 @@
 
 error:
 	debug_tcp("Error receiving PDU, errno=%d\n", rc);
-	iscsi_conn_failure(conn, ISCSI_ERR_CONN_FAILED);
+	iscsi_conn_failure(conn, rc);
 	return 0;
 }
 
@@ -1117,8 +1098,10 @@
 
 	while (1) {
 		rc = iscsi_tcp_xmit_segment(tcp_conn, segment);
-		if (rc < 0)
+		if (rc < 0) {
+			rc = ISCSI_ERR_XMIT_FAILED;
 			goto error;
+		}
 		if (rc == 0)
 			break;
 
@@ -1127,7 +1110,7 @@
 		if (segment->total_copied >= segment->total_size) {
 			if (segment->done != NULL) {
 				rc = segment->done(tcp_conn, segment);
-				if (rc < 0)
+				if (rc != 0)
 					goto error;
 			}
 		}
@@ -1142,8 +1125,8 @@
 	/* Transmit error. We could initiate error recovery
 	 * here. */
 	debug_tcp("Error sending PDU, errno=%d\n", rc);
-	iscsi_conn_failure(conn, ISCSI_ERR_CONN_FAILED);
-	return rc;
+	iscsi_conn_failure(conn, rc);
+	return -EIO;
 }
 
 /**
@@ -1904,6 +1887,7 @@
 	struct Scsi_Host *shost = iscsi_session_to_shost(cls_session);
 
 	iscsi_r2tpool_free(cls_session->dd_data);
+	iscsi_session_teardown(cls_session);
 
 	iscsi_host_remove(shost);
 	iscsi_host_free(shost);
@@ -1927,7 +1911,7 @@
 	.cmd_per_lun		= ISCSI_DEF_CMD_PER_LUN,
 	.eh_abort_handler       = iscsi_eh_abort,
 	.eh_device_reset_handler= iscsi_eh_device_reset,
-	.eh_host_reset_handler	= iscsi_eh_host_reset,
+	.eh_target_reset_handler= iscsi_eh_target_reset,
 	.use_clustering         = DISABLE_CLUSTERING,
 	.slave_configure        = iscsi_tcp_slave_configure,
 	.proc_name		= "iscsi_tcp",
diff --git a/drivers/scsi/libiscsi.c b/drivers/scsi/libiscsi.c
index da7b67d..801c7cf 100644
--- a/drivers/scsi/libiscsi.c
+++ b/drivers/scsi/libiscsi.c
@@ -404,11 +404,6 @@
 		conn->session->queued_cmdsn--;
 	else
 		conn->session->tt->cleanup_task(conn, task);
-	/*
-	 * Check if cleanup_task dropped the lock and the command completed,
-	 */
-	if (!task->sc)
-		return;
 
 	sc->result = err;
 	if (!scsi_bidi_cmnd(sc))
@@ -633,6 +628,40 @@
 	__iscsi_put_task(task);
 }
 
+/**
+ * iscsi_data_in_rsp - SCSI Data-In Response processing
+ * @conn: iscsi connection
+ * @hdr:  iscsi pdu
+ * @task: scsi command task
+ **/
+static void
+iscsi_data_in_rsp(struct iscsi_conn *conn, struct iscsi_hdr *hdr,
+		  struct iscsi_task *task)
+{
+	struct iscsi_data_rsp *rhdr = (struct iscsi_data_rsp *)hdr;
+	struct scsi_cmnd *sc = task->sc;
+
+	if (!(rhdr->flags & ISCSI_FLAG_DATA_STATUS))
+		return;
+
+	sc->result = (DID_OK << 16) | rhdr->cmd_status;
+	conn->exp_statsn = be32_to_cpu(rhdr->statsn) + 1;
+	if (rhdr->flags & (ISCSI_FLAG_DATA_UNDERFLOW |
+	                   ISCSI_FLAG_DATA_OVERFLOW)) {
+		int res_count = be32_to_cpu(rhdr->residual_count);
+
+		if (res_count > 0 &&
+		    (rhdr->flags & ISCSI_FLAG_CMD_OVERFLOW ||
+		     res_count <= scsi_in(sc)->length))
+			scsi_in(sc)->resid = res_count;
+		else
+			sc->result = (DID_BAD_TARGET << 16) | rhdr->cmd_status;
+	}
+
+	conn->scsirsp_pdus_cnt++;
+	__iscsi_put_task(task);
+}
+
 static void iscsi_tmf_rsp(struct iscsi_conn *conn, struct iscsi_hdr *hdr)
 {
 	struct iscsi_tm_rsp *tmf = (struct iscsi_tm_rsp *)hdr;
@@ -818,12 +847,7 @@
 		iscsi_scsi_cmd_rsp(conn, hdr, task, data, datalen);
 		break;
 	case ISCSI_OP_SCSI_DATA_IN:
-		if (hdr->flags & ISCSI_FLAG_DATA_STATUS) {
-			conn->scsirsp_pdus_cnt++;
-			iscsi_update_cmdsn(session,
-					   (struct iscsi_nopin*) hdr);
-			__iscsi_put_task(task);
-		}
+		iscsi_data_in_rsp(conn, hdr, task);
 		break;
 	case ISCSI_OP_LOGOUT_RSP:
 		iscsi_update_cmdsn(session, (struct iscsi_nopin*)hdr);
@@ -954,6 +978,38 @@
 }
 EXPORT_SYMBOL_GPL(iscsi_itt_to_ctask);
 
+void iscsi_session_failure(struct iscsi_cls_session *cls_session,
+			   enum iscsi_err err)
+{
+	struct iscsi_session *session = cls_session->dd_data;
+	struct iscsi_conn *conn;
+	struct device *dev;
+	unsigned long flags;
+
+	spin_lock_irqsave(&session->lock, flags);
+	conn = session->leadconn;
+	if (session->state == ISCSI_STATE_TERMINATE || !conn) {
+		spin_unlock_irqrestore(&session->lock, flags);
+		return;
+	}
+
+	dev = get_device(&conn->cls_conn->dev);
+	spin_unlock_irqrestore(&session->lock, flags);
+	if (!dev)
+	        return;
+	/*
+	 * if the host is being removed bypass the connection
+	 * recovery initialization because we are going to kill
+	 * the session.
+	 */
+	if (err == ISCSI_ERR_INVALID_HOST)
+		iscsi_conn_error_event(conn->cls_conn, err);
+	else
+		iscsi_conn_failure(conn, err);
+	put_device(dev);
+}
+EXPORT_SYMBOL_GPL(iscsi_session_failure);
+
 void iscsi_conn_failure(struct iscsi_conn *conn, enum iscsi_err err)
 {
 	struct iscsi_session *session = conn->session;
@@ -968,9 +1024,10 @@
 	if (conn->stop_stage == 0)
 		session->state = ISCSI_STATE_FAILED;
 	spin_unlock_irqrestore(&session->lock, flags);
+
 	set_bit(ISCSI_SUSPEND_BIT, &conn->suspend_tx);
 	set_bit(ISCSI_SUSPEND_BIT, &conn->suspend_rx);
-	iscsi_conn_error(conn->cls_conn, err);
+	iscsi_conn_error_event(conn->cls_conn, err);
 }
 EXPORT_SYMBOL_GPL(iscsi_conn_failure);
 
@@ -1194,15 +1251,13 @@
 		switch (session->state) {
 		case ISCSI_STATE_IN_RECOVERY:
 			reason = FAILURE_SESSION_IN_RECOVERY;
-			sc->result = DID_IMM_RETRY << 16;
-			break;
+			goto reject;
 		case ISCSI_STATE_LOGGING_OUT:
 			reason = FAILURE_SESSION_LOGGING_OUT;
-			sc->result = DID_IMM_RETRY << 16;
-			break;
+			goto reject;
 		case ISCSI_STATE_RECOVERY_FAILED:
 			reason = FAILURE_SESSION_RECOVERY_TIMEOUT;
-			sc->result = DID_NO_CONNECT << 16;
+			sc->result = DID_TRANSPORT_FAILFAST << 16;
 			break;
 		case ISCSI_STATE_TERMINATE:
 			reason = FAILURE_SESSION_TERMINATE;
@@ -1267,7 +1322,7 @@
 	spin_unlock(&session->lock);
 	debug_scsi("cmd 0x%x rejected (%d)\n", sc->cmnd[0], reason);
 	spin_lock(host->host_lock);
-	return SCSI_MLQUEUE_HOST_BUSY;
+	return SCSI_MLQUEUE_TARGET_BUSY;
 
 fault:
 	spin_unlock(&session->lock);
@@ -1307,7 +1362,7 @@
 }
 EXPORT_SYMBOL_GPL(iscsi_session_recovery_timedout);
 
-int iscsi_eh_host_reset(struct scsi_cmnd *sc)
+int iscsi_eh_target_reset(struct scsi_cmnd *sc)
 {
 	struct iscsi_cls_session *cls_session;
 	struct iscsi_session *session;
@@ -1321,7 +1376,7 @@
 	spin_lock_bh(&session->lock);
 	if (session->state == ISCSI_STATE_TERMINATE) {
 failed:
-		debug_scsi("failing host reset: session terminated "
+		debug_scsi("failing target reset: session terminated "
 			   "[CID %d age %d]\n", conn->id, session->age);
 		spin_unlock_bh(&session->lock);
 		mutex_unlock(&session->eh_mutex);
@@ -1336,7 +1391,7 @@
 	 */
 	iscsi_conn_failure(conn, ISCSI_ERR_CONN_FAILED);
 
-	debug_scsi("iscsi_eh_host_reset wait for relogin\n");
+	debug_scsi("iscsi_eh_target_reset wait for relogin\n");
 	wait_event_interruptible(conn->ehwait,
 				 session->state == ISCSI_STATE_TERMINATE ||
 				 session->state == ISCSI_STATE_LOGGED_IN ||
@@ -1348,14 +1403,14 @@
 	spin_lock_bh(&session->lock);
 	if (session->state == ISCSI_STATE_LOGGED_IN)
 		iscsi_session_printk(KERN_INFO, session,
-				     "host reset succeeded\n");
+				     "target reset succeeded\n");
 	else
 		goto failed;
 	spin_unlock_bh(&session->lock);
 	mutex_unlock(&session->eh_mutex);
 	return SUCCESS;
 }
-EXPORT_SYMBOL_GPL(iscsi_eh_host_reset);
+EXPORT_SYMBOL_GPL(iscsi_eh_target_reset);
 
 static void iscsi_tmf_timedout(unsigned long data)
 {
@@ -1769,10 +1824,10 @@
 
 	iscsi_suspend_tx(conn);
 
-	spin_lock(&session->lock);
+	spin_lock_bh(&session->lock);
 	fail_all_commands(conn, sc->device->lun, DID_ERROR);
 	conn->tmf_state = TMF_INITIAL;
-	spin_unlock(&session->lock);
+	spin_unlock_bh(&session->lock);
 
 	iscsi_start_tx(conn);
 	goto done;
@@ -1878,6 +1933,7 @@
 				   int dd_data_size, uint16_t qdepth)
 {
 	struct Scsi_Host *shost;
+	struct iscsi_host *ihost;
 
 	shost = scsi_host_alloc(sht, sizeof(struct iscsi_host) + dd_data_size);
 	if (!shost)
@@ -1892,22 +1948,43 @@
 		qdepth = ISCSI_DEF_CMD_PER_LUN;
 	}
 	shost->cmd_per_lun = qdepth;
+
+	ihost = shost_priv(shost);
+	spin_lock_init(&ihost->lock);
+	ihost->state = ISCSI_HOST_SETUP;
+	ihost->num_sessions = 0;
+	init_waitqueue_head(&ihost->session_removal_wq);
 	return shost;
 }
 EXPORT_SYMBOL_GPL(iscsi_host_alloc);
 
+static void iscsi_notify_host_removed(struct iscsi_cls_session *cls_session)
+{
+	iscsi_session_failure(cls_session, ISCSI_ERR_INVALID_HOST);
+}
+
 /**
  * iscsi_host_remove - remove host and sessions
  * @shost: scsi host
  *
- * This will also remove any sessions attached to the host, but if userspace
- * is managing the session at the same time this will break. TODO: add
- * refcounting to the netlink iscsi interface so a rmmod or host hot unplug
- * does not remove the memory from under us.
+ * If there are any sessions left, this will initiate the removal and wait
+ * for the completion.
  */
 void iscsi_host_remove(struct Scsi_Host *shost)
 {
-	iscsi_host_for_each_session(shost, iscsi_session_teardown);
+	struct iscsi_host *ihost = shost_priv(shost);
+	unsigned long flags;
+
+	spin_lock_irqsave(&ihost->lock, flags);
+	ihost->state = ISCSI_HOST_REMOVED;
+	spin_unlock_irqrestore(&ihost->lock, flags);
+
+	iscsi_host_for_each_session(shost, iscsi_notify_host_removed);
+	wait_event_interruptible(ihost->session_removal_wq,
+				 ihost->num_sessions == 0);
+	if (signal_pending(current))
+		flush_signals(current);
+
 	scsi_remove_host(shost);
 }
 EXPORT_SYMBOL_GPL(iscsi_host_remove);
@@ -1923,6 +2000,27 @@
 }
 EXPORT_SYMBOL_GPL(iscsi_host_free);
 
+static void iscsi_host_dec_session_cnt(struct Scsi_Host *shost)
+{
+	struct iscsi_host *ihost = shost_priv(shost);
+	unsigned long flags;
+
+	shost = scsi_host_get(shost);
+	if (!shost) {
+		printk(KERN_ERR "Invalid state. Cannot notify host removal "
+		      "of session teardown event because host already "
+		      "removed.\n");
+		return;
+	}
+
+	spin_lock_irqsave(&ihost->lock, flags);
+	ihost->num_sessions--;
+	if (ihost->num_sessions == 0)
+		wake_up(&ihost->session_removal_wq);
+	spin_unlock_irqrestore(&ihost->lock, flags);
+	scsi_host_put(shost);
+}
+
 /**
  * iscsi_session_setup - create iscsi cls session and host and session
  * @iscsit: iscsi transport template
@@ -1943,9 +2041,19 @@
 		    uint16_t cmds_max, int cmd_task_size,
 		    uint32_t initial_cmdsn, unsigned int id)
 {
+	struct iscsi_host *ihost = shost_priv(shost);
 	struct iscsi_session *session;
 	struct iscsi_cls_session *cls_session;
 	int cmd_i, scsi_cmds, total_cmds = cmds_max;
+	unsigned long flags;
+
+	spin_lock_irqsave(&ihost->lock, flags);
+	if (ihost->state == ISCSI_HOST_REMOVED) {
+		spin_unlock_irqrestore(&ihost->lock, flags);
+		return NULL;
+	}
+	ihost->num_sessions++;
+	spin_unlock_irqrestore(&ihost->lock, flags);
 
 	if (!total_cmds)
 		total_cmds = ISCSI_DEF_XMIT_CMDS_MAX;
@@ -1958,7 +2066,7 @@
 		printk(KERN_ERR "iscsi: invalid can_queue of %d. can_queue "
 		       "must be a power of two that is at least %d.\n",
 		       total_cmds, ISCSI_TOTAL_CMDS_MIN);
-		return NULL;
+		goto dec_session_count;
 	}
 
 	if (total_cmds > ISCSI_TOTAL_CMDS_MAX) {
@@ -1982,7 +2090,7 @@
 	cls_session = iscsi_alloc_session(shost, iscsit,
 					  sizeof(struct iscsi_session));
 	if (!cls_session)
-		return NULL;
+		goto dec_session_count;
 	session = cls_session->dd_data;
 	session->cls_session = cls_session;
 	session->host = shost;
@@ -2021,6 +2129,7 @@
 
 	if (iscsi_add_session(cls_session, id))
 		goto cls_session_fail;
+
 	return cls_session;
 
 cls_session_fail:
@@ -2029,6 +2138,8 @@
 	iscsi_pool_free(&session->cmdpool);
 cmdpool_alloc_fail:
 	iscsi_free_session(cls_session);
+dec_session_count:
+	iscsi_host_dec_session_cnt(shost);
 	return NULL;
 }
 EXPORT_SYMBOL_GPL(iscsi_session_setup);
@@ -2044,6 +2155,7 @@
 {
 	struct iscsi_session *session = cls_session->dd_data;
 	struct module *owner = cls_session->transport->owner;
+	struct Scsi_Host *shost = session->host;
 
 	iscsi_pool_free(&session->cmdpool);
 
@@ -2056,6 +2168,7 @@
 	kfree(session->ifacename);
 
 	iscsi_destroy_session(cls_session);
+	iscsi_host_dec_session_cnt(shost);
 	module_put(owner);
 }
 EXPORT_SYMBOL_GPL(iscsi_session_teardown);
@@ -2335,8 +2448,10 @@
 	 * flush queues.
 	 */
 	spin_lock_bh(&session->lock);
-	fail_all_commands(conn, -1,
-			STOP_CONN_RECOVER ? DID_BUS_BUSY : DID_ERROR);
+	if (flag == STOP_CONN_RECOVER)
+		fail_all_commands(conn, -1, DID_TRANSPORT_DISRUPTED);
+	else
+		fail_all_commands(conn, -1, DID_ERROR);
 	flush_control_queues(session, conn);
 	spin_unlock_bh(&session->lock);
 	mutex_unlock(&session->eh_mutex);
diff --git a/drivers/scsi/lpfc/lpfc.h b/drivers/scsi/lpfc/lpfc.h
index e0e018d..60a9e6e 100644
--- a/drivers/scsi/lpfc/lpfc.h
+++ b/drivers/scsi/lpfc/lpfc.h
@@ -34,7 +34,14 @@
 #define LPFC_IOCB_LIST_CNT	2250	/* list of IOCBs for fast-path usage. */
 #define LPFC_Q_RAMP_UP_INTERVAL 120     /* lun q_depth ramp up interval */
 #define LPFC_VNAME_LEN		100	/* vport symbolic name length */
+#define LPFC_TGTQ_INTERVAL	40000	/* Min amount of time between tgt
+					   queue depth change in millisecs */
+#define LPFC_TGTQ_RAMPUP_PCENT	5	/* Target queue rampup in percentage */
+#define LPFC_MIN_TGT_QDEPTH	100
+#define LPFC_MAX_TGT_QDEPTH	0xFFFF
 
+#define  LPFC_MAX_BUCKET_COUNT 20	/* Maximum no. of buckets for stat data
+					   collection. */
 /*
  * Following time intervals are used of adjusting SCSI device
  * queue depths when there are driver resource error or Firmware
@@ -49,6 +56,9 @@
 #define LPFC_HB_MBOX_INTERVAL   5	/* Heart beat interval in seconds. */
 #define LPFC_HB_MBOX_TIMEOUT    30	/* Heart beat timeout  in seconds. */
 
+/* Error Attention event polling interval */
+#define LPFC_ERATT_POLL_INTERVAL	5 /* EATT poll interval in seconds */
+
 /* Define macros for 64 bit support */
 #define putPaddrLow(addr)    ((uint32_t) (0xffffffff & (u64)(addr)))
 #define putPaddrHigh(addr)   ((uint32_t) (0xffffffff & (((u64)(addr))>>32)))
@@ -60,6 +70,9 @@
 
 #define MAX_HBAEVT	32
 
+/* Number of MSI-X vectors the driver uses */
+#define LPFC_MSIX_VECTORS	2
+
 /* lpfc wait event data ready flag */
 #define LPFC_DATA_READY		(1<<0)
 
@@ -357,6 +370,7 @@
 	uint32_t cfg_log_verbose;
 	uint32_t cfg_max_luns;
 	uint32_t cfg_enable_da_id;
+	uint32_t cfg_max_scsicmpl_time;
 
 	uint32_t dev_loss_tmo_changed;
 
@@ -369,6 +383,8 @@
 	struct lpfc_debugfs_trc *disc_trc;
 	atomic_t disc_trc_cnt;
 #endif
+	uint8_t stat_data_enabled;
+	uint8_t stat_data_blocked;
 };
 
 struct hbq_s {
@@ -407,10 +423,11 @@
 	struct lpfc_sli sli;
 	uint32_t sli_rev;		/* SLI2 or SLI3 */
 	uint32_t sli3_options;		/* Mask of enabled SLI3 options */
-#define LPFC_SLI3_ENABLED	 0x01
-#define LPFC_SLI3_HBQ_ENABLED	 0x02
-#define LPFC_SLI3_NPIV_ENABLED	 0x04
-#define LPFC_SLI3_VPORT_TEARDOWN 0x08
+#define LPFC_SLI3_HBQ_ENABLED		0x01
+#define LPFC_SLI3_NPIV_ENABLED		0x02
+#define LPFC_SLI3_VPORT_TEARDOWN	0x04
+#define LPFC_SLI3_CRP_ENABLED		0x08
+#define LPFC_SLI3_INB_ENABLED		0x10
 	uint32_t iocb_cmd_size;
 	uint32_t iocb_rsp_size;
 
@@ -422,10 +439,20 @@
 #define LS_NPIV_FAB_SUPPORTED 0x2	/* Fabric supports NPIV */
 #define LS_IGNORE_ERATT       0x4	/* intr handler should ignore ERATT */
 
-	struct lpfc_sli2_slim *slim2p;
-	struct lpfc_dmabuf hbqslimp;
+	uint32_t hba_flag;	/* hba generic flags */
+#define HBA_ERATT_HANDLED	0x1 /* This flag is set when eratt handled */
 
-	dma_addr_t slim2p_mapping;
+	struct lpfc_dmabuf slim2p;
+
+	MAILBOX_t *mbox;
+	uint32_t *inb_ha_copy;
+	uint32_t *inb_counter;
+	uint32_t inb_last_counter;
+	uint32_t ha_copy;
+	struct _PCB *pcb;
+	struct _IOCB *IOCBs;
+
+	struct lpfc_dmabuf hbqslimp;
 
 	uint16_t pci_cfg_value;
 
@@ -492,7 +519,7 @@
 
 	wait_queue_head_t    work_waitq;
 	struct task_struct   *worker_thread;
-	long data_flags;
+	unsigned long data_flags;
 
 	uint32_t hbq_in_use;		/* HBQs in use flag */
 	struct list_head hbqbuf_in_list;  /* in-fly hbq buffer list */
@@ -514,6 +541,7 @@
 	void __iomem *HCregaddr;	/* virtual address for host ctl reg */
 
 	struct lpfc_hgp __iomem *host_gp; /* Host side get/put pointers */
+	struct lpfc_pgp   *port_gp;
 	uint32_t __iomem  *hbq_put;     /* Address in SLIM to HBQ put ptrs */
 	uint32_t          *hbq_get;     /* Host mem address of HBQ get ptrs */
 
@@ -536,6 +564,7 @@
 	uint8_t soft_wwn_enable;
 
 	struct timer_list fcp_poll_timer;
+	struct timer_list eratt_poll;
 
 	/*
 	 * stat  counters
@@ -565,7 +594,7 @@
 
 	struct fc_host_statistics link_stats;
 	enum intr_type_t intr_type;
-	struct msix_entry msix_entries[1];
+	struct msix_entry msix_entries[LPFC_MSIX_VECTORS];
 
 	struct list_head port_list;
 	struct lpfc_vport *pport;	/* physical lpfc_vport pointer */
@@ -605,6 +634,7 @@
 	unsigned long last_completion_time;
 	struct timer_list hb_tmofunc;
 	uint8_t hb_outstanding;
+	enum hba_temp_state over_temp_state;
 	/* ndlp reference management */
 	spinlock_t ndlp_lock;
 	/*
@@ -613,7 +643,19 @@
 	 */
 #define QUE_BUFTAG_BIT  (1<<31)
 	uint32_t buffer_tag_count;
-	enum hba_temp_state over_temp_state;
+	int wait_4_mlo_maint_flg;
+	wait_queue_head_t wait_4_mlo_m_q;
+	/* data structure used for latency data collection */
+#define LPFC_NO_BUCKET	   0
+#define LPFC_LINEAR_BUCKET 1
+#define LPFC_POWER2_BUCKET 2
+	uint8_t  bucket_type;
+	uint32_t bucket_base;
+	uint32_t bucket_step;
+
+/* Maximum number of events that can be outstanding at any time*/
+#define LPFC_MAX_EVT_COUNT 512
+	atomic_t fast_event_count;
 };
 
 static inline struct Scsi_Host *
@@ -650,15 +692,25 @@
 	return;
 }
 
-#define FC_REG_DUMP_EVENT		0x10	/* Register for Dump events */
-#define FC_REG_TEMPERATURE_EVENT	0x20    /* Register for temperature
-						   event */
+static inline void
+lpfc_sli_read_hs(struct lpfc_hba *phba)
+{
+	/*
+	 * There was a link/board error. Read the status register to retrieve
+	 * the error event and process it.
+	 */
+	phba->sli.slistat.err_attn_event++;
 
-struct temp_event {
-	uint32_t event_type;
-	uint32_t event_code;
-	uint32_t data;
-};
-#define LPFC_CRIT_TEMP		0x1
-#define LPFC_THRESHOLD_TEMP	0x2
-#define LPFC_NORMAL_TEMP	0x3
+	/* Save status info */
+	phba->work_hs = readl(phba->HSregaddr);
+	phba->work_status[0] = readl(phba->MBslimaddr + 0xa8);
+	phba->work_status[1] = readl(phba->MBslimaddr + 0xac);
+
+	/* Clear chip Host Attention error bit */
+	writel(HA_ERATT, phba->HAregaddr);
+	readl(phba->HAregaddr); /* flush */
+	phba->pport->stopped = 1;
+
+	return;
+}
+
diff --git a/drivers/scsi/lpfc/lpfc_attr.c b/drivers/scsi/lpfc/lpfc_attr.c
index 37bfa0b..aa3d627 100644
--- a/drivers/scsi/lpfc/lpfc_attr.c
+++ b/drivers/scsi/lpfc/lpfc_attr.c
@@ -32,6 +32,7 @@
 
 #include "lpfc_hw.h"
 #include "lpfc_sli.h"
+#include "lpfc_nl.h"
 #include "lpfc_disc.h"
 #include "lpfc_scsi.h"
 #include "lpfc.h"
@@ -49,6 +50,21 @@
 #define LPFC_LINK_SPEED_BITMAP 0x00000117
 #define LPFC_LINK_SPEED_STRING "0, 1, 2, 4, 8"
 
+/**
+ * lpfc_jedec_to_ascii: Hex to ascii convertor according to JEDEC rules.
+ * @incr: integer to convert.
+ * @hdw: ascii string holding converted integer plus a string terminator.
+ *
+ * Description:
+ * JEDEC Joint Electron Device Engineering Council.
+ * Convert a 32 bit integer composed of 8 nibbles into an 8 byte ascii
+ * character string. The string is then terminated with a NULL in byte 9.
+ * Hex 0-9 becomes ascii '0' to '9'.
+ * Hex a-f becomes ascii '=' to 'B' capital B.
+ *
+ * Notes:
+ * Coded for 32 bit integers only.
+ **/
 static void
 lpfc_jedec_to_ascii(int incr, char hdw[])
 {
@@ -65,6 +81,14 @@
 	return;
 }
 
+/**
+ * lpfc_drvr_version_show: Return the Emulex driver string with version number.
+ * @dev: class unused variable.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the module description text.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_drvr_version_show(struct device *dev, struct device_attribute *attr,
 		       char *buf)
@@ -72,6 +96,14 @@
 	return snprintf(buf, PAGE_SIZE, LPFC_MODULE_DESC "\n");
 }
 
+/**
+ * lpfc_info_show: Return some pci info about the host in ascii.
+ * @dev: class converted to a Scsi_host structure.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the formatted text from lpfc_info().
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_info_show(struct device *dev, struct device_attribute *attr,
 	       char *buf)
@@ -81,6 +113,14 @@
 	return snprintf(buf, PAGE_SIZE, "%s\n",lpfc_info(host));
 }
 
+/**
+ * lpfc_serialnum_show: Return the hba serial number in ascii.
+ * @dev: class converted to a Scsi_host structure.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the formatted text serial number.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_serialnum_show(struct device *dev, struct device_attribute *attr,
 		    char *buf)
@@ -92,6 +132,18 @@
 	return snprintf(buf, PAGE_SIZE, "%s\n",phba->SerialNumber);
 }
 
+/**
+ * lpfc_temp_sensor_show: Return the temperature sensor level.
+ * @dev: class converted to a Scsi_host structure.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the formatted support level.
+ *
+ * Description:
+ * Returns a number indicating the temperature sensor level currently
+ * supported, zero or one in ascii.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_temp_sensor_show(struct device *dev, struct device_attribute *attr,
 		      char *buf)
@@ -102,6 +154,14 @@
 	return snprintf(buf, PAGE_SIZE, "%d\n",phba->temp_sensor_support);
 }
 
+/**
+ * lpfc_modeldesc_show: Return the model description of the hba.
+ * @dev: class converted to a Scsi_host structure.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the scsi vpd model description.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_modeldesc_show(struct device *dev, struct device_attribute *attr,
 		    char *buf)
@@ -113,6 +173,14 @@
 	return snprintf(buf, PAGE_SIZE, "%s\n",phba->ModelDesc);
 }
 
+/**
+ * lpfc_modelname_show: Return the model name of the hba.
+ * @dev: class converted to a Scsi_host structure.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the scsi vpd model name.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_modelname_show(struct device *dev, struct device_attribute *attr,
 		    char *buf)
@@ -124,6 +192,14 @@
 	return snprintf(buf, PAGE_SIZE, "%s\n",phba->ModelName);
 }
 
+/**
+ * lpfc_programtype_show: Return the program type of the hba.
+ * @dev: class converted to a Scsi_host structure.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the scsi vpd program type.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_programtype_show(struct device *dev, struct device_attribute *attr,
 		      char *buf)
@@ -135,6 +211,33 @@
 	return snprintf(buf, PAGE_SIZE, "%s\n",phba->ProgramType);
 }
 
+/**
+ * lpfc_mlomgmt_show: Return the Menlo Maintenance sli flag.
+ * @dev: class converted to a Scsi_host structure.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the Menlo Maintenance sli flag.
+ *
+ * Returns: size of formatted string.
+ **/
+static ssize_t
+lpfc_mlomgmt_show(struct device *dev, struct device_attribute *attr, char *buf)
+{
+	struct Scsi_Host  *shost = class_to_shost(dev);
+	struct lpfc_vport *vport = (struct lpfc_vport *)shost->hostdata;
+	struct lpfc_hba   *phba = vport->phba;
+
+	return snprintf(buf, PAGE_SIZE, "%d\n",
+		(phba->sli.sli_flag & LPFC_MENLO_MAINT));
+}
+
+/**
+ * lpfc_vportnum_show: Return the port number in ascii of the hba.
+ * @dev: class converted to a Scsi_host structure.
+ * @attr: device attribute, not used.
+ * @buf: on return contains scsi vpd program type.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_vportnum_show(struct device *dev, struct device_attribute *attr,
 		   char *buf)
@@ -146,6 +249,14 @@
 	return snprintf(buf, PAGE_SIZE, "%s\n",phba->Port);
 }
 
+/**
+ * lpfc_fwrev_show: Return the firmware rev running in the hba.
+ * @dev: class converted to a Scsi_host structure.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the scsi vpd program type.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_fwrev_show(struct device *dev, struct device_attribute *attr,
 		char *buf)
@@ -159,6 +270,14 @@
 	return snprintf(buf, PAGE_SIZE, "%s, sli-%d\n", fwrev, phba->sli_rev);
 }
 
+/**
+ * lpfc_hdw_show: Return the jedec information about the hba.
+ * @dev: class converted to a Scsi_host structure.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the scsi vpd program type.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_hdw_show(struct device *dev, struct device_attribute *attr, char *buf)
 {
@@ -171,6 +290,15 @@
 	lpfc_jedec_to_ascii(vp->rev.biuRev, hdw);
 	return snprintf(buf, PAGE_SIZE, "%s\n", hdw);
 }
+
+/**
+ * lpfc_option_rom_version_show: Return the adapter ROM FCode version.
+ * @dev: class converted to a Scsi_host structure.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the ROM and FCode ascii strings.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_option_rom_version_show(struct device *dev, struct device_attribute *attr,
 			     char *buf)
@@ -181,6 +309,18 @@
 
 	return snprintf(buf, PAGE_SIZE, "%s\n", phba->OptionROMVersion);
 }
+
+/**
+ * lpfc_state_show: Return the link state of the port.
+ * @dev: class converted to a Scsi_host structure.
+ * @attr: device attribute, not used.
+ * @buf: on return contains text describing the state of the link.
+ *
+ * Notes:
+ * The switch statement has no default so zero will be returned.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_link_state_show(struct device *dev, struct device_attribute *attr,
 		     char *buf)
@@ -232,8 +372,10 @@
 					"Unknown\n");
 			break;
 		}
-
-		if (phba->fc_topology == TOPOLOGY_LOOP) {
+		if (phba->sli.sli_flag & LPFC_MENLO_MAINT)
+			len += snprintf(buf + len, PAGE_SIZE-len,
+					"   Menlo Maint Mode\n");
+		else if (phba->fc_topology == TOPOLOGY_LOOP) {
 			if (vport->fc_flag & FC_PUBLIC_LOOP)
 				len += snprintf(buf + len, PAGE_SIZE-len,
 						"   Public Loop\n");
@@ -253,6 +395,18 @@
 	return len;
 }
 
+/**
+ * lpfc_num_discovered_ports_show: Return sum of mapped and unmapped vports.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the sum of fc mapped and unmapped.
+ *
+ * Description:
+ * Returns the ascii text number of the sum of the fc mapped and unmapped
+ * vport counts.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_num_discovered_ports_show(struct device *dev,
 			       struct device_attribute *attr, char *buf)
@@ -264,7 +418,20 @@
 			vport->fc_map_cnt + vport->fc_unmap_cnt);
 }
 
-
+/**
+ * lpfc_issue_lip: Misnomer, name carried over from long ago.
+ * @shost: Scsi_Host pointer.
+ *
+ * Description:
+ * Bring the link down gracefully then re-init the link. The firmware will
+ * re-init the fiber channel interface as required. Does not issue a LIP.
+ *
+ * Returns:
+ * -EPERM port offline or management commands are being blocked
+ * -ENOMEM cannot allocate memory for the mailbox command
+ * -EIO error sending the mailbox command
+ * zero for success
+ **/
 static int
 lpfc_issue_lip(struct Scsi_Host *shost)
 {
@@ -306,6 +473,21 @@
 	return 0;
 }
 
+/**
+ * lpfc_do_offline: Issues a mailbox command to bring the link down.
+ * @phba: lpfc_hba pointer.
+ * @type: LPFC_EVT_OFFLINE, LPFC_EVT_WARM_START, LPFC_EVT_KILL.
+ *
+ * Notes:
+ * Assumes any error from lpfc_do_offline() will be negative.
+ * Can wait up to 5 seconds for the port ring buffers count
+ * to reach zero, prints a warning if it is not zero and continues.
+ * lpfc_workq_post_event() returns a non-zero return coce if call fails.
+ *
+ * Returns:
+ * -EIO error posting the event
+ * zero for success
+ **/
 static int
 lpfc_do_offline(struct lpfc_hba *phba, uint32_t type)
 {
@@ -353,6 +535,22 @@
 	return 0;
 }
 
+/**
+ * lpfc_selective_reset: Offline then onlines the port.
+ * @phba: lpfc_hba pointer.
+ *
+ * Description:
+ * If the port is configured to allow a reset then the hba is brought
+ * offline then online.
+ *
+ * Notes:
+ * Assumes any error from lpfc_do_offline() will be negative.
+ *
+ * Returns:
+ * lpfc_do_offline() return code if not zero
+ * -EIO reset not configured or error posting the event
+ * zero for success
+ **/
 static int
 lpfc_selective_reset(struct lpfc_hba *phba)
 {
@@ -378,6 +576,27 @@
 	return 0;
 }
 
+/**
+ * lpfc_issue_reset: Selectively resets an adapter.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: containing the string "selective".
+ * @count: unused variable.
+ *
+ * Description:
+ * If the buf contains the string "selective" then lpfc_selective_reset()
+ * is called to perform the reset.
+ *
+ * Notes:
+ * Assumes any error from lpfc_selective_reset() will be negative.
+ * If lpfc_selective_reset() returns zero then the length of the buffer
+ * is returned which indicates succcess
+ *
+ * Returns:
+ * -EINVAL if the buffer does not contain the string "selective"
+ * length of buf if lpfc-selective_reset() if the call succeeds
+ * return value of lpfc_selective_reset() if the call fails
+**/
 static ssize_t
 lpfc_issue_reset(struct device *dev, struct device_attribute *attr,
 		 const char *buf, size_t count)
@@ -397,6 +616,14 @@
 		return status;
 }
 
+/**
+ * lpfc_nport_evt_cnt_show: Return the number of nport events.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the ascii number of nport events.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_nport_evt_cnt_show(struct device *dev, struct device_attribute *attr,
 			char *buf)
@@ -408,6 +635,14 @@
 	return snprintf(buf, PAGE_SIZE, "%d\n", phba->nport_event_cnt);
 }
 
+/**
+ * lpfc_board_mode_show: Return the state of the board.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the state of the adapter.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_board_mode_show(struct device *dev, struct device_attribute *attr,
 		     char *buf)
@@ -429,6 +664,19 @@
 	return snprintf(buf, PAGE_SIZE, "%s\n", state);
 }
 
+/**
+ * lpfc_board_mode_store: Puts the hba in online, offline, warm or error state.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: containing one of the strings "online", "offline", "warm" or "error".
+ * @count: unused variable.
+ *
+ * Returns:
+ * -EACCES if enable hba reset not enabled
+ * -EINVAL if the buffer does not contain a valid string (see above)
+ * -EIO if lpfc_workq_post_event() or lpfc_do_offline() fails
+ * buf length greater than zero indicates success
+ **/
 static ssize_t
 lpfc_board_mode_store(struct device *dev, struct device_attribute *attr,
 		      const char *buf, size_t count)
@@ -462,6 +710,24 @@
 		return -EIO;
 }
 
+/**
+ * lpfc_get_hba_info: Return various bits of informaton about the adapter.
+ * @phba: pointer to the adapter structure.
+ * @mxri max xri count.
+ * @axri available xri count.
+ * @mrpi max rpi count.
+ * @arpi available rpi count.
+ * @mvpi max vpi count.
+ * @avpi available vpi count.
+ *
+ * Description:
+ * If an integer pointer for an count is not null then the value for the
+ * count is returned.
+ *
+ * Returns:
+ * zero on error
+ * one for success
+ **/
 static int
 lpfc_get_hba_info(struct lpfc_hba *phba,
 		  uint32_t *mxri, uint32_t *axri,
@@ -524,6 +790,20 @@
 	return 1;
 }
 
+/**
+ * lpfc_max_rpi_show: Return maximum rpi.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the maximum rpi count in decimal or "Unknown".
+ *
+ * Description:
+ * Calls lpfc_get_hba_info() asking for just the mrpi count.
+ * If lpfc_get_hba_info() returns zero (failure) the buffer text is set
+ * to "Unknown" and the buffer length is returned, therefore the caller
+ * must check for "Unknown" in the buffer to detect a failure.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_max_rpi_show(struct device *dev, struct device_attribute *attr,
 		  char *buf)
@@ -538,6 +818,20 @@
 	return snprintf(buf, PAGE_SIZE, "Unknown\n");
 }
 
+/**
+ * lpfc_used_rpi_show: Return maximum rpi minus available rpi.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: containing the used rpi count in decimal or "Unknown".
+ *
+ * Description:
+ * Calls lpfc_get_hba_info() asking for just the mrpi and arpi counts.
+ * If lpfc_get_hba_info() returns zero (failure) the buffer text is set
+ * to "Unknown" and the buffer length is returned, therefore the caller
+ * must check for "Unknown" in the buffer to detect a failure.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_used_rpi_show(struct device *dev, struct device_attribute *attr,
 		   char *buf)
@@ -552,6 +846,20 @@
 	return snprintf(buf, PAGE_SIZE, "Unknown\n");
 }
 
+/**
+ * lpfc_max_xri_show: Return maximum xri.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the maximum xri count in decimal or "Unknown".
+ *
+ * Description:
+ * Calls lpfc_get_hba_info() asking for just the mrpi count.
+ * If lpfc_get_hba_info() returns zero (failure) the buffer text is set
+ * to "Unknown" and the buffer length is returned, therefore the caller
+ * must check for "Unknown" in the buffer to detect a failure.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_max_xri_show(struct device *dev, struct device_attribute *attr,
 		  char *buf)
@@ -566,6 +874,20 @@
 	return snprintf(buf, PAGE_SIZE, "Unknown\n");
 }
 
+/**
+ * lpfc_used_xri_show: Return maximum xpi minus the available xpi.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the used xri count in decimal or "Unknown".
+ *
+ * Description:
+ * Calls lpfc_get_hba_info() asking for just the mxri and axri counts.
+ * If lpfc_get_hba_info() returns zero (failure) the buffer text is set
+ * to "Unknown" and the buffer length is returned, therefore the caller
+ * must check for "Unknown" in the buffer to detect a failure.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_used_xri_show(struct device *dev, struct device_attribute *attr,
 		   char *buf)
@@ -580,6 +902,20 @@
 	return snprintf(buf, PAGE_SIZE, "Unknown\n");
 }
 
+/**
+ * lpfc_max_vpi_show: Return maximum vpi.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the maximum vpi count in decimal or "Unknown".
+ *
+ * Description:
+ * Calls lpfc_get_hba_info() asking for just the mvpi count.
+ * If lpfc_get_hba_info() returns zero (failure) the buffer text is set
+ * to "Unknown" and the buffer length is returned, therefore the caller
+ * must check for "Unknown" in the buffer to detect a failure.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_max_vpi_show(struct device *dev, struct device_attribute *attr,
 		  char *buf)
@@ -594,6 +930,20 @@
 	return snprintf(buf, PAGE_SIZE, "Unknown\n");
 }
 
+/**
+ * lpfc_used_vpi_show: Return maximum vpi minus the available vpi.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the used vpi count in decimal or "Unknown".
+ *
+ * Description:
+ * Calls lpfc_get_hba_info() asking for just the mvpi and avpi counts.
+ * If lpfc_get_hba_info() returns zero (failure) the buffer text is set
+ * to "Unknown" and the buffer length is returned, therefore the caller
+ * must check for "Unknown" in the buffer to detect a failure.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_used_vpi_show(struct device *dev, struct device_attribute *attr,
 		   char *buf)
@@ -608,6 +958,19 @@
 	return snprintf(buf, PAGE_SIZE, "Unknown\n");
 }
 
+/**
+ * lpfc_npiv_info_show: Return text about NPIV support for the adapter.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: text that must be interpreted to determine if npiv is supported.
+ *
+ * Description:
+ * Buffer will contain text indicating npiv is not suppoerted on the port,
+ * the port is an NPIV physical port, or it is an npiv virtual port with
+ * the id of the vport.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_npiv_info_show(struct device *dev, struct device_attribute *attr,
 		    char *buf)
@@ -623,6 +986,17 @@
 	return snprintf(buf, PAGE_SIZE, "NPIV Virtual (VPI %d)\n", vport->vpi);
 }
 
+/**
+ * lpfc_poll_show: Return text about poll support for the adapter.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the cfg_poll in hex.
+ *
+ * Notes:
+ * cfg_poll should be a lpfc_polling_flags type.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_poll_show(struct device *dev, struct device_attribute *attr,
 	       char *buf)
@@ -634,6 +1008,20 @@
 	return snprintf(buf, PAGE_SIZE, "%#x\n", phba->cfg_poll);
 }
 
+/**
+ * lpfc_poll_store: Set the value of cfg_poll for the adapter.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: one or more lpfc_polling_flags values.
+ * @count: not used.
+ *
+ * Notes:
+ * buf contents converted to integer and checked for a valid value.
+ *
+ * Returns:
+ * -EINVAL if the buffer connot be converted or is out of range
+ * length of the buf on success
+ **/
 static ssize_t
 lpfc_poll_store(struct device *dev, struct device_attribute *attr,
 		const char *buf, size_t count)
@@ -692,6 +1080,20 @@
 	return strlen(buf);
 }
 
+/**
+ * lpfc_param_show: Return a cfg attribute value in decimal.
+ *
+ * Description:
+ * Macro that given an attr e.g. hba_queue_depth expands
+ * into a function with the name lpfc_hba_queue_depth_show.
+ *
+ * lpfc_##attr##_show: Return the decimal value of an adapters cfg_xxx field.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the attribute value in decimal.
+ *
+ * Returns: size of formatted string.
+ **/
 #define lpfc_param_show(attr)	\
 static ssize_t \
 lpfc_##attr##_show(struct device *dev, struct device_attribute *attr, \
@@ -706,6 +1108,20 @@
 			phba->cfg_##attr);\
 }
 
+/**
+ * lpfc_param_hex_show: Return a cfg attribute value in hex.
+ *
+ * Description:
+ * Macro that given an attr e.g. hba_queue_depth expands
+ * into a function with the name lpfc_hba_queue_depth_show
+ *
+ * lpfc_##attr##_show: Return the hex value of an adapters cfg_xxx field.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the attribute value in hexidecimal.
+ *
+ * Returns: size of formatted string.
+ **/
 #define lpfc_param_hex_show(attr)	\
 static ssize_t \
 lpfc_##attr##_show(struct device *dev, struct device_attribute *attr, \
@@ -720,6 +1136,25 @@
 			phba->cfg_##attr);\
 }
 
+/**
+ * lpfc_param_init: Intializes a cfg attribute.
+ *
+ * Description:
+ * Macro that given an attr e.g. hba_queue_depth expands
+ * into a function with the name lpfc_hba_queue_depth_init. The macro also
+ * takes a default argument, a minimum and maximum argument.
+ *
+ * lpfc_##attr##_init: Initializes an attribute.
+ * @phba: pointer the the adapter structure.
+ * @val: integer attribute value.
+ *
+ * Validates the min and max values then sets the adapter config field
+ * accordingly, or uses the default if out of range and prints an error message.
+ *
+ * Returns:
+ * zero on success
+ * -EINVAL if default used
+ **/
 #define lpfc_param_init(attr, default, minval, maxval)	\
 static int \
 lpfc_##attr##_init(struct lpfc_hba *phba, int val) \
@@ -735,6 +1170,26 @@
 	return -EINVAL;\
 }
 
+/**
+ * lpfc_param_set: Set a cfg attribute value.
+ *
+ * Description:
+ * Macro that given an attr e.g. hba_queue_depth expands
+ * into a function with the name lpfc_hba_queue_depth_set
+ *
+ * lpfc_##attr##_set: Sets an attribute value.
+ * @phba: pointer the the adapter structure.
+ * @val: integer attribute value.
+ *
+ * Description:
+ * Validates the min and max values then sets the
+ * adapter config field if in the valid range. prints error message
+ * and does not set the parameter if invalid.
+ *
+ * Returns:
+ * zero on success
+ * -EINVAL if val is invalid
+ **/
 #define lpfc_param_set(attr, default, minval, maxval)	\
 static int \
 lpfc_##attr##_set(struct lpfc_hba *phba, int val) \
@@ -749,6 +1204,27 @@
 	return -EINVAL;\
 }
 
+/**
+ * lpfc_param_store: Set a vport attribute value.
+ *
+ * Description:
+ * Macro that given an attr e.g. hba_queue_depth expands
+ * into a function with the name lpfc_hba_queue_depth_store.
+ *
+ * lpfc_##attr##_store: Set an sttribute value.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: contains the attribute value in ascii.
+ * @count: not used.
+ *
+ * Description:
+ * Convert the ascii text number to an integer, then
+ * use the lpfc_##attr##_set function to set the value.
+ *
+ * Returns:
+ * -EINVAL if val is invalid or lpfc_##attr##_set() fails
+ * length of buffer upon success.
+ **/
 #define lpfc_param_store(attr)	\
 static ssize_t \
 lpfc_##attr##_store(struct device *dev, struct device_attribute *attr, \
@@ -768,6 +1244,20 @@
 		return -EINVAL;\
 }
 
+/**
+ * lpfc_vport_param_show: Return decimal formatted cfg attribute value.
+ *
+ * Description:
+ * Macro that given an attr e.g. hba_queue_depth expands
+ * into a function with the name lpfc_hba_queue_depth_show
+ *
+ * lpfc_##attr##_show: prints the attribute value in decimal.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the attribute value in decimal.
+ *
+ * Returns: length of formatted string.
+ **/
 #define lpfc_vport_param_show(attr)	\
 static ssize_t \
 lpfc_##attr##_show(struct device *dev, struct device_attribute *attr, \
@@ -780,6 +1270,21 @@
 	return snprintf(buf, PAGE_SIZE, "%d\n", vport->cfg_##attr);\
 }
 
+/**
+ * lpfc_vport_param_hex_show: Return hex formatted attribute value.
+ *
+ * Description:
+ * Macro that given an attr e.g.
+ * hba_queue_depth expands into a function with the name
+ * lpfc_hba_queue_depth_show
+ *
+ * lpfc_##attr##_show: prints the attribute value in hexidecimal.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the attribute value in hexidecimal.
+ *
+ * Returns: length of formatted string.
+ **/
 #define lpfc_vport_param_hex_show(attr)	\
 static ssize_t \
 lpfc_##attr##_show(struct device *dev, struct device_attribute *attr, \
@@ -792,6 +1297,24 @@
 	return snprintf(buf, PAGE_SIZE, "%#x\n", vport->cfg_##attr);\
 }
 
+/**
+ * lpfc_vport_param_init: Initialize a vport cfg attribute.
+ *
+ * Description:
+ * Macro that given an attr e.g. hba_queue_depth expands
+ * into a function with the name lpfc_hba_queue_depth_init. The macro also
+ * takes a default argument, a minimum and maximum argument.
+ *
+ * lpfc_##attr##_init: validates the min and max values then sets the
+ * adapter config field accordingly, or uses the default if out of range
+ * and prints an error message.
+ * @phba: pointer the the adapter structure.
+ * @val: integer attribute value.
+ *
+ * Returns:
+ * zero on success
+ * -EINVAL if default used
+ **/
 #define lpfc_vport_param_init(attr, default, minval, maxval)	\
 static int \
 lpfc_##attr##_init(struct lpfc_vport *vport, int val) \
@@ -801,12 +1324,29 @@
 		return 0;\
 	}\
 	lpfc_printf_vlog(vport, KERN_ERR, LOG_INIT, \
-			 "0449 lpfc_"#attr" attribute cannot be set to %d, "\
+			 "0423 lpfc_"#attr" attribute cannot be set to %d, "\
 			 "allowed range is ["#minval", "#maxval"]\n", val); \
 	vport->cfg_##attr = default;\
 	return -EINVAL;\
 }
 
+/**
+ * lpfc_vport_param_set: Set a vport cfg attribute.
+ *
+ * Description:
+ * Macro that given an attr e.g. hba_queue_depth expands
+ * into a function with the name lpfc_hba_queue_depth_set
+ *
+ * lpfc_##attr##_set: validates the min and max values then sets the
+ * adapter config field if in the valid range. prints error message
+ * and does not set the parameter if invalid.
+ * @phba: pointer the the adapter structure.
+ * @val:	integer attribute value.
+ *
+ * Returns:
+ * zero on success
+ * -EINVAL if val is invalid
+ **/
 #define lpfc_vport_param_set(attr, default, minval, maxval)	\
 static int \
 lpfc_##attr##_set(struct lpfc_vport *vport, int val) \
@@ -816,11 +1356,28 @@
 		return 0;\
 	}\
 	lpfc_printf_vlog(vport, KERN_ERR, LOG_INIT, \
-			 "0450 lpfc_"#attr" attribute cannot be set to %d, "\
+			 "0424 lpfc_"#attr" attribute cannot be set to %d, "\
 			 "allowed range is ["#minval", "#maxval"]\n", val); \
 	return -EINVAL;\
 }
 
+/**
+ * lpfc_vport_param_store: Set a vport attribute.
+ *
+ * Description:
+ * Macro that given an attr e.g. hba_queue_depth
+ * expands into a function with the name lpfc_hba_queue_depth_store
+ *
+ * lpfc_##attr##_store: convert the ascii text number to an integer, then
+ * use the lpfc_##attr##_set function to set the value.
+ * @cdev: class device that is converted into a Scsi_host.
+ * @buf:	contains the attribute value in decimal.
+ * @count: not used.
+ *
+ * Returns:
+ * -EINVAL if val is invalid or lpfc_##attr##_set() fails
+ * length of buffer upon success.
+ **/
 #define lpfc_vport_param_store(attr)	\
 static ssize_t \
 lpfc_##attr##_store(struct device *dev, struct device_attribute *attr, \
@@ -941,6 +1498,7 @@
 		   lpfc_option_rom_version_show, NULL);
 static DEVICE_ATTR(num_discovered_ports, S_IRUGO,
 		   lpfc_num_discovered_ports_show, NULL);
+static DEVICE_ATTR(menlo_mgmt_mode, S_IRUGO, lpfc_mlomgmt_show, NULL);
 static DEVICE_ATTR(nport_evt_cnt, S_IRUGO, lpfc_nport_evt_cnt_show, NULL);
 static DEVICE_ATTR(lpfc_drvr_version, S_IRUGO, lpfc_drvr_version_show, NULL);
 static DEVICE_ATTR(board_mode, S_IRUGO | S_IWUSR,
@@ -958,6 +1516,17 @@
 
 static char *lpfc_soft_wwn_key = "C99G71SL8032A";
 
+/**
+ * lpfc_soft_wwn_enable_store: Allows setting of the wwn if the key is valid.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: containing the string lpfc_soft_wwn_key.
+ * @count: must be size of lpfc_soft_wwn_key.
+ *
+ * Returns:
+ * -EINVAL if the buffer does not contain lpfc_soft_wwn_key
+ * length of buf indicates success
+ **/
 static ssize_t
 lpfc_soft_wwn_enable_store(struct device *dev, struct device_attribute *attr,
 			   const char *buf, size_t count)
@@ -994,6 +1563,14 @@
 static DEVICE_ATTR(lpfc_soft_wwn_enable, S_IWUSR, NULL,
 		   lpfc_soft_wwn_enable_store);
 
+/**
+ * lpfc_soft_wwpn_show: Return the cfg soft ww port name of the adapter.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the wwpn in hexidecimal.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_soft_wwpn_show(struct device *dev, struct device_attribute *attr,
 		    char *buf)
@@ -1006,7 +1583,19 @@
 			(unsigned long long)phba->cfg_soft_wwpn);
 }
 
-
+/**
+ * lpfc_soft_wwpn_store: Set the ww port name of the adapter.
+ * @dev class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: contains the wwpn in hexidecimal.
+ * @count: number of wwpn bytes in buf
+ *
+ * Returns:
+ * -EACCES hba reset not enabled, adapter over temp
+ * -EINVAL soft wwn not enabled, count is invalid, invalid wwpn byte invalid
+ * -EIO error taking adapter offline or online
+ * value of count on success
+ **/
 static ssize_t
 lpfc_soft_wwpn_store(struct device *dev, struct device_attribute *attr,
 		     const char *buf, size_t count)
@@ -1080,6 +1669,14 @@
 static DEVICE_ATTR(lpfc_soft_wwpn, S_IRUGO | S_IWUSR,\
 		   lpfc_soft_wwpn_show, lpfc_soft_wwpn_store);
 
+/**
+ * lpfc_soft_wwnn_show: Return the cfg soft ww node name for the adapter.
+ * @dev: class device that is converted into a Scsi_host.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the wwnn in hexidecimal.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_soft_wwnn_show(struct device *dev, struct device_attribute *attr,
 		    char *buf)
@@ -1090,7 +1687,16 @@
 			(unsigned long long)phba->cfg_soft_wwnn);
 }
 
-
+/**
+ * lpfc_soft_wwnn_store: sets the ww node name of the adapter.
+ * @cdev: class device that is converted into a Scsi_host.
+ * @buf: contains the ww node name in hexidecimal.
+ * @count: number of wwnn bytes in buf.
+ *
+ * Returns:
+ * -EINVAL soft wwn not enabled, count is invalid, invalid wwnn byte invalid
+ * value of count on success
+ **/
 static ssize_t
 lpfc_soft_wwnn_store(struct device *dev, struct device_attribute *attr,
 		     const char *buf, size_t count)
@@ -1178,6 +1784,15 @@
 MODULE_PARM_DESC(lpfc_nodev_tmo,
 		 "Seconds driver will hold I/O waiting "
 		 "for a device to come back");
+
+/**
+ * lpfc_nodev_tmo_show: Return the hba dev loss timeout value.
+ * @dev: class converted to a Scsi_host structure.
+ * @attr: device attribute, not used.
+ * @buf: on return contains the dev loss timeout in decimal.
+ *
+ * Returns: size of formatted string.
+ **/
 static ssize_t
 lpfc_nodev_tmo_show(struct device *dev, struct device_attribute *attr,
 		    char *buf)
@@ -1189,6 +1804,21 @@
 	return snprintf(buf, PAGE_SIZE, "%d\n",	vport->cfg_devloss_tmo);
 }
 
+/**
+ * lpfc_nodev_tmo_init: Set the hba nodev timeout value.
+ * @vport: lpfc vport structure pointer.
+ * @val: contains the nodev timeout value.
+ *
+ * Description:
+ * If the devloss tmo is already set then nodev tmo is set to devloss tmo,
+ * a kernel error message is printed and zero is returned.
+ * Else if val is in range then nodev tmo and devloss tmo are set to val.
+ * Otherwise nodev tmo is set to the default value.
+ *
+ * Returns:
+ * zero if already set or if val is in range
+ * -EINVAL val out of range
+ **/
 static int
 lpfc_nodev_tmo_init(struct lpfc_vport *vport, int val)
 {
@@ -1196,7 +1826,7 @@
 		vport->cfg_nodev_tmo = vport->cfg_devloss_tmo;
 		if (val != LPFC_DEF_DEVLOSS_TMO)
 			lpfc_printf_vlog(vport, KERN_ERR, LOG_INIT,
-					 "0402 Ignoring nodev_tmo module "
+					 "0407 Ignoring nodev_tmo module "
 					 "parameter because devloss_tmo is "
 					 "set.\n");
 		return 0;
@@ -1215,6 +1845,13 @@
 	return -EINVAL;
 }
 
+/**
+ * lpfc_update_rport_devloss_tmo: Update dev loss tmo value.
+ * @vport: lpfc vport structure pointer.
+ *
+ * Description:
+ * Update all the ndlp's dev loss tmo with the vport devloss tmo value.
+ **/
 static void
 lpfc_update_rport_devloss_tmo(struct lpfc_vport *vport)
 {
@@ -1229,6 +1866,21 @@
 	spin_unlock_irq(shost->host_lock);
 }
 
+/**
+ * lpfc_nodev_tmo_set: Set the vport nodev tmo and devloss tmo values.
+ * @vport: lpfc vport structure pointer.
+ * @val: contains the tmo value.
+ *
+ * Description:
+ * If the devloss tmo is already set or the vport dev loss tmo has changed
+ * then a kernel error message is printed and zero is returned.
+ * Else if val is in range then nodev tmo and devloss tmo are set to val.
+ * Otherwise nodev tmo is set to the default value.
+ *
+ * Returns:
+ * zero if already set or if val is in range
+ * -EINVAL val out of range
+ **/
 static int
 lpfc_nodev_tmo_set(struct lpfc_vport *vport, int val)
 {
@@ -1269,6 +1921,21 @@
 lpfc_vport_param_init(devloss_tmo, LPFC_DEF_DEVLOSS_TMO,
 		      LPFC_MIN_DEVLOSS_TMO, LPFC_MAX_DEVLOSS_TMO)
 lpfc_vport_param_show(devloss_tmo)
+
+/**
+ * lpfc_devloss_tmo_set: Sets vport nodev tmo, devloss tmo values, changed bit.
+ * @vport: lpfc vport structure pointer.
+ * @val: contains the tmo value.
+ *
+ * Description:
+ * If val is in a valid range then set the vport nodev tmo,
+ * devloss tmo, also set the vport dev loss tmo changed flag.
+ * Else a kernel error message is printed.
+ *
+ * Returns:
+ * zero if val is in range
+ * -EINVAL val out of range
+ **/
 static int
 lpfc_devloss_tmo_set(struct lpfc_vport *vport, int val)
 {
@@ -1366,12 +2033,27 @@
 		 "Restrict virtual ports login to remote initiators.");
 lpfc_vport_param_show(restrict_login);
 
+/**
+ * lpfc_restrict_login_init: Set the vport restrict login flag.
+ * @vport: lpfc vport structure pointer.
+ * @val: contains the restrict login value.
+ *
+ * Description:
+ * If val is not in a valid range then log a kernel error message and set
+ * the vport restrict login to one.
+ * If the port type is physical clear the restrict login flag and return.
+ * Else set the restrict login flag to val.
+ *
+ * Returns:
+ * zero if val is in range
+ * -EINVAL val out of range
+ **/
 static int
 lpfc_restrict_login_init(struct lpfc_vport *vport, int val)
 {
 	if (val < 0 || val > 1) {
 		lpfc_printf_vlog(vport, KERN_ERR, LOG_INIT,
-				 "0449 lpfc_restrict_login attribute cannot "
+				 "0422 lpfc_restrict_login attribute cannot "
 				 "be set to %d, allowed range is [0, 1]\n",
 				 val);
 		vport->cfg_restrict_login = 1;
@@ -1385,12 +2067,28 @@
 	return 0;
 }
 
+/**
+ * lpfc_restrict_login_set: Set the vport restrict login flag.
+ * @vport: lpfc vport structure pointer.
+ * @val: contains the restrict login value.
+ *
+ * Description:
+ * If val is not in a valid range then log a kernel error message and set
+ * the vport restrict login to one.
+ * If the port type is physical and the val is not zero log a kernel
+ * error message, clear the restrict login flag and return zero.
+ * Else set the restrict login flag to val.
+ *
+ * Returns:
+ * zero if val is in range
+ * -EINVAL val out of range
+ **/
 static int
 lpfc_restrict_login_set(struct lpfc_vport *vport, int val)
 {
 	if (val < 0 || val > 1) {
 		lpfc_printf_vlog(vport, KERN_ERR, LOG_INIT,
-				 "0450 lpfc_restrict_login attribute cannot "
+				 "0425 lpfc_restrict_login attribute cannot "
 				 "be set to %d, allowed range is [0, 1]\n",
 				 val);
 		vport->cfg_restrict_login = 1;
@@ -1441,6 +2139,23 @@
 # Set loop mode if you want to run as an NL_Port. Value range is [0,0x6].
 # Default value is 0.
 */
+
+/**
+ * lpfc_topology_set: Set the adapters topology field.
+ * @phba: lpfc_hba pointer.
+ * @val: topology value.
+ *
+ * Description:
+ * If val is in a valid range then set the adapter's topology field and
+ * issue a lip; if the lip fails reset the topology to the old value.
+ *
+ * If the value is not in range log a kernel error message and return an error.
+ *
+ * Returns:
+ * zero if val is in range and lip okay
+ * non-zero return value from lpfc_issue_lip()
+ * -EINVAL val out of range
+ **/
 static int
 lpfc_topology_set(struct lpfc_hba *phba, int val)
 {
@@ -1469,6 +2184,335 @@
 static DEVICE_ATTR(lpfc_topology, S_IRUGO | S_IWUSR,
 		lpfc_topology_show, lpfc_topology_store);
 
+
+/**
+ * lpfc_stat_data_ctrl_store: write call back for lpfc_stat_data_ctrl
+ *  sysfs file.
+ * @dev: Pointer to class device.
+ * @buf: Data buffer.
+ * @count: Size of the data buffer.
+ *
+ * This function get called when an user write to the lpfc_stat_data_ctrl
+ * sysfs file. This function parse the command written to the sysfs file
+ * and take appropriate action. These commands are used for controlling
+ * driver statistical data collection.
+ * Following are the command this function handles.
+ *
+ *    setbucket <bucket_type> <base> <step>
+ *			       = Set the latency buckets.
+ *    destroybucket            = destroy all the buckets.
+ *    start                    = start data collection
+ *    stop                     = stop data collection
+ *    reset                    = reset the collected data
+ **/
+static ssize_t
+lpfc_stat_data_ctrl_store(struct device *dev, struct device_attribute *attr,
+			  const char *buf, size_t count)
+{
+	struct Scsi_Host  *shost = class_to_shost(dev);
+	struct lpfc_vport *vport = (struct lpfc_vport *) shost->hostdata;
+	struct lpfc_hba   *phba = vport->phba;
+#define LPFC_MAX_DATA_CTRL_LEN 1024
+	static char bucket_data[LPFC_MAX_DATA_CTRL_LEN];
+	unsigned long i;
+	char *str_ptr, *token;
+	struct lpfc_vport **vports;
+	struct Scsi_Host *v_shost;
+	char *bucket_type_str, *base_str, *step_str;
+	unsigned long base, step, bucket_type;
+
+	if (!strncmp(buf, "setbucket", strlen("setbucket"))) {
+		if (strlen(buf) > LPFC_MAX_DATA_CTRL_LEN)
+			return -EINVAL;
+
+		strcpy(bucket_data, buf);
+		str_ptr = &bucket_data[0];
+		/* Ignore this token - this is command token */
+		token = strsep(&str_ptr, "\t ");
+		if (!token)
+			return -EINVAL;
+
+		bucket_type_str = strsep(&str_ptr, "\t ");
+		if (!bucket_type_str)
+			return -EINVAL;
+
+		if (!strncmp(bucket_type_str, "linear", strlen("linear")))
+			bucket_type = LPFC_LINEAR_BUCKET;
+		else if (!strncmp(bucket_type_str, "power2", strlen("power2")))
+			bucket_type = LPFC_POWER2_BUCKET;
+		else
+			return -EINVAL;
+
+		base_str = strsep(&str_ptr, "\t ");
+		if (!base_str)
+			return -EINVAL;
+		base = simple_strtoul(base_str, NULL, 0);
+
+		step_str = strsep(&str_ptr, "\t ");
+		if (!step_str)
+			return -EINVAL;
+		step = simple_strtoul(step_str, NULL, 0);
+		if (!step)
+			return -EINVAL;
+
+		/* Block the data collection for every vport */
+		vports = lpfc_create_vport_work_array(phba);
+		if (vports == NULL)
+			return -ENOMEM;
+
+		for (i = 0; i <= phba->max_vpi && vports[i] != NULL; i++) {
+			v_shost = lpfc_shost_from_vport(vports[i]);
+			spin_lock_irq(v_shost->host_lock);
+			/* Block and reset data collection */
+			vports[i]->stat_data_blocked = 1;
+			if (vports[i]->stat_data_enabled)
+				lpfc_vport_reset_stat_data(vports[i]);
+			spin_unlock_irq(v_shost->host_lock);
+		}
+
+		/* Set the bucket attributes */
+		phba->bucket_type = bucket_type;
+		phba->bucket_base = base;
+		phba->bucket_step = step;
+
+		for (i = 0; i <= phba->max_vpi && vports[i] != NULL; i++) {
+			v_shost = lpfc_shost_from_vport(vports[i]);
+
+			/* Unblock data collection */
+			spin_lock_irq(v_shost->host_lock);
+			vports[i]->stat_data_blocked = 0;
+			spin_unlock_irq(v_shost->host_lock);
+		}
+		lpfc_destroy_vport_work_array(phba, vports);
+		return strlen(buf);
+	}
+
+	if (!strncmp(buf, "destroybucket", strlen("destroybucket"))) {
+		vports = lpfc_create_vport_work_array(phba);
+		if (vports == NULL)
+			return -ENOMEM;
+
+		for (i = 0; i <= phba->max_vpi && vports[i] != NULL; i++) {
+			v_shost = lpfc_shost_from_vport(vports[i]);
+			spin_lock_irq(shost->host_lock);
+			vports[i]->stat_data_blocked = 1;
+			lpfc_free_bucket(vport);
+			vport->stat_data_enabled = 0;
+			vports[i]->stat_data_blocked = 0;
+			spin_unlock_irq(shost->host_lock);
+		}
+		lpfc_destroy_vport_work_array(phba, vports);
+		phba->bucket_type = LPFC_NO_BUCKET;
+		phba->bucket_base = 0;
+		phba->bucket_step = 0;
+		return strlen(buf);
+	}
+
+	if (!strncmp(buf, "start", strlen("start"))) {
+		/* If no buckets configured return error */
+		if (phba->bucket_type == LPFC_NO_BUCKET)
+			return -EINVAL;
+		spin_lock_irq(shost->host_lock);
+		if (vport->stat_data_enabled) {
+			spin_unlock_irq(shost->host_lock);
+			return strlen(buf);
+		}
+		lpfc_alloc_bucket(vport);
+		vport->stat_data_enabled = 1;
+		spin_unlock_irq(shost->host_lock);
+		return strlen(buf);
+	}
+
+	if (!strncmp(buf, "stop", strlen("stop"))) {
+		spin_lock_irq(shost->host_lock);
+		if (vport->stat_data_enabled == 0) {
+			spin_unlock_irq(shost->host_lock);
+			return strlen(buf);
+		}
+		lpfc_free_bucket(vport);
+		vport->stat_data_enabled = 0;
+		spin_unlock_irq(shost->host_lock);
+		return strlen(buf);
+	}
+
+	if (!strncmp(buf, "reset", strlen("reset"))) {
+		if ((phba->bucket_type == LPFC_NO_BUCKET)
+			|| !vport->stat_data_enabled)
+			return strlen(buf);
+		spin_lock_irq(shost->host_lock);
+		vport->stat_data_blocked = 1;
+		lpfc_vport_reset_stat_data(vport);
+		vport->stat_data_blocked = 0;
+		spin_unlock_irq(shost->host_lock);
+		return strlen(buf);
+	}
+	return -EINVAL;
+}
+
+
+/**
+ * lpfc_stat_data_ctrl_show: Read callback function for
+ *   lpfc_stat_data_ctrl sysfs file.
+ * @dev: Pointer to class device object.
+ * @buf: Data buffer.
+ *
+ * This function is the read call back function for
+ * lpfc_stat_data_ctrl sysfs file. This function report the
+ * current statistical data collection state.
+ **/
+static ssize_t
+lpfc_stat_data_ctrl_show(struct device *dev, struct device_attribute *attr,
+			 char *buf)
+{
+	struct Scsi_Host  *shost = class_to_shost(dev);
+	struct lpfc_vport *vport = (struct lpfc_vport *) shost->hostdata;
+	struct lpfc_hba   *phba = vport->phba;
+	int index = 0;
+	int i;
+	char *bucket_type;
+	unsigned long bucket_value;
+
+	switch (phba->bucket_type) {
+	case LPFC_LINEAR_BUCKET:
+		bucket_type = "linear";
+		break;
+	case LPFC_POWER2_BUCKET:
+		bucket_type = "power2";
+		break;
+	default:
+		bucket_type = "No Bucket";
+		break;
+	}
+
+	sprintf(&buf[index], "Statistical Data enabled :%d, "
+		"blocked :%d, Bucket type :%s, Bucket base :%d,"
+		" Bucket step :%d\nLatency Ranges :",
+		vport->stat_data_enabled, vport->stat_data_blocked,
+		bucket_type, phba->bucket_base, phba->bucket_step);
+	index = strlen(buf);
+	if (phba->bucket_type != LPFC_NO_BUCKET) {
+		for (i = 0; i < LPFC_MAX_BUCKET_COUNT; i++) {
+			if (phba->bucket_type == LPFC_LINEAR_BUCKET)
+				bucket_value = phba->bucket_base +
+					phba->bucket_step * i;
+			else
+				bucket_value = phba->bucket_base +
+				(1 << i) * phba->bucket_step;
+
+			if (index + 10 > PAGE_SIZE)
+				break;
+			sprintf(&buf[index], "%08ld ", bucket_value);
+			index = strlen(buf);
+		}
+	}
+	sprintf(&buf[index], "\n");
+	return strlen(buf);
+}
+
+/*
+ * Sysfs attribute to control the statistical data collection.
+ */
+static DEVICE_ATTR(lpfc_stat_data_ctrl, S_IRUGO | S_IWUSR,
+		   lpfc_stat_data_ctrl_show, lpfc_stat_data_ctrl_store);
+
+/*
+ * lpfc_drvr_stat_data: sysfs attr to get driver statistical data.
+ */
+
+/*
+ * Each Bucket takes 11 characters and 1 new line + 17 bytes WWN
+ * for each target.
+ */
+#define STAT_DATA_SIZE_PER_TARGET(NUM_BUCKETS) ((NUM_BUCKETS) * 11 + 18)
+#define MAX_STAT_DATA_SIZE_PER_TARGET \
+	STAT_DATA_SIZE_PER_TARGET(LPFC_MAX_BUCKET_COUNT)
+
+
+/**
+ * sysfs_drvr_stat_data_read: Read callback function for lpfc_drvr_stat_data
+ *  sysfs attribute.
+ * @kobj: Pointer to the kernel object
+ * @bin_attr: Attribute object
+ * @buff: Buffer pointer
+ * @off: File offset
+ * @count: Buffer size
+ *
+ * This function is the read call back function for lpfc_drvr_stat_data
+ * sysfs file. This function export the statistical data to user
+ * applications.
+ **/
+static ssize_t
+sysfs_drvr_stat_data_read(struct kobject *kobj, struct bin_attribute *bin_attr,
+		char *buf, loff_t off, size_t count)
+{
+	struct device *dev = container_of(kobj, struct device,
+		kobj);
+	struct Scsi_Host  *shost = class_to_shost(dev);
+	struct lpfc_vport *vport = (struct lpfc_vport *) shost->hostdata;
+	struct lpfc_hba   *phba = vport->phba;
+	int i = 0, index = 0;
+	unsigned long nport_index;
+	struct lpfc_nodelist *ndlp = NULL;
+	nport_index = (unsigned long)off /
+		MAX_STAT_DATA_SIZE_PER_TARGET;
+
+	if (!vport->stat_data_enabled || vport->stat_data_blocked
+		|| (phba->bucket_type == LPFC_NO_BUCKET))
+		return 0;
+
+	spin_lock_irq(shost->host_lock);
+	list_for_each_entry(ndlp, &vport->fc_nodes, nlp_listp) {
+		if (!NLP_CHK_NODE_ACT(ndlp) || !ndlp->lat_data)
+			continue;
+
+		if (nport_index > 0) {
+			nport_index--;
+			continue;
+		}
+
+		if ((index + MAX_STAT_DATA_SIZE_PER_TARGET)
+			> count)
+			break;
+
+		if (!ndlp->lat_data)
+			continue;
+
+		/* Print the WWN */
+		sprintf(&buf[index], "%02x%02x%02x%02x%02x%02x%02x%02x:",
+			ndlp->nlp_portname.u.wwn[0],
+			ndlp->nlp_portname.u.wwn[1],
+			ndlp->nlp_portname.u.wwn[2],
+			ndlp->nlp_portname.u.wwn[3],
+			ndlp->nlp_portname.u.wwn[4],
+			ndlp->nlp_portname.u.wwn[5],
+			ndlp->nlp_portname.u.wwn[6],
+			ndlp->nlp_portname.u.wwn[7]);
+
+		index = strlen(buf);
+
+		for (i = 0; i < LPFC_MAX_BUCKET_COUNT; i++) {
+			sprintf(&buf[index], "%010u,",
+				ndlp->lat_data[i].cmd_count);
+			index = strlen(buf);
+		}
+		sprintf(&buf[index], "\n");
+		index = strlen(buf);
+	}
+	spin_unlock_irq(shost->host_lock);
+	return index;
+}
+
+static struct bin_attribute sysfs_drvr_stat_data_attr = {
+	.attr = {
+		.name = "lpfc_drvr_stat_data",
+		.mode = S_IRUSR,
+		.owner = THIS_MODULE,
+	},
+	.size = LPFC_MAX_TARGET * MAX_STAT_DATA_SIZE_PER_TARGET,
+	.read = sysfs_drvr_stat_data_read,
+	.write = NULL,
+};
+
 /*
 # lpfc_link_speed: Link speed selection for initializing the Fibre Channel
 # connection.
@@ -1479,6 +2523,24 @@
 #       8  = 8 Gigabaud
 # Value range is [0,8]. Default value is 0.
 */
+
+/**
+ * lpfc_link_speed_set: Set the adapters link speed.
+ * @phba: lpfc_hba pointer.
+ * @val: link speed value.
+ *
+ * Description:
+ * If val is in a valid range then set the adapter's link speed field and
+ * issue a lip; if the lip fails reset the link speed to the old value.
+ *
+ * Notes:
+ * If the value is not in range log a kernel error message and return an error.
+ *
+ * Returns:
+ * zero if val is in range and lip okay.
+ * non-zero return value from lpfc_issue_lip()
+ * -EINVAL val out of range
+ **/
 static int
 lpfc_link_speed_set(struct lpfc_hba *phba, int val)
 {
@@ -1513,6 +2575,23 @@
 module_param(lpfc_link_speed, int, 0);
 MODULE_PARM_DESC(lpfc_link_speed, "Select link speed");
 lpfc_param_show(link_speed)
+
+/**
+ * lpfc_link_speed_init: Set the adapters link speed.
+ * @phba: lpfc_hba pointer.
+ * @val: link speed value.
+ *
+ * Description:
+ * If val is in a valid range then set the adapter's link speed field.
+ *
+ * Notes:
+ * If the value is not in range log a kernel error message, clear the link
+ * speed and return an error.
+ *
+ * Returns:
+ * zero if val saved.
+ * -EINVAL val out of range
+ **/
 static int
 lpfc_link_speed_init(struct lpfc_hba *phba, int val)
 {
@@ -1522,7 +2601,7 @@
 		return 0;
 	}
 	lpfc_printf_log(phba, KERN_ERR, LOG_INIT,
-			"0454 lpfc_link_speed attribute cannot "
+			"0405 lpfc_link_speed attribute cannot "
 			"be set to %d, allowed values are "
 			"["LPFC_LINK_SPEED_STRING"]\n", val);
 	phba->cfg_link_speed = 0;
@@ -1548,6 +2627,48 @@
 		   "Use ADISC on rediscovery to authenticate FCP devices");
 
 /*
+# lpfc_max_scsicmpl_time: Use scsi command completion time to control I/O queue
+# depth. Default value is 0. When the value of this parameter is zero the
+# SCSI command completion time is not used for controlling I/O queue depth. When
+# the parameter is set to a non-zero value, the I/O queue depth is controlled
+# to limit the I/O completion time to the parameter value.
+# The value is set in milliseconds.
+*/
+static int lpfc_max_scsicmpl_time;
+module_param(lpfc_max_scsicmpl_time, int, 0);
+MODULE_PARM_DESC(lpfc_max_scsicmpl_time,
+	"Use command completion time to control queue depth");
+lpfc_vport_param_show(max_scsicmpl_time);
+lpfc_vport_param_init(max_scsicmpl_time, 0, 0, 60000);
+static int
+lpfc_max_scsicmpl_time_set(struct lpfc_vport *vport, int val)
+{
+	struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
+	struct lpfc_nodelist *ndlp, *next_ndlp;
+
+	if (val == vport->cfg_max_scsicmpl_time)
+		return 0;
+	if ((val < 0) || (val > 60000))
+		return -EINVAL;
+	vport->cfg_max_scsicmpl_time = val;
+
+	spin_lock_irq(shost->host_lock);
+	list_for_each_entry_safe(ndlp, next_ndlp, &vport->fc_nodes, nlp_listp) {
+		if (!NLP_CHK_NODE_ACT(ndlp))
+			continue;
+		if (ndlp->nlp_state == NLP_STE_UNUSED_NODE)
+			continue;
+		ndlp->cmd_qdepth = LPFC_MAX_TGT_QDEPTH;
+	}
+	spin_unlock_irq(shost->host_lock);
+	return 0;
+}
+lpfc_vport_param_store(max_scsicmpl_time);
+static DEVICE_ATTR(lpfc_max_scsicmpl_time, S_IRUGO | S_IWUSR,
+		   lpfc_max_scsicmpl_time_show,
+		   lpfc_max_scsicmpl_time_store);
+
+/*
 # lpfc_ack0: Use ACK0, instead of ACK1 for class 2 acknowledgement. Value
 # range is [0,1]. Default value is 0.
 */
@@ -1623,12 +2744,12 @@
 /*
 # lpfc_use_msi: Use MSI (Message Signaled Interrupts) in systems that
 #		support this feature
-#       0  = MSI disabled (default)
+#       0  = MSI disabled
 #       1  = MSI enabled
-#	2  = MSI-X enabled
-# Value range is [0,2]. Default value is 0.
+#       2  = MSI-X enabled (default)
+# Value range is [0,2]. Default value is 2.
 */
-LPFC_ATTR_R(use_msi, 0, 0, 2, "Use Message Signaled Interrupts (1) or "
+LPFC_ATTR_R(use_msi, 2, 0, 2, "Use Message Signaled Interrupts (1) or "
 	    "MSI-X (2), if possible");
 
 /*
@@ -1668,6 +2789,7 @@
 	&dev_attr_option_rom_version,
 	&dev_attr_link_state,
 	&dev_attr_num_discovered_ports,
+	&dev_attr_menlo_mgmt_mode,
 	&dev_attr_lpfc_drvr_version,
 	&dev_attr_lpfc_temp_sensor,
 	&dev_attr_lpfc_log_verbose,
@@ -1709,6 +2831,8 @@
 	&dev_attr_lpfc_enable_hba_reset,
 	&dev_attr_lpfc_enable_hba_heartbeat,
 	&dev_attr_lpfc_sg_seg_cnt,
+	&dev_attr_lpfc_max_scsicmpl_time,
+	&dev_attr_lpfc_stat_data_ctrl,
 	NULL,
 };
 
@@ -1731,9 +2855,29 @@
 	&dev_attr_nport_evt_cnt,
 	&dev_attr_npiv_info,
 	&dev_attr_lpfc_enable_da_id,
+	&dev_attr_lpfc_max_scsicmpl_time,
+	&dev_attr_lpfc_stat_data_ctrl,
 	NULL,
 };
 
+/**
+ * sysfs_ctlreg_write: Write method for writing to ctlreg.
+ * @kobj: kernel kobject that contains the kernel class device.
+ * @bin_attr: kernel attributes passed to us.
+ * @buf: contains the data to be written to the adapter IOREG space.
+ * @off: offset into buffer to beginning of data.
+ * @count: bytes to transfer.
+ *
+ * Description:
+ * Accessed via /sys/class/scsi_host/hostxxx/ctlreg.
+ * Uses the adapter io control registers to send buf contents to the adapter.
+ *
+ * Returns:
+ * -ERANGE off and count combo out of range
+ * -EINVAL off, count or buff address invalid
+ * -EPERM adapter is offline
+ * value of count, buf contents written
+ **/
 static ssize_t
 sysfs_ctlreg_write(struct kobject *kobj, struct bin_attribute *bin_attr,
 		   char *buf, loff_t off, size_t count)
@@ -1766,6 +2910,23 @@
 	return count;
 }
 
+/**
+ * sysfs_ctlreg_read: Read method for reading from ctlreg.
+ * @kobj: kernel kobject that contains the kernel class device.
+ * @bin_attr: kernel attributes passed to us.
+ * @buf: if succesful contains the data from the adapter IOREG space.
+ * @off: offset into buffer to beginning of data.
+ * @count: bytes to transfer.
+ *
+ * Description:
+ * Accessed via /sys/class/scsi_host/hostxxx/ctlreg.
+ * Uses the adapter io control registers to read data into buf.
+ *
+ * Returns:
+ * -ERANGE off and count combo out of range
+ * -EINVAL off, count or buff address invalid
+ * value of count, buf contents read
+ **/
 static ssize_t
 sysfs_ctlreg_read(struct kobject *kobj, struct bin_attribute *bin_attr,
 		  char *buf, loff_t off, size_t count)
@@ -1810,7 +2971,10 @@
 	.write = sysfs_ctlreg_write,
 };
 
-
+/**
+ * sysfs_mbox_idle: frees the sysfs mailbox.
+ * @phba: lpfc_hba pointer
+ **/
 static void
 sysfs_mbox_idle(struct lpfc_hba *phba)
 {
@@ -1824,6 +2988,27 @@
 	}
 }
 
+/**
+ * sysfs_mbox_write: Write method for writing information via mbox.
+ * @kobj: kernel kobject that contains the kernel class device.
+ * @bin_attr: kernel attributes passed to us.
+ * @buf: contains the data to be written to sysfs mbox.
+ * @off: offset into buffer to beginning of data.
+ * @count: bytes to transfer.
+ *
+ * Description:
+ * Accessed via /sys/class/scsi_host/hostxxx/mbox.
+ * Uses the sysfs mbox to send buf contents to the adapter.
+ *
+ * Returns:
+ * -ERANGE off and count combo out of range
+ * -EINVAL off, count or buff address invalid
+ * zero if count is zero
+ * -EPERM adapter is offline
+ * -ENOMEM failed to allocate memory for the mail box
+ * -EAGAIN offset, state or mbox is NULL
+ * count number of bytes transferred
+ **/
 static ssize_t
 sysfs_mbox_write(struct kobject *kobj, struct bin_attribute *bin_attr,
 		 char *buf, loff_t off, size_t count)
@@ -1878,6 +3063,29 @@
 	return count;
 }
 
+/**
+ * sysfs_mbox_read: Read method for reading information via mbox.
+ * @kobj: kernel kobject that contains the kernel class device.
+ * @bin_attr: kernel attributes passed to us.
+ * @buf: contains the data to be read from sysfs mbox.
+ * @off: offset into buffer to beginning of data.
+ * @count: bytes to transfer.
+ *
+ * Description:
+ * Accessed via /sys/class/scsi_host/hostxxx/mbox.
+ * Uses the sysfs mbox to receive data from to the adapter.
+ *
+ * Returns:
+ * -ERANGE off greater than mailbox command size
+ * -EINVAL off, count or buff address invalid
+ * zero if off and count are zero
+ * -EACCES adapter over temp
+ * -EPERM garbage can value to catch a multitude of errors
+ * -EAGAIN management IO not permitted, state or off error
+ * -ETIME mailbox timeout
+ * -ENODEV mailbox error
+ * count number of bytes transferred
+ **/
 static ssize_t
 sysfs_mbox_read(struct kobject *kobj, struct bin_attribute *bin_attr,
 		char *buf, loff_t off, size_t count)
@@ -1954,6 +3162,8 @@
 		case MBX_DEL_LD_ENTRY:
 		case MBX_SET_VARIABLE:
 		case MBX_WRITE_WWN:
+		case MBX_PORT_CAPABILITIES:
+		case MBX_PORT_IOV_CONTROL:
 			break;
 		case MBX_READ_SPARM64:
 		case MBX_READ_LA:
@@ -1978,17 +3188,15 @@
 		/* If HBA encountered an error attention, allow only DUMP
 		 * or RESTART mailbox commands until the HBA is restarted.
 		 */
-		if ((phba->pport->stopped) &&
-			(phba->sysfs_mbox.mbox->mb.mbxCommand !=
-				MBX_DUMP_MEMORY &&
-			 phba->sysfs_mbox.mbox->mb.mbxCommand !=
-				MBX_RESTART &&
-			 phba->sysfs_mbox.mbox->mb.mbxCommand !=
-				MBX_WRITE_VPARMS)) {
-			sysfs_mbox_idle(phba);
-			spin_unlock_irq(&phba->hbalock);
-			return -EPERM;
-		}
+		if (phba->pport->stopped &&
+		    phba->sysfs_mbox.mbox->mb.mbxCommand != MBX_DUMP_MEMORY &&
+		    phba->sysfs_mbox.mbox->mb.mbxCommand != MBX_RESTART &&
+		    phba->sysfs_mbox.mbox->mb.mbxCommand != MBX_WRITE_VPARMS &&
+		    phba->sysfs_mbox.mbox->mb.mbxCommand != MBX_WRITE_WWN)
+			lpfc_printf_log(phba, KERN_WARNING, LOG_MBOX,
+					"1259 mbox: Issued mailbox cmd "
+					"0x%x while in stopped state.\n",
+					phba->sysfs_mbox.mbox->mb.mbxCommand);
 
 		phba->sysfs_mbox.mbox->vport = vport;
 
@@ -2059,6 +3267,14 @@
 	.write = sysfs_mbox_write,
 };
 
+/**
+ * lpfc_alloc_sysfs_attr: Creates the ctlreg and mbox entries.
+ * @vport: address of lpfc vport structure.
+ *
+ * Return codes:
+ * zero on success
+ * error return code from sysfs_create_bin_file()
+ **/
 int
 lpfc_alloc_sysfs_attr(struct lpfc_vport *vport)
 {
@@ -2075,18 +3291,30 @@
 	if (error)
 		goto out_remove_ctlreg_attr;
 
+	error = sysfs_create_bin_file(&shost->shost_dev.kobj,
+				      &sysfs_drvr_stat_data_attr);
+	if (error)
+		goto out_remove_mbox_attr;
+
 	return 0;
+out_remove_mbox_attr:
+	sysfs_remove_bin_file(&shost->shost_dev.kobj, &sysfs_mbox_attr);
 out_remove_ctlreg_attr:
 	sysfs_remove_bin_file(&shost->shost_dev.kobj, &sysfs_ctlreg_attr);
 out:
 	return error;
 }
 
+/**
+ * lpfc_free_sysfs_attr: Removes the ctlreg and mbox entries.
+ * @vport: address of lpfc vport structure.
+ **/
 void
 lpfc_free_sysfs_attr(struct lpfc_vport *vport)
 {
 	struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
-
+	sysfs_remove_bin_file(&shost->shost_dev.kobj,
+		&sysfs_drvr_stat_data_attr);
 	sysfs_remove_bin_file(&shost->shost_dev.kobj, &sysfs_mbox_attr);
 	sysfs_remove_bin_file(&shost->shost_dev.kobj, &sysfs_ctlreg_attr);
 }
@@ -2096,6 +3324,10 @@
  * Dynamic FC Host Attributes Support
  */
 
+/**
+ * lpfc_get_host_port_id: Copy the vport DID into the scsi host port id.
+ * @shost: kernel scsi host pointer.
+ **/
 static void
 lpfc_get_host_port_id(struct Scsi_Host *shost)
 {
@@ -2105,6 +3337,10 @@
 	fc_host_port_id(shost) = vport->fc_myDID;
 }
 
+/**
+ * lpfc_get_host_port_type: Set the value of the scsi host port type.
+ * @shost: kernel scsi host pointer.
+ **/
 static void
 lpfc_get_host_port_type(struct Scsi_Host *shost)
 {
@@ -2133,6 +3369,10 @@
 	spin_unlock_irq(shost->host_lock);
 }
 
+/**
+ * lpfc_get_host_port_state: Set the value of the scsi host port state.
+ * @shost: kernel scsi host pointer.
+ **/
 static void
 lpfc_get_host_port_state(struct Scsi_Host *shost)
 {
@@ -2167,6 +3407,10 @@
 	spin_unlock_irq(shost->host_lock);
 }
 
+/**
+ * lpfc_get_host_speed: Set the value of the scsi host speed.
+ * @shost: kernel scsi host pointer.
+ **/
 static void
 lpfc_get_host_speed(struct Scsi_Host *shost)
 {
@@ -2199,6 +3443,10 @@
 	spin_unlock_irq(shost->host_lock);
 }
 
+/**
+ * lpfc_get_host_fabric_name: Set the value of the scsi host fabric name.
+ * @shost: kernel scsi host pointer.
+ **/
 static void
 lpfc_get_host_fabric_name (struct Scsi_Host *shost)
 {
@@ -2221,6 +3469,18 @@
 	fc_host_fabric_name(shost) = node_name;
 }
 
+/**
+ * lpfc_get_stats: Return statistical information about the adapter.
+ * @shost: kernel scsi host pointer.
+ *
+ * Notes:
+ * NULL on error for link down, no mbox pool, sli2 active,
+ * management not allowed, memory allocation error, or mbox error.
+ *
+ * Returns:
+ * NULL for error
+ * address of the adapter host statistics
+ **/
 static struct fc_host_statistics *
 lpfc_get_stats(struct Scsi_Host *shost)
 {
@@ -2334,6 +3594,10 @@
 	return hs;
 }
 
+/**
+ * lpfc_reset_stats: Copy the adapter link stats information.
+ * @shost: kernel scsi host pointer.
+ **/
 static void
 lpfc_reset_stats(struct Scsi_Host *shost)
 {
@@ -2411,6 +3675,14 @@
  * are no sysfs handlers for link_down_tmo.
  */
 
+/**
+ * lpfc_get_node_by_target: Return the nodelist for a target.
+ * @starget: kernel scsi target pointer.
+ *
+ * Returns:
+ * address of the node list if found
+ * NULL target not found
+ **/
 static struct lpfc_nodelist *
 lpfc_get_node_by_target(struct scsi_target *starget)
 {
@@ -2432,6 +3704,10 @@
 	return NULL;
 }
 
+/**
+ * lpfc_get_starget_port_id: Set the target port id to the ndlp DID or -1.
+ * @starget: kernel scsi target pointer.
+ **/
 static void
 lpfc_get_starget_port_id(struct scsi_target *starget)
 {
@@ -2440,6 +3716,12 @@
 	fc_starget_port_id(starget) = ndlp ? ndlp->nlp_DID : -1;
 }
 
+/**
+ * lpfc_get_starget_node_name: Set the target node name.
+ * @starget: kernel scsi target pointer.
+ *
+ * Description: Set the target node name to the ndlp node name wwn or zero.
+ **/
 static void
 lpfc_get_starget_node_name(struct scsi_target *starget)
 {
@@ -2449,6 +3731,12 @@
 		ndlp ? wwn_to_u64(ndlp->nlp_nodename.u.wwn) : 0;
 }
 
+/**
+ * lpfc_get_starget_port_name: Set the target port name.
+ * @starget: kernel scsi target pointer.
+ *
+ * Description:  set the target port name to the ndlp port name wwn or zero.
+ **/
 static void
 lpfc_get_starget_port_name(struct scsi_target *starget)
 {
@@ -2458,6 +3746,15 @@
 		ndlp ? wwn_to_u64(ndlp->nlp_portname.u.wwn) : 0;
 }
 
+/**
+ * lpfc_set_rport_loss_tmo: Set the rport dev loss tmo.
+ * @rport: fc rport address.
+ * @timeout: new value for dev loss tmo.
+ *
+ * Description:
+ * If timeout is non zero set the dev_loss_tmo to timeout, else set
+ * dev_loss_tmo to one.
+ **/
 static void
 lpfc_set_rport_loss_tmo(struct fc_rport *rport, uint32_t timeout)
 {
@@ -2467,7 +3764,18 @@
 		rport->dev_loss_tmo = 1;
 }
 
-
+/**
+ * lpfc_rport_show_function: Return rport target information.
+ *
+ * Description:
+ * Macro that uses field to generate a function with the name lpfc_show_rport_
+ *
+ * lpfc_show_rport_##field: returns the bytes formatted in buf
+ * @cdev: class converted to an fc_rport.
+ * @buf: on return contains the target_field or zero.
+ *
+ * Returns: size of formatted string.
+ **/
 #define lpfc_rport_show_function(field, format_string, sz, cast)	\
 static ssize_t								\
 lpfc_show_rport_##field (struct device *dev,				\
@@ -2602,6 +3910,10 @@
 	.vport_disable = lpfc_vport_disable,
 };
 
+/**
+ * lpfc_get_cfgparam: Used during probe_one to init the adapter structure.
+ * @phba: lpfc_hba pointer.
+ **/
 void
 lpfc_get_cfgparam(struct lpfc_hba *phba)
 {
@@ -2637,6 +3949,10 @@
 	return;
 }
 
+/**
+ * lpfc_get_vport_cfgparam: Used during port create, init the vport structure.
+ * @vport: lpfc_vport pointer.
+ **/
 void
 lpfc_get_vport_cfgparam(struct lpfc_vport *vport)
 {
@@ -2648,6 +3964,7 @@
 	lpfc_restrict_login_init(vport, lpfc_restrict_login);
 	lpfc_fcp_class_init(vport, lpfc_fcp_class);
 	lpfc_use_adisc_init(vport, lpfc_use_adisc);
+	lpfc_max_scsicmpl_time_init(vport, lpfc_max_scsicmpl_time);
 	lpfc_fdmi_on_init(vport, lpfc_fdmi_on);
 	lpfc_discovery_threads_init(vport, lpfc_discovery_threads);
 	lpfc_max_luns_init(vport, lpfc_max_luns);
diff --git a/drivers/scsi/lpfc/lpfc_crtn.h b/drivers/scsi/lpfc/lpfc_crtn.h
index 1b82452..044ef40 100644
--- a/drivers/scsi/lpfc/lpfc_crtn.h
+++ b/drivers/scsi/lpfc/lpfc_crtn.h
@@ -18,7 +18,7 @@
  * included with this package.                                     *
  *******************************************************************/
 
-typedef int (*node_filter)(struct lpfc_nodelist *ndlp, void *param);
+typedef int (*node_filter)(struct lpfc_nodelist *, void *);
 
 struct fc_rport;
 void lpfc_dump_mem(struct lpfc_hba *, LPFC_MBOXQ_t *, uint16_t);
@@ -26,11 +26,11 @@
 void lpfc_config_async(struct lpfc_hba *, LPFC_MBOXQ_t *, uint32_t);
 
 void lpfc_heart_beat(struct lpfc_hba *, LPFC_MBOXQ_t *);
-int lpfc_read_la(struct lpfc_hba * phba, LPFC_MBOXQ_t * pmb,
-		 struct lpfc_dmabuf *mp);
+int lpfc_read_la(struct lpfc_hba *, LPFC_MBOXQ_t *, struct lpfc_dmabuf *);
 void lpfc_clear_la(struct lpfc_hba *, LPFC_MBOXQ_t *);
-void lpfc_issue_clear_la(struct lpfc_hba *phba, struct lpfc_vport *vport);
+void lpfc_issue_clear_la(struct lpfc_hba *, struct lpfc_vport *);
 void lpfc_config_link(struct lpfc_hba *, LPFC_MBOXQ_t *);
+int lpfc_config_msi(struct lpfc_hba *, LPFC_MBOXQ_t *);
 int lpfc_read_sparam(struct lpfc_hba *, LPFC_MBOXQ_t *, int);
 void lpfc_read_config(struct lpfc_hba *, LPFC_MBOXQ_t *);
 void lpfc_read_lnk_stat(struct lpfc_hba *, LPFC_MBOXQ_t *);
@@ -43,7 +43,7 @@
 void lpfc_init_link(struct lpfc_hba *, LPFC_MBOXQ_t *, uint32_t, uint32_t);
 
 struct lpfc_vport *lpfc_find_vport_by_did(struct lpfc_hba *, uint32_t);
-void lpfc_cleanup_rpis(struct lpfc_vport *vport, int remove);
+void lpfc_cleanup_rpis(struct lpfc_vport *, int);
 int lpfc_linkdown(struct lpfc_hba *);
 void lpfc_port_link_failure(struct lpfc_vport *);
 void lpfc_mbx_cmpl_read_la(struct lpfc_hba *, LPFC_MBOXQ_t *);
@@ -135,7 +135,7 @@
 int lpfc_ns_cmd(struct lpfc_vport *, int, uint8_t, uint32_t);
 int lpfc_fdmi_cmd(struct lpfc_vport *, struct lpfc_nodelist *, int);
 void lpfc_fdmi_tmo(unsigned long);
-void lpfc_fdmi_timeout_handler(struct lpfc_vport *vport);
+void lpfc_fdmi_timeout_handler(struct lpfc_vport *);
 
 int lpfc_config_port_prep(struct lpfc_hba *);
 int lpfc_config_port_post(struct lpfc_hba *);
@@ -155,6 +155,8 @@
 void lpfc_handle_eratt(struct lpfc_hba *);
 void lpfc_handle_latt(struct lpfc_hba *);
 irqreturn_t lpfc_intr_handler(int, void *);
+irqreturn_t lpfc_sp_intr_handler(int, void *);
+irqreturn_t lpfc_fp_intr_handler(int, void *);
 
 void lpfc_read_rev(struct lpfc_hba *, LPFC_MBOXQ_t *);
 void lpfc_config_ring(struct lpfc_hba *, int, LPFC_MBOXQ_t *);
@@ -175,11 +177,12 @@
 void lpfc_stop_vport_timers(struct lpfc_vport *);
 
 void lpfc_poll_timeout(unsigned long ptr);
-void lpfc_poll_start_timer(struct lpfc_hba * phba);
-void lpfc_sli_poll_fcp_ring(struct lpfc_hba * hba);
+void lpfc_poll_start_timer(struct lpfc_hba *);
+void lpfc_poll_eratt(unsigned long);
+void lpfc_sli_poll_fcp_ring(struct lpfc_hba *);
 struct lpfc_iocbq * lpfc_sli_get_iocbq(struct lpfc_hba *);
-void lpfc_sli_release_iocbq(struct lpfc_hba * phba, struct lpfc_iocbq * iocb);
-uint16_t lpfc_sli_next_iotag(struct lpfc_hba * phba, struct lpfc_iocbq * iocb);
+void lpfc_sli_release_iocbq(struct lpfc_hba *, struct lpfc_iocbq *);
+uint16_t lpfc_sli_next_iotag(struct lpfc_hba *, struct lpfc_iocbq *);
 
 void lpfc_reset_barrier(struct lpfc_hba * phba);
 int lpfc_sli_brdready(struct lpfc_hba *, uint32_t);
@@ -187,11 +190,13 @@
 int lpfc_sli_brdreset(struct lpfc_hba *);
 int lpfc_sli_brdrestart(struct lpfc_hba *);
 int lpfc_sli_hba_setup(struct lpfc_hba *);
+int lpfc_sli_config_port(struct lpfc_hba *, int);
 int lpfc_sli_host_down(struct lpfc_vport *);
 int lpfc_sli_hba_down(struct lpfc_hba *);
 int lpfc_sli_issue_mbox(struct lpfc_hba *, LPFC_MBOXQ_t *, uint32_t);
 int lpfc_sli_handle_mb_event(struct lpfc_hba *);
 int lpfc_sli_flush_mbox_queue(struct lpfc_hba *);
+int lpfc_sli_check_eratt(struct lpfc_hba *);
 int lpfc_sli_handle_slow_ring_event(struct lpfc_hba *,
 				    struct lpfc_sli_ring *, uint32_t);
 void lpfc_sli_def_mbox_cmpl(struct lpfc_hba *, LPFC_MBOXQ_t *);
@@ -199,6 +204,7 @@
 			struct lpfc_iocbq *, uint32_t);
 void lpfc_sli_pcimem_bcopy(void *, void *, uint32_t);
 void lpfc_sli_abort_iocb_ring(struct lpfc_hba *, struct lpfc_sli_ring *);
+void lpfc_sli_flush_fcp_rings(struct lpfc_hba *);
 int lpfc_sli_ringpostbuf_put(struct lpfc_hba *, struct lpfc_sli_ring *,
 			     struct lpfc_dmabuf *);
 struct lpfc_dmabuf *lpfc_sli_ringpostbuf_get(struct lpfc_hba *,
@@ -226,17 +232,13 @@
 struct lpfc_nodelist *lpfc_findnode_wwpn(struct lpfc_vport *,
 					 struct lpfc_name *);
 
-int lpfc_sli_issue_mbox_wait(struct lpfc_hba * phba, LPFC_MBOXQ_t * pmboxq,
-			     uint32_t timeout);
+int lpfc_sli_issue_mbox_wait(struct lpfc_hba *, LPFC_MBOXQ_t *, uint32_t);
 
-int lpfc_sli_issue_iocb_wait(struct lpfc_hba * phba,
-			     struct lpfc_sli_ring * pring,
-			     struct lpfc_iocbq * piocb,
-			     struct lpfc_iocbq * prspiocbq,
-			     uint32_t timeout);
-void lpfc_sli_abort_fcp_cmpl(struct lpfc_hba * phba,
-			     struct lpfc_iocbq * cmdiocb,
-			     struct lpfc_iocbq * rspiocb);
+int lpfc_sli_issue_iocb_wait(struct lpfc_hba *, struct lpfc_sli_ring *,
+			     struct lpfc_iocbq *, struct lpfc_iocbq *,
+			     uint32_t);
+void lpfc_sli_abort_fcp_cmpl(struct lpfc_hba *, struct lpfc_iocbq *,
+			     struct lpfc_iocbq *);
 
 void lpfc_sli_free_hbq(struct lpfc_hba *, struct hbq_dmabuf *);
 
@@ -269,7 +271,7 @@
 
 struct lpfc_vport *lpfc_create_port(struct lpfc_hba *, int, struct device *);
 int  lpfc_vport_disable(struct fc_vport *fc_vport, bool disable);
-void lpfc_mbx_unreg_vpi(struct lpfc_vport *);
+int lpfc_mbx_unreg_vpi(struct lpfc_vport *);
 void destroy_port(struct lpfc_vport *);
 int lpfc_get_instance(void);
 void lpfc_host_attrib_init(struct Scsi_Host *);
@@ -290,6 +292,13 @@
 void lpfc_adjust_queue_depth(struct lpfc_hba *);
 void lpfc_ramp_down_queue_handler(struct lpfc_hba *);
 void lpfc_ramp_up_queue_handler(struct lpfc_hba *);
+void lpfc_scsi_dev_block(struct lpfc_hba *);
+
+void
+lpfc_send_els_failure_event(struct lpfc_hba *, struct lpfc_iocbq *,
+				struct lpfc_iocbq *);
+struct lpfc_fast_path_event *lpfc_alloc_fast_evt(struct lpfc_hba *);
+void lpfc_free_fast_evt(struct lpfc_hba *, struct lpfc_fast_path_event *);
 
 #define ScsiResult(host_code, scsi_code) (((host_code) << 16) | scsi_code)
 #define HBA_EVENT_RSCN                   5
diff --git a/drivers/scsi/lpfc/lpfc_ct.c b/drivers/scsi/lpfc/lpfc_ct.c
index 7fc74cf..26dae8b 100644
--- a/drivers/scsi/lpfc/lpfc_ct.c
+++ b/drivers/scsi/lpfc/lpfc_ct.c
@@ -34,6 +34,7 @@
 
 #include "lpfc_hw.h"
 #include "lpfc_sli.h"
+#include "lpfc_nl.h"
 #include "lpfc_disc.h"
 #include "lpfc_scsi.h"
 #include "lpfc.h"
@@ -134,25 +135,24 @@
 		}
 		list_del(&head);
 	} else {
-		struct lpfc_iocbq  *next;
-
-		list_for_each_entry_safe(iocbq, next, &piocbq->list, list) {
+		INIT_LIST_HEAD(&head);
+		list_add_tail(&head, &piocbq->list);
+		list_for_each_entry(iocbq, &head, list) {
 			icmd = &iocbq->iocb;
 			if (icmd->ulpBdeCount == 0)
-				lpfc_ct_unsol_buffer(phba, piocbq, NULL, 0);
+				lpfc_ct_unsol_buffer(phba, iocbq, NULL, 0);
 			for (i = 0; i < icmd->ulpBdeCount; i++) {
 				paddr = getPaddr(icmd->un.cont64[i].addrHigh,
 						 icmd->un.cont64[i].addrLow);
 				mp = lpfc_sli_ringpostbuf_get(phba, pring,
 							      paddr);
 				size = icmd->un.cont64[i].tus.f.bdeSize;
-				lpfc_ct_unsol_buffer(phba, piocbq, mp, size);
+				lpfc_ct_unsol_buffer(phba, iocbq, mp, size);
 				lpfc_in_buf_free(phba, mp);
 			}
-			list_del(&iocbq->list);
-			lpfc_sli_release_iocbq(phba, iocbq);
 			lpfc_post_buffer(phba, pring, i);
 		}
+		list_del(&head);
 	}
 }
 
@@ -212,7 +212,7 @@
 		else
 			list_add_tail(&mp->list, &mlist->list);
 
-		bpl->tus.f.bdeFlags = BUFF_USE_RCV;
+		bpl->tus.f.bdeFlags = BUFF_TYPE_BDE_64I;
 		/* build buffer ptr list for IOCB */
 		bpl->addrLow = le32_to_cpu(putPaddrLow(mp->phys) );
 		bpl->addrHigh = le32_to_cpu(putPaddrHigh(mp->phys) );
@@ -283,7 +283,7 @@
 	icmd->un.genreq64.bdl.ulpIoTag32 = 0;
 	icmd->un.genreq64.bdl.addrHigh = putPaddrHigh(bmp->phys);
 	icmd->un.genreq64.bdl.addrLow = putPaddrLow(bmp->phys);
-	icmd->un.genreq64.bdl.bdeFlags = BUFF_TYPE_BDL;
+	icmd->un.genreq64.bdl.bdeFlags = BUFF_TYPE_BLP_64;
 	icmd->un.genreq64.bdl.bdeSize = (num_entry * sizeof (struct ulp_bde64));
 
 	if (usr_flg)
@@ -861,7 +861,7 @@
 
 		retry++;
 		lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY,
-				 "0216 Retrying NS cmd %x\n", cmdcode);
+				 "0250 Retrying NS cmd %x\n", cmdcode);
 		rc = lpfc_ns_cmd(vport, cmdcode, retry, 0);
 		if (rc == 0)
 			goto out;
diff --git a/drivers/scsi/lpfc/lpfc_debugfs.c b/drivers/scsi/lpfc/lpfc_debugfs.c
index 094b47e..771920b 100644
--- a/drivers/scsi/lpfc/lpfc_debugfs.c
+++ b/drivers/scsi/lpfc/lpfc_debugfs.c
@@ -1,7 +1,7 @@
 /*******************************************************************
  * This file is part of the Emulex Linux Device Driver for         *
  * Fibre Channel Host Bus Adapters.                                *
- * Copyright (C) 2007 Emulex.  All rights reserved.                *
+ * Copyright (C) 2007-2008 Emulex.  All rights reserved.           *
  * EMULEX and SLI are trademarks of Emulex.                        *
  * www.emulex.com                                                  *
  *                                                                 *
@@ -35,6 +35,7 @@
 
 #include "lpfc_hw.h"
 #include "lpfc_sli.h"
+#include "lpfc_nl.h"
 #include "lpfc_disc.h"
 #include "lpfc_scsi.h"
 #include "lpfc.h"
@@ -46,13 +47,14 @@
 #include "lpfc_debugfs.h"
 
 #ifdef CONFIG_LPFC_DEBUG_FS
-/* debugfs interface
+/**
+ * debugfs interface
  *
  * To access this interface the user should:
  * # mkdir /debug
  * # mount -t debugfs none /debug
  *
- * The lpfc debugfs directory hierachy is:
+ * The lpfc debugfs directory hierarchy is:
  * lpfc/lpfcX/vportY
  * where X is the lpfc hba unique_id
  * where Y is the vport VPI on that hba
@@ -61,14 +63,21 @@
  * discovery_trace
  * This is an ACSII readable file that contains a trace of the last
  * lpfc_debugfs_max_disc_trc events that happened on a specific vport.
- * See lpfc_debugfs.h for different categories of
- * discovery events. To enable the discovery trace, the following
- * module parameters must be set:
+ * See lpfc_debugfs.h for different categories of  discovery events.
+ * To enable the discovery trace, the following module parameters must be set:
  * lpfc_debugfs_enable=1         Turns on lpfc debugfs filesystem support
  * lpfc_debugfs_max_disc_trc=X   Where X is the event trace depth for
  *                               EACH vport. X MUST also be a power of 2.
  * lpfc_debugfs_mask_disc_trc=Y  Where Y is an event mask as defined in
  *                               lpfc_debugfs.h .
+ *
+ * slow_ring_trace
+ * This is an ACSII readable file that contains a trace of the last
+ * lpfc_debugfs_max_slow_ring_trc events that happened on a specific HBA.
+ * To enable the slow ring trace, the following module parameters must be set:
+ * lpfc_debugfs_enable=1         Turns on lpfc debugfs filesystem support
+ * lpfc_debugfs_max_slow_ring_trc=X   Where X is the event trace depth for
+ *                               the HBA. X MUST also be a power of 2.
  */
 static int lpfc_debugfs_enable = 1;
 module_param(lpfc_debugfs_enable, int, 0);
@@ -117,6 +126,25 @@
 static atomic_t lpfc_debugfs_seq_trc_cnt = ATOMIC_INIT(0);
 static unsigned long lpfc_debugfs_start_time = 0L;
 
+/**
+ * lpfc_debugfs_disc_trc_data - Dump discovery logging to a buffer.
+ * @vport: The vport to gather the log info from.
+ * @buf: The buffer to dump log into.
+ * @size: The maximum amount of data to process.
+ *
+ * Description:
+ * This routine gathers the lpfc discovery debugfs data from the @vport and
+ * dumps it to @buf up to @size number of bytes. It will start at the next entry
+ * in the log and process the log until the end of the buffer. Then it will
+ * gather from the beginning of the log and process until the current entry.
+ *
+ * Notes:
+ * Discovery logging will be disabled while while this routine dumps the log.
+ *
+ * Return Value:
+ * This routine returns the amount of bytes that were dumped into @buf and will
+ * not exceed @size.
+ **/
 static int
 lpfc_debugfs_disc_trc_data(struct lpfc_vport *vport, char *buf, int size)
 {
@@ -125,7 +153,6 @@
 	struct lpfc_debugfs_trc *dtp;
 	char buffer[LPFC_DEBUG_TRC_ENTRY_SIZE];
 
-
 	enable = lpfc_debugfs_enable;
 	lpfc_debugfs_enable = 0;
 
@@ -159,6 +186,25 @@
 	return len;
 }
 
+/**
+ * lpfc_debugfs_slow_ring_trc_data - Dump slow ring logging to a buffer.
+ * @phba: The HBA to gather the log info from.
+ * @buf: The buffer to dump log into.
+ * @size: The maximum amount of data to process.
+ *
+ * Description:
+ * This routine gathers the lpfc slow ring debugfs data from the @phba and
+ * dumps it to @buf up to @size number of bytes. It will start at the next entry
+ * in the log and process the log until the end of the buffer. Then it will
+ * gather from the beginning of the log and process until the current entry.
+ *
+ * Notes:
+ * Slow ring logging will be disabled while while this routine dumps the log.
+ *
+ * Return Value:
+ * This routine returns the amount of bytes that were dumped into @buf and will
+ * not exceed @size.
+ **/
 static int
 lpfc_debugfs_slow_ring_trc_data(struct lpfc_hba *phba, char *buf, int size)
 {
@@ -203,6 +249,25 @@
 
 static int lpfc_debugfs_last_hbq = -1;
 
+/**
+ * lpfc_debugfs_hbqinfo_data - Dump host buffer queue info to a buffer.
+ * @phba: The HBA to gather host buffer info from.
+ * @buf: The buffer to dump log into.
+ * @size: The maximum amount of data to process.
+ *
+ * Description:
+ * This routine dumps the host buffer queue info from the @phba to @buf up to
+ * @size number of bytes. A header that describes the current hbq state will be
+ * dumped to @buf first and then info on each hbq entry will be dumped to @buf
+ * until @size bytes have been dumped or all the hbq info has been dumped.
+ *
+ * Notes:
+ * This routine will rotate through each configured HBQ each time called.
+ *
+ * Return Value:
+ * This routine returns the amount of bytes that were dumped into @buf and will
+ * not exceed @size.
+ **/
 static int
 lpfc_debugfs_hbqinfo_data(struct lpfc_hba *phba, char *buf, int size)
 {
@@ -303,6 +368,24 @@
 
 static int lpfc_debugfs_last_hba_slim_off;
 
+/**
+ * lpfc_debugfs_dumpHBASlim_data - Dump HBA SLIM info to a buffer.
+ * @phba: The HBA to gather SLIM info from.
+ * @buf: The buffer to dump log into.
+ * @size: The maximum amount of data to process.
+ *
+ * Description:
+ * This routine dumps the current contents of HBA SLIM for the HBA associated
+ * with @phba to @buf up to @size bytes of data. This is the raw HBA SLIM data.
+ *
+ * Notes:
+ * This routine will only dump up to 1024 bytes of data each time called and
+ * should be called multiple times to dump the entire HBA SLIM.
+ *
+ * Return Value:
+ * This routine returns the amount of bytes that were dumped into @buf and will
+ * not exceed @size.
+ **/
 static int
 lpfc_debugfs_dumpHBASlim_data(struct lpfc_hba *phba, char *buf, int size)
 {
@@ -342,6 +425,21 @@
 	return len;
 }
 
+/**
+ * lpfc_debugfs_dumpHostSlim_data - Dump host SLIM info to a buffer.
+ * @phba: The HBA to gather Host SLIM info from.
+ * @buf: The buffer to dump log into.
+ * @size: The maximum amount of data to process.
+ *
+ * Description:
+ * This routine dumps the current contents of host SLIM for the host associated
+ * with @phba to @buf up to @size bytes of data. The dump will contain the
+ * Mailbox, PCB, Rings, and Registers that are located in host memory.
+ *
+ * Return Value:
+ * This routine returns the amount of bytes that were dumped into @buf and will
+ * not exceed @size.
+ **/
 static int
 lpfc_debugfs_dumpHostSlim_data(struct lpfc_hba *phba, char *buf, int size)
 {
@@ -357,7 +455,7 @@
 	spin_lock_irq(&phba->hbalock);
 
 	len +=  snprintf(buf+len, size-len, "SLIM Mailbox\n");
-	ptr = (uint32_t *)phba->slim2p;
+	ptr = (uint32_t *)phba->slim2p.virt;
 	i = sizeof(MAILBOX_t);
 	while (i > 0) {
 		len +=  snprintf(buf+len, size-len,
@@ -370,7 +468,7 @@
 	}
 
 	len +=  snprintf(buf+len, size-len, "SLIM PCB\n");
-	ptr = (uint32_t *)&phba->slim2p->pcb;
+	ptr = (uint32_t *)phba->pcb;
 	i = sizeof(PCB_t);
 	while (i > 0) {
 		len +=  snprintf(buf+len, size-len,
@@ -382,44 +480,16 @@
 		off += (8 * sizeof(uint32_t));
 	}
 
-	pgpp = (struct lpfc_pgp *)&phba->slim2p->mbx.us.s3_pgp.port;
-	pring = &psli->ring[0];
-	len +=  snprintf(buf+len, size-len,
-		"Ring 0: CMD GetInx:%d (Max:%d Next:%d Local:%d flg:x%x)  "
-		"RSP PutInx:%d Max:%d\n",
-		pgpp->cmdGetInx, pring->numCiocb,
-		pring->next_cmdidx, pring->local_getidx, pring->flag,
-		pgpp->rspPutInx, pring->numRiocb);
-	pgpp++;
-
-	pring = &psli->ring[1];
-	len +=  snprintf(buf+len, size-len,
-		"Ring 1: CMD GetInx:%d (Max:%d Next:%d Local:%d flg:x%x)  "
-		"RSP PutInx:%d Max:%d\n",
-		pgpp->cmdGetInx, pring->numCiocb,
-		pring->next_cmdidx, pring->local_getidx, pring->flag,
-		pgpp->rspPutInx, pring->numRiocb);
-	pgpp++;
-
-	pring = &psli->ring[2];
-	len +=  snprintf(buf+len, size-len,
-		"Ring 2: CMD GetInx:%d (Max:%d Next:%d Local:%d flg:x%x)  "
-		"RSP PutInx:%d Max:%d\n",
-		pgpp->cmdGetInx, pring->numCiocb,
-		pring->next_cmdidx, pring->local_getidx, pring->flag,
-		pgpp->rspPutInx, pring->numRiocb);
-	pgpp++;
-
-	pring = &psli->ring[3];
-	len +=  snprintf(buf+len, size-len,
-		"Ring 3: CMD GetInx:%d (Max:%d Next:%d Local:%d flg:x%x)  "
-		"RSP PutInx:%d Max:%d\n",
-		pgpp->cmdGetInx, pring->numCiocb,
-		pring->next_cmdidx, pring->local_getidx, pring->flag,
-		pgpp->rspPutInx, pring->numRiocb);
-
-
-	ptr = (uint32_t *)&phba->slim2p->mbx.us.s3_pgp.hbq_get;
+	for (i = 0; i < 4; i++) {
+		pgpp = &phba->port_gp[i];
+		pring = &psli->ring[i];
+		len +=  snprintf(buf+len, size-len,
+				 "Ring %d: CMD GetInx:%d (Max:%d Next:%d "
+				 "Local:%d flg:x%x)  RSP PutInx:%d Max:%d\n",
+				 i, pgpp->cmdGetInx, pring->numCiocb,
+				 pring->next_cmdidx, pring->local_getidx,
+				 pring->flag, pgpp->rspPutInx, pring->numRiocb);
+	}
 	word0 = readl(phba->HAregaddr);
 	word1 = readl(phba->CAregaddr);
 	word2 = readl(phba->HSregaddr);
@@ -430,6 +500,21 @@
 	return len;
 }
 
+/**
+ * lpfc_debugfs_nodelist_data - Dump target node list to a buffer.
+ * @vport: The vport to gather target node info from.
+ * @buf: The buffer to dump log into.
+ * @size: The maximum amount of data to process.
+ *
+ * Description:
+ * This routine dumps the current target node list associated with @vport to
+ * @buf up to @size bytes of data. Each node entry in the dump will contain a
+ * node state, DID, WWPN, WWNN, RPI, flags, type, and other useful fields.
+ *
+ * Return Value:
+ * This routine returns the amount of bytes that were dumped into @buf and will
+ * not exceed @size.
+ **/
 static int
 lpfc_debugfs_nodelist_data(struct lpfc_vport *vport, char *buf, int size)
 {
@@ -513,7 +598,22 @@
 }
 #endif
 
-
+/**
+ * lpfc_debugfs_disc_trc - Store discovery trace log.
+ * @vport: The vport to associate this trace string with for retrieval.
+ * @mask: Log entry classification.
+ * @fmt: Format string to be displayed when dumping the log.
+ * @data1: 1st data parameter to be applied to @fmt.
+ * @data2: 2nd data parameter to be applied to @fmt.
+ * @data3: 3rd data parameter to be applied to @fmt.
+ *
+ * Description:
+ * This routine is used by the driver code to add a debugfs log entry to the
+ * discovery trace buffer associated with @vport. Only entries with a @mask that
+ * match the current debugfs discovery mask will be saved. Entries that do not
+ * match will be thrown away. @fmt, @data1, @data2, and @data3 are used like
+ * printf when displaying the log.
+ **/
 inline void
 lpfc_debugfs_disc_trc(struct lpfc_vport *vport, int mask, char *fmt,
 	uint32_t data1, uint32_t data2, uint32_t data3)
@@ -542,6 +642,19 @@
 	return;
 }
 
+/**
+ * lpfc_debugfs_slow_ring_trc - Store slow ring trace log.
+ * @phba: The phba to associate this trace string with for retrieval.
+ * @fmt: Format string to be displayed when dumping the log.
+ * @data1: 1st data parameter to be applied to @fmt.
+ * @data2: 2nd data parameter to be applied to @fmt.
+ * @data3: 3rd data parameter to be applied to @fmt.
+ *
+ * Description:
+ * This routine is used by the driver code to add a debugfs log entry to the
+ * discovery trace buffer associated with @vport. @fmt, @data1, @data2, and
+ * @data3 are used like printf when displaying the log.
+ **/
 inline void
 lpfc_debugfs_slow_ring_trc(struct lpfc_hba *phba, char *fmt,
 	uint32_t data1, uint32_t data2, uint32_t data3)
@@ -568,6 +681,21 @@
 }
 
 #ifdef CONFIG_LPFC_DEBUG_FS
+/**
+ * lpfc_debugfs_disc_trc_open - Open the discovery trace log.
+ * @inode: The inode pointer that contains a vport pointer.
+ * @file: The file pointer to attach the log output.
+ *
+ * Description:
+ * This routine is the entry point for the debugfs open file operation. It gets
+ * the vport from the i_private field in @inode, allocates the necessary buffer
+ * for the log, fills the buffer from the in-memory log for this vport, and then
+ * returns a pointer to that log in the private_data field in @file.
+ *
+ * Returns:
+ * This function returns zero if successful. On error it will return an negative
+ * error value.
+ **/
 static int
 lpfc_debugfs_disc_trc_open(struct inode *inode, struct file *file)
 {
@@ -585,7 +713,7 @@
 	if (!debug)
 		goto out;
 
-	/* Round to page boundry */
+	/* Round to page boundary */
 	size =  (lpfc_debugfs_max_disc_trc * LPFC_DEBUG_TRC_ENTRY_SIZE);
 	size = PAGE_ALIGN(size);
 
@@ -603,6 +731,21 @@
 	return rc;
 }
 
+/**
+ * lpfc_debugfs_slow_ring_trc_open - Open the Slow Ring trace log.
+ * @inode: The inode pointer that contains a vport pointer.
+ * @file: The file pointer to attach the log output.
+ *
+ * Description:
+ * This routine is the entry point for the debugfs open file operation. It gets
+ * the vport from the i_private field in @inode, allocates the necessary buffer
+ * for the log, fills the buffer from the in-memory log for this vport, and then
+ * returns a pointer to that log in the private_data field in @file.
+ *
+ * Returns:
+ * This function returns zero if successful. On error it will return an negative
+ * error value.
+ **/
 static int
 lpfc_debugfs_slow_ring_trc_open(struct inode *inode, struct file *file)
 {
@@ -620,7 +763,7 @@
 	if (!debug)
 		goto out;
 
-	/* Round to page boundry */
+	/* Round to page boundary */
 	size =  (lpfc_debugfs_max_slow_ring_trc * LPFC_DEBUG_TRC_ENTRY_SIZE);
 	size = PAGE_ALIGN(size);
 
@@ -638,6 +781,21 @@
 	return rc;
 }
 
+/**
+ * lpfc_debugfs_hbqinfo_open - Open the hbqinfo debugfs buffer.
+ * @inode: The inode pointer that contains a vport pointer.
+ * @file: The file pointer to attach the log output.
+ *
+ * Description:
+ * This routine is the entry point for the debugfs open file operation. It gets
+ * the vport from the i_private field in @inode, allocates the necessary buffer
+ * for the log, fills the buffer from the in-memory log for this vport, and then
+ * returns a pointer to that log in the private_data field in @file.
+ *
+ * Returns:
+ * This function returns zero if successful. On error it will return an negative
+ * error value.
+ **/
 static int
 lpfc_debugfs_hbqinfo_open(struct inode *inode, struct file *file)
 {
@@ -649,7 +807,7 @@
 	if (!debug)
 		goto out;
 
-	/* Round to page boundry */
+	/* Round to page boundary */
 	debug->buffer = kmalloc(LPFC_HBQINFO_SIZE, GFP_KERNEL);
 	if (!debug->buffer) {
 		kfree(debug);
@@ -665,6 +823,21 @@
 	return rc;
 }
 
+/**
+ * lpfc_debugfs_dumpHBASlim_open - Open the Dump HBA SLIM debugfs buffer.
+ * @inode: The inode pointer that contains a vport pointer.
+ * @file: The file pointer to attach the log output.
+ *
+ * Description:
+ * This routine is the entry point for the debugfs open file operation. It gets
+ * the vport from the i_private field in @inode, allocates the necessary buffer
+ * for the log, fills the buffer from the in-memory log for this vport, and then
+ * returns a pointer to that log in the private_data field in @file.
+ *
+ * Returns:
+ * This function returns zero if successful. On error it will return an negative
+ * error value.
+ **/
 static int
 lpfc_debugfs_dumpHBASlim_open(struct inode *inode, struct file *file)
 {
@@ -676,7 +849,7 @@
 	if (!debug)
 		goto out;
 
-	/* Round to page boundry */
+	/* Round to page boundary */
 	debug->buffer = kmalloc(LPFC_DUMPHBASLIM_SIZE, GFP_KERNEL);
 	if (!debug->buffer) {
 		kfree(debug);
@@ -692,6 +865,21 @@
 	return rc;
 }
 
+/**
+ * lpfc_debugfs_dumpHostSlim_open - Open the Dump Host SLIM debugfs buffer.
+ * @inode: The inode pointer that contains a vport pointer.
+ * @file: The file pointer to attach the log output.
+ *
+ * Description:
+ * This routine is the entry point for the debugfs open file operation. It gets
+ * the vport from the i_private field in @inode, allocates the necessary buffer
+ * for the log, fills the buffer from the in-memory log for this vport, and then
+ * returns a pointer to that log in the private_data field in @file.
+ *
+ * Returns:
+ * This function returns zero if successful. On error it will return an negative
+ * error value.
+ **/
 static int
 lpfc_debugfs_dumpHostSlim_open(struct inode *inode, struct file *file)
 {
@@ -703,7 +891,7 @@
 	if (!debug)
 		goto out;
 
-	/* Round to page boundry */
+	/* Round to page boundary */
 	debug->buffer = kmalloc(LPFC_DUMPHOSTSLIM_SIZE, GFP_KERNEL);
 	if (!debug->buffer) {
 		kfree(debug);
@@ -719,6 +907,21 @@
 	return rc;
 }
 
+/**
+ * lpfc_debugfs_nodelist_open - Open the nodelist debugfs file.
+ * @inode: The inode pointer that contains a vport pointer.
+ * @file: The file pointer to attach the log output.
+ *
+ * Description:
+ * This routine is the entry point for the debugfs open file operation. It gets
+ * the vport from the i_private field in @inode, allocates the necessary buffer
+ * for the log, fills the buffer from the in-memory log for this vport, and then
+ * returns a pointer to that log in the private_data field in @file.
+ *
+ * Returns:
+ * This function returns zero if successful. On error it will return an negative
+ * error value.
+ **/
 static int
 lpfc_debugfs_nodelist_open(struct inode *inode, struct file *file)
 {
@@ -730,7 +933,7 @@
 	if (!debug)
 		goto out;
 
-	/* Round to page boundry */
+	/* Round to page boundary */
 	debug->buffer = kmalloc(LPFC_NODELIST_SIZE, GFP_KERNEL);
 	if (!debug->buffer) {
 		kfree(debug);
@@ -746,6 +949,23 @@
 	return rc;
 }
 
+/**
+ * lpfc_debugfs_lseek - Seek through a debugfs file.
+ * @file: The file pointer to seek through.
+ * @off: The offset to seek to or the amount to seek by.
+ * @whence: Indicates how to seek.
+ *
+ * Description:
+ * This routine is the entry point for the debugfs lseek file operation. The
+ * @whence parameter indicates whether @off is the offset to directly seek to,
+ * or if it is a value to seek forward or reverse by. This function figures out
+ * what the new offset of the debugfs file will be and assigns that value to the
+ * f_pos field of @file.
+ *
+ * Returns:
+ * This function returns the new offset if successful and returns a negative
+ * error if unable to process the seek.
+ **/
 static loff_t
 lpfc_debugfs_lseek(struct file *file, loff_t off, int whence)
 {
@@ -767,6 +987,22 @@
 	return (pos < 0 || pos > debug->len) ? -EINVAL : (file->f_pos = pos);
 }
 
+/**
+ * lpfc_debugfs_read - Read a debugfs file.
+ * @file: The file pointer to read from.
+ * @buf: The buffer to copy the data to.
+ * @nbytes: The number of bytes to read.
+ * @ppos: The position in the file to start reading from.
+ *
+ * Description:
+ * This routine reads data from from the buffer indicated in the private_data
+ * field of @file. It will start reading at @ppos and copy up to @nbytes of
+ * data to @buf.
+ *
+ * Returns:
+ * This function returns the amount of data that was read (this could be less
+ * than @nbytes if the end of the file was reached) or a negative error value.
+ **/
 static ssize_t
 lpfc_debugfs_read(struct file *file, char __user *buf,
 		  size_t nbytes, loff_t *ppos)
@@ -776,6 +1012,18 @@
 				       debug->len);
 }
 
+/**
+ * lpfc_debugfs_release - Release the buffer used to store debugfs file data.
+ * @inode: The inode pointer that contains a vport pointer. (unused)
+ * @file: The file pointer that contains the buffer to release.
+ *
+ * Description:
+ * This routine frees the buffer that was allocated when the debugfs file was
+ * opened.
+ *
+ * Returns:
+ * This function returns zero.
+ **/
 static int
 lpfc_debugfs_release(struct inode *inode, struct file *file)
 {
@@ -845,6 +1093,16 @@
 static atomic_t lpfc_debugfs_hba_count;
 #endif
 
+/**
+ * lpfc_debugfs_initialize - Initialize debugfs for a vport.
+ * @vport: The vport pointer to initialize.
+ *
+ * Description:
+ * When Debugfs is configured this routine sets up the lpfc debugfs file system.
+ * If not already created, this routine will create the lpfc directory, and
+ * lpfcX directory (for this HBA), and vportX directory for this vport. It will
+ * also create each file used to access lpfc specific debugfs information.
+ **/
 inline void
 lpfc_debugfs_initialize(struct lpfc_vport *vport)
 {
@@ -862,7 +1120,7 @@
 		atomic_set(&lpfc_debugfs_hba_count, 0);
 		if (!lpfc_debugfs_root) {
 			lpfc_printf_vlog(vport, KERN_ERR, LOG_INIT,
-					 "0409 Cannot create debugfs root\n");
+					 "0408 Cannot create debugfs root\n");
 			goto debug_failed;
 		}
 	}
@@ -876,7 +1134,7 @@
 			debugfs_create_dir(name, lpfc_debugfs_root);
 		if (!phba->hba_debugfs_root) {
 			lpfc_printf_vlog(vport, KERN_ERR, LOG_INIT,
-					 "0409 Cannot create debugfs hba\n");
+					 "0412 Cannot create debugfs hba\n");
 			goto debug_failed;
 		}
 		atomic_inc(&lpfc_debugfs_hba_count);
@@ -890,7 +1148,7 @@
 				 phba, &lpfc_debugfs_op_hbqinfo);
 		if (!phba->debug_hbqinfo) {
 			lpfc_printf_vlog(vport, KERN_ERR, LOG_INIT,
-				"0409 Cannot create debugfs hbqinfo\n");
+				"0411 Cannot create debugfs hbqinfo\n");
 			goto debug_failed;
 		}
 
@@ -902,7 +1160,7 @@
 				 phba, &lpfc_debugfs_op_dumpHBASlim);
 		if (!phba->debug_dumpHBASlim) {
 			lpfc_printf_vlog(vport, KERN_ERR, LOG_INIT,
-				"0409 Cannot create debugfs dumpHBASlim\n");
+				"0413 Cannot create debugfs dumpHBASlim\n");
 			goto debug_failed;
 		}
 
@@ -914,7 +1172,7 @@
 				 phba, &lpfc_debugfs_op_dumpHostSlim);
 		if (!phba->debug_dumpHostSlim) {
 			lpfc_printf_vlog(vport, KERN_ERR, LOG_INIT,
-				"0409 Cannot create debugfs dumpHostSlim\n");
+				"0414 Cannot create debugfs dumpHostSlim\n");
 			goto debug_failed;
 		}
 
@@ -944,7 +1202,7 @@
 				 phba, &lpfc_debugfs_op_slow_ring_trc);
 		if (!phba->debug_slow_ring_trc) {
 			lpfc_printf_vlog(vport, KERN_ERR, LOG_INIT,
-					 "0409 Cannot create debugfs "
+					 "0415 Cannot create debugfs "
 					 "slow_ring_trace\n");
 			goto debug_failed;
 		}
@@ -955,7 +1213,7 @@
 				GFP_KERNEL);
 			if (!phba->slow_ring_trc) {
 				lpfc_printf_vlog(vport, KERN_ERR, LOG_INIT,
-						 "0409 Cannot create debugfs "
+						 "0416 Cannot create debugfs "
 						 "slow_ring buffer\n");
 				goto debug_failed;
 			}
@@ -972,7 +1230,7 @@
 			debugfs_create_dir(name, phba->hba_debugfs_root);
 		if (!vport->vport_debugfs_root) {
 			lpfc_printf_vlog(vport, KERN_ERR, LOG_INIT,
-					 "0409 Cant create debugfs");
+					 "0417 Cant create debugfs");
 			goto debug_failed;
 		}
 		atomic_inc(&phba->debugfs_vport_count);
@@ -1001,7 +1259,7 @@
 
 	if (!vport->disc_trc) {
 		lpfc_printf_vlog(vport, KERN_ERR, LOG_INIT,
-				 "0409 Cannot create debugfs disc trace "
+				 "0418 Cannot create debugfs disc trace "
 				 "buffer\n");
 		goto debug_failed;
 	}
@@ -1014,7 +1272,7 @@
 				 vport, &lpfc_debugfs_op_disc_trc);
 	if (!vport->debug_disc_trc) {
 		lpfc_printf_vlog(vport, KERN_ERR, LOG_INIT,
-				 "0409 Cannot create debugfs "
+				 "0419 Cannot create debugfs "
 				 "discovery_trace\n");
 		goto debug_failed;
 	}
@@ -1033,7 +1291,17 @@
 #endif
 }
 
-
+/**
+ * lpfc_debugfs_terminate -  Tear down debugfs infrastructure for this vport.
+ * @vport: The vport pointer to remove from debugfs.
+ *
+ * Description:
+ * When Debugfs is configured this routine removes debugfs file system elements
+ * that are specific to this vport. It also checks to see if there are any
+ * users left for the debugfs directories associated with the HBA and driver. If
+ * this is the last user of the HBA directory or driver directory then it will
+ * remove those from the debugfs infrastructure as well.
+ **/
 inline void
 lpfc_debugfs_terminate(struct lpfc_vport *vport)
 {
@@ -1096,5 +1364,3 @@
 #endif
 	return;
 }
-
-
diff --git a/drivers/scsi/lpfc/lpfc_disc.h b/drivers/scsi/lpfc/lpfc_disc.h
index 2db0b74..f29e548 100644
--- a/drivers/scsi/lpfc/lpfc_disc.h
+++ b/drivers/scsi/lpfc/lpfc_disc.h
@@ -37,6 +37,7 @@
 	LPFC_EVT_KILL,
 	LPFC_EVT_ELS_RETRY,
 	LPFC_EVT_DEV_LOSS,
+	LPFC_EVT_FASTPATH_MGMT_EVT,
 };
 
 /* structure used to queue event to the discovery tasklet */
@@ -47,6 +48,24 @@
 	enum lpfc_work_type   evt;
 };
 
+struct lpfc_scsi_check_condition_event;
+struct lpfc_scsi_varqueuedepth_event;
+struct lpfc_scsi_event_header;
+struct lpfc_fabric_event_header;
+struct lpfc_fcprdchkerr_event;
+
+/* structure used for sending events from fast path */
+struct lpfc_fast_path_event {
+	struct lpfc_work_evt work_evt;
+	struct lpfc_vport     *vport;
+	union {
+		struct lpfc_scsi_check_condition_event check_cond_evt;
+		struct lpfc_scsi_varqueuedepth_event queue_depth_evt;
+		struct lpfc_scsi_event_header scsi_evt;
+		struct lpfc_fabric_event_header fabric_evt;
+		struct lpfc_fcprdchkerr_event read_check_error;
+	} un;
+};
 
 struct lpfc_nodelist {
 	struct list_head nlp_listp;
@@ -88,6 +107,10 @@
 	unsigned long last_ramp_up_time;        /* jiffy of last ramp up */
 	unsigned long last_q_full_time;		/* jiffy of last queue full */
 	struct kref     kref;
+	atomic_t cmd_pending;
+	uint32_t cmd_qdepth;
+	unsigned long last_change_time;
+	struct lpfc_scsicmd_bkt *lat_data;	/* Latency data */
 };
 
 /* Defines for nlp_flag (uint32) */
diff --git a/drivers/scsi/lpfc/lpfc_els.c b/drivers/scsi/lpfc/lpfc_els.c
index f54e0f7..630bd28 100644
--- a/drivers/scsi/lpfc/lpfc_els.c
+++ b/drivers/scsi/lpfc/lpfc_els.c
@@ -30,6 +30,7 @@
 
 #include "lpfc_hw.h"
 #include "lpfc_sli.h"
+#include "lpfc_nl.h"
 #include "lpfc_disc.h"
 #include "lpfc_scsi.h"
 #include "lpfc.h"
@@ -53,6 +54,28 @@
 
 static int lpfc_max_els_tries = 3;
 
+/**
+ * lpfc_els_chk_latt: Check host link attention event for a vport.
+ * @vport: pointer to a host virtual N_Port data structure.
+ *
+ * This routine checks whether there is an outstanding host link
+ * attention event during the discovery process with the @vport. It is done
+ * by reading the HBA's Host Attention (HA) register. If there is any host
+ * link attention events during this @vport's discovery process, the @vport
+ * shall be marked as FC_ABORT_DISCOVERY, a host link attention clear shall
+ * be issued if the link state is not already in host link cleared state,
+ * and a return code shall indicate whether the host link attention event
+ * had happened.
+ *
+ * Note that, if either the host link is in state LPFC_LINK_DOWN or @vport
+ * state in LPFC_VPORT_READY, the request for checking host link attention
+ * event will be ignored and a return code shall indicate no host link
+ * attention event had happened.
+ *
+ * Return codes
+ *   0 - no host link attention event happened
+ *   1 - host link attention event happened
+ **/
 int
 lpfc_els_chk_latt(struct lpfc_vport *vport)
 {
@@ -92,6 +115,34 @@
 	return 1;
 }
 
+/**
+ * lpfc_prep_els_iocb: Allocate and prepare a lpfc iocb data structure.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @expectRsp: flag indicating whether response is expected.
+ * @cmdSize: size of the ELS command.
+ * @retry: number of retries to the command IOCB when it fails.
+ * @ndlp: pointer to a node-list data structure.
+ * @did: destination identifier.
+ * @elscmd: the ELS command code.
+ *
+ * This routine is used for allocating a lpfc-IOCB data structure from
+ * the driver lpfc-IOCB free-list and prepare the IOCB with the parameters
+ * passed into the routine for discovery state machine to issue an Extended
+ * Link Service (ELS) commands. It is a generic lpfc-IOCB allocation
+ * and preparation routine that is used by all the discovery state machine
+ * routines and the ELS command-specific fields will be later set up by
+ * the individual discovery machine routines after calling this routine
+ * allocating and preparing a generic IOCB data structure. It fills in the
+ * Buffer Descriptor Entries (BDEs), allocates buffers for both command
+ * payload and response payload (if expected). The reference count on the
+ * ndlp is incremented by 1 and the reference to the ndlp is put into
+ * context1 of the IOCB data structure for this IOCB to hold the ndlp
+ * reference for the command's callback function to access later.
+ *
+ * Return code
+ *   Pointer to the newly allocated/prepared els iocb data structure
+ *   NULL - when els iocb data structure allocation/preparation failed
+ **/
 static struct lpfc_iocbq *
 lpfc_prep_els_iocb(struct lpfc_vport *vport, uint8_t expectRsp,
 		   uint16_t cmdSize, uint8_t retry,
@@ -150,7 +201,7 @@
 
 	icmd->un.elsreq64.bdl.addrHigh = putPaddrHigh(pbuflist->phys);
 	icmd->un.elsreq64.bdl.addrLow = putPaddrLow(pbuflist->phys);
-	icmd->un.elsreq64.bdl.bdeFlags = BUFF_TYPE_BDL;
+	icmd->un.elsreq64.bdl.bdeFlags = BUFF_TYPE_BLP_64;
 	icmd->un.elsreq64.remoteID = did;	/* DID */
 	if (expectRsp) {
 		icmd->un.elsreq64.bdl.bdeSize = (2 * sizeof(struct ulp_bde64));
@@ -185,7 +236,7 @@
 		bpl->addrLow = le32_to_cpu(putPaddrLow(prsp->phys));
 		bpl->addrHigh = le32_to_cpu(putPaddrHigh(prsp->phys));
 		bpl->tus.f.bdeSize = FCELSSIZE;
-		bpl->tus.f.bdeFlags = BUFF_USE_RCV;
+		bpl->tus.f.bdeFlags = BUFF_TYPE_BDE_64;
 		bpl->tus.w = le32_to_cpu(bpl->tus.w);
 	}
 
@@ -233,6 +284,22 @@
 	return NULL;
 }
 
+/**
+ * lpfc_issue_fabric_reglogin: Issue fabric registration login for a vport.
+ * @vport: pointer to a host virtual N_Port data structure.
+ *
+ * This routine issues a fabric registration login for a @vport. An
+ * active ndlp node with Fabric_DID must already exist for this @vport.
+ * The routine invokes two mailbox commands to carry out fabric registration
+ * login through the HBA firmware: the first mailbox command requests the
+ * HBA to perform link configuration for the @vport; and the second mailbox
+ * command requests the HBA to perform the actual fabric registration login
+ * with the @vport.
+ *
+ * Return code
+ *   0 - successfully issued fabric registration login for @vport
+ *   -ENXIO -- failed to issue fabric registration login for @vport
+ **/
 static int
 lpfc_issue_fabric_reglogin(struct lpfc_vport *vport)
 {
@@ -313,6 +380,26 @@
 	return -ENXIO;
 }
 
+/**
+ * lpfc_cmpl_els_flogi_fabric: Completion function for flogi to a fabric port.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @ndlp: pointer to a node-list data structure.
+ * @sp: pointer to service parameter data structure.
+ * @irsp: pointer to the IOCB within the lpfc response IOCB.
+ *
+ * This routine is invoked by the lpfc_cmpl_els_flogi() completion callback
+ * function to handle the completion of a Fabric Login (FLOGI) into a fabric
+ * port in a fabric topology. It properly sets up the parameters to the @ndlp
+ * from the IOCB response. It also check the newly assigned N_Port ID to the
+ * @vport against the previously assigned N_Port ID. If it is different from
+ * the previously assigned Destination ID (DID), the lpfc_unreg_rpi() routine
+ * is invoked on all the remaining nodes with the @vport to unregister the
+ * Remote Port Indicators (RPIs). Finally, the lpfc_issue_fabric_reglogin()
+ * is invoked to register login to the fabric.
+ *
+ * Return code
+ *   0 - Success (currently, always return 0)
+ **/
 static int
 lpfc_cmpl_els_flogi_fabric(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp,
 			   struct serv_parm *sp, IOCB_t *irsp)
@@ -387,7 +474,7 @@
 		 */
 		list_for_each_entry_safe(np, next_np,
 					&vport->fc_nodes, nlp_listp) {
-			if (!NLP_CHK_NODE_ACT(ndlp))
+			if (!NLP_CHK_NODE_ACT(np))
 				continue;
 			if ((np->nlp_state != NLP_STE_NPR_NODE) ||
 				   !(np->nlp_flag & NLP_NPR_ADISC))
@@ -416,9 +503,26 @@
 	return 0;
 }
 
-/*
- * We FLOGIed into an NPort, initiate pt2pt protocol
- */
+/**
+ * lpfc_cmpl_els_flogi_nport: Completion function for flogi to an N_Port.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @ndlp: pointer to a node-list data structure.
+ * @sp: pointer to service parameter data structure.
+ *
+ * This routine is invoked by the lpfc_cmpl_els_flogi() completion callback
+ * function to handle the completion of a Fabric Login (FLOGI) into an N_Port
+ * in a point-to-point topology. First, the @vport's N_Port Name is compared
+ * with the received N_Port Name: if the @vport's N_Port Name is greater than
+ * the received N_Port Name lexicographically, this node shall assign local
+ * N_Port ID (PT2PT_LocalID: 1) and remote N_Port ID (PT2PT_RemoteID: 2) and
+ * will send out Port Login (PLOGI) with the N_Port IDs assigned. Otherwise,
+ * this node shall just wait for the remote node to issue PLOGI and assign
+ * N_Port IDs.
+ *
+ * Return code
+ *   0 - Success
+ *   -ENXIO - Fail
+ **/
 static int
 lpfc_cmpl_els_flogi_nport(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp,
 			  struct serv_parm *sp)
@@ -516,6 +620,29 @@
 	return -ENXIO;
 }
 
+/**
+ * lpfc_cmpl_els_flogi: Completion callback function for flogi.
+ * @phba: pointer to lpfc hba data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @rspiocb: pointer to lpfc response iocb data structure.
+ *
+ * This routine is the top-level completion callback function for issuing
+ * a Fabric Login (FLOGI) command. If the response IOCB reported error,
+ * the lpfc_els_retry() routine shall be invoked to retry the FLOGI. If
+ * retry has been made (either immediately or delayed with lpfc_els_retry()
+ * returning 1), the command IOCB will be released and function returned.
+ * If the retry attempt has been given up (possibly reach the maximum
+ * number of retries), one additional decrement of ndlp reference shall be
+ * invoked before going out after releasing the command IOCB. This will
+ * actually release the remote node (Note, lpfc_els_free_iocb() will also
+ * invoke one decrement of ndlp reference count). If no error reported in
+ * the IOCB status, the command Port ID field is used to determine whether
+ * this is a point-to-point topology or a fabric topology: if the Port ID
+ * field is assigned, it is a fabric topology; otherwise, it is a
+ * point-to-point topology. The routine lpfc_cmpl_els_flogi_fabric() or
+ * lpfc_cmpl_els_flogi_nport() shall be invoked accordingly to handle the
+ * specific topology completion conditions.
+ **/
 static void
 lpfc_cmpl_els_flogi(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb,
 		    struct lpfc_iocbq *rspiocb)
@@ -618,6 +745,28 @@
 	lpfc_els_free_iocb(phba, cmdiocb);
 }
 
+/**
+ * lpfc_issue_els_flogi: Issue an flogi iocb command for a vport.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @ndlp: pointer to a node-list data structure.
+ * @retry: number of retries to the command IOCB.
+ *
+ * This routine issues a Fabric Login (FLOGI) Request ELS command
+ * for a @vport. The initiator service parameters are put into the payload
+ * of the FLOGI Request IOCB and the top-level callback function pointer
+ * to lpfc_cmpl_els_flogi() routine is put to the IOCB completion callback
+ * function field. The lpfc_issue_fabric_iocb routine is invoked to send
+ * out FLOGI ELS command with one outstanding fabric IOCB at a time.
+ *
+ * Note that, in lpfc_prep_els_iocb() routine, the reference count of ndlp
+ * will be incremented by 1 for holding the ndlp and the reference to ndlp
+ * will be stored into the context1 field of the IOCB for the completion
+ * callback function to the FLOGI ELS command.
+ *
+ * Return code
+ *   0 - successfully issued flogi iocb for @vport
+ *   1 - failed to issue flogi iocb for @vport
+ **/
 static int
 lpfc_issue_els_flogi(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp,
 		     uint8_t retry)
@@ -694,6 +843,20 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_abort_flogi: Abort all outstanding flogi iocbs.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine aborts all the outstanding Fabric Login (FLOGI) IOCBs
+ * with a @phba. This routine walks all the outstanding IOCBs on the txcmplq
+ * list and issues an abort IOCB commond on each outstanding IOCB that
+ * contains a active Fabric_DID ndlp. Note that this function is to issue
+ * the abort IOCB command on all the outstanding IOCBs, thus when this
+ * function returns, it does not guarantee all the IOCBs are actually aborted.
+ *
+ * Return code
+ *   0 - Sucessfully issued abort iocb on all outstanding flogis (Always 0)
+ **/
 int
 lpfc_els_abort_flogi(struct lpfc_hba *phba)
 {
@@ -729,6 +892,22 @@
 	return 0;
 }
 
+/**
+ * lpfc_initial_flogi: Issue an initial fabric login for a vport.
+ * @vport: pointer to a host virtual N_Port data structure.
+ *
+ * This routine issues an initial Fabric Login (FLOGI) for the @vport
+ * specified. It first searches the ndlp with the Fabric_DID (0xfffffe) from
+ * the @vport's ndlp list. If no such ndlp found, it will create an ndlp and
+ * put it into the @vport's ndlp list. If an inactive ndlp found on the list,
+ * it will just be enabled and made active. The lpfc_issue_els_flogi() routine
+ * is then invoked with the @vport and the ndlp to perform the FLOGI for the
+ * @vport.
+ *
+ * Return code
+ *   0 - failed to issue initial flogi for @vport
+ *   1 - successfully issued initial flogi for @vport
+ **/
 int
 lpfc_initial_flogi(struct lpfc_vport *vport)
 {
@@ -764,6 +943,22 @@
 	return 1;
 }
 
+/**
+ * lpfc_initial_fdisc: Issue an initial fabric discovery for a vport.
+ * @vport: pointer to a host virtual N_Port data structure.
+ *
+ * This routine issues an initial Fabric Discover (FDISC) for the @vport
+ * specified. It first searches the ndlp with the Fabric_DID (0xfffffe) from
+ * the @vport's ndlp list. If no such ndlp found, it will create an ndlp and
+ * put it into the @vport's ndlp list. If an inactive ndlp found on the list,
+ * it will just be enabled and made active. The lpfc_issue_els_fdisc() routine
+ * is then invoked with the @vport and the ndlp to perform the FDISC for the
+ * @vport.
+ *
+ * Return code
+ *   0 - failed to issue initial fdisc for @vport
+ *   1 - successfully issued initial fdisc for @vport
+ **/
 int
 lpfc_initial_fdisc(struct lpfc_vport *vport)
 {
@@ -797,6 +992,17 @@
 	return 1;
 }
 
+/**
+ * lpfc_more_plogi: Check and issue remaining plogis for a vport.
+ * @vport: pointer to a host virtual N_Port data structure.
+ *
+ * This routine checks whether there are more remaining Port Logins
+ * (PLOGI) to be issued for the @vport. If so, it will invoke the routine
+ * lpfc_els_disc_plogi() to go through the Node Port Recovery (NPR) nodes
+ * to issue ELS PLOGIs up to the configured discover threads with the
+ * @vport (@vport->cfg_discovery_threads). The function also decrement
+ * the @vport's num_disc_node by 1 if it is not already 0.
+ **/
 void
 lpfc_more_plogi(struct lpfc_vport *vport)
 {
@@ -819,6 +1025,37 @@
 	return;
 }
 
+/**
+ * lpfc_plogi_confirm_nport: Confirm pologi wwpn matches stored ndlp.
+ * @phba: pointer to lpfc hba data structure.
+ * @prsp: pointer to response IOCB payload.
+ * @ndlp: pointer to a node-list data structure.
+ *
+ * This routine checks and indicates whether the WWPN of an N_Port, retrieved
+ * from a PLOGI, matches the WWPN that is stored in the @ndlp for that N_POrt.
+ * The following cases are considered N_Port confirmed:
+ * 1) The N_Port is a Fabric ndlp; 2) The @ndlp is on vport list and matches
+ * the WWPN of the N_Port logged into; 3) The @ndlp is not on vport list but
+ * it does not have WWPN assigned either. If the WWPN is confirmed, the
+ * pointer to the @ndlp will be returned. If the WWPN is not confirmed:
+ * 1) if there is a node on vport list other than the @ndlp with the same
+ * WWPN of the N_Port PLOGI logged into, the lpfc_unreg_rpi() will be invoked
+ * on that node to release the RPI associated with the node; 2) if there is
+ * no node found on vport list with the same WWPN of the N_Port PLOGI logged
+ * into, a new node shall be allocated (or activated). In either case, the
+ * parameters of the @ndlp shall be copied to the new_ndlp, the @ndlp shall
+ * be released and the new_ndlp shall be put on to the vport node list and
+ * its pointer returned as the confirmed node.
+ *
+ * Note that before the @ndlp got "released", the keepDID from not-matching
+ * or inactive "new_ndlp" on the vport node list is assigned to the nlp_DID
+ * of the @ndlp. This is because the release of @ndlp is actually to put it
+ * into an inactive state on the vport node list and the vport node list
+ * management algorithm does not allow two node with a same DID.
+ *
+ * Return code
+ *   pointer to the PLOGI N_Port @ndlp
+ **/
 static struct lpfc_nodelist *
 lpfc_plogi_confirm_nport(struct lpfc_hba *phba, uint32_t *prsp,
 			 struct lpfc_nodelist *ndlp)
@@ -922,6 +1159,17 @@
 	return new_ndlp;
 }
 
+/**
+ * lpfc_end_rscn: Check and handle more rscn for a vport.
+ * @vport: pointer to a host virtual N_Port data structure.
+ *
+ * This routine checks whether more Registration State Change
+ * Notifications (RSCNs) came in while the discovery state machine was in
+ * the FC_RSCN_MODE. If so, the lpfc_els_handle_rscn() routine will be
+ * invoked to handle the additional RSCNs for the @vport. Otherwise, the
+ * FC_RSCN_MODE bit will be cleared with the @vport to mark as the end of
+ * handling the RSCNs.
+ **/
 void
 lpfc_end_rscn(struct lpfc_vport *vport)
 {
@@ -943,6 +1191,26 @@
 	}
 }
 
+/**
+ * lpfc_cmpl_els_plogi: Completion callback function for plogi.
+ * @phba: pointer to lpfc hba data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @rspiocb: pointer to lpfc response iocb data structure.
+ *
+ * This routine is the completion callback function for issuing the Port
+ * Login (PLOGI) command. For PLOGI completion, there must be an active
+ * ndlp on the vport node list that matches the remote node ID from the
+ * PLOGI reponse IOCB. If such ndlp does not exist, the PLOGI is simply
+ * ignored and command IOCB released. The PLOGI response IOCB status is
+ * checked for error conditons. If there is error status reported, PLOGI
+ * retry shall be attempted by invoking the lpfc_els_retry() routine.
+ * Otherwise, the lpfc_plogi_confirm_nport() routine shall be invoked on
+ * the ndlp and the NLP_EVT_CMPL_PLOGI state to the Discover State Machine
+ * (DSM) is set for this PLOGI completion. Finally, it checks whether
+ * there are additional N_Port nodes with the vport that need to perform
+ * PLOGI. If so, the lpfc_more_plogi() routine is invoked to issue addition
+ * PLOGIs.
+ **/
 static void
 lpfc_cmpl_els_plogi(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb,
 		    struct lpfc_iocbq *rspiocb)
@@ -1048,6 +1316,27 @@
 	return;
 }
 
+/**
+ * lpfc_issue_els_plogi: Issue an plogi iocb command for a vport.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @did: destination port identifier.
+ * @retry: number of retries to the command IOCB.
+ *
+ * This routine issues a Port Login (PLOGI) command to a remote N_Port
+ * (with the @did) for a @vport. Before issuing a PLOGI to a remote N_Port,
+ * the ndlp with the remote N_Port DID must exist on the @vport's ndlp list.
+ * This routine constructs the proper feilds of the PLOGI IOCB and invokes
+ * the lpfc_sli_issue_iocb() routine to send out PLOGI ELS command.
+ *
+ * Note that, in lpfc_prep_els_iocb() routine, the reference count of ndlp
+ * will be incremented by 1 for holding the ndlp and the reference to ndlp
+ * will be stored into the context1 field of the IOCB for the completion
+ * callback function to the PLOGI ELS command.
+ *
+ * Return code
+ *   0 - Successfully issued a plogi for @vport
+ *   1 - failed to issue a plogi for @vport
+ **/
 int
 lpfc_issue_els_plogi(struct lpfc_vport *vport, uint32_t did, uint8_t retry)
 {
@@ -1106,6 +1395,19 @@
 	return 0;
 }
 
+/**
+ * lpfc_cmpl_els_prli: Completion callback function for prli.
+ * @phba: pointer to lpfc hba data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @rspiocb: pointer to lpfc response iocb data structure.
+ *
+ * This routine is the completion callback function for a Process Login
+ * (PRLI) ELS command. The PRLI response IOCB status is checked for error
+ * status. If there is error status reported, PRLI retry shall be attempted
+ * by invoking the lpfc_els_retry() routine. Otherwise, the state
+ * NLP_EVT_CMPL_PRLI is sent to the Discover State Machine (DSM) for this
+ * ndlp to mark the PRLI completion.
+ **/
 static void
 lpfc_cmpl_els_prli(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb,
 		   struct lpfc_iocbq *rspiocb)
@@ -1164,6 +1466,27 @@
 	return;
 }
 
+/**
+ * lpfc_issue_els_prli: Issue a prli iocb command for a vport.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @ndlp: pointer to a node-list data structure.
+ * @retry: number of retries to the command IOCB.
+ *
+ * This routine issues a Process Login (PRLI) ELS command for the
+ * @vport. The PRLI service parameters are set up in the payload of the
+ * PRLI Request command and the pointer to lpfc_cmpl_els_prli() routine
+ * is put to the IOCB completion callback func field before invoking the
+ * routine lpfc_sli_issue_iocb() to send out PRLI command.
+ *
+ * Note that, in lpfc_prep_els_iocb() routine, the reference count of ndlp
+ * will be incremented by 1 for holding the ndlp and the reference to ndlp
+ * will be stored into the context1 field of the IOCB for the completion
+ * callback function to the PRLI ELS command.
+ *
+ * Return code
+ *   0 - successfully issued prli iocb command for @vport
+ *   1 - failed to issue prli iocb command for @vport
+ **/
 int
 lpfc_issue_els_prli(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp,
 		    uint8_t retry)
@@ -1233,6 +1556,92 @@
 	return 0;
 }
 
+/**
+ * lpfc_rscn_disc: Perform rscn discovery for a vport.
+ * @vport: pointer to a host virtual N_Port data structure.
+ *
+ * This routine performs Registration State Change Notification (RSCN)
+ * discovery for a @vport. If the @vport's node port recovery count is not
+ * zero, it will invoke the lpfc_els_disc_plogi() to perform PLOGI for all
+ * the nodes that need recovery. If none of the PLOGI were needed through
+ * the lpfc_els_disc_plogi() routine, the lpfc_end_rscn() routine shall be
+ * invoked to check and handle possible more RSCN came in during the period
+ * of processing the current ones.
+ **/
+static void
+lpfc_rscn_disc(struct lpfc_vport *vport)
+{
+	lpfc_can_disctmo(vport);
+
+	/* RSCN discovery */
+	/* go thru NPR nodes and issue ELS PLOGIs */
+	if (vport->fc_npr_cnt)
+		if (lpfc_els_disc_plogi(vport))
+			return;
+
+	lpfc_end_rscn(vport);
+}
+
+/**
+ * lpfc_adisc_done: Complete the adisc phase of discovery.
+ * @vport: pointer to lpfc_vport hba data structure that finished all ADISCs.
+ *
+ * This function is called when the final ADISC is completed during discovery.
+ * This function handles clearing link attention or issuing reg_vpi depending
+ * on whether npiv is enabled. This function also kicks off the PLOGI phase of
+ * discovery.
+ * This function is called with no locks held.
+ **/
+static void
+lpfc_adisc_done(struct lpfc_vport *vport)
+{
+	struct Scsi_Host   *shost = lpfc_shost_from_vport(vport);
+	struct lpfc_hba   *phba = vport->phba;
+
+	/*
+	 * For NPIV, cmpl_reg_vpi will set port_state to READY,
+	 * and continue discovery.
+	 */
+	if ((phba->sli3_options & LPFC_SLI3_NPIV_ENABLED) &&
+	    !(vport->fc_flag & FC_RSCN_MODE)) {
+		lpfc_issue_reg_vpi(phba, vport);
+		return;
+	}
+	/*
+	* For SLI2, we need to set port_state to READY
+	* and continue discovery.
+	*/
+	if (vport->port_state < LPFC_VPORT_READY) {
+		/* If we get here, there is nothing to ADISC */
+		if (vport->port_type == LPFC_PHYSICAL_PORT)
+			lpfc_issue_clear_la(phba, vport);
+		if (!(vport->fc_flag & FC_ABORT_DISCOVERY)) {
+			vport->num_disc_nodes = 0;
+			/* go thru NPR list, issue ELS PLOGIs */
+			if (vport->fc_npr_cnt)
+				lpfc_els_disc_plogi(vport);
+			if (!vport->num_disc_nodes) {
+				spin_lock_irq(shost->host_lock);
+				vport->fc_flag &= ~FC_NDISC_ACTIVE;
+				spin_unlock_irq(shost->host_lock);
+				lpfc_can_disctmo(vport);
+				lpfc_end_rscn(vport);
+			}
+		}
+		vport->port_state = LPFC_VPORT_READY;
+	} else
+		lpfc_rscn_disc(vport);
+}
+
+/**
+ * lpfc_more_adisc: Issue more adisc as needed.
+ * @vport: pointer to a host virtual N_Port data structure.
+ *
+ * This routine determines whether there are more ndlps on a @vport
+ * node list need to have Address Discover (ADISC) issued. If so, it will
+ * invoke the lpfc_els_disc_adisc() routine to issue ADISC on the @vport's
+ * remaining nodes which need to have ADISC sent.
+ **/
 void
 lpfc_more_adisc(struct lpfc_vport *vport)
 {
@@ -1252,23 +1661,27 @@
 		/* go thru NPR nodes and issue any remaining ELS ADISCs */
 		sentadisc = lpfc_els_disc_adisc(vport);
 	}
+	if (!vport->num_disc_nodes)
+		lpfc_adisc_done(vport);
 	return;
 }
 
-static void
-lpfc_rscn_disc(struct lpfc_vport *vport)
-{
-	lpfc_can_disctmo(vport);
-
-	/* RSCN discovery */
-	/* go thru NPR nodes and issue ELS PLOGIs */
-	if (vport->fc_npr_cnt)
-		if (lpfc_els_disc_plogi(vport))
-			return;
-
-	lpfc_end_rscn(vport);
-}
-
+/**
+ * lpfc_cmpl_els_adisc: Completion callback function for adisc.
+ * @phba: pointer to lpfc hba data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @rspiocb: pointer to lpfc response iocb data structure.
+ *
+ * This routine is the completion function for issuing the Address Discover
+ * (ADISC) command. It first checks to see whether link went down during
+ * the discovery process. If so, the node will be marked as node port
+ * recovery for issuing discover IOCB by the link attention handler and
+ * exit. Otherwise, the response status is checked. If error was reported
+ * in the response status, the ADISC command shall be retried by invoking
+ * the lpfc_els_retry() routine. Otherwise, if no error was reported in
+ * the response status, the state machine is invoked to set transition
+ * with respect to NLP_EVT_CMPL_ADISC event.
+ **/
 static void
 lpfc_cmpl_els_adisc(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb,
 		    struct lpfc_iocbq *rspiocb)
@@ -1333,57 +1746,34 @@
 		lpfc_disc_state_machine(vport, ndlp, cmdiocb,
 					NLP_EVT_CMPL_ADISC);
 
-	if (disc && vport->num_disc_nodes) {
-		/* Check to see if there are more ADISCs to be sent */
+	/* Check to see if there are more ADISCs to be sent */
+	if (disc && vport->num_disc_nodes)
 		lpfc_more_adisc(vport);
-
-		/* Check to see if we are done with ADISC authentication */
-		if (vport->num_disc_nodes == 0) {
-			/* If we get here, there is nothing left to ADISC */
-			/*
-			 * For NPIV, cmpl_reg_vpi will set port_state to READY,
-			 * and continue discovery.
-			 */
-			if ((phba->sli3_options & LPFC_SLI3_NPIV_ENABLED) &&
-			   !(vport->fc_flag & FC_RSCN_MODE)) {
-				lpfc_issue_reg_vpi(phba, vport);
-				goto out;
-			}
-			/*
-			 * For SLI2, we need to set port_state to READY
-			 * and continue discovery.
-			 */
-			if (vport->port_state < LPFC_VPORT_READY) {
-				/* If we get here, there is nothing to ADISC */
-				if (vport->port_type == LPFC_PHYSICAL_PORT)
-					lpfc_issue_clear_la(phba, vport);
-
-				if (!(vport->fc_flag & FC_ABORT_DISCOVERY)) {
-					vport->num_disc_nodes = 0;
-					/* go thru NPR list, issue ELS PLOGIs */
-					if (vport->fc_npr_cnt)
-						lpfc_els_disc_plogi(vport);
-
-					if (!vport->num_disc_nodes) {
-						spin_lock_irq(shost->host_lock);
-						vport->fc_flag &=
-							~FC_NDISC_ACTIVE;
-						spin_unlock_irq(
-							shost->host_lock);
-						lpfc_can_disctmo(vport);
-					}
-				}
-				vport->port_state = LPFC_VPORT_READY;
-			} else {
-				lpfc_rscn_disc(vport);
-			}
-		}
-	}
 out:
 	lpfc_els_free_iocb(phba, cmdiocb);
 	return;
 }
 
+/**
+ * lpfc_issue_els_adisc: Issue an address discover iocb to an node on a vport.
+ * @vport: pointer to a virtual N_Port data structure.
+ * @ndlp: pointer to a node-list data structure.
+ * @retry: number of retries to the command IOCB.
+ *
+ * This routine issues an Address Discover (ADISC) for an @ndlp on a
+ * @vport. It prepares the payload of the ADISC ELS command, updates the
+ * and states of the ndlp, and invokes the lpfc_sli_issue_iocb() routine
+ * to issue the ADISC ELS command.
+ *
+ * Note that, in lpfc_prep_els_iocb() routine, the reference count of ndlp
+ * will be incremented by 1 for holding the ndlp and the reference to ndlp
+ * will be stored into the context1 field of the IOCB for the completion
+ * callback function to the ADISC ELS command.
+ *
+ * Return code
+ *   0 - successfully issued adisc
+ *   1 - failed to issue adisc
+ **/
 int
 lpfc_issue_els_adisc(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp,
 		     uint8_t retry)
@@ -1437,6 +1827,18 @@
 	return 0;
 }
 
+/**
+ * lpfc_cmpl_els_logo: Completion callback function for logo.
+ * @phba: pointer to lpfc hba data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @rspiocb: pointer to lpfc response iocb data structure.
+ *
+ * This routine is the completion function for issuing the ELS Logout (LOGO)
+ * command. If no error status was reported from the LOGO response, the
+ * state machine of the associated ndlp shall be invoked for transition with
+ * respect to NLP_EVT_CMPL_LOGO event. Otherwise, if error status was reported,
+ * the lpfc_els_retry() routine will be invoked to retry the LOGO command.
+ **/
 static void
 lpfc_cmpl_els_logo(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb,
 		   struct lpfc_iocbq *rspiocb)
@@ -1502,6 +1904,26 @@
 	return;
 }
 
+/**
+ * lpfc_issue_els_logo: Issue a logo to an node on a vport.
+ * @vport: pointer to a virtual N_Port data structure.
+ * @ndlp: pointer to a node-list data structure.
+ * @retry: number of retries to the command IOCB.
+ *
+ * This routine constructs and issues an ELS Logout (LOGO) iocb command
+ * to a remote node, referred by an @ndlp on a @vport. It constructs the
+ * payload of the IOCB, properly sets up the @ndlp state, and invokes the
+ * lpfc_sli_issue_iocb() routine to send out the LOGO ELS command.
+ *
+ * Note that, in lpfc_prep_els_iocb() routine, the reference count of ndlp
+ * will be incremented by 1 for holding the ndlp and the reference to ndlp
+ * will be stored into the context1 field of the IOCB for the completion
+ * callback function to the LOGO ELS command.
+ *
+ * Return code
+ *   0 - successfully issued logo
+ *   1 - failed to issue logo
+ **/
 int
 lpfc_issue_els_logo(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp,
 		    uint8_t retry)
@@ -1563,6 +1985,22 @@
 	return 0;
 }
 
+/**
+ * lpfc_cmpl_els_cmd: Completion callback function for generic els command.
+ * @phba: pointer to lpfc hba data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @rspiocb: pointer to lpfc response iocb data structure.
+ *
+ * This routine is a generic completion callback function for ELS commands.
+ * Specifically, it is the callback function which does not need to perform
+ * any command specific operations. It is currently used by the ELS command
+ * issuing routines for the ELS State Change  Request (SCR),
+ * lpfc_issue_els_scr(), and the ELS Fibre Channel Address Resolution
+ * Protocol Response (FARPR) routine, lpfc_issue_els_farpr(). Other than
+ * certain debug loggings, this callback function simply invokes the
+ * lpfc_els_chk_latt() routine to check whether link went down during the
+ * discovery process.
+ **/
 static void
 lpfc_cmpl_els_cmd(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb,
 		  struct lpfc_iocbq *rspiocb)
@@ -1587,6 +2025,28 @@
 	return;
 }
 
+/**
+ * lpfc_issue_els_scr: Issue a scr to an node on a vport.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @nportid: N_Port identifier to the remote node.
+ * @retry: number of retries to the command IOCB.
+ *
+ * This routine issues a State Change Request (SCR) to a fabric node
+ * on a @vport. The remote node @nportid is passed into the function. It
+ * first search the @vport node list to find the matching ndlp. If no such
+ * ndlp is found, a new ndlp shall be created for this (SCR) purpose. An
+ * IOCB is allocated, payload prepared, and the lpfc_sli_issue_iocb()
+ * routine is invoked to send the SCR IOCB.
+ *
+ * Note that, in lpfc_prep_els_iocb() routine, the reference count of ndlp
+ * will be incremented by 1 for holding the ndlp and the reference to ndlp
+ * will be stored into the context1 field of the IOCB for the completion
+ * callback function to the SCR ELS command.
+ *
+ * Return code
+ *   0 - Successfully issued scr command
+ *   1 - Failed to issue scr command
+ **/
 int
 lpfc_issue_els_scr(struct lpfc_vport *vport, uint32_t nportid, uint8_t retry)
 {
@@ -1659,6 +2119,28 @@
 	return 0;
 }
 
+/**
+ * lpfc_issue_els_farpr: Issue a farp to an node on a vport.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @nportid: N_Port identifier to the remote node.
+ * @retry: number of retries to the command IOCB.
+ *
+ * This routine issues a Fibre Channel Address Resolution Response
+ * (FARPR) to a node on a vport. The remote node N_Port identifier (@nportid)
+ * is passed into the function. It first search the @vport node list to find
+ * the matching ndlp. If no such ndlp is found, a new ndlp shall be created
+ * for this (FARPR) purpose. An IOCB is allocated, payload prepared, and the
+ * lpfc_sli_issue_iocb() routine is invoked to send the FARPR ELS command.
+ *
+ * Note that, in lpfc_prep_els_iocb() routine, the reference count of ndlp
+ * will be incremented by 1 for holding the ndlp and the reference to ndlp
+ * will be stored into the context1 field of the IOCB for the completion
+ * callback function to the PARPR ELS command.
+ *
+ * Return code
+ *   0 - Successfully issued farpr command
+ *   1 - Failed to issue farpr command
+ **/
 static int
 lpfc_issue_els_farpr(struct lpfc_vport *vport, uint32_t nportid, uint8_t retry)
 {
@@ -1748,6 +2230,18 @@
 	return 0;
 }
 
+/**
+ * lpfc_cancel_retry_delay_tmo: Cancel the timer with delayed iocb-cmd retry.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @nlp: pointer to a node-list data structure.
+ *
+ * This routine cancels the timer with a delayed IOCB-command retry for
+ * a @vport's @ndlp. It stops the timer for the delayed function retrial and
+ * removes the ELS retry event if it presents. In addition, if the
+ * NLP_NPR_2B_DISC bit is set in the @nlp's nlp_flag bitmap, ADISC IOCB
+ * commands are sent for the @vport's nodes that require issuing discovery
+ * ADISC.
+ **/
 void
 lpfc_cancel_retry_delay_tmo(struct lpfc_vport *vport, struct lpfc_nodelist *nlp)
 {
@@ -1775,25 +2269,36 @@
 			if (vport->port_state < LPFC_VPORT_READY) {
 				/* Check if there are more ADISCs to be sent */
 				lpfc_more_adisc(vport);
-				if ((vport->num_disc_nodes == 0) &&
-				    (vport->fc_npr_cnt))
-					lpfc_els_disc_plogi(vport);
 			} else {
 				/* Check if there are more PLOGIs to be sent */
 				lpfc_more_plogi(vport);
-			}
-			if (vport->num_disc_nodes == 0) {
-				spin_lock_irq(shost->host_lock);
-				vport->fc_flag &= ~FC_NDISC_ACTIVE;
-				spin_unlock_irq(shost->host_lock);
-				lpfc_can_disctmo(vport);
-				lpfc_end_rscn(vport);
+				if (vport->num_disc_nodes == 0) {
+					spin_lock_irq(shost->host_lock);
+					vport->fc_flag &= ~FC_NDISC_ACTIVE;
+					spin_unlock_irq(shost->host_lock);
+					lpfc_can_disctmo(vport);
+					lpfc_end_rscn(vport);
+				}
 			}
 		}
 	}
 	return;
 }
 
+/**
+ * lpfc_els_retry_delay: Timer function with a ndlp delayed function timer.
+ * @ptr: holder for the pointer to the timer function associated data (ndlp).
+ *
+ * This routine is invoked by the ndlp delayed-function timer to check
+ * whether there is any pending ELS retry event(s) with the node. If not, it
+ * simply returns. Otherwise, if there is at least one ELS delayed event, it
+ * adds the delayed events to the HBA work list and invokes the
+ * lpfc_worker_wake_up() routine to wake up worker thread to process the
+ * event. Note that lpfc_nlp_get() is called before posting the event to
+ * the work list to hold reference count of ndlp so that it guarantees the
+ * reference to ndlp will still be available when the worker thread gets
+ * to the event associated with the ndlp.
+ **/
 void
 lpfc_els_retry_delay(unsigned long ptr)
 {
@@ -1822,6 +2327,15 @@
 	return;
 }
 
+/**
+ * lpfc_els_retry_delay_handler: Work thread handler for ndlp delayed function.
+ * @ndlp: pointer to a node-list data structure.
+ *
+ * This routine is the worker-thread handler for processing the @ndlp delayed
+ * event(s), posted by the lpfc_els_retry_delay() routine. It simply retrieves
+ * the last ELS command from the associated ndlp and invokes the proper ELS
+ * function according to the delayed ELS command to retry the command.
+ **/
 void
 lpfc_els_retry_delay_handler(struct lpfc_nodelist *ndlp)
 {
@@ -1884,6 +2398,27 @@
 	return;
 }
 
+/**
+ * lpfc_els_retry: Make retry decision on an els command iocb.
+ * @phba: pointer to lpfc hba data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @rspiocb: pointer to lpfc response iocb data structure.
+ *
+ * This routine makes a retry decision on an ELS command IOCB, which has
+ * failed. The following ELS IOCBs use this function for retrying the command
+ * when previously issued command responsed with error status: FLOGI, PLOGI,
+ * PRLI, ADISC, LOGO, and FDISC. Based on the ELS command type and the
+ * returned error status, it makes the decision whether a retry shall be
+ * issued for the command, and whether a retry shall be made immediately or
+ * delayed. In the former case, the corresponding ELS command issuing-function
+ * is called to retry the command. In the later case, the ELS command shall
+ * be posted to the ndlp delayed event and delayed function timer set to the
+ * ndlp for the delayed command issusing.
+ *
+ * Return code
+ *   0 - No retry of els command is made
+ *   1 - Immediate or delayed retry of els command is made
+ **/
 static int
 lpfc_els_retry(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb,
 	       struct lpfc_iocbq *rspiocb)
@@ -2051,7 +2586,7 @@
 			  (stat.un.b.lsRjtRsnCodeExp == LSEXP_INVALID_NPORT_ID))
 			  ) {
 				lpfc_printf_vlog(vport, KERN_ERR, LOG_ELS,
-						 "0123 FDISC Failed (x%x). "
+						 "0122 FDISC Failed (x%x). "
 						 "Fabric Detected Bad WWN\n",
 						 stat.un.lsRjtError);
 				lpfc_vport_set_state(vport,
@@ -2182,12 +2717,26 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_free_data: Free lpfc dma buffer and data structure with an iocb.
+ * @phba: pointer to lpfc hba data structure.
+ * @buf_ptr1: pointer to the lpfc DMA buffer data structure.
+ *
+ * This routine releases the lpfc DMA (Direct Memory Access) buffer(s)
+ * associated with a command IOCB back to the lpfc DMA buffer pool. It first
+ * checks to see whether there is a lpfc DMA buffer associated with the
+ * response of the command IOCB. If so, it will be released before releasing
+ * the lpfc DMA buffer associated with the IOCB itself.
+ *
+ * Return code
+ *   0 - Successfully released lpfc DMA buffer (currently, always return 0)
+ **/
 static int
 lpfc_els_free_data(struct lpfc_hba *phba, struct lpfc_dmabuf *buf_ptr1)
 {
 	struct lpfc_dmabuf *buf_ptr;
 
-	/* Free the response before processing the command.  */
+	/* Free the response before processing the command. */
 	if (!list_empty(&buf_ptr1->list)) {
 		list_remove_head(&buf_ptr1->list, buf_ptr,
 				 struct lpfc_dmabuf,
@@ -2200,6 +2749,18 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_free_bpl: Free lpfc dma buffer and data structure with bpl.
+ * @phba: pointer to lpfc hba data structure.
+ * @buf_ptr: pointer to the lpfc dma buffer data structure.
+ *
+ * This routine releases the lpfc Direct Memory Access (DMA) buffer
+ * associated with a Buffer Pointer List (BPL) back to the lpfc DMA buffer
+ * pool.
+ *
+ * Return code
+ *   0 - Successfully released lpfc DMA buffer (currently, always return 0)
+ **/
 static int
 lpfc_els_free_bpl(struct lpfc_hba *phba, struct lpfc_dmabuf *buf_ptr)
 {
@@ -2208,6 +2769,33 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_free_iocb: Free a command iocb and its associated resources.
+ * @phba: pointer to lpfc hba data structure.
+ * @elsiocb: pointer to lpfc els command iocb data structure.
+ *
+ * This routine frees a command IOCB and its associated resources. The
+ * command IOCB data structure contains the reference to various associated
+ * resources, these fields must be set to NULL if the associated reference
+ * not present:
+ *   context1 - reference to ndlp
+ *   context2 - reference to cmd
+ *   context2->next - reference to rsp
+ *   context3 - reference to bpl
+ *
+ * It first properly decrements the reference count held on ndlp for the
+ * IOCB completion callback function. If LPFC_DELAY_MEM_FREE flag is not
+ * set, it invokes the lpfc_els_free_data() routine to release the Direct
+ * Memory Access (DMA) buffers associated with the IOCB. Otherwise, it
+ * adds the DMA buffer the @phba data structure for the delayed release.
+ * If reference to the Buffer Pointer List (BPL) is present, the
+ * lpfc_els_free_bpl() routine is invoked to release the DMA memory
+ * associated with BPL. Finally, the lpfc_sli_release_iocbq() routine is
+ * invoked to release the IOCB data structure back to @phba IOCBQ list.
+ *
+ * Return code
+ *   0 - Success (currently, always return 0)
+ **/
 int
 lpfc_els_free_iocb(struct lpfc_hba *phba, struct lpfc_iocbq *elsiocb)
 {
@@ -2274,6 +2862,23 @@
 	return 0;
 }
 
+/**
+ * lpfc_cmpl_els_logo_acc: Completion callback function to logo acc response.
+ * @phba: pointer to lpfc hba data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @rspiocb: pointer to lpfc response iocb data structure.
+ *
+ * This routine is the completion callback function to the Logout (LOGO)
+ * Accept (ACC) Response ELS command. This routine is invoked to indicate
+ * the completion of the LOGO process. It invokes the lpfc_nlp_not_used() to
+ * release the ndlp if it has the last reference remaining (reference count
+ * is 1). If succeeded (meaning ndlp released), it sets the IOCB context1
+ * field to NULL to inform the following lpfc_els_free_iocb() routine no
+ * ndlp reference count needs to be decremented. Otherwise, the ndlp
+ * reference use-count shall be decremented by the lpfc_els_free_iocb()
+ * routine. Finally, the lpfc_els_free_iocb() is invoked to release the
+ * IOCB data structure.
+ **/
 static void
 lpfc_cmpl_els_logo_acc(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb,
 		       struct lpfc_iocbq *rspiocb)
@@ -2311,6 +2916,19 @@
 	return;
 }
 
+/**
+ * lpfc_mbx_cmpl_dflt_rpi: Completion callbk func for unreg dflt rpi mbox cmd.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * This routine is the completion callback function for unregister default
+ * RPI (Remote Port Index) mailbox command to the @phba. It simply releases
+ * the associated lpfc Direct Memory Access (DMA) buffer back to the pool and
+ * decrements the ndlp reference count held for this completion callback
+ * function. After that, it invokes the lpfc_nlp_not_used() to check
+ * whether there is only one reference left on the ndlp. If so, it will
+ * perform one more decrement and trigger the release of the ndlp.
+ **/
 void
 lpfc_mbx_cmpl_dflt_rpi(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
 {
@@ -2332,6 +2950,22 @@
 	return;
 }
 
+/**
+ * lpfc_cmpl_els_rsp: Completion callback function for els response iocb cmd.
+ * @phba: pointer to lpfc hba data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @rspiocb: pointer to lpfc response iocb data structure.
+ *
+ * This routine is the completion callback function for ELS Response IOCB
+ * command. In normal case, this callback function just properly sets the
+ * nlp_flag bitmap in the ndlp data structure, if the mbox command reference
+ * field in the command IOCB is not NULL, the referred mailbox command will
+ * be send out, and then invokes the lpfc_els_free_iocb() routine to release
+ * the IOCB. Under error conditions, such as when a LS_RJT is returned or a
+ * link down event occurred during the discovery, the lpfc_nlp_not_used()
+ * routine shall be invoked trying to release the ndlp if no other threads
+ * are currently referring it.
+ **/
 static void
 lpfc_cmpl_els_rsp(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb,
 		  struct lpfc_iocbq *rspiocb)
@@ -2487,6 +3121,31 @@
 	return;
 }
 
+/**
+ * lpfc_els_rsp_acc: Prepare and issue an acc response iocb command.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @flag: the els command code to be accepted.
+ * @oldiocb: pointer to the original lpfc command iocb data structure.
+ * @ndlp: pointer to a node-list data structure.
+ * @mbox: pointer to the driver internal queue element for mailbox command.
+ *
+ * This routine prepares and issues an Accept (ACC) response IOCB
+ * command. It uses the @flag to properly set up the IOCB field for the
+ * specific ACC response command to be issued and invokes the
+ * lpfc_sli_issue_iocb() routine to send out ACC response IOCB. If a
+ * @mbox pointer is passed in, it will be put into the context_un.mbox
+ * field of the IOCB for the completion callback function to issue the
+ * mailbox command to the HBA later when callback is invoked.
+ *
+ * Note that, in lpfc_prep_els_iocb() routine, the reference count of ndlp
+ * will be incremented by 1 for holding the ndlp and the reference to ndlp
+ * will be stored into the context1 field of the IOCB for the completion
+ * callback function to the corresponding response ELS IOCB command.
+ *
+ * Return code
+ *   0 - Successfully issued acc response
+ *   1 - Failed to issue acc response
+ **/
 int
 lpfc_els_rsp_acc(struct lpfc_vport *vport, uint32_t flag,
 		 struct lpfc_iocbq *oldiocb, struct lpfc_nodelist *ndlp,
@@ -2601,6 +3260,28 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_rsp_reject: Propare and issue a rjt response iocb command.
+ * @vport: pointer to a virtual N_Port data structure.
+ * @rejectError:
+ * @oldiocb: pointer to the original lpfc command iocb data structure.
+ * @ndlp: pointer to a node-list data structure.
+ * @mbox: pointer to the driver internal queue element for mailbox command.
+ *
+ * This routine prepares and issue an Reject (RJT) response IOCB
+ * command. If a @mbox pointer is passed in, it will be put into the
+ * context_un.mbox field of the IOCB for the completion callback function
+ * to issue to the HBA later.
+ *
+ * Note that, in lpfc_prep_els_iocb() routine, the reference count of ndlp
+ * will be incremented by 1 for holding the ndlp and the reference to ndlp
+ * will be stored into the context1 field of the IOCB for the completion
+ * callback function to the reject response ELS IOCB command.
+ *
+ * Return code
+ *   0 - Successfully issued reject response
+ *   1 - Failed to issue reject response
+ **/
 int
 lpfc_els_rsp_reject(struct lpfc_vport *vport, uint32_t rejectError,
 		    struct lpfc_iocbq *oldiocb, struct lpfc_nodelist *ndlp,
@@ -2660,6 +3341,25 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_rsp_adisc_acc: Prepare and issue acc response to adisc iocb cmd.
+ * @vport: pointer to a virtual N_Port data structure.
+ * @oldiocb: pointer to the original lpfc command iocb data structure.
+ * @ndlp: pointer to a node-list data structure.
+ *
+ * This routine prepares and issues an Accept (ACC) response to Address
+ * Discover (ADISC) ELS command. It simply prepares the payload of the IOCB
+ * and invokes the lpfc_sli_issue_iocb() routine to send out the command.
+ *
+ * Note that, in lpfc_prep_els_iocb() routine, the reference count of ndlp
+ * will be incremented by 1 for holding the ndlp and the reference to ndlp
+ * will be stored into the context1 field of the IOCB for the completion
+ * callback function to the ADISC Accept response ELS IOCB command.
+ *
+ * Return code
+ *   0 - Successfully issued acc adisc response
+ *   1 - Failed to issue adisc acc response
+ **/
 int
 lpfc_els_rsp_adisc_acc(struct lpfc_vport *vport, struct lpfc_iocbq *oldiocb,
 		       struct lpfc_nodelist *ndlp)
@@ -2716,6 +3416,25 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_rsp_prli_acc: Prepare and issue acc response to prli iocb cmd.
+ * @vport: pointer to a virtual N_Port data structure.
+ * @oldiocb: pointer to the original lpfc command iocb data structure.
+ * @ndlp: pointer to a node-list data structure.
+ *
+ * This routine prepares and issues an Accept (ACC) response to Process
+ * Login (PRLI) ELS command. It simply prepares the payload of the IOCB
+ * and invokes the lpfc_sli_issue_iocb() routine to send out the command.
+ *
+ * Note that, in lpfc_prep_els_iocb() routine, the reference count of ndlp
+ * will be incremented by 1 for holding the ndlp and the reference to ndlp
+ * will be stored into the context1 field of the IOCB for the completion
+ * callback function to the PRLI Accept response ELS IOCB command.
+ *
+ * Return code
+ *   0 - Successfully issued acc prli response
+ *   1 - Failed to issue acc prli response
+ **/
 int
 lpfc_els_rsp_prli_acc(struct lpfc_vport *vport, struct lpfc_iocbq *oldiocb,
 		      struct lpfc_nodelist *ndlp)
@@ -2795,6 +3514,32 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_rsp_rnid_acc: Issue rnid acc response iocb command.
+ * @vport: pointer to a virtual N_Port data structure.
+ * @format: rnid command format.
+ * @oldiocb: pointer to the original lpfc command iocb data structure.
+ * @ndlp: pointer to a node-list data structure.
+ *
+ * This routine issues a Request Node Identification Data (RNID) Accept
+ * (ACC) response. It constructs the RNID ACC response command according to
+ * the proper @format and then calls the lpfc_sli_issue_iocb() routine to
+ * issue the response. Note that this command does not need to hold the ndlp
+ * reference count for the callback. So, the ndlp reference count taken by
+ * the lpfc_prep_els_iocb() routine is put back and the context1 field of
+ * IOCB is set to NULL to indicate to the lpfc_els_free_iocb() routine that
+ * there is no ndlp reference available.
+ *
+ * Note that, in lpfc_prep_els_iocb() routine, the reference count of ndlp
+ * will be incremented by 1 for holding the ndlp and the reference to ndlp
+ * will be stored into the context1 field of the IOCB for the completion
+ * callback function. However, for the RNID Accept Response ELS command,
+ * this is undone later by this routine after the IOCB is allocated.
+ *
+ * Return code
+ *   0 - Successfully issued acc rnid response
+ *   1 - Failed to issue acc rnid response
+ **/
 static int
 lpfc_els_rsp_rnid_acc(struct lpfc_vport *vport, uint8_t format,
 		      struct lpfc_iocbq *oldiocb, struct lpfc_nodelist *ndlp)
@@ -2875,6 +3620,25 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_disc_adisc: Issue remaining adisc iocbs to npr nodes of a vport.
+ * @vport: pointer to a host virtual N_Port data structure.
+ *
+ * This routine issues Address Discover (ADISC) ELS commands to those
+ * N_Ports which are in node port recovery state and ADISC has not been issued
+ * for the @vport. Each time an ELS ADISC IOCB is issued by invoking the
+ * lpfc_issue_els_adisc() routine, the per @vport number of discover count
+ * (num_disc_nodes) shall be incremented. If the num_disc_nodes reaches a
+ * pre-configured threshold (cfg_discovery_threads), the @vport fc_flag will
+ * be marked with FC_NLP_MORE bit and the process of issuing remaining ADISC
+ * IOCBs quit for later pick up. On the other hand, after walking through
+ * all the ndlps with the @vport and there is none ADISC IOCB issued, the
+ * @vport fc_flag shall be cleared with FC_NLP_MORE bit indicating there is
+ * no more ADISC need to be sent.
+ *
+ * Return code
+ *    The number of N_Ports with adisc issued.
+ **/
 int
 lpfc_els_disc_adisc(struct lpfc_vport *vport)
 {
@@ -2914,6 +3678,25 @@
 	return sentadisc;
 }
 
+/**
+ * lpfc_els_disc_plogi: Issue plogi for all npr nodes of a vport before adisc.
+ * @vport: pointer to a host virtual N_Port data structure.
+ *
+ * This routine issues Port Login (PLOGI) ELS commands to all the N_Ports
+ * which are in node port recovery state, with a @vport. Each time an ELS
+ * ADISC PLOGI IOCB is issued by invoking the lpfc_issue_els_plogi() routine,
+ * the per @vport number of discover count (num_disc_nodes) shall be
+ * incremented. If the num_disc_nodes reaches a pre-configured threshold
+ * (cfg_discovery_threads), the @vport fc_flag will be marked with FC_NLP_MORE
+ * bit set and quit the process of issuing remaining ADISC PLOGIN IOCBs for
+ * later pick up. On the other hand, after walking through all the ndlps with
+ * the @vport and there is none ADISC PLOGI IOCB issued, the @vport fc_flag
+ * shall be cleared with the FC_NLP_MORE bit indicating there is no more ADISC
+ * PLOGI need to be sent.
+ *
+ * Return code
+ *   The number of N_Ports with plogi issued.
+ **/
 int
 lpfc_els_disc_plogi(struct lpfc_vport *vport)
 {
@@ -2954,6 +3737,15 @@
 	return sentplogi;
 }
 
+/**
+ * lpfc_els_flush_rscn: Clean up any rscn activities with a vport.
+ * @vport: pointer to a host virtual N_Port data structure.
+ *
+ * This routine cleans up any Registration State Change Notification
+ * (RSCN) activity with a @vport. Note that the fc_rscn_flush flag of the
+ * @vport together with the host_lock is used to prevent multiple thread
+ * trying to access the RSCN array on a same @vport at the same time.
+ **/
 void
 lpfc_els_flush_rscn(struct lpfc_vport *vport)
 {
@@ -2984,6 +3776,18 @@
 	vport->fc_rscn_flush = 0;
 }
 
+/**
+ * lpfc_rscn_payload_check: Check whether there is a pending rscn to a did.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @did: remote destination port identifier.
+ *
+ * This routine checks whether there is any pending Registration State
+ * Configuration Notification (RSCN) to a @did on @vport.
+ *
+ * Return code
+ *   None zero - The @did matched with a pending rscn
+ *   0 - not able to match @did with a pending rscn
+ **/
 int
 lpfc_rscn_payload_check(struct lpfc_vport *vport, uint32_t did)
 {
@@ -3053,6 +3857,17 @@
 	return did;
 }
 
+/**
+ * lpfc_rscn_recovery_check: Send recovery event to vport nodes matching rscn
+ * @vport: pointer to a host virtual N_Port data structure.
+ *
+ * This routine sends recovery (NLP_EVT_DEVICE_RECOVERY) event to the
+ * state machine for a @vport's nodes that are with pending RSCN (Registration
+ * State Change Notification).
+ *
+ * Return code
+ *   0 - Successful (currently alway return 0)
+ **/
 static int
 lpfc_rscn_recovery_check(struct lpfc_vport *vport)
 {
@@ -3071,6 +3886,28 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_rcv_rscn: Process an unsolicited rscn iocb.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @ndlp: pointer to a node-list data structure.
+ *
+ * This routine processes an unsolicited RSCN (Registration State Change
+ * Notification) IOCB. First, the payload of the unsolicited RSCN is walked
+ * to invoke fc_host_post_event() routine to the FC transport layer. If the
+ * discover state machine is about to begin discovery, it just accepts the
+ * RSCN and the discovery process will satisfy the RSCN. If this RSCN only
+ * contains N_Port IDs for other vports on this HBA, it just accepts the
+ * RSCN and ignore processing it. If the state machine is in the recovery
+ * state, the fc_rscn_id_list of this @vport is walked and the
+ * lpfc_rscn_recovery_check() routine is invoked to send recovery event for
+ * all nodes that match RSCN payload. Otherwise, the lpfc_els_handle_rscn()
+ * routine is invoked to handle the RSCN event.
+ *
+ * Return code
+ *   0 - Just sent the acc response
+ *   1 - Sent the acc response and waited for name server completion
+ **/
 static int
 lpfc_els_rcv_rscn(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb,
 		  struct lpfc_nodelist *ndlp)
@@ -3130,7 +3967,7 @@
 		if (rscn_id == hba_id) {
 			/* ALL NPortIDs in RSCN are on HBA */
 			lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY,
-					 "0214 Ignore RSCN "
+					 "0219 Ignore RSCN "
 					 "Data: x%x x%x x%x x%x\n",
 					 vport->fc_flag, payload_len,
 					 *lp, vport->fc_rscn_id_cnt);
@@ -3241,6 +4078,22 @@
 	return lpfc_els_handle_rscn(vport);
 }
 
+/**
+ * lpfc_els_handle_rscn: Handle rscn for a vport.
+ * @vport: pointer to a host virtual N_Port data structure.
+ *
+ * This routine handles the Registration State Configuration Notification
+ * (RSCN) for a @vport. If login to NameServer does not exist, a new ndlp shall
+ * be created and a Port Login (PLOGI) to the NameServer is issued. Otherwise,
+ * if the ndlp to NameServer exists, a Common Transport (CT) command to the
+ * NameServer shall be issued. If CT command to the NameServer fails to be
+ * issued, the lpfc_els_flush_rscn() routine shall be invoked to clean up any
+ * RSCN activities with the @vport.
+ *
+ * Return code
+ *   0 - Cleaned up rscn on the @vport
+ *   1 - Wait for plogi to name server before proceed
+ **/
 int
 lpfc_els_handle_rscn(struct lpfc_vport *vport)
 {
@@ -3313,6 +4166,31 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_rcv_flogi: Process an unsolicited flogi iocb.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @ndlp: pointer to a node-list data structure.
+ *
+ * This routine processes Fabric Login (FLOGI) IOCB received as an ELS
+ * unsolicited event. An unsolicited FLOGI can be received in a point-to-
+ * point topology. As an unsolicited FLOGI should not be received in a loop
+ * mode, any unsolicited FLOGI received in loop mode shall be ignored. The
+ * lpfc_check_sparm() routine is invoked to check the parameters in the
+ * unsolicited FLOGI. If parameters validation failed, the routine
+ * lpfc_els_rsp_reject() shall be called with reject reason code set to
+ * LSEXP_SPARM_OPTIONS to reject the FLOGI. Otherwise, the Port WWN in the
+ * FLOGI shall be compared with the Port WWN of the @vport to determine who
+ * will initiate PLOGI. The higher lexicographical value party shall has
+ * higher priority (as the winning port) and will initiate PLOGI and
+ * communicate Port_IDs (Addresses) for both nodes in PLOGI. The result
+ * of this will be marked in the @vport fc_flag field with FC_PT2PT_PLOGI
+ * and then the lpfc_els_rsp_acc() routine is invoked to accept the FLOGI.
+ *
+ * Return code
+ *   0 - Successfully processed the unsolicited flogi
+ *   1 - Failed to process the unsolicited flogi
+ **/
 static int
 lpfc_els_rcv_flogi(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb,
 		   struct lpfc_nodelist *ndlp)
@@ -3402,6 +4280,22 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_rcv_rnid: Process an unsolicited rnid iocb.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @ndlp: pointer to a node-list data structure.
+ *
+ * This routine processes Request Node Identification Data (RNID) IOCB
+ * received as an ELS unsolicited event. Only when the RNID specified format
+ * 0x0 or 0xDF (Topology Discovery Specific Node Identification Data)
+ * present, this routine will invoke the lpfc_els_rsp_rnid_acc() routine to
+ * Accept (ACC) the RNID ELS command. All the other RNID formats are
+ * rejected by invoking the lpfc_els_rsp_reject() routine.
+ *
+ * Return code
+ *   0 - Successfully processed rnid iocb (currently always return 0)
+ **/
 static int
 lpfc_els_rcv_rnid(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb,
 		  struct lpfc_nodelist *ndlp)
@@ -3441,6 +4335,19 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_rcv_lirr: Process an unsolicited lirr iocb.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @ndlp: pointer to a node-list data structure.
+ *
+ * This routine processes a Link Incident Report Registration(LIRR) IOCB
+ * received as an ELS unsolicited event. Currently, this function just invokes
+ * the lpfc_els_rsp_reject() routine to reject the LIRR IOCB unconditionally.
+ *
+ * Return code
+ *   0 - Successfully processed lirr iocb (currently always return 0)
+ **/
 static int
 lpfc_els_rcv_lirr(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb,
 		  struct lpfc_nodelist *ndlp)
@@ -3456,6 +4363,25 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_rsp_rps_acc: Completion callbk func for MBX_READ_LNK_STAT mbox cmd.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * This routine is the completion callback function for the MBX_READ_LNK_STAT
+ * mailbox command. This callback function is to actually send the Accept
+ * (ACC) response to a Read Port Status (RPS) unsolicited IOCB event. It
+ * collects the link statistics from the completion of the MBX_READ_LNK_STAT
+ * mailbox command, constructs the RPS response with the link statistics
+ * collected, and then invokes the lpfc_sli_issue_iocb() routine to send ACC
+ * response to the RPS.
+ *
+ * Note that, in lpfc_prep_els_iocb() routine, the reference count of ndlp
+ * will be incremented by 1 for holding the ndlp and the reference to ndlp
+ * will be stored into the context1 field of the IOCB for the completion
+ * callback function to the RPS Accept Response ELS IOCB command.
+ *
+ **/
 static void
 lpfc_els_rsp_rps_acc(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
 {
@@ -3531,6 +4457,24 @@
 	return;
 }
 
+/**
+ * lpfc_els_rcv_rps: Process an unsolicited rps iocb.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @ndlp: pointer to a node-list data structure.
+ *
+ * This routine processes Read Port Status (RPS) IOCB received as an
+ * ELS unsolicited event. It first checks the remote port state. If the
+ * remote port is not in NLP_STE_UNMAPPED_NODE state or NLP_STE_MAPPED_NODE
+ * state, it invokes the lpfc_els_rsp_reject() routine to send the reject
+ * response. Otherwise, it issue the MBX_READ_LNK_STAT mailbox command
+ * for reading the HBA link statistics. It is for the callback function,
+ * lpfc_els_rsp_rps_acc(), set to the MBX_READ_LNK_STAT mailbox command
+ * to actually sending out RPS Accept (ACC) response.
+ *
+ * Return codes
+ *   0 - Successfully processed rps iocb (currently always return 0)
+ **/
 static int
 lpfc_els_rcv_rps(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb,
 		 struct lpfc_nodelist *ndlp)
@@ -3544,14 +4488,9 @@
 	struct ls_rjt stat;
 
 	if ((ndlp->nlp_state != NLP_STE_UNMAPPED_NODE) &&
-	    (ndlp->nlp_state != NLP_STE_MAPPED_NODE)) {
-		stat.un.b.lsRjtRsvd0 = 0;
-		stat.un.b.lsRjtRsnCode = LSRJT_UNABLE_TPC;
-		stat.un.b.lsRjtRsnCodeExp = LSEXP_CANT_GIVE_DATA;
-		stat.un.b.vendorUnique = 0;
-		lpfc_els_rsp_reject(vport, stat.un.lsRjtError, cmdiocb, ndlp,
-			NULL);
-	}
+	    (ndlp->nlp_state != NLP_STE_MAPPED_NODE))
+		/* reject the unsolicited RPS request and done with it */
+		goto reject_out;
 
 	pcmd = (struct lpfc_dmabuf *) cmdiocb->context2;
 	lp = (uint32_t *) pcmd->virt;
@@ -3584,6 +4523,9 @@
 			mempool_free(mbox, phba->mbox_mem_pool);
 		}
 	}
+
+reject_out:
+	/* issue rejection response */
 	stat.un.b.lsRjtRsvd0 = 0;
 	stat.un.b.lsRjtRsnCode = LSRJT_UNABLE_TPC;
 	stat.un.b.lsRjtRsnCodeExp = LSEXP_CANT_GIVE_DATA;
@@ -3592,6 +4534,25 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_rsp_rpl_acc: Issue an accept rpl els command.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @cmdsize: size of the ELS command.
+ * @oldiocb: pointer to the original lpfc command iocb data structure.
+ * @ndlp: pointer to a node-list data structure.
+ *
+ * This routine issuees an Accept (ACC) Read Port List (RPL) ELS command.
+ * It is to be called by the lpfc_els_rcv_rpl() routine to accept the RPL.
+ *
+ * Note that, in lpfc_prep_els_iocb() routine, the reference count of ndlp
+ * will be incremented by 1 for holding the ndlp and the reference to ndlp
+ * will be stored into the context1 field of the IOCB for the completion
+ * callback function to the RPL Accept Response ELS command.
+ *
+ * Return code
+ *   0 - Successfully issued ACC RPL ELS command
+ *   1 - Failed to issue ACC RPL ELS command
+ **/
 static int
 lpfc_els_rsp_rpl_acc(struct lpfc_vport *vport, uint16_t cmdsize,
 		     struct lpfc_iocbq *oldiocb, struct lpfc_nodelist *ndlp)
@@ -3645,6 +4606,22 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_rcv_rpl: Process an unsolicited rpl iocb.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @ndlp: pointer to a node-list data structure.
+ *
+ * This routine processes Read Port List (RPL) IOCB received as an ELS
+ * unsolicited event. It first checks the remote port state. If the remote
+ * port is not in NLP_STE_UNMAPPED_NODE and NLP_STE_MAPPED_NODE states, it
+ * invokes the lpfc_els_rsp_reject() routine to send reject response.
+ * Otherwise, this routine then invokes the lpfc_els_rsp_rpl_acc() routine
+ * to accept the RPL.
+ *
+ * Return code
+ *   0 - Successfully processed rpl iocb (currently always return 0)
+ **/
 static int
 lpfc_els_rcv_rpl(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb,
 		 struct lpfc_nodelist *ndlp)
@@ -3658,12 +4635,15 @@
 
 	if ((ndlp->nlp_state != NLP_STE_UNMAPPED_NODE) &&
 	    (ndlp->nlp_state != NLP_STE_MAPPED_NODE)) {
+		/* issue rejection response */
 		stat.un.b.lsRjtRsvd0 = 0;
 		stat.un.b.lsRjtRsnCode = LSRJT_UNABLE_TPC;
 		stat.un.b.lsRjtRsnCodeExp = LSEXP_CANT_GIVE_DATA;
 		stat.un.b.vendorUnique = 0;
 		lpfc_els_rsp_reject(vport, stat.un.lsRjtError, cmdiocb, ndlp,
 			NULL);
+		/* rejected the unsolicited RPL request and done with it */
+		return 0;
 	}
 
 	pcmd = (struct lpfc_dmabuf *) cmdiocb->context2;
@@ -3685,6 +4665,30 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_rcv_farp: Process an unsolicited farp request els command.
+ * @vport: pointer to a virtual N_Port data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @ndlp: pointer to a node-list data structure.
+ *
+ * This routine processes Fibre Channel Address Resolution Protocol
+ * (FARP) Request IOCB received as an ELS unsolicited event. Currently,
+ * the lpfc driver only supports matching on WWPN or WWNN for FARP. As such,
+ * FARP_MATCH_PORT flag and FARP_MATCH_NODE flag are checked against the
+ * Match Flag in the FARP request IOCB: if FARP_MATCH_PORT flag is set, the
+ * remote PortName is compared against the FC PortName stored in the @vport
+ * data structure; if FARP_MATCH_NODE flag is set, the remote NodeName is
+ * compared against the FC NodeName stored in the @vport data structure.
+ * If any of these matches and the FARP_REQUEST_FARPR flag is set in the
+ * FARP request IOCB Response Flag, the lpfc_issue_els_farpr() routine is
+ * invoked to send out FARP Response to the remote node. Before sending the
+ * FARP Response, however, the FARP_REQUEST_PLOGI flag is check in the FARP
+ * request IOCB Response Flag and, if it is set, the lpfc_issue_els_plogi()
+ * routine is invoked to log into the remote port first.
+ *
+ * Return code
+ *   0 - Either the FARP Match Mode not supported or successfully processed
+ **/
 static int
 lpfc_els_rcv_farp(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb,
 		  struct lpfc_nodelist *ndlp)
@@ -3744,6 +4748,20 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_rcv_farpr: Process an unsolicited farp response iocb.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @ndlp: pointer to a node-list data structure.
+ *
+ * This routine processes Fibre Channel Address Resolution Protocol
+ * Response (FARPR) IOCB received as an ELS unsolicited event. It simply
+ * invokes the lpfc_els_rsp_acc() routine to the remote node to accept
+ * the FARP response request.
+ *
+ * Return code
+ *   0 - Successfully processed FARPR IOCB (currently always return 0)
+ **/
 static int
 lpfc_els_rcv_farpr(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb,
 		   struct lpfc_nodelist  *ndlp)
@@ -3768,6 +4786,25 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_rcv_fan: Process an unsolicited fan iocb command.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @fan_ndlp: pointer to a node-list data structure.
+ *
+ * This routine processes a Fabric Address Notification (FAN) IOCB
+ * command received as an ELS unsolicited event. The FAN ELS command will
+ * only be processed on a physical port (i.e., the @vport represents the
+ * physical port). The fabric NodeName and PortName from the FAN IOCB are
+ * compared against those in the phba data structure. If any of those is
+ * different, the lpfc_initial_flogi() routine is invoked to initialize
+ * Fabric Login (FLOGI) to the fabric to start the discover over. Otherwise,
+ * if both of those are identical, the lpfc_issue_fabric_reglogin() routine
+ * is invoked to register login to the fabric.
+ *
+ * Return code
+ *   0 - Successfully processed fan iocb (currently always return 0).
+ **/
 static int
 lpfc_els_rcv_fan(struct lpfc_vport *vport, struct lpfc_iocbq *cmdiocb,
 		 struct lpfc_nodelist *fan_ndlp)
@@ -3797,6 +4834,16 @@
 	return 0;
 }
 
+/**
+ * lpfc_els_timeout: Handler funciton to the els timer.
+ * @ptr: holder for the timer function associated data.
+ *
+ * This routine is invoked by the ELS timer after timeout. It posts the ELS
+ * timer timeout event by setting the WORKER_ELS_TMO bit to the work port
+ * event bitmap and then invokes the lpfc_worker_wake_up() routine to wake
+ * up the worker thread. It is for the worker thread to invoke the routine
+ * lpfc_els_timeout_handler() to work on the posted event WORKER_ELS_TMO.
+ **/
 void
 lpfc_els_timeout(unsigned long ptr)
 {
@@ -3816,6 +4863,15 @@
 	return;
 }
 
+/**
+ * lpfc_els_timeout_handler: Process an els timeout event.
+ * @vport: pointer to a virtual N_Port data structure.
+ *
+ * This routine is the actual handler function that processes an ELS timeout
+ * event. It walks the ELS ring to get and abort all the IOCBs (except the
+ * ABORT/CLOSE/FARP/FARPR/FDISC), which are associated with the @vport by
+ * invoking the lpfc_sli_issue_abort_iotag() routine.
+ **/
 void
 lpfc_els_timeout_handler(struct lpfc_vport *vport)
 {
@@ -3886,6 +4942,26 @@
 		mod_timer(&vport->els_tmofunc, jiffies + HZ * timeout);
 }
 
+/**
+ * lpfc_els_flush_cmd: Clean up the outstanding els commands to a vport.
+ * @vport: pointer to a host virtual N_Port data structure.
+ *
+ * This routine is used to clean up all the outstanding ELS commands on a
+ * @vport. It first aborts the @vport by invoking lpfc_fabric_abort_vport()
+ * routine. After that, it walks the ELS transmit queue to remove all the
+ * IOCBs with the @vport other than the QUE_RING and ABORT/CLOSE IOCBs. For
+ * the IOCBs with a non-NULL completion callback function, the callback
+ * function will be invoked with the status set to IOSTAT_LOCAL_REJECT and
+ * un.ulpWord[4] set to IOERR_SLI_ABORTED. For IOCBs with a NULL completion
+ * callback function, the IOCB will simply be released. Finally, it walks
+ * the ELS transmit completion queue to issue an abort IOCB to any transmit
+ * completion queue IOCB that is associated with the @vport and is not
+ * an IOCB from libdfc (i.e., the management plane IOCBs that are not
+ * part of the discovery state machine) out to HBA by invoking the
+ * lpfc_sli_issue_abort_iotag() routine. Note that this function issues the
+ * abort IOCB to any transmit completion queueed IOCB, it does not guarantee
+ * the IOCBs are aborted when this function returns.
+ **/
 void
 lpfc_els_flush_cmd(struct lpfc_vport *vport)
 {
@@ -3948,6 +5024,23 @@
 	return;
 }
 
+/**
+ * lpfc_els_flush_all_cmd: Clean up all the outstanding els commands to a HBA.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine is used to clean up all the outstanding ELS commands on a
+ * @phba. It first aborts the @phba by invoking the lpfc_fabric_abort_hba()
+ * routine. After that, it walks the ELS transmit queue to remove all the
+ * IOCBs to the @phba other than the QUE_RING and ABORT/CLOSE IOCBs. For
+ * the IOCBs with the completion callback function associated, the callback
+ * function will be invoked with the status set to IOSTAT_LOCAL_REJECT and
+ * un.ulpWord[4] set to IOERR_SLI_ABORTED. For IOCBs without the completion
+ * callback function associated, the IOCB will simply be released. Finally,
+ * it walks the ELS transmit completion queue to issue an abort IOCB to any
+ * transmit completion queue IOCB that is not an IOCB from libdfc (i.e., the
+ * management plane IOCBs that are not part of the discovery state machine)
+ * out to HBA by invoking the lpfc_sli_issue_abort_iotag() routine.
+ **/
 void
 lpfc_els_flush_all_cmd(struct lpfc_hba  *phba)
 {
@@ -3992,6 +5085,130 @@
 	return;
 }
 
+/**
+ * lpfc_send_els_failure_event: Posts an ELS command failure event.
+ * @phba: Pointer to hba context object.
+ * @cmdiocbp: Pointer to command iocb which reported error.
+ * @rspiocbp: Pointer to response iocb which reported error.
+ *
+ * This function sends an event when there is an ELS command
+ * failure.
+ **/
+void
+lpfc_send_els_failure_event(struct lpfc_hba *phba,
+			struct lpfc_iocbq *cmdiocbp,
+			struct lpfc_iocbq *rspiocbp)
+{
+	struct lpfc_vport *vport = cmdiocbp->vport;
+	struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
+	struct lpfc_lsrjt_event lsrjt_event;
+	struct lpfc_fabric_event_header fabric_event;
+	struct ls_rjt stat;
+	struct lpfc_nodelist *ndlp;
+	uint32_t *pcmd;
+
+	ndlp = cmdiocbp->context1;
+	if (!ndlp || !NLP_CHK_NODE_ACT(ndlp))
+		return;
+
+	if (rspiocbp->iocb.ulpStatus == IOSTAT_LS_RJT) {
+		lsrjt_event.header.event_type = FC_REG_ELS_EVENT;
+		lsrjt_event.header.subcategory = LPFC_EVENT_LSRJT_RCV;
+		memcpy(lsrjt_event.header.wwpn, &ndlp->nlp_portname,
+			sizeof(struct lpfc_name));
+		memcpy(lsrjt_event.header.wwnn, &ndlp->nlp_nodename,
+			sizeof(struct lpfc_name));
+		pcmd = (uint32_t *) (((struct lpfc_dmabuf *)
+			cmdiocbp->context2)->virt);
+		lsrjt_event.command = *pcmd;
+		stat.un.lsRjtError = be32_to_cpu(rspiocbp->iocb.un.ulpWord[4]);
+		lsrjt_event.reason_code = stat.un.b.lsRjtRsnCode;
+		lsrjt_event.explanation = stat.un.b.lsRjtRsnCodeExp;
+		fc_host_post_vendor_event(shost,
+			fc_get_event_number(),
+			sizeof(lsrjt_event),
+			(char *)&lsrjt_event,
+			SCSI_NL_VID_TYPE_PCI | PCI_VENDOR_ID_EMULEX);
+		return;
+	}
+	if ((rspiocbp->iocb.ulpStatus == IOSTAT_NPORT_BSY) ||
+		(rspiocbp->iocb.ulpStatus == IOSTAT_FABRIC_BSY)) {
+		fabric_event.event_type = FC_REG_FABRIC_EVENT;
+		if (rspiocbp->iocb.ulpStatus == IOSTAT_NPORT_BSY)
+			fabric_event.subcategory = LPFC_EVENT_PORT_BUSY;
+		else
+			fabric_event.subcategory = LPFC_EVENT_FABRIC_BUSY;
+		memcpy(fabric_event.wwpn, &ndlp->nlp_portname,
+			sizeof(struct lpfc_name));
+		memcpy(fabric_event.wwnn, &ndlp->nlp_nodename,
+			sizeof(struct lpfc_name));
+		fc_host_post_vendor_event(shost,
+			fc_get_event_number(),
+			sizeof(fabric_event),
+			(char *)&fabric_event,
+			SCSI_NL_VID_TYPE_PCI | PCI_VENDOR_ID_EMULEX);
+		return;
+	}
+
+}
+
+/**
+ * lpfc_send_els_event: Posts unsolicited els event.
+ * @vport: Pointer to vport object.
+ * @ndlp: Pointer FC node object.
+ * @cmd: ELS command code.
+ *
+ * This function posts an event when there is an incoming
+ * unsolicited ELS command.
+ **/
+static void
+lpfc_send_els_event(struct lpfc_vport *vport,
+		    struct lpfc_nodelist *ndlp,
+		    uint32_t cmd)
+{
+	struct lpfc_els_event_header els_data;
+	struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
+
+	els_data.event_type = FC_REG_ELS_EVENT;
+	switch (cmd) {
+	case ELS_CMD_PLOGI:
+		els_data.subcategory = LPFC_EVENT_PLOGI_RCV;
+		break;
+	case ELS_CMD_PRLO:
+		els_data.subcategory = LPFC_EVENT_PRLO_RCV;
+		break;
+	case ELS_CMD_ADISC:
+		els_data.subcategory = LPFC_EVENT_ADISC_RCV;
+		break;
+	default:
+		return;
+	}
+	memcpy(els_data.wwpn, &ndlp->nlp_portname, sizeof(struct lpfc_name));
+	memcpy(els_data.wwnn, &ndlp->nlp_nodename, sizeof(struct lpfc_name));
+	fc_host_post_vendor_event(shost,
+		fc_get_event_number(),
+		sizeof(els_data),
+		(char *)&els_data,
+		SCSI_NL_VID_TYPE_PCI | PCI_VENDOR_ID_EMULEX);
+
+	return;
+}
+
+
+/**
+ * lpfc_els_unsol_buffer: Process an unsolicited event data buffer.
+ * @phba: pointer to lpfc hba data structure.
+ * @pring: pointer to a SLI ring.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @elsiocb: pointer to lpfc els command iocb data structure.
+ *
+ * This routine is used for processing the IOCB associated with a unsolicited
+ * event. It first determines whether there is an existing ndlp that matches
+ * the DID from the unsolicited IOCB. If not, it will create a new one with
+ * the DID from the unsolicited IOCB. The ELS command from the unsolicited
+ * IOCB is then used to invoke the proper routine and to set up proper state
+ * of the discovery state machine.
+ **/
 static void
 lpfc_els_unsol_buffer(struct lpfc_hba *phba, struct lpfc_sli_ring *pring,
 		      struct lpfc_vport *vport, struct lpfc_iocbq *elsiocb)
@@ -4059,8 +5276,6 @@
 	}
 
 	phba->fc_stat.elsRcvFrame++;
-	if (elsiocb->context1)
-		lpfc_nlp_put(elsiocb->context1);
 
 	elsiocb->context1 = lpfc_nlp_get(ndlp);
 	elsiocb->vport = vport;
@@ -4081,6 +5296,7 @@
 		phba->fc_stat.elsRcvPLOGI++;
 		ndlp = lpfc_plogi_confirm_nport(phba, payload, ndlp);
 
+		lpfc_send_els_event(vport, ndlp, cmd);
 		if (vport->port_state < LPFC_DISC_AUTH) {
 			if (!(phba->pport->fc_flag & FC_PT2PT) ||
 				(phba->pport->fc_flag & FC_PT2PT_PLOGI)) {
@@ -4130,6 +5346,7 @@
 			did, vport->port_state, ndlp->nlp_flag);
 
 		phba->fc_stat.elsRcvPRLO++;
+		lpfc_send_els_event(vport, ndlp, cmd);
 		if (vport->port_state < LPFC_DISC_AUTH) {
 			rjt_err = LSRJT_UNABLE_TPC;
 			break;
@@ -4147,6 +5364,7 @@
 			"RCV ADISC:       did:x%x/ste:x%x flg:x%x",
 			did, vport->port_state, ndlp->nlp_flag);
 
+		lpfc_send_els_event(vport, ndlp, cmd);
 		phba->fc_stat.elsRcvADISC++;
 		if (vport->port_state < LPFC_DISC_AUTH) {
 			rjt_err = LSRJT_UNABLE_TPC;
@@ -4270,6 +5488,8 @@
 			NULL);
 	}
 
+	lpfc_nlp_put(elsiocb->context1);
+	elsiocb->context1 = NULL;
 	return;
 
 dropit:
@@ -4282,6 +5502,19 @@
 	phba->fc_stat.elsRcvDrop++;
 }
 
+/**
+ * lpfc_find_vport_by_vpid: Find a vport on a HBA through vport identifier.
+ * @phba: pointer to lpfc hba data structure.
+ * @vpi: host virtual N_Port identifier.
+ *
+ * This routine finds a vport on a HBA (referred by @phba) through a
+ * @vpi. The function walks the HBA's vport list and returns the address
+ * of the vport with the matching @vpi.
+ *
+ * Return code
+ *    NULL - No vport with the matching @vpi found
+ *    Otherwise - Address to the vport with the matching @vpi.
+ **/
 static struct lpfc_vport *
 lpfc_find_vport_by_vpid(struct lpfc_hba *phba, uint16_t vpi)
 {
@@ -4299,6 +5532,18 @@
 	return NULL;
 }
 
+/**
+ * lpfc_els_unsol_event: Process an unsolicited event from an els sli ring.
+ * @phba: pointer to lpfc hba data structure.
+ * @pring: pointer to a SLI ring.
+ * @elsiocb: pointer to lpfc els iocb data structure.
+ *
+ * This routine is used to process an unsolicited event received from a SLI
+ * (Service Level Interface) ring. The actual processing of the data buffer
+ * associated with the unsolicited event is done by invoking the routine
+ * lpfc_els_unsol_buffer() after properly set up the iocb buffer from the
+ * SLI ring on which the unsolicited event was received.
+ **/
 void
 lpfc_els_unsol_event(struct lpfc_hba *phba, struct lpfc_sli_ring *pring,
 		     struct lpfc_iocbq *elsiocb)
@@ -4309,6 +5554,7 @@
 	struct lpfc_dmabuf *bdeBuf1 = elsiocb->context2;
 	struct lpfc_dmabuf *bdeBuf2 = elsiocb->context3;
 
+	elsiocb->context1 = NULL;
 	elsiocb->context2 = NULL;
 	elsiocb->context3 = NULL;
 
@@ -4356,8 +5602,6 @@
 	 * The different unsolicited event handlers would tell us
 	 * if they are done with "mp" by setting context2 to NULL.
 	 */
-	lpfc_nlp_put(elsiocb->context1);
-	elsiocb->context1 = NULL;
 	if (elsiocb->context2) {
 		lpfc_in_buf_free(phba, (struct lpfc_dmabuf *)elsiocb->context2);
 		elsiocb->context2 = NULL;
@@ -4376,6 +5620,19 @@
 	}
 }
 
+/**
+ * lpfc_do_scr_ns_plogi: Issue a plogi to the name server for scr.
+ * @phba: pointer to lpfc hba data structure.
+ * @vport: pointer to a virtual N_Port data structure.
+ *
+ * This routine issues a Port Login (PLOGI) to the Name Server with
+ * State Change Request (SCR) for a @vport. This routine will create an
+ * ndlp for the Name Server associated to the @vport if such node does
+ * not already exist. The PLOGI to Name Server is issued by invoking the
+ * lpfc_issue_els_plogi() routine. If Fabric-Device Management Interface
+ * (FDMI) is configured to the @vport, a FDMI node will be created and
+ * the PLOGI to FDMI is issued by invoking lpfc_issue_els_plogi() routine.
+ **/
 void
 lpfc_do_scr_ns_plogi(struct lpfc_hba *phba, struct lpfc_vport *vport)
 {
@@ -4434,6 +5691,18 @@
 	return;
 }
 
+/**
+ * lpfc_cmpl_reg_new_vport: Completion callback function to register new vport.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * This routine is the completion callback function to register new vport
+ * mailbox command. If the new vport mailbox command completes successfully,
+ * the fabric registration login shall be performed on physical port (the
+ * new vport created is actually a physical port, with VPI 0) or the port
+ * login to Name Server for State Change Request (SCR) will be performed
+ * on virtual port (real virtual port, with VPI greater than 0).
+ **/
 static void
 lpfc_cmpl_reg_new_vport(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
 {
@@ -4491,6 +5760,15 @@
 	return;
 }
 
+/**
+ * lpfc_register_new_vport: Register a new vport with a HBA.
+ * @phba: pointer to lpfc hba data structure.
+ * @vport: pointer to a host virtual N_Port data structure.
+ * @ndlp: pointer to a node-list data structure.
+ *
+ * This routine registers the @vport as a new virtual port with a HBA.
+ * It is done through a registering vpi mailbox command.
+ **/
 static void
 lpfc_register_new_vport(struct lpfc_hba *phba, struct lpfc_vport *vport,
 			struct lpfc_nodelist *ndlp)
@@ -4531,6 +5809,26 @@
 	return;
 }
 
+/**
+ * lpfc_cmpl_els_fdisc: Completion function for fdisc iocb command.
+ * @phba: pointer to lpfc hba data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @rspiocb: pointer to lpfc response iocb data structure.
+ *
+ * This routine is the completion callback function to a Fabric Discover
+ * (FDISC) ELS command. Since all the FDISC ELS commands are issued
+ * single threaded, each FDISC completion callback function will reset
+ * the discovery timer for all vports such that the timers will not get
+ * unnecessary timeout. The function checks the FDISC IOCB status. If error
+ * detected, the vport will be set to FC_VPORT_FAILED state. Otherwise,the
+ * vport will set to FC_VPORT_ACTIVE state. It then checks whether the DID
+ * assigned to the vport has been changed with the completion of the FDISC
+ * command. If so, both RPI (Remote Port Index) and VPI (Virtual Port Index)
+ * are unregistered from the HBA, and then the lpfc_register_new_vport()
+ * routine is invoked to register new vport with the HBA. Otherwise, the
+ * lpfc_do_scr_ns_plogi() routine is invoked to issue a PLOGI to the Name
+ * Server for State Change Request (SCR).
+ **/
 static void
 lpfc_cmpl_els_fdisc(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb,
 		    struct lpfc_iocbq *rspiocb)
@@ -4565,58 +5863,80 @@
 			goto out;
 		/* FDISC failed */
 		lpfc_printf_vlog(vport, KERN_ERR, LOG_ELS,
-				 "0124 FDISC failed. (%d/%d)\n",
+				 "0126 FDISC failed. (%d/%d)\n",
 				 irsp->ulpStatus, irsp->un.ulpWord[4]);
+		goto fdisc_failed;
+	}
 		if (vport->fc_vport->vport_state == FC_VPORT_INITIALIZING)
 			lpfc_vport_set_state(vport, FC_VPORT_FAILED);
 		lpfc_nlp_put(ndlp);
 		/* giving up on FDISC. Cancel discovery timer */
 		lpfc_can_disctmo(vport);
-	} else {
-		spin_lock_irq(shost->host_lock);
-		vport->fc_flag |= FC_FABRIC;
-		if (vport->phba->fc_topology == TOPOLOGY_LOOP)
-			vport->fc_flag |=  FC_PUBLIC_LOOP;
-		spin_unlock_irq(shost->host_lock);
+	spin_lock_irq(shost->host_lock);
+	vport->fc_flag |= FC_FABRIC;
+	if (vport->phba->fc_topology == TOPOLOGY_LOOP)
+		vport->fc_flag |=  FC_PUBLIC_LOOP;
+	spin_unlock_irq(shost->host_lock);
 
-		vport->fc_myDID = irsp->un.ulpWord[4] & Mask_DID;
-		lpfc_vport_set_state(vport, FC_VPORT_ACTIVE);
-		if ((vport->fc_prevDID != vport->fc_myDID) &&
-			!(vport->fc_flag & FC_VPORT_NEEDS_REG_VPI)) {
-			/* If our NportID changed, we need to ensure all
-			 * remaining NPORTs get unreg_login'ed so we can
-			 * issue unreg_vpi.
-			 */
-			list_for_each_entry_safe(np, next_np,
-				&vport->fc_nodes, nlp_listp) {
-				if (!NLP_CHK_NODE_ACT(ndlp) ||
-				    (np->nlp_state != NLP_STE_NPR_NODE) ||
-				    !(np->nlp_flag & NLP_NPR_ADISC))
-					continue;
-				spin_lock_irq(shost->host_lock);
-				np->nlp_flag &= ~NLP_NPR_ADISC;
-				spin_unlock_irq(shost->host_lock);
-				lpfc_unreg_rpi(vport, np);
-			}
-			lpfc_mbx_unreg_vpi(vport);
+	vport->fc_myDID = irsp->un.ulpWord[4] & Mask_DID;
+	lpfc_vport_set_state(vport, FC_VPORT_ACTIVE);
+	if ((vport->fc_prevDID != vport->fc_myDID) &&
+		!(vport->fc_flag & FC_VPORT_NEEDS_REG_VPI)) {
+		/* If our NportID changed, we need to ensure all
+		 * remaining NPORTs get unreg_login'ed so we can
+		 * issue unreg_vpi.
+		 */
+		list_for_each_entry_safe(np, next_np,
+			&vport->fc_nodes, nlp_listp) {
+			if (!NLP_CHK_NODE_ACT(ndlp) ||
+			    (np->nlp_state != NLP_STE_NPR_NODE) ||
+			    !(np->nlp_flag & NLP_NPR_ADISC))
+				continue;
 			spin_lock_irq(shost->host_lock);
-			vport->fc_flag |= FC_VPORT_NEEDS_REG_VPI;
+			np->nlp_flag &= ~NLP_NPR_ADISC;
 			spin_unlock_irq(shost->host_lock);
+			lpfc_unreg_rpi(vport, np);
 		}
-
-		if (vport->fc_flag & FC_VPORT_NEEDS_REG_VPI)
-			lpfc_register_new_vport(phba, vport, ndlp);
-		else
-			lpfc_do_scr_ns_plogi(phba, vport);
-
-		/* Unconditionaly kick off releasing fabric node for vports */
-		lpfc_nlp_put(ndlp);
+		lpfc_mbx_unreg_vpi(vport);
+		spin_lock_irq(shost->host_lock);
+		vport->fc_flag |= FC_VPORT_NEEDS_REG_VPI;
+		spin_unlock_irq(shost->host_lock);
 	}
 
+	if (vport->fc_flag & FC_VPORT_NEEDS_REG_VPI)
+		lpfc_register_new_vport(phba, vport, ndlp);
+	else
+		lpfc_do_scr_ns_plogi(phba, vport);
+	goto out;
+fdisc_failed:
+	lpfc_vport_set_state(vport, FC_VPORT_FAILED);
+	/* Cancel discovery timer */
+	lpfc_can_disctmo(vport);
+	lpfc_nlp_put(ndlp);
 out:
 	lpfc_els_free_iocb(phba, cmdiocb);
 }
 
+/**
+ * lpfc_issue_els_fdisc: Issue a fdisc iocb command.
+ * @vport: pointer to a virtual N_Port data structure.
+ * @ndlp: pointer to a node-list data structure.
+ * @retry: number of retries to the command IOCB.
+ *
+ * This routine prepares and issues a Fabric Discover (FDISC) IOCB to
+ * a remote node (@ndlp) off a @vport. It uses the lpfc_issue_fabric_iocb()
+ * routine to issue the IOCB, which makes sure only one outstanding fabric
+ * IOCB will be sent off HBA at any given time.
+ *
+ * Note that, in lpfc_prep_els_iocb() routine, the reference count of ndlp
+ * will be incremented by 1 for holding the ndlp and the reference to ndlp
+ * will be stored into the context1 field of the IOCB for the completion
+ * callback function to the FDISC ELS command.
+ *
+ * Return code
+ *   0 - Successfully issued fdisc iocb command
+ *   1 - Failed to issue fdisc iocb command
+ **/
 static int
 lpfc_issue_els_fdisc(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp,
 		     uint8_t retry)
@@ -4691,6 +6011,20 @@
 	return 0;
 }
 
+/**
+ * lpfc_cmpl_els_npiv_logo: Completion function with vport logo.
+ * @phba: pointer to lpfc hba data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @rspiocb: pointer to lpfc response iocb data structure.
+ *
+ * This routine is the completion callback function to the issuing of a LOGO
+ * ELS command off a vport. It frees the command IOCB and then decrement the
+ * reference count held on ndlp for this completion function, indicating that
+ * the reference to the ndlp is no long needed. Note that the
+ * lpfc_els_free_iocb() routine decrements the ndlp reference held for this
+ * callback function and an additional explicit ndlp reference decrementation
+ * will trigger the actual release of the ndlp.
+ **/
 static void
 lpfc_cmpl_els_npiv_logo(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb,
 			struct lpfc_iocbq *rspiocb)
@@ -4712,6 +6046,22 @@
 	lpfc_nlp_put(ndlp);
 }
 
+/**
+ * lpfc_issue_els_npiv_logo: Issue a logo off a vport.
+ * @vport: pointer to a virtual N_Port data structure.
+ * @ndlp: pointer to a node-list data structure.
+ *
+ * This routine issues a LOGO ELS command to an @ndlp off a @vport.
+ *
+ * Note that, in lpfc_prep_els_iocb() routine, the reference count of ndlp
+ * will be incremented by 1 for holding the ndlp and the reference to ndlp
+ * will be stored into the context1 field of the IOCB for the completion
+ * callback function to the LOGO ELS command.
+ *
+ * Return codes
+ *   0 - Successfully issued logo off the @vport
+ *   1 - Failed to issue logo off the @vport
+ **/
 int
 lpfc_issue_els_npiv_logo(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp)
 {
@@ -4757,6 +6107,17 @@
 	return 0;
 }
 
+/**
+ * lpfc_fabric_block_timeout: Handler function to the fabric block timer.
+ * @ptr: holder for the timer function associated data.
+ *
+ * This routine is invoked by the fabric iocb block timer after
+ * timeout. It posts the fabric iocb block timeout event by setting the
+ * WORKER_FABRIC_BLOCK_TMO bit to work port event bitmap and then invokes
+ * lpfc_worker_wake_up() routine to wake up the worker thread. It is for
+ * the worker thread to invoke the lpfc_unblock_fabric_iocbs() on the
+ * posted event WORKER_FABRIC_BLOCK_TMO.
+ **/
 void
 lpfc_fabric_block_timeout(unsigned long ptr)
 {
@@ -4775,6 +6136,16 @@
 	return;
 }
 
+/**
+ * lpfc_resume_fabric_iocbs: Issue a fabric iocb from driver internal list.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine issues one fabric iocb from the driver internal list to
+ * the HBA. It first checks whether it's ready to issue one fabric iocb to
+ * the HBA (whether there is no outstanding fabric iocb). If so, it shall
+ * remove one pending fabric iocb from the driver internal list and invokes
+ * lpfc_sli_issue_iocb() routine to send the fabric iocb to the HBA.
+ **/
 static void
 lpfc_resume_fabric_iocbs(struct lpfc_hba *phba)
 {
@@ -4824,6 +6195,15 @@
 	return;
 }
 
+/**
+ * lpfc_unblock_fabric_iocbs: Unblock issuing fabric iocb command.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine unblocks the  issuing fabric iocb command. The function
+ * will clear the fabric iocb block bit and then invoke the routine
+ * lpfc_resume_fabric_iocbs() to issue one of the pending fabric iocb
+ * from the driver internal fabric iocb list.
+ **/
 void
 lpfc_unblock_fabric_iocbs(struct lpfc_hba *phba)
 {
@@ -4833,6 +6213,15 @@
 	return;
 }
 
+/**
+ * lpfc_block_fabric_iocbs: Block issuing fabric iocb command.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine blocks the issuing fabric iocb for a specified amount of
+ * time (currently 100 ms). This is done by set the fabric iocb block bit
+ * and set up a timeout timer for 100ms. When the block bit is set, no more
+ * fabric iocb will be issued out of the HBA.
+ **/
 static void
 lpfc_block_fabric_iocbs(struct lpfc_hba *phba)
 {
@@ -4846,6 +6235,19 @@
 	return;
 }
 
+/**
+ * lpfc_cmpl_fabric_iocb: Completion callback function for fabric iocb.
+ * @phba: pointer to lpfc hba data structure.
+ * @cmdiocb: pointer to lpfc command iocb data structure.
+ * @rspiocb: pointer to lpfc response iocb data structure.
+ *
+ * This routine is the callback function that is put to the fabric iocb's
+ * callback function pointer (iocb->iocb_cmpl). The original iocb's callback
+ * function pointer has been stored in iocb->fabric_iocb_cmpl. This callback
+ * function first restores and invokes the original iocb's callback function
+ * and then invokes the lpfc_resume_fabric_iocbs() routine to issue the next
+ * fabric bound iocb from the driver internal fabric iocb list onto the wire.
+ **/
 static void
 lpfc_cmpl_fabric_iocb(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb,
 	struct lpfc_iocbq *rspiocb)
@@ -4892,6 +6294,30 @@
 	}
 }
 
+/**
+ * lpfc_issue_fabric_iocb: Issue a fabric iocb command.
+ * @phba: pointer to lpfc hba data structure.
+ * @iocb: pointer to lpfc command iocb data structure.
+ *
+ * This routine is used as the top-level API for issuing a fabric iocb command
+ * such as FLOGI and FDISC. To accommodate certain switch fabric, this driver
+ * function makes sure that only one fabric bound iocb will be outstanding at
+ * any given time. As such, this function will first check to see whether there
+ * is already an outstanding fabric iocb on the wire. If so, it will put the
+ * newly issued iocb onto the driver internal fabric iocb list, waiting to be
+ * issued later. Otherwise, it will issue the iocb on the wire and update the
+ * fabric iocb count it indicate that there is one fabric iocb on the wire.
+ *
+ * Note, this implementation has a potential sending out fabric IOCBs out of
+ * order. The problem is caused by the construction of the "ready" boolen does
+ * not include the condition that the internal fabric IOCB list is empty. As
+ * such, it is possible a fabric IOCB issued by this routine might be "jump"
+ * ahead of the fabric IOCBs in the internal list.
+ *
+ * Return code
+ *   IOCB_SUCCESS - either fabric iocb put on the list or issued successfully
+ *   IOCB_ERROR - failed to issue fabric iocb
+ **/
 static int
 lpfc_issue_fabric_iocb(struct lpfc_hba *phba, struct lpfc_iocbq *iocb)
 {
@@ -4937,7 +6363,17 @@
 	return ret;
 }
 
-
+/**
+ * lpfc_fabric_abort_vport: Abort a vport's iocbs from driver fabric iocb list.
+ * @vport: pointer to a virtual N_Port data structure.
+ *
+ * This routine aborts all the IOCBs associated with a @vport from the
+ * driver internal fabric IOCB list. The list contains fabric IOCBs to be
+ * issued to the ELS IOCB ring. This abort function walks the fabric IOCB
+ * list, removes each IOCB associated with the @vport off the list, set the
+ * status feild to IOSTAT_LOCAL_REJECT, and invokes the callback function
+ * associated with the IOCB.
+ **/
 static void lpfc_fabric_abort_vport(struct lpfc_vport *vport)
 {
 	LIST_HEAD(completions);
@@ -4967,6 +6403,17 @@
 	}
 }
 
+/**
+ * lpfc_fabric_abort_nport: Abort a ndlp's iocbs from driver fabric iocb list.
+ * @ndlp: pointer to a node-list data structure.
+ *
+ * This routine aborts all the IOCBs associated with an @ndlp from the
+ * driver internal fabric IOCB list. The list contains fabric IOCBs to be
+ * issued to the ELS IOCB ring. This abort function walks the fabric IOCB
+ * list, removes each IOCB associated with the @ndlp off the list, set the
+ * status feild to IOSTAT_LOCAL_REJECT, and invokes the callback function
+ * associated with the IOCB.
+ **/
 void lpfc_fabric_abort_nport(struct lpfc_nodelist *ndlp)
 {
 	LIST_HEAD(completions);
@@ -4996,6 +6443,17 @@
 	}
 }
 
+/**
+ * lpfc_fabric_abort_hba: Abort all iocbs on driver fabric iocb list.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine aborts all the IOCBs currently on the driver internal
+ * fabric IOCB list. The list contains fabric IOCBs to be issued to the ELS
+ * IOCB ring. This function takes the entire IOCB list off the fabric IOCB
+ * list, removes IOCBs off the list, set the status feild to
+ * IOSTAT_LOCAL_REJECT, and invokes the callback function associated with
+ * the IOCB.
+ **/
 void lpfc_fabric_abort_hba(struct lpfc_hba *phba)
 {
 	LIST_HEAD(completions);
diff --git a/drivers/scsi/lpfc/lpfc_hbadisc.c b/drivers/scsi/lpfc/lpfc_hbadisc.c
index a98d11b..a1a70d9 100644
--- a/drivers/scsi/lpfc/lpfc_hbadisc.c
+++ b/drivers/scsi/lpfc/lpfc_hbadisc.c
@@ -30,6 +30,7 @@
 #include <scsi/scsi_transport_fc.h>
 
 #include "lpfc_hw.h"
+#include "lpfc_nl.h"
 #include "lpfc_disc.h"
 #include "lpfc_sli.h"
 #include "lpfc_scsi.h"
@@ -88,14 +89,6 @@
 			&phba->sli.ring[phba->sli.fcp_ring],
 			ndlp->nlp_sid, 0, LPFC_CTX_TGT);
 	}
-
-	/*
-	 * A device is normally blocked for rediscovery and unblocked when
-	 * devloss timeout happens.  In case a vport is removed or driver
-	 * unloaded before devloss timeout happens, we need to unblock here.
-	 */
-	scsi_target_unblock(&rport->dev);
-	return;
 }
 
 /*
@@ -215,8 +208,16 @@
 		return;
 	}
 
-	if (ndlp->nlp_state == NLP_STE_MAPPED_NODE)
+	if (ndlp->nlp_state == NLP_STE_MAPPED_NODE) {
+		lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY,
+				 "0284 Devloss timeout Ignored on "
+				 "WWPN %x:%x:%x:%x:%x:%x:%x:%x "
+				 "NPort x%x\n",
+				 *name, *(name+1), *(name+2), *(name+3),
+				 *(name+4), *(name+5), *(name+6), *(name+7),
+				 ndlp->nlp_DID);
 		return;
+	}
 
 	if (ndlp->nlp_type & NLP_FABRIC) {
 		/* We will clean up these Nodes in linkup */
@@ -237,8 +238,6 @@
 		lpfc_sli_abort_iocb(vport, &phba->sli.ring[phba->sli.fcp_ring],
 				    ndlp->nlp_sid, 0, LPFC_CTX_TGT);
 	}
-	if (vport->load_flag & FC_UNLOADING)
-		warn_on = 0;
 
 	if (warn_on) {
 		lpfc_printf_vlog(vport, KERN_ERR, LOG_DISCOVERY,
@@ -276,6 +275,124 @@
 		lpfc_disc_state_machine(vport, ndlp, NULL, NLP_EVT_DEVICE_RM);
 }
 
+/**
+ * lpfc_alloc_fast_evt: Allocates data structure for posting event.
+ * @phba: Pointer to hba context object.
+ *
+ * This function is called from the functions which need to post
+ * events from interrupt context. This function allocates data
+ * structure required for posting event. It also keeps track of
+ * number of events pending and prevent event storm when there are
+ * too many events.
+ **/
+struct lpfc_fast_path_event *
+lpfc_alloc_fast_evt(struct lpfc_hba *phba) {
+	struct lpfc_fast_path_event *ret;
+
+	/* If there are lot of fast event do not exhaust memory due to this */
+	if (atomic_read(&phba->fast_event_count) > LPFC_MAX_EVT_COUNT)
+		return NULL;
+
+	ret = kzalloc(sizeof(struct lpfc_fast_path_event),
+			GFP_ATOMIC);
+	if (ret)
+		atomic_inc(&phba->fast_event_count);
+	INIT_LIST_HEAD(&ret->work_evt.evt_listp);
+	ret->work_evt.evt = LPFC_EVT_FASTPATH_MGMT_EVT;
+	return ret;
+}
+
+/**
+ * lpfc_free_fast_evt: Frees event data structure.
+ * @phba: Pointer to hba context object.
+ * @evt:  Event object which need to be freed.
+ *
+ * This function frees the data structure required for posting
+ * events.
+ **/
+void
+lpfc_free_fast_evt(struct lpfc_hba *phba,
+		struct lpfc_fast_path_event *evt) {
+
+	atomic_dec(&phba->fast_event_count);
+	kfree(evt);
+}
+
+/**
+ * lpfc_send_fastpath_evt: Posts events generated from fast path.
+ * @phba: Pointer to hba context object.
+ * @evtp: Event data structure.
+ *
+ * This function is called from worker thread, when the interrupt
+ * context need to post an event. This function posts the event
+ * to fc transport netlink interface.
+ **/
+static void
+lpfc_send_fastpath_evt(struct lpfc_hba *phba,
+		struct lpfc_work_evt *evtp)
+{
+	unsigned long evt_category, evt_sub_category;
+	struct lpfc_fast_path_event *fast_evt_data;
+	char *evt_data;
+	uint32_t evt_data_size;
+	struct Scsi_Host *shost;
+
+	fast_evt_data = container_of(evtp, struct lpfc_fast_path_event,
+		work_evt);
+
+	evt_category = (unsigned long) fast_evt_data->un.fabric_evt.event_type;
+	evt_sub_category = (unsigned long) fast_evt_data->un.
+			fabric_evt.subcategory;
+	shost = lpfc_shost_from_vport(fast_evt_data->vport);
+	if (evt_category == FC_REG_FABRIC_EVENT) {
+		if (evt_sub_category == LPFC_EVENT_FCPRDCHKERR) {
+			evt_data = (char *) &fast_evt_data->un.read_check_error;
+			evt_data_size = sizeof(fast_evt_data->un.
+				read_check_error);
+		} else if ((evt_sub_category == LPFC_EVENT_FABRIC_BUSY) ||
+			(evt_sub_category == IOSTAT_NPORT_BSY)) {
+			evt_data = (char *) &fast_evt_data->un.fabric_evt;
+			evt_data_size = sizeof(fast_evt_data->un.fabric_evt);
+		} else {
+			lpfc_free_fast_evt(phba, fast_evt_data);
+			return;
+		}
+	} else if (evt_category == FC_REG_SCSI_EVENT) {
+		switch (evt_sub_category) {
+		case LPFC_EVENT_QFULL:
+		case LPFC_EVENT_DEVBSY:
+			evt_data = (char *) &fast_evt_data->un.scsi_evt;
+			evt_data_size = sizeof(fast_evt_data->un.scsi_evt);
+			break;
+		case LPFC_EVENT_CHECK_COND:
+			evt_data = (char *) &fast_evt_data->un.check_cond_evt;
+			evt_data_size =  sizeof(fast_evt_data->un.
+				check_cond_evt);
+			break;
+		case LPFC_EVENT_VARQUEDEPTH:
+			evt_data = (char *) &fast_evt_data->un.queue_depth_evt;
+			evt_data_size = sizeof(fast_evt_data->un.
+				queue_depth_evt);
+			break;
+		default:
+			lpfc_free_fast_evt(phba, fast_evt_data);
+			return;
+		}
+	} else {
+		lpfc_free_fast_evt(phba, fast_evt_data);
+		return;
+	}
+
+	fc_host_post_vendor_event(shost,
+		fc_get_event_number(),
+		evt_data_size,
+		evt_data,
+		SCSI_NL_VID_TYPE_PCI | PCI_VENDOR_ID_EMULEX);
+
+	lpfc_free_fast_evt(phba, fast_evt_data);
+	return;
+}
+
 static void
 lpfc_work_list_done(struct lpfc_hba *phba)
 {
@@ -347,6 +464,10 @@
 			lpfc_unblock_mgmt_io(phba);
 			complete((struct completion *)(evtp->evt_arg2));
 			break;
+		case LPFC_EVT_FASTPATH_MGMT_EVT:
+			lpfc_send_fastpath_evt(phba, evtp);
+			free_evt = 0;
+			break;
 		}
 		if (free_evt)
 			kfree(evtp);
@@ -371,6 +492,7 @@
 	spin_unlock_irq(&phba->hbalock);
 
 	if (ha_copy & HA_ERATT)
+		/* Handle the error attention event */
 		lpfc_handle_eratt(phba);
 
 	if (ha_copy & HA_MBATT)
@@ -378,6 +500,7 @@
 
 	if (ha_copy & HA_LATT)
 		lpfc_handle_latt(phba);
+
 	vports = lpfc_create_vport_work_array(phba);
 	if (vports != NULL)
 		for(i = 0; i <= phba->max_vpi; i++) {
@@ -1013,14 +1136,10 @@
 }
 
 static void
-lpfc_mbx_issue_link_down(struct lpfc_hba *phba)
+lpfc_enable_la(struct lpfc_hba *phba)
 {
 	uint32_t control;
 	struct lpfc_sli *psli = &phba->sli;
-
-	lpfc_linkdown(phba);
-
-	/* turn on Link Attention interrupts - no CLEAR_LA needed */
 	spin_lock_irq(&phba->hbalock);
 	psli->sli_flag |= LPFC_PROCESS_LA;
 	control = readl(phba->HCregaddr);
@@ -1030,6 +1149,15 @@
 	spin_unlock_irq(&phba->hbalock);
 }
 
+static void
+lpfc_mbx_issue_link_down(struct lpfc_hba *phba)
+{
+	lpfc_linkdown(phba);
+	lpfc_enable_la(phba);
+	/* turn on Link Attention interrupts - no CLEAR_LA needed */
+}
+
+
 /*
  * This routine handles processing a READ_LA mailbox
  * command upon completion. It is setup in the LPFC_MBOXQ
@@ -1077,8 +1205,12 @@
 	}
 
 	phba->fc_eventTag = la->eventTag;
+	if (la->mm)
+		phba->sli.sli_flag |= LPFC_MENLO_MAINT;
+	else
+		phba->sli.sli_flag &= ~LPFC_MENLO_MAINT;
 
-	if (la->attType == AT_LINK_UP) {
+	if (la->attType == AT_LINK_UP && (!la->mm)) {
 		phba->fc_stat.LinkUp++;
 		if (phba->link_flag & LS_LOOPBACK_MODE) {
 			lpfc_printf_log(phba, KERN_ERR, LOG_LINK_EVENT,
@@ -1090,13 +1222,15 @@
 		} else {
 			lpfc_printf_log(phba, KERN_ERR, LOG_LINK_EVENT,
 					"1303 Link Up Event x%x received "
-					"Data: x%x x%x x%x x%x\n",
+					"Data: x%x x%x x%x x%x x%x x%x %d\n",
 					la->eventTag, phba->fc_eventTag,
 					la->granted_AL_PA, la->UlnkSpeed,
-					phba->alpa_map[0]);
+					phba->alpa_map[0],
+					la->mm, la->fa,
+					phba->wait_4_mlo_maint_flg);
 		}
 		lpfc_mbx_process_link_up(phba, la);
-	} else {
+	} else if (la->attType == AT_LINK_DOWN) {
 		phba->fc_stat.LinkDown++;
 		if (phba->link_flag & LS_LOOPBACK_MODE) {
 			lpfc_printf_log(phba, KERN_ERR, LOG_LINK_EVENT,
@@ -1109,11 +1243,46 @@
 		else {
 			lpfc_printf_log(phba, KERN_ERR, LOG_LINK_EVENT,
 				"1305 Link Down Event x%x received "
+				"Data: x%x x%x x%x x%x x%x\n",
+				la->eventTag, phba->fc_eventTag,
+				phba->pport->port_state, vport->fc_flag,
+				la->mm, la->fa);
+		}
+		lpfc_mbx_issue_link_down(phba);
+	}
+	if (la->mm && la->attType == AT_LINK_UP) {
+		if (phba->link_state != LPFC_LINK_DOWN) {
+			phba->fc_stat.LinkDown++;
+			lpfc_printf_log(phba, KERN_ERR, LOG_LINK_EVENT,
+				"1312 Link Down Event x%x received "
 				"Data: x%x x%x x%x\n",
 				la->eventTag, phba->fc_eventTag,
 				phba->pport->port_state, vport->fc_flag);
+			lpfc_mbx_issue_link_down(phba);
+		} else
+			lpfc_enable_la(phba);
+
+		lpfc_printf_log(phba, KERN_ERR, LOG_LINK_EVENT,
+				"1310 Menlo Maint Mode Link up Event x%x rcvd "
+				"Data: x%x x%x x%x\n",
+				la->eventTag, phba->fc_eventTag,
+				phba->pport->port_state, vport->fc_flag);
+		/*
+		 * The cmnd that triggered this will be waiting for this
+		 * signal.
+		 */
+		/* WAKEUP for MENLO_SET_MODE or MENLO_RESET command. */
+		if (phba->wait_4_mlo_maint_flg) {
+			phba->wait_4_mlo_maint_flg = 0;
+			wake_up_interruptible(&phba->wait_4_mlo_m_q);
 		}
-		lpfc_mbx_issue_link_down(phba);
+	}
+
+	if (la->fa) {
+		if (la->mm)
+			lpfc_issue_clear_la(phba, vport);
+		lpfc_printf_log(phba, KERN_INFO, LOG_LINK_EVENT,
+				"1311 fa %d\n", la->fa);
 	}
 
 lpfc_mbx_cmpl_read_la_free_mbuf:
@@ -1177,7 +1346,7 @@
 		scsi_host_put(shost);
 }
 
-void
+int
 lpfc_mbx_unreg_vpi(struct lpfc_vport *vport)
 {
 	struct lpfc_hba  *phba = vport->phba;
@@ -1186,7 +1355,7 @@
 
 	mbox = mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL);
 	if (!mbox)
-		return;
+		return 1;
 
 	lpfc_unreg_vpi(phba, vport->vpi, mbox);
 	mbox->vport = vport;
@@ -1197,7 +1366,9 @@
 				 "1800 Could not issue unreg_vpi\n");
 		mempool_free(mbox, phba->mbox_mem_pool);
 		vport->unreg_vpi_cmpl = VPORT_ERROR;
+		return rc;
 	}
+	return 0;
 }
 
 static void
@@ -1553,6 +1724,22 @@
 		 */
 		lpfc_register_remote_port(vport, ndlp);
 	}
+	if ((new_state ==  NLP_STE_MAPPED_NODE) &&
+		(vport->stat_data_enabled)) {
+		/*
+		 * A new target is discovered, if there is no buffer for
+		 * statistical data collection allocate buffer.
+		 */
+		ndlp->lat_data = kcalloc(LPFC_MAX_BUCKET_COUNT,
+					 sizeof(struct lpfc_scsicmd_bkt),
+					 GFP_KERNEL);
+
+		if (!ndlp->lat_data)
+			lpfc_printf_vlog(vport, KERN_ERR, LOG_NODE,
+				"0286 lpfc_nlp_state_cleanup failed to "
+				"allocate statistical data buffer DID "
+				"0x%x\n", ndlp->nlp_DID);
+	}
 	/*
 	 * if we added to Mapped list, but the remote port
 	 * registration failed or assigned a target id outside
@@ -2786,7 +2973,7 @@
 
 	default:
 		lpfc_printf_vlog(vport, KERN_ERR, LOG_DISCOVERY,
-				 "0229 Unexpected discovery timeout, "
+				 "0273 Unexpected discovery timeout, "
 				 "vport State x%x\n", vport->port_state);
 		break;
 	}
@@ -2940,6 +3127,8 @@
 	INIT_LIST_HEAD(&ndlp->nlp_listp);
 	kref_init(&ndlp->kref);
 	NLP_INT_NODE_ACT(ndlp);
+	atomic_set(&ndlp->cmd_pending, 0);
+	ndlp->cmd_qdepth = LPFC_MAX_TGT_QDEPTH;
 
 	lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_NODE,
 		"node init:       did:x%x",
@@ -2979,8 +3168,10 @@
 	spin_unlock_irqrestore(&phba->ndlp_lock, flags);
 
 	/* free ndlp memory for final ndlp release */
-	if (NLP_CHK_FREE_REQ(ndlp))
+	if (NLP_CHK_FREE_REQ(ndlp)) {
+		kfree(ndlp->lat_data);
 		mempool_free(ndlp, ndlp->vport->phba->nlp_mem_pool);
+	}
 }
 
 /* This routine bumps the reference count for a ndlp structure to ensure
diff --git a/drivers/scsi/lpfc/lpfc_hw.h b/drivers/scsi/lpfc/lpfc_hw.h
index 7773b94..5de5dab 100644
--- a/drivers/scsi/lpfc/lpfc_hw.h
+++ b/drivers/scsi/lpfc/lpfc_hw.h
@@ -1107,6 +1107,8 @@
 /* Start FireFly Register definitions */
 #define PCI_VENDOR_ID_EMULEX        0x10df
 #define PCI_DEVICE_ID_FIREFLY       0x1ae5
+#define PCI_DEVICE_ID_PROTEUS_VF    0xe100
+#define PCI_DEVICE_ID_PROTEUS_PF    0xe180
 #define PCI_DEVICE_ID_SAT_SMB       0xf011
 #define PCI_DEVICE_ID_SAT_MID       0xf015
 #define PCI_DEVICE_ID_RFLY          0xf095
@@ -1133,10 +1135,12 @@
 #define PCI_DEVICE_ID_LP11000S      0xfc10
 #define PCI_DEVICE_ID_LPE11000S     0xfc20
 #define PCI_DEVICE_ID_SAT_S         0xfc40
+#define PCI_DEVICE_ID_PROTEUS_S     0xfc50
 #define PCI_DEVICE_ID_HELIOS        0xfd00
 #define PCI_DEVICE_ID_HELIOS_SCSP   0xfd11
 #define PCI_DEVICE_ID_HELIOS_DCSP   0xfd12
 #define PCI_DEVICE_ID_ZEPHYR        0xfe00
+#define PCI_DEVICE_ID_HORNET        0xfe05
 #define PCI_DEVICE_ID_ZEPHYR_SCSP   0xfe11
 #define PCI_DEVICE_ID_ZEPHYR_DCSP   0xfe12
 
@@ -1154,6 +1158,7 @@
 #define ZEPHYR_JEDEC_ID             0x0577
 #define VIPER_JEDEC_ID              0x4838
 #define SATURN_JEDEC_ID             0x1004
+#define HORNET_JDEC_ID              0x2057706D
 
 #define JEDEC_ID_MASK               0x0FFFF000
 #define JEDEC_ID_SHIFT              12
@@ -1198,6 +1203,18 @@
 #define HA_RXATT       0x00000008	/* Bit  3 */
 #define HA_RXMASK      0x0000000f
 
+#define HA_R0_CLR_MSK	(HA_R0RE_REQ | HA_R0CE_RSP | HA_R0ATT)
+#define HA_R1_CLR_MSK	(HA_R1RE_REQ | HA_R1CE_RSP | HA_R1ATT)
+#define HA_R2_CLR_MSK	(HA_R2RE_REQ | HA_R2CE_RSP | HA_R2ATT)
+#define HA_R3_CLR_MSK	(HA_R3RE_REQ | HA_R3CE_RSP | HA_R3ATT)
+
+#define HA_R0_POS	3
+#define HA_R1_POS	7
+#define HA_R2_POS	11
+#define HA_R3_POS	15
+#define HA_LE_POS	29
+#define HA_MB_POS	30
+#define HA_ER_POS	31
 /* Chip Attention Register */
 
 #define CA_REG_OFFSET  4	/* Byte offset from register base address */
@@ -1235,7 +1252,7 @@
 
 /* Host Control Register */
 
-#define HC_REG_OFFSET  12	/* Word offset from register base address */
+#define HC_REG_OFFSET  12	/* Byte offset from register base address */
 
 #define HC_MBINT_ENA   0x00000001	/* Bit  0 */
 #define HC_R0INT_ENA   0x00000002	/* Bit  1 */
@@ -1248,6 +1265,19 @@
 #define HC_LAINT_ENA   0x20000000	/* Bit 29 */
 #define HC_ERINT_ENA   0x80000000	/* Bit 31 */
 
+/* Message Signaled Interrupt eXtension (MSI-X) message identifiers */
+#define MSIX_DFLT_ID	0
+#define MSIX_RNG0_ID	0
+#define MSIX_RNG1_ID	1
+#define MSIX_RNG2_ID	2
+#define MSIX_RNG3_ID	3
+
+#define MSIX_LINK_ID	4
+#define MSIX_MBOX_ID	5
+
+#define MSIX_SPARE0_ID	6
+#define MSIX_SPARE1_ID	7
+
 /* Mailbox Commands */
 #define MBX_SHUTDOWN        0x00	/* terminate testing */
 #define MBX_LOAD_SM         0x01
@@ -1285,10 +1315,14 @@
 #define MBX_KILL_BOARD      0x24
 #define MBX_CONFIG_FARP     0x25
 #define MBX_BEACON          0x2A
+#define MBX_CONFIG_MSI      0x30
 #define MBX_HEARTBEAT       0x31
 #define MBX_WRITE_VPARMS    0x32
 #define MBX_ASYNCEVT_ENABLE 0x33
 
+#define MBX_PORT_CAPABILITIES 0x3B
+#define MBX_PORT_IOV_CONTROL 0x3C
+
 #define MBX_CONFIG_HBQ	    0x7C
 #define MBX_LOAD_AREA       0x81
 #define MBX_RUN_BIU_DIAG64  0x84
@@ -1474,24 +1508,18 @@
 			uint32_t bdeFlags:8;	/* BDE Flags 0 IS A SUPPORTED
 						   VALUE !! */
 #endif
-
-#define BUFF_USE_RSVD       0x01	/* bdeFlags */
-#define BUFF_USE_INTRPT     0x02	/* Not Implemented with LP6000 */
-#define BUFF_USE_CMND       0x04	/* Optional, 1=cmd/rsp 0=data buffer */
-#define BUFF_USE_RCV        0x08	/*  "" "", 1=rcv buffer, 0=xmit
-					    buffer */
-#define BUFF_TYPE_32BIT     0x10	/*  "" "", 1=32 bit addr 0=64 bit
-					    addr */
-#define BUFF_TYPE_SPECIAL   0x20	/* Not Implemented with LP6000  */
-#define BUFF_TYPE_BDL       0x40	/* Optional,  may be set in BDL */
-#define BUFF_TYPE_INVALID   0x80	/*  ""  "" */
+#define BUFF_TYPE_BDE_64    0x00	/* BDE (Host_resident) */
+#define BUFF_TYPE_BDE_IMMED 0x01	/* Immediate Data BDE */
+#define BUFF_TYPE_BDE_64P   0x02	/* BDE (Port-resident) */
+#define BUFF_TYPE_BDE_64I   0x08	/* Input BDE (Host-resident) */
+#define BUFF_TYPE_BDE_64IP  0x0A	/* Input BDE (Port-resident) */
+#define BUFF_TYPE_BLP_64    0x40	/* BLP (Host-resident) */
+#define BUFF_TYPE_BLP_64P   0x42	/* BLP (Port-resident) */
 		} f;
 	} tus;
 	uint32_t addrLow;
 	uint32_t addrHigh;
 };
-#define BDE64_SIZE_WORD 0
-#define BPL64_SIZE_WORD 0x40
 
 typedef struct ULP_BDL {	/* SLI-2 */
 #ifdef __BIG_ENDIAN_BITFIELD
@@ -2201,7 +2229,10 @@
 typedef struct {
 	uint32_t eventTag;	/* Event tag */
 #ifdef __BIG_ENDIAN_BITFIELD
-	uint32_t rsvd1:22;
+	uint32_t rsvd1:19;
+	uint32_t fa:1;
+	uint32_t mm:1;		/* Menlo Maintenance mode enabled */
+	uint32_t rx:1;
 	uint32_t pb:1;
 	uint32_t il:1;
 	uint32_t attType:8;
@@ -2209,7 +2240,10 @@
 	uint32_t attType:8;
 	uint32_t il:1;
 	uint32_t pb:1;
-	uint32_t rsvd1:22;
+	uint32_t rx:1;
+	uint32_t mm:1;
+	uint32_t fa:1;
+	uint32_t rsvd1:19;
 #endif
 
 #define AT_RESERVED    0x00	/* Reserved - attType */
@@ -2230,6 +2264,7 @@
 
 #define TOPOLOGY_PT_PT 0x01	/* Topology is pt-pt / pt-fabric */
 #define TOPOLOGY_LOOP  0x02	/* Topology is FC-AL */
+#define TOPOLOGY_LNK_MENLO_MAINTENANCE 0x05 /* maint mode zephtr to menlo */
 
 	union {
 		struct ulp_bde lilpBde; /* This BDE points to a 128 byte buffer
@@ -2324,6 +2359,36 @@
 #define  DMP_RSP_OFFSET          0x14   /* word 5 contains first word of rsp */
 #define  DMP_RSP_SIZE            0x6C   /* maximum of 27 words of rsp data */
 
+/* Structure for MB Command UPDATE_CFG (0x1B) */
+
+struct update_cfg_var {
+#ifdef __BIG_ENDIAN_BITFIELD
+	uint32_t rsvd2:16;
+	uint32_t type:8;
+	uint32_t rsvd:1;
+	uint32_t ra:1;
+	uint32_t co:1;
+	uint32_t cv:1;
+	uint32_t req:4;
+	uint32_t entry_length:16;
+	uint32_t region_id:16;
+#else  /*  __LITTLE_ENDIAN_BITFIELD */
+	uint32_t req:4;
+	uint32_t cv:1;
+	uint32_t co:1;
+	uint32_t ra:1;
+	uint32_t rsvd:1;
+	uint32_t type:8;
+	uint32_t rsvd2:16;
+	uint32_t region_id:16;
+	uint32_t entry_length:16;
+#endif
+
+	uint32_t resp_info;
+	uint32_t byte_cnt;
+	uint32_t data_offset;
+};
+
 struct hbq_mask {
 #ifdef __BIG_ENDIAN_BITFIELD
 	uint8_t tmatch;
@@ -2560,6 +2625,40 @@
 
 } CONFIG_PORT_VAR;
 
+/* Structure for MB Command CONFIG_MSI (0x30) */
+struct config_msi_var {
+#ifdef __BIG_ENDIAN_BITFIELD
+	uint32_t dfltMsgNum:8;	/* Default message number            */
+	uint32_t rsvd1:11;	/* Reserved                          */
+	uint32_t NID:5;		/* Number of secondary attention IDs */
+	uint32_t rsvd2:5;	/* Reserved                          */
+	uint32_t dfltPresent:1;	/* Default message number present    */
+	uint32_t addFlag:1;	/* Add association flag              */
+	uint32_t reportFlag:1;	/* Report association flag           */
+#else	/*  __LITTLE_ENDIAN_BITFIELD */
+	uint32_t reportFlag:1;	/* Report association flag           */
+	uint32_t addFlag:1;	/* Add association flag              */
+	uint32_t dfltPresent:1;	/* Default message number present    */
+	uint32_t rsvd2:5;	/* Reserved                          */
+	uint32_t NID:5;		/* Number of secondary attention IDs */
+	uint32_t rsvd1:11;	/* Reserved                          */
+	uint32_t dfltMsgNum:8;	/* Default message number            */
+#endif
+	uint32_t attentionConditions[2];
+	uint8_t  attentionId[16];
+	uint8_t  messageNumberByHA[64];
+	uint8_t  messageNumberByID[16];
+	uint32_t autoClearHA[2];
+#ifdef __BIG_ENDIAN_BITFIELD
+	uint32_t rsvd3:16;
+	uint32_t autoClearID:16;
+#else	/*  __LITTLE_ENDIAN_BITFIELD */
+	uint32_t autoClearID:16;
+	uint32_t rsvd3:16;
+#endif
+	uint32_t rsvd4;
+};
+
 /* SLI-2 Port Control Block */
 
 /* SLIM POINTER */
@@ -2678,10 +2777,12 @@
 					 * NEW_FEATURE
 					 */
 	struct config_hbq_var varCfgHbq;/* cmd = 0x7c (CONFIG_HBQ)  */
+	struct update_cfg_var varUpdateCfg; /* cmd = 0x1B (UPDATE_CFG)*/
 	CONFIG_PORT_VAR varCfgPort;	/* cmd = 0x88 (CONFIG_PORT)  */
 	REG_VPI_VAR varRegVpi;		/* cmd = 0x96 (REG_VPI) */
 	UNREG_VPI_VAR varUnregVpi;	/* cmd = 0x97 (UNREG_VPI) */
 	ASYNCEVT_ENABLE_VAR varCfgAsyncEvent; /*cmd = x33 (CONFIG_ASYNC) */
+	struct config_msi_var varCfgMSI;/* cmd = x30 (CONFIG_MSI)     */
 } MAILVARIANTS;
 
 /*
@@ -2715,11 +2816,19 @@
 	uint32_t hbq_get[16];
 };
 
-typedef union {
-	struct sli2_desc s2;
-	struct sli3_desc s3;
-	struct sli3_pgp  s3_pgp;
-} SLI_VAR;
+struct sli3_inb_pgp {
+	uint32_t ha_copy;
+	uint32_t counter;
+	struct lpfc_pgp port[MAX_RINGS];
+	uint32_t hbq_get[16];
+};
+
+union sli_var {
+	struct sli2_desc	s2;
+	struct sli3_desc	s3;
+	struct sli3_pgp		s3_pgp;
+	struct sli3_inb_pgp	s3_inb_pgp;
+};
 
 typedef struct {
 #ifdef __BIG_ENDIAN_BITFIELD
@@ -2737,7 +2846,7 @@
 #endif
 
 	MAILVARIANTS un;
-	SLI_VAR us;
+	union sli_var us;
 } MAILBOX_t;
 
 /*
@@ -3105,6 +3214,27 @@
 	struct lpfc_hbq_entry	buff[5];
 };
 
+#define LPFC_EXT_DATA_BDE_COUNT 3
+struct fcp_irw_ext {
+	uint32_t	io_tag64_low;
+	uint32_t	io_tag64_high;
+#ifdef __BIG_ENDIAN_BITFIELD
+	uint8_t		reserved1;
+	uint8_t		reserved2;
+	uint8_t		reserved3;
+	uint8_t		ebde_count;
+#else  /* __LITTLE_ENDIAN */
+	uint8_t		ebde_count;
+	uint8_t		reserved3;
+	uint8_t		reserved2;
+	uint8_t		reserved1;
+#endif
+	uint32_t	reserved4;
+	struct ulp_bde64 rbde;		/* response bde */
+	struct ulp_bde64 dbde[LPFC_EXT_DATA_BDE_COUNT];	/* data BDE or BPL */
+	uint8_t icd[32];		/* immediate command data (32 bytes) */
+};
+
 typedef struct _IOCB {	/* IOCB structure */
 	union {
 		GENERIC_RSP grsp;	/* Generic response */
@@ -3190,7 +3320,7 @@
 
 		/* words 8-31 used for que_xri_cx iocb */
 		struct que_xri64cx_ext_fields que_xri64cx_ext_words;
-
+		struct fcp_irw_ext fcp_ext;
 		uint32_t sli3Words[24]; /* 96 extra bytes for SLI-3 */
 	} unsli3;
 
@@ -3292,3 +3422,10 @@
 		 iocbp->un.ulpWord[4] == IOERR_LINK_DOWN ||
 		 iocbp->un.ulpWord[4] == IOERR_SLI_DOWN));
 }
+
+#define MENLO_TRANSPORT_TYPE 0xfe
+#define MENLO_CONTEXT 0
+#define MENLO_PU 3
+#define MENLO_TIMEOUT 30
+#define SETVAR_MLOMNT 0x103107
+#define SETVAR_MLORST 0x103007
diff --git a/drivers/scsi/lpfc/lpfc_init.c b/drivers/scsi/lpfc/lpfc_init.c
index d51a2a4..909be33 100644
--- a/drivers/scsi/lpfc/lpfc_init.c
+++ b/drivers/scsi/lpfc/lpfc_init.c
@@ -36,6 +36,7 @@
 
 #include "lpfc_hw.h"
 #include "lpfc_sli.h"
+#include "lpfc_nl.h"
 #include "lpfc_disc.h"
 #include "lpfc_scsi.h"
 #include "lpfc.h"
@@ -52,17 +53,20 @@
 static struct scsi_transport_template *lpfc_vport_transport_template = NULL;
 static DEFINE_IDR(lpfc_hba_index);
 
-/************************************************************************/
-/*                                                                      */
-/*    lpfc_config_port_prep                                             */
-/*    This routine will do LPFC initialization prior to the             */
-/*    CONFIG_PORT mailbox command. This will be initialized             */
-/*    as a SLI layer callback routine.                                  */
-/*    This routine returns 0 on success or -ERESTART if it wants        */
-/*    the SLI layer to reset the HBA and try again. Any                 */
-/*    other return value indicates an error.                            */
-/*                                                                      */
-/************************************************************************/
+/**
+ * lpfc_config_port_prep: Perform lpfc initialization prior to config port.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine will do LPFC initialization prior to issuing the CONFIG_PORT
+ * mailbox command. It retrieves the revision information from the HBA and
+ * collects the Vital Product Data (VPD) about the HBA for preparing the
+ * configuration of the HBA.
+ *
+ * Return codes:
+ *   0 - success.
+ *   -ERESTART - requests the SLI layer to reset the HBA and try again.
+ *   Any other value - indicates an error.
+ **/
 int
 lpfc_config_port_prep(struct lpfc_hba *phba)
 {
@@ -180,12 +184,9 @@
 						sizeof (phba->RandomData));
 
 	/* Get adapter VPD information */
-	pmb->context2 = kmalloc(DMP_RSP_SIZE, GFP_KERNEL);
-	if (!pmb->context2)
-		goto out_free_mbox;
 	lpfc_vpd_data = kmalloc(DMP_VPD_SIZE, GFP_KERNEL);
 	if (!lpfc_vpd_data)
-		goto out_free_context2;
+		goto out_free_mbox;
 
 	do {
 		lpfc_dump_mem(phba, pmb, offset);
@@ -200,21 +201,29 @@
 		}
 		if (mb->un.varDmp.word_cnt > DMP_VPD_SIZE - offset)
 			mb->un.varDmp.word_cnt = DMP_VPD_SIZE - offset;
-		lpfc_sli_pcimem_bcopy(pmb->context2, lpfc_vpd_data + offset,
+		lpfc_sli_pcimem_bcopy(((uint8_t *)mb) + DMP_RSP_OFFSET,
+				      lpfc_vpd_data + offset,
 				      mb->un.varDmp.word_cnt);
 		offset += mb->un.varDmp.word_cnt;
 	} while (mb->un.varDmp.word_cnt && offset < DMP_VPD_SIZE);
 	lpfc_parse_vpd(phba, lpfc_vpd_data, offset);
 
 	kfree(lpfc_vpd_data);
-out_free_context2:
-	kfree(pmb->context2);
 out_free_mbox:
 	mempool_free(pmb, phba->mbox_mem_pool);
 	return 0;
 }
 
-/* Completion handler for config async event mailbox command. */
+/**
+ * lpfc_config_async_cmpl: Completion handler for config async event mbox cmd.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmboxq: pointer to the driver internal queue element for mailbox command.
+ *
+ * This is the completion handler for driver's configuring asynchronous event
+ * mailbox command to the device. If the mailbox command returns successfully,
+ * it will set internal async event support flag to 1; otherwise, it will
+ * set internal async event support flag to 0.
+ **/
 static void
 lpfc_config_async_cmpl(struct lpfc_hba * phba, LPFC_MBOXQ_t * pmboxq)
 {
@@ -226,16 +235,19 @@
 	return;
 }
 
-/************************************************************************/
-/*                                                                      */
-/*    lpfc_config_port_post                                             */
-/*    This routine will do LPFC initialization after the                */
-/*    CONFIG_PORT mailbox command. This will be initialized             */
-/*    as a SLI layer callback routine.                                  */
-/*    This routine returns 0 on success. Any other return value         */
-/*    indicates an error.                                               */
-/*                                                                      */
-/************************************************************************/
+/**
+ * lpfc_config_port_post: Perform lpfc initialization after config port.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine will do LPFC initialization after the CONFIG_PORT mailbox
+ * command call. It performs all internal resource and state setups on the
+ * port: post IOCB buffers, enable appropriate host interrupt attentions,
+ * ELS ring timers, etc.
+ *
+ * Return codes
+ *   0 - success.
+ *   Any other value - error.
+ **/
 int
 lpfc_config_port_post(struct lpfc_hba *phba)
 {
@@ -378,6 +390,29 @@
 	if (phba->sli_rev != 3)
 		lpfc_post_rcv_buf(phba);
 
+	/*
+	 * Configure HBA MSI-X attention conditions to messages if MSI-X mode
+	 */
+	if (phba->intr_type == MSIX) {
+		rc = lpfc_config_msi(phba, pmb);
+		if (rc) {
+			mempool_free(pmb, phba->mbox_mem_pool);
+			return -EIO;
+		}
+		rc = lpfc_sli_issue_mbox(phba, pmb, MBX_POLL);
+		if (rc != MBX_SUCCESS) {
+			lpfc_printf_log(phba, KERN_ERR, LOG_MBOX,
+					"0352 Config MSI mailbox command "
+					"failed, mbxCmd x%x, mbxStatus x%x\n",
+					pmb->mb.mbxCommand, pmb->mb.mbxStatus);
+			mempool_free(pmb, phba->mbox_mem_pool);
+			return -EIO;
+		}
+	}
+
+	/* Initialize ERATT handling flag */
+	phba->hba_flag &= ~HBA_ERATT_HANDLED;
+
 	/* Enable appropriate host interrupts */
 	spin_lock_irq(&phba->hbalock);
 	status = readl(phba->HCregaddr);
@@ -393,26 +428,26 @@
 
 	if ((phba->cfg_poll & ENABLE_FCP_RING_POLLING) &&
 	    (phba->cfg_poll & DISABLE_FCP_RING_INT))
-		status &= ~(HC_R0INT_ENA << LPFC_FCP_RING);
+		status &= ~(HC_R0INT_ENA);
 
 	writel(status, phba->HCregaddr);
 	readl(phba->HCregaddr); /* flush */
 	spin_unlock_irq(&phba->hbalock);
 
-	/*
-	 * Setup the ring 0 (els)  timeout handler
-	 */
-	timeout = phba->fc_ratov << 1;
+	/* Set up ring-0 (ELS) timer */
+	timeout = phba->fc_ratov * 2;
 	mod_timer(&vport->els_tmofunc, jiffies + HZ * timeout);
+	/* Set up heart beat (HB) timer */
 	mod_timer(&phba->hb_tmofunc, jiffies + HZ * LPFC_HB_MBOX_INTERVAL);
 	phba->hb_outstanding = 0;
 	phba->last_completion_time = jiffies;
+	/* Set up error attention (ERATT) polling timer */
+	mod_timer(&phba->eratt_poll, jiffies + HZ * LPFC_ERATT_POLL_INTERVAL);
 
 	lpfc_init_link(phba, pmb, phba->cfg_topology, phba->cfg_link_speed);
 	pmb->mbox_cmpl = lpfc_sli_def_mbox_cmpl;
-	pmb->vport = vport;
-	rc = lpfc_sli_issue_mbox(phba, pmb, MBX_NOWAIT);
 	lpfc_set_loopback_flag(phba);
+	rc = lpfc_sli_issue_mbox(phba, pmb, MBX_NOWAIT);
 	if (rc != MBX_SUCCESS) {
 		lpfc_printf_log(phba, KERN_ERR, LOG_INIT,
 				"0454 Adapter failed to init, mbxCmd x%x "
@@ -447,19 +482,20 @@
 				rc);
 		mempool_free(pmb, phba->mbox_mem_pool);
 	}
-	return (0);
+	return 0;
 }
 
-/************************************************************************/
-/*                                                                      */
-/*    lpfc_hba_down_prep                                                */
-/*    This routine will do LPFC uninitialization before the             */
-/*    HBA is reset when bringing down the SLI Layer. This will be       */
-/*    initialized as a SLI layer callback routine.                      */
-/*    This routine returns 0 on success. Any other return value         */
-/*    indicates an error.                                               */
-/*                                                                      */
-/************************************************************************/
+/**
+ * lpfc_hba_down_prep: Perform lpfc uninitialization prior to HBA reset.
+ * @phba: pointer to lpfc HBA data structure.
+ *
+ * This routine will do LPFC uninitialization before the HBA is reset when
+ * bringing down the SLI Layer.
+ *
+ * Return codes
+ *   0 - success.
+ *   Any other value - error.
+ **/
 int
 lpfc_hba_down_prep(struct lpfc_hba *phba)
 {
@@ -481,15 +517,17 @@
 	return 0;
 }
 
-/************************************************************************/
-/*                                                                      */
-/*    lpfc_hba_down_post                                                */
-/*    This routine will do uninitialization after the HBA is reset      */
-/*    when bringing down the SLI Layer.                                 */
-/*    This routine returns 0 on success. Any other return value         */
-/*    indicates an error.                                               */
-/*                                                                      */
-/************************************************************************/
+/**
+ * lpfc_hba_down_post: Perform lpfc uninitialization after HBA reset.
+ * @phba: pointer to lpfc HBA data structure.
+ *
+ * This routine will do uninitialization after the HBA is reset when bring
+ * down the SLI Layer.
+ *
+ * Return codes
+ *   0 - sucess.
+ *   Any other value - error.
+ **/
 int
 lpfc_hba_down_post(struct lpfc_hba *phba)
 {
@@ -548,7 +586,18 @@
 	return 0;
 }
 
-/* HBA heart beat timeout handler */
+/**
+ * lpfc_hb_timeout: The HBA-timer timeout handler.
+ * @ptr: unsigned long holds the pointer to lpfc hba data structure.
+ *
+ * This is the HBA-timer timeout handler registered to the lpfc driver. When
+ * this timer fires, a HBA timeout event shall be posted to the lpfc driver
+ * work-port-events bitmap and the worker thread is notified. This timeout
+ * event will be used by the worker thread to invoke the actual timeout
+ * handler routine, lpfc_hb_timeout_handler. Any periodical operations will
+ * be performed in the timeout handler and the HBA timeout event bit shall
+ * be cleared by the worker thread after it has taken the event bitmap out.
+ **/
 static void
 lpfc_hb_timeout(unsigned long ptr)
 {
@@ -557,17 +606,36 @@
 	unsigned long iflag;
 
 	phba = (struct lpfc_hba *)ptr;
+
+	/* Check for heart beat timeout conditions */
 	spin_lock_irqsave(&phba->pport->work_port_lock, iflag);
 	tmo_posted = phba->pport->work_port_events & WORKER_HB_TMO;
 	if (!tmo_posted)
 		phba->pport->work_port_events |= WORKER_HB_TMO;
 	spin_unlock_irqrestore(&phba->pport->work_port_lock, iflag);
 
+	/* Tell the worker thread there is work to do */
 	if (!tmo_posted)
 		lpfc_worker_wake_up(phba);
 	return;
 }
 
+/**
+ * lpfc_hb_mbox_cmpl: The lpfc heart-beat mailbox command callback function.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmboxq: pointer to the driver internal queue element for mailbox command.
+ *
+ * This is the callback function to the lpfc heart-beat mailbox command.
+ * If configured, the lpfc driver issues the heart-beat mailbox command to
+ * the HBA every LPFC_HB_MBOX_INTERVAL (current 5) seconds. At the time the
+ * heart-beat mailbox command is issued, the driver shall set up heart-beat
+ * timeout timer to LPFC_HB_MBOX_TIMEOUT (current 30) seconds and marks
+ * heart-beat outstanding state. Once the mailbox command comes back and
+ * no error conditions detected, the heart-beat mailbox command timer is
+ * reset to LPFC_HB_MBOX_INTERVAL seconds and the heart-beat outstanding
+ * state is cleared for the next heart-beat. If the timer expired with the
+ * heart-beat outstanding state set, the driver will put the HBA offline.
+ **/
 static void
 lpfc_hb_mbox_cmpl(struct lpfc_hba * phba, LPFC_MBOXQ_t * pmboxq)
 {
@@ -577,6 +645,7 @@
 	phba->hb_outstanding = 0;
 	spin_unlock_irqrestore(&phba->hbalock, drvr_flag);
 
+	/* Check and reset heart-beat timer is necessary */
 	mempool_free(pmboxq, phba->mbox_mem_pool);
 	if (!(phba->pport->fc_flag & FC_OFFLINE_MODE) &&
 		!(phba->link_state == LPFC_HBA_ERROR) &&
@@ -586,6 +655,22 @@
 	return;
 }
 
+/**
+ * lpfc_hb_timeout_handler: The HBA-timer timeout handler.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This is the actual HBA-timer timeout handler to be invoked by the worker
+ * thread whenever the HBA timer fired and HBA-timeout event posted. This
+ * handler performs any periodic operations needed for the device. If such
+ * periodic event has already been attended to either in the interrupt handler
+ * or by processing slow-ring or fast-ring events within the HBA-timer
+ * timeout window (LPFC_HB_MBOX_INTERVAL), this handler just simply resets
+ * the timer for the next timeout period. If lpfc heart-beat mailbox command
+ * is configured and there is no heart-beat mailbox command outstanding, a
+ * heart-beat mailbox is issued and timer set properly. Otherwise, if there
+ * has been a heart-beat mailbox command outstanding, the HBA shall be put
+ * to offline.
+ **/
 void
 lpfc_hb_timeout_handler(struct lpfc_hba *phba)
 {
@@ -684,6 +769,13 @@
 	}
 }
 
+/**
+ * lpfc_offline_eratt: Bring lpfc offline on hardware error attention.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine is called to bring the HBA offline when HBA hardware error
+ * other than Port Error 6 has been detected.
+ **/
 static void
 lpfc_offline_eratt(struct lpfc_hba *phba)
 {
@@ -704,14 +796,16 @@
 	return;
 }
 
-/************************************************************************/
-/*                                                                      */
-/*    lpfc_handle_eratt                                                 */
-/*    This routine will handle processing a Host Attention              */
-/*    Error Status event. This will be initialized                      */
-/*    as a SLI layer callback routine.                                  */
-/*                                                                      */
-/************************************************************************/
+/**
+ * lpfc_handle_eratt: The HBA hardware error handler.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine is invoked to handle the following HBA hardware error
+ * conditions:
+ * 1 - HBA error attention interrupt
+ * 2 - DMA ring index out of range
+ * 3 - Mailbox command came back as unknown
+ **/
 void
 lpfc_handle_eratt(struct lpfc_hba *phba)
 {
@@ -722,6 +816,7 @@
 	unsigned long temperature;
 	struct temp_event temp_event_data;
 	struct Scsi_Host  *shost;
+	struct lpfc_board_event_header board_event;
 
 	/* If the pci channel is offline, ignore possible errors,
 	 * since we cannot communicate with the pci card anyway. */
@@ -731,6 +826,16 @@
 	if (!phba->cfg_enable_hba_reset)
 		return;
 
+	/* Send an internal error event to mgmt application */
+	board_event.event_type = FC_REG_BOARD_EVENT;
+	board_event.subcategory = LPFC_EVENT_PORTINTERR;
+	shost = lpfc_shost_from_vport(phba->pport);
+	fc_host_post_vendor_event(shost, fc_get_event_number(),
+				  sizeof(board_event),
+				  (char *) &board_event,
+				  SCSI_NL_VID_TYPE_PCI
+				  | PCI_VENDOR_ID_EMULEX);
+
 	if (phba->work_hs & HS_FFER6) {
 		/* Re-establishing Link */
 		lpfc_printf_log(phba, KERN_INFO, LOG_LINK_EVENT,
@@ -771,7 +876,7 @@
 		temp_event_data.data = (uint32_t)temperature;
 
 		lpfc_printf_log(phba, KERN_ERR, LOG_INIT,
-				"0459 Adapter maximum temperature exceeded "
+				"0406 Adapter maximum temperature exceeded "
 				"(%ld), taking this port offline "
 				"Data: x%x x%x x%x\n",
 				temperature, phba->work_hs,
@@ -791,8 +896,8 @@
 
 	} else {
 		/* The if clause above forces this code path when the status
-		 * failure is a value other than FFER6.  Do not call the offline
-		 *  twice. This is the adapter hardware error path.
+		 * failure is a value other than FFER6. Do not call the offline
+		 * twice. This is the adapter hardware error path.
 		 */
 		lpfc_printf_log(phba, KERN_ERR, LOG_INIT,
 				"0457 Adapter Hardware Error "
@@ -808,16 +913,16 @@
 
 		lpfc_offline_eratt(phba);
 	}
+	return;
 }
 
-/************************************************************************/
-/*                                                                      */
-/*    lpfc_handle_latt                                                  */
-/*    This routine will handle processing a Host Attention              */
-/*    Link Status event. This will be initialized                       */
-/*    as a SLI layer callback routine.                                  */
-/*                                                                      */
-/************************************************************************/
+/**
+ * lpfc_handle_latt: The HBA link event handler.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine is invoked from the worker thread to handle a HBA host
+ * attention link event.
+ **/
 void
 lpfc_handle_latt(struct lpfc_hba *phba)
 {
@@ -898,12 +1003,20 @@
 	return;
 }
 
-/************************************************************************/
-/*                                                                      */
-/*   lpfc_parse_vpd                                                     */
-/*   This routine will parse the VPD data                               */
-/*                                                                      */
-/************************************************************************/
+/**
+ * lpfc_parse_vpd: Parse VPD (Vital Product Data).
+ * @phba: pointer to lpfc hba data structure.
+ * @vpd: pointer to the vital product data.
+ * @len: length of the vital product data in bytes.
+ *
+ * This routine parses the Vital Product Data (VPD). The VPD is treated as
+ * an array of characters. In this routine, the ModelName, ProgramType, and
+ * ModelDesc, etc. fields of the phba data structure will be populated.
+ *
+ * Return codes
+ *   0 - pointer to the VPD passed in is NULL
+ *   1 - success
+ **/
 static int
 lpfc_parse_vpd(struct lpfc_hba *phba, uint8_t *vpd, int len)
 {
@@ -1040,12 +1153,25 @@
 	return(1);
 }
 
+/**
+ * lpfc_get_hba_model_desc: Retrieve HBA device model name and description.
+ * @phba: pointer to lpfc hba data structure.
+ * @mdp: pointer to the data structure to hold the derived model name.
+ * @descp: pointer to the data structure to hold the derived description.
+ *
+ * This routine retrieves HBA's description based on its registered PCI device
+ * ID. The @descp passed into this function points to an array of 256 chars. It
+ * shall be returned with the model name, maximum speed, and the host bus type.
+ * The @mdp passed into this function points to an array of 80 chars. When the
+ * function returns, the @mdp will be filled with the model name.
+ **/
 static void
 lpfc_get_hba_model_desc(struct lpfc_hba *phba, uint8_t *mdp, uint8_t *descp)
 {
 	lpfc_vpd_t *vp;
 	uint16_t dev_id = phba->pcidev->device;
 	int max_speed;
+	int GE = 0;
 	struct {
 		char * name;
 		int    max_speed;
@@ -1177,6 +1303,19 @@
 	case PCI_DEVICE_ID_SAT_S:
 		m = (typeof(m)){"LPe12000-S", max_speed, "PCIe"};
 		break;
+	case PCI_DEVICE_ID_HORNET:
+		m = (typeof(m)){"LP21000", max_speed, "PCIe"};
+		GE = 1;
+		break;
+	case PCI_DEVICE_ID_PROTEUS_VF:
+		m = (typeof(m)) {"LPev12000", max_speed, "PCIe IOV"};
+		break;
+	case PCI_DEVICE_ID_PROTEUS_PF:
+		m = (typeof(m)) {"LPev12000", max_speed, "PCIe IOV"};
+		break;
+	case PCI_DEVICE_ID_PROTEUS_S:
+		m = (typeof(m)) {"LPemv12002-S", max_speed, "PCIe IOV"};
+		break;
 	default:
 		m = (typeof(m)){ NULL };
 		break;
@@ -1186,18 +1325,25 @@
 		snprintf(mdp, 79,"%s", m.name);
 	if (descp && descp[0] == '\0')
 		snprintf(descp, 255,
-			 "Emulex %s %dGb %s Fibre Channel Adapter",
-			 m.name, m.max_speed, m.bus);
+			"Emulex %s %d%s %s %s",
+			m.name, m.max_speed,
+			(GE) ? "GE" : "Gb",
+			m.bus,
+			(GE) ? "FCoE Adapter" : "Fibre Channel Adapter");
 }
 
-/**************************************************/
-/*   lpfc_post_buffer                             */
-/*                                                */
-/*   This routine will post count buffers to the  */
-/*   ring with the QUE_RING_BUF_CN command. This  */
-/*   allows 3 buffers / command to be posted.     */
-/*   Returns the number of buffers NOT posted.    */
-/**************************************************/
+/**
+ * lpfc_post_buffer: Post IOCB(s) with DMA buffer descriptor(s) to a IOCB ring.
+ * @phba: pointer to lpfc hba data structure.
+ * @pring: pointer to a IOCB ring.
+ * @cnt: the number of IOCBs to be posted to the IOCB ring.
+ *
+ * This routine posts a given number of IOCBs with the associated DMA buffer
+ * descriptors specified by the cnt argument to the given IOCB ring.
+ *
+ * Return codes
+ *   The number of IOCBs NOT able to be posted to the IOCB ring.
+ **/
 int
 lpfc_post_buffer(struct lpfc_hba *phba, struct lpfc_sli_ring *pring, int cnt)
 {
@@ -1287,12 +1433,17 @@
 	return 0;
 }
 
-/************************************************************************/
-/*                                                                      */
-/*   lpfc_post_rcv_buf                                                  */
-/*   This routine post initial rcv buffers to the configured rings      */
-/*                                                                      */
-/************************************************************************/
+/**
+ * lpfc_post_rcv_buf: Post the initial receive IOCB buffers to ELS ring.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine posts initial receive IOCB buffers to the ELS ring. The
+ * current number of initial IOCB buffers specified by LPFC_BUF_RING0 is
+ * set to 64 IOCBs.
+ *
+ * Return codes
+ *   0 - success (currently always success)
+ **/
 static int
 lpfc_post_rcv_buf(struct lpfc_hba *phba)
 {
@@ -1307,11 +1458,13 @@
 
 #define S(N,V) (((V)<<(N))|((V)>>(32-(N))))
 
-/************************************************************************/
-/*                                                                      */
-/*   lpfc_sha_init                                                      */
-/*                                                                      */
-/************************************************************************/
+/**
+ * lpfc_sha_init: Set up initial array of hash table entries.
+ * @HashResultPointer: pointer to an array as hash table.
+ *
+ * This routine sets up the initial values to the array of hash table entries
+ * for the LC HBAs.
+ **/
 static void
 lpfc_sha_init(uint32_t * HashResultPointer)
 {
@@ -1322,11 +1475,16 @@
 	HashResultPointer[4] = 0xC3D2E1F0;
 }
 
-/************************************************************************/
-/*                                                                      */
-/*   lpfc_sha_iterate                                                   */
-/*                                                                      */
-/************************************************************************/
+/**
+ * lpfc_sha_iterate: Iterate initial hash table with the working hash table.
+ * @HashResultPointer: pointer to an initial/result hash table.
+ * @HashWorkingPointer: pointer to an working hash table.
+ *
+ * This routine iterates an initial hash table pointed by @HashResultPointer
+ * with the values from the working hash table pointeed by @HashWorkingPointer.
+ * The results are putting back to the initial hash table, returned through
+ * the @HashResultPointer as the result hash table.
+ **/
 static void
 lpfc_sha_iterate(uint32_t * HashResultPointer, uint32_t * HashWorkingPointer)
 {
@@ -1374,22 +1532,29 @@
 
 }
 
-/************************************************************************/
-/*                                                                      */
-/*   lpfc_challenge_key                                                 */
-/*                                                                      */
-/************************************************************************/
+/**
+ * lpfc_challenge_key: Create challenge key based on WWPN of the HBA.
+ * @RandomChallenge: pointer to the entry of host challenge random number array.
+ * @HashWorking: pointer to the entry of the working hash array.
+ *
+ * This routine calculates the working hash array referred by @HashWorking
+ * from the challenge random numbers associated with the host, referred by
+ * @RandomChallenge. The result is put into the entry of the working hash
+ * array and returned by reference through @HashWorking.
+ **/
 static void
 lpfc_challenge_key(uint32_t * RandomChallenge, uint32_t * HashWorking)
 {
 	*HashWorking = (*RandomChallenge ^ *HashWorking);
 }
 
-/************************************************************************/
-/*                                                                      */
-/*   lpfc_hba_init                                                      */
-/*                                                                      */
-/************************************************************************/
+/**
+ * lpfc_hba_init: Perform special handling for LC HBA initialization.
+ * @phba: pointer to lpfc hba data structure.
+ * @hbainit: pointer to an array of unsigned 32-bit integers.
+ *
+ * This routine performs the special handling for LC HBA initialization.
+ **/
 void
 lpfc_hba_init(struct lpfc_hba *phba, uint32_t *hbainit)
 {
@@ -1412,6 +1577,15 @@
 	kfree(HashWorking);
 }
 
+/**
+ * lpfc_cleanup: Performs vport cleanups before deleting a vport.
+ * @vport: pointer to a virtual N_Port data structure.
+ *
+ * This routine performs the necessary cleanups before deleting the @vport.
+ * It invokes the discovery state machine to perform necessary state
+ * transitions and to release the ndlps associated with the @vport. Note,
+ * the physical port is treated as @vport 0.
+ **/
 void
 lpfc_cleanup(struct lpfc_vport *vport)
 {
@@ -1459,14 +1633,6 @@
 		lpfc_disc_state_machine(vport, ndlp, NULL,
 					     NLP_EVT_DEVICE_RM);
 
-		/* nlp_type zero is not defined, nlp_flag zero also not defined,
-		 * nlp_state is unused, this happens when
-		 * an initiator has logged
-		 * into us so cleanup this ndlp.
-		 */
-		if ((ndlp->nlp_type == 0) && (ndlp->nlp_flag == 0) &&
-			(ndlp->nlp_state == 0))
-			lpfc_nlp_put(ndlp);
 	}
 
 	/* At this point, ALL ndlp's should be gone
@@ -1482,7 +1648,7 @@
 						&vport->fc_nodes, nlp_listp) {
 				lpfc_printf_vlog(ndlp->vport, KERN_ERR,
 						LOG_NODE,
-						"0282: did:x%x ndlp:x%p "
+						"0282 did:x%x ndlp:x%p "
 						"usgmap:x%x refcnt:%d\n",
 						ndlp->nlp_DID, (void *)ndlp,
 						ndlp->nlp_usg_map,
@@ -1498,6 +1664,14 @@
 	return;
 }
 
+/**
+ * lpfc_stop_vport_timers: Stop all the timers associated with a vport.
+ * @vport: pointer to a virtual N_Port data structure.
+ *
+ * This routine stops all the timers associated with a @vport. This function
+ * is invoked before disabling or deleting a @vport. Note that the physical
+ * port is treated as @vport 0.
+ **/
 void
 lpfc_stop_vport_timers(struct lpfc_vport *vport)
 {
@@ -1507,6 +1681,13 @@
 	return;
 }
 
+/**
+ * lpfc_stop_phba_timers: Stop all the timers associated with an HBA.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine stops all the timers associated with a HBA. This function is
+ * invoked before either putting a HBA offline or unloading the driver.
+ **/
 static void
 lpfc_stop_phba_timers(struct lpfc_hba *phba)
 {
@@ -1516,9 +1697,20 @@
 	del_timer_sync(&phba->fabric_block_timer);
 	phba->hb_outstanding = 0;
 	del_timer_sync(&phba->hb_tmofunc);
+	del_timer_sync(&phba->eratt_poll);
 	return;
 }
 
+/**
+ * lpfc_block_mgmt_io: Mark a HBA's management interface as blocked.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine marks a HBA's management interface as blocked. Once the HBA's
+ * management interface is marked as blocked, all the user space access to
+ * the HBA, whether they are from sysfs interface or libdfc interface will
+ * all be blocked. The HBA is set to block the management interface when the
+ * driver prepares the HBA interface for online or offline.
+ **/
 static void
 lpfc_block_mgmt_io(struct lpfc_hba * phba)
 {
@@ -1529,6 +1721,18 @@
 	spin_unlock_irqrestore(&phba->hbalock, iflag);
 }
 
+/**
+ * lpfc_online: Initialize and bring a HBA online.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine initializes the HBA and brings a HBA online. During this
+ * process, the management interface is blocked to prevent user space access
+ * to the HBA interfering with the driver initialization.
+ *
+ * Return codes
+ *   0 - successful
+ *   1 - failed
+ **/
 int
 lpfc_online(struct lpfc_hba *phba)
 {
@@ -1574,6 +1778,17 @@
 	return 0;
 }
 
+/**
+ * lpfc_unblock_mgmt_io: Mark a HBA's management interface to be not blocked.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine marks a HBA's management interface as not blocked. Once the
+ * HBA's management interface is marked as not blocked, all the user space
+ * access to the HBA, whether they are from sysfs interface or libdfc
+ * interface will be allowed. The HBA is set to block the management interface
+ * when the driver prepares the HBA interface for online or offline and then
+ * set to unblock the management interface afterwards.
+ **/
 void
 lpfc_unblock_mgmt_io(struct lpfc_hba * phba)
 {
@@ -1584,6 +1799,14 @@
 	spin_unlock_irqrestore(&phba->hbalock, iflag);
 }
 
+/**
+ * lpfc_offline_prep: Prepare a HBA to be brought offline.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine is invoked to prepare a HBA to be brought offline. It performs
+ * unregistration login to all the nodes on all vports and flushes the mailbox
+ * queue to make it ready to be brought offline.
+ **/
 void
 lpfc_offline_prep(struct lpfc_hba * phba)
 {
@@ -1633,6 +1856,14 @@
 	lpfc_sli_flush_mbox_queue(phba);
 }
 
+/**
+ * lpfc_offline: Bring a HBA offline.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine actually brings a HBA offline. It stops all the timers
+ * associated with the HBA, brings down the SLI layer, and eventually
+ * marks the HBA as in offline state for the upper layer protocol.
+ **/
 void
 lpfc_offline(struct lpfc_hba *phba)
 {
@@ -1670,12 +1901,17 @@
 	lpfc_destroy_vport_work_array(phba, vports);
 }
 
-/******************************************************************************
-* Function name: lpfc_scsi_free
-*
-* Description: Called from lpfc_pci_remove_one free internal driver resources
-*
-******************************************************************************/
+/**
+ * lpfc_scsi_free: Free all the SCSI buffers and IOCBs from driver lists.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine is to free all the SCSI buffers and IOCBs from the driver
+ * list back to kernel. It is called from lpfc_pci_remove_one to free
+ * the internal resources before the device is removed from the system.
+ *
+ * Return codes
+ *   0 - successful (for now, it always returns 0)
+ **/
 static int
 lpfc_scsi_free(struct lpfc_hba *phba)
 {
@@ -1704,6 +1940,22 @@
 	return 0;
 }
 
+/**
+ * lpfc_create_port: Create an FC port.
+ * @phba: pointer to lpfc hba data structure.
+ * @instance: a unique integer ID to this FC port.
+ * @dev: pointer to the device data structure.
+ *
+ * This routine creates a FC port for the upper layer protocol. The FC port
+ * can be created on top of either a physical port or a virtual port provided
+ * by the HBA. This routine also allocates a SCSI host data structure (shost)
+ * and associates the FC port created before adding the shost into the SCSI
+ * layer.
+ *
+ * Return codes
+ *   @vport - pointer to the virtual N_Port data structure.
+ *   NULL - port create failed.
+ **/
 struct lpfc_vport *
 lpfc_create_port(struct lpfc_hba *phba, int instance, struct device *dev)
 {
@@ -1777,6 +2029,13 @@
 	return NULL;
 }
 
+/**
+ * destroy_port: Destroy an FC port.
+ * @vport: pointer to an lpfc virtual N_Port data structure.
+ *
+ * This routine destroys a FC port from the upper layer protocol. All the
+ * resources associated with the port are released.
+ **/
 void
 destroy_port(struct lpfc_vport *vport)
 {
@@ -1797,6 +2056,16 @@
 	return;
 }
 
+/**
+ * lpfc_get_instance: Get a unique integer ID.
+ *
+ * This routine allocates a unique integer ID from lpfc_hba_index pool. It
+ * uses the kernel idr facility to perform the task.
+ *
+ * Return codes:
+ *   instance - a unique integer ID allocated as the new instance.
+ *   -1 - lpfc get instance failed.
+ **/
 int
 lpfc_get_instance(void)
 {
@@ -1810,11 +2079,21 @@
 	return instance;
 }
 
-/*
- * Note: there is no scan_start function as adapter initialization
- * will have asynchronously kicked off the link initialization.
- */
-
+/**
+ * lpfc_scan_finished: method for SCSI layer to detect whether scan is done.
+ * @shost: pointer to SCSI host data structure.
+ * @time: elapsed time of the scan in jiffies.
+ *
+ * This routine is called by the SCSI layer with a SCSI host to determine
+ * whether the scan host is finished.
+ *
+ * Note: there is no scan_start function as adapter initialization will have
+ * asynchronously kicked off the link initialization.
+ *
+ * Return codes
+ *   0 - SCSI host scan is not over yet.
+ *   1 - SCSI host scan is over.
+ **/
 int lpfc_scan_finished(struct Scsi_Host *shost, unsigned long time)
 {
 	struct lpfc_vport *vport = (struct lpfc_vport *) shost->hostdata;
@@ -1858,6 +2137,13 @@
 	return stat;
 }
 
+/**
+ * lpfc_host_attrib_init: Initialize SCSI host attributes on a FC port.
+ * @shost: pointer to SCSI host data structure.
+ *
+ * This routine initializes a given SCSI host attributes on a FC port. The
+ * SCSI host can be either on top of a physical port or a virtual port.
+ **/
 void lpfc_host_attrib_init(struct Scsi_Host *shost)
 {
 	struct lpfc_vport *vport = (struct lpfc_vport *) shost->hostdata;
@@ -1906,42 +2192,157 @@
 	spin_unlock_irq(shost->host_lock);
 }
 
+/**
+ * lpfc_enable_msix: Enable MSI-X interrupt mode.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine is invoked to enable the MSI-X interrupt vectors. The kernel
+ * function pci_enable_msix() is called to enable the MSI-X vectors. Note that
+ * pci_enable_msix(), once invoked, enables either all or nothing, depending
+ * on the current availability of PCI vector resources. The device driver is
+ * responsible for calling the individual request_irq() to register each MSI-X
+ * vector with a interrupt handler, which is done in this function. Note that
+ * later when device is unloading, the driver should always call free_irq()
+ * on all MSI-X vectors it has done request_irq() on before calling
+ * pci_disable_msix(). Failure to do so results in a BUG_ON() and a device
+ * will be left with MSI-X enabled and leaks its vectors.
+ *
+ * Return codes
+ *   0 - sucessful
+ *   other values - error
+ **/
 static int
 lpfc_enable_msix(struct lpfc_hba *phba)
 {
-	int error;
+	int rc, i;
+	LPFC_MBOXQ_t *pmb;
 
-	phba->msix_entries[0].entry = 0;
-	phba->msix_entries[0].vector = 0;
+	/* Set up MSI-X multi-message vectors */
+	for (i = 0; i < LPFC_MSIX_VECTORS; i++)
+		phba->msix_entries[i].entry = i;
 
-	error = pci_enable_msix(phba->pcidev, phba->msix_entries,
+	/* Configure MSI-X capability structure */
+	rc = pci_enable_msix(phba->pcidev, phba->msix_entries,
 				ARRAY_SIZE(phba->msix_entries));
-	if (error) {
+	if (rc) {
 		lpfc_printf_log(phba, KERN_INFO, LOG_INIT,
 				"0420 Enable MSI-X failed (%d), continuing "
-				"with MSI\n", error);
-		pci_disable_msix(phba->pcidev);
-		return error;
+				"with MSI\n", rc);
+		goto msi_fail_out;
+	} else
+		for (i = 0; i < LPFC_MSIX_VECTORS; i++)
+			lpfc_printf_log(phba, KERN_INFO, LOG_INIT,
+					"0477 MSI-X entry[%d]: vector=x%x "
+					"message=%d\n", i,
+					phba->msix_entries[i].vector,
+					phba->msix_entries[i].entry);
+	/*
+	 * Assign MSI-X vectors to interrupt handlers
+	 */
+
+	/* vector-0 is associated to slow-path handler */
+	rc = request_irq(phba->msix_entries[0].vector, &lpfc_sp_intr_handler,
+			 IRQF_SHARED, LPFC_SP_DRIVER_HANDLER_NAME, phba);
+	if (rc) {
+		lpfc_printf_log(phba, KERN_ERR, LOG_INIT,
+				"0421 MSI-X slow-path request_irq failed "
+				"(%d), continuing with MSI\n", rc);
+		goto msi_fail_out;
 	}
 
-	error =	request_irq(phba->msix_entries[0].vector, lpfc_intr_handler, 0,
-			    LPFC_DRIVER_NAME, phba);
-	if (error) {
+	/* vector-1 is associated to fast-path handler */
+	rc = request_irq(phba->msix_entries[1].vector, &lpfc_fp_intr_handler,
+			 IRQF_SHARED, LPFC_FP_DRIVER_HANDLER_NAME, phba);
+
+	if (rc) {
 		lpfc_printf_log(phba, KERN_ERR, LOG_INIT,
-				"0421 MSI-X request_irq failed (%d), "
-				"continuing with MSI\n", error);
-		pci_disable_msix(phba->pcidev);
+				"0429 MSI-X fast-path request_irq failed "
+				"(%d), continuing with MSI\n", rc);
+		goto irq_fail_out;
 	}
-	return error;
+
+	/*
+	 * Configure HBA MSI-X attention conditions to messages
+	 */
+	pmb = (LPFC_MBOXQ_t *) mempool_alloc(phba->mbox_mem_pool, GFP_KERNEL);
+
+	if (!pmb) {
+		rc = -ENOMEM;
+		lpfc_printf_log(phba, KERN_ERR, LOG_INIT,
+				"0474 Unable to allocate memory for issuing "
+				"MBOX_CONFIG_MSI command\n");
+		goto mem_fail_out;
+	}
+	rc = lpfc_config_msi(phba, pmb);
+	if (rc)
+		goto mbx_fail_out;
+	rc = lpfc_sli_issue_mbox(phba, pmb, MBX_POLL);
+	if (rc != MBX_SUCCESS) {
+		lpfc_printf_log(phba, KERN_ERR, LOG_MBOX,
+				"0351 Config MSI mailbox command failed, "
+				"mbxCmd x%x, mbxStatus x%x\n",
+				pmb->mb.mbxCommand, pmb->mb.mbxStatus);
+		goto mbx_fail_out;
+	}
+
+	/* Free memory allocated for mailbox command */
+	mempool_free(pmb, phba->mbox_mem_pool);
+	return rc;
+
+mbx_fail_out:
+	/* Free memory allocated for mailbox command */
+	mempool_free(pmb, phba->mbox_mem_pool);
+
+mem_fail_out:
+	/* free the irq already requested */
+	free_irq(phba->msix_entries[1].vector, phba);
+
+irq_fail_out:
+	/* free the irq already requested */
+	free_irq(phba->msix_entries[0].vector, phba);
+
+msi_fail_out:
+	/* Unconfigure MSI-X capability structure */
+	pci_disable_msix(phba->pcidev);
+	return rc;
 }
 
+/**
+ * lpfc_disable_msix: Disable MSI-X interrupt mode.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine is invoked to release the MSI-X vectors and then disable the
+ * MSI-X interrupt mode.
+ **/
 static void
 lpfc_disable_msix(struct lpfc_hba *phba)
 {
-	free_irq(phba->msix_entries[0].vector, phba);
+	int i;
+
+	/* Free up MSI-X multi-message vectors */
+	for (i = 0; i < LPFC_MSIX_VECTORS; i++)
+		free_irq(phba->msix_entries[i].vector, phba);
+	/* Disable MSI-X */
 	pci_disable_msix(phba->pcidev);
 }
 
+/**
+ * lpfc_pci_probe_one: lpfc PCI probe func to register device to PCI subsystem.
+ * @pdev: pointer to PCI device
+ * @pid: pointer to PCI device identifier
+ *
+ * This routine is to be registered to the kernel's PCI subsystem. When an
+ * Emulex HBA is presented in PCI bus, the kernel PCI subsystem looks at
+ * PCI device-specific information of the device and driver to see if the
+ * driver state that it can support this kind of device. If the match is
+ * successful, the driver core invokes this routine. If this routine
+ * determines it can claim the HBA, it does all the initialization that it
+ * needs to do to handle the HBA properly.
+ *
+ * Return code
+ *   0 - driver can claim the device
+ *   negative value - driver can not claim the device
+ **/
 static int __devinit
 lpfc_pci_probe_one(struct pci_dev *pdev, const struct pci_device_id *pid)
 {
@@ -1956,6 +2357,7 @@
 	int  i, hbq_count;
 	uint16_t iotag;
 	int bars = pci_select_bars(pdev, IORESOURCE_MEM);
+	struct lpfc_adapter_event_header adapter_event;
 
 	if (pci_enable_device_mem(pdev))
 		goto out;
@@ -1966,6 +2368,7 @@
 	if (!phba)
 		goto out_release_regions;
 
+	atomic_set(&phba->fast_event_count, 0);
 	spin_lock_init(&phba->hbalock);
 
 	/* Initialize ndlp management spinlock */
@@ -1978,6 +2381,7 @@
 		goto out_free_phba;
 
 	INIT_LIST_HEAD(&phba->port_list);
+	init_waitqueue_head(&phba->wait_4_mlo_m_q);
 	/*
 	 * Get all the module params for configuring this host and then
 	 * establish the host.
@@ -2000,6 +2404,9 @@
 	init_timer(&phba->fabric_block_timer);
 	phba->fabric_block_timer.function = lpfc_fabric_block_timeout;
 	phba->fabric_block_timer.data = (unsigned long) phba;
+	init_timer(&phba->eratt_poll);
+	phba->eratt_poll.function = lpfc_poll_eratt;
+	phba->eratt_poll.data = (unsigned long) phba;
 
 	pci_set_master(pdev);
 	pci_try_set_mwi(pdev);
@@ -2019,7 +2426,7 @@
 	bar2map_len        = pci_resource_len(phba->pcidev, 2);
 
 	/* Map HBA SLIM to a kernel virtual address. */
-	phba->slim_memmap_p      = ioremap(phba->pci_bar0_map, bar0map_len);
+	phba->slim_memmap_p = ioremap(phba->pci_bar0_map, bar0map_len);
 	if (!phba->slim_memmap_p) {
 		error = -ENODEV;
 		dev_printk(KERN_ERR, &pdev->dev,
@@ -2037,12 +2444,18 @@
 	}
 
 	/* Allocate memory for SLI-2 structures */
-	phba->slim2p = dma_alloc_coherent(&phba->pcidev->dev, SLI2_SLIM_SIZE,
-					  &phba->slim2p_mapping, GFP_KERNEL);
-	if (!phba->slim2p)
+	phba->slim2p.virt = dma_alloc_coherent(&phba->pcidev->dev,
+					       SLI2_SLIM_SIZE,
+					       &phba->slim2p.phys,
+					       GFP_KERNEL);
+	if (!phba->slim2p.virt)
 		goto out_iounmap;
 
-	memset(phba->slim2p, 0, SLI2_SLIM_SIZE);
+	memset(phba->slim2p.virt, 0, SLI2_SLIM_SIZE);
+	phba->mbox = phba->slim2p.virt + offsetof(struct lpfc_sli2_slim, mbx);
+	phba->pcb = (phba->slim2p.virt + offsetof(struct lpfc_sli2_slim, pcb));
+	phba->IOCBs = (phba->slim2p.virt +
+		       offsetof(struct lpfc_sli2_slim, IOCBs));
 
 	phba->hbqslimp.virt = dma_alloc_coherent(&phba->pcidev->dev,
 						 lpfc_sli_hbq_size(),
@@ -2111,7 +2524,7 @@
 	phba->fc_arbtov = FF_DEF_ARBTOV;
 
 	INIT_LIST_HEAD(&phba->work_list);
-	phba->work_ha_mask = (HA_ERATT|HA_MBATT|HA_LATT);
+	phba->work_ha_mask = (HA_ERATT | HA_MBATT | HA_LATT);
 	phba->work_ha_mask |= (HA_RXMASK << (LPFC_ELS_RING * 4));
 
 	/* Initialize the wait queue head for the kernel thread */
@@ -2146,21 +2559,42 @@
 	pci_set_drvdata(pdev, shost);
 	phba->intr_type = NONE;
 
+	phba->MBslimaddr = phba->slim_memmap_p;
+	phba->HAregaddr = phba->ctrl_regs_memmap_p + HA_REG_OFFSET;
+	phba->CAregaddr = phba->ctrl_regs_memmap_p + CA_REG_OFFSET;
+	phba->HSregaddr = phba->ctrl_regs_memmap_p + HS_REG_OFFSET;
+	phba->HCregaddr = phba->ctrl_regs_memmap_p + HC_REG_OFFSET;
+
+	/* Configure and enable interrupt */
 	if (phba->cfg_use_msi == 2) {
-		error = lpfc_enable_msix(phba);
-		if (!error)
-			phba->intr_type = MSIX;
+		/* Need to issue conf_port mbox cmd before conf_msi mbox cmd */
+		error = lpfc_sli_config_port(phba, 3);
+		if (error)
+			lpfc_printf_log(phba, KERN_INFO, LOG_INIT,
+				"0427 Firmware not capable of SLI 3 mode.\n");
+		else {
+			lpfc_printf_log(phba, KERN_INFO, LOG_INIT,
+				"0426 Firmware capable of SLI 3 mode.\n");
+			/* Now, try to enable MSI-X interrupt mode */
+			error = lpfc_enable_msix(phba);
+			if (!error) {
+				phba->intr_type = MSIX;
+				lpfc_printf_log(phba, KERN_INFO, LOG_INIT,
+						"0430 enable MSI-X mode.\n");
+			}
+		}
 	}
 
 	/* Fallback to MSI if MSI-X initialization failed */
 	if (phba->cfg_use_msi >= 1 && phba->intr_type == NONE) {
 		retval = pci_enable_msi(phba->pcidev);
-		if (!retval)
+		if (!retval) {
 			phba->intr_type = MSI;
-		else
 			lpfc_printf_log(phba, KERN_INFO, LOG_INIT,
-					"0452 Enable MSI failed, continuing "
-					"with IRQ\n");
+					"0473 enable MSI mode.\n");
+		} else
+			lpfc_printf_log(phba, KERN_INFO, LOG_INIT,
+					"0452 enable IRQ mode.\n");
 	}
 
 	/* MSI-X is the only case the doesn't need to call request_irq */
@@ -2176,18 +2610,16 @@
 			phba->intr_type = INTx;
 	}
 
-	phba->MBslimaddr = phba->slim_memmap_p;
-	phba->HAregaddr = phba->ctrl_regs_memmap_p + HA_REG_OFFSET;
-	phba->CAregaddr = phba->ctrl_regs_memmap_p + CA_REG_OFFSET;
-	phba->HSregaddr = phba->ctrl_regs_memmap_p + HS_REG_OFFSET;
-	phba->HCregaddr = phba->ctrl_regs_memmap_p + HC_REG_OFFSET;
-
 	if (lpfc_alloc_sysfs_attr(vport)) {
+		lpfc_printf_log(phba, KERN_ERR, LOG_INIT,
+				"1476 Failed to allocate sysfs attr\n");
 		error = -ENOMEM;
 		goto out_free_irq;
 	}
 
 	if (lpfc_sli_hba_setup(phba)) {
+		lpfc_printf_log(phba, KERN_ERR, LOG_INIT,
+				"1477 Failed to set up hba\n");
 		error = -ENODEV;
 		goto out_remove_device;
 	}
@@ -2206,6 +2638,16 @@
 		spin_unlock_irq(shost->host_lock);
 	}
 
+	lpfc_printf_log(phba, KERN_INFO, LOG_INIT,
+			"0428 Perform SCSI scan\n");
+	/* Send board arrival event to upper layer */
+	adapter_event.event_type = FC_REG_ADAPTER_EVENT;
+	adapter_event.subcategory = LPFC_EVENT_ARRIVAL;
+	fc_host_post_vendor_event(shost, fc_get_event_number(),
+		sizeof(adapter_event),
+		(char *) &adapter_event,
+		SCSI_NL_VID_TYPE_PCI | PCI_VENDOR_ID_EMULEX);
+
 	scsi_scan_host(shost);
 
 	return 0;
@@ -2238,11 +2680,11 @@
 	}
 	lpfc_mem_free(phba);
 out_free_hbqslimp:
-	dma_free_coherent(&pdev->dev, lpfc_sli_hbq_size(), phba->hbqslimp.virt,
-			  phba->hbqslimp.phys);
+	dma_free_coherent(&pdev->dev, lpfc_sli_hbq_size(),
+			  phba->hbqslimp.virt, phba->hbqslimp.phys);
 out_free_slim:
-	dma_free_coherent(&pdev->dev, SLI2_SLIM_SIZE, phba->slim2p,
-							phba->slim2p_mapping);
+	dma_free_coherent(&pdev->dev, SLI2_SLIM_SIZE,
+			  phba->slim2p.virt, phba->slim2p.phys);
 out_iounmap:
 	iounmap(phba->ctrl_regs_memmap_p);
 out_iounmap_slim:
@@ -2262,6 +2704,14 @@
 	return error;
 }
 
+/**
+ * lpfc_pci_remove_one: lpfc PCI func to unregister device from PCI subsystem.
+ * @pdev: pointer to PCI device
+ *
+ * This routine is to be registered to the kernel's PCI subsystem. When an
+ * Emulex HBA is removed from PCI bus. It perform all the necessary cleanup
+ * for the HBA device to be removed from the PCI subsystem properly.
+ **/
 static void __devexit
 lpfc_pci_remove_one(struct pci_dev *pdev)
 {
@@ -2316,12 +2766,12 @@
 	lpfc_scsi_free(phba);
 	lpfc_mem_free(phba);
 
-	dma_free_coherent(&pdev->dev, lpfc_sli_hbq_size(), phba->hbqslimp.virt,
-			  phba->hbqslimp.phys);
+	dma_free_coherent(&pdev->dev, lpfc_sli_hbq_size(),
+			  phba->hbqslimp.virt, phba->hbqslimp.phys);
 
 	/* Free resources associated with SLI2 interface */
 	dma_free_coherent(&pdev->dev, SLI2_SLIM_SIZE,
-			  phba->slim2p, phba->slim2p_mapping);
+			  phba->slim2p.virt, phba->slim2p.phys);
 
 	/* unmap adapter SLIM and Control Registers */
 	iounmap(phba->ctrl_regs_memmap_p);
@@ -2336,13 +2786,21 @@
 }
 
 /**
- * lpfc_io_error_detected - called when PCI error is detected
- * @pdev: Pointer to PCI device
- * @state: The current pci conneection state
+ * lpfc_io_error_detected: Driver method for handling PCI I/O error detected.
+ * @pdev: pointer to PCI device.
+ * @state: the current PCI connection state.
  *
- * This function is called after a PCI bus error affecting
- * this device has been detected.
- */
+ * This routine is registered to the PCI subsystem for error handling. This
+ * function is called by the PCI subsystem after a PCI bus error affecting
+ * this device has been detected. When this function is invoked, it will
+ * need to stop all the I/Os and interrupt(s) to the device. Once that is
+ * done, it will return PCI_ERS_RESULT_NEED_RESET for the PCI subsystem to
+ * perform proper recovery as desired.
+ *
+ * Return codes
+ *   PCI_ERS_RESULT_NEED_RESET - need to reset before recovery
+ *   PCI_ERS_RESULT_DISCONNECT - device could not be recovered
+ **/
 static pci_ers_result_t lpfc_io_error_detected(struct pci_dev *pdev,
 				pci_channel_state_t state)
 {
@@ -2351,8 +2809,15 @@
 	struct lpfc_sli *psli = &phba->sli;
 	struct lpfc_sli_ring  *pring;
 
-	if (state == pci_channel_io_perm_failure)
+	if (state == pci_channel_io_perm_failure) {
+		lpfc_printf_log(phba, KERN_ERR, LOG_INIT,
+				"0472 PCI channel I/O permanent failure\n");
+		/* Block all SCSI devices' I/Os on the host */
+		lpfc_scsi_dev_block(phba);
+		/* Clean up all driver's outstanding SCSI I/Os */
+		lpfc_sli_flush_fcp_rings(phba);
 		return PCI_ERS_RESULT_DISCONNECT;
+	}
 
 	pci_disable_device(pdev);
 	/*
@@ -2376,10 +2841,21 @@
 }
 
 /**
- * lpfc_io_slot_reset - called after the pci bus has been reset.
- * @pdev: Pointer to PCI device
+ * lpfc_io_slot_reset: Restart a PCI device from scratch.
+ * @pdev: pointer to PCI device.
  *
- * Restart the card from scratch, as if from a cold-boot.
+ * This routine is registered to the PCI subsystem for error handling. This is
+ * called after PCI bus has been reset to restart the PCI card from scratch,
+ * as if from a cold-boot. During the PCI subsystem error recovery, after the
+ * driver returns PCI_ERS_RESULT_NEED_RESET, the PCI subsystem will perform
+ * proper error recovery and then call this routine before calling the .resume
+ * method to recover the device. This function will initialize the HBA device,
+ * enable the interrupt, but it will just put the HBA to offline state without
+ * passing any I/O traffic.
+ *
+ * Return codes
+ *   PCI_ERS_RESULT_RECOVERED - the device has been recovered
+ *   PCI_ERS_RESULT_DISCONNECT - device could not be recovered
  */
 static pci_ers_result_t lpfc_io_slot_reset(struct pci_dev *pdev)
 {
@@ -2404,20 +2880,34 @@
 	/* Enable configured interrupt method */
 	phba->intr_type = NONE;
 	if (phba->cfg_use_msi == 2) {
-		error = lpfc_enable_msix(phba);
-		if (!error)
-			phba->intr_type = MSIX;
+		/* Need to issue conf_port mbox cmd before conf_msi mbox cmd */
+		error = lpfc_sli_config_port(phba, 3);
+		if (error)
+			lpfc_printf_log(phba, KERN_INFO, LOG_INIT,
+				"0478 Firmware not capable of SLI 3 mode.\n");
+		else {
+			lpfc_printf_log(phba, KERN_INFO, LOG_INIT,
+				"0479 Firmware capable of SLI 3 mode.\n");
+			/* Now, try to enable MSI-X interrupt mode */
+			error = lpfc_enable_msix(phba);
+			if (!error) {
+				phba->intr_type = MSIX;
+				lpfc_printf_log(phba, KERN_INFO, LOG_INIT,
+						"0480 enable MSI-X mode.\n");
+			}
+		}
 	}
 
 	/* Fallback to MSI if MSI-X initialization failed */
 	if (phba->cfg_use_msi >= 1 && phba->intr_type == NONE) {
 		retval = pci_enable_msi(phba->pcidev);
-		if (!retval)
+		if (!retval) {
 			phba->intr_type = MSI;
-		else
 			lpfc_printf_log(phba, KERN_INFO, LOG_INIT,
-					"0470 Enable MSI failed, continuing "
-					"with IRQ\n");
+					"0481 enable MSI mode.\n");
+		} else
+			lpfc_printf_log(phba, KERN_INFO, LOG_INIT,
+					"0470 enable IRQ mode.\n");
 	}
 
 	/* MSI-X is the only case the doesn't need to call request_irq */
@@ -2440,11 +2930,13 @@
 }
 
 /**
- * lpfc_io_resume - called when traffic can start flowing again.
- * @pdev: Pointer to PCI device
+ * lpfc_io_resume: Resume PCI I/O operation.
+ * @pdev: pointer to PCI device
  *
- * This callback is called when the error recovery driver tells us that
- * its OK to resume normal operation.
+ * This routine is registered to the PCI subsystem for error handling. It is
+ * called when kernel error recovery tells the lpfc driver that it is ok to
+ * resume normal PCI operation after PCI bus error recovery. After this call,
+ * traffic can start to flow from this device again.
  */
 static void lpfc_io_resume(struct pci_dev *pdev)
 {
@@ -2491,6 +2983,8 @@
 		PCI_ANY_ID, PCI_ANY_ID, },
 	{PCI_VENDOR_ID_EMULEX, PCI_DEVICE_ID_ZEPHYR,
 		PCI_ANY_ID, PCI_ANY_ID, },
+	{PCI_VENDOR_ID_EMULEX, PCI_DEVICE_ID_HORNET,
+		PCI_ANY_ID, PCI_ANY_ID, },
 	{PCI_VENDOR_ID_EMULEX, PCI_DEVICE_ID_ZEPHYR_SCSP,
 		PCI_ANY_ID, PCI_ANY_ID, },
 	{PCI_VENDOR_ID_EMULEX, PCI_DEVICE_ID_ZEPHYR_DCSP,
@@ -2521,6 +3015,12 @@
 		PCI_ANY_ID, PCI_ANY_ID, },
 	{PCI_VENDOR_ID_EMULEX, PCI_DEVICE_ID_SAT_S,
 		PCI_ANY_ID, PCI_ANY_ID, },
+	{PCI_VENDOR_ID_EMULEX, PCI_DEVICE_ID_PROTEUS_VF,
+		PCI_ANY_ID, PCI_ANY_ID, },
+	{PCI_VENDOR_ID_EMULEX, PCI_DEVICE_ID_PROTEUS_PF,
+		PCI_ANY_ID, PCI_ANY_ID, },
+	{PCI_VENDOR_ID_EMULEX, PCI_DEVICE_ID_PROTEUS_S,
+		PCI_ANY_ID, PCI_ANY_ID, },
 	{ 0 }
 };
 
@@ -2540,6 +3040,18 @@
 	.err_handler    = &lpfc_err_handler,
 };
 
+/**
+ * lpfc_init: lpfc module initialization routine.
+ *
+ * This routine is to be invoked when the lpfc module is loaded into the
+ * kernel. The special kernel macro module_init() is used to indicate the
+ * role of this routine to the kernel as lpfc module entry point.
+ *
+ * Return codes
+ *   0 - successful
+ *   -ENOMEM - FC attach transport failed
+ *   all others - failed
+ */
 static int __init
 lpfc_init(void)
 {
@@ -2567,12 +3079,20 @@
 	error = pci_register_driver(&lpfc_driver);
 	if (error) {
 		fc_release_transport(lpfc_transport_template);
-		fc_release_transport(lpfc_vport_transport_template);
+		if (lpfc_enable_npiv)
+			fc_release_transport(lpfc_vport_transport_template);
 	}
 
 	return error;
 }
 
+/**
+ * lpfc_exit: lpfc module removal routine.
+ *
+ * This routine is invoked when the lpfc module is removed from the kernel.
+ * The special kernel macro module_exit() is used to indicate the role of
+ * this routine to the kernel as lpfc module exit point.
+ */
 static void __exit
 lpfc_exit(void)
 {
diff --git a/drivers/scsi/lpfc/lpfc_mbox.c b/drivers/scsi/lpfc/lpfc_mbox.c
index 7a9be4c..7465fe7 100644
--- a/drivers/scsi/lpfc/lpfc_mbox.c
+++ b/drivers/scsi/lpfc/lpfc_mbox.c
@@ -1,7 +1,7 @@
 /*******************************************************************
  * This file is part of the Emulex Linux Device Driver for         *
  * Fibre Channel Host Bus Adapters.                                *
- * Copyright (C) 2004-2007 Emulex.  All rights reserved.           *
+ * Copyright (C) 2004-2008 Emulex.  All rights reserved.           *
  * EMULEX and SLI are trademarks of Emulex.                        *
  * www.emulex.com                                                  *
  * Portions Copyright (C) 2004-2005 Christoph Hellwig              *
@@ -30,6 +30,7 @@
 
 #include "lpfc_hw.h"
 #include "lpfc_sli.h"
+#include "lpfc_nl.h"
 #include "lpfc_disc.h"
 #include "lpfc_scsi.h"
 #include "lpfc.h"
@@ -37,10 +38,20 @@
 #include "lpfc_crtn.h"
 #include "lpfc_compat.h"
 
-/**********************************************/
-
-/*                mailbox command             */
-/**********************************************/
+/**
+ * lpfc_dump_mem: Prepare a mailbox command for retrieving HBA's VPD memory.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ * @offset: offset for dumping VPD memory mailbox command.
+ *
+ * The dump mailbox command provides a method for the device driver to obtain
+ * various types of information from the HBA device.
+ *
+ * This routine prepares the mailbox command for dumping HBA Vital Product
+ * Data (VPD) memory. This mailbox command is to be used for retrieving a
+ * portion (DMP_RSP_SIZE bytes) of a HBA's VPD from the HBA at an address
+ * offset specified by the offset parameter.
+ **/
 void
 lpfc_dump_mem(struct lpfc_hba * phba, LPFC_MBOXQ_t * pmb, uint16_t offset)
 {
@@ -65,10 +76,17 @@
 	return;
 }
 
-/**********************************************/
-/*  lpfc_read_nv  Issue a READ NVPARAM        */
-/*                mailbox command             */
-/**********************************************/
+/**
+ * lpfc_read_nv: Prepare a mailbox command for reading HBA's NVRAM param.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * The read NVRAM mailbox command returns the HBA's non-volatile parameters
+ * that are used as defaults when the Fibre Channel link is brought on-line.
+ *
+ * This routine prepares the mailbox command for reading information stored
+ * in the HBA's NVRAM. Specifically, the HBA's WWNN and WWPN.
+ **/
 void
 lpfc_read_nv(struct lpfc_hba * phba, LPFC_MBOXQ_t * pmb)
 {
@@ -81,10 +99,19 @@
 	return;
 }
 
-/**********************************************/
-/*  lpfc_config_async  Issue a                */
-/*  MBX_ASYNC_EVT_ENABLE mailbox command      */
-/**********************************************/
+/**
+ * lpfc_config_async: Prepare a mailbox command for enabling HBA async event.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ * @ring: ring number for the asynchronous event to be configured.
+ *
+ * The asynchronous event enable mailbox command is used to enable the
+ * asynchronous event posting via the ASYNC_STATUS_CN IOCB response and
+ * specifies the default ring to which events are posted.
+ *
+ * This routine prepares the mailbox command for enabling HBA asynchronous
+ * event support on a IOCB ring.
+ **/
 void
 lpfc_config_async(struct lpfc_hba * phba, LPFC_MBOXQ_t * pmb,
 		uint32_t ring)
@@ -99,10 +126,19 @@
 	return;
 }
 
-/**********************************************/
-/*  lpfc_heart_beat  Issue a HEART_BEAT       */
-/*                mailbox command             */
-/**********************************************/
+/**
+ * lpfc_heart_beat: Prepare a mailbox command for heart beat.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * The heart beat mailbox command is used to detect an unresponsive HBA, which
+ * is defined as any device where no error attention is sent and both mailbox
+ * and rings are not processed.
+ *
+ * This routine prepares the mailbox command for issuing a heart beat in the
+ * form of mailbox command to the HBA. The timely completion of the heart
+ * beat mailbox command indicates the health of the HBA.
+ **/
 void
 lpfc_heart_beat(struct lpfc_hba * phba, LPFC_MBOXQ_t * pmb)
 {
@@ -115,10 +151,26 @@
 	return;
 }
 
-/**********************************************/
-/*  lpfc_read_la  Issue a READ LA             */
-/*                mailbox command             */
-/**********************************************/
+/**
+ * lpfc_read_la: Prepare a mailbox command for reading HBA link attention.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ * @mp: DMA buffer memory for reading the link attention information into.
+ *
+ * The read link attention mailbox command is issued to read the Link Event
+ * Attention information indicated by the HBA port when the Link Event bit
+ * of the Host Attention (HSTATT) register is set to 1. A Link Event
+ * Attention occurs based on an exception detected at the Fibre Channel link
+ * interface.
+ *
+ * This routine prepares the mailbox command for reading HBA link attention
+ * information. A DMA memory has been set aside and address passed to the
+ * HBA through @mp for the HBA to DMA link attention information into the
+ * memory as part of the execution of the mailbox command.
+ *
+ * Return codes
+ *    0 - Success (currently always return 0)
+ **/
 int
 lpfc_read_la(struct lpfc_hba * phba, LPFC_MBOXQ_t * pmb, struct lpfc_dmabuf *mp)
 {
@@ -143,10 +195,21 @@
 	return (0);
 }
 
-/**********************************************/
-/*  lpfc_clear_la  Issue a CLEAR LA           */
-/*                 mailbox command            */
-/**********************************************/
+/**
+ * lpfc_clear_la: Prepare a mailbox command for clearing HBA link attention.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * The clear link attention mailbox command is issued to clear the link event
+ * attention condition indicated by the Link Event bit of the Host Attention
+ * (HSTATT) register. The link event attention condition is cleared only if
+ * the event tag specified matches that of the current link event counter.
+ * The current event tag is read using the read link attention event mailbox
+ * command.
+ *
+ * This routine prepares the mailbox command for clearing HBA link attention
+ * information.
+ **/
 void
 lpfc_clear_la(struct lpfc_hba * phba, LPFC_MBOXQ_t * pmb)
 {
@@ -161,10 +224,20 @@
 	return;
 }
 
-/**************************************************/
-/*  lpfc_config_link  Issue a CONFIG LINK         */
-/*                    mailbox command             */
-/**************************************************/
+/**
+ * lpfc_config_link: Prepare a mailbox command for configuring link on a HBA.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * The configure link mailbox command is used before the initialize link
+ * mailbox command to override default value and to configure link-oriented
+ * parameters such as DID address and various timers. Typically, this
+ * command would be used after an F_Port login to set the returned DID address
+ * and the fabric timeout values. This command is not valid before a configure
+ * port command has configured the HBA port.
+ *
+ * This routine prepares the mailbox command for configuring link on a HBA.
+ **/
 void
 lpfc_config_link(struct lpfc_hba * phba, LPFC_MBOXQ_t * pmb)
 {
@@ -199,10 +272,98 @@
 	return;
 }
 
-/**********************************************/
-/*  lpfc_init_link  Issue an INIT LINK        */
-/*                  mailbox command           */
-/**********************************************/
+/**
+ * lpfc_config_msi: Prepare a mailbox command for configuring msi-x.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * The configure MSI-X mailbox command is used to configure the HBA's SLI-3
+ * MSI-X multi-message interrupt vector association to interrupt attention
+ * conditions.
+ *
+ * Return codes
+ *    0 - Success
+ *    -EINVAL - Failure
+ **/
+int
+lpfc_config_msi(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
+{
+	MAILBOX_t *mb = &pmb->mb;
+	uint32_t attentionConditions[2];
+
+	/* Sanity check */
+	if (phba->cfg_use_msi != 2) {
+		lpfc_printf_log(phba, KERN_ERR, LOG_INIT,
+				"0475 Not configured for supporting MSI-X "
+				"cfg_use_msi: 0x%x\n", phba->cfg_use_msi);
+		return -EINVAL;
+	}
+
+	if (phba->sli_rev < 3) {
+		lpfc_printf_log(phba, KERN_ERR, LOG_INIT,
+				"0476 HBA not supporting SLI-3 or later "
+				"SLI Revision: 0x%x\n", phba->sli_rev);
+		return -EINVAL;
+	}
+
+	/* Clear mailbox command fields */
+	memset(pmb, 0, sizeof(LPFC_MBOXQ_t));
+
+	/*
+	 * SLI-3, Message Signaled Interrupt Fearure.
+	 */
+
+	/* Multi-message attention configuration */
+	attentionConditions[0] = (HA_R0ATT | HA_R1ATT | HA_R2ATT | HA_ERATT |
+				  HA_LATT | HA_MBATT);
+	attentionConditions[1] = 0;
+
+	mb->un.varCfgMSI.attentionConditions[0] = attentionConditions[0];
+	mb->un.varCfgMSI.attentionConditions[1] = attentionConditions[1];
+
+	/*
+	 * Set up message number to HA bit association
+	 */
+#ifdef __BIG_ENDIAN_BITFIELD
+	/* RA0 (FCP Ring) */
+	mb->un.varCfgMSI.messageNumberByHA[HA_R0_POS] = 1;
+	/* RA1 (Other Protocol Extra Ring) */
+	mb->un.varCfgMSI.messageNumberByHA[HA_R1_POS] = 1;
+#else   /*  __LITTLE_ENDIAN_BITFIELD */
+	/* RA0 (FCP Ring) */
+	mb->un.varCfgMSI.messageNumberByHA[HA_R0_POS^3] = 1;
+	/* RA1 (Other Protocol Extra Ring) */
+	mb->un.varCfgMSI.messageNumberByHA[HA_R1_POS^3] = 1;
+#endif
+	/* Multi-message interrupt autoclear configuration*/
+	mb->un.varCfgMSI.autoClearHA[0] = attentionConditions[0];
+	mb->un.varCfgMSI.autoClearHA[1] = attentionConditions[1];
+
+	/* For now, HBA autoclear does not work reliably, disable it */
+	mb->un.varCfgMSI.autoClearHA[0] = 0;
+	mb->un.varCfgMSI.autoClearHA[1] = 0;
+
+	/* Set command and owner bit */
+	mb->mbxCommand = MBX_CONFIG_MSI;
+	mb->mbxOwner = OWN_HOST;
+
+	return 0;
+}
+
+/**
+ * lpfc_init_link: Prepare a mailbox command for initialize link on a HBA.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ * @topology: the link topology for the link to be initialized to.
+ * @linkspeed: the link speed for the link to be initialized to.
+ *
+ * The initialize link mailbox command is used to initialize the Fibre
+ * Channel link. This command must follow a configure port command that
+ * establishes the mode of operation.
+ *
+ * This routine prepares the mailbox command for initializing link on a HBA
+ * with the specified link topology and speed.
+ **/
 void
 lpfc_init_link(struct lpfc_hba * phba,
 	       LPFC_MBOXQ_t * pmb, uint32_t topology, uint32_t linkspeed)
@@ -269,10 +430,27 @@
 	return;
 }
 
-/**********************************************/
-/*  lpfc_read_sparam  Issue a READ SPARAM     */
-/*                    mailbox command         */
-/**********************************************/
+/**
+ * lpfc_read_sparam: Prepare a mailbox command for reading HBA parameters.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ * @vpi: virtual N_Port identifier.
+ *
+ * The read service parameter mailbox command is used to read the HBA port
+ * service parameters. The service parameters are read into the buffer
+ * specified directly by a BDE in the mailbox command. These service
+ * parameters may then be used to build the payload of an N_Port/F_POrt
+ * login request and reply (LOGI/ACC).
+ *
+ * This routine prepares the mailbox command for reading HBA port service
+ * parameters. The DMA memory is allocated in this function and the addresses
+ * are populated into the mailbox command for the HBA to DMA the service
+ * parameters into.
+ *
+ * Return codes
+ *    0 - Success
+ *    1 - DMA memory allocation failed
+ **/
 int
 lpfc_read_sparam(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb, int vpi)
 {
@@ -312,10 +490,21 @@
 	return (0);
 }
 
-/********************************************/
-/*  lpfc_unreg_did  Issue a UNREG_DID       */
-/*                  mailbox command         */
-/********************************************/
+/**
+ * lpfc_unreg_did: Prepare a mailbox command for unregistering DID.
+ * @phba: pointer to lpfc hba data structure.
+ * @vpi: virtual N_Port identifier.
+ * @did: remote port identifier.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * The unregister DID mailbox command is used to unregister an N_Port/F_Port
+ * login for an unknown RPI by specifying the DID of a remote port. This
+ * command frees an RPI context in the HBA port. This has the effect of
+ * performing an implicit N_Port/F_Port logout.
+ *
+ * This routine prepares the mailbox command for unregistering a remote
+ * N_Port/F_Port (DID) login.
+ **/
 void
 lpfc_unreg_did(struct lpfc_hba * phba, uint16_t vpi, uint32_t did,
 	       LPFC_MBOXQ_t * pmb)
@@ -333,10 +522,19 @@
 	return;
 }
 
-/**********************************************/
-/*  lpfc_read_nv  Issue a READ CONFIG         */
-/*                mailbox command             */
-/**********************************************/
+/**
+ * lpfc_read_config: Prepare a mailbox command for reading HBA configuration.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * The read configuration mailbox command is used to read the HBA port
+ * configuration parameters. This mailbox command provides a method for
+ * seeing any parameters that may have changed via various configuration
+ * mailbox commands.
+ *
+ * This routine prepares the mailbox command for reading out HBA configuration
+ * parameters.
+ **/
 void
 lpfc_read_config(struct lpfc_hba * phba, LPFC_MBOXQ_t * pmb)
 {
@@ -350,10 +548,18 @@
 	return;
 }
 
-/*************************************************/
-/*  lpfc_read_lnk_stat  Issue a READ LINK STATUS */
-/*                mailbox command                */
-/*************************************************/
+/**
+ * lpfc_read_lnk_stat: Prepare a mailbox command for reading HBA link stats.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * The read link status mailbox command is used to read the link status from
+ * the HBA. Link status includes all link-related error counters. These
+ * counters are maintained by the HBA and originated in the link hardware
+ * unit. Note that all of these counters wrap.
+ *
+ * This routine prepares the mailbox command for reading out HBA link status.
+ **/
 void
 lpfc_read_lnk_stat(struct lpfc_hba * phba, LPFC_MBOXQ_t * pmb)
 {
@@ -367,10 +573,30 @@
 	return;
 }
 
-/********************************************/
-/*  lpfc_reg_login  Issue a REG_LOGIN       */
-/*                  mailbox command         */
-/********************************************/
+/**
+ * lpfc_reg_login: Prepare a mailbox command for registering remote login.
+ * @phba: pointer to lpfc hba data structure.
+ * @vpi: virtual N_Port identifier.
+ * @did: remote port identifier.
+ * @param: pointer to memory holding the server parameters.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ * @flag: action flag to be passed back for the complete function.
+ *
+ * The registration login mailbox command is used to register an N_Port or
+ * F_Port login. This registration allows the HBA to cache the remote N_Port
+ * service parameters internally and thereby make the appropriate FC-2
+ * decisions. The remote port service parameters are handed off by the driver
+ * to the HBA using a descriptor entry that directly identifies a buffer in
+ * host memory. In exchange, the HBA returns an RPI identifier.
+ *
+ * This routine prepares the mailbox command for registering remote port login.
+ * The function allocates DMA buffer for passing the service parameters to the
+ * HBA with the mailbox command.
+ *
+ * Return codes
+ *    0 - Success
+ *    1 - DMA memory allocation failed
+ **/
 int
 lpfc_reg_login(struct lpfc_hba *phba, uint16_t vpi, uint32_t did,
 	       uint8_t *param, LPFC_MBOXQ_t *pmb, uint32_t flag)
@@ -418,10 +644,20 @@
 	return (0);
 }
 
-/**********************************************/
-/*  lpfc_unreg_login  Issue a UNREG_LOGIN     */
-/*                    mailbox command         */
-/**********************************************/
+/**
+ * lpfc_unreg_login: Prepare a mailbox command for unregistering remote login.
+ * @phba: pointer to lpfc hba data structure.
+ * @vpi: virtual N_Port identifier.
+ * @rpi: remote port identifier
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * The unregistration login mailbox command is used to unregister an N_Port
+ * or F_Port login. This command frees an RPI context in the HBA. It has the
+ * effect of performing an implicit N_Port/F_Port logout.
+ *
+ * This routine prepares the mailbox command for unregistering remote port
+ * login.
+ **/
 void
 lpfc_unreg_login(struct lpfc_hba *phba, uint16_t vpi, uint32_t rpi,
 		 LPFC_MBOXQ_t * pmb)
@@ -440,10 +676,21 @@
 	return;
 }
 
-/**************************************************/
-/*  lpfc_reg_vpi   Issue a REG_VPI                */
-/*                    mailbox command             */
-/**************************************************/
+/**
+ * lpfc_reg_vpi: Prepare a mailbox command for registering vport identifier.
+ * @phba: pointer to lpfc hba data structure.
+ * @vpi: virtual N_Port identifier.
+ * @sid: Fibre Channel S_ID (N_Port_ID assigned to a virtual N_Port).
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * The registration vport identifier mailbox command is used to activate a
+ * virtual N_Port after it has acquired an N_Port_ID. The HBA validates the
+ * N_Port_ID against the information in the selected virtual N_Port context
+ * block and marks it active to allow normal processing of IOCB commands and
+ * received unsolicited exchanges.
+ *
+ * This routine prepares the mailbox command for registering a virtual N_Port.
+ **/
 void
 lpfc_reg_vpi(struct lpfc_hba *phba, uint16_t vpi, uint32_t sid,
 	     LPFC_MBOXQ_t *pmb)
@@ -461,10 +708,22 @@
 
 }
 
-/**************************************************/
-/*  lpfc_unreg_vpi   Issue a UNREG_VNPI           */
-/*                    mailbox command             */
-/**************************************************/
+/**
+ * lpfc_unreg_vpi: Prepare a mailbox command for unregistering vport id.
+ * @phba: pointer to lpfc hba data structure.
+ * @vpi: virtual N_Port identifier.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * The unregistration vport identifier mailbox command is used to inactivate
+ * a virtual N_Port. The driver must have logged out and unregistered all
+ * remote N_Ports to abort any activity on the virtual N_Port. The HBA will
+ * unregisters any default RPIs associated with the specified vpi, aborting
+ * any active exchanges. The HBA will post the mailbox response after making
+ * the virtual N_Port inactive.
+ *
+ * This routine prepares the mailbox command for unregistering a virtual
+ * N_Port.
+ **/
 void
 lpfc_unreg_vpi(struct lpfc_hba *phba, uint16_t vpi, LPFC_MBOXQ_t *pmb)
 {
@@ -479,12 +738,19 @@
 
 }
 
+/**
+ * lpfc_config_pcb_setup: Set up IOCB rings in the Port Control Block (PCB)
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * This routine sets up and initializes the IOCB rings in the Port Control
+ * Block (PCB).
+ **/
 static void
 lpfc_config_pcb_setup(struct lpfc_hba * phba)
 {
 	struct lpfc_sli *psli = &phba->sli;
 	struct lpfc_sli_ring *pring;
-	PCB_t *pcbp = &phba->slim2p->pcb;
+	PCB_t *pcbp = phba->pcb;
 	dma_addr_t pdma_addr;
 	uint32_t offset;
 	uint32_t iocbCnt = 0;
@@ -513,29 +779,43 @@
 			continue;
 		}
 		/* Command ring setup for ring */
-		pring->cmdringaddr = (void *) &phba->slim2p->IOCBs[iocbCnt];
+		pring->cmdringaddr = (void *)&phba->IOCBs[iocbCnt];
 		pcbp->rdsc[i].cmdEntries = pring->numCiocb;
 
-		offset = (uint8_t *) &phba->slim2p->IOCBs[iocbCnt] -
-			 (uint8_t *) phba->slim2p;
-		pdma_addr = phba->slim2p_mapping + offset;
+		offset = (uint8_t *) &phba->IOCBs[iocbCnt] -
+			 (uint8_t *) phba->slim2p.virt;
+		pdma_addr = phba->slim2p.phys + offset;
 		pcbp->rdsc[i].cmdAddrHigh = putPaddrHigh(pdma_addr);
 		pcbp->rdsc[i].cmdAddrLow = putPaddrLow(pdma_addr);
 		iocbCnt += pring->numCiocb;
 
 		/* Response ring setup for ring */
-		pring->rspringaddr = (void *) &phba->slim2p->IOCBs[iocbCnt];
+		pring->rspringaddr = (void *) &phba->IOCBs[iocbCnt];
 
 		pcbp->rdsc[i].rspEntries = pring->numRiocb;
-		offset = (uint8_t *)&phba->slim2p->IOCBs[iocbCnt] -
-			 (uint8_t *)phba->slim2p;
-		pdma_addr = phba->slim2p_mapping + offset;
+		offset = (uint8_t *)&phba->IOCBs[iocbCnt] -
+			 (uint8_t *)phba->slim2p.virt;
+		pdma_addr = phba->slim2p.phys + offset;
 		pcbp->rdsc[i].rspAddrHigh = putPaddrHigh(pdma_addr);
 		pcbp->rdsc[i].rspAddrLow = putPaddrLow(pdma_addr);
 		iocbCnt += pring->numRiocb;
 	}
 }
 
+/**
+ * lpfc_read_rev: Prepare a mailbox command for reading HBA revision.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * The read revision mailbox command is used to read the revision levels of
+ * the HBA components. These components include hardware units, resident
+ * firmware, and available firmware. HBAs that supports SLI-3 mode of
+ * operation provide different response information depending on the version
+ * requested by the driver.
+ *
+ * This routine prepares the mailbox command for reading HBA revision
+ * information.
+ **/
 void
 lpfc_read_rev(struct lpfc_hba * phba, LPFC_MBOXQ_t * pmb)
 {
@@ -548,6 +828,16 @@
 	return;
 }
 
+/**
+ * lpfc_build_hbq_profile2: Set up the HBQ Selection Profile 2.
+ * @hbqmb: pointer to the HBQ configuration data structure in mailbox command.
+ * @hbq_desc: pointer to the HBQ selection profile descriptor.
+ *
+ * The Host Buffer Queue (HBQ) Selection Profile 2 specifies that the HBA
+ * tests the incoming frames' R_CTL/TYPE fields with works 10:15 and performs
+ * the Sequence Length Test using the fields in the Selection Profile 2
+ * extension in words 20:31.
+ **/
 static void
 lpfc_build_hbq_profile2(struct config_hbq_var *hbqmb,
 			struct lpfc_hbq_init  *hbq_desc)
@@ -557,6 +847,16 @@
 	hbqmb->profiles.profile2.seqlenoff  = hbq_desc->seqlenoff;
 }
 
+/**
+ * lpfc_build_hbq_profile3: Set up the HBQ Selection Profile 3.
+ * @hbqmb: pointer to the HBQ configuration data structure in mailbox command.
+ * @hbq_desc: pointer to the HBQ selection profile descriptor.
+ *
+ * The Host Buffer Queue (HBQ) Selection Profile 3 specifies that the HBA
+ * tests the incoming frame's R_CTL/TYPE fields with words 10:15 and performs
+ * the Sequence Length Test and Byte Field Test using the fields in the
+ * Selection Profile 3 extension in words 20:31.
+ **/
 static void
 lpfc_build_hbq_profile3(struct config_hbq_var *hbqmb,
 			struct lpfc_hbq_init  *hbq_desc)
@@ -569,6 +869,17 @@
 	       sizeof(hbqmb->profiles.profile3.cmdmatch));
 }
 
+/**
+ * lpfc_build_hbq_profile5: Set up the HBQ Selection Profile 5.
+ * @hbqmb: pointer to the HBQ configuration data structure in mailbox command.
+ * @hbq_desc: pointer to the HBQ selection profile descriptor.
+ *
+ * The Host Buffer Queue (HBQ) Selection Profile 5 specifies a header HBQ. The
+ * HBA tests the initial frame of an incoming sequence using the frame's
+ * R_CTL/TYPE fields with words 10:15 and performs the Sequence Length Test
+ * and Byte Field Test using the fields in the Selection Profile 5 extension
+ * words 20:31.
+ **/
 static void
 lpfc_build_hbq_profile5(struct config_hbq_var *hbqmb,
 			struct lpfc_hbq_init  *hbq_desc)
@@ -581,6 +892,20 @@
 	       sizeof(hbqmb->profiles.profile5.cmdmatch));
 }
 
+/**
+ * lpfc_config_hbq: Prepare a mailbox command for configuring an HBQ.
+ * @phba: pointer to lpfc hba data structure.
+ * @id: HBQ identifier.
+ * @hbq_desc: pointer to the HBA descriptor data structure.
+ * @hbq_entry_index: index of the HBQ entry data structures.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * The configure HBQ (Host Buffer Queue) mailbox command is used to configure
+ * an HBQ. The configuration binds events that require buffers to a particular
+ * ring and HBQ based on a selection profile.
+ *
+ * This routine prepares the mailbox command for configuring an HBQ.
+ **/
 void
 lpfc_config_hbq(struct lpfc_hba *phba, uint32_t id,
 		 struct lpfc_hbq_init *hbq_desc,
@@ -641,8 +966,23 @@
 	return;
 }
 
-
-
+/**
+ * lpfc_config_ring: Prepare a mailbox command for configuring an IOCB ring.
+ * @phba: pointer to lpfc hba data structure.
+ * @ring:
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * The configure ring mailbox command is used to configure an IOCB ring. This
+ * configuration binds from one to six of HBA RC_CTL/TYPE mask entries to the
+ * ring. This is used to map incoming sequences to a particular ring whose
+ * RC_CTL/TYPE mask entry matches that of the sequence. The driver should not
+ * attempt to configure a ring whose number is greater than the number
+ * specified in the Port Control Block (PCB). It is an error to issue the
+ * configure ring command more than once with the same ring number. The HBA
+ * returns an error if the driver attempts this.
+ *
+ * This routine prepares the mailbox command for configuring IOCB ring.
+ **/
 void
 lpfc_config_ring(struct lpfc_hba * phba, int ring, LPFC_MBOXQ_t * pmb)
 {
@@ -684,6 +1024,20 @@
 	return;
 }
 
+/**
+ * lpfc_config_port: Prepare a mailbox command for configuring port.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * The configure port mailbox command is used to identify the Port Control
+ * Block (PCB) in the driver memory. After this command is issued, the
+ * driver must not access the mailbox in the HBA without first resetting
+ * the HBA. The HBA may copy the PCB information to internal storage for
+ * subsequent use; the driver can not change the PCB information unless it
+ * resets the HBA.
+ *
+ * This routine prepares the mailbox command for configuring port.
+ **/
 void
 lpfc_config_port(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
 {
@@ -702,8 +1056,8 @@
 
 	mb->un.varCfgPort.pcbLen = sizeof(PCB_t);
 
-	offset = (uint8_t *)&phba->slim2p->pcb - (uint8_t *)phba->slim2p;
-	pdma_addr = phba->slim2p_mapping + offset;
+	offset = (uint8_t *)phba->pcb - (uint8_t *)phba->slim2p.virt;
+	pdma_addr = phba->slim2p.phys + offset;
 	mb->un.varCfgPort.pcbLow = putPaddrLow(pdma_addr);
 	mb->un.varCfgPort.pcbHigh = putPaddrHigh(pdma_addr);
 
@@ -711,12 +1065,13 @@
 
 	if (phba->sli_rev == 3 && phba->vpd.sli3Feat.cerbm) {
 		mb->un.varCfgPort.cerbm = 1; /* Request HBQs */
+		mb->un.varCfgPort.ccrp = 1; /* Command Ring Polling */
+		mb->un.varCfgPort.cinb = 1; /* Interrupt Notification Block */
 		mb->un.varCfgPort.max_hbq = lpfc_sli_hbq_count();
 		if (phba->max_vpi && phba->cfg_enable_npiv &&
 		    phba->vpd.sli3Feat.cmv) {
 			mb->un.varCfgPort.max_vpi = phba->max_vpi;
 			mb->un.varCfgPort.cmv = 1;
-			phba->sli3_options |= LPFC_SLI3_NPIV_ENABLED;
 		} else
 			mb->un.varCfgPort.max_vpi = phba->max_vpi = 0;
 	} else
@@ -724,16 +1079,15 @@
 	mb->un.varCfgPort.sli_mode = phba->sli_rev;
 
 	/* Now setup pcb */
-	phba->slim2p->pcb.type = TYPE_NATIVE_SLI2;
-	phba->slim2p->pcb.feature = FEATURE_INITIAL_SLI2;
+	phba->pcb->type = TYPE_NATIVE_SLI2;
+	phba->pcb->feature = FEATURE_INITIAL_SLI2;
 
 	/* Setup Mailbox pointers */
-	phba->slim2p->pcb.mailBoxSize = offsetof(MAILBOX_t, us) +
-		sizeof(struct sli2_desc);
-	offset = (uint8_t *)&phba->slim2p->mbx - (uint8_t *)phba->slim2p;
-	pdma_addr = phba->slim2p_mapping + offset;
-	phba->slim2p->pcb.mbAddrHigh = putPaddrHigh(pdma_addr);
-	phba->slim2p->pcb.mbAddrLow = putPaddrLow(pdma_addr);
+	phba->pcb->mailBoxSize = sizeof(MAILBOX_t);
+	offset = (uint8_t *)phba->mbox - (uint8_t *)phba->slim2p.virt;
+	pdma_addr = phba->slim2p.phys + offset;
+	phba->pcb->mbAddrHigh = putPaddrHigh(pdma_addr);
+	phba->pcb->mbAddrLow = putPaddrLow(pdma_addr);
 
 	/*
 	 * Setup Host Group ring pointer.
@@ -794,13 +1148,13 @@
 	}
 
 	/* mask off BAR0's flag bits 0 - 3 */
-	phba->slim2p->pcb.hgpAddrLow = (bar_low & PCI_BASE_ADDRESS_MEM_MASK) +
-		(void __iomem *) phba->host_gp -
+	phba->pcb->hgpAddrLow = (bar_low & PCI_BASE_ADDRESS_MEM_MASK) +
+		(void __iomem *)phba->host_gp -
 		(void __iomem *)phba->MBslimaddr;
 	if (bar_low & PCI_BASE_ADDRESS_MEM_TYPE_64)
-		phba->slim2p->pcb.hgpAddrHigh = bar_high;
+		phba->pcb->hgpAddrHigh = bar_high;
 	else
-		phba->slim2p->pcb.hgpAddrHigh = 0;
+		phba->pcb->hgpAddrHigh = 0;
 	/* write HGP data to SLIM at the required longword offset */
 	memset(&hgp, 0, sizeof(struct lpfc_hgp));
 
@@ -810,17 +1164,19 @@
 	}
 
 	/* Setup Port Group ring pointer */
-	if (phba->sli_rev == 3)
-		pgp_offset = (uint8_t *)&phba->slim2p->mbx.us.s3_pgp.port -
-			(uint8_t *)phba->slim2p;
-	else
-		pgp_offset = (uint8_t *)&phba->slim2p->mbx.us.s2.port -
-			(uint8_t *)phba->slim2p;
-
-	pdma_addr = phba->slim2p_mapping + pgp_offset;
-	phba->slim2p->pcb.pgpAddrHigh = putPaddrHigh(pdma_addr);
-	phba->slim2p->pcb.pgpAddrLow = putPaddrLow(pdma_addr);
-	phba->hbq_get = &phba->slim2p->mbx.us.s3_pgp.hbq_get[0];
+	if (phba->sli3_options & LPFC_SLI3_INB_ENABLED) {
+		pgp_offset = offsetof(struct lpfc_sli2_slim,
+				      mbx.us.s3_inb_pgp.port);
+		phba->hbq_get = phba->mbox->us.s3_inb_pgp.hbq_get;
+	} else if (phba->sli_rev == 3) {
+		pgp_offset = offsetof(struct lpfc_sli2_slim,
+				      mbx.us.s3_pgp.port);
+		phba->hbq_get = phba->mbox->us.s3_pgp.hbq_get;
+	} else
+		pgp_offset = offsetof(struct lpfc_sli2_slim, mbx.us.s2.port);
+	pdma_addr = phba->slim2p.phys + pgp_offset;
+	phba->pcb->pgpAddrHigh = putPaddrHigh(pdma_addr);
+	phba->pcb->pgpAddrLow = putPaddrLow(pdma_addr);
 
 	/* Use callback routine to setp rings in the pcb */
 	lpfc_config_pcb_setup(phba);
@@ -835,10 +1191,24 @@
 	}
 
 	/* Swap PCB if needed */
-	lpfc_sli_pcimem_bcopy(&phba->slim2p->pcb, &phba->slim2p->pcb,
-			      sizeof(PCB_t));
+	lpfc_sli_pcimem_bcopy(phba->pcb, phba->pcb, sizeof(PCB_t));
 }
 
+/**
+ * lpfc_kill_board: Prepare a mailbox command for killing board.
+ * @phba: pointer to lpfc hba data structure.
+ * @pmb: pointer to the driver internal queue element for mailbox command.
+ *
+ * The kill board mailbox command is used to tell firmware to perform a
+ * graceful shutdown of a channel on a specified board to prepare for reset.
+ * When the kill board mailbox command is received, the ER3 bit is set to 1
+ * in the Host Status register and the ER Attention bit is set to 1 in the
+ * Host Attention register of the HBA function that received the kill board
+ * command.
+ *
+ * This routine prepares the mailbox command for killing the board in
+ * preparation for a graceful shutdown.
+ **/
 void
 lpfc_kill_board(struct lpfc_hba * phba, LPFC_MBOXQ_t * pmb)
 {
@@ -850,6 +1220,16 @@
 	return;
 }
 
+/**
+ * lpfc_mbox_put: Put a mailbox cmd into the tail of driver's mailbox queue.
+ * @phba: pointer to lpfc hba data structure.
+ * @mbq: pointer to the driver internal queue element for mailbox command.
+ *
+ * Driver maintains a internal mailbox command queue implemented as a linked
+ * list. When a mailbox command is issued, it shall be put into the mailbox
+ * command queue such that they shall be processed orderly as HBA can process
+ * one mailbox command at a time.
+ **/
 void
 lpfc_mbox_put(struct lpfc_hba * phba, LPFC_MBOXQ_t * mbq)
 {
@@ -864,6 +1244,20 @@
 	return;
 }
 
+/**
+ * lpfc_mbox_get: Remove a mailbox cmd from the head of driver's mailbox queue.
+ * @phba: pointer to lpfc hba data structure.
+ *
+ * Driver maintains a internal mailbox command queue implemented as a linked
+ * list. When a mailbox command is issued, it shall be put into the mailbox
+ * command queue such that they shall be processed orderly as HBA can process
+ * one mailbox command at a time. After HBA finished processing a mailbox
+ * command, the driver will remove a pending mailbox command from the head of
+ * the mailbox command queue and send to the HBA for processing.
+ *
+ * Return codes
+ *    pointer to the driver internal queue element for mailbox command.
+ **/
 LPFC_MBOXQ_t *
 lpfc_mbox_get(struct lpfc_hba * phba)
 {
@@ -877,6 +1271,17 @@
 	return mbq;
 }
 
+/**
+ * lpfc_mbox_cmpl_put: Put mailbox command into mailbox command complete list.
+ * @phba: pointer to lpfc hba data structure.
+ * @mbq: pointer to the driver internal queue element for mailbox command.
+ *
+ * This routine put the completed mailbox command into the mailbox command
+ * complete list. This routine is called from driver interrupt handler
+ * context.The mailbox complete list is used by the driver worker thread
+ * to process mailbox complete callback functions outside the driver interrupt
+ * handler.
+ **/
 void
 lpfc_mbox_cmpl_put(struct lpfc_hba * phba, LPFC_MBOXQ_t * mbq)
 {
@@ -887,6 +1292,17 @@
 	return;
 }
 
+/**
+ * lpfc_mbox_tmo_val: Retrieve mailbox command timeout value.
+ * @phba: pointer to lpfc hba data structure.
+ * @cmd: mailbox command code.
+ *
+ * This routine retrieves the proper timeout value according to the mailbox
+ * command code.
+ *
+ * Return codes
+ *    Timeout value to be used for the given mailbox command
+ **/
 int
 lpfc_mbox_tmo_val(struct lpfc_hba *phba, int cmd)
 {
diff --git a/drivers/scsi/lpfc/lpfc_mem.c b/drivers/scsi/lpfc/lpfc_mem.c
index 3c0cebc..a4bba20 100644
--- a/drivers/scsi/lpfc/lpfc_mem.c
+++ b/drivers/scsi/lpfc/lpfc_mem.c
@@ -1,7 +1,7 @@
 /*******************************************************************
  * This file is part of the Emulex Linux Device Driver for         *
  * Fibre Channel Host Bus Adapters.                                *
- * Copyright (C) 2004-2006 Emulex.  All rights reserved.           *
+ * Copyright (C) 2004-2008 Emulex.  All rights reserved.           *
  * EMULEX and SLI are trademarks of Emulex.                        *
  * www.emulex.com                                                  *
  * Portions Copyright (C) 2004-2005 Christoph Hellwig              *
@@ -30,6 +30,7 @@
 
 #include "lpfc_hw.h"
 #include "lpfc_sli.h"
+#include "lpfc_nl.h"
 #include "lpfc_disc.h"
 #include "lpfc_scsi.h"
 #include "lpfc.h"
@@ -39,7 +40,21 @@
 #define LPFC_MEM_POOL_SIZE      64      /* max elem in non-DMA safety pool */
 
 
-
+/**
+ * lpfc_mem_alloc: create and allocate all PCI and memory pools
+ * @phba: HBA to allocate pools for
+ *
+ * Description: Creates and allocates PCI pools lpfc_scsi_dma_buf_pool,
+ * lpfc_mbuf_pool, lpfc_hbq_pool.  Creates and allocates kmalloc-backed mempools
+ * for LPFC_MBOXQ_t and lpfc_nodelist.  Also allocates the VPI bitmask.
+ *
+ * Notes: Not interrupt-safe.  Must be called with no locks held.  If any
+ * allocation fails, frees all successfully allocated memory before returning.
+ *
+ * Returns:
+ *   0 on success
+ *   -ENOMEM on failure (if any memory allocations fail)
+ **/
 int
 lpfc_mem_alloc(struct lpfc_hba * phba)
 {
@@ -120,6 +135,16 @@
 	return -ENOMEM;
 }
 
+/**
+ * lpfc_mem_free: Frees all PCI and memory allocated by lpfc_mem_alloc
+ * @phba: HBA to free memory for
+ *
+ * Description: Frees PCI pools lpfc_scsi_dma_buf_pool, lpfc_mbuf_pool,
+ * lpfc_hbq_pool.  Frees kmalloc-backed mempools for LPFC_MBOXQ_t and
+ * lpfc_nodelist.  Also frees the VPI bitmask.
+ *
+ * Returns: None
+ **/
 void
 lpfc_mem_free(struct lpfc_hba * phba)
 {
@@ -181,12 +206,29 @@
 	phba->lpfc_scsi_dma_buf_pool = NULL;
 	phba->lpfc_mbuf_pool = NULL;
 
-				/* Free the iocb lookup array */
+	/* Free the iocb lookup array */
 	kfree(psli->iocbq_lookup);
 	psli->iocbq_lookup = NULL;
-
 }
 
+/**
+ * lpfc_mbuf_alloc: Allocate an mbuf from the lpfc_mbuf_pool PCI pool
+ * @phba: HBA which owns the pool to allocate from
+ * @mem_flags: indicates if this is a priority (MEM_PRI) allocation
+ * @handle: used to return the DMA-mapped address of the mbuf
+ *
+ * Description: Allocates a DMA-mapped buffer from the lpfc_mbuf_pool PCI pool.
+ * Allocates from generic pci_pool_alloc function first and if that fails and
+ * mem_flags has MEM_PRI set (the only defined flag), returns an mbuf from the
+ * HBA's pool.
+ *
+ * Notes: Not interrupt-safe.  Must be called with no locks held.  Takes
+ * phba->hbalock.
+ *
+ * Returns:
+ *   pointer to the allocated mbuf on success
+ *   NULL on failure
+ **/
 void *
 lpfc_mbuf_alloc(struct lpfc_hba *phba, int mem_flags, dma_addr_t *handle)
 {
@@ -206,6 +248,20 @@
 	return ret;
 }
 
+/**
+ * __lpfc_mem_free: Free an mbuf from the lpfc_mbuf_pool PCI pool (locked)
+ * @phba: HBA which owns the pool to return to
+ * @virt: mbuf to free
+ * @dma: the DMA-mapped address of the lpfc_mbuf_pool to be freed
+ *
+ * Description: Returns an mbuf lpfc_mbuf_pool to the lpfc_mbuf_safety_pool if
+ * it is below its max_count, frees the mbuf otherwise.
+ *
+ * Notes: Must be called with phba->hbalock held to synchronize access to
+ * lpfc_mbuf_safety_pool.
+ *
+ * Returns: None
+ **/
 void
 __lpfc_mbuf_free(struct lpfc_hba * phba, void *virt, dma_addr_t dma)
 {
@@ -221,7 +277,21 @@
 	return;
 }
 
+/**
+ * lpfc_mem_free: Free an mbuf from the lpfc_mbuf_pool PCI pool (unlocked)
+ * @phba: HBA which owns the pool to return to
+ * @virt: mbuf to free
+ * @dma: the DMA-mapped address of the lpfc_mbuf_pool to be freed
+ *
+ * Description: Returns an mbuf lpfc_mbuf_pool to the lpfc_mbuf_safety_pool if
+ * it is below its max_count, frees the mbuf otherwise.
+ *
+ * Notes: Takes phba->hbalock.  Can be called with or without other locks held.
+ *
+ * Returns: None
+ **/
 void
+
 lpfc_mbuf_free(struct lpfc_hba * phba, void *virt, dma_addr_t dma)
 {
 	unsigned long iflags;
@@ -232,6 +302,19 @@
 	return;
 }
 
+/**
+ * lpfc_els_hbq_alloc: Allocate an HBQ buffer
+ * @phba: HBA to allocate HBQ buffer for
+ *
+ * Description: Allocates a DMA-mapped HBQ buffer from the lpfc_hbq_pool PCI
+ * pool along a non-DMA-mapped container for it.
+ *
+ * Notes: Not interrupt-safe.  Must be called with no locks held.
+ *
+ * Returns:
+ *   pointer to HBQ on success
+ *   NULL on failure
+ **/
 struct hbq_dmabuf *
 lpfc_els_hbq_alloc(struct lpfc_hba *phba)
 {
@@ -251,6 +334,18 @@
 	return hbqbp;
 }
 
+/**
+ * lpfc_mem_hbq_free: Frees an HBQ buffer allocated with lpfc_els_hbq_alloc
+ * @phba: HBA buffer was allocated for
+ * @hbqbp: HBQ container returned by lpfc_els_hbq_alloc
+ *
+ * Description: Frees both the container and the DMA-mapped buffer returned by
+ * lpfc_els_hbq_alloc.
+ *
+ * Notes: Can be called with or without locks held.
+ *
+ * Returns: None
+ **/
 void
 lpfc_els_hbq_free(struct lpfc_hba *phba, struct hbq_dmabuf *hbqbp)
 {
@@ -259,7 +354,18 @@
 	return;
 }
 
-/* This is ONLY called for the LPFC_ELS_HBQ */
+/**
+ * lpfc_in_buf_free: Free a DMA buffer
+ * @phba: HBA buffer is associated with
+ * @mp: Buffer to free
+ *
+ * Description: Frees the given DMA buffer in the appropriate way given if the
+ * HBA is running in SLI3 mode with HBQs enabled.
+ *
+ * Notes: Takes phba->hbalock.  Can be called with or without other locks held.
+ *
+ * Returns: None
+ **/
 void
 lpfc_in_buf_free(struct lpfc_hba *phba, struct lpfc_dmabuf *mp)
 {
diff --git a/drivers/scsi/lpfc/lpfc_nl.h b/drivers/scsi/lpfc/lpfc_nl.h
new file mode 100644
index 0000000..1accb5a
--- /dev/null
+++ b/drivers/scsi/lpfc/lpfc_nl.h
@@ -0,0 +1,163 @@
+/*******************************************************************
+ * This file is part of the Emulex Linux Device Driver for         *
+ * Fibre Channel Host Bus Adapters.                                *
+ * Copyright (C) 2008 Emulex.  All rights reserved.                *
+ * EMULEX and SLI are trademarks of Emulex.                        *
+ * www.emulex.com                                                  *
+ *                                                                 *
+ * This program is free software; you can redistribute it and/or   *
+ * modify it under the terms of version 2 of the GNU General       *
+ * Public License as published by the Free Software Foundation.    *
+ * This program is distributed in the hope that it will be useful. *
+ * ALL EXPRESS OR IMPLIED CONDITIONS, REPRESENTATIONS AND          *
+ * WARRANTIES, INCLUDING ANY IMPLIED WARRANTY OF MERCHANTABILITY,  *
+ * FITNESS FOR A PARTICULAR PURPOSE, OR NON-INFRINGEMENT, ARE      *
+ * DISCLAIMED, EXCEPT TO THE EXTENT THAT SUCH DISCLAIMERS ARE HELD *
+ * TO BE LEGALLY INVALID.  See the GNU General Public License for  *
+ * more details, a copy of which can be found in the file COPYING  *
+ * included with this package.                                     *
+ *******************************************************************/
+
+/* Event definitions for RegisterForEvent */
+#define FC_REG_LINK_EVENT		0x0001	/* link up / down events */
+#define FC_REG_RSCN_EVENT		0x0002	/* RSCN events */
+#define FC_REG_CT_EVENT			0x0004	/* CT request events */
+#define FC_REG_DUMP_EVENT		0x0008	/* Dump events */
+#define FC_REG_TEMPERATURE_EVENT	0x0010	/* temperature events */
+#define FC_REG_ELS_EVENT		0x0020	/* lpfc els events */
+#define FC_REG_FABRIC_EVENT		0x0040	/* lpfc fabric events */
+#define FC_REG_SCSI_EVENT		0x0080	/* lpfc scsi events */
+#define FC_REG_BOARD_EVENT		0x0100	/* lpfc board events */
+#define FC_REG_ADAPTER_EVENT		0x0200	/* lpfc adapter events */
+#define FC_REG_EVENT_MASK		(FC_REG_LINK_EVENT | \
+						FC_REG_RSCN_EVENT | \
+						FC_REG_CT_EVENT | \
+						FC_REG_DUMP_EVENT | \
+						FC_REG_TEMPERATURE_EVENT | \
+						FC_REG_ELS_EVENT | \
+						FC_REG_FABRIC_EVENT | \
+						FC_REG_SCSI_EVENT | \
+						FC_REG_BOARD_EVENT | \
+						FC_REG_ADAPTER_EVENT)
+/* Temperature events */
+#define LPFC_CRIT_TEMP		0x1
+#define LPFC_THRESHOLD_TEMP	0x2
+#define LPFC_NORMAL_TEMP	0x3
+/*
+ * All net link event payloads will begin with and event type
+ * and subcategory. The event type must come first.
+ * The subcategory further defines the data that follows in the rest
+ * of the payload. Each category will have its own unique header plus
+ * any addtional data unique to the subcategory.
+ * The payload sent via the fc transport is one-way driver->application.
+ */
+
+/* els event header */
+struct lpfc_els_event_header {
+	uint32_t event_type;
+	uint32_t subcategory;
+	uint8_t wwpn[8];
+	uint8_t wwnn[8];
+};
+
+/* subcategory codes for FC_REG_ELS_EVENT */
+#define LPFC_EVENT_PLOGI_RCV		0x01
+#define LPFC_EVENT_PRLO_RCV		0x02
+#define LPFC_EVENT_ADISC_RCV		0x04
+#define LPFC_EVENT_LSRJT_RCV		0x08
+
+/* special els lsrjt event */
+struct lpfc_lsrjt_event {
+	struct lpfc_els_event_header header;
+	uint32_t command;
+	uint32_t reason_code;
+	uint32_t explanation;
+};
+
+
+/* fabric event header */
+struct lpfc_fabric_event_header {
+	uint32_t event_type;
+	uint32_t subcategory;
+	uint8_t wwpn[8];
+	uint8_t wwnn[8];
+};
+
+/* subcategory codes for FC_REG_FABRIC_EVENT */
+#define LPFC_EVENT_FABRIC_BUSY		0x01
+#define LPFC_EVENT_PORT_BUSY		0x02
+#define LPFC_EVENT_FCPRDCHKERR		0x04
+
+/* special case fabric fcprdchkerr event */
+struct lpfc_fcprdchkerr_event {
+	struct lpfc_fabric_event_header header;
+	uint32_t lun;
+	uint32_t opcode;
+	uint32_t fcpiparam;
+};
+
+
+/* scsi event header */
+struct lpfc_scsi_event_header {
+	uint32_t event_type;
+	uint32_t subcategory;
+	uint32_t lun;
+	uint8_t wwpn[8];
+	uint8_t wwnn[8];
+};
+
+/* subcategory codes for FC_REG_SCSI_EVENT */
+#define LPFC_EVENT_QFULL	0x0001
+#define LPFC_EVENT_DEVBSY	0x0002
+#define LPFC_EVENT_CHECK_COND	0x0004
+#define LPFC_EVENT_LUNRESET	0x0008
+#define LPFC_EVENT_TGTRESET	0x0010
+#define LPFC_EVENT_BUSRESET	0x0020
+#define LPFC_EVENT_VARQUEDEPTH	0x0040
+
+/* special case scsi varqueuedepth event */
+struct lpfc_scsi_varqueuedepth_event {
+	struct lpfc_scsi_event_header scsi_event;
+	uint32_t oldval;
+	uint32_t newval;
+};
+
+/* special case scsi check condition event */
+struct lpfc_scsi_check_condition_event {
+	struct lpfc_scsi_event_header scsi_event;
+	uint8_t sense_key;
+	uint8_t asc;
+	uint8_t ascq;
+};
+
+/* event codes for FC_REG_BOARD_EVENT */
+#define LPFC_EVENT_PORTINTERR		0x01
+
+/* board event header */
+struct lpfc_board_event_header {
+	uint32_t event_type;
+	uint32_t subcategory;
+};
+
+
+/* event codes for FC_REG_ADAPTER_EVENT */
+#define LPFC_EVENT_ARRIVAL	0x01
+
+/* adapter event header */
+struct lpfc_adapter_event_header {
+	uint32_t event_type;
+	uint32_t subcategory;
+};
+
+
+/* event codes for temp_event */
+#define LPFC_CRIT_TEMP		0x1
+#define LPFC_THRESHOLD_TEMP	0x2
+#define LPFC_NORMAL_TEMP	0x3
+
+struct temp_event {
+	uint32_t event_type;
+	uint32_t event_code;
+	uint32_t data;
+};
+
diff --git a/drivers/scsi/lpfc/lpfc_nportdisc.c b/drivers/scsi/lpfc/lpfc_nportdisc.c
index 6688a86..0c25d97 100644
--- a/drivers/scsi/lpfc/lpfc_nportdisc.c
+++ b/drivers/scsi/lpfc/lpfc_nportdisc.c
@@ -30,6 +30,7 @@
 
 #include "lpfc_hw.h"
 #include "lpfc_sli.h"
+#include "lpfc_nl.h"
 #include "lpfc_disc.h"
 #include "lpfc_scsi.h"
 #include "lpfc.h"
@@ -1003,20 +1004,8 @@
 			spin_lock_irq(shost->host_lock);
 			ndlp->nlp_flag &= ~NLP_NPR_2B_DISC;
 			spin_unlock_irq(shost->host_lock);
-
-			if (vport->num_disc_nodes) {
+			if (vport->num_disc_nodes)
 				lpfc_more_adisc(vport);
-				if ((vport->num_disc_nodes == 0) &&
-				    (vport->fc_npr_cnt))
-					lpfc_els_disc_plogi(vport);
-				if (vport->num_disc_nodes == 0) {
-					spin_lock_irq(shost->host_lock);
-					vport->fc_flag &= ~FC_NDISC_ACTIVE;
-					spin_unlock_irq(shost->host_lock);
-					lpfc_can_disctmo(vport);
-					lpfc_end_rscn(vport);
-				}
-			}
 		}
 		return ndlp->nlp_state;
 	}
@@ -1865,8 +1854,13 @@
 lpfc_cmpl_logo_npr_node(struct lpfc_vport *vport, struct lpfc_nodelist *ndlp,
 			void *arg, uint32_t evt)
 {
+	struct Scsi_Host *shost = lpfc_shost_from_vport(vport);
+	if (ndlp->nlp_DID == Fabric_DID) {
+		spin_lock_irq(shost->host_lock);
+		vport->fc_flag &= ~(FC_FABRIC | FC_PUBLIC_LOOP);
+		spin_unlock_irq(shost->host_lock);
+	}
 	lpfc_unreg_rpi(vport, ndlp);
-	/* This routine does nothing, just return the current state */
 	return ndlp->nlp_state;
 }
 
@@ -2155,7 +2149,7 @@
 		lpfc_nlp_put(ndlp);
 	} else {
 		lpfc_printf_vlog(vport, KERN_INFO, LOG_DISCOVERY,
-			"0212 DSM out state %d on NPort free\n", rc);
+			"0213 DSM out state %d on NPort free\n", rc);
 
 		lpfc_debugfs_disc_trc(vport, LPFC_DISC_TRC_DSM,
 			"DSM out:         ste:%d did:x%x flg:x%x",
diff --git a/drivers/scsi/lpfc/lpfc_scsi.c b/drivers/scsi/lpfc/lpfc_scsi.c
index 1bcebbd..bd18674 100644
--- a/drivers/scsi/lpfc/lpfc_scsi.c
+++ b/drivers/scsi/lpfc/lpfc_scsi.c
@@ -32,6 +32,7 @@
 #include "lpfc_version.h"
 #include "lpfc_hw.h"
 #include "lpfc_sli.h"
+#include "lpfc_nl.h"
 #include "lpfc_disc.h"
 #include "lpfc_scsi.h"
 #include "lpfc.h"
@@ -42,6 +43,111 @@
 #define LPFC_RESET_WAIT  2
 #define LPFC_ABORT_WAIT  2
 
+/**
+ * lpfc_update_stats: Update statistical data for the command completion.
+ * @phba: Pointer to HBA object.
+ * @lpfc_cmd: lpfc scsi command object pointer.
+ *
+ * This function is called when there is a command completion and this
+ * function updates the statistical data for the command completion.
+ **/
+static void
+lpfc_update_stats(struct lpfc_hba *phba, struct  lpfc_scsi_buf *lpfc_cmd)
+{
+	struct lpfc_rport_data *rdata = lpfc_cmd->rdata;
+	struct lpfc_nodelist *pnode = rdata->pnode;
+	struct scsi_cmnd *cmd = lpfc_cmd->pCmd;
+	unsigned long flags;
+	struct Scsi_Host  *shost = cmd->device->host;
+	struct lpfc_vport *vport = (struct lpfc_vport *) shost->hostdata;
+	unsigned long latency;
+	int i;
+
+	if (cmd->result)
+		return;
+
+	spin_lock_irqsave(shost->host_lock, flags);
+	if (!vport->stat_data_enabled ||
+		vport->stat_data_blocked ||
+		!pnode->lat_data ||
+		(phba->bucket_type == LPFC_NO_BUCKET)) {
+		spin_unlock_irqrestore(shost->host_lock, flags);
+		return;
+	}
+	latency = jiffies_to_msecs(jiffies - lpfc_cmd->start_time);
+
+	if (phba->bucket_type == LPFC_LINEAR_BUCKET) {
+		i = (latency + phba->bucket_step - 1 - phba->bucket_base)/
+			phba->bucket_step;
+		if (i >= LPFC_MAX_BUCKET_COUNT)
+			i = LPFC_MAX_BUCKET_COUNT;
+	} else {
+		for (i = 0; i < LPFC_MAX_BUCKET_COUNT-1; i++)
+			if (latency <= (phba->bucket_base +
+				((1<<i)*phba->bucket_step)))
+				break;
+	}
+
+	pnode->lat_data[i].cmd_count++;
+	spin_unlock_irqrestore(shost->host_lock, flags);
+}
+
+
+/**
+ * lpfc_send_sdev_queuedepth_change_event: Posts a queuedepth change
+ *                   event.
+ * @phba: Pointer to HBA context object.
+ * @vport: Pointer to vport object.
+ * @ndlp: Pointer to FC node associated with the target.
+ * @lun: Lun number of the scsi device.
+ * @old_val: Old value of the queue depth.
+ * @new_val: New value of the queue depth.
+ *
+ * This function sends an event to the mgmt application indicating
+ * there is a change in the scsi device queue depth.
+ **/
+static void
+lpfc_send_sdev_queuedepth_change_event(struct lpfc_hba *phba,
+		struct lpfc_vport  *vport,
+		struct lpfc_nodelist *ndlp,
+		uint32_t lun,
+		uint32_t old_val,
+		uint32_t new_val)
+{
+	struct lpfc_fast_path_event *fast_path_evt;
+	unsigned long flags;
+
+	fast_path_evt = lpfc_alloc_fast_evt(phba);
+	if (!fast_path_evt)
+		return;
+
+	fast_path_evt->un.queue_depth_evt.scsi_event.event_type =
+		FC_REG_SCSI_EVENT;
+	fast_path_evt->un.queue_depth_evt.scsi_event.subcategory =
+		LPFC_EVENT_VARQUEDEPTH;
+
+	/* Report all luns with change in queue depth */
+	fast_path_evt->un.queue_depth_evt.scsi_event.lun = lun;
+	if (ndlp && NLP_CHK_NODE_ACT(ndlp)) {
+		memcpy(&fast_path_evt->un.queue_depth_evt.scsi_event.wwpn,
+			&ndlp->nlp_portname, sizeof(struct lpfc_name));
+		memcpy(&fast_path_evt->un.queue_depth_evt.scsi_event.wwnn,
+			&ndlp->nlp_nodename, sizeof(struct lpfc_name));
+	}
+
+	fast_path_evt->un.queue_depth_evt.oldval = old_val;
+	fast_path_evt->un.queue_depth_evt.newval = new_val;
+	fast_path_evt->vport = vport;
+
+	fast_path_evt->work_evt.evt = LPFC_EVT_FASTPATH_MGMT_EVT;
+	spin_lock_irqsave(&phba->hbalock, flags);
+	list_add_tail(&fast_path_evt->work_evt.evt_listp, &phba->work_list);
+	spin_unlock_irqrestore(&phba->hbalock, flags);
+	lpfc_worker_wake_up(phba);
+
+	return;
+}
+
 /*
  * This function is called with no lock held when there is a resource
  * error in driver or in firmware.
@@ -117,9 +223,10 @@
 	struct lpfc_vport **vports;
 	struct Scsi_Host  *shost;
 	struct scsi_device *sdev;
-	unsigned long new_queue_depth;
+	unsigned long new_queue_depth, old_queue_depth;
 	unsigned long num_rsrc_err, num_cmd_success;
 	int i;
+	struct lpfc_rport_data *rdata;
 
 	num_rsrc_err = atomic_read(&phba->num_rsrc_err);
 	num_cmd_success = atomic_read(&phba->num_cmd_success);
@@ -137,6 +244,7 @@
 				else
 					new_queue_depth = sdev->queue_depth -
 								new_queue_depth;
+				old_queue_depth = sdev->queue_depth;
 				if (sdev->ordered_tags)
 					scsi_adjust_queue_depth(sdev,
 							MSG_ORDERED_TAG,
@@ -145,6 +253,13 @@
 					scsi_adjust_queue_depth(sdev,
 							MSG_SIMPLE_TAG,
 							new_queue_depth);
+				rdata = sdev->hostdata;
+				if (rdata)
+					lpfc_send_sdev_queuedepth_change_event(
+						phba, vports[i],
+						rdata->pnode,
+						sdev->lun, old_queue_depth,
+						new_queue_depth);
 			}
 		}
 	lpfc_destroy_vport_work_array(phba, vports);
@@ -159,6 +274,7 @@
 	struct Scsi_Host  *shost;
 	struct scsi_device *sdev;
 	int i;
+	struct lpfc_rport_data *rdata;
 
 	vports = lpfc_create_vport_work_array(phba);
 	if (vports != NULL)
@@ -176,6 +292,14 @@
 					scsi_adjust_queue_depth(sdev,
 							MSG_SIMPLE_TAG,
 							sdev->queue_depth+1);
+				rdata = sdev->hostdata;
+				if (rdata)
+					lpfc_send_sdev_queuedepth_change_event(
+						phba, vports[i],
+						rdata->pnode,
+						sdev->lun,
+						sdev->queue_depth - 1,
+						sdev->queue_depth);
 			}
 		}
 	lpfc_destroy_vport_work_array(phba, vports);
@@ -183,6 +307,35 @@
 	atomic_set(&phba->num_cmd_success, 0);
 }
 
+/**
+ * lpfc_scsi_dev_block: set all scsi hosts to block state.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function walks vport list and set each SCSI host to block state
+ * by invoking fc_remote_port_delete() routine. This function is invoked
+ * with EEH when device's PCI slot has been permanently disabled.
+ **/
+void
+lpfc_scsi_dev_block(struct lpfc_hba *phba)
+{
+	struct lpfc_vport **vports;
+	struct Scsi_Host  *shost;
+	struct scsi_device *sdev;
+	struct fc_rport *rport;
+	int i;
+
+	vports = lpfc_create_vport_work_array(phba);
+	if (vports != NULL)
+		for (i = 0; i <= phba->max_vpi && vports[i] != NULL; i++) {
+			shost = lpfc_shost_from_vport(vports[i]);
+			shost_for_each_device(sdev, shost) {
+				rport = starget_to_rport(scsi_target(sdev));
+				fc_remote_port_delete(rport);
+			}
+		}
+	lpfc_destroy_vport_work_array(phba, vports);
+}
+
 /*
  * This routine allocates a scsi buffer, which contains all the necessary
  * information needed to initiate a SCSI I/O.  The non-DMAable buffer region
@@ -198,7 +351,9 @@
 	struct lpfc_scsi_buf *psb;
 	struct ulp_bde64 *bpl;
 	IOCB_t *iocb;
-	dma_addr_t pdma_phys;
+	dma_addr_t pdma_phys_fcp_cmd;
+	dma_addr_t pdma_phys_fcp_rsp;
+	dma_addr_t pdma_phys_bpl;
 	uint16_t iotag;
 
 	psb = kzalloc(sizeof(struct lpfc_scsi_buf), GFP_KERNEL);
@@ -238,40 +393,60 @@
 
 	/* Initialize local short-hand pointers. */
 	bpl = psb->fcp_bpl;
-	pdma_phys = psb->dma_handle;
+	pdma_phys_fcp_cmd = psb->dma_handle;
+	pdma_phys_fcp_rsp = psb->dma_handle + sizeof(struct fcp_cmnd);
+	pdma_phys_bpl = psb->dma_handle + sizeof(struct fcp_cmnd) +
+			sizeof(struct fcp_rsp);
 
 	/*
 	 * The first two bdes are the FCP_CMD and FCP_RSP.  The balance are sg
 	 * list bdes.  Initialize the first two and leave the rest for
 	 * queuecommand.
 	 */
-	bpl->addrHigh = le32_to_cpu(putPaddrHigh(pdma_phys));
-	bpl->addrLow = le32_to_cpu(putPaddrLow(pdma_phys));
-	bpl->tus.f.bdeSize = sizeof (struct fcp_cmnd);
-	bpl->tus.f.bdeFlags = BUFF_USE_CMND;
-	bpl->tus.w = le32_to_cpu(bpl->tus.w);
-	bpl++;
+	bpl[0].addrHigh = le32_to_cpu(putPaddrHigh(pdma_phys_fcp_cmd));
+	bpl[0].addrLow = le32_to_cpu(putPaddrLow(pdma_phys_fcp_cmd));
+	bpl[0].tus.f.bdeSize = sizeof(struct fcp_cmnd);
+	bpl[0].tus.f.bdeFlags = BUFF_TYPE_BDE_64;
+	bpl[0].tus.w = le32_to_cpu(bpl->tus.w);
 
 	/* Setup the physical region for the FCP RSP */
-	pdma_phys += sizeof (struct fcp_cmnd);
-	bpl->addrHigh = le32_to_cpu(putPaddrHigh(pdma_phys));
-	bpl->addrLow = le32_to_cpu(putPaddrLow(pdma_phys));
-	bpl->tus.f.bdeSize = sizeof (struct fcp_rsp);
-	bpl->tus.f.bdeFlags = (BUFF_USE_CMND | BUFF_USE_RCV);
-	bpl->tus.w = le32_to_cpu(bpl->tus.w);
+	bpl[1].addrHigh = le32_to_cpu(putPaddrHigh(pdma_phys_fcp_rsp));
+	bpl[1].addrLow = le32_to_cpu(putPaddrLow(pdma_phys_fcp_rsp));
+	bpl[1].tus.f.bdeSize = sizeof(struct fcp_rsp);
+	bpl[1].tus.f.bdeFlags = BUFF_TYPE_BDE_64;
+	bpl[1].tus.w = le32_to_cpu(bpl->tus.w);
 
 	/*
 	 * Since the IOCB for the FCP I/O is built into this lpfc_scsi_buf,
 	 * initialize it with all known data now.
 	 */
-	pdma_phys += (sizeof (struct fcp_rsp));
 	iocb = &psb->cur_iocbq.iocb;
 	iocb->un.fcpi64.bdl.ulpIoTag32 = 0;
-	iocb->un.fcpi64.bdl.addrHigh = putPaddrHigh(pdma_phys);
-	iocb->un.fcpi64.bdl.addrLow = putPaddrLow(pdma_phys);
-	iocb->un.fcpi64.bdl.bdeSize = (2 * sizeof (struct ulp_bde64));
-	iocb->un.fcpi64.bdl.bdeFlags = BUFF_TYPE_BDL;
-	iocb->ulpBdeCount = 1;
+	if (phba->sli_rev == 3) {
+		/* fill in immediate fcp command BDE */
+		iocb->un.fcpi64.bdl.bdeFlags = BUFF_TYPE_BDE_IMMED;
+		iocb->un.fcpi64.bdl.bdeSize = sizeof(struct fcp_cmnd);
+		iocb->un.fcpi64.bdl.addrLow = offsetof(IOCB_t,
+						       unsli3.fcp_ext.icd);
+		iocb->un.fcpi64.bdl.addrHigh = 0;
+		iocb->ulpBdeCount = 0;
+		iocb->ulpLe = 0;
+		/* fill in responce BDE */
+		iocb->unsli3.fcp_ext.rbde.tus.f.bdeFlags = BUFF_TYPE_BDE_64;
+		iocb->unsli3.fcp_ext.rbde.tus.f.bdeSize =
+						sizeof(struct fcp_rsp);
+		iocb->unsli3.fcp_ext.rbde.addrLow =
+						putPaddrLow(pdma_phys_fcp_rsp);
+		iocb->unsli3.fcp_ext.rbde.addrHigh =
+						putPaddrHigh(pdma_phys_fcp_rsp);
+	} else {
+		iocb->un.fcpi64.bdl.bdeFlags = BUFF_TYPE_BLP_64;
+		iocb->un.fcpi64.bdl.bdeSize = (2 * sizeof(struct ulp_bde64));
+		iocb->un.fcpi64.bdl.addrLow = putPaddrLow(pdma_phys_bpl);
+		iocb->un.fcpi64.bdl.addrHigh = putPaddrHigh(pdma_phys_bpl);
+		iocb->ulpBdeCount = 1;
+		iocb->ulpLe = 1;
+	}
 	iocb->ulpClass = CLASS3;
 
 	return psb;
@@ -313,8 +488,9 @@
 	struct fcp_cmnd *fcp_cmnd = lpfc_cmd->fcp_cmnd;
 	struct ulp_bde64 *bpl = lpfc_cmd->fcp_bpl;
 	IOCB_t *iocb_cmd = &lpfc_cmd->cur_iocbq.iocb;
+	struct ulp_bde64 *data_bde = iocb_cmd->unsli3.fcp_ext.dbde;
 	dma_addr_t physaddr;
-	uint32_t i, num_bde = 0;
+	uint32_t num_bde = 0;
 	int nseg, datadir = scsi_cmnd->sc_data_direction;
 
 	/*
@@ -352,37 +528,159 @@
 		 * during probe that limits the number of sg elements in any
 		 * single scsi command.  Just run through the seg_cnt and format
 		 * the bde's.
+		 * When using SLI-3 the driver will try to fit all the BDEs into
+		 * the IOCB. If it can't then the BDEs get added to a BPL as it
+		 * does for SLI-2 mode.
 		 */
-		scsi_for_each_sg(scsi_cmnd, sgel, nseg, i) {
+		scsi_for_each_sg(scsi_cmnd, sgel, nseg, num_bde) {
 			physaddr = sg_dma_address(sgel);
-			bpl->addrLow = le32_to_cpu(putPaddrLow(physaddr));
-			bpl->addrHigh = le32_to_cpu(putPaddrHigh(physaddr));
-			bpl->tus.f.bdeSize = sg_dma_len(sgel);
-			if (datadir == DMA_TO_DEVICE)
-				bpl->tus.f.bdeFlags = 0;
-			else
-				bpl->tus.f.bdeFlags = BUFF_USE_RCV;
-			bpl->tus.w = le32_to_cpu(bpl->tus.w);
-			bpl++;
-			num_bde++;
+			if (phba->sli_rev == 3 &&
+			    nseg <= LPFC_EXT_DATA_BDE_COUNT) {
+				data_bde->tus.f.bdeFlags = BUFF_TYPE_BDE_64;
+				data_bde->tus.f.bdeSize = sg_dma_len(sgel);
+				data_bde->addrLow = putPaddrLow(physaddr);
+				data_bde->addrHigh = putPaddrHigh(physaddr);
+				data_bde++;
+			} else {
+				bpl->tus.f.bdeFlags = BUFF_TYPE_BDE_64;
+				bpl->tus.f.bdeSize = sg_dma_len(sgel);
+				bpl->tus.w = le32_to_cpu(bpl->tus.w);
+				bpl->addrLow =
+					le32_to_cpu(putPaddrLow(physaddr));
+				bpl->addrHigh =
+					le32_to_cpu(putPaddrHigh(physaddr));
+				bpl++;
+			}
 		}
 	}
 
 	/*
 	 * Finish initializing those IOCB fields that are dependent on the
-	 * scsi_cmnd request_buffer.  Note that the bdeSize is explicitly
-	 * reinitialized since all iocb memory resources are used many times
-	 * for transmit, receive, and continuation bpl's.
+	 * scsi_cmnd request_buffer.  Note that for SLI-2 the bdeSize is
+	 * explicitly reinitialized and for SLI-3 the extended bde count is
+	 * explicitly reinitialized since all iocb memory resources are reused.
 	 */
-	iocb_cmd->un.fcpi64.bdl.bdeSize = (2 * sizeof (struct ulp_bde64));
-	iocb_cmd->un.fcpi64.bdl.bdeSize +=
-		(num_bde * sizeof (struct ulp_bde64));
-	iocb_cmd->ulpBdeCount = 1;
-	iocb_cmd->ulpLe = 1;
+	if (phba->sli_rev == 3) {
+		if (num_bde > LPFC_EXT_DATA_BDE_COUNT) {
+			/*
+			 * The extended IOCB format can only fit 3 BDE or a BPL.
+			 * This I/O has more than 3 BDE so the 1st data bde will
+			 * be a BPL that is filled in here.
+			 */
+			physaddr = lpfc_cmd->dma_handle;
+			data_bde->tus.f.bdeFlags = BUFF_TYPE_BLP_64;
+			data_bde->tus.f.bdeSize = (num_bde *
+						   sizeof(struct ulp_bde64));
+			physaddr += (sizeof(struct fcp_cmnd) +
+				     sizeof(struct fcp_rsp) +
+				     (2 * sizeof(struct ulp_bde64)));
+			data_bde->addrHigh = putPaddrHigh(physaddr);
+			data_bde->addrLow = putPaddrLow(physaddr);
+			/* ebde count includes the responce bde and data bpl */
+			iocb_cmd->unsli3.fcp_ext.ebde_count = 2;
+		} else {
+			/* ebde count includes the responce bde and data bdes */
+			iocb_cmd->unsli3.fcp_ext.ebde_count = (num_bde + 1);
+		}
+	} else {
+		iocb_cmd->un.fcpi64.bdl.bdeSize =
+			((num_bde + 2) * sizeof(struct ulp_bde64));
+	}
 	fcp_cmnd->fcpDl = cpu_to_be32(scsi_bufflen(scsi_cmnd));
 	return 0;
 }
 
+/**
+ * lpfc_send_scsi_error_event: Posts an event when there is SCSI error.
+ * @phba: Pointer to hba context object.
+ * @vport: Pointer to vport object.
+ * @lpfc_cmd: Pointer to lpfc scsi command which reported the error.
+ * @rsp_iocb: Pointer to response iocb object which reported error.
+ *
+ * This function posts an event when there is a SCSI command reporting
+ * error from the scsi device.
+ **/
+static void
+lpfc_send_scsi_error_event(struct lpfc_hba *phba, struct lpfc_vport *vport,
+		struct lpfc_scsi_buf *lpfc_cmd, struct lpfc_iocbq *rsp_iocb) {
+	struct scsi_cmnd *cmnd = lpfc_cmd->pCmd;
+	struct fcp_rsp *fcprsp = lpfc_cmd->fcp_rsp;
+	uint32_t resp_info = fcprsp->rspStatus2;
+	uint32_t scsi_status = fcprsp->rspStatus3;
+	uint32_t fcpi_parm = rsp_iocb->iocb.un.fcpi.fcpi_parm;
+	struct lpfc_fast_path_event *fast_path_evt = NULL;
+	struct lpfc_nodelist *pnode = lpfc_cmd->rdata->pnode;
+	unsigned long flags;
+
+	/* If there is queuefull or busy condition send a scsi event */
+	if ((cmnd->result == SAM_STAT_TASK_SET_FULL) ||
+		(cmnd->result == SAM_STAT_BUSY)) {
+		fast_path_evt = lpfc_alloc_fast_evt(phba);
+		if (!fast_path_evt)
+			return;
+		fast_path_evt->un.scsi_evt.event_type =
+			FC_REG_SCSI_EVENT;
+		fast_path_evt->un.scsi_evt.subcategory =
+		(cmnd->result == SAM_STAT_TASK_SET_FULL) ?
+		LPFC_EVENT_QFULL : LPFC_EVENT_DEVBSY;
+		fast_path_evt->un.scsi_evt.lun = cmnd->device->lun;
+		memcpy(&fast_path_evt->un.scsi_evt.wwpn,
+			&pnode->nlp_portname, sizeof(struct lpfc_name));
+		memcpy(&fast_path_evt->un.scsi_evt.wwnn,
+			&pnode->nlp_nodename, sizeof(struct lpfc_name));
+	} else if ((resp_info & SNS_LEN_VALID) && fcprsp->rspSnsLen &&
+		((cmnd->cmnd[0] == READ_10) || (cmnd->cmnd[0] == WRITE_10))) {
+		fast_path_evt = lpfc_alloc_fast_evt(phba);
+		if (!fast_path_evt)
+			return;
+		fast_path_evt->un.check_cond_evt.scsi_event.event_type =
+			FC_REG_SCSI_EVENT;
+		fast_path_evt->un.check_cond_evt.scsi_event.subcategory =
+			LPFC_EVENT_CHECK_COND;
+		fast_path_evt->un.check_cond_evt.scsi_event.lun =
+			cmnd->device->lun;
+		memcpy(&fast_path_evt->un.check_cond_evt.scsi_event.wwpn,
+			&pnode->nlp_portname, sizeof(struct lpfc_name));
+		memcpy(&fast_path_evt->un.check_cond_evt.scsi_event.wwnn,
+			&pnode->nlp_nodename, sizeof(struct lpfc_name));
+		fast_path_evt->un.check_cond_evt.sense_key =
+			cmnd->sense_buffer[2] & 0xf;
+		fast_path_evt->un.check_cond_evt.asc = cmnd->sense_buffer[12];
+		fast_path_evt->un.check_cond_evt.ascq = cmnd->sense_buffer[13];
+	} else if ((cmnd->sc_data_direction == DMA_FROM_DEVICE) &&
+		     fcpi_parm &&
+		     ((be32_to_cpu(fcprsp->rspResId) != fcpi_parm) ||
+			((scsi_status == SAM_STAT_GOOD) &&
+			!(resp_info & (RESID_UNDER | RESID_OVER))))) {
+		/*
+		 * If status is good or resid does not match with fcp_param and
+		 * there is valid fcpi_parm, then there is a read_check error
+		 */
+		fast_path_evt = lpfc_alloc_fast_evt(phba);
+		if (!fast_path_evt)
+			return;
+		fast_path_evt->un.read_check_error.header.event_type =
+			FC_REG_FABRIC_EVENT;
+		fast_path_evt->un.read_check_error.header.subcategory =
+			LPFC_EVENT_FCPRDCHKERR;
+		memcpy(&fast_path_evt->un.read_check_error.header.wwpn,
+			&pnode->nlp_portname, sizeof(struct lpfc_name));
+		memcpy(&fast_path_evt->un.read_check_error.header.wwnn,
+			&pnode->nlp_nodename, sizeof(struct lpfc_name));
+		fast_path_evt->un.read_check_error.lun = cmnd->device->lun;
+		fast_path_evt->un.read_check_error.opcode = cmnd->cmnd[0];
+		fast_path_evt->un.read_check_error.fcpiparam =
+			fcpi_parm;
+	} else
+		return;
+
+	fast_path_evt->vport = vport;
+	spin_lock_irqsave(&phba->hbalock, flags);
+	list_add_tail(&fast_path_evt->work_evt.evt_listp, &phba->work_list);
+	spin_unlock_irqrestore(&phba->hbalock, flags);
+	lpfc_worker_wake_up(phba);
+	return;
+}
 static void
 lpfc_scsi_unprep_dma_buf(struct lpfc_hba * phba, struct lpfc_scsi_buf * psb)
 {
@@ -411,6 +709,7 @@
 	uint32_t rsplen = 0;
 	uint32_t logit = LOG_FCP | LOG_FCP_ERROR;
 
+
 	/*
 	 *  If this is a task management command, there is no
 	 *  scsi packet associated with this lpfc_cmd.  The driver
@@ -526,6 +825,7 @@
 
  out:
 	cmnd->result = ScsiResult(host_status, scsi_status);
+	lpfc_send_scsi_error_event(vport->phba, vport, lpfc_cmd, rsp_iocb);
 }
 
 static void
@@ -542,9 +842,11 @@
 	struct scsi_device *sdev, *tmp_sdev;
 	int depth = 0;
 	unsigned long flags;
+	struct lpfc_fast_path_event *fast_path_evt;
 
 	lpfc_cmd->result = pIocbOut->iocb.un.ulpWord[4];
 	lpfc_cmd->status = pIocbOut->iocb.ulpStatus;
+	atomic_dec(&pnode->cmd_pending);
 
 	if (lpfc_cmd->status) {
 		if (lpfc_cmd->status == IOSTAT_LOCAL_REJECT &&
@@ -570,12 +872,36 @@
 			break;
 		case IOSTAT_NPORT_BSY:
 		case IOSTAT_FABRIC_BSY:
-			cmd->result = ScsiResult(DID_BUS_BUSY, 0);
+			cmd->result = ScsiResult(DID_TRANSPORT_DISRUPTED, 0);
+			fast_path_evt = lpfc_alloc_fast_evt(phba);
+			if (!fast_path_evt)
+				break;
+			fast_path_evt->un.fabric_evt.event_type =
+				FC_REG_FABRIC_EVENT;
+			fast_path_evt->un.fabric_evt.subcategory =
+				(lpfc_cmd->status == IOSTAT_NPORT_BSY) ?
+				LPFC_EVENT_PORT_BUSY : LPFC_EVENT_FABRIC_BUSY;
+			if (pnode && NLP_CHK_NODE_ACT(pnode)) {
+				memcpy(&fast_path_evt->un.fabric_evt.wwpn,
+					&pnode->nlp_portname,
+					sizeof(struct lpfc_name));
+				memcpy(&fast_path_evt->un.fabric_evt.wwnn,
+					&pnode->nlp_nodename,
+					sizeof(struct lpfc_name));
+			}
+			fast_path_evt->vport = vport;
+			fast_path_evt->work_evt.evt =
+				LPFC_EVT_FASTPATH_MGMT_EVT;
+			spin_lock_irqsave(&phba->hbalock, flags);
+			list_add_tail(&fast_path_evt->work_evt.evt_listp,
+				&phba->work_list);
+			spin_unlock_irqrestore(&phba->hbalock, flags);
+			lpfc_worker_wake_up(phba);
 			break;
 		case IOSTAT_LOCAL_REJECT:
-			if (lpfc_cmd->result == RJT_UNAVAIL_PERM ||
+			if (lpfc_cmd->result == IOERR_INVALID_RPI ||
 			    lpfc_cmd->result == IOERR_NO_RESOURCES ||
-			    lpfc_cmd->result == RJT_LOGIN_REQUIRED) {
+			    lpfc_cmd->result == IOERR_ABORT_REQUESTED) {
 				cmd->result = ScsiResult(DID_REQUEUE, 0);
 				break;
 			} /* else: fall through */
@@ -586,7 +912,8 @@
 
 		if (!pnode || !NLP_CHK_NODE_ACT(pnode)
 		    || (pnode->nlp_state != NLP_STE_MAPPED_NODE))
-			cmd->result = ScsiResult(DID_BUS_BUSY, SAM_STAT_BUSY);
+			cmd->result = ScsiResult(DID_TRANSPORT_DISRUPTED,
+						 SAM_STAT_BUSY);
 	} else {
 		cmd->result = ScsiResult(DID_OK, 0);
 	}
@@ -602,8 +929,32 @@
 				 scsi_get_resid(cmd));
 	}
 
+	lpfc_update_stats(phba, lpfc_cmd);
 	result = cmd->result;
 	sdev = cmd->device;
+	if (vport->cfg_max_scsicmpl_time &&
+	   time_after(jiffies, lpfc_cmd->start_time +
+		msecs_to_jiffies(vport->cfg_max_scsicmpl_time))) {
+		spin_lock_irqsave(sdev->host->host_lock, flags);
+		if ((pnode->cmd_qdepth > atomic_read(&pnode->cmd_pending) &&
+		    (atomic_read(&pnode->cmd_pending) > LPFC_MIN_TGT_QDEPTH) &&
+		    ((cmd->cmnd[0] == READ_10) || (cmd->cmnd[0] == WRITE_10))))
+			pnode->cmd_qdepth = atomic_read(&pnode->cmd_pending);
+
+		pnode->last_change_time = jiffies;
+		spin_unlock_irqrestore(sdev->host->host_lock, flags);
+	} else if ((pnode->cmd_qdepth < LPFC_MAX_TGT_QDEPTH) &&
+		   time_after(jiffies, pnode->last_change_time +
+			msecs_to_jiffies(LPFC_TGTQ_INTERVAL))) {
+		spin_lock_irqsave(sdev->host->host_lock, flags);
+		pnode->cmd_qdepth += pnode->cmd_qdepth *
+			LPFC_TGTQ_RAMPUP_PCENT / 100;
+		if (pnode->cmd_qdepth > LPFC_MAX_TGT_QDEPTH)
+			pnode->cmd_qdepth = LPFC_MAX_TGT_QDEPTH;
+		pnode->last_change_time = jiffies;
+		spin_unlock_irqrestore(sdev->host->host_lock, flags);
+	}
+
 	lpfc_scsi_unprep_dma_buf(phba, lpfc_cmd);
 	cmd->scsi_done(cmd);
 
@@ -647,6 +998,9 @@
 				pnode->last_ramp_up_time = jiffies;
 			}
 		}
+		lpfc_send_sdev_queuedepth_change_event(phba, vport, pnode,
+			0xFFFFFFFF,
+			sdev->queue_depth - 1, sdev->queue_depth);
 	}
 
 	/*
@@ -676,6 +1030,9 @@
 			lpfc_printf_vlog(vport, KERN_WARNING, LOG_FCP,
 					 "0711 detected queue full - lun queue "
 					 "depth adjusted to %d.\n", depth);
+			lpfc_send_sdev_queuedepth_change_event(phba, vport,
+				pnode, 0xFFFFFFFF,
+				depth+1, depth);
 		}
 	}
 
@@ -692,6 +1049,24 @@
 	lpfc_release_scsi_buf(phba, lpfc_cmd);
 }
 
+/**
+ * lpfc_fcpcmd_to_iocb - copy the fcp_cmd data into the IOCB.
+ * @data: A pointer to the immediate command data portion of the IOCB.
+ * @fcp_cmnd: The FCP Command that is provided by the SCSI layer.
+ *
+ * The routine copies the entire FCP command from @fcp_cmnd to @data while
+ * byte swapping the data to big endian format for transmission on the wire.
+ **/
+static void
+lpfc_fcpcmd_to_iocb(uint8_t *data, struct fcp_cmnd *fcp_cmnd)
+{
+	int i, j;
+	for (i = 0, j = 0; i < sizeof(struct fcp_cmnd);
+	     i += sizeof(uint32_t), j++) {
+		((uint32_t *)data)[j] = cpu_to_be32(((uint32_t *)fcp_cmnd)[j]);
+	}
+}
+
 static void
 lpfc_scsi_prep_cmnd(struct lpfc_vport *vport, struct lpfc_scsi_buf *lpfc_cmd,
 		    struct lpfc_nodelist *pnode)
@@ -758,7 +1133,8 @@
 		fcp_cmnd->fcpCntl3 = 0;
 		phba->fc4ControlRequests++;
 	}
-
+	if (phba->sli_rev == 3)
+		lpfc_fcpcmd_to_iocb(iocb_cmd->unsli3.fcp_ext.icd, fcp_cmnd);
 	/*
 	 * Finish initializing those IOCB fields that are independent
 	 * of the scsi_cmnd request_buffer
@@ -798,11 +1174,13 @@
 	piocb = &piocbq->iocb;
 
 	fcp_cmnd = lpfc_cmd->fcp_cmnd;
-	int_to_scsilun(lun, &lpfc_cmd->fcp_cmnd->fcp_lun);
+	/* Clear out any old data in the FCP command area */
+	memset(fcp_cmnd, 0, sizeof(struct fcp_cmnd));
+	int_to_scsilun(lun, &fcp_cmnd->fcp_lun);
 	fcp_cmnd->fcpCntl2 = task_mgmt_cmd;
-
+	if (vport->phba->sli_rev == 3)
+		lpfc_fcpcmd_to_iocb(piocb->unsli3.fcp_ext.icd, fcp_cmnd);
 	piocb->ulpCommand = CMD_FCP_ICMND64_CR;
-
 	piocb->ulpContext = ndlp->nlp_rpi;
 	if (ndlp->nlp_fcp_info & NLP_FCP_2_DEVICE) {
 		piocb->ulpFCP2Rcvy = 1;
@@ -967,9 +1345,12 @@
 	 * transport is still transitioning.
 	 */
 	if (!ndlp || !NLP_CHK_NODE_ACT(ndlp)) {
-		cmnd->result = ScsiResult(DID_BUS_BUSY, 0);
+		cmnd->result = ScsiResult(DID_TRANSPORT_DISRUPTED, 0);
 		goto out_fail_command;
 	}
+	if (atomic_read(&ndlp->cmd_pending) >= ndlp->cmd_qdepth)
+		goto out_host_busy;
+
 	lpfc_cmd = lpfc_get_scsi_buf(phba);
 	if (lpfc_cmd == NULL) {
 		lpfc_adjust_queue_depth(phba);
@@ -980,6 +1361,7 @@
 		goto out_host_busy;
 	}
 
+	lpfc_cmd->start_time = jiffies;
 	/*
 	 * Store the midlayer's command structure for the completion phase
 	 * and complete the command initialization.
@@ -987,6 +1369,7 @@
 	lpfc_cmd->pCmd  = cmnd;
 	lpfc_cmd->rdata = rdata;
 	lpfc_cmd->timeout = 0;
+	lpfc_cmd->start_time = jiffies;
 	cmnd->host_scribble = (unsigned char *)lpfc_cmd;
 	cmnd->scsi_done = done;
 
@@ -996,6 +1379,7 @@
 
 	lpfc_scsi_prep_cmnd(vport, lpfc_cmd, ndlp);
 
+	atomic_inc(&ndlp->cmd_pending);
 	err = lpfc_sli_issue_iocb(phba, &phba->sli.ring[psli->fcp_ring],
 				  &lpfc_cmd->cur_iocbq, SLI_IOCB_RET_IOCB);
 	if (err)
@@ -1010,6 +1394,7 @@
 	return 0;
 
  out_host_busy_free_buf:
+	atomic_dec(&ndlp->cmd_pending);
 	lpfc_scsi_unprep_dma_buf(phba, lpfc_cmd);
 	lpfc_release_scsi_buf(phba, lpfc_cmd);
  out_host_busy:
@@ -1145,6 +1530,7 @@
 	int ret = SUCCESS;
 	int status;
 	int cnt;
+	struct lpfc_scsi_event_header scsi_event;
 
 	lpfc_block_error_handler(cmnd);
 	/*
@@ -1163,6 +1549,19 @@
 			break;
 		pnode = rdata->pnode;
 	}
+
+	scsi_event.event_type = FC_REG_SCSI_EVENT;
+	scsi_event.subcategory = LPFC_EVENT_TGTRESET;
+	scsi_event.lun = 0;
+	memcpy(scsi_event.wwpn, &pnode->nlp_portname, sizeof(struct lpfc_name));
+	memcpy(scsi_event.wwnn, &pnode->nlp_nodename, sizeof(struct lpfc_name));
+
+	fc_host_post_vendor_event(shost,
+		fc_get_event_number(),
+		sizeof(scsi_event),
+		(char *)&scsi_event,
+		SCSI_NL_VID_TYPE_PCI | PCI_VENDOR_ID_EMULEX);
+
 	if (!rdata || pnode->nlp_state != NLP_STE_MAPPED_NODE) {
 		lpfc_printf_vlog(vport, KERN_ERR, LOG_FCP,
 				 "0721 LUN Reset rport "
@@ -1242,10 +1641,23 @@
 	struct lpfc_hba   *phba = vport->phba;
 	struct lpfc_nodelist *ndlp = NULL;
 	int match;
-	int ret = SUCCESS, status, i;
+	int ret = SUCCESS, status = SUCCESS, i;
 	int cnt;
 	struct lpfc_scsi_buf * lpfc_cmd;
 	unsigned long later;
+	struct lpfc_scsi_event_header scsi_event;
+
+	scsi_event.event_type = FC_REG_SCSI_EVENT;
+	scsi_event.subcategory = LPFC_EVENT_BUSRESET;
+	scsi_event.lun = 0;
+	memcpy(scsi_event.wwpn, &vport->fc_portname, sizeof(struct lpfc_name));
+	memcpy(scsi_event.wwnn, &vport->fc_nodename, sizeof(struct lpfc_name));
+
+	fc_host_post_vendor_event(shost,
+		fc_get_event_number(),
+		sizeof(scsi_event),
+		(char *)&scsi_event,
+		SCSI_NL_VID_TYPE_PCI | PCI_VENDOR_ID_EMULEX);
 
 	lpfc_block_error_handler(cmnd);
 	/*
diff --git a/drivers/scsi/lpfc/lpfc_scsi.h b/drivers/scsi/lpfc/lpfc_scsi.h
index daba923..437f182 100644
--- a/drivers/scsi/lpfc/lpfc_scsi.h
+++ b/drivers/scsi/lpfc/lpfc_scsi.h
@@ -107,6 +107,10 @@
 
 };
 
+struct lpfc_scsicmd_bkt {
+	uint32_t cmd_count;
+};
+
 struct lpfc_scsi_buf {
 	struct list_head list;
 	struct scsi_cmnd *pCmd;
@@ -139,6 +143,7 @@
 	 */
 	struct lpfc_iocbq cur_iocbq;
 	wait_queue_head_t *waitq;
+	unsigned long start_time;
 };
 
 #define LPFC_SCSI_DMA_EXT_SIZE 264
diff --git a/drivers/scsi/lpfc/lpfc_sli.c b/drivers/scsi/lpfc/lpfc_sli.c
index 50fe076..8ab5bab 100644
--- a/drivers/scsi/lpfc/lpfc_sli.c
+++ b/drivers/scsi/lpfc/lpfc_sli.c
@@ -32,6 +32,7 @@
 
 #include "lpfc_hw.h"
 #include "lpfc_sli.h"
+#include "lpfc_nl.h"
 #include "lpfc_disc.h"
 #include "lpfc_scsi.h"
 #include "lpfc.h"
@@ -66,10 +67,16 @@
 	LPFC_ABORT_IOCB
 } lpfc_iocb_type;
 
-		/* SLI-2/SLI-3 provide different sized iocbs.  Given a pointer
-		 * to the start of the ring, and the slot number of the
-		 * desired iocb entry, calc a pointer to that entry.
-		 */
+/**
+ * lpfc_cmd_iocb: Get next command iocb entry in the ring.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ *
+ * This function returns pointer to next command iocb entry
+ * in the command ring. The caller must hold hbalock to prevent
+ * other threads consume the next command iocb.
+ * SLI-2/SLI-3 provide different sized iocbs.
+ **/
 static inline IOCB_t *
 lpfc_cmd_iocb(struct lpfc_hba *phba, struct lpfc_sli_ring *pring)
 {
@@ -77,6 +84,16 @@
 			   pring->cmdidx * phba->iocb_cmd_size);
 }
 
+/**
+ * lpfc_resp_iocb: Get next response iocb entry in the ring.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ *
+ * This function returns pointer to next response iocb entry
+ * in the response ring. The caller must hold hbalock to make sure
+ * that no other thread consume the next response iocb.
+ * SLI-2/SLI-3 provide different sized iocbs.
+ **/
 static inline IOCB_t *
 lpfc_resp_iocb(struct lpfc_hba *phba, struct lpfc_sli_ring *pring)
 {
@@ -84,6 +101,15 @@
 			   pring->rspidx * phba->iocb_rsp_size);
 }
 
+/**
+ * __lpfc_sli_get_iocbq: Allocates an iocb object from iocb pool.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function is called with hbalock held. This function
+ * allocates a new driver iocb object from the iocb pool. If the
+ * allocation is successful, it returns pointer to the newly
+ * allocated iocb object else it returns NULL.
+ **/
 static struct lpfc_iocbq *
 __lpfc_sli_get_iocbq(struct lpfc_hba *phba)
 {
@@ -94,6 +120,15 @@
 	return iocbq;
 }
 
+/**
+ * lpfc_sli_get_iocbq: Allocates an iocb object from iocb pool.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function is called with no lock held. This function
+ * allocates a new driver iocb object from the iocb pool. If the
+ * allocation is successful, it returns pointer to the newly
+ * allocated iocb object else it returns NULL.
+ **/
 struct lpfc_iocbq *
 lpfc_sli_get_iocbq(struct lpfc_hba *phba)
 {
@@ -106,6 +141,16 @@
 	return iocbq;
 }
 
+/**
+ * __lpfc_sli_release_iocbq: Release iocb to the iocb pool.
+ * @phba: Pointer to HBA context object.
+ * @iocbq: Pointer to driver iocb object.
+ *
+ * This function is called with hbalock held to release driver
+ * iocb object to the iocb pool. The iotag in the iocb object
+ * does not change for each use of the iocb object. This function
+ * clears all other fields of the iocb object when it is freed.
+ **/
 static void
 __lpfc_sli_release_iocbq(struct lpfc_hba *phba, struct lpfc_iocbq *iocbq)
 {
@@ -118,6 +163,14 @@
 	list_add_tail(&iocbq->list, &phba->lpfc_iocb_list);
 }
 
+/**
+ * lpfc_sli_release_iocbq: Release iocb to the iocb pool.
+ * @phba: Pointer to HBA context object.
+ * @iocbq: Pointer to driver iocb object.
+ *
+ * This function is called with no lock held to release the iocb to
+ * iocb pool.
+ **/
 void
 lpfc_sli_release_iocbq(struct lpfc_hba *phba, struct lpfc_iocbq *iocbq)
 {
@@ -131,10 +184,21 @@
 	spin_unlock_irqrestore(&phba->hbalock, iflags);
 }
 
-/*
- * Translate the iocb command to an iocb command type used to decide the final
- * disposition of each completed IOCB.
- */
+/**
+ * lpfc_sli_iocb_cmd_type: Get the iocb type.
+ * @iocb_cmnd : iocb command code.
+ *
+ * This function is called by ring event handler function to get the iocb type.
+ * This function translates the iocb command to an iocb command type used to
+ * decide the final disposition of each completed IOCB.
+ * The function returns
+ * LPFC_UNKNOWN_IOCB if it is an unsupported iocb
+ * LPFC_SOL_IOCB     if it is a solicited iocb completion
+ * LPFC_ABORT_IOCB   if it is an abort iocb
+ * LPFC_UNSOL_IOCB   if it is an unsolicited iocb
+ *
+ * The caller is not required to hold any lock.
+ **/
 static lpfc_iocb_type
 lpfc_sli_iocb_cmd_type(uint8_t iocb_cmnd)
 {
@@ -230,6 +294,17 @@
 	return type;
 }
 
+/**
+ * lpfc_sli_ring_map: Issue config_ring mbox for all rings.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function is called from SLI initialization code
+ * to configure every ring of the HBA's SLI interface. The
+ * caller is not required to hold any lock. This function issues
+ * a config_ring mailbox command for each ring.
+ * This function returns zero if successful else returns a negative
+ * error code.
+ **/
 static int
 lpfc_sli_ring_map(struct lpfc_hba *phba)
 {
@@ -262,6 +337,18 @@
 	return ret;
 }
 
+/**
+ * lpfc_sli_ringtxcmpl_put: Adds new iocb to the txcmplq.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ * @piocb: Pointer to the driver iocb object.
+ *
+ * This function is called with hbalock held. The function adds the
+ * new iocb to txcmplq of the given ring. This function always returns
+ * 0. If this function is called for ELS ring, this function checks if
+ * there is a vport associated with the ELS command. This function also
+ * starts els_tmofunc timer if this is an ELS command.
+ **/
 static int
 lpfc_sli_ringtxcmpl_put(struct lpfc_hba *phba, struct lpfc_sli_ring *pring,
 			struct lpfc_iocbq *piocb)
@@ -282,6 +369,16 @@
 	return 0;
 }
 
+/**
+ * lpfc_sli_ringtx_get: Get first element of the txq.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ *
+ * This function is called with hbalock held to get next
+ * iocb in txq of the given ring. If there is any iocb in
+ * the txq, the function returns first iocb in the list after
+ * removing the iocb from the list, else it returns NULL.
+ **/
 static struct lpfc_iocbq *
 lpfc_sli_ringtx_get(struct lpfc_hba *phba, struct lpfc_sli_ring *pring)
 {
@@ -293,14 +390,25 @@
 	return cmd_iocb;
 }
 
+/**
+ * lpfc_sli_next_iocb_slot: Get next iocb slot in the ring.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ *
+ * This function is called with hbalock held and the caller must post the
+ * iocb without releasing the lock. If the caller releases the lock,
+ * iocb slot returned by the function is not guaranteed to be available.
+ * The function returns pointer to the next available iocb slot if there
+ * is available slot in the ring, else it returns NULL.
+ * If the get index of the ring is ahead of the put index, the function
+ * will post an error attention event to the worker thread to take the
+ * HBA to offline state.
+ **/
 static IOCB_t *
 lpfc_sli_next_iocb_slot (struct lpfc_hba *phba, struct lpfc_sli_ring *pring)
 {
-	struct lpfc_pgp *pgp = (phba->sli_rev == 3) ?
-		&phba->slim2p->mbx.us.s3_pgp.port[pring->ringno] :
-		&phba->slim2p->mbx.us.s2.port[pring->ringno];
+	struct lpfc_pgp *pgp = &phba->port_gp[pring->ringno];
 	uint32_t  max_cmd_idx = pring->numCiocb;
-
 	if ((pring->next_cmdidx == pring->cmdidx) &&
 	   (++pring->next_cmdidx >= max_cmd_idx))
 		pring->next_cmdidx = 0;
@@ -336,6 +444,18 @@
 	return lpfc_cmd_iocb(phba, pring);
 }
 
+/**
+ * lpfc_sli_next_iotag: Get an iotag for the iocb.
+ * @phba: Pointer to HBA context object.
+ * @iocbq: Pointer to driver iocb object.
+ *
+ * This function gets an iotag for the iocb. If there is no unused iotag and
+ * the iocbq_lookup_len < 0xffff, this function allocates a bigger iotag_lookup
+ * array and assigns a new iotag.
+ * The function returns the allocated iotag if successful, else returns zero.
+ * Zero is not a valid iotag.
+ * The caller is not required to hold any lock.
+ **/
 uint16_t
 lpfc_sli_next_iotag(struct lpfc_hba *phba, struct lpfc_iocbq *iocbq)
 {
@@ -399,6 +519,20 @@
 	return 0;
 }
 
+/**
+ * lpfc_sli_submit_iocb: Submit an iocb to the firmware.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ * @iocb: Pointer to iocb slot in the ring.
+ * @nextiocb: Pointer to driver iocb object which need to be
+ *            posted to firmware.
+ *
+ * This function is called with hbalock held to post a new iocb to
+ * the firmware. This function copies the new iocb to ring iocb slot and
+ * updates the ring pointers. It adds the new iocb to txcmplq if there is
+ * a completion call back for this iocb else the function will free the
+ * iocb object.
+ **/
 static void
 lpfc_sli_submit_iocb(struct lpfc_hba *phba, struct lpfc_sli_ring *pring,
 		IOCB_t *iocb, struct lpfc_iocbq *nextiocb)
@@ -441,6 +575,18 @@
 	writel(pring->cmdidx, &phba->host_gp[pring->ringno].cmdPutInx);
 }
 
+/**
+ * lpfc_sli_update_full_ring: Update the chip attention register.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ *
+ * The caller is not required to hold any lock for calling this function.
+ * This function updates the chip attention bits for the ring to inform firmware
+ * that there are pending work to be done for this ring and requests an
+ * interrupt when there is space available in the ring. This function is
+ * called when the driver is unable to post more iocbs to the ring due
+ * to unavailability of space in the ring.
+ **/
 static void
 lpfc_sli_update_full_ring(struct lpfc_hba *phba, struct lpfc_sli_ring *pring)
 {
@@ -460,6 +606,15 @@
 	pring->stats.iocb_cmd_full++;
 }
 
+/**
+ * lpfc_sli_update_ring: Update chip attention register.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ *
+ * This function updates the chip attention register bit for the
+ * given ring to inform HBA that there is more work to be done
+ * in this ring. The caller is not required to hold any lock.
+ **/
 static void
 lpfc_sli_update_ring(struct lpfc_hba *phba, struct lpfc_sli_ring *pring)
 {
@@ -468,11 +623,22 @@
 	/*
 	 * Tell the HBA that there is work to do in this ring.
 	 */
-	wmb();
-	writel(CA_R0ATT << (ringno * 4), phba->CAregaddr);
-	readl(phba->CAregaddr); /* flush */
+	if (!(phba->sli3_options & LPFC_SLI3_CRP_ENABLED)) {
+		wmb();
+		writel(CA_R0ATT << (ringno * 4), phba->CAregaddr);
+		readl(phba->CAregaddr); /* flush */
+	}
 }
 
+/**
+ * lpfc_sli_resume_iocb: Process iocbs in the txq.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ *
+ * This function is called with hbalock held to post pending iocbs
+ * in the txq to the firmware. This function is called when driver
+ * detects space available in the ring.
+ **/
 static void
 lpfc_sli_resume_iocb(struct lpfc_hba *phba, struct lpfc_sli_ring *pring)
 {
@@ -504,6 +670,16 @@
 	return;
 }
 
+/**
+ * lpfc_sli_next_hbq_slot: Get next hbq entry for the HBQ.
+ * @phba: Pointer to HBA context object.
+ * @hbqno: HBQ number.
+ *
+ * This function is called with hbalock held to get the next
+ * available slot for the given HBQ. If there is free slot
+ * available for the HBQ it will return pointer to the next available
+ * HBQ entry else it will return NULL.
+ **/
 static struct lpfc_hbq_entry *
 lpfc_sli_next_hbq_slot(struct lpfc_hba *phba, uint32_t hbqno)
 {
@@ -539,6 +715,15 @@
 			hbqp->hbqPutIdx;
 }
 
+/**
+ * lpfc_sli_hbqbuf_free_all: Free all the hbq buffers.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function is called with no lock held to free all the
+ * hbq buffers while uninitializing the SLI interface. It also
+ * frees the HBQ buffers returned by the firmware but not yet
+ * processed by the upper layers.
+ **/
 void
 lpfc_sli_hbqbuf_free_all(struct lpfc_hba *phba)
 {
@@ -584,6 +769,18 @@
 	spin_unlock_irqrestore(&phba->hbalock, flags);
 }
 
+/**
+ * lpfc_sli_hbq_to_firmware: Post the hbq buffer to firmware.
+ * @phba: Pointer to HBA context object.
+ * @hbqno: HBQ number.
+ * @hbq_buf: Pointer to HBQ buffer.
+ *
+ * This function is called with the hbalock held to post a
+ * hbq buffer to the firmware. If the function finds an empty
+ * slot in the HBQ, it will post the buffer. The function will return
+ * pointer to the hbq entry if it successfully post the buffer
+ * else it will return NULL.
+ **/
 static struct lpfc_hbq_entry *
 lpfc_sli_hbq_to_firmware(struct lpfc_hba *phba, uint32_t hbqno,
 			 struct hbq_dmabuf *hbq_buf)
@@ -612,6 +809,7 @@
 	return hbqe;
 }
 
+/* HBQ for ELS and CT traffic. */
 static struct lpfc_hbq_init lpfc_els_hbq = {
 	.rn = 1,
 	.entry_count = 200,
@@ -623,6 +821,7 @@
 	.add_count = 5,
 };
 
+/* HBQ for the extra ring if needed */
 static struct lpfc_hbq_init lpfc_extra_hbq = {
 	.rn = 1,
 	.entry_count = 200,
@@ -634,51 +833,81 @@
 	.add_count = 5,
 };
 
+/* Array of HBQs */
 struct lpfc_hbq_init *lpfc_hbq_defs[] = {
 	&lpfc_els_hbq,
 	&lpfc_extra_hbq,
 };
 
+/**
+ * lpfc_sli_hbqbuf_fill_hbqs: Post more hbq buffers to HBQ.
+ * @phba: Pointer to HBA context object.
+ * @hbqno: HBQ number.
+ * @count: Number of HBQ buffers to be posted.
+ *
+ * This function is called with no lock held to post more hbq buffers to the
+ * given HBQ. The function returns the number of HBQ buffers successfully
+ * posted.
+ **/
 static int
 lpfc_sli_hbqbuf_fill_hbqs(struct lpfc_hba *phba, uint32_t hbqno, uint32_t count)
 {
-	uint32_t i, start, end;
+	uint32_t i, posted = 0;
 	unsigned long flags;
 	struct hbq_dmabuf *hbq_buffer;
-
+	LIST_HEAD(hbq_buf_list);
 	if (!phba->hbqs[hbqno].hbq_alloc_buffer)
 		return 0;
 
-	start = phba->hbqs[hbqno].buffer_count;
-	end = count + start;
-	if (end > lpfc_hbq_defs[hbqno]->entry_count)
-		end = lpfc_hbq_defs[hbqno]->entry_count;
-
+	if ((phba->hbqs[hbqno].buffer_count + count) >
+	    lpfc_hbq_defs[hbqno]->entry_count)
+		count = lpfc_hbq_defs[hbqno]->entry_count -
+					phba->hbqs[hbqno].buffer_count;
+	if (!count)
+		return 0;
+	/* Allocate HBQ entries */
+	for (i = 0; i < count; i++) {
+		hbq_buffer = (phba->hbqs[hbqno].hbq_alloc_buffer)(phba);
+		if (!hbq_buffer)
+			break;
+		list_add_tail(&hbq_buffer->dbuf.list, &hbq_buf_list);
+	}
 	/* Check whether HBQ is still in use */
 	spin_lock_irqsave(&phba->hbalock, flags);
 	if (!phba->hbq_in_use)
-		goto out;
-
-	/* Populate HBQ entries */
-	for (i = start; i < end; i++) {
-		hbq_buffer = (phba->hbqs[hbqno].hbq_alloc_buffer)(phba);
-		if (!hbq_buffer)
-			goto err;
-		hbq_buffer->tag = (i | (hbqno << 16));
-		if (lpfc_sli_hbq_to_firmware(phba, hbqno, hbq_buffer))
+		goto err;
+	while (!list_empty(&hbq_buf_list)) {
+		list_remove_head(&hbq_buf_list, hbq_buffer, struct hbq_dmabuf,
+				 dbuf.list);
+		hbq_buffer->tag = (phba->hbqs[hbqno].buffer_count |
+				      (hbqno << 16));
+		if (lpfc_sli_hbq_to_firmware(phba, hbqno, hbq_buffer)) {
 			phba->hbqs[hbqno].buffer_count++;
-		else
+			posted++;
+		} else
 			(phba->hbqs[hbqno].hbq_free_buffer)(phba, hbq_buffer);
 	}
-
- out:
 	spin_unlock_irqrestore(&phba->hbalock, flags);
+	return posted;
+err:
+	spin_unlock_irqrestore(&phba->hbalock, flags);
+	while (!list_empty(&hbq_buf_list)) {
+		list_remove_head(&hbq_buf_list, hbq_buffer, struct hbq_dmabuf,
+				 dbuf.list);
+		(phba->hbqs[hbqno].hbq_free_buffer)(phba, hbq_buffer);
+	}
 	return 0;
- err:
-	spin_unlock_irqrestore(&phba->hbalock, flags);
-	return 1;
 }
 
+/**
+ * lpfc_sli_hbqbuf_add_hbqs: Post more HBQ buffers to firmware.
+ * @phba: Pointer to HBA context object.
+ * @qno: HBQ number.
+ *
+ * This function posts more buffers to the HBQ. This function
+ * is called with no lock held. The function returns the number of HBQ entries
+ * successfully allocated.
+ **/
 int
 lpfc_sli_hbqbuf_add_hbqs(struct lpfc_hba *phba, uint32_t qno)
 {
@@ -686,6 +915,15 @@
 					 lpfc_hbq_defs[qno]->add_count));
 }
 
+/**
+ * lpfc_sli_hbqbuf_init_hbqs: Post initial buffers to the HBQ.
+ * @phba: Pointer to HBA context object.
+ * @qno:  HBQ queue number.
+ *
+ * This function is called from SLI initialization code path with
+ * no lock held to post initial HBQ buffers to firmware. The
+ * function returns the number of HBQ entries successfully allocated.
+ **/
 static int
 lpfc_sli_hbqbuf_init_hbqs(struct lpfc_hba *phba, uint32_t qno)
 {
@@ -693,6 +931,16 @@
 					 lpfc_hbq_defs[qno]->init_count));
 }
 
+/**
+ * lpfc_sli_hbqbuf_find: Find the hbq buffer associated with a tag.
+ * @phba: Pointer to HBA context object.
+ * @tag: Tag of the hbq buffer.
+ *
+ * This function is called with hbalock held. This function searches
+ * for the hbq buffer associated with the given tag in the hbq buffer
+ * list. If it finds the hbq buffer, it returns the hbq_buffer other wise
+ * it returns NULL.
+ **/
 static struct hbq_dmabuf *
 lpfc_sli_hbqbuf_find(struct lpfc_hba *phba, uint32_t tag)
 {
@@ -716,6 +964,15 @@
 	return NULL;
 }
 
+/**
+ * lpfc_sli_free_hbq: Give back the hbq buffer to firmware.
+ * @phba: Pointer to HBA context object.
+ * @hbq_buffer: Pointer to HBQ buffer.
+ *
+ * This function is called with hbalock. This function gives back
+ * the hbq buffer to firmware. If the HBQ does not have space to
+ * post the buffer, it will free the buffer.
+ **/
 void
 lpfc_sli_free_hbq(struct lpfc_hba *phba, struct hbq_dmabuf *hbq_buffer)
 {
@@ -729,6 +986,15 @@
 	}
 }
 
+/**
+ * lpfc_sli_chk_mbx_command: Check if the mailbox is a legitimate mailbox.
+ * @mbxCommand: mailbox command code.
+ *
+ * This function is called by the mailbox event handler function to verify
+ * that the completed mailbox command is a legitimate mailbox command. If the
+ * completed mailbox is not known to the function, it will return MBX_SHUTDOWN
+ * and the mailbox event handler will take the HBA offline.
+ **/
 static int
 lpfc_sli_chk_mbx_command(uint8_t mbxCommand)
 {
@@ -785,6 +1051,8 @@
 	case MBX_REG_VPI:
 	case MBX_UNREG_VPI:
 	case MBX_HEARTBEAT:
+	case MBX_PORT_CAPABILITIES:
+	case MBX_PORT_IOV_CONTROL:
 		ret = mbxCommand;
 		break;
 	default:
@@ -793,6 +1061,19 @@
 	}
 	return ret;
 }
+
+/**
+ * lpfc_sli_wake_mbox_wait: Completion handler for mbox issued from
+ *          lpfc_sli_issue_mbox_wait.
+ * @phba: Pointer to HBA context object.
+ * @pmboxq: Pointer to mailbox command.
+ *
+ * This is completion handler function for mailbox commands issued from
+ * lpfc_sli_issue_mbox_wait function. This function is called by the
+ * mailbox event handler function with no lock held. This function
+ * will wake up thread waiting on the wait queue pointed by context1
+ * of the mailbox.
+ **/
 static void
 lpfc_sli_wake_mbox_wait(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmboxq)
 {
@@ -812,6 +1093,17 @@
 	return;
 }
 
+
+/**
+ * lpfc_sli_def_mbox_cmpl: Default mailbox completion handler.
+ * @phba: Pointer to HBA context object.
+ * @pmb: Pointer to mailbox object.
+ *
+ * This function is the default mailbox completion handler. It
+ * frees the memory resources associated with the completed mailbox
+ * command. If the completed command is a REG_LOGIN mailbox command,
+ * this function will issue a UREG_LOGIN to re-claim the RPI.
+ **/
 void
 lpfc_sli_def_mbox_cmpl(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmb)
 {
@@ -846,6 +1138,19 @@
 	return;
 }
 
+/**
+ * lpfc_sli_handle_mb_event: Handle mailbox completions from firmware.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function is called with no lock held. This function processes all
+ * the completed mailbox commands and gives it to upper layers. The interrupt
+ * service routine processes mailbox completion interrupt and adds completed
+ * mailbox commands to the mboxq_cmpl queue and signals the worker thread.
+ * Worker thread call lpfc_sli_handle_mb_event, which will return the
+ * completed mailbox commands in mboxq_cmpl queue to the upper layers. This
+ * function returns the mailbox commands to the upper layer by calling the
+ * completion handler function of each mailbox.
+ **/
 int
 lpfc_sli_handle_mb_event(struct lpfc_hba *phba)
 {
@@ -953,6 +1258,18 @@
 	return 0;
 }
 
+/**
+ * lpfc_sli_replace_hbqbuff: Replace the HBQ buffer with a new buffer.
+ * @phba: Pointer to HBA context object.
+ * @tag: Tag for the HBQ buffer.
+ *
+ * This function is called from unsolicited event handler code path to get the
+ * HBQ buffer associated with an unsolicited iocb. This function is called with
+ * no lock held. It returns the buffer associated with the given tag and posts
+ * another buffer to the firmware. Note that the new buffer must be allocated
+ * before taking the hbalock and that the hba lock must be held until it is
+ * finished with the hbq entry swap.
+ **/
 static struct lpfc_dmabuf *
 lpfc_sli_replace_hbqbuff(struct lpfc_hba *phba, uint32_t tag)
 {
@@ -962,22 +1279,28 @@
 	dma_addr_t phys;	/* mapped address */
 	unsigned long flags;
 
+	hbqno = tag >> 16;
+	new_hbq_entry = (phba->hbqs[hbqno].hbq_alloc_buffer)(phba);
 	/* Check whether HBQ is still in use */
 	spin_lock_irqsave(&phba->hbalock, flags);
 	if (!phba->hbq_in_use) {
+		if (new_hbq_entry)
+			(phba->hbqs[hbqno].hbq_free_buffer)(phba,
+							    new_hbq_entry);
 		spin_unlock_irqrestore(&phba->hbalock, flags);
 		return NULL;
 	}
 
 	hbq_entry = lpfc_sli_hbqbuf_find(phba, tag);
 	if (hbq_entry == NULL) {
+		if (new_hbq_entry)
+			(phba->hbqs[hbqno].hbq_free_buffer)(phba,
+							    new_hbq_entry);
 		spin_unlock_irqrestore(&phba->hbalock, flags);
 		return NULL;
 	}
 	list_del(&hbq_entry->dbuf.list);
 
-	hbqno = tag >> 16;
-	new_hbq_entry = (phba->hbqs[hbqno].hbq_alloc_buffer)(phba);
 	if (new_hbq_entry == NULL) {
 		list_add_tail(&hbq_entry->dbuf.list, &phba->hbqbuf_in_list);
 		spin_unlock_irqrestore(&phba->hbalock, flags);
@@ -997,6 +1320,18 @@
 	return &new_hbq_entry->dbuf;
 }
 
+/**
+ * lpfc_sli_get_buff: Get the buffer associated with the buffer tag.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ * @tag: buffer tag.
+ *
+ * This function is called with no lock held. When QUE_BUFTAG_BIT bit
+ * is set in the tag the buffer is posted for a particular exchange,
+ * the function will return the buffer without replacing the buffer.
+ * If the buffer is for unsolicited ELS or CT traffic, this function
+ * returns the buffer and also posts another buffer to the firmware.
+ **/
 static struct lpfc_dmabuf *
 lpfc_sli_get_buff(struct lpfc_hba *phba,
 			struct lpfc_sli_ring *pring,
@@ -1008,6 +1343,21 @@
 		return lpfc_sli_replace_hbqbuff(phba, tag);
 }
 
+
+/**
+ * lpfc_sli_process_unsol_iocb: Unsolicited iocb handler.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ * @saveq: Pointer to the unsolicited iocb.
+ *
+ * This function is called with no lock held by the ring event handler
+ * when there is an unsolicited iocb posted to the response ring by the
+ * firmware. This function gets the buffer associated with the iocbs
+ * and calls the event handler for the ring. This function handles both
+ * qring buffers and hbq buffers.
+ * When the function returns 1 the caller can free the iocb object otherwise
+ * upper layer functions will free the iocb objects.
+ **/
 static int
 lpfc_sli_process_unsol_iocb(struct lpfc_hba *phba, struct lpfc_sli_ring *pring,
 			    struct lpfc_iocbq *saveq)
@@ -1192,6 +1542,18 @@
 	return 1;
 }
 
+/**
+ * lpfc_sli_iocbq_lookup: Find command iocb for the given response iocb.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ * @prspiocb: Pointer to response iocb object.
+ *
+ * This function looks up the iocb_lookup table to get the command iocb
+ * corresponding to the given response iocb using the iotag of the
+ * response iocb. This function is called with the hbalock held.
+ * This function returns the command iocb object if it finds the command
+ * iocb else returns NULL.
+ **/
 static struct lpfc_iocbq *
 lpfc_sli_iocbq_lookup(struct lpfc_hba *phba,
 		      struct lpfc_sli_ring *pring,
@@ -1217,6 +1579,23 @@
 	return NULL;
 }
 
+/**
+ * lpfc_sli_process_sol_iocb: process solicited iocb completion.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ * @saveq: Pointer to the response iocb to be processed.
+ *
+ * This function is called by the ring event handler for non-fcp
+ * rings when there is a new response iocb in the response ring.
+ * The caller is not required to hold any locks. This function
+ * gets the command iocb associated with the response iocb and
+ * calls the completion handler for the command iocb. If there
+ * is no completion handler, the function will free the resources
+ * associated with command iocb. If the response iocb is for
+ * an already aborted command iocb, the status of the completion
+ * is changed to IOSTAT_LOCAL_REJECT/IOERR_SLI_ABORTED.
+ * This function always returns 1.
+ **/
 static int
 lpfc_sli_process_sol_iocb(struct lpfc_hba *phba, struct lpfc_sli_ring *pring,
 			  struct lpfc_iocbq *saveq)
@@ -1233,6 +1612,17 @@
 	if (cmdiocbp) {
 		if (cmdiocbp->iocb_cmpl) {
 			/*
+			 * If an ELS command failed send an event to mgmt
+			 * application.
+			 */
+			if (saveq->iocb.ulpStatus &&
+			     (pring->ringno == LPFC_ELS_RING) &&
+			     (cmdiocbp->iocb.ulpCommand ==
+				CMD_ELS_REQUEST64_CR))
+				lpfc_send_els_failure_event(phba,
+					cmdiocbp, saveq);
+
+			/*
 			 * Post all ELS completions to the worker thread.
 			 * All other are passed to the completion callback.
 			 */
@@ -1282,12 +1672,20 @@
 	return rc;
 }
 
+/**
+ * lpfc_sli_rsp_pointers_error: Response ring pointer error handler.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ *
+ * This function is called from the iocb ring event handlers when
+ * put pointer is ahead of the get pointer for a ring. This function signal
+ * an error attention condition to the worker thread and the worker
+ * thread will transition the HBA to offline state.
+ **/
 static void
 lpfc_sli_rsp_pointers_error(struct lpfc_hba *phba, struct lpfc_sli_ring *pring)
 {
-	struct lpfc_pgp *pgp = (phba->sli_rev == 3) ?
-		&phba->slim2p->mbx.us.s3_pgp.port[pring->ringno] :
-		&phba->slim2p->mbx.us.s2.port[pring->ringno];
+	struct lpfc_pgp *pgp = &phba->port_gp[pring->ringno];
 	/*
 	 * Ring <ringno> handler: portRspPut <portRspPut> is bigger then
 	 * rsp ring <portRspMax>
@@ -1312,6 +1710,51 @@
 	return;
 }
 
+/**
+ * lpfc_poll_eratt: Error attention polling timer timeout handler.
+ * @ptr: Pointer to address of HBA context object.
+ *
+ * This function is invoked by the Error Attention polling timer when the
+ * timer times out. It will check the SLI Error Attention register for
+ * possible attention events. If so, it will post an Error Attention event
+ * and wake up worker thread to process it. Otherwise, it will set up the
+ * Error Attention polling timer for the next poll.
+ **/
+void lpfc_poll_eratt(unsigned long ptr)
+{
+	struct lpfc_hba *phba;
+	uint32_t eratt = 0;
+
+	phba = (struct lpfc_hba *)ptr;
+
+	/* Check chip HA register for error event */
+	eratt = lpfc_sli_check_eratt(phba);
+
+	if (eratt)
+		/* Tell the worker thread there is work to do */
+		lpfc_worker_wake_up(phba);
+	else
+		/* Restart the timer for next eratt poll */
+		mod_timer(&phba->eratt_poll, jiffies +
+					HZ * LPFC_ERATT_POLL_INTERVAL);
+	return;
+}
+
+/**
+ * lpfc_sli_poll_fcp_ring: Handle FCP ring completion in polling mode.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function is called from lpfc_queuecommand, lpfc_poll_timeout,
+ * lpfc_abort_handler and lpfc_slave_configure when FCP_RING_POLLING
+ * is enabled.
+ *
+ * The caller does not hold any lock.
+ * The function processes each response iocb in the response ring until it
+ * finds an iocb with LE bit set and chains all the iocbs upto the iocb with
+ * LE bit set. The function will call the completion handler of the command iocb
+ * if the response iocb indicates a completion for a command iocb or it is
+ * an abort completion.
+ **/
 void lpfc_sli_poll_fcp_ring(struct lpfc_hba *phba)
 {
 	struct lpfc_sli      *psli  = &phba->sli;
@@ -1320,7 +1763,7 @@
 	IOCB_t *entry = NULL;
 	struct lpfc_iocbq *cmdiocbq = NULL;
 	struct lpfc_iocbq rspiocbq;
-	struct lpfc_pgp *pgp;
+	struct lpfc_pgp *pgp = &phba->port_gp[pring->ringno];
 	uint32_t status;
 	uint32_t portRspPut, portRspMax;
 	int type;
@@ -1330,11 +1773,6 @@
 
 	pring->stats.iocb_event++;
 
-	pgp = (phba->sli_rev == 3) ?
-		&phba->slim2p->mbx.us.s3_pgp.port[pring->ringno] :
-		&phba->slim2p->mbx.us.s2.port[pring->ringno];
-
-
 	/*
 	 * The next available response entry should never exceed the maximum
 	 * entries.  If it does, treat it as an adapter hardware error.
@@ -1372,8 +1810,8 @@
 					irsp->un.ulpWord[3],
 					irsp->un.ulpWord[4],
 					irsp->un.ulpWord[5],
-					*(((uint32_t *) irsp) + 6),
-					*(((uint32_t *) irsp) + 7));
+					*(uint32_t *)&irsp->un1,
+					*((uint32_t *)&irsp->un1 + 1));
 		}
 
 		switch (type) {
@@ -1465,17 +1903,28 @@
 	return;
 }
 
-/*
+/**
+ * lpfc_sli_handle_fast_ring_event: Handle ring events on FCP ring.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ * @mask: Host attention register mask for this ring.
+ *
+ * This function is called from the interrupt context when there is a ring
+ * event for the fcp ring. The caller does not hold any lock.
+ * The function processes each response iocb in the response ring until it
+ * finds an iocb with LE bit set and chains all the iocbs upto the iocb with
+ * LE bit set. The function will call the completion handler of the command iocb
+ * if the response iocb indicates a completion for a command iocb or it is
+ * an abort completion. The function will call lpfc_sli_process_unsol_iocb
+ * function if this is an unsolicited iocb.
  * This routine presumes LPFC_FCP_RING handling and doesn't bother
- * to check it explicitly.
- */
+ * to check it explicitly. This function always returns 1.
+ **/
 static int
 lpfc_sli_handle_fast_ring_event(struct lpfc_hba *phba,
 				struct lpfc_sli_ring *pring, uint32_t mask)
 {
-	struct lpfc_pgp *pgp = (phba->sli_rev == 3) ?
-		&phba->slim2p->mbx.us.s3_pgp.port[pring->ringno] :
-		&phba->slim2p->mbx.us.s2.port[pring->ringno];
+	struct lpfc_pgp *pgp = &phba->port_gp[pring->ringno];
 	IOCB_t *irsp = NULL;
 	IOCB_t *entry = NULL;
 	struct lpfc_iocbq *cmdiocbq = NULL;
@@ -1548,8 +1997,8 @@
 					irsp->un.ulpWord[3],
 					irsp->un.ulpWord[4],
 					irsp->un.ulpWord[5],
-					*(((uint32_t *) irsp) + 6),
-					*(((uint32_t *) irsp) + 7));
+					*(uint32_t *)&irsp->un1,
+					*((uint32_t *)&irsp->un1 + 1));
 		}
 
 		switch (type) {
@@ -1646,13 +2095,28 @@
 	return rc;
 }
 
+/**
+ * lpfc_sli_handle_slow_ring_event: Handle ring events for non-FCP rings.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ * @mask: Host attention register mask for this ring.
+ *
+ * This function is called from the worker thread when there is a ring
+ * event for non-fcp rings. The caller does not hold any lock .
+ * The function processes each response iocb in the response ring until it
+ * finds an iocb with LE bit set and chains all the iocbs upto the iocb with
+ * LE bit set. The function will call lpfc_sli_process_sol_iocb function if the
+ * response iocb indicates a completion of a command iocb. The function
+ * will call lpfc_sli_process_unsol_iocb function if this is an unsolicited
+ * iocb. The function frees the resources or calls the completion handler if
+ * this iocb is an abort completion. The function returns 0 when the allocated
+ * iocbs are not freed, otherwise returns 1.
+ **/
 int
 lpfc_sli_handle_slow_ring_event(struct lpfc_hba *phba,
 				struct lpfc_sli_ring *pring, uint32_t mask)
 {
-	struct lpfc_pgp *pgp = (phba->sli_rev == 3) ?
-		&phba->slim2p->mbx.us.s3_pgp.port[pring->ringno] :
-		&phba->slim2p->mbx.us.s2.port[pring->ringno];
+	struct lpfc_pgp *pgp;
 	IOCB_t *entry;
 	IOCB_t *irsp = NULL;
 	struct lpfc_iocbq *rspiocbp = NULL;
@@ -1666,6 +2130,7 @@
 	int rc = 1;
 	unsigned long iflag;
 
+	pgp = &phba->port_gp[pring->ringno];
 	spin_lock_irqsave(&phba->hbalock, iflag);
 	pring->stats.iocb_event++;
 
@@ -1904,6 +2369,16 @@
 	return rc;
 }
 
+/**
+ * lpfc_sli_abort_iocb_ring: Abort all iocbs in the ring.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ *
+ * This function aborts all iocbs in the given ring and frees all the iocb
+ * objects in txq. This function issues an abort iocb for all the iocb commands
+ * in txcmplq. The iocbs in the txcmplq is not guaranteed to complete before
+ * the return of this function. The caller is not required to hold any locks.
+ **/
 void
 lpfc_sli_abort_iocb_ring(struct lpfc_hba *phba, struct lpfc_sli_ring *pring)
 {
@@ -1943,6 +2418,83 @@
 	}
 }
 
+/**
+ * lpfc_sli_flush_fcp_rings: flush all iocbs in the fcp ring.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function flushes all iocbs in the fcp ring and frees all the iocb
+ * objects in txq and txcmplq. This function will not issue abort iocbs
+ * for all the iocb commands in txcmplq, they will just be returned with
+ * IOERR_SLI_DOWN. This function is invoked with EEH when device's PCI
+ * slot has been permanently disabled.
+ **/
+void
+lpfc_sli_flush_fcp_rings(struct lpfc_hba *phba)
+{
+	LIST_HEAD(txq);
+	LIST_HEAD(txcmplq);
+	struct lpfc_iocbq *iocb;
+	IOCB_t *cmd = NULL;
+	struct lpfc_sli *psli = &phba->sli;
+	struct lpfc_sli_ring  *pring;
+
+	/* Currently, only one fcp ring */
+	pring = &psli->ring[psli->fcp_ring];
+
+	spin_lock_irq(&phba->hbalock);
+	/* Retrieve everything on txq */
+	list_splice_init(&pring->txq, &txq);
+	pring->txq_cnt = 0;
+
+	/* Retrieve everything on the txcmplq */
+	list_splice_init(&pring->txcmplq, &txcmplq);
+	pring->txcmplq_cnt = 0;
+	spin_unlock_irq(&phba->hbalock);
+
+	/* Flush the txq */
+	while (!list_empty(&txq)) {
+		iocb = list_get_first(&txq, struct lpfc_iocbq, list);
+		cmd = &iocb->iocb;
+		list_del_init(&iocb->list);
+
+		if (!iocb->iocb_cmpl)
+			lpfc_sli_release_iocbq(phba, iocb);
+		else {
+			cmd->ulpStatus = IOSTAT_LOCAL_REJECT;
+			cmd->un.ulpWord[4] = IOERR_SLI_DOWN;
+			(iocb->iocb_cmpl) (phba, iocb, iocb);
+		}
+	}
+
+	/* Flush the txcmpq */
+	while (!list_empty(&txcmplq)) {
+		iocb = list_get_first(&txcmplq, struct lpfc_iocbq, list);
+		cmd = &iocb->iocb;
+		list_del_init(&iocb->list);
+
+		if (!iocb->iocb_cmpl)
+			lpfc_sli_release_iocbq(phba, iocb);
+		else {
+			cmd->ulpStatus = IOSTAT_LOCAL_REJECT;
+			cmd->un.ulpWord[4] = IOERR_SLI_DOWN;
+			(iocb->iocb_cmpl) (phba, iocb, iocb);
+		}
+	}
+}
+
+/**
+ * lpfc_sli_brdready: Check for host status bits.
+ * @phba: Pointer to HBA context object.
+ * @mask: Bit mask to be checked.
+ *
+ * This function reads the host status register and compares
+ * with the provided bit mask to check if HBA completed
+ * the restart. This function will wait in a loop for the
+ * HBA to complete restart. If the HBA does not restart within
+ * 15 iterations, the function will reset the HBA again. The
+ * function returns 1 when HBA fail to restart otherwise returns
+ * zero.
+ **/
 int
 lpfc_sli_brdready(struct lpfc_hba *phba, uint32_t mask)
 {
@@ -1990,6 +2542,13 @@
 
 #define BARRIER_TEST_PATTERN (0xdeadbeef)
 
+/**
+ * lpfc_reset_barrier: Make HBA ready for HBA reset.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function is called before resetting an HBA. This
+ * function requests HBA to quiesce DMAs before a reset.
+ **/
 void lpfc_reset_barrier(struct lpfc_hba *phba)
 {
 	uint32_t __iomem *resp_buf;
@@ -2063,6 +2622,17 @@
 	readl(phba->HCregaddr); /* flush */
 }
 
+/**
+ * lpfc_sli_brdkill: Issue a kill_board mailbox command.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function issues a kill_board mailbox command and waits for
+ * the error attention interrupt. This function is called for stopping
+ * the firmware processing. The caller is not required to hold any
+ * locks. This function calls lpfc_hba_down_post function to free
+ * any pending commands after the kill. The function will return 1 when it
+ * fails to kill the board else will return 0.
+ **/
 int
 lpfc_sli_brdkill(struct lpfc_hba *phba)
 {
@@ -2139,6 +2709,17 @@
 	return ha_copy & HA_ERATT ? 0 : 1;
 }
 
+/**
+ * lpfc_sli_brdreset: Reset the HBA.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function resets the HBA by writing HC_INITFF to the control
+ * register. After the HBA resets, this function resets all the iocb ring
+ * indices. This function disables PCI layer parity checking during
+ * the reset.
+ * This function returns 0 always.
+ * The caller is not required to hold any locks.
+ **/
 int
 lpfc_sli_brdreset(struct lpfc_hba *phba)
 {
@@ -2191,6 +2772,19 @@
 	return 0;
 }
 
+/**
+ * lpfc_sli_brdrestart: Restart the HBA.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function is called in the SLI initialization code path to
+ * restart the HBA. The caller is not required to hold any lock.
+ * This function writes MBX_RESTART mailbox command to the SLIM and
+ * resets the HBA. At the end of the function, it calls lpfc_hba_down_post
+ * function to free any pending commands. The function enables
+ * POST only during the first initialization. The function returns zero.
+ * The function does not guarantee completion of MBX_RESTART mailbox
+ * command before the return of this function.
+ **/
 int
 lpfc_sli_brdrestart(struct lpfc_hba *phba)
 {
@@ -2251,6 +2845,16 @@
 	return 0;
 }
 
+/**
+ * lpfc_sli_chipset_init: Wait for the restart of the HBA after a restart.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function is called after a HBA restart to wait for successful
+ * restart of the HBA. Successful restart of the HBA is indicated by
+ * HS_FFRDY and HS_MBRDY bits. If the HBA fails to restart even after 15
+ * iteration, the function will restart the HBA again. The function returns
+ * zero if HBA successfully restarted else returns negative error code.
+ **/
 static int
 lpfc_sli_chipset_init(struct lpfc_hba *phba)
 {
@@ -2336,12 +2940,25 @@
 	return 0;
 }
 
+/**
+ * lpfc_sli_hbq_count: Get the number of HBQs to be configured.
+ *
+ * This function calculates and returns the number of HBQs required to be
+ * configured.
+ **/
 int
 lpfc_sli_hbq_count(void)
 {
 	return ARRAY_SIZE(lpfc_hbq_defs);
 }
 
+/**
+ * lpfc_sli_hbq_entry_count: Calculate total number of hbq entries.
+ *
+ * This function adds the number of hbq entries in every HBQ to get
+ * the total number of hbq entries required for the HBA and returns
+ * the total count.
+ **/
 static int
 lpfc_sli_hbq_entry_count(void)
 {
@@ -2354,12 +2971,27 @@
 	return count;
 }
 
+/**
+ * lpfc_sli_hbq_size: Calculate memory required for all hbq entries.
+ *
+ * This function calculates amount of memory required for all hbq entries
+ * to be configured and returns the total memory required.
+ **/
 int
 lpfc_sli_hbq_size(void)
 {
 	return lpfc_sli_hbq_entry_count() * sizeof(struct lpfc_hbq_entry);
 }
 
+/**
+ * lpfc_sli_hbq_setup: configure and initialize HBQs.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function is called during the SLI initialization to configure
+ * all the HBQs and post buffers to the HBQ. The caller is not
+ * required to hold any locks. This function will return zero if successful
+ * else it will return negative error code.
+ **/
 static int
 lpfc_sli_hbq_setup(struct lpfc_hba *phba)
 {
@@ -2415,15 +3047,26 @@
 	mempool_free(pmb, phba->mbox_mem_pool);
 
 	/* Initially populate or replenish the HBQs */
-	for (hbqno = 0; hbqno < hbq_count; ++hbqno) {
-		if (lpfc_sli_hbqbuf_init_hbqs(phba, hbqno))
-			return -ENOMEM;
-	}
+	for (hbqno = 0; hbqno < hbq_count; ++hbqno)
+		lpfc_sli_hbqbuf_init_hbqs(phba, hbqno);
 	return 0;
 }
 
-static int
-lpfc_do_config_port(struct lpfc_hba *phba, int sli_mode)
+/**
+ * lpfc_sli_config_port: Issue config port mailbox command.
+ * @phba: Pointer to HBA context object.
+ * @sli_mode: sli mode - 2/3
+ *
+ * This function is called by the sli intialization code path
+ * to issue config_port mailbox command. This function restarts the
+ * HBA firmware and issues a config_port mailbox command to configure
+ * the SLI interface in the sli mode specified by sli_mode
+ * variable. The caller is not required to hold any locks.
+ * The function returns 0 if successful, else returns negative error
+ * code.
+ **/
+int
+lpfc_sli_config_port(struct lpfc_hba *phba, int sli_mode)
 {
 	LPFC_MBOXQ_t *pmb;
 	uint32_t resetcount = 0, rc = 0, done = 0;
@@ -2460,13 +3103,15 @@
 		if (rc == -ERESTART) {
 			phba->link_state = LPFC_LINK_UNKNOWN;
 			continue;
-		} else if (rc) {
+		} else if (rc)
 			break;
-		}
-
 		phba->link_state = LPFC_INIT_MBX_CMDS;
 		lpfc_config_port(phba, pmb);
 		rc = lpfc_sli_issue_mbox(phba, pmb, MBX_POLL);
+		phba->sli3_options &= ~(LPFC_SLI3_NPIV_ENABLED |
+					LPFC_SLI3_HBQ_ENABLED |
+					LPFC_SLI3_CRP_ENABLED |
+					LPFC_SLI3_INB_ENABLED);
 		if (rc != MBX_SUCCESS) {
 			lpfc_printf_log(phba, KERN_ERR, LOG_INIT,
 				"0442 Adapter failed to init, mbxCmd x%x "
@@ -2476,30 +3121,64 @@
 			phba->sli.sli_flag &= ~LPFC_SLI2_ACTIVE;
 			spin_unlock_irq(&phba->hbalock);
 			rc = -ENXIO;
-		} else {
+		} else
 			done = 1;
-			phba->max_vpi = (phba->max_vpi &&
-					 pmb->mb.un.varCfgPort.gmv) != 0
-				? pmb->mb.un.varCfgPort.max_vpi
-				: 0;
-		}
 	}
-
 	if (!done) {
 		rc = -EINVAL;
 		goto do_prep_failed;
 	}
-
-	if ((pmb->mb.un.varCfgPort.sli_mode == 3) &&
-		(!pmb->mb.un.varCfgPort.cMA)) {
-		rc = -ENXIO;
+	if (pmb->mb.un.varCfgPort.sli_mode == 3) {
+		if (!pmb->mb.un.varCfgPort.cMA) {
+			rc = -ENXIO;
+			goto do_prep_failed;
+		}
+		if (phba->max_vpi && pmb->mb.un.varCfgPort.gmv) {
+			phba->sli3_options |= LPFC_SLI3_NPIV_ENABLED;
+			phba->max_vpi = pmb->mb.un.varCfgPort.max_vpi;
+		} else
+			phba->max_vpi = 0;
+		if (pmb->mb.un.varCfgPort.gerbm)
+			phba->sli3_options |= LPFC_SLI3_HBQ_ENABLED;
+		if (pmb->mb.un.varCfgPort.gcrp)
+			phba->sli3_options |= LPFC_SLI3_CRP_ENABLED;
+		if (pmb->mb.un.varCfgPort.ginb) {
+			phba->sli3_options |= LPFC_SLI3_INB_ENABLED;
+			phba->port_gp = phba->mbox->us.s3_inb_pgp.port;
+			phba->inb_ha_copy = &phba->mbox->us.s3_inb_pgp.ha_copy;
+			phba->inb_counter = &phba->mbox->us.s3_inb_pgp.counter;
+			phba->inb_last_counter =
+					phba->mbox->us.s3_inb_pgp.counter;
+		} else {
+			phba->port_gp = phba->mbox->us.s3_pgp.port;
+			phba->inb_ha_copy = NULL;
+			phba->inb_counter = NULL;
+		}
+	} else {
+		phba->port_gp = phba->mbox->us.s2.port;
+		phba->inb_ha_copy = NULL;
+		phba->inb_counter = NULL;
+		phba->max_vpi = 0;
 	}
-
 do_prep_failed:
 	mempool_free(pmb, phba->mbox_mem_pool);
 	return rc;
 }
 
+
+/**
+ * lpfc_sli_hba_setup: SLI intialization function.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function is the main SLI intialization function. This function
+ * is called by the HBA intialization code, HBA reset code and HBA
+ * error attention handler code. Caller is not required to hold any
+ * locks. This function issues config_port mailbox command to configure
+ * the SLI, setup iocb rings and HBQ rings. In the end the function
+ * calls the config_port_post function to issue init_link mailbox
+ * command and to start the discovery. The function will return zero
+ * if successful, else it will return negative error code.
+ **/
 int
 lpfc_sli_hba_setup(struct lpfc_hba *phba)
 {
@@ -2528,22 +3207,20 @@
 		break;
 	}
 
-	rc = lpfc_do_config_port(phba, mode);
+	rc = lpfc_sli_config_port(phba, mode);
+
 	if (rc && lpfc_sli_mode == 3)
 		lpfc_printf_log(phba, KERN_ERR, LOG_INIT | LOG_VPORT,
 				"1820 Unable to select SLI-3.  "
 				"Not supported by adapter.\n");
 	if (rc && mode != 2)
-		rc = lpfc_do_config_port(phba, 2);
+		rc = lpfc_sli_config_port(phba, 2);
 	if (rc)
 		goto lpfc_sli_hba_setup_error;
 
 	if (phba->sli_rev == 3) {
 		phba->iocb_cmd_size = SLI3_IOCB_CMD_SIZE;
 		phba->iocb_rsp_size = SLI3_IOCB_RSP_SIZE;
-		phba->sli3_options |= LPFC_SLI3_ENABLED;
-		phba->sli3_options |= LPFC_SLI3_HBQ_ENABLED;
-
 	} else {
 		phba->iocb_cmd_size = SLI2_IOCB_CMD_SIZE;
 		phba->iocb_rsp_size = SLI2_IOCB_RSP_SIZE;
@@ -2558,8 +3235,7 @@
 	if (rc)
 		goto lpfc_sli_hba_setup_error;
 
-				/* Init HBQs */
-
+	/* Init HBQs */
 	if (phba->sli3_options & LPFC_SLI3_HBQ_ENABLED) {
 		rc = lpfc_sli_hbq_setup(phba);
 		if (rc)
@@ -2581,19 +3257,19 @@
 	return rc;
 }
 
-/*! lpfc_mbox_timeout
+
+/**
+ * lpfc_mbox_timeout: Timeout call back function for mbox timer.
+ * @ptr: context object - pointer to hba structure.
  *
- * \pre
- * \post
- * \param hba Pointer to per struct lpfc_hba structure
- * \param l1  Pointer to the driver's mailbox queue.
- * \return
- *   void
- *
- * \b Description:
- *
- * This routine handles mailbox timeout events at timer interrupt context.
- */
+ * This is the callback function for mailbox timer. The mailbox
+ * timer is armed when a new mailbox command is issued and the timer
+ * is deleted when the mailbox complete. The function is called by
+ * the kernel timer code when a mailbox does not complete within
+ * expected time. This function wakes up the worker thread to
+ * process the mailbox timeout and returns. All the processing is
+ * done by the worker thread function lpfc_mbox_timeout_handler.
+ **/
 void
 lpfc_mbox_timeout(unsigned long ptr)
 {
@@ -2612,6 +3288,15 @@
 	return;
 }
 
+
+/**
+ * lpfc_mbox_timeout_handler: Worker thread function to handle mailbox timeout.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function is called from worker thread when a mailbox command times out.
+ * The caller is not required to hold any locks. This function will reset the
+ * HBA and recover all the pending commands.
+ **/
 void
 lpfc_mbox_timeout_handler(struct lpfc_hba *phba)
 {
@@ -2666,6 +3351,32 @@
 	return;
 }
 
+/**
+ * lpfc_sli_issue_mbox: Issue a mailbox command to firmware.
+ * @phba: Pointer to HBA context object.
+ * @pmbox: Pointer to mailbox object.
+ * @flag: Flag indicating how the mailbox need to be processed.
+ *
+ * This function is called by discovery code and HBA management code
+ * to submit a mailbox command to firmware. This function gets the
+ * hbalock to protect the data structures.
+ * The mailbox command can be submitted in polling mode, in which case
+ * this function will wait in a polling loop for the completion of the
+ * mailbox.
+ * If the mailbox is submitted in no_wait mode (not polling) the
+ * function will submit the command and returns immediately without waiting
+ * for the mailbox completion. The no_wait is supported only when HBA
+ * is in SLI2/SLI3 mode - interrupts are enabled.
+ * The SLI interface allows only one mailbox pending at a time. If the
+ * mailbox is issued in polling mode and there is already a mailbox
+ * pending, then the function will return an error. If the mailbox is issued
+ * in NO_WAIT mode and there is a mailbox pending already, the function
+ * will return MBX_BUSY after queuing the mailbox into mailbox queue.
+ * The sli layer owns the mailbox object until the completion of mailbox
+ * command if this function return MBX_BUSY or MBX_SUCCESS. For all other
+ * return codes the caller owns the mailbox command after the return of
+ * the function.
+ **/
 int
 lpfc_sli_issue_mbox(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmbox, uint32_t flag)
 {
@@ -2676,7 +3387,7 @@
 	int i;
 	unsigned long timeout;
 	unsigned long drvr_flag = 0;
-	volatile uint32_t word0, ldata;
+	uint32_t word0, ldata;
 	void __iomem *to_slim;
 	int processing_queue = 0;
 
@@ -2836,12 +3547,11 @@
 
 	if (psli->sli_flag & LPFC_SLI2_ACTIVE) {
 		/* First copy command data to host SLIM area */
-		lpfc_sli_pcimem_bcopy(mb, &phba->slim2p->mbx, MAILBOX_CMD_SIZE);
+		lpfc_sli_pcimem_bcopy(mb, phba->mbox, MAILBOX_CMD_SIZE);
 	} else {
 		if (mb->mbxCommand == MBX_CONFIG_PORT) {
 			/* copy command data into host mbox for cmpl */
-			lpfc_sli_pcimem_bcopy(mb, &phba->slim2p->mbx,
-					      MAILBOX_CMD_SIZE);
+			lpfc_sli_pcimem_bcopy(mb, phba->mbox, MAILBOX_CMD_SIZE);
 		}
 
 		/* First copy mbox command data to HBA SLIM, skip past first
@@ -2851,7 +3561,7 @@
 			    MAILBOX_CMD_SIZE - sizeof (uint32_t));
 
 		/* Next copy over first word, with mbxOwner set */
-		ldata = *((volatile uint32_t *)mb);
+		ldata = *((uint32_t *)mb);
 		to_slim = phba->MBslimaddr;
 		writel(ldata, to_slim);
 		readl(to_slim); /* flush */
@@ -2883,7 +3593,7 @@
 
 		if (psli->sli_flag & LPFC_SLI2_ACTIVE) {
 			/* First read mbox status word */
-			word0 = *((volatile uint32_t *)&phba->slim2p->mbx);
+			word0 = *((uint32_t *)phba->mbox);
 			word0 = le32_to_cpu(word0);
 		} else {
 			/* First read mbox status word */
@@ -2922,12 +3632,11 @@
 
 			if (psli->sli_flag & LPFC_SLI2_ACTIVE) {
 				/* First copy command data */
-				word0 = *((volatile uint32_t *)
-						&phba->slim2p->mbx);
+				word0 = *((uint32_t *)phba->mbox);
 				word0 = le32_to_cpu(word0);
 				if (mb->mbxCommand == MBX_CONFIG_PORT) {
 					MAILBOX_t *slimmb;
-					volatile uint32_t slimword0;
+					uint32_t slimword0;
 					/* Check real SLIM for any errors */
 					slimword0 = readl(phba->MBslimaddr);
 					slimmb = (MAILBOX_t *) & slimword0;
@@ -2948,8 +3657,7 @@
 
 		if (psli->sli_flag & LPFC_SLI2_ACTIVE) {
 			/* copy results back to user */
-			lpfc_sli_pcimem_bcopy(&phba->slim2p->mbx, mb,
-					      MAILBOX_CMD_SIZE);
+			lpfc_sli_pcimem_bcopy(phba->mbox, mb, MAILBOX_CMD_SIZE);
 		} else {
 			/* First copy command data */
 			lpfc_memcpy_from_slim(mb, phba->MBslimaddr,
@@ -2980,9 +3688,16 @@
 	return MBX_NOT_FINISHED;
 }
 
-/*
- * Caller needs to hold lock.
- */
+/**
+ * __lpfc_sli_ringtx_put: Add an iocb to the txq.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ * @piocb: Pointer to address of newly added command iocb.
+ *
+ * This function is called with hbalock held to add a command
+ * iocb to the txq when SLI layer cannot submit the command iocb
+ * to the ring.
+ **/
 static void
 __lpfc_sli_ringtx_put(struct lpfc_hba *phba, struct lpfc_sli_ring *pring,
 		    struct lpfc_iocbq *piocb)
@@ -2992,6 +3707,23 @@
 	pring->txq_cnt++;
 }
 
+/**
+ * lpfc_sli_next_iocb: Get the next iocb in the txq.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ * @piocb: Pointer to address of newly added command iocb.
+ *
+ * This function is called with hbalock held before a new
+ * iocb is submitted to the firmware. This function checks
+ * txq to flush the iocbs in txq to Firmware before
+ * submitting new iocbs to the Firmware.
+ * If there are iocbs in the txq which need to be submitted
+ * to firmware, lpfc_sli_next_iocb returns the first element
+ * of the txq after dequeuing it from txq.
+ * If there is no iocb in the txq then the function will return
+ * *piocb and *piocb is set to NULL. Caller needs to check
+ * *piocb to find if there are more commands in the txq.
+ **/
 static struct lpfc_iocbq *
 lpfc_sli_next_iocb(struct lpfc_hba *phba, struct lpfc_sli_ring *pring,
 		   struct lpfc_iocbq **piocb)
@@ -3007,9 +3739,30 @@
 	return nextiocb;
 }
 
-/*
- * Lockless version of lpfc_sli_issue_iocb.
- */
+/**
+ * __lpfc_sli_issue_iocb: Lockless version of lpfc_sli_issue_iocb.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ * @piocb: Pointer to command iocb.
+ * @flag: Flag indicating if this command can be put into txq.
+ *
+ * __lpfc_sli_issue_iocb is used by other functions in the driver
+ * to issue an iocb command to the HBA. If the PCI slot is recovering
+ * from error state or if HBA is resetting or if LPFC_STOP_IOCB_EVENT
+ * flag is turned on, the function returns IOCB_ERROR.
+ * When the link is down, this function allows only iocbs for
+ * posting buffers.
+ * This function finds next available slot in the command ring and
+ * posts the command to the available slot and writes the port
+ * attention register to request HBA start processing new iocb.
+ * If there is no slot available in the ring and
+ * flag & SLI_IOCB_RET_IOCB is set, the new iocb is added to the
+ * txq, otherwise the function returns IOCB_BUSY.
+ *
+ * This function is called with hbalock held.
+ * The function will return success after it successfully submit the
+ * iocb to firmware or after adding to the txq.
+ **/
 static int
 __lpfc_sli_issue_iocb(struct lpfc_hba *phba, struct lpfc_sli_ring *pring,
 		    struct lpfc_iocbq *piocb, uint32_t flag)
@@ -3052,6 +3805,16 @@
 		 * can be issued if the link is not up.
 		 */
 		switch (piocb->iocb.ulpCommand) {
+		case CMD_GEN_REQUEST64_CR:
+		case CMD_GEN_REQUEST64_CX:
+			if (!(phba->sli.sli_flag & LPFC_MENLO_MAINT) ||
+				(piocb->iocb.un.genreq64.w5.hcsw.Rctl !=
+					FC_FCP_CMND) ||
+				(piocb->iocb.un.genreq64.w5.hcsw.Type !=
+					MENLO_TRANSPORT_TYPE))
+
+				goto iocb_busy;
+			break;
 		case CMD_QUE_RING_BUF_CN:
 		case CMD_QUE_RING_BUF64_CN:
 			/*
@@ -3106,6 +3869,19 @@
 }
 
 
+/**
+ * lpfc_sli_issue_iocb: Wrapper function for __lpfc_sli_issue_iocb.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ * @piocb: Pointer to command iocb.
+ * @flag: Flag indicating if this command can be put into txq.
+ *
+ * lpfc_sli_issue_iocb is a wrapper around __lpfc_sli_issue_iocb
+ * function. This function gets the hbalock and calls
+ * __lpfc_sli_issue_iocb function and will return the error returned
+ * by __lpfc_sli_issue_iocb function. This wrapper is used by
+ * functions which do not hold hbalock.
+ **/
 int
 lpfc_sli_issue_iocb(struct lpfc_hba *phba, struct lpfc_sli_ring *pring,
 		    struct lpfc_iocbq *piocb, uint32_t flag)
@@ -3120,6 +3896,17 @@
 	return rc;
 }
 
+/**
+ * lpfc_extra_ring_setup: Extra ring setup function.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function is called while driver attaches with the
+ * HBA to setup the extra ring. The extra ring is used
+ * only when driver needs to support target mode functionality
+ * or IP over FC functionalities.
+ *
+ * This function is called with no lock held.
+ **/
 static int
 lpfc_extra_ring_setup( struct lpfc_hba *phba)
 {
@@ -3155,6 +3942,19 @@
 	return 0;
 }
 
+/**
+ * lpfc_sli_async_event_handler: ASYNC iocb handler function.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ * @iocbq: Pointer to iocb object.
+ *
+ * This function is called by the slow ring event handler
+ * function when there is an ASYNC event iocb in the ring.
+ * This function is called with no lock held.
+ * Currently this function handles only temperature related
+ * ASYNC events. The function decodes the temperature sensor
+ * event message and posts events for the management applications.
+ **/
 static void
 lpfc_sli_async_event_handler(struct lpfc_hba * phba,
 	struct lpfc_sli_ring * pring, struct lpfc_iocbq * iocbq)
@@ -3210,6 +4010,17 @@
 }
 
 
+/**
+ * lpfc_sli_setup: SLI ring setup function.
+ * @phba: Pointer to HBA context object.
+ *
+ * lpfc_sli_setup sets up rings of the SLI interface with
+ * number of iocbs per ring and iotags. This function is
+ * called while driver attach to the HBA and before the
+ * interrupts are enabled. So there is no need for locking.
+ *
+ * This function always returns 0.
+ **/
 int
 lpfc_sli_setup(struct lpfc_hba *phba)
 {
@@ -3321,6 +4132,17 @@
 	return 0;
 }
 
+/**
+ * lpfc_sli_queue_setup: Queue initialization function.
+ * @phba: Pointer to HBA context object.
+ *
+ * lpfc_sli_queue_setup sets up mailbox queues and iocb queues for each
+ * ring. This function also initializes ring indices of each ring.
+ * This function is called during the initialization of the SLI
+ * interface of an HBA.
+ * This function is called with no lock held and always returns
+ * 1.
+ **/
 int
 lpfc_sli_queue_setup(struct lpfc_hba *phba)
 {
@@ -3349,6 +4171,23 @@
 	return 1;
 }
 
+/**
+ * lpfc_sli_host_down: Vport cleanup function.
+ * @vport: Pointer to virtual port object.
+ *
+ * lpfc_sli_host_down is called to clean up the resources
+ * associated with a vport before destroying virtual
+ * port data structures.
+ * This function does following operations:
+ * - Free discovery resources associated with this virtual
+ *   port.
+ * - Free iocbs associated with this virtual port in
+ *   the txq.
+ * - Send abort for all iocb commands associated with this
+ *   vport in txcmplq.
+ *
+ * This function is called with no lock held and always returns 1.
+ **/
 int
 lpfc_sli_host_down(struct lpfc_vport *vport)
 {
@@ -3411,6 +4250,21 @@
 	return 1;
 }
 
+/**
+ * lpfc_sli_hba_down: Resource cleanup function for the HBA.
+ * @phba: Pointer to HBA context object.
+ *
+ * This function cleans up all iocb, buffers, mailbox commands
+ * while shutting down the HBA. This function is called with no
+ * lock held and always returns 1.
+ * This function does the following to cleanup driver resources:
+ * - Free discovery resources for each virtual port
+ * - Cleanup any pending fabric iocbs
+ * - Iterate through the iocb txq and free each entry
+ *   in the list.
+ * - Free up any buffer posted to the HBA
+ * - Free mailbox commands in the mailbox queue.
+ **/
 int
 lpfc_sli_hba_down(struct lpfc_hba *phba)
 {
@@ -3501,6 +4355,18 @@
 	return 1;
 }
 
+/**
+ * lpfc_sli_pcimem_bcopy: SLI memory copy function.
+ * @srcp: Source memory pointer.
+ * @destp: Destination memory pointer.
+ * @cnt: Number of words required to be copied.
+ *
+ * This function is used for copying data between driver memory
+ * and the SLI memory. This function also changes the endianness
+ * of each word if native endianness is different from SLI
+ * endianness. This function can be called with or without
+ * lock.
+ **/
 void
 lpfc_sli_pcimem_bcopy(void *srcp, void *destp, uint32_t cnt)
 {
@@ -3518,6 +4384,17 @@
 	}
 }
 
+
+/**
+ * lpfc_sli_ringpostbuf_put: Function to add a buffer to postbufq.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ * @mp: Pointer to driver buffer object.
+ *
+ * This function is called with no lock held.
+ * It always return zero after adding the buffer to the postbufq
+ * buffer list.
+ **/
 int
 lpfc_sli_ringpostbuf_put(struct lpfc_hba *phba, struct lpfc_sli_ring *pring,
 			 struct lpfc_dmabuf *mp)
@@ -3531,6 +4408,18 @@
 	return 0;
 }
 
+/**
+ * lpfc_sli_get_buffer_tag: Tag allocation function for a buffer posted
+ *          using CMD_QUE_XRI64_CX iocb.
+ * @phba: Pointer to HBA context object.
+ *
+ * When HBQ is enabled, buffers are searched based on tags. This function
+ * allocates a tag for buffer posted using CMD_QUE_XRI64_CX iocb. The
+ * tag is bit wise or-ed with QUE_BUFTAG_BIT to make sure that the tag
+ * does not conflict with tags of buffer posted for unsolicited events.
+ * The function returns the allocated tag. The function is called with
+ * no locks held.
+ **/
 uint32_t
 lpfc_sli_get_buffer_tag(struct lpfc_hba *phba)
 {
@@ -3545,6 +4434,22 @@
 	return phba->buffer_tag_count;
 }
 
+/**
+ * lpfc_sli_ring_taggedbuf_get: Search HBQ buffer associated with
+ *              posted using CMD_QUE_XRI64_CX iocb.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ * @tag: Buffer tag.
+ *
+ * Buffers posted using CMD_QUE_XRI64_CX iocb are in pring->postbufq
+ * list. After HBA DMA data to these buffers, CMD_IOCB_RET_XRI64_CX
+ * iocb is posted to the response ring with the tag of the buffer.
+ * This function searches the pring->postbufq list using the tag
+ * to find buffer associated with CMD_IOCB_RET_XRI64_CX
+ * iocb. If the buffer is found then lpfc_dmabuf object of the
+ * buffer is returned to the caller else NULL is returned.
+ * This function is called with no lock held.
+ **/
 struct lpfc_dmabuf *
 lpfc_sli_ring_taggedbuf_get(struct lpfc_hba *phba, struct lpfc_sli_ring *pring,
 			uint32_t tag)
@@ -3565,7 +4470,7 @@
 
 	spin_unlock_irq(&phba->hbalock);
 	lpfc_printf_log(phba, KERN_ERR, LOG_INIT,
-			"0410 Cannot find virtual addr for buffer tag on "
+			"0402 Cannot find virtual addr for buffer tag on "
 			"ring %d Data x%lx x%p x%p x%x\n",
 			pring->ringno, (unsigned long) tag,
 			slp->next, slp->prev, pring->postbufq_cnt);
@@ -3573,6 +4478,23 @@
 	return NULL;
 }
 
+/**
+ * lpfc_sli_ringpostbuf_get: SLI2 buffer search function for
+ *      unsolicited ct and els events.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ * @phys: DMA address of the buffer.
+ *
+ * This function searches the buffer list using the dma_address
+ * of unsolicited event to find the driver's lpfc_dmabuf object
+ * corresponding to the dma_address. The function returns the
+ * lpfc_dmabuf object if a buffer is found else it returns NULL.
+ * This function is called by the ct and els unsolicited event
+ * handlers to get the buffer associated with the unsolicited
+ * event.
+ *
+ * This function is called with no lock held.
+ **/
 struct lpfc_dmabuf *
 lpfc_sli_ringpostbuf_get(struct lpfc_hba *phba, struct lpfc_sli_ring *pring,
 			 dma_addr_t phys)
@@ -3600,6 +4522,17 @@
 	return NULL;
 }
 
+/**
+ * lpfc_sli_abort_els_cmpl: Completion handler for the els abort iocbs.
+ * @phba: Pointer to HBA context object.
+ * @cmdiocb: Pointer to driver command iocb object.
+ * @rspiocb: Pointer to driver response iocb object.
+ *
+ * This function is the completion handler for the abort iocbs for
+ * ELS commands. This function is called from the ELS ring event
+ * handler with no lock held. This function frees memory resources
+ * associated with the abort iocb.
+ **/
 static void
 lpfc_sli_abort_els_cmpl(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb,
 			struct lpfc_iocbq *rspiocb)
@@ -3665,6 +4598,17 @@
 	return;
 }
 
+/**
+ * lpfc_ignore_els_cmpl: Completion handler for aborted ELS command.
+ * @phba: Pointer to HBA context object.
+ * @cmdiocb: Pointer to driver command iocb object.
+ * @rspiocb: Pointer to driver response iocb object.
+ *
+ * The function is called from SLI ring event handler with no
+ * lock held. This function is the completion handler for ELS commands
+ * which are aborted. The function frees memory resources used for
+ * the aborted ELS commands.
+ **/
 static void
 lpfc_ignore_els_cmpl(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb,
 		     struct lpfc_iocbq *rspiocb)
@@ -3673,7 +4617,7 @@
 
 	/* ELS cmd tag <ulpIoTag> completes */
 	lpfc_printf_log(phba, KERN_INFO, LOG_ELS,
-			"0133 Ignoring ELS cmd tag x%x completion Data: "
+			"0139 Ignoring ELS cmd tag x%x completion Data: "
 			"x%x x%x x%x\n",
 			irsp->ulpIoTag, irsp->ulpStatus,
 			irsp->un.ulpWord[4], irsp->ulpTimeout);
@@ -3684,6 +4628,17 @@
 	return;
 }
 
+/**
+ * lpfc_sli_issue_abort_iotag: Abort function for a command iocb.
+ * @phba: Pointer to HBA context object.
+ * @pring: Pointer to driver SLI ring object.
+ * @cmdiocb: Pointer to driver command iocb object.
+ *
+ * This function issues an abort iocb for the provided command
+ * iocb. This function is called with hbalock held.
+ * The function returns 0 when it fails due to memory allocation
+ * failure or when the command iocb is an abort request.
+ **/
 int
 lpfc_sli_issue_abort_iotag(struct lpfc_hba *phba, struct lpfc_sli_ring *pring,
 			   struct lpfc_iocbq *cmdiocb)
@@ -3748,6 +4703,8 @@
 			 iabt->un.acxri.abortIoTag, abtsiocbp->iotag);
 	retval = __lpfc_sli_issue_iocb(phba, pring, abtsiocbp, 0);
 
+	if (retval)
+		__lpfc_sli_release_iocbq(phba, abtsiocbp);
 abort_iotag_exit:
 	/*
 	 * Caller to this routine should check for IOCB_ERROR
@@ -3757,6 +4714,29 @@
 	return retval;
 }
 
+/**
+ * lpfc_sli_validate_fcp_iocb: Filtering function, used to find commands
+ *                    associated with a vport/SCSI target/lun.
+ * @iocbq: Pointer to driver iocb object.
+ * @vport: Pointer to driver virtual port object.
+ * @tgt_id: SCSI ID of the target.
+ * @lun_id: LUN ID of the scsi device.
+ * @ctx_cmd: LPFC_CTX_LUN/LPFC_CTX_TGT/LPFC_CTX_HOST
+ *
+ * This function acts as iocb filter for functions which abort or count
+ * all FCP iocbs pending on a lun/SCSI target/SCSI host. It will return
+ * 0 if the filtering criteria is met for the given iocb and will return
+ * 1 if the filtering criteria is not met.
+ * If ctx_cmd == LPFC_CTX_LUN, the function returns 0 only if the
+ * given iocb is for the SCSI device specified by vport, tgt_id and
+ * lun_id parameter.
+ * If ctx_cmd == LPFC_CTX_TGT,  the function returns 0 only if the
+ * given iocb is for the SCSI target specified by vport and tgt_id
+ * parameters.
+ * If ctx_cmd == LPFC_CTX_HOST, the function returns 0 only if the
+ * given iocb is for the SCSI host associated with the given vport.
+ * This function is called with no locks held.
+ **/
 static int
 lpfc_sli_validate_fcp_iocb(struct lpfc_iocbq *iocbq, struct lpfc_vport *vport,
 			   uint16_t tgt_id, uint64_t lun_id,
@@ -3800,6 +4780,25 @@
 	return rc;
 }
 
+/**
+ * lpfc_sli_sum_iocb: Function to count the number of FCP iocbs pending.
+ * @vport: Pointer to virtual port.
+ * @tgt_id: SCSI ID of the target.
+ * @lun_id: LUN ID of the scsi device.
+ * @ctx_cmd: LPFC_CTX_LUN/LPFC_CTX_TGT/LPFC_CTX_HOST.
+ *
+ * This function returns number of FCP commands pending for the vport.
+ * When ctx_cmd == LPFC_CTX_LUN, the function returns number of FCP
+ * commands pending on the vport associated with SCSI device specified
+ * by tgt_id and lun_id parameters.
+ * When ctx_cmd == LPFC_CTX_TGT, the function returns number of FCP
+ * commands pending on the vport associated with SCSI target specified
+ * by tgt_id parameter.
+ * When ctx_cmd == LPFC_CTX_HOST, the function returns number of FCP
+ * commands pending on the vport.
+ * This function returns the number of iocbs which satisfy the filter.
+ * This function is called without any lock held.
+ **/
 int
 lpfc_sli_sum_iocb(struct lpfc_vport *vport, uint16_t tgt_id, uint64_t lun_id,
 		  lpfc_ctx_cmd ctx_cmd)
@@ -3819,6 +4818,17 @@
 	return sum;
 }
 
+/**
+ * lpfc_sli_abort_fcp_cmpl: Completion handler function for an aborted
+ *       FCP iocb.
+ * @phba: Pointer to HBA context object
+ * @cmdiocb: Pointer to command iocb object.
+ * @rspiocb: Pointer to response iocb object.
+ *
+ * This function is called when an aborted FCP iocb completes. This
+ * function is called by the ring event handler with no lock held.
+ * This function frees the iocb.
+ **/
 void
 lpfc_sli_abort_fcp_cmpl(struct lpfc_hba *phba, struct lpfc_iocbq *cmdiocb,
 			struct lpfc_iocbq *rspiocb)
@@ -3827,6 +4837,28 @@
 	return;
 }
 
+/**
+ * lpfc_sli_abort_iocb: This function issue abort for all SCSI commands
+ *          pending on a SCSI host(vport)/target/lun.
+ * @vport: Pointer to virtual port.
+ * @pring: Pointer to driver SLI ring object.
+ * @tgt_id: SCSI ID of the target.
+ * @lun_id: LUN ID of the scsi device.
+ * @abort_cmd: LPFC_CTX_LUN/LPFC_CTX_TGT/LPFC_CTX_HOST.
+ *
+ * This function sends an abort command for every SCSI command
+ * associated with the given virtual port pending on the ring
+ * filtered by lpfc_sli_validate_fcp_iocb function.
+ * When abort_cmd == LPFC_CTX_LUN, the function sends abort only to the
+ * FCP iocbs associated with lun specified by tgt_id and lun_id
+ * parameters
+ * When abort_cmd == LPFC_CTX_TGT, the function sends abort only to the
+ * FCP iocbs associated with SCSI target specified by tgt_id parameter.
+ * When abort_cmd == LPFC_CTX_HOST, the function sends abort to all
+ * FCP iocbs associated with virtual port.
+ * This function returns number of iocbs it failed to abort.
+ * This function is called with no locks held.
+ **/
 int
 lpfc_sli_abort_iocb(struct lpfc_vport *vport, struct lpfc_sli_ring *pring,
 		    uint16_t tgt_id, uint64_t lun_id, lpfc_ctx_cmd abort_cmd)
@@ -3878,6 +4910,24 @@
 	return errcnt;
 }
 
+/**
+ * lpfc_sli_wake_iocb_wait: iocb completion handler for iocb issued using
+ *                          lpfc_sli_issue_iocb_wait.
+ * @phba: Pointer to HBA context object.
+ * @cmdiocbq: Pointer to command iocb.
+ * @rspiocbq: Pointer to response iocb.
+ *
+ * This function is the completion handler for iocbs issued using
+ * lpfc_sli_issue_iocb_wait function. This function is called by the
+ * ring event handler function without any lock held. This function
+ * can be called from both worker thread context and interrupt
+ * context. This function also can be called from other thread which
+ * cleans up the SLI layer objects.
+ * This function copy the contents of the response iocb to the
+ * response iocb memory object provided by the caller of
+ * lpfc_sli_issue_iocb_wait and then wakes up the thread which
+ * sleeps for the iocb completion.
+ **/
 static void
 lpfc_sli_wake_iocb_wait(struct lpfc_hba *phba,
 			struct lpfc_iocbq *cmdiocbq,
@@ -3899,13 +4949,36 @@
 	return;
 }
 
-/*
- * Issue the caller's iocb and wait for its completion, but no longer than the
- * caller's timeout.  Note that iocb_flags is cleared before the
- * lpfc_sli_issue_call since the wake routine sets a unique value and by
- * definition this is a wait function.
- */
-
+/**
+ * lpfc_sli_issue_iocb_wait: Synchronous function to issue iocb commands.
+ * @phba: Pointer to HBA context object..
+ * @pring: Pointer to sli ring.
+ * @piocb: Pointer to command iocb.
+ * @prspiocbq: Pointer to response iocb.
+ * @timeout: Timeout in number of seconds.
+ *
+ * This function issues the iocb to firmware and waits for the
+ * iocb to complete. If the iocb command is not
+ * completed within timeout seconds, it returns IOCB_TIMEDOUT.
+ * Caller should not free the iocb resources if this function
+ * returns IOCB_TIMEDOUT.
+ * The function waits for the iocb completion using an
+ * non-interruptible wait.
+ * This function will sleep while waiting for iocb completion.
+ * So, this function should not be called from any context which
+ * does not allow sleeping. Due to the same reason, this function
+ * cannot be called with interrupt disabled.
+ * This function assumes that the iocb completions occur while
+ * this function sleep. So, this function cannot be called from
+ * the thread which process iocb completion for this ring.
+ * This function clears the iocb_flag of the iocb object before
+ * issuing the iocb and the iocb completion handler sets this
+ * flag and wakes this thread when the iocb completes.
+ * The contents of the response iocb will be copied to prspiocbq
+ * by the completion handler when the command completes.
+ * This function returns IOCB_SUCCESS when success.
+ * This function is called with no lock held.
+ **/
 int
 lpfc_sli_issue_iocb_wait(struct lpfc_hba *phba,
 			 struct lpfc_sli_ring *pring,
@@ -3963,7 +5036,7 @@
 		}
 	} else {
 		lpfc_printf_log(phba, KERN_INFO, LOG_SLI,
-				":0332 IOCB wait issue failed, Data x%x\n",
+				"0332 IOCB wait issue failed, Data x%x\n",
 				retval);
 		retval = IOCB_ERROR;
 	}
@@ -3983,6 +5056,32 @@
 	return retval;
 }
 
+/**
+ * lpfc_sli_issue_mbox_wait: Synchronous function to issue mailbox.
+ * @phba: Pointer to HBA context object.
+ * @pmboxq: Pointer to driver mailbox object.
+ * @timeout: Timeout in number of seconds.
+ *
+ * This function issues the mailbox to firmware and waits for the
+ * mailbox command to complete. If the mailbox command is not
+ * completed within timeout seconds, it returns MBX_TIMEOUT.
+ * The function waits for the mailbox completion using an
+ * interruptible wait. If the thread is woken up due to a
+ * signal, MBX_TIMEOUT error is returned to the caller. Caller
+ * should not free the mailbox resources, if this function returns
+ * MBX_TIMEOUT.
+ * This function will sleep while waiting for mailbox completion.
+ * So, this function should not be called from any context which
+ * does not allow sleeping. Due to the same reason, this function
+ * cannot be called with interrupt disabled.
+ * This function assumes that the mailbox completion occurs while
+ * this function sleep. So, this function cannot be called from
+ * the worker thread which processes mailbox completion.
+ * This function is called in the context of HBA management
+ * applications.
+ * This function returns MBX_SUCCESS when successful.
+ * This function is called with no lock held.
+ **/
 int
 lpfc_sli_issue_mbox_wait(struct lpfc_hba *phba, LPFC_MBOXQ_t *pmboxq,
 			 uint32_t timeout)
@@ -4027,6 +5126,18 @@
 	return retval;
 }
 
+/**
+ * lpfc_sli_flush_mbox_queue: mailbox queue cleanup function.
+ * @phba: Pointer to HBA context.
+ *
+ * This function is called to cleanup any pending mailbox
+ * objects in the driver queue before bringing the HBA offline.
+ * This function is called while resetting the HBA.
+ * The function is called without any lock held. The function
+ * takes hbalock to update SLI data structure.
+ * This function returns 1 when there is an active mailbox
+ * command pending else returns 0.
+ **/
 int
 lpfc_sli_flush_mbox_queue(struct lpfc_hba * phba)
 {
@@ -4058,8 +5169,74 @@
 	return (phba->sli.sli_flag & LPFC_SLI_MBOX_ACTIVE) ? 1 : 0;
 }
 
+/**
+ * lpfc_sli_check_eratt: check error attention events
+ * @phba: Pointer to HBA context.
+ *
+ * This function is called form timer soft interrupt context to check HBA's
+ * error attention register bit for error attention events.
+ *
+ * This fucntion returns 1 when there is Error Attention in the Host Attention
+ * Register and returns 0 otherwise.
+ **/
+int
+lpfc_sli_check_eratt(struct lpfc_hba *phba)
+{
+	uint32_t ha_copy;
+
+	/* If somebody is waiting to handle an eratt, don't process it
+	 * here. The brdkill function will do this.
+	 */
+	if (phba->link_flag & LS_IGNORE_ERATT)
+		return 0;
+
+	/* Check if interrupt handler handles this ERATT */
+	spin_lock_irq(&phba->hbalock);
+	if (phba->hba_flag & HBA_ERATT_HANDLED) {
+		/* Interrupt handler has handled ERATT */
+		spin_unlock_irq(&phba->hbalock);
+		return 0;
+	}
+
+	/* Read chip Host Attention (HA) register */
+	ha_copy = readl(phba->HAregaddr);
+	if (ha_copy & HA_ERATT) {
+		/* Read host status register to retrieve error event */
+		lpfc_sli_read_hs(phba);
+		/* Set the driver HA work bitmap */
+		phba->work_ha |= HA_ERATT;
+		/* Indicate polling handles this ERATT */
+		phba->hba_flag |= HBA_ERATT_HANDLED;
+		spin_unlock_irq(&phba->hbalock);
+		return 1;
+	}
+	spin_unlock_irq(&phba->hbalock);
+	return 0;
+}
+
+/**
+ * lpfc_sp_intr_handler: The slow-path interrupt handler of lpfc driver.
+ * @irq: Interrupt number.
+ * @dev_id: The device context pointer.
+ *
+ * This function is directly called from the PCI layer as an interrupt
+ * service routine when the device is enabled with MSI-X multi-message
+ * interrupt mode and there are slow-path events in the HBA. However,
+ * when the device is enabled with either MSI or Pin-IRQ interrupt mode,
+ * this function is called as part of the device-level interrupt handler.
+ * When the PCI slot is in error recovery or the HBA is undergoing
+ * initialization, the interrupt handler will not process the interrupt.
+ * The link attention and ELS ring attention events are handled by the
+ * worker thread. The interrupt handler signals the worker thread and
+ * and returns for these events. This function is called without any
+ * lock held. It gets the hbalock to access and update SLI data
+ * structures.
+ *
+ * This function returns IRQ_HANDLED when interrupt is handled else it
+ * returns IRQ_NONE.
+ **/
 irqreturn_t
-lpfc_intr_handler(int irq, void *dev_id)
+lpfc_sp_intr_handler(int irq, void *dev_id)
 {
 	struct lpfc_hba  *phba;
 	uint32_t ha_copy;
@@ -4078,48 +5255,52 @@
 	 * Get the driver's phba structure from the dev_id and
 	 * assume the HBA is not interrupting.
 	 */
-	phba = (struct lpfc_hba *) dev_id;
+	phba = (struct lpfc_hba *)dev_id;
 
 	if (unlikely(!phba))
 		return IRQ_NONE;
 
-	/* If the pci channel is offline, ignore all the interrupts. */
-	if (unlikely(pci_channel_offline(phba->pcidev)))
-		return IRQ_NONE;
-
-	phba->sli.slistat.sli_intr++;
-
 	/*
-	 * Call the HBA to see if it is interrupting.  If not, don't claim
-	 * the interrupt
+	 * Stuff needs to be attented to when this function is invoked as an
+	 * individual interrupt handler in MSI-X multi-message interrupt mode
 	 */
-
-	/* Ignore all interrupts during initialization. */
-	if (unlikely(phba->link_state < LPFC_LINK_DOWN))
-		return IRQ_NONE;
-
-	/*
-	 * Read host attention register to determine interrupt source
-	 * Clear Attention Sources, except Error Attention (to
-	 * preserve status) and Link Attention
-	 */
-	spin_lock(&phba->hbalock);
-	ha_copy = readl(phba->HAregaddr);
-	/* If somebody is waiting to handle an eratt don't process it
-	 * here.  The brdkill function will do this.
-	 */
-	if (phba->link_flag & LS_IGNORE_ERATT)
-		ha_copy &= ~HA_ERATT;
-	writel((ha_copy & ~(HA_LATT | HA_ERATT)), phba->HAregaddr);
-	readl(phba->HAregaddr); /* flush */
-	spin_unlock(&phba->hbalock);
-
-	if (unlikely(!ha_copy))
-		return IRQ_NONE;
+	if (phba->intr_type == MSIX) {
+		/* If the pci channel is offline, ignore all the interrupts */
+		if (unlikely(pci_channel_offline(phba->pcidev)))
+			return IRQ_NONE;
+		/* Update device-level interrupt statistics */
+		phba->sli.slistat.sli_intr++;
+		/* Ignore all interrupts during initialization. */
+		if (unlikely(phba->link_state < LPFC_LINK_DOWN))
+			return IRQ_NONE;
+		/* Need to read HA REG for slow-path events */
+		spin_lock(&phba->hbalock);
+		ha_copy = readl(phba->HAregaddr);
+		/* If somebody is waiting to handle an eratt don't process it
+		 * here. The brdkill function will do this.
+		 */
+		if (phba->link_flag & LS_IGNORE_ERATT)
+			ha_copy &= ~HA_ERATT;
+		/* Check the need for handling ERATT in interrupt handler */
+		if (ha_copy & HA_ERATT) {
+			if (phba->hba_flag & HBA_ERATT_HANDLED)
+				/* ERATT polling has handled ERATT */
+				ha_copy &= ~HA_ERATT;
+			else
+				/* Indicate interrupt handler handles ERATT */
+				phba->hba_flag |= HBA_ERATT_HANDLED;
+		}
+		/* Clear up only attention source related to slow-path */
+		writel((ha_copy & (HA_MBATT | HA_R2_CLR_MSK)),
+			phba->HAregaddr);
+		readl(phba->HAregaddr); /* flush */
+		spin_unlock(&phba->hbalock);
+	} else
+		ha_copy = phba->ha_copy;
 
 	work_ha_copy = ha_copy & phba->work_ha_mask;
 
-	if (unlikely(work_ha_copy)) {
+	if (work_ha_copy) {
 		if (work_ha_copy & HA_LATT) {
 			if (phba->sli.sli_flag & LPFC_PROCESS_LA) {
 				/*
@@ -4138,7 +5319,7 @@
 				work_ha_copy &= ~HA_LATT;
 		}
 
-		if (work_ha_copy & ~(HA_ERATT|HA_MBATT|HA_LATT)) {
+		if (work_ha_copy & ~(HA_ERATT | HA_MBATT | HA_LATT)) {
 			/*
 			 * Turn off Slow Rings interrupts, LPFC_ELS_RING is
 			 * the only slow ring.
@@ -4179,31 +5360,13 @@
 				spin_unlock(&phba->hbalock);
 			}
 		}
-
-		if (work_ha_copy & HA_ERATT) {
-			/*
-			 * There was a link/board error.  Read the
-			 * status register to retrieve the error event
-			 * and process it.
-			 */
-			phba->sli.slistat.err_attn_event++;
-			/* Save status info */
-			phba->work_hs = readl(phba->HSregaddr);
-			phba->work_status[0] = readl(phba->MBslimaddr + 0xa8);
-			phba->work_status[1] = readl(phba->MBslimaddr + 0xac);
-
-			/* Clear Chip error bit */
-			writel(HA_ERATT, phba->HAregaddr);
-			readl(phba->HAregaddr); /* flush */
-			phba->pport->stopped = 1;
-		}
-
 		spin_lock(&phba->hbalock);
-		if ((work_ha_copy & HA_MBATT) &&
-		    (phba->sli.mbox_active)) {
+		if (work_ha_copy & HA_ERATT)
+			lpfc_sli_read_hs(phba);
+		if ((work_ha_copy & HA_MBATT) && (phba->sli.mbox_active)) {
 			pmb = phba->sli.mbox_active;
 			pmbox = &pmb->mb;
-			mbox = &phba->slim2p->mbx;
+			mbox = phba->mbox;
 			vport = pmb->vport;
 
 			/* First check out the status word */
@@ -4270,7 +5433,7 @@
 							lpfc_printf_log(phba,
 							KERN_ERR,
 							LOG_MBOX | LOG_SLI,
-							"0306 rc should have"
+							"0350 rc should have"
 							"been MBX_BUSY");
 						goto send_current_mbox;
 					}
@@ -4283,6 +5446,7 @@
 			}
 		} else
 			spin_unlock(&phba->hbalock);
+
 		if ((work_ha_copy & HA_MBATT) &&
 		    (phba->sli.mbox_active == NULL)) {
 send_current_mbox:
@@ -4302,15 +5466,74 @@
 		spin_unlock(&phba->hbalock);
 		lpfc_worker_wake_up(phba);
 	}
+	return IRQ_HANDLED;
 
-	ha_copy &= ~(phba->work_ha_mask);
+} /* lpfc_sp_intr_handler */
+
+/**
+ * lpfc_fp_intr_handler: The fast-path interrupt handler of lpfc driver.
+ * @irq: Interrupt number.
+ * @dev_id: The device context pointer.
+ *
+ * This function is directly called from the PCI layer as an interrupt
+ * service routine when the device is enabled with MSI-X multi-message
+ * interrupt mode and there is a fast-path FCP IOCB ring event in the
+ * HBA. However, when the device is enabled with either MSI or Pin-IRQ
+ * interrupt mode, this function is called as part of the device-level
+ * interrupt handler. When the PCI slot is in error recovery or the HBA
+ * is undergoing initialization, the interrupt handler will not process
+ * the interrupt. The SCSI FCP fast-path ring event are handled in the
+ * intrrupt context. This function is called without any lock held. It
+ * gets the hbalock to access and update SLI data structures.
+ *
+ * This function returns IRQ_HANDLED when interrupt is handled else it
+ * returns IRQ_NONE.
+ **/
+irqreturn_t
+lpfc_fp_intr_handler(int irq, void *dev_id)
+{
+	struct lpfc_hba  *phba;
+	uint32_t ha_copy;
+	unsigned long status;
+
+	/* Get the driver's phba structure from the dev_id and
+	 * assume the HBA is not interrupting.
+	 */
+	phba = (struct lpfc_hba *) dev_id;
+
+	if (unlikely(!phba))
+		return IRQ_NONE;
 
 	/*
-	 * Process all events on FCP ring.  Take the optimized path for
-	 * FCP IO.  Any other IO is slow path and is handled by
-	 * the worker thread.
+	 * Stuff needs to be attented to when this function is invoked as an
+	 * individual interrupt handler in MSI-X multi-message interrupt mode
 	 */
-	status = (ha_copy & (HA_RXMASK  << (4*LPFC_FCP_RING)));
+	if (phba->intr_type == MSIX) {
+		/* If pci channel is offline, ignore all the interrupts */
+		if (unlikely(pci_channel_offline(phba->pcidev)))
+			return IRQ_NONE;
+		/* Update device-level interrupt statistics */
+		phba->sli.slistat.sli_intr++;
+		/* Ignore all interrupts during initialization. */
+		if (unlikely(phba->link_state < LPFC_LINK_DOWN))
+			return IRQ_NONE;
+		/* Need to read HA REG for FCP ring and other ring events */
+		ha_copy = readl(phba->HAregaddr);
+		/* Clear up only attention source related to fast-path */
+		spin_lock(&phba->hbalock);
+		writel((ha_copy & (HA_R0_CLR_MSK | HA_R1_CLR_MSK)),
+			phba->HAregaddr);
+		readl(phba->HAregaddr); /* flush */
+		spin_unlock(&phba->hbalock);
+	} else
+		ha_copy = phba->ha_copy;
+
+	/*
+	 * Process all events on FCP ring. Take the optimized path for FCP IO.
+	 */
+	ha_copy &= ~(phba->work_ha_mask);
+
+	status = (ha_copy & (HA_RXMASK << (4*LPFC_FCP_RING)));
 	status >>= (4*LPFC_FCP_RING);
 	if (status & HA_RXMASK)
 		lpfc_sli_handle_fast_ring_event(phba,
@@ -4319,11 +5542,10 @@
 
 	if (phba->cfg_multi_ring_support == 2) {
 		/*
-		 * Process all events on extra ring.  Take the optimized path
-		 * for extra ring IO.  Any other IO is slow path and is handled
-		 * by the worker thread.
+		 * Process all events on extra ring. Take the optimized path
+		 * for extra ring IO.
 		 */
-		status = (ha_copy & (HA_RXMASK  << (4*LPFC_EXTRA_RING)));
+		status = (ha_copy & (HA_RXMASK << (4*LPFC_EXTRA_RING)));
 		status >>= (4*LPFC_EXTRA_RING);
 		if (status & HA_RXMASK) {
 			lpfc_sli_handle_fast_ring_event(phba,
@@ -4332,5 +5554,106 @@
 		}
 	}
 	return IRQ_HANDLED;
+}  /* lpfc_fp_intr_handler */
 
-} /* lpfc_intr_handler */
+/**
+ * lpfc_intr_handler: The device-level interrupt handler of lpfc driver.
+ * @irq: Interrupt number.
+ * @dev_id: The device context pointer.
+ *
+ * This function is the device-level interrupt handler called from the PCI
+ * layer when either MSI or Pin-IRQ interrupt mode is enabled and there is
+ * an event in the HBA which requires driver attention. This function
+ * invokes the slow-path interrupt attention handling function and fast-path
+ * interrupt attention handling function in turn to process the relevant
+ * HBA attention events. This function is called without any lock held. It
+ * gets the hbalock to access and update SLI data structures.
+ *
+ * This function returns IRQ_HANDLED when interrupt is handled, else it
+ * returns IRQ_NONE.
+ **/
+irqreturn_t
+lpfc_intr_handler(int irq, void *dev_id)
+{
+	struct lpfc_hba  *phba;
+	irqreturn_t sp_irq_rc, fp_irq_rc;
+	unsigned long status1, status2;
+
+	/*
+	 * Get the driver's phba structure from the dev_id and
+	 * assume the HBA is not interrupting.
+	 */
+	phba = (struct lpfc_hba *) dev_id;
+
+	if (unlikely(!phba))
+		return IRQ_NONE;
+
+	/* If the pci channel is offline, ignore all the interrupts. */
+	if (unlikely(pci_channel_offline(phba->pcidev)))
+		return IRQ_NONE;
+
+	/* Update device level interrupt statistics */
+	phba->sli.slistat.sli_intr++;
+
+	/* Ignore all interrupts during initialization. */
+	if (unlikely(phba->link_state < LPFC_LINK_DOWN))
+		return IRQ_NONE;
+
+	spin_lock(&phba->hbalock);
+	phba->ha_copy = readl(phba->HAregaddr);
+	if (unlikely(!phba->ha_copy)) {
+		spin_unlock(&phba->hbalock);
+		return IRQ_NONE;
+	} else if (phba->ha_copy & HA_ERATT) {
+		if (phba->hba_flag & HBA_ERATT_HANDLED)
+			/* ERATT polling has handled ERATT */
+			phba->ha_copy &= ~HA_ERATT;
+		else
+			/* Indicate interrupt handler handles ERATT */
+			phba->hba_flag |= HBA_ERATT_HANDLED;
+	}
+
+	/* Clear attention sources except link and error attentions */
+	writel((phba->ha_copy & ~(HA_LATT | HA_ERATT)), phba->HAregaddr);
+	readl(phba->HAregaddr); /* flush */
+	spin_unlock(&phba->hbalock);
+
+	/*
+	 * Invokes slow-path host attention interrupt handling as appropriate.
+	 */
+
+	/* status of events with mailbox and link attention */
+	status1 = phba->ha_copy & (HA_MBATT | HA_LATT | HA_ERATT);
+
+	/* status of events with ELS ring */
+	status2 = (phba->ha_copy & (HA_RXMASK  << (4*LPFC_ELS_RING)));
+	status2 >>= (4*LPFC_ELS_RING);
+
+	if (status1 || (status2 & HA_RXMASK))
+		sp_irq_rc = lpfc_sp_intr_handler(irq, dev_id);
+	else
+		sp_irq_rc = IRQ_NONE;
+
+	/*
+	 * Invoke fast-path host attention interrupt handling as appropriate.
+	 */
+
+	/* status of events with FCP ring */
+	status1 = (phba->ha_copy & (HA_RXMASK << (4*LPFC_FCP_RING)));
+	status1 >>= (4*LPFC_FCP_RING);
+
+	/* status of events with extra ring */
+	if (phba->cfg_multi_ring_support == 2) {
+		status2 = (phba->ha_copy & (HA_RXMASK << (4*LPFC_EXTRA_RING)));
+		status2 >>= (4*LPFC_EXTRA_RING);
+	} else
+		status2 = 0;
+
+	if ((status1 & HA_RXMASK) || (status2 & HA_RXMASK))
+		fp_irq_rc = lpfc_fp_intr_handler(irq, dev_id);
+	else
+		fp_irq_rc = IRQ_NONE;
+
+	/* Return device-level interrupt handling status */
+	return (sp_irq_rc == IRQ_HANDLED) ? sp_irq_rc : fp_irq_rc;
+}  /* lpfc_intr_handler */
diff --git a/drivers/scsi/lpfc/lpfc_sli.h b/drivers/scsi/lpfc/lpfc_sli.h
index 7249fd2..8839386 100644
--- a/drivers/scsi/lpfc/lpfc_sli.h
+++ b/drivers/scsi/lpfc/lpfc_sli.h
@@ -233,6 +233,7 @@
 #define LPFC_SLI2_ACTIVE          0x200	/* SLI2 overlay in firmware is active */
 #define LPFC_PROCESS_LA           0x400	/* Able to process link attention */
 #define LPFC_BLOCK_MGMT_IO        0x800	/* Don't allow mgmt mbx or iocb cmds */
+#define LPFC_MENLO_MAINT          0x1000 /* need for menl fw download */
 
 	struct lpfc_sli_ring ring[LPFC_MAX_RING];
 	int fcp_ring;		/* ring used for FCP initiator commands */
diff --git a/drivers/scsi/lpfc/lpfc_version.h b/drivers/scsi/lpfc/lpfc_version.h
index ad24cac..cc43e9d 100644
--- a/drivers/scsi/lpfc/lpfc_version.h
+++ b/drivers/scsi/lpfc/lpfc_version.h
@@ -18,9 +18,11 @@
  * included with this package.                                     *
  *******************************************************************/
 
-#define LPFC_DRIVER_VERSION "8.2.7"
+#define LPFC_DRIVER_VERSION "8.2.8"
 
-#define LPFC_DRIVER_NAME "lpfc"
+#define LPFC_DRIVER_NAME		"lpfc"
+#define LPFC_SP_DRIVER_HANDLER_NAME	"lpfc:sp"
+#define LPFC_FP_DRIVER_HANDLER_NAME	"lpfc:fp"
 
 #define LPFC_MODULE_DESC "Emulex LightPulse Fibre Channel SCSI driver " \
 		LPFC_DRIVER_VERSION
diff --git a/drivers/scsi/lpfc/lpfc_vport.c b/drivers/scsi/lpfc/lpfc_vport.c
index 109f89d..a7de1cc 100644
--- a/drivers/scsi/lpfc/lpfc_vport.c
+++ b/drivers/scsi/lpfc/lpfc_vport.c
@@ -34,6 +34,7 @@
 #include <scsi/scsi_transport_fc.h>
 #include "lpfc_hw.h"
 #include "lpfc_sli.h"
+#include "lpfc_nl.h"
 #include "lpfc_disc.h"
 #include "lpfc_scsi.h"
 #include "lpfc.h"
@@ -204,6 +205,77 @@
 	return 1;
 }
 
+/**
+ * lpfc_discovery_wait: Wait for driver discovery to quiesce.
+ * @vport: The virtual port for which this call is being executed.
+ *
+ * This driver calls this routine specifically from lpfc_vport_delete
+ * to enforce a synchronous execution of vport
+ * delete relative to discovery activities.  The
+ * lpfc_vport_delete routine should not return until it
+ * can reasonably guarantee that discovery has quiesced.
+ * Post FDISC LOGO, the driver must wait until its SAN teardown is
+ * complete and all resources recovered before allowing
+ * cleanup.
+ *
+ * This routine does not require any locks held.
+ **/
+static void lpfc_discovery_wait(struct lpfc_vport *vport)
+{
+	struct lpfc_hba *phba = vport->phba;
+	uint32_t wait_flags = 0;
+	unsigned long wait_time_max;
+	unsigned long start_time;
+
+	wait_flags = FC_RSCN_MODE | FC_RSCN_DISCOVERY | FC_NLP_MORE |
+		     FC_RSCN_DEFERRED | FC_NDISC_ACTIVE | FC_DISC_TMO;
+
+	/*
+	 * The time constraint on this loop is a balance between the
+	 * fabric RA_TOV value and dev_loss tmo.  The driver's
+	 * devloss_tmo is 10 giving this loop a 3x multiplier minimally.
+	 */
+	wait_time_max = msecs_to_jiffies(((phba->fc_ratov * 3) + 3) * 1000);
+	wait_time_max += jiffies;
+	start_time = jiffies;
+	while (time_before(jiffies, wait_time_max)) {
+		if ((vport->num_disc_nodes > 0)    ||
+		    (vport->fc_flag & wait_flags)  ||
+		    ((vport->port_state > LPFC_VPORT_FAILED) &&
+		     (vport->port_state < LPFC_VPORT_READY))) {
+			lpfc_printf_log(phba, KERN_INFO, LOG_VPORT,
+					"1833 Vport discovery quiesce Wait:"
+					" vpi x%x state x%x fc_flags x%x"
+					" num_nodes x%x, waiting 1000 msecs"
+					" total wait msecs x%x\n",
+					vport->vpi, vport->port_state,
+					vport->fc_flag, vport->num_disc_nodes,
+					jiffies_to_msecs(jiffies - start_time));
+			msleep(1000);
+		} else {
+			/* Base case.  Wait variants satisfied.  Break out */
+			lpfc_printf_log(phba, KERN_INFO, LOG_VPORT,
+					 "1834 Vport discovery quiesced:"
+					 " vpi x%x state x%x fc_flags x%x"
+					 " wait msecs x%x\n",
+					 vport->vpi, vport->port_state,
+					 vport->fc_flag,
+					 jiffies_to_msecs(jiffies
+						- start_time));
+			break;
+		}
+	}
+
+	if (time_after(jiffies, wait_time_max))
+		lpfc_printf_log(phba, KERN_ERR, LOG_VPORT,
+				"1835 Vport discovery quiesce failed:"
+				" vpi x%x state x%x fc_flags x%x"
+				" wait msecs x%x\n",
+				vport->vpi, vport->port_state,
+				vport->fc_flag,
+				jiffies_to_msecs(jiffies - start_time));
+}
+
 int
 lpfc_vport_create(struct fc_vport *fc_vport, bool disable)
 {
@@ -506,8 +578,12 @@
 	 * initiated after we've disposed of all other resources associated
 	 * with the port.
 	 */
-	if (!scsi_host_get(shost) || !scsi_host_get(shost))
+	if (!scsi_host_get(shost))
 		return VPORT_INVAL;
+	if (!scsi_host_get(shost)) {
+		scsi_host_put(shost);
+		return VPORT_INVAL;
+	}
 	spin_lock_irq(&phba->hbalock);
 	vport->load_flag |= FC_UNLOADING;
 	spin_unlock_irq(&phba->hbalock);
@@ -597,11 +673,16 @@
 		}
 		vport->unreg_vpi_cmpl = VPORT_INVAL;
 		timeout = msecs_to_jiffies(phba->fc_ratov * 2000);
+		if (ndlp->nlp_state == NLP_STE_UNUSED_NODE)
+			goto skip_logo;
 		if (!lpfc_issue_els_npiv_logo(vport, ndlp))
 			while (vport->unreg_vpi_cmpl == VPORT_INVAL && timeout)
 				timeout = schedule_timeout(timeout);
 	}
 
+	if (!(phba->pport->load_flag & FC_UNLOADING))
+		lpfc_discovery_wait(vport);
+
 skip_logo:
 	lpfc_cleanup(vport);
 	lpfc_sli_host_down(vport);
@@ -615,8 +696,10 @@
 		 * Completion of unreg_vpi (lpfc_mbx_cmpl_unreg_vpi)
 		 * does the scsi_host_put() to release the vport.
 		 */
-		lpfc_mbx_unreg_vpi(vport);
-	}
+		if (lpfc_mbx_unreg_vpi(vport))
+			scsi_host_put(shost);
+	} else
+		scsi_host_put(shost);
 
 	lpfc_free_vpi(phba, vport->vpi);
 	vport->work_port_events = 0;
@@ -663,3 +746,82 @@
 		scsi_host_put(lpfc_shost_from_vport(vports[i]));
 	kfree(vports);
 }
+
+
+/**
+ * lpfc_vport_reset_stat_data: Reset the statistical data for the vport.
+ * @vport: Pointer to vport object.
+ *
+ * This function resets the statistical data for the vport. This function
+ * is called with the host_lock held
+ **/
+void
+lpfc_vport_reset_stat_data(struct lpfc_vport *vport)
+{
+	struct lpfc_nodelist *ndlp = NULL, *next_ndlp = NULL;
+
+	list_for_each_entry_safe(ndlp, next_ndlp, &vport->fc_nodes, nlp_listp) {
+		if (!NLP_CHK_NODE_ACT(ndlp))
+			continue;
+		if (ndlp->lat_data)
+			memset(ndlp->lat_data, 0, LPFC_MAX_BUCKET_COUNT *
+				sizeof(struct lpfc_scsicmd_bkt));
+	}
+}
+
+
+/**
+ * lpfc_alloc_bucket: Allocate data buffer required for collecting
+ *  statistical data.
+ * @vport: Pointer to vport object.
+ *
+ * This function allocates data buffer required for all the FC
+ * nodes of the vport to collect statistical data.
+ **/
+void
+lpfc_alloc_bucket(struct lpfc_vport *vport)
+{
+	struct lpfc_nodelist *ndlp = NULL, *next_ndlp = NULL;
+
+	list_for_each_entry_safe(ndlp, next_ndlp, &vport->fc_nodes, nlp_listp) {
+		if (!NLP_CHK_NODE_ACT(ndlp))
+			continue;
+
+		kfree(ndlp->lat_data);
+		ndlp->lat_data = NULL;
+
+		if (ndlp->nlp_state == NLP_STE_MAPPED_NODE) {
+			ndlp->lat_data = kcalloc(LPFC_MAX_BUCKET_COUNT,
+					 sizeof(struct lpfc_scsicmd_bkt),
+					 GFP_ATOMIC);
+
+			if (!ndlp->lat_data)
+				lpfc_printf_vlog(vport, KERN_ERR, LOG_NODE,
+					"0287 lpfc_alloc_bucket failed to "
+					"allocate statistical data buffer DID "
+					"0x%x\n", ndlp->nlp_DID);
+		}
+	}
+}
+
+/**
+ * lpfc_free_bucket: Free data buffer required for collecting
+ *  statistical data.
+ * @vport: Pointer to vport object.
+ *
+ * Th function frees statistical data buffer of all the FC
+ * nodes of the vport.
+ **/
+void
+lpfc_free_bucket(struct lpfc_vport *vport)
+{
+	struct lpfc_nodelist *ndlp = NULL, *next_ndlp = NULL;
+
+	list_for_each_entry_safe(ndlp, next_ndlp, &vport->fc_nodes, nlp_listp) {
+		if (!NLP_CHK_NODE_ACT(ndlp))
+			continue;
+
+		kfree(ndlp->lat_data);
+		ndlp->lat_data = NULL;
+	}
+}
diff --git a/drivers/scsi/lpfc/lpfc_vport.h b/drivers/scsi/lpfc/lpfc_vport.h
index 96c4453..9082834 100644
--- a/drivers/scsi/lpfc/lpfc_vport.h
+++ b/drivers/scsi/lpfc/lpfc_vport.h
@@ -112,4 +112,8 @@
 void lpfc_vport_set_state(struct lpfc_vport *vport,
 			  enum fc_vport_state new_state);
 
+void lpfc_vport_reset_stat_data(struct lpfc_vport *);
+void lpfc_alloc_bucket(struct lpfc_vport *);
+void lpfc_free_bucket(struct lpfc_vport *);
+
 #endif /* H_LPFC_VPORT */
diff --git a/drivers/scsi/qla2xxx/qla_attr.c b/drivers/scsi/qla2xxx/qla_attr.c
index 0ddfe71..ed73196 100644
--- a/drivers/scsi/qla2xxx/qla_attr.c
+++ b/drivers/scsi/qla2xxx/qla_attr.c
@@ -1006,7 +1006,6 @@
 	}
 
 	qla2x00_abort_fcport_cmds(fcport);
-	scsi_target_unblock(&rport->dev);
 }
 
 static int
diff --git a/drivers/scsi/qla2xxx/qla_isr.c b/drivers/scsi/qla2xxx/qla_isr.c
index fc4bfa7..a76efd9 100644
--- a/drivers/scsi/qla2xxx/qla_isr.c
+++ b/drivers/scsi/qla2xxx/qla_isr.c
@@ -1187,7 +1187,12 @@
 		    cp->serial_number, comp_status,
 		    atomic_read(&fcport->state)));
 
-		cp->result = DID_BUS_BUSY << 16;
+		/*
+		 * We are going to have the fc class block the rport
+		 * while we try to recover so instruct the mid layer
+		 * to requeue until the class decides how to handle this.
+		 */
+		cp->result = DID_TRANSPORT_DISRUPTED << 16;
 		if (atomic_read(&fcport->state) == FCS_ONLINE)
 			qla2x00_mark_device_lost(fcport->ha, fcport, 1, 1);
 		break;
@@ -1214,7 +1219,12 @@
 		break;
 
 	case CS_TIMEOUT:
-		cp->result = DID_BUS_BUSY << 16;
+		/*
+		 * We are going to have the fc class block the rport
+		 * while we try to recover so instruct the mid layer
+		 * to requeue until the class decides how to handle this.
+		 */
+		cp->result = DID_TRANSPORT_DISRUPTED << 16;
 
 		if (IS_FWI2_CAPABLE(ha)) {
 			DEBUG2(printk(KERN_INFO
diff --git a/drivers/scsi/qla2xxx/qla_os.c b/drivers/scsi/qla2xxx/qla_os.c
index 3433441..2aed472 100644
--- a/drivers/scsi/qla2xxx/qla_os.c
+++ b/drivers/scsi/qla2xxx/qla_os.c
@@ -394,10 +394,8 @@
 	}
 
 	/* Close window on fcport/rport state-transitioning. */
-	if (fcport->drport) {
-		cmd->result = DID_IMM_RETRY << 16;
-		goto qc_fail_command;
-	}
+	if (fcport->drport)
+		goto qc_target_busy;
 
 	if (atomic_read(&fcport->state) != FCS_ONLINE) {
 		if (atomic_read(&fcport->state) == FCS_DEVICE_DEAD ||
@@ -405,7 +403,7 @@
 			cmd->result = DID_NO_CONNECT << 16;
 			goto qc_fail_command;
 		}
-		goto qc_host_busy;
+		goto qc_target_busy;
 	}
 
 	spin_unlock_irq(ha->host->host_lock);
@@ -428,10 +426,11 @@
 
 qc_host_busy_lock:
 	spin_lock_irq(ha->host->host_lock);
-
-qc_host_busy:
 	return SCSI_MLQUEUE_HOST_BUSY;
 
+qc_target_busy:
+	return SCSI_MLQUEUE_TARGET_BUSY;
+
 qc_fail_command:
 	done(cmd);
 
@@ -461,10 +460,8 @@
 	}
 
 	/* Close window on fcport/rport state-transitioning. */
-	if (fcport->drport) {
-		cmd->result = DID_IMM_RETRY << 16;
-		goto qc24_fail_command;
-	}
+	if (fcport->drport)
+		goto qc24_target_busy;
 
 	if (atomic_read(&fcport->state) != FCS_ONLINE) {
 		if (atomic_read(&fcport->state) == FCS_DEVICE_DEAD ||
@@ -472,7 +469,7 @@
 			cmd->result = DID_NO_CONNECT << 16;
 			goto qc24_fail_command;
 		}
-		goto qc24_host_busy;
+		goto qc24_target_busy;
 	}
 
 	spin_unlock_irq(ha->host->host_lock);
@@ -495,10 +492,11 @@
 
 qc24_host_busy_lock:
 	spin_lock_irq(ha->host->host_lock);
-
-qc24_host_busy:
 	return SCSI_MLQUEUE_HOST_BUSY;
 
+qc24_target_busy:
+	return SCSI_MLQUEUE_TARGET_BUSY;
+
 qc24_fail_command:
 	done(cmd);
 
diff --git a/drivers/scsi/qla4xxx/ql4_isr.c b/drivers/scsi/qla4xxx/ql4_isr.c
index a91a57c..799120f 100644
--- a/drivers/scsi/qla4xxx/ql4_isr.c
+++ b/drivers/scsi/qla4xxx/ql4_isr.c
@@ -139,7 +139,7 @@
 			      ha->host_no, cmd->device->channel,
 			      cmd->device->id, cmd->device->lun));
 
-		cmd->result = DID_BUS_BUSY << 16;
+		cmd->result = DID_TRANSPORT_DISRUPTED << 16;
 
 		/*
 		 * Mark device missing so that we won't continue to send
@@ -243,7 +243,7 @@
 		if (atomic_read(&ddb_entry->state) == DDB_STATE_ONLINE)
 			qla4xxx_mark_device_missing(ha, ddb_entry);
 
-		cmd->result = DID_BUS_BUSY << 16;
+		cmd->result = DID_TRANSPORT_DISRUPTED << 16;
 		break;
 
 	case SCS_QUEUE_FULL:
diff --git a/drivers/scsi/qla4xxx/ql4_os.c b/drivers/scsi/qla4xxx/ql4_os.c
index de8279a..db7ea3b 100644
--- a/drivers/scsi/qla4xxx/ql4_os.c
+++ b/drivers/scsi/qla4xxx/ql4_os.c
@@ -353,7 +353,7 @@
 		      ha->host_no, ddb_entry->bus, ddb_entry->target,
 		      ddb_entry->fw_ddb_index));
 	iscsi_block_session(ddb_entry->sess);
-	iscsi_conn_error(ddb_entry->conn, ISCSI_ERR_CONN_FAILED);
+	iscsi_conn_error_event(ddb_entry->conn, ISCSI_ERR_CONN_FAILED);
 }
 
 static struct srb* qla4xxx_get_new_srb(struct scsi_qla_host *ha,
@@ -439,7 +439,7 @@
 			cmd->result = DID_NO_CONNECT << 16;
 			goto qc_fail_command;
 		}
-		goto qc_host_busy;
+		return SCSI_MLQUEUE_TARGET_BUSY;
 	}
 
 	if (test_bit(DPC_RESET_HA_INTR, &ha->dpc_flags))
diff --git a/drivers/scsi/scsi.c b/drivers/scsi/scsi.c
index 2ac3cb2..f8b79d4 100644
--- a/drivers/scsi/scsi.c
+++ b/drivers/scsi/scsi.c
@@ -754,8 +754,12 @@
 	}
 	spin_unlock_irqrestore(host->host_lock, flags);
 	if (rtn) {
-		scsi_queue_insert(cmd, (rtn == SCSI_MLQUEUE_DEVICE_BUSY) ?
-						rtn : SCSI_MLQUEUE_HOST_BUSY);
+		if (rtn != SCSI_MLQUEUE_DEVICE_BUSY &&
+		    rtn != SCSI_MLQUEUE_TARGET_BUSY)
+			rtn = SCSI_MLQUEUE_HOST_BUSY;
+
+		scsi_queue_insert(cmd, rtn);
+
 		SCSI_LOG_MLQUEUE(3,
 		    printk("queuecommand : request rejected\n"));
 	}
@@ -800,6 +804,7 @@
 void scsi_finish_command(struct scsi_cmnd *cmd)
 {
 	struct scsi_device *sdev = cmd->device;
+	struct scsi_target *starget = scsi_target(sdev);
 	struct Scsi_Host *shost = sdev->host;
 	struct scsi_driver *drv;
 	unsigned int good_bytes;
@@ -815,6 +820,7 @@
 	 * XXX(hch): What about locking?
          */
         shost->host_blocked = 0;
+	starget->target_blocked = 0;
         sdev->device_blocked = 0;
 
 	/*
diff --git a/drivers/scsi/scsi_error.c b/drivers/scsi/scsi_error.c
index fecefa0..94ed262 100644
--- a/drivers/scsi/scsi_error.c
+++ b/drivers/scsi/scsi_error.c
@@ -1065,10 +1065,10 @@
 				struct list_head *done_q)
 {
 	struct scsi_cmnd *scmd, *tgtr_scmd, *next;
-	unsigned int id;
+	unsigned int id = 0;
 	int rtn;
 
-	for (id = 0; id <= shost->max_id; id++) {
+	do {
 		tgtr_scmd = NULL;
 		list_for_each_entry(scmd, work_q, eh_entry) {
 			if (id == scmd_id(scmd)) {
@@ -1076,8 +1076,18 @@
 				break;
 			}
 		}
+		if (!tgtr_scmd) {
+			/* not one exactly equal; find the next highest */
+			list_for_each_entry(scmd, work_q, eh_entry) {
+				if (scmd_id(scmd) > id &&
+				    (!tgtr_scmd ||
+				     scmd_id(tgtr_scmd) > scmd_id(scmd)))
+						tgtr_scmd = scmd;
+			}
+		}
 		if (!tgtr_scmd)
-			continue;
+			/* no more commands, that's it */
+			break;
 
 		SCSI_LOG_ERROR_RECOVERY(3, printk("%s: Sending target reset "
 						  "to target %d\n",
@@ -1096,7 +1106,8 @@
 							  " failed target: "
 							  "%d\n",
 							  current->comm, id));
-	}
+		id++;
+	} while(id != 0);
 
 	return list_empty(work_q);
 }
@@ -1219,6 +1230,40 @@
 }
 
 /**
+ * scsi_noretry_cmd - determinte if command should be failed fast
+ * @scmd:	SCSI cmd to examine.
+ */
+int scsi_noretry_cmd(struct scsi_cmnd *scmd)
+{
+	switch (host_byte(scmd->result)) {
+	case DID_OK:
+		break;
+	case DID_BUS_BUSY:
+		return blk_failfast_transport(scmd->request);
+	case DID_PARITY:
+		return blk_failfast_dev(scmd->request);
+	case DID_ERROR:
+		if (msg_byte(scmd->result) == COMMAND_COMPLETE &&
+		    status_byte(scmd->result) == RESERVATION_CONFLICT)
+			return 0;
+		/* fall through */
+	case DID_SOFT_ERROR:
+		return blk_failfast_driver(scmd->request);
+	}
+
+	switch (status_byte(scmd->result)) {
+	case CHECK_CONDITION:
+		/*
+		 * assume caller has checked sense and determinted
+		 * the check condition was retryable.
+		 */
+		return blk_failfast_dev(scmd->request);
+	}
+
+	return 0;
+}
+
+/**
  * scsi_decide_disposition - Disposition a cmd on return from LLD.
  * @scmd:	SCSI cmd to examine.
  *
@@ -1290,7 +1335,20 @@
 
 	case DID_REQUEUE:
 		return ADD_TO_MLQUEUE;
-
+	case DID_TRANSPORT_DISRUPTED:
+		/*
+		 * LLD/transport was disrupted during processing of the IO.
+		 * The transport class is now blocked/blocking,
+		 * and the transport will decide what to do with the IO
+		 * based on its timers and recovery capablilities.
+		 */
+		return ADD_TO_MLQUEUE;
+	case DID_TRANSPORT_FAILFAST:
+		/*
+		 * The transport decided to failfast the IO (most likely
+		 * the fast io fail tmo fired), so send IO directly upwards.
+		 */
+		return SUCCESS;
 	case DID_ERROR:
 		if (msg_byte(scmd->result) == COMMAND_COMPLETE &&
 		    status_byte(scmd->result) == RESERVATION_CONFLICT)
@@ -1383,7 +1441,7 @@
 	 * even if the request is marked fast fail, we still requeue
 	 * for queue congestion conditions (QUEUE_FULL or BUSY) */
 	if ((++scmd->retries) <= scmd->allowed
-	    && !blk_noretry_request(scmd->request)) {
+	    && !scsi_noretry_cmd(scmd)) {
 		return NEEDS_RETRY;
 	} else {
 		/*
@@ -1508,7 +1566,7 @@
 	list_for_each_entry_safe(scmd, next, done_q, eh_entry) {
 		list_del_init(&scmd->eh_entry);
 		if (scsi_device_online(scmd->device) &&
-		    !blk_noretry_request(scmd->request) &&
+		    !scsi_noretry_cmd(scmd) &&
 		    (++scmd->retries <= scmd->allowed)) {
 			SCSI_LOG_ERROR_RECOVERY(3, printk("%s: flush"
 							  " retry cmd: %p\n",
diff --git a/drivers/scsi/scsi_lib.c b/drivers/scsi/scsi_lib.c
index 98ee55c..e5a9526 100644
--- a/drivers/scsi/scsi_lib.c
+++ b/drivers/scsi/scsi_lib.c
@@ -114,6 +114,7 @@
 {
 	struct Scsi_Host *host = cmd->device->host;
 	struct scsi_device *device = cmd->device;
+	struct scsi_target *starget = scsi_target(device);
 	struct request_queue *q = device->request_queue;
 	unsigned long flags;
 
@@ -133,10 +134,17 @@
 	 * if a command is requeued with no other commands outstanding
 	 * either for the device or for the host.
 	 */
-	if (reason == SCSI_MLQUEUE_HOST_BUSY)
+	switch (reason) {
+	case SCSI_MLQUEUE_HOST_BUSY:
 		host->host_blocked = host->max_host_blocked;
-	else if (reason == SCSI_MLQUEUE_DEVICE_BUSY)
+		break;
+	case SCSI_MLQUEUE_DEVICE_BUSY:
 		device->device_blocked = device->max_device_blocked;
+		break;
+	case SCSI_MLQUEUE_TARGET_BUSY:
+		starget->target_blocked = starget->max_target_blocked;
+		break;
+	}
 
 	/*
 	 * Decrement the counters, since these commands are no longer
@@ -460,10 +468,12 @@
 void scsi_device_unbusy(struct scsi_device *sdev)
 {
 	struct Scsi_Host *shost = sdev->host;
+	struct scsi_target *starget = scsi_target(sdev);
 	unsigned long flags;
 
 	spin_lock_irqsave(shost->host_lock, flags);
 	shost->host_busy--;
+	starget->target_busy--;
 	if (unlikely(scsi_host_in_recovery(shost) &&
 		     (shost->host_failed || shost->host_eh_scheduled)))
 		scsi_eh_wakeup(shost);
@@ -519,6 +529,13 @@
 	spin_unlock_irqrestore(shost->host_lock, flags);
 }
 
+static inline int scsi_target_is_busy(struct scsi_target *starget)
+{
+	return ((starget->can_queue > 0 &&
+		 starget->target_busy >= starget->can_queue) ||
+		 starget->target_blocked);
+}
+
 /*
  * Function:	scsi_run_queue()
  *
@@ -533,7 +550,7 @@
  */
 static void scsi_run_queue(struct request_queue *q)
 {
-	struct scsi_device *sdev = q->queuedata;
+	struct scsi_device *starved_head = NULL, *sdev = q->queuedata;
 	struct Scsi_Host *shost = sdev->host;
 	unsigned long flags;
 
@@ -560,6 +577,21 @@
 		 */
 		sdev = list_entry(shost->starved_list.next,
 					  struct scsi_device, starved_entry);
+		/*
+		 * The *queue_ready functions can add a device back onto the
+		 * starved list's tail, so we must check for a infinite loop.
+		 */
+		if (sdev == starved_head)
+			break;
+		if (!starved_head)
+			starved_head = sdev;
+
+		if (scsi_target_is_busy(scsi_target(sdev))) {
+			list_move_tail(&sdev->starved_entry,
+				       &shost->starved_list);
+			continue;
+		}
+
 		list_del_init(&sdev->starved_entry);
 		spin_unlock(shost->host_lock);
 
@@ -575,13 +607,6 @@
 		spin_unlock(sdev->request_queue->queue_lock);
 
 		spin_lock(shost->host_lock);
-		if (unlikely(!list_empty(&sdev->starved_entry)))
-			/*
-			 * sdev lost a race, and was put back on the
-			 * starved list. This is unlikely but without this
-			 * in theory we could loop forever.
-			 */
-			break;
 	}
 	spin_unlock_irqrestore(shost->host_lock, flags);
 
@@ -681,7 +706,7 @@
 			leftover = req->data_len;
 
 		/* kill remainder if no retrys */
-		if (error && blk_noretry_request(req))
+		if (error && scsi_noretry_cmd(cmd))
 			blk_end_request(req, error, leftover);
 		else {
 			if (requeue) {
@@ -1344,6 +1369,52 @@
 	return 1;
 }
 
+
+/*
+ * scsi_target_queue_ready: checks if there we can send commands to target
+ * @sdev: scsi device on starget to check.
+ *
+ * Called with the host lock held.
+ */
+static inline int scsi_target_queue_ready(struct Scsi_Host *shost,
+					   struct scsi_device *sdev)
+{
+	struct scsi_target *starget = scsi_target(sdev);
+
+	if (starget->single_lun) {
+		if (starget->starget_sdev_user &&
+		    starget->starget_sdev_user != sdev)
+			return 0;
+		starget->starget_sdev_user = sdev;
+	}
+
+	if (starget->target_busy == 0 && starget->target_blocked) {
+		/*
+		 * unblock after target_blocked iterates to zero
+		 */
+		if (--starget->target_blocked == 0) {
+			SCSI_LOG_MLQUEUE(3, starget_printk(KERN_INFO, starget,
+					 "unblocking target at zero depth\n"));
+		} else {
+			blk_plug_device(sdev->request_queue);
+			return 0;
+		}
+	}
+
+	if (scsi_target_is_busy(starget)) {
+		if (list_empty(&sdev->starved_entry)) {
+			list_add_tail(&sdev->starved_entry,
+				      &shost->starved_list);
+			return 0;
+		}
+	}
+
+	/* We're OK to process the command, so we can't be starved */
+	if (!list_empty(&sdev->starved_entry))
+		list_del_init(&sdev->starved_entry);
+	return 1;
+}
+
 /*
  * scsi_host_queue_ready: if we can send requests to shost, return 1 else
  * return 0. We must end up running the queue again whenever 0 is
@@ -1390,6 +1461,7 @@
 {
 	struct scsi_cmnd *cmd = req->special;
 	struct scsi_device *sdev = cmd->device;
+	struct scsi_target *starget = scsi_target(sdev);
 	struct Scsi_Host *shost = sdev->host;
 
 	blkdev_dequeue_request(req);
@@ -1413,6 +1485,7 @@
 	spin_unlock(sdev->request_queue->queue_lock);
 	spin_lock(shost->host_lock);
 	shost->host_busy++;
+	starget->target_busy++;
 	spin_unlock(shost->host_lock);
 	spin_lock(sdev->request_queue->queue_lock);
 
@@ -1550,14 +1623,13 @@
 			goto not_ready;
 		}
 
+		if (!scsi_target_queue_ready(shost, sdev))
+			goto not_ready;
+
 		if (!scsi_host_queue_ready(q, shost, sdev))
 			goto not_ready;
-		if (scsi_target(sdev)->single_lun) {
-			if (scsi_target(sdev)->starget_sdev_user &&
-			    scsi_target(sdev)->starget_sdev_user != sdev)
-				goto not_ready;
-			scsi_target(sdev)->starget_sdev_user = sdev;
-		}
+
+		scsi_target(sdev)->target_busy++;
 		shost->host_busy++;
 
 		/*
diff --git a/drivers/scsi/scsi_priv.h b/drivers/scsi/scsi_priv.h
index 6cddd5d..e185090 100644
--- a/drivers/scsi/scsi_priv.h
+++ b/drivers/scsi/scsi_priv.h
@@ -59,6 +59,7 @@
 			struct list_head *done_q);
 int scsi_eh_get_sense(struct list_head *work_q,
 		      struct list_head *done_q);
+int scsi_noretry_cmd(struct scsi_cmnd *scmd);
 
 /* scsi_lib.c */
 extern int scsi_maybe_unblock_host(struct scsi_device *sdev);
diff --git a/drivers/scsi/scsi_scan.c b/drivers/scsi/scsi_scan.c
index 334862e..b14dc02 100644
--- a/drivers/scsi/scsi_scan.c
+++ b/drivers/scsi/scsi_scan.c
@@ -419,6 +419,7 @@
 	dev->type = &scsi_target_type;
 	starget->id = id;
 	starget->channel = channel;
+	starget->can_queue = 0;
 	INIT_LIST_HEAD(&starget->siblings);
 	INIT_LIST_HEAD(&starget->devices);
 	starget->state = STARGET_CREATED;
diff --git a/drivers/scsi/scsi_transport_fc.c b/drivers/scsi/scsi_transport_fc.c
index d5f7653..1e71abf 100644
--- a/drivers/scsi/scsi_transport_fc.c
+++ b/drivers/scsi/scsi_transport_fc.c
@@ -2133,8 +2133,7 @@
 	SETUP_PRIVATE_RPORT_ATTRIBUTE_RD(roles);
 	SETUP_PRIVATE_RPORT_ATTRIBUTE_RD(port_state);
 	SETUP_PRIVATE_RPORT_ATTRIBUTE_RD(scsi_target_id);
-	if (ft->terminate_rport_io)
-		SETUP_PRIVATE_RPORT_ATTRIBUTE_RW(fast_io_fail_tmo);
+	SETUP_PRIVATE_RPORT_ATTRIBUTE_RW(fast_io_fail_tmo);
 
 	BUG_ON(count > FC_RPORT_NUM_ATTRS);
 
@@ -2328,6 +2327,22 @@
 }
 EXPORT_SYMBOL(fc_remove_host);
 
+static void fc_terminate_rport_io(struct fc_rport *rport)
+{
+	struct Scsi_Host *shost = rport_to_shost(rport);
+	struct fc_internal *i = to_fc_internal(shost->transportt);
+
+	/* Involve the LLDD if possible to terminate all io on the rport. */
+	if (i->f->terminate_rport_io)
+		i->f->terminate_rport_io(rport);
+
+	/*
+	 * must unblock to flush queued IO. The caller will have set
+	 * the port_state or flags, so that fc_remote_port_chkready will
+	 * fail IO.
+	 */
+	scsi_target_unblock(&rport->dev);
+}
 
 /**
  * fc_starget_delete - called to delete the scsi decendents of an rport
@@ -2340,13 +2355,8 @@
 {
 	struct fc_rport *rport =
 		container_of(work, struct fc_rport, stgt_delete_work);
-	struct Scsi_Host *shost = rport_to_shost(rport);
-	struct fc_internal *i = to_fc_internal(shost->transportt);
 
-	/* Involve the LLDD if possible to terminate all io on the rport. */
-	if (i->f->terminate_rport_io)
-		i->f->terminate_rport_io(rport);
-
+	fc_terminate_rport_io(rport);
 	scsi_remove_target(&rport->dev);
 }
 
@@ -2372,10 +2382,7 @@
 	if (rport->flags & FC_RPORT_SCAN_PENDING)
 		scsi_flush_work(shost);
 
-	/* involve the LLDD to terminate all pending i/o */
-	if (i->f->terminate_rport_io)
-		i->f->terminate_rport_io(rport);
-
+	fc_terminate_rport_io(rport);
 	/*
 	 * Cancel any outstanding timers. These should really exist
 	 * only when rmmod'ing the LLDD and we're asking for
@@ -2639,7 +2646,8 @@
 
 				spin_lock_irqsave(shost->host_lock, flags);
 
-				rport->flags &= ~FC_RPORT_DEVLOSS_PENDING;
+				rport->flags &= ~(FC_RPORT_FAST_FAIL_TIMEDOUT |
+						  FC_RPORT_DEVLOSS_PENDING);
 
 				/* if target, initiate a scan */
 				if (rport->scsi_target_id != -1) {
@@ -2702,6 +2710,7 @@
 			rport->port_id = ids->port_id;
 			rport->roles = ids->roles;
 			rport->port_state = FC_PORTSTATE_ONLINE;
+			rport->flags &= ~FC_RPORT_FAST_FAIL_TIMEDOUT;
 
 			if (fci->f->dd_fcrport_size)
 				memset(rport->dd_data, 0,
@@ -2784,7 +2793,6 @@
 fc_remote_port_delete(struct fc_rport  *rport)
 {
 	struct Scsi_Host *shost = rport_to_shost(rport);
-	struct fc_internal *i = to_fc_internal(shost->transportt);
 	int timeout = rport->dev_loss_tmo;
 	unsigned long flags;
 
@@ -2830,7 +2838,7 @@
 
 	/* see if we need to kill io faster than waiting for device loss */
 	if ((rport->fast_io_fail_tmo != -1) &&
-	    (rport->fast_io_fail_tmo < timeout) && (i->f->terminate_rport_io))
+	    (rport->fast_io_fail_tmo < timeout))
 		fc_queue_devloss_work(shost, &rport->fail_io_work,
 					rport->fast_io_fail_tmo * HZ);
 
@@ -2906,7 +2914,8 @@
 			fc_flush_devloss(shost);
 
 		spin_lock_irqsave(shost->host_lock, flags);
-		rport->flags &= ~FC_RPORT_DEVLOSS_PENDING;
+		rport->flags &= ~(FC_RPORT_FAST_FAIL_TIMEDOUT |
+				  FC_RPORT_DEVLOSS_PENDING);
 		spin_unlock_irqrestore(shost->host_lock, flags);
 
 		/* ensure any stgt delete functions are done */
@@ -3001,6 +3010,7 @@
 	rport->supported_classes = FC_COS_UNSPECIFIED;
 	rport->roles = FC_PORT_ROLE_UNKNOWN;
 	rport->port_state = FC_PORTSTATE_NOTPRESENT;
+	rport->flags &= ~FC_RPORT_FAST_FAIL_TIMEDOUT;
 
 	/* remove the identifiers that aren't used in the consisting binding */
 	switch (fc_host->tgtid_bind_type) {
@@ -3043,13 +3053,12 @@
 {
 	struct fc_rport *rport =
 		container_of(work, struct fc_rport, fail_io_work.work);
-	struct Scsi_Host *shost = rport_to_shost(rport);
-	struct fc_internal *i = to_fc_internal(shost->transportt);
 
 	if (rport->port_state != FC_PORTSTATE_BLOCKED)
 		return;
 
-	i->f->terminate_rport_io(rport);
+	rport->flags |= FC_RPORT_FAST_FAIL_TIMEDOUT;
+	fc_terminate_rport_io(rport);
 }
 
 /**
diff --git a/drivers/scsi/scsi_transport_iscsi.c b/drivers/scsi/scsi_transport_iscsi.c
index 0ce5f7c..4a803eb 100644
--- a/drivers/scsi/scsi_transport_iscsi.c
+++ b/drivers/scsi/scsi_transport_iscsi.c
@@ -138,7 +138,7 @@
 show_ep_handle(struct device *dev, struct device_attribute *attr, char *buf)
 {
 	struct iscsi_endpoint *ep = iscsi_dev_to_endpoint(dev);
-	return sprintf(buf, "%u\n", ep->id);
+	return sprintf(buf, "%llu\n", (unsigned long long) ep->id);
 }
 static ISCSI_ATTR(ep, handle, S_IRUGO, show_ep_handle, NULL);
 
@@ -156,7 +156,7 @@
 static int iscsi_match_epid(struct device *dev, void *data)
 {
 	struct iscsi_endpoint *ep = iscsi_dev_to_endpoint(dev);
-	unsigned int *epid = (unsigned int *) data;
+	uint64_t *epid = (uint64_t *) data;
 
 	return *epid == ep->id;
 }
@@ -166,7 +166,7 @@
 {
 	struct device *dev;
 	struct iscsi_endpoint *ep;
-	unsigned int id;
+	uint64_t id;
 	int err;
 
 	for (id = 1; id < ISCSI_MAX_EPID; id++) {
@@ -187,7 +187,8 @@
 
 	ep->id = id;
 	ep->dev.class = &iscsi_endpoint_class;
-	snprintf(ep->dev.bus_id, BUS_ID_SIZE, "ep-%u", id);
+	snprintf(ep->dev.bus_id, BUS_ID_SIZE, "ep-%llu",
+		 (unsigned long long) id);
 	err = device_register(&ep->dev);
         if (err)
                 goto free_ep;
@@ -374,10 +375,10 @@
 		err = 0;
 		break;
 	case ISCSI_SESSION_FAILED:
-		err = DID_IMM_RETRY << 16;
+		err = DID_TRANSPORT_DISRUPTED << 16;
 		break;
 	case ISCSI_SESSION_FREE:
-		err = DID_NO_CONNECT << 16;
+		err = DID_TRANSPORT_FAILFAST << 16;
 		break;
 	default:
 		err = DID_NO_CONNECT << 16;
@@ -1010,7 +1011,7 @@
 
 	skb = alloc_skb(len, GFP_ATOMIC);
 	if (!skb) {
-		iscsi_conn_error(conn, ISCSI_ERR_CONN_FAILED);
+		iscsi_conn_error_event(conn, ISCSI_ERR_CONN_FAILED);
 		iscsi_cls_conn_printk(KERN_ERR, conn, "can not deliver "
 				      "control PDU: OOM\n");
 		return -ENOMEM;
@@ -1031,7 +1032,7 @@
 }
 EXPORT_SYMBOL_GPL(iscsi_recv_pdu);
 
-void iscsi_conn_error(struct iscsi_cls_conn *conn, enum iscsi_err error)
+void iscsi_conn_error_event(struct iscsi_cls_conn *conn, enum iscsi_err error)
 {
 	struct nlmsghdr	*nlh;
 	struct sk_buff	*skb;
@@ -1063,7 +1064,7 @@
 	iscsi_cls_conn_printk(KERN_INFO, conn, "detected conn error (%d)\n",
 			      error);
 }
-EXPORT_SYMBOL_GPL(iscsi_conn_error);
+EXPORT_SYMBOL_GPL(iscsi_conn_error_event);
 
 static int
 iscsi_if_send_reply(int pid, int seq, int type, int done, int multi,
diff --git a/drivers/scsi/scsi_transport_spi.c b/drivers/scsi/scsi_transport_spi.c
index b29360e..7c2d289 100644
--- a/drivers/scsi/scsi_transport_spi.c
+++ b/drivers/scsi/scsi_transport_spi.c
@@ -109,7 +109,9 @@
 	for(i = 0; i < DV_RETRIES; i++) {
 		result = scsi_execute(sdev, cmd, dir, buffer, bufflen,
 				      sense, DV_TIMEOUT, /* retries */ 1,
-				      REQ_FAILFAST);
+				      REQ_FAILFAST_DEV |
+				      REQ_FAILFAST_TRANSPORT |
+				      REQ_FAILFAST_DRIVER);
 		if (result & DRIVER_SENSE) {
 			struct scsi_sense_hdr sshdr_tmp;
 			if (!sshdr)
diff --git a/drivers/scsi/sd.c b/drivers/scsi/sd.c
index a7b53be..7c4d2e6 100644
--- a/drivers/scsi/sd.c
+++ b/drivers/scsi/sd.c
@@ -384,7 +384,7 @@
 	sector_t block = rq->sector;
 	sector_t threshold;
 	unsigned int this_count = rq->nr_sectors;
-	int ret;
+	int ret, host_dif;
 
 	if (rq->cmd_type == REQ_TYPE_BLOCK_PC) {
 		ret = scsi_setup_blk_pc_cmnd(sdp, rq);
@@ -515,7 +515,8 @@
 					rq->nr_sectors));
 
 	/* Set RDPROTECT/WRPROTECT if disk is formatted with DIF */
-	if (scsi_host_dif_capable(sdp->host, sdkp->protection_type))
+	host_dif = scsi_host_dif_capable(sdp->host, sdkp->protection_type);
+	if (host_dif)
 		SCpnt->cmnd[1] = 1 << 5;
 	else
 		SCpnt->cmnd[1] = 0;
@@ -573,8 +574,9 @@
 	SCpnt->sdb.length = this_count * sdp->sector_size;
 
 	/* If DIF or DIX is enabled, tell HBA how to handle request */
-	if (sdkp->protection_type || scsi_prot_sg_count(SCpnt))
-		sd_dif_op(SCpnt, sdkp->protection_type, scsi_prot_sg_count(SCpnt));
+	if (host_dif || scsi_prot_sg_count(SCpnt))
+		sd_dif_op(SCpnt, host_dif, scsi_prot_sg_count(SCpnt),
+			  sdkp->protection_type);
 
 	/*
 	 * We shouldn't disconnect in the middle of a sector, so with a dumb
@@ -1252,14 +1254,12 @@
 	else
 		type = ((buffer[12] >> 1) & 7) + 1; /* P_TYPE 0 = Type 1 */
 
+	sdkp->protection_type = type;
+
 	switch (type) {
 	case SD_DIF_TYPE0_PROTECTION:
-		sdkp->protection_type = 0;
-		break;
-
 	case SD_DIF_TYPE1_PROTECTION:
 	case SD_DIF_TYPE3_PROTECTION:
-		sdkp->protection_type = type;
 		break;
 
 	case SD_DIF_TYPE2_PROTECTION:
@@ -1277,7 +1277,6 @@
 	return;
 
 disable:
-	sdkp->protection_type = 0;
 	sdkp->capacity = 0;
 }
 
diff --git a/drivers/scsi/sd.h b/drivers/scsi/sd.h
index 95b9f06..75638e7 100644
--- a/drivers/scsi/sd.h
+++ b/drivers/scsi/sd.h
@@ -97,19 +97,28 @@
        __be32 ref_tag;		/* Target LBA or indirect LBA */
 };
 
-#if defined(CONFIG_BLK_DEV_INTEGRITY)
+#ifdef CONFIG_BLK_DEV_INTEGRITY
 
-extern void sd_dif_op(struct scsi_cmnd *, unsigned int, unsigned int);
+extern void sd_dif_op(struct scsi_cmnd *, unsigned int, unsigned int, unsigned int);
 extern void sd_dif_config_host(struct scsi_disk *);
 extern int sd_dif_prepare(struct request *rq, sector_t, unsigned int);
 extern void sd_dif_complete(struct scsi_cmnd *, unsigned int);
 
 #else /* CONFIG_BLK_DEV_INTEGRITY */
 
-#define sd_dif_op(a, b, c)			do { } while (0)
-#define sd_dif_config_host(a)			do { } while (0)
-#define sd_dif_prepare(a, b, c)			(0)
-#define sd_dif_complete(a, b)			(0)
+static inline void sd_dif_op(struct scsi_cmnd *cmd, unsigned int a, unsigned int b, unsigned int c)
+{
+}
+static inline void sd_dif_config_host(struct scsi_disk *disk)
+{
+}
+static inline int sd_dif_prepare(struct request *rq, sector_t s, unsigned int a)
+{
+	return 0;
+}
+static inline void sd_dif_complete(struct scsi_cmnd *cmd, unsigned int a)
+{
+}
 
 #endif /* CONFIG_BLK_DEV_INTEGRITY */
 
diff --git a/drivers/scsi/sd_dif.c b/drivers/scsi/sd_dif.c
index 4d17f3d..3ebb1f2 100644
--- a/drivers/scsi/sd_dif.c
+++ b/drivers/scsi/sd_dif.c
@@ -311,26 +311,27 @@
 	struct scsi_device *sdp = sdkp->device;
 	struct gendisk *disk = sdkp->disk;
 	u8 type = sdkp->protection_type;
+	int dif, dix;
 
-	/* If this HBA doesn't support DIX, resort to normal I/O or DIF */
-	if (scsi_host_dix_capable(sdp->host, type) == 0) {
+	dif = scsi_host_dif_capable(sdp->host, type);
+	dix = scsi_host_dix_capable(sdp->host, type);
 
-		if (type == SD_DIF_TYPE0_PROTECTION)
-			return;
-
-		if (scsi_host_dif_capable(sdp->host, type) == 0) {
-			sd_printk(KERN_INFO, sdkp, "Type %d protection " \
-				  "unsupported by HBA. Disabling DIF.\n", type);
-			sdkp->protection_type = 0;
-			return;
-		}
-
-		sd_printk(KERN_INFO, sdkp, "Enabling DIF Type %d protection\n",
-			  type);
-
-		return;
+	if (!dix && scsi_host_dix_capable(sdp->host, 0)) {
+		dif = 0; dix = 1;
 	}
 
+	if (type) {
+		if (dif)
+			sd_printk(KERN_NOTICE, sdkp,
+				  "Enabling DIF Type %d protection\n", type);
+		else
+			sd_printk(KERN_NOTICE, sdkp,
+				  "Disabling DIF Type %d protection\n", type);
+	}
+
+	if (!dix)
+		return;
+
 	/* Enable DMA of protection information */
 	if (scsi_host_get_guard(sdkp->device->host) & SHOST_DIX_GUARD_IP)
 		if (type == SD_DIF_TYPE3_PROTECTION)
@@ -343,17 +344,17 @@
 		else
 			blk_integrity_register(disk, &dif_type1_integrity_crc);
 
-	sd_printk(KERN_INFO, sdkp,
-		  "Enabling %s integrity protection\n", disk->integrity->name);
+	sd_printk(KERN_NOTICE, sdkp,
+		  "Enabling DIX %s protection\n", disk->integrity->name);
 
 	/* Signal to block layer that we support sector tagging */
-	if (type && sdkp->ATO) {
+	if (dif && type && sdkp->ATO) {
 		if (type == SD_DIF_TYPE3_PROTECTION)
 			disk->integrity->tag_size = sizeof(u16) + sizeof(u32);
 		else
 			disk->integrity->tag_size = sizeof(u16);
 
-		sd_printk(KERN_INFO, sdkp, "DIF application tag size %u\n",
+		sd_printk(KERN_NOTICE, sdkp, "DIF application tag size %u\n",
 			  disk->integrity->tag_size);
 	}
 }
@@ -361,7 +362,7 @@
 /*
  * DIF DMA operation magic decoder ring.
  */
-void sd_dif_op(struct scsi_cmnd *scmd, unsigned int dif, unsigned int dix)
+void sd_dif_op(struct scsi_cmnd *scmd, unsigned int dif, unsigned int dix, unsigned int type)
 {
 	int csum_convert, prot_op;
 
@@ -406,7 +407,8 @@
 	}
 
 	scsi_set_prot_op(scmd, prot_op);
-	scsi_set_prot_type(scmd, dif);
+	if (dif)
+		scsi_set_prot_type(scmd, type);
 }
 
 /*
diff --git a/drivers/staging/Kconfig b/drivers/staging/Kconfig
new file mode 100644
index 0000000..2a79dec
--- /dev/null
+++ b/drivers/staging/Kconfig
@@ -0,0 +1,46 @@
+menuconfig STAGING
+	bool "Staging drivers"
+	default n
+	---help---
+	  This option allows you to select a number of drivers that are
+	  not of the "normal" Linux kernel quality level.  These drivers
+	  are placed here in order to get a wider audience for use of
+	  them.  Please note that these drivers are under heavy
+	  development, may or may not work, and may contain userspace
+	  interfaces that most likely will be changed in the near
+	  future.
+
+	  Using any of these drivers will taint your kernel which might
+	  affect support options from both the community, and various
+	  commercial support orginizations.
+
+	  If you wish to work on these drivers, to help improve them, or
+	  to report problems you have with them, please see the
+	  driver_name.README file in the drivers/staging/ directory to
+	  see what needs to be worked on, and who to contact.
+
+	  If in doubt, say N here.
+
+if STAGING
+
+source "drivers/staging/et131x/Kconfig"
+
+source "drivers/staging/slicoss/Kconfig"
+
+source "drivers/staging/sxg/Kconfig"
+
+source "drivers/staging/me4000/Kconfig"
+
+source "drivers/staging/go7007/Kconfig"
+
+source "drivers/staging/usbip/Kconfig"
+
+source "drivers/staging/winbond/Kconfig"
+
+source "drivers/staging/wlan-ng/Kconfig"
+
+source "drivers/staging/echo/Kconfig"
+
+source "drivers/staging/at76_usb/Kconfig"
+
+endif # STAGING
diff --git a/drivers/staging/Makefile b/drivers/staging/Makefile
new file mode 100644
index 0000000..325bca4
--- /dev/null
+++ b/drivers/staging/Makefile
@@ -0,0 +1,15 @@
+# Makefile for staging directory
+
+# fix for build system bug...
+obj-$(CONFIG_STAGING)		+= staging.o
+
+obj-$(CONFIG_ET131X)		+= et131x/
+obj-$(CONFIG_SLICOSS)		+= slicoss/
+obj-$(CONFIG_SXG)		+= sxg/
+obj-$(CONFIG_ME4000)		+= me4000/
+obj-$(CONFIG_VIDEO_GO7007)	+= go7007/
+obj-$(CONFIG_USB_IP_COMMON)	+= usbip/
+obj-$(CONFIG_W35UND)		+= winbond/
+obj-$(CONFIG_PRISM2_USB)	+= wlan-ng/
+obj-$(CONFIG_ECHO)		+= echo/
+obj-$(CONFIG_USB_ATMEL)		+= at76_usb/
diff --git a/drivers/staging/at76_usb/Kconfig b/drivers/staging/at76_usb/Kconfig
new file mode 100644
index 0000000..8606f96
--- /dev/null
+++ b/drivers/staging/at76_usb/Kconfig
@@ -0,0 +1,8 @@
+config USB_ATMEL
+	tristate "Atmel at76c503/at76c505/at76c505a USB cards"
+	depends on WLAN_80211 && USB
+	default N
+	select FW_LOADER
+	---help---
+	  Enable support for USB Wireless devices using Atmel at76c503,
+	  at76c505 or at76c505a chips.
diff --git a/drivers/staging/at76_usb/Makefile b/drivers/staging/at76_usb/Makefile
new file mode 100644
index 0000000..6a47e88
--- /dev/null
+++ b/drivers/staging/at76_usb/Makefile
@@ -0,0 +1 @@
+obj-$(CONFIG_USB_ATMEL)		+= at76_usb.o
diff --git a/drivers/staging/at76_usb/TODO b/drivers/staging/at76_usb/TODO
new file mode 100644
index 0000000..6911ca7
--- /dev/null
+++ b/drivers/staging/at76_usb/TODO
@@ -0,0 +1,2 @@
+rewrite the driver to use the proper in-kernel wireless stack
+instead of using its own.
diff --git a/drivers/staging/at76_usb/at76_usb.c b/drivers/staging/at76_usb/at76_usb.c
new file mode 100644
index 0000000..52df0c6
--- /dev/null
+++ b/drivers/staging/at76_usb/at76_usb.c
@@ -0,0 +1,5559 @@
+/*
+ * at76c503/at76c505 USB driver
+ *
+ * Copyright (c) 2002 - 2003 Oliver Kurth
+ * Copyright (c) 2004 Joerg Albert <joerg.albert@gmx.de>
+ * Copyright (c) 2004 Nick Jones
+ * Copyright (c) 2004 Balint Seeber <n0_5p4m_p13453@hotmail.com>
+ * Copyright (c) 2007 Guido Guenther <agx@sigxcpu.org>
+ *
+ * This program is free software; you can redistribute it and/or
+ * modify it under the terms of the GNU General Public License as
+ * published by the Free Software Foundation; either version 2 of
+ * the License, or (at your option) any later version.
+ *
+ * This file is part of the Berlios driver for WLAN USB devices based on the
+ * Atmel AT76C503A/505/505A.
+ *
+ * Some iw_handler code was taken from airo.c, (C) 1999 Benjamin Reed
+ */
+
+#include <linux/init.h>
+#include <linux/kernel.h>
+#include <linux/sched.h>
+#include <linux/errno.h>
+#include <linux/slab.h>
+#include <linux/module.h>
+#include <linux/spinlock.h>
+#include <linux/list.h>
+#include <linux/usb.h>
+#include <linux/netdevice.h>
+#include <linux/if_arp.h>
+#include <linux/etherdevice.h>
+#include <linux/ethtool.h>
+#include <linux/wireless.h>
+#include <net/iw_handler.h>
+#include <net/ieee80211_radiotap.h>
+#include <linux/firmware.h>
+#include <linux/leds.h>
+#include <net/ieee80211.h>
+
+#include "at76_usb.h"
+
+/* Version information */
+#define DRIVER_NAME "at76_usb"
+#define DRIVER_VERSION	"0.17"
+#define DRIVER_DESC "Atmel at76x USB Wireless LAN Driver"
+
+/* at76_debug bits */
+#define DBG_PROGRESS		0x00000001	/* authentication/accociation */
+#define DBG_BSS_TABLE		0x00000002	/* show BSS table after scans */
+#define DBG_IOCTL		0x00000004	/* ioctl calls / settings */
+#define DBG_MAC_STATE		0x00000008	/* MAC state transitions */
+#define DBG_TX_DATA		0x00000010	/* tx header */
+#define DBG_TX_DATA_CONTENT	0x00000020	/* tx content */
+#define DBG_TX_MGMT		0x00000040	/* tx management */
+#define DBG_RX_DATA		0x00000080	/* rx data header */
+#define DBG_RX_DATA_CONTENT	0x00000100	/* rx data content */
+#define DBG_RX_MGMT		0x00000200	/* rx mgmt frame headers */
+#define DBG_RX_BEACON		0x00000400	/* rx beacon */
+#define DBG_RX_CTRL		0x00000800	/* rx control */
+#define DBG_RX_MGMT_CONTENT	0x00001000	/* rx mgmt content */
+#define DBG_RX_FRAGS		0x00002000	/* rx data fragment handling */
+#define DBG_DEVSTART		0x00004000	/* fw download, device start */
+#define DBG_URB			0x00008000	/* rx urb status, ... */
+#define DBG_RX_ATMEL_HDR	0x00010000	/* Atmel-specific Rx headers */
+#define DBG_PROC_ENTRY		0x00020000	/* procedure entries/exits */
+#define DBG_PM			0x00040000	/* power management settings */
+#define DBG_BSS_MATCH		0x00080000	/* BSS match failures */
+#define DBG_PARAMS		0x00100000	/* show configured parameters */
+#define DBG_WAIT_COMPLETE	0x00200000	/* command completion */
+#define DBG_RX_FRAGS_SKB	0x00400000	/* skb header of Rx fragments */
+#define DBG_BSS_TABLE_RM	0x00800000	/* purging bss table entries */
+#define DBG_MONITOR_MODE	0x01000000	/* monitor mode */
+#define DBG_MIB			0x02000000	/* dump all MIBs on startup */
+#define DBG_MGMT_TIMER		0x04000000	/* dump mgmt_timer ops */
+#define DBG_WE_EVENTS		0x08000000	/* dump wireless events */
+#define DBG_FW			0x10000000	/* firmware download */
+#define DBG_DFU			0x20000000	/* device firmware upgrade */
+
+#define DBG_DEFAULTS		0
+
+/* Use our own dbg macro */
+#define at76_dbg(bits, format, arg...) \
+	do { \
+		if (at76_debug & (bits)) \
+		printk(KERN_DEBUG DRIVER_NAME ": " format "\n" , ## arg); \
+	} while (0)
+
+static int at76_debug = DBG_DEFAULTS;
+
+/* Protect against concurrent firmware loading and parsing */
+static struct mutex fw_mutex;
+
+static struct fwentry firmwares[] = {
+	[0] = {""},
+	[BOARD_503_ISL3861] = {"atmel_at76c503-i3861.bin"},
+	[BOARD_503_ISL3863] = {"atmel_at76c503-i3863.bin"},
+	[BOARD_503] = {"atmel_at76c503-rfmd.bin"},
+	[BOARD_503_ACC] = {"atmel_at76c503-rfmd-acc.bin"},
+	[BOARD_505] = {"atmel_at76c505-rfmd.bin"},
+	[BOARD_505_2958] = {"atmel_at76c505-rfmd2958.bin"},
+	[BOARD_505A] = {"atmel_at76c505a-rfmd2958.bin"},
+	[BOARD_505AMX] = {"atmel_at76c505amx-rfmd.bin"},
+};
+
+#define USB_DEVICE_DATA(__ops)	.driver_info = (kernel_ulong_t)(__ops)
+
+static struct usb_device_id dev_table[] = {
+	/*
+	 * at76c503-i3861
+	 */
+	/* Generic AT76C503/3861 device */
+	{USB_DEVICE(0x03eb, 0x7603), USB_DEVICE_DATA(BOARD_503_ISL3861)},
+	/* Linksys WUSB11 v2.1/v2.6 */
+	{USB_DEVICE(0x066b, 0x2211), USB_DEVICE_DATA(BOARD_503_ISL3861)},
+	/* Netgear MA101 rev. A */
+	{USB_DEVICE(0x0864, 0x4100), USB_DEVICE_DATA(BOARD_503_ISL3861)},
+	/* Tekram U300C / Allnet ALL0193 */
+	{USB_DEVICE(0x0b3b, 0x1612), USB_DEVICE_DATA(BOARD_503_ISL3861)},
+	/* HP HN210W J7801A */
+	{USB_DEVICE(0x03f0, 0x011c), USB_DEVICE_DATA(BOARD_503_ISL3861)},
+	/* Sitecom/Z-Com/Zyxel M4Y-750 */
+	{USB_DEVICE(0x0cde, 0x0001), USB_DEVICE_DATA(BOARD_503_ISL3861)},
+	/* Dynalink/Askey WLL013 (intersil) */
+	{USB_DEVICE(0x069a, 0x0320), USB_DEVICE_DATA(BOARD_503_ISL3861)},
+	/* EZ connect 11Mpbs Wireless USB Adapter SMC2662W v1 */
+	{USB_DEVICE(0x0d5c, 0xa001), USB_DEVICE_DATA(BOARD_503_ISL3861)},
+	/* BenQ AWL300 */
+	{USB_DEVICE(0x04a5, 0x9000), USB_DEVICE_DATA(BOARD_503_ISL3861)},
+	/* Addtron AWU-120, Compex WLU11 */
+	{USB_DEVICE(0x05dd, 0xff31), USB_DEVICE_DATA(BOARD_503_ISL3861)},
+	/* Intel AP310 AnyPoint II USB */
+	{USB_DEVICE(0x8086, 0x0200), USB_DEVICE_DATA(BOARD_503_ISL3861)},
+	/* Dynalink L11U */
+	{USB_DEVICE(0x0d8e, 0x7100), USB_DEVICE_DATA(BOARD_503_ISL3861)},
+	/* Arescom WL-210, FCC id 07J-GL2411USB */
+	{USB_DEVICE(0x0d8e, 0x7110), USB_DEVICE_DATA(BOARD_503_ISL3861)},
+	/* I-O DATA WN-B11/USB */
+	{USB_DEVICE(0x04bb, 0x0919), USB_DEVICE_DATA(BOARD_503_ISL3861)},
+	/* BT Voyager 1010 */
+	{USB_DEVICE(0x069a, 0x0821), USB_DEVICE_DATA(BOARD_503_ISL3861)},
+	/*
+	 * at76c503-i3863
+	 */
+	/* Generic AT76C503/3863 device */
+	{USB_DEVICE(0x03eb, 0x7604), USB_DEVICE_DATA(BOARD_503_ISL3863)},
+	/* Samsung SWL-2100U */
+	{USB_DEVICE(0x055d, 0xa000), USB_DEVICE_DATA(BOARD_503_ISL3863)},
+	/*
+	 * at76c503-rfmd
+	 */
+	/* Generic AT76C503/RFMD device */
+	{USB_DEVICE(0x03eb, 0x7605), USB_DEVICE_DATA(BOARD_503)},
+	/* Dynalink/Askey WLL013 (rfmd) */
+	{USB_DEVICE(0x069a, 0x0321), USB_DEVICE_DATA(BOARD_503)},
+	/* Linksys WUSB11 v2.6 */
+	{USB_DEVICE(0x077b, 0x2219), USB_DEVICE_DATA(BOARD_503)},
+	/* Network Everywhere NWU11B */
+	{USB_DEVICE(0x077b, 0x2227), USB_DEVICE_DATA(BOARD_503)},
+	/* Netgear MA101 rev. B */
+	{USB_DEVICE(0x0864, 0x4102), USB_DEVICE_DATA(BOARD_503)},
+	/* D-Link DWL-120 rev. E */
+	{USB_DEVICE(0x2001, 0x3200), USB_DEVICE_DATA(BOARD_503)},
+	/* Actiontec 802UAT1, HWU01150-01UK */
+	{USB_DEVICE(0x1668, 0x7605), USB_DEVICE_DATA(BOARD_503)},
+	/* AirVast W-Buddie WN210 */
+	{USB_DEVICE(0x03eb, 0x4102), USB_DEVICE_DATA(BOARD_503)},
+	/* Dick Smith Electronics XH1153 802.11b USB adapter */
+	{USB_DEVICE(0x1371, 0x5743), USB_DEVICE_DATA(BOARD_503)},
+	/* CNet CNUSB611 */
+	{USB_DEVICE(0x1371, 0x0001), USB_DEVICE_DATA(BOARD_503)},
+	/* FiberLine FL-WL200U */
+	{USB_DEVICE(0x1371, 0x0002), USB_DEVICE_DATA(BOARD_503)},
+	/* BenQ AWL400 USB stick */
+	{USB_DEVICE(0x04a5, 0x9001), USB_DEVICE_DATA(BOARD_503)},
+	/* 3Com 3CRSHEW696 */
+	{USB_DEVICE(0x0506, 0x0a01), USB_DEVICE_DATA(BOARD_503)},
+	/* Siemens Santis ADSL WLAN USB adapter WLL 013 */
+	{USB_DEVICE(0x0681, 0x001b), USB_DEVICE_DATA(BOARD_503)},
+	/* Belkin F5D6050, version 2 */
+	{USB_DEVICE(0x050d, 0x0050), USB_DEVICE_DATA(BOARD_503)},
+	/* iBlitzz, BWU613 (not *B or *SB) */
+	{USB_DEVICE(0x07b8, 0xb000), USB_DEVICE_DATA(BOARD_503)},
+	/* Gigabyte GN-WLBM101 */
+	{USB_DEVICE(0x1044, 0x8003), USB_DEVICE_DATA(BOARD_503)},
+	/* Planex GW-US11S */
+	{USB_DEVICE(0x2019, 0x3220), USB_DEVICE_DATA(BOARD_503)},
+	/* Internal WLAN adapter in h5[4,5]xx series iPAQs */
+	{USB_DEVICE(0x049f, 0x0032), USB_DEVICE_DATA(BOARD_503)},
+	/* Corega Wireless LAN USB-11 mini */
+	{USB_DEVICE(0x07aa, 0x0011), USB_DEVICE_DATA(BOARD_503)},
+	/* Corega Wireless LAN USB-11 mini2 */
+	{USB_DEVICE(0x07aa, 0x0018), USB_DEVICE_DATA(BOARD_503)},
+	/* Uniden PCW100 */
+	{USB_DEVICE(0x05dd, 0xff35), USB_DEVICE_DATA(BOARD_503)},
+	/*
+	 * at76c503-rfmd-acc
+	 */
+	/* SMC2664W */
+	{USB_DEVICE(0x083a, 0x3501), USB_DEVICE_DATA(BOARD_503_ACC)},
+	/* Belkin F5D6050, SMC2662W v2, SMC2662W-AR */
+	{USB_DEVICE(0x0d5c, 0xa002), USB_DEVICE_DATA(BOARD_503_ACC)},
+	/*
+	 * at76c505-rfmd
+	 */
+	/* Generic AT76C505/RFMD */
+	{USB_DEVICE(0x03eb, 0x7606), USB_DEVICE_DATA(BOARD_505)},
+	/*
+	 * at76c505-rfmd2958
+	 */
+	/* Generic AT76C505/RFMD, OvisLink WL-1130USB */
+	{USB_DEVICE(0x03eb, 0x7613), USB_DEVICE_DATA(BOARD_505_2958)},
+	/* Fiberline FL-WL240U */
+	{USB_DEVICE(0x1371, 0x0014), USB_DEVICE_DATA(BOARD_505_2958)},
+	/* CNet CNUSB-611G */
+	{USB_DEVICE(0x1371, 0x0013), USB_DEVICE_DATA(BOARD_505_2958)},
+	/* Linksys WUSB11 v2.8 */
+	{USB_DEVICE(0x1915, 0x2233), USB_DEVICE_DATA(BOARD_505_2958)},
+	/* Xterasys XN-2122B, IBlitzz BWU613B/BWU613SB */
+	{USB_DEVICE(0x12fd, 0x1001), USB_DEVICE_DATA(BOARD_505_2958)},
+	/* Corega WLAN USB Stick 11 */
+	{USB_DEVICE(0x07aa, 0x7613), USB_DEVICE_DATA(BOARD_505_2958)},
+	/* Microstar MSI Box MS6978 */
+	{USB_DEVICE(0x0db0, 0x1020), USB_DEVICE_DATA(BOARD_505_2958)},
+	/*
+	 * at76c505a-rfmd2958
+	 */
+	/* Generic AT76C505A device */
+	{USB_DEVICE(0x03eb, 0x7614), USB_DEVICE_DATA(BOARD_505A)},
+	/* Generic AT76C505AS device */
+	{USB_DEVICE(0x03eb, 0x7617), USB_DEVICE_DATA(BOARD_505A)},
+	/* Siemens Gigaset USB WLAN Adapter 11 */
+	{USB_DEVICE(0x1690, 0x0701), USB_DEVICE_DATA(BOARD_505A)},
+	/*
+	 * at76c505amx-rfmd
+	 */
+	/* Generic AT76C505AMX device */
+	{USB_DEVICE(0x03eb, 0x7615), USB_DEVICE_DATA(BOARD_505AMX)},
+	{}
+};
+
+MODULE_DEVICE_TABLE(usb, dev_table);
+
+/* Supported rates of this hardware, bit 7 marks basic rates */
+static const u8 hw_rates[] = { 0x82, 0x84, 0x0b, 0x16 };
+
+/* Frequency of each channel in MHz */
+static const long channel_frequency[] = {
+	2412, 2417, 2422, 2427, 2432, 2437, 2442,
+	2447, 2452, 2457, 2462, 2467, 2472, 2484
+};
+
+#define NUM_CHANNELS ARRAY_SIZE(channel_frequency)
+
+static const char *const preambles[] = { "long", "short", "auto" };
+
+static const char *const mac_states[] = {
+	[MAC_INIT] = "INIT",
+	[MAC_SCANNING] = "SCANNING",
+	[MAC_AUTH] = "AUTH",
+	[MAC_ASSOC] = "ASSOC",
+	[MAC_JOINING] = "JOINING",
+	[MAC_CONNECTED] = "CONNECTED",
+	[MAC_OWN_IBSS] = "OWN_IBSS"
+};
+
+/* Firmware download */
+/* DFU states */
+#define STATE_IDLE			0x00
+#define STATE_DETACH			0x01
+#define STATE_DFU_IDLE			0x02
+#define STATE_DFU_DOWNLOAD_SYNC		0x03
+#define STATE_DFU_DOWNLOAD_BUSY		0x04
+#define STATE_DFU_DOWNLOAD_IDLE		0x05
+#define STATE_DFU_MANIFEST_SYNC		0x06
+#define STATE_DFU_MANIFEST		0x07
+#define STATE_DFU_MANIFEST_WAIT_RESET	0x08
+#define STATE_DFU_UPLOAD_IDLE		0x09
+#define STATE_DFU_ERROR			0x0a
+
+/* DFU commands */
+#define DFU_DETACH			0
+#define DFU_DNLOAD			1
+#define DFU_UPLOAD			2
+#define DFU_GETSTATUS			3
+#define DFU_CLRSTATUS			4
+#define DFU_GETSTATE			5
+#define DFU_ABORT			6
+
+#define FW_BLOCK_SIZE 1024
+
+struct dfu_status {
+	unsigned char status;
+	unsigned char poll_timeout[3];
+	unsigned char state;
+	unsigned char string;
+} __attribute__((packed));
+
+static inline int at76_is_intersil(enum board_type board)
+{
+	return (board == BOARD_503_ISL3861 || board == BOARD_503_ISL3863);
+}
+
+static inline int at76_is_503rfmd(enum board_type board)
+{
+	return (board == BOARD_503 || board == BOARD_503_ACC);
+}
+
+static inline int at76_is_505a(enum board_type board)
+{
+	return (board == BOARD_505A || board == BOARD_505AMX);
+}
+
+/* Load a block of the first (internal) part of the firmware */
+static int at76_load_int_fw_block(struct usb_device *udev, int blockno,
+				  void *block, int size)
+{
+	return usb_control_msg(udev, usb_sndctrlpipe(udev, 0), DFU_DNLOAD,
+			       USB_TYPE_CLASS | USB_DIR_OUT |
+			       USB_RECIP_INTERFACE, blockno, 0, block, size,
+			       USB_CTRL_GET_TIMEOUT);
+}
+
+static int at76_dfu_get_status(struct usb_device *udev,
+			       struct dfu_status *status)
+{
+	int ret;
+
+	ret = usb_control_msg(udev, usb_rcvctrlpipe(udev, 0), DFU_GETSTATUS,
+			      USB_TYPE_CLASS | USB_DIR_IN | USB_RECIP_INTERFACE,
+			      0, 0, status, sizeof(struct dfu_status),
+			      USB_CTRL_GET_TIMEOUT);
+	return ret;
+}
+
+static u8 at76_dfu_get_state(struct usb_device *udev, u8 *state)
+{
+	int ret;
+
+	ret = usb_control_msg(udev, usb_rcvctrlpipe(udev, 0), DFU_GETSTATE,
+			      USB_TYPE_CLASS | USB_DIR_IN | USB_RECIP_INTERFACE,
+			      0, 0, state, 1, USB_CTRL_GET_TIMEOUT);
+	return ret;
+}
+
+/* Convert timeout from the DFU status to jiffies */
+static inline unsigned long at76_get_timeout(struct dfu_status *s)
+{
+	return msecs_to_jiffies((s->poll_timeout[2] << 16)
+				| (s->poll_timeout[1] << 8)
+				| (s->poll_timeout[0]));
+}
+
+/* Load internal firmware from the buffer.  If manifest_sync_timeout > 0, use
+ * its value in jiffies in the MANIFEST_SYNC state.  */
+static int at76_usbdfu_download(struct usb_device *udev, u8 *buf, u32 size,
+				int manifest_sync_timeout)
+{
+	u8 *block;
+	struct dfu_status dfu_stat_buf;
+	int ret = 0;
+	int need_dfu_state = 1;
+	int is_done = 0;
+	u8 dfu_state = 0;
+	u32 dfu_timeout = 0;
+	int bsize = 0;
+	int blockno = 0;
+
+	at76_dbg(DBG_DFU, "%s( %p, %u, %d)", __func__, buf, size,
+		 manifest_sync_timeout);
+
+	if (!size) {
+		dev_printk(KERN_ERR, &udev->dev, "FW buffer length invalid!\n");
+		return -EINVAL;
+	}
+
+	block = kmalloc(FW_BLOCK_SIZE, GFP_KERNEL);
+	if (!block)
+		return -ENOMEM;
+
+	do {
+		if (need_dfu_state) {
+			ret = at76_dfu_get_state(udev, &dfu_state);
+			if (ret < 0) {
+				dev_printk(KERN_ERR, &udev->dev,
+					   "cannot get DFU state: %d\n", ret);
+				goto exit;
+			}
+			need_dfu_state = 0;
+		}
+
+		switch (dfu_state) {
+		case STATE_DFU_DOWNLOAD_SYNC:
+			at76_dbg(DBG_DFU, "STATE_DFU_DOWNLOAD_SYNC");
+			ret = at76_dfu_get_status(udev, &dfu_stat_buf);
+			if (ret >= 0) {
+				dfu_state = dfu_stat_buf.state;
+				dfu_timeout = at76_get_timeout(&dfu_stat_buf);
+				need_dfu_state = 0;
+			} else
+				dev_printk(KERN_ERR, &udev->dev,
+					   "at76_dfu_get_status returned %d\n",
+					   ret);
+			break;
+
+		case STATE_DFU_DOWNLOAD_BUSY:
+			at76_dbg(DBG_DFU, "STATE_DFU_DOWNLOAD_BUSY");
+			need_dfu_state = 1;
+
+			at76_dbg(DBG_DFU, "DFU: Resetting device");
+			schedule_timeout_interruptible(dfu_timeout);
+			break;
+
+		case STATE_DFU_DOWNLOAD_IDLE:
+			at76_dbg(DBG_DFU, "DOWNLOAD...");
+			/* fall through */
+		case STATE_DFU_IDLE:
+			at76_dbg(DBG_DFU, "DFU IDLE");
+
+			bsize = min_t(int, size, FW_BLOCK_SIZE);
+			memcpy(block, buf, bsize);
+			at76_dbg(DBG_DFU, "int fw, size left = %5d, "
+				 "bsize = %4d, blockno = %2d", size, bsize,
+				 blockno);
+			ret =
+			    at76_load_int_fw_block(udev, blockno, block, bsize);
+			buf += bsize;
+			size -= bsize;
+			blockno++;
+
+			if (ret != bsize)
+				dev_printk(KERN_ERR, &udev->dev,
+					   "at76_load_int_fw_block "
+					   "returned %d\n", ret);
+			need_dfu_state = 1;
+			break;
+
+		case STATE_DFU_MANIFEST_SYNC:
+			at76_dbg(DBG_DFU, "STATE_DFU_MANIFEST_SYNC");
+
+			ret = at76_dfu_get_status(udev, &dfu_stat_buf);
+			if (ret < 0)
+				break;
+
+			dfu_state = dfu_stat_buf.state;
+			dfu_timeout = at76_get_timeout(&dfu_stat_buf);
+			need_dfu_state = 0;
+
+			/* override the timeout from the status response,
+			   needed for AT76C505A */
+			if (manifest_sync_timeout > 0)
+				dfu_timeout = manifest_sync_timeout;
+
+			at76_dbg(DBG_DFU, "DFU: Waiting for manifest phase");
+			schedule_timeout_interruptible(dfu_timeout);
+			break;
+
+		case STATE_DFU_MANIFEST:
+			at76_dbg(DBG_DFU, "STATE_DFU_MANIFEST");
+			is_done = 1;
+			break;
+
+		case STATE_DFU_MANIFEST_WAIT_RESET:
+			at76_dbg(DBG_DFU, "STATE_DFU_MANIFEST_WAIT_RESET");
+			is_done = 1;
+			break;
+
+		case STATE_DFU_UPLOAD_IDLE:
+			at76_dbg(DBG_DFU, "STATE_DFU_UPLOAD_IDLE");
+			break;
+
+		case STATE_DFU_ERROR:
+			at76_dbg(DBG_DFU, "STATE_DFU_ERROR");
+			ret = -EPIPE;
+			break;
+
+		default:
+			at76_dbg(DBG_DFU, "DFU UNKNOWN STATE (%d)", dfu_state);
+			ret = -EINVAL;
+			break;
+		}
+	} while (!is_done && (ret >= 0));
+
+exit:
+	kfree(block);
+	if (ret >= 0)
+		ret = 0;
+
+	return ret;
+}
+
+/* Report that the scan results are ready */
+static inline void at76_iwevent_scan_complete(struct net_device *netdev)
+{
+	union iwreq_data wrqu;
+	wrqu.data.length = 0;
+	wrqu.data.flags = 0;
+	wireless_send_event(netdev, SIOCGIWSCAN, &wrqu, NULL);
+	at76_dbg(DBG_WE_EVENTS, "%s: SIOCGIWSCAN sent", netdev->name);
+}
+
+static inline void at76_iwevent_bss_connect(struct net_device *netdev,
+					    u8 *bssid)
+{
+	union iwreq_data wrqu;
+	wrqu.data.length = 0;
+	wrqu.data.flags = 0;
+	memcpy(wrqu.ap_addr.sa_data, bssid, ETH_ALEN);
+	wrqu.ap_addr.sa_family = ARPHRD_ETHER;
+	wireless_send_event(netdev, SIOCGIWAP, &wrqu, NULL);
+	at76_dbg(DBG_WE_EVENTS, "%s: %s: SIOCGIWAP sent", netdev->name,
+		 __func__);
+}
+
+static inline void at76_iwevent_bss_disconnect(struct net_device *netdev)
+{
+	union iwreq_data wrqu;
+	wrqu.data.length = 0;
+	wrqu.data.flags = 0;
+	memset(wrqu.ap_addr.sa_data, 0, ETH_ALEN);
+	wrqu.ap_addr.sa_family = ARPHRD_ETHER;
+	wireless_send_event(netdev, SIOCGIWAP, &wrqu, NULL);
+	at76_dbg(DBG_WE_EVENTS, "%s: %s: SIOCGIWAP sent", netdev->name,
+		 __func__);
+}
+
+#define HEX2STR_BUFFERS 4
+#define HEX2STR_MAX_LEN 64
+#define BIN2HEX(x) ((x) < 10 ? '0' + (x) : (x) + 'A' - 10)
+
+/* Convert binary data into hex string */
+static char *hex2str(void *buf, int len)
+{
+	static atomic_t a = ATOMIC_INIT(0);
+	static char bufs[HEX2STR_BUFFERS][3 * HEX2STR_MAX_LEN + 1];
+	char *ret = bufs[atomic_inc_return(&a) & (HEX2STR_BUFFERS - 1)];
+	char *obuf = ret;
+	u8 *ibuf = buf;
+
+	if (len > HEX2STR_MAX_LEN)
+		len = HEX2STR_MAX_LEN;
+
+	if (len <= 0) {
+		ret[0] = '\0';
+		return ret;
+	}
+
+	while (len--) {
+		*obuf++ = BIN2HEX(*ibuf >> 4);
+		*obuf++ = BIN2HEX(*ibuf & 0xf);
+		*obuf++ = '-';
+		ibuf++;
+	}
+	*(--obuf) = '\0';
+
+	return ret;
+}
+
+#define MAC2STR_BUFFERS 4
+
+static inline char *mac2str(u8 *mac)
+{
+	static atomic_t a = ATOMIC_INIT(0);
+	static char bufs[MAC2STR_BUFFERS][6 * 3];
+	char *str;
+
+	str = bufs[atomic_inc_return(&a) & (MAC2STR_BUFFERS - 1)];
+	sprintf(str, "%02x:%02x:%02x:%02x:%02x:%02x",
+		mac[0], mac[1], mac[2], mac[3], mac[4], mac[5]);
+	return str;
+}
+
+/* LED trigger */
+static int tx_activity;
+static void at76_ledtrig_tx_timerfunc(unsigned long data);
+static DEFINE_TIMER(ledtrig_tx_timer, at76_ledtrig_tx_timerfunc, 0, 0);
+DEFINE_LED_TRIGGER(ledtrig_tx);
+
+static void at76_ledtrig_tx_timerfunc(unsigned long data)
+{
+	static int tx_lastactivity;
+
+	if (tx_lastactivity != tx_activity) {
+		tx_lastactivity = tx_activity;
+		led_trigger_event(ledtrig_tx, LED_FULL);
+		mod_timer(&ledtrig_tx_timer, jiffies + HZ / 4);
+	} else
+		led_trigger_event(ledtrig_tx, LED_OFF);
+}
+
+static void at76_ledtrig_tx_activity(void)
+{
+	tx_activity++;
+	if (!timer_pending(&ledtrig_tx_timer))
+		mod_timer(&ledtrig_tx_timer, jiffies + HZ / 4);
+}
+
+/* Check if the given ssid is hidden */
+static inline int at76_is_hidden_ssid(u8 *ssid, int length)
+{
+	static const u8 zeros[32];
+
+	if (length == 0)
+		return 1;
+
+	if (length == 1 && ssid[0] == ' ')
+		return 1;
+
+	return (memcmp(ssid, zeros, length) == 0);
+}
+
+static inline void at76_free_bss_list(struct at76_priv *priv)
+{
+	struct list_head *next, *ptr;
+	unsigned long flags;
+
+	spin_lock_irqsave(&priv->bss_list_spinlock, flags);
+
+	priv->curr_bss = NULL;
+
+	list_for_each_safe(ptr, next, &priv->bss_list) {
+		list_del(ptr);
+		kfree(list_entry(ptr, struct bss_info, list));
+	}
+
+	spin_unlock_irqrestore(&priv->bss_list_spinlock, flags);
+}
+
+static int at76_remap(struct usb_device *udev)
+{
+	int ret;
+	ret = usb_control_msg(udev, usb_sndctrlpipe(udev, 0), 0x0a,
+			      USB_TYPE_VENDOR | USB_DIR_OUT |
+			      USB_RECIP_INTERFACE, 0, 0, NULL, 0,
+			      USB_CTRL_GET_TIMEOUT);
+	if (ret < 0)
+		return ret;
+	return 0;
+}
+
+static int at76_get_op_mode(struct usb_device *udev)
+{
+	int ret;
+	u8 op_mode;
+
+	ret = usb_control_msg(udev, usb_rcvctrlpipe(udev, 0), 0x33,
+			      USB_TYPE_VENDOR | USB_DIR_IN |
+			      USB_RECIP_INTERFACE, 0x01, 0, &op_mode, 1,
+			      USB_CTRL_GET_TIMEOUT);
+	if (ret < 0)
+		return ret;
+	else if (ret < 1)
+		return -EIO;
+	else
+		return op_mode;
+}
+
+/* Load a block of the second ("external") part of the firmware */
+static inline int at76_load_ext_fw_block(struct usb_device *udev, int blockno,
+					 void *block, int size)
+{
+	return usb_control_msg(udev, usb_sndctrlpipe(udev, 0), 0x0e,
+			       USB_TYPE_VENDOR | USB_DIR_OUT | USB_RECIP_DEVICE,
+			       0x0802, blockno, block, size,
+			       USB_CTRL_GET_TIMEOUT);
+}
+
+static inline int at76_get_hw_cfg(struct usb_device *udev,
+				  union at76_hwcfg *buf, int buf_size)
+{
+	return usb_control_msg(udev, usb_rcvctrlpipe(udev, 0), 0x33,
+			       USB_TYPE_VENDOR | USB_DIR_IN |
+			       USB_RECIP_INTERFACE, 0x0a02, 0,
+			       buf, buf_size, USB_CTRL_GET_TIMEOUT);
+}
+
+/* Intersil boards use a different "value" for GetHWConfig requests */
+static inline int at76_get_hw_cfg_intersil(struct usb_device *udev,
+					   union at76_hwcfg *buf, int buf_size)
+{
+	return usb_control_msg(udev, usb_rcvctrlpipe(udev, 0), 0x33,
+			       USB_TYPE_VENDOR | USB_DIR_IN |
+			       USB_RECIP_INTERFACE, 0x0902, 0,
+			       buf, buf_size, USB_CTRL_GET_TIMEOUT);
+}
+
+/* Get the hardware configuration for the adapter and put it to the appropriate
+ * fields of 'priv' (the GetHWConfig request and interpretation of the result
+ * depends on the board type) */
+static int at76_get_hw_config(struct at76_priv *priv)
+{
+	int ret;
+	union at76_hwcfg *hwcfg = kmalloc(sizeof(*hwcfg), GFP_KERNEL);
+
+	if (!hwcfg)
+		return -ENOMEM;
+
+	if (at76_is_intersil(priv->board_type)) {
+		ret = at76_get_hw_cfg_intersil(priv->udev, hwcfg,
+					       sizeof(hwcfg->i));
+		if (ret < 0)
+			goto exit;
+		memcpy(priv->mac_addr, hwcfg->i.mac_addr, ETH_ALEN);
+		priv->regulatory_domain = hwcfg->i.regulatory_domain;
+	} else if (at76_is_503rfmd(priv->board_type)) {
+		ret = at76_get_hw_cfg(priv->udev, hwcfg, sizeof(hwcfg->r3));
+		if (ret < 0)
+			goto exit;
+		memcpy(priv->mac_addr, hwcfg->r3.mac_addr, ETH_ALEN);
+		priv->regulatory_domain = hwcfg->r3.regulatory_domain;
+	} else {
+		ret = at76_get_hw_cfg(priv->udev, hwcfg, sizeof(hwcfg->r5));
+		if (ret < 0)
+			goto exit;
+		memcpy(priv->mac_addr, hwcfg->r5.mac_addr, ETH_ALEN);
+		priv->regulatory_domain = hwcfg->r5.regulatory_domain;
+	}
+
+exit:
+	kfree(hwcfg);
+	if (ret < 0)
+		printk(KERN_ERR "%s: cannot get HW Config (error %d)\n",
+		       priv->netdev->name, ret);
+
+	return ret;
+}
+
+static struct reg_domain const *at76_get_reg_domain(u16 code)
+{
+	int i;
+	static struct reg_domain const fd_tab[] = {
+		{0x10, "FCC (USA)", 0x7ff},	/* ch 1-11 */
+		{0x20, "IC (Canada)", 0x7ff},	/* ch 1-11 */
+		{0x30, "ETSI (most of Europe)", 0x1fff},	/* ch 1-13 */
+		{0x31, "Spain", 0x600},	/* ch 10-11 */
+		{0x32, "France", 0x1e00},	/* ch 10-13 */
+		{0x40, "MKK (Japan)", 0x2000},	/* ch 14 */
+		{0x41, "MKK1 (Japan)", 0x3fff},	/* ch 1-14 */
+		{0x50, "Israel", 0x3fc},	/* ch 3-9 */
+		{0x00, "<unknown>", 0xffffffff}	/* ch 1-32 */
+	};
+
+	/* Last entry is fallback for unknown domain code */
+	for (i = 0; i < ARRAY_SIZE(fd_tab) - 1; i++)
+		if (code == fd_tab[i].code)
+			break;
+
+	return &fd_tab[i];
+}
+
+static inline int at76_get_mib(struct usb_device *udev, u16 mib, void *buf,
+			       int buf_size)
+{
+	int ret;
+
+	ret = usb_control_msg(udev, usb_rcvctrlpipe(udev, 0), 0x33,
+			      USB_TYPE_VENDOR | USB_DIR_IN |
+			      USB_RECIP_INTERFACE, mib << 8, 0, buf, buf_size,
+			      USB_CTRL_GET_TIMEOUT);
+	if (ret >= 0 && ret != buf_size)
+		return -EIO;
+	return ret;
+}
+
+/* Return positive number for status, negative for an error */
+static inline int at76_get_cmd_status(struct usb_device *udev, u8 cmd)
+{
+	u8 stat_buf[40];
+	int ret;
+
+	ret = usb_control_msg(udev, usb_rcvctrlpipe(udev, 0), 0x22,
+			      USB_TYPE_VENDOR | USB_DIR_IN |
+			      USB_RECIP_INTERFACE, cmd, 0, stat_buf,
+			      sizeof(stat_buf), USB_CTRL_GET_TIMEOUT);
+	if (ret < 0)
+		return ret;
+
+	return stat_buf[5];
+}
+
+static int at76_set_card_command(struct usb_device *udev, int cmd, void *buf,
+				 int buf_size)
+{
+	int ret;
+	struct at76_command *cmd_buf = kmalloc(sizeof(struct at76_command) +
+					       buf_size, GFP_KERNEL);
+
+	if (!cmd_buf)
+		return -ENOMEM;
+
+	cmd_buf->cmd = cmd;
+	cmd_buf->reserved = 0;
+	cmd_buf->size = cpu_to_le16(buf_size);
+	memcpy(cmd_buf->data, buf, buf_size);
+
+	ret = usb_control_msg(udev, usb_sndctrlpipe(udev, 0), 0x0e,
+			      USB_TYPE_VENDOR | USB_DIR_OUT | USB_RECIP_DEVICE,
+			      0, 0, cmd_buf,
+			      sizeof(struct at76_command) + buf_size,
+			      USB_CTRL_GET_TIMEOUT);
+	kfree(cmd_buf);
+	return ret;
+}
+
+#define MAKE_CMD_STATUS_CASE(c)	case (c): return #c
+static const char *at76_get_cmd_status_string(u8 cmd_status)
+{
+	switch (cmd_status) {
+		MAKE_CMD_STATUS_CASE(CMD_STATUS_IDLE);
+		MAKE_CMD_STATUS_CASE(CMD_STATUS_COMPLETE);
+		MAKE_CMD_STATUS_CASE(CMD_STATUS_UNKNOWN);
+		MAKE_CMD_STATUS_CASE(CMD_STATUS_INVALID_PARAMETER);
+		MAKE_CMD_STATUS_CASE(CMD_STATUS_FUNCTION_NOT_SUPPORTED);
+		MAKE_CMD_STATUS_CASE(CMD_STATUS_TIME_OUT);
+		MAKE_CMD_STATUS_CASE(CMD_STATUS_IN_PROGRESS);
+		MAKE_CMD_STATUS_CASE(CMD_STATUS_HOST_FAILURE);
+		MAKE_CMD_STATUS_CASE(CMD_STATUS_SCAN_FAILED);
+	}
+
+	return "UNKNOWN";
+}
+
+/* Wait until the command is completed */
+static int at76_wait_completion(struct at76_priv *priv, int cmd)
+{
+	int status = 0;
+	unsigned long timeout = jiffies + CMD_COMPLETION_TIMEOUT;
+
+	do {
+		status = at76_get_cmd_status(priv->udev, cmd);
+		if (status < 0) {
+			printk(KERN_ERR "%s: at76_get_cmd_status failed: %d\n",
+			       priv->netdev->name, status);
+			break;
+		}
+
+		at76_dbg(DBG_WAIT_COMPLETE,
+			 "%s: Waiting on cmd %d, status = %d (%s)",
+			 priv->netdev->name, cmd, status,
+			 at76_get_cmd_status_string(status));
+
+		if (status != CMD_STATUS_IN_PROGRESS
+		    && status != CMD_STATUS_IDLE)
+			break;
+
+		schedule_timeout_interruptible(HZ / 10);	/* 100 ms */
+		if (time_after(jiffies, timeout)) {
+			printk(KERN_ERR
+			       "%s: completion timeout for command %d\n",
+			       priv->netdev->name, cmd);
+			status = -ETIMEDOUT;
+			break;
+		}
+	} while (1);
+
+	return status;
+}
+
+static int at76_set_mib(struct at76_priv *priv, struct set_mib_buffer *buf)
+{
+	int ret;
+
+	ret = at76_set_card_command(priv->udev, CMD_SET_MIB, buf,
+				    offsetof(struct set_mib_buffer,
+					     data) + buf->size);
+	if (ret < 0)
+		return ret;
+
+	ret = at76_wait_completion(priv, CMD_SET_MIB);
+	if (ret != CMD_STATUS_COMPLETE) {
+		printk(KERN_INFO
+		       "%s: set_mib: at76_wait_completion failed "
+		       "with %d\n", priv->netdev->name, ret);
+		ret = -EIO;
+	}
+
+	return ret;
+}
+
+/* Return < 0 on error, == 0 if no command sent, == 1 if cmd sent */
+static int at76_set_radio(struct at76_priv *priv, int enable)
+{
+	int ret;
+	int cmd;
+
+	if (priv->radio_on == enable)
+		return 0;
+
+	cmd = enable ? CMD_RADIO_ON : CMD_RADIO_OFF;
+
+	ret = at76_set_card_command(priv->udev, cmd, NULL, 0);
+	if (ret < 0)
+		printk(KERN_ERR "%s: at76_set_card_command(%d) failed: %d\n",
+		       priv->netdev->name, cmd, ret);
+	else
+		ret = 1;
+
+	priv->radio_on = enable;
+	return ret;
+}
+
+/* Set current power save mode (AT76_PM_OFF/AT76_PM_ON/AT76_PM_SMART) */
+static int at76_set_pm_mode(struct at76_priv *priv)
+{
+	int ret = 0;
+
+	priv->mib_buf.type = MIB_MAC_MGMT;
+	priv->mib_buf.size = 1;
+	priv->mib_buf.index = offsetof(struct mib_mac_mgmt, power_mgmt_mode);
+	priv->mib_buf.data.byte = priv->pm_mode;
+
+	ret = at76_set_mib(priv, &priv->mib_buf);
+	if (ret < 0)
+		printk(KERN_ERR "%s: set_mib (pm_mode) failed: %d\n",
+		       priv->netdev->name, ret);
+
+	return ret;
+}
+
+/* Set the association id for power save mode */
+static int at76_set_associd(struct at76_priv *priv, u16 id)
+{
+	int ret = 0;
+
+	priv->mib_buf.type = MIB_MAC_MGMT;
+	priv->mib_buf.size = 2;
+	priv->mib_buf.index = offsetof(struct mib_mac_mgmt, station_id);
+	priv->mib_buf.data.word = cpu_to_le16(id);
+
+	ret = at76_set_mib(priv, &priv->mib_buf);
+	if (ret < 0)
+		printk(KERN_ERR "%s: set_mib (associd) failed: %d\n",
+		       priv->netdev->name, ret);
+
+	return ret;
+}
+
+/* Set the listen interval for power save mode */
+static int at76_set_listen_interval(struct at76_priv *priv, u16 interval)
+{
+	int ret = 0;
+
+	priv->mib_buf.type = MIB_MAC;
+	priv->mib_buf.size = 2;
+	priv->mib_buf.index = offsetof(struct mib_mac, listen_interval);
+	priv->mib_buf.data.word = cpu_to_le16(interval);
+
+	ret = at76_set_mib(priv, &priv->mib_buf);
+	if (ret < 0)
+		printk(KERN_ERR
+		       "%s: set_mib (listen_interval) failed: %d\n",
+		       priv->netdev->name, ret);
+
+	return ret;
+}
+
+static int at76_set_preamble(struct at76_priv *priv, u8 type)
+{
+	int ret = 0;
+
+	priv->mib_buf.type = MIB_LOCAL;
+	priv->mib_buf.size = 1;
+	priv->mib_buf.index = offsetof(struct mib_local, preamble_type);
+	priv->mib_buf.data.byte = type;
+
+	ret = at76_set_mib(priv, &priv->mib_buf);
+	if (ret < 0)
+		printk(KERN_ERR "%s: set_mib (preamble) failed: %d\n",
+		       priv->netdev->name, ret);
+
+	return ret;
+}
+
+static int at76_set_frag(struct at76_priv *priv, u16 size)
+{
+	int ret = 0;
+
+	priv->mib_buf.type = MIB_MAC;
+	priv->mib_buf.size = 2;
+	priv->mib_buf.index = offsetof(struct mib_mac, frag_threshold);
+	priv->mib_buf.data.word = cpu_to_le16(size);
+
+	ret = at76_set_mib(priv, &priv->mib_buf);
+	if (ret < 0)
+		printk(KERN_ERR "%s: set_mib (frag threshold) failed: %d\n",
+		       priv->netdev->name, ret);
+
+	return ret;
+}
+
+static int at76_set_rts(struct at76_priv *priv, u16 size)
+{
+	int ret = 0;
+
+	priv->mib_buf.type = MIB_MAC;
+	priv->mib_buf.size = 2;
+	priv->mib_buf.index = offsetof(struct mib_mac, rts_threshold);
+	priv->mib_buf.data.word = cpu_to_le16(size);
+
+	ret = at76_set_mib(priv, &priv->mib_buf);
+	if (ret < 0)
+		printk(KERN_ERR "%s: set_mib (rts) failed: %d\n",
+		       priv->netdev->name, ret);
+
+	return ret;
+}
+
+static int at76_set_autorate_fallback(struct at76_priv *priv, int onoff)
+{
+	int ret = 0;
+
+	priv->mib_buf.type = MIB_LOCAL;
+	priv->mib_buf.size = 1;
+	priv->mib_buf.index = offsetof(struct mib_local, txautorate_fallback);
+	priv->mib_buf.data.byte = onoff;
+
+	ret = at76_set_mib(priv, &priv->mib_buf);
+	if (ret < 0)
+		printk(KERN_ERR "%s: set_mib (autorate fallback) failed: %d\n",
+		       priv->netdev->name, ret);
+
+	return ret;
+}
+
+static int at76_add_mac_address(struct at76_priv *priv, void *addr)
+{
+	int ret = 0;
+
+	priv->mib_buf.type = MIB_MAC_ADDR;
+	priv->mib_buf.size = ETH_ALEN;
+	priv->mib_buf.index = offsetof(struct mib_mac_addr, mac_addr);
+	memcpy(priv->mib_buf.data.addr, addr, ETH_ALEN);
+
+	ret = at76_set_mib(priv, &priv->mib_buf);
+	if (ret < 0)
+		printk(KERN_ERR "%s: set_mib (MAC_ADDR, mac_addr) failed: %d\n",
+		       priv->netdev->name, ret);
+
+	return ret;
+}
+
+static void at76_dump_mib_mac_addr(struct at76_priv *priv)
+{
+	int i;
+	int ret;
+	struct mib_mac_addr *m = kmalloc(sizeof(struct mib_mac_addr),
+					 GFP_KERNEL);
+
+	if (!m)
+		return;
+
+	ret = at76_get_mib(priv->udev, MIB_MAC_ADDR, m,
+			   sizeof(struct mib_mac_addr));
+	if (ret < 0) {
+		printk(KERN_ERR "%s: at76_get_mib (MAC_ADDR) failed: %d\n",
+		       priv->netdev->name, ret);
+		goto exit;
+	}
+
+	at76_dbg(DBG_MIB, "%s: MIB MAC_ADDR: mac_addr %s res 0x%x 0x%x",
+		 priv->netdev->name,
+		 mac2str(m->mac_addr), m->res[0], m->res[1]);
+	for (i = 0; i < ARRAY_SIZE(m->group_addr); i++)
+		at76_dbg(DBG_MIB, "%s: MIB MAC_ADDR: group addr %d: %s, "
+			 "status %d", priv->netdev->name, i,
+			 mac2str(m->group_addr[i]), m->group_addr_status[i]);
+exit:
+	kfree(m);
+}
+
+static void at76_dump_mib_mac_wep(struct at76_priv *priv)
+{
+	int i;
+	int ret;
+	int key_len;
+	struct mib_mac_wep *m = kmalloc(sizeof(struct mib_mac_wep), GFP_KERNEL);
+
+	if (!m)
+		return;
+
+	ret = at76_get_mib(priv->udev, MIB_MAC_WEP, m,
+			   sizeof(struct mib_mac_wep));
+	if (ret < 0) {
+		printk(KERN_ERR "%s: at76_get_mib (MAC_WEP) failed: %d\n",
+		       priv->netdev->name, ret);
+		goto exit;
+	}
+
+	at76_dbg(DBG_MIB, "%s: MIB MAC_WEP: priv_invoked %u def_key_id %u "
+		 "key_len %u excl_unencr %u wep_icv_err %u wep_excluded %u "
+		 "encr_level %u key %d", priv->netdev->name,
+		 m->privacy_invoked, m->wep_default_key_id,
+		 m->wep_key_mapping_len, m->exclude_unencrypted,
+		 le32_to_cpu(m->wep_icv_error_count),
+		 le32_to_cpu(m->wep_excluded_count), m->encryption_level,
+		 m->wep_default_key_id);
+
+	key_len = (m->encryption_level == 1) ?
+	    WEP_SMALL_KEY_LEN : WEP_LARGE_KEY_LEN;
+
+	for (i = 0; i < WEP_KEYS; i++)
+		at76_dbg(DBG_MIB, "%s: MIB MAC_WEP: key %d: %s",
+			 priv->netdev->name, i,
+			 hex2str(m->wep_default_keyvalue[i], key_len));
+exit:
+	kfree(m);
+}
+
+static void at76_dump_mib_mac_mgmt(struct at76_priv *priv)
+{
+	int ret;
+	struct mib_mac_mgmt *m = kmalloc(sizeof(struct mib_mac_mgmt),
+					 GFP_KERNEL);
+
+	if (!m)
+		return;
+
+	ret = at76_get_mib(priv->udev, MIB_MAC_MGMT, m,
+			   sizeof(struct mib_mac_mgmt));
+	if (ret < 0) {
+		printk(KERN_ERR "%s: at76_get_mib (MAC_MGMT) failed: %d\n",
+		       priv->netdev->name, ret);
+		goto exit;
+	}
+
+	at76_dbg(DBG_MIB, "%s: MIB MAC_MGMT: beacon_period %d CFP_max_duration "
+		 "%d medium_occupancy_limit %d station_id 0x%x ATIM_window %d "
+		 "CFP_mode %d privacy_opt_impl %d DTIM_period %d CFP_period %d "
+		 "current_bssid %s current_essid %s current_bss_type %d "
+		 "pm_mode %d ibss_change %d res %d "
+		 "multi_domain_capability_implemented %d "
+		 "international_roaming %d country_string %.3s",
+		 priv->netdev->name, le16_to_cpu(m->beacon_period),
+		 le16_to_cpu(m->CFP_max_duration),
+		 le16_to_cpu(m->medium_occupancy_limit),
+		 le16_to_cpu(m->station_id), le16_to_cpu(m->ATIM_window),
+		 m->CFP_mode, m->privacy_option_implemented, m->DTIM_period,
+		 m->CFP_period, mac2str(m->current_bssid),
+		 hex2str(m->current_essid, IW_ESSID_MAX_SIZE),
+		 m->current_bss_type, m->power_mgmt_mode, m->ibss_change,
+		 m->res, m->multi_domain_capability_implemented,
+		 m->multi_domain_capability_enabled, m->country_string);
+exit:
+	kfree(m);
+}
+
+static void at76_dump_mib_mac(struct at76_priv *priv)
+{
+	int ret;
+	struct mib_mac *m = kmalloc(sizeof(struct mib_mac), GFP_KERNEL);
+
+	if (!m)
+		return;
+
+	ret = at76_get_mib(priv->udev, MIB_MAC, m, sizeof(struct mib_mac));
+	if (ret < 0) {
+		printk(KERN_ERR "%s: at76_get_mib (MAC) failed: %d\n",
+		       priv->netdev->name, ret);
+		goto exit;
+	}
+
+	at76_dbg(DBG_MIB, "%s: MIB MAC: max_tx_msdu_lifetime %d "
+		 "max_rx_lifetime %d frag_threshold %d rts_threshold %d "
+		 "cwmin %d cwmax %d short_retry_time %d long_retry_time %d "
+		 "scan_type %d scan_channel %d probe_delay %u "
+		 "min_channel_time %d max_channel_time %d listen_int %d "
+		 "desired_ssid %s desired_bssid %s desired_bsstype %d",
+		 priv->netdev->name, le32_to_cpu(m->max_tx_msdu_lifetime),
+		 le32_to_cpu(m->max_rx_lifetime),
+		 le16_to_cpu(m->frag_threshold), le16_to_cpu(m->rts_threshold),
+		 le16_to_cpu(m->cwmin), le16_to_cpu(m->cwmax),
+		 m->short_retry_time, m->long_retry_time, m->scan_type,
+		 m->scan_channel, le16_to_cpu(m->probe_delay),
+		 le16_to_cpu(m->min_channel_time),
+		 le16_to_cpu(m->max_channel_time),
+		 le16_to_cpu(m->listen_interval),
+		 hex2str(m->desired_ssid, IW_ESSID_MAX_SIZE),
+		 mac2str(m->desired_bssid), m->desired_bsstype);
+exit:
+	kfree(m);
+}
+
+static void at76_dump_mib_phy(struct at76_priv *priv)
+{
+	int ret;
+	struct mib_phy *m = kmalloc(sizeof(struct mib_phy), GFP_KERNEL);
+
+	if (!m)
+		return;
+
+	ret = at76_get_mib(priv->udev, MIB_PHY, m, sizeof(struct mib_phy));
+	if (ret < 0) {
+		printk(KERN_ERR "%s: at76_get_mib (PHY) failed: %d\n",
+		       priv->netdev->name, ret);
+		goto exit;
+	}
+
+	at76_dbg(DBG_MIB, "%s: MIB PHY: ed_threshold %d slot_time %d "
+		 "sifs_time %d preamble_length %d plcp_header_length %d "
+		 "mpdu_max_length %d cca_mode_supported %d operation_rate_set "
+		 "0x%x 0x%x 0x%x 0x%x channel_id %d current_cca_mode %d "
+		 "phy_type %d current_reg_domain %d",
+		 priv->netdev->name, le32_to_cpu(m->ed_threshold),
+		 le16_to_cpu(m->slot_time), le16_to_cpu(m->sifs_time),
+		 le16_to_cpu(m->preamble_length),
+		 le16_to_cpu(m->plcp_header_length),
+		 le16_to_cpu(m->mpdu_max_length),
+		 le16_to_cpu(m->cca_mode_supported), m->operation_rate_set[0],
+		 m->operation_rate_set[1], m->operation_rate_set[2],
+		 m->operation_rate_set[3], m->channel_id, m->current_cca_mode,
+		 m->phy_type, m->current_reg_domain);
+exit:
+	kfree(m);
+}
+
+static void at76_dump_mib_local(struct at76_priv *priv)
+{
+	int ret;
+	struct mib_local *m = kmalloc(sizeof(struct mib_phy), GFP_KERNEL);
+
+	if (!m)
+		return;
+
+	ret = at76_get_mib(priv->udev, MIB_LOCAL, m, sizeof(struct mib_local));
+	if (ret < 0) {
+		printk(KERN_ERR "%s: at76_get_mib (LOCAL) failed: %d\n",
+		       priv->netdev->name, ret);
+		goto exit;
+	}
+
+	at76_dbg(DBG_MIB, "%s: MIB LOCAL: beacon_enable %d "
+		 "txautorate_fallback %d ssid_size %d promiscuous_mode %d "
+		 "preamble_type %d", priv->netdev->name, m->beacon_enable,
+		 m->txautorate_fallback, m->ssid_size, m->promiscuous_mode,
+		 m->preamble_type);
+exit:
+	kfree(m);
+}
+
+static void at76_dump_mib_mdomain(struct at76_priv *priv)
+{
+	int ret;
+	struct mib_mdomain *m = kmalloc(sizeof(struct mib_mdomain), GFP_KERNEL);
+
+	if (!m)
+		return;
+
+	ret = at76_get_mib(priv->udev, MIB_MDOMAIN, m,
+			   sizeof(struct mib_mdomain));
+	if (ret < 0) {
+		printk(KERN_ERR "%s: at76_get_mib (MDOMAIN) failed: %d\n",
+		       priv->netdev->name, ret);
+		goto exit;
+	}
+
+	at76_dbg(DBG_MIB, "%s: MIB MDOMAIN: channel_list %s",
+		 priv->netdev->name,
+		 hex2str(m->channel_list, sizeof(m->channel_list)));
+
+	at76_dbg(DBG_MIB, "%s: MIB MDOMAIN: tx_powerlevel %s",
+		 priv->netdev->name,
+		 hex2str(m->tx_powerlevel, sizeof(m->tx_powerlevel)));
+exit:
+	kfree(m);
+}
+
+static int at76_get_current_bssid(struct at76_priv *priv)
+{
+	int ret = 0;
+	struct mib_mac_mgmt *mac_mgmt =
+	    kmalloc(sizeof(struct mib_mac_mgmt), GFP_KERNEL);
+
+	if (!mac_mgmt) {
+		ret = -ENOMEM;
+		goto exit;
+	}
+
+	ret = at76_get_mib(priv->udev, MIB_MAC_MGMT, mac_mgmt,
+			   sizeof(struct mib_mac_mgmt));
+	if (ret < 0) {
+		printk(KERN_ERR "%s: at76_get_mib failed: %d\n",
+		       priv->netdev->name, ret);
+		goto error;
+	}
+	memcpy(priv->bssid, mac_mgmt->current_bssid, ETH_ALEN);
+	printk(KERN_INFO "%s: using BSSID %s\n", priv->netdev->name,
+	       mac2str(priv->bssid));
+error:
+	kfree(mac_mgmt);
+exit:
+	return ret;
+}
+
+static int at76_get_current_channel(struct at76_priv *priv)
+{
+	int ret = 0;
+	struct mib_phy *phy = kmalloc(sizeof(struct mib_phy), GFP_KERNEL);
+
+	if (!phy) {
+		ret = -ENOMEM;
+		goto exit;
+	}
+	ret = at76_get_mib(priv->udev, MIB_PHY, phy, sizeof(struct mib_phy));
+	if (ret < 0) {
+		printk(KERN_ERR "%s: at76_get_mib(MIB_PHY) failed: %d\n",
+		       priv->netdev->name, ret);
+		goto error;
+	}
+	priv->channel = phy->channel_id;
+error:
+	kfree(phy);
+exit:
+	return ret;
+}
+
+/**
+ * at76_start_scan - start a scan
+ *
+ * @use_essid - use the configured ESSID in non passive mode
+ */
+static int at76_start_scan(struct at76_priv *priv, int use_essid)
+{
+	struct at76_req_scan scan;
+
+	memset(&scan, 0, sizeof(struct at76_req_scan));
+	memset(scan.bssid, 0xff, ETH_ALEN);
+
+	if (use_essid) {
+		memcpy(scan.essid, priv->essid, IW_ESSID_MAX_SIZE);
+		scan.essid_size = priv->essid_size;
+	} else
+		scan.essid_size = 0;
+
+	/* jal: why should we start at a certain channel? we do scan the whole
+	   range allowed by reg domain. */
+	scan.channel = priv->channel;
+
+	/* atmelwlandriver differs between scan type 0 and 1 (active/passive)
+	   For ad-hoc mode, it uses type 0 only. */
+	scan.scan_type = priv->scan_mode;
+
+	/* INFO: For probe_delay, not multiplying by 1024 as this will be
+	   slightly less than min_channel_time
+	   (per spec: probe delay < min. channel time) */
+	scan.min_channel_time = cpu_to_le16(priv->scan_min_time);
+	scan.max_channel_time = cpu_to_le16(priv->scan_max_time);
+	scan.probe_delay = cpu_to_le16(priv->scan_min_time * 1000);
+	scan.international_scan = 0;
+
+	/* other values are set to 0 for type 0 */
+
+	at76_dbg(DBG_PROGRESS, "%s: start_scan (use_essid = %d, intl = %d, "
+		 "channel = %d, probe_delay = %d, scan_min_time = %d, "
+		 "scan_max_time = %d)",
+		 priv->netdev->name, use_essid,
+		 scan.international_scan, scan.channel,
+		 le16_to_cpu(scan.probe_delay),
+		 le16_to_cpu(scan.min_channel_time),
+		 le16_to_cpu(scan.max_channel_time));
+
+	return at76_set_card_command(priv->udev, CMD_SCAN, &scan, sizeof(scan));
+}
+
+/* Enable monitor mode */
+static int at76_start_monitor(struct at76_priv *priv)
+{
+	struct at76_req_scan scan;
+	int ret;
+
+	memset(&scan, 0, sizeof(struct at76_req_scan));
+	memset(scan.bssid, 0xff, ETH_ALEN);
+
+	scan.channel = priv->channel;
+	scan.scan_type = SCAN_TYPE_PASSIVE;
+	scan.international_scan = 0;
+
+	ret = at76_set_card_command(priv->udev, CMD_SCAN, &scan, sizeof(scan));
+	if (ret >= 0)
+		ret = at76_get_cmd_status(priv->udev, CMD_SCAN);
+
+	return ret;
+}
+
+static int at76_start_ibss(struct at76_priv *priv)
+{
+	struct at76_req_ibss bss;
+	int ret;
+
+	WARN_ON(priv->mac_state != MAC_OWN_IBSS);
+	if (priv->mac_state != MAC_OWN_IBSS)
+		return -EBUSY;
+
+	memset(&bss, 0, sizeof(struct at76_req_ibss));
+	memset(bss.bssid, 0xff, ETH_ALEN);
+	memcpy(bss.essid, priv->essid, IW_ESSID_MAX_SIZE);
+	bss.essid_size = priv->essid_size;
+	bss.bss_type = ADHOC_MODE;
+	bss.channel = priv->channel;
+
+	ret = at76_set_card_command(priv->udev, CMD_START_IBSS, &bss,
+				    sizeof(struct at76_req_ibss));
+	if (ret < 0) {
+		printk(KERN_ERR "%s: start_ibss failed: %d\n",
+		       priv->netdev->name, ret);
+		return ret;
+	}
+
+	ret = at76_wait_completion(priv, CMD_START_IBSS);
+	if (ret != CMD_STATUS_COMPLETE) {
+		printk(KERN_ERR "%s: start_ibss failed to complete, %d\n",
+		       priv->netdev->name, ret);
+		return ret;
+	}
+
+	ret = at76_get_current_bssid(priv);
+	if (ret < 0)
+		return ret;
+
+	ret = at76_get_current_channel(priv);
+	if (ret < 0)
+		return ret;
+
+	/* not sure what this is good for ??? */
+	priv->mib_buf.type = MIB_MAC_MGMT;
+	priv->mib_buf.size = 1;
+	priv->mib_buf.index = offsetof(struct mib_mac_mgmt, ibss_change);
+	priv->mib_buf.data.byte = 0;
+
+	ret = at76_set_mib(priv, &priv->mib_buf);
+	if (ret < 0) {
+		printk(KERN_ERR "%s: set_mib (ibss change ok) failed: %d\n",
+		       priv->netdev->name, ret);
+		return ret;
+	}
+
+	netif_carrier_on(priv->netdev);
+	netif_start_queue(priv->netdev);
+	return 0;
+}
+
+/* Request card to join BSS in managed or ad-hoc mode */
+static int at76_join_bss(struct at76_priv *priv, struct bss_info *ptr)
+{
+	struct at76_req_join join;
+
+	BUG_ON(!ptr);
+
+	memset(&join, 0, sizeof(struct at76_req_join));
+	memcpy(join.bssid, ptr->bssid, ETH_ALEN);
+	memcpy(join.essid, ptr->ssid, ptr->ssid_len);
+	join.essid_size = ptr->ssid_len;
+	join.bss_type = (priv->iw_mode == IW_MODE_ADHOC ? 1 : 2);
+	join.channel = ptr->channel;
+	join.timeout = cpu_to_le16(2000);
+
+	at76_dbg(DBG_PROGRESS,
+		 "%s join addr %s ssid %s type %d ch %d timeout %d",
+		 priv->netdev->name, mac2str(join.bssid), join.essid,
+		 join.bss_type, join.channel, le16_to_cpu(join.timeout));
+	return at76_set_card_command(priv->udev, CMD_JOIN, &join,
+				     sizeof(struct at76_req_join));
+}
+
+/* Calculate padding from txbuf->wlength (which excludes the USB TX header),
+   likely to compensate a flaw in the AT76C503A USB part ... */
+static inline int at76_calc_padding(int wlen)
+{
+	/* add the USB TX header */
+	wlen += AT76_TX_HDRLEN;
+
+	wlen = wlen % 64;
+
+	if (wlen < 50)
+		return 50 - wlen;
+
+	if (wlen >= 61)
+		return 64 + 50 - wlen;
+
+	return 0;
+}
+
+/* We are doing a lot of things here in an interrupt. Need
+   a bh handler (Watching TV with a TV card is probably
+   a good test: if you see flickers, we are doing too much.
+   Currently I do see flickers... even with our tasklet :-( )
+   Maybe because the bttv driver and usb-uhci use the same interrupt
+*/
+/* Or maybe because our BH handler is preempting bttv's BH handler.. BHs don't
+ * solve everything.. (alex) */
+static void at76_rx_callback(struct urb *urb)
+{
+	struct at76_priv *priv = urb->context;
+
+	priv->rx_tasklet.data = (unsigned long)urb;
+	tasklet_schedule(&priv->rx_tasklet);
+	return;
+}
+
+static void at76_tx_callback(struct urb *urb)
+{
+	struct at76_priv *priv = urb->context;
+	struct net_device_stats *stats = &priv->stats;
+	unsigned long flags;
+	struct at76_tx_buffer *mgmt_buf;
+	int ret;
+
+	switch (urb->status) {
+	case 0:
+		stats->tx_packets++;
+		break;
+	case -ENOENT:
+	case -ECONNRESET:
+		/* urb has been unlinked */
+		return;
+	default:
+		at76_dbg(DBG_URB, "%s - nonzero tx status received: %d",
+			 __func__, urb->status);
+		stats->tx_errors++;
+		break;
+	}
+
+	spin_lock_irqsave(&priv->mgmt_spinlock, flags);
+	mgmt_buf = priv->next_mgmt_bulk;
+	priv->next_mgmt_bulk = NULL;
+	spin_unlock_irqrestore(&priv->mgmt_spinlock, flags);
+
+	if (!mgmt_buf) {
+		netif_wake_queue(priv->netdev);
+		return;
+	}
+
+	/* we don't copy the padding bytes, but add them
+	   to the length */
+	memcpy(priv->bulk_out_buffer, mgmt_buf,
+	       le16_to_cpu(mgmt_buf->wlength) + AT76_TX_HDRLEN);
+	usb_fill_bulk_urb(priv->tx_urb, priv->udev, priv->tx_pipe,
+			  priv->bulk_out_buffer,
+			  le16_to_cpu(mgmt_buf->wlength) + mgmt_buf->padding +
+			  AT76_TX_HDRLEN, at76_tx_callback, priv);
+	ret = usb_submit_urb(priv->tx_urb, GFP_ATOMIC);
+	if (ret)
+		printk(KERN_ERR "%s: error in tx submit urb: %d\n",
+		       priv->netdev->name, ret);
+
+	kfree(mgmt_buf);
+}
+
+/* Send a management frame on bulk-out.  txbuf->wlength must be set */
+static int at76_tx_mgmt(struct at76_priv *priv, struct at76_tx_buffer *txbuf)
+{
+	unsigned long flags;
+	int ret;
+	int urb_status;
+	void *oldbuf = NULL;
+
+	netif_carrier_off(priv->netdev);	/* stop netdev watchdog */
+	netif_stop_queue(priv->netdev);	/* stop tx data packets */
+
+	spin_lock_irqsave(&priv->mgmt_spinlock, flags);
+
+	urb_status = priv->tx_urb->status;
+	if (urb_status == -EINPROGRESS) {
+		/* cannot transmit now, put in the queue */
+		oldbuf = priv->next_mgmt_bulk;
+		priv->next_mgmt_bulk = txbuf;
+	}
+	spin_unlock_irqrestore(&priv->mgmt_spinlock, flags);
+
+	if (oldbuf) {
+		/* a data/mgmt tx is already pending in the URB -
+		   if this is no error in some situations we must
+		   implement a queue or silently modify the old msg */
+		printk(KERN_ERR "%s: removed pending mgmt buffer %s\n",
+		       priv->netdev->name, hex2str(oldbuf, 64));
+		kfree(oldbuf);
+		return 0;
+	}
+
+	txbuf->tx_rate = TX_RATE_1MBIT;
+	txbuf->padding = at76_calc_padding(le16_to_cpu(txbuf->wlength));
+	memset(txbuf->reserved, 0, sizeof(txbuf->reserved));
+
+	if (priv->next_mgmt_bulk)
+		printk(KERN_ERR "%s: URB status %d, but mgmt is pending\n",
+		       priv->netdev->name, urb_status);
+
+	at76_dbg(DBG_TX_MGMT,
+		 "%s: tx mgmt: wlen %d tx_rate %d pad %d %s",
+		 priv->netdev->name, le16_to_cpu(txbuf->wlength),
+		 txbuf->tx_rate, txbuf->padding,
+		 hex2str(txbuf->packet, le16_to_cpu(txbuf->wlength)));
+
+	/* txbuf was not consumed above -> send mgmt msg immediately */
+	memcpy(priv->bulk_out_buffer, txbuf,
+	       le16_to_cpu(txbuf->wlength) + AT76_TX_HDRLEN);
+	usb_fill_bulk_urb(priv->tx_urb, priv->udev, priv->tx_pipe,
+			  priv->bulk_out_buffer,
+			  le16_to_cpu(txbuf->wlength) + txbuf->padding +
+			  AT76_TX_HDRLEN, at76_tx_callback, priv);
+	ret = usb_submit_urb(priv->tx_urb, GFP_ATOMIC);
+	if (ret)
+		printk(KERN_ERR "%s: error in tx submit urb: %d\n",
+		       priv->netdev->name, ret);
+
+	kfree(txbuf);
+
+	return ret;
+}
+
+/* Go to the next information element */
+static inline void next_ie(struct ieee80211_info_element **ie)
+{
+	*ie = (struct ieee80211_info_element *)(&(*ie)->data[(*ie)->len]);
+}
+
+/* Challenge is the challenge string (in TLV format)
+   we got with seq_nr 2 for shared secret authentication only and
+   send in seq_nr 3 WEP encrypted to prove we have the correct WEP key;
+   otherwise it is NULL */
+static int at76_auth_req(struct at76_priv *priv, struct bss_info *bss,
+			 int seq_nr, struct ieee80211_info_element *challenge)
+{
+	struct at76_tx_buffer *tx_buffer;
+	struct ieee80211_hdr_3addr *mgmt;
+	struct ieee80211_auth *req;
+	int buf_len = (seq_nr != 3 ? AUTH_FRAME_SIZE :
+		       AUTH_FRAME_SIZE + 1 + 1 + challenge->len);
+
+	BUG_ON(!bss);
+	BUG_ON(seq_nr == 3 && !challenge);
+	tx_buffer = kmalloc(buf_len + MAX_PADDING_SIZE, GFP_ATOMIC);
+	if (!tx_buffer)
+		return -ENOMEM;
+
+	req = (struct ieee80211_auth *)tx_buffer->packet;
+	mgmt = &req->header;
+
+	/* make wireless header */
+	/* first auth msg is not encrypted, only the second (seq_nr == 3) */
+	mgmt->frame_ctl =
+	    cpu_to_le16(IEEE80211_FTYPE_MGMT | IEEE80211_STYPE_AUTH |
+			(seq_nr == 3 ? IEEE80211_FCTL_PROTECTED : 0));
+
+	mgmt->duration_id = cpu_to_le16(0x8000);
+	memcpy(mgmt->addr1, bss->bssid, ETH_ALEN);
+	memcpy(mgmt->addr2, priv->netdev->dev_addr, ETH_ALEN);
+	memcpy(mgmt->addr3, bss->bssid, ETH_ALEN);
+	mgmt->seq_ctl = cpu_to_le16(0);
+
+	req->algorithm = cpu_to_le16(priv->auth_mode);
+	req->transaction = cpu_to_le16(seq_nr);
+	req->status = cpu_to_le16(0);
+
+	if (seq_nr == 3)
+		memcpy(req->info_element, challenge, 1 + 1 + challenge->len);
+
+	/* init. at76_priv tx header */
+	tx_buffer->wlength = cpu_to_le16(buf_len - AT76_TX_HDRLEN);
+	at76_dbg(DBG_TX_MGMT, "%s: AuthReq bssid %s alg %d seq_nr %d",
+		 priv->netdev->name, mac2str(mgmt->addr3),
+		 le16_to_cpu(req->algorithm), le16_to_cpu(req->transaction));
+	if (seq_nr == 3)
+		at76_dbg(DBG_TX_MGMT, "%s: AuthReq challenge: %s ...",
+			 priv->netdev->name, hex2str(req->info_element, 18));
+
+	/* either send immediately (if no data tx is pending
+	   or put it in pending list */
+	return at76_tx_mgmt(priv, tx_buffer);
+}
+
+static int at76_assoc_req(struct at76_priv *priv, struct bss_info *bss)
+{
+	struct at76_tx_buffer *tx_buffer;
+	struct ieee80211_hdr_3addr *mgmt;
+	struct ieee80211_assoc_request *req;
+	struct ieee80211_info_element *ie;
+	char *essid;
+	int essid_len;
+	u16 capa;
+
+	BUG_ON(!bss);
+
+	tx_buffer = kmalloc(ASSOCREQ_MAX_SIZE + MAX_PADDING_SIZE, GFP_ATOMIC);
+	if (!tx_buffer)
+		return -ENOMEM;
+
+	req = (struct ieee80211_assoc_request *)tx_buffer->packet;
+	mgmt = &req->header;
+	ie = req->info_element;
+
+	/* make wireless header */
+	mgmt->frame_ctl = cpu_to_le16(IEEE80211_FTYPE_MGMT |
+				      IEEE80211_STYPE_ASSOC_REQ);
+
+	mgmt->duration_id = cpu_to_le16(0x8000);
+	memcpy(mgmt->addr1, bss->bssid, ETH_ALEN);
+	memcpy(mgmt->addr2, priv->netdev->dev_addr, ETH_ALEN);
+	memcpy(mgmt->addr3, bss->bssid, ETH_ALEN);
+	mgmt->seq_ctl = cpu_to_le16(0);
+
+	/* we must set the Privacy bit in the capabilities to assure an
+	   Agere-based AP with optional WEP transmits encrypted frames
+	   to us.  AP only set the Privacy bit in their capabilities
+	   if WEP is mandatory in the BSS! */
+	capa = bss->capa;
+	if (priv->wep_enabled)
+		capa |= WLAN_CAPABILITY_PRIVACY;
+	if (priv->preamble_type != PREAMBLE_TYPE_LONG)
+		capa |= WLAN_CAPABILITY_SHORT_PREAMBLE;
+	req->capability = cpu_to_le16(capa);
+
+	req->listen_interval = cpu_to_le16(2 * bss->beacon_interval);
+
+	/* write TLV data elements */
+
+	ie->id = MFIE_TYPE_SSID;
+	ie->len = bss->ssid_len;
+	memcpy(ie->data, bss->ssid, bss->ssid_len);
+	next_ie(&ie);
+
+	ie->id = MFIE_TYPE_RATES;
+	ie->len = sizeof(hw_rates);
+	memcpy(ie->data, hw_rates, sizeof(hw_rates));
+	next_ie(&ie);		/* ie points behind the supp_rates field */
+
+	/* init. at76_priv tx header */
+	tx_buffer->wlength = cpu_to_le16((u8 *)ie - (u8 *)mgmt);
+
+	ie = req->info_element;
+	essid = ie->data;
+	essid_len = min_t(int, IW_ESSID_MAX_SIZE, ie->len);
+
+	next_ie(&ie);		/* points to IE of rates now */
+	at76_dbg(DBG_TX_MGMT,
+		 "%s: AssocReq bssid %s capa 0x%04x ssid %.*s rates %s",
+		 priv->netdev->name, mac2str(mgmt->addr3),
+		 le16_to_cpu(req->capability), essid_len, essid,
+		 hex2str(ie->data, ie->len));
+
+	/* either send immediately (if no data tx is pending
+	   or put it in pending list */
+	return at76_tx_mgmt(priv, tx_buffer);
+}
+
+/* We got to check the bss_list for old entries */
+static void at76_bss_list_timeout(unsigned long par)
+{
+	struct at76_priv *priv = (struct at76_priv *)par;
+	unsigned long flags;
+	struct list_head *lptr, *nptr;
+	struct bss_info *ptr;
+
+	spin_lock_irqsave(&priv->bss_list_spinlock, flags);
+
+	list_for_each_safe(lptr, nptr, &priv->bss_list) {
+
+		ptr = list_entry(lptr, struct bss_info, list);
+
+		if (ptr != priv->curr_bss
+		    && time_after(jiffies, ptr->last_rx + BSS_LIST_TIMEOUT)) {
+			at76_dbg(DBG_BSS_TABLE_RM,
+				 "%s: bss_list: removing old BSS %s ch %d",
+				 priv->netdev->name, mac2str(ptr->bssid),
+				 ptr->channel);
+			list_del(&ptr->list);
+			kfree(ptr);
+		}
+	}
+	spin_unlock_irqrestore(&priv->bss_list_spinlock, flags);
+	/* restart the timer */
+	mod_timer(&priv->bss_list_timer, jiffies + BSS_LIST_TIMEOUT);
+}
+
+static inline void at76_set_mac_state(struct at76_priv *priv,
+				      enum mac_state mac_state)
+{
+	at76_dbg(DBG_MAC_STATE, "%s state: %s", priv->netdev->name,
+		 mac_states[mac_state]);
+	priv->mac_state = mac_state;
+}
+
+static void at76_dump_bss_table(struct at76_priv *priv)
+{
+	struct bss_info *ptr;
+	unsigned long flags;
+	struct list_head *lptr;
+
+	spin_lock_irqsave(&priv->bss_list_spinlock, flags);
+
+	at76_dbg(DBG_BSS_TABLE, "%s BSS table (curr=%p):", priv->netdev->name,
+		 priv->curr_bss);
+
+	list_for_each(lptr, &priv->bss_list) {
+		ptr = list_entry(lptr, struct bss_info, list);
+		at76_dbg(DBG_BSS_TABLE, "0x%p: bssid %s channel %d ssid %.*s "
+			 "(%s) capa 0x%04x rates %s rssi %d link %d noise %d",
+			 ptr, mac2str(ptr->bssid), ptr->channel, ptr->ssid_len,
+			 ptr->ssid, hex2str(ptr->ssid, ptr->ssid_len),
+			 ptr->capa, hex2str(ptr->rates, ptr->rates_len),
+			 ptr->rssi, ptr->link_qual, ptr->noise_level);
+	}
+	spin_unlock_irqrestore(&priv->bss_list_spinlock, flags);
+}
+
+/* Called upon successful association to mark interface as connected */
+static void at76_work_assoc_done(struct work_struct *work)
+{
+	struct at76_priv *priv = container_of(work, struct at76_priv,
+					      work_assoc_done);
+
+	mutex_lock(&priv->mtx);
+
+	WARN_ON(priv->mac_state != MAC_ASSOC);
+	WARN_ON(!priv->curr_bss);
+	if (priv->mac_state != MAC_ASSOC || !priv->curr_bss)
+		goto exit;
+
+	if (priv->iw_mode == IW_MODE_INFRA) {
+		if (priv->pm_mode != AT76_PM_OFF) {
+			/* calculate the listen interval in units of
+			   beacon intervals of the curr_bss */
+			u32 pm_period_beacon = (priv->pm_period >> 10) /
+			    priv->curr_bss->beacon_interval;
+
+			pm_period_beacon = max(pm_period_beacon, 2u);
+			pm_period_beacon = min(pm_period_beacon, 0xffffu);
+
+			at76_dbg(DBG_PM,
+				 "%s: pm_mode %d assoc id 0x%x listen int %d",
+				 priv->netdev->name, priv->pm_mode,
+				 priv->assoc_id, pm_period_beacon);
+
+			at76_set_associd(priv, priv->assoc_id);
+			at76_set_listen_interval(priv, (u16)pm_period_beacon);
+		}
+		schedule_delayed_work(&priv->dwork_beacon, BEACON_TIMEOUT);
+	}
+	at76_set_pm_mode(priv);
+
+	netif_carrier_on(priv->netdev);
+	netif_wake_queue(priv->netdev);
+	at76_set_mac_state(priv, MAC_CONNECTED);
+	at76_iwevent_bss_connect(priv->netdev, priv->curr_bss->bssid);
+	at76_dbg(DBG_PROGRESS, "%s: connected to BSSID %s",
+		 priv->netdev->name, mac2str(priv->curr_bss->bssid));
+
+exit:
+	mutex_unlock(&priv->mtx);
+}
+
+/* We only store the new mac address in netdev struct,
+   it gets set when the netdev is opened. */
+static int at76_set_mac_address(struct net_device *netdev, void *addr)
+{
+	struct sockaddr *mac = addr;
+	memcpy(netdev->dev_addr, mac->sa_data, ETH_ALEN);
+	return 1;
+}
+
+static struct net_device_stats *at76_get_stats(struct net_device *netdev)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	return &priv->stats;
+}
+
+static struct iw_statistics *at76_get_wireless_stats(struct net_device *netdev)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	at76_dbg(DBG_IOCTL, "RETURN qual %d level %d noise %d updated %d",
+		 priv->wstats.qual.qual, priv->wstats.qual.level,
+		 priv->wstats.qual.noise, priv->wstats.qual.updated);
+
+	return &priv->wstats;
+}
+
+static void at76_set_multicast(struct net_device *netdev)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int promisc;
+
+	promisc = ((netdev->flags & IFF_PROMISC) != 0);
+	if (promisc != priv->promisc) {
+		/* This gets called in interrupt, must reschedule */
+		priv->promisc = promisc;
+		schedule_work(&priv->work_set_promisc);
+	}
+}
+
+/* Stop all network activity, flush all pending tasks */
+static void at76_quiesce(struct at76_priv *priv)
+{
+	unsigned long flags;
+
+	netif_stop_queue(priv->netdev);
+	netif_carrier_off(priv->netdev);
+
+	at76_set_mac_state(priv, MAC_INIT);
+
+	cancel_delayed_work(&priv->dwork_get_scan);
+	cancel_delayed_work(&priv->dwork_beacon);
+	cancel_delayed_work(&priv->dwork_auth);
+	cancel_delayed_work(&priv->dwork_assoc);
+	cancel_delayed_work(&priv->dwork_restart);
+
+	spin_lock_irqsave(&priv->mgmt_spinlock, flags);
+	kfree(priv->next_mgmt_bulk);
+	priv->next_mgmt_bulk = NULL;
+	spin_unlock_irqrestore(&priv->mgmt_spinlock, flags);
+}
+
+/*******************************************************************************
+ * at76_priv implementations of iw_handler functions:
+ */
+static int at76_iw_handler_commit(struct net_device *netdev,
+				  struct iw_request_info *info,
+				  void *null, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	at76_dbg(DBG_IOCTL, "%s %s: restarting the device", netdev->name,
+		 __func__);
+
+	if (priv->mac_state != MAC_INIT)
+		at76_quiesce(priv);
+
+	/* Wait half second before the restart to process subsequent
+	 * requests from the same iwconfig in a single restart */
+	schedule_delayed_work(&priv->dwork_restart, HZ / 2);
+
+	return 0;
+}
+
+static int at76_iw_handler_get_name(struct net_device *netdev,
+				    struct iw_request_info *info,
+				    char *name, char *extra)
+{
+	strcpy(name, "IEEE 802.11b");
+	at76_dbg(DBG_IOCTL, "%s: SIOCGIWNAME - name %s", netdev->name, name);
+	return 0;
+}
+
+static int at76_iw_handler_set_freq(struct net_device *netdev,
+				    struct iw_request_info *info,
+				    struct iw_freq *freq, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int chan = -1;
+	int ret = -EIWCOMMIT;
+	at76_dbg(DBG_IOCTL, "%s: SIOCSIWFREQ - freq.m %d freq.e %d",
+		 netdev->name, freq->m, freq->e);
+
+	if ((freq->e == 0) && (freq->m <= 1000))
+		/* Setting by channel number */
+		chan = freq->m;
+	else {
+		/* Setting by frequency - search the table */
+		int mult = 1;
+		int i;
+
+		for (i = 0; i < (6 - freq->e); i++)
+			mult *= 10;
+
+		for (i = 0; i < NUM_CHANNELS; i++) {
+			if (freq->m == (channel_frequency[i] * mult))
+				chan = i + 1;
+		}
+	}
+
+	if (chan < 1 || !priv->domain)
+		/* non-positive channels are invalid
+		 * we need a domain info to set the channel
+		 * either that or an invalid frequency was
+		 * provided by the user */
+		ret = -EINVAL;
+	else if (!(priv->domain->channel_map & (1 << (chan - 1)))) {
+		printk(KERN_INFO "%s: channel %d not allowed for domain %s\n",
+		       priv->netdev->name, chan, priv->domain->name);
+		ret = -EINVAL;
+	}
+
+	if (ret == -EIWCOMMIT) {
+		priv->channel = chan;
+		at76_dbg(DBG_IOCTL, "%s: SIOCSIWFREQ - ch %d", netdev->name,
+			 chan);
+	}
+
+	return ret;
+}
+
+static int at76_iw_handler_get_freq(struct net_device *netdev,
+				    struct iw_request_info *info,
+				    struct iw_freq *freq, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	freq->m = priv->channel;
+	freq->e = 0;
+
+	if (priv->channel)
+		at76_dbg(DBG_IOCTL, "%s: SIOCGIWFREQ - freq %ld x 10e%d",
+			 netdev->name, channel_frequency[priv->channel - 1], 6);
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCGIWFREQ - ch %d", netdev->name,
+		 priv->channel);
+
+	return 0;
+}
+
+static int at76_iw_handler_set_mode(struct net_device *netdev,
+				    struct iw_request_info *info,
+				    __u32 *mode, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCSIWMODE - %d", netdev->name, *mode);
+
+	if ((*mode != IW_MODE_ADHOC) && (*mode != IW_MODE_INFRA) &&
+	    (*mode != IW_MODE_MONITOR))
+		return -EINVAL;
+
+	priv->iw_mode = *mode;
+	if (priv->iw_mode != IW_MODE_INFRA)
+		priv->pm_mode = AT76_PM_OFF;
+
+	return -EIWCOMMIT;
+}
+
+static int at76_iw_handler_get_mode(struct net_device *netdev,
+				    struct iw_request_info *info,
+				    __u32 *mode, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	*mode = priv->iw_mode;
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCGIWMODE - %d", netdev->name, *mode);
+
+	return 0;
+}
+
+static int at76_iw_handler_get_range(struct net_device *netdev,
+				     struct iw_request_info *info,
+				     struct iw_point *data, char *extra)
+{
+	/* inspired by atmel.c */
+	struct at76_priv *priv = netdev_priv(netdev);
+	struct iw_range *range = (struct iw_range *)extra;
+	int i;
+
+	data->length = sizeof(struct iw_range);
+	memset(range, 0, sizeof(struct iw_range));
+
+	/* TODO: range->throughput = xxxxxx; */
+
+	range->min_nwid = 0x0000;
+	range->max_nwid = 0x0000;
+
+	/* this driver doesn't maintain sensitivity information */
+	range->sensitivity = 0;
+
+	range->max_qual.qual = 100;
+	range->max_qual.level = 100;
+	range->max_qual.noise = 0;
+	range->max_qual.updated = IW_QUAL_NOISE_INVALID;
+
+	range->avg_qual.qual = 50;
+	range->avg_qual.level = 50;
+	range->avg_qual.noise = 0;
+	range->avg_qual.updated = IW_QUAL_NOISE_INVALID;
+
+	range->bitrate[0] = 1000000;
+	range->bitrate[1] = 2000000;
+	range->bitrate[2] = 5500000;
+	range->bitrate[3] = 11000000;
+	range->num_bitrates = 4;
+
+	range->min_rts = 0;
+	range->max_rts = MAX_RTS_THRESHOLD;
+
+	range->min_frag = MIN_FRAG_THRESHOLD;
+	range->max_frag = MAX_FRAG_THRESHOLD;
+
+	range->pmp_flags = IW_POWER_PERIOD;
+	range->pmt_flags = IW_POWER_ON;
+	range->pm_capa = IW_POWER_PERIOD | IW_POWER_ALL_R;
+
+	range->encoding_size[0] = WEP_SMALL_KEY_LEN;
+	range->encoding_size[1] = WEP_LARGE_KEY_LEN;
+	range->num_encoding_sizes = 2;
+	range->max_encoding_tokens = WEP_KEYS;
+
+	/* both WL-240U and Linksys WUSB11 v2.6 specify 15 dBm as output power
+	   - take this for all (ignore antenna gains) */
+	range->txpower[0] = 15;
+	range->num_txpower = 1;
+	range->txpower_capa = IW_TXPOW_DBM;
+
+	range->we_version_source = WIRELESS_EXT;
+	range->we_version_compiled = WIRELESS_EXT;
+
+	/* same as the values used in atmel.c */
+	range->retry_capa = IW_RETRY_LIMIT;
+	range->retry_flags = IW_RETRY_LIMIT;
+	range->r_time_flags = 0;
+	range->min_retry = 1;
+	range->max_retry = 255;
+
+	range->num_channels = NUM_CHANNELS;
+	range->num_frequency = 0;
+
+	for (i = 0; i < NUM_CHANNELS; i++) {
+		/* test if channel map bit is raised */
+		if (priv->domain->channel_map & (0x1 << i)) {
+			range->num_frequency += 1;
+
+			range->freq[i].i = i + 1;
+			range->freq[i].m = channel_frequency[i] * 100000;
+			range->freq[i].e = 1;	/* freq * 10^1 */
+		}
+	}
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCGIWRANGE", netdev->name);
+
+	return 0;
+}
+
+static int at76_iw_handler_set_spy(struct net_device *netdev,
+				   struct iw_request_info *info,
+				   struct iw_point *data, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int ret = 0;
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCSIWSPY - number of addresses %d",
+		 netdev->name, data->length);
+
+	spin_lock_bh(&priv->spy_spinlock);
+	ret = iw_handler_set_spy(priv->netdev, info, (union iwreq_data *)data,
+				 extra);
+	spin_unlock_bh(&priv->spy_spinlock);
+
+	return ret;
+}
+
+static int at76_iw_handler_get_spy(struct net_device *netdev,
+				   struct iw_request_info *info,
+				   struct iw_point *data, char *extra)
+{
+
+	struct at76_priv *priv = netdev_priv(netdev);
+	int ret = 0;
+
+	spin_lock_bh(&priv->spy_spinlock);
+	ret = iw_handler_get_spy(priv->netdev, info,
+				 (union iwreq_data *)data, extra);
+	spin_unlock_bh(&priv->spy_spinlock);
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCGIWSPY - number of addresses %d",
+		 netdev->name, data->length);
+
+	return ret;
+}
+
+static int at76_iw_handler_set_thrspy(struct net_device *netdev,
+				      struct iw_request_info *info,
+				      struct iw_point *data, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int ret;
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCSIWTHRSPY - number of addresses %d)",
+		 netdev->name, data->length);
+
+	spin_lock_bh(&priv->spy_spinlock);
+	ret = iw_handler_set_thrspy(netdev, info, (union iwreq_data *)data,
+				    extra);
+	spin_unlock_bh(&priv->spy_spinlock);
+
+	return ret;
+}
+
+static int at76_iw_handler_get_thrspy(struct net_device *netdev,
+				      struct iw_request_info *info,
+				      struct iw_point *data, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int ret;
+
+	spin_lock_bh(&priv->spy_spinlock);
+	ret = iw_handler_get_thrspy(netdev, info, (union iwreq_data *)data,
+				    extra);
+	spin_unlock_bh(&priv->spy_spinlock);
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCGIWTHRSPY - number of addresses %d)",
+		 netdev->name, data->length);
+
+	return ret;
+}
+
+static int at76_iw_handler_set_wap(struct net_device *netdev,
+				   struct iw_request_info *info,
+				   struct sockaddr *ap_addr, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCSIWAP - wap/bssid %s", netdev->name,
+		 mac2str(ap_addr->sa_data));
+
+	/* if the incoming address == ff:ff:ff:ff:ff:ff, the user has
+	   chosen any or auto AP preference */
+	if (is_broadcast_ether_addr(ap_addr->sa_data)
+	    || is_zero_ether_addr(ap_addr->sa_data))
+		priv->wanted_bssid_valid = 0;
+	else {
+		/* user wants to set a preferred AP address */
+		priv->wanted_bssid_valid = 1;
+		memcpy(priv->wanted_bssid, ap_addr->sa_data, ETH_ALEN);
+	}
+
+	return -EIWCOMMIT;
+}
+
+static int at76_iw_handler_get_wap(struct net_device *netdev,
+				   struct iw_request_info *info,
+				   struct sockaddr *ap_addr, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	ap_addr->sa_family = ARPHRD_ETHER;
+	memcpy(ap_addr->sa_data, priv->bssid, ETH_ALEN);
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCGIWAP - wap/bssid %s", netdev->name,
+		 mac2str(ap_addr->sa_data));
+
+	return 0;
+}
+
+static int at76_iw_handler_set_scan(struct net_device *netdev,
+				    struct iw_request_info *info,
+				    union iwreq_data *wrqu, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int ret = 0;
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCSIWSCAN", netdev->name);
+
+	if (mutex_lock_interruptible(&priv->mtx))
+		return -EINTR;
+
+	if (!netif_running(netdev)) {
+		ret = -ENETDOWN;
+		goto exit;
+	}
+
+	/* jal: we don't allow "iwlist ethX scan" while we are
+	   in monitor mode */
+	if (priv->iw_mode == IW_MODE_MONITOR) {
+		ret = -EBUSY;
+		goto exit;
+	}
+
+	/* Discard old scan results */
+	if ((jiffies - priv->last_scan) > (20 * HZ))
+		priv->scan_state = SCAN_IDLE;
+	priv->last_scan = jiffies;
+
+	/* Initiate a scan command */
+	if (priv->scan_state == SCAN_IN_PROGRESS) {
+		ret = -EBUSY;
+		goto exit;
+	}
+
+	priv->scan_state = SCAN_IN_PROGRESS;
+
+	at76_quiesce(priv);
+
+	/* Try to do passive or active scan if WE asks as. */
+	if (wrqu->data.length
+	    && wrqu->data.length == sizeof(struct iw_scan_req)) {
+		struct iw_scan_req *req = (struct iw_scan_req *)extra;
+
+		if (req->scan_type == IW_SCAN_TYPE_PASSIVE)
+			priv->scan_mode = SCAN_TYPE_PASSIVE;
+		else if (req->scan_type == IW_SCAN_TYPE_ACTIVE)
+			priv->scan_mode = SCAN_TYPE_ACTIVE;
+
+		/* Sanity check values? */
+		if (req->min_channel_time > 0)
+			priv->scan_min_time = req->min_channel_time;
+
+		if (req->max_channel_time > 0)
+			priv->scan_max_time = req->max_channel_time;
+	}
+
+	/* change to scanning state */
+	at76_set_mac_state(priv, MAC_SCANNING);
+	schedule_work(&priv->work_start_scan);
+
+exit:
+	mutex_unlock(&priv->mtx);
+	return ret;
+}
+
+static int at76_iw_handler_get_scan(struct net_device *netdev,
+				    struct iw_request_info *info,
+				    struct iw_point *data, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	unsigned long flags;
+	struct list_head *lptr, *nptr;
+	struct bss_info *curr_bss;
+	struct iw_event *iwe = kmalloc(sizeof(struct iw_event), GFP_KERNEL);
+	char *curr_val, *curr_pos = extra;
+	int i;
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCGIWSCAN", netdev->name);
+
+	if (!iwe)
+		return -ENOMEM;
+
+	if (priv->scan_state != SCAN_COMPLETED)
+		/* scan not yet finished */
+		return -EAGAIN;
+
+	spin_lock_irqsave(&priv->bss_list_spinlock, flags);
+
+	list_for_each_safe(lptr, nptr, &priv->bss_list) {
+		curr_bss = list_entry(lptr, struct bss_info, list);
+
+		iwe->cmd = SIOCGIWAP;
+		iwe->u.ap_addr.sa_family = ARPHRD_ETHER;
+		memcpy(iwe->u.ap_addr.sa_data, curr_bss->bssid, 6);
+		curr_pos = iwe_stream_add_event(info, curr_pos,
+						extra + IW_SCAN_MAX_DATA, iwe,
+						IW_EV_ADDR_LEN);
+
+		iwe->u.data.length = curr_bss->ssid_len;
+		iwe->cmd = SIOCGIWESSID;
+		iwe->u.data.flags = 1;
+
+		curr_pos = iwe_stream_add_point(info, curr_pos,
+						extra + IW_SCAN_MAX_DATA, iwe,
+						curr_bss->ssid);
+
+		iwe->cmd = SIOCGIWMODE;
+		iwe->u.mode = (curr_bss->capa & WLAN_CAPABILITY_IBSS) ?
+		    IW_MODE_ADHOC :
+		    (curr_bss->capa & WLAN_CAPABILITY_ESS) ?
+		    IW_MODE_MASTER : IW_MODE_AUTO;
+		/* IW_MODE_AUTO = 0 which I thought is
+		 * the most logical value to return in this case */
+		curr_pos = iwe_stream_add_event(info, curr_pos,
+						extra + IW_SCAN_MAX_DATA, iwe,
+						IW_EV_UINT_LEN);
+
+		iwe->cmd = SIOCGIWFREQ;
+		iwe->u.freq.m = curr_bss->channel;
+		iwe->u.freq.e = 0;
+		curr_pos = iwe_stream_add_event(info, curr_pos,
+						extra + IW_SCAN_MAX_DATA, iwe,
+						IW_EV_FREQ_LEN);
+
+		iwe->cmd = SIOCGIWENCODE;
+		if (curr_bss->capa & WLAN_CAPABILITY_PRIVACY)
+			iwe->u.data.flags = IW_ENCODE_ENABLED | IW_ENCODE_NOKEY;
+		else
+			iwe->u.data.flags = IW_ENCODE_DISABLED;
+
+		iwe->u.data.length = 0;
+		curr_pos = iwe_stream_add_point(info, curr_pos,
+						extra + IW_SCAN_MAX_DATA, iwe,
+						NULL);
+
+		/* Add quality statistics */
+		iwe->cmd = IWEVQUAL;
+		iwe->u.qual.noise = 0;
+		iwe->u.qual.updated =
+		    IW_QUAL_NOISE_INVALID | IW_QUAL_LEVEL_UPDATED;
+		iwe->u.qual.level = (curr_bss->rssi * 100 / 42);
+		if (iwe->u.qual.level > 100)
+			iwe->u.qual.level = 100;
+		if (at76_is_intersil(priv->board_type))
+			iwe->u.qual.qual = curr_bss->link_qual;
+		else {
+			iwe->u.qual.qual = 0;
+			iwe->u.qual.updated |= IW_QUAL_QUAL_INVALID;
+		}
+		/* Add new value to event */
+		curr_pos = iwe_stream_add_event(info, curr_pos,
+						extra + IW_SCAN_MAX_DATA, iwe,
+						IW_EV_QUAL_LEN);
+
+		/* Rate: stuffing multiple values in a single event requires
+		 * a bit more of magic - Jean II */
+		curr_val = curr_pos + IW_EV_LCP_LEN;
+
+		iwe->cmd = SIOCGIWRATE;
+		/* Those two flags are ignored... */
+		iwe->u.bitrate.fixed = 0;
+		iwe->u.bitrate.disabled = 0;
+		/* Max 8 values */
+		for (i = 0; i < curr_bss->rates_len; i++) {
+			/* Bit rate given in 500 kb/s units (+ 0x80) */
+			iwe->u.bitrate.value =
+			    ((curr_bss->rates[i] & 0x7f) * 500000);
+			/* Add new value to event */
+			curr_val = iwe_stream_add_value(info, curr_pos,
+							curr_val,
+							extra +
+							IW_SCAN_MAX_DATA, iwe,
+							IW_EV_PARAM_LEN);
+		}
+
+		/* Check if we added any event */
+		if ((curr_val - curr_pos) > IW_EV_LCP_LEN)
+			curr_pos = curr_val;
+
+		/* more information may be sent back using IWECUSTOM */
+
+	}
+
+	spin_unlock_irqrestore(&priv->bss_list_spinlock, flags);
+
+	data->length = (curr_pos - extra);
+	data->flags = 0;
+
+	kfree(iwe);
+	return 0;
+}
+
+static int at76_iw_handler_set_essid(struct net_device *netdev,
+				     struct iw_request_info *info,
+				     struct iw_point *data, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCSIWESSID - %s", netdev->name, extra);
+
+	if (data->flags) {
+		memcpy(priv->essid, extra, data->length);
+		priv->essid_size = data->length;
+	} else
+		priv->essid_size = 0;	/* Use any SSID */
+
+	return -EIWCOMMIT;
+}
+
+static int at76_iw_handler_get_essid(struct net_device *netdev,
+				     struct iw_request_info *info,
+				     struct iw_point *data, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	if (priv->essid_size) {
+		/* not the ANY ssid in priv->essid */
+		data->flags = 1;
+		data->length = priv->essid_size;
+		memcpy(extra, priv->essid, data->length);
+	} else {
+		/* the ANY ssid was specified */
+		if (priv->mac_state == MAC_CONNECTED && priv->curr_bss) {
+			/* report the SSID we have found */
+			data->flags = 1;
+			data->length = priv->curr_bss->ssid_len;
+			memcpy(extra, priv->curr_bss->ssid, data->length);
+		} else {
+			/* report ANY back */
+			data->flags = 0;
+			data->length = 0;
+		}
+	}
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCGIWESSID - %.*s", netdev->name,
+		 data->length, extra);
+
+	return 0;
+}
+
+static int at76_iw_handler_set_rate(struct net_device *netdev,
+				    struct iw_request_info *info,
+				    struct iw_param *bitrate, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int ret = -EIWCOMMIT;
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCSIWRATE - %d", netdev->name,
+		 bitrate->value);
+
+	switch (bitrate->value) {
+	case -1:
+		priv->txrate = TX_RATE_AUTO;
+		break;		/* auto rate */
+	case 1000000:
+		priv->txrate = TX_RATE_1MBIT;
+		break;
+	case 2000000:
+		priv->txrate = TX_RATE_2MBIT;
+		break;
+	case 5500000:
+		priv->txrate = TX_RATE_5_5MBIT;
+		break;
+	case 11000000:
+		priv->txrate = TX_RATE_11MBIT;
+		break;
+	default:
+		ret = -EINVAL;
+	}
+
+	return ret;
+}
+
+static int at76_iw_handler_get_rate(struct net_device *netdev,
+				    struct iw_request_info *info,
+				    struct iw_param *bitrate, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int ret = 0;
+
+	switch (priv->txrate) {
+		/* return max rate if RATE_AUTO */
+	case TX_RATE_AUTO:
+		bitrate->value = 11000000;
+		break;
+	case TX_RATE_1MBIT:
+		bitrate->value = 1000000;
+		break;
+	case TX_RATE_2MBIT:
+		bitrate->value = 2000000;
+		break;
+	case TX_RATE_5_5MBIT:
+		bitrate->value = 5500000;
+		break;
+	case TX_RATE_11MBIT:
+		bitrate->value = 11000000;
+		break;
+	default:
+		ret = -EINVAL;
+	}
+
+	bitrate->fixed = (priv->txrate != TX_RATE_AUTO);
+	bitrate->disabled = 0;
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCGIWRATE - %d", netdev->name,
+		 bitrate->value);
+
+	return ret;
+}
+
+static int at76_iw_handler_set_rts(struct net_device *netdev,
+				   struct iw_request_info *info,
+				   struct iw_param *rts, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int ret = -EIWCOMMIT;
+	int rthr = rts->value;
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCSIWRTS - value %d disabled %s",
+		 netdev->name, rts->value, (rts->disabled) ? "true" : "false");
+
+	if (rts->disabled)
+		rthr = MAX_RTS_THRESHOLD;
+
+	if ((rthr < 0) || (rthr > MAX_RTS_THRESHOLD))
+		ret = -EINVAL;
+	else
+		priv->rts_threshold = rthr;
+
+	return ret;
+}
+
+static int at76_iw_handler_get_rts(struct net_device *netdev,
+				   struct iw_request_info *info,
+				   struct iw_param *rts, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	rts->value = priv->rts_threshold;
+	rts->disabled = (rts->value >= MAX_RTS_THRESHOLD);
+	rts->fixed = 1;
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCGIWRTS - value %d disabled %s",
+		 netdev->name, rts->value, (rts->disabled) ? "true" : "false");
+
+	return 0;
+}
+
+static int at76_iw_handler_set_frag(struct net_device *netdev,
+				    struct iw_request_info *info,
+				    struct iw_param *frag, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int ret = -EIWCOMMIT;
+	int fthr = frag->value;
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCSIWFRAG - value %d, disabled %s",
+		 netdev->name, frag->value,
+		 (frag->disabled) ? "true" : "false");
+
+	if (frag->disabled)
+		fthr = MAX_FRAG_THRESHOLD;
+
+	if ((fthr < MIN_FRAG_THRESHOLD) || (fthr > MAX_FRAG_THRESHOLD))
+		ret = -EINVAL;
+	else
+		priv->frag_threshold = fthr & ~0x1;	/* get an even value */
+
+	return ret;
+}
+
+static int at76_iw_handler_get_frag(struct net_device *netdev,
+				    struct iw_request_info *info,
+				    struct iw_param *frag, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	frag->value = priv->frag_threshold;
+	frag->disabled = (frag->value >= MAX_FRAG_THRESHOLD);
+	frag->fixed = 1;
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCGIWFRAG - value %d, disabled %s",
+		 netdev->name, frag->value,
+		 (frag->disabled) ? "true" : "false");
+
+	return 0;
+}
+
+static int at76_iw_handler_get_txpow(struct net_device *netdev,
+				     struct iw_request_info *info,
+				     struct iw_param *power, char *extra)
+{
+	power->value = 15;
+	power->fixed = 1;	/* No power control */
+	power->disabled = 0;
+	power->flags = IW_TXPOW_DBM;
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCGIWTXPOW - txpow %d dBm", netdev->name,
+		 power->value);
+
+	return 0;
+}
+
+/* jal: short retry is handled by the firmware (at least 0.90.x),
+   while long retry is not (?) */
+static int at76_iw_handler_set_retry(struct net_device *netdev,
+				     struct iw_request_info *info,
+				     struct iw_param *retry, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int ret = -EIWCOMMIT;
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCSIWRETRY disabled %d flags 0x%x val %d",
+		 netdev->name, retry->disabled, retry->flags, retry->value);
+
+	if (!retry->disabled && (retry->flags & IW_RETRY_LIMIT)) {
+		if ((retry->flags & IW_RETRY_MIN) ||
+		    !(retry->flags & IW_RETRY_MAX))
+			priv->short_retry_limit = retry->value;
+		else
+			ret = -EINVAL;
+	} else
+		ret = -EINVAL;
+
+	return ret;
+}
+
+/* Adapted (ripped) from atmel.c */
+static int at76_iw_handler_get_retry(struct net_device *netdev,
+				     struct iw_request_info *info,
+				     struct iw_param *retry, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCGIWRETRY", netdev->name);
+
+	retry->disabled = 0;	/* Can't be disabled */
+	retry->flags = IW_RETRY_LIMIT;
+	retry->value = priv->short_retry_limit;
+
+	return 0;
+}
+
+static int at76_iw_handler_set_encode(struct net_device *netdev,
+				      struct iw_request_info *info,
+				      struct iw_point *encoding, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int index = (encoding->flags & IW_ENCODE_INDEX) - 1;
+	int len = encoding->length;
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCSIWENCODE - enc.flags %08x "
+		 "pointer %p len %d", netdev->name, encoding->flags,
+		 encoding->pointer, encoding->length);
+	at76_dbg(DBG_IOCTL,
+		 "%s: SIOCSIWENCODE - old wepstate: enabled %s key_id %d "
+		 "auth_mode %s", netdev->name,
+		 (priv->wep_enabled) ? "true" : "false", priv->wep_key_id,
+		 (priv->auth_mode ==
+		  WLAN_AUTH_SHARED_KEY) ? "restricted" : "open");
+
+	/* take the old default key if index is invalid */
+	if ((index < 0) || (index >= WEP_KEYS))
+		index = priv->wep_key_id;
+
+	if (len > 0) {
+		if (len > WEP_LARGE_KEY_LEN)
+			len = WEP_LARGE_KEY_LEN;
+
+		memset(priv->wep_keys[index], 0, WEP_KEY_LEN);
+		memcpy(priv->wep_keys[index], extra, len);
+		priv->wep_keys_len[index] = (len <= WEP_SMALL_KEY_LEN) ?
+		    WEP_SMALL_KEY_LEN : WEP_LARGE_KEY_LEN;
+		priv->wep_enabled = 1;
+	}
+
+	priv->wep_key_id = index;
+	priv->wep_enabled = ((encoding->flags & IW_ENCODE_DISABLED) == 0);
+
+	if (encoding->flags & IW_ENCODE_RESTRICTED)
+		priv->auth_mode = WLAN_AUTH_SHARED_KEY;
+	if (encoding->flags & IW_ENCODE_OPEN)
+		priv->auth_mode = WLAN_AUTH_OPEN;
+
+	at76_dbg(DBG_IOCTL,
+		 "%s: SIOCSIWENCODE - new wepstate: enabled %s key_id %d "
+		 "key_len %d auth_mode %s", netdev->name,
+		 (priv->wep_enabled) ? "true" : "false", priv->wep_key_id + 1,
+		 priv->wep_keys_len[priv->wep_key_id],
+		 (priv->auth_mode ==
+		  WLAN_AUTH_SHARED_KEY) ? "restricted" : "open");
+
+	return -EIWCOMMIT;
+}
+
+static int at76_iw_handler_get_encode(struct net_device *netdev,
+				      struct iw_request_info *info,
+				      struct iw_point *encoding, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int index = (encoding->flags & IW_ENCODE_INDEX) - 1;
+
+	if ((index < 0) || (index >= WEP_KEYS))
+		index = priv->wep_key_id;
+
+	encoding->flags =
+	    (priv->auth_mode == WLAN_AUTH_SHARED_KEY) ?
+	    IW_ENCODE_RESTRICTED : IW_ENCODE_OPEN;
+
+	if (!priv->wep_enabled)
+		encoding->flags |= IW_ENCODE_DISABLED;
+
+	if (encoding->pointer) {
+		encoding->length = priv->wep_keys_len[index];
+
+		memcpy(extra, priv->wep_keys[index], priv->wep_keys_len[index]);
+
+		encoding->flags |= (index + 1);
+	}
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCGIWENCODE - enc.flags %08x "
+		 "pointer %p len %d", netdev->name, encoding->flags,
+		 encoding->pointer, encoding->length);
+	at76_dbg(DBG_IOCTL,
+		 "%s: SIOCGIWENCODE - wepstate: enabled %s key_id %d "
+		 "key_len %d auth_mode %s", netdev->name,
+		 (priv->wep_enabled) ? "true" : "false", priv->wep_key_id + 1,
+		 priv->wep_keys_len[priv->wep_key_id],
+		 (priv->auth_mode ==
+		  WLAN_AUTH_SHARED_KEY) ? "restricted" : "open");
+
+	return 0;
+}
+
+static int at76_iw_handler_set_power(struct net_device *netdev,
+				     struct iw_request_info *info,
+				     struct iw_param *prq, char *extra)
+{
+	int err = -EIWCOMMIT;
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	at76_dbg(DBG_IOCTL,
+		 "%s: SIOCSIWPOWER - disabled %s flags 0x%x value 0x%x",
+		 netdev->name, (prq->disabled) ? "true" : "false", prq->flags,
+		 prq->value);
+
+	if (prq->disabled)
+		priv->pm_mode = AT76_PM_OFF;
+	else {
+		switch (prq->flags & IW_POWER_MODE) {
+		case IW_POWER_ALL_R:
+		case IW_POWER_ON:
+			break;
+		default:
+			err = -EINVAL;
+			goto exit;
+		}
+		if (prq->flags & IW_POWER_PERIOD)
+			priv->pm_period = prq->value;
+
+		if (prq->flags & IW_POWER_TIMEOUT) {
+			err = -EINVAL;
+			goto exit;
+		}
+		priv->pm_mode = AT76_PM_ON;
+	}
+exit:
+	return err;
+}
+
+static int at76_iw_handler_get_power(struct net_device *netdev,
+				     struct iw_request_info *info,
+				     struct iw_param *power, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	power->disabled = (priv->pm_mode == AT76_PM_OFF);
+	if (!power->disabled) {
+		power->flags = IW_POWER_PERIOD | IW_POWER_ALL_R;
+		power->value = priv->pm_period;
+	}
+
+	at76_dbg(DBG_IOCTL, "%s: SIOCGIWPOWER - %s flags 0x%x value 0x%x",
+		 netdev->name, power->disabled ? "disabled" : "enabled",
+		 power->flags, power->value);
+
+	return 0;
+}
+
+/*******************************************************************************
+ * Private IOCTLS
+ */
+static int at76_iw_set_short_preamble(struct net_device *netdev,
+				      struct iw_request_info *info, char *name,
+				      char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int val = *((int *)name);
+	int ret = -EIWCOMMIT;
+
+	at76_dbg(DBG_IOCTL, "%s: AT76_SET_SHORT_PREAMBLE, %d",
+		 netdev->name, val);
+
+	if (val < PREAMBLE_TYPE_LONG || val > PREAMBLE_TYPE_AUTO)
+		ret = -EINVAL;
+	else
+		priv->preamble_type = val;
+
+	return ret;
+}
+
+static int at76_iw_get_short_preamble(struct net_device *netdev,
+				      struct iw_request_info *info,
+				      union iwreq_data *wrqu, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	snprintf(wrqu->name, sizeof(wrqu->name), "%s (%d)",
+		 preambles[priv->preamble_type], priv->preamble_type);
+	return 0;
+}
+
+static int at76_iw_set_debug(struct net_device *netdev,
+			     struct iw_request_info *info,
+			     struct iw_point *data, char *extra)
+{
+	char *ptr;
+	u32 val;
+
+	if (data->length > 0) {
+		val = simple_strtol(extra, &ptr, 0);
+
+		if (ptr == extra)
+			val = DBG_DEFAULTS;
+
+		at76_dbg(DBG_IOCTL, "%s: AT76_SET_DEBUG input %d: %s -> 0x%x",
+			 netdev->name, data->length, extra, val);
+	} else
+		val = DBG_DEFAULTS;
+
+	at76_dbg(DBG_IOCTL, "%s: AT76_SET_DEBUG, old 0x%x, new 0x%x",
+		 netdev->name, at76_debug, val);
+
+	/* jal: some more output to pin down lockups */
+	at76_dbg(DBG_IOCTL, "%s: netif running %d queue_stopped %d "
+		 "carrier_ok %d", netdev->name, netif_running(netdev),
+		 netif_queue_stopped(netdev), netif_carrier_ok(netdev));
+
+	at76_debug = val;
+
+	return 0;
+}
+
+static int at76_iw_get_debug(struct net_device *netdev,
+			     struct iw_request_info *info,
+			     union iwreq_data *wrqu, char *extra)
+{
+	snprintf(wrqu->name, sizeof(wrqu->name), "0x%08x", at76_debug);
+	return 0;
+}
+
+static int at76_iw_set_powersave_mode(struct net_device *netdev,
+				      struct iw_request_info *info, char *name,
+				      char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int val = *((int *)name);
+	int ret = -EIWCOMMIT;
+
+	at76_dbg(DBG_IOCTL, "%s: AT76_SET_POWERSAVE_MODE, %d (%s)",
+		 netdev->name, val,
+		 val == AT76_PM_OFF ? "active" : val == AT76_PM_ON ? "save" :
+		 val == AT76_PM_SMART ? "smart save" : "<invalid>");
+	if (val < AT76_PM_OFF || val > AT76_PM_SMART)
+		ret = -EINVAL;
+	else
+		priv->pm_mode = val;
+
+	return ret;
+}
+
+static int at76_iw_get_powersave_mode(struct net_device *netdev,
+				      struct iw_request_info *info,
+				      union iwreq_data *wrqu, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int *param = (int *)extra;
+
+	param[0] = priv->pm_mode;
+	return 0;
+}
+
+static int at76_iw_set_scan_times(struct net_device *netdev,
+				  struct iw_request_info *info, char *name,
+				  char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int mint = *((int *)name);
+	int maxt = *((int *)name + 1);
+	int ret = -EIWCOMMIT;
+
+	at76_dbg(DBG_IOCTL, "%s: AT76_SET_SCAN_TIMES - min %d max %d",
+		 netdev->name, mint, maxt);
+	if (mint <= 0 || maxt <= 0 || mint > maxt)
+		ret = -EINVAL;
+	else {
+		priv->scan_min_time = mint;
+		priv->scan_max_time = maxt;
+	}
+
+	return ret;
+}
+
+static int at76_iw_get_scan_times(struct net_device *netdev,
+				  struct iw_request_info *info,
+				  union iwreq_data *wrqu, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int *param = (int *)extra;
+
+	param[0] = priv->scan_min_time;
+	param[1] = priv->scan_max_time;
+	return 0;
+}
+
+static int at76_iw_set_scan_mode(struct net_device *netdev,
+				 struct iw_request_info *info, char *name,
+				 char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int val = *((int *)name);
+	int ret = -EIWCOMMIT;
+
+	at76_dbg(DBG_IOCTL, "%s: AT76_SET_SCAN_MODE - mode %s",
+		 netdev->name, (val = SCAN_TYPE_ACTIVE) ? "active" :
+		 (val = SCAN_TYPE_PASSIVE) ? "passive" : "<invalid>");
+
+	if (val != SCAN_TYPE_ACTIVE && val != SCAN_TYPE_PASSIVE)
+		ret = -EINVAL;
+	else
+		priv->scan_mode = val;
+
+	return ret;
+}
+
+static int at76_iw_get_scan_mode(struct net_device *netdev,
+				 struct iw_request_info *info,
+				 union iwreq_data *wrqu, char *extra)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int *param = (int *)extra;
+
+	param[0] = priv->scan_mode;
+	return 0;
+}
+
+#define AT76_SET_HANDLER(h, f) [h - SIOCIWFIRST] = (iw_handler) f
+
+/* Standard wireless handlers */
+static const iw_handler at76_handlers[] = {
+	AT76_SET_HANDLER(SIOCSIWCOMMIT, at76_iw_handler_commit),
+	AT76_SET_HANDLER(SIOCGIWNAME, at76_iw_handler_get_name),
+	AT76_SET_HANDLER(SIOCSIWFREQ, at76_iw_handler_set_freq),
+	AT76_SET_HANDLER(SIOCGIWFREQ, at76_iw_handler_get_freq),
+	AT76_SET_HANDLER(SIOCSIWMODE, at76_iw_handler_set_mode),
+	AT76_SET_HANDLER(SIOCGIWMODE, at76_iw_handler_get_mode),
+	AT76_SET_HANDLER(SIOCGIWRANGE, at76_iw_handler_get_range),
+	AT76_SET_HANDLER(SIOCSIWSPY, at76_iw_handler_set_spy),
+	AT76_SET_HANDLER(SIOCGIWSPY, at76_iw_handler_get_spy),
+	AT76_SET_HANDLER(SIOCSIWTHRSPY, at76_iw_handler_set_thrspy),
+	AT76_SET_HANDLER(SIOCGIWTHRSPY, at76_iw_handler_get_thrspy),
+	AT76_SET_HANDLER(SIOCSIWAP, at76_iw_handler_set_wap),
+	AT76_SET_HANDLER(SIOCGIWAP, at76_iw_handler_get_wap),
+	AT76_SET_HANDLER(SIOCSIWSCAN, at76_iw_handler_set_scan),
+	AT76_SET_HANDLER(SIOCGIWSCAN, at76_iw_handler_get_scan),
+	AT76_SET_HANDLER(SIOCSIWESSID, at76_iw_handler_set_essid),
+	AT76_SET_HANDLER(SIOCGIWESSID, at76_iw_handler_get_essid),
+	AT76_SET_HANDLER(SIOCSIWRATE, at76_iw_handler_set_rate),
+	AT76_SET_HANDLER(SIOCGIWRATE, at76_iw_handler_get_rate),
+	AT76_SET_HANDLER(SIOCSIWRTS, at76_iw_handler_set_rts),
+	AT76_SET_HANDLER(SIOCGIWRTS, at76_iw_handler_get_rts),
+	AT76_SET_HANDLER(SIOCSIWFRAG, at76_iw_handler_set_frag),
+	AT76_SET_HANDLER(SIOCGIWFRAG, at76_iw_handler_get_frag),
+	AT76_SET_HANDLER(SIOCGIWTXPOW, at76_iw_handler_get_txpow),
+	AT76_SET_HANDLER(SIOCSIWRETRY, at76_iw_handler_set_retry),
+	AT76_SET_HANDLER(SIOCGIWRETRY, at76_iw_handler_get_retry),
+	AT76_SET_HANDLER(SIOCSIWENCODE, at76_iw_handler_set_encode),
+	AT76_SET_HANDLER(SIOCGIWENCODE, at76_iw_handler_get_encode),
+	AT76_SET_HANDLER(SIOCSIWPOWER, at76_iw_handler_set_power),
+	AT76_SET_HANDLER(SIOCGIWPOWER, at76_iw_handler_get_power)
+};
+
+#define AT76_SET_PRIV(h, f) [h - SIOCIWFIRSTPRIV] = (iw_handler) f
+
+/* Private wireless handlers */
+static const iw_handler at76_priv_handlers[] = {
+	AT76_SET_PRIV(AT76_SET_SHORT_PREAMBLE, at76_iw_set_short_preamble),
+	AT76_SET_PRIV(AT76_GET_SHORT_PREAMBLE, at76_iw_get_short_preamble),
+	AT76_SET_PRIV(AT76_SET_DEBUG, at76_iw_set_debug),
+	AT76_SET_PRIV(AT76_GET_DEBUG, at76_iw_get_debug),
+	AT76_SET_PRIV(AT76_SET_POWERSAVE_MODE, at76_iw_set_powersave_mode),
+	AT76_SET_PRIV(AT76_GET_POWERSAVE_MODE, at76_iw_get_powersave_mode),
+	AT76_SET_PRIV(AT76_SET_SCAN_TIMES, at76_iw_set_scan_times),
+	AT76_SET_PRIV(AT76_GET_SCAN_TIMES, at76_iw_get_scan_times),
+	AT76_SET_PRIV(AT76_SET_SCAN_MODE, at76_iw_set_scan_mode),
+	AT76_SET_PRIV(AT76_GET_SCAN_MODE, at76_iw_get_scan_mode),
+};
+
+/* Names and arguments of private wireless handlers */
+static const struct iw_priv_args at76_priv_args[] = {
+	/* 0 - long, 1 - short */
+	{AT76_SET_SHORT_PREAMBLE,
+	 IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 1, 0, "set_preamble"},
+
+	{AT76_GET_SHORT_PREAMBLE,
+	 0, IW_PRIV_TYPE_CHAR | IW_PRIV_SIZE_FIXED | 10, "get_preamble"},
+
+	/* we must pass the new debug mask as a string, because iwpriv cannot
+	 * parse hex numbers starting with 0x :-(  */
+	{AT76_SET_DEBUG,
+	 IW_PRIV_TYPE_CHAR | 10, 0, "set_debug"},
+
+	{AT76_GET_DEBUG,
+	 0, IW_PRIV_TYPE_CHAR | IW_PRIV_SIZE_FIXED | 10, "get_debug"},
+
+	/* 1 - active, 2 - power save, 3 - smart power save */
+	{AT76_SET_POWERSAVE_MODE,
+	 IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 1, 0, "set_powersave"},
+
+	{AT76_GET_POWERSAVE_MODE,
+	 0, IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 1, "get_powersave"},
+
+	/* min_channel_time, max_channel_time */
+	{AT76_SET_SCAN_TIMES,
+	 IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 2, 0, "set_scan_times"},
+
+	{AT76_GET_SCAN_TIMES,
+	 0, IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 2, "get_scan_times"},
+
+	/* 0 - active, 1 - passive scan */
+	{AT76_SET_SCAN_MODE,
+	 IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 1, 0, "set_scan_mode"},
+
+	{AT76_GET_SCAN_MODE,
+	 0, IW_PRIV_TYPE_INT | IW_PRIV_SIZE_FIXED | 1, "get_scan_mode"},
+};
+
+static const struct iw_handler_def at76_handler_def = {
+	.num_standard = ARRAY_SIZE(at76_handlers),
+	.num_private = ARRAY_SIZE(at76_priv_handlers),
+	.num_private_args = ARRAY_SIZE(at76_priv_args),
+	.standard = at76_handlers,
+	.private = at76_priv_handlers,
+	.private_args = at76_priv_args,
+	.get_wireless_stats = at76_get_wireless_stats,
+};
+
+static const u8 snapsig[] = { 0xaa, 0xaa, 0x03 };
+
+/* RFC 1042 encapsulates Ethernet frames in 802.2 SNAP (0xaa, 0xaa, 0x03) with
+ * a SNAP OID of 0 (0x00, 0x00, 0x00) */
+static const u8 rfc1042sig[] = { 0xaa, 0xaa, 0x03, 0x00, 0x00, 0x00 };
+
+static int at76_tx(struct sk_buff *skb, struct net_device *netdev)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	struct net_device_stats *stats = &priv->stats;
+	int ret = 0;
+	int wlen;
+	int submit_len;
+	struct at76_tx_buffer *tx_buffer = priv->bulk_out_buffer;
+	struct ieee80211_hdr_3addr *i802_11_hdr =
+	    (struct ieee80211_hdr_3addr *)tx_buffer->packet;
+	u8 *payload = i802_11_hdr->payload;
+	struct ethhdr *eh = (struct ethhdr *)skb->data;
+
+	if (netif_queue_stopped(netdev)) {
+		printk(KERN_ERR "%s: %s called while netdev is stopped\n",
+		       netdev->name, __func__);
+		/* skip this packet */
+		dev_kfree_skb(skb);
+		return 0;
+	}
+
+	if (priv->tx_urb->status == -EINPROGRESS) {
+		printk(KERN_ERR "%s: %s called while tx urb is pending\n",
+		       netdev->name, __func__);
+		/* skip this packet */
+		dev_kfree_skb(skb);
+		return 0;
+	}
+
+	if (skb->len < ETH_HLEN) {
+		printk(KERN_ERR "%s: %s: skb too short (%d)\n",
+		       netdev->name, __func__, skb->len);
+		dev_kfree_skb(skb);
+		return 0;
+	}
+
+	at76_ledtrig_tx_activity();	/* tell ledtrigger we send a packet */
+
+	/* we can get rid of memcpy if we set netdev->hard_header_len to
+	   reserve enough space, but we would need to keep the skb around */
+
+	if (ntohs(eh->h_proto) <= ETH_DATA_LEN) {
+		/* this is a 802.3 packet */
+		if (skb->len >= ETH_HLEN + sizeof(rfc1042sig)
+		    && skb->data[ETH_HLEN] == rfc1042sig[0]
+		    && skb->data[ETH_HLEN + 1] == rfc1042sig[1]) {
+			/* higher layer delivered SNAP header - keep it */
+			memcpy(payload, skb->data + ETH_HLEN,
+			       skb->len - ETH_HLEN);
+			wlen = IEEE80211_3ADDR_LEN + skb->len - ETH_HLEN;
+		} else {
+			printk(KERN_ERR "%s: dropping non-SNAP 802.2 packet "
+			       "(DSAP 0x%02x SSAP 0x%02x cntrl 0x%02x)\n",
+			       priv->netdev->name, skb->data[ETH_HLEN],
+			       skb->data[ETH_HLEN + 1],
+			       skb->data[ETH_HLEN + 2]);
+			dev_kfree_skb(skb);
+			return 0;
+		}
+	} else {
+		/* add RFC 1042 header in front */
+		memcpy(payload, rfc1042sig, sizeof(rfc1042sig));
+		memcpy(payload + sizeof(rfc1042sig), &eh->h_proto,
+		       skb->len - offsetof(struct ethhdr, h_proto));
+		wlen = IEEE80211_3ADDR_LEN + sizeof(rfc1042sig) + skb->len -
+		    offsetof(struct ethhdr, h_proto);
+	}
+
+	/* make wireless header */
+	i802_11_hdr->frame_ctl =
+	    cpu_to_le16(IEEE80211_FTYPE_DATA |
+			(priv->wep_enabled ? IEEE80211_FCTL_PROTECTED : 0) |
+			(priv->iw_mode ==
+			 IW_MODE_INFRA ? IEEE80211_FCTL_TODS : 0));
+
+	if (priv->iw_mode == IW_MODE_ADHOC) {
+		memcpy(i802_11_hdr->addr1, eh->h_dest, ETH_ALEN);
+		memcpy(i802_11_hdr->addr2, eh->h_source, ETH_ALEN);
+		memcpy(i802_11_hdr->addr3, priv->bssid, ETH_ALEN);
+	} else if (priv->iw_mode == IW_MODE_INFRA) {
+		memcpy(i802_11_hdr->addr1, priv->bssid, ETH_ALEN);
+		memcpy(i802_11_hdr->addr2, eh->h_source, ETH_ALEN);
+		memcpy(i802_11_hdr->addr3, eh->h_dest, ETH_ALEN);
+	}
+
+	i802_11_hdr->duration_id = cpu_to_le16(0);
+	i802_11_hdr->seq_ctl = cpu_to_le16(0);
+
+	/* setup 'Atmel' header */
+	tx_buffer->wlength = cpu_to_le16(wlen);
+	tx_buffer->tx_rate = priv->txrate;
+	/* for broadcast destination addresses, the firmware 0.100.x
+	   seems to choose the highest rate set with CMD_STARTUP in
+	   basic_rate_set replacing this value */
+
+	memset(tx_buffer->reserved, 0, sizeof(tx_buffer->reserved));
+
+	tx_buffer->padding = at76_calc_padding(wlen);
+	submit_len = wlen + AT76_TX_HDRLEN + tx_buffer->padding;
+
+	at76_dbg(DBG_TX_DATA_CONTENT, "%s skb->data %s", priv->netdev->name,
+		 hex2str(skb->data, 32));
+	at76_dbg(DBG_TX_DATA, "%s tx: wlen 0x%x pad 0x%x rate %d hdr %s",
+		 priv->netdev->name,
+		 le16_to_cpu(tx_buffer->wlength),
+		 tx_buffer->padding, tx_buffer->tx_rate,
+		 hex2str(i802_11_hdr, sizeof(*i802_11_hdr)));
+	at76_dbg(DBG_TX_DATA_CONTENT, "%s payload %s", priv->netdev->name,
+		 hex2str(payload, 48));
+
+	/* send stuff */
+	netif_stop_queue(netdev);
+	netdev->trans_start = jiffies;
+
+	usb_fill_bulk_urb(priv->tx_urb, priv->udev, priv->tx_pipe, tx_buffer,
+			  submit_len, at76_tx_callback, priv);
+	ret = usb_submit_urb(priv->tx_urb, GFP_ATOMIC);
+	if (ret) {
+		stats->tx_errors++;
+		printk(KERN_ERR "%s: error in tx submit urb: %d\n",
+		       netdev->name, ret);
+		if (ret == -EINVAL)
+			printk(KERN_ERR
+			       "%s: -EINVAL: tx urb %p hcpriv %p complete %p\n",
+			       priv->netdev->name, priv->tx_urb,
+			       priv->tx_urb->hcpriv, priv->tx_urb->complete);
+	} else {
+		stats->tx_bytes += skb->len;
+		dev_kfree_skb(skb);
+	}
+
+	return ret;
+}
+
+static void at76_tx_timeout(struct net_device *netdev)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	if (!priv)
+		return;
+	dev_warn(&netdev->dev, "tx timeout.");
+
+	usb_unlink_urb(priv->tx_urb);
+	priv->stats.tx_errors++;
+}
+
+static int at76_submit_rx_urb(struct at76_priv *priv)
+{
+	int ret;
+	int size;
+	struct sk_buff *skb = priv->rx_skb;
+
+	if (!priv->rx_urb) {
+		printk(KERN_ERR "%s: %s: priv->rx_urb is NULL\n",
+		       priv->netdev->name, __func__);
+		return -EFAULT;
+	}
+
+	if (!skb) {
+		skb = dev_alloc_skb(sizeof(struct at76_rx_buffer));
+		if (!skb) {
+			printk(KERN_ERR "%s: cannot allocate rx skbuff\n",
+			       priv->netdev->name);
+			ret = -ENOMEM;
+			goto exit;
+		}
+		priv->rx_skb = skb;
+	} else {
+		skb_push(skb, skb_headroom(skb));
+		skb_trim(skb, 0);
+	}
+
+	size = skb_tailroom(skb);
+	usb_fill_bulk_urb(priv->rx_urb, priv->udev, priv->rx_pipe,
+			  skb_put(skb, size), size, at76_rx_callback, priv);
+	ret = usb_submit_urb(priv->rx_urb, GFP_ATOMIC);
+	if (ret < 0) {
+		if (ret == -ENODEV)
+			at76_dbg(DBG_DEVSTART,
+				 "usb_submit_urb returned -ENODEV");
+		else
+			printk(KERN_ERR "%s: rx, usb_submit_urb failed: %d\n",
+			       priv->netdev->name, ret);
+	}
+
+exit:
+	if (ret < 0 && ret != -ENODEV)
+		printk(KERN_ERR "%s: cannot submit rx urb - please unload the "
+		       "driver and/or power cycle the device\n",
+		       priv->netdev->name);
+
+	return ret;
+}
+
+static int at76_open(struct net_device *netdev)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	int ret = 0;
+
+	at76_dbg(DBG_PROC_ENTRY, "%s(): entry", __func__);
+
+	if (mutex_lock_interruptible(&priv->mtx))
+		return -EINTR;
+
+	/* if netdev->dev_addr != priv->mac_addr we must
+	   set the mac address in the device ! */
+	if (compare_ether_addr(netdev->dev_addr, priv->mac_addr)) {
+		if (at76_add_mac_address(priv, netdev->dev_addr) >= 0)
+			at76_dbg(DBG_PROGRESS, "%s: set new MAC addr %s",
+				 netdev->name, mac2str(netdev->dev_addr));
+	}
+
+	priv->scan_state = SCAN_IDLE;
+	priv->last_scan = jiffies;
+
+	ret = at76_submit_rx_urb(priv);
+	if (ret < 0) {
+		printk(KERN_ERR "%s: open: submit_rx_urb failed: %d\n",
+		       netdev->name, ret);
+		goto error;
+	}
+
+	schedule_delayed_work(&priv->dwork_restart, 0);
+
+	at76_dbg(DBG_PROC_ENTRY, "%s(): end", __func__);
+error:
+	mutex_unlock(&priv->mtx);
+	return ret < 0 ? ret : 0;
+}
+
+static int at76_stop(struct net_device *netdev)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	at76_dbg(DBG_DEVSTART, "%s: ENTER", __func__);
+
+	if (mutex_lock_interruptible(&priv->mtx))
+		return -EINTR;
+
+	at76_quiesce(priv);
+
+	if (!priv->device_unplugged) {
+		/* We are called by "ifconfig ethX down", not because the
+		 * device is not available anymore. */
+		at76_set_radio(priv, 0);
+
+		/* We unlink rx_urb because at76_open() re-submits it.
+		 * If unplugged, at76_delete_device() takes care of it. */
+		usb_kill_urb(priv->rx_urb);
+	}
+
+	/* free the bss_list */
+	at76_free_bss_list(priv);
+
+	mutex_unlock(&priv->mtx);
+	at76_dbg(DBG_DEVSTART, "%s: EXIT", __func__);
+
+	return 0;
+}
+
+static void at76_ethtool_get_drvinfo(struct net_device *netdev,
+				     struct ethtool_drvinfo *info)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+
+	strncpy(info->driver, DRIVER_NAME, sizeof(info->driver));
+	strncpy(info->version, DRIVER_VERSION, sizeof(info->version));
+
+	usb_make_path(priv->udev, info->bus_info, sizeof(info->bus_info));
+
+	snprintf(info->fw_version, sizeof(info->fw_version), "%d.%d.%d-%d",
+		 priv->fw_version.major, priv->fw_version.minor,
+		 priv->fw_version.patch, priv->fw_version.build);
+}
+
+static u32 at76_ethtool_get_link(struct net_device *netdev)
+{
+	struct at76_priv *priv = netdev_priv(netdev);
+	return priv->mac_state == MAC_CONNECTED;
+}
+
+static struct ethtool_ops at76_ethtool_ops = {
+	.get_drvinfo = at76_ethtool_get_drvinfo,
+	.get_link = at76_ethtool_get_link,
+};
+
+/* Download external firmware */
+static int at76_load_external_fw(struct usb_device *udev, struct fwentry *fwe)
+{
+	int ret;
+	int op_mode;
+	int blockno = 0;
+	int bsize;
+	u8 *block;
+	u8 *buf = fwe->extfw;
+	int size = fwe->extfw_size;
+
+	if (!buf || !size)
+		return -ENOENT;
+
+	op_mode = at76_get_op_mode(udev);
+	at76_dbg(DBG_DEVSTART, "opmode %d", op_mode);
+
+	if (op_mode != OPMODE_NORMAL_NIC_WITHOUT_FLASH) {
+		dev_printk(KERN_ERR, &udev->dev, "unexpected opmode %d\n",
+			   op_mode);
+		return -EINVAL;
+	}
+
+	block = kmalloc(FW_BLOCK_SIZE, GFP_KERNEL);
+	if (!block)
+		return -ENOMEM;
+
+	at76_dbg(DBG_DEVSTART, "downloading external firmware");
+
+	/* for fw >= 0.100, the device needs an extra empty block */
+	do {
+		bsize = min_t(int, size, FW_BLOCK_SIZE);
+		memcpy(block, buf, bsize);
+		at76_dbg(DBG_DEVSTART,
+			 "ext fw, size left = %5d, bsize = %4d, blockno = %2d",
+			 size, bsize, blockno);
+		ret = at76_load_ext_fw_block(udev, blockno, block, bsize);
+		if (ret != bsize) {
+			dev_printk(KERN_ERR, &udev->dev,
+				   "loading %dth firmware block failed: %d\n",
+				   blockno, ret);
+			goto exit;
+		}
+		buf += bsize;
+		size -= bsize;
+		blockno++;
+	} while (bsize > 0);
+
+	if (at76_is_505a(fwe->board_type)) {
+		at76_dbg(DBG_DEVSTART, "200 ms delay for 505a");
+		schedule_timeout_interruptible(HZ / 5 + 1);
+	}
+
+exit:
+	kfree(block);
+	if (ret < 0)
+		dev_printk(KERN_ERR, &udev->dev,
+			   "downloading external firmware failed: %d\n", ret);
+	return ret;
+}
+
+/* Download internal firmware */
+static int at76_load_internal_fw(struct usb_device *udev, struct fwentry *fwe)
+{
+	int ret;
+	int need_remap = !at76_is_505a(fwe->board_type);
+
+	ret = at76_usbdfu_download(udev, fwe->intfw, fwe->intfw_size,
+				   need_remap ? 0 : 2 * HZ);
+
+	if (ret < 0) {
+		dev_printk(KERN_ERR, &udev->dev,
+			   "downloading internal fw failed with %d\n", ret);
+		goto exit;
+	}
+
+	at76_dbg(DBG_DEVSTART, "sending REMAP");
+
+	/* no REMAP for 505A (see SF driver) */
+	if (need_remap) {
+		ret = at76_remap(udev);
+		if (ret < 0) {
+			dev_printk(KERN_ERR, &udev->dev,
+				   "sending REMAP failed with %d\n", ret);
+			goto exit;
+		}
+	}
+
+	at76_dbg(DBG_DEVSTART, "sleeping for 2 seconds");
+	schedule_timeout_interruptible(2 * HZ + 1);
+	usb_reset_device(udev);
+
+exit:
+	return ret;
+}
+
+static int at76_match_essid(struct at76_priv *priv, struct bss_info *ptr)
+{
+	/* common criteria for both modi */
+
+	int ret = (priv->essid_size == 0 /* ANY ssid */  ||
+		   (priv->essid_size == ptr->ssid_len &&
+		    !memcmp(priv->essid, ptr->ssid, ptr->ssid_len)));
+	if (!ret)
+		at76_dbg(DBG_BSS_MATCH,
+			 "%s bss table entry %p: essid didn't match",
+			 priv->netdev->name, ptr);
+	return ret;
+}
+
+static inline int at76_match_mode(struct at76_priv *priv, struct bss_info *ptr)
+{
+	int ret;
+
+	if (priv->iw_mode == IW_MODE_ADHOC)
+		ret = ptr->capa & WLAN_CAPABILITY_IBSS;
+	else
+		ret = ptr->capa & WLAN_CAPABILITY_ESS;
+	if (!ret)
+		at76_dbg(DBG_BSS_MATCH,
+			 "%s bss table entry %p: mode didn't match",
+			 priv->netdev->name, ptr);
+	return ret;
+}
+
+static int at76_match_rates(struct at76_priv *priv, struct bss_info *ptr)
+{
+	int i;
+
+	for (i = 0; i < ptr->rates_len; i++) {
+		u8 rate = ptr->rates[i];
+
+		if (!(rate & 0x80))
+			continue;
+
+		/* this is a basic rate we have to support
+		   (see IEEE802.11, ch. 7.3.2.2) */
+		if (rate != (0x80 | hw_rates[0])
+		    && rate != (0x80 | hw_rates[1])
+		    && rate != (0x80 | hw_rates[2])
+		    && rate != (0x80 | hw_rates[3])) {
+			at76_dbg(DBG_BSS_MATCH,
+				 "%s: bss table entry %p: basic rate %02x not "
+				 "supported", priv->netdev->name, ptr, rate);
+			return 0;
+		}
+	}
+
+	/* if we use short preamble, the bss must support it */
+	if (priv->preamble_type == PREAMBLE_TYPE_SHORT &&
+	    !(ptr->capa & WLAN_CAPABILITY_SHORT_PREAMBLE)) {
+		at76_dbg(DBG_BSS_MATCH,
+			 "%s: %p does not support short preamble",
+			 priv->netdev->name, ptr);
+		return 0;
+	} else
+		return 1;
+}
+
+static inline int at76_match_wep(struct at76_priv *priv, struct bss_info *ptr)
+{
+	if (!priv->wep_enabled && ptr->capa & WLAN_CAPABILITY_PRIVACY) {
+		/* we have disabled WEP, but the BSS signals privacy */
+		at76_dbg(DBG_BSS_MATCH,
+			 "%s: bss table entry %p: requires encryption",
+			 priv->netdev->name, ptr);
+		return 0;
+	}
+	/* otherwise if the BSS does not signal privacy it may well
+	   accept encrypted packets from us ... */
+	return 1;
+}
+
+static inline int at76_match_bssid(struct at76_priv *priv, struct bss_info *ptr)
+{
+	if (!priv->wanted_bssid_valid ||
+	    !compare_ether_addr(ptr->bssid, priv->wanted_bssid))
+		return 1;
+
+	at76_dbg(DBG_BSS_MATCH,
+		 "%s: requested bssid - %s does not match",
+		 priv->netdev->name, mac2str(priv->wanted_bssid));
+	at76_dbg(DBG_BSS_MATCH,
+		 "      AP bssid - %s of bss table entry %p",
+		 mac2str(ptr->bssid), ptr);
+	return 0;
+}
+
+/**
+ * at76_match_bss - try to find a matching bss in priv->bss
+ *
+ * last - last bss tried
+ *
+ * last == NULL signals a new round starting with priv->bss_list.next
+ * this function must be called inside an acquired priv->bss_list_spinlock
+ * otherwise the timeout on bss may remove the newly chosen entry
+ */
+static struct bss_info *at76_match_bss(struct at76_priv *priv,
+				       struct bss_info *last)
+{
+	struct bss_info *ptr = NULL;
+	struct list_head *curr;
+
+	curr = last ? last->list.next : priv->bss_list.next;
+	while (curr != &priv->bss_list) {
+		ptr = list_entry(curr, struct bss_info, list);
+		if (at76_match_essid(priv, ptr) && at76_match_mode(priv, ptr)
+		    && at76_match_wep(priv, ptr) && at76_match_rates(priv, ptr)
+		    && at76_match_bssid(priv, ptr))
+			break;
+		curr = curr->next;
+	}
+
+	if (curr == &priv->bss_list)
+		ptr = NULL;
+	/* otherwise ptr points to the struct bss_info we have chosen */
+
+	at76_dbg(DBG_BSS_TABLE, "%s %s: returned %p", priv->netdev->name,
+		 __func__, ptr);
+	return ptr;
+}
+
+/* Start joining a matching BSS, or create own IBSS */
+static void at76_work_join(struct work_struct *work)
+{
+	struct at76_priv *priv = container_of(work, struct at76_priv,
+					      work_join);
+	int ret;
+	unsigned long flags;
+
+	mutex_lock(&priv->mtx);
+
+	WARN_ON(priv->mac_state != MAC_JOINING);
+	if (priv->mac_state != MAC_JOINING)
+		goto exit;
+
+	/* secure the access to priv->curr_bss ! */
+	spin_lock_irqsave(&priv->bss_list_spinlock, flags);
+	priv->curr_bss = at76_match_bss(priv, priv->curr_bss);
+	spin_unlock_irqrestore(&priv->bss_list_spinlock, flags);
+
+	if (!priv->curr_bss) {
+		/* here we haven't found a matching (i)bss ... */
+		if (priv->iw_mode == IW_MODE_ADHOC) {
+			at76_set_mac_state(priv, MAC_OWN_IBSS);
+			at76_start_ibss(priv);
+			goto exit;
+		}
+		/* haven't found a matching BSS in infra mode - try again */
+		at76_set_mac_state(priv, MAC_SCANNING);
+		schedule_work(&priv->work_start_scan);
+		goto exit;
+	}
+
+	ret = at76_join_bss(priv, priv->curr_bss);
+	if (ret < 0) {
+		printk(KERN_ERR "%s: join_bss failed with %d\n",
+		       priv->netdev->name, ret);
+		goto exit;
+	}
+
+	ret = at76_wait_completion(priv, CMD_JOIN);
+	if (ret != CMD_STATUS_COMPLETE) {
+		if (ret != CMD_STATUS_TIME_OUT)
+			printk(KERN_ERR "%s: join_bss completed with %d\n",
+			       priv->netdev->name, ret);
+		else
+			printk(KERN_INFO "%s: join_bss ssid %s timed out\n",
+			       priv->netdev->name,
+			       mac2str(priv->curr_bss->bssid));
+
+		/* retry next BSS immediately */
+		schedule_work(&priv->work_join);
+		goto exit;
+	}
+
+	/* here we have joined the (I)BSS */
+	if (priv->iw_mode == IW_MODE_ADHOC) {
+		struct bss_info *bptr = priv->curr_bss;
+		at76_set_mac_state(priv, MAC_CONNECTED);
+		/* get ESSID, BSSID and channel for priv->curr_bss */
+		priv->essid_size = bptr->ssid_len;
+		memcpy(priv->essid, bptr->ssid, bptr->ssid_len);
+		memcpy(priv->bssid, bptr->bssid, ETH_ALEN);
+		priv->channel = bptr->channel;
+		at76_iwevent_bss_connect(priv->netdev, bptr->bssid);
+		netif_carrier_on(priv->netdev);
+		netif_start_queue(priv->netdev);
+		/* just to be sure */
+		cancel_delayed_work(&priv->dwork_get_scan);
+		cancel_delayed_work(&priv->dwork_auth);
+		cancel_delayed_work(&priv->dwork_assoc);
+	} else {
+		/* send auth req */
+		priv->retries = AUTH_RETRIES;
+		at76_set_mac_state(priv, MAC_AUTH);
+		at76_auth_req(priv, priv->curr_bss, 1, NULL);
+		at76_dbg(DBG_MGMT_TIMER,
+			 "%s:%d: starting mgmt_timer + HZ", __func__, __LINE__);
+		schedule_delayed_work(&priv->dwork_auth, AUTH_TIMEOUT);
+	}
+
+exit:
+	mutex_unlock(&priv->mtx);
+}
+
+/* Reap scan results */
+static void at76_dwork_get_scan(struct work_struct *work)
+{
+	int status;
+	int ret;
+	struct at76_priv *priv = container_of(work, struct at76_priv,
+					      dwork_get_scan.work);
+
+	mutex_lock(&priv->mtx);
+	WARN_ON(priv->mac_state != MAC_SCANNING);
+	if (priv->mac_state != MAC_SCANNING)
+		goto exit;
+
+	status = at76_get_cmd_status(priv->udev, CMD_SCAN);
+	if (status < 0) {
+		printk(KERN_ERR "%s: %s: at76_get_cmd_status failed with %d\n",
+		       priv->netdev->name, __func__, status);
+		status = CMD_STATUS_IN_PROGRESS;
+		/* INFO: Hope it was a one off error - if not, scanning
+		   further down the line and stop this cycle */
+	}
+	at76_dbg(DBG_PROGRESS,
+		 "%s %s: got cmd_status %d (state %s, need_any %d)",
+		 priv->netdev->name, __func__, status,
+		 mac_states[priv->mac_state], priv->scan_need_any);
+
+	if (status != CMD_STATUS_COMPLETE) {
+		if ((status != CMD_STATUS_IN_PROGRESS) &&
+		    (status != CMD_STATUS_IDLE))
+			printk(KERN_ERR "%s: %s: Bad scan status: %s\n",
+			       priv->netdev->name, __func__,
+			       at76_get_cmd_status_string(status));
+
+		/* the first cmd status after scan start is always a IDLE ->
+		   start the timer to poll again until COMPLETED */
+		at76_dbg(DBG_MGMT_TIMER,
+			 "%s:%d: starting mgmt_timer for %d ticks",
+			 __func__, __LINE__, SCAN_POLL_INTERVAL);
+		schedule_delayed_work(&priv->dwork_get_scan,
+				      SCAN_POLL_INTERVAL);
+		goto exit;
+	}
+
+	if (at76_debug & DBG_BSS_TABLE)
+		at76_dump_bss_table(priv);
+
+	if (priv->scan_need_any) {
+		ret = at76_start_scan(priv, 0);
+		if (ret < 0)
+			printk(KERN_ERR
+			       "%s: %s: start_scan (ANY) failed with %d\n",
+			       priv->netdev->name, __func__, ret);
+		at76_dbg(DBG_MGMT_TIMER,
+			 "%s:%d: starting mgmt_timer for %d ticks", __func__,
+			 __LINE__, SCAN_POLL_INTERVAL);
+		schedule_delayed_work(&priv->dwork_get_scan,
+				      SCAN_POLL_INTERVAL);
+		priv->scan_need_any = 0;
+	} else {
+		priv->scan_state = SCAN_COMPLETED;
+		/* report the end of scan to user space */
+		at76_iwevent_scan_complete(priv->netdev);
+		at76_set_mac_state(priv, MAC_JOINING);
+		schedule_work(&priv->work_join);
+	}
+
+exit:
+	mutex_unlock(&priv->mtx);
+}
+
+/* Handle loss of beacons from the AP */
+static void at76_dwork_beacon(struct work_struct *work)
+{
+	struct at76_priv *priv = container_of(work, struct at76_priv,
+					      dwork_beacon.work);
+
+	mutex_lock(&priv->mtx);
+	if (priv->mac_state != MAC_CONNECTED || priv->iw_mode != IW_MODE_INFRA)
+		goto exit;
+
+	/* We haven't received any beacons from out AP for BEACON_TIMEOUT */
+	printk(KERN_INFO "%s: lost beacon bssid %s\n",
+	       priv->netdev->name, mac2str(priv->curr_bss->bssid));
+
+	netif_carrier_off(priv->netdev);
+	netif_stop_queue(priv->netdev);
+	at76_iwevent_bss_disconnect(priv->netdev);
+	at76_set_mac_state(priv, MAC_SCANNING);
+	schedule_work(&priv->work_start_scan);
+
+exit:
+	mutex_unlock(&priv->mtx);
+}
+
+/* Handle authentication response timeout */
+static void at76_dwork_auth(struct work_struct *work)
+{
+	struct at76_priv *priv = container_of(work, struct at76_priv,
+					      dwork_auth.work);
+
+	mutex_lock(&priv->mtx);
+	WARN_ON(priv->mac_state != MAC_AUTH);
+	if (priv->mac_state != MAC_AUTH)
+		goto exit;
+
+	at76_dbg(DBG_PROGRESS, "%s: authentication response timeout",
+		 priv->netdev->name);
+
+	if (priv->retries-- >= 0) {
+		at76_auth_req(priv, priv->curr_bss, 1, NULL);
+		at76_dbg(DBG_MGMT_TIMER, "%s:%d: starting mgmt_timer + HZ",
+			 __func__, __LINE__);
+		schedule_delayed_work(&priv->dwork_auth, AUTH_TIMEOUT);
+	} else {
+		/* try to get next matching BSS */
+		at76_set_mac_state(priv, MAC_JOINING);
+		schedule_work(&priv->work_join);
+	}
+
+exit:
+	mutex_unlock(&priv->mtx);
+}
+
+/* Handle association response timeout */
+static void at76_dwork_assoc(struct work_struct *work)
+{
+	struct at76_priv *priv = container_of(work, struct at76_priv,
+					      dwork_assoc.work);
+
+	mutex_lock(&priv->mtx);
+	WARN_ON(priv->mac_state != MAC_ASSOC);
+	if (priv->mac_state != MAC_ASSOC)
+		goto exit;
+
+	at76_dbg(DBG_PROGRESS, "%s: association response timeout",
+		 priv->netdev->name);
+
+	if (priv->retries-- >= 0) {
+		at76_assoc_req(priv, priv->curr_bss);
+		at76_dbg(DBG_MGMT_TIMER, "%s:%d: starting mgmt_timer + HZ",
+			 __func__, __LINE__);
+		schedule_delayed_work(&priv->dwork_assoc, ASSOC_TIMEOUT);
+	} else {
+		/* try to get next matching BSS */
+		at76_set_mac_state(priv, MAC_JOINING);
+		schedule_work(&priv->work_join);
+	}
+
+exit:
+	mutex_unlock(&priv->mtx);
+}
+
+/* Read new bssid in ad-hoc mode */
+static void at76_work_new_bss(struct work_struct *work)
+{
+	struct at76_priv *priv = container_of(work, struct at76_priv,
+					      work_new_bss);
+	int ret;
+	struct mib_mac_mgmt mac_mgmt;
+
+	mutex_lock(&priv->mtx);
+
+	ret = at76_get_mib(priv->udev, MIB_MAC_MGMT, &mac_mgmt,
+			   sizeof(struct mib_mac_mgmt));
+	if (ret < 0) {
+		printk(KERN_ERR "%s: at76_get_mib failed: %d\n",
+		       priv->netdev->name, ret);
+		goto exit;
+	}
+
+	at76_dbg(DBG_PROGRESS, "ibss_change = 0x%2x", mac_mgmt.ibss_change);
+	memcpy(priv->bssid, mac_mgmt.current_bssid, ETH_ALEN);
+	at76_dbg(DBG_PROGRESS, "using BSSID %s", mac2str(priv->bssid));
+
+	at76_iwevent_bss_connect(priv->netdev, priv->bssid);
+
+	priv->mib_buf.type = MIB_MAC_MGMT;
+	priv->mib_buf.size = 1;
+	priv->mib_buf.index = offsetof(struct mib_mac_mgmt, ibss_change);
+	priv->mib_buf.data.byte = 0;
+
+	ret = at76_set_mib(priv, &priv->mib_buf);
+	if (ret < 0)
+		printk(KERN_ERR "%s: set_mib (ibss change ok) failed: %d\n",
+		       priv->netdev->name, ret);
+
+exit:
+	mutex_unlock(&priv->mtx);
+}
+
+static int at76_startup_device(struct at76_priv *priv)
+{
+	struct at76_card_config *ccfg = &priv->card_config;
+	int ret;
+
+	at76_dbg(DBG_PARAMS,
+		 "%s param: ssid %.*s (%s) mode %s ch %d wep %s key %d "
+		 "keylen %d", priv->netdev->name, priv->essid_size, priv->essid,
+		 hex2str(priv->essid, IW_ESSID_MAX_SIZE),
+		 priv->iw_mode == IW_MODE_ADHOC ? "adhoc" : "infra",
+		 priv->channel, priv->wep_enabled ? "enabled" : "disabled",
+		 priv->wep_key_id, priv->wep_keys_len[priv->wep_key_id]);
+	at76_dbg(DBG_PARAMS,
+		 "%s param: preamble %s rts %d retry %d frag %d "
+		 "txrate %s auth_mode %d", priv->netdev->name,
+		 preambles[priv->preamble_type], priv->rts_threshold,
+		 priv->short_retry_limit, priv->frag_threshold,
+		 priv->txrate == TX_RATE_1MBIT ? "1MBit" : priv->txrate ==
+		 TX_RATE_2MBIT ? "2MBit" : priv->txrate ==
+		 TX_RATE_5_5MBIT ? "5.5MBit" : priv->txrate ==
+		 TX_RATE_11MBIT ? "11MBit" : priv->txrate ==
+		 TX_RATE_AUTO ? "auto" : "<invalid>", priv->auth_mode);
+	at76_dbg(DBG_PARAMS,
+		 "%s param: pm_mode %d pm_period %d auth_mode %s "
+		 "scan_times %d %d scan_mode %s",
+		 priv->netdev->name, priv->pm_mode, priv->pm_period,
+		 priv->auth_mode == WLAN_AUTH_OPEN ? "open" : "shared_secret",
+		 priv->scan_min_time, priv->scan_max_time,
+		 priv->scan_mode == SCAN_TYPE_ACTIVE ? "active" : "passive");
+
+	memset(ccfg, 0, sizeof(struct at76_card_config));
+	ccfg->promiscuous_mode = 0;
+	ccfg->short_retry_limit = priv->short_retry_limit;
+
+	if (priv->wep_enabled) {
+		if (priv->wep_keys_len[priv->wep_key_id] > WEP_SMALL_KEY_LEN)
+			ccfg->encryption_type = 2;
+		else
+			ccfg->encryption_type = 1;
+
+		/* jal: always exclude unencrypted if WEP is active */
+		ccfg->exclude_unencrypted = 1;
+	} else {
+		ccfg->exclude_unencrypted = 0;
+		ccfg->encryption_type = 0;
+	}
+
+	ccfg->rts_threshold = cpu_to_le16(priv->rts_threshold);
+	ccfg->fragmentation_threshold = cpu_to_le16(priv->frag_threshold);
+
+	memcpy(ccfg->basic_rate_set, hw_rates, 4);
+	/* jal: really needed, we do a set_mib for autorate later ??? */
+	ccfg->auto_rate_fallback = (priv->txrate == TX_RATE_AUTO ? 1 : 0);
+	ccfg->channel = priv->channel;
+	ccfg->privacy_invoked = priv->wep_enabled;
+	memcpy(ccfg->current_ssid, priv->essid, IW_ESSID_MAX_SIZE);
+	ccfg->ssid_len = priv->essid_size;
+
+	ccfg->wep_default_key_id = priv->wep_key_id;
+	memcpy(ccfg->wep_default_key_value, priv->wep_keys, 4 * WEP_KEY_LEN);
+
+	ccfg->short_preamble = priv->preamble_type;
+	ccfg->beacon_period = cpu_to_le16(priv->beacon_period);
+
+	ret = at76_set_card_command(priv->udev, CMD_STARTUP, &priv->card_config,
+				    sizeof(struct at76_card_config));
+	if (ret < 0) {
+		printk(KERN_ERR "%s: at76_set_card_command failed: %d\n",
+		       priv->netdev->name, ret);
+		return ret;
+	}
+
+	at76_wait_completion(priv, CMD_STARTUP);
+
+	/* remove BSSID from previous run */
+	memset(priv->bssid, 0, ETH_ALEN);
+
+	if (at76_set_radio(priv, 1) == 1)
+		at76_wait_completion(priv, CMD_RADIO_ON);
+
+	ret = at76_set_preamble(priv, priv->preamble_type);
+	if (ret < 0)
+		return ret;
+
+	ret = at76_set_frag(priv, priv->frag_threshold);
+	if (ret < 0)
+		return ret;
+
+	ret = at76_set_rts(priv, priv->rts_threshold);
+	if (ret < 0)
+		return ret;
+
+	ret = at76_set_autorate_fallback(priv,
+					 priv->txrate == TX_RATE_AUTO ? 1 : 0);
+	if (ret < 0)
+		return ret;
+
+	ret = at76_set_pm_mode(priv);
+	if (ret < 0)
+		return ret;
+
+	if (at76_debug & DBG_MIB) {
+		at76_dump_mib_mac(priv);
+		at76_dump_mib_mac_addr(priv);
+		at76_dump_mib_mac_mgmt(priv);
+		at76_dump_mib_mac_wep(priv);
+		at76_dump_mib_mdomain(priv);
+		at76_dump_mib_phy(priv);
+		at76_dump_mib_local(priv);
+	}
+
+	return 0;
+}
+
+/* Restart the interface */
+static void at76_dwork_restart(struct work_struct *work)
+{
+	struct at76_priv *priv = container_of(work, struct at76_priv,
+					      dwork_restart.work);
+
+	mutex_lock(&priv->mtx);
+
+	netif_carrier_off(priv->netdev);	/* stop netdev watchdog */
+	netif_stop_queue(priv->netdev);	/* stop tx data packets */
+
+	at76_startup_device(priv);
+
+	if (priv->iw_mode != IW_MODE_MONITOR) {
+		priv->netdev->type = ARPHRD_ETHER;
+		at76_set_mac_state(priv, MAC_SCANNING);
+		schedule_work(&priv->work_start_scan);
+	} else {
+		priv->netdev->type = ARPHRD_IEEE80211_RADIOTAP;
+		at76_start_monitor(priv);
+	}
+
+	mutex_unlock(&priv->mtx);
+}
+
+/* Initiate scanning */
+static void at76_work_start_scan(struct work_struct *work)
+{
+	struct at76_priv *priv = container_of(work, struct at76_priv,
+					      work_start_scan);
+	int ret;
+
+	mutex_lock(&priv->mtx);
+
+	WARN_ON(priv->mac_state != MAC_SCANNING);
+	if (priv->mac_state != MAC_SCANNING)
+		goto exit;
+
+	/* only clear the bss list when a scan is actively initiated,
+	 * otherwise simply rely on at76_bss_list_timeout */
+	if (priv->scan_state == SCAN_IN_PROGRESS) {
+		at76_free_bss_list(priv);
+		priv->scan_need_any = 1;
+	} else
+		priv->scan_need_any = 0;
+
+	ret = at76_start_scan(priv, 1);
+
+	if (ret < 0)
+		printk(KERN_ERR "%s: %s: start_scan failed with %d\n",
+		       priv->netdev->name, __func__, ret);
+	else {
+		at76_dbg(DBG_MGMT_TIMER,
+			 "%s:%d: starting mgmt_timer for %d ticks",
+			 __func__, __LINE__, SCAN_POLL_INTERVAL);
+		schedule_delayed_work(&priv->dwork_get_scan,
+				      SCAN_POLL_INTERVAL);
+	}
+
+exit:
+	mutex_unlock(&priv->mtx);
+}
+
+/* Enable or disable promiscuous mode */
+static void at76_work_set_promisc(struct work_struct *work)
+{
+	struct at76_priv *priv = container_of(work, struct at76_priv,
+					      work_set_promisc);
+	int ret = 0;
+
+	mutex_lock(&priv->mtx);
+
+	priv->mib_buf.type = MIB_LOCAL;
+	priv->mib_buf.size = 1;
+	priv->mib_buf.index = offsetof(struct mib_local, promiscuous_mode);
+	priv->mib_buf.data.byte = priv->promisc ? 1 : 0;
+
+	ret = at76_set_mib(priv, &priv->mib_buf);
+	if (ret < 0)
+		printk(KERN_ERR "%s: set_mib (promiscuous_mode) failed: %d\n",
+		       priv->netdev->name, ret);
+
+	mutex_unlock(&priv->mtx);
+}
+
+/* Submit Rx urb back to the device */
+static void at76_work_submit_rx(struct work_struct *work)
+{
+	struct at76_priv *priv = container_of(work, struct at76_priv,
+					      work_submit_rx);
+
+	mutex_lock(&priv->mtx);
+	at76_submit_rx_urb(priv);
+	mutex_unlock(&priv->mtx);
+}
+
+/* We got an association response */
+static void at76_rx_mgmt_assoc(struct at76_priv *priv,
+			       struct at76_rx_buffer *buf)
+{
+	struct ieee80211_assoc_response *resp =
+	    (struct ieee80211_assoc_response *)buf->packet;
+	u16 assoc_id = le16_to_cpu(resp->aid);
+	u16 status = le16_to_cpu(resp->status);
+
+	at76_dbg(DBG_RX_MGMT, "%s: rx AssocResp bssid %s capa 0x%04x status "
+		 "0x%04x assoc_id 0x%04x rates %s", priv->netdev->name,
+		 mac2str(resp->header.addr3), le16_to_cpu(resp->capability),
+		 status, assoc_id, hex2str(resp->info_element->data,
+					   resp->info_element->len));
+
+	if (priv->mac_state != MAC_ASSOC) {
+		printk(KERN_INFO "%s: AssocResp in state %s ignored\n",
+		       priv->netdev->name, mac_states[priv->mac_state]);
+		return;
+	}
+
+	BUG_ON(!priv->curr_bss);
+
+	cancel_delayed_work(&priv->dwork_assoc);
+	if (status == WLAN_STATUS_SUCCESS) {
+		struct bss_info *ptr = priv->curr_bss;
+		priv->assoc_id = assoc_id & 0x3fff;
+		/* update iwconfig params */
+		memcpy(priv->bssid, ptr->bssid, ETH_ALEN);
+		memcpy(priv->essid, ptr->ssid, ptr->ssid_len);
+		priv->essid_size = ptr->ssid_len;
+		priv->channel = ptr->channel;
+		schedule_work(&priv->work_assoc_done);
+	} else {
+		at76_set_mac_state(priv, MAC_JOINING);
+		schedule_work(&priv->work_join);
+	}
+}
+
+/* Process disassociation request from the AP */
+static void at76_rx_mgmt_disassoc(struct at76_priv *priv,
+				  struct at76_rx_buffer *buf)
+{
+	struct ieee80211_disassoc *resp =
+	    (struct ieee80211_disassoc *)buf->packet;
+	struct ieee80211_hdr_3addr *mgmt = &resp->header;
+
+	at76_dbg(DBG_RX_MGMT,
+		 "%s: rx DisAssoc bssid %s reason 0x%04x destination %s",
+		 priv->netdev->name, mac2str(mgmt->addr3),
+		 le16_to_cpu(resp->reason), mac2str(mgmt->addr1));
+
+	/* We are not connected, ignore */
+	if (priv->mac_state == MAC_SCANNING || priv->mac_state == MAC_INIT
+	    || !priv->curr_bss)
+		return;
+
+	/* Not our BSSID, ignore */
+	if (compare_ether_addr(mgmt->addr3, priv->curr_bss->bssid))
+		return;
+
+	/* Not for our STA and not broadcast, ignore */
+	if (compare_ether_addr(priv->netdev->dev_addr, mgmt->addr1)
+	    && !is_broadcast_ether_addr(mgmt->addr1))
+		return;
+
+	if (priv->mac_state != MAC_ASSOC && priv->mac_state != MAC_CONNECTED
+	    && priv->mac_state != MAC_JOINING) {
+		printk(KERN_INFO "%s: DisAssoc in state %s ignored\n",
+		       priv->netdev->name, mac_states[priv->mac_state]);
+		return;
+	}
+
+	if (priv->mac_state == MAC_CONNECTED) {
+		netif_carrier_off(priv->netdev);
+		netif_stop_queue(priv->netdev);
+		at76_iwevent_bss_disconnect(priv->netdev);
+	}
+	cancel_delayed_work(&priv->dwork_get_scan);
+	cancel_delayed_work(&priv->dwork_beacon);
+	cancel_delayed_work(&priv->dwork_auth);
+	cancel_delayed_work(&priv->dwork_assoc);
+	at76_set_mac_state(priv, MAC_JOINING);
+	schedule_work(&priv->work_join);
+}
+
+static void at76_rx_mgmt_auth(struct at76_priv *priv,
+			      struct at76_rx_buffer *buf)
+{
+	struct ieee80211_auth *resp = (struct ieee80211_auth *)buf->packet;
+	struct ieee80211_hdr_3addr *mgmt = &resp->header;
+	int seq_nr = le16_to_cpu(resp->transaction);
+	int alg = le16_to_cpu(resp->algorithm);
+	int status = le16_to_cpu(resp->status);
+
+	at76_dbg(DBG_RX_MGMT,
+		 "%s: rx AuthFrame bssid %s alg %d seq_nr %d status %d "
+		 "destination %s", priv->netdev->name, mac2str(mgmt->addr3),
+		 alg, seq_nr, status, mac2str(mgmt->addr1));
+
+	if (alg == WLAN_AUTH_SHARED_KEY && seq_nr == 2)
+		at76_dbg(DBG_RX_MGMT, "%s: AuthFrame challenge %s ...",
+			 priv->netdev->name, hex2str(resp->info_element, 18));
+
+	if (priv->mac_state != MAC_AUTH) {
+		printk(KERN_INFO "%s: ignored AuthFrame in state %s\n",
+		       priv->netdev->name, mac_states[priv->mac_state]);
+		return;
+	}
+	if (priv->auth_mode != alg) {
+		printk(KERN_INFO "%s: ignored AuthFrame for alg %d\n",
+		       priv->netdev->name, alg);
+		return;
+	}
+
+	BUG_ON(!priv->curr_bss);
+
+	/* Not our BSSID or not for our STA, ignore */
+	if (compare_ether_addr(mgmt->addr3, priv->curr_bss->bssid)
+	    || compare_ether_addr(priv->netdev->dev_addr, mgmt->addr1))
+		return;
+
+	cancel_delayed_work(&priv->dwork_auth);
+	if (status != WLAN_STATUS_SUCCESS) {
+		/* try to join next bss */
+		at76_set_mac_state(priv, MAC_JOINING);
+		schedule_work(&priv->work_join);
+		return;
+	}
+
+	if (priv->auth_mode == WLAN_AUTH_OPEN || seq_nr == 4) {
+		priv->retries = ASSOC_RETRIES;
+		at76_set_mac_state(priv, MAC_ASSOC);
+		at76_assoc_req(priv, priv->curr_bss);
+		at76_dbg(DBG_MGMT_TIMER,
+			 "%s:%d: starting mgmt_timer + HZ", __func__, __LINE__);
+		schedule_delayed_work(&priv->dwork_assoc, ASSOC_TIMEOUT);
+		return;
+	}
+
+	WARN_ON(seq_nr != 2);
+	at76_auth_req(priv, priv->curr_bss, seq_nr + 1, resp->info_element);
+	at76_dbg(DBG_MGMT_TIMER, "%s:%d: starting mgmt_timer + HZ", __func__,
+		 __LINE__);
+	schedule_delayed_work(&priv->dwork_auth, AUTH_TIMEOUT);
+}
+
+static void at76_rx_mgmt_deauth(struct at76_priv *priv,
+				struct at76_rx_buffer *buf)
+{
+	struct ieee80211_disassoc *resp =
+	    (struct ieee80211_disassoc *)buf->packet;
+	struct ieee80211_hdr_3addr *mgmt = &resp->header;
+
+	at76_dbg(DBG_RX_MGMT | DBG_PROGRESS,
+		 "%s: rx DeAuth bssid %s reason 0x%04x destination %s",
+		 priv->netdev->name, mac2str(mgmt->addr3),
+		 le16_to_cpu(resp->reason), mac2str(mgmt->addr1));
+
+	if (priv->mac_state != MAC_AUTH && priv->mac_state != MAC_ASSOC
+	    && priv->mac_state != MAC_CONNECTED) {
+		printk(KERN_INFO "%s: DeAuth in state %s ignored\n",
+		       priv->netdev->name, mac_states[priv->mac_state]);
+		return;
+	}
+
+	BUG_ON(!priv->curr_bss);
+
+	/* Not our BSSID, ignore */
+	if (compare_ether_addr(mgmt->addr3, priv->curr_bss->bssid))
+		return;
+
+	/* Not for our STA and not broadcast, ignore */
+	if (compare_ether_addr(priv->netdev->dev_addr, mgmt->addr1)
+	    && !is_broadcast_ether_addr(mgmt->addr1))
+		return;
+
+	if (priv->mac_state == MAC_CONNECTED)
+		at76_iwevent_bss_disconnect(priv->netdev);
+
+	at76_set_mac_state(priv, MAC_JOINING);
+	schedule_work(&priv->work_join);
+	cancel_delayed_work(&priv->dwork_get_scan);
+	cancel_delayed_work(&priv->dwork_beacon);
+	cancel_delayed_work(&priv->dwork_auth);
+	cancel_delayed_work(&priv->dwork_assoc);
+}
+
+static void at76_rx_mgmt_beacon(struct at76_priv *priv,
+				struct at76_rx_buffer *buf)
+{
+	int varpar_len;
+	/* beacon content */
+	struct ieee80211_beacon *bdata = (struct ieee80211_beacon *)buf->packet;
+	struct ieee80211_hdr_3addr *mgmt = &bdata->header;
+
+	struct list_head *lptr;
+	struct bss_info *match;	/* entry matching addr3 with its bssid */
+	int new_entry = 0;
+	int len;
+	struct ieee80211_info_element *ie;
+	int have_ssid = 0;
+	int have_rates = 0;
+	int have_channel = 0;
+	int keep_going = 1;
+	unsigned long flags;
+
+	spin_lock_irqsave(&priv->bss_list_spinlock, flags);
+	if (priv->mac_state == MAC_CONNECTED) {
+		/* in state MAC_CONNECTED we use the mgmt_timer to control
+		   the beacon of the BSS */
+		BUG_ON(!priv->curr_bss);
+
+		if (!compare_ether_addr(priv->curr_bss->bssid, mgmt->addr3)) {
+			/* We got our AP's beacon, defer the timeout handler.
+			   Kill pending work first, as schedule_delayed_work()
+			   won't do it. */
+			cancel_delayed_work(&priv->dwork_beacon);
+			schedule_delayed_work(&priv->dwork_beacon,
+					      BEACON_TIMEOUT);
+			priv->curr_bss->rssi = buf->rssi;
+			priv->beacons_received++;
+			goto exit;
+		}
+	}
+
+	/* look if we have this BSS already in the list */
+	match = NULL;
+
+	if (!list_empty(&priv->bss_list)) {
+		list_for_each(lptr, &priv->bss_list) {
+			struct bss_info *bss_ptr =
+			    list_entry(lptr, struct bss_info, list);
+			if (!compare_ether_addr(bss_ptr->bssid, mgmt->addr3)) {
+				match = bss_ptr;
+				break;
+			}
+		}
+	}
+
+	if (!match) {
+		/* BSS not in the list - append it */
+		match = kzalloc(sizeof(struct bss_info), GFP_ATOMIC);
+		if (!match) {
+			at76_dbg(DBG_BSS_TABLE,
+				 "%s: cannot kmalloc new bss info (%zd byte)",
+				 priv->netdev->name, sizeof(struct bss_info));
+			goto exit;
+		}
+		new_entry = 1;
+		list_add_tail(&match->list, &priv->bss_list);
+	}
+
+	match->capa = le16_to_cpu(bdata->capability);
+	match->beacon_interval = le16_to_cpu(bdata->beacon_interval);
+	match->rssi = buf->rssi;
+	match->link_qual = buf->link_quality;
+	match->noise_level = buf->noise_level;
+	memcpy(match->bssid, mgmt->addr3, ETH_ALEN);
+	at76_dbg(DBG_RX_BEACON, "%s: bssid %s", priv->netdev->name,
+		 mac2str(match->bssid));
+
+	ie = bdata->info_element;
+
+	/* length of var length beacon parameters */
+	varpar_len = min_t(int, le16_to_cpu(buf->wlength) -
+			   sizeof(struct ieee80211_beacon),
+			   BEACON_MAX_DATA_LENGTH);
+
+	/* This routine steps through the bdata->data array to get
+	 * some useful information about the access point.
+	 * Currently, this implementation supports receipt of: SSID,
+	 * supported transfer rates and channel, in any order, with some
+	 * tolerance for intermittent unknown codes (although this
+	 * functionality may not be necessary as the useful information will
+	 * usually arrive in consecutively, but there have been some
+	 * reports of some of the useful information fields arriving in a
+	 * different order).
+	 * It does not support any more IE types although MFIE_TYPE_TIM may
+	 * be supported (on my AP at least).
+	 * The bdata->data array is about 1500 bytes long but only ~36 of those
+	 * bytes are useful, hence the have_ssid etc optimizations. */
+
+	while (keep_going &&
+	       ((&ie->data[ie->len] - (u8 *)bdata->info_element) <=
+		varpar_len)) {
+
+		switch (ie->id) {
+
+		case MFIE_TYPE_SSID:
+			if (have_ssid)
+				break;
+
+			len = min_t(int, IW_ESSID_MAX_SIZE, ie->len);
+
+			/* we copy only if this is a new entry,
+			   or the incoming SSID is not a hidden SSID. This
+			   will protect us from overwriting a real SSID read
+			   in a ProbeResponse with a hidden one from a
+			   following beacon. */
+			if (!new_entry && at76_is_hidden_ssid(ie->data, len)) {
+				have_ssid = 1;
+				break;
+			}
+
+			match->ssid_len = len;
+			memcpy(match->ssid, ie->data, len);
+			at76_dbg(DBG_RX_BEACON, "%s: SSID - %.*s",
+				 priv->netdev->name, len, match->ssid);
+			have_ssid = 1;
+			break;
+
+		case MFIE_TYPE_RATES:
+			if (have_rates)
+				break;
+
+			match->rates_len =
+			    min_t(int, sizeof(match->rates), ie->len);
+			memcpy(match->rates, ie->data, match->rates_len);
+			have_rates = 1;
+			at76_dbg(DBG_RX_BEACON, "%s: SUPPORTED RATES %s",
+				 priv->netdev->name,
+				 hex2str(ie->data, ie->len));
+			break;
+
+		case MFIE_TYPE_DS_SET:
+			if (have_channel)
+				break;
+
+			match->channel = ie->data[0];
+			have_channel = 1;
+			at76_dbg(DBG_RX_BEACON, "%s: CHANNEL - %d",
+				 priv->netdev->name, match->channel);
+			break;
+
+		case MFIE_TYPE_CF_SET:
+		case MFIE_TYPE_TIM:
+		case MFIE_TYPE_IBSS_SET:
+		default:
+			at76_dbg(DBG_RX_BEACON, "%s: beacon IE id %d len %d %s",
+				 priv->netdev->name, ie->id, ie->len,
+				 hex2str(ie->data, ie->len));
+			break;
+		}
+
+		/* advance to the next informational element */
+		next_ie(&ie);
+
+		/* Optimization: after all, the bdata->data array is
+		 * varpar_len bytes long, whereas we get all of the useful
+		 * information after only ~36 bytes, this saves us a lot of
+		 * time (and trouble as the remaining portion of the array
+		 * could be full of junk)
+		 * Comment this out if you want to see what other information
+		 * comes from the AP - although little of it may be useful */
+	}
+
+	at76_dbg(DBG_RX_BEACON, "%s: Finished processing beacon data",
+		 priv->netdev->name);
+
+	match->last_rx = jiffies;	/* record last rx of beacon */
+
+exit:
+	spin_unlock_irqrestore(&priv->bss_list_spinlock, flags);
+}
+
+/* Calculate the link level from a given rx_buffer */
+static void at76_calc_level(struct at76_priv *priv, struct at76_rx_buffer *buf,
+			    struct iw_quality *qual)
+{
+	/* just a guess for now, might be different for other chips */
+	int max_rssi = 42;
+
+	qual->level = (buf->rssi * 100 / max_rssi);
+	if (qual->level > 100)
+		qual->level = 100;
+	qual->updated |= IW_QUAL_LEVEL_UPDATED;
+}
+
+/* Calculate the link quality from a given rx_buffer */
+static void at76_calc_qual(struct at76_priv *priv, struct at76_rx_buffer *buf,
+			   struct iw_quality *qual)
+{
+	if (at76_is_intersil(priv->board_type))
+		qual->qual = buf->link_quality;
+	else {
+		unsigned long elapsed;
+
+		/* Update qual at most once a second */
+		elapsed = jiffies - priv->beacons_last_qual;
+		if (elapsed < 1 * HZ)
+			return;
+
+		qual->qual = qual->level * priv->beacons_received *
+		    msecs_to_jiffies(priv->beacon_period) / elapsed;
+
+		priv->beacons_last_qual = jiffies;
+		priv->beacons_received = 0;
+	}
+	qual->qual = (qual->qual > 100) ? 100 : qual->qual;
+	qual->updated |= IW_QUAL_QUAL_UPDATED;
+}
+
+/* Calculate the noise quality from a given rx_buffer */
+static void at76_calc_noise(struct at76_priv *priv, struct at76_rx_buffer *buf,
+			    struct iw_quality *qual)
+{
+	qual->noise = 0;
+	qual->updated |= IW_QUAL_NOISE_INVALID;
+}
+
+static void at76_update_wstats(struct at76_priv *priv,
+			       struct at76_rx_buffer *buf)
+{
+	struct iw_quality *qual = &priv->wstats.qual;
+
+	if (buf->rssi && priv->mac_state == MAC_CONNECTED) {
+		qual->updated = 0;
+		at76_calc_level(priv, buf, qual);
+		at76_calc_qual(priv, buf, qual);
+		at76_calc_noise(priv, buf, qual);
+	} else {
+		qual->qual = 0;
+		qual->level = 0;
+		qual->noise = 0;
+		qual->updated = IW_QUAL_ALL_INVALID;
+	}
+}
+
+static void at76_rx_mgmt(struct at76_priv *priv, struct at76_rx_buffer *buf)
+{
+	struct ieee80211_hdr_3addr *mgmt =
+	    (struct ieee80211_hdr_3addr *)buf->packet;
+	u16 framectl = le16_to_cpu(mgmt->frame_ctl);
+
+	/* update wstats */
+	if (priv->mac_state != MAC_INIT && priv->mac_state != MAC_SCANNING) {
+		/* jal: this is a dirty hack needed by Tim in ad-hoc mode */
+		/* Data packets always seem to have a 0 link level, so we
+		   only read link quality info from management packets.
+		   Atmel driver actually averages the present, and previous
+		   values, we just present the raw value at the moment - TJS */
+		if (priv->iw_mode == IW_MODE_ADHOC
+		    || (priv->curr_bss
+			&& !compare_ether_addr(mgmt->addr3,
+					       priv->curr_bss->bssid)))
+			at76_update_wstats(priv, buf);
+	}
+
+	at76_dbg(DBG_RX_MGMT_CONTENT, "%s rx mgmt framectl 0x%x %s",
+		 priv->netdev->name, framectl,
+		 hex2str(mgmt, le16_to_cpu(buf->wlength)));
+
+	switch (framectl & IEEE80211_FCTL_STYPE) {
+	case IEEE80211_STYPE_BEACON:
+	case IEEE80211_STYPE_PROBE_RESP:
+		at76_rx_mgmt_beacon(priv, buf);
+		break;
+
+	case IEEE80211_STYPE_ASSOC_RESP:
+		at76_rx_mgmt_assoc(priv, buf);
+		break;
+
+	case IEEE80211_STYPE_DISASSOC:
+		at76_rx_mgmt_disassoc(priv, buf);
+		break;
+
+	case IEEE80211_STYPE_AUTH:
+		at76_rx_mgmt_auth(priv, buf);
+		break;
+
+	case IEEE80211_STYPE_DEAUTH:
+		at76_rx_mgmt_deauth(priv, buf);
+		break;
+
+	default:
+		printk(KERN_DEBUG "%s: ignoring frame with framectl 0x%04x\n",
+		       priv->netdev->name, framectl);
+	}
+
+	return;
+}
+
+/* Convert the 802.11 header into an ethernet-style header, make skb
+ * ready for consumption by netif_rx() */
+static void at76_ieee80211_to_eth(struct sk_buff *skb, int iw_mode)
+{
+	struct ieee80211_hdr_3addr *i802_11_hdr;
+	struct ethhdr *eth_hdr_p;
+	u8 *src_addr;
+	u8 *dest_addr;
+
+	i802_11_hdr = (struct ieee80211_hdr_3addr *)skb->data;
+
+	/* That would be the ethernet header if the hardware converted
+	 * the frame for us.  Make sure the source and the destination
+	 * match the 802.11 header.  Which hardware does it? */
+	eth_hdr_p = (struct ethhdr *)skb_pull(skb, IEEE80211_3ADDR_LEN);
+
+	dest_addr = i802_11_hdr->addr1;
+	if (iw_mode == IW_MODE_ADHOC)
+		src_addr = i802_11_hdr->addr2;
+	else
+		src_addr = i802_11_hdr->addr3;
+
+	if (!compare_ether_addr(eth_hdr_p->h_source, src_addr) &&
+	    !compare_ether_addr(eth_hdr_p->h_dest, dest_addr))
+		/* Yes, we already have an ethernet header */
+		skb_reset_mac_header(skb);
+	else {
+		u16 len;
+
+		/* Need to build an ethernet header */
+		if (!memcmp(skb->data, snapsig, sizeof(snapsig))) {
+			/* SNAP frame - decapsulate, keep proto */
+			skb_push(skb, offsetof(struct ethhdr, h_proto) -
+				 sizeof(rfc1042sig));
+			len = 0;
+		} else {
+			/* 802.3 frame, proto is length */
+			len = skb->len;
+			skb_push(skb, ETH_HLEN);
+		}
+
+		skb_reset_mac_header(skb);
+		eth_hdr_p = eth_hdr(skb);
+		/* This needs to be done in this order (eth_hdr_p->h_dest may
+		 * overlap src_addr) */
+		memcpy(eth_hdr_p->h_source, src_addr, ETH_ALEN);
+		memcpy(eth_hdr_p->h_dest, dest_addr, ETH_ALEN);
+		if (len)
+			eth_hdr_p->h_proto = htons(len);
+	}
+
+	skb->protocol = eth_type_trans(skb, skb->dev);
+}
+
+/* Check for fragmented data in priv->rx_skb. If the packet was no fragment
+   or it was the last of a fragment set a skb containing the whole packet
+   is returned for further processing. Otherwise we get NULL and are
+   done and the packet is either stored inside the fragment buffer
+   or thrown away.  Every returned skb starts with the ieee802_11 header
+   and contains _no_ FCS at the end */
+static struct sk_buff *at76_check_for_rx_frags(struct at76_priv *priv)
+{
+	struct sk_buff *skb = priv->rx_skb;
+	struct at76_rx_buffer *buf = (struct at76_rx_buffer *)skb->data;
+	struct ieee80211_hdr_3addr *i802_11_hdr =
+	    (struct ieee80211_hdr_3addr *)buf->packet;
+	/* seq_ctrl, fragment_number, sequence number of new packet */
+	u16 sctl = le16_to_cpu(i802_11_hdr->seq_ctl);
+	u16 fragnr = sctl & 0xf;
+	u16 seqnr = sctl >> 4;
+	u16 frame_ctl = le16_to_cpu(i802_11_hdr->frame_ctl);
+
+	/* Length including the IEEE802.11 header, but without the trailing
+	 * FCS and without the Atmel Rx header */
+	int length = le16_to_cpu(buf->wlength) - IEEE80211_FCS_LEN;
+
+	/* where does the data payload start in skb->data ? */
+	u8 *data = i802_11_hdr->payload;
+
+	/* length of payload, excl. the trailing FCS */
+	int data_len = length - IEEE80211_3ADDR_LEN;
+
+	int i;
+	struct rx_data_buf *bptr, *optr;
+	unsigned long oldest = ~0UL;
+
+	at76_dbg(DBG_RX_FRAGS,
+		 "%s: rx data frame_ctl %04x addr2 %s seq/frag %d/%d "
+		 "length %d data %d: %s ...", priv->netdev->name, frame_ctl,
+		 mac2str(i802_11_hdr->addr2), seqnr, fragnr, length, data_len,
+		 hex2str(data, 32));
+
+	at76_dbg(DBG_RX_FRAGS_SKB, "%s: incoming skb: head %p data %p "
+		 "tail %p end %p len %d", priv->netdev->name, skb->head,
+		 skb->data, skb_tail_pointer(skb), skb_end_pointer(skb),
+		 skb->len);
+
+	if (data_len < 0) {
+		/* make sure data starts in the buffer */
+		printk(KERN_INFO "%s: data frame too short\n",
+		       priv->netdev->name);
+		return NULL;
+	}
+
+	WARN_ON(length <= AT76_RX_HDRLEN);
+	if (length <= AT76_RX_HDRLEN)
+		return NULL;
+
+	/* remove the at76_rx_buffer header - we don't need it anymore */
+	/* we need the IEEE802.11 header (for the addresses) if this packet
+	   is the first of a chain */
+	skb_pull(skb, AT76_RX_HDRLEN);
+
+	/* remove FCS at end */
+	skb_trim(skb, length);
+
+	at76_dbg(DBG_RX_FRAGS_SKB, "%s: trimmed skb: head %p data %p tail %p "
+		 "end %p len %d data %p data_len %d", priv->netdev->name,
+		 skb->head, skb->data, skb_tail_pointer(skb),
+		 skb_end_pointer(skb), skb->len, data, data_len);
+
+	if (fragnr == 0 && !(frame_ctl & IEEE80211_FCTL_MOREFRAGS)) {
+		/* unfragmented packet received */
+		/* Use a new skb for the next receive */
+		priv->rx_skb = NULL;
+		at76_dbg(DBG_RX_FRAGS, "%s: unfragmented", priv->netdev->name);
+		return skb;
+	}
+
+	/* look if we've got a chain for the sender address.
+	   afterwards optr points to first free or the oldest entry,
+	   or, if i < NR_RX_DATA_BUF, bptr points to the entry for the
+	   sender address */
+	/* determining the oldest entry doesn't cope with jiffies wrapping
+	   but I don't care to delete a young entry at these rare moments ... */
+
+	bptr = priv->rx_data;
+	optr = NULL;
+	for (i = 0; i < NR_RX_DATA_BUF; i++, bptr++) {
+		if (!bptr->skb) {
+			optr = bptr;
+			oldest = 0UL;
+			continue;
+		}
+
+		if (!compare_ether_addr(i802_11_hdr->addr2, bptr->sender))
+			break;
+
+		if (!optr) {
+			optr = bptr;
+			oldest = bptr->last_rx;
+		} else if (bptr->last_rx < oldest)
+			optr = bptr;
+	}
+
+	if (i < NR_RX_DATA_BUF) {
+
+		at76_dbg(DBG_RX_FRAGS, "%s: %d. cacheentry (seq/frag = %d/%d) "
+			 "matched sender addr",
+			 priv->netdev->name, i, bptr->seqnr, bptr->fragnr);
+
+		/* bptr points to an entry for the sender address */
+		if (bptr->seqnr == seqnr) {
+			int left;
+			/* the fragment has the current sequence number */
+			if (((bptr->fragnr + 1) & 0xf) != fragnr) {
+				/* wrong fragment number -> ignore it */
+				/* is & 0xf necessary above ??? */
+				at76_dbg(DBG_RX_FRAGS,
+					 "%s: frag nr mismatch: %d + 1 != %d",
+					 priv->netdev->name, bptr->fragnr,
+					 fragnr);
+				return NULL;
+			}
+			bptr->last_rx = jiffies;
+			/* the next following fragment number ->
+			   add the data at the end */
+
+			/* for test only ??? */
+			left = skb_tailroom(bptr->skb);
+			if (left < data_len)
+				printk(KERN_INFO
+				       "%s: only %d byte free (need %d)\n",
+				       priv->netdev->name, left, data_len);
+			else
+				memcpy(skb_put(bptr->skb, data_len), data,
+				       data_len);
+
+			bptr->fragnr = fragnr;
+			if (frame_ctl & IEEE80211_FCTL_MOREFRAGS)
+				return NULL;
+
+			/* this was the last fragment - send it */
+			skb = bptr->skb;
+			bptr->skb = NULL;	/* free the entry */
+			at76_dbg(DBG_RX_FRAGS, "%s: last frag of seq %d",
+				 priv->netdev->name, seqnr);
+			return skb;
+		}
+
+		/* got another sequence number */
+		if (fragnr == 0) {
+			/* it's the start of a new chain - replace the
+			   old one by this */
+			/* bptr->sender has the correct value already */
+			at76_dbg(DBG_RX_FRAGS,
+				 "%s: start of new seq %d, removing old seq %d",
+				 priv->netdev->name, seqnr, bptr->seqnr);
+			bptr->seqnr = seqnr;
+			bptr->fragnr = 0;
+			bptr->last_rx = jiffies;
+			/* swap bptr->skb and priv->rx_skb */
+			skb = bptr->skb;
+			bptr->skb = priv->rx_skb;
+			priv->rx_skb = skb;
+		} else {
+			/* it from the middle of a new chain ->
+			   delete the old entry and skip the new one */
+			at76_dbg(DBG_RX_FRAGS,
+				 "%s: middle of new seq %d (%d) "
+				 "removing old seq %d",
+				 priv->netdev->name, seqnr, fragnr,
+				 bptr->seqnr);
+			dev_kfree_skb(bptr->skb);
+			bptr->skb = NULL;
+		}
+		return NULL;
+	}
+
+	/* if we didn't find a chain for the sender address, optr
+	   points either to the first free or the oldest entry */
+
+	if (fragnr != 0) {
+		/* this is not the begin of a fragment chain ... */
+		at76_dbg(DBG_RX_FRAGS,
+			 "%s: no chain for non-first fragment (%d)",
+			 priv->netdev->name, fragnr);
+		return NULL;
+	}
+
+	BUG_ON(!optr);
+	if (optr->skb) {
+		/* swap the skb's */
+		skb = optr->skb;
+		optr->skb = priv->rx_skb;
+		priv->rx_skb = skb;
+
+		at76_dbg(DBG_RX_FRAGS,
+			 "%s: free old contents: sender %s seq/frag %d/%d",
+			 priv->netdev->name, mac2str(optr->sender),
+			 optr->seqnr, optr->fragnr);
+
+	} else {
+		/* take the skb from priv->rx_skb */
+		optr->skb = priv->rx_skb;
+		/* let at76_submit_rx_urb() allocate a new skb */
+		priv->rx_skb = NULL;
+
+		at76_dbg(DBG_RX_FRAGS, "%s: use a free entry",
+			 priv->netdev->name);
+	}
+	memcpy(optr->sender, i802_11_hdr->addr2, ETH_ALEN);
+	optr->seqnr = seqnr;
+	optr->fragnr = 0;
+	optr->last_rx = jiffies;
+
+	return NULL;
+}
+
+/* Rx interrupt: we expect the complete data buffer in priv->rx_skb */
+static void at76_rx_data(struct at76_priv *priv)
+{
+	struct net_device *netdev = priv->netdev;
+	struct net_device_stats *stats = &priv->stats;
+	struct sk_buff *skb = priv->rx_skb;
+	struct at76_rx_buffer *buf = (struct at76_rx_buffer *)skb->data;
+	struct ieee80211_hdr_3addr *i802_11_hdr;
+	int length = le16_to_cpu(buf->wlength);
+
+	at76_dbg(DBG_RX_DATA, "%s received data packet: %s", netdev->name,
+		 hex2str(skb->data, AT76_RX_HDRLEN));
+
+	at76_dbg(DBG_RX_DATA_CONTENT, "rx packet: %s",
+		 hex2str(skb->data + AT76_RX_HDRLEN, length));
+
+	skb = at76_check_for_rx_frags(priv);
+	if (!skb)
+		return;
+
+	/* Atmel header and the FCS are already removed */
+	i802_11_hdr = (struct ieee80211_hdr_3addr *)skb->data;
+
+	skb->dev = netdev;
+	skb->ip_summed = CHECKSUM_NONE;	/* TODO: should check CRC */
+
+	if (is_broadcast_ether_addr(i802_11_hdr->addr1)) {
+		if (!compare_ether_addr(i802_11_hdr->addr1, netdev->broadcast))
+			skb->pkt_type = PACKET_BROADCAST;
+		else
+			skb->pkt_type = PACKET_MULTICAST;
+	} else if (compare_ether_addr(i802_11_hdr->addr1, netdev->dev_addr))
+		skb->pkt_type = PACKET_OTHERHOST;
+
+	at76_ieee80211_to_eth(skb, priv->iw_mode);
+
+	netdev->last_rx = jiffies;
+	netif_rx(skb);
+	stats->rx_packets++;
+	stats->rx_bytes += length;
+
+	return;
+}
+
+static void at76_rx_monitor_mode(struct at76_priv *priv)
+{
+	struct at76_rx_radiotap *rt;
+	u8 *payload;
+	int skblen;
+	struct net_device *netdev = priv->netdev;
+	struct at76_rx_buffer *buf =
+	    (struct at76_rx_buffer *)priv->rx_skb->data;
+	/* length including the IEEE802.11 header and the trailing FCS,
+	   but not at76_rx_buffer */
+	int length = le16_to_cpu(buf->wlength);
+	struct sk_buff *skb = priv->rx_skb;
+	struct net_device_stats *stats = &priv->stats;
+
+	if (length < IEEE80211_FCS_LEN) {
+		/* buffer contains no data */
+		at76_dbg(DBG_MONITOR_MODE,
+			 "%s: MONITOR MODE: rx skb without data",
+			 priv->netdev->name);
+		return;
+	}
+
+	skblen = sizeof(struct at76_rx_radiotap) + length;
+
+	skb = dev_alloc_skb(skblen);
+	if (!skb) {
+		printk(KERN_ERR "%s: MONITOR MODE: dev_alloc_skb for radiotap "
+		       "header returned NULL\n", priv->netdev->name);
+		return;
+	}
+
+	skb_put(skb, skblen);
+
+	rt = (struct at76_rx_radiotap *)skb->data;
+	payload = skb->data + sizeof(struct at76_rx_radiotap);
+
+	rt->rt_hdr.it_version = 0;
+	rt->rt_hdr.it_pad = 0;
+	rt->rt_hdr.it_len = cpu_to_le16(sizeof(struct at76_rx_radiotap));
+	rt->rt_hdr.it_present = cpu_to_le32(AT76_RX_RADIOTAP_PRESENT);
+
+	rt->rt_tsft = cpu_to_le64(le32_to_cpu(buf->rx_time));
+	rt->rt_rate = hw_rates[buf->rx_rate] & (~0x80);
+	rt->rt_signal = buf->rssi;
+	rt->rt_noise = buf->noise_level;
+	rt->rt_flags = IEEE80211_RADIOTAP_F_FCS;
+	if (buf->fragmentation)
+		rt->rt_flags |= IEEE80211_RADIOTAP_F_FRAG;
+
+	memcpy(payload, buf->packet, length);
+	skb->dev = netdev;
+	skb->ip_summed = CHECKSUM_NONE;
+	skb_reset_mac_header(skb);
+	skb->pkt_type = PACKET_OTHERHOST;
+	skb->protocol = htons(ETH_P_802_2);
+
+	netdev->last_rx = jiffies;
+	netif_rx(skb);
+	stats->rx_packets++;
+	stats->rx_bytes += length;
+}
+
+/* Check if we spy on the sender address in buf and update stats */
+static void at76_iwspy_update(struct at76_priv *priv,
+			      struct at76_rx_buffer *buf)
+{
+	struct ieee80211_hdr_3addr *hdr =
+	    (struct ieee80211_hdr_3addr *)buf->packet;
+	struct iw_quality qual;
+
+	/* We can only set the level here */
+	qual.updated = IW_QUAL_QUAL_INVALID | IW_QUAL_NOISE_INVALID;
+	qual.level = 0;
+	qual.noise = 0;
+	at76_calc_level(priv, buf, &qual);
+
+	spin_lock_bh(&priv->spy_spinlock);
+
+	if (priv->spy_data.spy_number > 0)
+		wireless_spy_update(priv->netdev, hdr->addr2, &qual);
+
+	spin_unlock_bh(&priv->spy_spinlock);
+}
+
+static void at76_rx_tasklet(unsigned long param)
+{
+	struct urb *urb = (struct urb *)param;
+	struct at76_priv *priv = urb->context;
+	struct net_device *netdev = priv->netdev;
+	struct at76_rx_buffer *buf;
+	struct ieee80211_hdr_3addr *i802_11_hdr;
+	u16 frame_ctl;
+
+	if (priv->device_unplugged) {
+		at76_dbg(DBG_DEVSTART, "device unplugged");
+		if (urb)
+			at76_dbg(DBG_DEVSTART, "urb status %d", urb->status);
+		return;
+	}
+
+	if (!priv->rx_skb || !netdev || !priv->rx_skb->data)
+		return;
+
+	buf = (struct at76_rx_buffer *)priv->rx_skb->data;
+
+	i802_11_hdr = (struct ieee80211_hdr_3addr *)buf->packet;
+
+	frame_ctl = le16_to_cpu(i802_11_hdr->frame_ctl);
+
+	if (urb->status != 0) {
+		if (urb->status != -ENOENT && urb->status != -ECONNRESET)
+			at76_dbg(DBG_URB,
+				 "%s %s: - nonzero Rx bulk status received: %d",
+				 __func__, netdev->name, urb->status);
+		return;
+	}
+
+	at76_dbg(DBG_RX_ATMEL_HDR,
+		 "%s: rx frame: rate %d rssi %d noise %d link %d %s",
+		 priv->netdev->name, buf->rx_rate, buf->rssi, buf->noise_level,
+		 buf->link_quality, hex2str(i802_11_hdr, 48));
+	if (priv->iw_mode == IW_MODE_MONITOR) {
+		at76_rx_monitor_mode(priv);
+		goto exit;
+	}
+
+	/* there is a new bssid around, accept it: */
+	if (buf->newbss && priv->iw_mode == IW_MODE_ADHOC) {
+		at76_dbg(DBG_PROGRESS, "%s: rx newbss", netdev->name);
+		schedule_work(&priv->work_new_bss);
+	}
+
+	switch (frame_ctl & IEEE80211_FCTL_FTYPE) {
+	case IEEE80211_FTYPE_DATA:
+		at76_rx_data(priv);
+		break;
+
+	case IEEE80211_FTYPE_MGMT:
+		/* jal: TODO: find out if we can update iwspy also on
+		   other frames than management (might depend on the
+		   radio chip / firmware version !) */
+
+		at76_iwspy_update(priv, buf);
+
+		at76_rx_mgmt(priv, buf);
+		break;
+
+	case IEEE80211_FTYPE_CTL:
+		at76_dbg(DBG_RX_CTRL, "%s: ignored ctrl frame: %04x",
+			 priv->netdev->name, frame_ctl);
+		break;
+
+	default:
+		printk(KERN_DEBUG "%s: ignoring frame with framectl 0x%04x\n",
+		       priv->netdev->name, frame_ctl);
+	}
+exit:
+	at76_submit_rx_urb(priv);
+}
+
+/* Load firmware into kernel memory and parse it */
+static struct fwentry *at76_load_firmware(struct usb_device *udev,
+					  enum board_type board_type)
+{
+	int ret;
+	char *str;
+	struct at76_fw_header *fwh;
+	struct fwentry *fwe = &firmwares[board_type];
+
+	mutex_lock(&fw_mutex);
+
+	if (fwe->loaded) {
+		at76_dbg(DBG_FW, "re-using previously loaded fw");
+		goto exit;
+	}
+
+	at76_dbg(DBG_FW, "downloading firmware %s", fwe->fwname);
+	ret = request_firmware(&fwe->fw, fwe->fwname, &udev->dev);
+	if (ret < 0) {
+		dev_printk(KERN_ERR, &udev->dev, "firmware %s not found!\n",
+			   fwe->fwname);
+		dev_printk(KERN_ERR, &udev->dev,
+			   "you may need to download the firmware from "
+			   "http://developer.berlios.de/projects/at76c503a/");
+		goto exit;
+	}
+
+	at76_dbg(DBG_FW, "got it.");
+	fwh = (struct at76_fw_header *)(fwe->fw->data);
+
+	if (fwe->fw->size <= sizeof(*fwh)) {
+		dev_printk(KERN_ERR, &udev->dev,
+			   "firmware is too short (0x%zx)\n", fwe->fw->size);
+		goto exit;
+	}
+
+	/* CRC currently not checked */
+	fwe->board_type = le32_to_cpu(fwh->board_type);
+	if (fwe->board_type != board_type) {
+		dev_printk(KERN_ERR, &udev->dev,
+			   "board type mismatch, requested %u, got %u\n",
+			   board_type, fwe->board_type);
+		goto exit;
+	}
+
+	fwe->fw_version.major = fwh->major;
+	fwe->fw_version.minor = fwh->minor;
+	fwe->fw_version.patch = fwh->patch;
+	fwe->fw_version.build = fwh->build;
+
+	str = (char *)fwh + le32_to_cpu(fwh->str_offset);
+	fwe->intfw = (u8 *)fwh + le32_to_cpu(fwh->int_fw_offset);
+	fwe->intfw_size = le32_to_cpu(fwh->int_fw_len);
+	fwe->extfw = (u8 *)fwh + le32_to_cpu(fwh->ext_fw_offset);
+	fwe->extfw_size = le32_to_cpu(fwh->ext_fw_len);
+
+	fwe->loaded = 1;
+
+	dev_printk(KERN_DEBUG, &udev->dev,
+		   "using firmware %s (version %d.%d.%d-%d)\n",
+		   fwe->fwname, fwh->major, fwh->minor, fwh->patch, fwh->build);
+
+	at76_dbg(DBG_DEVSTART, "board %u, int %d:%d, ext %d:%d", board_type,
+		 le32_to_cpu(fwh->int_fw_offset), le32_to_cpu(fwh->int_fw_len),
+		 le32_to_cpu(fwh->ext_fw_offset), le32_to_cpu(fwh->ext_fw_len));
+	at76_dbg(DBG_DEVSTART, "firmware id %s", str);
+
+exit:
+	mutex_unlock(&fw_mutex);
+
+	if (fwe->loaded)
+		return fwe;
+	else
+		return NULL;
+}
+
+/* Allocate network device and initialize private data */
+static struct at76_priv *at76_alloc_new_device(struct usb_device *udev)
+{
+	struct net_device *netdev;
+	struct at76_priv *priv;
+	int i;
+
+	/* allocate memory for our device state and initialize it */
+	netdev = alloc_etherdev(sizeof(struct at76_priv));
+	if (!netdev) {
+		dev_printk(KERN_ERR, &udev->dev, "out of memory\n");
+		return NULL;
+	}
+
+	priv = netdev_priv(netdev);
+
+	priv->udev = udev;
+	priv->netdev = netdev;
+
+	mutex_init(&priv->mtx);
+	INIT_WORK(&priv->work_assoc_done, at76_work_assoc_done);
+	INIT_WORK(&priv->work_join, at76_work_join);
+	INIT_WORK(&priv->work_new_bss, at76_work_new_bss);
+	INIT_WORK(&priv->work_start_scan, at76_work_start_scan);
+	INIT_WORK(&priv->work_set_promisc, at76_work_set_promisc);
+	INIT_WORK(&priv->work_submit_rx, at76_work_submit_rx);
+	INIT_DELAYED_WORK(&priv->dwork_restart, at76_dwork_restart);
+	INIT_DELAYED_WORK(&priv->dwork_get_scan, at76_dwork_get_scan);
+	INIT_DELAYED_WORK(&priv->dwork_beacon, at76_dwork_beacon);
+	INIT_DELAYED_WORK(&priv->dwork_auth, at76_dwork_auth);
+	INIT_DELAYED_WORK(&priv->dwork_assoc, at76_dwork_assoc);
+
+	spin_lock_init(&priv->mgmt_spinlock);
+	priv->next_mgmt_bulk = NULL;
+	priv->mac_state = MAC_INIT;
+
+	/* initialize empty BSS list */
+	priv->curr_bss = NULL;
+	INIT_LIST_HEAD(&priv->bss_list);
+	spin_lock_init(&priv->bss_list_spinlock);
+
+	init_timer(&priv->bss_list_timer);
+	priv->bss_list_timer.data = (unsigned long)priv;
+	priv->bss_list_timer.function = at76_bss_list_timeout;
+
+	spin_lock_init(&priv->spy_spinlock);
+
+	/* mark all rx data entries as unused */
+	for (i = 0; i < NR_RX_DATA_BUF; i++)
+		priv->rx_data[i].skb = NULL;
+
+	priv->rx_tasklet.func = at76_rx_tasklet;
+	priv->rx_tasklet.data = 0;
+
+	priv->pm_mode = AT76_PM_OFF;
+	priv->pm_period = 0;
+
+	return priv;
+}
+
+static int at76_alloc_urbs(struct at76_priv *priv,
+			   struct usb_interface *interface)
+{
+	struct usb_endpoint_descriptor *endpoint, *ep_in, *ep_out;
+	int i;
+	int buffer_size;
+	struct usb_host_interface *iface_desc;
+
+	at76_dbg(DBG_PROC_ENTRY, "%s: ENTER", __func__);
+
+	at76_dbg(DBG_URB, "%s: NumEndpoints %d ", __func__,
+		 interface->altsetting[0].desc.bNumEndpoints);
+
+	ep_in = NULL;
+	ep_out = NULL;
+	iface_desc = interface->cur_altsetting;
+	for (i = 0; i < iface_desc->desc.bNumEndpoints; i++) {
+		endpoint = &iface_desc->endpoint[i].desc;
+
+		at76_dbg(DBG_URB, "%s: %d. endpoint: addr 0x%x attr 0x%x",
+			 __func__, i, endpoint->bEndpointAddress,
+			 endpoint->bmAttributes);
+
+		if (!ep_in && usb_endpoint_is_bulk_in(endpoint))
+			ep_in = endpoint;
+
+		if (!ep_out && usb_endpoint_is_bulk_out(endpoint))
+			ep_out = endpoint;
+	}
+
+	if (!ep_in || !ep_out) {
+		dev_printk(KERN_ERR, &interface->dev,
+			   "bulk endpoints missing\n");
+		return -ENXIO;
+	}
+
+	priv->rx_pipe = usb_rcvbulkpipe(priv->udev, ep_in->bEndpointAddress);
+	priv->tx_pipe = usb_sndbulkpipe(priv->udev, ep_out->bEndpointAddress);
+
+	priv->rx_urb = usb_alloc_urb(0, GFP_KERNEL);
+	priv->tx_urb = usb_alloc_urb(0, GFP_KERNEL);
+	if (!priv->rx_urb || !priv->tx_urb) {
+		dev_printk(KERN_ERR, &interface->dev, "cannot allocate URB\n");
+		return -ENOMEM;
+	}
+
+	buffer_size = sizeof(struct at76_tx_buffer) + MAX_PADDING_SIZE;
+	priv->bulk_out_buffer = kmalloc(buffer_size, GFP_KERNEL);
+	if (!priv->bulk_out_buffer) {
+		dev_printk(KERN_ERR, &interface->dev,
+			   "cannot allocate output buffer\n");
+		return -ENOMEM;
+	}
+
+	at76_dbg(DBG_PROC_ENTRY, "%s: EXIT", __func__);
+
+	return 0;
+}
+
+/* Register network device and initialize the hardware */
+static int at76_init_new_device(struct at76_priv *priv,
+				struct usb_interface *interface)
+{
+	struct net_device *netdev = priv->netdev;
+	int ret;
+
+	/* set up the endpoint information */
+	/* check out the endpoints */
+
+	at76_dbg(DBG_DEVSTART, "USB interface: %d endpoints",
+		 interface->cur_altsetting->desc.bNumEndpoints);
+
+	ret = at76_alloc_urbs(priv, interface);
+	if (ret < 0)
+		goto exit;
+
+	/* MAC address */
+	ret = at76_get_hw_config(priv);
+	if (ret < 0) {
+		dev_printk(KERN_ERR, &interface->dev,
+			   "cannot get MAC address\n");
+		goto exit;
+	}
+
+	priv->domain = at76_get_reg_domain(priv->regulatory_domain);
+	/* init. netdev->dev_addr */
+	memcpy(netdev->dev_addr, priv->mac_addr, ETH_ALEN);
+
+	priv->channel = DEF_CHANNEL;
+	priv->iw_mode = IW_MODE_INFRA;
+	priv->rts_threshold = DEF_RTS_THRESHOLD;
+	priv->frag_threshold = DEF_FRAG_THRESHOLD;
+	priv->short_retry_limit = DEF_SHORT_RETRY_LIMIT;
+	priv->txrate = TX_RATE_AUTO;
+	priv->preamble_type = PREAMBLE_TYPE_LONG;
+	priv->beacon_period = 100;
+	priv->beacons_last_qual = jiffies;
+	priv->auth_mode = WLAN_AUTH_OPEN;
+	priv->scan_min_time = DEF_SCAN_MIN_TIME;
+	priv->scan_max_time = DEF_SCAN_MAX_TIME;
+	priv->scan_mode = SCAN_TYPE_ACTIVE;
+
+	netdev->flags &= ~IFF_MULTICAST;	/* not yet or never */
+	netdev->open = at76_open;
+	netdev->stop = at76_stop;
+	netdev->get_stats = at76_get_stats;
+	netdev->ethtool_ops = &at76_ethtool_ops;
+
+	/* Add pointers to enable iwspy support. */
+	priv->wireless_data.spy_data = &priv->spy_data;
+	netdev->wireless_data = &priv->wireless_data;
+
+	netdev->hard_start_xmit = at76_tx;
+	netdev->tx_timeout = at76_tx_timeout;
+	netdev->watchdog_timeo = 2 * HZ;
+	netdev->wireless_handlers = &at76_handler_def;
+	netdev->set_multicast_list = at76_set_multicast;
+	netdev->set_mac_address = at76_set_mac_address;
+	dev_alloc_name(netdev, "wlan%d");
+
+	ret = register_netdev(priv->netdev);
+	if (ret) {
+		dev_printk(KERN_ERR, &interface->dev,
+			   "cannot register netdevice (status %d)!\n", ret);
+		goto exit;
+	}
+	priv->netdev_registered = 1;
+
+	printk(KERN_INFO "%s: USB %s, MAC %s, firmware %d.%d.%d-%d\n",
+	       netdev->name, interface->dev.bus_id, mac2str(priv->mac_addr),
+	       priv->fw_version.major, priv->fw_version.minor,
+	       priv->fw_version.patch, priv->fw_version.build);
+	printk(KERN_INFO "%s: regulatory domain 0x%02x: %s\n", netdev->name,
+	       priv->regulatory_domain, priv->domain->name);
+
+	/* we let this timer run the whole time this driver instance lives */
+	mod_timer(&priv->bss_list_timer, jiffies + BSS_LIST_TIMEOUT);
+
+exit:
+	return ret;
+}
+
+static void at76_delete_device(struct at76_priv *priv)
+{
+	int i;
+
+	at76_dbg(DBG_PROC_ENTRY, "%s: ENTER", __func__);
+
+	/* The device is gone, don't bother turning it off */
+	priv->device_unplugged = 1;
+
+	if (priv->netdev_registered)
+		unregister_netdev(priv->netdev);
+
+	/* assuming we used keventd, it must quiesce too */
+	flush_scheduled_work();
+
+	kfree(priv->bulk_out_buffer);
+
+	if (priv->tx_urb) {
+		usb_kill_urb(priv->tx_urb);
+		usb_free_urb(priv->tx_urb);
+	}
+	if (priv->rx_urb) {
+		usb_kill_urb(priv->rx_urb);
+		usb_free_urb(priv->rx_urb);
+	}
+
+	at76_dbg(DBG_PROC_ENTRY, "%s: unlinked urbs", __func__);
+
+	if (priv->rx_skb)
+		kfree_skb(priv->rx_skb);
+
+	at76_free_bss_list(priv);
+	del_timer_sync(&priv->bss_list_timer);
+	cancel_delayed_work(&priv->dwork_get_scan);
+	cancel_delayed_work(&priv->dwork_beacon);
+	cancel_delayed_work(&priv->dwork_auth);
+	cancel_delayed_work(&priv->dwork_assoc);
+
+	if (priv->mac_state == MAC_CONNECTED)
+		at76_iwevent_bss_disconnect(priv->netdev);
+
+	for (i = 0; i < NR_RX_DATA_BUF; i++)
+		if (priv->rx_data[i].skb) {
+			dev_kfree_skb(priv->rx_data[i].skb);
+			priv->rx_data[i].skb = NULL;
+		}
+	usb_put_dev(priv->udev);
+
+	at76_dbg(DBG_PROC_ENTRY, "%s: before freeing priv/netdev", __func__);
+	free_netdev(priv->netdev);	/* priv is in netdev */
+
+	at76_dbg(DBG_PROC_ENTRY, "%s: EXIT", __func__);
+}
+
+static int at76_probe(struct usb_interface *interface,
+		      const struct usb_device_id *id)
+{
+	int ret;
+	struct at76_priv *priv;
+	struct fwentry *fwe;
+	struct usb_device *udev;
+	int op_mode;
+	int need_ext_fw = 0;
+	struct mib_fw_version fwv;
+	int board_type = (int)id->driver_info;
+
+	udev = usb_get_dev(interface_to_usbdev(interface));
+
+	/* Load firmware into kernel memory */
+	fwe = at76_load_firmware(udev, board_type);
+	if (!fwe) {
+		ret = -ENOENT;
+		goto error;
+	}
+
+	op_mode = at76_get_op_mode(udev);
+
+	at76_dbg(DBG_DEVSTART, "opmode %d", op_mode);
+
+	/* we get OPMODE_NONE with 2.4.23, SMC2662W-AR ???
+	   we get 204 with 2.4.23, Fiberline FL-WL240u (505A+RFMD2958) ??? */
+
+	if (op_mode == OPMODE_HW_CONFIG_MODE) {
+		dev_printk(KERN_ERR, &interface->dev,
+			   "cannot handle a device in HW_CONFIG_MODE\n");
+		ret = -EBUSY;
+		goto error;
+	}
+
+	if (op_mode != OPMODE_NORMAL_NIC_WITH_FLASH
+	    && op_mode != OPMODE_NORMAL_NIC_WITHOUT_FLASH) {
+		/* download internal firmware part */
+		dev_printk(KERN_DEBUG, &interface->dev,
+			   "downloading internal firmware\n");
+		ret = at76_load_internal_fw(udev, fwe);
+		if (ret < 0) {
+			dev_printk(KERN_ERR, &interface->dev,
+				   "error %d downloading internal firmware\n",
+				   ret);
+			goto error;
+		}
+		usb_put_dev(udev);
+		return ret;
+	}
+
+	/* Internal firmware already inside the device.  Get firmware
+	 * version to test if external firmware is loaded.
+	 * This works only for newer firmware, e.g. the Intersil 0.90.x
+	 * says "control timeout on ep0in" and subsequent
+	 * at76_get_op_mode() fail too :-( */
+
+	/* if version >= 0.100.x.y or device with built-in flash we can
+	 * query the device for the fw version */
+	if ((fwe->fw_version.major > 0 || fwe->fw_version.minor >= 100)
+	    || (op_mode == OPMODE_NORMAL_NIC_WITH_FLASH)) {
+		ret = at76_get_mib(udev, MIB_FW_VERSION, &fwv, sizeof(fwv));
+		if (ret < 0 || (fwv.major | fwv.minor) == 0)
+			need_ext_fw = 1;
+	} else
+		/* No way to check firmware version, reload to be sure */
+		need_ext_fw = 1;
+
+	if (need_ext_fw) {
+		dev_printk(KERN_DEBUG, &interface->dev,
+			   "downloading external firmware\n");
+
+		ret = at76_load_external_fw(udev, fwe);
+		if (ret)
+			goto error;
+
+		/* Re-check firmware version */
+		ret = at76_get_mib(udev, MIB_FW_VERSION, &fwv, sizeof(fwv));
+		if (ret < 0) {
+			dev_printk(KERN_ERR, &interface->dev,
+				   "error %d getting firmware version\n", ret);
+			goto error;
+		}
+	}
+
+	priv = at76_alloc_new_device(udev);
+	if (!priv) {
+		ret = -ENOMEM;
+		goto error;
+	}
+
+	SET_NETDEV_DEV(priv->netdev, &interface->dev);
+	usb_set_intfdata(interface, priv);
+
+	memcpy(&priv->fw_version, &fwv, sizeof(struct mib_fw_version));
+	priv->board_type = board_type;
+
+	ret = at76_init_new_device(priv, interface);
+	if (ret < 0)
+		at76_delete_device(priv);
+
+	return ret;
+
+error:
+	usb_put_dev(udev);
+	return ret;
+}
+
+static void at76_disconnect(struct usb_interface *interface)
+{
+	struct at76_priv *priv;
+
+	priv = usb_get_intfdata(interface);
+	usb_set_intfdata(interface, NULL);
+
+	/* Disconnect after loading internal firmware */
+	if (!priv)
+		return;
+
+	printk(KERN_INFO "%s: disconnecting\n", priv->netdev->name);
+	at76_delete_device(priv);
+	dev_printk(KERN_INFO, &interface->dev, "disconnected\n");
+}
+
+/* Structure for registering this driver with the USB subsystem */
+static struct usb_driver at76_driver = {
+	.name = DRIVER_NAME,
+	.probe = at76_probe,
+	.disconnect = at76_disconnect,
+	.id_table = dev_table,
+};
+
+static int __init at76_mod_init(void)
+{
+	int result;
+
+	printk(KERN_INFO DRIVER_DESC " " DRIVER_VERSION " loading\n");
+
+	mutex_init(&fw_mutex);
+
+	/* register this driver with the USB subsystem */
+	result = usb_register(&at76_driver);
+	if (result < 0)
+		printk(KERN_ERR DRIVER_NAME
+		       ": usb_register failed (status %d)\n", result);
+
+	led_trigger_register_simple("at76_usb-tx", &ledtrig_tx);
+	return result;
+}
+
+static void __exit at76_mod_exit(void)
+{
+	int i;
+
+	printk(KERN_INFO DRIVER_DESC " " DRIVER_VERSION " unloading\n");
+	usb_deregister(&at76_driver);
+	for (i = 0; i < ARRAY_SIZE(firmwares); i++) {
+		if (firmwares[i].fw)
+			release_firmware(firmwares[i].fw);
+	}
+	led_trigger_unregister_simple(ledtrig_tx);
+}
+
+module_param_named(debug, at76_debug, int, 0600);
+MODULE_PARM_DESC(debug, "Debugging level");
+
+module_init(at76_mod_init);
+module_exit(at76_mod_exit);
+
+MODULE_AUTHOR("Oliver Kurth <oku@masqmail.cx>");
+MODULE_AUTHOR("Joerg Albert <joerg.albert@gmx.de>");
+MODULE_AUTHOR("Alex <alex@foogod.com>");
+MODULE_AUTHOR("Nick Jones");
+MODULE_AUTHOR("Balint Seeber <n0_5p4m_p13453@hotmail.com>");
+MODULE_AUTHOR("Pavel Roskin <proski@gnu.org>");
+MODULE_DESCRIPTION(DRIVER_DESC);
+MODULE_LICENSE("GPL");
diff --git a/drivers/staging/at76_usb/at76_usb.h b/drivers/staging/at76_usb/at76_usb.h
new file mode 100644
index 0000000..b20be9d
--- /dev/null
+++ b/drivers/staging/at76_usb/at76_usb.h
@@ -0,0 +1,619 @@
+/*
+ * Copyright (c) 2002,2003 Oliver Kurth
+ *	     (c) 2003,2004 Joerg Albert <joerg.albert@gmx.de>
+ *	     (c) 2007 Guido Guenther <agx@sigxcpu.org>
+ *
+ * This program is free software; you can redistribute it and/or
+ * modify it under the terms of the GNU General Public License as
+ * published by the Free Software Foundation; either version 2 of
+ * the License, or (at your option) any later version.
+ *
+ * This driver was based on information from the Sourceforge driver
+ * released and maintained by Atmel:
+ *
+ *  http://sourceforge.net/projects/atmelwlandriver/
+ *
+ * Although the code was completely re-written,
+ * it would have been impossible without Atmel's decision to
+ * release an Open Source driver (unfortunately the firmware was
+ * kept binary only). Thanks for that decision to Atmel!
+ */
+
+#ifndef _AT76_USB_H
+#define _AT76_USB_H
+
+/* Board types */
+enum board_type {
+	BOARD_503_ISL3861 = 1,
+	BOARD_503_ISL3863 = 2,
+	BOARD_503 = 3,
+	BOARD_503_ACC = 4,
+	BOARD_505 = 5,
+	BOARD_505_2958 = 6,
+	BOARD_505A = 7,
+	BOARD_505AMX = 8
+};
+
+/* our private ioctl's */
+/* preamble length (0 - long, 1 - short, 2 - auto) */
+#define AT76_SET_SHORT_PREAMBLE		(SIOCIWFIRSTPRIV + 0)
+#define AT76_GET_SHORT_PREAMBLE		(SIOCIWFIRSTPRIV + 1)
+/* which debug channels are enabled */
+#define AT76_SET_DEBUG			(SIOCIWFIRSTPRIV + 2)
+#define AT76_GET_DEBUG			(SIOCIWFIRSTPRIV + 3)
+/* power save mode (incl. the Atmel proprietary smart save mode) */
+#define AT76_SET_POWERSAVE_MODE		(SIOCIWFIRSTPRIV + 4)
+#define AT76_GET_POWERSAVE_MODE		(SIOCIWFIRSTPRIV + 5)
+/* min and max channel times for scan */
+#define AT76_SET_SCAN_TIMES		(SIOCIWFIRSTPRIV + 6)
+#define AT76_GET_SCAN_TIMES		(SIOCIWFIRSTPRIV + 7)
+/* scan mode (0 - active, 1 - passive) */
+#define AT76_SET_SCAN_MODE		(SIOCIWFIRSTPRIV + 8)
+#define AT76_GET_SCAN_MODE		(SIOCIWFIRSTPRIV + 9)
+
+#define CMD_STATUS_IDLE				0x00
+#define CMD_STATUS_COMPLETE			0x01
+#define CMD_STATUS_UNKNOWN			0x02
+#define CMD_STATUS_INVALID_PARAMETER		0x03
+#define CMD_STATUS_FUNCTION_NOT_SUPPORTED	0x04
+#define CMD_STATUS_TIME_OUT			0x07
+#define CMD_STATUS_IN_PROGRESS			0x08
+#define CMD_STATUS_HOST_FAILURE			0xff
+#define CMD_STATUS_SCAN_FAILED			0xf0
+
+/* answers to get op mode */
+#define OPMODE_NONE				0x00
+#define OPMODE_NORMAL_NIC_WITH_FLASH		0x01
+#define OPMODE_HW_CONFIG_MODE			0x02
+#define OPMODE_DFU_MODE_WITH_FLASH		0x03
+#define OPMODE_NORMAL_NIC_WITHOUT_FLASH		0x04
+
+#define CMD_SET_MIB		0x01
+#define CMD_GET_MIB		0x02
+#define CMD_SCAN		0x03
+#define CMD_JOIN		0x04
+#define CMD_START_IBSS		0x05
+#define CMD_RADIO_ON		0x06
+#define CMD_RADIO_OFF		0x07
+#define CMD_STARTUP		0x0B
+
+#define MIB_LOCAL		0x01
+#define MIB_MAC_ADDR		0x02
+#define MIB_MAC			0x03
+#define MIB_MAC_MGMT		0x05
+#define MIB_MAC_WEP		0x06
+#define MIB_PHY			0x07
+#define MIB_FW_VERSION		0x08
+#define MIB_MDOMAIN		0x09
+
+#define ADHOC_MODE		1
+#define INFRASTRUCTURE_MODE	2
+
+/* values for struct mib_local, field preamble_type */
+#define PREAMBLE_TYPE_LONG	0
+#define PREAMBLE_TYPE_SHORT	1
+#define PREAMBLE_TYPE_AUTO	2
+
+/* values for tx_rate */
+#define TX_RATE_1MBIT		0
+#define TX_RATE_2MBIT		1
+#define TX_RATE_5_5MBIT 	2
+#define TX_RATE_11MBIT		3
+#define TX_RATE_AUTO		4
+
+/* power management modes */
+#define AT76_PM_OFF		1
+#define AT76_PM_ON		2
+#define AT76_PM_SMART		3
+
+struct hwcfg_r505 {
+	u8 cr39_values[14];
+	u8 reserved1[14];
+	u8 bb_cr[14];
+	u8 pidvid[4];
+	u8 mac_addr[ETH_ALEN];
+	u8 regulatory_domain;
+	u8 reserved2[14];
+	u8 cr15_values[14];
+	u8 reserved3[3];
+} __attribute__((packed));
+
+struct hwcfg_rfmd {
+	u8 cr20_values[14];
+	u8 cr21_values[14];
+	u8 bb_cr[14];
+	u8 pidvid[4];
+	u8 mac_addr[ETH_ALEN];
+	u8 regulatory_domain;
+	u8 low_power_values[14];
+	u8 normal_power_values[14];
+	u8 reserved1[3];
+} __attribute__((packed));
+
+struct hwcfg_intersil {
+	u8 mac_addr[ETH_ALEN];
+	u8 cr31_values[14];
+	u8 cr58_values[14];
+	u8 pidvid[4];
+	u8 regulatory_domain;
+	u8 reserved[1];
+} __attribute__((packed));
+
+union at76_hwcfg {
+	struct hwcfg_intersil i;
+	struct hwcfg_rfmd r3;
+	struct hwcfg_r505 r5;
+};
+
+#define WEP_SMALL_KEY_LEN	(40 / 8)
+#define WEP_LARGE_KEY_LEN	(104 / 8)
+
+struct at76_card_config {
+	u8 exclude_unencrypted;
+	u8 promiscuous_mode;
+	u8 short_retry_limit;
+	u8 encryption_type;
+	__le16 rts_threshold;
+	__le16 fragmentation_threshold;	/* 256..2346 */
+	u8 basic_rate_set[4];
+	u8 auto_rate_fallback;	/* 0,1 */
+	u8 channel;
+	u8 privacy_invoked;
+	u8 wep_default_key_id;	/* 0..3 */
+	u8 current_ssid[32];
+	u8 wep_default_key_value[4][WEP_KEY_LEN];
+	u8 ssid_len;
+	u8 short_preamble;
+	__le16 beacon_period;
+} __attribute__((packed));
+
+struct at76_command {
+	u8 cmd;
+	u8 reserved;
+	__le16 size;
+	u8 data[0];
+} __attribute__((packed));
+
+/* Length of Atmel-specific Rx header before 802.11 frame */
+#define AT76_RX_HDRLEN offsetof(struct at76_rx_buffer, packet)
+
+struct at76_rx_buffer {
+	__le16 wlength;
+	u8 rx_rate;
+	u8 newbss;
+	u8 fragmentation;
+	u8 rssi;
+	u8 link_quality;
+	u8 noise_level;
+	__le32 rx_time;
+	u8 packet[IEEE80211_FRAME_LEN + IEEE80211_FCS_LEN];
+} __attribute__((packed));
+
+/* Length of Atmel-specific Tx header before 802.11 frame */
+#define AT76_TX_HDRLEN offsetof(struct at76_tx_buffer, packet)
+
+struct at76_tx_buffer {
+	__le16 wlength;
+	u8 tx_rate;
+	u8 padding;
+	u8 reserved[4];
+	u8 packet[IEEE80211_FRAME_LEN + IEEE80211_FCS_LEN];
+} __attribute__((packed));
+
+/* defines for scan_type below */
+#define SCAN_TYPE_ACTIVE	0
+#define SCAN_TYPE_PASSIVE	1
+
+struct at76_req_scan {
+	u8 bssid[ETH_ALEN];
+	u8 essid[32];
+	u8 scan_type;
+	u8 channel;
+	__le16 probe_delay;
+	__le16 min_channel_time;
+	__le16 max_channel_time;
+	u8 essid_size;
+	u8 international_scan;
+} __attribute__((packed));
+
+struct at76_req_ibss {
+	u8 bssid[ETH_ALEN];
+	u8 essid[32];
+	u8 bss_type;
+	u8 channel;
+	u8 essid_size;
+	u8 reserved[3];
+} __attribute__((packed));
+
+struct at76_req_join {
+	u8 bssid[ETH_ALEN];
+	u8 essid[32];
+	u8 bss_type;
+	u8 channel;
+	__le16 timeout;
+	u8 essid_size;
+	u8 reserved;
+} __attribute__((packed));
+
+struct set_mib_buffer {
+	u8 type;
+	u8 size;
+	u8 index;
+	u8 reserved;
+	union {
+		u8 byte;
+		__le16 word;
+		u8 addr[ETH_ALEN];
+	} data;
+} __attribute__((packed));
+
+struct mib_local {
+	u16 reserved0;
+	u8 beacon_enable;
+	u8 txautorate_fallback;
+	u8 reserved1;
+	u8 ssid_size;
+	u8 promiscuous_mode;
+	u16 reserved2;
+	u8 preamble_type;
+	u16 reserved3;
+} __attribute__((packed));
+
+struct mib_mac_addr {
+	u8 mac_addr[ETH_ALEN];
+	u8 res[2];		/* ??? */
+	u8 group_addr[4][ETH_ALEN];
+	u8 group_addr_status[4];
+} __attribute__((packed));
+
+struct mib_mac {
+	__le32 max_tx_msdu_lifetime;
+	__le32 max_rx_lifetime;
+	__le16 frag_threshold;
+	__le16 rts_threshold;
+	__le16 cwmin;
+	__le16 cwmax;
+	u8 short_retry_time;
+	u8 long_retry_time;
+	u8 scan_type;		/* active or passive */
+	u8 scan_channel;
+	__le16 probe_delay;	/* delay before ProbeReq in active scan, RO */
+	__le16 min_channel_time;
+	__le16 max_channel_time;
+	__le16 listen_interval;
+	u8 desired_ssid[32];
+	u8 desired_bssid[ETH_ALEN];
+	u8 desired_bsstype;	/* ad-hoc or infrastructure */
+	u8 reserved2;
+} __attribute__((packed));
+
+struct mib_mac_mgmt {
+	__le16 beacon_period;
+	__le16 CFP_max_duration;
+	__le16 medium_occupancy_limit;
+	__le16 station_id;	/* assoc id */
+	__le16 ATIM_window;
+	u8 CFP_mode;
+	u8 privacy_option_implemented;
+	u8 DTIM_period;
+	u8 CFP_period;
+	u8 current_bssid[ETH_ALEN];
+	u8 current_essid[32];
+	u8 current_bss_type;
+	u8 power_mgmt_mode;
+	/* rfmd and 505 */
+	u8 ibss_change;
+	u8 res;
+	u8 multi_domain_capability_implemented;
+	u8 multi_domain_capability_enabled;
+	u8 country_string[3];
+	u8 reserved[3];
+} __attribute__((packed));
+
+struct mib_mac_wep {
+	u8 privacy_invoked;	/* 0 disable encr., 1 enable encr */
+	u8 wep_default_key_id;
+	u8 wep_key_mapping_len;
+	u8 exclude_unencrypted;
+	__le32 wep_icv_error_count;
+	__le32 wep_excluded_count;
+	u8 wep_default_keyvalue[WEP_KEYS][WEP_KEY_LEN];
+	u8 encryption_level;	/* 1 for 40bit, 2 for 104bit encryption */
+} __attribute__((packed));
+
+struct mib_phy {
+	__le32 ed_threshold;
+
+	__le16 slot_time;
+	__le16 sifs_time;
+	__le16 preamble_length;
+	__le16 plcp_header_length;
+	__le16 mpdu_max_length;
+	__le16 cca_mode_supported;
+
+	u8 operation_rate_set[4];
+	u8 channel_id;
+	u8 current_cca_mode;
+	u8 phy_type;
+	u8 current_reg_domain;
+} __attribute__((packed));
+
+struct mib_fw_version {
+	u8 major;
+	u8 minor;
+	u8 patch;
+	u8 build;
+} __attribute__((packed));
+
+struct mib_mdomain {
+	u8 tx_powerlevel[14];
+	u8 channel_list[14];	/* 0 for invalid channels */
+} __attribute__((packed));
+
+struct at76_fw_header {
+	__le32 crc;		/* CRC32 of the whole image */
+	__le32 board_type;	/* firmware compatibility code */
+	u8 build;		/* firmware build number */
+	u8 patch;		/* firmware patch level */
+	u8 minor;		/* firmware minor version */
+	u8 major;		/* firmware major version */
+	__le32 str_offset;	/* offset of the copyright string */
+	__le32 int_fw_offset;	/* internal firmware image offset */
+	__le32 int_fw_len;	/* internal firmware image length */
+	__le32 ext_fw_offset;	/* external firmware image offset */
+	__le32 ext_fw_len;	/* external firmware image length */
+} __attribute__((packed));
+
+enum mac_state {
+	MAC_INIT,
+	MAC_SCANNING,
+	MAC_AUTH,
+	MAC_ASSOC,
+	MAC_JOINING,
+	MAC_CONNECTED,
+	MAC_OWN_IBSS
+};
+
+/* a description of a regulatory domain and the allowed channels */
+struct reg_domain {
+	u16 code;
+	char const *name;
+	u32 channel_map;	/* if bit N is set, channel (N+1) is allowed */
+};
+
+/* how long do we keep a (I)BSS in the bss_list in jiffies
+   this should be long enough for the user to retrieve the table
+   (by iwlist ?) after the device started, because all entries from
+   other channels than the one the device locks on get removed, too */
+#define BSS_LIST_TIMEOUT	(120 * HZ)
+/* struct to store BSS info found during scan */
+#define BSS_LIST_MAX_RATE_LEN	32	/* 32 rates should be enough ... */
+
+struct bss_info {
+	struct list_head list;
+
+	u8 bssid[ETH_ALEN];	/* bssid */
+	u8 ssid[IW_ESSID_MAX_SIZE];	/* essid */
+	u8 ssid_len;		/* length of ssid above */
+	u8 channel;
+	u16 capa;		/* BSS capabilities */
+	u16 beacon_interval;	/* beacon interval, Kus (1024 microseconds) */
+	u8 rates[BSS_LIST_MAX_RATE_LEN];	/* supported rates in units of
+						   500 kbps, ORed with 0x80 for
+						   basic rates */
+	u8 rates_len;
+
+	/* quality of received beacon */
+	u8 rssi;
+	u8 link_qual;
+	u8 noise_level;
+
+	unsigned long last_rx;	/* time (jiffies) of last beacon received */
+};
+
+/* a rx data buffer to collect rx fragments */
+struct rx_data_buf {
+	u8 sender[ETH_ALEN];	/* sender address */
+	u16 seqnr;		/* sequence number */
+	u16 fragnr;		/* last fragment received */
+	unsigned long last_rx;	/* jiffies of last rx */
+	struct sk_buff *skb;	/* == NULL if entry is free */
+};
+
+#define NR_RX_DATA_BUF		8
+
+/* Data for one loaded firmware file */
+struct fwentry {
+	const char *const fwname;
+	const struct firmware *fw;
+	int extfw_size;
+	int intfw_size;
+	/* pointer to loaded firmware, no need to free */
+	u8 *extfw;		/* external firmware, extfw_size bytes long */
+	u8 *intfw;		/* internal firmware, intfw_size bytes long */
+	enum board_type board_type;	/* board type */
+	struct mib_fw_version fw_version;
+	int loaded;		/* Loaded and parsed successfully */
+};
+
+struct at76_priv {
+	struct usb_device *udev;	/* USB device pointer */
+	struct net_device *netdev;	/* net device pointer */
+	struct net_device_stats stats;	/* net device stats */
+	struct iw_statistics wstats;	/* wireless stats */
+
+	struct sk_buff *rx_skb;	/* skbuff for receiving data */
+	void *bulk_out_buffer;	/* buffer for sending data */
+
+	struct urb *tx_urb;	/* URB for sending data */
+	struct urb *rx_urb;	/* URB for receiving data */
+
+	unsigned int tx_pipe;	/* bulk out pipe */
+	unsigned int rx_pipe;	/* bulk in pipe */
+
+	struct mutex mtx;	/* locks this structure */
+
+	/* work queues */
+	struct work_struct work_assoc_done;
+	struct work_struct work_join;
+	struct work_struct work_new_bss;
+	struct work_struct work_start_scan;
+	struct work_struct work_set_promisc;
+	struct work_struct work_submit_rx;
+	struct delayed_work dwork_restart;
+	struct delayed_work dwork_get_scan;
+	struct delayed_work dwork_beacon;
+	struct delayed_work dwork_auth;
+	struct delayed_work dwork_assoc;
+
+	struct tasklet_struct rx_tasklet;
+
+	/* the WEP stuff */
+	int wep_enabled;	/* 1 if WEP is enabled */
+	int wep_key_id;		/* key id to be used */
+	u8 wep_keys[WEP_KEYS][WEP_KEY_LEN];	/* the four WEP keys,
+						   5 or 13 bytes are used */
+	u8 wep_keys_len[WEP_KEYS];	/* the length of the above keys */
+
+	int channel;
+	int iw_mode;
+	u8 bssid[ETH_ALEN];
+	u8 essid[IW_ESSID_MAX_SIZE];
+	int essid_size;
+	int radio_on;
+	int promisc;
+
+	int preamble_type;	/* 0 - long, 1 - short, 2 - auto */
+	int auth_mode;		/* authentication type: 0 open, 1 shared key */
+	int txrate;		/* 0,1,2,3 = 1,2,5.5,11 Mbps, 4 is auto */
+	int frag_threshold;	/* threshold for fragmentation of tx packets */
+	int rts_threshold;	/* threshold for RTS mechanism */
+	int short_retry_limit;
+
+	int scan_min_time;	/* scan min channel time */
+	int scan_max_time;	/* scan max channel time */
+	int scan_mode;		/* SCAN_TYPE_ACTIVE, SCAN_TYPE_PASSIVE */
+	int scan_need_any;	/* if set, need to scan for any ESSID */
+
+	/* the list we got from scanning */
+	spinlock_t bss_list_spinlock;	/* protects bss_list operations */
+	struct list_head bss_list;	/* list of BSS we got beacons from */
+	struct timer_list bss_list_timer;	/* timer to purge old entries
+						   from bss_list */
+	struct bss_info *curr_bss;	/* current BSS */
+	u16 assoc_id;		/* current association ID, if associated */
+
+	u8 wanted_bssid[ETH_ALEN];
+	int wanted_bssid_valid;	/* != 0 if wanted_bssid is to be used */
+
+	/* some data for infrastructure mode only */
+	spinlock_t mgmt_spinlock;	/* this spinlock protects access to
+					   next_mgmt_bulk */
+
+	struct at76_tx_buffer *next_mgmt_bulk;	/* pending management msg to
+						   send via bulk out */
+	enum mac_state mac_state;
+	enum {
+		SCAN_IDLE,
+		SCAN_IN_PROGRESS,
+		SCAN_COMPLETED
+	} scan_state;
+	time_t last_scan;
+
+	int retries;		/* remaining retries in case of timeout when
+				 * sending AuthReq or AssocReq */
+	u8 pm_mode;		/* power management mode */
+	u32 pm_period;		/* power management period in microseconds */
+
+	struct reg_domain const *domain;	/* reg domain description */
+
+	/* iwspy support */
+	spinlock_t spy_spinlock;
+	struct iw_spy_data spy_data;
+
+	struct iw_public_data wireless_data;
+
+	/* These fields contain HW config provided by the device (not all of
+	 * these fields are used by all board types) */
+	u8 mac_addr[ETH_ALEN];
+	u8 regulatory_domain;
+
+	struct at76_card_config card_config;
+
+	/* store rx fragments until complete */
+	struct rx_data_buf rx_data[NR_RX_DATA_BUF];
+
+	enum board_type board_type;
+	struct mib_fw_version fw_version;
+
+	unsigned int device_unplugged:1;
+	unsigned int netdev_registered:1;
+	struct set_mib_buffer mib_buf;	/* global buffer for set_mib calls */
+
+	/* beacon counting */
+	int beacon_period;	/* period of mgmt beacons, Kus */
+	int beacons_received;
+	unsigned long beacons_last_qual;	/* time we restarted counting
+						   beacons */
+};
+
+struct at76_rx_radiotap {
+	struct ieee80211_radiotap_header rt_hdr;
+	__le64 rt_tsft;
+	u8 rt_flags;
+	u8 rt_rate;
+	s8 rt_signal;
+	s8 rt_noise;
+};
+
+#define AT76_RX_RADIOTAP_PRESENT		  \
+	((1 << IEEE80211_RADIOTAP_TSFT)		| \
+	(1 << IEEE80211_RADIOTAP_FLAGS)		| \
+	(1 << IEEE80211_RADIOTAP_RATE)		| \
+	(1 << IEEE80211_RADIOTAP_DB_ANTSIGNAL)	| \
+	(1 << IEEE80211_RADIOTAP_DB_ANTNOISE))
+
+#define BEACON_MAX_DATA_LENGTH	1500
+
+/* the maximum size of an AssocReq packet */
+#define ASSOCREQ_MAX_SIZE \
+  (AT76_TX_HDRLEN + sizeof(struct ieee80211_assoc_request) + \
+   1 + 1 + IW_ESSID_MAX_SIZE + 1 + 1 + 4)
+
+/* for shared secret auth, add the challenge text size */
+#define AUTH_FRAME_SIZE (AT76_TX_HDRLEN + sizeof(struct ieee80211_auth))
+
+/* Maximal number of AuthReq retries */
+#define AUTH_RETRIES		3
+
+/* Maximal number of AssocReq retries */
+#define ASSOC_RETRIES		3
+
+/* Beacon timeout in managed mode when we are connected */
+#define BEACON_TIMEOUT		(10 * HZ)
+
+/* Timeout for authentication response */
+#define AUTH_TIMEOUT		(1 * HZ)
+
+/* Timeout for association response */
+#define ASSOC_TIMEOUT		(1 * HZ)
+
+/* Polling interval when scan is running */
+#define SCAN_POLL_INTERVAL	(HZ / 4)
+
+/* Command completion timeout */
+#define CMD_COMPLETION_TIMEOUT	(5 * HZ)
+
+#define DEF_RTS_THRESHOLD	1536
+#define DEF_FRAG_THRESHOLD	1536
+#define DEF_SHORT_RETRY_LIMIT	8
+#define DEF_CHANNEL		10
+#define DEF_SCAN_MIN_TIME	10
+#define DEF_SCAN_MAX_TIME	120
+
+#define MAX_RTS_THRESHOLD	(MAX_FRAG_THRESHOLD + 1)
+
+/* the max padding size for tx in bytes (see calc_padding) */
+#define MAX_PADDING_SIZE	53
+
+#endif				/* _AT76_USB_H */
diff --git a/drivers/staging/echo/Kconfig b/drivers/staging/echo/Kconfig
new file mode 100644
index 0000000..f1d41ea9
--- /dev/null
+++ b/drivers/staging/echo/Kconfig
@@ -0,0 +1,9 @@
+config ECHO
+	tristate "Line Echo Canceller support"
+	default n
+	---help---
+	  This driver provides line echo cancelling support for mISDN and
+	  Zaptel drivers.
+
+	  To compile this driver as a module, choose M here. The module
+	  will be called echo.
diff --git a/drivers/staging/echo/Makefile b/drivers/staging/echo/Makefile
new file mode 100644
index 0000000..7d4caac
--- /dev/null
+++ b/drivers/staging/echo/Makefile
@@ -0,0 +1 @@
+obj-$(CONFIG_ECHO) += echo.o
diff --git a/drivers/staging/echo/TODO b/drivers/staging/echo/TODO
new file mode 100644
index 0000000..1ca09af
--- /dev/null
+++ b/drivers/staging/echo/TODO
@@ -0,0 +1,10 @@
+TODO:
+	- checkpatch.pl cleanups
+	- Lindent
+	- typedef removals
+	- handle bit_operations.h (merge in or make part of common code?)
+	- remove proc interface, only use echo.h interface (proc interface is
+	  racy and not correct.)
+
+Please send patches to Greg Kroah-Hartman <greg@kroah.com> and Cc: Steve
+Underwood <steveu@coppice.org> and David Rowe <david@rowetel.com>
diff --git a/drivers/staging/echo/bit_operations.h b/drivers/staging/echo/bit_operations.h
new file mode 100644
index 0000000..b32f4bf
--- /dev/null
+++ b/drivers/staging/echo/bit_operations.h
@@ -0,0 +1,253 @@
+/*
+ * SpanDSP - a series of DSP components for telephony
+ *
+ * bit_operations.h - Various bit level operations, such as bit reversal
+ *
+ * Written by Steve Underwood <steveu@coppice.org>
+ *
+ * Copyright (C) 2006 Steve Underwood
+ *
+ * All rights reserved.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License version 2, as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ *
+ * $Id: bit_operations.h,v 1.11 2006/11/28 15:37:03 steveu Exp $
+ */
+
+/*! \file */
+
+#if !defined(_BIT_OPERATIONS_H_)
+#define _BIT_OPERATIONS_H_
+
+#ifdef __cplusplus
+extern "C" {
+#endif
+
+#if defined(__i386__)  ||  defined(__x86_64__)
+/*! \brief Find the bit position of the highest set bit in a word
+    \param bits The word to be searched
+    \return The bit number of the highest set bit, or -1 if the word is zero. */
+static __inline__ int top_bit(unsigned int bits)
+{
+    int res;
+
+    __asm__ (" xorl %[res],%[res];\n"
+             " decl %[res];\n"
+             " bsrl %[bits],%[res]\n"
+             : [res] "=&r" (res)
+             : [bits] "rm" (bits));
+    return res;
+}
+/*- End of function --------------------------------------------------------*/
+
+/*! \brief Find the bit position of the lowest set bit in a word
+    \param bits The word to be searched
+    \return The bit number of the lowest set bit, or -1 if the word is zero. */
+static __inline__ int bottom_bit(unsigned int bits)
+{
+    int res;
+
+    __asm__ (" xorl %[res],%[res];\n"
+             " decl %[res];\n"
+             " bsfl %[bits],%[res]\n"
+             : [res] "=&r" (res)
+             : [bits] "rm" (bits));
+    return res;
+}
+/*- End of function --------------------------------------------------------*/
+#else
+static __inline__ int top_bit(unsigned int bits)
+{
+    int i;
+
+    if (bits == 0)
+        return -1;
+    i = 0;
+    if (bits & 0xFFFF0000)
+    {
+        bits &= 0xFFFF0000;
+        i += 16;
+    }
+    if (bits & 0xFF00FF00)
+    {
+        bits &= 0xFF00FF00;
+        i += 8;
+    }
+    if (bits & 0xF0F0F0F0)
+    {
+        bits &= 0xF0F0F0F0;
+        i += 4;
+    }
+    if (bits & 0xCCCCCCCC)
+    {
+        bits &= 0xCCCCCCCC;
+        i += 2;
+    }
+    if (bits & 0xAAAAAAAA)
+    {
+        bits &= 0xAAAAAAAA;
+        i += 1;
+    }
+    return i;
+}
+/*- End of function --------------------------------------------------------*/
+
+static __inline__ int bottom_bit(unsigned int bits)
+{
+    int i;
+
+    if (bits == 0)
+        return -1;
+    i = 32;
+    if (bits & 0x0000FFFF)
+    {
+        bits &= 0x0000FFFF;
+        i -= 16;
+    }
+    if (bits & 0x00FF00FF)
+    {
+        bits &= 0x00FF00FF;
+        i -= 8;
+    }
+    if (bits & 0x0F0F0F0F)
+    {
+        bits &= 0x0F0F0F0F;
+        i -= 4;
+    }
+    if (bits & 0x33333333)
+    {
+        bits &= 0x33333333;
+        i -= 2;
+    }
+    if (bits & 0x55555555)
+    {
+        bits &= 0x55555555;
+        i -= 1;
+    }
+    return i;
+}
+/*- End of function --------------------------------------------------------*/
+#endif
+
+/*! \brief Bit reverse a byte.
+    \param data The byte to be reversed.
+    \return The bit reversed version of data. */
+static __inline__ uint8_t bit_reverse8(uint8_t x)
+{
+#if defined(__i386__)  ||  defined(__x86_64__)
+    /* If multiply is fast */
+    return ((x*0x0802U & 0x22110U) | (x*0x8020U & 0x88440U))*0x10101U >> 16;
+#else
+    /* If multiply is slow, but we have a barrel shifter */
+    x = (x >> 4) | (x << 4);
+    x = ((x & 0xCC) >> 2) | ((x & 0x33) << 2);
+    return ((x & 0xAA) >> 1) | ((x & 0x55) << 1);
+#endif
+}
+/*- End of function --------------------------------------------------------*/
+
+/*! \brief Bit reverse a 16 bit word.
+    \param data The word to be reversed.
+    \return The bit reversed version of data. */
+uint16_t bit_reverse16(uint16_t data);
+
+/*! \brief Bit reverse a 32 bit word.
+    \param data The word to be reversed.
+    \return The bit reversed version of data. */
+uint32_t bit_reverse32(uint32_t data);
+
+/*! \brief Bit reverse each of the four bytes in a 32 bit word.
+    \param data The word to be reversed.
+    \return The bit reversed version of data. */
+uint32_t bit_reverse_4bytes(uint32_t data);
+
+/*! \brief Find the number of set bits in a 32 bit word.
+    \param x The word to be searched.
+    \return The number of set bits. */
+int one_bits32(uint32_t x);
+
+/*! \brief Create a mask as wide as the number in a 32 bit word.
+    \param x The word to be searched.
+    \return The mask. */
+uint32_t make_mask32(uint32_t x);
+
+/*! \brief Create a mask as wide as the number in a 16 bit word.
+    \param x The word to be searched.
+    \return The mask. */
+uint16_t make_mask16(uint16_t x);
+
+/*! \brief Find the least significant one in a word, and return a word
+           with just that bit set.
+    \param x The word to be searched.
+    \return The word with the single set bit. */
+static __inline__ uint32_t least_significant_one32(uint32_t x)
+{
+    return (x & (-(int32_t) x));
+}
+/*- End of function --------------------------------------------------------*/
+
+/*! \brief Find the most significant one in a word, and return a word
+           with just that bit set.
+    \param x The word to be searched.
+    \return The word with the single set bit. */
+static __inline__ uint32_t most_significant_one32(uint32_t x)
+{
+#if defined(__i386__)  ||  defined(__x86_64__)
+    return 1 << top_bit(x);
+#else
+    x = make_mask32(x);
+    return (x ^ (x >> 1));
+#endif
+}
+/*- End of function --------------------------------------------------------*/
+
+/*! \brief Find the parity of a byte.
+    \param x The byte to be checked.
+    \return 1 for odd, or 0 for even. */
+static __inline__ int parity8(uint8_t x)
+{
+    x = (x ^ (x >> 4)) & 0x0F;
+    return (0x6996 >> x) & 1;
+}
+/*- End of function --------------------------------------------------------*/
+
+/*! \brief Find the parity of a 16 bit word.
+    \param x The word to be checked.
+    \return 1 for odd, or 0 for even. */
+static __inline__ int parity16(uint16_t x)
+{
+    x ^= (x >> 8);
+    x = (x ^ (x >> 4)) & 0x0F;
+    return (0x6996 >> x) & 1;
+}
+/*- End of function --------------------------------------------------------*/
+
+/*! \brief Find the parity of a 32 bit word.
+    \param x The word to be checked.
+    \return 1 for odd, or 0 for even. */
+static __inline__ int parity32(uint32_t x)
+{
+    x ^= (x >> 16);
+    x ^= (x >> 8);
+    x = (x ^ (x >> 4)) & 0x0F;
+    return (0x6996 >> x) & 1;
+}
+/*- End of function --------------------------------------------------------*/
+
+#ifdef __cplusplus
+}
+#endif
+
+#endif
+/*- End of file ------------------------------------------------------------*/
diff --git a/drivers/staging/echo/echo.c b/drivers/staging/echo/echo.c
new file mode 100644
index 0000000..4a281b1
--- /dev/null
+++ b/drivers/staging/echo/echo.c
@@ -0,0 +1,632 @@
+/*
+ * SpanDSP - a series of DSP components for telephony
+ *
+ * echo.c - A line echo canceller.  This code is being developed
+ *          against and partially complies with G168.
+ *
+ * Written by Steve Underwood <steveu@coppice.org>
+ *         and David Rowe <david_at_rowetel_dot_com>
+ *
+ * Copyright (C) 2001, 2003 Steve Underwood, 2007 David Rowe
+ *
+ * Based on a bit from here, a bit from there, eye of toad, ear of
+ * bat, 15 years of failed attempts by David and a few fried brain
+ * cells.
+ *
+ * All rights reserved.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License version 2, as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ *
+ * $Id: echo.c,v 1.20 2006/12/01 18:00:48 steveu Exp $
+ */
+
+/*! \file */
+
+/* Implementation Notes
+   David Rowe
+   April 2007
+
+   This code started life as Steve's NLMS algorithm with a tap
+   rotation algorithm to handle divergence during double talk.  I
+   added a Geigel Double Talk Detector (DTD) [2] and performed some
+   G168 tests.  However I had trouble meeting the G168 requirements,
+   especially for double talk - there were always cases where my DTD
+   failed, for example where near end speech was under the 6dB
+   threshold required for declaring double talk.
+
+   So I tried a two path algorithm [1], which has so far given better
+   results.  The original tap rotation/Geigel algorithm is available
+   in SVN http://svn.rowetel.com/software/oslec/tags/before_16bit.
+   It's probably possible to make it work if some one wants to put some
+   serious work into it.
+
+   At present no special treatment is provided for tones, which
+   generally cause NLMS algorithms to diverge.  Initial runs of a
+   subset of the G168 tests for tones (e.g ./echo_test 6) show the
+   current algorithm is passing OK, which is kind of surprising.  The
+   full set of tests needs to be performed to confirm this result.
+
+   One other interesting change is that I have managed to get the NLMS
+   code to work with 16 bit coefficients, rather than the original 32
+   bit coefficents.  This reduces the MIPs and storage required.
+   I evaulated the 16 bit port using g168_tests.sh and listening tests
+   on 4 real-world samples.
+
+   I also attempted the implementation of a block based NLMS update
+   [2] but although this passes g168_tests.sh it didn't converge well
+   on the real-world samples.  I have no idea why, perhaps a scaling
+   problem.  The block based code is also available in SVN
+   http://svn.rowetel.com/software/oslec/tags/before_16bit.  If this
+   code can be debugged, it will lead to further reduction in MIPS, as
+   the block update code maps nicely onto DSP instruction sets (it's a
+   dot product) compared to the current sample-by-sample update.
+
+   Steve also has some nice notes on echo cancellers in echo.h
+
+
+   References:
+
+   [1] Ochiai, Areseki, and Ogihara, "Echo Canceller with Two Echo
+       Path Models", IEEE Transactions on communications, COM-25,
+       No. 6, June
+       1977.
+       http://www.rowetel.com/images/echo/dual_path_paper.pdf
+
+   [2] The classic, very useful paper that tells you how to
+       actually build a real world echo canceller:
+         Messerschmitt, Hedberg, Cole, Haoui, Winship, "Digital Voice
+         Echo Canceller with a TMS320020,
+         http://www.rowetel.com/images/echo/spra129.pdf
+
+   [3] I have written a series of blog posts on this work, here is
+       Part 1: http://www.rowetel.com/blog/?p=18
+
+   [4] The source code http://svn.rowetel.com/software/oslec/
+
+   [5] A nice reference on LMS filters:
+         http://en.wikipedia.org/wiki/Least_mean_squares_filter
+
+   Credits:
+
+   Thanks to Steve Underwood, Jean-Marc Valin, and Ramakrishnan
+   Muthukrishnan for their suggestions and email discussions.  Thanks
+   also to those people who collected echo samples for me such as
+   Mark, Pawel, and Pavel.
+*/
+
+#include <linux/kernel.h>       /* We're doing kernel work */
+#include <linux/module.h>
+#include <linux/kernel.h>
+#include <linux/slab.h>
+#define malloc(a) kmalloc((a), GFP_KERNEL)
+#define free(a) kfree(a)
+
+#include "bit_operations.h"
+#include "echo.h"
+
+#define MIN_TX_POWER_FOR_ADAPTION   64
+#define MIN_RX_POWER_FOR_ADAPTION   64
+#define DTD_HANGOVER               600     /* 600 samples, or 75ms     */
+#define DC_LOG2BETA                  3     /* log2() of DC filter Beta */
+
+/*-----------------------------------------------------------------------*\
+                               FUNCTIONS
+\*-----------------------------------------------------------------------*/
+
+/* adapting coeffs using the traditional stochastic descent (N)LMS algorithm */
+
+
+#ifdef __BLACKFIN_ASM__
+static void __inline__ lms_adapt_bg(echo_can_state_t *ec, int clean, int shift)
+{
+    int i, j;
+    int offset1;
+    int offset2;
+    int factor;
+    int exp;
+    int16_t *phist;
+    int n;
+
+    if (shift > 0)
+	factor = clean << shift;
+    else
+	factor = clean >> -shift;
+
+    /* Update the FIR taps */
+
+    offset2 = ec->curr_pos;
+    offset1 = ec->taps - offset2;
+    phist = &ec->fir_state_bg.history[offset2];
+
+    /* st: and en: help us locate the assembler in echo.s */
+
+    //asm("st:");
+    n = ec->taps;
+    for (i = 0, j = offset2;  i < n;  i++, j++)
+    {
+       exp = *phist++ * factor;
+       ec->fir_taps16[1][i] += (int16_t) ((exp+(1<<14)) >> 15);
+    }
+    //asm("en:");
+
+    /* Note the asm for the inner loop above generated by Blackfin gcc
+       4.1.1 is pretty good (note even parallel instructions used):
+
+    	R0 = W [P0++] (X);
+	R0 *= R2;
+	R0 = R0 + R3 (NS) ||
+	R1 = W [P1] (X) ||
+	nop;
+	R0 >>>= 15;
+	R0 = R0 + R1;
+	W [P1++] = R0;
+
+	A block based update algorithm would be much faster but the
+	above can't be improved on much.  Every instruction saved in
+	the loop above is 2 MIPs/ch!  The for loop above is where the
+	Blackfin spends most of it's time - about 17 MIPs/ch measured
+	with speedtest.c with 256 taps (32ms).  Write-back and
+	Write-through cache gave about the same performance.
+    */
+}
+
+/*
+   IDEAS for further optimisation of lms_adapt_bg():
+
+   1/ The rounding is quite costly.  Could we keep as 32 bit coeffs
+   then make filter pluck the MS 16-bits of the coeffs when filtering?
+   However this would lower potential optimisation of filter, as I
+   think the dual-MAC architecture requires packed 16 bit coeffs.
+
+   2/ Block based update would be more efficient, as per comments above,
+   could use dual MAC architecture.
+
+   3/ Look for same sample Blackfin LMS code, see if we can get dual-MAC
+   packing.
+
+   4/ Execute the whole e/c in a block of say 20ms rather than sample
+   by sample.  Processing a few samples every ms is inefficient.
+*/
+
+#else
+static __inline__ void lms_adapt_bg(echo_can_state_t *ec, int clean, int shift)
+{
+    int i;
+
+    int offset1;
+    int offset2;
+    int factor;
+    int exp;
+
+    if (shift > 0)
+	factor = clean << shift;
+    else
+	factor = clean >> -shift;
+
+    /* Update the FIR taps */
+
+    offset2 = ec->curr_pos;
+    offset1 = ec->taps - offset2;
+
+    for (i = ec->taps - 1;  i >= offset1;  i--)
+    {
+       exp = (ec->fir_state_bg.history[i - offset1]*factor);
+       ec->fir_taps16[1][i] += (int16_t) ((exp+(1<<14)) >> 15);
+    }
+    for (  ;  i >= 0;  i--)
+    {
+       exp = (ec->fir_state_bg.history[i + offset2]*factor);
+       ec->fir_taps16[1][i] += (int16_t) ((exp+(1<<14)) >> 15);
+    }
+}
+#endif
+
+/*- End of function --------------------------------------------------------*/
+
+echo_can_state_t *echo_can_create(int len, int adaption_mode)
+{
+    echo_can_state_t *ec;
+    int i;
+    int j;
+
+    ec = kmalloc(sizeof(*ec), GFP_KERNEL);
+    if (ec == NULL)
+        return  NULL;
+    memset(ec, 0, sizeof(*ec));
+
+    ec->taps = len;
+    ec->log2taps = top_bit(len);
+    ec->curr_pos = ec->taps - 1;
+
+    for (i = 0;  i < 2;  i++)
+    {
+        if ((ec->fir_taps16[i] = (int16_t *) malloc((ec->taps)*sizeof(int16_t))) == NULL)
+        {
+            for (j = 0;  j < i;  j++)
+                kfree(ec->fir_taps16[j]);
+            kfree(ec);
+            return  NULL;
+        }
+        memset(ec->fir_taps16[i], 0, (ec->taps)*sizeof(int16_t));
+    }
+
+    fir16_create(&ec->fir_state,
+                 ec->fir_taps16[0],
+                 ec->taps);
+    fir16_create(&ec->fir_state_bg,
+                 ec->fir_taps16[1],
+                 ec->taps);
+
+    for(i=0; i<5; i++) {
+      ec->xvtx[i] = ec->yvtx[i] = ec->xvrx[i] = ec->yvrx[i] = 0;
+    }
+
+    ec->cng_level = 1000;
+    echo_can_adaption_mode(ec, adaption_mode);
+
+    ec->snapshot = (int16_t*)malloc(ec->taps*sizeof(int16_t));
+    memset(ec->snapshot, 0, sizeof(int16_t)*ec->taps);
+
+    ec->cond_met = 0;
+    ec->Pstates = 0;
+    ec->Ltxacc = ec->Lrxacc = ec->Lcleanacc = ec->Lclean_bgacc = 0;
+    ec->Ltx = ec->Lrx = ec->Lclean = ec->Lclean_bg = 0;
+    ec->tx_1 = ec->tx_2 = ec->rx_1 = ec->rx_2 = 0;
+    ec->Lbgn = ec->Lbgn_acc = 0;
+    ec->Lbgn_upper = 200;
+    ec->Lbgn_upper_acc = ec->Lbgn_upper << 13;
+
+    return  ec;
+}
+/*- End of function --------------------------------------------------------*/
+
+void echo_can_free(echo_can_state_t *ec)
+{
+	int i;
+
+	fir16_free(&ec->fir_state);
+	fir16_free(&ec->fir_state_bg);
+	for (i = 0;  i < 2;  i++)
+		kfree(ec->fir_taps16[i]);
+	kfree(ec->snapshot);
+	kfree(ec);
+}
+/*- End of function --------------------------------------------------------*/
+
+void echo_can_adaption_mode(echo_can_state_t *ec, int adaption_mode)
+{
+    ec->adaption_mode = adaption_mode;
+}
+/*- End of function --------------------------------------------------------*/
+
+void echo_can_flush(echo_can_state_t *ec)
+{
+    int i;
+
+    ec->Ltxacc = ec->Lrxacc = ec->Lcleanacc = ec->Lclean_bgacc = 0;
+    ec->Ltx = ec->Lrx = ec->Lclean = ec->Lclean_bg = 0;
+    ec->tx_1 = ec->tx_2 = ec->rx_1 = ec->rx_2 = 0;
+
+    ec->Lbgn = ec->Lbgn_acc = 0;
+    ec->Lbgn_upper = 200;
+    ec->Lbgn_upper_acc = ec->Lbgn_upper << 13;
+
+    ec->nonupdate_dwell = 0;
+
+    fir16_flush(&ec->fir_state);
+    fir16_flush(&ec->fir_state_bg);
+    ec->fir_state.curr_pos = ec->taps - 1;
+    ec->fir_state_bg.curr_pos = ec->taps - 1;
+    for (i = 0;  i < 2;  i++)
+        memset(ec->fir_taps16[i], 0, ec->taps*sizeof(int16_t));
+
+    ec->curr_pos = ec->taps - 1;
+    ec->Pstates = 0;
+}
+/*- End of function --------------------------------------------------------*/
+
+void echo_can_snapshot(echo_can_state_t *ec) {
+    memcpy(ec->snapshot, ec->fir_taps16[0], ec->taps*sizeof(int16_t));
+}
+/*- End of function --------------------------------------------------------*/
+
+/* Dual Path Echo Canceller ------------------------------------------------*/
+
+int16_t echo_can_update(echo_can_state_t *ec, int16_t tx, int16_t rx)
+{
+    int32_t echo_value;
+    int clean_bg;
+    int tmp, tmp1;
+
+    /* Input scaling was found be required to prevent problems when tx
+       starts clipping.  Another possible way to handle this would be the
+       filter coefficent scaling. */
+
+    ec->tx = tx; ec->rx = rx;
+    tx >>=1;
+    rx >>=1;
+
+    /*
+       Filter DC, 3dB point is 160Hz (I think), note 32 bit precision required
+       otherwise values do not track down to 0. Zero at DC, Pole at (1-Beta)
+       only real axis.  Some chip sets (like Si labs) don't need
+       this, but something like a $10 X100P card does.  Any DC really slows
+       down convergence.
+
+       Note: removes some low frequency from the signal, this reduces
+       the speech quality when listening to samples through headphones
+       but may not be obvious through a telephone handset.
+
+       Note that the 3dB frequency in radians is approx Beta, e.g. for
+       Beta = 2^(-3) = 0.125, 3dB freq is 0.125 rads = 159Hz.
+    */
+
+    if (ec->adaption_mode & ECHO_CAN_USE_RX_HPF) {
+      tmp = rx << 15;
+#if 1
+        /* Make sure the gain of the HPF is 1.0. This can still saturate a little under
+           impulse conditions, and it might roll to 32768 and need clipping on sustained peak
+           level signals. However, the scale of such clipping is small, and the error due to
+           any saturation should not markedly affect the downstream processing. */
+        tmp -= (tmp >> 4);
+#endif
+      ec->rx_1 += -(ec->rx_1>>DC_LOG2BETA) + tmp - ec->rx_2;
+
+      /* hard limit filter to prevent clipping.  Note that at this stage
+	 rx should be limited to +/- 16383 due to right shift above */
+      tmp1 = ec->rx_1 >> 15;
+      if (tmp1 > 16383) tmp1 = 16383;
+      if (tmp1 < -16383) tmp1 = -16383;
+      rx = tmp1;
+      ec->rx_2 = tmp;
+    }
+
+    /* Block average of power in the filter states.  Used for
+       adaption power calculation. */
+
+    {
+	int new, old;
+
+	/* efficient "out with the old and in with the new" algorithm so
+	   we don't have to recalculate over the whole block of
+	   samples. */
+	new = (int)tx * (int)tx;
+	old = (int)ec->fir_state.history[ec->fir_state.curr_pos] *
+              (int)ec->fir_state.history[ec->fir_state.curr_pos];
+	ec->Pstates += ((new - old) + (1<<ec->log2taps)) >> ec->log2taps;
+	if (ec->Pstates < 0) ec->Pstates = 0;
+    }
+
+    /* Calculate short term average levels using simple single pole IIRs */
+
+    ec->Ltxacc += abs(tx) - ec->Ltx;
+    ec->Ltx = (ec->Ltxacc + (1<<4)) >> 5;
+    ec->Lrxacc += abs(rx) - ec->Lrx;
+    ec->Lrx = (ec->Lrxacc + (1<<4)) >> 5;
+
+    /* Foreground filter ---------------------------------------------------*/
+
+    ec->fir_state.coeffs = ec->fir_taps16[0];
+    echo_value = fir16(&ec->fir_state, tx);
+    ec->clean = rx - echo_value;
+    ec->Lcleanacc += abs(ec->clean) - ec->Lclean;
+    ec->Lclean = (ec->Lcleanacc + (1<<4)) >> 5;
+
+    /* Background filter ---------------------------------------------------*/
+
+    echo_value = fir16(&ec->fir_state_bg, tx);
+    clean_bg = rx - echo_value;
+    ec->Lclean_bgacc += abs(clean_bg) - ec->Lclean_bg;
+    ec->Lclean_bg = (ec->Lclean_bgacc + (1<<4)) >> 5;
+
+    /* Background Filter adaption -----------------------------------------*/
+
+    /* Almost always adap bg filter, just simple DT and energy
+       detection to minimise adaption in cases of strong double talk.
+       However this is not critical for the dual path algorithm.
+    */
+    ec->factor = 0;
+    ec->shift = 0;
+    if ((ec->nonupdate_dwell == 0)) {
+	int   P, logP, shift;
+
+	/* Determine:
+
+	   f = Beta * clean_bg_rx/P ------ (1)
+
+	   where P is the total power in the filter states.
+
+	   The Boffins have shown that if we obey (1) we converge
+	   quickly and avoid instability.
+
+	   The correct factor f must be in Q30, as this is the fixed
+	   point format required by the lms_adapt_bg() function,
+	   therefore the scaled version of (1) is:
+
+	   (2^30) * f  = (2^30) * Beta * clean_bg_rx/P
+	       factor  = (2^30) * Beta * clean_bg_rx/P         ----- (2)
+
+	   We have chosen Beta = 0.25 by experiment, so:
+
+	       factor  = (2^30) * (2^-2) * clean_bg_rx/P
+
+                                       (30 - 2 - log2(P))
+	       factor  = clean_bg_rx 2                         ----- (3)
+
+	   To avoid a divide we approximate log2(P) as top_bit(P),
+	   which returns the position of the highest non-zero bit in
+	   P.  This approximation introduces an error as large as a
+	   factor of 2, but the algorithm seems to handle it OK.
+
+	   Come to think of it a divide may not be a big deal on a
+	   modern DSP, so its probably worth checking out the cycles
+	   for a divide versus a top_bit() implementation.
+	*/
+
+	P = MIN_TX_POWER_FOR_ADAPTION + ec->Pstates;
+	logP = top_bit(P) + ec->log2taps;
+	shift = 30 - 2 - logP;
+	ec->shift = shift;
+
+	lms_adapt_bg(ec, clean_bg, shift);
+    }
+
+    /* very simple DTD to make sure we dont try and adapt with strong
+       near end speech */
+
+    ec->adapt = 0;
+    if ((ec->Lrx > MIN_RX_POWER_FOR_ADAPTION) && (ec->Lrx > ec->Ltx))
+	ec->nonupdate_dwell = DTD_HANGOVER;
+    if (ec->nonupdate_dwell)
+	ec->nonupdate_dwell--;
+
+    /* Transfer logic ------------------------------------------------------*/
+
+    /* These conditions are from the dual path paper [1], I messed with
+       them a bit to improve performance. */
+
+    if ((ec->adaption_mode & ECHO_CAN_USE_ADAPTION) &&
+	(ec->nonupdate_dwell == 0) &&
+	(8*ec->Lclean_bg < 7*ec->Lclean) /* (ec->Lclean_bg < 0.875*ec->Lclean) */ &&
+	(8*ec->Lclean_bg < ec->Ltx)      /* (ec->Lclean_bg < 0.125*ec->Ltx)    */ )
+    {
+	if (ec->cond_met == 6) {
+	    /* BG filter has had better results for 6 consecutive samples */
+	    ec->adapt = 1;
+	    memcpy(ec->fir_taps16[0], ec->fir_taps16[1], ec->taps*sizeof(int16_t));
+	}
+	else
+	    ec->cond_met++;
+    }
+    else
+	ec->cond_met = 0;
+
+    /* Non-Linear Processing ---------------------------------------------------*/
+
+    ec->clean_nlp = ec->clean;
+    if (ec->adaption_mode & ECHO_CAN_USE_NLP)
+    {
+        /* Non-linear processor - a fancy way to say "zap small signals, to avoid
+           residual echo due to (uLaw/ALaw) non-linearity in the channel.". */
+
+      if ((16*ec->Lclean < ec->Ltx))
+      {
+	/* Our e/c has improved echo by at least 24 dB (each factor of 2 is 6dB,
+	   so 2*2*2*2=16 is the same as 6+6+6+6=24dB) */
+        if (ec->adaption_mode & ECHO_CAN_USE_CNG)
+	{
+	    ec->cng_level = ec->Lbgn;
+
+	    /* Very elementary comfort noise generation.  Just random
+	       numbers rolled off very vaguely Hoth-like.  DR: This
+	       noise doesn't sound quite right to me - I suspect there
+	       are some overlfow issues in the filtering as it's too
+	       "crackly".  TODO: debug this, maybe just play noise at
+	       high level or look at spectrum.
+	    */
+
+	    ec->cng_rndnum = 1664525U*ec->cng_rndnum + 1013904223U;
+	    ec->cng_filter = ((ec->cng_rndnum & 0xFFFF) - 32768 + 5*ec->cng_filter) >> 3;
+	    ec->clean_nlp = (ec->cng_filter*ec->cng_level*8) >> 14;
+
+        }
+        else if (ec->adaption_mode & ECHO_CAN_USE_CLIP)
+	{
+	    /* This sounds much better than CNG */
+	    if (ec->clean_nlp > ec->Lbgn)
+	      ec->clean_nlp = ec->Lbgn;
+	    if (ec->clean_nlp < -ec->Lbgn)
+	      ec->clean_nlp = -ec->Lbgn;
+	}
+	else
+        {
+	  /* just mute the residual, doesn't sound very good, used mainly
+	     in G168 tests */
+          ec->clean_nlp = 0;
+        }
+      }
+      else {
+	  /* Background noise estimator.  I tried a few algorithms
+	     here without much luck.  This very simple one seems to
+	     work best, we just average the level using a slow (1 sec
+	     time const) filter if the current level is less than a
+	     (experimentally derived) constant.  This means we dont
+	     include high level signals like near end speech.  When
+	     combined with CNG or especially CLIP seems to work OK.
+	  */
+	  if (ec->Lclean < 40) {
+	      ec->Lbgn_acc += abs(ec->clean) - ec->Lbgn;
+	      ec->Lbgn = (ec->Lbgn_acc + (1<<11)) >> 12;
+	  }
+       }
+    }
+
+    /* Roll around the taps buffer */
+    if (ec->curr_pos <= 0)
+        ec->curr_pos = ec->taps;
+    ec->curr_pos--;
+
+    if (ec->adaption_mode & ECHO_CAN_DISABLE)
+      ec->clean_nlp = rx;
+
+    /* Output scaled back up again to match input scaling */
+
+    return (int16_t) ec->clean_nlp << 1;
+}
+
+/*- End of function --------------------------------------------------------*/
+
+/* This function is seperated from the echo canceller is it is usually called
+   as part of the tx process.  See rx HP (DC blocking) filter above, it's
+   the same design.
+
+   Some soft phones send speech signals with a lot of low frequency
+   energy, e.g. down to 20Hz.  This can make the hybrid non-linear
+   which causes the echo canceller to fall over.  This filter can help
+   by removing any low frequency before it gets to the tx port of the
+   hybrid.
+
+   It can also help by removing and DC in the tx signal.  DC is bad
+   for LMS algorithms.
+
+   This is one of the classic DC removal filters, adjusted to provide sufficient
+   bass rolloff to meet the above requirement to protect hybrids from things that
+   upset them. The difference between successive samples produces a lousy HPF, and
+   then a suitably placed pole flattens things out. The final result is a nicely
+   rolled off bass end. The filtering is implemented with extended fractional
+   precision, which noise shapes things, giving very clean DC removal.
+*/
+
+int16_t echo_can_hpf_tx(echo_can_state_t *ec, int16_t tx) {
+    int tmp, tmp1;
+
+    if (ec->adaption_mode & ECHO_CAN_USE_TX_HPF) {
+        tmp = tx << 15;
+#if 1
+        /* Make sure the gain of the HPF is 1.0. The first can still saturate a little under
+           impulse conditions, and it might roll to 32768 and need clipping on sustained peak
+           level signals. However, the scale of such clipping is small, and the error due to
+           any saturation should not markedly affect the downstream processing. */
+        tmp -= (tmp >> 4);
+#endif
+        ec->tx_1 += -(ec->tx_1>>DC_LOG2BETA) + tmp - ec->tx_2;
+        tmp1 = ec->tx_1 >> 15;
+	if (tmp1 > 32767) tmp1 = 32767;
+	if (tmp1 < -32767) tmp1 = -32767;
+	tx = tmp1;
+        ec->tx_2 = tmp;
+    }
+
+    return tx;
+}
diff --git a/drivers/staging/echo/echo.h b/drivers/staging/echo/echo.h
new file mode 100644
index 0000000..7a91b439
--- /dev/null
+++ b/drivers/staging/echo/echo.h
@@ -0,0 +1,220 @@
+/*
+ * SpanDSP - a series of DSP components for telephony
+ *
+ * echo.c - A line echo canceller.  This code is being developed
+ *          against and partially complies with G168.
+ *
+ * Written by Steve Underwood <steveu@coppice.org>
+ *         and David Rowe <david_at_rowetel_dot_com>
+ *
+ * Copyright (C) 2001 Steve Underwood and 2007 David Rowe
+ *
+ * All rights reserved.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License version 2, as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ *
+ * $Id: echo.h,v 1.9 2006/10/24 13:45:28 steveu Exp $
+ */
+
+#ifndef __ECHO_H
+#define __ECHO_H
+
+/*! \page echo_can_page Line echo cancellation for voice
+
+\section echo_can_page_sec_1 What does it do?
+This module aims to provide G.168-2002 compliant echo cancellation, to remove
+electrical echoes (e.g. from 2-4 wire hybrids) from voice calls.
+
+\section echo_can_page_sec_2 How does it work?
+The heart of the echo cancellor is FIR filter. This is adapted to match the
+echo impulse response of the telephone line. It must be long enough to
+adequately cover the duration of that impulse response. The signal transmitted
+to the telephone line is passed through the FIR filter. Once the FIR is
+properly adapted, the resulting output is an estimate of the echo signal
+received from the line. This is subtracted from the received signal. The result
+is an estimate of the signal which originated at the far end of the line, free
+from echos of our own transmitted signal.
+
+The least mean squares (LMS) algorithm is attributed to Widrow and Hoff, and
+was introduced in 1960. It is the commonest form of filter adaption used in
+things like modem line equalisers and line echo cancellers. There it works very
+well.  However, it only works well for signals of constant amplitude. It works
+very poorly for things like speech echo cancellation, where the signal level
+varies widely.  This is quite easy to fix. If the signal level is normalised -
+similar to applying AGC - LMS can work as well for a signal of varying
+amplitude as it does for a modem signal. This normalised least mean squares
+(NLMS) algorithm is the commonest one used for speech echo cancellation. Many
+other algorithms exist - e.g. RLS (essentially the same as Kalman filtering),
+FAP, etc. Some perform significantly better than NLMS.  However, factors such
+as computational complexity and patents favour the use of NLMS.
+
+A simple refinement to NLMS can improve its performance with speech. NLMS tends
+to adapt best to the strongest parts of a signal. If the signal is white noise,
+the NLMS algorithm works very well. However, speech has more low frequency than
+high frequency content. Pre-whitening (i.e. filtering the signal to flatten its
+spectrum) the echo signal improves the adapt rate for speech, and ensures the
+final residual signal is not heavily biased towards high frequencies. A very
+low complexity filter is adequate for this, so pre-whitening adds little to the
+compute requirements of the echo canceller.
+
+An FIR filter adapted using pre-whitened NLMS performs well, provided certain
+conditions are met:
+
+    - The transmitted signal has poor self-correlation.
+    - There is no signal being generated within the environment being
+      cancelled.
+
+The difficulty is that neither of these can be guaranteed.
+
+If the adaption is performed while transmitting noise (or something fairly
+noise like, such as voice) the adaption works very well. If the adaption is
+performed while transmitting something highly correlative (typically narrow
+band energy such as signalling tones or DTMF), the adaption can go seriously
+wrong. The reason is there is only one solution for the adaption on a near
+random signal - the impulse response of the line. For a repetitive signal,
+there are any number of solutions which converge the adaption, and nothing
+guides the adaption to choose the generalised one. Allowing an untrained
+canceller to converge on this kind of narrowband energy probably a good thing,
+since at least it cancels the tones. Allowing a well converged canceller to
+continue converging on such energy is just a way to ruin its generalised
+adaption. A narrowband detector is needed, so adapation can be suspended at
+appropriate times.
+
+The adaption process is based on trying to eliminate the received signal. When
+there is any signal from within the environment being cancelled it may upset
+the adaption process. Similarly, if the signal we are transmitting is small,
+noise may dominate and disturb the adaption process. If we can ensure that the
+adaption is only performed when we are transmitting a significant signal level,
+and the environment is not, things will be OK. Clearly, it is easy to tell when
+we are sending a significant signal. Telling, if the environment is generating
+a significant signal, and doing it with sufficient speed that the adaption will
+not have diverged too much more we stop it, is a little harder.
+
+The key problem in detecting when the environment is sourcing significant
+energy is that we must do this very quickly. Given a reasonably long sample of
+the received signal, there are a number of strategies which may be used to
+assess whether that signal contains a strong far end component. However, by the
+time that assessment is complete the far end signal will have already caused
+major mis-convergence in the adaption process. An assessment algorithm is
+needed which produces a fairly accurate result from a very short burst of far
+end energy.
+
+\section echo_can_page_sec_3 How do I use it?
+The echo cancellor processes both the transmit and receive streams sample by
+sample. The processing function is not declared inline. Unfortunately,
+cancellation requires many operations per sample, so the call overhead is only
+a minor burden.
+*/
+
+#include "fir.h"
+
+/* Mask bits for the adaption mode */
+#define ECHO_CAN_USE_ADAPTION	0x01
+#define ECHO_CAN_USE_NLP	0x02
+#define ECHO_CAN_USE_CNG	0x04
+#define ECHO_CAN_USE_CLIP	0x08
+#define ECHO_CAN_USE_TX_HPF	0x10
+#define ECHO_CAN_USE_RX_HPF	0x20
+#define ECHO_CAN_DISABLE	0x40
+
+/*!
+    G.168 echo canceller descriptor. This defines the working state for a line
+    echo canceller.
+*/
+typedef struct
+{
+	int16_t tx,rx;
+	int16_t clean;
+	int16_t clean_nlp;
+
+	int nonupdate_dwell;
+	int curr_pos;
+	int taps;
+	int log2taps;
+	int adaption_mode;
+
+	int cond_met;
+	int32_t Pstates;
+	int16_t adapt;
+	int32_t factor;
+	int16_t shift;
+
+	/* Average levels and averaging filter states */
+	int Ltxacc, Lrxacc, Lcleanacc, Lclean_bgacc;
+	int Ltx, Lrx;
+	int Lclean;
+	int Lclean_bg;
+	int Lbgn, Lbgn_acc, Lbgn_upper, Lbgn_upper_acc;
+
+	/* foreground and background filter states */
+	fir16_state_t fir_state;
+	fir16_state_t fir_state_bg;
+	int16_t *fir_taps16[2];
+
+	/* DC blocking filter states */
+	int tx_1, tx_2, rx_1, rx_2;
+
+	/* optional High Pass Filter states */
+	int32_t xvtx[5], yvtx[5];
+	int32_t xvrx[5], yvrx[5];
+
+	/* Parameters for the optional Hoth noise generator */
+	int cng_level;
+	int cng_rndnum;
+	int cng_filter;
+
+	/* snapshot sample of coeffs used for development */
+	int16_t *snapshot;
+} echo_can_state_t;
+
+/*! Create a voice echo canceller context.
+    \param len The length of the canceller, in samples.
+    \return The new canceller context, or NULL if the canceller could not be created.
+*/
+echo_can_state_t *echo_can_create(int len, int adaption_mode);
+
+/*! Free a voice echo canceller context.
+    \param ec The echo canceller context.
+*/
+void echo_can_free(echo_can_state_t *ec);
+
+/*! Flush (reinitialise) a voice echo canceller context.
+    \param ec The echo canceller context.
+*/
+void echo_can_flush(echo_can_state_t *ec);
+
+/*! Set the adaption mode of a voice echo canceller context.
+    \param ec The echo canceller context.
+    \param adapt The mode.
+*/
+void echo_can_adaption_mode(echo_can_state_t *ec, int adaption_mode);
+
+void echo_can_snapshot(echo_can_state_t *ec);
+
+/*! Process a sample through a voice echo canceller.
+    \param ec The echo canceller context.
+    \param tx The transmitted audio sample.
+    \param rx The received audio sample.
+    \return The clean (echo cancelled) received sample.
+*/
+int16_t echo_can_update(echo_can_state_t *ec, int16_t tx, int16_t rx);
+
+/*! Process to high pass filter the tx signal.
+    \param ec The echo canceller context.
+    \param tx The transmitted auio sample.
+    \return The HP filtered transmit sample, send this to your D/A.
+*/
+int16_t echo_can_hpf_tx(echo_can_state_t *ec, int16_t tx);
+
+#endif	/* __ECHO_H */
diff --git a/drivers/staging/echo/fir.h b/drivers/staging/echo/fir.h
new file mode 100644
index 0000000..e1bfc49
--- /dev/null
+++ b/drivers/staging/echo/fir.h
@@ -0,0 +1,369 @@
+/*
+ * SpanDSP - a series of DSP components for telephony
+ *
+ * fir.h - General telephony FIR routines
+ *
+ * Written by Steve Underwood <steveu@coppice.org>
+ *
+ * Copyright (C) 2002 Steve Underwood
+ *
+ * All rights reserved.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License version 2, as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ *
+ * $Id: fir.h,v 1.8 2006/10/24 13:45:28 steveu Exp $
+ */
+
+/*! \page fir_page FIR filtering
+\section fir_page_sec_1 What does it do?
+???.
+
+\section fir_page_sec_2 How does it work?
+???.
+*/
+
+#if !defined(_FIR_H_)
+#define _FIR_H_
+
+/*
+   Blackfin NOTES & IDEAS:
+
+   A simple dot product function is used to implement the filter.  This performs
+   just one MAC/cycle which is inefficient but was easy to implement as a first
+   pass.  The current Blackfin code also uses an unrolled form of the filter
+   history to avoid 0 length hardware loop issues.  This is wasteful of
+   memory.
+
+   Ideas for improvement:
+
+   1/ Rewrite filter for dual MAC inner loop.  The issue here is handling
+   history sample offsets that are 16 bit aligned - the dual MAC needs
+   32 bit aligmnent.  There are some good examples in libbfdsp.
+
+   2/ Use the hardware circular buffer facility tohalve memory usage.
+
+   3/ Consider using internal memory.
+
+   Using less memory might also improve speed as cache misses will be
+   reduced. A drop in MIPs and memory approaching 50% should be
+   possible.
+
+   The foreground and background filters currenlty use a total of
+   about 10 MIPs/ch as measured with speedtest.c on a 256 TAP echo
+   can.
+*/
+
+#if defined(USE_MMX)  ||  defined(USE_SSE2)
+#include "mmx.h"
+#endif
+
+/*!
+    16 bit integer FIR descriptor. This defines the working state for a single
+    instance of an FIR filter using 16 bit integer coefficients.
+*/
+typedef struct
+{
+	int taps;
+	int curr_pos;
+	const int16_t *coeffs;
+	int16_t *history;
+} fir16_state_t;
+
+/*!
+    32 bit integer FIR descriptor. This defines the working state for a single
+    instance of an FIR filter using 32 bit integer coefficients, and filtering
+    16 bit integer data.
+*/
+typedef struct
+{
+	int taps;
+	int curr_pos;
+	const int32_t *coeffs;
+	int16_t *history;
+} fir32_state_t;
+
+/*!
+    Floating point FIR descriptor. This defines the working state for a single
+    instance of an FIR filter using floating point coefficients and data.
+*/
+typedef struct
+{
+	int taps;
+	int curr_pos;
+	const float *coeffs;
+	float *history;
+} fir_float_state_t;
+
+#ifdef __cplusplus
+extern "C" {
+#endif
+
+static __inline__ const int16_t *fir16_create(fir16_state_t *fir,
+                                              const int16_t *coeffs,
+                                              int taps)
+{
+	fir->taps = taps;
+	fir->curr_pos = taps - 1;
+	fir->coeffs = coeffs;
+#if defined(USE_MMX)  ||  defined(USE_SSE2) || defined(__BLACKFIN_ASM__)
+	if ((fir->history = malloc(2*taps*sizeof(int16_t))))
+		memset(fir->history, 0, 2*taps*sizeof(int16_t));
+#else
+	if ((fir->history = (int16_t *) malloc(taps*sizeof(int16_t))))
+		memset(fir->history, 0, taps*sizeof(int16_t));
+#endif
+	return fir->history;
+}
+/*- End of function --------------------------------------------------------*/
+
+static __inline__ void fir16_flush(fir16_state_t *fir)
+{
+#if defined(USE_MMX)  ||  defined(USE_SSE2) || defined(__BLACKFIN_ASM__)
+    memset(fir->history, 0, 2*fir->taps*sizeof(int16_t));
+#else
+    memset(fir->history, 0, fir->taps*sizeof(int16_t));
+#endif
+}
+/*- End of function --------------------------------------------------------*/
+
+static __inline__ void fir16_free(fir16_state_t *fir)
+{
+	free(fir->history);
+}
+/*- End of function --------------------------------------------------------*/
+
+#ifdef __BLACKFIN_ASM__
+static inline int32_t dot_asm(short *x, short *y, int len)
+{
+   int dot;
+
+   len--;
+
+   __asm__
+   (
+   "I0 = %1;\n\t"
+   "I1 = %2;\n\t"
+   "A0 = 0;\n\t"
+   "R0.L = W[I0++] || R1.L = W[I1++];\n\t"
+   "LOOP dot%= LC0 = %3;\n\t"
+   "LOOP_BEGIN dot%=;\n\t"
+      "A0 += R0.L * R1.L (IS) || R0.L = W[I0++] || R1.L = W[I1++];\n\t"
+   "LOOP_END dot%=;\n\t"
+   "A0 += R0.L*R1.L (IS);\n\t"
+   "R0 = A0;\n\t"
+   "%0 = R0;\n\t"
+   : "=&d" (dot)
+   : "a" (x), "a" (y), "a" (len)
+   : "I0", "I1", "A1", "A0", "R0", "R1"
+   );
+
+   return dot;
+}
+#endif
+/*- End of function --------------------------------------------------------*/
+
+static __inline__ int16_t fir16(fir16_state_t *fir, int16_t sample)
+{
+    int32_t y;
+#if defined(USE_MMX)
+    int i;
+    mmx_t *mmx_coeffs;
+    mmx_t *mmx_hist;
+
+    fir->history[fir->curr_pos] = sample;
+    fir->history[fir->curr_pos + fir->taps] = sample;
+
+    mmx_coeffs = (mmx_t *) fir->coeffs;
+    mmx_hist = (mmx_t *) &fir->history[fir->curr_pos];
+    i = fir->taps;
+    pxor_r2r(mm4, mm4);
+    /* 8 samples per iteration, so the filter must be a multiple of 8 long. */
+    while (i > 0)
+    {
+        movq_m2r(mmx_coeffs[0], mm0);
+        movq_m2r(mmx_coeffs[1], mm2);
+        movq_m2r(mmx_hist[0], mm1);
+        movq_m2r(mmx_hist[1], mm3);
+        mmx_coeffs += 2;
+        mmx_hist += 2;
+        pmaddwd_r2r(mm1, mm0);
+        pmaddwd_r2r(mm3, mm2);
+        paddd_r2r(mm0, mm4);
+        paddd_r2r(mm2, mm4);
+        i -= 8;
+    }
+    movq_r2r(mm4, mm0);
+    psrlq_i2r(32, mm0);
+    paddd_r2r(mm0, mm4);
+    movd_r2m(mm4, y);
+    emms();
+#elif defined(USE_SSE2)
+    int i;
+    xmm_t *xmm_coeffs;
+    xmm_t *xmm_hist;
+
+    fir->history[fir->curr_pos] = sample;
+    fir->history[fir->curr_pos + fir->taps] = sample;
+
+    xmm_coeffs = (xmm_t *) fir->coeffs;
+    xmm_hist = (xmm_t *) &fir->history[fir->curr_pos];
+    i = fir->taps;
+    pxor_r2r(xmm4, xmm4);
+    /* 16 samples per iteration, so the filter must be a multiple of 16 long. */
+    while (i > 0)
+    {
+        movdqu_m2r(xmm_coeffs[0], xmm0);
+        movdqu_m2r(xmm_coeffs[1], xmm2);
+        movdqu_m2r(xmm_hist[0], xmm1);
+        movdqu_m2r(xmm_hist[1], xmm3);
+        xmm_coeffs += 2;
+        xmm_hist += 2;
+        pmaddwd_r2r(xmm1, xmm0);
+        pmaddwd_r2r(xmm3, xmm2);
+        paddd_r2r(xmm0, xmm4);
+        paddd_r2r(xmm2, xmm4);
+        i -= 16;
+    }
+    movdqa_r2r(xmm4, xmm0);
+    psrldq_i2r(8, xmm0);
+    paddd_r2r(xmm0, xmm4);
+    movdqa_r2r(xmm4, xmm0);
+    psrldq_i2r(4, xmm0);
+    paddd_r2r(xmm0, xmm4);
+    movd_r2m(xmm4, y);
+#elif defined(__BLACKFIN_ASM__)
+    fir->history[fir->curr_pos] = sample;
+    fir->history[fir->curr_pos + fir->taps] = sample;
+    y = dot_asm((int16_t*)fir->coeffs, &fir->history[fir->curr_pos], fir->taps);
+#else
+    int i;
+    int offset1;
+    int offset2;
+
+    fir->history[fir->curr_pos] = sample;
+
+    offset2 = fir->curr_pos;
+    offset1 = fir->taps - offset2;
+    y = 0;
+    for (i = fir->taps - 1;  i >= offset1;  i--)
+        y += fir->coeffs[i]*fir->history[i - offset1];
+    for (  ;  i >= 0;  i--)
+        y += fir->coeffs[i]*fir->history[i + offset2];
+#endif
+    if (fir->curr_pos <= 0)
+    	fir->curr_pos = fir->taps;
+    fir->curr_pos--;
+    return (int16_t) (y >> 15);
+}
+/*- End of function --------------------------------------------------------*/
+
+static __inline__ const int16_t *fir32_create(fir32_state_t *fir,
+                                              const int32_t *coeffs,
+                                              int taps)
+{
+    fir->taps = taps;
+    fir->curr_pos = taps - 1;
+    fir->coeffs = coeffs;
+    fir->history = (int16_t *) malloc(taps*sizeof(int16_t));
+    if (fir->history)
+    	memset(fir->history, '\0', taps*sizeof(int16_t));
+    return fir->history;
+}
+/*- End of function --------------------------------------------------------*/
+
+static __inline__ void fir32_flush(fir32_state_t *fir)
+{
+    memset(fir->history, 0, fir->taps*sizeof(int16_t));
+}
+/*- End of function --------------------------------------------------------*/
+
+static __inline__ void fir32_free(fir32_state_t *fir)
+{
+    free(fir->history);
+}
+/*- End of function --------------------------------------------------------*/
+
+static __inline__ int16_t fir32(fir32_state_t *fir, int16_t sample)
+{
+    int i;
+    int32_t y;
+    int offset1;
+    int offset2;
+
+    fir->history[fir->curr_pos] = sample;
+    offset2 = fir->curr_pos;
+    offset1 = fir->taps - offset2;
+    y = 0;
+    for (i = fir->taps - 1;  i >= offset1;  i--)
+        y += fir->coeffs[i]*fir->history[i - offset1];
+    for (  ;  i >= 0;  i--)
+        y += fir->coeffs[i]*fir->history[i + offset2];
+    if (fir->curr_pos <= 0)
+    	fir->curr_pos = fir->taps;
+    fir->curr_pos--;
+    return (int16_t) (y >> 15);
+}
+/*- End of function --------------------------------------------------------*/
+
+#ifndef __KERNEL__
+static __inline__ const float *fir_float_create(fir_float_state_t *fir,
+                                                const float *coeffs,
+    	    	    	                        int taps)
+{
+    fir->taps = taps;
+    fir->curr_pos = taps - 1;
+    fir->coeffs = coeffs;
+    fir->history = (float *) malloc(taps*sizeof(float));
+    if (fir->history)
+        memset(fir->history, '\0', taps*sizeof(float));
+    return fir->history;
+}
+/*- End of function --------------------------------------------------------*/
+
+static __inline__ void fir_float_free(fir_float_state_t *fir)
+{
+    free(fir->history);
+}
+/*- End of function --------------------------------------------------------*/
+
+static __inline__ int16_t fir_float(fir_float_state_t *fir, int16_t sample)
+{
+    int i;
+    float y;
+    int offset1;
+    int offset2;
+
+    fir->history[fir->curr_pos] = sample;
+
+    offset2 = fir->curr_pos;
+    offset1 = fir->taps - offset2;
+    y = 0;
+    for (i = fir->taps - 1;  i >= offset1;  i--)
+        y += fir->coeffs[i]*fir->history[i - offset1];
+    for (  ;  i >= 0;  i--)
+        y += fir->coeffs[i]*fir->history[i + offset2];
+    if (fir->curr_pos <= 0)
+    	fir->curr_pos = fir->taps;
+    fir->curr_pos--;
+    return  (int16_t) y;
+}
+/*- End of function --------------------------------------------------------*/
+#endif
+
+#ifdef __cplusplus
+}
+#endif
+
+#endif
+/*- End of file ------------------------------------------------------------*/
diff --git a/drivers/staging/echo/mmx.h b/drivers/staging/echo/mmx.h
new file mode 100644
index 0000000..b5a3964
--- /dev/null
+++ b/drivers/staging/echo/mmx.h
@@ -0,0 +1,288 @@
+/*
+ * mmx.h
+ * Copyright (C) 1997-2001 H. Dietz and R. Fisher
+ *
+ * This file is part of FFmpeg.
+ *
+ * FFmpeg is free software; you can redistribute it and/or
+ * modify it under the terms of the GNU Lesser General Public
+ * License as published by the Free Software Foundation; either
+ * version 2.1 of the License, or (at your option) any later version.
+ *
+ * FFmpeg is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
+ * Lesser General Public License for more details.
+ *
+ * You should have received a copy of the GNU Lesser General Public
+ * License along with FFmpeg; if not, write to the Free Software
+ * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
+ */
+#ifndef AVCODEC_I386MMX_H
+#define AVCODEC_I386MMX_H
+
+/*
+ * The type of an value that fits in an MMX register (note that long
+ * long constant values MUST be suffixed by LL and unsigned long long
+ * values by ULL, lest they be truncated by the compiler)
+ */
+
+typedef        union {
+        long long               q;      /* Quadword (64-bit) value */
+        unsigned long long      uq;     /* Unsigned Quadword */
+        int                     d[2];   /* 2 Doubleword (32-bit) values */
+        unsigned int            ud[2];  /* 2 Unsigned Doubleword */
+        short                   w[4];   /* 4 Word (16-bit) values */
+        unsigned short          uw[4];  /* 4 Unsigned Word */
+        char                    b[8];   /* 8 Byte (8-bit) values */
+        unsigned char           ub[8];  /* 8 Unsigned Byte */
+        float                   s[2];   /* Single-precision (32-bit) value */
+} mmx_t;        /* On an 8-byte (64-bit) boundary */
+
+/* SSE registers */
+typedef union {
+	char b[16];
+} xmm_t;
+
+
+#define         mmx_i2r(op,imm,reg) \
+        __asm__ __volatile__ (#op " %0, %%" #reg \
+                              : /* nothing */ \
+                              : "i" (imm) )
+
+#define         mmx_m2r(op,mem,reg) \
+        __asm__ __volatile__ (#op " %0, %%" #reg \
+                              : /* nothing */ \
+                              : "m" (mem))
+
+#define         mmx_r2m(op,reg,mem) \
+        __asm__ __volatile__ (#op " %%" #reg ", %0" \
+                              : "=m" (mem) \
+                              : /* nothing */ )
+
+#define         mmx_r2r(op,regs,regd) \
+        __asm__ __volatile__ (#op " %" #regs ", %" #regd)
+
+
+#define         emms() __asm__ __volatile__ ("emms")
+
+#define         movd_m2r(var,reg)           mmx_m2r (movd, var, reg)
+#define         movd_r2m(reg,var)           mmx_r2m (movd, reg, var)
+#define         movd_r2r(regs,regd)         mmx_r2r (movd, regs, regd)
+
+#define         movq_m2r(var,reg)           mmx_m2r (movq, var, reg)
+#define         movq_r2m(reg,var)           mmx_r2m (movq, reg, var)
+#define         movq_r2r(regs,regd)         mmx_r2r (movq, regs, regd)
+
+#define         packssdw_m2r(var,reg)       mmx_m2r (packssdw, var, reg)
+#define         packssdw_r2r(regs,regd)     mmx_r2r (packssdw, regs, regd)
+#define         packsswb_m2r(var,reg)       mmx_m2r (packsswb, var, reg)
+#define         packsswb_r2r(regs,regd)     mmx_r2r (packsswb, regs, regd)
+
+#define         packuswb_m2r(var,reg)       mmx_m2r (packuswb, var, reg)
+#define         packuswb_r2r(regs,regd)     mmx_r2r (packuswb, regs, regd)
+
+#define         paddb_m2r(var,reg)          mmx_m2r (paddb, var, reg)
+#define         paddb_r2r(regs,regd)        mmx_r2r (paddb, regs, regd)
+#define         paddd_m2r(var,reg)          mmx_m2r (paddd, var, reg)
+#define         paddd_r2r(regs,regd)        mmx_r2r (paddd, regs, regd)
+#define         paddw_m2r(var,reg)          mmx_m2r (paddw, var, reg)
+#define         paddw_r2r(regs,regd)        mmx_r2r (paddw, regs, regd)
+
+#define         paddsb_m2r(var,reg)         mmx_m2r (paddsb, var, reg)
+#define         paddsb_r2r(regs,regd)       mmx_r2r (paddsb, regs, regd)
+#define         paddsw_m2r(var,reg)         mmx_m2r (paddsw, var, reg)
+#define         paddsw_r2r(regs,regd)       mmx_r2r (paddsw, regs, regd)
+
+#define         paddusb_m2r(var,reg)        mmx_m2r (paddusb, var, reg)
+#define         paddusb_r2r(regs,regd)      mmx_r2r (paddusb, regs, regd)
+#define         paddusw_m2r(var,reg)        mmx_m2r (paddusw, var, reg)
+#define         paddusw_r2r(regs,regd)      mmx_r2r (paddusw, regs, regd)
+
+#define         pand_m2r(var,reg)           mmx_m2r (pand, var, reg)
+#define         pand_r2r(regs,regd)         mmx_r2r (pand, regs, regd)
+
+#define         pandn_m2r(var,reg)          mmx_m2r (pandn, var, reg)
+#define         pandn_r2r(regs,regd)        mmx_r2r (pandn, regs, regd)
+
+#define         pcmpeqb_m2r(var,reg)        mmx_m2r (pcmpeqb, var, reg)
+#define         pcmpeqb_r2r(regs,regd)      mmx_r2r (pcmpeqb, regs, regd)
+#define         pcmpeqd_m2r(var,reg)        mmx_m2r (pcmpeqd, var, reg)
+#define         pcmpeqd_r2r(regs,regd)      mmx_r2r (pcmpeqd, regs, regd)
+#define         pcmpeqw_m2r(var,reg)        mmx_m2r (pcmpeqw, var, reg)
+#define         pcmpeqw_r2r(regs,regd)      mmx_r2r (pcmpeqw, regs, regd)
+
+#define         pcmpgtb_m2r(var,reg)        mmx_m2r (pcmpgtb, var, reg)
+#define         pcmpgtb_r2r(regs,regd)      mmx_r2r (pcmpgtb, regs, regd)
+#define         pcmpgtd_m2r(var,reg)        mmx_m2r (pcmpgtd, var, reg)
+#define         pcmpgtd_r2r(regs,regd)      mmx_r2r (pcmpgtd, regs, regd)
+#define         pcmpgtw_m2r(var,reg)        mmx_m2r (pcmpgtw, var, reg)
+#define         pcmpgtw_r2r(regs,regd)      mmx_r2r (pcmpgtw, regs, regd)
+
+#define         pmaddwd_m2r(var,reg)        mmx_m2r (pmaddwd, var, reg)
+#define         pmaddwd_r2r(regs,regd)      mmx_r2r (pmaddwd, regs, regd)
+
+#define         pmulhw_m2r(var,reg)         mmx_m2r (pmulhw, var, reg)
+#define         pmulhw_r2r(regs,regd)       mmx_r2r (pmulhw, regs, regd)
+
+#define         pmullw_m2r(var,reg)         mmx_m2r (pmullw, var, reg)
+#define         pmullw_r2r(regs,regd)       mmx_r2r (pmullw, regs, regd)
+
+#define         por_m2r(var,reg)            mmx_m2r (por, var, reg)
+#define         por_r2r(regs,regd)          mmx_r2r (por, regs, regd)
+
+#define         pslld_i2r(imm,reg)          mmx_i2r (pslld, imm, reg)
+#define         pslld_m2r(var,reg)          mmx_m2r (pslld, var, reg)
+#define         pslld_r2r(regs,regd)        mmx_r2r (pslld, regs, regd)
+#define         psllq_i2r(imm,reg)          mmx_i2r (psllq, imm, reg)
+#define         psllq_m2r(var,reg)          mmx_m2r (psllq, var, reg)
+#define         psllq_r2r(regs,regd)        mmx_r2r (psllq, regs, regd)
+#define         psllw_i2r(imm,reg)          mmx_i2r (psllw, imm, reg)
+#define         psllw_m2r(var,reg)          mmx_m2r (psllw, var, reg)
+#define         psllw_r2r(regs,regd)        mmx_r2r (psllw, regs, regd)
+
+#define         psrad_i2r(imm,reg)          mmx_i2r (psrad, imm, reg)
+#define         psrad_m2r(var,reg)          mmx_m2r (psrad, var, reg)
+#define         psrad_r2r(regs,regd)        mmx_r2r (psrad, regs, regd)
+#define         psraw_i2r(imm,reg)          mmx_i2r (psraw, imm, reg)
+#define         psraw_m2r(var,reg)          mmx_m2r (psraw, var, reg)
+#define         psraw_r2r(regs,regd)        mmx_r2r (psraw, regs, regd)
+
+#define         psrld_i2r(imm,reg)          mmx_i2r (psrld, imm, reg)
+#define         psrld_m2r(var,reg)          mmx_m2r (psrld, var, reg)
+#define         psrld_r2r(regs,regd)        mmx_r2r (psrld, regs, regd)
+#define         psrlq_i2r(imm,reg)          mmx_i2r (psrlq, imm, reg)
+#define         psrlq_m2r(var,reg)          mmx_m2r (psrlq, var, reg)
+#define         psrlq_r2r(regs,regd)        mmx_r2r (psrlq, regs, regd)
+#define         psrlw_i2r(imm,reg)          mmx_i2r (psrlw, imm, reg)
+#define         psrlw_m2r(var,reg)          mmx_m2r (psrlw, var, reg)
+#define         psrlw_r2r(regs,regd)        mmx_r2r (psrlw, regs, regd)
+
+#define         psubb_m2r(var,reg)          mmx_m2r (psubb, var, reg)
+#define         psubb_r2r(regs,regd)        mmx_r2r (psubb, regs, regd)
+#define         psubd_m2r(var,reg)          mmx_m2r (psubd, var, reg)
+#define         psubd_r2r(regs,regd)        mmx_r2r (psubd, regs, regd)
+#define         psubw_m2r(var,reg)          mmx_m2r (psubw, var, reg)
+#define         psubw_r2r(regs,regd)        mmx_r2r (psubw, regs, regd)
+
+#define         psubsb_m2r(var,reg)         mmx_m2r (psubsb, var, reg)
+#define         psubsb_r2r(regs,regd)       mmx_r2r (psubsb, regs, regd)
+#define         psubsw_m2r(var,reg)         mmx_m2r (psubsw, var, reg)
+#define         psubsw_r2r(regs,regd)       mmx_r2r (psubsw, regs, regd)
+
+#define         psubusb_m2r(var,reg)        mmx_m2r (psubusb, var, reg)
+#define         psubusb_r2r(regs,regd)      mmx_r2r (psubusb, regs, regd)
+#define         psubusw_m2r(var,reg)        mmx_m2r (psubusw, var, reg)
+#define         psubusw_r2r(regs,regd)      mmx_r2r (psubusw, regs, regd)
+
+#define         punpckhbw_m2r(var,reg)      mmx_m2r (punpckhbw, var, reg)
+#define         punpckhbw_r2r(regs,regd)    mmx_r2r (punpckhbw, regs, regd)
+#define         punpckhdq_m2r(var,reg)      mmx_m2r (punpckhdq, var, reg)
+#define         punpckhdq_r2r(regs,regd)    mmx_r2r (punpckhdq, regs, regd)
+#define         punpckhwd_m2r(var,reg)      mmx_m2r (punpckhwd, var, reg)
+#define         punpckhwd_r2r(regs,regd)    mmx_r2r (punpckhwd, regs, regd)
+
+#define         punpcklbw_m2r(var,reg)      mmx_m2r (punpcklbw, var, reg)
+#define         punpcklbw_r2r(regs,regd)    mmx_r2r (punpcklbw, regs, regd)
+#define         punpckldq_m2r(var,reg)      mmx_m2r (punpckldq, var, reg)
+#define         punpckldq_r2r(regs,regd)    mmx_r2r (punpckldq, regs, regd)
+#define         punpcklwd_m2r(var,reg)      mmx_m2r (punpcklwd, var, reg)
+#define         punpcklwd_r2r(regs,regd)    mmx_r2r (punpcklwd, regs, regd)
+
+#define         pxor_m2r(var,reg)           mmx_m2r (pxor, var, reg)
+#define         pxor_r2r(regs,regd)         mmx_r2r (pxor, regs, regd)
+
+
+/* 3DNOW extensions */
+
+#define         pavgusb_m2r(var,reg)        mmx_m2r (pavgusb, var, reg)
+#define         pavgusb_r2r(regs,regd)      mmx_r2r (pavgusb, regs, regd)
+
+
+/* AMD MMX extensions - also available in intel SSE */
+
+
+#define         mmx_m2ri(op,mem,reg,imm) \
+        __asm__ __volatile__ (#op " %1, %0, %%" #reg \
+                              : /* nothing */ \
+                              : "m" (mem), "i" (imm))
+#define         mmx_r2ri(op,regs,regd,imm) \
+        __asm__ __volatile__ (#op " %0, %%" #regs ", %%" #regd \
+                              : /* nothing */ \
+                              : "i" (imm) )
+
+#define         mmx_fetch(mem,hint) \
+        __asm__ __volatile__ ("prefetch" #hint " %0" \
+                              : /* nothing */ \
+                              : "m" (mem))
+
+
+#define         maskmovq(regs,maskreg)      mmx_r2ri (maskmovq, regs, maskreg)
+
+#define         movntq_r2m(mmreg,var)       mmx_r2m (movntq, mmreg, var)
+
+#define         pavgb_m2r(var,reg)          mmx_m2r (pavgb, var, reg)
+#define         pavgb_r2r(regs,regd)        mmx_r2r (pavgb, regs, regd)
+#define         pavgw_m2r(var,reg)          mmx_m2r (pavgw, var, reg)
+#define         pavgw_r2r(regs,regd)        mmx_r2r (pavgw, regs, regd)
+
+#define         pextrw_r2r(mmreg,reg,imm)   mmx_r2ri (pextrw, mmreg, reg, imm)
+
+#define         pinsrw_r2r(reg,mmreg,imm)   mmx_r2ri (pinsrw, reg, mmreg, imm)
+
+#define         pmaxsw_m2r(var,reg)         mmx_m2r (pmaxsw, var, reg)
+#define         pmaxsw_r2r(regs,regd)       mmx_r2r (pmaxsw, regs, regd)
+
+#define         pmaxub_m2r(var,reg)         mmx_m2r (pmaxub, var, reg)
+#define         pmaxub_r2r(regs,regd)       mmx_r2r (pmaxub, regs, regd)
+
+#define         pminsw_m2r(var,reg)         mmx_m2r (pminsw, var, reg)
+#define         pminsw_r2r(regs,regd)       mmx_r2r (pminsw, regs, regd)
+
+#define         pminub_m2r(var,reg)         mmx_m2r (pminub, var, reg)
+#define         pminub_r2r(regs,regd)       mmx_r2r (pminub, regs, regd)
+
+#define         pmovmskb(mmreg,reg) \
+        __asm__ __volatile__ ("movmskps %" #mmreg ", %" #reg)
+
+#define         pmulhuw_m2r(var,reg)        mmx_m2r (pmulhuw, var, reg)
+#define         pmulhuw_r2r(regs,regd)      mmx_r2r (pmulhuw, regs, regd)
+
+#define         prefetcht0(mem)             mmx_fetch (mem, t0)
+#define         prefetcht1(mem)             mmx_fetch (mem, t1)
+#define         prefetcht2(mem)             mmx_fetch (mem, t2)
+#define         prefetchnta(mem)            mmx_fetch (mem, nta)
+
+#define         psadbw_m2r(var,reg)         mmx_m2r (psadbw, var, reg)
+#define         psadbw_r2r(regs,regd)       mmx_r2r (psadbw, regs, regd)
+
+#define         pshufw_m2r(var,reg,imm)     mmx_m2ri(pshufw, var, reg, imm)
+#define         pshufw_r2r(regs,regd,imm)   mmx_r2ri(pshufw, regs, regd, imm)
+
+#define         sfence() __asm__ __volatile__ ("sfence\n\t")
+
+/* SSE2 */
+#define         pshufhw_m2r(var,reg,imm)    mmx_m2ri(pshufhw, var, reg, imm)
+#define         pshufhw_r2r(regs,regd,imm)  mmx_r2ri(pshufhw, regs, regd, imm)
+#define         pshuflw_m2r(var,reg,imm)    mmx_m2ri(pshuflw, var, reg, imm)
+#define         pshuflw_r2r(regs,regd,imm)  mmx_r2ri(pshuflw, regs, regd, imm)
+
+#define         pshufd_r2r(regs,regd,imm)   mmx_r2ri(pshufd, regs, regd, imm)
+
+#define         movdqa_m2r(var,reg)         mmx_m2r (movdqa, var, reg)
+#define         movdqa_r2m(reg,var)         mmx_r2m (movdqa, reg, var)
+#define         movdqa_r2r(regs,regd)       mmx_r2r (movdqa, regs, regd)
+#define         movdqu_m2r(var,reg)         mmx_m2r (movdqu, var, reg)
+#define         movdqu_r2m(reg,var)         mmx_r2m (movdqu, reg, var)
+#define         movdqu_r2r(regs,regd)       mmx_r2r (movdqu, regs, regd)
+
+#define         pmullw_r2m(reg,var)         mmx_r2m (pmullw, reg, var)
+
+#define         pslldq_i2r(imm,reg)         mmx_i2r (pslldq, imm, reg)
+#define         psrldq_i2r(imm,reg)         mmx_i2r (psrldq, imm, reg)
+
+#define         punpcklqdq_r2r(regs,regd)   mmx_r2r (punpcklqdq, regs, regd)
+#define         punpckhqdq_r2r(regs,regd)   mmx_r2r (punpckhqdq, regs, regd)
+
+
+#endif /* AVCODEC_I386MMX_H */
diff --git a/drivers/staging/et131x/Kconfig b/drivers/staging/et131x/Kconfig
new file mode 100644
index 0000000..e11cf34
--- /dev/null
+++ b/drivers/staging/et131x/Kconfig
@@ -0,0 +1,18 @@
+config ET131X
+	tristate "Agere ET-1310 Gigabit Ethernet support"
+	depends on NETDEV_1000 && PCI
+	default n
+	---help---
+	  This driver supports Agere ET-1310 ethernet adapters.
+
+	  To compile this driver as a module, choose M here. The module
+	  will be called et131x.
+
+config ET131X_DEBUG
+	bool "Enable et131x debugging"
+	depends on ET131X
+	default n
+	---help---
+	  Say Y for detailed debug information.
+
+	  If in doubt, say N.
diff --git a/drivers/staging/et131x/Makefile b/drivers/staging/et131x/Makefile
new file mode 100644
index 0000000..3ad571d
--- /dev/null
+++ b/drivers/staging/et131x/Makefile
@@ -0,0 +1,18 @@
+#
+# Makefile for the Agere ET-131x ethernet driver
+#
+
+obj-$(CONFIG_ET131X) += et131x.o
+
+et131x-objs :=	et1310_eeprom.o \
+		et1310_jagcore.o \
+		et1310_mac.o \
+		et1310_phy.o \
+		et1310_pm.o \
+		et1310_rx.o \
+		et1310_tx.o \
+		et131x_config.o \
+		et131x_debug.o \
+		et131x_initpci.o \
+		et131x_isr.o \
+		et131x_netdev.o
diff --git a/drivers/staging/et131x/README b/drivers/staging/et131x/README
new file mode 100644
index 0000000..28752a5
--- /dev/null
+++ b/drivers/staging/et131x/README
@@ -0,0 +1,25 @@
+This is a driver for the ET1310 network device.
+
+Based on the driver found at https://sourceforge.net/projects/et131x/
+
+Cleaned up immensely by Olaf Hartman <o.hartmann@telovital.com> and Christoph
+Hellwig <hch@infradead.org>
+
+Note, the powermanagement options were removed from the vendor provided
+driver as they did not build properly at the time.
+
+TODO:
+	- kernel coding style cleanups
+	- forward port for latest network driver changes
+	- kill useless typecasts (e.g. in et1310_phy.c)
+	- alloc_etherdev is initializing memory with zero?!?
+	- add_timer call in et131x_netdev.c is correct?
+	- Add power saving functionality (suspend, sleep, resume)
+	- Implement a few more kernel Parameter (set mac )
+
+Please send patches to:
+	Greg Kroah-Hartman <gregkh@suse.de>
+
+And Cc: Olaf Hartmann <o.hartmann@telovital.com> as he has this device and can
+test any changes.
+
diff --git a/drivers/staging/et131x/et1310_address_map.h b/drivers/staging/et131x/et1310_address_map.h
new file mode 100644
index 0000000..3c85999
--- /dev/null
+++ b/drivers/staging/et131x/et1310_address_map.h
@@ -0,0 +1,2399 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et1310_address_map.h - Contains the register mapping for the ET1310
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#ifndef _ET1310_ADDRESS_MAP_H_
+#define _ET1310_ADDRESS_MAP_H_
+
+
+/* START OF GLOBAL REGISTER ADDRESS MAP */
+
+typedef union _Q_ADDR_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:22;	// bits 10-31
+		u32 addr:10;	// bits 0-9
+#else
+		u32 addr:10;	// bits 0-9
+		u32 unused:22;	// bits 10-31
+#endif
+	} bits;
+} Q_ADDR_t, *PQ_ADDR_t;
+
+/*
+ * structure for tx queue start address reg in global address map
+ * located at address 0x0000
+ * Defined earlier (Q_ADDR_t)
+ */
+
+/*
+ * structure for tx queue end address reg in global address map
+ * located at address 0x0004
+ * Defined earlier (Q_ADDR_t)
+ */
+
+/*
+ * structure for rx queue start address reg in global address map
+ * located at address 0x0008
+ * Defined earlier (Q_ADDR_t)
+ */
+
+/*
+ * structure for rx queue end address reg in global address map
+ * located at address 0x000C
+ * Defined earlier (Q_ADDR_t)
+ */
+
+/*
+ * structure for power management control status reg in global address map
+ * located at address 0x0010
+ */
+typedef union _PM_CSR_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:22;		// bits 10-31
+		u32 pm_jagcore_rx_rdy:1;	// bit 9
+		u32 pm_jagcore_tx_rdy:1;	// bit 8
+		u32 pm_phy_lped_en:1;	// bit 7
+		u32 pm_phy_sw_coma:1;	// bit 6
+		u32 pm_rxclk_gate:1;	// bit 5
+		u32 pm_txclk_gate:1;	// bit 4
+		u32 pm_sysclk_gate:1;	// bit 3
+		u32 pm_jagcore_rx_en:1;	// bit 2
+		u32 pm_jagcore_tx_en:1;	// bit 1
+		u32 pm_gigephy_en:1;	// bit 0
+#else
+		u32 pm_gigephy_en:1;	// bit 0
+		u32 pm_jagcore_tx_en:1;	// bit 1
+		u32 pm_jagcore_rx_en:1;	// bit 2
+		u32 pm_sysclk_gate:1;	// bit 3
+		u32 pm_txclk_gate:1;	// bit 4
+		u32 pm_rxclk_gate:1;	// bit 5
+		u32 pm_phy_sw_coma:1;	// bit 6
+		u32 pm_phy_lped_en:1;	// bit 7
+		u32 pm_jagcore_tx_rdy:1;	// bit 8
+		u32 pm_jagcore_rx_rdy:1;	// bit 9
+		u32 unused:22;		// bits 10-31
+#endif
+	} bits;
+} PM_CSR_t, *PPM_CSR_t;
+
+/*
+ * structure for interrupt status reg in global address map
+ * located at address 0x0018
+ */
+typedef union _INTERRUPT_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused5:11;			// bits 21-31
+		u32 slv_timeout:1;			// bit 20
+		u32 mac_stat_interrupt:1;		// bit 19
+		u32 rxmac_interrupt:1;		// bit 18
+		u32 txmac_interrupt:1;		// bit 17
+		u32 phy_interrupt:1;		// bit 16
+		u32 wake_on_lan:1;			// bit 15
+		u32 watchdog_interrupt:1;		// bit 14
+		u32 unused4:4;			// bits 10-13
+		u32 rxdma_err:1;			// bit 9
+		u32 rxdma_pkt_stat_ring_low:1;	// bit 8
+		u32 rxdma_fb_ring1_low:1;		// bit 7
+		u32 rxdma_fb_ring0_low:1;		// bit 6
+		u32 rxdma_xfr_done:1;		// bit 5
+		u32 txdma_err:1;			// bit 4
+		u32 txdma_isr:1;			// bit 3
+		u32 unused3:1;			// bit 2
+		u32 unused2:1;			// bit 1
+		u32 unused1:1;			// bit 0
+#else
+		u32 unused1:1;			// bit 0
+		u32 unused2:1;			// bit 1
+		u32 unused3:1;			// bit 2
+		u32 txdma_isr:1;			// bit 3
+		u32 txdma_err:1;			// bit 4
+		u32 rxdma_xfr_done:1;		// bit 5
+		u32 rxdma_fb_ring0_low:1;		// bit 6
+		u32 rxdma_fb_ring1_low:1;		// bit 7
+		u32 rxdma_pkt_stat_ring_low:1;	// bit 8
+		u32 rxdma_err:1;			// bit 9
+		u32 unused4:4;			// bits 10-13
+		u32 watchdog_interrupt:1;		// bit 14
+		u32 wake_on_lan:1;			// bit 15
+		u32 phy_interrupt:1;		// bit 16
+		u32 txmac_interrupt:1;		// bit 17
+		u32 rxmac_interrupt:1;		// bit 18
+		u32 mac_stat_interrupt:1;		// bit 19
+		u32 slv_timeout:1;			// bit 20
+		u32 unused5:11;			// bits 21-31
+#endif
+	} bits;
+} INTERRUPT_t, *PINTERRUPT_t;
+
+/*
+ * structure for interrupt mask reg in global address map
+ * located at address 0x001C
+ * Defined earlier (INTERRUPT_t), but 'watchdog_interrupt' is not used.
+ */
+
+/*
+ * structure for interrupt alias clear mask reg in global address map
+ * located at address 0x0020
+ * Defined earlier (INTERRUPT_t)
+ */
+
+/*
+ * structure for interrupt status alias reg in global address map
+ * located at address 0x0024
+ * Defined earlier (INTERRUPT_t)
+ */
+
+/*
+ * structure for software reset reg in global address map
+ * located at address 0x0028
+ */
+typedef union _SW_RESET_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 selfclr_disable:1;	// bit 31
+		u32 unused:24;		// bits 7-30
+		u32 mmc_sw_reset:1;	// bit 6
+		u32 mac_stat_sw_reset:1;	// bit 5
+		u32 mac_sw_reset:1;	// bit 4
+		u32 rxmac_sw_reset:1;	// bit 3
+		u32 txmac_sw_reset:1;	// bit 2
+		u32 rxdma_sw_reset:1;	// bit 1
+		u32 txdma_sw_reset:1;	// bit 0
+#else
+		u32 txdma_sw_reset:1;	// bit 0
+		u32 rxdma_sw_reset:1;	// bit 1
+		u32 txmac_sw_reset:1;	// bit 2
+		u32 rxmac_sw_reset:1;	// bit 3
+		u32 mac_sw_reset:1;	// bit 4
+		u32 mac_stat_sw_reset:1;	// bit 5
+		u32 mmc_sw_reset:1;	// bit 6
+		u32 unused:24;		// bits 7-30
+		u32 selfclr_disable:1;	// bit 31
+#endif
+	} bits;
+} SW_RESET_t, *PSW_RESET_t;
+
+/*
+ * structure for SLV Timer reg in global address map
+ * located at address 0x002C
+ */
+typedef union _SLV_TIMER_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:8;	// bits 24-31
+		u32 timer_ini:24;	// bits 0-23
+#else
+		u32 timer_ini:24;	// bits 0-23
+		u32 unused:8;	// bits 24-31
+#endif
+	} bits;
+} SLV_TIMER_t, *PSLV_TIMER_t;
+
+/*
+ * structure for MSI Configuration reg in global address map
+ * located at address 0x0030
+ */
+typedef union _MSI_CONFIG_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused1:13;	// bits 19-31
+		u32 msi_tc:3;	// bits 16-18
+		u32 unused2:11;	// bits 5-15
+		u32 msi_vector:5;	// bits 0-4
+#else
+		u32 msi_vector:5;	// bits 0-4
+		u32 unused2:11;	// bits 5-15
+		u32 msi_tc:3;	// bits 16-18
+		u32 unused1:13;	// bits 19-31
+#endif
+	} bits;
+} MSI_CONFIG_t, *PMSI_CONFIG_t;
+
+/*
+ * structure for Loopback reg in global address map
+ * located at address 0x0034
+ */
+typedef union _LOOPBACK_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:30;		// bits 2-31
+		u32 dma_loopback:1;	// bit 1
+		u32 mac_loopback:1;	// bit 0
+#else
+		u32 mac_loopback:1;	// bit 0
+		u32 dma_loopback:1;	// bit 1
+		u32 unused:30;		// bits 2-31
+#endif
+	} bits;
+} LOOPBACK_t, *PLOOPBACK_t;
+
+/*
+ * GLOBAL Module of JAGCore Address Mapping
+ * Located at address 0x0000
+ */
+typedef struct _GLOBAL_t {			// Location:
+	Q_ADDR_t txq_start_addr;		//  0x0000
+	Q_ADDR_t txq_end_addr;			//  0x0004
+	Q_ADDR_t rxq_start_addr;		//  0x0008
+	Q_ADDR_t rxq_end_addr;			//  0x000C
+	PM_CSR_t pm_csr;			//  0x0010
+	u32 unused;				//  0x0014
+	INTERRUPT_t int_status;			//  0x0018
+	INTERRUPT_t int_mask;			//  0x001C
+	INTERRUPT_t int_alias_clr_en;		//  0x0020
+	INTERRUPT_t int_status_alias;		//  0x0024
+	SW_RESET_t sw_reset;			//  0x0028
+	SLV_TIMER_t slv_timer;			//  0x002C
+	MSI_CONFIG_t msi_config;		//  0x0030
+	LOOPBACK_t loopback;			//  0x0034
+	u32 watchdog_timer;			//  0x0038
+} GLOBAL_t, *PGLOBAL_t;
+
+/* END OF GLOBAL REGISTER ADDRESS MAP */
+
+
+/* START OF TXDMA REGISTER ADDRESS MAP */
+
+/*
+ * structure for txdma control status reg in txdma address map
+ * located at address 0x1000
+ */
+typedef union _TXDMA_CSR_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused2:19;		// bits 13-31
+		u32 traffic_class:4;	// bits 9-12
+		u32 sngl_epkt_mode:1;	// bit 8
+		u32 cache_thrshld:4;	// bits 4-7
+		u32 unused1:2;		// bits 2-3
+		u32 drop_TLP_disable:1;	// bit 1
+		u32 halt:1;		// bit 0
+#else
+		u32 halt:1;		// bit 0
+		u32 drop_TLP_disable:1;	// bit 1
+		u32 unused1:2;		// bits 2-3
+		u32 cache_thrshld:4;	// bits 4-7
+		u32 sngl_epkt_mode:1;	// bit 8
+		u32 traffic_class:4;	// bits 9-12
+		u32 unused2:19;		// bits 13-31
+#endif
+	} bits;
+} TXDMA_CSR_t, *PTXDMA_CSR_t;
+
+/*
+ * structure for txdma packet ring base address hi reg in txdma address map
+ * located at address 0x1004
+ * Defined earlier (u32)
+ */
+
+/*
+ * structure for txdma packet ring base address low reg in txdma address map
+ * located at address 0x1008
+ * Defined earlier (u32)
+ */
+
+/*
+ * structure for txdma packet ring number of descriptor reg in txdma address
+ * map.  Located at address 0x100C
+ */
+typedef union _TXDMA_PR_NUM_DES_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:22;	// bits 10-31
+		u32 pr_ndes:10;	// bits 0-9
+#else
+		u32 pr_ndes:10;	// bits 0-9
+		u32 unused:22;	// bits 10-31
+#endif
+	} bits;
+} TXDMA_PR_NUM_DES_t, *PTXDMA_PR_NUM_DES_t;
+
+
+typedef union _DMA10W_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:21;	// bits 11-31
+		u32 wrap:1;	// bit 10
+		u32 val:10;	// bits 0-9
+#else
+		u32 val:10;	// bits 0-9
+		u32 wrap:1;	// bit 10
+		u32 unused:21;	// bits 11-31
+#endif
+	} bits;
+} DMA10W_t, *PDMA10W_t;
+
+/*
+ * structure for txdma tx queue write address reg in txdma address map
+ * located at address 0x1010
+ * Defined earlier (DMA10W_t)
+ */
+
+/*
+ * structure for txdma tx queue write address external reg in txdma address map
+ * located at address 0x1014
+ * Defined earlier (DMA10W_t)
+ */
+
+/*
+ * structure for txdma tx queue read address reg in txdma address map
+ * located at address 0x1018
+ * Defined earlier (DMA10W_t)
+ */
+
+/*
+ * structure for txdma status writeback address hi reg in txdma address map
+ * located at address 0x101C
+ * Defined earlier (u32)
+ */
+
+/*
+ * structure for txdma status writeback address lo reg in txdma address map
+ * located at address 0x1020
+ * Defined earlier (u32)
+ */
+
+/*
+ * structure for txdma service request reg in txdma address map
+ * located at address 0x1024
+ * Defined earlier (DMA10W_t)
+ */
+
+/*
+ * structure for txdma service complete reg in txdma address map
+ * located at address 0x1028
+ * Defined earlier (DMA10W_t)
+ */
+
+typedef union _DMA4W_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:27;	// bits 5-31
+		u32 wrap:1;	// bit 4
+		u32 val:4;		// bit 0-3
+#else
+		u32 val:4;		// bits 0-3
+		u32 wrap:1;	// bit 4
+		u32 unused:27;	// bits 5-31
+#endif
+	} bits;
+} DMA4W_t, *PDMA4W_t;
+
+/*
+ * structure for txdma tx descriptor cache read index reg in txdma address map
+ * located at address 0x102C
+ * Defined earlier (DMA4W_t)
+ */
+
+/*
+ * structure for txdma tx descriptor cache write index reg in txdma address map
+ * located at address 0x1030
+ * Defined earlier (DMA4W_t)
+ */
+
+/*
+ * structure for txdma error reg in txdma address map
+ * located at address 0x1034
+ */
+typedef union _TXDMA_ERROR_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused3:22;		// bits 10-31
+		u32 WrbkRewind:1;	// bit 9
+		u32 WrbkResend:1;	// bit 8
+		u32 unused2:2;		// bits 6-7
+		u32 DescrRewind:1;	// bit 5
+		u32 DescrResend:1;	// bit 4
+		u32 unused1:2;		// bits 2-3
+		u32 PyldRewind:1;	// bit 1
+		u32 PyldResend:1;	// bit 0
+#else
+		u32 PyldResend:1;	// bit 0
+		u32 PyldRewind:1;	// bit 1
+		u32 unused1:2;		// bits 2-3
+		u32 DescrResend:1;	// bit 4
+		u32 DescrRewind:1;	// bit 5
+		u32 unused2:2;		// bits 6-7
+		u32 WrbkResend:1;	// bit 8
+		u32 WrbkRewind:1;	// bit 9
+		u32 unused3:22;		// bits 10-31
+#endif
+	} bits;
+} TXDMA_ERROR_t, *PTXDMA_ERROR_t;
+
+/*
+ * Tx DMA Module of JAGCore Address Mapping
+ * Located at address 0x1000
+ */
+typedef struct _TXDMA_t {		// Location:
+	TXDMA_CSR_t csr;		//  0x1000
+	u32 pr_base_hi;			//  0x1004
+	u32 pr_base_lo;			//  0x1008
+	TXDMA_PR_NUM_DES_t pr_num_des;	//  0x100C
+	DMA10W_t txq_wr_addr;		//  0x1010
+	DMA10W_t txq_wr_addr_ext;	//  0x1014
+	DMA10W_t txq_rd_addr;		//  0x1018
+	u32 dma_wb_base_hi;		//  0x101C
+	u32 dma_wb_base_lo;		//  0x1020
+	DMA10W_t service_request;	//  0x1024
+	DMA10W_t service_complete;	//  0x1028
+	DMA4W_t cache_rd_index;		//  0x102C
+	DMA4W_t cache_wr_index;		//  0x1030
+	TXDMA_ERROR_t TxDmaError;	//  0x1034
+	u32 DescAbortCount;		//  0x1038
+	u32 PayloadAbortCnt;		//  0x103c
+	u32 WriteBackAbortCnt;		//  0x1040
+	u32 DescTimeoutCnt;		//  0x1044
+	u32 PayloadTimeoutCnt;		//  0x1048
+	u32 WriteBackTimeoutCnt;	//  0x104c
+	u32 DescErrorCount;		//  0x1050
+	u32 PayloadErrorCnt;		//  0x1054
+	u32 WriteBackErrorCnt;		//  0x1058
+	u32 DroppedTLPCount;		//  0x105c
+	DMA10W_t NewServiceComplete;	//  0x1060
+	u32 EthernetPacketCount;	//  0x1064
+} TXDMA_t, *PTXDMA_t;
+
+/* END OF TXDMA REGISTER ADDRESS MAP */
+
+
+/* START OF RXDMA REGISTER ADDRESS MAP */
+
+/*
+ * structure for control status reg in rxdma address map
+ * Located at address 0x2000
+ */
+typedef union _RXDMA_CSR_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused2:14;		// bits 18-31
+		u32 halt_status:1;	// bit 17
+		u32 pkt_done_flush:1;	// bit 16
+		u32 pkt_drop_disable:1;	// bit 15
+		u32 unused1:1;		// bit 14
+		u32 fbr1_enable:1;	// bit 13
+		u32 fbr1_size:2;	// bits 11-12
+		u32 fbr0_enable:1;	// bit 10
+		u32 fbr0_size:2;	// bits 8-9
+		u32 dma_big_endian:1;	// bit 7
+		u32 pkt_big_endian:1;	// bit 6
+		u32 psr_big_endian:1;	// bit 5
+		u32 fbr_big_endian:1;	// bit 4
+		u32 tc:3;		// bits 1-3
+		u32 halt:1;		// bit 0
+#else
+		u32 halt:1;		// bit 0
+		u32 tc:3;		// bits 1-3
+		u32 fbr_big_endian:1;	// bit 4
+		u32 psr_big_endian:1;	// bit 5
+		u32 pkt_big_endian:1;	// bit 6
+		u32 dma_big_endian:1;	// bit 7
+		u32 fbr0_size:2;	// bits 8-9
+		u32 fbr0_enable:1;	// bit 10
+		u32 fbr1_size:2;	// bits 11-12
+		u32 fbr1_enable:1;	// bit 13
+		u32 unused1:1;		// bit 14
+		u32 pkt_drop_disable:1;	// bit 15
+		u32 pkt_done_flush:1;	// bit 16
+		u32 halt_status:1;	// bit 17
+		u32 unused2:14;		// bits 18-31
+#endif
+	} bits;
+} RXDMA_CSR_t, *PRXDMA_CSR_t;
+
+/*
+ * structure for dma writeback lo reg in rxdma address map
+ * located at address 0x2004
+ * Defined earlier (u32)
+ */
+
+/*
+ * structure for dma writeback hi reg in rxdma address map
+ * located at address 0x2008
+ * Defined earlier (u32)
+ */
+
+/*
+ * structure for number of packets done reg in rxdma address map
+ * located at address 0x200C
+ */
+typedef union _RXDMA_NUM_PKT_DONE_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:24;	// bits 8-31
+		u32 num_done:8;	// bits 0-7
+#else
+		u32 num_done:8;	// bits 0-7
+		u32 unused:24;	// bits 8-31
+#endif
+	} bits;
+} RXDMA_NUM_PKT_DONE_t, *PRXDMA_NUM_PKT_DONE_t;
+
+/*
+ * structure for max packet time reg in rxdma address map
+ * located at address 0x2010
+ */
+typedef union _RXDMA_MAX_PKT_TIME_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:14;		// bits 18-31
+		u32 time_done:18;	// bits 0-17
+#else
+		u32 time_done:18;	// bits 0-17
+		u32 unused:14;		// bits 18-31
+#endif
+	} bits;
+} RXDMA_MAX_PKT_TIME_t, *PRXDMA_MAX_PKT_TIME_t;
+
+/*
+ * structure for rx queue read address reg in rxdma address map
+ * located at address 0x2014
+ * Defined earlier (DMA10W_t)
+ */
+
+/*
+ * structure for rx queue read address external reg in rxdma address map
+ * located at address 0x2018
+ * Defined earlier (DMA10W_t)
+ */
+
+/*
+ * structure for rx queue write address reg in rxdma address map
+ * located at address 0x201C
+ * Defined earlier (DMA10W_t)
+ */
+
+/*
+ * structure for packet status ring base address lo reg in rxdma address map
+ * located at address 0x2020
+ * Defined earlier (u32)
+ */
+
+/*
+ * structure for packet status ring base address hi reg in rxdma address map
+ * located at address 0x2024
+ * Defined earlier (u32)
+ */
+
+/*
+ * structure for packet status ring number of descriptors reg in rxdma address
+ * map.  Located at address 0x2028
+ */
+typedef union _RXDMA_PSR_NUM_DES_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:20;		// bits 12-31
+		u32 psr_ndes:12;	// bit 0-11
+#else
+		u32 psr_ndes:12;	// bit 0-11
+		u32 unused:20;		// bits 12-31
+#endif
+	} bits;
+} RXDMA_PSR_NUM_DES_t, *PRXDMA_PSR_NUM_DES_t;
+
+/*
+ * structure for packet status ring available offset reg in rxdma address map
+ * located at address 0x202C
+ */
+typedef union _RXDMA_PSR_AVAIL_OFFSET_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:19;		// bits 13-31
+		u32 psr_avail_wrap:1;	// bit 12
+		u32 psr_avail:12;	// bit 0-11
+#else
+		u32 psr_avail:12;	// bit 0-11
+		u32 psr_avail_wrap:1;	// bit 12
+		u32 unused:19;		// bits 13-31
+#endif
+	} bits;
+} RXDMA_PSR_AVAIL_OFFSET_t, *PRXDMA_PSR_AVAIL_OFFSET_t;
+
+/*
+ * structure for packet status ring full offset reg in rxdma address map
+ * located at address 0x2030
+ */
+typedef union _RXDMA_PSR_FULL_OFFSET_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:19;		// bits 13-31
+		u32 psr_full_wrap:1;	// bit 12
+		u32 psr_full:12;	// bit 0-11
+#else
+		u32 psr_full:12;	// bit 0-11
+		u32 psr_full_wrap:1;	// bit 12
+		u32 unused:19;		// bits 13-31
+#endif
+	} bits;
+} RXDMA_PSR_FULL_OFFSET_t, *PRXDMA_PSR_FULL_OFFSET_t;
+
+/*
+ * structure for packet status ring access index reg in rxdma address map
+ * located at address 0x2034
+ */
+typedef union _RXDMA_PSR_ACCESS_INDEX_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:27;	// bits 5-31
+		u32 psr_ai:5;	// bits 0-4
+#else
+		u32 psr_ai:5;	// bits 0-4
+		u32 unused:27;	// bits 5-31
+#endif
+	} bits;
+} RXDMA_PSR_ACCESS_INDEX_t, *PRXDMA_PSR_ACCESS_INDEX_t;
+
+/*
+ * structure for packet status ring minimum descriptors reg in rxdma address
+ * map.  Located at address 0x2038
+ */
+typedef union _RXDMA_PSR_MIN_DES_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:20;	// bits 12-31
+		u32 psr_min:12;	// bits 0-11
+#else
+		u32 psr_min:12;	// bits 0-11
+		u32 unused:20;	// bits 12-31
+#endif
+	} bits;
+} RXDMA_PSR_MIN_DES_t, *PRXDMA_PSR_MIN_DES_t;
+
+/*
+ * structure for free buffer ring base lo address reg in rxdma address map
+ * located at address 0x203C
+ * Defined earlier (u32)
+ */
+
+/*
+ * structure for free buffer ring base hi address reg in rxdma address map
+ * located at address 0x2040
+ * Defined earlier (u32)
+ */
+
+/*
+ * structure for free buffer ring number of descriptors reg in rxdma address
+ * map.  Located at address 0x2044
+ */
+typedef union _RXDMA_FBR_NUM_DES_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:22;		// bits 10-31
+		u32 fbr_ndesc:10;	// bits 0-9
+#else
+		u32 fbr_ndesc:10;	// bits 0-9
+		u32 unused:22;		// bits 10-31
+#endif
+	} bits;
+} RXDMA_FBR_NUM_DES_t, *PRXDMA_FBR_NUM_DES_t;
+
+/*
+ * structure for free buffer ring 0 available offset reg in rxdma address map
+ * located at address 0x2048
+ * Defined earlier (DMA10W_t)
+ */
+
+/*
+ * structure for free buffer ring 0 full offset reg in rxdma address map
+ * located at address 0x204C
+ * Defined earlier (DMA10W_t)
+ */
+
+/*
+ * structure for free buffer cache 0 full offset reg in rxdma address map
+ * located at address 0x2050
+ */
+typedef union _RXDMA_FBC_RD_INDEX_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:27;	// bits 5-31
+		u32 fbc_rdi:5;	// bit 0-4
+#else
+		u32 fbc_rdi:5;	// bit 0-4
+		u32 unused:27;	// bits 5-31
+#endif
+	} bits;
+} RXDMA_FBC_RD_INDEX_t, *PRXDMA_FBC_RD_INDEX_t;
+
+/*
+ * structure for free buffer ring 0 minimum descriptor reg in rxdma address map
+ * located at address 0x2054
+ */
+typedef union _RXDMA_FBR_MIN_DES_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:22;	// bits 10-31
+		u32 fbr_min:10;	// bits 0-9
+#else
+		u32 fbr_min:10;	// bits 0-9
+		u32 unused:22;	// bits 10-31
+#endif
+	} bits;
+} RXDMA_FBR_MIN_DES_t, *PRXDMA_FBR_MIN_DES_t;
+
+/*
+ * structure for free buffer ring 1 base address lo reg in rxdma address map
+ * located at address 0x2058 - 0x205C
+ * Defined earlier (RXDMA_FBR_BASE_LO_t and RXDMA_FBR_BASE_HI_t)
+ */
+
+/*
+ * structure for free buffer ring 1 number of descriptors reg in rxdma address
+ * map.  Located at address 0x2060
+ * Defined earlier (RXDMA_FBR_NUM_DES_t)
+ */
+
+/*
+ * structure for free buffer ring 1 available offset reg in rxdma address map
+ * located at address 0x2064
+ * Defined Earlier (RXDMA_FBR_AVAIL_OFFSET_t)
+ */
+
+/*
+ * structure for free buffer ring 1 full offset reg in rxdma address map
+ * located at address 0x2068
+ * Defined Earlier (RXDMA_FBR_FULL_OFFSET_t)
+ */
+
+/*
+ * structure for free buffer cache 1 read index reg in rxdma address map
+ * located at address 0x206C
+ * Defined Earlier (RXDMA_FBC_RD_INDEX_t)
+ */
+
+/*
+ * structure for free buffer ring 1 minimum descriptor reg in rxdma address map
+ * located at address 0x2070
+ * Defined Earlier (RXDMA_FBR_MIN_DES_t)
+ */
+
+/*
+ * Rx DMA Module of JAGCore Address Mapping
+ * Located at address 0x2000
+ */
+typedef struct _RXDMA_t {				// Location:
+	RXDMA_CSR_t csr;				//  0x2000
+	u32 dma_wb_base_lo;				//  0x2004
+	u32 dma_wb_base_hi;				//  0x2008
+	RXDMA_NUM_PKT_DONE_t num_pkt_done;		//  0x200C
+	RXDMA_MAX_PKT_TIME_t max_pkt_time;		//  0x2010
+	DMA10W_t rxq_rd_addr;				//  0x2014
+	DMA10W_t rxq_rd_addr_ext;			//  0x2018
+	DMA10W_t rxq_wr_addr;				//  0x201C
+	u32 psr_base_lo;				//  0x2020
+	u32 psr_base_hi;				//  0x2024
+	RXDMA_PSR_NUM_DES_t psr_num_des;		//  0x2028
+	RXDMA_PSR_AVAIL_OFFSET_t psr_avail_offset;	//  0x202C
+	RXDMA_PSR_FULL_OFFSET_t psr_full_offset;	//  0x2030
+	RXDMA_PSR_ACCESS_INDEX_t psr_access_index;	//  0x2034
+	RXDMA_PSR_MIN_DES_t psr_min_des;		//  0x2038
+	u32 fbr0_base_lo;				//  0x203C
+	u32 fbr0_base_hi;				//  0x2040
+	RXDMA_FBR_NUM_DES_t fbr0_num_des;		//  0x2044
+	DMA10W_t fbr0_avail_offset;			//  0x2048
+	DMA10W_t fbr0_full_offset;			//  0x204C
+	RXDMA_FBC_RD_INDEX_t fbr0_rd_index;		//  0x2050
+	RXDMA_FBR_MIN_DES_t fbr0_min_des;		//  0x2054
+	u32 fbr1_base_lo;				//  0x2058
+	u32 fbr1_base_hi;				//  0x205C
+	RXDMA_FBR_NUM_DES_t fbr1_num_des;		//  0x2060
+	DMA10W_t fbr1_avail_offset;			//  0x2064
+	DMA10W_t fbr1_full_offset;			//  0x2068
+	RXDMA_FBC_RD_INDEX_t fbr1_rd_index;		//  0x206C
+	RXDMA_FBR_MIN_DES_t fbr1_min_des;		//  0x2070
+} RXDMA_t, *PRXDMA_t;
+
+/* END OF RXDMA REGISTER ADDRESS MAP */
+
+
+/* START OF TXMAC REGISTER ADDRESS MAP */
+
+/*
+ * structure for control reg in txmac address map
+ * located at address 0x3000
+ */
+typedef union _TXMAC_CTL_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:24;		// bits 8-31
+		u32 cklseg_diable:1;	// bit 7
+		u32 ckbcnt_disable:1;	// bit 6
+		u32 cksegnum:1;		// bit 5
+		u32 async_disable:1;	// bit 4
+		u32 fc_disable:1;	// bit 3
+		u32 mcif_disable:1;	// bit 2
+		u32 mif_disable:1;	// bit 1
+		u32 txmac_en:1;		// bit 0
+#else
+		u32 txmac_en:1;		// bit 0
+		u32 mif_disable:1;	// bit 1 mac interface
+		u32 mcif_disable:1;	// bit 2 mem. contr. interface
+		u32 fc_disable:1;	// bit 3
+		u32 async_disable:1;	// bit 4
+		u32 cksegnum:1;		// bit 5
+		u32 ckbcnt_disable:1;	// bit 6
+		u32 cklseg_diable:1;	// bit 7
+		u32 unused:24;		// bits 8-31
+#endif
+	} bits;
+} TXMAC_CTL_t, *PTXMAC_CTL_t;
+
+/*
+ * structure for shadow pointer reg in txmac address map
+ * located at address 0x3004
+ */
+typedef union _TXMAC_SHADOW_PTR_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved2:5;	// bits 27-31
+		u32 txq_rd_ptr:11;	// bits 16-26
+		u32 reserved:5;		// bits 11-15
+		u32 txq_wr_ptr:11;	// bits 0-10
+#else
+		u32 txq_wr_ptr:11;	// bits 0-10
+		u32 reserved:5;		// bits 11-15
+		u32 txq_rd_ptr:11;	// bits 16-26
+		u32 reserved2:5;	// bits 27-31
+#endif
+	} bits;
+} TXMAC_SHADOW_PTR_t, *PTXMAC_SHADOW_PTR_t;
+
+/*
+ * structure for error count reg in txmac address map
+ * located at address 0x3008
+ */
+typedef union _TXMAC_ERR_CNT_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:20;		// bits 12-31
+		u32 reserved:4;		// bits 8-11
+		u32 txq_underrun:4;	// bits 4-7
+		u32 fifo_underrun:4;	// bits 0-3
+#else
+		u32 fifo_underrun:4;	// bits 0-3
+		u32 txq_underrun:4;	// bits 4-7
+		u32 reserved:4;		// bits 8-11
+		u32 unused:20;		// bits 12-31
+#endif
+	} bits;
+} TXMAC_ERR_CNT_t, *PTXMAC_ERR_CNT_t;
+
+/*
+ * structure for max fill reg in txmac address map
+ * located at address 0x300C
+ */
+typedef union _TXMAC_MAX_FILL_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:20;		// bits 12-31
+		u32 max_fill:12;	// bits 0-11
+#else
+		u32 max_fill:12;	// bits 0-11
+		u32 unused:20;		// bits 12-31
+#endif
+	} bits;
+} TXMAC_MAX_FILL_t, *PTXMAC_MAX_FILL_t;
+
+/*
+ * structure for cf parameter reg in txmac address map
+ * located at address 0x3010
+ */
+typedef union _TXMAC_CF_PARAM_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 cfep:16;	// bits 16-31
+		u32 cfpt:16;	// bits 0-15
+#else
+		u32 cfpt:16;	// bits 0-15
+		u32 cfep:16;	// bits 16-31
+#endif
+	} bits;
+} TXMAC_CF_PARAM_t, *PTXMAC_CF_PARAM_t;
+
+/*
+ * structure for tx test reg in txmac address map
+ * located at address 0x3014
+ */
+typedef union _TXMAC_TXTEST_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused2:15;		// bits 17-31
+		u32 reserved1:1;	// bit 16
+		u32 txtest_en:1;	// bit 15
+		u32 unused1:4;		// bits 11-14
+		u32 txqtest_ptr:11;	// bits 0-11
+#else
+		u32 txqtest_ptr:11;	// bits 0-10
+		u32 unused1:4;		// bits 11-14
+		u32 txtest_en:1;	// bit 15
+		u32 reserved1:1;	// bit 16
+		u32 unused2:15;		// bits 17-31
+#endif
+	} bits;
+} TXMAC_TXTEST_t, *PTXMAC_TXTEST_t;
+
+/*
+ * structure for error reg in txmac address map
+ * located at address 0x3018
+ */
+typedef union _TXMAC_ERR_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused2:23;		// bits 9-31
+		u32 fifo_underrun:1;	// bit 8
+		u32 unused1:2;		// bits 6-7
+		u32 ctrl2_err:1;	// bit 5
+		u32 txq_underrun:1;	// bit 4
+		u32 bcnt_err:1;		// bit 3
+		u32 lseg_err:1;		// bit 2
+		u32 segnum_err:1;	// bit 1
+		u32 seg0_err:1;		// bit 0
+#else
+		u32 seg0_err:1;		// bit 0
+		u32 segnum_err:1;	// bit 1
+		u32 lseg_err:1;		// bit 2
+		u32 bcnt_err:1;		// bit 3
+		u32 txq_underrun:1;	// bit 4
+		u32 ctrl2_err:1;	// bit 5
+		u32 unused1:2;		// bits 6-7
+		u32 fifo_underrun:1;	// bit 8
+		u32 unused2:23;		// bits 9-31
+#endif
+	} bits;
+} TXMAC_ERR_t, *PTXMAC_ERR_t;
+
+/*
+ * structure for error interrupt reg in txmac address map
+ * located at address 0x301C
+ */
+typedef union _TXMAC_ERR_INT_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused2:23;		// bits 9-31
+		u32 fifo_underrun:1;	// bit 8
+		u32 unused1:2;		// bits 6-7
+		u32 ctrl2_err:1;	// bit 5
+		u32 txq_underrun:1;	// bit 4
+		u32 bcnt_err:1;		// bit 3
+		u32 lseg_err:1;		// bit 2
+		u32 segnum_err:1;	// bit 1
+		u32 seg0_err:1;		// bit 0
+#else
+		u32 seg0_err:1;		// bit 0
+		u32 segnum_err:1;	// bit 1
+		u32 lseg_err:1;		// bit 2
+		u32 bcnt_err:1;		// bit 3
+		u32 txq_underrun:1;	// bit 4
+		u32 ctrl2_err:1;	// bit 5
+		u32 unused1:2;		// bits 6-7
+		u32 fifo_underrun:1;	// bit 8
+		u32 unused2:23;		// bits 9-31
+#endif
+	} bits;
+} TXMAC_ERR_INT_t, *PTXMAC_ERR_INT_t;
+
+/*
+ * structure for error interrupt reg in txmac address map
+ * located at address 0x3020
+ */
+typedef union _TXMAC_CP_CTRL_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:30;		// bits 2-31
+		u32 bp_req:1;		// bit 1
+		u32 bp_xonxoff:1;	// bit 0
+#else
+		u32 bp_xonxoff:1;	// bit 0
+		u32 bp_req:1;		// bit 1
+		u32 unused:30;		// bits 2-31
+#endif
+	} bits;
+} TXMAC_BP_CTRL_t, *PTXMAC_BP_CTRL_t;
+
+/*
+ * Tx MAC Module of JAGCore Address Mapping
+ */
+typedef struct _TXMAC_t {		// Location:
+	TXMAC_CTL_t ctl;		//  0x3000
+	TXMAC_SHADOW_PTR_t shadow_ptr;	//  0x3004
+	TXMAC_ERR_CNT_t err_cnt;	//  0x3008
+	TXMAC_MAX_FILL_t max_fill;	//  0x300C
+	TXMAC_CF_PARAM_t cf_param;	//  0x3010
+	TXMAC_TXTEST_t tx_test;		//  0x3014
+	TXMAC_ERR_t err;		//  0x3018
+	TXMAC_ERR_INT_t err_int;	//  0x301C
+	TXMAC_BP_CTRL_t bp_ctrl;	//  0x3020
+} TXMAC_t, *PTXMAC_t;
+
+/* END OF TXMAC REGISTER ADDRESS MAP */
+
+/* START OF RXMAC REGISTER ADDRESS MAP */
+
+/*
+ * structure for rxmac control reg in rxmac address map
+ * located at address 0x4000
+ */
+typedef union _RXMAC_CTRL_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved:25;		// bits 7-31
+		u32 rxmac_int_disable:1;	// bit 6
+		u32 async_disable:1;		// bit 5
+		u32 mif_disable:1;		// bit 4
+		u32 wol_disable:1;		// bit 3
+		u32 pkt_filter_disable:1;	// bit 2
+		u32 mcif_disable:1;		// bit 1
+		u32 rxmac_en:1;			// bit 0
+#else
+		u32 rxmac_en:1;			// bit 0
+		u32 mcif_disable:1;		// bit 1
+		u32 pkt_filter_disable:1;	// bit 2
+		u32 wol_disable:1;		// bit 3
+		u32 mif_disable:1;		// bit 4
+		u32 async_disable:1;		// bit 5
+		u32 rxmac_int_disable:1;	// bit 6
+		u32 reserved:25;		// bits 7-31
+#endif
+	} bits;
+} RXMAC_CTRL_t, *PRXMAC_CTRL_t;
+
+/*
+ * structure for Wake On Lan Control and CRC 0 reg in rxmac address map
+ * located at address 0x4004
+ */
+typedef union _RXMAC_WOL_CTL_CRC0_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 crc0:16;		// bits 16-31
+		u32 reserve:4;		// bits 12-15
+		u32 ignore_pp:1;	// bit 11
+		u32 ignore_mp:1;	// bit 10
+		u32 clr_intr:1;		// bit 9
+		u32 ignore_link_chg:1;	// bit 8
+		u32 ignore_uni:1;	// bit 7
+		u32 ignore_multi:1;	// bit 6
+		u32 ignore_broad:1;	// bit 5
+		u32 valid_crc4:1;	// bit 4
+		u32 valid_crc3:1;	// bit 3
+		u32 valid_crc2:1;	// bit 2
+		u32 valid_crc1:1;	// bit 1
+		u32 valid_crc0:1;	// bit 0
+#else
+		u32 valid_crc0:1;	// bit 0
+		u32 valid_crc1:1;	// bit 1
+		u32 valid_crc2:1;	// bit 2
+		u32 valid_crc3:1;	// bit 3
+		u32 valid_crc4:1;	// bit 4
+		u32 ignore_broad:1;	// bit 5
+		u32 ignore_multi:1;	// bit 6
+		u32 ignore_uni:1;	// bit 7
+		u32 ignore_link_chg:1;	// bit 8
+		u32 clr_intr:1;		// bit 9
+		u32 ignore_mp:1;	// bit 10
+		u32 ignore_pp:1;	// bit 11
+		u32 reserve:4;		// bits 12-15
+		u32 crc0:16;		// bits 16-31
+#endif
+	} bits;
+} RXMAC_WOL_CTL_CRC0_t, *PRXMAC_WOL_CTL_CRC0_t;
+
+/*
+ * structure for CRC 1 and CRC 2 reg in rxmac address map
+ * located at address 0x4008
+ */
+typedef union _RXMAC_WOL_CRC12_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 crc2:16;	// bits 16-31
+		u32 crc1:16;	// bits 0-15
+#else
+		u32 crc1:16;	// bits 0-15
+		u32 crc2:16;	// bits 16-31
+#endif
+	} bits;
+} RXMAC_WOL_CRC12_t, *PRXMAC_WOL_CRC12_t;
+
+/*
+ * structure for CRC 3 and CRC 4 reg in rxmac address map
+ * located at address 0x400C
+ */
+typedef union _RXMAC_WOL_CRC34_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 crc4:16;	// bits 16-31
+		u32 crc3:16;	// bits 0-15
+#else
+		u32 crc3:16;	// bits 0-15
+		u32 crc4:16;	// bits 16-31
+#endif
+	} bits;
+} RXMAC_WOL_CRC34_t, *PRXMAC_WOL_CRC34_t;
+
+/*
+ * structure for Wake On Lan Source Address Lo reg in rxmac address map
+ * located at address 0x4010
+ */
+typedef union _RXMAC_WOL_SA_LO_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 sa3:8;	// bits 24-31
+		u32 sa4:8;	// bits 16-23
+		u32 sa5:8;	// bits 8-15
+		u32 sa6:8;	// bits 0-7
+#else
+		u32 sa6:8;	// bits 0-7
+		u32 sa5:8;	// bits 8-15
+		u32 sa4:8;	// bits 16-23
+		u32 sa3:8;	// bits 24-31
+#endif
+	} bits;
+} RXMAC_WOL_SA_LO_t, *PRXMAC_WOL_SA_LO_t;
+
+/*
+ * structure for Wake On Lan Source Address Hi reg in rxmac address map
+ * located at address 0x4014
+ */
+typedef union _RXMAC_WOL_SA_HI_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved:16;	// bits 16-31
+		u32 sa1:8;		// bits 8-15
+		u32 sa2:8;		// bits 0-7
+#else
+		u32 sa2:8;		// bits 0-7
+		u32 sa1:8;		// bits 8-15
+		u32 reserved:16;	// bits 16-31
+#endif
+	} bits;
+} RXMAC_WOL_SA_HI_t, *PRXMAC_WOL_SA_HI_t;
+
+/*
+ * structure for Wake On Lan mask reg in rxmac address map
+ * located at address 0x4018 - 0x4064
+ * Defined earlier (u32)
+ */
+
+/*
+ * structure for Unicast Paket Filter Address 1 reg in rxmac address map
+ * located at address 0x4068
+ */
+typedef union _RXMAC_UNI_PF_ADDR1_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 addr1_3:8;	// bits 24-31
+		u32 addr1_4:8;	// bits 16-23
+		u32 addr1_5:8;	// bits 8-15
+		u32 addr1_6:8;	// bits 0-7
+#else
+		u32 addr1_6:8;	// bits 0-7
+		u32 addr1_5:8;	// bits 8-15
+		u32 addr1_4:8;	// bits 16-23
+		u32 addr1_3:8;	// bits 24-31
+#endif
+	} bits;
+} RXMAC_UNI_PF_ADDR1_t, *PRXMAC_UNI_PF_ADDR1_t;
+
+/*
+ * structure for Unicast Paket Filter Address 2 reg in rxmac address map
+ * located at address 0x406C
+ */
+typedef union _RXMAC_UNI_PF_ADDR2_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 addr2_3:8;	// bits 24-31
+		u32 addr2_4:8;	// bits 16-23
+		u32 addr2_5:8;	// bits 8-15
+		u32 addr2_6:8;	// bits 0-7
+#else
+		u32 addr2_6:8;	// bits 0-7
+		u32 addr2_5:8;	// bits 8-15
+		u32 addr2_4:8;	// bits 16-23
+		u32 addr2_3:8;	// bits 24-31
+#endif
+	} bits;
+} RXMAC_UNI_PF_ADDR2_t, *PRXMAC_UNI_PF_ADDR2_t;
+
+/*
+ * structure for Unicast Paket Filter Address 1 & 2 reg in rxmac address map
+ * located at address 0x4070
+ */
+typedef union _RXMAC_UNI_PF_ADDR3_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 addr2_1:8;	// bits 24-31
+		u32 addr2_2:8;	// bits 16-23
+		u32 addr1_1:8;	// bits 8-15
+		u32 addr1_2:8;	// bits 0-7
+#else
+		u32 addr1_2:8;	// bits 0-7
+		u32 addr1_1:8;	// bits 8-15
+		u32 addr2_2:8;	// bits 16-23
+		u32 addr2_1:8;	// bits 24-31
+#endif
+	} bits;
+} RXMAC_UNI_PF_ADDR3_t, *PRXMAC_UNI_PF_ADDR3_t;
+
+/*
+ * structure for Multicast Hash reg in rxmac address map
+ * located at address 0x4074 - 0x4080
+ * Defined earlier (u32)
+ */
+
+/*
+ * structure for Packet Filter Control reg in rxmac address map
+ * located at address 0x4084
+ */
+typedef union _RXMAC_PF_CTRL_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused2:9;		// bits 23-31
+		u32 min_pkt_size:7;	// bits 16-22
+		u32 unused1:12;		// bits 4-15
+		u32 filter_frag_en:1;	// bit 3
+		u32 filter_uni_en:1;	// bit 2
+		u32 filter_multi_en:1;	// bit 1
+		u32 filter_broad_en:1;	// bit 0
+#else
+		u32 filter_broad_en:1;	// bit 0
+		u32 filter_multi_en:1;	// bit 1
+		u32 filter_uni_en:1;	// bit 2
+		u32 filter_frag_en:1;	// bit 3
+		u32 unused1:12;		// bits 4-15
+		u32 min_pkt_size:7;	// bits 16-22
+		u32 unused2:9;		// bits 23-31
+#endif
+	} bits;
+} RXMAC_PF_CTRL_t, *PRXMAC_PF_CTRL_t;
+
+/*
+ * structure for Memory Controller Interface Control Max Segment reg in rxmac
+ * address map.  Located at address 0x4088
+ */
+typedef union _RXMAC_MCIF_CTRL_MAX_SEG_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved:22;	// bits 10-31
+		u32 max_size:8;	// bits 2-9
+		u32 fc_en:1;	// bit 1
+		u32 seg_en:1;	// bit 0
+#else
+		u32 seg_en:1;	// bit 0
+		u32 fc_en:1;	// bit 1
+		u32 max_size:8;	// bits 2-9
+		u32 reserved:22;	// bits 10-31
+#endif
+	} bits;
+} RXMAC_MCIF_CTRL_MAX_SEG_t, *PRXMAC_MCIF_CTRL_MAX_SEG_t;
+
+/*
+ * structure for Memory Controller Interface Water Mark reg in rxmac address
+ * map.  Located at address 0x408C
+ */
+typedef union _RXMAC_MCIF_WATER_MARK_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved2:6;	// bits 26-31
+		u32 mark_hi:10;	// bits 16-25
+		u32 reserved1:6;	// bits 10-15
+		u32 mark_lo:10;	// bits 0-9
+#else
+		u32 mark_lo:10;	// bits 0-9
+		u32 reserved1:6;	// bits 10-15
+		u32 mark_hi:10;	// bits 16-25
+		u32 reserved2:6;	// bits 26-31
+#endif
+	} bits;
+} RXMAC_MCIF_WATER_MARK_t, *PRXMAC_MCIF_WATER_MARK_t;
+
+/*
+ * structure for Rx Queue Dialog reg in rxmac address map.
+ * located at address 0x4090
+ */
+typedef union _RXMAC_RXQ_DIAG_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved2:6;	// bits 26-31
+		u32 rd_ptr:10;	// bits 16-25
+		u32 reserved1:6;	// bits 10-15
+		u32 wr_ptr:10;	// bits 0-9
+#else
+		u32 wr_ptr:10;	// bits 0-9
+		u32 reserved1:6;	// bits 10-15
+		u32 rd_ptr:10;	// bits 16-25
+		u32 reserved2:6;	// bits 26-31
+#endif
+	} bits;
+} RXMAC_RXQ_DIAG_t, *PRXMAC_RXQ_DIAG_t;
+
+/*
+ * structure for space availiable reg in rxmac address map.
+ * located at address 0x4094
+ */
+typedef union _RXMAC_SPACE_AVAIL_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved2:15;		// bits 17-31
+		u32 space_avail_en:1;	// bit 16
+		u32 reserved1:6;		// bits 10-15
+		u32 space_avail:10;	// bits 0-9
+#else
+		u32 space_avail:10;	// bits 0-9
+		u32 reserved1:6;		// bits 10-15
+		u32 space_avail_en:1;	// bit 16
+		u32 reserved2:15;		// bits 17-31
+#endif
+	} bits;
+} RXMAC_SPACE_AVAIL_t, *PRXMAC_SPACE_AVAIL_t;
+
+/*
+ * structure for management interface reg in rxmac address map.
+ * located at address 0x4098
+ */
+typedef union _RXMAC_MIF_CTL_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserve:14;		// bits 18-31
+		u32 drop_pkt_en:1;		// bit 17
+		u32 drop_pkt_mask:17;	// bits 0-16
+#else
+		u32 drop_pkt_mask:17;	// bits 0-16
+		u32 drop_pkt_en:1;		// bit 17
+		u32 reserve:14;		// bits 18-31
+#endif
+	} bits;
+} RXMAC_MIF_CTL_t, *PRXMAC_MIF_CTL_t;
+
+/*
+ * structure for Error reg in rxmac address map.
+ * located at address 0x409C
+ */
+typedef union _RXMAC_ERROR_REG_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserve:28;	// bits 4-31
+		u32 mif:1;		// bit 3
+		u32 async:1;	// bit 2
+		u32 pkt_filter:1;	// bit 1
+		u32 mcif:1;	// bit 0
+#else
+		u32 mcif:1;	// bit 0
+		u32 pkt_filter:1;	// bit 1
+		u32 async:1;	// bit 2
+		u32 mif:1;		// bit 3
+		u32 reserve:28;	// bits 4-31
+#endif
+	} bits;
+} RXMAC_ERROR_REG_t, *PRXMAC_ERROR_REG_t;
+
+/*
+ * Rx MAC Module of JAGCore Address Mapping
+ */
+typedef struct _RXMAC_t {				// Location:
+	RXMAC_CTRL_t ctrl;				//  0x4000
+	RXMAC_WOL_CTL_CRC0_t crc0;			//  0x4004
+	RXMAC_WOL_CRC12_t crc12;			//  0x4008
+	RXMAC_WOL_CRC34_t crc34;			//  0x400C
+	RXMAC_WOL_SA_LO_t sa_lo;			//  0x4010
+	RXMAC_WOL_SA_HI_t sa_hi;			//  0x4014
+	u32 mask0_word0;				//  0x4018
+	u32 mask0_word1;				//  0x401C
+	u32 mask0_word2;				//  0x4020
+	u32 mask0_word3;				//  0x4024
+	u32 mask1_word0;				//  0x4028
+	u32 mask1_word1;				//  0x402C
+	u32 mask1_word2;				//  0x4030
+	u32 mask1_word3;				//  0x4034
+	u32 mask2_word0;				//  0x4038
+	u32 mask2_word1;				//  0x403C
+	u32 mask2_word2;				//  0x4040
+	u32 mask2_word3;				//  0x4044
+	u32 mask3_word0;				//  0x4048
+	u32 mask3_word1;				//  0x404C
+	u32 mask3_word2;				//  0x4050
+	u32 mask3_word3;				//  0x4054
+	u32 mask4_word0;				//  0x4058
+	u32 mask4_word1;				//  0x405C
+	u32 mask4_word2;				//  0x4060
+	u32 mask4_word3;				//  0x4064
+	RXMAC_UNI_PF_ADDR1_t uni_pf_addr1;		//  0x4068
+	RXMAC_UNI_PF_ADDR2_t uni_pf_addr2;		//  0x406C
+	RXMAC_UNI_PF_ADDR3_t uni_pf_addr3;		//  0x4070
+	u32 multi_hash1;				//  0x4074
+	u32 multi_hash2;				//  0x4078
+	u32 multi_hash3;				//  0x407C
+	u32 multi_hash4;				//  0x4080
+	RXMAC_PF_CTRL_t pf_ctrl;			//  0x4084
+	RXMAC_MCIF_CTRL_MAX_SEG_t mcif_ctrl_max_seg;	//  0x4088
+	RXMAC_MCIF_WATER_MARK_t mcif_water_mark;	//  0x408C
+	RXMAC_RXQ_DIAG_t rxq_diag;			//  0x4090
+	RXMAC_SPACE_AVAIL_t space_avail;		//  0x4094
+
+	RXMAC_MIF_CTL_t mif_ctrl;			//  0x4098
+	RXMAC_ERROR_REG_t err_reg;			//  0x409C
+} RXMAC_t, *PRXMAC_t;
+
+/* END OF TXMAC REGISTER ADDRESS MAP */
+
+
+/* START OF MAC REGISTER ADDRESS MAP */
+
+/*
+ * structure for configuration #1 reg in mac address map.
+ * located at address 0x5000
+ */
+typedef union _MAC_CFG1_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 soft_reset:1;		// bit 31
+		u32 sim_reset:1;		// bit 30
+		u32 reserved3:10;		// bits 20-29
+		u32 reset_rx_mc:1;		// bit 19
+		u32 reset_tx_mc:1;		// bit 18
+		u32 reset_rx_fun:1;	// bit 17
+		u32 reset_tx_fun:1;	// bit 16
+		u32 reserved2:7;		// bits 9-15
+		u32 loop_back:1;		// bit 8
+		u32 reserved1:2;		// bits 6-7
+		u32 rx_flow:1;		// bit 5
+		u32 tx_flow:1;		// bit 4
+		u32 syncd_rx_en:1;		// bit 3
+		u32 rx_enable:1;		// bit 2
+		u32 syncd_tx_en:1;		// bit 1
+		u32 tx_enable:1;		// bit 0
+#else
+		u32 tx_enable:1;		// bit 0
+		u32 syncd_tx_en:1;		// bit 1
+		u32 rx_enable:1;		// bit 2
+		u32 syncd_rx_en:1;		// bit 3
+		u32 tx_flow:1;		// bit 4
+		u32 rx_flow:1;		// bit 5
+		u32 reserved1:2;		// bits 6-7
+		u32 loop_back:1;		// bit 8
+		u32 reserved2:7;		// bits 9-15
+		u32 reset_tx_fun:1;	// bit 16
+		u32 reset_rx_fun:1;	// bit 17
+		u32 reset_tx_mc:1;		// bit 18
+		u32 reset_rx_mc:1;		// bit 19
+		u32 reserved3:10;		// bits 20-29
+		u32 sim_reset:1;		// bit 30
+		u32 soft_reset:1;		// bit 31
+#endif
+	} bits;
+} MAC_CFG1_t, *PMAC_CFG1_t;
+
+/*
+ * structure for configuration #2 reg in mac address map.
+ * located at address 0x5004
+ */
+typedef union _MAC_CFG2_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved3:16;		// bits 16-31
+		u32 preamble_len:4;	// bits 12-15
+		u32 reserved2:2;		// bits 10-11
+		u32 if_mode:2;		// bits 8-9
+		u32 reserved1:2;		// bits 6-7
+		u32 huge_frame:1;		// bit 5
+		u32 len_check:1;		// bit 4
+		u32 undefined:1;		// bit 3
+		u32 pad_crc:1;		// bit 2
+		u32 crc_enable:1;		// bit 1
+		u32 full_duplex:1;		// bit 0
+#else
+		u32 full_duplex:1;		// bit 0
+		u32 crc_enable:1;		// bit 1
+		u32 pad_crc:1;		// bit 2
+		u32 undefined:1;		// bit 3
+		u32 len_check:1;		// bit 4
+		u32 huge_frame:1;		// bit 5
+		u32 reserved1:2;		// bits 6-7
+		u32 if_mode:2;		// bits 8-9
+		u32 reserved2:2;		// bits 10-11
+		u32 preamble_len:4;	// bits 12-15
+		u32 reserved3:16;		// bits 16-31
+#endif
+	} bits;
+} MAC_CFG2_t, *PMAC_CFG2_t;
+
+/*
+ * structure for Interpacket gap reg in mac address map.
+ * located at address 0x5008
+ */
+typedef union _MAC_IPG_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved:1;		// bit 31
+		u32 non_B2B_ipg_1:7;	// bits 24-30
+		u32 undefined2:1;		// bit 23
+		u32 non_B2B_ipg_2:7;	// bits 16-22
+		u32 min_ifg_enforce:8;	// bits 8-15
+		u32 undefined1:1;		// bit 7
+		u32 B2B_ipg:7;		// bits 0-6
+#else
+		u32 B2B_ipg:7;		// bits 0-6
+		u32 undefined1:1;		// bit 7
+		u32 min_ifg_enforce:8;	// bits 8-15
+		u32 non_B2B_ipg_2:7;	// bits 16-22
+		u32 undefined2:1;		// bit 23
+		u32 non_B2B_ipg_1:7;	// bits 24-30
+		u32 reserved:1;		// bit 31
+#endif
+	} bits;
+} MAC_IPG_t, *PMAC_IPG_t;
+
+/*
+ * structure for half duplex reg in mac address map.
+ * located at address 0x500C
+ */
+typedef union _MAC_HFDP_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved2:8;		// bits 24-31
+		u32 alt_beb_trunc:4;	// bits 23-20
+		u32 alt_beb_enable:1;	// bit 19
+		u32 bp_no_backoff:1;	// bit 18
+		u32 no_backoff:1;		// bit 17
+		u32 excess_defer:1;	// bit 16
+		u32 rexmit_max:4;		// bits 12-15
+		u32 reserved1:2;		// bits 10-11
+		u32 coll_window:10;	// bits 0-9
+#else
+		u32 coll_window:10;	// bits 0-9
+		u32 reserved1:2;		// bits 10-11
+		u32 rexmit_max:4;		// bits 12-15
+		u32 excess_defer:1;	// bit 16
+		u32 no_backoff:1;		// bit 17
+		u32 bp_no_backoff:1;	// bit 18
+		u32 alt_beb_enable:1;	// bit 19
+		u32 alt_beb_trunc:4;	// bits 23-20
+		u32 reserved2:8;		// bits 24-31
+#endif
+	} bits;
+} MAC_HFDP_t, *PMAC_HFDP_t;
+
+/*
+ * structure for Maximum Frame Length reg in mac address map.
+ * located at address 0x5010
+ */
+typedef union _MAC_MAX_FM_LEN_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved:16;	// bits 16-31
+		u32 max_len:16;	// bits 0-15
+#else
+		u32 max_len:16;	// bits 0-15
+		u32 reserved:16;	// bits 16-31
+#endif
+	} bits;
+} MAC_MAX_FM_LEN_t, *PMAC_MAX_FM_LEN_t;
+
+/*
+ * structure for Reserve 1 reg in mac address map.
+ * located at address 0x5014 - 0x5018
+ * Defined earlier (u32)
+ */
+
+/*
+ * structure for Test reg in mac address map.
+ * located at address 0x501C
+ */
+typedef union _MAC_TEST_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:29;	// bits 3-31
+		u32 mac_test:3;	// bits 0-2
+#else
+		u32 mac_test:3;	// bits 0-2
+		u32 unused:29;	// bits 3-31
+#endif
+	} bits;
+} MAC_TEST_t, *PMAC_TEST_t;
+
+/*
+ * structure for MII Management Configuration reg in mac address map.
+ * located at address 0x5020
+ */
+typedef union _MII_MGMT_CFG_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reset_mii_mgmt:1;	// bit 31
+		u32 reserved:25;		// bits 6-30
+		u32 scan_auto_incremt:1;	// bit 5
+		u32 preamble_suppress:1;	// bit 4
+		u32 undefined:1;		// bit 3
+		u32 mgmt_clk_reset:3;	// bits 0-2
+#else
+		u32 mgmt_clk_reset:3;	// bits 0-2
+		u32 undefined:1;		// bit 3
+		u32 preamble_suppress:1;	// bit 4
+		u32 scan_auto_incremt:1;	// bit 5
+		u32 reserved:25;		// bits 6-30
+		u32 reset_mii_mgmt:1;	// bit 31
+#endif
+	} bits;
+} MII_MGMT_CFG_t, *PMII_MGMT_CFG_t;
+
+/*
+ * structure for MII Management Command reg in mac address map.
+ * located at address 0x5024
+ */
+typedef union _MII_MGMT_CMD_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved:30;	// bits 2-31
+		u32 scan_cycle:1;	// bit 1
+		u32 read_cycle:1;	// bit 0
+#else
+		u32 read_cycle:1;	// bit 0
+		u32 scan_cycle:1;	// bit 1
+		u32 reserved:30;	// bits 2-31
+#endif
+	} bits;
+} MII_MGMT_CMD_t, *PMII_MGMT_CMD_t;
+
+/*
+ * structure for MII Management Address reg in mac address map.
+ * located at address 0x5028
+ */
+typedef union _MII_MGMT_ADDR_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved2:19;	// bit 13-31
+		u32 phy_addr:5;	// bits 8-12
+		u32 reserved1:3;	// bits 5-7
+		u32 reg_addr:5;	// bits 0-4
+#else
+		u32 reg_addr:5;	// bits 0-4
+		u32 reserved1:3;	// bits 5-7
+		u32 phy_addr:5;	// bits 8-12
+		u32 reserved2:19;	// bit 13-31
+#endif
+	} bits;
+} MII_MGMT_ADDR_t, *PMII_MGMT_ADDR_t;
+
+/*
+ * structure for MII Management Control reg in mac address map.
+ * located at address 0x502C
+ */
+typedef union _MII_MGMT_CTRL_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved:16;	// bits 16-31
+		u32 phy_ctrl:16;	// bits 0-15
+#else
+		u32 phy_ctrl:16;	// bits 0-15
+		u32 reserved:16;	// bits 16-31
+#endif
+	} bits;
+} MII_MGMT_CTRL_t, *PMII_MGMT_CTRL_t;
+
+/*
+ * structure for MII Management Status reg in mac address map.
+ * located at address 0x5030
+ */
+typedef union _MII_MGMT_STAT_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved:16;	// bits 16-31
+		u32 phy_stat:16;	// bits 0-15
+#else
+		u32 phy_stat:16;	// bits 0-15
+		u32 reserved:16;	// bits 16-31
+#endif
+	} bits;
+} MII_MGMT_STAT_t, *PMII_MGMT_STAT_t;
+
+/*
+ * structure for MII Management Indicators reg in mac address map.
+ * located at address 0x5034
+ */
+typedef union _MII_MGMT_INDICATOR_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved:29;	// bits 3-31
+		u32 not_valid:1;	// bit 2
+		u32 scanning:1;	// bit 1
+		u32 busy:1;	// bit 0
+#else
+		u32 busy:1;	// bit 0
+		u32 scanning:1;	// bit 1
+		u32 not_valid:1;	// bit 2
+		u32 reserved:29;	// bits 3-31
+#endif
+	} bits;
+} MII_MGMT_INDICATOR_t, *PMII_MGMT_INDICATOR_t;
+
+/*
+ * structure for Interface Control reg in mac address map.
+ * located at address 0x5038
+ */
+typedef union _MAC_IF_CTRL_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reset_if_module:1;	// bit 31
+		u32 reserved4:3;		// bit 28-30
+		u32 tbi_mode:1;		// bit 27
+		u32 ghd_mode:1;		// bit 26
+		u32 lhd_mode:1;		// bit 25
+		u32 phy_mode:1;		// bit 24
+		u32 reset_per_mii:1;	// bit 23
+		u32 reserved3:6;		// bits 17-22
+		u32 speed:1;		// bit 16
+		u32 reset_pe100x:1;	// bit 15
+		u32 reserved2:4;		// bits 11-14
+		u32 force_quiet:1;		// bit 10
+		u32 no_cipher:1;		// bit 9
+		u32 disable_link_fail:1;	// bit 8
+		u32 reset_gpsi:1;		// bit 7
+		u32 reserved1:6;		// bits 1-6
+		u32 enab_jab_protect:1;	// bit 0
+#else
+		u32 enab_jab_protect:1;	// bit 0
+		u32 reserved1:6;		// bits 1-6
+		u32 reset_gpsi:1;		// bit 7
+		u32 disable_link_fail:1;	// bit 8
+		u32 no_cipher:1;		// bit 9
+		u32 force_quiet:1;		// bit 10
+		u32 reserved2:4;		// bits 11-14
+		u32 reset_pe100x:1;	// bit 15
+		u32 speed:1;		// bit 16
+		u32 reserved3:6;		// bits 17-22
+		u32 reset_per_mii:1;	// bit 23
+		u32 phy_mode:1;		// bit 24
+		u32 lhd_mode:1;		// bit 25
+		u32 ghd_mode:1;		// bit 26
+		u32 tbi_mode:1;		// bit 27
+		u32 reserved4:3;		// bit 28-30
+		u32 reset_if_module:1;	// bit 31
+#endif
+	} bits;
+} MAC_IF_CTRL_t, *PMAC_IF_CTRL_t;
+
+/*
+ * structure for Interface Status reg in mac address map.
+ * located at address 0x503C
+ */
+typedef union _MAC_IF_STAT_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved:22;		// bits 10-31
+		u32 excess_defer:1;	// bit 9
+		u32 clash:1;		// bit 8
+		u32 phy_jabber:1;		// bit 7
+		u32 phy_link_ok:1;		// bit 6
+		u32 phy_full_duplex:1;	// bit 5
+		u32 phy_speed:1;		// bit 4
+		u32 pe100x_link_fail:1;	// bit 3
+		u32 pe10t_loss_carrie:1;	// bit 2
+		u32 pe10t_sqe_error:1;	// bit 1
+		u32 pe10t_jabber:1;	// bit 0
+#else
+		u32 pe10t_jabber:1;	// bit 0
+		u32 pe10t_sqe_error:1;	// bit 1
+		u32 pe10t_loss_carrie:1;	// bit 2
+		u32 pe100x_link_fail:1;	// bit 3
+		u32 phy_speed:1;		// bit 4
+		u32 phy_full_duplex:1;	// bit 5
+		u32 phy_link_ok:1;		// bit 6
+		u32 phy_jabber:1;		// bit 7
+		u32 clash:1;		// bit 8
+		u32 excess_defer:1;	// bit 9
+		u32 reserved:22;		// bits 10-31
+#endif
+	} bits;
+} MAC_IF_STAT_t, *PMAC_IF_STAT_t;
+
+/*
+ * structure for Mac Station Address, Part 1 reg in mac address map.
+ * located at address 0x5040
+ */
+typedef union _MAC_STATION_ADDR1_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 Octet6:8;	// bits 24-31
+		u32 Octet5:8;	// bits 16-23
+		u32 Octet4:8;	// bits 8-15
+		u32 Octet3:8;	// bits 0-7
+#else
+		u32 Octet3:8;	// bits 0-7
+		u32 Octet4:8;	// bits 8-15
+		u32 Octet5:8;	// bits 16-23
+		u32 Octet6:8;	// bits 24-31
+#endif
+	} bits;
+} MAC_STATION_ADDR1_t, *PMAC_STATION_ADDR1_t;
+
+/*
+ * structure for Mac Station Address, Part 2 reg in mac address map.
+ * located at address 0x5044
+ */
+typedef union _MAC_STATION_ADDR2_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 Octet2:8;	// bits 24-31
+		u32 Octet1:8;	// bits 16-23
+		u32 reserved:16;	// bits 0-15
+#else
+		u32 reserved:16;	// bit 0-15
+		u32 Octet1:8;	// bits 16-23
+		u32 Octet2:8;	// bits 24-31
+#endif
+	} bits;
+} MAC_STATION_ADDR2_t, *PMAC_STATION_ADDR2_t;
+
+/*
+ * MAC Module of JAGCore Address Mapping
+ */
+typedef struct _MAC_t {					// Location:
+	MAC_CFG1_t cfg1;				//  0x5000
+	MAC_CFG2_t cfg2;				//  0x5004
+	MAC_IPG_t ipg;					//  0x5008
+	MAC_HFDP_t hfdp;				//  0x500C
+	MAC_MAX_FM_LEN_t max_fm_len;			//  0x5010
+	u32 rsv1;					//  0x5014
+	u32 rsv2;					//  0x5018
+	MAC_TEST_t mac_test;				//  0x501C
+	MII_MGMT_CFG_t mii_mgmt_cfg;			//  0x5020
+	MII_MGMT_CMD_t mii_mgmt_cmd;			//  0x5024
+	MII_MGMT_ADDR_t mii_mgmt_addr;			//  0x5028
+	MII_MGMT_CTRL_t mii_mgmt_ctrl;			//  0x502C
+	MII_MGMT_STAT_t mii_mgmt_stat;			//  0x5030
+	MII_MGMT_INDICATOR_t mii_mgmt_indicator;	//  0x5034
+	MAC_IF_CTRL_t if_ctrl;				//  0x5038
+	MAC_IF_STAT_t if_stat;				//  0x503C
+	MAC_STATION_ADDR1_t station_addr_1;		//  0x5040
+	MAC_STATION_ADDR2_t station_addr_2;		//  0x5044
+} MAC_t, *PMAC_t;
+
+/* END OF MAC REGISTER ADDRESS MAP */
+
+/* START OF MAC STAT REGISTER ADDRESS MAP */
+
+/*
+ * structure for Carry Register One and it's Mask Register reg located in mac
+ * stat address map address 0x6130 and 0x6138.
+ */
+typedef union _MAC_STAT_REG_1_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 tr64:1;	// bit 31
+		u32 tr127:1;	// bit 30
+		u32 tr255:1;	// bit 29
+		u32 tr511:1;	// bit 28
+		u32 tr1k:1;	// bit 27
+		u32 trmax:1;	// bit 26
+		u32 trmgv:1;	// bit 25
+		u32 unused:8;	// bits 17-24
+		u32 rbyt:1;	// bit 16
+		u32 rpkt:1;	// bit 15
+		u32 rfcs:1;	// bit 14
+		u32 rmca:1;	// bit 13
+		u32 rbca:1;	// bit 12
+		u32 rxcf:1;	// bit 11
+		u32 rxpf:1;	// bit 10
+		u32 rxuo:1;	// bit 9
+		u32 raln:1;	// bit 8
+		u32 rflr:1;	// bit 7
+		u32 rcde:1;	// bit 6
+		u32 rcse:1;	// bit 5
+		u32 rund:1;	// bit 4
+		u32 rovr:1;	// bit 3
+		u32 rfrg:1;	// bit 2
+		u32 rjbr:1;	// bit 1
+		u32 rdrp:1;	// bit 0
+#else
+		u32 rdrp:1;	// bit 0
+		u32 rjbr:1;	// bit 1
+		u32 rfrg:1;	// bit 2
+		u32 rovr:1;	// bit 3
+		u32 rund:1;	// bit 4
+		u32 rcse:1;	// bit 5
+		u32 rcde:1;	// bit 6
+		u32 rflr:1;	// bit 7
+		u32 raln:1;	// bit 8
+		u32 rxuo:1;	// bit 9
+		u32 rxpf:1;	// bit 10
+		u32 rxcf:1;	// bit 11
+		u32 rbca:1;	// bit 12
+		u32 rmca:1;	// bit 13
+		u32 rfcs:1;	// bit 14
+		u32 rpkt:1;	// bit 15
+		u32 rbyt:1;	// bit 16
+		u32 unused:8;	// bits 17-24
+		u32 trmgv:1;	// bit 25
+		u32 trmax:1;	// bit 26
+		u32 tr1k:1;	// bit 27
+		u32 tr511:1;	// bit 28
+		u32 tr255:1;	// bit 29
+		u32 tr127:1;	// bit 30
+		u32 tr64:1;	// bit 31
+#endif
+	} bits;
+} MAC_STAT_REG_1_t, *PMAC_STAT_REG_1_t;
+
+/*
+ * structure for Carry Register Two Mask Register reg in mac stat address map.
+ * located at address 0x613C
+ */
+typedef union _MAC_STAT_REG_2_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:12;	// bit 20-31
+		u32 tjbr:1;	// bit 19
+		u32 tfcs:1;	// bit 18
+		u32 txcf:1;	// bit 17
+		u32 tovr:1;	// bit 16
+		u32 tund:1;	// bit 15
+		u32 tfrg:1;	// bit 14
+		u32 tbyt:1;	// bit 13
+		u32 tpkt:1;	// bit 12
+		u32 tmca:1;	// bit 11
+		u32 tbca:1;	// bit 10
+		u32 txpf:1;	// bit 9
+		u32 tdfr:1;	// bit 8
+		u32 tedf:1;	// bit 7
+		u32 tscl:1;	// bit 6
+		u32 tmcl:1;	// bit 5
+		u32 tlcl:1;	// bit 4
+		u32 txcl:1;	// bit 3
+		u32 tncl:1;	// bit 2
+		u32 tpfh:1;	// bit 1
+		u32 tdrp:1;	// bit 0
+#else
+		u32 tdrp:1;	// bit 0
+		u32 tpfh:1;	// bit 1
+		u32 tncl:1;	// bit 2
+		u32 txcl:1;	// bit 3
+		u32 tlcl:1;	// bit 4
+		u32 tmcl:1;	// bit 5
+		u32 tscl:1;	// bit 6
+		u32 tedf:1;	// bit 7
+		u32 tdfr:1;	// bit 8
+		u32 txpf:1;	// bit 9
+		u32 tbca:1;	// bit 10
+		u32 tmca:1;	// bit 11
+		u32 tpkt:1;	// bit 12
+		u32 tbyt:1;	// bit 13
+		u32 tfrg:1;	// bit 14
+		u32 tund:1;	// bit 15
+		u32 tovr:1;	// bit 16
+		u32 txcf:1;	// bit 17
+		u32 tfcs:1;	// bit 18
+		u32 tjbr:1;	// bit 19
+		u32 unused:12;	// bit 20-31
+#endif
+	} bits;
+} MAC_STAT_REG_2_t, *PMAC_STAT_REG_2_t;
+
+/*
+ * MAC STATS Module of JAGCore Address Mapping
+ */
+typedef struct _MAC_STAT_t {		// Location:
+	u32 pad[32];		//  0x6000 - 607C
+
+	// Tx/Rx 0-64 Byte Frame Counter
+	u32 TR64;			//  0x6080
+
+	// Tx/Rx 65-127 Byte Frame Counter
+	u32 TR127;			//  0x6084
+
+	// Tx/Rx 128-255 Byte Frame Counter
+	u32 TR255;			//  0x6088
+
+	// Tx/Rx 256-511 Byte Frame Counter
+	u32 TR511;			//  0x608C
+
+	// Tx/Rx 512-1023 Byte Frame Counter
+	u32 TR1K;			//  0x6090
+
+	// Tx/Rx 1024-1518 Byte Frame Counter
+	u32 TRMax;			//  0x6094
+
+	// Tx/Rx 1519-1522 Byte Good VLAN Frame Count
+	u32 TRMgv;			//  0x6098
+
+	// Rx Byte Counter
+	u32 RByt;			//  0x609C
+
+	// Rx Packet Counter
+	u32 RPkt;			//  0x60A0
+
+	// Rx FCS Error Counter
+	u32 RFcs;			//  0x60A4
+
+	// Rx Multicast Packet Counter
+	u32 RMca;			//  0x60A8
+
+	// Rx Broadcast Packet Counter
+	u32 RBca;			//  0x60AC
+
+	// Rx Control Frame Packet Counter
+	u32 RxCf;			//  0x60B0
+
+	// Rx Pause Frame Packet Counter
+	u32 RxPf;			//  0x60B4
+
+	// Rx Unknown OP Code Counter
+	u32 RxUo;			//  0x60B8
+
+	// Rx Alignment Error Counter
+	u32 RAln;			//  0x60BC
+
+	// Rx Frame Length Error Counter
+	u32 RFlr;			//  0x60C0
+
+	// Rx Code Error Counter
+	u32 RCde;			//  0x60C4
+
+	// Rx Carrier Sense Error Counter
+	u32 RCse;			//  0x60C8
+
+	// Rx Undersize Packet Counter
+	u32 RUnd;			//  0x60CC
+
+	// Rx Oversize Packet Counter
+	u32 ROvr;			//  0x60D0
+
+	// Rx Fragment Counter
+	u32 RFrg;			//  0x60D4
+
+	// Rx Jabber Counter
+	u32 RJbr;			//  0x60D8
+
+	// Rx Drop
+	u32 RDrp;			//  0x60DC
+
+	// Tx Byte Counter
+	u32 TByt;			//  0x60E0
+
+	// Tx Packet Counter
+	u32 TPkt;			//  0x60E4
+
+	// Tx Multicast Packet Counter
+	u32 TMca;			//  0x60E8
+
+	// Tx Broadcast Packet Counter
+	u32 TBca;			//  0x60EC
+
+	// Tx Pause Control Frame Counter
+	u32 TxPf;			//  0x60F0
+
+	// Tx Deferral Packet Counter
+	u32 TDfr;			//  0x60F4
+
+	// Tx Excessive Deferral Packet Counter
+	u32 TEdf;			//  0x60F8
+
+	// Tx Single Collision Packet Counter
+	u32 TScl;			//  0x60FC
+
+	// Tx Multiple Collision Packet Counter
+	u32 TMcl;			//  0x6100
+
+	// Tx Late Collision Packet Counter
+	u32 TLcl;			//  0x6104
+
+	// Tx Excessive Collision Packet Counter
+	u32 TXcl;			//  0x6108
+
+	// Tx Total Collision Packet Counter
+	u32 TNcl;			//  0x610C
+
+	// Tx Pause Frame Honored Counter
+	u32 TPfh;			//  0x6110
+
+	// Tx Drop Frame Counter
+	u32 TDrp;			//  0x6114
+
+	// Tx Jabber Frame Counter
+	u32 TJbr;			//  0x6118
+
+	// Tx FCS Error Counter
+	u32 TFcs;			//  0x611C
+
+	// Tx Control Frame Counter
+	u32 TxCf;			//  0x6120
+
+	// Tx Oversize Frame Counter
+	u32 TOvr;			//  0x6124
+
+	// Tx Undersize Frame Counter
+	u32 TUnd;			//  0x6128
+
+	// Tx Fragments Frame Counter
+	u32 TFrg;			//  0x612C
+
+	// Carry Register One Register
+	MAC_STAT_REG_1_t Carry1;	//  0x6130
+
+	// Carry Register Two Register
+	MAC_STAT_REG_2_t Carry2;	//  0x6134
+
+	// Carry Register One Mask Register
+	MAC_STAT_REG_1_t Carry1M;	//  0x6138
+
+	// Carry Register Two Mask Register
+	MAC_STAT_REG_2_t Carry2M;	//  0x613C
+} MAC_STAT_t, *PMAC_STAT_t;
+
+/* END OF MAC STAT REGISTER ADDRESS MAP */
+
+
+/* START OF MMC REGISTER ADDRESS MAP */
+
+/*
+ * structure for Main Memory Controller Control reg in mmc address map.
+ * located at address 0x7000
+ */
+typedef union _MMC_CTRL_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved:25;		// bits 7-31
+		u32 force_ce:1;		// bit 6
+		u32 rxdma_disable:1;	// bit 5
+		u32 txdma_disable:1;	// bit 4
+		u32 txmac_disable:1;	// bit 3
+		u32 rxmac_disable:1;	// bit 2
+		u32 arb_disable:1;		// bit 1
+		u32 mmc_enable:1;		// bit 0
+#else
+		u32 mmc_enable:1;		// bit 0
+		u32 arb_disable:1;		// bit 1
+		u32 rxmac_disable:1;	// bit 2
+		u32 txmac_disable:1;	// bit 3
+		u32 txdma_disable:1;	// bit 4
+		u32 rxdma_disable:1;	// bit 5
+		u32 force_ce:1;		// bit 6
+		u32 reserved:25;		// bits 7-31
+#endif
+	} bits;
+} MMC_CTRL_t, *PMMC_CTRL_t;
+
+/*
+ * structure for Main Memory Controller Host Memory Access Address reg in mmc
+ * address map.  Located at address 0x7004
+ */
+typedef union _MMC_SRAM_ACCESS_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 byte_enable:16;	// bits 16-31
+		u32 reserved2:2;		// bits 14-15
+		u32 req_addr:10;		// bits 4-13
+		u32 reserved1:1;		// bit 3
+		u32 is_ctrl_word:1;	// bit 2
+		u32 wr_access:1;		// bit 1
+		u32 req_access:1;		// bit 0
+#else
+		u32 req_access:1;		// bit 0
+		u32 wr_access:1;		// bit 1
+		u32 is_ctrl_word:1;	// bit 2
+		u32 reserved1:1;		// bit 3
+		u32 req_addr:10;		// bits 4-13
+		u32 reserved2:2;		// bits 14-15
+		u32 byte_enable:16;	// bits 16-31
+#endif
+	} bits;
+} MMC_SRAM_ACCESS_t, *PMMC_SRAM_ACCESS_t;
+
+/*
+ * structure for Main Memory Controller Host Memory Access Data reg in mmc
+ * address map.  Located at address 0x7008 - 0x7014
+ * Defined earlier (u32)
+ */
+
+/*
+ * Memory Control Module of JAGCore Address Mapping
+ */
+typedef struct _MMC_t {			// Location:
+	MMC_CTRL_t mmc_ctrl;		//  0x7000
+	MMC_SRAM_ACCESS_t sram_access;	//  0x7004
+	u32 sram_word1;		//  0x7008
+	u32 sram_word2;		//  0x700C
+	u32 sram_word3;		//  0x7010
+	u32 sram_word4;		//  0x7014
+} MMC_t, *PMMC_t;
+
+/* END OF MMC REGISTER ADDRESS MAP */
+
+
+/* START OF EXP ROM REGISTER ADDRESS MAP */
+
+/*
+ * Expansion ROM Module of JAGCore Address Mapping
+ */
+
+/* Take this out until it is not empty */
+#if 0
+typedef struct _EXP_ROM_t {
+
+} EXP_ROM_t, *PEXP_ROM_t;
+#endif
+
+/* END OF EXP ROM REGISTER ADDRESS MAP */
+
+
+/*
+ * JAGCore Address Mapping
+ */
+typedef struct _ADDRESS_MAP_t {
+	GLOBAL_t global;
+	// unused section of global address map
+	u8 unused_global[4096 - sizeof(GLOBAL_t)];
+	TXDMA_t txdma;
+	// unused section of txdma address map
+	u8 unused_txdma[4096 - sizeof(TXDMA_t)];
+	RXDMA_t rxdma;
+	// unused section of rxdma address map
+	u8 unused_rxdma[4096 - sizeof(RXDMA_t)];
+	TXMAC_t txmac;
+	// unused section of txmac address map
+	u8 unused_txmac[4096 - sizeof(TXMAC_t)];
+	RXMAC_t rxmac;
+	// unused section of rxmac address map
+	u8 unused_rxmac[4096 - sizeof(RXMAC_t)];
+	MAC_t mac;
+	// unused section of mac address map
+	u8 unused_mac[4096 - sizeof(MAC_t)];
+	MAC_STAT_t macStat;
+	// unused section of mac stat address map
+	u8 unused_mac_stat[4096 - sizeof(MAC_STAT_t)];
+	MMC_t mmc;
+	// unused section of mmc address map
+	u8 unused_mmc[4096 - sizeof(MMC_t)];
+	// unused section of address map
+	u8 unused_[1015808];
+
+/* Take this out until it is not empty */
+#if 0
+	EXP_ROM_t exp_rom;
+#endif
+
+	u8 unused_exp_rom[4096];	// MGS-size TBD
+	u8 unused__[524288];	// unused section of address map
+} ADDRESS_MAP_t, *PADDRESS_MAP_t;
+
+#endif /* _ET1310_ADDRESS_MAP_H_ */
diff --git a/drivers/staging/et131x/et1310_eeprom.c b/drivers/staging/et131x/et1310_eeprom.c
new file mode 100644
index 0000000..c2b194e
--- /dev/null
+++ b/drivers/staging/et131x/et1310_eeprom.c
@@ -0,0 +1,480 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et1310_eeprom.c - Code used to access the device's EEPROM
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#include "et131x_version.h"
+#include "et131x_debug.h"
+#include "et131x_defs.h"
+
+#include <linux/pci.h>
+#include <linux/init.h>
+#include <linux/module.h>
+#include <linux/types.h>
+#include <linux/kernel.h>
+
+#include <linux/sched.h>
+#include <linux/ptrace.h>
+#include <linux/slab.h>
+#include <linux/ctype.h>
+#include <linux/string.h>
+#include <linux/timer.h>
+#include <linux/interrupt.h>
+#include <linux/in.h>
+#include <linux/delay.h>
+#include <asm/io.h>
+#include <asm/system.h>
+#include <asm/bitops.h>
+
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/skbuff.h>
+#include <linux/if_arp.h>
+#include <linux/ioport.h>
+
+#include "et1310_phy.h"
+#include "et1310_pm.h"
+#include "et1310_jagcore.h"
+#include "et1310_eeprom.h"
+
+#include "et131x_adapter.h"
+#include "et131x_initpci.h"
+#include "et131x_isr.h"
+
+#include "et1310_tx.h"
+
+
+/*
+ * EEPROM Defines
+ */
+
+/* LBCIF Register Groups (addressed via 32-bit offsets) */
+#define LBCIF_DWORD0_GROUP_OFFSET       0xAC
+#define LBCIF_DWORD1_GROUP_OFFSET       0xB0
+
+/* LBCIF Registers (addressed via 8-bit offsets) */
+#define LBCIF_ADDRESS_REGISTER_OFFSET   0xAC
+#define LBCIF_DATA_REGISTER_OFFSET      0xB0
+#define LBCIF_CONTROL_REGISTER_OFFSET   0xB1
+#define LBCIF_STATUS_REGISTER_OFFSET    0xB2
+
+/* LBCIF Control Register Bits */
+#define LBCIF_CONTROL_SEQUENTIAL_READ   0x01
+#define LBCIF_CONTROL_PAGE_WRITE        0x02
+#define LBCIF_CONTROL_UNUSED1           0x04
+#define LBCIF_CONTROL_EEPROM_RELOAD     0x08
+#define LBCIF_CONTROL_UNUSED2           0x10
+#define LBCIF_CONTROL_TWO_BYTE_ADDR     0x20
+#define LBCIF_CONTROL_I2C_WRITE         0x40
+#define LBCIF_CONTROL_LBCIF_ENABLE      0x80
+
+/* LBCIF Status Register Bits */
+#define LBCIF_STATUS_PHY_QUEUE_AVAIL    0x01
+#define LBCIF_STATUS_I2C_IDLE           0x02
+#define LBCIF_STATUS_ACK_ERROR          0x04
+#define LBCIF_STATUS_GENERAL_ERROR      0x08
+#define LBCIF_STATUS_UNUSED             0x30
+#define LBCIF_STATUS_CHECKSUM_ERROR     0x40
+#define LBCIF_STATUS_EEPROM_PRESENT     0x80
+
+/* Miscellaneous Constraints */
+#define MAX_NUM_REGISTER_POLLS          1000
+#define MAX_NUM_WRITE_RETRIES           2
+
+/*
+ * Define macros that allow individual register values to be extracted from a
+ * DWORD1 register grouping
+ */
+#define EXTRACT_DATA_REGISTER(x)    (uint8_t)(x & 0xFF)
+#define EXTRACT_STATUS_REGISTER(x)  (uint8_t)((x >> 16) & 0xFF)
+#define EXTRACT_CONTROL_REG(x)      (uint8_t)((x >> 8) & 0xFF)
+
+/**
+ * EepromWriteByte - Write a byte to the ET1310's EEPROM
+ * @pAdapter: pointer to our private adapter structure
+ * @unAddress: the address to write
+ * @bData: the value to write
+ * @unEepronId: the ID of the EEPROM
+ * @unAddressingMode: how the EEPROM is to be accessed
+ *
+ * Returns SUCCESS or FAILURE
+ */
+int32_t EepromWriteByte(struct et131x_adapter *pAdapter, uint32_t unAddress,
+			uint8_t bData, uint32_t unEepromId,
+			uint32_t unAddressingMode)
+{
+        struct pci_dev *pdev = pAdapter->pdev;
+	int32_t nIndex;
+	int32_t nRetries;
+	int32_t nError = false;
+	int32_t nI2CWriteActive = 0;
+	int32_t nWriteSuccessful = 0;
+	uint8_t bControl;
+	uint8_t bStatus = 0;
+	uint32_t unDword1 = 0;
+	uint32_t unData = 0;
+
+	/*
+	 * The following excerpt is from "Serial EEPROM HW Design
+	 * Specification" Version 0.92 (9/20/2004):
+	 *
+	 * Single Byte Writes
+	 *
+	 * For an EEPROM, an I2C single byte write is defined as a START
+	 * condition followed by the device address, EEPROM address, one byte
+	 * of data and a STOP condition.  The STOP condition will trigger the
+	 * EEPROM's internally timed write cycle to the nonvolatile memory.
+	 * All inputs are disabled during this write cycle and the EEPROM will
+	 * not respond to any access until the internal write is complete.
+	 * The steps to execute a single byte write are as follows:
+	 *
+	 * 1. Check LBCIF Status Register for bits 6 & 3:2 all equal to 0 and
+	 *    bits 7,1:0 both equal to 1, at least once after reset.
+	 *    Subsequent operations need only to check that bits 1:0 are
+	 *    equal to 1 prior to starting a single byte write.
+	 *
+	 * 2. Write to the LBCIF Control Register:  bit 7=1, bit 6=1, bit 3=0,
+	 *    and bits 1:0 both =0.  Bit 5 should be set according to the
+	 *    type of EEPROM being accessed (1=two byte addressing, 0=one
+	 *    byte addressing).
+	 *
+	 * 3. Write the address to the LBCIF Address Register.
+	 *
+	 * 4. Write the data to the LBCIF Data Register (the I2C write will
+	 *    begin).
+	 *
+	 * 5. Monitor bit 1:0 of the LBCIF Status Register.  When bits 1:0 are
+	 *    both equal to 1, the I2C write has completed and the internal
+	 *    write cycle of the EEPROM is about to start. (bits 1:0 = 01 is
+	 *    a legal state while waiting from both equal to 1, but bits
+	 *    1:0 = 10 is invalid and implies that something is broken).
+	 *
+	 * 6. Check bit 3 of the LBCIF Status Register.  If  equal to 1, an
+	 *    error has occurred.
+	 *
+	 * 7. Check bit 2 of the LBCIF Status Register.  If equal to 1 an ACK
+	 *    error has occurred on the address phase of the write.  This
+	 *    could be due to an actual hardware failure or the EEPROM may
+	 *    still be in its internal write cycle from a previous write.
+	 *    This write operation was ignored and must be repeated later.
+	 *
+	 * 8. Set bit 6 of the LBCIF Control Register = 0. If another write is
+	 *    required, go to step 1.
+	 */
+
+	/* Step 1: */
+	for (nIndex = 0; nIndex < MAX_NUM_REGISTER_POLLS; nIndex++) {
+		/* Read registers grouped in DWORD1 */
+		if (pci_read_config_dword(pdev, LBCIF_DWORD1_GROUP_OFFSET,
+					  &unDword1)) {
+			nError = 1;
+			break;
+		}
+
+		bStatus = EXTRACT_STATUS_REGISTER(unDword1);
+
+		if (bStatus & LBCIF_STATUS_PHY_QUEUE_AVAIL &&
+		    bStatus & LBCIF_STATUS_I2C_IDLE) {
+		    	/* bits 1:0 are equal to 1 */
+			break;
+		}
+	}
+
+	if (nError || (nIndex >= MAX_NUM_REGISTER_POLLS)) {
+		return FAILURE;
+	}
+
+	/* Step 2: */
+	bControl = 0;
+	bControl |= LBCIF_CONTROL_LBCIF_ENABLE | LBCIF_CONTROL_I2C_WRITE;
+
+	if (unAddressingMode == DUAL_BYTE) {
+		bControl |= LBCIF_CONTROL_TWO_BYTE_ADDR;
+	}
+
+	if (pci_write_config_byte(pdev, LBCIF_CONTROL_REGISTER_OFFSET,
+				  bControl)) {
+		return FAILURE;
+	}
+
+	nI2CWriteActive = 1;
+
+	/* Prepare EEPROM address for Step 3 */
+	unAddress |= (unAddressingMode == DUAL_BYTE) ?
+	    (unEepromId << 16) : (unEepromId << 8);
+
+	for (nRetries = 0; nRetries < MAX_NUM_WRITE_RETRIES; nRetries++) {
+		/* Step 3:*/
+		if (pci_write_config_dword(pdev, LBCIF_ADDRESS_REGISTER_OFFSET,
+					   unAddress)) {
+			break;
+		}
+
+		/* Step 4: */
+		if (pci_write_config_byte(pdev, LBCIF_DATA_REGISTER_OFFSET,
+					  bData)) {
+			break;
+		}
+
+		/* Step 5: */
+		for (nIndex = 0; nIndex < MAX_NUM_REGISTER_POLLS; nIndex++) {
+			/* Read registers grouped in DWORD1 */
+			if (pci_read_config_dword(pdev,
+						  LBCIF_DWORD1_GROUP_OFFSET,
+						  &unDword1)) {
+				nError = 1;
+				break;
+			}
+
+			bStatus = EXTRACT_STATUS_REGISTER(unDword1);
+
+			if (bStatus & LBCIF_STATUS_PHY_QUEUE_AVAIL &&
+			    bStatus & LBCIF_STATUS_I2C_IDLE) {
+			    	/* I2C write complete */
+				break;
+			}
+		}
+
+		if (nError || (nIndex >= MAX_NUM_REGISTER_POLLS)) {
+			break;
+		}
+
+		/*
+		 * Step 6: Don't break here if we are revision 1, this is
+		 *	   so we do a blind write for load bug.
+	         */
+		if (bStatus & LBCIF_STATUS_GENERAL_ERROR
+		    && pAdapter->RevisionID == 0) {
+			break;
+		}
+
+		/* Step 7 */
+		if (bStatus & LBCIF_STATUS_ACK_ERROR) {
+			/*
+			 * This could be due to an actual hardware failure
+			 * or the EEPROM may still be in its internal write
+			 * cycle from a previous write. This write operation
+			 * was ignored and must be repeated later.
+			 */
+			udelay(10);
+			continue;
+		}
+
+		nWriteSuccessful = 1;
+		break;
+	}
+
+	/* Step 8: */
+	udelay(10);
+	nIndex = 0;
+	while (nI2CWriteActive) {
+		bControl &= ~LBCIF_CONTROL_I2C_WRITE;
+
+		if (pci_write_config_byte(pdev, LBCIF_CONTROL_REGISTER_OFFSET,
+					  bControl)) {
+			nWriteSuccessful = 0;
+		}
+
+		/* Do read until internal ACK_ERROR goes away meaning write
+		 * completed
+		 */
+		do {
+			pci_write_config_dword(pdev,
+					       LBCIF_ADDRESS_REGISTER_OFFSET,
+					       unAddress);
+			do {
+				pci_read_config_dword(pdev,
+					LBCIF_DATA_REGISTER_OFFSET, &unData);
+			} while ((unData & 0x00010000) == 0);
+		} while (unData & 0x00040000);
+
+		bControl = EXTRACT_CONTROL_REG(unData);
+
+		if (bControl != 0xC0 || nIndex == 10000) {
+			break;
+		}
+
+		nIndex++;
+	}
+
+	return nWriteSuccessful ? SUCCESS : FAILURE;
+}
+
+/**
+ * EepromReadByte - Read a byte from the ET1310's EEPROM
+ * @pAdapter: pointer to our private adapter structure
+ * @unAddress: the address from which to read
+ * @pbData: a pointer to a byte in which to store the value of the read
+ * @unEepronId: the ID of the EEPROM
+ * @unAddressingMode: how the EEPROM is to be accessed
+ *
+ * Returns SUCCESS or FAILURE
+ */
+int32_t EepromReadByte(struct et131x_adapter *pAdapter, uint32_t unAddress,
+		       uint8_t *pbData, uint32_t unEepromId,
+		       uint32_t unAddressingMode)
+{
+        struct pci_dev *pdev = pAdapter->pdev;
+	int32_t nIndex;
+	int32_t nError = 0;
+	uint8_t bControl;
+	uint8_t bStatus = 0;
+	uint32_t unDword1 = 0;
+
+	/*
+	 * The following excerpt is from "Serial EEPROM HW Design
+	 * Specification" Version 0.92 (9/20/2004):
+	 *
+	 * Single Byte Reads
+	 *
+	 * A single byte read is similar to the single byte write, with the
+	 * exception of the data flow:
+	 *
+	 * 1. Check LBCIF Status Register for bits 6 & 3:2 all equal to 0 and
+	 *    bits 7,1:0 both equal to 1, at least once after reset.
+	 *    Subsequent operations need only to check that bits 1:0 are equal
+	 *    to 1 prior to starting a single byte read.
+	 *
+	 * 2. Write to the LBCIF Control Register:  bit 7=1, bit 6=0, bit 3=0,
+	 *    and bits 1:0 both =0.  Bit 5 should be set according to the type
+	 *    of EEPROM being accessed (1=two byte addressing, 0=one byte
+	 *    addressing).
+	 *
+	 * 3. Write the address to the LBCIF Address Register (I2C read will
+	 *    begin).
+	 *
+	 * 4. Monitor bit 0 of the LBCIF Status Register.  When =1, I2C read
+	 *    is complete. (if bit 1 =1 and bit 0 stays =0, a hardware failure
+	 *    has occurred).
+	 *
+	 * 5. Check bit 2 of the LBCIF Status Register.  If =1, then an error
+	 *    has occurred.  The data that has been returned from the PHY may
+	 *    be invalid.
+	 *
+	 * 6. Regardless of error status, read data byte from LBCIF Data
+	 *    Register.  If another byte is required, go to step 1.
+	 */
+
+	/* Step 1: */
+	for (nIndex = 0; nIndex < MAX_NUM_REGISTER_POLLS; nIndex++) {
+		/* Read registers grouped in DWORD1 */
+		if (pci_read_config_dword(pdev, LBCIF_DWORD1_GROUP_OFFSET,
+					  &unDword1)) {
+			nError = 1;
+			break;
+		}
+
+		bStatus = EXTRACT_STATUS_REGISTER(unDword1);
+
+		if (bStatus & LBCIF_STATUS_PHY_QUEUE_AVAIL &&
+		    bStatus & LBCIF_STATUS_I2C_IDLE) {
+			/* bits 1:0 are equal to 1 */
+			break;
+		}
+	}
+
+	if (nError || (nIndex >= MAX_NUM_REGISTER_POLLS)) {
+		return FAILURE;
+	}
+
+	/* Step 2: */
+	bControl = 0;
+	bControl |= LBCIF_CONTROL_LBCIF_ENABLE;
+
+	if (unAddressingMode == DUAL_BYTE) {
+		bControl |= LBCIF_CONTROL_TWO_BYTE_ADDR;
+	}
+
+	if (pci_write_config_byte(pdev, LBCIF_CONTROL_REGISTER_OFFSET,
+				  bControl)) {
+		return FAILURE;
+	}
+
+	/* Step 3: */
+	unAddress |= (unAddressingMode == DUAL_BYTE) ?
+	    (unEepromId << 16) : (unEepromId << 8);
+
+	if (pci_write_config_dword(pdev, LBCIF_ADDRESS_REGISTER_OFFSET,
+				   unAddress)) {
+		return FAILURE;
+	}
+
+	/* Step 4: */
+	for (nIndex = 0; nIndex < MAX_NUM_REGISTER_POLLS; nIndex++) {
+		/* Read registers grouped in DWORD1 */
+		if (pci_read_config_dword(pdev, LBCIF_DWORD1_GROUP_OFFSET,
+					  &unDword1)) {
+			nError = 1;
+			break;
+		}
+
+		bStatus = EXTRACT_STATUS_REGISTER(unDword1);
+
+		if (bStatus & LBCIF_STATUS_PHY_QUEUE_AVAIL
+		    && bStatus & LBCIF_STATUS_I2C_IDLE) {
+			/* I2C read complete */
+			break;
+		}
+	}
+
+	if (nError || (nIndex >= MAX_NUM_REGISTER_POLLS)) {
+		return FAILURE;
+	}
+
+	/* Step 6: */
+	*pbData = EXTRACT_DATA_REGISTER(unDword1);
+
+	return (bStatus & LBCIF_STATUS_ACK_ERROR) ? FAILURE : SUCCESS;
+}
diff --git a/drivers/staging/et131x/et1310_eeprom.h b/drivers/staging/et131x/et1310_eeprom.h
new file mode 100644
index 0000000..9b6f8ad
--- /dev/null
+++ b/drivers/staging/et131x/et1310_eeprom.h
@@ -0,0 +1,89 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et1310_eeprom.h - Defines, structs, enums, prototypes, etc. used for EEPROM
+ *                   access routines
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#ifndef __ET1310_EEPROM_H__
+#define __ET1310_EEPROM_H__
+
+#include "et1310_address_map.h"
+
+#ifndef SUCCESS
+#define SUCCESS		0
+#define FAILURE		1
+#endif
+
+#ifndef READ
+#define READ		0
+#define WRITE		1
+#endif
+
+#ifndef SINGLE_BYTE
+#define SINGLE_BYTE	0
+#define DUAL_BYTE	1
+#endif
+
+/* Forward declaration of the private adapter structure */
+struct et131x_adapter;
+
+int32_t EepromWriteByte(struct et131x_adapter *adapter, u32 unAddress,
+			u8 bData, u32 unEepromId,
+			u32 unAddressingMode);
+int32_t EepromReadByte(struct et131x_adapter *adapter, u32 unAddress,
+		       u8 *pbData, u32 unEepromId,
+		       u32 unAddressingMode);
+
+#endif /* _ET1310_EEPROM_H_ */
diff --git a/drivers/staging/et131x/et1310_jagcore.c b/drivers/staging/et131x/et1310_jagcore.c
new file mode 100644
index 0000000..993b30e
--- /dev/null
+++ b/drivers/staging/et131x/et1310_jagcore.c
@@ -0,0 +1,220 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et1310_jagcore.c - All code pertaining to the ET1301/ET131x's JAGcore
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#include "et131x_version.h"
+#include "et131x_debug.h"
+#include "et131x_defs.h"
+
+#include <linux/init.h>
+#include <linux/module.h>
+#include <linux/types.h>
+#include <linux/kernel.h>
+
+#include <linux/sched.h>
+#include <linux/ptrace.h>
+#include <linux/slab.h>
+#include <linux/ctype.h>
+#include <linux/string.h>
+#include <linux/timer.h>
+#include <linux/interrupt.h>
+#include <linux/in.h>
+#include <linux/delay.h>
+#include <asm/io.h>
+#include <asm/system.h>
+#include <asm/bitops.h>
+
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/skbuff.h>
+#include <linux/if_arp.h>
+#include <linux/ioport.h>
+
+#include "et1310_phy.h"
+#include "et1310_pm.h"
+#include "et1310_jagcore.h"
+
+#include "et131x_adapter.h"
+#include "et131x_initpci.h"
+
+/* Data for debugging facilities */
+#ifdef CONFIG_ET131X_DEBUG
+extern dbg_info_t *et131x_dbginfo;
+#endif /* CONFIG_ET131X_DEBUG */
+
+/**
+ * ConfigGlobalRegs - Used to configure the global registers on the JAGCore
+ * @pAdpater: pointer to our adapter structure
+ */
+void ConfigGlobalRegs(struct et131x_adapter *pAdapter)
+{
+	struct _GLOBAL_t __iomem *pGbl = &pAdapter->CSRAddress->global;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	if (pAdapter->RegistryPhyLoopbk == false) {
+		if (pAdapter->RegistryJumboPacket < 2048) {
+			/* Tx / RxDMA and Tx/Rx MAC interfaces have a 1k word
+			 * block of RAM that the driver can split between Tx
+			 * and Rx as it desires.  Our default is to split it
+			 * 50/50:
+			 */
+			writel(0, &pGbl->rxq_start_addr.value);
+			writel(pAdapter->RegistryRxMemEnd,
+			       &pGbl->rxq_end_addr.value);
+			writel(pAdapter->RegistryRxMemEnd + 1,
+			       &pGbl->txq_start_addr.value);
+			writel(INTERNAL_MEM_SIZE - 1,
+			       &pGbl->txq_end_addr.value);
+		} else if (pAdapter->RegistryJumboPacket < 8192) {
+			/* For jumbo packets > 2k but < 8k, split 50-50. */
+			writel(0, &pGbl->rxq_start_addr.value);
+			writel(INTERNAL_MEM_RX_OFFSET,
+			       &pGbl->rxq_end_addr.value);
+			writel(INTERNAL_MEM_RX_OFFSET + 1,
+			       &pGbl->txq_start_addr.value);
+			writel(INTERNAL_MEM_SIZE - 1,
+			       &pGbl->txq_end_addr.value);
+		} else {
+			/* 9216 is the only packet size greater than 8k that
+			 * is available. The Tx buffer has to be big enough
+			 * for one whole packet on the Tx side. We'll make
+			 * the Tx 9408, and give the rest to Rx
+			 */
+			writel(0x0000, &pGbl->rxq_start_addr.value);
+			writel(0x01b3, &pGbl->rxq_end_addr.value);
+			writel(0x01b4, &pGbl->txq_start_addr.value);
+			writel(INTERNAL_MEM_SIZE - 1,
+			       &pGbl->txq_end_addr.value);
+		}
+
+		/* Initialize the loopback register. Disable all loopbacks. */
+		writel(0, &pGbl->loopback.value);
+	} else {
+		/* For PHY Line loopback, the memory is configured as if Tx
+		 * and Rx both have all the memory.  This is because the
+		 * RxMAC will write data into the space, and the TxMAC will
+		 * read it out.
+		 */
+		writel(0, &pGbl->rxq_start_addr.value);
+		writel(INTERNAL_MEM_SIZE - 1, &pGbl->rxq_end_addr.value);
+		writel(0, &pGbl->txq_start_addr.value);
+		writel(INTERNAL_MEM_SIZE - 1, &pGbl->txq_end_addr.value);
+
+		/* Initialize the loopback register (MAC loopback). */
+		writel(1, &pGbl->loopback.value);
+	}
+
+	/* MSI Register */
+	writel(0, &pGbl->msi_config.value);
+
+	/* By default, disable the watchdog timer.  It will be enabled when
+	 * a packet is queued.
+	 */
+	writel(0, &pGbl->watchdog_timer);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * ConfigMMCRegs - Used to configure the main memory registers in the JAGCore
+ * @pAdapter: pointer to our adapter structure
+ */
+void ConfigMMCRegs(struct et131x_adapter *pAdapter)
+{
+	MMC_CTRL_t mmc_ctrl = { 0 };
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* All we need to do is initialize the Memory Control Register */
+	mmc_ctrl.bits.force_ce = 0x0;
+	mmc_ctrl.bits.rxdma_disable = 0x0;
+	mmc_ctrl.bits.txdma_disable = 0x0;
+	mmc_ctrl.bits.txmac_disable = 0x0;
+	mmc_ctrl.bits.rxmac_disable = 0x0;
+	mmc_ctrl.bits.arb_disable = 0x0;
+	mmc_ctrl.bits.mmc_enable = 0x1;
+
+	writel(mmc_ctrl.value, &pAdapter->CSRAddress->mmc.mmc_ctrl.value);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+void et131x_enable_interrupts(struct et131x_adapter *adapter)
+{
+	uint32_t MaskValue;
+
+	/* Enable all global interrupts */
+	if ((adapter->FlowControl == TxOnly) || (adapter->FlowControl == Both)) {
+		MaskValue = INT_MASK_ENABLE;
+	} else {
+		MaskValue = INT_MASK_ENABLE_NO_FLOW;
+	}
+
+	if (adapter->DriverNoPhyAccess) {
+		MaskValue |= 0x10000;
+	}
+
+	adapter->CachedMaskValue.value = MaskValue;
+	writel(MaskValue, &adapter->CSRAddress->global.int_mask.value);
+}
+
+void et131x_disable_interrupts(struct et131x_adapter * adapter)
+{
+	/* Disable all global interrupts */
+	adapter->CachedMaskValue.value = INT_MASK_DISABLE;
+	writel(INT_MASK_DISABLE, &adapter->CSRAddress->global.int_mask.value);
+}
diff --git a/drivers/staging/et131x/et1310_jagcore.h b/drivers/staging/et131x/et1310_jagcore.h
new file mode 100644
index 0000000..9fc8293
--- /dev/null
+++ b/drivers/staging/et131x/et1310_jagcore.h
@@ -0,0 +1,112 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et1310_jagcore.h - Defines, structs, enums, prototypes, etc. pertaining to
+ *                    the JAGCore
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#ifndef __ET1310_JAGCORE_H__
+#define __ET1310_JAGCORE_H__
+
+#include "et1310_address_map.h"
+
+
+#define INTERNAL_MEM_SIZE       0x400	//1024 of internal memory
+#define INTERNAL_MEM_RX_OFFSET  0x1FF	//50%   Tx, 50%   Rx
+
+#define REGS_MAX_ARRAY          4096
+
+/*
+ * For interrupts, normal running is:
+ *       rxdma_xfr_done, phy_interrupt, mac_stat_interrupt,
+ *       watchdog_interrupt & txdma_xfer_done
+ *
+ * In both cases, when flow control is enabled for either Tx or bi-direction,
+ * we additional enable rx_fbr0_low and rx_fbr1_low, so we know when the
+ * buffer rings are running low.
+ */
+#define INT_MASK_DISABLE            0xffffffff
+
+// NOTE: Masking out MAC_STAT Interrupt for now...
+//#define INT_MASK_ENABLE             0xfff6bf17
+//#define INT_MASK_ENABLE_NO_FLOW     0xfff6bfd7
+#define INT_MASK_ENABLE             0xfffebf17
+#define INT_MASK_ENABLE_NO_FLOW     0xfffebfd7
+
+/* DATA STRUCTURES FOR DIRECT REGISTER ACCESS */
+
+typedef struct {
+	u8 bReadWrite;
+	u32 nRegCount;
+	u32 nData[REGS_MAX_ARRAY];
+	u32 nOffsets[REGS_MAX_ARRAY];
+} JAGCORE_ACCESS_REGS, *PJAGCORE_ACCESS_REGS;
+
+typedef struct {
+	u8 bReadWrite;
+	u32 nDataWidth;
+	u32 nRegCount;
+	u32 nOffsets[REGS_MAX_ARRAY];
+	u32 nData[REGS_MAX_ARRAY];
+} PCI_CFG_SPACE_REGS, *PPCI_CFG_SPACE_REGS;
+
+/* Forward declaration of the private adapter structure */
+struct et131x_adapter;
+
+void ConfigGlobalRegs(struct et131x_adapter *pAdapter);
+void ConfigMMCRegs(struct et131x_adapter *pAdapter);
+void et131x_enable_interrupts(struct et131x_adapter *adapter);
+void et131x_disable_interrupts(struct et131x_adapter *adapter);
+
+#endif /* __ET1310_JAGCORE_H__ */
diff --git a/drivers/staging/et131x/et1310_mac.c b/drivers/staging/et131x/et1310_mac.c
new file mode 100644
index 0000000..1924968
--- /dev/null
+++ b/drivers/staging/et131x/et1310_mac.c
@@ -0,0 +1,792 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et1310_mac.c - All code and routines pertaining to the MAC
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#include "et131x_version.h"
+#include "et131x_debug.h"
+#include "et131x_defs.h"
+
+#include <linux/init.h>
+#include <linux/module.h>
+#include <linux/types.h>
+#include <linux/kernel.h>
+
+#include <linux/sched.h>
+#include <linux/ptrace.h>
+#include <linux/slab.h>
+#include <linux/ctype.h>
+#include <linux/string.h>
+#include <linux/timer.h>
+#include <linux/interrupt.h>
+#include <linux/in.h>
+#include <linux/delay.h>
+#include <asm/io.h>
+#include <asm/system.h>
+#include <asm/bitops.h>
+
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/skbuff.h>
+#include <linux/if_arp.h>
+#include <linux/ioport.h>
+#include <linux/crc32.h>
+
+#include "et1310_phy.h"
+#include "et1310_pm.h"
+#include "et1310_jagcore.h"
+#include "et1310_mac.h"
+
+#include "et131x_adapter.h"
+#include "et131x_initpci.h"
+
+/* Data for debugging facilities */
+#ifdef CONFIG_ET131X_DEBUG
+extern dbg_info_t *et131x_dbginfo;
+#endif /* CONFIG_ET131X_DEBUG */
+
+/**
+ * ConfigMacRegs1 - Initialize the first part of MAC regs
+ * @pAdpater: pointer to our adapter structure
+ */
+void ConfigMACRegs1(struct et131x_adapter *pAdapter)
+{
+	struct _MAC_t __iomem *pMac = &pAdapter->CSRAddress->mac;
+	MAC_STATION_ADDR1_t station1;
+	MAC_STATION_ADDR2_t station2;
+	MAC_IPG_t ipg;
+	MAC_HFDP_t hfdp;
+	MII_MGMT_CFG_t mii_mgmt_cfg;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* First we need to reset everything.  Write to MAC configuration
+	 * register 1 to perform reset.
+	 */
+	writel(0xC00F0000, &pMac->cfg1.value);
+
+	/* Next lets configure the MAC Inter-packet gap register */
+	ipg.bits.non_B2B_ipg_1 = 0x38;		// 58d
+	ipg.bits.non_B2B_ipg_2 = 0x58;		// 88d
+	ipg.bits.min_ifg_enforce = 0x50;	// 80d
+	ipg.bits.B2B_ipg = 0x60;		// 96d
+	writel(ipg.value, &pMac->ipg.value);
+
+	/* Next lets configure the MAC Half Duplex register */
+	hfdp.bits.alt_beb_trunc = 0xA;
+	hfdp.bits.alt_beb_enable = 0x0;
+	hfdp.bits.bp_no_backoff = 0x0;
+	hfdp.bits.no_backoff = 0x0;
+	hfdp.bits.excess_defer = 0x1;
+	hfdp.bits.rexmit_max = 0xF;
+	hfdp.bits.coll_window = 0x37;		// 55d
+	writel(hfdp.value, &pMac->hfdp.value);
+
+	/* Next lets configure the MAC Interface Control register */
+	writel(0, &pMac->if_ctrl.value);
+
+	/* Let's move on to setting up the mii managment configuration */
+	mii_mgmt_cfg.bits.reset_mii_mgmt = 0;
+	mii_mgmt_cfg.bits.scan_auto_incremt = 0;
+	mii_mgmt_cfg.bits.preamble_suppress = 0;
+	mii_mgmt_cfg.bits.mgmt_clk_reset = 0x7;
+	writel(mii_mgmt_cfg.value, &pMac->mii_mgmt_cfg.value);
+
+	/* Next lets configure the MAC Station Address register.  These
+	 * values are read from the EEPROM during initialization and stored
+	 * in the adapter structure.  We write what is stored in the adapter
+	 * structure to the MAC Station Address registers high and low.  This
+	 * station address is used for generating and checking pause control
+	 * packets.
+	 */
+	station2.bits.Octet1 = pAdapter->CurrentAddress[0];
+	station2.bits.Octet2 = pAdapter->CurrentAddress[1];
+	station1.bits.Octet3 = pAdapter->CurrentAddress[2];
+	station1.bits.Octet4 = pAdapter->CurrentAddress[3];
+	station1.bits.Octet5 = pAdapter->CurrentAddress[4];
+	station1.bits.Octet6 = pAdapter->CurrentAddress[5];
+	writel(station1.value, &pMac->station_addr_1.value);
+	writel(station2.value, &pMac->station_addr_2.value);
+
+	/* Max ethernet packet in bytes that will passed by the mac without
+	 * being truncated.  Allow the MAC to pass 4 more than our max packet
+	 * size.  This is 4 for the Ethernet CRC.
+	 *
+	 * Packets larger than (RegistryJumboPacket) that do not contain a
+	 * VLAN ID will be dropped by the Rx function.
+	 */
+	writel(pAdapter->RegistryJumboPacket + 4, &pMac->max_fm_len.value);
+
+	/* clear out MAC config reset */
+	writel(0, &pMac->cfg1.value);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * ConfigMacRegs2 - Initialize the second part of MAC regs
+ * @pAdpater: pointer to our adapter structure
+ */
+void ConfigMACRegs2(struct et131x_adapter *pAdapter)
+{
+	int32_t delay = 0;
+	struct _MAC_t __iomem *pMac = &pAdapter->CSRAddress->mac;
+	MAC_CFG1_t cfg1;
+	MAC_CFG2_t cfg2;
+	MAC_IF_CTRL_t ifctrl;
+	TXMAC_CTL_t ctl;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	ctl.value = readl(&pAdapter->CSRAddress->txmac.ctl.value);
+	cfg1.value = readl(&pMac->cfg1.value);
+	cfg2.value = readl(&pMac->cfg2.value);
+	ifctrl.value = readl(&pMac->if_ctrl.value);
+
+	if (pAdapter->uiLinkSpeed == TRUEPHY_SPEED_1000MBPS) {
+		cfg2.bits.if_mode = 0x2;
+		ifctrl.bits.phy_mode = 0x0;
+	} else {
+		cfg2.bits.if_mode = 0x1;
+		ifctrl.bits.phy_mode = 0x1;
+	}
+
+	/* We need to enable Rx/Tx */
+	cfg1.bits.rx_enable = 0x1;
+	cfg1.bits.tx_enable = 0x1;
+
+	/* Set up flow control */
+	cfg1.bits.tx_flow = 0x1;
+
+	if ((pAdapter->FlowControl == RxOnly) ||
+	    (pAdapter->FlowControl == Both)) {
+		cfg1.bits.rx_flow = 0x1;
+	} else {
+		cfg1.bits.rx_flow = 0x0;
+	}
+
+	/* Initialize loop back to off */
+	cfg1.bits.loop_back = 0;
+
+	writel(cfg1.value, &pMac->cfg1.value);
+
+	/* Now we need to initialize the MAC Configuration 2 register */
+	cfg2.bits.preamble_len = 0x7;
+	cfg2.bits.huge_frame = 0x0;
+	/* LENGTH FIELD CHECKING bit4: Set this bit to cause the MAC to check
+	 * the frame's length field to ensure it matches the actual data
+	 * field length. Clear this bit if no length field checking is
+	 * desired. Its default is 0.
+	 */
+	cfg2.bits.len_check = 0x1;
+
+	if (pAdapter->RegistryPhyLoopbk == false) {
+		cfg2.bits.pad_crc = 0x1;
+		cfg2.bits.crc_enable = 0x1;
+	} else {
+		cfg2.bits.pad_crc = 0;
+		cfg2.bits.crc_enable = 0;
+	}
+
+	/* 1 - full duplex, 0 - half-duplex */
+	cfg2.bits.full_duplex = pAdapter->uiDuplexMode;
+	ifctrl.bits.ghd_mode = !pAdapter->uiDuplexMode;
+
+	writel(ifctrl.value, &pMac->if_ctrl.value);
+	writel(cfg2.value, &pMac->cfg2.value);
+
+	do {
+		udelay(10);
+		delay++;
+		cfg1.value = readl(&pMac->cfg1.value);
+	} while ((!cfg1.bits.syncd_rx_en ||
+		  !cfg1.bits.syncd_tx_en) &&
+		 delay < 100);
+
+	if (delay == 100) {
+		DBG_ERROR(et131x_dbginfo,
+			  "Syncd bits did not respond correctly cfg1 word 0x%08x\n",
+			  cfg1.value);
+	}
+
+	DBG_TRACE(et131x_dbginfo,
+		  "Speed %d, Dup %d, CFG1 0x%08x, CFG2 0x%08x, if_ctrl 0x%08x\n",
+		  pAdapter->uiLinkSpeed, pAdapter->uiDuplexMode,
+		  readl(&pMac->cfg1.value), readl(&pMac->cfg2.value),
+		  readl(&pMac->if_ctrl.value));
+
+	/* Enable TXMAC */
+	ctl.bits.txmac_en = 0x1;
+	ctl.bits.fc_disable = 0x1;
+	writel(ctl.value, &pAdapter->CSRAddress->txmac.ctl.value);
+
+	/* Ready to start the RXDMA/TXDMA engine */
+	if (!MP_TEST_FLAG(pAdapter, fMP_ADAPTER_LOWER_POWER)) {
+		et131x_rx_dma_enable(pAdapter);
+		et131x_tx_dma_enable(pAdapter);
+	} else {
+		DBG_WARNING(et131x_dbginfo,
+			    "Didn't enable Rx/Tx due to low-power mode\n");
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+void ConfigRxMacRegs(struct et131x_adapter *pAdapter)
+{
+	struct _RXMAC_t __iomem *pRxMac = &pAdapter->CSRAddress->rxmac;
+	RXMAC_WOL_SA_LO_t sa_lo;
+	RXMAC_WOL_SA_HI_t sa_hi;
+	RXMAC_PF_CTRL_t pf_ctrl = { 0 };
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Disable the MAC while it is being configured (also disable WOL) */
+	writel(0x8, &pRxMac->ctrl.value);
+
+	/* Initialize WOL to disabled. */
+	writel(0, &pRxMac->crc0.value);
+	writel(0, &pRxMac->crc12.value);
+	writel(0, &pRxMac->crc34.value);
+
+	/* We need to set the WOL mask0 - mask4 next.  We initialize it to
+	 * its default Values of 0x00000000 because there are not WOL masks
+	 * as of this time.
+	 */
+	writel(0, &pRxMac->mask0_word0);
+	writel(0, &pRxMac->mask0_word1);
+	writel(0, &pRxMac->mask0_word2);
+	writel(0, &pRxMac->mask0_word3);
+
+	writel(0, &pRxMac->mask1_word0);
+	writel(0, &pRxMac->mask1_word1);
+	writel(0, &pRxMac->mask1_word2);
+	writel(0, &pRxMac->mask1_word3);
+
+	writel(0, &pRxMac->mask2_word0);
+	writel(0, &pRxMac->mask2_word1);
+	writel(0, &pRxMac->mask2_word2);
+	writel(0, &pRxMac->mask2_word3);
+
+	writel(0, &pRxMac->mask3_word0);
+	writel(0, &pRxMac->mask3_word1);
+	writel(0, &pRxMac->mask3_word2);
+	writel(0, &pRxMac->mask3_word3);
+
+	writel(0, &pRxMac->mask4_word0);
+	writel(0, &pRxMac->mask4_word1);
+	writel(0, &pRxMac->mask4_word2);
+	writel(0, &pRxMac->mask4_word3);
+
+	/* Lets setup the WOL Source Address */
+	sa_lo.bits.sa3 = pAdapter->CurrentAddress[2];
+	sa_lo.bits.sa4 = pAdapter->CurrentAddress[3];
+	sa_lo.bits.sa5 = pAdapter->CurrentAddress[4];
+	sa_lo.bits.sa6 = pAdapter->CurrentAddress[5];
+	writel(sa_lo.value, &pRxMac->sa_lo.value);
+
+	sa_hi.bits.sa1 = pAdapter->CurrentAddress[0];
+	sa_hi.bits.sa2 = pAdapter->CurrentAddress[1];
+	writel(sa_hi.value, &pRxMac->sa_hi.value);
+
+	/* Disable all Packet Filtering */
+	writel(0, &pRxMac->pf_ctrl.value);
+
+	/* Let's initialize the Unicast Packet filtering address */
+	if (pAdapter->PacketFilter & ET131X_PACKET_TYPE_DIRECTED) {
+		SetupDeviceForUnicast(pAdapter);
+		pf_ctrl.bits.filter_uni_en = 1;
+	} else {
+		writel(0, &pRxMac->uni_pf_addr1.value);
+		writel(0, &pRxMac->uni_pf_addr2.value);
+		writel(0, &pRxMac->uni_pf_addr3.value);
+	}
+
+	/* Let's initialize the Multicast hash */
+	if (pAdapter->PacketFilter & ET131X_PACKET_TYPE_ALL_MULTICAST) {
+		pf_ctrl.bits.filter_multi_en = 0;
+	} else {
+		pf_ctrl.bits.filter_multi_en = 1;
+		SetupDeviceForMulticast(pAdapter);
+	}
+
+	/* Runt packet filtering.  Didn't work in version A silicon. */
+	pf_ctrl.bits.min_pkt_size = NIC_MIN_PACKET_SIZE + 4;
+	pf_ctrl.bits.filter_frag_en = 1;
+
+	if (pAdapter->RegistryJumboPacket > 8192) {
+		RXMAC_MCIF_CTRL_MAX_SEG_t mcif_ctrl_max_seg;
+
+		/* In order to transmit jumbo packets greater than 8k, the
+		 * FIFO between RxMAC and RxDMA needs to be reduced in size
+		 * to (16k - Jumbo packet size).  In order to implement this,
+		 * we must use "cut through" mode in the RxMAC, which chops
+		 * packets down into segments which are (max_size * 16).  In
+		 * this case we selected 256 bytes, since this is the size of
+		 * the PCI-Express TLP's that the 1310 uses.
+		 */
+		mcif_ctrl_max_seg.bits.seg_en = 0x1;
+		mcif_ctrl_max_seg.bits.fc_en = 0x0;
+		mcif_ctrl_max_seg.bits.max_size = 0x10;
+
+		writel(mcif_ctrl_max_seg.value,
+		       &pRxMac->mcif_ctrl_max_seg.value);
+	} else {
+		writel(0, &pRxMac->mcif_ctrl_max_seg.value);
+	}
+
+	/* Initialize the MCIF water marks */
+	writel(0, &pRxMac->mcif_water_mark.value);
+
+	/*  Initialize the MIF control */
+	writel(0, &pRxMac->mif_ctrl.value);
+
+	/* Initialize the Space Available Register */
+	writel(0, &pRxMac->space_avail.value);
+
+	/* Initialize the the mif_ctrl register
+	 * bit 3:  Receive code error. One or more nibbles were signaled as
+	 *	   errors  during the reception of the packet.  Clear this
+	 *	   bit in Gigabit, set it in 100Mbit.  This was derived
+	 *	   experimentally at UNH.
+	 * bit 4:  Receive CRC error. The packet's CRC did not match the
+	 *	   internally generated CRC.
+	 * bit 5:  Receive length check error. Indicates that frame length
+	 *	   field value in the packet does not match the actual data
+	 *	   byte length and is not a type field.
+	 * bit 16: Receive frame truncated.
+	 * bit 17: Drop packet enable
+	 */
+	if (pAdapter->uiLinkSpeed == TRUEPHY_SPEED_100MBPS) {
+		writel(0x30038, &pRxMac->mif_ctrl.value);
+	} else {
+		writel(0x30030, &pRxMac->mif_ctrl.value);
+	}
+
+	/* Finally we initialize RxMac to be enabled & WOL disabled.  Packet
+	 * filter is always enabled since it is where the runt packets are
+	 * supposed to be dropped.  For version A silicon, runt packet
+	 * dropping doesn't work, so it is disabled in the pf_ctrl register,
+	 * but we still leave the packet filter on.
+	 */
+	writel(pf_ctrl.value, &pRxMac->pf_ctrl.value);
+	writel(0x9, &pRxMac->ctrl.value);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+void ConfigTxMacRegs(struct et131x_adapter *pAdapter)
+{
+	struct _TXMAC_t __iomem *pTxMac = &pAdapter->CSRAddress->txmac;
+	TXMAC_CF_PARAM_t Local;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* We need to update the Control Frame Parameters
+	 * cfpt - control frame pause timer set to 64 (0x40)
+	 * cfep - control frame extended pause timer set to 0x0
+	 */
+	if (pAdapter->FlowControl == None) {
+		writel(0, &pTxMac->cf_param.value);
+	} else {
+		Local.bits.cfpt = 0x40;
+		Local.bits.cfep = 0x0;
+		writel(Local.value, &pTxMac->cf_param.value);
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+void ConfigMacStatRegs(struct et131x_adapter *pAdapter)
+{
+	struct _MAC_STAT_t __iomem *pDevMacStat =
+		&pAdapter->CSRAddress->macStat;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Next we need to initialize all the MAC_STAT registers to zero on
+	 * the device.
+	 */
+	writel(0, &pDevMacStat->RFcs);
+	writel(0, &pDevMacStat->RAln);
+	writel(0, &pDevMacStat->RFlr);
+	writel(0, &pDevMacStat->RDrp);
+	writel(0, &pDevMacStat->RCde);
+	writel(0, &pDevMacStat->ROvr);
+	writel(0, &pDevMacStat->RFrg);
+
+	writel(0, &pDevMacStat->TScl);
+	writel(0, &pDevMacStat->TDfr);
+	writel(0, &pDevMacStat->TMcl);
+	writel(0, &pDevMacStat->TLcl);
+	writel(0, &pDevMacStat->TNcl);
+	writel(0, &pDevMacStat->TOvr);
+	writel(0, &pDevMacStat->TUnd);
+
+	/* Unmask any counters that we want to track the overflow of.
+	 * Initially this will be all counters.  It may become clear later
+	 * that we do not need to track all counters.
+	 */
+	{
+		MAC_STAT_REG_1_t Carry1M = { 0xffffffff };
+
+		Carry1M.bits.rdrp = 0;
+		Carry1M.bits.rjbr = 1;
+		Carry1M.bits.rfrg = 0;
+		Carry1M.bits.rovr = 0;
+		Carry1M.bits.rund = 1;
+		Carry1M.bits.rcse = 1;
+		Carry1M.bits.rcde = 0;
+		Carry1M.bits.rflr = 0;
+		Carry1M.bits.raln = 0;
+		Carry1M.bits.rxuo = 1;
+		Carry1M.bits.rxpf = 1;
+		Carry1M.bits.rxcf = 1;
+		Carry1M.bits.rbca = 1;
+		Carry1M.bits.rmca = 1;
+		Carry1M.bits.rfcs = 0;
+		Carry1M.bits.rpkt = 1;
+		Carry1M.bits.rbyt = 1;
+		Carry1M.bits.trmgv = 1;
+		Carry1M.bits.trmax = 1;
+		Carry1M.bits.tr1k = 1;
+		Carry1M.bits.tr511 = 1;
+		Carry1M.bits.tr255 = 1;
+		Carry1M.bits.tr127 = 1;
+		Carry1M.bits.tr64 = 1;
+
+		writel(Carry1M.value, &pDevMacStat->Carry1M.value);
+	}
+
+	{
+		MAC_STAT_REG_2_t Carry2M = { 0xffffffff };
+
+		Carry2M.bits.tdrp = 1;
+		Carry2M.bits.tpfh = 1;
+		Carry2M.bits.tncl = 0;
+		Carry2M.bits.txcl = 1;
+		Carry2M.bits.tlcl = 0;
+		Carry2M.bits.tmcl = 0;
+		Carry2M.bits.tscl = 0;
+		Carry2M.bits.tedf = 1;
+		Carry2M.bits.tdfr = 0;
+		Carry2M.bits.txpf = 1;
+		Carry2M.bits.tbca = 1;
+		Carry2M.bits.tmca = 1;
+		Carry2M.bits.tpkt = 1;
+		Carry2M.bits.tbyt = 1;
+		Carry2M.bits.tfrg = 1;
+		Carry2M.bits.tund = 0;
+		Carry2M.bits.tovr = 0;
+		Carry2M.bits.txcf = 1;
+		Carry2M.bits.tfcs = 1;
+		Carry2M.bits.tjbr = 1;
+
+		writel(Carry2M.value, &pDevMacStat->Carry2M.value);
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+void ConfigFlowControl(struct et131x_adapter * pAdapter)
+{
+	if (pAdapter->uiDuplexMode == 0) {
+		pAdapter->FlowControl = None;
+	} else {
+		char RemotePause, RemoteAsyncPause;
+
+		ET1310_PhyAccessMiBit(pAdapter,
+				      TRUEPHY_BIT_READ, 5, 10, &RemotePause);
+		ET1310_PhyAccessMiBit(pAdapter,
+				      TRUEPHY_BIT_READ, 5, 11,
+				      &RemoteAsyncPause);
+
+		if ((RemotePause == TRUEPHY_BIT_SET) &&
+		    (RemoteAsyncPause == TRUEPHY_BIT_SET)) {
+			pAdapter->FlowControl = pAdapter->RegistryFlowControl;
+		} else if ((RemotePause == TRUEPHY_BIT_SET) &&
+			   (RemoteAsyncPause == TRUEPHY_BIT_CLEAR)) {
+			if (pAdapter->RegistryFlowControl == Both) {
+				pAdapter->FlowControl = Both;
+			} else {
+				pAdapter->FlowControl = None;
+			}
+		} else if ((RemotePause == TRUEPHY_BIT_CLEAR) &&
+			   (RemoteAsyncPause == TRUEPHY_BIT_CLEAR)) {
+			pAdapter->FlowControl = None;
+		} else {/* if (RemotePause == TRUEPHY_CLEAR_BIT &&
+			       RemoteAsyncPause == TRUEPHY_SET_BIT) */
+			if (pAdapter->RegistryFlowControl == Both) {
+				pAdapter->FlowControl = RxOnly;
+			} else {
+				pAdapter->FlowControl = None;
+			}
+		}
+	}
+}
+
+/**
+ * UpdateMacStatHostCounters - Update the local copy of the statistics
+ * @pAdapter: pointer to the adapter structure
+ */
+void UpdateMacStatHostCounters(struct et131x_adapter *pAdapter)
+{
+	struct _ce_stats_t *stats = &pAdapter->Stats;
+	struct _MAC_STAT_t __iomem *pDevMacStat =
+		&pAdapter->CSRAddress->macStat;
+
+	stats->collisions += readl(&pDevMacStat->TNcl);
+	stats->first_collision += readl(&pDevMacStat->TScl);
+	stats->tx_deferred += readl(&pDevMacStat->TDfr);
+	stats->excessive_collisions += readl(&pDevMacStat->TMcl);
+	stats->late_collisions += readl(&pDevMacStat->TLcl);
+	stats->tx_uflo += readl(&pDevMacStat->TUnd);
+	stats->max_pkt_error += readl(&pDevMacStat->TOvr);
+
+	stats->alignment_err += readl(&pDevMacStat->RAln);
+	stats->crc_err += readl(&pDevMacStat->RCde);
+	stats->norcvbuf += readl(&pDevMacStat->RDrp);
+	stats->rx_ov_flow += readl(&pDevMacStat->ROvr);
+	stats->code_violations += readl(&pDevMacStat->RFcs);
+	stats->length_err += readl(&pDevMacStat->RFlr);
+
+	stats->other_errors += readl(&pDevMacStat->RFrg);
+}
+
+/**
+ * HandleMacStatInterrupt
+ * @pAdapter: pointer to the adapter structure
+ *
+ * One of the MACSTAT counters has wrapped.  Update the local copy of
+ * the statistics held in the adapter structure, checking the "wrap"
+ * bit for each counter.
+ */
+void HandleMacStatInterrupt(struct et131x_adapter *pAdapter)
+{
+	MAC_STAT_REG_1_t Carry1;
+	MAC_STAT_REG_2_t Carry2;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Read the interrupt bits from the register(s).  These are Clear On
+	 * Write.
+	 */
+	Carry1.value = readl(&pAdapter->CSRAddress->macStat.Carry1.value);
+	Carry2.value = readl(&pAdapter->CSRAddress->macStat.Carry2.value);
+
+	writel(Carry1.value, &pAdapter->CSRAddress->macStat.Carry1.value);
+	writel(Carry2.value, &pAdapter->CSRAddress->macStat.Carry2.value);
+
+	/* We need to do update the host copy of all the MAC_STAT counters.
+	 * For each counter, check it's overflow bit.  If the overflow bit is
+	 * set, then increment the host version of the count by one complete
+	 * revolution of the counter.  This routine is called when the counter
+	 * block indicates that one of the counters has wrapped.
+	 */
+	if (Carry1.bits.rfcs) {
+		pAdapter->Stats.code_violations += COUNTER_WRAP_16_BIT;
+	}
+	if (Carry1.bits.raln) {
+		pAdapter->Stats.alignment_err += COUNTER_WRAP_12_BIT;
+	}
+	if (Carry1.bits.rflr) {
+		pAdapter->Stats.length_err += COUNTER_WRAP_16_BIT;
+	}
+	if (Carry1.bits.rfrg) {
+		pAdapter->Stats.other_errors += COUNTER_WRAP_16_BIT;
+	}
+	if (Carry1.bits.rcde) {
+		pAdapter->Stats.crc_err += COUNTER_WRAP_16_BIT;
+	}
+	if (Carry1.bits.rovr) {
+		pAdapter->Stats.rx_ov_flow += COUNTER_WRAP_16_BIT;
+	}
+	if (Carry1.bits.rdrp) {
+		pAdapter->Stats.norcvbuf += COUNTER_WRAP_16_BIT;
+	}
+	if (Carry2.bits.tovr) {
+		pAdapter->Stats.max_pkt_error += COUNTER_WRAP_12_BIT;
+	}
+	if (Carry2.bits.tund) {
+		pAdapter->Stats.tx_uflo += COUNTER_WRAP_12_BIT;
+	}
+	if (Carry2.bits.tscl) {
+		pAdapter->Stats.first_collision += COUNTER_WRAP_12_BIT;
+	}
+	if (Carry2.bits.tdfr) {
+		pAdapter->Stats.tx_deferred += COUNTER_WRAP_12_BIT;
+	}
+	if (Carry2.bits.tmcl) {
+		pAdapter->Stats.excessive_collisions += COUNTER_WRAP_12_BIT;
+	}
+	if (Carry2.bits.tlcl) {
+		pAdapter->Stats.late_collisions += COUNTER_WRAP_12_BIT;
+	}
+	if (Carry2.bits.tncl) {
+		pAdapter->Stats.collisions += COUNTER_WRAP_12_BIT;
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+void SetupDeviceForMulticast(struct et131x_adapter *pAdapter)
+{
+	struct _RXMAC_t __iomem *rxmac = &pAdapter->CSRAddress->rxmac;
+	uint32_t nIndex;
+	uint32_t result;
+	uint32_t hash1 = 0;
+	uint32_t hash2 = 0;
+	uint32_t hash3 = 0;
+	uint32_t hash4 = 0;
+	PM_CSR_t pm_csr;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* If ET131X_PACKET_TYPE_MULTICAST is specified, then we provision
+	 * the multi-cast LIST.  If it is NOT specified, (and "ALL" is not
+	 * specified) then we should pass NO multi-cast addresses to the
+	 * driver.
+	 */
+	if (pAdapter->PacketFilter & ET131X_PACKET_TYPE_MULTICAST) {
+		DBG_VERBOSE(et131x_dbginfo,
+			    "MULTICAST flag is set, MCCount: %d\n",
+			    pAdapter->MCAddressCount);
+
+		/* Loop through our multicast array and set up the device */
+		for (nIndex = 0; nIndex < pAdapter->MCAddressCount; nIndex++) {
+			DBG_VERBOSE(et131x_dbginfo,
+				    "MCList[%d]: %02x:%02x:%02x:%02x:%02x:%02x\n",
+				    nIndex,
+				    pAdapter->MCList[nIndex][0],
+				    pAdapter->MCList[nIndex][1],
+				    pAdapter->MCList[nIndex][2],
+				    pAdapter->MCList[nIndex][3],
+				    pAdapter->MCList[nIndex][4],
+				    pAdapter->MCList[nIndex][5]);
+
+			result = ether_crc(6, pAdapter->MCList[nIndex]);
+
+			result = (result & 0x3F800000) >> 23;
+
+			if (result < 32) {
+				hash1 |= (1 << result);
+			} else if ((31 < result) && (result < 64)) {
+				result -= 32;
+				hash2 |= (1 << result);
+			} else if ((63 < result) && (result < 96)) {
+				result -= 64;
+				hash3 |= (1 << result);
+			} else {
+				result -= 96;
+				hash4 |= (1 << result);
+			}
+		}
+	}
+
+	/* Write out the new hash to the device */
+	pm_csr.value = readl(&pAdapter->CSRAddress->global.pm_csr.value);
+	if (pm_csr.bits.pm_phy_sw_coma == 0) {
+		writel(hash1, &rxmac->multi_hash1);
+		writel(hash2, &rxmac->multi_hash2);
+		writel(hash3, &rxmac->multi_hash3);
+		writel(hash4, &rxmac->multi_hash4);
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+void SetupDeviceForUnicast(struct et131x_adapter *pAdapter)
+{
+	struct _RXMAC_t __iomem *rxmac = &pAdapter->CSRAddress->rxmac;
+	RXMAC_UNI_PF_ADDR1_t uni_pf1;
+	RXMAC_UNI_PF_ADDR2_t uni_pf2;
+	RXMAC_UNI_PF_ADDR3_t uni_pf3;
+	PM_CSR_t pm_csr;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Set up unicast packet filter reg 3 to be the first two octets of
+	 * the MAC address for both address
+	 *
+	 * Set up unicast packet filter reg 2 to be the octets 2 - 5 of the
+	 * MAC address for second address
+	 *
+	 * Set up unicast packet filter reg 3 to be the octets 2 - 5 of the
+	 * MAC address for first address
+	 */
+	uni_pf3.bits.addr1_1 = pAdapter->CurrentAddress[0];
+	uni_pf3.bits.addr1_2 = pAdapter->CurrentAddress[1];
+	uni_pf3.bits.addr2_1 = pAdapter->CurrentAddress[0];
+	uni_pf3.bits.addr2_2 = pAdapter->CurrentAddress[1];
+
+	uni_pf2.bits.addr2_3 = pAdapter->CurrentAddress[2];
+	uni_pf2.bits.addr2_4 = pAdapter->CurrentAddress[3];
+	uni_pf2.bits.addr2_5 = pAdapter->CurrentAddress[4];
+	uni_pf2.bits.addr2_6 = pAdapter->CurrentAddress[5];
+
+	uni_pf1.bits.addr1_3 = pAdapter->CurrentAddress[2];
+	uni_pf1.bits.addr1_4 = pAdapter->CurrentAddress[3];
+	uni_pf1.bits.addr1_5 = pAdapter->CurrentAddress[4];
+	uni_pf1.bits.addr1_6 = pAdapter->CurrentAddress[5];
+
+	pm_csr.value = readl(&pAdapter->CSRAddress->global.pm_csr.value);
+	if (pm_csr.bits.pm_phy_sw_coma == 0) {
+		writel(uni_pf1.value, &rxmac->uni_pf_addr1.value);
+		writel(uni_pf2.value, &rxmac->uni_pf_addr2.value);
+		writel(uni_pf3.value, &rxmac->uni_pf_addr3.value);
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+}
diff --git a/drivers/staging/et131x/et1310_mac.h b/drivers/staging/et131x/et1310_mac.h
new file mode 100644
index 0000000..bd26cd3
--- /dev/null
+++ b/drivers/staging/et131x/et1310_mac.h
@@ -0,0 +1,93 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et1310_mac.h -  Defines, structs, enums, prototypes, etc. pertaining to the
+ *                 MAC.
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#ifndef _ET1310_MAC_H_
+#define _ET1310_MAC_H_
+
+
+#include "et1310_address_map.h"
+
+
+#define COUNTER_WRAP_28_BIT 0x10000000
+#define COUNTER_WRAP_22_BIT 0x400000
+#define COUNTER_WRAP_16_BIT 0x10000
+#define COUNTER_WRAP_12_BIT 0x1000
+
+#define COUNTER_MASK_28_BIT (COUNTER_WRAP_28_BIT - 1)
+#define COUNTER_MASK_22_BIT (COUNTER_WRAP_22_BIT - 1)
+#define COUNTER_MASK_16_BIT (COUNTER_WRAP_16_BIT - 1)
+#define COUNTER_MASK_12_BIT (COUNTER_WRAP_12_BIT - 1)
+
+#define UPDATE_COUNTER(HostCnt,DevCnt) \
+    HostCnt = HostCnt + DevCnt;
+
+/* Forward declaration of the private adapter structure */
+struct et131x_adapter;
+
+void ConfigMACRegs1(struct et131x_adapter *adapter);
+void ConfigMACRegs2(struct et131x_adapter *adapter);
+void ConfigRxMacRegs(struct et131x_adapter *adapter);
+void ConfigTxMacRegs(struct et131x_adapter *adapter);
+void ConfigMacStatRegs(struct et131x_adapter *adapter);
+void ConfigFlowControl(struct et131x_adapter *adapter);
+void UpdateMacStatHostCounters(struct et131x_adapter *adapter);
+void HandleMacStatInterrupt(struct et131x_adapter *adapter);
+void SetupDeviceForMulticast(struct et131x_adapter *adapter);
+void SetupDeviceForUnicast(struct et131x_adapter *adapter);
+
+#endif /* _ET1310_MAC_H_ */
diff --git a/drivers/staging/et131x/et1310_phy.c b/drivers/staging/et131x/et1310_phy.c
new file mode 100644
index 0000000..6c4fa54
--- /dev/null
+++ b/drivers/staging/et131x/et1310_phy.c
@@ -0,0 +1,1281 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et1310_phy.c - Routines for configuring and accessing the PHY
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#include "et131x_version.h"
+#include "et131x_debug.h"
+#include "et131x_defs.h"
+
+#include <linux/pci.h>
+#include <linux/init.h>
+#include <linux/module.h>
+#include <linux/types.h>
+#include <linux/kernel.h>
+
+#include <linux/sched.h>
+#include <linux/ptrace.h>
+#include <linux/slab.h>
+#include <linux/ctype.h>
+#include <linux/string.h>
+#include <linux/timer.h>
+#include <linux/interrupt.h>
+#include <linux/in.h>
+#include <linux/delay.h>
+#include <asm/io.h>
+#include <asm/system.h>
+#include <asm/bitops.h>
+
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/skbuff.h>
+#include <linux/if_arp.h>
+#include <linux/ioport.h>
+#include <linux/random.h>
+#include <linux/delay.h>
+
+#include "et1310_phy.h"
+#include "et1310_pm.h"
+#include "et1310_jagcore.h"
+
+#include "et131x_adapter.h"
+#include "et131x_netdev.h"
+#include "et131x_initpci.h"
+
+#include "et1310_address_map.h"
+#include "et1310_jagcore.h"
+#include "et1310_tx.h"
+#include "et1310_rx.h"
+#include "et1310_mac.h"
+
+/* Data for debugging facilities */
+#ifdef CONFIG_ET131X_DEBUG
+extern dbg_info_t *et131x_dbginfo;
+#endif /* CONFIG_ET131X_DEBUG */
+
+/* Prototypes for functions with local scope */
+static int et131x_xcvr_init(struct et131x_adapter *adapter);
+
+/**
+ * PhyMiRead - Read from the PHY through the MII Interface on the MAC
+ * @adapter: pointer to our private adapter structure
+ * @xcvrAddr: the address of the transciever
+ * @xcvrReg: the register to read
+ * @value: pointer to a 16-bit value in which the value will be stored
+ *
+ * Returns 0 on success, errno on failure (as defined in errno.h)
+ */
+int PhyMiRead(struct et131x_adapter *adapter, uint8_t xcvrAddr,
+	      uint8_t xcvrReg, uint16_t *value)
+{
+	struct _MAC_t __iomem *mac = &adapter->CSRAddress->mac;
+	int status = 0;
+	uint32_t delay;
+	MII_MGMT_ADDR_t miiAddr;
+	MII_MGMT_CMD_t miiCmd;
+	MII_MGMT_INDICATOR_t miiIndicator;
+
+	/* Save a local copy of the registers we are dealing with so we can
+	 * set them back
+	 */
+	miiAddr.value = readl(&mac->mii_mgmt_addr.value);
+	miiCmd.value = readl(&mac->mii_mgmt_cmd.value);
+
+	/* Stop the current operation */
+	writel(0, &mac->mii_mgmt_cmd.value);
+
+	/* Set up the register we need to read from on the correct PHY */
+	{
+		MII_MGMT_ADDR_t mii_mgmt_addr = { 0 };
+
+		mii_mgmt_addr.bits.phy_addr = xcvrAddr;
+		mii_mgmt_addr.bits.reg_addr = xcvrReg;
+		writel(mii_mgmt_addr.value, &mac->mii_mgmt_addr.value);
+	}
+
+	/* Kick the read cycle off */
+	delay = 0;
+
+	writel(0x1, &mac->mii_mgmt_cmd.value);
+
+	do {
+		udelay(50);
+		delay++;
+		miiIndicator.value = readl(&mac->mii_mgmt_indicator.value);
+	} while ((miiIndicator.bits.not_valid || miiIndicator.bits.busy) &&
+		 delay < 50);
+
+	/* If we hit the max delay, we could not read the register */
+	if (delay >= 50) {
+		DBG_WARNING(et131x_dbginfo,
+			    "xcvrReg 0x%08x could not be read\n", xcvrReg);
+		DBG_WARNING(et131x_dbginfo, "status is  0x%08x\n",
+			    miiIndicator.value);
+
+		status = -EIO;
+	}
+
+	/* If we hit here we were able to read the register and we need to
+	 * return the value to the caller
+	 */
+	/* TODO: make this stuff a simple readw()?! */
+	{
+		MII_MGMT_STAT_t mii_mgmt_stat;
+
+		mii_mgmt_stat.value = readl(&mac->mii_mgmt_stat.value);
+		*value = (uint16_t) mii_mgmt_stat.bits.phy_stat;
+	}
+
+	/* Stop the read operation */
+	writel(0, &mac->mii_mgmt_cmd.value);
+
+	DBG_VERBOSE(et131x_dbginfo, "  xcvr_addr = 0x%02x, "
+		    "xcvr_reg  = 0x%02x, "
+		    "value     = 0x%04x.\n", xcvrAddr, xcvrReg, *value);
+
+	/* set the registers we touched back to the state at which we entered
+	 * this function
+	 */
+	writel(miiAddr.value, &mac->mii_mgmt_addr.value);
+	writel(miiCmd.value, &mac->mii_mgmt_cmd.value);
+
+	return status;
+}
+
+/**
+ * MiWrite - Write to a PHY register through the MII interface of the MAC
+ * @adapter: pointer to our private adapter structure
+ * @xcvrReg: the register to read
+ * @value: 16-bit value to write
+ *
+ * Return 0 on success, errno on failure (as defined in errno.h)
+ */
+int MiWrite(struct et131x_adapter *adapter, uint8_t xcvrReg, uint16_t value)
+{
+	struct _MAC_t __iomem *mac = &adapter->CSRAddress->mac;
+	int status = 0;
+	uint8_t xcvrAddr = adapter->Stats.xcvr_addr;
+	uint32_t delay;
+	MII_MGMT_ADDR_t miiAddr;
+	MII_MGMT_CMD_t miiCmd;
+	MII_MGMT_INDICATOR_t miiIndicator;
+
+	/* Save a local copy of the registers we are dealing with so we can
+	 * set them back
+	 */
+	miiAddr.value = readl(&mac->mii_mgmt_addr.value);
+	miiCmd.value = readl(&mac->mii_mgmt_cmd.value);
+
+	/* Stop the current operation */
+	writel(0, &mac->mii_mgmt_cmd.value);
+
+	/* Set up the register we need to write to on the correct PHY */
+	{
+		MII_MGMT_ADDR_t mii_mgmt_addr;
+
+		mii_mgmt_addr.bits.phy_addr = xcvrAddr;
+		mii_mgmt_addr.bits.reg_addr = xcvrReg;
+		writel(mii_mgmt_addr.value, &mac->mii_mgmt_addr.value);
+	}
+
+	/* Add the value to write to the registers to the mac */
+	writel(value, &mac->mii_mgmt_ctrl.value);
+	delay = 0;
+
+	do {
+		udelay(50);
+		delay++;
+		miiIndicator.value = readl(&mac->mii_mgmt_indicator.value);
+	} while (miiIndicator.bits.busy && delay < 100);
+
+	/* If we hit the max delay, we could not write the register */
+	if (delay == 100) {
+		uint16_t TempValue;
+
+		DBG_WARNING(et131x_dbginfo,
+			    "xcvrReg 0x%08x could not be written", xcvrReg);
+		DBG_WARNING(et131x_dbginfo, "status is  0x%08x\n",
+			    miiIndicator.value);
+		DBG_WARNING(et131x_dbginfo, "command is  0x%08x\n",
+			    readl(&mac->mii_mgmt_cmd.value));
+
+		MiRead(adapter, xcvrReg, &TempValue);
+
+		status = -EIO;
+	}
+
+	/* Stop the write operation */
+	writel(0, &mac->mii_mgmt_cmd.value);
+
+	/* set the registers we touched back to the state at which we entered
+         * this function
+         */
+	writel(miiAddr.value, &mac->mii_mgmt_addr.value);
+	writel(miiCmd.value, &mac->mii_mgmt_cmd.value);
+
+	DBG_VERBOSE(et131x_dbginfo, " xcvr_addr = 0x%02x, "
+		    "xcvr_reg  = 0x%02x, "
+		    "value     = 0x%04x.\n", xcvrAddr, xcvrReg, value);
+
+	return status;
+}
+
+/**
+ * et131x_xcvr_find - Find the PHY ID
+ * @adapter: pointer to our private adapter structure
+ *
+ * Returns 0 on success, errno on failure (as defined in errno.h)
+ */
+int et131x_xcvr_find(struct et131x_adapter *adapter)
+{
+	int status = -ENODEV;
+	uint8_t xcvr_addr;
+	MI_IDR1_t idr1;
+	MI_IDR2_t idr2;
+	uint32_t xcvr_id;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* We need to get xcvr id and address we just get the first one */
+	for (xcvr_addr = 0; xcvr_addr < 32; xcvr_addr++) {
+		/* Read the ID from the PHY */
+		PhyMiRead(adapter, xcvr_addr,
+			  (uint8_t) offsetof(MI_REGS_t, idr1),
+			  &idr1.value);
+		PhyMiRead(adapter, xcvr_addr,
+			  (uint8_t) offsetof(MI_REGS_t, idr2),
+			  &idr2.value);
+
+		xcvr_id = (uint32_t) ((idr1.value << 16) | idr2.value);
+
+		if ((idr1.value != 0) && (idr1.value != 0xffff)) {
+			DBG_TRACE(et131x_dbginfo,
+				  "Xcvr addr: 0x%02x\tXcvr_id: 0x%08x\n",
+				  xcvr_addr, xcvr_id);
+
+			adapter->Stats.xcvr_id = xcvr_id;
+			adapter->Stats.xcvr_addr = xcvr_addr;
+
+			status = 0;
+			break;
+		}
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+	return status;
+}
+
+/**
+ * et131x_setphy_normal - Set PHY for normal operation.
+ * @adapter: pointer to our private adapter structure
+ *
+ * Used by Power Management to force the PHY into 10 Base T half-duplex mode,
+ * when going to D3 in WOL mode. Also used during initialization to set the
+ * PHY for normal operation.
+ */
+int et131x_setphy_normal(struct et131x_adapter *adapter)
+{
+	int status;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Make sure the PHY is powered up */
+	ET1310_PhyPowerDown(adapter, 0);
+	status = et131x_xcvr_init(adapter);
+
+	DBG_LEAVE(et131x_dbginfo);
+	return status;
+}
+
+/**
+ * et131x_xcvr_init - Init the phy if we are setting it into force mode
+ * @adapter: pointer to our private adapter structure
+ *
+ * Returns 0 on success, errno on failure (as defined in errno.h)
+ */
+static int et131x_xcvr_init(struct et131x_adapter *adapter)
+{
+	int status = 0;
+	MI_IMR_t imr;
+	MI_ISR_t isr;
+	MI_LCR2_t lcr2;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Zero out the adapter structure variable representing BMSR */
+	adapter->Bmsr.value = 0;
+
+	MiRead(adapter, (uint8_t) offsetof(MI_REGS_t, isr), &isr.value);
+
+	MiRead(adapter, (uint8_t) offsetof(MI_REGS_t, imr), &imr.value);
+
+	/* Set the link status interrupt only.  Bad behavior when link status
+	 * and auto neg are set, we run into a nested interrupt problem
+	 */
+	imr.bits.int_en = 0x1;
+	imr.bits.link_status = 0x1;
+	imr.bits.autoneg_status = 0x1;
+
+	MiWrite(adapter, (uint8_t) offsetof(MI_REGS_t, imr), imr.value);
+
+	/* Set the LED behavior such that LED 1 indicates speed (off =
+	 * 10Mbits, blink = 100Mbits, on = 1000Mbits) and LED 2 indicates
+	 * link and activity (on for link, blink off for activity).
+	 *
+	 * NOTE: Some customizations have been added here for specific
+	 * vendors; The LED behavior is now determined by vendor data in the
+	 * EEPROM. However, the above description is the default.
+	 */
+	if ((adapter->eepromData[1] & 0x4) == 0) {
+		MiRead(adapter, (uint8_t) offsetof(MI_REGS_t, lcr2),
+		       &lcr2.value);
+		if ((adapter->eepromData[1] & 0x8) == 0)
+			lcr2.bits.led_tx_rx = 0x3;
+		else
+			lcr2.bits.led_tx_rx = 0x4;
+		lcr2.bits.led_link = 0xa;
+		MiWrite(adapter, (uint8_t) offsetof(MI_REGS_t, lcr2),
+			lcr2.value);
+	}
+
+	/* Determine if we need to go into a force mode and set it */
+	if (adapter->AiForceSpeed == 0 && adapter->AiForceDpx == 0) {
+		if ((adapter->RegistryFlowControl == TxOnly) ||
+		    (adapter->RegistryFlowControl == Both)) {
+			ET1310_PhyAccessMiBit(adapter,
+					      TRUEPHY_BIT_SET, 4, 11, NULL);
+		} else {
+			ET1310_PhyAccessMiBit(adapter,
+					      TRUEPHY_BIT_CLEAR, 4, 11, NULL);
+		}
+
+		if (adapter->RegistryFlowControl == Both) {
+			ET1310_PhyAccessMiBit(adapter,
+					      TRUEPHY_BIT_SET, 4, 10, NULL);
+		} else {
+			ET1310_PhyAccessMiBit(adapter,
+					      TRUEPHY_BIT_CLEAR, 4, 10, NULL);
+		}
+
+		/* Set the phy to autonegotiation */
+		ET1310_PhyAutoNeg(adapter, true);
+
+		/* NOTE - Do we need this? */
+		ET1310_PhyAccessMiBit(adapter, TRUEPHY_BIT_SET, 0, 9, NULL);
+
+		DBG_LEAVE(et131x_dbginfo);
+		return status;
+	} else {
+		ET1310_PhyAutoNeg(adapter, false);
+
+		/* Set to the correct force mode. */
+		if (adapter->AiForceDpx != 1) {
+			if ((adapter->RegistryFlowControl == TxOnly) ||
+			    (adapter->RegistryFlowControl == Both)) {
+				ET1310_PhyAccessMiBit(adapter,
+						      TRUEPHY_BIT_SET, 4, 11,
+						      NULL);
+			} else {
+				ET1310_PhyAccessMiBit(adapter,
+						      TRUEPHY_BIT_CLEAR, 4, 11,
+						      NULL);
+			}
+
+			if (adapter->RegistryFlowControl == Both) {
+				ET1310_PhyAccessMiBit(adapter,
+						      TRUEPHY_BIT_SET, 4, 10,
+						      NULL);
+			} else {
+				ET1310_PhyAccessMiBit(adapter,
+						      TRUEPHY_BIT_CLEAR, 4, 10,
+						      NULL);
+			}
+		} else {
+			ET1310_PhyAccessMiBit(adapter,
+					      TRUEPHY_BIT_CLEAR, 4, 10, NULL);
+			ET1310_PhyAccessMiBit(adapter,
+					      TRUEPHY_BIT_CLEAR, 4, 11, NULL);
+		}
+
+		switch (adapter->AiForceSpeed) {
+		case 10:
+			if (adapter->AiForceDpx == 1) {
+				TPAL_SetPhy10HalfDuplex(adapter);
+			} else if (adapter->AiForceDpx == 2) {
+				TPAL_SetPhy10FullDuplex(adapter);
+			} else {
+				TPAL_SetPhy10Force(adapter);
+			}
+			break;
+		case 100:
+			if (adapter->AiForceDpx == 1) {
+				TPAL_SetPhy100HalfDuplex(adapter);
+			} else if (adapter->AiForceDpx == 2) {
+				TPAL_SetPhy100FullDuplex(adapter);
+			} else {
+				TPAL_SetPhy100Force(adapter);
+			}
+			break;
+		case 1000:
+			TPAL_SetPhy1000FullDuplex(adapter);
+			break;
+		}
+
+		DBG_LEAVE(et131x_dbginfo);
+		return status;
+	}
+}
+
+void et131x_Mii_check(struct et131x_adapter *pAdapter,
+		      MI_BMSR_t bmsr, MI_BMSR_t bmsr_ints)
+{
+	uint8_t ucLinkStatus;
+	uint32_t uiAutoNegStatus;
+	uint32_t uiSpeed;
+	uint32_t uiDuplex;
+	uint32_t uiMdiMdix;
+	uint32_t uiMasterSlave;
+	uint32_t uiPolarity;
+	unsigned long lockflags;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	if (bmsr_ints.bits.link_status) {
+		if (bmsr.bits.link_status) {
+			pAdapter->PoMgmt.TransPhyComaModeOnBoot = 20;
+
+			/* Update our state variables and indicate the
+			 * connected state
+			 */
+			spin_lock_irqsave(&pAdapter->Lock, lockflags);
+
+			pAdapter->MediaState = NETIF_STATUS_MEDIA_CONNECT;
+			MP_CLEAR_FLAG(pAdapter, fMP_ADAPTER_LINK_DETECTION);
+
+			spin_unlock_irqrestore(&pAdapter->Lock, lockflags);
+
+			/* Don't indicate state if we're in loopback mode */
+			if (pAdapter->RegistryPhyLoopbk == false) {
+				netif_carrier_on(pAdapter->netdev);
+			}
+		} else {
+			DBG_WARNING(et131x_dbginfo,
+				    "Link down cable problem\n");
+
+			if (pAdapter->uiLinkSpeed == TRUEPHY_SPEED_10MBPS) {
+				// NOTE - Is there a way to query this without TruePHY?
+				// && TRU_QueryCoreType(pAdapter->hTruePhy, 0) == EMI_TRUEPHY_A13O) {
+				uint16_t Register18;
+
+				MiRead(pAdapter, 0x12, &Register18);
+				MiWrite(pAdapter, 0x12, Register18 | 0x4);
+				MiWrite(pAdapter, 0x10, Register18 | 0x8402);
+				MiWrite(pAdapter, 0x11, Register18 | 511);
+				MiWrite(pAdapter, 0x12, Register18);
+			}
+
+			/* For the first N seconds of life, we are in "link
+			 * detection" When we are in this state, we should
+			 * only report "connected". When the LinkDetection
+			 * Timer expires, we can report disconnected (handled
+			 * in the LinkDetectionDPC).
+			 */
+			if ((MP_IS_FLAG_CLEAR
+			     (pAdapter, fMP_ADAPTER_LINK_DETECTION))
+			    || (pAdapter->MediaState ==
+				NETIF_STATUS_MEDIA_DISCONNECT)) {
+				spin_lock_irqsave(&pAdapter->Lock, lockflags);
+				pAdapter->MediaState =
+				    NETIF_STATUS_MEDIA_DISCONNECT;
+				spin_unlock_irqrestore(&pAdapter->Lock,
+						       lockflags);
+
+				/* Only indicate state if we're in loopback
+				 * mode
+				 */
+				if (pAdapter->RegistryPhyLoopbk == false) {
+					netif_carrier_off(pAdapter->netdev);
+				}
+			}
+
+			pAdapter->uiLinkSpeed = 0;
+			pAdapter->uiDuplexMode = 0;
+
+			/* Free the packets being actively sent & stopped */
+			et131x_free_busy_send_packets(pAdapter);
+
+			/* Re-initialize the send structures */
+			et131x_init_send(pAdapter);
+
+			/* Reset the RFD list and re-start RU */
+			et131x_reset_recv(pAdapter);
+
+			/*
+			 * Bring the device back to the state it was during
+			 * init prior to autonegotiation being complete. This
+			 * way, when we get the auto-neg complete interrupt,
+			 * we can complete init by calling ConfigMacREGS2.
+			 */
+			et131x_soft_reset(pAdapter);
+
+			/* Setup ET1310 as per the documentation */
+			et131x_adapter_setup(pAdapter);
+
+			/* Setup the PHY into coma mode until the cable is
+			 * plugged back in
+			 */
+			if (pAdapter->RegistryPhyComa == 1) {
+				EnablePhyComa(pAdapter);
+			}
+		}
+	}
+
+	if (bmsr_ints.bits.auto_neg_complete ||
+	    ((pAdapter->AiForceDpx == 3) && (bmsr_ints.bits.link_status))) {
+		if (bmsr.bits.auto_neg_complete || (pAdapter->AiForceDpx == 3)) {
+			ET1310_PhyLinkStatus(pAdapter,
+					     &ucLinkStatus, &uiAutoNegStatus,
+					     &uiSpeed, &uiDuplex, &uiMdiMdix,
+					     &uiMasterSlave, &uiPolarity);
+
+			pAdapter->uiLinkSpeed = uiSpeed;
+			pAdapter->uiDuplexMode = uiDuplex;
+
+			DBG_TRACE(et131x_dbginfo,
+				  "pAdapter->uiLinkSpeed 0x%04x, pAdapter->uiDuplex 0x%08x\n",
+				  pAdapter->uiLinkSpeed,
+				  pAdapter->uiDuplexMode);
+
+			pAdapter->PoMgmt.TransPhyComaModeOnBoot = 20;
+
+			if (pAdapter->uiLinkSpeed == TRUEPHY_SPEED_10MBPS) {
+				// NOTE - Is there a way to query this without TruePHY?
+				// && TRU_QueryCoreType(pAdapter->hTruePhy, 0) == EMI_TRUEPHY_A13O) {
+				uint16_t Register18;
+
+				MiRead(pAdapter, 0x12, &Register18);
+				MiWrite(pAdapter, 0x12, Register18 | 0x4);
+				MiWrite(pAdapter, 0x10, Register18 | 0x8402);
+				MiWrite(pAdapter, 0x11, Register18 | 511);
+				MiWrite(pAdapter, 0x12, Register18);
+			}
+
+			ConfigFlowControl(pAdapter);
+
+			if ((pAdapter->uiLinkSpeed == TRUEPHY_SPEED_1000MBPS) &&
+			    (pAdapter->RegistryJumboPacket > 2048))
+			{
+				ET1310_PhyAndOrReg(pAdapter, 0x16, 0xcfff,
+						   0x2000);
+			}
+
+			SetRxDmaTimer(pAdapter);
+			ConfigMACRegs2(pAdapter);
+		}
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * TPAL_SetPhy10HalfDuplex - Force the phy into 10 Base T Half Duplex mode.
+ * @pAdapter: pointer to the adapter structure
+ *
+ * Also sets the MAC so it is syncd up properly
+ */
+void TPAL_SetPhy10HalfDuplex(struct et131x_adapter *pAdapter)
+{
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Power down PHY */
+	ET1310_PhyPowerDown(pAdapter, 1);
+
+	/* First we need to turn off all other advertisement */
+	ET1310_PhyAdvertise1000BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+
+	ET1310_PhyAdvertise100BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+
+	/* Set our advertise values accordingly */
+	ET1310_PhyAdvertise10BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_HALF);
+
+	/* Power up PHY */
+	ET1310_PhyPowerDown(pAdapter, 0);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * TPAL_SetPhy10FullDuplex - Force the phy into 10 Base T Full Duplex mode.
+ * @pAdapter: pointer to the adapter structure
+ *
+ * Also sets the MAC so it is syncd up properly
+ */
+void TPAL_SetPhy10FullDuplex(struct et131x_adapter *pAdapter)
+{
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Power down PHY */
+	ET1310_PhyPowerDown(pAdapter, 1);
+
+	/* First we need to turn off all other advertisement */
+	ET1310_PhyAdvertise1000BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+
+	ET1310_PhyAdvertise100BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+
+	/* Set our advertise values accordingly */
+	ET1310_PhyAdvertise10BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_FULL);
+
+	/* Power up PHY */
+	ET1310_PhyPowerDown(pAdapter, 0);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * TPAL_SetPhy10Force - Force Base-T FD mode WITHOUT using autonegotiation
+ * @pAdapter: pointer to the adapter structure
+ */
+void TPAL_SetPhy10Force(struct et131x_adapter *pAdapter)
+{
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Power down PHY */
+	ET1310_PhyPowerDown(pAdapter, 1);
+
+	/* Disable autoneg */
+	ET1310_PhyAutoNeg(pAdapter, false);
+
+	/* Disable all advertisement */
+	ET1310_PhyAdvertise1000BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+	ET1310_PhyAdvertise10BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+	ET1310_PhyAdvertise100BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+
+	/* Force 10 Mbps */
+	ET1310_PhySpeedSelect(pAdapter, TRUEPHY_SPEED_10MBPS);
+
+	/* Force Full duplex */
+	ET1310_PhyDuplexMode(pAdapter, TRUEPHY_DUPLEX_FULL);
+
+	/* Power up PHY */
+	ET1310_PhyPowerDown(pAdapter, 0);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * TPAL_SetPhy100HalfDuplex - Force 100 Base T Half Duplex mode.
+ * @pAdapter: pointer to the adapter structure
+ *
+ * Also sets the MAC so it is syncd up properly.
+ */
+void TPAL_SetPhy100HalfDuplex(struct et131x_adapter *pAdapter)
+{
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Power down PHY */
+	ET1310_PhyPowerDown(pAdapter, 1);
+
+	/* first we need to turn off all other advertisement */
+	ET1310_PhyAdvertise1000BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+
+	ET1310_PhyAdvertise10BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+
+	/* Set our advertise values accordingly */
+	ET1310_PhyAdvertise100BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_HALF);
+
+	/* Set speed */
+	ET1310_PhySpeedSelect(pAdapter, TRUEPHY_SPEED_100MBPS);
+
+	/* Power up PHY */
+	ET1310_PhyPowerDown(pAdapter, 0);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * TPAL_SetPhy100FullDuplex - Force 100 Base T Full Duplex mode.
+ * @pAdapter: pointer to the adapter structure
+ *
+ * Also sets the MAC so it is syncd up properly
+ */
+void TPAL_SetPhy100FullDuplex(struct et131x_adapter *pAdapter)
+{
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Power down PHY */
+	ET1310_PhyPowerDown(pAdapter, 1);
+
+	/* First we need to turn off all other advertisement */
+	ET1310_PhyAdvertise1000BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+
+	ET1310_PhyAdvertise10BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+
+	/* Set our advertise values accordingly */
+	ET1310_PhyAdvertise100BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_FULL);
+
+	/* Power up PHY */
+	ET1310_PhyPowerDown(pAdapter, 0);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * TPAL_SetPhy100Force - Force 100 BaseT FD mode WITHOUT using autonegotiation
+ * @pAdapter: pointer to the adapter structure
+ */
+void TPAL_SetPhy100Force(struct et131x_adapter *pAdapter)
+{
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Power down PHY */
+	ET1310_PhyPowerDown(pAdapter, 1);
+
+	/* Disable autoneg */
+	ET1310_PhyAutoNeg(pAdapter, false);
+
+	/* Disable all advertisement */
+	ET1310_PhyAdvertise1000BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+	ET1310_PhyAdvertise10BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+	ET1310_PhyAdvertise100BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+
+	/* Force 100 Mbps */
+	ET1310_PhySpeedSelect(pAdapter, TRUEPHY_SPEED_100MBPS);
+
+	/* Force Full duplex */
+	ET1310_PhyDuplexMode(pAdapter, TRUEPHY_DUPLEX_FULL);
+
+	/* Power up PHY */
+	ET1310_PhyPowerDown(pAdapter, 0);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * TPAL_SetPhy1000FullDuplex - Force 1000 Base T Full Duplex mode
+ * @pAdapter: pointer to the adapter structure
+ *
+ * Also sets the MAC so it is syncd up properly.
+ */
+void TPAL_SetPhy1000FullDuplex(struct et131x_adapter *pAdapter)
+{
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Power down PHY */
+	ET1310_PhyPowerDown(pAdapter, 1);
+
+	/* first we need to turn off all other advertisement */
+	ET1310_PhyAdvertise100BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+
+	ET1310_PhyAdvertise10BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+
+	/* set our advertise values accordingly */
+	ET1310_PhyAdvertise1000BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_FULL);
+
+	/* power up PHY */
+	ET1310_PhyPowerDown(pAdapter, 0);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * TPAL_SetPhyAutoNeg - Set phy to autonegotiation mode.
+ * @pAdapter: pointer to the adapter structure
+ */
+void TPAL_SetPhyAutoNeg(struct et131x_adapter *pAdapter)
+{
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Power down PHY */
+	ET1310_PhyPowerDown(pAdapter, 1);
+
+	/* Turn on advertisement of all capabilities */
+	ET1310_PhyAdvertise10BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_BOTH);
+
+	ET1310_PhyAdvertise100BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_BOTH);
+
+	if (pAdapter->DeviceID != ET131X_PCI_DEVICE_ID_FAST) {
+		ET1310_PhyAdvertise1000BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_FULL);
+	} else {
+		ET1310_PhyAdvertise1000BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+	}
+
+	/* Make sure auto-neg is ON (it is disabled in FORCE modes) */
+	ET1310_PhyAutoNeg(pAdapter, true);
+
+	/* Power up PHY */
+	ET1310_PhyPowerDown(pAdapter, 0);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+
+/*
+ * The routines which follow provide low-level access to the PHY, and are used
+ * primarily by the routines above (although there are a few places elsewhere
+ * in the driver where this level of access is required).
+ */
+
+static const uint16_t ConfigPhy[25][2] = {
+	/* Reg      Value      Register */
+	/* Addr                         */
+	{0x880B, 0x0926},	/* AfeIfCreg4B1000Msbs */
+	{0x880C, 0x0926},	/* AfeIfCreg4B100Msbs */
+	{0x880D, 0x0926},	/* AfeIfCreg4B10Msbs */
+
+	{0x880E, 0xB4D3},	/* AfeIfCreg4B1000Lsbs */
+	{0x880F, 0xB4D3},	/* AfeIfCreg4B100Lsbs */
+	{0x8810, 0xB4D3},	/* AfeIfCreg4B10Lsbs */
+
+	{0x8805, 0xB03E},	/* AfeIfCreg3B1000Msbs */
+	{0x8806, 0xB03E},	/* AfeIfCreg3B100Msbs */
+	{0x8807, 0xFF00},	/* AfeIfCreg3B10Msbs */
+
+	{0x8808, 0xE090},	/* AfeIfCreg3B1000Lsbs */
+	{0x8809, 0xE110},	/* AfeIfCreg3B100Lsbs */
+	{0x880A, 0x0000},	/* AfeIfCreg3B10Lsbs */
+
+	{0x300D, 1},		/* DisableNorm */
+
+	{0x280C, 0x0180},	/* LinkHoldEnd */
+
+	{0x1C21, 0x0002},	/* AlphaM */
+
+	{0x3821, 6},		/* FfeLkgTx0 */
+	{0x381D, 1},		/* FfeLkg1g4 */
+	{0x381E, 1},		/* FfeLkg1g5 */
+	{0x381F, 1},		/* FfeLkg1g6 */
+	{0x3820, 1},		/* FfeLkg1g7 */
+
+	{0x8402, 0x01F0},	/* Btinact */
+	{0x800E, 20},		/* LftrainTime */
+	{0x800F, 24},		/* DvguardTime */
+	{0x8010, 46},		/* IdlguardTime */
+
+	{0, 0}
+
+};
+
+/* condensed version of the phy initialization routine */
+void ET1310_PhyInit(struct et131x_adapter *pAdapter)
+{
+	uint16_t usData, usIndex;
+
+	if (pAdapter == NULL) {
+		return;
+	}
+
+	// get the identity (again ?)
+	MiRead(pAdapter, PHY_ID_1, &usData);
+	MiRead(pAdapter, PHY_ID_2, &usData);
+
+	// what does this do/achieve ?
+	MiRead(pAdapter, PHY_MPHY_CONTROL_REG, &usData);	// should read 0002
+	MiWrite(pAdapter, PHY_MPHY_CONTROL_REG,	0x0006);
+
+	// read modem register 0402, should I do something with the return data ?
+	MiWrite(pAdapter, PHY_INDEX_REG, 0x0402);
+	MiRead(pAdapter, PHY_DATA_REG, &usData);
+
+	// what does this do/achieve ?
+	MiWrite(pAdapter, PHY_MPHY_CONTROL_REG, 0x0002);
+
+	// get the identity (again ?)
+	MiRead(pAdapter, PHY_ID_1, &usData);
+	MiRead(pAdapter, PHY_ID_2, &usData);
+
+	// what does this achieve ?
+	MiRead(pAdapter, PHY_MPHY_CONTROL_REG, &usData);	// should read 0002
+	MiWrite(pAdapter, PHY_MPHY_CONTROL_REG, 0x0006);
+
+	// read modem register 0402, should I do something with the return data?
+	MiWrite(pAdapter, PHY_INDEX_REG, 0x0402);
+	MiRead(pAdapter, PHY_DATA_REG, &usData);
+
+	MiWrite(pAdapter, PHY_MPHY_CONTROL_REG, 0x0002);
+
+	// what does this achieve (should return 0x1040)
+	MiRead(pAdapter, PHY_CONTROL, &usData);
+	MiRead(pAdapter, PHY_MPHY_CONTROL_REG, &usData);	// should read 0002
+	MiWrite(pAdapter, PHY_CONTROL, 0x1840);
+
+	MiWrite(pAdapter, PHY_MPHY_CONTROL_REG, 0x0007);
+
+	// here the writing of the array starts....
+	usIndex = 0;
+	while (ConfigPhy[usIndex][0] != 0x0000) {
+		// write value
+		MiWrite(pAdapter, PHY_INDEX_REG, ConfigPhy[usIndex][0]);
+		MiWrite(pAdapter, PHY_DATA_REG, ConfigPhy[usIndex][1]);
+
+		// read it back
+		MiWrite(pAdapter, PHY_INDEX_REG, ConfigPhy[usIndex][0]);
+		MiRead(pAdapter, PHY_DATA_REG, &usData);
+
+		// do a check on the value read back ?
+		usIndex++;
+	}
+	// here the writing of the array ends...
+
+	MiRead(pAdapter, PHY_CONTROL, &usData);	// 0x1840
+	MiRead(pAdapter, PHY_MPHY_CONTROL_REG, &usData);	// should read 0007
+	MiWrite(pAdapter, PHY_CONTROL, 0x1040);
+	MiWrite(pAdapter, PHY_MPHY_CONTROL_REG, 0x0002);
+}
+
+void ET1310_PhyReset(struct et131x_adapter *pAdapter)
+{
+	MiWrite(pAdapter, PHY_CONTROL, 0x8000);
+}
+
+void ET1310_PhyPowerDown(struct et131x_adapter *pAdapter, bool down)
+{
+	uint16_t usData;
+
+	MiRead(pAdapter, PHY_CONTROL, &usData);
+
+	if (down == false) {
+		// Power UP
+		usData &= ~0x0800;
+		MiWrite(pAdapter, PHY_CONTROL, usData);
+	} else {
+		// Power DOWN
+		usData |= 0x0800;
+		MiWrite(pAdapter, PHY_CONTROL, usData);
+	}
+}
+
+void ET1310_PhyAutoNeg(struct et131x_adapter *pAdapter, bool enable)
+{
+	uint16_t usData;
+
+	MiRead(pAdapter, PHY_CONTROL, &usData);
+
+	if (enable == true) {
+		// Autonegotiation ON
+		usData |= 0x1000;
+		MiWrite(pAdapter, PHY_CONTROL, usData);
+	} else {
+		// Autonegotiation OFF
+		usData &= ~0x1000;
+		MiWrite(pAdapter, PHY_CONTROL, usData);
+	}
+}
+
+void ET1310_PhyDuplexMode(struct et131x_adapter *pAdapter, uint16_t duplex)
+{
+	uint16_t usData;
+
+	MiRead(pAdapter, PHY_CONTROL, &usData);
+
+	if (duplex == TRUEPHY_DUPLEX_FULL) {
+		// Set Full Duplex
+		usData |= 0x100;
+		MiWrite(pAdapter, PHY_CONTROL, usData);
+	} else {
+		// Set Half Duplex
+		usData &= ~0x100;
+		MiWrite(pAdapter, PHY_CONTROL, usData);
+	}
+}
+
+void ET1310_PhySpeedSelect(struct et131x_adapter *pAdapter, uint16_t speed)
+{
+	uint16_t usData;
+
+	// Read the PHY control register
+	MiRead(pAdapter, PHY_CONTROL, &usData);
+
+	// Clear all Speed settings (Bits 6, 13)
+	usData &= ~0x2040;
+
+	// Reset the speed bits based on user selection
+	switch (speed) {
+	case TRUEPHY_SPEED_10MBPS:
+		// Bits already cleared above, do nothing
+		break;
+
+	case TRUEPHY_SPEED_100MBPS:
+		// 100M == Set bit 13
+		usData |= 0x2000;
+		break;
+
+	case TRUEPHY_SPEED_1000MBPS:
+	default:
+		usData |= 0x0040;
+		break;
+	}
+
+	// Write back the new speed
+	MiWrite(pAdapter, PHY_CONTROL, usData);
+}
+
+void ET1310_PhyAdvertise1000BaseT(struct et131x_adapter *pAdapter,
+				  uint16_t duplex)
+{
+	uint16_t usData;
+
+	// Read the PHY 1000 Base-T Control Register
+	MiRead(pAdapter, PHY_1000_CONTROL, &usData);
+
+	// Clear Bits 8,9
+	usData &= ~0x0300;
+
+	switch (duplex) {
+	case TRUEPHY_ADV_DUPLEX_NONE:
+		// Duplex already cleared, do nothing
+		break;
+
+	case TRUEPHY_ADV_DUPLEX_FULL:
+		// Set Bit 9
+		usData |= 0x0200;
+		break;
+
+	case TRUEPHY_ADV_DUPLEX_HALF:
+		// Set Bit 8
+		usData |= 0x0100;
+		break;
+
+	case TRUEPHY_ADV_DUPLEX_BOTH:
+	default:
+		usData |= 0x0300;
+		break;
+	}
+
+	// Write back advertisement
+	MiWrite(pAdapter, PHY_1000_CONTROL, usData);
+}
+
+void ET1310_PhyAdvertise100BaseT(struct et131x_adapter *pAdapter,
+				 uint16_t duplex)
+{
+	uint16_t usData;
+
+	// Read the Autonegotiation Register (10/100)
+	MiRead(pAdapter, PHY_AUTO_ADVERTISEMENT, &usData);
+
+	// Clear bits 7,8
+	usData &= ~0x0180;
+
+	switch (duplex) {
+	case TRUEPHY_ADV_DUPLEX_NONE:
+		// Duplex already cleared, do nothing
+		break;
+
+	case TRUEPHY_ADV_DUPLEX_FULL:
+		// Set Bit 8
+		usData |= 0x0100;
+		break;
+
+	case TRUEPHY_ADV_DUPLEX_HALF:
+		// Set Bit 7
+		usData |= 0x0080;
+		break;
+
+	case TRUEPHY_ADV_DUPLEX_BOTH:
+	default:
+		// Set Bits 7,8
+		usData |= 0x0180;
+		break;
+	}
+
+	// Write back advertisement
+	MiWrite(pAdapter, PHY_AUTO_ADVERTISEMENT, usData);
+}
+
+void ET1310_PhyAdvertise10BaseT(struct et131x_adapter *pAdapter,
+				uint16_t duplex)
+{
+	uint16_t usData;
+
+	// Read the Autonegotiation Register (10/100)
+	MiRead(pAdapter, PHY_AUTO_ADVERTISEMENT, &usData);
+
+	// Clear bits 5,6
+	usData &= ~0x0060;
+
+	switch (duplex) {
+	case TRUEPHY_ADV_DUPLEX_NONE:
+		// Duplex already cleared, do nothing
+		break;
+
+	case TRUEPHY_ADV_DUPLEX_FULL:
+		// Set Bit 6
+		usData |= 0x0040;
+		break;
+
+	case TRUEPHY_ADV_DUPLEX_HALF:
+		// Set Bit 5
+		usData |= 0x0020;
+		break;
+
+	case TRUEPHY_ADV_DUPLEX_BOTH:
+	default:
+		// Set Bits 5,6
+		usData |= 0x0060;
+		break;
+	}
+
+	// Write back advertisement
+	MiWrite(pAdapter, PHY_AUTO_ADVERTISEMENT, usData);
+}
+
+void ET1310_PhyLinkStatus(struct et131x_adapter *pAdapter,
+			  uint8_t *ucLinkStatus,
+			  uint32_t *uiAutoNeg,
+			  uint32_t *uiLinkSpeed,
+			  uint32_t *uiDuplexMode,
+			  uint32_t *uiMdiMdix,
+			  uint32_t *uiMasterSlave, uint32_t *uiPolarity)
+{
+	uint16_t usMiStatus = 0;
+	uint16_t us1000BaseT = 0;
+	uint16_t usVmiPhyStatus = 0;
+	uint16_t usControl = 0;
+
+	MiRead(pAdapter, PHY_STATUS, &usMiStatus);
+	MiRead(pAdapter, PHY_1000_STATUS, &us1000BaseT);
+	MiRead(pAdapter, PHY_PHY_STATUS, &usVmiPhyStatus);
+	MiRead(pAdapter, PHY_CONTROL, &usControl);
+
+	if (ucLinkStatus) {
+		*ucLinkStatus =
+		    (unsigned char)((usVmiPhyStatus & 0x0040) ? 1 : 0);
+	}
+
+	if (uiAutoNeg) {
+		*uiAutoNeg =
+		    (usControl & 0x1000) ? ((usVmiPhyStatus & 0x0020) ?
+					    TRUEPHY_ANEG_COMPLETE :
+					    TRUEPHY_ANEG_NOT_COMPLETE) :
+		    TRUEPHY_ANEG_DISABLED;
+	}
+
+	if (uiLinkSpeed) {
+		*uiLinkSpeed = (usVmiPhyStatus & 0x0300) >> 8;
+	}
+
+	if (uiDuplexMode) {
+		*uiDuplexMode = (usVmiPhyStatus & 0x0080) >> 7;
+	}
+
+	if (uiMdiMdix) {
+		/* NOTE: Need to complete this */
+		*uiMdiMdix = 0;
+	}
+
+	if (uiMasterSlave) {
+		*uiMasterSlave =
+		    (us1000BaseT & 0x4000) ? TRUEPHY_CFG_MASTER :
+		    TRUEPHY_CFG_SLAVE;
+	}
+
+	if (uiPolarity) {
+		*uiPolarity =
+		    (usVmiPhyStatus & 0x0400) ? TRUEPHY_POLARITY_INVERTED :
+		    TRUEPHY_POLARITY_NORMAL;
+	}
+}
+
+void ET1310_PhyAndOrReg(struct et131x_adapter *pAdapter,
+			uint16_t regnum, uint16_t andMask, uint16_t orMask)
+{
+	uint16_t reg;
+
+	// Read the requested register
+	MiRead(pAdapter, regnum, &reg);
+
+	// Apply the AND mask
+	reg &= andMask;
+
+	// Apply the OR mask
+	reg |= orMask;
+
+	// Write the value back to the register
+	MiWrite(pAdapter, regnum, reg);
+}
+
+void ET1310_PhyAccessMiBit(struct et131x_adapter *pAdapter, uint16_t action,
+			   uint16_t regnum, uint16_t bitnum, uint8_t *value)
+{
+	uint16_t reg;
+	uint16_t mask = 0;
+
+	// Create a mask to isolate the requested bit
+	mask = 0x0001 << bitnum;
+
+	// Read the requested register
+	MiRead(pAdapter, regnum, &reg);
+
+	switch (action) {
+	case TRUEPHY_BIT_READ:
+		if (value != NULL) {
+			*value = (reg & mask) >> bitnum;
+		}
+		break;
+
+	case TRUEPHY_BIT_SET:
+		reg |= mask;
+		MiWrite(pAdapter, regnum, reg);
+		break;
+
+	case TRUEPHY_BIT_CLEAR:
+		reg &= ~mask;
+		MiWrite(pAdapter, regnum, reg);
+		break;
+
+	default:
+		break;
+	}
+}
diff --git a/drivers/staging/et131x/et1310_phy.h b/drivers/staging/et131x/et1310_phy.h
new file mode 100644
index 0000000..d624cbb
--- /dev/null
+++ b/drivers/staging/et131x/et1310_phy.h
@@ -0,0 +1,910 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et1310_phy.h - Defines, structs, enums, prototypes, etc. pertaining to the
+ *                PHY.
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#ifndef _ET1310_PHY_H_
+#define _ET1310_PHY_H_
+
+#include "et1310_address_map.h"
+
+#define TRUEPHY_SUCCESS 0
+#define TRUEPHY_FAILURE 1
+typedef void *TRUEPHY_HANDLE;
+typedef void *TRUEPHY_PLATFORM_HANDLE;
+typedef void *TRUEPHY_OSAL_HANDLE;
+
+/* MI Register Addresses */
+#define MI_CONTROL_REG                      0
+#define MI_STATUS_REG                       1
+#define MI_PHY_IDENTIFIER_1_REG             2
+#define MI_PHY_IDENTIFIER_2_REG             3
+#define MI_AUTONEG_ADVERTISEMENT_REG        4
+#define MI_AUTONEG_LINK_PARTNER_ABILITY_REG 5
+#define MI_AUTONEG_EXPANSION_REG            6
+#define MI_AUTONEG_NEXT_PAGE_TRANSMIT_REG   7
+#define MI_LINK_PARTNER_NEXT_PAGE_REG       8
+#define MI_1000BASET_CONTROL_REG            9
+#define MI_1000BASET_STATUS_REG             10
+#define MI_RESERVED11_REG                   11
+#define MI_RESERVED12_REG                   12
+#define MI_RESERVED13_REG                   13
+#define MI_RESERVED14_REG                   14
+#define MI_EXTENDED_STATUS_REG              15
+
+/* VMI Register Addresses */
+#define VMI_RESERVED16_REG                  16
+#define VMI_RESERVED17_REG                  17
+#define VMI_RESERVED18_REG                  18
+#define VMI_LOOPBACK_CONTROL_REG            19
+#define VMI_RESERVED20_REG                  20
+#define VMI_MI_CONTROL_REG                  21
+#define VMI_PHY_CONFIGURATION_REG           22
+#define VMI_PHY_CONTROL_REG                 23
+#define VMI_INTERRUPT_MASK_REG              24
+#define VMI_INTERRUPT_STATUS_REG            25
+#define VMI_PHY_STATUS_REG                  26
+#define VMI_LED_CONTROL_1_REG               27
+#define VMI_LED_CONTROL_2_REG               28
+#define VMI_RESERVED29_REG                  29
+#define VMI_RESERVED30_REG                  30
+#define VMI_RESERVED31_REG                  31
+
+/* PHY Register Mapping(MI) Management Interface Regs */
+typedef struct _MI_REGS_t {
+	u8 bmcr;		// Basic mode control reg(Reg 0x00)
+	u8 bmsr;		// Basic mode status reg(Reg 0x01)
+	u8 idr1;		// Phy identifier reg 1(Reg 0x02)
+	u8 idr2;		// Phy identifier reg 2(Reg 0x03)
+	u8 anar;		// Auto-Negotiation advertisement(Reg 0x04)
+	u8 anlpar;		// Auto-Negotiation link Partner Ability(Reg 0x05)
+	u8 aner;		// Auto-Negotiation expansion reg(Reg 0x06)
+	u8 annptr;		// Auto-Negotiation next page transmit reg(Reg 0x07)
+	u8 lpnpr;		// link partner next page reg(Reg 0x08)
+	u8 gcr;		// Gigabit basic mode control reg(Reg 0x09)
+	u8 gsr;		// Gigabit basic mode status reg(Reg 0x0A)
+	u8 mi_res1[4];	// Future use by MI working group(Reg 0x0B - 0x0E)
+	u8 esr;		// Extended status reg(Reg 0x0F)
+	u8 mi_res2[3];	// Future use by MI working group(Reg 0x10 - 0x12)
+	u8 loop_ctl;	// Loopback Control Reg(Reg 0x13)
+	u8 mi_res3;	// Future use by MI working group(Reg 0x14)
+	u8 mcr;		// MI Control Reg(Reg 0x15)
+	u8 pcr;		// Configuration Reg(Reg 0x16)
+	u8 phy_ctl;	// PHY Control Reg(Reg 0x17)
+	u8 imr;		// Interrupt Mask Reg(Reg 0x18)
+	u8 isr;		// Interrupt Status Reg(Reg 0x19)
+	u8 psr;		// PHY Status Reg(Reg 0x1A)
+	u8 lcr1;		// LED Control 1 Reg(Reg 0x1B)
+	u8 lcr2;		// LED Control 2 Reg(Reg 0x1C)
+	u8 mi_res4[3];	// Future use by MI working group(Reg 0x1D - 0x1F)
+} MI_REGS_t, *PMI_REGS_t;
+
+/* MI Register 0: Basic mode control register */
+typedef union _MI_BMCR_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 reset:1;		// bit 15
+		u16 loopback:1;		// bit 14
+		u16 speed_sel:1;		// bit 13
+		u16 enable_autoneg:1;	// bit 12
+		u16 power_down:1;		// bit 11
+		u16 isolate:1;		// bit 10
+		u16 restart_autoneg:1;	// bit 9
+		u16 duplex_mode:1;		// bit 8
+		u16 col_test:1;		// bit 7
+		u16 speed_1000_sel:1;	// bit 6
+		u16 res1:6;		// bits 0-5
+#else
+		u16 res1:6;		// bits 0-5
+		u16 speed_1000_sel:1;	// bit 6
+		u16 col_test:1;		// bit 7
+		u16 duplex_mode:1;		// bit 8
+		u16 restart_autoneg:1;	// bit 9
+		u16 isolate:1;		// bit 10
+		u16 power_down:1;		// bit 11
+		u16 enable_autoneg:1;	// bit 12
+		u16 speed_sel:1;		// bit 13
+		u16 loopback:1;		// bit 14
+		u16 reset:1;		// bit 15
+#endif
+	} bits;
+} MI_BMCR_t, *PMI_BMCR_t;
+
+/* MI Register 1:  Basic mode status register */
+typedef union _MI_BMSR_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 link_100T4:1;		// bit 15
+		u16 link_100fdx:1;		// bit 14
+		u16 link_100hdx:1;		// bit 13
+		u16 link_10fdx:1;		// bit 12
+		u16 link_10hdx:1;		// bit 11
+		u16 link_100T2fdx:1;	// bit 10
+		u16 link_100T2hdx:1;	// bit 9
+		u16 extend_status:1;	// bit 8
+		u16 res1:1;		// bit 7
+		u16 preamble_supress:1;	// bit 6
+		u16 auto_neg_complete:1;	// bit 5
+		u16 remote_fault:1;	// bit 4
+		u16 auto_neg_able:1;	// bit 3
+		u16 link_status:1;		// bit 2
+		u16 jabber_detect:1;	// bit 1
+		u16 ext_cap:1;		// bit 0
+#else
+		u16 ext_cap:1;		// bit 0
+		u16 jabber_detect:1;	// bit 1
+		u16 link_status:1;		// bit 2
+		u16 auto_neg_able:1;	// bit 3
+		u16 remote_fault:1;	// bit 4
+		u16 auto_neg_complete:1;	// bit 5
+		u16 preamble_supress:1;	// bit 6
+		u16 res1:1;		// bit 7
+		u16 extend_status:1;	// bit 8
+		u16 link_100T2hdx:1;	// bit 9
+		u16 link_100T2fdx:1;	// bit 10
+		u16 link_10hdx:1;		// bit 11
+		u16 link_10fdx:1;		// bit 12
+		u16 link_100hdx:1;		// bit 13
+		u16 link_100fdx:1;		// bit 14
+		u16 link_100T4:1;		// bit 15
+#endif
+	} bits;
+} MI_BMSR_t, *PMI_BMSR_t;
+
+/* MI Register 2: Physical Identifier 1 */
+typedef union _MI_IDR1_t {
+	u16 value;
+	struct {
+		u16 ieee_address:16;	// 0x0282 default(bits 0-15)
+	} bits;
+} MI_IDR1_t, *PMI_IDR1_t;
+
+/* MI Register 3: Physical Identifier 2 */
+typedef union _MI_IDR2_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 ieee_address:6;	// 111100 default(bits 10-15)
+		u16 model_no:6;		// 000001 default(bits 4-9)
+		u16 rev_no:4;		// 0010   default(bits 0-3)
+#else
+		u16 rev_no:4;		// 0010   default(bits 0-3)
+		u16 model_no:6;		// 000001 default(bits 4-9)
+		u16 ieee_address:6;	// 111100 default(bits 10-15)
+#endif
+	} bits;
+} MI_IDR2_t, *PMI_IDR2_t;
+
+/* MI Register 4: Auto-negotiation advertisement register */
+typedef union _MI_ANAR_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 np_indication:1;	// bit 15
+		u16 res2:1;		// bit 14
+		u16 remote_fault:1;	// bit 13
+		u16 res1:1;		// bit 12
+		u16 cap_asmpause:1;	// bit 11
+		u16 cap_pause:1;		// bit 10
+		u16 cap_100T4:1;		// bit 9
+		u16 cap_100fdx:1;		// bit 8
+		u16 cap_100hdx:1;		// bit 7
+		u16 cap_10fdx:1;		// bit 6
+		u16 cap_10hdx:1;		// bit 5
+		u16 selector:5;		// bits 0-4
+#else
+		u16 selector:5;		// bits 0-4
+		u16 cap_10hdx:1;		// bit 5
+		u16 cap_10fdx:1;		// bit 6
+		u16 cap_100hdx:1;		// bit 7
+		u16 cap_100fdx:1;		// bit 8
+		u16 cap_100T4:1;		// bit 9
+		u16 cap_pause:1;		// bit 10
+		u16 cap_asmpause:1;	// bit 11
+		u16 res1:1;		// bit 12
+		u16 remote_fault:1;	// bit 13
+		u16 res2:1;		// bit 14
+		u16 np_indication:1;	// bit 15
+#endif
+	} bits;
+} MI_ANAR_t, *PMI_ANAR_t;
+
+/* MI Register 5: Auto-negotiation link partner advertisement register */
+typedef struct _MI_ANLPAR_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 np_indication:1;	// bit 15
+		u16 acknowledge:1;		// bit 14
+		u16 remote_fault:1;	// bit 13
+		u16 res1:1;		// bit 12
+		u16 cap_asmpause:1;	// bit 11
+		u16 cap_pause:1;		// bit 10
+		u16 cap_100T4:1;		// bit 9
+		u16 cap_100fdx:1;		// bit 8
+		u16 cap_100hdx:1;		// bit 7
+		u16 cap_10fdx:1;		// bit 6
+		u16 cap_10hdx:1;		// bit 5
+		u16 selector:5;		// bits 0-4
+#else
+		u16 selector:5;		// bits 0-4
+		u16 cap_10hdx:1;		// bit 5
+		u16 cap_10fdx:1;		// bit 6
+		u16 cap_100hdx:1;		// bit 7
+		u16 cap_100fdx:1;		// bit 8
+		u16 cap_100T4:1;		// bit 9
+		u16 cap_pause:1;		// bit 10
+		u16 cap_asmpause:1;	// bit 11
+		u16 res1:1;		// bit 12
+		u16 remote_fault:1;	// bit 13
+		u16 acknowledge:1;		// bit 14
+		u16 np_indication:1;	// bit 15
+#endif
+	} bits;
+} MI_ANLPAR_t, *PMI_ANLPAR_t;
+
+/* MI Register 6: Auto-negotiation expansion register */
+typedef union _MI_ANER_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 res:11;	// bits 5-15
+		u16 pdf:1;		// bit 4
+		u16 lp_np_able:1;	// bit 3
+		u16 np_able:1;	// bit 2
+		u16 page_rx:1;	// bit 1
+		u16 lp_an_able:1;	// bit 0
+#else
+		u16 lp_an_able:1;	// bit 0
+		u16 page_rx:1;	// bit 1
+		u16 np_able:1;	// bit 2
+		u16 lp_np_able:1;	// bit 3
+		u16 pdf:1;		// bit 4
+		u16 res:11;	// bits 5-15
+#endif
+	} bits;
+} MI_ANER_t, *PMI_ANER_t;
+
+/* MI Register 7: Auto-negotiation next page transmit reg(0x07) */
+typedef union _MI_ANNPTR_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 np:1;		// bit 15
+		u16 res1:1;	// bit 14
+		u16 msg_page:1;	// bit 13
+		u16 ack2:1;	// bit 12
+		u16 toggle:1;	// bit 11
+		u16 msg:11;	// bits 0-10
+#else
+		u16 msg:11;	// bits 0-10
+		u16 toggle:1;	// bit 11
+		u16 ack2:1;	// bit 12
+		u16 msg_page:1;	// bit 13
+		u16 res1:1;	// bit 14
+		u16 np:1;		// bit 15
+#endif
+	} bits;
+} MI_ANNPTR_t, *PMI_ANNPTR_t;
+
+/* MI Register 8: Link Partner Next Page Reg(0x08) */
+typedef union _MI_LPNPR_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 np:1;		// bit 15
+		u16 ack:1;		// bit 14
+		u16 msg_page:1;	// bit 13
+		u16 ack2:1;	// bit 12
+		u16 toggle:1;	// bit 11
+		u16 msg:11;	// bits 0-10
+#else
+		u16 msg:11;	// bits 0-10
+		u16 toggle:1;	// bit 11
+		u16 ack2:1;	// bit 12
+		u16 msg_page:1;	// bit 13
+		u16 ack:1;		// bit 14
+		u16 np:1;		// bit 15
+#endif
+	} bits;
+} MI_LPNPR_t, *PMI_LPNPR_t;
+
+/* MI Register 9: 1000BaseT Control Reg(0x09) */
+typedef union _MI_GCR_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 test_mode:3;		// bits 13-15
+		u16 ms_config_en:1;	// bit 12
+		u16 ms_value:1;		// bit 11
+		u16 port_type:1;		// bit 10
+		u16 link_1000fdx:1;	// bit 9
+		u16 link_1000hdx:1;	// bit 8
+		u16 res:8;			// bit 0-7
+#else
+		u16 res:8;			// bit 0-7
+		u16 link_1000hdx:1;	// bit 8
+		u16 link_1000fdx:1;	// bit 9
+		u16 port_type:1;		// bit 10
+		u16 ms_value:1;		// bit 11
+		u16 ms_config_en:1;	// bit 12
+		u16 test_mode:3;		// bits 13-15
+#endif
+	} bits;
+} MI_GCR_t, *PMI_GCR_t;
+
+/* MI Register 10: 1000BaseT Status Reg(0x0A) */
+typedef union _MI_GSR_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 ms_config_fault:1;	// bit 15
+		u16 ms_resolve:1;		// bit 14
+		u16 local_rx_status:1;	// bit 13
+		u16 remote_rx_status:1;	// bit 12
+		u16 link_1000fdx:1;	// bit 11
+		u16 link_1000hdx:1;	// bit 10
+		u16 res:2;			// bits 8-9
+		u16 idle_err_cnt:8;	// bits 0-7
+#else
+		u16 idle_err_cnt:8;	// bits 0-7
+		u16 res:2;			// bits 8-9
+		u16 link_1000hdx:1;	// bit 10
+		u16 link_1000fdx:1;	// bit 11
+		u16 remote_rx_status:1;	// bit 12
+		u16 local_rx_status:1;	// bit 13
+		u16 ms_resolve:1;		// bit 14
+		u16 ms_config_fault:1;	// bit 15
+#endif
+	} bits;
+} MI_GSR_t, *PMI_GSR_t;
+
+/* MI Register 11 - 14: Reserved Regs(0x0B - 0x0E) */
+typedef union _MI_RES_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 res15:1;	// bit 15
+		u16 res14:1;	// bit 14
+		u16 res13:1;	// bit 13
+		u16 res12:1;	// bit 12
+		u16 res11:1;	// bit 11
+		u16 res10:1;	// bit 10
+		u16 res9:1;	// bit 9
+		u16 res8:1;	// bit 8
+		u16 res7:1;	// bit 7
+		u16 res6:1;	// bit 6
+		u16 res5:1;	// bit 5
+		u16 res4:1;	// bit 4
+		u16 res3:1;	// bit 3
+		u16 res2:1;	// bit 2
+		u16 res1:1;	// bit 1
+		u16 res0:1;	// bit 0
+#else
+		u16 res0:1;	// bit 0
+		u16 res1:1;	// bit 1
+		u16 res2:1;	// bit 2
+		u16 res3:1;	// bit 3
+		u16 res4:1;	// bit 4
+		u16 res5:1;	// bit 5
+		u16 res6:1;	// bit 6
+		u16 res7:1;	// bit 7
+		u16 res8:1;	// bit 8
+		u16 res9:1;	// bit 9
+		u16 res10:1;	// bit 10
+		u16 res11:1;	// bit 11
+		u16 res12:1;	// bit 12
+		u16 res13:1;	// bit 13
+		u16 res14:1;	// bit 14
+		u16 res15:1;	// bit 15
+#endif
+	} bits;
+} MI_RES_t, *PMI_RES_t;
+
+/* MI Register 15: Extended status Reg(0x0F) */
+typedef union _MI_ESR_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 link_1000Xfdx:1;	// bit 15
+		u16 link_1000Xhdx:1;	// bit 14
+		u16 link_1000fdx:1;	// bit 13
+		u16 link_1000hdx:1;	// bit 12
+		u16 res:12;		// bit 0-11
+#else
+		u16 res:12;		// bit 0-11
+		u16 link_1000hdx:1;	// bit 12
+		u16 link_1000fdx:1;	// bit 13
+		u16 link_1000Xhdx:1;	// bit 14
+		u16 link_1000Xfdx:1;	// bit 15
+#endif
+	} bits;
+} MI_ESR_t, *PMI_ESR_t;
+
+/* MI Register 16 - 18: Reserved Reg(0x10-0x12) */
+
+/* MI Register 19: Loopback Control Reg(0x13) */
+typedef union _MI_LCR_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 mii_en:1;		// bit 15
+		u16 pcs_en:1;		// bit 14
+		u16 pmd_en:1;		// bit 13
+		u16 all_digital_en:1;	// bit 12
+		u16 replica_en:1;		// bit 11
+		u16 line_driver_en:1;	// bit 10
+		u16 res:10;		// bit 0-9
+#else
+		u16 res:10;		// bit 0-9
+		u16 line_driver_en:1;	// bit 10
+		u16 replica_en:1;		// bit 11
+		u16 all_digital_en:1;	// bit 12
+		u16 pmd_en:1;		// bit 13
+		u16 pcs_en:1;		// bit 14
+		u16 mii_en:1;		// bit 15
+#endif
+	} bits;
+} MI_LCR_t, *PMI_LCR_t;
+
+/* MI Register 20: Reserved Reg(0x14) */
+
+/* MI Register 21: Management Interface Control Reg(0x15) */
+typedef union _MI_MICR_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 res1:5;		// bits 11-15
+		u16 mi_error_count:7;	// bits 4-10
+		u16 res2:1;		// bit 3
+		u16 ignore_10g_fr:1;	// bit 2
+		u16 res3:1;		// bit 1
+		u16 preamble_supress_en:1;	// bit 0
+#else
+		u16 preamble_supress_en:1;	// bit 0
+		u16 res3:1;		// bit 1
+		u16 ignore_10g_fr:1;	// bit 2
+		u16 res2:1;		// bit 3
+		u16 mi_error_count:7;	// bits 4-10
+		u16 res1:5;		// bits 11-15
+#endif
+	} bits;
+} MI_MICR_t, *PMI_MICR_t;
+
+/* MI Register 22: PHY Configuration Reg(0x16) */
+typedef union _MI_PHY_CONFIG_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 crs_tx_en:1;		// bit 15
+		u16 res1:1;		// bit 14
+		u16 tx_fifo_depth:2;	// bits 12-13
+		u16 speed_downshift:2;	// bits 10-11
+		u16 pbi_detect:1;		// bit 9
+		u16 tbi_rate:1;		// bit 8
+		u16 alternate_np:1;	// bit 7
+		u16 group_mdio_en:1;	// bit 6
+		u16 tx_clock_en:1;		// bit 5
+		u16 sys_clock_en:1;	// bit 4
+		u16 res2:1;		// bit 3
+		u16 mac_if_mode:3;		// bits 0-2
+#else
+		u16 mac_if_mode:3;		// bits 0-2
+		u16 res2:1;		// bit 3
+		u16 sys_clock_en:1;	// bit 4
+		u16 tx_clock_en:1;		// bit 5
+		u16 group_mdio_en:1;	// bit 6
+		u16 alternate_np:1;	// bit 7
+		u16 tbi_rate:1;		// bit 8
+		u16 pbi_detect:1;		// bit 9
+		u16 speed_downshift:2;	// bits 10-11
+		u16 tx_fifo_depth:2;	// bits 12-13
+		u16 res1:1;		// bit 14
+		u16 crs_tx_en:1;		// bit 15
+#endif
+	} bits;
+} MI_PHY_CONFIG_t, *PMI_PHY_CONFIG_t;
+
+/* MI Register 23: PHY CONTROL Reg(0x17) */
+typedef union _MI_PHY_CONTROL_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 res1:1;		// bit 15
+		u16 tdr_en:1;		// bit 14
+		u16 res2:1;		// bit 13
+		u16 downshift_attempts:2;	// bits 11-12
+		u16 res3:5;		// bit 6-10
+		u16 jabber_10baseT:1;	// bit 5
+		u16 sqe_10baseT:1;		// bit 4
+		u16 tp_loopback_10baseT:1;	// bit 3
+		u16 preamble_gen_en:1;	// bit 2
+		u16 res4:1;		// bit 1
+		u16 force_int:1;		// bit 0
+#else
+		u16 force_int:1;		// bit 0
+		u16 res4:1;		// bit 1
+		u16 preamble_gen_en:1;	// bit 2
+		u16 tp_loopback_10baseT:1;	// bit 3
+		u16 sqe_10baseT:1;		// bit 4
+		u16 jabber_10baseT:1;	// bit 5
+		u16 res3:5;		// bit 6-10
+		u16 downshift_attempts:2;	// bits 11-12
+		u16 res2:1;		// bit 13
+		u16 tdr_en:1;		// bit 14
+		u16 res1:1;		// bit 15
+#endif
+	} bits;
+} MI_PHY_CONTROL_t, *PMI_PHY_CONTROL_t;
+
+/* MI Register 24: Interrupt Mask Reg(0x18) */
+typedef union _MI_IMR_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 res1:6;		// bits 10-15
+		u16 mdio_sync_lost:1;	// bit 9
+		u16 autoneg_status:1;	// bit 8
+		u16 hi_bit_err:1;		// bit 7
+		u16 np_rx:1;		// bit 6
+		u16 err_counter_full:1;	// bit 5
+		u16 fifo_over_underflow:1;	// bit 4
+		u16 rx_status:1;		// bit 3
+		u16 link_status:1;		// bit 2
+		u16 automatic_speed:1;	// bit 1
+		u16 int_en:1;		// bit 0
+#else
+		u16 int_en:1;		// bit 0
+		u16 automatic_speed:1;	// bit 1
+		u16 link_status:1;		// bit 2
+		u16 rx_status:1;		// bit 3
+		u16 fifo_over_underflow:1;	// bit 4
+		u16 err_counter_full:1;	// bit 5
+		u16 np_rx:1;		// bit 6
+		u16 hi_bit_err:1;		// bit 7
+		u16 autoneg_status:1;	// bit 8
+		u16 mdio_sync_lost:1;	// bit 9
+		u16 res1:6;		// bits 10-15
+#endif
+	} bits;
+} MI_IMR_t, *PMI_IMR_t;
+
+/* MI Register 25: Interrupt Status Reg(0x19) */
+typedef union _MI_ISR_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 res1:6;		// bits 10-15
+		u16 mdio_sync_lost:1;	// bit 9
+		u16 autoneg_status:1;	// bit 8
+		u16 hi_bit_err:1;		// bit 7
+		u16 np_rx:1;		// bit 6
+		u16 err_counter_full:1;	// bit 5
+		u16 fifo_over_underflow:1;	// bit 4
+		u16 rx_status:1;		// bit 3
+		u16 link_status:1;		// bit 2
+		u16 automatic_speed:1;	// bit 1
+		u16 int_en:1;		// bit 0
+#else
+		u16 int_en:1;		// bit 0
+		u16 automatic_speed:1;	// bit 1
+		u16 link_status:1;		// bit 2
+		u16 rx_status:1;		// bit 3
+		u16 fifo_over_underflow:1;	// bit 4
+		u16 err_counter_full:1;	// bit 5
+		u16 np_rx:1;		// bit 6
+		u16 hi_bit_err:1;		// bit 7
+		u16 autoneg_status:1;	// bit 8
+		u16 mdio_sync_lost:1;	// bit 9
+		u16 res1:6;		// bits 10-15
+#endif
+	} bits;
+} MI_ISR_t, *PMI_ISR_t;
+
+/* MI Register 26: PHY Status Reg(0x1A) */
+typedef union _MI_PSR_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 res1:1;		// bit 15
+		u16 autoneg_fault:2;	// bit 13-14
+		u16 autoneg_status:1;	// bit 12
+		u16 mdi_x_status:1;	// bit 11
+		u16 polarity_status:1;	// bit 10
+		u16 speed_status:2;	// bits 8-9
+		u16 duplex_status:1;	// bit 7
+		u16 link_status:1;		// bit 6
+		u16 tx_status:1;		// bit 5
+		u16 rx_status:1;		// bit 4
+		u16 collision_status:1;	// bit 3
+		u16 autoneg_en:1;		// bit 2
+		u16 pause_en:1;		// bit 1
+		u16 asymmetric_dir:1;	// bit 0
+#else
+		u16 asymmetric_dir:1;	// bit 0
+		u16 pause_en:1;		// bit 1
+		u16 autoneg_en:1;		// bit 2
+		u16 collision_status:1;	// bit 3
+		u16 rx_status:1;		// bit 4
+		u16 tx_status:1;		// bit 5
+		u16 link_status:1;		// bit 6
+		u16 duplex_status:1;	// bit 7
+		u16 speed_status:2;	// bits 8-9
+		u16 polarity_status:1;	// bit 10
+		u16 mdi_x_status:1;	// bit 11
+		u16 autoneg_status:1;	// bit 12
+		u16 autoneg_fault:2;	// bit 13-14
+		u16 res1:1;		// bit 15
+#endif
+	} bits;
+} MI_PSR_t, *PMI_PSR_t;
+
+/* MI Register 27: LED Control Reg 1(0x1B) */
+typedef union _MI_LCR1_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 res1:2;		// bits 14-15
+		u16 led_dup_indicate:2;	// bits 12-13
+		u16 led_10baseT:2;		// bits 10-11
+		u16 led_collision:2;	// bits 8-9
+		u16 res2:2;		// bits 6-7
+		u16 res3:2;		// bits 4-5
+		u16 pulse_dur:2;		// bits 2-3
+		u16 pulse_stretch1:1;	// bit 1
+		u16 pulse_stretch0:1;	// bit 0
+#else
+		u16 pulse_stretch0:1;	// bit 0
+		u16 pulse_stretch1:1;	// bit 1
+		u16 pulse_dur:2;		// bits 2-3
+		u16 res3:2;		// bits 4-5
+		u16 res2:2;		// bits 6-7
+		u16 led_collision:2;	// bits 8-9
+		u16 led_10baseT:2;		// bits 10-11
+		u16 led_dup_indicate:2;	// bits 12-13
+		u16 res1:2;		// bits 14-15
+#endif
+	} bits;
+} MI_LCR1_t, *PMI_LCR1_t;
+
+/* MI Register 28: LED Control Reg 2(0x1C) */
+typedef union _MI_LCR2_t {
+	u16 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u16 led_link:4;		// bits 12-15
+		u16 led_tx_rx:4;		// bits 8-11
+		u16 led_100BaseTX:4;	// bits 4-7
+		u16 led_1000BaseT:4;	// bits 0-3
+#else
+		u16 led_1000BaseT:4;	// bits 0-3
+		u16 led_100BaseTX:4;	// bits 4-7
+		u16 led_tx_rx:4;		// bits 8-11
+		u16 led_link:4;		// bits 12-15
+#endif
+	} bits;
+} MI_LCR2_t, *PMI_LCR2_t;
+
+/* MI Register 29 - 31: Reserved Reg(0x1D - 0x1E) */
+
+/* TruePHY headers */
+typedef struct _TRUEPHY_ACCESS_MI_REGS_ {
+	TRUEPHY_HANDLE hTruePhy;
+	int32_t nPhyId;
+	u8 bReadWrite;
+	u8 *pbyRegs;
+	u8 *pwData;
+	int32_t nRegCount;
+} TRUEPHY_ACCESS_MI_REGS, *PTRUEPHY_ACCESS_MI_REGS;
+
+/* TruePHY headers */
+typedef struct _TAG_TPAL_ACCESS_MI_REGS_ {
+	u32 nPhyId;
+	u8 bReadWrite;
+	u32 nRegCount;
+	u16 Data[4096];
+	u8 Regs[4096];
+} TPAL_ACCESS_MI_REGS, *PTPAL_ACCESS_MI_REGS;
+
+
+typedef TRUEPHY_HANDLE TPAL_HANDLE;
+
+/* Forward declaration of the private adapter structure */
+struct et131x_adapter;
+
+/* OS Specific Functions*/
+void TPAL_SetPhy10HalfDuplex(struct et131x_adapter *adapter);
+void TPAL_SetPhy10FullDuplex(struct et131x_adapter *adapter);
+void TPAL_SetPhy10Force(struct et131x_adapter *pAdapter);
+void TPAL_SetPhy100HalfDuplex(struct et131x_adapter *adapter);
+void TPAL_SetPhy100FullDuplex(struct et131x_adapter *adapter);
+void TPAL_SetPhy100Force(struct et131x_adapter *pAdapter);
+void TPAL_SetPhy1000FullDuplex(struct et131x_adapter *adapter);
+void TPAL_SetPhyAutoNeg(struct et131x_adapter *adapter);
+
+/* Prototypes for ET1310_phy.c */
+int et131x_xcvr_find(struct et131x_adapter *adapter);
+int et131x_setphy_normal(struct et131x_adapter *adapter);
+int32_t PhyMiRead(struct et131x_adapter *adapter,
+	       u8 xcvrAddr, u8 xcvrReg, u16 *value);
+
+/* static inline function does not work because et131x_adapter is not always
+ * defined
+ */
+#define MiRead(adapter, xcvrReg, value) \
+	PhyMiRead((adapter), (adapter)->Stats.xcvr_addr, (xcvrReg), (value))
+
+int32_t MiWrite(struct et131x_adapter *adapter,
+		u8 xcvReg, u16 value);
+void et131x_Mii_check(struct et131x_adapter *pAdapter,
+		      MI_BMSR_t bmsr, MI_BMSR_t bmsr_ints);
+
+/* This last is not strictly required (the driver could call the TPAL
+ * version instead), but this sets the adapter up correctly, and calls the
+ * access routine indirectly.  This protects the driver from changes in TPAL.
+ */
+void SetPhy_10BaseTHalfDuplex(struct et131x_adapter *adapter);
+
+/* Defines for PHY access routines */
+
+// Define bit operation flags
+#define TRUEPHY_BIT_CLEAR               0
+#define TRUEPHY_BIT_SET                 1
+#define TRUEPHY_BIT_READ                2
+
+// Define read/write operation flags
+#ifndef TRUEPHY_READ
+#define TRUEPHY_READ                    0
+#define TRUEPHY_WRITE                   1
+#define TRUEPHY_MASK                    2
+#endif
+
+// Define speeds
+#define TRUEPHY_SPEED_10MBPS            0
+#define TRUEPHY_SPEED_100MBPS           1
+#define TRUEPHY_SPEED_1000MBPS          2
+
+// Define duplex modes
+#define TRUEPHY_DUPLEX_HALF             0
+#define TRUEPHY_DUPLEX_FULL             1
+
+// Define master/slave configuration values
+#define TRUEPHY_CFG_SLAVE               0
+#define TRUEPHY_CFG_MASTER              1
+
+// Define MDI/MDI-X settings
+#define TRUEPHY_MDI                     0
+#define TRUEPHY_MDIX                    1
+#define TRUEPHY_AUTO_MDI_MDIX           2
+
+// Define 10Base-T link polarities
+#define TRUEPHY_POLARITY_NORMAL         0
+#define TRUEPHY_POLARITY_INVERTED       1
+
+// Define auto-negotiation results
+#define TRUEPHY_ANEG_NOT_COMPLETE       0
+#define TRUEPHY_ANEG_COMPLETE           1
+#define TRUEPHY_ANEG_DISABLED           2
+
+/* Define duplex advertisment flags */
+#define TRUEPHY_ADV_DUPLEX_NONE         0x00
+#define TRUEPHY_ADV_DUPLEX_FULL         0x01
+#define TRUEPHY_ADV_DUPLEX_HALF         0x02
+#define TRUEPHY_ADV_DUPLEX_BOTH     \
+    (TRUEPHY_ADV_DUPLEX_FULL | TRUEPHY_ADV_DUPLEX_HALF)
+
+#define PHY_CONTROL                0x00	//#define TRU_MI_CONTROL_REGISTER                 0
+#define PHY_STATUS                 0x01	//#define TRU_MI_STATUS_REGISTER                  1
+#define PHY_ID_1                   0x02	//#define TRU_MI_PHY_IDENTIFIER_1_REGISTER        2
+#define PHY_ID_2                   0x03	//#define TRU_MI_PHY_IDENTIFIER_2_REGISTER        3
+#define PHY_AUTO_ADVERTISEMENT     0x04	//#define TRU_MI_ADVERTISEMENT_REGISTER           4
+#define PHY_AUTO_LINK_PARTNER      0x05	//#define TRU_MI_LINK_PARTNER_ABILITY_REGISTER    5
+#define PHY_AUTO_EXPANSION         0x06	//#define TRU_MI_EXPANSION_REGISTER               6
+#define PHY_AUTO_NEXT_PAGE_TX      0x07	//#define TRU_MI_NEXT_PAGE_TRANSMIT_REGISTER      7
+#define PHY_LINK_PARTNER_NEXT_PAGE 0x08	//#define TRU_MI_LINK_PARTNER_NEXT_PAGE_REGISTER  8
+#define PHY_1000_CONTROL           0x09	//#define TRU_MI_1000BASET_CONTROL_REGISTER       9
+#define PHY_1000_STATUS            0x0A	//#define TRU_MI_1000BASET_STATUS_REGISTER        10
+
+#define PHY_EXTENDED_STATUS        0x0F	//#define TRU_MI_EXTENDED_STATUS_REGISTER         15
+
+// some defines for modem registers that seem to be 'reserved'
+#define PHY_INDEX_REG              0x10
+#define PHY_DATA_REG               0x11
+
+#define PHY_MPHY_CONTROL_REG       0x12	//#define TRU_VMI_MPHY_CONTROL_REGISTER           18
+
+#define PHY_LOOPBACK_CONTROL       0x13	//#define TRU_VMI_LOOPBACK_CONTROL_1_REGISTER     19
+					//#define TRU_VMI_LOOPBACK_CONTROL_2_REGISTER     20
+#define PHY_REGISTER_MGMT_CONTROL  0x15	//#define TRU_VMI_MI_SEQ_CONTROL_REGISTER         21
+#define PHY_CONFIG                 0x16	//#define TRU_VMI_CONFIGURATION_REGISTER          22
+#define PHY_PHY_CONTROL            0x17	//#define TRU_VMI_PHY_CONTROL_REGISTER            23
+#define PHY_INTERRUPT_MASK         0x18	//#define TRU_VMI_INTERRUPT_MASK_REGISTER         24
+#define PHY_INTERRUPT_STATUS       0x19	//#define TRU_VMI_INTERRUPT_STATUS_REGISTER       25
+#define PHY_PHY_STATUS             0x1A	//#define TRU_VMI_PHY_STATUS_REGISTER             26
+#define PHY_LED_1                  0x1B	//#define TRU_VMI_LED_CONTROL_1_REGISTER          27
+#define PHY_LED_2                  0x1C	//#define TRU_VMI_LED_CONTROL_2_REGISTER          28
+					//#define TRU_VMI_LINK_CONTROL_REGISTER           29
+					//#define TRU_VMI_TIMING_CONTROL_REGISTER
+
+/* Prototypes for PHY access routines */
+void ET1310_PhyInit(struct et131x_adapter *adapter);
+void ET1310_PhyReset(struct et131x_adapter *adapter);
+void ET1310_PhyPowerDown(struct et131x_adapter *adapter, bool down);
+void ET1310_PhyAutoNeg(struct et131x_adapter *adapter, bool enable);
+void ET1310_PhyDuplexMode(struct et131x_adapter *adapter, u16 duplex);
+void ET1310_PhySpeedSelect(struct et131x_adapter *adapter, u16 speed);
+void ET1310_PhyAdvertise1000BaseT(struct et131x_adapter *adapter,
+				  u16 duplex);
+void ET1310_PhyAdvertise100BaseT(struct et131x_adapter *adapter,
+				 u16 duplex);
+void ET1310_PhyAdvertise10BaseT(struct et131x_adapter *adapter,
+				u16 duplex);
+void ET1310_PhyLinkStatus(struct et131x_adapter *adapter,
+			  u8 *ucLinkStatus,
+			  u32 *uiAutoNeg,
+			  u32 *uiLinkSpeed,
+			  u32 *uiDuplexMode,
+			  u32 *uiMdiMdix,
+			  u32 *uiMasterSlave, u32 *uiPolarity);
+void ET1310_PhyAndOrReg(struct et131x_adapter *adapter,
+			u16 regnum, u16 andMask, u16 orMask);
+void ET1310_PhyAccessMiBit(struct et131x_adapter *adapter,
+			   u16 action,
+			   u16 regnum, u16 bitnum, u8 *value);
+
+#endif /* _ET1310_PHY_H_ */
diff --git a/drivers/staging/et131x/et1310_pm.c b/drivers/staging/et131x/et1310_pm.c
new file mode 100644
index 0000000..9539bc6
--- /dev/null
+++ b/drivers/staging/et131x/et1310_pm.c
@@ -0,0 +1,207 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et1310_pm.c - All power management related code (not completely implemented)
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#include "et131x_version.h"
+#include "et131x_debug.h"
+#include "et131x_defs.h"
+
+#include <linux/init.h>
+#include <linux/module.h>
+#include <linux/types.h>
+#include <linux/kernel.h>
+
+#include <linux/sched.h>
+#include <linux/ptrace.h>
+#include <linux/slab.h>
+#include <linux/ctype.h>
+#include <linux/string.h>
+#include <linux/timer.h>
+#include <linux/interrupt.h>
+#include <linux/in.h>
+#include <linux/delay.h>
+#include <asm/io.h>
+#include <asm/system.h>
+#include <asm/bitops.h>
+
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/skbuff.h>
+#include <linux/if_arp.h>
+#include <linux/ioport.h>
+
+#include "et1310_phy.h"
+#include "et1310_pm.h"
+#include "et1310_jagcore.h"
+#include "et1310_mac.h"
+#include "et1310_rx.h"
+
+#include "et131x_adapter.h"
+#include "et131x_initpci.h"
+
+/* Data for debugging facilities */
+#ifdef CONFIG_ET131X_DEBUG
+extern dbg_info_t *et131x_dbginfo;
+#endif /* CONFIG_ET131X_DEBUG */
+
+/**
+ * EnablePhyComa - called when network cable is unplugged
+ * @pAdapter: pointer to our adapter structure
+ *
+ * driver receive an phy status change interrupt while in D0 and check that
+ * phy_status is down.
+ *
+ *          -- gate off JAGCore;
+ *          -- set gigE PHY in Coma mode
+ *          -- wake on phy_interrupt; Perform software reset JAGCore,
+ *             re-initialize jagcore and gigE PHY
+ *
+ *      Add D0-ASPM-PhyLinkDown Support:
+ *          -- while in D0, when there is a phy_interrupt indicating phy link
+ *             down status, call the MPSetPhyComa routine to enter this active
+ *             state power saving mode
+ *          -- while in D0-ASPM-PhyLinkDown mode, when there is a phy_interrupt
+ *       indicating linkup status, call the MPDisablePhyComa routine to
+ *             restore JAGCore and gigE PHY
+ */
+void EnablePhyComa(struct et131x_adapter *pAdapter)
+{
+	unsigned long lockflags;
+	PM_CSR_t GlobalPmCSR;
+	int32_t LoopCounter = 10;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	GlobalPmCSR.value = readl(&pAdapter->CSRAddress->global.pm_csr.value);
+
+	/* Save the GbE PHY speed and duplex modes. Need to restore this
+	 * when cable is plugged back in
+	 */
+	pAdapter->PoMgmt.PowerDownSpeed = pAdapter->AiForceSpeed;
+	pAdapter->PoMgmt.PowerDownDuplex = pAdapter->AiForceDpx;
+
+	/* Stop sending packets. */
+	spin_lock_irqsave(&pAdapter->SendHWLock, lockflags);
+	MP_SET_FLAG(pAdapter, fMP_ADAPTER_LOWER_POWER);
+	spin_unlock_irqrestore(&pAdapter->SendHWLock, lockflags);
+
+	/* Wait for outstanding Receive packets */
+	while ((MP_GET_RCV_REF(pAdapter) != 0) && (LoopCounter-- > 0)) {
+		mdelay(2);
+	}
+
+	/* Gate off JAGCore 3 clock domains */
+	GlobalPmCSR.bits.pm_sysclk_gate = 0;
+	GlobalPmCSR.bits.pm_txclk_gate = 0;
+	GlobalPmCSR.bits.pm_rxclk_gate = 0;
+	writel(GlobalPmCSR.value, &pAdapter->CSRAddress->global.pm_csr.value);
+
+	/* Program gigE PHY in to Coma mode */
+	GlobalPmCSR.bits.pm_phy_sw_coma = 1;
+	writel(GlobalPmCSR.value, &pAdapter->CSRAddress->global.pm_csr.value);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * DisablePhyComa - Disable the Phy Coma Mode
+ * @pAdapter: pointer to our adapter structure
+ */
+void DisablePhyComa(struct et131x_adapter *pAdapter)
+{
+	PM_CSR_t GlobalPmCSR;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	GlobalPmCSR.value = readl(&pAdapter->CSRAddress->global.pm_csr.value);
+
+	/* Disable phy_sw_coma register and re-enable JAGCore clocks */
+	GlobalPmCSR.bits.pm_sysclk_gate = 1;
+	GlobalPmCSR.bits.pm_txclk_gate = 1;
+	GlobalPmCSR.bits.pm_rxclk_gate = 1;
+	GlobalPmCSR.bits.pm_phy_sw_coma = 0;
+	writel(GlobalPmCSR.value, &pAdapter->CSRAddress->global.pm_csr.value);
+
+	/* Restore the GbE PHY speed and duplex modes;
+	 * Reset JAGCore; re-configure and initialize JAGCore and gigE PHY
+	 */
+	pAdapter->AiForceSpeed = pAdapter->PoMgmt.PowerDownSpeed;
+	pAdapter->AiForceDpx = pAdapter->PoMgmt.PowerDownDuplex;
+
+	/* Re-initialize the send structures */
+	et131x_init_send(pAdapter);
+
+	/* Reset the RFD list and re-start RU  */
+	et131x_reset_recv(pAdapter);
+
+	/* Bring the device back to the state it was during init prior to
+         * autonegotiation being complete.  This way, when we get the auto-neg
+         * complete interrupt, we can complete init by calling ConfigMacREGS2.
+         */
+	et131x_soft_reset(pAdapter);
+
+	/* setup et1310 as per the documentation ?? */
+	et131x_adapter_setup(pAdapter);
+
+	/* Allow Tx to restart */
+	MP_CLEAR_FLAG(pAdapter, fMP_ADAPTER_LOWER_POWER);
+
+	/* Need to re-enable Rx. */
+	et131x_rx_dma_enable(pAdapter);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
diff --git a/drivers/staging/et131x/et1310_pm.h b/drivers/staging/et131x/et1310_pm.h
new file mode 100644
index 0000000..6802338
--- /dev/null
+++ b/drivers/staging/et131x/et1310_pm.h
@@ -0,0 +1,125 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et1310_pm.h - Defines, structs, enums, prototypes, etc. pertaining to power
+ *               management.
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#ifndef _ET1310_PM_H_
+#define _ET1310_PM_H_
+
+#include "et1310_address_map.h"
+
+#define MAX_WOL_PACKET_SIZE    0x80
+#define MAX_WOL_MASK_SIZE      ( MAX_WOL_PACKET_SIZE / 8 )
+#define NUM_WOL_PATTERNS       0x5
+#define CRC16_POLY             0x1021
+
+/* Definition of NDIS_DEVICE_POWER_STATE */
+typedef enum {
+	NdisDeviceStateUnspecified = 0,
+	NdisDeviceStateD0,
+	NdisDeviceStateD1,
+	NdisDeviceStateD2,
+	NdisDeviceStateD3
+} NDIS_DEVICE_POWER_STATE;
+
+typedef struct _MP_POWER_MGMT {
+	/* variable putting the phy into coma mode when boot up with no cable
+	 * plugged in after 5 seconds
+	 */
+	u8 TransPhyComaModeOnBoot;
+
+	/* Array holding the five CRC values that the device is currently
+	 * using for WOL.  This will be queried when a pattern is to be
+	 * removed.
+	 */
+	u32 localWolAndCrc0;
+	u16 WOLPatternList[NUM_WOL_PATTERNS];
+	u8 WOLMaskList[NUM_WOL_PATTERNS][MAX_WOL_MASK_SIZE];
+	u32 WOLMaskSize[NUM_WOL_PATTERNS];
+
+	/* IP address */
+	union {
+		u32 u32;
+		u8 u8[4];
+	} IPAddress;
+
+	/* Current Power state of the adapter. */
+	NDIS_DEVICE_POWER_STATE PowerState;
+	bool WOLState;
+	bool WOLEnabled;
+	bool Failed10Half;
+	bool bFailedStateTransition;
+
+	/* Next two used to save power information at power down. This
+	 * information will be used during power up to set up parts of Power
+	 * Management in JAGCore
+	 */
+	u32 tx_en;
+	u32 rx_en;
+	u16 PowerDownSpeed;
+	u8 PowerDownDuplex;
+} MP_POWER_MGMT, *PMP_POWER_MGMT;
+
+/* Forward declaration of the private adapter structure
+ * ( IS THERE A WAY TO DO THIS WITH A TYPEDEF??? )
+ */
+struct et131x_adapter;
+
+u16 CalculateCCITCRC16(u8 *Pattern, u8 *Mask, u32 MaskSize);
+void EnablePhyComa(struct et131x_adapter *adapter);
+void DisablePhyComa(struct et131x_adapter *adapter);
+
+#endif /* _ET1310_PM_H_ */
diff --git a/drivers/staging/et131x/et1310_rx.c b/drivers/staging/et131x/et1310_rx.c
new file mode 100644
index 0000000..ec98da5
--- /dev/null
+++ b/drivers/staging/et131x/et1310_rx.c
@@ -0,0 +1,1391 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et1310_rx.c - Routines used to perform data reception
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#include "et131x_version.h"
+#include "et131x_debug.h"
+#include "et131x_defs.h"
+
+#include <linux/pci.h>
+#include <linux/init.h>
+#include <linux/module.h>
+#include <linux/types.h>
+#include <linux/kernel.h>
+
+#include <linux/sched.h>
+#include <linux/ptrace.h>
+#include <linux/slab.h>
+#include <linux/ctype.h>
+#include <linux/string.h>
+#include <linux/timer.h>
+#include <linux/interrupt.h>
+#include <linux/in.h>
+#include <linux/delay.h>
+#include <asm/io.h>
+#include <asm/system.h>
+#include <asm/bitops.h>
+
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/skbuff.h>
+#include <linux/if_arp.h>
+#include <linux/ioport.h>
+
+#include "et1310_phy.h"
+#include "et1310_pm.h"
+#include "et1310_jagcore.h"
+
+#include "et131x_adapter.h"
+#include "et131x_initpci.h"
+
+#include "et1310_rx.h"
+
+/* Data for debugging facilities */
+#ifdef CONFIG_ET131X_DEBUG
+extern dbg_info_t *et131x_dbginfo;
+#endif /* CONFIG_ET131X_DEBUG */
+
+
+void nic_return_rfd(struct et131x_adapter *pAdapter, PMP_RFD pMpRfd);
+
+/**
+ * et131x_rx_dma_memory_alloc
+ * @adapter: pointer to our private adapter structure
+ *
+ * Returns 0 on success and errno on failure (as defined in errno.h)
+ *
+ * Allocates Free buffer ring 1 for sure, free buffer ring 0 if required,
+ * and the Packet Status Ring.
+ */
+int et131x_rx_dma_memory_alloc(struct et131x_adapter *adapter)
+{
+	uint32_t OuterLoop, InnerLoop;
+	uint32_t bufsize;
+	uint32_t pktStatRingSize, FBRChunkSize;
+	RX_RING_t *rx_ring;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Setup some convenience pointers */
+	rx_ring = (RX_RING_t *) & adapter->RxRing;
+
+	/* Alloc memory for the lookup table */
+#ifdef USE_FBR0
+	rx_ring->Fbr[0] = kmalloc(sizeof(FBRLOOKUPTABLE), GFP_KERNEL);
+#endif
+
+	rx_ring->Fbr[1] = kmalloc(sizeof(FBRLOOKUPTABLE), GFP_KERNEL);
+
+	/* The first thing we will do is configure the sizes of the buffer
+	 * rings. These will change based on jumbo packet support.  Larger
+	 * jumbo packets increases the size of each entry in FBR0, and the
+	 * number of entries in FBR0, while at the same time decreasing the
+	 * number of entries in FBR1.
+	 *
+	 * FBR1 holds "large" frames, FBR0 holds "small" frames.  If FBR1
+	 * entries are huge in order to accomodate a "jumbo" frame, then it
+	 * will have less entries.  Conversely, FBR1 will now be relied upon
+	 * to carry more "normal" frames, thus it's entry size also increases
+	 * and the number of entries goes up too (since it now carries
+	 * "small" + "regular" packets.
+	 *
+	 * In this scheme, we try to maintain 512 entries between the two
+	 * rings. Also, FBR1 remains a constant size - when it's size doubles
+	 * the number of entries halves.  FBR0 increases in size, however.
+	 */
+
+	if (adapter->RegistryJumboPacket < 2048) {
+#ifdef USE_FBR0
+		rx_ring->Fbr0BufferSize = 256;
+		rx_ring->Fbr0NumEntries = 512;
+#endif
+		rx_ring->Fbr1BufferSize = 2048;
+		rx_ring->Fbr1NumEntries = 512;
+	} else if (adapter->RegistryJumboPacket < 4096) {
+#ifdef USE_FBR0
+		rx_ring->Fbr0BufferSize = 512;
+		rx_ring->Fbr0NumEntries = 1024;
+#endif
+		rx_ring->Fbr1BufferSize = 4096;
+		rx_ring->Fbr1NumEntries = 512;
+	} else {
+#ifdef USE_FBR0
+		rx_ring->Fbr0BufferSize = 1024;
+		rx_ring->Fbr0NumEntries = 768;
+#endif
+		rx_ring->Fbr1BufferSize = 16384;
+		rx_ring->Fbr1NumEntries = 128;
+	}
+
+#ifdef USE_FBR0
+	adapter->RxRing.PsrNumEntries = adapter->RxRing.Fbr0NumEntries +
+	    adapter->RxRing.Fbr1NumEntries;
+#else
+	adapter->RxRing.PsrNumEntries = adapter->RxRing.Fbr1NumEntries;
+#endif
+
+	/* Allocate an area of memory for Free Buffer Ring 1 */
+	bufsize = (sizeof(FBR_DESC_t) * rx_ring->Fbr1NumEntries) + 0xfff;
+	rx_ring->pFbr1RingVa = pci_alloc_consistent(adapter->pdev,
+						    bufsize,
+						    &rx_ring->pFbr1RingPa);
+	if (!rx_ring->pFbr1RingVa) {
+		DBG_ERROR(et131x_dbginfo,
+			  "Cannot alloc memory for Free Buffer Ring 1\n");
+		DBG_LEAVE(et131x_dbginfo);
+		return -ENOMEM;
+	}
+
+	/* Save physical address
+	 *
+	 * NOTE: pci_alloc_consistent(), used above to alloc DMA regions,
+	 * ALWAYS returns SAC (32-bit) addresses. If DAC (64-bit) addresses
+	 * are ever returned, make sure the high part is retrieved here
+	 * before storing the adjusted address.
+	 */
+	rx_ring->Fbr1Realpa = rx_ring->pFbr1RingPa;
+
+	/* Align Free Buffer Ring 1 on a 4K boundary */
+	et131x_align_allocated_memory(adapter,
+				      &rx_ring->Fbr1Realpa,
+				      &rx_ring->Fbr1offset, 0x0FFF);
+
+	rx_ring->pFbr1RingVa = (void *)((uint8_t *) rx_ring->pFbr1RingVa +
+					rx_ring->Fbr1offset);
+
+#ifdef USE_FBR0
+	/* Allocate an area of memory for Free Buffer Ring 0 */
+	bufsize = (sizeof(FBR_DESC_t) * rx_ring->Fbr0NumEntries) + 0xfff;
+	rx_ring->pFbr0RingVa = pci_alloc_consistent(adapter->pdev,
+						    bufsize,
+						    &rx_ring->pFbr0RingPa);
+	if (!rx_ring->pFbr0RingVa) {
+		DBG_ERROR(et131x_dbginfo,
+			  "Cannot alloc memory for Free Buffer Ring 0\n");
+		DBG_LEAVE(et131x_dbginfo);
+		return -ENOMEM;
+	}
+
+	/* Save physical address
+	 *
+	 * NOTE: pci_alloc_consistent(), used above to alloc DMA regions,
+	 * ALWAYS returns SAC (32-bit) addresses. If DAC (64-bit) addresses
+	 * are ever returned, make sure the high part is retrieved here before
+	 * storing the adjusted address.
+	 */
+	rx_ring->Fbr0Realpa = rx_ring->pFbr0RingPa;
+
+	/* Align Free Buffer Ring 0 on a 4K boundary */
+	et131x_align_allocated_memory(adapter,
+				      &rx_ring->Fbr0Realpa,
+				      &rx_ring->Fbr0offset, 0x0FFF);
+
+	rx_ring->pFbr0RingVa = (void *)((uint8_t *) rx_ring->pFbr0RingVa +
+					rx_ring->Fbr0offset);
+#endif
+
+	for (OuterLoop = 0; OuterLoop < (rx_ring->Fbr1NumEntries / FBR_CHUNKS);
+	     OuterLoop++) {
+		uint64_t Fbr1Offset;
+		uint64_t Fbr1TempPa;
+		uint32_t Fbr1Align;
+
+		/* This code allocates an area of memory big enough for N
+		 * free buffers + (buffer_size - 1) so that the buffers can
+		 * be aligned on 4k boundaries.  If each buffer were aligned
+		 * to a buffer_size boundary, the effect would be to double
+		 * the size of FBR0.  By allocating N buffers at once, we
+		 * reduce this overhead.
+		 */
+		if (rx_ring->Fbr1BufferSize > 4096) {
+			Fbr1Align = 4096;
+		} else {
+			Fbr1Align = rx_ring->Fbr1BufferSize;
+		}
+
+		FBRChunkSize =
+		    (FBR_CHUNKS * rx_ring->Fbr1BufferSize) + Fbr1Align - 1;
+		rx_ring->Fbr1MemVa[OuterLoop] =
+		    pci_alloc_consistent(adapter->pdev, FBRChunkSize,
+					 &rx_ring->Fbr1MemPa[OuterLoop]);
+
+		if (!rx_ring->Fbr1MemVa[OuterLoop]) {
+			DBG_ERROR(et131x_dbginfo, "Could not alloc memory\n");
+			DBG_LEAVE(et131x_dbginfo);
+			return -ENOMEM;
+		}
+
+		/* See NOTE in "Save Physical Address" comment above */
+		Fbr1TempPa = rx_ring->Fbr1MemPa[OuterLoop];
+
+		et131x_align_allocated_memory(adapter,
+					      &Fbr1TempPa,
+					      &Fbr1Offset, (Fbr1Align - 1));
+
+		for (InnerLoop = 0; InnerLoop < FBR_CHUNKS; InnerLoop++) {
+			uint32_t index = (OuterLoop * FBR_CHUNKS) + InnerLoop;
+
+			/* Save the Virtual address of this index for quick
+			 * access later
+			 */
+			rx_ring->Fbr[1]->Va[index] =
+			    (uint8_t *) rx_ring->Fbr1MemVa[OuterLoop] +
+			    (InnerLoop * rx_ring->Fbr1BufferSize) + Fbr1Offset;
+
+			/* now store the physical address in the descriptor
+			 * so the device can access it
+			 */
+			rx_ring->Fbr[1]->PAHigh[index] =
+			    (uint32_t) (Fbr1TempPa >> 32);
+			rx_ring->Fbr[1]->PALow[index] = (uint32_t) Fbr1TempPa;
+
+			Fbr1TempPa += rx_ring->Fbr1BufferSize;
+
+			rx_ring->Fbr[1]->Buffer1[index] =
+			    rx_ring->Fbr[1]->Va[index];
+			rx_ring->Fbr[1]->Buffer2[index] =
+			    rx_ring->Fbr[1]->Va[index] - 4;
+		}
+	}
+
+#ifdef USE_FBR0
+	/* Same for FBR0 (if in use) */
+	for (OuterLoop = 0; OuterLoop < (rx_ring->Fbr0NumEntries / FBR_CHUNKS);
+	     OuterLoop++) {
+		uint64_t Fbr0Offset;
+		uint64_t Fbr0TempPa;
+
+		FBRChunkSize = ((FBR_CHUNKS + 1) * rx_ring->Fbr0BufferSize) - 1;
+		rx_ring->Fbr0MemVa[OuterLoop] =
+		    pci_alloc_consistent(adapter->pdev, FBRChunkSize,
+					 &rx_ring->Fbr0MemPa[OuterLoop]);
+
+		if (!rx_ring->Fbr0MemVa[OuterLoop]) {
+			DBG_ERROR(et131x_dbginfo, "Could not alloc memory\n");
+			DBG_LEAVE(et131x_dbginfo);
+			return -ENOMEM;
+		}
+
+		/* See NOTE in "Save Physical Address" comment above */
+		Fbr0TempPa = rx_ring->Fbr0MemPa[OuterLoop];
+
+		et131x_align_allocated_memory(adapter,
+					      &Fbr0TempPa,
+					      &Fbr0Offset,
+					      rx_ring->Fbr0BufferSize - 1);
+
+		for (InnerLoop = 0; InnerLoop < FBR_CHUNKS; InnerLoop++) {
+			uint32_t index = (OuterLoop * FBR_CHUNKS) + InnerLoop;
+
+			rx_ring->Fbr[0]->Va[index] =
+			    (uint8_t *) rx_ring->Fbr0MemVa[OuterLoop] +
+			    (InnerLoop * rx_ring->Fbr0BufferSize) + Fbr0Offset;
+
+			rx_ring->Fbr[0]->PAHigh[index] =
+			    (uint32_t) (Fbr0TempPa >> 32);
+			rx_ring->Fbr[0]->PALow[index] = (uint32_t) Fbr0TempPa;
+
+			Fbr0TempPa += rx_ring->Fbr0BufferSize;
+
+			rx_ring->Fbr[0]->Buffer1[index] =
+			    rx_ring->Fbr[0]->Va[index];
+			rx_ring->Fbr[0]->Buffer2[index] =
+			    rx_ring->Fbr[0]->Va[index] - 4;
+		}
+	}
+#endif
+
+	/* Allocate an area of memory for FIFO of Packet Status ring entries */
+	pktStatRingSize =
+	    sizeof(PKT_STAT_DESC_t) * adapter->RxRing.PsrNumEntries;
+
+	rx_ring->pPSRingVa = pci_alloc_consistent(adapter->pdev,
+						  pktStatRingSize + 0x0fff,
+						  &rx_ring->pPSRingPa);
+
+	if (!rx_ring->pPSRingVa) {
+		DBG_ERROR(et131x_dbginfo,
+			  "Cannot alloc memory for Packet Status Ring\n");
+		DBG_LEAVE(et131x_dbginfo);
+		return -ENOMEM;
+	}
+
+	/* Save physical address
+	 *
+	 * NOTE : pci_alloc_consistent(), used above to alloc DMA regions,
+	 * ALWAYS returns SAC (32-bit) addresses. If DAC (64-bit) addresses
+	 * are ever returned, make sure the high part is retrieved here before
+	 * storing the adjusted address.
+	 */
+	rx_ring->pPSRingRealPa = rx_ring->pPSRingPa;
+
+	/* Align Packet Status Ring on a 4K boundary */
+	et131x_align_allocated_memory(adapter,
+				      &rx_ring->pPSRingRealPa,
+				      &rx_ring->pPSRingOffset, 0x0FFF);
+
+	rx_ring->pPSRingVa = (void *)((uint8_t *) rx_ring->pPSRingVa +
+				      rx_ring->pPSRingOffset);
+
+	/* Allocate an area of memory for writeback of status information */
+	rx_ring->pRxStatusVa = pci_alloc_consistent(adapter->pdev,
+						    sizeof(RX_STATUS_BLOCK_t) +
+						    0x7, &rx_ring->pRxStatusPa);
+	if (!rx_ring->pRxStatusVa) {
+		DBG_ERROR(et131x_dbginfo,
+			  "Cannot alloc memory for Status Block\n");
+		DBG_LEAVE(et131x_dbginfo);
+		return -ENOMEM;
+	}
+
+	/* Save physical address */
+	rx_ring->RxStatusRealPA = rx_ring->pRxStatusPa;
+
+	/* Align write back on an 8 byte boundary */
+	et131x_align_allocated_memory(adapter,
+				      &rx_ring->RxStatusRealPA,
+				      &rx_ring->RxStatusOffset, 0x07);
+
+	rx_ring->pRxStatusVa = (void *)((uint8_t *) rx_ring->pRxStatusVa +
+					rx_ring->RxStatusOffset);
+	rx_ring->NumRfd = NIC_DEFAULT_NUM_RFD;
+
+	/* Recv
+	 * pci_pool_create initializes a lookaside list. After successful
+	 * creation, nonpaged fixed-size blocks can be allocated from and
+	 * freed to the lookaside list.
+	 * RFDs will be allocated from this pool.
+	 */
+	rx_ring->RecvLookaside = kmem_cache_create(adapter->netdev->name,
+						   sizeof(MP_RFD),
+						   0,
+						   SLAB_CACHE_DMA |
+						   SLAB_HWCACHE_ALIGN,
+						   NULL);
+
+	MP_SET_FLAG(adapter, fMP_ADAPTER_RECV_LOOKASIDE);
+
+	/* The RFDs are going to be put on lists later on, so initialize the
+	 * lists now.
+	 */
+	INIT_LIST_HEAD(&rx_ring->RecvList);
+	INIT_LIST_HEAD(&rx_ring->RecvPendingList);
+
+	DBG_LEAVE(et131x_dbginfo);
+	return 0;
+}
+
+/**
+ * et131x_rx_dma_memory_free - Free all memory allocated within this module.
+ * @adapter: pointer to our private adapter structure
+ */
+void et131x_rx_dma_memory_free(struct et131x_adapter *adapter)
+{
+	uint32_t index;
+	uint32_t bufsize;
+	uint32_t pktStatRingSize;
+	PMP_RFD pMpRfd;
+	RX_RING_t *rx_ring;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Setup some convenience pointers */
+	rx_ring = (RX_RING_t *) & adapter->RxRing;
+
+	/* Free RFDs and associated packet descriptors */
+	DBG_ASSERT(rx_ring->nReadyRecv == rx_ring->NumRfd);
+
+	while (!list_empty(&rx_ring->RecvList)) {
+		pMpRfd = (MP_RFD *) list_entry(rx_ring->RecvList.next,
+					       MP_RFD, list_node);
+
+		list_del(&pMpRfd->list_node);
+		et131x_rfd_resources_free(adapter, pMpRfd);
+	}
+
+	while (!list_empty(&rx_ring->RecvPendingList)) {
+		pMpRfd = (MP_RFD *) list_entry(rx_ring->RecvPendingList.next,
+					       MP_RFD, list_node);
+		list_del(&pMpRfd->list_node);
+		et131x_rfd_resources_free(adapter, pMpRfd);
+	}
+
+	/* Free Free Buffer Ring 1 */
+	if (rx_ring->pFbr1RingVa) {
+		/* First the packet memory */
+		for (index = 0; index <
+		     (rx_ring->Fbr1NumEntries / FBR_CHUNKS); index++) {
+			if (rx_ring->Fbr1MemVa[index]) {
+				uint32_t Fbr1Align;
+
+				if (rx_ring->Fbr1BufferSize > 4096) {
+					Fbr1Align = 4096;
+				} else {
+					Fbr1Align = rx_ring->Fbr1BufferSize;
+				}
+
+				bufsize =
+				    (rx_ring->Fbr1BufferSize * FBR_CHUNKS) +
+				    Fbr1Align - 1;
+
+				pci_free_consistent(adapter->pdev,
+						    bufsize,
+						    rx_ring->Fbr1MemVa[index],
+						    rx_ring->Fbr1MemPa[index]);
+
+				rx_ring->Fbr1MemVa[index] = NULL;
+			}
+		}
+
+		/* Now the FIFO itself */
+		rx_ring->pFbr1RingVa = (void *)((uint8_t *) rx_ring->pFbr1RingVa -
+						rx_ring->Fbr1offset);
+
+		bufsize =
+		    (sizeof(FBR_DESC_t) * rx_ring->Fbr1NumEntries) + 0xfff;
+
+		pci_free_consistent(adapter->pdev,
+				    bufsize,
+				    rx_ring->pFbr1RingVa, rx_ring->pFbr1RingPa);
+
+		rx_ring->pFbr1RingVa = NULL;
+	}
+
+#ifdef USE_FBR0
+	/* Now the same for Free Buffer Ring 0 */
+	if (rx_ring->pFbr0RingVa) {
+		/* First the packet memory */
+		for (index = 0; index <
+		     (rx_ring->Fbr0NumEntries / FBR_CHUNKS); index++) {
+			if (rx_ring->Fbr0MemVa[index]) {
+				bufsize =
+				    (rx_ring->Fbr0BufferSize *
+				     (FBR_CHUNKS + 1)) - 1;
+
+				pci_free_consistent(adapter->pdev,
+						    bufsize,
+						    rx_ring->Fbr0MemVa[index],
+						    rx_ring->Fbr0MemPa[index]);
+
+				rx_ring->Fbr0MemVa[index] = NULL;
+			}
+		}
+
+		/* Now the FIFO itself */
+		rx_ring->pFbr0RingVa = (void *)((uint8_t *) rx_ring->pFbr0RingVa -
+						rx_ring->Fbr0offset);
+
+		bufsize =
+		    (sizeof(FBR_DESC_t) * rx_ring->Fbr0NumEntries) + 0xfff;
+
+		pci_free_consistent(adapter->pdev,
+				    bufsize,
+				    rx_ring->pFbr0RingVa, rx_ring->pFbr0RingPa);
+
+		rx_ring->pFbr0RingVa = NULL;
+	}
+#endif
+
+	/* Free Packet Status Ring */
+	if (rx_ring->pPSRingVa) {
+		rx_ring->pPSRingVa = (void *)((uint8_t *) rx_ring->pPSRingVa -
+					      rx_ring->pPSRingOffset);
+
+		pktStatRingSize =
+		    sizeof(PKT_STAT_DESC_t) * adapter->RxRing.PsrNumEntries;
+
+		pci_free_consistent(adapter->pdev,
+				    pktStatRingSize + 0x0fff,
+				    rx_ring->pPSRingVa, rx_ring->pPSRingPa);
+
+		rx_ring->pPSRingVa = NULL;
+	}
+
+	/* Free area of memory for the writeback of status information */
+	if (rx_ring->pRxStatusVa) {
+		rx_ring->pRxStatusVa = (void *)((uint8_t *) rx_ring->pRxStatusVa -
+						rx_ring->RxStatusOffset);
+
+		pci_free_consistent(adapter->pdev,
+				    sizeof(RX_STATUS_BLOCK_t) + 0x7,
+				    rx_ring->pRxStatusVa, rx_ring->pRxStatusPa);
+
+		rx_ring->pRxStatusVa = NULL;
+	}
+
+	/* Free receive buffer pool */
+
+	/* Free receive packet pool */
+
+	/* Destroy the lookaside (RFD) pool */
+	if (MP_TEST_FLAG(adapter, fMP_ADAPTER_RECV_LOOKASIDE)) {
+		kmem_cache_destroy(rx_ring->RecvLookaside);
+		MP_CLEAR_FLAG(adapter, fMP_ADAPTER_RECV_LOOKASIDE);
+	}
+
+	/* Free the FBR Lookup Table */
+#ifdef USE_FBR0
+	kfree(rx_ring->Fbr[0]);
+#endif
+
+	kfree(rx_ring->Fbr[1]);
+
+	/* Reset Counters */
+	rx_ring->nReadyRecv = 0;
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * et131x_init_recv - Initialize receive data structures.
+ * @adapter: pointer to our private adapter structure
+ *
+ * Returns 0 on success and errno on failure (as defined in errno.h)
+ */
+int et131x_init_recv(struct et131x_adapter *adapter)
+{
+	int status = -ENOMEM;
+	PMP_RFD pMpRfd = NULL;
+	uint32_t RfdCount;
+	uint32_t TotalNumRfd = 0;
+	RX_RING_t *rx_ring = NULL;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Setup some convenience pointers */
+	rx_ring = (RX_RING_t *) & adapter->RxRing;
+
+	/* Setup each RFD */
+	for (RfdCount = 0; RfdCount < rx_ring->NumRfd; RfdCount++) {
+		pMpRfd = (MP_RFD *) kmem_cache_alloc(rx_ring->RecvLookaside,
+						     GFP_ATOMIC | GFP_DMA);
+
+		if (!pMpRfd) {
+			DBG_ERROR(et131x_dbginfo,
+				  "Couldn't alloc RFD out of kmem_cache\n");
+			status = -ENOMEM;
+			continue;
+		}
+
+		status = et131x_rfd_resources_alloc(adapter, pMpRfd);
+		if (status != 0) {
+			DBG_ERROR(et131x_dbginfo,
+				  "Couldn't alloc packet for RFD\n");
+			kmem_cache_free(rx_ring->RecvLookaside, pMpRfd);
+			continue;
+		}
+
+		/* Add this RFD to the RecvList */
+		list_add_tail(&pMpRfd->list_node, &rx_ring->RecvList);
+
+		/* Increment both the available RFD's, and the total RFD's. */
+		rx_ring->nReadyRecv++;
+		TotalNumRfd++;
+	}
+
+	if (TotalNumRfd > NIC_MIN_NUM_RFD) {
+		status = 0;
+	}
+
+	rx_ring->NumRfd = TotalNumRfd;
+
+	if (status != 0) {
+		kmem_cache_free(rx_ring->RecvLookaside, pMpRfd);
+		DBG_ERROR(et131x_dbginfo,
+			  "Allocation problems in et131x_init_recv\n");
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+	return status;
+}
+
+/**
+ * et131x_rfd_resources_alloc
+ * @adapter: pointer to our private adapter structure
+ * @pMpRfd: pointer to a RFD
+ *
+ * Returns 0 on success and errno on failure (as defined in errno.h)
+ */
+int et131x_rfd_resources_alloc(struct et131x_adapter *adapter, MP_RFD *pMpRfd)
+{
+	pMpRfd->Packet = NULL;
+
+	return 0;
+}
+
+/**
+ * et131x_rfd_resources_free - Free the packet allocated for the given RFD
+ * @adapter: pointer to our private adapter structure
+ * @pMpRfd: pointer to a RFD
+ */
+void et131x_rfd_resources_free(struct et131x_adapter *adapter, MP_RFD *pMpRfd)
+{
+	pMpRfd->Packet = NULL;
+	kmem_cache_free(adapter->RxRing.RecvLookaside, pMpRfd);
+}
+
+/**
+ * ConfigRxDmaRegs - Start of Rx_DMA init sequence
+ * @pAdapter: pointer to our adapter structure
+ */
+void ConfigRxDmaRegs(struct et131x_adapter *pAdapter)
+{
+	struct _RXDMA_t __iomem *pRxDma = &pAdapter->CSRAddress->rxdma;
+	struct _rx_ring_t *pRxLocal = &pAdapter->RxRing;
+	PFBR_DESC_t pFbrEntry;
+	uint32_t iEntry;
+	RXDMA_PSR_NUM_DES_t psr_num_des;
+	unsigned long lockflags;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Halt RXDMA to perform the reconfigure.  */
+	et131x_rx_dma_disable(pAdapter);
+
+	/* Load the completion writeback physical address
+	 *
+	 * NOTE : pci_alloc_consistent(), used above to alloc DMA regions,
+	 * ALWAYS returns SAC (32-bit) addresses. If DAC (64-bit) addresses
+	 * are ever returned, make sure the high part is retrieved here
+	 * before storing the adjusted address.
+	 */
+	writel((uint32_t) (pRxLocal->RxStatusRealPA >> 32),
+	       &pRxDma->dma_wb_base_hi);
+	writel((uint32_t) pRxLocal->RxStatusRealPA, &pRxDma->dma_wb_base_lo);
+
+	memset(pRxLocal->pRxStatusVa, 0, sizeof(RX_STATUS_BLOCK_t));
+
+	/* Set the address and parameters of the packet status ring into the
+	 * 1310's registers
+	 */
+	writel((uint32_t) (pRxLocal->pPSRingRealPa >> 32),
+	       &pRxDma->psr_base_hi);
+	writel((uint32_t) pRxLocal->pPSRingRealPa, &pRxDma->psr_base_lo);
+	writel(pRxLocal->PsrNumEntries - 1, &pRxDma->psr_num_des.value);
+	writel(0, &pRxDma->psr_full_offset.value);
+
+	psr_num_des.value = readl(&pRxDma->psr_num_des.value);
+	writel((psr_num_des.bits.psr_ndes * LO_MARK_PERCENT_FOR_PSR) / 100,
+	       &pRxDma->psr_min_des.value);
+
+	spin_lock_irqsave(&pAdapter->RcvLock, lockflags);
+
+	/* These local variables track the PSR in the adapter structure */
+	pRxLocal->local_psr_full.bits.psr_full = 0;
+	pRxLocal->local_psr_full.bits.psr_full_wrap = 0;
+
+	/* Now's the best time to initialize FBR1 contents */
+	pFbrEntry = (PFBR_DESC_t) pRxLocal->pFbr1RingVa;
+	for (iEntry = 0; iEntry < pRxLocal->Fbr1NumEntries; iEntry++) {
+		pFbrEntry->addr_hi = pRxLocal->Fbr[1]->PAHigh[iEntry];
+		pFbrEntry->addr_lo = pRxLocal->Fbr[1]->PALow[iEntry];
+		pFbrEntry->word2.bits.bi = iEntry;
+		pFbrEntry++;
+	}
+
+	/* Set the address and parameters of Free buffer ring 1 (and 0 if
+	 * required) into the 1310's registers
+	 */
+	writel((uint32_t) (pRxLocal->Fbr1Realpa >> 32), &pRxDma->fbr1_base_hi);
+	writel((uint32_t) pRxLocal->Fbr1Realpa, &pRxDma->fbr1_base_lo);
+	writel(pRxLocal->Fbr1NumEntries - 1, &pRxDma->fbr1_num_des.value);
+
+	{
+		DMA10W_t fbr1_full = { 0 };
+
+		fbr1_full.bits.val = 0;
+		fbr1_full.bits.wrap = 1;
+		writel(fbr1_full.value, &pRxDma->fbr1_full_offset.value);
+	}
+
+	/* This variable tracks the free buffer ring 1 full position, so it
+	 * has to match the above.
+	 */
+	pRxLocal->local_Fbr1_full.bits.val = 0;
+	pRxLocal->local_Fbr1_full.bits.wrap = 1;
+	writel(((pRxLocal->Fbr1NumEntries * LO_MARK_PERCENT_FOR_RX) / 100) - 1,
+	       &pRxDma->fbr1_min_des.value);
+
+#ifdef USE_FBR0
+	/* Now's the best time to initialize FBR0 contents */
+	pFbrEntry = (PFBR_DESC_t) pRxLocal->pFbr0RingVa;
+	for (iEntry = 0; iEntry < pRxLocal->Fbr0NumEntries; iEntry++) {
+		pFbrEntry->addr_hi = pRxLocal->Fbr[0]->PAHigh[iEntry];
+		pFbrEntry->addr_lo = pRxLocal->Fbr[0]->PALow[iEntry];
+		pFbrEntry->word2.bits.bi = iEntry;
+		pFbrEntry++;
+	}
+
+	writel((uint32_t) (pRxLocal->Fbr0Realpa >> 32), &pRxDma->fbr0_base_hi);
+	writel((uint32_t) pRxLocal->Fbr0Realpa, &pRxDma->fbr0_base_lo);
+	writel(pRxLocal->Fbr0NumEntries - 1, &pRxDma->fbr0_num_des.value);
+
+	{
+		DMA10W_t fbr0_full = { 0 };
+
+		fbr0_full.bits.val = 0;
+		fbr0_full.bits.wrap = 1;
+		writel(fbr0_full.value, &pRxDma->fbr0_full_offset.value);
+	}
+
+	/* This variable tracks the free buffer ring 0 full position, so it
+	 * has to match the above.
+	 */
+	pRxLocal->local_Fbr0_full.bits.val = 0;
+	pRxLocal->local_Fbr0_full.bits.wrap = 1;
+	writel(((pRxLocal->Fbr0NumEntries * LO_MARK_PERCENT_FOR_RX) / 100) - 1,
+	       &pRxDma->fbr0_min_des.value);
+#endif
+
+	/* Program the number of packets we will receive before generating an
+	 * interrupt.
+	 * For version B silicon, this value gets updated once autoneg is
+	 *complete.
+	 */
+	writel(pAdapter->RegistryRxNumBuffers, &pRxDma->num_pkt_done.value);
+
+	/* The "time_done" is not working correctly to coalesce interrupts
+	 * after a given time period, but rather is giving us an interrupt
+	 * regardless of whether we have received packets.
+	 * This value gets updated once autoneg is complete.
+	 */
+	writel(pAdapter->RegistryRxTimeInterval, &pRxDma->max_pkt_time.value);
+
+	spin_unlock_irqrestore(&pAdapter->RcvLock, lockflags);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * SetRxDmaTimer - Set the heartbeat timer according to line rate.
+ * @pAdapter: pointer to our adapter structure
+ */
+void SetRxDmaTimer(struct et131x_adapter *pAdapter)
+{
+	/* For version B silicon, we do not use the RxDMA timer for 10 and 100
+	 * Mbits/s line rates. We do not enable and RxDMA interrupt coalescing.
+	 */
+	if ((pAdapter->uiLinkSpeed == TRUEPHY_SPEED_100MBPS) ||
+	    (pAdapter->uiLinkSpeed == TRUEPHY_SPEED_10MBPS)) {
+		writel(0, &pAdapter->CSRAddress->rxdma.max_pkt_time.value);
+		writel(1, &pAdapter->CSRAddress->rxdma.num_pkt_done.value);
+	}
+}
+
+/**
+ * et131x_rx_dma_disable - Stop of Rx_DMA on the ET1310
+ * @pAdapter: pointer to our adapter structure
+ */
+void et131x_rx_dma_disable(struct et131x_adapter *pAdapter)
+{
+	RXDMA_CSR_t csr;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Setup the receive dma configuration register */
+	writel(0x00002001, &pAdapter->CSRAddress->rxdma.csr.value);
+	csr.value = readl(&pAdapter->CSRAddress->rxdma.csr.value);
+	if (csr.bits.halt_status != 1) {
+		udelay(5);
+		csr.value = readl(&pAdapter->CSRAddress->rxdma.csr.value);
+		if (csr.bits.halt_status != 1) {
+			DBG_ERROR(et131x_dbginfo,
+				  "RX Dma failed to enter halt state. CSR 0x%08x\n",
+				  csr.value);
+		}
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * et131x_rx_dma_enable - re-start of Rx_DMA on the ET1310.
+ * @pAdapter: pointer to our adapter structure
+ */
+void et131x_rx_dma_enable(struct et131x_adapter *pAdapter)
+{
+	DBG_RX_ENTER(et131x_dbginfo);
+
+	if (pAdapter->RegistryPhyLoopbk) {
+	/* RxDMA is disabled for loopback operation. */
+		writel(0x1, &pAdapter->CSRAddress->rxdma.csr.value);
+	} else {
+	/* Setup the receive dma configuration register for normal operation */
+		RXDMA_CSR_t csr = { 0 };
+
+		csr.bits.fbr1_enable = 1;
+		if (pAdapter->RxRing.Fbr1BufferSize == 4096) {
+			csr.bits.fbr1_size = 1;
+		} else if (pAdapter->RxRing.Fbr1BufferSize == 8192) {
+			csr.bits.fbr1_size = 2;
+		} else if (pAdapter->RxRing.Fbr1BufferSize == 16384) {
+			csr.bits.fbr1_size = 3;
+		}
+#ifdef USE_FBR0
+		csr.bits.fbr0_enable = 1;
+		if (pAdapter->RxRing.Fbr0BufferSize == 256) {
+			csr.bits.fbr0_size = 1;
+		} else if (pAdapter->RxRing.Fbr0BufferSize == 512) {
+			csr.bits.fbr0_size = 2;
+		} else if (pAdapter->RxRing.Fbr0BufferSize == 1024) {
+			csr.bits.fbr0_size = 3;
+		}
+#endif
+		writel(csr.value, &pAdapter->CSRAddress->rxdma.csr.value);
+
+		csr.value = readl(&pAdapter->CSRAddress->rxdma.csr.value);
+		if (csr.bits.halt_status != 0) {
+			udelay(5);
+			csr.value = readl(&pAdapter->CSRAddress->rxdma.csr.value);
+			if (csr.bits.halt_status != 0) {
+				DBG_ERROR(et131x_dbginfo,
+					  "RX Dma failed to exit halt state.  CSR 0x%08x\n",
+					  csr.value);
+			}
+		}
+	}
+
+	DBG_RX_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * nic_rx_pkts - Checks the hardware for available packets
+ * @pAdapter: pointer to our adapter
+ *
+ * Returns pMpRfd, a pointer to our MPRFD.
+ *
+ * Checks the hardware for available packets, using completion ring
+ * If packets are available, it gets an RFD from the RecvList, attaches
+ * the packet to it, puts the RFD in the RecvPendList, and also returns
+ * the pointer to the RFD.
+ */
+PMP_RFD nic_rx_pkts(struct et131x_adapter *pAdapter)
+{
+	struct _rx_ring_t *pRxLocal = &pAdapter->RxRing;
+	PRX_STATUS_BLOCK_t pRxStatusBlock;
+	PPKT_STAT_DESC_t pPSREntry;
+	PMP_RFD pMpRfd;
+	uint32_t nIndex;
+	uint8_t *pBufVa;
+	unsigned long lockflags;
+	struct list_head *element;
+	uint8_t ringIndex;
+	uint16_t bufferIndex;
+	uint32_t localLen;
+	PKT_STAT_DESC_WORD0_t Word0;
+
+
+	DBG_RX_ENTER(et131x_dbginfo);
+
+	/* RX Status block is written by the DMA engine prior to every
+	 * interrupt. It contains the next to be used entry in the Packet
+	 * Status Ring, and also the two Free Buffer rings.
+	 */
+	pRxStatusBlock = (PRX_STATUS_BLOCK_t) pRxLocal->pRxStatusVa;
+
+	if (pRxStatusBlock->Word1.bits.PSRoffset ==
+			pRxLocal->local_psr_full.bits.psr_full &&
+	    pRxStatusBlock->Word1.bits.PSRwrap ==
+	    		pRxLocal->local_psr_full.bits.psr_full_wrap) {
+		/* Looks like this ring is not updated yet */
+		DBG_RX(et131x_dbginfo, "(0)\n");
+		DBG_RX_LEAVE(et131x_dbginfo);
+		return NULL;
+	}
+
+	/* The packet status ring indicates that data is available. */
+	pPSREntry = (PPKT_STAT_DESC_t) (pRxLocal->pPSRingVa) +
+			pRxLocal->local_psr_full.bits.psr_full;
+
+	/* Grab any information that is required once the PSR is
+	 * advanced, since we can no longer rely on the memory being
+	 * accurate
+	 */
+	localLen = pPSREntry->word1.bits.length;
+	ringIndex = (uint8_t) pPSREntry->word1.bits.ri;
+	bufferIndex = (uint16_t) pPSREntry->word1.bits.bi;
+	Word0 = pPSREntry->word0;
+
+	DBG_RX(et131x_dbginfo, "RX PACKET STATUS\n");
+	DBG_RX(et131x_dbginfo, "\tlength      : %d\n", localLen);
+	DBG_RX(et131x_dbginfo, "\tringIndex   : %d\n", ringIndex);
+	DBG_RX(et131x_dbginfo, "\tbufferIndex : %d\n", bufferIndex);
+	DBG_RX(et131x_dbginfo, "\tword0       : 0x%08x\n", Word0.value);
+
+#if 0
+	/* Check the Status Word that the MAC has appended to the PSR
+	 * entry in case the MAC has detected errors.
+	 */
+	if (Word0.value & ALCATEL_BAD_STATUS) {
+		DBG_ERROR(et131x_dbginfo,
+			  "NICRxPkts >> Alcatel Status Word error."
+			  "Value 0x%08x\n", pPSREntry->word0.value);
+	}
+#endif
+
+	/* Indicate that we have used this PSR entry. */
+	if (++pRxLocal->local_psr_full.bits.psr_full >
+	    pRxLocal->PsrNumEntries - 1) {
+		pRxLocal->local_psr_full.bits.psr_full = 0;
+		pRxLocal->local_psr_full.bits.psr_full_wrap ^= 1;
+	}
+
+	writel(pRxLocal->local_psr_full.value,
+	       &pAdapter->CSRAddress->rxdma.psr_full_offset.value);
+
+#ifndef USE_FBR0
+	if (ringIndex != 1) {
+		DBG_ERROR(et131x_dbginfo,
+			  "NICRxPkts PSR Entry %d indicates "
+			  "Buffer Ring 0 in use\n",
+			  pRxLocal->local_psr_full.bits.psr_full);
+		DBG_RX_LEAVE(et131x_dbginfo);
+		return NULL;
+	}
+#endif
+
+#ifdef USE_FBR0
+	if (ringIndex > 1 ||
+	    (ringIndex == 0 &&
+	     bufferIndex > pRxLocal->Fbr0NumEntries - 1) ||
+	    (ringIndex == 1 &&
+	     bufferIndex > pRxLocal->Fbr1NumEntries - 1))
+#else
+	if (ringIndex != 1 ||
+	    bufferIndex > pRxLocal->Fbr1NumEntries - 1)
+#endif
+	{
+		/* Illegal buffer or ring index cannot be used by S/W*/
+		DBG_ERROR(et131x_dbginfo,
+			  "NICRxPkts PSR Entry %d indicates "
+			  "length of %d and/or bad bi(%d)\n",
+			  pRxLocal->local_psr_full.bits.psr_full,
+			  localLen, bufferIndex);
+		DBG_RX_LEAVE(et131x_dbginfo);
+		return NULL;
+	}
+
+	/* Get and fill the RFD. */
+	spin_lock_irqsave(&pAdapter->RcvLock, lockflags);
+
+	pMpRfd = NULL;
+	element = pRxLocal->RecvList.next;
+	pMpRfd = (PMP_RFD) list_entry(element, MP_RFD, list_node);
+
+	if (pMpRfd == NULL) {
+		DBG_RX(et131x_dbginfo,
+		       "NULL RFD returned from RecvList via list_entry()\n");
+		DBG_RX_LEAVE(et131x_dbginfo);
+		spin_unlock_irqrestore(&pAdapter->RcvLock, lockflags);
+		return NULL;
+	}
+
+	list_del(&pMpRfd->list_node);
+	pRxLocal->nReadyRecv--;
+
+	spin_unlock_irqrestore(&pAdapter->RcvLock, lockflags);
+
+	pMpRfd->iBufferIndex = bufferIndex;
+	pMpRfd->iRingIndex = ringIndex;
+
+	/* In V1 silicon, there is a bug which screws up filtering of
+	 * runt packets.  Therefore runt packet filtering is disabled
+	 * in the MAC and the packets are dropped here.  They are
+	 * also counted here.
+	 */
+	if (localLen < (NIC_MIN_PACKET_SIZE + 4)) {
+		pAdapter->Stats.other_errors++;
+		localLen = 0;
+	}
+
+	if (localLen) {
+		if (pAdapter->ReplicaPhyLoopbk == 1) {
+			pBufVa = pRxLocal->Fbr[ringIndex]->Va[bufferIndex];
+
+			if (memcmp(&pBufVa[6], &pAdapter->CurrentAddress[0],
+				   ETH_ALEN) == 0) {
+				if (memcmp(&pBufVa[42], "Replica packet",
+					   ETH_HLEN)) {
+					pAdapter->ReplicaPhyLoopbkPF = 1;
+				}
+			}
+			DBG_WARNING(et131x_dbginfo,
+				    "pBufVa:\t%02x:%02x:%02x:%02x:%02x:%02x\n",
+				    pBufVa[6], pBufVa[7], pBufVa[8],
+				    pBufVa[9], pBufVa[10], pBufVa[11]);
+
+			DBG_WARNING(et131x_dbginfo,
+				    "CurrentAddr:\t%02x:%02x:%02x:%02x:%02x:%02x\n",
+				    pAdapter->CurrentAddress[0],
+				    pAdapter->CurrentAddress[1],
+				    pAdapter->CurrentAddress[2],
+				    pAdapter->CurrentAddress[3],
+				    pAdapter->CurrentAddress[4],
+				    pAdapter->CurrentAddress[5]);
+		}
+
+		/* Determine if this is a multicast packet coming in */
+		if ((Word0.value & ALCATEL_MULTICAST_PKT) &&
+		    !(Word0.value & ALCATEL_BROADCAST_PKT)) {
+			/* Promiscuous mode and Multicast mode are
+			 * not mutually exclusive as was first
+			 * thought.  I guess Promiscuous is just
+			 * considered a super-set of the other
+			 * filters. Generally filter is 0x2b when in
+			 * promiscuous mode.
+			 */
+			if ((pAdapter->PacketFilter & ET131X_PACKET_TYPE_MULTICAST)
+			    && !(pAdapter->PacketFilter & ET131X_PACKET_TYPE_PROMISCUOUS)
+			    && !(pAdapter->PacketFilter & ET131X_PACKET_TYPE_ALL_MULTICAST)) {
+				pBufVa = pRxLocal->Fbr[ringIndex]->
+						Va[bufferIndex];
+
+				/* Loop through our list to see if the
+				 * destination address of this packet
+				 * matches one in our list.
+				 */
+				for (nIndex = 0;
+				     nIndex < pAdapter->MCAddressCount;
+				     nIndex++) {
+					if (pBufVa[0] ==
+					    pAdapter->MCList[nIndex][0]
+					    && pBufVa[1] ==
+					    pAdapter->MCList[nIndex][1]
+					    && pBufVa[2] ==
+					    pAdapter->MCList[nIndex][2]
+					    && pBufVa[3] ==
+					    pAdapter->MCList[nIndex][3]
+					    && pBufVa[4] ==
+					    pAdapter->MCList[nIndex][4]
+					    && pBufVa[5] ==
+					    pAdapter->MCList[nIndex][5]) {
+						break;
+					}
+				}
+
+				/* If our index is equal to the number
+				 * of Multicast address we have, then
+				 * this means we did not find this
+				 * packet's matching address in our
+				 * list.  Set the PacketSize to zero,
+				 * so we free our RFD when we return
+				 * from this function.
+				 */
+				if (nIndex == pAdapter->MCAddressCount) {
+					localLen = 0;
+				}
+			}
+
+			if (localLen > 0) {
+				pAdapter->Stats.multircv++;
+			}
+		} else if (Word0.value & ALCATEL_BROADCAST_PKT) {
+			pAdapter->Stats.brdcstrcv++;
+		} else {
+			/* Not sure what this counter measures in
+			 * promiscuous mode. Perhaps we should check
+			 * the MAC address to see if it is directed
+			 * to us in promiscuous mode.
+			 */
+			pAdapter->Stats.unircv++;
+		}
+	}
+
+	if (localLen > 0) {
+		struct sk_buff *skb = NULL;
+
+		//pMpRfd->PacketSize = localLen - 4;
+		pMpRfd->PacketSize = localLen;
+
+		skb = dev_alloc_skb(pMpRfd->PacketSize + 2);
+		if (!skb) {
+			DBG_ERROR(et131x_dbginfo,
+				  "Couldn't alloc an SKB for Rx\n");
+			DBG_RX_LEAVE(et131x_dbginfo);
+			return NULL;
+		}
+
+		pAdapter->net_stats.rx_bytes += pMpRfd->PacketSize;
+
+		memcpy(skb_put(skb, pMpRfd->PacketSize),
+		       pRxLocal->Fbr[ringIndex]->Va[bufferIndex],
+		       pMpRfd->PacketSize);
+
+		skb->dev = pAdapter->netdev;
+		skb->protocol = eth_type_trans(skb, pAdapter->netdev);
+		skb->ip_summed = CHECKSUM_NONE;
+
+		netif_rx(skb);
+	} else {
+		pMpRfd->PacketSize = 0;
+	}
+
+	nic_return_rfd(pAdapter, pMpRfd);
+
+	DBG_RX(et131x_dbginfo, "(1)\n");
+	DBG_RX_LEAVE(et131x_dbginfo);
+	return pMpRfd;
+}
+
+/**
+ * et131x_reset_recv - Reset the receive list
+ * @pAdapter: pointer to our adapter
+ *
+ * Assumption, Rcv spinlock has been acquired.
+ */
+void et131x_reset_recv(struct et131x_adapter *pAdapter)
+{
+	PMP_RFD pMpRfd;
+	struct list_head *element;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	DBG_ASSERT(!list_empty(&pAdapter->RxRing.RecvList));
+
+	/* Take all the RFD's from the pending list, and stick them on the
+	 * RecvList.
+	 */
+	while (!list_empty(&pAdapter->RxRing.RecvPendingList)) {
+		element = pAdapter->RxRing.RecvPendingList.next;
+
+		pMpRfd = (PMP_RFD) list_entry(element, MP_RFD, list_node);
+
+		list_del(&pMpRfd->list_node);
+		list_add_tail(&pMpRfd->list_node, &pAdapter->RxRing.RecvList);
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * et131x_handle_recv_interrupt - Interrupt handler for receive processing
+ * @pAdapter: pointer to our adapter
+ *
+ * Assumption, Rcv spinlock has been acquired.
+ */
+void et131x_handle_recv_interrupt(struct et131x_adapter *pAdapter)
+{
+	PMP_RFD pMpRfd = NULL;
+	struct sk_buff *PacketArray[NUM_PACKETS_HANDLED];
+	PMP_RFD RFDFreeArray[NUM_PACKETS_HANDLED];
+	uint32_t PacketArrayCount = 0;
+	uint32_t PacketsToHandle;
+	uint32_t PacketFreeCount = 0;
+	bool TempUnfinishedRec = false;
+
+	DBG_RX_ENTER(et131x_dbginfo);
+
+	PacketsToHandle = NUM_PACKETS_HANDLED;
+
+	/* Process up to available RFD's */
+	while (PacketArrayCount < PacketsToHandle) {
+		if (list_empty(&pAdapter->RxRing.RecvList)) {
+			DBG_ASSERT(pAdapter->RxRing.nReadyRecv == 0);
+			DBG_ERROR(et131x_dbginfo, "NO RFD's !!!!!!!!!!!!!\n");
+			TempUnfinishedRec = true;
+			break;
+		}
+
+		pMpRfd = nic_rx_pkts(pAdapter);
+
+		if (pMpRfd == NULL) {
+			break;
+		}
+
+		/* Do not receive any packets until a filter has been set.
+		 * Do not receive any packets until we are at D0.
+		 * Do not receive any packets until we have link.
+		 * If length is zero, return the RFD in order to advance the
+		 * Free buffer ring.
+		 */
+		if ((!pAdapter->PacketFilter) ||
+		    (pAdapter->PoMgmt.PowerState != NdisDeviceStateD0) ||
+		    (!MP_LINK_DETECTED(pAdapter)) ||
+		    (pMpRfd->PacketSize == 0)) {
+			continue;
+		}
+
+		/* Increment the number of packets we received */
+		pAdapter->Stats.ipackets++;
+
+		/* Set the status on the packet, either resources or success */
+		if (pAdapter->RxRing.nReadyRecv >= RFD_LOW_WATER_MARK) {
+			/* Put this RFD on the pending list
+			 *
+			 * NOTE: nic_rx_pkts() above is already returning the
+			 * RFD to the RecvList, so don't additionally do that
+			 * here.
+			 * Besides, we don't really need (at this point) the
+			 * pending list anyway.
+			 */
+			//spin_lock_irqsave( &pAdapter->RcvPendLock, lockflags );
+			//list_add_tail( &pMpRfd->list_node, &pAdapter->RxRing.RecvPendingList );
+			//spin_unlock_irqrestore( &pAdapter->RcvPendLock, lockflags );
+
+			/* Update the number of outstanding Recvs */
+			//MP_INC_RCV_REF( pAdapter );
+		} else {
+			RFDFreeArray[PacketFreeCount] = pMpRfd;
+			PacketFreeCount++;
+
+			DBG_WARNING(et131x_dbginfo,
+				    "RFD's are running out !!!!!!!!!!!!!\n");
+		}
+
+		PacketArray[PacketArrayCount] = pMpRfd->Packet;
+		PacketArrayCount++;
+	}
+
+	if ((PacketArrayCount == NUM_PACKETS_HANDLED) || TempUnfinishedRec) {
+		pAdapter->RxRing.UnfinishedReceives = true;
+		writel(pAdapter->RegistryTxTimeInterval * NANO_IN_A_MICRO,
+		       &pAdapter->CSRAddress->global.watchdog_timer);
+	} else {
+		/* Watchdog timer will disable itself if appropriate. */
+		pAdapter->RxRing.UnfinishedReceives = false;
+	}
+
+	DBG_RX_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * NICReturnRFD - Recycle a RFD and put it back onto the receive list
+ * @pAdapter: pointer to our adapter
+ * @pMpRfd: pointer to the RFD
+ */
+void nic_return_rfd(struct et131x_adapter *pAdapter, PMP_RFD pMpRfd)
+{
+	struct _rx_ring_t *pRxLocal = &pAdapter->RxRing;
+	struct _RXDMA_t __iomem *pRxDma = &pAdapter->CSRAddress->rxdma;
+	uint16_t bi = pMpRfd->iBufferIndex;
+	uint8_t ri = pMpRfd->iRingIndex;
+	unsigned long lockflags;
+
+	DBG_RX_ENTER(et131x_dbginfo);
+
+	/* We don't use any of the OOB data besides status. Otherwise, we
+	 * need to clean up OOB data
+	 */
+	if (
+#ifdef USE_FBR0
+	    (ri == 0 && bi < pRxLocal->Fbr0NumEntries) ||
+#endif
+	    (ri == 1 && bi < pRxLocal->Fbr1NumEntries)) {
+		spin_lock_irqsave(&pAdapter->FbrLock, lockflags);
+
+		if (ri == 1) {
+			PFBR_DESC_t pNextDesc =
+			    (PFBR_DESC_t) (pRxLocal->pFbr1RingVa) +
+			    pRxLocal->local_Fbr1_full.bits.val;
+
+			/* Handle the Free Buffer Ring advancement here. Write
+			 * the PA / Buffer Index for the returned buffer into
+			 * the oldest (next to be freed)FBR entry
+			 */
+			pNextDesc->addr_hi = pRxLocal->Fbr[1]->PAHigh[bi];
+			pNextDesc->addr_lo = pRxLocal->Fbr[1]->PALow[bi];
+			pNextDesc->word2.value = bi;
+
+			if (++pRxLocal->local_Fbr1_full.bits.val >
+			    (pRxLocal->Fbr1NumEntries - 1)) {
+				pRxLocal->local_Fbr1_full.bits.val = 0;
+				pRxLocal->local_Fbr1_full.bits.wrap ^= 1;
+			}
+
+			writel(pRxLocal->local_Fbr1_full.value,
+			       &pRxDma->fbr1_full_offset.value);
+		}
+#ifdef USE_FBR0
+		else {
+			PFBR_DESC_t pNextDesc =
+			    (PFBR_DESC_t) pRxLocal->pFbr0RingVa +
+			    pRxLocal->local_Fbr0_full.bits.val;
+
+			/* Handle the Free Buffer Ring advancement here. Write
+			 * the PA / Buffer Index for the returned buffer into
+			 * the oldest (next to be freed) FBR entry
+			 */
+			pNextDesc->addr_hi = pRxLocal->Fbr[0]->PAHigh[bi];
+			pNextDesc->addr_lo = pRxLocal->Fbr[0]->PALow[bi];
+			pNextDesc->word2.value = bi;
+
+			if (++pRxLocal->local_Fbr0_full.bits.val >
+			    (pRxLocal->Fbr0NumEntries - 1)) {
+				pRxLocal->local_Fbr0_full.bits.val = 0;
+				pRxLocal->local_Fbr0_full.bits.wrap ^= 1;
+			}
+
+			writel(pRxLocal->local_Fbr0_full.value,
+			       &pRxDma->fbr0_full_offset.value);
+		}
+#endif
+		spin_unlock_irqrestore(&pAdapter->FbrLock, lockflags);
+	} else {
+		DBG_ERROR(et131x_dbginfo,
+			  "NICReturnRFD illegal Buffer Index returned\n");
+	}
+
+	/* The processing on this RFD is done, so put it back on the tail of
+	 * our list
+	 */
+	spin_lock_irqsave(&pAdapter->RcvLock, lockflags);
+	list_add_tail(&pMpRfd->list_node, &pRxLocal->RecvList);
+	pRxLocal->nReadyRecv++;
+	spin_unlock_irqrestore(&pAdapter->RcvLock, lockflags);
+
+	DBG_ASSERT(pRxLocal->nReadyRecv <= pRxLocal->NumRfd);
+	DBG_RX_LEAVE(et131x_dbginfo);
+}
diff --git a/drivers/staging/et131x/et1310_rx.h b/drivers/staging/et131x/et1310_rx.h
new file mode 100644
index 0000000..ea66dbc
--- /dev/null
+++ b/drivers/staging/et131x/et1310_rx.h
@@ -0,0 +1,373 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et1310_rx.h - Defines, structs, enums, prototypes, etc. pertaining to data
+ *               reception.
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#ifndef __ET1310_RX_H__
+#define __ET1310_RX_H__
+
+#include "et1310_address_map.h"
+
+#define USE_FBR0 true
+
+#ifdef USE_FBR0
+//#define FBR0_BUFFER_SIZE 256
+#endif
+
+//#define FBR1_BUFFER_SIZE 2048
+
+#define FBR_CHUNKS 32
+
+#define MAX_DESC_PER_RING_RX         1024
+
+/* number of RFDs - default and min */
+#ifdef USE_FBR0
+#define RFD_LOW_WATER_MARK	40
+#define NIC_MIN_NUM_RFD		64
+#define NIC_DEFAULT_NUM_RFD	1024
+#else
+#define RFD_LOW_WATER_MARK	20
+#define NIC_MIN_NUM_RFD		64
+#define NIC_DEFAULT_NUM_RFD	256
+#endif
+
+#define NUM_PACKETS_HANDLED	256
+
+#define ALCATEL_BAD_STATUS	0xe47f0000
+#define ALCATEL_MULTICAST_PKT	0x01000000
+#define ALCATEL_BROADCAST_PKT	0x02000000
+
+/* typedefs for Free Buffer Descriptors */
+typedef union _FBR_WORD2_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 reserved:22;	// bits 10-31
+		u32 bi:10;		// bits 0-9(Buffer Index)
+#else
+		u32 bi:10;		// bits 0-9(Buffer Index)
+		u32 reserved:22;	// bit 10-31
+#endif
+	} bits;
+} FBR_WORD2_t, *PFBR_WORD2_t;
+
+typedef struct _FBR_DESC_t {
+	u32 addr_lo;
+	u32 addr_hi;
+	FBR_WORD2_t word2;
+} FBR_DESC_t, *PFBR_DESC_t;
+
+/* Typedefs for Packet Status Ring Descriptors */
+typedef union _PKT_STAT_DESC_WORD0_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		// top 16 bits are from the Alcatel Status Word as enumerated in
+		// PE-MCXMAC Data Sheet IPD DS54 0210-1 (also IPD-DS80 0205-2)
+#if 0
+		u32 asw_trunc:1;		// bit 31(Rx frame truncated)
+#endif
+		u32 asw_long_evt:1;	// bit 31(Rx long event)
+		u32 asw_VLAN_tag:1;	// bit 30(VLAN tag detected)
+		u32 asw_unsupported_op:1;	// bit 29(unsupported OP code)
+		u32 asw_pause_frame:1;	// bit 28(is a pause frame)
+		u32 asw_control_frame:1;	// bit 27(is a control frame)
+		u32 asw_dribble_nibble:1;	// bit 26(spurious bits after EOP)
+		u32 asw_broadcast:1;	// bit 25(has a broadcast address)
+		u32 asw_multicast:1;	// bit 24(has a multicast address)
+		u32 asw_OK:1;		// bit 23(valid CRC + no code error)
+		u32 asw_too_long:1;	// bit 22(frame length > 1518 bytes)
+		u32 asw_len_chk_err:1;	// bit 21(frame length field incorrect)
+		u32 asw_CRC_err:1;		// bit 20(CRC error)
+		u32 asw_code_err:1;	// bit 19(one or more nibbles signalled as errors)
+		u32 asw_false_carrier_event:1;	// bit 18(bad carrier since last good packet)
+		u32 asw_RX_DV_event:1;	// bit 17(short receive event detected)
+		u32 asw_prev_pkt_dropped:1;// bit 16(e.g. IFG too small on previous)
+		u32 unused:5;		// bits 11-15
+		u32 vp:1;			// bit 10(VLAN Packet)
+		u32 jp:1;			// bit 9(Jumbo Packet)
+		u32 ft:1;			// bit 8(Frame Truncated)
+		u32 drop:1;		// bit 7(Drop packet)
+		u32 rxmac_error:1;		// bit 6(RXMAC Error Indicator)
+		u32 wol:1;			// bit 5(WOL Event)
+		u32 tcpp:1;		// bit 4(TCP checksum pass)
+		u32 tcpa:1;		// bit 3(TCP checksum assist)
+		u32 ipp:1;			// bit 2(IP checksum pass)
+		u32 ipa:1;			// bit 1(IP checksum assist)
+		u32 hp:1;			// bit 0(hash pass)
+#else
+		u32 hp:1;			// bit 0(hash pass)
+		u32 ipa:1;			// bit 1(IP checksum assist)
+		u32 ipp:1;			// bit 2(IP checksum pass)
+		u32 tcpa:1;		// bit 3(TCP checksum assist)
+		u32 tcpp:1;		// bit 4(TCP checksum pass)
+		u32 wol:1;			// bit 5(WOL Event)
+		u32 rxmac_error:1;		// bit 6(RXMAC Error Indicator)
+		u32 drop:1;		// bit 7(Drop packet)
+		u32 ft:1;			// bit 8(Frame Truncated)
+		u32 jp:1;			// bit 9(Jumbo Packet)
+		u32 vp:1;			// bit 10(VLAN Packet)
+		u32 unused:5;		// bits 11-15
+		u32 asw_prev_pkt_dropped:1;// bit 16(e.g. IFG too small on previous)
+		u32 asw_RX_DV_event:1;	// bit 17(short receive event detected)
+		u32 asw_false_carrier_event:1;	// bit 18(bad carrier since last good packet)
+		u32 asw_code_err:1;	// bit 19(one or more nibbles signalled as errors)
+		u32 asw_CRC_err:1;		// bit 20(CRC error)
+		u32 asw_len_chk_err:1;	// bit 21(frame length field incorrect)
+		u32 asw_too_long:1;	// bit 22(frame length > 1518 bytes)
+		u32 asw_OK:1;		// bit 23(valid CRC + no code error)
+		u32 asw_multicast:1;	// bit 24(has a multicast address)
+		u32 asw_broadcast:1;	// bit 25(has a broadcast address)
+		u32 asw_dribble_nibble:1;	// bit 26(spurious bits after EOP)
+		u32 asw_control_frame:1;	// bit 27(is a control frame)
+		u32 asw_pause_frame:1;	// bit 28(is a pause frame)
+		u32 asw_unsupported_op:1;	// bit 29(unsupported OP code)
+		u32 asw_VLAN_tag:1;	// bit 30(VLAN tag detected)
+		u32 asw_long_evt:1;	// bit 31(Rx long event)
+#if 0
+		u32 asw_trunc:1;		// bit 31(Rx frame truncated)
+#endif
+#endif
+	} bits;
+} PKT_STAT_DESC_WORD0_t, *PPKT_STAT_WORD0_t;
+
+typedef union _PKT_STAT_DESC_WORD1_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:4;	// bits 28-31
+		u32 ri:2;		// bits 26-27(Ring Index)
+		u32 bi:10;		// bits 16-25(Buffer Index)
+		u32 length:16;	// bit 0-15(length in bytes)
+#else
+		u32 length:16;	// bit 0-15(length in bytes)
+		u32 bi:10;		// bits 16-25(Buffer Index)
+		u32 ri:2;		// bits 26-27(Ring Index)
+		u32 unused:4;	// bits 28-31
+#endif
+	} bits;
+} PKT_STAT_DESC_WORD1_t, *PPKT_STAT_WORD1_t;
+
+typedef struct _PKT_STAT_DESC_t {
+	PKT_STAT_DESC_WORD0_t word0;
+	PKT_STAT_DESC_WORD1_t word1;
+} PKT_STAT_DESC_t, *PPKT_STAT_DESC_t;
+
+/* Typedefs for the RX DMA status word */
+
+/*
+ * RXSTAT_WORD0_t structure holds part of the status bits of the Rx DMA engine
+ * that get copied out to memory by the ET-1310.  Word 0 is a 32 bit word
+ * whichcontains Free Buffer ring 0 and 1 available offset.
+ */
+typedef union _rxstat_word0_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 FBR1unused:5;	// bits 27-31
+		u32 FBR1wrap:1;	// bit 26
+		u32 FBR1offset:10;	// bits 16-25
+		u32 FBR0unused:5;	// bits 11-15
+		u32 FBR0wrap:1;	// bit 10
+		u32 FBR0offset:10;	// bits 0-9
+#else
+		u32 FBR0offset:10;	// bits 0-9
+		u32 FBR0wrap:1;	// bit 10
+		u32 FBR0unused:5;	// bits 11-15
+		u32 FBR1offset:10;	// bits 16-25
+		u32 FBR1wrap:1;	// bit 26
+		u32 FBR1unused:5;	// bits 27-31
+#endif
+	} bits;
+} RXSTAT_WORD0_t, *PRXSTAT_WORD0_t;
+
+/*
+ * RXSTAT_WORD1_t structure holds part of the status bits of the Rx DMA engine
+ * that get copied out to memory by the ET-1310.  Word 3 is a 32 bit word
+ * which contains the Packet Status Ring available offset.
+ */
+typedef union _rxstat_word1_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 PSRunused:3;	// bits 29-31
+		u32 PSRwrap:1;	// bit 28
+		u32 PSRoffset:12;	// bits 16-27
+		u32 reserved:16;	// bits 0-15
+#else
+		u32 reserved:16;	// bits 0-15
+		u32 PSRoffset:12;	// bits 16-27
+		u32 PSRwrap:1;	// bit 28
+		u32 PSRunused:3;	// bits 29-31
+#endif
+	} bits;
+} RXSTAT_WORD1_t, *PRXSTAT_WORD1_t;
+
+/*
+ * RX_STATUS_BLOCK_t is sructure representing the status of the Rx DMA engine
+ * it sits in free memory, and is pointed to by 0x101c / 0x1020
+ */
+typedef struct _rx_status_block_t {
+	RXSTAT_WORD0_t Word0;
+	RXSTAT_WORD1_t Word1;
+} RX_STATUS_BLOCK_t, *PRX_STATUS_BLOCK_t;
+
+/*
+ * Structure for look-up table holding free buffer ring pointers
+ */
+typedef struct _FbrLookupTable {
+	void *Va[MAX_DESC_PER_RING_RX];
+	void *Buffer1[MAX_DESC_PER_RING_RX];
+	void *Buffer2[MAX_DESC_PER_RING_RX];
+	u32 PAHigh[MAX_DESC_PER_RING_RX];
+	u32 PALow[MAX_DESC_PER_RING_RX];
+} FBRLOOKUPTABLE, *PFBRLOOKUPTABLE;
+
+typedef enum {
+	ONE_PACKET_INTERRUPT,
+	FOUR_PACKET_INTERRUPT
+} eRX_INTERRUPT_STATE_t, *PeRX_INTERRUPT_STATE_t;
+
+/*
+ * Structure to hold the skb's in a list
+ */
+typedef struct rx_skb_list_elem {
+	struct list_head skb_list_elem;
+	dma_addr_t dma_addr;
+	struct sk_buff *skb;
+} RX_SKB_LIST_ELEM, *PRX_SKB_LIST_ELEM;
+
+/*
+ * RX_RING_t is sructure representing the adaptor's local reference(s) to the
+ * rings
+ */
+typedef struct _rx_ring_t {
+#ifdef USE_FBR0
+	void *pFbr0RingVa;
+	dma_addr_t pFbr0RingPa;
+	void *Fbr0MemVa[MAX_DESC_PER_RING_RX / FBR_CHUNKS];
+	dma_addr_t Fbr0MemPa[MAX_DESC_PER_RING_RX / FBR_CHUNKS];
+	uint64_t Fbr0Realpa;
+	uint64_t Fbr0offset;
+	DMA10W_t local_Fbr0_full;
+	u32 Fbr0NumEntries;
+	u32 Fbr0BufferSize;
+#endif
+	void *pFbr1RingVa;
+	dma_addr_t pFbr1RingPa;
+	void *Fbr1MemVa[MAX_DESC_PER_RING_RX / FBR_CHUNKS];
+	dma_addr_t Fbr1MemPa[MAX_DESC_PER_RING_RX / FBR_CHUNKS];
+	uint64_t Fbr1Realpa;
+	uint64_t Fbr1offset;
+	FBRLOOKUPTABLE *Fbr[2];
+	DMA10W_t local_Fbr1_full;
+	u32 Fbr1NumEntries;
+	u32 Fbr1BufferSize;
+
+	void *pPSRingVa;
+	dma_addr_t pPSRingPa;
+	uint64_t pPSRingRealPa;
+	uint64_t pPSRingOffset;
+	RXDMA_PSR_FULL_OFFSET_t local_psr_full;
+	u32 PsrNumEntries;
+
+	void *pRxStatusVa;
+	dma_addr_t pRxStatusPa;
+	uint64_t RxStatusRealPA;
+	uint64_t RxStatusOffset;
+
+	struct list_head RecvBufferPool;
+
+	/* RECV */
+	struct list_head RecvList;
+	struct list_head RecvPendingList;
+	u32 nReadyRecv;
+
+	u32 NumRfd;
+
+	bool UnfinishedReceives;
+
+	struct list_head RecvPacketPool;
+
+	/* lookaside lists */
+	struct kmem_cache *RecvLookaside;
+} RX_RING_t, *PRX_RING_t;
+
+/* Forward reference of RFD */
+struct _MP_RFD;
+
+/* Forward declaration of the private adapter structure */
+struct et131x_adapter;
+
+/* PROTOTYPES for Initialization */
+int et131x_rx_dma_memory_alloc(struct et131x_adapter *adapter);
+void et131x_rx_dma_memory_free(struct et131x_adapter *adapter);
+int et131x_rfd_resources_alloc(struct et131x_adapter *adapter,
+			       struct _MP_RFD *pMpRfd);
+void et131x_rfd_resources_free(struct et131x_adapter *adapter,
+			       struct _MP_RFD *pMpRfd);
+int et131x_init_recv(struct et131x_adapter *adapter);
+
+void ConfigRxDmaRegs(struct et131x_adapter *adapter);
+void SetRxDmaTimer(struct et131x_adapter *adapter);
+void et131x_rx_dma_disable(struct et131x_adapter *adapter);
+void et131x_rx_dma_enable(struct et131x_adapter *adapter);
+
+void et131x_reset_recv(struct et131x_adapter *adapter);
+
+void et131x_handle_recv_interrupt(struct et131x_adapter *adapter);
+
+#endif /* __ET1310_RX_H__ */
diff --git a/drivers/staging/et131x/et1310_tx.c b/drivers/staging/et131x/et1310_tx.c
new file mode 100644
index 0000000..a95c260
--- /dev/null
+++ b/drivers/staging/et131x/et1310_tx.c
@@ -0,0 +1,1525 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et1310_tx.c - Routines used to perform data transmission.
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#include "et131x_version.h"
+#include "et131x_debug.h"
+#include "et131x_defs.h"
+
+#include <linux/pci.h>
+#include <linux/init.h>
+#include <linux/module.h>
+#include <linux/types.h>
+#include <linux/kernel.h>
+
+#include <linux/sched.h>
+#include <linux/ptrace.h>
+#include <linux/slab.h>
+#include <linux/ctype.h>
+#include <linux/string.h>
+#include <linux/timer.h>
+#include <linux/interrupt.h>
+#include <linux/in.h>
+#include <linux/delay.h>
+#include <asm/io.h>
+#include <asm/system.h>
+#include <asm/bitops.h>
+
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/skbuff.h>
+#include <linux/if_arp.h>
+#include <linux/ioport.h>
+
+#include "et1310_phy.h"
+#include "et1310_pm.h"
+#include "et1310_jagcore.h"
+
+#include "et131x_adapter.h"
+#include "et131x_initpci.h"
+#include "et131x_isr.h"
+
+#include "et1310_tx.h"
+
+/* Data for debugging facilities */
+#ifdef CONFIG_ET131X_DEBUG
+extern dbg_info_t *et131x_dbginfo;
+#endif /* CONFIG_ET131X_DEBUG */
+
+static void et131x_update_tcb_list(struct et131x_adapter *pAdapter);
+static void et131x_check_send_wait_list(struct et131x_adapter *pAdapter);
+static inline void et131x_free_send_packet(struct et131x_adapter *pAdapter,
+					   PMP_TCB pMpTcb);
+static int et131x_send_packet(struct sk_buff *skb,
+			      struct et131x_adapter *pAdapter);
+static int nic_send_packet(struct et131x_adapter *pAdapter, PMP_TCB pMpTcb);
+
+/**
+ * et131x_tx_dma_memory_alloc
+ * @adapter: pointer to our private adapter structure
+ *
+ * Returns 0 on success and errno on failure (as defined in errno.h).
+ *
+ * Allocates memory that will be visible both to the device and to the CPU.
+ * The OS will pass us packets, pointers to which we will insert in the Tx
+ * Descriptor queue. The device will read this queue to find the packets in
+ * memory. The device will update the "status" in memory each time it xmits a
+ * packet.
+ */
+int et131x_tx_dma_memory_alloc(struct et131x_adapter *adapter)
+{
+	int desc_size = 0;
+	TX_RING_t *tx_ring = &adapter->TxRing;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Allocate memory for the TCB's (Transmit Control Block) */
+	adapter->TxRing.MpTcbMem = (MP_TCB *) kcalloc(NUM_TCB, sizeof(MP_TCB),
+						      GFP_ATOMIC | GFP_DMA);
+	if (!adapter->TxRing.MpTcbMem) {
+		DBG_ERROR(et131x_dbginfo, "Cannot alloc memory for TCBs\n");
+		DBG_LEAVE(et131x_dbginfo);
+		return -ENOMEM;
+	}
+
+	/* Allocate enough memory for the Tx descriptor ring, and allocate
+	 * some extra so that the ring can be aligned on a 4k boundary.
+	 */
+	desc_size = (sizeof(TX_DESC_ENTRY_t) * NUM_DESC_PER_RING_TX) + 4096 - 1;
+	tx_ring->pTxDescRingVa =
+	    (PTX_DESC_ENTRY_t) pci_alloc_consistent(adapter->pdev, desc_size,
+						    &tx_ring->pTxDescRingPa);
+	if (!adapter->TxRing.pTxDescRingVa) {
+		DBG_ERROR(et131x_dbginfo, "Cannot alloc memory for Tx Ring\n");
+		DBG_LEAVE(et131x_dbginfo);
+		return -ENOMEM;
+	}
+
+	/* Save physical address
+	 *
+	 * NOTE: pci_alloc_consistent(), used above to alloc DMA regions,
+	 * ALWAYS returns SAC (32-bit) addresses. If DAC (64-bit) addresses
+	 * are ever returned, make sure the high part is retrieved here before
+	 * storing the adjusted address.
+	 */
+	tx_ring->pTxDescRingAdjustedPa = tx_ring->pTxDescRingPa;
+
+	/* Align Tx Descriptor Ring on a 4k (0x1000) byte boundary */
+	et131x_align_allocated_memory(adapter,
+				      &tx_ring->pTxDescRingAdjustedPa,
+				      &tx_ring->TxDescOffset, 0x0FFF);
+
+	tx_ring->pTxDescRingVa += tx_ring->TxDescOffset;
+
+	/* Allocate memory for the Tx status block */
+	tx_ring->pTxStatusVa = pci_alloc_consistent(adapter->pdev,
+						    sizeof(TX_STATUS_BLOCK_t),
+						    &tx_ring->pTxStatusPa);
+	if (!adapter->TxRing.pTxStatusPa) {
+		DBG_ERROR(et131x_dbginfo,
+			  "Cannot alloc memory for Tx status block\n");
+		DBG_LEAVE(et131x_dbginfo);
+		return -ENOMEM;
+	}
+
+	/* Allocate memory for a dummy buffer */
+	tx_ring->pTxDummyBlkVa = pci_alloc_consistent(adapter->pdev,
+						      NIC_MIN_PACKET_SIZE,
+						      &tx_ring->pTxDummyBlkPa);
+	if (!adapter->TxRing.pTxDummyBlkPa) {
+		DBG_ERROR(et131x_dbginfo,
+			  "Cannot alloc memory for Tx dummy buffer\n");
+		DBG_LEAVE(et131x_dbginfo);
+		return -ENOMEM;
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+	return 0;
+}
+
+/**
+ * et131x_tx_dma_memory_free - Free all memory allocated within this module
+ * @adapter: pointer to our private adapter structure
+ *
+ * Returns 0 on success and errno on failure (as defined in errno.h).
+ */
+void et131x_tx_dma_memory_free(struct et131x_adapter *adapter)
+{
+	int desc_size = 0;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	if (adapter->TxRing.pTxDescRingVa) {
+		/* Free memory relating to Tx rings here */
+		adapter->TxRing.pTxDescRingVa -= adapter->TxRing.TxDescOffset;
+
+		desc_size =
+		    (sizeof(TX_DESC_ENTRY_t) * NUM_DESC_PER_RING_TX) + 4096 - 1;
+
+		pci_free_consistent(adapter->pdev,
+				    desc_size,
+				    adapter->TxRing.pTxDescRingVa,
+				    adapter->TxRing.pTxDescRingPa);
+
+		adapter->TxRing.pTxDescRingVa = NULL;
+	}
+
+	/* Free memory for the Tx status block */
+	if (adapter->TxRing.pTxStatusVa) {
+		pci_free_consistent(adapter->pdev,
+				    sizeof(TX_STATUS_BLOCK_t),
+				    adapter->TxRing.pTxStatusVa,
+				    adapter->TxRing.pTxStatusPa);
+
+		adapter->TxRing.pTxStatusVa = NULL;
+	}
+
+	/* Free memory for the dummy buffer */
+	if (adapter->TxRing.pTxDummyBlkVa) {
+		pci_free_consistent(adapter->pdev,
+				    NIC_MIN_PACKET_SIZE,
+				    adapter->TxRing.pTxDummyBlkVa,
+				    adapter->TxRing.pTxDummyBlkPa);
+
+		adapter->TxRing.pTxDummyBlkVa = NULL;
+	}
+
+	/* Free the memory for MP_TCB structures */
+	if (adapter->TxRing.MpTcbMem) {
+		kfree(adapter->TxRing.MpTcbMem);
+		adapter->TxRing.MpTcbMem = NULL;
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * ConfigTxDmaRegs - Set up the tx dma section of the JAGCore.
+ * @adapter: pointer to our private adapter structure
+ */
+void ConfigTxDmaRegs(struct et131x_adapter *pAdapter)
+{
+	struct _TXDMA_t __iomem *pTxDma = &pAdapter->CSRAddress->txdma;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Load the hardware with the start of the transmit descriptor ring. */
+	writel((uint32_t) (pAdapter->TxRing.pTxDescRingAdjustedPa >> 32),
+	       &pTxDma->pr_base_hi);
+	writel((uint32_t) pAdapter->TxRing.pTxDescRingAdjustedPa,
+	       &pTxDma->pr_base_lo);
+
+	/* Initialise the transmit DMA engine */
+	writel(NUM_DESC_PER_RING_TX - 1, &pTxDma->pr_num_des.value);
+
+	/* Load the completion writeback physical address
+	 *
+	 * NOTE: pci_alloc_consistent(), used above to alloc DMA regions,
+	 * ALWAYS returns SAC (32-bit) addresses. If DAC (64-bit) addresses
+	 * are ever returned, make sure the high part is retrieved here before
+	 * storing the adjusted address.
+	 */
+	writel(0, &pTxDma->dma_wb_base_hi);
+	writel(pAdapter->TxRing.pTxStatusPa, &pTxDma->dma_wb_base_lo);
+
+	memset(pAdapter->TxRing.pTxStatusVa, 0, sizeof(TX_STATUS_BLOCK_t));
+
+	writel(0, &pTxDma->service_request.value);
+	pAdapter->TxRing.txDmaReadyToSend.value = 0;
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * et131x_tx_dma_disable - Stop of Tx_DMA on the ET1310
+ * @pAdapter: pointer to our adapter structure
+ */
+void et131x_tx_dma_disable(struct et131x_adapter *pAdapter)
+{
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Setup the tramsmit dma configuration register */
+	writel(0x101, &pAdapter->CSRAddress->txdma.csr.value);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * et131x_tx_dma_enable - re-start of Tx_DMA on the ET1310.
+ * @pAdapter: pointer to our adapter structure
+ *
+ * Mainly used after a return to the D0 (full-power) state from a lower state.
+ */
+void et131x_tx_dma_enable(struct et131x_adapter *pAdapter)
+{
+	DBG_ENTER(et131x_dbginfo);
+
+	if (pAdapter->RegistryPhyLoopbk) {
+	/* TxDMA is disabled for loopback operation. */
+		writel(0x101, &pAdapter->CSRAddress->txdma.csr.value);
+	} else {
+		TXDMA_CSR_t csr = { 0 };
+
+		/* Setup the transmit dma configuration register for normal
+		 * operation
+		 */
+		csr.bits.sngl_epkt_mode = 1;
+		csr.bits.halt = 0;
+		csr.bits.cache_thrshld = pAdapter->RegistryDMACache;
+		writel(csr.value, &pAdapter->CSRAddress->txdma.csr.value);
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * et131x_init_send - Initialize send data structures
+ * @adapter: pointer to our private adapter structure
+ */
+void et131x_init_send(struct et131x_adapter *adapter)
+{
+	PMP_TCB pMpTcb;
+	uint32_t TcbCount;
+	TX_RING_t *tx_ring;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Setup some convenience pointers */
+	tx_ring = &adapter->TxRing;
+	pMpTcb = adapter->TxRing.MpTcbMem;
+
+	tx_ring->TCBReadyQueueHead = pMpTcb;
+
+	/* Go through and set up each TCB */
+	for (TcbCount = 0; TcbCount < NUM_TCB; TcbCount++) {
+		memset(pMpTcb, 0, sizeof(MP_TCB));
+
+		/* Set the link pointer in HW TCB to the next TCB in the
+		 * chain.  If this is the last TCB in the chain, also set the
+		 * tail pointer.
+		 */
+		if (TcbCount < NUM_TCB - 1) {
+			pMpTcb->Next = pMpTcb + 1;
+		} else {
+			tx_ring->TCBReadyQueueTail = pMpTcb;
+			pMpTcb->Next = (PMP_TCB) NULL;
+		}
+
+		pMpTcb++;
+	}
+
+	/* Curr send queue should now be empty */
+	tx_ring->CurrSendHead = (PMP_TCB) NULL;
+	tx_ring->CurrSendTail = (PMP_TCB) NULL;
+
+	INIT_LIST_HEAD(&adapter->TxRing.SendWaitQueue);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * et131x_send_packets - This function is called by the OS to send packets
+ * @skb: the packet(s) to send
+ * @netdev:device on which to TX the above packet(s)
+ *
+ * Return 0 in almost all cases; non-zero value in extreme hard failure only
+ */
+int et131x_send_packets(struct sk_buff *skb, struct net_device *netdev)
+{
+	int status = 0;
+	struct et131x_adapter *pAdapter = NULL;
+
+	DBG_TX_ENTER(et131x_dbginfo);
+
+	pAdapter = netdev_priv(netdev);
+
+	/* Send these packets
+	 *
+	 * NOTE: The Linux Tx entry point is only given one packet at a time
+	 * to Tx, so the PacketCount and it's array used makes no sense here
+	 */
+
+	/* Queue is not empty or TCB is not available */
+	if (!list_empty(&pAdapter->TxRing.SendWaitQueue) ||
+	    MP_TCB_RESOURCES_NOT_AVAILABLE(pAdapter)) {
+		/* NOTE: If there's an error on send, no need to queue the
+		 * packet under Linux; if we just send an error up to the
+		 * netif layer, it will resend the skb to us.
+		 */
+		DBG_VERBOSE(et131x_dbginfo, "TCB Resources Not Available\n");
+		status = -ENOMEM;
+	} else {
+		/* We need to see if the link is up; if it's not, make the
+		 * netif layer think we're good and drop the packet
+		 */
+		//if( MP_SHOULD_FAIL_SEND( pAdapter ) || pAdapter->DriverNoPhyAccess )
+		if (MP_SHOULD_FAIL_SEND(pAdapter) || pAdapter->DriverNoPhyAccess
+		    || !netif_carrier_ok(netdev)) {
+			DBG_VERBOSE(et131x_dbginfo,
+				    "Can't Tx, Link is DOWN; drop the packet\n");
+
+			dev_kfree_skb_any(skb);
+			skb = NULL;
+
+			pAdapter->net_stats.tx_dropped++;
+		} else {
+			status = et131x_send_packet(skb, pAdapter);
+
+			if (status == -ENOMEM) {
+
+				/* NOTE: If there's an error on send, no need
+				 * to queue the packet under Linux; if we just
+				 * send an error up to the netif layer, it
+				 * will resend the skb to us.
+				 */
+				DBG_WARNING(et131x_dbginfo,
+					    "Resources problem, Queue tx packet\n");
+			} else if (status != 0) {
+				/* On any other error, make netif think we're
+				 * OK and drop the packet
+				 */
+				DBG_WARNING(et131x_dbginfo,
+					    "General error, drop packet\n");
+
+				dev_kfree_skb_any(skb);
+				skb = NULL;
+
+				pAdapter->net_stats.tx_dropped++;
+			}
+		}
+	}
+
+	DBG_TX_LEAVE(et131x_dbginfo);
+	return status;
+}
+
+/**
+ * et131x_send_packet - Do the work to send a packet
+ * @skb: the packet(s) to send
+ * @pAdapter: a pointer to the device's private adapter structure
+ *
+ * Return 0 in almost all cases; non-zero value in extreme hard failure only.
+ *
+ * Assumption: Send spinlock has been acquired
+ */
+static int et131x_send_packet(struct sk_buff *skb,
+			      struct et131x_adapter *pAdapter)
+{
+	int status = 0;
+	PMP_TCB pMpTcb = NULL;
+	uint16_t *pShBufVa;
+	unsigned long lockflags;
+
+	DBG_TX_ENTER(et131x_dbginfo);
+
+	/* Is our buffer scattered, or continuous? */
+	if (skb_shinfo(skb)->nr_frags == 0) {
+		DBG_TX(et131x_dbginfo, "Scattered buffer: NO\n");
+	} else {
+		DBG_TX(et131x_dbginfo, "Scattered buffer: YES, Num Frags: %d\n",
+		       skb_shinfo(skb)->nr_frags);
+	}
+
+	/* All packets must have at least a MAC address and a protocol type */
+	if (skb->len < ETH_HLEN) {
+		DBG_ERROR(et131x_dbginfo,
+			  "Packet size < ETH_HLEN (14 bytes)\n");
+		DBG_LEAVE(et131x_dbginfo);
+		return -EIO;
+	}
+
+	/* Get a TCB for this packet */
+	spin_lock_irqsave(&pAdapter->TCBReadyQLock, lockflags);
+
+	pMpTcb = pAdapter->TxRing.TCBReadyQueueHead;
+
+	if (pMpTcb == NULL) {
+		spin_unlock_irqrestore(&pAdapter->TCBReadyQLock, lockflags);
+
+		DBG_WARNING(et131x_dbginfo, "Can't obtain a TCB\n");
+		DBG_TX_LEAVE(et131x_dbginfo);
+		return -ENOMEM;
+	}
+
+	pAdapter->TxRing.TCBReadyQueueHead = pMpTcb->Next;
+
+	if (pAdapter->TxRing.TCBReadyQueueHead == NULL) {
+		pAdapter->TxRing.TCBReadyQueueTail = NULL;
+	}
+
+	spin_unlock_irqrestore(&pAdapter->TCBReadyQLock, lockflags);
+
+	pMpTcb->PacketLength = skb->len;
+	pMpTcb->Packet = skb;
+
+	if ((skb->data != NULL) && ((skb->len - skb->data_len) >= 6)) {
+		pShBufVa = (uint16_t *) skb->data;
+
+		if ((pShBufVa[0] == 0xffff) &&
+		    (pShBufVa[1] == 0xffff) && (pShBufVa[2] == 0xffff)) {
+			MP_SET_FLAG(pMpTcb, fMP_DEST_BROAD);
+		} else if ((pShBufVa[0] & 0x3) == 0x0001) {
+			MP_SET_FLAG(pMpTcb, fMP_DEST_MULTI);
+		}
+	}
+
+	pMpTcb->Next = NULL;
+
+	/* Call the NIC specific send handler. */
+	if (status == 0) {
+		status = nic_send_packet(pAdapter, pMpTcb);
+	}
+
+	if (status != 0) {
+		spin_lock_irqsave(&pAdapter->TCBReadyQLock, lockflags);
+
+		if (pAdapter->TxRing.TCBReadyQueueTail) {
+			pAdapter->TxRing.TCBReadyQueueTail->Next = pMpTcb;
+		} else {
+			/* Apparently ready Q is empty. */
+			pAdapter->TxRing.TCBReadyQueueHead = pMpTcb;
+		}
+
+		pAdapter->TxRing.TCBReadyQueueTail = pMpTcb;
+
+		spin_unlock_irqrestore(&pAdapter->TCBReadyQLock, lockflags);
+
+		DBG_TX_LEAVE(et131x_dbginfo);
+		return status;
+	}
+
+	DBG_ASSERT(pAdapter->TxRing.nBusySend <= NUM_TCB);
+
+	DBG_TX_LEAVE(et131x_dbginfo);
+	return 0;
+}
+
+/**
+ * nic_send_packet - NIC specific send handler for version B silicon.
+ * @pAdapter: pointer to our adapter
+ * @pMpTcb: pointer to MP_TCB
+ *
+ * Returns 0 or errno.
+ */
+static int nic_send_packet(struct et131x_adapter *pAdapter, PMP_TCB pMpTcb)
+{
+	uint32_t loopIndex;
+	TX_DESC_ENTRY_t CurDesc[24];
+	uint32_t FragmentNumber = 0;
+	uint32_t iThisCopy, iRemainder;
+	struct sk_buff *pPacket = pMpTcb->Packet;
+	uint32_t FragListCount = skb_shinfo(pPacket)->nr_frags + 1;
+	struct skb_frag_struct *pFragList = &skb_shinfo(pPacket)->frags[0];
+	unsigned long lockflags1, lockflags2;
+
+	DBG_TX_ENTER(et131x_dbginfo);
+
+	/* Part of the optimizations of this send routine restrict us to
+	 * sending 24 fragments at a pass.  In practice we should never see
+	 * more than 5 fragments.
+	 *
+	 * NOTE: The older version of this function (below) can handle any
+	 * number of fragments. If needed, we can call this function,
+	 * although it is less efficient.
+	 */
+	if (FragListCount > 23) {
+		DBG_TX_LEAVE(et131x_dbginfo);
+		return -EIO;
+	}
+
+	memset(CurDesc, 0, sizeof(TX_DESC_ENTRY_t) * (FragListCount + 1));
+
+	for (loopIndex = 0; loopIndex < FragListCount; loopIndex++) {
+		/* If there is something in this element, lets get a
+		 * descriptor from the ring and get the necessary data
+		 */
+		if (loopIndex == 0) {
+			/* If the fragments are smaller than a standard MTU,
+			 * then map them to a single descriptor in the Tx
+			 * Desc ring. However, if they're larger, as is
+			 * possible with support for jumbo packets, then
+			 * split them each across 2 descriptors.
+			 *
+			 * This will work until we determine why the hardware
+			 * doesn't seem to like large fragments.
+			 */
+			if ((pPacket->len - pPacket->data_len) <= 1514) {
+				DBG_TX(et131x_dbginfo,
+				       "Got packet of length %d, "
+				       "filling desc entry %d, "
+				       "TCB: 0x%p\n",
+				       (pPacket->len - pPacket->data_len),
+				       pAdapter->TxRing.txDmaReadyToSend.bits.
+				       val, pMpTcb);
+
+				CurDesc[FragmentNumber].DataBufferPtrHigh = 0;
+
+				CurDesc[FragmentNumber].word2.bits.
+				    length_in_bytes =
+				    pPacket->len - pPacket->data_len;
+
+				/* NOTE: Here, the dma_addr_t returned from
+				 * pci_map_single() is implicitly cast as a
+				 * uint32_t. Although dma_addr_t can be
+				 * 64-bit, the address returned by
+				 * pci_map_single() is always 32-bit
+				 * addressable (as defined by the pci/dma
+				 * subsystem)
+				 */
+				CurDesc[FragmentNumber++].DataBufferPtrLow =
+				    pci_map_single(pAdapter->pdev,
+						   pPacket->data,
+						   pPacket->len -
+						   pPacket->data_len,
+						   PCI_DMA_TODEVICE);
+			} else {
+				DBG_TX(et131x_dbginfo,
+				       "Got packet of length %d, "
+				       "filling desc entry %d, "
+				       "TCB: 0x%p\n",
+				       (pPacket->len - pPacket->data_len),
+				       pAdapter->TxRing.txDmaReadyToSend.bits.
+				       val, pMpTcb);
+
+				CurDesc[FragmentNumber].DataBufferPtrHigh = 0;
+
+				CurDesc[FragmentNumber].word2.bits.
+				    length_in_bytes =
+				    ((pPacket->len - pPacket->data_len) / 2);
+
+				/* NOTE: Here, the dma_addr_t returned from
+				 * pci_map_single() is implicitly cast as a
+				 * uint32_t. Although dma_addr_t can be
+				 * 64-bit, the address returned by
+				 * pci_map_single() is always 32-bit
+				 * addressable (as defined by the pci/dma
+				 * subsystem)
+				 */
+				CurDesc[FragmentNumber++].DataBufferPtrLow =
+				    pci_map_single(pAdapter->pdev,
+						   pPacket->data,
+						   ((pPacket->len -
+						     pPacket->data_len) / 2),
+						   PCI_DMA_TODEVICE);
+				CurDesc[FragmentNumber].DataBufferPtrHigh = 0;
+
+				CurDesc[FragmentNumber].word2.bits.
+				    length_in_bytes =
+				    ((pPacket->len - pPacket->data_len) / 2);
+
+				/* NOTE: Here, the dma_addr_t returned from
+				 * pci_map_single() is implicitly cast as a
+				 * uint32_t. Although dma_addr_t can be
+				 * 64-bit, the address returned by
+				 * pci_map_single() is always 32-bit
+				 * addressable (as defined by the pci/dma
+				 * subsystem)
+				 */
+				CurDesc[FragmentNumber++].DataBufferPtrLow =
+				    pci_map_single(pAdapter->pdev,
+						   pPacket->data +
+						   ((pPacket->len -
+						     pPacket->data_len) / 2),
+						   ((pPacket->len -
+						     pPacket->data_len) / 2),
+						   PCI_DMA_TODEVICE);
+			}
+		} else {
+			DBG_TX(et131x_dbginfo,
+			       "Got packet of length %d,"
+			       "filling desc entry %d\n"
+			       "TCB: 0x%p\n",
+			       pFragList[loopIndex].size,
+			       pAdapter->TxRing.txDmaReadyToSend.bits.val,
+			       pMpTcb);
+
+			CurDesc[FragmentNumber].DataBufferPtrHigh = 0;
+
+			CurDesc[FragmentNumber].word2.bits.length_in_bytes =
+			    pFragList[loopIndex - 1].size;
+
+			/* NOTE: Here, the dma_addr_t returned from
+			 * pci_map_page() is implicitly cast as a uint32_t.
+			 * Although dma_addr_t can be 64-bit, the address
+			 * returned by pci_map_page() is always 32-bit
+			 * addressable (as defined by the pci/dma subsystem)
+			 */
+			CurDesc[FragmentNumber++].DataBufferPtrLow =
+			    pci_map_page(pAdapter->pdev,
+					 pFragList[loopIndex - 1].page,
+					 pFragList[loopIndex - 1].page_offset,
+					 pFragList[loopIndex - 1].size,
+					 PCI_DMA_TODEVICE);
+		}
+	}
+
+	if (FragmentNumber == 0) {
+		DBG_WARNING(et131x_dbginfo, "No. frags is 0\n");
+		return -EIO;
+	}
+
+	if (pAdapter->uiLinkSpeed == TRUEPHY_SPEED_1000MBPS) {
+		if (++pAdapter->TxRing.TxPacketsSinceLastinterrupt ==
+		    pAdapter->RegistryTxNumBuffers) {
+			CurDesc[FragmentNumber - 1].word3.value = 0x5;
+			pAdapter->TxRing.TxPacketsSinceLastinterrupt = 0;
+		} else {
+			CurDesc[FragmentNumber - 1].word3.value = 0x1;
+		}
+	} else {
+		CurDesc[FragmentNumber - 1].word3.value = 0x5;
+	}
+
+	CurDesc[0].word3.bits.f = 1;
+
+	pMpTcb->WrIndexStart = pAdapter->TxRing.txDmaReadyToSend;
+	pMpTcb->PacketStaleCount = 0;
+
+	spin_lock_irqsave(&pAdapter->SendHWLock, lockflags1);
+
+	iThisCopy =
+	    NUM_DESC_PER_RING_TX - pAdapter->TxRing.txDmaReadyToSend.bits.val;
+
+	if (iThisCopy >= FragmentNumber) {
+		iRemainder = 0;
+		iThisCopy = FragmentNumber;
+	} else {
+		iRemainder = FragmentNumber - iThisCopy;
+	}
+
+	memcpy(pAdapter->TxRing.pTxDescRingVa +
+	       pAdapter->TxRing.txDmaReadyToSend.bits.val, CurDesc,
+	       sizeof(TX_DESC_ENTRY_t) * iThisCopy);
+
+	pAdapter->TxRing.txDmaReadyToSend.bits.val += iThisCopy;
+
+	if ((pAdapter->TxRing.txDmaReadyToSend.bits.val == 0) ||
+	    (pAdapter->TxRing.txDmaReadyToSend.bits.val ==
+	     NUM_DESC_PER_RING_TX)) {
+		if (pAdapter->TxRing.txDmaReadyToSend.bits.wrap) {
+			pAdapter->TxRing.txDmaReadyToSend.value = 0;
+		} else {
+			pAdapter->TxRing.txDmaReadyToSend.value = 0x400;
+		}
+	}
+
+	if (iRemainder) {
+		memcpy(pAdapter->TxRing.pTxDescRingVa,
+		       CurDesc + iThisCopy,
+		       sizeof(TX_DESC_ENTRY_t) * iRemainder);
+
+		pAdapter->TxRing.txDmaReadyToSend.bits.val += iRemainder;
+	}
+
+	if (pAdapter->TxRing.txDmaReadyToSend.bits.val == 0) {
+		if (pAdapter->TxRing.txDmaReadyToSend.value) {
+			pMpTcb->WrIndex.value = NUM_DESC_PER_RING_TX - 1;
+		} else {
+			pMpTcb->WrIndex.value =
+			    0x400 | (NUM_DESC_PER_RING_TX - 1);
+		}
+	} else {
+		pMpTcb->WrIndex.value =
+		    pAdapter->TxRing.txDmaReadyToSend.value - 1;
+	}
+
+	spin_lock_irqsave(&pAdapter->TCBSendQLock, lockflags2);
+
+	if (pAdapter->TxRing.CurrSendTail) {
+		pAdapter->TxRing.CurrSendTail->Next = pMpTcb;
+	} else {
+		pAdapter->TxRing.CurrSendHead = pMpTcb;
+	}
+
+	pAdapter->TxRing.CurrSendTail = pMpTcb;
+
+	DBG_ASSERT(pMpTcb->Next == NULL);
+
+	pAdapter->TxRing.nBusySend++;
+
+	spin_unlock_irqrestore(&pAdapter->TCBSendQLock, lockflags2);
+
+	/* Write the new write pointer back to the device. */
+	writel(pAdapter->TxRing.txDmaReadyToSend.value,
+	       &pAdapter->CSRAddress->txdma.service_request.value);
+
+	/* For Gig only, we use Tx Interrupt coalescing.  Enable the software
+	 * timer to wake us up if this packet isn't followed by N more.
+	 */
+	if (pAdapter->uiLinkSpeed == TRUEPHY_SPEED_1000MBPS) {
+		writel(pAdapter->RegistryTxTimeInterval * NANO_IN_A_MICRO,
+		       &pAdapter->CSRAddress->global.watchdog_timer);
+	}
+
+	spin_unlock_irqrestore(&pAdapter->SendHWLock, lockflags1);
+
+	DBG_TX_LEAVE(et131x_dbginfo);
+	return 0;
+}
+
+/*
+ * NOTE: For now, keep this older version of NICSendPacket around for
+ * reference, even though it's not used
+ */
+#if 0
+
+/**
+ * NICSendPacket - NIC specific send handler.
+ * @pAdapter: pointer to our adapter
+ * @pMpTcb: pointer to MP_TCB
+ *
+ * Returns 0 on succes, errno on failure.
+ *
+ * This version of the send routine is designed for version A silicon.
+ * Assumption - Send spinlock has been acquired.
+ */
+static int nic_send_packet(struct et131x_adapter *pAdapter, PMP_TCB pMpTcb)
+{
+	uint32_t loopIndex, fragIndex, loopEnd;
+	uint32_t iSplitFirstElement = 0;
+	uint32_t SegmentSize = 0;
+	TX_DESC_ENTRY_t CurDesc;
+	TX_DESC_ENTRY_t *CurDescPostCopy = NULL;
+	uint32_t SlotsAvailable;
+	DMA10W_t ServiceComplete;
+	unsigned int lockflags1, lockflags2;
+	struct sk_buff *pPacket = pMpTcb->Packet;
+	uint32_t FragListCount = skb_shinfo(pPacket)->nr_frags + 1;
+	struct skb_frag_struct *pFragList = &skb_shinfo(pPacket)->frags[0];
+
+	DBG_TX_ENTER(et131x_dbginfo);
+
+	ServiceComplete.value =
+		readl(&pAdapter->CSRAddress->txdma.NewServiceComplete.value);
+
+	/*
+	 * Attempt to fix TWO hardware bugs:
+	 * 1)  NEVER write an odd number of descriptors.
+	 * 2)  If packet length is less than NIC_MIN_PACKET_SIZE, then pad the
+	 *     packet to NIC_MIN_PACKET_SIZE bytes by adding a new last
+	 *     descriptor IN HALF DUPLEX MODE ONLY
+	 * NOTE that (2) interacts with (1).  If the packet is less than
+	 * NIC_MIN_PACKET_SIZE bytes then we will append a descriptor.
+	 * Therefore if it is even now, it will eventually end up odd, and
+	 * so will need adjusting.
+	 *
+	 * VLAN tags get involved since VLAN tags add another one or two
+	 * segments.
+	 */
+	DBG_TX(et131x_dbginfo,
+	       "pMpTcb->PacketLength: %d\n", pMpTcb->PacketLength);
+
+	if ((pAdapter->uiDuplexMode == 0)
+	    && (pMpTcb->PacketLength < NIC_MIN_PACKET_SIZE)) {
+		DBG_TX(et131x_dbginfo,
+		       "HALF DUPLEX mode AND len < MIN_PKT_SIZE\n");
+		if ((FragListCount & 0x1) == 0) {
+			DBG_TX(et131x_dbginfo,
+			       "Even number of descs, split 1st elem\n");
+			iSplitFirstElement = 1;
+			//SegmentSize = pFragList[0].size / 2;
+			SegmentSize = (pPacket->len - pPacket->data_len) / 2;
+		}
+	} else if (FragListCount & 0x1) {
+		DBG_TX(et131x_dbginfo, "Odd number of descs, split 1st elem\n");
+
+		iSplitFirstElement = 1;
+		//SegmentSize = pFragList[0].size / 2;
+		SegmentSize = (pPacket->len - pPacket->data_len) / 2;
+	}
+
+	spin_lock_irqsave(&pAdapter->SendHWLock, lockflags1);
+
+	if (pAdapter->TxRing.txDmaReadyToSend.bits.serv_req_wrap ==
+	    ServiceComplete.bits.serv_cpl_wrap) {
+		/* The ring hasn't wrapped.  Slots available should be
+		 * (RING_SIZE) -  the difference between the two pointers.
+		 */
+		SlotsAvailable = NUM_DESC_PER_RING_TX -
+		    (pAdapter->TxRing.txDmaReadyToSend.bits.serv_req -
+		     ServiceComplete.bits.serv_cpl);
+	} else {
+		/* The ring has wrapped.  Slots available should be the
+		 * difference between the two pointers.
+		 */
+		SlotsAvailable = ServiceComplete.bits.serv_cpl -
+		    pAdapter->TxRing.txDmaReadyToSend.bits.serv_req;
+	}
+
+	if ((FragListCount + iSplitFirstElement) > SlotsAvailable) {
+		DBG_WARNING(et131x_dbginfo,
+			    "Not Enough Space in Tx Desc Ring\n");
+		spin_unlock_irqrestore(&pAdapter->SendHWLock, lockflags1);
+		return -ENOMEM;
+	}
+
+	loopEnd = (FragListCount) + iSplitFirstElement;
+	fragIndex = 0;
+
+	DBG_TX(et131x_dbginfo,
+	       "TCB           : 0x%p\n"
+	       "Packet (SKB)  : 0x%p\t Packet->len: %d\t Packet->data_len: %d\n"
+	       "FragListCount : %d\t iSplitFirstElement: %d\t loopEnd:%d\n",
+	       pMpTcb,
+	       pPacket, pPacket->len, pPacket->data_len,
+	       FragListCount, iSplitFirstElement, loopEnd);
+
+	for (loopIndex = 0; loopIndex < loopEnd; loopIndex++) {
+		if (loopIndex > iSplitFirstElement) {
+			fragIndex++;
+		}
+
+		DBG_TX(et131x_dbginfo,
+		       "In loop, loopIndex: %d\t fragIndex: %d\n", loopIndex,
+		       fragIndex);
+
+		/* If there is something in this element, let's get a
+		 * descriptor from the ring and get the necessary data
+		 */
+		DBG_TX(et131x_dbginfo,
+		       "Packet Length %d,"
+		       "filling desc entry %d\n",
+		       pPacket->len,
+		       pAdapter->TxRing.txDmaReadyToSend.bits.serv_req);
+
+		// NOTE - Should we do a paranoia check here to make sure the fragment
+		// actually has a length? It's HIGHLY unlikely the fragment would
+		// contain no data...
+		if (1) {
+			// NOTE - Currently always getting 32-bit addrs, and dma_addr_t is
+			//        only 32-bit, so leave "high" ptr value out for now
+			CurDesc.DataBufferPtrHigh = 0;
+
+			CurDesc.word2.value = 0;
+			CurDesc.word3.value = 0;
+
+			if (fragIndex == 0) {
+				if (iSplitFirstElement) {
+					DBG_TX(et131x_dbginfo,
+					       "Split first element: YES\n");
+
+					if (loopIndex == 0) {
+						DBG_TX(et131x_dbginfo,
+						       "Got fragment of length %d, fragIndex: %d\n",
+						       pPacket->len -
+						       pPacket->data_len,
+						       fragIndex);
+						DBG_TX(et131x_dbginfo,
+						       "SegmentSize: %d\n",
+						       SegmentSize);
+
+						CurDesc.word2.bits.
+						    length_in_bytes =
+						    SegmentSize;
+						CurDesc.DataBufferPtrLow =
+						    pci_map_single(pAdapter->
+								   pdev,
+								   pPacket->
+								   data,
+								   SegmentSize,
+								   PCI_DMA_TODEVICE);
+						DBG_TX(et131x_dbginfo,
+						       "pci_map_single() returns: 0x%08x\n",
+						       CurDesc.
+						       DataBufferPtrLow);
+					} else {
+						DBG_TX(et131x_dbginfo,
+						       "Got fragment of length %d, fragIndex: %d\n",
+						       pPacket->len -
+						       pPacket->data_len,
+						       fragIndex);
+						DBG_TX(et131x_dbginfo,
+						       "Leftover Size: %d\n",
+						       (pPacket->len -
+							pPacket->data_len -
+							SegmentSize));
+
+						CurDesc.word2.bits.
+						    length_in_bytes =
+						    ((pPacket->len -
+						      pPacket->data_len) -
+						     SegmentSize);
+						CurDesc.DataBufferPtrLow =
+						    pci_map_single(pAdapter->
+								   pdev,
+								   (pPacket->
+								    data +
+								    SegmentSize),
+								   (pPacket->
+								    len -
+								    pPacket->
+								    data_len -
+								    SegmentSize),
+								   PCI_DMA_TODEVICE);
+						DBG_TX(et131x_dbginfo,
+						       "pci_map_single() returns: 0x%08x\n",
+						       CurDesc.
+						       DataBufferPtrLow);
+					}
+				} else {
+					DBG_TX(et131x_dbginfo,
+					       "Split first element: NO\n");
+
+					CurDesc.word2.bits.length_in_bytes =
+					    pPacket->len - pPacket->data_len;
+
+					CurDesc.DataBufferPtrLow =
+					    pci_map_single(pAdapter->pdev,
+							   pPacket->data,
+							   (pPacket->len -
+							    pPacket->data_len),
+							   PCI_DMA_TODEVICE);
+					DBG_TX(et131x_dbginfo,
+					       "pci_map_single() returns: 0x%08x\n",
+					       CurDesc.DataBufferPtrLow);
+				}
+			} else {
+
+				CurDesc.word2.bits.length_in_bytes =
+				    pFragList[fragIndex - 1].size;
+				CurDesc.DataBufferPtrLow =
+				    pci_map_page(pAdapter->pdev,
+						 pFragList[fragIndex - 1].page,
+						 pFragList[fragIndex -
+							   1].page_offset,
+						 pFragList[fragIndex - 1].size,
+						 PCI_DMA_TODEVICE);
+				DBG_TX(et131x_dbginfo,
+				       "pci_map_page() returns: 0x%08x\n",
+				       CurDesc.DataBufferPtrLow);
+			}
+
+			if (loopIndex == 0) {
+				/* This is the first descriptor of the packet
+				 *
+				 * Set the "f" bit to indicate this is the
+				 * first descriptor in the packet.
+				 */
+				DBG_TX(et131x_dbginfo,
+				       "This is our FIRST descriptor\n");
+				CurDesc.word3.bits.f = 1;
+
+				pMpTcb->WrIndexStart =
+				    pAdapter->TxRing.txDmaReadyToSend;
+			}
+
+			if ((loopIndex == (loopEnd - 1)) &&
+			    (pAdapter->uiDuplexMode ||
+			     (pMpTcb->PacketLength >= NIC_MIN_PACKET_SIZE))) {
+				/* This is the Last descriptor of the packet */
+				DBG_TX(et131x_dbginfo,
+				       "THIS is our LAST descriptor\n");
+
+				if (pAdapter->uiLinkSpeed ==
+				    TRUEPHY_SPEED_1000MBPS) {
+					if (++pAdapter->TxRing.
+					    TxPacketsSinceLastinterrupt >=
+					    pAdapter->RegistryTxNumBuffers) {
+						CurDesc.word3.value = 0x5;
+						pAdapter->TxRing.
+						    TxPacketsSinceLastinterrupt
+						    = 0;
+					} else {
+						CurDesc.word3.value = 0x1;
+					}
+				} else {
+					CurDesc.word3.value = 0x5;
+				}
+
+				/* Following index will be used during freeing
+				 * of packet
+				 */
+				pMpTcb->WrIndex =
+				    pAdapter->TxRing.txDmaReadyToSend;
+				pMpTcb->PacketStaleCount = 0;
+			}
+
+			/* Copy the descriptor (filled above) into the
+			 * descriptor ring at the next free entry.  Advance
+			 * the "next free entry" variable
+			 */
+			memcpy(pAdapter->TxRing.pTxDescRingVa +
+			       pAdapter->TxRing.txDmaReadyToSend.bits.serv_req,
+			       &CurDesc, sizeof(TX_DESC_ENTRY_t));
+
+			CurDescPostCopy =
+			    pAdapter->TxRing.pTxDescRingVa +
+			    pAdapter->TxRing.txDmaReadyToSend.bits.serv_req;
+
+			DBG_TX(et131x_dbginfo,
+			       "CURRENT DESCRIPTOR\n"
+			       "\tAddress           : 0x%p\n"
+			       "\tDataBufferPtrHigh : 0x%08x\n"
+			       "\tDataBufferPtrLow  : 0x%08x\n"
+			       "\tword2             : 0x%08x\n"
+			       "\tword3             : 0x%08x\n",
+			       CurDescPostCopy,
+			       CurDescPostCopy->DataBufferPtrHigh,
+			       CurDescPostCopy->DataBufferPtrLow,
+			       CurDescPostCopy->word2.value,
+			       CurDescPostCopy->word3.value);
+
+			if (++pAdapter->TxRing.txDmaReadyToSend.bits.serv_req >=
+			    NUM_DESC_PER_RING_TX) {
+				if (pAdapter->TxRing.txDmaReadyToSend.bits.
+				    serv_req_wrap) {
+					pAdapter->TxRing.txDmaReadyToSend.
+					    value = 0;
+				} else {
+					pAdapter->TxRing.txDmaReadyToSend.
+					    value = 0x400;
+				}
+			}
+		}
+	}
+
+	if (pAdapter->uiDuplexMode == 0 &&
+	    pMpTcb->PacketLength < NIC_MIN_PACKET_SIZE) {
+		// NOTE - Same 32/64-bit issue as above...
+		CurDesc.DataBufferPtrHigh = 0x0;
+		CurDesc.DataBufferPtrLow = pAdapter->TxRing.pTxDummyBlkPa;
+		CurDesc.word2.value = 0;
+
+		if (pAdapter->uiLinkSpeed == TRUEPHY_SPEED_1000MBPS) {
+			if (++pAdapter->TxRing.TxPacketsSinceLastinterrupt >=
+			    pAdapter->RegistryTxNumBuffers) {
+				CurDesc.word3.value = 0x5;
+				pAdapter->TxRing.TxPacketsSinceLastinterrupt =
+				    0;
+			} else {
+				CurDesc.word3.value = 0x1;
+			}
+		} else {
+			CurDesc.word3.value = 0x5;
+		}
+
+		CurDesc.word2.bits.length_in_bytes =
+		    NIC_MIN_PACKET_SIZE - pMpTcb->PacketLength;
+
+		pMpTcb->WrIndex = pAdapter->TxRing.txDmaReadyToSend;
+
+		memcpy(pAdapter->TxRing.pTxDescRingVa +
+		       pAdapter->TxRing.txDmaReadyToSend.bits.serv_req,
+		       &CurDesc, sizeof(TX_DESC_ENTRY_t));
+
+		CurDescPostCopy =
+		    pAdapter->TxRing.pTxDescRingVa +
+		    pAdapter->TxRing.txDmaReadyToSend.bits.serv_req;
+
+		DBG_TX(et131x_dbginfo,
+		       "CURRENT DESCRIPTOR\n"
+		       "\tAddress           : 0x%p\n"
+		       "\tDataBufferPtrHigh : 0x%08x\n"
+		       "\tDataBufferPtrLow  : 0x%08x\n"
+		       "\tword2             : 0x%08x\n"
+		       "\tword3             : 0x%08x\n",
+		       CurDescPostCopy,
+		       CurDescPostCopy->DataBufferPtrHigh,
+		       CurDescPostCopy->DataBufferPtrLow,
+		       CurDescPostCopy->word2.value,
+		       CurDescPostCopy->word3.value);
+
+		if (++pAdapter->TxRing.txDmaReadyToSend.bits.serv_req >=
+		    NUM_DESC_PER_RING_TX) {
+			if (pAdapter->TxRing.txDmaReadyToSend.bits.
+			    serv_req_wrap) {
+				pAdapter->TxRing.txDmaReadyToSend.value = 0;
+			} else {
+				pAdapter->TxRing.txDmaReadyToSend.value = 0x400;
+			}
+		}
+
+		DBG_TX(et131x_dbginfo, "Padding descriptor %d by %d bytes\n",
+		       //pAdapter->TxRing.txDmaReadyToSend.value,
+		       pAdapter->TxRing.txDmaReadyToSend.bits.serv_req,
+		       NIC_MIN_PACKET_SIZE - pMpTcb->PacketLength);
+	}
+
+	spin_lock_irqsave(&pAdapter->TCBSendQLock, lockflags2);
+
+	if (pAdapter->TxRing.CurrSendTail) {
+		pAdapter->TxRing.CurrSendTail->Next = pMpTcb;
+	} else {
+		pAdapter->TxRing.CurrSendHead = pMpTcb;
+	}
+
+	pAdapter->TxRing.CurrSendTail = pMpTcb;
+
+	DBG_ASSERT(pMpTcb->Next == NULL);
+
+	pAdapter->TxRing.nBusySend++;
+
+	spin_unlock_irqrestore(&pAdapter->TCBSendQLock, lockflags2);
+
+	/* Write the new write pointer back to the device. */
+	writel(pAdapter->TxRing.txDmaReadyToSend.value,
+	       &pAdapter->CSRAddress->txdma.service_request.value);
+
+#ifdef CONFIG_ET131X_DEBUG
+	DumpDeviceBlock(DBG_TX_ON, pAdapter, 1);
+#endif
+
+	/* For Gig only, we use Tx Interrupt coalescing.  Enable the software
+	 * timer to wake us up if this packet isn't followed by N more.
+	 */
+	if (pAdapter->uiLinkSpeed == TRUEPHY_SPEED_1000MBPS) {
+		writel(pAdapter->RegistryTxTimeInterval * NANO_IN_A_MICRO,
+		       &pAdapter->CSRAddress->global.watchdog_timer);
+	}
+
+	spin_unlock_irqrestore(&pAdapter->SendHWLock, lockflags1);
+
+	DBG_TX_LEAVE(et131x_dbginfo);
+	return 0;
+}
+
+#endif
+
+/**
+ * et131x_free_send_packet - Recycle a MP_TCB, complete the packet if necessary
+ * @pAdapter: pointer to our adapter
+ * @pMpTcb: pointer to MP_TCB
+ *
+ * Assumption - Send spinlock has been acquired
+ */
+__inline void et131x_free_send_packet(struct et131x_adapter *pAdapter, PMP_TCB pMpTcb)
+{
+	unsigned long lockflags;
+	TX_DESC_ENTRY_t *desc = NULL;
+	struct net_device_stats *stats = &pAdapter->net_stats;
+
+	if (MP_TEST_FLAG(pMpTcb, fMP_DEST_BROAD)) {
+		atomic_inc(&pAdapter->Stats.brdcstxmt);
+	} else if (MP_TEST_FLAG(pMpTcb, fMP_DEST_MULTI)) {
+		atomic_inc(&pAdapter->Stats.multixmt);
+	} else {
+		atomic_inc(&pAdapter->Stats.unixmt);
+	}
+
+	if (pMpTcb->Packet) {
+		stats->tx_bytes += pMpTcb->Packet->len;
+
+		/* Iterate through the TX descriptors on the ring
+		 * corresponding to this packet and umap the fragments
+		 * they point to
+		 */
+		DBG_TX(et131x_dbginfo,
+		       "Unmap descriptors Here\n"
+		       "TCB                  : 0x%p\n"
+		       "TCB Next             : 0x%p\n"
+		       "TCB PacketLength     : %d\n"
+		       "TCB WrIndex.value    : 0x%08x\n"
+		       "TCB WrIndex.bits.val : %d\n"
+		       "TCB WrIndex.value    : 0x%08x\n"
+		       "TCB WrIndex.bits.val : %d\n",
+		       pMpTcb,
+		       pMpTcb->Next,
+		       pMpTcb->PacketLength,
+		       pMpTcb->WrIndexStart.value,
+		       pMpTcb->WrIndexStart.bits.val,
+		       pMpTcb->WrIndex.value,
+		       pMpTcb->WrIndex.bits.val);
+
+		do {
+			desc =
+			    (TX_DESC_ENTRY_t *) (pAdapter->TxRing.
+						 pTxDescRingVa +
+						 pMpTcb->WrIndexStart.bits.val);
+
+			DBG_TX(et131x_dbginfo,
+			       "CURRENT DESCRIPTOR\n"
+			       "\tAddress           : 0x%p\n"
+			       "\tDataBufferPtrHigh : 0x%08x\n"
+			       "\tDataBufferPtrLow  : 0x%08x\n"
+			       "\tword2             : 0x%08x\n"
+			       "\tword3             : 0x%08x\n",
+			       desc,
+			       desc->DataBufferPtrHigh,
+			       desc->DataBufferPtrLow,
+			       desc->word2.value,
+			       desc->word3.value);
+
+			pci_unmap_single(pAdapter->pdev,
+					 desc->DataBufferPtrLow,
+					 desc->word2.value, PCI_DMA_TODEVICE);
+
+			if (++pMpTcb->WrIndexStart.bits.val >=
+			    NUM_DESC_PER_RING_TX) {
+				if (pMpTcb->WrIndexStart.bits.wrap) {
+					pMpTcb->WrIndexStart.value = 0;
+				} else {
+					pMpTcb->WrIndexStart.value = 0x400;
+				}
+			}
+		}
+		while (desc != (pAdapter->TxRing.pTxDescRingVa +
+				pMpTcb->WrIndex.bits.val));
+
+		DBG_TX(et131x_dbginfo,
+		       "Free Packet (SKB)   : 0x%p\n", pMpTcb->Packet);
+
+		dev_kfree_skb_any(pMpTcb->Packet);
+	}
+
+	memset(pMpTcb, 0, sizeof(MP_TCB));
+
+	/* Add the TCB to the Ready Q */
+	spin_lock_irqsave(&pAdapter->TCBReadyQLock, lockflags);
+
+	pAdapter->Stats.opackets++;
+
+	if (pAdapter->TxRing.TCBReadyQueueTail) {
+		pAdapter->TxRing.TCBReadyQueueTail->Next = pMpTcb;
+	} else {
+		/* Apparently ready Q is empty. */
+		pAdapter->TxRing.TCBReadyQueueHead = pMpTcb;
+	}
+
+	pAdapter->TxRing.TCBReadyQueueTail = pMpTcb;
+
+	spin_unlock_irqrestore(&pAdapter->TCBReadyQLock, lockflags);
+
+	DBG_ASSERT(pAdapter->TxRing.nBusySend >= 0);
+}
+
+/**
+ * et131x_free_busy_send_packets - Free and complete the stopped active sends
+ * @pAdapter: pointer to our adapter
+ *
+ * Assumption - Send spinlock has been acquired
+ */
+void et131x_free_busy_send_packets(struct et131x_adapter *pAdapter)
+{
+	PMP_TCB pMpTcb;
+	struct list_head *pEntry;
+	struct sk_buff *pPacket = NULL;
+	unsigned long lockflags;
+	uint32_t FreeCounter = 0;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	while (!list_empty(&pAdapter->TxRing.SendWaitQueue)) {
+		spin_lock_irqsave(&pAdapter->SendWaitLock, lockflags);
+
+		pAdapter->TxRing.nWaitSend--;
+		spin_unlock_irqrestore(&pAdapter->SendWaitLock, lockflags);
+
+		pEntry = pAdapter->TxRing.SendWaitQueue.next;
+
+		pPacket = NULL;
+	}
+
+	pAdapter->TxRing.nWaitSend = 0;
+
+	/* Any packets being sent? Check the first TCB on the send list */
+	spin_lock_irqsave(&pAdapter->TCBSendQLock, lockflags);
+
+	pMpTcb = pAdapter->TxRing.CurrSendHead;
+
+	while ((pMpTcb != NULL) && (FreeCounter < NUM_TCB)) {
+		PMP_TCB pNext = pMpTcb->Next;
+
+		pAdapter->TxRing.CurrSendHead = pNext;
+
+		if (pNext == NULL) {
+			pAdapter->TxRing.CurrSendTail = NULL;
+		}
+
+		pAdapter->TxRing.nBusySend--;
+
+		spin_unlock_irqrestore(&pAdapter->TCBSendQLock, lockflags);
+
+		DBG_VERBOSE(et131x_dbginfo, "pMpTcb = 0x%p\n", pMpTcb);
+
+		FreeCounter++;
+		MP_FREE_SEND_PACKET_FUN(pAdapter, pMpTcb);
+
+		spin_lock_irqsave(&pAdapter->TCBSendQLock, lockflags);
+
+		pMpTcb = pAdapter->TxRing.CurrSendHead;
+	}
+
+	if (FreeCounter == NUM_TCB) {
+		DBG_ERROR(et131x_dbginfo,
+			  "MpFreeBusySendPackets exitted loop for a bad reason\n");
+		BUG();
+	}
+
+	spin_unlock_irqrestore(&pAdapter->TCBSendQLock, lockflags);
+
+	pAdapter->TxRing.nBusySend = 0;
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * et131x_handle_send_interrupt - Interrupt handler for sending processing
+ * @pAdapter: pointer to our adapter
+ *
+ * Re-claim the send resources, complete sends and get more to send from
+ * the send wait queue.
+ *
+ * Assumption - Send spinlock has been acquired
+ */
+void et131x_handle_send_interrupt(struct et131x_adapter *pAdapter)
+{
+	DBG_TX_ENTER(et131x_dbginfo);
+
+	/* Mark as completed any packets which have been sent by the device. */
+	et131x_update_tcb_list(pAdapter);
+
+	/* If we queued any transmits because we didn't have any TCBs earlier,
+	 * dequeue and send those packets now, as long as we have free TCBs.
+	 */
+	et131x_check_send_wait_list(pAdapter);
+
+	DBG_TX_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * et131x_update_tcb_list - Helper routine for Send Interrupt handler
+ * @pAdapter: pointer to our adapter
+ *
+ * Re-claims the send resources and completes sends.  Can also be called as
+ * part of the NIC send routine when the "ServiceComplete" indication has
+ * wrapped.
+ */
+static void et131x_update_tcb_list(struct et131x_adapter *pAdapter)
+{
+	unsigned long lockflags;
+	DMA10W_t ServiceComplete;
+	PMP_TCB pMpTcb;
+
+	ServiceComplete.value =
+	    readl(&pAdapter->CSRAddress->txdma.NewServiceComplete.value);
+
+	/* Has the ring wrapped?  Process any descriptors that do not have
+	 * the same "wrap" indicator as the current completion indicator
+	 */
+	spin_lock_irqsave(&pAdapter->TCBSendQLock, lockflags);
+
+	pMpTcb = pAdapter->TxRing.CurrSendHead;
+	while (pMpTcb &&
+	       ServiceComplete.bits.wrap != pMpTcb->WrIndex.bits.wrap  &&
+	       ServiceComplete.bits.val < pMpTcb->WrIndex.bits.val) {
+		pAdapter->TxRing.nBusySend--;
+		pAdapter->TxRing.CurrSendHead = pMpTcb->Next;
+		if (pMpTcb->Next == NULL) {
+			pAdapter->TxRing.CurrSendTail = NULL;
+		}
+
+		spin_unlock_irqrestore(&pAdapter->TCBSendQLock, lockflags);
+		MP_FREE_SEND_PACKET_FUN(pAdapter, pMpTcb);
+		spin_lock_irqsave(&pAdapter->TCBSendQLock, lockflags);
+
+		/* Goto the next packet */
+		pMpTcb = pAdapter->TxRing.CurrSendHead;
+	}
+	while (pMpTcb &&
+	       ServiceComplete.bits.wrap == pMpTcb->WrIndex.bits.wrap &&
+	       ServiceComplete.bits.val > pMpTcb->WrIndex.bits.val) {
+		pAdapter->TxRing.nBusySend--;
+		pAdapter->TxRing.CurrSendHead = pMpTcb->Next;
+		if (pMpTcb->Next == NULL) {
+			pAdapter->TxRing.CurrSendTail = NULL;
+		}
+
+		spin_unlock_irqrestore(&pAdapter->TCBSendQLock, lockflags);
+		MP_FREE_SEND_PACKET_FUN(pAdapter, pMpTcb);
+		spin_lock_irqsave(&pAdapter->TCBSendQLock, lockflags);
+
+		/* Goto the next packet */
+		pMpTcb = pAdapter->TxRing.CurrSendHead;
+	}
+
+	/* Wake up the queue when we hit a low-water mark */
+	if (pAdapter->TxRing.nBusySend <= (NUM_TCB / 3)) {
+		netif_wake_queue(pAdapter->netdev);
+	}
+
+	spin_unlock_irqrestore(&pAdapter->TCBSendQLock, lockflags);
+}
+
+/**
+ * et131x_check_send_wait_list - Helper routine for the interrupt handler
+ * @pAdapter: pointer to our adapter
+ *
+ * Takes packets from the send wait queue and posts them to the device (if
+ * room available).
+ */
+static void et131x_check_send_wait_list(struct et131x_adapter *pAdapter)
+{
+	unsigned long lockflags;
+
+	spin_lock_irqsave(&pAdapter->SendWaitLock, lockflags);
+
+	while (!list_empty(&pAdapter->TxRing.SendWaitQueue) &&
+	       MP_TCB_RESOURCES_AVAILABLE(pAdapter)) {
+		struct list_head *pEntry;
+
+		DBG_VERBOSE(et131x_dbginfo, "Tx packets on the wait queue\n");
+
+		pEntry = pAdapter->TxRing.SendWaitQueue.next;
+
+		pAdapter->TxRing.nWaitSend--;
+
+		DBG_WARNING(et131x_dbginfo,
+			    "MpHandleSendInterrupt - sent a queued pkt. Waiting %d\n",
+			    pAdapter->TxRing.nWaitSend);
+	}
+
+	spin_unlock_irqrestore(&pAdapter->SendWaitLock, lockflags);
+}
diff --git a/drivers/staging/et131x/et1310_tx.h b/drivers/staging/et131x/et1310_tx.h
new file mode 100644
index 0000000..2819c78
--- /dev/null
+++ b/drivers/staging/et131x/et1310_tx.h
@@ -0,0 +1,242 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et1310_tx.h - Defines, structs, enums, prototypes, etc. pertaining to data
+ *               transmission.
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#ifndef __ET1310_TX_H__
+#define __ET1310_TX_H__
+
+
+/* Typedefs for Tx Descriptor Ring */
+
+/*
+ * TXDESC_WORD2_t structure holds part of the control bits in the Tx Descriptor
+ * ring for the ET-1310
+ */
+typedef union _txdesc_word2_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 vlan_prio:3;		// bits 29-31(VLAN priority)
+		u32 vlan_cfi:1;		// bit 28(cfi)
+		u32 vlan_tag:12;		// bits 16-27(VLAN tag)
+		u32 length_in_bytes:16;	// bits  0-15(packet length)
+#else
+		u32 length_in_bytes:16;	// bits  0-15(packet length)
+		u32 vlan_tag:12;		// bits 16-27(VLAN tag)
+		u32 vlan_cfi:1;		// bit 28(cfi)
+		u32 vlan_prio:3;		// bits 29-31(VLAN priority)
+#endif	/* _BIT_FIELDS_HTOL */
+	} bits;
+} TXDESC_WORD2_t, *PTXDESC_WORD2_t;
+
+/*
+ * TXDESC_WORD3_t structure holds part of the control bits in the Tx Descriptor
+ * ring for the ET-1310
+ */
+typedef union _txdesc_word3_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:17;	// bits 15-31
+		u32 udpa:1;	// bit 14(UDP checksum assist)
+		u32 tcpa:1;	// bit 13(TCP checksum assist)
+		u32 ipa:1;		// bit 12(IP checksum assist)
+		u32 vlan:1;	// bit 11(append VLAN tag)
+		u32 hp:1;		// bit 10(Packet is a Huge packet)
+		u32 pp:1;		// bit  9(pad packet)
+		u32 mac:1;		// bit  8(MAC override)
+		u32 crc:1;		// bit  7(append CRC)
+		u32 e:1;		// bit  6(Tx frame has error)
+		u32 pf:1;		// bit  5(send pause frame)
+		u32 bp:1;		// bit  4(Issue half-duplex backpressure (XON/XOFF)
+		u32 cw:1;		// bit  3(Control word - no packet data)
+		u32 ir:1;		// bit  2(interrupt the processor when this pkt sent)
+		u32 f:1;		// bit  1(first packet in the sequence)
+		u32 l:1;		// bit  0(last packet in the sequence)
+#else
+		u32 l:1;		// bit  0(last packet in the sequence)
+		u32 f:1;		// bit  1(first packet in the sequence)
+		u32 ir:1;		// bit  2(interrupt the processor when this pkt sent)
+		u32 cw:1;		// bit  3(Control word - no packet data)
+		u32 bp:1;		// bit  4(Issue half-duplex backpressure (XON/XOFF)
+		u32 pf:1;		// bit  5(send pause frame)
+		u32 e:1;		// bit  6(Tx frame has error)
+		u32 crc:1;		// bit  7(append CRC)
+		u32 mac:1;		// bit  8(MAC override)
+		u32 pp:1;		// bit  9(pad packet)
+		u32 hp:1;		// bit 10(Packet is a Huge packet)
+		u32 vlan:1;	// bit 11(append VLAN tag)
+		u32 ipa:1;		// bit 12(IP checksum assist)
+		u32 tcpa:1;	// bit 13(TCP checksum assist)
+		u32 udpa:1;	// bit 14(UDP checksum assist)
+		u32 unused:17;	// bits 15-31
+#endif	/* _BIT_FIELDS_HTOL */
+	} bits;
+} TXDESC_WORD3_t, *PTXDESC_WORD3_t;
+
+/* TX_DESC_ENTRY_t is sructure representing each descriptor on the ring */
+typedef struct _tx_desc_entry_t {
+	u32 DataBufferPtrHigh;
+	u32 DataBufferPtrLow;
+	TXDESC_WORD2_t word2;	// control words how to xmit the
+	TXDESC_WORD3_t word3;	// data (detailed above)
+} TX_DESC_ENTRY_t, *PTX_DESC_ENTRY_t;
+
+
+/* Typedefs for Tx DMA engine status writeback */
+
+/*
+ * TX_STATUS_BLOCK_t is sructure representing the status of the Tx DMA engine
+ * it sits in free memory, and is pointed to by 0x101c / 0x1020
+ */
+typedef union _tx_status_block_t {
+	u32 value;
+	struct {
+#ifdef _BIT_FIELDS_HTOL
+		u32 unused:21;		// bits 11-31
+		u32 serv_cpl_wrap:1;	// bit 10
+		u32 serv_cpl:10;		// bits 0-9
+#else
+		u32 serv_cpl:10;		// bits 0-9
+		u32 serv_cpl_wrap:1;	// bit 10
+		u32 unused:21;		// bits 11-31
+#endif
+	} bits;
+} TX_STATUS_BLOCK_t, *PTX_STATUS_BLOCK_t;
+
+/* TCB (Transmit Control Block) */
+typedef struct _MP_TCB {
+	struct _MP_TCB *Next;
+	u32 Flags;
+	u32 Count;
+	u32 PacketStaleCount;
+	struct sk_buff *Packet;
+	u32 PacketLength;
+	DMA10W_t WrIndex;
+	DMA10W_t WrIndexStart;
+} MP_TCB, *PMP_TCB;
+
+/* Structure to hold the skb's in a list */
+typedef struct tx_skb_list_elem {
+	struct list_head skb_list_elem;
+	struct sk_buff *skb;
+} TX_SKB_LIST_ELEM, *PTX_SKB_LIST_ELEM;
+
+/* TX_RING_t is sructure representing our local reference(s) to the ring */
+typedef struct _tx_ring_t {
+	/* TCB (Transmit Control Block) memory and lists */
+	PMP_TCB MpTcbMem;
+
+	/* List of TCBs that are ready to be used */
+	PMP_TCB TCBReadyQueueHead;
+	PMP_TCB TCBReadyQueueTail;
+
+	/* list of TCBs that are currently being sent.  NOTE that access to all
+	 * three of these (including nBusySend) are controlled via the
+	 * TCBSendQLock.  This lock should be secured prior to incementing /
+	 * decrementing nBusySend, or any queue manipulation on CurrSendHead /
+	 * Tail
+	 */
+	PMP_TCB CurrSendHead;
+	PMP_TCB CurrSendTail;
+	int32_t nBusySend;
+
+	/* List of packets (not TCBs) that were queued for lack of resources */
+	struct list_head SendWaitQueue;
+	int32_t nWaitSend;
+
+	/* The actual descriptor ring */
+	PTX_DESC_ENTRY_t pTxDescRingVa;
+	dma_addr_t pTxDescRingPa;
+	uint64_t pTxDescRingAdjustedPa;
+	uint64_t TxDescOffset;
+
+	/* ReadyToSend indicates where we last wrote to in the descriptor ring. */
+	DMA10W_t txDmaReadyToSend;
+
+	/* The location of the write-back status block */
+	PTX_STATUS_BLOCK_t pTxStatusVa;
+	dma_addr_t pTxStatusPa;
+
+	/* A Block of zeroes used to pad packets that are less than 60 bytes */
+	void *pTxDummyBlkVa;
+	dma_addr_t pTxDummyBlkPa;
+
+	TXMAC_ERR_t TxMacErr;
+
+	/* Variables to track the Tx interrupt coalescing features */
+	int32_t TxPacketsSinceLastinterrupt;
+} TX_RING_t, *PTX_RING_t;
+
+/* Forward declaration of the frag-list for the following prototypes */
+typedef struct _MP_FRAG_LIST MP_FRAG_LIST, *PMP_FRAG_LIST;
+
+/* Forward declaration of the private adapter structure */
+struct et131x_adapter;
+
+/* PROTOTYPES for et1310_tx.c */
+int et131x_tx_dma_memory_alloc(struct et131x_adapter *adapter);
+void et131x_tx_dma_memory_free(struct et131x_adapter *adapter);
+void ConfigTxDmaRegs(struct et131x_adapter *pAdapter);
+void et131x_init_send(struct et131x_adapter *adapter);
+void et131x_tx_dma_disable(struct et131x_adapter *pAdapter);
+void et131x_tx_dma_enable(struct et131x_adapter *pAdapter);
+void et131x_handle_send_interrupt(struct et131x_adapter *pAdapter);
+void et131x_free_busy_send_packets(struct et131x_adapter *pAdapter);
+int et131x_send_packets(struct sk_buff *skb, struct net_device *netdev);
+
+#endif /* __ET1310_TX_H__ */
diff --git a/drivers/staging/et131x/et131x_adapter.h b/drivers/staging/et131x/et131x_adapter.h
new file mode 100644
index 0000000..36e61a4
--- /dev/null
+++ b/drivers/staging/et131x/et131x_adapter.h
@@ -0,0 +1,347 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et131x_adapter.h - Header which includes the private adapter structure, along
+ *                    with related support structures, macros, definitions, etc.
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#ifndef __ET131X_ADAPTER_H__
+#define __ET131X_ADAPTER_H__
+
+#include "et1310_address_map.h"
+#include "et1310_tx.h"
+#include "et1310_rx.h"
+
+/*
+ * Do not change these values: if changed, then change also in respective
+ * TXdma and Rxdma engines
+ */
+#define NUM_DESC_PER_RING_TX         512	// TX Do not change these values
+#define NUM_TCB                      64
+
+/*
+ * These values are all superseded by registry entries to facilitate tuning.
+ * Once the desired performance has been achieved, the optimal registry values
+ * should be re-populated to these #defines:
+ */
+#define NUM_TRAFFIC_CLASSES          1
+
+/*
+ * There are three ways of counting errors - if there are more than X errors
+ * in Y packets (represented by the "SAMPLE" macros), if there are more than
+ * N errors in a S mSec time period (the "PERIOD" macros), or if there are
+ * consecutive packets with errors (CONSEC_ERRORED_THRESH).  This last covers
+ * for "Bursty" errors, and the errored packets may well not be contiguous,
+ * but several errors where the packet counter has changed by less than a
+ * small amount will cause this count to increment.
+ */
+#define TX_PACKETS_IN_SAMPLE        10000
+#define TX_MAX_ERRORS_IN_SAMPLE     50
+
+#define TX_ERROR_PERIOD             1000
+#define TX_MAX_ERRORS_IN_PERIOD     10
+
+#define LINK_DETECTION_TIMER        5000
+
+#define TX_CONSEC_RANGE             5
+#define TX_CONSEC_ERRORED_THRESH    10
+
+#define LO_MARK_PERCENT_FOR_PSR     15
+#define LO_MARK_PERCENT_FOR_RX      15
+
+/* Macros for flag and ref count operations        */
+#define MP_SET_FLAG(_M, _F)         ((_M)->Flags |= (_F))
+#define MP_CLEAR_FLAG(_M, _F)       ((_M)->Flags &= ~(_F))
+#define MP_CLEAR_FLAGS(_M)          ((_M)->Flags = 0)
+#define MP_TEST_FLAG(_M, _F)        (((_M)->Flags & (_F)) != 0)
+#define MP_TEST_FLAGS(_M, _F)       (((_M)->Flags & (_F)) == (_F))
+#define MP_IS_FLAG_CLEAR(_M, _F)    (((_M)->Flags & (_F)) == 0)
+
+#define MP_INC_RCV_REF(_A)          atomic_inc(&(_A)->RcvRefCount)
+#define MP_DEC_RCV_REF(_A)          atomic_dec(&(_A)->RcvRefCount)
+#define MP_GET_RCV_REF(_A)          atomic_read(&(_A)->RcvRefCount)
+
+/* Macros specific to the private adapter structure */
+#define MP_TCB_RESOURCES_AVAILABLE(_M) ((_M)->TxRing.nBusySend < NUM_TCB)
+#define MP_TCB_RESOURCES_NOT_AVAILABLE(_M) ((_M)->TxRing.nBusySend >= NUM_TCB)
+
+#define MP_SHOULD_FAIL_SEND(_M)   ((_M)->Flags & fMP_ADAPTER_FAIL_SEND_MASK)
+#define MP_IS_NOT_READY(_M)       ((_M)->Flags & fMP_ADAPTER_NOT_READY_MASK)
+#define MP_IS_READY(_M)           !((_M)->Flags & fMP_ADAPTER_NOT_READY_MASK)
+
+#define MP_HAS_CABLE(_M)           !((_M)->Flags & fMP_ADAPTER_NO_CABLE)
+#define MP_LINK_DETECTED(_M)       !((_M)->Flags & fMP_ADAPTER_LINK_DETECTION)
+
+/* Counters for error rate monitoring */
+typedef struct _MP_ERR_COUNTERS {
+	u32 PktCountTxPackets;
+	u32 PktCountTxErrors;
+	u32 TimerBasedTxErrors;
+	u32 PktCountLastError;
+	u32 ErredConsecPackets;
+} MP_ERR_COUNTERS, *PMP_ERR_COUNTERS;
+
+/* RFD (Receive Frame Descriptor) */
+typedef struct _MP_RFD {
+	struct list_head list_node;
+	struct sk_buff *Packet;
+	u32 PacketSize;	// total size of receive frame
+	u16 iBufferIndex;
+	u8 iRingIndex;
+} MP_RFD, *PMP_RFD;
+
+/* Enum for Flow Control */
+typedef enum _eflow_control_t {
+	Both = 0,
+	TxOnly = 1,
+	RxOnly = 2,
+	None = 3
+} eFLOW_CONTROL_t, *PeFLOW_CONTROL_t;
+
+/* Struct to define some device statistics */
+typedef struct _ce_stats_t {
+	/* Link Input/Output stats */
+	uint64_t ipackets;	// # of in packets
+	uint64_t opackets;	// # of out packets
+
+	/* MIB II variables
+	 *
+	 * NOTE: atomic_t types are only guaranteed to store 24-bits; if we
+	 * MUST have 32, then we'll need another way to perform atomic
+	 * operations
+	 */
+	u32 unircv;	// # multicast packets received
+	atomic_t unixmt;	// # multicast packets for Tx
+	u32 multircv;	// # multicast packets received
+	atomic_t multixmt;	// # multicast packets for Tx
+	u32 brdcstrcv;	// # broadcast packets received
+	atomic_t brdcstxmt;	// # broadcast packets for Tx
+	u32 norcvbuf;	// # Rx packets discarded
+	u32 noxmtbuf;	// # Tx packets discarded
+
+	/* Transciever state informations. */
+	u8 xcvr_addr;
+	u32 xcvr_id;
+
+	/* Tx Statistics. */
+	u32 tx_uflo;		// Tx Underruns
+
+	u32 collisions;
+	u32 excessive_collisions;
+	u32 first_collision;
+	u32 late_collisions;
+	u32 max_pkt_error;
+	u32 tx_deferred;
+
+	/* Rx Statistics. */
+	u32 rx_ov_flow;	// Rx Over Flow
+
+	u32 length_err;
+	u32 alignment_err;
+	u32 crc_err;
+	u32 code_violations;
+	u32 other_errors;
+
+#ifdef CONFIG_ET131X_DEBUG
+	u32 UnhandledInterruptsPerSec;
+	u32 RxDmaInterruptsPerSec;
+	u32 TxDmaInterruptsPerSec;
+	u32 WatchDogInterruptsPerSec;
+#endif	/* CONFIG_ET131X_DEBUG */
+
+	u32 SynchrounousIterations;
+	INTERRUPT_t InterruptStatus;
+} CE_STATS_t, *PCE_STATS_t;
+
+/* The private adapter structure */
+struct et131x_adapter {
+	struct net_device *netdev;
+	struct pci_dev *pdev;
+
+	struct work_struct task;
+
+	/* Flags that indicate current state of the adapter */
+	u32 Flags;
+	u32 HwErrCount;
+
+	/* Configuration  */
+	u8 PermanentAddress[ETH_ALEN];
+	u8 CurrentAddress[ETH_ALEN];
+	bool bOverrideAddress;
+	bool bEepromPresent;
+	u8 eepromData[2];
+
+	/* Spinlocks */
+	spinlock_t Lock;
+
+	spinlock_t TCBSendQLock;
+	spinlock_t TCBReadyQLock;
+	spinlock_t SendHWLock;
+	spinlock_t SendWaitLock;
+
+	spinlock_t RcvLock;
+	spinlock_t RcvPendLock;
+	spinlock_t FbrLock;
+
+	spinlock_t PHYLock;
+
+	/* Packet Filter and look ahead size */
+	u32 PacketFilter;
+	u32 ulLookAhead;
+	u32 uiLinkSpeed;
+	u32 uiDuplexMode;
+	u32 uiAutoNegStatus;
+	u8 ucLinkStatus;
+
+	/* multicast list */
+	u32 MCAddressCount;
+	u8 MCList[NIC_MAX_MCAST_LIST][ETH_ALEN];
+
+	/* MAC test */
+	TXMAC_TXTEST_t TxMacTest;
+
+	/* Pointer to the device's PCI register space */
+	ADDRESS_MAP_t __iomem *CSRAddress;
+
+	/* PCI config space info, for debug purposes only. */
+	u8 RevisionID;
+	u16 VendorID;
+	u16 DeviceID;
+	u16 SubVendorID;
+	u16 SubSystemID;
+	u32 CacheFillSize;
+	u16 PciXDevCtl;
+	u8 pci_lat_timer;
+	u8 pci_hdr_type;
+	u8 pci_bist;
+	u32 pci_cfg_state[64 / sizeof(u32)];
+
+	/* Registry parameters */
+	u8 SpeedDuplex;		// speed/duplex
+	eFLOW_CONTROL_t RegistryFlowControl;	// for 802.3x flow control
+	u8 RegistryWOLMatch;	// Enable WOL pattern-matching
+	u8 RegistryWOLLink;	// Link state change is independant
+	u8 RegistryPhyComa;	// Phy Coma mode enable/disable
+
+	u32 RegistryRxMemEnd;	// Size of internal rx memory
+	u8 RegistryMACStat;	// If set, read MACSTAT, else don't
+	u32 RegistryVlanTag;	// 802.1q Vlan TAG
+	u32 RegistryJumboPacket;	// Max supported ethernet packet size
+
+	u32 RegistryTxNumBuffers;
+	u32 RegistryTxTimeInterval;
+
+	u32 RegistryRxNumBuffers;
+	u32 RegistryRxTimeInterval;
+
+	/* Validation helpers */
+	u8 RegistryPMWOL;
+	u8 RegistryNMIDisable;
+	u32 RegistryDMACache;
+	u32 RegistrySCGain;
+	u8 RegistryPhyLoopbk;	// Enable Phy loopback
+
+	/* Derived from the registry: */
+	u8 AiForceDpx;		// duplex setting
+	u16 AiForceSpeed;		// 'Speed', user over-ride of line speed
+	eFLOW_CONTROL_t FlowControl;	// flow control validated by the far-end
+	enum {
+		NETIF_STATUS_INVALID = 0,
+		NETIF_STATUS_MEDIA_CONNECT,
+		NETIF_STATUS_MEDIA_DISCONNECT,
+		NETIF_STATUS_MAX
+	} MediaState;
+	u8 DriverNoPhyAccess;
+
+	/* Minimize init-time */
+	bool bQueryPending;
+	bool bSetPending;
+	bool bResetPending;
+	struct timer_list ErrorTimer;
+	bool bLinkTimerActive;
+	MP_POWER_MGMT PoMgmt;
+	INTERRUPT_t CachedMaskValue;
+
+	atomic_t RcvRefCount;	// Num packets not yet returned
+
+	/* Xcvr status at last poll */
+	MI_BMSR_t Bmsr;
+
+	/* Tx Memory Variables */
+	TX_RING_t TxRing;
+
+	/* Rx Memory Variables */
+	RX_RING_t RxRing;
+
+	/* ET1310 register Access */
+	JAGCORE_ACCESS_REGS JagCoreRegs;
+	PCI_CFG_SPACE_REGS PciCfgRegs;
+
+	/* Loopback specifics */
+	u8 ReplicaPhyLoopbk;	// Replica Enable
+	u8 ReplicaPhyLoopbkPF;	// Replica Enable Pass/Fail
+
+	/* Stats */
+	CE_STATS_t Stats;
+
+	struct net_device_stats net_stats;
+	struct net_device_stats net_stats_prev;
+};
+
+#define MPSendPacketsHandler  MPSendPackets
+#define MP_FREE_SEND_PACKET_FUN(Adapter, pMpTcb) \
+	et131x_free_send_packet(Adapter, pMpTcb)
+#define MpSendPacketFun(Adapter, Packet) MpSendPacket(Adapter, Packet)
+
+#endif /* __ET131X_ADAPTER_H__ */
diff --git a/drivers/staging/et131x/et131x_config.c b/drivers/staging/et131x/et131x_config.c
new file mode 100644
index 0000000..0adbaa6
--- /dev/null
+++ b/drivers/staging/et131x/et131x_config.c
@@ -0,0 +1,325 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et131x_config.c - Handles parsing of configuration data during
+ *                   initialization.
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#include "et131x_version.h"
+#include "et131x_debug.h"
+#include "et131x_defs.h"
+
+#include <linux/init.h>
+#include <linux/module.h>
+#include <linux/types.h>
+#include <linux/kernel.h>
+
+#include <linux/sched.h>
+#include <linux/ptrace.h>
+#include <linux/slab.h>
+#include <linux/ctype.h>
+#include <linux/string.h>
+#include <linux/timer.h>
+#include <linux/interrupt.h>
+#include <linux/in.h>
+#include <linux/delay.h>
+#include <asm/io.h>
+#include <asm/system.h>
+#include <asm/bitops.h>
+
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/skbuff.h>
+#include <linux/if_arp.h>
+#include <linux/ioport.h>
+
+#include "et1310_phy.h"
+#include "et1310_pm.h"
+#include "et1310_jagcore.h"
+
+#include "et131x_adapter.h"
+#include "et131x_initpci.h"
+#include "et131x_config.h"
+
+#include "et1310_tx.h"
+
+/* Data for debugging facilities */
+#ifdef CONFIG_ET131X_DEBUG
+extern dbg_info_t *et131x_dbginfo;
+#endif /* CONFIG_ET131X_DEBUG */
+
+/* Defines for Parameter Default/Min/Max vaules */
+#define PARM_SPEED_DUPLEX_DEF   0
+#define PARM_SPEED_DUPLEX_MIN   0
+#define PARM_SPEED_DUPLEX_MAX   5
+
+#define PARM_VLAN_TAG_DEF       0
+#define PARM_VLAN_TAG_MIN       0
+#define PARM_VLAN_TAG_MAX       4095
+
+#define PARM_FLOW_CTL_DEF       0
+#define PARM_FLOW_CTL_MIN       0
+#define PARM_FLOW_CTL_MAX       3
+
+#define PARM_WOL_LINK_DEF       3
+#define PARM_WOL_LINK_MIN       0
+#define PARM_WOL_LINK_MAX       3
+
+#define PARM_WOL_MATCH_DEF      7
+#define PARM_WOL_MATCH_MIN      0
+#define PARM_WOL_MATCH_MAX      7
+
+#define PARM_JUMBO_PKT_DEF      1514
+#define PARM_JUMBO_PKT_MIN      1514
+#define PARM_JUMBO_PKT_MAX      9216
+
+#define PARM_PHY_COMA_DEF       0
+#define PARM_PHY_COMA_MIN       0
+#define PARM_PHY_COMA_MAX       1
+
+#define PARM_RX_NUM_BUFS_DEF    4
+#define PARM_RX_NUM_BUFS_MIN    1
+#define PARM_RX_NUM_BUFS_MAX    64
+
+#define PARM_RX_TIME_INT_DEF    10
+#define PARM_RX_TIME_INT_MIN    2
+#define PARM_RX_TIME_INT_MAX    320
+
+#define PARM_TX_NUM_BUFS_DEF    4
+#define PARM_TX_NUM_BUFS_MIN    1
+#define PARM_TX_NUM_BUFS_MAX    40
+
+#define PARM_TX_TIME_INT_DEF    40
+#define PARM_TX_TIME_INT_MIN    1
+#define PARM_TX_TIME_INT_MAX    140
+
+#define PARM_RX_MEM_END_DEF     0x2bc
+#define PARM_RX_MEM_END_MIN     0
+#define PARM_RX_MEM_END_MAX     0x3ff
+
+#define PARM_MAC_STAT_DEF       1
+#define PARM_MAC_STAT_MIN       0
+#define PARM_MAC_STAT_MAX       1
+
+#define PARM_SC_GAIN_DEF        7
+#define PARM_SC_GAIN_MIN        0
+#define PARM_SC_GAIN_MAX        7
+
+#define PARM_PM_WOL_DEF         0
+#define PARM_PM_WOL_MIN         0
+#define PARM_PM_WOL_MAX         1
+
+#define PARM_NMI_DISABLE_DEF    0
+#define PARM_NMI_DISABLE_MIN    0
+#define PARM_NMI_DISABLE_MAX    2
+
+#define PARM_DMA_CACHE_DEF      0
+#define PARM_DMA_CACHE_MIN      0
+#define PARM_DMA_CACHE_MAX      15
+
+#define PARM_PHY_LOOPBK_DEF     0
+#define PARM_PHY_LOOPBK_MIN     0
+#define PARM_PHY_LOOPBK_MAX     1
+
+#define PARM_MAC_ADDRESS_DEF    { 0x00, 0x05, 0x3d, 0x00, 0x02, 0x00 }
+
+/* Module parameter for disabling NMI
+ * et131x_speed_set :
+ * Set Link speed and dublex manually (0-5)  [0]
+ *  1 : 10Mb   Half-Duplex
+ *  2 : 10Mb   Full-Duplex
+ *  3 : 100Mb  Half-Duplex
+ *  4 : 100Mb  Full-Duplex
+ *  5 : 1000Mb Full-Duplex
+ *  0 : Auto Speed Auto Dublex // default
+ */
+static u32 et131x_nmi_disable = PARM_NMI_DISABLE_DEF;
+module_param(et131x_nmi_disable, uint, 0);
+MODULE_PARM_DESC(et131x_nmi_disable, "Disable NMI (0-2) [0]");
+
+/* Module parameter for manual speed setting
+ * et131x_nmi_disable :
+ * Disable NMI (0-2) [0]
+ *  0 :
+ *  1 :
+ *  2 :
+ */
+static u32 et131x_speed_set = PARM_SPEED_DUPLEX_DEF;
+module_param(et131x_speed_set, uint, 0);
+MODULE_PARM_DESC(et131x_speed_set,
+		 "Set Link speed and dublex manually (0-5)  [0] \n  1 : 10Mb   Half-Duplex \n  2 : 10Mb   Full-Duplex \n  3 : 100Mb  Half-Duplex \n  4 : 100Mb  Full-Duplex \n  5 : 1000Mb Full-Duplex \n 0 : Auto Speed Auto Dublex");
+
+/**
+ * et131x_config_parse
+ * @pAdapter: pointer to the private adapter struct
+ *
+ * Parses a configuration from some location (module parameters, for example)
+ * into the private adapter struct
+ */
+void et131x_config_parse(struct et131x_adapter *pAdapter)
+{
+	uint8_t macAddrDef[] = PARM_MAC_ADDRESS_DEF;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/*
+	 * The NDIS driver uses the registry to store persistent per-device
+	 * configuration, and reads this configuration into the appropriate
+	 * elements of the private adapter structure on initialization.
+	 * Because Linux has no analog to the registry, use this function to
+	 * initialize the private adapter structure with a default
+	 * configuration.
+	 *
+	 * One other possibility is to use a series of module parameters which
+	 * can be passed in by the caller when the module is initialized.
+	 * However, this implementation does not allow for seperate
+	 * configurations in the event multiple devices are present, and hence
+	 * will not suffice.
+	 *
+	 * If another method is derived which addresses this problem, this is
+	 * where it should be implemented.
+	 */
+
+	 /* Set the private adapter struct with default values for the
+	  * corresponding parameters
+	  */
+	if (et131x_speed_set != PARM_SPEED_DUPLEX_DEF) {
+		DBG_VERBOSE(et131x_dbginfo, "Speed set manually to : %d \n",
+			    et131x_speed_set);
+		pAdapter->SpeedDuplex = et131x_speed_set;
+	} else {
+		pAdapter->SpeedDuplex = PARM_SPEED_DUPLEX_DEF;
+	}
+
+	//  pAdapter->SpeedDuplex            = PARM_SPEED_DUPLEX_DEF;
+
+	pAdapter->RegistryVlanTag = PARM_VLAN_TAG_DEF;
+	pAdapter->RegistryFlowControl = PARM_FLOW_CTL_DEF;
+	pAdapter->RegistryWOLLink = PARM_WOL_LINK_DEF;
+	pAdapter->RegistryWOLMatch = PARM_WOL_MATCH_DEF;
+	pAdapter->RegistryJumboPacket = PARM_JUMBO_PKT_DEF;
+	pAdapter->RegistryPhyComa = PARM_PHY_COMA_DEF;
+	pAdapter->RegistryRxNumBuffers = PARM_RX_NUM_BUFS_DEF;
+	pAdapter->RegistryRxTimeInterval = PARM_RX_TIME_INT_DEF;
+	pAdapter->RegistryTxNumBuffers = PARM_TX_NUM_BUFS_DEF;
+	pAdapter->RegistryTxTimeInterval = PARM_TX_TIME_INT_DEF;
+	pAdapter->RegistryRxMemEnd = PARM_RX_MEM_END_DEF;
+	pAdapter->RegistryMACStat = PARM_MAC_STAT_DEF;
+	pAdapter->RegistrySCGain = PARM_SC_GAIN_DEF;
+	pAdapter->RegistryPMWOL = PARM_PM_WOL_DEF;
+
+	if (et131x_nmi_disable != PARM_NMI_DISABLE_DEF) {
+		pAdapter->RegistryNMIDisable = et131x_nmi_disable;
+	} else {
+		pAdapter->RegistryNMIDisable = PARM_NMI_DISABLE_DEF;
+	}
+
+	pAdapter->RegistryDMACache = PARM_DMA_CACHE_DEF;
+	pAdapter->RegistryPhyLoopbk = PARM_PHY_LOOPBK_DEF;
+
+	/* Set the MAC address to a default */
+	memcpy(pAdapter->CurrentAddress, macAddrDef, ETH_ALEN);
+	pAdapter->bOverrideAddress = false;
+
+	DBG_TRACE(et131x_dbginfo,
+		  "Default MAC Address  : %02x:%02x:%02x:%02x:%02x:%02x\n",
+		  pAdapter->CurrentAddress[0], pAdapter->CurrentAddress[1],
+		  pAdapter->CurrentAddress[2], pAdapter->CurrentAddress[3],
+		  pAdapter->CurrentAddress[4], pAdapter->CurrentAddress[5]);
+
+	/* Decode SpeedDuplex
+	 *
+	 * Set up as if we are auto negotiating always and then change if we
+	 * go into force mode
+	 */
+	pAdapter->AiForceSpeed = 0;	// Auto speed
+	pAdapter->AiForceDpx = 0;	// Auto FDX
+
+	/* If we are the 10/100 device, and gigabit is somehow requested then
+	 * knock it down to 100 full.
+	 */
+	if ((pAdapter->DeviceID == ET131X_PCI_DEVICE_ID_FAST) &&
+	    (pAdapter->SpeedDuplex == 5)) {
+		pAdapter->SpeedDuplex = 4;
+	}
+
+	switch (pAdapter->SpeedDuplex) {
+	case 1:		// 10Mb   Half-Duplex
+		pAdapter->AiForceSpeed = 10;
+		pAdapter->AiForceDpx = 1;
+		break;
+
+	case 2:		// 10Mb   Full-Duplex
+		pAdapter->AiForceSpeed = 10;
+		pAdapter->AiForceDpx = 2;
+		break;
+
+	case 3:		// 100Mb  Half-Duplex
+		pAdapter->AiForceSpeed = 100;
+		pAdapter->AiForceDpx = 1;
+		break;
+
+	case 4:		// 100Mb  Full-Duplex
+		pAdapter->AiForceSpeed = 100;
+		pAdapter->AiForceDpx = 2;
+		break;
+
+	case 5:		// 1000Mb Full-Duplex
+		pAdapter->AiForceSpeed = 1000;
+		pAdapter->AiForceDpx = 2;
+		break;
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+}
diff --git a/drivers/staging/et131x/et131x_config.h b/drivers/staging/et131x/et131x_config.h
new file mode 100644
index 0000000..642c0f6
--- /dev/null
+++ b/drivers/staging/et131x/et131x_config.h
@@ -0,0 +1,67 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et131x_config.h - Defines, structs, enums, prototypes, etc. to support
+ *                   et131x_config.c
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#ifndef __ET131X_CONFIG_H__
+#define __ET131X_CONFIG_H__
+
+/* Forward declaration of the private adapter structure */
+struct et131x_adapter;
+
+void et131x_config_parse(struct et131x_adapter *adapter);
+
+#endif /* __ET131X_CONFIG_H__ */
diff --git a/drivers/staging/et131x/et131x_debug.c b/drivers/staging/et131x/et131x_debug.c
new file mode 100644
index 0000000..9ee5bce
--- /dev/null
+++ b/drivers/staging/et131x/et131x_debug.c
@@ -0,0 +1,218 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et131x_debug.c - Routines used for debugging.
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#ifdef CONFIG_ET131X_DEBUG
+
+#include "et131x_version.h"
+#include "et131x_debug.h"
+#include "et131x_defs.h"
+
+#include <linux/pci.h>
+#include <linux/init.h>
+#include <linux/module.h>
+#include <linux/types.h>
+#include <linux/kernel.h>
+
+#include <linux/sched.h>
+#include <linux/ptrace.h>
+#include <linux/slab.h>
+#include <linux/ctype.h>
+#include <linux/string.h>
+#include <linux/timer.h>
+#include <linux/interrupt.h>
+#include <linux/in.h>
+#include <linux/delay.h>
+#include <asm/io.h>
+#include <asm/system.h>
+#include <asm/bitops.h>
+
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/skbuff.h>
+#include <linux/if_arp.h>
+#include <linux/ioport.h>
+#include <linux/random.h>
+
+#include "et1310_phy.h"
+#include "et1310_pm.h"
+#include "et1310_jagcore.h"
+
+#include "et131x_adapter.h"
+#include "et131x_netdev.h"
+#include "et131x_config.h"
+#include "et131x_isr.h"
+
+#include "et1310_address_map.h"
+#include "et1310_jagcore.h"
+#include "et1310_tx.h"
+#include "et1310_rx.h"
+#include "et1310_mac.h"
+
+/* Data for debugging facilities */
+extern dbg_info_t *et131x_dbginfo;
+
+/**
+ * DumpTxQueueContents - Dump out the tx queue and the shadow pointers
+ * @pAdapter: pointer to our adapter structure
+ */
+void DumpTxQueueContents(int dbgLvl, struct et131x_adapter *pAdapter)
+{
+	MMC_t __iomem *mmc = &pAdapter->CSRAddress->mmc;
+	uint32_t TxQueueAddr;
+
+	if (DBG_FLAGS(et131x_dbginfo) & dbgLvl) {
+		for (TxQueueAddr = 0x200; TxQueueAddr < 0x3ff; TxQueueAddr++) {
+			MMC_SRAM_ACCESS_t sram_access;
+
+			sram_access.value = readl(&mmc->sram_access.value);
+			sram_access.bits.req_addr = TxQueueAddr;
+			sram_access.bits.req_access = 1;
+			writel(sram_access.value, &mmc->sram_access.value);
+
+			DBG_PRINT("Addr 0x%x, Access 0x%08x\t"
+				  "Value 1 0x%08x, Value 2 0x%08x, "
+				  "Value 3 0x%08x, Value 4 0x%08x, \n",
+				  TxQueueAddr,
+				  readl(&mmc->sram_access.value),
+				  readl(&mmc->sram_word1),
+				  readl(&mmc->sram_word2),
+				  readl(&mmc->sram_word3),
+				  readl(&mmc->sram_word4));
+		}
+
+		DBG_PRINT("Shadow Pointers 0x%08x\n",
+			  readl(&pAdapter->CSRAddress->txmac.shadow_ptr.value));
+	}
+}
+
+/**
+ * DumpDeviceBlock
+ * @pAdapter: pointer to our adapter
+ *
+ * Dumps the first 64 regs of each block of the et-1310 (each block is
+ * mapped to a new page, each page is 4096 bytes).
+ */
+#define NUM_BLOCKS 8
+void DumpDeviceBlock(int dbgLvl, struct et131x_adapter *pAdapter,
+		     uint32_t Block)
+{
+	uint32_t Address1, Address2;
+	uint32_t __iomem *BigDevicePointer =
+		(uint32_t __iomem *) pAdapter->CSRAddress;
+	const char *BlockNames[NUM_BLOCKS] = {
+		"Global", "Tx DMA", "Rx DMA", "Tx MAC",
+		"Rx MAC", "MAC", "MAC Stat", "MMC"
+	};
+
+	/* Output the debug counters to the debug terminal */
+	if (DBG_FLAGS(et131x_dbginfo) & dbgLvl) {
+		DBG_PRINT("%s block\n", BlockNames[Block]);
+		BigDevicePointer += Block * 1024;
+		for (Address1 = 0; Address1 < 8; Address1++) {
+			for (Address2 = 0; Address2 < 8; Address2++) {
+				if (Block == 0 &&
+				    (Address1 * 8 + Address2) == 6) {
+					DBG_PRINT("  ISR    , ");
+				} else {
+					DBG_PRINT("0x%08x, ",
+						  readl(BigDevicePointer++));
+				}
+			}
+			DBG_PRINT("\n");
+		}
+		DBG_PRINT("\n");
+	}
+}
+
+/**
+ * DumpDeviceReg
+ * @pAdapter: pointer to our adapter
+ *
+ * Dumps the first 64 regs of each block of the et-1310 (each block is
+ * mapped to a new page, each page is 4096 bytes).
+ */
+void DumpDeviceReg(int dbgLvl, struct et131x_adapter *pAdapter)
+{
+	uint32_t Address1, Address2;
+	uint32_t Block;
+	uint32_t __iomem *BigDevicePointer =
+		(uint32_t __iomem *) pAdapter->CSRAddress;
+	uint32_t __iomem *Pointer;
+	const char *BlockNames[NUM_BLOCKS] = {
+		"Global", "Tx DMA", "Rx DMA", "Tx MAC",
+		"Rx MAC", "MAC", "MAC Stat", "MMC"
+	};
+
+	/* Output the debug counters to the debug terminal */
+	if (DBG_FLAGS(et131x_dbginfo) & dbgLvl) {
+		for (Block = 0; Block < NUM_BLOCKS; Block++) {
+			DBG_PRINT("%s block\n", BlockNames[Block]);
+			Pointer = BigDevicePointer + (Block * 1024);
+
+			for (Address1 = 0; Address1 < 8; Address1++) {
+				for (Address2 = 0; Address2 < 8; Address2++) {
+					DBG_PRINT("0x%08x, ",
+						  readl(Pointer++));
+				}
+				DBG_PRINT("\n");
+			}
+			DBG_PRINT("\n");
+		}
+	}
+}
+
+#endif // CONFIG_ET131X_DEBUG
diff --git a/drivers/staging/et131x/et131x_debug.h b/drivers/staging/et131x/et131x_debug.h
new file mode 100644
index 0000000..dab6080
--- /dev/null
+++ b/drivers/staging/et131x/et131x_debug.h
@@ -0,0 +1,201 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et131x_debug.h - Defines, structs, enums, prototypes, etc. used for
+ *                  outputting debug messages to the system logging facility
+ *                  (ksyslogd)
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#ifndef __ET131X_DBG_H__
+#define __ET131X_DBG_H__
+
+/* Define Masks for debugging types/levels */
+#define DBG_ERROR_ON        0x00000001L
+#define DBG_WARNING_ON      0x00000002L
+#define DBG_NOTICE_ON       0x00000004L
+#define DBG_TRACE_ON        0x00000008L
+#define DBG_VERBOSE_ON      0x00000010L
+#define DBG_PARAM_ON        0x00000020L
+#define DBG_BREAK_ON        0x00000040L
+#define DBG_RX_ON           0x00000100L
+#define DBG_TX_ON           0x00000200L
+
+#ifdef CONFIG_ET131X_DEBUG
+
+/*
+ * Set the level of debugging if not done with a preprocessor define. See
+ * et131x_main.c, function et131x_init_module() for how the debug level
+ * translates into the types of messages displayed.
+ */
+#ifndef DBG_LVL
+#define DBG_LVL	3
+#endif /* DBG_LVL */
+
+#define DBG_DEFAULTS		(DBG_ERROR_ON | DBG_WARNING_ON | DBG_BREAK_ON )
+
+#define DBG_FLAGS(A)		(A)->dbgFlags
+#define DBG_NAME(A)		(A)->dbgName
+#define DBG_LEVEL(A)		(A)->dbgLevel
+
+#ifndef DBG_PRINT
+#define DBG_PRINT(S...)		printk(KERN_DEBUG S)
+#endif /* DBG_PRINT */
+
+#ifndef DBG_PRINTC
+#define DBG_PRINTC(S...)	printk(S)
+#endif /* DBG_PRINTC */
+
+#ifndef DBG_TRAP
+#define DBG_TRAP		{}	/* BUG() */
+#endif /* DBG_TRAP */
+
+#define _ENTER_STR	">>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>>"
+#define _LEAVE_STR	"<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<<"
+
+#define _DBG_ENTER(A)	printk(KERN_DEBUG "%s:%.*s:%s\n", DBG_NAME(A),	\
+				++DBG_LEVEL(A), _ENTER_STR, __func__)
+#define _DBG_LEAVE(A)	printk(KERN_DEBUG "%s:%.*s:%s\n", DBG_NAME(A),	\
+				DBG_LEVEL(A)--, _LEAVE_STR, __func__)
+
+#define DBG_ENTER(A)        {if (DBG_FLAGS(A) & DBG_TRACE_ON) \
+                                _DBG_ENTER(A);}
+
+#define DBG_LEAVE(A)        {if (DBG_FLAGS(A) & DBG_TRACE_ON) \
+                                _DBG_LEAVE(A);}
+
+#define DBG_PARAM(A,N,F,S...)   {if (DBG_FLAGS(A) & DBG_PARAM_ON) \
+                                    DBG_PRINT("  %s -- "F"\n",N,S);}
+
+#define DBG_ERROR(A,S...)	\
+	if (DBG_FLAGS(A) & DBG_ERROR_ON) {				\
+		DBG_PRINT("%s:ERROR:%s ",DBG_NAME(A), __func__);	\
+		DBG_PRINTC(S);						\
+		DBG_TRAP;						\
+	}
+
+#define DBG_WARNING(A,S...) {if (DBG_FLAGS(A) & DBG_WARNING_ON) \
+                                {DBG_PRINT("%s:WARNING:%s ",DBG_NAME(A),__func__);DBG_PRINTC(S);}}
+
+#define DBG_NOTICE(A,S...)  {if (DBG_FLAGS(A) & DBG_NOTICE_ON) \
+                                {DBG_PRINT("%s:NOTICE:%s ",DBG_NAME(A),__func__);DBG_PRINTC(S);}}
+
+#define DBG_TRACE(A,S...)   {if (DBG_FLAGS(A) & DBG_TRACE_ON) \
+                                {DBG_PRINT("%s:TRACE:%s ",DBG_NAME(A), __func__);DBG_PRINTC(S);}}
+
+#define DBG_VERBOSE(A,S...) {if (DBG_FLAGS(A) & DBG_VERBOSE_ON) \
+                                {DBG_PRINT("%s:VERBOSE:%s ",DBG_NAME(A), __func__);DBG_PRINTC(S);}}
+
+#define DBG_RX(A,S...)      {if (DBG_FLAGS(A) & DBG_RX_ON) \
+                                {DBG_PRINT(S);}}
+
+#define DBG_RX_ENTER(A)     {if (DBG_FLAGS(A) & DBG_RX_ON) \
+                                _DBG_ENTER(A);}
+
+#define DBG_RX_LEAVE(A)     {if (DBG_FLAGS(A) & DBG_RX_ON) \
+                                _DBG_LEAVE(A);}
+
+#define DBG_TX(A,S...)      {if (DBG_FLAGS(A) & DBG_TX_ON) \
+                                {DBG_PRINT(S);}}
+
+#define DBG_TX_ENTER(A)     {if (DBG_FLAGS(A) & DBG_TX_ON) \
+                                _DBG_ENTER(A);}
+
+#define DBG_TX_LEAVE(A)     {if (DBG_FLAGS(A) & DBG_TX_ON) \
+                                _DBG_LEAVE(A);}
+
+#define DBG_ASSERT(C)       {if (!(C)) \
+                                {DBG_PRINT("ASSERT(%s) -- %s#%d (%s)\n", \
+                                    #C,__FILE__,__LINE__,__func__); \
+                                DBG_TRAP;}}
+#define STATIC
+
+typedef struct {
+	char *dbgName;
+	int dbgLevel;
+	unsigned long dbgFlags;
+} dbg_info_t;
+
+#else /* CONFIG_ET131X_DEBUG */
+
+#define DBG_DEFN
+#define DBG_TRAP
+#define DBG_PRINT(S...)
+#define DBG_ENTER(A)
+#define DBG_LEAVE(A)
+#define DBG_PARAM(A,N,F,S...)
+#define DBG_ERROR(A,S...)
+#define DBG_WARNING(A,S...)
+#define DBG_NOTICE(A,S...)
+#define DBG_TRACE(A,S...)
+#define DBG_VERBOSE(A,S...)
+#define DBG_RX(A,S...)
+#define DBG_RX_ENTER(A)
+#define DBG_RX_LEAVE(A)
+#define DBG_TX(A,S...)
+#define DBG_TX_ENTER(A)
+#define DBG_TX_LEAVE(A)
+#define DBG_ASSERT(C)
+#define STATIC static
+
+#endif /* CONFIG_ET131X_DEBUG */
+
+/* Forward declaration of the private adapter structure */
+struct et131x_adapter;
+
+void DumpTxQueueContents(int dbgLvl, struct et131x_adapter *adapter);
+void DumpDeviceBlock(int dbgLvl, struct et131x_adapter *adapter,
+		     unsigned int Block);
+void DumpDeviceReg(int dbgLvl, struct et131x_adapter *adapter);
+
+#endif /* __ET131X_DBG_H__ */
diff --git a/drivers/staging/et131x/et131x_defs.h b/drivers/staging/et131x/et131x_defs.h
new file mode 100644
index 0000000..886cb78
--- /dev/null
+++ b/drivers/staging/et131x/et131x_defs.h
@@ -0,0 +1,128 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et131x_defs.h - Defines, structs, enums, prototypes, etc. to assist with OS
+ *                 compatibility
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#ifndef __ET131X_DEFS_H__
+#define __ET131X_DEFS_H__
+
+/* Packet and header sizes */
+#define NIC_MIN_PACKET_SIZE	60
+#define NIC_HEADER_SIZE		ETH_HLEN	/* 14 */
+
+/* Multicast list size */
+#define NIC_MAX_MCAST_LIST	128
+
+/* Supported Filters */
+#define ET131X_PACKET_TYPE_DIRECTED		0x0001
+#define ET131X_PACKET_TYPE_MULTICAST		0x0002
+#define ET131X_PACKET_TYPE_BROADCAST		0x0004
+#define ET131X_PACKET_TYPE_PROMISCUOUS		0x0008
+#define ET131X_PACKET_TYPE_ALL_MULTICAST	0x0010
+
+/* Tx Timeout */
+#define ET131X_TX_TIMEOUT	(1 * HZ)
+#define NIC_SEND_HANG_THRESHOLD	0
+
+/* MP_TCB flags */
+#define fMP_DEST_MULTI			0x00000001
+#define fMP_DEST_BROAD			0x00000002
+
+/* MP_ADAPTER flags */
+#define fMP_ADAPTER_RECV_LOOKASIDE	0x00000004
+#define fMP_ADAPTER_INTERRUPT_IN_USE	0x00000008
+#define fMP_ADAPTER_SECONDARY		0x00000010
+
+/* MP_SHARED flags */
+#define fMP_ADAPTER_SHUTDOWN		0x00100000
+#define fMP_ADAPTER_LOWER_POWER		0x00200000
+
+#define fMP_ADAPTER_NON_RECOVER_ERROR	0x00800000
+#define fMP_ADAPTER_RESET_IN_PROGRESS	0x01000000
+#define fMP_ADAPTER_NO_CABLE		0x02000000
+#define fMP_ADAPTER_HARDWARE_ERROR	0x04000000
+#define fMP_ADAPTER_REMOVE_IN_PROGRESS	0x08000000
+#define fMP_ADAPTER_HALT_IN_PROGRESS	0x10000000
+#define fMP_ADAPTER_LINK_DETECTION	0x20000000
+
+#define fMP_ADAPTER_FAIL_SEND_MASK	0x3ff00000
+#define fMP_ADAPTER_NOT_READY_MASK	0x3ff00000
+
+/* Some offsets in PCI config space that are actually used. */
+#define ET1310_PCI_PM_CAPABILITY	0x40
+#define ET1310_PCI_PM_CSR		0x44
+#define ET1310_PCI_MAX_PYLD		0x4C
+#define ET1310_PCI_DEV_CTRL		0x50
+#define ET1310_PCI_DEV_STAT		0x52
+#define ET1310_NMI_DISABLE		0x61
+#define ET1310_PCI_MAC_ADDRESS		0xA4
+#define ET1310_PCI_EEPROM_STATUS	0xB2
+#define ET1310_PCI_PHY_INDEX_REG	0xB4
+#define ET1310_PCI_ACK_NACK		0xC0
+#define ET1310_PCI_REPLAY		0xC2
+#define ET1310_PCI_L0L1LATENCY		0xCF
+#define ET1310_PCI_SEL_PHY_CTRL		0xE4
+#define ET1310_PCI_ADVANCED_ERR		0x100
+
+/* PCI Vendor/Product IDs */
+#define ET131X_PCI_VENDOR_ID		0x11C1	// Agere Systems
+#define ET131X_PCI_DEVICE_ID_GIG	0xED00	// ET1310 1000 Base-T
+#define ET131X_PCI_DEVICE_ID_FAST	0xED01	// ET1310 100  Base-T
+
+/* Define order of magnitude converter */
+#define NANO_IN_A_MICRO	1000
+
+#endif /* __ET131X_DEFS_H__ */
diff --git a/drivers/staging/et131x/et131x_initpci.c b/drivers/staging/et131x/et131x_initpci.c
new file mode 100644
index 0000000..4c6f171
--- /dev/null
+++ b/drivers/staging/et131x/et131x_initpci.c
@@ -0,0 +1,1046 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et131x_initpci.c - Routines and data used to register the driver with the
+ *                    PCI (and PCI Express) subsystem, as well as basic driver
+ *                    init and startup.
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#include "et131x_version.h"
+#include "et131x_debug.h"
+#include "et131x_defs.h"
+
+#include <linux/pci.h>
+#include <linux/init.h>
+#include <linux/module.h>
+#include <linux/types.h>
+#include <linux/kernel.h>
+
+#include <linux/sched.h>
+#include <linux/ptrace.h>
+#include <linux/slab.h>
+#include <linux/ctype.h>
+#include <linux/string.h>
+#include <linux/timer.h>
+#include <linux/interrupt.h>
+#include <linux/in.h>
+#include <linux/delay.h>
+#include <asm/io.h>
+#include <asm/system.h>
+#include <asm/bitops.h>
+
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/skbuff.h>
+#include <linux/if_arp.h>
+#include <linux/ioport.h>
+#include <linux/random.h>
+
+#include "et1310_phy.h"
+#include "et1310_pm.h"
+#include "et1310_jagcore.h"
+
+#include "et131x_adapter.h"
+#include "et131x_netdev.h"
+#include "et131x_config.h"
+#include "et131x_isr.h"
+
+#include "et1310_address_map.h"
+#include "et1310_jagcore.h"
+#include "et1310_tx.h"
+#include "et1310_rx.h"
+#include "et1310_mac.h"
+#include "et1310_eeprom.h"
+
+
+int __devinit et131x_pci_setup(struct pci_dev *pdev,
+			       const struct pci_device_id *ent);
+void __devexit et131x_pci_remove(struct pci_dev *pdev);
+
+
+/* Modinfo parameters (filled out using defines from et131x_version.h) */
+MODULE_AUTHOR(DRIVER_AUTHOR);
+MODULE_DESCRIPTION(DRIVER_INFO);
+MODULE_LICENSE(DRIVER_LICENSE);
+
+/* Module Parameters and related data for debugging facilities */
+#ifdef CONFIG_ET131X_DEBUG
+static u32 et131x_debug_level = DBG_LVL;
+static u32 et131x_debug_flags = DBG_DEFAULTS;
+
+/*
+et131x_debug_level :
+ Level of debugging desired (0-7)
+   7 : DBG_RX_ON | DBG_TX_ON
+   6 : DBG_PARAM_ON
+   5 : DBG_VERBOSE_ON
+   4 : DBG_TRACE_ON
+   3 : DBG_NOTICE_ON
+   2 : no debug info
+   1 : no debug info
+   0 : no debug info
+*/
+
+module_param(et131x_debug_level, uint, 0);
+module_param(et131x_debug_flags, uint, 0);
+
+MODULE_PARM_DESC(et131x_debug_level, "Level of debugging desired (0-7)");
+
+static dbg_info_t et131x_info = { DRIVER_NAME_EXT, 0, 0 };
+dbg_info_t *et131x_dbginfo = &et131x_info;
+#endif /* CONFIG_ET131X_DEBUG */
+
+static struct pci_device_id et131x_pci_table[] __devinitdata = {
+	{ET131X_PCI_VENDOR_ID, ET131X_PCI_DEVICE_ID_GIG, PCI_ANY_ID,
+	 PCI_ANY_ID, 0, 0, 0UL},
+	{ET131X_PCI_VENDOR_ID, ET131X_PCI_DEVICE_ID_FAST, PCI_ANY_ID,
+	 PCI_ANY_ID, 0, 0, 0UL},
+	{0,}
+};
+
+MODULE_DEVICE_TABLE(pci, et131x_pci_table);
+
+static struct pci_driver et131x_driver = {
+      .name	= DRIVER_NAME,
+      .id_table	= et131x_pci_table,
+      .probe	= et131x_pci_setup,
+      .remove	= __devexit_p(et131x_pci_remove),
+      .suspend	= NULL,		//et131x_pci_suspend,
+      .resume	= NULL,		//et131x_pci_resume,
+};
+
+
+/**
+ * et131x_init_module - The "main" entry point called on driver initialization
+ *
+ * Returns 0 on success, errno on failure (as defined in errno.h)
+ */
+int et131x_init_module(void)
+{
+	int result;
+
+#ifdef CONFIG_ET131X_DEBUG
+	/* Set the level of debug messages displayed using the module
+	 * parameter
+	 */
+	et131x_dbginfo->dbgFlags = et131x_debug_flags;
+
+	switch (et131x_debug_level) {
+	case 7:
+		et131x_dbginfo->dbgFlags |= (DBG_RX_ON | DBG_TX_ON);
+
+	case 6:
+		et131x_dbginfo->dbgFlags |= DBG_PARAM_ON;
+
+	case 5:
+		et131x_dbginfo->dbgFlags |= DBG_VERBOSE_ON;
+
+	case 4:
+		et131x_dbginfo->dbgFlags |= DBG_TRACE_ON;
+
+	case 3:
+		et131x_dbginfo->dbgFlags |= DBG_NOTICE_ON;
+
+	case 2:
+	case 1:
+	case 0:
+	default:
+		break;
+	}
+#endif /* CONFIG_ET131X_DEBUG */
+
+	DBG_ENTER(et131x_dbginfo);
+	DBG_PRINT("%s\n", DRIVER_INFO);
+
+	result = pci_register_driver(&et131x_driver);
+
+	DBG_LEAVE(et131x_dbginfo);
+	return result;
+}
+
+/**
+ * et131x_cleanup_module - The entry point called on driver cleanup
+ */
+void et131x_cleanup_module(void)
+{
+	DBG_ENTER(et131x_dbginfo);
+
+	pci_unregister_driver(&et131x_driver);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/*
+ * These macros map the driver-specific init_module() and cleanup_module()
+ * routines so they can be called by the kernel.
+ */
+module_init(et131x_init_module);
+module_exit(et131x_cleanup_module);
+
+
+/**
+ * et131x_find_adapter - Find the adapter and get all the assigned resources
+ * @adapter: pointer to our private adapter structure
+ *
+ * Returns 0 on success, errno on failure (as defined in errno.h)
+ */
+int et131x_find_adapter(struct et131x_adapter *adapter, struct pci_dev *pdev)
+{
+	int result;
+	uint8_t eepromStat;
+	uint8_t maxPayload = 0;
+	uint8_t read_size_reg;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Allow disabling of Non-Maskable Interrupts in I/O space, to
+	 * support validation.
+	 */
+	if (adapter->RegistryNMIDisable) {
+		uint8_t RegisterVal;
+
+		RegisterVal = inb(ET1310_NMI_DISABLE);
+		RegisterVal &= 0xf3;
+
+		if (adapter->RegistryNMIDisable == 2) {
+			RegisterVal |= 0xc;
+		}
+
+		outb(ET1310_NMI_DISABLE, RegisterVal);
+	}
+
+	/* We first need to check the EEPROM Status code located at offset
+	 * 0xB2 of config space
+	 */
+	result = pci_read_config_byte(pdev, ET1310_PCI_EEPROM_STATUS,
+				      &eepromStat);
+
+	/* THIS IS A WORKAROUND:
+ 	 * I need to call this function twice to get my card in a
+	 * LG M1 Express Dual running. I tried also a msleep before this
+	 * function, because I thougth there could be some time condidions
+	 * but it didn't work. Call the whole function twice also work.
+	 */
+	result = pci_read_config_byte(pdev, ET1310_PCI_EEPROM_STATUS,
+				      &eepromStat);
+	if (result != PCIBIOS_SUCCESSFUL) {
+		DBG_ERROR(et131x_dbginfo, "Could not read PCI config space for "
+			  "EEPROM Status\n");
+		DBG_LEAVE(et131x_dbginfo);
+		return -EIO;
+	}
+
+	/* Determine if the error(s) we care about are present.  If they are
+	 * present, we need to fail.
+	 */
+	if (eepromStat & 0x4C) {
+		result = pci_read_config_byte(pdev, PCI_REVISION_ID,
+					      &adapter->RevisionID);
+		if (result != PCIBIOS_SUCCESSFUL) {
+			DBG_ERROR(et131x_dbginfo,
+				  "Could not read PCI config space for "
+				  "Revision ID\n");
+			DBG_LEAVE(et131x_dbginfo);
+			return -EIO;
+		} else if (adapter->RevisionID == 0x01) {
+			int32_t nLoop;
+			uint8_t ucTemp[4] = { 0xFE, 0x13, 0x10, 0xFF };
+
+			/* Re-write the first 4 bytes if we have an eeprom
+			 * present and the revision id is 1, this fixes the
+			 * corruption seen with 1310 B Silicon
+			 */
+			for (nLoop = 0; nLoop < 3; nLoop++) {
+				EepromWriteByte(adapter, nLoop, ucTemp[nLoop],
+						0, SINGLE_BYTE);
+			}
+		}
+
+		DBG_ERROR(et131x_dbginfo,
+			  "Fatal EEPROM Status Error - 0x%04x\n", eepromStat);
+
+		/* This error could mean that there was an error reading the
+		 * eeprom or that the eeprom doesn't exist.  We will treat
+		 * each case the same and not try to gather additional
+		 * information that normally would come from the eeprom, like
+		 * MAC Address
+		 */
+		adapter->bEepromPresent = false;
+
+		DBG_LEAVE(et131x_dbginfo);
+		return -EIO;
+	} else {
+		DBG_TRACE(et131x_dbginfo, "EEPROM Status Code - 0x%04x\n",
+			  eepromStat);
+		adapter->bEepromPresent = true;
+	}
+
+	/* Read the EEPROM for information regarding LED behavior. Refer to
+	 * ET1310_phy.c, et131x_xcvr_init(), for its use.
+	 */
+	EepromReadByte(adapter, 0x70, &adapter->eepromData[0], 0, SINGLE_BYTE);
+	EepromReadByte(adapter, 0x71, &adapter->eepromData[1], 0, SINGLE_BYTE);
+
+	if (adapter->eepromData[0] != 0xcd) {
+		adapter->eepromData[1] = 0x00;	// Disable all optional features
+	}
+
+	/* Let's set up the PORT LOGIC Register.  First we need to know what
+	 * the max_payload_size is
+	 */
+	result = pci_read_config_byte(pdev, ET1310_PCI_MAX_PYLD, &maxPayload);
+	if (result != PCIBIOS_SUCCESSFUL) {
+		DBG_ERROR(et131x_dbginfo, "Could not read PCI config space for "
+			  "Max Payload Size\n");
+		DBG_LEAVE(et131x_dbginfo);
+		return -EIO;
+	}
+
+	/* Program the Ack/Nak latency and replay timers */
+	maxPayload &= 0x07;	// Only the lower 3 bits are valid
+
+	if (maxPayload < 2) {
+		const uint16_t AckNak[2] = { 0x76, 0xD0 };
+		const uint16_t Replay[2] = { 0x1E0, 0x2ED };
+
+		result = pci_write_config_word(pdev, ET1310_PCI_ACK_NACK,
+					       AckNak[maxPayload]);
+		if (result != PCIBIOS_SUCCESSFUL) {
+			DBG_ERROR(et131x_dbginfo,
+				  "Could not write PCI config space "
+				  "for ACK/NAK\n");
+			DBG_LEAVE(et131x_dbginfo);
+			return -EIO;
+		}
+
+		result = pci_write_config_word(pdev, ET1310_PCI_REPLAY,
+					       Replay[maxPayload]);
+		if (result != PCIBIOS_SUCCESSFUL) {
+			DBG_ERROR(et131x_dbginfo,
+				  "Could not write PCI config space "
+				  "for Replay Timer\n");
+			DBG_LEAVE(et131x_dbginfo);
+			return -EIO;
+		}
+	}
+
+	/* l0s and l1 latency timers.  We are using default values.
+	 * Representing 001 for L0s and 010 for L1
+	 */
+	result = pci_write_config_byte(pdev, ET1310_PCI_L0L1LATENCY, 0x11);
+	if (result != PCIBIOS_SUCCESSFUL) {
+		DBG_ERROR(et131x_dbginfo,
+			  "Could not write PCI config space for "
+			  "Latency Timers\n");
+		DBG_LEAVE(et131x_dbginfo);
+		return -EIO;
+	}
+
+	/* Change the max read size to 2k */
+	result = pci_read_config_byte(pdev, 0x51, &read_size_reg);
+	if (result != PCIBIOS_SUCCESSFUL) {
+		DBG_ERROR(et131x_dbginfo,
+			  "Could not read PCI config space for Max read size\n");
+		DBG_LEAVE(et131x_dbginfo);
+		return -EIO;
+	}
+
+	read_size_reg &= 0x8f;
+	read_size_reg |= 0x40;
+
+	result = pci_write_config_byte(pdev, 0x51, read_size_reg);
+	if (result != PCIBIOS_SUCCESSFUL) {
+		DBG_ERROR(et131x_dbginfo,
+			  "Could not write PCI config space for Max read size\n");
+		DBG_LEAVE(et131x_dbginfo);
+		return -EIO;
+	}
+
+	/* PCI Express Configuration registers 0x48-0x5B (Device Control) */
+	result = pci_read_config_word(pdev, ET1310_PCI_DEV_CTRL,
+				      &adapter->PciXDevCtl);
+	if (result != PCIBIOS_SUCCESSFUL) {
+		DBG_ERROR(et131x_dbginfo,
+			  "Could not read PCI config space for PCI Express Dev Ctl\n");
+		DBG_LEAVE(et131x_dbginfo);
+		return -EIO;
+	}
+
+	/* Get MAC address from config space if an eeprom exists, otherwise
+	 * the MAC address there will not be valid
+	 */
+	if (adapter->bEepromPresent) {
+		int i;
+
+		for (i = 0; i < ETH_ALEN; i++) {
+			result = pci_read_config_byte(
+					pdev, ET1310_PCI_MAC_ADDRESS + i,
+					adapter->PermanentAddress + i);
+			if (result != PCIBIOS_SUCCESSFUL) {
+				DBG_ERROR(et131x_dbginfo,
+					  "Could not read PCI config space for MAC address\n");
+				DBG_LEAVE(et131x_dbginfo);
+				return -EIO;
+			}
+		}
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+	return 0;
+}
+
+/**
+ * et131x_error_timer_handler
+ * @data: timer-specific variable; here a pointer to our adapter structure
+ *
+ * The routine called when the error timer expires, to track the number of
+ * recurring errors.
+ */
+void et131x_error_timer_handler(unsigned long data)
+{
+	struct et131x_adapter *pAdapter = (struct et131x_adapter *) data;
+	PM_CSR_t pm_csr;
+
+	pm_csr.value = readl(&pAdapter->CSRAddress->global.pm_csr.value);
+
+	if (pm_csr.bits.pm_phy_sw_coma == 0) {
+		if (pAdapter->RegistryMACStat) {
+			UpdateMacStatHostCounters(pAdapter);
+		}
+	} else {
+		DBG_VERBOSE(et131x_dbginfo,
+			    "No interrupts, in PHY coma, pm_csr = 0x%x\n",
+			    pm_csr.value);
+	}
+
+	if (!pAdapter->Bmsr.bits.link_status &&
+	    pAdapter->RegistryPhyComa &&
+	    pAdapter->PoMgmt.TransPhyComaModeOnBoot < 11) {
+		pAdapter->PoMgmt.TransPhyComaModeOnBoot++;
+	}
+
+	if (pAdapter->PoMgmt.TransPhyComaModeOnBoot == 10) {
+		if (!pAdapter->Bmsr.bits.link_status
+		    && pAdapter->RegistryPhyComa) {
+			if (pm_csr.bits.pm_phy_sw_coma == 0) {
+				// NOTE - This was originally a 'sync with interrupt'. How
+				//        to do that under Linux?
+				et131x_enable_interrupts(pAdapter);
+				EnablePhyComa(pAdapter);
+			}
+		}
+	}
+
+	/* This is a periodic timer, so reschedule */
+	mod_timer(&pAdapter->ErrorTimer, jiffies +
+		  TX_ERROR_PERIOD * HZ / 1000);
+}
+
+/**
+ * et131x_link_detection_handler
+ *
+ * Timer function for link up at driver load time
+ */
+void et131x_link_detection_handler(unsigned long data)
+{
+	struct et131x_adapter *pAdapter = (struct et131x_adapter *) data;
+	unsigned long lockflags;
+
+	/* Let everyone know that we have run */
+	pAdapter->bLinkTimerActive = false;
+
+	if (pAdapter->MediaState == 0) {
+		spin_lock_irqsave(&pAdapter->Lock, lockflags);
+
+		pAdapter->MediaState = NETIF_STATUS_MEDIA_DISCONNECT;
+		MP_CLEAR_FLAG(pAdapter, fMP_ADAPTER_LINK_DETECTION);
+
+		spin_unlock_irqrestore(&pAdapter->Lock, lockflags);
+
+		netif_carrier_off(pAdapter->netdev);
+
+		pAdapter->bSetPending = false;
+	}
+}
+
+/**
+ * et131x_adapter_setup - Set the adapter up as per cassini+ documentation
+ * @adapter: pointer to our private adapter structure
+ *
+ * Returns 0 on success, errno on failure (as defined in errno.h)
+ */
+int et131x_adapter_setup(struct et131x_adapter *pAdapter)
+{
+	int status = 0;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Configure the JAGCore */
+	ConfigGlobalRegs(pAdapter);
+
+	ConfigMACRegs1(pAdapter);
+	ConfigMMCRegs(pAdapter);
+
+	ConfigRxMacRegs(pAdapter);
+	ConfigTxMacRegs(pAdapter);
+
+	ConfigRxDmaRegs(pAdapter);
+	ConfigTxDmaRegs(pAdapter);
+
+	ConfigMacStatRegs(pAdapter);
+
+	/* Move the following code to Timer function?? */
+	status = et131x_xcvr_find(pAdapter);
+
+	if (status != 0) {
+		DBG_WARNING(et131x_dbginfo, "Could not find the xcvr\n");
+	}
+
+	/* Prepare the TRUEPHY library. */
+	ET1310_PhyInit(pAdapter);
+
+	/* Reset the phy now so changes take place */
+	ET1310_PhyReset(pAdapter);
+
+	/* Power down PHY */
+	ET1310_PhyPowerDown(pAdapter, 1);
+
+	/*
+	 * We need to turn off 1000 base half dulplex, the mac does not
+	 * support it. For the 10/100 part, turn off all gig advertisement
+	 */
+	if (pAdapter->DeviceID != ET131X_PCI_DEVICE_ID_FAST) {
+		ET1310_PhyAdvertise1000BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_FULL);
+	} else {
+		ET1310_PhyAdvertise1000BaseT(pAdapter, TRUEPHY_ADV_DUPLEX_NONE);
+	}
+
+	/* Power up PHY */
+	ET1310_PhyPowerDown(pAdapter, 0);
+
+	et131x_setphy_normal(pAdapter);
+
+	DBG_LEAVE(et131x_dbginfo);
+	return status;
+}
+
+/**
+ * et131x_setup_hardware_properties - set up the MAC Address on the ET1310
+ * @adapter: pointer to our private adapter structure
+ */
+void et131x_setup_hardware_properties(struct et131x_adapter *adapter)
+{
+	DBG_ENTER(et131x_dbginfo);
+
+	/* If have our default mac from registry and no mac address from
+	 * EEPROM then we need to generate the last octet and set it on the
+	 * device
+	 */
+	if (!adapter->bOverrideAddress) {
+		if (adapter->PermanentAddress[0] == 0x00 &&
+		    adapter->PermanentAddress[1] == 0x00 &&
+		    adapter->PermanentAddress[2] == 0x00 &&
+		    adapter->PermanentAddress[3] == 0x00 &&
+		    adapter->PermanentAddress[4] == 0x00 &&
+		    adapter->PermanentAddress[5] == 0x00) {
+			/*
+			 * We need to randomly generate the last octet so we
+			 * decrease our chances of setting the mac address to
+			 * same as another one of our cards in the system
+			 */
+			get_random_bytes(&adapter->CurrentAddress[5], 1);
+
+			/*
+			 * We have the default value in the register we are
+			 * working with so we need to copy the current
+			 * address into the permanent address
+			 */
+			memcpy(adapter->PermanentAddress,
+			       adapter->CurrentAddress, ETH_ALEN);
+		} else {
+			/* We do not have an override address, so set the
+			 * current address to the permanent address and add
+			 * it to the device
+			 */
+			memcpy(adapter->CurrentAddress,
+			       adapter->PermanentAddress, ETH_ALEN);
+		}
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * et131x_soft_reset - Issue a soft reset to the hardware, complete for ET1310
+ * @adapter: pointer to our private adapter structure
+ */
+void et131x_soft_reset(struct et131x_adapter *adapter)
+{
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Disable MAC Core */
+	writel(0xc00f0000, &adapter->CSRAddress->mac.cfg1.value);
+
+	/* Set everything to a reset value */
+	writel(0x7F, &adapter->CSRAddress->global.sw_reset.value);
+	writel(0x000f0000, &adapter->CSRAddress->mac.cfg1.value);
+	writel(0x00000000, &adapter->CSRAddress->mac.cfg1.value);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * et131x_align_allocated_memory - Align allocated memory on a given boundary
+ * @adapter: pointer to our adapter structure
+ * @phys_addr: pointer to Physical address
+ * @offset: pointer to the offset variable
+ * @mask: correct mask
+ */
+void et131x_align_allocated_memory(struct et131x_adapter *adapter,
+				   uint64_t *phys_addr,
+				   uint64_t *offset, uint64_t mask)
+{
+	uint64_t new_addr;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	*offset = 0;
+
+	new_addr = *phys_addr & ~mask;
+
+	if (new_addr != *phys_addr) {
+		/* Move to next aligned block */
+		new_addr += mask + 1;
+		/* Return offset for adjusting virt addr */
+		*offset = new_addr - *phys_addr;
+		/* Return new physical address */
+		*phys_addr = new_addr;
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * et131x_adapter_memory_alloc
+ * @adapter: pointer to our private adapter structure
+ *
+ * Returns 0 on success, errno on failure (as defined in errno.h).
+ *
+ * Allocate all the memory blocks for send, receive and others.
+ */
+int et131x_adapter_memory_alloc(struct et131x_adapter *adapter)
+{
+	int status = 0;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	do {
+		/* Allocate memory for the Tx Ring */
+		status = et131x_tx_dma_memory_alloc(adapter);
+		if (status != 0) {
+			DBG_ERROR(et131x_dbginfo,
+				  "et131x_tx_dma_memory_alloc FAILED\n");
+			break;
+		}
+
+		/* Receive buffer memory allocation */
+		status = et131x_rx_dma_memory_alloc(adapter);
+		if (status != 0) {
+			DBG_ERROR(et131x_dbginfo,
+				  "et131x_rx_dma_memory_alloc FAILED\n");
+			et131x_tx_dma_memory_free(adapter);
+			break;
+		}
+
+		/* Init receive data structures */
+		status = et131x_init_recv(adapter);
+		if (status != 0) {
+			DBG_ERROR(et131x_dbginfo, "et131x_init_recv FAILED\n");
+			et131x_tx_dma_memory_free(adapter);
+			et131x_rx_dma_memory_free(adapter);
+			break;
+		}
+	} while (0);
+
+	DBG_LEAVE(et131x_dbginfo);
+	return status;
+}
+
+/**
+ * et131x_adapter_memory_free - Free all memory allocated for use by Tx & Rx
+ * @adapter: pointer to our private adapter structure
+ */
+void et131x_adapter_memory_free(struct et131x_adapter *adapter)
+{
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Free DMA memory */
+	et131x_tx_dma_memory_free(adapter);
+	et131x_rx_dma_memory_free(adapter);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * et131x_pci_remove
+ * @pdev: a pointer to the device's pci_dev structure
+ *
+ * Registered in the pci_driver structure, this function is called when the
+ * PCI subsystem detects that a PCI device which matches the information
+ * contained in the pci_device_id table has been removed.
+ */
+void __devexit et131x_pci_remove(struct pci_dev *pdev)
+{
+	struct net_device *netdev;
+	struct et131x_adapter *adapter;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Retrieve the net_device pointer from the pci_dev struct, as well
+	 * as the private adapter struct
+	 */
+	netdev = (struct net_device *) pci_get_drvdata(pdev);
+	adapter = netdev_priv(netdev);
+
+	/* Perform device cleanup */
+	unregister_netdev(netdev);
+	et131x_adapter_memory_free(adapter);
+	iounmap(adapter->CSRAddress);
+	free_netdev(netdev);
+	pci_release_regions(pdev);
+	pci_disable_device(pdev);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * et131x_pci_setup - Perform device initialization
+ * @pdev: a pointer to the device's pci_dev structure
+ * @ent: this device's entry in the pci_device_id table
+ *
+ * Returns 0 on success, errno on failure (as defined in errno.h)
+ *
+ * Registered in the pci_driver structure, this function is called when the
+ * PCI subsystem finds a new PCI device which matches the information
+ * contained in the pci_device_id table. This routine is the equivalent to
+ * a device insertion routine.
+ */
+int __devinit et131x_pci_setup(struct pci_dev *pdev,
+			       const struct pci_device_id *ent)
+{
+	int result = 0;
+	int pm_cap;
+	bool pci_using_dac;
+	struct net_device *netdev = NULL;
+	struct et131x_adapter *adapter = NULL;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Enable the device via the PCI subsystem */
+	result = pci_enable_device(pdev);
+	if (result != 0) {
+		DBG_ERROR(et131x_dbginfo, "pci_enable_device() failed\n");
+		goto out;
+	}
+
+	/* Perform some basic PCI checks */
+	if (!(pci_resource_flags(pdev, 0) & IORESOURCE_MEM)) {
+		DBG_ERROR(et131x_dbginfo,
+			  "Can't find PCI device's base address\n");
+		result = -ENODEV;
+		goto out;
+	}
+
+	result = pci_request_regions(pdev, DRIVER_NAME);
+	if (result != 0) {
+		DBG_ERROR(et131x_dbginfo, "Can't get PCI resources\n");
+		goto err_disable;
+	}
+
+	/* Enable PCI bus mastering */
+	DBG_TRACE(et131x_dbginfo, "Setting PCI Bus Mastering...\n");
+	pci_set_master(pdev);
+
+	/* Query PCI for Power Mgmt Capabilities
+	 *
+	 * NOTE: Now reading PowerMgmt in another location; is this still
+	 * needed?
+	 */
+	pm_cap = pci_find_capability(pdev, PCI_CAP_ID_PM);
+	if (pm_cap == 0) {
+		DBG_ERROR(et131x_dbginfo,
+			  "Cannot find Power Management capabilities\n");
+		result = -EIO;
+		goto err_release_res;
+	}
+
+	/* Check the DMA addressing support of this device */
+	if (!pci_set_dma_mask(pdev, 0xffffffffffffffffULL)) {
+		DBG_TRACE(et131x_dbginfo, "64-bit DMA addressing supported\n");
+		pci_using_dac = true;
+
+		result =
+		    pci_set_consistent_dma_mask(pdev, 0xffffffffffffffffULL);
+		if (result != 0) {
+			DBG_ERROR(et131x_dbginfo,
+				  "Unable to obtain 64 bit DMA for consistent allocations\n");
+			goto err_release_res;
+		}
+	} else if (!pci_set_dma_mask(pdev, 0xffffffffULL)) {
+		DBG_TRACE(et131x_dbginfo,
+			  "64-bit DMA addressing NOT supported\n");
+		DBG_TRACE(et131x_dbginfo,
+			  "32-bit DMA addressing will be used\n");
+		pci_using_dac = false;
+	} else {
+		DBG_ERROR(et131x_dbginfo, "No usable DMA addressing method\n");
+		result = -EIO;
+		goto err_release_res;
+	}
+
+	/* Allocate netdev and private adapter structs */
+	DBG_TRACE(et131x_dbginfo,
+		  "Allocate netdev and private adapter structs...\n");
+	netdev = et131x_device_alloc();
+	if (netdev == NULL) {
+		DBG_ERROR(et131x_dbginfo, "Couldn't alloc netdev struct\n");
+		result = -ENOMEM;
+		goto err_release_res;
+	}
+
+	/* Setup the fundamental net_device and private adapter structure elements  */
+	DBG_TRACE(et131x_dbginfo, "Setting fundamental net_device info...\n");
+	SET_NETDEV_DEV(netdev, &pdev->dev);
+	if (pci_using_dac) {
+		//netdev->features |= NETIF_F_HIGHDMA;
+	}
+
+	/*
+	 * NOTE - Turn this on when we're ready to deal with SG-DMA
+	 *
+	 * NOTE: According to "Linux Device Drivers", 3rd ed, Rubini et al,
+	 * if checksumming is not performed in HW, then the kernel will not
+	 * use SG.
+	 * From pp 510-511:
+	 *
+	 * "Note that the kernel does not perform scatter/gather I/O to your
+	 * device if it does not also provide some form of checksumming as
+	 * well. The reason is that, if the kernel has to make a pass over a
+	 * fragmented ("nonlinear") packet to calculate the checksum, it
+	 * might as well copy the data and coalesce the packet at the same
+	 * time."
+	 *
+	 * This has been verified by setting the flags below and still not
+	 * receiving a scattered buffer from the network stack, so leave it
+	 * off until checksums are calculated in HW.
+	 */
+	//netdev->features |= NETIF_F_SG;
+	//netdev->features |= NETIF_F_NO_CSUM;
+	//netdev->features |= NETIF_F_LLTX;
+
+	/* Allocate private adapter struct and copy in relevant information */
+	adapter = netdev_priv(netdev);
+	adapter->pdev = pdev;
+	adapter->netdev = netdev;
+	adapter->VendorID = pdev->vendor;
+	adapter->DeviceID = pdev->device;
+
+	/* Do the same for the netdev struct */
+	netdev->irq = pdev->irq;
+	netdev->base_addr = pdev->resource[0].start;
+
+	/* Initialize spinlocks here */
+	DBG_TRACE(et131x_dbginfo, "Initialize spinlocks...\n");
+
+	spin_lock_init(&adapter->Lock);
+	spin_lock_init(&adapter->TCBSendQLock);
+	spin_lock_init(&adapter->TCBReadyQLock);
+	spin_lock_init(&adapter->SendHWLock);
+	spin_lock_init(&adapter->SendWaitLock);
+	spin_lock_init(&adapter->RcvLock);
+	spin_lock_init(&adapter->RcvPendLock);
+	spin_lock_init(&adapter->FbrLock);
+	spin_lock_init(&adapter->PHYLock);
+
+	/* Parse configuration parameters into the private adapter struct */
+	et131x_config_parse(adapter);
+
+	/* Find the physical adapter
+	 *
+	 * NOTE: This is the equivalent of the MpFindAdapter() routine; can we
+	 *       lump it's init with the device specific init below into a
+	 *       single init function?
+	 */
+	//while (et131x_find_adapter(adapter, pdev) != 0);
+	et131x_find_adapter(adapter, pdev);
+
+	/* Map the bus-relative registers to system virtual memory */
+	DBG_TRACE(et131x_dbginfo,
+		  "Mapping bus-relative registers to virtual memory...\n");
+
+	adapter->CSRAddress = ioremap_nocache(pci_resource_start(pdev, 0),
+					      pci_resource_len(pdev, 0));
+	if (adapter->CSRAddress == NULL) {
+		DBG_ERROR(et131x_dbginfo, "Cannot map device registers\n");
+		result = -ENOMEM;
+		goto err_free_dev;
+	}
+
+	/* Perform device-specific initialization here (See code below) */
+
+	/* If Phy COMA mode was enabled when we went down, disable it here. */
+	{
+		PM_CSR_t GlobalPmCSR = { 0 };
+
+		GlobalPmCSR.bits.pm_sysclk_gate = 1;
+		GlobalPmCSR.bits.pm_txclk_gate = 1;
+		GlobalPmCSR.bits.pm_rxclk_gate = 1;
+		writel(GlobalPmCSR.value,
+		       &adapter->CSRAddress->global.pm_csr.value);
+	}
+
+	/* Issue a global reset to the et1310 */
+	DBG_TRACE(et131x_dbginfo, "Issuing soft reset...\n");
+	et131x_soft_reset(adapter);
+
+	/* Disable all interrupts (paranoid) */
+	DBG_TRACE(et131x_dbginfo, "Disable device interrupts...\n");
+	et131x_disable_interrupts(adapter);
+
+	/* Allocate DMA memory */
+	result = et131x_adapter_memory_alloc(adapter);
+	if (result != 0) {
+		DBG_ERROR(et131x_dbginfo,
+			  "Could not alloc adapater memory (DMA)\n");
+		goto err_iounmap;
+	}
+
+	/* Init send data structures */
+	DBG_TRACE(et131x_dbginfo, "Init send data structures...\n");
+	et131x_init_send(adapter);
+
+	adapter->PoMgmt.PowerState = NdisDeviceStateD0;
+
+	/* Register the interrupt
+	 *
+	 * NOTE - This is being done in the open routine, where most other
+	 *         Linux drivers setup IRQ handlers. Make sure device
+	 *         interrupts are not turned on before the IRQ is registered!!
+	 *
+	 *         What we will do here is setup the task structure for the
+	 *         ISR's deferred handler
+	 */
+	INIT_WORK(&adapter->task, et131x_isr_handler);
+
+	/* Determine MAC Address, and copy into the net_device struct */
+	DBG_TRACE(et131x_dbginfo, "Retrieve MAC address...\n");
+	et131x_setup_hardware_properties(adapter);
+
+	memcpy(netdev->dev_addr, adapter->CurrentAddress, ETH_ALEN);
+
+	/* Setup et1310 as per the documentation */
+	DBG_TRACE(et131x_dbginfo, "Setup the adapter...\n");
+	et131x_adapter_setup(adapter);
+
+	/* Create a timer to count errors received by the NIC */
+	init_timer(&adapter->ErrorTimer);
+
+	adapter->ErrorTimer.expires = jiffies + TX_ERROR_PERIOD * HZ / 1000;
+	adapter->ErrorTimer.function = et131x_error_timer_handler;
+	adapter->ErrorTimer.data = (unsigned long)adapter;
+
+	/* Initialize link state */
+	et131x_link_detection_handler((unsigned long)adapter);
+
+	/* Intialize variable for counting how long we do not have link status */
+	adapter->PoMgmt.TransPhyComaModeOnBoot = 0;
+
+	/* We can enable interrupts now
+	 *
+	 *  NOTE - Because registration of interrupt handler is done in the
+	 *         device's open(), defer enabling device interrupts to that
+	 *         point
+	 */
+
+	/* Register the net_device struct with the Linux network layer */
+	DBG_TRACE(et131x_dbginfo, "Registering net_device...\n");
+	if ((result = register_netdev(netdev)) != 0) {
+		DBG_ERROR(et131x_dbginfo, "register_netdev() failed\n");
+		goto err_mem_free;
+	}
+
+	/* Register the net_device struct with the PCI subsystem. Save a copy
+	 * of the PCI config space for this device now that the device has
+	 * been initialized, just in case it needs to be quickly restored.
+	 */
+	pci_set_drvdata(pdev, netdev);
+
+	pci_save_state(adapter->pdev);
+
+out:
+	DBG_LEAVE(et131x_dbginfo);
+	return result;
+
+err_mem_free:
+	et131x_adapter_memory_free(adapter);
+err_iounmap:
+	iounmap(adapter->CSRAddress);
+err_free_dev:
+	free_netdev(netdev);
+err_release_res:
+	pci_release_regions(pdev);
+err_disable:
+	pci_disable_device(pdev);
+	goto out;
+}
diff --git a/drivers/staging/et131x/et131x_initpci.h b/drivers/staging/et131x/et131x_initpci.h
new file mode 100644
index 0000000..bbacb62
--- /dev/null
+++ b/drivers/staging/et131x/et131x_initpci.h
@@ -0,0 +1,73 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et131x_initpci.h - Header which includes common data and function prototypes
+ *                    related to the driver's PCI (and PCI Express) information.
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#ifndef __ET131X_INITPCI_H__
+#define __ET131X_INITPCI_H__
+
+/* Function Prototypes */
+void et131x_align_allocated_memory(struct et131x_adapter *adapter,
+				   u64 *phys_addr,
+				   u64 *offset, u64 mask);
+
+int et131x_adapter_setup(struct et131x_adapter *adapter);
+int et131x_adapter_memory_alloc(struct et131x_adapter *adapter);
+void et131x_adapter_memory_free(struct et131x_adapter *adapter);
+void et131x_setup_hardware_properties(struct et131x_adapter *adapter);
+void et131x_soft_reset(struct et131x_adapter *adapter);
+
+#endif /* __ET131X_INITPCI_H__ */
diff --git a/drivers/staging/et131x/et131x_isr.c b/drivers/staging/et131x/et131x_isr.c
new file mode 100644
index 0000000..00afad1
--- /dev/null
+++ b/drivers/staging/et131x/et131x_isr.c
@@ -0,0 +1,488 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et131x_isr.c - File which contains the ISR, ISR handler, and related routines
+ *                for processing interrupts from the device.
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#include "et131x_version.h"
+#include "et131x_debug.h"
+#include "et131x_defs.h"
+
+#include <linux/init.h>
+#include <linux/module.h>
+#include <linux/types.h>
+#include <linux/kernel.h>
+
+#include <linux/sched.h>
+#include <linux/ptrace.h>
+#include <linux/slab.h>
+#include <linux/ctype.h>
+#include <linux/string.h>
+#include <linux/timer.h>
+#include <linux/interrupt.h>
+#include <linux/in.h>
+#include <linux/delay.h>
+#include <asm/io.h>
+#include <asm/system.h>
+#include <asm/bitops.h>
+
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/skbuff.h>
+#include <linux/if_arp.h>
+#include <linux/ioport.h>
+
+#include "et1310_phy.h"
+#include "et1310_pm.h"
+#include "et1310_jagcore.h"
+#include "et1310_mac.h"
+
+#include "et131x_adapter.h"
+
+/* Data for debugging facilities */
+#ifdef CONFIG_ET131X_DEBUG
+extern dbg_info_t *et131x_dbginfo;
+#endif /* CONFIG_ET131X_DEBUG */
+
+/**
+ * et131x_isr - The Interrupt Service Routine for the driver.
+ * @irq: the IRQ on which the interrupt was received.
+ * @dev_id: device-specific info (here a pointer to a net_device struct)
+ *
+ * Returns a value indicating if the interrupt was handled.
+ */
+irqreturn_t et131x_isr(int irq, void *dev_id)
+{
+	bool handled = true;
+	struct net_device *netdev = (struct net_device *)dev_id;
+	struct et131x_adapter *adapter = NULL;
+	INTERRUPT_t status;
+
+	if (netdev == NULL || !netif_device_present(netdev)) {
+		DBG_WARNING(et131x_dbginfo,
+			    "No net_device struct or device not present\n");
+		handled = false;
+		goto out;
+	}
+
+	adapter = netdev_priv(netdev);
+
+	/* If the adapter is in low power state, then it should not
+	 * recognize any interrupt
+	 */
+
+	/* Disable Device Interrupts */
+	et131x_disable_interrupts(adapter);
+
+	/* Get a copy of the value in the interrupt status register
+	 * so we can process the interrupting section
+	 */
+	status.value = readl(&adapter->CSRAddress->global.int_status.value);
+
+	if (adapter->FlowControl == TxOnly ||
+	    adapter->FlowControl == Both) {
+		status.value &= ~INT_MASK_ENABLE;
+	} else {
+		status.value &= ~INT_MASK_ENABLE_NO_FLOW;
+	}
+
+	/* Make sure this is our interrupt */
+	if (!status.value) {
+#ifdef CONFIG_ET131X_DEBUG
+		adapter->Stats.UnhandledInterruptsPerSec++;
+#endif
+		handled = false;
+		DBG_VERBOSE(et131x_dbginfo, "NOT OUR INTERRUPT\n");
+		et131x_enable_interrupts(adapter);
+		goto out;
+	}
+
+	/* This is our interrupt, so process accordingly */
+#ifdef CONFIG_ET131X_DEBUG
+	if (status.bits.rxdma_xfr_done) {
+		adapter->Stats.RxDmaInterruptsPerSec++;
+	}
+
+	if (status.bits.txdma_isr) {
+		adapter->Stats.TxDmaInterruptsPerSec++;
+	}
+#endif
+
+	if (status.bits.watchdog_interrupt) {
+		PMP_TCB pMpTcb = adapter->TxRing.CurrSendHead;
+
+		if (pMpTcb) {
+			if (++pMpTcb->PacketStaleCount > 1) {
+				status.bits.txdma_isr = 1;
+			}
+		}
+
+		if (adapter->RxRing.UnfinishedReceives) {
+			status.bits.rxdma_xfr_done = 1;
+		} else if (pMpTcb == NULL) {
+			writel(0, &adapter->CSRAddress->global.watchdog_timer);
+		}
+
+		status.bits.watchdog_interrupt = 0;
+#ifdef CONFIG_ET131X_DEBUG
+		adapter->Stats.WatchDogInterruptsPerSec++;
+#endif
+	}
+
+	if (status.value == 0) {
+		/* This interrupt has in some way been "handled" by
+		 * the ISR. Either it was a spurious Rx interrupt, or
+		 * it was a Tx interrupt that has been filtered by
+		 * the ISR.
+		 */
+		et131x_enable_interrupts(adapter);
+		goto out;
+	}
+
+	/* We need to save the interrupt status value for use in our
+	 * DPC. We will clear the software copy of that in that
+	 * routine.
+	 */
+	adapter->Stats.InterruptStatus = status;
+
+	/* Schedule the ISR handler as a bottom-half task in the
+	 * kernel's tq_immediate queue, and mark the queue for
+	 * execution
+	 */
+	schedule_work(&adapter->task);
+
+out:
+	return IRQ_RETVAL(handled);
+}
+
+/**
+ * et131x_isr_handler - The ISR handler
+ * @p_adapter, a pointer to the device's private adapter structure
+ *
+ * scheduled to run in a deferred context by the ISR. This is where the ISR's
+ * work actually gets done.
+ */
+void et131x_isr_handler(struct work_struct *work)
+{
+	struct et131x_adapter *pAdapter =
+		container_of(work, struct et131x_adapter, task);
+	INTERRUPT_t GlobStatus = pAdapter->Stats.InterruptStatus;
+	ADDRESS_MAP_t __iomem *iomem = pAdapter->CSRAddress;
+
+	/*
+	 * These first two are by far the most common.  Once handled, we clear
+	 * their two bits in the status word.  If the word is now zero, we
+	 * exit.
+	 */
+	/* Handle all the completed Transmit interrupts */
+	if (GlobStatus.bits.txdma_isr) {
+		DBG_TX(et131x_dbginfo, "TXDMA_ISR interrupt\n");
+		et131x_handle_send_interrupt(pAdapter);
+	}
+
+	/* Handle all the completed Receives interrupts */
+	if (GlobStatus.bits.rxdma_xfr_done) {
+		DBG_RX(et131x_dbginfo, "RXDMA_XFR_DONE interrupt\n");
+		et131x_handle_recv_interrupt(pAdapter);
+	}
+
+	GlobStatus.value &= 0xffffffd7;
+
+	if (GlobStatus.value) {
+		/* Handle the TXDMA Error interrupt */
+		if (GlobStatus.bits.txdma_err) {
+			TXDMA_ERROR_t TxDmaErr;
+
+			/* Following read also clears the register (COR) */
+			TxDmaErr.value = readl(&iomem->txdma.TxDmaError.value);
+
+			DBG_WARNING(et131x_dbginfo,
+				    "TXDMA_ERR interrupt, error = %d\n",
+				    TxDmaErr.value);
+		}
+
+		/* Handle Free Buffer Ring 0 and 1 Low interrupt */
+		if (GlobStatus.bits.rxdma_fb_ring0_low ||
+		    GlobStatus.bits.rxdma_fb_ring1_low) {
+			/*
+			 * This indicates the number of unused buffers in
+			 * RXDMA free buffer ring 0 is <= the limit you
+			 * programmed. Free buffer resources need to be
+			 * returned.  Free buffers are consumed as packets
+			 * are passed from the network to the host. The host
+			 * becomes aware of the packets from the contents of
+			 * the packet status ring. This ring is queried when
+			 * the packet done interrupt occurs. Packets are then
+			 * passed to the OS. When the OS is done with the
+			 * packets the resources can be returned to the
+			 * ET1310 for re-use. This interrupt is one method of
+			 * returning resources.
+			 */
+			DBG_WARNING(et131x_dbginfo,
+				    "RXDMA_FB_RING0_LOW or "
+				    "RXDMA_FB_RING1_LOW interrupt\n");
+
+			/* If the user has flow control on, then we will
+			 * send a pause packet, otherwise just exit
+			 */
+			if (pAdapter->FlowControl == TxOnly ||
+			    pAdapter->FlowControl == Both) {
+				PM_CSR_t pm_csr;
+
+				/* Tell the device to send a pause packet via
+				 * the back pressure register
+				 */
+				pm_csr.value = readl(&iomem->global.pm_csr.value);
+				if (pm_csr.bits.pm_phy_sw_coma == 0) {
+					TXMAC_BP_CTRL_t bp_ctrl = { 0 };
+
+					bp_ctrl.bits.bp_req = 1;
+					bp_ctrl.bits.bp_xonxoff = 1;
+					writel(bp_ctrl.value,
+					       &iomem->txmac.bp_ctrl.value);
+				}
+			}
+		}
+
+		/* Handle Packet Status Ring Low Interrupt */
+		if (GlobStatus.bits.rxdma_pkt_stat_ring_low) {
+			DBG_WARNING(et131x_dbginfo,
+				    "RXDMA_PKT_STAT_RING_LOW interrupt\n");
+
+			/*
+			 * Same idea as with the two Free Buffer Rings.
+			 * Packets going from the network to the host each
+			 * consume a free buffer resource and a packet status
+			 * resource.  These resoures are passed to the OS.
+			 * When the OS is done with the resources, they need
+			 * to be returned to the ET1310. This is one method
+			 * of returning the resources.
+			 */
+		}
+
+		/* Handle RXDMA Error Interrupt */
+		if (GlobStatus.bits.rxdma_err) {
+			/*
+			 * The rxdma_error interrupt is sent when a time-out
+			 * on a request issued by the JAGCore has occurred or
+			 * a completion is returned with an un-successful
+			 * status.  In both cases the request is considered
+			 * complete. The JAGCore will automatically re-try the
+			 * request in question. Normally information on events
+			 * like these are sent to the host using the "Advanced
+			 * Error Reporting" capability. This interrupt is
+			 * another way of getting similar information. The
+			 * only thing required is to clear the interrupt by
+			 * reading the ISR in the global resources. The
+			 * JAGCore will do a re-try on the request.  Normally
+			 * you should never see this interrupt. If you start
+			 * to see this interrupt occurring frequently then
+			 * something bad has occurred. A reset might be the
+			 * thing to do.
+			 */
+			// TRAP();
+
+			pAdapter->TxMacTest.value =
+				readl(&iomem->txmac.tx_test.value);
+			DBG_WARNING(et131x_dbginfo,
+				    "RxDMA_ERR interrupt, error %x\n",
+				    pAdapter->TxMacTest.value);
+		}
+
+		/* Handle the Wake on LAN Event */
+		if (GlobStatus.bits.wake_on_lan) {
+			/*
+			 * This is a secondary interrupt for wake on LAN.
+			 * The driver should never see this, if it does,
+			 * something serious is wrong. We will TRAP the
+			 * message when we are in DBG mode, otherwise we
+			 * will ignore it.
+			 */
+			DBG_ERROR(et131x_dbginfo, "WAKE_ON_LAN interrupt\n");
+		}
+
+		/* Handle the PHY interrupt */
+		if (GlobStatus.bits.phy_interrupt) {
+			PM_CSR_t pm_csr;
+			MI_BMSR_t BmsrInts, BmsrData;
+			MI_ISR_t myIsr;
+
+			DBG_VERBOSE(et131x_dbginfo, "PHY interrupt\n");
+
+			/* If we are in coma mode when we get this interrupt,
+			 * we need to disable it.
+			 */
+			pm_csr.value = readl(&iomem->global.pm_csr.value);
+			if (pm_csr.bits.pm_phy_sw_coma == 1) {
+				/*
+				 * Check to see if we are in coma mode and if
+				 * so, disable it because we will not be able
+				 * to read PHY values until we are out.
+				 */
+				DBG_VERBOSE(et131x_dbginfo,
+					    "Device is in COMA mode, "
+					    "need to wake up\n");
+				DisablePhyComa(pAdapter);
+			}
+
+			/* Read the PHY ISR to clear the reason for the
+			 * interrupt.
+			 */
+			MiRead(pAdapter, (uint8_t) offsetof(MI_REGS_t, isr),
+			       &myIsr.value);
+
+			if (!pAdapter->ReplicaPhyLoopbk) {
+				MiRead(pAdapter,
+				       (uint8_t) offsetof(MI_REGS_t, bmsr),
+				       &BmsrData.value);
+
+				BmsrInts.value =
+				    pAdapter->Bmsr.value ^ BmsrData.value;
+				pAdapter->Bmsr.value = BmsrData.value;
+
+				DBG_VERBOSE(et131x_dbginfo,
+					    "Bmsr.value = 0x%04x,"
+					    "Bmsr_ints.value = 0x%04x\n",
+					    BmsrData.value, BmsrInts.value);
+
+				/* Do all the cable in / cable out stuff */
+				et131x_Mii_check(pAdapter, BmsrData, BmsrInts);
+			}
+		}
+
+		/* Let's move on to the TxMac */
+		if (GlobStatus.bits.txmac_interrupt) {
+			pAdapter->TxRing.TxMacErr.value =
+				readl(&iomem->txmac.err.value);
+
+			/*
+			 * When any of the errors occur and TXMAC generates
+			 * an interrupt to report these errors, it usually
+			 * means that TXMAC has detected an error in the data
+			 * stream retrieved from the on-chip Tx Q. All of
+			 * these errors are catastrophic and TXMAC won't be
+			 * able to recover data when these errors occur.  In
+			 * a nutshell, the whole Tx path will have to be reset
+			 * and re-configured afterwards.
+			 */
+			DBG_WARNING(et131x_dbginfo,
+				    "TXMAC interrupt, error 0x%08x\n",
+				    pAdapter->TxRing.TxMacErr.value);
+
+			/* If we are debugging, we want to see this error,
+			 * otherwise we just want the device to be reset and
+			 * continue
+			 */
+			//DBG_TRAP();
+		}
+
+		/* Handle RXMAC Interrupt */
+		if (GlobStatus.bits.rxmac_interrupt) {
+			/*
+			 * These interrupts are catastrophic to the device,
+			 * what we need to do is disable the interrupts and
+			 * set the flag to cause us to reset so we can solve
+			 * this issue.
+			 */
+			// MP_SET_FLAG( pAdapter, fMP_ADAPTER_HARDWARE_ERROR );
+
+			DBG_WARNING(et131x_dbginfo,
+				    "RXMAC interrupt, error 0x%08x.  Requesting reset\n",
+				    readl(&iomem->rxmac.err_reg.value));
+
+			DBG_WARNING(et131x_dbginfo,
+				    "Enable 0x%08x, Diag 0x%08x\n",
+				    readl(&iomem->rxmac.ctrl.value),
+				    readl(&iomem->rxmac.rxq_diag.value));
+
+			/*
+			 * If we are debugging, we want to see this error,
+			 * otherwise we just want the device to be reset and
+			 * continue
+			 */
+			// TRAP();
+		}
+
+		/* Handle MAC_STAT Interrupt */
+		if (GlobStatus.bits.mac_stat_interrupt) {
+			/*
+			 * This means at least one of the un-masked counters
+			 * in the MAC_STAT block has rolled over.  Use this
+			 * to maintain the top, software managed bits of the
+			 * counter(s).
+			 */
+			DBG_VERBOSE(et131x_dbginfo, "MAC_STAT interrupt\n");
+			HandleMacStatInterrupt(pAdapter);
+		}
+
+		/* Handle SLV Timeout Interrupt */
+		if (GlobStatus.bits.slv_timeout) {
+			/*
+			 * This means a timeout has occured on a read or
+			 * write request to one of the JAGCore registers. The
+			 * Global Resources block has terminated the request
+			 * and on a read request, returned a "fake" value.
+			 * The most likely reasons are: Bad Address or the
+			 * addressed module is in a power-down state and
+			 * can't respond.
+			 */
+			DBG_VERBOSE(et131x_dbginfo, "SLV_TIMEOUT interrupt\n");
+		}
+	}
+
+	if (pAdapter->PoMgmt.PowerState == NdisDeviceStateD0) {
+		et131x_enable_interrupts(pAdapter);
+	}
+}
diff --git a/drivers/staging/et131x/et131x_isr.h b/drivers/staging/et131x/et131x_isr.h
new file mode 100644
index 0000000..76a51d5
--- /dev/null
+++ b/drivers/staging/et131x/et131x_isr.h
@@ -0,0 +1,65 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et131x_isr.h - Defines, structs, enums, prototypes, etc. pertaining to the
+ *                ISR processing code.
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#ifndef __ET131X_ISR_H__
+#define __ET131X_ISR_H__
+
+irqreturn_t et131x_isr(int irq, void *dev_id);
+void et131x_isr_handler(struct work_struct *work);
+
+#endif /* __ET131X_ISR_H__ */
diff --git a/drivers/staging/et131x/et131x_netdev.c b/drivers/staging/et131x/et131x_netdev.c
new file mode 100644
index 0000000..de65972
--- /dev/null
+++ b/drivers/staging/et131x/et131x_netdev.c
@@ -0,0 +1,856 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et131x_netdev.c - Routines and data required by all Linux network devices.
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#include "et131x_version.h"
+#include "et131x_debug.h"
+#include "et131x_defs.h"
+
+#include <linux/init.h>
+#include <linux/module.h>
+#include <linux/types.h>
+#include <linux/kernel.h>
+
+#include <linux/sched.h>
+#include <linux/ptrace.h>
+#include <linux/slab.h>
+#include <linux/ctype.h>
+#include <linux/string.h>
+#include <linux/timer.h>
+#include <linux/interrupt.h>
+#include <linux/in.h>
+#include <linux/delay.h>
+#include <asm/io.h>
+#include <asm/system.h>
+#include <asm/bitops.h>
+
+#include <linux/mii.h>
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/skbuff.h>
+#include <linux/if_arp.h>
+#include <linux/ioport.h>
+
+#include "et1310_phy.h"
+#include "et1310_pm.h"
+#include "et1310_jagcore.h"
+#include "et1310_mac.h"
+#include "et1310_tx.h"
+
+#include "et131x_adapter.h"
+#include "et131x_isr.h"
+#include "et131x_initpci.h"
+
+/* Data for debugging facilities */
+#ifdef CONFIG_ET131X_DEBUG
+extern dbg_info_t *et131x_dbginfo;
+#endif /* CONFIG_ET131X_DEBUG */
+
+struct net_device_stats *et131x_stats(struct net_device *netdev);
+int et131x_open(struct net_device *netdev);
+int et131x_close(struct net_device *netdev);
+int et131x_ioctl(struct net_device *netdev, struct ifreq *reqbuf, int cmd);
+void et131x_multicast(struct net_device *netdev);
+int et131x_tx(struct sk_buff *skb, struct net_device *netdev);
+void et131x_tx_timeout(struct net_device *netdev);
+int et131x_change_mtu(struct net_device *netdev, int new_mtu);
+int et131x_set_mac_addr(struct net_device *netdev, void *new_mac);
+void et131x_vlan_rx_register(struct net_device *netdev, struct vlan_group *grp);
+void et131x_vlan_rx_add_vid(struct net_device *netdev, uint16_t vid);
+void et131x_vlan_rx_kill_vid(struct net_device *netdev, uint16_t vid);
+
+/**
+ * et131x_device_alloc
+ *
+ * Returns pointer to the allocated and initialized net_device struct for
+ * this device.
+ *
+ * Create instances of net_device and wl_private for the new adapter and
+ * register the device's entry points in the net_device structure.
+ */
+struct net_device *et131x_device_alloc(void)
+{
+	struct net_device *netdev;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Alloc net_device and adapter structs */
+	netdev = alloc_etherdev(sizeof(struct et131x_adapter));
+
+	if (netdev == NULL) {
+		DBG_ERROR(et131x_dbginfo,
+			  "Alloc of net_device struct failed\n");
+		DBG_LEAVE(et131x_dbginfo);
+		return NULL;
+	}
+
+	/* Setup the function registration table (and other data) for a
+	 * net_device
+	 */
+	//netdev->init               = &et131x_init;
+	//netdev->set_config = &et131x_config;
+	netdev->get_stats = &et131x_stats;
+	netdev->open = &et131x_open;
+	netdev->stop = &et131x_close;
+	netdev->do_ioctl = &et131x_ioctl;
+	netdev->set_multicast_list = &et131x_multicast;
+	netdev->hard_start_xmit = &et131x_tx;
+	netdev->tx_timeout = &et131x_tx_timeout;
+	netdev->watchdog_timeo = ET131X_TX_TIMEOUT;
+	netdev->change_mtu = &et131x_change_mtu;
+	netdev->set_mac_address = &et131x_set_mac_addr;
+
+	//netdev->ethtool_ops        = &et131x_ethtool_ops;
+
+	// Poll?
+	//netdev->poll               = &et131x_poll;
+	//netdev->poll_controller    = &et131x_poll_controller;
+
+	DBG_LEAVE(et131x_dbginfo);
+	return netdev;
+}
+
+/**
+ * et131x_stats - Return the current device statistics.
+ * @netdev: device whose stats are being queried
+ *
+ * Returns 0 on success, errno on failure (as defined in errno.h)
+ */
+struct net_device_stats *et131x_stats(struct net_device *netdev)
+{
+	struct et131x_adapter *adapter = netdev_priv(netdev);
+	struct net_device_stats *stats = &adapter->net_stats;
+	CE_STATS_t *devstat = &adapter->Stats;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	stats->rx_packets = devstat->ipackets;
+	stats->tx_packets = devstat->opackets;
+	stats->rx_errors = devstat->length_err + devstat->alignment_err +
+	    devstat->crc_err + devstat->code_violations + devstat->other_errors;
+	stats->tx_errors = devstat->max_pkt_error;
+	stats->multicast = devstat->multircv;
+	stats->collisions = devstat->collisions;
+
+	stats->rx_length_errors = devstat->length_err;
+	stats->rx_over_errors = devstat->rx_ov_flow;
+	stats->rx_crc_errors = devstat->crc_err;
+
+	// NOTE: These stats don't have corresponding values in CE_STATS, so we're
+	//       going to have to update these directly from within the TX/RX code
+	//stats->rx_bytes            = 20; //devstat->;
+	//stats->tx_bytes            = 20; //devstat->;
+	//stats->rx_dropped          = devstat->;
+	//stats->tx_dropped          = devstat->;
+
+	// NOTE: Not used, can't find analogous statistics
+	//stats->rx_frame_errors     = devstat->;
+	//stats->rx_fifo_errors      = devstat->;
+	//stats->rx_missed_errors    = devstat->;
+
+	//stats->tx_aborted_errors   = devstat->;
+	//stats->tx_carrier_errors   = devstat->;
+	//stats->tx_fifo_errors      = devstat->;
+	//stats->tx_heartbeat_errors = devstat->;
+	//stats->tx_window_errors    = devstat->;
+
+	DBG_LEAVE(et131x_dbginfo);
+	return stats;
+}
+
+/**
+ * et131x_open - Open the device for use.
+ * @netdev: device to be opened
+ *
+ * Returns 0 on success, errno on failure (as defined in errno.h)
+ */
+int et131x_open(struct net_device *netdev)
+{
+	int result = 0;
+	struct et131x_adapter *adapter = netdev_priv(netdev);
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Start the timer to track NIC errors */
+	add_timer(&adapter->ErrorTimer);
+
+	/* Register our ISR */
+	DBG_TRACE(et131x_dbginfo, "Registering ISR...\n");
+
+	result =
+	    request_irq(netdev->irq, et131x_isr, IRQF_SHARED, netdev->name,
+			netdev);
+	if (result) {
+		DBG_ERROR(et131x_dbginfo, "Could not register ISR\n");
+		DBG_LEAVE(et131x_dbginfo);
+		return result;
+	}
+
+	/* Enable the Tx and Rx DMA engines (if not already enabled) */
+	et131x_rx_dma_enable(adapter);
+	et131x_tx_dma_enable(adapter);
+
+	/* Enable device interrupts */
+	et131x_enable_interrupts(adapter);
+
+	MP_SET_FLAG(adapter, fMP_ADAPTER_INTERRUPT_IN_USE);
+
+	/* We're ready to move some data, so start the queue */
+	netif_start_queue(netdev);
+
+	DBG_LEAVE(et131x_dbginfo);
+	return result;
+}
+
+/**
+ * et131x_close - Close the device
+ * @netdev: device to be closed
+ *
+ * Returns 0 on success, errno on failure (as defined in errno.h)
+ */
+int et131x_close(struct net_device *netdev)
+{
+	struct et131x_adapter *adapter = netdev_priv(netdev);
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* First thing is to stop the queue */
+	netif_stop_queue(netdev);
+
+	/* Stop the Tx and Rx DMA engines */
+	et131x_rx_dma_disable(adapter);
+	et131x_tx_dma_disable(adapter);
+
+	/* Disable device interrupts */
+	et131x_disable_interrupts(adapter);
+
+	/* Deregistering ISR */
+	MP_CLEAR_FLAG(adapter, fMP_ADAPTER_INTERRUPT_IN_USE);
+
+	DBG_TRACE(et131x_dbginfo, "Deregistering ISR...\n");
+	free_irq(netdev->irq, netdev);
+
+	/* Stop the error timer */
+	del_timer_sync(&adapter->ErrorTimer);
+
+	DBG_LEAVE(et131x_dbginfo);
+	return 0;
+}
+
+/**
+ * et131x_ioctl_mii - The function which handles MII IOCTLs
+ * @netdev: device on which the query is being made
+ * @reqbuf: the request-specific data buffer
+ * @cmd: the command request code
+ *
+ * Returns 0 on success, errno on failure (as defined in errno.h)
+ */
+int et131x_ioctl_mii(struct net_device *netdev, struct ifreq *reqbuf, int cmd)
+{
+	int status = 0;
+	struct et131x_adapter *pAdapter = netdev_priv(netdev);
+	struct mii_ioctl_data *data = if_mii(reqbuf);
+
+	DBG_ENTER(et131x_dbginfo);
+
+	switch (cmd) {
+	case SIOCGMIIPHY:
+		DBG_VERBOSE(et131x_dbginfo, "SIOCGMIIPHY\n");
+		data->phy_id = pAdapter->Stats.xcvr_addr;
+		break;
+
+	case SIOCGMIIREG:
+		DBG_VERBOSE(et131x_dbginfo, "SIOCGMIIREG\n");
+		if (!capable(CAP_NET_ADMIN)) {
+			status = -EPERM;
+		} else {
+			status = MiRead(pAdapter,
+					data->reg_num, &data->val_out);
+		}
+		break;
+
+	case SIOCSMIIREG:
+		DBG_VERBOSE(et131x_dbginfo, "SIOCSMIIREG\n");
+		if (!capable(CAP_NET_ADMIN)) {
+			status = -EPERM;
+		} else {
+			status = MiWrite(pAdapter, data->reg_num,
+					 data->val_in);
+		}
+		break;
+
+	default:
+		status = -EOPNOTSUPP;
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+	return status;
+}
+
+/**
+ * et131x_ioctl - The I/O Control handler for the driver
+ * @netdev: device on which the control request is being made
+ * @reqbuf: a pointer to the IOCTL request buffer
+ * @cmd: the IOCTL command code
+ *
+ * Returns 0 on success, errno on failure (as defined in errno.h)
+ */
+int et131x_ioctl(struct net_device *netdev, struct ifreq *reqbuf, int cmd)
+{
+	int status = 0;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	switch (cmd) {
+	case SIOCGMIIPHY:
+	case SIOCGMIIREG:
+	case SIOCSMIIREG:
+		status = et131x_ioctl_mii(netdev, reqbuf, cmd);
+		break;
+
+	default:
+		DBG_WARNING(et131x_dbginfo, "Unhandled IOCTL Code: 0x%04x\n",
+			    cmd);
+		status = -EOPNOTSUPP;
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+	return status;
+}
+
+/**
+ * et131x_set_packet_filter - Configures the Rx Packet filtering on the device
+ * @adapter: pointer to our private adapter structure
+ *
+ * Returns 0 on success, errno on failure
+ */
+int et131x_set_packet_filter(struct et131x_adapter *adapter)
+{
+	int status = 0;
+	uint32_t filter = adapter->PacketFilter;
+	RXMAC_CTRL_t ctrl;
+	RXMAC_PF_CTRL_t pf_ctrl;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	ctrl.value = readl(&adapter->CSRAddress->rxmac.ctrl.value);
+	pf_ctrl.value = readl(&adapter->CSRAddress->rxmac.pf_ctrl.value);
+
+	/* Default to disabled packet filtering.  Enable it in the individual
+	 * case statements that require the device to filter something
+	 */
+	ctrl.bits.pkt_filter_disable = 1;
+
+	/* Set us to be in promiscuous mode so we receive everything, this
+	 * is also true when we get a packet filter of 0
+	 */
+	if ((filter & ET131X_PACKET_TYPE_PROMISCUOUS) || filter == 0) {
+		pf_ctrl.bits.filter_broad_en = 0;
+		pf_ctrl.bits.filter_multi_en = 0;
+		pf_ctrl.bits.filter_uni_en = 0;
+	} else {
+		/*
+		 * Set us up with Multicast packet filtering.  Three cases are
+		 * possible - (1) we have a multi-cast list, (2) we receive ALL
+		 * multicast entries or (3) we receive none.
+		 */
+		if (filter & ET131X_PACKET_TYPE_ALL_MULTICAST) {
+			DBG_VERBOSE(et131x_dbginfo,
+				    "Multicast filtering OFF (Rx ALL MULTICAST)\n");
+			pf_ctrl.bits.filter_multi_en = 0;
+		} else {
+			DBG_VERBOSE(et131x_dbginfo, "Multicast filtering ON\n");
+			SetupDeviceForMulticast(adapter);
+			pf_ctrl.bits.filter_multi_en = 1;
+			ctrl.bits.pkt_filter_disable = 0;
+		}
+
+		/* Set us up with Unicast packet filtering */
+		if (filter & ET131X_PACKET_TYPE_DIRECTED) {
+			DBG_VERBOSE(et131x_dbginfo, "Unicast Filtering ON\n");
+			SetupDeviceForUnicast(adapter);
+			pf_ctrl.bits.filter_uni_en = 1;
+			ctrl.bits.pkt_filter_disable = 0;
+		}
+
+		/* Set us up with Broadcast packet filtering */
+		if (filter & ET131X_PACKET_TYPE_BROADCAST) {
+			DBG_VERBOSE(et131x_dbginfo, "Broadcast Filtering ON\n");
+			pf_ctrl.bits.filter_broad_en = 1;
+			ctrl.bits.pkt_filter_disable = 0;
+		} else {
+			DBG_VERBOSE(et131x_dbginfo,
+				    "Broadcast Filtering OFF\n");
+			pf_ctrl.bits.filter_broad_en = 0;
+		}
+
+		/* Setup the receive mac configuration registers - Packet
+		 * Filter control + the enable / disable for packet filter
+		 * in the control reg.
+		 */
+		writel(pf_ctrl.value,
+		       &adapter->CSRAddress->rxmac.pf_ctrl.value);
+		writel(ctrl.value, &adapter->CSRAddress->rxmac.ctrl.value);
+	}
+
+	DBG_LEAVE(et131x_dbginfo);
+	return status;
+}
+
+/**
+ * et131x_multicast - The handler to configure multicasting on the interface
+ * @netdev: a pointer to a net_device struct representing the device
+ */
+void et131x_multicast(struct net_device *netdev)
+{
+	struct et131x_adapter *adapter = netdev_priv(netdev);
+	uint32_t PacketFilter = 0;
+	uint32_t count;
+	unsigned long lockflags;
+	struct dev_mc_list *mclist = netdev->mc_list;
+
+	DBG_ENTER(et131x_dbginfo);
+
+	spin_lock_irqsave(&adapter->Lock, lockflags);
+
+	/* Before we modify the platform-independent filter flags, store them
+	 * locally. This allows us to determine if anything's changed and if
+	 * we even need to bother the hardware
+	 */
+	PacketFilter = adapter->PacketFilter;
+
+	/* Clear the 'multicast' flag locally; becuase we only have a single
+	 * flag to check multicast, and multiple multicast addresses can be
+	 * set, this is the easiest way to determine if more than one
+	 * multicast address is being set.
+	 */
+	PacketFilter &= ~ET131X_PACKET_TYPE_MULTICAST;
+
+	/* Check the net_device flags and set the device independent flags
+	 * accordingly
+	 */
+	DBG_VERBOSE(et131x_dbginfo,
+		    "MULTICAST ADDR COUNT: %d\n", netdev->mc_count);
+
+	if (netdev->flags & IFF_PROMISC) {
+		DBG_VERBOSE(et131x_dbginfo, "Request: PROMISCUOUS MODE ON\n");
+		adapter->PacketFilter |= ET131X_PACKET_TYPE_PROMISCUOUS;
+	} else {
+		DBG_VERBOSE(et131x_dbginfo, "Request: PROMISCUOUS MODE OFF\n");
+		adapter->PacketFilter &= ~ET131X_PACKET_TYPE_PROMISCUOUS;
+	}
+
+	if (netdev->flags & IFF_ALLMULTI) {
+		DBG_VERBOSE(et131x_dbginfo, "Request: ACCEPT ALL MULTICAST\n");
+		adapter->PacketFilter |= ET131X_PACKET_TYPE_ALL_MULTICAST;
+	}
+
+	if (netdev->mc_count > NIC_MAX_MCAST_LIST) {
+		DBG_WARNING(et131x_dbginfo,
+			    "ACCEPT ALL MULTICAST for now, as there's more Multicast "
+			    "addresses than the HW supports\n");
+
+		adapter->PacketFilter |= ET131X_PACKET_TYPE_ALL_MULTICAST;
+	}
+
+	if (netdev->mc_count < 1) {
+		DBG_VERBOSE(et131x_dbginfo, "Request: REJECT ALL MULTICAST\n");
+		adapter->PacketFilter &= ~ET131X_PACKET_TYPE_ALL_MULTICAST;
+		adapter->PacketFilter &= ~ET131X_PACKET_TYPE_MULTICAST;
+	} else {
+		DBG_VERBOSE(et131x_dbginfo,
+			    "Request: SET MULTICAST FILTER(S)\n");
+		adapter->PacketFilter |= ET131X_PACKET_TYPE_MULTICAST;
+	}
+
+	/* Set values in the private adapter struct */
+	adapter->MCAddressCount = netdev->mc_count;
+
+	if (netdev->mc_count) {
+		if (mclist->dmi_addrlen != ETH_ALEN) {
+			DBG_WARNING(et131x_dbginfo,
+				    "Multicast addrs are not ETH_ALEN in size\n");
+		} else {
+			count = netdev->mc_count - 1;
+			memcpy(adapter->MCList[count], mclist->dmi_addr,
+			       ETH_ALEN);
+		}
+	}
+
+	/* Are the new flags different from the previous ones? If not, then no
+	 * action is required
+	 *
+	 * NOTE - This block will always update the MCList with the hardware,
+	 *        even if the addresses aren't the same.
+	 */
+	if (PacketFilter != adapter->PacketFilter) {
+		/* Call the device's filter function */
+		DBG_VERBOSE(et131x_dbginfo, "UPDATE REQUIRED, FLAGS changed\n");
+
+		et131x_set_packet_filter(adapter);
+	} else {
+		DBG_VERBOSE(et131x_dbginfo,
+			    "NO UPDATE REQUIRED, FLAGS didn't change\n");
+	}
+
+	spin_unlock_irqrestore(&adapter->Lock, lockflags);
+
+	DBG_LEAVE(et131x_dbginfo);
+}
+
+/**
+ * et131x_tx - The handler to tx a packet on the device
+ * @skb: data to be Tx'd
+ * @netdev: device on which data is to be Tx'd
+ *
+ * Returns 0 on success, errno on failure (as defined in errno.h)
+ */
+int et131x_tx(struct sk_buff *skb, struct net_device *netdev)
+{
+	int status = 0;
+
+	DBG_TX_ENTER(et131x_dbginfo);
+
+	/* Save the timestamp for the TX timeout watchdog */
+	netdev->trans_start = jiffies;
+
+	/* Call the device-specific data Tx routine */
+	status = et131x_send_packets(skb, netdev);
+
+	/* Check status and manage the netif queue if necessary */
+	if (status != 0) {
+		if (status == -ENOMEM) {
+			DBG_VERBOSE(et131x_dbginfo,
+				    "OUT OF TCBs; STOP NETIF QUEUE\n");
+
+			/* Put the queue to sleep until resources are
+			 * available
+			 */
+			netif_stop_queue(netdev);
+			status = 1;
+		} else {
+			DBG_WARNING(et131x_dbginfo,
+				    "Misc error; drop packet\n");
+			status = 0;
+		}
+	}
+
+	DBG_TX_LEAVE(et131x_dbginfo);
+	return status;
+}
+
+/**
+ * et131x_tx_timeout - Timeout handler
+ * @netdev: a pointer to a net_device struct representing the device
+ *
+ * The handler called when a Tx request times out. The timeout period is
+ * specified by the 'tx_timeo" element in the net_device structure (see
+ * et131x_alloc_device() to see how this value is set).
+ */
+void et131x_tx_timeout(struct net_device *netdev)
+{
+	struct et131x_adapter *pAdapter = netdev_priv(netdev);
+	PMP_TCB pMpTcb;
+	unsigned long lockflags;
+
+	DBG_WARNING(et131x_dbginfo, "TX TIMEOUT\n");
+
+	/* Just skip this part if the adapter is doing link detection */
+	if (MP_TEST_FLAG(pAdapter, fMP_ADAPTER_LINK_DETECTION)) {
+		DBG_ERROR(et131x_dbginfo, "Still doing link detection\n");
+		return;
+	}
+
+	/* Any nonrecoverable hardware error?
+	 * Checks adapter->flags for any failure in phy reading
+	 */
+	if (MP_TEST_FLAG(pAdapter, fMP_ADAPTER_NON_RECOVER_ERROR)) {
+		DBG_WARNING(et131x_dbginfo, "Non recoverable error - remove\n");
+		return;
+	}
+
+	/* Hardware failure? */
+	if (MP_TEST_FLAG(pAdapter, fMP_ADAPTER_HARDWARE_ERROR)) {
+		DBG_WARNING(et131x_dbginfo, "hardware error - reset\n");
+		return;
+	}
+
+	/* Is send stuck? */
+	spin_lock_irqsave(&pAdapter->TCBSendQLock, lockflags);
+
+	pMpTcb = pAdapter->TxRing.CurrSendHead;
+
+	if (pMpTcb != NULL) {
+		pMpTcb->Count++;
+
+		if (pMpTcb->Count > NIC_SEND_HANG_THRESHOLD) {
+#ifdef CONFIG_ET131X_DEBUG
+			TX_STATUS_BLOCK_t txDmaComplete =
+			    *(pAdapter->TxRing.pTxStatusVa);
+			PTX_DESC_ENTRY_t pDesc =
+			    pAdapter->TxRing.pTxDescRingVa +
+			    pMpTcb->WrIndex.bits.val;
+#endif
+			TX_DESC_ENTRY_t StuckDescriptors[10];
+
+			if (pMpTcb->WrIndex.bits.val > 7) {
+				memcpy(StuckDescriptors,
+				       pAdapter->TxRing.pTxDescRingVa +
+				       pMpTcb->WrIndex.bits.val - 6,
+				       sizeof(TX_DESC_ENTRY_t) * 10);
+			}
+
+			spin_unlock_irqrestore(&pAdapter->TCBSendQLock,
+					       lockflags);
+
+			DBG_WARNING(et131x_dbginfo,
+				    "Send stuck - reset.  pMpTcb->WrIndex %x, Flags 0x%08x\n",
+				    pMpTcb->WrIndex.bits.val,
+				    pMpTcb->Flags);
+
+			DBG_WARNING(et131x_dbginfo,
+				    "pDesc 0x%08x, 0x%08x, 0x%08x, 0x%08x\n",
+				    pDesc->DataBufferPtrHigh,
+				    pDesc->DataBufferPtrLow, pDesc->word2.value,
+				    pDesc->word3.value);
+
+			DBG_WARNING(et131x_dbginfo,
+				    "WbStatus 0x%08x\n", txDmaComplete.value);
+
+#ifdef CONFIG_ET131X_DEBUG
+			DumpDeviceBlock(DBG_WARNING_ON, pAdapter, 0);
+			DumpDeviceBlock(DBG_WARNING_ON, pAdapter, 1);
+			DumpDeviceBlock(DBG_WARNING_ON, pAdapter, 3);
+			DumpDeviceBlock(DBG_WARNING_ON, pAdapter, 5);
+#endif
+			et131x_close(netdev);
+			et131x_open(netdev);
+
+			return;
+		}
+	}
+
+	spin_unlock_irqrestore(&pAdapter->TCBSendQLock, lockflags);
+}
+
+/**
+ * et131x_change_mtu - The handler called to change the MTU for the device
+ * @netdev: device whose MTU is to be changed
+ * @new_mtu: the desired MTU
+ *
+ * Returns 0 on success, errno on failure (as defined in errno.h)
+ */
+int et131x_change_mtu(struct net_device *netdev, int new_mtu)
+{
+	int result = 0;
+	struct et131x_adapter *adapter = netdev_priv(netdev);
+
+	DBG_ENTER(et131x_dbginfo);
+
+	/* Make sure the requested MTU is valid */
+	if (new_mtu == 0 || new_mtu > 9216) {
+		DBG_LEAVE(et131x_dbginfo);
+		return -EINVAL;
+	}
+
+	/* Stop the netif queue */
+	netif_stop_queue(netdev);
+
+	/* Stop the Tx and Rx DMA engines */
+	et131x_rx_dma_disable(adapter);
+	et131x_tx_dma_disable(adapter);
+
+	/* Disable device interrupts */
+	et131x_disable_interrupts(adapter);
+	et131x_handle_send_interrupt(adapter);
+	et131x_handle_recv_interrupt(adapter);
+
+	/* Set the new MTU */
+	netdev->mtu = new_mtu;
+
+	/* Free Rx DMA memory */
+	et131x_adapter_memory_free(adapter);
+
+	/* Set the config parameter for Jumbo Packet support */
+	adapter->RegistryJumboPacket = new_mtu + 14;
+	et131x_soft_reset(adapter);
+
+	/* Alloc and init Rx DMA memory */
+	result = et131x_adapter_memory_alloc(adapter);
+	if (result != 0) {
+		DBG_WARNING(et131x_dbginfo,
+			    "Change MTU failed; couldn't re-alloc DMA memory\n");
+		return result;
+	}
+
+	et131x_init_send(adapter);
+
+	et131x_setup_hardware_properties(adapter);
+	memcpy(netdev->dev_addr, adapter->CurrentAddress, ETH_ALEN);
+
+	/* Init the device with the new settings */
+	et131x_adapter_setup(adapter);
+
+	/* Enable interrupts */
+	if (MP_TEST_FLAG(adapter, fMP_ADAPTER_INTERRUPT_IN_USE)) {
+		et131x_enable_interrupts(adapter);
+	}
+
+	/* Restart the Tx and Rx DMA engines */
+	et131x_rx_dma_enable(adapter);
+	et131x_tx_dma_enable(adapter);
+
+	/* Restart the netif queue */
+	netif_wake_queue(netdev);
+
+	DBG_LEAVE(et131x_dbginfo);
+	return result;
+}
+
+/**
+ * et131x_set_mac_addr - handler to change the MAC address for the device
+ * @netdev: device whose MAC is to be changed
+ * @new_mac: the desired MAC address
+ *
+ * Returns 0 on success, errno on failure (as defined in errno.h)
+ *
+ * IMPLEMENTED BY : blux http://berndlux.de 22.01.2007 21:14
+ */
+int et131x_set_mac_addr(struct net_device *netdev, void *new_mac)
+{
+	int result = 0;
+	struct et131x_adapter *adapter = netdev_priv(netdev);
+	struct sockaddr *address = new_mac;
+
+	DBG_ENTER(et131x_dbginfo);
+	// begin blux
+	// DBG_VERBOSE( et131x_dbginfo, "Function not implemented!!\n" );
+
+	if (adapter == NULL) {
+		DBG_LEAVE(et131x_dbginfo);
+		return -ENODEV;
+	}
+
+	/* Make sure the requested MAC is valid */
+	if (!is_valid_ether_addr(address->sa_data)) {
+		DBG_LEAVE(et131x_dbginfo);
+		return -EINVAL;
+	}
+
+	/* Stop the netif queue */
+	netif_stop_queue(netdev);
+
+	/* Stop the Tx and Rx DMA engines */
+	et131x_rx_dma_disable(adapter);
+	et131x_tx_dma_disable(adapter);
+
+	/* Disable device interrupts */
+	et131x_disable_interrupts(adapter);
+	et131x_handle_send_interrupt(adapter);
+	et131x_handle_recv_interrupt(adapter);
+
+	/* Set the new MAC */
+	// netdev->set_mac_address  = &new_mac;
+	// netdev->mtu = new_mtu;
+
+	memcpy(netdev->dev_addr, address->sa_data, netdev->addr_len);
+
+	printk("%s: Setting MAC address to %02x:%02x:%02x:%02x:%02x:%02x\n",
+	       netdev->name, netdev->dev_addr[0], netdev->dev_addr[1],
+	       netdev->dev_addr[2], netdev->dev_addr[3], netdev->dev_addr[4],
+	       netdev->dev_addr[5]);
+
+	/* Free Rx DMA memory */
+	et131x_adapter_memory_free(adapter);
+
+	/* Set the config parameter for Jumbo Packet support */
+	// adapter->RegistryJumboPacket = new_mtu + 14;
+	// blux: not needet here, w'll change the MAC
+
+	et131x_soft_reset(adapter);
+
+	/* Alloc and init Rx DMA memory */
+	result = et131x_adapter_memory_alloc(adapter);
+	if (result != 0) {
+		DBG_WARNING(et131x_dbginfo,
+			    "Change MAC failed; couldn't re-alloc DMA memory\n");
+		return result;
+	}
+
+	et131x_init_send(adapter);
+
+	et131x_setup_hardware_properties(adapter);
+	// memcpy( netdev->dev_addr, adapter->CurrentAddress, ETH_ALEN );
+	// blux: no, do not override our nice address
+
+	/* Init the device with the new settings */
+	et131x_adapter_setup(adapter);
+
+	/* Enable interrupts */
+	if (MP_TEST_FLAG(adapter, fMP_ADAPTER_INTERRUPT_IN_USE)) {
+		et131x_enable_interrupts(adapter);
+	}
+
+	/* Restart the Tx and Rx DMA engines */
+	et131x_rx_dma_enable(adapter);
+	et131x_tx_dma_enable(adapter);
+
+	/* Restart the netif queue */
+	netif_wake_queue(netdev);
+
+	DBG_LEAVE(et131x_dbginfo);
+	return result;
+}
diff --git a/drivers/staging/et131x/et131x_netdev.h b/drivers/staging/et131x/et131x_netdev.h
new file mode 100644
index 0000000..b8acd14
--- /dev/null
+++ b/drivers/staging/et131x/et131x_netdev.h
@@ -0,0 +1,64 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et131x_netdev.h - Defines, structs, enums, prototypes, etc. related to the
+ *                   driver's net_device support.
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#ifndef __ET131X_NETDEV_H__
+#define __ET131X_NETDEV_H__
+
+struct net_device *et131x_device_alloc(void);
+
+#endif /* __ET131X_NETDEV_H__ */
diff --git a/drivers/staging/et131x/et131x_version.h b/drivers/staging/et131x/et131x_version.h
new file mode 100644
index 0000000..2ea645e
--- /dev/null
+++ b/drivers/staging/et131x/et131x_version.h
@@ -0,0 +1,81 @@
+/*
+ * Agere Systems Inc.
+ * 10/100/1000 Base-T Ethernet Driver for the ET1301 and ET131x series MACs
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *   http://www.agere.com
+ *
+ *------------------------------------------------------------------------------
+ *
+ * et131x_version.h - This file provides system and device version information.
+ *
+ *------------------------------------------------------------------------------
+ *
+ * SOFTWARE LICENSE
+ *
+ * This software is provided subject to the following terms and conditions,
+ * which you should read carefully before using the software.  Using this
+ * software indicates your acceptance of these terms and conditions.  If you do
+ * not agree with these terms and conditions, do not use the software.
+ *
+ * Copyright © 2005 Agere Systems Inc.
+ * All rights reserved.
+ *
+ * Redistribution and use in source or binary forms, with or without
+ * modifications, are permitted provided that the following conditions are met:
+ *
+ * . Redistributions of source code must retain the above copyright notice, this
+ *    list of conditions and the following Disclaimer as comments in the code as
+ *    well as in the documentation and/or other materials provided with the
+ *    distribution.
+ *
+ * . Redistributions in binary form must reproduce the above copyright notice,
+ *    this list of conditions and the following Disclaimer in the documentation
+ *    and/or other materials provided with the distribution.
+ *
+ * . Neither the name of Agere Systems Inc. nor the names of the contributors
+ *    may be used to endorse or promote products derived from this software
+ *    without specific prior written permission.
+ *
+ * Disclaimer
+ *
+ * THIS SOFTWARE IS PROVIDED “AS IS” AND ANY EXPRESS OR IMPLIED WARRANTIES,
+ * INCLUDING, BUT NOT LIMITED TO, INFRINGEMENT AND THE IMPLIED WARRANTIES OF
+ * MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.  ANY
+ * USE, MODIFICATION OR DISTRIBUTION OF THIS SOFTWARE IS SOLELY AT THE USERS OWN
+ * RISK. IN NO EVENT SHALL AGERE SYSTEMS INC. OR CONTRIBUTORS BE LIABLE FOR ANY
+ * DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES
+ * (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES;
+ * LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, INCLUDING, BUT NOT LIMITED TO, CONTRACT, STRICT
+ * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH
+ * DAMAGE.
+ *
+ */
+
+#ifndef __ET131X_VERSION_H__
+#define __ET131X_VERSION_H__
+
+#define DRIVER_AUTHOR		"Victor Soriano (vjsoriano@agere.com)"
+#define DRIVER_LICENSE		"Dual BSD/GPL"
+#define DRIVER_DEVICE_STRING	"ET1310"
+#define DRIVER_NAME		"et131x"
+#define DRIVER_MAJOR_VERSION	1
+#define DRIVER_MINOR_VERSION	2
+#define DRIVER_PATCH_VERSION	3
+#define DRIVER_VERSION_STRING	"1.2.3"
+#define DRIVER_VENDOR		"Agere Systems, http://www.agere.com"
+#define DRIVER_DESC		"10/100/1000 Base-T Ethernet Driver"
+
+#define STRUCT_MODULE		"net"	/* blux: missed by the kernel */
+
+#define DRIVER_INFO		DRIVER_DESC " for the "\
+				DRIVER_DEVICE_STRING ", v" \
+				DRIVER_VERSION_STRING " by " \
+				DRIVER_VENDOR
+
+#define DRIVER_NAME_EXT		"et131x.ko"
+
+#endif /* __ET131X_VERSION_H__ */
diff --git a/drivers/staging/go7007/Kconfig b/drivers/staging/go7007/Kconfig
new file mode 100644
index 0000000..57a121c
--- /dev/null
+++ b/drivers/staging/go7007/Kconfig
@@ -0,0 +1,25 @@
+config VIDEO_GO7007
+	tristate "Go 7007 support"
+	depends on VIDEO_DEV && PCI && I2C && INPUT
+	select VIDEOBUF_DMA_SG
+	select VIDEO_IR
+	select VIDEO_TUNER
+	select VIDEO_TVEEPROM
+	select CRC32
+	default N
+	---help---
+	  This is a video4linux driver for some wierd device...
+
+	  To compile this driver as a module, choose M here: the
+	  module will be called go7007
+
+config VIDEO_GO7007_USB
+	tristate "Go 7007 USB support"
+	depends on VIDEO_GO7007 && USB
+	default N
+	---help---
+	  This is a video4linux driver for some wierd device...
+
+	  To compile this driver as a module, choose M here: the
+	  module will be called go7007-usb
+
diff --git a/drivers/staging/go7007/Makefile b/drivers/staging/go7007/Makefile
new file mode 100644
index 0000000..9b9310c
--- /dev/null
+++ b/drivers/staging/go7007/Makefile
@@ -0,0 +1,18 @@
+#obj-m += go7007.o go7007-usb.o snd-go7007.o wis-saa7115.o wis-tw9903.o \
+		wis-uda1342.o wis-sony-tuner.o wis-saa7113.o wis-ov7640.o \
+		wis-tw2804.o
+
+
+obj-$(CONFIG_VIDEO_GO7007) += go7007.o
+obj-$(CONFIG_VIDEO_GO7007_USB) += go7007-usb.o
+
+go7007-objs += go7007-v4l2.o go7007-driver.o go7007-i2c.o go7007-fw.o snd-go7007.o
+
+
+#ifneq ($(SAA7134_BUILD),)
+#obj-m += saa7134-go7007.o
+#endif
+
+EXTRA_CFLAGS += -Idrivers/staging/saa7134
+EXTRA_CFLAGS += -Idrivers/media/dvb/frontends
+EXTRA_CFLAGS += -Idrivers/media/dvb/dvb-core
diff --git a/drivers/staging/go7007/README b/drivers/staging/go7007/README
new file mode 100644
index 0000000..48f4476
--- /dev/null
+++ b/drivers/staging/go7007/README
@@ -0,0 +1,11 @@
+Todo:
+	- checkpatch.pl cleanups
+	- sparse cleanups
+	- lots of little modules, should be merged together
+	  and added to the build.
+	- testing?
+	- handle churn in v4l layer.
+
+Please send patchs to Greg Kroah-Hartman <greg@kroah.com> and Cc: Ross
+Cohen <rcohen@snurgle.org> as well.
+
diff --git a/drivers/staging/go7007/go7007-driver.c b/drivers/staging/go7007/go7007-driver.c
new file mode 100644
index 0000000..81ae4b0
--- /dev/null
+++ b/drivers/staging/go7007/go7007-driver.c
@@ -0,0 +1,688 @@
+/*
+ * Copyright (C) 2005-2006 Micronas USA Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License (Version 2) as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software Foundation,
+ * Inc., 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/version.h>
+#include <linux/init.h>
+#include <linux/delay.h>
+#include <linux/sched.h>
+#include <linux/spinlock.h>
+#include <linux/unistd.h>
+#include <linux/time.h>
+#include <linux/mm.h>
+#include <linux/vmalloc.h>
+#include <linux/device.h>
+#include <linux/i2c.h>
+#include <linux/firmware.h>
+#include <linux/semaphore.h>
+#include <linux/uaccess.h>
+#include <asm/system.h>
+#include <linux/videodev2.h>
+#include <media/tuner.h>
+#include <media/v4l2-common.h>
+
+#include "go7007-priv.h"
+#include "wis-i2c.h"
+
+/*
+ * Wait for an interrupt to be delivered from the GO7007SB and return
+ * the associated value and data.
+ *
+ * Must be called with the hw_lock held.
+ */
+int go7007_read_interrupt(struct go7007 *go, u16 *value, u16 *data)
+{
+	go->interrupt_available = 0;
+	go->hpi_ops->read_interrupt(go);
+	if (wait_event_timeout(go->interrupt_waitq,
+				go->interrupt_available, 5*HZ) < 0) {
+		printk(KERN_ERR "go7007: timeout waiting for read interrupt\n");
+		return -1;
+	}
+	if (!go->interrupt_available)
+		return -1;
+	go->interrupt_available = 0;
+	*value = go->interrupt_value & 0xfffe;
+	*data = go->interrupt_data;
+	return 0;
+}
+EXPORT_SYMBOL(go7007_read_interrupt);
+
+/*
+ * Read a register/address on the GO7007SB.
+ *
+ * Must be called with the hw_lock held.
+ */
+int go7007_read_addr(struct go7007 *go, u16 addr, u16 *data)
+{
+	int count = 100;
+	u16 value;
+
+	if (go7007_write_interrupt(go, 0x0010, addr) < 0)
+		return -EIO;
+	while (count-- > 0) {
+		if (go7007_read_interrupt(go, &value, data) == 0 &&
+				value == 0xa000)
+			return 0;
+	}
+	return -EIO;
+}
+EXPORT_SYMBOL(go7007_read_addr);
+
+/*
+ * Send the boot firmware to the encoder, which just wakes it up and lets
+ * us talk to the GPIO pins and on-board I2C adapter.
+ *
+ * Must be called with the hw_lock held.
+ */
+static int go7007_load_encoder(struct go7007 *go)
+{
+	const struct firmware *fw_entry;
+	char fw_name[] = "go7007fw.bin";
+	void *bounce;
+	int fw_len, rv = 0;
+	u16 intr_val, intr_data;
+
+	if (request_firmware(&fw_entry, fw_name, go->dev)) {
+		printk(KERN_ERR
+			"go7007: unable to load firmware from file \"%s\"\n",
+			fw_name);
+		return -1;
+	}
+	if (fw_entry->size < 16 || memcmp(fw_entry->data, "WISGO7007FW", 11)) {
+		printk(KERN_ERR "go7007: file \"%s\" does not appear to be "
+				"go7007 firmware\n", fw_name);
+		release_firmware(fw_entry);
+		return -1;
+	}
+	fw_len = fw_entry->size - 16;
+	bounce = kmalloc(fw_len, GFP_KERNEL);
+	if (bounce == NULL) {
+		printk(KERN_ERR "go7007: unable to allocate %d bytes for "
+				"firmware transfer\n", fw_len);
+		release_firmware(fw_entry);
+		return -1;
+	}
+	memcpy(bounce, fw_entry->data + 16, fw_len);
+	release_firmware(fw_entry);
+	if (go7007_interface_reset(go) < 0 ||
+			go7007_send_firmware(go, bounce, fw_len) < 0 ||
+			go7007_read_interrupt(go, &intr_val, &intr_data) < 0 ||
+			(intr_val & ~0x1) != 0x5a5a) {
+		printk(KERN_ERR "go7007: error transferring firmware\n");
+		rv = -1;
+	}
+	kfree(bounce);
+	return rv;
+}
+
+/*
+ * Boot the encoder and register the I2C adapter if requested.  Do the
+ * minimum initialization necessary, since the board-specific code may
+ * still need to probe the board ID.
+ *
+ * Must NOT be called with the hw_lock held.
+ */
+int go7007_boot_encoder(struct go7007 *go, int init_i2c)
+{
+	int ret;
+
+	down(&go->hw_lock);
+	ret = go7007_load_encoder(go);
+	up(&go->hw_lock);
+	if (ret < 0)
+		return -1;
+	if (!init_i2c)
+		return 0;
+	if (go7007_i2c_init(go) < 0)
+		return -1;
+	go->i2c_adapter_online = 1;
+	return 0;
+}
+EXPORT_SYMBOL(go7007_boot_encoder);
+
+/*
+ * Configure any hardware-related registers in the GO7007, such as GPIO
+ * pins and bus parameters, which are board-specific.  This assumes
+ * the boot firmware has already been downloaded.
+ *
+ * Must be called with the hw_lock held.
+ */
+static int go7007_init_encoder(struct go7007 *go)
+{
+	if (go->board_info->audio_flags & GO7007_AUDIO_I2S_MASTER) {
+		go7007_write_addr(go, 0x1000, 0x0811);
+		go7007_write_addr(go, 0x1000, 0x0c11);
+	}
+	if (go->board_id == GO7007_BOARDID_MATRIX_REV) {
+		/* Set GPIO pin 0 to be an output (audio clock control) */
+		go7007_write_addr(go, 0x3c82, 0x0001);
+		go7007_write_addr(go, 0x3c80, 0x00fe);
+	}
+	return 0;
+}
+
+/*
+ * Send the boot firmware to the GO7007 and configure the registers.  This
+ * is the only way to stop the encoder once it has started streaming video.
+ *
+ * Must be called with the hw_lock held.
+ */
+int go7007_reset_encoder(struct go7007 *go)
+{
+	if (go7007_load_encoder(go) < 0)
+		return -1;
+	return go7007_init_encoder(go);
+}
+
+/*
+ * Attempt to instantiate an I2C client by ID, probably loading a module.
+ */
+static int init_i2c_module(struct i2c_adapter *adapter, int id, int addr)
+{
+	char *modname;
+
+	switch (id) {
+	case I2C_DRIVERID_WIS_SAA7115:
+		modname = "wis-saa7115";
+		break;
+	case I2C_DRIVERID_WIS_SAA7113:
+		modname = "wis-saa7113";
+		break;
+	case I2C_DRIVERID_WIS_UDA1342:
+		modname = "wis-uda1342";
+		break;
+	case I2C_DRIVERID_WIS_SONY_TUNER:
+		modname = "wis-sony-tuner";
+		break;
+	case I2C_DRIVERID_WIS_TW9903:
+		modname = "wis-tw9903";
+		break;
+	case I2C_DRIVERID_WIS_TW2804:
+		modname = "wis-tw2804";
+		break;
+	case I2C_DRIVERID_WIS_OV7640:
+		modname = "wis-ov7640";
+		break;
+	default:
+		modname = NULL;
+		break;
+	}
+	if (modname != NULL)
+		request_module(modname);
+	if (wis_i2c_probe_device(adapter, id, addr) == 1)
+		return 0;
+	if (modname != NULL)
+		printk(KERN_INFO
+			"go7007: probing for module %s failed", modname);
+	else
+		printk(KERN_INFO
+			"go7007: sensor %u seems to be unsupported!\n", id);
+	return -1;
+}
+
+/*
+ * Finalize the GO7007 hardware setup, register the on-board I2C adapter
+ * (if used on this board), load the I2C client driver for the sensor
+ * (SAA7115 or whatever) and other devices, and register the ALSA and V4L2
+ * interfaces.
+ *
+ * Must NOT be called with the hw_lock held.
+ */
+int go7007_register_encoder(struct go7007 *go)
+{
+	int i, ret;
+
+	printk(KERN_INFO "go7007: registering new %s\n", go->name);
+
+	down(&go->hw_lock);
+	ret = go7007_init_encoder(go);
+	up(&go->hw_lock);
+	if (ret < 0)
+		return -1;
+
+	if (!go->i2c_adapter_online &&
+			go->board_info->flags & GO7007_BOARD_USE_ONBOARD_I2C) {
+		if (go7007_i2c_init(go) < 0)
+			return -1;
+		go->i2c_adapter_online = 1;
+	}
+	if (go->i2c_adapter_online) {
+		for (i = 0; i < go->board_info->num_i2c_devs; ++i)
+			init_i2c_module(&go->i2c_adapter,
+					go->board_info->i2c_devs[i].id,
+					go->board_info->i2c_devs[i].addr);
+#ifdef TUNER_SET_TYPE_ADDR
+		if (go->tuner_type >= 0) {
+			struct tuner_setup tun_setup = {
+				.mode_mask	= T_ANALOG_TV,
+				.addr		= ADDR_UNSET,
+				.type		= go->tuner_type
+			};
+			i2c_clients_command(&go->i2c_adapter,
+				TUNER_SET_TYPE_ADDR, &tun_setup);
+		}
+#else
+		if (go->tuner_type >= 0)
+			i2c_clients_command(&go->i2c_adapter,
+				TUNER_SET_TYPE, &go->tuner_type);
+#endif
+		if (go->board_id == GO7007_BOARDID_ADLINK_MPG24)
+			i2c_clients_command(&go->i2c_adapter,
+				DECODER_SET_CHANNEL, &go->channel_number);
+	}
+	if (go->board_info->flags & GO7007_BOARD_HAS_AUDIO) {
+		go->audio_enabled = 1;
+		go7007_snd_init(go);
+	}
+	return go7007_v4l2_init(go);
+}
+EXPORT_SYMBOL(go7007_register_encoder);
+
+/*
+ * Send the encode firmware to the encoder, which will cause it
+ * to immediately start delivering the video and audio streams.
+ *
+ * Must be called with the hw_lock held.
+ */
+int go7007_start_encoder(struct go7007 *go)
+{
+	u8 *fw;
+	int fw_len, rv = 0, i;
+	u16 intr_val, intr_data;
+
+	go->modet_enable = 0;
+	if (!go->dvd_mode)
+		for (i = 0; i < 4; ++i) {
+			if (go->modet[i].enable) {
+				go->modet_enable = 1;
+				continue;
+			}
+			go->modet[i].pixel_threshold = 32767;
+			go->modet[i].motion_threshold = 32767;
+			go->modet[i].mb_threshold = 32767;
+		}
+
+	if (go7007_construct_fw_image(go, &fw, &fw_len) < 0)
+		return -1;
+
+	if (go7007_send_firmware(go, fw, fw_len) < 0 ||
+			go7007_read_interrupt(go, &intr_val, &intr_data) < 0) {
+		printk(KERN_ERR "go7007: error transferring firmware\n");
+		rv = -1;
+		goto start_error;
+	}
+
+	go->state = STATE_DATA;
+	go->parse_length = 0;
+	go->seen_frame = 0;
+	if (go7007_stream_start(go) < 0) {
+		printk(KERN_ERR "go7007: error starting stream transfer\n");
+		rv = -1;
+		goto start_error;
+	}
+
+start_error:
+	kfree(fw);
+	return rv;
+}
+
+/*
+ * Store a byte in the current video buffer, if there is one.
+ */
+static inline void store_byte(struct go7007_buffer *gobuf, u8 byte)
+{
+	if (gobuf != NULL && gobuf->bytesused < GO7007_BUF_SIZE) {
+		unsigned int pgidx = gobuf->offset >> PAGE_SHIFT;
+		unsigned int pgoff = gobuf->offset & ~PAGE_MASK;
+
+		*((u8 *)page_address(gobuf->pages[pgidx]) + pgoff) = byte;
+		++gobuf->offset;
+		++gobuf->bytesused;
+	}
+}
+
+/*
+ * Deliver the last video buffer and get a new one to start writing to.
+ */
+static void frame_boundary(struct go7007 *go)
+{
+	struct go7007_buffer *gobuf;
+	int i;
+
+	if (go->active_buf) {
+		if (go->active_buf->modet_active) {
+			if (go->active_buf->bytesused + 216 < GO7007_BUF_SIZE) {
+				for (i = 0; i < 216; ++i)
+					store_byte(go->active_buf,
+							go->active_map[i]);
+				go->active_buf->bytesused -= 216;
+			} else
+				go->active_buf->modet_active = 0;
+		}
+		go->active_buf->state = BUF_STATE_DONE;
+		wake_up_interruptible(&go->frame_waitq);
+		go->active_buf = NULL;
+	}
+	list_for_each_entry(gobuf, &go->stream, stream)
+		if (gobuf->state == BUF_STATE_QUEUED) {
+			gobuf->seq = go->next_seq;
+			do_gettimeofday(&gobuf->timestamp);
+			go->active_buf = gobuf;
+			break;
+		}
+	++go->next_seq;
+}
+
+static void write_bitmap_word(struct go7007 *go)
+{
+	int x, y, i, stride = ((go->width >> 4) + 7) >> 3;
+
+	for (i = 0; i < 16; ++i) {
+		y = (((go->parse_length - 1) << 3) + i) / (go->width >> 4);
+		x = (((go->parse_length - 1) << 3) + i) % (go->width >> 4);
+		go->active_map[stride * y + (x >> 3)] |=
+					(go->modet_word & 1) << (x & 0x7);
+		go->modet_word >>= 1;
+	}
+}
+
+/*
+ * Parse a chunk of the video stream into frames.  The frames are not
+ * delimited by the hardware, so we have to parse the frame boundaries
+ * based on the type of video stream we're receiving.
+ */
+void go7007_parse_video_stream(struct go7007 *go, u8 *buf, int length)
+{
+	int i, seq_start_code = -1, frame_start_code = -1;
+
+	spin_lock(&go->spinlock);
+
+	switch (go->format) {
+	case GO7007_FORMAT_MPEG4:
+		seq_start_code = 0xB0;
+		frame_start_code = 0xB6;
+		break;
+	case GO7007_FORMAT_MPEG1:
+	case GO7007_FORMAT_MPEG2:
+		seq_start_code = 0xB3;
+		frame_start_code = 0x00;
+		break;
+	}
+
+	for (i = 0; i < length; ++i) {
+		if (go->active_buf != NULL &&
+			    go->active_buf->bytesused >= GO7007_BUF_SIZE - 3) {
+			printk(KERN_DEBUG "go7007: dropping oversized frame\n");
+			go->active_buf->offset -= go->active_buf->bytesused;
+			go->active_buf->bytesused = 0;
+			go->active_buf->modet_active = 0;
+			go->active_buf = NULL;
+		}
+
+		switch (go->state) {
+		case STATE_DATA:
+			switch (buf[i]) {
+			case 0x00:
+				go->state = STATE_00;
+				break;
+			case 0xFF:
+				go->state = STATE_FF;
+				break;
+			default:
+				store_byte(go->active_buf, buf[i]);
+				break;
+			}
+			break;
+		case STATE_00:
+			switch (buf[i]) {
+			case 0x00:
+				go->state = STATE_00_00;
+				break;
+			case 0xFF:
+				store_byte(go->active_buf, 0x00);
+				go->state = STATE_FF;
+				break;
+			default:
+				store_byte(go->active_buf, 0x00);
+				store_byte(go->active_buf, buf[i]);
+				go->state = STATE_DATA;
+				break;
+			}
+			break;
+		case STATE_00_00:
+			switch (buf[i]) {
+			case 0x00:
+				store_byte(go->active_buf, 0x00);
+				/* go->state remains STATE_00_00 */
+				break;
+			case 0x01:
+				go->state = STATE_00_00_01;
+				break;
+			case 0xFF:
+				store_byte(go->active_buf, 0x00);
+				store_byte(go->active_buf, 0x00);
+				go->state = STATE_FF;
+				break;
+			default:
+				store_byte(go->active_buf, 0x00);
+				store_byte(go->active_buf, 0x00);
+				store_byte(go->active_buf, buf[i]);
+				go->state = STATE_DATA;
+				break;
+			}
+			break;
+		case STATE_00_00_01:
+			/* If this is the start of a new MPEG frame,
+			 * get a new buffer */
+			if ((go->format == GO7007_FORMAT_MPEG1 ||
+					go->format == GO7007_FORMAT_MPEG2 ||
+					go->format == GO7007_FORMAT_MPEG4) &&
+					(buf[i] == seq_start_code ||
+						buf[i] == 0xB8 || /* GOP code */
+						buf[i] == frame_start_code)) {
+				if (go->active_buf == NULL || go->seen_frame)
+					frame_boundary(go);
+				if (buf[i] == frame_start_code) {
+					if (go->active_buf != NULL)
+						go->active_buf->frame_offset =
+							go->active_buf->offset;
+					go->seen_frame = 1;
+				} else {
+					go->seen_frame = 0;
+				}
+			}
+			/* Handle any special chunk types, or just write the
+			 * start code to the (potentially new) buffer */
+			switch (buf[i]) {
+			case 0xF5: /* timestamp */
+				go->parse_length = 12;
+				go->state = STATE_UNPARSED;
+				break;
+			case 0xF6: /* vbi */
+				go->state = STATE_VBI_LEN_A;
+				break;
+			case 0xF8: /* MD map */
+				go->parse_length = 0;
+				memset(go->active_map, 0,
+						sizeof(go->active_map));
+				go->state = STATE_MODET_MAP;
+				break;
+			case 0xFF: /* Potential JPEG start code */
+				store_byte(go->active_buf, 0x00);
+				store_byte(go->active_buf, 0x00);
+				store_byte(go->active_buf, 0x01);
+				go->state = STATE_FF;
+				break;
+			default:
+				store_byte(go->active_buf, 0x00);
+				store_byte(go->active_buf, 0x00);
+				store_byte(go->active_buf, 0x01);
+				store_byte(go->active_buf, buf[i]);
+				go->state = STATE_DATA;
+				break;
+			}
+			break;
+		case STATE_FF:
+			switch (buf[i]) {
+			case 0x00:
+				store_byte(go->active_buf, 0xFF);
+				go->state = STATE_00;
+				break;
+			case 0xFF:
+				store_byte(go->active_buf, 0xFF);
+				/* go->state remains STATE_FF */
+				break;
+			case 0xD8:
+				if (go->format == GO7007_FORMAT_MJPEG)
+					frame_boundary(go);
+				/* fall through */
+			default:
+				store_byte(go->active_buf, 0xFF);
+				store_byte(go->active_buf, buf[i]);
+				go->state = STATE_DATA;
+				break;
+			}
+			break;
+		case STATE_VBI_LEN_A:
+			go->parse_length = buf[i] << 8;
+			go->state = STATE_VBI_LEN_B;
+			break;
+		case STATE_VBI_LEN_B:
+			go->parse_length |= buf[i];
+			if (go->parse_length > 0)
+				go->state = STATE_UNPARSED;
+			else
+				go->state = STATE_DATA;
+			break;
+		case STATE_MODET_MAP:
+			if (go->parse_length < 204) {
+				if (go->parse_length & 1) {
+					go->modet_word |= buf[i];
+					write_bitmap_word(go);
+				} else
+					go->modet_word = buf[i] << 8;
+			} else if (go->parse_length == 207 && go->active_buf) {
+				go->active_buf->modet_active = buf[i];
+			}
+			if (++go->parse_length == 208)
+				go->state = STATE_DATA;
+			break;
+		case STATE_UNPARSED:
+			if (--go->parse_length == 0)
+				go->state = STATE_DATA;
+			break;
+		}
+	}
+
+	spin_unlock(&go->spinlock);
+}
+EXPORT_SYMBOL(go7007_parse_video_stream);
+
+/*
+ * Allocate a new go7007 struct.  Used by the hardware-specific probe.
+ */
+struct go7007 *go7007_alloc(struct go7007_board_info *board, struct device *dev)
+{
+	struct go7007 *go;
+	int i;
+
+	go = kmalloc(sizeof(struct go7007), GFP_KERNEL);
+	if (go == NULL)
+		return NULL;
+	go->dev = dev;
+	go->board_info = board;
+	go->board_id = 0;
+	go->tuner_type = -1;
+	go->channel_number = 0;
+	go->name[0] = 0;
+	init_MUTEX(&go->hw_lock);
+	init_waitqueue_head(&go->frame_waitq);
+	spin_lock_init(&go->spinlock);
+	go->video_dev = NULL;
+	go->ref_count = 0;
+	go->status = STATUS_INIT;
+	memset(&go->i2c_adapter, 0, sizeof(go->i2c_adapter));
+	go->i2c_adapter_online = 0;
+	go->interrupt_available = 0;
+	init_waitqueue_head(&go->interrupt_waitq);
+	go->in_use = 0;
+	go->input = 0;
+	if (board->sensor_flags & GO7007_SENSOR_TV) {
+		go->standard = GO7007_STD_NTSC;
+		go->width = 720;
+		go->height = 480;
+		go->sensor_framerate = 30000;
+	} else {
+		go->standard = GO7007_STD_OTHER;
+		go->width = board->sensor_width;
+		go->height = board->sensor_height;
+		go->sensor_framerate = board->sensor_framerate;
+	}
+	go->encoder_v_offset = board->sensor_v_offset;
+	go->encoder_h_offset = board->sensor_h_offset;
+	go->encoder_h_halve = 0;
+	go->encoder_v_halve = 0;
+	go->encoder_subsample = 0;
+	go->streaming = 0;
+	go->format = GO7007_FORMAT_MJPEG;
+	go->bitrate = 1500000;
+	go->fps_scale = 1;
+	go->pali = 0;
+	go->aspect_ratio = GO7007_RATIO_1_1;
+	go->gop_size = 0;
+	go->ipb = 0;
+	go->closed_gop = 0;
+	go->repeat_seqhead = 0;
+	go->seq_header_enable = 0;
+	go->gop_header_enable = 0;
+	go->dvd_mode = 0;
+	go->interlace_coding = 0;
+	for (i = 0; i < 4; ++i)
+		go->modet[i].enable = 0;;
+	for (i = 0; i < 1624; ++i)
+		go->modet_map[i] = 0;
+	go->audio_deliver = NULL;
+	go->audio_enabled = 0;
+	INIT_LIST_HEAD(&go->stream);
+
+	return go;
+}
+EXPORT_SYMBOL(go7007_alloc);
+
+/*
+ * Detach and unregister the encoder.  The go7007 struct won't be freed
+ * until v4l2 finishes releasing its resources and all associated fds are
+ * closed by applications.
+ */
+void go7007_remove(struct go7007 *go)
+{
+	if (go->i2c_adapter_online) {
+		if (i2c_del_adapter(&go->i2c_adapter) == 0)
+			go->i2c_adapter_online = 0;
+		else
+			printk(KERN_ERR
+				"go7007: error removing I2C adapter!\n");
+	}
+
+	if (go->audio_enabled)
+		go7007_snd_remove(go);
+	go7007_v4l2_remove(go);
+}
+EXPORT_SYMBOL(go7007_remove);
+
+MODULE_LICENSE("GPL v2");
diff --git a/drivers/staging/go7007/go7007-fw.c b/drivers/staging/go7007/go7007-fw.c
new file mode 100644
index 0000000..c2aea10
--- /dev/null
+++ b/drivers/staging/go7007/go7007-fw.c
@@ -0,0 +1,1639 @@
+/*
+ * Copyright (C) 2005-2006 Micronas USA Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License (Version 2) as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software Foundation,
+ * Inc., 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
+ */
+
+/*
+ * This file contains code to generate a firmware image for the GO7007SB
+ * encoder.  Much of the firmware is read verbatim from a file, but some of
+ * it concerning bitrate control and other things that can be configured at
+ * run-time are generated dynamically.  Note that the format headers
+ * generated here do not affect the functioning of the encoder; they are
+ * merely parroted back to the host at the start of each frame.
+ */
+
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/version.h>
+#include <linux/time.h>
+#include <linux/mm.h>
+#include <linux/device.h>
+#include <linux/i2c.h>
+#include <linux/firmware.h>
+#include <asm/byteorder.h>
+
+#include "go7007-priv.h"
+
+/* Constants used in the source firmware image to describe code segments */
+
+#define	FLAG_MODE_MJPEG		(1)
+#define	FLAG_MODE_MPEG1		(1<<1)
+#define	FLAG_MODE_MPEG2		(1<<2)
+#define	FLAG_MODE_MPEG4		(1<<3)
+#define	FLAG_MODE_H263		(1<<4)
+#define FLAG_MODE_ALL		(FLAG_MODE_MJPEG | FLAG_MODE_MPEG1 | \
+					FLAG_MODE_MPEG2 | FLAG_MODE_MPEG4 | \
+					FLAG_MODE_H263)
+#define FLAG_SPECIAL		(1<<8)
+
+#define SPECIAL_FRM_HEAD	0
+#define SPECIAL_BRC_CTRL	1
+#define SPECIAL_CONFIG		2
+#define SPECIAL_SEQHEAD		3
+#define SPECIAL_AV_SYNC		4
+#define SPECIAL_FINAL		5
+#define SPECIAL_AUDIO		6
+#define SPECIAL_MODET		7
+
+/* Little data class for creating MPEG headers bit-by-bit */
+
+struct code_gen {
+	unsigned char *p; /* destination */
+	u32 a; /* collects bits at the top of the variable */
+	int b; /* bit position of most recently-written bit */
+	int len; /* written out so far */
+};
+
+#define CODE_GEN(name, dest) struct code_gen name = { dest, 0, 32, 0 }
+
+#define CODE_ADD(name, val, length) do { \
+	name.b -= (length); \
+	name.a |= (val) << name.b; \
+	while (name.b <= 24) { \
+		*name.p = name.a >> 24; \
+		++name.p; \
+		name.a <<= 8; \
+		name.b += 8; \
+		name.len += 8; \
+	} \
+} while (0)
+
+#define CODE_LENGTH(name) (name.len + (32 - name.b))
+
+/* Tables for creating the bitrate control data */
+
+static const s16 converge_speed_ip[101] = {
+	1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
+	1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
+	1, 1, 1, 1, 1, 1, 1, 1, 1, 1,
+	1, 1, 1, 1, 1, 1, 1, 1, 1, 2,
+	2, 2, 2, 2, 2, 2, 2, 2, 2, 3,
+	3, 3, 3, 3, 3, 4, 4, 4, 4, 4,
+	5, 5, 5, 6, 6, 6, 7, 7, 8, 8,
+	9, 10, 10, 11, 12, 13, 14, 15, 16, 17,
+	19, 20, 22, 23, 25, 27, 30, 32, 35, 38,
+	41, 45, 49, 53, 58, 63, 69, 76, 83, 91,
+	100
+};
+
+static const s16 converge_speed_ipb[101] = {
+	3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
+	3, 3, 3, 3, 3, 3, 3, 3, 3, 3,
+	3, 3, 3, 3, 3, 4, 4, 4, 4, 4,
+	4, 4, 4, 4, 5, 5, 5, 5, 5, 6,
+	6, 6, 6, 7, 7, 7, 7, 8, 8, 9,
+	9, 9, 10, 10, 11, 12, 12, 13, 14, 14,
+	15, 16, 17, 18, 19, 20, 22, 23, 25, 26,
+	28, 30, 32, 34, 37, 40, 42, 46, 49, 53,
+	57, 61, 66, 71, 77, 83, 90, 97, 106, 115,
+	125, 135, 147, 161, 175, 191, 209, 228, 249, 273,
+	300
+};
+
+static const s16 LAMBDA_table[4][101] = {
+	{	16, 16, 16, 16, 17, 17, 17, 18, 18, 18,
+		19, 19, 19, 20, 20, 20, 21, 21, 22, 22,
+		22, 23, 23, 24, 24, 25, 25, 25, 26, 26,
+		27, 27, 28, 28, 29, 29, 30, 31, 31, 32,
+		32, 33, 33, 34, 35, 35, 36, 37, 37, 38,
+		39, 39, 40, 41, 42, 42, 43, 44, 45, 46,
+		46, 47, 48, 49, 50, 51, 52, 53, 54, 55,
+		56, 57, 58, 59, 60, 61, 62, 63, 64, 65,
+		67, 68, 69, 70, 72, 73, 74, 76, 77, 78,
+		80, 81, 83, 84, 86, 87, 89, 90, 92, 94,
+		96
+	},
+	{
+		20, 20, 20, 21, 21, 21, 22, 22, 23, 23,
+		23, 24, 24, 25, 25, 26, 26, 27, 27, 28,
+		28, 29, 29, 30, 30, 31, 31, 32, 33, 33,
+		34, 34, 35, 36, 36, 37, 38, 38, 39, 40,
+		40, 41, 42, 43, 43, 44, 45, 46, 47, 48,
+		48, 49, 50, 51, 52, 53, 54, 55, 56, 57,
+		58, 59, 60, 61, 62, 64, 65, 66, 67, 68,
+		70, 71, 72, 73, 75, 76, 78, 79, 80, 82,
+		83, 85, 86, 88, 90, 91, 93, 95, 96, 98,
+		100, 102, 103, 105, 107, 109, 111, 113, 115, 117,
+		120
+	},
+	{
+		24, 24, 24, 25, 25, 26, 26, 27, 27, 28,
+		28, 29, 29, 30, 30, 31, 31, 32, 33, 33,
+		34, 34, 35, 36, 36, 37, 38, 38, 39, 40,
+		41, 41, 42, 43, 44, 44, 45, 46, 47, 48,
+		49, 50, 50, 51, 52, 53, 54, 55, 56, 57,
+		58, 59, 60, 62, 63, 64, 65, 66, 67, 69,
+		70, 71, 72, 74, 75, 76, 78, 79, 81, 82,
+		84, 85, 87, 88, 90, 92, 93, 95, 97, 98,
+		100, 102, 104, 106, 108, 110, 112, 114, 116, 118,
+		120, 122, 124, 127, 129, 131, 134, 136, 138, 141,
+		144
+	},
+	{
+		32, 32, 33, 33, 34, 34, 35, 36, 36, 37,
+		38, 38, 39, 40, 41, 41, 42, 43, 44, 44,
+		45, 46, 47, 48, 49, 50, 50, 51, 52, 53,
+		54, 55, 56, 57, 58, 59, 60, 62, 63, 64,
+		65, 66, 67, 69, 70, 71, 72, 74, 75, 76,
+		78, 79, 81, 82, 84, 85, 87, 88, 90, 92,
+		93, 95, 97, 98, 100, 102, 104, 106, 108, 110,
+		112, 114, 116, 118, 120, 122, 124, 127, 129, 131,
+		134, 136, 139, 141, 144, 146, 149, 152, 154, 157,
+		160, 163, 166, 169, 172, 175, 178, 181, 185, 188,
+		192
+	}
+};
+
+/* MPEG blank frame generation tables */
+
+enum mpeg_frame_type {
+	PFRAME,
+	BFRAME_PRE,
+	BFRAME_POST,
+	BFRAME_BIDIR,
+	BFRAME_EMPTY
+};
+
+static const u32 addrinctab[33][2] = {
+	{ 0x01, 1 },	{ 0x03, 3 },	{ 0x02, 3 },	{ 0x03, 4 },
+	{ 0x02, 4 },	{ 0x03, 5 },	{ 0x02, 5 },	{ 0x07, 7 },
+	{ 0x06, 7 },	{ 0x0b, 8 },	{ 0x0a, 8 },	{ 0x09, 8 },
+	{ 0x08, 8 },	{ 0x07, 8 },	{ 0x06, 8 },	{ 0x17, 10 },
+	{ 0x16, 10 },	{ 0x15, 10 },	{ 0x14, 10 },	{ 0x13, 10 },
+	{ 0x12, 10 },	{ 0x23, 11 },	{ 0x22, 11 },	{ 0x21, 11 },
+	{ 0x20, 11 },	{ 0x1f, 11 },	{ 0x1e, 11 },	{ 0x1d, 11 },
+	{ 0x1c, 11 },	{ 0x1b, 11 },	{ 0x1a, 11 },	{ 0x19, 11 },
+	{ 0x18, 11 }
+};
+
+/* Standard JPEG tables */
+
+static const u8 default_intra_quant_table[] = {
+	 8, 16, 19, 22, 26, 27, 29, 34,
+	16, 16, 22, 24, 27, 29, 34, 37,
+	19, 22, 26, 27, 29, 34, 34, 38,
+	22, 22, 26, 27, 29, 34, 37, 40,
+	22, 26, 27, 29, 32, 35, 40, 48,
+	26, 27, 29, 32, 35, 40, 48, 58,
+	26, 27, 29, 34, 38, 46, 56, 69,
+	27, 29, 35, 38, 46, 56, 69, 83
+};
+
+static const u8 bits_dc_luminance[] = {
+	0, 0, 1, 5, 1, 1, 1, 1, 1, 1, 0, 0, 0, 0, 0, 0, 0
+};
+
+static const u8 val_dc_luminance[] = {
+	0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11
+};
+
+static const u8 bits_dc_chrominance[] = {
+	0, 0, 3, 1, 1, 1, 1, 1, 1, 1, 1, 1, 0, 0, 0, 0, 0
+};
+
+static const u8 val_dc_chrominance[] = {
+	0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11
+};
+
+static const u8 bits_ac_luminance[] = {
+	0, 0, 2, 1, 3, 3, 2, 4, 3, 5, 5, 4, 4, 0, 0, 1, 0x7d
+};
+
+static const u8 val_ac_luminance[] = {
+	0x01, 0x02, 0x03, 0x00, 0x04, 0x11, 0x05, 0x12,
+	0x21, 0x31, 0x41, 0x06, 0x13, 0x51, 0x61, 0x07,
+	0x22, 0x71, 0x14, 0x32, 0x81, 0x91, 0xa1, 0x08,
+	0x23, 0x42, 0xb1, 0xc1, 0x15, 0x52, 0xd1, 0xf0,
+	0x24, 0x33, 0x62, 0x72, 0x82, 0x09, 0x0a, 0x16,
+	0x17, 0x18, 0x19, 0x1a, 0x25, 0x26, 0x27, 0x28,
+	0x29, 0x2a, 0x34, 0x35, 0x36, 0x37, 0x38, 0x39,
+	0x3a, 0x43, 0x44, 0x45, 0x46, 0x47, 0x48, 0x49,
+	0x4a, 0x53, 0x54, 0x55, 0x56, 0x57, 0x58, 0x59,
+	0x5a, 0x63, 0x64, 0x65, 0x66, 0x67, 0x68, 0x69,
+	0x6a, 0x73, 0x74, 0x75, 0x76, 0x77, 0x78, 0x79,
+	0x7a, 0x83, 0x84, 0x85, 0x86, 0x87, 0x88, 0x89,
+	0x8a, 0x92, 0x93, 0x94, 0x95, 0x96, 0x97, 0x98,
+	0x99, 0x9a, 0xa2, 0xa3, 0xa4, 0xa5, 0xa6, 0xa7,
+	0xa8, 0xa9, 0xaa, 0xb2, 0xb3, 0xb4, 0xb5, 0xb6,
+	0xb7, 0xb8, 0xb9, 0xba, 0xc2, 0xc3, 0xc4, 0xc5,
+	0xc6, 0xc7, 0xc8, 0xc9, 0xca, 0xd2, 0xd3, 0xd4,
+	0xd5, 0xd6, 0xd7, 0xd8, 0xd9, 0xda, 0xe1, 0xe2,
+	0xe3, 0xe4, 0xe5, 0xe6, 0xe7, 0xe8, 0xe9, 0xea,
+	0xf1, 0xf2, 0xf3, 0xf4, 0xf5, 0xf6, 0xf7, 0xf8,
+	0xf9, 0xfa
+};
+
+static const u8 bits_ac_chrominance[] = {
+	0, 0, 2, 1, 2, 4, 4, 3, 4, 7, 5, 4, 4, 0, 1, 2, 0x77
+};
+
+static const u8 val_ac_chrominance[] = {
+	0x00, 0x01, 0x02, 0x03, 0x11, 0x04, 0x05, 0x21,
+	0x31, 0x06, 0x12, 0x41, 0x51, 0x07, 0x61, 0x71,
+	0x13, 0x22, 0x32, 0x81, 0x08, 0x14, 0x42, 0x91,
+	0xa1, 0xb1, 0xc1, 0x09, 0x23, 0x33, 0x52, 0xf0,
+	0x15, 0x62, 0x72, 0xd1, 0x0a, 0x16, 0x24, 0x34,
+	0xe1, 0x25, 0xf1, 0x17, 0x18, 0x19, 0x1a, 0x26,
+	0x27, 0x28, 0x29, 0x2a, 0x35, 0x36, 0x37, 0x38,
+	0x39, 0x3a, 0x43, 0x44, 0x45, 0x46, 0x47, 0x48,
+	0x49, 0x4a, 0x53, 0x54, 0x55, 0x56, 0x57, 0x58,
+	0x59, 0x5a, 0x63, 0x64, 0x65, 0x66, 0x67, 0x68,
+	0x69, 0x6a, 0x73, 0x74, 0x75, 0x76, 0x77, 0x78,
+	0x79, 0x7a, 0x82, 0x83, 0x84, 0x85, 0x86, 0x87,
+	0x88, 0x89, 0x8a, 0x92, 0x93, 0x94, 0x95, 0x96,
+	0x97, 0x98, 0x99, 0x9a, 0xa2, 0xa3, 0xa4, 0xa5,
+	0xa6, 0xa7, 0xa8, 0xa9, 0xaa, 0xb2, 0xb3, 0xb4,
+	0xb5, 0xb6, 0xb7, 0xb8, 0xb9, 0xba, 0xc2, 0xc3,
+	0xc4, 0xc5, 0xc6, 0xc7, 0xc8, 0xc9, 0xca, 0xd2,
+	0xd3, 0xd4, 0xd5, 0xd6, 0xd7, 0xd8, 0xd9, 0xda,
+	0xe2, 0xe3, 0xe4, 0xe5, 0xe6, 0xe7, 0xe8, 0xe9,
+	0xea, 0xf2, 0xf3, 0xf4, 0xf5, 0xf6, 0xf7, 0xf8,
+	0xf9, 0xfa
+};
+
+/* Zig-zag mapping for quant table
+ *
+ * OK, let's do this mapping on the actual table above so it doesn't have
+ * to be done on the fly.
+ */
+static const int zz[64] = {
+	0,   1,  8, 16,  9,  2,  3, 10, 17, 24, 32, 25, 18, 11,  4,  5,
+	12, 19, 26, 33, 40, 48, 41, 34, 27, 20, 13,  6,  7, 14, 21, 28,
+	35, 42, 49, 56, 57, 50, 43, 36, 29, 22, 15, 23, 30, 37, 44, 51,
+	58, 59, 52, 45, 38, 31, 39, 46, 53, 60, 61, 54, 47, 55, 62, 63
+};
+
+static int copy_packages(u16 *dest, u16 *src, int pkg_cnt, int space)
+{
+	int i, cnt = pkg_cnt * 32;
+
+	if (space < cnt)
+		return -1;
+
+	for (i = 0; i < cnt; ++i)
+		dest[i] = __cpu_to_le16(src[i]);
+
+	return cnt;
+}
+
+static int mjpeg_frame_header(struct go7007 *go, unsigned char *buf, int q)
+{
+	int i, p = 0;
+
+	buf[p++] = 0xff;
+	buf[p++] = 0xd8;
+	buf[p++] = 0xff;
+	buf[p++] = 0xdb;
+	buf[p++] = 0;
+	buf[p++] = 2 + 65;
+	buf[p++] = 0;
+	buf[p++] = default_intra_quant_table[0];
+	for (i = 1; i < 64; ++i)
+		/* buf[p++] = (default_intra_quant_table[i] * q) >> 3; */
+		buf[p++] = (default_intra_quant_table[zz[i]] * q) >> 3;
+	buf[p++] = 0xff;
+	buf[p++] = 0xc0;
+	buf[p++] = 0;
+	buf[p++] = 17;
+	buf[p++] = 8;
+	buf[p++] = go->height >> 8;
+	buf[p++] = go->height & 0xff;
+	buf[p++] = go->width >> 8;
+	buf[p++] = go->width & 0xff;
+	buf[p++] = 3;
+	buf[p++] = 1;
+	buf[p++] = 0x22;
+	buf[p++] = 0;
+	buf[p++] = 2;
+	buf[p++] = 0x11;
+	buf[p++] = 0;
+	buf[p++] = 3;
+	buf[p++] = 0x11;
+	buf[p++] = 0;
+	buf[p++] = 0xff;
+	buf[p++] = 0xc4;
+	buf[p++] = 418 >> 8;
+	buf[p++] = 418 & 0xff;
+	buf[p++] = 0x00;
+	memcpy(buf + p, bits_dc_luminance + 1, 16);
+	p += 16;
+	memcpy(buf + p, val_dc_luminance, sizeof(val_dc_luminance));
+	p += sizeof(val_dc_luminance);
+	buf[p++] = 0x01;
+	memcpy(buf + p, bits_dc_chrominance + 1, 16);
+	p += 16;
+	memcpy(buf + p, val_dc_chrominance, sizeof(val_dc_chrominance));
+	p += sizeof(val_dc_chrominance);
+	buf[p++] = 0x10;
+	memcpy(buf + p, bits_ac_luminance + 1, 16);
+	p += 16;
+	memcpy(buf + p, val_ac_luminance, sizeof(val_ac_luminance));
+	p += sizeof(val_ac_luminance);
+	buf[p++] = 0x11;
+	memcpy(buf + p, bits_ac_chrominance + 1, 16);
+	p += 16;
+	memcpy(buf + p, val_ac_chrominance, sizeof(val_ac_chrominance));
+	p += sizeof(val_ac_chrominance);
+	buf[p++] = 0xff;
+	buf[p++] = 0xda;
+	buf[p++] = 0;
+	buf[p++] = 12;
+	buf[p++] = 3;
+	buf[p++] = 1;
+	buf[p++] = 0x00;
+	buf[p++] = 2;
+	buf[p++] = 0x11;
+	buf[p++] = 3;
+	buf[p++] = 0x11;
+	buf[p++] = 0;
+	buf[p++] = 63;
+	buf[p++] = 0;
+	return p;
+}
+
+static int gen_mjpeghdr_to_package(struct go7007 *go, u16 *code, int space)
+{
+	u8 *buf;
+	u16 mem = 0x3e00;
+	unsigned int addr = 0x19;
+	int size = 0, i, off = 0, chunk;
+
+	buf = kmalloc(4096, GFP_KERNEL);
+	if (buf == NULL) {
+		printk(KERN_ERR "go7007: unable to allocate 4096 bytes for "
+				"firmware construction\n");
+		return -1;
+	}
+	memset(buf, 0, 4096);
+
+	for (i = 1; i < 32; ++i) {
+		mjpeg_frame_header(go, buf + size, i);
+		size += 80;
+	}
+	chunk = mjpeg_frame_header(go, buf + size, 1);
+	memmove(buf + size, buf + size + 80, chunk - 80);
+	size += chunk - 80;
+
+	for (i = 0; i < size; i += chunk * 2) {
+		if (space - off < 32) {
+			off = -1;
+			goto done;
+		}
+
+		code[off + 1] = __cpu_to_le16(0x8000 | mem);
+
+		chunk = 28;
+		if (mem + chunk > 0x4000)
+			chunk = 0x4000 - mem;
+		if (i + 2 * chunk > size)
+			chunk = (size - i) / 2;
+
+		if (chunk < 28) {
+			code[off] = __cpu_to_le16(0x4000 | chunk);
+			code[off + 31] = __cpu_to_le16(addr++);
+			mem = 0x3e00;
+		} else {
+			code[off] = __cpu_to_le16(0x1000 | 28);
+			code[off + 31] = 0;
+			mem += 28;
+		}
+
+		memcpy(&code[off + 2], buf + i, chunk * 2);
+		off += 32;
+	}
+done:
+	kfree(buf);
+	return off;
+}
+
+static int mpeg1_frame_header(struct go7007 *go, unsigned char *buf,
+		int modulo, int pict_struct, enum mpeg_frame_type frame)
+{
+	int i, j, mb_code, mb_len;
+	int rows = go->interlace_coding ? go->height / 32 : go->height / 16;
+	CODE_GEN(c, buf + 6);
+
+	switch (frame) {
+	case PFRAME:
+		mb_code = 0x1;
+		mb_len = 3;
+		break;
+	case BFRAME_PRE:
+		mb_code = 0x2;
+		mb_len = 4;
+		break;
+	case BFRAME_POST:
+		mb_code = 0x2;
+		mb_len = 3;
+		break;
+	case BFRAME_BIDIR:
+		mb_code = 0x2;
+		mb_len = 2;
+		break;
+	default: /* keep the compiler happy */
+		mb_code = mb_len = 0;
+		break;
+	}
+
+	CODE_ADD(c, frame == PFRAME ? 0x2 : 0x3, 13);
+	CODE_ADD(c, 0xffff, 16);
+	CODE_ADD(c, go->format == GO7007_FORMAT_MPEG2 ? 0x7 : 0x4, 4);
+	if (frame != PFRAME)
+		CODE_ADD(c, go->format == GO7007_FORMAT_MPEG2 ? 0x7 : 0x4, 4);
+	else
+		CODE_ADD(c, 0, 4); /* Is this supposed to be here?? */
+	CODE_ADD(c, 0, 3); /* What is this?? */
+	/* Byte-align with zeros */
+	j = 8 - (CODE_LENGTH(c) % 8);
+	if (j != 8)
+		CODE_ADD(c, 0, j);
+
+	if (go->format == GO7007_FORMAT_MPEG2) {
+		CODE_ADD(c, 0x1, 24);
+		CODE_ADD(c, 0xb5, 8);
+		CODE_ADD(c, 0x844, 12);
+		CODE_ADD(c, frame == PFRAME ? 0xff : 0x44, 8);
+		if (go->interlace_coding) {
+			CODE_ADD(c, pict_struct, 4);
+			if (go->dvd_mode)
+				CODE_ADD(c, 0x000, 11);
+			else
+				CODE_ADD(c, 0x200, 11);
+		} else {
+			CODE_ADD(c, 0x3, 4);
+			CODE_ADD(c, 0x20c, 11);
+		}
+		/* Byte-align with zeros */
+		j = 8 - (CODE_LENGTH(c) % 8);
+		if (j != 8)
+			CODE_ADD(c, 0, j);
+	}
+
+	for (i = 0; i < rows; ++i) {
+		CODE_ADD(c, 1, 24);
+		CODE_ADD(c, i + 1, 8);
+		CODE_ADD(c, 0x2, 6);
+		CODE_ADD(c, 0x1, 1);
+		CODE_ADD(c, mb_code, mb_len);
+		if (go->interlace_coding) {
+			CODE_ADD(c, 0x1, 2);
+			CODE_ADD(c, pict_struct == 1 ? 0x0 : 0x1, 1);
+		}
+		if (frame == BFRAME_BIDIR) {
+			CODE_ADD(c, 0x3, 2);
+			if (go->interlace_coding)
+				CODE_ADD(c, pict_struct == 1 ? 0x0 : 0x1, 1);
+		}
+		CODE_ADD(c, 0x3, 2);
+		for (j = (go->width >> 4) - 2; j >= 33; j -= 33)
+			CODE_ADD(c, 0x8, 11);
+		CODE_ADD(c, addrinctab[j][0], addrinctab[j][1]);
+		CODE_ADD(c, mb_code, mb_len);
+		if (go->interlace_coding) {
+			CODE_ADD(c, 0x1, 2);
+			CODE_ADD(c, pict_struct == 1 ? 0x0 : 0x1, 1);
+		}
+		if (frame == BFRAME_BIDIR) {
+			CODE_ADD(c, 0x3, 2);
+			if (go->interlace_coding)
+				CODE_ADD(c, pict_struct == 1 ? 0x0 : 0x1, 1);
+		}
+		CODE_ADD(c, 0x3, 2);
+
+		/* Byte-align with zeros */
+		j = 8 - (CODE_LENGTH(c) % 8);
+		if (j != 8)
+			CODE_ADD(c, 0, j);
+	}
+
+	i = CODE_LENGTH(c) + 4 * 8;
+	buf[2] = 0x00;
+	buf[3] = 0x00;
+	buf[4] = 0x01;
+	buf[5] = 0x00;
+	return i;
+}
+
+static int mpeg1_sequence_header(struct go7007 *go, unsigned char *buf, int ext)
+{
+	int i, aspect_ratio, picture_rate;
+	CODE_GEN(c, buf + 6);
+
+	if (go->format == GO7007_FORMAT_MPEG1) {
+		switch (go->aspect_ratio) {
+		case GO7007_RATIO_4_3:
+			aspect_ratio = go->standard == GO7007_STD_NTSC ? 3 : 2;
+			break;
+		case GO7007_RATIO_16_9:
+			aspect_ratio = go->standard == GO7007_STD_NTSC ? 5 : 4;
+			break;
+		default:
+			aspect_ratio = 1;
+			break;
+		}
+	} else {
+		switch (go->aspect_ratio) {
+		case GO7007_RATIO_4_3:
+			aspect_ratio = 2;
+			break;
+		case GO7007_RATIO_16_9:
+			aspect_ratio = 3;
+			break;
+		default:
+			aspect_ratio = 1;
+			break;
+		}
+	}
+	switch (go->sensor_framerate) {
+	case 24000:
+		picture_rate = 1;
+		break;
+	case 24024:
+		picture_rate = 2;
+		break;
+	case 25025:
+		picture_rate = go->interlace_coding ? 6 : 3;
+		break;
+	case 30000:
+		picture_rate = go->interlace_coding ? 7 : 4;
+		break;
+	case 30030:
+		picture_rate = go->interlace_coding ? 8 : 5;
+		break;
+	default:
+		picture_rate = 5; /* 30 fps seems like a reasonable default */
+		break;
+	}
+
+	CODE_ADD(c, go->width, 12);
+	CODE_ADD(c, go->height, 12);
+	CODE_ADD(c, aspect_ratio, 4);
+	CODE_ADD(c, picture_rate, 4);
+	CODE_ADD(c, go->format == GO7007_FORMAT_MPEG2 ? 20000 : 0x3ffff, 18);
+	CODE_ADD(c, 1, 1);
+	CODE_ADD(c, go->format == GO7007_FORMAT_MPEG2 ? 112 : 20, 10);
+	CODE_ADD(c, 0, 3);
+
+	/* Byte-align with zeros */
+	i = 8 - (CODE_LENGTH(c) % 8);
+	if (i != 8)
+		CODE_ADD(c, 0, i);
+
+	if (go->format == GO7007_FORMAT_MPEG2) {
+		CODE_ADD(c, 0x1, 24);
+		CODE_ADD(c, 0xb5, 8);
+		CODE_ADD(c, 0x148, 12);
+		if (go->interlace_coding)
+			CODE_ADD(c, 0x20001, 20);
+		else
+			CODE_ADD(c, 0xa0001, 20);
+		CODE_ADD(c, 0, 16);
+
+		/* Byte-align with zeros */
+		i = 8 - (CODE_LENGTH(c) % 8);
+		if (i != 8)
+			CODE_ADD(c, 0, i);
+
+		if (ext) {
+			CODE_ADD(c, 0x1, 24);
+			CODE_ADD(c, 0xb52, 12);
+			CODE_ADD(c, go->standard == GO7007_STD_NTSC ? 2 : 1, 3);
+			CODE_ADD(c, 0x105, 9);
+			CODE_ADD(c, 0x505, 16);
+			CODE_ADD(c, go->width, 14);
+			CODE_ADD(c, 1, 1);
+			CODE_ADD(c, go->height, 14);
+
+			/* Byte-align with zeros */
+			i = 8 - (CODE_LENGTH(c) % 8);
+			if (i != 8)
+				CODE_ADD(c, 0, i);
+		}
+	}
+
+	i = CODE_LENGTH(c) + 4 * 8;
+	buf[0] = i & 0xff;
+	buf[1] = i >> 8;
+	buf[2] = 0x00;
+	buf[3] = 0x00;
+	buf[4] = 0x01;
+	buf[5] = 0xb3;
+	return i;
+}
+
+static int gen_mpeg1hdr_to_package(struct go7007 *go,
+					u16 *code, int space, int *framelen)
+{
+	u8 *buf;
+	u16 mem = 0x3e00;
+	unsigned int addr = 0x19;
+	int i, off = 0, chunk;
+
+	buf = kmalloc(5120, GFP_KERNEL);
+	if (buf == NULL) {
+		printk(KERN_ERR "go7007: unable to allocate 5120 bytes for "
+				"firmware construction\n");
+		return -1;
+	}
+	memset(buf, 0, 5120);
+	framelen[0] = mpeg1_frame_header(go, buf, 0, 1, PFRAME);
+	if (go->interlace_coding)
+		framelen[0] += mpeg1_frame_header(go, buf + framelen[0] / 8,
+							0, 2, PFRAME);
+	buf[0] = framelen[0] & 0xff;
+	buf[1] = framelen[0] >> 8;
+	i = 368;
+	framelen[1] = mpeg1_frame_header(go, buf + i, 0, 1, BFRAME_PRE);
+	if (go->interlace_coding)
+		framelen[1] += mpeg1_frame_header(go, buf + i + framelen[1] / 8,
+							0, 2, BFRAME_PRE);
+	buf[i] = framelen[1] & 0xff;
+	buf[i + 1] = framelen[1] >> 8;
+	i += 1632;
+	framelen[2] = mpeg1_frame_header(go, buf + i, 0, 1, BFRAME_POST);
+	if (go->interlace_coding)
+		framelen[2] += mpeg1_frame_header(go, buf + i + framelen[2] / 8,
+							0, 2, BFRAME_POST);
+	buf[i] = framelen[2] & 0xff;
+	buf[i + 1] = framelen[2] >> 8;
+	i += 1432;
+	framelen[3] = mpeg1_frame_header(go, buf + i, 0, 1, BFRAME_BIDIR);
+	if (go->interlace_coding)
+		framelen[3] += mpeg1_frame_header(go, buf + i + framelen[3] / 8,
+							0, 2, BFRAME_BIDIR);
+	buf[i] = framelen[3] & 0xff;
+	buf[i + 1] = framelen[3] >> 8;
+	i += 1632 + 16;
+	mpeg1_sequence_header(go, buf + i, 0);
+	i += 40;
+	for (i = 0; i < 5120; i += chunk * 2) {
+		if (space - off < 32) {
+			off = -1;
+			goto done;
+		}
+
+		code[off + 1] = __cpu_to_le16(0x8000 | mem);
+
+		chunk = 28;
+		if (mem + chunk > 0x4000)
+			chunk = 0x4000 - mem;
+		if (i + 2 * chunk > 5120)
+			chunk = (5120 - i) / 2;
+
+		if (chunk < 28) {
+			code[off] = __cpu_to_le16(0x4000 | chunk);
+			code[off + 31] = __cpu_to_le16(addr);
+			if (mem + chunk == 0x4000) {
+				mem = 0x3e00;
+				++addr;
+			}
+		} else {
+			code[off] = __cpu_to_le16(0x1000 | 28);
+			code[off + 31] = 0;
+			mem += 28;
+		}
+
+		memcpy(&code[off + 2], buf + i, chunk * 2);
+		off += 32;
+	}
+done:
+	kfree(buf);
+	return off;
+}
+
+static int vti_bitlen(struct go7007 *go)
+{
+	unsigned int i, max_time_incr = go->sensor_framerate / go->fps_scale;
+
+	for (i = 31; (max_time_incr & ((1 << i) - 1)) == max_time_incr; --i);
+	return i + 1;
+}
+
+static int mpeg4_frame_header(struct go7007 *go, unsigned char *buf,
+		int modulo, enum mpeg_frame_type frame)
+{
+	int i;
+	CODE_GEN(c, buf + 6);
+	int mb_count = (go->width >> 4) * (go->height >> 4);
+
+	CODE_ADD(c, frame == PFRAME ? 0x1 : 0x2, 2);
+	if (modulo)
+		CODE_ADD(c, 0x1, 1);
+	CODE_ADD(c, 0x1, 2);
+	CODE_ADD(c, 0, vti_bitlen(go));
+	CODE_ADD(c, 0x3, 2);
+	if (frame == PFRAME)
+		CODE_ADD(c, 0, 1);
+	CODE_ADD(c, 0xc, 11);
+	if (frame != PFRAME)
+		CODE_ADD(c, 0x4, 3);
+	if (frame != BFRAME_EMPTY) {
+		for (i = 0; i < mb_count; ++i) {
+			switch (frame) {
+			case PFRAME:
+				CODE_ADD(c, 0x1, 1);
+				break;
+			case BFRAME_PRE:
+				CODE_ADD(c, 0x47, 8);
+				break;
+			case BFRAME_POST:
+				CODE_ADD(c, 0x27, 7);
+				break;
+			case BFRAME_BIDIR:
+				CODE_ADD(c, 0x5f, 8);
+				break;
+			case BFRAME_EMPTY: /* keep compiler quiet */
+				break;
+			}
+		}
+	}
+
+	/* Byte-align with a zero followed by ones */
+	i = 8 - (CODE_LENGTH(c) % 8);
+	CODE_ADD(c, 0, 1);
+	CODE_ADD(c, (1 << (i - 1)) - 1, i - 1);
+
+	i = CODE_LENGTH(c) + 4 * 8;
+	buf[0] = i & 0xff;
+	buf[1] = i >> 8;
+	buf[2] = 0x00;
+	buf[3] = 0x00;
+	buf[4] = 0x01;
+	buf[5] = 0xb6;
+	return i;
+}
+
+static int mpeg4_sequence_header(struct go7007 *go, unsigned char *buf, int ext)
+{
+	const unsigned char head[] = { 0x00, 0x00, 0x01, 0xb0, go->pali,
+		0x00, 0x00, 0x01, 0xb5, 0x09,
+		0x00, 0x00, 0x01, 0x00,
+		0x00, 0x00, 0x01, 0x20, };
+	int i, aspect_ratio;
+	int fps = go->sensor_framerate / go->fps_scale;
+	CODE_GEN(c, buf + 2 + sizeof(head));
+
+	switch (go->aspect_ratio) {
+	case GO7007_RATIO_4_3:
+		aspect_ratio = go->standard == GO7007_STD_NTSC ? 3 : 2;
+		break;
+	case GO7007_RATIO_16_9:
+		aspect_ratio = go->standard == GO7007_STD_NTSC ? 5 : 4;
+		break;
+	default:
+		aspect_ratio = 1;
+		break;
+	}
+
+	memcpy(buf + 2, head, sizeof(head));
+	CODE_ADD(c, 0x191, 17);
+	CODE_ADD(c, aspect_ratio, 4);
+	CODE_ADD(c, 0x1, 4);
+	CODE_ADD(c, fps, 16);
+	CODE_ADD(c, 0x3, 2);
+	CODE_ADD(c, 1001, vti_bitlen(go));
+	CODE_ADD(c, 1, 1);
+	CODE_ADD(c, go->width, 13);
+	CODE_ADD(c, 1, 1);
+	CODE_ADD(c, go->height, 13);
+	CODE_ADD(c, 0x2830, 14);
+
+	/* Byte-align */
+	i = 8 - (CODE_LENGTH(c) % 8);
+	CODE_ADD(c, 0, 1);
+	CODE_ADD(c, (1 << (i - 1)) - 1, i - 1);
+
+	i = CODE_LENGTH(c) + sizeof(head) * 8;
+	buf[0] = i & 0xff;
+	buf[1] = i >> 8;
+	return i;
+}
+
+static int gen_mpeg4hdr_to_package(struct go7007 *go,
+					u16 *code, int space, int *framelen)
+{
+	u8 *buf;
+	u16 mem = 0x3e00;
+	unsigned int addr = 0x19;
+	int i, off = 0, chunk;
+
+	buf = kmalloc(5120, GFP_KERNEL);
+	if (buf == NULL) {
+		printk(KERN_ERR "go7007: unable to allocate 5120 bytes for "
+				"firmware construction\n");
+		return -1;
+	}
+	memset(buf, 0, 5120);
+	framelen[0] = mpeg4_frame_header(go, buf, 0, PFRAME);
+	i = 368;
+	framelen[1] = mpeg4_frame_header(go, buf + i, 0, BFRAME_PRE);
+	i += 1632;
+	framelen[2] = mpeg4_frame_header(go, buf + i, 0, BFRAME_POST);
+	i += 1432;
+	framelen[3] = mpeg4_frame_header(go, buf + i, 0, BFRAME_BIDIR);
+	i += 1632;
+	mpeg4_frame_header(go, buf + i, 0, BFRAME_EMPTY);
+	i += 16;
+	mpeg4_sequence_header(go, buf + i, 0);
+	i += 40;
+	for (i = 0; i < 5120; i += chunk * 2) {
+		if (space - off < 32) {
+			off = -1;
+			goto done;
+		}
+
+		code[off + 1] = __cpu_to_le16(0x8000 | mem);
+
+		chunk = 28;
+		if (mem + chunk > 0x4000)
+			chunk = 0x4000 - mem;
+		if (i + 2 * chunk > 5120)
+			chunk = (5120 - i) / 2;
+
+		if (chunk < 28) {
+			code[off] = __cpu_to_le16(0x4000 | chunk);
+			code[off + 31] = __cpu_to_le16(addr);
+			if (mem + chunk == 0x4000) {
+				mem = 0x3e00;
+				++addr;
+			}
+		} else {
+			code[off] = __cpu_to_le16(0x1000 | 28);
+			code[off + 31] = 0;
+			mem += 28;
+		}
+
+		memcpy(&code[off + 2], buf + i, chunk * 2);
+		off += 32;
+	}
+	mem = 0x3e00;
+	addr = go->ipb ? 0x14f9 : 0x0af9;
+	memset(buf, 0, 5120);
+	framelen[4] = mpeg4_frame_header(go, buf, 1, PFRAME);
+	i = 368;
+	framelen[5] = mpeg4_frame_header(go, buf + i, 1, BFRAME_PRE);
+	i += 1632;
+	framelen[6] = mpeg4_frame_header(go, buf + i, 1, BFRAME_POST);
+	i += 1432;
+	framelen[7] = mpeg4_frame_header(go, buf + i, 1, BFRAME_BIDIR);
+	i += 1632;
+	mpeg4_frame_header(go, buf + i, 1, BFRAME_EMPTY);
+	i += 16;
+	for (i = 0; i < 5120; i += chunk * 2) {
+		if (space - off < 32) {
+			off = -1;
+			goto done;
+		}
+
+		code[off + 1] = __cpu_to_le16(0x8000 | mem);
+
+		chunk = 28;
+		if (mem + chunk > 0x4000)
+			chunk = 0x4000 - mem;
+		if (i + 2 * chunk > 5120)
+			chunk = (5120 - i) / 2;
+
+		if (chunk < 28) {
+			code[off] = __cpu_to_le16(0x4000 | chunk);
+			code[off + 31] = __cpu_to_le16(addr);
+			if (mem + chunk == 0x4000) {
+				mem = 0x3e00;
+				++addr;
+			}
+		} else {
+			code[off] = __cpu_to_le16(0x1000 | 28);
+			code[off + 31] = 0;
+			mem += 28;
+		}
+
+		memcpy(&code[off + 2], buf + i, chunk * 2);
+		off += 32;
+	}
+done:
+	kfree(buf);
+	return off;
+}
+
+static int brctrl_to_package(struct go7007 *go,
+					u16 *code, int space, int *framelen)
+{
+	int converge_speed = 0;
+	int lambda = (go->format == GO7007_FORMAT_MJPEG || go->dvd_mode) ?
+				100 : 0;
+	int peak_rate = 6 * go->bitrate / 5;
+	int vbv_buffer = go->format == GO7007_FORMAT_MJPEG ?
+				go->bitrate :
+				(go->dvd_mode ? 900000 : peak_rate);
+	int fps = go->sensor_framerate / go->fps_scale;
+	int q = 0;
+	/* Bizarre math below depends on rounding errors in division */
+	u32 sgop_expt_addr = go->bitrate / 32 * (go->ipb ? 3 : 1) * 1001 / fps;
+	u32 sgop_peak_addr = peak_rate / 32 * 1001 / fps;
+	u32 total_expt_addr = go->bitrate / 32 * 1000 / fps * (fps / 1000);
+	u32 vbv_alert_addr = vbv_buffer * 3 / (4 * 32);
+	u32 cplx[] = {
+		q > 0 ? sgop_expt_addr * q :
+			2 * go->width * go->height * (go->ipb ? 6 : 4) / 32,
+		q > 0 ? sgop_expt_addr * q :
+			2 * go->width * go->height * (go->ipb ? 6 : 4) / 32,
+		q > 0 ? sgop_expt_addr * q :
+			2 * go->width * go->height * (go->ipb ? 6 : 4) / 32,
+		q > 0 ? sgop_expt_addr * q :
+			2 * go->width * go->height * (go->ipb ? 6 : 4) / 32,
+	};
+	u32 calc_q = q > 0 ? q : cplx[0] / sgop_expt_addr;
+	u16 pack[] = {
+		0x200e,		0x0000,
+		0xBF20,		go->ipb ? converge_speed_ipb[converge_speed]
+					: converge_speed_ip[converge_speed],
+		0xBF21,		go->ipb ? 2 : 0,
+		0xBF22,		go->ipb ? LAMBDA_table[0][lambda / 2 + 50]
+					: 32767,
+		0xBF23,		go->ipb ? LAMBDA_table[1][lambda] : 32767,
+		0xBF24,		32767,
+		0xBF25,		lambda > 99 ? 32767 : LAMBDA_table[3][lambda],
+		0xBF26,		sgop_expt_addr & 0x0000FFFF,
+		0xBF27,		sgop_expt_addr >> 16,
+		0xBF28,		sgop_peak_addr & 0x0000FFFF,
+		0xBF29,		sgop_peak_addr >> 16,
+		0xBF2A,		vbv_alert_addr & 0x0000FFFF,
+		0xBF2B,		vbv_alert_addr >> 16,
+		0xBF2C,		0,
+		0xBF2D,		0,
+		0,		0,
+
+		0x200e,		0x0000,
+		0xBF2E,		vbv_alert_addr & 0x0000FFFF,
+		0xBF2F,		vbv_alert_addr >> 16,
+		0xBF30,		cplx[0] & 0x0000FFFF,
+		0xBF31,		cplx[0] >> 16,
+		0xBF32,		cplx[1] & 0x0000FFFF,
+		0xBF33,		cplx[1] >> 16,
+		0xBF34,		cplx[2] & 0x0000FFFF,
+		0xBF35,		cplx[2] >> 16,
+		0xBF36,		cplx[3] & 0x0000FFFF,
+		0xBF37,		cplx[3] >> 16,
+		0xBF38,		0,
+		0xBF39,		0,
+		0xBF3A,		total_expt_addr & 0x0000FFFF,
+		0xBF3B,		total_expt_addr >> 16,
+		0,		0,
+
+		0x200e,		0x0000,
+		0xBF3C,		total_expt_addr & 0x0000FFFF,
+		0xBF3D,		total_expt_addr >> 16,
+		0xBF3E,		0,
+		0xBF3F,		0,
+		0xBF48,		0,
+		0xBF49,		0,
+		0xBF4A,		calc_q < 4 ? 4 : (calc_q > 124 ? 124 : calc_q),
+		0xBF4B,		4,
+		0xBF4C,		0,
+		0xBF4D,		0,
+		0xBF4E,		0,
+		0xBF4F,		0,
+		0xBF50,		0,
+		0xBF51,		0,
+		0,		0,
+
+		0x200e,		0x0000,
+		0xBF40,		sgop_expt_addr & 0x0000FFFF,
+		0xBF41,		sgop_expt_addr >> 16,
+		0xBF42,		0,
+		0xBF43,		0,
+		0xBF44,		0,
+		0xBF45,		0,
+		0xBF46,		(go->width >> 4) * (go->height >> 4),
+		0xBF47,		0,
+		0xBF64,		0,
+		0xBF65,		0,
+		0xBF18,		framelen[4],
+		0xBF19,		framelen[5],
+		0xBF1A,		framelen[6],
+		0xBF1B,		framelen[7],
+		0,		0,
+
+#if 0 /* Remove once we don't care about matching */
+		0x200e,		0x0000,
+		0xBF56,		4,
+		0xBF57,		0,
+		0xBF58,		5,
+		0xBF59,		0,
+		0xBF5A,		6,
+		0xBF5B,		0,
+		0xBF5C,		8,
+		0xBF5D,		0,
+		0xBF5E,		1,
+		0xBF5F,		0,
+		0xBF60,		1,
+		0xBF61,		0,
+		0xBF62,		0,
+		0xBF63,		0,
+		0,		0,
+#else
+		0x2008,		0x0000,
+		0xBF56,		4,
+		0xBF57,		0,
+		0xBF58,		5,
+		0xBF59,		0,
+		0xBF5A,		6,
+		0xBF5B,		0,
+		0xBF5C,		8,
+		0xBF5D,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+#endif
+
+		0x200e,		0x0000,
+		0xBF10,		0,
+		0xBF11,		0,
+		0xBF12,		0,
+		0xBF13,		0,
+		0xBF14,		0,
+		0xBF15,		0,
+		0xBF16,		0,
+		0xBF17,		0,
+		0xBF7E,		0,
+		0xBF7F,		1,
+		0xBF52,		framelen[0],
+		0xBF53,		framelen[1],
+		0xBF54,		framelen[2],
+		0xBF55,		framelen[3],
+		0,		0,
+	};
+
+	return copy_packages(code, pack, 6, space);
+}
+
+static int config_package(struct go7007 *go, u16 *code, int space)
+{
+	int fps = go->sensor_framerate / go->fps_scale / 1000;
+	int rows = go->interlace_coding ? go->height / 32 : go->height / 16;
+	int brc_window_size = fps;
+	int q_min = 2, q_max = 31;
+	int THACCoeffSet0 = 0;
+	u16 pack[] = {
+		0x200e,		0x0000,
+		0xc002,		0x14b4,
+		0xc003,		0x28b4,
+		0xc004,		0x3c5a,
+		0xdc05,		0x2a77,
+		0xc6c3,		go->format == GO7007_FORMAT_MPEG4 ? 0 :
+				(go->format == GO7007_FORMAT_H263 ? 0 : 1),
+		0xc680,		go->format == GO7007_FORMAT_MPEG4 ? 0xf1 :
+				(go->format == GO7007_FORMAT_H263 ? 0x61 :
+									0xd3),
+		0xc780,		0x0140,
+		0xe009,		0x0001,
+		0xc60f,		0x0008,
+		0xd4ff,		0x0002,
+		0xe403,		2340,
+		0xe406,		75,
+		0xd411,		0x0001,
+		0xd410,		0xa1d6,
+		0x0001,		0x2801,
+
+		0x200d,		0x0000,
+		0xe402,		0x018b,
+		0xe401,		0x8b01,
+		0xd472,		(go->board_info->sensor_flags &
+							GO7007_SENSOR_TV) &&
+						(!go->interlace_coding) ?
+					0x01b0 : 0x0170,
+		0xd475,		(go->board_info->sensor_flags &
+							GO7007_SENSOR_TV) &&
+						(!go->interlace_coding) ?
+					0x0008 : 0x0009,
+		0xc404,		go->interlace_coding ? 0x44 :
+				(go->format == GO7007_FORMAT_MPEG4 ? 0x11 :
+				(go->format == GO7007_FORMAT_MPEG1 ? 0x02 :
+				(go->format == GO7007_FORMAT_MPEG2 ? 0x04 :
+				(go->format == GO7007_FORMAT_H263  ? 0x08 :
+								     0x20)))),
+		0xbf0a,		(go->format == GO7007_FORMAT_MPEG4 ? 8 :
+				(go->format == GO7007_FORMAT_MPEG1 ? 1 :
+				(go->format == GO7007_FORMAT_MPEG2 ? 2 :
+				(go->format == GO7007_FORMAT_H263 ? 4 : 16)))) |
+				((go->repeat_seqhead ? 1 : 0) << 6) |
+				((go->dvd_mode ? 1 : 0) << 9) |
+				((go->gop_header_enable ? 1 : 0) << 10),
+		0xbf0b,		0,
+		0xdd5a,		go->ipb ? 0x14 : 0x0a,
+		0xbf0c,		0,
+		0xbf0d,		0,
+		0xc683,		THACCoeffSet0,
+		0xc40a,		(go->width << 4) | rows,
+		0xe01a,		go->board_info->hpi_buffer_cap,
+		0,		0,
+		0,		0,
+
+		0x2008,		0,
+		0xe402,		0x88,
+		0xe401,		0x8f01,
+		0xbf6a,		0,
+		0xbf6b,		0,
+		0xbf6c,		0,
+		0xbf6d,		0,
+		0xbf6e,		0,
+		0xbf6f,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+
+		0x200e,		0,
+		0xbf66,		brc_window_size,
+		0xbf67,		0,
+		0xbf68,		q_min,
+		0xbf69,		q_max,
+		0xbfe0,		0,
+		0xbfe1,		0,
+		0xbfe2,		0,
+		0xbfe3,		go->ipb ? 3 : 1,
+		0xc031,		go->board_info->sensor_flags &
+					GO7007_SENSOR_VBI ? 1 : 0,
+		0xc01c,		0x1f,
+		0xdd8c,		0x15,
+		0xdd94,		0x15,
+		0xdd88,		go->ipb ? 0x1401 : 0x0a01,
+		0xdd90,		go->ipb ? 0x1401 : 0x0a01,
+		0,		0,
+
+		0x200e,		0,
+		0xbfe4,		0,
+		0xbfe5,		0,
+		0xbfe6,		0,
+		0xbfe7,		fps << 8,
+		0xbfe8,		0x3a00,
+		0xbfe9,		0,
+		0xbfea,		0,
+		0xbfeb,		0,
+		0xbfec,		(go->interlace_coding ? 1 << 15 : 0) |
+					(go->modet_enable ? 0xa : 0) |
+					(go->board_info->sensor_flags &
+						GO7007_SENSOR_VBI ? 1 : 0),
+		0xbfed,		0,
+		0xbfee,		0,
+		0xbfef,		0,
+		0xbff0,		go->board_info->sensor_flags &
+					GO7007_SENSOR_TV ? 0xf060 : 0xb060,
+		0xbff1,		0,
+		0,		0,
+	};
+
+	return copy_packages(code, pack, 5, space);
+}
+
+static int seqhead_to_package(struct go7007 *go, u16 *code, int space,
+	int (*sequence_header_func)(struct go7007 *go,
+		unsigned char *buf, int ext))
+{
+	int vop_time_increment_bitlength = vti_bitlen(go);
+	int fps = go->sensor_framerate / go->fps_scale *
+					(go->interlace_coding ? 2 : 1);
+	unsigned char buf[40] = { };
+	int len = sequence_header_func(go, buf, 1);
+	u16 pack[] = {
+		0x2006,		0,
+		0xbf08,		fps,
+		0xbf09,		0,
+		0xbff2,		vop_time_increment_bitlength,
+		0xbff3,		(1 << vop_time_increment_bitlength) - 1,
+		0xbfe6,		0,
+		0xbfe7,		(fps / 1000) << 8,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+
+		0x2007,		0,
+		0xc800,		buf[2] << 8 | buf[3],
+		0xc801,		buf[4] << 8 | buf[5],
+		0xc802,		buf[6] << 8 | buf[7],
+		0xc803,		buf[8] << 8 | buf[9],
+		0xc406,		64,
+		0xc407,		len - 64,
+		0xc61b,		1,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+
+		0x200e,		0,
+		0xc808,		buf[10] << 8 | buf[11],
+		0xc809,		buf[12] << 8 | buf[13],
+		0xc80a,		buf[14] << 8 | buf[15],
+		0xc80b,		buf[16] << 8 | buf[17],
+		0xc80c,		buf[18] << 8 | buf[19],
+		0xc80d,		buf[20] << 8 | buf[21],
+		0xc80e,		buf[22] << 8 | buf[23],
+		0xc80f,		buf[24] << 8 | buf[25],
+		0xc810,		buf[26] << 8 | buf[27],
+		0xc811,		buf[28] << 8 | buf[29],
+		0xc812,		buf[30] << 8 | buf[31],
+		0xc813,		buf[32] << 8 | buf[33],
+		0xc814,		buf[34] << 8 | buf[35],
+		0xc815,		buf[36] << 8 | buf[37],
+		0,		0,
+		0,		0,
+		0,		0,
+	};
+
+	return copy_packages(code, pack, 3, space);
+}
+
+static int relative_prime(int big, int little)
+{
+	int remainder;
+
+	while (little != 0) {
+		remainder = big % little;
+		big = little;
+		little = remainder;
+	}
+	return big;
+}
+
+static int avsync_to_package(struct go7007 *go, u16 *code, int space)
+{
+	int arate = go->board_info->audio_rate * 1001 * go->fps_scale;
+	int ratio = arate / go->sensor_framerate;
+	int adjratio = ratio * 215 / 100;
+	int rprime = relative_prime(go->sensor_framerate,
+					arate % go->sensor_framerate);
+	int f1 = (arate % go->sensor_framerate) / rprime;
+	int f2 = (go->sensor_framerate - arate % go->sensor_framerate) / rprime;
+	u16 pack[] = {
+		0x200e,		0,
+		0xbf98,		(u16)((-adjratio) & 0xffff),
+		0xbf99,		(u16)((-adjratio) >> 16),
+		0xbf92,		0,
+		0xbf93,		0,
+		0xbff4,		f1 > f2 ? f1 : f2,
+		0xbff5,		f1 < f2 ? f1 : f2,
+		0xbff6,		f1 < f2 ? ratio : ratio + 1,
+		0xbff7,		f1 > f2 ? ratio : ratio + 1,
+		0xbff8,		0,
+		0xbff9,		0,
+		0xbffa,		adjratio & 0xffff,
+		0xbffb,		adjratio >> 16,
+		0xbf94,		0,
+		0xbf95,		0,
+		0,		0,
+	};
+
+	return copy_packages(code, pack, 1, space);
+}
+
+static int final_package(struct go7007 *go, u16 *code, int space)
+{
+	int rows = go->interlace_coding ? go->height / 32 : go->height / 16;
+	u16 pack[] = {
+		0x8000,
+		0,
+		0,
+		0,
+		0,
+		0,
+		0,
+		2,
+		((go->board_info->sensor_flags & GO7007_SENSOR_TV) &&
+						(!go->interlace_coding) ?
+					(1 << 14) | (1 << 9) : 0) |
+			((go->encoder_subsample ? 1 : 0) << 8) |
+			(go->board_info->sensor_flags &
+				GO7007_SENSOR_CONFIG_MASK),
+		((go->encoder_v_halve ? 1 : 0) << 14) |
+			(go->encoder_v_halve ? rows << 9 : rows << 8) |
+			(go->encoder_h_halve ? 1 << 6 : 0) |
+			(go->encoder_h_halve ? go->width >> 3 : go->width >> 4),
+		(1 << 15) | (go->encoder_v_offset << 6) |
+			(1 << 7) | (go->encoder_h_offset >> 2),
+		(1 << 6),
+		0,
+		0,
+		((go->fps_scale - 1) << 8) |
+			(go->board_info->sensor_flags & GO7007_SENSOR_TV ?
+						(1 << 7) : 0) |
+			0x41,
+		go->ipb ? 0xd4c : 0x36b,
+		(rows << 8) | (go->width >> 4),
+		go->format == GO7007_FORMAT_MPEG4 ? 0x0404 : 0,
+		(1 << 15) | ((go->interlace_coding ? 1 : 0) << 13) |
+			((go->closed_gop ? 1 : 0) << 12) |
+			((go->format == GO7007_FORMAT_MPEG4 ? 1 : 0) << 11) |
+		/*	(1 << 9) |   */
+			((go->ipb ? 3 : 0) << 7) |
+			((go->modet_enable ? 1 : 0) << 2) |
+			((go->dvd_mode ? 1 : 0) << 1) | 1,
+		(go->format == GO7007_FORMAT_MPEG1 ? 0x89a0 :
+			(go->format == GO7007_FORMAT_MPEG2 ? 0x89a0 :
+			(go->format == GO7007_FORMAT_MJPEG ? 0x89a0 :
+			(go->format == GO7007_FORMAT_MPEG4 ? 0x8920 :
+			(go->format == GO7007_FORMAT_H263 ? 0x8920 : 0))))),
+		go->ipb ? 0x1f15 : 0x1f0b,
+		go->ipb ? 0x0015 : 0x000b,
+		go->ipb ? 0xa800 : 0x5800,
+		0xffff,
+		0x0020 + 0x034b * 0,
+		0x0020 + 0x034b * 1,
+		0x0020 + 0x034b * 2,
+		0x0020 + 0x034b * 3,
+		0x0020 + 0x034b * 4,
+		0x0020 + 0x034b * 5,
+		go->ipb ? (go->gop_size / 3) : go->gop_size,
+		(go->height >> 4) * (go->width >> 4) * 110 / 100,
+	};
+
+	return copy_packages(code, pack, 1, space);
+}
+
+static int audio_to_package(struct go7007 *go, u16 *code, int space)
+{
+	int clock_config = ((go->board_info->audio_flags &
+				GO7007_AUDIO_I2S_MASTER ? 1 : 0) << 11) |
+			((go->board_info->audio_flags &
+				GO7007_AUDIO_OKI_MODE ? 1 : 0) << 8) |
+			(((go->board_info->audio_bclk_div / 4) - 1) << 4) |
+			(go->board_info->audio_main_div - 1);
+	u16 pack[] = {
+		0x200d,		0,
+		0x9002,		0,
+		0x9002,		0,
+		0x9031,		0,
+		0x9032,		0,
+		0x9033,		0,
+		0x9034,		0,
+		0x9035,		0,
+		0x9036,		0,
+		0x9037,		0,
+		0x9040,		0,
+		0x9000,		clock_config,
+		0x9001,		(go->board_info->audio_flags & 0xffff) |
+					(1 << 9),
+		0x9000,		((go->board_info->audio_flags &
+						GO7007_AUDIO_I2S_MASTER ?
+						1 : 0) << 10) |
+					clock_config,
+		0,		0,
+		0,		0,
+		0x2005,		0,
+		0x9041,		0,
+		0x9042,		256,
+		0x9043,		0,
+		0x9044,		16,
+		0x9045,		16,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+		0,		0,
+	};
+
+	return copy_packages(code, pack, 2, space);
+}
+
+static int modet_to_package(struct go7007 *go, u16 *code, int space)
+{
+	int ret, mb, i, addr, cnt = 0;
+	u16 pack[32];
+	u16 thresholds[] = {
+		0x200e,		0,
+		0xbf82,		go->modet[0].pixel_threshold,
+		0xbf83,		go->modet[1].pixel_threshold,
+		0xbf84,		go->modet[2].pixel_threshold,
+		0xbf85,		go->modet[3].pixel_threshold,
+		0xbf86,		go->modet[0].motion_threshold,
+		0xbf87,		go->modet[1].motion_threshold,
+		0xbf88,		go->modet[2].motion_threshold,
+		0xbf89,		go->modet[3].motion_threshold,
+		0xbf8a,		go->modet[0].mb_threshold,
+		0xbf8b,		go->modet[1].mb_threshold,
+		0xbf8c,		go->modet[2].mb_threshold,
+		0xbf8d,		go->modet[3].mb_threshold,
+		0xbf8e,		0,
+		0xbf8f,		0,
+		0,		0,
+	};
+
+	ret = copy_packages(code, thresholds, 1, space);
+	if (ret < 0)
+		return -1;
+	cnt += ret;
+
+	addr = 0xbac0;
+	memset(pack, 0, 64);
+	i = 0;
+	for (mb = 0; mb < 1624; ++mb) {
+		pack[i * 2 + 3] <<= 2;
+		pack[i * 2 + 3] |= go->modet_map[mb];
+		if (mb % 8 != 7)
+			continue;
+		pack[i * 2 + 2] = addr++;
+		++i;
+		if (i == 10 || mb == 1623) {
+			pack[0] = 0x2000 | i;
+			ret = copy_packages(code + cnt, pack, 1, space - cnt);
+			if (ret < 0)
+				return -1;
+			cnt += ret;
+			i = 0;
+			memset(pack, 0, 64);
+		}
+		pack[i * 2 + 3] = 0;
+	}
+
+	memset(pack, 0, 64);
+	i = 0;
+	for (addr = 0xbb90; addr < 0xbbfa; ++addr) {
+		pack[i * 2 + 2] = addr;
+		pack[i * 2 + 3] = 0;
+		++i;
+		if (i == 10 || addr == 0xbbf9) {
+			pack[0] = 0x2000 | i;
+			ret = copy_packages(code + cnt, pack, 1, space - cnt);
+			if (ret < 0)
+				return -1;
+			cnt += ret;
+			i = 0;
+			memset(pack, 0, 64);
+		}
+	}
+	return cnt;
+}
+
+static int do_special(struct go7007 *go, u16 type, u16 *code, int space,
+			int *framelen)
+{
+	switch (type) {
+	case SPECIAL_FRM_HEAD:
+		switch (go->format) {
+		case GO7007_FORMAT_MJPEG:
+			return gen_mjpeghdr_to_package(go, code, space);
+		case GO7007_FORMAT_MPEG1:
+		case GO7007_FORMAT_MPEG2:
+			return gen_mpeg1hdr_to_package(go, code, space,
+								framelen);
+		case GO7007_FORMAT_MPEG4:
+			return gen_mpeg4hdr_to_package(go, code, space,
+								framelen);
+		}
+	case SPECIAL_BRC_CTRL:
+		return brctrl_to_package(go, code, space, framelen);
+	case SPECIAL_CONFIG:
+		return config_package(go, code, space);
+	case SPECIAL_SEQHEAD:
+		switch (go->format) {
+		case GO7007_FORMAT_MPEG1:
+		case GO7007_FORMAT_MPEG2:
+			return seqhead_to_package(go, code, space,
+					mpeg1_sequence_header);
+		case GO7007_FORMAT_MPEG4:
+			return seqhead_to_package(go, code, space,
+					mpeg4_sequence_header);
+		default:
+			return 0;
+		}
+	case SPECIAL_AV_SYNC:
+		return avsync_to_package(go, code, space);
+	case SPECIAL_FINAL:
+		return final_package(go, code, space);
+	case SPECIAL_AUDIO:
+		return audio_to_package(go, code, space);
+	case SPECIAL_MODET:
+		return modet_to_package(go, code, space);
+	}
+	printk(KERN_ERR
+		"go7007: firmware file contains unsupported feature %04x\n",
+		type);
+	return -1;
+}
+
+int go7007_construct_fw_image(struct go7007 *go, u8 **fw, int *fwlen)
+{
+	const struct firmware *fw_entry;
+	u16 *code, *src;
+	int framelen[8] = { }; /* holds the lengths of empty frame templates */
+	int codespace = 64 * 1024, i = 0, srclen, chunk_len, chunk_flags;
+	int mode_flag;
+	int ret;
+
+	switch (go->format) {
+	case GO7007_FORMAT_MJPEG:
+		mode_flag = FLAG_MODE_MJPEG;
+		break;
+	case GO7007_FORMAT_MPEG1:
+		mode_flag = FLAG_MODE_MPEG1;
+		break;
+	case GO7007_FORMAT_MPEG2:
+		mode_flag = FLAG_MODE_MPEG2;
+		break;
+	case GO7007_FORMAT_MPEG4:
+		mode_flag = FLAG_MODE_MPEG4;
+		break;
+	default:
+		return -1;
+	}
+	if (request_firmware(&fw_entry, go->board_info->firmware, go->dev)) {
+		printk(KERN_ERR
+			"go7007: unable to load firmware from file \"%s\"\n",
+			go->board_info->firmware);
+		return -1;
+	}
+	code = kmalloc(codespace * 2, GFP_KERNEL);
+	if (code == NULL) {
+		printk(KERN_ERR "go7007: unable to allocate %d bytes for "
+				"firmware construction\n", codespace * 2);
+		goto fw_failed;
+	}
+	memset(code, 0, codespace * 2);
+	src = (u16 *)fw_entry->data;
+	srclen = fw_entry->size / 2;
+	while (srclen >= 2) {
+		chunk_flags = __le16_to_cpu(src[0]);
+		chunk_len = __le16_to_cpu(src[1]);
+		if (chunk_len + 2 > srclen) {
+			printk(KERN_ERR "go7007: firmware file \"%s\" "
+					"appears to be corrupted\n",
+					go->board_info->firmware);
+			goto fw_failed;
+		}
+		if (chunk_flags & mode_flag) {
+			if (chunk_flags & FLAG_SPECIAL) {
+				ret = do_special(go, __le16_to_cpu(src[2]),
+					&code[i], codespace - i, framelen);
+				if (ret < 0) {
+					printk(KERN_ERR "go7007: insufficient "
+							"memory for firmware "
+							"construction\n");
+					goto fw_failed;
+				}
+				i += ret;
+			} else {
+				if (codespace - i < chunk_len) {
+					printk(KERN_ERR "go7007: insufficient "
+							"memory for firmware "
+							"construction\n");
+					goto fw_failed;
+				}
+				memcpy(&code[i], &src[2], chunk_len * 2);
+				i += chunk_len;
+			}
+		}
+		srclen -= chunk_len + 2;
+		src += chunk_len + 2;
+	}
+	release_firmware(fw_entry);
+	*fw = (u8 *)code;
+	*fwlen = i * 2;
+	return 0;
+
+fw_failed:
+	kfree(code);
+	release_firmware(fw_entry);
+	return -1;
+}
diff --git a/drivers/staging/go7007/go7007-i2c.c b/drivers/staging/go7007/go7007-i2c.c
new file mode 100644
index 0000000..10baae3
--- /dev/null
+++ b/drivers/staging/go7007/go7007-i2c.c
@@ -0,0 +1,309 @@
+/*
+ * Copyright (C) 2005-2006 Micronas USA Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License (Version 2) as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software Foundation,
+ * Inc., 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
+ */
+
+#include <linux/version.h>
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/delay.h>
+#include <linux/sched.h>
+#include <linux/list.h>
+#include <linux/unistd.h>
+#include <linux/time.h>
+#include <linux/device.h>
+#include <linux/i2c.h>
+#include <linux/semaphore.h>
+#include <linux/uaccess.h>
+#include <asm/system.h>
+
+#include "go7007-priv.h"
+#include "wis-i2c.h"
+
+/************** Registration interface for I2C client drivers **************/
+
+/* Since there's no way to auto-probe the I2C devices connected to the I2C
+ * bus on the go7007, we have this silly little registration system that
+ * client drivers can use to register their I2C driver ID and their
+ * detect_client function (the one that's normally passed to i2c_probe).
+ *
+ * When a new go7007 device is connected, we can look up in a board info
+ * table by the USB or PCI vendor/product/revision ID to determine
+ * which I2C client module to load.  The client driver module will register
+ * itself here, and then we can call the registered detect_client function
+ * to force-load a new client at the address listed in the board info table.
+ *
+ * Really the I2C subsystem should have a way to force-load I2C client
+ * drivers when we have a priori knowledge of what's on the bus, especially
+ * since the existing I2C auto-probe mechanism is so hokey, but we'll use
+ * our own mechanism for the time being. */
+
+struct wis_i2c_client_driver {
+	unsigned int id;
+	found_proc found_proc;
+	struct list_head list;
+};
+
+static LIST_HEAD(i2c_client_drivers);
+static DECLARE_MUTEX(i2c_client_driver_list_lock);
+
+/* Client drivers register here by their I2C driver ID */
+int wis_i2c_add_driver(unsigned int id, found_proc found_proc)
+{
+	struct wis_i2c_client_driver *driver;
+
+	driver = kmalloc(sizeof(struct wis_i2c_client_driver), GFP_KERNEL);
+	if (driver == NULL)
+		return -ENOMEM;
+	driver->id = id;
+	driver->found_proc = found_proc;
+
+	down(&i2c_client_driver_list_lock);
+	list_add_tail(&driver->list, &i2c_client_drivers);
+	up(&i2c_client_driver_list_lock);
+
+	return 0;
+}
+EXPORT_SYMBOL(wis_i2c_add_driver);
+
+void wis_i2c_del_driver(found_proc found_proc)
+{
+	struct wis_i2c_client_driver *driver, *next;
+
+	down(&i2c_client_driver_list_lock);
+	list_for_each_entry_safe(driver, next, &i2c_client_drivers, list)
+		if (driver->found_proc == found_proc) {
+			list_del(&driver->list);
+			kfree(driver);
+		}
+	up(&i2c_client_driver_list_lock);
+}
+EXPORT_SYMBOL(wis_i2c_del_driver);
+
+/* The main go7007 driver calls this to instantiate a client by driver
+ * ID and bus address, which are both stored in the board info table */
+int wis_i2c_probe_device(struct i2c_adapter *adapter,
+				unsigned int id, int addr)
+{
+	struct wis_i2c_client_driver *driver;
+	int found = 0;
+
+	if (addr < 0 || addr > 0x7f)
+		return -1;
+	down(&i2c_client_driver_list_lock);
+	list_for_each_entry(driver, &i2c_client_drivers, list)
+		if (driver->id == id) {
+			if (driver->found_proc(adapter, addr, 0) == 0)
+				found = 1;
+			break;
+		}
+	up(&i2c_client_driver_list_lock);
+	return found;
+}
+
+/********************* Driver for on-board I2C adapter *********************/
+
+/* #define GO7007_I2C_DEBUG */
+
+#define SPI_I2C_ADDR_BASE		0x1400
+#define STATUS_REG_ADDR			(SPI_I2C_ADDR_BASE + 0x2)
+#define I2C_CTRL_REG_ADDR		(SPI_I2C_ADDR_BASE + 0x6)
+#define I2C_DEV_UP_ADDR_REG_ADDR	(SPI_I2C_ADDR_BASE + 0x7)
+#define I2C_LO_ADDR_REG_ADDR		(SPI_I2C_ADDR_BASE + 0x8)
+#define I2C_DATA_REG_ADDR		(SPI_I2C_ADDR_BASE + 0x9)
+#define I2C_CLKFREQ_REG_ADDR		(SPI_I2C_ADDR_BASE + 0xa)
+
+#define I2C_STATE_MASK			0x0007
+#define I2C_READ_READY_MASK		0x0008
+
+/* There is only one I2C port on the TW2804 that feeds all four GO7007 VIPs
+ * on the Adlink PCI-MPG24, so access is shared between all of them. */
+static DECLARE_MUTEX(adlink_mpg24_i2c_lock);
+
+static int go7007_i2c_xfer(struct go7007 *go, u16 addr, int read,
+		u16 command, int flags, u8 *data)
+{
+	int i, ret = -1;
+	u16 val;
+
+	if (go->status == STATUS_SHUTDOWN)
+		return -1;
+
+#ifdef GO7007_I2C_DEBUG
+	if (read)
+		printk(KERN_DEBUG "go7007-i2c: reading 0x%02x on 0x%02x\n",
+			command, addr);
+	else
+		printk(KERN_DEBUG
+			"go7007-i2c: writing 0x%02x to 0x%02x on 0x%02x\n",
+			*data, command, addr);
+#endif
+
+	down(&go->hw_lock);
+
+	if (go->board_id == GO7007_BOARDID_ADLINK_MPG24) {
+		/* Bridge the I2C port on this GO7007 to the shared bus */
+		down(&adlink_mpg24_i2c_lock);
+		go7007_write_addr(go, 0x3c82, 0x0020);
+	}
+
+	/* Wait for I2C adapter to be ready */
+	for (i = 0; i < 10; ++i) {
+		if (go7007_read_addr(go, STATUS_REG_ADDR, &val) < 0)
+			goto i2c_done;
+		if (!(val & I2C_STATE_MASK))
+			break;
+		msleep(100);
+	}
+	if (i == 10) {
+		printk(KERN_ERR "go7007-i2c: I2C adapter is hung\n");
+		goto i2c_done;
+	}
+
+	/* Set target register (command) */
+	go7007_write_addr(go, I2C_CTRL_REG_ADDR, flags);
+	go7007_write_addr(go, I2C_LO_ADDR_REG_ADDR, command);
+
+	/* If we're writing, send the data and target address and we're done */
+	if (!read) {
+		go7007_write_addr(go, I2C_DATA_REG_ADDR, *data);
+		go7007_write_addr(go, I2C_DEV_UP_ADDR_REG_ADDR,
+					(addr << 9) | (command >> 8));
+		ret = 0;
+		goto i2c_done;
+	}
+
+	/* Otherwise, we're reading.  First clear i2c_rx_data_rdy. */
+	if (go7007_read_addr(go, I2C_DATA_REG_ADDR, &val) < 0)
+		goto i2c_done;
+
+	/* Send the target address plus read flag */
+	go7007_write_addr(go, I2C_DEV_UP_ADDR_REG_ADDR,
+			(addr << 9) | 0x0100 | (command >> 8));
+
+	/* Wait for i2c_rx_data_rdy */
+	for (i = 0; i < 10; ++i) {
+		if (go7007_read_addr(go, STATUS_REG_ADDR, &val) < 0)
+			goto i2c_done;
+		if (val & I2C_READ_READY_MASK)
+			break;
+		msleep(100);
+	}
+	if (i == 10) {
+		printk(KERN_ERR "go7007-i2c: I2C adapter is hung\n");
+		goto i2c_done;
+	}
+
+	/* Retrieve the read byte */
+	if (go7007_read_addr(go, I2C_DATA_REG_ADDR, &val) < 0)
+		goto i2c_done;
+	*data = val;
+	ret = 0;
+
+i2c_done:
+	if (go->board_id == GO7007_BOARDID_ADLINK_MPG24) {
+		/* Isolate the I2C port on this GO7007 from the shared bus */
+		go7007_write_addr(go, 0x3c82, 0x0000);
+		up(&adlink_mpg24_i2c_lock);
+	}
+	up(&go->hw_lock);
+	return ret;
+}
+
+static int go7007_smbus_xfer(struct i2c_adapter *adapter, u16 addr,
+		unsigned short flags, char read_write,
+		u8 command, int size, union i2c_smbus_data *data)
+{
+	struct go7007 *go = i2c_get_adapdata(adapter);
+
+	if (size != I2C_SMBUS_BYTE_DATA)
+		return -1;
+	return go7007_i2c_xfer(go, addr, read_write == I2C_SMBUS_READ, command,
+			flags & I2C_CLIENT_SCCB ? 0x10 : 0x00, &data->byte);
+}
+
+/* VERY LIMITED I2C master xfer function -- only needed because the
+ * SMBus functions only support 8-bit commands and the SAA7135 uses
+ * 16-bit commands.  The I2C interface on the GO7007, as limited as
+ * it is, does support this mode. */
+
+static int go7007_i2c_master_xfer(struct i2c_adapter *adapter,
+					struct i2c_msg msgs[], int num)
+{
+	struct go7007 *go = i2c_get_adapdata(adapter);
+	int i;
+
+	for (i = 0; i < num; ++i) {
+		/* We can only do two things here -- write three bytes, or
+		 * write two bytes and read one byte. */
+		if (msgs[i].len == 2) {
+			if (i + 1 == num || msgs[i].addr != msgs[i + 1].addr ||
+					(msgs[i].flags & I2C_M_RD) ||
+					!(msgs[i + 1].flags & I2C_M_RD) ||
+					msgs[i + 1].len != 1)
+				return -1;
+			if (go7007_i2c_xfer(go, msgs[i].addr, 1,
+					(msgs[i].buf[0] << 8) | msgs[i].buf[1],
+					0x01, &msgs[i + 1].buf[0]) < 0)
+				return -1;
+			++i;
+		} else if (msgs[i].len == 3) {
+			if (msgs[i].flags & I2C_M_RD)
+				return -1;
+			if (msgs[i].len != 3)
+				return -1;
+			if (go7007_i2c_xfer(go, msgs[i].addr, 0,
+					(msgs[i].buf[0] << 8) | msgs[i].buf[1],
+					0x01, &msgs[i].buf[2]) < 0)
+				return -1;
+		} else
+			return -1;
+	}
+
+	return 0;
+}
+
+static u32 go7007_functionality(struct i2c_adapter *adapter)
+{
+	return I2C_FUNC_SMBUS_BYTE_DATA;
+}
+
+static struct i2c_algorithm go7007_algo = {
+	.smbus_xfer	= go7007_smbus_xfer,
+	.master_xfer	= go7007_i2c_master_xfer,
+	.functionality	= go7007_functionality,
+};
+
+static struct i2c_adapter go7007_adap_templ = {
+	.owner			= THIS_MODULE,
+	.class			= I2C_CLASS_TV_ANALOG,
+	.name			= "WIS GO7007SB",
+	.id			= I2C_ALGO_GO7007,
+	.algo			= &go7007_algo,
+};
+
+int go7007_i2c_init(struct go7007 *go)
+{
+	memcpy(&go->i2c_adapter, &go7007_adap_templ,
+			sizeof(go7007_adap_templ));
+	go->i2c_adapter.dev.parent = go->dev;
+	i2c_set_adapdata(&go->i2c_adapter, go);
+	if (i2c_add_adapter(&go->i2c_adapter) < 0) {
+		printk(KERN_ERR
+			"go7007-i2c: error: i2c_add_adapter failed\n");
+		return -1;
+	}
+	return 0;
+}
diff --git a/drivers/staging/go7007/go7007-priv.h b/drivers/staging/go7007/go7007-priv.h
new file mode 100644
index 0000000..005542d
--- /dev/null
+++ b/drivers/staging/go7007/go7007-priv.h
@@ -0,0 +1,279 @@
+/*
+ * Copyright (C) 2005-2006 Micronas USA Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License (Version 2) as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software Foundation,
+ * Inc., 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
+ */
+
+/*
+ * This is the private include file for the go7007 driver.  It should not
+ * be included by anybody but the driver itself, and especially not by
+ * user-space applications.
+ */
+
+struct go7007;
+
+/* IDs to activate board-specific support code */
+#define GO7007_BOARDID_MATRIX_II	0
+#define GO7007_BOARDID_MATRIX_RELOAD	1
+#define GO7007_BOARDID_STAR_TREK	2
+#define GO7007_BOARDID_PCI_VOYAGER	3
+#define GO7007_BOARDID_XMEN		4
+#define GO7007_BOARDID_XMEN_II		5
+#define GO7007_BOARDID_XMEN_III		6
+#define GO7007_BOARDID_MATRIX_REV	7
+#define GO7007_BOARDID_PX_M402U		16
+#define GO7007_BOARDID_PX_TV402U_ANY	17 /* need to check tuner model */
+#define GO7007_BOARDID_PX_TV402U_NA	18 /* detected NTSC tuner */
+#define GO7007_BOARDID_PX_TV402U_EU	19 /* detected PAL tuner */
+#define GO7007_BOARDID_PX_TV402U_JP	20 /* detected NTSC-J tuner */
+#define GO7007_BOARDID_LIFEVIEW_LR192	21 /* TV Walker Ultra */
+#define GO7007_BOARDID_ENDURA		22
+#define GO7007_BOARDID_ADLINK_MPG24	23
+
+/* Various characteristics of each board */
+#define GO7007_BOARD_HAS_AUDIO		(1<<0)
+#define GO7007_BOARD_USE_ONBOARD_I2C	(1<<1)
+#define GO7007_BOARD_HAS_TUNER		(1<<2)
+
+/* Characteristics of sensor devices */
+#define GO7007_SENSOR_VALID_POLAR	(1<<0)
+#define GO7007_SENSOR_HREF_POLAR	(1<<1)
+#define GO7007_SENSOR_VREF_POLAR	(1<<2)
+#define GO7007_SENSOR_FIELD_ID_POLAR	(1<<3)
+#define GO7007_SENSOR_BIT_WIDTH		(1<<4)
+#define GO7007_SENSOR_VALID_ENABLE	(1<<5)
+#define GO7007_SENSOR_656		(1<<6)
+#define GO7007_SENSOR_CONFIG_MASK	0x7f
+#define GO7007_SENSOR_TV		(1<<7)
+#define GO7007_SENSOR_VBI		(1<<8)
+#define GO7007_SENSOR_SCALING		(1<<9)
+
+/* Characteristics of audio sensor devices */
+#define GO7007_AUDIO_I2S_MODE_1		(1)
+#define GO7007_AUDIO_I2S_MODE_2		(2)
+#define GO7007_AUDIO_I2S_MODE_3		(3)
+#define GO7007_AUDIO_BCLK_POLAR		(1<<2)
+#define GO7007_AUDIO_WORD_14		(14<<4)
+#define GO7007_AUDIO_WORD_16		(16<<4)
+#define GO7007_AUDIO_ONE_CHANNEL	(1<<11)
+#define GO7007_AUDIO_I2S_MASTER		(1<<16)
+#define GO7007_AUDIO_OKI_MODE		(1<<17)
+
+struct go7007_board_info {
+	char *firmware;
+	unsigned int flags;
+	int hpi_buffer_cap;
+	unsigned int sensor_flags;
+	int sensor_width;
+	int sensor_height;
+	int sensor_framerate;
+	int sensor_h_offset;
+	int sensor_v_offset;
+	unsigned int audio_flags;
+	int audio_rate;
+	int audio_bclk_div;
+	int audio_main_div;
+	int num_i2c_devs;
+	struct {
+		int id;
+		int addr;
+	} i2c_devs[4];
+	int num_inputs;
+	struct {
+		int video_input;
+		int audio_input;
+		char *name;
+	} inputs[4];
+};
+
+struct go7007_hpi_ops {
+	int (*interface_reset)(struct go7007 *go);
+	int (*write_interrupt)(struct go7007 *go, int addr, int data);
+	int (*read_interrupt)(struct go7007 *go);
+	int (*stream_start)(struct go7007 *go);
+	int (*stream_stop)(struct go7007 *go);
+	int (*send_firmware)(struct go7007 *go, u8 *data, int len);
+};
+
+/* The video buffer size must be a multiple of PAGE_SIZE */
+#define	GO7007_BUF_PAGES	(128 * 1024 / PAGE_SIZE)
+#define	GO7007_BUF_SIZE		(GO7007_BUF_PAGES << PAGE_SHIFT)
+
+struct go7007_buffer {
+	struct go7007 *go; /* Reverse reference for VMA ops */
+	int index; /* Reverse reference for DQBUF */
+	enum { BUF_STATE_IDLE, BUF_STATE_QUEUED, BUF_STATE_DONE } state;
+	u32 seq;
+	struct timeval timestamp;
+	struct list_head stream;
+	struct page *pages[GO7007_BUF_PAGES + 1]; /* extra for straddling */
+	unsigned long user_addr;
+	unsigned int page_count;
+	unsigned int offset;
+	unsigned int bytesused;
+	unsigned int frame_offset;
+	u32 modet_active;
+	int mapped;
+};
+
+struct go7007_file {
+	struct go7007 *go;
+	struct semaphore lock;
+	int buf_count;
+	struct go7007_buffer *bufs;
+};
+
+#define	GO7007_FORMAT_MJPEG	0
+#define GO7007_FORMAT_MPEG4	1
+#define GO7007_FORMAT_MPEG1	2
+#define GO7007_FORMAT_MPEG2	3
+#define GO7007_FORMAT_H263	4
+
+#define GO7007_RATIO_1_1	0
+#define GO7007_RATIO_4_3	1
+#define GO7007_RATIO_16_9	2
+
+enum go7007_parser_state {
+	STATE_DATA,
+	STATE_00,
+	STATE_00_00,
+	STATE_00_00_01,
+	STATE_FF,
+	STATE_VBI_LEN_A,
+	STATE_VBI_LEN_B,
+	STATE_MODET_MAP,
+	STATE_UNPARSED,
+};
+
+struct go7007 {
+	struct device *dev;
+	struct go7007_board_info *board_info;
+	unsigned int board_id;
+	int tuner_type;
+	int channel_number; /* for multi-channel boards like Adlink PCI-MPG24 */
+	char name[64];
+	struct video_device *video_dev;
+	int ref_count;
+	enum { STATUS_INIT, STATUS_ONLINE, STATUS_SHUTDOWN } status;
+	spinlock_t spinlock;
+	struct semaphore hw_lock;
+	int streaming;
+	int in_use;
+	int audio_enabled;
+
+	/* Video input */
+	int input;
+	enum { GO7007_STD_NTSC, GO7007_STD_PAL, GO7007_STD_OTHER } standard;
+	int sensor_framerate;
+	int width;
+	int height;
+	int encoder_h_offset;
+	int encoder_v_offset;
+	unsigned int encoder_h_halve:1;
+	unsigned int encoder_v_halve:1;
+	unsigned int encoder_subsample:1;
+
+	/* Encoder config */
+	int format;
+	int bitrate;
+	int fps_scale;
+	int pali;
+	int aspect_ratio;
+	int gop_size;
+	unsigned int ipb:1;
+	unsigned int closed_gop:1;
+	unsigned int repeat_seqhead:1;
+	unsigned int seq_header_enable:1;
+	unsigned int gop_header_enable:1;
+	unsigned int dvd_mode:1;
+	unsigned int interlace_coding:1;
+
+	/* Motion detection */
+	unsigned int modet_enable:1;
+	struct {
+		unsigned int enable:1;
+		int pixel_threshold;
+		int motion_threshold;
+		int mb_threshold;
+	} modet[4];
+	unsigned char modet_map[1624];
+	unsigned char active_map[216];
+
+	/* Video streaming */
+	struct go7007_buffer *active_buf;
+	enum go7007_parser_state state;
+	int parse_length;
+	u16 modet_word;
+	int seen_frame;
+	u32 next_seq;
+	struct list_head stream;
+	wait_queue_head_t frame_waitq;
+
+	/* Audio streaming */
+	void (*audio_deliver)(struct go7007 *go, u8 *buf, int length);
+	void *snd_context;
+
+	/* I2C */
+	int i2c_adapter_online;
+	struct i2c_adapter i2c_adapter;
+
+	/* HPI driver */
+	struct go7007_hpi_ops *hpi_ops;
+	void *hpi_context;
+	int interrupt_available;
+	wait_queue_head_t interrupt_waitq;
+	unsigned short interrupt_value;
+	unsigned short interrupt_data;
+};
+
+/* All of these must be called with the hpi_lock semaphore held! */
+#define go7007_interface_reset(go) \
+			((go)->hpi_ops->interface_reset(go))
+#define	go7007_write_interrupt(go, x, y) \
+			((go)->hpi_ops->write_interrupt)((go), (x), (y))
+#define go7007_stream_start(go) \
+			((go)->hpi_ops->stream_start(go))
+#define go7007_stream_stop(go) \
+			((go)->hpi_ops->stream_stop(go))
+#define	go7007_send_firmware(go, x, y) \
+			((go)->hpi_ops->send_firmware)((go), (x), (y))
+#define go7007_write_addr(go, x, y) \
+			((go)->hpi_ops->write_interrupt)((go), (x)|0x8000, (y))
+
+/* go7007-driver.c */
+int go7007_read_addr(struct go7007 *go, u16 addr, u16 *data);
+int go7007_read_interrupt(struct go7007 *go, u16 *value, u16 *data);
+int go7007_boot_encoder(struct go7007 *go, int init_i2c);
+int go7007_reset_encoder(struct go7007 *go);
+int go7007_register_encoder(struct go7007 *go);
+int go7007_start_encoder(struct go7007 *go);
+void go7007_parse_video_stream(struct go7007 *go, u8 *buf, int length);
+struct go7007 *go7007_alloc(struct go7007_board_info *board,
+					struct device *dev);
+void go7007_remove(struct go7007 *go);
+
+/* go7007-fw.c */
+int go7007_construct_fw_image(struct go7007 *go, u8 **fw, int *fwlen);
+
+/* go7007-i2c.c */
+int go7007_i2c_init(struct go7007 *go);
+int go7007_i2c_remove(struct go7007 *go);
+
+/* go7007-v4l2.c */
+int go7007_v4l2_init(struct go7007 *go);
+void go7007_v4l2_remove(struct go7007 *go);
+
+/* snd-go7007.c */
+int go7007_snd_init(struct go7007 *go);
+int go7007_snd_remove(struct go7007 *go);
diff --git a/drivers/staging/go7007/go7007-usb.c b/drivers/staging/go7007/go7007-usb.c
new file mode 100644
index 0000000..d4ed6d2
--- /dev/null
+++ b/drivers/staging/go7007/go7007-usb.c
@@ -0,0 +1,1229 @@
+/*
+ * Copyright (C) 2005-2006 Micronas USA Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License (Version 2) as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software Foundation,
+ * Inc., 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/version.h>
+#include <linux/kernel.h>
+#include <linux/init.h>
+#include <linux/wait.h>
+#include <linux/list.h>
+#include <linux/slab.h>
+#include <linux/time.h>
+#include <linux/mm.h>
+#include <linux/usb.h>
+#include <linux/i2c.h>
+#include <asm/byteorder.h>
+#include <media/tvaudio.h>
+
+#include "go7007-priv.h"
+#include "wis-i2c.h"
+
+static unsigned int assume_endura;
+module_param(assume_endura, int, 0644);
+MODULE_PARM_DESC(assume_endura, "when probing fails, hardware is a Pelco Endura");
+
+/* #define GO7007_USB_DEBUG */
+/* #define GO7007_I2C_DEBUG */ /* for debugging the EZ-USB I2C adapter */
+
+#define	HPI_STATUS_ADDR	0xFFF4
+#define	INT_PARAM_ADDR	0xFFF6
+#define	INT_INDEX_ADDR	0xFFF8
+
+/*
+ * Pipes on EZ-USB interface:
+ * 	0 snd - Control
+ * 	0 rcv - Control
+ * 	2 snd - Download firmware (control)
+ * 	4 rcv - Read Interrupt (interrupt)
+ * 	6 rcv - Read Video (bulk)
+ * 	8 rcv - Read Audio (bulk)
+ */
+
+#define GO7007_USB_EZUSB		(1<<0)
+#define GO7007_USB_EZUSB_I2C		(1<<1)
+
+struct go7007_usb_board {
+	unsigned int flags;
+	struct go7007_board_info main_info;
+};
+
+struct go7007_usb {
+	struct go7007_usb_board *board;
+	struct semaphore i2c_lock;
+	struct usb_device *usbdev;
+	struct urb *video_urbs[8];
+	struct urb *audio_urbs[8];
+	struct urb *intr_urb;
+};
+
+/*********************** Product specification data ***********************/
+
+static struct go7007_usb_board board_matrix_ii = {
+	.flags		= GO7007_USB_EZUSB,
+	.main_info	= {
+		.firmware	 = "go7007tv.bin",
+		.flags		 = GO7007_BOARD_HAS_AUDIO |
+					GO7007_BOARD_USE_ONBOARD_I2C,
+		.audio_flags	 = GO7007_AUDIO_I2S_MODE_1 |
+					GO7007_AUDIO_WORD_16,
+		.audio_rate	 = 48000,
+		.audio_bclk_div	 = 8,
+		.audio_main_div	 = 2,
+		.hpi_buffer_cap  = 7,
+		.sensor_flags	 = GO7007_SENSOR_656 |
+					GO7007_SENSOR_VALID_ENABLE |
+					GO7007_SENSOR_TV |
+					GO7007_SENSOR_VBI |
+					GO7007_SENSOR_SCALING,
+		.num_i2c_devs	 = 1,
+		.i2c_devs	 = {
+			{
+				.id	= I2C_DRIVERID_WIS_SAA7115,
+				.addr	= 0x20,
+			},
+		},
+		.num_inputs	 = 2,
+		.inputs 	 = {
+			{
+				.video_input	= 0,
+				.name		= "Composite",
+			},
+			{
+				.video_input	= 9,
+				.name		= "S-Video",
+			},
+		},
+	},
+};
+
+static struct go7007_usb_board board_matrix_reload = {
+	.flags		= GO7007_USB_EZUSB,
+	.main_info	= {
+		.firmware	 = "go7007tv.bin",
+		.flags		 = GO7007_BOARD_HAS_AUDIO |
+					GO7007_BOARD_USE_ONBOARD_I2C,
+		.audio_flags	 = GO7007_AUDIO_I2S_MODE_1 |
+					GO7007_AUDIO_I2S_MASTER |
+					GO7007_AUDIO_WORD_16,
+		.audio_rate	 = 48000,
+		.audio_bclk_div	 = 8,
+		.audio_main_div	 = 2,
+		.hpi_buffer_cap  = 7,
+		.sensor_flags	 = GO7007_SENSOR_656 |
+					GO7007_SENSOR_TV,
+		.num_i2c_devs	 = 1,
+		.i2c_devs	 = {
+			{
+				.id	= I2C_DRIVERID_WIS_SAA7113,
+				.addr	= 0x25,
+			},
+		},
+		.num_inputs	 = 2,
+		.inputs 	 = {
+			{
+				.video_input	= 0,
+				.name		= "Composite",
+			},
+			{
+				.video_input	= 9,
+				.name		= "S-Video",
+			},
+		},
+	},
+};
+
+static struct go7007_usb_board board_star_trek = {
+	.flags		= GO7007_USB_EZUSB | GO7007_USB_EZUSB_I2C,
+	.main_info	= {
+		.firmware	 = "go7007tv.bin",
+		.flags		 = GO7007_BOARD_HAS_AUDIO, /* |
+					GO7007_BOARD_HAS_TUNER, */
+		.sensor_flags	 = GO7007_SENSOR_656 |
+					GO7007_SENSOR_VALID_ENABLE |
+					GO7007_SENSOR_TV |
+					GO7007_SENSOR_VBI |
+					GO7007_SENSOR_SCALING,
+		.audio_flags	 = GO7007_AUDIO_I2S_MODE_1 |
+					GO7007_AUDIO_WORD_16,
+		.audio_bclk_div	 = 8,
+		.audio_main_div	 = 2,
+		.hpi_buffer_cap  = 7,
+		.num_i2c_devs	 = 1,
+		.i2c_devs	 = {
+			{
+				.id	= I2C_DRIVERID_WIS_SAA7115,
+				.addr	= 0x20,
+			},
+		},
+		.num_inputs	 = 2,
+		.inputs 	 = {
+			{
+				.video_input	= 1,
+			/*	.audio_input	= AUDIO_EXTERN, */
+				.name		= "Composite",
+			},
+			{
+				.video_input	= 8,
+			/*	.audio_input	= AUDIO_EXTERN, */
+				.name		= "S-Video",
+			},
+		/*	{
+		 *		.video_input	= 3,
+		 *		.audio_input	= AUDIO_TUNER,
+		 *		.name		= "Tuner",
+		 *	},
+		 */
+		},
+	},
+};
+
+static struct go7007_usb_board board_px_tv402u = {
+	.flags		= GO7007_USB_EZUSB | GO7007_USB_EZUSB_I2C,
+	.main_info	= {
+		.firmware	 = "go7007tv.bin",
+		.flags		 = GO7007_BOARD_HAS_AUDIO |
+					GO7007_BOARD_HAS_TUNER,
+		.sensor_flags	 = GO7007_SENSOR_656 |
+					GO7007_SENSOR_VALID_ENABLE |
+					GO7007_SENSOR_TV |
+					GO7007_SENSOR_VBI |
+					GO7007_SENSOR_SCALING,
+		.audio_flags	 = GO7007_AUDIO_I2S_MODE_1 |
+					GO7007_AUDIO_WORD_16,
+		.audio_bclk_div	 = 8,
+		.audio_main_div	 = 2,
+		.hpi_buffer_cap  = 7,
+		.num_i2c_devs	 = 3,
+		.i2c_devs	 = {
+			{
+				.id	= I2C_DRIVERID_WIS_SAA7115,
+				.addr	= 0x20,
+			},
+			{
+				.id	= I2C_DRIVERID_WIS_UDA1342,
+				.addr	= 0x1a,
+			},
+			{
+				.id	= I2C_DRIVERID_WIS_SONY_TUNER,
+				.addr	= 0x60,
+			},
+		},
+		.num_inputs	 = 3,
+		.inputs 	 = {
+			{
+				.video_input	= 1,
+		.audio_input	 = TVAUDIO_INPUT_EXTERN,
+				.name		= "Composite",
+			},
+			{
+				.video_input	= 8,
+				.audio_input	= TVAUDIO_INPUT_EXTERN,
+				.name		= "S-Video",
+			},
+			{
+				.video_input	= 3,
+				.audio_input	= TVAUDIO_INPUT_TUNER,
+				.name		= "Tuner",
+			},
+		},
+	},
+};
+
+static struct go7007_usb_board board_xmen = {
+	.flags		= 0,
+	.main_info	= {
+		.firmware	  = "go7007tv.bin",
+		.flags		  = GO7007_BOARD_USE_ONBOARD_I2C,
+		.hpi_buffer_cap   = 0,
+		.sensor_flags	  = GO7007_SENSOR_VREF_POLAR,
+		.sensor_width	  = 320,
+		.sensor_height	  = 240,
+		.sensor_framerate = 30030,
+		.audio_flags	  = GO7007_AUDIO_ONE_CHANNEL |
+					GO7007_AUDIO_I2S_MODE_3 |
+					GO7007_AUDIO_WORD_14 |
+					GO7007_AUDIO_I2S_MASTER |
+					GO7007_AUDIO_BCLK_POLAR |
+					GO7007_AUDIO_OKI_MODE,
+		.audio_rate	  = 8000,
+		.audio_bclk_div	  = 48,
+		.audio_main_div	  = 1,
+		.num_i2c_devs	  = 1,
+		.i2c_devs	  = {
+			{
+				.id	= I2C_DRIVERID_WIS_OV7640,
+				.addr	= 0x21,
+			},
+		},
+		.num_inputs	  = 1,
+		.inputs 	  = {
+			{
+				.name		= "Camera",
+			},
+		},
+	},
+};
+
+static struct go7007_usb_board board_matrix_revolution = {
+	.flags		= GO7007_USB_EZUSB,
+	.main_info	= {
+		.firmware	 = "go7007tv.bin",
+		.flags		 = GO7007_BOARD_HAS_AUDIO |
+					GO7007_BOARD_USE_ONBOARD_I2C,
+		.audio_flags	 = GO7007_AUDIO_I2S_MODE_1 |
+					GO7007_AUDIO_I2S_MASTER |
+					GO7007_AUDIO_WORD_16,
+		.audio_rate	 = 48000,
+		.audio_bclk_div	 = 8,
+		.audio_main_div	 = 2,
+		.hpi_buffer_cap  = 7,
+		.sensor_flags	 = GO7007_SENSOR_656 |
+					GO7007_SENSOR_TV |
+					GO7007_SENSOR_VBI,
+		.num_i2c_devs	 = 1,
+		.i2c_devs	 = {
+			{
+				.id	= I2C_DRIVERID_WIS_TW9903,
+				.addr	= 0x44,
+			},
+		},
+		.num_inputs	 = 2,
+		.inputs 	 = {
+			{
+				.video_input	= 2,
+				.name		= "Composite",
+			},
+			{
+				.video_input	= 8,
+				.name		= "S-Video",
+			},
+		},
+	},
+};
+
+static struct go7007_usb_board board_lifeview_lr192 = {
+	.flags		= GO7007_USB_EZUSB,
+	.main_info	= {
+		.firmware	 = "go7007tv.bin",
+		.flags		 = GO7007_BOARD_HAS_AUDIO |
+					GO7007_BOARD_USE_ONBOARD_I2C,
+		.audio_flags	 = GO7007_AUDIO_I2S_MODE_1 |
+					GO7007_AUDIO_WORD_16,
+		.audio_rate	 = 48000,
+		.audio_bclk_div	 = 8,
+		.audio_main_div	 = 2,
+		.hpi_buffer_cap  = 7,
+		.sensor_flags	 = GO7007_SENSOR_656 |
+					GO7007_SENSOR_VALID_ENABLE |
+					GO7007_SENSOR_TV |
+					GO7007_SENSOR_VBI |
+					GO7007_SENSOR_SCALING,
+		.num_i2c_devs	 = 0,
+		.num_inputs	 = 1,
+		.inputs 	 = {
+			{
+				.video_input	= 0,
+				.name		= "Composite",
+			},
+		},
+	},
+};
+
+static struct go7007_usb_board board_endura = {
+	.flags		= 0,
+	.main_info	= {
+		.firmware	 = "go7007tv.bin",
+		.flags		 = 0,
+		.audio_flags	 = GO7007_AUDIO_I2S_MODE_1 |
+					GO7007_AUDIO_I2S_MASTER |
+					GO7007_AUDIO_WORD_16,
+		.audio_rate	 = 8000,
+		.audio_bclk_div	 = 48,
+		.audio_main_div	 = 8,
+		.hpi_buffer_cap  = 0,
+		.sensor_flags	 = GO7007_SENSOR_656 |
+					GO7007_SENSOR_TV,
+		.sensor_h_offset = 8,
+		.num_i2c_devs	 = 0,
+		.num_inputs	 = 1,
+		.inputs 	 = {
+			{
+				.name		= "Camera",
+			},
+		},
+	},
+};
+
+static struct go7007_usb_board board_adlink_mpg24 = {
+	.flags		= 0,
+	.main_info	= {
+		.firmware	 = "go7007tv.bin",
+		.flags		 = GO7007_BOARD_USE_ONBOARD_I2C,
+		.audio_flags	 = GO7007_AUDIO_I2S_MODE_1 |
+					GO7007_AUDIO_I2S_MASTER |
+					GO7007_AUDIO_WORD_16,
+		.audio_rate	 = 48000,
+		.audio_bclk_div	 = 8,
+		.audio_main_div	 = 2,
+		.hpi_buffer_cap  = 0,
+		.sensor_flags	 = GO7007_SENSOR_656 |
+					GO7007_SENSOR_TV |
+					GO7007_SENSOR_VBI,
+		.num_i2c_devs	 = 1,
+		.i2c_devs	 = {
+			{
+				.id	= I2C_DRIVERID_WIS_TW2804,
+				.addr	= 0x00, /* yes, really */
+			},
+		},
+		.num_inputs	 = 1,
+		.inputs 	 = {
+			{
+				.name		= "Composite",
+			},
+		},
+	},
+};
+
+static struct usb_device_id go7007_usb_id_table[] = {
+	{
+		.match_flags	= USB_DEVICE_ID_MATCH_DEVICE_AND_VERSION |
+					USB_DEVICE_ID_MATCH_INT_INFO,
+		.idVendor	= 0x0eb1,  /* Vendor ID of WIS Technologies */
+		.idProduct	= 0x7007,  /* Product ID of GO7007SB chip */
+		.bcdDevice_lo	= 0x200,   /* Revision number of XMen */
+		.bcdDevice_hi	= 0x200,
+		.bInterfaceClass	= 255,
+		.bInterfaceSubClass	= 0,
+		.bInterfaceProtocol	= 255,
+		.driver_info	= (kernel_ulong_t)GO7007_BOARDID_XMEN,
+	},
+	{
+		.match_flags	= USB_DEVICE_ID_MATCH_DEVICE_AND_VERSION,
+		.idVendor	= 0x0eb1,  /* Vendor ID of WIS Technologies */
+		.idProduct	= 0x7007,  /* Product ID of GO7007SB chip */
+		.bcdDevice_lo	= 0x202,   /* Revision number of Matrix II */
+		.bcdDevice_hi	= 0x202,
+		.driver_info	= (kernel_ulong_t)GO7007_BOARDID_MATRIX_II,
+	},
+	{
+		.match_flags	= USB_DEVICE_ID_MATCH_DEVICE_AND_VERSION,
+		.idVendor	= 0x0eb1,  /* Vendor ID of WIS Technologies */
+		.idProduct	= 0x7007,  /* Product ID of GO7007SB chip */
+		.bcdDevice_lo	= 0x204,   /* Revision number of Matrix */
+		.bcdDevice_hi	= 0x204,   /*     Reloaded */
+		.driver_info	= (kernel_ulong_t)GO7007_BOARDID_MATRIX_RELOAD,
+	},
+	{
+		.match_flags	= USB_DEVICE_ID_MATCH_DEVICE_AND_VERSION |
+					USB_DEVICE_ID_MATCH_INT_INFO,
+		.idVendor	= 0x0eb1,  /* Vendor ID of WIS Technologies */
+		.idProduct	= 0x7007,  /* Product ID of GO7007SB chip */
+		.bcdDevice_lo	= 0x205,   /* Revision number of XMen-II */
+		.bcdDevice_hi	= 0x205,
+		.bInterfaceClass	= 255,
+		.bInterfaceSubClass	= 0,
+		.bInterfaceProtocol	= 255,
+		.driver_info	= (kernel_ulong_t)GO7007_BOARDID_XMEN_II,
+	},
+	{
+		.match_flags	= USB_DEVICE_ID_MATCH_DEVICE_AND_VERSION,
+		.idVendor	= 0x0eb1,  /* Vendor ID of WIS Technologies */
+		.idProduct	= 0x7007,  /* Product ID of GO7007SB chip */
+		.bcdDevice_lo	= 0x208,   /* Revision number of Star Trek */
+		.bcdDevice_hi	= 0x208,
+		.driver_info	= (kernel_ulong_t)GO7007_BOARDID_STAR_TREK,
+	},
+	{
+		.match_flags	= USB_DEVICE_ID_MATCH_DEVICE_AND_VERSION |
+					USB_DEVICE_ID_MATCH_INT_INFO,
+		.idVendor	= 0x0eb1,  /* Vendor ID of WIS Technologies */
+		.idProduct	= 0x7007,  /* Product ID of GO7007SB chip */
+		.bcdDevice_lo	= 0x209,   /* Revision number of XMen-III */
+		.bcdDevice_hi	= 0x209,
+		.bInterfaceClass	= 255,
+		.bInterfaceSubClass	= 0,
+		.bInterfaceProtocol	= 255,
+		.driver_info	= (kernel_ulong_t)GO7007_BOARDID_XMEN_III,
+	},
+	{
+		.match_flags	= USB_DEVICE_ID_MATCH_DEVICE_AND_VERSION,
+		.idVendor	= 0x0eb1,  /* Vendor ID of WIS Technologies */
+		.idProduct	= 0x7007,  /* Product ID of GO7007SB chip */
+		.bcdDevice_lo	= 0x210,   /* Revision number of Matrix */
+		.bcdDevice_hi	= 0x210,   /*     Revolution */
+		.driver_info	= (kernel_ulong_t)GO7007_BOARDID_MATRIX_REV,
+	},
+	{
+		.match_flags	= USB_DEVICE_ID_MATCH_DEVICE_AND_VERSION,
+		.idVendor	= 0x093b,  /* Vendor ID of Plextor */
+		.idProduct	= 0xa102,  /* Product ID of M402U */
+		.bcdDevice_lo	= 0x1,	   /* revision number of Blueberry */
+		.bcdDevice_hi	= 0x1,
+		.driver_info	= (kernel_ulong_t)GO7007_BOARDID_PX_M402U,
+	},
+	{
+		.match_flags	= USB_DEVICE_ID_MATCH_DEVICE_AND_VERSION,
+		.idVendor	= 0x093b,  /* Vendor ID of Plextor */
+		.idProduct	= 0xa104,  /* Product ID of TV402U */
+		.bcdDevice_lo	= 0x1,
+		.bcdDevice_hi	= 0x1,
+		.driver_info	= (kernel_ulong_t)GO7007_BOARDID_PX_TV402U_ANY,
+	},
+	{
+		.match_flags	= USB_DEVICE_ID_MATCH_DEVICE_AND_VERSION,
+		.idVendor	= 0x10fd,  /* Vendor ID of Anubis Electronics */
+		.idProduct	= 0xde00,  /* Product ID of Lifeview LR192 */
+		.bcdDevice_lo	= 0x1,
+		.bcdDevice_hi	= 0x1,
+		.driver_info	= (kernel_ulong_t)GO7007_BOARDID_LIFEVIEW_LR192,
+	},
+	{ }					/* Terminating entry */
+};
+
+MODULE_DEVICE_TABLE(usb, go7007_usb_id_table);
+
+/********************* Driver for EZ-USB HPI interface *********************/
+
+static int go7007_usb_vendor_request(struct go7007 *go, int request,
+		int value, int index, void *transfer_buffer, int length, int in)
+{
+	struct go7007_usb *usb = go->hpi_context;
+	int timeout = 5000;
+
+	if (in) {
+		return usb_control_msg(usb->usbdev,
+				usb_rcvctrlpipe(usb->usbdev, 0), request,
+				USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_IN,
+				value, index, transfer_buffer, length, timeout);
+	} else {
+		return usb_control_msg(usb->usbdev,
+				usb_sndctrlpipe(usb->usbdev, 0), request,
+				USB_TYPE_VENDOR | USB_RECIP_DEVICE,
+				value, index, transfer_buffer, length, timeout);
+	}
+}
+
+static int go7007_usb_interface_reset(struct go7007 *go)
+{
+	struct go7007_usb *usb = go->hpi_context;
+	u16 intr_val, intr_data;
+
+	/* Reset encoder */
+	if (go7007_write_interrupt(go, 0x0001, 0x0001) < 0)
+		return -1;
+	msleep(100);
+
+	if (usb->board->flags & GO7007_USB_EZUSB) {
+		/* Reset buffer in EZ-USB */
+#ifdef GO7007_USB_DEBUG
+		printk(KERN_DEBUG "go7007-usb: resetting EZ-USB buffers\n");
+#endif
+		if (go7007_usb_vendor_request(go, 0x10, 0, 0, NULL, 0, 0) < 0 ||
+		    go7007_usb_vendor_request(go, 0x10, 0, 0, NULL, 0, 0) < 0)
+			return -1;
+
+		/* Reset encoder again */
+		if (go7007_write_interrupt(go, 0x0001, 0x0001) < 0)
+			return -1;
+		msleep(100);
+	}
+
+	/* Wait for an interrupt to indicate successful hardware reset */
+	if (go7007_read_interrupt(go, &intr_val, &intr_data) < 0 ||
+			(intr_val & ~0x1) != 0x55aa) {
+		printk(KERN_ERR
+			"go7007-usb: unable to reset the USB interface\n");
+		return -1;
+	}
+	return 0;
+}
+
+static int go7007_usb_ezusb_write_interrupt(struct go7007 *go,
+						int addr, int data)
+{
+	struct go7007_usb *usb = go->hpi_context;
+	int i, r;
+	u16 status_reg;
+	int timeout = 500;
+
+#ifdef GO7007_USB_DEBUG
+	printk(KERN_DEBUG
+		"go7007-usb: WriteInterrupt: %04x %04x\n", addr, data);
+#endif
+
+	for (i = 0; i < 100; ++i) {
+		r = usb_control_msg(usb->usbdev,
+				usb_rcvctrlpipe(usb->usbdev, 0), 0x14,
+				USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_IN,
+				0, HPI_STATUS_ADDR, &status_reg,
+				sizeof(status_reg), timeout);
+		if (r < 0)
+			goto write_int_error;
+		__le16_to_cpus(&status_reg);
+		if (!(status_reg & 0x0010))
+			break;
+		msleep(10);
+	}
+	if (i == 100) {
+		printk(KERN_ERR
+			"go7007-usb: device is hung, status reg = 0x%04x\n",
+			status_reg);
+		return -1;
+	}
+	r = usb_control_msg(usb->usbdev, usb_sndctrlpipe(usb->usbdev, 0), 0x12,
+			USB_TYPE_VENDOR | USB_RECIP_DEVICE, data,
+			INT_PARAM_ADDR, NULL, 0, timeout);
+	if (r < 0)
+		goto write_int_error;
+	r = usb_control_msg(usb->usbdev, usb_sndctrlpipe(usb->usbdev, 0),
+			0x12, USB_TYPE_VENDOR | USB_RECIP_DEVICE, addr,
+			INT_INDEX_ADDR, NULL, 0, timeout);
+	if (r < 0)
+		goto write_int_error;
+	return 0;
+
+write_int_error:
+	printk(KERN_ERR "go7007-usb: error in WriteInterrupt: %d\n", r);
+	return r;
+}
+
+static int go7007_usb_onboard_write_interrupt(struct go7007 *go,
+						int addr, int data)
+{
+	struct go7007_usb *usb = go->hpi_context;
+	u8 *tbuf;
+	int r;
+	int timeout = 500;
+
+#ifdef GO7007_USB_DEBUG
+	printk(KERN_DEBUG
+		"go7007-usb: WriteInterrupt: %04x %04x\n", addr, data);
+#endif
+
+	tbuf = kmalloc(8, GFP_KERNEL);
+	if (tbuf == NULL)
+		return -ENOMEM;
+	memset(tbuf, 0, 8);
+	tbuf[0] = data & 0xff;
+	tbuf[1] = data >> 8;
+	tbuf[2] = addr & 0xff;
+	tbuf[3] = addr >> 8;
+	r = usb_control_msg(usb->usbdev, usb_sndctrlpipe(usb->usbdev, 2), 0x00,
+			USB_TYPE_VENDOR | USB_RECIP_ENDPOINT, 0x55aa,
+			0xf0f0, tbuf, 8, timeout);
+	kfree(tbuf);
+	if (r < 0) {
+		printk(KERN_ERR "go7007-usb: error in WriteInterrupt: %d\n", r);
+		return r;
+	}
+	return 0;
+}
+
+static void go7007_usb_readinterrupt_complete(struct urb *urb)
+{
+	struct go7007 *go = (struct go7007 *)urb->context;
+	u16 *regs = (u16 *)urb->transfer_buffer;
+
+	if (urb->status != 0) {
+		if (urb->status != -ESHUTDOWN &&
+				go->status != STATUS_SHUTDOWN) {
+			printk(KERN_ERR
+				"go7007-usb: error in read interrupt: %d\n",
+				urb->status);
+		} else {
+			wake_up(&go->interrupt_waitq);
+			return;
+		}
+	} else if (urb->actual_length != urb->transfer_buffer_length) {
+		printk(KERN_ERR "go7007-usb: short read in interrupt pipe!\n");
+	} else {
+		go->interrupt_available = 1;
+		go->interrupt_data = __le16_to_cpu(regs[0]);
+		go->interrupt_value = __le16_to_cpu(regs[1]);
+#ifdef GO7007_USB_DEBUG
+		printk(KERN_DEBUG "go7007-usb: ReadInterrupt: %04x %04x\n",
+				go->interrupt_value, go->interrupt_data);
+#endif
+	}
+
+	wake_up(&go->interrupt_waitq);
+}
+
+static int go7007_usb_read_interrupt(struct go7007 *go)
+{
+	struct go7007_usb *usb = go->hpi_context;
+	int r;
+
+	r = usb_submit_urb(usb->intr_urb, GFP_KERNEL);
+	if (r < 0) {
+		printk(KERN_ERR
+			"go7007-usb: unable to submit interrupt urb: %d\n", r);
+		return r;
+	}
+	return 0;
+}
+
+static void go7007_usb_read_video_pipe_complete(struct urb *urb)
+{
+	struct go7007 *go = (struct go7007 *)urb->context;
+	int r;
+
+	if (!go->streaming) {
+		wake_up_interruptible(&go->frame_waitq);
+		return;
+	}
+	if (urb->status != 0) {
+		printk(KERN_ERR "go7007-usb: error in video pipe: %d\n",
+				urb->status);
+		return;
+	}
+	if (urb->actual_length != urb->transfer_buffer_length) {
+		printk(KERN_ERR "go7007-usb: short read in video pipe!\n");
+		return;
+	}
+	go7007_parse_video_stream(go, urb->transfer_buffer, urb->actual_length);
+	r = usb_submit_urb(urb, GFP_ATOMIC);
+	if (r < 0)
+		printk(KERN_ERR "go7007-usb: error in video pipe: %d\n", r);
+}
+
+static void go7007_usb_read_audio_pipe_complete(struct urb *urb)
+{
+	struct go7007 *go = (struct go7007 *)urb->context;
+	int r;
+
+	if (!go->streaming)
+		return;
+	if (urb->status != 0) {
+		printk(KERN_ERR "go7007-usb: error in audio pipe: %d\n",
+				urb->status);
+		return;
+	}
+	if (urb->actual_length != urb->transfer_buffer_length) {
+		printk(KERN_ERR "go7007-usb: short read in audio pipe!\n");
+		return;
+	}
+	if (go->audio_deliver != NULL)
+		go->audio_deliver(go, urb->transfer_buffer, urb->actual_length);
+	r = usb_submit_urb(urb, GFP_ATOMIC);
+	if (r < 0)
+		printk(KERN_ERR "go7007-usb: error in audio pipe: %d\n", r);
+}
+
+static int go7007_usb_stream_start(struct go7007 *go)
+{
+	struct go7007_usb *usb = go->hpi_context;
+	int i, r;
+
+	for (i = 0; i < 8; ++i) {
+		r = usb_submit_urb(usb->video_urbs[i], GFP_KERNEL);
+		if (r < 0) {
+			printk(KERN_ERR "go7007-usb: error submitting video "
+					"urb %d: %d\n", i, r);
+			goto video_submit_failed;
+		}
+	}
+	if (!go->audio_enabled)
+		return 0;
+
+	for (i = 0; i < 8; ++i) {
+		r = usb_submit_urb(usb->audio_urbs[i], GFP_KERNEL);
+		if (r < 0) {
+			printk(KERN_ERR "go7007-usb: error submitting audio "
+					"urb %d: %d\n", i, r);
+			goto audio_submit_failed;
+		}
+	}
+	return 0;
+
+audio_submit_failed:
+	for (i = 0; i < 8; ++i)
+		usb_kill_urb(usb->audio_urbs[i]);
+video_submit_failed:
+	for (i = 0; i < 8; ++i)
+		usb_kill_urb(usb->video_urbs[i]);
+	return -1;
+}
+
+static int go7007_usb_stream_stop(struct go7007 *go)
+{
+	struct go7007_usb *usb = go->hpi_context;
+	int i;
+
+	if (go->status == STATUS_SHUTDOWN)
+		return 0;
+	for (i = 0; i < 8; ++i)
+		usb_kill_urb(usb->video_urbs[i]);
+	if (go->audio_enabled)
+		for (i = 0; i < 8; ++i)
+			usb_kill_urb(usb->audio_urbs[i]);
+	return 0;
+}
+
+static int go7007_usb_send_firmware(struct go7007 *go, u8 *data, int len)
+{
+	struct go7007_usb *usb = go->hpi_context;
+	int transferred, pipe;
+	int timeout = 500;
+
+#ifdef GO7007_USB_DEBUG
+	printk(KERN_DEBUG "go7007-usb: DownloadBuffer sending %d bytes\n", len);
+#endif
+
+	if (usb->board->flags & GO7007_USB_EZUSB)
+		pipe = usb_sndbulkpipe(usb->usbdev, 2);
+	else
+		pipe = usb_sndbulkpipe(usb->usbdev, 3);
+
+	return usb_bulk_msg(usb->usbdev, pipe, data, len,
+					&transferred, timeout);
+}
+
+static struct go7007_hpi_ops go7007_usb_ezusb_hpi_ops = {
+	.interface_reset	= go7007_usb_interface_reset,
+	.write_interrupt	= go7007_usb_ezusb_write_interrupt,
+	.read_interrupt		= go7007_usb_read_interrupt,
+	.stream_start		= go7007_usb_stream_start,
+	.stream_stop		= go7007_usb_stream_stop,
+	.send_firmware		= go7007_usb_send_firmware,
+};
+
+static struct go7007_hpi_ops go7007_usb_onboard_hpi_ops = {
+	.interface_reset	= go7007_usb_interface_reset,
+	.write_interrupt	= go7007_usb_onboard_write_interrupt,
+	.read_interrupt		= go7007_usb_read_interrupt,
+	.stream_start		= go7007_usb_stream_start,
+	.stream_stop		= go7007_usb_stream_stop,
+	.send_firmware		= go7007_usb_send_firmware,
+};
+
+/********************* Driver for EZ-USB I2C adapter *********************/
+
+static int go7007_usb_i2c_master_xfer(struct i2c_adapter *adapter,
+					struct i2c_msg msgs[], int num)
+{
+	struct go7007 *go = i2c_get_adapdata(adapter);
+	struct go7007_usb *usb = go->hpi_context;
+	u8 buf[16];
+	int buf_len, i;
+	int ret = -1;
+
+	if (go->status == STATUS_SHUTDOWN)
+		return -1;
+
+	down(&usb->i2c_lock);
+
+	for (i = 0; i < num; ++i) {
+		/* The hardware command is "write some bytes then read some
+		 * bytes", so we try to coalesce a write followed by a read
+		 * into a single USB transaction */
+		if (i + 1 < num && msgs[i].addr == msgs[i + 1].addr &&
+				!(msgs[i].flags & I2C_M_RD) &&
+				(msgs[i + 1].flags & I2C_M_RD)) {
+#ifdef GO7007_I2C_DEBUG
+			printk(KERN_DEBUG "go7007-usb: i2c write/read %d/%d "
+					"bytes on %02x\n", msgs[i].len,
+					msgs[i + 1].len, msgs[i].addr);
+#endif
+			buf[0] = 0x01;
+			buf[1] = msgs[i].len + 1;
+			buf[2] = msgs[i].addr << 1;
+			memcpy(&buf[3], msgs[i].buf, msgs[i].len);
+			buf_len = msgs[i].len + 3;
+			buf[buf_len++] = msgs[++i].len;
+		} else if (msgs[i].flags & I2C_M_RD) {
+#ifdef GO7007_I2C_DEBUG
+			printk(KERN_DEBUG "go7007-usb: i2c read %d "
+					"bytes on %02x\n", msgs[i].len,
+					msgs[i].addr);
+#endif
+			buf[0] = 0x01;
+			buf[1] = 1;
+			buf[2] = msgs[i].addr << 1;
+			buf[3] = msgs[i].len;
+			buf_len = 4;
+		} else {
+#ifdef GO7007_I2C_DEBUG
+			printk(KERN_DEBUG "go7007-usb: i2c write %d "
+					"bytes on %02x\n", msgs[i].len,
+					msgs[i].addr);
+#endif
+			buf[0] = 0x00;
+			buf[1] = msgs[i].len + 1;
+			buf[2] = msgs[i].addr << 1;
+			memcpy(&buf[3], msgs[i].buf, msgs[i].len);
+			buf_len = msgs[i].len + 3;
+			buf[buf_len++] = 0;
+		}
+		if (go7007_usb_vendor_request(go, 0x24, 0, 0,
+						buf, buf_len, 0) < 0)
+			goto i2c_done;
+		if (msgs[i].flags & I2C_M_RD) {
+			memset(buf, 0, sizeof(buf));
+			if (go7007_usb_vendor_request(go, 0x25, 0, 0, buf,
+						msgs[i].len + 1, 1) < 0)
+				goto i2c_done;
+			memcpy(msgs[i].buf, buf + 1, msgs[i].len);
+		}
+	}
+	ret = 0;
+
+i2c_done:
+	up(&usb->i2c_lock);
+	return ret;
+}
+
+static u32 go7007_usb_functionality(struct i2c_adapter *adapter)
+{
+	/* No errors are reported by the hardware, so we don't bother
+	 * supporting quick writes to avoid confusing probing */
+	return (I2C_FUNC_SMBUS_EMUL) & ~I2C_FUNC_SMBUS_QUICK;
+}
+
+static struct i2c_algorithm go7007_usb_algo = {
+	.master_xfer	= go7007_usb_i2c_master_xfer,
+	.functionality	= go7007_usb_functionality,
+};
+
+static struct i2c_adapter go7007_usb_adap_templ = {
+	.owner			= THIS_MODULE,
+	.class			= I2C_CLASS_TV_ANALOG,
+	.name			= "WIS GO7007SB EZ-USB",
+	.id			= I2C_ALGO_GO7007_USB,
+	.algo			= &go7007_usb_algo,
+};
+
+/********************* USB add/remove functions *********************/
+
+static int go7007_usb_probe(struct usb_interface *intf,
+		const struct usb_device_id *id)
+{
+	struct go7007 *go;
+	struct go7007_usb *usb;
+	struct go7007_usb_board *board;
+	struct usb_device *usbdev = interface_to_usbdev(intf);
+	char *name;
+	int video_pipe, i, v_urb_len;
+
+	printk(KERN_DEBUG "go7007-usb: probing new GO7007 USB board\n");
+
+	switch (id->driver_info) {
+	case GO7007_BOARDID_MATRIX_II:
+		name = "WIS Matrix II or compatible";
+		board = &board_matrix_ii;
+		break;
+	case GO7007_BOARDID_MATRIX_RELOAD:
+		name = "WIS Matrix Reloaded or compatible";
+		board = &board_matrix_reload;
+		break;
+	case GO7007_BOARDID_MATRIX_REV:
+		name = "WIS Matrix Revolution or compatible";
+		board = &board_matrix_revolution;
+		break;
+	case GO7007_BOARDID_STAR_TREK:
+		name = "WIS Star Trek or compatible";
+		board = &board_star_trek;
+		break;
+	case GO7007_BOARDID_XMEN:
+		name = "WIS XMen or compatible";
+		board = &board_xmen;
+		break;
+	case GO7007_BOARDID_XMEN_II:
+		name = "WIS XMen II or compatible";
+		board = &board_xmen;
+		break;
+	case GO7007_BOARDID_XMEN_III:
+		name = "WIS XMen III or compatible";
+		board = &board_xmen;
+		break;
+	case GO7007_BOARDID_PX_M402U:
+		name = "Plextor PX-M402U";
+		board = &board_matrix_ii;
+		break;
+	case GO7007_BOARDID_PX_TV402U_ANY:
+		name = "Plextor PX-TV402U (unknown tuner)";
+		board = &board_px_tv402u;
+		break;
+	case GO7007_BOARDID_LIFEVIEW_LR192:
+		printk(KERN_ERR "go7007-usb: The Lifeview TV Walker Ultra "
+				"is not supported.  Sorry!\n");
+		return 0;
+		name = "Lifeview TV Walker Ultra";
+		board = &board_lifeview_lr192;
+		break;
+	default:
+		printk(KERN_ERR "go7007-usb: unknown board ID %d!\n",
+				(unsigned int)id->driver_info);
+		return 0;
+	}
+
+	usb = kmalloc(sizeof(struct go7007_usb), GFP_KERNEL);
+	if (usb == NULL)
+		return -ENOMEM;
+	memset(usb, 0, sizeof(struct go7007_usb));
+
+	/* Allocate the URB and buffer for receiving incoming interrupts */
+	usb->intr_urb = usb_alloc_urb(0, GFP_KERNEL);
+	if (usb->intr_urb == NULL)
+		goto allocfail;
+	usb->intr_urb->transfer_buffer = kmalloc(2*sizeof(u16), GFP_KERNEL);
+	if (usb->intr_urb->transfer_buffer == NULL)
+		goto allocfail;
+
+	go = go7007_alloc(&board->main_info, &intf->dev);
+	if (go == NULL)
+		goto allocfail;
+	usb->board = board;
+	usb->usbdev = usbdev;
+	go->board_id = id->driver_info;
+	strncpy(go->name, name, sizeof(go->name));
+	if (board->flags & GO7007_USB_EZUSB)
+		go->hpi_ops = &go7007_usb_ezusb_hpi_ops;
+	else
+		go->hpi_ops = &go7007_usb_onboard_hpi_ops;
+	go->hpi_context = usb;
+	usb_fill_int_urb(usb->intr_urb, usb->usbdev,
+			usb_rcvintpipe(usb->usbdev, 4),
+			usb->intr_urb->transfer_buffer, 2*sizeof(u16),
+			go7007_usb_readinterrupt_complete, go, 8);
+	usb_set_intfdata(intf, go);
+
+	/* Boot the GO7007 */
+	if (go7007_boot_encoder(go, go->board_info->flags &
+					GO7007_BOARD_USE_ONBOARD_I2C) < 0)
+		goto initfail;
+
+	/* Register the EZ-USB I2C adapter, if we're using it */
+	if (board->flags & GO7007_USB_EZUSB_I2C) {
+		memcpy(&go->i2c_adapter, &go7007_usb_adap_templ,
+				sizeof(go7007_usb_adap_templ));
+		init_MUTEX(&usb->i2c_lock);
+		go->i2c_adapter.dev.parent = go->dev;
+		i2c_set_adapdata(&go->i2c_adapter, go);
+		if (i2c_add_adapter(&go->i2c_adapter) < 0) {
+			printk(KERN_ERR
+				"go7007-usb: error: i2c_add_adapter failed\n");
+			goto initfail;
+		}
+		go->i2c_adapter_online = 1;
+	}
+
+	/* Pelco and Adlink reused the XMen and XMen-III vendor and product
+	 * IDs for their own incompatible designs.  We can detect XMen boards
+	 * by probing the sensor, but there is no way to probe the sensors on
+	 * the Pelco and Adlink designs so we default to the Adlink.  If it
+	 * is actually a Pelco, the user must set the assume_endura module
+	 * parameter. */
+	if ((go->board_id == GO7007_BOARDID_XMEN ||
+				go->board_id == GO7007_BOARDID_XMEN_III) &&
+			go->i2c_adapter_online) {
+		union i2c_smbus_data data;
+
+		/* Check to see if register 0x0A is 0x76 */
+		i2c_smbus_xfer(&go->i2c_adapter, 0x21, I2C_CLIENT_SCCB,
+			I2C_SMBUS_READ, 0x0A, I2C_SMBUS_BYTE_DATA, &data);
+		if (data.byte != 0x76) {
+			if (assume_endura) {
+				go->board_id = GO7007_BOARDID_ENDURA;
+				usb->board = board = &board_endura;
+				go->board_info = &board->main_info;
+				strncpy(go->name, "Pelco Endura",
+						sizeof(go->name));
+			} else {
+				u16 channel;
+
+				/* set GPIO5 to be an output, currently low */
+				go7007_write_addr(go, 0x3c82, 0x0000);
+				go7007_write_addr(go, 0x3c80, 0x00df);
+				/* read channel number from GPIO[1:0] */
+				go7007_read_addr(go, 0x3c81, &channel);
+				channel &= 0x3;
+				go->board_id = GO7007_BOARDID_ADLINK_MPG24;
+				usb->board = board = &board_adlink_mpg24;
+				go->board_info = &board->main_info;
+				go->channel_number = channel;
+				snprintf(go->name, sizeof(go->name),
+					"Adlink PCI-MPG24, channel #%d",
+					channel);
+			}
+		}
+	}
+
+	/* Probe the tuner model on the TV402U */
+	if (go->board_id == GO7007_BOARDID_PX_TV402U_ANY) {
+		u8 data[3];
+
+		/* Board strapping indicates tuner model */
+		if (go7007_usb_vendor_request(go, 0x41, 0, 0, data, 3, 1) < 0) {
+			printk(KERN_ERR "go7007-usb: GPIO read failed!\n");
+			goto initfail;
+		}
+		switch (data[0] >> 6) {
+		case 1:
+			go->board_id = GO7007_BOARDID_PX_TV402U_EU;
+			go->tuner_type = TUNER_SONY_BTF_PG472Z;
+			strncpy(go->name, "Plextor PX-TV402U-EU",
+					sizeof(go->name));
+			break;
+		case 2:
+			go->board_id = GO7007_BOARDID_PX_TV402U_JP;
+			go->tuner_type = TUNER_SONY_BTF_PK467Z;
+			strncpy(go->name, "Plextor PX-TV402U-JP",
+					sizeof(go->name));
+			break;
+		case 3:
+			go->board_id = GO7007_BOARDID_PX_TV402U_NA;
+			go->tuner_type = TUNER_SONY_BTF_PB463Z;
+			strncpy(go->name, "Plextor PX-TV402U-NA",
+					sizeof(go->name));
+			break;
+		default:
+			printk(KERN_DEBUG "go7007-usb: unable to detect "
+						"tuner type!\n");
+			break;
+		}
+		/* Configure tuner mode selection inputs connected
+		 * to the EZ-USB GPIO output pins */
+		if (go7007_usb_vendor_request(go, 0x40, 0x7f02, 0,
+					NULL, 0, 0) < 0) {
+			printk(KERN_ERR
+				"go7007-usb: GPIO write failed!\n");
+			goto initfail;
+		}
+	}
+
+	/* Print a nasty message if the user attempts to use a USB2.0 device in
+	 * a USB1.1 port.  There will be silent corruption of the stream. */
+	if ((board->flags & GO7007_USB_EZUSB) &&
+			usbdev->speed != USB_SPEED_HIGH)
+		printk(KERN_ERR "go7007-usb: *** WARNING ***  This device "
+				"must be connected to a USB 2.0 port!  "
+				"Attempting to capture video through a USB 1.1 "
+				"port will result in stream corruption, even "
+				"at low bitrates!\n");
+
+	/* Do any final GO7007 initialization, then register the
+	 * V4L2 and ALSA interfaces */
+	if (go7007_register_encoder(go) < 0)
+		goto initfail;
+
+	/* Allocate the URBs and buffers for receiving the video stream */
+	if (board->flags & GO7007_USB_EZUSB) {
+		v_urb_len = 1024;
+		video_pipe = usb_rcvbulkpipe(usb->usbdev, 6);
+	} else {
+		v_urb_len = 512;
+		video_pipe = usb_rcvbulkpipe(usb->usbdev, 1);
+	}
+	for (i = 0; i < 8; ++i) {
+		usb->video_urbs[i] = usb_alloc_urb(0, GFP_KERNEL);
+		if (usb->video_urbs[i] == NULL)
+			goto initfail;
+		usb->video_urbs[i]->transfer_buffer =
+						kmalloc(v_urb_len, GFP_KERNEL);
+		if (usb->video_urbs[i]->transfer_buffer == NULL)
+			goto initfail;
+		usb_fill_bulk_urb(usb->video_urbs[i], usb->usbdev, video_pipe,
+				usb->video_urbs[i]->transfer_buffer, v_urb_len,
+				go7007_usb_read_video_pipe_complete, go);
+	}
+
+	/* Allocate the URBs and buffers for receiving the audio stream */
+	if ((board->flags & GO7007_USB_EZUSB) && go->audio_enabled)
+		for (i = 0; i < 8; ++i) {
+			usb->audio_urbs[i] = usb_alloc_urb(0, GFP_KERNEL);
+			if (usb->audio_urbs[i] == NULL)
+				goto initfail;
+			usb->audio_urbs[i]->transfer_buffer = kmalloc(4096,
+								GFP_KERNEL);
+			if (usb->audio_urbs[i]->transfer_buffer == NULL)
+				goto initfail;
+			usb_fill_bulk_urb(usb->audio_urbs[i], usb->usbdev,
+				usb_rcvbulkpipe(usb->usbdev, 8),
+				usb->audio_urbs[i]->transfer_buffer, 4096,
+				go7007_usb_read_audio_pipe_complete, go);
+		}
+
+
+	go->status = STATUS_ONLINE;
+	return 0;
+
+initfail:
+	go->status = STATUS_SHUTDOWN;
+	return 0;
+
+allocfail:
+	if (usb->intr_urb) {
+		kfree(usb->intr_urb->transfer_buffer);
+		usb_free_urb(usb->intr_urb);
+	}
+	kfree(usb);
+	return -ENOMEM;
+}
+
+static void go7007_usb_disconnect(struct usb_interface *intf)
+{
+	struct go7007 *go = usb_get_intfdata(intf);
+	struct go7007_usb *usb = go->hpi_context;
+	int i;
+
+	go->status = STATUS_SHUTDOWN;
+	usb_kill_urb(usb->intr_urb);
+
+	/* Free USB-related structs */
+	for (i = 0; i < 8; ++i) {
+		if (usb->video_urbs[i] != NULL) {
+			if (usb->video_urbs[i]->transfer_buffer != NULL)
+				kfree(usb->video_urbs[i]->transfer_buffer);
+			usb_free_urb(usb->video_urbs[i]);
+		}
+		if (usb->audio_urbs[i] != NULL) {
+			if (usb->audio_urbs[i]->transfer_buffer != NULL)
+				kfree(usb->audio_urbs[i]->transfer_buffer);
+			usb_free_urb(usb->audio_urbs[i]);
+		}
+	}
+	kfree(usb->intr_urb->transfer_buffer);
+	usb_free_urb(usb->intr_urb);
+
+	kfree(go->hpi_context);
+
+	go7007_remove(go);
+}
+
+static struct usb_driver go7007_usb_driver = {
+	.name		= "go7007",
+	.probe		= go7007_usb_probe,
+	.disconnect	= go7007_usb_disconnect,
+	.id_table	= go7007_usb_id_table,
+};
+
+static int __init go7007_usb_init(void)
+{
+	return usb_register(&go7007_usb_driver);
+}
+
+static void __exit go7007_usb_cleanup(void)
+{
+	usb_deregister(&go7007_usb_driver);
+}
+
+module_init(go7007_usb_init);
+module_exit(go7007_usb_cleanup);
+
+MODULE_LICENSE("GPL v2");
diff --git a/drivers/staging/go7007/go7007-v4l2.c b/drivers/staging/go7007/go7007-v4l2.c
new file mode 100644
index 0000000..94e1141
--- /dev/null
+++ b/drivers/staging/go7007/go7007-v4l2.c
@@ -0,0 +1,1499 @@
+/*
+ * Copyright (C) 2005-2006 Micronas USA Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License (Version 2) as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software Foundation,
+ * Inc., 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/version.h>
+#include <linux/delay.h>
+#include <linux/sched.h>
+#include <linux/spinlock.h>
+#include <linux/fs.h>
+#include <linux/unistd.h>
+#include <linux/time.h>
+#include <linux/vmalloc.h>
+#include <linux/pagemap.h>
+#include <linux/videodev2.h>
+#include <media/v4l2-common.h>
+#include <media/v4l2-ioctl.h>
+#include <linux/i2c.h>
+#include <linux/semaphore.h>
+#include <linux/uaccess.h>
+#include <asm/system.h>
+
+#include "go7007.h"
+#include "go7007-priv.h"
+#include "wis-i2c.h"
+
+static void deactivate_buffer(struct go7007_buffer *gobuf)
+{
+	int i;
+
+	if (gobuf->state != BUF_STATE_IDLE) {
+		list_del(&gobuf->stream);
+		gobuf->state = BUF_STATE_IDLE;
+	}
+	if (gobuf->page_count > 0) {
+		for (i = 0; i < gobuf->page_count; ++i)
+			page_cache_release(gobuf->pages[i]);
+		gobuf->page_count = 0;
+	}
+}
+
+static void abort_queued(struct go7007 *go)
+{
+	struct go7007_buffer *gobuf, *next;
+
+	list_for_each_entry_safe(gobuf, next, &go->stream, stream) {
+		deactivate_buffer(gobuf);
+	}
+}
+
+static int go7007_streamoff(struct go7007 *go)
+{
+	int retval = -EINVAL;
+	unsigned long flags;
+
+	down(&go->hw_lock);
+	if (go->streaming) {
+		go->streaming = 0;
+		go7007_stream_stop(go);
+		spin_lock_irqsave(&go->spinlock, flags);
+		abort_queued(go);
+		spin_unlock_irqrestore(&go->spinlock, flags);
+		go7007_reset_encoder(go);
+		retval = 0;
+	}
+	up(&go->hw_lock);
+	return 0;
+}
+
+static int go7007_open(struct inode *inode, struct file *file)
+{
+	struct go7007 *go = video_get_drvdata(video_devdata(file));
+	struct go7007_file *gofh;
+
+	if (go->status != STATUS_ONLINE)
+		return -EBUSY;
+	gofh = kmalloc(sizeof(struct go7007_file), GFP_KERNEL);
+	if (gofh == NULL)
+		return -ENOMEM;
+	++go->ref_count;
+	gofh->go = go;
+	init_MUTEX(&gofh->lock);
+	gofh->buf_count = 0;
+	file->private_data = gofh;
+	return 0;
+}
+
+static int go7007_release(struct inode *inode, struct file *file)
+{
+	struct go7007_file *gofh = file->private_data;
+	struct go7007 *go = gofh->go;
+
+	if (gofh->buf_count > 0) {
+		go7007_streamoff(go);
+		go->in_use = 0;
+		kfree(gofh->bufs);
+		gofh->buf_count = 0;
+	}
+	kfree(gofh);
+	if (--go->ref_count == 0)
+		kfree(go);
+	file->private_data = NULL;
+	return 0;
+}
+
+static u32 get_frame_type_flag(struct go7007_buffer *gobuf, int format)
+{
+	u8 *f = page_address(gobuf->pages[0]);
+
+	switch (format) {
+	case GO7007_FORMAT_MJPEG:
+		return V4L2_BUF_FLAG_KEYFRAME;
+	case GO7007_FORMAT_MPEG4:
+		switch ((f[gobuf->frame_offset + 4] >> 6) & 0x3) {
+		case 0:
+			return V4L2_BUF_FLAG_KEYFRAME;
+		case 1:
+			return V4L2_BUF_FLAG_PFRAME;
+		case 2:
+			return V4L2_BUF_FLAG_BFRAME;
+		default:
+			return 0;
+		}
+	case GO7007_FORMAT_MPEG1:
+	case GO7007_FORMAT_MPEG2:
+		switch ((f[gobuf->frame_offset + 5] >> 3) & 0x7) {
+		case 1:
+			return V4L2_BUF_FLAG_KEYFRAME;
+		case 2:
+			return V4L2_BUF_FLAG_PFRAME;
+		case 3:
+			return V4L2_BUF_FLAG_BFRAME;
+		default:
+			return 0;
+		}
+	}
+
+	return 0;
+}
+
+static int set_capture_size(struct go7007 *go, struct v4l2_format *fmt, int try)
+{
+	int sensor_height = 0, sensor_width = 0;
+	int width, height, i;
+
+	if (fmt != NULL && fmt->fmt.pix.pixelformat != V4L2_PIX_FMT_MJPEG &&
+			fmt->fmt.pix.pixelformat != V4L2_PIX_FMT_MPEG &&
+			fmt->fmt.pix.pixelformat != V4L2_PIX_FMT_MPEG4)
+		return -EINVAL;
+
+	switch (go->standard) {
+	case GO7007_STD_NTSC:
+		sensor_width = 720;
+		sensor_height = 480;
+		break;
+	case GO7007_STD_PAL:
+		sensor_width = 720;
+		sensor_height = 576;
+		break;
+	case GO7007_STD_OTHER:
+		sensor_width = go->board_info->sensor_width;
+		sensor_height = go->board_info->sensor_height;
+		break;
+	}
+
+	if (fmt == NULL) {
+		width = sensor_width;
+		height = sensor_height;
+	} else if (go->board_info->sensor_flags & GO7007_SENSOR_SCALING) {
+		if (fmt->fmt.pix.width > sensor_width)
+			width = sensor_width;
+		else if (fmt->fmt.pix.width < 144)
+			width = 144;
+		else
+			width = fmt->fmt.pix.width & ~0x0f;
+
+		if (fmt->fmt.pix.height > sensor_height)
+			height = sensor_height;
+		else if (fmt->fmt.pix.height < 96)
+			height = 96;
+		else
+			height = fmt->fmt.pix.height & ~0x0f;
+	} else {
+		int requested_size = fmt->fmt.pix.width * fmt->fmt.pix.height;
+		int sensor_size = sensor_width * sensor_height;
+
+		if (64 * requested_size < 9 * sensor_size) {
+			width = sensor_width / 4;
+			height = sensor_height / 4;
+		} else if (64 * requested_size < 36 * sensor_size) {
+			width = sensor_width / 2;
+			height = sensor_height / 2;
+		} else {
+			width = sensor_width;
+			height = sensor_height;
+		}
+		width &= ~0xf;
+		height &= ~0xf;
+	}
+
+	if (fmt != NULL) {
+		u32 pixelformat = fmt->fmt.pix.pixelformat;
+
+		memset(fmt, 0, sizeof(*fmt));
+		fmt->type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
+		fmt->fmt.pix.width = width;
+		fmt->fmt.pix.height = height;
+		fmt->fmt.pix.pixelformat = pixelformat;
+		fmt->fmt.pix.field = V4L2_FIELD_NONE;
+		fmt->fmt.pix.bytesperline = 0;
+		fmt->fmt.pix.sizeimage = GO7007_BUF_SIZE;
+		fmt->fmt.pix.colorspace = V4L2_COLORSPACE_SMPTE170M; /* ?? */
+	}
+
+	if (try)
+		return 0;
+
+	go->width = width;
+	go->height = height;
+	go->encoder_h_offset = go->board_info->sensor_h_offset;
+	go->encoder_v_offset = go->board_info->sensor_v_offset;
+	for (i = 0; i < 4; ++i)
+		go->modet[i].enable = 0;
+	for (i = 0; i < 1624; ++i)
+		go->modet_map[i] = 0;
+
+	if (go->board_info->sensor_flags & GO7007_SENSOR_SCALING) {
+		struct video_decoder_resolution res;
+
+		res.width = width;
+		if (height > sensor_height / 2) {
+			res.height = height / 2;
+			go->encoder_v_halve = 0;
+		} else {
+			res.height = height;
+			go->encoder_v_halve = 1;
+		}
+		if (go->i2c_adapter_online)
+			i2c_clients_command(&go->i2c_adapter,
+					DECODER_SET_RESOLUTION, &res);
+	} else {
+		if (width <= sensor_width / 4) {
+			go->encoder_h_halve = 1;
+			go->encoder_v_halve = 1;
+			go->encoder_subsample = 1;
+		} else if (width <= sensor_width / 2) {
+			go->encoder_h_halve = 1;
+			go->encoder_v_halve = 1;
+			go->encoder_subsample = 0;
+		} else {
+			go->encoder_h_halve = 0;
+			go->encoder_v_halve = 0;
+			go->encoder_subsample = 0;
+		}
+	}
+
+	if (fmt == NULL)
+		return 0;
+
+	switch (fmt->fmt.pix.pixelformat) {
+	case V4L2_PIX_FMT_MPEG:
+		if (go->format == GO7007_FORMAT_MPEG1 ||
+				go->format == GO7007_FORMAT_MPEG2 ||
+				go->format == GO7007_FORMAT_MPEG4)
+			break;
+		go->format = GO7007_FORMAT_MPEG1;
+		go->pali = 0;
+		go->aspect_ratio = GO7007_RATIO_1_1;
+		go->gop_size = go->sensor_framerate / 1000;
+		go->ipb = 0;
+		go->closed_gop = 1;
+		go->repeat_seqhead = 1;
+		go->seq_header_enable = 1;
+		go->gop_header_enable = 1;
+		go->dvd_mode = 0;
+		break;
+	/* Backwards compatibility only! */
+	case V4L2_PIX_FMT_MPEG4:
+		if (go->format == GO7007_FORMAT_MPEG4)
+			break;
+		go->format = GO7007_FORMAT_MPEG4;
+		go->pali = 0xf5;
+		go->aspect_ratio = GO7007_RATIO_1_1;
+		go->gop_size = go->sensor_framerate / 1000;
+		go->ipb = 0;
+		go->closed_gop = 1;
+		go->repeat_seqhead = 1;
+		go->seq_header_enable = 1;
+		go->gop_header_enable = 1;
+		go->dvd_mode = 0;
+		break;
+	case V4L2_PIX_FMT_MJPEG:
+		go->format = GO7007_FORMAT_MJPEG;
+		go->pali = 0;
+		go->aspect_ratio = GO7007_RATIO_1_1;
+		go->gop_size = 0;
+		go->ipb = 0;
+		go->closed_gop = 0;
+		go->repeat_seqhead = 0;
+		go->seq_header_enable = 0;
+		go->gop_header_enable = 0;
+		go->dvd_mode = 0;
+		break;
+	}
+	return 0;
+}
+
+static int clip_to_modet_map(struct go7007 *go, int region,
+		struct v4l2_clip *clip_list)
+{
+	struct v4l2_clip clip, *clip_ptr;
+	int x, y, mbnum;
+
+	/* Check if coordinates are OK and if any macroblocks are already
+	 * used by other regions (besides 0) */
+	clip_ptr = clip_list;
+	while (clip_ptr) {
+		if (copy_from_user(&clip, clip_ptr, sizeof(clip)))
+			return -EFAULT;
+		if (clip.c.left < 0 || (clip.c.left & 0xF) ||
+				clip.c.width <= 0 || (clip.c.width & 0xF))
+			return -EINVAL;
+		if (clip.c.left + clip.c.width > go->width)
+			return -EINVAL;
+		if (clip.c.top < 0 || (clip.c.top & 0xF) ||
+				clip.c.height <= 0 || (clip.c.height & 0xF))
+			return -EINVAL;
+		if (clip.c.top + clip.c.height > go->height)
+			return -EINVAL;
+		for (y = 0; y < clip.c.height; y += 16)
+			for (x = 0; x < clip.c.width; x += 16) {
+				mbnum = (go->width >> 4) *
+						((clip.c.top + y) >> 4) +
+					((clip.c.left + x) >> 4);
+				if (go->modet_map[mbnum] != 0 &&
+						go->modet_map[mbnum] != region)
+					return -EBUSY;
+			}
+		clip_ptr = clip.next;
+	}
+
+	/* Clear old region macroblocks */
+	for (mbnum = 0; mbnum < 1624; ++mbnum)
+		if (go->modet_map[mbnum] == region)
+			go->modet_map[mbnum] = 0;
+
+	/* Claim macroblocks in this list */
+	clip_ptr = clip_list;
+	while (clip_ptr) {
+		if (copy_from_user(&clip, clip_ptr, sizeof(clip)))
+			return -EFAULT;
+		for (y = 0; y < clip.c.height; y += 16)
+			for (x = 0; x < clip.c.width; x += 16) {
+				mbnum = (go->width >> 4) *
+						((clip.c.top + y) >> 4) +
+					((clip.c.left + x) >> 4);
+				go->modet_map[mbnum] = region;
+			}
+		clip_ptr = clip.next;
+	}
+	return 0;
+}
+
+static int go7007_do_ioctl(struct inode *inode, struct file *file,
+		unsigned int cmd, void *arg)
+{
+	struct go7007_file *gofh = file->private_data;
+	struct go7007 *go = gofh->go;
+	unsigned long flags;
+	int retval = 0;
+
+	switch (cmd) {
+	case VIDIOC_QUERYCAP:
+	{
+		struct v4l2_capability *cap = arg;
+
+		memset(cap, 0, sizeof(*cap));
+		strcpy(cap->driver, "go7007");
+		strncpy(cap->card, go->name, sizeof(cap->card));
+		cap->version = KERNEL_VERSION(0, 9, 8);
+		cap->capabilities = V4L2_CAP_VIDEO_CAPTURE |
+				V4L2_CAP_STREAMING; /* | V4L2_CAP_AUDIO; */
+		if (go->board_info->flags & GO7007_BOARD_HAS_TUNER)
+			cap->capabilities |= V4L2_CAP_TUNER;
+		return 0;
+	}
+	case VIDIOC_ENUM_FMT:
+	{
+		struct v4l2_fmtdesc *fmt = arg;
+		unsigned int index;
+		char *desc;
+		u32 pixelformat;
+
+		if (fmt->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
+			return -EINVAL;
+		switch (fmt->index) {
+		case 0:
+			pixelformat = V4L2_PIX_FMT_MJPEG;
+			desc = "Motion-JPEG";
+			break;
+		case 1:
+			pixelformat = V4L2_PIX_FMT_MPEG;
+			desc = "MPEG1/MPEG2/MPEG4";
+			break;
+		default:
+			return -EINVAL;
+		}
+		index = fmt->index;
+		memset(fmt, 0, sizeof(*fmt));
+		fmt->index = index;
+		fmt->type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
+		fmt->flags = V4L2_FMT_FLAG_COMPRESSED;
+		strncpy(fmt->description, desc, sizeof(fmt->description));
+		fmt->pixelformat = pixelformat;
+
+		return 0;
+	}
+	case VIDIOC_TRY_FMT:
+	{
+		struct v4l2_format *fmt = arg;
+
+		if (fmt->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
+			return -EINVAL;
+		return set_capture_size(go, fmt, 1);
+	}
+	case VIDIOC_G_FMT:
+	{
+		struct v4l2_format *fmt = arg;
+
+		if (fmt->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
+			return -EINVAL;
+		memset(fmt, 0, sizeof(*fmt));
+		fmt->type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
+		fmt->fmt.pix.width = go->width;
+		fmt->fmt.pix.height = go->height;
+		fmt->fmt.pix.pixelformat = go->format == GO7007_FORMAT_MJPEG ?
+			V4L2_PIX_FMT_MJPEG : V4L2_PIX_FMT_MPEG;
+		fmt->fmt.pix.field = V4L2_FIELD_NONE;
+		fmt->fmt.pix.bytesperline = 0;
+		fmt->fmt.pix.sizeimage = GO7007_BUF_SIZE;
+		fmt->fmt.pix.colorspace = V4L2_COLORSPACE_SMPTE170M; /* ?? */
+		return 0;
+	}
+	case VIDIOC_S_FMT:
+	{
+		struct v4l2_format *fmt = arg;
+
+		if (fmt->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
+			return -EINVAL;
+		if (go->streaming)
+			return -EBUSY;
+		return set_capture_size(go, fmt, 0);
+	}
+	case VIDIOC_G_FBUF:
+	case VIDIOC_S_FBUF:
+		return -EINVAL;
+	case VIDIOC_REQBUFS:
+	{
+		struct v4l2_requestbuffers *req = arg;
+		unsigned int count, i;
+
+		if (go->streaming)
+			return -EBUSY;
+		if (req->type != V4L2_BUF_TYPE_VIDEO_CAPTURE ||
+				req->memory != V4L2_MEMORY_MMAP)
+			return -EINVAL;
+
+		down(&gofh->lock);
+		retval = -EBUSY;
+		for (i = 0; i < gofh->buf_count; ++i)
+			if (gofh->bufs[i].mapped > 0)
+				goto unlock_and_return;
+		down(&go->hw_lock);
+		if (go->in_use > 0 && gofh->buf_count == 0) {
+			up(&go->hw_lock);
+			goto unlock_and_return;
+		}
+		if (gofh->buf_count > 0)
+			kfree(gofh->bufs);
+		retval = -ENOMEM;
+		count = req->count;
+		if (count > 0) {
+			if (count < 2)
+				count = 2;
+			if (count > 32)
+				count = 32;
+			gofh->bufs = kmalloc(count *
+						sizeof(struct go7007_buffer),
+					GFP_KERNEL);
+			if (gofh->bufs == NULL) {
+				up(&go->hw_lock);
+				goto unlock_and_return;
+			}
+			memset(gofh->bufs, 0,
+					count * sizeof(struct go7007_buffer));
+			for (i = 0; i < count; ++i) {
+				gofh->bufs[i].go = go;
+				gofh->bufs[i].index = i;
+				gofh->bufs[i].state = BUF_STATE_IDLE;
+				gofh->bufs[i].mapped = 0;
+			}
+			go->in_use = 1;
+		} else {
+			go->in_use = 0;
+		}
+		gofh->buf_count = count;
+		up(&go->hw_lock);
+		up(&gofh->lock);
+		memset(req, 0, sizeof(*req));
+		req->count = count;
+		req->type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
+		req->memory = V4L2_MEMORY_MMAP;
+		return 0;
+	}
+	case VIDIOC_QUERYBUF:
+	{
+		struct v4l2_buffer *buf = arg;
+		unsigned int index;
+
+		retval = -EINVAL;
+		if (buf->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
+			return -EINVAL;
+		index = buf->index;
+		down(&gofh->lock);
+		if (index >= gofh->buf_count)
+			goto unlock_and_return;
+		memset(buf, 0, sizeof(*buf));
+		buf->index = index;
+		buf->type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
+		switch (gofh->bufs[index].state) {
+		case BUF_STATE_QUEUED:
+			buf->flags = V4L2_BUF_FLAG_QUEUED;
+			break;
+		case BUF_STATE_DONE:
+			buf->flags = V4L2_BUF_FLAG_DONE;
+			break;
+		default:
+			buf->flags = 0;
+		}
+		if (gofh->bufs[index].mapped)
+			buf->flags |= V4L2_BUF_FLAG_MAPPED;
+		buf->memory = V4L2_MEMORY_MMAP;
+		buf->m.offset = index * GO7007_BUF_SIZE;
+		buf->length = GO7007_BUF_SIZE;
+		up(&gofh->lock);
+
+		return 0;
+	}
+	case VIDIOC_QBUF:
+	{
+		struct v4l2_buffer *buf = arg;
+		struct go7007_buffer *gobuf;
+		int ret;
+
+		retval = -EINVAL;
+		if (buf->type != V4L2_BUF_TYPE_VIDEO_CAPTURE ||
+				buf->memory != V4L2_MEMORY_MMAP)
+			return -EINVAL;
+		down(&gofh->lock);
+		if (buf->index < 0 || buf->index >= gofh->buf_count)
+			goto unlock_and_return;
+		gobuf = &gofh->bufs[buf->index];
+		if (gobuf->mapped == 0)
+			goto unlock_and_return;
+		retval = -EBUSY;
+		if (gobuf->state != BUF_STATE_IDLE)
+			goto unlock_and_return;
+		/* offset will be 0 until we really support USERPTR streaming */
+		gobuf->offset = gobuf->user_addr & ~PAGE_MASK;
+		gobuf->bytesused = 0;
+		gobuf->frame_offset = 0;
+		gobuf->modet_active = 0;
+		if (gobuf->offset > 0)
+			gobuf->page_count = GO7007_BUF_PAGES + 1;
+		else
+			gobuf->page_count = GO7007_BUF_PAGES;
+		retval = -ENOMEM;
+		down_read(&current->mm->mmap_sem);
+		ret = get_user_pages(current, current->mm,
+				gobuf->user_addr & PAGE_MASK, gobuf->page_count,
+				1, 1, gobuf->pages, NULL);
+		up_read(&current->mm->mmap_sem);
+		if (ret != gobuf->page_count) {
+			int i;
+			for (i = 0; i < ret; ++i)
+				page_cache_release(gobuf->pages[i]);
+			gobuf->page_count = 0;
+			goto unlock_and_return;
+		}
+		gobuf->state = BUF_STATE_QUEUED;
+		spin_lock_irqsave(&go->spinlock, flags);
+		list_add_tail(&gobuf->stream, &go->stream);
+		spin_unlock_irqrestore(&go->spinlock, flags);
+		up(&gofh->lock);
+		return 0;
+	}
+	case VIDIOC_DQBUF:
+	{
+		struct v4l2_buffer *buf = arg;
+		struct go7007_buffer *gobuf;
+		u32 frame_type_flag;
+		DEFINE_WAIT(wait);
+
+		if (buf->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
+			return -EINVAL;
+		if (buf->memory != V4L2_MEMORY_MMAP)
+			return -EINVAL;
+		down(&gofh->lock);
+		retval = -EINVAL;
+		if (list_empty(&go->stream))
+			goto unlock_and_return;
+		gobuf = list_entry(go->stream.next,
+				struct go7007_buffer, stream);
+		retval = -EAGAIN;
+		if (gobuf->state != BUF_STATE_DONE &&
+				!(file->f_flags & O_NONBLOCK)) {
+			for (;;) {
+				prepare_to_wait(&go->frame_waitq, &wait,
+						TASK_INTERRUPTIBLE);
+				if (gobuf->state == BUF_STATE_DONE)
+					break;
+				if (signal_pending(current)) {
+					retval = -ERESTARTSYS;
+					break;
+				}
+				schedule();
+			}
+			finish_wait(&go->frame_waitq, &wait);
+		}
+		if (gobuf->state != BUF_STATE_DONE)
+			goto unlock_and_return;
+		spin_lock_irqsave(&go->spinlock, flags);
+		deactivate_buffer(gobuf);
+		spin_unlock_irqrestore(&go->spinlock, flags);
+		frame_type_flag = get_frame_type_flag(gobuf, go->format);
+		gobuf->state = BUF_STATE_IDLE;
+		memset(buf, 0, sizeof(*buf));
+		buf->index = gobuf->index;
+		buf->type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
+		buf->bytesused = gobuf->bytesused;
+		buf->flags = V4L2_BUF_FLAG_MAPPED | frame_type_flag;
+		buf->field = V4L2_FIELD_NONE;
+		buf->timestamp = gobuf->timestamp;
+		buf->sequence = gobuf->seq;
+		buf->memory = V4L2_MEMORY_MMAP;
+		buf->m.offset = gobuf->index * GO7007_BUF_SIZE;
+		buf->length = GO7007_BUF_SIZE;
+		buf->reserved = gobuf->modet_active;
+		up(&gofh->lock);
+		return 0;
+	}
+	case VIDIOC_STREAMON:
+	{
+		unsigned int *type = arg;
+
+		if (*type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
+			return -EINVAL;
+		down(&gofh->lock);
+		down(&go->hw_lock);
+		if (!go->streaming) {
+			go->streaming = 1;
+			go->next_seq = 0;
+			go->active_buf = NULL;
+			if (go7007_start_encoder(go) < 0)
+				retval = -EIO;
+			else
+				retval = 0;
+		}
+		up(&go->hw_lock);
+		up(&gofh->lock);
+		return retval;
+	}
+	case VIDIOC_STREAMOFF:
+	{
+		unsigned int *type = arg;
+
+		if (*type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
+			return -EINVAL;
+		down(&gofh->lock);
+		go7007_streamoff(go);
+		up(&gofh->lock);
+		return 0;
+	}
+	case VIDIOC_QUERYCTRL:
+	{
+		struct v4l2_queryctrl *ctrl = arg;
+		u32 id;
+
+		if (!go->i2c_adapter_online)
+			return -EIO;
+		id = ctrl->id;
+		memset(ctrl, 0, sizeof(*ctrl));
+		ctrl->id = id;
+		i2c_clients_command(&go->i2c_adapter, VIDIOC_QUERYCTRL, arg);
+		return ctrl->name[0] == 0 ? -EINVAL : 0;
+	}
+	case VIDIOC_G_CTRL:
+	{
+		struct v4l2_control *ctrl = arg;
+		struct v4l2_queryctrl query;
+
+		if (!go->i2c_adapter_online)
+			return -EIO;
+		memset(&query, 0, sizeof(query));
+		query.id = ctrl->id;
+		i2c_clients_command(&go->i2c_adapter, VIDIOC_QUERYCTRL, &query);
+		if (query.name[0] == 0)
+			return -EINVAL;
+		i2c_clients_command(&go->i2c_adapter, VIDIOC_G_CTRL, arg);
+		return 0;
+	}
+	case VIDIOC_S_CTRL:
+	{
+		struct v4l2_control *ctrl = arg;
+		struct v4l2_queryctrl query;
+
+		if (!go->i2c_adapter_online)
+			return -EIO;
+		memset(&query, 0, sizeof(query));
+		query.id = ctrl->id;
+		i2c_clients_command(&go->i2c_adapter, VIDIOC_QUERYCTRL, &query);
+		if (query.name[0] == 0)
+			return -EINVAL;
+		i2c_clients_command(&go->i2c_adapter, VIDIOC_S_CTRL, arg);
+		return 0;
+	}
+	case VIDIOC_G_PARM:
+	{
+		struct v4l2_streamparm *parm = arg;
+		struct v4l2_fract timeperframe = {
+			.numerator = 1001 *  go->fps_scale,
+			.denominator = go->sensor_framerate,
+		};
+
+		if (parm->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
+			return -EINVAL;
+		memset(parm, 0, sizeof(*parm));
+		parm->type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
+		parm->parm.capture.capability |= V4L2_CAP_TIMEPERFRAME;
+		parm->parm.capture.timeperframe = timeperframe;
+		return 0;
+	}
+	case VIDIOC_S_PARM:
+	{
+		struct v4l2_streamparm *parm = arg;
+		unsigned int n, d;
+
+		if (parm->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
+			return -EINVAL;
+		if (parm->parm.capture.capturemode != 0)
+			return -EINVAL;
+		n = go->sensor_framerate *
+			parm->parm.capture.timeperframe.numerator;
+		d = 1001 * parm->parm.capture.timeperframe.denominator;
+		if (n != 0 && d != 0 && n > d)
+			go->fps_scale = (n + d/2) / d;
+		else
+			go->fps_scale = 1;
+		return 0;
+	}
+	case VIDIOC_ENUMSTD:
+	{
+		struct v4l2_standard *std = arg;
+
+		if ((go->board_info->flags & GO7007_BOARD_HAS_TUNER) &&
+				go->input == go->board_info->num_inputs - 1) {
+			if (!go->i2c_adapter_online)
+				return -EIO;
+			i2c_clients_command(&go->i2c_adapter,
+						VIDIOC_ENUMSTD, arg);
+			if (!std->id) /* hack to indicate EINVAL from tuner */
+				return -EINVAL;
+		} else if (go->board_info->sensor_flags & GO7007_SENSOR_TV) {
+			switch (std->index) {
+			case 0:
+				v4l2_video_std_construct(std,
+						V4L2_STD_NTSC, "NTSC");
+				break;
+			case 1:
+				v4l2_video_std_construct(std,
+						V4L2_STD_PAL | V4L2_STD_SECAM,
+						"PAL/SECAM");
+				break;
+			default:
+				return -EINVAL;
+			}
+		} else {
+			if (std->index != 0)
+				return -EINVAL;
+			memset(std, 0, sizeof(*std));
+			snprintf(std->name, sizeof(std->name), "%dx%d, %dfps",
+				go->board_info->sensor_width,
+				go->board_info->sensor_height,
+				go->board_info->sensor_framerate / 1000);
+			std->frameperiod.numerator = 1001;
+			std->frameperiod.denominator =
+					go->board_info->sensor_framerate;
+		}
+		return 0;
+	}
+	case VIDIOC_G_STD:
+	{
+		v4l2_std_id *std = arg;
+
+		if ((go->board_info->flags & GO7007_BOARD_HAS_TUNER) &&
+				go->input == go->board_info->num_inputs - 1) {
+			if (!go->i2c_adapter_online)
+				return -EIO;
+			i2c_clients_command(&go->i2c_adapter,
+						VIDIOC_G_STD, arg);
+		} else if (go->board_info->sensor_flags & GO7007_SENSOR_TV) {
+			if (go->standard == GO7007_STD_NTSC)
+				*std = V4L2_STD_NTSC;
+			else
+				*std = V4L2_STD_PAL | V4L2_STD_SECAM;
+		} else
+			*std = 0;
+		return 0;
+	}
+	case VIDIOC_S_STD:
+	{
+		v4l2_std_id *std = arg;
+
+		if (go->streaming)
+			return -EBUSY;
+		if (!(go->board_info->sensor_flags & GO7007_SENSOR_TV) &&
+				*std != 0)
+			return -EINVAL;
+		if (*std == 0)
+			return -EINVAL;
+		if ((go->board_info->flags & GO7007_BOARD_HAS_TUNER) &&
+				go->input == go->board_info->num_inputs - 1) {
+			if (!go->i2c_adapter_online)
+				return -EIO;
+			i2c_clients_command(&go->i2c_adapter,
+						VIDIOC_S_STD, arg);
+			if (!*std) /* hack to indicate EINVAL from tuner */
+				return -EINVAL;
+		}
+		if (*std & V4L2_STD_NTSC) {
+			go->standard = GO7007_STD_NTSC;
+			go->sensor_framerate = 30000;
+		} else if (*std & V4L2_STD_PAL) {
+			go->standard = GO7007_STD_PAL;
+			go->sensor_framerate = 25025;
+		} else if (*std & V4L2_STD_SECAM) {
+			go->standard = GO7007_STD_PAL;
+			go->sensor_framerate = 25025;
+		} else
+			return -EINVAL;
+		if (go->i2c_adapter_online)
+			i2c_clients_command(&go->i2c_adapter,
+					    VIDIOC_S_STD, std);
+		set_capture_size(go, NULL, 0);
+		return 0;
+	}
+	case VIDIOC_QUERYSTD:
+	{
+		v4l2_std_id *std = arg;
+
+		if ((go->board_info->flags & GO7007_BOARD_HAS_TUNER) &&
+				go->input == go->board_info->num_inputs - 1) {
+			if (!go->i2c_adapter_online)
+				return -EIO;
+			i2c_clients_command(&go->i2c_adapter,
+						VIDIOC_QUERYSTD, arg);
+		} else if (go->board_info->sensor_flags & GO7007_SENSOR_TV)
+			*std = V4L2_STD_NTSC | V4L2_STD_PAL | V4L2_STD_SECAM;
+		else
+			*std = 0;
+		return 0;
+	}
+	case VIDIOC_ENUMINPUT:
+	{
+		struct v4l2_input *inp = arg;
+		int index;
+
+		if (inp->index >= go->board_info->num_inputs)
+			return -EINVAL;
+		index = inp->index;
+		memset(inp, 0, sizeof(*inp));
+		inp->index = index;
+		strncpy(inp->name, go->board_info->inputs[index].name,
+				sizeof(inp->name));
+		/* If this board has a tuner, it will be the last input */
+		if ((go->board_info->flags & GO7007_BOARD_HAS_TUNER) &&
+				index == go->board_info->num_inputs - 1)
+			inp->type = V4L2_INPUT_TYPE_TUNER;
+		else
+			inp->type = V4L2_INPUT_TYPE_CAMERA;
+		inp->audioset = 0;
+		inp->tuner = 0;
+		if (go->board_info->sensor_flags & GO7007_SENSOR_TV)
+			inp->std = V4L2_STD_NTSC | V4L2_STD_PAL |
+							V4L2_STD_SECAM;
+		else
+			inp->std = 0;
+		return 0;
+	}
+	case VIDIOC_G_INPUT:
+	{
+		int *input = arg;
+
+		*input = go->input;
+		return 0;
+	}
+	case VIDIOC_S_INPUT:
+	{
+		int *input = arg;
+
+		if (*input >= go->board_info->num_inputs)
+			return -EINVAL;
+		if (go->streaming)
+			return -EBUSY;
+		go->input = *input;
+		if (go->i2c_adapter_online) {
+			i2c_clients_command(&go->i2c_adapter, VIDIOC_S_INPUT,
+				&go->board_info->inputs[*input].video_input);
+			i2c_clients_command(&go->i2c_adapter, VIDIOC_S_AUDIO,
+				&go->board_info->inputs[*input].audio_input);
+		}
+		return 0;
+	}
+	case VIDIOC_G_TUNER:
+	{
+		struct v4l2_tuner *t = arg;
+
+		if (!(go->board_info->flags & GO7007_BOARD_HAS_TUNER))
+			return -EINVAL;
+		if (t->index != 0)
+			return -EINVAL;
+		if (!go->i2c_adapter_online)
+			return -EIO;
+		i2c_clients_command(&go->i2c_adapter, VIDIOC_G_TUNER, arg);
+		t->index = 0;
+		return 0;
+	}
+	case VIDIOC_S_TUNER:
+	{
+		struct v4l2_tuner *t = arg;
+
+		if (!(go->board_info->flags & GO7007_BOARD_HAS_TUNER))
+			return -EINVAL;
+		if (t->index != 0)
+			return -EINVAL;
+		if (!go->i2c_adapter_online)
+			return -EIO;
+		switch (go->board_id) {
+		case GO7007_BOARDID_PX_TV402U_NA:
+		case GO7007_BOARDID_PX_TV402U_JP:
+			/* No selectable options currently */
+			if (t->audmode != V4L2_TUNER_MODE_STEREO)
+				return -EINVAL;
+			break;
+		}
+		i2c_clients_command(&go->i2c_adapter, VIDIOC_S_TUNER, arg);
+		return 0;
+	}
+	case VIDIOC_G_FREQUENCY:
+	{
+		struct v4l2_frequency *f = arg;
+
+		if (!(go->board_info->flags & GO7007_BOARD_HAS_TUNER))
+			return -EINVAL;
+		if (!go->i2c_adapter_online)
+			return -EIO;
+		memset(f, 0, sizeof(*f));
+		f->type = V4L2_TUNER_ANALOG_TV;
+		i2c_clients_command(&go->i2c_adapter, VIDIOC_G_FREQUENCY, arg);
+		return 0;
+	}
+	case VIDIOC_S_FREQUENCY:
+	{
+		if (!(go->board_info->flags & GO7007_BOARD_HAS_TUNER))
+			return -EINVAL;
+		if (!go->i2c_adapter_online)
+			return -EIO;
+		i2c_clients_command(&go->i2c_adapter, VIDIOC_S_FREQUENCY, arg);
+		return 0;
+	}
+	case VIDIOC_CROPCAP:
+	{
+		struct v4l2_cropcap *cropcap = arg;
+
+		if (cropcap->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
+			return -EINVAL;
+		memset(cropcap, 0, sizeof(*cropcap));
+		cropcap->type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
+		/* These specify the raw input of the sensor */
+		switch (go->standard) {
+		case GO7007_STD_NTSC:
+			cropcap->bounds.top = 0;
+			cropcap->bounds.left = 0;
+			cropcap->bounds.width = 720;
+			cropcap->bounds.height = 480;
+			cropcap->defrect.top = 0;
+			cropcap->defrect.left = 0;
+			cropcap->defrect.width = 720;
+			cropcap->defrect.height = 480;
+			break;
+		case GO7007_STD_PAL:
+			cropcap->bounds.top = 0;
+			cropcap->bounds.left = 0;
+			cropcap->bounds.width = 720;
+			cropcap->bounds.height = 576;
+			cropcap->defrect.top = 0;
+			cropcap->defrect.left = 0;
+			cropcap->defrect.width = 720;
+			cropcap->defrect.height = 576;
+			break;
+		case GO7007_STD_OTHER:
+			cropcap->bounds.top = 0;
+			cropcap->bounds.left = 0;
+			cropcap->bounds.width = go->board_info->sensor_width;
+			cropcap->bounds.height = go->board_info->sensor_height;
+			cropcap->defrect.top = 0;
+			cropcap->defrect.left = 0;
+			cropcap->defrect.width = go->board_info->sensor_width;
+			cropcap->defrect.height = go->board_info->sensor_height;
+			break;
+		}
+
+		return 0;
+	}
+	case VIDIOC_G_CROP:
+	{
+		struct v4l2_crop *crop = arg;
+
+		if (crop->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
+			return -EINVAL;
+		memset(crop, 0, sizeof(*crop));
+		crop->type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
+		/* These specify the raw input of the sensor */
+		switch (go->standard) {
+		case GO7007_STD_NTSC:
+			crop->c.top = 0;
+			crop->c.left = 0;
+			crop->c.width = 720;
+			crop->c.height = 480;
+			break;
+		case GO7007_STD_PAL:
+			crop->c.top = 0;
+			crop->c.left = 0;
+			crop->c.width = 720;
+			crop->c.height = 576;
+			break;
+		case GO7007_STD_OTHER:
+			crop->c.top = 0;
+			crop->c.left = 0;
+			crop->c.width = go->board_info->sensor_width;
+			crop->c.height = go->board_info->sensor_height;
+			break;
+		}
+
+		return 0;
+	}
+	case VIDIOC_S_CROP:
+	{
+		struct v4l2_crop *crop = arg;
+
+		if (crop->type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
+			return -EINVAL;
+		return 0;
+	}
+	case VIDIOC_G_JPEGCOMP:
+	{
+		struct v4l2_jpegcompression *params = arg;
+
+		memset(params, 0, sizeof(*params));
+		params->quality = 50; /* ?? */
+		params->jpeg_markers = V4L2_JPEG_MARKER_DHT |
+					V4L2_JPEG_MARKER_DQT;
+
+		return 0;
+	}
+	case VIDIOC_S_JPEGCOMP:
+	{
+		struct v4l2_jpegcompression *params = arg;
+
+		if (params->quality != 50 ||
+				params->jpeg_markers != (V4L2_JPEG_MARKER_DHT |
+							V4L2_JPEG_MARKER_DQT))
+			return -EINVAL;
+		return 0;
+	}
+	/* Temporary ioctls for controlling compression characteristics */
+	case GO7007IOC_S_BITRATE:
+	{
+		int *bitrate = arg;
+
+		if (go->streaming)
+			return -EINVAL;
+		/* Upper bound is kind of arbitrary here */
+		if (*bitrate < 64000 || *bitrate > 10000000)
+			return -EINVAL;
+		go->bitrate = *bitrate;
+		return 0;
+	}
+	case GO7007IOC_G_BITRATE:
+	{
+		int *bitrate = arg;
+
+		*bitrate = go->bitrate;
+		return 0;
+	}
+	case GO7007IOC_S_COMP_PARAMS:
+	{
+		struct go7007_comp_params *comp = arg;
+
+		if (go->format == GO7007_FORMAT_MJPEG)
+			return -EINVAL;
+		if (comp->gop_size > 0)
+			go->gop_size = comp->gop_size;
+		else
+			go->gop_size = go->sensor_framerate / 1000;
+		if (go->gop_size != 15)
+			go->dvd_mode = 0;
+		/*go->ipb = comp->max_b_frames > 0;*/ /* completely untested */
+		if (go->board_info->sensor_flags & GO7007_SENSOR_TV) {
+			switch (comp->aspect_ratio) {
+			case GO7007_ASPECT_RATIO_4_3_NTSC:
+			case GO7007_ASPECT_RATIO_4_3_PAL:
+				go->aspect_ratio = GO7007_RATIO_4_3;
+				break;
+			case GO7007_ASPECT_RATIO_16_9_NTSC:
+			case GO7007_ASPECT_RATIO_16_9_PAL:
+				go->aspect_ratio = GO7007_RATIO_16_9;
+				break;
+			default:
+				go->aspect_ratio = GO7007_RATIO_1_1;
+				break;
+			}
+		}
+		if (comp->flags & GO7007_COMP_OMIT_SEQ_HEADER) {
+			go->dvd_mode = 0;
+			go->seq_header_enable = 0;
+		} else {
+			go->seq_header_enable = 1;
+		}
+		/* fall-through */
+	}
+	case GO7007IOC_G_COMP_PARAMS:
+	{
+		struct go7007_comp_params *comp = arg;
+
+		if (go->format == GO7007_FORMAT_MJPEG)
+			return -EINVAL;
+		memset(comp, 0, sizeof(*comp));
+		comp->gop_size = go->gop_size;
+		comp->max_b_frames = go->ipb ? 2 : 0;
+		switch (go->aspect_ratio) {
+		case GO7007_RATIO_4_3:
+			if (go->standard == GO7007_STD_NTSC)
+				comp->aspect_ratio =
+					GO7007_ASPECT_RATIO_4_3_NTSC;
+			else
+				comp->aspect_ratio =
+					GO7007_ASPECT_RATIO_4_3_PAL;
+			break;
+		case GO7007_RATIO_16_9:
+			if (go->standard == GO7007_STD_NTSC)
+				comp->aspect_ratio =
+					GO7007_ASPECT_RATIO_16_9_NTSC;
+			else
+				comp->aspect_ratio =
+					GO7007_ASPECT_RATIO_16_9_PAL;
+			break;
+		default:
+			comp->aspect_ratio = GO7007_ASPECT_RATIO_1_1;
+			break;
+		}
+		if (go->closed_gop)
+			comp->flags |= GO7007_COMP_CLOSED_GOP;
+		if (!go->seq_header_enable)
+			comp->flags |= GO7007_COMP_OMIT_SEQ_HEADER;
+		return 0;
+	}
+	case GO7007IOC_S_MPEG_PARAMS:
+	{
+		struct go7007_mpeg_params *mpeg = arg;
+
+		if (go->format != GO7007_FORMAT_MPEG1 &&
+				go->format != GO7007_FORMAT_MPEG2 &&
+				go->format != GO7007_FORMAT_MPEG4)
+			return -EINVAL;
+
+		if (mpeg->flags & GO7007_MPEG_FORCE_DVD_MODE) {
+			go->format = GO7007_FORMAT_MPEG2;
+			go->bitrate = 9800000;
+			go->gop_size = 15;
+			go->pali = 0x48;
+			go->closed_gop = 1;
+			go->repeat_seqhead = 0;
+			go->seq_header_enable = 1;
+			go->gop_header_enable = 1;
+			go->dvd_mode = 1;
+		} else {
+			switch (mpeg->mpeg_video_standard) {
+			case GO7007_MPEG_VIDEO_MPEG1:
+				go->format = GO7007_FORMAT_MPEG1;
+				go->pali = 0;
+				break;
+			case GO7007_MPEG_VIDEO_MPEG2:
+				go->format = GO7007_FORMAT_MPEG2;
+				if (mpeg->pali >> 24 == 2)
+					go->pali = mpeg->pali & 0xff;
+				else
+					go->pali = 0x48;
+				break;
+			case GO7007_MPEG_VIDEO_MPEG4:
+				go->format = GO7007_FORMAT_MPEG4;
+				if (mpeg->pali >> 24 == 4)
+					go->pali = mpeg->pali & 0xff;
+				else
+					go->pali = 0xf5;
+				break;
+			default:
+				return -EINVAL;
+			}
+			go->gop_header_enable =
+				mpeg->flags & GO7007_MPEG_OMIT_GOP_HEADER
+				? 0 : 1;
+			if (mpeg->flags & GO7007_MPEG_REPEAT_SEQHEADER)
+				go->repeat_seqhead = 1;
+			else
+				go->repeat_seqhead = 0;
+			go->dvd_mode = 0;
+		}
+		/* fall-through */
+	}
+	case GO7007IOC_G_MPEG_PARAMS:
+	{
+		struct go7007_mpeg_params *mpeg = arg;
+
+		memset(mpeg, 0, sizeof(*mpeg));
+		switch (go->format) {
+		case GO7007_FORMAT_MPEG1:
+			mpeg->mpeg_video_standard = GO7007_MPEG_VIDEO_MPEG1;
+			mpeg->pali = 0;
+			break;
+		case GO7007_FORMAT_MPEG2:
+			mpeg->mpeg_video_standard = GO7007_MPEG_VIDEO_MPEG2;
+			mpeg->pali = GO7007_MPEG_PROFILE(2, go->pali);
+			break;
+		case GO7007_FORMAT_MPEG4:
+			mpeg->mpeg_video_standard = GO7007_MPEG_VIDEO_MPEG4;
+			mpeg->pali = GO7007_MPEG_PROFILE(4, go->pali);
+			break;
+		default:
+			return -EINVAL;
+		}
+		if (!go->gop_header_enable)
+			mpeg->flags |= GO7007_MPEG_OMIT_GOP_HEADER;
+		if (go->repeat_seqhead)
+			mpeg->flags |= GO7007_MPEG_REPEAT_SEQHEADER;
+		if (go->dvd_mode)
+			mpeg->flags |= GO7007_MPEG_FORCE_DVD_MODE;
+		return 0;
+	}
+	case GO7007IOC_S_MD_PARAMS:
+	{
+		struct go7007_md_params *mdp = arg;
+
+		if (mdp->region > 3)
+			return -EINVAL;
+		if (mdp->trigger > 0) {
+			go->modet[mdp->region].pixel_threshold =
+					mdp->pixel_threshold >> 1;
+			go->modet[mdp->region].motion_threshold =
+					mdp->motion_threshold >> 1;
+			go->modet[mdp->region].mb_threshold =
+					mdp->trigger >> 1;
+			go->modet[mdp->region].enable = 1;
+		} else
+			go->modet[mdp->region].enable = 0;
+		/* fall-through */
+	}
+	case GO7007IOC_G_MD_PARAMS:
+	{
+		struct go7007_md_params *mdp = arg;
+		int region = mdp->region;
+
+		if (mdp->region > 3)
+			return -EINVAL;
+		memset(mdp, 0, sizeof(struct go7007_md_params));
+		mdp->region = region;
+		if (!go->modet[region].enable)
+			return 0;
+		mdp->pixel_threshold =
+			(go->modet[region].pixel_threshold << 1) + 1;
+		mdp->motion_threshold =
+			(go->modet[region].motion_threshold << 1) + 1;
+		mdp->trigger =
+			(go->modet[region].mb_threshold << 1) + 1;
+		return 0;
+	}
+	case GO7007IOC_S_MD_REGION:
+	{
+		struct go7007_md_region *region = arg;
+
+		if (region->region < 1 || region->region > 3)
+			return -EINVAL;
+		return clip_to_modet_map(go, region->region, region->clips);
+	}
+	default:
+		printk(KERN_DEBUG "go7007: unsupported ioctl %d\n", cmd);
+		return -ENOIOCTLCMD;
+	}
+	return 0;
+
+unlock_and_return:
+	up(&gofh->lock);
+	return retval;
+}
+
+static int go7007_ioctl(struct inode *inode, struct file *file,
+		unsigned int cmd, unsigned long arg)
+{
+	struct go7007_file *gofh = file->private_data;
+
+	if (gofh->go->status != STATUS_ONLINE)
+		return -EIO;
+
+	return video_usercopy(inode, file, cmd, arg, go7007_do_ioctl);
+}
+
+static ssize_t go7007_read(struct file *file, char __user *data,
+		size_t count, loff_t *ppos)
+{
+	return -EINVAL;
+}
+
+static void go7007_vm_open(struct vm_area_struct *vma)
+{
+	struct go7007_buffer *gobuf = vma->vm_private_data;
+
+	++gobuf->mapped;
+}
+
+static void go7007_vm_close(struct vm_area_struct *vma)
+{
+	struct go7007_buffer *gobuf = vma->vm_private_data;
+	unsigned long flags;
+
+	if (--gobuf->mapped == 0) {
+		spin_lock_irqsave(&gobuf->go->spinlock, flags);
+		deactivate_buffer(gobuf);
+		spin_unlock_irqrestore(&gobuf->go->spinlock, flags);
+	}
+}
+
+/* Copied from videobuf-dma-sg.c */
+static int go7007_vm_fault(struct vm_area_struct *vma, struct vm_fault *vmf)
+{
+	struct page *page;
+
+	page = alloc_page(GFP_USER | __GFP_DMA32);
+	if (!page)
+		return VM_FAULT_OOM;
+	clear_user_page(page_address(page), (unsigned long)vmf->virtual_address,
+			page);
+	vmf->page = page;
+	return 0;
+}
+
+static struct vm_operations_struct go7007_vm_ops = {
+	.open	= go7007_vm_open,
+	.close	= go7007_vm_close,
+	.fault	= go7007_vm_fault,
+};
+
+static int go7007_mmap(struct file *file, struct vm_area_struct *vma)
+{
+	struct go7007_file *gofh = file->private_data;
+	unsigned int index;
+
+	if (gofh->go->status != STATUS_ONLINE)
+		return -EIO;
+	if (!(vma->vm_flags & VM_SHARED))
+		return -EINVAL; /* only support VM_SHARED mapping */
+	if (vma->vm_end - vma->vm_start != GO7007_BUF_SIZE)
+		return -EINVAL; /* must map exactly one full buffer */
+	down(&gofh->lock);
+	index = vma->vm_pgoff / GO7007_BUF_PAGES;
+	if (index >= gofh->buf_count) {
+		up(&gofh->lock);
+		return -EINVAL; /* trying to map beyond requested buffers */
+	}
+	if (index * GO7007_BUF_PAGES != vma->vm_pgoff) {
+		up(&gofh->lock);
+		return -EINVAL; /* offset is not aligned on buffer boundary */
+	}
+	if (gofh->bufs[index].mapped > 0) {
+		up(&gofh->lock);
+		return -EBUSY;
+	}
+	gofh->bufs[index].mapped = 1;
+	gofh->bufs[index].user_addr = vma->vm_start;
+	vma->vm_ops = &go7007_vm_ops;
+	vma->vm_flags |= VM_DONTEXPAND;
+	vma->vm_flags &= ~VM_IO;
+	vma->vm_private_data = &gofh->bufs[index];
+	up(&gofh->lock);
+	return 0;
+}
+
+static unsigned int go7007_poll(struct file *file, poll_table *wait)
+{
+	struct go7007_file *gofh = file->private_data;
+	struct go7007_buffer *gobuf;
+
+	if (list_empty(&gofh->go->stream))
+		return POLLERR;
+	gobuf = list_entry(gofh->go->stream.next, struct go7007_buffer, stream);
+	poll_wait(file, &gofh->go->frame_waitq, wait);
+	if (gobuf->state == BUF_STATE_DONE)
+		return POLLIN | POLLRDNORM;
+	return 0;
+}
+
+static void go7007_vfl_release(struct video_device *vfd)
+{
+	struct go7007 *go = video_get_drvdata(vfd);
+
+	video_device_release(vfd);
+	if (--go->ref_count == 0)
+		kfree(go);
+}
+
+static struct file_operations go7007_fops = {
+	.owner		= THIS_MODULE,
+	.open		= go7007_open,
+	.release	= go7007_release,
+	.ioctl		= go7007_ioctl,
+	.llseek		= no_llseek,
+	.read		= go7007_read,
+	.mmap		= go7007_mmap,
+	.poll		= go7007_poll,
+};
+
+static struct video_device go7007_template = {
+	.name		= "go7007",
+	.vfl_type	= VID_TYPE_CAPTURE,
+	.fops		= &go7007_fops,
+	.minor		= -1,
+	.release	= go7007_vfl_release,
+};
+
+int go7007_v4l2_init(struct go7007 *go)
+{
+	int rv;
+
+	go->video_dev = video_device_alloc();
+	if (go->video_dev == NULL)
+		return -ENOMEM;
+	memcpy(go->video_dev, &go7007_template, sizeof(go7007_template));
+	go->video_dev->parent = go->dev;
+	rv = video_register_device(go->video_dev, VFL_TYPE_GRABBER, -1);
+	if (rv < 0) {
+		video_device_release(go->video_dev);
+		go->video_dev = NULL;
+		return rv;
+	}
+	video_set_drvdata(go->video_dev, go);
+	++go->ref_count;
+
+	return 0;
+}
+
+void go7007_v4l2_remove(struct go7007 *go)
+{
+	unsigned long flags;
+
+	down(&go->hw_lock);
+	if (go->streaming) {
+		go->streaming = 0;
+		go7007_stream_stop(go);
+		spin_lock_irqsave(&go->spinlock, flags);
+		abort_queued(go);
+		spin_unlock_irqrestore(&go->spinlock, flags);
+	}
+	up(&go->hw_lock);
+	if (go->video_dev)
+		video_unregister_device(go->video_dev);
+}
diff --git a/drivers/staging/go7007/go7007.h b/drivers/staging/go7007/go7007.h
new file mode 100644
index 0000000..7399c91
--- /dev/null
+++ b/drivers/staging/go7007/go7007.h
@@ -0,0 +1,114 @@
+/*
+ * Copyright (C) 2005-2006 Micronas USA Inc.
+ *
+ * Permission is hereby granted, free of charge, to any person obtaining a
+ * copy of this software and the associated README documentation file (the
+ * "Software"), to deal in the Software without restriction, including
+ * without limitation the rights to use, copy, modify, merge, publish,
+ * distribute, sublicense, and/or sell copies of the Software, and to
+ * permit persons to whom the Software is furnished to do so.
+ *
+ * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS
+ * OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF
+ * MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.
+ * IN NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY
+ * CLAIM, DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT,
+ * TORT OR OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE
+ * SOFTWARE OR THE USE OR OTHER DEALINGS IN THE SOFTWARE.
+ */
+
+/* DEPRECATED -- use V4L2_PIX_FMT_MPEG and then call GO7007IOC_S_MPEG_PARAMS
+ * to select between MPEG1, MPEG2, and MPEG4 */
+#define V4L2_PIX_FMT_MPEG4     v4l2_fourcc('M', 'P', 'G', '4') /* MPEG4 */
+
+/* These will be replaced with a better interface
+ * soon, so don't get too attached to them */
+#define	GO7007IOC_S_BITRATE	_IOW('V', BASE_VIDIOC_PRIVATE + 0, int)
+#define	GO7007IOC_G_BITRATE	_IOR('V', BASE_VIDIOC_PRIVATE + 1, int)
+
+enum go7007_aspect_ratio {
+	GO7007_ASPECT_RATIO_1_1 = 0,
+	GO7007_ASPECT_RATIO_4_3_NTSC = 1,
+	GO7007_ASPECT_RATIO_4_3_PAL = 2,
+	GO7007_ASPECT_RATIO_16_9_NTSC = 3,
+	GO7007_ASPECT_RATIO_16_9_PAL = 4,
+};
+
+/* Used to set generic compression parameters */
+struct go7007_comp_params {
+	__u32 gop_size;
+	__u32 max_b_frames;
+	enum go7007_aspect_ratio aspect_ratio;
+	__u32 flags;
+	__u32 reserved[8];
+};
+
+#define GO7007_COMP_CLOSED_GOP		0x00000001
+#define GO7007_COMP_OMIT_SEQ_HEADER	0x00000002
+
+enum go7007_mpeg_video_standard {
+	GO7007_MPEG_VIDEO_MPEG1 = 0,
+	GO7007_MPEG_VIDEO_MPEG2 = 1,
+	GO7007_MPEG_VIDEO_MPEG4 = 2,
+};
+
+/* Used to set parameters for V4L2_PIX_FMT_MPEG format */
+struct go7007_mpeg_params {
+	enum go7007_mpeg_video_standard mpeg_video_standard;
+	__u32 flags;
+	__u32 pali;
+	__u32 reserved[8];
+};
+
+#define GO7007_MPEG_FORCE_DVD_MODE	0x00000001
+#define GO7007_MPEG_OMIT_GOP_HEADER	0x00000002
+#define GO7007_MPEG_REPEAT_SEQHEADER	0x00000004
+
+#define GO7007_MPEG_PROFILE(format, pali)	(((format)<<24)|(pali))
+
+#define GO7007_MPEG2_PROFILE_MAIN_MAIN		GO7007_MPEG_PROFILE(2, 0x48)
+
+#define GO7007_MPEG4_PROFILE_S_L0		GO7007_MPEG_PROFILE(4, 0x08)
+#define GO7007_MPEG4_PROFILE_S_L1		GO7007_MPEG_PROFILE(4, 0x01)
+#define GO7007_MPEG4_PROFILE_S_L2		GO7007_MPEG_PROFILE(4, 0x02)
+#define GO7007_MPEG4_PROFILE_S_L3		GO7007_MPEG_PROFILE(4, 0x03)
+#define GO7007_MPEG4_PROFILE_ARTS_L1		GO7007_MPEG_PROFILE(4, 0x91)
+#define GO7007_MPEG4_PROFILE_ARTS_L2		GO7007_MPEG_PROFILE(4, 0x92)
+#define GO7007_MPEG4_PROFILE_ARTS_L3		GO7007_MPEG_PROFILE(4, 0x93)
+#define GO7007_MPEG4_PROFILE_ARTS_L4		GO7007_MPEG_PROFILE(4, 0x94)
+#define GO7007_MPEG4_PROFILE_AS_L0		GO7007_MPEG_PROFILE(4, 0xf0)
+#define GO7007_MPEG4_PROFILE_AS_L1		GO7007_MPEG_PROFILE(4, 0xf1)
+#define GO7007_MPEG4_PROFILE_AS_L2		GO7007_MPEG_PROFILE(4, 0xf2)
+#define GO7007_MPEG4_PROFILE_AS_L3		GO7007_MPEG_PROFILE(4, 0xf3)
+#define GO7007_MPEG4_PROFILE_AS_L4		GO7007_MPEG_PROFILE(4, 0xf4)
+#define GO7007_MPEG4_PROFILE_AS_L5		GO7007_MPEG_PROFILE(4, 0xf5)
+
+struct go7007_md_params {
+	__u16 region;
+	__u16 trigger;
+	__u16 pixel_threshold;
+	__u16 motion_threshold;
+	__u32 reserved[8];
+};
+
+struct go7007_md_region {
+	__u16 region;
+	__u16 flags;
+	struct v4l2_clip *clips;
+	__u32 reserved[8];
+};
+
+#define	GO7007IOC_S_MPEG_PARAMS	_IOWR('V', BASE_VIDIOC_PRIVATE + 2, \
+					struct go7007_mpeg_params)
+#define	GO7007IOC_G_MPEG_PARAMS	_IOR('V', BASE_VIDIOC_PRIVATE + 3, \
+					struct go7007_mpeg_params)
+#define	GO7007IOC_S_COMP_PARAMS	_IOWR('V', BASE_VIDIOC_PRIVATE + 4, \
+					struct go7007_comp_params)
+#define	GO7007IOC_G_COMP_PARAMS	_IOR('V', BASE_VIDIOC_PRIVATE + 5, \
+					struct go7007_comp_params)
+#define	GO7007IOC_S_MD_PARAMS	_IOWR('V', BASE_VIDIOC_PRIVATE + 6, \
+					struct go7007_md_params)
+#define	GO7007IOC_G_MD_PARAMS	_IOR('V', BASE_VIDIOC_PRIVATE + 7, \
+					struct go7007_md_params)
+#define	GO7007IOC_S_MD_REGION	_IOW('V', BASE_VIDIOC_PRIVATE + 8, \
+					struct go7007_md_region)
diff --git a/drivers/staging/go7007/saa7134-go7007.c b/drivers/staging/go7007/saa7134-go7007.c
new file mode 100644
index 0000000..c4a6d8e
--- /dev/null
+++ b/drivers/staging/go7007/saa7134-go7007.c
@@ -0,0 +1,484 @@
+/*
+ * Copyright (C) 2005-2006 Micronas USA Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License (Version 2) as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software Foundation,
+ * Inc., 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/kernel.h>
+#include <linux/init.h>
+#include <linux/spinlock.h>
+#include <linux/wait.h>
+#include <linux/list.h>
+#include <linux/slab.h>
+#include <linux/time.h>
+#include <linux/mm.h>
+#include <linux/usb.h>
+#include <linux/i2c.h>
+#include <asm/byteorder.h>
+#include <media/audiochip.h>
+
+#include "saa7134-reg.h"
+#include "saa7134.h"
+#include "go7007-priv.h"
+
+#define GO7007_HPI_DEBUG
+
+enum hpi_address {
+	HPI_ADDR_VIDEO_BUFFER = 0xe4,
+	HPI_ADDR_INIT_BUFFER = 0xea,
+	HPI_ADDR_INTR_RET_VALUE = 0xee,
+	HPI_ADDR_INTR_RET_DATA = 0xec,
+	HPI_ADDR_INTR_STATUS = 0xf4,
+	HPI_ADDR_INTR_WR_PARAM = 0xf6,
+	HPI_ADDR_INTR_WR_INDEX = 0xf8,
+};
+
+enum gpio_command {
+	GPIO_COMMAND_RESET = 0x00, /* 000b */
+	GPIO_COMMAND_REQ1  = 0x04, /* 001b */
+	GPIO_COMMAND_WRITE = 0x20, /* 010b */
+	GPIO_COMMAND_REQ2  = 0x24, /* 011b */
+	GPIO_COMMAND_READ  = 0x80, /* 100b */
+	GPIO_COMMAND_VIDEO = 0x84, /* 101b */
+	GPIO_COMMAND_IDLE  = 0xA0, /* 110b */
+	GPIO_COMMAND_ADDR  = 0xA4, /* 111b */
+};
+
+struct saa7134_go7007 {
+	struct saa7134_dev *dev;
+	u8 *top;
+	u8 *bottom;
+	dma_addr_t top_dma;
+	dma_addr_t bottom_dma;
+};
+
+static struct go7007_board_info board_voyager = {
+	.firmware	 = "go7007tv.bin",
+	.flags		 = 0,
+	.sensor_flags	 = GO7007_SENSOR_656 |
+				GO7007_SENSOR_VALID_ENABLE |
+				GO7007_SENSOR_TV |
+				GO7007_SENSOR_VBI,
+	.audio_flags	= GO7007_AUDIO_I2S_MODE_1 |
+				GO7007_AUDIO_WORD_16,
+	.audio_rate	 = 48000,
+	.audio_bclk_div	 = 8,
+	.audio_main_div	 = 2,
+	.hpi_buffer_cap  = 7,
+	.num_inputs	 = 1,
+	.inputs 	 = {
+		{
+			.name		= "SAA7134",
+		},
+	},
+};
+
+/********************* Driver for GPIO HPI interface *********************/
+
+static int gpio_write(struct saa7134_dev *dev, u8 addr, u16 data)
+{
+	saa_writeb(SAA7134_GPIO_GPMODE0, 0xff);
+
+	/* Write HPI address */
+	saa_writeb(SAA7134_GPIO_GPSTATUS0, addr);
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_ADDR);
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_IDLE);
+
+	/* Write low byte */
+	saa_writeb(SAA7134_GPIO_GPSTATUS0, data & 0xff);
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_WRITE);
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_IDLE);
+
+	/* Write high byte */
+	saa_writeb(SAA7134_GPIO_GPSTATUS0, data >> 8);
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_WRITE);
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_IDLE);
+
+	return 0;
+}
+
+static int gpio_read(struct saa7134_dev *dev, u8 addr, u16 *data)
+{
+	saa_writeb(SAA7134_GPIO_GPMODE0, 0xff);
+
+	/* Write HPI address */
+	saa_writeb(SAA7134_GPIO_GPSTATUS0, addr);
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_ADDR);
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_IDLE);
+
+	saa_writeb(SAA7134_GPIO_GPMODE0, 0x00);
+
+	/* Read low byte */
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_READ);
+	saa_clearb(SAA7134_GPIO_GPMODE3, SAA7134_GPIO_GPRESCAN);
+	saa_setb(SAA7134_GPIO_GPMODE3, SAA7134_GPIO_GPRESCAN);
+	*data = saa_readb(SAA7134_GPIO_GPSTATUS0);
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_IDLE);
+
+	/* Read high byte */
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_READ);
+	saa_clearb(SAA7134_GPIO_GPMODE3, SAA7134_GPIO_GPRESCAN);
+	saa_setb(SAA7134_GPIO_GPMODE3, SAA7134_GPIO_GPRESCAN);
+	*data |= saa_readb(SAA7134_GPIO_GPSTATUS0) << 8;
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_IDLE);
+
+	return 0;
+}
+
+static int saa7134_go7007_interface_reset(struct go7007 *go)
+{
+	struct saa7134_go7007 *saa = go->hpi_context;
+	struct saa7134_dev *dev = saa->dev;
+	u32 status;
+	u16 intr_val, intr_data;
+	int count = 20;
+
+	saa_clearb(SAA7134_TS_PARALLEL, 0x80); /* Disable TS interface */
+	saa_writeb(SAA7134_GPIO_GPMODE2, 0xa4);
+	saa_writeb(SAA7134_GPIO_GPMODE0, 0xff);
+
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_REQ1);
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_RESET);
+	msleep(1);
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_REQ1);
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_REQ2);
+	msleep(10);
+
+	saa_clearb(SAA7134_GPIO_GPMODE3, SAA7134_GPIO_GPRESCAN);
+	saa_setb(SAA7134_GPIO_GPMODE3, SAA7134_GPIO_GPRESCAN);
+
+	status = saa_readb(SAA7134_GPIO_GPSTATUS2);
+	/*printk(KERN_DEBUG "status is %s\n", status & 0x40 ? "OK" : "not OK"); */
+
+	/* enter command mode...(?) */
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_REQ1);
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_REQ2);
+
+	do {
+		saa_clearb(SAA7134_GPIO_GPMODE3, SAA7134_GPIO_GPRESCAN);
+		saa_setb(SAA7134_GPIO_GPMODE3, SAA7134_GPIO_GPRESCAN);
+		status = saa_readb(SAA7134_GPIO_GPSTATUS2);
+		/*printk(KERN_INFO "gpio is %08x\n", saa_readl(SAA7134_GPIO_GPSTATUS0 >> 2)); */
+	} while (--count > 0);
+
+	/* Wait for an interrupt to indicate successful hardware reset */
+	if (go7007_read_interrupt(go, &intr_val, &intr_data) < 0 ||
+			(intr_val & ~0x1) != 0x55aa) {
+		printk(KERN_ERR
+			"saa7134-go7007: unable to reset the GO7007\n");
+		return -1;
+	}
+	return 0;
+}
+
+static int saa7134_go7007_write_interrupt(struct go7007 *go, int addr, int data)
+{
+	struct saa7134_go7007 *saa = go->hpi_context;
+	struct saa7134_dev *dev = saa->dev;
+	int i;
+	u16 status_reg;
+
+#ifdef GO7007_HPI_DEBUG
+	printk(KERN_DEBUG
+		"saa7134-go7007: WriteInterrupt: %04x %04x\n", addr, data);
+#endif
+
+	for (i = 0; i < 100; ++i) {
+		gpio_read(dev, HPI_ADDR_INTR_STATUS, &status_reg);
+		if (!(status_reg & 0x0010))
+			break;
+		msleep(10);
+	}
+	if (i == 100) {
+		printk(KERN_ERR
+			"saa7134-go7007: device is hung, status reg = 0x%04x\n",
+			status_reg);
+		return -1;
+	}
+	gpio_write(dev, HPI_ADDR_INTR_WR_PARAM, data);
+	gpio_write(dev, HPI_ADDR_INTR_WR_INDEX, addr);
+
+	return 0;
+}
+
+static int saa7134_go7007_read_interrupt(struct go7007 *go)
+{
+	struct saa7134_go7007 *saa = go->hpi_context;
+	struct saa7134_dev *dev = saa->dev;
+
+	/* XXX we need to wait if there is no interrupt available */
+	go->interrupt_available = 1;
+	gpio_read(dev, HPI_ADDR_INTR_RET_VALUE, &go->interrupt_value);
+	gpio_read(dev, HPI_ADDR_INTR_RET_DATA, &go->interrupt_data);
+#ifdef GO7007_HPI_DEBUG
+	printk(KERN_DEBUG "saa7134-go7007: ReadInterrupt: %04x %04x\n",
+			go->interrupt_value, go->interrupt_data);
+#endif
+	return 0;
+}
+
+static void saa7134_go7007_irq_ts_done(struct saa7134_dev *dev,
+						unsigned long status)
+{
+	struct go7007 *go = video_get_drvdata(dev->empress_dev);
+	struct saa7134_go7007 *saa = go->hpi_context;
+
+	if (!go->streaming)
+		return;
+	if (0 != (status & 0x000f0000))
+		printk(KERN_DEBUG "saa7134-go7007: irq: lost %ld\n",
+				(status >> 16) & 0x0f);
+	if (status & 0x100000) {
+		dma_sync_single(&dev->pci->dev,
+				saa->bottom_dma, PAGE_SIZE, DMA_FROM_DEVICE);
+		go7007_parse_video_stream(go, saa->bottom, PAGE_SIZE);
+		saa_writel(SAA7134_RS_BA2(5), cpu_to_le32(saa->bottom_dma));
+	} else {
+		dma_sync_single(&dev->pci->dev,
+				saa->top_dma, PAGE_SIZE, DMA_FROM_DEVICE);
+		go7007_parse_video_stream(go, saa->top, PAGE_SIZE);
+		saa_writel(SAA7134_RS_BA1(5), cpu_to_le32(saa->top_dma));
+	}
+}
+
+static int saa7134_go7007_stream_start(struct go7007 *go)
+{
+	struct saa7134_go7007 *saa = go->hpi_context;
+	struct saa7134_dev *dev = saa->dev;
+
+	saa->top_dma = dma_map_page(&dev->pci->dev, virt_to_page(saa->top),
+			0, PAGE_SIZE, DMA_FROM_DEVICE);
+	if (!saa->top_dma)
+		return -ENOMEM;
+	saa->bottom_dma = dma_map_page(&dev->pci->dev,
+			virt_to_page(saa->bottom),
+			0, PAGE_SIZE, DMA_FROM_DEVICE);
+	if (!saa->bottom_dma) {
+		dma_unmap_page(&dev->pci->dev, saa->top_dma, PAGE_SIZE,
+				DMA_FROM_DEVICE);
+		return -ENOMEM;
+	}
+
+	saa_writel(SAA7134_VIDEO_PORT_CTRL0 >> 2, 0xA300B000);
+	saa_writel(SAA7134_VIDEO_PORT_CTRL4 >> 2, 0x40000200);
+
+	/* Set HPI interface for video */
+	saa_writeb(SAA7134_GPIO_GPMODE0, 0xff);
+	saa_writeb(SAA7134_GPIO_GPSTATUS0, HPI_ADDR_VIDEO_BUFFER);
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_ADDR);
+	saa_writeb(SAA7134_GPIO_GPMODE0, 0x00);
+
+	/* Enable TS interface */
+	saa_writeb(SAA7134_TS_PARALLEL, 0xe6);
+
+	/* Reset TS interface */
+	saa_setb(SAA7134_TS_SERIAL1, 0x01);
+	saa_clearb(SAA7134_TS_SERIAL1, 0x01);
+
+	/* Set up transfer block size */
+	saa_writeb(SAA7134_TS_PARALLEL_SERIAL, 128 - 1);
+	saa_writeb(SAA7134_TS_DMA0, (PAGE_SIZE >> 7) - 1);
+	saa_writeb(SAA7134_TS_DMA1, 0);
+	saa_writeb(SAA7134_TS_DMA2, 0);
+
+	/* Enable video streaming mode */
+	saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_VIDEO);
+
+	saa_writel(SAA7134_RS_BA1(5), cpu_to_le32(saa->top_dma));
+	saa_writel(SAA7134_RS_BA2(5), cpu_to_le32(saa->bottom_dma));
+	saa_writel(SAA7134_RS_PITCH(5), 128);
+	saa_writel(SAA7134_RS_CONTROL(5), SAA7134_RS_CONTROL_BURST_MAX);
+
+	/* Enable TS FIFO */
+	saa_setl(SAA7134_MAIN_CTRL, SAA7134_MAIN_CTRL_TE5);
+
+	/* Enable DMA IRQ */
+	saa_setl(SAA7134_IRQ1,
+			SAA7134_IRQ1_INTE_RA2_1 | SAA7134_IRQ1_INTE_RA2_0);
+
+	return 0;
+}
+
+static int saa7134_go7007_stream_stop(struct go7007 *go)
+{
+	struct saa7134_go7007 *saa = go->hpi_context;
+	struct saa7134_dev *dev = saa->dev;
+
+	/* Shut down TS FIFO */
+	saa_clearl(SAA7134_MAIN_CTRL, SAA7134_MAIN_CTRL_TE5);
+
+	/* Disable DMA IRQ */
+	saa_clearl(SAA7134_IRQ1,
+			SAA7134_IRQ1_INTE_RA2_1 | SAA7134_IRQ1_INTE_RA2_0);
+
+	/* Disable TS interface */
+	saa_clearb(SAA7134_TS_PARALLEL, 0x80);
+
+	dma_unmap_page(&dev->pci->dev, saa->top_dma, PAGE_SIZE,
+			DMA_FROM_DEVICE);
+	dma_unmap_page(&dev->pci->dev, saa->bottom_dma, PAGE_SIZE,
+			DMA_FROM_DEVICE);
+
+	return 0;
+}
+
+static int saa7134_go7007_send_firmware(struct go7007 *go, u8 *data, int len)
+{
+	struct saa7134_go7007 *saa = go->hpi_context;
+	struct saa7134_dev *dev = saa->dev;
+	u16 status_reg;
+	int i;
+
+#ifdef GO7007_HPI_DEBUG
+	printk(KERN_DEBUG "saa7134-go7007: DownloadBuffer "
+			"sending %d bytes\n", len);
+#endif
+
+	while (len > 0) {
+		i = len > 64 ? 64 : len;
+		saa_writeb(SAA7134_GPIO_GPMODE0, 0xff);
+		saa_writeb(SAA7134_GPIO_GPSTATUS0, HPI_ADDR_INIT_BUFFER);
+		saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_ADDR);
+		saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_IDLE);
+		while (i-- > 0) {
+			saa_writeb(SAA7134_GPIO_GPSTATUS0, *data);
+			saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_WRITE);
+			saa_writeb(SAA7134_GPIO_GPSTATUS2, GPIO_COMMAND_IDLE);
+			++data;
+			--len;
+		}
+		for (i = 0; i < 100; ++i) {
+			gpio_read(dev, HPI_ADDR_INTR_STATUS, &status_reg);
+			if (!(status_reg & 0x0002))
+				break;
+		}
+		if (i == 100) {
+			printk(KERN_ERR "saa7134-go7007: device is hung, "
+					"status reg = 0x%04x\n", status_reg);
+			return -1;
+		}
+	}
+	return 0;
+}
+
+static struct go7007_hpi_ops saa7134_go7007_hpi_ops = {
+	.interface_reset	= saa7134_go7007_interface_reset,
+	.write_interrupt	= saa7134_go7007_write_interrupt,
+	.read_interrupt		= saa7134_go7007_read_interrupt,
+	.stream_start		= saa7134_go7007_stream_start,
+	.stream_stop		= saa7134_go7007_stream_stop,
+	.send_firmware		= saa7134_go7007_send_firmware,
+};
+
+/********************* Add/remove functions *********************/
+
+static int saa7134_go7007_init(struct saa7134_dev *dev)
+{
+	struct go7007 *go;
+	struct saa7134_go7007 *saa;
+
+	printk(KERN_DEBUG "saa7134-go7007: probing new SAA713X board\n");
+
+	saa = kmalloc(sizeof(struct saa7134_go7007), GFP_KERNEL);
+	if (saa == NULL)
+		return -ENOMEM;
+	memset(saa, 0, sizeof(struct saa7134_go7007));
+
+	/* Allocate a couple pages for receiving the compressed stream */
+	saa->top = (u8 *)get_zeroed_page(GFP_KERNEL);
+	if (!saa->top)
+		goto allocfail;
+	saa->bottom = (u8 *)get_zeroed_page(GFP_KERNEL);
+	if (!saa->bottom)
+		goto allocfail;
+
+	go = go7007_alloc(&board_voyager, &dev->pci->dev);
+	if (go == NULL)
+		goto allocfail;
+	go->board_id = GO7007_BOARDID_PCI_VOYAGER;
+	strncpy(go->name, saa7134_boards[dev->board].name, sizeof(go->name));
+	go->hpi_ops = &saa7134_go7007_hpi_ops;
+	go->hpi_context = saa;
+	saa->dev = dev;
+
+	/* Boot the GO7007 */
+	if (go7007_boot_encoder(go, go->board_info->flags &
+					GO7007_BOARD_USE_ONBOARD_I2C) < 0)
+		goto initfail;
+
+	/* Do any final GO7007 initialization, then register the
+	 * V4L2 and ALSA interfaces */
+	if (go7007_register_encoder(go) < 0)
+		goto initfail;
+	dev->empress_dev = go->video_dev;
+	video_set_drvdata(dev->empress_dev, go);
+
+	go->status = STATUS_ONLINE;
+	return 0;
+
+initfail:
+	go->status = STATUS_SHUTDOWN;
+	return 0;
+
+allocfail:
+	if (saa->top)
+		free_page((unsigned long)saa->top);
+	if (saa->bottom)
+		free_page((unsigned long)saa->bottom);
+	kfree(saa);
+	return -ENOMEM;
+}
+
+static int saa7134_go7007_fini(struct saa7134_dev *dev)
+{
+	struct go7007 *go;
+	struct saa7134_go7007 *saa;
+
+	if (NULL == dev->empress_dev)
+		return 0;
+
+	go = video_get_drvdata(dev->empress_dev);
+	saa = go->hpi_context;
+	go->status = STATUS_SHUTDOWN;
+	free_page((unsigned long)saa->top);
+	free_page((unsigned long)saa->bottom);
+	kfree(saa);
+	go7007_remove(go);
+	dev->empress_dev = NULL;
+
+	return 0;
+}
+
+static struct saa7134_mpeg_ops saa7134_go7007_ops = {
+	.type          = SAA7134_MPEG_GO7007,
+	.init          = saa7134_go7007_init,
+	.fini          = saa7134_go7007_fini,
+	.irq_ts_done   = saa7134_go7007_irq_ts_done,
+};
+
+static int __init saa7134_go7007_mod_init(void)
+{
+	return saa7134_ts_register(&saa7134_go7007_ops);
+}
+
+static void __exit saa7134_go7007_mod_cleanup(void)
+{
+	saa7134_ts_unregister(&saa7134_go7007_ops);
+}
+
+module_init(saa7134_go7007_mod_init);
+module_exit(saa7134_go7007_mod_cleanup);
+
+MODULE_LICENSE("GPL v2");
diff --git a/drivers/staging/go7007/snd-go7007.c b/drivers/staging/go7007/snd-go7007.c
new file mode 100644
index 0000000..382740c
--- /dev/null
+++ b/drivers/staging/go7007/snd-go7007.c
@@ -0,0 +1,305 @@
+/*
+ * Copyright (C) 2005-2006 Micronas USA Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License (Version 2) as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software Foundation,
+ * Inc., 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
+ */
+
+#include <linux/kernel.h>
+#include <linux/module.h>
+#include <linux/version.h>
+#include <linux/moduleparam.h>
+#include <linux/init.h>
+#include <linux/spinlock.h>
+#include <linux/delay.h>
+#include <linux/sched.h>
+#include <linux/vmalloc.h>
+#include <linux/time.h>
+#include <linux/mm.h>
+#include <linux/i2c.h>
+#include <linux/semaphore.h>
+#include <linux/uaccess.h>
+#include <asm/system.h>
+#include <sound/core.h>
+#include <sound/pcm.h>
+#include <sound/initval.h>
+
+#include "go7007-priv.h"
+
+static int index[SNDRV_CARDS] = SNDRV_DEFAULT_IDX;
+static char *id[SNDRV_CARDS] = SNDRV_DEFAULT_STR;
+static int enable[SNDRV_CARDS] = SNDRV_DEFAULT_ENABLE_PNP;
+
+module_param_array(index, int, NULL, 0444);
+module_param_array(id, charp, NULL, 0444);
+module_param_array(enable, bool, NULL, 0444);
+MODULE_PARM_DESC(index, "Index value for the go7007 audio driver");
+MODULE_PARM_DESC(id, "ID string for the go7007 audio driver");
+MODULE_PARM_DESC(enable, "Enable for the go7007 audio driver");
+
+struct go7007_snd {
+	struct snd_card *card;
+	struct snd_pcm *pcm;
+	struct snd_pcm_substream *substream;
+	spinlock_t lock;
+	int w_idx;
+	int hw_ptr;
+	int avail;
+	int capturing;
+};
+
+static struct snd_pcm_hardware go7007_snd_capture_hw = {
+	.info			= (SNDRV_PCM_INFO_MMAP |
+					SNDRV_PCM_INFO_INTERLEAVED |
+					SNDRV_PCM_INFO_BLOCK_TRANSFER |
+					SNDRV_PCM_INFO_MMAP_VALID),
+	.formats		= SNDRV_PCM_FMTBIT_S16_LE,
+	.rates			= SNDRV_PCM_RATE_48000,
+	.rate_min		= 48000,
+	.rate_max		= 48000,
+	.channels_min		= 2,
+	.channels_max		= 2,
+	.buffer_bytes_max	= (128*1024),
+	.period_bytes_min	= 4096,
+	.period_bytes_max	= (128*1024),
+	.periods_min		= 1,
+	.periods_max		= 32,
+};
+
+static void parse_audio_stream_data(struct go7007 *go, u8 *buf, int length)
+{
+	struct go7007_snd *gosnd = go->snd_context;
+	struct snd_pcm_runtime *runtime = gosnd->substream->runtime;
+	int frames = bytes_to_frames(runtime, length);
+
+	spin_lock(&gosnd->lock);
+	gosnd->hw_ptr += frames;
+	if (gosnd->hw_ptr >= runtime->buffer_size)
+		gosnd->hw_ptr -= runtime->buffer_size;
+	gosnd->avail += frames;
+	spin_unlock(&gosnd->lock);
+	if (gosnd->w_idx + length > runtime->dma_bytes) {
+		int cpy = runtime->dma_bytes - gosnd->w_idx;
+
+		memcpy(runtime->dma_area + gosnd->w_idx, buf, cpy);
+		length -= cpy;
+		buf += cpy;
+		gosnd->w_idx = 0;
+	}
+	memcpy(runtime->dma_area + gosnd->w_idx, buf, length);
+	gosnd->w_idx += length;
+	spin_lock(&gosnd->lock);
+	if (gosnd->avail < runtime->period_size) {
+		spin_unlock(&gosnd->lock);
+		return;
+	}
+	gosnd->avail -= runtime->period_size;
+	spin_unlock(&gosnd->lock);
+	if (gosnd->capturing)
+		snd_pcm_period_elapsed(gosnd->substream);
+}
+
+static int go7007_snd_hw_params(struct snd_pcm_substream *substream,
+				struct snd_pcm_hw_params *hw_params)
+{
+	struct go7007 *go = snd_pcm_substream_chip(substream);
+	unsigned int bytes;
+
+	bytes = params_buffer_bytes(hw_params);
+	if (substream->runtime->dma_bytes > 0)
+		vfree(substream->runtime->dma_area);
+	substream->runtime->dma_bytes = 0;
+	substream->runtime->dma_area = vmalloc(bytes);
+	if (substream->runtime->dma_area == NULL)
+		return -ENOMEM;
+	substream->runtime->dma_bytes = bytes;
+	go->audio_deliver = parse_audio_stream_data;
+	return 0;
+}
+
+static int go7007_snd_hw_free(struct snd_pcm_substream *substream)
+{
+	struct go7007 *go = snd_pcm_substream_chip(substream);
+
+	go->audio_deliver = NULL;
+	if (substream->runtime->dma_bytes > 0)
+		vfree(substream->runtime->dma_area);
+	substream->runtime->dma_bytes = 0;
+	return 0;
+}
+
+static int go7007_snd_capture_open(struct snd_pcm_substream *substream)
+{
+	struct go7007 *go = snd_pcm_substream_chip(substream);
+	struct go7007_snd *gosnd = go->snd_context;
+	unsigned long flags;
+	int r;
+
+	spin_lock_irqsave(&gosnd->lock, flags);
+	if (gosnd->substream == NULL) {
+		gosnd->substream = substream;
+		substream->runtime->hw = go7007_snd_capture_hw;
+		r = 0;
+	} else
+		r = -EBUSY;
+	spin_unlock_irqrestore(&gosnd->lock, flags);
+	return r;
+}
+
+static int go7007_snd_capture_close(struct snd_pcm_substream *substream)
+{
+	struct go7007 *go = snd_pcm_substream_chip(substream);
+	struct go7007_snd *gosnd = go->snd_context;
+
+	gosnd->substream = NULL;
+	return 0;
+}
+
+static int go7007_snd_pcm_prepare(struct snd_pcm_substream *substream)
+{
+	return 0;
+}
+
+static int go7007_snd_pcm_trigger(struct snd_pcm_substream *substream, int cmd)
+{
+	struct go7007 *go = snd_pcm_substream_chip(substream);
+	struct go7007_snd *gosnd = go->snd_context;
+
+	switch (cmd) {
+	case SNDRV_PCM_TRIGGER_START:
+		/* Just set a flag to indicate we should signal ALSA when
+		 * sound comes in */
+		gosnd->capturing = 1;
+		return 0;
+	case SNDRV_PCM_TRIGGER_STOP:
+		gosnd->hw_ptr = gosnd->w_idx = gosnd->avail = 0;
+		gosnd->capturing = 0;
+		return 0;
+	default:
+		return -EINVAL;
+	}
+}
+
+static snd_pcm_uframes_t go7007_snd_pcm_pointer(struct snd_pcm_substream *substream)
+{
+	struct go7007 *go = snd_pcm_substream_chip(substream);
+	struct go7007_snd *gosnd = go->snd_context;
+
+	return gosnd->hw_ptr;
+}
+
+static struct page *go7007_snd_pcm_page(struct snd_pcm_substream *substream,
+					unsigned long offset)
+{
+	return vmalloc_to_page(substream->runtime->dma_area + offset);
+}
+
+static struct snd_pcm_ops go7007_snd_capture_ops = {
+	.open		= go7007_snd_capture_open,
+	.close		= go7007_snd_capture_close,
+	.ioctl		= snd_pcm_lib_ioctl,
+	.hw_params	= go7007_snd_hw_params,
+	.hw_free	= go7007_snd_hw_free,
+	.prepare	= go7007_snd_pcm_prepare,
+	.trigger	= go7007_snd_pcm_trigger,
+	.pointer	= go7007_snd_pcm_pointer,
+	.page		= go7007_snd_pcm_page,
+};
+
+static int go7007_snd_free(struct snd_device *device)
+{
+	struct go7007 *go = device->device_data;
+
+	kfree(go->snd_context);
+	go->snd_context = NULL;
+	if (--go->ref_count == 0)
+		kfree(go);
+	return 0;
+}
+
+static struct snd_device_ops go7007_snd_device_ops = {
+	.dev_free	= go7007_snd_free,
+};
+
+int go7007_snd_init(struct go7007 *go)
+{
+	static int dev;
+	struct go7007_snd *gosnd;
+	int ret = 0;
+
+	if (dev >= SNDRV_CARDS)
+		return -ENODEV;
+	if (!enable[dev]) {
+		dev++;
+		return -ENOENT;
+	}
+	gosnd = kmalloc(sizeof(struct go7007_snd), GFP_KERNEL);
+	if (gosnd == NULL)
+		return -ENOMEM;
+	spin_lock_init(&gosnd->lock);
+	gosnd->hw_ptr = gosnd->w_idx = gosnd->avail = 0;
+	gosnd->capturing = 0;
+	gosnd->card = snd_card_new(index[dev], id[dev], THIS_MODULE, 0);
+	if (gosnd->card == NULL) {
+		kfree(gosnd);
+		return -ENOMEM;
+	}
+	ret = snd_device_new(gosnd->card, SNDRV_DEV_LOWLEVEL, go,
+			&go7007_snd_device_ops);
+	if (ret < 0) {
+		kfree(gosnd);
+		return ret;
+	}
+	snd_card_set_dev(gosnd->card, go->dev);
+	ret = snd_pcm_new(gosnd->card, "go7007", 0, 0, 1, &gosnd->pcm);
+	if (ret < 0) {
+		snd_card_free(gosnd->card);
+		kfree(gosnd);
+		return ret;
+	}
+	strncpy(gosnd->card->driver, "go7007", sizeof(gosnd->card->driver));
+	strncpy(gosnd->card->shortname, go->name, sizeof(gosnd->card->driver));
+	strncpy(gosnd->card->longname, gosnd->card->shortname,
+			sizeof(gosnd->card->longname));
+
+	gosnd->pcm->private_data = go;
+	snd_pcm_set_ops(gosnd->pcm, SNDRV_PCM_STREAM_CAPTURE,
+			&go7007_snd_capture_ops);
+
+	ret = snd_card_register(gosnd->card);
+	if (ret < 0) {
+		snd_card_free(gosnd->card);
+		kfree(gosnd);
+		return ret;
+	}
+
+	gosnd->substream = NULL;
+	go->snd_context = gosnd;
+	++dev;
+	++go->ref_count;
+
+	return 0;
+}
+EXPORT_SYMBOL(go7007_snd_init);
+
+int go7007_snd_remove(struct go7007 *go)
+{
+	struct go7007_snd *gosnd = go->snd_context;
+
+	snd_card_disconnect(gosnd->card);
+	snd_card_free_when_closed(gosnd->card);
+	return 0;
+}
+EXPORT_SYMBOL(go7007_snd_remove);
+
+MODULE_LICENSE("GPL v2");
diff --git a/drivers/staging/go7007/wis-i2c.h b/drivers/staging/go7007/wis-i2c.h
new file mode 100644
index 0000000..993f658
--- /dev/null
+++ b/drivers/staging/go7007/wis-i2c.h
@@ -0,0 +1,55 @@
+/*
+ * Copyright (C) 2005-2006 Micronas USA Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License (Version 2) as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software Foundation,
+ * Inc., 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
+ */
+
+/* Temporary I2C IDs -- these need to be replaced with real registered IDs */
+#define	I2C_DRIVERID_WIS_SAA7115	0xf0f0
+#define	I2C_DRIVERID_WIS_UDA1342	0xf0f1
+#define	I2C_DRIVERID_WIS_SONY_TUNER	0xf0f2
+#define	I2C_DRIVERID_WIS_TW9903		0xf0f3
+#define	I2C_DRIVERID_WIS_SAA7113	0xf0f4
+#define	I2C_DRIVERID_WIS_OV7640		0xf0f5
+#define	I2C_DRIVERID_WIS_TW2804		0xf0f6
+#define	I2C_ALGO_GO7007			0xf00000
+#define	I2C_ALGO_GO7007_USB		0xf10000
+
+/* Flag to indicate that the client needs to be accessed with SCCB semantics */
+/* We re-use the I2C_M_TEN value so the flag passes through the masks in the
+ * core I2C code.  Major kludge, but the I2C layer ain't exactly flexible. */
+#define	I2C_CLIENT_SCCB			0x10
+
+typedef int (*found_proc) (struct i2c_adapter *, int, int);
+int wis_i2c_add_driver(unsigned int id, found_proc found_proc);
+void wis_i2c_del_driver(found_proc found_proc);
+
+int wis_i2c_probe_device(struct i2c_adapter *adapter,
+				unsigned int id, int addr);
+
+/* Definitions for new video decoder commands */
+
+struct video_decoder_resolution {
+	unsigned int width;
+	unsigned int height;
+};
+
+#define	DECODER_SET_RESOLUTION	_IOW('d', 200, struct video_decoder_resolution)
+#define	DECODER_SET_CHANNEL	_IOW('d', 201, int)
+
+/* Sony tuner types */
+
+#define TUNER_SONY_BTF_PG472Z		200
+#define TUNER_SONY_BTF_PK467Z		201
+#define TUNER_SONY_BTF_PB463Z		202
diff --git a/drivers/staging/go7007/wis-ov7640.c b/drivers/staging/go7007/wis-ov7640.c
new file mode 100644
index 0000000..f5f11e9
--- /dev/null
+++ b/drivers/staging/go7007/wis-ov7640.c
@@ -0,0 +1,130 @@
+/*
+ * Copyright (C) 2005-2006 Micronas USA Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License (Version 2) as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software Foundation,
+ * Inc., 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/version.h>
+#include <linux/i2c.h>
+#include <linux/videodev2.h>
+
+#include "wis-i2c.h"
+
+struct wis_ov7640 {
+	int brightness;
+	int contrast;
+	int saturation;
+	int hue;
+};
+
+static u8 initial_registers[] =
+{
+	0x12, 0x80,
+	0x12, 0x54,
+	0x14, 0x24,
+	0x15, 0x01,
+	0x28, 0x20,
+	0x75, 0x82,
+	0xFF, 0xFF, /* Terminator (reg 0xFF is unused) */
+};
+
+static int write_regs(struct i2c_client *client, u8 *regs)
+{
+	int i;
+
+	for (i = 0; regs[i] != 0xFF; i += 2)
+		if (i2c_smbus_write_byte_data(client, regs[i], regs[i + 1]) < 0)
+			return -1;
+	return 0;
+}
+
+static struct i2c_driver wis_ov7640_driver;
+
+static struct i2c_client wis_ov7640_client_templ = {
+	.name		= "OV7640 (WIS)",
+	.driver		= &wis_ov7640_driver,
+};
+
+static int wis_ov7640_detect(struct i2c_adapter *adapter, int addr, int kind)
+{
+	struct i2c_client *client;
+
+	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA))
+		return 0;
+
+	client = kmalloc(sizeof(struct i2c_client), GFP_KERNEL);
+	if (client == NULL)
+		return -ENOMEM;
+	memcpy(client, &wis_ov7640_client_templ,
+			sizeof(wis_ov7640_client_templ));
+	client->adapter = adapter;
+	client->addr = addr;
+	client->flags = I2C_CLIENT_SCCB;
+
+	printk(KERN_DEBUG
+		"wis-ov7640: initializing OV7640 at address %d on %s\n",
+		addr, adapter->name);
+
+	if (write_regs(client, initial_registers) < 0) {
+		printk(KERN_ERR "wis-ov7640: error initializing OV7640\n");
+		kfree(client);
+		return 0;
+	}
+
+	i2c_attach_client(client);
+	return 0;
+}
+
+static int wis_ov7640_detach(struct i2c_client *client)
+{
+	int r;
+
+	r = i2c_detach_client(client);
+	if (r < 0)
+		return r;
+
+	kfree(client);
+	return 0;
+}
+
+static struct i2c_driver wis_ov7640_driver = {
+	.driver = {
+		.name	= "WIS OV7640 I2C driver",
+	},
+	.id		= I2C_DRIVERID_WIS_OV7640,
+	.detach_client	= wis_ov7640_detach,
+};
+
+static int __init wis_ov7640_init(void)
+{
+	int r;
+
+	r = i2c_add_driver(&wis_ov7640_driver);
+	if (r < 0)
+		return r;
+	return wis_i2c_add_driver(wis_ov7640_driver.id, wis_ov7640_detect);
+}
+
+static void __exit wis_ov7640_cleanup(void)
+{
+	wis_i2c_del_driver(wis_ov7640_detect);
+	i2c_del_driver(&wis_ov7640_driver);
+}
+
+module_init(wis_ov7640_init);
+module_exit(wis_ov7640_cleanup);
+
+MODULE_LICENSE("GPL v2");
diff --git a/drivers/staging/go7007/wis-saa7113.c b/drivers/staging/go7007/wis-saa7113.c
new file mode 100644
index 0000000..c1aff1b
--- /dev/null
+++ b/drivers/staging/go7007/wis-saa7113.c
@@ -0,0 +1,358 @@
+/*
+ * Copyright (C) 2005-2006 Micronas USA Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License (Version 2) as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software Foundation,
+ * Inc., 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/version.h>
+#include <linux/i2c.h>
+#include <linux/videodev2.h>
+#include <linux/ioctl.h>
+
+#include "wis-i2c.h"
+
+struct wis_saa7113 {
+	int norm;
+	int brightness;
+	int contrast;
+	int saturation;
+	int hue;
+};
+
+static u8 initial_registers[] =
+{
+	0x01, 0x08,
+	0x02, 0xc0,
+	0x03, 0x33,
+	0x04, 0x00,
+	0x05, 0x00,
+	0x06, 0xe9,
+	0x07, 0x0d,
+	0x08, 0xd8,
+	0x09, 0x40,
+	0x0a, 0x80,
+	0x0b, 0x47,
+	0x0c, 0x40,
+	0x0d, 0x00,
+	0x0e, 0x01,
+	0x0f, 0x2a,
+	0x10, 0x40,
+	0x11, 0x0c,
+	0x12, 0xfe,
+	0x13, 0x00,
+	0x14, 0x00,
+	0x15, 0x04,
+	0x16, 0x00,
+	0x17, 0x00,
+	0x18, 0x00,
+	0x19, 0x00,
+	0x1a, 0x00,
+	0x1b, 0x00,
+	0x1c, 0x00,
+	0x1d, 0x00,
+	0x1e, 0x00,
+	0x1f, 0xc8,
+	0x40, 0x00,
+	0x41, 0xff,
+	0x42, 0xff,
+	0x43, 0xff,
+	0x44, 0xff,
+	0x45, 0xff,
+	0x46, 0xff,
+	0x47, 0xff,
+	0x48, 0xff,
+	0x49, 0xff,
+	0x4a, 0xff,
+	0x4b, 0xff,
+	0x4c, 0xff,
+	0x4d, 0xff,
+	0x4e, 0xff,
+	0x4f, 0xff,
+	0x50, 0xff,
+	0x51, 0xff,
+	0x52, 0xff,
+	0x53, 0xff,
+	0x54, 0xff,
+	0x55, 0xff,
+	0x56, 0xff,
+	0x57, 0xff,
+	0x58, 0x00,
+	0x59, 0x54,
+	0x5a, 0x07,
+	0x5b, 0x83,
+	0x5c, 0x00,
+	0x5d, 0x00,
+	0x5e, 0x00,
+	0x5f, 0x00,
+	0x60, 0x00,
+	0x61, 0x00,
+	0x00, 0x00, /* Terminator (reg 0x00 is read-only) */
+};
+
+static int write_reg(struct i2c_client *client, u8 reg, u8 value)
+{
+	return i2c_smbus_write_byte_data(client, reg, value);
+}
+
+static int write_regs(struct i2c_client *client, u8 *regs)
+{
+	int i;
+
+	for (i = 0; regs[i] != 0x00; i += 2)
+		if (i2c_smbus_write_byte_data(client, regs[i], regs[i + 1]) < 0)
+			return -1;
+	return 0;
+}
+
+static int wis_saa7113_command(struct i2c_client *client,
+				unsigned int cmd, void *arg)
+{
+	struct wis_saa7113 *dec = i2c_get_clientdata(client);
+
+	switch (cmd) {
+	case VIDIOC_S_INPUT:
+	{
+		int *input = arg;
+
+		i2c_smbus_write_byte_data(client, 0x02, 0xC0 | *input);
+		i2c_smbus_write_byte_data(client, 0x09,
+				*input < 6 ? 0x40 : 0x80);
+		break;
+	}
+	case VIDIOC_S_STD:
+	{
+		v4l2_std_id *input = arg;
+		dec->norm = *input;
+		if (dec->norm & V4L2_STD_NTSC) {
+			write_reg(client, 0x0e, 0x01);
+			write_reg(client, 0x10, 0x40);
+		} else if (dec->norm & V4L2_STD_PAL) {
+			write_reg(client, 0x0e, 0x01);
+			write_reg(client, 0x10, 0x48);
+		} else if (dec->norm * V4L2_STD_SECAM) {
+			write_reg(client, 0x0e, 0x50);
+			write_reg(client, 0x10, 0x48);
+		}
+		break;
+	}
+	case VIDIOC_QUERYCTRL:
+	{
+		struct v4l2_queryctrl *ctrl = arg;
+
+		switch (ctrl->id) {
+		case V4L2_CID_BRIGHTNESS:
+			ctrl->type = V4L2_CTRL_TYPE_INTEGER;
+			strncpy(ctrl->name, "Brightness", sizeof(ctrl->name));
+			ctrl->minimum = 0;
+			ctrl->maximum = 255;
+			ctrl->step = 1;
+			ctrl->default_value = 128;
+			ctrl->flags = 0;
+			break;
+		case V4L2_CID_CONTRAST:
+			ctrl->type = V4L2_CTRL_TYPE_INTEGER;
+			strncpy(ctrl->name, "Contrast", sizeof(ctrl->name));
+			ctrl->minimum = 0;
+			ctrl->maximum = 127;
+			ctrl->step = 1;
+			ctrl->default_value = 71;
+			ctrl->flags = 0;
+			break;
+		case V4L2_CID_SATURATION:
+			ctrl->type = V4L2_CTRL_TYPE_INTEGER;
+			strncpy(ctrl->name, "Saturation", sizeof(ctrl->name));
+			ctrl->minimum = 0;
+			ctrl->maximum = 127;
+			ctrl->step = 1;
+			ctrl->default_value = 64;
+			ctrl->flags = 0;
+			break;
+		case V4L2_CID_HUE:
+			ctrl->type = V4L2_CTRL_TYPE_INTEGER;
+			strncpy(ctrl->name, "Hue", sizeof(ctrl->name));
+			ctrl->minimum = -128;
+			ctrl->maximum = 127;
+			ctrl->step = 1;
+			ctrl->default_value = 0;
+			ctrl->flags = 0;
+			break;
+		}
+		break;
+	}
+	case VIDIOC_S_CTRL:
+	{
+		struct v4l2_control *ctrl = arg;
+
+		switch (ctrl->id) {
+		case V4L2_CID_BRIGHTNESS:
+			if (ctrl->value > 255)
+				dec->brightness = 255;
+			else if (ctrl->value < 0)
+				dec->brightness = 0;
+			else
+				dec->brightness = ctrl->value;
+			write_reg(client, 0x0a, dec->brightness);
+			break;
+		case V4L2_CID_CONTRAST:
+			if (ctrl->value > 127)
+				dec->contrast = 127;
+			else if (ctrl->value < 0)
+				dec->contrast = 0;
+			else
+				dec->contrast = ctrl->value;
+			write_reg(client, 0x0b, dec->contrast);
+			break;
+		case V4L2_CID_SATURATION:
+			if (ctrl->value > 127)
+				dec->saturation = 127;
+			else if (ctrl->value < 0)
+				dec->saturation = 0;
+			else
+				dec->saturation = ctrl->value;
+			write_reg(client, 0x0c, dec->saturation);
+			break;
+		case V4L2_CID_HUE:
+			if (ctrl->value > 127)
+				dec->hue = 127;
+			else if (ctrl->value < -128)
+				dec->hue = -128;
+			else
+				dec->hue = ctrl->value;
+			write_reg(client, 0x0d, dec->hue);
+			break;
+		}
+		break;
+	}
+	case VIDIOC_G_CTRL:
+	{
+		struct v4l2_control *ctrl = arg;
+
+		switch (ctrl->id) {
+		case V4L2_CID_BRIGHTNESS:
+			ctrl->value = dec->brightness;
+			break;
+		case V4L2_CID_CONTRAST:
+			ctrl->value = dec->contrast;
+			break;
+		case V4L2_CID_SATURATION:
+			ctrl->value = dec->saturation;
+			break;
+		case V4L2_CID_HUE:
+			ctrl->value = dec->hue;
+			break;
+		}
+		break;
+	}
+	default:
+		break;
+	}
+	return 0;
+}
+
+static struct i2c_driver wis_saa7113_driver;
+
+static struct i2c_client wis_saa7113_client_templ = {
+	.name		= "SAA7113 (WIS)",
+	.driver		= &wis_saa7113_driver,
+};
+
+static int wis_saa7113_detect(struct i2c_adapter *adapter, int addr, int kind)
+{
+	struct i2c_client *client;
+	struct wis_saa7113 *dec;
+
+	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA))
+		return 0;
+
+	client = kmalloc(sizeof(struct i2c_client), GFP_KERNEL);
+	if (client == NULL)
+		return -ENOMEM;
+	memcpy(client, &wis_saa7113_client_templ,
+			sizeof(wis_saa7113_client_templ));
+	client->adapter = adapter;
+	client->addr = addr;
+
+	dec = kmalloc(sizeof(struct wis_saa7113), GFP_KERNEL);
+	if (dec == NULL) {
+		kfree(client);
+		return -ENOMEM;
+	}
+	dec->norm = V4L2_STD_NTSC;
+	dec->brightness = 128;
+	dec->contrast = 71;
+	dec->saturation = 64;
+	dec->hue = 0;
+	i2c_set_clientdata(client, dec);
+
+	printk(KERN_DEBUG
+		"wis-saa7113: initializing SAA7113 at address %d on %s\n",
+		addr, adapter->name);
+
+	if (write_regs(client, initial_registers) < 0) {
+		printk(KERN_ERR
+			"wis-saa7113: error initializing SAA7113\n");
+		kfree(client);
+		kfree(dec);
+		return 0;
+	}
+
+	i2c_attach_client(client);
+	return 0;
+}
+
+static int wis_saa7113_detach(struct i2c_client *client)
+{
+	struct wis_saa7113 *dec = i2c_get_clientdata(client);
+	int r;
+
+	r = i2c_detach_client(client);
+	if (r < 0)
+		return r;
+
+	kfree(client);
+	kfree(dec);
+	return 0;
+}
+
+static struct i2c_driver wis_saa7113_driver = {
+	.driver = {
+		.name	= "WIS SAA7113 I2C driver",
+	},
+	.id		= I2C_DRIVERID_WIS_SAA7113,
+	.detach_client	= wis_saa7113_detach,
+	.command	= wis_saa7113_command,
+};
+
+static int __init wis_saa7113_init(void)
+{
+	int r;
+
+	r = i2c_add_driver(&wis_saa7113_driver);
+	if (r < 0)
+		return r;
+	return wis_i2c_add_driver(wis_saa7113_driver.id, wis_saa7113_detect);
+}
+
+static void __exit wis_saa7113_cleanup(void)
+{
+	wis_i2c_del_driver(wis_saa7113_detect);
+	i2c_del_driver(&wis_saa7113_driver);
+}
+
+module_init(wis_saa7113_init);
+module_exit(wis_saa7113_cleanup);
+
+MODULE_LICENSE("GPL v2");
diff --git a/drivers/staging/go7007/wis-saa7115.c b/drivers/staging/go7007/wis-saa7115.c
new file mode 100644
index 0000000..5c94c88
--- /dev/null
+++ b/drivers/staging/go7007/wis-saa7115.c
@@ -0,0 +1,491 @@
+/*
+ * Copyright (C) 2005-2006 Micronas USA Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License (Version 2) as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software Foundation,
+ * Inc., 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/version.h>
+#include <linux/i2c.h>
+#include <linux/videodev2.h>
+#include <linux/ioctl.h>
+
+#include "wis-i2c.h"
+
+struct wis_saa7115 {
+	int norm;
+	int brightness;
+	int contrast;
+	int saturation;
+	int hue;
+};
+
+static u8 initial_registers[] =
+{
+	0x01, 0x08,
+	0x02, 0xc0,
+	0x03, 0x20,
+	0x04, 0x80,
+	0x05, 0x80,
+	0x06, 0xeb,
+	0x07, 0xe0,
+	0x08, 0xf0,	/* always toggle FID */
+	0x09, 0x40,
+	0x0a, 0x80,
+	0x0b, 0x40,
+	0x0c, 0x40,
+	0x0d, 0x00,
+	0x0e, 0x03,
+	0x0f, 0x2a,
+	0x10, 0x0e,
+	0x11, 0x00,
+	0x12, 0x8d,
+	0x13, 0x00,
+	0x14, 0x00,
+	0x15, 0x11,
+	0x16, 0x01,
+	0x17, 0xda,
+	0x18, 0x40,
+	0x19, 0x80,
+	0x1a, 0x00,
+	0x1b, 0x42,
+	0x1c, 0xa9,
+	0x30, 0x66,
+	0x31, 0x90,
+	0x32, 0x01,
+	0x34, 0x00,
+	0x35, 0x00,
+	0x36, 0x20,
+	0x38, 0x03,
+	0x39, 0x20,
+	0x3a, 0x88,
+	0x40, 0x00,
+	0x41, 0xff,
+	0x42, 0xff,
+	0x43, 0xff,
+	0x44, 0xff,
+	0x45, 0xff,
+	0x46, 0xff,
+	0x47, 0xff,
+	0x48, 0xff,
+	0x49, 0xff,
+	0x4a, 0xff,
+	0x4b, 0xff,
+	0x4c, 0xff,
+	0x4d, 0xff,
+	0x4e, 0xff,
+	0x4f, 0xff,
+	0x50, 0xff,
+	0x51, 0xff,
+	0x52, 0xff,
+	0x53, 0xff,
+	0x54, 0xf4 /*0xff*/,
+	0x55, 0xff,
+	0x56, 0xff,
+	0x57, 0xff,
+	0x58, 0x40,
+	0x59, 0x47,
+	0x5a, 0x06 /*0x03*/,
+	0x5b, 0x83,
+	0x5d, 0x06,
+	0x5e, 0x00,
+	0x80, 0x30, /* window defined scaler operation, task A and B enabled */
+	0x81, 0x03, /* use scaler datapath generated V */
+	0x83, 0x00,
+	0x84, 0x00,
+	0x85, 0x00,
+	0x86, 0x45,
+	0x87, 0x31,
+	0x88, 0xc0,
+	0x90, 0x02, /* task A process top field */
+	0x91, 0x08,
+	0x92, 0x09,
+	0x93, 0x80,
+	0x94, 0x06,
+	0x95, 0x00,
+	0x96, 0xc0,
+	0x97, 0x02,
+	0x98, 0x12,
+	0x99, 0x00,
+	0x9a, 0xf2,
+	0x9b, 0x00,
+	0x9c, 0xd0,
+	0x9d, 0x02,
+	0x9e, 0xf2,
+	0x9f, 0x00,
+	0xa0, 0x01,
+	0xa1, 0x01,
+	0xa2, 0x01,
+	0xa4, 0x80,
+	0xa5, 0x40,
+	0xa6, 0x40,
+	0xa8, 0x00,
+	0xa9, 0x04,
+	0xaa, 0x00,
+	0xac, 0x00,
+	0xad, 0x02,
+	0xae, 0x00,
+	0xb0, 0x00,
+	0xb1, 0x04,
+	0xb2, 0x00,
+	0xb3, 0x04,
+	0xb4, 0x00,
+	0xb8, 0x00,
+	0xbc, 0x00,
+	0xc0, 0x03,	/* task B process bottom field */
+	0xc1, 0x08,
+	0xc2, 0x09,
+	0xc3, 0x80,
+	0xc4, 0x06,
+	0xc5, 0x00,
+	0xc6, 0xc0,
+	0xc7, 0x02,
+	0xc8, 0x12,
+	0xc9, 0x00,
+	0xca, 0xf2,
+	0xcb, 0x00,
+	0xcc, 0xd0,
+	0xcd, 0x02,
+	0xce, 0xf2,
+	0xcf, 0x00,
+	0xd0, 0x01,
+	0xd1, 0x01,
+	0xd2, 0x01,
+	0xd4, 0x80,
+	0xd5, 0x40,
+	0xd6, 0x40,
+	0xd8, 0x00,
+	0xd9, 0x04,
+	0xda, 0x00,
+	0xdc, 0x00,
+	0xdd, 0x02,
+	0xde, 0x00,
+	0xe0, 0x00,
+	0xe1, 0x04,
+	0xe2, 0x00,
+	0xe3, 0x04,
+	0xe4, 0x00,
+	0xe8, 0x00,
+	0x88, 0xf0, /* End of original static list */
+	0x00, 0x00, /* Terminator (reg 0x00 is read-only) */
+};
+
+static int write_reg(struct i2c_client *client, u8 reg, u8 value)
+{
+	return i2c_smbus_write_byte_data(client, reg, value);
+}
+
+static int write_regs(struct i2c_client *client, u8 *regs)
+{
+	int i;
+
+	for (i = 0; regs[i] != 0x00; i += 2)
+		if (i2c_smbus_write_byte_data(client, regs[i], regs[i + 1]) < 0)
+			return -1;
+	return 0;
+}
+
+static int wis_saa7115_command(struct i2c_client *client,
+				unsigned int cmd, void *arg)
+{
+	struct wis_saa7115 *dec = i2c_get_clientdata(client);
+
+	switch (cmd) {
+	case VIDIOC_S_INPUT:
+	{
+		int *input = arg;
+
+		i2c_smbus_write_byte_data(client, 0x02, 0xC0 | *input);
+		i2c_smbus_write_byte_data(client, 0x09,
+				*input < 6 ? 0x40 : 0xC0);
+		break;
+	}
+	case DECODER_SET_RESOLUTION:
+	{
+		struct video_decoder_resolution *res = arg;
+		/* Course-grained scaler */
+		int h_integer_scaler = res->width < 704 ? 704 / res->width : 1;
+		/* Fine-grained scaler to take care of remainder */
+		int h_scaling_increment = (704 / h_integer_scaler) *
+					1024 / res->width;
+		/* Fine-grained scaler only */
+		int v_scaling_increment = (dec->norm & V4L2_STD_NTSC ?
+				240 : 288) * 1024 / res->height;
+		u8 regs[] = {
+			0x88,	0xc0,
+			0x9c,	res->width & 0xff,
+			0x9d,	res->width >> 8,
+			0x9e,	res->height & 0xff,
+			0x9f,	res->height >> 8,
+			0xa0,	h_integer_scaler,
+			0xa1,	1,
+			0xa2,	1,
+			0xa8,	h_scaling_increment & 0xff,
+			0xa9,	h_scaling_increment >> 8,
+			0xac,	(h_scaling_increment / 2) & 0xff,
+			0xad,	(h_scaling_increment / 2) >> 8,
+			0xb0,	v_scaling_increment & 0xff,
+			0xb1,	v_scaling_increment >> 8,
+			0xb2,	v_scaling_increment & 0xff,
+			0xb3,	v_scaling_increment >> 8,
+			0xcc,	res->width & 0xff,
+			0xcd,	res->width >> 8,
+			0xce,	res->height & 0xff,
+			0xcf,	res->height >> 8,
+			0xd0,	h_integer_scaler,
+			0xd1,	1,
+			0xd2,	1,
+			0xd8,	h_scaling_increment & 0xff,
+			0xd9,	h_scaling_increment >> 8,
+			0xdc,	(h_scaling_increment / 2) & 0xff,
+			0xdd,	(h_scaling_increment / 2) >> 8,
+			0xe0,	v_scaling_increment & 0xff,
+			0xe1,	v_scaling_increment >> 8,
+			0xe2,	v_scaling_increment & 0xff,
+			0xe3,	v_scaling_increment >> 8,
+			0x88,	0xf0,
+			0,	0,
+		};
+		write_regs(client, regs);
+		break;
+	}
+	case VIDIOC_S_STD:
+	{
+		v4l2_std_id *input = arg;
+		u8 regs[] = {
+			0x88,	0xc0,
+			0x98,	*input & V4L2_STD_NTSC ? 0x12 : 0x16,
+			0x9a,	*input & V4L2_STD_NTSC ? 0xf2 : 0x20,
+			0x9b,	*input & V4L2_STD_NTSC ? 0x00 : 0x01,
+			0xc8,	*input & V4L2_STD_NTSC ? 0x12 : 0x16,
+			0xca,	*input & V4L2_STD_NTSC ? 0xf2 : 0x20,
+			0xcb,	*input & V4L2_STD_NTSC ? 0x00 : 0x01,
+			0x88,	0xf0,
+			0x30,	*input & V4L2_STD_NTSC ? 0x66 : 0x00,
+			0x31,	*input & V4L2_STD_NTSC ? 0x90 : 0xe0,
+			0,	0,
+		};
+		write_regs(client, regs);
+		dec->norm = *input;
+		break;
+	}
+	case VIDIOC_QUERYCTRL:
+	{
+		struct v4l2_queryctrl *ctrl = arg;
+
+		switch (ctrl->id) {
+		case V4L2_CID_BRIGHTNESS:
+			ctrl->type = V4L2_CTRL_TYPE_INTEGER;
+			strncpy(ctrl->name, "Brightness", sizeof(ctrl->name));
+			ctrl->minimum = 0;
+			ctrl->maximum = 255;
+			ctrl->step = 1;
+			ctrl->default_value = 128;
+			ctrl->flags = 0;
+			break;
+		case V4L2_CID_CONTRAST:
+			ctrl->type = V4L2_CTRL_TYPE_INTEGER;
+			strncpy(ctrl->name, "Contrast", sizeof(ctrl->name));
+			ctrl->minimum = 0;
+			ctrl->maximum = 127;
+			ctrl->step = 1;
+			ctrl->default_value = 64;
+			ctrl->flags = 0;
+			break;
+		case V4L2_CID_SATURATION:
+			ctrl->type = V4L2_CTRL_TYPE_INTEGER;
+			strncpy(ctrl->name, "Saturation", sizeof(ctrl->name));
+			ctrl->minimum = 0;
+			ctrl->maximum = 127;
+			ctrl->step = 1;
+			ctrl->default_value = 64;
+			ctrl->flags = 0;
+			break;
+		case V4L2_CID_HUE:
+			ctrl->type = V4L2_CTRL_TYPE_INTEGER;
+			strncpy(ctrl->name, "Hue", sizeof(ctrl->name));
+			ctrl->minimum = -128;
+			ctrl->maximum = 127;
+			ctrl->step = 1;
+			ctrl->default_value = 0;
+			ctrl->flags = 0;
+			break;
+		}
+		break;
+	}
+	case VIDIOC_S_CTRL:
+	{
+		struct v4l2_control *ctrl = arg;
+
+		switch (ctrl->id) {
+		case V4L2_CID_BRIGHTNESS:
+			if (ctrl->value > 255)
+				dec->brightness = 255;
+			else if (ctrl->value < 0)
+				dec->brightness = 0;
+			else
+				dec->brightness = ctrl->value;
+			write_reg(client, 0x0a, dec->brightness);
+			break;
+		case V4L2_CID_CONTRAST:
+			if (ctrl->value > 127)
+				dec->contrast = 127;
+			else if (ctrl->value < 0)
+				dec->contrast = 0;
+			else
+				dec->contrast = ctrl->value;
+			write_reg(client, 0x0b, dec->contrast);
+			break;
+		case V4L2_CID_SATURATION:
+			if (ctrl->value > 127)
+				dec->saturation = 127;
+			else if (ctrl->value < 0)
+				dec->saturation = 0;
+			else
+				dec->saturation = ctrl->value;
+			write_reg(client, 0x0c, dec->saturation);
+			break;
+		case V4L2_CID_HUE:
+			if (ctrl->value > 127)
+				dec->hue = 127;
+			else if (ctrl->value < -128)
+				dec->hue = -128;
+			else
+				dec->hue = ctrl->value;
+			write_reg(client, 0x0d, dec->hue);
+			break;
+		}
+		break;
+	}
+	case VIDIOC_G_CTRL:
+	{
+		struct v4l2_control *ctrl = arg;
+
+		switch (ctrl->id) {
+		case V4L2_CID_BRIGHTNESS:
+			ctrl->value = dec->brightness;
+			break;
+		case V4L2_CID_CONTRAST:
+			ctrl->value = dec->contrast;
+			break;
+		case V4L2_CID_SATURATION:
+			ctrl->value = dec->saturation;
+			break;
+		case V4L2_CID_HUE:
+			ctrl->value = dec->hue;
+			break;
+		}
+		break;
+	}
+	default:
+		break;
+	}
+	return 0;
+}
+
+static struct i2c_driver wis_saa7115_driver;
+
+static struct i2c_client wis_saa7115_client_templ = {
+	.name		= "SAA7115 (WIS)",
+	.driver		= &wis_saa7115_driver,
+};
+
+static int wis_saa7115_detect(struct i2c_adapter *adapter, int addr, int kind)
+{
+	struct i2c_client *client;
+	struct wis_saa7115 *dec;
+
+	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA))
+		return 0;
+
+	client = kmalloc(sizeof(struct i2c_client), GFP_KERNEL);
+	if (client == NULL)
+		return -ENOMEM;
+	memcpy(client, &wis_saa7115_client_templ,
+			sizeof(wis_saa7115_client_templ));
+	client->adapter = adapter;
+	client->addr = addr;
+
+	dec = kmalloc(sizeof(struct wis_saa7115), GFP_KERNEL);
+	if (dec == NULL) {
+		kfree(client);
+		return -ENOMEM;
+	}
+	dec->norm = V4L2_STD_NTSC;
+	dec->brightness = 128;
+	dec->contrast = 64;
+	dec->saturation = 64;
+	dec->hue = 0;
+	i2c_set_clientdata(client, dec);
+
+	printk(KERN_DEBUG
+		"wis-saa7115: initializing SAA7115 at address %d on %s\n",
+		addr, adapter->name);
+
+	if (write_regs(client, initial_registers) < 0) {
+		printk(KERN_ERR
+			"wis-saa7115: error initializing SAA7115\n");
+		kfree(client);
+		kfree(dec);
+		return 0;
+	}
+
+	i2c_attach_client(client);
+	return 0;
+}
+
+static int wis_saa7115_detach(struct i2c_client *client)
+{
+	struct wis_saa7115 *dec = i2c_get_clientdata(client);
+	int r;
+
+	r = i2c_detach_client(client);
+	if (r < 0)
+		return r;
+
+	kfree(client);
+	kfree(dec);
+	return 0;
+}
+
+static struct i2c_driver wis_saa7115_driver = {
+	.driver = {
+		.name	= "WIS SAA7115 I2C driver",
+	},
+	.id		= I2C_DRIVERID_WIS_SAA7115,
+	.detach_client	= wis_saa7115_detach,
+	.command	= wis_saa7115_command,
+};
+
+static int __init wis_saa7115_init(void)
+{
+	int r;
+
+	r = i2c_add_driver(&wis_saa7115_driver);
+	if (r < 0)
+		return r;
+	return wis_i2c_add_driver(wis_saa7115_driver.id, wis_saa7115_detect);
+}
+
+static void __exit wis_saa7115_cleanup(void)
+{
+	wis_i2c_del_driver(wis_saa7115_detect);
+	i2c_del_driver(&wis_saa7115_driver);
+}
+
+module_init(wis_saa7115_init);
+module_exit(wis_saa7115_cleanup);
+
+MODULE_LICENSE("GPL v2");
diff --git a/drivers/staging/go7007/wis-sony-tuner.c b/drivers/staging/go7007/wis-sony-tuner.c
new file mode 100644
index 0000000..5997fb4
--- /dev/null
+++ b/drivers/staging/go7007/wis-sony-tuner.c
@@ -0,0 +1,742 @@
+/*
+ * Copyright (C) 2005-2006 Micronas USA Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License (Version 2) as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software Foundation,
+ * Inc., 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/version.h>
+#include <linux/i2c.h>
+#include <linux/videodev2.h>
+#include <media/tuner.h>
+#include <media/v4l2-common.h>
+#include <media/v4l2-ioctl.h>
+
+#include "wis-i2c.h"
+
+/* #define MPX_DEBUG */
+
+/* AS(IF/MPX) pin:      LOW      HIGH/OPEN
+ * IF/MPX address:   0x42/0x40   0x43/0x44
+ */
+#define IF_I2C_ADDR	0x43
+#define MPX_I2C_ADDR	0x44
+
+static v4l2_std_id force_band;
+static char force_band_str[] = "-";
+module_param_string(force_band, force_band_str, sizeof(force_band_str), 0644);
+static int force_mpx_mode = -1;
+module_param(force_mpx_mode, int, 0644);
+
+/* Store tuner info in the same format as tuner.c, so maybe we can put the
+ * Sony tuner support in there. */
+struct sony_tunertype {
+	char *name;
+	unsigned char Vendor; /* unused here */
+	unsigned char Type; /* unused here */
+
+	unsigned short thresh1; /*  band switch VHF_LO <=> VHF_HI */
+	unsigned short thresh2; /*  band switch VHF_HI <=> UHF */
+	unsigned char VHF_L;
+	unsigned char VHF_H;
+	unsigned char UHF;
+	unsigned char config;
+	unsigned short IFPCoff;
+};
+
+/* This array is indexed by (tuner_type - 200) */
+static struct sony_tunertype sony_tuners[] = {
+	{ "Sony PAL+SECAM (BTF-PG472Z)", 0, 0,
+	  16*144.25, 16*427.25, 0x01, 0x02, 0x04, 0xc6, 623},
+	{ "Sony NTSC_JP (BTF-PK467Z)", 0, 0,
+	  16*220.25, 16*467.25, 0x01, 0x02, 0x04, 0xc6, 940},
+	{ "Sony NTSC (BTF-PB463Z)", 0, 0,
+	  16*130.25, 16*364.25, 0x01, 0x02, 0x04, 0xc6, 732},
+};
+
+struct wis_sony_tuner {
+	int type;
+	v4l2_std_id std;
+	unsigned int freq;
+	int mpxmode;
+	u32 audmode;
+};
+
+/* Basically the same as default_set_tv_freq() in tuner.c */
+static int set_freq(struct i2c_client *client, int freq)
+{
+	struct wis_sony_tuner *t = i2c_get_clientdata(client);
+	char *band_name;
+	int n;
+	int band_select;
+	struct sony_tunertype *tun;
+	u8 buffer[4];
+
+	tun = &sony_tuners[t->type - 200];
+	if (freq < tun->thresh1) {
+		band_name = "VHF_L";
+		band_select = tun->VHF_L;
+	} else if (freq < tun->thresh2) {
+		band_name = "VHF_H";
+		band_select = tun->VHF_H;
+	} else {
+		band_name = "UHF";
+		band_select = tun->UHF;
+	}
+	printk(KERN_DEBUG "wis-sony-tuner: tuning to frequency %d.%04d (%s)\n",
+			freq / 16, (freq % 16) * 625, band_name);
+	n = freq + tun->IFPCoff;
+
+	buffer[0] = n >> 8;
+	buffer[1] = n & 0xff;
+	buffer[2] = tun->config;
+	buffer[3] = band_select;
+	i2c_master_send(client, buffer, 4);
+
+	return 0;
+}
+
+static int mpx_write(struct i2c_client *client, int dev, int addr, int val)
+{
+	u8 buffer[5];
+	struct i2c_msg msg;
+
+	buffer[0] = dev;
+	buffer[1] = addr >> 8;
+	buffer[2] = addr & 0xff;
+	buffer[3] = val >> 8;
+	buffer[4] = val & 0xff;
+	msg.addr = MPX_I2C_ADDR;
+	msg.flags = 0;
+	msg.len = 5;
+	msg.buf = buffer;
+	i2c_transfer(client->adapter, &msg, 1);
+	return 0;
+}
+
+/*
+ * MPX register values for the BTF-PG472Z:
+ *
+ *                                 FM_     NICAM_  SCART_
+ *          MODUS  SOURCE    ACB   PRESCAL PRESCAL PRESCAL SYSTEM  VOLUME
+ *         10/0030 12/0008 12/0013 12/000E 12/0010 12/0000 10/0020 12/0000
+ *         ---------------------------------------------------------------
+ * Auto     1003    0020    0100    2603    5000    XXXX    0001    7500
+ *
+ * B/G
+ *  Mono    1003    0020    0100    2603    5000    XXXX    0003    7500
+ *  A2      1003    0020    0100    2601    5000    XXXX    0003    7500
+ *  NICAM   1003    0120    0100    2603    5000    XXXX    0008    7500
+ *
+ * I
+ *  Mono    1003    0020    0100    2603    7900    XXXX    000A    7500
+ *  NICAM   1003    0120    0100    2603    7900    XXXX    000A    7500
+ *
+ * D/K
+ *  Mono    1003    0020    0100    2603    5000    XXXX    0004    7500
+ *  A2-1    1003    0020    0100    2601    5000    XXXX    0004    7500
+ *  A2-2    1003    0020    0100    2601    5000    XXXX    0005    7500
+ *  A2-3    1003    0020    0100    2601    5000    XXXX    0007    7500
+ *  NICAM   1003    0120    0100    2603    5000    XXXX    000B    7500
+ *
+ * L/L'
+ *  Mono    0003    0200    0100    7C03    5000    2200    0009    7500
+ *  NICAM   0003    0120    0100    7C03    5000    XXXX    0009    7500
+ *
+ * M
+ *  Mono    1003    0200    0100    2B03    5000    2B00    0002    7500
+ *
+ * For Asia, replace the 0x26XX in FM_PRESCALE with 0x14XX.
+ *
+ * Bilingual selection in A2/NICAM:
+ *
+ *         High byte of SOURCE     Left chan   Right chan
+ *                 0x01              MAIN         SUB
+ *                 0x03              MAIN         MAIN
+ *                 0x04              SUB          SUB
+ *
+ * Force mono in NICAM by setting the high byte of SOURCE to 0x02 (L/L') or
+ * 0x00 (all other bands).  Force mono in A2 with FMONO_A2:
+ *
+ *                      FMONO_A2
+ *                      10/0022
+ *                      --------
+ *     Forced mono ON     07F0
+ *     Forced mono OFF    0190
+ */
+
+static struct {
+	enum { AUD_MONO, AUD_A2, AUD_NICAM, AUD_NICAM_L } audio_mode;
+	u16 modus;
+	u16 source;
+	u16 acb;
+	u16 fm_prescale;
+	u16 nicam_prescale;
+	u16 scart_prescale;
+	u16 system;
+	u16 volume;
+} mpx_audio_modes[] = {
+	/* Auto */	{ AUD_MONO,	0x1003, 0x0020, 0x0100, 0x2603,
+					0x5000, 0x0000, 0x0001, 0x7500 },
+	/* B/G Mono */	{ AUD_MONO,	0x1003, 0x0020, 0x0100, 0x2603,
+					0x5000, 0x0000, 0x0003, 0x7500 },
+	/* B/G A2 */	{ AUD_A2,	0x1003, 0x0020, 0x0100, 0x2601,
+					0x5000, 0x0000, 0x0003, 0x7500 },
+	/* B/G NICAM */ { AUD_NICAM,	0x1003, 0x0120, 0x0100, 0x2603,
+					0x5000, 0x0000, 0x0008, 0x7500 },
+	/* I Mono */	{ AUD_MONO,	0x1003, 0x0020, 0x0100, 0x2603,
+					0x7900, 0x0000, 0x000A, 0x7500 },
+	/* I NICAM */	{ AUD_NICAM,	0x1003, 0x0120, 0x0100, 0x2603,
+					0x7900, 0x0000, 0x000A, 0x7500 },
+	/* D/K Mono */	{ AUD_MONO,	0x1003, 0x0020, 0x0100, 0x2603,
+					0x5000, 0x0000, 0x0004, 0x7500 },
+	/* D/K A2-1 */	{ AUD_A2,	0x1003, 0x0020, 0x0100, 0x2601,
+					0x5000, 0x0000, 0x0004, 0x7500 },
+	/* D/K A2-2 */	{ AUD_A2,	0x1003, 0x0020, 0x0100, 0x2601,
+					0x5000, 0x0000, 0x0005, 0x7500 },
+	/* D/K A2-3 */	{ AUD_A2,	0x1003, 0x0020, 0x0100, 0x2601,
+					0x5000, 0x0000, 0x0007, 0x7500 },
+	/* D/K NICAM */	{ AUD_NICAM,	0x1003, 0x0120, 0x0100, 0x2603,
+					0x5000, 0x0000, 0x000B, 0x7500 },
+	/* L/L' Mono */	{ AUD_MONO,	0x0003, 0x0200, 0x0100, 0x7C03,
+					0x5000, 0x2200, 0x0009, 0x7500 },
+	/* L/L' NICAM */{ AUD_NICAM_L,	0x0003, 0x0120, 0x0100, 0x7C03,
+					0x5000, 0x0000, 0x0009, 0x7500 },
+};
+
+#define MPX_NUM_MODES	ARRAY_SIZE(mpx_audio_modes)
+
+static int mpx_setup(struct i2c_client *client)
+{
+	struct wis_sony_tuner *t = i2c_get_clientdata(client);
+	u16 source = 0;
+	u8 buffer[3];
+	struct i2c_msg msg;
+
+	/* reset MPX */
+	buffer[0] = 0x00;
+	buffer[1] = 0x80;
+	buffer[2] = 0x00;
+	msg.addr = MPX_I2C_ADDR;
+	msg.flags = 0;
+	msg.len = 3;
+	msg.buf = buffer;
+	i2c_transfer(client->adapter, &msg, 1);
+	buffer[1] = 0x00;
+	i2c_transfer(client->adapter, &msg, 1);
+
+	if (mpx_audio_modes[t->mpxmode].audio_mode != AUD_MONO) {
+		switch (t->audmode) {
+		case V4L2_TUNER_MODE_MONO:
+			switch (mpx_audio_modes[t->mpxmode].audio_mode) {
+			case AUD_A2:
+				source = mpx_audio_modes[t->mpxmode].source;
+				break;
+			case AUD_NICAM:
+				source = 0x0000;
+				break;
+			case AUD_NICAM_L:
+				source = 0x0200;
+				break;
+			default:
+				break;
+			}
+			break;
+		case V4L2_TUNER_MODE_STEREO:
+			source = mpx_audio_modes[t->mpxmode].source;
+			break;
+		case V4L2_TUNER_MODE_LANG1:
+			source = 0x0300;
+			break;
+		case V4L2_TUNER_MODE_LANG2:
+			source = 0x0400;
+			break;
+		}
+		source |= mpx_audio_modes[t->mpxmode].source & 0x00ff;
+	} else
+		source = mpx_audio_modes[t->mpxmode].source;
+
+	mpx_write(client, 0x10, 0x0030, mpx_audio_modes[t->mpxmode].modus);
+	mpx_write(client, 0x12, 0x0008, source);
+	mpx_write(client, 0x12, 0x0013, mpx_audio_modes[t->mpxmode].acb);
+	mpx_write(client, 0x12, 0x000e,
+			mpx_audio_modes[t->mpxmode].fm_prescale);
+	mpx_write(client, 0x12, 0x0010,
+			mpx_audio_modes[t->mpxmode].nicam_prescale);
+	mpx_write(client, 0x12, 0x000d,
+			mpx_audio_modes[t->mpxmode].scart_prescale);
+	mpx_write(client, 0x10, 0x0020, mpx_audio_modes[t->mpxmode].system);
+	mpx_write(client, 0x12, 0x0000, mpx_audio_modes[t->mpxmode].volume);
+	if (mpx_audio_modes[t->mpxmode].audio_mode == AUD_A2)
+		mpx_write(client, 0x10, 0x0022,
+			t->audmode == V4L2_TUNER_MODE_MONO ?  0x07f0 : 0x0190);
+
+#ifdef MPX_DEBUG
+	{
+		u8 buf1[3], buf2[2];
+		struct i2c_msg msgs[2];
+
+		printk(KERN_DEBUG "wis-sony-tuner: MPX registers: %04x %04x "
+				"%04x %04x %04x %04x %04x %04x\n",
+				mpx_audio_modes[t->mpxmode].modus,
+				source,
+				mpx_audio_modes[t->mpxmode].acb,
+				mpx_audio_modes[t->mpxmode].fm_prescale,
+				mpx_audio_modes[t->mpxmode].nicam_prescale,
+				mpx_audio_modes[t->mpxmode].scart_prescale,
+				mpx_audio_modes[t->mpxmode].system,
+				mpx_audio_modes[t->mpxmode].volume);
+		buf1[0] = 0x11;
+		buf1[1] = 0x00;
+		buf1[2] = 0x7e;
+		msgs[0].addr = MPX_I2C_ADDR;
+		msgs[0].flags = 0;
+		msgs[0].len = 3;
+		msgs[0].buf = buf1;
+		msgs[1].addr = MPX_I2C_ADDR;
+		msgs[1].flags = I2C_M_RD;
+		msgs[1].len = 2;
+		msgs[1].buf = buf2;
+		i2c_transfer(client->adapter, msgs, 2);
+		printk(KERN_DEBUG "wis-sony-tuner: MPX system: %02x%02x\n",
+				buf2[0], buf2[1]);
+		buf1[0] = 0x11;
+		buf1[1] = 0x02;
+		buf1[2] = 0x00;
+		i2c_transfer(client->adapter, msgs, 2);
+		printk(KERN_DEBUG "wis-sony-tuner: MPX status: %02x%02x\n",
+				buf2[0], buf2[1]);
+	}
+#endif
+	return 0;
+}
+
+/*
+ * IF configuration values for the BTF-PG472Z:
+ *
+ *	B/G: 0x94 0x70 0x49
+ *	I:   0x14 0x70 0x4a
+ *	D/K: 0x14 0x70 0x4b
+ *	L:   0x04 0x70 0x4b
+ *	L':  0x44 0x70 0x53
+ *	M:   0x50 0x30 0x4c
+ */
+
+static int set_if(struct i2c_client *client)
+{
+	struct wis_sony_tuner *t = i2c_get_clientdata(client);
+	u8 buffer[4];
+	struct i2c_msg msg;
+	int default_mpx_mode = 0;
+
+	/* configure IF */
+	buffer[0] = 0;
+	if (t->std & V4L2_STD_PAL_BG) {
+		buffer[1] = 0x94;
+		buffer[2] = 0x70;
+		buffer[3] = 0x49;
+		default_mpx_mode = 1;
+	} else if (t->std & V4L2_STD_PAL_I) {
+		buffer[1] = 0x14;
+		buffer[2] = 0x70;
+		buffer[3] = 0x4a;
+		default_mpx_mode = 4;
+	} else if (t->std & V4L2_STD_PAL_DK) {
+		buffer[1] = 0x14;
+		buffer[2] = 0x70;
+		buffer[3] = 0x4b;
+		default_mpx_mode = 6;
+	} else if (t->std & V4L2_STD_SECAM_L) {
+		buffer[1] = 0x04;
+		buffer[2] = 0x70;
+		buffer[3] = 0x4b;
+		default_mpx_mode = 11;
+	}
+	msg.addr = IF_I2C_ADDR;
+	msg.flags = 0;
+	msg.len = 4;
+	msg.buf = buffer;
+	i2c_transfer(client->adapter, &msg, 1);
+
+	/* Select MPX mode if not forced by the user */
+	if (force_mpx_mode >= 0 || force_mpx_mode < MPX_NUM_MODES)
+		t->mpxmode = force_mpx_mode;
+	else
+		t->mpxmode = default_mpx_mode;
+	printk(KERN_DEBUG "wis-sony-tuner: setting MPX to mode %d\n",
+			t->mpxmode);
+	mpx_setup(client);
+
+	return 0;
+}
+
+static int tuner_command(struct i2c_client *client, unsigned int cmd, void *arg)
+{
+	struct wis_sony_tuner *t = i2c_get_clientdata(client);
+
+	switch (cmd) {
+#ifdef TUNER_SET_TYPE_ADDR
+	case TUNER_SET_TYPE_ADDR:
+	{
+		struct tuner_setup *tun_setup = arg;
+		int *type = &tun_setup->type;
+#else
+	case TUNER_SET_TYPE:
+	{
+		int *type = arg;
+#endif
+
+		if (t->type >= 0) {
+			if (t->type != *type)
+				printk(KERN_ERR "wis-sony-tuner: type already "
+					"set to %d, ignoring request for %d\n",
+					t->type, *type);
+			break;
+		}
+		t->type = *type;
+		switch (t->type) {
+		case TUNER_SONY_BTF_PG472Z:
+			switch (force_band_str[0]) {
+			case 'b':
+			case 'B':
+			case 'g':
+			case 'G':
+				printk(KERN_INFO "wis-sony-tuner: forcing "
+						"tuner to PAL-B/G bands\n");
+				force_band = V4L2_STD_PAL_BG;
+				break;
+			case 'i':
+			case 'I':
+				printk(KERN_INFO "wis-sony-tuner: forcing "
+						"tuner to PAL-I band\n");
+				force_band = V4L2_STD_PAL_I;
+				break;
+			case 'd':
+			case 'D':
+			case 'k':
+			case 'K':
+				printk(KERN_INFO "wis-sony-tuner: forcing "
+						"tuner to PAL-D/K bands\n");
+				force_band = V4L2_STD_PAL_I;
+				break;
+			case 'l':
+			case 'L':
+				printk(KERN_INFO "wis-sony-tuner: forcing "
+						"tuner to SECAM-L band\n");
+				force_band = V4L2_STD_SECAM_L;
+				break;
+			default:
+				force_band = 0;
+				break;
+			}
+			if (force_band)
+				t->std = force_band;
+			else
+				t->std = V4L2_STD_PAL_BG;
+			set_if(client);
+			break;
+		case TUNER_SONY_BTF_PK467Z:
+			t->std = V4L2_STD_NTSC_M_JP;
+			break;
+		case TUNER_SONY_BTF_PB463Z:
+			t->std = V4L2_STD_NTSC_M;
+			break;
+		default:
+			printk(KERN_ERR "wis-sony-tuner: tuner type %d is not "
+					"supported by this module\n", *type);
+			break;
+		}
+		if (type >= 0)
+			printk(KERN_INFO
+				"wis-sony-tuner: type set to %d (%s)\n",
+				t->type, sony_tuners[t->type - 200].name);
+		break;
+	}
+	case VIDIOC_G_FREQUENCY:
+	{
+		struct v4l2_frequency *f = arg;
+
+		f->frequency = t->freq;
+		break;
+	}
+	case VIDIOC_S_FREQUENCY:
+	{
+		struct v4l2_frequency *f = arg;
+
+		t->freq = f->frequency;
+		set_freq(client, t->freq);
+		break;
+	}
+	case VIDIOC_ENUMSTD:
+	{
+		struct v4l2_standard *std = arg;
+
+		switch (t->type) {
+		case TUNER_SONY_BTF_PG472Z:
+			switch (std->index) {
+			case 0:
+				v4l2_video_std_construct(std,
+						V4L2_STD_PAL_BG, "PAL-B/G");
+				break;
+			case 1:
+				v4l2_video_std_construct(std,
+						V4L2_STD_PAL_I, "PAL-I");
+				break;
+			case 2:
+				v4l2_video_std_construct(std,
+						V4L2_STD_PAL_DK, "PAL-D/K");
+				break;
+			case 3:
+				v4l2_video_std_construct(std,
+						V4L2_STD_SECAM_L, "SECAM-L");
+				break;
+			default:
+				std->id = 0; /* hack to indicate EINVAL */
+				break;
+			}
+			break;
+		case TUNER_SONY_BTF_PK467Z:
+			if (std->index != 0) {
+				std->id = 0; /* hack to indicate EINVAL */
+				break;
+			}
+			v4l2_video_std_construct(std,
+					V4L2_STD_NTSC_M_JP, "NTSC-J");
+			break;
+		case TUNER_SONY_BTF_PB463Z:
+			if (std->index != 0) {
+				std->id = 0; /* hack to indicate EINVAL */
+				break;
+			}
+			v4l2_video_std_construct(std, V4L2_STD_NTSC_M, "NTSC");
+			break;
+		}
+		break;
+	}
+	case VIDIOC_G_STD:
+	{
+		v4l2_std_id *std = arg;
+
+		*std = t->std;
+		break;
+	}
+	case VIDIOC_S_STD:
+	{
+		v4l2_std_id *std = arg;
+		v4l2_std_id old = t->std;
+
+		switch (t->type) {
+		case TUNER_SONY_BTF_PG472Z:
+			if (force_band && (*std & force_band) != *std &&
+					*std != V4L2_STD_PAL &&
+					*std != V4L2_STD_SECAM) {
+				printk(KERN_DEBUG "wis-sony-tuner: ignoring "
+						"requested TV standard in "
+						"favor of force_band value\n");
+				t->std = force_band;
+			} else if (*std & V4L2_STD_PAL_BG) { /* default */
+				t->std = V4L2_STD_PAL_BG;
+			} else if (*std & V4L2_STD_PAL_I) {
+				t->std = V4L2_STD_PAL_I;
+			} else if (*std & V4L2_STD_PAL_DK) {
+				t->std = V4L2_STD_PAL_DK;
+			} else if (*std & V4L2_STD_SECAM_L) {
+				t->std = V4L2_STD_SECAM_L;
+			} else {
+				printk(KERN_ERR "wis-sony-tuner: TV standard "
+						"not supported\n");
+				*std = 0; /* hack to indicate EINVAL */
+				break;
+			}
+			if (old != t->std)
+				set_if(client);
+			break;
+		case TUNER_SONY_BTF_PK467Z:
+			if (!(*std & V4L2_STD_NTSC_M_JP)) {
+				printk(KERN_ERR "wis-sony-tuner: TV standard "
+						"not supported\n");
+				*std = 0; /* hack to indicate EINVAL */
+			}
+			break;
+		case TUNER_SONY_BTF_PB463Z:
+			if (!(*std & V4L2_STD_NTSC_M)) {
+				printk(KERN_ERR "wis-sony-tuner: TV standard "
+						"not supported\n");
+				*std = 0; /* hack to indicate EINVAL */
+			}
+			break;
+		}
+		break;
+	}
+	case VIDIOC_QUERYSTD:
+	{
+		v4l2_std_id *std = arg;
+
+		switch (t->type) {
+		case TUNER_SONY_BTF_PG472Z:
+			if (force_band)
+				*std = force_band;
+			else
+				*std = V4L2_STD_PAL_BG | V4L2_STD_PAL_I |
+					V4L2_STD_PAL_DK | V4L2_STD_SECAM_L;
+			break;
+		case TUNER_SONY_BTF_PK467Z:
+			*std = V4L2_STD_NTSC_M_JP;
+			break;
+		case TUNER_SONY_BTF_PB463Z:
+			*std = V4L2_STD_NTSC_M;
+			break;
+		}
+		break;
+	}
+	case VIDIOC_G_TUNER:
+	{
+		struct v4l2_tuner *tun = arg;
+
+		memset(t, 0, sizeof(*tun));
+		strcpy(tun->name, "Television");
+		tun->type = V4L2_TUNER_ANALOG_TV;
+		tun->rangelow = 0UL; /* does anything use these? */
+		tun->rangehigh = 0xffffffffUL;
+		switch (t->type) {
+		case TUNER_SONY_BTF_PG472Z:
+			tun->capability = V4L2_TUNER_CAP_NORM |
+				V4L2_TUNER_CAP_STEREO | V4L2_TUNER_CAP_LANG1 |
+				V4L2_TUNER_CAP_LANG2;
+			tun->rxsubchans = V4L2_TUNER_SUB_MONO |
+				V4L2_TUNER_SUB_STEREO | V4L2_TUNER_SUB_LANG1 |
+				V4L2_TUNER_SUB_LANG2;
+			break;
+		case TUNER_SONY_BTF_PK467Z:
+		case TUNER_SONY_BTF_PB463Z:
+			tun->capability = V4L2_TUNER_CAP_STEREO;
+			tun->rxsubchans = V4L2_TUNER_SUB_MONO |
+						V4L2_TUNER_SUB_STEREO;
+			break;
+		}
+		tun->audmode = t->audmode;
+		return 0;
+	}
+	case VIDIOC_S_TUNER:
+	{
+		struct v4l2_tuner *tun = arg;
+
+		switch (t->type) {
+		case TUNER_SONY_BTF_PG472Z:
+			if (tun->audmode != t->audmode) {
+				t->audmode = tun->audmode;
+				mpx_setup(client);
+			}
+			break;
+		case TUNER_SONY_BTF_PK467Z:
+		case TUNER_SONY_BTF_PB463Z:
+			break;
+		}
+		return 0;
+	}
+	default:
+		break;
+	}
+	return 0;
+}
+
+static struct i2c_driver wis_sony_tuner_driver;
+
+static struct i2c_client wis_sony_tuner_client_templ = {
+	.name		= "Sony TV Tuner (WIS)",
+	.driver		= &wis_sony_tuner_driver,
+};
+
+static int wis_sony_tuner_detect(struct i2c_adapter *adapter,
+					int addr, int kind)
+{
+	struct i2c_client *client;
+	struct wis_sony_tuner *t;
+
+	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_I2C_BLOCK))
+		return 0;
+
+	client = kmalloc(sizeof(struct i2c_client), GFP_KERNEL);
+	if (client == NULL)
+		return -ENOMEM;
+	memcpy(client, &wis_sony_tuner_client_templ,
+			sizeof(wis_sony_tuner_client_templ));
+	client->adapter = adapter;
+	client->addr = addr;
+
+	t = kmalloc(sizeof(struct wis_sony_tuner), GFP_KERNEL);
+	if (t == NULL) {
+		kfree(client);
+		return -ENOMEM;
+	}
+	t->type = -1;
+	t->freq = 0;
+	t->mpxmode = 0;
+	t->audmode = V4L2_TUNER_MODE_STEREO;
+	i2c_set_clientdata(client, t);
+
+	printk(KERN_DEBUG
+		"wis-sony-tuner: initializing tuner at address %d on %s\n",
+		addr, adapter->name);
+
+	i2c_attach_client(client);
+
+	return 0;
+}
+
+static int wis_sony_tuner_detach(struct i2c_client *client)
+{
+	struct wis_sony_tuner *t = i2c_get_clientdata(client);
+	int r;
+
+	r = i2c_detach_client(client);
+	if (r < 0)
+		return r;
+
+	kfree(t);
+	kfree(client);
+	return 0;
+}
+
+static struct i2c_driver wis_sony_tuner_driver = {
+	.driver = {
+		.name	= "WIS Sony TV Tuner I2C driver",
+	},
+	.id		= I2C_DRIVERID_WIS_SONY_TUNER,
+	.detach_client	= wis_sony_tuner_detach,
+	.command	= tuner_command,
+};
+
+static int __init wis_sony_tuner_init(void)
+{
+	int r;
+
+	r = i2c_add_driver(&wis_sony_tuner_driver);
+	if (r < 0)
+		return r;
+	return wis_i2c_add_driver(wis_sony_tuner_driver.id,
+					wis_sony_tuner_detect);
+}
+
+static void __exit wis_sony_tuner_cleanup(void)
+{
+	wis_i2c_del_driver(wis_sony_tuner_detect);
+	i2c_del_driver(&wis_sony_tuner_driver);
+}
+
+module_init(wis_sony_tuner_init);
+module_exit(wis_sony_tuner_cleanup);
+
+MODULE_LICENSE("GPL v2");
diff --git a/drivers/staging/go7007/wis-tw2804.c b/drivers/staging/go7007/wis-tw2804.c
new file mode 100644
index 0000000..27fe4d0
--- /dev/null
+++ b/drivers/staging/go7007/wis-tw2804.c
@@ -0,0 +1,380 @@
+/*
+ * Copyright (C) 2005-2006 Micronas USA Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License (Version 2) as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software Foundation,
+ * Inc., 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/version.h>
+#include <linux/i2c.h>
+#include <linux/videodev2.h>
+#include <linux/ioctl.h>
+
+#include "wis-i2c.h"
+
+struct wis_tw2804 {
+	int channel;
+	int norm;
+	int brightness;
+	int contrast;
+	int saturation;
+	int hue;
+};
+
+static u8 global_registers[] =
+{
+	0x39, 0x00,
+	0x3a, 0xff,
+	0x3b, 0x84,
+	0x3c, 0x80,
+	0x3d, 0x80,
+	0x3e, 0x82,
+	0x3f, 0x82,
+	0xff, 0xff, /* Terminator (reg 0xff does not exist) */
+};
+
+static u8 channel_registers[] =
+{
+	0x01, 0xc4,
+	0x02, 0xa5,
+	0x03, 0x20,
+	0x04, 0xd0,
+	0x05, 0x20,
+	0x06, 0xd0,
+	0x07, 0x88,
+	0x08, 0x20,
+	0x09, 0x07,
+	0x0a, 0xf0,
+	0x0b, 0x07,
+	0x0c, 0xf0,
+	0x0d, 0x40,
+	0x0e, 0xd2,
+	0x0f, 0x80,
+	0x10, 0x80,
+	0x11, 0x80,
+	0x12, 0x80,
+	0x13, 0x1f,
+	0x14, 0x00,
+	0x15, 0x00,
+	0x16, 0x00,
+	0x17, 0x00,
+	0x18, 0xff,
+	0x19, 0xff,
+	0x1a, 0xff,
+	0x1b, 0xff,
+	0x1c, 0xff,
+	0x1d, 0xff,
+	0x1e, 0xff,
+	0x1f, 0xff,
+	0x20, 0x07,
+	0x21, 0x07,
+	0x22, 0x00,
+	0x23, 0x91,
+	0x24, 0x51,
+	0x25, 0x03,
+	0x26, 0x00,
+	0x27, 0x00,
+	0x28, 0x00,
+	0x29, 0x00,
+	0x2a, 0x00,
+	0x2b, 0x00,
+	0x2c, 0x00,
+	0x2d, 0x00,
+	0x2e, 0x00,
+	0x2f, 0x00,
+	0x30, 0x00,
+	0x31, 0x00,
+	0x32, 0x00,
+	0x33, 0x00,
+	0x34, 0x00,
+	0x35, 0x00,
+	0x36, 0x00,
+	0x37, 0x00,
+	0xff, 0xff, /* Terminator (reg 0xff does not exist) */
+};
+
+static int write_reg(struct i2c_client *client, u8 reg, u8 value, int channel)
+{
+	return i2c_smbus_write_byte_data(client, reg | (channel << 6), value);
+}
+
+static int write_regs(struct i2c_client *client, u8 *regs, int channel)
+{
+	int i;
+
+	for (i = 0; regs[i] != 0xff; i += 2)
+		if (i2c_smbus_write_byte_data(client,
+				regs[i] | (channel << 6), regs[i + 1]) < 0)
+			return -1;
+	return 0;
+}
+
+static int wis_tw2804_command(struct i2c_client *client,
+				unsigned int cmd, void *arg)
+{
+	struct wis_tw2804 *dec = i2c_get_clientdata(client);
+
+	if (cmd == DECODER_SET_CHANNEL) {
+		int *input = arg;
+
+		if (*input < 0 || *input > 3) {
+			printk(KERN_ERR "wis-tw2804: channel %d is not "
+					"between 0 and 3!\n", *input);
+			return 0;
+		}
+		dec->channel = *input;
+		printk(KERN_DEBUG "wis-tw2804: initializing TW2804 "
+				"channel %d\n", dec->channel);
+		if (dec->channel == 0 &&
+				write_regs(client, global_registers, 0) < 0) {
+			printk(KERN_ERR "wis-tw2804: error initializing "
+					"TW2804 global registers\n");
+			return 0;
+		}
+		if (write_regs(client, channel_registers, dec->channel) < 0) {
+			printk(KERN_ERR "wis-tw2804: error initializing "
+					"TW2804 channel %d\n", dec->channel);
+			return 0;
+		}
+		return 0;
+	}
+
+	if (dec->channel < 0) {
+		printk(KERN_DEBUG "wis-tw2804: ignoring command %08x until "
+				"channel number is set\n", cmd);
+		return 0;
+	}
+
+	switch (cmd) {
+	case VIDIOC_S_STD:
+	{
+		v4l2_std_id *input = arg;
+		u8 regs[] = {
+			0x01, *input & V4L2_STD_NTSC ? 0xc4 : 0x84,
+			0x09, *input & V4L2_STD_NTSC ? 0x07 : 0x04,
+			0x0a, *input & V4L2_STD_NTSC ? 0xf0 : 0x20,
+			0x0b, *input & V4L2_STD_NTSC ? 0x07 : 0x04,
+			0x0c, *input & V4L2_STD_NTSC ? 0xf0 : 0x20,
+			0x0d, *input & V4L2_STD_NTSC ? 0x40 : 0x4a,
+			0x16, *input & V4L2_STD_NTSC ? 0x00 : 0x40,
+			0x17, *input & V4L2_STD_NTSC ? 0x00 : 0x40,
+			0x20, *input & V4L2_STD_NTSC ? 0x07 : 0x0f,
+			0x21, *input & V4L2_STD_NTSC ? 0x07 : 0x0f,
+			0xff,	0xff,
+		};
+		write_regs(client, regs, dec->channel);
+		dec->norm = *input;
+		break;
+	}
+	case VIDIOC_QUERYCTRL:
+	{
+		struct v4l2_queryctrl *ctrl = arg;
+
+		switch (ctrl->id) {
+		case V4L2_CID_BRIGHTNESS:
+			ctrl->type = V4L2_CTRL_TYPE_INTEGER;
+			strncpy(ctrl->name, "Brightness", sizeof(ctrl->name));
+			ctrl->minimum = 0;
+			ctrl->maximum = 255;
+			ctrl->step = 1;
+			ctrl->default_value = 128;
+			ctrl->flags = 0;
+			break;
+		case V4L2_CID_CONTRAST:
+			ctrl->type = V4L2_CTRL_TYPE_INTEGER;
+			strncpy(ctrl->name, "Contrast", sizeof(ctrl->name));
+			ctrl->minimum = 0;
+			ctrl->maximum = 255;
+			ctrl->step = 1;
+			ctrl->default_value = 128;
+			ctrl->flags = 0;
+			break;
+		case V4L2_CID_SATURATION:
+			ctrl->type = V4L2_CTRL_TYPE_INTEGER;
+			strncpy(ctrl->name, "Saturation", sizeof(ctrl->name));
+			ctrl->minimum = 0;
+			ctrl->maximum = 255;
+			ctrl->step = 1;
+			ctrl->default_value = 128;
+			ctrl->flags = 0;
+			break;
+		case V4L2_CID_HUE:
+			ctrl->type = V4L2_CTRL_TYPE_INTEGER;
+			strncpy(ctrl->name, "Hue", sizeof(ctrl->name));
+			ctrl->minimum = 0;
+			ctrl->maximum = 255;
+			ctrl->step = 1;
+			ctrl->default_value = 128;
+			ctrl->flags = 0;
+			break;
+		}
+		break;
+	}
+	case VIDIOC_S_CTRL:
+	{
+		struct v4l2_control *ctrl = arg;
+
+		switch (ctrl->id) {
+		case V4L2_CID_BRIGHTNESS:
+			if (ctrl->value > 255)
+				dec->brightness = 255;
+			else if (ctrl->value < 0)
+				dec->brightness = 0;
+			else
+				dec->brightness = ctrl->value;
+			write_reg(client, 0x12, dec->brightness, dec->channel);
+			break;
+		case V4L2_CID_CONTRAST:
+			if (ctrl->value > 255)
+				dec->contrast = 255;
+			else if (ctrl->value < 0)
+				dec->contrast = 0;
+			else
+				dec->contrast = ctrl->value;
+			write_reg(client, 0x11, dec->contrast, dec->channel);
+			break;
+		case V4L2_CID_SATURATION:
+			if (ctrl->value > 255)
+				dec->saturation = 255;
+			else if (ctrl->value < 0)
+				dec->saturation = 0;
+			else
+				dec->saturation = ctrl->value;
+			write_reg(client, 0x10, dec->saturation, dec->channel);
+			break;
+		case V4L2_CID_HUE:
+			if (ctrl->value > 255)
+				dec->hue = 255;
+			else if (ctrl->value < 0)
+				dec->hue = 0;
+			else
+				dec->hue = ctrl->value;
+			write_reg(client, 0x0f, dec->hue, dec->channel);
+			break;
+		}
+		break;
+	}
+	case VIDIOC_G_CTRL:
+	{
+		struct v4l2_control *ctrl = arg;
+
+		switch (ctrl->id) {
+		case V4L2_CID_BRIGHTNESS:
+			ctrl->value = dec->brightness;
+			break;
+		case V4L2_CID_CONTRAST:
+			ctrl->value = dec->contrast;
+			break;
+		case V4L2_CID_SATURATION:
+			ctrl->value = dec->saturation;
+			break;
+		case V4L2_CID_HUE:
+			ctrl->value = dec->hue;
+			break;
+		}
+		break;
+	}
+	default:
+		break;
+	}
+	return 0;
+}
+
+static struct i2c_driver wis_tw2804_driver;
+
+static struct i2c_client wis_tw2804_client_templ = {
+	.name		= "TW2804 (WIS)",
+	.driver		= &wis_tw2804_driver,
+};
+
+static int wis_tw2804_detect(struct i2c_adapter *adapter, int addr, int kind)
+{
+	struct i2c_client *client;
+	struct wis_tw2804 *dec;
+
+	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA))
+		return 0;
+
+	client = kmalloc(sizeof(struct i2c_client), GFP_KERNEL);
+	if (client == NULL)
+		return -ENOMEM;
+	memcpy(client, &wis_tw2804_client_templ,
+			sizeof(wis_tw2804_client_templ));
+	client->adapter = adapter;
+	client->addr = addr;
+
+	dec = kmalloc(sizeof(struct wis_tw2804), GFP_KERNEL);
+	if (dec == NULL) {
+		kfree(client);
+		return -ENOMEM;
+	}
+	dec->channel = -1;
+	dec->norm = V4L2_STD_NTSC;
+	dec->brightness = 128;
+	dec->contrast = 128;
+	dec->saturation = 128;
+	dec->hue = 128;
+	i2c_set_clientdata(client, dec);
+
+	printk(KERN_DEBUG "wis-tw2804: creating TW2804 at address %d on %s\n",
+		addr, adapter->name);
+
+	i2c_attach_client(client);
+	return 0;
+}
+
+static int wis_tw2804_detach(struct i2c_client *client)
+{
+	struct wis_tw2804 *dec = i2c_get_clientdata(client);
+	int r;
+
+	r = i2c_detach_client(client);
+	if (r < 0)
+		return r;
+
+	kfree(client);
+	kfree(dec);
+	return 0;
+}
+
+static struct i2c_driver wis_tw2804_driver = {
+	.driver = {
+		.name	= "WIS TW2804 I2C driver",
+	},
+	.id		= I2C_DRIVERID_WIS_TW2804,
+	.detach_client	= wis_tw2804_detach,
+	.command	= wis_tw2804_command,
+};
+
+static int __init wis_tw2804_init(void)
+{
+	int r;
+
+	r = i2c_add_driver(&wis_tw2804_driver);
+	if (r < 0)
+		return r;
+	return wis_i2c_add_driver(wis_tw2804_driver.id, wis_tw2804_detect);
+}
+
+static void __exit wis_tw2804_cleanup(void)
+{
+	wis_i2c_del_driver(wis_tw2804_detect);
+	i2c_del_driver(&wis_tw2804_driver);
+}
+
+module_init(wis_tw2804_init);
+module_exit(wis_tw2804_cleanup);
+
+MODULE_LICENSE("GPL v2");
diff --git a/drivers/staging/go7007/wis-tw9903.c b/drivers/staging/go7007/wis-tw9903.c
new file mode 100644
index 0000000..d8e4196
--- /dev/null
+++ b/drivers/staging/go7007/wis-tw9903.c
@@ -0,0 +1,362 @@
+/*
+ * Copyright (C) 2005-2006 Micronas USA Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License (Version 2) as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software Foundation,
+ * Inc., 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/version.h>
+#include <linux/i2c.h>
+#include <linux/videodev2.h>
+#include <linux/ioctl.h>
+
+#include "wis-i2c.h"
+
+struct wis_tw9903 {
+	int norm;
+	int brightness;
+	int contrast;
+	int hue;
+};
+
+static u8 initial_registers[] =
+{
+	0x02, 0x44, /* input 1, composite */
+	0x03, 0x92, /* correct digital format */
+	0x04, 0x00,
+	0x05, 0x80, /* or 0x00 for PAL */
+	0x06, 0x40, /* second internal current reference */
+	0x07, 0x02, /* window */
+	0x08, 0x14, /* window */
+	0x09, 0xf0, /* window */
+	0x0a, 0x81, /* window */
+	0x0b, 0xd0, /* window */
+	0x0c, 0x8c,
+	0x0d, 0x00, /* scaling */
+	0x0e, 0x11, /* scaling */
+	0x0f, 0x00, /* scaling */
+	0x10, 0x00, /* brightness */
+	0x11, 0x60, /* contrast */
+	0x12, 0x01, /* sharpness */
+	0x13, 0x7f, /* U gain */
+	0x14, 0x5a, /* V gain */
+	0x15, 0x00, /* hue */
+	0x16, 0xc3, /* sharpness */
+	0x18, 0x00,
+	0x19, 0x58, /* vbi */
+	0x1a, 0x80,
+	0x1c, 0x0f, /* video norm */
+	0x1d, 0x7f, /* video norm */
+	0x20, 0xa0, /* clamping gain (working 0x50) */
+	0x21, 0x22,
+	0x22, 0xf0,
+	0x23, 0xfe,
+	0x24, 0x3c,
+	0x25, 0x38,
+	0x26, 0x44,
+	0x27, 0x20,
+	0x28, 0x00,
+	0x29, 0x15,
+	0x2a, 0xa0,
+	0x2b, 0x44,
+	0x2c, 0x37,
+	0x2d, 0x00,
+	0x2e, 0xa5, /* burst PLL control (working: a9) */
+	0x2f, 0xe0, /* 0xea is blue test frame -- 0xe0 for normal */
+	0x31, 0x00,
+	0x33, 0x22,
+	0x34, 0x11,
+	0x35, 0x35,
+	0x3b, 0x05,
+	0x06, 0xc0, /* reset device */
+	0x00, 0x00, /* Terminator (reg 0x00 is read-only) */
+};
+
+static int write_reg(struct i2c_client *client, u8 reg, u8 value)
+{
+	return i2c_smbus_write_byte_data(client, reg, value);
+}
+
+static int write_regs(struct i2c_client *client, u8 *regs)
+{
+	int i;
+
+	for (i = 0; regs[i] != 0x00; i += 2)
+		if (i2c_smbus_write_byte_data(client, regs[i], regs[i + 1]) < 0)
+			return -1;
+	return 0;
+}
+
+static int wis_tw9903_command(struct i2c_client *client,
+				unsigned int cmd, void *arg)
+{
+	struct wis_tw9903 *dec = i2c_get_clientdata(client);
+
+	switch (cmd) {
+	case VIDIOC_S_INPUT:
+	{
+		int *input = arg;
+
+		i2c_smbus_write_byte_data(client, 0x02, 0x40 | (*input << 1));
+		break;
+	}
+#if 0   /* The scaler on this thing seems to be horribly broken */
+	case DECODER_SET_RESOLUTION:
+	{
+		struct video_decoder_resolution *res = arg;
+		/*int hscale = 256 * 720 / res->width;*/
+		int hscale = 256 * 720 / (res->width - (res->width > 704 ? 0 : 8));
+		int vscale = 256 * (dec->norm & V4L2_STD_NTSC ?  240 : 288)
+				/ res->height;
+		u8 regs[] = {
+			0x0d, vscale & 0xff,
+			0x0f, hscale & 0xff,
+			0x0e, ((vscale & 0xf00) >> 4) | ((hscale & 0xf00) >> 8),
+			0x06, 0xc0, /* reset device */
+			0,	0,
+		};
+		printk(KERN_DEBUG "vscale is %04x, hscale is %04x\n",
+				vscale, hscale);
+		/*write_regs(client, regs);*/
+		break;
+	}
+#endif
+	case VIDIOC_S_STD:
+	{
+		v4l2_std_id *input = arg;
+		u8 regs[] = {
+			0x05, *input & V4L2_STD_NTSC ? 0x80 : 0x00,
+			0x07, *input & V4L2_STD_NTSC ? 0x02 : 0x12,
+			0x08, *input & V4L2_STD_NTSC ? 0x14 : 0x18,
+			0x09, *input & V4L2_STD_NTSC ? 0xf0 : 0x20,
+			0,	0,
+		};
+		write_regs(client, regs);
+		dec->norm = *input;
+		break;
+	}
+	case VIDIOC_QUERYCTRL:
+	{
+		struct v4l2_queryctrl *ctrl = arg;
+
+		switch (ctrl->id) {
+		case V4L2_CID_BRIGHTNESS:
+			ctrl->type = V4L2_CTRL_TYPE_INTEGER;
+			strncpy(ctrl->name, "Brightness", sizeof(ctrl->name));
+			ctrl->minimum = -128;
+			ctrl->maximum = 127;
+			ctrl->step = 1;
+			ctrl->default_value = 0x00;
+			ctrl->flags = 0;
+			break;
+		case V4L2_CID_CONTRAST:
+			ctrl->type = V4L2_CTRL_TYPE_INTEGER;
+			strncpy(ctrl->name, "Contrast", sizeof(ctrl->name));
+			ctrl->minimum = 0;
+			ctrl->maximum = 255;
+			ctrl->step = 1;
+			ctrl->default_value = 0x60;
+			ctrl->flags = 0;
+			break;
+#if 0
+		/* I don't understand how the Chroma Gain registers work... */
+		case V4L2_CID_SATURATION:
+			ctrl->type = V4L2_CTRL_TYPE_INTEGER;
+			strncpy(ctrl->name, "Saturation", sizeof(ctrl->name));
+			ctrl->minimum = 0;
+			ctrl->maximum = 127;
+			ctrl->step = 1;
+			ctrl->default_value = 64;
+			ctrl->flags = 0;
+			break;
+#endif
+		case V4L2_CID_HUE:
+			ctrl->type = V4L2_CTRL_TYPE_INTEGER;
+			strncpy(ctrl->name, "Hue", sizeof(ctrl->name));
+			ctrl->minimum = -128;
+			ctrl->maximum = 127;
+			ctrl->step = 1;
+			ctrl->default_value = 0;
+			ctrl->flags = 0;
+			break;
+		}
+		break;
+	}
+	case VIDIOC_S_CTRL:
+	{
+		struct v4l2_control *ctrl = arg;
+
+		switch (ctrl->id) {
+		case V4L2_CID_BRIGHTNESS:
+			if (ctrl->value > 127)
+				dec->brightness = 127;
+			else if (ctrl->value < -128)
+				dec->brightness = -128;
+			else
+				dec->brightness = ctrl->value;
+			write_reg(client, 0x10, dec->brightness);
+			break;
+		case V4L2_CID_CONTRAST:
+			if (ctrl->value > 255)
+				dec->contrast = 255;
+			else if (ctrl->value < 0)
+				dec->contrast = 0;
+			else
+				dec->contrast = ctrl->value;
+			write_reg(client, 0x11, dec->contrast);
+			break;
+#if 0
+		case V4L2_CID_SATURATION:
+			if (ctrl->value > 127)
+				dec->saturation = 127;
+			else if (ctrl->value < 0)
+				dec->saturation = 0;
+			else
+				dec->saturation = ctrl->value;
+			/*write_reg(client, 0x0c, dec->saturation);*/
+			break;
+#endif
+		case V4L2_CID_HUE:
+			if (ctrl->value > 127)
+				dec->hue = 127;
+			else if (ctrl->value < -128)
+				dec->hue = -128;
+			else
+				dec->hue = ctrl->value;
+			write_reg(client, 0x15, dec->hue);
+			break;
+		}
+		break;
+	}
+	case VIDIOC_G_CTRL:
+	{
+		struct v4l2_control *ctrl = arg;
+
+		switch (ctrl->id) {
+		case V4L2_CID_BRIGHTNESS:
+			ctrl->value = dec->brightness;
+			break;
+		case V4L2_CID_CONTRAST:
+			ctrl->value = dec->contrast;
+			break;
+#if 0
+		case V4L2_CID_SATURATION:
+			ctrl->value = dec->saturation;
+			break;
+#endif
+		case V4L2_CID_HUE:
+			ctrl->value = dec->hue;
+			break;
+		}
+		break;
+	}
+	default:
+		break;
+	}
+	return 0;
+}
+
+static struct i2c_driver wis_tw9903_driver;
+
+static struct i2c_client wis_tw9903_client_templ = {
+	.name		= "TW9903 (WIS)",
+	.driver		= &wis_tw9903_driver,
+};
+
+static int wis_tw9903_detect(struct i2c_adapter *adapter, int addr, int kind)
+{
+	struct i2c_client *client;
+	struct wis_tw9903 *dec;
+
+	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_BYTE_DATA))
+		return 0;
+
+	client = kmalloc(sizeof(struct i2c_client), GFP_KERNEL);
+	if (client == NULL)
+		return -ENOMEM;
+	memcpy(client, &wis_tw9903_client_templ,
+			sizeof(wis_tw9903_client_templ));
+	client->adapter = adapter;
+	client->addr = addr;
+
+	dec = kmalloc(sizeof(struct wis_tw9903), GFP_KERNEL);
+	if (dec == NULL) {
+		kfree(client);
+		return -ENOMEM;
+	}
+	dec->norm = V4L2_STD_NTSC;
+	dec->brightness = 0;
+	dec->contrast = 0x60;
+	dec->hue = 0;
+	i2c_set_clientdata(client, dec);
+
+	printk(KERN_DEBUG
+		"wis-tw9903: initializing TW9903 at address %d on %s\n",
+		addr, adapter->name);
+
+	if (write_regs(client, initial_registers) < 0) {
+		printk(KERN_ERR "wis-tw9903: error initializing TW9903\n");
+		kfree(client);
+		kfree(dec);
+		return 0;
+	}
+
+	i2c_attach_client(client);
+	return 0;
+}
+
+static int wis_tw9903_detach(struct i2c_client *client)
+{
+	struct wis_tw9903 *dec = i2c_get_clientdata(client);
+	int r;
+
+	r = i2c_detach_client(client);
+	if (r < 0)
+		return r;
+
+	kfree(client);
+	kfree(dec);
+	return 0;
+}
+
+static struct i2c_driver wis_tw9903_driver = {
+	.driver = {
+		.name	= "WIS TW9903 I2C driver",
+	},
+	.id		= I2C_DRIVERID_WIS_TW9903,
+	.detach_client	= wis_tw9903_detach,
+	.command	= wis_tw9903_command,
+};
+
+static int __init wis_tw9903_init(void)
+{
+	int r;
+
+	r = i2c_add_driver(&wis_tw9903_driver);
+	if (r < 0)
+		return r;
+	return wis_i2c_add_driver(wis_tw9903_driver.id, wis_tw9903_detect);
+}
+
+static void __exit wis_tw9903_cleanup(void)
+{
+	wis_i2c_del_driver(wis_tw9903_detect);
+	i2c_del_driver(&wis_tw9903_driver);
+}
+
+module_init(wis_tw9903_init);
+module_exit(wis_tw9903_cleanup);
+
+MODULE_LICENSE("GPL v2");
diff --git a/drivers/staging/go7007/wis-uda1342.c b/drivers/staging/go7007/wis-uda1342.c
new file mode 100644
index 0000000..a0894e3
--- /dev/null
+++ b/drivers/staging/go7007/wis-uda1342.c
@@ -0,0 +1,136 @@
+/*
+ * Copyright (C) 2005-2006 Micronas USA Inc.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License (Version 2) as
+ * published by the Free Software Foundation.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software Foundation,
+ * Inc., 59 Temple Place - Suite 330, Boston MA 02111-1307, USA.
+ */
+
+#include <linux/module.h>
+#include <linux/init.h>
+#include <linux/version.h>
+#include <linux/i2c.h>
+#include <linux/videodev2.h>
+#include <media/tvaudio.h>
+#include <media/v4l2-common.h>
+
+#include "wis-i2c.h"
+
+static int write_reg(struct i2c_client *client, int reg, int value)
+{
+	/* UDA1342 wants MSB first, but SMBus sends LSB first */
+	i2c_smbus_write_word_data(client, reg, swab16(value));
+	return 0;
+}
+
+static int wis_uda1342_command(struct i2c_client *client,
+				unsigned int cmd, void *arg)
+{
+	switch (cmd) {
+	case VIDIOC_S_AUDIO:
+	{
+		int *inp = arg;
+
+		switch (*inp) {
+		case TVAUDIO_INPUT_TUNER:
+			write_reg(client, 0x00, 0x1441); /* select input 2 */
+			break;
+		case TVAUDIO_INPUT_EXTERN:
+			write_reg(client, 0x00, 0x1241); /* select input 1 */
+			break;
+		default:
+			printk(KERN_ERR "wis-uda1342: input %d not supported\n",
+					*inp);
+			break;
+		}
+		break;
+	}
+	default:
+		break;
+	}
+	return 0;
+}
+
+static struct i2c_driver wis_uda1342_driver;
+
+static struct i2c_client wis_uda1342_client_templ = {
+	.name		= "UDA1342 (WIS)",
+	.driver		= &wis_uda1342_driver,
+};
+
+static int wis_uda1342_detect(struct i2c_adapter *adapter, int addr, int kind)
+{
+	struct i2c_client *client;
+
+	if (!i2c_check_functionality(adapter, I2C_FUNC_SMBUS_WORD_DATA))
+		return 0;
+
+	client = kmalloc(sizeof(struct i2c_client), GFP_KERNEL);
+	if (client == NULL)
+		return -ENOMEM;
+	memcpy(client, &wis_uda1342_client_templ,
+			sizeof(wis_uda1342_client_templ));
+	client->adapter = adapter;
+	client->addr = addr;
+
+	printk(KERN_DEBUG
+		"wis-uda1342: initializing UDA1342 at address %d on %s\n",
+		addr, adapter->name);
+
+	write_reg(client, 0x00, 0x8000); /* reset registers */
+	write_reg(client, 0x00, 0x1241); /* select input 1 */
+
+	i2c_attach_client(client);
+	return 0;
+}
+
+static int wis_uda1342_detach(struct i2c_client *client)
+{
+	int r;
+
+	r = i2c_detach_client(client);
+	if (r < 0)
+		return r;
+
+	kfree(client);
+	return 0;
+}
+
+static struct i2c_driver wis_uda1342_driver = {
+	.driver = {
+		.name	= "WIS UDA1342 I2C driver",
+	},
+	.id		= I2C_DRIVERID_WIS_UDA1342,
+	.detach_client	= wis_uda1342_detach,
+	.command	= wis_uda1342_command,
+};
+
+static int __init wis_uda1342_init(void)
+{
+	int r;
+
+	r = i2c_add_driver(&wis_uda1342_driver);
+	if (r < 0)
+		return r;
+	return wis_i2c_add_driver(wis_uda1342_driver.id, wis_uda1342_detect);
+}
+
+static void __exit wis_uda1342_cleanup(void)
+{
+	wis_i2c_del_driver(wis_uda1342_detect);
+	i2c_del_driver(&wis_uda1342_driver);
+}
+
+module_init(wis_uda1342_init);
+module_exit(wis_uda1342_cleanup);
+
+MODULE_LICENSE("GPL v2");
diff --git a/drivers/staging/me4000/Kconfig b/drivers/staging/me4000/Kconfig
new file mode 100644
index 0000000..5e6c9de
--- /dev/null
+++ b/drivers/staging/me4000/Kconfig
@@ -0,0 +1,10 @@
+config ME4000
+	tristate "Meilhaus ME-4000 support"
+	default n
+	depends on PCI
+	help
+	  This driver supports the Meilhaus ME-4000 family of boards
+	  that do data collection and multipurpose I/O.
+
+	  To compile this driver as a module, choose M here: the module
+	  will be called me4000.
diff --git a/drivers/staging/me4000/Makefile b/drivers/staging/me4000/Makefile
new file mode 100644
index 0000000..74487cd
--- /dev/null
+++ b/drivers/staging/me4000/Makefile
@@ -0,0 +1 @@
+obj-$(CONFIG_ME4000)		+= me4000.o
diff --git a/drivers/staging/me4000/README b/drivers/staging/me4000/README
new file mode 100644
index 0000000..bbb8386
--- /dev/null
+++ b/drivers/staging/me4000/README
@@ -0,0 +1,13 @@
+
+TODO:
+	- checkpatch.pl cleanups
+	- sparse cleanups
+	- possible /proc interaction cleanups
+	- more info needed for Kconfig entry
+	- real device id?
+	- module parameter cleanup
+
+Please send patches to Greg Kroah-Hartman <gregkh@suse.de>
+and Cc: Wolfgang Beiter <w.beiter@aon.at> and
+Guenter Gebhardt <g.gebhardt@meilhaus.de>
+
diff --git a/drivers/staging/me4000/me4000.c b/drivers/staging/me4000/me4000.c
new file mode 100644
index 0000000..862dd7f
--- /dev/null
+++ b/drivers/staging/me4000/me4000.c
@@ -0,0 +1,6133 @@
+/* Device driver for Meilhaus ME-4000 board family.
+ * ================================================
+ *
+ *  Copyright (C) 2003 Meilhaus Electronic GmbH (support@meilhaus.de)
+ *
+ *  This file is free software; you can redistribute it and/or modify
+ *  it under the terms of the GNU General Public License as published by
+ *  the Free Software Foundation; either version 2 of the License, or
+ *  (at your option) any later version.
+ *
+ *  This program is distributed in the hope that it will be useful,
+ *  but WITHOUT ANY WARRANTY; without even the implied warranty of
+ *  MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ *  GNU General Public License for more details.
+ *
+ *  You should have received a copy of the GNU General Public License
+ *  along with this program; if not, write to the Free Software
+ *  Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
+ *
+ *  Author:	Guenter Gebhardt	<g.gebhardt@meilhaus.de>
+ */
+
+#include <linux/module.h>
+#include <linux/fs.h>
+#include <linux/sched.h>
+#include <linux/interrupt.h>
+#include <linux/pci.h>
+#include <asm/io.h>
+#include <asm/system.h>
+#include <asm/uaccess.h>
+#include <linux/errno.h>
+#include <linux/delay.h>
+#include <linux/fs.h>
+#include <linux/mm.h>
+#include <linux/unistd.h>
+#include <linux/list.h>
+#include <linux/proc_fs.h>
+
+#include <linux/poll.h>
+#include <linux/vmalloc.h>
+#include <asm/pgtable.h>
+#include <asm/uaccess.h>
+#include <linux/types.h>
+
+#include <linux/slab.h>
+
+/* Include-File for the Meilhaus ME-4000 I/O board */
+#include "me4000.h"
+#include "me4000_firmware.h"
+#include "me4610_firmware.h"
+
+/* Administrative stuff for modinfo */
+MODULE_AUTHOR("Guenter Gebhardt <g.gebhardt@meilhaus.de>");
+MODULE_DESCRIPTION
+    ("Device Driver Module for Meilhaus ME-4000 boards version 1.0.5");
+MODULE_SUPPORTED_DEVICE("Meilhaus ME-4000 Multi I/O boards");
+MODULE_LICENSE("GPL");
+
+/* Board specific data are kept in a global list */
+LIST_HEAD(me4000_board_info_list);
+
+/* Major Device Numbers. 0 means to get it automatically from the System */
+static int me4000_ao_major_driver_no = 0;
+static int me4000_ai_major_driver_no = 0;
+static int me4000_dio_major_driver_no = 0;
+static int me4000_cnt_major_driver_no = 0;
+static int me4000_ext_int_major_driver_no = 0;
+
+/* Let the user specify a custom major driver number */
+module_param(me4000_ao_major_driver_no, int, 0);
+MODULE_PARM_DESC(me4000_ao_major_driver_no,
+		 "Major driver number for analog output (default 0)");
+
+module_param(me4000_ai_major_driver_no, int, 0);
+MODULE_PARM_DESC(me4000_ai_major_driver_no,
+		 "Major driver number for analog input (default 0)");
+
+module_param(me4000_dio_major_driver_no, int, 0);
+MODULE_PARM_DESC(me4000_dio_major_driver_no,
+		 "Major driver number digital I/O (default 0)");
+
+module_param(me4000_cnt_major_driver_no, int, 0);
+MODULE_PARM_DESC(me4000_cnt_major_driver_no,
+		 "Major driver number for counter (default 0)");
+
+module_param(me4000_ext_int_major_driver_no, int, 0);
+MODULE_PARM_DESC(me4000_ext_int_major_driver_no,
+		 "Major driver number for external interrupt (default 0)");
+
+/*-----------------------------------------------------------------------------
+  Module stuff
+  ---------------------------------------------------------------------------*/
+int init_module(void);
+void cleanup_module(void);
+
+/*-----------------------------------------------------------------------------
+  Board detection and initialization
+  ---------------------------------------------------------------------------*/
+static int me4000_probe(struct pci_dev *dev, const struct pci_device_id *id);
+static int me4000_xilinx_download(me4000_info_t *);
+static int me4000_reset_board(me4000_info_t *);
+
+static void clear_board_info_list(void);
+static int get_registers(struct pci_dev *dev, me4000_info_t * info);
+static int init_board_info(struct pci_dev *dev, me4000_info_t * board_info);
+static int alloc_ao_contexts(me4000_info_t * info);
+static void release_ao_contexts(me4000_info_t * board_info);
+static int alloc_ai_context(me4000_info_t * info);
+static int alloc_dio_context(me4000_info_t * info);
+static int alloc_cnt_context(me4000_info_t * info);
+static int alloc_ext_int_context(me4000_info_t * info);
+
+/*-----------------------------------------------------------------------------
+  Stuff used by all device parts
+  ---------------------------------------------------------------------------*/
+static int me4000_open(struct inode *, struct file *);
+static int me4000_release(struct inode *, struct file *);
+
+static int me4000_get_user_info(me4000_user_info_t *,
+				me4000_info_t * board_info);
+static int me4000_read_procmem(char *, char **, off_t, int, int *, void *);
+
+/*-----------------------------------------------------------------------------
+  Analog output stuff
+  ---------------------------------------------------------------------------*/
+static ssize_t me4000_ao_write_sing(struct file *, const char *, size_t,
+				    loff_t *);
+static ssize_t me4000_ao_write_wrap(struct file *, const char *, size_t,
+				    loff_t *);
+static ssize_t me4000_ao_write_cont(struct file *, const char *, size_t,
+				    loff_t *);
+
+static int me4000_ao_ioctl_sing(struct inode *, struct file *, unsigned int,
+				unsigned long);
+static int me4000_ao_ioctl_wrap(struct inode *, struct file *, unsigned int,
+				unsigned long);
+static int me4000_ao_ioctl_cont(struct inode *, struct file *, unsigned int,
+				unsigned long);
+
+static unsigned int me4000_ao_poll_cont(struct file *, poll_table *);
+static int me4000_ao_fsync_cont(struct file *, struct dentry *, int);
+
+static int me4000_ao_start(unsigned long *, me4000_ao_context_t *);
+static int me4000_ao_stop(me4000_ao_context_t *);
+static int me4000_ao_immediate_stop(me4000_ao_context_t *);
+static int me4000_ao_timer_set_divisor(u32 *, me4000_ao_context_t *);
+static int me4000_ao_preload(me4000_ao_context_t *);
+static int me4000_ao_preload_update(me4000_ao_context_t *);
+static int me4000_ao_ex_trig_set_edge(int *, me4000_ao_context_t *);
+static int me4000_ao_ex_trig_enable(me4000_ao_context_t *);
+static int me4000_ao_ex_trig_disable(me4000_ao_context_t *);
+static int me4000_ao_prepare(me4000_ao_context_t * ao_info);
+static int me4000_ao_reset(me4000_ao_context_t * ao_info);
+static int me4000_ao_enable_do(me4000_ao_context_t *);
+static int me4000_ao_disable_do(me4000_ao_context_t *);
+static int me4000_ao_fsm_state(int *, me4000_ao_context_t *);
+
+static int me4000_ao_simultaneous_ex_trig(me4000_ao_context_t * ao_context);
+static int me4000_ao_simultaneous_sw(me4000_ao_context_t * ao_context);
+static int me4000_ao_simultaneous_disable(me4000_ao_context_t * ao_context);
+static int me4000_ao_simultaneous_update(me4000_ao_channel_list_t * channels,
+					 me4000_ao_context_t * ao_context);
+
+static int me4000_ao_synchronous_ex_trig(me4000_ao_context_t * ao_context);
+static int me4000_ao_synchronous_sw(me4000_ao_context_t * ao_context);
+static int me4000_ao_synchronous_disable(me4000_ao_context_t * ao_context);
+
+static int me4000_ao_ex_trig_timeout(unsigned long *arg,
+				     me4000_ao_context_t * ao_context);
+static int me4000_ao_get_free_buffer(unsigned long *arg,
+				     me4000_ao_context_t * ao_context);
+
+/*-----------------------------------------------------------------------------
+  Analog input stuff
+  ---------------------------------------------------------------------------*/
+static int me4000_ai_single(me4000_ai_single_t *, me4000_ai_context_t *);
+static int me4000_ai_ioctl_sing(struct inode *, struct file *, unsigned int,
+				unsigned long);
+
+static ssize_t me4000_ai_read(struct file *, char *, size_t, loff_t *);
+static int me4000_ai_ioctl_sw(struct inode *, struct file *, unsigned int,
+			      unsigned long);
+static unsigned int me4000_ai_poll(struct file *, poll_table *);
+static int me4000_ai_fasync(int fd, struct file *file_p, int mode);
+
+static int me4000_ai_ioctl_ext(struct inode *, struct file *, unsigned int,
+			       unsigned long);
+
+static int me4000_ai_prepare(me4000_ai_context_t * ai_context);
+static int me4000_ai_reset(me4000_ai_context_t * ai_context);
+static int me4000_ai_config(me4000_ai_config_t *, me4000_ai_context_t *);
+static int me4000_ai_start(me4000_ai_context_t *);
+static int me4000_ai_start_ex(unsigned long *, me4000_ai_context_t *);
+static int me4000_ai_stop(me4000_ai_context_t *);
+static int me4000_ai_immediate_stop(me4000_ai_context_t *);
+static int me4000_ai_ex_trig_enable(me4000_ai_context_t *);
+static int me4000_ai_ex_trig_disable(me4000_ai_context_t *);
+static int me4000_ai_ex_trig_setup(me4000_ai_trigger_t *,
+				   me4000_ai_context_t *);
+static int me4000_ai_sc_setup(me4000_ai_sc_t * arg,
+			      me4000_ai_context_t * ai_context);
+static int me4000_ai_offset_enable(me4000_ai_context_t * ai_context);
+static int me4000_ai_offset_disable(me4000_ai_context_t * ai_context);
+static int me4000_ai_fullscale_enable(me4000_ai_context_t * ai_context);
+static int me4000_ai_fullscale_disable(me4000_ai_context_t * ai_context);
+static int me4000_ai_fsm_state(int *arg, me4000_ai_context_t * ai_context);
+static int me4000_ai_get_count_buffer(unsigned long *arg,
+				      me4000_ai_context_t * ai_context);
+
+/*-----------------------------------------------------------------------------
+  EEPROM stuff
+  ---------------------------------------------------------------------------*/
+static int me4000_eeprom_read(me4000_eeprom_t * arg,
+			      me4000_ai_context_t * ai_context);
+static int me4000_eeprom_write(me4000_eeprom_t * arg,
+			       me4000_ai_context_t * ai_context);
+static unsigned short eeprom_read_cmd(me4000_ai_context_t * ai_context,
+				      unsigned long cmd, int length);
+static int eeprom_write_cmd(me4000_ai_context_t * ai_context, unsigned long cmd,
+			    int length);
+
+/*-----------------------------------------------------------------------------
+  Digital I/O stuff
+  ---------------------------------------------------------------------------*/
+static int me4000_dio_ioctl(struct inode *, struct file *, unsigned int,
+			    unsigned long);
+static int me4000_dio_config(me4000_dio_config_t *, me4000_dio_context_t *);
+static int me4000_dio_get_byte(me4000_dio_byte_t *, me4000_dio_context_t *);
+static int me4000_dio_set_byte(me4000_dio_byte_t *, me4000_dio_context_t *);
+static int me4000_dio_reset(me4000_dio_context_t *);
+
+/*-----------------------------------------------------------------------------
+  Counter stuff
+  ---------------------------------------------------------------------------*/
+static int me4000_cnt_ioctl(struct inode *, struct file *, unsigned int,
+			    unsigned long);
+static int me4000_cnt_config(me4000_cnt_config_t *, me4000_cnt_context_t *);
+static int me4000_cnt_read(me4000_cnt_t *, me4000_cnt_context_t *);
+static int me4000_cnt_write(me4000_cnt_t *, me4000_cnt_context_t *);
+static int me4000_cnt_reset(me4000_cnt_context_t *);
+
+/*-----------------------------------------------------------------------------
+  External interrupt routines
+  ---------------------------------------------------------------------------*/
+static int me4000_ext_int_ioctl(struct inode *, struct file *, unsigned int,
+				unsigned long);
+static int me4000_ext_int_enable(me4000_ext_int_context_t *);
+static int me4000_ext_int_disable(me4000_ext_int_context_t *);
+static int me4000_ext_int_count(unsigned long *arg,
+				me4000_ext_int_context_t * ext_int_context);
+static int me4000_ext_int_fasync(int fd, struct file *file_ptr, int mode);
+
+/*-----------------------------------------------------------------------------
+  The interrupt service routines
+  ---------------------------------------------------------------------------*/
+static irqreturn_t me4000_ao_isr(int, void *);
+static irqreturn_t me4000_ai_isr(int, void *);
+static irqreturn_t me4000_ext_int_isr(int, void *);
+
+/*-----------------------------------------------------------------------------
+  Inline functions
+  ---------------------------------------------------------------------------*/
+static int inline me4000_buf_count(me4000_circ_buf_t, int);
+static int inline me4000_buf_space(me4000_circ_buf_t, int);
+static int inline me4000_space_to_end(me4000_circ_buf_t, int);
+static int inline me4000_values_to_end(me4000_circ_buf_t, int);
+
+static void inline me4000_outb(unsigned char value, unsigned long port);
+static void inline me4000_outl(unsigned long value, unsigned long port);
+static unsigned long inline me4000_inl(unsigned long port);
+static unsigned char inline me4000_inb(unsigned long port);
+
+static int me4000_buf_count(me4000_circ_buf_t buf, int size)
+{
+	return ((buf.head - buf.tail) & (size - 1));
+}
+
+static int me4000_buf_space(me4000_circ_buf_t buf, int size)
+{
+	return ((buf.tail - (buf.head + 1)) & (size - 1));
+}
+
+static int me4000_values_to_end(me4000_circ_buf_t buf, int size)
+{
+	int end;
+	int n;
+	end = size - buf.tail;
+	n = (buf.head + end) & (size - 1);
+	return (n < end) ? n : end;
+}
+
+static int me4000_space_to_end(me4000_circ_buf_t buf, int size)
+{
+	int end;
+	int n;
+
+	end = size - 1 - buf.head;
+	n = (end + buf.tail) & (size - 1);
+	return (n <= end) ? n : (end + 1);
+}
+
+static void me4000_outb(unsigned char value, unsigned long port)
+{
+	PORT_PDEBUG("--> 0x%02X port 0x%04lX\n", value, port);
+	outb(value, port);
+}
+
+static void me4000_outl(unsigned long value, unsigned long port)
+{
+	PORT_PDEBUG("--> 0x%08lX port 0x%04lX\n", value, port);
+	outl(value, port);
+}
+
+static unsigned long me4000_inl(unsigned long port)
+{
+	unsigned long value;
+	value = inl(port);
+	PORT_PDEBUG("<-- 0x%08lX port 0x%04lX\n", value, port);
+	return value;
+}
+
+static unsigned char me4000_inb(unsigned long port)
+{
+	unsigned char value;
+	value = inb(port);
+	PORT_PDEBUG("<-- 0x%08X port 0x%04lX\n", value, port);
+	return value;
+}
+
+struct pci_driver me4000_driver = {
+	.name = ME4000_NAME,
+	.id_table = me4000_pci_table,
+	.probe = me4000_probe
+};
+
+static struct file_operations me4000_ao_fops_sing = {
+      owner:THIS_MODULE,
+      write:me4000_ao_write_sing,
+      ioctl:me4000_ao_ioctl_sing,
+      open:me4000_open,
+      release:me4000_release,
+};
+
+static struct file_operations me4000_ao_fops_wrap = {
+      owner:THIS_MODULE,
+      write:me4000_ao_write_wrap,
+      ioctl:me4000_ao_ioctl_wrap,
+      open:me4000_open,
+      release:me4000_release,
+};
+
+static struct file_operations me4000_ao_fops_cont = {
+      owner:THIS_MODULE,
+      write:me4000_ao_write_cont,
+      poll:me4000_ao_poll_cont,
+      ioctl:me4000_ao_ioctl_cont,
+      open:me4000_open,
+      release:me4000_release,
+      fsync:me4000_ao_fsync_cont,
+};
+
+static struct file_operations me4000_ai_fops_sing = {
+      owner:THIS_MODULE,
+      ioctl:me4000_ai_ioctl_sing,
+      open:me4000_open,
+      release:me4000_release,
+};
+
+static struct file_operations me4000_ai_fops_cont_sw = {
+      owner:THIS_MODULE,
+      read:me4000_ai_read,
+      poll:me4000_ai_poll,
+      ioctl:me4000_ai_ioctl_sw,
+      open:me4000_open,
+      release:me4000_release,
+      fasync:me4000_ai_fasync,
+};
+
+static struct file_operations me4000_ai_fops_cont_et = {
+      owner:THIS_MODULE,
+      read:me4000_ai_read,
+      poll:me4000_ai_poll,
+      ioctl:me4000_ai_ioctl_ext,
+      open:me4000_open,
+      release:me4000_release,
+};
+
+static struct file_operations me4000_ai_fops_cont_et_value = {
+      owner:THIS_MODULE,
+      read:me4000_ai_read,
+      poll:me4000_ai_poll,
+      ioctl:me4000_ai_ioctl_ext,
+      open:me4000_open,
+      release:me4000_release,
+};
+
+static struct file_operations me4000_ai_fops_cont_et_chanlist = {
+      owner:THIS_MODULE,
+      read:me4000_ai_read,
+      poll:me4000_ai_poll,
+      ioctl:me4000_ai_ioctl_ext,
+      open:me4000_open,
+      release:me4000_release,
+};
+
+static struct file_operations me4000_dio_fops = {
+      owner:THIS_MODULE,
+      ioctl:me4000_dio_ioctl,
+      open:me4000_open,
+      release:me4000_release,
+};
+
+static struct file_operations me4000_cnt_fops = {
+      owner:THIS_MODULE,
+      ioctl:me4000_cnt_ioctl,
+      open:me4000_open,
+      release:me4000_release,
+};
+
+static struct file_operations me4000_ext_int_fops = {
+      owner:THIS_MODULE,
+      ioctl:me4000_ext_int_ioctl,
+      open:me4000_open,
+      release:me4000_release,
+      fasync:me4000_ext_int_fasync,
+};
+
+static struct file_operations *me4000_ao_fops_array[] = {
+	&me4000_ao_fops_sing,	// single operations
+	&me4000_ao_fops_wrap,	// wraparound operations
+	&me4000_ao_fops_cont,	// continous operations
+};
+
+static struct file_operations *me4000_ai_fops_array[] = {
+	&me4000_ai_fops_sing,	// single operations
+	&me4000_ai_fops_cont_sw,	// continuous operations with software start
+	&me4000_ai_fops_cont_et,	// continous operations with external trigger
+	&me4000_ai_fops_cont_et_value,	// sample values by external trigger
+	&me4000_ai_fops_cont_et_chanlist,	// work through one channel list by external trigger
+};
+
+int __init me4000_init_module(void)
+{
+	int result = 0;
+
+	CALL_PDEBUG("init_module() is executed\n");
+
+	/* Register driver capabilities */
+	result = pci_register_driver(&me4000_driver);
+	PDEBUG("init_module():%d devices detected\n", result);
+	if (result < 0) {
+		printk(KERN_ERR "ME4000:init_module():Can't register driver\n");
+		goto INIT_ERROR_1;
+	}
+
+	/* Allocate major number for analog output */
+	result =
+	    register_chrdev(me4000_ao_major_driver_no, ME4000_AO_NAME,
+			    &me4000_ao_fops_sing);
+	if (result < 0) {
+		printk(KERN_ERR "ME4000:init_module():Can't get AO major no\n");
+		goto INIT_ERROR_2;
+	} else {
+		me4000_ao_major_driver_no = result;
+	}
+	PDEBUG("init_module():Major driver number for AO = %ld\n",
+	       me4000_ao_major_driver_no);
+
+	/* Allocate major number for analog input  */
+	result =
+	    register_chrdev(me4000_ai_major_driver_no, ME4000_AI_NAME,
+			    &me4000_ai_fops_sing);
+	if (result < 0) {
+		printk(KERN_ERR "ME4000:init_module():Can't get AI major no\n");
+		goto INIT_ERROR_3;
+	} else {
+		me4000_ai_major_driver_no = result;
+	}
+	PDEBUG("init_module():Major driver number for AI = %ld\n",
+	       me4000_ai_major_driver_no);
+
+	/* Allocate major number for digital I/O */
+	result =
+	    register_chrdev(me4000_dio_major_driver_no, ME4000_DIO_NAME,
+			    &me4000_dio_fops);
+	if (result < 0) {
+		printk(KERN_ERR
+		       "ME4000:init_module():Can't get DIO major no\n");
+		goto INIT_ERROR_4;
+	} else {
+		me4000_dio_major_driver_no = result;
+	}
+	PDEBUG("init_module():Major driver number for DIO = %ld\n",
+	       me4000_dio_major_driver_no);
+
+	/* Allocate major number for counter */
+	result =
+	    register_chrdev(me4000_cnt_major_driver_no, ME4000_CNT_NAME,
+			    &me4000_cnt_fops);
+	if (result < 0) {
+		printk(KERN_ERR
+		       "ME4000:init_module():Can't get CNT major no\n");
+		goto INIT_ERROR_5;
+	} else {
+		me4000_cnt_major_driver_no = result;
+	}
+	PDEBUG("init_module():Major driver number for CNT = %ld\n",
+	       me4000_cnt_major_driver_no);
+
+	/* Allocate major number for external interrupt */
+	result =
+	    register_chrdev(me4000_ext_int_major_driver_no, ME4000_EXT_INT_NAME,
+			    &me4000_ext_int_fops);
+	if (result < 0) {
+		printk(KERN_ERR
+		       "ME4000:init_module():Can't get major no for external interrupt\n");
+		goto INIT_ERROR_6;
+	} else {
+		me4000_ext_int_major_driver_no = result;
+	}
+	PDEBUG
+	    ("init_module():Major driver number for external interrupt = %ld\n",
+	     me4000_ext_int_major_driver_no);
+
+	/* Create the /proc/me4000 entry */
+	if (!create_proc_read_entry
+	    ("me4000", 0, NULL, me4000_read_procmem, NULL)) {
+		result = -ENODEV;
+		printk(KERN_ERR
+		       "ME4000:init_module():Can't create proc entry\n");
+		goto INIT_ERROR_7;
+	}
+
+	return 0;
+
+      INIT_ERROR_7:
+	unregister_chrdev(me4000_ext_int_major_driver_no, ME4000_EXT_INT_NAME);
+
+      INIT_ERROR_6:
+	unregister_chrdev(me4000_cnt_major_driver_no, ME4000_CNT_NAME);
+
+      INIT_ERROR_5:
+	unregister_chrdev(me4000_dio_major_driver_no, ME4000_DIO_NAME);
+
+      INIT_ERROR_4:
+	unregister_chrdev(me4000_ai_major_driver_no, ME4000_AI_NAME);
+
+      INIT_ERROR_3:
+	unregister_chrdev(me4000_ao_major_driver_no, ME4000_AO_NAME);
+
+      INIT_ERROR_2:
+	pci_unregister_driver(&me4000_driver);
+	clear_board_info_list();
+
+      INIT_ERROR_1:
+	return result;
+}
+
+module_init(me4000_init_module);
+
+static void clear_board_info_list(void)
+{
+	struct list_head *board_p;
+	struct list_head *dac_p;
+	me4000_info_t *board_info;
+	me4000_ao_context_t *ao_context;
+
+	/* Clear context lists */
+	for (board_p = me4000_board_info_list.next;
+	     board_p != &me4000_board_info_list; board_p = board_p->next) {
+		board_info = list_entry(board_p, me4000_info_t, list);
+		/* Clear analog output context list */
+		while (!list_empty(&board_info->ao_context_list)) {
+			dac_p = board_info->ao_context_list.next;
+			ao_context =
+			    list_entry(dac_p, me4000_ao_context_t, list);
+			me4000_ao_reset(ao_context);
+			free_irq(ao_context->irq, ao_context);
+			if (ao_context->circ_buf.buf)
+				kfree(ao_context->circ_buf.buf);
+			list_del(dac_p);
+			kfree(ao_context);
+		}
+
+		/* Clear analog input context */
+		if (board_info->ai_context->circ_buf.buf)
+			kfree(board_info->ai_context->circ_buf.buf);
+		kfree(board_info->ai_context);
+
+		/* Clear digital I/O context */
+		kfree(board_info->dio_context);
+
+		/* Clear counter context */
+		kfree(board_info->cnt_context);
+
+		/* Clear external interrupt context */
+		kfree(board_info->ext_int_context);
+	}
+
+	/* Clear the board info list */
+	while (!list_empty(&me4000_board_info_list)) {
+		board_p = me4000_board_info_list.next;
+		board_info = list_entry(board_p, me4000_info_t, list);
+		pci_release_regions(board_info->pci_dev_p);
+		list_del(board_p);
+		kfree(board_info);
+	}
+}
+
+static int get_registers(struct pci_dev *dev, me4000_info_t * board_info)
+{
+
+	/*--------------------------- plx regbase ---------------------------------*/
+
+	board_info->plx_regbase = pci_resource_start(dev, 1);
+	if (board_info->plx_regbase == 0) {
+		printk(KERN_ERR
+		       "ME4000:get_registers():PCI base address 1 is not available\n");
+		return -ENODEV;
+	}
+	board_info->plx_regbase_size = pci_resource_len(dev, 1);
+
+	PDEBUG
+	    ("get_registers():PLX configuration registers at address 0x%4lX [0x%4lX]\n",
+	     board_info->plx_regbase, board_info->plx_regbase_size);
+
+	/*--------------------------- me4000 regbase ------------------------------*/
+
+	board_info->me4000_regbase = pci_resource_start(dev, 2);
+	if (board_info->me4000_regbase == 0) {
+		printk(KERN_ERR
+		       "ME4000:get_registers():PCI base address 2 is not available\n");
+		return -ENODEV;
+	}
+	board_info->me4000_regbase_size = pci_resource_len(dev, 2);
+
+	PDEBUG("get_registers():ME4000 registers at address 0x%4lX [0x%4lX]\n",
+	       board_info->me4000_regbase, board_info->me4000_regbase_size);
+
+	/*--------------------------- timer regbase ------------------------------*/
+
+	board_info->timer_regbase = pci_resource_start(dev, 3);
+	if (board_info->timer_regbase == 0) {
+		printk(KERN_ERR
+		       "ME4000:get_registers():PCI base address 3 is not available\n");
+		return -ENODEV;
+	}
+	board_info->timer_regbase_size = pci_resource_len(dev, 3);
+
+	PDEBUG("get_registers():Timer registers at address 0x%4lX [0x%4lX]\n",
+	       board_info->timer_regbase, board_info->timer_regbase_size);
+
+	/*--------------------------- program regbase ------------------------------*/
+
+	board_info->program_regbase = pci_resource_start(dev, 5);
+	if (board_info->program_regbase == 0) {
+		printk(KERN_ERR
+		       "get_registers():ME4000:PCI base address 5 is not available\n");
+		return -ENODEV;
+	}
+	board_info->program_regbase_size = pci_resource_len(dev, 5);
+
+	PDEBUG("get_registers():Program registers at address 0x%4lX [0x%4lX]\n",
+	       board_info->program_regbase, board_info->program_regbase_size);
+
+	return 0;
+}
+
+static int init_board_info(struct pci_dev *pci_dev_p,
+			   me4000_info_t * board_info)
+{
+	int i;
+	int result;
+	struct list_head *board_p;
+	board_info->pci_dev_p = pci_dev_p;
+
+	for (i = 0; i < ME4000_BOARD_VERSIONS; i++) {
+		if (me4000_boards[i].device_id == pci_dev_p->device) {
+			board_info->board_p = &me4000_boards[i];
+			break;
+		}
+	}
+	if (i == ME4000_BOARD_VERSIONS) {
+		printk(KERN_ERR
+		       "ME4000:init_board_info():Device ID not valid\n");
+		return -ENODEV;
+	}
+
+	/* Get the index of the board in the global list */
+	for (board_p = me4000_board_info_list.next, i = 0;
+	     board_p != &me4000_board_info_list; board_p = board_p->next, i++) {
+		if (board_p == &board_info->list) {
+			board_info->board_count = i;
+			break;
+		}
+	}
+	if (board_p == &me4000_board_info_list) {
+		printk(KERN_ERR
+		       "ME4000:init_board_info():Cannot get index of baord\n");
+		return -ENODEV;
+	}
+
+	/* Init list head for analog output contexts */
+	INIT_LIST_HEAD(&board_info->ao_context_list);
+
+	/* Init spin locks */
+	spin_lock_init(&board_info->preload_lock);
+	spin_lock_init(&board_info->ai_ctrl_lock);
+
+	/* Get the serial number */
+	result = pci_read_config_dword(pci_dev_p, 0x2C, &board_info->serial_no);
+	if (result != PCIBIOS_SUCCESSFUL) {
+		printk(KERN_WARNING
+		       "ME4000:init_board_info: Can't get serial_no\n");
+		return result;
+	}
+	PDEBUG("init_board_info():serial_no = 0x%x\n", board_info->serial_no);
+
+	/* Get the hardware revision */
+	result =
+	    pci_read_config_byte(pci_dev_p, 0x08, &board_info->hw_revision);
+	if (result != PCIBIOS_SUCCESSFUL) {
+		printk(KERN_WARNING
+		       "ME4000:init_board_info():Can't get hw_revision\n");
+		return result;
+	}
+	PDEBUG("init_board_info():hw_revision = 0x%x\n",
+	       board_info->hw_revision);
+
+	/* Get the vendor id */
+	board_info->vendor_id = pci_dev_p->vendor;
+	PDEBUG("init_board_info():vendor_id = 0x%x\n", board_info->vendor_id);
+
+	/* Get the device id */
+	board_info->device_id = pci_dev_p->device;
+	PDEBUG("init_board_info():device_id = 0x%x\n", board_info->device_id);
+
+	/* Get the pci device number */
+	board_info->pci_dev_no = PCI_FUNC(pci_dev_p->devfn);
+	PDEBUG("init_board_info():pci_func_no = 0x%x\n",
+	       board_info->pci_func_no);
+
+	/* Get the pci slot number */
+	board_info->pci_dev_no = PCI_SLOT(pci_dev_p->devfn);
+	PDEBUG("init_board_info():pci_dev_no = 0x%x\n", board_info->pci_dev_no);
+
+	/* Get the pci bus number */
+	board_info->pci_bus_no = pci_dev_p->bus->number;
+	PDEBUG("init_board_info():pci_bus_no = 0x%x\n", board_info->pci_bus_no);
+
+	/* Get the irq assigned to the board */
+	board_info->irq = pci_dev_p->irq;
+	PDEBUG("init_board_info():irq = %d\n", board_info->irq);
+
+	return 0;
+}
+
+static int alloc_ao_contexts(me4000_info_t * info)
+{
+	int i;
+	int err;
+	me4000_ao_context_t *ao_context;
+
+	for (i = 0; i < info->board_p->ao.count; i++) {
+		ao_context = kmalloc(sizeof(me4000_ao_context_t), GFP_KERNEL);
+		if (!ao_context) {
+			printk(KERN_ERR
+			       "alloc_ao_contexts():Can't get memory for ao context\n");
+			release_ao_contexts(info);
+			return -ENOMEM;
+		}
+		memset(ao_context, 0, sizeof(me4000_ao_context_t));
+
+		spin_lock_init(&ao_context->use_lock);
+		spin_lock_init(&ao_context->int_lock);
+		ao_context->irq = info->irq;
+		init_waitqueue_head(&ao_context->wait_queue);
+		ao_context->board_info = info;
+
+		if (info->board_p->ao.fifo_count) {
+			/* Allocate circular buffer */
+			ao_context->circ_buf.buf =
+			    kmalloc(ME4000_AO_BUFFER_SIZE, GFP_KERNEL);
+			if (!ao_context->circ_buf.buf) {
+				printk(KERN_ERR
+				       "alloc_ao_contexts():Can't get circular buffer\n");
+				release_ao_contexts(info);
+				return -ENOMEM;
+			}
+			memset(ao_context->circ_buf.buf, 0,
+			       ME4000_AO_BUFFER_SIZE);
+
+			/* Clear the circular buffer */
+			ao_context->circ_buf.head = 0;
+			ao_context->circ_buf.tail = 0;
+		}
+
+		switch (i) {
+		case 0:
+			ao_context->ctrl_reg =
+			    info->me4000_regbase + ME4000_AO_00_CTRL_REG;
+			ao_context->status_reg =
+			    info->me4000_regbase + ME4000_AO_00_STATUS_REG;
+			ao_context->fifo_reg =
+			    info->me4000_regbase + ME4000_AO_00_FIFO_REG;
+			ao_context->single_reg =
+			    info->me4000_regbase + ME4000_AO_00_SINGLE_REG;
+			ao_context->timer_reg =
+			    info->me4000_regbase + ME4000_AO_00_TIMER_REG;
+			ao_context->irq_status_reg =
+			    info->me4000_regbase + ME4000_IRQ_STATUS_REG;
+			ao_context->preload_reg =
+			    info->me4000_regbase + ME4000_AO_LOADSETREG_XX;
+			break;
+		case 1:
+			ao_context->ctrl_reg =
+			    info->me4000_regbase + ME4000_AO_01_CTRL_REG;
+			ao_context->status_reg =
+			    info->me4000_regbase + ME4000_AO_01_STATUS_REG;
+			ao_context->fifo_reg =
+			    info->me4000_regbase + ME4000_AO_01_FIFO_REG;
+			ao_context->single_reg =
+			    info->me4000_regbase + ME4000_AO_01_SINGLE_REG;
+			ao_context->timer_reg =
+			    info->me4000_regbase + ME4000_AO_01_TIMER_REG;
+			ao_context->irq_status_reg =
+			    info->me4000_regbase + ME4000_IRQ_STATUS_REG;
+			ao_context->preload_reg =
+			    info->me4000_regbase + ME4000_AO_LOADSETREG_XX;
+			break;
+		case 2:
+			ao_context->ctrl_reg =
+			    info->me4000_regbase + ME4000_AO_02_CTRL_REG;
+			ao_context->status_reg =
+			    info->me4000_regbase + ME4000_AO_02_STATUS_REG;
+			ao_context->fifo_reg =
+			    info->me4000_regbase + ME4000_AO_02_FIFO_REG;
+			ao_context->single_reg =
+			    info->me4000_regbase + ME4000_AO_02_SINGLE_REG;
+			ao_context->timer_reg =
+			    info->me4000_regbase + ME4000_AO_02_TIMER_REG;
+			ao_context->irq_status_reg =
+			    info->me4000_regbase + ME4000_IRQ_STATUS_REG;
+			ao_context->preload_reg =
+			    info->me4000_regbase + ME4000_AO_LOADSETREG_XX;
+			break;
+		case 3:
+			ao_context->ctrl_reg =
+			    info->me4000_regbase + ME4000_AO_03_CTRL_REG;
+			ao_context->status_reg =
+			    info->me4000_regbase + ME4000_AO_03_STATUS_REG;
+			ao_context->fifo_reg =
+			    info->me4000_regbase + ME4000_AO_03_FIFO_REG;
+			ao_context->single_reg =
+			    info->me4000_regbase + ME4000_AO_03_SINGLE_REG;
+			ao_context->timer_reg =
+			    info->me4000_regbase + ME4000_AO_03_TIMER_REG;
+			ao_context->irq_status_reg =
+			    info->me4000_regbase + ME4000_IRQ_STATUS_REG;
+			ao_context->preload_reg =
+			    info->me4000_regbase + ME4000_AO_LOADSETREG_XX;
+			break;
+		default:
+			break;
+		}
+
+		if (info->board_p->ao.fifo_count) {
+			/* Request the interrupt line */
+			err =
+			    request_irq(ao_context->irq, me4000_ao_isr,
+					IRQF_DISABLED | IRQF_SHARED,
+					ME4000_NAME, ao_context);
+			if (err) {
+				printk(KERN_ERR
+				       "alloc_ao_contexts():Can't get interrupt line");
+				if (ao_context->circ_buf.buf)
+					kfree(ao_context->circ_buf.buf);
+				kfree(ao_context);
+				release_ao_contexts(info);
+				return -ENODEV;
+			}
+		}
+
+		list_add_tail(&ao_context->list, &info->ao_context_list);
+		ao_context->index = i;
+	}
+
+	return 0;
+}
+
+static void release_ao_contexts(me4000_info_t * board_info)
+{
+	struct list_head *dac_p;
+	me4000_ao_context_t *ao_context;
+
+	/* Clear analog output context list */
+	while (!list_empty(&board_info->ao_context_list)) {
+		dac_p = board_info->ao_context_list.next;
+		ao_context = list_entry(dac_p, me4000_ao_context_t, list);
+		free_irq(ao_context->irq, ao_context);
+		if (ao_context->circ_buf.buf)
+			kfree(ao_context->circ_buf.buf);
+		list_del(dac_p);
+		kfree(ao_context);
+	}
+}
+
+static int alloc_ai_context(me4000_info_t * info)
+{
+	me4000_ai_context_t *ai_context;
+
+	if (info->board_p->ai.count) {
+		ai_context = kmalloc(sizeof(me4000_ai_context_t), GFP_KERNEL);
+		if (!ai_context) {
+			printk(KERN_ERR
+			       "ME4000:alloc_ai_context():Can't get memory for ai context\n");
+			return -ENOMEM;
+		}
+		memset(ai_context, 0, sizeof(me4000_ai_context_t));
+
+		info->ai_context = ai_context;
+
+		spin_lock_init(&ai_context->use_lock);
+		spin_lock_init(&ai_context->int_lock);
+		ai_context->number = 0;
+		ai_context->irq = info->irq;
+		init_waitqueue_head(&ai_context->wait_queue);
+		ai_context->board_info = info;
+
+		ai_context->ctrl_reg =
+		    info->me4000_regbase + ME4000_AI_CTRL_REG;
+		ai_context->status_reg =
+		    info->me4000_regbase + ME4000_AI_STATUS_REG;
+		ai_context->channel_list_reg =
+		    info->me4000_regbase + ME4000_AI_CHANNEL_LIST_REG;
+		ai_context->data_reg =
+		    info->me4000_regbase + ME4000_AI_DATA_REG;
+		ai_context->chan_timer_reg =
+		    info->me4000_regbase + ME4000_AI_CHAN_TIMER_REG;
+		ai_context->chan_pre_timer_reg =
+		    info->me4000_regbase + ME4000_AI_CHAN_PRE_TIMER_REG;
+		ai_context->scan_timer_low_reg =
+		    info->me4000_regbase + ME4000_AI_SCAN_TIMER_LOW_REG;
+		ai_context->scan_timer_high_reg =
+		    info->me4000_regbase + ME4000_AI_SCAN_TIMER_HIGH_REG;
+		ai_context->scan_pre_timer_low_reg =
+		    info->me4000_regbase + ME4000_AI_SCAN_PRE_TIMER_LOW_REG;
+		ai_context->scan_pre_timer_high_reg =
+		    info->me4000_regbase + ME4000_AI_SCAN_PRE_TIMER_HIGH_REG;
+		ai_context->start_reg =
+		    info->me4000_regbase + ME4000_AI_START_REG;
+		ai_context->irq_status_reg =
+		    info->me4000_regbase + ME4000_IRQ_STATUS_REG;
+		ai_context->sample_counter_reg =
+		    info->me4000_regbase + ME4000_AI_SAMPLE_COUNTER_REG;
+	}
+
+	return 0;
+}
+
+static int alloc_dio_context(me4000_info_t * info)
+{
+	me4000_dio_context_t *dio_context;
+
+	if (info->board_p->dio.count) {
+		dio_context = kmalloc(sizeof(me4000_dio_context_t), GFP_KERNEL);
+		if (!dio_context) {
+			printk(KERN_ERR
+			       "ME4000:alloc_dio_context():Can't get memory for dio context\n");
+			return -ENOMEM;
+		}
+		memset(dio_context, 0, sizeof(me4000_dio_context_t));
+
+		info->dio_context = dio_context;
+
+		spin_lock_init(&dio_context->use_lock);
+		dio_context->board_info = info;
+
+		dio_context->dio_count = info->board_p->dio.count;
+
+		dio_context->dir_reg =
+		    info->me4000_regbase + ME4000_DIO_DIR_REG;
+		dio_context->ctrl_reg =
+		    info->me4000_regbase + ME4000_DIO_CTRL_REG;
+		dio_context->port_0_reg =
+		    info->me4000_regbase + ME4000_DIO_PORT_0_REG;
+		dio_context->port_1_reg =
+		    info->me4000_regbase + ME4000_DIO_PORT_1_REG;
+		dio_context->port_2_reg =
+		    info->me4000_regbase + ME4000_DIO_PORT_2_REG;
+		dio_context->port_3_reg =
+		    info->me4000_regbase + ME4000_DIO_PORT_3_REG;
+	}
+
+	return 0;
+}
+
+static int alloc_cnt_context(me4000_info_t * info)
+{
+	me4000_cnt_context_t *cnt_context;
+
+	if (info->board_p->cnt.count) {
+		cnt_context = kmalloc(sizeof(me4000_cnt_context_t), GFP_KERNEL);
+		if (!cnt_context) {
+			printk(KERN_ERR
+			       "ME4000:alloc_cnt_context():Can't get memory for cnt context\n");
+			return -ENOMEM;
+		}
+		memset(cnt_context, 0, sizeof(me4000_cnt_context_t));
+
+		info->cnt_context = cnt_context;
+
+		spin_lock_init(&cnt_context->use_lock);
+		cnt_context->board_info = info;
+
+		cnt_context->ctrl_reg =
+		    info->timer_regbase + ME4000_CNT_CTRL_REG;
+		cnt_context->counter_0_reg =
+		    info->timer_regbase + ME4000_CNT_COUNTER_0_REG;
+		cnt_context->counter_1_reg =
+		    info->timer_regbase + ME4000_CNT_COUNTER_1_REG;
+		cnt_context->counter_2_reg =
+		    info->timer_regbase + ME4000_CNT_COUNTER_2_REG;
+	}
+
+	return 0;
+}
+
+static int alloc_ext_int_context(me4000_info_t * info)
+{
+	me4000_ext_int_context_t *ext_int_context;
+
+	if (info->board_p->cnt.count) {
+		ext_int_context =
+		    kmalloc(sizeof(me4000_ext_int_context_t), GFP_KERNEL);
+		if (!ext_int_context) {
+			printk(KERN_ERR
+			       "ME4000:alloc_ext_int_context():Can't get memory for cnt context\n");
+			return -ENOMEM;
+		}
+		memset(ext_int_context, 0, sizeof(me4000_ext_int_context_t));
+
+		info->ext_int_context = ext_int_context;
+
+		spin_lock_init(&ext_int_context->use_lock);
+		ext_int_context->board_info = info;
+
+		ext_int_context->fasync_ptr = NULL;
+		ext_int_context->irq = info->irq;
+
+		ext_int_context->ctrl_reg =
+		    info->me4000_regbase + ME4000_AI_CTRL_REG;
+		ext_int_context->irq_status_reg =
+		    info->me4000_regbase + ME4000_IRQ_STATUS_REG;
+	}
+
+	return 0;
+}
+
+static int me4000_probe(struct pci_dev *dev, const struct pci_device_id *id)
+{
+	int result = 0;
+	me4000_info_t *board_info;
+
+	CALL_PDEBUG("me4000_probe() is executed\n");
+
+	/* Allocate structure for board context */
+	board_info = kmalloc(sizeof(me4000_info_t), GFP_KERNEL);
+	if (!board_info) {
+		printk(KERN_ERR
+		       "ME4000:Can't get memory for board info structure\n");
+		result = -ENOMEM;
+		goto PROBE_ERROR_1;
+	}
+	memset(board_info, 0, sizeof(me4000_info_t));
+
+	/* Add to global linked list */
+	list_add_tail(&board_info->list, &me4000_board_info_list);
+
+	/* Get the PCI base registers */
+	result = get_registers(dev, board_info);
+	if (result) {
+		printk(KERN_ERR "me4000_probe():Cannot get registers\n");
+		goto PROBE_ERROR_2;
+	}
+
+	/* Enable the device */
+	result = pci_enable_device(dev);
+	if (result < 0) {
+		printk(KERN_ERR "me4000_probe():Cannot enable PCI device\n");
+		goto PROBE_ERROR_2;
+	}
+
+	/* Request the PCI register regions */
+	result = pci_request_regions(dev, ME4000_NAME);
+	if (result < 0) {
+		printk(KERN_ERR "me4000_probe():Cannot request I/O regions\n");
+		goto PROBE_ERROR_2;
+	}
+
+	/* Initialize board info */
+	result = init_board_info(dev, board_info);
+	if (result) {
+		printk(KERN_ERR "me4000_probe():Cannot init baord info\n");
+		goto PROBE_ERROR_3;
+	}
+
+	/* Download the xilinx firmware */
+	result = me4000_xilinx_download(board_info);
+	if (result) {
+		printk(KERN_ERR "me4000_probe:Can't download firmware\n");
+		goto PROBE_ERROR_3;
+	}
+
+	/* Make a hardware reset */
+	result = me4000_reset_board(board_info);
+	if (result) {
+		printk(KERN_ERR "me4000_probe:Can't reset board\n");
+		goto PROBE_ERROR_3;
+	}
+
+	/* Allocate analog output context structures */
+	result = alloc_ao_contexts(board_info);
+	if (result) {
+		printk(KERN_ERR "me4000_probe():Cannot allocate ao contexts\n");
+		goto PROBE_ERROR_3;
+	}
+
+	/* Allocate analog input context */
+	result = alloc_ai_context(board_info);
+	if (result) {
+		printk(KERN_ERR "me4000_probe():Cannot allocate ai context\n");
+		goto PROBE_ERROR_4;
+	}
+
+	/* Allocate digital I/O context */
+	result = alloc_dio_context(board_info);
+	if (result) {
+		printk(KERN_ERR "me4000_probe():Cannot allocate dio context\n");
+		goto PROBE_ERROR_5;
+	}
+
+	/* Allocate counter context */
+	result = alloc_cnt_context(board_info);
+	if (result) {
+		printk(KERN_ERR "me4000_probe():Cannot allocate cnt context\n");
+		goto PROBE_ERROR_6;
+	}
+
+	/* Allocate external interrupt context */
+	result = alloc_ext_int_context(board_info);
+	if (result) {
+		printk(KERN_ERR
+		       "me4000_probe():Cannot allocate ext_int context\n");
+		goto PROBE_ERROR_7;
+	}
+
+	return 0;
+
+      PROBE_ERROR_7:
+	kfree(board_info->cnt_context);
+
+      PROBE_ERROR_6:
+	kfree(board_info->dio_context);
+
+      PROBE_ERROR_5:
+	kfree(board_info->ai_context);
+
+      PROBE_ERROR_4:
+	release_ao_contexts(board_info);
+
+      PROBE_ERROR_3:
+	pci_release_regions(dev);
+
+      PROBE_ERROR_2:
+	list_del(&board_info->list);
+	kfree(board_info);
+
+      PROBE_ERROR_1:
+	return result;
+}
+
+static int me4000_xilinx_download(me4000_info_t * info)
+{
+	int size = 0;
+	u32 value = 0;
+	int idx = 0;
+	unsigned char *firm;
+	wait_queue_head_t queue;
+
+	CALL_PDEBUG("me4000_xilinx_download() is executed\n");
+
+	init_waitqueue_head(&queue);
+
+	firm = (info->device_id == 0x4610) ? xilinx_firm_4610 : xilinx_firm;
+
+	/*
+	 * Set PLX local interrupt 2 polarity to high.
+	 * Interrupt is thrown by init pin of xilinx.
+	 */
+	outl(0x10, info->plx_regbase + PLX_INTCSR);
+
+	/* Set /CS and /WRITE of the Xilinx */
+	value = inl(info->plx_regbase + PLX_ICR);
+	value |= 0x100;
+	outl(value, info->plx_regbase + PLX_ICR);
+
+	/* Init Xilinx with CS1 */
+	inb(info->program_regbase + 0xC8);
+
+	/* Wait until /INIT pin is set */
+	udelay(20);
+	if (!inl(info->plx_regbase + PLX_INTCSR) & 0x20) {
+		printk(KERN_ERR "me4000_xilinx_download():Can't init Xilinx\n");
+		return -EIO;
+	}
+
+	/* Reset /CS and /WRITE of the Xilinx */
+	value = inl(info->plx_regbase + PLX_ICR);
+	value &= ~0x100;
+	outl(value, info->plx_regbase + PLX_ICR);
+
+	/* Download Xilinx firmware */
+	size = (firm[0] << 24) + (firm[1] << 16) + (firm[2] << 8) + firm[3];
+	udelay(10);
+
+	for (idx = 0; idx < size; idx++) {
+		outb(firm[16 + idx], info->program_regbase);
+
+		udelay(10);
+
+		/* Check if BUSY flag is low */
+		if (inl(info->plx_regbase + PLX_ICR) & 0x20) {
+			printk(KERN_ERR
+			       "me4000_xilinx_download():Xilinx is still busy (idx = %d)\n",
+			       idx);
+			return -EIO;
+		}
+	}
+
+	PDEBUG("me4000_xilinx_download():%d bytes written\n", idx);
+
+	/* If done flag is high download was successful */
+	if (inl(info->plx_regbase + PLX_ICR) & 0x4) {
+		PDEBUG("me4000_xilinx_download():Done flag is set\n");
+		PDEBUG("me4000_xilinx_download():Download was successful\n");
+	} else {
+		printk(KERN_ERR
+		       "ME4000:me4000_xilinx_download():DONE flag is not set\n");
+		printk(KERN_ERR
+		       "ME4000:me4000_xilinx_download():Download not succesful\n");
+		return -EIO;
+	}
+
+	/* Set /CS and /WRITE */
+	value = inl(info->plx_regbase + PLX_ICR);
+	value |= 0x100;
+	outl(value, info->plx_regbase + PLX_ICR);
+
+	return 0;
+}
+
+static int me4000_reset_board(me4000_info_t * info)
+{
+	unsigned long icr;
+
+	CALL_PDEBUG("me4000_reset_board() is executed\n");
+
+	/* Make a hardware reset */
+	icr = me4000_inl(info->plx_regbase + PLX_ICR);
+	icr |= 0x40000000;
+	me4000_outl(icr, info->plx_regbase + PLX_ICR);
+	icr &= ~0x40000000;
+	me4000_outl(icr, info->plx_regbase + PLX_ICR);
+
+	/* Set both stop bits in the analog input control register */
+	me4000_outl(ME4000_AI_CTRL_BIT_IMMEDIATE_STOP | ME4000_AI_CTRL_BIT_STOP,
+		    info->me4000_regbase + ME4000_AI_CTRL_REG);
+
+	/* Set both stop bits in the analog output control register */
+	me4000_outl(ME4000_AO_CTRL_BIT_IMMEDIATE_STOP | ME4000_AO_CTRL_BIT_STOP,
+		    info->me4000_regbase + ME4000_AO_00_CTRL_REG);
+	me4000_outl(ME4000_AO_CTRL_BIT_IMMEDIATE_STOP | ME4000_AO_CTRL_BIT_STOP,
+		    info->me4000_regbase + ME4000_AO_01_CTRL_REG);
+	me4000_outl(ME4000_AO_CTRL_BIT_IMMEDIATE_STOP | ME4000_AO_CTRL_BIT_STOP,
+		    info->me4000_regbase + ME4000_AO_02_CTRL_REG);
+	me4000_outl(ME4000_AO_CTRL_BIT_IMMEDIATE_STOP | ME4000_AO_CTRL_BIT_STOP,
+		    info->me4000_regbase + ME4000_AO_03_CTRL_REG);
+
+	/* 0x8000 to the DACs means an output voltage of 0V */
+	me4000_outl(0x8000, info->me4000_regbase + ME4000_AO_00_SINGLE_REG);
+	me4000_outl(0x8000, info->me4000_regbase + ME4000_AO_01_SINGLE_REG);
+	me4000_outl(0x8000, info->me4000_regbase + ME4000_AO_02_SINGLE_REG);
+	me4000_outl(0x8000, info->me4000_regbase + ME4000_AO_03_SINGLE_REG);
+
+	/* Enable interrupts on the PLX */
+	me4000_outl(0x43, info->plx_regbase + PLX_INTCSR);
+
+	/* Set the adustment register for AO demux */
+	me4000_outl(ME4000_AO_DEMUX_ADJUST_VALUE,
+		    info->me4000_regbase + ME4000_AO_DEMUX_ADJUST_REG);
+
+	/* Set digital I/O direction for port 0 to output on isolated versions */
+	if (!(me4000_inl(info->me4000_regbase + ME4000_DIO_DIR_REG) & 0x1)) {
+		me4000_outl(0x1, info->me4000_regbase + ME4000_DIO_CTRL_REG);
+	}
+
+	return 0;
+}
+
+static int me4000_open(struct inode *inode_p, struct file *file_p)
+{
+	int board, dev, mode;
+	int err = 0;
+	int i;
+	struct list_head *ptr;
+	me4000_info_t *board_info = NULL;
+	me4000_ao_context_t *ao_context = NULL;
+	me4000_ai_context_t *ai_context = NULL;
+	me4000_dio_context_t *dio_context = NULL;
+	me4000_cnt_context_t *cnt_context = NULL;
+	me4000_ext_int_context_t *ext_int_context = NULL;
+
+	CALL_PDEBUG("me4000_open() is executed\n");
+
+	/* Analog output */
+	if (MAJOR(inode_p->i_rdev) == me4000_ao_major_driver_no) {
+		board = AO_BOARD(inode_p->i_rdev);
+		dev = AO_PORT(inode_p->i_rdev);
+		mode = AO_MODE(inode_p->i_rdev);
+
+		PDEBUG("me4000_open():board = %d ao = %d mode = %d\n", board,
+		       dev, mode);
+
+		/* Search for the board context */
+		for (ptr = me4000_board_info_list.next, i = 0;
+		     ptr != &me4000_board_info_list; ptr = ptr->next, i++) {
+			board_info = list_entry(ptr, me4000_info_t, list);
+			if (i == board)
+				break;
+		}
+
+		if (ptr == &me4000_board_info_list) {
+			printk(KERN_ERR
+			       "ME4000:me4000_open():Board %d not in device list\n",
+			       board);
+			return -ENODEV;
+		}
+
+		/* Search for the dac context */
+		for (ptr = board_info->ao_context_list.next, i = 0;
+		     ptr != &board_info->ao_context_list;
+		     ptr = ptr->next, i++) {
+			ao_context = list_entry(ptr, me4000_ao_context_t, list);
+			if (i == dev)
+				break;
+		}
+
+		if (ptr == &board_info->ao_context_list) {
+			printk(KERN_ERR
+			       "ME4000:me4000_open():Device %d not in device list\n",
+			       dev);
+			return -ENODEV;
+		}
+
+		/* Check if mode is valid */
+		if (mode > 2) {
+			printk(KERN_ERR
+			       "ME4000:me4000_open():Mode is not valid\n");
+			return -ENODEV;
+		}
+
+		/* Check if mode is valid for this AO */
+		if ((mode != ME4000_AO_CONV_MODE_SINGLE)
+		    && (dev >= board_info->board_p->ao.fifo_count)) {
+			printk(KERN_ERR
+			       "ME4000:me4000_open():AO %d only in single mode available\n",
+			       dev);
+			return -ENODEV;
+		}
+
+		/* Check if already opened */
+		spin_lock(&ao_context->use_lock);
+		if (ao_context->dac_in_use) {
+			printk(KERN_ERR
+			       "ME4000:me4000_open():AO %d already in use\n",
+			       dev);
+			spin_unlock(&ao_context->use_lock);
+			return -EBUSY;
+		}
+		ao_context->dac_in_use = 1;
+		spin_unlock(&ao_context->use_lock);
+
+		ao_context->mode = mode;
+
+		/* Hold the context in private data */
+		file_p->private_data = ao_context;
+
+		/* Set file operations pointer */
+		file_p->f_op = me4000_ao_fops_array[mode];
+
+		err = me4000_ao_prepare(ao_context);
+		if (err) {
+			ao_context->dac_in_use = 0;
+			return 1;
+		}
+	}
+	/* Analog input */
+	else if (MAJOR(inode_p->i_rdev) == me4000_ai_major_driver_no) {
+		board = AI_BOARD(inode_p->i_rdev);
+		mode = AI_MODE(inode_p->i_rdev);
+
+		PDEBUG("me4000_open():ai board = %d mode = %d\n", board, mode);
+
+		/* Search for the board context */
+		for (ptr = me4000_board_info_list.next, i = 0;
+		     ptr != &me4000_board_info_list; ptr = ptr->next, i++) {
+			board_info = list_entry(ptr, me4000_info_t, list);
+			if (i == board)
+				break;
+		}
+
+		if (ptr == &me4000_board_info_list) {
+			printk(KERN_ERR
+			       "ME4000:me4000_open():Board %d not in device list\n",
+			       board);
+			return -ENODEV;
+		}
+
+		ai_context = board_info->ai_context;
+
+		/* Check if mode is valid */
+		if (mode > 5) {
+			printk(KERN_ERR
+			       "ME4000:me4000_open():Mode is not valid\n");
+			return -EINVAL;
+		}
+
+		/* Check if already opened */
+		spin_lock(&ai_context->use_lock);
+		if (ai_context->in_use) {
+			printk(KERN_ERR
+			       "ME4000:me4000_open():AI already in use\n");
+			spin_unlock(&ai_context->use_lock);
+			return -EBUSY;
+		}
+		ai_context->in_use = 1;
+		spin_unlock(&ai_context->use_lock);
+
+		ai_context->mode = mode;
+
+		/* Hold the context in private data */
+		file_p->private_data = ai_context;
+
+		/* Set file operations pointer */
+		file_p->f_op = me4000_ai_fops_array[mode];
+
+		/* Prepare analog input */
+		me4000_ai_prepare(ai_context);
+	}
+	/* Digital I/O */
+	else if (MAJOR(inode_p->i_rdev) == me4000_dio_major_driver_no) {
+		board = DIO_BOARD(inode_p->i_rdev);
+		dev = 0;
+		mode = 0;
+
+		PDEBUG("me4000_open():board = %d\n", board);
+
+		/* Search for the board context */
+		for (ptr = me4000_board_info_list.next;
+		     ptr != &me4000_board_info_list; ptr = ptr->next) {
+			board_info = list_entry(ptr, me4000_info_t, list);
+			if (board_info->board_count == board)
+				break;
+		}
+
+		if (ptr == &me4000_board_info_list) {
+			printk(KERN_ERR
+			       "ME4000:me4000_open():Board %d not in device list\n",
+			       board);
+			return -ENODEV;
+		}
+
+		/* Search for the dio context */
+		dio_context = board_info->dio_context;
+
+		/* Check if already opened */
+		spin_lock(&dio_context->use_lock);
+		if (dio_context->in_use) {
+			printk(KERN_ERR
+			       "ME4000:me4000_open():DIO already in use\n");
+			spin_unlock(&dio_context->use_lock);
+			return -EBUSY;
+		}
+		dio_context->in_use = 1;
+		spin_unlock(&dio_context->use_lock);
+
+		/* Hold the context in private data */
+		file_p->private_data = dio_context;
+
+		/* Set file operations pointer to single functions */
+		file_p->f_op = &me4000_dio_fops;
+
+		//me4000_dio_reset(dio_context);
+	}
+	/* Counters */
+	else if (MAJOR(inode_p->i_rdev) == me4000_cnt_major_driver_no) {
+		board = CNT_BOARD(inode_p->i_rdev);
+		dev = 0;
+		mode = 0;
+
+		PDEBUG("me4000_open():board = %d\n", board);
+
+		/* Search for the board context */
+		for (ptr = me4000_board_info_list.next;
+		     ptr != &me4000_board_info_list; ptr = ptr->next) {
+			board_info = list_entry(ptr, me4000_info_t, list);
+			if (board_info->board_count == board)
+				break;
+		}
+
+		if (ptr == &me4000_board_info_list) {
+			printk(KERN_ERR
+			       "ME4000:me4000_open():Board %d not in device list\n",
+			       board);
+			return -ENODEV;
+		}
+
+		/* Get the cnt context */
+		cnt_context = board_info->cnt_context;
+
+		/* Check if already opened */
+		spin_lock(&cnt_context->use_lock);
+		if (cnt_context->in_use) {
+			printk(KERN_ERR
+			       "ME4000:me4000_open():CNT already in use\n");
+			spin_unlock(&cnt_context->use_lock);
+			return -EBUSY;
+		}
+		cnt_context->in_use = 1;
+		spin_unlock(&cnt_context->use_lock);
+
+		/* Hold the context in private data */
+		file_p->private_data = cnt_context;
+
+		/* Set file operations pointer to single functions */
+		file_p->f_op = &me4000_cnt_fops;
+	}
+	/* External Interrupt */
+	else if (MAJOR(inode_p->i_rdev) == me4000_ext_int_major_driver_no) {
+		board = EXT_INT_BOARD(inode_p->i_rdev);
+		dev = 0;
+		mode = 0;
+
+		PDEBUG("me4000_open():board = %d\n", board);
+
+		/* Search for the board context */
+		for (ptr = me4000_board_info_list.next;
+		     ptr != &me4000_board_info_list; ptr = ptr->next) {
+			board_info = list_entry(ptr, me4000_info_t, list);
+			if (board_info->board_count == board)
+				break;
+		}
+
+		if (ptr == &me4000_board_info_list) {
+			printk(KERN_ERR
+			       "ME4000:me4000_open():Board %d not in device list\n",
+			       board);
+			return -ENODEV;
+		}
+
+		/* Get the external interrupt context */
+		ext_int_context = board_info->ext_int_context;
+
+		/* Check if already opened */
+		spin_lock(&cnt_context->use_lock);
+		if (ext_int_context->in_use) {
+			printk(KERN_ERR
+			       "ME4000:me4000_open():External interrupt already in use\n");
+			spin_unlock(&ext_int_context->use_lock);
+			return -EBUSY;
+		}
+		ext_int_context->in_use = 1;
+		spin_unlock(&ext_int_context->use_lock);
+
+		/* Hold the context in private data */
+		file_p->private_data = ext_int_context;
+
+		/* Set file operations pointer to single functions */
+		file_p->f_op = &me4000_ext_int_fops;
+
+		/* Request the interrupt line */
+		err =
+		    request_irq(ext_int_context->irq, me4000_ext_int_isr,
+				IRQF_DISABLED | IRQF_SHARED, ME4000_NAME,
+				ext_int_context);
+		if (err) {
+			printk(KERN_ERR
+			       "ME4000:me4000_open():Can't get interrupt line");
+			ext_int_context->in_use = 0;
+			return -ENODEV;
+		}
+
+		/* Reset the counter */
+		me4000_ext_int_disable(ext_int_context);
+	} else {
+		printk(KERN_ERR "ME4000:me4000_open():Major number unknown\n");
+		return -EINVAL;
+	}
+
+	return 0;
+}
+
+static int me4000_release(struct inode *inode_p, struct file *file_p)
+{
+	me4000_ao_context_t *ao_context;
+	me4000_ai_context_t *ai_context;
+	me4000_dio_context_t *dio_context;
+	me4000_cnt_context_t *cnt_context;
+	me4000_ext_int_context_t *ext_int_context;
+
+	CALL_PDEBUG("me4000_release() is executed\n");
+
+	if (MAJOR(inode_p->i_rdev) == me4000_ao_major_driver_no) {
+		ao_context = file_p->private_data;
+
+		/* Mark DAC as unused */
+		ao_context->dac_in_use = 0;
+	} else if (MAJOR(inode_p->i_rdev) == me4000_ai_major_driver_no) {
+		ai_context = file_p->private_data;
+
+		/* Reset the analog input */
+		me4000_ai_reset(ai_context);
+
+		/* Free the interrupt and the circular buffer */
+		if (ai_context->mode) {
+			free_irq(ai_context->irq, ai_context);
+			kfree(ai_context->circ_buf.buf);
+			ai_context->circ_buf.buf = NULL;
+			ai_context->circ_buf.head = 0;
+			ai_context->circ_buf.tail = 0;
+		}
+
+		/* Mark AI as unused */
+		ai_context->in_use = 0;
+	} else if (MAJOR(inode_p->i_rdev) == me4000_dio_major_driver_no) {
+		dio_context = file_p->private_data;
+
+		/* Mark digital I/O as unused */
+		dio_context->in_use = 0;
+	} else if (MAJOR(inode_p->i_rdev) == me4000_cnt_major_driver_no) {
+		cnt_context = file_p->private_data;
+
+		/* Mark counters as unused */
+		cnt_context->in_use = 0;
+	} else if (MAJOR(inode_p->i_rdev) == me4000_ext_int_major_driver_no) {
+		ext_int_context = file_p->private_data;
+
+		/* Disable the externel interrupt */
+		me4000_ext_int_disable(ext_int_context);
+
+		free_irq(ext_int_context->irq, ext_int_context);
+
+		/* Delete the fasync structure and free memory */
+		me4000_ext_int_fasync(0, file_p, 0);
+
+		/* Mark as unused */
+		ext_int_context->in_use = 0;
+	} else {
+		printk(KERN_ERR
+		       "ME4000:me4000_release():Major number unknown\n");
+		return -EINVAL;
+	}
+
+	return 0;
+}
+
+/*------------------------------- Analog output stuff --------------------------------------*/
+
+static int me4000_ao_prepare(me4000_ao_context_t * ao_context)
+{
+	unsigned long flags;
+
+	CALL_PDEBUG("me4000_ao_prepare() is executed\n");
+
+	if (ao_context->mode == ME4000_AO_CONV_MODE_CONTINUOUS) {
+		/* Only do anything if not already in the correct mode */
+		unsigned long mode = me4000_inl(ao_context->ctrl_reg);
+		if ((mode & ME4000_AO_CONV_MODE_CONTINUOUS)
+		    && (mode & ME4000_AO_CTRL_BIT_ENABLE_FIFO)) {
+			return 0;
+		}
+
+		/* Stop any conversion */
+		me4000_ao_immediate_stop(ao_context);
+
+		/* Set the control register to default state  */
+		spin_lock_irqsave(&ao_context->int_lock, flags);
+		me4000_outl(ME4000_AO_CONV_MODE_CONTINUOUS |
+			    ME4000_AO_CTRL_BIT_ENABLE_FIFO |
+			    ME4000_AO_CTRL_BIT_STOP |
+			    ME4000_AO_CTRL_BIT_IMMEDIATE_STOP,
+			    ao_context->ctrl_reg);
+		spin_unlock_irqrestore(&ao_context->int_lock, flags);
+
+		/* Set to fastest sample rate */
+		me4000_outl(65, ao_context->timer_reg);
+	} else if (ao_context->mode == ME4000_AO_CONV_MODE_WRAPAROUND) {
+		/* Only do anything if not already in the correct mode */
+		unsigned long mode = me4000_inl(ao_context->ctrl_reg);
+		if ((mode & ME4000_AO_CONV_MODE_WRAPAROUND)
+		    && (mode & ME4000_AO_CTRL_BIT_ENABLE_FIFO)) {
+			return 0;
+		}
+
+		/* Stop any conversion */
+		me4000_ao_immediate_stop(ao_context);
+
+		/* Set the control register to default state  */
+		spin_lock_irqsave(&ao_context->int_lock, flags);
+		me4000_outl(ME4000_AO_CONV_MODE_WRAPAROUND |
+			    ME4000_AO_CTRL_BIT_ENABLE_FIFO |
+			    ME4000_AO_CTRL_BIT_STOP |
+			    ME4000_AO_CTRL_BIT_IMMEDIATE_STOP,
+			    ao_context->ctrl_reg);
+		spin_unlock_irqrestore(&ao_context->int_lock, flags);
+
+		/* Set to fastest sample rate */
+		me4000_outl(65, ao_context->timer_reg);
+	} else if (ao_context->mode == ME4000_AO_CONV_MODE_SINGLE) {
+		/* Only do anything if not already in the correct mode */
+		unsigned long mode = me4000_inl(ao_context->ctrl_reg);
+		if (!
+		    (mode &
+		     (ME4000_AO_CONV_MODE_WRAPAROUND |
+		      ME4000_AO_CONV_MODE_CONTINUOUS))) {
+			return 0;
+		}
+
+		/* Stop any conversion */
+		me4000_ao_immediate_stop(ao_context);
+
+		/* Clear the control register */
+		spin_lock_irqsave(&ao_context->int_lock, flags);
+		me4000_outl(0x0, ao_context->ctrl_reg);
+		spin_unlock_irqrestore(&ao_context->int_lock, flags);
+
+		/* Set voltage to 0V */
+		me4000_outl(0x8000, ao_context->single_reg);
+	} else {
+		printk(KERN_ERR
+		       "ME4000:me4000_ao_prepare():Invalid mode specified\n");
+		return -EINVAL;
+	}
+
+	return 0;
+}
+
+static int me4000_ao_reset(me4000_ao_context_t * ao_context)
+{
+	u32 tmp;
+	wait_queue_head_t queue;
+	unsigned long flags;
+
+	CALL_PDEBUG("me4000_ao_reset() is executed\n");
+
+	init_waitqueue_head(&queue);
+
+	if (ao_context->mode == ME4000_AO_CONV_MODE_WRAPAROUND) {
+		/*
+		 * First stop conversion of the DAC before reconfigure.
+		 * This is essantial, cause of the state machine.
+		 * If not stopped before configuring mode, it could
+		 * walk in a undefined state.
+		 */
+		tmp = me4000_inl(ao_context->ctrl_reg);
+		tmp |= ME4000_AO_CTRL_BIT_IMMEDIATE_STOP;
+		me4000_outl(tmp, ao_context->ctrl_reg);
+
+		while (inl(ao_context->status_reg) & ME4000_AO_STATUS_BIT_FSM) {
+			sleep_on_timeout(&queue, 1);
+		}
+
+		/* Set to transparent mode */
+		me4000_ao_simultaneous_disable(ao_context);
+
+		/* Set to single mode in order to set default voltage */
+		me4000_outl(0x0, ao_context->ctrl_reg);
+
+		/* Set voltage to 0V */
+		me4000_outl(0x8000, ao_context->single_reg);
+
+		/* Set to fastest sample rate */
+		me4000_outl(65, ao_context->timer_reg);
+
+		/* Set the original mode and enable FIFO */
+		me4000_outl(ME4000_AO_CONV_MODE_WRAPAROUND |
+			    ME4000_AO_CTRL_BIT_ENABLE_FIFO |
+			    ME4000_AO_CTRL_BIT_STOP |
+			    ME4000_AO_CTRL_BIT_IMMEDIATE_STOP,
+			    ao_context->ctrl_reg);
+	} else if (ao_context->mode == ME4000_AO_CONV_MODE_CONTINUOUS) {
+		/*
+		 * First stop conversion of the DAC before reconfigure.
+		 * This is essantial, cause of the state machine.
+		 * If not stopped before configuring mode, it could
+		 * walk in a undefined state.
+		 */
+		spin_lock_irqsave(&ao_context->int_lock, flags);
+		tmp = me4000_inl(ao_context->ctrl_reg);
+		tmp |= ME4000_AO_CTRL_BIT_STOP;
+		me4000_outl(tmp, ao_context->ctrl_reg);
+		spin_unlock_irqrestore(&ao_context->int_lock, flags);
+
+		while (inl(ao_context->status_reg) & ME4000_AO_STATUS_BIT_FSM) {
+			sleep_on_timeout(&queue, 1);
+		}
+
+		/* Clear the circular buffer */
+		ao_context->circ_buf.head = 0;
+		ao_context->circ_buf.tail = 0;
+
+		/* Set to transparent mode */
+		me4000_ao_simultaneous_disable(ao_context);
+
+		/* Set to single mode in order to set default voltage */
+		spin_lock_irqsave(&ao_context->int_lock, flags);
+		tmp = me4000_inl(ao_context->ctrl_reg);
+		me4000_outl(0x0, ao_context->ctrl_reg);
+
+		/* Set voltage to 0V */
+		me4000_outl(0x8000, ao_context->single_reg);
+
+		/* Set to fastest sample rate */
+		me4000_outl(65, ao_context->timer_reg);
+
+		/* Set the original mode and enable FIFO */
+		me4000_outl(ME4000_AO_CONV_MODE_CONTINUOUS |
+			    ME4000_AO_CTRL_BIT_ENABLE_FIFO |
+			    ME4000_AO_CTRL_BIT_STOP |
+			    ME4000_AO_CTRL_BIT_IMMEDIATE_STOP,
+			    ao_context->ctrl_reg);
+		spin_unlock_irqrestore(&ao_context->int_lock, flags);
+	} else {
+		/* Set to transparent mode */
+		me4000_ao_simultaneous_disable(ao_context);
+
+		/* Set voltage to 0V */
+		me4000_outl(0x8000, ao_context->single_reg);
+	}
+
+	return 0;
+}
+
+static ssize_t me4000_ao_write_sing(struct file *filep, const char *buff,
+				    size_t cnt, loff_t * offp)
+{
+	me4000_ao_context_t *ao_context = filep->private_data;
+	u32 value;
+	const u16 *buffer = (const u16 *)buff;
+
+	CALL_PDEBUG("me4000_ao_write_sing() is executed\n");
+
+	if (cnt != 2) {
+		printk(KERN_ERR
+		       "me4000_ao_write_sing():Write count is not 2\n");
+		return -EINVAL;
+	}
+
+	if (get_user(value, buffer)) {
+		printk(KERN_ERR
+		       "me4000_ao_write_sing():Cannot copy data from user\n");
+		return -EFAULT;
+	}
+
+	me4000_outl(value, ao_context->single_reg);
+
+	return 2;
+}
+
+static ssize_t me4000_ao_write_wrap(struct file *filep, const char *buff,
+				    size_t cnt, loff_t * offp)
+{
+	me4000_ao_context_t *ao_context = filep->private_data;
+	size_t i;
+	u32 value;
+	u32 tmp;
+	const u16 *buffer = (const u16 *)buff;
+	size_t count = cnt / 2;
+
+	CALL_PDEBUG("me4000_ao_write_wrap() is executed\n");
+
+	/* Check if a conversion is already running */
+	if (inl(ao_context->status_reg) & ME4000_AO_STATUS_BIT_FSM) {
+		printk(KERN_ERR
+		       "ME4000:me4000_ao_write_wrap():There is already a conversion running\n");
+		return -EBUSY;
+	}
+
+	if (count > ME4000_AO_FIFO_COUNT) {
+		printk(KERN_ERR
+		       "me4000_ao_write_wrap():Can't load more than %d values\n",
+		       ME4000_AO_FIFO_COUNT);
+		return -ENOSPC;
+	}
+
+	/* Reset the FIFO */
+	tmp = inl(ao_context->ctrl_reg);
+	tmp &= ~ME4000_AO_CTRL_BIT_ENABLE_FIFO;
+	outl(tmp, ao_context->ctrl_reg);
+	tmp |= ME4000_AO_CTRL_BIT_ENABLE_FIFO;
+	outl(tmp, ao_context->ctrl_reg);
+
+	for (i = 0; i < count; i++) {
+		if (get_user(value, buffer + i)) {
+			printk(KERN_ERR
+			       "me4000_ao_write_single():Cannot copy data from user\n");
+			return -EFAULT;
+		}
+		if (((ao_context->fifo_reg & 0xFF) == ME4000_AO_01_FIFO_REG)
+		    || ((ao_context->fifo_reg & 0xFF) == ME4000_AO_03_FIFO_REG))
+			value = value << 16;
+		outl(value, ao_context->fifo_reg);
+	}
+	CALL_PDEBUG("me4000_ao_write_wrap() is leaved with %d\n", i * 2);
+
+	return i * 2;
+}
+
+static ssize_t me4000_ao_write_cont(struct file *filep, const char *buff,
+				    size_t cnt, loff_t * offp)
+{
+	me4000_ao_context_t *ao_context = filep->private_data;
+	const u16 *buffer = (const u16 *)buff;
+	size_t count = cnt / 2;
+	unsigned long flags;
+	u32 tmp;
+	int c = 0;
+	int k = 0;
+	int ret = 0;
+	u16 svalue;
+	u32 lvalue;
+	int i;
+	wait_queue_head_t queue;
+
+	CALL_PDEBUG("me4000_ao_write_cont() is executed\n");
+
+	init_waitqueue_head(&queue);
+
+	/* Check count */
+	if (count <= 0) {
+		PDEBUG("me4000_ao_write_cont():Count is 0\n");
+		return 0;
+	}
+
+	if (filep->f_flags & O_APPEND) {
+		PDEBUG("me4000_ao_write_cont():Append data to data stream\n");
+		while (count > 0) {
+			if (filep->f_flags & O_NONBLOCK) {
+				if (ao_context->pipe_flag) {
+					printk(KERN_ERR
+					       "ME4000:me4000_ao_write_cont():Broken pipe in nonblocking write\n");
+					return -EPIPE;
+				}
+				c = me4000_space_to_end(ao_context->circ_buf,
+							ME4000_AO_BUFFER_COUNT);
+				if (!c) {
+					PDEBUG
+					    ("me4000_ao_write_cont():Returning from nonblocking write\n");
+					break;
+				}
+			} else {
+				wait_event_interruptible(ao_context->wait_queue,
+							 (c =
+							  me4000_space_to_end
+							  (ao_context->circ_buf,
+							   ME4000_AO_BUFFER_COUNT)));
+				if (ao_context->pipe_flag) {
+					printk(KERN_ERR
+					       "me4000_ao_write_cont():Broken pipe in blocking write\n");
+					return -EPIPE;
+				}
+				if (signal_pending(current)) {
+					printk(KERN_ERR
+					       "me4000_ao_write_cont():Wait for free buffer interrupted from signal\n");
+					return -EINTR;
+				}
+			}
+
+			PDEBUG("me4000_ao_write_cont():Space to end = %d\n", c);
+
+			/* Only able to write size of free buffer or size of count */
+			if (count < c)
+				c = count;
+
+			k = 2 * c;
+			k -= copy_from_user(ao_context->circ_buf.buf +
+					    ao_context->circ_buf.head, buffer,
+					    k);
+			c = k / 2;
+			PDEBUG
+			    ("me4000_ao_write_cont():Copy %d values from user space\n",
+			     c);
+
+			if (!c)
+				return -EFAULT;
+
+			ao_context->circ_buf.head =
+			    (ao_context->circ_buf.head +
+			     c) & (ME4000_AO_BUFFER_COUNT - 1);
+			buffer += c;
+			count -= c;
+			ret += c;
+
+			/* Values are now available so enable interrupts */
+			spin_lock_irqsave(&ao_context->int_lock, flags);
+			if (me4000_buf_count
+			    (ao_context->circ_buf, ME4000_AO_BUFFER_COUNT)) {
+				tmp = me4000_inl(ao_context->ctrl_reg);
+				tmp |= ME4000_AO_CTRL_BIT_ENABLE_IRQ;
+				me4000_outl(tmp, ao_context->ctrl_reg);
+			}
+			spin_unlock_irqrestore(&ao_context->int_lock, flags);
+		}
+
+		/* Wait until the state machine is stopped if O_SYNC is set */
+		if (filep->f_flags & O_SYNC) {
+			while (inl(ao_context->status_reg) &
+			       ME4000_AO_STATUS_BIT_FSM) {
+				interruptible_sleep_on_timeout(&queue, 1);
+				if (ao_context->pipe_flag) {
+					PDEBUG
+					    ("me4000_ao_write_cont():Broken pipe detected after sync\n");
+					return -EPIPE;
+				}
+				if (signal_pending(current)) {
+					printk(KERN_ERR
+					       "me4000_ao_write_cont():Wait on state machine after sync interrupted\n");
+					return -EINTR;
+				}
+			}
+		}
+	} else {
+		PDEBUG("me4000_ao_write_cont():Preload DAC FIFO\n");
+		if ((me4000_inl(ao_context->status_reg) &
+		     ME4000_AO_STATUS_BIT_FSM)) {
+			printk(KERN_ERR
+			       "me4000_ao_write_cont():Can't Preload DAC FIFO while conversion is running\n");
+			return -EBUSY;
+		}
+
+		/* Clear the FIFO */
+		spin_lock_irqsave(&ao_context->int_lock, flags);
+		tmp = me4000_inl(ao_context->ctrl_reg);
+		tmp &=
+		    ~(ME4000_AO_CTRL_BIT_ENABLE_FIFO |
+		      ME4000_AO_CTRL_BIT_ENABLE_IRQ);
+		me4000_outl(tmp, ao_context->ctrl_reg);
+		tmp |= ME4000_AO_CTRL_BIT_ENABLE_FIFO;
+		me4000_outl(tmp, ao_context->ctrl_reg);
+		spin_unlock_irqrestore(&ao_context->int_lock, flags);
+
+		/* Clear the circular buffer */
+		ao_context->circ_buf.head = 0;
+		ao_context->circ_buf.tail = 0;
+
+		/* Reset the broken pipe flag */
+		ao_context->pipe_flag = 0;
+
+		/* Only able to write size of fifo or count */
+		c = ME4000_AO_FIFO_COUNT;
+		if (count < c)
+			c = count;
+
+		PDEBUG
+		    ("me4000_ao_write_cont():Write %d values to DAC on 0x%lX\n",
+		     c, ao_context->fifo_reg);
+
+		/* Write values to the fifo */
+		for (i = 0; i < c; i++) {
+			if (get_user(svalue, buffer))
+				return -EFAULT;
+
+			if (((ao_context->fifo_reg & 0xFF) ==
+			     ME4000_AO_01_FIFO_REG)
+			    || ((ao_context->fifo_reg & 0xFF) ==
+				ME4000_AO_03_FIFO_REG)) {
+				lvalue = ((u32) svalue) << 16;
+			} else
+				lvalue = (u32) svalue;
+
+			outl(lvalue, ao_context->fifo_reg);
+			buffer++;
+		}
+		count -= c;
+		ret += c;
+
+		while (1) {
+			/* Get free buffer */
+			c = me4000_space_to_end(ao_context->circ_buf,
+						ME4000_AO_BUFFER_COUNT);
+
+			if (c == 0)
+				return (2 * ret);
+
+			/* Only able to write size of free buffer or size of count */
+			if (count < c)
+				c = count;
+
+			/* If count = 0 return to user */
+			if (c <= 0) {
+				PDEBUG
+				    ("me4000_ao_write_cont():Count reached 0\n");
+				break;
+			}
+
+			k = 2 * c;
+			k -= copy_from_user(ao_context->circ_buf.buf +
+					    ao_context->circ_buf.head, buffer,
+					    k);
+			c = k / 2;
+			PDEBUG
+			    ("me4000_ao_write_cont():Wrote %d values to buffer\n",
+			     c);
+
+			if (!c)
+				return -EFAULT;
+
+			ao_context->circ_buf.head =
+			    (ao_context->circ_buf.head +
+			     c) & (ME4000_AO_BUFFER_COUNT - 1);
+			buffer += c;
+			count -= c;
+			ret += c;
+
+			/* If values in the buffer are available so enable interrupts */
+			spin_lock_irqsave(&ao_context->int_lock, flags);
+			if (me4000_buf_count
+			    (ao_context->circ_buf, ME4000_AO_BUFFER_COUNT)) {
+				PDEBUG
+				    ("me4000_ao_write_cont():Enable Interrupts\n");
+				tmp = me4000_inl(ao_context->ctrl_reg);
+				tmp |= ME4000_AO_CTRL_BIT_ENABLE_IRQ;
+				me4000_outl(tmp, ao_context->ctrl_reg);
+			}
+			spin_unlock_irqrestore(&ao_context->int_lock, flags);
+		}
+	}
+
+	if (filep->f_flags & O_NONBLOCK) {
+		return (ret == 0) ? -EAGAIN : 2 * ret;
+	}
+
+	return 2 * ret;
+}
+
+static unsigned int me4000_ao_poll_cont(struct file *file_p, poll_table * wait)
+{
+	me4000_ao_context_t *ao_context;
+	unsigned long mask = 0;
+
+	CALL_PDEBUG("me4000_ao_poll_cont() is executed\n");
+
+	ao_context = file_p->private_data;
+
+	poll_wait(file_p, &ao_context->wait_queue, wait);
+
+	/* Get free buffer */
+	if (me4000_space_to_end(ao_context->circ_buf, ME4000_AO_BUFFER_COUNT))
+		mask |= POLLOUT | POLLWRNORM;
+
+	CALL_PDEBUG("me4000_ao_poll_cont():Return mask %lX\n", mask);
+
+	return mask;
+}
+
+static int me4000_ao_fsync_cont(struct file *file_p, struct dentry *dentry_p,
+				int datasync)
+{
+	me4000_ao_context_t *ao_context;
+	wait_queue_head_t queue;
+
+	CALL_PDEBUG("me4000_ao_fsync_cont() is executed\n");
+
+	ao_context = file_p->private_data;
+	init_waitqueue_head(&queue);
+
+	while (inl(ao_context->status_reg) & ME4000_AO_STATUS_BIT_FSM) {
+		interruptible_sleep_on_timeout(&queue, 1);
+		if (ao_context->pipe_flag) {
+			printk(KERN_ERR
+			       "me4000_ao_fsync_cont():Broken pipe detected\n");
+			return -EPIPE;
+		}
+
+		if (signal_pending(current)) {
+			printk(KERN_ERR
+			       "me4000_ao_fsync_cont():Wait on state machine interrupted\n");
+			return -EINTR;
+		}
+	}
+
+	return 0;
+}
+
+static int me4000_ao_ioctl_sing(struct inode *inode_p, struct file *file_p,
+				unsigned int service, unsigned long arg)
+{
+	me4000_ao_context_t *ao_context;
+
+	CALL_PDEBUG("me4000_ao_ioctl_sing() is executed\n");
+
+	ao_context = file_p->private_data;
+
+	if (_IOC_TYPE(service) != ME4000_MAGIC) {
+		return -ENOTTY;
+		PDEBUG("me4000_ao_ioctl_sing():Wrong magic number\n");
+	}
+
+	switch (service) {
+	case ME4000_AO_EX_TRIG_SETUP:
+		return me4000_ao_ex_trig_set_edge((int *)arg, ao_context);
+	case ME4000_AO_EX_TRIG_ENABLE:
+		return me4000_ao_ex_trig_enable(ao_context);
+	case ME4000_AO_EX_TRIG_DISABLE:
+		return me4000_ao_ex_trig_disable(ao_context);
+	case ME4000_AO_PRELOAD:
+		return me4000_ao_preload(ao_context);
+	case ME4000_AO_PRELOAD_UPDATE:
+		return me4000_ao_preload_update(ao_context);
+	case ME4000_GET_USER_INFO:
+		return me4000_get_user_info((me4000_user_info_t *) arg,
+					    ao_context->board_info);
+	case ME4000_AO_SIMULTANEOUS_EX_TRIG:
+		return me4000_ao_simultaneous_ex_trig(ao_context);
+	case ME4000_AO_SIMULTANEOUS_SW:
+		return me4000_ao_simultaneous_sw(ao_context);
+	case ME4000_AO_SIMULTANEOUS_DISABLE:
+		return me4000_ao_simultaneous_disable(ao_context);
+	case ME4000_AO_SIMULTANEOUS_UPDATE:
+		return
+		    me4000_ao_simultaneous_update((me4000_ao_channel_list_t *)
+						  arg, ao_context);
+	case ME4000_AO_EX_TRIG_TIMEOUT:
+		return me4000_ao_ex_trig_timeout((unsigned long *)arg,
+						 ao_context);
+	case ME4000_AO_DISABLE_DO:
+		return me4000_ao_disable_do(ao_context);
+	default:
+		printk(KERN_ERR
+		       "me4000_ao_ioctl_sing():Service number invalid\n");
+		return -ENOTTY;
+	}
+
+	return 0;
+}
+
+static int me4000_ao_ioctl_wrap(struct inode *inode_p, struct file *file_p,
+				unsigned int service, unsigned long arg)
+{
+	me4000_ao_context_t *ao_context;
+
+	CALL_PDEBUG("me4000_ao_ioctl_wrap() is executed\n");
+
+	ao_context = file_p->private_data;
+
+	if (_IOC_TYPE(service) != ME4000_MAGIC) {
+		return -ENOTTY;
+		PDEBUG("me4000_ao_ioctl_wrap():Wrong magic number\n");
+	}
+
+	switch (service) {
+	case ME4000_AO_START:
+		return me4000_ao_start((unsigned long *)arg, ao_context);
+	case ME4000_AO_STOP:
+		return me4000_ao_stop(ao_context);
+	case ME4000_AO_IMMEDIATE_STOP:
+		return me4000_ao_immediate_stop(ao_context);
+	case ME4000_AO_RESET:
+		return me4000_ao_reset(ao_context);
+	case ME4000_AO_TIMER_SET_DIVISOR:
+		return me4000_ao_timer_set_divisor((u32 *) arg, ao_context);
+	case ME4000_AO_EX_TRIG_SETUP:
+		return me4000_ao_ex_trig_set_edge((int *)arg, ao_context);
+	case ME4000_AO_EX_TRIG_ENABLE:
+		return me4000_ao_ex_trig_enable(ao_context);
+	case ME4000_AO_EX_TRIG_DISABLE:
+		return me4000_ao_ex_trig_disable(ao_context);
+	case ME4000_GET_USER_INFO:
+		return me4000_get_user_info((me4000_user_info_t *) arg,
+					    ao_context->board_info);
+	case ME4000_AO_FSM_STATE:
+		return me4000_ao_fsm_state((int *)arg, ao_context);
+	case ME4000_AO_ENABLE_DO:
+		return me4000_ao_enable_do(ao_context);
+	case ME4000_AO_DISABLE_DO:
+		return me4000_ao_disable_do(ao_context);
+	case ME4000_AO_SYNCHRONOUS_EX_TRIG:
+		return me4000_ao_synchronous_ex_trig(ao_context);
+	case ME4000_AO_SYNCHRONOUS_SW:
+		return me4000_ao_synchronous_sw(ao_context);
+	case ME4000_AO_SYNCHRONOUS_DISABLE:
+		return me4000_ao_synchronous_disable(ao_context);
+	default:
+		return -ENOTTY;
+	}
+	return 0;
+}
+
+static int me4000_ao_ioctl_cont(struct inode *inode_p, struct file *file_p,
+				unsigned int service, unsigned long arg)
+{
+	me4000_ao_context_t *ao_context;
+
+	CALL_PDEBUG("me4000_ao_ioctl_cont() is executed\n");
+
+	ao_context = file_p->private_data;
+
+	if (_IOC_TYPE(service) != ME4000_MAGIC) {
+		return -ENOTTY;
+		PDEBUG("me4000_ao_ioctl_cont():Wrong magic number\n");
+	}
+
+	switch (service) {
+	case ME4000_AO_START:
+		return me4000_ao_start((unsigned long *)arg, ao_context);
+	case ME4000_AO_STOP:
+		return me4000_ao_stop(ao_context);
+	case ME4000_AO_IMMEDIATE_STOP:
+		return me4000_ao_immediate_stop(ao_context);
+	case ME4000_AO_RESET:
+		return me4000_ao_reset(ao_context);
+	case ME4000_AO_TIMER_SET_DIVISOR:
+		return me4000_ao_timer_set_divisor((u32 *) arg, ao_context);
+	case ME4000_AO_EX_TRIG_SETUP:
+		return me4000_ao_ex_trig_set_edge((int *)arg, ao_context);
+	case ME4000_AO_EX_TRIG_ENABLE:
+		return me4000_ao_ex_trig_enable(ao_context);
+	case ME4000_AO_EX_TRIG_DISABLE:
+		return me4000_ao_ex_trig_disable(ao_context);
+	case ME4000_AO_ENABLE_DO:
+		return me4000_ao_enable_do(ao_context);
+	case ME4000_AO_DISABLE_DO:
+		return me4000_ao_disable_do(ao_context);
+	case ME4000_AO_FSM_STATE:
+		return me4000_ao_fsm_state((int *)arg, ao_context);
+	case ME4000_GET_USER_INFO:
+		return me4000_get_user_info((me4000_user_info_t *) arg,
+					    ao_context->board_info);
+	case ME4000_AO_SYNCHRONOUS_EX_TRIG:
+		return me4000_ao_synchronous_ex_trig(ao_context);
+	case ME4000_AO_SYNCHRONOUS_SW:
+		return me4000_ao_synchronous_sw(ao_context);
+	case ME4000_AO_SYNCHRONOUS_DISABLE:
+		return me4000_ao_synchronous_disable(ao_context);
+	case ME4000_AO_GET_FREE_BUFFER:
+		return me4000_ao_get_free_buffer((unsigned long *)arg,
+						 ao_context);
+	default:
+		return -ENOTTY;
+	}
+	return 0;
+}
+
+static int me4000_ao_start(unsigned long *arg, me4000_ao_context_t * ao_context)
+{
+	u32 tmp;
+	wait_queue_head_t queue;
+	unsigned long ref;
+	unsigned long timeout;
+	unsigned long flags;
+
+	CALL_PDEBUG("me4000_ao_start() is executed\n");
+
+	if (get_user(timeout, arg)) {
+		printk(KERN_ERR
+		       "me4000_ao_start():Cannot copy data from user\n");
+		return -EFAULT;
+	}
+
+	init_waitqueue_head(&queue);
+
+	spin_lock_irqsave(&ao_context->int_lock, flags);
+	tmp = inl(ao_context->ctrl_reg);
+	tmp &= ~(ME4000_AO_CTRL_BIT_STOP | ME4000_AO_CTRL_BIT_IMMEDIATE_STOP);
+	me4000_outl(tmp, ao_context->ctrl_reg);
+	spin_unlock_irqrestore(&ao_context->int_lock, flags);
+
+	if ((tmp & ME4000_AO_CTRL_BIT_ENABLE_EX_TRIG)) {
+		if (timeout) {
+			ref = jiffies;
+			while (!
+			       (inl(ao_context->status_reg) &
+				ME4000_AO_STATUS_BIT_FSM)) {
+				interruptible_sleep_on_timeout(&queue, 1);
+				if (signal_pending(current)) {
+					printk(KERN_ERR
+					       "ME4000:me4000_ao_start():Wait on start of state machine interrupted\n");
+					return -EINTR;
+				}
+				if (((jiffies - ref) > (timeout * HZ / USER_HZ))) {	// 2.6 has diffrent definitions for HZ in user and kernel space
+					printk(KERN_ERR
+					       "ME4000:me4000_ao_start():Timeout reached\n");
+					return -EIO;
+				}
+			}
+		}
+	} else {
+		me4000_outl(0x8000, ao_context->single_reg);
+	}
+
+	return 0;
+}
+
+static int me4000_ao_stop(me4000_ao_context_t * ao_context)
+{
+	u32 tmp;
+	wait_queue_head_t queue;
+	unsigned long flags;
+
+	init_waitqueue_head(&queue);
+
+	CALL_PDEBUG("me4000_ao_stop() is executed\n");
+
+	/* Set the stop bit */
+	spin_lock_irqsave(&ao_context->int_lock, flags);
+	tmp = inl(ao_context->ctrl_reg);
+	tmp |= ME4000_AO_CTRL_BIT_STOP;
+	me4000_outl(tmp, ao_context->ctrl_reg);
+	spin_unlock_irqrestore(&ao_context->int_lock, flags);
+
+	while (inl(ao_context->status_reg) & ME4000_AO_STATUS_BIT_FSM) {
+		interruptible_sleep_on_timeout(&queue, 1);
+		if (signal_pending(current)) {
+			printk(KERN_ERR
+			       "me4000_ao_stop():Wait on state machine after stop interrupted\n");
+			return -EINTR;
+		}
+	}
+
+	/* Clear the stop bit */
+	//tmp &= ~ME4000_AO_CTRL_BIT_STOP;
+	//me4000_outl(tmp, ao_context->ctrl_reg);
+
+	return 0;
+}
+
+static int me4000_ao_immediate_stop(me4000_ao_context_t * ao_context)
+{
+	u32 tmp;
+	wait_queue_head_t queue;
+	unsigned long flags;
+
+	init_waitqueue_head(&queue);
+
+	CALL_PDEBUG("me4000_ao_immediate_stop() is executed\n");
+
+	spin_lock_irqsave(&ao_context->int_lock, flags);
+	tmp = inl(ao_context->ctrl_reg);
+	tmp |= ME4000_AO_CTRL_BIT_STOP | ME4000_AO_CTRL_BIT_IMMEDIATE_STOP;
+	me4000_outl(tmp, ao_context->ctrl_reg);
+	spin_unlock_irqrestore(&ao_context->int_lock, flags);
+
+	while (inl(ao_context->status_reg) & ME4000_AO_STATUS_BIT_FSM) {
+		interruptible_sleep_on_timeout(&queue, 1);
+		if (signal_pending(current)) {
+			printk(KERN_ERR
+			       "me4000_ao_immediate_stop():Wait on state machine after stop interrupted\n");
+			return -EINTR;
+		}
+	}
+
+	/* Clear the stop bits */
+	//tmp &= ~(ME4000_AO_CTRL_BIT_STOP | ME4000_AO_CTRL_BIT_IMMEDIATE_STOP);
+	//me4000_outl(tmp, ao_context->ctrl_reg);
+
+	return 0;
+}
+
+static int me4000_ao_timer_set_divisor(u32 * arg,
+				       me4000_ao_context_t * ao_context)
+{
+	u32 divisor;
+	u32 tmp;
+
+	CALL_PDEBUG("me4000_ao_timer set_divisor() is executed\n");
+
+	if (get_user(divisor, arg))
+		return -EFAULT;
+
+	/* Check if the state machine is stopped */
+	tmp = me4000_inl(ao_context->status_reg);
+	if (tmp & ME4000_AO_STATUS_BIT_FSM) {
+		printk(KERN_ERR
+		       "me4000_ao_timer_set_divisor():Can't set timer while DAC is running\n");
+		return -EBUSY;
+	}
+
+	PDEBUG("me4000_ao_timer set_divisor():Divisor from user = %d\n",
+	       divisor);
+
+	/* Check if the divisor is right. ME4000_AO_MIN_TICKS is the lowest */
+	if (divisor < ME4000_AO_MIN_TICKS) {
+		printk(KERN_ERR
+		       "ME4000:me4000_ao_timer set_divisor():Divisor to low\n");
+		return -EINVAL;
+	}
+
+	/* Fix bug in Firmware */
+	divisor -= 2;
+
+	PDEBUG("me4000_ao_timer set_divisor():Divisor to HW = %d\n", divisor);
+
+	/* Write the divisor */
+	me4000_outl(divisor, ao_context->timer_reg);
+
+	return 0;
+}
+
+static int me4000_ao_ex_trig_set_edge(int *arg,
+				      me4000_ao_context_t * ao_context)
+{
+	int mode;
+	u32 tmp;
+	unsigned long flags;
+
+	CALL_PDEBUG("me4000_ao_ex_trig_set_edge() is executed\n");
+
+	if (get_user(mode, arg))
+		return -EFAULT;
+
+	/* Check if the state machine is stopped */
+	tmp = me4000_inl(ao_context->status_reg);
+	if (tmp & ME4000_AO_STATUS_BIT_FSM) {
+		printk(KERN_ERR
+		       "me4000_ao_ex_trig_set_edge():Can't set trigger while DAC is running\n");
+		return -EBUSY;
+	}
+
+	if (mode == ME4000_AO_TRIGGER_EXT_EDGE_RISING) {
+		spin_lock_irqsave(&ao_context->int_lock, flags);
+		tmp = me4000_inl(ao_context->ctrl_reg);
+		tmp &=
+		    ~(ME4000_AO_CTRL_BIT_EX_TRIG_EDGE |
+		      ME4000_AO_CTRL_BIT_EX_TRIG_BOTH);
+		me4000_outl(tmp, ao_context->ctrl_reg);
+		spin_unlock_irqrestore(&ao_context->int_lock, flags);
+	} else if (mode == ME4000_AO_TRIGGER_EXT_EDGE_FALLING) {
+		spin_lock_irqsave(&ao_context->int_lock, flags);
+		tmp = me4000_inl(ao_context->ctrl_reg);
+		tmp &= ~ME4000_AO_CTRL_BIT_EX_TRIG_BOTH;
+		tmp |= ME4000_AO_CTRL_BIT_EX_TRIG_EDGE;
+		me4000_outl(tmp, ao_context->ctrl_reg);
+		spin_unlock_irqrestore(&ao_context->int_lock, flags);
+	} else if (mode == ME4000_AO_TRIGGER_EXT_EDGE_BOTH) {
+		spin_lock_irqsave(&ao_context->int_lock, flags);
+		tmp = me4000_inl(ao_context->ctrl_reg);
+		tmp |=
+		    ME4000_AO_CTRL_BIT_EX_TRIG_EDGE |
+		    ME4000_AO_CTRL_BIT_EX_TRIG_BOTH;
+		me4000_outl(tmp, ao_context->ctrl_reg);
+		spin_unlock_irqrestore(&ao_context->int_lock, flags);
+	} else {
+		printk(KERN_ERR
+		       "me4000_ao_ex_trig_set_edge():Invalid trigger mode\n");
+		return -EINVAL;
+	}
+
+	return 0;
+}
+
+static int me4000_ao_ex_trig_enable(me4000_ao_context_t * ao_context)
+{
+	u32 tmp;
+	unsigned long flags;
+
+	CALL_PDEBUG("me4000_ao_ex_trig_enable() is executed\n");
+
+	/* Check if the state machine is stopped */
+	tmp = me4000_inl(ao_context->status_reg);
+	if (tmp & ME4000_AO_STATUS_BIT_FSM) {
+		printk(KERN_ERR
+		       "me4000_ao_ex_trig_enable():Can't enable trigger while DAC is running\n");
+		return -EBUSY;
+	}
+
+	spin_lock_irqsave(&ao_context->int_lock, flags);
+	tmp = me4000_inl(ao_context->ctrl_reg);
+	tmp |= ME4000_AO_CTRL_BIT_ENABLE_EX_TRIG;
+	me4000_outl(tmp, ao_context->ctrl_reg);
+	spin_unlock_irqrestore(&ao_context->int_lock, flags);
+
+	return 0;
+}
+
+static int me4000_ao_ex_trig_disable(me4000_ao_context_t * ao_context)
+{
+	u32 tmp;
+	unsigned long flags;
+
+	CALL_PDEBUG("me4000_ao_ex_trig_disable() is executed\n");
+
+	/* Check if the state machine is stopped */
+	tmp = me4000_inl(ao_context->status_reg);
+	if (tmp & ME4000_AO_STATUS_BIT_FSM) {
+		printk(KERN_ERR
+		       "me4000_ao_ex_trig_disable():Can't disable trigger while DAC is running\n");
+		return -EBUSY;
+	}
+
+	spin_lock_irqsave(&ao_context->int_lock, flags);
+	tmp = me4000_inl(ao_context->ctrl_reg);
+	tmp &= ~ME4000_AO_CTRL_BIT_ENABLE_EX_TRIG;
+	me4000_outl(tmp, ao_context->ctrl_reg);
+	spin_unlock_irqrestore(&ao_context->int_lock, flags);
+
+	return 0;
+}
+
+static int me4000_ao_simultaneous_disable(me4000_ao_context_t * ao_context)
+{
+	u32 tmp;
+
+	CALL_PDEBUG("me4000_ao_simultaneous_disable() is executed\n");
+
+	/* Check if the state machine is stopped */
+	/* Be careful here because this function is called from
+	   me4000_ao_synchronous disable */
+	tmp = me4000_inl(ao_context->status_reg);
+	if (tmp & ME4000_AO_STATUS_BIT_FSM) {
+		printk(KERN_ERR
+		       "me4000_ao_simultaneous_disable():Can't disable while DAC is running\n");
+		return -EBUSY;
+	}
+
+	spin_lock(&ao_context->board_info->preload_lock);
+	tmp = me4000_inl(ao_context->preload_reg);
+	tmp &= ~(0x1 << ao_context->index);	// Disable preload bit
+	tmp &= ~(0x1 << (ao_context->index + 16));	// Disable hw simultaneous bit
+	me4000_outl(tmp, ao_context->preload_reg);
+	spin_unlock(&ao_context->board_info->preload_lock);
+
+	return 0;
+}
+
+static int me4000_ao_simultaneous_ex_trig(me4000_ao_context_t * ao_context)
+{
+	u32 tmp;
+
+	CALL_PDEBUG("me4000_ao_simultaneous_ex_trig() is executed\n");
+
+	spin_lock(&ao_context->board_info->preload_lock);
+	tmp = me4000_inl(ao_context->preload_reg);
+	tmp |= (0x1 << ao_context->index);	// Enable preload bit
+	tmp |= (0x1 << (ao_context->index + 16));	// Enable hw simultaneous bit
+	me4000_outl(tmp, ao_context->preload_reg);
+	spin_unlock(&ao_context->board_info->preload_lock);
+
+	return 0;
+}
+
+static int me4000_ao_simultaneous_sw(me4000_ao_context_t * ao_context)
+{
+	u32 tmp;
+
+	CALL_PDEBUG("me4000_ao_simultaneous_sw() is executed\n");
+
+	spin_lock(&ao_context->board_info->preload_lock);
+	tmp = me4000_inl(ao_context->preload_reg);
+	tmp |= (0x1 << ao_context->index);	// Enable preload bit
+	tmp &= ~(0x1 << (ao_context->index + 16));	// Disable hw simultaneous bit
+	me4000_outl(tmp, ao_context->preload_reg);
+	spin_unlock(&ao_context->board_info->preload_lock);
+
+	return 0;
+}
+
+static int me4000_ao_preload(me4000_ao_context_t * ao_context)
+{
+	CALL_PDEBUG("me4000_ao_preload() is executed\n");
+	return me4000_ao_simultaneous_sw(ao_context);
+}
+
+static int me4000_ao_preload_update(me4000_ao_context_t * ao_context)
+{
+	u32 tmp;
+	u32 ctrl;
+	struct list_head *entry;
+
+	CALL_PDEBUG("me4000_ao_preload_update() is executed\n");
+
+	spin_lock(&ao_context->board_info->preload_lock);
+	tmp = me4000_inl(ao_context->preload_reg);
+	list_for_each(entry, &ao_context->board_info->ao_context_list) {
+		/* The channels we update must be in the following state :
+		   - Mode A
+		   - Hardware trigger is disabled
+		   - Corresponding simultaneous bit is reset
+		 */
+		ctrl = me4000_inl(ao_context->ctrl_reg);
+		if (!
+		    (ctrl &
+		     (ME4000_AO_CTRL_BIT_MODE_0 | ME4000_AO_CTRL_BIT_MODE_1 |
+		      ME4000_AO_CTRL_BIT_ENABLE_EX_TRIG))) {
+			if (!
+			    (tmp &
+			     (0x1 <<
+			      (((me4000_ao_context_t *) entry)->index + 16)))) {
+				tmp &=
+				    ~(0x1 <<
+				      (((me4000_ao_context_t *) entry)->index));
+			}
+		}
+	}
+	me4000_outl(tmp, ao_context->preload_reg);
+	spin_unlock(&ao_context->board_info->preload_lock);
+
+	return 0;
+}
+
+static int me4000_ao_simultaneous_update(me4000_ao_channel_list_t * arg,
+					 me4000_ao_context_t * ao_context)
+{
+	int err;
+	int i;
+	u32 tmp;
+	me4000_ao_channel_list_t channels;
+
+	CALL_PDEBUG("me4000_ao_simultaneous_update() is executed\n");
+
+	/* Copy data from user */
+	err = copy_from_user(&channels, arg, sizeof(me4000_ao_channel_list_t));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_ao_simultaneous_update():Can't copy command\n");
+		return -EFAULT;
+	}
+
+	channels.list =
+	    kmalloc(sizeof(unsigned long) * channels.count, GFP_KERNEL);
+	if (!channels.list) {
+		printk(KERN_ERR
+		       "ME4000:me4000_ao_simultaneous_update():Can't get buffer\n");
+		return -ENOMEM;
+	}
+	memset(channels.list, 0, sizeof(unsigned long) * channels.count);
+
+	/* Copy channel list from user */
+	err =
+	    copy_from_user(channels.list, arg->list,
+			   sizeof(unsigned long) * channels.count);
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_ao_simultaneous_update():Can't copy list\n");
+		kfree(channels.list);
+		return -EFAULT;
+	}
+
+	spin_lock(&ao_context->board_info->preload_lock);
+	tmp = me4000_inl(ao_context->preload_reg);
+	for (i = 0; i < channels.count; i++) {
+		if (channels.list[i] >
+		    ao_context->board_info->board_p->ao.count) {
+			spin_unlock(&ao_context->board_info->preload_lock);
+			kfree(channels.list);
+			printk(KERN_ERR
+			       "ME4000:me4000_ao_simultaneous_update():Invalid board number specified\n");
+			return -EFAULT;
+		}
+		tmp &= ~(0x1 << channels.list[i]);	// Clear the preload bit
+		tmp &= ~(0x1 << (channels.list[i] + 16));	// Clear the hw simultaneous bit
+	}
+	me4000_outl(tmp, ao_context->preload_reg);
+	spin_unlock(&ao_context->board_info->preload_lock);
+	kfree(channels.list);
+
+	return 0;
+}
+
+static int me4000_ao_synchronous_ex_trig(me4000_ao_context_t * ao_context)
+{
+	u32 tmp;
+	unsigned long flags;
+
+	CALL_PDEBUG("me4000_ao_synchronous_ex_trig() is executed\n");
+
+	/* Check if the state machine is stopped */
+	tmp = me4000_inl(ao_context->status_reg);
+	if (tmp & ME4000_AO_STATUS_BIT_FSM) {
+		printk(KERN_ERR
+		       "me4000_ao_synchronous_ex_trig(): DAC is running\n");
+		return -EBUSY;
+	}
+
+	spin_lock(&ao_context->board_info->preload_lock);
+	tmp = me4000_inl(ao_context->preload_reg);
+	tmp &= ~(0x1 << ao_context->index);	// Disable synchronous sw bit
+	tmp |= 0x1 << (ao_context->index + 16);	// Enable synchronous hw bit
+	me4000_outl(tmp, ao_context->preload_reg);
+	spin_unlock(&ao_context->board_info->preload_lock);
+
+	/* Make runnable */
+	spin_lock_irqsave(&ao_context->int_lock, flags);
+	tmp = me4000_inl(ao_context->ctrl_reg);
+	if (tmp & (ME4000_AO_CTRL_BIT_MODE_0 | ME4000_AO_CTRL_BIT_MODE_1)) {
+		tmp &=
+		    ~(ME4000_AO_CTRL_BIT_STOP |
+		      ME4000_AO_CTRL_BIT_IMMEDIATE_STOP);
+		me4000_outl(tmp, ao_context->ctrl_reg);
+	}
+	spin_unlock_irqrestore(&ao_context->int_lock, flags);
+
+	return 0;
+}
+
+static int me4000_ao_synchronous_sw(me4000_ao_context_t * ao_context)
+{
+	u32 tmp;
+	unsigned long flags;
+
+	CALL_PDEBUG("me4000_ao_synchronous_sw() is executed\n");
+
+	/* Check if the state machine is stopped */
+	tmp = me4000_inl(ao_context->status_reg);
+	if (tmp & ME4000_AO_STATUS_BIT_FSM) {
+		printk(KERN_ERR "me4000_ao_synchronous_sw(): DAC is running\n");
+		return -EBUSY;
+	}
+
+	spin_lock(&ao_context->board_info->preload_lock);
+	tmp = me4000_inl(ao_context->preload_reg);
+	tmp |= 0x1 << ao_context->index;	// Enable synchronous sw bit
+	tmp &= ~(0x1 << (ao_context->index + 16));	// Disable synchronous hw bit
+	me4000_outl(tmp, ao_context->preload_reg);
+	spin_unlock(&ao_context->board_info->preload_lock);
+
+	/* Make runnable */
+	spin_lock_irqsave(&ao_context->int_lock, flags);
+	tmp = me4000_inl(ao_context->ctrl_reg);
+	if (tmp & (ME4000_AO_CTRL_BIT_MODE_0 | ME4000_AO_CTRL_BIT_MODE_1)) {
+		tmp &=
+		    ~(ME4000_AO_CTRL_BIT_STOP |
+		      ME4000_AO_CTRL_BIT_IMMEDIATE_STOP);
+		me4000_outl(tmp, ao_context->ctrl_reg);
+	}
+	spin_unlock_irqrestore(&ao_context->int_lock, flags);
+
+	return 0;
+}
+
+static int me4000_ao_synchronous_disable(me4000_ao_context_t * ao_context)
+{
+	return me4000_ao_simultaneous_disable(ao_context);
+}
+
+static int me4000_ao_get_free_buffer(unsigned long *arg,
+				     me4000_ao_context_t * ao_context)
+{
+	unsigned long c;
+	int err;
+
+	c = me4000_buf_space(ao_context->circ_buf, ME4000_AO_BUFFER_COUNT);
+
+	err = copy_to_user(arg, &c, sizeof(unsigned long));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_ao_get_free_buffer():Can't copy to user space\n");
+		return -EFAULT;
+	}
+
+	return 0;
+}
+
+static int me4000_ao_ex_trig_timeout(unsigned long *arg,
+				     me4000_ao_context_t * ao_context)
+{
+	u32 tmp;
+	wait_queue_head_t queue;
+	unsigned long ref;
+	unsigned long timeout;
+
+	CALL_PDEBUG("me4000_ao_ex_trig_timeout() is executed\n");
+
+	if (get_user(timeout, arg)) {
+		printk(KERN_ERR
+		       "me4000_ao_ex_trig_timeout():Cannot copy data from user\n");
+		return -EFAULT;
+	}
+
+	init_waitqueue_head(&queue);
+
+	tmp = inl(ao_context->ctrl_reg);
+
+	if ((tmp & ME4000_AO_CTRL_BIT_ENABLE_EX_TRIG)) {
+		if (timeout) {
+			ref = jiffies;
+			while ((inl(ao_context->status_reg) &
+				ME4000_AO_STATUS_BIT_FSM)) {
+				interruptible_sleep_on_timeout(&queue, 1);
+				if (signal_pending(current)) {
+					printk(KERN_ERR
+					       "ME4000:me4000_ao_ex_trig_timeout():Wait on start of state machine interrupted\n");
+					return -EINTR;
+				}
+				if (((jiffies - ref) > (timeout * HZ / USER_HZ))) {	// 2.6 has diffrent definitions for HZ in user and kernel space
+					printk(KERN_ERR
+					       "ME4000:me4000_ao_ex_trig_timeout():Timeout reached\n");
+					return -EIO;
+				}
+			}
+		} else {
+			while ((inl(ao_context->status_reg) &
+				ME4000_AO_STATUS_BIT_FSM)) {
+				interruptible_sleep_on_timeout(&queue, 1);
+				if (signal_pending(current)) {
+					printk(KERN_ERR
+					       "ME4000:me4000_ao_ex_trig_timeout():Wait on start of state machine interrupted\n");
+					return -EINTR;
+				}
+			}
+		}
+	} else {
+		printk(KERN_ERR
+		       "ME4000:me4000_ao_ex_trig_timeout():External Trigger is not enabled\n");
+		return -EINVAL;
+	}
+
+	return 0;
+}
+
+static int me4000_ao_enable_do(me4000_ao_context_t * ao_context)
+{
+	u32 tmp;
+	unsigned long flags;
+
+	CALL_PDEBUG("me4000_ao_enable_do() is executed\n");
+
+	/* Only available for analog output 3 */
+	if (ao_context->index != 3) {
+		printk(KERN_ERR
+		       "me4000_ao_enable_do():Only available for analog output 3\n");
+		return -ENOTTY;
+	}
+
+	/* Check if the state machine is stopped */
+	tmp = me4000_inl(ao_context->status_reg);
+	if (tmp & ME4000_AO_STATUS_BIT_FSM) {
+		printk(KERN_ERR "me4000_ao_enable_do(): DAC is running\n");
+		return -EBUSY;
+	}
+
+	/* Set the stop bit */
+	spin_lock_irqsave(&ao_context->int_lock, flags);
+	tmp = inl(ao_context->ctrl_reg);
+	tmp |= ME4000_AO_CTRL_BIT_ENABLE_DO;
+	me4000_outl(tmp, ao_context->ctrl_reg);
+	spin_unlock_irqrestore(&ao_context->int_lock, flags);
+
+	return 0;
+}
+
+static int me4000_ao_disable_do(me4000_ao_context_t * ao_context)
+{
+	u32 tmp;
+	unsigned long flags;
+
+	CALL_PDEBUG("me4000_ao_disable_do() is executed\n");
+
+	/* Only available for analog output 3 */
+	if (ao_context->index != 3) {
+		printk(KERN_ERR
+		       "me4000_ao_disable():Only available for analog output 3\n");
+		return -ENOTTY;
+	}
+
+	/* Check if the state machine is stopped */
+	tmp = me4000_inl(ao_context->status_reg);
+	if (tmp & ME4000_AO_STATUS_BIT_FSM) {
+		printk(KERN_ERR "me4000_ao_disable_do(): DAC is running\n");
+		return -EBUSY;
+	}
+
+	spin_lock_irqsave(&ao_context->int_lock, flags);
+	tmp = inl(ao_context->ctrl_reg);
+	tmp &= ~(ME4000_AO_CTRL_BIT_ENABLE_DO);
+	me4000_outl(tmp, ao_context->ctrl_reg);
+	spin_unlock_irqrestore(&ao_context->int_lock, flags);
+
+	return 0;
+}
+
+static int me4000_ao_fsm_state(int *arg, me4000_ao_context_t * ao_context)
+{
+	unsigned long tmp;
+
+	CALL_PDEBUG("me4000_ao_fsm_state() is executed\n");
+
+	tmp =
+	    (me4000_inl(ao_context->status_reg) & ME4000_AO_STATUS_BIT_FSM) ? 1
+	    : 0;
+
+	if (ao_context->pipe_flag) {
+		printk(KERN_ERR "me4000_ao_fsm_state():Broken pipe detected\n");
+		return -EPIPE;
+	}
+
+	if (put_user(tmp, arg)) {
+		printk(KERN_ERR "me4000_ao_fsm_state():Cannot copy to user\n");
+		return -EFAULT;
+	}
+
+	return 0;
+}
+
+/*------------------------------- Analog input stuff --------------------------------------*/
+
+static int me4000_ai_prepare(me4000_ai_context_t * ai_context)
+{
+	wait_queue_head_t queue;
+	int err;
+
+	CALL_PDEBUG("me4000_ai_prepare() is executed\n");
+
+	init_waitqueue_head(&queue);
+
+	/* Set the new mode and stop bits */
+	me4000_outl(ai_context->
+		    mode | ME4000_AI_CTRL_BIT_STOP |
+		    ME4000_AI_CTRL_BIT_IMMEDIATE_STOP, ai_context->ctrl_reg);
+
+	/* Set the timer registers */
+	ai_context->chan_timer = 66;
+	ai_context->chan_pre_timer = 66;
+	ai_context->scan_timer_low = 0;
+	ai_context->scan_timer_high = 0;
+
+	me4000_outl(65, ai_context->chan_timer_reg);
+	me4000_outl(65, ai_context->chan_pre_timer_reg);
+	me4000_outl(0, ai_context->scan_timer_low_reg);
+	me4000_outl(0, ai_context->scan_timer_high_reg);
+	me4000_outl(0, ai_context->scan_pre_timer_low_reg);
+	me4000_outl(0, ai_context->scan_pre_timer_high_reg);
+
+	ai_context->channel_list_count = 0;
+
+	if (ai_context->mode) {
+		/* Request the interrupt line */
+		err =
+		    request_irq(ai_context->irq, me4000_ai_isr,
+				IRQF_DISABLED | IRQF_SHARED, ME4000_NAME,
+				ai_context);
+		if (err) {
+			printk(KERN_ERR
+			       "ME4000:me4000_ai_prepare():Can't get interrupt line");
+			return -ENODEV;
+		}
+
+		/* Allocate circular buffer */
+		ai_context->circ_buf.buf =
+		    kmalloc(ME4000_AI_BUFFER_SIZE, GFP_KERNEL);
+		if (!ai_context->circ_buf.buf) {
+			printk(KERN_ERR
+			       "ME4000:me4000_ai_prepare():Can't get circular buffer\n");
+			free_irq(ai_context->irq, ai_context);
+			return -ENOMEM;
+		}
+		memset(ai_context->circ_buf.buf, 0, ME4000_AI_BUFFER_SIZE);
+
+		/* Clear the circular buffer */
+		ai_context->circ_buf.head = 0;
+		ai_context->circ_buf.tail = 0;
+	}
+
+	return 0;
+}
+
+static int me4000_ai_reset(me4000_ai_context_t * ai_context)
+{
+	wait_queue_head_t queue;
+	u32 tmp;
+	unsigned long flags;
+
+	CALL_PDEBUG("me4000_ai_reset() is executed\n");
+
+	init_waitqueue_head(&queue);
+
+	/*
+	 * First stop conversion of the state machine before reconfigure.
+	 * If not stopped before configuring mode, it could
+	 * walk in a undefined state.
+	 */
+	spin_lock_irqsave(&ai_context->int_lock, flags);
+	tmp = me4000_inl(ai_context->ctrl_reg);
+	tmp |= ME4000_AI_CTRL_BIT_IMMEDIATE_STOP;
+	me4000_outl(tmp, ai_context->ctrl_reg);
+	spin_unlock_irqrestore(&ai_context->int_lock, flags);
+
+	while (inl(ai_context->status_reg) & ME4000_AI_STATUS_BIT_FSM) {
+		interruptible_sleep_on_timeout(&queue, 1);
+		if (signal_pending(current)) {
+			printk(KERN_ERR
+			       "me4000_ai_reset():Wait on state machine after stop interrupted\n");
+			return -EINTR;
+		}
+	}
+
+	/* Clear the control register and set the stop bits */
+	spin_lock_irqsave(&ai_context->int_lock, flags);
+	tmp = me4000_inl(ai_context->ctrl_reg);
+	me4000_outl(ME4000_AI_CTRL_BIT_IMMEDIATE_STOP | ME4000_AI_CTRL_BIT_STOP,
+		    ai_context->ctrl_reg);
+	spin_unlock_irqrestore(&ai_context->int_lock, flags);
+
+	/* Reset timer registers */
+	ai_context->chan_timer = 66;
+	ai_context->chan_pre_timer = 66;
+	ai_context->scan_timer_low = 0;
+	ai_context->scan_timer_high = 0;
+	ai_context->sample_counter = 0;
+	ai_context->sample_counter_reload = 0;
+
+	me4000_outl(65, ai_context->chan_timer_reg);
+	me4000_outl(65, ai_context->chan_pre_timer_reg);
+	me4000_outl(0, ai_context->scan_timer_low_reg);
+	me4000_outl(0, ai_context->scan_timer_high_reg);
+	me4000_outl(0, ai_context->scan_pre_timer_low_reg);
+	me4000_outl(0, ai_context->scan_pre_timer_high_reg);
+	me4000_outl(0, ai_context->sample_counter_reg);
+
+	ai_context->channel_list_count = 0;
+
+	/* Clear the circular buffer */
+	ai_context->circ_buf.head = 0;
+	ai_context->circ_buf.tail = 0;
+
+	return 0;
+}
+
+static int me4000_ai_ioctl_sing(struct inode *inode_p, struct file *file_p,
+				unsigned int service, unsigned long arg)
+{
+	me4000_ai_context_t *ai_context;
+
+	CALL_PDEBUG("me4000_ai_ioctl_sing() is executed\n");
+
+	ai_context = file_p->private_data;
+
+	if (_IOC_TYPE(service) != ME4000_MAGIC) {
+		printk(KERN_ERR "me4000_ai_ioctl_sing():Wrong magic number\n");
+		return -ENOTTY;
+	}
+	if (_IOC_NR(service) > ME4000_IOCTL_MAXNR) {
+		printk(KERN_ERR
+		       "me4000_ai_ioctl_sing():Service number to high\n");
+		return -ENOTTY;
+	}
+
+	switch (service) {
+	case ME4000_AI_SINGLE:
+		return me4000_ai_single((me4000_ai_single_t *) arg, ai_context);
+	case ME4000_AI_EX_TRIG_ENABLE:
+		return me4000_ai_ex_trig_enable(ai_context);
+	case ME4000_AI_EX_TRIG_DISABLE:
+		return me4000_ai_ex_trig_disable(ai_context);
+	case ME4000_AI_EX_TRIG_SETUP:
+		return me4000_ai_ex_trig_setup((me4000_ai_trigger_t *) arg,
+					       ai_context);
+	case ME4000_GET_USER_INFO:
+		return me4000_get_user_info((me4000_user_info_t *) arg,
+					    ai_context->board_info);
+	case ME4000_AI_OFFSET_ENABLE:
+		return me4000_ai_offset_enable(ai_context);
+	case ME4000_AI_OFFSET_DISABLE:
+		return me4000_ai_offset_disable(ai_context);
+	case ME4000_AI_FULLSCALE_ENABLE:
+		return me4000_ai_fullscale_enable(ai_context);
+	case ME4000_AI_FULLSCALE_DISABLE:
+		return me4000_ai_fullscale_disable(ai_context);
+	case ME4000_AI_EEPROM_READ:
+		return me4000_eeprom_read((me4000_eeprom_t *) arg, ai_context);
+	case ME4000_AI_EEPROM_WRITE:
+		return me4000_eeprom_write((me4000_eeprom_t *) arg, ai_context);
+	default:
+		printk(KERN_ERR
+		       "me4000_ai_ioctl_sing():Invalid service number\n");
+		return -ENOTTY;
+	}
+	return 0;
+}
+
+static int me4000_ai_single(me4000_ai_single_t * arg,
+			    me4000_ai_context_t * ai_context)
+{
+	me4000_ai_single_t cmd;
+	int err;
+	u32 tmp;
+	wait_queue_head_t queue;
+	unsigned long jiffy;
+
+	CALL_PDEBUG("me4000_ai_single() is executed\n");
+
+	init_waitqueue_head(&queue);
+
+	/* Copy data from user */
+	err = copy_from_user(&cmd, arg, sizeof(me4000_ai_single_t));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_ai_single():Can't copy from user space\n");
+		return -EFAULT;
+	}
+
+	/* Check range parameter */
+	switch (cmd.range) {
+	case ME4000_AI_LIST_RANGE_BIPOLAR_10:
+	case ME4000_AI_LIST_RANGE_BIPOLAR_2_5:
+	case ME4000_AI_LIST_RANGE_UNIPOLAR_10:
+	case ME4000_AI_LIST_RANGE_UNIPOLAR_2_5:
+		break;
+	default:
+		printk(KERN_ERR
+		       "ME4000:me4000_ai_single():Invalid range specified\n");
+		return -EINVAL;
+	}
+
+	/* Check mode and channel number */
+	switch (cmd.mode) {
+	case ME4000_AI_LIST_INPUT_SINGLE_ENDED:
+		if (cmd.channel >= ai_context->board_info->board_p->ai.count) {
+			printk(KERN_ERR
+			       "ME4000:me4000_ai_single():Analog input is not available\n");
+			return -EINVAL;
+		}
+		break;
+	case ME4000_AI_LIST_INPUT_DIFFERENTIAL:
+		if (cmd.channel >=
+		    ai_context->board_info->board_p->ai.diff_count) {
+			printk(KERN_ERR
+			       "ME4000:me4000_ai_single():Analog input is not available in differential mode\n");
+			return -EINVAL;
+		}
+		break;
+	default:
+		printk(KERN_ERR
+		       "ME4000:me4000_ai_single():Invalid mode specified\n");
+		return -EINVAL;
+	}
+
+	/* Clear channel list, data fifo and both stop bits */
+	tmp = me4000_inl(ai_context->ctrl_reg);
+	tmp &=
+	    ~(ME4000_AI_CTRL_BIT_CHANNEL_FIFO | ME4000_AI_CTRL_BIT_DATA_FIFO |
+	      ME4000_AI_CTRL_BIT_STOP | ME4000_AI_CTRL_BIT_IMMEDIATE_STOP);
+	me4000_outl(tmp, ai_context->ctrl_reg);
+
+	/* Enable channel list and data fifo */
+	tmp |= ME4000_AI_CTRL_BIT_CHANNEL_FIFO | ME4000_AI_CTRL_BIT_DATA_FIFO;
+	me4000_outl(tmp, ai_context->ctrl_reg);
+
+	/* Generate channel list entry */
+	me4000_outl(cmd.channel | cmd.range | cmd.
+		    mode | ME4000_AI_LIST_LAST_ENTRY,
+		    ai_context->channel_list_reg);
+
+	/* Set the timer to maximum */
+	me4000_outl(66, ai_context->chan_timer_reg);
+	me4000_outl(66, ai_context->chan_pre_timer_reg);
+
+	if (tmp & ME4000_AI_CTRL_BIT_EX_TRIG) {
+		jiffy = jiffies;
+		while (!
+		       (me4000_inl(ai_context->status_reg) &
+			ME4000_AI_STATUS_BIT_EF_DATA)) {
+			interruptible_sleep_on_timeout(&queue, 1);
+			if (signal_pending(current)) {
+				printk(KERN_ERR
+				       "ME4000:me4000_ai_single():Wait on start of state machine interrupted\n");
+				return -EINTR;
+			}
+			if (((jiffies - jiffy) > (cmd.timeout * HZ / USER_HZ)) && cmd.timeout) {	// 2.6 has diffrent definitions for HZ in user and kernel space
+				printk(KERN_ERR
+				       "ME4000:me4000_ai_single():Timeout reached\n");
+				return -EIO;
+			}
+		}
+	} else {
+		/* Start conversion */
+		me4000_inl(ai_context->start_reg);
+
+		/* Wait until ready */
+		udelay(10);
+		if (!
+		    (me4000_inl(ai_context->status_reg) &
+		     ME4000_AI_STATUS_BIT_EF_DATA)) {
+			printk(KERN_ERR
+			       "ME4000:me4000_ai_single():Value not available after wait\n");
+			return -EIO;
+		}
+	}
+
+	/* Read value from data fifo */
+	cmd.value = me4000_inl(ai_context->data_reg) & 0xFFFF;
+
+	/* Copy result back to user */
+	err = copy_to_user(arg, &cmd, sizeof(me4000_ai_single_t));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_ai_single():Can't copy to user space\n");
+		return -EFAULT;
+	}
+
+	return 0;
+}
+
+static int me4000_ai_ioctl_sw(struct inode *inode_p, struct file *file_p,
+			      unsigned int service, unsigned long arg)
+{
+	me4000_ai_context_t *ai_context;
+
+	CALL_PDEBUG("me4000_ai_ioctl_sw() is executed\n");
+
+	ai_context = file_p->private_data;
+
+	if (_IOC_TYPE(service) != ME4000_MAGIC) {
+		printk(KERN_ERR "me4000_ai_ioctl_sw():Wrong magic number\n");
+		return -ENOTTY;
+	}
+	if (_IOC_NR(service) > ME4000_IOCTL_MAXNR) {
+		printk(KERN_ERR
+		       "me4000_ai_ioctl_sw():Service number to high\n");
+		return -ENOTTY;
+	}
+
+	switch (service) {
+	case ME4000_AI_SC_SETUP:
+		return me4000_ai_sc_setup((me4000_ai_sc_t *) arg, ai_context);
+	case ME4000_AI_CONFIG:
+		return me4000_ai_config((me4000_ai_config_t *) arg, ai_context);
+	case ME4000_AI_START:
+		return me4000_ai_start(ai_context);
+	case ME4000_AI_STOP:
+		return me4000_ai_stop(ai_context);
+	case ME4000_AI_IMMEDIATE_STOP:
+		return me4000_ai_immediate_stop(ai_context);
+	case ME4000_AI_FSM_STATE:
+		return me4000_ai_fsm_state((int *)arg, ai_context);
+	case ME4000_GET_USER_INFO:
+		return me4000_get_user_info((me4000_user_info_t *) arg,
+					    ai_context->board_info);
+	case ME4000_AI_EEPROM_READ:
+		return me4000_eeprom_read((me4000_eeprom_t *) arg, ai_context);
+	case ME4000_AI_EEPROM_WRITE:
+		return me4000_eeprom_write((me4000_eeprom_t *) arg, ai_context);
+	case ME4000_AI_GET_COUNT_BUFFER:
+		return me4000_ai_get_count_buffer((unsigned long *)arg,
+						  ai_context);
+	default:
+		printk(KERN_ERR
+		       "ME4000:me4000_ai_ioctl_sw():Invalid service number %d\n",
+		       service);
+		return -ENOTTY;
+	}
+	return 0;
+}
+
+static int me4000_ai_ioctl_ext(struct inode *inode_p, struct file *file_p,
+			       unsigned int service, unsigned long arg)
+{
+	me4000_ai_context_t *ai_context;
+
+	CALL_PDEBUG("me4000_ai_ioctl_ext() is executed\n");
+
+	ai_context = file_p->private_data;
+
+	if (_IOC_TYPE(service) != ME4000_MAGIC) {
+		printk(KERN_ERR "me4000_ai_ioctl_ext():Wrong magic number\n");
+		return -ENOTTY;
+	}
+	if (_IOC_NR(service) > ME4000_IOCTL_MAXNR) {
+		printk(KERN_ERR
+		       "me4000_ai_ioctl_ext():Service number to high\n");
+		return -ENOTTY;
+	}
+
+	switch (service) {
+	case ME4000_AI_SC_SETUP:
+		return me4000_ai_sc_setup((me4000_ai_sc_t *) arg, ai_context);
+	case ME4000_AI_CONFIG:
+		return me4000_ai_config((me4000_ai_config_t *) arg, ai_context);
+	case ME4000_AI_START:
+		return me4000_ai_start_ex((unsigned long *)arg, ai_context);
+	case ME4000_AI_STOP:
+		return me4000_ai_stop(ai_context);
+	case ME4000_AI_IMMEDIATE_STOP:
+		return me4000_ai_immediate_stop(ai_context);
+	case ME4000_AI_EX_TRIG_ENABLE:
+		return me4000_ai_ex_trig_enable(ai_context);
+	case ME4000_AI_EX_TRIG_DISABLE:
+		return me4000_ai_ex_trig_disable(ai_context);
+	case ME4000_AI_EX_TRIG_SETUP:
+		return me4000_ai_ex_trig_setup((me4000_ai_trigger_t *) arg,
+					       ai_context);
+	case ME4000_AI_FSM_STATE:
+		return me4000_ai_fsm_state((int *)arg, ai_context);
+	case ME4000_GET_USER_INFO:
+		return me4000_get_user_info((me4000_user_info_t *) arg,
+					    ai_context->board_info);
+	case ME4000_AI_GET_COUNT_BUFFER:
+		return me4000_ai_get_count_buffer((unsigned long *)arg,
+						  ai_context);
+	default:
+		printk(KERN_ERR
+		       "ME4000:me4000_ai_ioctl_ext():Invalid service number %d\n",
+		       service);
+		return -ENOTTY;
+	}
+	return 0;
+}
+
+static int me4000_ai_fasync(int fd, struct file *file_p, int mode)
+{
+	me4000_ai_context_t *ai_context;
+
+	CALL_PDEBUG("me4000_ao_fasync_cont() is executed\n");
+
+	ai_context = file_p->private_data;
+	return fasync_helper(fd, file_p, mode, &ai_context->fasync_p);
+}
+
+static int me4000_ai_config(me4000_ai_config_t * arg,
+			    me4000_ai_context_t * ai_context)
+{
+	me4000_ai_config_t cmd;
+	u32 *list = NULL;
+	u32 mode;
+	int i;
+	int err;
+	wait_queue_head_t queue;
+	u64 scan;
+	u32 tmp;
+
+	CALL_PDEBUG("me4000_ai_config() is executed\n");
+
+	init_waitqueue_head(&queue);
+
+	/* Check if conversion is stopped */
+	if (inl(ai_context->ctrl_reg) & ME4000_AI_STATUS_BIT_FSM) {
+		printk(KERN_ERR
+		       "ME4000:me4000_ai_config():Conversion is not stopped\n");
+		err = -EBUSY;
+		goto AI_CONFIG_ERR;
+	}
+
+	/* Copy data from user */
+	err = copy_from_user(&cmd, arg, sizeof(me4000_ai_config_t));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_ai_config():Can't copy from user space\n");
+		err = -EFAULT;
+		goto AI_CONFIG_ERR;
+	}
+
+	PDEBUG
+	    ("me4000_ai_config():chan = %ld, pre_chan = %ld, scan_low = %ld, scan_high = %ld, count = %ld\n",
+	     cmd.timer.chan, cmd.timer.pre_chan, cmd.timer.scan_low,
+	     cmd.timer.scan_high, cmd.channel_list.count);
+
+	/* Check whether sample and hold is available for this board */
+	if (cmd.sh) {
+		if (!ai_context->board_info->board_p->ai.sh_count) {
+			printk(KERN_ERR
+			       "ME4000:me4000_ai_config():Sample and Hold is not available for this board\n");
+			err = -ENODEV;
+			goto AI_CONFIG_ERR;
+		}
+	}
+
+	/* Check the channel list size */
+	if (cmd.channel_list.count > ME4000_AI_CHANNEL_LIST_COUNT) {
+		printk(KERN_ERR
+		       "me4000_ai_config():Channel list is to large\n");
+		err = -EINVAL;
+		goto AI_CONFIG_ERR;
+	}
+
+	/* Copy channel list from user */
+	list = kmalloc(sizeof(u32) * cmd.channel_list.count, GFP_KERNEL);
+	if (!list) {
+		printk(KERN_ERR
+		       "ME4000:me4000_ai_config():Can't get memory for channel list\n");
+		err = -ENOMEM;
+		goto AI_CONFIG_ERR;
+	}
+	err =
+	    copy_from_user(list, cmd.channel_list.list,
+			   sizeof(u32) * cmd.channel_list.count);
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_ai_config():Can't copy from user space\n");
+		err = -EFAULT;
+		goto AI_CONFIG_ERR;
+	}
+
+	/* Check if last entry bit is set */
+	if (!(list[cmd.channel_list.count - 1] & ME4000_AI_LIST_LAST_ENTRY)) {
+		printk(KERN_WARNING
+		       "me4000_ai_config():Last entry bit is not set\n");
+		list[cmd.channel_list.count - 1] |= ME4000_AI_LIST_LAST_ENTRY;
+	}
+
+	/* Check whether mode is equal for all entries */
+	mode = list[0] & 0x20;
+	for (i = 0; i < cmd.channel_list.count; i++) {
+		if ((list[i] & 0x20) != mode) {
+			printk(KERN_ERR
+			       "ME4000:me4000_ai_config():Mode is not equal for all entries\n");
+			err = -EINVAL;
+			goto AI_CONFIG_ERR;
+		}
+	}
+
+	/* Check whether channels are available for this mode */
+	if (mode == ME4000_AI_LIST_INPUT_SINGLE_ENDED) {
+		for (i = 0; i < cmd.channel_list.count; i++) {
+			if ((list[i] & 0x1F) >=
+			    ai_context->board_info->board_p->ai.count) {
+				printk(KERN_ERR
+				       "ME4000:me4000_ai_config():Channel is not available for single ended\n");
+				err = -EINVAL;
+				goto AI_CONFIG_ERR;
+			}
+		}
+	} else if (mode == ME4000_AI_LIST_INPUT_DIFFERENTIAL) {
+		for (i = 0; i < cmd.channel_list.count; i++) {
+			if ((list[i] & 0x1F) >=
+			    ai_context->board_info->board_p->ai.diff_count) {
+				printk(KERN_ERR
+				       "ME4000:me4000_ai_config():Channel is not available for differential\n");
+				err = -EINVAL;
+				goto AI_CONFIG_ERR;
+			}
+		}
+	}
+
+	/* Check if bipolar is set for all entries when in differential mode */
+	if (mode == ME4000_AI_LIST_INPUT_DIFFERENTIAL) {
+		for (i = 0; i < cmd.channel_list.count; i++) {
+			if ((list[i] & 0xC0) != ME4000_AI_LIST_RANGE_BIPOLAR_10
+			    && (list[i] & 0xC0) !=
+			    ME4000_AI_LIST_RANGE_BIPOLAR_2_5) {
+				printk(KERN_ERR
+				       "ME4000:me4000_ai_config():Bipolar is not selected in differential mode\n");
+				err = -EINVAL;
+				goto AI_CONFIG_ERR;
+			}
+		}
+	}
+
+	if (ai_context->mode != ME4000_AI_ACQ_MODE_EXT_SINGLE_VALUE) {
+		/* Check for minimum channel divisor */
+		if (cmd.timer.chan < ME4000_AI_MIN_TICKS) {
+			printk(KERN_ERR
+			       "ME4000:me4000_ai_config():Channel timer divisor is to low\n");
+			err = -EINVAL;
+			goto AI_CONFIG_ERR;
+		}
+
+		/* Check if minimum channel divisor is adjusted when sample and hold is activated */
+		if ((cmd.sh) && (cmd.timer.chan != ME4000_AI_MIN_TICKS)) {
+			printk(KERN_ERR
+			       "ME4000:me4000_ai_config():Channel timer divisor must be at minimum when sample and hold is activated\n");
+			err = -EINVAL;
+			goto AI_CONFIG_ERR;
+		}
+
+		/* Check for minimum channel pre divisor */
+		if (cmd.timer.pre_chan < ME4000_AI_MIN_TICKS) {
+			printk(KERN_ERR
+			       "ME4000:me4000_ai_config():Channel pre timer divisor is to low\n");
+			err = -EINVAL;
+			goto AI_CONFIG_ERR;
+		}
+
+		/* Write the channel timers */
+		me4000_outl(cmd.timer.chan - 1, ai_context->chan_timer_reg);
+		me4000_outl(cmd.timer.pre_chan - 1,
+			    ai_context->chan_pre_timer_reg);
+
+		/* Save the timer values in the board context */
+		ai_context->chan_timer = cmd.timer.chan;
+		ai_context->chan_pre_timer = cmd.timer.pre_chan;
+
+		if (ai_context->mode != ME4000_AI_ACQ_MODE_EXT_SINGLE_CHANLIST) {
+			/* Check for scan timer divisor */
+			scan =
+			    (u64) cmd.timer.scan_low | ((u64) cmd.timer.
+							scan_high << 32);
+			if (scan != 0) {
+				if (scan <
+				    cmd.channel_list.count * cmd.timer.chan +
+				    1) {
+					printk(KERN_ERR
+					       "ME4000:me4000_ai_config():Scan timer divisor is to low\n");
+					err = -EINVAL;
+					goto AI_CONFIG_ERR;
+				}
+			}
+
+			/* Write the scan timers */
+			if (scan != 0) {
+				scan--;
+				tmp = (u32) (scan & 0xFFFFFFFF);
+				me4000_outl(tmp,
+					    ai_context->scan_timer_low_reg);
+				tmp = (u32) ((scan >> 32) & 0xFFFFFFFF);
+				me4000_outl(tmp,
+					    ai_context->scan_timer_high_reg);
+
+				scan =
+				    scan - (cmd.timer.chan - 1) +
+				    (cmd.timer.pre_chan - 1);
+				tmp = (u32) (scan & 0xFFFFFFFF);
+				me4000_outl(tmp,
+					    ai_context->scan_pre_timer_low_reg);
+				tmp = (u32) ((scan >> 32) & 0xFFFFFFFF);
+				me4000_outl(tmp,
+					    ai_context->
+					    scan_pre_timer_high_reg);
+			} else {
+				me4000_outl(0x0,
+					    ai_context->scan_timer_low_reg);
+				me4000_outl(0x0,
+					    ai_context->scan_timer_high_reg);
+
+				me4000_outl(0x0,
+					    ai_context->scan_pre_timer_low_reg);
+				me4000_outl(0x0,
+					    ai_context->
+					    scan_pre_timer_high_reg);
+			}
+
+			ai_context->scan_timer_low = cmd.timer.scan_low;
+			ai_context->scan_timer_high = cmd.timer.scan_high;
+		}
+	}
+
+	/* Clear the channel list */
+	tmp = me4000_inl(ai_context->ctrl_reg);
+	tmp &= ~ME4000_AI_CTRL_BIT_CHANNEL_FIFO;
+	me4000_outl(tmp, ai_context->ctrl_reg);
+	tmp |= ME4000_AI_CTRL_BIT_CHANNEL_FIFO;
+	me4000_outl(tmp, ai_context->ctrl_reg);
+
+	/* Write the channel list */
+	for (i = 0; i < cmd.channel_list.count; i++) {
+		me4000_outl(list[i], ai_context->channel_list_reg);
+	}
+
+	/* Setup sample and hold */
+	if (cmd.sh) {
+		tmp |= ME4000_AI_CTRL_BIT_SAMPLE_HOLD;
+		me4000_outl(tmp, ai_context->ctrl_reg);
+	} else {
+		tmp &= ~ME4000_AI_CTRL_BIT_SAMPLE_HOLD;
+		me4000_outl(tmp, ai_context->ctrl_reg);
+	}
+
+	/* Save the channel list size in the board context */
+	ai_context->channel_list_count = cmd.channel_list.count;
+
+	kfree(list);
+
+	return 0;
+
+      AI_CONFIG_ERR:
+
+	/* Reset the timers */
+	ai_context->chan_timer = 66;
+	ai_context->chan_pre_timer = 66;
+	ai_context->scan_timer_low = 0;
+	ai_context->scan_timer_high = 0;
+
+	me4000_outl(65, ai_context->chan_timer_reg);
+	me4000_outl(65, ai_context->chan_pre_timer_reg);
+	me4000_outl(0, ai_context->scan_timer_high_reg);
+	me4000_outl(0, ai_context->scan_timer_low_reg);
+	me4000_outl(0, ai_context->scan_pre_timer_high_reg);
+	me4000_outl(0, ai_context->scan_pre_timer_low_reg);
+
+	ai_context->channel_list_count = 0;
+
+	tmp = me4000_inl(ai_context->ctrl_reg);
+	tmp &=
+	    ~(ME4000_AI_CTRL_BIT_CHANNEL_FIFO | ME4000_AI_CTRL_BIT_SAMPLE_HOLD);
+
+	if (list)
+		kfree(list);
+
+	return err;
+
+}
+
+static int ai_common_start(me4000_ai_context_t * ai_context)
+{
+	u32 tmp;
+	CALL_PDEBUG("ai_common_start() is executed\n");
+
+	tmp = me4000_inl(ai_context->ctrl_reg);
+
+	/* Check if conversion is stopped */
+	if (tmp & ME4000_AI_STATUS_BIT_FSM) {
+		printk(KERN_ERR
+		       "ME4000:ai_common_start():Conversion is not stopped\n");
+		return -EBUSY;
+	}
+
+	/* Clear data fifo, disable all interrupts, clear sample counter reload */
+	tmp &= ~(ME4000_AI_CTRL_BIT_DATA_FIFO | ME4000_AI_CTRL_BIT_LE_IRQ |
+		 ME4000_AI_CTRL_BIT_HF_IRQ | ME4000_AI_CTRL_BIT_SC_IRQ |
+		 ME4000_AI_CTRL_BIT_SC_RELOAD);
+
+	me4000_outl(tmp, ai_context->ctrl_reg);
+
+	/* Clear circular buffer */
+	ai_context->circ_buf.head = 0;
+	ai_context->circ_buf.tail = 0;
+
+	/* Enable data fifo */
+	tmp |= ME4000_AI_CTRL_BIT_DATA_FIFO;
+
+	/* Determine interrupt setup */
+	if (ai_context->sample_counter && !ai_context->sample_counter_reload) {
+		/* Enable Half Full Interrupt and Sample Counter Interrupt */
+		tmp |= ME4000_AI_CTRL_BIT_SC_IRQ | ME4000_AI_CTRL_BIT_HF_IRQ;
+	} else if (ai_context->sample_counter
+		   && ai_context->sample_counter_reload) {
+		if (ai_context->sample_counter <= ME4000_AI_FIFO_COUNT / 2) {
+			/* Enable only Sample Counter Interrupt */
+			tmp |=
+			    ME4000_AI_CTRL_BIT_SC_IRQ |
+			    ME4000_AI_CTRL_BIT_SC_RELOAD;
+		} else {
+			/* Enable Half Full Interrupt and Sample Counter Interrupt */
+			tmp |=
+			    ME4000_AI_CTRL_BIT_SC_IRQ |
+			    ME4000_AI_CTRL_BIT_HF_IRQ |
+			    ME4000_AI_CTRL_BIT_SC_RELOAD;
+		}
+	} else {
+		/* Enable only Half Full Interrupt */
+		tmp |= ME4000_AI_CTRL_BIT_HF_IRQ;
+	}
+
+	/* Clear the stop bits */
+	tmp &= ~(ME4000_AI_CTRL_BIT_STOP | ME4000_AI_CTRL_BIT_IMMEDIATE_STOP);
+
+	/* Write setup to hardware */
+	me4000_outl(tmp, ai_context->ctrl_reg);
+
+	/* Write sample counter */
+	me4000_outl(ai_context->sample_counter, ai_context->sample_counter_reg);
+
+	return 0;
+}
+
+static int me4000_ai_start(me4000_ai_context_t * ai_context)
+{
+	int err;
+	CALL_PDEBUG("me4000_ai_start() is executed\n");
+
+	/* Prepare Hardware */
+	err = ai_common_start(ai_context);
+	if (err)
+		return err;
+
+	/* Start conversion by dummy read */
+	me4000_inl(ai_context->start_reg);
+
+	return 0;
+}
+
+static int me4000_ai_start_ex(unsigned long *arg,
+			      me4000_ai_context_t * ai_context)
+{
+	int err;
+	wait_queue_head_t queue;
+	unsigned long ref;
+	unsigned long timeout;
+
+	CALL_PDEBUG("me4000_ai_start_ex() is executed\n");
+
+	if (get_user(timeout, arg)) {
+		printk(KERN_ERR
+		       "me4000_ai_start_ex():Cannot copy data from user\n");
+		return -EFAULT;
+	}
+
+	init_waitqueue_head(&queue);
+
+	/* Prepare Hardware */
+	err = ai_common_start(ai_context);
+	if (err)
+		return err;
+
+	if (timeout) {
+		ref = jiffies;
+		while (!
+		       (inl(ai_context->status_reg) & ME4000_AI_STATUS_BIT_FSM))
+		{
+			interruptible_sleep_on_timeout(&queue, 1);
+			if (signal_pending(current)) {
+				printk(KERN_ERR
+				       "ME4000:me4000_ai_start_ex():Wait on start of state machine interrupted\n");
+				return -EINTR;
+			}
+			if (((jiffies - ref) > (timeout * HZ / USER_HZ))) {	// 2.6 has diffrent definitions for HZ in user and kernel space
+				printk(KERN_ERR
+				       "ME4000:me4000_ai_start_ex():Timeout reached\n");
+				return -EIO;
+			}
+		}
+	} else {
+		while (!
+		       (inl(ai_context->status_reg) & ME4000_AI_STATUS_BIT_FSM))
+		{
+			interruptible_sleep_on_timeout(&queue, 1);
+			if (signal_pending(current)) {
+				printk(KERN_ERR
+				       "ME4000:me4000_ai_start_ex():Wait on start of state machine interrupted\n");
+				return -EINTR;
+			}
+		}
+	}
+
+	return 0;
+}
+
+static int me4000_ai_stop(me4000_ai_context_t * ai_context)
+{
+	wait_queue_head_t queue;
+	u32 tmp;
+	unsigned long flags;
+
+	CALL_PDEBUG("me4000_ai_stop() is executed\n");
+
+	init_waitqueue_head(&queue);
+
+	/* Disable irqs and clear data fifo */
+	spin_lock_irqsave(&ai_context->int_lock, flags);
+	tmp = me4000_inl(ai_context->ctrl_reg);
+	tmp &=
+	    ~(ME4000_AI_CTRL_BIT_HF_IRQ | ME4000_AI_CTRL_BIT_SC_IRQ |
+	      ME4000_AI_CTRL_BIT_DATA_FIFO);
+	/* Stop conversion of the state machine */
+	tmp |= ME4000_AI_CTRL_BIT_STOP;
+	me4000_outl(tmp, ai_context->ctrl_reg);
+	spin_unlock_irqrestore(&ai_context->int_lock, flags);
+
+	/* Clear circular buffer */
+	ai_context->circ_buf.head = 0;
+	ai_context->circ_buf.tail = 0;
+
+	while (inl(ai_context->status_reg) & ME4000_AI_STATUS_BIT_FSM) {
+		interruptible_sleep_on_timeout(&queue, 1);
+		if (signal_pending(current)) {
+			printk(KERN_ERR
+			       "ME4000:me4000_ai_stop():Wait on state machine after stop interrupted\n");
+			return -EINTR;
+		}
+	}
+
+	return 0;
+}
+
+static int me4000_ai_immediate_stop(me4000_ai_context_t * ai_context)
+{
+	wait_queue_head_t queue;
+	u32 tmp;
+	unsigned long flags;
+
+	CALL_PDEBUG("me4000_ai_stop() is executed\n");
+
+	init_waitqueue_head(&queue);
+
+	/* Disable irqs and clear data fifo */
+	spin_lock_irqsave(&ai_context->int_lock, flags);
+	tmp = me4000_inl(ai_context->ctrl_reg);
+	tmp &=
+	    ~(ME4000_AI_CTRL_BIT_HF_IRQ | ME4000_AI_CTRL_BIT_SC_IRQ |
+	      ME4000_AI_CTRL_BIT_DATA_FIFO);
+	/* Stop conversion of the state machine */
+	tmp |= ME4000_AI_CTRL_BIT_IMMEDIATE_STOP;
+	me4000_outl(tmp, ai_context->ctrl_reg);
+	spin_unlock_irqrestore(&ai_context->int_lock, flags);
+
+	/* Clear circular buffer */
+	ai_context->circ_buf.head = 0;
+	ai_context->circ_buf.tail = 0;
+
+	while (inl(ai_context->status_reg) & ME4000_AI_STATUS_BIT_FSM) {
+		interruptible_sleep_on_timeout(&queue, 1);
+		if (signal_pending(current)) {
+			printk(KERN_ERR
+			       "ME4000:me4000_ai_stop():Wait on state machine after stop interrupted\n");
+			return -EINTR;
+		}
+	}
+
+	return 0;
+}
+
+static int me4000_ai_ex_trig_enable(me4000_ai_context_t * ai_context)
+{
+	u32 tmp;
+	unsigned long flags;
+
+	CALL_PDEBUG("me4000_ai_ex_trig_enable() is executed\n");
+
+	spin_lock_irqsave(&ai_context->int_lock, flags);
+	tmp = me4000_inl(ai_context->ctrl_reg);
+	tmp |= ME4000_AI_CTRL_BIT_EX_TRIG;
+	me4000_outl(tmp, ai_context->ctrl_reg);
+	spin_unlock_irqrestore(&ai_context->int_lock, flags);
+
+	return 0;
+}
+
+static int me4000_ai_ex_trig_disable(me4000_ai_context_t * ai_context)
+{
+	u32 tmp;
+	unsigned long flags;
+
+	CALL_PDEBUG("me4000_ai_ex_trig_disable() is executed\n");
+
+	spin_lock_irqsave(&ai_context->int_lock, flags);
+	tmp = me4000_inl(ai_context->ctrl_reg);
+	tmp &= ~ME4000_AI_CTRL_BIT_EX_TRIG;
+	me4000_outl(tmp, ai_context->ctrl_reg);
+	spin_unlock_irqrestore(&ai_context->int_lock, flags);
+
+	return 0;
+}
+
+static int me4000_ai_ex_trig_setup(me4000_ai_trigger_t * arg,
+				   me4000_ai_context_t * ai_context)
+{
+	me4000_ai_trigger_t cmd;
+	int err;
+	u32 tmp;
+	unsigned long flags;
+
+	CALL_PDEBUG("me4000_ai_ex_trig_setup() is executed\n");
+
+	/* Copy data from user */
+	err = copy_from_user(&cmd, arg, sizeof(me4000_ai_trigger_t));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_ai_ex_trig_setup():Can't copy from user space\n");
+		return -EFAULT;
+	}
+
+	spin_lock_irqsave(&ai_context->int_lock, flags);
+	tmp = me4000_inl(ai_context->ctrl_reg);
+
+	if (cmd.mode == ME4000_AI_TRIGGER_EXT_DIGITAL) {
+		tmp &= ~ME4000_AI_CTRL_BIT_EX_TRIG_ANALOG;
+	} else if (cmd.mode == ME4000_AI_TRIGGER_EXT_ANALOG) {
+		if (!ai_context->board_info->board_p->ai.ex_trig_analog) {
+			printk(KERN_ERR
+			       "ME4000:me4000_ai_ex_trig_setup():No analog trigger available\n");
+			return -EINVAL;
+		}
+		tmp |= ME4000_AI_CTRL_BIT_EX_TRIG_ANALOG;
+	} else {
+		spin_unlock_irqrestore(&ai_context->int_lock, flags);
+		printk(KERN_ERR
+		       "ME4000:me4000_ai_ex_trig_setup():Invalid trigger mode specified\n");
+		return -EINVAL;
+	}
+
+	if (cmd.edge == ME4000_AI_TRIGGER_EXT_EDGE_RISING) {
+		tmp &=
+		    ~(ME4000_AI_CTRL_BIT_EX_TRIG_BOTH |
+		      ME4000_AI_CTRL_BIT_EX_TRIG_FALLING);
+	} else if (cmd.edge == ME4000_AI_TRIGGER_EXT_EDGE_FALLING) {
+		tmp |= ME4000_AI_CTRL_BIT_EX_TRIG_FALLING;
+		tmp &= ~ME4000_AI_CTRL_BIT_EX_TRIG_BOTH;
+	} else if (cmd.edge == ME4000_AI_TRIGGER_EXT_EDGE_BOTH) {
+		tmp |=
+		    ME4000_AI_CTRL_BIT_EX_TRIG_BOTH |
+		    ME4000_AI_CTRL_BIT_EX_TRIG_FALLING;
+	} else {
+		spin_unlock_irqrestore(&ai_context->int_lock, flags);
+		printk(KERN_ERR
+		       "ME4000:me4000_ai_ex_trig_setup():Invalid trigger edge specified\n");
+		return -EINVAL;
+	}
+
+	me4000_outl(tmp, ai_context->ctrl_reg);
+	spin_unlock_irqrestore(&ai_context->int_lock, flags);
+	return 0;
+}
+
+static int me4000_ai_sc_setup(me4000_ai_sc_t * arg,
+			      me4000_ai_context_t * ai_context)
+{
+	me4000_ai_sc_t cmd;
+	int err;
+
+	CALL_PDEBUG("me4000_ai_sc_setup() is executed\n");
+
+	/* Copy data from user */
+	err = copy_from_user(&cmd, arg, sizeof(me4000_ai_sc_t));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_ai_sc_setup():Can't copy from user space\n");
+		return -EFAULT;
+	}
+
+	ai_context->sample_counter = cmd.value;
+	ai_context->sample_counter_reload = cmd.reload;
+
+	return 0;
+}
+
+static ssize_t me4000_ai_read(struct file *filep, char *buff, size_t cnt,
+			      loff_t * offp)
+{
+	me4000_ai_context_t *ai_context = filep->private_data;
+	s16 *buffer = (s16 *) buff;
+	size_t count = cnt / 2;
+	unsigned long flags;
+	int tmp;
+	int c = 0;
+	int k = 0;
+	int ret = 0;
+	wait_queue_t wait;
+
+	CALL_PDEBUG("me4000_ai_read() is executed\n");
+
+	init_waitqueue_entry(&wait, current);
+
+	/* Check count */
+	if (count <= 0) {
+		PDEBUG("me4000_ai_read():Count is 0\n");
+		return 0;
+	}
+
+	while (count > 0) {
+		if (filep->f_flags & O_NONBLOCK) {
+			c = me4000_values_to_end(ai_context->circ_buf,
+						 ME4000_AI_BUFFER_COUNT);
+			if (!c) {
+				PDEBUG
+				    ("me4000_ai_read():Returning from nonblocking read\n");
+				break;
+			}
+		} else {
+			/* Check if conversion is still running */
+			if (!
+			    (me4000_inl(ai_context->status_reg) &
+			     ME4000_AI_STATUS_BIT_FSM)) {
+				printk(KERN_ERR
+				       "ME4000:me4000_ai_read():Conversion interrupted\n");
+				return -EPIPE;
+			}
+
+			wait_event_interruptible(ai_context->wait_queue,
+						 (me4000_values_to_end
+						  (ai_context->circ_buf,
+						   ME4000_AI_BUFFER_COUNT)));
+			if (signal_pending(current)) {
+				printk(KERN_ERR
+				       "ME4000:me4000_ai_read():Wait on values interrupted from signal\n");
+				return -EINTR;
+			}
+		}
+
+		/* Only read count values or as much as available */
+		c = me4000_values_to_end(ai_context->circ_buf,
+					 ME4000_AI_BUFFER_COUNT);
+		PDEBUG("me4000_ai_read():%d values to end\n", c);
+		if (count < c)
+			c = count;
+
+		PDEBUG("me4000_ai_read():Copy %d values to user space\n", c);
+		k = 2 * c;
+		k -= copy_to_user(buffer,
+				  ai_context->circ_buf.buf +
+				  ai_context->circ_buf.tail, k);
+		c = k / 2;
+		if (!c) {
+			printk(KERN_ERR
+			       "ME4000:me4000_ai_read():Cannot copy new values to user\n");
+			return -EFAULT;
+		}
+
+		ai_context->circ_buf.tail =
+		    (ai_context->circ_buf.tail + c) & (ME4000_AI_BUFFER_COUNT -
+						       1);
+		buffer += c;
+		count -= c;
+		ret += c;
+
+		spin_lock_irqsave(&ai_context->int_lock, flags);
+		if (me4000_buf_space
+		    (ai_context->circ_buf, ME4000_AI_BUFFER_COUNT)) {
+			tmp = me4000_inl(ai_context->ctrl_reg);
+
+			/* Determine interrupt setup */
+			if (ai_context->sample_counter
+			    && !ai_context->sample_counter_reload) {
+				/* Enable Half Full Interrupt and Sample Counter Interrupt */
+				tmp |=
+				    ME4000_AI_CTRL_BIT_SC_IRQ |
+				    ME4000_AI_CTRL_BIT_HF_IRQ;
+			} else if (ai_context->sample_counter
+				   && ai_context->sample_counter_reload) {
+				if (ai_context->sample_counter <
+				    ME4000_AI_FIFO_COUNT / 2) {
+					/* Enable only Sample Counter Interrupt */
+					tmp |= ME4000_AI_CTRL_BIT_SC_IRQ;
+				} else {
+					/* Enable Half Full Interrupt and Sample Counter Interrupt */
+					tmp |=
+					    ME4000_AI_CTRL_BIT_SC_IRQ |
+					    ME4000_AI_CTRL_BIT_HF_IRQ;
+				}
+			} else {
+				/* Enable only Half Full Interrupt */
+				tmp |= ME4000_AI_CTRL_BIT_HF_IRQ;
+			}
+
+			me4000_outl(tmp, ai_context->ctrl_reg);
+		}
+		spin_unlock_irqrestore(&ai_context->int_lock, flags);
+	}
+
+	/* Check if conversion is still running */
+	if (!(me4000_inl(ai_context->status_reg) & ME4000_AI_STATUS_BIT_FSM)) {
+		printk(KERN_ERR
+		       "ME4000:me4000_ai_read():Conversion not running after complete read\n");
+		return -EPIPE;
+	}
+
+	if (filep->f_flags & O_NONBLOCK) {
+		return (k == 0) ? -EAGAIN : 2 * ret;
+	}
+
+	CALL_PDEBUG("me4000_ai_read() is leaved\n");
+	return ret * 2;
+}
+
+static unsigned int me4000_ai_poll(struct file *file_p, poll_table * wait)
+{
+	me4000_ai_context_t *ai_context;
+	unsigned long mask = 0;
+
+	CALL_PDEBUG("me4000_ai_poll() is executed\n");
+
+	ai_context = file_p->private_data;
+
+	/* Register wait queue */
+	poll_wait(file_p, &ai_context->wait_queue, wait);
+
+	/* Get available values */
+	if (me4000_values_to_end(ai_context->circ_buf, ME4000_AI_BUFFER_COUNT))
+		mask |= POLLIN | POLLRDNORM;
+
+	PDEBUG("me4000_ai_poll():Return mask %lX\n", mask);
+
+	return mask;
+}
+
+static int me4000_ai_offset_enable(me4000_ai_context_t * ai_context)
+{
+	unsigned long tmp;
+
+	CALL_PDEBUG("me4000_ai_offset_enable() is executed\n");
+
+	tmp = me4000_inl(ai_context->ctrl_reg);
+	tmp |= ME4000_AI_CTRL_BIT_OFFSET;
+	me4000_outl(tmp, ai_context->ctrl_reg);
+
+	return 0;
+}
+
+static int me4000_ai_offset_disable(me4000_ai_context_t * ai_context)
+{
+	unsigned long tmp;
+
+	CALL_PDEBUG("me4000_ai_offset_disable() is executed\n");
+
+	tmp = me4000_inl(ai_context->ctrl_reg);
+	tmp &= ~ME4000_AI_CTRL_BIT_OFFSET;
+	me4000_outl(tmp, ai_context->ctrl_reg);
+
+	return 0;
+}
+
+static int me4000_ai_fullscale_enable(me4000_ai_context_t * ai_context)
+{
+	unsigned long tmp;
+
+	CALL_PDEBUG("me4000_ai_fullscale_enable() is executed\n");
+
+	tmp = me4000_inl(ai_context->ctrl_reg);
+	tmp |= ME4000_AI_CTRL_BIT_FULLSCALE;
+	me4000_outl(tmp, ai_context->ctrl_reg);
+
+	return 0;
+}
+
+static int me4000_ai_fullscale_disable(me4000_ai_context_t * ai_context)
+{
+	unsigned long tmp;
+
+	CALL_PDEBUG("me4000_ai_fullscale_disable() is executed\n");
+
+	tmp = me4000_inl(ai_context->ctrl_reg);
+	tmp &= ~ME4000_AI_CTRL_BIT_FULLSCALE;
+	me4000_outl(tmp, ai_context->ctrl_reg);
+
+	return 0;
+}
+
+static int me4000_ai_fsm_state(int *arg, me4000_ai_context_t * ai_context)
+{
+	unsigned long tmp;
+
+	CALL_PDEBUG("me4000_ai_fsm_state() is executed\n");
+
+	tmp =
+	    (me4000_inl(ai_context->status_reg) & ME4000_AI_STATUS_BIT_FSM) ? 1
+	    : 0;
+
+	if (put_user(tmp, arg)) {
+		printk(KERN_ERR "me4000_ai_fsm_state():Cannot copy to user\n");
+		return -EFAULT;
+	}
+
+	return 0;
+}
+
+static int me4000_ai_get_count_buffer(unsigned long *arg,
+				      me4000_ai_context_t * ai_context)
+{
+	unsigned long c;
+	int err;
+
+	c = me4000_buf_count(ai_context->circ_buf, ME4000_AI_BUFFER_COUNT);
+
+	err = copy_to_user(arg, &c, sizeof(unsigned long));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_ai_get_count_buffer():Can't copy to user space\n");
+		return -EFAULT;
+	}
+
+	return 0;
+}
+
+/*---------------------------------- EEPROM stuff ---------------------------*/
+
+static int eeprom_write_cmd(me4000_ai_context_t * ai_context, unsigned long cmd,
+			    int length)
+{
+	int i;
+	unsigned long value;
+
+	CALL_PDEBUG("eeprom_write_cmd() is executed\n");
+
+	PDEBUG("eeprom_write_cmd():Write command 0x%08lX with length = %d\n",
+	       cmd, length);
+
+	/* Get the ICR register and clear the related bits */
+	value = me4000_inl(ai_context->board_info->plx_regbase + PLX_ICR);
+	value &= ~(PLX_ICR_MASK_EEPROM);
+	me4000_outl(value, ai_context->board_info->plx_regbase + PLX_ICR);
+
+	/* Raise the chip select */
+	value |= PLX_ICR_BIT_EEPROM_CHIP_SELECT;
+	me4000_outl(value, ai_context->board_info->plx_regbase + PLX_ICR);
+	udelay(EEPROM_DELAY);
+
+	for (i = 0; i < length; i++) {
+		if (cmd & ((0x1 << (length - 1)) >> i)) {
+			value |= PLX_ICR_BIT_EEPROM_WRITE;
+		} else {
+			value &= ~PLX_ICR_BIT_EEPROM_WRITE;
+		}
+
+		/* Write to EEPROM */
+		me4000_outl(value,
+			    ai_context->board_info->plx_regbase + PLX_ICR);
+		udelay(EEPROM_DELAY);
+
+		/* Raising edge of the clock */
+		value |= PLX_ICR_BIT_EEPROM_CLOCK_SET;
+		me4000_outl(value,
+			    ai_context->board_info->plx_regbase + PLX_ICR);
+		udelay(EEPROM_DELAY);
+
+		/* Falling edge of the clock */
+		value &= ~PLX_ICR_BIT_EEPROM_CLOCK_SET;
+		me4000_outl(value,
+			    ai_context->board_info->plx_regbase + PLX_ICR);
+		udelay(EEPROM_DELAY);
+	}
+
+	/* Clear the chip select */
+	value &= ~PLX_ICR_BIT_EEPROM_CHIP_SELECT;
+	me4000_outl(value, ai_context->board_info->plx_regbase + PLX_ICR);
+	udelay(EEPROM_DELAY);
+
+	/* Wait until hardware is ready for sure */
+	mdelay(10);
+
+	return 0;
+}
+
+static unsigned short eeprom_read_cmd(me4000_ai_context_t * ai_context,
+				      unsigned long cmd, int length)
+{
+	int i;
+	unsigned long value;
+	unsigned short id = 0;
+
+	CALL_PDEBUG("eeprom_read_cmd() is executed\n");
+
+	PDEBUG("eeprom_read_cmd():Read command 0x%08lX with length = %d\n", cmd,
+	       length);
+
+	/* Get the ICR register and clear the related bits */
+	value = me4000_inl(ai_context->board_info->plx_regbase + PLX_ICR);
+	value &= ~(PLX_ICR_MASK_EEPROM);
+
+	me4000_outl(value, ai_context->board_info->plx_regbase + PLX_ICR);
+
+	/* Raise the chip select */
+	value |= PLX_ICR_BIT_EEPROM_CHIP_SELECT;
+	me4000_outl(value, ai_context->board_info->plx_regbase + PLX_ICR);
+	udelay(EEPROM_DELAY);
+
+	/* Write the read command to the eeprom */
+	for (i = 0; i < length; i++) {
+		if (cmd & ((0x1 << (length - 1)) >> i)) {
+			value |= PLX_ICR_BIT_EEPROM_WRITE;
+		} else {
+			value &= ~PLX_ICR_BIT_EEPROM_WRITE;
+		}
+		me4000_outl(value,
+			    ai_context->board_info->plx_regbase + PLX_ICR);
+		udelay(EEPROM_DELAY);
+
+		/* Raising edge of the clock */
+		value |= PLX_ICR_BIT_EEPROM_CLOCK_SET;
+		me4000_outl(value,
+			    ai_context->board_info->plx_regbase + PLX_ICR);
+		udelay(EEPROM_DELAY);
+
+		/* Falling edge of the clock */
+		value &= ~PLX_ICR_BIT_EEPROM_CLOCK_SET;
+		me4000_outl(value,
+			    ai_context->board_info->plx_regbase + PLX_ICR);
+		udelay(EEPROM_DELAY);
+	}
+
+	/* Read the value from the eeprom */
+	for (i = 0; i < 16; i++) {
+		/* Raising edge of the clock */
+		value |= PLX_ICR_BIT_EEPROM_CLOCK_SET;
+		me4000_outl(value,
+			    ai_context->board_info->plx_regbase + PLX_ICR);
+		udelay(EEPROM_DELAY);
+
+		if (me4000_inl(ai_context->board_info->plx_regbase + PLX_ICR) &
+		    PLX_ICR_BIT_EEPROM_READ) {
+			id |= (0x8000 >> i);
+			PDEBUG("eeprom_read_cmd():OR with 0x%04X\n",
+			       (0x8000 >> i));
+		} else {
+			PDEBUG("eeprom_read_cmd():Dont't OR\n");
+		}
+
+		/* Falling edge of the clock */
+		value &= ~PLX_ICR_BIT_EEPROM_CLOCK_SET;
+		me4000_outl(value,
+			    ai_context->board_info->plx_regbase + PLX_ICR);
+		udelay(EEPROM_DELAY);
+	}
+
+	/* Clear the chip select */
+	value &= ~PLX_ICR_BIT_EEPROM_CHIP_SELECT;
+	me4000_outl(value, ai_context->board_info->plx_regbase + PLX_ICR);
+	udelay(EEPROM_DELAY);
+
+	return id;
+}
+
+static int me4000_eeprom_write(me4000_eeprom_t * arg,
+			       me4000_ai_context_t * ai_context)
+{
+	int err;
+	me4000_eeprom_t setup;
+	unsigned long cmd;
+	unsigned long date_high;
+	unsigned long date_low;
+
+	CALL_PDEBUG("me4000_eeprom_write() is executed\n");
+
+	err = copy_from_user(&setup, arg, sizeof(setup));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_eeprom_write():Cannot copy from user\n");
+		return err;
+	}
+
+	/* Enable writing */
+	eeprom_write_cmd(ai_context, ME4000_EEPROM_CMD_WRITE_ENABLE,
+			 ME4000_EEPROM_CMD_LENGTH_WRITE_ENABLE);
+
+	/* Command for date */
+	date_high = (setup.date & 0xFFFF0000) >> 16;
+	date_low = (setup.date & 0x0000FFFF);
+
+	cmd =
+	    ME4000_EEPROM_CMD_WRITE | (ME4000_EEPROM_ADR_DATE_HIGH <<
+				       ME4000_EEPROM_DATA_LENGTH) | (0xFFFF &
+								     (unsigned
+								      long)
+								     date_high);
+	err = eeprom_write_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_WRITE);
+	if (err)
+		return err;
+
+	cmd =
+	    ME4000_EEPROM_CMD_WRITE | (ME4000_EEPROM_ADR_DATE_LOW <<
+				       ME4000_EEPROM_DATA_LENGTH) | (0xFFFF &
+								     (unsigned
+								      long)
+								     date_low);
+	err = eeprom_write_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_WRITE);
+	if (err)
+		return err;
+
+	/* Command for unipolar 10V offset */
+	cmd =
+	    ME4000_EEPROM_CMD_WRITE | (ME4000_EEPROM_ADR_GAIN_1_UNI_OFFSET <<
+				       ME4000_EEPROM_DATA_LENGTH) | (0xFFFF &
+								     (unsigned
+								      long)
+								     setup.
+								     uni_10_offset);
+	err = eeprom_write_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_WRITE);
+	if (err)
+		return err;
+
+	/* Command for unipolar 10V fullscale */
+	cmd =
+	    ME4000_EEPROM_CMD_WRITE | (ME4000_EEPROM_ADR_GAIN_1_UNI_FULLSCALE <<
+				       ME4000_EEPROM_DATA_LENGTH) | (0xFFFF &
+								     (unsigned
+								      long)
+								     setup.
+								     uni_10_fullscale);
+	err = eeprom_write_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_WRITE);
+	if (err)
+		return err;
+
+	/* Command for unipolar 2,5V offset */
+	cmd =
+	    ME4000_EEPROM_CMD_WRITE | (ME4000_EEPROM_ADR_GAIN_4_UNI_OFFSET <<
+				       ME4000_EEPROM_DATA_LENGTH) | (0xFFFF &
+								     (unsigned
+								      long)
+								     setup.
+								     uni_2_5_offset);
+	err = eeprom_write_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_WRITE);
+	if (err)
+		return err;
+
+	/* Command for unipolar 2,5V fullscale */
+	cmd =
+	    ME4000_EEPROM_CMD_WRITE | (ME4000_EEPROM_ADR_GAIN_4_UNI_FULLSCALE <<
+				       ME4000_EEPROM_DATA_LENGTH) | (0xFFFF &
+								     (unsigned
+								      long)
+								     setup.
+								     uni_2_5_fullscale);
+	err = eeprom_write_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_WRITE);
+	if (err)
+		return err;
+
+	/* Command for bipolar 10V offset */
+	cmd =
+	    ME4000_EEPROM_CMD_WRITE | (ME4000_EEPROM_ADR_GAIN_1_BI_OFFSET <<
+				       ME4000_EEPROM_DATA_LENGTH) | (0xFFFF &
+								     (unsigned
+								      long)
+								     setup.
+								     bi_10_offset);
+	err = eeprom_write_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_WRITE);
+	if (err)
+		return err;
+
+	/* Command for bipolar 10V fullscale */
+	cmd =
+	    ME4000_EEPROM_CMD_WRITE | (ME4000_EEPROM_ADR_GAIN_1_BI_FULLSCALE <<
+				       ME4000_EEPROM_DATA_LENGTH) | (0xFFFF &
+								     (unsigned
+								      long)
+								     setup.
+								     bi_10_fullscale);
+	err = eeprom_write_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_WRITE);
+	if (err)
+		return err;
+
+	/* Command for bipolar 2,5V offset */
+	cmd =
+	    ME4000_EEPROM_CMD_WRITE | (ME4000_EEPROM_ADR_GAIN_4_BI_OFFSET <<
+				       ME4000_EEPROM_DATA_LENGTH) | (0xFFFF &
+								     (unsigned
+								      long)
+								     setup.
+								     bi_2_5_offset);
+	err = eeprom_write_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_WRITE);
+	if (err)
+		return err;
+
+	/* Command for bipolar 2,5V fullscale */
+	cmd =
+	    ME4000_EEPROM_CMD_WRITE | (ME4000_EEPROM_ADR_GAIN_4_BI_FULLSCALE <<
+				       ME4000_EEPROM_DATA_LENGTH) | (0xFFFF &
+								     (unsigned
+								      long)
+								     setup.
+								     bi_2_5_fullscale);
+	err = eeprom_write_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_WRITE);
+	if (err)
+		return err;
+
+	/* Command for differential 10V offset */
+	cmd =
+	    ME4000_EEPROM_CMD_WRITE | (ME4000_EEPROM_ADR_GAIN_1_DIFF_OFFSET <<
+				       ME4000_EEPROM_DATA_LENGTH) | (0xFFFF &
+								     (unsigned
+								      long)
+								     setup.
+								     diff_10_offset);
+	err = eeprom_write_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_WRITE);
+	if (err)
+		return err;
+
+	/* Command for differential 10V fullscale */
+	cmd =
+	    ME4000_EEPROM_CMD_WRITE | (ME4000_EEPROM_ADR_GAIN_1_DIFF_FULLSCALE
+				       << ME4000_EEPROM_DATA_LENGTH) | (0xFFFF &
+									(unsigned
+									 long)
+									setup.
+									diff_10_fullscale);
+	err = eeprom_write_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_WRITE);
+	if (err)
+		return err;
+
+	/* Command for differential 2,5V offset */
+	cmd =
+	    ME4000_EEPROM_CMD_WRITE | (ME4000_EEPROM_ADR_GAIN_4_DIFF_OFFSET <<
+				       ME4000_EEPROM_DATA_LENGTH) | (0xFFFF &
+								     (unsigned
+								      long)
+								     setup.
+								     diff_2_5_offset);
+	err = eeprom_write_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_WRITE);
+	if (err)
+		return err;
+
+	/* Command for differential 2,5V fullscale */
+	cmd =
+	    ME4000_EEPROM_CMD_WRITE | (ME4000_EEPROM_ADR_GAIN_4_DIFF_FULLSCALE
+				       << ME4000_EEPROM_DATA_LENGTH) | (0xFFFF &
+									(unsigned
+									 long)
+									setup.
+									diff_2_5_fullscale);
+	err = eeprom_write_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_WRITE);
+	if (err)
+		return err;
+
+	/* Disable writing */
+	eeprom_write_cmd(ai_context, ME4000_EEPROM_CMD_WRITE_DISABLE,
+			 ME4000_EEPROM_CMD_LENGTH_WRITE_DISABLE);
+
+	return 0;
+}
+
+static int me4000_eeprom_read(me4000_eeprom_t * arg,
+			      me4000_ai_context_t * ai_context)
+{
+	int err;
+	unsigned long cmd;
+	me4000_eeprom_t setup;
+
+	CALL_PDEBUG("me4000_eeprom_read() is executed\n");
+
+	/* Command for date */
+	cmd = ME4000_EEPROM_CMD_READ | ME4000_EEPROM_ADR_DATE_HIGH;
+	setup.date =
+	    eeprom_read_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_READ);
+	setup.date <<= 16;
+	cmd = ME4000_EEPROM_CMD_READ | ME4000_EEPROM_ADR_DATE_LOW;
+	setup.date |=
+	    eeprom_read_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_READ);
+
+	/* Command for unipolar 10V offset */
+	cmd = ME4000_EEPROM_CMD_READ | ME4000_EEPROM_ADR_GAIN_1_UNI_OFFSET;
+	setup.uni_10_offset =
+	    eeprom_read_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_READ);
+
+	/* Command for unipolar 10V fullscale */
+	cmd = ME4000_EEPROM_CMD_READ | ME4000_EEPROM_ADR_GAIN_1_UNI_FULLSCALE;
+	setup.uni_10_fullscale =
+	    eeprom_read_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_READ);
+
+	/* Command for unipolar 2,5V offset */
+	cmd = ME4000_EEPROM_CMD_READ | ME4000_EEPROM_ADR_GAIN_4_UNI_OFFSET;
+	setup.uni_2_5_offset =
+	    eeprom_read_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_READ);
+
+	/* Command for unipolar 2,5V fullscale */
+	cmd = ME4000_EEPROM_CMD_READ | ME4000_EEPROM_ADR_GAIN_4_UNI_FULLSCALE;
+	setup.uni_2_5_fullscale =
+	    eeprom_read_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_READ);
+
+	/* Command for bipolar 10V offset */
+	cmd = ME4000_EEPROM_CMD_READ | ME4000_EEPROM_ADR_GAIN_1_BI_OFFSET;
+	setup.bi_10_offset =
+	    eeprom_read_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_READ);
+
+	/* Command for bipolar 10V fullscale */
+	cmd = ME4000_EEPROM_CMD_READ | ME4000_EEPROM_ADR_GAIN_1_BI_FULLSCALE;
+	setup.bi_10_fullscale =
+	    eeprom_read_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_READ);
+
+	/* Command for bipolar 2,5V offset */
+	cmd = ME4000_EEPROM_CMD_READ | ME4000_EEPROM_ADR_GAIN_4_BI_OFFSET;
+	setup.bi_2_5_offset =
+	    eeprom_read_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_READ);
+
+	/* Command for bipolar 2,5V fullscale */
+	cmd = ME4000_EEPROM_CMD_READ | ME4000_EEPROM_ADR_GAIN_4_BI_FULLSCALE;
+	setup.bi_2_5_fullscale =
+	    eeprom_read_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_READ);
+
+	/* Command for differntial 10V offset */
+	cmd = ME4000_EEPROM_CMD_READ | ME4000_EEPROM_ADR_GAIN_1_DIFF_OFFSET;
+	setup.diff_10_offset =
+	    eeprom_read_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_READ);
+
+	/* Command for differential 10V fullscale */
+	cmd = ME4000_EEPROM_CMD_READ | ME4000_EEPROM_ADR_GAIN_1_DIFF_FULLSCALE;
+	setup.diff_10_fullscale =
+	    eeprom_read_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_READ);
+
+	/* Command for differntial 2,5V offset */
+	cmd = ME4000_EEPROM_CMD_READ | ME4000_EEPROM_ADR_GAIN_4_DIFF_OFFSET;
+	setup.diff_2_5_offset =
+	    eeprom_read_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_READ);
+
+	/* Command for differential 2,5V fullscale */
+	cmd = ME4000_EEPROM_CMD_READ | ME4000_EEPROM_ADR_GAIN_4_DIFF_FULLSCALE;
+	setup.diff_2_5_fullscale =
+	    eeprom_read_cmd(ai_context, cmd, ME4000_EEPROM_CMD_LENGTH_READ);
+
+	err = copy_to_user(arg, &setup, sizeof(setup));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_eeprom_read():Cannot copy to user\n");
+		return err;
+	}
+
+	return 0;
+}
+
+/*------------------------------------ DIO stuff ----------------------------------------------*/
+
+static int me4000_dio_ioctl(struct inode *inode_p, struct file *file_p,
+			    unsigned int service, unsigned long arg)
+{
+	me4000_dio_context_t *dio_context;
+
+	CALL_PDEBUG("me4000_dio_ioctl() is executed\n");
+
+	dio_context = file_p->private_data;
+
+	if (_IOC_TYPE(service) != ME4000_MAGIC) {
+		printk(KERN_ERR "me4000_dio_ioctl():Wrong magic number\n");
+		return -ENOTTY;
+	}
+	if (_IOC_NR(service) > ME4000_IOCTL_MAXNR) {
+		printk(KERN_ERR "me4000_dio_ioctl():Service number to high\n");
+		return -ENOTTY;
+	}
+
+	switch (service) {
+	case ME4000_DIO_CONFIG:
+		return me4000_dio_config((me4000_dio_config_t *) arg,
+					 dio_context);
+	case ME4000_DIO_SET_BYTE:
+		return me4000_dio_set_byte((me4000_dio_byte_t *) arg,
+					   dio_context);
+	case ME4000_DIO_GET_BYTE:
+		return me4000_dio_get_byte((me4000_dio_byte_t *) arg,
+					   dio_context);
+	case ME4000_DIO_RESET:
+		return me4000_dio_reset(dio_context);
+	default:
+		printk(KERN_ERR
+		       "ME4000:me4000_dio_ioctl():Invalid service number %d\n",
+		       service);
+		return -ENOTTY;
+	}
+	return 0;
+}
+
+static int me4000_dio_config(me4000_dio_config_t * arg,
+			     me4000_dio_context_t * dio_context)
+{
+	me4000_dio_config_t cmd;
+	u32 tmp;
+	int err;
+
+	CALL_PDEBUG("me4000_dio_config() is executed\n");
+
+	/* Copy data from user */
+	err = copy_from_user(&cmd, arg, sizeof(me4000_dio_config_t));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_dio_config():Can't copy from user space\n");
+		return -EFAULT;
+	}
+
+	/* Check port parameter */
+	if (cmd.port >= dio_context->dio_count) {
+		printk(KERN_ERR
+		       "ME4000:me4000_dio_config():Port %d is not available\n",
+		       cmd.port);
+		return -EINVAL;
+	}
+
+	PDEBUG("me4000_dio_config(): port %d, mode %d, function %d\n", cmd.port,
+	       cmd.mode, cmd.function);
+
+	if (cmd.port == ME4000_DIO_PORT_A) {
+		if (cmd.mode == ME4000_DIO_PORT_INPUT) {
+			/* Check if opto isolated version */
+			if (!(me4000_inl(dio_context->dir_reg) & 0x1)) {
+				printk(KERN_ERR
+				       "ME4000:me4000_dio_config():Cannot set to input on opto isolated versions\n");
+				return -EIO;
+			}
+
+			tmp = me4000_inl(dio_context->ctrl_reg);
+			tmp &=
+			    ~(ME4000_DIO_CTRL_BIT_MODE_0 |
+			      ME4000_DIO_CTRL_BIT_MODE_1);
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else if (cmd.mode == ME4000_DIO_PORT_OUTPUT) {
+			tmp = me4000_inl(dio_context->ctrl_reg);
+			tmp &=
+			    ~(ME4000_DIO_CTRL_BIT_MODE_0 |
+			      ME4000_DIO_CTRL_BIT_MODE_1);
+			tmp |= ME4000_DIO_CTRL_BIT_MODE_0;
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else if (cmd.mode == ME4000_DIO_FIFO_LOW) {
+			tmp = me4000_inl(dio_context->ctrl_reg);
+			tmp &=
+			    ~(ME4000_DIO_CTRL_BIT_MODE_0 |
+			      ME4000_DIO_CTRL_BIT_MODE_1 |
+			      ME4000_DIO_CTRL_BIT_FIFO_HIGH_0);
+			tmp |=
+			    ME4000_DIO_CTRL_BIT_MODE_0 |
+			    ME4000_DIO_CTRL_BIT_MODE_1;
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else if (cmd.mode == ME4000_DIO_FIFO_HIGH) {
+			tmp = me4000_inl(dio_context->ctrl_reg);
+			tmp |=
+			    ME4000_DIO_CTRL_BIT_MODE_0 |
+			    ME4000_DIO_CTRL_BIT_MODE_1 |
+			    ME4000_DIO_CTRL_BIT_FIFO_HIGH_0;
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else {
+			printk(KERN_ERR
+			       "ME4000:me4000_dio_config():Mode %d is not available\n",
+			       cmd.mode);
+			return -EINVAL;
+		}
+	} else if (cmd.port == ME4000_DIO_PORT_B) {
+		if (cmd.mode == ME4000_DIO_PORT_INPUT) {
+			/* Only do anything when TTL version is installed */
+			if ((me4000_inl(dio_context->dir_reg) & 0x1)) {
+				tmp = me4000_inl(dio_context->ctrl_reg);
+				tmp &=
+				    ~(ME4000_DIO_CTRL_BIT_MODE_2 |
+				      ME4000_DIO_CTRL_BIT_MODE_3);
+				me4000_outl(tmp, dio_context->ctrl_reg);
+			}
+		} else if (cmd.mode == ME4000_DIO_PORT_OUTPUT) {
+			/* Check if opto isolated version */
+			if (!(me4000_inl(dio_context->dir_reg) & 0x1)) {
+				printk(KERN_ERR
+				       "ME4000:me4000_dio_config():Cannot set to output on opto isolated versions\n");
+				return -EIO;
+			}
+
+			tmp = me4000_inl(dio_context->ctrl_reg);
+			tmp &=
+			    ~(ME4000_DIO_CTRL_BIT_MODE_2 |
+			      ME4000_DIO_CTRL_BIT_MODE_3);
+			tmp |= ME4000_DIO_CTRL_BIT_MODE_2;
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else if (cmd.mode == ME4000_DIO_FIFO_LOW) {
+			/* Check if opto isolated version */
+			if (!(me4000_inl(dio_context->dir_reg) & 0x1)) {
+				printk(KERN_ERR
+				       "ME4000:me4000_dio_config():Cannot set to FIFO low output on opto isolated versions\n");
+				return -EIO;
+			}
+
+			tmp = me4000_inl(dio_context->ctrl_reg);
+			tmp &=
+			    ~(ME4000_DIO_CTRL_BIT_MODE_2 |
+			      ME4000_DIO_CTRL_BIT_MODE_3 |
+			      ME4000_DIO_CTRL_BIT_FIFO_HIGH_1);
+			tmp |=
+			    ME4000_DIO_CTRL_BIT_MODE_2 |
+			    ME4000_DIO_CTRL_BIT_MODE_3;
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else if (cmd.mode == ME4000_DIO_FIFO_HIGH) {
+			/* Check if opto isolated version */
+			if (!(me4000_inl(dio_context->dir_reg) & 0x1)) {
+				printk(KERN_ERR
+				       "ME4000:me4000_dio_config():Cannot set to FIFO high output on opto isolated versions\n");
+				return -EIO;
+			}
+
+			tmp = me4000_inl(dio_context->ctrl_reg);
+			tmp |=
+			    ME4000_DIO_CTRL_BIT_MODE_2 |
+			    ME4000_DIO_CTRL_BIT_MODE_3 |
+			    ME4000_DIO_CTRL_BIT_FIFO_HIGH_1;
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else {
+			printk(KERN_ERR
+			       "ME4000:me4000_dio_config():Mode %d is not available\n",
+			       cmd.mode);
+			return -EINVAL;
+		}
+	} else if (cmd.port == ME4000_DIO_PORT_C) {
+		if (cmd.mode == ME4000_DIO_PORT_INPUT) {
+			tmp = me4000_inl(dio_context->ctrl_reg);
+			tmp &=
+			    ~(ME4000_DIO_CTRL_BIT_MODE_4 |
+			      ME4000_DIO_CTRL_BIT_MODE_5);
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else if (cmd.mode == ME4000_DIO_PORT_OUTPUT) {
+			tmp = me4000_inl(dio_context->ctrl_reg);
+			tmp &=
+			    ~(ME4000_DIO_CTRL_BIT_MODE_4 |
+			      ME4000_DIO_CTRL_BIT_MODE_5);
+			tmp |= ME4000_DIO_CTRL_BIT_MODE_4;
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else if (cmd.mode == ME4000_DIO_FIFO_LOW) {
+			tmp = me4000_inl(dio_context->ctrl_reg);
+			tmp &=
+			    ~(ME4000_DIO_CTRL_BIT_MODE_4 |
+			      ME4000_DIO_CTRL_BIT_MODE_5 |
+			      ME4000_DIO_CTRL_BIT_FIFO_HIGH_2);
+			tmp |=
+			    ME4000_DIO_CTRL_BIT_MODE_4 |
+			    ME4000_DIO_CTRL_BIT_MODE_5;
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else if (cmd.mode == ME4000_DIO_FIFO_HIGH) {
+			tmp = me4000_inl(dio_context->ctrl_reg);
+			tmp |=
+			    ME4000_DIO_CTRL_BIT_MODE_4 |
+			    ME4000_DIO_CTRL_BIT_MODE_5 |
+			    ME4000_DIO_CTRL_BIT_FIFO_HIGH_2;
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else {
+			printk(KERN_ERR
+			       "ME4000:me4000_dio_config():Mode %d is not available\n",
+			       cmd.mode);
+			return -EINVAL;
+		}
+	} else if (cmd.port == ME4000_DIO_PORT_D) {
+		if (cmd.mode == ME4000_DIO_PORT_INPUT) {
+			tmp = me4000_inl(dio_context->ctrl_reg);
+			tmp &=
+			    ~(ME4000_DIO_CTRL_BIT_MODE_6 |
+			      ME4000_DIO_CTRL_BIT_MODE_7);
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else if (cmd.mode == ME4000_DIO_PORT_OUTPUT) {
+			tmp = me4000_inl(dio_context->ctrl_reg);
+			tmp &=
+			    ~(ME4000_DIO_CTRL_BIT_MODE_6 |
+			      ME4000_DIO_CTRL_BIT_MODE_7);
+			tmp |= ME4000_DIO_CTRL_BIT_MODE_6;
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else if (cmd.mode == ME4000_DIO_FIFO_LOW) {
+			tmp = me4000_inl(dio_context->ctrl_reg);
+			tmp &=
+			    ~(ME4000_DIO_CTRL_BIT_MODE_6 |
+			      ME4000_DIO_CTRL_BIT_MODE_7 |
+			      ME4000_DIO_CTRL_BIT_FIFO_HIGH_3);
+			tmp |=
+			    ME4000_DIO_CTRL_BIT_MODE_6 |
+			    ME4000_DIO_CTRL_BIT_MODE_7;
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else if (cmd.mode == ME4000_DIO_FIFO_HIGH) {
+			tmp = me4000_inl(dio_context->ctrl_reg);
+			tmp |=
+			    ME4000_DIO_CTRL_BIT_MODE_6 |
+			    ME4000_DIO_CTRL_BIT_MODE_7 |
+			    ME4000_DIO_CTRL_BIT_FIFO_HIGH_3;
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else {
+			printk(KERN_ERR
+			       "ME4000:me4000_dio_config():Mode %d is not available\n",
+			       cmd.mode);
+			return -EINVAL;
+		}
+	} else {
+		printk(KERN_ERR
+		       "ME4000:me4000_dio_config():Port %d is not available\n",
+		       cmd.port);
+		return -EINVAL;
+	}
+
+	PDEBUG("me4000_dio_config(): port %d, mode %d, function %d\n", cmd.port,
+	       cmd.mode, cmd.function);
+
+	if ((cmd.mode == ME4000_DIO_FIFO_HIGH)
+	    || (cmd.mode == ME4000_DIO_FIFO_LOW)) {
+		tmp = me4000_inl(dio_context->ctrl_reg);
+		tmp &=
+		    ~(ME4000_DIO_CTRL_BIT_FUNCTION_0 |
+		      ME4000_DIO_CTRL_BIT_FUNCTION_1);
+		if (cmd.function == ME4000_DIO_FUNCTION_PATTERN) {
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else if (cmd.function == ME4000_DIO_FUNCTION_DEMUX) {
+			tmp |= ME4000_DIO_CTRL_BIT_FUNCTION_0;
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else if (cmd.function == ME4000_DIO_FUNCTION_MUX) {
+			tmp |= ME4000_DIO_CTRL_BIT_FUNCTION_1;
+			me4000_outl(tmp, dio_context->ctrl_reg);
+		} else {
+			printk(KERN_ERR
+			       "ME4000:me4000_dio_config():Invalid port function specified\n");
+			return -EINVAL;
+		}
+	}
+
+	return 0;
+}
+
+static int me4000_dio_set_byte(me4000_dio_byte_t * arg,
+			       me4000_dio_context_t * dio_context)
+{
+	me4000_dio_byte_t cmd;
+	int err;
+
+	CALL_PDEBUG("me4000_dio_set_byte() is executed\n");
+
+	/* Copy data from user */
+	err = copy_from_user(&cmd, arg, sizeof(me4000_dio_byte_t));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_dio_set_byte():Can't copy from user space\n");
+		return -EFAULT;
+	}
+
+	/* Check port parameter */
+	if (cmd.port >= dio_context->dio_count) {
+		printk(KERN_ERR
+		       "ME4000:me4000_dio_set_byte():Port %d is not available\n",
+		       cmd.port);
+		return -EINVAL;
+	}
+
+	if (cmd.port == ME4000_DIO_PORT_A) {
+		if ((me4000_inl(dio_context->ctrl_reg) & 0x3) != 0x1) {
+			printk(KERN_ERR
+			       "ME4000:me4000_dio_set_byte():Port %d is not in output mode\n",
+			       cmd.port);
+			return -EIO;
+		}
+		me4000_outl(cmd.byte, dio_context->port_0_reg);
+	} else if (cmd.port == ME4000_DIO_PORT_B) {
+		if ((me4000_inl(dio_context->ctrl_reg) & 0xC) != 0x4) {
+			printk(KERN_ERR
+			       "ME4000:me4000_dio_set_byte():Port %d is not in output mode\n",
+			       cmd.port);
+			return -EIO;
+		}
+		me4000_outl(cmd.byte, dio_context->port_1_reg);
+	} else if (cmd.port == ME4000_DIO_PORT_C) {
+		if ((me4000_inl(dio_context->ctrl_reg) & 0x30) != 0x10) {
+			printk(KERN_ERR
+			       "ME4000:me4000_dio_set_byte():Port %d is not in output mode\n",
+			       cmd.port);
+			return -EIO;
+		}
+		me4000_outl(cmd.byte, dio_context->port_2_reg);
+	} else if (cmd.port == ME4000_DIO_PORT_D) {
+		if ((me4000_inl(dio_context->ctrl_reg) & 0xC0) != 0x40) {
+			printk(KERN_ERR
+			       "ME4000:me4000_dio_set_byte():Port %d is not in output mode\n",
+			       cmd.port);
+			return -EIO;
+		}
+		me4000_outl(cmd.byte, dio_context->port_3_reg);
+	} else {
+		printk(KERN_ERR
+		       "ME4000:me4000_dio_set_byte():Port %d is not available\n",
+		       cmd.port);
+		return -EINVAL;
+	}
+
+	return 0;
+}
+
+static int me4000_dio_get_byte(me4000_dio_byte_t * arg,
+			       me4000_dio_context_t * dio_context)
+{
+	me4000_dio_byte_t cmd;
+	int err;
+
+	CALL_PDEBUG("me4000_dio_get_byte() is executed\n");
+
+	/* Copy data from user */
+	err = copy_from_user(&cmd, arg, sizeof(me4000_dio_byte_t));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_dio_get_byte():Can't copy from user space\n");
+		return -EFAULT;
+	}
+
+	/* Check port parameter */
+	if (cmd.port >= dio_context->dio_count) {
+		printk(KERN_ERR
+		       "ME4000:me4000_dio_get_byte():Port %d is not available\n",
+		       cmd.port);
+		return -EINVAL;
+	}
+
+	if (cmd.port == ME4000_DIO_PORT_A) {
+		cmd.byte = me4000_inl(dio_context->port_0_reg) & 0xFF;
+	} else if (cmd.port == ME4000_DIO_PORT_B) {
+		cmd.byte = me4000_inl(dio_context->port_1_reg) & 0xFF;
+	} else if (cmd.port == ME4000_DIO_PORT_C) {
+		cmd.byte = me4000_inl(dio_context->port_2_reg) & 0xFF;
+	} else if (cmd.port == ME4000_DIO_PORT_D) {
+		cmd.byte = me4000_inl(dio_context->port_3_reg) & 0xFF;
+	} else {
+		printk(KERN_ERR
+		       "ME4000:me4000_dio_get_byte():Port %d is not available\n",
+		       cmd.port);
+		return -EINVAL;
+	}
+
+	/* Copy result back to user */
+	err = copy_to_user(arg, &cmd, sizeof(me4000_dio_byte_t));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_dio_get_byte():Can't copy to user space\n");
+		return -EFAULT;
+	}
+
+	return 0;
+}
+
+static int me4000_dio_reset(me4000_dio_context_t * dio_context)
+{
+	CALL_PDEBUG("me4000_dio_reset() is executed\n");
+
+	/* Clear the control register */
+	me4000_outl(0, dio_context->ctrl_reg);
+
+	/* Check for opto isolated version */
+	if (!(me4000_inl(dio_context->dir_reg) & 0x1)) {
+		me4000_outl(0x1, dio_context->ctrl_reg);
+		me4000_outl(0x0, dio_context->port_0_reg);
+	}
+
+	return 0;
+}
+
+/*------------------------------------ COUNTER STUFF ------------------------------------*/
+
+static int me4000_cnt_ioctl(struct inode *inode_p, struct file *file_p,
+			    unsigned int service, unsigned long arg)
+{
+	me4000_cnt_context_t *cnt_context;
+
+	CALL_PDEBUG("me4000_cnt_ioctl() is executed\n");
+
+	cnt_context = file_p->private_data;
+
+	if (_IOC_TYPE(service) != ME4000_MAGIC) {
+		printk(KERN_ERR "me4000_dio_ioctl():Wrong magic number\n");
+		return -ENOTTY;
+	}
+	if (_IOC_NR(service) > ME4000_IOCTL_MAXNR) {
+		printk(KERN_ERR "me4000_dio_ioctl():Service number to high\n");
+		return -ENOTTY;
+	}
+
+	switch (service) {
+	case ME4000_CNT_READ:
+		return me4000_cnt_read((me4000_cnt_t *) arg, cnt_context);
+	case ME4000_CNT_WRITE:
+		return me4000_cnt_write((me4000_cnt_t *) arg, cnt_context);
+	case ME4000_CNT_CONFIG:
+		return me4000_cnt_config((me4000_cnt_config_t *) arg,
+					 cnt_context);
+	case ME4000_CNT_RESET:
+		return me4000_cnt_reset(cnt_context);
+	default:
+		printk(KERN_ERR
+		       "ME4000:me4000_dio_ioctl():Invalid service number %d\n",
+		       service);
+		return -ENOTTY;
+	}
+	return 0;
+}
+
+static int me4000_cnt_config(me4000_cnt_config_t * arg,
+			     me4000_cnt_context_t * cnt_context)
+{
+	me4000_cnt_config_t cmd;
+	u8 counter;
+	u8 mode;
+	int err;
+
+	CALL_PDEBUG("me4000_cnt_config() is executed\n");
+
+	/* Copy data from user */
+	err = copy_from_user(&cmd, arg, sizeof(me4000_cnt_config_t));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_cnt_config():Can't copy from user space\n");
+		return -EFAULT;
+	}
+
+	/* Check counter parameter */
+	switch (cmd.counter) {
+	case ME4000_CNT_COUNTER_0:
+		counter = ME4000_CNT_CTRL_BIT_COUNTER_0;
+		break;
+	case ME4000_CNT_COUNTER_1:
+		counter = ME4000_CNT_CTRL_BIT_COUNTER_1;
+		break;
+	case ME4000_CNT_COUNTER_2:
+		counter = ME4000_CNT_CTRL_BIT_COUNTER_2;
+		break;
+	default:
+		printk(KERN_ERR
+		       "ME4000:me4000_cnt_config():Counter %d is not available\n",
+		       cmd.counter);
+		return -EINVAL;
+	}
+
+	/* Check mode parameter */
+	switch (cmd.mode) {
+	case ME4000_CNT_MODE_0:
+		mode = ME4000_CNT_CTRL_BIT_MODE_0;
+		break;
+	case ME4000_CNT_MODE_1:
+		mode = ME4000_CNT_CTRL_BIT_MODE_1;
+		break;
+	case ME4000_CNT_MODE_2:
+		mode = ME4000_CNT_CTRL_BIT_MODE_2;
+		break;
+	case ME4000_CNT_MODE_3:
+		mode = ME4000_CNT_CTRL_BIT_MODE_3;
+		break;
+	case ME4000_CNT_MODE_4:
+		mode = ME4000_CNT_CTRL_BIT_MODE_4;
+		break;
+	case ME4000_CNT_MODE_5:
+		mode = ME4000_CNT_CTRL_BIT_MODE_5;
+		break;
+	default:
+		printk(KERN_ERR
+		       "ME4000:me4000_cnt_config():Mode %d is not available\n",
+		       cmd.mode);
+		return -EINVAL;
+	}
+
+	/* Write the control word */
+	me4000_outb((counter | mode | 0x30), cnt_context->ctrl_reg);
+
+	return 0;
+}
+
+static int me4000_cnt_read(me4000_cnt_t * arg,
+			   me4000_cnt_context_t * cnt_context)
+{
+	me4000_cnt_t cmd;
+	u8 tmp;
+	int err;
+
+	CALL_PDEBUG("me4000_cnt_read() is executed\n");
+
+	/* Copy data from user */
+	err = copy_from_user(&cmd, arg, sizeof(me4000_cnt_t));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_cnt_read():Can't copy from user space\n");
+		return -EFAULT;
+	}
+
+	/* Read counter */
+	switch (cmd.counter) {
+	case ME4000_CNT_COUNTER_0:
+		tmp = me4000_inb(cnt_context->counter_0_reg);
+		cmd.value = tmp;
+		tmp = me4000_inb(cnt_context->counter_0_reg);
+		cmd.value |= ((u16) tmp) << 8;
+		break;
+	case ME4000_CNT_COUNTER_1:
+		tmp = me4000_inb(cnt_context->counter_1_reg);
+		cmd.value = tmp;
+		tmp = me4000_inb(cnt_context->counter_1_reg);
+		cmd.value |= ((u16) tmp) << 8;
+		break;
+	case ME4000_CNT_COUNTER_2:
+		tmp = me4000_inb(cnt_context->counter_2_reg);
+		cmd.value = tmp;
+		tmp = me4000_inb(cnt_context->counter_2_reg);
+		cmd.value |= ((u16) tmp) << 8;
+		break;
+	default:
+		printk(KERN_ERR
+		       "ME4000:me4000_cnt_read():Counter %d is not available\n",
+		       cmd.counter);
+		return -EINVAL;
+	}
+
+	/* Copy result back to user */
+	err = copy_to_user(arg, &cmd, sizeof(me4000_cnt_t));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_cnt_read():Can't copy to user space\n");
+		return -EFAULT;
+	}
+
+	return 0;
+}
+
+static int me4000_cnt_write(me4000_cnt_t * arg,
+			    me4000_cnt_context_t * cnt_context)
+{
+	me4000_cnt_t cmd;
+	u8 tmp;
+	int err;
+
+	CALL_PDEBUG("me4000_cnt_write() is executed\n");
+
+	/* Copy data from user */
+	err = copy_from_user(&cmd, arg, sizeof(me4000_cnt_t));
+	if (err) {
+		printk(KERN_ERR
+		       "ME4000:me4000_cnt_write():Can't copy from user space\n");
+		return -EFAULT;
+	}
+
+	/* Write counter */
+	switch (cmd.counter) {
+	case ME4000_CNT_COUNTER_0:
+		tmp = cmd.value & 0xFF;
+		me4000_outb(tmp, cnt_context->counter_0_reg);
+		tmp = (cmd.value >> 8) & 0xFF;
+		me4000_outb(tmp, cnt_context->counter_0_reg);
+		break;
+	case ME4000_CNT_COUNTER_1:
+		tmp = cmd.value & 0xFF;
+		me4000_outb(tmp, cnt_context->counter_1_reg);
+		tmp = (cmd.value >> 8) & 0xFF;
+		me4000_outb(tmp, cnt_context->counter_1_reg);
+		break;
+	case ME4000_CNT_COUNTER_2:
+		tmp = cmd.value & 0xFF;
+		me4000_outb(tmp, cnt_context->counter_2_reg);
+		tmp = (cmd.value >> 8) & 0xFF;
+		me4000_outb(tmp, cnt_context->counter_2_reg);
+		break;
+	default:
+		printk(KERN_ERR
+		       "ME4000:me4000_cnt_write():Counter %d is not available\n",
+		       cmd.counter);
+		return -EINVAL;
+	}
+
+	return 0;
+}
+
+static int me4000_cnt_reset(me4000_cnt_context_t * cnt_context)
+{
+	CALL_PDEBUG("me4000_cnt_reset() is executed\n");
+
+	/* Set the mode and value for counter 0 */
+	me4000_outb(0x30, cnt_context->ctrl_reg);
+	me4000_outb(0x00, cnt_context->counter_0_reg);
+	me4000_outb(0x00, cnt_context->counter_0_reg);
+
+	/* Set the mode and value for counter 1 */
+	me4000_outb(0x70, cnt_context->ctrl_reg);
+	me4000_outb(0x00, cnt_context->counter_1_reg);
+	me4000_outb(0x00, cnt_context->counter_1_reg);
+
+	/* Set the mode and value for counter 2 */
+	me4000_outb(0xB0, cnt_context->ctrl_reg);
+	me4000_outb(0x00, cnt_context->counter_2_reg);
+	me4000_outb(0x00, cnt_context->counter_2_reg);
+
+	return 0;
+}
+
+/*------------------------------------ External Interrupt stuff ------------------------------------*/
+
+static int me4000_ext_int_ioctl(struct inode *inode_p, struct file *file_p,
+				unsigned int service, unsigned long arg)
+{
+	me4000_ext_int_context_t *ext_int_context;
+
+	CALL_PDEBUG("me4000_ext_int_ioctl() is executed\n");
+
+	ext_int_context = file_p->private_data;
+
+	if (_IOC_TYPE(service) != ME4000_MAGIC) {
+		printk(KERN_ERR "me4000_ext_int_ioctl():Wrong magic number\n");
+		return -ENOTTY;
+	}
+	if (_IOC_NR(service) > ME4000_IOCTL_MAXNR) {
+		printk(KERN_ERR
+		       "me4000_ext_int_ioctl():Service number to high\n");
+		return -ENOTTY;
+	}
+
+	switch (service) {
+	case ME4000_EXT_INT_ENABLE:
+		return me4000_ext_int_enable(ext_int_context);
+	case ME4000_EXT_INT_DISABLE:
+		return me4000_ext_int_disable(ext_int_context);
+	case ME4000_EXT_INT_COUNT:
+		return me4000_ext_int_count((unsigned long *)arg,
+					    ext_int_context);
+	default:
+		printk(KERN_ERR
+		       "ME4000:me4000_ext_int_ioctl():Invalid service number %d\n",
+		       service);
+		return -ENOTTY;
+	}
+	return 0;
+}
+
+static int me4000_ext_int_enable(me4000_ext_int_context_t * ext_int_context)
+{
+	unsigned long tmp;
+
+	CALL_PDEBUG("me4000_ext_int_enable() is executed\n");
+
+	tmp = me4000_inl(ext_int_context->ctrl_reg);
+	tmp |= ME4000_AI_CTRL_BIT_EX_IRQ;
+	me4000_outl(tmp, ext_int_context->ctrl_reg);
+
+	return 0;
+}
+
+static int me4000_ext_int_disable(me4000_ext_int_context_t * ext_int_context)
+{
+	unsigned long tmp;
+
+	CALL_PDEBUG("me4000_ext_int_disable() is executed\n");
+
+	tmp = me4000_inl(ext_int_context->ctrl_reg);
+	tmp &= ~ME4000_AI_CTRL_BIT_EX_IRQ;
+	me4000_outl(tmp, ext_int_context->ctrl_reg);
+
+	return 0;
+}
+
+static int me4000_ext_int_count(unsigned long *arg,
+				me4000_ext_int_context_t * ext_int_context)
+{
+
+	CALL_PDEBUG("me4000_ext_int_count() is executed\n");
+
+	put_user(ext_int_context->int_count, arg);
+	return 0;
+}
+
+/*------------------------------------ General stuff ------------------------------------*/
+
+static int me4000_get_user_info(me4000_user_info_t * arg,
+				me4000_info_t * board_info)
+{
+	me4000_user_info_t user_info;
+
+	CALL_PDEBUG("me4000_get_user_info() is executed\n");
+
+	user_info.board_count = board_info->board_count;
+	user_info.plx_regbase = board_info->plx_regbase;
+	user_info.plx_regbase_size = board_info->plx_regbase_size;
+	user_info.me4000_regbase = board_info->me4000_regbase;
+	user_info.me4000_regbase_size = board_info->me4000_regbase_size;
+	user_info.serial_no = board_info->serial_no;
+	user_info.hw_revision = board_info->hw_revision;
+	user_info.vendor_id = board_info->vendor_id;
+	user_info.device_id = board_info->device_id;
+	user_info.pci_bus_no = board_info->pci_bus_no;
+	user_info.pci_dev_no = board_info->pci_dev_no;
+	user_info.pci_func_no = board_info->pci_func_no;
+	user_info.irq = board_info->irq;
+	user_info.irq_count = board_info->irq_count;
+	user_info.driver_version = ME4000_DRIVER_VERSION;
+	user_info.ao_count = board_info->board_p->ao.count;
+	user_info.ao_fifo_count = board_info->board_p->ao.fifo_count;
+
+	user_info.ai_count = board_info->board_p->ai.count;
+	user_info.ai_sh_count = board_info->board_p->ai.sh_count;
+	user_info.ai_ex_trig_analog = board_info->board_p->ai.ex_trig_analog;
+
+	user_info.dio_count = board_info->board_p->dio.count;
+
+	user_info.cnt_count = board_info->board_p->cnt.count;
+
+	if (copy_to_user(arg, &user_info, sizeof(me4000_user_info_t)))
+		return -EFAULT;
+
+	return 0;
+}
+
+/*------------------------------------ ISR STUFF ------------------------------------*/
+
+static int me4000_ext_int_fasync(int fd, struct file *file_ptr, int mode)
+{
+	int result = 0;
+	me4000_ext_int_context_t *ext_int_context;
+
+	CALL_PDEBUG("me4000_ext_int_fasync() is executed\n");
+
+	ext_int_context = file_ptr->private_data;
+
+	result =
+	    fasync_helper(fd, file_ptr, mode, &ext_int_context->fasync_ptr);
+
+	CALL_PDEBUG("me4000_ext_int_fasync() is leaved\n");
+	return result;
+}
+
+static irqreturn_t me4000_ao_isr(int irq, void *dev_id)
+{
+	u32 tmp;
+	u32 value;
+	me4000_ao_context_t *ao_context;
+	int i;
+	int c = 0;
+	int c1 = 0;
+	//unsigned long before;
+	//unsigned long after;
+
+	ISR_PDEBUG("me4000_ao_isr() is executed\n");
+
+	ao_context = dev_id;
+
+	/* Check if irq number is right */
+	if (irq != ao_context->irq) {
+		ISR_PDEBUG("me4000_ao_isr():incorrect interrupt num: %d\n",
+			   irq);
+		return IRQ_NONE;
+	}
+
+	/* Check if this DAC rised an interrupt */
+	if (!
+	    ((0x1 << (ao_context->index + 3)) &
+	     me4000_inl(ao_context->irq_status_reg))) {
+		ISR_PDEBUG("me4000_ao_isr():Not this DAC\n");
+		return IRQ_NONE;
+	}
+
+	/* Read status register to find out what happened */
+	tmp = me4000_inl(ao_context->status_reg);
+
+	if (!(tmp & ME4000_AO_STATUS_BIT_EF) && (tmp & ME4000_AO_STATUS_BIT_HF)
+	    && (tmp & ME4000_AO_STATUS_BIT_HF)) {
+		c = ME4000_AO_FIFO_COUNT;
+		ISR_PDEBUG("me4000_ao_isr():Fifo empty\n");
+	} else if ((tmp & ME4000_AO_STATUS_BIT_EF)
+		   && (tmp & ME4000_AO_STATUS_BIT_HF)
+		   && (tmp & ME4000_AO_STATUS_BIT_HF)) {
+		c = ME4000_AO_FIFO_COUNT / 2;
+		ISR_PDEBUG("me4000_ao_isr():Fifo under half full\n");
+	} else {
+		c = 0;
+		ISR_PDEBUG("me4000_ao_isr():Fifo full\n");
+	}
+
+	ISR_PDEBUG("me4000_ao_isr():Try to write 0x%04X values\n", c);
+
+	while (1) {
+		c1 = me4000_values_to_end(ao_context->circ_buf,
+					  ME4000_AO_BUFFER_COUNT);
+		ISR_PDEBUG("me4000_ao_isr():Values to end = %d\n", c1);
+		if (c1 > c)
+			c1 = c;
+
+		if (c1 <= 0) {
+			ISR_PDEBUG
+			    ("me4000_ao_isr():Work done or buffer empty\n");
+			break;
+		}
+		//rdtscl(before);
+		if (((ao_context->fifo_reg & 0xFF) == ME4000_AO_01_FIFO_REG) ||
+		    ((ao_context->fifo_reg & 0xFF) == ME4000_AO_03_FIFO_REG)) {
+			for (i = 0; i < c1; i++) {
+				value =
+				    ((u32)
+				     (*
+				      (ao_context->circ_buf.buf +
+				       ao_context->circ_buf.tail + i))) << 16;
+				outl(value, ao_context->fifo_reg);
+			}
+		} else
+			outsw(ao_context->fifo_reg,
+			      ao_context->circ_buf.buf +
+			      ao_context->circ_buf.tail, c1);
+
+		//rdtscl(after);
+		//printk(KERN_ERR"ME4000:me4000_ao_isr():Time lapse = %lu\n", after - before);
+
+		ao_context->circ_buf.tail =
+		    (ao_context->circ_buf.tail + c1) & (ME4000_AO_BUFFER_COUNT -
+							1);
+		ISR_PDEBUG("me4000_ao_isr():%d values wrote to port 0x%04X\n",
+			   c1, ao_context->fifo_reg);
+		c -= c1;
+	}
+
+	/* If there are no values left in the buffer, disable interrupts */
+	spin_lock(&ao_context->int_lock);
+	if (!me4000_buf_count(ao_context->circ_buf, ME4000_AO_BUFFER_COUNT)) {
+		ISR_PDEBUG
+		    ("me4000_ao_isr():Disable Interrupt because no values left in buffer\n");
+		tmp = me4000_inl(ao_context->ctrl_reg);
+		tmp &= ~ME4000_AO_CTRL_BIT_ENABLE_IRQ;
+		me4000_outl(tmp, ao_context->ctrl_reg);
+	}
+	spin_unlock(&ao_context->int_lock);
+
+	/* Reset the interrupt */
+	spin_lock(&ao_context->int_lock);
+	tmp = me4000_inl(ao_context->ctrl_reg);
+	tmp |= ME4000_AO_CTRL_BIT_RESET_IRQ;
+	me4000_outl(tmp, ao_context->ctrl_reg);
+	tmp &= ~ME4000_AO_CTRL_BIT_RESET_IRQ;
+	me4000_outl(tmp, ao_context->ctrl_reg);
+
+	/* If state machine is stopped, flow was interrupted */
+	if (!(me4000_inl(ao_context->status_reg) & ME4000_AO_STATUS_BIT_FSM)) {
+		printk(KERN_ERR "ME4000:me4000_ao_isr():Broken pipe\n");
+		ao_context->pipe_flag = 1;	// Set flag in order to inform write routine
+		tmp &= ~ME4000_AO_CTRL_BIT_ENABLE_IRQ;	// Disable interrupt
+	}
+	me4000_outl(tmp, ao_context->ctrl_reg);
+	spin_unlock(&ao_context->int_lock);
+
+	/* Wake up waiting process */
+	wake_up_interruptible(&(ao_context->wait_queue));
+
+	/* Count the interrupt */
+	ao_context->board_info->irq_count++;
+
+	return IRQ_HANDLED;
+}
+
+static irqreturn_t me4000_ai_isr(int irq, void *dev_id)
+{
+	u32 tmp;
+	me4000_ai_context_t *ai_context;
+	int i;
+	int c = 0;
+	int c1 = 0;
+#ifdef ME4000_ISR_DEBUG
+	unsigned long before;
+	unsigned long after;
+#endif
+
+	ISR_PDEBUG("me4000_ai_isr() is executed\n");
+
+#ifdef ME4000_ISR_DEBUG
+	rdtscl(before);
+#endif
+
+	ai_context = dev_id;
+
+	/* Check if irq number is right */
+	if (irq != ai_context->irq) {
+		ISR_PDEBUG("me4000_ai_isr():incorrect interrupt num: %d\n",
+			   irq);
+		return IRQ_NONE;
+	}
+
+	if (me4000_inl(ai_context->irq_status_reg) &
+	    ME4000_IRQ_STATUS_BIT_AI_HF) {
+		ISR_PDEBUG
+		    ("me4000_ai_isr():Fifo half full interrupt occured\n");
+
+		/* Read status register to find out what happened */
+		tmp = me4000_inl(ai_context->ctrl_reg);
+
+		if (!(tmp & ME4000_AI_STATUS_BIT_FF_DATA) &&
+		    !(tmp & ME4000_AI_STATUS_BIT_HF_DATA)
+		    && (tmp & ME4000_AI_STATUS_BIT_EF_DATA)) {
+			ISR_PDEBUG("me4000_ai_isr():Fifo full\n");
+			c = ME4000_AI_FIFO_COUNT;
+
+			/* FIFO overflow, so stop conversion and disable all interrupts */
+			spin_lock(&ai_context->int_lock);
+			tmp = me4000_inl(ai_context->ctrl_reg);
+			tmp |= ME4000_AI_CTRL_BIT_IMMEDIATE_STOP;
+			tmp &=
+			    ~(ME4000_AI_CTRL_BIT_HF_IRQ |
+			      ME4000_AI_CTRL_BIT_SC_IRQ);
+			outl(tmp, ai_context->ctrl_reg);
+			spin_unlock(&ai_context->int_lock);
+		} else if ((tmp & ME4000_AI_STATUS_BIT_FF_DATA) &&
+			   !(tmp & ME4000_AI_STATUS_BIT_HF_DATA)
+			   && (tmp & ME4000_AI_STATUS_BIT_EF_DATA)) {
+			ISR_PDEBUG("me4000_ai_isr():Fifo half full\n");
+			c = ME4000_AI_FIFO_COUNT / 2;
+		} else {
+			c = 0;
+			ISR_PDEBUG
+			    ("me4000_ai_isr():Can't determine state of fifo\n");
+		}
+
+		ISR_PDEBUG("me4000_ai_isr():Try to read %d values\n", c);
+
+		while (1) {
+			c1 = me4000_space_to_end(ai_context->circ_buf,
+						 ME4000_AI_BUFFER_COUNT);
+			ISR_PDEBUG("me4000_ai_isr():Space to end = %d\n", c1);
+			if (c1 > c)
+				c1 = c;
+
+			if (c1 <= 0) {
+				ISR_PDEBUG
+				    ("me4000_ai_isr():Work done or buffer full\n");
+				break;
+			}
+
+			insw(ai_context->data_reg,
+			     ai_context->circ_buf.buf +
+			     ai_context->circ_buf.head, c1);
+			ai_context->circ_buf.head =
+			    (ai_context->circ_buf.head +
+			     c1) & (ME4000_AI_BUFFER_COUNT - 1);
+			c -= c1;
+		}
+
+		/* Work is done, so reset the interrupt */
+		ISR_PDEBUG
+		    ("me4000_ai_isr():reset interrupt fifo half full interrupt\n");
+		spin_lock(&ai_context->int_lock);
+		tmp = me4000_inl(ai_context->ctrl_reg);
+		tmp |= ME4000_AI_CTRL_BIT_HF_IRQ_RESET;
+		me4000_outl(tmp, ai_context->ctrl_reg);
+		tmp &= ~ME4000_AI_CTRL_BIT_HF_IRQ_RESET;
+		me4000_outl(tmp, ai_context->ctrl_reg);
+		spin_unlock(&ai_context->int_lock);
+	}
+
+	if (me4000_inl(ai_context->irq_status_reg) & ME4000_IRQ_STATUS_BIT_SC) {
+		ISR_PDEBUG
+		    ("me4000_ai_isr():Sample counter interrupt occured\n");
+
+		if (!ai_context->sample_counter_reload) {
+			ISR_PDEBUG
+			    ("me4000_ai_isr():Single data block available\n");
+
+			/* Poll data until fifo empty */
+			for (i = 0;
+			     (i < ME4000_AI_FIFO_COUNT / 2)
+			     && (inl(ai_context->ctrl_reg) &
+				 ME4000_AI_STATUS_BIT_EF_DATA); i++) {
+				if (me4000_space_to_end
+				    (ai_context->circ_buf,
+				     ME4000_AI_BUFFER_COUNT)) {
+					*(ai_context->circ_buf.buf +
+					  ai_context->circ_buf.head) =
+		 inw(ai_context->data_reg);
+					ai_context->circ_buf.head =
+					    (ai_context->circ_buf.head +
+					     1) & (ME4000_AI_BUFFER_COUNT - 1);
+				} else
+					break;
+			}
+			ISR_PDEBUG("me4000_ai_isr():%d values read\n", i);
+		} else {
+			if (ai_context->sample_counter <=
+			    ME4000_AI_FIFO_COUNT / 2) {
+				ISR_PDEBUG
+				    ("me4000_ai_isr():Interrupt from adjustable half full threshold\n");
+
+				/* Read status register to find out what happened */
+				tmp = me4000_inl(ai_context->ctrl_reg);
+
+				if (!(tmp & ME4000_AI_STATUS_BIT_FF_DATA) &&
+				    !(tmp & ME4000_AI_STATUS_BIT_HF_DATA)
+				    && (tmp & ME4000_AI_STATUS_BIT_EF_DATA)) {
+					ISR_PDEBUG
+					    ("me4000_ai_isr():Fifo full\n");
+					c = ME4000_AI_FIFO_COUNT;
+
+					/* FIFO overflow, so stop conversion */
+					spin_lock(&ai_context->int_lock);
+					tmp = me4000_inl(ai_context->ctrl_reg);
+					tmp |=
+					    ME4000_AI_CTRL_BIT_IMMEDIATE_STOP;
+					outl(tmp, ai_context->ctrl_reg);
+					spin_unlock(&ai_context->int_lock);
+				} else if ((tmp & ME4000_AI_STATUS_BIT_FF_DATA)
+					   && !(tmp &
+						ME4000_AI_STATUS_BIT_HF_DATA)
+					   && (tmp &
+					       ME4000_AI_STATUS_BIT_EF_DATA)) {
+					ISR_PDEBUG
+					    ("me4000_ai_isr():Fifo half full\n");
+					c = ME4000_AI_FIFO_COUNT / 2;
+				} else {
+					c = ai_context->sample_counter;
+					ISR_PDEBUG
+					    ("me4000_ai_isr():Sample count values\n");
+				}
+
+				ISR_PDEBUG
+				    ("me4000_ai_isr():Try to read %d values\n",
+				     c);
+
+				while (1) {
+					c1 = me4000_space_to_end(ai_context->
+								 circ_buf,
+								 ME4000_AI_BUFFER_COUNT);
+					ISR_PDEBUG
+					    ("me4000_ai_isr():Space to end = %d\n",
+					     c1);
+					if (c1 > c)
+						c1 = c;
+
+					if (c1 <= 0) {
+						ISR_PDEBUG
+						    ("me4000_ai_isr():Work done or buffer full\n");
+						break;
+					}
+
+					insw(ai_context->data_reg,
+					     ai_context->circ_buf.buf +
+					     ai_context->circ_buf.head, c1);
+					ai_context->circ_buf.head =
+					    (ai_context->circ_buf.head +
+					     c1) & (ME4000_AI_BUFFER_COUNT - 1);
+					c -= c1;
+				}
+			} else {
+				ISR_PDEBUG
+				    ("me4000_ai_isr():Multiple data block available\n");
+
+				/* Read status register to find out what happened */
+				tmp = me4000_inl(ai_context->ctrl_reg);
+
+				if (!(tmp & ME4000_AI_STATUS_BIT_FF_DATA) &&
+				    !(tmp & ME4000_AI_STATUS_BIT_HF_DATA)
+				    && (tmp & ME4000_AI_STATUS_BIT_EF_DATA)) {
+					ISR_PDEBUG
+					    ("me4000_ai_isr():Fifo full\n");
+					c = ME4000_AI_FIFO_COUNT;
+
+					/* FIFO overflow, so stop conversion */
+					spin_lock(&ai_context->int_lock);
+					tmp = me4000_inl(ai_context->ctrl_reg);
+					tmp |=
+					    ME4000_AI_CTRL_BIT_IMMEDIATE_STOP;
+					outl(tmp, ai_context->ctrl_reg);
+					spin_unlock(&ai_context->int_lock);
+
+					while (1) {
+						c1 = me4000_space_to_end
+						    (ai_context->circ_buf,
+						     ME4000_AI_BUFFER_COUNT);
+						ISR_PDEBUG
+						    ("me4000_ai_isr():Space to end = %d\n",
+						     c1);
+						if (c1 > c)
+							c1 = c;
+
+						if (c1 <= 0) {
+							ISR_PDEBUG
+							    ("me4000_ai_isr():Work done or buffer full\n");
+							break;
+						}
+
+						insw(ai_context->data_reg,
+						     ai_context->circ_buf.buf +
+						     ai_context->circ_buf.head,
+						     c1);
+						ai_context->circ_buf.head =
+						    (ai_context->circ_buf.head +
+						     c1) &
+						    (ME4000_AI_BUFFER_COUNT -
+						     1);
+						c -= c1;
+					}
+				} else if ((tmp & ME4000_AI_STATUS_BIT_FF_DATA)
+					   && !(tmp &
+						ME4000_AI_STATUS_BIT_HF_DATA)
+					   && (tmp &
+					       ME4000_AI_STATUS_BIT_EF_DATA)) {
+					ISR_PDEBUG
+					    ("me4000_ai_isr():Fifo half full\n");
+					c = ME4000_AI_FIFO_COUNT / 2;
+
+					while (1) {
+						c1 = me4000_space_to_end
+						    (ai_context->circ_buf,
+						     ME4000_AI_BUFFER_COUNT);
+						ISR_PDEBUG
+						    ("me4000_ai_isr():Space to end = %d\n",
+						     c1);
+						if (c1 > c)
+							c1 = c;
+
+						if (c1 <= 0) {
+							ISR_PDEBUG
+							    ("me4000_ai_isr():Work done or buffer full\n");
+							break;
+						}
+
+						insw(ai_context->data_reg,
+						     ai_context->circ_buf.buf +
+						     ai_context->circ_buf.head,
+						     c1);
+						ai_context->circ_buf.head =
+						    (ai_context->circ_buf.head +
+						     c1) &
+						    (ME4000_AI_BUFFER_COUNT -
+						     1);
+						c -= c1;
+					}
+				} else {
+					/* Poll data until fifo empty */
+					for (i = 0;
+					     (i < ME4000_AI_FIFO_COUNT / 2)
+					     && (inl(ai_context->ctrl_reg) &
+						 ME4000_AI_STATUS_BIT_EF_DATA);
+					     i++) {
+						if (me4000_space_to_end
+						    (ai_context->circ_buf,
+						     ME4000_AI_BUFFER_COUNT)) {
+							*(ai_context->circ_buf.
+							  buf +
+							  ai_context->circ_buf.
+							  head) =
+				       inw(ai_context->data_reg);
+							ai_context->circ_buf.
+							    head =
+							    (ai_context->
+							     circ_buf.head +
+							     1) &
+							    (ME4000_AI_BUFFER_COUNT
+							     - 1);
+						} else
+							break;
+					}
+					ISR_PDEBUG
+					    ("me4000_ai_isr():%d values read\n",
+					     i);
+				}
+			}
+		}
+
+		/* Work is done, so reset the interrupt */
+		ISR_PDEBUG
+		    ("me4000_ai_isr():reset interrupt from sample counter\n");
+		spin_lock(&ai_context->int_lock);
+		tmp = me4000_inl(ai_context->ctrl_reg);
+		tmp |= ME4000_AI_CTRL_BIT_SC_IRQ_RESET;
+		me4000_outl(tmp, ai_context->ctrl_reg);
+		tmp &= ~ME4000_AI_CTRL_BIT_SC_IRQ_RESET;
+		me4000_outl(tmp, ai_context->ctrl_reg);
+		spin_unlock(&ai_context->int_lock);
+	}
+
+	/* Values are now available, so wake up waiting process */
+	if (me4000_buf_count(ai_context->circ_buf, ME4000_AI_BUFFER_COUNT)) {
+		ISR_PDEBUG("me4000_ai_isr():Wake up waiting process\n");
+		wake_up_interruptible(&(ai_context->wait_queue));
+	}
+
+	/* If there is no space left in the buffer, disable interrupts */
+	spin_lock(&ai_context->int_lock);
+	if (!me4000_buf_space(ai_context->circ_buf, ME4000_AI_BUFFER_COUNT)) {
+		ISR_PDEBUG
+		    ("me4000_ai_isr():Disable Interrupt because no space left in buffer\n");
+		tmp = me4000_inl(ai_context->ctrl_reg);
+		tmp &=
+		    ~(ME4000_AI_CTRL_BIT_SC_IRQ | ME4000_AI_CTRL_BIT_HF_IRQ |
+		      ME4000_AI_CTRL_BIT_LE_IRQ);
+		me4000_outl(tmp, ai_context->ctrl_reg);
+	}
+	spin_unlock(&ai_context->int_lock);
+
+#ifdef ME4000_ISR_DEBUG
+	rdtscl(after);
+	printk(KERN_ERR "ME4000:me4000_ai_isr():Time lapse = %lu\n",
+	       after - before);
+#endif
+
+	return IRQ_HANDLED;
+}
+
+static irqreturn_t me4000_ext_int_isr(int irq, void *dev_id)
+{
+	me4000_ext_int_context_t *ext_int_context;
+	unsigned long tmp;
+
+	ISR_PDEBUG("me4000_ext_int_isr() is executed\n");
+
+	ext_int_context = dev_id;
+
+	/* Check if irq number is right */
+	if (irq != ext_int_context->irq) {
+		ISR_PDEBUG("me4000_ext_int_isr():incorrect interrupt num: %d\n",
+			   irq);
+		return IRQ_NONE;
+	}
+
+	if (me4000_inl(ext_int_context->irq_status_reg) &
+	    ME4000_IRQ_STATUS_BIT_EX) {
+		ISR_PDEBUG("me4000_ext_int_isr():External interrupt occured\n");
+		tmp = me4000_inl(ext_int_context->ctrl_reg);
+		tmp |= ME4000_AI_CTRL_BIT_EX_IRQ_RESET;
+		me4000_outl(tmp, ext_int_context->ctrl_reg);
+		tmp &= ~ME4000_AI_CTRL_BIT_EX_IRQ_RESET;
+		me4000_outl(tmp, ext_int_context->ctrl_reg);
+
+		ext_int_context->int_count++;
+
+		if (ext_int_context->fasync_ptr) {
+			ISR_PDEBUG
+			    ("me2600_ext_int_isr():Send signal to process\n");
+			kill_fasync(&ext_int_context->fasync_ptr, SIGIO,
+				    POLL_IN);
+		}
+	}
+
+	return IRQ_HANDLED;
+}
+
+void __exit me4000_module_exit(void)
+{
+	struct list_head *board_p;
+	me4000_info_t *board_info;
+
+	CALL_PDEBUG("cleanup_module() is executed\n");
+
+	unregister_chrdev(me4000_ext_int_major_driver_no, ME4000_EXT_INT_NAME);
+
+	unregister_chrdev(me4000_cnt_major_driver_no, ME4000_CNT_NAME);
+
+	unregister_chrdev(me4000_dio_major_driver_no, ME4000_DIO_NAME);
+
+	unregister_chrdev(me4000_ai_major_driver_no, ME4000_AI_NAME);
+
+	unregister_chrdev(me4000_ao_major_driver_no, ME4000_AO_NAME);
+
+	remove_proc_entry("me4000", NULL);
+
+	pci_unregister_driver(&me4000_driver);
+
+	/* Reset the boards */
+	for (board_p = me4000_board_info_list.next;
+	     board_p != &me4000_board_info_list; board_p = board_p->next) {
+		board_info = list_entry(board_p, me4000_info_t, list);
+		me4000_reset_board(board_info);
+	}
+
+	clear_board_info_list();
+}
+
+module_exit(me4000_module_exit);
+
+static int me4000_read_procmem(char *buf, char **start, off_t offset, int count,
+			       int *eof, void *data)
+{
+	int len = 0;
+	int limit = count - 1000;
+	me4000_info_t *board_info;
+	struct list_head *ptr;
+
+	len += sprintf(buf + len, "\nME4000 DRIVER VERSION %X.%X.%X\n\n",
+		       (ME4000_DRIVER_VERSION & 0xFF0000) >> 16,
+		       (ME4000_DRIVER_VERSION & 0xFF00) >> 8,
+		       (ME4000_DRIVER_VERSION & 0xFF));
+
+	/* Search for the board context */
+	for (ptr = me4000_board_info_list.next;
+	     (ptr != &me4000_board_info_list) && (len < limit);
+	     ptr = ptr->next) {
+		board_info = list_entry(ptr, me4000_info_t, list);
+
+		len +=
+		    sprintf(buf + len, "Board number %d:\n",
+			    board_info->board_count);
+		len += sprintf(buf + len, "---------------\n");
+		len +=
+		    sprintf(buf + len, "PLX base register = 0x%lX\n",
+			    board_info->plx_regbase);
+		len +=
+		    sprintf(buf + len, "PLX base register size = 0x%lX\n",
+			    board_info->plx_regbase_size);
+		len +=
+		    sprintf(buf + len, "ME4000 base register = 0x%lX\n",
+			    board_info->me4000_regbase);
+		len +=
+		    sprintf(buf + len, "ME4000 base register size = 0x%lX\n",
+			    board_info->me4000_regbase_size);
+		len +=
+		    sprintf(buf + len, "Serial number = 0x%X\n",
+			    board_info->serial_no);
+		len +=
+		    sprintf(buf + len, "Hardware revision = 0x%X\n",
+			    board_info->hw_revision);
+		len +=
+		    sprintf(buf + len, "Vendor id = 0x%X\n",
+			    board_info->vendor_id);
+		len +=
+		    sprintf(buf + len, "Device id = 0x%X\n",
+			    board_info->device_id);
+		len +=
+		    sprintf(buf + len, "PCI bus number = %d\n",
+			    board_info->pci_bus_no);
+		len +=
+		    sprintf(buf + len, "PCI device number = %d\n",
+			    board_info->pci_dev_no);
+		len +=
+		    sprintf(buf + len, "PCI function number = %d\n",
+			    board_info->pci_func_no);
+		len += sprintf(buf + len, "IRQ = %u\n", board_info->irq);
+		len +=
+		    sprintf(buf + len,
+			    "Count of interrupts since module was loaded = %d\n",
+			    board_info->irq_count);
+
+		len +=
+		    sprintf(buf + len, "Count of analog outputs = %d\n",
+			    board_info->board_p->ao.count);
+		len +=
+		    sprintf(buf + len, "Count of analog output fifos = %d\n",
+			    board_info->board_p->ao.fifo_count);
+
+		len +=
+		    sprintf(buf + len, "Count of analog inputs = %d\n",
+			    board_info->board_p->ai.count);
+		len +=
+		    sprintf(buf + len,
+			    "Count of sample and hold devices for analog input = %d\n",
+			    board_info->board_p->ai.sh_count);
+		len +=
+		    sprintf(buf + len,
+			    "Analog external trigger available for analog input = %d\n",
+			    board_info->board_p->ai.ex_trig_analog);
+
+		len +=
+		    sprintf(buf + len, "Count of digital ports = %d\n",
+			    board_info->board_p->dio.count);
+
+		len +=
+		    sprintf(buf + len, "Count of counter devices = %d\n",
+			    board_info->board_p->cnt.count);
+		len +=
+		    sprintf(buf + len, "AI control register = 0x%08X\n",
+			    inl(board_info->me4000_regbase +
+				ME4000_AI_CTRL_REG));
+
+		len += sprintf(buf + len, "AO 0 control register = 0x%08X\n",
+			       inl(board_info->me4000_regbase +
+				   ME4000_AO_00_CTRL_REG));
+		len +=
+		    sprintf(buf + len, "AO 0 status register = 0x%08X\n",
+			    inl(board_info->me4000_regbase +
+				ME4000_AO_00_STATUS_REG));
+		len +=
+		    sprintf(buf + len, "AO 1 control register = 0x%08X\n",
+			    inl(board_info->me4000_regbase +
+				ME4000_AO_01_CTRL_REG));
+		len +=
+		    sprintf(buf + len, "AO 1 status register = 0x%08X\n",
+			    inl(board_info->me4000_regbase +
+				ME4000_AO_01_STATUS_REG));
+		len +=
+		    sprintf(buf + len, "AO 2 control register = 0x%08X\n",
+			    inl(board_info->me4000_regbase +
+				ME4000_AO_02_CTRL_REG));
+		len +=
+		    sprintf(buf + len, "AO 2 status register = 0x%08X\n",
+			    inl(board_info->me4000_regbase +
+				ME4000_AO_02_STATUS_REG));
+		len +=
+		    sprintf(buf + len, "AO 3 control register = 0x%08X\n",
+			    inl(board_info->me4000_regbase +
+				ME4000_AO_03_CTRL_REG));
+		len +=
+		    sprintf(buf + len, "AO 3 status register = 0x%08X\n",
+			    inl(board_info->me4000_regbase +
+				ME4000_AO_03_STATUS_REG));
+	}
+
+	*eof = 1;
+	return len;
+}
diff --git a/drivers/staging/me4000/me4000.h b/drivers/staging/me4000/me4000.h
new file mode 100644
index 0000000..c35e4b9
--- /dev/null
+++ b/drivers/staging/me4000/me4000.h
@@ -0,0 +1,954 @@
+/*
+ * Copyright (C) 2003 Meilhaus Electronic GmbH (support@meilhaus.de)
+ *
+ * Source File : me4000.h
+ * Author      : GG (Guenter Gebhardt)  <g.gebhardt@meilhaus.de>
+ */
+
+#ifndef _ME4000_H_
+#define _ME4000_H_
+
+#ifdef __KERNEL__
+
+/*=============================================================================
+  The version of the driver release
+  ===========================================================================*/
+
+#define ME4000_DRIVER_VERSION  0x10009	// Version 1.00.09
+
+/*=============================================================================
+  Debug section
+  ===========================================================================*/
+
+#undef ME4000_CALL_DEBUG	// Debug function entry and exit
+#undef ME4000_ISR_DEBUG		// Debug the interrupt service routine
+#undef ME4000_PORT_DEBUG	// Debug port access
+#undef ME4000_DEBUG		// General purpose debug masseges
+
+#ifdef ME4000_CALL_DEBUG
+#undef CALL_PDEBUG
+#define CALL_PDEBUG(fmt, args...) printk(KERN_DEBUG"ME4000:" fmt, ##args)
+#else
+# define CALL_PDEBUG(fmt, args...)	// no debugging, do nothing
+#endif
+
+#ifdef ME4000_ISR_DEBUG
+#undef ISR_PDEBUG
+#define ISR_PDEBUG(fmt, args...) printk(KERN_DEBUG"ME4000:" fmt, ##args)
+#else
+#define ISR_PDEBUG(fmt, args...)	// no debugging, do nothing
+#endif
+
+#ifdef ME4000_PORT_DEBUG
+#undef PORT_PDEBUG
+#define PORT_PDEBUG(fmt, args...) printk(KERN_DEBUG"ME4000:" fmt, ##args)
+#else
+#define PORT_PDEBUG(fmt, args...)	// no debugging, do nothing
+#endif
+
+#ifdef ME4000_DEBUG
+#undef PDEBUG
+#define PDEBUG(fmt, args...) printk(KERN_DEBUG"ME4000:" fmt, ##args)
+#else
+#define PDEBUG(fmt, args...)	// no debugging, do nothing
+#endif
+
+/*=============================================================================
+  PCI vendor and device IDs
+  ===========================================================================*/
+
+#define PCI_VENDOR_ID_MEILHAUS 0x1402
+
+#define PCI_DEVICE_ID_MEILHAUS_ME4650	0x4650	// Low Cost version
+
+#define PCI_DEVICE_ID_MEILHAUS_ME4660	0x4660	// Standard version
+#define PCI_DEVICE_ID_MEILHAUS_ME4660I	0x4661	// Isolated version
+#define PCI_DEVICE_ID_MEILHAUS_ME4660S	0x4662	// Standard version with Sample and Hold
+#define PCI_DEVICE_ID_MEILHAUS_ME4660IS	0x4663	// Isolated version with Sample and Hold
+
+#define PCI_DEVICE_ID_MEILHAUS_ME4670	0x4670	// Standard version
+#define PCI_DEVICE_ID_MEILHAUS_ME4670I	0x4671	// Isolated version
+#define PCI_DEVICE_ID_MEILHAUS_ME4670S	0x4672	// Standard version with Sample and Hold
+#define PCI_DEVICE_ID_MEILHAUS_ME4670IS	0x4673	// Isolated version with Sample and Hold
+
+#define PCI_DEVICE_ID_MEILHAUS_ME4680	0x4680	// Standard version
+#define PCI_DEVICE_ID_MEILHAUS_ME4680I	0x4681	// Isolated version
+#define PCI_DEVICE_ID_MEILHAUS_ME4680S	0x4682	// Standard version with Sample and Hold
+#define PCI_DEVICE_ID_MEILHAUS_ME4680IS	0x4683	// Isolated version with Sample and Hold
+
+/*=============================================================================
+  Device names, for entries in /proc/..
+  ===========================================================================*/
+
+#define ME4000_NAME		"me4000"
+#define ME4000_AO_NAME		"me4000_ao"
+#define ME4000_AI_NAME		"me4000_ai"
+#define ME4000_DIO_NAME		"me4000_dio"
+#define ME4000_CNT_NAME		"me4000_cnt"
+#define ME4000_EXT_INT_NAME	"me4000_ext_int"
+
+/*=============================================================================
+  ME-4000 base register offsets
+  ===========================================================================*/
+
+#define ME4000_AO_00_CTRL_REG			0x00	// R/W
+#define ME4000_AO_00_STATUS_REG			0x04	// R/_
+#define ME4000_AO_00_FIFO_REG			0x08	// _/W
+#define ME4000_AO_00_SINGLE_REG			0x0C	// R/W
+#define ME4000_AO_00_TIMER_REG			0x10	// _/W
+
+#define ME4000_AO_01_CTRL_REG			0x18	// R/W
+#define ME4000_AO_01_STATUS_REG			0x1C	// R/_
+#define ME4000_AO_01_FIFO_REG			0x20	// _/W
+#define ME4000_AO_01_SINGLE_REG			0x24	// R/W
+#define ME4000_AO_01_TIMER_REG			0x28	// _/W
+
+#define ME4000_AO_02_CTRL_REG			0x30	// R/W
+#define ME4000_AO_02_STATUS_REG			0x34	// R/_
+#define ME4000_AO_02_FIFO_REG			0x38	// _/W
+#define ME4000_AO_02_SINGLE_REG			0x3C	// R/W
+#define ME4000_AO_02_TIMER_REG			0x40	// _/W
+
+#define ME4000_AO_03_CTRL_REG			0x48	// R/W
+#define ME4000_AO_03_STATUS_REG			0x4C	// R/_
+#define ME4000_AO_03_FIFO_REG			0x50	// _/W
+#define ME4000_AO_03_SINGLE_REG			0x54	// R/W
+#define ME4000_AO_03_TIMER_REG			0x58	// _/W
+
+#define ME4000_AI_CTRL_REG			0x74	// _/W
+#define ME4000_AI_STATUS_REG			0x74	// R/_
+#define ME4000_AI_CHANNEL_LIST_REG		0x78	// _/W
+#define ME4000_AI_DATA_REG			0x7C	// R/_
+#define ME4000_AI_CHAN_TIMER_REG		0x80	// _/W
+#define ME4000_AI_CHAN_PRE_TIMER_REG		0x84	// _/W
+#define ME4000_AI_SCAN_TIMER_LOW_REG		0x88	// _/W
+#define ME4000_AI_SCAN_TIMER_HIGH_REG		0x8C	// _/W
+#define ME4000_AI_SCAN_PRE_TIMER_LOW_REG	0x90	// _/W
+#define ME4000_AI_SCAN_PRE_TIMER_HIGH_REG	0x94	// _/W
+#define ME4000_AI_START_REG			0x98	// R/_
+
+#define ME4000_IRQ_STATUS_REG			0x9C	// R/_
+
+#define ME4000_DIO_PORT_0_REG			0xA0	// R/W
+#define ME4000_DIO_PORT_1_REG			0xA4	// R/W
+#define ME4000_DIO_PORT_2_REG			0xA8	// R/W
+#define ME4000_DIO_PORT_3_REG			0xAC	// R/W
+#define ME4000_DIO_DIR_REG			0xB0	// R/W
+
+#define ME4000_AO_LOADSETREG_XX			0xB4	// R/W
+
+#define ME4000_DIO_CTRL_REG			0xB8	// R/W
+
+#define ME4000_AO_DEMUX_ADJUST_REG		0xBC	// -/W
+
+#define ME4000_AI_SAMPLE_COUNTER_REG		0xC0	// _/W
+
+/*=============================================================================
+  Value to adjust Demux
+  ===========================================================================*/
+
+#define ME4000_AO_DEMUX_ADJUST_VALUE            0x4C
+
+/*=============================================================================
+  Counter base register offsets
+  ===========================================================================*/
+
+#define ME4000_CNT_COUNTER_0_REG		0x00
+#define ME4000_CNT_COUNTER_1_REG		0x01
+#define ME4000_CNT_COUNTER_2_REG		0x02
+#define ME4000_CNT_CTRL_REG			0x03
+
+/*=============================================================================
+  PLX base register offsets
+  ===========================================================================*/
+
+#define PLX_INTCSR	0x4C	// Interrupt control and status register
+#define PLX_ICR		0x50	// Initialization control register
+
+/*=============================================================================
+  Bits for the PLX_ICSR register
+  ===========================================================================*/
+
+#define PLX_INTCSR_LOCAL_INT1_EN             0x01	// If set, local interrupt 1 is enabled (r/w)
+#define PLX_INTCSR_LOCAL_INT1_POL            0x02	// If set, local interrupt 1 polarity is active high (r/w)
+#define PLX_INTCSR_LOCAL_INT1_STATE          0x04	// If set, local interrupt 1 is active (r/_)
+#define PLX_INTCSR_LOCAL_INT2_EN             0x08	// If set, local interrupt 2 is enabled (r/w)
+#define PLX_INTCSR_LOCAL_INT2_POL            0x10	// If set, local interrupt 2 polarity is active high (r/w)
+#define PLX_INTCSR_LOCAL_INT2_STATE          0x20	// If set, local interrupt 2 is active  (r/_)
+#define PLX_INTCSR_PCI_INT_EN                0x40	// If set, PCI interrupt is enabled (r/w)
+#define PLX_INTCSR_SOFT_INT                  0x80	// If set, a software interrupt is generated (r/w)
+
+/*=============================================================================
+  Bits for the PLX_ICR register
+  ===========================================================================*/
+
+#define PLX_ICR_BIT_EEPROM_CLOCK_SET		0x01000000
+#define PLX_ICR_BIT_EEPROM_CHIP_SELECT		0x02000000
+#define PLX_ICR_BIT_EEPROM_WRITE		0x04000000
+#define PLX_ICR_BIT_EEPROM_READ			0x08000000
+#define PLX_ICR_BIT_EEPROM_VALID		0x10000000
+
+#define PLX_ICR_MASK_EEPROM			0x1F000000
+
+#define EEPROM_DELAY				1
+
+/*=============================================================================
+  Bits for the ME4000_AO_CTRL_REG register
+  ===========================================================================*/
+
+#define ME4000_AO_CTRL_BIT_MODE_0		0x001
+#define ME4000_AO_CTRL_BIT_MODE_1		0x002
+#define ME4000_AO_CTRL_MASK_MODE		0x003
+#define ME4000_AO_CTRL_BIT_STOP			0x004
+#define ME4000_AO_CTRL_BIT_ENABLE_FIFO		0x008
+#define ME4000_AO_CTRL_BIT_ENABLE_EX_TRIG	0x010
+#define ME4000_AO_CTRL_BIT_EX_TRIG_EDGE		0x020
+#define ME4000_AO_CTRL_BIT_IMMEDIATE_STOP	0x080
+#define ME4000_AO_CTRL_BIT_ENABLE_DO		0x100
+#define ME4000_AO_CTRL_BIT_ENABLE_IRQ		0x200
+#define ME4000_AO_CTRL_BIT_RESET_IRQ		0x400
+#define ME4000_AO_CTRL_BIT_EX_TRIG_BOTH		0x800
+
+/*=============================================================================
+  Bits for the ME4000_AO_STATUS_REG register
+  ===========================================================================*/
+
+#define ME4000_AO_STATUS_BIT_FSM		0x01
+#define ME4000_AO_STATUS_BIT_FF			0x02
+#define ME4000_AO_STATUS_BIT_HF			0x04
+#define ME4000_AO_STATUS_BIT_EF			0x08
+
+/*=============================================================================
+  Bits for the ME4000_AI_CTRL_REG register
+  ===========================================================================*/
+
+#define ME4000_AI_CTRL_BIT_MODE_0		0x00000001
+#define ME4000_AI_CTRL_BIT_MODE_1		0x00000002
+#define ME4000_AI_CTRL_BIT_MODE_2		0x00000004
+#define ME4000_AI_CTRL_BIT_SAMPLE_HOLD		0x00000008
+#define ME4000_AI_CTRL_BIT_IMMEDIATE_STOP	0x00000010
+#define ME4000_AI_CTRL_BIT_STOP			0x00000020
+#define ME4000_AI_CTRL_BIT_CHANNEL_FIFO		0x00000040
+#define ME4000_AI_CTRL_BIT_DATA_FIFO		0x00000080
+#define ME4000_AI_CTRL_BIT_FULLSCALE		0x00000100
+#define ME4000_AI_CTRL_BIT_OFFSET		0x00000200
+#define ME4000_AI_CTRL_BIT_EX_TRIG_ANALOG	0x00000400
+#define ME4000_AI_CTRL_BIT_EX_TRIG		0x00000800
+#define ME4000_AI_CTRL_BIT_EX_TRIG_FALLING	0x00001000
+#define ME4000_AI_CTRL_BIT_EX_IRQ		0x00002000
+#define ME4000_AI_CTRL_BIT_EX_IRQ_RESET		0x00004000
+#define ME4000_AI_CTRL_BIT_LE_IRQ		0x00008000
+#define ME4000_AI_CTRL_BIT_LE_IRQ_RESET		0x00010000
+#define ME4000_AI_CTRL_BIT_HF_IRQ		0x00020000
+#define ME4000_AI_CTRL_BIT_HF_IRQ_RESET		0x00040000
+#define ME4000_AI_CTRL_BIT_SC_IRQ		0x00080000
+#define ME4000_AI_CTRL_BIT_SC_IRQ_RESET		0x00100000
+#define ME4000_AI_CTRL_BIT_SC_RELOAD		0x00200000
+#define ME4000_AI_CTRL_BIT_EX_TRIG_BOTH		0x80000000
+
+/*=============================================================================
+  Bits for the ME4000_AI_STATUS_REG register
+  ===========================================================================*/
+
+#define ME4000_AI_STATUS_BIT_EF_CHANNEL		0x00400000
+#define ME4000_AI_STATUS_BIT_HF_CHANNEL		0x00800000
+#define ME4000_AI_STATUS_BIT_FF_CHANNEL		0x01000000
+#define ME4000_AI_STATUS_BIT_EF_DATA		0x02000000
+#define ME4000_AI_STATUS_BIT_HF_DATA		0x04000000
+#define ME4000_AI_STATUS_BIT_FF_DATA		0x08000000
+#define ME4000_AI_STATUS_BIT_LE			0x10000000
+#define ME4000_AI_STATUS_BIT_FSM		0x20000000
+
+/*=============================================================================
+  Bits for the ME4000_IRQ_STATUS_REG register
+  ===========================================================================*/
+
+#define ME4000_IRQ_STATUS_BIT_EX		0x01
+#define ME4000_IRQ_STATUS_BIT_LE		0x02
+#define ME4000_IRQ_STATUS_BIT_AI_HF		0x04
+#define ME4000_IRQ_STATUS_BIT_AO_0_HF		0x08
+#define ME4000_IRQ_STATUS_BIT_AO_1_HF		0x10
+#define ME4000_IRQ_STATUS_BIT_AO_2_HF		0x20
+#define ME4000_IRQ_STATUS_BIT_AO_3_HF		0x40
+#define ME4000_IRQ_STATUS_BIT_SC		0x80
+
+/*=============================================================================
+  Bits for the ME4000_DIO_CTRL_REG register
+  ===========================================================================*/
+
+#define ME4000_DIO_CTRL_BIT_MODE_0		0X0001
+#define ME4000_DIO_CTRL_BIT_MODE_1		0X0002
+#define ME4000_DIO_CTRL_BIT_MODE_2		0X0004
+#define ME4000_DIO_CTRL_BIT_MODE_3		0X0008
+#define ME4000_DIO_CTRL_BIT_MODE_4		0X0010
+#define ME4000_DIO_CTRL_BIT_MODE_5		0X0020
+#define ME4000_DIO_CTRL_BIT_MODE_6		0X0040
+#define ME4000_DIO_CTRL_BIT_MODE_7		0X0080
+
+#define ME4000_DIO_CTRL_BIT_FUNCTION_0		0X0100
+#define ME4000_DIO_CTRL_BIT_FUNCTION_1		0X0200
+
+#define ME4000_DIO_CTRL_BIT_FIFO_HIGH_0		0X0400
+#define ME4000_DIO_CTRL_BIT_FIFO_HIGH_1		0X0800
+#define ME4000_DIO_CTRL_BIT_FIFO_HIGH_2		0X1000
+#define ME4000_DIO_CTRL_BIT_FIFO_HIGH_3		0X2000
+
+/*=============================================================================
+  Bits for the ME4000_CNT_CTRL_REG register
+  ===========================================================================*/
+
+#define ME4000_CNT_CTRL_BIT_COUNTER_0  0x00
+#define ME4000_CNT_CTRL_BIT_COUNTER_1  0x40
+#define ME4000_CNT_CTRL_BIT_COUNTER_2  0x80
+
+#define ME4000_CNT_CTRL_BIT_MODE_0     0x00	// Change state if zero crossing
+#define ME4000_CNT_CTRL_BIT_MODE_1     0x02	// Retriggerable One-Shot
+#define ME4000_CNT_CTRL_BIT_MODE_2     0x04	// Asymmetrical divider
+#define ME4000_CNT_CTRL_BIT_MODE_3     0x06	// Symmetrical divider
+#define ME4000_CNT_CTRL_BIT_MODE_4     0x08	// Counter start by software trigger
+#define ME4000_CNT_CTRL_BIT_MODE_5     0x0A	// Counter start by hardware trigger
+
+/*=============================================================================
+  Extract information from minor device number
+  ===========================================================================*/
+
+#define AO_BOARD(dev) ((MINOR(dev) >> 6) & 0x3)
+#define AO_PORT(dev)  ((MINOR(dev) >> 2) & 0xF)
+#define AO_MODE(dev)  (MINOR(dev) & 0x3)
+
+#define AI_BOARD(dev) ((MINOR(dev) >> 3) & 0x1F)
+#define AI_MODE(dev)  (MINOR(dev) & 0x7)
+
+#define DIO_BOARD(dev) (MINOR(dev))
+
+#define CNT_BOARD(dev) (MINOR(dev))
+
+#define EXT_INT_BOARD(dev) (MINOR(dev))
+
+/*=============================================================================
+  Circular buffer used for analog input/output reads/writes.
+  ===========================================================================*/
+
+typedef struct me4000_circ_buf {
+	s16 *buf;
+	int volatile head;
+	int volatile tail;
+} me4000_circ_buf_t;
+
+/*=============================================================================
+  Information about the hardware capabilities
+  ===========================================================================*/
+
+typedef struct me4000_ao_info {
+	int count;
+	int fifo_count;
+} me4000_ao_info_t;
+
+typedef struct me4000_ai_info {
+	int count;
+	int sh_count;
+	int diff_count;
+	int ex_trig_analog;
+} me4000_ai_info_t;
+
+typedef struct me4000_dio_info {
+	int count;
+} me4000_dio_info_t;
+
+typedef struct me4000_cnt_info {
+	int count;
+} me4000_cnt_info_t;
+
+typedef struct me4000_board {
+	u16 vendor_id;
+	u16 device_id;
+	me4000_ao_info_t ao;
+	me4000_ai_info_t ai;
+	me4000_dio_info_t dio;
+	me4000_cnt_info_t cnt;
+} me4000_board_t;
+
+static me4000_board_t me4000_boards[] = {
+	{PCI_VENDOR_ID_MEILHAUS, 0x4610, {0, 0}, {16, 0, 0, 0}, {4}, {3}},
+
+	{PCI_VENDOR_ID_MEILHAUS, 0x4650, {0, 0}, {16, 0, 0, 0}, {4}, {0}},
+
+	{PCI_VENDOR_ID_MEILHAUS, 0x4660, {2, 0}, {16, 0, 0, 0}, {4}, {3}},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4661, {2, 0}, {16, 0, 0, 0}, {4}, {3}},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4662, {2, 0}, {16, 8, 0, 0}, {4}, {3}},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4663, {2, 0}, {16, 8, 0, 0}, {4}, {3}},
+
+	{PCI_VENDOR_ID_MEILHAUS, 0x4670, {4, 0}, {32, 0, 16, 1}, {4}, {3}},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4671, {4, 0}, {32, 0, 16, 1}, {4}, {3}},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4672, {4, 0}, {32, 8, 16, 1}, {4}, {3}},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4673, {4, 0}, {32, 8, 16, 1}, {4}, {3}},
+
+	{PCI_VENDOR_ID_MEILHAUS, 0x4680, {4, 4}, {32, 0, 16, 1}, {4}, {3}},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4681, {4, 4}, {32, 0, 16, 1}, {4}, {3}},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4682, {4, 4}, {32, 8, 16, 1}, {4}, {3}},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4683, {4, 4}, {32, 8, 16, 1}, {4}, {3}},
+
+	{0},
+};
+
+#define ME4000_BOARD_VERSIONS (sizeof(me4000_boards) / sizeof(me4000_board_t) - 1)
+
+/*=============================================================================
+  PCI device table.
+  This is used by modprobe to translate PCI IDs to drivers.
+  ===========================================================================*/
+
+static struct pci_device_id me4000_pci_table[] __devinitdata = {
+	{PCI_VENDOR_ID_MEILHAUS, 0x4610, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
+
+	{PCI_VENDOR_ID_MEILHAUS, 0x4650, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
+
+	{PCI_VENDOR_ID_MEILHAUS, 0x4660, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4661, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4662, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4663, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
+
+	{PCI_VENDOR_ID_MEILHAUS, 0x4670, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4671, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4672, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4673, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
+
+	{PCI_VENDOR_ID_MEILHAUS, 0x4680, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4681, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4682, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
+	{PCI_VENDOR_ID_MEILHAUS, 0x4683, PCI_ANY_ID, PCI_ANY_ID, 0, 0, 0},
+
+	{0}
+};
+
+MODULE_DEVICE_TABLE(pci, me4000_pci_table);
+
+/*=============================================================================
+  Global board and subdevice information structures
+  ===========================================================================*/
+
+typedef struct me4000_info {
+	struct list_head list;	// List of all detected boards
+	int board_count;	// Index of the board after detection
+
+	unsigned long plx_regbase;	// PLX configuration space base address
+	unsigned long me4000_regbase;	// Base address of the ME4000
+	unsigned long timer_regbase;	// Base address of the timer circuit
+	unsigned long program_regbase;	// Base address to set the program pin for the xilinx
+
+	unsigned long plx_regbase_size;	// PLX register set space
+	unsigned long me4000_regbase_size;	// ME4000 register set space
+	unsigned long timer_regbase_size;	// Timer circuit register set space
+	unsigned long program_regbase_size;	// Size of program base address of the ME4000
+
+	unsigned int serial_no;	// Serial number of the board
+	unsigned char hw_revision;	// Hardware revision of the board
+	unsigned short vendor_id;	// Meilhaus vendor id (0x1402)
+	unsigned short device_id;	// Device ID
+
+	int pci_bus_no;		// PCI bus number
+	int pci_dev_no;		// PCI device number
+	int pci_func_no;	// PCI function number
+	struct pci_dev *pci_dev_p;	// General PCI information
+
+	me4000_board_t *board_p;	// Holds the board capabilities
+
+	unsigned int irq;	// IRQ assigned from the PCI BIOS
+	unsigned int irq_count;	// Count of external interrupts
+
+	spinlock_t preload_lock;	// Guards the analog output preload register
+	spinlock_t ai_ctrl_lock;	// Guards the analog input control register
+
+	struct list_head ao_context_list;	// List with analog output specific context
+	struct me4000_ai_context *ai_context;	// Analog input  specific context
+	struct me4000_dio_context *dio_context;	// Digital I/O specific context
+	struct me4000_cnt_context *cnt_context;	// Counter specific context
+	struct me4000_ext_int_context *ext_int_context;	// External interrupt specific context
+} me4000_info_t;
+
+typedef struct me4000_ao_context {
+	struct list_head list;	// linked list of me4000_ao_context_t
+	int index;		// Index in the list
+	int mode;		// Indicates mode (0 = single, 1 = wraparound, 2 = continous)
+	int dac_in_use;		// Indicates if already opend
+	spinlock_t use_lock;	// Guards in_use
+	spinlock_t int_lock;	// Used when locking out interrupts
+	me4000_circ_buf_t circ_buf;	// Circular buffer
+	wait_queue_head_t wait_queue;	// Wait queue to sleep while blocking write
+	me4000_info_t *board_info;
+	unsigned int irq;	// The irq associated with this ADC
+	int volatile pipe_flag;	// Indicates broken pipe set from me4000_ao_isr()
+	unsigned long ctrl_reg;
+	unsigned long status_reg;
+	unsigned long fifo_reg;
+	unsigned long single_reg;
+	unsigned long timer_reg;
+	unsigned long irq_status_reg;
+	unsigned long preload_reg;
+	struct fasync_struct *fasync_p;	// Queue for asynchronous notification
+} me4000_ao_context_t;
+
+typedef struct me4000_ai_context {
+	struct list_head list;	// linked list of me4000_ai_info_t
+	int mode;		// Indicates mode
+	int in_use;		// Indicates if already opend
+	spinlock_t use_lock;	// Guards in_use
+	spinlock_t int_lock;	// Used when locking out interrupts
+	int number;		// Number of the DAC
+	unsigned int irq;	// The irq associated with this ADC
+	me4000_circ_buf_t circ_buf;	// Circular buffer
+	wait_queue_head_t wait_queue;	// Wait queue to sleep while blocking read
+	me4000_info_t *board_info;
+
+	struct fasync_struct *fasync_p;	// Queue for asynchronous notification
+
+	unsigned long ctrl_reg;
+	unsigned long status_reg;
+	unsigned long channel_list_reg;
+	unsigned long data_reg;
+	unsigned long chan_timer_reg;
+	unsigned long chan_pre_timer_reg;
+	unsigned long scan_timer_low_reg;
+	unsigned long scan_timer_high_reg;
+	unsigned long scan_pre_timer_low_reg;
+	unsigned long scan_pre_timer_high_reg;
+	unsigned long start_reg;
+	unsigned long irq_status_reg;
+	unsigned long sample_counter_reg;
+
+	unsigned long chan_timer;
+	unsigned long chan_pre_timer;
+	unsigned long scan_timer_low;
+	unsigned long scan_timer_high;
+	unsigned long channel_list_count;
+	unsigned long sample_counter;
+	int sample_counter_reload;
+} me4000_ai_context_t;
+
+typedef struct me4000_dio_context {
+	struct list_head list;	// linked list of me4000_dio_context_t
+	int in_use;		// Indicates if already opend
+	spinlock_t use_lock;	// Guards in_use
+	int number;
+	int dio_count;
+	me4000_info_t *board_info;
+	unsigned long dir_reg;
+	unsigned long ctrl_reg;
+	unsigned long port_0_reg;
+	unsigned long port_1_reg;
+	unsigned long port_2_reg;
+	unsigned long port_3_reg;
+} me4000_dio_context_t;
+
+typedef struct me4000_cnt_context {
+	struct list_head list;	// linked list of me4000_dio_context_t
+	int in_use;		// Indicates if already opend
+	spinlock_t use_lock;	// Guards in_use
+	int number;
+	int cnt_count;
+	me4000_info_t *board_info;
+	unsigned long ctrl_reg;
+	unsigned long counter_0_reg;
+	unsigned long counter_1_reg;
+	unsigned long counter_2_reg;
+} me4000_cnt_context_t;
+
+typedef struct me4000_ext_int_context {
+	struct list_head list;	// linked list of me4000_dio_context_t
+	int in_use;		// Indicates if already opend
+	spinlock_t use_lock;	// Guards in_use
+	int number;
+	me4000_info_t *board_info;
+	unsigned int irq;
+	unsigned long int_count;
+	struct fasync_struct *fasync_ptr;
+	unsigned long ctrl_reg;
+	unsigned long irq_status_reg;
+} me4000_ext_int_context_t;
+
+#endif
+
+/*=============================================================================
+  Application include section starts here
+  ===========================================================================*/
+
+/*-----------------------------------------------------------------------------
+  Defines for analog input
+  ----------------------------------------------------------------------------*/
+
+/* General stuff */
+#define ME4000_AI_FIFO_COUNT		2048
+
+#define ME4000_AI_MIN_TICKS		66
+#define ME4000_AI_MAX_SCAN_TICKS	0xFFFFFFFFFFLL
+
+#define ME4000_AI_BUFFER_SIZE 		(32 * 1024)	// Size in bytes
+
+#define ME4000_AI_BUFFER_COUNT		((ME4000_AI_BUFFER_SIZE) / 2)	// Size in values
+
+/* Channel list defines and masks */
+#define ME4000_AI_CHANNEL_LIST_COUNT		1024
+
+#define ME4000_AI_LIST_INPUT_SINGLE_ENDED	0x000
+#define ME4000_AI_LIST_INPUT_DIFFERENTIAL	0x020
+
+#define ME4000_AI_LIST_RANGE_BIPOLAR_10		0x000
+#define ME4000_AI_LIST_RANGE_BIPOLAR_2_5	0x040
+#define ME4000_AI_LIST_RANGE_UNIPOLAR_10	0x080
+#define ME4000_AI_LIST_RANGE_UNIPOLAR_2_5	0x0C0
+
+#define ME4000_AI_LIST_LAST_ENTRY		0x100
+
+/* External trigger defines */
+#define ME4000_AI_TRIGGER_SOFTWARE		0x0	// Use only with API
+#define ME4000_AI_TRIGGER_EXT_DIGITAL		0x1
+#define ME4000_AI_TRIGGER_EXT_ANALOG		0x2
+
+#define ME4000_AI_TRIGGER_EXT_EDGE_RISING	0x0
+#define ME4000_AI_TRIGGER_EXT_EDGE_FALLING	0x1
+#define ME4000_AI_TRIGGER_EXT_EDGE_BOTH		0x2
+
+/* Sample and Hold */
+#define ME4000_AI_SIMULTANEOUS_DISABLE		0x0
+#define ME4000_AI_SIMULTANEOUS_ENABLE		0x1
+
+/* Defines for the Sample Counter */
+#define ME4000_AI_SC_RELOAD			0x0
+#define ME4000_AI_SC_ONCE			0x1
+
+/* Modes for analog input */
+#define ME4000_AI_ACQ_MODE_SINGLE		0x00	// Catch one single value
+#define ME4000_AI_ACQ_MODE_SOFTWARE		0x01	// Continous sampling with software start
+#define ME4000_AI_ACQ_MODE_EXT			0x02	// Continous sampling with external trigger start
+#define ME4000_AI_ACQ_MODE_EXT_SINGLE_VALUE	0x03	// Sample one value by external trigger
+#define ME4000_AI_ACQ_MODE_EXT_SINGLE_CHANLIST	0x04	// Sample one channel list by external trigger
+
+/* Staus of AI FSM */
+#define ME4000_AI_STATUS_IDLE			0x0
+#define ME4000_AI_STATUS_BUSY			0x1
+
+/* Voltages for calibration */
+#define ME4000_AI_GAIN_1_UNI_OFFSET		10.0E-3
+#define ME4000_AI_GAIN_1_UNI_FULLSCALE		9950.0E-3
+#define ME4000_AI_GAIN_1_BI_OFFSET		0.0
+#define ME4000_AI_GAIN_1_BI_FULLSCALE		9950.0E-3
+#define ME4000_AI_GAIN_4_UNI_OFFSET		10.0E-3
+#define ME4000_AI_GAIN_4_UNI_FULLSCALE		2450.0E-3
+#define ME4000_AI_GAIN_4_BI_OFFSET		0.0
+#define ME4000_AI_GAIN_4_BI_FULLSCALE		2450.0E-3
+
+/* Ideal digits for calibration */
+#define ME4000_AI_GAIN_1_UNI_OFFSET_DIGITS	(-32702)
+#define ME4000_AI_GAIN_1_UNI_FULLSCALE_DIGITS	32440
+#define ME4000_AI_GAIN_1_BI_OFFSET_DIGITS	0
+#define ME4000_AI_GAIN_1_BI_FULLSCALE_DIGITS	32604
+#define ME4000_AI_GAIN_4_UNI_OFFSET_DIGITS	(-32505)
+#define ME4000_AI_GAIN_4_UNI_FULLSCALE_DIGITS	31457
+#define ME4000_AI_GAIN_4_BI_OFFSET_DIGITS	0
+#define ME4000_AI_GAIN_4_BI_FULLSCALE_DIGITS	32113
+
+/*-----------------------------------------------------------------------------
+  Defines for analog output
+  ----------------------------------------------------------------------------*/
+
+/* General stuff */
+#define ME4000_AO_FIFO_COUNT			(4 * 1024)
+
+#define ME4000_AO_MIN_TICKS			66
+
+#define ME4000_AO_BUFFER_SIZE 			(32 * 1024)	// Size in bytes
+
+#define ME4000_AO_BUFFER_COUNT 			((ME4000_AO_BUFFER_SIZE) / 2)	// Size in values
+
+/* Conversion modes for analog output */
+#define ME4000_AO_CONV_MODE_SINGLE		0x0
+#define ME4000_AO_CONV_MODE_WRAPAROUND		0x1
+#define ME4000_AO_CONV_MODE_CONTINUOUS		0x2
+
+/* Trigger setup */
+#define ME4000_AO_TRIGGER_EXT_EDGE_RISING	0x0
+#define ME4000_AO_TRIGGER_EXT_EDGE_FALLING	0x1
+#define ME4000_AO_TRIGGER_EXT_EDGE_BOTH		0x2
+
+/* Status of AO FSM */
+#define ME4000_AO_STATUS_IDLE			0x0
+#define ME4000_AO_STATUS_BUSY			0x1
+
+/*-----------------------------------------------------------------------------
+  Defines for eeprom
+  ----------------------------------------------------------------------------*/
+
+#define ME4000_EEPROM_CMD_READ			0x180
+#define ME4000_EEPROM_CMD_WRITE_ENABLE		0x130
+#define ME4000_EEPROM_CMD_WRITE_DISABLE		0x100
+#define ME4000_EEPROM_CMD_WRITE			0x1400000
+
+#define ME4000_EEPROM_CMD_LENGTH_READ		9
+#define ME4000_EEPROM_CMD_LENGTH_WRITE_ENABLE	9
+#define ME4000_EEPROM_CMD_LENGTH_WRITE_DISABLE	9
+#define ME4000_EEPROM_CMD_LENGTH_WRITE		25
+
+#define ME4000_EEPROM_ADR_DATE_HIGH		0x32
+#define ME4000_EEPROM_ADR_DATE_LOW		0x33
+
+#define ME4000_EEPROM_ADR_GAIN_1_UNI_OFFSET	0x34
+#define ME4000_EEPROM_ADR_GAIN_1_UNI_FULLSCALE	0x35
+#define ME4000_EEPROM_ADR_GAIN_1_BI_OFFSET	0x36
+#define ME4000_EEPROM_ADR_GAIN_1_BI_FULLSCALE	0x37
+#define ME4000_EEPROM_ADR_GAIN_1_DIFF_OFFSET	0x38
+#define ME4000_EEPROM_ADR_GAIN_1_DIFF_FULLSCALE	0x39
+
+#define ME4000_EEPROM_ADR_GAIN_4_UNI_OFFSET	0x3A
+#define ME4000_EEPROM_ADR_GAIN_4_UNI_FULLSCALE	0x3B
+#define ME4000_EEPROM_ADR_GAIN_4_BI_OFFSET	0x3C
+#define ME4000_EEPROM_ADR_GAIN_4_BI_FULLSCALE	0x3D
+#define ME4000_EEPROM_ADR_GAIN_4_DIFF_OFFSET	0x3E
+#define ME4000_EEPROM_ADR_GAIN_4_DIFF_FULLSCALE	0x3F
+
+#define ME4000_EEPROM_ADR_LENGTH		6
+#define ME4000_EEPROM_DATA_LENGTH		16
+
+/*-----------------------------------------------------------------------------
+  Defines for digital I/O
+  ----------------------------------------------------------------------------*/
+
+#define ME4000_DIO_PORT_A		0x0
+#define ME4000_DIO_PORT_B		0x1
+#define ME4000_DIO_PORT_C		0x2
+#define ME4000_DIO_PORT_D		0x3
+
+#define ME4000_DIO_PORT_INPUT		0x0
+#define ME4000_DIO_PORT_OUTPUT		0x1
+#define ME4000_DIO_FIFO_LOW		0x2
+#define ME4000_DIO_FIFO_HIGH		0x3
+
+#define ME4000_DIO_FUNCTION_PATTERN	0x0
+#define ME4000_DIO_FUNCTION_DEMUX	0x1
+#define ME4000_DIO_FUNCTION_MUX		0x2
+
+/*-----------------------------------------------------------------------------
+  Defines for counters
+  ----------------------------------------------------------------------------*/
+
+#define ME4000_CNT_COUNTER_0  0
+#define ME4000_CNT_COUNTER_1  1
+#define ME4000_CNT_COUNTER_2  2
+
+#define ME4000_CNT_MODE_0     0	// Change state if zero crossing
+#define ME4000_CNT_MODE_1     1	// Retriggerable One-Shot
+#define ME4000_CNT_MODE_2     2	// Asymmetrical divider
+#define ME4000_CNT_MODE_3     3	// Symmetrical divider
+#define ME4000_CNT_MODE_4     4	// Counter start by software trigger
+#define ME4000_CNT_MODE_5     5	// Counter start by hardware trigger
+
+/*-----------------------------------------------------------------------------
+  General type definitions
+  ----------------------------------------------------------------------------*/
+
+typedef struct me4000_user_info {
+	int board_count;	// Index of the board after detection
+	unsigned long plx_regbase;	// PLX configuration space base address
+	unsigned long me4000_regbase;	// Base address of the ME4000
+	unsigned long plx_regbase_size;	// PLX register set space
+	unsigned long me4000_regbase_size;	// ME4000 register set space
+	unsigned long serial_no;	// Serial number of the board
+	unsigned char hw_revision;	// Hardware revision of the board
+	unsigned short vendor_id;	// Meilhaus vendor id (0x1402)
+	unsigned short device_id;	// Device ID
+	int pci_bus_no;		// PCI bus number
+	int pci_dev_no;		// PCI device number
+	int pci_func_no;	// PCI function number
+	char irq;		// IRQ assigned from the PCI BIOS
+	int irq_count;		// Count of external interrupts
+
+	int driver_version;	// Version of the driver release
+
+	int ao_count;		// Count of analog output channels
+	int ao_fifo_count;	// Count fo analog output fifos
+
+	int ai_count;		// Count of analog input channels
+	int ai_sh_count;	// Count of sample and hold devices
+	int ai_ex_trig_analog;	// Flag to indicate if analogous external trigger is available
+
+	int dio_count;		// Count of digital I/O ports
+
+	int cnt_count;		// Count of counters
+} me4000_user_info_t;
+
+/*-----------------------------------------------------------------------------
+  Type definitions for analog output
+  ----------------------------------------------------------------------------*/
+
+typedef struct me4000_ao_channel_list {
+	unsigned long count;
+	unsigned long *list;
+} me4000_ao_channel_list_t;
+
+/*-----------------------------------------------------------------------------
+  Type definitions for analog input
+  ----------------------------------------------------------------------------*/
+
+typedef struct me4000_ai_channel_list {
+	unsigned long count;
+	unsigned long *list;
+} me4000_ai_channel_list_t;
+
+typedef struct me4000_ai_timer {
+	unsigned long pre_chan;
+	unsigned long chan;
+	unsigned long scan_low;
+	unsigned long scan_high;
+} me4000_ai_timer_t;
+
+typedef struct me4000_ai_config {
+	me4000_ai_timer_t timer;
+	me4000_ai_channel_list_t channel_list;
+	int sh;
+} me4000_ai_config_t;
+
+typedef struct me4000_ai_single {
+	int channel;
+	int range;
+	int mode;
+	short value;
+	unsigned long timeout;
+} me4000_ai_single_t;
+
+typedef struct me4000_ai_trigger {
+	int mode;
+	int edge;
+} me4000_ai_trigger_t;
+
+typedef struct me4000_ai_sc {
+	unsigned long value;
+	int reload;
+} me4000_ai_sc_t;
+
+/*-----------------------------------------------------------------------------
+  Type definitions for eeprom
+  ----------------------------------------------------------------------------*/
+
+typedef struct me4000_eeprom {
+	unsigned long date;
+	short uni_10_offset;
+	short uni_10_fullscale;
+	short uni_2_5_offset;
+	short uni_2_5_fullscale;
+	short bi_10_offset;
+	short bi_10_fullscale;
+	short bi_2_5_offset;
+	short bi_2_5_fullscale;
+	short diff_10_offset;
+	short diff_10_fullscale;
+	short diff_2_5_offset;
+	short diff_2_5_fullscale;
+} me4000_eeprom_t;
+
+/*-----------------------------------------------------------------------------
+  Type definitions for digital I/O
+  ----------------------------------------------------------------------------*/
+
+typedef struct me4000_dio_config {
+	int port;
+	int mode;
+	int function;
+} me4000_dio_config_t;
+
+typedef struct me4000_dio_byte {
+	int port;
+	unsigned char byte;
+} me4000_dio_byte_t;
+
+/*-----------------------------------------------------------------------------
+  Type definitions for counters
+  ----------------------------------------------------------------------------*/
+
+typedef struct me4000_cnt {
+	int counter;
+	unsigned short value;
+} me4000_cnt_t;
+
+typedef struct me4000_cnt_config {
+	int counter;
+	int mode;
+} me4000_cnt_config_t;
+
+/*-----------------------------------------------------------------------------
+  Type definitions for external interrupt
+  ----------------------------------------------------------------------------*/
+
+typedef struct {
+	int int1_count;
+	int int2_count;
+} me4000_int_type;
+
+/*-----------------------------------------------------------------------------
+  The ioctls of the board
+  ----------------------------------------------------------------------------*/
+
+#define ME4000_IOCTL_MAXNR 50
+#define ME4000_MAGIC 'y'
+#define ME4000_GET_USER_INFO          _IOR (ME4000_MAGIC, 0, me4000_user_info_t)
+
+#define ME4000_AO_START               _IOW (ME4000_MAGIC, 1, unsigned long)
+#define ME4000_AO_STOP                _IO  (ME4000_MAGIC, 2)
+#define ME4000_AO_IMMEDIATE_STOP      _IO  (ME4000_MAGIC, 3)
+#define ME4000_AO_RESET               _IO  (ME4000_MAGIC, 4)
+#define ME4000_AO_PRELOAD             _IO  (ME4000_MAGIC, 5)
+#define ME4000_AO_PRELOAD_UPDATE      _IO  (ME4000_MAGIC, 6)
+#define ME4000_AO_EX_TRIG_ENABLE      _IO  (ME4000_MAGIC, 7)
+#define ME4000_AO_EX_TRIG_DISABLE     _IO  (ME4000_MAGIC, 8)
+#define ME4000_AO_EX_TRIG_SETUP       _IOW (ME4000_MAGIC, 9, int)
+#define ME4000_AO_TIMER_SET_DIVISOR   _IOW (ME4000_MAGIC, 10, unsigned long)
+#define ME4000_AO_ENABLE_DO           _IO  (ME4000_MAGIC, 11)
+#define ME4000_AO_DISABLE_DO          _IO  (ME4000_MAGIC, 12)
+#define ME4000_AO_FSM_STATE           _IOR (ME4000_MAGIC, 13, int)
+
+#define ME4000_AI_SINGLE              _IOR (ME4000_MAGIC, 14, me4000_ai_single_t)
+#define ME4000_AI_START               _IOW (ME4000_MAGIC, 15, unsigned long)
+#define ME4000_AI_STOP                _IO  (ME4000_MAGIC, 16)
+#define ME4000_AI_IMMEDIATE_STOP      _IO  (ME4000_MAGIC, 17)
+#define ME4000_AI_EX_TRIG_ENABLE      _IO  (ME4000_MAGIC, 18)
+#define ME4000_AI_EX_TRIG_DISABLE     _IO  (ME4000_MAGIC, 19)
+#define ME4000_AI_EX_TRIG_SETUP       _IOW (ME4000_MAGIC, 20, me4000_ai_trigger_t)
+#define ME4000_AI_CONFIG              _IOW (ME4000_MAGIC, 21, me4000_ai_config_t)
+#define ME4000_AI_SC_SETUP            _IOW (ME4000_MAGIC, 22, me4000_ai_sc_t)
+#define ME4000_AI_FSM_STATE           _IOR (ME4000_MAGIC, 23, int)
+
+#define ME4000_DIO_CONFIG             _IOW (ME4000_MAGIC, 24, me4000_dio_config_t)
+#define ME4000_DIO_GET_BYTE           _IOR (ME4000_MAGIC, 25, me4000_dio_byte_t)
+#define ME4000_DIO_SET_BYTE           _IOW (ME4000_MAGIC, 26, me4000_dio_byte_t)
+#define ME4000_DIO_RESET              _IO  (ME4000_MAGIC, 27)
+
+#define ME4000_CNT_READ               _IOR (ME4000_MAGIC, 28, me4000_cnt_t)
+#define ME4000_CNT_WRITE              _IOW (ME4000_MAGIC, 29, me4000_cnt_t)
+#define ME4000_CNT_CONFIG             _IOW (ME4000_MAGIC, 30, me4000_cnt_config_t)
+#define ME4000_CNT_RESET              _IO  (ME4000_MAGIC, 31)
+
+#define ME4000_EXT_INT_DISABLE        _IO  (ME4000_MAGIC, 32)
+#define ME4000_EXT_INT_ENABLE         _IO  (ME4000_MAGIC, 33)
+#define ME4000_EXT_INT_COUNT          _IOR (ME4000_MAGIC, 34, int)
+
+#define ME4000_AI_OFFSET_ENABLE       _IO  (ME4000_MAGIC, 35)
+#define ME4000_AI_OFFSET_DISABLE      _IO  (ME4000_MAGIC, 36)
+#define ME4000_AI_FULLSCALE_ENABLE    _IO  (ME4000_MAGIC, 37)
+#define ME4000_AI_FULLSCALE_DISABLE   _IO  (ME4000_MAGIC, 38)
+
+#define ME4000_AI_EEPROM_READ         _IOR (ME4000_MAGIC, 39, me4000_eeprom_t)
+#define ME4000_AI_EEPROM_WRITE        _IOW (ME4000_MAGIC, 40, me4000_eeprom_t)
+
+#define ME4000_AO_SIMULTANEOUS_EX_TRIG _IO  (ME4000_MAGIC, 41)
+#define ME4000_AO_SIMULTANEOUS_SW      _IO  (ME4000_MAGIC, 42)
+#define ME4000_AO_SIMULTANEOUS_DISABLE _IO  (ME4000_MAGIC, 43)
+#define ME4000_AO_SIMULTANEOUS_UPDATE  _IOW (ME4000_MAGIC, 44, me4000_ao_channel_list_t)
+
+#define ME4000_AO_SYNCHRONOUS_EX_TRIG  _IO  (ME4000_MAGIC, 45)
+#define ME4000_AO_SYNCHRONOUS_SW       _IO  (ME4000_MAGIC, 46)
+#define ME4000_AO_SYNCHRONOUS_DISABLE  _IO  (ME4000_MAGIC, 47)
+
+#define ME4000_AO_EX_TRIG_TIMEOUT      _IOW (ME4000_MAGIC, 48, unsigned long)
+#define ME4000_AO_GET_FREE_BUFFER      _IOR (ME4000_MAGIC, 49, unsigned long)
+
+#define ME4000_AI_GET_COUNT_BUFFER     _IOR (ME4000_MAGIC, 50, unsigned long)
+
+#endif
diff --git a/drivers/staging/me4000/me4000_firmware.h b/drivers/staging/me4000/me4000_firmware.h
new file mode 100644
index 0000000..87c23f6
--- /dev/null
+++ b/drivers/staging/me4000/me4000_firmware.h
@@ -0,0 +1,10033 @@
+/*
+   This file is copyright by Meilhaus Electronic GmbH 2003.
+   You are not allowed to distribute, sell, modify, reverse engineer or use this
+   code (or parts of it) for any other purpose or under any other conditions
+   than stated below.
+
+   1) You are allowed to distribute verbatim copies of this file together
+   with device drivers for the Meilhaus ME-4000, board family.
+
+   2) Derived work (device drivers using this file) can be published under
+   the terms of the GNU General Public License as published by
+   the Free Software Foundation; either version 2 of the License, or
+   (at your option) any later version. Any other license terms have
+   to be agreed by Meilhaus GmbH in written.
+
+   2) This file is distributed WITHOUT ANY WARRANTY;
+   without even the implied warranty of MERCHANTABILITY
+   or FITNESS FOR A PARTICULAR PURPOSE. Meilhaus is under
+   no means liable for products using this file or parts of it.
+
+   3) The copyright of this file has to be mentioned in derived work.
+
+   4) If this license terms are not valid due to any other law
+   or restrictions imposed on you, you are not allowed to use
+   this file in any way at all.
+ */
+
+/* Version 18 of standard firmware */
+static unsigned char xilinx_firm[] = {
+0x00, 0x01, 0xfb, 0xdc, 0x01, 0x01, 0x04, 0x00, 0x00, 0x09, 0x04, 0x02, 0x00,
+0x00, 0x00, 0x00, 0xFF, 0xFF, 0xFF, 0xFF, 0x55, 0x99, 0xAA, 0x66, 0x0C, 0x00,
+0x01, 0x80, 0x00, 0x00, 0x00, 0xE0, 0x0C, 0x80, 0x06, 0x80, 0x00, 0x00, 0x00,
+0xF0, 0x0C, 0x80, 0x04, 0x80, 0x00, 0x01, 0xFC, 0xB4, 0x0C, 0x00, 0x03, 0x80,
+0x00, 0x00, 0x00, 0x00, 0x0C, 0x00, 0x01, 0x80, 0x00, 0x00, 0x00, 0x90, 0x0C,
+0x00, 0x04, 0x80, 0x00, 0x00, 0x00, 0x00, 0x0C, 0x00, 0x01, 0x80, 0x00, 0x00,
+0x00, 0x80, 0x0C, 0x00, 0x02, 0x00, 0x0A, 0x00, 0x6E, 0x0D, 0x01, 0x49, 0x04,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x80, 0x00, 0x20, 0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x48, 0x04, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x80,
+0x00, 0x20, 0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x40, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
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+0x00, 0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x40, 0x02, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
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+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x4A, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x20, 0x01,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x01, 0x48, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x20, 0x09, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x08, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x20, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0xFE, 0x4B, 0x02, 0x3E, 0x00, 0xEA, 0x00, 0xA8, 0x00, 0xA0,
+0x0A, 0x80, 0x2A, 0x00, 0xAE, 0x00, 0xB8, 0x02, 0xA0, 0x02, 0x80, 0x28, 0x00,
+0xAA, 0x00, 0xB8, 0x02, 0x60, 0x02, 0x80, 0x0B, 0x00, 0x26, 0x00, 0xB8, 0x00,
+0xE0, 0x02, 0x80, 0x0B, 0x00, 0x2E, 0x00, 0xB8, 0x00, 0xE0, 0x02, 0x80, 0x0B,
+0x00, 0xAE, 0x00, 0xB8, 0x02, 0x80, 0x0A, 0xFC, 0x23, 0x01, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x03, 0xA0, 0x5B, 0x00, 0xF3, 0x04, 0xCC, 0x01, 0xF2, 0x96, 0xC2,
+0xDF, 0x30, 0xBB, 0x43, 0xD0, 0x73, 0xB0, 0x8F, 0xC0, 0x3D, 0x02, 0xFB, 0x48,
+0xFC, 0x13, 0x30, 0x13, 0xC0, 0x4F, 0x02, 0x3F, 0x01, 0xDC, 0x13, 0xB0, 0x4F,
+0xC0, 0x4F, 0x00, 0x3B, 0xC9, 0xCC, 0x04, 0xF2, 0x13, 0xC0, 0xFC, 0x00, 0xFB,
+0xC9, 0x8C, 0x27, 0x30, 0x03, 0xC0, 0x0F, 0x00, 0x0E, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x01, 0x08, 0x57, 0x40, 0xE1, 0x08, 0x44, 0x03, 0xD0, 0x09, 0x40, 0x13,
+0x01, 0xD1, 0x04, 0xC4, 0x1B, 0x10, 0x6D, 0x40, 0x3C, 0x02, 0xDD, 0x06, 0xF4,
+0x0F, 0x10, 0x11, 0x40, 0x27, 0x11, 0x57, 0x81, 0xC4, 0x0F, 0xD0, 0xBF, 0x40,
+0x64, 0x00, 0x51, 0x04, 0x44, 0x04, 0xD0, 0x11, 0x50, 0x34, 0x00, 0xD1, 0x00,
+0x54, 0x11, 0x14, 0x19, 0x40, 0x17, 0x20, 0x0C, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x11, 0x00, 0x37, 0x00, 0xC1, 0x00, 0x04, 0x00, 0xD8, 0x48, 0x44, 0x21, 0x00,
+0xC9, 0x00, 0x14, 0x03, 0xD0, 0xCC, 0x64, 0x33, 0x11, 0xCD, 0x06, 0x34, 0x23,
+0x50, 0x00, 0x00, 0x02, 0x01, 0x8D, 0x00, 0x04, 0x23, 0xD0, 0x0C, 0x42, 0x01,
+0x00, 0xC1, 0x00, 0x14, 0x00, 0xD0, 0x00, 0x44, 0x30, 0x09, 0xCD, 0x44, 0x44,
+0x12, 0x10, 0x00, 0x44, 0x47, 0x88, 0x0E, 0x00, 0x00, 0x00, 0x00, 0x00, 0x03,
+0xA8, 0xB5, 0x01, 0xD1, 0x00, 0x44, 0x0A, 0xD8, 0x09, 0x40, 0x27, 0x00, 0xD1,
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+};
diff --git a/drivers/staging/me4000/me4610_firmware.h b/drivers/staging/me4000/me4610_firmware.h
new file mode 100644
index 0000000..c550d99
--- /dev/null
+++ b/drivers/staging/me4000/me4610_firmware.h
@@ -0,0 +1,5409 @@
+/*
+   This file is copyright by Meilhaus Electronic GmbH 2003.
+   You are not allowed to distribute, sell, modify, reverse engineer or use this
+   code (or parts of it) for any other purpose or under any other conditions
+   than stated below.
+
+   1) You are allowed to distribute verbatim copies of this file together
+   with device drivers for the Meilhaus ME-4000, board family.
+
+   2) Derived work (device drivers using this file) can be published under
+   the terms of the GNU General Public License as published by
+   the Free Software Foundation; either version 2 of the License, or
+   (at your option) any later version. Any other license terms have
+   to be agreed by Meilhaus GmbH in written.
+
+   2) This file is distributed WITHOUT ANY WARRANTY;
+   without even the implied warranty of MERCHANTABILITY
+   or FITNESS FOR A PARTICULAR PURPOSE. Meilhaus is under
+   no means liable for products using this file or parts of it.
+
+   3) The copyright of this file has to be mentioned in derived work.
+
+   4) If this license terms are not valid due to any other law
+   or restrictions imposed on you, you are not allowed to use
+   this file in any way at all.
+ */
+
+/* Version 0 of ME-4610 firmware */
+static unsigned char xilinx_firm_4610[] = {
+0x00, 0x01, 0x11, 0x0c, 0x01, 0x01, 0x04, 0x00, 0x00, 0x09, 0x04, 0x02, 0x00,
+0x00, 0x00, 0x00, 0xFF, 0xFF, 0xFF, 0xFF, 0x55, 0x99, 0xAA, 0x66, 0x0C, 0x00,
+0x01, 0x80, 0x00, 0x00, 0x00, 0xE0, 0x0C, 0x80, 0x06, 0x80, 0x00, 0x00, 0x00,
+0xD0, 0x0C, 0x80, 0x04, 0x80, 0x00, 0x01, 0xFC, 0xB4, 0x0C, 0x00, 0x03, 0x80,
+0x00, 0x00, 0x00, 0x00, 0x0C, 0x00, 0x01, 0x80, 0x00, 0x00, 0x00, 0x90, 0x0C,
+0x00, 0x04, 0x80, 0x00, 0x00, 0x00, 0x00, 0x0C, 0x00, 0x01, 0x80, 0x00, 0x00,
+0x00, 0x80, 0x0C, 0x00, 0x02, 0x00, 0x0A, 0x00, 0x7C, 0x20, 0x40, 0x58, 0x04,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x02, 0x20, 0x01, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x48, 0x04, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x02, 0x20, 0x03, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x40, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x40,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x01,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x48, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x20, 0x01, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x40, 0x48, 0x02, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x20, 0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x08, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x20,
+0x09, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xBF, 0x58, 0x80, 0x54, 0x00,
+0x44, 0x01, 0x18, 0x05, 0x60, 0x04, 0x80, 0x01, 0x00, 0x66, 0x00, 0xD8, 0x00,
+0x60, 0x0A, 0x80, 0x2D, 0x00, 0xF6, 0x00, 0xD8, 0x03, 0x60, 0x0A, 0x80, 0x69,
+0x00, 0xC6, 0x01, 0x98, 0x05, 0x20, 0x16, 0xFC, 0x23, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x03, 0xA0, 0xFF, 0x00, 0xBF, 0x00, 0xDC, 0x32, 0xF0,
+0x13, 0xC0, 0x4F, 0x00, 0xFB, 0x28, 0xBC, 0x04, 0xB0, 0x17, 0xC0, 0x4E, 0x12,
+0x1B, 0x10, 0xFC, 0x13, 0x30, 0x93, 0xC0, 0x4B, 0x00, 0x1F, 0x01, 0xFC, 0x24,
+0x30, 0xCF, 0xE2, 0x0C, 0x00, 0x0E, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x01, 0x08, 0x37, 0x01, 0x9D, 0x06, 0x44, 0x30, 0xD1, 0x11, 0x40, 0x47, 0x00,
+0xFD, 0x0A, 0x74, 0x06, 0x10, 0x09, 0x40, 0x17, 0x09, 0x11, 0x42, 0xF4, 0x0B,
+0x50, 0x49, 0x40, 0x06, 0x0C, 0x1D, 0x00, 0x74, 0x00, 0x10, 0x8F, 0x40, 0x04,
+0x20, 0x0C, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x11, 0x00, 0x33, 0x00,
+0x8D, 0x18, 0x05, 0x16, 0xDA, 0x08, 0x40, 0x33, 0x00, 0xCD, 0x40, 0x74, 0x03,
+0x91, 0x0C, 0x40, 0x35, 0x01, 0x0D, 0x20, 0x34, 0xA3, 0x10, 0x48, 0x40, 0x01,
+0x01, 0xCD, 0xA0, 0x74, 0x13, 0xD2, 0x4C, 0x40, 0x44, 0x80, 0x0E, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x03, 0xA8, 0x34, 0x00, 0x9D, 0x01, 0x44, 0x86,
+0xD0, 0x39, 0x40, 0x07, 0x00, 0xDD, 0x00, 0x64, 0x8A, 0x10, 0x89, 0x02, 0x37,
+0x00, 0x15, 0x10, 0x74, 0x03, 0x50, 0x19, 0x07, 0x47, 0x20, 0x5D, 0x04, 0x74,
+0xA3, 0xDA, 0x0D, 0x48, 0x0C, 0x20, 0x06, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0xA8, 0x77, 0x00, 0x1F, 0x91, 0x4C, 0x86, 0xE0, 0x19, 0xC0, 0x57,
+0x21, 0xDB, 0x00, 0x7C, 0x01, 0xB0, 0x05, 0x80, 0x06, 0x91, 0x1B, 0x0B, 0x7C,
+0x03, 0x31, 0x31, 0xC0, 0x47, 0x01, 0x9F, 0x44, 0x7C, 0x02, 0xD0, 0x0D, 0x60,
+0x00, 0x20, 0x0E, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x07, 0x80, 0x3D,
+0x02, 0x3E, 0x40, 0xE8, 0x00, 0xF0, 0x0B, 0x40, 0x8F, 0x00, 0xFE, 0x00, 0xF4,
+0x48, 0xF0, 0x0B, 0xC0, 0x1F, 0x80, 0x1A, 0x20, 0xBC, 0x03, 0xE1, 0x0B, 0xC8,
+0x0E, 0x00, 0x3E, 0x01, 0xF8, 0x02, 0x30, 0x0F, 0xD1, 0x1F, 0x00, 0x06, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x02, 0x08, 0x35, 0x00, 0x9F, 0x00, 0x5C,
+0x46, 0x70, 0x09, 0xC0, 0x37, 0x00, 0xDF, 0x20, 0x7C, 0x21, 0x30, 0x0D, 0xC4,
+0x34, 0x00, 0xDF, 0x00, 0x4C, 0x83, 0xB0, 0x29, 0xC0, 0x84, 0x08, 0x9F, 0x44,
+0x7C, 0x43, 0xF0, 0x0C, 0xC4, 0x0A, 0x20, 0x04, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x13, 0xA0, 0x34, 0x00, 0x9D, 0x00, 0x74, 0x0A, 0x90, 0x09, 0x40,
+0x67, 0x00, 0xF0, 0x80, 0x34, 0x04, 0xB0, 0xB9, 0x40, 0x32, 0x00, 0xD1, 0x41,
+0xC0, 0x03, 0xD0, 0x09, 0x40, 0x07, 0x00, 0x51, 0x00, 0x34, 0x43, 0xD0, 0x3F,
+0x40, 0x4C, 0x00, 0x02, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x07, 0xA0,
+0x32, 0x10, 0x1D, 0x40, 0x30, 0x00, 0x90, 0x10, 0x40, 0xA3, 0x84, 0xC9, 0x00,
+0x34, 0x00, 0x10, 0x08, 0x40, 0x20, 0x00, 0xC0, 0x21, 0x00, 0x03, 0x90, 0x00,
+0x40, 0x00, 0x00, 0x49, 0x83, 0x04, 0x89, 0xD8, 0x0C, 0x40, 0x1C, 0x00, 0x0A,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x06, 0x82, 0x78, 0x02, 0xEC, 0x81,
+0xB4, 0x05, 0x9A, 0x92, 0x60, 0x4B, 0x90, 0xE1, 0xA9, 0xB6, 0x06, 0x90, 0x1A,
+0x60, 0x7A, 0x00, 0xE1, 0x13, 0xA4, 0x07, 0xC0, 0x12, 0x40, 0x4F, 0x00, 0x61,
+0x35, 0xB4, 0x25, 0xC0, 0x9F, 0x61, 0x18, 0x00, 0x02, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x12, 0x10, 0x30, 0x10, 0x4D, 0x00, 0x1C, 0xA1, 0x78, 0x80,
+0xE1, 0x33, 0x25, 0xCF, 0x20, 0x3C, 0x23, 0x30, 0x2C, 0xC1, 0x34, 0x08, 0x07,
+0x05, 0x0D, 0x03, 0xB0, 0xC0, 0xE8, 0x10, 0x22, 0xCF, 0x41, 0x3C, 0x17, 0xF2,
+0xDD, 0xD0, 0x48, 0x40, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x02,
+0xB2, 0x3D, 0x08, 0xFF, 0x00, 0xFE, 0xA3, 0x80, 0x8F, 0xC2, 0x1B, 0x00, 0xFF,
+0x80, 0xFE, 0x03, 0xF0, 0x0B, 0x40, 0x3F, 0x10, 0x37, 0x08, 0xDC, 0x63, 0xF0,
+0x87, 0xC6, 0x3F, 0x08, 0xDF, 0x00, 0x7C, 0x23, 0xFA, 0x8F, 0xC2, 0x09, 0x60,
+0x06, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x15, 0xA8, 0x77, 0x00, 0x57,
+0x00, 0x7C, 0x03, 0xF0, 0x11, 0xC0, 0x35, 0x00, 0xDF, 0x10, 0x5C, 0x01, 0xF0,
+0x18, 0xC0, 0x66, 0x00, 0xD3, 0x00, 0x6C, 0x13, 0xF0, 0x01, 0xC8, 0x17, 0x10,
+0x9F, 0x00, 0x7C, 0x03, 0x32, 0xBD, 0xC5, 0x54, 0x20, 0x0E, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x12, 0x98, 0x3D, 0x00, 0x61, 0x80, 0xB6, 0x01, 0xD0,
+0x0A, 0x48, 0x38, 0x00, 0xFD, 0x06, 0x84, 0x03, 0xD2, 0x0A, 0x40, 0x39, 0x40,
+0xF1, 0x80, 0x86, 0x43, 0xD0, 0x0A, 0x48, 0x1B, 0x00, 0xED, 0x00, 0xB4, 0x03,
+0x10, 0x0F, 0x40, 0x48, 0x60, 0x06, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x03, 0x00, 0x79, 0x80, 0xE5, 0x01, 0x94, 0x07, 0xD0, 0x17, 0x40, 0x79, 0x08,
+0xEC, 0x01, 0x94, 0x07, 0xD0, 0x1F, 0x40, 0x7B, 0x00, 0xE1, 0x01, 0x84, 0x07,
+0xD0, 0x1E, 0x60, 0x79, 0x00, 0xAD, 0x11, 0xA4, 0x07, 0x50, 0x1E, 0x40, 0x0C,
+0x00, 0x04, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x12, 0x20, 0x23, 0x00,
+0xC1, 0x00, 0x34, 0x03, 0xD0, 0x0C, 0x42, 0x31, 0x02, 0xCD, 0x00, 0x14, 0x4B,
+0xD1, 0x08, 0x40, 0x31, 0x00, 0xC1, 0x0D, 0x04, 0x03, 0xD0, 0x0C, 0x40, 0x73,
+0x01, 0xCD, 0x80, 0x74, 0x0B, 0x50, 0x0C, 0x40, 0x48, 0x00, 0x0C, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x17, 0xA0, 0x14, 0x01, 0x77, 0x03, 0xFC, 0x29,
+0xD0, 0x17, 0xC1, 0x5D, 0x00, 0x5F, 0x00, 0x9C, 0x19, 0xD0, 0x07, 0xC0, 0x1E,
+0x00, 0x73, 0x02, 0x4C, 0x01, 0xF0, 0x47, 0xC0, 0x1F, 0x8C, 0x7F, 0x00, 0xFC,
+0x09, 0x72, 0x05, 0x40, 0x5C, 0x20, 0x06, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x12, 0x00, 0x07, 0x00, 0x1F, 0x08, 0x7C, 0x00, 0xD0, 0x11, 0x40, 0x46,
+0x00, 0x0E, 0x40, 0x68, 0x00, 0xF0, 0x01, 0xC0, 0x06, 0x00, 0x1F, 0x42, 0x5C,
+0x00, 0xB2, 0x11, 0xC0, 0x07, 0x00, 0x1B, 0x10, 0x7C, 0x10, 0x82, 0x01, 0xC0,
+0x4B, 0x00, 0x0C, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x10, 0x00, 0x27,
+0x00, 0x8F, 0x10, 0x54, 0x0A, 0xF2, 0x09, 0x40, 0x27, 0x00, 0x9B, 0x00, 0x4C,
+0x06, 0xD0, 0x99, 0xC0, 0x27, 0x00, 0x8F, 0x04, 0x5C, 0x82, 0xE0, 0x09, 0xC0,
+0x27, 0x00, 0x97, 0x00, 0x7C, 0x02, 0x30, 0x89, 0xC2, 0x43, 0x20, 0x0C, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x01, 0x20, 0x26, 0x10, 0x9C, 0x00, 0x54,
+0x02, 0xD0, 0xB9, 0x40, 0xE7, 0x00, 0x9D, 0x00, 0x44, 0x6A, 0x10, 0x19, 0x04,
+0x27, 0x00, 0x9D, 0x02, 0x45, 0x02, 0xC2, 0x09, 0x40, 0x27, 0x00, 0x90, 0x13,
+0x74, 0x22, 0x10, 0x59, 0x40, 0x07, 0x00, 0x08, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x18, 0xA0, 0x24, 0x00, 0x9D, 0x00, 0x44, 0x02, 0x90, 0x09, 0x40,
+0xE7, 0x00, 0x9D, 0x80, 0x45, 0x02, 0x90, 0x09, 0x41, 0x26, 0x00, 0x9D, 0x02,
+0x44, 0x82, 0x90, 0x09, 0x40, 0x23, 0x00, 0x91, 0x01, 0x74, 0x02, 0x10, 0x09,
+0x40, 0x63, 0x00, 0x02, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x10, 0x20,
+0x20, 0x02, 0x8D, 0x14, 0x14, 0x56, 0xD0, 0x0C, 0x40, 0x23, 0x08, 0x8D, 0x00,
+0x04, 0x02, 0x10, 0x08, 0x40, 0x23, 0x02, 0x8D, 0x00, 0x04, 0x02, 0xD0, 0x88,
+0x00, 0x23, 0x02, 0x81, 0x00, 0x30, 0x02, 0x14, 0x48, 0x49, 0x43, 0x80, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x1D, 0xB0, 0x86, 0x00, 0x1F, 0x24,
+0x4C, 0x10, 0xF0, 0x01, 0xC0, 0x07, 0x10, 0x1E, 0x14, 0x4C, 0x00, 0xB0, 0xA1,
+0xC2, 0x83, 0x00, 0x1F, 0x1E, 0x4C, 0x78, 0xF0, 0x21, 0xC0, 0x87, 0x00, 0x17,
+0x0A, 0x3C, 0x81, 0x30, 0x41, 0xC0, 0x77, 0xC0, 0x0A, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x19, 0xB0, 0x2F, 0x01, 0xBF, 0x94, 0xFC, 0x52, 0xF2, 0x0A,
+0xC8, 0x2F, 0x00, 0x9C, 0x14, 0xFC, 0x02, 0xB0, 0x1F, 0x80, 0x2F, 0x01, 0xBF,
+0x81, 0x70, 0x06, 0xF1, 0x4F, 0xC0, 0x2F, 0x41, 0xBF, 0x01, 0xFC, 0x53, 0xF0,
+0x49, 0x41, 0x67, 0x60, 0x0E, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x19,
+0x80, 0x23, 0x00, 0x97, 0x08, 0xF0, 0x37, 0x30, 0x0A, 0xC0, 0x2F, 0x20, 0x9F,
+0x0C, 0xFC, 0x02, 0xF0, 0x0B, 0xC0, 0xA2, 0x00, 0xBF, 0x10, 0x4C, 0x02, 0xF0,
+0x29, 0xC0, 0x25, 0x02, 0xB3, 0x00, 0xFC, 0x02, 0x30, 0x0B, 0xC0, 0x64, 0x00,
+0x0E, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x1C, 0x08, 0x07, 0x01, 0x01,
+0x05, 0x74, 0x3D, 0xB0, 0x01, 0x40, 0x17, 0x00, 0x1D, 0x01, 0x74, 0x01, 0xD1,
+0x01, 0x40, 0x04, 0x00, 0x0D, 0x02, 0x51, 0x28, 0x91, 0x01, 0x40, 0x14, 0x11,
+0x11, 0x00, 0x74, 0x00, 0x10, 0x01, 0x48, 0x71, 0x00, 0x0C, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x10, 0xA0, 0x23, 0x04, 0x85, 0x42, 0x34, 0x02, 0x59,
+0x08, 0x40, 0x23, 0x08, 0x8D, 0x02, 0x34, 0x02, 0xD0, 0x09, 0x42, 0x22, 0x10,
+0x8D, 0x00, 0x16, 0x82, 0xD0, 0x09, 0x40, 0x21, 0x00, 0xC5, 0x20, 0x74, 0x02,
+0x11, 0x08, 0x50, 0x40, 0x80, 0x0E, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x18, 0xA8, 0x21, 0x00, 0x91, 0x04, 0x74, 0x03, 0xD0, 0x39, 0x60, 0x27, 0x08,
+0x9D, 0x00, 0x74, 0x02, 0xD0, 0x8D, 0x42, 0x24, 0x00, 0x9D, 0x00, 0x54, 0x02,
+0xD0, 0x09, 0x40, 0x24, 0x40, 0x95, 0x04, 0x74, 0x02, 0x52, 0x09, 0x40, 0x61,
+0x20, 0x06, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x05, 0x28, 0x25, 0x08,
+0x97, 0x93, 0x78, 0x0A, 0x74, 0x19, 0xC0, 0xE7, 0x00, 0x9F, 0x00, 0x7C, 0x0A,
+0xF0, 0x08, 0xC8, 0xE6, 0x01, 0x9F, 0xB8, 0x5C, 0x02, 0xF0, 0x28, 0xC2, 0x25,
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+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x0C, 0x00,
+0x00, 0x80, 0x00, 0x00, 0xA4, 0x07, 0x0C, 0x00, 0x01, 0x80, 0x00, 0x00, 0x00,
+0xC0, 0x0C, 0x00, 0x02, 0x30, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x0C, 0x00, 0x01, 0x80, 0x00, 0x00, 0x00, 0xA0, 0x0C, 0x00, 0x05, 0x80,
+0x00, 0x00, 0x00, 0x00, 0x0C, 0x00, 0x00, 0x80, 0x00, 0x00, 0x87, 0x5A, 0x00,
+0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00,
+0x00, 0x00
+};
diff --git a/drivers/staging/slicoss/Kconfig b/drivers/staging/slicoss/Kconfig
new file mode 100644
index 0000000..d2993d3
--- /dev/null
+++ b/drivers/staging/slicoss/Kconfig
@@ -0,0 +1,14 @@
+config SLICOSS
+	tristate "Alacritech Gigabit IS-NIC support"
+	depends on PCI && X86 && NETDEV_1000
+	default n
+	help
+	  This driver supports Alacritech's IS-NIC gigabit ethernet cards.
+
+	  This includes the following devices:
+	    Mojave cards (single port PCI Gigabit) both copper and fiber
+	    Oasis cards (single and dual port PCI-x Gigabit) copper and fiber
+	    Kalahari cards (dual and quad port PCI-e Gigabit) copper and fiber
+
+	  To compile this driver as a module, choose M here: the module
+	  will be called slicoss.
diff --git a/drivers/staging/slicoss/Makefile b/drivers/staging/slicoss/Makefile
new file mode 100644
index 0000000..7bc9e9b
--- /dev/null
+++ b/drivers/staging/slicoss/Makefile
@@ -0,0 +1 @@
+obj-$(CONFIG_SLICOSS) += slicoss.o
diff --git a/drivers/staging/slicoss/README b/drivers/staging/slicoss/README
new file mode 100644
index 0000000..2d5b112
--- /dev/null
+++ b/drivers/staging/slicoss/README
@@ -0,0 +1,19 @@
+This driver is supposed to support:
+
+	Mojave cards (single port PCI Gigabit) both copper and fiber
+	Oasis cards (single and dual port PCI-x Gigabit) copper and fiber
+	Kalahari cards (dual and quad port PCI-e Gigabit) copper and fiber
+
+The driver was actually tested on Oasis and Kalahari cards.
+
+TODO:
+	- move firmware loading to request_firmware()
+	- remove direct memory access of structures
+	- any remaining sparse and checkpatch.pl warnings
+	- any netdev recommended changes
+
+Please send patches to:
+        Greg Kroah-Hartman <gregkh@suse.de>
+and Cc: Lior Dotan <liodot@gmail.com> and Christopher Harrer
+<charrer@alacritech.com> as well as they are also able to test out any
+changes.
diff --git a/drivers/staging/slicoss/gbdownload.h b/drivers/staging/slicoss/gbdownload.h
new file mode 100644
index 0000000..794432b
--- /dev/null
+++ b/drivers/staging/slicoss/gbdownload.h
@@ -0,0 +1,8215 @@
+#define MOJAVE_UCODE_VERS_STRING	"1.2"
+#define MOJAVE_UCODE_VERS_DATE  	"2006/03/27 15:12:22"
+#define MOJAVE_UCODE_HOSTIF_ID  	3
+
+static s32 MNumSections = 0x2;
+static u32 MSectionSize[] =
+{
+	0x00008000, 0x00010000,
+};
+
+static u32 MSectionStart[] =
+{
+	0x00000000, 0x00008000,
+};
+
+static u8 MojaveUCode[2][65536] =
+{
+	{
+	0x12, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x18, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x1e, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x03, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x00, 0x00, 0x00, 0xa8,
+	0x98, 0xb0, 0x01, 0x00, 0x04, 0x80, 0xa2, 0x40, 0xfd, 0x7f, 0x00, 0x00,
+	0x09, 0x00, 0xa2, 0x49, 0xdd, 0x7d, 0x00, 0x00, 0x00, 0x00, 0x00, 0x4c,
+	0x80, 0xb2, 0x01, 0x00, 0x07, 0x00, 0x00, 0x40, 0xd1, 0xb1, 0x00, 0x00,
+	0x00, 0x00, 0x00, 0x4c, 0x80, 0xb2, 0x01, 0x00, 0x09, 0x00, 0xa2, 0x40,
+	0x75, 0x7d, 0x00, 0x00, 0x60, 0x00, 0x00, 0x40, 0x61, 0x99, 0x01, 0x00,
+	0x0b, 0x00, 0xa8, 0xb1, 0x7e, 0x31, 0x00, 0x00, 0x09, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x11, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x00, 0x80, 0x1f, 0xe9, 0x18, 0x31, 0x00, 0x00, 0x00, 0x00, 0x41, 0xe9,
+	0x80, 0xb2, 0x01, 0x00, 0x0f, 0x00, 0x40, 0xe9, 0x80, 0xb2, 0x00, 0x00,
+	0x00, 0x00, 0x00, 0x40, 0xa5, 0x99, 0x01, 0x00, 0x16, 0x00, 0x29, 0x40,
+	0x81, 0x32, 0x00, 0x00, 0x16, 0x00, 0x14, 0xbc, 0x80, 0x32, 0x00, 0x00,
+	0x0f, 0x00, 0x93, 0xbc, 0x80, 0x32, 0x00, 0x00, 0x00, 0x00, 0x50, 0x40,
+	0x81, 0xb2, 0x01, 0x00, 0x00, 0x80, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x10, 0x00, 0x00, 0x40, 0xa5, 0x99, 0x01, 0x00, 0x1c, 0x00, 0x29, 0x40,
+	0x81, 0x32, 0x00, 0x00, 0x1c, 0x00, 0x14, 0xbc, 0x80, 0x32, 0x00, 0x00,
+	0x11, 0x00, 0x93, 0xbc, 0x80, 0x32, 0x00, 0x00, 0x00, 0x00, 0x50, 0x40,
+	0x81, 0xb2, 0x01, 0x00, 0x01, 0x80, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x20, 0x00, 0x00, 0x40, 0xa5, 0x99, 0x01, 0x00, 0x22, 0x00, 0x29, 0x40,
+	0x81, 0x32, 0x00, 0x00, 0x22, 0x00, 0x14, 0xbc, 0x80, 0x32, 0x00, 0x00,
+	0x0e, 0x00, 0x93, 0xbc, 0x80, 0x32, 0x00, 0x00, 0x00, 0x00, 0x00, 0x49,
+	0xdd, 0x81, 0x01, 0x00, 0x2b, 0x01, 0x00, 0x40, 0x81, 0x32, 0x01, 0x00,
+	0x3c, 0x01, 0x00, 0x40, 0x81, 0x32, 0x01, 0x00, 0x27, 0x00, 0x14, 0xbc,
+	0x80, 0x32, 0x00, 0x00, 0x14, 0x01, 0x13, 0xbc, 0x80, 0x32, 0x00, 0x00,
+	0x54, 0x95, 0x00, 0x40, 0x45, 0x99, 0x01, 0x00, 0xff, 0xff, 0x00, 0x40,
+	0xe5, 0x99, 0x01, 0x00, 0x00, 0x00, 0x2f, 0x40, 0x49, 0xb1, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0x40, 0xe1, 0xb1, 0x01, 0x00, 0x00, 0x00, 0x00, 0x4b,
+	0xb7, 0xb3, 0x01, 0x00, 0x00, 0x00, 0x00, 0x40, 0xb5, 0xb3, 0x01, 0x00,
+	0xd9, 0x00, 0x00, 0x40, 0xb3, 0x33, 0x01, 0x00, 0x00, 0x00, 0x00, 0x40,
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+	0xc9, 0x9f, 0x00, 0x43, 0xcb, 0x93, 0x00, 0x00, 0x00, 0x00, 0x50, 0x40,
+	0x81, 0xb2, 0x01, 0x00, 0xd9, 0x9f, 0x00, 0x40, 0x19, 0x99, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0xf0, 0x9a, 0xb0, 0x01, 0x00, 0x00, 0x00, 0x00, 0x44,
+	0x49, 0xd1, 0x01, 0x00, 0x00, 0x00, 0x40, 0xf0, 0x80, 0xb2, 0x01, 0x00,
+	0x00, 0x00, 0x41, 0x4d, 0x80, 0xb2, 0x01, 0x00, 0xd1, 0x9f, 0x00, 0x40,
+	0x19, 0x99, 0x01, 0x00, 0x00, 0x00, 0x4c, 0x40, 0x81, 0xb2, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0x44, 0x49, 0xd1, 0x01, 0x00, 0x00, 0x00, 0x00, 0xf0,
+	0x9a, 0xb0, 0x01, 0x00, 0x00, 0x00, 0x00, 0x4d, 0x10, 0xb1, 0x00, 0x00,
+	0x00, 0x00, 0x00, 0xe2, 0x49, 0xb1, 0x01, 0x00, 0x00, 0x00, 0x00, 0xe3,
+	0x43, 0xb1, 0x01, 0x00, 0x00, 0x00, 0x00, 0xe4, 0x45, 0xb1, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0x40, 0x7b, 0xb3, 0x01, 0x00, 0x00, 0x00, 0x48, 0x4f,
+	0x40, 0xb1, 0x01, 0x00, 0xd9, 0x9f, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x00, 0x00, 0x80, 0x40, 0x81, 0xb0, 0x01, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x6a, 0x84, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x19, 0x9a, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x35, 0x9a, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x00, 0x00, 0x80, 0x40, 0x81, 0xb2, 0x01, 0x00, 0x00, 0x00, 0x00, 0xa8,
+	0x10, 0xb1, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00,
+	},
+};
diff --git a/drivers/staging/slicoss/gbrcvucode.h b/drivers/staging/slicoss/gbrcvucode.h
new file mode 100644
index 0000000..4fa5a4c
--- /dev/null
+++ b/drivers/staging/slicoss/gbrcvucode.h
@@ -0,0 +1,238 @@
+/*
+ * Copyright (c) 1997-2002 Alacritech, Inc. All rights reserved
+ *
+ *
+ * Redistribution and use in source and binary forms, with or without
+ * modification, are permitted provided that the following conditions
+ * are met:
+ *
+ * 1. Redistributions of source code must retain the above copyright
+ *    notice, this list of conditions and the following disclaimer.
+ * 2. Redistributions in binary form must reproduce the above
+ *    copyright notice, this list of conditions and the following
+ *    disclaimer in the documentation and/or other materials provided
+ *    with the distribution.
+ *
+ * THIS SOFTWARE IS PROVIDED BY ALACRITECH, INC. ``AS IS'' AND ANY
+ * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
+ * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
+ * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL ALACRITECH, INC. OR
+ * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
+ * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
+ * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
+ * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
+ * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
+ * SUCH DAMAGE.
+ *
+ * The views and conclusions contained in the software and documentation
+ * are those of the authors and should not be interpreted as representing
+ * official policies, either expressed or implied, of Alacritech, Inc.
+ *
+ **************************************************************************/
+#define GB_RCVUCODE_VERS_STRING	"1.2"
+#define GB_RCVUCODE_VERS_DATE  	"2006/03/27 15:12:15"
+
+static u32 GBRcvUCodeLen = 512;
+
+static u8 GBRcvUCode[2560] =
+{
+0x47, 0x75, 0x01, 0x00, 0x04, 0xa0, 0x13, 0x01, 0x00, 0x1c, 0xb7, 0x5b, 0x09,
+0x30, 0x00, 0xb6, 0x5f, 0x01, 0x00, 0x1c, 0x00, 0x00, 0x00, 0x20, 0x18, 0x3b,
+0x78, 0x3a, 0x00, 0x1c, 0xa2, 0x77, 0x01, 0x00, 0x1c, 0x07, 0x1d, 0x01, 0x70,
+0x18, 0xb3, 0x7b, 0xa9, 0xaa, 0x1e, 0xb4, 0x7b, 0x01, 0x0c, 0x1c, 0xb5, 0x7b,
+0x1d, 0x06, 0x1c, 0x00, 0x00, 0x40, 0x64, 0x08, 0x0c, 0x31, 0x56, 0x70, 0x04,
+0x0c, 0x31, 0x56, 0x80, 0x04, 0x0c, 0x31, 0x4a, 0x90, 0x04, 0x0c, 0x31, 0x46,
+0xa0, 0x00, 0x09, 0x25, 0x51, 0xc0, 0x04, 0x0c, 0x31, 0x4e, 0xb0, 0x00, 0xe9,
+0x24, 0x51, 0xc0, 0x04, 0xcc, 0xb3, 0x00, 0x1c, 0x1c, 0xeb, 0x2d, 0x01, 0x00,
+0x1c, 0x06, 0x56, 0x42, 0xd4, 0x08, 0x07, 0x9d, 0x00, 0x00, 0x1c, 0x7b, 0xb7,
+0x02, 0x00, 0x10, 0xa0, 0x0f, 0x41, 0x54, 0x09, 0x06, 0x56, 0x5a, 0xc0, 0x04,
+0xa0, 0x30, 0x6c, 0x03, 0x00, 0xac, 0x30, 0x6d, 0x03, 0x00, 0xcd, 0x03, 0x3a,
+0x00, 0x1c, 0x7b, 0xb7, 0x02, 0x00, 0x1c, 0x60, 0x8e, 0x41, 0x54, 0x09, 0x29,
+0x25, 0x6d, 0x03, 0x00, 0x80, 0x8e, 0x41, 0x54, 0x09, 0x8c, 0x30, 0x8d, 0x00,
+0x04, 0x47, 0x1c, 0x01, 0x00, 0x1c, 0xa0, 0x0f, 0x41, 0x54, 0x09, 0x00, 0x00,
+0x60, 0x00, 0x04, 0x47, 0x1c, 0x61, 0xc0, 0x04, 0x47, 0x1c, 0x6d, 0x03, 0x00,
+0x6c, 0x30, 0x01, 0x00, 0x1c, 0x4d, 0x34, 0x02, 0x00, 0x1c, 0x7b, 0xb7, 0x02,
+0x00, 0x1c, 0xa0, 0x0f, 0x41, 0x54, 0x09, 0xc8, 0x83, 0x37, 0x00, 0x1c, 0x80,
+0x01, 0x00, 0x00, 0x1c, 0x00, 0x00, 0x60, 0x00, 0x04, 0xa0, 0x0f, 0x40, 0x54,
+0x09, 0x00, 0x00, 0x6c, 0xc3, 0x04, 0x7b, 0xfb, 0xf2, 0x00, 0x1c, 0xcc, 0x33,
+0x0d, 0x00, 0x1c, 0xb4, 0x7b, 0xfd, 0x03, 0x1c, 0x80, 0x0e, 0x40, 0x54, 0x09,
+0xe0, 0xfb, 0x05, 0x00, 0x1c, 0x00, 0x00, 0xa0, 0x03, 0x00, 0xb3, 0x0f, 0x41,
+0x54, 0x09, 0x00, 0x00, 0xe8, 0x70, 0x04, 0x00, 0x00, 0xe8, 0x80, 0x04, 0x00,
+0x00, 0xa0, 0x93, 0x00, 0x61, 0x76, 0xa1, 0xc3, 0x04, 0xc0, 0x8d, 0x41, 0x54,
+0x09, 0xe0, 0x7b, 0x00, 0xc0, 0x1f, 0xa0, 0xfd, 0xc1, 0x01, 0x00, 0xcc, 0x33,
+0x05, 0x00, 0x1c, 0xd4, 0x03, 0x00, 0x3c, 0x1c, 0xd4, 0xd3, 0x1b, 0x00, 0x1c,
+0xc0, 0xd3, 0x52, 0x00, 0x1c, 0x00, 0x00, 0x74, 0x13, 0x04, 0x8e, 0x8e, 0x42,
+0x54, 0x09, 0x5b, 0x80, 0x76, 0x13, 0x04, 0x00, 0x00, 0x00, 0x00, 0x1c, 0x00,
+0x00, 0x90, 0x01, 0x00, 0xa0, 0x0f, 0x41, 0x54, 0x09, 0xa0, 0x0f, 0x41, 0x54,
+0x09, 0xc0, 0x03, 0xfc, 0x7f, 0x1c, 0xa0, 0x01, 0x9c, 0x01, 0x00, 0x00, 0x00,
+0xa0, 0x01, 0x00, 0xa0, 0x0f, 0x41, 0x54, 0x09, 0xc0, 0x03, 0xfc, 0x03, 0x1c,
+0xf5, 0x77, 0x01, 0x00, 0x1c, 0x26, 0x7a, 0xf6, 0x05, 0x1c, 0xa0, 0x0f, 0x41,
+0x54, 0x09, 0xb3, 0x0f, 0x41, 0x54, 0x09, 0xb5, 0x02, 0x02, 0x00, 0x1c, 0xa0,
+0x0f, 0x41, 0x54, 0x09, 0x7a, 0x06, 0x02, 0x00, 0x1c, 0xb5, 0x02, 0x02, 0x00,
+0x1c, 0x53, 0x0f, 0x42, 0x54, 0x09, 0xaf, 0x03, 0x01, 0x00, 0x1c, 0x7a, 0x0e,
+0x42, 0x54, 0x09, 0xb5, 0x02, 0x02, 0x00, 0x1c, 0x00, 0x00, 0x02, 0x00, 0x1c,
+0xa0, 0x3d, 0xa6, 0x11, 0x04, 0x00, 0x00, 0xa8, 0x11, 0x04, 0xd4, 0xd3, 0x52,
+0x00, 0x1c, 0xb5, 0x3e, 0xae, 0x01, 0x00, 0x20, 0xfb, 0xfd, 0xff, 0x1f, 0x80,
+0x2c, 0x84, 0x03, 0x00, 0xb9, 0x3a, 0x9a, 0x01, 0x00, 0x75, 0x3b, 0x02, 0x00,
+0x1c, 0xa7, 0x1c, 0x01, 0x00, 0x10, 0xdb, 0x83, 0x16, 0x00, 0x1c, 0xc7, 0x1d,
+0x1d, 0xc1, 0x04, 0xb9, 0x3b, 0x89, 0xc1, 0x04, 0x8b, 0x2c, 0x01, 0x00, 0x1c,
+0x6b, 0x2c, 0x31, 0xc1, 0x04, 0x00, 0x00, 0x74, 0x11, 0x00, 0xcb, 0x2c, 0x75,
+0xc1, 0x04, 0xa0, 0x0f, 0x41, 0x54, 0x09, 0xa0, 0x0f, 0x41, 0x54, 0x09, 0x54,
+0xd0, 0x02, 0x00, 0x1c, 0x49, 0x25, 0xad, 0x01, 0x00, 0xab, 0x2c, 0x7d, 0xc1,
+0x04, 0xa7, 0x1d, 0x6d, 0x03, 0x00, 0xcc, 0x33, 0x09, 0x00, 0x1c, 0xeb, 0x2d,
+0x01, 0x00, 0x1c, 0xea, 0x29, 0x01, 0x00, 0x1c, 0xa0, 0x0f, 0x41, 0x54, 0x09,
+0xae, 0x0f, 0x41, 0x54, 0x09, 0xa0, 0x0f, 0x41, 0x54, 0x09, 0xd4, 0x07, 0xfc,
+0x03, 0x1c, 0x99, 0x3a, 0x02, 0x00, 0x1c, 0xbb, 0x38, 0x02, 0x00, 0x1c, 0x00,
+0x38, 0x00, 0x00, 0x1c, 0x00, 0x00, 0xf8, 0x01, 0x04, 0xdb, 0x3b, 0x7e, 0x00,
+0x1c, 0xc7, 0x1d, 0x01, 0x00, 0x1c, 0x26, 0x7a, 0x0a, 0x06, 0x1c, 0x27, 0x1d,
+0x01, 0x00, 0x1c, 0xb3, 0x0f, 0x41, 0x54, 0x09, 0x7a, 0x0e, 0x42, 0x54, 0x09,
+0x53, 0x0f, 0x42, 0x54, 0x09, 0x7a, 0x0e, 0x42, 0x54, 0x09, 0x53, 0x0f, 0x42,
+0x54, 0x09, 0x7a, 0x0e, 0x42, 0x54, 0x09, 0x53, 0x0f, 0x42, 0x54, 0x09, 0xa0,
+0x0f, 0x41, 0x54, 0x09, 0x7a, 0x06, 0x02, 0x00, 0x1c, 0x53, 0x0f, 0x42, 0x54,
+0x09, 0xaf, 0x03, 0x01, 0x00, 0x1c, 0x7a, 0x0e, 0x42, 0x54, 0x09, 0x53, 0x0f,
+0x42, 0x54, 0x09, 0x7a, 0x0e, 0x42, 0x54, 0x09, 0x53, 0x0f, 0x42, 0x54, 0x09,
+0x7a, 0x0e, 0x42, 0x54, 0x09, 0x53, 0x0f, 0x42, 0x54, 0x09, 0x7a, 0x0e, 0x42,
+0x54, 0x09, 0x00, 0x3d, 0x02, 0x00, 0x1c, 0x00, 0x00, 0x54, 0x12, 0x00, 0xcb,
+0x2c, 0x01, 0x00, 0x1c, 0x75, 0x3b, 0x02, 0x00, 0x1c, 0xa7, 0x1c, 0x01, 0x00,
+0x10, 0xa6, 0x7b, 0xf1, 0x05, 0x1c, 0x00, 0x00, 0x88, 0xc2, 0x04, 0xa6, 0x7b,
+0xf1, 0x05, 0x1c, 0x00, 0x00, 0xa0, 0xc2, 0x04, 0xcb, 0x2f, 0x05, 0x00, 0x1c,
+0x60, 0x2c, 0x00, 0x00, 0x1c, 0xc7, 0x1c, 0xe1, 0x02, 0x00, 0x53, 0x0f, 0x42,
+0x54, 0x09, 0xc0, 0x83, 0xf1, 0x32, 0x1c, 0x00, 0x00, 0x5c, 0x02, 0x04, 0x46,
+0x7a, 0xda, 0x05, 0x1c, 0x7a, 0x0e, 0x42, 0x54, 0x09, 0xc0, 0x83, 0xf1, 0x32,
+0x1c, 0x00, 0x00, 0x64, 0x02, 0x04, 0x40, 0xfa, 0x15, 0x00, 0x1c, 0x00, 0x00,
+0xa0, 0x02, 0x04, 0x46, 0x7a, 0xda, 0x05, 0x1c, 0xa0, 0x0f, 0x41, 0x54, 0x09,
+0xa0, 0x0f, 0x41, 0x54, 0x09, 0xa0, 0x0f, 0x41, 0x54, 0x09, 0xa0, 0x0f, 0x41,
+0x54, 0x09, 0xb3, 0x7b, 0x01, 0xc0, 0x1f, 0x74, 0x0e, 0x40, 0x54, 0x09, 0xc0,
+0x03, 0x9c, 0x00, 0x1c, 0x80, 0x00, 0xf0, 0x02, 0x00, 0x00, 0x00, 0xf0, 0x02,
+0x04, 0x00, 0x00, 0xc4, 0x12, 0x05, 0x07, 0x1d, 0x01, 0x00, 0x1c, 0xd4, 0xd3,
+0x2b, 0x00, 0x1c, 0xd4, 0xd3, 0x52, 0x00, 0x1c, 0x80, 0x76, 0x95, 0x13, 0x04,
+0x00, 0x00, 0xf8, 0x02, 0x00, 0xa6, 0x7b, 0xa9, 0x03, 0x10, 0xc7, 0x9c, 0x00,
+0x00, 0x1c, 0x80, 0x2c, 0x00, 0x00, 0x1c, 0x00, 0x00, 0x78, 0x02, 0x04, 0x00,
+0x00, 0x6c, 0xc3, 0x04, 0xab, 0x2d, 0xf1, 0x12, 0x05, 0x07, 0x1d, 0xcd, 0xc2,
+0x04, 0x8b, 0x2d, 0x01, 0x00, 0x1c, 0x69, 0x25, 0x01, 0x00, 0x1c, 0xa6, 0x7b,
+0xa9, 0x03, 0x10, 0xcb, 0x2f, 0x09, 0x00, 0x1c, 0x60, 0x2c, 0x00, 0x00, 0x1c,
+0x00, 0x00, 0x60, 0x03, 0x00, 0x53, 0x0f, 0x42, 0x54, 0x09, 0x46, 0x7a, 0xda,
+0x05, 0x1c, 0x7a, 0x0e, 0x42, 0x54, 0x09, 0x40, 0xfa, 0x15, 0x00, 0x1c, 0x00,
+0x00, 0x28, 0x03, 0x04, 0x46, 0x7a, 0xda, 0x05, 0x1c, 0xb5, 0x0f, 0x41, 0x54,
+0x09, 0xa0, 0x0f, 0x41, 0x54, 0x09, 0x73, 0xec, 0x42, 0x03, 0x04, 0x60, 0x2c,
+0x00, 0x00, 0x1c, 0x00, 0x00, 0x40, 0x03, 0x00, 0xc7, 0x1c, 0x01, 0x00, 0x1c,
+0x00, 0x00, 0x40, 0x13, 0x05, 0x07, 0x1d, 0x01, 0x00, 0x1c, 0xc0, 0xd7, 0x22,
+0x00, 0x1c, 0x75, 0x56, 0x96, 0x13, 0x04, 0x60, 0x2c, 0x00, 0x00, 0x1c, 0xe7,
+0x1c, 0x5d, 0x03, 0x04, 0xe7, 0x9c, 0x00, 0x00, 0x1c, 0xa6, 0x7b, 0xa9, 0x03,
+0x10, 0x80, 0x2c, 0x00, 0x00, 0x1c, 0x00, 0x00, 0x10, 0x03, 0x04, 0x00, 0x00,
+0x6c, 0xc3, 0x04, 0xb9, 0x7b, 0x01, 0x00, 0x1c, 0x00, 0x00, 0xa0, 0xc3, 0x04,
+0xcb, 0xaf, 0xfc, 0x07, 0x1c, 0xcb, 0x2f, 0x01, 0x04, 0x1c, 0xc7, 0x9f, 0x80,
+0x03, 0x1c, 0x00, 0x00, 0xa0, 0xc3, 0x04, 0xcb, 0xaf, 0xfc, 0x07, 0x1c, 0xcb,
+0x2f, 0x0d, 0x04, 0x1c, 0xc7, 0x9f, 0x80, 0x03, 0x1c, 0x00, 0x00, 0xa0, 0xc3,
+0x04, 0xcb, 0xaf, 0x00, 0xf8, 0x1d, 0xcb, 0x2f, 0x01, 0x00, 0x1d, 0x00, 0x00,
+0xa0, 0xc3, 0x04, 0x00, 0x00, 0xa0, 0x13, 0x05, 0x07, 0x1d, 0x01, 0x00, 0x1c,
+0xc0, 0x1d, 0xf0, 0xd3, 0x08, 0x27, 0x9d, 0xf8, 0x03, 0x00, 0xa0, 0xee, 0x56,
+0xd4, 0x00, 0xfb, 0x75, 0x19, 0x14, 0x04, 0x20, 0x7b, 0x06, 0x00, 0x1c, 0xc0,
+0x1c, 0x2c, 0x04, 0x00, 0x00, 0x00, 0xc4, 0xd3, 0x08, 0x00, 0x00, 0x10, 0xf4,
+0x00, 0xc0, 0xef, 0xf2, 0x00, 0x1c, 0x20, 0x25, 0x6c, 0x14, 0x04, 0x60, 0xb7,
+0xe6, 0x03, 0x00, 0x00, 0x00, 0x1c, 0x15, 0x00, 0xcc, 0xb3, 0xfc, 0x03, 0x1c,
+0xcc, 0x33, 0x05, 0x02, 0x1c, 0x00, 0x00, 0x1c, 0xc5, 0x04, 0x60, 0xb7, 0x1e,
+0x05, 0x04, 0x00, 0x00, 0x1c, 0x15, 0x04, 0x00, 0x00, 0x6c, 0xc4, 0x04, 0xc0,
+0x1d, 0xac, 0xf3, 0x04, 0x00, 0x00, 0x78, 0xc4, 0x04, 0x07, 0x9d, 0x00, 0x00,
+0x1c, 0x1b, 0x74, 0x0d, 0xf4, 0x04, 0xa0, 0x0f, 0x41, 0x54, 0x09, 0xe0, 0x7b,
+0x00, 0xfc, 0x1f, 0x39, 0x7f, 0x02, 0x00, 0x1c, 0x07, 0x1d, 0xb1, 0xc3, 0x04,
+0xa6, 0x7b, 0xc1, 0x03, 0x1c, 0x00, 0x00, 0x78, 0xc4, 0x04, 0xe0, 0x1c, 0x00,
+0x00, 0x1c, 0x00, 0x00, 0xb8, 0x03, 0x04, 0xcb, 0xaf, 0x00, 0xf8, 0x1d, 0xcb,
+0x2f, 0x01, 0x10, 0x1d, 0x00, 0x00, 0xc0, 0xc3, 0x04, 0x00, 0x00, 0xc0, 0x03,
+0x04, 0xcb, 0xaf, 0x00, 0xf8, 0x1d, 0xcb, 0x2f, 0x01, 0x18, 0x1d, 0xc7, 0x9f,
+0x00, 0x0b, 0x1c, 0x00, 0x00, 0xc0, 0xc3, 0x04, 0xfb, 0x75, 0x01, 0x00, 0x1c,
+0x07, 0x1d, 0x01, 0x00, 0x1c, 0xcc, 0xb3, 0xfc, 0x03, 0x1c, 0xcc, 0x33, 0x01,
+0x02, 0x1c, 0x00, 0x00, 0xc0, 0xc3, 0x04, 0xa0, 0x1c, 0x00, 0x00, 0x1c, 0xa0,
+0xee, 0xb6, 0x03, 0x04, 0xcb, 0xaf, 0xfc, 0x07, 0x1c, 0xcb, 0x2f, 0x09, 0x04,
+0x1c, 0xfb, 0x75, 0x01, 0x00, 0x1c, 0x00, 0x00, 0xc0, 0xc3, 0x04, 0xcc, 0xb3,
+0xfc, 0x03, 0x1c, 0xcc, 0x33, 0x01, 0x02, 0x1c, 0x00, 0x00, 0x1c, 0xc5, 0x04,
+0x00, 0x00, 0x88, 0x34, 0x05, 0xcc, 0xb3, 0xfc, 0x03, 0x1c, 0xcc, 0x33, 0x15,
+0x02, 0x1c, 0x47, 0x9d, 0x64, 0xc4, 0x04, 0x00, 0x00, 0x88, 0x44, 0x00, 0x80,
+0x1d, 0x8c, 0x54, 0x04, 0x87, 0x1d, 0x9d, 0x04, 0x00, 0xce, 0x76, 0x01, 0x00,
+0x1c, 0xef, 0x76, 0xad, 0xc4, 0x04, 0xa4, 0x77, 0x9d, 0x24, 0x09, 0xe4, 0x76,
+0x01, 0x00, 0x1c, 0xc4, 0x76, 0x01, 0x00, 0x1c, 0x00, 0x00, 0xa8, 0x54, 0x04,
+0xd7, 0x76, 0x01, 0x50, 0x18, 0xf6, 0x76, 0x01, 0x00, 0x1c, 0x00, 0x00, 0x00,
+0x30, 0x18, 0x00, 0x00, 0x00, 0x00, 0x10, 0xcc, 0x30, 0x51, 0xc5, 0x04, 0xeb,
+0x2d, 0x01, 0x00, 0x1c, 0xea, 0x29, 0x01, 0x00, 0x1c, 0xc0, 0x59, 0x01, 0x00,
+0x1c, 0xf5, 0x77, 0x39, 0xc5, 0x04, 0xe0, 0x30, 0xec, 0x04, 0x00, 0x00, 0x4c,
+0xc0, 0x04, 0x00, 0x20, 0x4c, 0x04, 0x05, 0x00, 0x00, 0x00, 0xf8, 0x04, 0x00,
+0xcc, 0xb3, 0xfc, 0x03, 0x1c, 0xcc, 0x33, 0x09, 0x02, 0x1c, 0xeb, 0x2d, 0xc5,
+0xc4, 0x04, 0xcc, 0xb3, 0xfc, 0x03, 0x1c, 0xcc, 0x33, 0x19, 0x02, 0x1c, 0xeb,
+0x2d, 0xc5, 0xc4, 0x04, 0xcc, 0xb3, 0xfc, 0x03, 0x1c, 0xcc, 0x33, 0x0d, 0x02,
+0x1c, 0xeb, 0x2d, 0xc5, 0xc4, 0x04, 0xcc, 0xb3, 0xfc, 0x03, 0x1c, 0xcc, 0x33,
+0x11, 0x02, 0x1c, 0xeb, 0x2d, 0xc5, 0xc4, 0x04, 0x00, 0x7b, 0x00, 0x80, 0x1c,
+0xae, 0x77, 0x51, 0x05, 0x00, 0x00, 0x00, 0x04, 0xc0, 0x04, 0xd3, 0x8b, 0x00,
+0xfc, 0x1f, 0x60, 0x7a, 0x3c, 0x00, 0x1c, 0x60, 0x4c, 0xd0, 0x04, 0x00, 0xc0,
+0x2f, 0x20, 0x05, 0x1f, 0xe0, 0x30, 0xc0, 0x04, 0x00, 0x80, 0x25, 0xc0, 0x04,
+0x00, 0xb5, 0x5b, 0xc1, 0x04, 0x04, 0x69, 0x26, 0x01, 0x00, 0x1c, 0x6a, 0x2b,
+0x01, 0x00, 0x1c, 0x80, 0x1d, 0x00, 0x00, 0x1c, 0xa9, 0x25, 0x51, 0x05, 0x00,
+0xee, 0x30, 0x00, 0x00, 0x1c, 0xaf, 0x77, 0x11, 0x05, 0x00, 0xb4, 0x5f, 0x01,
+0x40, 0x18, 0x07, 0x9d, 0x54, 0x55, 0x04, 0xb7, 0x76, 0x01, 0x00, 0x1c, 0x96,
+0x76, 0x01, 0x00, 0x1c, 0x47, 0x1d, 0x01, 0x00, 0x1c, 0xa4, 0x33, 0x01, 0x60,
+0x18, 0xa4, 0x2f, 0x01, 0x60, 0x18, 0x64, 0x77, 0x01, 0x60, 0x18, 0x24, 0x77,
+0x01, 0x60, 0x18, 0x44, 0x77, 0x01, 0x00, 0x1c, 0x64, 0x88, 0x03, 0x00, 0x1c,
+0xa4, 0x3f, 0x01, 0x00, 0x1c, 0xa4, 0x3b, 0x01, 0x00, 0x1c, 0x53, 0x77, 0x01,
+0x00, 0x1c, 0xd3, 0xcf, 0x3b, 0x00, 0x1c, 0x53, 0x4f, 0x02, 0x00, 0x1c, 0xd3,
+0xcf, 0x00, 0x00, 0x1f, 0xda, 0xcf, 0x0b, 0x00, 0x1c, 0xd5, 0x57, 0x0f, 0x00,
+0x1c, 0xd3, 0xd3, 0x37, 0x00, 0x1c, 0xd4, 0x53, 0x0f, 0x00, 0x1c, 0xe0, 0x29,
+0x00, 0x00, 0x1c, 0xf5, 0xd5, 0xc0, 0x05, 0x00, 0x00, 0x00, 0xac, 0x55, 0x04,
+0x77, 0x56, 0x01, 0x00, 0x1c, 0x56, 0x53, 0x01, 0x00, 0x1c, 0x00, 0x00, 0x00,
+0x10, 0x18, 0x00, 0x00, 0x04, 0xc0, 0x04, 0xf5, 0x55, 0x01, 0x00, 0x1c, 0x00,
+0x00, 0xc4, 0x55, 0x04, 0x77, 0x56, 0x01, 0x00, 0x1c, 0x56, 0x53, 0x01, 0x00,
+0x1c, 0x00, 0x00, 0x00, 0x10, 0x18, 0x00, 0x00, 0x04, 0xc0, 0x04, 0xcb, 0x2f,
+0x01, 0x18, 0x10, 0xcb, 0x2f, 0x01, 0x10, 0x10, 0xcb, 0x2f, 0x01, 0x08, 0x10,
+0xcb, 0x2f, 0x01, 0x08, 0x10, 0xcb, 0x2f, 0x01, 0x20, 0x10, 0xcb, 0x2f, 0x01,
+0x00, 0x10, 0xcb, 0x2f, 0x01, 0x28, 0x10, 0x89, 0x25, 0x6d, 0xc2, 0x04, 0x00,
+0x00, 0x04, 0xc3, 0x04, 0x00, 0x00, 0x6c, 0xc3, 0x04, 0x00, 0x00, 0x6c, 0xc3,
+0x04, 0x00, 0x00, 0x6c, 0xc3, 0x04, 0x00, 0x00, 0x6c, 0xc2, 0x04, 0x00, 0x00,
+0x04, 0xc3, 0x04, 0x00, 0x00, 0x6c, 0xc3, 0x04, 0x00, 0x00, 0x6c, 0xc3, 0x04,
+0x00, 0x00, 0x6c, 0xc3, 0x04, 0x40, 0x1c, 0x68, 0xc0, 0x04, 0x40, 0x1c, 0x98,
+0xc0, 0x04, 0xa7, 0x77, 0x6d, 0xc3, 0x04, 0x00, 0x00, 0xc0, 0xc0, 0x04, 0x27,
+0x1d, 0xed, 0xc0, 0x04, 0x00, 0x00, 0x6c, 0xc3, 0x04, 0x00, 0x00, 0x6c, 0xc3,
+0x04, 0x00, 0x00, 0x6c, 0xc3, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00,
+0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04,
+0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c,
+0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00,
+0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6,
+0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00,
+0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04,
+0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c,
+0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00,
+0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6,
+0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00,
+0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04,
+0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c,
+0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00,
+0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6,
+0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00,
+0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04,
+0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c,
+0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00,
+0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6,
+0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00,
+0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04,
+0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c,
+0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00,
+0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6,
+0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00,
+0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04,
+0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c,
+0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00,
+0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6,
+0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00,
+0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04,
+0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c,
+0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00,
+0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6,
+0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00,
+0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04,
+0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c,
+0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00,
+0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6,
+0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00,
+0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04,
+0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c,
+0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04, 0x00, 0x00, 0x3c, 0xc6, 0x04,
+};
diff --git a/drivers/staging/slicoss/oasisdbgdownload.h b/drivers/staging/slicoss/oasisdbgdownload.h
new file mode 100644
index 0000000..519e007
--- /dev/null
+++ b/drivers/staging/slicoss/oasisdbgdownload.h
@@ -0,0 +1,6850 @@
+#define OASIS_UCODE_VERS_STRING	"1.2"
+#define OASIS_UCODE_VERS_DATE  	"2006/03/27 15:11:22"
+#define OASIS_UCODE_HOSTIF_ID  	3
+
+static s32 ONumSections = 0x2;
+static u32 OSectionSize[] =
+{
+	0x00004000, 0x00010000,
+};
+
+static u32 OSectionStart[] =
+{
+	0x00000000, 0x00008000,
+};
+
+static u8 OasisUCode[2][65536] =
+{
+	{
+	0x15, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x1b, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x21, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x03, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x00, 0x00, 0x00, 0xa8,
+	0x98, 0xb0, 0x01, 0x00, 0x04, 0x80, 0xa2, 0x40, 0xfd, 0x7f, 0x00, 0x00,
+	0x09, 0x00, 0xa2, 0x49, 0xdd, 0x7d, 0x00, 0x00, 0x00, 0x00, 0x00, 0x4c,
+	0x80, 0xb2, 0x01, 0x00, 0x07, 0x00, 0x00, 0x40, 0xd1, 0xb1, 0x00, 0x00,
+	0x00, 0x00, 0x00, 0x4c, 0x80, 0xb2, 0x01, 0x00, 0x09, 0x00, 0xa2, 0x40,
+	0x75, 0x7d, 0x00, 0x00, 0x60, 0x00, 0x00, 0x40, 0x61, 0x99, 0x01, 0x00,
+	0x0b, 0x00, 0xa8, 0xb1, 0x7e, 0x31, 0x00, 0x00, 0x09, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x00, 0x80, 0x8f, 0x98, 0x18, 0x31, 0x00, 0x00,
+	0x10, 0x00, 0x00, 0x98, 0x80, 0xe4, 0x01, 0x00, 0x00, 0x00, 0x41, 0x98,
+	0x80, 0x94, 0x01, 0x00, 0x00, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x01, 0x00,
+	0x10, 0x00, 0x00, 0x98, 0x80, 0xe4, 0x01, 0x00, 0x0e, 0x00, 0x40, 0x98,
+	0x80, 0x94, 0x00, 0x00, 0x11, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x00, 0x00, 0x00, 0x40, 0xa5, 0x99, 0x01, 0x00, 0x19, 0x00, 0x29, 0x40,
+	0x81, 0x32, 0x00, 0x00, 0x19, 0x00, 0x14, 0xbc, 0x80, 0x32, 0x00, 0x00,
+	0x0e, 0x00, 0x93, 0xbc, 0x80, 0x32, 0x00, 0x00, 0x00, 0x00, 0x50, 0x40,
+	0x81, 0xb2, 0x01, 0x00, 0x00, 0x80, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x10, 0x00, 0x00, 0x40, 0xa5, 0x99, 0x01, 0x00, 0x1f, 0x00, 0x29, 0x40,
+	0x81, 0x32, 0x00, 0x00, 0x1f, 0x00, 0x14, 0xbc, 0x80, 0x32, 0x00, 0x00,
+	0x12, 0x00, 0x93, 0xbc, 0x80, 0x32, 0x00, 0x00, 0x00, 0x00, 0x50, 0x40,
+	0x81, 0xb2, 0x01, 0x00, 0x01, 0x80, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x20, 0x00, 0x00, 0x40, 0xa5, 0x99, 0x01, 0x00, 0x25, 0x00, 0x29, 0x40,
+	0x81, 0x32, 0x00, 0x00, 0x25, 0x00, 0x14, 0xbc, 0x80, 0x32, 0x00, 0x00,
+	0x14, 0x00, 0x93, 0xbc, 0x80, 0x32, 0x00, 0x00, 0x00, 0x00, 0x00, 0x49,
+	0xdd, 0x81, 0x01, 0x00, 0x12, 0x01, 0x00, 0x40, 0x81, 0x32, 0x01, 0x00,
+	0x33, 0x01, 0x00, 0x40, 0x81, 0x32, 0x01, 0x00, 0x2a, 0x00, 0x14, 0xbc,
+	0x80, 0x32, 0x00, 0x00, 0xfe, 0x00, 0x13, 0xbc, 0x80, 0x32, 0x00, 0x00,
+	0x54, 0x95, 0x00, 0x40, 0x45, 0x99, 0x01, 0x00, 0xff, 0xff, 0x00, 0x40,
+	0xe5, 0x99, 0x01, 0x00, 0x00, 0x00, 0x2f, 0x40, 0x49, 0xb1, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0x40, 0xe1, 0xb1, 0x01, 0x00, 0x00, 0x00, 0x00, 0x40,
+	0xfd, 0xb3, 0x01, 0x00, 0x00, 0x00, 0x00, 0x40, 0xff, 0xb3, 0x01, 0x00,
+	0x33, 0x00, 0x18, 0xee, 0x80, 0x32, 0x00, 0x00, 0x00, 0x00, 0x00, 0x50,
+	0x89, 0xb0, 0x01, 0x00, 0x32, 0x00, 0xa2, 0x41, 0x89, 0x50, 0x00, 0x00,
+	0x99, 0x00, 0x00, 0x40, 0x81, 0x32, 0x01, 0x00, 0x30, 0x94, 0x00, 0x40,
+	0x43, 0x99, 0x01, 0x00, 0x00, 0x00, 0x00, 0xf8, 0x20, 0xb1, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0xfa, 0xe0, 0xb3, 0x01, 0x00, 0x39, 0x00, 0x98, 0xee,
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+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0xae, 0x9f, 0x00, 0x88,
+	0x9a, 0xb0, 0x00, 0x00, 0xae, 0x9f, 0x00, 0x88, 0x9a, 0xb0, 0x00, 0x00,
+	0xae, 0x9f, 0x00, 0x88, 0x9a, 0xb0, 0x00, 0x00, 0xae, 0x9f, 0x00, 0x88,
+	0x9a, 0xb0, 0x00, 0x00, 0xae, 0x9f, 0x00, 0x88, 0x9a, 0xb0, 0x00, 0x00,
+	0x00, 0x00, 0x00, 0x88, 0x9a, 0xb0, 0x01, 0x00, 0xae, 0x9f, 0x41, 0x40,
+	0x81, 0x32, 0x00, 0x00, 0xb2, 0x9f, 0x22, 0x40, 0x7b, 0x6f, 0x00, 0x00,
+	0x00, 0x00, 0x19, 0x40, 0x81, 0xb2, 0x01, 0x00, 0xae, 0x9f, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x00, 0x00, 0x19, 0x41, 0x7b, 0xb3, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0xa4, 0xc4, 0xb3, 0x01, 0x00, 0x00, 0x00, 0x00, 0xa1,
+	0xc6, 0xb3, 0x01, 0x00, 0x00, 0x00, 0x2f, 0xa2, 0xc8, 0xb3, 0x01, 0x00,
+	0x08, 0x14, 0x00, 0x40, 0x49, 0x99, 0x01, 0x00, 0xa8, 0x9f, 0x00, 0x4d,
+	0x9a, 0xcc, 0x01, 0x00, 0xbb, 0x9f, 0x26, 0x40, 0x81, 0x32, 0x00, 0x00,
+	0x00, 0x00, 0x00, 0x4c, 0x49, 0xc1, 0x01, 0x00, 0xb9, 0x9f, 0xa2, 0x41,
+	0x9b, 0x50, 0x00, 0x00, 0xbf, 0x9f, 0x80, 0x80, 0x80, 0x32, 0x00, 0x00,
+	0x00, 0x00, 0x52, 0x49, 0xfd, 0x93, 0x01, 0x00, 0x00, 0x00, 0x00, 0x4a,
+	0xfd, 0x93, 0x01, 0x00, 0xc2, 0x9f, 0x00, 0x42, 0xcd, 0x93, 0x00, 0x00,
+	0x00, 0x00, 0x51, 0x4a, 0xfd, 0x93, 0x01, 0x00, 0x00, 0x00, 0x00, 0x49,
+	0xfd, 0x93, 0x01, 0x00, 0xc2, 0x9f, 0x00, 0x43, 0xcb, 0x93, 0x00, 0x00,
+	0x00, 0x00, 0x50, 0x40, 0x81, 0xb2, 0x01, 0x00, 0xd2, 0x9f, 0x00, 0x40,
+	0x19, 0x99, 0x01, 0x00, 0x00, 0x00, 0x00, 0xf0, 0x9a, 0xb0, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0x44, 0x49, 0xd1, 0x01, 0x00, 0x00, 0x00, 0x40, 0xf0,
+	0x80, 0xb2, 0x01, 0x00, 0x00, 0x00, 0x41, 0x4d, 0x80, 0xb2, 0x01, 0x00,
+	0xca, 0x9f, 0x00, 0x40, 0x19, 0x99, 0x01, 0x00, 0x00, 0x00, 0x4c, 0x40,
+	0x81, 0xb2, 0x01, 0x00, 0x00, 0x00, 0x00, 0x44, 0x49, 0xd1, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0xf0, 0x9a, 0xb0, 0x01, 0x00, 0x00, 0x00, 0x00, 0x4d,
+	0x10, 0xb1, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe2, 0x49, 0xb1, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0xe3, 0x43, 0xb1, 0x01, 0x00, 0x00, 0x00, 0x00, 0xe4,
+	0x45, 0xb1, 0x01, 0x00, 0x00, 0x00, 0x00, 0x40, 0x7b, 0xb3, 0x01, 0x00,
+	0x00, 0x00, 0x48, 0x4f, 0x40, 0xb1, 0x01, 0x00, 0xd2, 0x9f, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0xcb,
+	0x81, 0xc8, 0x01, 0x00, 0x22, 0x83, 0x00, 0x40, 0xf2, 0x93, 0x00, 0x00,
+	0x55, 0x82, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x40, 0x05, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x18, 0x06, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x22, 0x83, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0xc6, 0x82, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x43, 0x81, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x41, 0x81, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0xb8, 0x80, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0xed, 0x87, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x23, 0x83, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x27, 0x83, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0xb9, 0x94, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x8d, 0x98, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x79, 0x94, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x78, 0x98, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x87, 0x95, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x10, 0x95, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x0a, 0x95, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0xb1, 0x82, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x19, 0x99, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00,
+	},
+};
diff --git a/drivers/staging/slicoss/oasisdownload.h b/drivers/staging/slicoss/oasisdownload.h
new file mode 100644
index 0000000..6438c23
--- /dev/null
+++ b/drivers/staging/slicoss/oasisdownload.h
@@ -0,0 +1,6848 @@
+#define OASIS_UCODE_VERS_STRING	"1.2"
+#define OASIS_UCODE_VERS_DATE  	"2006/03/27 15:10:37"
+#define OASIS_UCODE_HOSTIF_ID  	3
+
+static s32 ONumSections = 0x2;
+static u32 OSectionSize[] = {
+	0x00004000, 0x00010000,
+};
+
+static u32 OSectionStart[] = {
+	0x00000000, 0x00008000,
+};
+
+static u8 OasisUCode[2][65536] =
+{
+	{
+	0x15, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x1b, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x21, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x03, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x00, 0x00, 0x00, 0xa8,
+	0x98, 0xb0, 0x01, 0x00, 0x04, 0x80, 0xa2, 0x40, 0xfd, 0x7f, 0x00, 0x00,
+	0x09, 0x00, 0xa2, 0x49, 0xdd, 0x7d, 0x00, 0x00, 0x00, 0x00, 0x00, 0x4c,
+	0x80, 0xb2, 0x01, 0x00, 0x07, 0x00, 0x00, 0x40, 0xd1, 0xb1, 0x00, 0x00,
+	0x00, 0x00, 0x00, 0x4c, 0x80, 0xb2, 0x01, 0x00, 0x09, 0x00, 0xa2, 0x40,
+	0x75, 0x7d, 0x00, 0x00, 0x60, 0x00, 0x00, 0x40, 0x61, 0x99, 0x01, 0x00,
+	0x0b, 0x00, 0xa8, 0xb1, 0x7e, 0x31, 0x00, 0x00, 0x09, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x00, 0x80, 0x8f, 0x98, 0x18, 0x31, 0x00, 0x00,
+	0x10, 0x00, 0x00, 0x98, 0x80, 0xe4, 0x01, 0x00, 0x00, 0x00, 0x41, 0x98,
+	0x80, 0x94, 0x01, 0x00, 0x00, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x01, 0x00,
+	0x10, 0x00, 0x00, 0x98, 0x80, 0xe4, 0x01, 0x00, 0x0e, 0x00, 0x40, 0x98,
+	0x80, 0x94, 0x00, 0x00, 0x11, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x00, 0x00, 0x00, 0x40, 0xa5, 0x99, 0x01, 0x00, 0x19, 0x00, 0x29, 0x40,
+	0x81, 0x32, 0x00, 0x00, 0x19, 0x00, 0x14, 0xbc, 0x80, 0x32, 0x00, 0x00,
+	0x0e, 0x00, 0x93, 0xbc, 0x80, 0x32, 0x00, 0x00, 0x00, 0x00, 0x50, 0x40,
+	0x81, 0xb2, 0x01, 0x00, 0x00, 0x80, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x10, 0x00, 0x00, 0x40, 0xa5, 0x99, 0x01, 0x00, 0x1f, 0x00, 0x29, 0x40,
+	0x81, 0x32, 0x00, 0x00, 0x1f, 0x00, 0x14, 0xbc, 0x80, 0x32, 0x00, 0x00,
+	0x12, 0x00, 0x93, 0xbc, 0x80, 0x32, 0x00, 0x00, 0x00, 0x00, 0x50, 0x40,
+	0x81, 0xb2, 0x01, 0x00, 0x01, 0x80, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x20, 0x00, 0x00, 0x40, 0xa5, 0x99, 0x01, 0x00, 0x25, 0x00, 0x29, 0x40,
+	0x81, 0x32, 0x00, 0x00, 0x25, 0x00, 0x14, 0xbc, 0x80, 0x32, 0x00, 0x00,
+	0x14, 0x00, 0x93, 0xbc, 0x80, 0x32, 0x00, 0x00, 0x00, 0x00, 0x00, 0x49,
+	0xdd, 0x81, 0x01, 0x00, 0x12, 0x01, 0x00, 0x40, 0x81, 0x32, 0x01, 0x00,
+	0x33, 0x01, 0x00, 0x40, 0x81, 0x32, 0x01, 0x00, 0x2a, 0x00, 0x14, 0xbc,
+	0x80, 0x32, 0x00, 0x00, 0xfe, 0x00, 0x13, 0xbc, 0x80, 0x32, 0x00, 0x00,
+	0x54, 0x95, 0x00, 0x40, 0x45, 0x99, 0x01, 0x00, 0xff, 0xff, 0x00, 0x40,
+	0xe5, 0x99, 0x01, 0x00, 0x00, 0x00, 0x2f, 0x40, 0x49, 0xb1, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0x40, 0xe1, 0xb1, 0x01, 0x00, 0x00, 0x00, 0x00, 0x40,
+	0xfd, 0xb3, 0x01, 0x00, 0x00, 0x00, 0x00, 0x40, 0xff, 0xb3, 0x01, 0x00,
+	0x33, 0x00, 0x18, 0xee, 0x80, 0x32, 0x00, 0x00, 0x00, 0x00, 0x00, 0x50,
+	0x89, 0xb0, 0x01, 0x00, 0x32, 0x00, 0xa2, 0x41, 0x89, 0x50, 0x00, 0x00,
+	0x99, 0x00, 0x00, 0x40, 0x81, 0x32, 0x01, 0x00, 0x30, 0x94, 0x00, 0x40,
+	0x43, 0x99, 0x01, 0x00, 0x00, 0x00, 0x00, 0xf8, 0x20, 0xb1, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0xfa, 0xe0, 0xb3, 0x01, 0x00, 0x39, 0x00, 0x98, 0xee,
+	0x80, 0x32, 0x00, 0x00, 0x00, 0x00, 0x00, 0xfb, 0x80, 0xb0, 0x01, 0x00,
+	0x3b, 0x00, 0x80, 0xf3, 0xde, 0x33, 0x00, 0x00, 0x00, 0x00, 0x00, 0x47,
+	0xfd, 0x93, 0x01, 0x00, 0x3e, 0x00, 0x83, 0xf3, 0x80, 0x32, 0x00, 0x00,
+	0xf0, 0x00, 0x00, 0xf3, 0x80, 0x88, 0x01, 0x00, 0x01, 0x80, 0x00, 0x40,
+	0x2e, 0xdd, 0x01, 0x00, 0x00, 0x94, 0x00, 0x40, 0x43, 0x99, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0x46, 0x43, 0xc1, 0x01, 0x00, 0x00, 0x00, 0x00, 0xfa,
+	0x24, 0xb1, 0x01, 0x00, 0x7c, 0x00, 0x18, 0xee, 0x80, 0x32, 0x00, 0x00,
+	0x45, 0x00, 0x95, 0xe8, 0x80, 0x32, 0x00, 0x00, 0xff, 0xff, 0x00, 0xe8,
+	0x80, 0x88, 0x01, 0x00, 0x7c, 0x00, 0x26, 0x40, 0x81, 0x32, 0x00, 0x00,
+	0x00, 0x00, 0x00, 0x40, 0xd5, 0x99, 0x01, 0x00, 0x00, 0x00, 0x00, 0xf2,
+	0xec, 0xb3, 0x01, 0x00, 0x00, 0x00, 0x00, 0xf8, 0xd6, 0xb1, 0x01, 0x00,
+	0x08, 0x00, 0x00, 0x40, 0xd5, 0x99, 0x01, 0x00, 0x00, 0x00, 0x00, 0xf0,
+	0xd6, 0xb1, 0x01, 0x00, 0xff, 0x00, 0x00, 0xf8, 0xee, 0x8b, 0x01, 0x00,
+	0x08, 0x01, 0x00, 0x40, 0xd5, 0x99, 0x01, 0x00, 0xff, 0x00, 0x00, 0xf0,
+	0x80, 0x8c, 0x01, 0x00, 0x00, 0x00, 0x00, 0xf7, 0x81, 0x94, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0x40, 0xd6, 0xb1, 0x01, 0x00, 0xff, 0x00, 0x00, 0xf8,
+	0x80, 0x88, 0x01, 0x00, 0x3c, 0x00, 0x00, 0x40, 0xd5, 0x99, 0x01, 0x00,
+	0xff, 0x00, 0x00, 0xf0, 0xd6, 0x8d, 0x01, 0x00, 0xff, 0xff, 0x00, 0xf0,
+	0xf0, 0xdb, 0x01, 0x00, 0x00, 0x00, 0x00, 0x48, 0x81, 0xe0, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0xf8, 0x81, 0x94, 0x01, 0x00, 0x3c, 0x01, 0x00, 0x40,
+	0xd5, 0x99, 0x01, 0x00, 0x00, 0x00, 0x00, 0x40, 0xd6, 0xb1, 0x01, 0x00,
+	0xff, 0x00, 0x00, 0xf8, 0x80, 0x88, 0x01, 0x00, 0x00, 0x00, 0x00, 0x48,
+	0x81, 0xe0, 0x01, 0x00, 0x00, 0x00, 0x00, 0xf8, 0x81, 0x94, 0x01, 0x00,
+	0x3c, 0x02, 0x00, 0x40, 0xd5, 0x99, 0x01, 0x00, 0x00, 0x00, 0x00, 0x40,
+	0xd6, 0xb1, 0x01, 0x00, 0x2c, 0x00, 0x00, 0x40, 0xd5, 0x99, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0xf8, 0xd6, 0xb1, 0x01, 0x00, 0x1e, 0x00, 0x00, 0xf0,
+	0x82, 0xf4, 0x01, 0x00, 0xff, 0x3f, 0x00, 0xf8, 0x80, 0xd8, 0x01, 0x00,
+	0x64, 0x00, 0x26, 0x40, 0x81, 0x32, 0x00, 0x00, 0x00, 0x00, 0x00, 0x41,
+	0x81, 0xd0, 0x01, 0x00, 0xff, 0xff, 0x00, 0x40, 0x80, 0xd8, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0x41, 0x80, 0x94, 0x01, 0x00, 0x00, 0x00, 0x00, 0x40,
+	0xd8, 0xb1, 0x01, 0x00, 0x68, 0x00, 0x22, 0xfa, 0x80, 0x30, 0x00, 0x00,
+	0x00, 0x00, 0x00, 0x4c, 0x81, 0xe0, 0x01, 0x00, 0x01, 0x00, 0x00, 0x40,
+	0x80, 0xcc, 0x01, 0x00, 0x00, 0x00, 0x00, 0x40, 0xde, 0xb1, 0x01, 0x00,
+	0x00, 0x01, 0x00, 0x40, 0xd5, 0x99, 0x01, 0x00, 0x10, 0x00, 0x00, 0xfa,
+	0x80, 0xe4, 0x01, 0x00, 0x00, 0x00, 0x00, 0xf6, 0x81, 0x94, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0x40, 0xd6, 0xb1, 0x01, 0x00, 0x00, 0x02, 0x00, 0x40,
+	0xd5, 0x99, 0x01, 0x00, 0x10, 0x00, 0x00, 0xfa, 0x80, 0xe4, 0x01, 0x00,
+	0x00, 0x00, 0x00, 0xf6, 0x81, 0x94, 0x01, 0x00, 0x00, 0x00, 0x00, 0x40,
+	0xd6, 0xb1, 0x01, 0x00, 0x06, 0x00, 0x00, 0x40, 0xd5, 0x99, 0x01, 0x00,
+	0x10, 0x00, 0x00, 0xfb, 0xd6, 0xe5, 0x01, 0x00, 0x07, 0x00, 0x00, 0x40,
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+	0xaf, 0x82, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0xf5, 0x82, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x94, 0x92, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0xd7, 0x95, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x5d, 0x92, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0xc6, 0x95, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x33, 0x93, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0xd6, 0x92, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0xd0, 0x92, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x9a, 0x82, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x00, 0x00, 0x80, 0x40,
+	0x81, 0xb2, 0x01, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00,
+	0x04, 0x00, 0x00, 0x40, 0x81, 0xb2, 0x00, 0x00, 0x04, 0x00, 0x00, 0x40,
+	0x81, 0xb2, 0x00, 0x00,
+	},
+};
diff --git a/drivers/staging/slicoss/oasisrcvucode.h b/drivers/staging/slicoss/oasisrcvucode.h
new file mode 100644
index 0000000..5b3531f
--- /dev/null
+++ b/drivers/staging/slicoss/oasisrcvucode.h
@@ -0,0 +1,205 @@
+#define OASIS_RCVUCODE_VERS_STRING	"1.2"
+#define OASIS_RCVUCODE_VERS_DATE  	"2006/03/27 15:10:28"
+
+static u32 OasisRcvUCodeLen = 512;
+
+static u8 OasisRcvUCode[2560] =
+{
+0x47, 0x75, 0x01, 0x00, 0x04, 0xa0, 0x13, 0x01, 0x00, 0x1c, 0xb7, 0x5b, 0x09,
+0x30, 0x00, 0xb6, 0x5f, 0x01, 0x00, 0x1c, 0x00, 0x00, 0x00, 0x20, 0x18, 0x3b,
+0x78, 0x3a, 0x00, 0x1c, 0xa2, 0x77, 0x01, 0x00, 0x1c, 0x07, 0x1d, 0x01, 0x70,
+0x18, 0xad, 0x7b, 0xf1, 0xff, 0x1c, 0xb3, 0x7b, 0xa9, 0xaa, 0x1e, 0xb4, 0x7b,
+0x01, 0x0c, 0x1c, 0xb5, 0x7b, 0x0d, 0x06, 0x1c, 0x00, 0x00, 0x30, 0x64, 0x08,
+0x0c, 0x31, 0x5a, 0x70, 0x04, 0x0c, 0x31, 0x5a, 0x80, 0x04, 0x0c, 0x31, 0x4e,
+0x90, 0x04, 0x0c, 0x31, 0x4a, 0xa0, 0x00, 0x09, 0x25, 0x55, 0xc0, 0x04, 0x0c,
+0x31, 0x52, 0xb0, 0x00, 0xe9, 0x24, 0x55, 0xc0, 0x04, 0xcc, 0xb3, 0x00, 0x1c,
+0x1c, 0xeb, 0x2d, 0x01, 0x00, 0x1c, 0x06, 0x56, 0x32, 0xd4, 0x08, 0x07, 0x9d,
+0x00, 0x00, 0x1c, 0x7b, 0xb7, 0x02, 0x00, 0x10, 0xa0, 0x0f, 0x31, 0x54, 0x09,
+0x06, 0x56, 0x5e, 0xc0, 0x04, 0xa0, 0x30, 0x54, 0x03, 0x00, 0xac, 0x30, 0x55,
+0x03, 0x00, 0xcd, 0x03, 0x3a, 0x00, 0x1c, 0x7b, 0xb7, 0x02, 0x00, 0x1c, 0x60,
+0x8e, 0x31, 0x54, 0x09, 0x29, 0x25, 0x55, 0x03, 0x00, 0x80, 0x8e, 0x31, 0x54,
+0x09, 0x8c, 0x30, 0x91, 0x00, 0x04, 0x47, 0x1c, 0x01, 0x00, 0x1c, 0xa0, 0x0f,
+0x31, 0x54, 0x09, 0x00, 0x00, 0x64, 0x00, 0x04, 0x47, 0x1c, 0x65, 0xc0, 0x04,
+0x47, 0x1c, 0x55, 0x03, 0x00, 0x6c, 0x30, 0x01, 0x00, 0x1c, 0x4d, 0x34, 0x02,
+0x00, 0x1c, 0x7b, 0xb7, 0x02, 0x00, 0x1c, 0xa0, 0x0f, 0x31, 0x54, 0x09, 0xc8,
+0x83, 0x37, 0x00, 0x1c, 0x80, 0x01, 0x00, 0x00, 0x1c, 0x00, 0x00, 0x64, 0x00,
+0x04, 0xa0, 0x0f, 0x30, 0x54, 0x09, 0x00, 0x00, 0x54, 0xc3, 0x04, 0x7b, 0xfb,
+0xf2, 0x00, 0x1c, 0xcc, 0x33, 0x0d, 0x00, 0x1c, 0xb4, 0x7b, 0xfd, 0x03, 0x1c,
+0x80, 0x0e, 0x30, 0x54, 0x09, 0xe0, 0xfb, 0x05, 0x00, 0x1c, 0x00, 0x00, 0x8c,
+0x03, 0x00, 0xb3, 0x0f, 0x31, 0x54, 0x09, 0x00, 0x00, 0xec, 0x70, 0x04, 0x00,
+0x00, 0xec, 0x80, 0x04, 0x00, 0x00, 0x8c, 0x93, 0x00, 0x61, 0x76, 0x8d, 0xc3,
+0x04, 0xc0, 0x8d, 0x31, 0x54, 0x09, 0xe0, 0x7b, 0x00, 0xc0, 0x1f, 0xa0, 0xfd,
+0xc5, 0x01, 0x00, 0xcc, 0x33, 0x05, 0x00, 0x1c, 0xd4, 0x03, 0x00, 0x3c, 0x1c,
+0xd4, 0xd3, 0x1b, 0x00, 0x1c, 0xc0, 0xd3, 0x52, 0x00, 0x1c, 0x00, 0x00, 0x5c,
+0x13, 0x04, 0x8e, 0x8e, 0x32, 0x54, 0x09, 0x5b, 0x80, 0x5e, 0x13, 0x04, 0x00,
+0x00, 0x00, 0x00, 0x1c, 0x00, 0x00, 0x94, 0x01, 0x00, 0xa0, 0x0f, 0x31, 0x54,
+0x09, 0xa0, 0x0f, 0x31, 0x54, 0x09, 0xc0, 0x03, 0xfc, 0x7f, 0x1c, 0xa0, 0x01,
+0xa0, 0x01, 0x00, 0x00, 0x00, 0xa4, 0x01, 0x00, 0xa0, 0x0f, 0x31, 0x54, 0x09,
+0xc0, 0x03, 0xfc, 0x03, 0x1c, 0xf5, 0x77, 0x01, 0x00, 0x1c, 0x26, 0x7a, 0xe6,
+0x05, 0x1c, 0xa0, 0x0f, 0x31, 0x54, 0x09, 0xb3, 0x0f, 0x31, 0x54, 0x09, 0xb5,
+0x02, 0x02, 0x00, 0x1c, 0xa0, 0x0f, 0x31, 0x54, 0x09, 0x7a, 0x7e, 0x02, 0x00,
+0x1c, 0xb5, 0x02, 0x02, 0x00, 0x1c, 0x53, 0x0f, 0x32, 0x54, 0x09, 0xaf, 0x03,
+0x01, 0x00, 0x1c, 0x7a, 0x0e, 0x32, 0x54, 0x09, 0xb5, 0x02, 0x02, 0x00, 0x1c,
+0x00, 0x00, 0x02, 0x00, 0x1c, 0xa0, 0x3d, 0xaa, 0x11, 0x04, 0x00, 0x00, 0xac,
+0x11, 0x04, 0xd4, 0xd3, 0x52, 0x00, 0x1c, 0xb5, 0x3e, 0xb2, 0x01, 0x00, 0x20,
+0xfb, 0xfd, 0xff, 0x1f, 0x80, 0x2c, 0x6c, 0x03, 0x00, 0xb9, 0x3a, 0x9e, 0x01,
+0x00, 0x75, 0x3b, 0x02, 0x00, 0x1c, 0xa7, 0x1c, 0x01, 0x00, 0x10, 0xdb, 0x83,
+0x16, 0x00, 0x1c, 0xc7, 0x1d, 0x21, 0xc1, 0x04, 0xb9, 0x3b, 0x8d, 0xc1, 0x04,
+0x8b, 0x2c, 0x01, 0x00, 0x1c, 0x6b, 0x2c, 0x35, 0xc1, 0x04, 0x00, 0x00, 0x78,
+0x11, 0x00, 0xcb, 0x2c, 0x79, 0xc1, 0x04, 0xa0, 0x0f, 0x31, 0x54, 0x09, 0xa0,
+0x0f, 0x31, 0x54, 0x09, 0x54, 0xd0, 0x02, 0x00, 0x1c, 0x49, 0x25, 0xb1, 0x01,
+0x00, 0xab, 0x2c, 0x81, 0xc1, 0x04, 0xa7, 0x1d, 0x55, 0x03, 0x00, 0xcc, 0x33,
+0x09, 0x00, 0x1c, 0xeb, 0x2d, 0x01, 0x00, 0x1c, 0xea, 0x29, 0x01, 0x00, 0x1c,
+0xa0, 0x0f, 0x31, 0x54, 0x09, 0xae, 0x0f, 0x31, 0x54, 0x09, 0xa0, 0x0f, 0x31,
+0x54, 0x09, 0xd4, 0x07, 0xfc, 0x03, 0x1c, 0x99, 0x3a, 0x02, 0x00, 0x1c, 0xbb,
+0x38, 0x02, 0x00, 0x1c, 0x00, 0x38, 0x00, 0x00, 0x1c, 0x00, 0x00, 0xfc, 0x01,
+0x04, 0xdb, 0x3b, 0x7e, 0x00, 0x1c, 0xc7, 0x1d, 0x01, 0x00, 0x1c, 0x26, 0x7a,
+0xfa, 0x05, 0x1c, 0x27, 0x1d, 0x01, 0x00, 0x1c, 0xb3, 0x0f, 0x31, 0x54, 0x09,
+0x7a, 0x0e, 0x32, 0x54, 0x09, 0x53, 0x0f, 0x32, 0x54, 0x09, 0x7a, 0x0e, 0x32,
+0x54, 0x09, 0x53, 0x0f, 0x32, 0x54, 0x09, 0x7a, 0x0e, 0x32, 0x54, 0x09, 0x53,
+0x0f, 0x32, 0x54, 0x09, 0xa0, 0x0f, 0x31, 0x54, 0x09, 0x7a, 0x06, 0x02, 0x00,
+0x1c, 0x53, 0x0f, 0x32, 0x54, 0x09, 0xaf, 0x03, 0x01, 0x00, 0x1c, 0x7a, 0x0e,
+0x32, 0x54, 0x09, 0x53, 0x0f, 0x32, 0x54, 0x09, 0x7a, 0x0e, 0x32, 0x54, 0x09,
+0x53, 0x0f, 0x32, 0x54, 0x09, 0x7a, 0x0e, 0x32, 0x54, 0x09, 0x53, 0x0f, 0x32,
+0x54, 0x09, 0x7a, 0x0e, 0x32, 0x54, 0x09, 0x00, 0x3d, 0x02, 0x00, 0x1c, 0x00,
+0x00, 0x58, 0x12, 0x00, 0xcb, 0x2c, 0x01, 0x00, 0x1c, 0x75, 0x3b, 0x02, 0x00,
+0x1c, 0xa7, 0x1c, 0x01, 0x00, 0x10, 0xcb, 0x2f, 0x05, 0x00, 0x1c, 0x60, 0x2c,
+0x00, 0x00, 0x1c, 0xc7, 0x1c, 0xc9, 0x02, 0x00, 0xa0, 0x0f, 0x31, 0x54, 0x09,
+0x53, 0x07, 0x02, 0x00, 0x1c, 0x46, 0x7a, 0xca, 0x05, 0x1c, 0x7a, 0x0e, 0x32,
+0x54, 0x09, 0x40, 0xfa, 0x19, 0x00, 0x1c, 0x00, 0x00, 0x88, 0x02, 0x04, 0x46,
+0x7a, 0xca, 0x05, 0x1c, 0xa0, 0x0f, 0x31, 0x54, 0x09, 0xa0, 0x0f, 0x31, 0x54,
+0x09, 0xa0, 0x0f, 0x31, 0x54, 0x09, 0xa0, 0x0f, 0x31, 0x54, 0x09, 0xb3, 0x7b,
+0x01, 0xc0, 0x1f, 0x74, 0x0e, 0x30, 0x54, 0x09, 0xc0, 0x03, 0x9c, 0x00, 0x1c,
+0x80, 0x00, 0xd8, 0x02, 0x00, 0x00, 0x00, 0xd8, 0x02, 0x04, 0x00, 0x00, 0xac,
+0x12, 0x05, 0x07, 0x1d, 0x01, 0x00, 0x1c, 0xd4, 0xd3, 0x2b, 0x00, 0x1c, 0xd4,
+0xd3, 0x52, 0x00, 0x1c, 0x80, 0x76, 0x7d, 0x13, 0x04, 0x00, 0x00, 0xe0, 0x02,
+0x00, 0xa6, 0x7b, 0x95, 0x03, 0x10, 0xc7, 0x9c, 0x00, 0x00, 0x1c, 0x80, 0x2c,
+0x00, 0x00, 0x1c, 0x00, 0x00, 0x6c, 0x02, 0x04, 0x00, 0x00, 0x54, 0xc3, 0x04,
+0xab, 0x2d, 0xd9, 0x12, 0x05, 0x07, 0x1d, 0xb5, 0xc2, 0x04, 0x8b, 0x2d, 0x01,
+0x00, 0x1c, 0x69, 0x25, 0x01, 0x00, 0x1c, 0xa6, 0x7b, 0x95, 0x03, 0x10, 0xcb,
+0x2f, 0x09, 0x00, 0x1c, 0x60, 0x2c, 0x00, 0x00, 0x1c, 0x00, 0x00, 0x48, 0x03,
+0x00, 0x53, 0x0f, 0x32, 0x54, 0x09, 0x46, 0x7a, 0xca, 0x05, 0x1c, 0x7a, 0x0e,
+0x32, 0x54, 0x09, 0x40, 0xfa, 0x19, 0x00, 0x1c, 0x00, 0x00, 0x10, 0x03, 0x04,
+0x46, 0x7a, 0xca, 0x05, 0x1c, 0xb5, 0x0f, 0x31, 0x54, 0x09, 0xa0, 0x0f, 0x31,
+0x54, 0x09, 0x73, 0xec, 0x2a, 0x03, 0x04, 0x60, 0x2c, 0x00, 0x00, 0x1c, 0x00,
+0x00, 0x28, 0x03, 0x00, 0xc7, 0x1c, 0x01, 0x00, 0x1c, 0x00, 0x00, 0x28, 0x13,
+0x05, 0x07, 0x1d, 0x01, 0x00, 0x1c, 0xc0, 0xd7, 0x22, 0x00, 0x1c, 0x75, 0x56,
+0x7e, 0x13, 0x04, 0x60, 0x2c, 0x00, 0x00, 0x1c, 0xe7, 0x1c, 0x45, 0x03, 0x04,
+0xe7, 0x9c, 0x00, 0x00, 0x1c, 0xa6, 0x7b, 0x95, 0x03, 0x10, 0x80, 0x2c, 0x00,
+0x00, 0x1c, 0x00, 0x00, 0xf8, 0x02, 0x04, 0x00, 0x00, 0x54, 0xc3, 0x04, 0xb9,
+0x7b, 0x01, 0x00, 0x1c, 0x00, 0x00, 0x8c, 0xc3, 0x04, 0xcb, 0xaf, 0xfc, 0x07,
+0x1c, 0xcb, 0x2f, 0x01, 0x04, 0x1c, 0xc7, 0x9f, 0x80, 0x03, 0x1c, 0x00, 0x00,
+0x8c, 0xc3, 0x04, 0xcb, 0xaf, 0xfc, 0x07, 0x1c, 0xcb, 0x2f, 0x0d, 0x04, 0x1c,
+0xc7, 0x9f, 0x80, 0x03, 0x1c, 0x00, 0x00, 0x8c, 0xc3, 0x04, 0xcb, 0xaf, 0x00,
+0xf8, 0x1d, 0xcb, 0x2f, 0x01, 0x00, 0x1d, 0xa6, 0x7b, 0x95, 0x03, 0x1c, 0xc7,
+0x9c, 0x8c, 0xc3, 0x04, 0x00, 0x00, 0x8c, 0x13, 0x05, 0x07, 0x1d, 0x01, 0x00,
+0x1c, 0xc0, 0x1d, 0xdc, 0xd3, 0x08, 0x27, 0x9d, 0xe4, 0x03, 0x00, 0xa0, 0xee,
+0x46, 0xd4, 0x00, 0xfb, 0x75, 0x09, 0x14, 0x04, 0x20, 0x7b, 0x06, 0x00, 0x1c,
+0xc0, 0x1c, 0x1c, 0x04, 0x00, 0x00, 0x00, 0xb0, 0xd3, 0x08, 0x00, 0x00, 0x00,
+0xf4, 0x00, 0xc0, 0xef, 0xf2, 0x00, 0x1c, 0x20, 0x25, 0x5c, 0x14, 0x04, 0x60,
+0xb7, 0xd2, 0x03, 0x00, 0x00, 0x00, 0x0c, 0x15, 0x00, 0xcc, 0xb3, 0xfc, 0x03,
+0x1c, 0xcc, 0x33, 0x05, 0x02, 0x1c, 0x00, 0x00, 0x0c, 0xc5, 0x04, 0x60, 0xb7,
+0x0e, 0x05, 0x04, 0x00, 0x00, 0x0c, 0x15, 0x04, 0x00, 0x00, 0x5c, 0xc4, 0x04,
+0xc0, 0x1d, 0x98, 0xf3, 0x04, 0x00, 0x00, 0x68, 0xc4, 0x04, 0x07, 0x9d, 0x00,
+0x00, 0x1c, 0x1b, 0x74, 0xfd, 0xf3, 0x04, 0xa6, 0x7b, 0xf1, 0x03, 0x1c, 0xa0,
+0x0f, 0x69, 0x54, 0x09, 0xe0, 0x7b, 0x00, 0xfc, 0x1f, 0x39, 0x7f, 0x02, 0x00,
+0x1c, 0x07, 0x1d, 0x9d, 0xc3, 0x04, 0xa6, 0x7b, 0xad, 0x03, 0x1c, 0x00, 0x00,
+0x68, 0xc4, 0x04, 0xe0, 0x1c, 0x00, 0x00, 0x1c, 0x00, 0x00, 0xa4, 0x03, 0x04,
+0xcb, 0xaf, 0x00, 0xf8, 0x1d, 0xcb, 0x2f, 0x01, 0x10, 0x1d, 0x00, 0x00, 0xac,
+0xc3, 0x04, 0x00, 0x00, 0xac, 0x03, 0x04, 0xcb, 0xaf, 0x00, 0xf8, 0x1d, 0xcb,
+0x2f, 0x01, 0x18, 0x1d, 0xc7, 0x9f, 0x00, 0x0b, 0x1c, 0x00, 0x00, 0xac, 0xc3,
+0x04, 0xfb, 0x75, 0x01, 0x00, 0x1c, 0x07, 0x1d, 0x01, 0x00, 0x1c, 0xcc, 0xb3,
+0xfc, 0x03, 0x1c, 0xcc, 0x33, 0x01, 0x02, 0x1c, 0x00, 0x00, 0xac, 0xc3, 0x04,
+0xa0, 0x1c, 0x00, 0x00, 0x1c, 0xa0, 0xee, 0xa2, 0x03, 0x04, 0xcb, 0xaf, 0xfc,
+0x07, 0x1c, 0xcb, 0x2f, 0x09, 0x04, 0x1c, 0xfb, 0x75, 0x01, 0x00, 0x1c, 0x00,
+0x00, 0xac, 0xc3, 0x04, 0xcc, 0xb3, 0xfc, 0x03, 0x1c, 0xcc, 0x33, 0x01, 0x02,
+0x1c, 0x00, 0x00, 0x0c, 0xc5, 0x04, 0x00, 0x00, 0x78, 0x34, 0x05, 0xcc, 0xb3,
+0xfc, 0x03, 0x1c, 0xcc, 0x33, 0x15, 0x02, 0x1c, 0x47, 0x9d, 0x54, 0xc4, 0x04,
+0x00, 0x00, 0x78, 0x44, 0x00, 0x80, 0x1d, 0x7c, 0x54, 0x04, 0x87, 0x1d, 0x8d,
+0x04, 0x00, 0xce, 0x76, 0x01, 0x00, 0x1c, 0xef, 0x76, 0x9d, 0xc4, 0x04, 0xa4,
+0x77, 0x8d, 0x24, 0x09, 0xe4, 0x76, 0x01, 0x00, 0x1c, 0xc4, 0x76, 0x01, 0x00,
+0x1c, 0x00, 0x00, 0x98, 0x54, 0x04, 0xd7, 0x76, 0x01, 0x50, 0x18, 0xf6, 0x76,
+0x01, 0x00, 0x1c, 0x00, 0x00, 0x00, 0x30, 0x18, 0x00, 0x00, 0x00, 0x00, 0x10,
+0xcc, 0x30, 0x45, 0xc5, 0x04, 0xeb, 0x2d, 0x01, 0x00, 0x1c, 0xea, 0x29, 0x01,
+0x00, 0x1c, 0xc0, 0x59, 0x01, 0x00, 0x1c, 0xf5, 0x77, 0x29, 0xc5, 0x04, 0xe0,
+0x30, 0xdc, 0x04, 0x00, 0x00, 0x4c, 0xb0, 0x04, 0x00, 0x20, 0x4c, 0xf4, 0x04,
+0x00, 0x00, 0x00, 0xe8, 0x04, 0x00, 0xcc, 0xb3, 0xfc, 0x03, 0x1c, 0xcc, 0x33,
+0x09, 0x02, 0x1c, 0xeb, 0x2d, 0xb5, 0xc4, 0x04, 0xcc, 0xb3, 0xfc, 0x03, 0x1c,
+0xcc, 0x33, 0x19, 0x02, 0x1c, 0xeb, 0x2d, 0xb5, 0xc4, 0x04, 0xcc, 0xb3, 0xfc,
+0x03, 0x1c, 0xcc, 0x33, 0x0d, 0x02, 0x1c, 0xeb, 0x2d, 0xb5, 0xc4, 0x04, 0xcc,
+0xb3, 0xfc, 0x03, 0x1c, 0xcc, 0x33, 0x11, 0x02, 0x1c, 0xeb, 0x2d, 0xb5, 0xc4,
+0x04, 0x00, 0x7b, 0x00, 0x80, 0x1c, 0xae, 0x77, 0x45, 0x05, 0x00, 0x00, 0x00,
+0x04, 0xc0, 0x04, 0xd3, 0x8b, 0x00, 0xfc, 0x1f, 0x60, 0x7a, 0x3c, 0x00, 0x1c,
+0x60, 0x4c, 0xc0, 0x04, 0x00, 0xc0, 0x2f, 0x20, 0x05, 0x1f, 0xe0, 0x30, 0xb0,
+0x04, 0x00, 0x80, 0x25, 0xb0, 0x04, 0x00, 0xb5, 0x5b, 0xb1, 0x04, 0x04, 0x69,
+0x26, 0x01, 0x00, 0x1c, 0x6a, 0x2b, 0x01, 0x00, 0x1c, 0x80, 0x1d, 0x00, 0x00,
+0x1c, 0xa9, 0x25, 0x45, 0x05, 0x00, 0xee, 0x30, 0x00, 0x00, 0x1c, 0xaf, 0x77,
+0x01, 0x05, 0x00, 0x00, 0x00, 0xac, 0x24, 0x04, 0xb4, 0x5f, 0x01, 0x40, 0x18,
+0x07, 0x9d, 0x48, 0x55, 0x04, 0xb7, 0x76, 0x01, 0x00, 0x1c, 0x96, 0x76, 0x01,
+0x00, 0x1c, 0x47, 0x1d, 0x01, 0x00, 0x1c, 0xa4, 0x33, 0x01, 0x60, 0x18, 0xa4,
+0x2f, 0x01, 0x60, 0x18, 0x64, 0x77, 0x01, 0x60, 0x18, 0x24, 0x77, 0x01, 0x60,
+0x18, 0x44, 0x77, 0x01, 0x00, 0x1c, 0x64, 0x88, 0x03, 0x00, 0x1c, 0xa4, 0x3f,
+0x01, 0x00, 0x1c, 0xa4, 0x3b, 0x01, 0x00, 0x1c, 0x53, 0x7b, 0x00, 0xc0, 0x1c,
+0xd3, 0xcf, 0x1b, 0x00, 0x1c, 0x53, 0x4f, 0x02, 0x00, 0x1c, 0xda, 0xcf, 0x00,
+0xc0, 0x1f, 0xd5, 0x57, 0x0f, 0x00, 0x1c, 0xd3, 0xd3, 0x37, 0x00, 0x1c, 0xd4,
+0x53, 0x0f, 0x00, 0x1c, 0xe0, 0x29, 0x00, 0x00, 0x1c, 0xf5, 0xd5, 0xb0, 0x05,
+0x00, 0x00, 0x00, 0x9c, 0x55, 0x04, 0x77, 0x56, 0x01, 0x00, 0x1c, 0x56, 0x53,
+0x01, 0x00, 0x1c, 0x00, 0x00, 0x00, 0x10, 0x18, 0x00, 0x00, 0x04, 0xc0, 0x04,
+0xf5, 0x55, 0x01, 0x00, 0x1c, 0x00, 0x00, 0xb4, 0x55, 0x04, 0x77, 0x56, 0x01,
+0x00, 0x1c, 0x56, 0x53, 0x01, 0x00, 0x1c, 0x00, 0x00, 0x00, 0x10, 0x18, 0x00,
+0x00, 0x04, 0xc0, 0x04, 0xcb, 0x2f, 0x01, 0x18, 0x10, 0xcb, 0x2f, 0x01, 0x10,
+0x10, 0xcb, 0x2f, 0x01, 0x08, 0x10, 0xcb, 0x2f, 0x01, 0x08, 0x10, 0xcb, 0x2f,
+0x01, 0x20, 0x10, 0xcb, 0x2f, 0x01, 0x28, 0x10, 0xcb, 0x2f, 0x01, 0x00, 0x10,
+0x89, 0x25, 0x61, 0xc2, 0x04, 0x00, 0x00, 0xec, 0xc2, 0x04, 0x00, 0x00, 0x54,
+0xc3, 0x04, 0x00, 0x00, 0x54, 0xc3, 0x04, 0x00, 0x00, 0x54, 0xc3, 0x04, 0x00,
+0x00, 0x60, 0xc2, 0x04, 0x00, 0x00, 0xec, 0xc2, 0x04, 0x00, 0x00, 0x54, 0xc3,
+0x04, 0x00, 0x00, 0x54, 0xc3, 0x04, 0x00, 0x00, 0x54, 0xc3, 0x04, 0x40, 0x1c,
+0x6c, 0xc0, 0x04, 0x40, 0x1c, 0x9c, 0xc0, 0x04, 0xa7, 0x77, 0x55, 0xc3, 0x04,
+0x00, 0x00, 0xc4, 0xc0, 0x04, 0x27, 0x1d, 0xf1, 0xc0, 0x04, 0x00, 0x00, 0x54,
+0xc3, 0x04, 0x00, 0x00, 0x54, 0xc3, 0x04, 0x00, 0x00, 0x54, 0xc3, 0x04, 0x00,
+0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6,
+0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00,
+0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04,
+0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c,
+0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00,
+0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6,
+0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00,
+0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04,
+0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c,
+0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00,
+0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6,
+0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00,
+0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04,
+0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c,
+0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00,
+0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6,
+0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00,
+0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04,
+0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c,
+0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00,
+0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6,
+0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00,
+0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04,
+0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c,
+0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00,
+0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6,
+0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00,
+0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04,
+0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c,
+0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00,
+0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6,
+0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00,
+0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04,
+0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c,
+0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00,
+0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6,
+0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00,
+0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04,
+0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c,
+0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00,
+0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6,
+0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00,
+0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04,
+0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c,
+0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04, 0x00, 0x00, 0x2c, 0xc6, 0x04,
+};
diff --git a/drivers/staging/slicoss/slic.h b/drivers/staging/slicoss/slic.h
new file mode 100644
index 0000000..0d5dc24
--- /dev/null
+++ b/drivers/staging/slicoss/slic.h
@@ -0,0 +1,598 @@
+/**************************************************************************
+ *
+ * Copyright (c) 2000-2002 Alacritech, Inc.  All rights reserved.
+ *
+ *
+ * Redistribution and use in source and binary forms, with or without
+ * modification, are permitted provided that the following conditions
+ * are met:
+ *
+ * 1. Redistributions of source code must retain the above copyright
+ *    notice, this list of conditions and the following disclaimer.
+ * 2. Redistributions in binary form must reproduce the above
+ *    copyright notice, this list of conditions and the following
+ *    disclaimer in the documentation and/or other materials provided
+ *    with the distribution.
+ *
+ * THIS SOFTWARE IS PROVIDED BY ALACRITECH, INC. ``AS IS'' AND ANY
+ * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
+ * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
+ * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL ALACRITECH, INC. OR
+ * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
+ * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
+ * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
+ * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
+ * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
+ * SUCH DAMAGE.
+ *
+ * The views and conclusions contained in the software and documentation
+ * are those of the authors and should not be interpreted as representing
+ * official policies, either expressed or implied, of Alacritech, Inc.
+ *
+ **************************************************************************/
+
+/*
+ * FILENAME: slic.h
+ *
+ * This is the base set of header definitions for the SLICOSS driver.
+ */
+#ifndef __SLIC_DRIVER_H__
+#define __SLIC_DRIVER_H__
+
+
+struct slic_spinlock {
+	spinlock_t	lock;
+	unsigned long	flags;
+};
+
+#define SLIC_RSPQ_PAGES_GB        10
+#define SLIC_RSPQ_BUFSINPAGE      (PAGE_SIZE / SLIC_RSPBUF_SIZE)
+
+struct slic_rspqueue {
+    u32             offset;
+    u32             pageindex;
+    u32             num_pages;
+    struct slic_rspbuf *rspbuf;
+    u32 *vaddr[SLIC_RSPQ_PAGES_GB];
+    dma_addr_t          paddr[SLIC_RSPQ_PAGES_GB];
+};
+
+#define SLIC_RCVQ_EXPANSION         1
+#define SLIC_RCVQ_ENTRIES           (256 * SLIC_RCVQ_EXPANSION)
+#define SLIC_RCVQ_MINENTRIES        (SLIC_RCVQ_ENTRIES / 2)
+#define SLIC_RCVQ_MAX_PROCESS_ISR   ((SLIC_RCVQ_ENTRIES * 4))
+#define SLIC_RCVQ_RCVBUFSIZE        2048
+#define SLIC_RCVQ_FILLENTRIES       (16 * SLIC_RCVQ_EXPANSION)
+#define SLIC_RCVQ_FILLTHRESH        (SLIC_RCVQ_ENTRIES - SLIC_RCVQ_FILLENTRIES)
+
+struct slic_rcvqueue {
+    struct sk_buff    *head;
+    struct sk_buff    *tail;
+    u32            count;
+    u32            size;
+    u32            errors;
+};
+
+struct slic_rcvbuf_info {
+    u32     id;
+    u32     starttime;
+    u32     stoptime;
+    u32     slicworld;
+    u32     lasttime;
+    u32     lastid;
+};
+/*
+ SLIC Handle structure.  Used to restrict handle values to
+ 32 bits by using an index rather than an address.
+ Simplifies ucode in 64-bit systems
+*/
+struct slic_handle_word {
+	union {
+		struct {
+			ushort      index;
+			ushort      bottombits; /* to denote num bufs to card */
+		}  parts;
+		u32         whole;
+	}  handle;
+};
+
+struct slic_handle {
+    struct slic_handle_word  token;  /* token passed between host and card*/
+    ushort                      type;
+    void *address;    /* actual address of the object*/
+    ushort                      offset;
+    struct slic_handle       *other_handle;
+    struct slic_handle       *next;
+};
+
+#define SLIC_HANDLE_FREE        0x0000
+#define SLIC_HANDLE_DATA        0x0001
+#define SLIC_HANDLE_CMD         0x0002
+#define SLIC_HANDLE_CONTEXT     0x0003
+#define SLIC_HANDLE_TEAM        0x0004
+
+#define handle_index        handle.parts.index
+#define handle_bottom       handle.parts.bottombits
+#define handle_token        handle.whole
+
+#define SLIC_HOSTCMD_SIZE    512
+
+struct slic_hostcmd {
+    struct slic_host64_cmd  cmd64;
+    u32                    type;
+    struct sk_buff            *skb;
+    u32                    paddrl;
+    u32                    paddrh;
+    u32                    busy;
+    u32                    cmdsize;
+    ushort                     numbufs;
+    struct slic_handle    *pslic_handle;/* handle associated with command */
+    struct slic_hostcmd    *next;
+    struct slic_hostcmd    *next_all;
+};
+
+#define SLIC_CMDQ_CMDSINPAGE    (PAGE_SIZE / SLIC_HOSTCMD_SIZE)
+#define SLIC_CMD_DUMB            3
+#define SLIC_CMDQ_INITCMDS       256
+#define SLIC_CMDQ_MAXCMDS        256
+#define SLIC_CMDQ_MAXOUTSTAND    SLIC_CMDQ_MAXCMDS
+#define SLIC_CMDQ_MAXPAGES       (SLIC_CMDQ_MAXCMDS / SLIC_CMDQ_CMDSINPAGE)
+#define SLIC_CMDQ_INITPAGES      (SLIC_CMDQ_INITCMDS / SLIC_CMDQ_CMDSINPAGE)
+
+struct slic_cmdqmem {
+	int pagecnt;
+	u32 *pages[SLIC_CMDQ_MAXPAGES];
+	dma_addr_t dma_pages[SLIC_CMDQ_MAXPAGES];
+};
+
+struct slic_cmdqueue {
+	struct slic_hostcmd *head;
+	struct slic_hostcmd *tail;
+	int count;
+	struct slic_spinlock lock;
+};
+
+#ifdef STATUS_SUCCESS
+#undef STATUS_SUCCESS
+#endif
+
+#define STATUS_SUCCESS              0
+#define STATUS_PENDING              0
+#define STATUS_FAILURE             -1
+#define STATUS_ERROR               -2
+#define STATUS_NOT_SUPPORTED       -3
+#define STATUS_BUFFER_TOO_SHORT    -4
+
+#define SLIC_MAX_CARDS              32
+#define SLIC_MAX_PORTS              4        /* Max # of ports per card   */
+#if SLIC_DUMP_ENABLED
+/*
+Dump buffer size
+
+This cannot be bigger than the max DMA size the card supports,
+given the current code structure in the host and ucode.
+Mojave supports 16K, Oasis supports 16K-1, so
+just set this at 15K, shouldnt make that much of a diff.
+*/
+#define DUMP_BUF_SIZE               0x3C00
+#endif
+
+
+struct mcast_address {
+	unsigned char address[6];
+	struct mcast_address *next;
+};
+
+#define CARD_DOWN        0x00000000
+#define CARD_UP          0x00000001
+#define CARD_FAIL        0x00000002
+#define CARD_DIAG        0x00000003
+#define CARD_SLEEP       0x00000004
+
+#define ADAPT_DOWN             0x00
+#define ADAPT_UP               0x01
+#define ADAPT_FAIL             0x02
+#define ADAPT_RESET            0x03
+#define ADAPT_SLEEP            0x04
+
+#define ADAPT_FLAGS_BOOTTIME            0x0001
+#define ADAPT_FLAGS_IS64BIT             0x0002
+#define ADAPT_FLAGS_PENDINGLINKDOWN     0x0004
+#define ADAPT_FLAGS_FIBERMEDIA          0x0008
+#define ADAPT_FLAGS_LOCKS_ALLOCED       0x0010
+#define ADAPT_FLAGS_INT_REGISTERED      0x0020
+#define ADAPT_FLAGS_LOAD_TIMER_SET      0x0040
+#define ADAPT_FLAGS_STATS_TIMER_SET     0x0080
+#define ADAPT_FLAGS_RESET_TIMER_SET     0x0100
+
+#define LINK_DOWN              0x00
+#define LINK_CONFIG            0x01
+#define LINK_UP                0x02
+
+#define LINK_10MB              0x00
+#define LINK_100MB             0x01
+#define LINK_AUTOSPEED         0x02
+#define LINK_1000MB            0x03
+#define LINK_10000MB           0x04
+
+#define LINK_HALFD             0x00
+#define LINK_FULLD             0x01
+#define LINK_AUTOD             0x02
+
+#define MAC_DIRECTED     0x00000001
+#define MAC_BCAST        0x00000002
+#define MAC_MCAST        0x00000004
+#define MAC_PROMISC      0x00000008
+#define MAC_LOOPBACK     0x00000010
+#define MAC_ALLMCAST     0x00000020
+
+#define SLIC_DUPLEX(x)    ((x == LINK_FULLD) ? "FDX" : "HDX")
+#define SLIC_SPEED(x)     ((x == LINK_100MB) ? "100Mb" : ((x == LINK_1000MB) ?\
+				"1000Mb" : " 10Mb"))
+#define SLIC_LINKSTATE(x) ((x == LINK_DOWN) ? "Down" : "Up  ")
+#define SLIC_ADAPTER_STATE(x) ((x == ADAPT_UP) ? "UP" : "Down")
+#define SLIC_CARD_STATE(x)    ((x == CARD_UP) ? "UP" : "Down")
+
+struct slic_iface_stats {
+    /*
+     * Stats
+     */
+    u64        xmt_bytes;
+    u64        xmt_ucast;
+    u64        xmt_mcast;
+    u64        xmt_bcast;
+    u64        xmt_errors;
+    u64        xmt_discards;
+    u64        xmit_collisions;
+    u64        xmit_excess_xmit_collisions;
+    u64        rcv_bytes;
+    u64        rcv_ucast;
+    u64        rcv_mcast;
+    u64        rcv_bcast;
+    u64        rcv_errors;
+    u64        rcv_discards;
+};
+
+struct sliccp_stats {
+    u64        xmit_tcp_segs;
+    u64        xmit_tcp_bytes;
+    u64        rcv_tcp_segs;
+    u64        rcv_tcp_bytes;
+};
+
+struct slicnet_stats {
+    struct sliccp_stats        tcp;
+    struct slic_iface_stats      iface;
+};
+
+#define SLIC_LOADTIMER_PERIOD     1
+#define SLIC_INTAGG_DEFAULT       200
+#define SLIC_LOAD_0               0
+#define SLIC_INTAGG_0             0
+#define SLIC_LOAD_1               8000
+#define SLIC_LOAD_2               10000
+#define SLIC_LOAD_3               12000
+#define SLIC_LOAD_4               14000
+#define SLIC_LOAD_5               16000
+#define SLIC_INTAGG_1             50
+#define SLIC_INTAGG_2             100
+#define SLIC_INTAGG_3             150
+#define SLIC_INTAGG_4             200
+#define SLIC_INTAGG_5             250
+#define SLIC_LOAD_1GB             3000
+#define SLIC_LOAD_2GB             6000
+#define SLIC_LOAD_3GB             12000
+#define SLIC_LOAD_4GB             24000
+#define SLIC_LOAD_5GB             48000
+#define SLIC_INTAGG_1GB           50
+#define SLIC_INTAGG_2GB           75
+#define SLIC_INTAGG_3GB           100
+#define SLIC_INTAGG_4GB           100
+#define SLIC_INTAGG_5GB           100
+
+struct ether_header {
+    unsigned char    ether_dhost[6];
+    unsigned char    ether_shost[6];
+    ushort   ether_type;
+};
+
+struct sliccard {
+    uint              busnumber;
+    uint              slotnumber;
+    uint              state;
+    uint              cardnum;
+    uint              card_size;
+    uint              adapters_activated;
+    uint              adapters_allocated;
+    uint              adapters_sleeping;
+    uint              gennumber;
+    u32           events;
+    u32           loadlevel_current;
+    u32           load;
+    uint              reset_in_progress;
+    u32           pingstatus;
+    u32           bad_pingstatus;
+    struct timer_list loadtimer;
+    u32           loadtimerset;
+    uint              config_set;
+    struct slic_config  config;
+    struct dentry      *debugfs_dir;
+    struct dentry      *debugfs_cardinfo;
+    struct adapter  *master;
+    struct adapter  *adapter[SLIC_MAX_PORTS];
+    struct sliccard *next;
+    u32             error_interrupts;
+    u32             error_rmiss_interrupts;
+    u32             rcv_interrupts;
+    u32             xmit_interrupts;
+    u32             num_isrs;
+    u32             false_interrupts;
+    u32             max_isr_rcvs;
+    u32             max_isr_xmits;
+    u32             rcv_interrupt_yields;
+    u32             tx_packets;
+#if SLIC_DUMP_ENABLED
+    u32             dumpstatus;           /* Result of dump UPR */
+    void *cmdbuffer;
+
+    ulong               cmdbuffer_phys;
+    u32             cmdbuffer_physl;
+    u32             cmdbuffer_physh;
+
+    u32             dump_count;
+    struct task_struct *dump_task_id;
+    u32             dump_wait_count;
+    uint                dumpthread_running; /* has a dump thread been init'd  */
+    uint                dump_requested;     /* 0 no, 1 = reqstd 2=curr 3=done */
+    u32             dumptime_start;
+    u32             dumptime_complete;
+    u32             dumptime_delta;
+    void *dumpbuffer;
+    ulong               dumpbuffer_phys;
+    u32             dumpbuffer_physl;
+    u32             dumpbuffer_physh;
+    wait_queue_head_t   dump_wq;
+    struct file        *dumphandle;
+    mm_segment_t        dumpfile_fs;
+#endif
+    u32             debug_ix;
+    ushort              reg_type[32];
+    ushort              reg_offset[32];
+    u32             reg_value[32];
+    u32             reg_valueh[32];
+};
+
+#define NUM_CFG_SPACES      2
+#define NUM_CFG_REGS        64
+#define NUM_CFG_REG_ULONGS  (NUM_CFG_REGS / sizeof(u32))
+
+struct physcard {
+    struct adapter  *adapter[SLIC_MAX_PORTS];
+    struct physcard *next;
+    uint                adapters_allocd;
+
+ /*  the following is not currently needed
+    u32               bridge_busnum;
+    u32               bridge_cfg[NUM_CFG_SPACES][NUM_CFG_REG_ULONGS];
+ */
+};
+
+struct base_driver {
+    struct slic_spinlock driver_lock;
+    u32              num_slic_cards;
+    u32              num_slic_ports;
+    u32              num_slic_ports_active;
+    u32              dynamic_intagg;
+    struct sliccard  *slic_card;
+    struct physcard  *phys_card;
+    uint                 cardnuminuse[SLIC_MAX_CARDS];
+};
+
+struct slic_shmem {
+    volatile u32          isr;
+    volatile u32          linkstatus;
+    volatile struct slic_stats     inicstats;
+};
+
+struct slic_reg_params {
+    u32       linkspeed;
+    u32       linkduplex;
+    u32       fail_on_bad_eeprom;
+};
+
+struct slic_upr {
+    uint               adapter;
+    u32            upr_request;
+    u32            upr_data;
+    u32            upr_data_h;
+    u32            upr_buffer;
+    u32            upr_buffer_h;
+    struct slic_upr *next;
+};
+
+struct slic_ifevents {
+    uint        oflow802;
+    uint        uflow802;
+    uint        Tprtoflow;
+    uint        rcvearly;
+    uint        Bufov;
+    uint        Carre;
+    uint        Longe;
+    uint        Invp;
+    uint        Crc;
+    uint        Drbl;
+    uint        Code;
+    uint        IpHlen;
+    uint        IpLen;
+    uint        IpCsum;
+    uint        TpCsum;
+    uint        TpHlen;
+};
+
+struct adapter {
+    void *ifp;
+    struct sliccard *card;
+    uint                port;
+    struct physcard *physcard;
+    uint                physport;
+    uint                cardindex;
+    uint                card_size;
+    uint                chipid;
+    struct net_device  *netdev;
+    struct net_device  *next_netdevice;
+    struct slic_spinlock     adapter_lock;
+    struct slic_spinlock     reset_lock;
+    struct pci_dev     *pcidev;
+    uint                busnumber;
+    uint                slotnumber;
+    uint                functionnumber;
+    ushort              vendid;
+    ushort              devid;
+    ushort              subsysid;
+    u32             irq;
+    void __iomem *memorybase;
+    u32             memorylength;
+    u32             drambase;
+    u32             dramlength;
+    uint                queues_initialized;
+    uint                allocated;
+    uint                activated;
+    u32             intrregistered;
+    uint                isp_initialized;
+    uint                gennumber;
+    u32             curaddrupper;
+    struct slic_shmem      *pshmem;
+    dma_addr_t          phys_shmem;
+    u32             isrcopy;
+    __iomem struct slic_regs       *slic_regs;
+    unsigned char               state;
+    unsigned char               linkstate;
+    unsigned char               linkspeed;
+    unsigned char               linkduplex;
+    uint                flags;
+    unsigned char               macaddr[6];
+    unsigned char               currmacaddr[6];
+    u32             macopts;
+    ushort              devflags_prev;
+    u64             mcastmask;
+    struct mcast_address   *mcastaddrs;
+    struct slic_upr   *upr_list;
+    uint                upr_busy;
+    struct timer_list   pingtimer;
+    u32             pingtimerset;
+    struct timer_list   statstimer;
+    u32             statstimerset;
+    struct timer_list   loadtimer;
+    u32             loadtimerset;
+    struct dentry      *debugfs_entry;
+    struct slic_spinlock     upr_lock;
+    struct slic_spinlock     bit64reglock;
+    struct slic_rspqueue     rspqueue;
+    struct slic_rcvqueue     rcvqueue;
+    struct slic_cmdqueue     cmdq_free;
+    struct slic_cmdqueue     cmdq_done;
+    struct slic_cmdqueue     cmdq_all;
+    struct slic_cmdqmem      cmdqmem;
+    /*
+     *  SLIC Handles
+    */
+    struct slic_handle slic_handles[SLIC_CMDQ_MAXCMDS+1]; /* Object handles*/
+    struct slic_handle *pfree_slic_handles;          /* Free object handles*/
+    struct slic_spinlock     handle_lock;           /* Object handle list lock*/
+    ushort              slic_handle_ix;
+
+    u32             xmitq_full;
+    u32             all_reg_writes;
+    u32             icr_reg_writes;
+    u32             isr_reg_writes;
+    u32             error_interrupts;
+    u32             error_rmiss_interrupts;
+    u32             rx_errors;
+    u32             rcv_drops;
+    u32             rcv_interrupts;
+    u32             xmit_interrupts;
+    u32             linkevent_interrupts;
+    u32             upr_interrupts;
+    u32             num_isrs;
+    u32             false_interrupts;
+    u32             tx_packets;
+    u32             xmit_completes;
+    u32             tx_drops;
+    u32             rcv_broadcasts;
+    u32             rcv_multicasts;
+    u32             rcv_unicasts;
+    u32             max_isr_rcvs;
+    u32             max_isr_xmits;
+    u32             rcv_interrupt_yields;
+    u32             intagg_period;
+    struct inicpm_state    *inicpm_info;
+    void *pinicpm_info;
+    struct slic_reg_params   reg_params;
+    struct slic_ifevents  if_events;
+    struct slic_stats        inicstats_prev;
+    struct slicnet_stats     slic_stats;
+    struct net_device_stats stats;
+};
+
+#if SLIC_DUMP_ENABLED
+#define SLIC_DUMP_REQUESTED      1
+#define SLIC_DUMP_IN_PROGRESS    2
+#define SLIC_DUMP_DONE           3
+
+/****************************************************************************
+ *
+ * Microcode crash information structure.  This
+ * structure is written out to the card's SRAM when the microcode panic's.
+ *
+ ****************************************************************************/
+struct slic_crash_info {
+    ushort  cpu_id;
+    ushort  crash_pc;
+};
+
+#define CRASH_INFO_OFFSET   0x155C
+
+#endif
+
+#define UPDATE_STATS(largestat, newstat, oldstat)                        \
+{                                                                        \
+    if ((newstat) < (oldstat))                                           \
+	(largestat) += ((newstat) + (0xFFFFFFFF - oldstat + 1));         \
+    else                                                                 \
+	(largestat) += ((newstat) - (oldstat));                          \
+}
+
+#define UPDATE_STATS_GB(largestat, newstat, oldstat)                     \
+{                                                                        \
+    (largestat) += ((newstat) - (oldstat));                              \
+}
+
+#define ETHER_EQ_ADDR(_AddrA, _AddrB, _Result)                           \
+{                                                                        \
+    _Result = TRUE;                                                      \
+    if (*(u32 *)(_AddrA) != *(u32 *)(_AddrB))                          \
+	_Result = FALSE;                                                 \
+    if (*(u16 *)(&((_AddrA)[4])) != *(u16 *)(&((_AddrB)[4])))        \
+	_Result = FALSE;                                                 \
+}
+
+#if defined(CONFIG_X86_64) || defined(CONFIG_IA64)
+#define   SLIC_GET_ADDR_LOW(_addr)  (u32)((u64)(_addr) & \
+	0x00000000FFFFFFFF)
+#define   SLIC_GET_ADDR_HIGH(_addr)  (u32)(((u64)(_addr) >> 32) & \
+	0x00000000FFFFFFFF)
+#else
+#define   SLIC_GET_ADDR_LOW(_addr)   (u32)_addr
+#define   SLIC_GET_ADDR_HIGH(_addr)  (u32)0
+#endif
+
+#define FLUSH       TRUE
+#define DONT_FLUSH  FALSE
+
+#define SIOCSLICDUMPCARD         (SIOCDEVPRIVATE+9)
+#define SIOCSLICSETINTAGG        (SIOCDEVPRIVATE+10)
+#define SIOCSLICTRACEDUMP        (SIOCDEVPRIVATE+11)
+
+#endif /*  __SLIC_DRIVER_H__ */
diff --git a/drivers/staging/slicoss/slic_os.h b/drivers/staging/slicoss/slic_os.h
new file mode 100644
index 0000000..46c6784
--- /dev/null
+++ b/drivers/staging/slicoss/slic_os.h
@@ -0,0 +1,84 @@
+/**************************************************************************
+ *
+ * Copyright (c)2000-2002 Alacritech, Inc.  All rights reserved.
+ *
+ *
+ * Redistribution and use in source and binary forms, with or without
+ * modification, are permitted provided that the following conditions
+ * are met:
+ *
+ * 1. Redistributions of source code must retain the above copyright
+ *    notice, this list of conditions and the following disclaimer.
+ * 2. Redistributions in binary form must reproduce the above
+ *    copyright notice, this list of conditions and the following
+ *    disclaimer in the documentation and/or other materials provided
+ *    with the distribution.
+ *
+ * THIS SOFTWARE IS PROVIDED BY ALACRITECH, INC. ``AS IS'' AND ANY
+ * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
+ * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
+ * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL ALACRITECH, INC. OR
+ * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
+ * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
+ * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
+ * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
+ * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
+ * SUCH DAMAGE.
+ *
+ * The views and conclusions contained in the software and documentation
+ * are those of the authors and should not be interpreted as representing
+ * official policies, either expressed or implied, of Alacritech, Inc.
+ *
+ **************************************************************************/
+
+/*
+ * FILENAME: slic_os.h
+ *
+ * These are the Linux-specific definitions required for the SLICOSS
+ * driver, which should allow for greater portability to other OSes.
+ */
+#ifndef _SLIC_OS_SPECIFIC_H_
+#define _SLIC_OS_SPECIFIC_H_
+
+#define FALSE               (0)
+#define TRUE                (1)
+
+#define SLIC_SECS_TO_JIFFS(x)  ((x) * HZ)
+#define SLIC_MS_TO_JIFFIES(x)  (SLIC_SECS_TO_JIFFS((x)) / 1000)
+
+#ifdef DEBUG_REGISTER_TRACE
+#define WRITE_REG(reg, value, flush)                                      \
+	{                                                           \
+		adapter->card->reg_type[adapter->card->debug_ix] = 0;   \
+		adapter->card->reg_offset[adapter->card->debug_ix] = \
+		((unsigned char *)(&reg)) - \
+		((unsigned char *)adapter->slic_regs); \
+		adapter->card->reg_value[adapter->card->debug_ix++] = value;  \
+		if (adapter->card->debug_ix == 32) \
+			adapter->card->debug_ix = 0;                      \
+		slic_reg32_write((&reg), (value), (flush));            \
+	}
+#define WRITE_REG64(a, reg, value, regh, valh, flush)                        \
+	{                                                           \
+		adapter->card->reg_type[adapter->card->debug_ix] = 1;        \
+		adapter->card->reg_offset[adapter->card->debug_ix] = \
+		((unsigned char *)(&reg)) - \
+		((unsigned char *)adapter->slic_regs); \
+		adapter->card->reg_value[adapter->card->debug_ix] = value;   \
+		adapter->card->reg_valueh[adapter->card->debug_ix++] = valh;  \
+		if (adapter->card->debug_ix == 32) \
+			adapter->card->debug_ix = 0;                      \
+		slic_reg64_write((a), (&reg), (value), (&regh), (valh), \
+				(flush));\
+	}
+#else
+#define WRITE_REG(reg, value, flush) \
+	slic_reg32_write((&reg), (value), (flush))
+#define WRITE_REG64(a, reg, value, regh, valh, flush) \
+	slic_reg64_write((a), (&reg), (value), (&regh), (valh), (flush))
+#endif
+
+#endif  /* _SLIC_OS_SPECIFIC_H_  */
+
diff --git a/drivers/staging/slicoss/slicbuild.h b/drivers/staging/slicoss/slicbuild.h
new file mode 100644
index 0000000..ae05e04
--- /dev/null
+++ b/drivers/staging/slicoss/slicbuild.h
@@ -0,0 +1,96 @@
+/**************************************************************************
+ *
+ * Copyright (c) 2000-2002 Alacritech, Inc.  All rights reserved.
+ *
+ *
+ * Redistribution and use in source and binary forms, with or without
+ * modification, are permitted provided that the following conditions
+ * are met:
+ *
+ * 1. Redistributions of source code must retain the above copyright
+ *    notice, this list of conditions and the following disclaimer.
+ * 2. Redistributions in binary form must reproduce the above
+ *    copyright notice, this list of conditions and the following
+ *    disclaimer in the documentation and/or other materials provided
+ *    with the distribution.
+ *
+ * THIS SOFTWARE IS PROVIDED BY ALACRITECH, INC. ``AS IS'' AND ANY
+ * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
+ * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
+ * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL ALACRITECH, INC. OR
+ * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
+ * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
+ * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
+ * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
+ * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
+ * SUCH DAMAGE.
+ *
+ * The views and conclusions contained in the software and documentation
+ * are those of the authors and should not be interpreted as representing
+ * official policies, either expressed or implied, of Alacritech, Inc.
+ *
+ **************************************************************************/
+
+/*
+ * FILENAME: slicbuild.h
+ *
+ * The following contains the compiler directive switches used for
+ * different SLIC build options.  They can all be set in the Makefile
+ * but the defaults are defined here.
+ */
+#ifndef _SLIC_BUILD_H_
+#define _SLIC_BUILD_H_
+
+#ifndef SLIC_PRODUCTION_BUILD
+#define SLIC_PRODUCTION_BUILD			1
+#endif
+#ifndef SLIC_FAILURE_RESET
+#define SLIC_FAILURE_RESET			1
+#endif
+#define DBG                         1
+#ifndef SLIC_ASSERT_ENABLED
+#define SLIC_ASSERT_ENABLED			1
+#endif
+#ifndef SLIC_MCAST_ENABLED
+#define SLIC_MCAST_ENABLED			1
+#endif
+#ifndef SLIC_GET_STATS_ENABLED
+#define SLIC_GET_STATS_ENABLED			1
+#endif
+#ifndef SLIC_GET_STATS_TIMER_ENABLED
+#define SLIC_GET_STATS_TIMER_ENABLED		0
+#endif
+#ifndef SLIC_PING_TIMER_ENABLED
+#define SLIC_PING_TIMER_ENABLED		1
+#endif
+#ifndef SLIC_IOCTL_SUPPORT_ENABLED
+#define SLIC_IOCTL_SUPPORT_ENABLED		1
+#endif
+#ifndef ATK_DEBUG
+#define ATK_DEBUG				1
+#endif
+#ifndef SLIC_POWER_MANAGEMENT_ENABLED
+#define SLIC_POWER_MANAGEMENT_ENABLED		0
+#endif
+#ifndef SLIC_INTERRUPT_PROCESS_LIMIT
+#define SLIC_INTERRUPT_PROCESS_LIMIT		1
+#endif
+#ifndef LINUX_FREES_ADAPTER_RESOURCES
+#define LINUX_FREES_ADAPTER_RESOURCES		1
+#endif
+#ifndef SLIC_OFFLOAD_IP_CHECKSUM
+#define SLIC_OFFLOAD_IP_CHECKSUM		1
+#endif
+#ifndef SLIC_POWER_MANAGEMENT_ENABLED
+#define SLIC_POWER_MANAGEMENT_ENABLED		0
+#endif
+#ifndef STATS_TIMER_INTERVAL
+#define STATS_TIMER_INTERVAL			2
+#endif
+#ifndef PING_TIMER_INTERVAL
+#define PING_TIMER_INTERVAL			1
+#endif
+
+#endif   /* _SLIC_BUILD_H_  */
diff --git a/drivers/staging/slicoss/slicdbg.h b/drivers/staging/slicoss/slicdbg.h
new file mode 100644
index 0000000..c54e44f
--- /dev/null
+++ b/drivers/staging/slicoss/slicdbg.h
@@ -0,0 +1,100 @@
+/**************************************************************************
+ *
+ * Copyright (c) 2000-2002 Alacritech, Inc.  All rights reserved.
+ *
+ *
+ * Redistribution and use in source and binary forms, with or without
+ * modification, are permitted provided that the following conditions
+ * are met:
+ *
+ * 1. Redistributions of source code must retain the above copyright
+ *    notice, this list of conditions and the following disclaimer.
+ * 2. Redistributions in binary form must reproduce the above
+ *    copyright notice, this list of conditions and the following
+ *    disclaimer in the documentation and/or other materials provided
+ *    with the distribution.
+ *
+ * THIS SOFTWARE IS PROVIDED BY ALACRITECH, INC. ``AS IS'' AND ANY
+ * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
+ * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
+ * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL ALACRITECH, INC. OR
+ * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
+ * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
+ * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
+ * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
+ * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
+ * SUCH DAMAGE.
+ *
+ * The views and conclusions contained in the software and documentation
+ * are those of the authors and should not be interpreted as representing
+ * official policies, either expressed or implied, of Alacritech, Inc.
+ *
+ **************************************************************************/
+
+/*
+ * FILENAME: slicdbg.h
+ *
+ * All debug and assertion-based definitions and macros are included
+ * in this file for the SLICOSS driver.
+ */
+#ifndef _SLIC_DEBUG_H_
+#define _SLIC_DEBUG_H_
+
+#ifdef SLIC_DEFAULT_LOG_LEVEL
+#else
+#define SLICLEVEL   KERN_DEBUG
+#endif
+#define SLIC_DISPLAY              printk
+#define DBG_ERROR(n, args...)   SLIC_DISPLAY(KERN_EMERG n, ##args)
+
+#define SLIC_DEBUG_MESSAGE 1
+#if SLIC_DEBUG_MESSAGE
+/*#define DBG_MSG(n, args...)      SLIC_DISPLAY(SLICLEVEL n, ##args)*/
+#define DBG_MSG(n, args...)
+#else
+#define DBG_MSG(n, args...)
+#endif
+
+#ifdef ASSERT
+#undef ASSERT
+#endif
+
+#if SLIC_ASSERT_ENABLED
+#ifdef CONFIG_X86_64
+#define VALID_ADDRESS(p)  (1)
+#else
+#define VALID_ADDRESS(p)  (((u32)(p) & 0x80000000) || ((u32)(p) == 0))
+#endif
+#ifndef ASSERT
+#define ASSERT(a)                                                             \
+    {                                                                         \
+	if (!(a)) {                                                           \
+		DBG_ERROR("ASSERT() Failure: file %s, function %s  line %d\n",\
+		__FILE__, __func__, __LINE__);                          \
+		slic_assert_fail();                                       \
+	}                                                                 \
+    }
+#endif
+#ifndef ASSERTMSG
+#define ASSERTMSG(a,msg)                                                  \
+    {                                                                     \
+	if (!(a)) {                                                       \
+		DBG_ERROR("ASSERT() Failure: file %s, function %s"\
+			"line %d: %s\n",\
+			__FILE__, __func__, __LINE__, (msg));            \
+		slic_assert_fail();                                      \
+	}                                                                \
+    }
+#endif
+#else
+#ifndef ASSERT
+#define ASSERT(a)
+#endif
+#ifndef ASSERTMSG
+#define ASSERTMSG(a, msg)
+#endif
+#endif /* SLIC_ASSERT_ENABLED  */
+
+#endif  /*  _SLIC_DEBUG_H_  */
diff --git a/drivers/staging/slicoss/slicdump.h b/drivers/staging/slicoss/slicdump.h
new file mode 100644
index 0000000..92a9b44
--- /dev/null
+++ b/drivers/staging/slicoss/slicdump.h
@@ -0,0 +1,278 @@
+/*
+ *
+ * Copyright (c) 2000-2002 Alacritech, Inc.  All rights reserved.
+ *
+ * Redistribution and use in source and binary forms, with or without
+ * modification, are permitted provided that the following conditions
+ * are met:
+ *
+ * 1. Redistributions of source code must retain the above copyright
+ *    notice, this list of conditions and the following disclaimer.
+ * 2. Redistributions in binary form must reproduce the above
+ *    copyright notice, this list of conditions and the following
+ *    disclaimer in the documentation and/or other materials provided
+ *    with the distribution.
+ *
+ * THIS SOFTWARE IS PROVIDED BY ALACRITECH, INC. ``AS IS'' AND ANY
+ * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
+ * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
+ * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL ALACRITECH, INC. OR
+ * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
+ * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
+ * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
+ * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
+ * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
+ * SUCH DAMAGE.
+ *
+ * NO LICENSE TO ANY ALACRITECH PATENT CLAIM IS GRANTED BY ANY COPYRIGHT
+ * LICENSE TO THIS OR OTHER SOFTWARE. THIS SOFTWARE MAY BE COVERED BY
+ * ALACRITECH PATENTS INCLUDING BUT NOT LIMITED TO U.S. PATENT NOS. 6,226,680,
+ * 6,247,060, 6,334,153, 6,389,479, 6,393,487, 6,427,171, 6,427,173
+ * and 6,434,620.
+ * THIS SOFTWARE IS NOT SUBJECT TO THE GNU GENERAL PUBLIC LICENSE (GPL).
+ *
+ * The views and conclusions contained in the software and
+ * documentation are those of the authors and should not be
+ * interpreted as representing official policies, either
+ * expressed or implied, of Alacritech, Inc.
+ */
+#ifndef _SLIC_DUMP_H_
+#define _SLIC_DUMP_H_
+
+#define DEBUG_SUCCESS   0
+
+/***********************************************************************
+ *
+ * Utility processor register locations
+ *
+ **********************************************************************/
+#define UTILITY_RESET       0x0
+#define UTILITY_ISP_ADDR    0x4     /* Interrupt status Pointer */
+#define UTILITY_ISR_ADDR    0x8     /* Interrupt status Register */
+#define UTILITY_ICR_ADDR    0xc     /* Interrupt Control Register */
+#define UTILITY_CPR_ADDR    0x10    /* Command Pointer Register */
+#define UTILITY_DPR_ADDR    0x14    /* Data Pointer Register */
+#define UTILITY_DMP_TRQ     0x18    /* Dump queue onto ALU for analyser */
+#define UTILITY_UPP_ADDR    0x1c    /* Bits 63-32 of cmd/data pointer */
+
+/***********************************************************************
+ *
+ * INIC status register bits
+ *
+ ***********************************************************************/
+#define SLIC_ISR_CC         0x10000000  /* Command complete - synchronous */
+#define SLIC_ISR_ERR        0x01000000  /* Command Error - synchronous */
+#define SLIC_ISR_CMD_MASK   0x11000000  /* Command status mask */
+#define SLIC_ISR_TPH        0x00080000  /* Transmit processor halted - async */
+#define SLIC_ISR_RPH        0x00040000  /* Receive processor halted - async */
+
+/***********************************************************************
+ *
+ * INIC Control register values
+ *
+ ***********************************************************************/
+#define SLIC_ICR_OFF        0           /* Interrupts disabled */
+#define SLIC_ICR_ON         1           /* Interrupts enabled */
+#define SLIC_ICR_MASK       2           /* Interrupts masked */
+
+#define WRITE_DREG(reg, value, flush)                           \
+{                                                               \
+    writel((value), (reg));                                     \
+    if ((flush)) {                                               \
+	mb();                                                   \
+    }                                                           \
+}
+
+/************************************************************************
+ *
+ * Command Format
+ *
+ * Each command contains a command byte which is defined as follows:
+ *
+ *  bits:   7-3     2       1-0
+ *      ----------------------------------------------
+ *      command     Alt. Proc   Processor
+ *
+ ************************************************************************/
+
+/*
+ * Macro to create the command byte given the command, Alt. Proc, and
+ * Processor values.  Note that the macro assumes that the values are
+ * preshifted.  That is, the values for alt. proc are 0 for transmit and
+ * 4 for receive.
+ */
+#define COMMAND_BYTE(command, alt_proc, proc) ((command) | (alt_proc) | (proc))
+
+/*
+ * Command values
+ */
+#define CMD_HALT        0x0     /* Send a halt to the INIC */
+#define CMD_RUN         0x8     /* Start the halted INIC */
+#define CMD_STEP        0x10    /* Single step the inic */
+#define CMD_BREAK       0x18    /* Set a breakpoint - 8 byte command */
+#define CMD_RESET_BREAK 0x20    /* Reset a breakpoint - 8 byte cmd */
+#define CMD_DUMP        0x28    /* Dump INIC memory - 8 byte command */
+#define CMD_LOAD        0x30    /* Load INIC memory - 8 byte command */
+#define CMD_MAP         0x38    /* Map out a ROM instruction - 8 BC */
+#define CMD_CAM_OPS     0x38    /* perform ops on specific CAM */
+#define CMD_XMT         0x40    /* Transmit frame */
+#define CMD_RCV         0x48    /* Receive frame */
+
+/*
+ * Alt. Proc values
+ *
+ * When the proc value is set to the utility processor, the Alt. Proc
+ * specifies which processor handles the debugging.
+ */
+#define ALT_PROC_TRANSMIT   0x0
+#define ALT_PROC_RECEIVE    0x4
+
+/*
+ * Proc values
+ */
+#define PROC_INVALID        0x0
+#define PROC_NONE           0x0  /* Gigabit use */
+#define PROC_TRANSMIT       0x1
+#define PROC_RECEIVE        0x2
+#define PROC_UTILITY        0x3
+
+/******************************************************************
+ *
+ * 8 byte command structure definitions
+ *
+ ******************************************************************/
+
+/*
+ * Break and Reset Break command structure
+ */
+struct BREAK {
+    unsigned char     command;    /* Command word defined above */
+    unsigned char     resvd;
+    ushort    count;      /* Number of executions before break */
+    u32   addr;       /* Address of break point */
+};
+
+/*
+ * Dump and Load command structure
+ */
+struct dump_cmd {
+    unsigned char     cmd;        /* Command word defined above */
+    unsigned char     desc;       /* Descriptor values - defined below */
+    ushort    count;      /* number of 4 byte words to be transferred */
+    u32   addr;       /* start address of dump or load */
+};
+
+/*
+ * Receive or Transmit a frame.
+ */
+struct RCV_OR_XMT_FRAME {
+    unsigned char     command;    /* Command word defined above */
+    unsigned char     MacId;      /* Mac ID of interface - transmit only */
+    ushort    count;      /* Length of frame in bytes */
+    u32   pad;        /* not used */
+};
+
+/*
+ * Values of desc field in DUMP_OR_LOAD structure
+ */
+#define DESC_RFILE          0x0     /* Register file */
+#define DESC_SRAM           0x1     /* SRAM */
+#define DESC_DRAM           0x2     /* DRAM */
+#define DESC_QUEUE          0x3     /* queues */
+#define DESC_REG            0x4     /* General registers (pc, status, etc) */
+#define DESC_SENSE          0x5     /* Sense register */
+
+/* Descriptor field definitions for CMD_DUMP_CAM */
+#define DUMP_CAM_A              0
+#define DUMP_CAM_B              1               /* unused at present */
+#define DUMP_CAM_C              2
+#define DUMP_CAM_D              3
+#define SEARCH_CAM_A            4
+#define SEARCH_CAM_C            5
+
+/*
+ * Map command to replace a command in ROM with a command in WCS
+ */
+struct MAP {
+    unsigned char   command;    /* Command word defined above */
+    unsigned char   not_used[3];
+    ushort  map_to;     /* Instruction address in WCS */
+    ushort  map_out;    /* Instruction address in ROM */
+};
+
+/*
+ * Misc definitions
+ */
+#define SLIC_MAX_QUEUE       32 /* Total # of queues on the INIC (0-31)*/
+#define SLIC_4MAX_REG       512 /* Total # of 4-port file-registers    */
+#define SLIC_1MAX_REG       384 /* Total # of file-registers           */
+#define SLIC_GBMAX_REG     1024 /* Total # of Gbit file-registers      */
+#define SLIC_NUM_REG         32 /* non-file-registers = NUM_REG in tm-simba.h */
+#define SLIC_GB_CAMA_SZE     32
+#define SLIC_GB_CAMB_SZE     16
+#define SLIC_GB_CAMAB_SZE    32
+#define SLIC_GB_CAMC_SZE     16
+#define SLIC_GB_CAMD_SZE     16
+#define SLIC_GB_CAMCD_SZE    32
+
+/*
+ * Coredump header structure
+ */
+struct CORE_Q {
+    u32   queueOff;           /* Offset of queue */
+    u32   queuesize;          /* size of queue */
+};
+
+#define DRIVER_NAME_SIZE    32
+
+struct sliccore_hdr {
+    unsigned char driver_version[DRIVER_NAME_SIZE]; /* Driver version string */
+    u32   RcvRegOff;          /* Offset of receive registers */
+    u32   RcvRegsize;         /* size of receive registers */
+    u32   XmtRegOff;          /* Offset of transmit registers */
+    u32   XmtRegsize;         /* size of transmit registers */
+    u32   FileRegOff;         /* Offset of register file */
+    u32   FileRegsize;        /* size of register file */
+    u32   SramOff;            /* Offset of Sram */
+    u32   Sramsize;           /* size of Sram */
+    u32   DramOff;            /* Offset of Dram */
+    u32   Dramsize;           /* size of Dram */
+    CORE_Q    queues[SLIC_MAX_QUEUE]; /* size and offsets of queues */
+    u32   CamAMOff;           /* Offset of CAM A contents */
+    u32   CamASize;           /* Size of Cam A */
+    u32   CamBMOff;           /* Offset of CAM B contents */
+    u32   CamBSize;           /* Size of Cam B */
+    u32   CamCMOff;           /* Offset of CAM C contents */
+    u32   CamCSize;           /* Size of Cam C */
+    u32   CamDMOff;           /* Offset of CAM D contents */
+    u32   CamDSize;           /* Size of Cam D */
+};
+
+/*
+ * definitions needed for our kernel-mode gdb stub.
+ */
+/***********************************************************************
+ *
+ * Definitions & Typedefs
+ *
+ **********************************************************************/
+#define BUFMAX      0x20000 /* 128k - size of input/output buffer */
+#define BUFMAXP2    5       /* 2**5 (32) 4K pages */
+
+#define IOCTL_SIMBA_BREAK           _IOW('s', 0, unsigned long)
+/* #define IOCTL_SIMBA_INIT            _IOW('s', 1, unsigned long) */
+#define IOCTL_SIMBA_KILL_TGT_PROC   _IOW('s', 2, unsigned long)
+
+/***********************************************************************
+ *
+ * Global variables
+ *
+ ***********************************************************************/
+
+#define THREADRECEIVE   1   /* bit 0 of StoppedThreads */
+#define THREADTRANSMIT  2   /* bit 1 of StoppedThreads */
+#define THREADBOTH      3   /* bit 0 and 1.. */
+
+#endif  /*  _SLIC_DUMP_H  */
diff --git a/drivers/staging/slicoss/slichw.h b/drivers/staging/slicoss/slichw.h
new file mode 100644
index 0000000..d03e90b
--- /dev/null
+++ b/drivers/staging/slicoss/slichw.h
@@ -0,0 +1,845 @@
+/**************************************************************************
+ *
+ * Copyright (c) 2000-2002 Alacritech, Inc.  All rights reserved.
+ *
+ *
+ * Redistribution and use in source and binary forms, with or without
+ * modification, are permitted provided that the following conditions
+ * are met:
+ *
+ * 1. Redistributions of source code must retain the above copyright
+ *    notice, this list of conditions and the following disclaimer.
+ * 2. Redistributions in binary form must reproduce the above
+ *    copyright notice, this list of conditions and the following
+ *    disclaimer in the documentation and/or other materials provided
+ *    with the distribution.
+ *
+ * THIS SOFTWARE IS PROVIDED BY ALACRITECH, INC. ``AS IS'' AND ANY
+ * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
+ * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
+ * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL ALACRITECH, INC. OR
+ * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
+ * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
+ * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
+ * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
+ * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
+ * SUCH DAMAGE.
+ *
+ * The views and conclusions contained in the software and documentation
+ * are those of the authors and should not be interpreted as representing
+ * official policies, either expressed or implied, of Alacritech, Inc.
+ *
+ **************************************************************************/
+
+/*
+ * FILENAME: slichw.h
+ *
+ * This header file contains definitions that are common to our hardware.
+ */
+#ifndef __SLICHW_H__
+#define __SLICHW_H__
+
+#define PCI_VENDOR_ID_ALACRITECH    0x139A
+#define SLIC_1GB_DEVICE_ID          0x0005
+#define SLIC_2GB_DEVICE_ID          0x0007  /*Oasis Device ID */
+
+#define SLIC_1GB_CICADA_SUBSYS_ID   0x0008
+
+#define SLIC_NBR_MACS      4
+
+#define SLIC_RCVBUF_SIZE        2048
+#define SLIC_RCVBUF_HEADSIZE    34
+#define SLIC_RCVBUF_TAILSIZE    0
+#define SLIC_RCVBUF_DATASIZE    (SLIC_RCVBUF_SIZE - (SLIC_RCVBUF_HEADSIZE +\
+					SLIC_RCVBUF_TAILSIZE))
+
+#define VGBSTAT_XPERR           0x40000000
+#define VGBSTAT_XERRSHFT        25
+#define VGBSTAT_XCSERR          0x23
+#define VGBSTAT_XUFLOW          0x22
+#define VGBSTAT_XHLEN           0x20
+#define VGBSTAT_NETERR          0x01000000
+#define VGBSTAT_NERRSHFT        16
+#define VGBSTAT_NERRMSK         0x1ff
+#define VGBSTAT_NCSERR          0x103
+#define VGBSTAT_NUFLOW          0x102
+#define VGBSTAT_NHLEN           0x100
+#define VGBSTAT_LNKERR          0x00000080
+#define VGBSTAT_LERRMSK         0xff
+#define VGBSTAT_LDEARLY         0x86
+#define VGBSTAT_LBOFLO          0x85
+#define VGBSTAT_LCODERR         0x84
+#define VGBSTAT_LDBLNBL         0x83
+#define VGBSTAT_LCRCERR         0x82
+#define VGBSTAT_LOFLO           0x81
+#define VGBSTAT_LUFLO           0x80
+#define IRHDDR_FLEN_MSK         0x0000ffff
+#define IRHDDR_SVALID           0x80000000
+#define IRHDDR_ERR              0x10000000
+#define VRHSTAT_802OE           0x80000000
+#define VRHSTAT_TPOFLO          0x10000000
+#define VRHSTATB_802UE          0x80000000
+#define VRHSTATB_RCVE           0x40000000
+#define VRHSTATB_BUFF           0x20000000
+#define VRHSTATB_CARRE          0x08000000
+#define VRHSTATB_LONGE          0x02000000
+#define VRHSTATB_PREA           0x01000000
+#define VRHSTATB_CRC            0x00800000
+#define VRHSTATB_DRBL           0x00400000
+#define VRHSTATB_CODE           0x00200000
+#define VRHSTATB_TPCSUM         0x00100000
+#define VRHSTATB_TPHLEN         0x00080000
+#define VRHSTATB_IPCSUM         0x00040000
+#define VRHSTATB_IPLERR         0x00020000
+#define VRHSTATB_IPHERR         0x00010000
+#define SLIC_MAX64_BCNT         23
+#define SLIC_MAX32_BCNT         26
+#define IHCMD_XMT_REQ           0x01
+#define IHFLG_IFSHFT            2
+#define SLIC_RSPBUF_SIZE        32
+
+#define SLIC_RESET_MAGIC        0xDEAD
+#define ICR_INT_OFF             0
+#define ICR_INT_ON              1
+#define ICR_INT_MASK            2
+
+#define ISR_ERR                 0x80000000
+#define ISR_RCV                 0x40000000
+#define ISR_CMD                 0x20000000
+#define ISR_IO                  0x60000000
+#define ISR_UPC                 0x10000000
+#define ISR_LEVENT              0x08000000
+#define ISR_RMISS               0x02000000
+#define ISR_UPCERR              0x01000000
+#define ISR_XDROP               0x00800000
+#define ISR_UPCBSY              0x00020000
+#define ISR_EVMSK               0xffff0000
+#define ISR_PINGMASK            0x00700000
+#define ISR_PINGDSMASK          0x00710000
+#define ISR_UPCMASK             0x11000000
+#define SLIC_WCS_START          0x80000000
+#define SLIC_WCS_COMPARE        0x40000000
+#define SLIC_RCVWCS_BEGIN       0x40000000
+#define SLIC_RCVWCS_FINISH      0x80000000
+#define SLIC_PM_MAXPATTERNS     6
+#define SLIC_PM_PATTERNSIZE     128
+#define SLIC_PMCAPS_WAKEONLAN   0x00000001
+#define MIICR_REG_PCR           0x00000000
+#define MIICR_REG_4             0x00040000
+#define MIICR_REG_9             0x00090000
+#define MIICR_REG_16            0x00100000
+#define PCR_RESET               0x8000
+#define PCR_POWERDOWN           0x0800
+#define PCR_SPEED_100           0x2000
+#define PCR_SPEED_1000          0x0040
+#define PCR_AUTONEG             0x1000
+#define PCR_AUTONEG_RST         0x0200
+#define PCR_DUPLEX_FULL         0x0100
+#define PSR_LINKUP              0x0004
+
+#define PAR_ADV100FD            0x0100
+#define PAR_ADV100HD            0x0080
+#define PAR_ADV10FD             0x0040
+#define PAR_ADV10HD             0x0020
+#define PAR_ASYMPAUSE           0x0C00
+#define PAR_802_3               0x0001
+
+#define PAR_ADV1000XFD          0x0020
+#define PAR_ADV1000XHD          0x0040
+#define PAR_ASYMPAUSE_FIBER     0x0180
+
+#define PGC_ADV1000FD           0x0200
+#define PGC_ADV1000HD           0x0100
+#define SEEQ_LINKFAIL           0x4000
+#define SEEQ_SPEED              0x0080
+#define SEEQ_DUPLEX             0x0040
+#define TDK_DUPLEX              0x0800
+#define TDK_SPEED               0x0400
+#define MRV_REG16_XOVERON       0x0068
+#define MRV_REG16_XOVEROFF      0x0008
+#define MRV_SPEED_1000          0x8000
+#define MRV_SPEED_100           0x4000
+#define MRV_SPEED_10            0x0000
+#define MRV_FULLDUPLEX          0x2000
+#define MRV_LINKUP              0x0400
+
+#define GIG_LINKUP              0x0001
+#define GIG_FULLDUPLEX          0x0002
+#define GIG_SPEED_MASK          0x000C
+#define GIG_SPEED_1000          0x0008
+#define GIG_SPEED_100           0x0004
+#define GIG_SPEED_10            0x0000
+
+#define MCR_RESET               0x80000000
+#define MCR_CRCEN               0x40000000
+#define MCR_FULLD               0x10000000
+#define MCR_PAD                 0x02000000
+#define MCR_RETRYLATE           0x01000000
+#define MCR_BOL_SHIFT           21
+#define MCR_IPG1_SHIFT          14
+#define MCR_IPG2_SHIFT          7
+#define MCR_IPG3_SHIFT          0
+#define GMCR_RESET              0x80000000
+#define GMCR_GBIT               0x20000000
+#define GMCR_FULLD              0x10000000
+#define GMCR_GAPBB_SHIFT        14
+#define GMCR_GAPR1_SHIFT        7
+#define GMCR_GAPR2_SHIFT        0
+#define GMCR_GAPBB_1000         0x60
+#define GMCR_GAPR1_1000         0x2C
+#define GMCR_GAPR2_1000         0x40
+#define GMCR_GAPBB_100          0x70
+#define GMCR_GAPR1_100          0x2C
+#define GMCR_GAPR2_100          0x40
+#define XCR_RESET               0x80000000
+#define XCR_XMTEN               0x40000000
+#define XCR_PAUSEEN             0x20000000
+#define XCR_LOADRNG             0x10000000
+#define RCR_RESET               0x80000000
+#define RCR_RCVEN               0x40000000
+#define RCR_RCVALL              0x20000000
+#define RCR_RCVBAD              0x10000000
+#define RCR_CTLEN               0x08000000
+#define RCR_ADDRAEN             0x02000000
+#define GXCR_RESET              0x80000000
+#define GXCR_XMTEN              0x40000000
+#define GXCR_PAUSEEN            0x20000000
+#define GRCR_RESET              0x80000000
+#define GRCR_RCVEN              0x40000000
+#define GRCR_RCVALL             0x20000000
+#define GRCR_RCVBAD             0x10000000
+#define GRCR_CTLEN              0x08000000
+#define GRCR_ADDRAEN            0x02000000
+#define GRCR_HASHSIZE_SHIFT     17
+#define GRCR_HASHSIZE           14
+
+#define SLIC_EEPROM_ID        0xA5A5
+#define SLIC_SRAM_SIZE2GB     (64 * 1024)
+#define SLIC_SRAM_SIZE1GB     (32 * 1024)
+#define SLIC_HOSTID_DEFAULT   0xFFFF      /* uninitialized hostid */
+#define SLIC_NBR_MACS         4
+
+#ifndef FALSE
+#define FALSE  0
+#else
+#undef  FALSE
+#define FALSE  0
+#endif
+
+#ifndef TRUE
+#define TRUE   1
+#else
+#undef  TRUE
+#define TRUE   1
+#endif
+
+struct slic_rcvbuf {
+    unsigned char     pad1[6];
+    ushort    pad2;
+    u32   pad3;
+    u32   pad4;
+    u32   buffer;
+    u32   length;
+    u32   status;
+    u32   pad5;
+    ushort    pad6;
+    unsigned char     data[SLIC_RCVBUF_DATASIZE];
+};
+
+ struct slic_hddr_wds {
+  union {
+    struct {
+	u32    frame_status;
+	u32    frame_status_b;
+	u32    time_stamp;
+	u32    checksum;
+    } hdrs_14port;
+    struct {
+	u32    frame_status;
+	ushort     ByteCnt;
+	ushort     TpChksum;
+	ushort     CtxHash;
+	ushort     MacHash;
+	u32    BufLnk;
+    } hdrs_gbit;
+  } u0;
+};
+
+#define frame_status14        u0.hdrs_14port.frame_status
+#define frame_status_b14      u0.hdrs_14port.frame_status_b
+#define frame_statusGB        u0.hdrs_gbit.frame_status
+
+struct slic_host64sg {
+	u32        paddrl;
+	u32        paddrh;
+	u32        length;
+};
+
+struct slic_host64_cmd {
+    u32       hosthandle;
+    u32       RSVD;
+    unsigned char         command;
+    unsigned char         flags;
+    union {
+	ushort          rsv1;
+	ushort          rsv2;
+    } u0;
+    union {
+	struct {
+		u32            totlen;
+		struct slic_host64sg    bufs[SLIC_MAX64_BCNT];
+	} slic_buffers;
+    } u;
+};
+
+struct slic_rspbuf {
+    u32   hosthandle;
+    u32   pad0;
+    u32   pad1;
+    u32   status;
+    u32   pad2[4];
+
+};
+
+struct slic_regs {
+	u32	slic_reset;		/* Reset Register */
+	u32	pad0;
+
+	u32	slic_icr;		/* Interrupt Control Register */
+	u32	pad2;
+#define SLIC_ICR		0x0008
+
+	u32	slic_isp;		/* Interrupt status pointer */
+	u32	pad1;
+#define SLIC_ISP		0x0010
+
+    u32	slic_isr;		/* Interrupt status */
+	u32	pad3;
+#define SLIC_ISR		0x0018
+
+    u32	slic_hbar;		/* Header buffer address reg */
+	u32		pad4;
+	/* 31-8 - phy addr of set of contiguous hdr buffers
+	    7-0 - number of buffers passed
+	   Buffers are 256 bytes long on 256-byte boundaries. */
+#define SLIC_HBAR		0x0020
+#define SLIC_HBAR_CNT_MSK	0x000000FF
+
+    u32	slic_dbar;	/* Data buffer handle & address reg */
+	u32		pad5;
+
+	/* 4 sets of registers; Buffers are 2K bytes long 2 per 4K page. */
+#define SLIC_DBAR		0x0028
+#define SLIC_DBAR_SIZE		2048
+
+    u32	slic_cbar;		 	/* Xmt Cmd buf addr regs.*/
+	/* 1 per XMT interface
+	   31-5 - phy addr of host command buffer
+	    4-0 - length of cmd in multiples of 32 bytes
+	   Buffers are 32 bytes up to 512 bytes long */
+#define SLIC_CBAR		0x0030
+#define SLIC_CBAR_LEN_MSK	0x0000001F
+#define SLIC_CBAR_ALIGN		0x00000020
+
+	u32	slic_wcs;		/* write control store*/
+#define	SLIC_WCS		0x0034
+#define SLIC_WCS_START		0x80000000	/*Start the SLIC (Jump to WCS)*/
+#define SLIC_WCS_COMPARE	0x40000000	/* Compare with value in WCS*/
+
+    u32	slic_rbar;		/* Response buffer address reg.*/
+	u32		pad7;
+	 /*31-8 - phy addr of set of contiguous response buffers
+	  7-0 - number of buffers passed
+	 Buffers are 32 bytes long on 32-byte boundaries.*/
+#define SLIC_RBAR		0x0038
+#define SLIC_RBAR_CNT_MSK	0x000000FF
+#define SLIC_RBAR_SIZE		32
+
+	u32	slic_stats;		/* read statistics (UPR) */
+	u32		pad8;
+#define	SLIC_RSTAT		0x0040
+
+	u32	slic_rlsr;			/* read link status */
+	u32		pad9;
+#define SLIC_LSTAT		0x0048
+
+	u32	slic_wmcfg;			/* Write Mac Config */
+	u32		pad10;
+#define	SLIC_WMCFG		0x0050
+
+	u32	slic_wphy;			/* Write phy register */
+	u32		pad11;
+#define SLIC_WPHY		0x0058
+
+	u32	slic_rcbar;			/*Rcv Cmd buf addr reg*/
+	u32		pad12;
+#define	SLIC_RCBAR		0x0060
+
+	u32	slic_rconfig;		/* Read SLIC Config*/
+	u32		pad13;
+#define SLIC_RCONFIG	0x0068
+
+	u32	slic_intagg;		/* Interrupt aggregation time*/
+	u32		pad14;
+#define SLIC_INTAGG		0x0070
+
+	u32	slic_wxcfg;		/* Write XMIT config reg*/
+	u32		pad16;
+#define	SLIC_WXCFG		0x0078
+
+	u32	slic_wrcfg;		/* Write RCV config reg*/
+	u32		pad17;
+#define	SLIC_WRCFG		0x0080
+
+	u32	slic_wraddral;		/* Write rcv addr a low*/
+	u32		pad18;
+#define	SLIC_WRADDRAL	0x0088
+
+	u32	slic_wraddrah;		/* Write rcv addr a high*/
+	u32		pad19;
+#define	SLIC_WRADDRAH	0x0090
+
+	u32	slic_wraddrbl;		/* Write rcv addr b low*/
+	u32		pad20;
+#define	SLIC_WRADDRBL	0x0098
+
+	u32	slic_wraddrbh;		/* Write rcv addr b high*/
+	u32		pad21;
+#define	SLIC_WRADDRBH	0x00a0
+
+	u32	slic_mcastlow;		/* Low bits of mcast mask*/
+	u32		pad22;
+#define	SLIC_MCASTLOW	0x00a8
+
+	u32	slic_mcasthigh;		/* High bits of mcast mask*/
+	u32		pad23;
+#define	SLIC_MCASTHIGH	0x00b0
+
+	u32	slic_ping;			/* Ping the card*/
+	u32		pad24;
+#define SLIC_PING		0x00b8
+
+	u32	slic_dump_cmd;		/* Dump command */
+	u32		pad25;
+#define SLIC_DUMP_CMD	0x00c0
+
+	u32	slic_dump_data;		/* Dump data pointer */
+	u32		pad26;
+#define SLIC_DUMP_DATA	0x00c8
+
+	u32	slic_pcistatus;	/* Read card's pci_status register */
+	u32		pad27;
+#define	SLIC_PCISTATUS	0x00d0
+
+	u32	slic_wrhostid;		/* Write hostid field */
+	u32		pad28;
+#define SLIC_WRHOSTID		 0x00d8
+#define SLIC_RDHOSTID_1GB	 0x1554
+#define SLIC_RDHOSTID_2GB	 0x1554
+
+	u32	slic_low_power;	/* Put card in a low power state */
+	u32		pad29;
+#define SLIC_LOW_POWER	0x00e0
+
+	u32	slic_quiesce;	/* force slic into quiescent state
+					 before soft reset */
+	u32		pad30;
+#define SLIC_QUIESCE	0x00e8
+
+	u32	slic_reset_iface;	/* reset interface queues */
+	u32		pad31;
+#define SLIC_RESET_IFACE 0x00f0
+
+    u32	slic_addr_upper;	/* Bits 63-32 for host i/f addrs */
+	u32		pad32;
+#define SLIC_ADDR_UPPER	0x00f8 /*Register is only written when it has changed*/
+
+    u32	slic_hbar64;		/* 64 bit Header buffer address reg */
+	u32		pad33;
+#define SLIC_HBAR64		0x0100
+
+    u32	slic_dbar64;	/* 64 bit Data buffer handle & address reg */
+	u32		pad34;
+#define SLIC_DBAR64		0x0108
+
+    u32	slic_cbar64;	 	/* 64 bit Xmt Cmd buf addr regs. */
+	u32		pad35;
+#define SLIC_CBAR64		0x0110
+
+    u32	slic_rbar64;		/* 64 bit Response buffer address reg.*/
+	u32		pad36;
+#define SLIC_RBAR64		0x0118
+
+	u32	slic_rcbar64;		/* 64 bit Rcv Cmd buf addr reg*/
+	u32		pad37;
+#define	SLIC_RCBAR64	0x0120
+
+	u32	slic_stats64;		/*read statistics (64 bit UPR)*/
+	u32		pad38;
+#define	SLIC_RSTAT64	0x0128
+
+	u32	slic_rcv_wcs;	/*Download Gigabit RCV sequencer ucode*/
+	u32		pad39;
+#define SLIC_RCV_WCS	0x0130
+#define SLIC_RCVWCS_BEGIN	0x40000000
+#define SLIC_RCVWCS_FINISH	0x80000000
+
+	u32	slic_wrvlanid;		/* Write VlanId field */
+	u32		pad40;
+#define SLIC_WRVLANID	0x0138
+
+	u32	slic_read_xf_info;  /* Read Transformer info */
+	u32		pad41;
+#define SLIC_READ_XF_INFO 	0x0140
+
+	u32	slic_write_xf_info; /* Write Transformer info */
+	u32		pad42;
+#define SLIC_WRITE_XF_INFO 	0x0148
+
+	u32	RSVD1;              /* TOE Only */
+	u32		pad43;
+
+	u32	RSVD2; 	            /* TOE Only */
+	u32		pad44;
+
+	u32	RSVD3;              /* TOE Only */
+	u32		pad45;
+
+	u32	RSVD4;              /* TOE Only */
+	u32		pad46;
+
+	u32	slic_ticks_per_sec; /* Write card ticks per second */
+	u32		pad47;
+#define SLIC_TICKS_PER_SEC	0x0170
+
+};
+
+enum UPR_REQUEST {
+    SLIC_UPR_STATS,
+    SLIC_UPR_RLSR,
+    SLIC_UPR_WCFG,
+    SLIC_UPR_RCONFIG,
+    SLIC_UPR_RPHY,
+    SLIC_UPR_ENLB,
+    SLIC_UPR_ENCT,
+    SLIC_UPR_PDWN,
+    SLIC_UPR_PING,
+    SLIC_UPR_DUMP,
+};
+
+struct inicpm_wakepattern {
+    u32    patternlength;
+    unsigned char      pattern[SLIC_PM_PATTERNSIZE];
+    unsigned char      mask[SLIC_PM_PATTERNSIZE];
+};
+
+struct inicpm_state {
+    u32                 powercaps;
+    u32                 powerstate;
+    u32                 wake_linkstatus;
+    u32                 wake_magicpacket;
+    u32                 wake_framepattern;
+    struct inicpm_wakepattern    wakepattern[SLIC_PM_MAXPATTERNS];
+};
+
+struct slicpm_packet_pattern {
+    u32     priority;
+    u32     reserved;
+    u32     masksize;
+    u32     patternoffset;
+    u32     patternsize;
+    u32     patternflags;
+};
+
+enum slicpm_power_state {
+    slicpm_state_unspecified = 0,
+    slicpm_state_d0,
+    slicpm_state_d1,
+    slicpm_state_d2,
+    slicpm_state_d3,
+    slicpm_state_maximum
+};
+
+struct slicpm_wakeup_capabilities {
+    enum slicpm_power_state  min_magic_packet_wakeup;
+    enum slicpm_power_state  min_pattern_wakeup;
+    enum slicpm_power_state  min_link_change_wakeup;
+};
+
+struct slic_pnp_capabilities {
+	u32 flags;
+	struct slicpm_wakeup_capabilities wakeup_capabilities;
+};
+
+struct xmt_stats {
+	u32 xmit_tcp_bytes;
+	u32 xmit_tcp_segs;
+	u32 xmit_bytes;
+	u32 xmit_collisions;
+	u32 xmit_unicasts;
+	u32 xmit_other_error;
+	u32 xmit_excess_collisions;
+};
+
+struct rcv_stats {
+	u32 rcv_tcp_bytes;
+	u32 rcv_tcp_segs;
+	u32 rcv_bytes;
+	u32 rcv_unicasts;
+	u32 rcv_other_error;
+	u32 rcv_drops;
+};
+
+struct xmt_statsgb {
+	u64 xmit_tcp_bytes;
+	u64 xmit_tcp_segs;
+	u64 xmit_bytes;
+	u64 xmit_collisions;
+	u64 xmit_unicasts;
+	u64 xmit_other_error;
+	u64 xmit_excess_collisions;
+};
+
+struct rcv_statsgb {
+	u64 rcv_tcp_bytes;
+	u64 rcv_tcp_segs;
+	u64 rcv_bytes;
+	u64 rcv_unicasts;
+	u64 rcv_other_error;
+	u64 rcv_drops;
+};
+
+struct slic_stats {
+    union {
+	struct {
+		struct xmt_stats  xmt100;
+		struct rcv_stats  rcv100;
+	} stats_100;
+	struct {
+		struct xmt_statsgb     xmtGB;
+		struct rcv_statsgb     rcvGB;
+	} stats_GB;
+    } u;
+};
+
+#define xmit_tcp_segs100           u.stats_100.xmt100.xmit_tcp_segs
+#define xmit_tcp_bytes100          u.stats_100.xmt100.xmit_tcp_bytes
+#define xmit_bytes100              u.stats_100.xmt100.xmit_bytes
+#define xmit_collisions100         u.stats_100.xmt100.xmit_collisions
+#define xmit_unicasts100           u.stats_100.xmt100.xmit_unicasts
+#define xmit_other_error100        u.stats_100.xmt100.xmit_other_error
+#define xmit_excess_collisions100  u.stats_100.xmt100.xmit_excess_collisions
+#define rcv_tcp_segs100            u.stats_100.rcv100.rcv_tcp_segs
+#define rcv_tcp_bytes100           u.stats_100.rcv100.rcv_tcp_bytes
+#define rcv_bytes100               u.stats_100.rcv100.rcv_bytes
+#define rcv_unicasts100            u.stats_100.rcv100.rcv_unicasts
+#define rcv_other_error100         u.stats_100.rcv100.rcv_other_error
+#define rcv_drops100               u.stats_100.rcv100.rcv_drops
+#define xmit_tcp_segs_gb           u.stats_GB.xmtGB.xmit_tcp_segs
+#define xmit_tcp_bytes_gb          u.stats_GB.xmtGB.xmit_tcp_bytes
+#define xmit_bytes_gb              u.stats_GB.xmtGB.xmit_bytes
+#define xmit_collisions_gb         u.stats_GB.xmtGB.xmit_collisions
+#define xmit_unicasts_gb           u.stats_GB.xmtGB.xmit_unicasts
+#define xmit_other_error_gb        u.stats_GB.xmtGB.xmit_other_error
+#define xmit_excess_collisions_gb  u.stats_GB.xmtGB.xmit_excess_collisions
+
+#define rcv_tcp_segs_gb            u.stats_GB.rcvGB.rcv_tcp_segs
+#define rcv_tcp_bytes_gb           u.stats_GB.rcvGB.rcv_tcp_bytes
+#define rcv_bytes_gb               u.stats_GB.rcvGB.rcv_bytes
+#define rcv_unicasts_gb            u.stats_GB.rcvGB.rcv_unicasts
+#define rcv_other_error_gb         u.stats_GB.rcvGB.rcv_other_error
+#define rcv_drops_gb               u.stats_GB.rcvGB.rcv_drops
+
+struct slic_config_mac {
+    unsigned char        macaddrA[6];
+};
+
+#define ATK_FRU_FORMAT        0x00
+#define VENDOR1_FRU_FORMAT    0x01
+#define VENDOR2_FRU_FORMAT    0x02
+#define VENDOR3_FRU_FORMAT    0x03
+#define VENDOR4_FRU_FORMAT    0x04
+#define NO_FRU_FORMAT         0xFF
+
+struct atk_fru {
+    unsigned char        assembly[6];
+    unsigned char        revision[2];
+    unsigned char        serial[14];
+    unsigned char        pad[3];
+};
+
+struct vendor1_fru {
+    unsigned char        commodity;
+    unsigned char        assembly[4];
+    unsigned char        revision[2];
+    unsigned char        supplier[2];
+    unsigned char        date[2];
+    unsigned char        sequence[3];
+    unsigned char        pad[13];
+};
+
+struct vendor2_fru {
+    unsigned char        part[8];
+    unsigned char        supplier[5];
+    unsigned char        date[3];
+    unsigned char        sequence[4];
+    unsigned char        pad[7];
+};
+
+struct vendor3_fru {
+    unsigned char        assembly[6];
+    unsigned char        revision[2];
+    unsigned char        serial[14];
+    unsigned char        pad[3];
+};
+
+struct vendor4_fru {
+    unsigned char        number[8];
+    unsigned char        part[8];
+    unsigned char        version[8];
+    unsigned char        pad[3];
+};
+
+union oemfru {
+    struct vendor1_fru   vendor1_fru;
+    struct vendor2_fru   vendor2_fru;
+    struct vendor3_fru   vendor3_fru;
+    struct vendor4_fru   vendor4_fru;
+};
+
+/*
+   SLIC EEPROM structure for Mojave
+*/
+struct slic_eeprom {
+	ushort		Id;		/* 00 EEPROM/FLASH Magic code 'A5A5'*/
+	ushort		EecodeSize;	/* 01 Size of EEPROM Codes (bytes * 4)*/
+	ushort		FlashSize;	/* 02 Flash size */
+	ushort		EepromSize;	/* 03 EEPROM Size */
+	ushort		VendorId;	/* 04 Vendor ID */
+	ushort		DeviceId;	/* 05 Device ID */
+	unsigned char		RevisionId;	/* 06 Revision ID */
+	unsigned char		ClassCode[3];	/* 07 Class Code */
+	unsigned char		DbgIntPin;	/* 08 Debug Interrupt pin */
+	unsigned char		NetIntPin0;	/*    Network Interrupt Pin */
+	unsigned char		MinGrant;	/* 09 Minimum grant */
+	unsigned char		MaxLat;		/*    Maximum Latency */
+	ushort		PciStatus;	/* 10 PCI Status */
+	ushort		SubSysVId;	/* 11 Subsystem Vendor Id */
+	ushort		SubSysId;	/* 12 Subsystem ID */
+	ushort		DbgDevId;	/* 13 Debug Device Id */
+	ushort		DramRomFn;	/* 14 Dram/Rom function */
+	ushort		DSize2Pci;	/* 15 DRAM size to PCI (bytes * 64K) */
+	ushort	RSize2Pci;	/* 16 ROM extension size to PCI (bytes * 4k) */
+	unsigned char NetIntPin1;/* 17 Network Interface Pin 1
+				    (simba/leone only) */
+	unsigned char NetIntPin2; /*Network Interface Pin 2 (simba/leone only)*/
+	union {
+		unsigned char NetIntPin3;/*18 Network Interface Pin 3
+					   (simba only)*/
+		unsigned char FreeTime;/*FreeTime setting (leone/mojave only) */
+	} u1;
+	unsigned char	TBIctl;	/*    10-bit interface control (Mojave only) */
+	ushort		DramSize;	/* 19 DRAM size (bytes * 64k) */
+	union {
+		struct {
+			/* Mac Interface Specific portions */
+			struct slic_config_mac	MacInfo[SLIC_NBR_MACS];
+		} mac;				/* MAC access for all boards */
+		struct {
+			/* use above struct for MAC access */
+			struct slic_config_mac	pad[SLIC_NBR_MACS - 1];
+			ushort		DeviceId2;	/* Device ID for 2nd
+								PCI function */
+			unsigned char	IntPin2;	/* Interrupt pin for
+							   2nd PCI function */
+			unsigned char	ClassCode2[3];	/* Class Code for 2nd
+								PCI function */
+		} mojave;	/* 2nd function access for gigabit board */
+	} u2;
+	ushort		CfgByte6;	/* Config Byte 6 */
+	ushort		PMECapab;	/* Power Mgment capabilities */
+	ushort		NwClkCtrls;	/* NetworkClockControls */
+	unsigned char	FruFormat;	/* Alacritech FRU format type */
+	struct atk_fru   AtkFru;	/* Alacritech FRU information */
+	unsigned char	OemFruFormat;	/* optional OEM FRU format type */
+	union oemfru    OemFru;         /* optional OEM FRU information */
+	unsigned char	Pad[4];	/* Pad to 128 bytes - includes 2 cksum bytes
+				 *(if OEM FRU info exists) and two unusable
+				 * bytes at the end */
+};
+
+/* SLIC EEPROM structure for Oasis */
+struct oslic_eeprom {
+	ushort		Id;		/* 00 EEPROM/FLASH Magic code 'A5A5' */
+	ushort		EecodeSize;	/* 01 Size of EEPROM Codes (bytes * 4)*/
+	ushort		FlashConfig0;	/* 02 Flash Config for SPI device 0 */
+	ushort		FlashConfig1;	/* 03 Flash Config for SPI device 1 */
+	ushort		VendorId;	/* 04 Vendor ID */
+	ushort		DeviceId;	/* 05 Device ID (function 0) */
+	unsigned char	RevisionId;	/* 06 Revision ID */
+	unsigned char	ClassCode[3];	/* 07 Class Code for PCI function 0 */
+	unsigned char	IntPin1;	/* 08 Interrupt pin for PCI function 1*/
+	unsigned char	ClassCode2[3];	/* 09 Class Code for PCI function 1 */
+	unsigned char	IntPin2;	/* 10 Interrupt pin for PCI function 2*/
+	unsigned char	IntPin0;	/*    Interrupt pin for PCI function 0*/
+	unsigned char		MinGrant;	/* 11 Minimum grant */
+	unsigned char		MaxLat;		/*    Maximum Latency */
+	ushort		SubSysVId;	/* 12 Subsystem Vendor Id */
+	ushort		SubSysId;	/* 13 Subsystem ID */
+	ushort		FlashSize;	/* 14 Flash size (bytes / 4K) */
+	ushort		DSize2Pci;	/* 15 DRAM size to PCI (bytes / 64K) */
+	ushort		RSize2Pci;	/* 16 Flash (ROM extension) size to
+						PCI (bytes / 4K) */
+	ushort		DeviceId1;	/* 17 Device Id (function 1) */
+	ushort		DeviceId2;	/* 18 Device Id (function 2) */
+	ushort		CfgByte6;	/* 19 Device Status Config Bytes 6-7 */
+	ushort		PMECapab;	/* 20 Power Mgment capabilities */
+	unsigned char		MSICapab;	/* 21 MSI capabilities */
+	unsigned char		ClockDivider;	/*    Clock divider */
+	ushort		PciStatusLow;	/* 22 PCI Status bits 15:0 */
+	ushort		PciStatusHigh;	/* 23 PCI Status bits 31:16 */
+	ushort		DramConfigLow;	/* 24 DRAM Configuration bits 15:0 */
+	ushort		DramConfigHigh;	/* 25 DRAM Configuration bits 31:16 */
+	ushort		DramSize;	/* 26 DRAM size (bytes / 64K) */
+	ushort		GpioTbiCtl;/* 27 GPIO/TBI controls for functions 1/0 */
+	ushort		EepromSize;		/* 28 EEPROM Size */
+	struct slic_config_mac MacInfo[2];	/* 29 MAC addresses (2 ports) */
+	unsigned char	FruFormat;	/* 35 Alacritech FRU format type */
+	struct atk_fru	AtkFru;	/* Alacritech FRU information */
+	unsigned char	OemFruFormat;	/* optional OEM FRU format type */
+	union oemfru    OemFru;         /* optional OEM FRU information */
+	unsigned char	Pad[4];	/* Pad to 128 bytes - includes 2 checksum bytes
+				 * (if OEM FRU info exists) and two unusable
+				 * bytes at the end
+				 */
+};
+
+#define	MAX_EECODE_SIZE	sizeof(struct slic_eeprom)
+#define MIN_EECODE_SIZE	0x62	/* code size without optional OEM FRU stuff */
+
+/* SLIC CONFIG structure
+
+ This structure lives in the CARD structure and is valid for all
+ board types.  It is filled in from the appropriate EEPROM structure
+ by SlicGetConfigData().
+*/
+struct slic_config {
+	bool EepromValid;	/* Valid EEPROM flag (checksum good?) */
+	ushort		DramSize;	/* DRAM size (bytes / 64K) */
+	struct slic_config_mac MacInfo[SLIC_NBR_MACS]; /* MAC addresses */
+	unsigned char		FruFormat;	/* Alacritech FRU format type */
+	struct atk_fru	AtkFru;	/* Alacritech FRU information */
+	unsigned char	OemFruFormat;	/* optional OEM FRU format type */
+	union {
+		struct vendor1_fru   vendor1_fru;
+		struct vendor2_fru   vendor2_fru;
+		struct vendor3_fru   vendor3_fru;
+		struct vendor4_fru   vendor4_fru;
+	} OemFru;
+};
+
+#pragma pack()
+
+#endif
diff --git a/drivers/staging/slicoss/slicinc.h b/drivers/staging/slicoss/slicinc.h
new file mode 100644
index 0000000..71288c4
--- /dev/null
+++ b/drivers/staging/slicoss/slicinc.h
@@ -0,0 +1,185 @@
+/**************************************************************************
+ *
+ * Copyright (c) 2000-2002 Alacritech, Inc.  All rights reserved.
+ *
+ *
+ * Redistribution and use in source and binary forms, with or without
+ * modification, are permitted provided that the following conditions
+ * are met:
+ *
+ * 1. Redistributions of source code must retain the above copyright
+ *    notice, this list of conditions and the following disclaimer.
+ * 2. Redistributions in binary form must reproduce the above
+ *    copyright notice, this list of conditions and the following
+ *    disclaimer in the documentation and/or other materials provided
+ *    with the distribution.
+ *
+ * THIS SOFTWARE IS PROVIDED BY ALACRITECH, INC. ``AS IS'' AND ANY
+ * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
+ * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
+ * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL ALACRITECH, INC. OR
+ * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
+ * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
+ * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
+ * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
+ * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
+ * SUCH DAMAGE.
+ *
+ * The views and conclusions contained in the software and documentation
+ * are those of the authors and should not be interpreted as representing
+ * official policies, either expressed or implied, of Alacritech, Inc.
+ *
+ **************************************************************************/
+
+/*
+ * FILENAME: slicinc.h
+ *
+ * This file contains all other include files and prototype definitions
+ * for the SLICOSS driver.
+ */
+#ifndef _SLIC_INCLUDE_H_
+#define _SLIC_INCLUDE_H_
+
+#include "slic_os.h"
+#include "slicdbg.h"
+#include "slichw.h"
+#include "slic.h"
+
+static int slic_entry_probe(struct pci_dev              *pcidev,
+			const struct pci_device_id  *ent);
+static void slic_entry_remove(struct pci_dev *pcidev);
+
+static void slic_init_driver(void);
+static int  slic_entry_open(struct net_device *dev);
+static int  slic_entry_halt(struct net_device *dev);
+static int  slic_ioctl(struct net_device *dev, struct ifreq *rq, int cmd);
+static int  slic_xmit_start(struct sk_buff *skb, struct net_device *dev);
+static void slic_xmit_fail(struct adapter    *adapter,
+			struct sk_buff   *skb,
+			void *cmd,
+			u32           skbtype,
+			u32           status);
+static void slic_config_pci(struct pci_dev *pcidev);
+static struct sk_buff *slic_rcvqueue_getnext(struct adapter *adapter);
+
+static inline void slic_reg32_write(void __iomem *reg, u32 value, uint flush);
+static inline void slic_reg64_write(struct adapter *adapter, void __iomem *reg,
+	u32 value, void __iomem *regh, u32 paddrh, uint flush);
+
+#if SLIC_GET_STATS_ENABLED
+static struct net_device_stats *slic_get_stats(struct net_device *dev);
+#endif
+
+static int slic_mac_set_address(struct net_device *dev, void *ptr);
+static void slic_rcv_handler(struct adapter *adapter);
+static void slic_link_event_handler(struct adapter *adapter);
+static void slic_xmit_complete(struct adapter *adapter);
+static void slic_upr_request_complete(struct adapter *adapter, u32 isr);
+static int   slic_rspqueue_init(struct adapter *adapter);
+static int   slic_rspqueue_reset(struct adapter *adapter);
+static void  slic_rspqueue_free(struct adapter *adapter);
+static struct slic_rspbuf *slic_rspqueue_getnext(struct adapter *adapter);
+static void  slic_cmdqmem_init(struct adapter *adapter);
+static void  slic_cmdqmem_free(struct adapter *adapter);
+static u32 *slic_cmdqmem_addpage(struct adapter *adapter);
+static int   slic_cmdq_init(struct adapter *adapter);
+static void  slic_cmdq_free(struct adapter *adapter);
+static void  slic_cmdq_reset(struct adapter *adapter);
+static void  slic_cmdq_addcmdpage(struct adapter *adapter, u32 *page);
+static void  slic_cmdq_getdone(struct adapter *adapter);
+static void  slic_cmdq_putdone_irq(struct adapter *adapter,
+						struct slic_hostcmd *cmd);
+static struct slic_hostcmd *slic_cmdq_getfree(struct adapter *adapter);
+static int   slic_rcvqueue_init(struct adapter *adapter);
+static int   slic_rcvqueue_reset(struct adapter *adapter);
+static int   slic_rcvqueue_fill(struct adapter *adapter);
+static u32 slic_rcvqueue_reinsert(struct adapter *adapter, struct sk_buff *skb);
+static void  slic_rcvqueue_free(struct adapter *adapter);
+static void slic_rcv_handle_error(struct adapter *adapter,
+					struct slic_rcvbuf *rcvbuf);
+static void slic_adapter_set_hwaddr(struct adapter *adapter);
+static int slic_card_init(struct sliccard *card, struct adapter *adapter);
+static void slic_intagg_set(struct adapter *adapter, u32 value);
+static int  slic_card_download(struct adapter *adapter);
+static u32 slic_card_locate(struct adapter *adapter);
+
+static void slic_if_stop_queue(struct adapter *adapter);
+static void slic_if_start_queue(struct adapter *adapter);
+static int  slic_if_init(struct adapter *adapter);
+static int  slic_adapter_allocresources(struct adapter *adapter);
+static void slic_adapter_freeresources(struct adapter *adapter);
+static void slic_link_config(struct adapter *adapter, u32 linkspeed,
+			u32 linkduplex);
+static void slic_unmap_mmio_space(struct adapter *adapter);
+static void slic_card_cleanup(struct sliccard *card);
+static void slic_init_cleanup(struct adapter *adapter);
+static void slic_soft_reset(struct adapter *adapter);
+static bool slic_mac_filter(struct adapter *adapter,
+			struct ether_header *ether_frame);
+static void slic_mac_address_config(struct adapter *adapter);
+static void slic_mac_config(struct adapter *adapter);
+static void slic_mcast_set_mask(struct adapter *adapter);
+static int slic_mcast_add_list(struct adapter *adapter, char *address);
+static unsigned char slic_mcast_get_mac_hash(char *macaddr);
+static void  slic_mcast_set_bit(struct adapter *adapter, char *address);
+static void slic_config_set(struct adapter *adapter, bool linkchange);
+static void slic_config_clear(struct adapter *adapter);
+static void slic_config_get(struct adapter *adapter, u32 config,
+			u32 configh);
+static void slic_timer_load_check(ulong context);
+static void slic_timer_ping(ulong dev);
+static void slic_assert_fail(void);
+static ushort slic_eeprom_cksum(char *m, int len);
+/* upr */
+static void slic_upr_start(struct adapter *adapter);
+static void slic_link_upr_complete(struct adapter *adapter, u32 Isr);
+static int  slic_upr_request(struct adapter    *adapter,
+			u32            upr_request,
+			u32            upr_data,
+			u32            upr_data_h,
+			u32            upr_buffer,
+			u32            upr_buffer_h);
+static int  slic_upr_queue_request(struct adapter      *adapter,
+				u32            upr_request,
+				u32            upr_data,
+				u32            upr_data_h,
+				u32            upr_buffer,
+				u32            upr_buffer_h);
+static void slic_mcast_set_list(struct net_device *dev);
+static void slic_mcast_init_crc32(void);
+
+#if SLIC_DUMP_ENABLED
+static int   slic_dump_thread(void *context);
+static uint  slic_init_dump_thread(struct sliccard *card);
+static unsigned char slic_get_dump_index(char *path);
+static u32 slic_dump_card(struct sliccard *card, bool resume);
+static u32 slic_dump_halt(struct sliccard *card, unsigned char proc);
+static u32 slic_dump_reg(struct sliccard *card, unsigned char proc);
+static u32 slic_dump_data(struct sliccard *card, u32 addr,
+			ushort count, unsigned char desc);
+static u32 slic_dump_queue(struct sliccard *card, u32 buf_phys,
+			u32 buf_physh, u32 queue);
+static u32 slic_dump_load_queue(struct sliccard *card, u32 data,
+				u32 queue);
+static u32 slic_dump_cam(struct sliccard *card, u32 addr,
+			u32 count, unsigned char desc);
+
+static u32 slic_dump_resume(struct sliccard *card, unsigned char proc);
+static u32 slic_dump_send_cmd(struct sliccard *card, u32 cmd_phys,
+				u32 cmd_physh, u32 buf_phys,
+				u32 buf_physh);
+
+#define create_file(x)         STATUS_SUCCESS
+#define write_file(w, x, y, z) STATUS_SUCCESS
+#define close_file(x)          STATUS_SUCCESS
+#define read_file(w, x, y, z)  STATUS_SUCCESS
+#define open_file(x)           STATUS_SUCCESS
+
+/* PAGE_SIZE * 16 */
+#define DUMP_PAGE_SIZE         0xFFFF
+#define DUMP_PAGE_SIZE_HALF    0x7FFE
+#endif
+
+#endif /* _SLIC_INCLUDE_H_ */
diff --git a/drivers/staging/slicoss/slicoss.c b/drivers/staging/slicoss/slicoss.c
new file mode 100644
index 0000000..b61ac4b
--- /dev/null
+++ b/drivers/staging/slicoss/slicoss.c
@@ -0,0 +1,5936 @@
+/**************************************************************************
+ *
+ * Copyright  2000-2006 Alacritech, Inc.  All rights reserved.
+ *
+ * Redistribution and use in source and binary forms, with or without
+ * modification, are permitted provided that the following conditions
+ * are met:
+ *
+ * 1. Redistributions of source code must retain the above copyright
+ *    notice, this list of conditions and the following disclaimer.
+ * 2. Redistributions in binary form must reproduce the above
+ *    copyright notice, this list of conditions and the following
+ *    disclaimer in the documentation and/or other materials provided
+ *    with the distribution.
+ *
+ * Alternatively, this software may be distributed under the terms of the
+ * GNU General Public License ("GPL") version 2 as published by the Free
+ * Software Foundation.
+ *
+ * THIS SOFTWARE IS PROVIDED BY ALACRITECH, INC. ``AS IS'' AND ANY
+ * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
+ * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
+ * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL ALACRITECH, INC. OR
+ * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
+ * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
+ * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
+ * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
+ * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
+ * SUCH DAMAGE.
+ *
+ * The views and conclusions contained in the software and documentation
+ * are those of the authors and should not be interpreted as representing
+ * official policies, either expressed or implied, of Alacritech, Inc.
+ *
+ **************************************************************************/
+
+/*
+ * FILENAME: slicoss.c
+ *
+ * The SLICOSS driver for Alacritech's IS-NIC products.
+ *
+ * This driver is supposed to support:
+ *
+ *      Mojave cards (single port PCI Gigabit) both copper and fiber
+ *      Oasis cards (single and dual port PCI-x Gigabit) copper and fiber
+ *      Kalahari cards (dual and quad port PCI-e Gigabit) copper and fiber
+ *
+ * The driver was acutally tested on Oasis and Kalahari cards.
+ *
+ *
+ * NOTE: This is the standard, non-accelerated version of Alacritech's
+ *       IS-NIC driver.
+ */
+
+#include <linux/version.h>
+
+#define SLIC_DUMP_ENABLED               0
+#define KLUDGE_FOR_4GB_BOUNDARY         1
+#define DEBUG_MICROCODE                 1
+#define SLIC_PRODUCTION_BUILD	        1
+#define SLIC_FAILURE_RESET	            1
+#define DBG                             1
+#define SLIC_ASSERT_ENABLED		        1
+#define SLIC_GET_STATS_ENABLED			1
+#define SLIC_GET_STATS_TIMER_ENABLED	0
+#define SLIC_PING_TIMER_ENABLED		    1
+#define SLIC_POWER_MANAGEMENT_ENABLED	0
+#define SLIC_INTERRUPT_PROCESS_LIMIT	1
+#define LINUX_FREES_ADAPTER_RESOURCES	1
+#define SLIC_OFFLOAD_IP_CHECKSUM		1
+#define STATS_TIMER_INTERVAL			2
+#define PING_TIMER_INTERVAL			    1
+
+#include <linux/kernel.h>
+#include <linux/string.h>
+#include <linux/errno.h>
+#include <linux/ioport.h>
+#include <linux/slab.h>
+#include <linux/interrupt.h>
+#include <linux/timer.h>
+#include <linux/pci.h>
+#include <linux/spinlock.h>
+#include <linux/init.h>
+#include <linux/bitops.h>
+#include <linux/io.h>
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/skbuff.h>
+#include <linux/delay.h>
+#include <linux/debugfs.h>
+#include <linux/seq_file.h>
+#include <linux/kthread.h>
+#include <linux/module.h>
+#include <linux/moduleparam.h>
+
+#include <linux/types.h>
+#include <linux/slab.h>
+#include <linux/delay.h>
+#include <linux/init.h>
+#include <linux/pci.h>
+#include <linux/dma-mapping.h>
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/mii.h>
+#include <linux/if_vlan.h>
+#include <linux/skbuff.h>
+#include <linux/string.h>
+#include <asm/unaligned.h>
+
+#include <linux/ethtool.h>
+#define SLIC_ETHTOOL_SUPPORT     1
+
+#include <linux/uaccess.h>
+#include "slicinc.h"
+#include "gbdownload.h"
+#include "gbrcvucode.h"
+#include "oasisrcvucode.h"
+
+#ifdef DEBUG_MICROCODE
+#include "oasisdbgdownload.h"
+#else
+#include "oasisdownload.h"
+#endif
+
+#if SLIC_DUMP_ENABLED
+#include "slicdump.h"
+#endif
+
+#define SLIC_POWER_MANAGEMENT  0
+
+static uint slic_first_init = 1;
+static char *slic_banner = "Alacritech SLIC Technology(tm) Server "\
+		"and Storage Accelerator (Non-Accelerated)\n";
+
+static char *slic_proc_version = "2.0.351  2006/07/14 12:26:00";
+static char *slic_product_name = "SLIC Technology(tm) Server "\
+		"and Storage Accelerator (Non-Accelerated)";
+static char *slic_vendor = "Alacritech, Inc.";
+
+static int slic_debug = 1;
+static int debug = -1;
+static struct net_device *head_netdevice;
+
+static struct base_driver slic_global = { {}, 0, 0, 0, 1, NULL, NULL };
+static int intagg_delay = 100;
+static u32 dynamic_intagg;
+static int errormsg;
+static int goodmsg;
+static unsigned int rcv_count;
+static struct dentry *slic_debugfs;
+
+#define DRV_NAME          "slicoss"
+#define DRV_VERSION       "2.0.1"
+#define DRV_AUTHOR        "Alacritech, Inc. Engineering"
+#define DRV_DESCRIPTION   "Alacritech SLIC Techonology(tm) "\
+		"Non-Accelerated Driver"
+#define DRV_COPYRIGHT     "Copyright  2000-2006 Alacritech, Inc. "\
+		"All rights reserved."
+#define PFX		   DRV_NAME " "
+
+MODULE_AUTHOR(DRV_AUTHOR);
+MODULE_DESCRIPTION(DRV_DESCRIPTION);
+MODULE_LICENSE("Dual BSD/GPL");
+
+module_param(dynamic_intagg, int, 0);
+MODULE_PARM_DESC(dynamic_intagg, "Dynamic Interrupt Aggregation Setting");
+module_param(intagg_delay, int, 0);
+MODULE_PARM_DESC(intagg_delay, "uSec Interrupt Aggregation Delay");
+
+static struct pci_device_id slic_pci_tbl[] __devinitdata = {
+	{PCI_VENDOR_ID_ALACRITECH,
+	 SLIC_1GB_DEVICE_ID,
+	 PCI_ANY_ID, PCI_ANY_ID,},
+	{PCI_VENDOR_ID_ALACRITECH,
+	 SLIC_2GB_DEVICE_ID,
+	 PCI_ANY_ID, PCI_ANY_ID,},
+	{0,}
+};
+
+MODULE_DEVICE_TABLE(pci, slic_pci_tbl);
+
+#define SLIC_GET_SLIC_HANDLE(_adapter, _pslic_handle)                   \
+{                                                                       \
+    spin_lock_irqsave(&_adapter->handle_lock.lock,                      \
+			_adapter->handle_lock.flags);                   \
+    _pslic_handle  =  _adapter->pfree_slic_handles;                     \
+    if (_pslic_handle) {                                                \
+	ASSERT(_pslic_handle->type == SLIC_HANDLE_FREE);                \
+	_adapter->pfree_slic_handles = _pslic_handle->next;             \
+    }                                                                   \
+    spin_unlock_irqrestore(&_adapter->handle_lock.lock,                 \
+			_adapter->handle_lock.flags);                   \
+}
+
+#define SLIC_FREE_SLIC_HANDLE(_adapter, _pslic_handle)                  \
+{                                                                       \
+    _pslic_handle->type = SLIC_HANDLE_FREE;                             \
+    spin_lock_irqsave(&_adapter->handle_lock.lock,                      \
+			_adapter->handle_lock.flags);                   \
+    _pslic_handle->next = _adapter->pfree_slic_handles;                 \
+    _adapter->pfree_slic_handles = _pslic_handle;                       \
+    spin_unlock_irqrestore(&_adapter->handle_lock.lock,                 \
+			_adapter->handle_lock.flags);                   \
+}
+
+static void slic_debug_init(void);
+static void slic_debug_cleanup(void);
+static void slic_debug_adapter_create(struct adapter *adapter);
+static void slic_debug_adapter_destroy(struct adapter *adapter);
+static void slic_debug_card_create(struct sliccard *card);
+static void slic_debug_card_destroy(struct sliccard *card);
+
+static inline void slic_reg32_write(void __iomem *reg, u32 value, uint flush)
+{
+	writel(value, reg);
+	if (flush)
+		mb();
+}
+
+static inline void slic_reg64_write(struct adapter *adapter,
+			       void __iomem *reg,
+			       u32 value,
+			       void __iomem *regh, u32 paddrh, uint flush)
+{
+	spin_lock_irqsave(&adapter->bit64reglock.lock,
+				adapter->bit64reglock.flags);
+	if (paddrh != adapter->curaddrupper) {
+		adapter->curaddrupper = paddrh;
+		writel(paddrh, regh);
+	}
+	writel(value, reg);
+	if (flush)
+		mb();
+	spin_unlock_irqrestore(&adapter->bit64reglock.lock,
+				adapter->bit64reglock.flags);
+}
+
+static void slic_init_driver(void)
+{
+	if (slic_first_init) {
+		DBG_MSG("slicoss: %s slic_first_init set jiffies[%lx]\n",
+			__func__, jiffies);
+		slic_first_init = 0;
+		spin_lock_init(&slic_global.driver_lock.lock);
+		slic_debug_init();
+	}
+}
+
+static void slic_dbg_macaddrs(struct adapter *adapter)
+{
+	DBG_MSG("  (%s) curr %2.2X:%2.2X:%2.2X:%2.2X:%2.2X:%2.2X\n",
+		adapter->netdev->name, adapter->currmacaddr[0],
+		adapter->currmacaddr[1], adapter->currmacaddr[2],
+		adapter->currmacaddr[3], adapter->currmacaddr[4],
+		adapter->currmacaddr[5]);
+	DBG_MSG("  (%s) mac  %2.2X:%2.2X:%2.2X:%2.2X:%2.2X:%2.2X\n",
+		adapter->netdev->name, adapter->macaddr[0],
+		adapter->macaddr[1], adapter->macaddr[2],
+		adapter->macaddr[3], adapter->macaddr[4], adapter->macaddr[5]);
+	return;
+}
+
+#ifdef DEBUG_REGISTER_TRACE
+static void slic_dbg_register_trace(struct adapter *adapter,
+					struct sliccard *card)
+{
+	uint i;
+
+	DBG_ERROR("Dump Register Write Trace: curr_ix == %d\n", card->debug_ix);
+	for (i = 0; i < 32; i++) {
+		DBG_ERROR("%2d %d %4x %x %x\n",
+			  i, card->reg_type[i], card->reg_offset[i],
+			  card->reg_value[i], card->reg_valueh[i]);
+	}
+}
+}
+#endif
+
+static void slic_init_adapter(struct net_device *netdev,
+			      struct pci_dev *pcidev,
+			      const struct pci_device_id *pci_tbl_entry,
+			      void __iomem *memaddr, int chip_idx)
+{
+	ushort index;
+	struct slic_handle *pslic_handle;
+	struct adapter *adapter = (struct adapter *)netdev_priv(netdev);
+/*
+    DBG_MSG("slicoss: %s (%s)\n    netdev [%p]\n    adapter[%p]\n    "
+	    "pcidev [%p]\n", __func__, netdev->name, netdev, adapter, pcidev);*/
+/*	adapter->pcidev = pcidev;*/
+	adapter->vendid = pci_tbl_entry->vendor;
+	adapter->devid = pci_tbl_entry->device;
+	adapter->subsysid = pci_tbl_entry->subdevice;
+	adapter->busnumber = pcidev->bus->number;
+	adapter->slotnumber = ((pcidev->devfn >> 3) & 0x1F);
+	adapter->functionnumber = (pcidev->devfn & 0x7);
+	adapter->memorylength = pci_resource_len(pcidev, 0);
+	adapter->slic_regs = (__iomem struct slic_regs *)memaddr;
+	adapter->irq = pcidev->irq;
+/*	adapter->netdev = netdev;*/
+	adapter->next_netdevice = head_netdevice;
+	head_netdevice = netdev;
+	adapter->chipid = chip_idx;
+	adapter->port = 0;	/*adapter->functionnumber;*/
+	adapter->cardindex = adapter->port;
+	adapter->memorybase = memaddr;
+	spin_lock_init(&adapter->upr_lock.lock);
+	spin_lock_init(&adapter->bit64reglock.lock);
+	spin_lock_init(&adapter->adapter_lock.lock);
+	spin_lock_init(&adapter->reset_lock.lock);
+	spin_lock_init(&adapter->handle_lock.lock);
+
+	adapter->card_size = 1;
+	/*
+	  Initialize slic_handle array
+	*/
+	ASSERT(SLIC_CMDQ_MAXCMDS <= 0xFFFF);
+	/*
+	 Start with 1.  0 is an invalid host handle.
+	*/
+	for (index = 1, pslic_handle = &adapter->slic_handles[1];
+	     index < SLIC_CMDQ_MAXCMDS; index++, pslic_handle++) {
+
+		pslic_handle->token.handle_index = index;
+		pslic_handle->type = SLIC_HANDLE_FREE;
+		pslic_handle->next = adapter->pfree_slic_handles;
+		adapter->pfree_slic_handles = pslic_handle;
+	}
+/*
+    DBG_MSG(".........\nix[%d] phandle[%p] pfree[%p] next[%p]\n",
+	index, pslic_handle, adapter->pfree_slic_handles, pslic_handle->next);*/
+	adapter->pshmem = (struct slic_shmem *)
+					pci_alloc_consistent(adapter->pcidev,
+					sizeof(struct slic_shmem *),
+					&adapter->
+					phys_shmem);
+/*
+      DBG_MSG("slicoss: %s (%s)\n   pshmem    [%p]\n   phys_shmem[%p]\n"\
+		"slic_regs [%p]\n", __func__, netdev->name, adapter->pshmem,
+		(void *)adapter->phys_shmem, adapter->slic_regs);
+*/
+	ASSERT(adapter->pshmem);
+
+	memset(adapter->pshmem, 0, sizeof(struct slic_shmem));
+
+	return;
+}
+
+static int __devinit slic_entry_probe(struct pci_dev *pcidev,
+			       const struct pci_device_id *pci_tbl_entry)
+{
+	static int cards_found;
+	static int did_version;
+	int err;
+	struct net_device *netdev;
+	struct adapter *adapter;
+	void __iomem *memmapped_ioaddr = NULL;
+	u32 status = 0;
+	ulong mmio_start = 0;
+	ulong mmio_len = 0;
+	struct sliccard *card = NULL;
+
+	DBG_MSG("slicoss: %s 2.6 VERSION ENTER jiffies[%lx] cpu %d\n",
+		__func__, jiffies, smp_processor_id());
+
+	slic_global.dynamic_intagg = dynamic_intagg;
+
+	err = pci_enable_device(pcidev);
+
+	DBG_MSG("Call pci_enable_device(%p)  status[%x]\n", pcidev, err);
+	if (err)
+		return err;
+
+	if (slic_debug > 0 && did_version++ == 0) {
+		printk(slic_banner);
+		printk(slic_proc_version);
+	}
+
+	err = pci_set_dma_mask(pcidev, DMA_64BIT_MASK);
+	if (!err) {
+		DBG_MSG("pci_set_dma_mask(DMA_64BIT_MASK) successful\n");
+	} else {
+		err = pci_set_dma_mask(pcidev, DMA_32BIT_MASK);
+		if (err) {
+			DBG_MSG
+			    ("No usable DMA configuration, aborting  err[%x]\n",
+			     err);
+			return err;
+		}
+		DBG_MSG("pci_set_dma_mask(DMA_32BIT_MASK) successful\n");
+	}
+
+	DBG_MSG("Call pci_request_regions\n");
+
+	err = pci_request_regions(pcidev, DRV_NAME);
+	if (err) {
+		DBG_MSG("pci_request_regions FAILED err[%x]\n", err);
+		return err;
+	}
+
+	DBG_MSG("call pci_set_master\n");
+	pci_set_master(pcidev);
+
+	DBG_MSG("call alloc_etherdev\n");
+	netdev = alloc_etherdev(sizeof(struct adapter));
+	if (!netdev) {
+		err = -ENOMEM;
+		goto err_out_exit_slic_probe;
+	}
+	DBG_MSG("alloc_etherdev for slic netdev[%p]\n", netdev);
+
+	SET_NETDEV_DEV(netdev, &pcidev->dev);
+
+	pci_set_drvdata(pcidev, netdev);
+	adapter = netdev_priv(netdev);
+	adapter->netdev = netdev;
+	adapter->pcidev = pcidev;
+
+	mmio_start = pci_resource_start(pcidev, 0);
+	mmio_len = pci_resource_len(pcidev, 0);
+
+	DBG_MSG("slicoss: call ioremap(mmio_start[%lx], mmio_len[%lx])\n",
+		mmio_start, mmio_len);
+
+/*  memmapped_ioaddr =  (u32)ioremap_nocache(mmio_start, mmio_len);*/
+	memmapped_ioaddr = ioremap(mmio_start, mmio_len);
+	DBG_MSG("slicoss: %s MEMMAPPED_IOADDR [%p]\n", __func__,
+		memmapped_ioaddr);
+	if (!memmapped_ioaddr) {
+		DBG_ERROR("%s cannot remap MMIO region %lx @ %lx\n",
+			  __func__, mmio_len, mmio_start);
+		goto err_out_free_mmio_region;
+	}
+
+	DBG_MSG
+	    ("slicoss: %s found Alacritech SLICOSS PCI, MMIO at %p, "\
+	    "start[%lx] len[%lx], IRQ %d.\n",
+	     __func__, memmapped_ioaddr, mmio_start, mmio_len, pcidev->irq);
+
+	slic_config_pci(pcidev);
+
+	slic_init_driver();
+
+	slic_init_adapter(netdev,
+			  pcidev, pci_tbl_entry, memmapped_ioaddr, cards_found);
+
+	status = slic_card_locate(adapter);
+	if (status) {
+		DBG_ERROR("%s cannot locate card\n", __func__);
+		goto err_out_free_mmio_region;
+	}
+
+	card = adapter->card;
+
+	if (!adapter->allocated) {
+		card->adapters_allocated++;
+		adapter->allocated = 1;
+	}
+
+	DBG_MSG("slicoss: %s    card:             %p\n", __func__,
+		adapter->card);
+	DBG_MSG("slicoss: %s    card->adapter[%d] == [%p]\n", __func__,
+		(uint) adapter->port, adapter);
+	DBG_MSG("slicoss: %s    card->adapters_allocated [%d]\n", __func__,
+		card->adapters_allocated);
+	DBG_MSG("slicoss: %s    card->adapters_activated [%d]\n", __func__,
+		card->adapters_activated);
+
+	status = slic_card_init(card, adapter);
+
+	if (status != STATUS_SUCCESS) {
+		card->state = CARD_FAIL;
+		adapter->state = ADAPT_FAIL;
+		adapter->linkstate = LINK_DOWN;
+		DBG_ERROR("slic_card_init FAILED status[%x]\n", status);
+	} else {
+		slic_adapter_set_hwaddr(adapter);
+	}
+
+	netdev->base_addr = (unsigned long)adapter->memorybase;
+	netdev->irq = adapter->irq;
+	netdev->open = slic_entry_open;
+	netdev->stop = slic_entry_halt;
+	netdev->hard_start_xmit = slic_xmit_start;
+	netdev->do_ioctl = slic_ioctl;
+	netdev->set_mac_address = slic_mac_set_address;
+#if SLIC_GET_STATS_ENABLED
+	netdev->get_stats = slic_get_stats;
+#endif
+	netdev->set_multicast_list = slic_mcast_set_list;
+
+	slic_debug_adapter_create(adapter);
+
+	strcpy(netdev->name, "eth%d");
+	err = register_netdev(netdev);
+	if (err) {
+		DBG_ERROR("Cannot register net device, aborting.\n");
+		goto err_out_unmap;
+	}
+
+	DBG_MSG
+	    ("slicoss: addr 0x%lx, irq %d, MAC addr "\
+	     "%02X:%02X:%02X:%02X:%02X:%02X\n",
+	     mmio_start, /*pci_resource_start(pcidev, 0), */ pcidev->irq,
+	     netdev->dev_addr[0], netdev->dev_addr[1], netdev->dev_addr[2],
+	     netdev->dev_addr[3], netdev->dev_addr[4], netdev->dev_addr[5]);
+
+	cards_found++;
+	DBG_MSG("slicoss: %s EXIT status[%x] jiffies[%lx] cpu %d\n",
+		__func__, status, jiffies, smp_processor_id());
+
+	return status;
+
+err_out_unmap:
+	iounmap(memmapped_ioaddr);
+
+err_out_free_mmio_region:
+	release_mem_region(mmio_start, mmio_len);
+
+err_out_exit_slic_probe:
+	pci_release_regions(pcidev);
+	DBG_ERROR("%s EXIT jiffies[%lx] cpu %d\n", __func__, jiffies,
+		  smp_processor_id());
+
+	return -ENODEV;
+}
+
+static int slic_entry_open(struct net_device *dev)
+{
+	struct adapter *adapter = (struct adapter *) netdev_priv(dev);
+	struct sliccard *card = adapter->card;
+	u32 locked = 0;
+	int status;
+
+	ASSERT(adapter);
+	ASSERT(card);
+	DBG_MSG
+	    ("slicoss: %s adapter->activated[%d] card->adapters[%x] "\
+	     "allocd[%x]\n", __func__, adapter->activated,
+	     card->adapters_activated,
+	     card->adapters_allocated);
+	DBG_MSG
+	    ("slicoss: %s (%s): [jiffies[%lx] cpu %d] dev[%p] adapt[%p] "\
+	     "port[%d] card[%p]\n",
+	     __func__, adapter->netdev->name, jiffies, smp_processor_id(),
+	     adapter->netdev, adapter, adapter->port, card);
+
+	netif_stop_queue(adapter->netdev);
+
+	spin_lock_irqsave(&slic_global.driver_lock.lock,
+				slic_global.driver_lock.flags);
+	locked = 1;
+	if (!adapter->activated) {
+		card->adapters_activated++;
+		slic_global.num_slic_ports_active++;
+		adapter->activated = 1;
+	}
+	status = slic_if_init(adapter);
+
+	if (status != STATUS_SUCCESS) {
+		if (adapter->activated) {
+			card->adapters_activated--;
+			slic_global.num_slic_ports_active--;
+			adapter->activated = 0;
+		}
+		if (locked) {
+			spin_unlock_irqrestore(&slic_global.driver_lock.lock,
+						slic_global.driver_lock.flags);
+			locked = 0;
+		}
+		return status;
+	}
+	DBG_MSG("slicoss: %s set card->master[%p] adapter[%p]\n", __func__,
+		card->master, adapter);
+	if (!card->master)
+		card->master = adapter;
+#if SLIC_DUMP_ENABLED
+	if (!(card->dumpthread_running))
+		init_waitqueue_head(&card->dump_wq);
+#endif
+
+	if (locked) {
+		spin_unlock_irqrestore(&slic_global.driver_lock.lock,
+					slic_global.driver_lock.flags);
+		locked = 0;
+	}
+#if SLIC_DUMP_ENABLED
+	if (!(card->dumpthread_running)) {
+		DBG_MSG("attempt to initialize dump thread\n");
+		status = slic_init_dump_thread(card);
+		/*
+		Even if the dump thread fails, we will continue at this point
+		*/
+	}
+#endif
+
+	return STATUS_SUCCESS;
+}
+
+static void __devexit slic_entry_remove(struct pci_dev *pcidev)
+{
+	struct net_device *dev = pci_get_drvdata(pcidev);
+	u32 mmio_start = 0;
+	uint mmio_len = 0;
+	struct adapter *adapter = (struct adapter *) netdev_priv(dev);
+	struct sliccard *card;
+
+	ASSERT(adapter);
+	DBG_MSG("slicoss: %s ENTER dev[%p] adapter[%p]\n", __func__, dev,
+		adapter);
+	slic_adapter_freeresources(adapter);
+	slic_unmap_mmio_space(adapter);
+	DBG_MSG("slicoss: %s unregister_netdev\n", __func__);
+	unregister_netdev(dev);
+
+	mmio_start = pci_resource_start(pcidev, 0);
+	mmio_len = pci_resource_len(pcidev, 0);
+
+	DBG_MSG("slicoss: %s rel_region(0) start[%x] len[%x]\n", __func__,
+		mmio_start, mmio_len);
+	release_mem_region(mmio_start, mmio_len);
+
+	DBG_MSG("slicoss: %s iounmap dev->base_addr[%x]\n", __func__,
+		(uint) dev->base_addr);
+	iounmap((void __iomem *)dev->base_addr);
+	ASSERT(adapter->card);
+	card = adapter->card;
+	ASSERT(card->adapters_allocated);
+	card->adapters_allocated--;
+	adapter->allocated = 0;
+	DBG_MSG
+	    ("slicoss: %s init[%x] alloc[%x] card[%p] adapter[%p]\n",
+	     __func__, card->adapters_activated, card->adapters_allocated,
+	     card, adapter);
+	if (!card->adapters_allocated) {
+		struct sliccard *curr_card = slic_global.slic_card;
+		if (curr_card == card) {
+			slic_global.slic_card = card->next;
+		} else {
+			while (curr_card->next != card)
+				curr_card = curr_card->next;
+			ASSERT(curr_card);
+			curr_card->next = card->next;
+		}
+		ASSERT(slic_global.num_slic_cards);
+		slic_global.num_slic_cards--;
+		slic_card_cleanup(card);
+	}
+	DBG_MSG("slicoss: %s deallocate device\n", __func__);
+	kfree(dev);
+	pci_release_regions(pcidev);
+	DBG_MSG("slicoss: %s EXIT\n", __func__);
+}
+
+static int slic_entry_halt(struct net_device *dev)
+{
+	struct adapter *adapter = (struct adapter *)netdev_priv(dev);
+	struct sliccard *card = adapter->card;
+	__iomem struct slic_regs *slic_regs = adapter->slic_regs;
+
+	spin_lock_irqsave(&slic_global.driver_lock.lock,
+				slic_global.driver_lock.flags);
+	ASSERT(card);
+	DBG_MSG("slicoss: %s (%s) ENTER\n", __func__, dev->name);
+	DBG_MSG("slicoss: %s (%s) actvtd[%d] alloc[%d] state[%x] adapt[%p]\n",
+		__func__, dev->name, card->adapters_activated,
+		card->adapters_allocated, card->state, adapter);
+	slic_if_stop_queue(adapter);
+	adapter->state = ADAPT_DOWN;
+	adapter->linkstate = LINK_DOWN;
+	adapter->upr_list = NULL;
+	adapter->upr_busy = 0;
+	adapter->devflags_prev = 0;
+	DBG_MSG("slicoss: %s (%s) set adapter[%p] state to ADAPT_DOWN(%d)\n",
+		__func__, dev->name, adapter, adapter->state);
+	ASSERT(card->adapter[adapter->cardindex] == adapter);
+	WRITE_REG(slic_regs->slic_icr, ICR_INT_OFF, FLUSH);
+	adapter->all_reg_writes++;
+	adapter->icr_reg_writes++;
+	slic_config_clear(adapter);
+	DBG_MSG("slicoss: %s (%s) dev[%p] adapt[%p] card[%p]\n",
+		__func__, dev->name, dev, adapter, card);
+	if (adapter->activated) {
+		card->adapters_activated--;
+		slic_global.num_slic_ports_active--;
+		adapter->activated = 0;
+	}
+#ifdef AUTOMATIC_RESET
+	WRITE_REG(slic_regs->slic_reset_iface, 0, FLUSH);
+#endif
+	/*
+	 *  Reset the adapter's rsp, cmd, and rcv queues
+	 */
+	slic_cmdq_reset(adapter);
+	slic_rspqueue_reset(adapter);
+	slic_rcvqueue_reset(adapter);
+
+#ifdef AUTOMATIC_RESET
+	if (!card->adapters_activated) {
+
+#if SLIC_DUMP_ENABLED
+		if (card->dumpthread_running) {
+			uint status;
+			DBG_MSG("attempt to terminate dump thread pid[%x]\n",
+				card->dump_task_id);
+			status = kill_proc(card->dump_task_id->pid, SIGKILL, 1);
+
+			if (!status) {
+				int count = 10 * 100;
+				while (card->dumpthread_running && --count) {
+					current->state = TASK_INTERRUPTIBLE;
+					schedule_timeout(1);
+				}
+
+				if (!count) {
+					DBG_MSG
+					    ("slicmon thread cleanup FAILED \
+					     pid[%x]\n",
+					     card->dump_task_id->pid);
+				}
+			}
+		}
+#endif
+		DBG_MSG("slicoss: %s (%s) initiate CARD_HALT\n", __func__,
+			dev->name);
+
+		slic_card_init(card, adapter);
+	}
+#endif
+
+	DBG_MSG("slicoss: %s (%s) EXIT\n", __func__, dev->name);
+	DBG_MSG("slicoss: %s EXIT\n", __func__);
+	spin_unlock_irqrestore(&slic_global.driver_lock.lock,
+				slic_global.driver_lock.flags);
+	return STATUS_SUCCESS;
+}
+
+static int slic_ioctl(struct net_device *dev, struct ifreq *rq, int cmd)
+{
+	ASSERT(rq);
+/*
+      DBG_MSG("slicoss: %s cmd[%x] rq[%p] dev[%p]\n", __func__, cmd, rq, dev);
+*/
+	switch (cmd) {
+	case SIOCSLICSETINTAGG:
+		{
+			struct adapter *adapter = (struct adapter *)
+							netdev_priv(dev);
+			u32 data[7];
+			u32 intagg;
+
+			if (copy_from_user(data, rq->ifr_data, 28)) {
+				DBG_ERROR
+				    ("copy_from_user FAILED getting initial \
+				     params\n");
+				return -EFAULT;
+			}
+			intagg = data[0];
+			printk(KERN_EMERG
+			       "%s: set interrupt aggregation to %d\n",
+			       __func__, intagg);
+			slic_intagg_set(adapter, intagg);
+			return 0;
+		}
+#ifdef SLIC_USER_REQUEST_DUMP_ENABLED
+	case SIOCSLICDUMPCARD:
+		{
+			struct adapter *adapter = (struct adapter *)
+							dev->priv;
+			struct sliccard *card;
+
+			ASSERT(adapter);
+			ASSERT(adapter->card)
+			card = adapter->card;
+
+			DBG_IOCTL("slic_ioctl  SIOCSLIC_DUMP_CARD\n");
+
+			if (card->dump_requested == SLIC_DUMP_DONE) {
+				printk(SLICLEVEL
+				       "SLIC Card dump to be overwritten\n");
+				card->dump_requested = SLIC_DUMP_REQUESTED;
+			} else if ((card->dump_requested == SLIC_DUMP_REQUESTED)
+				   || (card->dump_requested ==
+				       SLIC_DUMP_IN_PROGRESS)) {
+				printk(SLICLEVEL
+				       "SLIC Card dump Requested but already \
+					in progress... ignore\n");
+			} else {
+				printk(SLICLEVEL
+				       "SLIC Card #%d Dump Requested\n",
+				       card->cardnum);
+				card->dump_requested = SLIC_DUMP_REQUESTED;
+			}
+			return 0;
+		}
+#endif
+
+#ifdef SLIC_TRACE_DUMP_ENABLED
+	case SIOCSLICTRACEDUMP:
+		{
+			ulong data[7];
+			ulong value;
+
+			DBG_IOCTL("slic_ioctl  SIOCSLIC_TRACE_DUMP\n");
+
+			if (copy_from_user(data, rq->ifr_data, 28)) {
+				PRINT_ERROR
+				    ("slic: copy_from_user FAILED getting \
+				     initial simba param\n");
+				return -EFAULT;
+			}
+
+			value = data[0];
+			if (tracemon_request == SLIC_DUMP_DONE) {
+				PRINT_ERROR
+				    ("ATK Diagnostic Trace Dump Requested\n");
+				tracemon_request = SLIC_DUMP_REQUESTED;
+				tracemon_request_type = value;
+				tracemon_timestamp = jiffies;
+			} else if ((tracemon_request == SLIC_DUMP_REQUESTED) ||
+				   (tracemon_request ==
+				    SLIC_DUMP_IN_PROGRESS)) {
+				PRINT_ERROR
+				    ("ATK Diagnostic Trace Dump Requested but \
+				     already in progress... ignore\n");
+			} else {
+				PRINT_ERROR
+				    ("ATK Diagnostic Trace Dump Requested\n");
+				tracemon_request = SLIC_DUMP_REQUESTED;
+				tracemon_request_type = value;
+				tracemon_timestamp = jiffies;
+			}
+			return 0;
+		}
+#endif
+#if SLIC_ETHTOOL_SUPPORT
+	case SIOCETHTOOL:
+		{
+			struct adapter *adapter = (struct adapter *)
+							netdev_priv(dev);
+			struct ethtool_cmd data;
+			struct ethtool_cmd ecmd;
+
+			ASSERT(adapter);
+/*                      DBG_MSG("slicoss: %s SIOCETHTOOL\n", __func__); */
+			if (copy_from_user(&ecmd, rq->ifr_data, sizeof(ecmd)))
+				return -EFAULT;
+
+			if (ecmd.cmd == ETHTOOL_GSET) {
+				data.supported =
+				    (SUPPORTED_10baseT_Half |
+				     SUPPORTED_10baseT_Full |
+				     SUPPORTED_100baseT_Half |
+				     SUPPORTED_100baseT_Full |
+				     SUPPORTED_Autoneg | SUPPORTED_MII);
+				data.port = PORT_MII;
+				data.transceiver = XCVR_INTERNAL;
+				data.phy_address = 0;
+				if (adapter->linkspeed == LINK_100MB)
+					data.speed = SPEED_100;
+				else if (adapter->linkspeed == LINK_10MB)
+					data.speed = SPEED_10;
+				else
+					data.speed = 0;
+
+				if (adapter->linkduplex == LINK_FULLD)
+					data.duplex = DUPLEX_FULL;
+				else
+					data.duplex = DUPLEX_HALF;
+
+				data.autoneg = AUTONEG_ENABLE;
+				data.maxtxpkt = 1;
+				data.maxrxpkt = 1;
+				if (copy_to_user
+				    (rq->ifr_data, &data, sizeof(data)))
+					return -EFAULT;
+
+			} else if (ecmd.cmd == ETHTOOL_SSET) {
+				if (!capable(CAP_NET_ADMIN))
+					return -EPERM;
+
+				if (adapter->linkspeed == LINK_100MB)
+					data.speed = SPEED_100;
+				else if (adapter->linkspeed == LINK_10MB)
+					data.speed = SPEED_10;
+				else
+					data.speed = 0;
+
+				if (adapter->linkduplex == LINK_FULLD)
+					data.duplex = DUPLEX_FULL;
+				else
+					data.duplex = DUPLEX_HALF;
+
+				data.autoneg = AUTONEG_ENABLE;
+				data.maxtxpkt = 1;
+				data.maxrxpkt = 1;
+				if ((ecmd.speed != data.speed) ||
+				    (ecmd.duplex != data.duplex)) {
+					u32 speed;
+					u32 duplex;
+
+					if (ecmd.speed == SPEED_10) {
+						speed = 0;
+						SLIC_DISPLAY
+						    ("%s: slic ETHTOOL set \
+						     link speed==10MB",
+						     dev->name);
+					} else {
+						speed = PCR_SPEED_100;
+						SLIC_DISPLAY
+						    ("%s: slic ETHTOOL set \
+						    link speed==100MB",
+						     dev->name);
+					}
+					if (ecmd.duplex == DUPLEX_FULL) {
+						duplex = PCR_DUPLEX_FULL;
+						SLIC_DISPLAY
+						    (": duplex==FULL\n");
+					} else {
+						duplex = 0;
+						SLIC_DISPLAY
+						    (": duplex==HALF\n");
+					}
+					slic_link_config(adapter,
+							 speed, duplex);
+					slic_link_event_handler(adapter);
+				}
+			}
+			return 0;
+		}
+#endif
+	default:
+/*              DBG_MSG("slicoss: %s UNSUPPORTED[%x]\n", __func__, cmd); */
+		return -EOPNOTSUPP;
+	}
+}
+
+#define  XMIT_FAIL_LINK_STATE               1
+#define  XMIT_FAIL_ZERO_LENGTH              2
+#define  XMIT_FAIL_HOSTCMD_FAIL             3
+
+static void slic_xmit_build_request(struct adapter *adapter,
+			     struct slic_hostcmd *hcmd, struct sk_buff *skb)
+{
+	struct slic_host64_cmd *ihcmd;
+	ulong phys_addr;
+
+	ihcmd = &hcmd->cmd64;
+
+	ihcmd->flags = (adapter->port << IHFLG_IFSHFT);
+	ihcmd->command = IHCMD_XMT_REQ;
+	ihcmd->u.slic_buffers.totlen = skb->len;
+	phys_addr = pci_map_single(adapter->pcidev, skb->data, skb->len,
+			PCI_DMA_TODEVICE);
+	ihcmd->u.slic_buffers.bufs[0].paddrl = SLIC_GET_ADDR_LOW(phys_addr);
+	ihcmd->u.slic_buffers.bufs[0].paddrh = SLIC_GET_ADDR_HIGH(phys_addr);
+	ihcmd->u.slic_buffers.bufs[0].length = skb->len;
+#if defined(CONFIG_X86_64)
+	hcmd->cmdsize = (u32) ((((u64)&ihcmd->u.slic_buffers.bufs[1] -
+				     (u64) hcmd) + 31) >> 5);
+#elif defined(CONFIG_X86)
+	hcmd->cmdsize = ((((u32) &ihcmd->u.slic_buffers.bufs[1] -
+			   (u32) hcmd) + 31) >> 5);
+#else
+	Stop Compilation;
+#endif
+}
+
+#define NORMAL_ETHFRAME     0
+
+static int slic_xmit_start(struct sk_buff *skb, struct net_device *dev)
+{
+	struct sliccard *card;
+	struct adapter *adapter = (struct adapter *)netdev_priv(dev);
+	struct slic_hostcmd *hcmd = NULL;
+	u32 status = 0;
+	u32 skbtype = NORMAL_ETHFRAME;
+	void *offloadcmd = NULL;
+
+	card = adapter->card;
+	ASSERT(card);
+/*
+    DBG_ERROR("xmit_start (%s) ENTER skb[%p] len[%d] linkstate[%x] state[%x]\n",
+	adapter->netdev->name, skb, skb->len, adapter->linkstate,
+	 adapter->state);
+*/
+	if ((adapter->linkstate != LINK_UP) ||
+	    (adapter->state != ADAPT_UP) || (card->state != CARD_UP)) {
+		status = XMIT_FAIL_LINK_STATE;
+		goto xmit_fail;
+
+	} else if (skb->len == 0) {
+		status = XMIT_FAIL_ZERO_LENGTH;
+		goto xmit_fail;
+	}
+
+	if (skbtype == NORMAL_ETHFRAME) {
+		hcmd = slic_cmdq_getfree(adapter);
+		if (!hcmd) {
+			adapter->xmitq_full = 1;
+			status = XMIT_FAIL_HOSTCMD_FAIL;
+			goto xmit_fail;
+		}
+		ASSERT(hcmd->pslic_handle);
+		ASSERT(hcmd->cmd64.hosthandle ==
+		       hcmd->pslic_handle->token.handle_token);
+		hcmd->skb = skb;
+		hcmd->busy = 1;
+		hcmd->type = SLIC_CMD_DUMB;
+		if (skbtype == NORMAL_ETHFRAME)
+			slic_xmit_build_request(adapter, hcmd, skb);
+	}
+	adapter->stats.tx_packets++;
+	adapter->stats.tx_bytes += skb->len;
+
+#ifdef DEBUG_DUMP
+	if (adapter->kill_card) {
+		struct slic_host64_cmd ihcmd;
+
+		ihcmd = &hcmd->cmd64;
+
+		ihcmd->flags |= 0x40;
+		adapter->kill_card = 0;	/* only do this once */
+	}
+#endif
+	if (hcmd->paddrh == 0) {
+		WRITE_REG(adapter->slic_regs->slic_cbar,
+			  (hcmd->paddrl | hcmd->cmdsize), DONT_FLUSH);
+	} else {
+		WRITE_REG64(adapter,
+			    adapter->slic_regs->slic_cbar64,
+			    (hcmd->paddrl | hcmd->cmdsize),
+			    adapter->slic_regs->slic_addr_upper,
+			    hcmd->paddrh, DONT_FLUSH);
+	}
+xmit_done:
+	return 0;
+xmit_fail:
+	slic_xmit_fail(adapter, skb, offloadcmd, skbtype, status);
+	goto xmit_done;
+}
+
+static void slic_xmit_fail(struct adapter *adapter,
+		    struct sk_buff *skb,
+		    void *cmd, u32 skbtype, u32 status)
+{
+	if (adapter->xmitq_full)
+		slic_if_stop_queue(adapter);
+	if ((cmd == NULL) && (status <= XMIT_FAIL_HOSTCMD_FAIL)) {
+		switch (status) {
+		case XMIT_FAIL_LINK_STATE:
+			DBG_ERROR
+			    ("(%s) reject xmit skb[%p: %x] linkstate[%s] \
+			     adapter[%s:%d] card[%s:%d]\n",
+			     adapter->netdev->name, skb, skb->pkt_type,
+			     SLIC_LINKSTATE(adapter->linkstate),
+			     SLIC_ADAPTER_STATE(adapter->state), adapter->state,
+			     SLIC_CARD_STATE(adapter->card->state),
+			     adapter->card->state);
+			break;
+		case XMIT_FAIL_ZERO_LENGTH:
+			DBG_ERROR
+			    ("xmit_start skb->len == 0 skb[%p] type[%x]!!!! \n",
+			     skb, skb->pkt_type);
+			break;
+		case XMIT_FAIL_HOSTCMD_FAIL:
+			DBG_ERROR
+			    ("xmit_start skb[%p] type[%x] No host commands \
+			     available !!!! \n",
+			     skb, skb->pkt_type);
+			break;
+		default:
+			ASSERT(0);
+		}
+	}
+	dev_kfree_skb(skb);
+	adapter->stats.tx_dropped++;
+}
+
+static void slic_rcv_handle_error(struct adapter *adapter,
+					struct slic_rcvbuf *rcvbuf)
+{
+	struct slic_hddr_wds *hdr = (struct slic_hddr_wds *)rcvbuf->data;
+
+	if (adapter->devid != SLIC_1GB_DEVICE_ID) {
+		if (hdr->frame_status14 & VRHSTAT_802OE)
+			adapter->if_events.oflow802++;
+		if (hdr->frame_status14 & VRHSTAT_TPOFLO)
+			adapter->if_events.Tprtoflow++;
+		if (hdr->frame_status_b14 & VRHSTATB_802UE)
+			adapter->if_events.uflow802++;
+		if (hdr->frame_status_b14 & VRHSTATB_RCVE) {
+			adapter->if_events.rcvearly++;
+			adapter->stats.rx_fifo_errors++;
+		}
+		if (hdr->frame_status_b14 & VRHSTATB_BUFF) {
+			adapter->if_events.Bufov++;
+			adapter->stats.rx_over_errors++;
+		}
+		if (hdr->frame_status_b14 & VRHSTATB_CARRE) {
+			adapter->if_events.Carre++;
+			adapter->stats.tx_carrier_errors++;
+		}
+		if (hdr->frame_status_b14 & VRHSTATB_LONGE)
+			adapter->if_events.Longe++;
+		if (hdr->frame_status_b14 & VRHSTATB_PREA)
+			adapter->if_events.Invp++;
+		if (hdr->frame_status_b14 & VRHSTATB_CRC) {
+			adapter->if_events.Crc++;
+			adapter->stats.rx_crc_errors++;
+		}
+		if (hdr->frame_status_b14 & VRHSTATB_DRBL)
+			adapter->if_events.Drbl++;
+		if (hdr->frame_status_b14 & VRHSTATB_CODE)
+			adapter->if_events.Code++;
+		if (hdr->frame_status_b14 & VRHSTATB_TPCSUM)
+			adapter->if_events.TpCsum++;
+		if (hdr->frame_status_b14 & VRHSTATB_TPHLEN)
+			adapter->if_events.TpHlen++;
+		if (hdr->frame_status_b14 & VRHSTATB_IPCSUM)
+			adapter->if_events.IpCsum++;
+		if (hdr->frame_status_b14 & VRHSTATB_IPLERR)
+			adapter->if_events.IpLen++;
+		if (hdr->frame_status_b14 & VRHSTATB_IPHERR)
+			adapter->if_events.IpHlen++;
+	} else {
+		if (hdr->frame_statusGB & VGBSTAT_XPERR) {
+			u32 xerr = hdr->frame_statusGB >> VGBSTAT_XERRSHFT;
+
+			if (xerr == VGBSTAT_XCSERR)
+				adapter->if_events.TpCsum++;
+			if (xerr == VGBSTAT_XUFLOW)
+				adapter->if_events.Tprtoflow++;
+			if (xerr == VGBSTAT_XHLEN)
+				adapter->if_events.TpHlen++;
+		}
+		if (hdr->frame_statusGB & VGBSTAT_NETERR) {
+			u32 nerr =
+			    (hdr->
+			     frame_statusGB >> VGBSTAT_NERRSHFT) &
+			    VGBSTAT_NERRMSK;
+			if (nerr == VGBSTAT_NCSERR)
+				adapter->if_events.IpCsum++;
+			if (nerr == VGBSTAT_NUFLOW)
+				adapter->if_events.IpLen++;
+			if (nerr == VGBSTAT_NHLEN)
+				adapter->if_events.IpHlen++;
+		}
+		if (hdr->frame_statusGB & VGBSTAT_LNKERR) {
+			u32 lerr = hdr->frame_statusGB & VGBSTAT_LERRMSK;
+
+			if (lerr == VGBSTAT_LDEARLY)
+				adapter->if_events.rcvearly++;
+			if (lerr == VGBSTAT_LBOFLO)
+				adapter->if_events.Bufov++;
+			if (lerr == VGBSTAT_LCODERR)
+				adapter->if_events.Code++;
+			if (lerr == VGBSTAT_LDBLNBL)
+				adapter->if_events.Drbl++;
+			if (lerr == VGBSTAT_LCRCERR)
+				adapter->if_events.Crc++;
+			if (lerr == VGBSTAT_LOFLO)
+				adapter->if_events.oflow802++;
+			if (lerr == VGBSTAT_LUFLO)
+				adapter->if_events.uflow802++;
+		}
+	}
+	return;
+}
+
+#define TCP_OFFLOAD_FRAME_PUSHFLAG  0x10000000
+#define M_FAST_PATH                 0x0040
+
+static void slic_rcv_handler(struct adapter *adapter)
+{
+	struct sk_buff *skb;
+	struct slic_rcvbuf *rcvbuf;
+	u32 frames = 0;
+
+	while ((skb = slic_rcvqueue_getnext(adapter))) {
+		u32 rx_bytes;
+
+		ASSERT(skb->head);
+		rcvbuf = (struct slic_rcvbuf *)skb->head;
+		adapter->card->events++;
+		if (rcvbuf->status & IRHDDR_ERR) {
+			adapter->rx_errors++;
+			slic_rcv_handle_error(adapter, rcvbuf);
+			slic_rcvqueue_reinsert(adapter, skb);
+			continue;
+		}
+
+		if (!slic_mac_filter(adapter, (struct ether_header *)
+					rcvbuf->data)) {
+#if 0
+			DBG_MSG
+			    ("slicoss: %s (%s) drop frame due to mac filter\n",
+			     __func__, adapter->netdev->name);
+#endif
+			slic_rcvqueue_reinsert(adapter, skb);
+			continue;
+		}
+		skb_pull(skb, SLIC_RCVBUF_HEADSIZE);
+		rx_bytes = (rcvbuf->length & IRHDDR_FLEN_MSK);
+		skb_put(skb, rx_bytes);
+		adapter->stats.rx_packets++;
+		adapter->stats.rx_bytes += rx_bytes;
+#if SLIC_OFFLOAD_IP_CHECKSUM
+		skb->ip_summed = CHECKSUM_UNNECESSARY;
+#endif
+
+		skb->dev = adapter->netdev;
+		skb->protocol = eth_type_trans(skb, skb->dev);
+		netif_rx(skb);
+
+		++frames;
+#if SLIC_INTERRUPT_PROCESS_LIMIT
+		if (frames >= SLIC_RCVQ_MAX_PROCESS_ISR) {
+			adapter->rcv_interrupt_yields++;
+			break;
+		}
+#endif
+	}
+	adapter->max_isr_rcvs = max(adapter->max_isr_rcvs, frames);
+}
+
+static void slic_xmit_complete(struct adapter *adapter)
+{
+	struct slic_hostcmd *hcmd;
+	struct slic_rspbuf *rspbuf;
+	u32 frames = 0;
+	struct slic_handle_word slic_handle_word;
+
+	do {
+		rspbuf = slic_rspqueue_getnext(adapter);
+		if (!rspbuf)
+			break;
+		adapter->xmit_completes++;
+		adapter->card->events++;
+		/*
+		 Get the complete host command buffer
+		*/
+		slic_handle_word.handle_token = rspbuf->hosthandle;
+		ASSERT(slic_handle_word.handle_index);
+		ASSERT(slic_handle_word.handle_index <= SLIC_CMDQ_MAXCMDS);
+		hcmd =
+		    (struct slic_hostcmd *)
+			adapter->slic_handles[slic_handle_word.handle_index].
+									address;
+/*      hcmd = (struct slic_hostcmd *) rspbuf->hosthandle; */
+		ASSERT(hcmd);
+		ASSERT(hcmd->pslic_handle ==
+		       &adapter->slic_handles[slic_handle_word.handle_index]);
+/*
+      DBG_ERROR("xmit_complete (%s)   hcmd[%p]  hosthandle[%x]\n",
+		adapter->netdev->name, hcmd, hcmd->cmd64.hosthandle);
+      DBG_ERROR("    skb[%p] len %d  hcmdtype[%x]\n", hcmd->skb,
+		hcmd->skb->len, hcmd->type);
+*/
+		if (hcmd->type == SLIC_CMD_DUMB) {
+			if (hcmd->skb)
+				dev_kfree_skb_irq(hcmd->skb);
+			slic_cmdq_putdone_irq(adapter, hcmd);
+		}
+		rspbuf->status = 0;
+		rspbuf->hosthandle = 0;
+		frames++;
+	} while (1);
+	adapter->max_isr_xmits = max(adapter->max_isr_xmits, frames);
+}
+
+static irqreturn_t slic_interrupt(int irq, void *dev_id)
+{
+	struct net_device *dev = (struct net_device *)dev_id;
+	struct adapter *adapter = (struct adapter *)netdev_priv(dev);
+	u32 isr;
+
+	if ((adapter->pshmem) && (adapter->pshmem->isr)) {
+		WRITE_REG(adapter->slic_regs->slic_icr, ICR_INT_MASK, FLUSH);
+		isr = adapter->isrcopy = adapter->pshmem->isr;
+		adapter->pshmem->isr = 0;
+		adapter->num_isrs++;
+		switch (adapter->card->state) {
+		case CARD_UP:
+			if (isr & ~ISR_IO) {
+				if (isr & ISR_ERR) {
+					adapter->error_interrupts++;
+					if (isr & ISR_RMISS) {
+						int count;
+						int pre_count;
+						int errors;
+
+						struct slic_rcvqueue *rcvq =
+						    &adapter->rcvqueue;
+
+						adapter->
+						    error_rmiss_interrupts++;
+						if (!rcvq->errors)
+							rcv_count = rcvq->count;
+						pre_count = rcvq->count;
+						errors = rcvq->errors;
+
+						while (rcvq->count <
+						       SLIC_RCVQ_FILLTHRESH) {
+							count =
+							    slic_rcvqueue_fill
+							    (adapter);
+							if (!count)
+								break;
+						}
+						DBG_MSG
+						    ("(%s): [%x] ISR_RMISS \
+						     initial[%x] pre[%x] \
+						     errors[%x] \
+						     post_count[%x]\n",
+						     adapter->netdev->name,
+						     isr, rcv_count, pre_count,
+						     errors, rcvq->count);
+					} else if (isr & ISR_XDROP) {
+						DBG_ERROR
+						    ("isr & ISR_ERR [%x] \
+						     ISR_XDROP \n",
+						     isr);
+					} else {
+						DBG_ERROR
+						    ("isr & ISR_ERR [%x]\n",
+						     isr);
+					}
+				}
+
+				if (isr & ISR_LEVENT) {
+					/*DBG_MSG("%s (%s)  ISR_LEVENT \n",
+					   __func__, adapter->netdev->name);*/
+					adapter->linkevent_interrupts++;
+					slic_link_event_handler(adapter);
+				}
+
+				if ((isr & ISR_UPC) ||
+				    (isr & ISR_UPCERR) || (isr & ISR_UPCBSY)) {
+					adapter->upr_interrupts++;
+					slic_upr_request_complete(adapter, isr);
+				}
+			}
+
+			if (isr & ISR_RCV) {
+				adapter->rcv_interrupts++;
+				slic_rcv_handler(adapter);
+			}
+
+			if (isr & ISR_CMD) {
+				adapter->xmit_interrupts++;
+				slic_xmit_complete(adapter);
+			}
+			break;
+
+		case CARD_DOWN:
+			if ((isr & ISR_UPC) ||
+			    (isr & ISR_UPCERR) || (isr & ISR_UPCBSY)) {
+				adapter->upr_interrupts++;
+				slic_upr_request_complete(adapter, isr);
+			}
+			break;
+
+		default:
+			break;
+		}
+
+		adapter->isrcopy = 0;
+		adapter->all_reg_writes += 2;
+		adapter->isr_reg_writes++;
+		WRITE_REG(adapter->slic_regs->slic_isr, 0, FLUSH);
+	} else {
+		adapter->false_interrupts++;
+	}
+	return IRQ_HANDLED;
+}
+
+/*
+ * slic_link_event_handler -
+ *
+ * Initiate a link configuration sequence.  The link configuration begins
+ * by issuing a READ_LINK_STATUS command to the Utility Processor on the
+ * SLIC.  Since the command finishes asynchronously, the slic_upr_comlete
+ * routine will follow it up witha UP configuration write command, which
+ * will also complete asynchronously.
+ *
+ */
+static void slic_link_event_handler(struct adapter *adapter)
+{
+	int status;
+	struct slic_shmem *pshmem;
+
+	if (adapter->state != ADAPT_UP) {
+		/* Adapter is not operational.  Ignore.  */
+		return;
+	}
+
+	pshmem = (struct slic_shmem *)adapter->phys_shmem;
+
+#if defined(CONFIG_X86_64)
+/*
+    DBG_MSG("slic_event_handler  pshmem->linkstatus[%x]  pshmem[%p]\n   \
+	&linkstatus[%p] &isr[%p]\n", adapter->pshmem->linkstatus, pshmem,
+	&pshmem->linkstatus, &pshmem->isr);
+*/
+	status = slic_upr_request(adapter,
+				  SLIC_UPR_RLSR,
+				  SLIC_GET_ADDR_LOW(&pshmem->linkstatus),
+				  SLIC_GET_ADDR_HIGH(&pshmem->linkstatus),
+				  0, 0);
+#elif defined(CONFIG_X86)
+	status = slic_upr_request(adapter, SLIC_UPR_RLSR,
+		(u32) &pshmem->linkstatus,	/* no 4GB wrap guaranteed */
+				  0, 0, 0);
+#else
+	Stop compilation;
+#endif
+	ASSERT((status == STATUS_SUCCESS) || (status == STATUS_PENDING));
+}
+
+static void slic_init_cleanup(struct adapter *adapter)
+{
+	DBG_MSG("slicoss: %s ENTER adapter[%p] ", __func__, adapter);
+	if (adapter->intrregistered) {
+		DBG_MSG("FREE_IRQ ");
+		adapter->intrregistered = 0;
+		free_irq(adapter->netdev->irq, adapter->netdev);
+
+	}
+	if (adapter->pshmem) {
+		DBG_MSG("FREE_SHMEM ");
+		DBG_MSG("adapter[%p] port %d pshmem[%p] FreeShmem ",
+			adapter, adapter->port, (void *) adapter->pshmem);
+		pci_free_consistent(adapter->pcidev,
+				    sizeof(struct slic_shmem *),
+				    adapter->pshmem, adapter->phys_shmem);
+		adapter->pshmem = NULL;
+		adapter->phys_shmem = (dma_addr_t) NULL;
+	}
+#if SLIC_GET_STATS_TIMER_ENABLED
+	if (adapter->statstimerset) {
+		DBG_MSG("statstimer ");
+		adapter->statstimerset = 0;
+		del_timer(&adapter->statstimer);
+	}
+#endif
+#if !SLIC_DUMP_ENABLED && SLIC_PING_TIMER_ENABLED
+/*#if SLIC_DUMP_ENABLED && SLIC_PING_TIMER_ENABLED*/
+	if (adapter->pingtimerset) {
+		DBG_MSG("pingtimer ");
+		adapter->pingtimerset = 0;
+		del_timer(&adapter->pingtimer);
+	}
+#endif
+	slic_rspqueue_free(adapter);
+	slic_cmdq_free(adapter);
+	slic_rcvqueue_free(adapter);
+
+	DBG_MSG("\n");
+}
+
+#if SLIC_GET_STATS_ENABLED
+static struct net_device_stats *slic_get_stats(struct net_device *dev)
+{
+	struct adapter *adapter = (struct adapter *)netdev_priv(dev);
+	struct net_device_stats *stats;
+
+	ASSERT(adapter);
+	stats = &adapter->stats;
+	stats->collisions = adapter->slic_stats.iface.xmit_collisions;
+	stats->rx_errors = adapter->slic_stats.iface.rcv_errors;
+	stats->tx_errors = adapter->slic_stats.iface.xmt_errors;
+	stats->rx_missed_errors = adapter->slic_stats.iface.rcv_discards;
+	stats->tx_heartbeat_errors = 0;
+	stats->tx_aborted_errors = 0;
+	stats->tx_window_errors = 0;
+	stats->tx_fifo_errors = 0;
+	stats->rx_frame_errors = 0;
+	stats->rx_length_errors = 0;
+	return &adapter->stats;
+}
+#endif
+
+/*
+ *  Allocate a mcast_address structure to hold the multicast address.
+ *  Link it in.
+ */
+static int slic_mcast_add_list(struct adapter *adapter, char *address)
+{
+	struct mcast_address *mcaddr, *mlist;
+	bool equaladdr;
+
+	/* Check to see if it already exists */
+	mlist = adapter->mcastaddrs;
+	while (mlist) {
+		ETHER_EQ_ADDR(mlist->address, address, equaladdr);
+		if (equaladdr)
+			return STATUS_SUCCESS;
+		mlist = mlist->next;
+	}
+
+	/* Doesn't already exist.  Allocate a structure to hold it */
+	mcaddr = kmalloc(sizeof(struct mcast_address), GFP_ATOMIC);
+	if (mcaddr == NULL)
+		return 1;
+
+	memcpy(mcaddr->address, address, 6);
+
+	mcaddr->next = adapter->mcastaddrs;
+	adapter->mcastaddrs = mcaddr;
+
+	return STATUS_SUCCESS;
+}
+
+/*
+ * Functions to obtain the CRC corresponding to the destination mac address.
+ * This is a standard ethernet CRC in that it is a 32-bit, reflected CRC using
+ * the polynomial:
+ *   x^32 + x^26 + x^23 + x^22 + x^16 + x^12 + x^11 + x^10 + x^8 + x^7 + x^5 +
+ *   x^4 + x^2 + x^1.
+ *
+ * After the CRC for the 6 bytes is generated (but before the value is
+ * complemented),
+ * we must then transpose the value and return bits 30-23.
+ *
+ */
+static u32 slic_crc_table[256];	/* Table of CRCs for all possible byte values */
+static u32 slic_crc_init;	/* Is table initialized */
+
+/*
+ *  Contruct the CRC32 table
+ */
+static void slic_mcast_init_crc32(void)
+{
+	u32 c;		/*  CRC shit reg                 */
+	u32 e = 0;		/*  Poly X-or pattern            */
+	int i;			/*  counter                      */
+	int k;			/*  byte being shifted into crc  */
+
+	static int p[] = { 0, 1, 2, 4, 5, 7, 8, 10, 11, 12, 16, 22, 23, 26 };
+
+	for (i = 0; i < sizeof(p) / sizeof(int); i++)
+		e |= 1L << (31 - p[i]);
+
+	for (i = 1; i < 256; i++) {
+		c = i;
+		for (k = 8; k; k--)
+			c = c & 1 ? (c >> 1) ^ e : c >> 1;
+		slic_crc_table[i] = c;
+	}
+}
+
+/*
+ *  Return the MAC hast as described above.
+ */
+static unsigned char slic_mcast_get_mac_hash(char *macaddr)
+{
+	u32 crc;
+	char *p;
+	int i;
+	unsigned char machash = 0;
+
+	if (!slic_crc_init) {
+		slic_mcast_init_crc32();
+		slic_crc_init = 1;
+	}
+
+	crc = 0xFFFFFFFF;	/* Preload shift register, per crc-32 spec */
+	for (i = 0, p = macaddr; i < 6; ++p, ++i)
+		crc = (crc >> 8) ^ slic_crc_table[(crc ^ *p) & 0xFF];
+
+	/* Return bits 1-8, transposed */
+	for (i = 1; i < 9; i++)
+		machash |= (((crc >> i) & 1) << (8 - i));
+
+	return machash;
+}
+
+static void slic_mcast_set_bit(struct adapter *adapter, char *address)
+{
+	unsigned char crcpoly;
+
+	/* Get the CRC polynomial for the mac address */
+	crcpoly = slic_mcast_get_mac_hash(address);
+
+	/* We only have space on the SLIC for 64 entries.  Lop
+	 * off the top two bits. (2^6 = 64)
+	 */
+	crcpoly &= 0x3F;
+
+	/* OR in the new bit into our 64 bit mask. */
+	adapter->mcastmask |= (u64) 1 << crcpoly;
+}
+
+static void slic_mcast_set_list(struct net_device *dev)
+{
+	struct adapter *adapter = (struct adapter *)netdev_priv(dev);
+	int status = STATUS_SUCCESS;
+	int i;
+	char *addresses;
+	struct dev_mc_list *mc_list = dev->mc_list;
+	int mc_count = dev->mc_count;
+
+	ASSERT(adapter);
+
+	for (i = 1; i <= mc_count; i++) {
+		addresses = (char *) &mc_list->dmi_addr;
+		if (mc_list->dmi_addrlen == 6) {
+			status = slic_mcast_add_list(adapter, addresses);
+			if (status != STATUS_SUCCESS)
+				break;
+		} else {
+			status = -EINVAL;
+			break;
+		}
+		slic_mcast_set_bit(adapter, addresses);
+		mc_list = mc_list->next;
+	}
+
+	DBG_MSG("%s a->devflags_prev[%x] dev->flags[%x] status[%x]\n",
+		__func__, adapter->devflags_prev, dev->flags, status);
+	if (adapter->devflags_prev != dev->flags) {
+		adapter->macopts = MAC_DIRECTED;
+		if (dev->flags) {
+			if (dev->flags & IFF_BROADCAST)
+				adapter->macopts |= MAC_BCAST;
+			if (dev->flags & IFF_PROMISC)
+				adapter->macopts |= MAC_PROMISC;
+			if (dev->flags & IFF_ALLMULTI)
+				adapter->macopts |= MAC_ALLMCAST;
+			if (dev->flags & IFF_MULTICAST)
+				adapter->macopts |= MAC_MCAST;
+		}
+		adapter->devflags_prev = dev->flags;
+		DBG_MSG("%s call slic_config_set adapter->macopts[%x]\n",
+			__func__, adapter->macopts);
+		slic_config_set(adapter, TRUE);
+	} else {
+		if (status == STATUS_SUCCESS)
+			slic_mcast_set_mask(adapter);
+	}
+	return;
+}
+
+static void slic_mcast_set_mask(struct adapter *adapter)
+{
+	__iomem struct slic_regs *slic_regs = adapter->slic_regs;
+
+	DBG_MSG("%s ENTER (%s) macopts[%x] mask[%llx]\n", __func__,
+		adapter->netdev->name, (uint) adapter->macopts,
+		adapter->mcastmask);
+
+	if (adapter->macopts & (MAC_ALLMCAST | MAC_PROMISC)) {
+		/* Turn on all multicast addresses. We have to do this for
+		 * promiscuous mode as well as ALLMCAST mode.  It saves the
+		 * Microcode from having to keep state about the MAC
+		 * configuration.
+		 */
+/*              DBG_MSG("slicoss: %s macopts = MAC_ALLMCAST | MAC_PROMISC\n\
+		SLUT MODE!!!\n",__func__); */
+		WRITE_REG(slic_regs->slic_mcastlow, 0xFFFFFFFF, FLUSH);
+		WRITE_REG(slic_regs->slic_mcasthigh, 0xFFFFFFFF, FLUSH);
+/*        DBG_MSG("%s (%s) WRITE to slic_regs slic_mcastlow&high 0xFFFFFFFF\n",
+		_func__, adapter->netdev->name); */
+	} else {
+		/* Commit our multicast mast to the SLIC by writing to the
+		 * multicast address mask registers
+		 */
+		DBG_MSG("%s (%s) WRITE mcastlow[%x] mcasthigh[%x]\n",
+			__func__, adapter->netdev->name,
+			((ulong) (adapter->mcastmask & 0xFFFFFFFF)),
+			((ulong) ((adapter->mcastmask >> 32) & 0xFFFFFFFF)));
+
+		WRITE_REG(slic_regs->slic_mcastlow,
+			  (u32) (adapter->mcastmask & 0xFFFFFFFF), FLUSH);
+		WRITE_REG(slic_regs->slic_mcasthigh,
+			  (u32) ((adapter->mcastmask >> 32) & 0xFFFFFFFF),
+			  FLUSH);
+	}
+}
+
+static void slic_timer_ping(ulong dev)
+{
+	struct adapter *adapter;
+	struct sliccard *card;
+
+	ASSERT(dev);
+	adapter = (struct adapter *)((struct net_device *) dev)->priv;
+	ASSERT(adapter);
+	card = adapter->card;
+	ASSERT(card);
+#if !SLIC_DUMP_ENABLED
+/*#if SLIC_DUMP_ENABLED*/
+	if ((adapter->state == ADAPT_UP) && (card->state == CARD_UP)) {
+		int status;
+
+		if (card->pingstatus != ISR_PINGMASK) {
+			if (errormsg++ < 5) {
+				DBG_MSG
+				    ("%s (%s) CARD HAS CRASHED  PING_status == \
+				     %x ERRORMSG# %d\n",
+				     __func__, adapter->netdev->name,
+				     card->pingstatus, errormsg);
+			}
+			/*   ASSERT(card->pingstatus == ISR_PINGMASK); */
+		} else {
+			if (goodmsg++ < 5) {
+				DBG_MSG
+				    ("slicoss: %s (%s) PING_status == %x \
+				     GOOD!!!!!!!! msg# %d\n",
+				     __func__, adapter->netdev->name,
+				     card->pingstatus, errormsg);
+			}
+		}
+		card->pingstatus = 0;
+		status = slic_upr_request(adapter, SLIC_UPR_PING, 0, 0, 0, 0);
+
+		ASSERT(status == 0);
+	} else {
+		DBG_MSG("slicoss %s (%s) adapter[%p] NOT UP!!!!\n",
+			__func__, adapter->netdev->name, adapter);
+	}
+#endif
+	adapter->pingtimer.expires =
+	    jiffies + SLIC_SECS_TO_JIFFS(PING_TIMER_INTERVAL);
+	add_timer(&adapter->pingtimer);
+}
+
+static void slic_if_stop_queue(struct adapter *adapter)
+{
+	netif_stop_queue(adapter->netdev);
+}
+
+static void slic_if_start_queue(struct adapter *adapter)
+{
+	netif_start_queue(adapter->netdev);
+}
+
+/*
+ *  slic_if_init
+ *
+ *  Perform initialization of our slic interface.
+ *
+ */
+static int slic_if_init(struct adapter *adapter)
+{
+	struct sliccard *card = adapter->card;
+	struct net_device *dev = adapter->netdev;
+	__iomem struct slic_regs *slic_regs = adapter->slic_regs;
+	struct slic_shmem *pshmem;
+	int status = 0;
+
+	ASSERT(card);
+	DBG_MSG("slicoss: %s (%s) ENTER states[%d:%d:%d:%d] flags[%x]\n",
+		__func__, adapter->netdev->name,
+		adapter->queues_initialized, adapter->state, adapter->linkstate,
+		card->state, dev->flags);
+
+	/* adapter should be down at this point */
+	if (adapter->state != ADAPT_DOWN) {
+		DBG_ERROR("slic_if_init adapter->state != ADAPT_DOWN\n");
+		return -EIO;
+	}
+	ASSERT(adapter->linkstate == LINK_DOWN);
+
+	adapter->devflags_prev = dev->flags;
+	adapter->macopts = MAC_DIRECTED;
+	if (dev->flags) {
+		DBG_MSG("slicoss: %s (%s) Set MAC options: ", __func__,
+			adapter->netdev->name);
+		if (dev->flags & IFF_BROADCAST) {
+			adapter->macopts |= MAC_BCAST;
+			DBG_MSG("BCAST ");
+		}
+		if (dev->flags & IFF_PROMISC) {
+			adapter->macopts |= MAC_PROMISC;
+			DBG_MSG("PROMISC ");
+		}
+		if (dev->flags & IFF_ALLMULTI) {
+			adapter->macopts |= MAC_ALLMCAST;
+			DBG_MSG("ALL_MCAST ");
+		}
+		if (dev->flags & IFF_MULTICAST) {
+			adapter->macopts |= MAC_MCAST;
+			DBG_MSG("MCAST ");
+		}
+		DBG_MSG("\n");
+	}
+	status = slic_adapter_allocresources(adapter);
+	if (status != STATUS_SUCCESS) {
+		DBG_ERROR
+		    ("slic_if_init: slic_adapter_allocresources FAILED %x\n",
+		     status);
+		slic_adapter_freeresources(adapter);
+		return status;
+	}
+
+	if (!adapter->queues_initialized) {
+		DBG_MSG("slicoss: %s call slic_rspqueue_init\n", __func__);
+		if (slic_rspqueue_init(adapter))
+			return -ENOMEM;
+		DBG_MSG
+		    ("slicoss: %s call slic_cmdq_init adapter[%p] port %d \n",
+		     __func__, adapter, adapter->port);
+		if (slic_cmdq_init(adapter))
+			return -ENOMEM;
+		DBG_MSG
+		    ("slicoss: %s call slic_rcvqueue_init adapter[%p] \
+		     port %d \n", __func__, adapter, adapter->port);
+		if (slic_rcvqueue_init(adapter))
+			return -ENOMEM;
+		adapter->queues_initialized = 1;
+	}
+	DBG_MSG("slicoss: %s disable interrupts(slic)\n", __func__);
+
+	WRITE_REG(slic_regs->slic_icr, ICR_INT_OFF, FLUSH);
+	mdelay(1);
+
+	if (!adapter->isp_initialized) {
+		pshmem = (struct slic_shmem *)adapter->phys_shmem;
+
+		spin_lock_irqsave(&adapter->bit64reglock.lock,
+					adapter->bit64reglock.flags);
+
+#if defined(CONFIG_X86_64)
+		WRITE_REG(slic_regs->slic_addr_upper,
+			  SLIC_GET_ADDR_HIGH(&pshmem->isr), DONT_FLUSH);
+		WRITE_REG(slic_regs->slic_isp,
+			  SLIC_GET_ADDR_LOW(&pshmem->isr), FLUSH);
+#elif defined(CONFIG_X86)
+		WRITE_REG(slic_regs->slic_addr_upper, (u32) 0, DONT_FLUSH);
+		WRITE_REG(slic_regs->slic_isp, (u32) &pshmem->isr, FLUSH);
+#else
+		Stop Compilations
+#endif
+		spin_unlock_irqrestore(&adapter->bit64reglock.lock,
+					adapter->bit64reglock.flags);
+		adapter->isp_initialized = 1;
+	}
+
+	adapter->state = ADAPT_UP;
+	if (!card->loadtimerset) {
+		init_timer(&card->loadtimer);
+		card->loadtimer.expires =
+		    jiffies + SLIC_SECS_TO_JIFFS(SLIC_LOADTIMER_PERIOD);
+		card->loadtimer.data = (ulong) card;
+		card->loadtimer.function = &slic_timer_load_check;
+		add_timer(&card->loadtimer);
+
+		card->loadtimerset = 1;
+	}
+#if SLIC_GET_STATS_TIMER_ENABLED
+	if (!adapter->statstimerset) {
+		DBG_MSG("slicoss: %s start getstats_timer(slic)\n",
+			__func__);
+		init_timer(&adapter->statstimer);
+		adapter->statstimer.expires =
+		    jiffies + SLIC_SECS_TO_JIFFS(STATS_TIMER_INTERVAL);
+		adapter->statstimer.data = (ulong) adapter->netdev;
+		adapter->statstimer.function = &slic_timer_get_stats;
+		add_timer(&adapter->statstimer);
+		adapter->statstimerset = 1;
+	}
+#endif
+#if !SLIC_DUMP_ENABLED && SLIC_PING_TIMER_ENABLED
+/*#if SLIC_DUMP_ENABLED && SLIC_PING_TIMER_ENABLED*/
+	if (!adapter->pingtimerset) {
+		DBG_MSG("slicoss: %s start card_ping_timer(slic)\n",
+			__func__);
+		init_timer(&adapter->pingtimer);
+		adapter->pingtimer.expires =
+		    jiffies + SLIC_SECS_TO_JIFFS(PING_TIMER_INTERVAL);
+		adapter->pingtimer.data = (ulong) dev;
+		adapter->pingtimer.function = &slic_timer_ping;
+		add_timer(&adapter->pingtimer);
+		adapter->pingtimerset = 1;
+		adapter->card->pingstatus = ISR_PINGMASK;
+	}
+#endif
+
+	/*
+	 *    clear any pending events, then enable interrupts
+	 */
+	DBG_MSG("slicoss: %s ENABLE interrupts(slic)\n", __func__);
+	adapter->isrcopy = 0;
+	adapter->pshmem->isr = 0;
+	WRITE_REG(slic_regs->slic_isr, 0, FLUSH);
+	WRITE_REG(slic_regs->slic_icr, ICR_INT_ON, FLUSH);
+
+	DBG_MSG("slicoss: %s call slic_link_config(slic)\n", __func__);
+	slic_link_config(adapter, LINK_AUTOSPEED, LINK_AUTOD);
+	slic_link_event_handler(adapter);
+
+	DBG_MSG("slicoss: %s EXIT\n", __func__);
+	return STATUS_SUCCESS;
+}
+
+static void slic_unmap_mmio_space(struct adapter *adapter)
+{
+#if LINUX_FREES_ADAPTER_RESOURCES
+	if (adapter->slic_regs)
+		iounmap(adapter->slic_regs);
+	adapter->slic_regs = NULL;
+#endif
+}
+
+static int slic_adapter_allocresources(struct adapter *adapter)
+{
+	if (!adapter->intrregistered) {
+		int retval;
+
+		DBG_MSG
+		    ("slicoss: %s AllocAdaptRsrcs adapter[%p] shmem[%p] \
+		     phys_shmem[%p] dev->irq[%x] %x\n",
+		     __func__, adapter, adapter->pshmem,
+		     (void *)adapter->phys_shmem, adapter->netdev->irq,
+		     NR_IRQS);
+
+		spin_unlock_irqrestore(&slic_global.driver_lock.lock,
+					slic_global.driver_lock.flags);
+
+		retval = request_irq(adapter->netdev->irq,
+				     &slic_interrupt,
+				     IRQF_SHARED,
+				     adapter->netdev->name, adapter->netdev);
+
+		spin_lock_irqsave(&slic_global.driver_lock.lock,
+					slic_global.driver_lock.flags);
+
+		if (retval) {
+			DBG_ERROR("slicoss: request_irq (%s) FAILED [%x]\n",
+				  adapter->netdev->name, retval);
+			return retval;
+		}
+		adapter->intrregistered = 1;
+		DBG_MSG
+		    ("slicoss: %s AllocAdaptRsrcs adapter[%p] shmem[%p] \
+		     pshmem[%p] dev->irq[%x]\n",
+		     __func__, adapter, adapter->pshmem,
+		     (void *)adapter->pshmem, adapter->netdev->irq);
+	}
+	return STATUS_SUCCESS;
+}
+
+static void slic_config_pci(struct pci_dev *pcidev)
+{
+	u16 pci_command;
+	u16 new_command;
+
+	pci_read_config_word(pcidev, PCI_COMMAND, &pci_command);
+	DBG_MSG("slicoss: %s  PCI command[%4.4x]\n", __func__, pci_command);
+
+	new_command = pci_command | PCI_COMMAND_MASTER
+	    | PCI_COMMAND_MEMORY
+	    | PCI_COMMAND_INVALIDATE
+	    | PCI_COMMAND_PARITY | PCI_COMMAND_SERR | PCI_COMMAND_FAST_BACK;
+	if (pci_command != new_command) {
+		DBG_MSG("%s -- Updating PCI COMMAND register %4.4x->%4.4x.\n",
+			__func__, pci_command, new_command);
+		pci_write_config_word(pcidev, PCI_COMMAND, new_command);
+	}
+}
+
+static void slic_adapter_freeresources(struct adapter *adapter)
+{
+	DBG_MSG("slicoss: %s ENTER adapter[%p]\n", __func__, adapter);
+	slic_init_cleanup(adapter);
+	memset(&adapter->stats, 0, sizeof(struct net_device_stats));
+	adapter->error_interrupts = 0;
+	adapter->rcv_interrupts = 0;
+	adapter->xmit_interrupts = 0;
+	adapter->linkevent_interrupts = 0;
+	adapter->upr_interrupts = 0;
+	adapter->num_isrs = 0;
+	adapter->xmit_completes = 0;
+	adapter->rcv_broadcasts = 0;
+	adapter->rcv_multicasts = 0;
+	adapter->rcv_unicasts = 0;
+	DBG_MSG("slicoss: %s EXIT\n", __func__);
+}
+
+/*
+ *  slic_link_config
+ *
+ *  Write phy control to configure link duplex/speed
+ *
+ */
+static void slic_link_config(struct adapter *adapter,
+		      u32 linkspeed, u32 linkduplex)
+{
+	u32 speed;
+	u32 duplex;
+	u32 phy_config;
+	u32 phy_advreg;
+	u32 phy_gctlreg;
+
+	if (adapter->state != ADAPT_UP) {
+		DBG_MSG
+		    ("%s (%s) ADAPT Not up yet, Return! speed[%x] duplex[%x]\n",
+		     __func__, adapter->netdev->name, linkspeed,
+		     linkduplex);
+		return;
+	}
+	DBG_MSG("slicoss: %s (%s) slic_link_config: speed[%x] duplex[%x]\n",
+		__func__, adapter->netdev->name, linkspeed, linkduplex);
+
+	ASSERT((adapter->devid == SLIC_1GB_DEVICE_ID)
+	       || (adapter->devid == SLIC_2GB_DEVICE_ID));
+
+	if (linkspeed > LINK_1000MB)
+		linkspeed = LINK_AUTOSPEED;
+	if (linkduplex > LINK_AUTOD)
+		linkduplex = LINK_AUTOD;
+
+	if ((linkspeed == LINK_AUTOSPEED) || (linkspeed == LINK_1000MB)) {
+		if (adapter->flags & ADAPT_FLAGS_FIBERMEDIA) {
+			/*  We've got a fiber gigabit interface, and register
+			 *  4 is different in fiber mode than in copper mode
+			 */
+
+			/* advertise FD only @1000 Mb */
+			phy_advreg = (MIICR_REG_4 | (PAR_ADV1000XFD));
+			/* enable PAUSE frames        */
+			phy_advreg |= PAR_ASYMPAUSE_FIBER;
+			WRITE_REG(adapter->slic_regs->slic_wphy, phy_advreg,
+				  FLUSH);
+
+			if (linkspeed == LINK_AUTOSPEED) {
+				/* reset phy, enable auto-neg  */
+				phy_config =
+				    (MIICR_REG_PCR |
+				     (PCR_RESET | PCR_AUTONEG |
+				      PCR_AUTONEG_RST));
+				WRITE_REG(adapter->slic_regs->slic_wphy,
+					  phy_config, FLUSH);
+			} else {	/* forced 1000 Mb FD*/
+				/* power down phy to break link
+				   this may not work) */
+				phy_config = (MIICR_REG_PCR | PCR_POWERDOWN);
+				WRITE_REG(adapter->slic_regs->slic_wphy,
+					  phy_config, FLUSH);
+				/* wait, Marvell says 1 sec,
+				   try to get away with 10 ms  */
+				mdelay(10);
+
+				/* disable auto-neg, set speed/duplex,
+				   soft reset phy, powerup */
+				phy_config =
+				    (MIICR_REG_PCR |
+				     (PCR_RESET | PCR_SPEED_1000 |
+				      PCR_DUPLEX_FULL));
+				WRITE_REG(adapter->slic_regs->slic_wphy,
+					  phy_config, FLUSH);
+			}
+		} else {	/* copper gigabit */
+
+			/* Auto-Negotiate or 1000 Mb must be auto negotiated
+			 * We've got a copper gigabit interface, and
+			 * register 4 is different in copper mode than
+			 * in fiber mode
+			 */
+			if (linkspeed == LINK_AUTOSPEED) {
+				/* advertise 10/100 Mb modes   */
+				phy_advreg =
+				    (MIICR_REG_4 |
+				     (PAR_ADV100FD | PAR_ADV100HD | PAR_ADV10FD
+				      | PAR_ADV10HD));
+			} else {
+			/* linkspeed == LINK_1000MB -
+			   don't advertise 10/100 Mb modes  */
+				phy_advreg = MIICR_REG_4;
+			}
+			/* enable PAUSE frames  */
+			phy_advreg |= PAR_ASYMPAUSE;
+			/* required by the Cicada PHY  */
+			phy_advreg |= PAR_802_3;
+			WRITE_REG(adapter->slic_regs->slic_wphy, phy_advreg,
+				  FLUSH);
+			/* advertise FD only @1000 Mb  */
+			phy_gctlreg = (MIICR_REG_9 | (PGC_ADV1000FD));
+			WRITE_REG(adapter->slic_regs->slic_wphy, phy_gctlreg,
+				  FLUSH);
+
+			if (adapter->subsysid != SLIC_1GB_CICADA_SUBSYS_ID) {
+				/* if a Marvell PHY
+				   enable auto crossover */
+				phy_config =
+				    (MIICR_REG_16 | (MRV_REG16_XOVERON));
+				WRITE_REG(adapter->slic_regs->slic_wphy,
+					  phy_config, FLUSH);
+
+				/* reset phy, enable auto-neg  */
+				phy_config =
+				    (MIICR_REG_PCR |
+				     (PCR_RESET | PCR_AUTONEG |
+				      PCR_AUTONEG_RST));
+				WRITE_REG(adapter->slic_regs->slic_wphy,
+					  phy_config, FLUSH);
+			} else {	/* it's a Cicada PHY  */
+				/* enable and restart auto-neg (don't reset)  */
+				phy_config =
+				    (MIICR_REG_PCR |
+				     (PCR_AUTONEG | PCR_AUTONEG_RST));
+				WRITE_REG(adapter->slic_regs->slic_wphy,
+					  phy_config, FLUSH);
+			}
+		}
+	} else {
+		/* Forced 10/100  */
+		if (linkspeed == LINK_10MB)
+			speed = 0;
+		else
+			speed = PCR_SPEED_100;
+		if (linkduplex == LINK_HALFD)
+			duplex = 0;
+		else
+			duplex = PCR_DUPLEX_FULL;
+
+		if (adapter->subsysid != SLIC_1GB_CICADA_SUBSYS_ID) {
+			/* if a Marvell PHY
+			   disable auto crossover  */
+			phy_config = (MIICR_REG_16 | (MRV_REG16_XOVEROFF));
+			WRITE_REG(adapter->slic_regs->slic_wphy, phy_config,
+				  FLUSH);
+		}
+
+		/* power down phy to break link (this may not work)  */
+		phy_config = (MIICR_REG_PCR | (PCR_POWERDOWN | speed | duplex));
+		WRITE_REG(adapter->slic_regs->slic_wphy, phy_config, FLUSH);
+
+		/* wait, Marvell says 1 sec, try to get away with 10 ms */
+		mdelay(10);
+
+		if (adapter->subsysid != SLIC_1GB_CICADA_SUBSYS_ID) {
+			/* if a Marvell PHY
+			   disable auto-neg, set speed,
+			   soft reset phy, powerup */
+			phy_config =
+			    (MIICR_REG_PCR | (PCR_RESET | speed | duplex));
+			WRITE_REG(adapter->slic_regs->slic_wphy, phy_config,
+				  FLUSH);
+		} else {	/* it's a Cicada PHY  */
+			/* disable auto-neg, set speed, powerup  */
+			phy_config = (MIICR_REG_PCR | (speed | duplex));
+			WRITE_REG(adapter->slic_regs->slic_wphy, phy_config,
+				  FLUSH);
+		}
+	}
+
+	DBG_MSG
+	    ("slicoss: %s (%s) EXIT slic_link_config : state[%d] \
+	    phy_config[%x]\n", __func__, adapter->netdev->name, adapter->state,
+	    phy_config);
+}
+
+static void slic_card_cleanup(struct sliccard *card)
+{
+	DBG_MSG("slicoss: %s ENTER\n", __func__);
+
+#if SLIC_DUMP_ENABLED
+	if (card->dumpbuffer) {
+		card->dumpbuffer_phys = 0;
+		card->dumpbuffer_physl = 0;
+		card->dumpbuffer_physh = 0;
+		kfree(card->dumpbuffer);
+		card->dumpbuffer = NULL;
+	}
+	if (card->cmdbuffer) {
+		card->cmdbuffer_phys = 0;
+		card->cmdbuffer_physl = 0;
+		card->cmdbuffer_physh = 0;
+		kfree(card->cmdbuffer);
+		card->cmdbuffer = NULL;
+	}
+#endif
+
+	if (card->loadtimerset) {
+		card->loadtimerset = 0;
+		del_timer(&card->loadtimer);
+	}
+
+	slic_debug_card_destroy(card);
+
+	kfree(card);
+	DBG_MSG("slicoss: %s EXIT\n", __func__);
+}
+
+static int slic_card_download_gbrcv(struct adapter *adapter)
+{
+	__iomem struct slic_regs *slic_regs = adapter->slic_regs;
+	u32 codeaddr;
+	unsigned char *instruction = NULL;
+	u32 rcvucodelen = 0;
+
+	switch (adapter->devid) {
+	case SLIC_2GB_DEVICE_ID:
+		instruction = (unsigned char *)&OasisRcvUCode[0];
+		rcvucodelen = OasisRcvUCodeLen;
+		break;
+	case SLIC_1GB_DEVICE_ID:
+		instruction = (unsigned char *)&GBRcvUCode[0];
+		rcvucodelen = GBRcvUCodeLen;
+		break;
+	default:
+		ASSERT(0);
+		break;
+	}
+
+	/* start download */
+	WRITE_REG(slic_regs->slic_rcv_wcs, SLIC_RCVWCS_BEGIN, FLUSH);
+
+	/* download the rcv sequencer ucode */
+	for (codeaddr = 0; codeaddr < rcvucodelen; codeaddr++) {
+		/* write out instruction address */
+		WRITE_REG(slic_regs->slic_rcv_wcs, codeaddr, FLUSH);
+
+		/* write out the instruction data low addr */
+		WRITE_REG(slic_regs->slic_rcv_wcs,
+			  (u32) *(u32 *) instruction, FLUSH);
+		instruction += 4;
+
+		/* write out the instruction data high addr */
+		WRITE_REG(slic_regs->slic_rcv_wcs, (u32) *instruction,
+			  FLUSH);
+		instruction += 1;
+	}
+
+	/* download finished */
+	WRITE_REG(slic_regs->slic_rcv_wcs, SLIC_RCVWCS_FINISH, FLUSH);
+
+	return 0;
+}
+
+static int slic_card_download(struct adapter *adapter)
+{
+	u32 section;
+	int thissectionsize;
+	int codeaddr;
+	__iomem struct slic_regs *slic_regs = adapter->slic_regs;
+	u32 *instruction = NULL;
+	u32 *lastinstruct = NULL;
+	u32 *startinstruct = NULL;
+	unsigned char *nextinstruct;
+	u32 baseaddress;
+	u32 failure;
+	u32 i;
+	u32 numsects = 0;
+	u32 sectsize[3];
+	u32 sectstart[3];
+
+/*      DBG_MSG ("slicoss: %s (%s) adapter[%p] card[%p] devid[%x] \
+	jiffies[%lx] cpu %d\n", __func__, adapter->netdev->name, adapter,
+	    adapter->card, adapter->devid,jiffies, smp_processor_id()); */
+
+	switch (adapter->devid) {
+	case SLIC_2GB_DEVICE_ID:
+/*      DBG_MSG ("slicoss: %s devid==SLIC_2GB_DEVICE_ID sections[%x]\n",
+	__func__, (uint) ONumSections); */
+		numsects = ONumSections;
+		for (i = 0; i < numsects; i++) {
+			sectsize[i] = OSectionSize[i];
+			sectstart[i] = OSectionStart[i];
+		}
+		break;
+	case SLIC_1GB_DEVICE_ID:
+/*              DBG_MSG ("slicoss: %s devid==SLIC_1GB_DEVICE_ID sections[%x]\n",
+		__func__, (uint) MNumSections); */
+		numsects = MNumSections;
+		for (i = 0; i < numsects; i++) {
+			sectsize[i] = MSectionSize[i];
+			sectstart[i] = MSectionStart[i];
+		}
+		break;
+	default:
+		ASSERT(0);
+		break;
+	}
+
+	ASSERT(numsects <= 3);
+
+	for (section = 0; section < numsects; section++) {
+		switch (adapter->devid) {
+		case SLIC_2GB_DEVICE_ID:
+			instruction = (u32 *) &OasisUCode[section][0];
+			baseaddress = sectstart[section];
+			thissectionsize = sectsize[section] >> 3;
+			lastinstruct =
+			    (u32 *) &OasisUCode[section][sectsize[section] -
+							     8];
+			break;
+		case SLIC_1GB_DEVICE_ID:
+			instruction = (u32 *) &MojaveUCode[section][0];
+			baseaddress = sectstart[section];
+			thissectionsize = sectsize[section] >> 3;
+			lastinstruct =
+			    (u32 *) &MojaveUCode[section][sectsize[section]
+							      - 8];
+			break;
+		default:
+			ASSERT(0);
+			break;
+		}
+
+		baseaddress = sectstart[section];
+		thissectionsize = sectsize[section] >> 3;
+
+		for (codeaddr = 0; codeaddr < thissectionsize; codeaddr++) {
+			startinstruct = instruction;
+			nextinstruct = ((unsigned char *)instruction) + 8;
+			/* Write out instruction address */
+			WRITE_REG(slic_regs->slic_wcs, baseaddress + codeaddr,
+				  FLUSH);
+			/* Write out instruction to low addr */
+			WRITE_REG(slic_regs->slic_wcs, *instruction, FLUSH);
+#ifdef CONFIG_X86_64
+			instruction = (u32 *)((unsigned char *)instruction + 4);
+#else
+			instruction++;
+#endif
+			/* Write out instruction to high addr */
+			WRITE_REG(slic_regs->slic_wcs, *instruction, FLUSH);
+#ifdef CONFIG_X86_64
+			instruction = (u32 *)((unsigned char *)instruction + 4);
+#else
+			instruction++;
+#endif
+		}
+	}
+
+	for (section = 0; section < numsects; section++) {
+		switch (adapter->devid) {
+		case SLIC_2GB_DEVICE_ID:
+			instruction = (u32 *)&OasisUCode[section][0];
+			break;
+		case SLIC_1GB_DEVICE_ID:
+			instruction = (u32 *)&MojaveUCode[section][0];
+			break;
+		default:
+			ASSERT(0);
+			break;
+		}
+
+		baseaddress = sectstart[section];
+		if (baseaddress < 0x8000)
+			continue;
+		thissectionsize = sectsize[section] >> 3;
+
+/*        DBG_MSG ("slicoss: COMPARE secton[%x] baseaddr[%x] sectnsize[%x]\n",
+		(uint)section,baseaddress,thissectionsize);*/
+
+		for (codeaddr = 0; codeaddr < thissectionsize; codeaddr++) {
+			/* Write out instruction address */
+			WRITE_REG(slic_regs->slic_wcs,
+				  SLIC_WCS_COMPARE | (baseaddress + codeaddr),
+				  FLUSH);
+			/* Write out instruction to low addr */
+			WRITE_REG(slic_regs->slic_wcs, *instruction, FLUSH);
+#ifdef CONFIG_X86_64
+			instruction = (u32 *)((unsigned char *)instruction + 4);
+#else
+			instruction++;
+#endif
+			/* Write out instruction to high addr */
+			WRITE_REG(slic_regs->slic_wcs, *instruction, FLUSH);
+#ifdef CONFIG_X86_64
+			instruction = (u32 *)((unsigned char *)instruction + 4);
+#else
+			instruction++;
+#endif
+			/* Check SRAM location zero. If it is non-zero. Abort.*/
+			failure = readl((u32 __iomem *)&slic_regs->slic_reset);
+			if (failure) {
+				DBG_MSG
+				    ("slicoss: %s FAILURE EXIT codeaddr[%x] \
+				    thissectionsize[%x] failure[%x]\n",
+				     __func__, codeaddr, thissectionsize,
+				     failure);
+
+				return -EIO;
+			}
+		}
+	}
+/*    DBG_MSG ("slicoss: Compare done\n");*/
+
+	/* Everything OK, kick off the card */
+	mdelay(10);
+	WRITE_REG(slic_regs->slic_wcs, SLIC_WCS_START, FLUSH);
+
+	/* stall for 20 ms, long enough for ucode to init card
+	   and reach mainloop */
+	mdelay(20);
+
+	DBG_MSG("slicoss: %s (%s) EXIT adapter[%p] card[%p]\n",
+		__func__, adapter->netdev->name, adapter, adapter->card);
+
+	return STATUS_SUCCESS;
+}
+
+static void slic_adapter_set_hwaddr(struct adapter *adapter)
+{
+	struct sliccard *card = adapter->card;
+
+/*  DBG_MSG ("%s ENTER card->config_set[%x] port[%d] physport[%d] funct#[%d]\n",
+    __func__, card->config_set, adapter->port, adapter->physport,
+    adapter->functionnumber);
+
+    slic_dbg_macaddrs(adapter); */
+
+	if ((adapter->card) && (card->config_set)) {
+		memcpy(adapter->macaddr,
+		       card->config.MacInfo[adapter->functionnumber].macaddrA,
+		       sizeof(struct slic_config_mac));
+/*      DBG_MSG ("%s AFTER copying from config.macinfo into currmacaddr\n",
+	__func__);
+	slic_dbg_macaddrs(adapter);*/
+		if (!(adapter->currmacaddr[0] || adapter->currmacaddr[1] ||
+		      adapter->currmacaddr[2] || adapter->currmacaddr[3] ||
+		      adapter->currmacaddr[4] || adapter->currmacaddr[5])) {
+			memcpy(adapter->currmacaddr, adapter->macaddr, 6);
+		}
+		if (adapter->netdev) {
+			memcpy(adapter->netdev->dev_addr, adapter->currmacaddr,
+			       6);
+		}
+	}
+/*  DBG_MSG ("%s EXIT port %d\n", __func__, adapter->port);
+    slic_dbg_macaddrs(adapter); */
+}
+
+static void slic_intagg_set(struct adapter *adapter, u32 value)
+{
+	__iomem struct slic_regs *slic_regs = adapter->slic_regs;
+
+	WRITE_REG(slic_regs->slic_intagg, value, FLUSH);
+	adapter->card->loadlevel_current = value;
+}
+
+static int slic_card_init(struct sliccard *card, struct adapter *adapter)
+{
+	__iomem struct slic_regs *slic_regs = adapter->slic_regs;
+	struct slic_eeprom *peeprom;
+	struct oslic_eeprom *pOeeprom;
+	dma_addr_t phys_config;
+	u32 phys_configh;
+	u32 phys_configl;
+	u32 i = 0;
+	struct slic_shmem *pshmem;
+	int status;
+	uint macaddrs = card->card_size;
+	ushort eecodesize;
+	ushort dramsize;
+	ushort ee_chksum;
+	ushort calc_chksum;
+	struct slic_config_mac *pmac;
+	unsigned char fruformat;
+	unsigned char oemfruformat;
+	struct atk_fru *patkfru;
+	union oemfru *poemfru;
+
+	DBG_MSG
+	    ("slicoss: %s ENTER card[%p] adapter[%p] card->state[%x] \
+	    size[%d]\n", __func__, card, adapter, card->state, card->card_size);
+
+	/* Reset everything except PCI configuration space */
+	slic_soft_reset(adapter);
+
+	/* Download the microcode */
+	status = slic_card_download(adapter);
+
+	if (status != STATUS_SUCCESS) {
+		DBG_ERROR("SLIC download failed bus %d slot %d\n",
+			  (uint) adapter->busnumber,
+			  (uint) adapter->slotnumber);
+		return status;
+	}
+
+	if (!card->config_set) {
+		peeprom = pci_alloc_consistent(adapter->pcidev,
+					       sizeof(struct slic_eeprom),
+					       &phys_config);
+
+		phys_configl = SLIC_GET_ADDR_LOW(phys_config);
+		phys_configh = SLIC_GET_ADDR_HIGH(phys_config);
+
+		DBG_MSG("slicoss: %s Eeprom info  adapter [%p]\n    "
+			"size        [%x]\n    peeprom     [%p]\n    "
+			"phys_config [%p]\n    phys_configl[%x]\n    "
+			"phys_configh[%x]\n",
+			__func__, adapter,
+			(u32)sizeof(struct slic_eeprom),
+			peeprom, (void *) phys_config, phys_configl,
+			phys_configh);
+		if (!peeprom) {
+			DBG_ERROR
+			    ("SLIC eeprom read failed to get memory bus %d \
+			    slot %d\n",
+			     (uint) adapter->busnumber,
+			     (uint) adapter->slotnumber);
+			return -ENOMEM;
+		} else {
+			memset(peeprom, 0, sizeof(struct slic_eeprom));
+		}
+		WRITE_REG(slic_regs->slic_icr, ICR_INT_OFF, FLUSH);
+		mdelay(1);
+		pshmem = (struct slic_shmem *)adapter->phys_shmem;
+
+		spin_lock_irqsave(&adapter->bit64reglock.lock,
+					adapter->bit64reglock.flags);
+		WRITE_REG(slic_regs->slic_addr_upper, 0, DONT_FLUSH);
+		WRITE_REG(slic_regs->slic_isp,
+			  SLIC_GET_ADDR_LOW(&pshmem->isr), FLUSH);
+		spin_unlock_irqrestore(&adapter->bit64reglock.lock,
+					adapter->bit64reglock.flags);
+
+		slic_config_get(adapter, phys_configl, phys_configh);
+
+		for (;;) {
+			if (adapter->pshmem->isr) {
+				DBG_MSG("%s shmem[%p] shmem->isr[%x]\n",
+					__func__, adapter->pshmem,
+					adapter->pshmem->isr);
+
+				if (adapter->pshmem->isr & ISR_UPC) {
+					adapter->pshmem->isr = 0;
+					WRITE_REG64(adapter,
+						    slic_regs->slic_isp,
+						    0,
+						    slic_regs->slic_addr_upper,
+						    0, FLUSH);
+					WRITE_REG(slic_regs->slic_isr, 0,
+						  FLUSH);
+
+					slic_upr_request_complete(adapter, 0);
+					break;
+				} else {
+					adapter->pshmem->isr = 0;
+					WRITE_REG(slic_regs->slic_isr, 0,
+						  FLUSH);
+				}
+			} else {
+				mdelay(1);
+				i++;
+				if (i > 5000) {
+					DBG_ERROR
+					    ("SLIC: %d config data fetch timed\
+					      out!\n", adapter->port);
+					DBG_MSG("%s shmem[%p] shmem->isr[%x]\n",
+						__func__, adapter->pshmem,
+						adapter->pshmem->isr);
+					WRITE_REG64(adapter,
+						    slic_regs->slic_isp, 0,
+						    slic_regs->slic_addr_upper,
+						    0, FLUSH);
+					return -EINVAL;
+				}
+			}
+		}
+
+		switch (adapter->devid) {
+		/* Oasis card */
+		case SLIC_2GB_DEVICE_ID:
+			/* extract EEPROM data and pointers to EEPROM data */
+			pOeeprom = (struct oslic_eeprom *) peeprom;
+			eecodesize = pOeeprom->EecodeSize;
+			dramsize = pOeeprom->DramSize;
+			pmac = pOeeprom->MacInfo;
+			fruformat = pOeeprom->FruFormat;
+			patkfru = &pOeeprom->AtkFru;
+			oemfruformat = pOeeprom->OemFruFormat;
+			poemfru = &pOeeprom->OemFru;
+			macaddrs = 2;
+			/* Minor kludge for Oasis card
+			     get 2 MAC addresses from the
+			     EEPROM to ensure that function 1
+			     gets the Port 1 MAC address */
+			break;
+		default:
+			/* extract EEPROM data and pointers to EEPROM data */
+			eecodesize = peeprom->EecodeSize;
+			dramsize = peeprom->DramSize;
+			pmac = peeprom->u2.mac.MacInfo;
+			fruformat = peeprom->FruFormat;
+			patkfru = &peeprom->AtkFru;
+			oemfruformat = peeprom->OemFruFormat;
+			poemfru = &peeprom->OemFru;
+			break;
+		}
+
+		card->config.EepromValid = FALSE;
+
+		/*  see if the EEPROM is valid by checking it's checksum */
+		if ((eecodesize <= MAX_EECODE_SIZE) &&
+		    (eecodesize >= MIN_EECODE_SIZE)) {
+
+			ee_chksum =
+			    *(u16 *) ((char *) peeprom + (eecodesize - 2));
+			/*
+			    calculate the EEPROM checksum
+			*/
+			calc_chksum =
+			    ~slic_eeprom_cksum((char *) peeprom,
+					       (eecodesize - 2));
+			/*
+			    if the ucdoe chksum flag bit worked,
+			    we wouldn't need this shit
+			*/
+			if (ee_chksum == calc_chksum)
+				card->config.EepromValid = TRUE;
+		}
+		/*  copy in the DRAM size */
+		card->config.DramSize = dramsize;
+
+		/*  copy in the MAC address(es) */
+		for (i = 0; i < macaddrs; i++) {
+			memcpy(&card->config.MacInfo[i],
+			       &pmac[i], sizeof(struct slic_config_mac));
+		}
+/*      DBG_MSG ("%s EEPROM Checksum Good? %d  MacAddress\n",__func__,
+		card->config.EepromValid); */
+
+		/*  copy the Alacritech FRU information */
+		card->config.FruFormat = fruformat;
+		memcpy(&card->config.AtkFru, patkfru,
+						sizeof(struct atk_fru));
+
+		pci_free_consistent(adapter->pcidev,
+				    sizeof(struct slic_eeprom),
+				    peeprom, phys_config);
+		DBG_MSG
+		    ("slicoss: %s adapter%d [%p] size[%x] FREE peeprom[%p] \
+		     phys_config[%p]\n",
+		     __func__, adapter->port, adapter,
+		     (u32) sizeof(struct slic_eeprom), peeprom,
+		     (void *) phys_config);
+
+		if ((!card->config.EepromValid) &&
+		    (adapter->reg_params.fail_on_bad_eeprom)) {
+			WRITE_REG64(adapter,
+				    slic_regs->slic_isp,
+				    0, slic_regs->slic_addr_upper, 0, FLUSH);
+			DBG_ERROR
+			    ("unsupported CONFIGURATION  EEPROM invalid\n");
+			return -EINVAL;
+		}
+
+		card->config_set = 1;
+	}
+
+	if (slic_card_download_gbrcv(adapter)) {
+		DBG_ERROR("%s unable to download GB receive microcode\n",
+			  __func__);
+		return -EINVAL;
+	}
+
+	if (slic_global.dynamic_intagg) {
+		DBG_MSG
+		    ("Dynamic Interrupt Aggregation[ENABLED]: slic%d \
+		     SET intagg to %d\n",
+		     card->cardnum, 0);
+		slic_intagg_set(adapter, 0);
+	} else {
+		slic_intagg_set(adapter, intagg_delay);
+		DBG_MSG
+		    ("Dynamic Interrupt Aggregation[DISABLED]: slic%d \
+		     SET intagg to %d\n",
+		     card->cardnum, intagg_delay);
+	}
+
+	/*
+	 *  Initialize ping status to "ok"
+	 */
+	card->pingstatus = ISR_PINGMASK;
+
+#if SLIC_DUMP_ENABLED
+	if (!card->dumpbuffer) {
+		card->dumpbuffer = kmalloc(DUMP_PAGE_SIZE, GFP_ATOMIC);
+
+		ASSERT(card->dumpbuffer);
+		if (card->dumpbuffer == NULL)
+			return -ENOMEM;
+	}
+	/*
+	 *  Smear the shared memory structure and then obtain
+	 *  the PHYSICAL address of this structure
+	 */
+	memset(card->dumpbuffer, 0, DUMP_PAGE_SIZE);
+	card->dumpbuffer_phys = virt_to_bus(card->dumpbuffer);
+	card->dumpbuffer_physh = SLIC_GET_ADDR_HIGH(card->dumpbuffer_phys);
+	card->dumpbuffer_physl = SLIC_GET_ADDR_LOW(card->dumpbuffer_phys);
+
+	/*
+	 *  Allocate COMMAND BUFFER
+	 */
+	if (!card->cmdbuffer) {
+		card->cmdbuffer = kmalloc(sizeof(struct dump_cmd), GFP_ATOMIC);
+
+		ASSERT(card->cmdbuffer);
+		if (card->cmdbuffer == NULL)
+			return -ENOMEM;
+	}
+	/*
+	 *  Smear the shared memory structure and then obtain
+	 *  the PHYSICAL address of this structure
+	 */
+	memset(card->cmdbuffer, 0, sizeof(struct dump_cmd));
+	card->cmdbuffer_phys = virt_to_bus(card->cmdbuffer);
+	card->cmdbuffer_physh = SLIC_GET_ADDR_HIGH(card->cmdbuffer_phys);
+	card->cmdbuffer_physl = SLIC_GET_ADDR_LOW(card->cmdbuffer_phys);
+#endif
+
+	/*
+	 * Lastly, mark our card state as up and return success
+	 */
+	card->state = CARD_UP;
+	card->reset_in_progress = 0;
+	DBG_MSG("slicoss: %s EXIT card[%p] adapter[%p] card->state[%x]\n",
+		__func__, card, adapter, card->state);
+
+	return STATUS_SUCCESS;
+}
+
+static u32 slic_card_locate(struct adapter *adapter)
+{
+	struct sliccard *card = slic_global.slic_card;
+	struct physcard *physcard = slic_global.phys_card;
+	ushort card_hostid;
+	u16 __iomem *hostid_reg;
+	uint i;
+	uint rdhostid_offset = 0;
+
+	DBG_MSG("slicoss: %s adapter[%p] slot[%x] bus[%x] port[%x]\n",
+		__func__, adapter, adapter->slotnumber, adapter->busnumber,
+		adapter->port);
+
+	switch (adapter->devid) {
+	case SLIC_2GB_DEVICE_ID:
+		rdhostid_offset = SLIC_RDHOSTID_2GB;
+		break;
+	case SLIC_1GB_DEVICE_ID:
+		rdhostid_offset = SLIC_RDHOSTID_1GB;
+		break;
+	default:
+		ASSERT(0);
+		break;
+	}
+
+	hostid_reg =
+	    (u16 __iomem *) (((u8 __iomem *) (adapter->slic_regs)) +
+	    rdhostid_offset);
+	DBG_MSG("slicoss: %s *hostid_reg[%p] == ", __func__, hostid_reg);
+
+	/* read the 16 bit hostid from SRAM */
+	card_hostid = (ushort) readw(hostid_reg);
+	DBG_MSG(" card_hostid[%x]\n", card_hostid);
+
+	/* Initialize a new card structure if need be */
+	if (card_hostid == SLIC_HOSTID_DEFAULT) {
+		card = kzalloc(sizeof(struct sliccard), GFP_KERNEL);
+		if (card == NULL)
+			return -ENOMEM;
+
+		card->next = slic_global.slic_card;
+		slic_global.slic_card = card;
+#if DBG
+		if (adapter->devid == SLIC_2GB_DEVICE_ID) {
+			DBG_MSG
+			    ("SLICOSS ==> Initialize 2 Port Gigabit Server \
+			     and Storage Accelerator\n");
+		} else {
+			DBG_MSG
+			    ("SLICOSS ==> Initialize 1 Port Gigabit Server \
+			     and Storage Accelerator\n");
+		}
+#endif
+		card->busnumber = adapter->busnumber;
+		card->slotnumber = adapter->slotnumber;
+
+		/* Find an available cardnum */
+		for (i = 0; i < SLIC_MAX_CARDS; i++) {
+			if (slic_global.cardnuminuse[i] == 0) {
+				slic_global.cardnuminuse[i] = 1;
+				card->cardnum = i;
+				break;
+			}
+		}
+		slic_global.num_slic_cards++;
+		DBG_MSG("\nCARDNUM == %d  Total %d  Card[%p]\n\n",
+			card->cardnum, slic_global.num_slic_cards, card);
+
+		slic_debug_card_create(card);
+	} else {
+		DBG_MSG
+		    ("slicoss: %s CARD already allocated, find the \
+		     correct card\n", __func__);
+		/* Card exists, find the card this adapter belongs to */
+		while (card) {
+			DBG_MSG
+			    ("slicoss: %s card[%p] slot[%x] bus[%x] \
+			      adaptport[%p] hostid[%x] cardnum[%x]\n",
+			     __func__, card, card->slotnumber,
+			     card->busnumber, card->adapter[adapter->port],
+			     card_hostid, card->cardnum);
+
+			if (card->cardnum == card_hostid)
+				break;
+			card = card->next;
+		}
+	}
+
+	ASSERT(card);
+	if (!card)
+		return STATUS_FAILURE;
+	/* Put the adapter in the card's adapter list */
+	ASSERT(card->adapter[adapter->port] == NULL);
+	if (!card->adapter[adapter->port]) {
+		card->adapter[adapter->port] = adapter;
+		adapter->card = card;
+	}
+
+	card->card_size = 1;	/* one port per *logical* card */
+
+	while (physcard) {
+		for (i = 0; i < SLIC_MAX_PORTS; i++) {
+			if (!physcard->adapter[i])
+				continue;
+			else
+				break;
+		}
+		ASSERT(i != SLIC_MAX_PORTS);
+		if (physcard->adapter[i]->slotnumber == adapter->slotnumber)
+			break;
+		physcard = physcard->next;
+	}
+	if (!physcard) {
+		/* no structure allocated for this physical card yet */
+		physcard = kmalloc(sizeof(struct physcard *), GFP_ATOMIC);
+		ASSERT(physcard);
+		memset(physcard, 0, sizeof(struct physcard *));
+
+		DBG_MSG
+		    ("\n%s Allocate a PHYSICALcard:\n    PHYSICAL_Card[%p]\n\
+		     LogicalCard  [%p]\n    adapter      [%p]\n",
+		     __func__, physcard, card, adapter);
+
+		physcard->next = slic_global.phys_card;
+		slic_global.phys_card = physcard;
+		physcard->adapters_allocd = 1;
+	} else {
+		physcard->adapters_allocd++;
+	}
+	/* Note - this is ZERO relative */
+	adapter->physport = physcard->adapters_allocd - 1;
+
+	ASSERT(physcard->adapter[adapter->physport] == NULL);
+	physcard->adapter[adapter->physport] = adapter;
+	adapter->physcard = physcard;
+	DBG_MSG("    PHYSICAL_Port %d    Logical_Port  %d\n", adapter->physport,
+		adapter->port);
+
+	return 0;
+}
+
+static void slic_soft_reset(struct adapter *adapter)
+{
+	if (adapter->card->state == CARD_UP) {
+		DBG_MSG("slicoss: %s QUIESCE adapter[%p] card[%p] devid[%x]\n",
+			__func__, adapter, adapter->card, adapter->devid);
+		WRITE_REG(adapter->slic_regs->slic_quiesce, 0, FLUSH);
+		mdelay(1);
+	}
+/*      DBG_MSG ("slicoss: %s (%s) adapter[%p] card[%p] devid[%x]\n",
+	__func__, adapter->netdev->name, adapter, adapter->card,
+	   adapter->devid); */
+
+	WRITE_REG(adapter->slic_regs->slic_reset, SLIC_RESET_MAGIC, FLUSH);
+	mdelay(1);
+}
+
+static void slic_config_set(struct adapter *adapter, bool linkchange)
+{
+	u32 value;
+	u32 RcrReset;
+	__iomem struct slic_regs *slic_regs = adapter->slic_regs;
+
+	DBG_MSG("slicoss: %s (%s) slic_interface_enable[%p](%d)\n",
+		__func__, adapter->netdev->name, adapter,
+		adapter->cardindex);
+
+	if (linkchange) {
+		/* Setup MAC */
+		slic_mac_config(adapter);
+		RcrReset = GRCR_RESET;
+	} else {
+		slic_mac_address_config(adapter);
+		RcrReset = 0;
+	}
+
+	if (adapter->linkduplex == LINK_FULLD) {
+		/* setup xmtcfg */
+		value = (GXCR_RESET |	/* Always reset     */
+			 GXCR_XMTEN |	/* Enable transmit  */
+			 GXCR_PAUSEEN);	/* Enable pause     */
+
+		DBG_MSG("slicoss: FDX adapt[%p] set xmtcfg to [%x]\n", adapter,
+			value);
+		WRITE_REG(slic_regs->slic_wxcfg, value, FLUSH);
+
+		/* Setup rcvcfg last */
+		value = (RcrReset |	/* Reset, if linkchange */
+			 GRCR_CTLEN |	/* Enable CTL frames    */
+			 GRCR_ADDRAEN |	/* Address A enable     */
+			 GRCR_RCVBAD |	/* Rcv bad frames       */
+			 (GRCR_HASHSIZE << GRCR_HASHSIZE_SHIFT));
+	} else {
+		/* setup xmtcfg */
+		value = (GXCR_RESET |	/* Always reset     */
+			 GXCR_XMTEN);	/* Enable transmit  */
+
+		DBG_MSG("slicoss: HDX adapt[%p] set xmtcfg to [%x]\n", adapter,
+			value);
+		WRITE_REG(slic_regs->slic_wxcfg, value, FLUSH);
+
+		/* Setup rcvcfg last */
+		value = (RcrReset |	/* Reset, if linkchange */
+			 GRCR_ADDRAEN |	/* Address A enable     */
+			 GRCR_RCVBAD |	/* Rcv bad frames       */
+			 (GRCR_HASHSIZE << GRCR_HASHSIZE_SHIFT));
+	}
+
+	if (adapter->state != ADAPT_DOWN) {
+		/* Only enable receive if we are restarting or running */
+		value |= GRCR_RCVEN;
+	}
+
+	if (adapter->macopts & MAC_PROMISC)
+		value |= GRCR_RCVALL;
+
+	DBG_MSG("slicoss: adapt[%p] set rcvcfg to [%x]\n", adapter, value);
+	WRITE_REG(slic_regs->slic_wrcfg, value, FLUSH);
+}
+
+/*
+ *  Turn off RCV and XMT, power down PHY
+ */
+static void slic_config_clear(struct adapter *adapter)
+{
+	u32 value;
+	u32 phy_config;
+	__iomem struct slic_regs *slic_regs = adapter->slic_regs;
+
+	/* Setup xmtcfg */
+	value = (GXCR_RESET |	/* Always reset */
+		 GXCR_PAUSEEN);	/* Enable pause */
+
+	WRITE_REG(slic_regs->slic_wxcfg, value, FLUSH);
+
+	value = (GRCR_RESET |	/* Always reset      */
+		 GRCR_CTLEN |	/* Enable CTL frames */
+		 GRCR_ADDRAEN |	/* Address A enable  */
+		 (GRCR_HASHSIZE << GRCR_HASHSIZE_SHIFT));
+
+	WRITE_REG(slic_regs->slic_wrcfg, value, FLUSH);
+
+	/* power down phy */
+	phy_config = (MIICR_REG_PCR | (PCR_POWERDOWN));
+	WRITE_REG(slic_regs->slic_wphy, phy_config, FLUSH);
+}
+
+static void slic_config_get(struct adapter *adapter, u32 config,
+							u32 config_h)
+{
+	int status;
+
+	status = slic_upr_request(adapter,
+				  SLIC_UPR_RCONFIG,
+				  (u32) config, (u32) config_h, 0, 0);
+	ASSERT(status == 0);
+}
+
+static void slic_mac_address_config(struct adapter *adapter)
+{
+	u32 value;
+	u32 value2;
+	__iomem struct slic_regs *slic_regs = adapter->slic_regs;
+
+	value = *(u32 *) &adapter->currmacaddr[2];
+	value = ntohl(value);
+	WRITE_REG(slic_regs->slic_wraddral, value, FLUSH);
+	WRITE_REG(slic_regs->slic_wraddrbl, value, FLUSH);
+
+	value2 = (u32) ((adapter->currmacaddr[0] << 8 |
+			     adapter->currmacaddr[1]) & 0xFFFF);
+
+	WRITE_REG(slic_regs->slic_wraddrah, value2, FLUSH);
+	WRITE_REG(slic_regs->slic_wraddrbh, value2, FLUSH);
+
+	DBG_MSG("%s value1[%x] value2[%x] Call slic_mcast_set_mask\n",
+		__func__, value, value2);
+	slic_dbg_macaddrs(adapter);
+
+	/* Write our multicast mask out to the card.  This is done */
+	/* here in addition to the slic_mcast_addr_set routine     */
+	/* because ALL_MCAST may have been enabled or disabled     */
+	slic_mcast_set_mask(adapter);
+}
+
+static void slic_mac_config(struct adapter *adapter)
+{
+	u32 value;
+	__iomem struct slic_regs *slic_regs = adapter->slic_regs;
+
+	/* Setup GMAC gaps */
+	if (adapter->linkspeed == LINK_1000MB) {
+		value = ((GMCR_GAPBB_1000 << GMCR_GAPBB_SHIFT) |
+			 (GMCR_GAPR1_1000 << GMCR_GAPR1_SHIFT) |
+			 (GMCR_GAPR2_1000 << GMCR_GAPR2_SHIFT));
+	} else {
+		value = ((GMCR_GAPBB_100 << GMCR_GAPBB_SHIFT) |
+			 (GMCR_GAPR1_100 << GMCR_GAPR1_SHIFT) |
+			 (GMCR_GAPR2_100 << GMCR_GAPR2_SHIFT));
+	}
+
+	/* enable GMII */
+	if (adapter->linkspeed == LINK_1000MB)
+		value |= GMCR_GBIT;
+
+	/* enable fullduplex */
+	if ((adapter->linkduplex == LINK_FULLD)
+	    || (adapter->macopts & MAC_LOOPBACK)) {
+		value |= GMCR_FULLD;
+	}
+
+	/* write mac config */
+	WRITE_REG(slic_regs->slic_wmcfg, value, FLUSH);
+
+	/* setup mac addresses */
+	slic_mac_address_config(adapter);
+}
+
+static bool slic_mac_filter(struct adapter *adapter,
+			struct ether_header *ether_frame)
+{
+	u32 opts = adapter->macopts;
+	u32 *dhost4 = (u32 *)&ether_frame->ether_dhost[0];
+	u16 *dhost2 = (u16 *)&ether_frame->ether_dhost[4];
+	bool equaladdr;
+
+	if (opts & MAC_PROMISC) {
+		DBG_MSG("slicoss: %s (%s) PROMISCUOUS. Accept frame\n",
+			__func__, adapter->netdev->name);
+		return TRUE;
+	}
+
+	if ((*dhost4 == 0xFFFFFFFF) && (*dhost2 == 0xFFFF)) {
+		if (opts & MAC_BCAST) {
+			adapter->rcv_broadcasts++;
+			return TRUE;
+		} else {
+			return FALSE;
+		}
+	}
+
+	if (ether_frame->ether_dhost[0] & 0x01) {
+		if (opts & MAC_ALLMCAST) {
+			adapter->rcv_multicasts++;
+			adapter->stats.multicast++;
+			return TRUE;
+		}
+		if (opts & MAC_MCAST) {
+			struct mcast_address *mcaddr = adapter->mcastaddrs;
+
+			while (mcaddr) {
+				ETHER_EQ_ADDR(mcaddr->address,
+					      ether_frame->ether_dhost,
+					      equaladdr);
+				if (equaladdr) {
+					adapter->rcv_multicasts++;
+					adapter->stats.multicast++;
+					return TRUE;
+				}
+				mcaddr = mcaddr->next;
+			}
+			return FALSE;
+		} else {
+			return FALSE;
+		}
+	}
+	if (opts & MAC_DIRECTED) {
+		adapter->rcv_unicasts++;
+		return TRUE;
+	}
+	return FALSE;
+
+}
+
+static int slic_mac_set_address(struct net_device *dev, void *ptr)
+{
+	struct adapter *adapter = (struct adapter *)netdev_priv(dev);
+	struct sockaddr *addr = ptr;
+
+	DBG_MSG("%s ENTER (%s)\n", __func__, adapter->netdev->name);
+
+	if (netif_running(dev))
+		return -EBUSY;
+	if (!adapter)
+		return -EBUSY;
+	DBG_MSG("slicoss: %s (%s) curr %2.2X:%2.2X:%2.2X:%2.2X:%2.2X:%2.2X\n",
+		__func__, adapter->netdev->name, adapter->currmacaddr[0],
+		adapter->currmacaddr[1], adapter->currmacaddr[2],
+		adapter->currmacaddr[3], adapter->currmacaddr[4],
+		adapter->currmacaddr[5]);
+	memcpy(dev->dev_addr, addr->sa_data, dev->addr_len);
+	memcpy(adapter->currmacaddr, addr->sa_data, dev->addr_len);
+	DBG_MSG("slicoss: %s (%s) new %2.2X:%2.2X:%2.2X:%2.2X:%2.2X:%2.2X\n",
+		__func__, adapter->netdev->name, adapter->currmacaddr[0],
+		adapter->currmacaddr[1], adapter->currmacaddr[2],
+		adapter->currmacaddr[3], adapter->currmacaddr[4],
+		adapter->currmacaddr[5]);
+
+	slic_config_set(adapter, TRUE);
+	return 0;
+}
+
+/*
+ *  slic_timer_get_stats
+ *
+ * Timer function used to suck the statistics out of the card every
+ * 50 seconds or whatever STATS_TIMER_INTERVAL is set to.
+ *
+ */
+#if SLIC_GET_STATS_TIMER_ENABLED
+static void slic_timer_get_stats(ulong dev)
+{
+	struct adapter *adapter;
+	struct sliccard *card;
+	struct slic_shmem *pshmem;
+
+	ASSERT(dev);
+	adapter = (struct adapter *)((struct net_device *)dev)->priv;
+	ASSERT(adapter);
+	card = adapter->card;
+	ASSERT(card);
+
+	if ((card->state == CARD_UP) &&
+	    (adapter->state == ADAPT_UP) && (adapter->linkstate == LINK_UP)) {
+		pshmem = (struct slic_shmem *)adapter->phys_shmem;
+#ifdef CONFIG_X86_64
+		slic_upr_request(adapter,
+				 SLIC_UPR_STATS,
+				 SLIC_GET_ADDR_LOW(&pshmem->inicstats),
+				 SLIC_GET_ADDR_HIGH(&pshmem->inicstats), 0, 0);
+#elif defined(CONFIG_X86)
+		slic_upr_request(adapter,
+				 SLIC_UPR_STATS,
+				 (u32) &pshmem->inicstats, 0, 0, 0);
+#else
+		Stop compilation;
+#endif
+	} else {
+/*		DBG_MSG ("slicoss: %s adapter[%p] linkstate[%x] NOT UP!\n",
+			__func__, adapter, adapter->linkstate); */
+	}
+	adapter->statstimer.expires = jiffies +
+	    SLIC_SECS_TO_JIFFS(STATS_TIMER_INTERVAL);
+	add_timer(&adapter->statstimer);
+}
+#endif
+static void slic_timer_load_check(ulong cardaddr)
+{
+	struct sliccard *card = (struct sliccard *)cardaddr;
+	struct adapter *adapter = card->master;
+	u32 load = card->events;
+	u32 level = 0;
+
+	if ((adapter) && (adapter->state == ADAPT_UP) &&
+	    (card->state == CARD_UP) && (slic_global.dynamic_intagg)) {
+		if (adapter->devid == SLIC_1GB_DEVICE_ID) {
+			if (adapter->linkspeed == LINK_1000MB)
+				level = 100;
+			else {
+				if (load > SLIC_LOAD_5)
+					level = SLIC_INTAGG_5;
+				else if (load > SLIC_LOAD_4)
+					level = SLIC_INTAGG_4;
+				else if (load > SLIC_LOAD_3)
+					level = SLIC_INTAGG_3;
+				else if (load > SLIC_LOAD_2)
+					level = SLIC_INTAGG_2;
+				else if (load > SLIC_LOAD_1)
+					level = SLIC_INTAGG_1;
+				else
+					level = SLIC_INTAGG_0;
+			}
+			if (card->loadlevel_current != level) {
+				card->loadlevel_current = level;
+				WRITE_REG(adapter->slic_regs->slic_intagg,
+					  level, FLUSH);
+			}
+		} else {
+			if (load > SLIC_LOAD_5)
+				level = SLIC_INTAGG_5;
+			else if (load > SLIC_LOAD_4)
+				level = SLIC_INTAGG_4;
+			else if (load > SLIC_LOAD_3)
+				level = SLIC_INTAGG_3;
+			else if (load > SLIC_LOAD_2)
+				level = SLIC_INTAGG_2;
+			else if (load > SLIC_LOAD_1)
+				level = SLIC_INTAGG_1;
+			else
+				level = SLIC_INTAGG_0;
+			if (card->loadlevel_current != level) {
+				card->loadlevel_current = level;
+				WRITE_REG(adapter->slic_regs->slic_intagg,
+					  level, FLUSH);
+			}
+		}
+	}
+	card->events = 0;
+	card->loadtimer.expires =
+	    jiffies + SLIC_SECS_TO_JIFFS(SLIC_LOADTIMER_PERIOD);
+	add_timer(&card->loadtimer);
+}
+
+static void slic_assert_fail(void)
+{
+	u32 cpuid;
+	u32 curr_pid;
+	cpuid = smp_processor_id();
+	curr_pid = current->pid;
+
+	DBG_ERROR("%s CPU # %d ---- PID # %d\n", __func__, cpuid, curr_pid);
+}
+
+static int slic_upr_queue_request(struct adapter *adapter,
+			   u32 upr_request,
+			   u32 upr_data,
+			   u32 upr_data_h,
+			   u32 upr_buffer, u32 upr_buffer_h)
+{
+	struct slic_upr *upr;
+	struct slic_upr *uprqueue;
+
+	upr = kmalloc(sizeof(struct slic_upr), GFP_ATOMIC);
+	if (!upr) {
+		DBG_MSG("%s COULD NOT ALLOCATE UPR MEM\n", __func__);
+
+		return -ENOMEM;
+	}
+	upr->adapter = adapter->port;
+	upr->upr_request = upr_request;
+	upr->upr_data = upr_data;
+	upr->upr_buffer = upr_buffer;
+	upr->upr_data_h = upr_data_h;
+	upr->upr_buffer_h = upr_buffer_h;
+	upr->next = NULL;
+	if (adapter->upr_list) {
+		uprqueue = adapter->upr_list;
+
+		while (uprqueue->next)
+			uprqueue = uprqueue->next;
+		uprqueue->next = upr;
+	} else {
+		adapter->upr_list = upr;
+	}
+	return STATUS_SUCCESS;
+}
+
+static int slic_upr_request(struct adapter *adapter,
+		     u32 upr_request,
+		     u32 upr_data,
+		     u32 upr_data_h,
+		     u32 upr_buffer, u32 upr_buffer_h)
+{
+	int status;
+
+	spin_lock_irqsave(&adapter->upr_lock.lock, adapter->upr_lock.flags);
+	status = slic_upr_queue_request(adapter,
+					upr_request,
+					upr_data,
+					upr_data_h, upr_buffer, upr_buffer_h);
+	if (status != STATUS_SUCCESS) {
+		spin_unlock_irqrestore(&adapter->upr_lock.lock,
+					adapter->upr_lock.flags);
+		return status;
+	}
+	slic_upr_start(adapter);
+	spin_unlock_irqrestore(&adapter->upr_lock.lock,
+				adapter->upr_lock.flags);
+	return STATUS_PENDING;
+}
+
+static void slic_upr_request_complete(struct adapter *adapter, u32 isr)
+{
+	struct sliccard *card = adapter->card;
+	struct slic_upr *upr;
+
+/*    if (card->dump_requested) {
+	DBG_MSG("ENTER slic_upr_request_complete Dump in progress ISR[%x]\n",
+		isr);
+      } */
+	spin_lock_irqsave(&adapter->upr_lock.lock, adapter->upr_lock.flags);
+	upr = adapter->upr_list;
+	if (!upr) {
+		ASSERT(0);
+		spin_unlock_irqrestore(&adapter->upr_lock.lock,
+					adapter->upr_lock.flags);
+		return;
+	}
+	adapter->upr_list = upr->next;
+	upr->next = NULL;
+	adapter->upr_busy = 0;
+	ASSERT(adapter->port == upr->adapter);
+	switch (upr->upr_request) {
+	case SLIC_UPR_STATS:
+		{
+#if SLIC_GET_STATS_ENABLED
+			struct slic_stats *slicstats =
+			    (struct slic_stats *) &adapter->pshmem->inicstats;
+			struct slic_stats *newstats = slicstats;
+			struct slic_stats  *old = &adapter->inicstats_prev;
+			struct slicnet_stats *stst = &adapter->slic_stats;
+#endif
+			if (isr & ISR_UPCERR) {
+				DBG_ERROR
+				    ("SLIC_UPR_STATS command failed isr[%x]\n",
+				     isr);
+
+				break;
+			}
+#if SLIC_GET_STATS_ENABLED
+/*			DBG_MSG ("slicoss: %s rcv %lx:%lx:%lx:%lx:%lx %lx %lx "
+				"xmt %lx:%lx:%lx:%lx:%lx %lx %lx\n",
+				 __func__,
+			     slicstats->rcv_unicasts100,
+			     slicstats->rcv_bytes100,
+			     slicstats->rcv_bytes100,
+			     slicstats->rcv_tcp_bytes100,
+			     slicstats->rcv_tcp_segs100,
+			     slicstats->rcv_other_error100,
+			     slicstats->rcv_drops100,
+			     slicstats->xmit_unicasts100,
+			     slicstats->xmit_bytes100,
+			     slicstats->xmit_bytes100,
+			     slicstats->xmit_tcp_bytes100,
+			     slicstats->xmit_tcp_segs100,
+			     slicstats->xmit_other_error100,
+			     slicstats->xmit_collisions100);*/
+			UPDATE_STATS_GB(stst->tcp.xmit_tcp_segs,
+					newstats->xmit_tcp_segs_gb,
+					old->xmit_tcp_segs_gb);
+
+			UPDATE_STATS_GB(stst->tcp.xmit_tcp_bytes,
+					newstats->xmit_tcp_bytes_gb,
+					old->xmit_tcp_bytes_gb);
+
+			UPDATE_STATS_GB(stst->tcp.rcv_tcp_segs,
+					newstats->rcv_tcp_segs_gb,
+					old->rcv_tcp_segs_gb);
+
+			UPDATE_STATS_GB(stst->tcp.rcv_tcp_bytes,
+					newstats->rcv_tcp_bytes_gb,
+					old->rcv_tcp_bytes_gb);
+
+			UPDATE_STATS_GB(stst->iface.xmt_bytes,
+					newstats->xmit_bytes_gb,
+					old->xmit_bytes_gb);
+
+			UPDATE_STATS_GB(stst->iface.xmt_ucast,
+					newstats->xmit_unicasts_gb,
+					old->xmit_unicasts_gb);
+
+			UPDATE_STATS_GB(stst->iface.rcv_bytes,
+					newstats->rcv_bytes_gb,
+					old->rcv_bytes_gb);
+
+			UPDATE_STATS_GB(stst->iface.rcv_ucast,
+					newstats->rcv_unicasts_gb,
+					old->rcv_unicasts_gb);
+
+			UPDATE_STATS_GB(stst->iface.xmt_errors,
+					newstats->xmit_collisions_gb,
+					old->xmit_collisions_gb);
+
+			UPDATE_STATS_GB(stst->iface.xmt_errors,
+					newstats->xmit_excess_collisions_gb,
+					old->xmit_excess_collisions_gb);
+
+			UPDATE_STATS_GB(stst->iface.xmt_errors,
+					newstats->xmit_other_error_gb,
+					old->xmit_other_error_gb);
+
+			UPDATE_STATS_GB(stst->iface.rcv_errors,
+					newstats->rcv_other_error_gb,
+					old->rcv_other_error_gb);
+
+			UPDATE_STATS_GB(stst->iface.rcv_discards,
+					newstats->rcv_drops_gb,
+					old->rcv_drops_gb);
+
+			if (newstats->rcv_drops_gb > old->rcv_drops_gb) {
+				adapter->rcv_drops +=
+				    (newstats->rcv_drops_gb -
+				     old->rcv_drops_gb);
+			}
+			memcpy(old, newstats, sizeof(struct slic_stats));
+#endif
+			break;
+		}
+	case SLIC_UPR_RLSR:
+		slic_link_upr_complete(adapter, isr);
+		break;
+	case SLIC_UPR_RCONFIG:
+		break;
+	case SLIC_UPR_RPHY:
+		ASSERT(0);
+		break;
+	case SLIC_UPR_ENLB:
+		ASSERT(0);
+		break;
+	case SLIC_UPR_ENCT:
+		ASSERT(0);
+		break;
+	case SLIC_UPR_PDWN:
+		ASSERT(0);
+		break;
+	case SLIC_UPR_PING:
+		card->pingstatus |= (isr & ISR_PINGDSMASK);
+		break;
+#if SLIC_DUMP_ENABLED
+	case SLIC_UPR_DUMP:
+		card->dumpstatus |= (isr & ISR_UPCMASK);
+		break;
+#endif
+	default:
+		ASSERT(0);
+	}
+	kfree(upr);
+	slic_upr_start(adapter);
+	spin_unlock_irqrestore(&adapter->upr_lock.lock,
+				adapter->upr_lock.flags);
+}
+
+static void slic_upr_start(struct adapter *adapter)
+{
+	struct slic_upr *upr;
+	__iomem struct slic_regs *slic_regs = adapter->slic_regs;
+/*
+    char * ptr1;
+    char * ptr2;
+    uint cmdoffset;
+*/
+	upr = adapter->upr_list;
+	if (!upr)
+		return;
+	if (adapter->upr_busy)
+		return;
+	adapter->upr_busy = 1;
+
+	switch (upr->upr_request) {
+	case SLIC_UPR_STATS:
+		if (upr->upr_data_h == 0) {
+			WRITE_REG(slic_regs->slic_stats, upr->upr_data, FLUSH);
+		} else {
+			WRITE_REG64(adapter,
+				    slic_regs->slic_stats64,
+				    upr->upr_data,
+				    slic_regs->slic_addr_upper,
+				    upr->upr_data_h, FLUSH);
+		}
+		break;
+
+	case SLIC_UPR_RLSR:
+		WRITE_REG64(adapter,
+			    slic_regs->slic_rlsr,
+			    upr->upr_data,
+			    slic_regs->slic_addr_upper, upr->upr_data_h, FLUSH);
+		break;
+
+	case SLIC_UPR_RCONFIG:
+		DBG_MSG("%s SLIC_UPR_RCONFIG!!!!\n", __func__);
+		DBG_MSG("WRITE_REG64 adapter[%p]\n"
+			"    a->slic_regs[%p] slic_regs[%p]\n"
+			"    &slic_rconfig[%p] &slic_addr_upper[%p]\n"
+			"    upr[%p]\n"
+			"    uprdata[%x] uprdatah[%x]\n",
+			adapter, adapter->slic_regs, slic_regs,
+			&slic_regs->slic_rconfig, &slic_regs->slic_addr_upper,
+			upr, upr->upr_data, upr->upr_data_h);
+		WRITE_REG64(adapter,
+			    slic_regs->slic_rconfig,
+			    upr->upr_data,
+			    slic_regs->slic_addr_upper, upr->upr_data_h, FLUSH);
+		break;
+#if SLIC_DUMP_ENABLED
+	case SLIC_UPR_DUMP:
+#if 0
+		DBG_MSG("%s SLIC_UPR_DUMP!!!!\n", __func__);
+		DBG_MSG("WRITE_REG64 adapter[%p]\n"
+			 "    upr_buffer[%x]   upr_bufferh[%x]\n"
+			 "    upr_data[%x]     upr_datah[%x]\n"
+			 "    cmdbuff[%p] cmdbuffP[%p]\n"
+			 "    dumpbuff[%p] dumpbuffP[%p]\n",
+			 adapter, upr->upr_buffer, upr->upr_buffer_h,
+			 upr->upr_data, upr->upr_data_h,
+			 adapter->card->cmdbuffer,
+			 (void *)adapter->card->cmdbuffer_phys,
+			 adapter->card->dumpbuffer, (
+			 void *)adapter->card->dumpbuffer_phys);
+
+		ptr1 = (char *)slic_regs;
+		ptr2 = (char *)(&slic_regs->slic_dump_cmd);
+		cmdoffset = ptr2 - ptr1;
+		DBG_MSG("slic_dump_cmd register offset [%x]\n", cmdoffset);
+#endif
+		if (upr->upr_buffer || upr->upr_buffer_h) {
+			WRITE_REG64(adapter,
+				    slic_regs->slic_dump_data,
+				    upr->upr_buffer,
+				    slic_regs->slic_addr_upper,
+				    upr->upr_buffer_h, FLUSH);
+		}
+		WRITE_REG64(adapter,
+			    slic_regs->slic_dump_cmd,
+			    upr->upr_data,
+			    slic_regs->slic_addr_upper, upr->upr_data_h, FLUSH);
+		break;
+#endif
+	case SLIC_UPR_PING:
+		WRITE_REG(slic_regs->slic_ping, 1, FLUSH);
+		break;
+	default:
+		ASSERT(0);
+	}
+}
+
+static void slic_link_upr_complete(struct adapter *adapter, u32 isr)
+{
+	u32 linkstatus = adapter->pshmem->linkstatus;
+	uint linkup;
+	unsigned char linkspeed;
+	unsigned char linkduplex;
+
+	DBG_MSG("%s: %s ISR[%x] linkstatus[%x]\n   adapter[%p](%d)\n",
+		__func__, adapter->netdev->name, isr, linkstatus, adapter,
+		adapter->cardindex);
+
+	if ((isr & ISR_UPCERR) || (isr & ISR_UPCBSY)) {
+		struct slic_shmem *pshmem;
+
+		pshmem = (struct slic_shmem *)adapter->phys_shmem;
+#if defined(CONFIG_X86_64)
+		slic_upr_queue_request(adapter,
+				       SLIC_UPR_RLSR,
+				       SLIC_GET_ADDR_LOW(&pshmem->linkstatus),
+				       SLIC_GET_ADDR_HIGH(&pshmem->linkstatus),
+				       0, 0);
+#elif defined(CONFIG_X86)
+		slic_upr_queue_request(adapter,
+				       SLIC_UPR_RLSR,
+				       (u32) &pshmem->linkstatus,
+				       SLIC_GET_ADDR_HIGH(pshmem), 0, 0);
+#else
+		Stop Compilation;
+#endif
+		return;
+	}
+	if (adapter->state != ADAPT_UP)
+		return;
+
+	ASSERT((adapter->devid == SLIC_1GB_DEVICE_ID)
+	       || (adapter->devid == SLIC_2GB_DEVICE_ID));
+
+	linkup = linkstatus & GIG_LINKUP ? LINK_UP : LINK_DOWN;
+	if (linkstatus & GIG_SPEED_1000) {
+		linkspeed = LINK_1000MB;
+		DBG_MSG("slicoss: %s (%s) GIGABIT Speed==1000MB  ",
+			__func__, adapter->netdev->name);
+	} else if (linkstatus & GIG_SPEED_100) {
+		linkspeed = LINK_100MB;
+		DBG_MSG("slicoss: %s (%s) GIGABIT Speed==100MB  ", __func__,
+			adapter->netdev->name);
+	} else {
+		linkspeed = LINK_10MB;
+		DBG_MSG("slicoss: %s (%s) GIGABIT Speed==10MB  ", __func__,
+			adapter->netdev->name);
+	}
+	if (linkstatus & GIG_FULLDUPLEX) {
+		linkduplex = LINK_FULLD;
+		DBG_MSG(" Duplex == FULL\n");
+	} else {
+		linkduplex = LINK_HALFD;
+		DBG_MSG(" Duplex == HALF\n");
+	}
+
+	if ((adapter->linkstate == LINK_DOWN) && (linkup == LINK_DOWN)) {
+		DBG_MSG("slicoss: %s (%s) physport(%d) link still down\n",
+			__func__, adapter->netdev->name, adapter->physport);
+		return;
+	}
+
+	/* link up event, but nothing has changed */
+	if ((adapter->linkstate == LINK_UP) &&
+	    (linkup == LINK_UP) &&
+	    (adapter->linkspeed == linkspeed) &&
+	    (adapter->linkduplex == linkduplex)) {
+		DBG_MSG("slicoss: %s (%s) port(%d) link still up\n",
+			__func__, adapter->netdev->name, adapter->physport);
+		return;
+	}
+
+	/* link has changed at this point */
+
+	/* link has gone from up to down */
+	if (linkup == LINK_DOWN) {
+		adapter->linkstate = LINK_DOWN;
+		DBG_MSG("slicoss: %s %d LinkDown!\n", __func__,
+			adapter->physport);
+		return;
+	}
+
+	/* link has gone from down to up */
+	adapter->linkspeed = linkspeed;
+	adapter->linkduplex = linkduplex;
+
+	if (adapter->linkstate != LINK_UP) {
+		/* setup the mac */
+		DBG_MSG("%s call slic_config_set\n", __func__);
+		slic_config_set(adapter, TRUE);
+		adapter->linkstate = LINK_UP;
+		DBG_MSG("\n(%s) Link UP: CALL slic_if_start_queue",
+			adapter->netdev->name);
+		slic_if_start_queue(adapter);
+	}
+#if 1
+	switch (linkspeed) {
+	case LINK_1000MB:
+		DBG_MSG
+		    ("\n(%s) LINK UP!: GIGABIT SPEED == 1000MB  duplex[%x]\n",
+		     adapter->netdev->name, adapter->linkduplex);
+		break;
+	case LINK_100MB:
+		DBG_MSG("\n(%s) LINK UP!: SPEED == 100MB  duplex[%x]\n",
+			adapter->netdev->name, adapter->linkduplex);
+		break;
+	default:
+		DBG_MSG("\n(%s) LINK UP!: SPEED == 10MB  duplex[%x]\n",
+			adapter->netdev->name, adapter->linkduplex);
+		break;
+	}
+#endif
+}
+
+/*
+ *  this is here to checksum the eeprom, there is some ucode bug
+ *  which prevens us from using the ucode result.
+ *  remove this once ucode is fixed.
+ */
+static ushort slic_eeprom_cksum(char *m, int len)
+{
+#define ADDCARRY(x)  (x > 65535 ? x -= 65535 : x)
+#define REDUCE {l_util.l = sum; sum = l_util.s[0] + l_util.s[1]; ADDCARRY(sum);\
+		}
+
+	u16 *w;
+	u32 sum = 0;
+	u32 byte_swapped = 0;
+	u32 w_int;
+
+	union {
+		char c[2];
+		ushort s;
+	} s_util;
+
+	union {
+		ushort s[2];
+		int l;
+	} l_util;
+
+	l_util.l = 0;
+	s_util.s = 0;
+
+	w = (u16 *)m;
+#ifdef CONFIG_X86_64
+	w_int = (u32) ((ulong) w & 0x00000000FFFFFFFF);
+#else
+	w_int = (u32) (w);
+#endif
+	if ((1 & w_int) && (len > 0)) {
+		REDUCE;
+		sum <<= 8;
+		s_util.c[0] = *(unsigned char *)w;
+		w = (u16 *)((char *)w + 1);
+		len--;
+		byte_swapped = 1;
+	}
+
+	/* Unroll the loop to make overhead from branches &c small. */
+	while ((len -= 32) >= 0) {
+		sum += w[0];
+		sum += w[1];
+		sum += w[2];
+		sum += w[3];
+		sum += w[4];
+		sum += w[5];
+		sum += w[6];
+		sum += w[7];
+		sum += w[8];
+		sum += w[9];
+		sum += w[10];
+		sum += w[11];
+		sum += w[12];
+		sum += w[13];
+		sum += w[14];
+		sum += w[15];
+		w = (u16 *)((ulong) w + 16);	/* verify */
+	}
+	len += 32;
+	while ((len -= 8) >= 0) {
+		sum += w[0];
+		sum += w[1];
+		sum += w[2];
+		sum += w[3];
+		w = (u16 *)((ulong) w + 4);	/* verify */
+	}
+	len += 8;
+	if (len != 0 || byte_swapped != 0) {
+		REDUCE;
+		while ((len -= 2) >= 0)
+			sum += *w++;	/* verify */
+		if (byte_swapped) {
+			REDUCE;
+			sum <<= 8;
+			byte_swapped = 0;
+			if (len == -1) {
+				s_util.c[1] = *(char *) w;
+				sum += s_util.s;
+				len = 0;
+			} else {
+				len = -1;
+			}
+
+		} else if (len == -1) {
+			s_util.c[0] = *(char *) w;
+		}
+
+		if (len == -1) {
+			s_util.c[1] = 0;
+			sum += s_util.s;
+		}
+	}
+	REDUCE;
+	return (ushort) sum;
+}
+
+static int slic_rspqueue_init(struct adapter *adapter)
+{
+	int i;
+	struct slic_rspqueue *rspq = &adapter->rspqueue;
+	__iomem struct slic_regs *slic_regs = adapter->slic_regs;
+	u32 paddrh = 0;
+
+	DBG_MSG("slicoss: %s (%s) ENTER adapter[%p]\n", __func__,
+		adapter->netdev->name, adapter);
+	ASSERT(adapter->state == ADAPT_DOWN);
+	memset(rspq, 0, sizeof(struct slic_rspqueue));
+
+	rspq->num_pages = SLIC_RSPQ_PAGES_GB;
+
+	for (i = 0; i < rspq->num_pages; i++) {
+		rspq->vaddr[i] =
+		    pci_alloc_consistent(adapter->pcidev, PAGE_SIZE,
+					 &rspq->paddr[i]);
+		if (!rspq->vaddr[i]) {
+			DBG_ERROR
+			    ("rspqueue_init_failed  pci_alloc_consistent\n");
+			slic_rspqueue_free(adapter);
+			return STATUS_FAILURE;
+		}
+#ifndef CONFIG_X86_64
+		ASSERT(((u32) rspq->vaddr[i] & 0xFFFFF000) ==
+		       (u32) rspq->vaddr[i]);
+		ASSERT(((u32) rspq->paddr[i] & 0xFFFFF000) ==
+		       (u32) rspq->paddr[i]);
+#endif
+		memset(rspq->vaddr[i], 0, PAGE_SIZE);
+/*              DBG_MSG("slicoss: %s UPLOAD RSPBUFF Page pageix[%x] paddr[%p] "
+			"vaddr[%p]\n",
+			__func__, i, (void *)rspq->paddr[i], rspq->vaddr[i]); */
+
+		if (paddrh == 0) {
+			WRITE_REG(slic_regs->slic_rbar,
+				  (rspq->paddr[i] | SLIC_RSPQ_BUFSINPAGE),
+				  DONT_FLUSH);
+		} else {
+			WRITE_REG64(adapter,
+				    slic_regs->slic_rbar64,
+				    (rspq->paddr[i] | SLIC_RSPQ_BUFSINPAGE),
+				    slic_regs->slic_addr_upper,
+				    paddrh, DONT_FLUSH);
+		}
+	}
+	rspq->offset = 0;
+	rspq->pageindex = 0;
+	rspq->rspbuf = (struct slic_rspbuf *)rspq->vaddr[0];
+	DBG_MSG("slicoss: %s (%s) EXIT adapter[%p]\n", __func__,
+		adapter->netdev->name, adapter);
+	return STATUS_SUCCESS;
+}
+
+static int slic_rspqueue_reset(struct adapter *adapter)
+{
+	struct slic_rspqueue *rspq = &adapter->rspqueue;
+
+	DBG_MSG("slicoss: %s (%s) ENTER adapter[%p]\n", __func__,
+		adapter->netdev->name, adapter);
+	ASSERT(adapter->state == ADAPT_DOWN);
+	ASSERT(rspq);
+
+	DBG_MSG("slicoss: Nothing to do. rspq[%p]\n"
+		"                             offset[%x]\n"
+		"                             pageix[%x]\n"
+		"                             rspbuf[%p]\n",
+		rspq, rspq->offset, rspq->pageindex, rspq->rspbuf);
+
+	DBG_MSG("slicoss: %s (%s) EXIT adapter[%p]\n", __func__,
+		adapter->netdev->name, adapter);
+	return STATUS_SUCCESS;
+}
+
+static void slic_rspqueue_free(struct adapter *adapter)
+{
+	int i;
+	struct slic_rspqueue *rspq = &adapter->rspqueue;
+
+	DBG_MSG("slicoss: %s adapter[%p] port %d rspq[%p] FreeRSPQ\n",
+		__func__, adapter, adapter->physport, rspq);
+	for (i = 0; i < rspq->num_pages; i++) {
+		if (rspq->vaddr[i]) {
+			DBG_MSG
+			    ("slicoss:  pci_free_consistent rspq->vaddr[%p] \
+			    paddr[%p]\n",
+			     rspq->vaddr[i], (void *) rspq->paddr[i]);
+			pci_free_consistent(adapter->pcidev, PAGE_SIZE,
+					    rspq->vaddr[i], rspq->paddr[i]);
+		}
+		rspq->vaddr[i] = NULL;
+		rspq->paddr[i] = 0;
+	}
+	rspq->offset = 0;
+	rspq->pageindex = 0;
+	rspq->rspbuf = NULL;
+}
+
+static struct slic_rspbuf *slic_rspqueue_getnext(struct adapter *adapter)
+{
+	struct slic_rspqueue *rspq = &adapter->rspqueue;
+	struct slic_rspbuf *buf;
+
+	if (!(rspq->rspbuf->status))
+		return NULL;
+
+	buf = rspq->rspbuf;
+#ifndef CONFIG_X86_64
+	ASSERT((buf->status & 0xFFFFFFE0) == 0);
+#endif
+	ASSERT(buf->hosthandle);
+	if (++rspq->offset < SLIC_RSPQ_BUFSINPAGE) {
+		rspq->rspbuf++;
+#ifndef CONFIG_X86_64
+		ASSERT(((u32) rspq->rspbuf & 0xFFFFFFE0) ==
+		       (u32) rspq->rspbuf);
+#endif
+	} else {
+		ASSERT(rspq->offset == SLIC_RSPQ_BUFSINPAGE);
+		WRITE_REG64(adapter,
+			    adapter->slic_regs->slic_rbar64,
+			    (rspq->
+			     paddr[rspq->pageindex] | SLIC_RSPQ_BUFSINPAGE),
+			    adapter->slic_regs->slic_addr_upper, 0, DONT_FLUSH);
+		rspq->pageindex = (++rspq->pageindex) % rspq->num_pages;
+		rspq->offset = 0;
+		rspq->rspbuf = (struct slic_rspbuf *)
+						rspq->vaddr[rspq->pageindex];
+#ifndef CONFIG_X86_64
+		ASSERT(((u32) rspq->rspbuf & 0xFFFFF000) ==
+		       (u32) rspq->rspbuf);
+#endif
+	}
+#ifndef CONFIG_X86_64
+	ASSERT(((u32) buf & 0xFFFFFFE0) == (u32) buf);
+#endif
+	return buf;
+}
+
+static void slic_cmdqmem_init(struct adapter *adapter)
+{
+	struct slic_cmdqmem *cmdqmem = &adapter->cmdqmem;
+
+	memset(cmdqmem, 0, sizeof(struct slic_cmdqmem));
+}
+
+static void slic_cmdqmem_free(struct adapter *adapter)
+{
+	struct slic_cmdqmem *cmdqmem = &adapter->cmdqmem;
+	int i;
+
+	DBG_MSG("slicoss: (%s) adapter[%p] port %d rspq[%p] Free CMDQ Memory\n",
+		__func__, adapter, adapter->physport, cmdqmem);
+	for (i = 0; i < SLIC_CMDQ_MAXPAGES; i++) {
+		if (cmdqmem->pages[i]) {
+			DBG_MSG("slicoss: %s Deallocate page  CmdQPage[%p]\n",
+				__func__, (void *) cmdqmem->pages[i]);
+			pci_free_consistent(adapter->pcidev,
+					    PAGE_SIZE,
+					    (void *) cmdqmem->pages[i],
+					    cmdqmem->dma_pages[i]);
+		}
+	}
+	memset(cmdqmem, 0, sizeof(struct slic_cmdqmem));
+}
+
+static u32 *slic_cmdqmem_addpage(struct adapter *adapter)
+{
+	struct slic_cmdqmem *cmdqmem = &adapter->cmdqmem;
+	u32 *pageaddr;
+
+	if (cmdqmem->pagecnt >= SLIC_CMDQ_MAXPAGES)
+		return NULL;
+	pageaddr = pci_alloc_consistent(adapter->pcidev,
+					PAGE_SIZE,
+					&cmdqmem->dma_pages[cmdqmem->pagecnt]);
+	if (!pageaddr)
+		return NULL;
+#ifndef CONFIG_X86_64
+	ASSERT(((u32) pageaddr & 0xFFFFF000) == (u32) pageaddr);
+#endif
+	cmdqmem->pages[cmdqmem->pagecnt] = pageaddr;
+	cmdqmem->pagecnt++;
+	return pageaddr;
+}
+
+static int slic_cmdq_init(struct adapter *adapter)
+{
+	int i;
+	u32 *pageaddr;
+
+	DBG_MSG("slicoss: %s ENTER adapter[%p]\n", __func__, adapter);
+	ASSERT(adapter->state == ADAPT_DOWN);
+	memset(&adapter->cmdq_all, 0, sizeof(struct slic_cmdqueue));
+	memset(&adapter->cmdq_free, 0, sizeof(struct slic_cmdqueue));
+	memset(&adapter->cmdq_done, 0, sizeof(struct slic_cmdqueue));
+	spin_lock_init(&adapter->cmdq_all.lock.lock);
+	spin_lock_init(&adapter->cmdq_free.lock.lock);
+	spin_lock_init(&adapter->cmdq_done.lock.lock);
+	slic_cmdqmem_init(adapter);
+	adapter->slic_handle_ix = 1;
+	for (i = 0; i < SLIC_CMDQ_INITPAGES; i++) {
+		pageaddr = slic_cmdqmem_addpage(adapter);
+#ifndef CONFIG_X86_64
+		ASSERT(((u32) pageaddr & 0xFFFFF000) == (u32) pageaddr);
+#endif
+		if (!pageaddr) {
+			slic_cmdq_free(adapter);
+			return STATUS_FAILURE;
+		}
+		slic_cmdq_addcmdpage(adapter, pageaddr);
+	}
+	adapter->slic_handle_ix = 1;
+	DBG_MSG("slicoss: %s reset slic_handle_ix to ONE\n", __func__);
+
+	return STATUS_SUCCESS;
+}
+
+static void slic_cmdq_free(struct adapter *adapter)
+{
+	struct slic_hostcmd *cmd;
+
+	DBG_MSG("slicoss: %s adapter[%p] port %d FreeCommandsFrom CMDQ\n",
+		__func__, adapter, adapter->physport);
+	cmd = adapter->cmdq_all.head;
+	while (cmd) {
+		if (cmd->busy) {
+			struct sk_buff *tempskb;
+
+			tempskb = cmd->skb;
+			if (tempskb) {
+				cmd->skb = NULL;
+				dev_kfree_skb_irq(tempskb);
+			}
+		}
+		cmd = cmd->next_all;
+	}
+	memset(&adapter->cmdq_all, 0, sizeof(struct slic_cmdqueue));
+	memset(&adapter->cmdq_free, 0, sizeof(struct slic_cmdqueue));
+	memset(&adapter->cmdq_done, 0, sizeof(struct slic_cmdqueue));
+	slic_cmdqmem_free(adapter);
+}
+
+static void slic_cmdq_reset(struct adapter *adapter)
+{
+	struct slic_hostcmd *hcmd;
+	struct sk_buff *skb;
+	u32 outstanding;
+
+	DBG_MSG("%s ENTER adapter[%p]\n", __func__, adapter);
+	spin_lock_irqsave(&adapter->cmdq_free.lock.lock,
+			adapter->cmdq_free.lock.flags);
+	spin_lock_irqsave(&adapter->cmdq_done.lock.lock,
+			adapter->cmdq_done.lock.flags);
+	outstanding = adapter->cmdq_all.count - adapter->cmdq_done.count;
+	outstanding -= adapter->cmdq_free.count;
+	hcmd = adapter->cmdq_all.head;
+	while (hcmd) {
+		if (hcmd->busy) {
+			skb = hcmd->skb;
+			ASSERT(skb);
+			DBG_MSG("slicoss: %s hcmd[%p] skb[%p] ", __func__,
+				hcmd, skb);
+			hcmd->busy = 0;
+			hcmd->skb = NULL;
+			DBG_MSG(" Free SKB\n");
+			dev_kfree_skb_irq(skb);
+		}
+		hcmd = hcmd->next_all;
+	}
+	adapter->cmdq_free.count = 0;
+	adapter->cmdq_free.head = NULL;
+	adapter->cmdq_free.tail = NULL;
+	adapter->cmdq_done.count = 0;
+	adapter->cmdq_done.head = NULL;
+	adapter->cmdq_done.tail = NULL;
+	adapter->cmdq_free.head = adapter->cmdq_all.head;
+	hcmd = adapter->cmdq_all.head;
+	while (hcmd) {
+		adapter->cmdq_free.count++;
+		hcmd->next = hcmd->next_all;
+		hcmd = hcmd->next_all;
+	}
+	if (adapter->cmdq_free.count != adapter->cmdq_all.count) {
+		DBG_ERROR("%s free_count %d != all count %d\n", __func__,
+			  adapter->cmdq_free.count, adapter->cmdq_all.count);
+	}
+	spin_unlock_irqrestore(&adapter->cmdq_done.lock.lock,
+				adapter->cmdq_done.lock.flags);
+	spin_unlock_irqrestore(&adapter->cmdq_free.lock.lock,
+				adapter->cmdq_free.lock.flags);
+	DBG_MSG("%s EXIT adapter[%p]\n", __func__, adapter);
+}
+
+static void slic_cmdq_addcmdpage(struct adapter *adapter, u32 *page)
+{
+	struct slic_hostcmd *cmd;
+	struct slic_hostcmd *prev;
+	struct slic_hostcmd *tail;
+	struct slic_cmdqueue *cmdq;
+	int cmdcnt;
+	void *cmdaddr;
+	ulong phys_addr;
+	u32 phys_addrl;
+	u32 phys_addrh;
+	struct slic_handle *pslic_handle;
+
+	cmdaddr = page;
+	cmd = (struct slic_hostcmd *)cmdaddr;
+/*  DBG_MSG("CMDQ Page addr[%p] ix[%d] pfree[%p]\n", cmdaddr, slic_handle_ix,
+    adapter->pfree_slic_handles); */
+	cmdcnt = 0;
+
+	phys_addr = virt_to_bus((void *)page);
+	phys_addrl = SLIC_GET_ADDR_LOW(phys_addr);
+	phys_addrh = SLIC_GET_ADDR_HIGH(phys_addr);
+
+	prev = NULL;
+	tail = cmd;
+	while ((cmdcnt < SLIC_CMDQ_CMDSINPAGE) &&
+	       (adapter->slic_handle_ix < 256)) {
+		/* Allocate and initialize a SLIC_HANDLE for this command */
+		SLIC_GET_SLIC_HANDLE(adapter, pslic_handle);
+		if (pslic_handle == NULL)
+			ASSERT(0);
+		ASSERT(pslic_handle ==
+		       &adapter->slic_handles[pslic_handle->token.
+					      handle_index]);
+		pslic_handle->type = SLIC_HANDLE_CMD;
+		pslic_handle->address = (void *) cmd;
+		pslic_handle->offset = (ushort) adapter->slic_handle_ix++;
+		pslic_handle->other_handle = NULL;
+		pslic_handle->next = NULL;
+
+		cmd->pslic_handle = pslic_handle;
+		cmd->cmd64.hosthandle = pslic_handle->token.handle_token;
+		cmd->busy = FALSE;
+		cmd->paddrl = phys_addrl;
+		cmd->paddrh = phys_addrh;
+		cmd->next_all = prev;
+		cmd->next = prev;
+		prev = cmd;
+		phys_addrl += SLIC_HOSTCMD_SIZE;
+		cmdaddr += SLIC_HOSTCMD_SIZE;
+
+		cmd = (struct slic_hostcmd *)cmdaddr;
+		cmdcnt++;
+	}
+
+	cmdq = &adapter->cmdq_all;
+	cmdq->count += cmdcnt;	/*  SLIC_CMDQ_CMDSINPAGE;   mooktodo */
+	tail->next_all = cmdq->head;
+	ASSERT(VALID_ADDRESS(prev));
+	cmdq->head = prev;
+	cmdq = &adapter->cmdq_free;
+	spin_lock_irqsave(&cmdq->lock.lock, cmdq->lock.flags);
+	cmdq->count += cmdcnt;	/*  SLIC_CMDQ_CMDSINPAGE;   mooktodo */
+	tail->next = cmdq->head;
+	ASSERT(VALID_ADDRESS(prev));
+	cmdq->head = prev;
+	spin_unlock_irqrestore(&cmdq->lock.lock, cmdq->lock.flags);
+}
+
+static struct slic_hostcmd *slic_cmdq_getfree(struct adapter *adapter)
+{
+	struct slic_cmdqueue *cmdq = &adapter->cmdq_free;
+	struct slic_hostcmd *cmd = NULL;
+
+lock_and_retry:
+	spin_lock_irqsave(&cmdq->lock.lock, cmdq->lock.flags);
+retry:
+	cmd = cmdq->head;
+	if (cmd) {
+		cmdq->head = cmd->next;
+		cmdq->count--;
+		spin_unlock_irqrestore(&cmdq->lock.lock, cmdq->lock.flags);
+	} else {
+		slic_cmdq_getdone(adapter);
+		cmd = cmdq->head;
+		if (cmd) {
+			goto retry;
+		} else {
+			u32 *pageaddr;
+
+			spin_unlock_irqrestore(&cmdq->lock.lock,
+						cmdq->lock.flags);
+			pageaddr = slic_cmdqmem_addpage(adapter);
+			if (pageaddr) {
+				slic_cmdq_addcmdpage(adapter, pageaddr);
+				goto lock_and_retry;
+			}
+		}
+	}
+	return cmd;
+}
+
+static void slic_cmdq_getdone(struct adapter *adapter)
+{
+	struct slic_cmdqueue *done_cmdq = &adapter->cmdq_done;
+	struct slic_cmdqueue *free_cmdq = &adapter->cmdq_free;
+
+	ASSERT(free_cmdq->head == NULL);
+	spin_lock_irqsave(&done_cmdq->lock.lock, done_cmdq->lock.flags);
+	ASSERT(VALID_ADDRESS(done_cmdq->head));
+
+	free_cmdq->head = done_cmdq->head;
+	free_cmdq->count = done_cmdq->count;
+	done_cmdq->head = NULL;
+	done_cmdq->tail = NULL;
+	done_cmdq->count = 0;
+	spin_unlock_irqrestore(&done_cmdq->lock.lock, done_cmdq->lock.flags);
+}
+
+static void slic_cmdq_putdone_irq(struct adapter *adapter,
+				struct slic_hostcmd *cmd)
+{
+	struct slic_cmdqueue *cmdq = &adapter->cmdq_done;
+
+	spin_lock(&cmdq->lock.lock);
+	cmd->busy = 0;
+	ASSERT(VALID_ADDRESS(cmdq->head));
+	cmd->next = cmdq->head;
+	ASSERT(VALID_ADDRESS(cmd));
+	cmdq->head = cmd;
+	cmdq->count++;
+	if ((adapter->xmitq_full) && (cmdq->count > 10))
+		netif_wake_queue(adapter->netdev);
+	spin_unlock(&cmdq->lock.lock);
+}
+
+static int slic_rcvqueue_init(struct adapter *adapter)
+{
+	int i, count;
+	struct slic_rcvqueue *rcvq = &adapter->rcvqueue;
+
+	DBG_MSG("slicoss: %s ENTER adapter[%p]\n", __func__, adapter);
+	ASSERT(adapter->state == ADAPT_DOWN);
+	rcvq->tail = NULL;
+	rcvq->head = NULL;
+	rcvq->size = SLIC_RCVQ_ENTRIES;
+	rcvq->errors = 0;
+	rcvq->count = 0;
+	i = (SLIC_RCVQ_ENTRIES / SLIC_RCVQ_FILLENTRIES);
+	count = 0;
+	while (i) {
+		count += slic_rcvqueue_fill(adapter);
+		i--;
+	}
+	if (rcvq->count < SLIC_RCVQ_MINENTRIES) {
+		slic_rcvqueue_free(adapter);
+		return STATUS_FAILURE;
+	}
+	DBG_MSG("slicoss: %s EXIT adapter[%p]\n", __func__, adapter);
+	return STATUS_SUCCESS;
+}
+
+static int slic_rcvqueue_reset(struct adapter *adapter)
+{
+	struct slic_rcvqueue *rcvq = &adapter->rcvqueue;
+
+	DBG_MSG("slicoss: %s ENTER adapter[%p]\n", __func__, adapter);
+	ASSERT(adapter->state == ADAPT_DOWN);
+	ASSERT(rcvq);
+
+	DBG_MSG("slicoss: Nothing to do. rcvq[%p]\n"
+		"                             count[%x]\n"
+		"                             head[%p]\n"
+		"                             tail[%p]\n",
+		rcvq, rcvq->count, rcvq->head, rcvq->tail);
+
+	DBG_MSG("slicoss: %s EXIT adapter[%p]\n", __func__, adapter);
+	return STATUS_SUCCESS;
+}
+
+static void slic_rcvqueue_free(struct adapter *adapter)
+{
+	struct slic_rcvqueue *rcvq = &adapter->rcvqueue;
+	struct sk_buff *skb;
+
+	while (rcvq->head) {
+		skb = rcvq->head;
+		rcvq->head = rcvq->head->next;
+		dev_kfree_skb(skb);
+	}
+	rcvq->tail = NULL;
+	rcvq->head = NULL;
+	rcvq->count = 0;
+}
+
+static struct sk_buff *slic_rcvqueue_getnext(struct adapter *adapter)
+{
+	struct slic_rcvqueue *rcvq = &adapter->rcvqueue;
+	struct sk_buff *skb;
+	struct slic_rcvbuf *rcvbuf;
+	int count;
+
+	if (rcvq->count) {
+		skb = rcvq->head;
+		rcvbuf = (struct slic_rcvbuf *)skb->head;
+		ASSERT(rcvbuf);
+
+		if (rcvbuf->status & IRHDDR_SVALID) {
+			rcvq->head = rcvq->head->next;
+			skb->next = NULL;
+			rcvq->count--;
+		} else {
+			skb = NULL;
+		}
+	} else {
+		DBG_ERROR("RcvQ Empty!! adapter[%p] rcvq[%p] count[%x]\n",
+			  adapter, rcvq, rcvq->count);
+		skb = NULL;
+	}
+	while (rcvq->count < SLIC_RCVQ_FILLTHRESH) {
+		count = slic_rcvqueue_fill(adapter);
+		if (!count)
+			break;
+	}
+	if (skb)
+		rcvq->errors = 0;
+	return skb;
+}
+
+static int slic_rcvqueue_fill(struct adapter *adapter)
+{
+	void *paddr;
+	u32 paddrl;
+	u32 paddrh;
+	struct slic_rcvqueue *rcvq = &adapter->rcvqueue;
+	int i = 0;
+
+	while (i < SLIC_RCVQ_FILLENTRIES) {
+		struct slic_rcvbuf *rcvbuf;
+		struct sk_buff *skb;
+#ifdef KLUDGE_FOR_4GB_BOUNDARY
+retry_rcvqfill:
+#endif
+		skb = alloc_skb(SLIC_RCVQ_RCVBUFSIZE, GFP_ATOMIC);
+		if (skb) {
+			paddr = (void *)pci_map_single(adapter->pcidev,
+							  skb->data,
+							  SLIC_RCVQ_RCVBUFSIZE,
+							  PCI_DMA_FROMDEVICE);
+			paddrl = SLIC_GET_ADDR_LOW(paddr);
+			paddrh = SLIC_GET_ADDR_HIGH(paddr);
+
+			skb->len = SLIC_RCVBUF_HEADSIZE;
+			rcvbuf = (struct slic_rcvbuf *)skb->head;
+			rcvbuf->status = 0;
+			skb->next = NULL;
+#ifdef KLUDGE_FOR_4GB_BOUNDARY
+			if (paddrl == 0) {
+				DBG_ERROR
+				    ("%s: LOW 32bits PHYSICAL ADDRESS == 0 "
+				     "skb[%p]   PROBLEM\n"
+				     "         skbdata[%p]\n"
+				     "         skblen[%x]\n"
+				     "         paddr[%p]\n"
+				     "         paddrl[%x]\n"
+				     "         paddrh[%x]\n", __func__, skb,
+				     skb->data, skb->len, paddr, paddrl,
+				     paddrh);
+				DBG_ERROR("         rcvq->head[%p]\n"
+					  "         rcvq->tail[%p]\n"
+					  "         rcvq->count[%x]\n",
+					  rcvq->head, rcvq->tail, rcvq->count);
+				DBG_ERROR("SKIP THIS SKB!!!!!!!!\n");
+				goto retry_rcvqfill;
+			}
+#else
+			if (paddrl == 0) {
+				DBG_ERROR
+				    ("\n\n%s: LOW 32bits PHYSICAL ADDRESS == 0 "
+				     "skb[%p]  GIVE TO CARD ANYWAY\n"
+				     "         skbdata[%p]\n"
+				     "         paddr[%p]\n"
+				     "         paddrl[%x]\n"
+				     "         paddrh[%x]\n", __func__, skb,
+				     skb->data, paddr, paddrl, paddrh);
+			}
+#endif
+			if (paddrh == 0) {
+				WRITE_REG(adapter->slic_regs->slic_hbar,
+					  (u32) paddrl, DONT_FLUSH);
+			} else {
+				WRITE_REG64(adapter,
+					    adapter->slic_regs->slic_hbar64,
+					    (u32) paddrl,
+					    adapter->slic_regs->slic_addr_upper,
+					    (u32) paddrh, DONT_FLUSH);
+			}
+			if (rcvq->head)
+				rcvq->tail->next = skb;
+			else
+				rcvq->head = skb;
+			rcvq->tail = skb;
+			rcvq->count++;
+			i++;
+		} else {
+			DBG_ERROR
+			    ("%s slic_rcvqueue_fill could only get [%d] "
+			     "skbuffs\n",
+			     adapter->netdev->name, i);
+			break;
+		}
+	}
+	return i;
+}
+
+static u32 slic_rcvqueue_reinsert(struct adapter *adapter, struct sk_buff *skb)
+{
+	struct slic_rcvqueue *rcvq = &adapter->rcvqueue;
+	void *paddr;
+	u32 paddrl;
+	u32 paddrh;
+	struct slic_rcvbuf *rcvbuf = (struct slic_rcvbuf *)skb->head;
+
+	ASSERT(skb->len == SLIC_RCVBUF_HEADSIZE);
+
+	paddr = (void *)pci_map_single(adapter->pcidev, skb->head,
+				  SLIC_RCVQ_RCVBUFSIZE, PCI_DMA_FROMDEVICE);
+	rcvbuf->status = 0;
+	skb->next = NULL;
+
+	paddrl = SLIC_GET_ADDR_LOW(paddr);
+	paddrh = SLIC_GET_ADDR_HIGH(paddr);
+
+	if (paddrl == 0) {
+		DBG_ERROR
+		    ("%s: LOW 32bits PHYSICAL ADDRESS == 0 skb[%p]   PROBLEM\n"
+		     "         skbdata[%p]\n" "         skblen[%x]\n"
+		     "         paddr[%p]\n" "         paddrl[%x]\n"
+		     "         paddrh[%x]\n", __func__, skb, skb->data,
+		     skb->len, paddr, paddrl, paddrh);
+		DBG_ERROR("         rcvq->head[%p]\n"
+			  "         rcvq->tail[%p]\n"
+			  "         rcvq->count[%x]\n", rcvq->head, rcvq->tail,
+			  rcvq->count);
+	}
+	if (paddrh == 0) {
+		WRITE_REG(adapter->slic_regs->slic_hbar, (u32) paddrl,
+			  DONT_FLUSH);
+	} else {
+		WRITE_REG64(adapter,
+			    adapter->slic_regs->slic_hbar64,
+			    paddrl,
+			    adapter->slic_regs->slic_addr_upper,
+			    paddrh, DONT_FLUSH);
+	}
+	if (rcvq->head)
+		rcvq->tail->next = skb;
+	else
+		rcvq->head = skb;
+	rcvq->tail = skb;
+	rcvq->count++;
+	return rcvq->count;
+}
+
+static int slic_debug_card_show(struct seq_file *seq, void *v)
+{
+#ifdef MOOKTODO
+	int i;
+	struct sliccard *card = seq->private;
+	struct slic_config *config = &card->config;
+	unsigned char *fru = (unsigned char *)(&card->config.atk_fru);
+	unsigned char *oemfru = (unsigned char *)(&card->config.OemFru);
+#endif
+
+	seq_printf(seq, "driver_version           : %s", slic_proc_version);
+	seq_printf(seq, "Microcode versions:           \n");
+	seq_printf(seq, "    Gigabit (gb)         : %s %s\n",
+		    MOJAVE_UCODE_VERS_STRING, MOJAVE_UCODE_VERS_DATE);
+	seq_printf(seq, "    Gigabit Receiver     : %s %s\n",
+		    GB_RCVUCODE_VERS_STRING, GB_RCVUCODE_VERS_DATE);
+	seq_printf(seq, "Vendor                   : %s\n", slic_vendor);
+	seq_printf(seq, "Product Name             : %s\n", slic_product_name);
+#ifdef MOOKTODO
+	seq_printf(seq, "VendorId                 : %4.4X\n",
+		    config->VendorId);
+	seq_printf(seq, "DeviceId                 : %4.4X\n",
+		    config->DeviceId);
+	seq_printf(seq, "RevisionId               : %2.2x\n",
+		    config->RevisionId);
+	seq_printf(seq, "Bus    #                 : %d\n", card->busnumber);
+	seq_printf(seq, "Device #                 : %d\n", card->slotnumber);
+	seq_printf(seq, "Interfaces               : %d\n", card->card_size);
+	seq_printf(seq, "     Initialized         : %d\n",
+		    card->adapters_activated);
+	seq_printf(seq, "     Allocated           : %d\n",
+		    card->adapters_allocated);
+	ASSERT(card->card_size <= SLIC_NBR_MACS);
+	for (i = 0; i < card->card_size; i++) {
+		seq_printf(seq,
+			   "     MAC%d : %2.2X %2.2X %2.2X %2.2X %2.2X %2.2X\n",
+			   i, config->macinfo[i].macaddrA[0],
+			   config->macinfo[i].macaddrA[1],
+			   config->macinfo[i].macaddrA[2],
+			   config->macinfo[i].macaddrA[3],
+			   config->macinfo[i].macaddrA[4],
+			   config->macinfo[i].macaddrA[5]);
+	}
+	seq_printf(seq, "     IF  Init State Duplex/Speed irq\n");
+	seq_printf(seq, "     -------------------------------\n");
+	for (i = 0; i < card->adapters_allocated; i++) {
+		struct adapter *adapter;
+
+		adapter = card->adapter[i];
+		if (adapter) {
+			seq_printf(seq,
+				    "     %d   %d   %s  %s  %s    0x%X\n",
+				    adapter->physport, adapter->state,
+				    SLIC_LINKSTATE(adapter->linkstate),
+				    SLIC_DUPLEX(adapter->linkduplex),
+				    SLIC_SPEED(adapter->linkspeed),
+				    (uint) adapter->irq);
+		}
+	}
+	seq_printf(seq, "Generation #             : %4.4X\n", card->gennumber);
+	seq_printf(seq, "RcvQ max entries         : %4.4X\n",
+		    SLIC_RCVQ_ENTRIES);
+	seq_printf(seq, "Ping Status              : %8.8X\n",
+		    card->pingstatus);
+	seq_printf(seq, "Minimum grant            : %2.2x\n",
+		    config->MinGrant);
+	seq_printf(seq, "Maximum Latency          : %2.2x\n", config->MaxLat);
+	seq_printf(seq, "PciStatus                : %4.4x\n",
+		    config->Pcistatus);
+	seq_printf(seq, "Debug Device Id          : %4.4x\n",
+		    config->DbgDevId);
+	seq_printf(seq, "DRAM ROM Function        : %4.4x\n",
+		    config->DramRomFn);
+	seq_printf(seq, "Network interface Pin 1  : %2.2x\n",
+		    config->NetIntPin1);
+	seq_printf(seq, "Network interface Pin 2  : %2.2x\n",
+		    config->NetIntPin1);
+	seq_printf(seq, "Network interface Pin 3  : %2.2x\n",
+		    config->NetIntPin1);
+	seq_printf(seq, "PM capabilities          : %4.4X\n",
+		    config->PMECapab);
+	seq_printf(seq, "Network Clock Controls   : %4.4X\n",
+		    config->NwClkCtrls);
+
+	switch (config->FruFormat) {
+	case ATK_FRU_FORMAT:
+		{
+			seq_printf(seq,
+			    "Vendor                   : Alacritech, Inc.\n");
+			seq_printf(seq,
+			    "Assembly #               : %c%c%c%c%c%c\n",
+				    fru[0], fru[1], fru[2], fru[3], fru[4],
+				    fru[5]);
+			seq_printf(seq,
+				    "Revision #               : %c%c\n",
+				    fru[6], fru[7]);
+
+			if (config->OEMFruFormat == VENDOR4_FRU_FORMAT) {
+				seq_printf(seq,
+					    "Serial   #               : "
+					    "%c%c%c%c%c%c%c%c%c%c%c%c\n",
+					    fru[8], fru[9], fru[10],
+					    fru[11], fru[12], fru[13],
+					    fru[16], fru[17], fru[18],
+					    fru[19], fru[20], fru[21]);
+			} else {
+				seq_printf(seq,
+					    "Serial   #               : "
+					    "%c%c%c%c%c%c%c%c%c%c%c%c%c%c\n",
+					    fru[8], fru[9], fru[10],
+					    fru[11], fru[12], fru[13],
+					    fru[14], fru[15], fru[16],
+					    fru[17], fru[18], fru[19],
+					    fru[20], fru[21]);
+			}
+			break;
+		}
+
+	default:
+		{
+			seq_printf(seq,
+			    "Vendor                   : Alacritech, Inc.\n");
+			seq_printf(seq,
+			    "Serial   #               : Empty FRU\n");
+			break;
+		}
+	}
+
+	switch (config->OEMFruFormat) {
+	case VENDOR1_FRU_FORMAT:
+		{
+			seq_printf(seq, "FRU Information:\n");
+			seq_printf(seq, "    Commodity #          : %c\n",
+				    oemfru[0]);
+			seq_printf(seq,
+				    "    Assembly #           : %c%c%c%c\n",
+				    oemfru[1], oemfru[2], oemfru[3], oemfru[4]);
+			seq_printf(seq,
+				    "    Revision #           : %c%c\n",
+				    oemfru[5], oemfru[6]);
+			seq_printf(seq,
+				    "    Supplier #           : %c%c\n",
+				    oemfru[7], oemfru[8]);
+			seq_printf(seq,
+				    "    Date                 : %c%c\n",
+				    oemfru[9], oemfru[10]);
+			seq_sprintf(seq,
+				    "    Sequence #           : %c%c%c\n",
+				    oemfru[11], oemfru[12], oemfru[13]);
+			break;
+		}
+
+	case VENDOR2_FRU_FORMAT:
+		{
+			seq_printf(seq, "FRU Information:\n");
+			seq_printf(seq,
+				    "    Part     #           : "
+				    "%c%c%c%c%c%c%c%c\n",
+				    oemfru[0], oemfru[1], oemfru[2],
+				    oemfru[3], oemfru[4], oemfru[5],
+				    oemfru[6], oemfru[7]);
+			seq_printf(seq,
+				    "    Supplier #           : %c%c%c%c%c\n",
+				    oemfru[8], oemfru[9], oemfru[10],
+				    oemfru[11], oemfru[12]);
+			seq_printf(seq,
+				    "    Date                 : %c%c%c\n",
+				    oemfru[13], oemfru[14], oemfru[15]);
+			seq_sprintf(seq,
+				    "    Sequence #           : %c%c%c%c\n",
+				    oemfru[16], oemfru[17], oemfru[18],
+				    oemfru[19]);
+			break;
+		}
+
+	case VENDOR3_FRU_FORMAT:
+		{
+			seq_printf(seq, "FRU Information:\n");
+		}
+
+	case VENDOR4_FRU_FORMAT:
+		{
+			seq_printf(seq, "FRU Information:\n");
+			seq_printf(seq,
+				    "    FRU Number           : "
+				    "%c%c%c%c%c%c%c%c\n",
+				    oemfru[0], oemfru[1], oemfru[2],
+				    oemfru[3], oemfru[4], oemfru[5],
+				    oemfru[6], oemfru[7]);
+			seq_sprintf(seq,
+				    "    Part Number          : "
+				    "%c%c%c%c%c%c%c%c\n",
+				    oemfru[8], oemfru[9], oemfru[10],
+				    oemfru[11], oemfru[12], oemfru[13],
+				    oemfru[14], oemfru[15]);
+			seq_printf(seq,
+				    "    EC Level             : "
+				    "%c%c%c%c%c%c%c%c\n",
+				    oemfru[16], oemfru[17], oemfru[18],
+				    oemfru[19], oemfru[20], oemfru[21],
+				    oemfru[22], oemfru[23]);
+			break;
+		}
+
+	default:
+		break;
+	}
+#endif
+
+	return 0;
+}
+
+static int slic_debug_adapter_show(struct seq_file *seq, void *v)
+{
+	struct adapter *adapter = seq->private;
+
+	if ((adapter->netdev) && (adapter->netdev->name)) {
+		seq_printf(seq, "info: interface          : %s\n",
+			    adapter->netdev->name);
+	}
+	seq_printf(seq, "info: status             : %s\n",
+		SLIC_LINKSTATE(adapter->linkstate));
+	seq_printf(seq, "info: port               : %d\n",
+		adapter->physport);
+	seq_printf(seq, "info: speed              : %s\n",
+		SLIC_SPEED(adapter->linkspeed));
+	seq_printf(seq, "info: duplex             : %s\n",
+		SLIC_DUPLEX(adapter->linkduplex));
+	seq_printf(seq, "info: irq                : 0x%X\n",
+		(uint) adapter->irq);
+	seq_printf(seq, "info: Interrupt Agg Delay: %d usec\n",
+		adapter->card->loadlevel_current);
+	seq_printf(seq, "info: RcvQ max entries   : %4.4X\n",
+		SLIC_RCVQ_ENTRIES);
+	seq_printf(seq, "info: RcvQ current       : %4.4X\n",
+		    adapter->rcvqueue.count);
+	seq_printf(seq, "rx stats: packets                  : %8.8lX\n",
+		    adapter->stats.rx_packets);
+	seq_printf(seq, "rx stats: bytes                    : %8.8lX\n",
+		    adapter->stats.rx_bytes);
+	seq_printf(seq, "rx stats: broadcasts               : %8.8X\n",
+		    adapter->rcv_broadcasts);
+	seq_printf(seq, "rx stats: multicasts               : %8.8X\n",
+		    adapter->rcv_multicasts);
+	seq_printf(seq, "rx stats: unicasts                 : %8.8X\n",
+		    adapter->rcv_unicasts);
+	seq_printf(seq, "rx stats: errors                   : %8.8X\n",
+		    (u32) adapter->slic_stats.iface.rcv_errors);
+	seq_printf(seq, "rx stats: Missed errors            : %8.8X\n",
+		    (u32) adapter->slic_stats.iface.rcv_discards);
+	seq_printf(seq, "rx stats: drops                    : %8.8X\n",
+			(u32) adapter->rcv_drops);
+	seq_printf(seq, "tx stats: packets                  : %8.8lX\n",
+			adapter->stats.tx_packets);
+	seq_printf(seq, "tx stats: bytes                    : %8.8lX\n",
+			adapter->stats.tx_bytes);
+	seq_printf(seq, "tx stats: errors                   : %8.8X\n",
+			(u32) adapter->slic_stats.iface.xmt_errors);
+	seq_printf(seq, "rx stats: multicasts               : %8.8lX\n",
+			adapter->stats.multicast);
+	seq_printf(seq, "tx stats: collision errors         : %8.8X\n",
+			(u32) adapter->slic_stats.iface.xmit_collisions);
+	seq_printf(seq, "perf: Max rcv frames/isr           : %8.8X\n",
+			adapter->max_isr_rcvs);
+	seq_printf(seq, "perf: Rcv interrupt yields         : %8.8X\n",
+			adapter->rcv_interrupt_yields);
+	seq_printf(seq, "perf: Max xmit complete/isr        : %8.8X\n",
+			adapter->max_isr_xmits);
+	seq_printf(seq, "perf: error interrupts             : %8.8X\n",
+			adapter->error_interrupts);
+	seq_printf(seq, "perf: error rmiss interrupts       : %8.8X\n",
+			adapter->error_rmiss_interrupts);
+	seq_printf(seq, "perf: rcv interrupts               : %8.8X\n",
+			adapter->rcv_interrupts);
+	seq_printf(seq, "perf: xmit interrupts              : %8.8X\n",
+			adapter->xmit_interrupts);
+	seq_printf(seq, "perf: link event interrupts        : %8.8X\n",
+			adapter->linkevent_interrupts);
+	seq_printf(seq, "perf: UPR interrupts               : %8.8X\n",
+			adapter->upr_interrupts);
+	seq_printf(seq, "perf: interrupt count              : %8.8X\n",
+			adapter->num_isrs);
+	seq_printf(seq, "perf: false interrupts             : %8.8X\n",
+			adapter->false_interrupts);
+	seq_printf(seq, "perf: All register writes          : %8.8X\n",
+			adapter->all_reg_writes);
+	seq_printf(seq, "perf: ICR register writes          : %8.8X\n",
+			adapter->icr_reg_writes);
+	seq_printf(seq, "perf: ISR register writes          : %8.8X\n",
+			adapter->isr_reg_writes);
+	seq_printf(seq, "ifevents: overflow 802 errors      : %8.8X\n",
+			adapter->if_events.oflow802);
+	seq_printf(seq, "ifevents: transport overflow errors: %8.8X\n",
+			adapter->if_events.Tprtoflow);
+	seq_printf(seq, "ifevents: underflow errors         : %8.8X\n",
+			adapter->if_events.uflow802);
+	seq_printf(seq, "ifevents: receive early            : %8.8X\n",
+			adapter->if_events.rcvearly);
+	seq_printf(seq, "ifevents: buffer overflows         : %8.8X\n",
+			adapter->if_events.Bufov);
+	seq_printf(seq, "ifevents: carrier errors           : %8.8X\n",
+			adapter->if_events.Carre);
+	seq_printf(seq, "ifevents: Long                     : %8.8X\n",
+			adapter->if_events.Longe);
+	seq_printf(seq, "ifevents: invalid preambles        : %8.8X\n",
+			adapter->if_events.Invp);
+	seq_printf(seq, "ifevents: CRC errors               : %8.8X\n",
+			adapter->if_events.Crc);
+	seq_printf(seq, "ifevents: dribble nibbles          : %8.8X\n",
+			adapter->if_events.Drbl);
+	seq_printf(seq, "ifevents: Code violations          : %8.8X\n",
+			adapter->if_events.Code);
+	seq_printf(seq, "ifevents: TCP checksum errors      : %8.8X\n",
+			adapter->if_events.TpCsum);
+	seq_printf(seq, "ifevents: TCP header short errors  : %8.8X\n",
+			adapter->if_events.TpHlen);
+	seq_printf(seq, "ifevents: IP checksum errors       : %8.8X\n",
+			adapter->if_events.IpCsum);
+	seq_printf(seq, "ifevents: IP frame incompletes     : %8.8X\n",
+			adapter->if_events.IpLen);
+	seq_printf(seq, "ifevents: IP headers shorts        : %8.8X\n",
+			adapter->if_events.IpHlen);
+
+	return 0;
+}
+static int slic_debug_adapter_open(struct inode *inode, struct file *file)
+{
+	return single_open(file, slic_debug_adapter_show, inode->i_private);
+}
+
+static int slic_debug_card_open(struct inode *inode, struct file *file)
+{
+	return single_open(file, slic_debug_card_show, inode->i_private);
+}
+
+static const struct file_operations slic_debug_adapter_fops = {
+	.owner		= THIS_MODULE,
+	.open		= slic_debug_adapter_open,
+	.read		= seq_read,
+	.llseek		= seq_lseek,
+	.release	= single_release,
+};
+
+static const struct file_operations slic_debug_card_fops = {
+	.owner		= THIS_MODULE,
+	.open		= slic_debug_card_open,
+	.read		= seq_read,
+	.llseek		= seq_lseek,
+	.release	= single_release,
+};
+
+static void slic_debug_adapter_create(struct adapter *adapter)
+{
+	struct dentry *d;
+	char    name[7];
+	struct sliccard *card = adapter->card;
+
+	if (!card->debugfs_dir)
+		return;
+
+	sprintf(name, "port%d", adapter->port);
+	d = debugfs_create_file(name, S_IRUGO,
+				card->debugfs_dir, adapter,
+				&slic_debug_adapter_fops);
+	if (!d || IS_ERR(d))
+		pr_info(PFX "%s: debugfs create failed\n", name);
+	else
+		adapter->debugfs_entry = d;
+}
+
+static void slic_debug_adapter_destroy(struct adapter *adapter)
+{
+	if (adapter->debugfs_entry) {
+		debugfs_remove(adapter->debugfs_entry);
+		adapter->debugfs_entry = NULL;
+	}
+}
+
+static void slic_debug_card_create(struct sliccard *card)
+{
+	struct dentry *d;
+	char    name[IFNAMSIZ];
+
+	snprintf(name, sizeof(name), "slic%d", card->cardnum);
+	d = debugfs_create_dir(name, slic_debugfs);
+	if (!d || IS_ERR(d))
+		pr_info(PFX "%s: debugfs create dir failed\n",
+				name);
+	else {
+		card->debugfs_dir = d;
+		d = debugfs_create_file("cardinfo", S_IRUGO,
+				slic_debugfs, card,
+				&slic_debug_card_fops);
+		if (!d || IS_ERR(d))
+			pr_info(PFX "%s: debugfs create failed\n",
+					name);
+		else
+			card->debugfs_cardinfo = d;
+	}
+}
+
+static void slic_debug_card_destroy(struct sliccard *card)
+{
+	int i;
+
+	for (i = 0; i < card->card_size; i++) {
+		struct adapter *adapter;
+
+		adapter = card->adapter[i];
+		if (adapter)
+			slic_debug_adapter_destroy(adapter);
+	}
+	if (card->debugfs_cardinfo) {
+		debugfs_remove(card->debugfs_cardinfo);
+		card->debugfs_cardinfo = NULL;
+	}
+	if (card->debugfs_dir) {
+		debugfs_remove(card->debugfs_dir);
+		card->debugfs_dir = NULL;
+	}
+}
+
+static void slic_debug_init(void)
+{
+	struct dentry *ent;
+
+	ent = debugfs_create_dir("slic", NULL);
+	if (!ent || IS_ERR(ent)) {
+		pr_info(PFX "debugfs create directory failed\n");
+		return;
+	}
+
+	slic_debugfs = ent;
+}
+
+static void slic_debug_cleanup(void)
+{
+	if (slic_debugfs) {
+		debugfs_remove(slic_debugfs);
+		slic_debugfs = NULL;
+	}
+}
+
+/*=============================================================================
+  =============================================================================
+  ===                                                                       ===
+  ===       SLIC  DUMP  MANAGEMENT        SECTION                           ===
+  ===                                                                       ===
+  ===                                                                       ===
+  === Dump routines                                                         ===
+  ===                                                                       ===
+  ===                                                                       ===
+  =============================================================================
+  ============================================================================*/
+
+#if SLIC_DUMP_ENABLED
+
+#include <stdarg.h>
+
+void *slic_dump_handle;		/* thread handle */
+
+/*
+ * These are the only things you should do on a core-file: use only these
+ * functions to write out all the necessary info.
+ */
+static int slic_dump_seek(struct file *SLIChandle, u32 file_offset)
+{
+	if (SLIChandle->f_pos != file_offset) {
+		/*DBG_MSG("slic_dump_seek  now needed [%x : %x]\n",
+			(u32)SLIChandle->f_pos, (u32)file_offset); */
+		if (SLIChandle->f_op->llseek) {
+			if (SLIChandle->f_op->
+			    llseek(SLIChandle, file_offset, 0) != file_offset)
+				return 0;
+		} else {
+			SLIChandle->f_pos = file_offset;
+		}
+	}
+	return 1;
+}
+
+static int slic_dump_write(struct sliccard *card,
+			   const void *addr, int size, u32 file_offset)
+{
+	int r = 1;
+	u32 result = 0;
+	struct file *SLIChandle = card->dumphandle;
+
+#ifdef HISTORICAL		/* legacy */
+	down(&SLIChandle->f_dentry->d_inode->i_sem);
+#endif
+	if (size) {
+		slic_dump_seek(SLIChandle, file_offset);
+
+		result =
+		    SLIChandle->f_op->write(SLIChandle, addr, size,
+					    &SLIChandle->f_pos);
+
+		r = result == size;
+	}
+
+	card->dumptime_complete = jiffies;
+	card->dumptime_delta = card->dumptime_complete - card->dumptime_start;
+	card->dumptime_start = jiffies;
+
+#ifdef HISTORICAL
+	up(&SLIChandle->f_dentry->d_inode->i_sem);
+#endif
+	if (!r) {
+		DBG_ERROR("%s: addr[%p] size[%x] result[%x] file_offset[%x]\n",
+			  __func__, addr, size, result, file_offset);
+	}
+	return r;
+}
+
+static uint slic_init_dump_thread(struct sliccard *card)
+{
+	card->dump_task_id = kthread_run(slic_dump_thread, (void *)card, 0);
+
+/*  DBG_MSG("create slic_dump_thread dump_pid[%x]\n", card->dump_pid); */
+	if (IS_ERR(card->dump_task_id)) {
+		DBG_MSG("create slic_dump_thread FAILED \n");
+		return STATUS_FAILURE;
+	}
+
+	return STATUS_SUCCESS;
+}
+
+static int slic_dump_thread(void *context)
+{
+	struct sliccard *card = (struct sliccard *)context;
+	struct adapter *adapter;
+	struct adapter *dump_adapter = NULL;
+	u32 dump_complete = 0;
+	u32 delay = SLIC_SECS_TO_JIFFS(PING_TIMER_INTERVAL);
+	struct slic_regs *pregs;
+	u32 i;
+	struct slic_upr *upr, *uprnext;
+	u32 dump_card;
+
+	ASSERT(card);
+
+	card->dumpthread_running = 1;
+
+#ifdef HISTORICAL
+	lock_kernel();
+	/*
+	 * This thread doesn't need any user-level access,
+	 * so get rid of all our resources
+	 */
+	exit_files(current);	/* daemonize doesn't do exit_files */
+	current->files = init_task.files;
+	atomic_inc(&current->files->count);
+#endif
+
+	daemonize("%s", "slicmon");
+
+	/* Setup a nice name */
+	strcpy(current->comm, "slicmon");
+	DBG_ERROR
+	    ("slic_dump_thread[slicmon] daemon is alive card[%p] pid[%x]\n",
+	     card, card->dump_task_id->pid);
+
+	/*
+	 *    Send me a signal to get me to die (for debugging)
+	 */
+	do {
+		/*
+		 * If card state is not set to up, skip
+		 */
+		if (card->state != CARD_UP) {
+			if (card->adapters_activated)
+				goto wait;
+			else
+				goto end_thread;
+		}
+		/*
+		 *    Check the results of our last ping.
+		 */
+		dump_card = 0;
+#ifdef SLIC_FAILURE_DUMP
+		if (card->pingstatus != ISR_PINGMASK) {
+			DBG_MSG
+			    ("\n[slicmon]  CARD #%d TIMED OUT - status "
+			     "%x: DUMP THE CARD!\n",
+			     card->cardnum, card->pingstatus);
+			dump_card = 1;
+		}
+#else
+		/*
+		 *  Cause a card RESET instead?
+		 */
+		if (card->pingstatus != ISR_PINGMASK) {
+			/* todo. do we want to reset the card in production */
+			/* DBG_MSG("\n[slicmon]  CARD #%d TIMED OUT - "
+			   status %x: RESET THE CARD!\n", card->cardnum,
+			   card->pingstatus); */
+			DBG_ERROR
+			    ("\n[slicmon]  CARD #%d TIMED OUT - status %x: "
+			     "DUMP THE CARD!\n",
+			     card->cardnum, card->pingstatus);
+			dump_card = 1;
+		}
+#endif
+		if ((dump_card)
+		    || (card->dump_requested == SLIC_DUMP_REQUESTED)) {
+			if (card->dump_requested == SLIC_DUMP_REQUESTED) {
+				DBG_ERROR
+			    ("[slicmon]: Dump card Requested: Card %x\n",
+				     card->cardnum);
+			}
+			if (card->pingstatus != ISR_PINGMASK) {
+				ushort cpuid = 0;
+				ushort crashpc = 0;
+
+				if (card->adapter[0]) {
+					if ((card->adapter[0])->memorylength >=
+					    CRASH_INFO_OFFSET +
+					    sizeof(slic_crash_info)) {
+						char *crashptr;
+						p_slic_crash_info crashinfo;
+
+						crashptr =
+						    ((char *)card->adapter[0]->
+						     slic_regs) +
+						    CRASH_INFO_OFFSET;
+						crashinfo =
+						    (p_slic_crash_info)
+						    crashptr;
+						cpuid = crashinfo->cpu_id;
+						crashpc = crashinfo->crash_pc;
+					}
+				}
+				DBG_ERROR
+				    ("[slicmon]: Dump card: Card %x crashed "
+				     "and failed to answer PING. "
+				     "CPUID[%x] PC[%x]\n ",
+				     card->cardnum, cpuid, crashpc);
+			}
+
+			card->dump_requested = SLIC_DUMP_IN_PROGRESS;
+
+			/*
+			 * Set the card state to DOWN and the adapter states
+			 * to RESET.They will check this in SimbaCheckForHang
+			 * and initiate interface reset (which in turn will
+			 * reinitialize the card).
+			 */
+			card->state = CARD_DOWN;
+
+			for (i = 0; i < card->card_size; i++) {
+				adapter = card->adapter[i];
+				if (adapter) {
+					slic_if_stop_queue(adapter);
+
+					if (adapter->state == ADAPT_UP) {
+						adapter->state = ADAPT_RESET;
+						adapter->linkstate = LINK_DOWN;
+						DBG_ERROR
+						    ("[slicmon]: SLIC Card[%d] "
+						     "Port[%d] adapter[%p] "
+						     "down\n",
+						     (uint) card->cardnum,
+						     (uint) i, adapter);
+					}
+#if SLIC_GET_STATS_TIMER_ENABLED
+					/* free stats timer */
+					if (adapter->statstimerset) {
+						adapter->statstimerset = 0;
+						del_timer(&adapter->statstimer);
+					}
+#endif
+				}
+			}
+
+			for (i = 0; i < card->card_size; i++) {
+				adapter = card->adapter[i];
+				if ((adapter) && (adapter->activated)) {
+					pregs = adapter->slic_regs;
+					dump_adapter = adapter;
+
+					/*
+					 * If the dump status is zero, then
+					 * the utility processor has crashed.
+					 * If this is the case, any pending
+					 * utilityprocessor requests will not
+					 * complete and our dump commands will
+					 * not be issued.
+					 *
+					 * To avoid this we will clear any
+					 * pending utility processor requests
+					 * now.
+					 */
+					if (!card->pingstatus) {
+						spin_lock_irqsave(
+						    &adapter->upr_lock.lock,
+						    adapter->upr_lock.flags);
+						upr = adapter->upr_list;
+						while (upr) {
+							uprnext = upr->next;
+							kfree(upr);
+							upr = uprnext;
+						}
+						adapter->upr_list = 0;
+						adapter->upr_busy = 0;
+						spin_unlock_irqrestore(
+						    &adapter->upr_lock.lock,
+						    adapter->upr_lock.flags);
+					}
+
+					slic_dump_card(card, FALSE);
+					dump_complete = 1;
+				}
+
+				if (dump_complete) {
+					DBG_ERROR("SLIC Dump Complete\n");
+					/*  Only dump the card one time */
+					break;
+				}
+			}
+
+			if (dump_adapter) {
+				DBG_ERROR
+				    ("slic dump completed. "
+				     "Reenable interfaces\n");
+				slic_card_init(card, dump_adapter);
+
+				/*
+				 *  Reenable the adapters that were reset
+				 */
+				for (i = 0; i < card->card_size; i++) {
+					adapter = card->adapter[i];
+					if (adapter) {
+						if (adapter->state ==
+						    ADAPT_RESET) {
+							DBG_ERROR
+							    ("slicdump: SLIC "
+					   "Card[%d] Port[%d] adapter[%p] "
+					   "bring UP\n",
+							     (uint) card->
+							     cardnum, (uint) i,
+							     adapter);
+							adapter->state =
+							    ADAPT_DOWN;
+							adapter->linkstate =
+							    LINK_DOWN;
+							slic_entry_open
+							    (adapter->netdev);
+						}
+					}
+				}
+
+				card->dump_requested = SLIC_DUMP_DONE;
+			}
+		} else {
+		/* if pingstatus != ISR_PINGMASK) || dump_requested...ELSE
+		 *    We received a valid ping response.
+		 *    Clear the Pingstatus field, find a valid adapter
+		 *    structure and send another ping.
+		 */
+			for (i = 0; i < card->card_size; i++) {
+				adapter = card->adapter[i];
+				if (adapter && (adapter->state == ADAPT_UP)) {
+					card->pingstatus = 0;
+					slic_upr_request(adapter, SLIC_UPR_PING,
+							 0, 0, 0, 0);
+					break;	/* Only issue one per card */
+				}
+			}
+		}
+wait:
+		SLIC_INTERRUPTIBLE_SLEEP_ON_TIMEOUT(card->dump_wq, delay);
+	} while (!signal_pending(current));
+
+end_thread:
+/*  DBG_MSG("[slicmon] slic_dump_thread card[%p] pid[%x] ENDING\n",
+    card, card->dump_pid); */
+	card->dumpthread_running = 0;
+
+	return 0;
+}
+
+/*
+ * Read a single byte from our dump index file.  This
+ * value is used as our suffix for our dump path.  The
+ * value is incremented and written back to the file
+ */
+static unsigned char slic_get_dump_index(char *path)
+{
+	unsigned char index = 0;
+#ifdef SLIC_DUMP_INDEX_SUPPORT
+	u32 status;
+	void *FileHandle;
+	u32 offset;
+
+	offset = 0;
+
+	/*
+	 * Open the index file.  If one doesn't exist, create it
+	 */
+	status = create_file(&FileHandle);
+
+	if (status != STATUS_SUCCESS)
+		return (unsigned char) 0;
+
+	status = read_file(FileHandle, &index, 1, &offset);
+
+	index++;
+
+	status = write_file(FileHandle, &index, 1, &offset);
+
+	close_file(FileHandle);
+#else
+	index = 0;
+#endif
+	return index;
+}
+
+static struct file *slic_dump_open_file(struct sliccard *card)
+{
+	struct file *SLIChandle = NULL;
+	struct dentry *dentry = NULL;
+	struct inode *inode = NULL;
+	char SLICfile[50];
+
+	card->dumpfile_fs = get_fs();
+
+	set_fs(KERNEL_DS);
+
+	memset(SLICfile, 0, sizeof(SLICfile));
+	sprintf(SLICfile, "/var/tmp/slic%d-dump-%d", card->cardnum,
+		(uint) card->dump_count);
+	card->dump_count++;
+
+	SLIChandle =
+	    filp_open(SLICfile, O_CREAT | O_RDWR | O_SYNC | O_LARGEFILE, 0666);
+
+	DBG_MSG("[slicmon]: Dump Card #%d to file: %s \n", card->cardnum,
+		SLICfile);
+
+/*  DBG_MSG("[slicmon] filp_open %s SLIChandle[%p]\n", SLICfile, SLIChandle);*/
+
+	if (IS_ERR(SLIChandle))
+		goto end_slicdump;
+
+	dentry = SLIChandle->f_dentry;
+	inode = dentry->d_inode;
+
+/*  DBG_MSG("[slicmon] inode[%p] i_nlink[%x] i_mode[%x] i_op[%p] i_fop[%p]\n"
+		"f_op->write[%p]\n",
+		inode, inode->i_nlink, inode->i_mode, inode->i_op,
+		inode->i_fop, SLIChandle->f_op->write); */
+	if (inode->i_nlink > 1)
+		goto close_slicdump;	/* multiple links - don't dump */
+#ifdef HISTORICAL
+	if (!S_ISREG(inode->i_mode))
+		goto close_slicdump;
+#endif
+	if (!inode->i_op || !inode->i_fop)
+		goto close_slicdump;
+
+	if (!SLIChandle->f_op->write)
+		goto close_slicdump;
+
+	/*
+	 *  If we got here we have SUCCESSFULLY OPENED the dump file
+	 */
+/*  DBG_MSG("opened %s SLIChandle[%p]\n", SLICfile, SLIChandle); */
+	return SLIChandle;
+
+close_slicdump:
+	DBG_MSG("[slicmon] slic_dump_open_file failed close SLIChandle[%p]\n",
+		SLIChandle);
+	filp_close(SLIChandle, NULL);
+
+end_slicdump:
+	set_fs(card->dumpfile_fs);
+
+	return NULL;
+}
+
+static void slic_dump_close_file(struct sliccard *card)
+{
+
+/*  DBG_MSG("[slicmon] slic_dump_CLOSE_file close SLIChandle[%p]\n",
+   card->dumphandle); */
+
+	filp_close(card->dumphandle, NULL);
+
+	set_fs(card->dumpfile_fs);
+}
+
+static u32 slic_dump_card(struct sliccard *card, bool resume)
+{
+	struct adapter *adapter = card->master;
+	u32 status;
+	u32 queue;
+	u32 len, offset;
+	u32 sram_size, dram_size, regs;
+	struct sliccore_hdr corehdr;
+	u32 file_offset;
+	char *namestr;
+	u32 i;
+	u32 max_queues = 0;
+	u32 result;
+
+	card->dumphandle = slic_dump_open_file(card);
+
+	if (card->dumphandle == NULL) {
+		DBG_MSG("[slicmon] Cant create Dump file - dump failed\n");
+		return -ENOMEM;
+	}
+	if (!card->dumpbuffer) {
+		DBG_MSG("[slicmon] Insufficient memory for dump\n");
+		return -ENOMEM;
+	}
+	if (!card->cmdbuffer) {
+		DBG_MSG("[slicmon] Insufficient cmd memory for dump\n");
+		return -ENOMEM;
+	}
+
+	/*
+	 * Write the file version to the core header.
+	 */
+	namestr = slic_proc_version;
+	for (i = 0; i < (DRIVER_NAME_SIZE - 1); i++, namestr++) {
+		if (!namestr)
+			break;
+		corehdr.driver_version[i] = *namestr;
+	}
+	corehdr.driver_version[i] = 0;
+
+	file_offset = sizeof(struct sliccore_hdr);
+
+	/*
+	 * Issue the following debug commands to the SLIC:
+	 *        - Halt both receive and transmit
+	 *        - Dump receive registers
+	 *        - Dump transmit registers
+	 *        - Dump sram
+	 *        - Dump dram
+	 *        - Dump queues
+	 */
+	DBG_MSG("slicDump HALT Receive Processor\n");
+	card->dumptime_start = jiffies;
+
+	status = slic_dump_halt(card, PROC_RECEIVE);
+	if (status != STATUS_SUCCESS) {
+		DBG_ERROR
+		    ("Cant halt receive sequencer - dump failed status[%x]\n",
+		     status);
+		goto done;
+	}
+
+	DBG_MSG("slicDump HALT Transmit Processor\n");
+	status = slic_dump_halt(card, PROC_TRANSMIT);
+	if (status != STATUS_SUCCESS) {
+		DBG_ERROR("Cant halt transmit sequencer - dump failed\n");
+		goto done;
+	}
+
+	/* Dump receive regs */
+	status = slic_dump_reg(card, PROC_RECEIVE);
+	if (status != STATUS_SUCCESS) {
+		DBG_ERROR("Cant dump receive registers - dump failed\n");
+		goto done;
+	}
+
+	DBG_MSG("slicDump Write Receive REGS len[%x] offset[%x]\n",
+		(SLIC_NUM_REG * 4), file_offset);
+
+	result =
+	    slic_dump_write(card, card->dumpbuffer, SLIC_NUM_REG * 4,
+			    file_offset);
+	if (!result) {
+		DBG_ERROR
+		    ("Cant write rcv registers to dump file - dump failed\n");
+		goto done;
+	}
+
+	corehdr.RcvRegOff = file_offset;
+	corehdr.RcvRegsize = SLIC_NUM_REG * 4;
+	file_offset += SLIC_NUM_REG * 4;
+
+	/* Dump transmit regs */
+	status = slic_dump_reg(card, PROC_TRANSMIT);
+	if (status != STATUS_SUCCESS) {
+		DBG_ERROR("Cant dump transmit registers - dump failed\n");
+		goto done;
+	}
+
+	DBG_MSG("slicDump Write XMIT REGS len[%x] offset[%x]\n",
+		(SLIC_NUM_REG * 4), file_offset);
+
+	result =
+	    slic_dump_write(card, card->dumpbuffer, SLIC_NUM_REG * 4,
+			    file_offset);
+	if (!result) {
+		DBG_ERROR
+		    ("Cant write xmt registers to dump file - dump failed\n");
+		goto done;
+	}
+
+	corehdr.XmtRegOff = file_offset;
+	corehdr.XmtRegsize = SLIC_NUM_REG * 4;
+	file_offset += SLIC_NUM_REG * 4;
+
+	regs = SLIC_GBMAX_REG;
+
+	corehdr.FileRegOff = file_offset;
+	corehdr.FileRegsize = regs * 4;
+
+	for (offset = 0; regs;) {
+		len = MIN(regs, 16);	/* Can only xfr 16 regs at a time */
+
+		status = slic_dump_data(card, offset, (ushort) len, DESC_RFILE);
+
+		if (status != STATUS_SUCCESS) {
+			DBG_ERROR("Cant dump register file - dump failed\n");
+			goto done;
+		}
+
+		DBG_MSG("slicDump Write RegisterFile len[%x] offset[%x]\n",
+			(len * 4), file_offset);
+
+		result =
+		    slic_dump_write(card, card->dumpbuffer, len * 4,
+				    file_offset);
+		if (!result) {
+			DBG_ERROR
+			    ("Cant write register file to dump file - "
+			     "dump failed\n");
+			goto done;
+		}
+
+		file_offset += len * 4;
+		offset += len;
+		regs -= len;
+	}
+
+	dram_size = card->config.DramSize * 0x10000;
+
+	switch (adapter->devid) {
+	case SLIC_2GB_DEVICE_ID:
+		sram_size = SLIC_SRAM_SIZE2GB;
+		break;
+	case SLIC_1GB_DEVICE_ID:
+		sram_size = SLIC_SRAM_SIZE1GB;
+		break;
+	default:
+		sram_size = 0;
+		ASSERT(0);
+		break;
+	}
+
+	corehdr.SramOff = file_offset;
+	corehdr.Sramsize = sram_size;
+
+	for (offset = 0; sram_size;) {
+		len = MIN(sram_size, DUMP_BUF_SIZE);
+		status = slic_dump_data(card, offset, (ushort) len, DESC_SRAM);
+		if (status != STATUS_SUCCESS) {
+			DBG_ERROR
+			    ("[slicmon] Cant dump SRAM at offset %x - "
+			     "dump failed\n", (uint) offset);
+			goto done;
+		}
+
+		DBG_MSG("[slicmon] slicDump Write SRAM  len[%x] offset[%x]\n",
+			len, file_offset);
+
+		result =
+		    slic_dump_write(card, card->dumpbuffer, len, file_offset);
+		if (!result) {
+			DBG_ERROR
+			    ("[slicmon] Cant write SRAM to dump file - "
+			     "dump failed\n");
+			goto done;
+		}
+
+		file_offset += len;
+		offset += len;
+		sram_size -= len;
+	}
+
+	corehdr.DramOff = file_offset;
+	corehdr.Dramsize = dram_size;
+
+	for (offset = 0; dram_size;) {
+		len = MIN(dram_size, DUMP_BUF_SIZE);
+
+		status = slic_dump_data(card, offset, (ushort) len, DESC_DRAM);
+		if (status != STATUS_SUCCESS) {
+			DBG_ERROR
+			    ("[slicmon] Cant dump dram at offset %x - "
+			     "dump failed\n", (uint) offset);
+			goto done;
+		}
+
+		DBG_MSG("slicDump Write DRAM  len[%x] offset[%x]\n", len,
+			file_offset);
+
+		result =
+		    slic_dump_write(card, card->dumpbuffer, len, file_offset);
+		if (!result) {
+			DBG_ERROR
+			    ("[slicmon] Cant write DRAM to dump file - "
+			     "dump failed\n");
+			goto done;
+		}
+
+		file_offset += len;
+		offset += len;
+		dram_size -= len;
+	}
+
+	max_queues = SLIC_MAX_QUEUE;
+
+	for (queue = 0; queue < max_queues; queue++) {
+		u32 *qarray = (u32 *) card->dumpbuffer;
+		u32 qarray_physl = card->dumpbuffer_physl;
+		u32 qarray_physh = card->dumpbuffer_physh;
+		u32 qstart;
+		u32 qdelta;
+		u32 qtotal = 0;
+
+		DBG_MSG("[slicmon] Start Dump of QUEUE #0x%x\n", (uint) queue);
+
+		for (offset = 0; offset < (DUMP_BUF_SIZE >> 2); offset++) {
+			qstart = jiffies;
+			qdelta = 0;
+
+			status = slic_dump_queue(card,
+						 qarray_physl,
+						 qarray_physh, queue);
+			qarray_physl += 4;
+
+			if (status != STATUS_SUCCESS)
+				break;
+
+			if (jiffies > qstart) {
+				qdelta = jiffies - qstart;
+				qtotal += qdelta;
+			}
+		}
+
+		if (offset)
+			qdelta = qtotal / offset;
+		else
+			qdelta = 0;
+
+/*        DBG_MSG("   slicDump Write QUEUE #0x%x len[%x] offset[%x] "
+		"avgjiffs[%x]\n", queue, (offset*4), file_offset, qdelta); */
+
+		result =
+		    slic_dump_write(card, card->dumpbuffer, offset * 4,
+				    file_offset);
+
+		if (!result) {
+			DBG_ERROR
+			    ("[slicmon] Cant write QUEUES to dump file - "
+			     "dump failed\n");
+			goto done;
+		}
+
+		corehdr.queues[queue].queueOff = file_offset;
+		corehdr.queues[queue].queuesize = offset * 4;
+		file_offset += offset * 4;
+
+/*      DBG_MSG("    Reload QUEUE #0x%x elements[%x]\n", (uint)queue, offset);*/
+		/*
+		 * Fill the queue back up
+		 */
+		for (i = 0; i < offset; i++) {
+			qstart = jiffies;
+			qdelta = 0;
+
+			status = slic_dump_load_queue(card, qarray[i], queue);
+			if (status != STATUS_SUCCESS)
+				break;
+
+			if (jiffies > qstart) {
+				qdelta = jiffies - qstart;
+				qtotal += qdelta;
+			}
+		}
+
+		if (offset)
+			qdelta = qtotal / offset;
+		else
+			qdelta = 0;
+
+/*      DBG_MSG("   Reload DONE avgjiffs[%x]\n", qdelta); */
+
+		resume = 1;
+	}
+
+	len = SLIC_GB_CAMAB_SZE * 4;
+	status = slic_dump_cam(card, 0, len, DUMP_CAM_A);
+	if (status != STATUS_SUCCESS) {
+		DBG_ERROR("[slicmon] Can't dump CAM_A - dump failed\n");
+		goto done;
+	}
+
+	result = slic_dump_write(card, card->dumpbuffer, len, file_offset);
+	if (result) {
+		DBG_ERROR
+		    ("[slicmon] Can't write CAM_A data to dump file - "
+		     "dump failed\n");
+		goto done;
+	}
+	corehdr.CamAMOff = file_offset;
+	corehdr.CamASize = len;
+	file_offset += len;
+
+	len = SLIC_GB_CAMCD_SZE * 4;
+	status = slic_dump_cam(card, 0, len, DUMP_CAM_C);
+	if (status) {
+		DBG_ERROR("[slicmon] Can't dump CAM_C - dump failed\n");
+		goto done;
+	}
+
+	result = slic_dump_write(card, card->dumpbuffer, len, file_offset);
+	if (result) {
+		DBG_ERROR
+		    ("[slicmon] Can't write CAM_C data to dump file - "
+		     "dump failed\n");
+		goto done;
+	}
+	corehdr.CamCMOff = file_offset;
+	corehdr.CamCSize = len;
+	file_offset += len;
+
+done:
+	/*
+	 * Write out the core header
+	 */
+	file_offset = 0;
+	DBG_MSG("[slicmon] Write CoreHeader len[%x] offset[%x]\n",
+		(uint) sizeof(struct sliccore_hdr), file_offset);
+
+	result =
+	    slic_dump_write(card, &corehdr, sizeof(struct sliccore_hdr),
+			    file_offset);
+	DBG_MSG("[slicmon] corehdr  xoff[%x] xsz[%x]\n"
+		"    roff[%x] rsz[%x] fileoff[%x] filesz[%x]\n"
+		"    sramoff[%x] sramsz[%x], dramoff[%x] dramsz[%x]\n"
+		"    corehdr_offset[%x]\n", corehdr.XmtRegOff,
+		corehdr.XmtRegsize, corehdr.RcvRegOff, corehdr.RcvRegsize,
+		corehdr.FileRegOff, corehdr.FileRegsize, corehdr.SramOff,
+		corehdr.Sramsize, corehdr.DramOff, corehdr.Dramsize,
+		(uint) sizeof(struct sliccore_hdr));
+	for (i = 0; i < max_queues; i++) {
+		DBG_MSG("[slicmon]  QUEUE 0x%x  offset[%x] size[%x]\n",
+			(uint) i, corehdr.queues[i].queueOff,
+			corehdr.queues[i].queuesize);
+
+	}
+
+	slic_dump_close_file(card);
+
+	if (resume) {
+		DBG_MSG("slicDump RESTART RECEIVE and XMIT PROCESSORS\n\n");
+		slic_dump_resume(card, PROC_RECEIVE);
+		slic_dump_resume(card, PROC_TRANSMIT);
+	}
+
+	return status;
+}
+
+static u32 slic_dump_halt(struct sliccard *card, unsigned char proc)
+{
+	unsigned char *cmd = card->cmdbuffer;
+
+	*cmd = COMMAND_BYTE(CMD_HALT, 0, proc);
+
+	return slic_dump_send_cmd(card,
+				   card->cmdbuffer_physl,
+				   card->cmdbuffer_physh, 0, 0);
+}
+
+static u32 slic_dump_resume(struct sliccard *card, unsigned char proc)
+{
+	unsigned char *cmd = card->cmdbuffer;
+
+	*cmd = COMMAND_BYTE(CMD_RUN, 0, proc);
+
+	return slic_dump_send_cmd(card,
+				   card->cmdbuffer_physl,
+				   card->cmdbuffer_physh, 0, 0);
+}
+
+static u32 slic_dump_reg(struct sliccard *card, unsigned char proc)
+{
+	struct dump_cmd *dump = (struct dump_cmd *)card->cmdbuffer;
+
+	dump->cmd = COMMAND_BYTE(CMD_DUMP, 0, proc);
+	dump->desc = DESC_REG;
+	dump->count = 0;
+	dump->addr = 0;
+
+	return slic_dump_send_cmd(card,
+				   card->cmdbuffer_physl,
+				   card->cmdbuffer_physh,
+				   card->dumpbuffer_physl,
+				   card->dumpbuffer_physh);
+}
+
+static u32 slic_dump_data(struct sliccard *card,
+		       u32 addr, ushort count, unsigned char desc)
+{
+	struct dump_cmd *dump = (struct dump_cmd *)card->cmdbuffer;
+
+	dump->cmd = COMMAND_BYTE(CMD_DUMP, 0, PROC_RECEIVE);
+	dump->desc = desc;
+	dump->count = count;
+	dump->addr = addr;
+
+	return slic_dump_send_cmd(card,
+				   card->cmdbuffer_physl,
+				   card->cmdbuffer_physh,
+				   card->dumpbuffer_physl,
+				   card->dumpbuffer_physh);
+}
+
+static u32 slic_dump_queue(struct sliccard *card,
+			u32 addr, u32 buf_physh, u32 queue)
+{
+	struct dump_cmd *dump = (struct dump_cmd *)card->cmdbuffer;
+
+	dump->cmd = COMMAND_BYTE(CMD_DUMP, 0, PROC_RECEIVE);
+	dump->desc = DESC_QUEUE;
+	dump->count = 1;
+	dump->addr = queue;
+
+	return slic_dump_send_cmd(card,
+				   card->cmdbuffer_physl,
+				   card->cmdbuffer_physh,
+				   addr, card->dumpbuffer_physh);
+}
+
+static u32 slic_dump_load_queue(struct sliccard *card, u32 data,
+				u32 queue)
+{
+	struct dump_cmd *load = (struct dump_cmd *) card->cmdbuffer;
+
+	load->cmd = COMMAND_BYTE(CMD_LOAD, 0, PROC_RECEIVE);
+	load->desc = DESC_QUEUE;
+	load->count = (ushort) queue;
+	load->addr = data;
+
+	return slic_dump_send_cmd(card,
+				   card->cmdbuffer_physl,
+				   card->cmdbuffer_physh, 0, 0);
+}
+
+static u32 slic_dump_cam(struct sliccard *card,
+		      u32 addr, u32 count, unsigned char desc)
+{
+	struct dump_cmd *dump = (struct dump_cmd *)card->cmdbuffer;
+
+	dump->cmd = COMMAND_BYTE(CMD_CAM_OPS, 0, PROC_NONE);
+	dump->desc = desc;
+	dump->count = count;
+	dump->addr = 0;
+
+	return slic_dump_send_cmd(card,
+				   card->cmdbuffer_physl,
+				   card->cmdbuffer_physh,
+				   addr, card->dumpbuffer_physh);
+}
+
+static u32 slic_dump_send_cmd(struct sliccard *card,
+			   u32 cmd_physl,
+			   u32 cmd_physh,
+			   u32 buf_physl, u32 buf_physh)
+{
+	ulong timeout = SLIC_MS_TO_JIFFIES(500);	/* 500 msec */
+	u32 attempts = 5;
+	u32 delay = SLIC_MS_TO_JIFFIES(10);	/* 10 msec */
+	struct adapter *adapter = card->master;
+
+	ASSERT(adapter);
+	do {
+		/*
+		 * Zero the Dumpstatus field of the adapter structure
+		 */
+		card->dumpstatus = 0;
+		/*
+		 * Issue the dump command via a utility processor request.
+		 *
+		 * Kludge: We use the Informationbuffer parameter to hold
+		 * the buffer address
+		 */
+		slic_upr_request(adapter, SLIC_UPR_DUMP, cmd_physl, cmd_physh,
+				 buf_physl, buf_physh);
+
+		timeout += jiffies;
+		/*
+		 * Spin until completion or timeout.
+		 */
+		while (!card->dumpstatus) {
+			int num_sleeps = 0;
+
+			if (jiffies > timeout) {
+				/*
+				 *  Complete the timed-out DUMP UPR request.
+				 */
+				slic_upr_request_complete(adapter, 0);
+				DBG_ERROR
+				    ("%s: TIMED OUT num_sleeps[%x] "
+				     "status[%x]\n",
+				     __func__, num_sleeps, STATUS_FAILURE);
+
+				return STATUS_FAILURE;
+			}
+			num_sleeps++;
+			SLIC_INTERRUPTIBLE_SLEEP_ON_TIMEOUT(card->dump_wq,
+							    delay);
+		}
+
+		if (card->dumpstatus & ISR_UPCERR) {
+			/*
+			 * Error (or queue empty)
+			 */
+/*          DBG_ERROR("[slicmon] %s: DUMP_STATUS & ISR_UPCERR status[%x]\n",
+		__func__, STATUS_FAILURE); */
+
+			return STATUS_FAILURE;
+		} else if (card->dumpstatus & ISR_UPCBSY) {
+			/*
+			 * Retry
+			 */
+			DBG_ERROR("%s: ISR_UPCBUSY attempt[%x]\n", __func__,
+				  attempts);
+
+			attempts--;
+		} else {
+			/*
+			 * success
+			 */
+			return STATUS_SUCCESS;
+		}
+
+	} while (attempts);
+
+	DBG_ERROR("%s: GAVE UP AFTER SEVERAL ATTEMPTS status[%x]\n",
+		  __func__, STATUS_FAILURE);
+
+	/*
+	 * Gave up after several attempts
+	 */
+	return STATUS_FAILURE;
+}
+
+#endif
+/*=============================================================================
+  =============================================================================
+  ===                                                                       ===
+  ===      *** END **** END **** END **** END ***                           ===
+  ===       SLIC  DUMP  MANAGEMENT        SECTION                           ===
+  ===                                                                       ===
+  ===                                                                       ===
+  ===                                                                       ===
+  =============================================================================
+  ============================================================================*/
+
+/******************************************************************************/
+/****************   MODULE INITIATION / TERMINATION FUNCTIONS   ***************/
+/******************************************************************************/
+
+static struct pci_driver slic_driver = {
+	.name = DRV_NAME,
+	.id_table = slic_pci_tbl,
+	.probe = slic_entry_probe,
+	.remove = slic_entry_remove,
+#if SLIC_POWER_MANAGEMENT_ENABLED
+	.suspend = slicpm_suspend,
+	.resume = slicpm_resume,
+#endif
+/*    .shutdown   =     slic_shutdown,  MOOK_INVESTIGATE */
+};
+
+static int __init slic_module_init(void)
+{
+	struct pci_device_id *pcidev;
+	int ret;
+
+/*      DBG_MSG("slicoss: %s ENTER cpu %d\n", __func__, smp_processor_id()); */
+
+	slic_init_driver();
+
+	if (debug >= 0 && slic_debug != debug)
+		printk(SLICLEVEL "slicoss: debug level is %d.\n", debug);
+	if (debug >= 0)
+		slic_debug = debug;
+
+	pcidev = (struct pci_device_id *)slic_driver.id_table;
+/*      DBG_MSG("slicoss: %s call pci_module_init jiffies[%lx] cpu #%d\n",
+	__func__, jiffies, smp_processor_id()); */
+
+	ret = pci_register_driver(&slic_driver);
+
+/*  DBG_MSG("slicoss: %s EXIT after call pci_module_init jiffies[%lx] "
+	    "cpu #%d status[%x]\n",__func__, jiffies,
+	    smp_processor_id(), ret); */
+
+	return ret;
+}
+
+static void __exit slic_module_cleanup(void)
+{
+/*      DBG_MSG("slicoss: %s ENTER\n", __func__); */
+	pci_unregister_driver(&slic_driver);
+	slic_debug_cleanup();
+/*      DBG_MSG("slicoss: %s EXIT\n", __func__); */
+}
+
+module_init(slic_module_init);
+module_exit(slic_module_cleanup);
diff --git a/drivers/staging/staging.c b/drivers/staging/staging.c
new file mode 100644
index 0000000..233e589
--- /dev/null
+++ b/drivers/staging/staging.c
@@ -0,0 +1,19 @@
+#include <linux/kernel.h>
+#include <linux/init.h>
+#include <linux/module.h>
+
+static int __init staging_init(void)
+{
+	return 0;
+}
+
+static void __exit staging_exit(void)
+{
+}
+
+module_init(staging_init);
+module_exit(staging_exit);
+
+MODULE_AUTHOR("Greg Kroah-Hartman");
+MODULE_DESCRIPTION("Staging Core");
+MODULE_LICENSE("GPL");
diff --git a/drivers/staging/sxg/Kconfig b/drivers/staging/sxg/Kconfig
new file mode 100644
index 0000000..1ae3508
--- /dev/null
+++ b/drivers/staging/sxg/Kconfig
@@ -0,0 +1,10 @@
+config SXG
+	tristate "Alacritech SLIC Technology Non-Accelerated 10Gbe support"
+	depends on PCI && NETDEV_10000
+	default n
+	help
+	  This driver supports the Alacritech SLIC Technology Non-Accelerated
+	  10Gbe network cards.
+
+	  To compile this driver as a module, choose
+	  M here: the module will be called sxg.
diff --git a/drivers/staging/sxg/Makefile b/drivers/staging/sxg/Makefile
new file mode 100644
index 0000000..ec48faa
--- /dev/null
+++ b/drivers/staging/sxg/Makefile
@@ -0,0 +1 @@
+obj-$(CONFIG_SXG)	+= sxg.o
diff --git a/drivers/staging/sxg/README b/drivers/staging/sxg/README
new file mode 100644
index 0000000..4d1ddbe
--- /dev/null
+++ b/drivers/staging/sxg/README
@@ -0,0 +1,13 @@
+This is the rough cut at a driver for the Alacritech SLIC Technology
+Non-Accelerated 10Gbe network driver.
+
+TODO:
+	- lindent the code
+	- remove typedefs
+	- remove wrappers
+	- checkpatch.pl cleanups
+	- new functionality that the card needs
+
+Please send patches to:
+        Greg Kroah-Hartman <gregkh@suse.de>
+for any cleanups that you do to this driver.
diff --git a/drivers/staging/sxg/saharadbgdownload.h b/drivers/staging/sxg/saharadbgdownload.h
new file mode 100644
index 0000000..d8865ba
--- /dev/null
+++ b/drivers/staging/sxg/saharadbgdownload.h
@@ -0,0 +1,4854 @@
+#define SAHARA_UCODE_VERS_STRING	"$Revision: 1.1 $"
+#define SAHARA_UCODE_VERS_DATE  	"$Date: 2008/06/27 12:58:27 $"
+#define SAHARA_UCODE_HOSTIF_ID  	3
+
+static u32 SNumSections = 0x2;
+static u32 SSectionSize[] =
+{
+	0x0000e274, 0x0000000c,
+};
+
+static u32 SSectionStart[] =
+{
+	0x00000000, 0x00001fff,
+};
+
+static unsigned char SaharaUCode[2][57972] =
+{
+{
+	0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x88, 0x82, 0x4d, 0x29, 0x3a,
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+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x9c, 0x0f, 0x80, 0x2a, 0x32,
+	0x00, 0x00, 0x6b, 0x12, 0x04, 0x00, 0x00, 0x80, 0x02, 0x40, 0x29, 0xb2,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x50, 0x83, 0x3e, 0x00, 0x34,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x48, 0x83, 0x3e, 0x00, 0x34,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x44, 0x53, 0x0a, 0x00, 0x34,
+	0x00, 0x00, 0x6c, 0x12, 0x00, 0x00, 0x00, 0x88, 0x0f, 0x40, 0x2b, 0x92,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x90, 0x0f, 0x00, 0x28, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x94, 0x0f, 0x00, 0x29, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x98, 0x0f, 0x80, 0x2a, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xa8, 0x02, 0xc0, 0xf9, 0x32,
+	0x71, 0x12, 0x97, 0x12, 0x00, 0x00, 0x00, 0xb0, 0x0f, 0x00, 0x36, 0x92,
+	0x07, 0x00, 0x74, 0x12, 0x04, 0x00, 0x00, 0x80, 0x82, 0x4d, 0x29, 0xbc,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xa0, 0x1f, 0x00, 0xfa, 0x3a,
+	0x00, 0x00, 0x68, 0x12, 0x00, 0x00, 0x00, 0x9c, 0x0f, 0x80, 0x2a, 0x92,
+	0xc0, 0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0xac, 0x0f, 0x00, 0x36, 0x32,
+	0x01, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x9c, 0x02, 0x00, 0x36, 0x32,
+	0x00, 0x00, 0x84, 0x12, 0x00, 0x00, 0x00, 0x80, 0x02, 0x00, 0x00, 0xd0,
+	0x1f, 0x00, 0x7a, 0x12, 0x04, 0x00, 0x00, 0x80, 0x82, 0xcd, 0x29, 0xbc,
+	0xc0, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xac, 0x8f, 0xcd, 0xfa, 0x3a,
+	0x00, 0x00, 0x76, 0x12, 0x00, 0x00, 0x00, 0x9c, 0x12, 0xc0, 0x29, 0x9a,
+	0x00, 0x00, 0x3a, 0x12, 0x00, 0x00, 0x00, 0x80, 0x02, 0x00, 0x00, 0xd0,
+	0x00, 0x00, 0x30, 0x12, 0x00, 0x00, 0x00, 0x80, 0x02, 0x00, 0x00, 0xd0,
+	0x00, 0x00, 0x82, 0x12, 0x04, 0x00, 0x00, 0x80, 0x52, 0x8a, 0xfa, 0xbc,
+	0xa2, 0x60, 0x03, 0x00, 0x00, 0x00, 0x00, 0x58, 0x03, 0x00, 0x37, 0x32,
+	0x82, 0x12, 0x00, 0x00, 0x00, 0x00, 0x00, 0x5c, 0x03, 0x00, 0x36, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x50, 0xa3, 0x3e, 0x00, 0x34,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x48, 0xa3, 0x3e, 0x00, 0x34,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x44, 0x53, 0x0a, 0x00, 0x34,
+	0x00, 0xcc, 0x00, 0x00, 0x00, 0x00, 0x00, 0xa4, 0x0f, 0x00, 0x36, 0x32,
+	0x00, 0x00, 0xf7, 0x11, 0x00, 0x00, 0x00, 0x80, 0x02, 0x00, 0x00, 0x90,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xc4, 0x02, 0xc0, 0xfa, 0x32,
+	0x03, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x9c, 0x0f, 0x00, 0x36, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xbc, 0x0f, 0x40, 0x2f, 0x32,
+	0x00, 0x00, 0x8b, 0x12, 0x04, 0x00, 0x00, 0x9c, 0x1f, 0xc0, 0xf9, 0xbc,
+	0x00, 0x00, 0x8a, 0x12, 0x04, 0x00, 0x00, 0x80, 0x02, 0x40, 0x2f, 0xb2,
+	0x00, 0x00, 0x87, 0x12, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x00, 0x2c, 0x92,
+	0x00, 0x00, 0x87, 0x12, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x00, 0x36, 0x92,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x40, 0x2c, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x80, 0x2c, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0xc0, 0x2c, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x00, 0x2d, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x40, 0x2d, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x80, 0x2d, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0xc0, 0x2d, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0xc0, 0xfb, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x80, 0x2f, 0x32,
+	0x18, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xf8, 0x73, 0x0a, 0x02, 0x39,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x01, 0x00, 0xe0, 0x07, 0x80, 0x3f, 0x52,
+	0xff, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x44, 0x03, 0x00, 0x36, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x00, 0xf9, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x40, 0x28, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x80, 0xf8, 0x32,
+	0x03, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x9c, 0x0f, 0x00, 0x36, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xbc, 0x0f, 0xc0, 0x2b, 0x32,
+	0x00, 0x00, 0xa0, 0x12, 0x04, 0x00, 0x00, 0x9c, 0x1f, 0xc0, 0xf9, 0xbc,
+	0x00, 0x00, 0x9f, 0x12, 0x04, 0x00, 0x00, 0x80, 0x02, 0xc0, 0x2b, 0xb2,
+	0x00, 0x00, 0x9c, 0x12, 0x00, 0x00, 0x00, 0xe0, 0x07, 0xc0, 0x28, 0x92,
+	0x00, 0x00, 0x9c, 0x12, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x00, 0x36, 0x92,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x40, 0xf9, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x40, 0x29, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x80, 0x29, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0xc0, 0x29, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x00, 0x2a, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x40, 0x2a, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x80, 0xf9, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0xc0, 0x2a, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x00, 0x2b, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x40, 0x2b, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0x80, 0x2b, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe0, 0x07, 0xc0, 0xfb, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x88, 0x02, 0x00, 0xfb, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x9c, 0x02, 0x00, 0x00, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xd8, 0x02, 0x00, 0x00, 0x32,
+	0x00, 0x00, 0xb1, 0x12, 0x9f, 0x00, 0x00, 0x80, 0x02, 0x00, 0x90, 0xb2,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x11, 0x00, 0x00, 0x07, 0x40, 0x90, 0x52,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x10, 0x00, 0x00, 0x07, 0x80, 0x90, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x19, 0x00, 0x00, 0x07, 0x40, 0x90, 0x52,
+	0x00, 0x00, 0xb3, 0x12, 0x12, 0x00, 0x00, 0x48, 0xf2, 0x01, 0x00, 0xb4,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x80, 0x02, 0x00, 0x90, 0x32,
+	0x00, 0x00, 0xb5, 0x12, 0x12, 0x00, 0x00, 0x9c, 0x0f, 0xc0, 0x21, 0xb2,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x01, 0x00, 0x80, 0x02, 0x00, 0x00, 0x50,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xb4, 0x0f, 0x40, 0xfb, 0x35,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x9c, 0x02, 0x00, 0x00, 0x32,
+	0x4c, 0x42, 0x00, 0x00, 0x00, 0x00, 0x00, 0xa8, 0x02, 0x00, 0x36, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x08, 0x00, 0x00, 0x07, 0x80, 0x2a, 0x32,
+	0x00, 0x00, 0xad, 0x12, 0x00, 0x00, 0x00, 0x80, 0x02, 0x00, 0x00, 0xd0,
+	0x00, 0x00, 0xb3, 0x12, 0x00, 0x00, 0x00, 0x80, 0x02, 0x00, 0x00, 0xd0,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x0c, 0xcb, 0xc1, 0xb0, 0x34,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x9c, 0x02, 0x00, 0x00, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xd8, 0x02, 0x00, 0x00, 0x32,
+	0x00, 0x00, 0xc4, 0x12, 0x00, 0x00, 0x00, 0x28, 0x09, 0xc0, 0xb0, 0xd2,
+	0x00, 0x00, 0xbe, 0x12, 0x04, 0x00, 0x00, 0x80, 0x02, 0x80, 0x92, 0xb2,
+	0x00, 0x00, 0xc2, 0x12, 0x12, 0x00, 0x00, 0x9c, 0x0f, 0xc0, 0x21, 0xb2,
+	0x00, 0x00, 0xc4, 0x11, 0x00, 0x00, 0x00, 0x80, 0x02, 0x00, 0x00, 0x90,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xb0, 0x02, 0x00, 0x00, 0x32,
+	0x02, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xa0, 0xc2, 0x0a, 0x00, 0x39,
+	0x00, 0x00, 0xc8, 0x12, 0x04, 0x01, 0x00, 0x28, 0x09, 0x34, 0xb0, 0xba,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x01, 0x00, 0x28, 0x09, 0x00, 0x00, 0x52,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xa8, 0x22, 0x00, 0x2b, 0x37,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x84, 0xc0, 0x37, 0xac, 0xb0, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x0c, 0x0b, 0x00, 0x00, 0x32,
+	0xff, 0xff, 0x00, 0x00, 0x00, 0x00, 0x00, 0x78, 0xa9, 0x4d, 0xb0, 0x30,
+	0x00, 0x00, 0xd8, 0x12, 0x80, 0x00, 0x00, 0x80, 0x02, 0x40, 0xb0, 0xb6,
+	0x00, 0x00, 0xcd, 0x12, 0x12, 0x00, 0x00, 0x00, 0x09, 0x40, 0x20, 0xb2,
+	0x00, 0x00, 0xce, 0x12, 0x12, 0x00, 0x00, 0x04, 0x09, 0x40, 0x20, 0xb2,
+	0x00, 0x00, 0xd1, 0x12, 0x9f, 0x01, 0x00, 0x80, 0x02, 0x00, 0x90, 0xb2,
+	0x00, 0x00, 0xd0, 0x12, 0x12, 0x00, 0x00, 0x08, 0x09, 0x40, 0x20, 0xb2,
+	0x0d, 0x00, 0xcd, 0x12, 0x04, 0x01, 0x00, 0x80, 0x02, 0xe4, 0x16, 0xb8,
+	0x02, 0x00, 0xcd, 0x12, 0x04, 0x01, 0x00, 0xbc, 0x0f, 0x24, 0x17, 0xb8,
+	0x06, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xbc, 0x0f, 0x64, 0x16, 0x38,
+	0x00, 0x00, 0xcd, 0x12, 0x04, 0x01, 0x00, 0x80, 0x22, 0xc0, 0xfb, 0xbc,
+	0x02, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xa0, 0xc2, 0x0a, 0x00, 0x39,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x04, 0x3b, 0x40, 0xb0, 0x33,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x04, 0xcd, 0x4a, 0xd0, 0x35,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0x00, 0xe7, 0x25, 0x01, 0x32,
+	0x00, 0x42, 0x00, 0x00, 0x00, 0x08, 0x00, 0x00, 0x87, 0x8d, 0x2a, 0x3a,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x10, 0x00, 0x00, 0x07, 0x00, 0xb0, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x00, 0x18, 0x00, 0x00, 0x07, 0x00, 0xd0, 0x32,
+	0x00, 0x00, 0x00, 0x00, 0x12, 0x01, 0x00, 0x48, 0xf2, 0xc1, 0x38, 0x54,
+	0x00, 0x00, 0xdc, 0x12, 0x00, 0x00, 0x00, 0x80, 0x02, 0x00, 0x00, 0x90,
+	0x00, 0x00, 0xff, 0xff, 0x00, 0x00, 0x00, 0x80, 0x02, 0x00, 0x00, 0x90,
+},
+{
+	0x00, 0x00, 0x36, 0x00, 0x00, 0x00, 0x00, 0x80, 0x02, 0x00, 0x00, 0x90,
+},
+};
diff --git a/drivers/staging/sxg/sxg.c b/drivers/staging/sxg/sxg.c
new file mode 100644
index 0000000..6ccbee8
--- /dev/null
+++ b/drivers/staging/sxg/sxg.c
@@ -0,0 +1,3624 @@
+/**************************************************************************
+ *
+ * Copyright (C) 2000-2008 Alacritech, Inc.  All rights reserved.
+ *
+ * Redistribution and use in source and binary forms, with or without
+ * modification, are permitted provided that the following conditions
+ * are met:
+ *
+ * 1. Redistributions of source code must retain the above copyright
+ *    notice, this list of conditions and the following disclaimer.
+ * 2. Redistributions in binary form must reproduce the above
+ *    copyright notice, this list of conditions and the following
+ *    disclaimer in the documentation and/or other materials provided
+ *    with the distribution.
+ *
+ * THIS SOFTWARE IS PROVIDED BY ALACRITECH, INC. ``AS IS'' AND ANY
+ * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
+ * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
+ * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL ALACRITECH, INC. OR
+ * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
+ * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
+ * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
+ * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
+ * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
+ * SUCH DAMAGE.
+ *
+ * The views and conclusions contained in the software and documentation
+ * are those of the authors and should not be interpreted as representing
+ * official policies, either expressed or implied, of Alacritech, Inc.
+ *
+ **************************************************************************/
+
+/*
+ * FILENAME: sxg.c
+ *
+ * The SXG driver for Alacritech's 10Gbe products.
+ *
+ * NOTE: This is the standard, non-accelerated version of Alacritech's
+ *       IS-NIC driver.
+ */
+
+#include <linux/kernel.h>
+#include <linux/string.h>
+#include <linux/errno.h>
+#include <linux/module.h>
+#include <linux/moduleparam.h>
+#include <linux/ioport.h>
+#include <linux/slab.h>
+#include <linux/interrupt.h>
+#include <linux/timer.h>
+#include <linux/pci.h>
+#include <linux/spinlock.h>
+#include <linux/init.h>
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/ethtool.h>
+#include <linux/skbuff.h>
+#include <linux/delay.h>
+#include <linux/types.h>
+#include <linux/dma-mapping.h>
+#include <linux/mii.h>
+
+#define SLIC_DUMP_ENABLED		0
+#define SLIC_GET_STATS_ENABLED		0
+#define LINUX_FREES_ADAPTER_RESOURCES	1
+#define SXG_OFFLOAD_IP_CHECKSUM		0
+#define SXG_POWER_MANAGEMENT_ENABLED	0
+#define VPCI				0
+#define DBG				1
+#define ATK_DEBUG			1
+
+#include "sxg_os.h"
+#include "sxghw.h"
+#include "sxghif.h"
+#include "sxg.h"
+#include "sxgdbg.h"
+
+#include "sxgphycode.h"
+#include "saharadbgdownload.h"
+
+static int sxg_allocate_buffer_memory(p_adapter_t adapter, u32 Size,
+				      SXG_BUFFER_TYPE BufferType);
+static void sxg_allocate_rcvblock_complete(p_adapter_t adapter, void *RcvBlock,
+					   dma_addr_t PhysicalAddress,
+					   u32 Length);
+static void sxg_allocate_sgl_buffer_complete(p_adapter_t adapter,
+					     PSXG_SCATTER_GATHER SxgSgl,
+					     dma_addr_t PhysicalAddress,
+					     u32 Length);
+
+static void sxg_mcast_init_crc32(void);
+
+static int sxg_entry_open(p_net_device dev);
+static int sxg_entry_halt(p_net_device dev);
+static int sxg_ioctl(p_net_device dev, struct ifreq *rq, int cmd);
+static int sxg_send_packets(struct sk_buff *skb, p_net_device dev);
+static int sxg_transmit_packet(p_adapter_t adapter, struct sk_buff *skb);
+static void sxg_dumb_sgl(PSCATTER_GATHER_LIST pSgl, PSXG_SCATTER_GATHER SxgSgl);
+
+static void sxg_handle_interrupt(p_adapter_t adapter);
+static int sxg_process_isr(p_adapter_t adapter, u32 MessageId);
+static u32 sxg_process_event_queue(p_adapter_t adapter, u32 RssId);
+static void sxg_complete_slow_send(p_adapter_t adapter);
+static struct sk_buff *sxg_slow_receive(p_adapter_t adapter, PSXG_EVENT Event);
+static void sxg_process_rcv_error(p_adapter_t adapter, u32 ErrorStatus);
+static bool sxg_mac_filter(p_adapter_t adapter,
+			   p_ether_header EtherHdr, ushort length);
+
+#if SLIC_GET_STATS_ENABLED
+static struct net_device_stats *sxg_get_stats(p_net_device dev);
+#endif
+
+static int sxg_mac_set_address(p_net_device dev, void *ptr);
+
+static void sxg_adapter_set_hwaddr(p_adapter_t adapter);
+
+static void sxg_unmap_mmio_space(p_adapter_t adapter);
+static void sxg_mcast_set_mask(p_adapter_t adapter);
+
+static int sxg_initialize_adapter(p_adapter_t adapter);
+static void sxg_stock_rcv_buffers(p_adapter_t adapter);
+static void sxg_complete_descriptor_blocks(p_adapter_t adapter,
+					   unsigned char Index);
+static int sxg_initialize_link(p_adapter_t adapter);
+static int sxg_phy_init(p_adapter_t adapter);
+static void sxg_link_event(p_adapter_t adapter);
+static SXG_LINK_STATE sxg_get_link_state(p_adapter_t adapter);
+static void sxg_link_state(p_adapter_t adapter, SXG_LINK_STATE LinkState);
+static int sxg_write_mdio_reg(p_adapter_t adapter,
+			      u32 DevAddr, u32 RegAddr, u32 Value);
+static int sxg_read_mdio_reg(p_adapter_t adapter,
+			     u32 DevAddr, u32 RegAddr, u32 *pValue);
+static void sxg_mcast_set_list(p_net_device dev);
+
+#define XXXTODO 0
+
+static unsigned int sxg_first_init = 1;
+static char *sxg_banner =
+    "Alacritech SLIC Technology(tm) Server and Storage 10Gbe Accelerator (Non-Accelerated)\n";
+
+static int sxg_debug = 1;
+static int debug = -1;
+static p_net_device head_netdevice = NULL;
+
+static sxgbase_driver_t sxg_global = {
+	.dynamic_intagg = 1,
+};
+static int intagg_delay = 100;
+static u32 dynamic_intagg = 0;
+
+#define DRV_NAME	"sxg"
+#define DRV_VERSION	"1.0.1"
+#define DRV_AUTHOR	"Alacritech, Inc. Engineering"
+#define DRV_DESCRIPTION	"Alacritech SLIC Techonology(tm) Non-Accelerated 10Gbe Driver"
+#define DRV_COPYRIGHT	"Copyright 2000-2008 Alacritech, Inc.  All rights reserved."
+
+MODULE_AUTHOR(DRV_AUTHOR);
+MODULE_DESCRIPTION(DRV_DESCRIPTION);
+MODULE_LICENSE("GPL");
+
+module_param(dynamic_intagg, int, 0);
+MODULE_PARM_DESC(dynamic_intagg, "Dynamic Interrupt Aggregation Setting");
+module_param(intagg_delay, int, 0);
+MODULE_PARM_DESC(intagg_delay, "uSec Interrupt Aggregation Delay");
+
+static struct pci_device_id sxg_pci_tbl[] __devinitdata = {
+	{PCI_DEVICE(SXG_VENDOR_ID, SXG_DEVICE_ID)},
+	{0,}
+};
+
+MODULE_DEVICE_TABLE(pci, sxg_pci_tbl);
+
+/***********************************************************************
+************************************************************************
+************************************************************************
+************************************************************************
+************************************************************************/
+
+static inline void sxg_reg32_write(void __iomem *reg, u32 value, bool flush)
+{
+	writel(value, reg);
+	if (flush)
+		mb();
+}
+
+static inline void sxg_reg64_write(p_adapter_t adapter, void __iomem *reg,
+				   u64 value, u32 cpu)
+{
+	u32 value_high = (u32) (value >> 32);
+	u32 value_low = (u32) (value & 0x00000000FFFFFFFF);
+	unsigned long flags;
+
+	spin_lock_irqsave(&adapter->Bit64RegLock, flags);
+	writel(value_high, (void __iomem *)(&adapter->UcodeRegs[cpu].Upper));
+	writel(value_low, reg);
+	spin_unlock_irqrestore(&adapter->Bit64RegLock, flags);
+}
+
+static void sxg_init_driver(void)
+{
+	if (sxg_first_init) {
+		DBG_ERROR("sxg: %s sxg_first_init set jiffies[%lx]\n",
+			  __FUNCTION__, jiffies);
+		sxg_first_init = 0;
+		spin_lock_init(&sxg_global.driver_lock);
+	}
+}
+
+static void sxg_dbg_macaddrs(p_adapter_t adapter)
+{
+	DBG_ERROR("  (%s) curr %2.2X:%2.2X:%2.2X:%2.2X:%2.2X:%2.2X\n",
+		  adapter->netdev->name, adapter->currmacaddr[0],
+		  adapter->currmacaddr[1], adapter->currmacaddr[2],
+		  adapter->currmacaddr[3], adapter->currmacaddr[4],
+		  adapter->currmacaddr[5]);
+	DBG_ERROR("  (%s) mac  %2.2X:%2.2X:%2.2X:%2.2X:%2.2X:%2.2X\n",
+		  adapter->netdev->name, adapter->macaddr[0],
+		  adapter->macaddr[1], adapter->macaddr[2],
+		  adapter->macaddr[3], adapter->macaddr[4],
+		  adapter->macaddr[5]);
+	return;
+}
+
+// SXG Globals
+static SXG_DRIVER SxgDriver;
+
+#ifdef  ATKDBG
+static sxg_trace_buffer_t LSxgTraceBuffer;
+#endif /* ATKDBG */
+static sxg_trace_buffer_t *SxgTraceBuffer = NULL;
+
+/*
+ * sxg_download_microcode
+ *
+ * Download Microcode to Sahara adapter
+ *
+ * Arguments -
+ *		adapter		- A pointer to our adapter structure
+ *		UcodeSel	- microcode file selection
+ *
+ * Return
+ *	int
+ */
+static bool sxg_download_microcode(p_adapter_t adapter, SXG_UCODE_SEL UcodeSel)
+{
+	PSXG_HW_REGS HwRegs = adapter->HwRegs;
+	u32 Section;
+	u32 ThisSectionSize;
+	u32 *Instruction = NULL;
+	u32 BaseAddress, AddressOffset, Address;
+//      u32                         Failure;
+	u32 ValueRead;
+	u32 i;
+	u32 numSections = 0;
+	u32 sectionSize[16];
+	u32 sectionStart[16];
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "DnldUcod",
+		  adapter, 0, 0, 0);
+	DBG_ERROR("sxg: %s ENTER\n", __FUNCTION__);
+
+	switch (UcodeSel) {
+	case SXG_UCODE_SAHARA:	// Sahara operational ucode
+		numSections = SNumSections;
+		for (i = 0; i < numSections; i++) {
+			sectionSize[i] = SSectionSize[i];
+			sectionStart[i] = SSectionStart[i];
+		}
+		break;
+	default:
+		printk(KERN_ERR KBUILD_MODNAME
+		       ": Woah, big error with the microcode!\n");
+		break;
+	}
+
+	DBG_ERROR("sxg: RESET THE CARD\n");
+	// First, reset the card
+	WRITE_REG(HwRegs->Reset, 0xDEAD, FLUSH);
+
+	// Download each section of the microcode as specified in
+	// its download file.  The *download.c file is generated using
+	// the saharaobjtoc facility which converts the metastep .obj
+	// file to a .c file which contains a two dimentional array.
+	for (Section = 0; Section < numSections; Section++) {
+		DBG_ERROR("sxg: SECTION # %d\n", Section);
+		switch (UcodeSel) {
+		case SXG_UCODE_SAHARA:
+			Instruction = (u32 *) & SaharaUCode[Section][0];
+			break;
+		default:
+			ASSERT(0);
+			break;
+		}
+		BaseAddress = sectionStart[Section];
+		ThisSectionSize = sectionSize[Section] / 12;	// Size in instructions
+		for (AddressOffset = 0; AddressOffset < ThisSectionSize;
+		     AddressOffset++) {
+			Address = BaseAddress + AddressOffset;
+			ASSERT((Address & ~MICROCODE_ADDRESS_MASK) == 0);
+			// Write instruction bits 31 - 0
+			WRITE_REG(HwRegs->UcodeDataLow, *Instruction, FLUSH);
+			// Write instruction bits 63-32
+			WRITE_REG(HwRegs->UcodeDataMiddle, *(Instruction + 1),
+				  FLUSH);
+			// Write instruction bits 95-64
+			WRITE_REG(HwRegs->UcodeDataHigh, *(Instruction + 2),
+				  FLUSH);
+			// Write instruction address with the WRITE bit set
+			WRITE_REG(HwRegs->UcodeAddr,
+				  (Address | MICROCODE_ADDRESS_WRITE), FLUSH);
+			// Sahara bug in the ucode download logic - the write to DataLow
+			// for the next instruction could get corrupted.  To avoid this,
+			// write to DataLow again for this instruction (which may get
+			// corrupted, but it doesn't matter), then increment the address
+			// and write the data for the next instruction to DataLow.  That
+			// write should succeed.
+			WRITE_REG(HwRegs->UcodeDataLow, *Instruction, TRUE);
+			// Advance 3 u32S to start of next instruction
+			Instruction += 3;
+		}
+	}
+	// Now repeat the entire operation reading the instruction back and
+	// checking for parity errors
+	for (Section = 0; Section < numSections; Section++) {
+		DBG_ERROR("sxg: check SECTION # %d\n", Section);
+		switch (UcodeSel) {
+		case SXG_UCODE_SAHARA:
+			Instruction = (u32 *) & SaharaUCode[Section][0];
+			break;
+		default:
+			ASSERT(0);
+			break;
+		}
+		BaseAddress = sectionStart[Section];
+		ThisSectionSize = sectionSize[Section] / 12;	// Size in instructions
+		for (AddressOffset = 0; AddressOffset < ThisSectionSize;
+		     AddressOffset++) {
+			Address = BaseAddress + AddressOffset;
+			// Write the address with the READ bit set
+			WRITE_REG(HwRegs->UcodeAddr,
+				  (Address | MICROCODE_ADDRESS_READ), FLUSH);
+			// Read it back and check parity bit.
+			READ_REG(HwRegs->UcodeAddr, ValueRead);
+			if (ValueRead & MICROCODE_ADDRESS_PARITY) {
+				DBG_ERROR("sxg: %s PARITY ERROR\n",
+					  __FUNCTION__);
+
+				return (FALSE);	// Parity error
+			}
+			ASSERT((ValueRead & MICROCODE_ADDRESS_MASK) == Address);
+			// Read the instruction back and compare
+			READ_REG(HwRegs->UcodeDataLow, ValueRead);
+			if (ValueRead != *Instruction) {
+				DBG_ERROR("sxg: %s MISCOMPARE LOW\n",
+					  __FUNCTION__);
+				return (FALSE);	// Miscompare
+			}
+			READ_REG(HwRegs->UcodeDataMiddle, ValueRead);
+			if (ValueRead != *(Instruction + 1)) {
+				DBG_ERROR("sxg: %s MISCOMPARE MIDDLE\n",
+					  __FUNCTION__);
+				return (FALSE);	// Miscompare
+			}
+			READ_REG(HwRegs->UcodeDataHigh, ValueRead);
+			if (ValueRead != *(Instruction + 2)) {
+				DBG_ERROR("sxg: %s MISCOMPARE HIGH\n",
+					  __FUNCTION__);
+				return (FALSE);	// Miscompare
+			}
+			// Advance 3 u32S to start of next instruction
+			Instruction += 3;
+		}
+	}
+
+	// Everything OK, Go.
+	WRITE_REG(HwRegs->UcodeAddr, MICROCODE_ADDRESS_GO, FLUSH);
+
+	// Poll the CardUp register to wait for microcode to initialize
+	// Give up after 10,000 attemps (500ms).
+	for (i = 0; i < 10000; i++) {
+		udelay(50);
+		READ_REG(adapter->UcodeRegs[0].CardUp, ValueRead);
+		if (ValueRead == 0xCAFE) {
+			DBG_ERROR("sxg: %s BOO YA 0xCAFE\n", __FUNCTION__);
+			break;
+		}
+	}
+	if (i == 10000) {
+		DBG_ERROR("sxg: %s TIMEOUT\n", __FUNCTION__);
+
+		return (FALSE);	// Timeout
+	}
+	// Now write the LoadSync register.  This is used to
+	// synchronize with the card so it can scribble on the memory
+	// that contained 0xCAFE from the "CardUp" step above
+	if (UcodeSel == SXG_UCODE_SAHARA) {
+		WRITE_REG(adapter->UcodeRegs[0].LoadSync, 0, FLUSH);
+	}
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XDnldUcd",
+		  adapter, 0, 0, 0);
+	DBG_ERROR("sxg: %s EXIT\n", __FUNCTION__);
+
+	return (TRUE);
+}
+
+/*
+ * sxg_allocate_resources - Allocate memory and locks
+ *
+ * Arguments -
+ *	adapter		- A pointer to our adapter structure
+ *
+ * Return
+ *	int
+ */
+static int sxg_allocate_resources(p_adapter_t adapter)
+{
+	int status;
+	u32 i;
+	u32 RssIds, IsrCount;
+//      PSXG_XMT_RING                                   XmtRing;
+//      PSXG_RCV_RING                                   RcvRing;
+
+	DBG_ERROR("%s ENTER\n", __FUNCTION__);
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "AllocRes",
+		  adapter, 0, 0, 0);
+
+	// Windows tells us how many CPUs it plans to use for
+	// RSS
+	RssIds = SXG_RSS_CPU_COUNT(adapter);
+	IsrCount = adapter->MsiEnabled ? RssIds : 1;
+
+	DBG_ERROR("%s Setup the spinlocks\n", __FUNCTION__);
+
+	// Allocate spinlocks and initialize listheads first.
+	spin_lock_init(&adapter->RcvQLock);
+	spin_lock_init(&adapter->SglQLock);
+	spin_lock_init(&adapter->XmtZeroLock);
+	spin_lock_init(&adapter->Bit64RegLock);
+	spin_lock_init(&adapter->AdapterLock);
+
+	DBG_ERROR("%s Setup the lists\n", __FUNCTION__);
+
+	InitializeListHead(&adapter->FreeRcvBuffers);
+	InitializeListHead(&adapter->FreeRcvBlocks);
+	InitializeListHead(&adapter->AllRcvBlocks);
+	InitializeListHead(&adapter->FreeSglBuffers);
+	InitializeListHead(&adapter->AllSglBuffers);
+
+	// Mark these basic allocations done.  This flags essentially
+	// tells the SxgFreeResources routine that it can grab spinlocks
+	// and reference listheads.
+	adapter->BasicAllocations = TRUE;
+	// Main allocation loop.  Start with the maximum supported by
+	// the microcode and back off if memory allocation
+	// fails.  If we hit a minimum, fail.
+
+	for (;;) {
+		DBG_ERROR("%s Allocate XmtRings size[%lx]\n", __FUNCTION__,
+			  (sizeof(SXG_XMT_RING) * 1));
+
+		// Start with big items first - receive and transmit rings.  At the moment
+		// I'm going to keep the ring size fixed and adjust the number of
+		// TCBs if we fail.  Later we might consider reducing the ring size as well..
+		adapter->XmtRings = pci_alloc_consistent(adapter->pcidev,
+							 sizeof(SXG_XMT_RING) *
+							 1,
+							 &adapter->PXmtRings);
+		DBG_ERROR("%s XmtRings[%p]\n", __FUNCTION__, adapter->XmtRings);
+
+		if (!adapter->XmtRings) {
+			goto per_tcb_allocation_failed;
+		}
+		memset(adapter->XmtRings, 0, sizeof(SXG_XMT_RING) * 1);
+
+		DBG_ERROR("%s Allocate RcvRings size[%lx]\n", __FUNCTION__,
+			  (sizeof(SXG_RCV_RING) * 1));
+		adapter->RcvRings =
+		    pci_alloc_consistent(adapter->pcidev,
+					 sizeof(SXG_RCV_RING) * 1,
+					 &adapter->PRcvRings);
+		DBG_ERROR("%s RcvRings[%p]\n", __FUNCTION__, adapter->RcvRings);
+		if (!adapter->RcvRings) {
+			goto per_tcb_allocation_failed;
+		}
+		memset(adapter->RcvRings, 0, sizeof(SXG_RCV_RING) * 1);
+		break;
+
+	      per_tcb_allocation_failed:
+		// an allocation failed.  Free any successful allocations.
+		if (adapter->XmtRings) {
+			pci_free_consistent(adapter->pcidev,
+					    sizeof(SXG_XMT_RING) * 4096,
+					    adapter->XmtRings,
+					    adapter->PXmtRings);
+			adapter->XmtRings = NULL;
+		}
+		if (adapter->RcvRings) {
+			pci_free_consistent(adapter->pcidev,
+					    sizeof(SXG_RCV_RING) * 4096,
+					    adapter->RcvRings,
+					    adapter->PRcvRings);
+			adapter->RcvRings = NULL;
+		}
+		// Loop around and try again....
+	}
+
+	DBG_ERROR("%s Initialize RCV ZERO and XMT ZERO rings\n", __FUNCTION__);
+	// Initialize rcv zero and xmt zero rings
+	SXG_INITIALIZE_RING(adapter->RcvRingZeroInfo, SXG_RCV_RING_SIZE);
+	SXG_INITIALIZE_RING(adapter->XmtRingZeroInfo, SXG_XMT_RING_SIZE);
+
+	// Sanity check receive data structure format
+	ASSERT((adapter->ReceiveBufferSize == SXG_RCV_DATA_BUFFER_SIZE) ||
+	       (adapter->ReceiveBufferSize == SXG_RCV_JUMBO_BUFFER_SIZE));
+	ASSERT(sizeof(SXG_RCV_DESCRIPTOR_BLOCK) ==
+	       SXG_RCV_DESCRIPTOR_BLOCK_SIZE);
+
+	// Allocate receive data buffers.  We allocate a block of buffers and
+	// a corresponding descriptor block at once.  See sxghw.h:SXG_RCV_BLOCK
+	for (i = 0; i < SXG_INITIAL_RCV_DATA_BUFFERS;
+	     i += SXG_RCV_DESCRIPTORS_PER_BLOCK) {
+		sxg_allocate_buffer_memory(adapter,
+					   SXG_RCV_BLOCK_SIZE(adapter->
+							      ReceiveBufferSize),
+					   SXG_BUFFER_TYPE_RCV);
+	}
+	// NBL resource allocation can fail in the 'AllocateComplete' routine, which
+	// doesn't return status.  Make sure we got the number of buffers we requested
+	if (adapter->FreeRcvBufferCount < SXG_INITIAL_RCV_DATA_BUFFERS) {
+		SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XAResF6",
+			  adapter, adapter->FreeRcvBufferCount, SXG_MAX_ENTRIES,
+			  0);
+		return (STATUS_RESOURCES);
+	}
+
+	DBG_ERROR("%s Allocate EventRings size[%lx]\n", __FUNCTION__,
+		  (sizeof(SXG_EVENT_RING) * RssIds));
+
+	// Allocate event queues.
+	adapter->EventRings = pci_alloc_consistent(adapter->pcidev,
+						   sizeof(SXG_EVENT_RING) *
+						   RssIds,
+						   &adapter->PEventRings);
+
+	if (!adapter->EventRings) {
+		// Caller will call SxgFreeAdapter to clean up above allocations
+		SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XAResF8",
+			  adapter, SXG_MAX_ENTRIES, 0, 0);
+		status = STATUS_RESOURCES;
+		goto per_tcb_allocation_failed;
+	}
+	memset(adapter->EventRings, 0, sizeof(SXG_EVENT_RING) * RssIds);
+
+	DBG_ERROR("%s Allocate ISR size[%x]\n", __FUNCTION__, IsrCount);
+	// Allocate ISR
+	adapter->Isr = pci_alloc_consistent(adapter->pcidev,
+					    IsrCount, &adapter->PIsr);
+	if (!adapter->Isr) {
+		// Caller will call SxgFreeAdapter to clean up above allocations
+		SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XAResF9",
+			  adapter, SXG_MAX_ENTRIES, 0, 0);
+		status = STATUS_RESOURCES;
+		goto per_tcb_allocation_failed;
+	}
+	memset(adapter->Isr, 0, sizeof(u32) * IsrCount);
+
+	DBG_ERROR("%s Allocate shared XMT ring zero index location size[%lx]\n",
+		  __FUNCTION__, sizeof(u32));
+
+	// Allocate shared XMT ring zero index location
+	adapter->XmtRingZeroIndex = pci_alloc_consistent(adapter->pcidev,
+							 sizeof(u32),
+							 &adapter->
+							 PXmtRingZeroIndex);
+	if (!adapter->XmtRingZeroIndex) {
+		SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XAResF10",
+			  adapter, SXG_MAX_ENTRIES, 0, 0);
+		status = STATUS_RESOURCES;
+		goto per_tcb_allocation_failed;
+	}
+	memset(adapter->XmtRingZeroIndex, 0, sizeof(u32));
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XAlcResS",
+		  adapter, SXG_MAX_ENTRIES, 0, 0);
+
+	DBG_ERROR("%s EXIT\n", __FUNCTION__);
+	return (STATUS_SUCCESS);
+}
+
+/*
+ * sxg_config_pci -
+ *
+ * Set up PCI Configuration space
+ *
+ * Arguments -
+ *		pcidev			- A pointer to our adapter structure
+ *
+ */
+static void sxg_config_pci(struct pci_dev *pcidev)
+{
+	u16 pci_command;
+	u16 new_command;
+
+	pci_read_config_word(pcidev, PCI_COMMAND, &pci_command);
+	DBG_ERROR("sxg: %s  PCI command[%4.4x]\n", __FUNCTION__, pci_command);
+	// Set the command register
+	new_command = pci_command | (PCI_COMMAND_MEMORY |	// Memory Space Enable
+				     PCI_COMMAND_MASTER |	// Bus master enable
+				     PCI_COMMAND_INVALIDATE |	// Memory write and invalidate
+				     PCI_COMMAND_PARITY |	// Parity error response
+				     PCI_COMMAND_SERR |	// System ERR
+				     PCI_COMMAND_FAST_BACK);	// Fast back-to-back
+	if (pci_command != new_command) {
+		DBG_ERROR("%s -- Updating PCI COMMAND register %4.4x->%4.4x.\n",
+			  __FUNCTION__, pci_command, new_command);
+		pci_write_config_word(pcidev, PCI_COMMAND, new_command);
+	}
+}
+
+static int sxg_entry_probe(struct pci_dev *pcidev,
+			   const struct pci_device_id *pci_tbl_entry)
+{
+	static int did_version = 0;
+	int err;
+	struct net_device *netdev;
+	p_adapter_t adapter;
+	void __iomem *memmapped_ioaddr;
+	u32 status = 0;
+	ulong mmio_start = 0;
+	ulong mmio_len = 0;
+
+	DBG_ERROR("sxg: %s 2.6 VERSION ENTER jiffies[%lx] cpu %d\n",
+		  __FUNCTION__, jiffies, smp_processor_id());
+
+	// Initialize trace buffer
+#ifdef ATKDBG
+	SxgTraceBuffer = &LSxgTraceBuffer;
+	SXG_TRACE_INIT(SxgTraceBuffer, TRACE_NOISY);
+#endif
+
+	sxg_global.dynamic_intagg = dynamic_intagg;
+
+	err = pci_enable_device(pcidev);
+
+	DBG_ERROR("Call pci_enable_device(%p)  status[%x]\n", pcidev, err);
+	if (err) {
+		return err;
+	}
+
+	if (sxg_debug > 0 && did_version++ == 0) {
+		printk(KERN_INFO "%s\n", sxg_banner);
+		printk(KERN_INFO "%s\n", DRV_VERSION);
+	}
+
+	if (!(err = pci_set_dma_mask(pcidev, DMA_64BIT_MASK))) {
+		DBG_ERROR("pci_set_dma_mask(DMA_64BIT_MASK) successful\n");
+	} else {
+		if ((err = pci_set_dma_mask(pcidev, DMA_32BIT_MASK))) {
+			DBG_ERROR
+			    ("No usable DMA configuration, aborting  err[%x]\n",
+			     err);
+			return err;
+		}
+		DBG_ERROR("pci_set_dma_mask(DMA_32BIT_MASK) successful\n");
+	}
+
+	DBG_ERROR("Call pci_request_regions\n");
+
+	err = pci_request_regions(pcidev, DRV_NAME);
+	if (err) {
+		DBG_ERROR("pci_request_regions FAILED err[%x]\n", err);
+		return err;
+	}
+
+	DBG_ERROR("call pci_set_master\n");
+	pci_set_master(pcidev);
+
+	DBG_ERROR("call alloc_etherdev\n");
+	netdev = alloc_etherdev(sizeof(adapter_t));
+	if (!netdev) {
+		err = -ENOMEM;
+		goto err_out_exit_sxg_probe;
+	}
+	DBG_ERROR("alloc_etherdev for slic netdev[%p]\n", netdev);
+
+	SET_NETDEV_DEV(netdev, &pcidev->dev);
+
+	pci_set_drvdata(pcidev, netdev);
+	adapter = netdev_priv(netdev);
+	adapter->netdev = netdev;
+	adapter->pcidev = pcidev;
+
+	mmio_start = pci_resource_start(pcidev, 0);
+	mmio_len = pci_resource_len(pcidev, 0);
+
+	DBG_ERROR("sxg: call ioremap(mmio_start[%lx], mmio_len[%lx])\n",
+		  mmio_start, mmio_len);
+
+	memmapped_ioaddr = ioremap(mmio_start, mmio_len);
+	DBG_ERROR("sxg: %s MEMMAPPED_IOADDR [%p]\n", __FUNCTION__,
+		  memmapped_ioaddr);
+	if (!memmapped_ioaddr) {
+		DBG_ERROR("%s cannot remap MMIO region %lx @ %lx\n",
+			  __FUNCTION__, mmio_len, mmio_start);
+		goto err_out_free_mmio_region;
+	}
+
+	DBG_ERROR
+	    ("sxg: %s found Alacritech SXG PCI, MMIO at %p, start[%lx] len[%lx], IRQ %d.\n",
+	     __func__, memmapped_ioaddr, mmio_start, mmio_len, pcidev->irq);
+
+	adapter->HwRegs = (void *)memmapped_ioaddr;
+	adapter->base_addr = memmapped_ioaddr;
+
+	mmio_start = pci_resource_start(pcidev, 2);
+	mmio_len = pci_resource_len(pcidev, 2);
+
+	DBG_ERROR("sxg: call ioremap(mmio_start[%lx], mmio_len[%lx])\n",
+		  mmio_start, mmio_len);
+
+	memmapped_ioaddr = ioremap(mmio_start, mmio_len);
+	DBG_ERROR("sxg: %s MEMMAPPED_IOADDR [%p]\n", __func__,
+		  memmapped_ioaddr);
+	if (!memmapped_ioaddr) {
+		DBG_ERROR("%s cannot remap MMIO region %lx @ %lx\n",
+			  __FUNCTION__, mmio_len, mmio_start);
+		goto err_out_free_mmio_region;
+	}
+
+	DBG_ERROR("sxg: %s found Alacritech SXG PCI, MMIO at %p, "
+		  "start[%lx] len[%lx], IRQ %d.\n", __func__,
+		  memmapped_ioaddr, mmio_start, mmio_len, pcidev->irq);
+
+	adapter->UcodeRegs = (void *)memmapped_ioaddr;
+
+	adapter->State = SXG_STATE_INITIALIZING;
+	// Maintain a list of all adapters anchored by
+	// the global SxgDriver structure.
+	adapter->Next = SxgDriver.Adapters;
+	SxgDriver.Adapters = adapter;
+	adapter->AdapterID = ++SxgDriver.AdapterID;
+
+	// Initialize CRC table used to determine multicast hash
+	sxg_mcast_init_crc32();
+
+	adapter->JumboEnabled = FALSE;
+	adapter->RssEnabled = FALSE;
+	if (adapter->JumboEnabled) {
+		adapter->FrameSize = JUMBOMAXFRAME;
+		adapter->ReceiveBufferSize = SXG_RCV_JUMBO_BUFFER_SIZE;
+	} else {
+		adapter->FrameSize = ETHERMAXFRAME;
+		adapter->ReceiveBufferSize = SXG_RCV_DATA_BUFFER_SIZE;
+	}
+
+//    status = SXG_READ_EEPROM(adapter);
+//    if (!status) {
+//        goto sxg_init_bad;
+//    }
+
+	DBG_ERROR("sxg: %s ENTER sxg_config_pci\n", __FUNCTION__);
+	sxg_config_pci(pcidev);
+	DBG_ERROR("sxg: %s EXIT sxg_config_pci\n", __FUNCTION__);
+
+	DBG_ERROR("sxg: %s ENTER sxg_init_driver\n", __FUNCTION__);
+	sxg_init_driver();
+	DBG_ERROR("sxg: %s EXIT sxg_init_driver\n", __FUNCTION__);
+
+	adapter->vendid = pci_tbl_entry->vendor;
+	adapter->devid = pci_tbl_entry->device;
+	adapter->subsysid = pci_tbl_entry->subdevice;
+	adapter->busnumber = pcidev->bus->number;
+	adapter->slotnumber = ((pcidev->devfn >> 3) & 0x1F);
+	adapter->functionnumber = (pcidev->devfn & 0x7);
+	adapter->memorylength = pci_resource_len(pcidev, 0);
+	adapter->irq = pcidev->irq;
+	adapter->next_netdevice = head_netdevice;
+	head_netdevice = netdev;
+//      adapter->chipid = chip_idx;
+	adapter->port = 0;	//adapter->functionnumber;
+	adapter->cardindex = adapter->port;
+
+	// Allocate memory and other resources
+	DBG_ERROR("sxg: %s ENTER sxg_allocate_resources\n", __FUNCTION__);
+	status = sxg_allocate_resources(adapter);
+	DBG_ERROR("sxg: %s EXIT sxg_allocate_resources status %x\n",
+		  __FUNCTION__, status);
+	if (status != STATUS_SUCCESS) {
+		goto err_out_unmap;
+	}
+
+	DBG_ERROR("sxg: %s ENTER sxg_download_microcode\n", __FUNCTION__);
+	if (sxg_download_microcode(adapter, SXG_UCODE_SAHARA)) {
+		DBG_ERROR("sxg: %s ENTER sxg_adapter_set_hwaddr\n",
+			  __FUNCTION__);
+		sxg_adapter_set_hwaddr(adapter);
+	} else {
+		adapter->state = ADAPT_FAIL;
+		adapter->linkstate = LINK_DOWN;
+		DBG_ERROR("sxg_download_microcode FAILED status[%x]\n", status);
+	}
+
+	netdev->base_addr = (unsigned long)adapter->base_addr;
+	netdev->irq = adapter->irq;
+	netdev->open = sxg_entry_open;
+	netdev->stop = sxg_entry_halt;
+	netdev->hard_start_xmit = sxg_send_packets;
+	netdev->do_ioctl = sxg_ioctl;
+#if XXXTODO
+	netdev->set_mac_address = sxg_mac_set_address;
+#if SLIC_GET_STATS_ENABLED
+	netdev->get_stats = sxg_get_stats;
+#endif
+	netdev->set_multicast_list = sxg_mcast_set_list;
+#endif
+
+	strcpy(netdev->name, "eth%d");
+//  strcpy(netdev->name, pci_name(pcidev));
+	if ((err = register_netdev(netdev))) {
+		DBG_ERROR("Cannot register net device, aborting. %s\n",
+			  netdev->name);
+		goto err_out_unmap;
+	}
+
+	DBG_ERROR
+	    ("sxg: %s addr 0x%lx, irq %d, MAC addr %02X:%02X:%02X:%02X:%02X:%02X\n",
+	     netdev->name, netdev->base_addr, pcidev->irq, netdev->dev_addr[0],
+	     netdev->dev_addr[1], netdev->dev_addr[2], netdev->dev_addr[3],
+	     netdev->dev_addr[4], netdev->dev_addr[5]);
+
+//sxg_init_bad:
+	ASSERT(status == FALSE);
+//      sxg_free_adapter(adapter);
+
+	DBG_ERROR("sxg: %s EXIT status[%x] jiffies[%lx] cpu %d\n", __FUNCTION__,
+		  status, jiffies, smp_processor_id());
+	return status;
+
+      err_out_unmap:
+	iounmap((void *)memmapped_ioaddr);
+
+      err_out_free_mmio_region:
+	release_mem_region(mmio_start, mmio_len);
+
+      err_out_exit_sxg_probe:
+
+	DBG_ERROR("%s EXIT jiffies[%lx] cpu %d\n", __FUNCTION__, jiffies,
+		  smp_processor_id());
+
+	return -ENODEV;
+}
+
+/***********************************************************************
+ * LINE BASE Interrupt routines..
+ ***********************************************************************/
+/*
+ *
+ * sxg_disable_interrupt
+ *
+ * DisableInterrupt Handler
+ *
+ * Arguments:
+ *
+ *   adapter:	Our adapter structure
+ *
+ * Return Value:
+ * 	None.
+ */
+static void sxg_disable_interrupt(p_adapter_t adapter)
+{
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "DisIntr",
+		  adapter, adapter->InterruptsEnabled, 0, 0);
+	// For now, RSS is disabled with line based interrupts
+	ASSERT(adapter->RssEnabled == FALSE);
+	ASSERT(adapter->MsiEnabled == FALSE);
+	//
+	// Turn off interrupts by writing to the icr register.
+	//
+	WRITE_REG(adapter->UcodeRegs[0].Icr, SXG_ICR(0, SXG_ICR_DISABLE), TRUE);
+
+	adapter->InterruptsEnabled = 0;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XDisIntr",
+		  adapter, adapter->InterruptsEnabled, 0, 0);
+}
+
+/*
+ *
+ * sxg_enable_interrupt
+ *
+ * EnableInterrupt Handler
+ *
+ * Arguments:
+ *
+ *   adapter:	Our adapter structure
+ *
+ * Return Value:
+ * 	None.
+ */
+static void sxg_enable_interrupt(p_adapter_t adapter)
+{
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "EnIntr",
+		  adapter, adapter->InterruptsEnabled, 0, 0);
+	// For now, RSS is disabled with line based interrupts
+	ASSERT(adapter->RssEnabled == FALSE);
+	ASSERT(adapter->MsiEnabled == FALSE);
+	//
+	// Turn on interrupts by writing to the icr register.
+	//
+	WRITE_REG(adapter->UcodeRegs[0].Icr, SXG_ICR(0, SXG_ICR_ENABLE), TRUE);
+
+	adapter->InterruptsEnabled = 1;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XEnIntr",
+		  adapter, 0, 0, 0);
+}
+
+/*
+ *
+ * sxg_isr - Process an line-based interrupt
+ *
+ * Arguments:
+ * 		Context			- Our adapter structure
+ *		QueueDefault 	- Output parameter to queue to default CPU
+ *		TargetCpus		- Output bitmap to schedule DPC's
+ *
+ * Return Value:
+ * 	TRUE if our interrupt
+ */
+static irqreturn_t sxg_isr(int irq, void *dev_id)
+{
+	p_net_device dev = (p_net_device) dev_id;
+	p_adapter_t adapter = (p_adapter_t) netdev_priv(dev);
+//      u32                 CpuMask = 0, i;
+
+	adapter->Stats.NumInts++;
+	if (adapter->Isr[0] == 0) {
+		// The SLIC driver used to experience a number of spurious interrupts
+		// due to the delay associated with the masking of the interrupt
+		// (we'd bounce back in here).  If we see that again with Sahara,
+		// add a READ_REG of the Icr register after the WRITE_REG below.
+		adapter->Stats.FalseInts++;
+		return IRQ_NONE;
+	}
+	//
+	// Move the Isr contents and clear the value in
+	// shared memory, and mask interrupts
+	//
+	adapter->IsrCopy[0] = adapter->Isr[0];
+	adapter->Isr[0] = 0;
+	WRITE_REG(adapter->UcodeRegs[0].Icr, SXG_ICR(0, SXG_ICR_MASK), TRUE);
+//      ASSERT(adapter->IsrDpcsPending == 0);
+#if XXXTODO			// RSS Stuff
+	// If RSS is enabled and the ISR specifies
+	// SXG_ISR_EVENT, then schedule DPC's
+	// based on event queues.
+	if (adapter->RssEnabled && (adapter->IsrCopy[0] & SXG_ISR_EVENT)) {
+		for (i = 0;
+		     i < adapter->RssSystemInfo->ProcessorInfo.RssCpuCount;
+		     i++) {
+			PSXG_EVENT_RING EventRing = &adapter->EventRings[i];
+			PSXG_EVENT Event =
+			    &EventRing->Ring[adapter->NextEvent[i]];
+			unsigned char Cpu =
+			    adapter->RssSystemInfo->RssIdToCpu[i];
+			if (Event->Status & EVENT_STATUS_VALID) {
+				adapter->IsrDpcsPending++;
+				CpuMask |= (1 << Cpu);
+			}
+		}
+	}
+	// Now, either schedule the CPUs specified by the CpuMask,
+	// or queue default
+	if (CpuMask) {
+		*QueueDefault = FALSE;
+	} else {
+		adapter->IsrDpcsPending = 1;
+		*QueueDefault = TRUE;
+	}
+	*TargetCpus = CpuMask;
+#endif
+	//
+	//  There are no DPCs in Linux, so call the handler now
+	//
+	sxg_handle_interrupt(adapter);
+
+	return IRQ_HANDLED;
+}
+
+static void sxg_handle_interrupt(p_adapter_t adapter)
+{
+//    unsigned char           RssId   = 0;
+	u32 NewIsr;
+
+	if (adapter->Stats.RcvNoBuffer < 5) {
+		DBG_ERROR("Enter sxg_handle_interrupt ISR[%x]\n",
+			  adapter->IsrCopy[0]);
+	}
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "HndlIntr",
+		  adapter, adapter->IsrCopy[0], 0, 0);
+	// For now, RSS is disabled with line based interrupts
+	ASSERT(adapter->RssEnabled == FALSE);
+	ASSERT(adapter->MsiEnabled == FALSE);
+	ASSERT(adapter->IsrCopy[0]);
+/////////////////////////////
+
+	// Always process the event queue.
+	sxg_process_event_queue(adapter,
+				(adapter->RssEnabled ? /*RssId */ 0 : 0));
+
+#if XXXTODO			// RSS stuff
+	if (--adapter->IsrDpcsPending) {
+		// We're done.
+		ASSERT(adapter->RssEnabled);
+		SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "DPCsPend",
+			  adapter, 0, 0, 0);
+		return;
+	}
+#endif
+	//
+	// Last (or only) DPC processes the ISR and clears the interrupt.
+	//
+	NewIsr = sxg_process_isr(adapter, 0);
+	//
+	// Reenable interrupts
+	//
+	adapter->IsrCopy[0] = 0;
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "ClearIsr",
+		  adapter, NewIsr, 0, 0);
+
+	if (adapter->Stats.RcvNoBuffer < 5) {
+		DBG_ERROR
+		    ("Exit sxg_handle_interrupt2 after enabling interrupt\n");
+	}
+
+	WRITE_REG(adapter->UcodeRegs[0].Isr, NewIsr, TRUE);
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XHndlInt",
+		  adapter, 0, 0, 0);
+}
+
+/*
+ *
+ * sxg_process_isr - Process an interrupt.  Called from the line-based and
+ *			message based interrupt DPC routines
+ *
+ * Arguments:
+ * 		adapter			- Our adapter structure
+ *		Queue			- The ISR that needs processing
+ *
+ * Return Value:
+ * 	None
+ */
+static int sxg_process_isr(p_adapter_t adapter, u32 MessageId)
+{
+	u32 Isr = adapter->IsrCopy[MessageId];
+	u32 NewIsr = 0;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "ProcIsr",
+		  adapter, Isr, 0, 0);
+
+	// Error
+	if (Isr & SXG_ISR_ERR) {
+		if (Isr & SXG_ISR_PDQF) {
+			adapter->Stats.PdqFull++;
+			DBG_ERROR("%s: SXG_ISR_ERR  PDQF!!\n", __FUNCTION__);
+		}
+		// No host buffer
+		if (Isr & SXG_ISR_RMISS) {
+			// There is a bunch of code in the SLIC driver which
+			// attempts to process more receive events per DPC
+			// if we start to fall behind.  We'll probably
+			// need to do something similar here, but hold
+			// off for now.  I don't want to make the code more
+			// complicated than strictly needed.
+			adapter->Stats.RcvNoBuffer++;
+			if (adapter->Stats.RcvNoBuffer < 5) {
+				DBG_ERROR("%s: SXG_ISR_ERR  RMISS!!\n",
+					  __FUNCTION__);
+			}
+		}
+		// Card crash
+		if (Isr & SXG_ISR_DEAD) {
+			// Set aside the crash info and set the adapter state to RESET
+			adapter->CrashCpu =
+			    (unsigned char)((Isr & SXG_ISR_CPU) >>
+					    SXG_ISR_CPU_SHIFT);
+			adapter->CrashLocation = (ushort) (Isr & SXG_ISR_CRASH);
+			adapter->Dead = TRUE;
+			DBG_ERROR("%s: ISR_DEAD %x, CPU: %d\n", __FUNCTION__,
+				  adapter->CrashLocation, adapter->CrashCpu);
+		}
+		// Event ring full
+		if (Isr & SXG_ISR_ERFULL) {
+			// Same issue as RMISS, really.  This means the
+			// host is falling behind the card.  Need to increase
+			// event ring size, process more events per interrupt,
+			// and/or reduce/remove interrupt aggregation.
+			adapter->Stats.EventRingFull++;
+			DBG_ERROR("%s: SXG_ISR_ERR  EVENT RING FULL!!\n",
+				  __FUNCTION__);
+		}
+		// Transmit drop - no DRAM buffers or XMT error
+		if (Isr & SXG_ISR_XDROP) {
+			adapter->Stats.XmtDrops++;
+			adapter->Stats.XmtErrors++;
+			DBG_ERROR("%s: SXG_ISR_ERR  XDROP!!\n", __FUNCTION__);
+		}
+	}
+	// Slowpath send completions
+	if (Isr & SXG_ISR_SPSEND) {
+		sxg_complete_slow_send(adapter);
+	}
+	// Dump
+	if (Isr & SXG_ISR_UPC) {
+		ASSERT(adapter->DumpCmdRunning);	// Maybe change when debug is added..
+		adapter->DumpCmdRunning = FALSE;
+	}
+	// Link event
+	if (Isr & SXG_ISR_LINK) {
+		sxg_link_event(adapter);
+	}
+	// Debug - breakpoint hit
+	if (Isr & SXG_ISR_BREAK) {
+		// At the moment AGDB isn't written to support interactive
+		// debug sessions.  When it is, this interrupt will be used
+		// to signal AGDB that it has hit a breakpoint.  For now, ASSERT.
+		ASSERT(0);
+	}
+	// Heartbeat response
+	if (Isr & SXG_ISR_PING) {
+		adapter->PingOutstanding = FALSE;
+	}
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XProcIsr",
+		  adapter, Isr, NewIsr, 0);
+
+	return (NewIsr);
+}
+
+/*
+ *
+ * sxg_process_event_queue - Process our event queue
+ *
+ * Arguments:
+ * 		- adapter	- Adapter structure
+ *		- RssId		- The event queue requiring processing
+ *
+ * Return Value:
+ * 	None.
+ */
+static u32 sxg_process_event_queue(p_adapter_t adapter, u32 RssId)
+{
+	PSXG_EVENT_RING EventRing = &adapter->EventRings[RssId];
+	PSXG_EVENT Event = &EventRing->Ring[adapter->NextEvent[RssId]];
+	u32 EventsProcessed = 0, Batches = 0;
+	u32 num_skbs = 0;
+	struct sk_buff *skb;
+#ifdef LINUX_HANDLES_RCV_INDICATION_LISTS
+	struct sk_buff *prev_skb = NULL;
+	struct sk_buff *IndicationList[SXG_RCV_ARRAYSIZE];
+	u32 Index;
+	PSXG_RCV_DATA_BUFFER_HDR RcvDataBufferHdr;
+#endif
+	u32 ReturnStatus = 0;
+
+	ASSERT((adapter->State == SXG_STATE_RUNNING) ||
+	       (adapter->State == SXG_STATE_PAUSING) ||
+	       (adapter->State == SXG_STATE_PAUSED) ||
+	       (adapter->State == SXG_STATE_HALTING));
+	// We may still have unprocessed events on the queue if
+	// the card crashed.  Don't process them.
+	if (adapter->Dead) {
+		return (0);
+	}
+	// In theory there should only be a single processor that
+	// accesses this queue, and only at interrupt-DPC time.  So
+	// we shouldn't need a lock for any of this.
+	while (Event->Status & EVENT_STATUS_VALID) {
+		SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "Event",
+			  Event, Event->Code, Event->Status,
+			  adapter->NextEvent);
+		switch (Event->Code) {
+		case EVENT_CODE_BUFFERS:
+			ASSERT(!(Event->CommandIndex & 0xFF00));	// SXG_RING_INFO Head & Tail == unsigned char
+			//
+			sxg_complete_descriptor_blocks(adapter,
+						       Event->CommandIndex);
+			//
+			break;
+		case EVENT_CODE_SLOWRCV:
+			--adapter->RcvBuffersOnCard;
+			if ((skb = sxg_slow_receive(adapter, Event))) {
+				u32 rx_bytes;
+#ifdef LINUX_HANDLES_RCV_INDICATION_LISTS
+				// Add it to our indication list
+				SXG_ADD_RCV_PACKET(adapter, skb, prev_skb,
+						   IndicationList, num_skbs);
+				//  In Linux, we just pass up each skb to the protocol above at this point,
+				//  there is no capability of an indication list.
+#else
+// CHECK            skb_pull(skb, INIC_RCVBUF_HEADSIZE);
+				rx_bytes = Event->Length;	// (rcvbuf->length & IRHDDR_FLEN_MSK);
+				skb_put(skb, rx_bytes);
+				adapter->stats.rx_packets++;
+				adapter->stats.rx_bytes += rx_bytes;
+#if SXG_OFFLOAD_IP_CHECKSUM
+				skb->ip_summed = CHECKSUM_UNNECESSARY;
+#endif
+				skb->dev = adapter->netdev;
+				skb->protocol = eth_type_trans(skb, skb->dev);
+				netif_rx(skb);
+#endif
+			}
+			break;
+		default:
+			DBG_ERROR("%s: ERROR  Invalid EventCode %d\n",
+				  __FUNCTION__, Event->Code);
+//                      ASSERT(0);
+		}
+		// See if we need to restock card receive buffers.
+		// There are two things to note here:
+		//      First - This test is not SMP safe.  The
+		//              adapter->BuffersOnCard field is protected via atomic interlocked calls, but
+		//              we do not protect it with respect to these tests.  The only way to do that
+		//      is with a lock, and I don't want to grab a lock every time we adjust the
+		//      BuffersOnCard count.  Instead, we allow the buffer replenishment to be off
+		//      once in a while.  The worst that can happen is the card is given one
+		//      more-or-less descriptor block than the arbitrary value we've chosen.
+		//      No big deal
+		//      In short DO NOT ADD A LOCK HERE, OR WHERE RcvBuffersOnCard is adjusted.
+		//      Second - We expect this test to rarely evaluate to true.  We attempt to
+		//      refill descriptor blocks as they are returned to us
+		//      (sxg_complete_descriptor_blocks), so The only time this should evaluate
+		//      to true is when sxg_complete_descriptor_blocks failed to allocate
+		//              receive buffers.
+		if (adapter->RcvBuffersOnCard < SXG_RCV_DATA_BUFFERS) {
+			sxg_stock_rcv_buffers(adapter);
+		}
+		// It's more efficient to just set this to zero.
+		// But clearing the top bit saves potential debug info...
+		Event->Status &= ~EVENT_STATUS_VALID;
+		// Advanct to the next event
+		SXG_ADVANCE_INDEX(adapter->NextEvent[RssId], EVENT_RING_SIZE);
+		Event = &EventRing->Ring[adapter->NextEvent[RssId]];
+		EventsProcessed++;
+		if (EventsProcessed == EVENT_RING_BATCH) {
+			// Release a batch of events back to the card
+			WRITE_REG(adapter->UcodeRegs[RssId].EventRelease,
+				  EVENT_RING_BATCH, FALSE);
+			EventsProcessed = 0;
+			// If we've processed our batch limit, break out of the
+			// loop and return SXG_ISR_EVENT to arrange for us to
+			// be called again
+			if (Batches++ == EVENT_BATCH_LIMIT) {
+				SXG_TRACE(TRACE_SXG, SxgTraceBuffer,
+					  TRACE_NOISY, "EvtLimit", Batches,
+					  adapter->NextEvent, 0, 0);
+				ReturnStatus = SXG_ISR_EVENT;
+				break;
+			}
+		}
+	}
+#ifdef LINUX_HANDLES_RCV_INDICATION_LISTS
+	//
+	// Indicate any received dumb-nic frames
+	//
+	SXG_INDICATE_PACKETS(adapter, IndicationList, num_skbs);
+#endif
+	//
+	// Release events back to the card.
+	//
+	if (EventsProcessed) {
+		WRITE_REG(adapter->UcodeRegs[RssId].EventRelease,
+			  EventsProcessed, FALSE);
+	}
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XPrcEvnt",
+		  Batches, EventsProcessed, adapter->NextEvent, num_skbs);
+
+	return (ReturnStatus);
+}
+
+/*
+ * sxg_complete_slow_send - Complete slowpath or dumb-nic sends
+ *
+ * Arguments -
+ *	adapter		- A pointer to our adapter structure
+
+ * Return
+ *	None
+ */
+static void sxg_complete_slow_send(p_adapter_t adapter)
+{
+	PSXG_XMT_RING XmtRing = &adapter->XmtRings[0];
+	PSXG_RING_INFO XmtRingInfo = &adapter->XmtRingZeroInfo;
+	u32 *ContextType;
+	PSXG_CMD XmtCmd;
+
+	// NOTE - This lock is dropped and regrabbed in this loop.
+	// This means two different processors can both be running
+	// through this loop. Be *very* careful.
+	spin_lock(&adapter->XmtZeroLock);
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "CmpSnds",
+		  adapter, XmtRingInfo->Head, XmtRingInfo->Tail, 0);
+
+	while (XmtRingInfo->Tail != *adapter->XmtRingZeroIndex) {
+		// Locate the current Cmd (ring descriptor entry), and
+		// associated SGL, and advance the tail
+		SXG_RETURN_CMD(XmtRing, XmtRingInfo, XmtCmd, ContextType);
+		ASSERT(ContextType);
+		SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "CmpSnd",
+			  XmtRingInfo->Head, XmtRingInfo->Tail, XmtCmd, 0);
+		// Clear the SGL field.
+		XmtCmd->Sgl = 0;
+
+		switch (*ContextType) {
+		case SXG_SGL_DUMB:
+			{
+				struct sk_buff *skb;
+				// Dumb-nic send.  Command context is the dumb-nic SGL
+				skb = (struct sk_buff *)ContextType;
+				// Complete the send
+				SXG_TRACE(TRACE_SXG, SxgTraceBuffer,
+					  TRACE_IMPORTANT, "DmSndCmp", skb, 0,
+					  0, 0);
+				ASSERT(adapter->Stats.XmtQLen);
+				adapter->Stats.XmtQLen--;	// within XmtZeroLock
+				adapter->Stats.XmtOk++;
+				// Now drop the lock and complete the send back to
+				// Microsoft.  We need to drop the lock because
+				// Microsoft can come back with a chimney send, which
+				// results in a double trip in SxgTcpOuput
+				spin_unlock(&adapter->XmtZeroLock);
+				SXG_COMPLETE_DUMB_SEND(adapter, skb);
+				// and reacquire..
+				spin_lock(&adapter->XmtZeroLock);
+			}
+			break;
+		default:
+			ASSERT(0);
+		}
+	}
+	spin_unlock(&adapter->XmtZeroLock);
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "CmpSnd",
+		  adapter, XmtRingInfo->Head, XmtRingInfo->Tail, 0);
+}
+
+/*
+ * sxg_slow_receive
+ *
+ * Arguments -
+ *	adapter		- A pointer to our adapter structure
+ *	Event		- Receive event
+ *
+ * Return
+ *	 skb
+ */
+static struct sk_buff *sxg_slow_receive(p_adapter_t adapter, PSXG_EVENT Event)
+{
+	PSXG_RCV_DATA_BUFFER_HDR RcvDataBufferHdr;
+	struct sk_buff *Packet;
+
+	RcvDataBufferHdr = (PSXG_RCV_DATA_BUFFER_HDR) Event->HostHandle;
+	ASSERT(RcvDataBufferHdr);
+	ASSERT(RcvDataBufferHdr->State == SXG_BUFFER_ONCARD);
+	ASSERT(SXG_RECEIVE_DATA_LOCATION(RcvDataBufferHdr) ==
+	       RcvDataBufferHdr->VirtualAddress);
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_IMPORTANT, "SlowRcv", Event,
+		  RcvDataBufferHdr, RcvDataBufferHdr->State,
+		  RcvDataBufferHdr->VirtualAddress);
+	// Drop rcv frames in non-running state
+	switch (adapter->State) {
+	case SXG_STATE_RUNNING:
+		break;
+	case SXG_STATE_PAUSING:
+	case SXG_STATE_PAUSED:
+	case SXG_STATE_HALTING:
+		goto drop;
+	default:
+		ASSERT(0);
+		goto drop;
+	}
+
+	// Change buffer state to UPSTREAM
+	RcvDataBufferHdr->State = SXG_BUFFER_UPSTREAM;
+	if (Event->Status & EVENT_STATUS_RCVERR) {
+		SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "RcvError",
+			  Event, Event->Status, Event->HostHandle, 0);
+		// XXXTODO - Remove this print later
+		DBG_ERROR("SXG: Receive error %x\n", *(u32 *)
+			  SXG_RECEIVE_DATA_LOCATION(RcvDataBufferHdr));
+		sxg_process_rcv_error(adapter, *(u32 *)
+				      SXG_RECEIVE_DATA_LOCATION
+				      (RcvDataBufferHdr));
+		goto drop;
+	}
+#if XXXTODO			// VLAN stuff
+	// If there's a VLAN tag, extract it and validate it
+	if (((p_ether_header) (SXG_RECEIVE_DATA_LOCATION(RcvDataBufferHdr)))->
+	    EtherType == ETHERTYPE_VLAN) {
+		if (SxgExtractVlanHeader(adapter, RcvDataBufferHdr, Event) !=
+		    STATUS_SUCCESS) {
+			SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY,
+				  "BadVlan", Event,
+				  SXG_RECEIVE_DATA_LOCATION(RcvDataBufferHdr),
+				  Event->Length, 0);
+			goto drop;
+		}
+	}
+#endif
+	//
+	// Dumb-nic frame.  See if it passes our mac filter and update stats
+	//
+	if (!sxg_mac_filter(adapter, (p_ether_header)
+			    SXG_RECEIVE_DATA_LOCATION(RcvDataBufferHdr),
+			    Event->Length)) {
+		SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "RcvFiltr",
+			  Event, SXG_RECEIVE_DATA_LOCATION(RcvDataBufferHdr),
+			  Event->Length, 0);
+		goto drop;
+	}
+
+	Packet = RcvDataBufferHdr->SxgDumbRcvPacket;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_IMPORTANT, "DumbRcv",
+		  RcvDataBufferHdr, Packet, Event->Length, 0);
+	//
+	// Lastly adjust the receive packet length.
+	//
+	SXG_ADJUST_RCV_PACKET(Packet, RcvDataBufferHdr, Event);
+
+	return (Packet);
+
+      drop:
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "DropRcv",
+		  RcvDataBufferHdr, Event->Length, 0, 0);
+	adapter->Stats.RcvDiscards++;
+	spin_lock(&adapter->RcvQLock);
+	SXG_FREE_RCV_DATA_BUFFER(adapter, RcvDataBufferHdr);
+	spin_unlock(&adapter->RcvQLock);
+	return (NULL);
+}
+
+/*
+ * sxg_process_rcv_error - process receive error and update
+ * stats
+ *
+ * Arguments:
+ *		adapter		- Adapter structure
+ *		ErrorStatus	- 4-byte receive error status
+ *
+ * Return Value:
+ * 	None
+ */
+static void sxg_process_rcv_error(p_adapter_t adapter, u32 ErrorStatus)
+{
+	u32 Error;
+
+	adapter->Stats.RcvErrors++;
+
+	if (ErrorStatus & SXG_RCV_STATUS_TRANSPORT_ERROR) {
+		Error = ErrorStatus & SXG_RCV_STATUS_TRANSPORT_MASK;
+		switch (Error) {
+		case SXG_RCV_STATUS_TRANSPORT_CSUM:
+			adapter->Stats.TransportCsum++;
+			break;
+		case SXG_RCV_STATUS_TRANSPORT_UFLOW:
+			adapter->Stats.TransportUflow++;
+			break;
+		case SXG_RCV_STATUS_TRANSPORT_HDRLEN:
+			adapter->Stats.TransportHdrLen++;
+			break;
+		}
+	}
+	if (ErrorStatus & SXG_RCV_STATUS_NETWORK_ERROR) {
+		Error = ErrorStatus & SXG_RCV_STATUS_NETWORK_MASK;
+		switch (Error) {
+		case SXG_RCV_STATUS_NETWORK_CSUM:
+			adapter->Stats.NetworkCsum++;
+			break;
+		case SXG_RCV_STATUS_NETWORK_UFLOW:
+			adapter->Stats.NetworkUflow++;
+			break;
+		case SXG_RCV_STATUS_NETWORK_HDRLEN:
+			adapter->Stats.NetworkHdrLen++;
+			break;
+		}
+	}
+	if (ErrorStatus & SXG_RCV_STATUS_PARITY) {
+		adapter->Stats.Parity++;
+	}
+	if (ErrorStatus & SXG_RCV_STATUS_LINK_ERROR) {
+		Error = ErrorStatus & SXG_RCV_STATUS_LINK_MASK;
+		switch (Error) {
+		case SXG_RCV_STATUS_LINK_PARITY:
+			adapter->Stats.LinkParity++;
+			break;
+		case SXG_RCV_STATUS_LINK_EARLY:
+			adapter->Stats.LinkEarly++;
+			break;
+		case SXG_RCV_STATUS_LINK_BUFOFLOW:
+			adapter->Stats.LinkBufOflow++;
+			break;
+		case SXG_RCV_STATUS_LINK_CODE:
+			adapter->Stats.LinkCode++;
+			break;
+		case SXG_RCV_STATUS_LINK_DRIBBLE:
+			adapter->Stats.LinkDribble++;
+			break;
+		case SXG_RCV_STATUS_LINK_CRC:
+			adapter->Stats.LinkCrc++;
+			break;
+		case SXG_RCV_STATUS_LINK_OFLOW:
+			adapter->Stats.LinkOflow++;
+			break;
+		case SXG_RCV_STATUS_LINK_UFLOW:
+			adapter->Stats.LinkUflow++;
+			break;
+		}
+	}
+}
+
+/*
+ * sxg_mac_filter
+ *
+ * Arguments:
+ *		adapter		- Adapter structure
+ *		pether		- Ethernet header
+ *		length		- Frame length
+ *
+ * Return Value:
+ * 	TRUE if the frame is to be allowed
+ */
+static bool sxg_mac_filter(p_adapter_t adapter, p_ether_header EtherHdr,
+			   ushort length)
+{
+	bool EqualAddr;
+
+	if (SXG_MULTICAST_PACKET(EtherHdr)) {
+		if (SXG_BROADCAST_PACKET(EtherHdr)) {
+			// broadcast
+			if (adapter->MacFilter & MAC_BCAST) {
+				adapter->Stats.DumbRcvBcastPkts++;
+				adapter->Stats.DumbRcvBcastBytes += length;
+				adapter->Stats.DumbRcvPkts++;
+				adapter->Stats.DumbRcvBytes += length;
+				return (TRUE);
+			}
+		} else {
+			// multicast
+			if (adapter->MacFilter & MAC_ALLMCAST) {
+				adapter->Stats.DumbRcvMcastPkts++;
+				adapter->Stats.DumbRcvMcastBytes += length;
+				adapter->Stats.DumbRcvPkts++;
+				adapter->Stats.DumbRcvBytes += length;
+				return (TRUE);
+			}
+			if (adapter->MacFilter & MAC_MCAST) {
+				PSXG_MULTICAST_ADDRESS MulticastAddrs =
+				    adapter->MulticastAddrs;
+				while (MulticastAddrs) {
+					ETHER_EQ_ADDR(MulticastAddrs->Address,
+						      EtherHdr->ether_dhost,
+						      EqualAddr);
+					if (EqualAddr) {
+						adapter->Stats.
+						    DumbRcvMcastPkts++;
+						adapter->Stats.
+						    DumbRcvMcastBytes += length;
+						adapter->Stats.DumbRcvPkts++;
+						adapter->Stats.DumbRcvBytes +=
+						    length;
+						return (TRUE);
+					}
+					MulticastAddrs = MulticastAddrs->Next;
+				}
+			}
+		}
+	} else if (adapter->MacFilter & MAC_DIRECTED) {
+		// Not broadcast or multicast.  Must be directed at us or
+		// the card is in promiscuous mode.  Either way, consider it
+		// ours if MAC_DIRECTED is set
+		adapter->Stats.DumbRcvUcastPkts++;
+		adapter->Stats.DumbRcvUcastBytes += length;
+		adapter->Stats.DumbRcvPkts++;
+		adapter->Stats.DumbRcvBytes += length;
+		return (TRUE);
+	}
+	if (adapter->MacFilter & MAC_PROMISC) {
+		// Whatever it is, keep it.
+		adapter->Stats.DumbRcvPkts++;
+		adapter->Stats.DumbRcvBytes += length;
+		return (TRUE);
+	}
+	adapter->Stats.RcvDiscards++;
+	return (FALSE);
+}
+
+static int sxg_register_interrupt(p_adapter_t adapter)
+{
+	if (!adapter->intrregistered) {
+		int retval;
+
+		DBG_ERROR
+		    ("sxg: %s AllocAdaptRsrcs adapter[%p] dev->irq[%x] %x\n",
+		     __FUNCTION__, adapter, adapter->netdev->irq, NR_IRQS);
+
+		spin_unlock_irqrestore(&sxg_global.driver_lock,
+				       sxg_global.flags);
+
+		retval = request_irq(adapter->netdev->irq,
+				     &sxg_isr,
+				     IRQF_SHARED,
+				     adapter->netdev->name, adapter->netdev);
+
+		spin_lock_irqsave(&sxg_global.driver_lock, sxg_global.flags);
+
+		if (retval) {
+			DBG_ERROR("sxg: request_irq (%s) FAILED [%x]\n",
+				  adapter->netdev->name, retval);
+			return (retval);
+		}
+		adapter->intrregistered = 1;
+		adapter->IntRegistered = TRUE;
+		// Disable RSS with line-based interrupts
+		adapter->MsiEnabled = FALSE;
+		adapter->RssEnabled = FALSE;
+		DBG_ERROR("sxg: %s AllocAdaptRsrcs adapter[%p] dev->irq[%x]\n",
+			  __FUNCTION__, adapter, adapter->netdev->irq);
+	}
+	return (STATUS_SUCCESS);
+}
+
+static void sxg_deregister_interrupt(p_adapter_t adapter)
+{
+	DBG_ERROR("sxg: %s ENTER adapter[%p]\n", __FUNCTION__, adapter);
+#if XXXTODO
+	slic_init_cleanup(adapter);
+#endif
+	memset(&adapter->stats, 0, sizeof(struct net_device_stats));
+	adapter->error_interrupts = 0;
+	adapter->rcv_interrupts = 0;
+	adapter->xmit_interrupts = 0;
+	adapter->linkevent_interrupts = 0;
+	adapter->upr_interrupts = 0;
+	adapter->num_isrs = 0;
+	adapter->xmit_completes = 0;
+	adapter->rcv_broadcasts = 0;
+	adapter->rcv_multicasts = 0;
+	adapter->rcv_unicasts = 0;
+	DBG_ERROR("sxg: %s EXIT\n", __FUNCTION__);
+}
+
+/*
+ *  sxg_if_init
+ *
+ *  Perform initialization of our slic interface.
+ *
+ */
+static int sxg_if_init(p_adapter_t adapter)
+{
+	p_net_device dev = adapter->netdev;
+	int status = 0;
+
+	DBG_ERROR("sxg: %s (%s) ENTER states[%d:%d:%d] flags[%x]\n",
+		  __FUNCTION__, adapter->netdev->name,
+		  adapter->queues_initialized, adapter->state,
+		  adapter->linkstate, dev->flags);
+
+	/* adapter should be down at this point */
+	if (adapter->state != ADAPT_DOWN) {
+		DBG_ERROR("sxg_if_init adapter->state != ADAPT_DOWN\n");
+		return (-EIO);
+	}
+	ASSERT(adapter->linkstate == LINK_DOWN);
+
+	adapter->devflags_prev = dev->flags;
+	adapter->macopts = MAC_DIRECTED;
+	if (dev->flags) {
+		DBG_ERROR("sxg: %s (%s) Set MAC options: ", __FUNCTION__,
+			  adapter->netdev->name);
+		if (dev->flags & IFF_BROADCAST) {
+			adapter->macopts |= MAC_BCAST;
+			DBG_ERROR("BCAST ");
+		}
+		if (dev->flags & IFF_PROMISC) {
+			adapter->macopts |= MAC_PROMISC;
+			DBG_ERROR("PROMISC ");
+		}
+		if (dev->flags & IFF_ALLMULTI) {
+			adapter->macopts |= MAC_ALLMCAST;
+			DBG_ERROR("ALL_MCAST ");
+		}
+		if (dev->flags & IFF_MULTICAST) {
+			adapter->macopts |= MAC_MCAST;
+			DBG_ERROR("MCAST ");
+		}
+		DBG_ERROR("\n");
+	}
+	status = sxg_register_interrupt(adapter);
+	if (status != STATUS_SUCCESS) {
+		DBG_ERROR("sxg_if_init: sxg_register_interrupt FAILED %x\n",
+			  status);
+		sxg_deregister_interrupt(adapter);
+		return (status);
+	}
+
+	adapter->state = ADAPT_UP;
+
+	/*
+	 *    clear any pending events, then enable interrupts
+	 */
+	DBG_ERROR("sxg: %s ENABLE interrupts(slic)\n", __FUNCTION__);
+
+	return (STATUS_SUCCESS);
+}
+
+static int sxg_entry_open(p_net_device dev)
+{
+	p_adapter_t adapter = (p_adapter_t) netdev_priv(dev);
+	int status;
+
+	ASSERT(adapter);
+	DBG_ERROR("sxg: %s adapter->activated[%d]\n", __FUNCTION__,
+		  adapter->activated);
+	DBG_ERROR
+	    ("sxg: %s (%s): [jiffies[%lx] cpu %d] dev[%p] adapt[%p] port[%d]\n",
+	     __FUNCTION__, adapter->netdev->name, jiffies, smp_processor_id(),
+	     adapter->netdev, adapter, adapter->port);
+
+	netif_stop_queue(adapter->netdev);
+
+	spin_lock_irqsave(&sxg_global.driver_lock, sxg_global.flags);
+	if (!adapter->activated) {
+		sxg_global.num_sxg_ports_active++;
+		adapter->activated = 1;
+	}
+	// Initialize the adapter
+	DBG_ERROR("sxg: %s ENTER sxg_initialize_adapter\n", __FUNCTION__);
+	status = sxg_initialize_adapter(adapter);
+	DBG_ERROR("sxg: %s EXIT sxg_initialize_adapter status[%x]\n",
+		  __FUNCTION__, status);
+
+	if (status == STATUS_SUCCESS) {
+		DBG_ERROR("sxg: %s ENTER sxg_if_init\n", __FUNCTION__);
+		status = sxg_if_init(adapter);
+		DBG_ERROR("sxg: %s EXIT sxg_if_init status[%x]\n", __FUNCTION__,
+			  status);
+	}
+
+	if (status != STATUS_SUCCESS) {
+		if (adapter->activated) {
+			sxg_global.num_sxg_ports_active--;
+			adapter->activated = 0;
+		}
+		spin_unlock_irqrestore(&sxg_global.driver_lock,
+				       sxg_global.flags);
+		return (status);
+	}
+	DBG_ERROR("sxg: %s ENABLE ALL INTERRUPTS\n", __FUNCTION__);
+
+	// Enable interrupts
+	SXG_ENABLE_ALL_INTERRUPTS(adapter);
+
+	DBG_ERROR("sxg: %s EXIT\n", __FUNCTION__);
+
+	spin_unlock_irqrestore(&sxg_global.driver_lock, sxg_global.flags);
+	return STATUS_SUCCESS;
+}
+
+static void __devexit sxg_entry_remove(struct pci_dev *pcidev)
+{
+	p_net_device dev = pci_get_drvdata(pcidev);
+	u32 mmio_start = 0;
+	unsigned int mmio_len = 0;
+	p_adapter_t adapter = (p_adapter_t) netdev_priv(dev);
+
+	ASSERT(adapter);
+	DBG_ERROR("sxg: %s ENTER dev[%p] adapter[%p]\n", __FUNCTION__, dev,
+		  adapter);
+	sxg_deregister_interrupt(adapter);
+	sxg_unmap_mmio_space(adapter);
+	DBG_ERROR("sxg: %s unregister_netdev\n", __FUNCTION__);
+	unregister_netdev(dev);
+
+	mmio_start = pci_resource_start(pcidev, 0);
+	mmio_len = pci_resource_len(pcidev, 0);
+
+	DBG_ERROR("sxg: %s rel_region(0) start[%x] len[%x]\n", __FUNCTION__,
+		  mmio_start, mmio_len);
+	release_mem_region(mmio_start, mmio_len);
+
+	DBG_ERROR("sxg: %s iounmap dev->base_addr[%x]\n", __FUNCTION__,
+		  (unsigned int)dev->base_addr);
+	iounmap((char *)dev->base_addr);
+
+	DBG_ERROR("sxg: %s deallocate device\n", __FUNCTION__);
+	kfree(dev);
+	DBG_ERROR("sxg: %s EXIT\n", __FUNCTION__);
+}
+
+static int sxg_entry_halt(p_net_device dev)
+{
+	p_adapter_t adapter = (p_adapter_t) netdev_priv(dev);
+
+	spin_lock_irqsave(&sxg_global.driver_lock, sxg_global.flags);
+	DBG_ERROR("sxg: %s (%s) ENTER\n", __FUNCTION__, dev->name);
+
+	netif_stop_queue(adapter->netdev);
+	adapter->state = ADAPT_DOWN;
+	adapter->linkstate = LINK_DOWN;
+	adapter->devflags_prev = 0;
+	DBG_ERROR("sxg: %s (%s) set adapter[%p] state to ADAPT_DOWN(%d)\n",
+		  __FUNCTION__, dev->name, adapter, adapter->state);
+
+	DBG_ERROR("sxg: %s (%s) EXIT\n", __FUNCTION__, dev->name);
+	DBG_ERROR("sxg: %s EXIT\n", __FUNCTION__);
+	spin_unlock_irqrestore(&sxg_global.driver_lock, sxg_global.flags);
+	return (STATUS_SUCCESS);
+}
+
+static int sxg_ioctl(p_net_device dev, struct ifreq *rq, int cmd)
+{
+	ASSERT(rq);
+//      DBG_ERROR("sxg: %s cmd[%x] rq[%p] dev[%p]\n", __FUNCTION__, cmd, rq, dev);
+	switch (cmd) {
+	case SIOCSLICSETINTAGG:
+		{
+//                      p_adapter_t adapter = (p_adapter_t) netdev_priv(dev);
+			u32 data[7];
+			u32 intagg;
+
+			if (copy_from_user(data, rq->ifr_data, 28)) {
+				DBG_ERROR
+				    ("copy_from_user FAILED  getting initial params\n");
+				return -EFAULT;
+			}
+			intagg = data[0];
+			printk(KERN_EMERG
+			       "%s: set interrupt aggregation to %d\n",
+			       __FUNCTION__, intagg);
+			return 0;
+		}
+
+	default:
+//              DBG_ERROR("sxg: %s UNSUPPORTED[%x]\n", __FUNCTION__, cmd);
+		return -EOPNOTSUPP;
+	}
+	return 0;
+}
+
+#define NORMAL_ETHFRAME     0
+
+/*
+ *
+ * sxg_send_packets - Send a skb packet
+ *
+ * Arguments:
+ *			skb                     - The packet to send
+ *			dev                     - Our linux net device that refs our adapter
+ *
+ * Return:
+ *		0   regardless of outcome    XXXTODO refer to e1000 driver
+ */
+static int sxg_send_packets(struct sk_buff *skb, p_net_device dev)
+{
+	p_adapter_t adapter = (p_adapter_t) netdev_priv(dev);
+	u32 status = STATUS_SUCCESS;
+
+	DBG_ERROR("sxg: %s ENTER sxg_send_packets skb[%p]\n", __FUNCTION__,
+		  skb);
+	// Check the adapter state
+	switch (adapter->State) {
+	case SXG_STATE_INITIALIZING:
+	case SXG_STATE_HALTED:
+	case SXG_STATE_SHUTDOWN:
+		ASSERT(0);	// unexpected
+		// fall through
+	case SXG_STATE_RESETTING:
+	case SXG_STATE_SLEEP:
+	case SXG_STATE_BOOTDIAG:
+	case SXG_STATE_DIAG:
+	case SXG_STATE_HALTING:
+		status = STATUS_FAILURE;
+		break;
+	case SXG_STATE_RUNNING:
+		if (adapter->LinkState != SXG_LINK_UP) {
+			status = STATUS_FAILURE;
+		}
+		break;
+	default:
+		ASSERT(0);
+		status = STATUS_FAILURE;
+	}
+	if (status != STATUS_SUCCESS) {
+		goto xmit_fail;
+	}
+	// send a packet
+	status = sxg_transmit_packet(adapter, skb);
+	if (status == STATUS_SUCCESS) {
+		goto xmit_done;
+	}
+
+      xmit_fail:
+	// reject & complete all the packets if they cant be sent
+	if (status != STATUS_SUCCESS) {
+#if XXXTODO
+//      sxg_send_packets_fail(adapter, skb, status);
+#else
+		SXG_DROP_DUMB_SEND(adapter, skb);
+		adapter->stats.tx_dropped++;
+#endif
+	}
+	DBG_ERROR("sxg: %s EXIT sxg_send_packets status[%x]\n", __FUNCTION__,
+		  status);
+
+      xmit_done:
+	return 0;
+}
+
+/*
+ * sxg_transmit_packet
+ *
+ * This function transmits a single packet.
+ *
+ * Arguments -
+ *		adapter			- Pointer to our adapter structure
+ *      skb             - The packet to be sent
+ *
+ * Return -
+ * 		STATUS of send
+ */
+static int sxg_transmit_packet(p_adapter_t adapter, struct sk_buff *skb)
+{
+	PSCATTER_GATHER_LIST pSgl;
+	PSXG_SCATTER_GATHER SxgSgl;
+	void *SglBuffer;
+	u32 SglBufferLength;
+
+	// The vast majority of work is done in the shared
+	// sxg_dumb_sgl routine.
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "DumbSend",
+		  adapter, skb, 0, 0);
+
+	// Allocate a SGL buffer
+	SXG_GET_SGL_BUFFER(adapter, SxgSgl);
+	if (!SxgSgl) {
+		adapter->Stats.NoSglBuf++;
+		adapter->Stats.XmtErrors++;
+		SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "SndPktF1",
+			  adapter, skb, 0, 0);
+		return (STATUS_RESOURCES);
+	}
+	ASSERT(SxgSgl->adapter == adapter);
+	SglBuffer = SXG_SGL_BUFFER(SxgSgl);
+	SglBufferLength = SXG_SGL_BUF_SIZE;
+	SxgSgl->VlanTag.VlanTci = 0;
+	SxgSgl->VlanTag.VlanTpid = 0;
+	SxgSgl->Type = SXG_SGL_DUMB;
+	SxgSgl->DumbPacket = skb;
+	pSgl = NULL;
+
+	// Call the common sxg_dumb_sgl routine to complete the send.
+	sxg_dumb_sgl(pSgl, SxgSgl);
+	// Return success   sxg_dumb_sgl (or something later) will complete it.
+	return (STATUS_SUCCESS);
+}
+
+/*
+ * sxg_dumb_sgl
+ *
+ * Arguments:
+ *		pSgl     -
+ *		SxgSgl   - SXG_SCATTER_GATHER
+ *
+ * Return Value:
+ * 	None.
+ */
+static void sxg_dumb_sgl(PSCATTER_GATHER_LIST pSgl, PSXG_SCATTER_GATHER SxgSgl)
+{
+	p_adapter_t adapter = SxgSgl->adapter;
+	struct sk_buff *skb = SxgSgl->DumbPacket;
+	// For now, all dumb-nic sends go on RSS queue zero
+	PSXG_XMT_RING XmtRing = &adapter->XmtRings[0];
+	PSXG_RING_INFO XmtRingInfo = &adapter->XmtRingZeroInfo;
+	PSXG_CMD XmtCmd = NULL;
+//      u32                         Index = 0;
+	u32 DataLength = skb->len;
+//  unsigned int                                BufLen;
+//      u32                         SglOffset;
+	u64 phys_addr;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "DumbSgl",
+		  pSgl, SxgSgl, 0, 0);
+
+	// Set aside a pointer to the sgl
+	SxgSgl->pSgl = pSgl;
+
+	// Sanity check that our SGL format is as we expect.
+	ASSERT(sizeof(SXG_X64_SGE) == sizeof(SCATTER_GATHER_ELEMENT));
+	// Shouldn't be a vlan tag on this frame
+	ASSERT(SxgSgl->VlanTag.VlanTci == 0);
+	ASSERT(SxgSgl->VlanTag.VlanTpid == 0);
+
+	// From here below we work with the SGL placed in our
+	// buffer.
+
+	SxgSgl->Sgl.NumberOfElements = 1;
+
+	// Grab the spinlock and acquire a command
+	spin_lock(&adapter->XmtZeroLock);
+	SXG_GET_CMD(XmtRing, XmtRingInfo, XmtCmd, SxgSgl);
+	if (XmtCmd == NULL) {
+		// Call sxg_complete_slow_send to see if we can
+		// free up any XmtRingZero entries and then try again
+		spin_unlock(&adapter->XmtZeroLock);
+		sxg_complete_slow_send(adapter);
+		spin_lock(&adapter->XmtZeroLock);
+		SXG_GET_CMD(XmtRing, XmtRingInfo, XmtCmd, SxgSgl);
+		if (XmtCmd == NULL) {
+			adapter->Stats.XmtZeroFull++;
+			goto abortcmd;
+		}
+	}
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "DumbCmd",
+		  XmtCmd, XmtRingInfo->Head, XmtRingInfo->Tail, 0);
+	// Update stats
+	adapter->Stats.DumbXmtPkts++;
+	adapter->Stats.DumbXmtBytes += DataLength;
+#if XXXTODO			// Stats stuff
+	if (SXG_MULTICAST_PACKET(EtherHdr)) {
+		if (SXG_BROADCAST_PACKET(EtherHdr)) {
+			adapter->Stats.DumbXmtBcastPkts++;
+			adapter->Stats.DumbXmtBcastBytes += DataLength;
+		} else {
+			adapter->Stats.DumbXmtMcastPkts++;
+			adapter->Stats.DumbXmtMcastBytes += DataLength;
+		}
+	} else {
+		adapter->Stats.DumbXmtUcastPkts++;
+		adapter->Stats.DumbXmtUcastBytes += DataLength;
+	}
+#endif
+	// Fill in the command
+	// Copy out the first SGE to the command and adjust for offset
+	phys_addr =
+	    pci_map_single(adapter->pcidev, skb->data, skb->len,
+			   PCI_DMA_TODEVICE);
+	XmtCmd->Buffer.FirstSgeAddress = SXG_GET_ADDR_HIGH(phys_addr);
+	XmtCmd->Buffer.FirstSgeAddress = XmtCmd->Buffer.FirstSgeAddress << 32;
+	XmtCmd->Buffer.FirstSgeAddress =
+	    XmtCmd->Buffer.FirstSgeAddress | SXG_GET_ADDR_LOW(phys_addr);
+//      XmtCmd->Buffer.FirstSgeAddress = SxgSgl->Sgl.Elements[Index].Address;
+//      XmtCmd->Buffer.FirstSgeAddress.LowPart += MdlOffset;
+	XmtCmd->Buffer.FirstSgeLength = DataLength;
+	// Set a pointer to the remaining SGL entries
+//      XmtCmd->Sgl = SxgSgl->PhysicalAddress;
+	// Advance the physical address of the SxgSgl structure to
+	// the second SGE
+//      SglOffset = (u32)((u32 *)(&SxgSgl->Sgl.Elements[Index+1]) -
+//                                              (u32 *)SxgSgl);
+//      XmtCmd->Sgl.LowPart += SglOffset;
+	XmtCmd->Buffer.SgeOffset = 0;
+	// Note - TotalLength might be overwritten with MSS below..
+	XmtCmd->Buffer.TotalLength = DataLength;
+	XmtCmd->SgEntries = 1;	//(ushort)(SxgSgl->Sgl.NumberOfElements - Index);
+	XmtCmd->Flags = 0;
+	//
+	// Advance transmit cmd descripter by 1.
+	// NOTE - See comments in SxgTcpOutput where we write
+	// to the XmtCmd register regarding CPU ID values and/or
+	// multiple commands.
+	//
+	//
+	WRITE_REG(adapter->UcodeRegs[0].XmtCmd, 1, TRUE);
+	//
+	//
+	adapter->Stats.XmtQLen++;	// Stats within lock
+	spin_unlock(&adapter->XmtZeroLock);
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XDumSgl2",
+		  XmtCmd, pSgl, SxgSgl, 0);
+	return;
+
+      abortcmd:
+	// NOTE - Only jump to this label AFTER grabbing the
+	// XmtZeroLock, and DO NOT DROP IT between the
+	// command allocation and the following abort.
+	if (XmtCmd) {
+		SXG_ABORT_CMD(XmtRingInfo);
+	}
+	spin_unlock(&adapter->XmtZeroLock);
+
+// failsgl:
+	// Jump to this label if failure occurs before the
+	// XmtZeroLock is grabbed
+	adapter->Stats.XmtErrors++;
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_IMPORTANT, "DumSGFal",
+		  pSgl, SxgSgl, XmtRingInfo->Head, XmtRingInfo->Tail);
+
+	SXG_COMPLETE_DUMB_SEND(adapter, SxgSgl->DumbPacket);	// SxgSgl->DumbPacket is the skb
+}
+
+/***************************************************************
+ * Link management functions
+ ***************************************************************/
+
+/*
+ * sxg_initialize_link - Initialize the link stuff
+ *
+ * Arguments -
+ *	adapter		- A pointer to our adapter structure
+ *
+ * Return
+ *	status
+ */
+static int sxg_initialize_link(p_adapter_t adapter)
+{
+	PSXG_HW_REGS HwRegs = adapter->HwRegs;
+	u32 Value;
+	u32 ConfigData;
+	u32 MaxFrame;
+	int status;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "InitLink",
+		  adapter, 0, 0, 0);
+
+	// Reset PHY and XGXS module
+	WRITE_REG(HwRegs->LinkStatus, LS_SERDES_POWER_DOWN, TRUE);
+
+	// Reset transmit configuration register
+	WRITE_REG(HwRegs->XmtConfig, XMT_CONFIG_RESET, TRUE);
+
+	// Reset receive configuration register
+	WRITE_REG(HwRegs->RcvConfig, RCV_CONFIG_RESET, TRUE);
+
+	// Reset all MAC modules
+	WRITE_REG(HwRegs->MacConfig0, AXGMAC_CFG0_SUB_RESET, TRUE);
+
+	// Link address 0
+	// XXXTODO - This assumes the MAC address (0a:0b:0c:0d:0e:0f)
+	// is stored with the first nibble (0a) in the byte 0
+	// of the Mac address.  Possibly reverse?
+	Value = *(u32 *) adapter->MacAddr;
+	WRITE_REG(HwRegs->LinkAddress0Low, Value, TRUE);
+	// also write the MAC address to the MAC.  Endian is reversed.
+	WRITE_REG(HwRegs->MacAddressLow, ntohl(Value), TRUE);
+	Value = (*(u16 *) & adapter->MacAddr[4] & 0x0000FFFF);
+	WRITE_REG(HwRegs->LinkAddress0High, Value | LINK_ADDRESS_ENABLE, TRUE);
+	// endian swap for the MAC (put high bytes in bits [31:16], swapped)
+	Value = ntohl(Value);
+	WRITE_REG(HwRegs->MacAddressHigh, Value, TRUE);
+	// Link address 1
+	WRITE_REG(HwRegs->LinkAddress1Low, 0, TRUE);
+	WRITE_REG(HwRegs->LinkAddress1High, 0, TRUE);
+	// Link address 2
+	WRITE_REG(HwRegs->LinkAddress2Low, 0, TRUE);
+	WRITE_REG(HwRegs->LinkAddress2High, 0, TRUE);
+	// Link address 3
+	WRITE_REG(HwRegs->LinkAddress3Low, 0, TRUE);
+	WRITE_REG(HwRegs->LinkAddress3High, 0, TRUE);
+
+	// Enable MAC modules
+	WRITE_REG(HwRegs->MacConfig0, 0, TRUE);
+
+	// Configure MAC
+	WRITE_REG(HwRegs->MacConfig1, (AXGMAC_CFG1_XMT_PAUSE |	// Allow sending of pause
+				       AXGMAC_CFG1_XMT_EN |	// Enable XMT
+				       AXGMAC_CFG1_RCV_PAUSE |	// Enable detection of pause
+				       AXGMAC_CFG1_RCV_EN |	// Enable receive
+				       AXGMAC_CFG1_SHORT_ASSERT |	// short frame detection
+				       AXGMAC_CFG1_CHECK_LEN |	// Verify frame length
+				       AXGMAC_CFG1_GEN_FCS |	// Generate FCS
+				       AXGMAC_CFG1_PAD_64),	// Pad frames to 64 bytes
+		  TRUE);
+
+	// Set AXGMAC max frame length if jumbo.  Not needed for standard MTU
+	if (adapter->JumboEnabled) {
+		WRITE_REG(HwRegs->MacMaxFrameLen, AXGMAC_MAXFRAME_JUMBO, TRUE);
+	}
+	// AMIIM Configuration Register -
+	// The value placed in the AXGMAC_AMIIM_CFG_HALF_CLOCK portion
+	// (bottom bits) of this register is used to determine the
+	// MDC frequency as specified in the A-XGMAC Design Document.
+	// This value must not be zero.  The following value (62 or 0x3E)
+	// is based on our MAC transmit clock frequency (MTCLK) of 312.5 MHz.
+	// Given a maximum MDIO clock frequency of 2.5 MHz (see the PHY spec),
+	// we get:  312.5/(2*(X+1)) < 2.5  ==> X = 62.
+	// This value happens to be the default value for this register,
+	// so we really don't have to do this.
+	WRITE_REG(HwRegs->MacAmiimConfig, 0x0000003E, TRUE);
+
+	// Power up and enable PHY and XAUI/XGXS/Serdes logic
+	WRITE_REG(HwRegs->LinkStatus,
+		  (LS_PHY_CLR_RESET |
+		   LS_XGXS_ENABLE |
+		   LS_XGXS_CTL | LS_PHY_CLK_EN | LS_ATTN_ALARM), TRUE);
+	DBG_ERROR("After Power Up and enable PHY in sxg_initialize_link\n");
+
+	// Per information given by Aeluros, wait 100 ms after removing reset.
+	// It's not enough to wait for the self-clearing reset bit in reg 0 to clear.
+	mdelay(100);
+
+	// Verify the PHY has come up by checking that the Reset bit has cleared.
+	status = sxg_read_mdio_reg(adapter, MIIM_DEV_PHY_PMA,	// PHY PMA/PMD module
+				   PHY_PMA_CONTROL1,	// PMA/PMD control register
+				   &Value);
+	if (status != STATUS_SUCCESS)
+		return (STATUS_FAILURE);
+	if (Value & PMA_CONTROL1_RESET)	// reset complete if bit is 0
+		return (STATUS_FAILURE);
+
+	// The SERDES should be initialized by now - confirm
+	READ_REG(HwRegs->LinkStatus, Value);
+	if (Value & LS_SERDES_DOWN)	// verify SERDES is initialized
+		return (STATUS_FAILURE);
+
+	// The XAUI link should also be up - confirm
+	if (!(Value & LS_XAUI_LINK_UP))	// verify XAUI link is up
+		return (STATUS_FAILURE);
+
+	// Initialize the PHY
+	status = sxg_phy_init(adapter);
+	if (status != STATUS_SUCCESS)
+		return (STATUS_FAILURE);
+
+	// Enable the Link Alarm
+	status = sxg_write_mdio_reg(adapter, MIIM_DEV_PHY_PMA,	// PHY PMA/PMD module
+				    LASI_CONTROL,	// LASI control register
+				    LASI_CTL_LS_ALARM_ENABLE);	// enable link alarm bit
+	if (status != STATUS_SUCCESS)
+		return (STATUS_FAILURE);
+
+	// XXXTODO - temporary - verify bit is set
+	status = sxg_read_mdio_reg(adapter, MIIM_DEV_PHY_PMA,	// PHY PMA/PMD module
+				   LASI_CONTROL,	// LASI control register
+				   &Value);
+	if (status != STATUS_SUCCESS)
+		return (STATUS_FAILURE);
+	if (!(Value & LASI_CTL_LS_ALARM_ENABLE)) {
+		DBG_ERROR("Error!  LASI Control Alarm Enable bit not set!\n");
+	}
+	// Enable receive
+	MaxFrame = adapter->JumboEnabled ? JUMBOMAXFRAME : ETHERMAXFRAME;
+	ConfigData = (RCV_CONFIG_ENABLE |
+		      RCV_CONFIG_ENPARSE |
+		      RCV_CONFIG_RCVBAD |
+		      RCV_CONFIG_RCVPAUSE |
+		      RCV_CONFIG_TZIPV6 |
+		      RCV_CONFIG_TZIPV4 |
+		      RCV_CONFIG_HASH_16 |
+		      RCV_CONFIG_SOCKET | RCV_CONFIG_BUFSIZE(MaxFrame));
+	WRITE_REG(HwRegs->RcvConfig, ConfigData, TRUE);
+
+	WRITE_REG(HwRegs->XmtConfig, XMT_CONFIG_ENABLE, TRUE);
+
+	// Mark the link as down.  We'll get a link event when it comes up.
+	sxg_link_state(adapter, SXG_LINK_DOWN);
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XInitLnk",
+		  adapter, 0, 0, 0);
+	return (STATUS_SUCCESS);
+}
+
+/*
+ * sxg_phy_init - Initialize the PHY
+ *
+ * Arguments -
+ *	adapter		- A pointer to our adapter structure
+ *
+ * Return
+ *	status
+ */
+static int sxg_phy_init(p_adapter_t adapter)
+{
+	u32 Value;
+	PPHY_UCODE p;
+	int status;
+
+	DBG_ERROR("ENTER %s\n", __FUNCTION__);
+
+	// Read a register to identify the PHY type
+	status = sxg_read_mdio_reg(adapter, MIIM_DEV_PHY_PMA,	// PHY PMA/PMD module
+				   0xC205,	// PHY ID register (?)
+				   &Value);	//    XXXTODO - add def
+	if (status != STATUS_SUCCESS)
+		return (STATUS_FAILURE);
+
+	if (Value == 0x0012) {	// 0x0012 == AEL2005C PHY(?) - XXXTODO - add def
+		DBG_ERROR
+		    ("AEL2005C PHY detected.  Downloading PHY microcode.\n");
+
+		// Initialize AEL2005C PHY and download PHY microcode
+		for (p = PhyUcode; p->Addr != 0xFFFF; p++) {
+			if (p->Addr == 0) {
+				// if address == 0, data == sleep time in ms
+				mdelay(p->Data);
+			} else {
+				// write the given data to the specified address
+				status = sxg_write_mdio_reg(adapter, MIIM_DEV_PHY_PMA,	// PHY PMA/PMD module
+							    p->Addr,	// PHY address
+							    p->Data);	// PHY data
+				if (status != STATUS_SUCCESS)
+					return (STATUS_FAILURE);
+			}
+		}
+	}
+	DBG_ERROR("EXIT %s\n", __FUNCTION__);
+
+	return (STATUS_SUCCESS);
+}
+
+/*
+ * sxg_link_event - Process a link event notification from the card
+ *
+ * Arguments -
+ *	adapter		- A pointer to our adapter structure
+ *
+ * Return
+ *	None
+ */
+static void sxg_link_event(p_adapter_t adapter)
+{
+	PSXG_HW_REGS HwRegs = adapter->HwRegs;
+	SXG_LINK_STATE LinkState;
+	int status;
+	u32 Value;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "LinkEvnt",
+		  adapter, 0, 0, 0);
+	DBG_ERROR("ENTER %s\n", __FUNCTION__);
+
+	// Check the Link Status register.  We should have a Link Alarm.
+	READ_REG(HwRegs->LinkStatus, Value);
+	if (Value & LS_LINK_ALARM) {
+		// We got a Link Status alarm.  First, pause to let the
+		// link state settle (it can bounce a number of times)
+		mdelay(10);
+
+		// Now clear the alarm by reading the LASI status register.
+		status = sxg_read_mdio_reg(adapter, MIIM_DEV_PHY_PMA,	// PHY PMA/PMD module
+					   LASI_STATUS,	// LASI status register
+					   &Value);
+		if (status != STATUS_SUCCESS) {
+			DBG_ERROR("Error reading LASI Status MDIO register!\n");
+			sxg_link_state(adapter, SXG_LINK_DOWN);
+//                      ASSERT(0);
+		}
+		ASSERT(Value & LASI_STATUS_LS_ALARM);
+
+		// Now get and set the link state
+		LinkState = sxg_get_link_state(adapter);
+		sxg_link_state(adapter, LinkState);
+		DBG_ERROR("SXG: Link Alarm occurred.  Link is %s\n",
+			  ((LinkState == SXG_LINK_UP) ? "UP" : "DOWN"));
+	} else {
+		// XXXTODO - Assuming Link Attention is only being generated for the
+		// Link Alarm pin (and not for a XAUI Link Status change), then it's
+		// impossible to get here.  Yet we've gotten here twice (under extreme
+		// conditions - bouncing the link up and down many times a second).
+		// Needs further investigation.
+		DBG_ERROR("SXG: sxg_link_event: Can't get here!\n");
+		DBG_ERROR("SXG: Link Status == 0x%08X.\n", Value);
+//              ASSERT(0);
+	}
+	DBG_ERROR("EXIT %s\n", __FUNCTION__);
+
+}
+
+/*
+ * sxg_get_link_state - Determine if the link is up or down
+ *
+ * Arguments -
+ *	adapter		- A pointer to our adapter structure
+ *
+ * Return
+ *	Link State
+ */
+static SXG_LINK_STATE sxg_get_link_state(p_adapter_t adapter)
+{
+	int status;
+	u32 Value;
+
+	DBG_ERROR("ENTER %s\n", __FUNCTION__);
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "GetLink",
+		  adapter, 0, 0, 0);
+
+	// Per the Xenpak spec (and the IEEE 10Gb spec?), the link is up if
+	// the following 3 bits (from 3 different MDIO registers) are all true.
+	status = sxg_read_mdio_reg(adapter, MIIM_DEV_PHY_PMA,	// PHY PMA/PMD module
+				   PHY_PMA_RCV_DET,	// PMA/PMD Receive Signal Detect register
+				   &Value);
+	if (status != STATUS_SUCCESS)
+		goto bad;
+
+	// If PMA/PMD receive signal detect is 0, then the link is down
+	if (!(Value & PMA_RCV_DETECT))
+		return (SXG_LINK_DOWN);
+
+	status = sxg_read_mdio_reg(adapter, MIIM_DEV_PHY_PCS,	// PHY PCS module
+				   PHY_PCS_10G_STATUS1,	// PCS 10GBASE-R Status 1 register
+				   &Value);
+	if (status != STATUS_SUCCESS)
+		goto bad;
+
+	// If PCS is not locked to receive blocks, then the link is down
+	if (!(Value & PCS_10B_BLOCK_LOCK))
+		return (SXG_LINK_DOWN);
+
+	status = sxg_read_mdio_reg(adapter, MIIM_DEV_PHY_XS,	// PHY XS module
+				   PHY_XS_LANE_STATUS,	// XS Lane Status register
+				   &Value);
+	if (status != STATUS_SUCCESS)
+		goto bad;
+
+	// If XS transmit lanes are not aligned, then the link is down
+	if (!(Value & XS_LANE_ALIGN))
+		return (SXG_LINK_DOWN);
+
+	// All 3 bits are true, so the link is up
+	DBG_ERROR("EXIT %s\n", __FUNCTION__);
+
+	return (SXG_LINK_UP);
+
+      bad:
+	// An error occurred reading an MDIO register.  This shouldn't happen.
+	DBG_ERROR("Error reading an MDIO register!\n");
+	ASSERT(0);
+	return (SXG_LINK_DOWN);
+}
+
+static void sxg_indicate_link_state(p_adapter_t adapter,
+				    SXG_LINK_STATE LinkState)
+{
+	if (adapter->LinkState == SXG_LINK_UP) {
+		DBG_ERROR("%s: LINK now UP, call netif_start_queue\n",
+			  __FUNCTION__);
+		netif_start_queue(adapter->netdev);
+	} else {
+		DBG_ERROR("%s: LINK now DOWN, call netif_stop_queue\n",
+			  __FUNCTION__);
+		netif_stop_queue(adapter->netdev);
+	}
+}
+
+/*
+ * sxg_link_state - Set the link state and if necessary, indicate.
+ *	This routine the central point of processing for all link state changes.
+ *	Nothing else in the driver should alter the link state or perform
+ *	link state indications
+ *
+ * Arguments -
+ *	adapter		- A pointer to our adapter structure
+ *	LinkState 	- The link state
+ *
+ * Return
+ *	None
+ */
+static void sxg_link_state(p_adapter_t adapter, SXG_LINK_STATE LinkState)
+{
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_IMPORTANT, "LnkINDCT",
+		  adapter, LinkState, adapter->LinkState, adapter->State);
+
+	DBG_ERROR("ENTER %s\n", __FUNCTION__);
+
+	// Hold the adapter lock during this routine.  Maybe move
+	// the lock to the caller.
+	spin_lock(&adapter->AdapterLock);
+	if (LinkState == adapter->LinkState) {
+		// Nothing changed..
+		spin_unlock(&adapter->AdapterLock);
+		DBG_ERROR("EXIT #0 %s\n", __FUNCTION__);
+		return;
+	}
+	// Save the adapter state
+	adapter->LinkState = LinkState;
+
+	// Drop the lock and indicate link state
+	spin_unlock(&adapter->AdapterLock);
+	DBG_ERROR("EXIT #1 %s\n", __FUNCTION__);
+
+	sxg_indicate_link_state(adapter, LinkState);
+}
+
+/*
+ * sxg_write_mdio_reg - Write to a register on the MDIO bus
+ *
+ * Arguments -
+ *	adapter		- A pointer to our adapter structure
+ *  DevAddr     - MDIO device number being addressed
+ *  RegAddr     - register address for the specified MDIO device
+ *  Value		- value to write to the MDIO register
+ *
+ * Return
+ *	status
+ */
+static int sxg_write_mdio_reg(p_adapter_t adapter,
+			      u32 DevAddr, u32 RegAddr, u32 Value)
+{
+	PSXG_HW_REGS HwRegs = adapter->HwRegs;
+	u32 AddrOp;		// Address operation (written to MIIM field reg)
+	u32 WriteOp;		// Write operation (written to MIIM field reg)
+	u32 Cmd;		// Command (written to MIIM command reg)
+	u32 ValueRead;
+	u32 Timeout;
+
+//  DBG_ERROR("ENTER %s\n", __FUNCTION__);
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "WrtMDIO",
+		  adapter, 0, 0, 0);
+
+	// Ensure values don't exceed field width
+	DevAddr &= 0x001F;	// 5-bit field
+	RegAddr &= 0xFFFF;	// 16-bit field
+	Value &= 0xFFFF;	// 16-bit field
+
+	// Set MIIM field register bits for an MIIM address operation
+	AddrOp = (MIIM_PORT_NUM << AXGMAC_AMIIM_FIELD_PORT_SHIFT) |
+	    (DevAddr << AXGMAC_AMIIM_FIELD_DEV_SHIFT) |
+	    (MIIM_TA_10GB << AXGMAC_AMIIM_FIELD_TA_SHIFT) |
+	    (MIIM_OP_ADDR << AXGMAC_AMIIM_FIELD_OP_SHIFT) | RegAddr;
+
+	// Set MIIM field register bits for an MIIM write operation
+	WriteOp = (MIIM_PORT_NUM << AXGMAC_AMIIM_FIELD_PORT_SHIFT) |
+	    (DevAddr << AXGMAC_AMIIM_FIELD_DEV_SHIFT) |
+	    (MIIM_TA_10GB << AXGMAC_AMIIM_FIELD_TA_SHIFT) |
+	    (MIIM_OP_WRITE << AXGMAC_AMIIM_FIELD_OP_SHIFT) | Value;
+
+	// Set MIIM command register bits to execute an MIIM command
+	Cmd = AXGMAC_AMIIM_CMD_START | AXGMAC_AMIIM_CMD_10G_OPERATION;
+
+	// Reset the command register command bit (in case it's not 0)
+	WRITE_REG(HwRegs->MacAmiimCmd, 0, TRUE);
+
+	// MIIM write to set the address of the specified MDIO register
+	WRITE_REG(HwRegs->MacAmiimField, AddrOp, TRUE);
+
+	// Write to MIIM Command Register to execute to address operation
+	WRITE_REG(HwRegs->MacAmiimCmd, Cmd, TRUE);
+
+	// Poll AMIIM Indicator register to wait for completion
+	Timeout = SXG_LINK_TIMEOUT;
+	do {
+		udelay(100);	// Timeout in 100us units
+		READ_REG(HwRegs->MacAmiimIndicator, ValueRead);
+		if (--Timeout == 0) {
+			return (STATUS_FAILURE);
+		}
+	} while (ValueRead & AXGMAC_AMIIM_INDC_BUSY);
+
+	// Reset the command register command bit
+	WRITE_REG(HwRegs->MacAmiimCmd, 0, TRUE);
+
+	// MIIM write to set up an MDIO write operation
+	WRITE_REG(HwRegs->MacAmiimField, WriteOp, TRUE);
+
+	// Write to MIIM Command Register to execute the write operation
+	WRITE_REG(HwRegs->MacAmiimCmd, Cmd, TRUE);
+
+	// Poll AMIIM Indicator register to wait for completion
+	Timeout = SXG_LINK_TIMEOUT;
+	do {
+		udelay(100);	// Timeout in 100us units
+		READ_REG(HwRegs->MacAmiimIndicator, ValueRead);
+		if (--Timeout == 0) {
+			return (STATUS_FAILURE);
+		}
+	} while (ValueRead & AXGMAC_AMIIM_INDC_BUSY);
+
+//  DBG_ERROR("EXIT %s\n", __FUNCTION__);
+
+	return (STATUS_SUCCESS);
+}
+
+/*
+ * sxg_read_mdio_reg - Read a register on the MDIO bus
+ *
+ * Arguments -
+ *	adapter		- A pointer to our adapter structure
+ *  DevAddr     - MDIO device number being addressed
+ *  RegAddr     - register address for the specified MDIO device
+ *  pValue		- pointer to where to put data read from the MDIO register
+ *
+ * Return
+ *	status
+ */
+static int sxg_read_mdio_reg(p_adapter_t adapter,
+			     u32 DevAddr, u32 RegAddr, u32 *pValue)
+{
+	PSXG_HW_REGS HwRegs = adapter->HwRegs;
+	u32 AddrOp;		// Address operation (written to MIIM field reg)
+	u32 ReadOp;		// Read operation (written to MIIM field reg)
+	u32 Cmd;		// Command (written to MIIM command reg)
+	u32 ValueRead;
+	u32 Timeout;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "WrtMDIO",
+		  adapter, 0, 0, 0);
+//  DBG_ERROR("ENTER %s\n", __FUNCTION__);
+
+	// Ensure values don't exceed field width
+	DevAddr &= 0x001F;	// 5-bit field
+	RegAddr &= 0xFFFF;	// 16-bit field
+
+	// Set MIIM field register bits for an MIIM address operation
+	AddrOp = (MIIM_PORT_NUM << AXGMAC_AMIIM_FIELD_PORT_SHIFT) |
+	    (DevAddr << AXGMAC_AMIIM_FIELD_DEV_SHIFT) |
+	    (MIIM_TA_10GB << AXGMAC_AMIIM_FIELD_TA_SHIFT) |
+	    (MIIM_OP_ADDR << AXGMAC_AMIIM_FIELD_OP_SHIFT) | RegAddr;
+
+	// Set MIIM field register bits for an MIIM read operation
+	ReadOp = (MIIM_PORT_NUM << AXGMAC_AMIIM_FIELD_PORT_SHIFT) |
+	    (DevAddr << AXGMAC_AMIIM_FIELD_DEV_SHIFT) |
+	    (MIIM_TA_10GB << AXGMAC_AMIIM_FIELD_TA_SHIFT) |
+	    (MIIM_OP_READ << AXGMAC_AMIIM_FIELD_OP_SHIFT);
+
+	// Set MIIM command register bits to execute an MIIM command
+	Cmd = AXGMAC_AMIIM_CMD_START | AXGMAC_AMIIM_CMD_10G_OPERATION;
+
+	// Reset the command register command bit (in case it's not 0)
+	WRITE_REG(HwRegs->MacAmiimCmd, 0, TRUE);
+
+	// MIIM write to set the address of the specified MDIO register
+	WRITE_REG(HwRegs->MacAmiimField, AddrOp, TRUE);
+
+	// Write to MIIM Command Register to execute to address operation
+	WRITE_REG(HwRegs->MacAmiimCmd, Cmd, TRUE);
+
+	// Poll AMIIM Indicator register to wait for completion
+	Timeout = SXG_LINK_TIMEOUT;
+	do {
+		udelay(100);	// Timeout in 100us units
+		READ_REG(HwRegs->MacAmiimIndicator, ValueRead);
+		if (--Timeout == 0) {
+			return (STATUS_FAILURE);
+		}
+	} while (ValueRead & AXGMAC_AMIIM_INDC_BUSY);
+
+	// Reset the command register command bit
+	WRITE_REG(HwRegs->MacAmiimCmd, 0, TRUE);
+
+	// MIIM write to set up an MDIO register read operation
+	WRITE_REG(HwRegs->MacAmiimField, ReadOp, TRUE);
+
+	// Write to MIIM Command Register to execute the read operation
+	WRITE_REG(HwRegs->MacAmiimCmd, Cmd, TRUE);
+
+	// Poll AMIIM Indicator register to wait for completion
+	Timeout = SXG_LINK_TIMEOUT;
+	do {
+		udelay(100);	// Timeout in 100us units
+		READ_REG(HwRegs->MacAmiimIndicator, ValueRead);
+		if (--Timeout == 0) {
+			return (STATUS_FAILURE);
+		}
+	} while (ValueRead & AXGMAC_AMIIM_INDC_BUSY);
+
+	// Read the MDIO register data back from the field register
+	READ_REG(HwRegs->MacAmiimField, *pValue);
+	*pValue &= 0xFFFF;	// data is in the lower 16 bits
+
+//  DBG_ERROR("EXIT %s\n", __FUNCTION__);
+
+	return (STATUS_SUCCESS);
+}
+
+/*
+ *  Allocate a mcast_address structure to hold the multicast address.
+ *  Link it in.
+ */
+static int sxg_mcast_add_list(p_adapter_t adapter, char *address)
+{
+	p_mcast_address_t mcaddr, mlist;
+	bool equaladdr;
+
+	/* Check to see if it already exists */
+	mlist = adapter->mcastaddrs;
+	while (mlist) {
+		ETHER_EQ_ADDR(mlist->address, address, equaladdr);
+		if (equaladdr) {
+			return (STATUS_SUCCESS);
+		}
+		mlist = mlist->next;
+	}
+
+	/* Doesn't already exist.  Allocate a structure to hold it */
+	mcaddr = kmalloc(sizeof(mcast_address_t), GFP_ATOMIC);
+	if (mcaddr == NULL)
+		return 1;
+
+	memcpy(mcaddr->address, address, 6);
+
+	mcaddr->next = adapter->mcastaddrs;
+	adapter->mcastaddrs = mcaddr;
+
+	return (STATUS_SUCCESS);
+}
+
+/*
+ * Functions to obtain the CRC corresponding to the destination mac address.
+ * This is a standard ethernet CRC in that it is a 32-bit, reflected CRC using
+ * the polynomial:
+ *   x^32 + x^26 + x^23 + x^22 + x^16 + x^12 + x^11 + x^10 + x^8 + x^7 + x^5 + x^4 + x^2 + x^1.
+ *
+ * After the CRC for the 6 bytes is generated (but before the value is complemented),
+ * we must then transpose the value and return bits 30-23.
+ *
+ */
+static u32 sxg_crc_table[256];	/* Table of CRC's for all possible byte values */
+static u32 sxg_crc_init;	/* Is table initialized                        */
+
+/*
+ *  Contruct the CRC32 table
+ */
+static void sxg_mcast_init_crc32(void)
+{
+	u32 c;			/*  CRC shit reg                 */
+	u32 e = 0;		/*  Poly X-or pattern            */
+	int i;			/*  counter                      */
+	int k;			/*  byte being shifted into crc  */
+
+	static int p[] = { 0, 1, 2, 4, 5, 7, 8, 10, 11, 12, 16, 22, 23, 26 };
+
+	for (i = 0; i < sizeof(p) / sizeof(int); i++) {
+		e |= 1L << (31 - p[i]);
+	}
+
+	for (i = 1; i < 256; i++) {
+		c = i;
+		for (k = 8; k; k--) {
+			c = c & 1 ? (c >> 1) ^ e : c >> 1;
+		}
+		sxg_crc_table[i] = c;
+	}
+}
+
+/*
+ *  Return the MAC hast as described above.
+ */
+static unsigned char sxg_mcast_get_mac_hash(char *macaddr)
+{
+	u32 crc;
+	char *p;
+	int i;
+	unsigned char machash = 0;
+
+	if (!sxg_crc_init) {
+		sxg_mcast_init_crc32();
+		sxg_crc_init = 1;
+	}
+
+	crc = 0xFFFFFFFF;	/* Preload shift register, per crc-32 spec */
+	for (i = 0, p = macaddr; i < 6; ++p, ++i) {
+		crc = (crc >> 8) ^ sxg_crc_table[(crc ^ *p) & 0xFF];
+	}
+
+	/* Return bits 1-8, transposed */
+	for (i = 1; i < 9; i++) {
+		machash |= (((crc >> i) & 1) << (8 - i));
+	}
+
+	return (machash);
+}
+
+static void sxg_mcast_set_bit(p_adapter_t adapter, char *address)
+{
+	unsigned char crcpoly;
+
+	/* Get the CRC polynomial for the mac address */
+	crcpoly = sxg_mcast_get_mac_hash(address);
+
+	/* We only have space on the SLIC for 64 entries.  Lop
+	 * off the top two bits. (2^6 = 64)
+	 */
+	crcpoly &= 0x3F;
+
+	/* OR in the new bit into our 64 bit mask. */
+	adapter->MulticastMask |= (u64) 1 << crcpoly;
+}
+
+static void sxg_mcast_set_list(p_net_device dev)
+{
+#if XXXTODO
+	p_adapter_t adapter = (p_adapter_t) netdev_priv(dev);
+	int status = STATUS_SUCCESS;
+	int i;
+	char *addresses;
+	struct dev_mc_list *mc_list = dev->mc_list;
+	int mc_count = dev->mc_count;
+
+	ASSERT(adapter);
+
+	for (i = 1; i <= mc_count; i++) {
+		addresses = (char *)&mc_list->dmi_addr;
+		if (mc_list->dmi_addrlen == 6) {
+			status = sxg_mcast_add_list(adapter, addresses);
+			if (status != STATUS_SUCCESS) {
+				break;
+			}
+		} else {
+			status = -EINVAL;
+			break;
+		}
+		sxg_mcast_set_bit(adapter, addresses);
+		mc_list = mc_list->next;
+	}
+
+	DBG_ERROR("%s a->devflags_prev[%x] dev->flags[%x] status[%x]\n",
+		  __FUNCTION__, adapter->devflags_prev, dev->flags, status);
+	if (adapter->devflags_prev != dev->flags) {
+		adapter->macopts = MAC_DIRECTED;
+		if (dev->flags) {
+			if (dev->flags & IFF_BROADCAST) {
+				adapter->macopts |= MAC_BCAST;
+			}
+			if (dev->flags & IFF_PROMISC) {
+				adapter->macopts |= MAC_PROMISC;
+			}
+			if (dev->flags & IFF_ALLMULTI) {
+				adapter->macopts |= MAC_ALLMCAST;
+			}
+			if (dev->flags & IFF_MULTICAST) {
+				adapter->macopts |= MAC_MCAST;
+			}
+		}
+		adapter->devflags_prev = dev->flags;
+		DBG_ERROR("%s call sxg_config_set adapter->macopts[%x]\n",
+			  __FUNCTION__, adapter->macopts);
+		sxg_config_set(adapter, TRUE);
+	} else {
+		if (status == STATUS_SUCCESS) {
+			sxg_mcast_set_mask(adapter);
+		}
+	}
+#endif
+	return;
+}
+
+static void sxg_mcast_set_mask(p_adapter_t adapter)
+{
+	PSXG_UCODE_REGS sxg_regs = adapter->UcodeRegs;
+
+	DBG_ERROR("%s ENTER (%s) macopts[%x] mask[%llx]\n", __FUNCTION__,
+		  adapter->netdev->name, (unsigned int)adapter->MacFilter,
+		  adapter->MulticastMask);
+
+	if (adapter->MacFilter & (MAC_ALLMCAST | MAC_PROMISC)) {
+		/* Turn on all multicast addresses. We have to do this for promiscuous
+		 * mode as well as ALLMCAST mode.  It saves the Microcode from having
+		 * to keep state about the MAC configuration.
+		 */
+//              DBG_ERROR("sxg: %s macopts = MAC_ALLMCAST | MAC_PROMISC\n      SLUT MODE!!!\n",__FUNCTION__);
+		WRITE_REG(sxg_regs->McastLow, 0xFFFFFFFF, FLUSH);
+		WRITE_REG(sxg_regs->McastHigh, 0xFFFFFFFF, FLUSH);
+//        DBG_ERROR("%s (%s) WRITE to slic_regs slic_mcastlow&high 0xFFFFFFFF\n",__FUNCTION__, adapter->netdev->name);
+
+	} else {
+		/* Commit our multicast mast to the SLIC by writing to the multicast
+		 * address mask registers
+		 */
+		DBG_ERROR("%s (%s) WRITE mcastlow[%lx] mcasthigh[%lx]\n",
+			  __FUNCTION__, adapter->netdev->name,
+			  ((ulong) (adapter->MulticastMask & 0xFFFFFFFF)),
+			  ((ulong)
+			   ((adapter->MulticastMask >> 32) & 0xFFFFFFFF)));
+
+		WRITE_REG(sxg_regs->McastLow,
+			  (u32) (adapter->MulticastMask & 0xFFFFFFFF), FLUSH);
+		WRITE_REG(sxg_regs->McastHigh,
+			  (u32) ((adapter->
+				  MulticastMask >> 32) & 0xFFFFFFFF), FLUSH);
+	}
+}
+
+static void sxg_unmap_mmio_space(p_adapter_t adapter)
+{
+#if LINUX_FREES_ADAPTER_RESOURCES
+//      if (adapter->Regs) {
+//              iounmap(adapter->Regs);
+//      }
+//      adapter->slic_regs = NULL;
+#endif
+}
+
+#if XXXTODO
+/*
+ * SxgFreeResources - Free everything allocated in SxgAllocateResources
+ *
+ * Arguments -
+ *	adapter		- A pointer to our adapter structure
+ *
+ * Return
+ *	none
+ */
+void SxgFreeResources(p_adapter_t adapter)
+{
+	u32 RssIds, IsrCount;
+	PTCP_OBJECT TcpObject;
+	u32 i;
+	BOOLEAN TimerCancelled;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "FreeRes",
+		  adapter, adapter->MaxTcbs, 0, 0);
+
+	RssIds = SXG_RSS_CPU_COUNT(adapter);
+	IsrCount = adapter->MsiEnabled ? RssIds : 1;
+
+	if (adapter->BasicAllocations == FALSE) {
+		// No allocations have been made, including spinlocks,
+		// or listhead initializations.  Return.
+		return;
+	}
+
+	if (!(IsListEmpty(&adapter->AllRcvBlocks))) {
+		SxgFreeRcvBlocks(adapter);
+	}
+	if (!(IsListEmpty(&adapter->AllSglBuffers))) {
+		SxgFreeSglBuffers(adapter);
+	}
+	// Free event queues.
+	if (adapter->EventRings) {
+		pci_free_consistent(adapter->pcidev,
+				    sizeof(SXG_EVENT_RING) * RssIds,
+				    adapter->EventRings, adapter->PEventRings);
+	}
+	if (adapter->Isr) {
+		pci_free_consistent(adapter->pcidev,
+				    sizeof(u32) * IsrCount,
+				    adapter->Isr, adapter->PIsr);
+	}
+	if (adapter->XmtRingZeroIndex) {
+		pci_free_consistent(adapter->pcidev,
+				    sizeof(u32),
+				    adapter->XmtRingZeroIndex,
+				    adapter->PXmtRingZeroIndex);
+	}
+	if (adapter->IndirectionTable) {
+		pci_free_consistent(adapter->pcidev,
+				    SXG_MAX_RSS_TABLE_SIZE,
+				    adapter->IndirectionTable,
+				    adapter->PIndirectionTable);
+	}
+
+	SXG_FREE_PACKET_POOL(adapter->PacketPoolHandle);
+	SXG_FREE_BUFFER_POOL(adapter->BufferPoolHandle);
+
+	// Unmap register spaces
+	SxgUnmapResources(adapter);
+
+	// Deregister DMA
+	if (adapter->DmaHandle) {
+		SXG_DEREGISTER_DMA(adapter->DmaHandle);
+	}
+	// Deregister interrupt
+	SxgDeregisterInterrupt(adapter);
+
+	// Possibly free system info (5.2 only)
+	SXG_RELEASE_SYSTEM_INFO(adapter);
+
+	SxgDiagFreeResources(adapter);
+
+	SxgFreeMCastAddrs(adapter);
+
+	if (SXG_TIMER_ALLOCATED(adapter->ResetTimer)) {
+		SXG_CANCEL_TIMER(adapter->ResetTimer, TimerCancelled);
+		SXG_FREE_TIMER(adapter->ResetTimer);
+	}
+	if (SXG_TIMER_ALLOCATED(adapter->RssTimer)) {
+		SXG_CANCEL_TIMER(adapter->RssTimer, TimerCancelled);
+		SXG_FREE_TIMER(adapter->RssTimer);
+	}
+	if (SXG_TIMER_ALLOCATED(adapter->OffloadTimer)) {
+		SXG_CANCEL_TIMER(adapter->OffloadTimer, TimerCancelled);
+		SXG_FREE_TIMER(adapter->OffloadTimer);
+	}
+
+	adapter->BasicAllocations = FALSE;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XFreeRes",
+		  adapter, adapter->MaxTcbs, 0, 0);
+}
+#endif
+
+/*
+ * sxg_allocate_complete -
+ *
+ * This routine is called when a memory allocation has completed.
+ *
+ * Arguments -
+ *	p_adapter_t    	- Our adapter structure
+ *	VirtualAddress	- Memory virtual address
+ *	PhysicalAddress	- Memory physical address
+ *	Length		- Length of memory allocated (or 0)
+ *	Context		- The type of buffer allocated
+ *
+ * Return
+ *	None.
+ */
+static void sxg_allocate_complete(p_adapter_t adapter,
+				  void *VirtualAddress,
+				  dma_addr_t PhysicalAddress,
+				  u32 Length, SXG_BUFFER_TYPE Context)
+{
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "AllocCmp",
+		  adapter, VirtualAddress, Length, Context);
+	ASSERT(adapter->AllocationsPending);
+	--adapter->AllocationsPending;
+
+	switch (Context) {
+
+	case SXG_BUFFER_TYPE_RCV:
+		sxg_allocate_rcvblock_complete(adapter,
+					       VirtualAddress,
+					       PhysicalAddress, Length);
+		break;
+	case SXG_BUFFER_TYPE_SGL:
+		sxg_allocate_sgl_buffer_complete(adapter, (PSXG_SCATTER_GATHER)
+						 VirtualAddress,
+						 PhysicalAddress, Length);
+		break;
+	}
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XAlocCmp",
+		  adapter, VirtualAddress, Length, Context);
+}
+
+/*
+ * sxg_allocate_buffer_memory - Shared memory allocation routine used for
+ *		synchronous and asynchronous buffer allocations
+ *
+ * Arguments -
+ *	adapter		- A pointer to our adapter structure
+ *	Size		- block size to allocate
+ *	BufferType	- Type of buffer to allocate
+ *
+ * Return
+ *	int
+ */
+static int sxg_allocate_buffer_memory(p_adapter_t adapter,
+				      u32 Size, SXG_BUFFER_TYPE BufferType)
+{
+	int status;
+	void *Buffer;
+	dma_addr_t pBuffer;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "AllocMem",
+		  adapter, Size, BufferType, 0);
+	// Grab the adapter lock and check the state.
+	// If we're in anything other than INITIALIZING or
+	// RUNNING state, fail.  This is to prevent
+	// allocations in an improper driver state
+	spin_lock(&adapter->AdapterLock);
+
+	// Increment the AllocationsPending count while holding
+	// the lock.  Pause processing relies on this
+	++adapter->AllocationsPending;
+	spin_unlock(&adapter->AdapterLock);
+
+	// At initialization time allocate resources synchronously.
+	Buffer = pci_alloc_consistent(adapter->pcidev, Size, &pBuffer);
+	if (Buffer == NULL) {
+		spin_lock(&adapter->AdapterLock);
+		// Decrement the AllocationsPending count while holding
+		// the lock.  Pause processing relies on this
+		--adapter->AllocationsPending;
+		spin_unlock(&adapter->AdapterLock);
+		SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "AlcMemF1",
+			  adapter, Size, BufferType, 0);
+		return (STATUS_RESOURCES);
+	}
+	sxg_allocate_complete(adapter, Buffer, pBuffer, Size, BufferType);
+	status = STATUS_SUCCESS;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XAlocMem",
+		  adapter, Size, BufferType, status);
+	return (status);
+}
+
+/*
+ * sxg_allocate_rcvblock_complete - Complete a receive descriptor block allocation
+ *
+ * Arguments -
+ *	adapter				- A pointer to our adapter structure
+ *	RcvBlock			- receive block virtual address
+ *	PhysicalAddress		- Physical address
+ *	Length				- Memory length
+ *
+ * Return
+ *
+ */
+static void sxg_allocate_rcvblock_complete(p_adapter_t adapter,
+					   void *RcvBlock,
+					   dma_addr_t PhysicalAddress,
+					   u32 Length)
+{
+	u32 i;
+	u32 BufferSize = adapter->ReceiveBufferSize;
+	u64 Paddr;
+	PSXG_RCV_BLOCK_HDR RcvBlockHdr;
+	unsigned char *RcvDataBuffer;
+	PSXG_RCV_DATA_BUFFER_HDR RcvDataBufferHdr;
+	PSXG_RCV_DESCRIPTOR_BLOCK RcvDescriptorBlock;
+	PSXG_RCV_DESCRIPTOR_BLOCK_HDR RcvDescriptorBlockHdr;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "AlRcvBlk",
+		  adapter, RcvBlock, Length, 0);
+	if (RcvBlock == NULL) {
+		goto fail;
+	}
+	memset(RcvBlock, 0, Length);
+	ASSERT((BufferSize == SXG_RCV_DATA_BUFFER_SIZE) ||
+	       (BufferSize == SXG_RCV_JUMBO_BUFFER_SIZE));
+	ASSERT(Length == SXG_RCV_BLOCK_SIZE(BufferSize));
+	// First, initialize the contained pool of receive data
+	// buffers.  This initialization requires NBL/NB/MDL allocations,
+	// If any of them fail, free the block and return without
+	// queueing the shared memory
+	RcvDataBuffer = RcvBlock;
+#if 0
+	for (i = 0, Paddr = *PhysicalAddress;
+	     i < SXG_RCV_DESCRIPTORS_PER_BLOCK;
+	     i++, Paddr.LowPart += BufferSize, RcvDataBuffer += BufferSize)
+#endif
+		for (i = 0, Paddr = PhysicalAddress;
+		     i < SXG_RCV_DESCRIPTORS_PER_BLOCK;
+		     i++, Paddr += BufferSize, RcvDataBuffer += BufferSize) {
+			//
+			RcvDataBufferHdr =
+			    (PSXG_RCV_DATA_BUFFER_HDR) (RcvDataBuffer +
+							SXG_RCV_DATA_BUFFER_HDR_OFFSET
+							(BufferSize));
+			RcvDataBufferHdr->VirtualAddress = RcvDataBuffer;
+			RcvDataBufferHdr->PhysicalAddress = Paddr;
+			RcvDataBufferHdr->State = SXG_BUFFER_UPSTREAM;	// For FREE macro assertion
+			RcvDataBufferHdr->Size =
+			    SXG_RCV_BUFFER_DATA_SIZE(BufferSize);
+
+			SXG_ALLOCATE_RCV_PACKET(adapter, RcvDataBufferHdr);
+			if (RcvDataBufferHdr->SxgDumbRcvPacket == NULL)
+				goto fail;
+
+		}
+
+	// Place this entire block of memory on the AllRcvBlocks queue so it can be
+	// free later
+	RcvBlockHdr =
+	    (PSXG_RCV_BLOCK_HDR) ((unsigned char *)RcvBlock +
+				  SXG_RCV_BLOCK_HDR_OFFSET(BufferSize));
+	RcvBlockHdr->VirtualAddress = RcvBlock;
+	RcvBlockHdr->PhysicalAddress = PhysicalAddress;
+	spin_lock(&adapter->RcvQLock);
+	adapter->AllRcvBlockCount++;
+	InsertTailList(&adapter->AllRcvBlocks, &RcvBlockHdr->AllList);
+	spin_unlock(&adapter->RcvQLock);
+
+	// Now free the contained receive data buffers that we initialized above
+	RcvDataBuffer = RcvBlock;
+	for (i = 0, Paddr = PhysicalAddress;
+	     i < SXG_RCV_DESCRIPTORS_PER_BLOCK;
+	     i++, Paddr += BufferSize, RcvDataBuffer += BufferSize) {
+		RcvDataBufferHdr = (PSXG_RCV_DATA_BUFFER_HDR) (RcvDataBuffer +
+							       SXG_RCV_DATA_BUFFER_HDR_OFFSET
+							       (BufferSize));
+		spin_lock(&adapter->RcvQLock);
+		SXG_FREE_RCV_DATA_BUFFER(adapter, RcvDataBufferHdr);
+		spin_unlock(&adapter->RcvQLock);
+	}
+
+	// Locate the descriptor block and put it on a separate free queue
+	RcvDescriptorBlock =
+	    (PSXG_RCV_DESCRIPTOR_BLOCK) ((unsigned char *)RcvBlock +
+					 SXG_RCV_DESCRIPTOR_BLOCK_OFFSET
+					 (BufferSize));
+	RcvDescriptorBlockHdr =
+	    (PSXG_RCV_DESCRIPTOR_BLOCK_HDR) ((unsigned char *)RcvBlock +
+					     SXG_RCV_DESCRIPTOR_BLOCK_HDR_OFFSET
+					     (BufferSize));
+	RcvDescriptorBlockHdr->VirtualAddress = RcvDescriptorBlock;
+	RcvDescriptorBlockHdr->PhysicalAddress = Paddr;
+	spin_lock(&adapter->RcvQLock);
+	SXG_FREE_RCV_DESCRIPTOR_BLOCK(adapter, RcvDescriptorBlockHdr);
+	spin_unlock(&adapter->RcvQLock);
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XAlRBlk",
+		  adapter, RcvBlock, Length, 0);
+	return;
+      fail:
+	// Free any allocated resources
+	if (RcvBlock) {
+		RcvDataBuffer = RcvBlock;
+		for (i = 0; i < SXG_RCV_DESCRIPTORS_PER_BLOCK;
+		     i++, RcvDataBuffer += BufferSize) {
+			RcvDataBufferHdr =
+			    (PSXG_RCV_DATA_BUFFER_HDR) (RcvDataBuffer +
+							SXG_RCV_DATA_BUFFER_HDR_OFFSET
+							(BufferSize));
+			SXG_FREE_RCV_PACKET(RcvDataBufferHdr);
+		}
+		pci_free_consistent(adapter->pcidev,
+				    Length, RcvBlock, PhysicalAddress);
+	}
+	DBG_ERROR("%s: OUT OF RESOURCES\n", __FUNCTION__);
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_IMPORTANT, "RcvAFail",
+		  adapter, adapter->FreeRcvBufferCount,
+		  adapter->FreeRcvBlockCount, adapter->AllRcvBlockCount);
+	adapter->Stats.NoMem++;
+}
+
+/*
+ * sxg_allocate_sgl_buffer_complete - Complete a SGL buffer allocation
+ *
+ * Arguments -
+ *	adapter				- A pointer to our adapter structure
+ *	SxgSgl				- SXG_SCATTER_GATHER buffer
+ *	PhysicalAddress		- Physical address
+ *	Length				- Memory length
+ *
+ * Return
+ *
+ */
+static void sxg_allocate_sgl_buffer_complete(p_adapter_t adapter,
+					     PSXG_SCATTER_GATHER SxgSgl,
+					     dma_addr_t PhysicalAddress,
+					     u32 Length)
+{
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "AlSglCmp",
+		  adapter, SxgSgl, Length, 0);
+	spin_lock(&adapter->SglQLock);
+	adapter->AllSglBufferCount++;
+	memset(SxgSgl, 0, sizeof(SXG_SCATTER_GATHER));
+	SxgSgl->PhysicalAddress = PhysicalAddress;	/* *PhysicalAddress; */
+	SxgSgl->adapter = adapter;	// Initialize backpointer once
+	InsertTailList(&adapter->AllSglBuffers, &SxgSgl->AllList);
+	spin_unlock(&adapter->SglQLock);
+	SxgSgl->State = SXG_BUFFER_BUSY;
+	SXG_FREE_SGL_BUFFER(adapter, SxgSgl, NULL);
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XAlSgl",
+		  adapter, SxgSgl, Length, 0);
+}
+
+static unsigned char temp_mac_address[6] =
+    { 0x00, 0xab, 0xcd, 0xef, 0x12, 0x69 };
+
+static void sxg_adapter_set_hwaddr(p_adapter_t adapter)
+{
+//  DBG_ERROR ("%s ENTER card->config_set[%x] port[%d] physport[%d] funct#[%d]\n", __FUNCTION__,
+//             card->config_set, adapter->port, adapter->physport, adapter->functionnumber);
+//
+//  sxg_dbg_macaddrs(adapter);
+
+	memcpy(adapter->macaddr, temp_mac_address, sizeof(SXG_CONFIG_MAC));
+//      DBG_ERROR ("%s AFTER copying from config.macinfo into currmacaddr\n", __FUNCTION__);
+//      sxg_dbg_macaddrs(adapter);
+	if (!(adapter->currmacaddr[0] ||
+	      adapter->currmacaddr[1] ||
+	      adapter->currmacaddr[2] ||
+	      adapter->currmacaddr[3] ||
+	      adapter->currmacaddr[4] || adapter->currmacaddr[5])) {
+		memcpy(adapter->currmacaddr, adapter->macaddr, 6);
+	}
+	if (adapter->netdev) {
+		memcpy(adapter->netdev->dev_addr, adapter->currmacaddr, 6);
+	}
+//  DBG_ERROR ("%s EXIT port %d\n", __FUNCTION__, adapter->port);
+	sxg_dbg_macaddrs(adapter);
+
+}
+
+static int sxg_mac_set_address(p_net_device dev, void *ptr)
+{
+#if XXXTODO
+	p_adapter_t adapter = (p_adapter_t) netdev_priv(dev);
+	struct sockaddr *addr = ptr;
+
+	DBG_ERROR("%s ENTER (%s)\n", __FUNCTION__, adapter->netdev->name);
+
+	if (netif_running(dev)) {
+		return -EBUSY;
+	}
+	if (!adapter) {
+		return -EBUSY;
+	}
+	DBG_ERROR("sxg: %s (%s) curr %2.2X:%2.2X:%2.2X:%2.2X:%2.2X:%2.2X\n",
+		  __FUNCTION__, adapter->netdev->name, adapter->currmacaddr[0],
+		  adapter->currmacaddr[1], adapter->currmacaddr[2],
+		  adapter->currmacaddr[3], adapter->currmacaddr[4],
+		  adapter->currmacaddr[5]);
+	memcpy(dev->dev_addr, addr->sa_data, dev->addr_len);
+	memcpy(adapter->currmacaddr, addr->sa_data, dev->addr_len);
+	DBG_ERROR("sxg: %s (%s) new %2.2X:%2.2X:%2.2X:%2.2X:%2.2X:%2.2X\n",
+		  __FUNCTION__, adapter->netdev->name, adapter->currmacaddr[0],
+		  adapter->currmacaddr[1], adapter->currmacaddr[2],
+		  adapter->currmacaddr[3], adapter->currmacaddr[4],
+		  adapter->currmacaddr[5]);
+
+	sxg_config_set(adapter, TRUE);
+#endif
+	return 0;
+}
+
+/*****************************************************************************/
+/*************  SXG DRIVER FUNCTIONS  (below) ********************************/
+/*****************************************************************************/
+
+/*
+ * sxg_initialize_adapter - Initialize adapter
+ *
+ * Arguments -
+ *	adapter		- A pointer to our adapter structure
+ *
+ * Return
+ *	int
+ */
+static int sxg_initialize_adapter(p_adapter_t adapter)
+{
+	u32 RssIds, IsrCount;
+	u32 i;
+	int status;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "InitAdpt",
+		  adapter, 0, 0, 0);
+
+	RssIds = 1;		//  XXXTODO  SXG_RSS_CPU_COUNT(adapter);
+	IsrCount = adapter->MsiEnabled ? RssIds : 1;
+
+	// Sanity check SXG_UCODE_REGS structure definition to
+	// make sure the length is correct
+	ASSERT(sizeof(SXG_UCODE_REGS) == SXG_REGISTER_SIZE_PER_CPU);
+
+	// Disable interrupts
+	SXG_DISABLE_ALL_INTERRUPTS(adapter);
+
+	// Set MTU
+	ASSERT((adapter->FrameSize == ETHERMAXFRAME) ||
+	       (adapter->FrameSize == JUMBOMAXFRAME));
+	WRITE_REG(adapter->UcodeRegs[0].LinkMtu, adapter->FrameSize, TRUE);
+
+	// Set event ring base address and size
+	WRITE_REG64(adapter,
+		    adapter->UcodeRegs[0].EventBase, adapter->PEventRings, 0);
+	WRITE_REG(adapter->UcodeRegs[0].EventSize, EVENT_RING_SIZE, TRUE);
+
+	// Per-ISR initialization
+	for (i = 0; i < IsrCount; i++) {
+		u64 Addr;
+		// Set interrupt status pointer
+		Addr = adapter->PIsr + (i * sizeof(u32));
+		WRITE_REG64(adapter, adapter->UcodeRegs[i].Isp, Addr, i);
+	}
+
+	// XMT ring zero index
+	WRITE_REG64(adapter,
+		    adapter->UcodeRegs[0].SPSendIndex,
+		    adapter->PXmtRingZeroIndex, 0);
+
+	// Per-RSS initialization
+	for (i = 0; i < RssIds; i++) {
+		// Release all event ring entries to the Microcode
+		WRITE_REG(adapter->UcodeRegs[i].EventRelease, EVENT_RING_SIZE,
+			  TRUE);
+	}
+
+	// Transmit ring base and size
+	WRITE_REG64(adapter,
+		    adapter->UcodeRegs[0].XmtBase, adapter->PXmtRings, 0);
+	WRITE_REG(adapter->UcodeRegs[0].XmtSize, SXG_XMT_RING_SIZE, TRUE);
+
+	// Receive ring base and size
+	WRITE_REG64(adapter,
+		    adapter->UcodeRegs[0].RcvBase, adapter->PRcvRings, 0);
+	WRITE_REG(adapter->UcodeRegs[0].RcvSize, SXG_RCV_RING_SIZE, TRUE);
+
+	// Populate the card with receive buffers
+	sxg_stock_rcv_buffers(adapter);
+
+	// Initialize checksum offload capabilities.  At the moment
+	// we always enable IP and TCP receive checksums on the card.
+	// Depending on the checksum configuration specified by the
+	// user, we can choose to report or ignore the checksum
+	// information provided by the card.
+	WRITE_REG(adapter->UcodeRegs[0].ReceiveChecksum,
+		  SXG_RCV_TCP_CSUM_ENABLED | SXG_RCV_IP_CSUM_ENABLED, TRUE);
+
+	// Initialize the MAC, XAUI
+	DBG_ERROR("sxg: %s ENTER sxg_initialize_link\n", __FUNCTION__);
+	status = sxg_initialize_link(adapter);
+	DBG_ERROR("sxg: %s EXIT sxg_initialize_link status[%x]\n", __FUNCTION__,
+		  status);
+	if (status != STATUS_SUCCESS) {
+		return (status);
+	}
+	// Initialize Dead to FALSE.
+	// SlicCheckForHang or SlicDumpThread will take it from here.
+	adapter->Dead = FALSE;
+	adapter->PingOutstanding = FALSE;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XInit",
+		  adapter, 0, 0, 0);
+	return (STATUS_SUCCESS);
+}
+
+/*
+ * sxg_fill_descriptor_block - Populate a descriptor block and give it to
+ * the card.  The caller should hold the RcvQLock
+ *
+ * Arguments -
+ *	adapter		- A pointer to our adapter structure
+ *  RcvDescriptorBlockHdr	- Descriptor block to fill
+ *
+ * Return
+ *	status
+ */
+static int sxg_fill_descriptor_block(p_adapter_t adapter,
+				     PSXG_RCV_DESCRIPTOR_BLOCK_HDR
+				     RcvDescriptorBlockHdr)
+{
+	u32 i;
+	PSXG_RING_INFO RcvRingInfo = &adapter->RcvRingZeroInfo;
+	PSXG_RCV_DATA_BUFFER_HDR RcvDataBufferHdr;
+	PSXG_RCV_DESCRIPTOR_BLOCK RcvDescriptorBlock;
+	PSXG_CMD RingDescriptorCmd;
+	PSXG_RCV_RING RingZero = &adapter->RcvRings[0];
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "FilBlk",
+		  adapter, adapter->RcvBuffersOnCard,
+		  adapter->FreeRcvBufferCount, adapter->AllRcvBlockCount);
+
+	ASSERT(RcvDescriptorBlockHdr);
+
+	// If we don't have the resources to fill the descriptor block,
+	// return failure
+	if ((adapter->FreeRcvBufferCount < SXG_RCV_DESCRIPTORS_PER_BLOCK) ||
+	    SXG_RING_FULL(RcvRingInfo)) {
+		adapter->Stats.NoMem++;
+		return (STATUS_FAILURE);
+	}
+	// Get a ring descriptor command
+	SXG_GET_CMD(RingZero,
+		    RcvRingInfo, RingDescriptorCmd, RcvDescriptorBlockHdr);
+	ASSERT(RingDescriptorCmd);
+	RcvDescriptorBlockHdr->State = SXG_BUFFER_ONCARD;
+	RcvDescriptorBlock =
+	    (PSXG_RCV_DESCRIPTOR_BLOCK) RcvDescriptorBlockHdr->VirtualAddress;
+
+	// Fill in the descriptor block
+	for (i = 0; i < SXG_RCV_DESCRIPTORS_PER_BLOCK; i++) {
+		SXG_GET_RCV_DATA_BUFFER(adapter, RcvDataBufferHdr);
+		ASSERT(RcvDataBufferHdr);
+		SXG_REINIATIALIZE_PACKET(RcvDataBufferHdr->SxgDumbRcvPacket);
+		RcvDataBufferHdr->State = SXG_BUFFER_ONCARD;
+		RcvDescriptorBlock->Descriptors[i].VirtualAddress =
+		    (void *)RcvDataBufferHdr;
+		RcvDescriptorBlock->Descriptors[i].PhysicalAddress =
+		    RcvDataBufferHdr->PhysicalAddress;
+	}
+	// Add the descriptor block to receive descriptor ring 0
+	RingDescriptorCmd->Sgl = RcvDescriptorBlockHdr->PhysicalAddress;
+
+	// RcvBuffersOnCard is not protected via the receive lock (see
+	// sxg_process_event_queue) We don't want to grap a lock every time a
+	// buffer is returned to us, so we use atomic interlocked functions
+	// instead.
+	adapter->RcvBuffersOnCard += SXG_RCV_DESCRIPTORS_PER_BLOCK;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "DscBlk",
+		  RcvDescriptorBlockHdr,
+		  RingDescriptorCmd, RcvRingInfo->Head, RcvRingInfo->Tail);
+
+	WRITE_REG(adapter->UcodeRegs[0].RcvCmd, 1, true);
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XFilBlk",
+		  adapter, adapter->RcvBuffersOnCard,
+		  adapter->FreeRcvBufferCount, adapter->AllRcvBlockCount);
+	return (STATUS_SUCCESS);
+}
+
+/*
+ * sxg_stock_rcv_buffers - Stock the card with receive buffers
+ *
+ * Arguments -
+ *	adapter		- A pointer to our adapter structure
+ *
+ * Return
+ *	None
+ */
+static void sxg_stock_rcv_buffers(p_adapter_t adapter)
+{
+	PSXG_RCV_DESCRIPTOR_BLOCK_HDR RcvDescriptorBlockHdr;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "StockBuf",
+		  adapter, adapter->RcvBuffersOnCard,
+		  adapter->FreeRcvBufferCount, adapter->AllRcvBlockCount);
+	// First, see if we've got less than our minimum threshold of
+	// receive buffers, there isn't an allocation in progress, and
+	// we haven't exceeded our maximum.. get another block of buffers
+	// None of this needs to be SMP safe.  It's round numbers.
+	if ((adapter->FreeRcvBufferCount < SXG_MIN_RCV_DATA_BUFFERS) &&
+	    (adapter->AllRcvBlockCount < SXG_MAX_RCV_BLOCKS) &&
+	    (adapter->AllocationsPending == 0)) {
+		sxg_allocate_buffer_memory(adapter,
+					   SXG_RCV_BLOCK_SIZE(adapter->
+							      ReceiveBufferSize),
+					   SXG_BUFFER_TYPE_RCV);
+	}
+	// Now grab the RcvQLock lock and proceed
+	spin_lock(&adapter->RcvQLock);
+	while (adapter->RcvBuffersOnCard < SXG_RCV_DATA_BUFFERS) {
+		PLIST_ENTRY _ple;
+
+		// Get a descriptor block
+		RcvDescriptorBlockHdr = NULL;
+		if (adapter->FreeRcvBlockCount) {
+			_ple = RemoveHeadList(&adapter->FreeRcvBlocks);
+			RcvDescriptorBlockHdr =
+			    container_of(_ple, SXG_RCV_DESCRIPTOR_BLOCK_HDR,
+					 FreeList);
+			adapter->FreeRcvBlockCount--;
+			RcvDescriptorBlockHdr->State = SXG_BUFFER_BUSY;
+		}
+
+		if (RcvDescriptorBlockHdr == NULL) {
+			// Bail out..
+			adapter->Stats.NoMem++;
+			break;
+		}
+		// Fill in the descriptor block and give it to the card
+		if (sxg_fill_descriptor_block(adapter, RcvDescriptorBlockHdr) ==
+		    STATUS_FAILURE) {
+			// Free the descriptor block
+			SXG_FREE_RCV_DESCRIPTOR_BLOCK(adapter,
+						      RcvDescriptorBlockHdr);
+			break;
+		}
+	}
+	spin_unlock(&adapter->RcvQLock);
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XFilBlks",
+		  adapter, adapter->RcvBuffersOnCard,
+		  adapter->FreeRcvBufferCount, adapter->AllRcvBlockCount);
+}
+
+/*
+ * sxg_complete_descriptor_blocks - Return descriptor blocks that have been
+ * completed by the microcode
+ *
+ * Arguments -
+ *	adapter		- A pointer to our adapter structure
+ *	Index		- Where the microcode is up to
+ *
+ * Return
+ *	None
+ */
+static void sxg_complete_descriptor_blocks(p_adapter_t adapter,
+					   unsigned char Index)
+{
+	PSXG_RCV_RING RingZero = &adapter->RcvRings[0];
+	PSXG_RING_INFO RcvRingInfo = &adapter->RcvRingZeroInfo;
+	PSXG_RCV_DESCRIPTOR_BLOCK_HDR RcvDescriptorBlockHdr;
+	PSXG_CMD RingDescriptorCmd;
+
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "CmpRBlks",
+		  adapter, Index, RcvRingInfo->Head, RcvRingInfo->Tail);
+
+	// Now grab the RcvQLock lock and proceed
+	spin_lock(&adapter->RcvQLock);
+	ASSERT(Index != RcvRingInfo->Tail);
+	while (RcvRingInfo->Tail != Index) {
+		//
+		// Locate the current Cmd (ring descriptor entry), and
+		// associated receive descriptor block, and advance
+		// the tail
+		//
+		SXG_RETURN_CMD(RingZero,
+			       RcvRingInfo,
+			       RingDescriptorCmd, RcvDescriptorBlockHdr);
+		SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "CmpRBlk",
+			  RcvRingInfo->Head, RcvRingInfo->Tail,
+			  RingDescriptorCmd, RcvDescriptorBlockHdr);
+
+		// Clear the SGL field
+		RingDescriptorCmd->Sgl = 0;
+		// Attempt to refill it and hand it right back to the
+		// card.  If we fail to refill it, free the descriptor block
+		// header.  The card will be restocked later via the
+		// RcvBuffersOnCard test
+		if (sxg_fill_descriptor_block(adapter, RcvDescriptorBlockHdr) ==
+		    STATUS_FAILURE) {
+			SXG_FREE_RCV_DESCRIPTOR_BLOCK(adapter,
+						      RcvDescriptorBlockHdr);
+		}
+	}
+	spin_unlock(&adapter->RcvQLock);
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "XCRBlks",
+		  adapter, Index, RcvRingInfo->Head, RcvRingInfo->Tail);
+}
+
+static struct pci_driver sxg_driver = {
+	.name = DRV_NAME,
+	.id_table = sxg_pci_tbl,
+	.probe = sxg_entry_probe,
+	.remove = sxg_entry_remove,
+#if SXG_POWER_MANAGEMENT_ENABLED
+	.suspend = sxgpm_suspend,
+	.resume = sxgpm_resume,
+#endif
+/*    .shutdown   =     slic_shutdown,  MOOK_INVESTIGATE */
+};
+
+static int __init sxg_module_init(void)
+{
+	sxg_init_driver();
+
+	if (debug >= 0)
+		sxg_debug = debug;
+
+	return pci_register_driver(&sxg_driver);
+}
+
+static void __exit sxg_module_cleanup(void)
+{
+	pci_unregister_driver(&sxg_driver);
+}
+
+module_init(sxg_module_init);
+module_exit(sxg_module_cleanup);
diff --git a/drivers/staging/sxg/sxg.h b/drivers/staging/sxg/sxg.h
new file mode 100644
index 0000000..844ca56
--- /dev/null
+++ b/drivers/staging/sxg/sxg.h
@@ -0,0 +1,773 @@
+/**************************************************************************
+ *
+ * Copyright © 2000-2008 Alacritech, Inc.  All rights reserved.
+ *
+ * $Id: sxg.h,v 1.3 2008/07/24 17:25:08 chris Exp $
+ *
+ * Redistribution and use in source and binary forms, with or without
+ * modification, are permitted provided that the following conditions
+ * are met:
+ *
+ * 1. Redistributions of source code must retain the above copyright
+ *    notice, this list of conditions and the following disclaimer.
+ * 2. Redistributions in binary form must reproduce the above
+ *    copyright notice, this list of conditions and the following
+ *    disclaimer in the documentation and/or other materials provided
+ *    with the distribution.
+ *
+ * THIS SOFTWARE IS PROVIDED BY ALACRITECH, INC. ``AS IS'' AND ANY
+ * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
+ * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
+ * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL ALACRITECH, INC. OR
+ * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
+ * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
+ * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
+ * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
+ * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
+ * SUCH DAMAGE.
+ *
+ * The views and conclusions contained in the software and documentation
+ * are those of the authors and should not be interpreted as representing
+ * official policies, either expressed or implied, of Alacritech, Inc.
+ *
+ **************************************************************************/
+
+/*
+ * FILENAME: sxg.h
+ *
+ * This is the base set of header definitions for the SXG driver.
+ */
+#ifndef __SXG_DRIVER_H__
+#define __SXG_DRIVER_H__
+
+#define p_net_device struct net_device *
+// SXG_STATS - Probably move these to someplace where
+// the slicstat (sxgstat?) program can get them.
+typedef struct _SXG_STATS {
+	// Xmt
+	u32				XmtNBL;				// Offload send NBL count
+	u64				DumbXmtBytes;		// Dumbnic send bytes
+	u64				SlowXmtBytes;		// Slowpath send bytes
+	u64				FastXmtBytes;		// Fastpath send bytes
+	u64				DumbXmtPkts;		// Dumbnic send packets
+	u64				SlowXmtPkts;		// Slowpath send packets
+	u64				FastXmtPkts;		// Fastpath send packets
+    u64				DumbXmtUcastPkts;	// directed packets
+    u64				DumbXmtMcastPkts;	// Multicast packets
+    u64				DumbXmtBcastPkts;	// OID_GEN_BROADCAST_FRAMES_RCV
+    u64				DumbXmtUcastBytes;	// OID_GEN_DIRECTED_BYTES_XMIT
+    u64				DumbXmtMcastBytes;	// OID_GEN_MULTICAST_BYTES_XMIT
+    u64				DumbXmtBcastBytes;	// OID_GEN_BROADCAST_BYTES_XMIT
+    u64				XmtErrors;			// OID_GEN_XMIT_ERROR
+    u64				XmtDiscards;		// OID_GEN_XMIT_DISCARDS
+	u64				XmtOk;				// OID_GEN_XMIT_OK
+	u64				XmtQLen;			// OID_GEN_TRANSMIT_QUEUE_LENGTH
+	u64				XmtZeroFull;		// Transmit ring zero full
+	// Rcv
+	u32				RcvNBL;				// Offload recieve NBL count
+	u64				DumbRcvBytes;		// dumbnic recv bytes
+    u64             DumbRcvUcastBytes;	// OID_GEN_DIRECTED_BYTES_RCV
+    u64             DumbRcvMcastBytes;	// OID_GEN_MULTICAST_BYTES_RCV
+    u64             DumbRcvBcastBytes;	// OID_GEN_BROADCAST_BYTES_RCV
+	u64				SlowRcvBytes;		// Slowpath recv bytes
+	u64				FastRcvBytes;		// Fastpath recv bytes
+    u64				DumbRcvPkts;		// OID_GEN_DIRECTED_FRAMES_RCV
+	u64				DumbRcvTcpPkts;		// See SxgCollectStats
+    u64				DumbRcvUcastPkts;	// directed packets
+    u64				DumbRcvMcastPkts;	// Multicast packets
+    u64				DumbRcvBcastPkts;	// OID_GEN_BROADCAST_FRAMES_RCV
+	u64				SlowRcvPkts;		// OID_GEN_DIRECTED_FRAMES_RCV
+    u64				RcvErrors;			// OID_GEN_RCV_ERROR
+    u64				RcvDiscards;		// OID_GEN_RCV_DISCARDS
+	u64				RcvNoBuffer;		// OID_GEN_RCV_NO_BUFFER
+    u64 			PdqFull;			// Processed Data Queue Full
+	u64				EventRingFull;		// Event ring full
+	// Verbose stats
+	u64				MaxSends;			// Max sends outstanding
+	u64				NoSglBuf;			// SGL buffer allocation failure
+	u64				SglFail;			// NDIS SGL failure
+	u64				SglAsync;			// NDIS SGL failure
+	u64				NoMem;				// Memory allocation failure
+	u64				NumInts;			// Interrupts
+	u64				FalseInts;			// Interrupt with ISR == 0
+	u64				XmtDrops;			// No sahara DRAM buffer for xmt
+	// Sahara receive status
+	u64				TransportCsum;		// SXG_RCV_STATUS_TRANSPORT_CSUM
+	u64				TransportUflow;		// SXG_RCV_STATUS_TRANSPORT_UFLOW
+	u64				TransportHdrLen;	// SXG_RCV_STATUS_TRANSPORT_HDRLEN
+	u64				NetworkCsum;		// SXG_RCV_STATUS_NETWORK_CSUM:
+	u64				NetworkUflow;		// SXG_RCV_STATUS_NETWORK_UFLOW:
+	u64				NetworkHdrLen;		// SXG_RCV_STATUS_NETWORK_HDRLEN:
+	u64				Parity;				// SXG_RCV_STATUS_PARITY
+	u64				LinkParity;			// SXG_RCV_STATUS_LINK_PARITY:
+	u64				LinkEarly;			// SXG_RCV_STATUS_LINK_EARLY:
+	u64				LinkBufOflow;		// SXG_RCV_STATUS_LINK_BUFOFLOW:
+	u64				LinkCode;			// SXG_RCV_STATUS_LINK_CODE:
+	u64				LinkDribble;		// SXG_RCV_STATUS_LINK_DRIBBLE:
+	u64				LinkCrc;			// SXG_RCV_STATUS_LINK_CRC:
+	u64				LinkOflow;			// SXG_RCV_STATUS_LINK_OFLOW:
+	u64				LinkUflow;			// SXG_RCV_STATUS_LINK_UFLOW:
+} SXG_STATS, *PSXG_STATS;
+
+
+/****************************************************************************
+ * DUMB-NIC Send path definitions
+ ****************************************************************************/
+
+#define SXG_COMPLETE_DUMB_SEND(_pAdapt, _skb) {                     		    	\
+	ASSERT(_skb);													    			\
+    dev_kfree_skb_irq(_skb);                                                        \
+}
+
+#define SXG_DROP_DUMB_SEND(_pAdapt, _skb) {                           		    	\
+	ASSERT(_skb);													    			\
+    dev_kfree_skb(_skb);                                                            \
+}
+
+// Locate current receive header buffer location.  Use this
+// instead of RcvDataHdr->VirtualAddress since the data
+// may have been offset by SXG_ADVANCE_MDL_OFFSET
+#define SXG_RECEIVE_DATA_LOCATION(_RcvDataHdr)        (_RcvDataHdr)->skb->data
+
+/************************************************************************
+ * Dumb-NIC receive processing
+ ************************************************************************/
+// Define an SXG_PACKET as an NDIS_PACKET
+#define PSXG_PACKET       struct sk_buff *
+// Indications array size
+#define SXG_RCV_ARRAYSIZE	64
+
+#define SXG_ALLOCATE_RCV_PACKET(_pAdapt, _RcvDataBufferHdr) {				\
+	struct sk_buff * skb;												    \
+    skb = alloc_skb(2048, GFP_ATOMIC);                                      \
+    if (skb) {                                                              \
+    	(_RcvDataBufferHdr)->skb = skb;                                     \
+        skb->next = NULL;                                                   \
+    } else {                                                                \
+    	(_RcvDataBufferHdr)->skb = NULL;                                    \
+    }                                                                       \
+}
+
+#define SXG_FREE_RCV_PACKET(_RcvDataBufferHdr) {							\
+	if((_RcvDataBufferHdr)->skb) {											\
+		dev_kfree_skb((_RcvDataBufferHdr)->skb);						    \
+    }                                                                       \
+}
+
+// Macro to add a NDIS_PACKET to an indication array
+// If we fill up our array of packet pointers, then indicate this
+// block up now and start on a new one.
+#define	SXG_ADD_RCV_PACKET(_pAdapt, _Packet, _PrevPacket, _IndicationList, _NumPackets) { \
+	(_IndicationList)[_NumPackets] = (_Packet);										\
+	(_NumPackets)++;																\
+	if((_NumPackets) == SXG_RCV_ARRAYSIZE) {										\
+		SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "IndicRcv",				\
+				   (_NumPackets), 0, 0, 0);											\
+        netif_rx((_IndicationList),(_NumPackets));                                  \
+		(_NumPackets) = 0;															\
+	}																				\
+}
+
+#define SXG_INDICATE_PACKETS(_pAdapt, _IndicationList, _NumPackets) {			\
+	if(_NumPackets) {															\
+		SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "IndicRcv",			\
+				   (_NumPackets), 0, 0, 0);										\
+        netif_rx((_IndicationList),(_NumPackets));                              \
+		(_NumPackets) = 0;														\
+	}																			\
+}
+
+#define SXG_REINIATIALIZE_PACKET(_Packet)										\
+	{}  /*_NdisReinitializePacket(_Packet)*/  /*  this is not necessary with an skb */
+
+// Definitions to initialize Dumb-nic Receive NBLs
+#define SXG_RCV_PACKET_BUFFER_HDR(_Packet) (((PSXG_RCV_NBL_RESERVED)((_Packet)->MiniportReservedEx))->RcvDataBufferHdr)
+
+#define SXG_RCV_SET_CHECKSUM_INFO(_Packet, _Cpi)	\
+	NDIS_PER_PACKET_INFO_FROM_PACKET((_Packet), TcpIpChecksumPacketInfo) = (PVOID)(_Cpi)
+
+#define SXG_RCV_SET_TOEPLITZ(_Packet, _Toeplitz, _Type, _Function) {		\
+	NDIS_PACKET_SET_HASH_VALUE((_Packet), (_Toeplitz));						\
+	NDIS_PACKET_SET_HASH_TYPE((_Packet), (_Type));							\
+	NDIS_PACKET_SET_HASH_FUNCTION((_Packet), (_Function));					\
+}
+
+#define SXG_RCV_SET_VLAN_INFO(_Packet, _VlanId, _Priority) {					\
+	NDIS_PACKET_8021Q_INFO	_Packet8021qInfo;									\
+	_Packet8021qInfo.TagHeader.VlanId = (_VlanId);								\
+	_Packet8021qInfo.TagHeader.UserPriority = (_Priority);						\
+	NDIS_PER_PACKET_INFO_FROM_PACKET((_Packet), Ieee8021QNetBufferListInfo) = 	\
+		_Packet8021qInfo.Value;													\
+}
+
+#define SXG_ADJUST_RCV_PACKET(_Packet, _RcvDataBufferHdr, _Event) {			\
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "DumbRcv",			\
+			   (_RcvDataBufferHdr), (_Packet),								\
+			   (_Event)->Status, 0);	                    				\
+	ASSERT((_Event)->Length <= (_RcvDataBufferHdr)->Size);					\
+    Packet->len = (_Event)->Length;                                         \
+}
+
+///////////////////////////////////////////////////////////////////////////////
+// Macros to free a receive data buffer and receive data descriptor block
+///////////////////////////////////////////////////////////////////////////////
+// NOTE - Lock must be held with RCV macros
+#define SXG_GET_RCV_DATA_BUFFER(_pAdapt, _Hdr) {								\
+	PLIST_ENTRY     				_ple;										\
+	_Hdr = NULL;																\
+	if((_pAdapt)->FreeRcvBufferCount) {											\
+		ASSERT(!(IsListEmpty(&(_pAdapt)->FreeRcvBuffers)));						\
+		_ple = RemoveHeadList(&(_pAdapt)->FreeRcvBuffers);	    				\
+		(_Hdr) = container_of(_ple, SXG_RCV_DATA_BUFFER_HDR, FreeList);	        \
+		(_pAdapt)->FreeRcvBufferCount--;										\
+		ASSERT((_Hdr)->State == SXG_BUFFER_FREE);								\
+	}																			\
+}
+
+#define SXG_FREE_RCV_DATA_BUFFER(_pAdapt, _Hdr) {							\
+	SXG_TRACE(TRACE_SXG, SxgTraceBuffer, TRACE_NOISY, "RtnDHdr",			\
+			   (_Hdr), (_pAdapt)->FreeRcvBufferCount,						\
+			   (_Hdr)->State, (_Hdr)->VirtualAddress);						\
+/*	SXG_RESTORE_MDL_OFFSET(_Hdr);	*/										\
+	(_pAdapt)->FreeRcvBufferCount++;										\
+	ASSERT(((_pAdapt)->AllRcvBlockCount * SXG_RCV_DESCRIPTORS_PER_BLOCK) >= (_pAdapt)->FreeRcvBufferCount); \
+	ASSERT((_Hdr)->State != SXG_BUFFER_FREE);								\
+	(_Hdr)->State = SXG_BUFFER_FREE;										\
+	InsertTailList(&(_pAdapt)->FreeRcvBuffers, &((_Hdr)->FreeList));		\
+}
+
+#define SXG_FREE_RCV_DESCRIPTOR_BLOCK(_pAdapt, _Hdr) {						\
+	ASSERT((_Hdr)->State != SXG_BUFFER_FREE);								\
+	(_Hdr)->State = SXG_BUFFER_FREE;										\
+	(_pAdapt)->FreeRcvBlockCount++;											\
+	ASSERT((_pAdapt)->AllRcvBlockCount >= (_pAdapt)->FreeRcvBlockCount);	\
+	InsertTailList(&(_pAdapt)->FreeRcvBlocks, &(_Hdr)->FreeList);			\
+}
+
+// SGL macros
+#define SXG_FREE_SGL_BUFFER(_pAdapt, _Sgl, _NB) {	\
+	spin_lock(&(_pAdapt)->SglQLock);		\
+	(_pAdapt)->FreeSglBufferCount++;		\
+	ASSERT((_pAdapt)->AllSglBufferCount >= (_pAdapt)->FreeSglBufferCount);\
+	ASSERT(!((_Sgl)->State & SXG_BUFFER_FREE));	\
+	(_Sgl)->State = SXG_BUFFER_FREE;		\
+	InsertTailList(&(_pAdapt)->FreeSglBuffers, &(_Sgl)->FreeList);	\
+	spin_unlock(&(_pAdapt)->SglQLock);		\
+}
+
+// Get an SGL buffer from the free queue.  The first part of this macro
+// attempts to keep ahead of buffer depletion by allocating more when
+// we hit a minimum threshold.  Note that we don't grab the lock
+// until after that.  We're dealing with round numbers here, so we don't need to,
+// and not grabbing it avoids a possible double-trip.
+#define SXG_GET_SGL_BUFFER(_pAdapt, _Sgl) {				\
+	PLIST_ENTRY _ple;						\
+	if ((_pAdapt->FreeSglBufferCount < SXG_MIN_SGL_BUFFERS) &&	\
+	   (_pAdapt->AllSglBufferCount < SXG_MAX_SGL_BUFFERS) &&	\
+	   (_pAdapt->AllocationsPending == 0)) {			\
+		sxg_allocate_buffer_memory(_pAdapt,			\
+			(sizeof(SXG_SCATTER_GATHER) + SXG_SGL_BUF_SIZE),\
+			SXG_BUFFER_TYPE_SGL);				\
+	}								\
+	_Sgl = NULL;							\
+	spin_lock(&(_pAdapt)->SglQLock);				\
+	if((_pAdapt)->FreeSglBufferCount) {				\
+		ASSERT(!(IsListEmpty(&(_pAdapt)->FreeSglBuffers)));	\
+		_ple = RemoveHeadList(&(_pAdapt)->FreeSglBuffers);	\
+		(_Sgl) = container_of(_ple, SXG_SCATTER_GATHER, FreeList); \
+            (_pAdapt)->FreeSglBufferCount--;				\
+		ASSERT((_Sgl)->State == SXG_BUFFER_FREE);		\
+		(_Sgl)->State = SXG_BUFFER_BUSY;			\
+		(_Sgl)->pSgl = NULL;					\
+	}								\
+	spin_unlock(&(_pAdapt)->SglQLock);				\
+}
+
+//
+// SXG_MULTICAST_ADDRESS
+//
+// Linked list of multicast addresses.
+typedef struct _SXG_MULTICAST_ADDRESS {
+	unsigned char							Address[6];
+	struct _SXG_MULTICAST_ADDRESS	*Next;
+} SXG_MULTICAST_ADDRESS, *PSXG_MULTICAST_ADDRESS;
+
+// Structure to maintain chimney send and receive buffer queues.
+// This structure maintains NET_BUFFER_LIST queues that are
+// given to us via the Chimney MiniportTcpOffloadSend and
+// MiniportTcpOffloadReceive routines.  This structure DOES NOT
+// manage our data buffer queue
+typedef struct _SXG_BUFFER_QUEUE {
+	u32						Type;			// Slow or fast - See below
+	u32						Direction;		// Xmt or Rcv
+	u32						Bytes;			// Byte count
+	u32 *        			Head;			// Send queue head
+	u32 *        			Tail;			// Send queue tail
+//	PNET_BUFFER_LIST			NextNBL;		// Short cut - next NBL
+//	PNET_BUFFER					NextNB;			// Short cut - next NB
+} SXG_BUFFER_QUEUE, *PSXG_BUFFER_QUEUE;
+
+#define		SXG_SLOW_SEND_BUFFER	0
+#define		SXG_FAST_SEND_BUFFER	1
+#define 	SXG_RECEIVE_BUFFER		2
+
+#define SXG_INIT_BUFFER(_Buffer, _Type) { 						\
+	(_Buffer)->Type = (_Type);									\
+	if((_Type) == SXG_RECEIVE_BUFFER) {							\
+		(_Buffer)->Direction = 0;								\
+	} else {													\
+		(_Buffer)->Direction = NDIS_SG_LIST_WRITE_TO_DEVICE;	\
+	}															\
+	(_Buffer)->Bytes = 0;										\
+	(_Buffer)->Head = NULL;										\
+	(_Buffer)->Tail = NULL;										\
+}
+
+
+#define SXG_RSS_CPU_COUNT(_pAdapt) 								\
+	((_pAdapt)->RssEnabled 	?  NR_CPUS : 1)
+
+/****************************************************************************
+ * DRIVER and ADAPTER structures
+ ****************************************************************************/
+
+// Adapter states - These states closely match the adapter states
+// documented in the DDK (with a few exceptions).
+typedef enum _SXG_STATE {
+	SXG_STATE_INITIALIZING,			// Initializing
+	SXG_STATE_BOOTDIAG,				// Boot-Diagnostic mode
+	SXG_STATE_PAUSING,				// Pausing
+	SXG_STATE_PAUSED,				// Paused
+	SXG_STATE_RUNNING,				// Running
+	SXG_STATE_RESETTING,			// Reset in progress
+	SXG_STATE_SLEEP,				// Sleeping
+	SXG_STATE_DIAG,					// Diagnostic mode
+	SXG_STATE_HALTING,				// Halting
+	SXG_STATE_HALTED,				// Down or not-initialized
+	SXG_STATE_SHUTDOWN				// shutdown
+} SXG_STATE, *PSXG_STATE;
+
+// Link state
+typedef enum _SXG_LINK_STATE {
+	SXG_LINK_DOWN,
+	SXG_LINK_UP
+} SXG_LINK_STATE, *PSXG_LINK_STATE;
+
+// Link initialization timeout in 100us units
+#define SXG_LINK_TIMEOUT	100000		// 10 Seconds - REDUCE!
+
+
+// Microcode file selection codes
+typedef enum _SXG_UCODE_SEL {
+	SXG_UCODE_SAHARA,				// Sahara ucode
+	SXG_UCODE_SDIAGCPU,				// Sahara CPU diagnostic ucode
+	SXG_UCODE_SDIAGSYS				// Sahara system diagnostic ucode
+} SXG_UCODE_SEL;
+
+
+#define SXG_DISABLE_ALL_INTERRUPTS(_padapt) sxg_disable_interrupt(_padapt)
+#define SXG_ENABLE_ALL_INTERRUPTS(_padapt) sxg_enable_interrupt(_padapt)
+
+// This probably lives in a proto.h file.  Move later
+#define SXG_MULTICAST_PACKET(_pether) ((_pether)->ether_dhost[0] & 0x01)
+#define SXG_BROADCAST_PACKET(_pether) ((*(u32 *)(_pether)->ether_dhost == 0xFFFFFFFF) && \
+				(*(u16 *)&(_pether)->ether_dhost[4] == 0xFFFF))
+
+// For DbgPrints
+#define SXG_ID      DPFLTR_IHVNETWORK_ID
+#define SXG_ERROR   DPFLTR_ERROR_LEVEL
+
+//
+// SXG_DRIVER structure -
+//
+// contains information about the sxg driver.  There is only
+// one of these, and it is defined as a global.
+typedef struct _SXG_DRIVER {
+	struct _adapter_t	*Adapters;		// Linked list of adapters
+	ushort				AdapterID;		// Maintain unique adapter ID
+} SXG_DRIVER, *PSXG_DRIVER;
+
+#ifdef STATUS_SUCCESS
+#undef STATUS_SUCCESS
+#endif
+
+#define STATUS_SUCCESS              0
+#define STATUS_PENDING              0
+#define STATUS_FAILURE             -1
+#define STATUS_ERROR               -2
+#define STATUS_NOT_SUPPORTED       -3
+#define STATUS_BUFFER_TOO_SHORT    -4
+#define STATUS_RESOURCES           -5
+
+#define SLIC_MAX_CARDS              32
+#define SLIC_MAX_PORTS              4        /* Max # of ports per card   */
+#if SLIC_DUMP_ENABLED
+// Dump buffer size
+//
+// This cannot be bigger than the max DMA size the card supports,
+// given the current code structure in the host and ucode.
+// Mojave supports 16K, Oasis supports 16K-1, so
+// just set this at 15K, shouldnt make that much of a diff.
+#define DUMP_BUF_SIZE               0x3C00
+#endif
+
+#define MIN(a, b) ((u32)(a) < (u32)(b) ? (a) : (b))
+#define MAX(a, b) ((u32)(a) > (u32)(b) ? (a) : (b))
+
+typedef struct _mcast_address_t
+{
+    unsigned char                     address[6];
+    struct _mcast_address_t   *next;
+}  mcast_address_t, *p_mcast_address_t;
+
+#define CARD_DOWN        0x00000000
+#define CARD_UP          0x00000001
+#define CARD_FAIL        0x00000002
+#define CARD_DIAG        0x00000003
+#define CARD_SLEEP       0x00000004
+
+#define ADAPT_DOWN             0x00
+#define ADAPT_UP               0x01
+#define ADAPT_FAIL             0x02
+#define ADAPT_RESET            0x03
+#define ADAPT_SLEEP            0x04
+
+#define ADAPT_FLAGS_BOOTTIME            0x0001
+#define ADAPT_FLAGS_IS64BIT             0x0002
+#define ADAPT_FLAGS_PENDINGLINKDOWN     0x0004
+#define ADAPT_FLAGS_FIBERMEDIA          0x0008
+#define ADAPT_FLAGS_LOCKS_ALLOCED       0x0010
+#define ADAPT_FLAGS_INT_REGISTERED      0x0020
+#define ADAPT_FLAGS_LOAD_TIMER_SET      0x0040
+#define ADAPT_FLAGS_STATS_TIMER_SET     0x0080
+#define ADAPT_FLAGS_RESET_TIMER_SET     0x0100
+
+#define LINK_DOWN              0x00
+#define LINK_CONFIG            0x01
+#define LINK_UP                0x02
+
+#define LINK_10MB              0x00
+#define LINK_100MB             0x01
+#define LINK_AUTOSPEED         0x02
+#define LINK_1000MB            0x03
+#define LINK_10000MB           0x04
+
+#define LINK_HALFD             0x00
+#define LINK_FULLD             0x01
+#define LINK_AUTOD             0x02
+
+#define MAC_DIRECTED     0x00000001
+#define MAC_BCAST        0x00000002
+#define MAC_MCAST        0x00000004
+#define MAC_PROMISC      0x00000008
+#define MAC_LOOPBACK     0x00000010
+#define MAC_ALLMCAST     0x00000020
+
+#define SLIC_DUPLEX(x)    ((x==LINK_FULLD) ? "FDX" : "HDX")
+#define SLIC_SPEED(x)     ((x==LINK_100MB) ? "100Mb" : ((x==LINK_1000MB) ? "1000Mb" : " 10Mb"))
+#define SLIC_LINKSTATE(x) ((x==LINK_DOWN) ? "Down" : "Up  ")
+#define SLIC_ADAPTER_STATE(x) ((x==ADAPT_UP) ? "UP" : "Down")
+#define SLIC_CARD_STATE(x)    ((x==CARD_UP) ? "UP" : "Down")
+
+
+typedef struct _ether_header
+{
+    unsigned char    ether_dhost[6];
+    unsigned char    ether_shost[6];
+    ushort   ether_type;
+} ether_header, *p_ether_header;
+
+
+#define NUM_CFG_SPACES      2
+#define NUM_CFG_REGS        64
+
+typedef struct _physcard_t
+{
+    struct _adapter_t  *adapter[SLIC_MAX_PORTS];
+    struct _physcard_t *next;
+    unsigned int                adapters_allocd;
+} physcard_t, *p_physcard_t;
+
+typedef struct _sxgbase_driver
+{
+	spinlock_t	driver_lock;
+	unsigned long	flags;	/* irqsave for spinlock */
+	u32		num_sxg_cards;
+	u32		num_sxg_ports;
+	u32		num_sxg_ports_active;
+	u32		dynamic_intagg;
+	p_physcard_t	phys_card;
+} sxgbase_driver_t;
+
+
+typedef struct _adapter_t
+{
+	void *               ifp;
+	unsigned int                port;
+	p_physcard_t        physcard;
+	unsigned int                physport;
+	unsigned int                cardindex;
+	unsigned int                card_size;
+	unsigned int                chipid;
+	unsigned int                busnumber;
+	unsigned int                slotnumber;
+	unsigned int                functionnumber;
+	ushort              vendid;
+	ushort              devid;
+	ushort              subsysid;
+	u32             irq;
+
+	void *               sxg_adapter;
+	u32             nBusySend;
+
+	void __iomem *	base_addr;
+	u32             memorylength;
+	u32             drambase;
+	u32             dramlength;
+	unsigned int                queues_initialized;
+	unsigned int                allocated;
+	unsigned int                activated;
+	u32             intrregistered;
+	unsigned int                isp_initialized;
+	unsigned int                gennumber;
+	u32             curaddrupper;
+	u32             isrcopy;
+	unsigned char               state;
+	unsigned char               linkstate;
+	unsigned char               linkspeed;
+	unsigned char               linkduplex;
+	unsigned int                flags;
+	unsigned char               macaddr[6];
+	unsigned char               currmacaddr[6];
+	u32             macopts;
+	ushort              devflags_prev;
+	u64             mcastmask;
+	p_mcast_address_t   mcastaddrs;
+	struct timer_list   pingtimer;
+	u32             pingtimerset;
+	struct timer_list   statstimer;
+	u32             statstimerset;
+	struct timer_list   vpci_timer;
+	u32             vpci_timerset;
+	struct timer_list   loadtimer;
+	u32             loadtimerset;
+
+	u32             xmitq_full;
+	u32             all_reg_writes;
+	u32             icr_reg_writes;
+	u32             isr_reg_writes;
+	u32             error_interrupts;
+	u32             error_rmiss_interrupts;
+	u32             rx_errors;
+	u32             rcv_drops;
+	u32             rcv_interrupts;
+	u32             xmit_interrupts;
+	u32             linkevent_interrupts;
+	u32             upr_interrupts;
+	u32             num_isrs;
+	u32             false_interrupts;
+	u32             tx_packets;
+	u32             xmit_completes;
+	u32             tx_drops;
+	u32             rcv_broadcasts;
+	u32             rcv_multicasts;
+	u32             rcv_unicasts;
+	u32             max_isr_rcvs;
+	u32             max_isr_xmits;
+	u32             rcv_interrupt_yields;
+	u32             intagg_period;
+	struct net_device_stats stats;
+	u32 *					MiniportHandle;		// Our miniport handle
+	SXG_STATE					State;				// Adapter state
+	SXG_LINK_STATE				LinkState;			// Link state
+	u64						LinkSpeed;			// Link Speed
+	u32						PowerState;			// NDIS power state
+	struct _adapter_t   		*Next;				// Linked list
+	ushort						AdapterID;			// 1..n
+	unsigned char						MacAddr[6];			// Our permanent HW mac address
+	unsigned char						CurrMacAddr[6];		// Our Current mac address
+	p_net_device                netdev;
+	p_net_device                next_netdevice;
+	struct pci_dev            * pcidev;
+
+	PSXG_MULTICAST_ADDRESS		MulticastAddrs;		// Multicast list
+	u64     				MulticastMask;		// Multicast mask
+	u32 *					InterruptHandle;	// Register Interrupt handle
+	u32						InterruptLevel;		// From Resource list
+	u32						InterruptVector;	// From Resource list
+	spinlock_t	AdapterLock;	/* Serialize access adapter routines */
+	spinlock_t	Bit64RegLock;	/* For writing 64-bit addresses */
+	PSXG_HW_REGS				HwRegs;				// Sahara HW Register Memory (BAR0/1)
+	PSXG_UCODE_REGS				UcodeRegs;			// Microcode Register Memory (BAR2/3)
+	PSXG_TCB_REGS				TcbRegs;			// Same as Ucode regs - See sxghw.h
+	ushort						ResetDpcCount;		// For timeout
+	ushort						RssDpcCount;		// For timeout
+	ushort						VendorID;			// Vendor ID
+	ushort						DeviceID;			// Device ID
+	ushort						SubSystemID;		// Sub-System ID
+	ushort						FrameSize;			// Maximum frame size
+	u32 *					DmaHandle;			// NDIS DMA handle
+	u32 *					PacketPoolHandle;	// Used with NDIS 5.2 only.  Don't ifdef out
+	u32 *					BufferPoolHandle;	// Used with NDIS 5.2 only.  Don't ifdef out
+	u32						MacFilter;			// NDIS MAC Filter
+	ushort						IpId;				// For slowpath
+	PSXG_EVENT_RING				EventRings;			// Host event rings.  1/CPU to 16 max
+	dma_addr_t              	PEventRings;		// Physical address
+	u32						NextEvent[SXG_MAX_RSS];	// Current location in ring
+	dma_addr_t          		PTcbBuffers;		// TCB Buffers - physical address
+	dma_addr_t	            	PTcbCompBuffers;	// TCB Composite Buffers - phys addr
+	PSXG_XMT_RING				XmtRings;			// Transmit rings
+	dma_addr_t		            PXmtRings;			// Transmit rings - physical address
+	SXG_RING_INFO				XmtRingZeroInfo;	// Transmit ring 0 info
+	spinlock_t	XmtZeroLock;	/* Transmit ring 0 lock */
+	u32 *					XmtRingZeroIndex;	// Shared XMT ring 0 index
+	dma_addr_t          		PXmtRingZeroIndex;	// Shared XMT ring 0 index - physical
+	LIST_ENTRY					FreeProtocolHeaders;// Free protocol headers
+	u32						FreeProtoHdrCount;	// Count
+	void *						ProtocolHeaders;	// Block of protocol header
+	dma_addr_t	            	PProtocolHeaders;	// Block of protocol headers - phys
+
+	PSXG_RCV_RING				RcvRings;			// Receive rings
+	dma_addr_t	            	PRcvRings;			// Receive rings - physical address
+	SXG_RING_INFO				RcvRingZeroInfo;	// Receive ring 0 info
+
+	u32 *					Isr;				// Interrupt status register
+	dma_addr_t	            	PIsr;				// ISR - physical address
+	u32						IsrCopy[SXG_MAX_RSS];	// Copy of ISR
+	ushort						InterruptsEnabled;	// Bitmask of enabled vectors
+	unsigned char *						IndirectionTable;	// RSS indirection table
+	dma_addr_t	            	PIndirectionTable;	// Physical address
+	ushort						RssTableSize;		// From NDIS_RECEIVE_SCALE_PARAMETERS
+	ushort						HashKeySize;		// From NDIS_RECEIVE_SCALE_PARAMETERS
+	unsigned char						HashSecretKey[40];	// rss key
+	u32						HashInformation;
+	// Receive buffer queues
+	spinlock_t	RcvQLock;	/* Receive Queue Lock */
+	LIST_ENTRY					FreeRcvBuffers;		// Free SXG_DATA_BUFFER queue
+	LIST_ENTRY					FreeRcvBlocks;		// Free SXG_RCV_DESCRIPTOR_BLOCK Q
+	LIST_ENTRY					AllRcvBlocks;		// All SXG_RCV_BLOCKs
+	ushort						FreeRcvBufferCount;	// Number of free rcv data buffers
+	ushort						FreeRcvBlockCount;	// # of free rcv descriptor blocks
+	ushort						AllRcvBlockCount;	// Number of total receive blocks
+	ushort						ReceiveBufferSize;	// SXG_RCV_DATA/JUMBO_BUFFER_SIZE only
+	u32						AllocationsPending;	// Receive allocation pending
+	u32						RcvBuffersOnCard;	// SXG_DATA_BUFFERS owned by card
+	// SGL buffers
+	spinlock_t	SglQLock;	/* SGL Queue Lock */
+	LIST_ENTRY					FreeSglBuffers;		// Free SXG_SCATTER_GATHER
+	LIST_ENTRY					AllSglBuffers;		// All SXG_SCATTER_GATHER
+	ushort						FreeSglBufferCount;	// Number of free SGL buffers
+	ushort						AllSglBufferCount;	// Number of total SGL buffers
+	u32						CurrentTime;		// Tick count
+	u32						FastpathConnections;// # of fastpath connections
+	// Various single-bit flags:
+	u32						BasicAllocations:1;	// Locks and listheads
+	u32						IntRegistered:1;	// Interrupt registered
+	u32						PingOutstanding:1;	// Ping outstanding to card
+	u32						Dead:1;				// Card dead
+	u32						DumpDriver:1;		// OID_SLIC_DRIVER_DUMP request
+	u32						DumpCard:1;			// OID_SLIC_CARD_DUMP request
+	u32						DumpCmdRunning:1;	// Dump command in progress
+	u32						DebugRunning:1;		// AGDB debug in progress
+	u32						JumboEnabled:1;		// Jumbo frames enabled
+	u32						MsiEnabled:1;		// MSI interrupt enabled
+	u32						RssEnabled:1;		// RSS Enabled
+	u32						FailOnBadEeprom:1;	// Fail on Bad Eeprom
+	u32						DiagStart:1;		// Init adapter for diagnostic start
+	// Stats
+	u32						PendingRcvCount;	// Outstanding rcv indications
+	u32						PendingXmtCount;	// Outstanding send requests
+	SXG_STATS					Stats;				// Statistics
+	u32						ReassBufs;			// Number of reassembly buffers
+	// Card Crash Info
+	ushort						CrashLocation;		// Microcode crash location
+	unsigned char						CrashCpu;			// Sahara CPU ID
+	// Diagnostics
+	//	PDIAG_CMD					DiagCmds;			// List of free diagnostic commands
+	//	PDIAG_BUFFER				DiagBuffers;		// List of free diagnostic buffers
+	//	PDIAG_REQ					DiagReqQ;			// List of outstanding (asynchronous) diag requests
+	//	u32						DiagCmdTimeout;		// Time out for diag cmds (seconds) XXXTODO - replace with SXG_PARAM var?
+	//	unsigned char						DiagDmaDesc[DMA_CPU_CTXS];		// Free DMA descriptors bit field (32 CPU ctx * 8 DMA ctx)
+
+	/////////////////////////////////////////////////////////////////////
+	// Put preprocessor-conditional fields at the end so we don't
+	// have to recompile sxgdbg everytime we reconfigure the driver
+	/////////////////////////////////////////////////////////////////////
+	void *						PendingSetRss;		// Pending RSS parameter change
+	u32						IPv4HdrSize;		// Shared 5.2/6.0 encap param
+	unsigned char *          			InterruptInfo;		// Allocated by us during AddDevice
+#if defined(CONFIG_X86)
+	u32						AddrUpper;			// Upper 32 bits of 64-bit register
+#endif
+	//#if SXG_FAILURE_DUMP
+	//	NDIS_EVENT					DumpThreadEvent;	// syncronize dump thread
+	//	BOOLEAN						DumpThreadRunning;	// termination flag
+	//	PSXG_DUMP_CMD				DumpBuffer;			// 68k - Cmd and Buffer
+	//	dma_addr_t		PDumpBuffer;		// Physical address
+	//#endif // SXG_FAILURE_DUMP
+
+} adapter_t, *p_adapter_t;
+
+#if SLIC_DUMP_ENABLED
+#define SLIC_DUMP_REQUESTED      1
+#define SLIC_DUMP_IN_PROGRESS    2
+#define SLIC_DUMP_DONE           3
+
+/****************************************************************************
+ *
+ * Microcode crash information structure.  This
+ * structure is written out to the card's SRAM when the microcode panic's.
+ *
+ ****************************************************************************/
+typedef struct _slic_crash_info {
+    ushort  cpu_id;
+    ushort  crash_pc;
+} slic_crash_info, *p_slic_crash_info;
+
+#define CRASH_INFO_OFFSET   0x155C
+
+#endif
+
+#define UPDATE_STATS(largestat, newstat, oldstat)                        \
+{                                                                        \
+    if ((newstat) < (oldstat))                                           \
+        (largestat) += ((newstat) + (0xFFFFFFFF - oldstat + 1));         \
+    else                                                                 \
+        (largestat) += ((newstat) - (oldstat));                          \
+}
+
+#define UPDATE_STATS_GB(largestat, newstat, oldstat)                     \
+{                                                                        \
+    (largestat) += ((newstat) - (oldstat));                              \
+}
+
+#define ETHER_EQ_ADDR(_AddrA, _AddrB, _Result)                           \
+{                                                                        \
+    _Result = TRUE;                                                      \
+    if (*(u32 *)(_AddrA) != *(u32 *)(_AddrB))                      \
+        _Result = FALSE;                                                 \
+    if (*(u16 *)(&((_AddrA)[4])) != *(u16 *)(&((_AddrB)[4])))        \
+        _Result = FALSE;                                                 \
+}
+
+#define ETHERMAXFRAME   1514
+#define JUMBOMAXFRAME   9014
+
+#if defined(CONFIG_X86_64) || defined(CONFIG_IA64)
+#define   SXG_GET_ADDR_LOW(_addr)  (u32)((u64)(_addr) & 0x00000000FFFFFFFF)
+#define   SXG_GET_ADDR_HIGH(_addr)  (u32)(((u64)(_addr) >> 32) & 0x00000000FFFFFFFF)
+#else
+#define   SXG_GET_ADDR_LOW(_addr)   (u32)_addr
+#define   SXG_GET_ADDR_HIGH(_addr)  (u32)0
+#endif
+
+#define FLUSH       TRUE
+#define DONT_FLUSH  FALSE
+
+#define SIOCSLICDUMPCARD         SIOCDEVPRIVATE+9
+#define SIOCSLICSETINTAGG        SIOCDEVPRIVATE+10
+#define SIOCSLICTRACEDUMP        SIOCDEVPRIVATE+11
+
+#endif /*  __SXG_DRIVER_H__ */
diff --git a/drivers/staging/sxg/sxg_os.h b/drivers/staging/sxg/sxg_os.h
new file mode 100644
index 0000000..26fb0ff
--- /dev/null
+++ b/drivers/staging/sxg/sxg_os.h
@@ -0,0 +1,154 @@
+/**************************************************************************
+ *
+ * Copyright (C) 2000-2008 Alacritech, Inc.  All rights reserved.
+ *
+ * Redistribution and use in source and binary forms, with or without
+ * modification, are permitted provided that the following conditions
+ * are met:
+ *
+ * 1. Redistributions of source code must retain the above copyright
+ *    notice, this list of conditions and the following disclaimer.
+ * 2. Redistributions in binary form must reproduce the above
+ *    copyright notice, this list of conditions and the following
+ *    disclaimer in the documentation and/or other materials provided
+ *    with the distribution.
+ *
+ * THIS SOFTWARE IS PROVIDED BY ALACRITECH, INC. ``AS IS'' AND ANY
+ * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
+ * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
+ * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL ALACRITECH, INC. OR
+ * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
+ * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
+ * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
+ * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
+ * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
+ * SUCH DAMAGE.
+ *
+ * The views and conclusions contained in the software and documentation
+ * are those of the authors and should not be interpreted as representing
+ * official policies, either expressed or implied, of Alacritech, Inc.
+ *
+ **************************************************************************/
+
+/*
+ * FILENAME: sxg_os.h
+ *
+ * These are the Linux-specific definitions required for the SLICOSS
+ * driver, which should allow for greater portability to other OSes.
+ */
+#ifndef _SLIC_OS_SPECIFIC_H_
+#define _SLIC_OS_SPECIFIC_H_
+
+#define FALSE	(0)
+#define TRUE	(1)
+
+
+typedef struct _LIST_ENTRY {
+	struct _LIST_ENTRY *nle_flink;
+	struct _LIST_ENTRY *nle_blink;
+} list_entry, LIST_ENTRY, *PLIST_ENTRY;
+
+#define InitializeListHead(l)                   \
+        (l)->nle_flink = (l)->nle_blink = (l)
+
+#define IsListEmpty(h)                          \
+        ((h)->nle_flink == (h))
+
+#define RemoveEntryList(e)                      \
+        do {                                    \
+                list_entry              *b;     \
+                list_entry              *f;     \
+                                                \
+                f = (e)->nle_flink;             \
+                b = (e)->nle_blink;             \
+                b->nle_flink = f;               \
+                f->nle_blink = b;               \
+        } while (0)
+
+/* These two have to be inlined since they return things. */
+
+static __inline PLIST_ENTRY
+RemoveHeadList(list_entry *l)
+{
+        list_entry              *f;
+        list_entry              *e;
+
+        e = l->nle_flink;
+        f = e->nle_flink;
+        l->nle_flink = f;
+        f->nle_blink = l;
+
+        return (e);
+}
+
+static __inline PLIST_ENTRY
+RemoveTailList(list_entry *l)
+{
+        list_entry              *b;
+        list_entry              *e;
+
+        e = l->nle_blink;
+        b = e->nle_blink;
+        l->nle_blink = b;
+        b->nle_flink = l;
+
+        return (e);
+}
+
+
+#define InsertTailList(l, e)                    \
+        do {                                    \
+                list_entry              *b;     \
+                                                \
+                b = (l)->nle_blink;             \
+                (e)->nle_flink = (l);           \
+                (e)->nle_blink = b;             \
+                b->nle_flink = (e);             \
+                (l)->nle_blink = (e);           \
+        } while (0)
+
+#define InsertHeadList(l, e)                    \
+        do {                                    \
+                list_entry              *f;     \
+                                                \
+                f = (l)->nle_flink;             \
+                (e)->nle_flink = f;             \
+                (e)->nle_blink = l;             \
+                f->nle_blink = (e);             \
+                (l)->nle_flink = (e);           \
+        } while (0)
+
+
+#define ATK_DEBUG  1
+
+#if ATK_DEBUG
+#define SLIC_TIMESTAMP(value) {                                             \
+        struct timeval  timev;                                              \
+        do_gettimeofday(&timev);                                            \
+        value = timev.tv_sec*1000000 + timev.tv_usec;                       \
+}
+#else
+#define SLIC_TIMESTAMP(value)
+#endif
+
+
+/******************  SXG DEFINES  *****************************************/
+
+#ifdef  ATKDBG
+#define SXG_TIMESTAMP(value) {                                             \
+        struct timeval  timev;                                              \
+        do_gettimeofday(&timev);                                            \
+        value = timev.tv_sec*1000000 + timev.tv_usec;                       \
+}
+#else
+#define SXG_TIMESTAMP(value)
+#endif
+
+#define WRITE_REG(reg,value,flush)                  sxg_reg32_write((&reg), (value), (flush))
+#define WRITE_REG64(a,reg,value,cpu)                sxg_reg64_write((a),(&reg),(value),(cpu))
+#define READ_REG(reg,value)   (value) = readl((void __iomem *)(&reg))
+
+#endif  /* _SLIC_OS_SPECIFIC_H_  */
+
diff --git a/drivers/staging/sxg/sxgdbg.h b/drivers/staging/sxg/sxgdbg.h
new file mode 100644
index 0000000..cfb6c7c
--- /dev/null
+++ b/drivers/staging/sxg/sxgdbg.h
@@ -0,0 +1,190 @@
+/**************************************************************************
+ *
+ * Copyright © 2000-2008 Alacritech, Inc.  All rights reserved.
+ *
+ * $Id: sxgdbg.h,v 1.1 2008/06/27 12:49:28 mook Exp $
+ *
+ * Redistribution and use in source and binary forms, with or without
+ * modification, are permitted provided that the following conditions
+ * are met:
+ *
+ * 1. Redistributions of source code must retain the above copyright
+ *    notice, this list of conditions and the following disclaimer.
+ * 2. Redistributions in binary form must reproduce the above
+ *    copyright notice, this list of conditions and the following
+ *    disclaimer in the documentation and/or other materials provided
+ *    with the distribution.
+ *
+ * THIS SOFTWARE IS PROVIDED BY ALACRITECH, INC. ``AS IS'' AND ANY
+ * EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
+ * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
+ * PURPOSE ARE DISCLAIMED.  IN NO EVENT SHALL ALACRITECH, INC. OR
+ * CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL,
+ * SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT
+ * LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF
+ * USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND
+ * ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY,
+ * OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT
+ * OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
+ * SUCH DAMAGE.
+ *
+ * The views and conclusions contained in the software and documentation
+ * are those of the authors and should not be interpreted as representing
+ * official policies, either expressed or implied, of Alacritech, Inc.
+ *
+ **************************************************************************/
+
+/*
+ * FILENAME: sxgdbg.h
+ *
+ * All debug and assertion-based definitions and macros are included
+ * in this file for the SXGOSS driver.
+ */
+#ifndef _SXG_DEBUG_H_
+#define _SXG_DEBUG_H_
+
+#define ATKDBG  1
+#define ATK_TRACE_ENABLED 1
+
+#define DBG_ERROR(n, args...)	printk(KERN_EMERG n, ##args)
+
+#ifdef ASSERT
+#undef ASSERT
+#endif
+
+#ifdef SXG_ASSERT_ENABLED
+#ifndef ASSERT
+#define ASSERT(a)                                                                 \
+    {                                                                             \
+        if (!(a)) {                                                               \
+            DBG_ERROR("ASSERT() Failure: file %s, function %s  line %d\n",\
+                __FILE__, __FUNCTION__, __LINE__);                                \
+        }                                                                         \
+    }
+#endif
+#else
+#ifndef ASSERT
+#define ASSERT(a)
+#endif
+#endif /* SXG_ASSERT_ENABLED  */
+
+
+#ifdef ATKDBG
+/*
+ *  Global for timer granularity; every driver must have an instance
+ *  of this initialized to 0
+ */
+
+extern ulong ATKTimerDiv;
+
+/*
+ * trace_entry_t -
+ *
+ * This structure defines an entry in the trace buffer.  The
+ * first few fields mean the same from entry to entry, while
+ * the meaning of last several fields change to suit the
+ * needs of the trace entry.  Typically they are function call
+ * parameters.
+ */
+typedef struct _trace_entry_s {
+        char      name[8];        /* 8 character name - like 's'i'm'b'a'r'c'v' */
+        u32   time;           /* Current clock tic */
+        unsigned char     cpu;            /* Current CPU */
+        unsigned char     irql;           /* Current IRQL */
+        unsigned char     driver;         /* The driver which added the trace call */
+        unsigned char     pad2;           /* pad to 4 byte boundary - will probably get used */
+        u32   arg1;           /* Caller arg1 */
+        u32   arg2;           /* Caller arg2 */
+        u32   arg3;           /* Caller arg3 */
+        u32   arg4;           /* Caller arg4 */
+} trace_entry_t, *ptrace_entry_t;
+
+/*
+ * Driver types for driver field in trace_entry_t
+ */
+#define TRACE_SXG             1
+#define TRACE_VPCI            2
+#define TRACE_SLIC            3
+
+#define TRACE_ENTRIES   1024
+
+typedef struct _sxg_trace_buffer_t
+{
+        unsigned int                    size;                  /* aid for windbg extension */
+        unsigned int                    in;                    /* Where to add */
+        unsigned int                    level;                 /* Current Trace level */
+	spinlock_t	lock;                  /* For MP tracing */
+        trace_entry_t           entries[TRACE_ENTRIES];/* The circular buffer */
+} sxg_trace_buffer_t;
+
+/*
+ * The trace levels
+ *
+ * XXX At the moment I am only defining critical, important, and noisy.
+ * I am leaving room for more if anyone wants them.
+ */
+#define TRACE_NONE              0   /* For trace level - if no tracing wanted */
+#define TRACE_CRITICAL          1   /* minimal tracing - only critical stuff */
+#define TRACE_IMPORTANT         5   /* more tracing - anything important */
+#define TRACE_NOISY             10  /* Everything in the world */
+
+
+/**********************************************************************
+ *
+ * The macros themselves -
+ *
+ *********************************************************************/
+#if ATK_TRACE_ENABLED
+#define SXG_TRACE_INIT(buffer, tlevel)				\
+{								\
+	memset((buffer), 0, sizeof(sxg_trace_buffer_t));	\
+	(buffer)->level = (tlevel);				\
+	(buffer)->size = TRACE_ENTRIES;				\
+	spin_lock_init(&(buffer)->lock);			\
+}
+#else
+#define SXG_TRACE_INIT(buffer, tlevel)
+#endif
+
+/*
+ * The trace macro.  This is active only if ATK_TRACE_ENABLED is set.
+ */
+#if ATK_TRACE_ENABLED
+#define SXG_TRACE(tdriver, buffer, tlevel, tname, a1, a2, a3, a4) {        \
+        if ((buffer) && ((buffer)->level >= (tlevel))) {                      \
+                unsigned int            trace_irql = 0;    /* ?????? FIX THIS  */    \
+                unsigned int            trace_len;                                   \
+                ptrace_entry_t  trace_entry;                                 \
+                struct timeval  timev;                                       \
+                                                                             \
+                spin_lock(&(buffer)->lock);                       \
+                trace_entry = &(buffer)->entries[(buffer)->in];              \
+                do_gettimeofday(&timev);                                     \
+                                                                             \
+                memset(trace_entry->name, 0, 8);                             \
+                trace_len = strlen(tname);                                   \
+                trace_len = trace_len > 8 ? 8 : trace_len;                   \
+                memcpy(trace_entry->name, (tname), trace_len);               \
+                trace_entry->time = timev.tv_usec;                           \
+                trace_entry->cpu = (unsigned char)(smp_processor_id() & 0xFF);       \
+                trace_entry->driver = (tdriver);                             \
+                trace_entry->irql = trace_irql;                              \
+                trace_entry->arg1 = (ulong)(a1);                             \
+                trace_entry->arg2 = (ulong)(a2);                             \
+                trace_entry->arg3 = (ulong)(a3);                             \
+                trace_entry->arg4 = (ulong)(a4);                             \
+                                                                             \
+                (buffer)->in++;                                              \
+                if ((buffer)->in == TRACE_ENTRIES)                           \
+                        (buffer)->in = 0;                                    \
+                                                                             \
+                spin_unlock(&(buffer)->lock);                       \
+        }                                                                    \
+}
+#else
+#define SXG_TRACE(tdriver, buffer, tlevel, tname, a1, a2, a3, a4)
+#endif
+
+#endif
+
+#endif  /*  _SXG_DEBUG_H_  */
diff --git a/drivers/staging/sxg/sxghif.h b/drivers/staging/sxg/sxghif.h
new file mode 100644
index 0000000..ed26cea
--- /dev/null
+++ b/drivers/staging/sxg/sxghif.h
@@ -0,0 +1,861 @@
+/*
+ * Copyright © 1997-2007 Alacritech, Inc. All rights reserved
+ *
+ * $Id: sxghif.h,v 1.5 2008/07/24 19:18:22 chris Exp $
+ *
+ * sxghif.h:
+ *
+ * This file contains structures and definitions for the
+ * Alacritech Sahara host interface
+ */
+
+/*******************************************************************************
+ * UCODE Registers
+ *******************************************************************************/
+typedef struct _SXG_UCODE_REGS {
+	// Address 0 - 0x3F = Command codes 0-15 for TCB 0.  Excode 0
+	u32		Icr;			// Code = 0 (extended), ExCode = 0 - Int control
+	u32		RsvdReg1;		// Code = 1 - TOE -NA
+	u32		RsvdReg2;		// Code = 2 - TOE -NA
+	u32		RsvdReg3;		// Code = 3 - TOE -NA
+	u32		RsvdReg4;		// Code = 4 - TOE -NA
+	u32		RsvdReg5;		// Code = 5 - TOE -NA
+	u32		CardUp;			// Code = 6 - Microcode initialized when 1
+	u32		RsvdReg7;		// Code = 7 - TOE -NA
+	u32		CodeNotUsed[8];		// Codes 8-15 not used.  ExCode = 0
+	// This brings us to ExCode 1 at address 0x40 = Interrupt status pointer
+	u32		Isp;			// Code = 0 (extended), ExCode = 1
+	u32		PadEx1[15];		// Codes 1-15 not used with extended codes
+	// ExCode 2 = Interrupt Status Register
+	u32		Isr;			// Code = 0 (extended), ExCode = 2
+	u32		PadEx2[15];
+	// ExCode 3 = Event base register.  Location of event rings
+	u32		EventBase;		// Code = 0 (extended), ExCode = 3
+	u32		PadEx3[15];
+	// ExCode 4 = Event ring size
+	u32		EventSize;		// Code = 0 (extended), ExCode = 4
+	u32		PadEx4[15];
+	// ExCode 5 = TCB Buffers base address
+	u32		TcbBase;		// Code = 0 (extended), ExCode = 5
+	u32		PadEx5[15];
+	// ExCode 6 = TCB Composite Buffers base address
+	u32		TcbCompBase;		// Code = 0 (extended), ExCode = 6
+	u32		PadEx6[15];
+	// ExCode 7 = Transmit ring base address
+	u32		XmtBase;		// Code = 0 (extended), ExCode = 7
+	u32		PadEx7[15];
+	// ExCode 8 = Transmit ring size
+	u32		XmtSize;		// Code = 0 (extended), ExCode = 8
+	u32		PadEx8[15];
+	// ExCode 9 = Receive ring base address
+	u32		RcvBase;		// Code = 0 (extended), ExCode = 9
+	u32		PadEx9[15];
+	// ExCode 10 = Receive ring size
+	u32		RcvSize;		// Code = 0 (extended), ExCode = 10
+	u32		PadEx10[15];
+	// ExCode 11 = Read EEPROM Config
+	u32		Config;			// Code = 0 (extended), ExCode = 11
+	u32		PadEx11[15];
+	// ExCode 12 = Multicast bits 31:0
+	u32		McastLow;		// Code = 0 (extended), ExCode = 12
+	u32		PadEx12[15];
+	// ExCode 13 = Multicast bits 63:32
+	u32		McastHigh;		// Code = 0 (extended), ExCode = 13
+	u32		PadEx13[15];
+	// ExCode 14 = Ping
+	u32		Ping;			// Code = 0 (extended), ExCode = 14
+	u32		PadEx14[15];
+	// ExCode 15 = Link MTU
+	u32		LinkMtu;		// Code = 0 (extended), ExCode = 15
+	u32		PadEx15[15];
+	// ExCode 16 = Download synchronization
+	u32		LoadSync;		// Code = 0 (extended), ExCode = 16
+	u32		PadEx16[15];
+	// ExCode 17 = Upper DRAM address bits on 32-bit systems
+	u32		Upper;			// Code = 0 (extended), ExCode = 17
+	u32		PadEx17[15];
+	// ExCode 18 = Slowpath Send Index Address
+	u32		SPSendIndex;		// Code = 0 (extended), ExCode = 18
+	u32		PadEx18[15];
+	u32		RsvdXF;			// Code = 0 (extended), ExCode = 19
+	u32		PadEx19[15];
+	// ExCode 20 = Aggregation
+	u32		Aggregation;		// Code = 0 (extended), ExCode = 20
+	u32		PadEx20[15];
+	// ExCode 21 = Receive MDL push timer
+	u32		PushTicks;		// Code = 0 (extended), ExCode = 21
+	u32		PadEx21[15];
+	// ExCode 22 = TOE NA
+	u32		AckFrequency;		// Code = 0 (extended), ExCode = 22
+	u32		PadEx22[15];
+	// ExCode 23 = TOE NA
+	u32		RsvdReg23;
+	u32		PadEx23[15];
+	// ExCode 24 = TOE NA
+	u32		RsvdReg24;
+	u32		PadEx24[15];
+	// ExCode 25 = TOE NA
+	u32		RsvdReg25;		// Code = 0 (extended), ExCode = 25
+	u32		PadEx25[15];
+	// ExCode 26 = Receive checksum requirements
+	u32		ReceiveChecksum;	// Code = 0 (extended), ExCode = 26
+	u32		PadEx26[15];
+	// ExCode 27 = RSS Requirements
+	u32		Rss;			// Code = 0 (extended), ExCode = 27
+	u32		PadEx27[15];
+	// ExCode 28 = RSS Table
+	u32		RssTable;		// Code = 0 (extended), ExCode = 28
+	u32		PadEx28[15];
+	// ExCode 29 = Event ring release entries
+	u32		EventRelease;		// Code = 0 (extended), ExCode = 29
+	u32		PadEx29[15];
+	// ExCode 30 = Number of receive bufferlist commands on ring 0
+	u32		RcvCmd;			// Code = 0 (extended), ExCode = 30
+	u32		PadEx30[15];
+	// ExCode 31 = slowpath transmit command - Data[31:0] = 1
+	u32		XmtCmd;			// Code = 0 (extended), ExCode = 31
+	u32		PadEx31[15];
+	// ExCode 32 = Dump command
+	u32		DumpCmd;		// Code = 0 (extended), ExCode = 32
+	u32		PadEx32[15];
+	// ExCode 33 = Debug command
+	u32		DebugCmd;		// Code = 0 (extended), ExCode = 33
+	u32		PadEx33[15];
+	// There are 128 possible extended commands - each of account for 16
+	// words (including the non-relevent base command codes 1-15).
+	// Pad for the remainder of these here to bring us to the next CPU
+	// base.  As extended codes are added, reduce the first array value in
+	// the following field
+	u32		PadToNextCpu[94][16];	// 94 = 128 - 34 (34 = Excodes 0 - 33)
+} SXG_UCODE_REGS, *PSXG_UCODE_REGS;
+
+// Interrupt control register (0) values
+#define SXG_ICR_DISABLE					0x00000000
+#define SXG_ICR_ENABLE					0x00000001
+#define SXG_ICR_MASK					0x00000002
+#define SXG_ICR_MSGID_MASK				0xFFFF0000
+#define SXG_ICR_MSGID_SHIFT			16
+#define SXG_ICR(_MessageId, _Data)	\
+	((((_MessageId) << SXG_ICR_MSGID_SHIFT) &	\
+	  SXG_ICR_MSGID_MASK) | (_Data))
+
+// The Microcode supports up to 16 RSS queues
+#define SXG_MAX_RSS				16
+#define SXG_MAX_RSS_TABLE_SIZE	256		// 256-byte max
+
+#define SXG_RSS_TCP6				0x00000001	// RSS TCP over IPv6
+#define SXG_RSS_TCP4				0x00000002	// RSS TCP over IPv4
+#define SXG_RSS_LEGACY				0x00000004	// Line-base interrupts
+#define SXG_RSS_TABLE_SIZE			0x0000FF00	// Table size mask
+#define SXG_RSS_TABLE_SHIFT			8
+#define	SXG_RSS_BASE_CPU			0x00FF0000	// Base CPU (not used)
+#define SXG_RSS_BASE_SHIFT			16
+
+#define SXG_RCV_IP_CSUM_ENABLED		0x00000001	// ExCode 26 (ReceiveChecksum)
+#define SXG_RCV_TCP_CSUM_ENABLED	0x00000002	// ExCode 26 (ReceiveChecksum)
+
+#define SXG_XMT_CPUID_SHIFT			16
+
+#if VPCI
+#define SXG_CHECK_FOR_HANG_TIME		3000
+#else
+#define SXG_CHECK_FOR_HANG_TIME		5
+#endif
+
+/*
+ * TCB registers - This is really the same register memory area as UCODE_REGS
+ * above, but defined differently.  Bits 17:06 of the address define the TCB,
+ * which means each TCB area occupies 0x40 (64) bytes, or 16 u32S.  What really
+ * is happening is that these registers occupy the "PadEx[15]" areas in the
+ * SXG_UCODE_REGS definition above
+ */
+typedef struct _SXG_TCB_REGS {
+	u32		ExCode;		/* Extended codes - see SXG_UCODE_REGS */
+	u32		Xmt;		/* Code = 1 - # of Xmt descriptors added to ring */
+	u32		Rcv;		/* Code = 2 - # of Rcv descriptors added to ring */
+	u32		Rsvd1;		/* Code = 3 - TOE NA */
+	u32		Rsvd2;		/* Code = 4 - TOE NA */
+	u32		Rsvd3;		/* Code = 5 - TOE NA */
+	u32		Invalid;	/* Code = 6 - Reserved for "CardUp" see above */
+	u32		Rsvd4;		/* Code = 7 - TOE NA */
+	u32		Rsvd5;		/* Code = 8 - TOE NA */
+	u32		Pad[7];		/* Codes 8-15 - Not used. */
+} SXG_TCB_REGS, *PSXG_TCB_REGS;
+
+/***************************************************************************
+ * ISR Format
+ *                31                                      0
+ *                 _______________________________________
+ *                |    |    |    |    |    |    |    |    |
+ *                |____|____|____|____|____|____|____|____|
+ *                 ^^^^ ^^^^ ^^^^ ^^^^ \                 /
+ *           ERR --|||| |||| |||| ||||  -----------------
+ *         EVENT ---||| |||| |||| ||||          |
+ *               ----|| |||| |||| ||||          |-- Crash Address
+ *           UPC -----| |||| |||| ||||
+ *        LEVENT -------|||| |||| ||||
+ *          PDQF --------||| |||| ||||
+ *         RMISS ---------|| |||| ||||
+ *         BREAK ----------| |||| ||||
+ *       HBEATOK ------------|||| ||||
+ *       NOHBEAT -------------||| ||||
+ *        ERFULL --------------|| ||||
+ *         XDROP ---------------| ||||
+ *               -----------------||||
+ *               -----------------||||--\
+ *                                 ||---|-CpuId of crash
+ *                                 |----/
+ ***************************************************************************/
+#define SXG_ISR_ERR		0x80000000	// Error
+#define SXG_ISR_EVENT		0x40000000	// Event ring event
+#define SXG_ISR_NONE1		0x20000000	// Not used
+#define SXG_ISR_UPC		0x10000000	// Dump/debug command complete
+#define SXG_ISR_LINK		0x08000000	// Link event
+#define SXG_ISR_PDQF		0x04000000	// Processed data queue full
+#define SXG_ISR_RMISS		0x02000000	// Drop - no host buf
+#define SXG_ISR_BREAK		0x01000000	// Breakpoint hit
+#define SXG_ISR_PING		0x00800000	// Heartbeat response
+#define SXG_ISR_DEAD		0x00400000	// Card crash
+#define SXG_ISR_ERFULL		0x00200000	// Event ring full
+#define SXG_ISR_XDROP		0x00100000	// XMT Drop - no DRAM bufs or XMT err
+#define SXG_ISR_SPSEND		0x00080000	// Slow send complete
+#define SXG_ISR_CPU		0x00070000	// Dead CPU mask
+#define SXG_ISR_CPU_SHIFT		16	// Dead CPU shift
+#define SXG_ISR_CRASH		0x0000FFFF	// Crash address mask
+
+/***************************************************************************
+ *
+ * Event Ring entry
+ *
+ ***************************************************************************/
+/*
+ *  31                  15                 0
+ *  .___________________.___________________.
+ *  |<------------    Pad 0    ------------>|
+ *  |_________|_________|_________|_________|0		0x00
+ *  |<------------    Pad 1    ------------>|
+ *  |_________|_________|_________|_________|4		0x04
+ *  |<------------    Pad 2    ------------>|
+ *  |_________|_________|_________|_________|8 		0x08
+ *  |<----------- Event Word 0 ------------>|
+ *  |_________|_________|_________|_________|12		0x0c
+ *  |<----------- Event Word 1 ------------>|
+ *  |_________|_________|_________|_________|16		0x10
+ *  |<------------- Toeplitz   ------------>|
+ *  |_________|_________|_________|_________|20		0x14
+ *  |<----- Length ---->|<------ TCB Id --->|
+ *  |_________|_________|_________|_________|24		0x18
+ *  |<----- Status ---->|Evnt Code|Flsh Code|
+ *  |_________|_________|_________|_________|28		0x1c
+ *   ^                   ^^^^ ^^^^
+ *   |- VALID            |||| ||||- RBUFC
+ *                       |||| |||-- SLOWR
+ *                       |||| ||--- UNUSED
+ *                       |||| |---- FASTC
+ *                       ||||------ FASTR
+ *                       |||-------
+ *                       ||--------
+ *                       |---------
+ *
+ * Slowpath status:
+ *   _______________________________________
+ *  |<----- Status ---->|Evnt Code|Flsh Code|
+ *  |_________|Cmd Index|_________|_________|28		0x1c
+ *    ^^^ ^^^^
+ *    ||| ||||- ISTCPIP6
+ *    ||| |||-- IPONLY
+ *    ||| ||--- RCVERR
+ *    ||| |---- IPCBAD
+ *    |||------ TCPCBAD
+ *    ||------- ISTCPIP
+ *    |-------- SCERR
+ *
+ */
+#pragma pack(push, 1)
+typedef struct _SXG_EVENT {
+	u32			Pad[1];		// not used
+	u32			SndUna;		// SndUna value
+	u32			Resid;		// receive MDL resid
+	union {
+		void *		HostHandle;	// Receive host handle
+		u32		Rsvd1;		// TOE NA
+		struct {
+			u32	NotUsed;
+			u32	Rsvd2;		// TOE NA
+		} Flush;
+	};
+	u32			Toeplitz;	// RSS Toeplitz hash
+	union {
+		ushort		Rsvd3;		// TOE NA
+		ushort		HdrOffset;	// Slowpath
+	};
+	ushort			Length;		//
+	unsigned char 		Rsvd4;		// TOE NA
+	unsigned char 		Code;		// Event code
+	unsigned char		CommandIndex;	// New ring index
+	unsigned char		Status;		// Event status
+} SXG_EVENT, *PSXG_EVENT;
+#pragma pack(pop)
+
+// Event code definitions
+#define EVENT_CODE_BUFFERS	0x01	// Receive buffer list command (ring 0)
+#define EVENT_CODE_SLOWRCV	0x02	// Slowpath receive
+#define EVENT_CODE_UNUSED	0x04	// Was slowpath commands complete
+
+// Status values
+#define EVENT_STATUS_VALID	0x80	// Entry valid
+
+// Slowpath status
+#define EVENT_STATUS_ERROR	0x40	// Completed with error. Index in next byte
+#define EVENT_STATUS_TCPIP4	0x20	// TCPIPv4 frame
+#define EVENT_STATUS_TCPBAD	0x10	// Bad TCP checksum
+#define EVENT_STATUS_IPBAD	0x08	// Bad IP checksum
+#define EVENT_STATUS_RCVERR	0x04	// Slowpath receive error
+#define EVENT_STATUS_IPONLY	0x02	// IP frame
+#define EVENT_STATUS_TCPIP6	0x01	// TCPIPv6 frame
+#define EVENT_STATUS_TCPIP	0x21	// Combination of v4 and v6
+
+// Event ring
+// Size must be power of 2, between 128 and 16k
+#define EVENT_RING_SIZE		4096	// ??
+#define EVENT_RING_BATCH	16		// Hand entries back 16 at a time.
+#define EVENT_BATCH_LIMIT	256	    // Stop processing events after 256 (16 * 16)
+
+typedef struct _SXG_EVENT_RING {
+	SXG_EVENT	Ring[EVENT_RING_SIZE];
+}SXG_EVENT_RING, *PSXG_EVENT_RING;
+
+/***************************************************************************
+ *
+ * TCB Buffers
+ *
+ ***************************************************************************/
+// Maximum number of TCBS supported by hardware/microcode
+#define SXG_MAX_TCB		4096
+// Minimum TCBs before we fail initialization
+#define SXG_MIN_TCB		512
+// TCB Hash
+// The bucket is determined by bits 11:4 of the toeplitz if we support 4k
+// offloaded connections, 10:4 if we support 2k and so on.
+#define SXG_TCB_BUCKET_SHIFT	4
+#define SXG_TCB_PER_BUCKET		16
+#define SXG_TCB_BUCKET_MASK		0xFF0	// Bucket portion of TCB ID
+#define SXG_TCB_ELEMENT_MASK	0x00F	// Element within bucket
+#define SXG_TCB_BUCKETS			256		// 256 * 16 = 4k
+
+#define SXG_TCB_BUFFER_SIZE	512	// ASSERT format is correct
+
+#define SXG_TCB_RCVQ_SIZE		736
+
+#define SXG_TCB_COMPOSITE_BUFFER_SIZE	1024
+
+#define SXG_LOCATE_TCP_FRAME_HDR(_TcpObject, _IPv6)							\
+	(((_TcpObject)->VlanId) ?												\
+	 ((_IPv6) ?		/* Vlan frame header = yes */							\
+	  &(_TcpObject)->CompBuffer->Frame.HasVlan.TcpIp6.SxgTcp			:	\
+	  &(_TcpObject)->CompBuffer->Frame.HasVlan.TcpIp.SxgTcp)			: 	\
+	 ((_IPv6) ?		/* Vlan frame header = No */							\
+	  &(_TcpObject)->CompBuffer->Frame.NoVlan.TcpIp6.SxgTcp				: 	\
+	  &(_TcpObject)->CompBuffer->Frame.NoVlan.TcpIp.SxgTcp))
+
+#define SXG_LOCATE_IP_FRAME_HDR(_TcpObject)									\
+	(_TcpObject)->VlanId ?													\
+	&(_TcpObject)->CompBuffer->Frame.HasVlan.TcpIp.Ip				: 		\
+	&(_TcpObject)->CompBuffer->Frame.NoVlan.TcpIp.Ip
+
+#define SXG_LOCATE_IP6_FRAME_HDR(_TcpObject)								\
+	(_TcpObject)->VlanId ?													\
+	&(_TcpObject)->CompBuffer->Frame.HasVlan.TcpIp6.Ip				:		\
+	&(_TcpObject)->CompBuffer->Frame.NoVlan.TcpIp6.Ip
+
+
+#if DBG
+// Horrible kludge to distinguish dumb-nic, slowpath, and
+// fastpath traffic.  Decrement the HopLimit by one
+// for slowpath, two for fastpath.  This assumes the limit is measurably
+// greater than two, which I think is reasonable.
+// Obviously this is DBG only.  Maybe remove later, or #if 0 so we
+// can set it when needed
+#define SXG_DBG_HOP_LIMIT(_TcpObject, _FastPath) {								\
+	PIPV6_HDR		_Ip6FrameHdr;												\
+	if((_TcpObject)->IPv6) {													\
+		_Ip6FrameHdr = SXG_LOCATE_IP6_FRAME_HDR((_TcpObject));					\
+		if(_FastPath) {															\
+			_Ip6FrameHdr->HopLimit = (_TcpObject)->Cached.TtlOrHopLimit - 2;	\
+		} else {																\
+			_Ip6FrameHdr->HopLimit = (_TcpObject)->Cached.TtlOrHopLimit - 1;	\
+		}																		\
+	}																			\
+}
+#else
+// Do nothing with free build
+#define SXG_DBG_HOP_LIMIT(_TcpObject, _FastPath)
+#endif
+
+/***************************************************************************
+ * Receive and transmit rings
+ ***************************************************************************/
+#define SXG_MAX_RING_SIZE	256
+#define SXG_XMT_RING_SIZE	128		// Start with 128
+#define SXG_RCV_RING_SIZE	128		// Start with 128
+#define SXG_MAX_ENTRIES     4096
+
+// Structure and macros to manage a ring
+typedef struct _SXG_RING_INFO {
+	unsigned char			Head;		// Where we add entries - Note unsigned char:RING_SIZE
+	unsigned char			Tail;		// Where we pull off completed entries
+	ushort			Size;		// Ring size - Must be multiple of 2
+	void *			Context[SXG_MAX_RING_SIZE];	// Shadow ring
+} SXG_RING_INFO, *PSXG_RING_INFO;
+
+#define SXG_INITIALIZE_RING(_ring, _size) {							\
+	(_ring).Head = 0;												\
+	(_ring).Tail = 0;												\
+	(_ring).Size = (_size);											\
+}
+#define SXG_ADVANCE_INDEX(_index, _size) ((_index) = ((_index) + 1) & ((_size) - 1))
+#define SXG_PREVIOUS_INDEX(_index, _size) (((_index) - 1) &((_size) - 1))
+#define SXG_RING_EMPTY(_ring) ((_ring)->Head == (_ring)->Tail)
+#define SXG_RING_FULL(_ring) ((((_ring)->Head + 1) & ((_ring)->Size - 1)) == (_ring)->Tail)
+#define SXG_RING_ADVANCE_HEAD(_ring) SXG_ADVANCE_INDEX((_ring)->Head, ((_ring)->Size))
+#define SXG_RING_RETREAT_HEAD(_ring) ((_ring)->Head =				\
+									  SXG_PREVIOUS_INDEX((_ring)->Head, (_ring)->Size))
+#define SXG_RING_ADVANCE_TAIL(_ring) {								\
+	ASSERT((_ring)->Tail != (_ring)->Head);							\
+	SXG_ADVANCE_INDEX((_ring)->Tail, ((_ring)->Size));				\
+}
+// Set cmd to the next available ring entry, set the shadow context
+// entry and advance the ring.
+// The appropriate lock must be held when calling this macro
+#define SXG_GET_CMD(_ring, _ringinfo, _cmd, _context) {				\
+	if(SXG_RING_FULL(_ringinfo)) {									\
+		(_cmd) = NULL;												\
+	} else {														\
+		(_cmd) = &(_ring)->Descriptors[(_ringinfo)->Head];			\
+		(_ringinfo)->Context[(_ringinfo)->Head] = (void *)(_context);\
+		SXG_RING_ADVANCE_HEAD(_ringinfo);							\
+	}																\
+}
+
+// Abort the previously allocated command by retreating the head.
+// NOTE - The appopriate lock MUST NOT BE DROPPED between the SXG_GET_CMD
+// and SXG_ABORT_CMD calls.
+#define SXG_ABORT_CMD(_ringinfo) {									\
+	ASSERT(!(SXG_RING_EMPTY(_ringinfo)));							\
+	SXG_RING_RETREAT_HEAD(_ringinfo);								\
+	(_ringinfo)->Context[(_ringinfo)->Head] = NULL;					\
+}
+
+// For the given ring, return a pointer to the tail cmd and context,
+// clear the context and advance the tail
+#define SXG_RETURN_CMD(_ring, _ringinfo, _cmd, _context) {			\
+	(_cmd) = &(_ring)->Descriptors[(_ringinfo)->Tail];				\
+	(_context) = (_ringinfo)->Context[(_ringinfo)->Tail];       	\
+	(_ringinfo)->Context[(_ringinfo)->Tail] = NULL;					\
+	SXG_RING_ADVANCE_TAIL(_ringinfo);								\
+}
+
+/***************************************************************************
+ *
+ * Host Command Buffer - commands to INIC via the Cmd Rings
+ *
+ ***************************************************************************/
+/*
+ *  31                  15                 0
+ *  .___________________.___________________.
+ *  |<-------------- Sgl Low -------------->|
+ *  |_________|_________|_________|_________|0		0x00
+ *  |<-------------- Sgl High ------------->|
+ *  |_________|_________|_________|_________|4		0x04
+ *  |<-------------  Sge 0 Low  ----------->|
+ *  |_________|_________|_________|_________|8 		0x08
+ *  |<-------------  Sge 0 High ----------->|
+ *  |_________|_________|_________|_________|12		0x0c
+ *  |<------------  Sge 0 Length ---------->|
+ *  |_________|_________|_________|_________|16		0x10
+ *  |<----------- Window Update ----------->|
+ *  |<-------- SP 1st SGE offset ---------->|
+ *  |_________|_________|_________|_________|20		0x14
+ *  |<----------- Total Length ------------>|
+ *  |_________|_________|_________|_________|24		0x18
+ *  |<----- LCnt ------>|<----- Flags ----->|
+ *  |_________|_________|_________|_________|28		0x1c
+ */
+#pragma pack(push, 1)
+typedef struct _SXG_CMD {
+	dma_addr_t             			Sgl;			// Physical address of SGL
+	union {
+		struct {
+			dma64_addr_t          	FirstSgeAddress;// Address of first SGE
+			u32					FirstSgeLength;	// Length of first SGE
+			union {
+				u32				Rsvd1;	        // TOE NA
+				u32				SgeOffset;		// Slowpath - 2nd SGE offset
+				u32				Resid;			// MDL completion - clobbers update
+			};
+			union {
+				u32				TotalLength;	// Total transfer length
+				u32				Mss;			// LSO MSS
+			};
+		} Buffer;
+	};
+	union {
+		struct {
+			unsigned char					Flags:4;		// slowpath flags
+			unsigned char					IpHl:4;			// Ip header length (>>2)
+			unsigned char					MacLen;			// Mac header len
+		} CsumFlags;
+		struct {
+			ushort					Flags:4;		// slowpath flags
+			ushort					TcpHdrOff:7;	// TCP
+			ushort					MacLen:5;		// Mac header len
+		} LsoFlags;
+		ushort						Flags;			// flags
+	};
+	union {
+		ushort						SgEntries;		// SG entry count including first sge
+		struct {
+			unsigned char					Status;		    // Copied from event status
+			unsigned char					NotUsed;
+		} Status;
+	};
+} SXG_CMD, *PSXG_CMD;
+#pragma pack(pop)
+
+#pragma pack(push, 1)
+typedef struct _VLAN_HDR {
+	ushort	VlanTci;
+	ushort	VlanTpid;
+} VLAN_HDR, *PVLAN_HDR;
+#pragma pack(pop)
+
+/*
+ * Slowpath Flags:
+ *
+ *
+ * LSS Flags:
+ *                                        .---
+ *                                       /.--- TCP Large segment send
+ *                                      //.---
+ *                                     ///.---
+ *  3                   1     1       ////
+ *  1                   5     0      ||||
+ *  .___________________.____________vvvv.
+ *  |                   |MAC |  TCP |    |
+ *  |      LCnt         |hlen|hdroff|Flgs|
+ *  |___________________|||||||||||||____|
+ *
+ *
+ * Checksum Flags
+ *
+ *                                           .---
+ *                                          /.---
+ *                                         //.--- Checksum TCP
+ *                                        ///.--- Checksum IP
+ *  3                   1                //// No bits - normal send
+ *  1                   5          7    ||||
+ *  .___________________._______________vvvv.
+ *  |                   | Offload | IP |    |
+ *  |      LCnt         |MAC hlen |Hlen|Flgs|
+ *  |___________________|____|____|____|____|
+ *
+ */
+// Slowpath CMD flags
+#define SXG_SLOWCMD_CSUM_IP			0x01		// Checksum IP
+#define SXG_SLOWCMD_CSUM_TCP		0x02		// Checksum TCP
+#define SXG_SLOWCMD_LSO				0x04		// Large segment send
+
+typedef struct _SXG_XMT_RING {
+	SXG_CMD		Descriptors[SXG_XMT_RING_SIZE];
+} SXG_XMT_RING, *PSXG_XMT_RING;
+
+typedef struct _SXG_RCV_RING {
+	SXG_CMD		Descriptors[SXG_RCV_RING_SIZE];
+} SXG_RCV_RING, *PSXG_RCV_RING;
+
+/***************************************************************************
+ * Share memory buffer types - Used to identify asynchronous
+ * shared memory allocation
+ ***************************************************************************/
+typedef enum {
+	SXG_BUFFER_TYPE_RCV,		// Receive buffer
+	SXG_BUFFER_TYPE_SGL			// SGL buffer
+} SXG_BUFFER_TYPE;
+
+// State for SXG buffers
+#define SXG_BUFFER_FREE		0x01
+#define SXG_BUFFER_BUSY		0x02
+#define SXG_BUFFER_ONCARD	0x04
+#define SXG_BUFFER_UPSTREAM	0x08
+
+/***************************************************************************
+ * Receive data buffers
+ *
+ * Receive data buffers are given to the Sahara card 128 at a time.
+ * This is accomplished by filling in a "receive descriptor block"
+ * with 128 "receive descriptors".  Each descriptor consists of
+ * a physical address, which the card uses as the address to
+ * DMA data into, and a virtual address, which is given back
+ * to the host in the "HostHandle" portion of an event.
+ * The receive descriptor data structure is defined below
+ * as SXG_RCV_DATA_DESCRIPTOR, and the corresponding block
+ * is defined as SXG_RCV_DESCRIPTOR_BLOCK.
+ *
+ * This receive descriptor block is given to the card by filling
+ * in the Sgl field of a SXG_CMD entry from pAdapt->RcvRings[0]
+ * with the physical address of the receive descriptor block.
+ *
+ * Both the receive buffers and the receive descriptor blocks
+ * require additional data structures to maintain them
+ * on a free queue and contain other information associated with them.
+ * Those data structures are defined as the SXG_RCV_DATA_BUFFER_HDR
+ * and SXG_RCV_DESCRIPTOR_BLOCK_HDR respectively.
+ *
+ * Since both the receive buffers and the receive descriptor block
+ * must be accessible by the card, both must be allocated out of
+ * shared memory.  To ensure that we always have a descriptor
+ * block available for every 128 buffers, we allocate all of
+ * these resources together in a single block.  This entire
+ * block is managed by a SXG_RCV_BLOCK_HDR, who's sole purpose
+ * is to maintain address information so that the entire block
+ * can be free later.
+ *
+ * Further complicating matters is the fact that the receive
+ * buffers must be variable in length in order to accomodate
+ * jumbo frame configurations.  We configure the buffer
+ * length so that the buffer and it's corresponding SXG_RCV_DATA_BUFFER_HDR
+ * structure add up to an even boundary.  Then we place the
+ * remaining data structures after 128 of them as shown in
+ * the following diagram:
+ *
+ *  _________________________________________
+ * |                                         |
+ * |    Variable length receive buffer #1    |
+ * |_________________________________________|
+ * |                                         |
+ * |       SXG_RCV_DATA_BUFFER_HDR #1        |
+ * |_________________________________________| <== Even 2k or 10k boundary
+ * |                                         |
+ * |         ... repeat 2-128 ..             |
+ * |_________________________________________|
+ * |                                         |
+ * |      SXG_RCV_DESCRIPTOR_BLOCK           |
+ * |  Contains SXG_RCV_DATA_DESCRIPTOR * 128 |
+ * |_________________________________________|
+ * |                                         |
+ * |      SXG_RCV_DESCRIPTOR_BLOCK_HDR       |
+ * |_________________________________________|
+ * |                                         |
+ * |          SXG_RCV_BLOCK_HDR              |
+ * |_________________________________________|
+ *
+ * Memory consumption:
+ *	  Non-jumbo:
+ *      Buffers and SXG_RCV_DATA_BUFFER_HDR = 2k * 128 = 256k
+ *    + SXG_RCV_DESCRIPTOR_BLOCK = 2k
+ *    + SXG_RCV_DESCRIPTOR_BLOCK_HDR = ~32
+ *    + SXG_RCV_BLOCK_HDR = ~32
+ *    => Total = ~258k/block
+ *
+ *	  Jumbo:
+ *      Buffers and SXG_RCV_DATA_BUFFER_HDR = 10k * 128 = 1280k
+ *    + SXG_RCV_DESCRIPTOR_BLOCK = 2k
+ *    + SXG_RCV_DESCRIPTOR_BLOCK_HDR = ~32
+ *    + SXG_RCV_BLOCK_HDR = ~32
+ *    => Total = ~1282k/block
+ *
+ ***************************************************************************/
+#define SXG_RCV_DATA_BUFFERS			4096	// Amount to give to the card
+#define SXG_INITIAL_RCV_DATA_BUFFERS	8192	// Initial pool of buffers
+#define SXG_MIN_RCV_DATA_BUFFERS		2048	// Minimum amount and when to get more
+#define SXG_MAX_RCV_BLOCKS				128		// = 16384 receive buffers
+
+// Receive buffer header
+typedef struct _SXG_RCV_DATA_BUFFER_HDR {
+	dma_addr_t          			PhysicalAddress;	// Buffer physical address
+	// Note - DO NOT USE the VirtualAddress field to locate data.
+	// Use the sxg.h:SXG_RECEIVE_DATA_LOCATION macro instead.
+	void *VirtualAddress;		// Start of buffer
+	LIST_ENTRY						FreeList;			// Free queue of buffers
+	struct _SXG_RCV_DATA_BUFFER_HDR	*Next;				// Fastpath data buffer queue
+	u32							Size;				// Buffer size
+	u32							ByteOffset;			// See SXG_RESTORE_MDL_OFFSET
+	unsigned char							State;				// See SXG_BUFFER state above
+	unsigned char							Status;				// Event status (to log PUSH)
+	struct sk_buff                * skb;				// Double mapped (nbl and pkt)
+} SXG_RCV_DATA_BUFFER_HDR, *PSXG_RCV_DATA_BUFFER_HDR;
+
+// SxgSlowReceive uses the PACKET (skb) contained
+// in the SXG_RCV_DATA_BUFFER_HDR when indicating dumb-nic data
+#define SxgDumbRcvPacket	        skb
+
+#define SXG_RCV_DATA_HDR_SIZE			256		// Space for SXG_RCV_DATA_BUFFER_HDR
+#define SXG_RCV_DATA_BUFFER_SIZE		2048	// Non jumbo = 2k including HDR
+#define SXG_RCV_JUMBO_BUFFER_SIZE		10240	// jumbo = 10k including HDR
+
+// Receive data descriptor
+typedef struct _SXG_RCV_DATA_DESCRIPTOR {
+	union {
+		struct sk_buff    *	VirtualAddress;			// Host handle
+		u64 			ForceTo8Bytes;			// Force x86 to 8-byte boundary
+	};
+	dma_addr_t             	PhysicalAddress;
+} SXG_RCV_DATA_DESCRIPTOR, *PSXG_RCV_DATA_DESCRIPTOR;
+
+// Receive descriptor block
+#define SXG_RCV_DESCRIPTORS_PER_BLOCK		128
+#define SXG_RCV_DESCRIPTOR_BLOCK_SIZE		2048	// For sanity check
+typedef struct _SXG_RCV_DESCRIPTOR_BLOCK {
+	SXG_RCV_DATA_DESCRIPTOR		Descriptors[SXG_RCV_DESCRIPTORS_PER_BLOCK];
+} SXG_RCV_DESCRIPTOR_BLOCK, *PSXG_RCV_DESCRIPTOR_BLOCK;
+
+// Receive descriptor block header
+typedef struct _SXG_RCV_DESCRIPTOR_BLOCK_HDR {
+	void *					VirtualAddress;			// Start of 2k buffer
+	dma_addr_t	            PhysicalAddress;		// ..and it's physical address
+	LIST_ENTRY				FreeList;				// Free queue of descriptor blocks
+	unsigned char					State;					// See SXG_BUFFER state above
+} SXG_RCV_DESCRIPTOR_BLOCK_HDR, *PSXG_RCV_DESCRIPTOR_BLOCK_HDR;
+
+// Receive block header
+typedef struct _SXG_RCV_BLOCK_HDR {
+	void *					VirtualAddress;			// Start of virtual memory
+	dma_addr_t	            PhysicalAddress;		// ..and it's physical address
+	LIST_ENTRY				AllList;				// Queue of all SXG_RCV_BLOCKS
+} SXG_RCV_BLOCK_HDR, *PSXG_RCV_BLOCK_HDR;
+
+// Macros to determine data structure offsets into receive block
+#define SXG_RCV_BLOCK_SIZE(_Buffersize) 					\
+	(((_Buffersize) * SXG_RCV_DESCRIPTORS_PER_BLOCK) +		\
+	 (sizeof(SXG_RCV_DESCRIPTOR_BLOCK))              +		\
+	 (sizeof(SXG_RCV_DESCRIPTOR_BLOCK_HDR))          +		\
+	 (sizeof(SXG_RCV_BLOCK_HDR)))
+#define SXG_RCV_BUFFER_DATA_SIZE(_Buffersize)				\
+	((_Buffersize) - SXG_RCV_DATA_HDR_SIZE)
+#define SXG_RCV_DATA_BUFFER_HDR_OFFSET(_Buffersize)			\
+	((_Buffersize) - SXG_RCV_DATA_HDR_SIZE)
+#define SXG_RCV_DESCRIPTOR_BLOCK_OFFSET(_Buffersize)		\
+	((_Buffersize) * SXG_RCV_DESCRIPTORS_PER_BLOCK)
+#define SXG_RCV_DESCRIPTOR_BLOCK_HDR_OFFSET(_Buffersize)	\
+	(((_Buffersize) * SXG_RCV_DESCRIPTORS_PER_BLOCK) +		\
+	 (sizeof(SXG_RCV_DESCRIPTOR_BLOCK)))
+#define SXG_RCV_BLOCK_HDR_OFFSET(_Buffersize)				\
+	(((_Buffersize) * SXG_RCV_DESCRIPTORS_PER_BLOCK) +		\
+	 (sizeof(SXG_RCV_DESCRIPTOR_BLOCK))              +		\
+	 (sizeof(SXG_RCV_DESCRIPTOR_BLOCK_HDR)))
+
+// Use the miniport reserved portion of the NBL to locate
+// our SXG_RCV_DATA_BUFFER_HDR structure.
+typedef struct _SXG_RCV_NBL_RESERVED {
+	PSXG_RCV_DATA_BUFFER_HDR	RcvDataBufferHdr;
+	void *						Available;
+} SXG_RCV_NBL_RESERVED, *PSXG_RCV_NBL_RESERVED;
+
+#define SXG_RCV_NBL_BUFFER_HDR(_NBL) (((PSXG_RCV_NBL_RESERVED)NET_BUFFER_LIST_MINIPORT_RESERVED(_NBL))->RcvDataBufferHdr)
+
+/***************************************************************************
+ * Scatter gather list buffer
+ ***************************************************************************/
+#define SXG_INITIAL_SGL_BUFFERS		8192	// Initial pool of SGL buffers
+#define SXG_MIN_SGL_BUFFERS			2048	// Minimum amount and when to get more
+#define SXG_MAX_SGL_BUFFERS			16384	// Maximum to allocate (note ADAPT:ushort)
+
+
+// Self identifying structure type
+typedef enum _SXG_SGL_TYPE {
+	SXG_SGL_DUMB,				// Dumb NIC SGL
+	SXG_SGL_SLOW,				// Slowpath protocol header - see below
+	SXG_SGL_CHIMNEY				// Chimney offload SGL
+} SXG_SGL_TYPE, PSXG_SGL_TYPE;
+
+// Note - the description below is Microsoft specific
+//
+// The following definition specifies the amount of shared memory to allocate
+// for the SCATTER_GATHER_LIST portion of the SXG_SCATTER_GATHER data structure.
+// The following considerations apply when setting this value:
+// - First, the Sahara card is designed to read the Microsoft SGL structure
+// 	 straight out of host memory.  This means that the SGL must reside in
+//	 shared memory.  If the length here is smaller than the SGL for the
+//	 NET_BUFFER, then NDIS will allocate its own buffer.  The buffer
+//	 that NDIS allocates is not in shared memory, so when this happens,
+//	 the SGL will need to be copied to a set of SXG_SCATTER_GATHER buffers.
+//	 In other words.. we don't want this value to be too small.
+// - On the other hand.. we're allocating up to 16k of these things.  If
+//	 we make this too big, we start to consume a ton of memory..
+// At the moment, I'm going to limit the number of SG entries to 150.
+// If each entry maps roughly 4k, then this should cover roughly 600kB
+// NET_BUFFERs.  Furthermore, since each entry is 24 bytes, the total
+// SGE portion of the structure consumes 3600 bytes, which should allow
+// the entire SXG_SCATTER_GATHER structure to reside comfortably within
+// a 4k block, providing the remaining fields stay under 500 bytes.
+//
+// So with 150 entries, the SXG_SCATTER_GATHER structure becomes roughly
+// 4k.  At 16k of them, that amounts to 64M of shared memory.  A ton, but
+// manageable.
+#define SXG_SGL_ENTRIES		150
+
+// The ucode expects an NDIS SGL structure that
+// is formatted for an x64 system.  When running
+// on an x64 system, we can simply hand the NDIS SGL
+// to the card directly.  For x86 systems we must reconstruct
+// the SGL.  The following structure defines an x64
+// formatted SGL entry
+typedef struct _SXG_X64_SGE {
+    dma64_addr_t      	Address;	// same as wdm.h
+    u32				Length;		// same as wdm.h
+	u32				CompilerPad;// The compiler pads to 8-bytes
+    u64 			Reserved;	// u32 * in wdm.h.  Force to 8 bytes
+} SXG_X64_SGE, *PSXG_X64_SGE;
+
+typedef struct _SCATTER_GATHER_ELEMENT {
+    dma64_addr_t      	Address;	// same as wdm.h
+    u32				Length;		// same as wdm.h
+	u32				CompilerPad;// The compiler pads to 8-bytes
+    u64 			Reserved;	// u32 * in wdm.h.  Force to 8 bytes
+} SCATTER_GATHER_ELEMENT, *PSCATTER_GATHER_ELEMENT;
+
+
+typedef struct _SCATTER_GATHER_LIST {
+    u32					NumberOfElements;
+    u32 *				Reserved;
+    SCATTER_GATHER_ELEMENT	Elements[];
+} SCATTER_GATHER_LIST, *PSCATTER_GATHER_LIST;
+
+// The card doesn't care about anything except elements, so
+// we can leave the u32 * reserved field alone in the following
+// SGL structure.  But redefine from wdm.h:SCATTER_GATHER_LIST so
+// we can specify SXG_X64_SGE and define a fixed number of elements
+typedef struct _SXG_X64_SGL {
+    u32					NumberOfElements;
+    u32 *				Reserved;
+    SXG_X64_SGE				Elements[SXG_SGL_ENTRIES];
+} SXG_X64_SGL, *PSXG_X64_SGL;
+
+typedef struct _SXG_SCATTER_GATHER {
+	SXG_SGL_TYPE						Type;			// FIRST! Dumb-nic or offload
+	void *   							adapter;		// Back pointer to adapter
+	LIST_ENTRY							FreeList;		// Free SXG_SCATTER_GATHER blocks
+	LIST_ENTRY							AllList;		// All SXG_SCATTER_GATHER blocks
+	dma_addr_t				            PhysicalAddress;// physical address
+	unsigned char								State;			// See SXG_BUFFER state above
+	unsigned char								CmdIndex;		// Command ring index
+	struct sk_buff                    *	DumbPacket;		// Associated Packet
+	u32								Direction;		// For asynchronous completions
+	u32								CurOffset;		// Current SGL offset
+	u32								SglRef;			// SGL reference count
+	VLAN_HDR							VlanTag;		// VLAN tag to be inserted into SGL
+	PSCATTER_GATHER_LIST   				pSgl;			// SGL Addr. Possibly &Sgl
+	SXG_X64_SGL							Sgl;			// SGL handed to card
+} SXG_SCATTER_GATHER, *PSXG_SCATTER_GATHER;
+
+#if defined(CONFIG_X86_64)
+#define SXG_SGL_BUFFER(_SxgSgl)		(&_SxgSgl->Sgl)
+#define SXG_SGL_BUF_SIZE			sizeof(SXG_X64_SGL)
+#elif defined(CONFIG_X86)
+// Force NDIS to give us it's own buffer so we can reformat to our own
+#define SXG_SGL_BUFFER(_SxgSgl)		NULL
+#define SXG_SGL_BUF_SIZE			0
+#else
+    Stop Compilation;
+#endif
+
diff --git a/drivers/staging/sxg/sxghw.h b/drivers/staging/sxg/sxghw.h
new file mode 100644
index 0000000..8f4f6ef
--- /dev/null
+++ b/drivers/staging/sxg/sxghw.h
@@ -0,0 +1,734 @@
+/*
+ * Copyright © 1997-2007 Alacritech, Inc. All rights reserved
+ *
+ * $Id: sxghw.h,v 1.2 2008/07/24 17:24:23 chris Exp $
+ *
+ * sxghw.h:
+ *
+ * This file contains structures and definitions for the
+ * Alacritech Sahara hardware
+ */
+
+
+/*******************************************************************************
+ * Configuration space
+ *******************************************************************************/
+//  PCI Vendor ID
+#define SXG_VENDOR_ID			0x139A	// Alacritech's Vendor ID
+
+//  PCI Device ID
+#define SXG_DEVICE_ID			0x0009	// Sahara Device ID
+
+//
+// Subsystem IDs.
+//
+// The subsystem ID value is broken into bit fields as follows:
+//		Bits [15:12] - Function
+//		Bits [11:8]  - OEM and/or operating system.
+//		Bits [7:0]   - Base SID.
+//
+// SSID field (bit) masks
+#define SSID_BASE_MASK					0x00FF	// Base subsystem ID mask
+#define SSID_OEM_MASK					0x0F00	// Subsystem OEM mask
+#define SSID_FUNC_MASK					0xF000	// Subsystem function mask
+
+// Base SSID's
+#define SSID_SAHARA_PROTO				0x0018	// 100022 Sahara prototype (XenPak) board
+#define SSID_SAHARA_FIBER				0x0019	// 100023 Sahara 1-port fiber board
+#define SSID_SAHARA_COPPER				0x001A	// 100024 Sahara 1-port copper board
+
+// Useful SSID macros
+#define	SSID_BASE(ssid)			((ssid) & SSID_BASE_MASK)		// isolate base SSID bits
+#define	SSID_OEM(ssid)			((ssid) & SSID_OEM_MASK)		// isolate SSID OEM bits
+#define	SSID_FUNC(ssid)			((ssid) & SSID_FUNC_MASK)		// isolate SSID function bits
+
+/*******************************************************************************
+ * HW Register Space
+ *******************************************************************************/
+#define SXG_HWREG_MEMSIZE	0x4000		// 16k
+
+#pragma pack(push, 1)
+typedef struct _SXG_HW_REGS {
+	u32		Reset;				// Write 0xdead to invoke soft reset
+	u32		Pad1;				// No register defined at offset 4
+	u32		InterruptMask0;		// Deassert legacy interrupt on function 0
+	u32		InterruptMask1;		// Deassert legacy interrupt on function 1
+	u32		UcodeDataLow;		// Store microcode instruction bits 31-0
+	u32		UcodeDataMiddle;	// Store microcode instruction bits 63-32
+	u32		UcodeDataHigh;		// Store microcode instruction bits 95-64
+	u32		UcodeAddr;			// Store microcode address - See flags below
+	u32		PadTo0x80[24];		// Pad to Xcv configuration registers
+	u32		MacConfig0;			// 0x80 - AXGMAC Configuration Register 0
+	u32		MacConfig1;			// 0x84 - AXGMAC Configuration Register 1
+	u32		MacConfig2;			// 0x88 - AXGMAC Configuration Register 2
+	u32		MacConfig3;			// 0x8C - AXGMAC Configuration Register 3
+	u32		MacAddressLow;		// 0x90 - AXGMAC MAC Station Address - octets 1-4
+	u32		MacAddressHigh;		// 0x94 - AXGMAC MAC Station Address - octets 5-6
+	u32		MacReserved1[2];	// 0x98 - AXGMAC Reserved
+	u32		MacMaxFrameLen;		// 0xA0 - AXGMAC Maximum Frame Length
+	u32		MacReserved2[2];	// 0xA4 - AXGMAC Reserved
+	u32		MacRevision;		// 0xAC - AXGMAC Revision Level Register
+	u32		MacReserved3[4];	// 0xB0 - AXGMAC Reserved
+	u32		MacAmiimCmd;		// 0xC0 - AXGMAC AMIIM Command Register
+	u32		MacAmiimField;		// 0xC4 - AXGMAC AMIIM Field Register
+	u32		MacAmiimConfig;		// 0xC8 - AXGMAC AMIIM Configuration Register
+	u32		MacAmiimLink;		// 0xCC - AXGMAC AMIIM Link Fail Vector Register
+	u32		MacAmiimIndicator;	// 0xD0 - AXGMAC AMIIM Indicator Registor
+	u32		PadTo0x100[11];		// 0xD4 - 0x100 - Pad
+	u32		XmtConfig;			// 0x100 - Transmit Configuration Register
+	u32		RcvConfig;			// 0x104 - Receive Configuration Register 1
+	u32		LinkAddress0Low;	// 0x108 - Link address 0
+	u32		LinkAddress0High;	// 0x10C - Link address 0
+	u32		LinkAddress1Low;	// 0x110 - Link address 1
+	u32		LinkAddress1High;	// 0x114 - Link address 1
+	u32		LinkAddress2Low;	// 0x118 - Link address 2
+	u32		LinkAddress2High;	// 0x11C - Link address 2
+	u32		LinkAddress3Low;	// 0x120 - Link address 3
+	u32		LinkAddress3High;	// 0x124 - Link address 3
+	u32		ToeplitzKey[10];	// 0x128 - 0x150 - Toeplitz key
+	u32		SocketKey[10];		// 0x150 - 0x178 - Socket Key
+	u32		LinkStatus;			// 0x178 - Link status
+	u32		ClearStats;			// 0x17C - Clear Stats
+	u32		XmtErrorsLow;		// 0x180 - Transmit stats - errors
+	u32		XmtErrorsHigh;		// 0x184 - Transmit stats - errors
+	u32		XmtFramesLow;		// 0x188 - Transmit stats - frame count
+	u32		XmtFramesHigh;		// 0x18C - Transmit stats - frame count
+	u32		XmtBytesLow;		// 0x190 - Transmit stats - byte count
+	u32		XmtBytesHigh;		// 0x194 - Transmit stats - byte count
+	u32		XmtTcpSegmentsLow;	// 0x198 - Transmit stats - TCP segments
+	u32		XmtTcpSegmentsHigh;	// 0x19C - Transmit stats - TCP segments
+	u32		XmtTcpBytesLow;		// 0x1A0 - Transmit stats - TCP bytes
+	u32		XmtTcpBytesHigh;	// 0x1A4 - Transmit stats - TCP bytes
+	u32		RcvErrorsLow;		// 0x1A8 - Receive stats - errors
+	u32		RcvErrorsHigh;		// 0x1AC - Receive stats - errors
+	u32		RcvFramesLow;		// 0x1B0 - Receive stats - frame count
+	u32		RcvFramesHigh;		// 0x1B4 - Receive stats - frame count
+	u32		RcvBytesLow;		// 0x1B8 - Receive stats - byte count
+	u32		RcvBytesHigh;		// 0x1BC - Receive stats - byte count
+	u32		RcvTcpSegmentsLow;	// 0x1C0 - Receive stats - TCP segments
+	u32		RcvTcpSegmentsHigh;	// 0x1C4 - Receive stats - TCP segments
+	u32		RcvTcpBytesLow;		// 0x1C8 - Receive stats - TCP bytes
+	u32		RcvTcpBytesHigh;	// 0x1CC - Receive stats - TCP bytes
+	u32		PadTo0x200[12];		// 0x1D0 - 0x200 - Pad
+	u32		Software[1920];		// 0x200 - 0x2000 - Software defined (not used)
+	u32		MsixTable[1024];	// 0x2000 - 0x3000 - MSIX Table
+	u32		MsixBitArray[1024];	// 0x3000 - 0x4000 - MSIX Pending Bit Array
+} SXG_HW_REGS, *PSXG_HW_REGS;
+#pragma pack(pop)
+
+// Microcode Address Flags
+#define	MICROCODE_ADDRESS_GO		0x80000000	// Start microcode
+#define	MICROCODE_ADDRESS_WRITE		0x40000000	// Store microcode
+#define	MICROCODE_ADDRESS_READ		0x20000000	// Read microcode
+#define	MICROCODE_ADDRESS_PARITY	0x10000000	// Parity error detected
+#define	MICROCODE_ADDRESS_MASK		0x00001FFF	// Address bits
+
+// Link Address Registers
+#define LINK_ADDRESS_ENABLE			0x80000000	// Applied to link address high
+
+// Microsoft register space size
+#define SXG_UCODEREG_MEMSIZE	0x40000		// 256k
+
+// Sahara microcode register address format.  The command code,
+// extended command code, and associated processor are encoded in
+// the address bits as follows
+#define SXG_ADDRESS_CODE_SHIFT		2			// Base command code
+#define SXG_ADDRESS_CODE_MASK		0x0000003C
+#define SXG_ADDRESS_EXCODE_SHIFT	6			// Extended (or sub) command code
+#define SXG_ADDRESS_EXCODE_MASK		0x00001FC0
+#define	SXG_ADDRESS_CPUID_SHIFT		13			// CPU
+#define SXG_ADDRESS_CPUID_MASK		0x0003E000
+#define SXG_REGISTER_SIZE_PER_CPU	0x00002000	// Used to sanity check UCODE_REGS structure
+
+// Sahara receive sequencer status values
+#define SXG_RCV_STATUS_ATTN					0x80000000	// Attention
+#define SXG_RCV_STATUS_TRANSPORT_MASK		0x3F000000	// Transport mask
+#define SXG_RCV_STATUS_TRANSPORT_ERROR		0x20000000	// Transport error
+#define SXG_RCV_STATUS_TRANSPORT_CSUM		0x23000000	// Transport cksum error
+#define SXG_RCV_STATUS_TRANSPORT_UFLOW		0x22000000	// Transport underflow
+#define SXG_RCV_STATUS_TRANSPORT_HDRLEN		0x20000000	// Transport header length
+#define SXG_RCV_STATUS_TRANSPORT_FLAGS		0x10000000	// Transport flags detected
+#define SXG_RCV_STATUS_TRANSPORT_OPTS		0x08000000	// Transport options detected
+#define SXG_RCV_STATUS_TRANSPORT_SESS_MASK	0x07000000	// Transport DDP
+#define SXG_RCV_STATUS_TRANSPORT_DDP		0x06000000	// Transport DDP
+#define SXG_RCV_STATUS_TRANSPORT_iSCSI		0x05000000	// Transport iSCSI
+#define SXG_RCV_STATUS_TRANSPORT_NFS		0x04000000	// Transport NFS
+#define SXG_RCV_STATUS_TRANSPORT_FTP		0x03000000	// Transport FTP
+#define SXG_RCV_STATUS_TRANSPORT_HTTP		0x02000000	// Transport HTTP
+#define SXG_RCV_STATUS_TRANSPORT_SMB		0x01000000	// Transport SMB
+#define SXG_RCV_STATUS_NETWORK_MASK			0x00FF0000	// Network mask
+#define SXG_RCV_STATUS_NETWORK_ERROR		0x00800000	// Network error
+#define SXG_RCV_STATUS_NETWORK_CSUM			0x00830000	// Network cksum error
+#define SXG_RCV_STATUS_NETWORK_UFLOW		0x00820000	// Network underflow error
+#define SXG_RCV_STATUS_NETWORK_HDRLEN		0x00800000	// Network header length
+#define SXG_RCV_STATUS_NETWORK_OFLOW		0x00400000	// Network overflow detected
+#define SXG_RCV_STATUS_NETWORK_MCAST		0x00200000	// Network multicast detected
+#define SXG_RCV_STATUS_NETWORK_OPTIONS		0x00100000	// Network options detected
+#define SXG_RCV_STATUS_NETWORK_OFFSET		0x00080000	// Network offset detected
+#define SXG_RCV_STATUS_NETWORK_FRAGMENT		0x00040000	// Network fragment detected
+#define SXG_RCV_STATUS_NETWORK_TRANS_MASK	0x00030000	// Network transport type mask
+#define SXG_RCV_STATUS_NETWORK_UDP			0x00020000	// UDP
+#define SXG_RCV_STATUS_NETWORK_TCP			0x00010000	// TCP
+#define SXG_RCV_STATUS_IPONLY				0x00008000	// IP-only not TCP
+#define SXG_RCV_STATUS_PKT_PRI				0x00006000	// Receive priority
+#define SXG_RCV_STATUS_PKT_PRI_SHFT					13	// Receive priority shift
+#define SXG_RCV_STATUS_PARITY				0x00001000	// MAC Receive RAM parity error
+#define SXG_RCV_STATUS_ADDRESS_MASK			0x00000F00	// Link address detection mask
+#define SXG_RCV_STATUS_ADDRESS_D			0x00000B00	// Link address D
+#define SXG_RCV_STATUS_ADDRESS_C			0x00000A00	// Link address C
+#define SXG_RCV_STATUS_ADDRESS_B			0x00000900	// Link address B
+#define SXG_RCV_STATUS_ADDRESS_A			0x00000800	// Link address A
+#define SXG_RCV_STATUS_ADDRESS_BCAST		0x00000300	// Link address broadcast
+#define SXG_RCV_STATUS_ADDRESS_MCAST		0x00000200	// Link address multicast
+#define SXG_RCV_STATUS_ADDRESS_CMCAST		0x00000100	// Link control multicast
+#define SXG_RCV_STATUS_LINK_MASK			0x000000FF	// Link status mask
+#define SXG_RCV_STATUS_LINK_ERROR			0x00000080	// Link error
+#define SXG_RCV_STATUS_LINK_MASK			0x000000FF	// Link status mask
+#define SXG_RCV_STATUS_LINK_PARITY			0x00000087	// RcvMacQ parity error
+#define SXG_RCV_STATUS_LINK_EARLY			0x00000086	// Data early
+#define SXG_RCV_STATUS_LINK_BUFOFLOW		0x00000085	// Buffer overflow
+#define SXG_RCV_STATUS_LINK_CODE			0x00000084	// Link code error
+#define SXG_RCV_STATUS_LINK_DRIBBLE			0x00000083	// Dribble nibble
+#define SXG_RCV_STATUS_LINK_CRC				0x00000082	// CRC error
+#define SXG_RCV_STATUS_LINK_OFLOW			0x00000081	// Link overflow
+#define SXG_RCV_STATUS_LINK_UFLOW			0x00000080	// Link underflow
+#define SXG_RCV_STATUS_LINK_8023			0x00000020	// 802.3
+#define SXG_RCV_STATUS_LINK_SNAP			0x00000010	// Snap
+#define SXG_RCV_STATUS_LINK_VLAN			0x00000008	// VLAN
+#define SXG_RCV_STATUS_LINK_TYPE_MASK		0x00000007	// Network type mask
+#define SXG_RCV_STATUS_LINK_CONTROL			0x00000003	// Control packet
+#define SXG_RCV_STATUS_LINK_IPV6			0x00000002	// IPv6 packet
+#define SXG_RCV_STATUS_LINK_IPV4			0x00000001	// IPv4 packet
+
+/***************************************************************************
+ * Sahara receive and transmit configuration registers
+ ***************************************************************************/
+#define	RCV_CONFIG_RESET			0x80000000	// RcvConfig register reset
+#define	RCV_CONFIG_ENABLE			0x40000000	// Enable the receive logic
+#define	RCV_CONFIG_ENPARSE			0x20000000	// Enable the receive parser
+#define	RCV_CONFIG_SOCKET			0x10000000	// Enable the socket detector
+#define	RCV_CONFIG_RCVBAD			0x08000000	// Receive all bad frames
+#define	RCV_CONFIG_CONTROL			0x04000000	// Receive all control frames
+#define	RCV_CONFIG_RCVPAUSE			0x02000000	// Enable pause transmit when attn
+#define	RCV_CONFIG_TZIPV6			0x01000000	// Include TCP port w/ IPv6 toeplitz
+#define	RCV_CONFIG_TZIPV4			0x00800000	// Include TCP port w/ IPv4 toeplitz
+#define	RCV_CONFIG_FLUSH			0x00400000	// Flush buffers
+#define	RCV_CONFIG_PRIORITY_MASK	0x00300000	// Priority level
+#define	RCV_CONFIG_HASH_MASK		0x00030000	// Hash depth
+#define	RCV_CONFIG_HASH_8			0x00000000	// Hash depth 8
+#define	RCV_CONFIG_HASH_16			0x00010000	// Hash depth 16
+#define	RCV_CONFIG_HASH_4			0x00020000	// Hash depth 4
+#define	RCV_CONFIG_HASH_2			0x00030000	// Hash depth 2
+#define	RCV_CONFIG_BUFLEN_MASK		0x0000FFF0	// Buffer length bits 15:4. ie multiple of 16.
+#define RCV_CONFIG_SKT_DIS			0x00000008	// Disable socket detection on attn
+// Macro to determine RCV_CONFIG_BUFLEN based on maximum frame size.
+// We add 18 bytes for Sahara receive status and padding, plus 4 bytes for CRC,
+// and round up to nearest 16 byte boundary
+#define RCV_CONFIG_BUFSIZE(_MaxFrame) ((((_MaxFrame) + 22) + 15) & RCV_CONFIG_BUFLEN_MASK)
+
+#define	XMT_CONFIG_RESET			0x80000000	// XmtConfig register reset
+#define	XMT_CONFIG_ENABLE			0x40000000	// Enable transmit logic
+#define	XMT_CONFIG_MAC_PARITY		0x20000000	// Inhibit MAC RAM parity error
+#define	XMT_CONFIG_BUF_PARITY		0x10000000	// Inhibit D2F buffer parity error
+#define	XMT_CONFIG_MEM_PARITY		0x08000000	// Inhibit 1T SRAM parity error
+#define	XMT_CONFIG_INVERT_PARITY	0x04000000	// Invert MAC RAM parity
+#define	XMT_CONFIG_INITIAL_IPID		0x0000FFFF	// Initial IPID
+
+/***************************************************************************
+ * A-XGMAC Registers - Occupy 0x80 - 0xD4 of the SXG_HW_REGS
+ *
+ * Full register descriptions can be found in axgmac.pdf
+ ***************************************************************************/
+// A-XGMAC Configuration Register 0
+#define AXGMAC_CFG0_SUB_RESET		0x80000000		// Sub module reset
+#define AXGMAC_CFG0_RCNTRL_RESET	0x00400000		// Receive control reset
+#define AXGMAC_CFG0_RFUNC_RESET		0x00200000		// Receive function reset
+#define AXGMAC_CFG0_TCNTRL_RESET	0x00040000		// Transmit control reset
+#define AXGMAC_CFG0_TFUNC_RESET		0x00020000		// Transmit function reset
+#define AXGMAC_CFG0_MII_RESET		0x00010000		// MII Management reset
+
+// A-XGMAC Configuration Register 1
+#define AXGMAC_CFG1_XMT_PAUSE		0x80000000		// Allow the sending of Pause frames
+#define AXGMAC_CFG1_XMT_EN			0x40000000		// Enable transmit
+#define AXGMAC_CFG1_RCV_PAUSE		0x20000000		// Allow the detection of Pause frames
+#define AXGMAC_CFG1_RCV_EN			0x10000000		// Enable receive
+#define AXGMAC_CFG1_XMT_STATE		0x04000000		// Current transmit state - READ ONLY
+#define AXGMAC_CFG1_RCV_STATE		0x01000000		// Current receive state - READ ONLY
+#define AXGMAC_CFG1_XOFF_SHORT		0x00001000		// Only pause for 64 slot on XOFF
+#define AXGMAC_CFG1_XMG_FCS1		0x00000400		// Delay transmit FCS 1 4-byte word
+#define AXGMAC_CFG1_XMG_FCS2		0x00000800		// Delay transmit FCS 2 4-byte words
+#define AXGMAC_CFG1_XMG_FCS3		0x00000C00		// Delay transmit FCS 3 4-byte words
+#define AXGMAC_CFG1_RCV_FCS1		0x00000100		// Delay receive FCS 1 4-byte word
+#define AXGMAC_CFG1_RCV_FCS2		0x00000200		// Delay receive FCS 2 4-byte words
+#define AXGMAC_CFG1_RCV_FCS3		0x00000300		// Delay receive FCS 3 4-byte words
+#define AXGMAC_CFG1_PKT_OVERRIDE	0x00000080		// Per-packet override enable
+#define AXGMAC_CFG1_SWAP			0x00000040		// Byte swap enable
+#define AXGMAC_CFG1_SHORT_ASSERT	0x00000020		// ASSERT srdrpfrm on short frame (<64)
+#define AXGMAC_CFG1_RCV_STRICT		0x00000010		// RCV only 802.3AE when CLEAR
+#define AXGMAC_CFG1_CHECK_LEN		0x00000008		// Verify frame length
+#define AXGMAC_CFG1_GEN_FCS			0x00000004		// Generate FCS
+#define AXGMAC_CFG1_PAD_MASK		0x00000003		// Mask for pad bits
+#define AXGMAC_CFG1_PAD_64			0x00000001		// Pad frames to 64 bytes
+#define AXGMAC_CFG1_PAD_VLAN		0x00000002		// Detect VLAN and pad to 68 bytes
+#define AXGMAC_CFG1_PAD_68			0x00000003		// Pad to 68 bytes
+
+// A-XGMAC Configuration Register 2
+#define AXGMAC_CFG2_GEN_PAUSE		0x80000000		// Generate single pause frame (test)
+#define AXGMAC_CFG2_LF_MANUAL		0x08000000		// Manual link fault sequence
+#define AXGMAC_CFG2_LF_AUTO			0x04000000		// Auto link fault sequence
+#define AXGMAC_CFG2_LF_REMOTE		0x02000000		// Remote link fault (READ ONLY)
+#define AXGMAC_CFG2_LF_LOCAL		0x01000000		// Local link fault (READ ONLY)
+#define AXGMAC_CFG2_IPG_MASK		0x001F0000		// Inter packet gap
+#define AXGMAC_CFG2_IPG_SHIFT		16
+#define AXGMAC_CFG2_PAUSE_XMT		0x00008000		// Pause transmit module
+#define AXGMAC_CFG2_IPG_EXTEN		0x00000020		// Enable IPG extension algorithm
+#define AXGMAC_CFG2_IPGEX_MASK		0x0000001F		// IPG extension
+
+// A-XGMAC Configuration Register 3
+#define AXGMAC_CFG3_RCV_DROP		0xFFFF0000		// Receive frame drop filter
+#define AXGMAC_CFG3_RCV_DONT_CARE	0x0000FFFF		// Receive frame don't care filter
+
+// A-XGMAC Station Address Register - Octets 1-4
+#define AXGMAC_SARLOW_OCTET_ONE		0xFF000000		// First octet
+#define AXGMAC_SARLOW_OCTET_TWO		0x00FF0000		// Second octet
+#define AXGMAC_SARLOW_OCTET_THREE	0x0000FF00		// Third octet
+#define AXGMAC_SARLOW_OCTET_FOUR	0x000000FF		// Fourth octet
+
+// A-XGMAC Station Address Register - Octets 5-6
+#define AXGMAC_SARHIGH_OCTET_FIVE	0xFF000000		// Fifth octet
+#define AXGMAC_SARHIGH_OCTET_SIX	0x00FF0000		// Sixth octet
+
+// A-XGMAC Maximum frame length register
+#define AXGMAC_MAXFRAME_XMT			0x3FFF0000		// Maximum transmit frame length
+#define AXGMAC_MAXFRAME_XMT_SHIFT	16
+#define AXGMAC_MAXFRAME_RCV			0x0000FFFF		// Maximum receive frame length
+// This register doesn't need to be written for standard MTU.
+// For jumbo, I'll just statically define the value here.  This
+// value sets the receive byte count to 9036 (0x234C) and the
+// transmit WORD count to 2259 (0x8D3).  These values include 22
+// bytes of padding beyond the jumbo MTU of 9014
+#define AXGMAC_MAXFRAME_JUMBO		0x08D3234C
+
+// A-XGMAC Revision level
+#define AXGMAC_REVISION_MASK		0x0000FFFF		// Revision level
+
+// A-XGMAC AMIIM Command Register
+#define AXGMAC_AMIIM_CMD_START		0x00000008		// Command start
+#define AXGMAC_AMIIM_CMD_MASK		0x00000007		// Command
+#define AXGMAC_AMIIM_CMD_LEGACY_WRITE		1		// 10/100/1000 Mbps Phy Write
+#define AXGMAC_AMIIM_CMD_LEGACY_READ		2		// 10/100/1000 Mbps Phy Read
+#define AXGMAC_AMIIM_CMD_MONITOR_SINGLE		3		// Monitor single PHY
+#define AXGMAC_AMIIM_CMD_MONITOR_MULTIPLE	4		// Monitor multiple contiguous PHYs
+#define AXGMAC_AMIIM_CMD_10G_OPERATION		5		// Present AMIIM Field Reg
+#define AXGMAC_AMIIM_CMD_CLEAR_LINK_FAIL	6		// Clear Link Fail Bit in MIIM
+
+// A-XGMAC AMIIM Field Register
+#define AXGMAC_AMIIM_FIELD_ST		0xC0000000		// 2-bit ST field
+#define AXGMAC_AMIIM_FIELD_ST_SHIFT			30
+#define AXGMAC_AMIIM_FIELD_OP		0x30000000		// 2-bit OP field
+#define AXGMAC_AMIIM_FIELD_OP_SHIFT			28
+#define AXGMAC_AMIIM_FIELD_PORT_ADDR 0x0F800000		// Port address field (hstphyadx in spec)
+#define AXGMAC_AMIIM_FIELD_PORT_SHIFT		23
+#define AXGMAC_AMIIM_FIELD_DEV_ADDR	0x007C0000		// Device address field (hstregadx in spec)
+#define AXGMAC_AMIIM_FIELD_DEV_SHIFT		18
+#define AXGMAC_AMIIM_FIELD_TA		0x00030000		// 2-bit TA field
+#define AXGMAC_AMIIM_FIELD_TA_SHIFT			16
+#define AXGMAC_AMIIM_FIELD_DATA		0x0000FFFF		// Data field
+
+// Values for the AXGMAC_AMIIM_FIELD_OP field in the A-XGMAC AMIIM Field Register
+#define	MIIM_OP_ADDR						0		// MIIM Address set operation
+#define	MIIM_OP_WRITE						1		// MIIM Write register operation
+#define	MIIM_OP_READ						2		// MIIM Read register operation
+#define	MIIM_OP_ADDR_SHIFT	(MIIM_OP_ADDR << AXGMAC_AMIIM_FIELD_OP_SHIFT)
+
+// Values for the AXGMAC_AMIIM_FIELD_PORT_ADDR field in the A-XGMAC AMIIM Field Register
+#define	MIIM_PORT_NUM						1		// All Sahara MIIM modules use port 1
+
+// Values for the AXGMAC_AMIIM_FIELD_DEV_ADDR field in the A-XGMAC AMIIM Field Register
+#define	MIIM_DEV_PHY_PMA					1		// PHY PMA/PMD module MIIM device number
+#define	MIIM_DEV_PHY_PCS					3		// PHY PCS module MIIM device number
+#define	MIIM_DEV_PHY_XS						4		// PHY XS module MIIM device number
+#define	MIIM_DEV_XGXS						5		// XGXS MIIM device number
+
+// Values for the AXGMAC_AMIIM_FIELD_TA field in the A-XGMAC AMIIM Field Register
+#define	MIIM_TA_10GB						2		// set to 2 for 10 GB operation
+
+// A-XGMAC AMIIM Configuration Register
+#define AXGMAC_AMIIM_CFG_NOPREAM	0x00000080		// Bypass preamble of mngmt frame
+#define AXGMAC_AMIIM_CFG_HALF_CLOCK	0x0000007F		// half-clock duration of MDC output
+
+// A-XGMAC AMIIM Indicator Register
+#define AXGMAC_AMIIM_INDC_LINK		0x00000010		// Link status from legacy PHY or MMD
+#define AXGMAC_AMIIM_INDC_MPHY		0x00000008		// Multiple phy operation in progress
+#define AXGMAC_AMIIM_INDC_SPHY		0x00000004		// Single phy operation in progress
+#define AXGMAC_AMIIM_INDC_MON		0x00000002		// Single or multiple monitor cmd
+#define AXGMAC_AMIIM_INDC_BUSY		0x00000001		// Set until cmd operation complete
+
+// Link Status and Control Register
+#define	LS_PHY_CLR_RESET			0x80000000		// Clear reset signal to PHY
+#define	LS_SERDES_POWER_DOWN		0x40000000		// Power down the Sahara Serdes
+#define	LS_XGXS_ENABLE				0x20000000		// Enable the XAUI XGXS logic
+#define	LS_XGXS_CTL					0x10000000		// Hold XAUI XGXS logic reset until Serdes is up
+#define	LS_SERDES_DOWN				0x08000000		// When 0, XAUI Serdes is up and initialization is complete
+#define	LS_TRACE_DOWN				0x04000000		// When 0, Trace Serdes is up and initialization is complete
+#define	LS_PHY_CLK_25MHZ			0x02000000		// Set PHY clock to 25 MHz (else 156.125 MHz)
+#define	LS_PHY_CLK_EN				0x01000000		// Enable clock to PHY
+#define	LS_XAUI_LINK_UP				0x00000010		// XAUI link is up
+#define	LS_XAUI_LINK_CHNG			0x00000008		// XAUI link status has changed
+#define	LS_LINK_ALARM				0x00000004		// Link alarm pin
+#define	LS_ATTN_CTRL_MASK			0x00000003		// Mask link attention control bits
+#define	LS_ATTN_ALARM				0x00000000		// 00 => Attn on link alarm
+#define	LS_ATTN_ALARM_OR_STAT_CHNG	0x00000001		// 01 => Attn on link alarm or status change
+#define	LS_ATTN_STAT_CHNG			0x00000002		// 10 => Attn on link status change
+#define	LS_ATTN_NONE				0x00000003		// 11 => no Attn
+
+// Link Address High Registers
+#define	LINK_ADDR_ENABLE			0x80000000		// Enable this link address
+
+
+/***************************************************************************
+ * XGXS XAUI XGMII Extender registers
+ *
+ * Full register descriptions can be found in mxgxs.pdf
+ ***************************************************************************/
+// XGXS Register Map
+#define XGXS_ADDRESS_CONTROL1		0x0000			// XS Control 1
+#define XGXS_ADDRESS_STATUS1		0x0001			// XS Status 1
+#define XGXS_ADDRESS_DEVID_LOW		0x0002			// XS Device ID (low)
+#define XGXS_ADDRESS_DEVID_HIGH		0x0003			// XS Device ID (high)
+#define XGXS_ADDRESS_SPEED			0x0004			// XS Speed ability
+#define XGXS_ADDRESS_DEV_LOW		0x0005			// XS Devices in package
+#define XGXS_ADDRESS_DEV_HIGH		0x0006			// XS Devices in package
+#define XGXS_ADDRESS_STATUS2		0x0008			// XS Status 2
+#define XGXS_ADDRESS_PKGID_lOW		0x000E			// XS Package Identifier
+#define XGXS_ADDRESS_PKGID_HIGH		0x000F			// XS Package Identifier
+#define XGXS_ADDRESS_LANE_STATUS	0x0018			// 10G XGXS Lane Status
+#define XGXS_ADDRESS_TEST_CTRL		0x0019			// 10G XGXS Test Control
+#define XGXS_ADDRESS_RESET_LO1		0x8000			// Vendor-Specific Reset Lo 1
+#define XGXS_ADDRESS_RESET_LO2		0x8001			// Vendor-Specific Reset Lo 2
+#define XGXS_ADDRESS_RESET_HI1		0x8002			// Vendor-Specific Reset Hi 1
+#define XGXS_ADDRESS_RESET_HI2		0x8003			// Vendor-Specific Reset Hi 2
+
+// XS Control 1 register bit definitions
+#define XGXS_CONTROL1_RESET			0x8000			// Reset - self clearing
+#define XGXS_CONTROL1_LOOPBACK		0x4000			// Enable loopback
+#define XGXS_CONTROL1_SPEED1		0x2000			// 0 = unspecified, 1 = 10Gb+
+#define XGXS_CONTROL1_LOWPOWER		0x0400			// 1 = Low power mode
+#define XGXS_CONTROL1_SPEED2		0x0040			// Same as SPEED1 (?)
+#define XGXS_CONTROL1_SPEED			0x003C			// Everything reserved except zero (?)
+
+// XS Status 1 register bit definitions
+#define XGXS_STATUS1_FAULT			0x0080			// Fault detected
+#define XGXS_STATUS1_LINK			0x0004			// 1 = Link up
+#define XGXS_STATUS1_LOWPOWER		0x0002			// 1 = Low power supported
+
+// XS Speed register bit definitions
+#define XGXS_SPEED_10G				0x0001			// 1 = 10G capable
+
+// XS Devices register bit definitions
+#define XGXS_DEVICES_DTE			0x0020			// DTE XS Present
+#define XGXS_DEVICES_PHY			0x0010			// PHY XS Present
+#define XGXS_DEVICES_PCS			0x0008			// PCS Present
+#define XGXS_DEVICES_WIS			0x0004			// WIS Present
+#define XGXS_DEVICES_PMD			0x0002			// PMD/PMA Present
+#define XGXS_DEVICES_CLAUSE22		0x0001			// Clause 22 registers present
+
+// XS Devices High register bit definitions
+#define XGXS_DEVICES_VENDOR2		0x8000			// Vendor specific device 2
+#define XGXS_DEVICES_VENDOR1		0x4000			// Vendor specific device 1
+
+// XS Status 2 register bit definitions
+#define XGXS_STATUS2_DEV_MASK		0xC000			// Device present mask
+#define XGXS_STATUS2_DEV_RESPOND	0x8000			// Device responding
+#define XGXS_STATUS2_XMT_FAULT		0x0800			// Transmit fault
+#define XGXS_STATUS2_RCV_FAULT		0x0400			// Receive fault
+
+// XS Package ID High register bit definitions
+#define XGXS_PKGID_HIGH_ORG			0xFC00			// Organizationally Unique
+#define XGXS_PKGID_HIGH_MFG			0x03F0			// Manufacturer Model
+#define XGXS_PKGID_HIGH_REV			0x000F			// Revision Number
+
+// XS Lane Status register bit definitions
+#define XGXS_LANE_PHY				0x1000			// PHY/DTE lane alignment status
+#define XGXS_LANE_PATTERN			0x0800			// Pattern testing ability
+#define XGXS_LANE_LOOPBACK			0x0400			// PHY loopback ability
+#define XGXS_LANE_SYNC3				0x0008			// Lane 3 sync
+#define XGXS_LANE_SYNC2				0x0004			// Lane 2 sync
+#define XGXS_LANE_SYNC1				0x0002			// Lane 1 sync
+#define XGXS_LANE_SYNC0				0x0001			// Lane 0 sync
+
+// XS Test Control register bit definitions
+#define XGXS_TEST_PATTERN_ENABLE	0x0004			// Test pattern enabled
+#define XGXS_TEST_PATTERN_MASK		0x0003			// Test patterns
+#define XGXS_TEST_PATTERN_RSVD		0x0003			// Test pattern - reserved
+#define XGXS_TEST_PATTERN_MIX		0x0002			// Test pattern - mixed
+#define XGXS_TEST_PATTERN_LOW		0x0001			// Test pattern - low
+#define XGXS_TEST_PATTERN_HIGH		0x0001			// Test pattern - high
+
+/***************************************************************************
+ * External MDIO Bus Registers
+ *
+ * Full register descriptions can be found in PHY/XENPAK/IEEE specs
+ ***************************************************************************/
+// LASI (Link Alarm Status Interrupt) Registers (located in MIIM_DEV_PHY_PMA device)
+#define LASI_RX_ALARM_CONTROL		0x9000			// LASI RX_ALARM Control
+#define LASI_TX_ALARM_CONTROL		0x9001			// LASI TX_ALARM Control
+#define LASI_CONTROL				0x9002			// LASI Control
+#define LASI_RX_ALARM_STATUS		0x9003			// LASI RX_ALARM Status
+#define LASI_TX_ALARM_STATUS		0x9004			// LASI TX_ALARM Status
+#define LASI_STATUS					0x9005			// LASI Status
+
+// LASI_CONTROL bit definitions
+#define	LASI_CTL_RX_ALARM_ENABLE	0x0004			// Enable RX_ALARM interrupts
+#define	LASI_CTL_TX_ALARM_ENABLE	0x0002			// Enable TX_ALARM interrupts
+#define	LASI_CTL_LS_ALARM_ENABLE	0x0001			// Enable Link Status interrupts
+
+// LASI_STATUS bit definitions
+#define	LASI_STATUS_RX_ALARM		0x0004			// RX_ALARM status
+#define	LASI_STATUS_TX_ALARM		0x0002			// TX_ALARM status
+#define	LASI_STATUS_LS_ALARM		0x0001			// Link Status
+
+// PHY registers - PMA/PMD (device 1)
+#define	PHY_PMA_CONTROL1			0x0000			// PMA/PMD Control 1
+#define	PHY_PMA_STATUS1				0x0001			// PMA/PMD Status 1
+#define	PHY_PMA_RCV_DET				0x000A			// PMA/PMD Receive Signal Detect
+		// other PMA/PMD registers exist and can be defined as needed
+
+// PHY registers - PCS (device 3)
+#define	PHY_PCS_CONTROL1			0x0000			// PCS Control 1
+#define	PHY_PCS_STATUS1				0x0001			// PCS Status 1
+#define	PHY_PCS_10G_STATUS1			0x0020			// PCS 10GBASE-R Status 1
+		// other PCS registers exist and can be defined as needed
+
+// PHY registers - XS (device 4)
+#define	PHY_XS_CONTROL1				0x0000			// XS Control 1
+#define	PHY_XS_STATUS1				0x0001			// XS Status 1
+#define	PHY_XS_LANE_STATUS			0x0018			// XS Lane Status
+		// other XS registers exist and can be defined as needed
+
+// PHY_PMA_CONTROL1 register bit definitions
+#define	PMA_CONTROL1_RESET			0x8000			// PMA/PMD reset
+
+// PHY_PMA_RCV_DET register bit definitions
+#define	PMA_RCV_DETECT				0x0001			// PMA/PMD receive signal detect
+
+// PHY_PCS_10G_STATUS1 register bit definitions
+#define	PCS_10B_BLOCK_LOCK			0x0001			// PCS 10GBASE-R locked to receive blocks
+
+// PHY_XS_LANE_STATUS register bit definitions
+#define	XS_LANE_ALIGN				0x1000			// XS transmit lanes aligned
+
+// PHY Microcode download data structure
+typedef struct _PHY_UCODE {
+	ushort	Addr;
+	ushort	Data;
+} PHY_UCODE, *PPHY_UCODE;
+
+
+/*****************************************************************************
+ * Transmit Sequencer Command Descriptor definitions
+ *****************************************************************************/
+
+// This descriptor must be placed in GRAM.  The address of this descriptor
+// (along with a couple of control bits) is pushed onto the PxhCmdQ or PxlCmdQ
+// (Proxy high or low command queue).  This data is read by the Proxy Sequencer,
+// which pushes it onto the XmtCmdQ, which is (eventually) read by the Transmit
+// Sequencer, causing a packet to be transmitted.  Not all fields are valid for
+// all commands - see the Sahara spec for details.  Note that this structure is
+// only valid when compiled on a little endian machine.
+#pragma pack(push, 1)
+typedef struct _XMT_DESC {
+	ushort	XmtLen;			// word 0, bits [15:0] -  transmit length
+	unsigned char	XmtCtl;			// word 0, bits [23:16] - transmit control byte
+	unsigned char	Cmd;			// word 0, bits [31:24] - transmit command plus misc.
+	u32	XmtBufId;		// word 1, bits [31:0] -  transmit buffer ID
+	unsigned char	TcpStrt;		// word 2, bits [7:0] -   byte address of TCP header
+	unsigned char	IpStrt;			// word 2, bits [15:8] -  byte address of IP header
+	ushort	IpCkSum;		// word 2, bits [31:16] - partial IP checksum
+	ushort	TcpCkSum;		// word 3, bits [15:0] -  partial TCP checksum
+	ushort	Rsvd1;			// word 3, bits [31:16] - PAD
+	u32	Rsvd2;			// word 4, bits [31:0] -  PAD
+	u32	Rsvd3;			// word 5, bits [31:0] -  PAD
+	u32	Rsvd4;		    // word 6, bits [31:0] -  PAD
+	u32	Rsvd5;		    // word 7, bits [31:0] -  PAD
+} XMT_DESC, *PXMT_DESC;
+#pragma pack(pop)
+
+// XMT_DESC Cmd byte definitions
+		// command codes
+#define XMT_DESC_CMD_RAW_SEND		0		// raw send descriptor
+#define XMT_DESC_CMD_CSUM_INSERT	1		// checksum insert descriptor
+#define XMT_DESC_CMD_FORMAT			2		// format descriptor
+#define XMT_DESC_CMD_PRIME			3		// prime descriptor
+#define XMT_DESC_CMD_CODE_SHFT		6		// comand code shift (shift to bits [31:30] in word 0)
+		// shifted command codes
+#define XMT_RAW_SEND		(XMT_DESC_CMD_RAW_SEND    << XMT_DESC_CMD_CODE_SHFT)
+#define XMT_CSUM_INSERT		(XMT_DESC_CMD_CSUM_INSERT << XMT_DESC_CMD_CODE_SHFT)
+#define XMT_FORMAT			(XMT_DESC_CMD_FORMAT      << XMT_DESC_CMD_CODE_SHFT)
+#define XMT_PRIME			(XMT_DESC_CMD_PRIME       << XMT_DESC_CMD_CODE_SHFT)
+
+// XMT_DESC Control Byte (XmtCtl) definitions
+// NOTE:  These bits do not work on Sahara (Rev A)!
+#define	XMT_CTL_PAUSE_FRAME			0x80	// current frame is a pause control frame (for statistics)
+#define	XMT_CTL_CONTROL_FRAME		0x40	// current frame is a control frame (for statistics)
+#define	XMT_CTL_PER_PKT_QUAL		0x20	// per packet qualifier
+#define	XMT_CTL_PAD_MODE_NONE		0x00	// do not pad frame
+#define	XMT_CTL_PAD_MODE_64			0x08	// pad frame to 64 bytes
+#define	XMT_CTL_PAD_MODE_VLAN_68	0x10	// pad frame to 64 bytes, and VLAN frames to 68 bytes
+#define	XMT_CTL_PAD_MODE_68			0x18	// pad frame to 68 bytes
+#define	XMT_CTL_GEN_FCS				0x04	// generate FCS (CRC) for this frame
+#define	XMT_CTL_DELAY_FCS_0			0x00	// do not delay FCS calcution
+#define	XMT_CTL_DELAY_FCS_1			0x01	// delay FCS calculation by 1 (4-byte) word
+#define	XMT_CTL_DELAY_FCS_2			0x02	// delay FCS calculation by 2 (4-byte) words
+#define	XMT_CTL_DELAY_FCS_3			0x03	// delay FCS calculation by 3 (4-byte) words
+
+// XMT_DESC XmtBufId definition
+#define XMT_BUF_ID_SHFT		8			// The Xmt buffer ID is formed by dividing
+										// the buffer (DRAM) address by 256 (or << 8)
+
+/*****************************************************************************
+ * Receiver Sequencer Definitions
+ *****************************************************************************/
+
+// Receive Event Queue (queues 3 - 6) bit definitions
+#define	RCV_EVTQ_RBFID_MASK		0x0000FFFF	// bit mask for the Receive Buffer ID
+
+// Receive Buffer ID definition
+#define RCV_BUF_ID_SHFT		5			// The Rcv buffer ID is formed by dividing
+										// the buffer (DRAM) address by 32 (or << 5)
+
+// Format of the 18 byte Receive Buffer returned by the
+// Receive Sequencer for received packets
+#pragma pack(push, 1)
+typedef struct _RCV_BUF_HDR {
+	u32	Status;				// Status word from Rcv Seq Parser
+	ushort	Length;				// Rcv packet byte count
+	union {
+		ushort		TcpCsum;	// TCP checksum
+		struct {
+			unsigned char	TcpCsumL;	// lower 8 bits of the TCP checksum
+			unsigned char	LinkHash;	// Link hash (multicast frames only)
+		};
+	};
+	ushort	SktHash;			// Socket hash
+	unsigned char	TcpHdrOffset;		// TCP header offset into packet
+	unsigned char	IpHdrOffset;		// IP header offset into packet
+	u32	TpzHash;			// Toeplitz hash
+	ushort	Reserved;			// Reserved
+} RCV_BUF_HDR, *PRCV_BUF_HDR;
+#pragma pack(pop)
+
+
+/*****************************************************************************
+ * Queue definitions
+ *****************************************************************************/
+
+// Ingress (read only) queue numbers
+#define PXY_BUF_Q		0		// Proxy Buffer Queue
+#define HST_EVT_Q		1		// Host Event Queue
+#define XMT_BUF_Q		2		// Transmit Buffer Queue
+#define SKT_EVL_Q		3		// RcvSqr Socket Event Low Priority Queue
+#define RCV_EVL_Q		4		// RcvSqr Rcv Event Low Priority Queue
+#define SKT_EVH_Q		5		// RcvSqr Socket Event High Priority Queue
+#define RCV_EVH_Q		6		// RcvSqr Rcv Event High Priority Queue
+#define DMA_RSP_Q		7		// Dma Response Queue - one per CPU context
+// Local (read/write) queue numbers
+#define LOCAL_A_Q		8		// Spare local Queue
+#define LOCAL_B_Q		9		// Spare local Queue
+#define LOCAL_C_Q		10		// Spare local Queue
+#define FSM_EVT_Q		11		// Finite-State-Machine Event Queue
+#define SBF_PAL_Q		12		// System Buffer Physical Address (low) Queue
+#define SBF_PAH_Q		13		// System Buffer Physical Address (high) Queue
+#define SBF_VAL_Q		14		// System Buffer Virtual Address (low) Queue
+#define SBF_VAH_Q		15		// System Buffer Virtual Address (high) Queue
+// Egress (write only) queue numbers
+#define H2G_CMD_Q		16		// Host to GlbRam DMA Command Queue
+#define H2D_CMD_Q		17		// Host to DRAM DMA Command Queue
+#define G2H_CMD_Q		18		// GlbRam to Host DMA Command Queue
+#define G2D_CMD_Q		19		// GlbRam to DRAM DMA Command Queue
+#define D2H_CMD_Q		20		// DRAM to Host DMA Command Queue
+#define D2G_CMD_Q		21		// DRAM to GlbRam DMA Command Queue
+#define D2D_CMD_Q		22		// DRAM to DRAM DMA Command Queue
+#define PXL_CMD_Q		23		// Low Priority Proxy Command Queue
+#define PXH_CMD_Q		24		// High Priority Proxy Command Queue
+#define RSQ_CMD_Q		25		// Receive Sequencer Command Queue
+#define RCV_BUF_Q		26		// Receive Buffer Queue
+
+// Bit definitions for the Proxy Command queues (PXL_CMD_Q and PXH_CMD_Q)
+#define PXY_COPY_EN		0x00200000		// enable copy of xmt descriptor to xmt command queue
+#define PXY_SIZE_16		0x00000000		// copy 16 bytes
+#define PXY_SIZE_32		0x00100000		// copy 32 bytes
+
+/*****************************************************************************
+ * SXG EEPROM/Flash Configuration Definitions
+ *****************************************************************************/
+#pragma pack(push, 1)
+
+//
+typedef struct _HW_CFG_DATA {
+	ushort		Addr;
+	union {
+		ushort	Data;
+		ushort	Checksum;
+	};
+} HW_CFG_DATA, *PHW_CFG_DATA;
+
+//
+#define	NUM_HW_CFG_ENTRIES	((128/sizeof(HW_CFG_DATA)) - 4)
+
+// MAC address
+typedef struct _SXG_CONFIG_MAC {
+	unsigned char		MacAddr[6];			// MAC Address
+} SXG_CONFIG_MAC, *PSXG_CONFIG_MAC;
+
+//
+typedef struct _ATK_FRU {
+	unsigned char		PartNum[6];
+	unsigned char		Revision[2];
+	unsigned char		Serial[14];
+} ATK_FRU, *PATK_FRU;
+
+// OEM FRU Format types
+#define	ATK_FRU_FORMAT		0x0000
+#define CPQ_FRU_FORMAT		0x0001
+#define DELL_FRU_FORMAT		0x0002
+#define HP_FRU_FORMAT		0x0003
+#define IBM_FRU_FORMAT		0x0004
+#define EMC_FRU_FORMAT		0x0005
+#define NO_FRU_FORMAT		0xFFFF
+
+// EEPROM/Flash Format
+typedef struct _SXG_CONFIG {
+	//
+	// Section 1 (128 bytes)
+	//
+	ushort			MagicWord;			// EEPROM/FLASH Magic code 'A5A5'
+	ushort			SpiClks;			// SPI bus clock dividers
+	HW_CFG_DATA		HwCfg[NUM_HW_CFG_ENTRIES];
+	//
+	//
+	//
+	ushort			Version;			// EEPROM format version
+	SXG_CONFIG_MAC	MacAddr[4];			// space for 4 MAC addresses
+	ATK_FRU			AtkFru;				// FRU information
+	ushort			OemFruFormat;		// OEM FRU format type
+	unsigned char			OemFru[76];			// OEM FRU information (optional)
+	ushort			Checksum;			// Checksum of section 2
+	// CS info XXXTODO
+} SXG_CONFIG, *PSXG_CONFIG;
+#pragma pack(pop)
+
+/*****************************************************************************
+ * Miscellaneous Hardware definitions
+ *****************************************************************************/
+
+// Sahara (ASIC level) defines
+#define SAHARA_GRAM_SIZE			0x020000		// GRAM size - 128 KB
+#define SAHARA_DRAM_SIZE			0x200000		// DRAM size - 2 MB
+#define SAHARA_QRAM_SIZE			0x004000		// QRAM size - 16K entries (64 KB)
+#define SAHARA_WCS_SIZE				0x002000		// WCS - 8K instructions (x 108 bits)
+
+// Arabia (board level) defines
+#define	FLASH_SIZE				0x080000		// 512 KB (4 Mb)
+#define	EEPROM_SIZE_XFMR		512				// true EEPROM size (bytes), including xfmr area
+#define	EEPROM_SIZE_NO_XFMR		256				// EEPROM size excluding xfmr area
diff --git a/drivers/staging/sxg/sxgphycode.h b/drivers/staging/sxg/sxgphycode.h
new file mode 100644
index 0000000..26b36c8
--- /dev/null
+++ b/drivers/staging/sxg/sxgphycode.h
@@ -0,0 +1,349 @@
+/*
+ * Copyright (C) 1997-2008 Alacritech, Inc. All rights reserved
+ *
+ * sxgphycode.h:
+ *
+ * This file PHY microcode and register initialization data.
+ */
+
+/**********************************************************************
+ * PHY Microcode
+ *
+ * The following contains both PHY microcode and PHY register
+ * initialization data.  It is specific to both the PHY and the
+ * type of transceiver.
+ *
+ **********************************************************************/
+
+/*
+ * Download for AEL2005C PHY with SR/LR transceiver (10GBASE-SR or 10GBASE-LR)
+ */
+static PHY_UCODE PhyUcode[] = {
+	/*
+	 * NOTE:  An address of 0 is a special case.  When the download routine
+	 * sees an address of 0, it does not write to the PHY.  Instead, it
+	 * delays the download.  The length of the delay (in ms) is given in
+	 * the data field.
+	 *
+	 * Delays are required at certain points.
+	 */
+
+	/*
+	 * Platform-specific MDIO Patches:
+	 * (include patches for 10G RX polarity flip, 50Mhz Synth, etc)
+	 */
+	/* Addr, Data */
+	{0xc017, 0xfeb0},	/* flip RX_LOS polarity (mandatory */
+				/*  patch for SFP+ applications) */
+	{0xC001, 0x0428},	/* flip RX serial polarity */
+
+	{0xc013, 0xf341},	/* invert lxmit clock (mandatory patch) */
+	{0xc210, 0x8000},	/* reset datapath (mandatory patch) */
+	{0xc210, 0x8100},	/* reset datapath (mandatory patch) */
+	{0xc210, 0x8000},	/* reset datapath (mandatory patch) */
+	{0xc210, 0x0000},	/* reset datapath (mandatory patch) */
+	{0x0000, 0x0032},	/* wait for 50ms for datapath reset to */
+				/* complete. (mandatory patch) */
+
+	/* Configure the LED's */
+	{0xc214, 0x0099},	/* configure the LED drivers */
+	{0xc216, 0x5f5f},	/* configure the Activity LED */
+	{0xc217, 0x33ff},	/* configure the Link LED */
+
+	/* Transceiver-specific MDIO Patches: */
+	{0xc010, 0x448a},	/* (bit 14) mask out high BER input from the */
+				/* LOS signal in 1.000A */
+				/* (mandatory patch for SR code)*/
+	{0xc003, 0x0181},	/* (bit 7) enable the CDR inc setting in */
+				/* 1.C005 (mandatory patch for SR code) */
+
+	/* Transceiver-specific Microcontroller Initialization: */
+	{0xc04a, 0x5200},	/* activate microcontroller and pause */
+	{0x0000, 0x0032},	/* wait 50ms for microcontroller before */
+				/* writing in code. */
+
+	/* code block starts here: */
+	{0xcc00, 0x2009},
+	{0xcc01, 0x3009},
+	{0xcc02, 0x27ff},
+	{0xcc03, 0x300f},
+	{0xcc04, 0x200c},
+	{0xcc05, 0x300c},
+	{0xcc06, 0x20c4},
+	{0xcc07, 0x3c04},
+	{0xcc08, 0x6437},
+	{0xcc09, 0x20c4},
+	{0xcc0a, 0x3c04},
+	{0xcc0b, 0x6437},
+	{0xcc0c, 0x25c4},
+	{0xcc0d, 0x3c54},
+	{0xcc0e, 0x6724},
+	{0xcc0f, 0x25c4},
+	{0xcc10, 0x3c54},
+	{0xcc11, 0x6724},
+	{0xcc12, 0x2042},
+	{0xcc13, 0x3012},
+	{0xcc14, 0x1002},
+	{0xcc15, 0x2482},
+	{0xcc16, 0x3012},
+	{0xcc17, 0x1002},
+	{0xcc18, 0x2a32},
+	{0xcc19, 0x3002},
+	{0xcc1a, 0x1002},
+	{0xcc1b, 0x200d},
+	{0xcc1c, 0x304d},
+	{0xcc1d, 0x2862},
+	{0xcc1e, 0x3012},
+	{0xcc1f, 0x1002},
+	{0xcc20, 0x2982},
+	{0xcc21, 0x3002},
+	{0xcc22, 0x1002},
+	{0xcc23, 0x628f},
+	{0xcc24, 0x20a4},
+	{0xcc25, 0x3004},
+	{0xcc26, 0x6438},
+	{0xcc27, 0x20a4},
+	{0xcc28, 0x3004},
+	{0xcc29, 0x6438},
+	{0xcc2a, 0x2015},
+	{0xcc2b, 0x3005},
+	{0xcc2c, 0x5853},
+	{0xcc2d, 0x2bd2},
+	{0xcc2e, 0x3002},
+	{0xcc2f, 0x1342},
+	{0xcc30, 0x200c},
+	{0xcc31, 0x300c},
+	{0xcc32, 0x2ff7},
+	{0xcc33, 0x30f7},
+	{0xcc34, 0x20c4},
+	{0xcc35, 0x3c04},
+	{0xcc36, 0x6724},
+	{0xcc37, 0x20c4},
+	{0xcc38, 0x3c04},
+	{0xcc39, 0x6724},
+	{0xcc3a, 0x2d32},
+	{0xcc3b, 0x3002},
+	{0xcc3c, 0x1002},
+	{0xcc3d, 0x2008},
+	{0xcc3e, 0x3008},
+	{0xcc3f, 0x5c83},
+	{0xcc40, 0x2d52},
+	{0xcc41, 0x3002},
+	{0xcc42, 0x1352},
+	{0xcc43, 0x2008},
+	{0xcc44, 0x3008},
+	{0xcc45, 0x5c83},
+	{0xcc46, 0x2d32},
+	{0xcc47, 0x3002},
+	{0xcc48, 0x1352},
+	{0xcc49, 0x201c},
+	{0xcc4a, 0x300c},
+	{0xcc4b, 0x200d},
+	{0xcc4c, 0x310d},
+	{0xcc4d, 0x2862},
+	{0xcc4e, 0x3012},
+	{0xcc4f, 0x1002},
+	{0xcc50, 0x2ed2},
+	{0xcc51, 0x3002},
+	{0xcc52, 0x1342},
+	{0xcc53, 0x6f72},
+	{0xcc54, 0x1002},
+	{0xcc55, 0x628f},
+	{0xcc56, 0x2514},
+	{0xcc57, 0x3c64},
+	{0xcc58, 0x6436},
+	{0xcc59, 0x2514},
+	{0xcc5a, 0x3c64},
+	{0xcc5b, 0x6436},
+	{0xcc5c, 0x2fa4},
+	{0xcc5d, 0x3cd4},
+	{0xcc5e, 0x6624},
+	{0xcc5f, 0x2fa4},
+	{0xcc60, 0x3cd4},
+	{0xcc61, 0x6624},
+	{0xcc62, 0x2f45},
+	{0xcc63, 0x3015},
+	{0xcc64, 0x5653},
+	{0xcc65, 0x2eb2},
+	{0xcc66, 0x3002},
+	{0xcc67, 0x13d2},
+	{0xcc68, 0x2ed2},
+	{0xcc69, 0x3002},
+	{0xcc6a, 0x1002},
+	{0xcc6b, 0x6f72},
+	{0xcc6c, 0x1002},
+	{0xcc6d, 0x628f},
+	{0xcc6e, 0x2602},
+	{0xcc6f, 0x3012},
+	{0xcc70, 0x1002},
+	{0xcc71, 0x200d},
+	{0xcc72, 0x320d},
+	{0xcc73, 0x2862},
+	{0xcc74, 0x3012},
+	{0xcc75, 0x1002},
+	{0xcc76, 0x25c4},
+	{0xcc77, 0x3c54},
+	{0xcc78, 0x6437},
+	{0xcc79, 0x25c4},
+	{0xcc7a, 0x3c54},
+	{0xcc7b, 0x6437},
+	{0xcc7c, 0x20c4},
+	{0xcc7d, 0x3c04},
+	{0xcc7e, 0x6724},
+	{0xcc7f, 0x20c4},
+	{0xcc80, 0x3c04},
+	{0xcc81, 0x6724},
+	{0xcc82, 0x6f72},
+	{0xcc83, 0x1002},
+	{0xcc84, 0x628f},
+	{0xcc85, 0x26f2},
+	{0xcc86, 0x3012},
+	{0xcc87, 0x1002},
+	{0xcc88, 0xc503},
+	{0xcc89, 0xd5d5},
+	{0xcc8a, 0xc600},
+	{0xcc8b, 0x2a6d},
+	{0xcc8c, 0xc601},
+	{0xcc8d, 0x2a4c},
+	{0xcc8e, 0xc602},
+	{0xcc8f, 0x0111},
+	{0xcc90, 0xc60c},
+	{0xcc91, 0x5900},
+	{0xcc92, 0xc710},
+	{0xcc93, 0x0700},
+	{0xcc94, 0xc718},
+	{0xcc95, 0x0700},
+	{0xcc96, 0xc720},
+	{0xcc97, 0x4700},
+	{0xcc98, 0xc801},
+	{0xcc99, 0x7f50},
+	{0xcc9a, 0xc802},
+	{0xcc9b, 0x7760},
+	{0xcc9c, 0xc803},
+	{0xcc9d, 0x7fce},
+	{0xcc9e, 0xc804},
+	{0xcc9f, 0x5700},
+	{0xcca0, 0xc805},
+	{0xcca1, 0x5f11},
+	{0xcca2, 0xc806},
+	{0xcca3, 0x4751},
+	{0xcca4, 0xc807},
+	{0xcca5, 0x57e1},
+	{0xcca6, 0xc808},
+	{0xcca7, 0x2700},
+	{0xcca8, 0xc809},
+	{0xcca9, 0x0000},
+	{0xccaa, 0xc821},
+	{0xccab, 0x0002},
+	{0xccac, 0xc822},
+	{0xccad, 0x0014},
+	{0xccae, 0xc832},
+	{0xccaf, 0x1186},
+	{0xccb0, 0xc847},
+	{0xccb1, 0x1e02},
+	{0xccb2, 0xc013},
+	{0xccb3, 0xf341},
+	{0xccb4, 0xc01a},
+	{0xccb5, 0x0446},
+	{0xccb6, 0xc024},
+	{0xccb7, 0x1000},
+	{0xccb8, 0xc025},
+	{0xccb9, 0x0a00},
+	{0xccba, 0xc026},
+	{0xccbb, 0x0c0c},
+	{0xccbc, 0xc027},
+	{0xccbd, 0x0c0c},
+	{0xccbe, 0xc029},
+	{0xccbf, 0x00a0},
+	{0xccc0, 0xc030},
+	{0xccc1, 0x0a00},
+	{0xccc2, 0xc03c},
+	{0xccc3, 0x001c},
+	{0xccc4, 0xc005},
+	{0xccc5, 0x7a06},
+	{0xccc6, 0x0000},
+	{0xccc7, 0x0000},
+	{0xccc8, 0x628f},
+	{0xccc9, 0x26f2},
+	{0xccca, 0x3012},
+	{0xcccb, 0x1002},
+	{0xcccc, 0xc620},
+	{0xcccd, 0x0000},
+	{0xccce, 0xc621},
+	{0xcccf, 0x003f},
+	{0xccd0, 0xc622},
+	{0xccd1, 0x0000},
+	{0xccd2, 0xc623},
+	{0xccd3, 0x0000},
+	{0xccd4, 0xc624},
+	{0xccd5, 0x0000},
+	{0xccd6, 0xc625},
+	{0xccd7, 0x0000},
+	{0xccd8, 0xc627},
+	{0xccd9, 0x0000},
+	{0xccda, 0xc628},
+	{0xccdb, 0x0000},
+	{0xccdc, 0xc62c},
+	{0xccdd, 0x0000},
+	{0xccde, 0x0000},
+	{0xccdf, 0x0000},
+	{0xcce0, 0x628f},
+	{0xcce1, 0xd019},
+	{0xcce2, 0x26f2},
+	{0xcce3, 0x3012},
+	{0xcce4, 0x1002},
+	{0xcce5, 0xc210},
+	{0xcce6, 0x8000},
+	{0xcce7, 0xc210},
+	{0xcce8, 0x8010},
+	{0xcce9, 0xc210},
+	{0xccea, 0x8000},
+	{0xcceb, 0xc210},
+	{0xccec, 0x0000},
+	{0xcced, 0x0000},
+	{0xccee, 0x0000},
+	{0xccef, 0x8221},
+	{0xccf0, 0x2752},
+	{0xccf1, 0x3012},
+	{0xccf2, 0x1002},
+	{0xccf3, 0x6f72},
+	{0xccf4, 0x1002},
+	{0xccf5, 0x2806},
+	{0xccf6, 0x3006},
+	{0xccf7, 0x2007},
+	{0xccf8, 0x3cc7},
+	{0xccf9, 0xe161},
+	{0xccfa, 0xc171},
+	{0xccfb, 0x6134},
+	{0xccfc, 0x6135},
+	{0xccfd, 0x5453},
+	{0xccfe, 0x2858},
+	{0xccff, 0x3018},
+	{0xcd00, 0x1348},
+	{0xcd01, 0x6524},
+	{0xcd02, 0x27b8},
+	{0xcd03, 0x3018},
+	{0xcd04, 0x1008},
+	{0xcd05, 0x1002},
+	{0xcd06, 0x628f},
+	{0xcd07, 0x5dd3},
+	{0xcd08, 0x2906},
+	{0xcd09, 0x3016},
+	{0xcd0a, 0x1306},
+	{0xcd0b, 0x2ff7},
+	{0xcd0c, 0x30f7},
+	{0xcd0d, 0x60b7},
+	{0xcd0e, 0xdffd},
+	{0xcd0f, 0x0008},
+	{0xcd10, 0x6f72},
+	{0xcd11, 0x1002},
+	{0xcd12, 0x0000},
+	{0xcdff, 0x0a01},
+	/* end of code block */
+
+	/* Unpause the microcontroller to start program */
+	{0xca00, 0x0080},
+	{0xca12, 0x0000},
+	{0x0000, 0x000A},	/* wait 10ms just to be safe */
+	{0xffff, 0xffff}	/* table terminator */
+};
diff --git a/drivers/staging/usbip/Kconfig b/drivers/staging/usbip/Kconfig
new file mode 100644
index 0000000..7426235
--- /dev/null
+++ b/drivers/staging/usbip/Kconfig
@@ -0,0 +1,36 @@
+config USB_IP_COMMON
+	tristate "USB IP support (EXPERIMENTAL)"
+	depends on USB && EXPERIMENTAL
+	default N
+	---help---
+	  This enables pushing USB packets over IP to allow remote
+	  machines access to USB devices directly.  For more details,
+	  and links to the userspace utility programs to let this work
+	  properly, see http://usbip.naist.jp/
+
+	  To compile this driver as a module, choose M here: the
+	  module will be called usbip_common_mod.
+
+	  If unsure, say N.
+
+config USB_IP_VHCI_HCD
+	tristate "USB IP client driver"
+	depends on USB_IP_COMMON
+	default N
+	---help---
+	 This enables the USB IP host controller driver which will
+	 run on the client machine.
+
+	 To compile this driver as a module, choose M here: the
+	 module will be called vhci_hcd.
+
+config USB_IP_HOST
+	tristate "USB IP host driver"
+	depends on USB_IP_COMMON
+	default N
+	---help---
+	 This enables the USB IP device driver which will run on the
+	 host machine.
+
+	 To compile this driver as a module, choose M here: the
+	 module will be called usbip.
diff --git a/drivers/staging/usbip/Makefile b/drivers/staging/usbip/Makefile
new file mode 100644
index 0000000..179f421
--- /dev/null
+++ b/drivers/staging/usbip/Makefile
@@ -0,0 +1,12 @@
+obj-$(CONFIG_USB_IP_COMMON) += usbip_common_mod.o
+usbip_common_mod-objs := usbip_common.o usbip_event.o
+
+obj-$(CONFIG_USB_IP_VHCI_HCD) += vhci-hcd.o
+vhci-hcd-objs := vhci_sysfs.o vhci_tx.o vhci_rx.o vhci_hcd.o
+
+obj-$(CONFIG_USB_IP_HOST) += usbip.o
+usbip-objs := stub_dev.o stub_main.o stub_rx.o stub_tx.o
+
+ifeq ($(CONFIG_USB_DEBUG),y)
+	EXTRA_CFLAGS += -DDEBUG
+endif
diff --git a/drivers/staging/usbip/README b/drivers/staging/usbip/README
new file mode 100644
index 0000000..c11be57
--- /dev/null
+++ b/drivers/staging/usbip/README
@@ -0,0 +1,6 @@
+TODO:
+	- more discussion about the protocol
+	- testing
+	- review of the userspace interface
+
+Please send patches for this code to Greg Kroah-Hartman <greg@kroah.com>
diff --git a/drivers/staging/usbip/stub.h b/drivers/staging/usbip/stub.h
new file mode 100644
index 0000000..f541a3a
--- /dev/null
+++ b/drivers/staging/usbip/stub.h
@@ -0,0 +1,95 @@
+/*
+ * Copyright (C) 2003-2008 Takahiro Hirofuchi
+ *
+ * This is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or
+ * (at your option) any later version.
+ *
+ * This is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
+ * USA.
+ */
+
+#include <linux/kernel.h>
+#include <linux/list.h>
+#include <linux/spinlock.h>
+#include <linux/slab.h>
+#include <linux/string.h>
+#include <linux/module.h>
+#include <linux/net.h>
+
+struct stub_device {
+	struct usb_interface *interface;
+	struct list_head list;
+
+	struct usbip_device ud;
+	__u32 devid;
+
+	/*
+	 * stub_priv preserves private data of each urb.
+	 * It is allocated as stub_priv_cache and assigned to urb->context.
+	 *
+	 * stub_priv is always linked to any one of 3 lists;
+	 *	priv_init: linked to this until the comletion of a urb.
+	 *	priv_tx  : linked to this after the completion of a urb.
+	 *	priv_free: linked to this after the sending of the result.
+	 *
+	 * Any of these list operations should be locked by priv_lock.
+	 */
+	spinlock_t priv_lock;
+	struct list_head priv_init;
+	struct list_head priv_tx;
+	struct list_head priv_free;
+
+	/* see comments for unlinking in stub_rx.c */
+	struct list_head unlink_tx;
+	struct list_head unlink_free;
+
+
+	wait_queue_head_t tx_waitq;
+};
+
+/* private data into urb->priv */
+struct stub_priv {
+	unsigned long seqnum;
+	struct list_head list;
+	struct stub_device *sdev;
+	struct urb *urb;
+
+	int unlinking;
+};
+
+struct stub_unlink {
+	unsigned long seqnum;
+	struct list_head list;
+	__u32 status;
+};
+
+
+extern struct kmem_cache *stub_priv_cache;
+
+
+/*-------------------------------------------------------------------------*/
+/* prototype declarations */
+
+/* stub_tx.c */
+void stub_complete(struct urb *);
+void stub_tx_loop(struct usbip_task *);
+
+/* stub_dev.c */
+extern struct usb_driver stub_driver;
+
+/* stub_rx.c */
+void stub_rx_loop(struct usbip_task *);
+void stub_enqueue_ret_unlink(struct stub_device *, __u32, __u32);
+
+/* stub_main.c */
+int match_busid(char *busid);
+void stub_device_cleanup_urbs(struct stub_device *sdev);
diff --git a/drivers/staging/usbip/stub_dev.c b/drivers/staging/usbip/stub_dev.c
new file mode 100644
index 0000000..ee455a0
--- /dev/null
+++ b/drivers/staging/usbip/stub_dev.c
@@ -0,0 +1,483 @@
+/*
+ * Copyright (C) 2003-2008 Takahiro Hirofuchi
+ *
+ * This is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or
+ * (at your option) any later version.
+ *
+ * This is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
+ * USA.
+ */
+
+#include "usbip_common.h"
+#include "stub.h"
+
+
+
+static int stub_probe(struct usb_interface *interface,
+				const struct usb_device_id *id);
+static void stub_disconnect(struct usb_interface *interface);
+
+
+/*
+ * Define device IDs here if you want to explicitly limit exportable devices.
+ * In the most cases, wild card matching will be ok because driver binding can
+ * be changed dynamically by a userland program.
+ */
+static struct usb_device_id stub_table[] = {
+#if 0
+	/* just an example */
+	{ USB_DEVICE(0x05ac, 0x0301) },   /* Mac 1 button mouse */
+	{ USB_DEVICE(0x0430, 0x0009) },   /* Plat Home Keyboard */
+	{ USB_DEVICE(0x059b, 0x0001) },   /* Iomega USB Zip 100 */
+	{ USB_DEVICE(0x04b3, 0x4427) },   /* IBM USB CD-ROM */
+	{ USB_DEVICE(0x05a9, 0xa511) },   /* LifeView USB cam */
+	{ USB_DEVICE(0x55aa, 0x0201) },   /* Imation card reader */
+	{ USB_DEVICE(0x046d, 0x0870) },   /* Qcam Express(QV-30) */
+	{ USB_DEVICE(0x04bb, 0x0101) },   /* IO-DATA HD 120GB */
+	{ USB_DEVICE(0x04bb, 0x0904) },   /* IO-DATA USB-ET/TX */
+	{ USB_DEVICE(0x04bb, 0x0201) },   /* IO-DATA USB-ET/TX */
+	{ USB_DEVICE(0x08bb, 0x2702) },   /* ONKYO USB Speaker */
+	{ USB_DEVICE(0x046d, 0x08b2) },   /* Logicool Qcam 4000 Pro */
+#endif
+	/* magic for wild card */
+	{ .driver_info = 1 },
+	{ 0, }                                     /* Terminating entry */
+};
+MODULE_DEVICE_TABLE(usb, stub_table);
+
+struct usb_driver stub_driver = {
+	.name		= "usbip",
+	.probe		= stub_probe,
+	.disconnect	= stub_disconnect,
+	.id_table	= stub_table,
+};
+
+
+/*-------------------------------------------------------------------------*/
+
+/* Define sysfs entries for a usbip-bound device */
+
+
+/*
+ * usbip_status shows status of usbip as long as this driver is bound to the
+ * target device.
+ */
+static ssize_t show_status(struct device *dev, struct device_attribute *attr,
+			   char *buf)
+{
+	struct stub_device *sdev = dev_get_drvdata(dev);
+	int status;
+
+	if (!sdev) {
+		dev_err(dev, "sdev is null\n");
+		return -ENODEV;
+	}
+
+	spin_lock(&sdev->ud.lock);
+	status = sdev->ud.status;
+	spin_unlock(&sdev->ud.lock);
+
+	return snprintf(buf, PAGE_SIZE, "%d\n", status);
+}
+static DEVICE_ATTR(usbip_status, S_IRUGO, show_status, NULL);
+
+/*
+ * usbip_sockfd gets a socket descriptor of an established TCP connection that
+ * is used to transfer usbip requests by kernel threads. -1 is a magic number
+ * by which usbip connection is finished.
+ */
+static ssize_t store_sockfd(struct device *dev, struct device_attribute *attr,
+			    const char *buf, size_t count)
+{
+	struct stub_device *sdev = dev_get_drvdata(dev);
+	int sockfd = 0;
+	struct socket *socket;
+
+	if (!sdev) {
+		dev_err(dev, "sdev is null\n");
+		return -ENODEV;
+	}
+
+	sscanf(buf, "%d", &sockfd);
+
+	if (sockfd != -1) {
+		dev_info(dev, "stub up\n");
+
+		spin_lock(&sdev->ud.lock);
+
+		if (sdev->ud.status != SDEV_ST_AVAILABLE) {
+			dev_err(dev, "not ready\n");
+			spin_unlock(&sdev->ud.lock);
+			return -EINVAL;
+		}
+
+		socket = sockfd_to_socket(sockfd);
+		if (!socket) {
+			spin_unlock(&sdev->ud.lock);
+			return -EINVAL;
+		}
+
+#if 0
+		setnodelay(socket);
+		setkeepalive(socket);
+		setreuse(socket);
+#endif
+
+		sdev->ud.tcp_socket = socket;
+
+		spin_unlock(&sdev->ud.lock);
+
+		usbip_start_threads(&sdev->ud);
+
+		spin_lock(&sdev->ud.lock);
+		sdev->ud.status = SDEV_ST_USED;
+		spin_unlock(&sdev->ud.lock);
+
+	} else {
+		dev_info(dev, "stub down\n");
+
+		spin_lock(&sdev->ud.lock);
+		if (sdev->ud.status != SDEV_ST_USED) {
+			spin_unlock(&sdev->ud.lock);
+			return -EINVAL;
+		}
+		spin_unlock(&sdev->ud.lock);
+
+		usbip_event_add(&sdev->ud, SDEV_EVENT_DOWN);
+	}
+
+	return count;
+}
+static DEVICE_ATTR(usbip_sockfd, S_IWUSR, NULL, store_sockfd);
+
+static int stub_add_files(struct device *dev)
+{
+	int err = 0;
+
+	err = device_create_file(dev, &dev_attr_usbip_status);
+	if (err)
+		goto err_status;
+
+	err = device_create_file(dev, &dev_attr_usbip_sockfd);
+	if (err)
+		goto err_sockfd;
+
+	err = device_create_file(dev, &dev_attr_usbip_debug);
+	if (err)
+		goto err_debug;
+
+	return 0;
+
+err_debug:
+	device_remove_file(dev, &dev_attr_usbip_sockfd);
+
+err_sockfd:
+	device_remove_file(dev, &dev_attr_usbip_status);
+
+err_status:
+	return err;
+}
+
+static void stub_remove_files(struct device *dev)
+{
+	device_remove_file(dev, &dev_attr_usbip_status);
+	device_remove_file(dev, &dev_attr_usbip_sockfd);
+	device_remove_file(dev, &dev_attr_usbip_debug);
+}
+
+
+
+/*-------------------------------------------------------------------------*/
+
+/* Event handler functions called by an event handler thread */
+
+static void stub_shutdown_connection(struct usbip_device *ud)
+{
+	struct stub_device *sdev = container_of(ud, struct stub_device, ud);
+
+	/*
+	 * When removing an exported device, kernel panic sometimes occurred
+	 * and then EIP was sk_wait_data of stub_rx thread. Is this because
+	 * sk_wait_data returned though stub_rx thread was already finished by
+	 * step 1?
+	 */
+	if (ud->tcp_socket) {
+		udbg("shutdown tcp_socket %p\n", ud->tcp_socket);
+		kernel_sock_shutdown(ud->tcp_socket, SHUT_RDWR);
+	}
+
+	/* 1. stop threads */
+	usbip_stop_threads(ud);
+
+	/* 2. close the socket */
+	/*
+	 * tcp_socket is freed after threads are killed.
+	 * So usbip_xmit do not touch NULL socket.
+	 */
+	if (ud->tcp_socket) {
+		sock_release(ud->tcp_socket);
+		ud->tcp_socket = NULL;
+	}
+
+	/* 3. free used data */
+	stub_device_cleanup_urbs(sdev);
+
+	/* 4. free stub_unlink */
+	{
+		unsigned long flags;
+		struct stub_unlink *unlink, *tmp;
+
+		spin_lock_irqsave(&sdev->priv_lock, flags);
+
+		list_for_each_entry_safe(unlink, tmp, &sdev->unlink_tx, list) {
+			list_del(&unlink->list);
+			kfree(unlink);
+		}
+
+		list_for_each_entry_safe(unlink, tmp,
+						 &sdev->unlink_free, list) {
+			list_del(&unlink->list);
+			kfree(unlink);
+		}
+
+		spin_unlock_irqrestore(&sdev->priv_lock, flags);
+	}
+}
+
+static void stub_device_reset(struct usbip_device *ud)
+{
+	struct stub_device *sdev = container_of(ud, struct stub_device, ud);
+	struct usb_device *udev = interface_to_usbdev(sdev->interface);
+	int ret;
+
+	udbg("device reset");
+	ret = usb_lock_device_for_reset(udev, sdev->interface);
+	if (ret < 0) {
+		dev_err(&udev->dev, "lock for reset\n");
+
+		spin_lock(&ud->lock);
+		ud->status = SDEV_ST_ERROR;
+		spin_unlock(&ud->lock);
+
+		return;
+	}
+
+	/* try to reset the device */
+	ret = usb_reset_device(udev);
+
+	usb_unlock_device(udev);
+
+	spin_lock(&ud->lock);
+	if (ret) {
+		dev_err(&udev->dev, "device reset\n");
+		ud->status = SDEV_ST_ERROR;
+
+	} else {
+		dev_info(&udev->dev, "device reset\n");
+		ud->status = SDEV_ST_AVAILABLE;
+
+	}
+	spin_unlock(&ud->lock);
+
+	return;
+}
+
+static void stub_device_unusable(struct usbip_device *ud)
+{
+	spin_lock(&ud->lock);
+	ud->status = SDEV_ST_ERROR;
+	spin_unlock(&ud->lock);
+}
+
+
+/*-------------------------------------------------------------------------*/
+
+/**
+ * stub_device_alloc - allocate a new stub_device struct
+ * @interface: usb_interface of a new device
+ *
+ * Allocates and initializes a new stub_device struct.
+ */
+static struct stub_device *stub_device_alloc(struct usb_interface *interface)
+{
+	struct stub_device *sdev;
+	int busnum = interface_to_busnum(interface);
+	int devnum = interface_to_devnum(interface);
+
+	dev_dbg(&interface->dev, "allocating stub device");
+
+	/* yes, it's a new device */
+	sdev = kzalloc(sizeof(struct stub_device), GFP_KERNEL);
+	if (!sdev) {
+		dev_err(&interface->dev, "no memory for stub_device\n");
+		return NULL;
+	}
+
+	sdev->interface = interface;
+
+	/*
+	 * devid is defined with devnum when this driver is first allocated.
+	 * devnum may change later if a device is reset. However, devid never
+	 * changes during a usbip connection.
+	 */
+	sdev->devid     = (busnum << 16) | devnum;
+
+	usbip_task_init(&sdev->ud.tcp_rx, "stub_rx", stub_rx_loop);
+	usbip_task_init(&sdev->ud.tcp_tx, "stub_tx", stub_tx_loop);
+
+	sdev->ud.side = USBIP_STUB;
+	sdev->ud.status = SDEV_ST_AVAILABLE;
+	/* sdev->ud.lock = SPIN_LOCK_UNLOCKED; */
+	spin_lock_init(&sdev->ud.lock);
+	sdev->ud.tcp_socket = NULL;
+
+	INIT_LIST_HEAD(&sdev->priv_init);
+	INIT_LIST_HEAD(&sdev->priv_tx);
+	INIT_LIST_HEAD(&sdev->priv_free);
+	INIT_LIST_HEAD(&sdev->unlink_free);
+	INIT_LIST_HEAD(&sdev->unlink_tx);
+	/* sdev->priv_lock = SPIN_LOCK_UNLOCKED; */
+	spin_lock_init(&sdev->priv_lock);
+
+	init_waitqueue_head(&sdev->tx_waitq);
+
+	sdev->ud.eh_ops.shutdown = stub_shutdown_connection;
+	sdev->ud.eh_ops.reset    = stub_device_reset;
+	sdev->ud.eh_ops.unusable = stub_device_unusable;
+
+	usbip_start_eh(&sdev->ud);
+
+	udbg("register new interface\n");
+	return sdev;
+}
+
+static int stub_device_free(struct stub_device *sdev)
+{
+	if (!sdev)
+		return -EINVAL;
+
+	kfree(sdev);
+	udbg("kfree udev ok\n");
+
+	return 0;
+}
+
+
+/*-------------------------------------------------------------------------*/
+
+/*
+ * If a usb device has multiple active interfaces, this driver is bound to all
+ * the active interfaces. However, usbip exports *a* usb device (i.e., not *an*
+ * active interface). Currently, a userland program must ensure that it
+ * looks at the usbip's sysfs entries of only the first active interface.
+ *
+ * TODO: use "struct usb_device_driver" to bind a usb device.
+ * However, it seems it is not fully supported in mainline kernel yet
+ * (2.6.19.2).
+ */
+static int stub_probe(struct usb_interface *interface,
+		      const struct usb_device_id *id)
+{
+	struct usb_device *udev = interface_to_usbdev(interface);
+	struct stub_device *sdev = NULL;
+	char *udev_busid = interface->dev.parent->bus_id;
+	int err = 0;
+
+	dev_dbg(&interface->dev, "Enter\n");
+
+	/* check we should claim or not by busid_table */
+	if (match_busid(udev_busid)) {
+		dev_info(&interface->dev,
+			 "this device %s is not in match_busid table. skip!\n",
+			 udev_busid);
+
+		/*
+		 * Return value should be ENODEV or ENOXIO to continue trying
+		 * other matched drivers by the driver core.
+		 * See driver_probe_device() in driver/base/dd.c
+		 */
+		return -ENODEV;
+	}
+
+	if (udev->descriptor.bDeviceClass ==  USB_CLASS_HUB) {
+		udbg("this device %s is a usb hub device. skip!\n",
+								udev_busid);
+		return -ENODEV;
+	}
+
+	if (!strcmp(udev->bus->bus_name, "vhci_hcd")) {
+		udbg("this device %s is attached on vhci_hcd. skip!\n",
+								udev_busid);
+		return -ENODEV;
+	}
+
+	/* ok. this is my device. */
+	sdev = stub_device_alloc(interface);
+	if (!sdev)
+		return -ENOMEM;
+
+	dev_info(&interface->dev, "USB/IP Stub: register a new interface "
+		 "(bus %u dev %u ifn %u)\n", udev->bus->busnum, udev->devnum,
+		 interface->cur_altsetting->desc.bInterfaceNumber);
+
+	/* set private data to usb_interface */
+	usb_set_intfdata(interface, sdev);
+
+	err = stub_add_files(&interface->dev);
+	if (err) {
+		dev_err(&interface->dev, "create sysfs files for %s\n",
+			udev_busid);
+		return err;
+	}
+
+	return 0;
+}
+
+
+/*
+ * called in usb_disconnect() or usb_deregister()
+ * but only if actconfig(active configuration) exists
+ */
+static void stub_disconnect(struct usb_interface *interface)
+{
+	struct stub_device *sdev = usb_get_intfdata(interface);
+
+	udbg("Enter\n");
+
+	/* get stub_device */
+	if (!sdev) {
+		err(" could not get device from inteface data");
+		/* BUG(); */
+		return;
+	}
+
+	usb_set_intfdata(interface, NULL);
+
+
+	/*
+	 * NOTE:
+	 * rx/tx threads are invoked for each usb_device.
+	 */
+	stub_remove_files(&interface->dev);
+
+	/* 1. shutdown the current connection */
+	usbip_event_add(&sdev->ud, SDEV_EVENT_REMOVED);
+
+	/* 2. wait for the stop of the event handler */
+	usbip_stop_eh(&sdev->ud);
+
+	/* 3. free sdev */
+	stub_device_free(sdev);
+
+
+	udbg("bye\n");
+}
diff --git a/drivers/staging/usbip/stub_main.c b/drivers/staging/usbip/stub_main.c
new file mode 100644
index 0000000..c665d7f
--- /dev/null
+++ b/drivers/staging/usbip/stub_main.c
@@ -0,0 +1,300 @@
+/*
+ * Copyright (C) 2003-2008 Takahiro Hirofuchi
+ *
+ * This is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or
+ * (at your option) any later version.
+ *
+ * This is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
+ * USA.
+ */
+
+
+#include "usbip_common.h"
+#include "stub.h"
+
+/* Version Information */
+#define DRIVER_VERSION "1.0"
+#define DRIVER_AUTHOR "Takahiro Hirofuchi"
+#define DRIVER_DESC "Stub Driver for USB/IP"
+
+/* stub_priv is allocated from stub_priv_cache */
+struct kmem_cache *stub_priv_cache;
+
+/*-------------------------------------------------------------------------*/
+
+/* Define sysfs entries for the usbip driver */
+
+
+/*
+ * busid_tables defines matching busids that usbip can grab. A user can change
+ * dynamically what device is locally used and what device is exported to a
+ * remote host.
+ */
+#define MAX_BUSID 16
+static char busid_table[MAX_BUSID][BUS_ID_SIZE];
+static spinlock_t busid_table_lock;
+
+
+int match_busid(char *busid)
+{
+	int i;
+
+	spin_lock(&busid_table_lock);
+
+	for (i = 0; i < MAX_BUSID; i++)
+		if (busid_table[i][0])
+			if (!strncmp(busid_table[i], busid, BUS_ID_SIZE)) {
+				/* already registerd */
+				spin_unlock(&busid_table_lock);
+				return 0;
+			}
+
+	spin_unlock(&busid_table_lock);
+
+	return 1;
+}
+
+static ssize_t show_match_busid(struct device_driver *drv, char *buf)
+{
+	int i;
+	char *out = buf;
+
+	spin_lock(&busid_table_lock);
+
+	for (i = 0; i < MAX_BUSID; i++)
+		if (busid_table[i][0])
+			out += sprintf(out, "%s ", busid_table[i]);
+
+	spin_unlock(&busid_table_lock);
+
+	out += sprintf(out, "\n");
+
+	return out - buf;
+}
+
+static int add_match_busid(char *busid)
+{
+	int i;
+
+	if (!match_busid(busid))
+		return 0;
+
+	spin_lock(&busid_table_lock);
+
+	for (i = 0; i < MAX_BUSID; i++)
+		if (!busid_table[i][0]) {
+			strncpy(busid_table[i], busid, BUS_ID_SIZE);
+			spin_unlock(&busid_table_lock);
+			return 0;
+		}
+
+	spin_unlock(&busid_table_lock);
+
+	return -1;
+}
+
+static int del_match_busid(char *busid)
+{
+	int i;
+
+	spin_lock(&busid_table_lock);
+
+	for (i = 0; i < MAX_BUSID; i++)
+		if (!strncmp(busid_table[i], busid, BUS_ID_SIZE)) {
+			/* found */
+			memset(busid_table[i], 0, BUS_ID_SIZE);
+			spin_unlock(&busid_table_lock);
+			return 0;
+		}
+
+	spin_unlock(&busid_table_lock);
+
+	return -1;
+}
+
+static ssize_t store_match_busid(struct device_driver *dev, const char *buf,
+		size_t count)
+{
+	int len;
+	char busid[BUS_ID_SIZE];
+
+	if (count < 5)
+		return -EINVAL;
+
+	/* strnlen() does not include \0 */
+	len = strnlen(buf + 4, BUS_ID_SIZE);
+
+	/* busid needs to include \0 termination */
+	if (!(len < BUS_ID_SIZE))
+		return -EINVAL;
+
+	strncpy(busid, buf + 4, BUS_ID_SIZE);
+
+
+	if (!strncmp(buf, "add ", 4)) {
+		if (add_match_busid(busid) < 0)
+			return -ENOMEM;
+		else {
+			udbg("add busid %s\n", busid);
+			return count;
+		}
+	} else if (!strncmp(buf, "del ", 4)) {
+		if (del_match_busid(busid) < 0)
+			return -ENODEV;
+		else {
+			udbg("del busid %s\n", busid);
+			return count;
+		}
+	} else
+		return -EINVAL;
+}
+
+static DRIVER_ATTR(match_busid, S_IRUSR|S_IWUSR, show_match_busid,
+							store_match_busid);
+
+
+
+/*-------------------------------------------------------------------------*/
+
+/* Cleanup functions used to free private data */
+
+static struct stub_priv *stub_priv_pop_from_listhead(struct list_head *listhead)
+{
+	struct stub_priv *priv, *tmp;
+
+	list_for_each_entry_safe(priv, tmp, listhead, list) {
+		list_del(&priv->list);
+		return priv;
+	}
+
+	return NULL;
+}
+
+static struct stub_priv *stub_priv_pop(struct stub_device *sdev)
+{
+	unsigned long flags;
+	struct stub_priv *priv;
+
+	spin_lock_irqsave(&sdev->priv_lock, flags);
+
+	priv = stub_priv_pop_from_listhead(&sdev->priv_init);
+	if (priv) {
+		spin_unlock_irqrestore(&sdev->priv_lock, flags);
+		return priv;
+	}
+
+	priv = stub_priv_pop_from_listhead(&sdev->priv_tx);
+	if (priv) {
+		spin_unlock_irqrestore(&sdev->priv_lock, flags);
+		return priv;
+	}
+
+	priv = stub_priv_pop_from_listhead(&sdev->priv_free);
+	if (priv) {
+		spin_unlock_irqrestore(&sdev->priv_lock, flags);
+		return priv;
+	}
+
+	spin_unlock_irqrestore(&sdev->priv_lock, flags);
+	return NULL;
+}
+
+void stub_device_cleanup_urbs(struct stub_device *sdev)
+{
+	struct stub_priv *priv;
+
+	udbg("free sdev %p\n", sdev);
+
+	while ((priv = stub_priv_pop(sdev))) {
+		struct urb *urb = priv->urb;
+
+		udbg("   free urb %p\n", urb);
+		usb_kill_urb(urb);
+
+		kmem_cache_free(stub_priv_cache, priv);
+
+		if (urb->transfer_buffer != NULL)
+			kfree(urb->transfer_buffer);
+
+		if (urb->setup_packet != NULL)
+			kfree(urb->setup_packet);
+
+		usb_free_urb(urb);
+	}
+}
+
+
+/*-------------------------------------------------------------------------*/
+
+static int __init usb_stub_init(void)
+{
+	int ret;
+
+	stub_priv_cache = kmem_cache_create("stub_priv",
+					    sizeof(struct stub_priv), 0,
+					    SLAB_HWCACHE_ALIGN, NULL);
+
+	if (!stub_priv_cache) {
+		printk(KERN_ERR KBUILD_MODNAME
+		       ": create stub_priv_cache error\n");
+		return -ENOMEM;
+	}
+
+	ret = usb_register(&stub_driver);
+	if (ret) {
+		printk(KERN_ERR KBUILD_MODNAME ": usb_register failed %d\n",
+		       ret);
+		goto error_usb_register;
+	}
+
+	printk(KERN_INFO KBUILD_MODNAME ":"
+	       DRIVER_DESC ":" DRIVER_VERSION "\n");
+
+	memset(busid_table, 0, sizeof(busid_table));
+	spin_lock_init(&busid_table_lock);
+
+	ret = driver_create_file(&stub_driver.drvwrap.driver,
+				 &driver_attr_match_busid);
+
+	if (ret) {
+		printk(KERN_ERR KBUILD_MODNAME ": create driver sysfs\n");
+		goto error_create_file;
+	}
+
+	return ret;
+error_create_file:
+	usb_deregister(&stub_driver);
+error_usb_register:
+	kmem_cache_destroy(stub_priv_cache);
+	return ret;
+}
+
+static void __exit usb_stub_exit(void)
+{
+	driver_remove_file(&stub_driver.drvwrap.driver,
+			   &driver_attr_match_busid);
+
+	/*
+	 * deregister() calls stub_disconnect() for all devices. Device
+	 * specific data is cleared in stub_disconnect().
+	 */
+	usb_deregister(&stub_driver);
+
+	kmem_cache_destroy(stub_priv_cache);
+}
+
+module_init(usb_stub_init);
+module_exit(usb_stub_exit);
+
+MODULE_AUTHOR(DRIVER_AUTHOR);
+MODULE_DESCRIPTION(DRIVER_DESC);
+MODULE_LICENSE("GPL");
diff --git a/drivers/staging/usbip/stub_rx.c b/drivers/staging/usbip/stub_rx.c
new file mode 100644
index 0000000..36ce898
--- /dev/null
+++ b/drivers/staging/usbip/stub_rx.c
@@ -0,0 +1,615 @@
+/*
+ * Copyright (C) 2003-2008 Takahiro Hirofuchi
+ *
+ * This is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or
+ * (at your option) any later version.
+ *
+ * This is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
+ * USA.
+ */
+
+#include "usbip_common.h"
+#include "stub.h"
+#include "../../usb/core/hcd.h"
+
+
+static int is_clear_halt_cmd(struct urb *urb)
+{
+	struct usb_ctrlrequest *req;
+
+	req = (struct usb_ctrlrequest *) urb->setup_packet;
+
+	 return (req->bRequest == USB_REQ_CLEAR_FEATURE) &&
+		 (req->bRequestType == USB_RECIP_ENDPOINT) &&
+		 (req->wValue == USB_ENDPOINT_HALT);
+}
+
+static int is_set_interface_cmd(struct urb *urb)
+{
+	struct usb_ctrlrequest *req;
+
+	req = (struct usb_ctrlrequest *) urb->setup_packet;
+
+	return (req->bRequest == USB_REQ_SET_INTERFACE) &&
+		   (req->bRequestType == USB_RECIP_INTERFACE);
+}
+
+static int is_set_configuration_cmd(struct urb *urb)
+{
+	struct usb_ctrlrequest *req;
+
+	req = (struct usb_ctrlrequest *) urb->setup_packet;
+
+	return (req->bRequest == USB_REQ_SET_CONFIGURATION) &&
+		   (req->bRequestType == USB_RECIP_DEVICE);
+}
+
+static int is_reset_device_cmd(struct urb *urb)
+{
+	struct usb_ctrlrequest *req;
+	__u16 value;
+	__u16 index;
+
+	req = (struct usb_ctrlrequest *) urb->setup_packet;
+	value = le16_to_cpu(req->wValue);
+	index = le16_to_cpu(req->wIndex);
+
+	if ((req->bRequest == USB_REQ_SET_FEATURE) &&
+			(req->bRequestType == USB_RT_PORT) &&
+			(value = USB_PORT_FEAT_RESET)) {
+		dbg_stub_rx("reset_device_cmd, port %u\n", index);
+		return 1;
+	} else
+		return 0;
+}
+
+static int tweak_clear_halt_cmd(struct urb *urb)
+{
+	struct usb_ctrlrequest *req;
+	int target_endp;
+	int target_dir;
+	int target_pipe;
+	int ret;
+
+	req = (struct usb_ctrlrequest *) urb->setup_packet;
+
+	/*
+	 * The stalled endpoint is specified in the wIndex value. The endpoint
+	 * of the urb is the target of this clear_halt request (i.e., control
+	 * endpoint).
+	 */
+	target_endp = le16_to_cpu(req->wIndex) & 0x000f;
+
+	/* the stalled endpoint direction is IN or OUT?. USB_DIR_IN is 0x80.  */
+	target_dir = le16_to_cpu(req->wIndex) & 0x0080;
+
+	if (target_dir)
+		target_pipe = usb_rcvctrlpipe(urb->dev, target_endp);
+	else
+		target_pipe = usb_sndctrlpipe(urb->dev, target_endp);
+
+	ret = usb_clear_halt(urb->dev, target_pipe);
+	if (ret < 0)
+		uinfo("clear_halt error: devnum %d endp %d, %d\n",
+				urb->dev->devnum, target_endp, ret);
+	else
+		uinfo("clear_halt done: devnum %d endp %d\n",
+				urb->dev->devnum, target_endp);
+
+	return ret;
+}
+
+static int tweak_set_interface_cmd(struct urb *urb)
+{
+	struct usb_ctrlrequest *req;
+	__u16 alternate;
+	__u16 interface;
+	int ret;
+
+	req = (struct usb_ctrlrequest *) urb->setup_packet;
+	alternate = le16_to_cpu(req->wValue);
+	interface = le16_to_cpu(req->wIndex);
+
+	dbg_stub_rx("set_interface: inf %u alt %u\n", interface, alternate);
+
+	ret = usb_set_interface(urb->dev, interface, alternate);
+	if (ret < 0)
+		uinfo("set_interface error: inf %u alt %u, %d\n",
+				interface, alternate, ret);
+	else
+		uinfo("set_interface done: inf %u alt %u\n",
+							interface,
+							alternate);
+
+	return ret;
+}
+
+static int tweak_set_configuration_cmd(struct urb *urb)
+{
+	struct usb_ctrlrequest *req;
+	__u16 config;
+
+	req = (struct usb_ctrlrequest *) urb->setup_packet;
+	config = le16_to_cpu(req->wValue);
+
+	/*
+	 * I have never seen a multi-config device. Very rare.
+	 * For most devices, this will be called to choose a default
+	 * configuration only once in an initialization phase.
+	 *
+	 * set_configuration may change a device configuration and its device
+	 * drivers will be unbound and assigned for a new device configuration.
+	 * This means this usbip driver will be also unbound when called, then
+	 * eventually reassigned to the device as far as driver matching
+	 * condition is kept.
+	 *
+	 * Unfortunatelly, an existing usbip connection will be dropped
+	 * due to this driver unbinding. So, skip here.
+	 * A user may need to set a special configuration value before
+	 * exporting the device.
+	 */
+	uinfo("set_configuration (%d) to %s\n", config, urb->dev->dev.bus_id);
+	uinfo("but, skip!\n");
+
+	return 0;
+	/* return usb_driver_set_configuration(urb->dev, config); */
+}
+
+static int tweak_reset_device_cmd(struct urb *urb)
+{
+	struct usb_ctrlrequest *req;
+	__u16 value;
+	__u16 index;
+	int ret;
+
+	req = (struct usb_ctrlrequest *) urb->setup_packet;
+	value = le16_to_cpu(req->wValue);
+	index = le16_to_cpu(req->wIndex);
+
+	uinfo("reset_device (port %d) to %s\n", index, urb->dev->dev.bus_id);
+
+	/* all interfaces should be owned by usbip driver, so just reset it.  */
+	ret = usb_lock_device_for_reset(urb->dev, NULL);
+	if (ret < 0) {
+		dev_err(&urb->dev->dev, "lock for reset\n");
+		return ret;
+	}
+
+	/* try to reset the device */
+	ret = usb_reset_device(urb->dev);
+	if (ret < 0)
+		dev_err(&urb->dev->dev, "device reset\n");
+
+	usb_unlock_device(urb->dev);
+
+	return ret;
+}
+
+/*
+ * clear_halt, set_interface, and set_configuration require special tricks.
+ */
+static void tweak_special_requests(struct urb *urb)
+{
+	if (!urb || !urb->setup_packet)
+		return;
+
+	if (usb_pipetype(urb->pipe) != PIPE_CONTROL)
+		return;
+
+	if (is_clear_halt_cmd(urb))
+		/* tweak clear_halt */
+		 tweak_clear_halt_cmd(urb);
+
+	else if (is_set_interface_cmd(urb))
+		/* tweak set_interface */
+		tweak_set_interface_cmd(urb);
+
+	else if (is_set_configuration_cmd(urb))
+		/* tweak set_configuration */
+		tweak_set_configuration_cmd(urb);
+
+	else if (is_reset_device_cmd(urb))
+		tweak_reset_device_cmd(urb);
+	else
+		dbg_stub_rx("no need to tweak\n");
+}
+
+/*
+ * stub_recv_unlink() unlinks the URB by a call to usb_unlink_urb().
+ * By unlinking the urb asynchronously, stub_rx can continuously
+ * process coming urbs.  Even if the urb is unlinked, its completion
+ * handler will be called and stub_tx will send a return pdu.
+ *
+ * See also comments about unlinking strategy in vhci_hcd.c.
+ */
+static int stub_recv_cmd_unlink(struct stub_device *sdev,
+						struct usbip_header *pdu)
+{
+	struct list_head *listhead = &sdev->priv_init;
+	struct list_head *ptr;
+	unsigned long flags;
+
+	struct stub_priv *priv;
+
+
+	spin_lock_irqsave(&sdev->priv_lock, flags);
+
+	for (ptr = listhead->next; ptr != listhead; ptr = ptr->next) {
+		priv = list_entry(ptr, struct stub_priv, list);
+		if (priv->seqnum == pdu->u.cmd_unlink.seqnum) {
+			int ret;
+
+			dev_info(&priv->urb->dev->dev, "unlink urb %p\n",
+				 priv->urb);
+
+			/*
+			 * This matched urb is not completed yet (i.e., be in
+			 * flight in usb hcd hardware/driver). Now we are
+			 * cancelling it. The unlinking flag means that we are
+			 * now not going to return the normal result pdu of a
+			 * submission request, but going to return a result pdu
+			 * of the unlink request.
+			 */
+			priv->unlinking = 1;
+
+			/*
+			 * In the case that unlinking flag is on, prev->seqnum
+			 * is changed from the seqnum of the cancelling urb to
+			 * the seqnum of the unlink request. This will be used
+			 * to make the result pdu of the unlink request.
+			 */
+			priv->seqnum = pdu->base.seqnum;
+
+			spin_unlock_irqrestore(&sdev->priv_lock, flags);
+
+			/*
+			 * usb_unlink_urb() is now out of spinlocking to avoid
+			 * spinlock recursion since stub_complete() is
+			 * sometimes called in this context but not in the
+			 * interrupt context.  If stub_complete() is executed
+			 * before we call usb_unlink_urb(), usb_unlink_urb()
+			 * will return an error value. In this case, stub_tx
+			 * will return the result pdu of this unlink request
+			 * though submission is completed and actual unlinking
+			 * is not executed. OK?
+			 */
+			/* In the above case, urb->status is not -ECONNRESET,
+			 * so a driver in a client host will know the failure
+			 * of the unlink request ?
+			 */
+			ret = usb_unlink_urb(priv->urb);
+			if (ret != -EINPROGRESS)
+				dev_err(&priv->urb->dev->dev,
+					"failed to unlink a urb %p, ret %d\n",
+					priv->urb, ret);
+			return 0;
+		}
+	}
+
+	dbg_stub_rx("seqnum %d is not pending\n", pdu->u.cmd_unlink.seqnum);
+
+	/*
+	 * The urb of the unlink target is not found in priv_init queue. It was
+	 * already completed and its results is/was going to be sent by a
+	 * CMD_RET pdu. In this case, usb_unlink_urb() is not needed. We only
+	 * return the completeness of this unlink request to vhci_hcd.
+	 */
+	stub_enqueue_ret_unlink(sdev, pdu->base.seqnum, 0);
+
+	spin_unlock_irqrestore(&sdev->priv_lock, flags);
+
+
+	return 0;
+}
+
+static int valid_request(struct stub_device *sdev, struct usbip_header *pdu)
+{
+	struct usbip_device *ud = &sdev->ud;
+
+	if (pdu->base.devid == sdev->devid) {
+		spin_lock(&ud->lock);
+		if (ud->status == SDEV_ST_USED) {
+			/* A request is valid. */
+			spin_unlock(&ud->lock);
+			return 1;
+		}
+		spin_unlock(&ud->lock);
+	}
+
+	return 0;
+}
+
+static struct stub_priv *stub_priv_alloc(struct stub_device *sdev,
+					 struct usbip_header *pdu)
+{
+	struct stub_priv *priv;
+	struct usbip_device *ud = &sdev->ud;
+	unsigned long flags;
+
+	spin_lock_irqsave(&sdev->priv_lock, flags);
+
+	priv = kmem_cache_alloc(stub_priv_cache, GFP_ATOMIC);
+	if (!priv) {
+		dev_err(&sdev->interface->dev, "alloc stub_priv\n");
+		spin_unlock_irqrestore(&sdev->priv_lock, flags);
+		usbip_event_add(ud, SDEV_EVENT_ERROR_MALLOC);
+		return NULL;
+	}
+
+	memset(priv, 0, sizeof(struct stub_priv));
+
+	priv->seqnum = pdu->base.seqnum;
+	priv->sdev = sdev;
+
+	/*
+	 * After a stub_priv is linked to a list_head,
+	 * our error handler can free allocated data.
+	 */
+	list_add_tail(&priv->list, &sdev->priv_init);
+
+	spin_unlock_irqrestore(&sdev->priv_lock, flags);
+
+	return priv;
+}
+
+
+static struct usb_host_endpoint *get_ep_from_epnum(struct usb_device *udev,
+		int epnum0)
+{
+	struct usb_host_config *config;
+	int i = 0, j = 0;
+	struct usb_host_endpoint *ep = NULL;
+	int epnum;
+	int found = 0;
+
+	if (epnum0 == 0)
+		return &udev->ep0;
+
+	config = udev->actconfig;
+	if (!config)
+		return NULL;
+
+	for (i = 0; i < config->desc.bNumInterfaces; i++) {
+		struct usb_host_interface *setting;
+
+		setting = config->interface[i]->cur_altsetting;
+
+		for (j = 0; j < setting->desc.bNumEndpoints; j++) {
+			ep = &setting->endpoint[j];
+			epnum = (ep->desc.bEndpointAddress & 0x7f);
+
+			if (epnum == epnum0) {
+				/* uinfo("found epnum %d\n", epnum0); */
+				found = 1;
+				break;
+			}
+		}
+	}
+
+	if (found)
+		return ep;
+	else
+		return NULL;
+}
+
+
+static int get_pipe(struct stub_device *sdev, int epnum, int dir)
+{
+	struct usb_device *udev = interface_to_usbdev(sdev->interface);
+	struct usb_host_endpoint *ep;
+	struct usb_endpoint_descriptor *epd = NULL;
+
+	ep = get_ep_from_epnum(udev, epnum);
+	if (!ep) {
+		dev_err(&sdev->interface->dev, "no such endpoint?, %d\n",
+			epnum);
+		BUG();
+	}
+
+	epd = &ep->desc;
+
+
+#if 0
+	/* epnum 0 is always control */
+	if (epnum == 0) {
+		if (dir == USBIP_DIR_OUT)
+			return usb_sndctrlpipe(udev, 0);
+		else
+			return usb_rcvctrlpipe(udev, 0);
+	}
+#endif
+
+	if (usb_endpoint_xfer_control(epd)) {
+		if (dir == USBIP_DIR_OUT)
+			return usb_sndctrlpipe(udev, epnum);
+		else
+			return usb_rcvctrlpipe(udev, epnum);
+	}
+
+	if (usb_endpoint_xfer_bulk(epd)) {
+		if (dir == USBIP_DIR_OUT)
+			return usb_sndbulkpipe(udev, epnum);
+		else
+			return usb_rcvbulkpipe(udev, epnum);
+	}
+
+	if (usb_endpoint_xfer_int(epd)) {
+		if (dir == USBIP_DIR_OUT)
+			return usb_sndintpipe(udev, epnum);
+		else
+			return usb_rcvintpipe(udev, epnum);
+	}
+
+	if (usb_endpoint_xfer_isoc(epd)) {
+		if (dir == USBIP_DIR_OUT)
+			return usb_sndisocpipe(udev, epnum);
+		else
+			return usb_rcvisocpipe(udev, epnum);
+	}
+
+	/* NOT REACHED */
+	dev_err(&sdev->interface->dev, "get pipe, epnum %d\n", epnum);
+	return 0;
+}
+
+static void stub_recv_cmd_submit(struct stub_device *sdev,
+				 struct usbip_header *pdu)
+{
+	int ret;
+	struct stub_priv *priv;
+	struct usbip_device *ud = &sdev->ud;
+	struct usb_device *udev = interface_to_usbdev(sdev->interface);
+	int pipe = get_pipe(sdev, pdu->base.ep, pdu->base.direction);
+
+
+	priv = stub_priv_alloc(sdev, pdu);
+	if (!priv)
+		return;
+
+	/* setup a urb */
+	if (usb_pipeisoc(pipe))
+		priv->urb = usb_alloc_urb(pdu->u.cmd_submit.number_of_packets,
+								GFP_KERNEL);
+	else
+		priv->urb = usb_alloc_urb(0, GFP_KERNEL);
+
+	if (!priv->urb) {
+		dev_err(&sdev->interface->dev, "malloc urb\n");
+		usbip_event_add(ud, SDEV_EVENT_ERROR_MALLOC);
+		return;
+	}
+
+	/* set priv->urb->transfer_buffer */
+	if (pdu->u.cmd_submit.transfer_buffer_length > 0) {
+		priv->urb->transfer_buffer =
+			kzalloc(pdu->u.cmd_submit.transfer_buffer_length,
+								GFP_KERNEL);
+		if (!priv->urb->transfer_buffer) {
+			dev_err(&sdev->interface->dev, "malloc x_buff\n");
+			usbip_event_add(ud, SDEV_EVENT_ERROR_MALLOC);
+			return;
+		}
+	}
+
+	/* set priv->urb->setup_packet */
+	priv->urb->setup_packet = kzalloc(8, GFP_KERNEL);
+	if (!priv->urb->setup_packet) {
+		dev_err(&sdev->interface->dev, "allocate setup_packet\n");
+		usbip_event_add(ud, SDEV_EVENT_ERROR_MALLOC);
+		return;
+	}
+	memcpy(priv->urb->setup_packet, &pdu->u.cmd_submit.setup, 8);
+
+	/* set other members from the base header of pdu */
+	priv->urb->context                = (void *) priv;
+	priv->urb->dev                    = udev;
+	priv->urb->pipe                   = pipe;
+	priv->urb->complete               = stub_complete;
+
+	usbip_pack_pdu(pdu, priv->urb, USBIP_CMD_SUBMIT, 0);
+
+
+	if (usbip_recv_xbuff(ud, priv->urb) < 0)
+		return;
+
+	if (usbip_recv_iso(ud, priv->urb) < 0)
+		return;
+
+	/* no need to submit an intercepted request, but harmless? */
+	tweak_special_requests(priv->urb);
+
+	/* urb is now ready to submit */
+	ret = usb_submit_urb(priv->urb, GFP_KERNEL);
+
+	if (ret == 0)
+		dbg_stub_rx("submit urb ok, seqnum %u\n", pdu->base.seqnum);
+	else {
+		dev_err(&sdev->interface->dev, "submit_urb error, %d\n", ret);
+		usbip_dump_header(pdu);
+		usbip_dump_urb(priv->urb);
+
+		/*
+		 * Pessimistic.
+		 * This connection will be discarded.
+		 */
+		usbip_event_add(ud, SDEV_EVENT_ERROR_SUBMIT);
+	}
+
+	dbg_stub_rx("Leave\n");
+	return;
+}
+
+/* recv a pdu */
+static void stub_rx_pdu(struct usbip_device *ud)
+{
+	int ret;
+	struct usbip_header pdu;
+	struct stub_device *sdev = container_of(ud, struct stub_device, ud);
+	struct device *dev = &sdev->interface->dev;
+
+	dbg_stub_rx("Enter\n");
+
+	memset(&pdu, 0, sizeof(pdu));
+
+	/* 1. receive a pdu header */
+	ret = usbip_xmit(0, ud->tcp_socket, (char *) &pdu, sizeof(pdu), 0);
+	if (ret != sizeof(pdu)) {
+		dev_err(dev, "recv a header, %d\n", ret);
+		usbip_event_add(ud, SDEV_EVENT_ERROR_TCP);
+		return;
+	}
+
+	usbip_header_correct_endian(&pdu, 0);
+
+	if (dbg_flag_stub_rx)
+		usbip_dump_header(&pdu);
+
+	if (!valid_request(sdev, &pdu)) {
+		dev_err(dev, "recv invalid request\n");
+		usbip_event_add(ud, SDEV_EVENT_ERROR_TCP);
+		return;
+	}
+
+	switch (pdu.base.command) {
+	case USBIP_CMD_UNLINK:
+		stub_recv_cmd_unlink(sdev, &pdu);
+		break;
+
+	case USBIP_CMD_SUBMIT:
+		stub_recv_cmd_submit(sdev, &pdu);
+		break;
+
+	default:
+		/* NOTREACHED */
+		dev_err(dev, "unknown pdu\n");
+		usbip_event_add(ud, SDEV_EVENT_ERROR_TCP);
+		return;
+	}
+
+}
+
+void stub_rx_loop(struct usbip_task *ut)
+{
+	struct usbip_device *ud = container_of(ut, struct usbip_device, tcp_rx);
+
+	while (1) {
+		if (signal_pending(current)) {
+			dbg_stub_rx("signal caught!\n");
+			break;
+		}
+
+		if (usbip_event_happend(ud))
+			break;
+
+		stub_rx_pdu(ud);
+	}
+}
diff --git a/drivers/staging/usbip/stub_tx.c b/drivers/staging/usbip/stub_tx.c
new file mode 100644
index 0000000..d5563cd
--- /dev/null
+++ b/drivers/staging/usbip/stub_tx.c
@@ -0,0 +1,371 @@
+/*
+ * Copyright (C) 2003-2008 Takahiro Hirofuchi
+ *
+ * This is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or
+ * (at your option) any later version.
+ *
+ * This is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
+ * USA.
+ */
+
+#include "usbip_common.h"
+#include "stub.h"
+
+
+static void stub_free_priv_and_urb(struct stub_priv *priv)
+{
+	struct urb *urb = priv->urb;
+
+	kfree(urb->setup_packet);
+	kfree(urb->transfer_buffer);
+	list_del(&priv->list);
+	kmem_cache_free(stub_priv_cache, priv);
+	usb_free_urb(urb);
+}
+
+/* be in spin_lock_irqsave(&sdev->priv_lock, flags) */
+void stub_enqueue_ret_unlink(struct stub_device *sdev, __u32 seqnum,
+			     __u32 status)
+{
+	struct stub_unlink *unlink;
+
+	unlink = kzalloc(sizeof(struct stub_unlink), GFP_ATOMIC);
+	if (!unlink) {
+		dev_err(&sdev->interface->dev, "alloc stub_unlink\n");
+		usbip_event_add(&sdev->ud, VDEV_EVENT_ERROR_MALLOC);
+		return;
+	}
+
+	unlink->seqnum = seqnum;
+	unlink->status = status;
+
+	list_add_tail(&unlink->list, &sdev->unlink_tx);
+}
+
+/**
+ * stub_complete - completion handler of a usbip urb
+ * @urb: pointer to the urb completed
+ * @regs:
+ *
+ * When a urb has completed, the USB core driver calls this function mostly in
+ * the interrupt context. To return the result of a urb, the completed urb is
+ * linked to the pending list of returning.
+ *
+ */
+void stub_complete(struct urb *urb)
+{
+	struct stub_priv *priv = (struct stub_priv *) urb->context;
+	struct stub_device *sdev = priv->sdev;
+	unsigned long flags;
+
+	dbg_stub_tx("complete! status %d\n", urb->status);
+
+
+	switch (urb->status) {
+	case 0:
+		/* OK */
+		break;
+	case -ENOENT:
+		uinfo("stopped by a call of usb_kill_urb() because of"
+					"cleaning up a virtual connection\n");
+		return;
+	case -ECONNRESET:
+		uinfo("unlinked by a call of usb_unlink_urb()\n");
+		break;
+	case -EPIPE:
+		uinfo("endpoint %d is stalled\n", usb_pipeendpoint(urb->pipe));
+		break;
+	case -ESHUTDOWN:
+		uinfo("device removed?\n");
+		break;
+	default:
+		uinfo("urb completion with non-zero status %d\n", urb->status);
+	}
+
+	/* link a urb to the queue of tx. */
+	spin_lock_irqsave(&sdev->priv_lock, flags);
+
+	if (priv->unlinking) {
+		stub_enqueue_ret_unlink(sdev, priv->seqnum, urb->status);
+		stub_free_priv_and_urb(priv);
+	} else
+		list_move_tail(&priv->list, &sdev->priv_tx);
+
+
+	spin_unlock_irqrestore(&sdev->priv_lock, flags);
+
+	/* wake up tx_thread */
+	wake_up(&sdev->tx_waitq);
+}
+
+
+/*-------------------------------------------------------------------------*/
+/* fill PDU */
+
+static inline void setup_base_pdu(struct usbip_header_basic *base,
+		__u32 command, __u32 seqnum)
+{
+	base->command = command;
+	base->seqnum  = seqnum;
+	base->devid   = 0;
+	base->ep      = 0;
+	base->direction   = 0;
+}
+
+static void setup_ret_submit_pdu(struct usbip_header *rpdu, struct urb *urb)
+{
+	struct stub_priv *priv = (struct stub_priv *) urb->context;
+
+	setup_base_pdu(&rpdu->base, USBIP_RET_SUBMIT, priv->seqnum);
+
+	usbip_pack_pdu(rpdu, urb, USBIP_RET_SUBMIT, 1);
+}
+
+static void setup_ret_unlink_pdu(struct usbip_header *rpdu,
+		struct stub_unlink *unlink)
+{
+	setup_base_pdu(&rpdu->base, USBIP_RET_UNLINK, unlink->seqnum);
+
+	rpdu->u.ret_unlink.status = unlink->status;
+}
+
+
+/*-------------------------------------------------------------------------*/
+/* send RET_SUBMIT */
+
+static struct stub_priv *dequeue_from_priv_tx(struct stub_device *sdev)
+{
+	unsigned long flags;
+	struct stub_priv *priv, *tmp;
+
+	spin_lock_irqsave(&sdev->priv_lock, flags);
+
+	list_for_each_entry_safe(priv, tmp, &sdev->priv_tx, list) {
+		list_move_tail(&priv->list, &sdev->priv_free);
+		spin_unlock_irqrestore(&sdev->priv_lock, flags);
+		return priv;
+	}
+
+	spin_unlock_irqrestore(&sdev->priv_lock, flags);
+
+	return NULL;
+}
+
+static int stub_send_ret_submit(struct stub_device *sdev)
+{
+	unsigned long flags;
+	struct stub_priv *priv, *tmp;
+
+	struct msghdr msg;
+	struct kvec iov[3];
+	size_t txsize;
+
+	size_t total_size = 0;
+
+	while ((priv = dequeue_from_priv_tx(sdev)) != NULL) {
+		int ret;
+		struct urb *urb = priv->urb;
+		struct usbip_header pdu_header;
+		void *iso_buffer = NULL;
+
+		txsize = 0;
+		memset(&pdu_header, 0, sizeof(pdu_header));
+		memset(&msg, 0, sizeof(msg));
+		memset(&iov, 0, sizeof(iov));
+
+		dbg_stub_tx("setup txdata urb %p\n", urb);
+
+
+		/* 1. setup usbip_header */
+		setup_ret_submit_pdu(&pdu_header, urb);
+		usbip_header_correct_endian(&pdu_header, 1);
+
+		iov[0].iov_base = &pdu_header;
+		iov[0].iov_len  = sizeof(pdu_header);
+		txsize += sizeof(pdu_header);
+
+		/* 2. setup transfer buffer */
+		if (usb_pipein(urb->pipe) && urb->actual_length > 0) {
+			iov[1].iov_base = urb->transfer_buffer;
+			iov[1].iov_len  = urb->actual_length;
+			txsize += urb->actual_length;
+		}
+
+		/* 3. setup iso_packet_descriptor */
+		if (usb_pipetype(urb->pipe) == PIPE_ISOCHRONOUS) {
+			ssize_t len = 0;
+
+			iso_buffer = usbip_alloc_iso_desc_pdu(urb, &len);
+			if (!iso_buffer) {
+				usbip_event_add(&sdev->ud,
+						SDEV_EVENT_ERROR_MALLOC);
+				return -1;
+			}
+
+			iov[2].iov_base = iso_buffer;
+			iov[2].iov_len  = len;
+			txsize += len;
+		}
+
+		ret = kernel_sendmsg(sdev->ud.tcp_socket, &msg, iov,
+				     3, txsize);
+		if (ret != txsize) {
+			dev_err(&sdev->interface->dev,
+				"sendmsg failed!, retval %d for %zd\n",
+				ret, txsize);
+			kfree(iso_buffer);
+			usbip_event_add(&sdev->ud, SDEV_EVENT_ERROR_TCP);
+			return -1;
+		}
+
+		kfree(iso_buffer);
+		dbg_stub_tx("send txdata\n");
+
+		total_size += txsize;
+	}
+
+
+	spin_lock_irqsave(&sdev->priv_lock, flags);
+
+	list_for_each_entry_safe(priv, tmp, &sdev->priv_free, list) {
+		stub_free_priv_and_urb(priv);
+	}
+
+	spin_unlock_irqrestore(&sdev->priv_lock, flags);
+
+	return total_size;
+}
+
+
+/*-------------------------------------------------------------------------*/
+/* send RET_UNLINK */
+
+static struct stub_unlink *dequeue_from_unlink_tx(struct stub_device *sdev)
+{
+	unsigned long flags;
+	struct stub_unlink *unlink, *tmp;
+
+	spin_lock_irqsave(&sdev->priv_lock, flags);
+
+	list_for_each_entry_safe(unlink, tmp, &sdev->unlink_tx, list) {
+		list_move_tail(&unlink->list, &sdev->unlink_free);
+		spin_unlock_irqrestore(&sdev->priv_lock, flags);
+		return unlink;
+	}
+
+	spin_unlock_irqrestore(&sdev->priv_lock, flags);
+
+	return NULL;
+}
+
+
+static int stub_send_ret_unlink(struct stub_device *sdev)
+{
+	unsigned long flags;
+	struct stub_unlink *unlink, *tmp;
+
+	struct msghdr msg;
+	struct kvec iov[1];
+	size_t txsize;
+
+	size_t total_size = 0;
+
+	while ((unlink = dequeue_from_unlink_tx(sdev)) != NULL) {
+		int ret;
+		struct usbip_header pdu_header;
+
+		txsize = 0;
+		memset(&pdu_header, 0, sizeof(pdu_header));
+		memset(&msg, 0, sizeof(msg));
+		memset(&iov, 0, sizeof(iov));
+
+		dbg_stub_tx("setup ret unlink %lu\n", unlink->seqnum);
+
+		/* 1. setup usbip_header */
+		setup_ret_unlink_pdu(&pdu_header, unlink);
+		usbip_header_correct_endian(&pdu_header, 1);
+
+		iov[0].iov_base = &pdu_header;
+		iov[0].iov_len  = sizeof(pdu_header);
+		txsize += sizeof(pdu_header);
+
+		ret = kernel_sendmsg(sdev->ud.tcp_socket, &msg, iov,
+				     1, txsize);
+		if (ret != txsize) {
+			dev_err(&sdev->interface->dev,
+				"sendmsg failed!, retval %d for %zd\n",
+				ret, txsize);
+			usbip_event_add(&sdev->ud, SDEV_EVENT_ERROR_TCP);
+			return -1;
+		}
+
+
+		dbg_stub_tx("send txdata\n");
+
+		total_size += txsize;
+	}
+
+
+	spin_lock_irqsave(&sdev->priv_lock, flags);
+
+	list_for_each_entry_safe(unlink, tmp, &sdev->unlink_free, list) {
+		list_del(&unlink->list);
+		kfree(unlink);
+	}
+
+	spin_unlock_irqrestore(&sdev->priv_lock, flags);
+
+	return total_size;
+}
+
+
+/*-------------------------------------------------------------------------*/
+
+void stub_tx_loop(struct usbip_task *ut)
+{
+	struct usbip_device *ud = container_of(ut, struct usbip_device, tcp_tx);
+	struct stub_device *sdev = container_of(ud, struct stub_device, ud);
+
+	while (1) {
+		if (signal_pending(current)) {
+			dbg_stub_tx("signal catched\n");
+			break;
+		}
+
+		if (usbip_event_happend(ud))
+			break;
+
+		/*
+		 * send_ret_submit comes earlier than send_ret_unlink.  stub_rx
+		 * looks at only priv_init queue. If the completion of a URB is
+		 * earlier than the receive of CMD_UNLINK, priv is moved to
+		 * priv_tx queue and stub_rx does not find the target priv. In
+		 * this case, vhci_rx receives the result of the submit request
+		 * and then receives the result of the unlink request. The
+		 * result of the submit is given back to the usbcore as the
+		 * completion of the unlink request. The request of the
+		 * unlink is ignored. This is ok because a driver who calls
+		 * usb_unlink_urb() understands the unlink was too late by
+		 * getting the status of the given-backed URB which has the
+		 * status of usb_submit_urb().
+		 */
+		if (stub_send_ret_submit(sdev) < 0)
+			break;
+
+		if (stub_send_ret_unlink(sdev) < 0)
+			break;
+
+		wait_event_interruptible(sdev->tx_waitq,
+				(!list_empty(&sdev->priv_tx) ||
+				 !list_empty(&sdev->unlink_tx)));
+	}
+}
diff --git a/drivers/staging/usbip/usbip_common.c b/drivers/staging/usbip/usbip_common.c
new file mode 100644
index 0000000..e64918f
--- /dev/null
+++ b/drivers/staging/usbip/usbip_common.c
@@ -0,0 +1,997 @@
+/*
+ * Copyright (C) 2003-2008 Takahiro Hirofuchi
+ *
+ * This is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or
+ * (at your option) any later version.
+ *
+ * This is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
+ * USA.
+ */
+
+#include <linux/kernel.h>
+#include <linux/file.h>
+#include <linux/tcp.h>
+#include <linux/in.h>
+#include "usbip_common.h"
+
+/* version information */
+#define DRIVER_VERSION "1.0"
+#define DRIVER_AUTHOR "Takahiro Hirofuchi <hirofuchi _at_ users.sourceforge.net>"
+#define DRIVER_DESC "usbip common driver"
+
+/*-------------------------------------------------------------------------*/
+/* debug routines */
+
+#ifdef CONFIG_USB_DEBUG
+unsigned long usbip_debug_flag = 0xffffffff;
+#else
+unsigned long usbip_debug_flag;
+#endif
+EXPORT_SYMBOL_GPL(usbip_debug_flag);
+
+
+/* FIXME */
+struct device_attribute dev_attr_usbip_debug;
+EXPORT_SYMBOL_GPL(dev_attr_usbip_debug);
+
+
+static ssize_t show_flag(struct device *dev, struct device_attribute *attr,
+								char *buf)
+{
+	return sprintf(buf, "%lx\n", usbip_debug_flag);
+}
+
+static ssize_t store_flag(struct device *dev, struct device_attribute *attr,
+		const char *buf, size_t count)
+{
+	unsigned long flag;
+
+	sscanf(buf, "%lx", &flag);
+	usbip_debug_flag = flag;
+
+	return count;
+}
+DEVICE_ATTR(usbip_debug, (S_IRUGO | S_IWUSR), show_flag, store_flag);
+
+static void usbip_dump_buffer(char *buff, int bufflen)
+{
+	int i;
+
+	if (bufflen > 128) {
+		for (i = 0; i < 128; i++) {
+			if (i%24 == 0)
+				printk("   ");
+			printk("%02x ", (unsigned char) buff[i]);
+			if (i%4 == 3)
+				printk("| ");
+			if (i%24 == 23)
+				printk("\n");
+		}
+		printk("... (%d byte)\n", bufflen);
+		return;
+	}
+
+	for (i = 0; i < bufflen; i++) {
+		if (i%24 == 0)
+			printk("   ");
+		printk("%02x ", (unsigned char) buff[i]);
+		if (i%4 == 3)
+			printk("| ");
+		if (i%24 == 23)
+			printk("\n");
+	}
+	printk("\n");
+
+}
+
+static void usbip_dump_pipe(unsigned int p)
+{
+	unsigned char type = usb_pipetype(p);
+	unsigned char ep = usb_pipeendpoint(p);
+	unsigned char dev = usb_pipedevice(p);
+	unsigned char dir = usb_pipein(p);
+
+	printk("dev(%d) ", dev);
+	printk("ep(%d) ",  ep);
+	printk("%s ", dir ? "IN" : "OUT");
+
+	switch (type) {
+	case PIPE_ISOCHRONOUS:
+		printk("%s ", "ISO");
+		break;
+	case PIPE_INTERRUPT:
+		printk("%s ", "INT");
+		break;
+	case PIPE_CONTROL:
+		printk("%s ", "CTL");
+		break;
+	case PIPE_BULK:
+		printk("%s ", "BLK");
+		break;
+	default:
+		printk("ERR");
+	}
+
+	printk("\n");
+
+}
+
+static void usbip_dump_usb_device(struct usb_device *udev)
+{
+	struct device *dev = &udev->dev;
+	int i;
+
+	dev_dbg(dev, "       devnum(%d) devpath(%s)",
+		udev->devnum, udev->devpath);
+
+	switch (udev->speed) {
+	case USB_SPEED_HIGH:
+		printk(" SPD_HIGH");
+		break;
+	case USB_SPEED_FULL:
+		printk(" SPD_FULL");
+		break;
+	case USB_SPEED_LOW:
+		printk(" SPD_LOW");
+		break;
+	case USB_SPEED_UNKNOWN:
+		printk(" SPD_UNKNOWN");
+		break;
+	default:
+		printk(" SPD_ERROR");
+	}
+
+	printk(" tt %p, ttport %d", udev->tt, udev->ttport);
+	printk("\n");
+
+	dev_dbg(dev, "                    ");
+	for (i = 0; i < 16; i++)
+		printk(" %2u", i);
+	printk("\n");
+
+	dev_dbg(dev, "       toggle0(IN) :");
+	for (i = 0; i < 16; i++)
+		printk(" %2u", (udev->toggle[0] & (1 << i)) ? 1 : 0);
+	printk("\n");
+
+	dev_dbg(dev, "       toggle1(OUT):");
+	for (i = 0; i < 16; i++)
+		printk(" %2u", (udev->toggle[1] & (1 << i)) ? 1 : 0);
+	printk("\n");
+
+
+	dev_dbg(dev, "       epmaxp_in   :");
+	for (i = 0; i < 16; i++) {
+		if (udev->ep_in[i])
+			printk(" %2u",
+			     le16_to_cpu(udev->ep_in[i]->desc.wMaxPacketSize));
+	}
+	printk("\n");
+
+	dev_dbg(dev, "       epmaxp_out  :");
+	for (i = 0; i < 16; i++) {
+		if (udev->ep_out[i])
+			printk(" %2u",
+			     le16_to_cpu(udev->ep_out[i]->desc.wMaxPacketSize));
+	}
+	printk("\n");
+
+	dev_dbg(dev, "parent %p, bus %p\n", udev->parent, udev->bus);
+
+	dev_dbg(dev, "descriptor %p, config %p, actconfig %p, "
+		"rawdescriptors %p\n", &udev->descriptor, udev->config,
+		udev->actconfig, udev->rawdescriptors);
+
+	dev_dbg(dev, "have_langid %d, string_langid %d\n",
+		udev->have_langid, udev->string_langid);
+
+	dev_dbg(dev, "maxchild %d, children %p\n",
+		udev->maxchild, udev->children);
+}
+
+static void usbip_dump_request_type(__u8 rt)
+{
+	switch (rt & USB_RECIP_MASK) {
+	case USB_RECIP_DEVICE:
+		printk("DEVICE");
+		break;
+	case USB_RECIP_INTERFACE:
+		printk("INTERF");
+		break;
+	case USB_RECIP_ENDPOINT:
+		printk("ENDPOI");
+		break;
+	case USB_RECIP_OTHER:
+		printk("OTHER ");
+		break;
+	default:
+		printk("------");
+	}
+}
+
+static void usbip_dump_usb_ctrlrequest(struct usb_ctrlrequest *cmd)
+{
+	if (!cmd) {
+		printk("      %s : null pointer\n", __FUNCTION__);
+		return;
+	}
+
+	printk("       ");
+	printk("bRequestType(%02X) ", cmd->bRequestType);
+	printk("bRequest(%02X) " , cmd->bRequest);
+	printk("wValue(%04X) ", cmd->wValue);
+	printk("wIndex(%04X) ", cmd->wIndex);
+	printk("wLength(%04X) ", cmd->wLength);
+
+	printk("\n       ");
+
+	if ((cmd->bRequestType & USB_TYPE_MASK) == USB_TYPE_STANDARD) {
+		printk("STANDARD ");
+		switch (cmd->bRequest) {
+		case USB_REQ_GET_STATUS:
+			printk("GET_STATUS");
+			break;
+		case USB_REQ_CLEAR_FEATURE:
+			printk("CLEAR_FEAT");
+			break;
+		case USB_REQ_SET_FEATURE:
+			printk("SET_FEAT  ");
+			break;
+		case USB_REQ_SET_ADDRESS:
+			printk("SET_ADDRRS");
+			break;
+		case USB_REQ_GET_DESCRIPTOR:
+			printk("GET_DESCRI");
+			break;
+		case USB_REQ_SET_DESCRIPTOR:
+			printk("SET_DESCRI");
+			break;
+		case USB_REQ_GET_CONFIGURATION:
+			printk("GET_CONFIG");
+			break;
+		case USB_REQ_SET_CONFIGURATION:
+			printk("SET_CONFIG");
+			break;
+		case USB_REQ_GET_INTERFACE:
+			printk("GET_INTERF");
+			break;
+		case USB_REQ_SET_INTERFACE:
+			printk("SET_INTERF");
+			break;
+		case USB_REQ_SYNCH_FRAME:
+			printk("SYNC_FRAME");
+			break;
+		default:
+			printk("REQ(%02X) ", cmd->bRequest);
+		}
+
+		printk(" ");
+		usbip_dump_request_type(cmd->bRequestType);
+
+	} else if ((cmd->bRequestType & USB_TYPE_MASK) == USB_TYPE_CLASS)
+		printk("CLASS   ");
+
+	else if ((cmd->bRequestType & USB_TYPE_MASK) == USB_TYPE_VENDOR)
+		printk("VENDOR  ");
+
+	else if ((cmd->bRequestType & USB_TYPE_MASK) == USB_TYPE_RESERVED)
+		printk("RESERVED");
+
+	printk("\n");
+}
+
+void usbip_dump_urb(struct urb *urb)
+{
+	struct device *dev;
+
+	if (!urb) {
+		printk(KERN_DEBUG KBUILD_MODNAME
+		       ":%s: urb: null pointer!!\n", __func__);
+		return;
+	}
+
+	if (!urb->dev) {
+		printk(KERN_DEBUG KBUILD_MODNAME
+		       ":%s: urb->dev: null pointer!!\n", __func__);
+		return;
+	}
+	dev = &urb->dev->dev;
+
+	dev_dbg(dev, "   urb                   :%p\n", urb);
+	dev_dbg(dev, "   dev                   :%p\n", urb->dev);
+
+	usbip_dump_usb_device(urb->dev);
+
+	dev_dbg(dev, "   pipe                  :%08x ", urb->pipe);
+
+	usbip_dump_pipe(urb->pipe);
+
+	dev_dbg(dev, "   status                :%d\n", urb->status);
+	dev_dbg(dev, "   transfer_flags        :%08X\n", urb->transfer_flags);
+	dev_dbg(dev, "   transfer_buffer       :%p\n", urb->transfer_buffer);
+	dev_dbg(dev, "   transfer_buffer_length:%d\n", urb->transfer_buffer_length);
+	dev_dbg(dev, "   actual_length         :%d\n", urb->actual_length);
+	dev_dbg(dev, "   setup_packet          :%p\n", urb->setup_packet);
+
+	if (urb->setup_packet && usb_pipetype(urb->pipe) == PIPE_CONTROL)
+			usbip_dump_usb_ctrlrequest(
+			(struct usb_ctrlrequest *)urb->setup_packet);
+
+	dev_dbg(dev, "   start_frame           :%d\n", urb->start_frame);
+	dev_dbg(dev, "   number_of_packets     :%d\n", urb->number_of_packets);
+	dev_dbg(dev, "   interval              :%d\n", urb->interval);
+	dev_dbg(dev, "   error_count           :%d\n", urb->error_count);
+	dev_dbg(dev, "   context               :%p\n", urb->context);
+	dev_dbg(dev, "   complete              :%p\n", urb->complete);
+}
+EXPORT_SYMBOL_GPL(usbip_dump_urb);
+
+void usbip_dump_header(struct usbip_header *pdu)
+{
+	udbg("BASE: cmd %u seq %u devid %u dir %u ep %u\n",
+			pdu->base.command,
+			pdu->base.seqnum,
+			pdu->base.devid,
+			pdu->base.direction,
+			pdu->base.ep);
+
+	switch (pdu->base.command) {
+	case USBIP_CMD_SUBMIT:
+		udbg("CMD_SUBMIT: x_flags %u x_len %u sf %u #p %u iv %u\n",
+				pdu->u.cmd_submit.transfer_flags,
+				pdu->u.cmd_submit.transfer_buffer_length,
+				pdu->u.cmd_submit.start_frame,
+				pdu->u.cmd_submit.number_of_packets,
+				pdu->u.cmd_submit.interval);
+				break;
+	case USBIP_CMD_UNLINK:
+		udbg("CMD_UNLINK: seq %u\n", pdu->u.cmd_unlink.seqnum);
+		break;
+	case USBIP_RET_SUBMIT:
+		udbg("RET_SUBMIT: st %d al %u sf %d ec %d\n",
+				pdu->u.ret_submit.status,
+				pdu->u.ret_submit.actual_length,
+				pdu->u.ret_submit.start_frame,
+				pdu->u.ret_submit.error_count);
+	case USBIP_RET_UNLINK:
+		udbg("RET_UNLINK: status %d\n", pdu->u.ret_unlink.status);
+		break;
+	default:
+		/* NOT REACHED */
+		udbg("UNKNOWN\n");
+	}
+}
+EXPORT_SYMBOL_GPL(usbip_dump_header);
+
+
+/*-------------------------------------------------------------------------*/
+/* thread routines */
+
+int usbip_thread(void *param)
+{
+	struct usbip_task *ut = param;
+
+	if (!ut)
+		return -EINVAL;
+
+	lock_kernel();
+	daemonize(ut->name);
+	allow_signal(SIGKILL);
+	ut->thread = current;
+	unlock_kernel();
+
+	/* srv.rb must wait for rx_thread starting */
+	complete(&ut->thread_done);
+
+	/* start of while loop */
+	ut->loop_ops(ut);
+
+	/* end of loop */
+	ut->thread = NULL;
+
+	complete_and_exit(&ut->thread_done, 0);
+}
+
+void usbip_start_threads(struct usbip_device *ud)
+{
+	/*
+	 * threads are invoked per one device (per one connection).
+	 */
+	kernel_thread(usbip_thread, (void *)&ud->tcp_rx, 0);
+	kernel_thread(usbip_thread, (void *)&ud->tcp_tx, 0);
+
+	/* confirm threads are starting */
+	wait_for_completion(&ud->tcp_rx.thread_done);
+	wait_for_completion(&ud->tcp_tx.thread_done);
+}
+EXPORT_SYMBOL_GPL(usbip_start_threads);
+
+void usbip_stop_threads(struct usbip_device *ud)
+{
+	/* kill threads related to this sdev, if v.c. exists */
+	if (ud->tcp_rx.thread != NULL) {
+		send_sig(SIGKILL, ud->tcp_rx.thread, 1);
+		wait_for_completion(&ud->tcp_rx.thread_done);
+		udbg("rx_thread for ud %p has finished\n", ud);
+	}
+
+	if (ud->tcp_tx.thread != NULL) {
+		send_sig(SIGKILL, ud->tcp_tx.thread, 1);
+		wait_for_completion(&ud->tcp_tx.thread_done);
+		udbg("tx_thread for ud %p has finished\n", ud);
+	}
+}
+EXPORT_SYMBOL_GPL(usbip_stop_threads);
+
+void usbip_task_init(struct usbip_task *ut, char *name,
+		void (*loop_ops)(struct usbip_task *))
+{
+	ut->thread = NULL;
+	init_completion(&ut->thread_done);
+	ut->name = name;
+	ut->loop_ops = loop_ops;
+}
+EXPORT_SYMBOL_GPL(usbip_task_init);
+
+
+/*-------------------------------------------------------------------------*/
+/* socket routines */
+
+ /*  Send/receive messages over TCP/IP. I refer drivers/block/nbd.c */
+int usbip_xmit(int send, struct socket *sock, char *buf,
+	       int size, int msg_flags)
+{
+	int result;
+	struct msghdr msg;
+	struct kvec iov;
+	int total = 0;
+
+	/* for blocks of if (dbg_flag_xmit) */
+	char *bp = buf;
+	int osize = size;
+
+	dbg_xmit("enter\n");
+
+	if (!sock || !buf || !size) {
+		printk(KERN_ERR "%s: invalid arg, sock %p buff %p size %d\n",
+		       __func__, sock, buf, size);
+		return -EINVAL;
+	}
+
+
+	if (dbg_flag_xmit) {
+		if (send) {
+			if (!in_interrupt())
+				printk(KERN_DEBUG "%-10s:", current->comm);
+			else
+				printk(KERN_DEBUG "interupt  :");
+
+			printk("%s: sending... , sock %p, buf %p, "
+			       "size %d, msg_flags %d\n", __func__,
+			       sock, buf, size, msg_flags);
+			usbip_dump_buffer(buf, size);
+		}
+	}
+
+
+	do {
+		sock->sk->sk_allocation = GFP_NOIO;
+		iov.iov_base    = buf;
+		iov.iov_len     = size;
+		msg.msg_name    = NULL;
+		msg.msg_namelen = 0;
+		msg.msg_control = NULL;
+		msg.msg_controllen = 0;
+		msg.msg_namelen    = 0;
+		msg.msg_flags      = msg_flags | MSG_NOSIGNAL;
+
+		if (send)
+			result = kernel_sendmsg(sock, &msg, &iov, 1, size);
+		else
+			result = kernel_recvmsg(sock, &msg, &iov, 1, size,
+								MSG_WAITALL);
+
+		if (result <= 0) {
+			udbg("usbip_xmit: %s sock %p buf %p size %u ret %d"
+					" total %d\n",
+					send ? "send" : "receive", sock, buf,
+					size, result, total);
+			goto err;
+		}
+
+		size -= result;
+		buf += result;
+		total += result;
+
+	} while (size > 0);
+
+
+	if (dbg_flag_xmit) {
+		if (!send) {
+			if (!in_interrupt())
+				printk(KERN_DEBUG "%-10s:", current->comm);
+			else
+				printk(KERN_DEBUG "interupt  :");
+
+			printk("usbip_xmit: receiving....\n");
+			usbip_dump_buffer(bp, osize);
+			printk("usbip_xmit: received, osize %d ret %d size %d "
+					"total %d\n", osize, result, size,
+					total);
+		}
+
+		if (send)
+			printk("usbip_xmit: send, total %d\n", total);
+	}
+
+	return total;
+
+err:
+	return result;
+}
+EXPORT_SYMBOL_GPL(usbip_xmit);
+
+
+/* now a usrland utility should set options. */
+#if 0
+int setquickack(struct socket *socket)
+{
+	mm_segment_t oldfs;
+	int val = 1;
+	int ret;
+
+	oldfs = get_fs();
+	set_fs(get_ds());
+	ret = socket->ops->setsockopt(socket, SOL_TCP, TCP_QUICKACK,
+			(char __user *) &val, sizeof(ret));
+	set_fs(oldfs);
+
+	return ret;
+}
+
+int setnodelay(struct socket *socket)
+{
+	mm_segment_t oldfs;
+	int val = 1;
+	int ret;
+
+	oldfs = get_fs();
+	set_fs(get_ds());
+	ret = socket->ops->setsockopt(socket, SOL_TCP, TCP_NODELAY,
+			(char __user *) &val, sizeof(ret));
+	set_fs(oldfs);
+
+	return ret;
+}
+
+int setkeepalive(struct socket *socket)
+{
+	mm_segment_t oldfs;
+	int val = 1;
+	int ret;
+
+	oldfs = get_fs();
+	set_fs(get_ds());
+	ret = socket->ops->setsockopt(socket, SOL_SOCKET, SO_KEEPALIVE,
+			(char __user *) &val, sizeof(ret));
+	set_fs(oldfs);
+
+	return ret;
+}
+
+void setreuse(struct socket *socket)
+{
+	socket->sk->sk_reuse = 1;
+}
+#endif
+
+struct socket *sockfd_to_socket(unsigned int sockfd)
+{
+	struct socket *socket;
+	struct file *file;
+	struct inode *inode;
+
+	file = fget(sockfd);
+	if (!file) {
+		printk(KERN_ERR "%s: invalid sockfd\n", __func__);
+		return NULL;
+	}
+
+	inode = file->f_dentry->d_inode;
+
+	if (!inode || !S_ISSOCK(inode->i_mode))
+		return NULL;
+
+	socket = SOCKET_I(inode);
+
+	return socket;
+}
+EXPORT_SYMBOL_GPL(sockfd_to_socket);
+
+
+
+/*-------------------------------------------------------------------------*/
+/* pdu routines */
+
+/* there may be more cases to tweak the flags. */
+static unsigned int tweak_transfer_flags(unsigned int flags)
+{
+
+	if (flags & URB_NO_TRANSFER_DMA_MAP)
+		/*
+		 * vhci_hcd does not provide DMA-mapped I/O. The upper
+		 * driver does not need to set this flag. The remote
+		 * usbip.ko does not still perform DMA-mapped I/O for
+		 * DMA-caplable host controllers. So, clear this flag.
+		 */
+		flags &= ~URB_NO_TRANSFER_DMA_MAP;
+
+	if (flags & URB_NO_SETUP_DMA_MAP)
+		flags &= ~URB_NO_SETUP_DMA_MAP;
+
+	return flags;
+}
+
+static void usbip_pack_cmd_submit(struct usbip_header *pdu, struct urb *urb,
+								int pack)
+{
+	struct usbip_header_cmd_submit *spdu = &pdu->u.cmd_submit;
+
+	/*
+	 * Some members are not still implemented in usbip. I hope this issue
+	 * will be discussed when usbip is ported to other operating systems.
+	 */
+	if (pack) {
+		/* vhci_tx.c */
+		spdu->transfer_flags =
+				tweak_transfer_flags(urb->transfer_flags);
+		spdu->transfer_buffer_length	= urb->transfer_buffer_length;
+		spdu->start_frame		= urb->start_frame;
+		spdu->number_of_packets		= urb->number_of_packets;
+		spdu->interval			= urb->interval;
+	} else  {
+		/* stub_rx.c */
+		urb->transfer_flags         = spdu->transfer_flags;
+
+		urb->transfer_buffer_length = spdu->transfer_buffer_length;
+		urb->start_frame            = spdu->start_frame;
+		urb->number_of_packets      = spdu->number_of_packets;
+		urb->interval               = spdu->interval;
+	}
+}
+
+static void usbip_pack_ret_submit(struct usbip_header *pdu, struct urb *urb,
+								int pack)
+{
+	struct usbip_header_ret_submit *rpdu = &pdu->u.ret_submit;
+
+	if (pack) {
+		/* stub_tx.c */
+
+		rpdu->status		= urb->status;
+		rpdu->actual_length	= urb->actual_length;
+		rpdu->start_frame	= urb->start_frame;
+		rpdu->error_count	= urb->error_count;
+	} else {
+		/* vhci_rx.c */
+
+		urb->status		= rpdu->status;
+		urb->actual_length	= rpdu->actual_length;
+		urb->start_frame	= rpdu->start_frame;
+		urb->error_count	= rpdu->error_count;
+	}
+}
+
+
+void usbip_pack_pdu(struct usbip_header *pdu, struct urb *urb, int cmd,
+								int pack)
+{
+	switch (cmd) {
+	case USBIP_CMD_SUBMIT:
+		usbip_pack_cmd_submit(pdu, urb, pack);
+		break;
+	case USBIP_RET_SUBMIT:
+		usbip_pack_ret_submit(pdu, urb, pack);
+		break;
+	default:
+		err("unknown command");
+		/* NOTREACHED */
+		/* BUG(); */
+	}
+}
+EXPORT_SYMBOL_GPL(usbip_pack_pdu);
+
+
+static void correct_endian_basic(struct usbip_header_basic *base, int send)
+{
+	if (send) {
+		base->command	= cpu_to_be32(base->command);
+		base->seqnum	= cpu_to_be32(base->seqnum);
+		base->devid	= cpu_to_be32(base->devid);
+		base->direction	= cpu_to_be32(base->direction);
+		base->ep	= cpu_to_be32(base->ep);
+	} else {
+		base->command	= be32_to_cpu(base->command);
+		base->seqnum	= be32_to_cpu(base->seqnum);
+		base->devid	= be32_to_cpu(base->devid);
+		base->direction	= be32_to_cpu(base->direction);
+		base->ep	= be32_to_cpu(base->ep);
+	}
+}
+
+static void correct_endian_cmd_submit(struct usbip_header_cmd_submit *pdu,
+								int send)
+{
+	if (send) {
+		pdu->transfer_flags = cpu_to_be32(pdu->transfer_flags);
+
+		cpu_to_be32s(&pdu->transfer_buffer_length);
+		cpu_to_be32s(&pdu->start_frame);
+		cpu_to_be32s(&pdu->number_of_packets);
+		cpu_to_be32s(&pdu->interval);
+	} else {
+		pdu->transfer_flags = be32_to_cpu(pdu->transfer_flags);
+
+		be32_to_cpus(&pdu->transfer_buffer_length);
+		be32_to_cpus(&pdu->start_frame);
+		be32_to_cpus(&pdu->number_of_packets);
+		be32_to_cpus(&pdu->interval);
+	}
+}
+
+static void correct_endian_ret_submit(struct usbip_header_ret_submit *pdu,
+								int send)
+{
+	if (send) {
+		cpu_to_be32s(&pdu->status);
+		cpu_to_be32s(&pdu->actual_length);
+		cpu_to_be32s(&pdu->start_frame);
+		cpu_to_be32s(&pdu->error_count);
+	} else {
+		be32_to_cpus(&pdu->status);
+		be32_to_cpus(&pdu->actual_length);
+		be32_to_cpus(&pdu->start_frame);
+		be32_to_cpus(&pdu->error_count);
+	}
+}
+
+static void correct_endian_cmd_unlink(struct usbip_header_cmd_unlink *pdu,
+								int send)
+{
+	if (send)
+		pdu->seqnum = cpu_to_be32(pdu->seqnum);
+	else
+		pdu->seqnum = be32_to_cpu(pdu->seqnum);
+}
+
+static void correct_endian_ret_unlink(struct usbip_header_ret_unlink *pdu,
+								int send)
+{
+	if (send)
+		cpu_to_be32s(&pdu->status);
+	else
+		be32_to_cpus(&pdu->status);
+}
+
+void usbip_header_correct_endian(struct usbip_header *pdu, int send)
+{
+	__u32 cmd = 0;
+
+	if (send)
+		cmd = pdu->base.command;
+
+	correct_endian_basic(&pdu->base, send);
+
+	if (!send)
+		cmd = pdu->base.command;
+
+	switch (cmd) {
+	case USBIP_CMD_SUBMIT:
+		correct_endian_cmd_submit(&pdu->u.cmd_submit, send);
+		break;
+	case USBIP_RET_SUBMIT:
+		correct_endian_ret_submit(&pdu->u.ret_submit, send);
+		break;
+	case USBIP_CMD_UNLINK:
+		correct_endian_cmd_unlink(&pdu->u.cmd_unlink, send);
+		break;
+	case USBIP_RET_UNLINK:
+		correct_endian_ret_unlink(&pdu->u.ret_unlink, send);
+		break;
+	default:
+		/* NOTREACHED */
+		err("unknown command in pdu header: %d", cmd);
+		/* BUG(); */
+	}
+}
+EXPORT_SYMBOL_GPL(usbip_header_correct_endian);
+
+static void usbip_iso_pakcet_correct_endian(
+				struct usbip_iso_packet_descriptor *iso,
+				int send)
+{
+	/* does not need all members. but copy all simply. */
+	if (send) {
+		iso->offset	= cpu_to_be32(iso->offset);
+		iso->length	= cpu_to_be32(iso->length);
+		iso->status	= cpu_to_be32(iso->status);
+		iso->actual_length = cpu_to_be32(iso->actual_length);
+	} else {
+		iso->offset	= be32_to_cpu(iso->offset);
+		iso->length	= be32_to_cpu(iso->length);
+		iso->status	= be32_to_cpu(iso->status);
+		iso->actual_length = be32_to_cpu(iso->actual_length);
+	}
+}
+
+static void usbip_pack_iso(struct usbip_iso_packet_descriptor *iso,
+		struct usb_iso_packet_descriptor *uiso, int pack)
+{
+	if (pack) {
+		iso->offset		= uiso->offset;
+		iso->length		= uiso->length;
+		iso->status		= uiso->status;
+		iso->actual_length	= uiso->actual_length;
+	} else {
+		uiso->offset		= iso->offset;
+		uiso->length		= iso->length;
+		uiso->status		= iso->status;
+		uiso->actual_length	= iso->actual_length;
+	}
+}
+
+
+/* must free buffer */
+void *usbip_alloc_iso_desc_pdu(struct urb *urb, ssize_t *bufflen)
+{
+	void *buff;
+	struct usbip_iso_packet_descriptor *iso;
+	int np = urb->number_of_packets;
+	ssize_t size = np * sizeof(*iso);
+	int i;
+
+	buff = kzalloc(size, GFP_KERNEL);
+	if (!buff)
+		return NULL;
+
+	for (i = 0; i < np; i++) {
+		iso = buff + (i * sizeof(*iso));
+
+		usbip_pack_iso(iso, &urb->iso_frame_desc[i], 1);
+		usbip_iso_pakcet_correct_endian(iso, 1);
+	}
+
+	*bufflen = size;
+
+	return buff;
+}
+EXPORT_SYMBOL_GPL(usbip_alloc_iso_desc_pdu);
+
+/* some members of urb must be substituted before. */
+int usbip_recv_iso(struct usbip_device *ud, struct urb *urb)
+{
+	void *buff;
+	struct usbip_iso_packet_descriptor *iso;
+	int np = urb->number_of_packets;
+	int size = np * sizeof(*iso);
+	int i;
+	int ret;
+
+	if (!usb_pipeisoc(urb->pipe))
+		return 0;
+
+	/* my Bluetooth dongle gets ISO URBs which are np = 0 */
+	if (np == 0) {
+		/* uinfo("iso np == 0\n"); */
+		/* usbip_dump_urb(urb); */
+		return 0;
+	}
+
+	buff = kzalloc(size, GFP_KERNEL);
+	if (!buff)
+		return -ENOMEM;
+
+	ret = usbip_xmit(0, ud->tcp_socket, buff, size, 0);
+	if (ret != size) {
+		dev_err(&urb->dev->dev, "recv iso_frame_descriptor, %d\n",
+			ret);
+		kfree(buff);
+
+		if (ud->side == USBIP_STUB)
+			usbip_event_add(ud, SDEV_EVENT_ERROR_TCP);
+		else
+			usbip_event_add(ud, VDEV_EVENT_ERROR_TCP);
+
+		return -EPIPE;
+	}
+
+	for (i = 0; i < np; i++) {
+		iso = buff + (i * sizeof(*iso));
+
+		usbip_iso_pakcet_correct_endian(iso, 0);
+		usbip_pack_iso(iso, &urb->iso_frame_desc[i], 0);
+	}
+
+
+	kfree(buff);
+
+	return ret;
+}
+EXPORT_SYMBOL_GPL(usbip_recv_iso);
+
+
+/* some members of urb must be substituted before. */
+int usbip_recv_xbuff(struct usbip_device *ud, struct urb *urb)
+{
+	int ret;
+	int size;
+
+	if (ud->side == USBIP_STUB) {
+		/* stub_rx.c */
+		/* the direction of urb must be OUT. */
+		if (usb_pipein(urb->pipe))
+			return 0;
+
+		size = urb->transfer_buffer_length;
+	} else {
+		/* vhci_rx.c */
+		/* the direction of urb must be IN. */
+		if (usb_pipeout(urb->pipe))
+			return 0;
+
+		size = urb->actual_length;
+	}
+
+	/* no need to recv xbuff */
+	if (!(size > 0))
+		return 0;
+
+	ret = usbip_xmit(0, ud->tcp_socket, (char *)urb->transfer_buffer,
+			 size, 0);
+	if (ret != size) {
+		dev_err(&urb->dev->dev, "recv xbuf, %d\n", ret);
+		if (ud->side == USBIP_STUB) {
+			usbip_event_add(ud, SDEV_EVENT_ERROR_TCP);
+		} else {
+			usbip_event_add(ud, VDEV_EVENT_ERROR_TCP);
+			return -EPIPE;
+		}
+	}
+
+	return ret;
+}
+EXPORT_SYMBOL_GPL(usbip_recv_xbuff);
+
+
+/*-------------------------------------------------------------------------*/
+
+static int __init usbip_common_init(void)
+{
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_DESC "" DRIVER_VERSION);
+
+	return 0;
+}
+
+static void __exit usbip_common_exit(void)
+{
+	return;
+}
+
+
+
+
+module_init(usbip_common_init);
+module_exit(usbip_common_exit);
+
+MODULE_AUTHOR(DRIVER_AUTHOR);
+MODULE_DESCRIPTION(DRIVER_DESC);
+MODULE_LICENSE("GPL");
diff --git a/drivers/staging/usbip/usbip_common.h b/drivers/staging/usbip/usbip_common.h
new file mode 100644
index 0000000..b0186b7
--- /dev/null
+++ b/drivers/staging/usbip/usbip_common.h
@@ -0,0 +1,406 @@
+/*
+ * Copyright (C) 2003-2008 Takahiro Hirofuchi
+ *
+ * This is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or
+ * (at your option) any later version.
+ *
+ * This is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
+ * USA.
+ */
+
+#ifndef __VHCI_COMMON_H
+#define __VHCI_COMMON_H
+
+
+#include <linux/version.h>
+#include <linux/usb.h>
+#include <asm/byteorder.h>
+#include <net/sock.h>
+
+/*-------------------------------------------------------------------------*/
+
+/*
+ * define macros to print messages
+ */
+
+/**
+ * udbg - print debug messages if CONFIG_USB_DEBUG is defined
+ * @fmt:
+ * @args:
+ */
+
+#ifdef CONFIG_USB_DEBUG
+
+#define udbg(fmt, args...)						\
+	do {								\
+		printk(KERN_DEBUG "%-10s:(%s,%d) %s: " fmt,		\
+			(in_interrupt() ? "interrupt" : (current)->comm),\
+			__FILE__, __LINE__, __func__, ##args);	\
+	} while (0)
+
+#else  /* CONFIG_USB_DEBUG */
+
+#define udbg(fmt, args...)		do { } while (0)
+
+#endif /* CONFIG_USB_DEBUG */
+
+
+enum {
+	usbip_debug_xmit	= (1 << 0),
+	usbip_debug_sysfs	= (1 << 1),
+	usbip_debug_urb		= (1 << 2),
+	usbip_debug_eh		= (1 << 3),
+
+	usbip_debug_stub_cmp	= (1 << 8),
+	usbip_debug_stub_dev	= (1 << 9),
+	usbip_debug_stub_rx	= (1 << 10),
+	usbip_debug_stub_tx	= (1 << 11),
+
+	usbip_debug_vhci_rh	= (1 << 8),
+	usbip_debug_vhci_hc	= (1 << 9),
+	usbip_debug_vhci_rx	= (1 << 10),
+	usbip_debug_vhci_tx	= (1 << 11),
+	usbip_debug_vhci_sysfs  = (1 << 12)
+};
+
+#define dbg_flag_xmit		(usbip_debug_flag & usbip_debug_xmit)
+#define dbg_flag_vhci_rh	(usbip_debug_flag & usbip_debug_vhci_rh)
+#define dbg_flag_vhci_hc	(usbip_debug_flag & usbip_debug_vhci_hc)
+#define dbg_flag_vhci_rx	(usbip_debug_flag & usbip_debug_vhci_rx)
+#define dbg_flag_vhci_tx	(usbip_debug_flag & usbip_debug_vhci_tx)
+#define dbg_flag_vhci_sysfs	(usbip_debug_flag & usbip_debug_vhci_sysfs)
+#define dbg_flag_stub_rx	(usbip_debug_flag & usbip_debug_stub_rx)
+#define dbg_flag_stub_tx	(usbip_debug_flag & usbip_debug_stub_tx)
+
+extern unsigned long usbip_debug_flag;
+extern struct device_attribute dev_attr_usbip_debug;
+
+#define dbg_with_flag(flag, fmt, args...)		\
+	do {						\
+		if (flag & usbip_debug_flag)		\
+			udbg(fmt , ##args);		\
+	} while (0)
+
+#define dbg_sysfs(fmt, args...)		\
+	dbg_with_flag(usbip_debug_sysfs, fmt , ##args)
+#define dbg_xmit(fmt, args...)		\
+	dbg_with_flag(usbip_debug_xmit, fmt , ##args)
+#define dbg_urb(fmt, args...)		\
+	dbg_with_flag(usbip_debug_urb, fmt , ##args)
+#define dbg_eh(fmt, args...)		\
+	dbg_with_flag(usbip_debug_eh, fmt , ##args)
+
+#define dbg_vhci_rh(fmt, args...)	\
+	dbg_with_flag(usbip_debug_vhci_rh, fmt , ##args)
+#define dbg_vhci_hc(fmt, args...)	\
+	dbg_with_flag(usbip_debug_vhci_hc, fmt , ##args)
+#define dbg_vhci_rx(fmt, args...)	\
+	dbg_with_flag(usbip_debug_vhci_rx, fmt , ##args)
+#define dbg_vhci_tx(fmt, args...)	\
+	dbg_with_flag(usbip_debug_vhci_tx, fmt , ##args)
+#define dbg_vhci_sysfs(fmt, args...)	\
+	dbg_with_flag(usbip_debug_vhci_sysfs, fmt , ##args)
+
+#define dbg_stub_cmp(fmt, args...)	\
+	dbg_with_flag(usbip_debug_stub_cmp, fmt , ##args)
+#define dbg_stub_rx(fmt, args...)	\
+	dbg_with_flag(usbip_debug_stub_rx, fmt , ##args)
+#define dbg_stub_tx(fmt, args...)	\
+	dbg_with_flag(usbip_debug_stub_tx, fmt , ##args)
+
+
+/**
+ * uerr - print error messages
+ * @fmt:
+ * @args:
+ */
+#define uerr(fmt, args...)						\
+	do {								\
+		printk(KERN_ERR "%-10s: ***ERROR*** (%s,%d) %s: " fmt,	\
+			(in_interrupt() ? "interrupt" : (current)->comm),\
+			__FILE__, __LINE__, __func__, ##args);	\
+	} while (0)
+
+/**
+ * uinfo - print information messages
+ * @fmt:
+ * @args:
+ */
+#define uinfo(fmt, args...)					\
+	do {							\
+		printk(KERN_INFO "usbip: " fmt , ## args);	\
+	} while (0)
+
+
+/*-------------------------------------------------------------------------*/
+
+/*
+ * USB/IP request headers.
+ * Currently, we define 4 request types:
+ *
+ *  - CMD_SUBMIT transfers a USB request, corresponding to usb_submit_urb().
+ *    (client to server)
+ *  - RET_RETURN transfers the result of CMD_SUBMIT.
+ *    (server to client)
+ *  - CMD_UNLINK transfers an unlink request of a pending USB request.
+ *    (client to server)
+ *  - RET_UNLINK transfers the result of CMD_UNLINK.
+ *    (server to client)
+ *
+ * Note: The below request formats are based on the USB subsystem of Linux. Its
+ * details will be defined when other implementations come.
+ *
+ *
+ */
+
+/*
+ * A basic header followed by other additional headers.
+ */
+struct usbip_header_basic {
+#define USBIP_CMD_SUBMIT	0x0001
+#define USBIP_CMD_UNLINK	0x0002
+#define USBIP_RET_SUBMIT	0x0003
+#define USBIP_RET_UNLINK	0x0004
+	__u32 command;
+
+	 /* sequencial number which identifies requests.
+	  * incremented per connections */
+	__u32 seqnum;
+
+	/* devid is used to specify a remote USB device uniquely instead
+	 * of busnum and devnum in Linux. In the case of Linux stub_driver,
+	 * this value is ((busnum << 16) | devnum) */
+	__u32 devid;
+
+#define USBIP_DIR_OUT	0
+#define USBIP_DIR_IN 	1
+	__u32 direction;
+	__u32 ep;     /* endpoint number */
+} __attribute__ ((packed));
+
+/*
+ * An additional header for a CMD_SUBMIT packet.
+ */
+struct usbip_header_cmd_submit {
+	/* these values are basically the same as in a URB. */
+
+	/* the same in a URB. */
+	__u32 transfer_flags;
+
+	/* set the following data size (out),
+	 * or expected reading data size (in) */
+	__s32 transfer_buffer_length;
+
+	/* it is difficult for usbip to sync frames (reserved only?) */
+	__s32 start_frame;
+
+	/* the number of iso descriptors that follows this header */
+	__s32 number_of_packets;
+
+	/* the maximum time within which this request works in a host
+	 * controller of a server side */
+	__s32 interval;
+
+	/* set setup packet data for a CTRL request */
+	unsigned char setup[8];
+} __attribute__ ((packed));
+
+/*
+ * An additional header for a RET_SUBMIT packet.
+ */
+struct usbip_header_ret_submit {
+	__s32 status;
+	__s32 actual_length; /* returned data length */
+	__s32 start_frame; /* ISO and INT */
+	__s32 number_of_packets;  /* ISO only */
+	__s32 error_count; /* ISO only */
+} __attribute__ ((packed));
+
+/*
+ * An additional header for a CMD_UNLINK packet.
+ */
+struct usbip_header_cmd_unlink {
+	__u32 seqnum; /* URB's seqnum which will be unlinked */
+} __attribute__ ((packed));
+
+
+/*
+ * An additional header for a RET_UNLINK packet.
+ */
+struct usbip_header_ret_unlink {
+	__s32 status;
+} __attribute__ ((packed));
+
+
+/* the same as usb_iso_packet_descriptor but packed for pdu */
+struct usbip_iso_packet_descriptor {
+	__u32 offset;
+	__u32 length;            /* expected length */
+	__u32 actual_length;
+	__u32 status;
+} __attribute__ ((packed));
+
+
+/*
+ * All usbip packets use a common header to keep code simple.
+ */
+struct usbip_header {
+	struct usbip_header_basic base;
+
+	union {
+		struct usbip_header_cmd_submit	cmd_submit;
+		struct usbip_header_ret_submit	ret_submit;
+		struct usbip_header_cmd_unlink	cmd_unlink;
+		struct usbip_header_ret_unlink	ret_unlink;
+	} u;
+} __attribute__ ((packed));
+
+
+
+
+/*-------------------------------------------------------------------------*/
+
+
+int usbip_xmit(int, struct socket *, char *, int, int);
+int usbip_sendmsg(struct socket *, struct msghdr *, int);
+
+
+static inline int interface_to_busnum(struct usb_interface *interface)
+{
+	struct usb_device *udev = interface_to_usbdev(interface);
+	return udev->bus->busnum;
+}
+
+static inline int interface_to_devnum(struct usb_interface *interface)
+{
+	struct usb_device *udev = interface_to_usbdev(interface);
+	return udev->devnum;
+}
+
+static inline int interface_to_infnum(struct usb_interface *interface)
+{
+	return interface->cur_altsetting->desc.bInterfaceNumber;
+}
+
+#if 0
+int setnodelay(struct socket *);
+int setquickack(struct socket *);
+int setkeepalive(struct socket *socket);
+void setreuse(struct socket *);
+#endif
+
+struct socket *sockfd_to_socket(unsigned int);
+int set_sockaddr(struct socket *socket, struct sockaddr_storage *ss);
+
+void usbip_dump_urb(struct urb *purb);
+void usbip_dump_header(struct usbip_header *pdu);
+
+
+struct usbip_device;
+
+struct usbip_task {
+	struct task_struct *thread;
+	struct completion thread_done;
+	char *name;
+	void (*loop_ops)(struct usbip_task *);
+};
+
+enum usbip_side {
+	USBIP_VHCI,
+	USBIP_STUB,
+};
+
+enum usbip_status {
+	/* sdev is available. */
+	SDEV_ST_AVAILABLE = 0x01,
+	/* sdev is now used. */
+	SDEV_ST_USED,
+	/* sdev is unusable because of a fatal error. */
+	SDEV_ST_ERROR,
+
+	/* vdev does not connect a remote device. */
+	VDEV_ST_NULL,
+	/* vdev is used, but the USB address is not assigned yet */
+	VDEV_ST_NOTASSIGNED,
+	VDEV_ST_USED,
+	VDEV_ST_ERROR
+};
+
+/* a common structure for stub_device and vhci_device */
+struct usbip_device {
+	enum usbip_side side;
+
+	enum usbip_status status;
+
+	/* lock for status */
+	spinlock_t lock;
+
+	struct socket *tcp_socket;
+
+	struct usbip_task tcp_rx;
+	struct usbip_task tcp_tx;
+
+	/* event handler */
+#define USBIP_EH_SHUTDOWN	(1 << 0)
+#define USBIP_EH_BYE		(1 << 1)
+#define USBIP_EH_RESET		(1 << 2)
+#define USBIP_EH_UNUSABLE	(1 << 3)
+
+#define SDEV_EVENT_REMOVED	(USBIP_EH_SHUTDOWN | USBIP_EH_RESET | USBIP_EH_BYE)
+#define	SDEV_EVENT_DOWN		(USBIP_EH_SHUTDOWN | USBIP_EH_RESET)
+#define	SDEV_EVENT_ERROR_TCP	(USBIP_EH_SHUTDOWN | USBIP_EH_RESET)
+#define	SDEV_EVENT_ERROR_SUBMIT	(USBIP_EH_SHUTDOWN | USBIP_EH_RESET)
+#define	SDEV_EVENT_ERROR_MALLOC	(USBIP_EH_SHUTDOWN | USBIP_EH_UNUSABLE)
+
+#define	VDEV_EVENT_REMOVED	(USBIP_EH_SHUTDOWN | USBIP_EH_BYE)
+#define	VDEV_EVENT_DOWN		(USBIP_EH_SHUTDOWN | USBIP_EH_RESET)
+#define	VDEV_EVENT_ERROR_TCP	(USBIP_EH_SHUTDOWN | USBIP_EH_RESET)
+#define	VDEV_EVENT_ERROR_MALLOC	(USBIP_EH_SHUTDOWN | USBIP_EH_UNUSABLE)
+
+	unsigned long event;
+	struct usbip_task eh;
+	wait_queue_head_t eh_waitq;
+
+	struct eh_ops {
+		void (*shutdown)(struct usbip_device *);
+		void (*reset)(struct usbip_device *);
+		void (*unusable)(struct usbip_device *);
+	} eh_ops;
+};
+
+
+void usbip_task_init(struct usbip_task *ut, char *,
+				void (*loop_ops)(struct usbip_task *));
+
+void usbip_start_threads(struct usbip_device *ud);
+void usbip_stop_threads(struct usbip_device *ud);
+int usbip_thread(void *param);
+
+void usbip_pack_pdu(struct usbip_header *pdu, struct urb *urb, int cmd,
+								int pack);
+
+void usbip_header_correct_endian(struct usbip_header *pdu, int send);
+/* some members of urb must be substituted before. */
+int usbip_recv_xbuff(struct usbip_device *ud, struct urb *urb);
+/* some members of urb must be substituted before. */
+int usbip_recv_iso(struct usbip_device *ud, struct urb *urb);
+void *usbip_alloc_iso_desc_pdu(struct urb *urb, ssize_t *bufflen);
+
+
+/* usbip_event.c */
+void usbip_start_eh(struct usbip_device *ud);
+void usbip_stop_eh(struct usbip_device *ud);
+void usbip_event_add(struct usbip_device *ud, unsigned long event);
+int usbip_event_happend(struct usbip_device *ud);
+
+
+#endif
diff --git a/drivers/staging/usbip/usbip_event.c b/drivers/staging/usbip/usbip_event.c
new file mode 100644
index 0000000..4318553
--- /dev/null
+++ b/drivers/staging/usbip/usbip_event.c
@@ -0,0 +1,141 @@
+/*
+ * Copyright (C) 2003-2008 Takahiro Hirofuchi
+ *
+ * This is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or
+ * (at your option) any later version.
+ *
+ * This is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
+ * USA.
+ */
+
+#include "usbip_common.h"
+
+static int event_handler(struct usbip_device *ud)
+{
+	dbg_eh("enter\n");
+
+	/*
+	 * Events are handled by only this thread.
+	 */
+	while (usbip_event_happend(ud)) {
+		dbg_eh("pending event %lx\n", ud->event);
+
+		/*
+		 * NOTE: shutdown must come first.
+		 * Shutdown the device.
+		 */
+		if (ud->event & USBIP_EH_SHUTDOWN) {
+			ud->eh_ops.shutdown(ud);
+
+			ud->event &= ~USBIP_EH_SHUTDOWN;
+
+			break;
+		}
+
+		/* Stop the error handler. */
+		if (ud->event & USBIP_EH_BYE)
+			return -1;
+
+		/* Reset the device. */
+		if (ud->event & USBIP_EH_RESET) {
+			ud->eh_ops.reset(ud);
+
+			ud->event &= ~USBIP_EH_RESET;
+
+			break;
+		}
+
+		/* Mark the device as unusable. */
+		if (ud->event & USBIP_EH_UNUSABLE) {
+			ud->eh_ops.unusable(ud);
+
+			ud->event &= ~USBIP_EH_UNUSABLE;
+
+			break;
+		}
+
+		/* NOTREACHED */
+		printk(KERN_ERR "%s: unknown event\n", __func__);
+		return -1;
+	}
+
+	return 0;
+}
+
+static void event_handler_loop(struct usbip_task *ut)
+{
+	struct usbip_device *ud = container_of(ut, struct usbip_device, eh);
+
+	while (1) {
+		if (signal_pending(current)) {
+			dbg_eh("signal catched!\n");
+			break;
+		}
+
+		if (event_handler(ud) < 0)
+			break;
+
+		wait_event_interruptible(ud->eh_waitq, usbip_event_happend(ud));
+		dbg_eh("wakeup\n");
+	}
+}
+
+void usbip_start_eh(struct usbip_device *ud)
+{
+	struct usbip_task *eh = &ud->eh;
+
+	init_waitqueue_head(&ud->eh_waitq);
+	ud->event = 0;
+
+	usbip_task_init(eh, "usbip_eh", event_handler_loop);
+
+	kernel_thread(usbip_thread, (void *)eh, 0);
+
+	wait_for_completion(&eh->thread_done);
+}
+EXPORT_SYMBOL_GPL(usbip_start_eh);
+
+void usbip_stop_eh(struct usbip_device *ud)
+{
+	struct usbip_task *eh = &ud->eh;
+
+	wait_for_completion(&eh->thread_done);
+	dbg_eh("usbip_eh has finished\n");
+}
+EXPORT_SYMBOL_GPL(usbip_stop_eh);
+
+void usbip_event_add(struct usbip_device *ud, unsigned long event)
+{
+	spin_lock(&ud->lock);
+
+	ud->event |= event;
+
+	wake_up(&ud->eh_waitq);
+
+	spin_unlock(&ud->lock);
+}
+EXPORT_SYMBOL_GPL(usbip_event_add);
+
+int usbip_event_happend(struct usbip_device *ud)
+{
+	int happend = 0;
+
+	spin_lock(&ud->lock);
+
+	if (ud->event != 0)
+		happend = 1;
+
+	spin_unlock(&ud->lock);
+
+	return happend;
+}
+EXPORT_SYMBOL_GPL(usbip_event_happend);
diff --git a/drivers/staging/usbip/vhci.h b/drivers/staging/usbip/vhci.h
new file mode 100644
index 0000000..5e37517
--- /dev/null
+++ b/drivers/staging/usbip/vhci.h
@@ -0,0 +1,142 @@
+/*
+ * Copyright (C) 2003-2008 Takahiro Hirofuchi
+ *
+ * This is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or
+ * (at your option) any later version.
+ *
+ * This is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
+ * USA.
+ */
+
+#include <linux/platform_device.h>
+#include "../../usb/core/hcd.h"
+
+
+struct vhci_device {
+	struct usb_device *udev;
+
+	/*
+	 * devid specifies a remote usb device uniquely instead
+	 * of combination of busnum and devnum.
+	 */
+	__u32 devid;
+
+	/* speed of a remote device */
+	enum usb_device_speed speed;
+
+	/*  vhci root-hub port to which this device is attached  */
+	__u32 rhport;
+
+	struct usbip_device ud;
+
+
+	/* lock for the below link lists */
+	spinlock_t priv_lock;
+
+	/* vhci_priv is linked to one of them. */
+	struct list_head priv_tx;
+	struct list_head priv_rx;
+
+	/* vhci_unlink is linked to one of them */
+	struct list_head unlink_tx;
+	struct list_head unlink_rx;
+
+	/* vhci_tx thread sleeps for this queue */
+	wait_queue_head_t waitq_tx;
+};
+
+
+/* urb->hcpriv, use container_of() */
+struct vhci_priv {
+	unsigned long seqnum;
+	struct list_head list;
+
+	struct vhci_device *vdev;
+	struct urb *urb;
+};
+
+
+struct vhci_unlink {
+	/* seqnum of this request */
+	unsigned long seqnum;
+
+	struct list_head list;
+
+	/* seqnum of the unlink target */
+	unsigned long unlink_seqnum;
+};
+
+/*
+ * The number of ports is less than 16 ?
+ * USB_MAXCHILDREN is statically defined to 16 in usb.h.  Its maximum value
+ * would be 31 because the event_bits[1] of struct usb_hub is defined as
+ * unsigned long in hub.h
+ */
+#define VHCI_NPORTS 8
+
+/* for usb_bus.hcpriv */
+struct vhci_hcd {
+	spinlock_t	lock;
+
+	u32	port_status[VHCI_NPORTS];
+
+	unsigned	resuming:1;
+	unsigned long	re_timeout;
+
+	atomic_t seqnum;
+
+	/*
+	 * NOTE:
+	 * wIndex shows the port number and begins from 1.
+	 * But, the index of this array begins from 0.
+	 */
+	struct vhci_device vdev[VHCI_NPORTS];
+
+	/* vhci_device which has not been assiged its address yet */
+	int pending_port;
+};
+
+
+extern struct vhci_hcd *the_controller;
+extern struct attribute_group dev_attr_group;
+
+
+/*-------------------------------------------------------------------------*/
+/* prototype declaration */
+
+/* vhci_hcd.c */
+void rh_port_connect(int rhport, enum usb_device_speed speed);
+void rh_port_disconnect(int rhport);
+void vhci_rx_loop(struct usbip_task *ut);
+void vhci_tx_loop(struct usbip_task *ut);
+
+#define hardware		(&the_controller->pdev.dev)
+
+static inline struct vhci_device *port_to_vdev(__u32 port)
+{
+	return &the_controller->vdev[port];
+}
+
+static inline struct vhci_hcd *hcd_to_vhci(struct usb_hcd *hcd)
+{
+	return (struct vhci_hcd *) (hcd->hcd_priv);
+}
+
+static inline struct usb_hcd *vhci_to_hcd(struct vhci_hcd *vhci)
+{
+	return container_of((void *) vhci, struct usb_hcd, hcd_priv);
+}
+
+static inline struct device *vhci_dev(struct vhci_hcd *vhci)
+{
+	return vhci_to_hcd(vhci)->self.controller;
+}
diff --git a/drivers/staging/usbip/vhci_hcd.c b/drivers/staging/usbip/vhci_hcd.c
new file mode 100644
index 0000000..5b5a2e3
--- /dev/null
+++ b/drivers/staging/usbip/vhci_hcd.c
@@ -0,0 +1,1275 @@
+/*
+ * Copyright (C) 2003-2008 Takahiro Hirofuchi
+ *
+ * This is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or
+ * (at your option) any later version.
+ *
+ * This is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
+ * USA.
+ */
+
+
+#include "usbip_common.h"
+#include "vhci.h"
+
+#define DRIVER_VERSION "1.0"
+#define DRIVER_AUTHOR "Takahiro Hirofuchi"
+#define DRIVER_DESC "Virtual Host Controller Interface Driver for USB/IP"
+#define DRIVER_LICENCE "GPL"
+MODULE_AUTHOR(DRIVER_AUTHOR);
+MODULE_DESCRIPTION(DRIVER_DESC);
+MODULE_LICENSE(DRIVER_LICENCE);
+
+
+
+/*
+ * TODO
+ *	- update root hub emulation
+ *	- move the emulation code to userland ?
+ *		porting to other operating systems
+ *		minimize kernel code
+ *	- add suspend/resume code
+ *	- clean up everything
+ */
+
+
+/* See usb gadget dummy hcd */
+
+
+static int vhci_hub_status(struct usb_hcd *hcd, char *buff);
+static int vhci_hub_control(struct usb_hcd *hcd, u16 typeReq, u16 wValue,
+		u16 wIndex, char *buff, u16 wLength);
+static int vhci_urb_enqueue(struct usb_hcd *hcd, struct urb *urb,
+							gfp_t mem_flags);
+static int vhci_urb_dequeue(struct usb_hcd *hcd, struct urb *urb, int status);
+static int vhci_start(struct usb_hcd *vhci_hcd);
+static void vhci_stop(struct usb_hcd *hcd);
+static int vhci_get_frame_number(struct usb_hcd *hcd);
+
+static const char driver_name[] = "vhci_hcd";
+static const char driver_desc[] = "USB/IP Virtual Host Contoroller";
+
+struct vhci_hcd *the_controller;
+
+static const char *bit_desc[] = {
+	"CONNECTION",		/*0*/
+	"ENABLE",		/*1*/
+	"SUSPEND",		/*2*/
+	"OVER_CURRENT",		/*3*/
+	"RESET",		/*4*/
+	"R5",		/*5*/
+	"R6",		/*6*/
+	"R7",		/*7*/
+	"POWER",		/*8*/
+	"LOWSPEED",		/*9*/
+	"HIGHSPEED",		/*10*/
+	"PORT_TEST",		/*11*/
+	"INDICATOR",		/*12*/
+	"R13",		/*13*/
+	"R14",		/*14*/
+	"R15",		/*15*/
+	"C_CONNECTION",		/*16*/
+	"C_ENABLE",		/*17*/
+	"C_SUSPEND",		/*18*/
+	"C_OVER_CURRENT",	/*19*/
+	"C_RESET",		/*20*/
+	"R21",		/*21*/
+	"R22",		/*22*/
+	"R23",		/*23*/
+	"R24",		/*24*/
+	"R25",		/*25*/
+	"R26",		/*26*/
+	"R27",		/*27*/
+	"R28",		/*28*/
+	"R29",		/*29*/
+	"R30",		/*30*/
+	"R31",		/*31*/
+};
+
+
+static void dump_port_status(u32 status)
+{
+	int i = 0;
+
+	printk(KERN_DEBUG "status %08x:", status);
+	for (i = 0; i < 32; i++) {
+		if (status & (1 << i))
+			printk(" %s", bit_desc[i]);
+	}
+
+	printk("\n");
+}
+
+
+
+void rh_port_connect(int rhport, enum usb_device_speed speed)
+{
+	unsigned long	flags;
+
+	dbg_vhci_rh("rh_port_connect %d\n", rhport);
+
+	spin_lock_irqsave(&the_controller->lock, flags);
+
+	the_controller->port_status[rhport] |= USB_PORT_STAT_CONNECTION
+		| (1 << USB_PORT_FEAT_C_CONNECTION);
+
+	switch (speed) {
+	case USB_SPEED_HIGH:
+		the_controller->port_status[rhport] |= USB_PORT_STAT_HIGH_SPEED;
+		break;
+	case USB_SPEED_LOW:
+		the_controller->port_status[rhport] |= USB_PORT_STAT_LOW_SPEED;
+		break;
+	default:
+		break;
+	}
+
+	/* spin_lock(&the_controller->vdev[rhport].ud.lock);
+	 * the_controller->vdev[rhport].ud.status = VDEV_CONNECT;
+	 * spin_unlock(&the_controller->vdev[rhport].ud.lock); */
+
+	the_controller->pending_port = rhport;
+
+	spin_unlock_irqrestore(&the_controller->lock, flags);
+
+	usb_hcd_poll_rh_status(vhci_to_hcd(the_controller));
+}
+
+void rh_port_disconnect(int rhport)
+{
+	unsigned long flags;
+
+	dbg_vhci_rh("rh_port_disconnect %d\n", rhport);
+
+	spin_lock_irqsave(&the_controller->lock, flags);
+	/* stop_activity(dum, driver); */
+	the_controller->port_status[rhport] &= ~USB_PORT_STAT_CONNECTION;
+	the_controller->port_status[rhport] |=
+					(1 << USB_PORT_FEAT_C_CONNECTION);
+
+
+	/* not yet complete the disconnection
+	 * spin_lock(&vdev->ud.lock);
+	 * vdev->ud.status = VHC_ST_DISCONNECT;
+	 * spin_unlock(&vdev->ud.lock); */
+
+	spin_unlock_irqrestore(&the_controller->lock, flags);
+}
+
+
+
+/*----------------------------------------------------------------------*/
+
+#define PORT_C_MASK \
+	((USB_PORT_STAT_C_CONNECTION \
+	  | USB_PORT_STAT_C_ENABLE \
+	  | USB_PORT_STAT_C_SUSPEND \
+	  | USB_PORT_STAT_C_OVERCURRENT \
+	  | USB_PORT_STAT_C_RESET) << 16)
+
+/*
+ * This function is almostly the same as dummy_hcd.c:dummy_hub_status() without
+ * suspend/resume support. But, it is modified to provide multiple ports.
+ *
+ * @buf: a bitmap to show which port status has been changed.
+ *  bit  0: reserved or used for another purpose?
+ *  bit  1: the status of port 0 has been changed.
+ *  bit  2: the status of port 1 has been changed.
+ *  ...
+ *  bit  7: the status of port 6 has been changed.
+ *  bit  8: the status of port 7 has been changed.
+ *  ...
+ *  bit 15: the status of port 14 has been changed.
+ *
+ * So, the maximum number of ports is 31 ( port 0 to port 30) ?
+ *
+ * The return value is the actual transfered length in byte. If nothing has
+ * been changed, return 0. In the case that the number of ports is less than or
+ * equal to 6 (VHCI_NPORTS==7), return 1.
+ *
+ */
+static int vhci_hub_status(struct usb_hcd *hcd, char *buf)
+{
+	struct vhci_hcd	*vhci;
+	unsigned long	flags;
+	int		retval = 0;
+
+	/* the enough buffer is allocated according to USB_MAXCHILDREN */
+	unsigned long	*event_bits = (unsigned long *) buf;
+	int		rhport;
+	int		changed = 0;
+
+
+	*event_bits = 0;
+
+	vhci = hcd_to_vhci(hcd);
+
+	spin_lock_irqsave(&vhci->lock, flags);
+	if (!test_bit(HCD_FLAG_HW_ACCESSIBLE, &hcd->flags)) {
+		dbg_vhci_rh("hw accessible flag in on?\n");
+		goto done;
+	}
+
+	/* check pseudo status register for each port */
+	for (rhport = 0; rhport < VHCI_NPORTS; rhport++) {
+		if ((vhci->port_status[rhport] & PORT_C_MASK)) {
+			/* The status of a port has been changed, */
+			dbg_vhci_rh("port %d is changed\n", rhport);
+
+			*event_bits |= 1 << (rhport + 1);
+			changed = 1;
+		}
+	}
+
+	uinfo("changed %d\n", changed);
+
+	if (hcd->state == HC_STATE_SUSPENDED)
+		usb_hcd_resume_root_hub(hcd);
+
+	if (changed)
+		retval = 1 + (VHCI_NPORTS / 8);
+	else
+		retval = 0;
+
+done:
+	spin_unlock_irqrestore(&vhci->lock, flags);
+	return retval;
+}
+
+/* See hub_configure in hub.c */
+static inline void hub_descriptor(struct usb_hub_descriptor *desc)
+{
+	memset(desc, 0, sizeof(*desc));
+	desc->bDescriptorType = 0x29;
+	desc->bDescLength = 9;
+	desc->wHubCharacteristics = (__force __u16)
+		(__constant_cpu_to_le16(0x0001));
+	desc->bNbrPorts = VHCI_NPORTS;
+	desc->bitmap[0] = 0xff;
+	desc->bitmap[1] = 0xff;
+}
+
+static int vhci_hub_control(struct usb_hcd *hcd, u16 typeReq, u16 wValue,
+			    u16 wIndex, char *buf, u16 wLength)
+{
+	struct vhci_hcd	*dum;
+	int             retval = 0;
+	unsigned long   flags;
+	int		rhport;
+
+	u32 prev_port_status[VHCI_NPORTS];
+
+	if (!test_bit(HCD_FLAG_HW_ACCESSIBLE, &hcd->flags))
+		return -ETIMEDOUT;
+
+	/*
+	 * NOTE:
+	 * wIndex shows the port number and begins from 1.
+	 */
+	dbg_vhci_rh("typeReq %x wValue %x wIndex %x\n", typeReq, wValue,
+								wIndex);
+	if (wIndex > VHCI_NPORTS)
+		printk(KERN_ERR "%s: invalid port number %d\n", __func__, wIndex);
+	rhport = ((__u8)(wIndex & 0x00ff)) - 1;
+
+	dum = hcd_to_vhci(hcd);
+
+	spin_lock_irqsave(&dum->lock, flags);
+
+	/* store old status and compare now and old later */
+	if (dbg_flag_vhci_rh) {
+		int i = 0;
+		for (i = 0; i < VHCI_NPORTS; i++)
+			prev_port_status[i] = dum->port_status[i];
+	}
+
+	switch (typeReq) {
+	case ClearHubFeature:
+		dbg_vhci_rh(" ClearHubFeature\n");
+		break;
+	case ClearPortFeature:
+		switch (wValue) {
+		case USB_PORT_FEAT_SUSPEND:
+			if (dum->port_status[rhport] & USB_PORT_STAT_SUSPEND) {
+				/* 20msec signaling */
+				dum->resuming = 1;
+				dum->re_timeout =
+					jiffies + msecs_to_jiffies(20);
+			}
+			break;
+		case USB_PORT_FEAT_POWER:
+			dbg_vhci_rh(" ClearPortFeature: USB_PORT_FEAT_POWER\n");
+			dum->port_status[rhport] = 0;
+			/* dum->address = 0; */
+			/* dum->hdev = 0; */
+			dum->resuming = 0;
+			break;
+		case USB_PORT_FEAT_C_RESET:
+			dbg_vhci_rh(" ClearPortFeature: "
+					"USB_PORT_FEAT_C_RESET\n");
+			switch (dum->vdev[rhport].speed) {
+			case USB_SPEED_HIGH:
+				dum->port_status[rhport] |=
+						USB_PORT_STAT_HIGH_SPEED;
+				break;
+			case USB_SPEED_LOW:
+				dum->port_status[rhport] |=
+						USB_PORT_STAT_LOW_SPEED;
+				break;
+			default:
+				break;
+			}
+		default:
+			dbg_vhci_rh(" ClearPortFeature: default %x\n", wValue);
+			dum->port_status[rhport] &= ~(1 << wValue);
+		}
+		break;
+	case GetHubDescriptor:
+		dbg_vhci_rh(" GetHubDescriptor\n");
+		hub_descriptor((struct usb_hub_descriptor *) buf);
+		break;
+	case GetHubStatus:
+		dbg_vhci_rh(" GetHubStatus\n");
+		*(__le32 *) buf = __constant_cpu_to_le32(0);
+		break;
+	case GetPortStatus:
+		dbg_vhci_rh(" GetPortStatus port %x\n", wIndex);
+		if (wIndex > VHCI_NPORTS || wIndex < 1) {
+			printk(KERN_ERR "%s: invalid port number %d\n",
+			       __func__, wIndex);
+			retval = -EPIPE;
+		}
+
+		/* we do no care of resume. */
+
+		/* whoever resets or resumes must GetPortStatus to
+		 * complete it!!
+		 *                                   */
+		if (dum->resuming && time_after(jiffies, dum->re_timeout)) {
+			printk(KERN_ERR "%s: not yet\n", __func__);
+			dum->port_status[rhport] |=
+					(1 << USB_PORT_FEAT_C_SUSPEND);
+			dum->port_status[rhport] &=
+					~(1 << USB_PORT_FEAT_SUSPEND);
+			dum->resuming = 0;
+			dum->re_timeout = 0;
+			/* if (dum->driver && dum->driver->resume) {
+			 *	spin_unlock (&dum->lock);
+			 *	dum->driver->resume (&dum->gadget);
+			 *	spin_lock (&dum->lock);
+			 * } */
+		}
+
+		if ((dum->port_status[rhport] & (1 << USB_PORT_FEAT_RESET)) !=
+				0 && time_after(jiffies, dum->re_timeout)) {
+			dum->port_status[rhport] |=
+						(1 << USB_PORT_FEAT_C_RESET);
+			dum->port_status[rhport] &=
+						~(1 << USB_PORT_FEAT_RESET);
+			dum->re_timeout = 0;
+
+			if (dum->vdev[rhport].ud.status ==
+							VDEV_ST_NOTASSIGNED) {
+				dbg_vhci_rh(" enable rhport %d (status %u)\n",
+						rhport,
+						dum->vdev[rhport].ud.status);
+				dum->port_status[rhport] |=
+							USB_PORT_STAT_ENABLE;
+			}
+#if 0
+			if (dum->driver) {
+
+				dum->port_status[rhport] |=
+							USB_PORT_STAT_ENABLE;
+				/* give it the best speed we agree on */
+				dum->gadget.speed = dum->driver->speed;
+				dum->gadget.ep0->maxpacket = 64;
+				switch (dum->gadget.speed) {
+				case USB_SPEED_HIGH:
+					dum->port_status[rhport] |=
+					USB_PORT_STAT_HIGH_SPEED;
+					break;
+				case USB_SPEED_LOW:
+					dum->gadget.ep0->maxpacket = 8;
+					dum->port_status[rhport] |=
+					USB_PORT_STAT_LOW_SPEED;
+					break;
+				default:
+					dum->gadget.speed = USB_SPEED_FULL;
+					break;
+				}
+			}
+#endif
+
+		}
+		((u16 *) buf)[0] = cpu_to_le16(dum->port_status[rhport]);
+		((u16 *) buf)[1] =
+				cpu_to_le16(dum->port_status[rhport] >> 16);
+
+		dbg_vhci_rh(" GetPortStatus bye %x %x\n", ((u16 *)buf)[0],
+							((u16 *)buf)[1]);
+		break;
+	case SetHubFeature:
+		dbg_vhci_rh(" SetHubFeature\n");
+		retval = -EPIPE;
+		break;
+	case SetPortFeature:
+		switch (wValue) {
+		case USB_PORT_FEAT_SUSPEND:
+			dbg_vhci_rh(" SetPortFeature: "
+					"USB_PORT_FEAT_SUSPEND\n");
+			printk(KERN_ERR "%s: not yet\n", __func__);
+#if 0
+			dum->port_status[rhport] |=
+						(1 << USB_PORT_FEAT_SUSPEND);
+			if (dum->driver->suspend) {
+				spin_unlock(&dum->lock);
+				dum->driver->suspend(&dum->gadget);
+				spin_lock(&dum->lock);
+			}
+#endif
+			break;
+		case USB_PORT_FEAT_RESET:
+			dbg_vhci_rh(" SetPortFeature: USB_PORT_FEAT_RESET\n");
+			/* if it's already running, disconnect first */
+			if (dum->port_status[rhport] & USB_PORT_STAT_ENABLE) {
+				dum->port_status[rhport] &=
+						~(USB_PORT_STAT_ENABLE |
+						  USB_PORT_STAT_LOW_SPEED |
+						  USB_PORT_STAT_HIGH_SPEED);
+#if 0
+				if (dum->driver) {
+					dev_dbg(hardware, "disconnect\n");
+					stop_activity(dum, dum->driver);
+				}
+#endif
+
+				/* FIXME test that code path! */
+			}
+			/* 50msec reset signaling */
+			dum->re_timeout = jiffies + msecs_to_jiffies(50);
+
+			/* FALLTHROUGH */
+		default:
+			dbg_vhci_rh(" SetPortFeature: default %d\n", wValue);
+			dum->port_status[rhport] |= (1 << wValue);
+		}
+		break;
+
+	default:
+		printk(KERN_ERR "%s: default: no such request\n", __func__);
+		/* dev_dbg (hardware,
+		 *		"hub control req%04x v%04x i%04x l%d\n",
+		 *		typeReq, wValue, wIndex, wLength); */
+
+		/* "protocol stall" on error */
+		retval = -EPIPE;
+	}
+
+	if (dbg_flag_vhci_rh) {
+		printk(KERN_DEBUG "port %d\n", rhport);
+		dump_port_status(prev_port_status[rhport]);
+		dump_port_status(dum->port_status[rhport]);
+	}
+	dbg_vhci_rh(" bye\n");
+
+	spin_unlock_irqrestore(&dum->lock, flags);
+
+	return retval;
+}
+
+
+
+/*----------------------------------------------------------------------*/
+
+static struct vhci_device *get_vdev(struct usb_device *udev)
+{
+	int i;
+
+	if (!udev)
+		return NULL;
+
+	for (i = 0; i < VHCI_NPORTS; i++)
+		if (the_controller->vdev[i].udev == udev)
+			return port_to_vdev(i);
+
+	return NULL;
+}
+
+static void vhci_tx_urb(struct urb *urb)
+{
+	struct vhci_device *vdev = get_vdev(urb->dev);
+	struct vhci_priv *priv;
+	unsigned long flag;
+
+	if (!vdev) {
+		err("could not get virtual device");
+		/* BUG(); */
+		return;
+	}
+
+	spin_lock_irqsave(&vdev->priv_lock, flag);
+
+	priv = kzalloc(sizeof(struct vhci_priv), GFP_ATOMIC);
+	if (!priv) {
+		dev_err(&urb->dev->dev, "malloc vhci_priv\n");
+		spin_unlock_irqrestore(&vdev->priv_lock, flag);
+		usbip_event_add(&vdev->ud, VDEV_EVENT_ERROR_MALLOC);
+		return;
+	}
+
+	priv->seqnum = atomic_inc_return(&the_controller->seqnum);
+	if (priv->seqnum == 0xffff)
+		uinfo("seqnum max\n");
+
+	priv->vdev = vdev;
+	priv->urb = urb;
+
+	urb->hcpriv = (void *) priv;
+
+
+	list_add_tail(&priv->list, &vdev->priv_tx);
+
+	wake_up(&vdev->waitq_tx);
+	spin_unlock_irqrestore(&vdev->priv_lock, flag);
+}
+
+static int vhci_urb_enqueue(struct usb_hcd *hcd, struct urb *urb,
+			    gfp_t mem_flags)
+{
+	struct device *dev = &urb->dev->dev;
+	int ret = 0;
+	unsigned long flags;
+
+	dbg_vhci_hc("enter, usb_hcd %p urb %p mem_flags %d\n",
+		    hcd, urb, mem_flags);
+
+	/* patch to usb_sg_init() is in 2.5.60 */
+	BUG_ON(!urb->transfer_buffer && urb->transfer_buffer_length);
+
+	spin_lock_irqsave(&the_controller->lock, flags);
+
+	/* check HC is active or not */
+	if (!HC_IS_RUNNING(hcd->state)) {
+		dev_err(dev, "HC is not running\n");
+		spin_unlock_irqrestore(&the_controller->lock, flags);
+		return -ENODEV;
+	}
+
+	if (urb->status != -EINPROGRESS) {
+		dev_err(dev, "URB already unlinked!, status %d\n", urb->status);
+		spin_unlock_irqrestore(&the_controller->lock, flags);
+		return urb->status;
+	}
+
+	ret = usb_hcd_link_urb_to_ep(hcd, urb);
+	if (ret)
+		goto no_need_unlink;
+
+	/*
+	 * The enumelation process is as follows;
+	 *
+	 *  1. Get_Descriptor request to DevAddrs(0) EndPoint(0)
+	 *     to get max packet length of default pipe
+	 *
+	 *  2. Set_Address request to DevAddr(0) EndPoint(0)
+	 *
+	 */
+
+	if (usb_pipedevice(urb->pipe) == 0) {
+		__u8 type = usb_pipetype(urb->pipe);
+		struct usb_ctrlrequest *ctrlreq =
+				(struct usb_ctrlrequest *) urb->setup_packet;
+		struct vhci_device *vdev =
+				port_to_vdev(the_controller->pending_port);
+
+		if (type != PIPE_CONTROL || !ctrlreq) {
+			dev_err(dev, "invalid request to devnum 0\n");
+			ret = EINVAL;
+			goto no_need_xmit;
+		}
+
+		switch (ctrlreq->bRequest) {
+		case USB_REQ_SET_ADDRESS:
+			/* set_address may come when a device is reset */
+			dev_info(dev, "SetAddress Request (%d) to port %d\n",
+				 ctrlreq->wValue, vdev->rhport);
+
+			vdev->udev = urb->dev;
+
+			spin_lock(&vdev->ud.lock);
+			vdev->ud.status = VDEV_ST_USED;
+			spin_unlock(&vdev->ud.lock);
+
+			if (urb->status == -EINPROGRESS) {
+				/* This request is successfully completed. */
+				/* If not -EINPROGRESS, possibly unlinked. */
+				urb->status = 0;
+			}
+
+			goto no_need_xmit;
+
+		case USB_REQ_GET_DESCRIPTOR:
+			if (ctrlreq->wValue == (USB_DT_DEVICE << 8))
+				dbg_vhci_hc("Not yet?: "
+						"Get_Descriptor to device 0 "
+						"(get max pipe size)\n");
+
+			/* FIXME: reference count? (usb_get_dev()) */
+			vdev->udev = urb->dev;
+			goto out;
+
+		default:
+			/* NOT REACHED */
+			dev_err(dev, "invalid request to devnum 0 bRequest %u, "
+				"wValue %u\n", ctrlreq->bRequest,
+				ctrlreq->wValue);
+			ret =  -EINVAL;
+			goto no_need_xmit;
+		}
+
+	}
+
+out:
+	vhci_tx_urb(urb);
+
+	spin_unlock_irqrestore(&the_controller->lock, flags);
+
+	return 0;
+
+no_need_xmit:
+	usb_hcd_unlink_urb_from_ep(hcd, urb);
+no_need_unlink:
+	spin_unlock_irqrestore(&the_controller->lock, flags);
+
+	usb_hcd_giveback_urb(vhci_to_hcd(the_controller), urb, urb->status);
+
+	return 0;
+}
+
+/*
+ * vhci_rx gives back the urb after receiving the reply of the urb.  If an
+ * unlink pdu is sent or not, vhci_rx receives a normal return pdu and gives
+ * back its urb. For the driver unlinking the urb, the content of the urb is
+ * not important, but the calling to its completion handler is important; the
+ * completion of unlinking is notified by the completion handler.
+ *
+ *
+ * CLIENT SIDE
+ *
+ * - When vhci_hcd receives RET_SUBMIT,
+ *
+ *	- case 1a). the urb of the pdu is not unlinking.
+ *		- normal case
+ *		=> just give back the urb
+ *
+ *	- case 1b). the urb of the pdu is unlinking.
+ *		- usbip.ko will return a reply of the unlinking request.
+ *		=> give back the urb now and go to case 2b).
+ *
+ * - When vhci_hcd receives RET_UNLINK,
+ *
+ *	- case 2a). a submit request is still pending in vhci_hcd.
+ *		- urb was really pending in usbip.ko and urb_unlink_urb() was
+ *		  completed there.
+ *		=> free a pending submit request
+ *		=> notify unlink completeness by giving back the urb
+ *
+ *	- case 2b). a submit request is *not* pending in vhci_hcd.
+ *		- urb was already given back to the core driver.
+ *		=> do not give back the urb
+ *
+ *
+ * SERVER SIDE
+ *
+ * - When usbip receives CMD_UNLINK,
+ *
+ *	- case 3a). the urb of the unlink request is now in submission.
+ *		=> do usb_unlink_urb().
+ *		=> after the unlink is completed, send RET_UNLINK.
+ *
+ *	- case 3b). the urb of the unlink request is not in submission.
+ *		- may be already completed or never be received
+ *		=> send RET_UNLINK
+ *
+ */
+static int vhci_urb_dequeue(struct usb_hcd *hcd, struct urb *urb, int status)
+{
+	unsigned long flags;
+	struct vhci_priv *priv;
+	struct vhci_device *vdev;
+
+	uinfo("vhci_hcd: dequeue a urb %p\n", urb);
+
+
+	spin_lock_irqsave(&the_controller->lock, flags);
+
+	priv = urb->hcpriv;
+	if (!priv) {
+		/* URB was never linked! or will be soon given back by
+		 * vhci_rx. */
+		spin_unlock_irqrestore(&the_controller->lock, flags);
+		return 0;
+	}
+
+	{
+		int ret = 0;
+		ret = usb_hcd_check_unlink_urb(hcd, urb, status);
+		if (ret) {
+			spin_unlock_irqrestore(&the_controller->lock, flags);
+			return 0;
+		}
+	}
+
+	 /* send unlink request here? */
+	vdev = priv->vdev;
+
+	if (!vdev->ud.tcp_socket) {
+		/* tcp connection is closed */
+		unsigned long flags2;
+
+		spin_lock_irqsave(&vdev->priv_lock, flags2);
+
+		uinfo("vhci_hcd: device %p seems to be disconnected\n", vdev);
+		list_del(&priv->list);
+		kfree(priv);
+		urb->hcpriv = NULL;
+
+		spin_unlock_irqrestore(&vdev->priv_lock, flags2);
+
+	} else {
+		/* tcp connection is alive */
+		unsigned long flags2;
+		struct vhci_unlink *unlink;
+
+		spin_lock_irqsave(&vdev->priv_lock, flags2);
+
+		/* setup CMD_UNLINK pdu */
+		unlink = kzalloc(sizeof(struct vhci_unlink), GFP_ATOMIC);
+		if (!unlink) {
+			uerr("malloc vhci_unlink\n");
+			spin_unlock_irqrestore(&vdev->priv_lock, flags2);
+			spin_unlock_irqrestore(&the_controller->lock, flags);
+			usbip_event_add(&vdev->ud, VDEV_EVENT_ERROR_MALLOC);
+			return -ENOMEM;
+		}
+
+		unlink->seqnum = atomic_inc_return(&the_controller->seqnum);
+		if (unlink->seqnum == 0xffff)
+			uinfo("seqnum max\n");
+
+		unlink->unlink_seqnum = priv->seqnum;
+
+		uinfo("vhci_hcd: device %p seems to be still connected\n",
+									vdev);
+
+		/* send cmd_unlink and try to cancel the pending URB in the
+		 * peer */
+		list_add_tail(&unlink->list, &vdev->unlink_tx);
+		wake_up(&vdev->waitq_tx);
+
+		spin_unlock_irqrestore(&vdev->priv_lock, flags2);
+	}
+
+
+	/*
+	 * If tcp connection is alive, we have sent CMD_UNLINK.
+	 * vhci_rx will receive RET_UNLINK and give back the URB.
+	 * Otherwise, we give back it here.
+	 */
+	if (!vdev->ud.tcp_socket) {
+		/* tcp connection is closed */
+		uinfo("vhci_hcd: vhci_urb_dequeue() gives back urb %p\n", urb);
+
+		usb_hcd_unlink_urb_from_ep(hcd, urb);
+
+		spin_unlock_irqrestore(&the_controller->lock, flags);
+		usb_hcd_giveback_urb(vhci_to_hcd(the_controller), urb,
+								urb->status);
+		spin_lock_irqsave(&the_controller->lock, flags);
+	}
+
+	spin_unlock_irqrestore(&the_controller->lock, flags);
+
+	dbg_vhci_hc("leave\n");
+	return 0;
+}
+
+
+static void vhci_device_unlink_cleanup(struct vhci_device *vdev)
+{
+	struct vhci_unlink *unlink, *tmp;
+
+	spin_lock(&vdev->priv_lock);
+
+	list_for_each_entry_safe(unlink, tmp, &vdev->unlink_tx, list) {
+		list_del(&unlink->list);
+		kfree(unlink);
+	}
+
+	list_for_each_entry_safe(unlink, tmp, &vdev->unlink_rx, list) {
+		list_del(&unlink->list);
+		kfree(unlink);
+	}
+
+	spin_unlock(&vdev->priv_lock);
+}
+
+/*
+ * The important thing is that only one context begins cleanup.
+ * This is why error handling and cleanup become simple.
+ * We do not want to consider race condition as possible.
+ */
+static void vhci_shutdown_connection(struct usbip_device *ud)
+{
+	struct vhci_device *vdev = container_of(ud, struct vhci_device, ud);
+
+	/* need this? see stub_dev.c */
+	if (ud->tcp_socket) {
+		udbg("shutdown tcp_socket %p\n", ud->tcp_socket);
+		kernel_sock_shutdown(ud->tcp_socket, SHUT_RDWR);
+	}
+
+	usbip_stop_threads(&vdev->ud);
+	uinfo("stop threads\n");
+
+	/* active connection is closed */
+	if (vdev->ud.tcp_socket != NULL) {
+		sock_release(vdev->ud.tcp_socket);
+		vdev->ud.tcp_socket = NULL;
+	}
+	uinfo("release socket\n");
+
+	vhci_device_unlink_cleanup(vdev);
+
+	/*
+	 * rh_port_disconnect() is a trigger of ...
+	 *   usb_disable_device():
+	 *	disable all the endpoints for a USB device.
+	 *   usb_disable_endpoint():
+	 *	disable endpoints. pending urbs are unlinked(dequeued).
+	 *
+	 * NOTE: After calling rh_port_disconnect(), the USB device drivers of a
+	 * deteched device should release used urbs in a cleanup function(i.e.
+	 * xxx_disconnect()). Therefore, vhci_hcd does not need to release
+	 * pushed urbs and their private data in this function.
+	 *
+	 * NOTE: vhci_dequeue() must be considered carefully. When shutdowning
+	 * a connection, vhci_shutdown_connection() expects vhci_dequeue()
+	 * gives back pushed urbs and frees their private data by request of
+	 * the cleanup function of a USB driver. When unlinking a urb with an
+	 * active connection, vhci_dequeue() does not give back the urb which
+	 * is actually given back by vhci_rx after receiving its return pdu.
+	 *
+	 */
+	rh_port_disconnect(vdev->rhport);
+
+	uinfo("disconnect device\n");
+}
+
+
+static void vhci_device_reset(struct usbip_device *ud)
+{
+	struct vhci_device *vdev = container_of(ud, struct vhci_device, ud);
+
+	spin_lock(&ud->lock);
+
+	vdev->speed  = 0;
+	vdev->devid  = 0;
+
+	ud->tcp_socket = NULL;
+
+	ud->status = VDEV_ST_NULL;
+
+	spin_unlock(&ud->lock);
+}
+
+static void vhci_device_unusable(struct usbip_device *ud)
+{
+	spin_lock(&ud->lock);
+
+	ud->status = VDEV_ST_ERROR;
+
+	spin_unlock(&ud->lock);
+}
+
+static void vhci_device_init(struct vhci_device *vdev)
+{
+	memset(vdev, 0, sizeof(*vdev));
+
+	usbip_task_init(&vdev->ud.tcp_rx, "vhci_rx", vhci_rx_loop);
+	usbip_task_init(&vdev->ud.tcp_tx, "vhci_tx", vhci_tx_loop);
+
+	vdev->ud.side   = USBIP_VHCI;
+	vdev->ud.status = VDEV_ST_NULL;
+	/* vdev->ud.lock   = SPIN_LOCK_UNLOCKED; */
+	spin_lock_init(&vdev->ud.lock);
+
+	INIT_LIST_HEAD(&vdev->priv_rx);
+	INIT_LIST_HEAD(&vdev->priv_tx);
+	INIT_LIST_HEAD(&vdev->unlink_tx);
+	INIT_LIST_HEAD(&vdev->unlink_rx);
+	/* vdev->priv_lock = SPIN_LOCK_UNLOCKED; */
+	spin_lock_init(&vdev->priv_lock);
+
+	init_waitqueue_head(&vdev->waitq_tx);
+
+	vdev->ud.eh_ops.shutdown = vhci_shutdown_connection;
+	vdev->ud.eh_ops.reset = vhci_device_reset;
+	vdev->ud.eh_ops.unusable = vhci_device_unusable;
+
+	usbip_start_eh(&vdev->ud);
+}
+
+
+/*----------------------------------------------------------------------*/
+
+static int vhci_start(struct usb_hcd *hcd)
+{
+	struct vhci_hcd *vhci = hcd_to_vhci(hcd);
+	int rhport;
+	int err = 0;
+
+	dbg_vhci_hc("enter vhci_start\n");
+
+
+	/* initialize private data of usb_hcd */
+
+	for (rhport = 0; rhport < VHCI_NPORTS; rhport++) {
+		struct vhci_device *vdev = &vhci->vdev[rhport];
+		vhci_device_init(vdev);
+		vdev->rhport = rhport;
+	}
+
+	atomic_set(&vhci->seqnum, 0);
+	spin_lock_init(&vhci->lock);
+
+
+
+	hcd->power_budget = 0; /* no limit */
+	hcd->state  = HC_STATE_RUNNING;
+	hcd->uses_new_polling = 1;
+
+
+	/* vhci_hcd is now ready to be controlled through sysfs */
+	err = sysfs_create_group(&vhci_dev(vhci)->kobj, &dev_attr_group);
+	if (err) {
+		uerr("create sysfs files\n");
+		return err;
+	}
+
+	return 0;
+}
+
+static void vhci_stop(struct usb_hcd *hcd)
+{
+	struct vhci_hcd *vhci = hcd_to_vhci(hcd);
+	int rhport = 0;
+
+	dbg_vhci_hc("stop VHCI controller\n");
+
+
+	/* 1. remove the userland interface of vhci_hcd */
+	sysfs_remove_group(&vhci_dev(vhci)->kobj, &dev_attr_group);
+
+	/* 2. shutdown all the ports of vhci_hcd */
+	for (rhport = 0 ; rhport < VHCI_NPORTS; rhport++) {
+		struct vhci_device *vdev = &vhci->vdev[rhport];
+
+		usbip_event_add(&vdev->ud, VDEV_EVENT_REMOVED);
+		usbip_stop_eh(&vdev->ud);
+	}
+
+
+	uinfo("vhci_stop done\n");
+}
+
+/*----------------------------------------------------------------------*/
+
+static int vhci_get_frame_number(struct usb_hcd *hcd)
+{
+	uerr("Not yet implemented\n");
+	return 0;
+}
+
+
+#ifdef CONFIG_PM
+
+/* FIXME: suspend/resume */
+static int vhci_bus_suspend(struct usb_hcd *hcd)
+{
+	struct vhci_hcd *vhci = hcd_to_vhci(hcd);
+
+	dev_dbg(&hcd->self.root_hub->dev, "%s\n", __func__);
+
+	spin_lock_irq(&vhci->lock);
+	/* vhci->rh_state = DUMMY_RH_SUSPENDED;
+	 * set_link_state(vhci); */
+	hcd->state = HC_STATE_SUSPENDED;
+	spin_unlock_irq(&vhci->lock);
+
+	return 0;
+}
+
+static int vhci_bus_resume(struct usb_hcd *hcd)
+{
+	struct vhci_hcd *vhci = hcd_to_vhci(hcd);
+	int rc = 0;
+
+	dev_dbg(&hcd->self.root_hub->dev, "%s\n", __func__);
+
+	spin_lock_irq(&vhci->lock);
+	if (!test_bit(HCD_FLAG_HW_ACCESSIBLE, &hcd->flags)) {
+		rc = -ESHUTDOWN;
+	} else {
+		/* vhci->rh_state = DUMMY_RH_RUNNING;
+		 * set_link_state(vhci);
+		 * if (!list_empty(&vhci->urbp_list))
+		 *	mod_timer(&vhci->timer, jiffies); */
+		hcd->state = HC_STATE_RUNNING;
+	}
+	spin_unlock_irq(&vhci->lock);
+	return rc;
+
+	return 0;
+}
+
+#else
+
+#define vhci_bus_suspend      NULL
+#define vhci_bus_resume       NULL
+#endif
+
+
+
+static struct hc_driver vhci_hc_driver = {
+	.description	= driver_name,
+	.product_desc	= driver_desc,
+	.hcd_priv_size	= sizeof(struct vhci_hcd),
+
+	.flags		= HCD_USB2,
+
+	.start		= vhci_start,
+	.stop 		= vhci_stop,
+
+	.urb_enqueue	= vhci_urb_enqueue,
+	.urb_dequeue	= vhci_urb_dequeue,
+
+	.get_frame_number = vhci_get_frame_number,
+
+	.hub_status_data = vhci_hub_status,
+	.hub_control    = vhci_hub_control,
+	.bus_suspend	= vhci_bus_suspend,
+	.bus_resume	= vhci_bus_resume,
+};
+
+static int vhci_hcd_probe(struct platform_device *pdev)
+{
+	struct usb_hcd		*hcd;
+	int			ret;
+
+	uinfo("proving...\n");
+
+	dbg_vhci_hc("name %s id %d\n", pdev->name, pdev->id);
+
+	/* will be removed */
+	if (pdev->dev.dma_mask) {
+		dev_info(&pdev->dev, "vhci_hcd DMA not supported\n");
+		return -EINVAL;
+	}
+
+	/*
+	 * Allocate and initialize hcd.
+	 * Our private data is also allocated automatically.
+	 */
+	hcd = usb_create_hcd(&vhci_hc_driver, &pdev->dev, pdev->dev.bus_id);
+	if (!hcd) {
+		uerr("create hcd failed\n");
+		return -ENOMEM;
+	}
+
+
+	/* this is private data for vhci_hcd */
+	the_controller = hcd_to_vhci(hcd);
+
+	/*
+	 * Finish generic HCD structure initialization and register.
+	 * Call the driver's reset() and start() routines.
+	 */
+	ret = usb_add_hcd(hcd, 0, 0);
+	if (ret != 0) {
+		uerr("usb_add_hcd failed %d\n", ret);
+		usb_put_hcd(hcd);
+		the_controller = NULL;
+		return ret;
+	}
+
+
+	dbg_vhci_hc("bye\n");
+	return 0;
+}
+
+
+static int vhci_hcd_remove(struct platform_device *pdev)
+{
+	struct usb_hcd	*hcd;
+
+	hcd = platform_get_drvdata(pdev);
+	if (!hcd)
+		return 0;
+
+	/*
+	 * Disconnects the root hub,
+	 * then reverses the effects of usb_add_hcd(),
+	 * invoking the HCD's stop() methods.
+	 */
+	usb_remove_hcd(hcd);
+	usb_put_hcd(hcd);
+	the_controller = NULL;
+
+
+	return 0;
+}
+
+
+
+#ifdef CONFIG_PM
+
+/* what should happen for USB/IP under suspend/resume? */
+static int vhci_hcd_suspend(struct platform_device *pdev, pm_message_t state)
+{
+	struct usb_hcd *hcd;
+	int rhport = 0;
+	int connected = 0;
+	int ret = 0;
+
+	dev_dbg(&pdev->dev, "%s\n", __func__);
+
+	hcd = platform_get_drvdata(pdev);
+
+	spin_lock(&the_controller->lock);
+
+	for (rhport = 0; rhport < VHCI_NPORTS; rhport++)
+		if (the_controller->port_status[rhport] &
+						USB_PORT_STAT_CONNECTION)
+			connected += 1;
+
+	spin_unlock(&the_controller->lock);
+
+	if (connected > 0) {
+		uinfo("We have %d active connection%s. Do not suspend.\n",
+				connected, (connected == 1 ? "" : "s"));
+		ret =  -EBUSY;
+	} else {
+		uinfo("suspend vhci_hcd");
+		clear_bit(HCD_FLAG_HW_ACCESSIBLE, &hcd->flags);
+	}
+
+	return ret;
+}
+
+static int vhci_hcd_resume(struct platform_device *pdev)
+{
+	struct usb_hcd *hcd;
+
+	dev_dbg(&pdev->dev, "%s\n", __func__);
+
+	hcd = platform_get_drvdata(pdev);
+	set_bit(HCD_FLAG_HW_ACCESSIBLE, &hcd->flags);
+	usb_hcd_poll_rh_status(hcd);
+
+	return 0;
+}
+
+#else
+
+#define vhci_hcd_suspend	NULL
+#define vhci_hcd_resume		NULL
+
+#endif
+
+
+static struct platform_driver vhci_driver = {
+	.probe	= vhci_hcd_probe,
+	.remove	= __devexit_p(vhci_hcd_remove),
+	.suspend = vhci_hcd_suspend,
+	.resume	= vhci_hcd_resume,
+	.driver	= {
+		.name = (char *) driver_name,
+		.owner = THIS_MODULE,
+	},
+};
+
+/*----------------------------------------------------------------------*/
+
+/*
+ * The VHCI 'device' is 'virtual'; not a real plug&play hardware.
+ * We need to add this virtual device as a platform device arbitrarily:
+ *	1. platform_device_register()
+ */
+static void the_pdev_release(struct device *dev)
+{
+	return;
+}
+
+static struct platform_device the_pdev = {
+	/* should be the same name as driver_name */
+	.name = (char *) driver_name,
+	.id = -1,
+	.dev = {
+		/* .driver = &vhci_driver, */
+		.release = the_pdev_release,
+	},
+};
+
+static int __init vhci_init(void)
+{
+	int ret;
+
+	dbg_vhci_hc("enter\n");
+	if (usb_disabled())
+		return -ENODEV;
+
+	printk(KERN_INFO KBUILD_MODNAME ": %s, %s\n", driver_name,
+	       DRIVER_VERSION);
+
+	ret = platform_driver_register(&vhci_driver);
+	if (ret < 0)
+		goto err_driver_register;
+
+	ret = platform_device_register(&the_pdev);
+	if (ret < 0)
+		goto err_platform_device_register;
+
+	dbg_vhci_hc("bye\n");
+	return ret;
+
+	/* error occurred */
+err_platform_device_register:
+	platform_driver_unregister(&vhci_driver);
+
+err_driver_register:
+	dbg_vhci_hc("bye\n");
+	return ret;
+}
+module_init(vhci_init);
+
+static void __exit vhci_cleanup(void)
+{
+	dbg_vhci_hc("enter\n");
+
+	platform_device_unregister(&the_pdev);
+	platform_driver_unregister(&vhci_driver);
+
+	dbg_vhci_hc("bye\n");
+}
+module_exit(vhci_cleanup);
diff --git a/drivers/staging/usbip/vhci_rx.c b/drivers/staging/usbip/vhci_rx.c
new file mode 100644
index 0000000..933ccaf
--- /dev/null
+++ b/drivers/staging/usbip/vhci_rx.c
@@ -0,0 +1,251 @@
+/*
+ * Copyright (C) 2003-2008 Takahiro Hirofuchi
+ *
+ * This is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or
+ * (at your option) any later version.
+ *
+ * This is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
+ * USA.
+ */
+
+#include "usbip_common.h"
+#include "vhci.h"
+
+
+/* get URB from transmitted urb queue */
+static struct urb *pickup_urb_and_free_priv(struct vhci_device *vdev,
+					    __u32 seqnum)
+{
+	struct vhci_priv *priv, *tmp;
+	struct urb *urb = NULL;
+	int status;
+
+	spin_lock(&vdev->priv_lock);
+
+	list_for_each_entry_safe(priv, tmp, &vdev->priv_rx, list) {
+		if (priv->seqnum == seqnum) {
+			urb = priv->urb;
+			status = urb->status;
+
+			dbg_vhci_rx("find urb %p vurb %p seqnum %u\n",
+				    urb, priv, seqnum);
+
+			/* TODO: fix logic here to improve indent situtation */
+			if (status != -EINPROGRESS) {
+				if (status == -ENOENT ||
+				     status == -ECONNRESET)
+					dev_info(&urb->dev->dev,
+						 "urb %p was unlinked "
+						 "%ssynchronuously.\n", urb,
+						 status == -ENOENT ? "" : "a");
+				else
+					dev_info(&urb->dev->dev,
+						 "urb %p may be in a error, "
+						 "status %d\n", urb, status);
+			}
+
+			list_del(&priv->list);
+			kfree(priv);
+			urb->hcpriv = NULL;
+
+			break;
+		}
+	}
+
+	spin_unlock(&vdev->priv_lock);
+
+	return urb;
+}
+
+static void vhci_recv_ret_submit(struct vhci_device *vdev,
+						struct usbip_header *pdu)
+{
+	struct usbip_device *ud = &vdev->ud;
+	struct urb *urb;
+
+
+	urb = pickup_urb_and_free_priv(vdev, pdu->base.seqnum);
+
+
+	if (!urb) {
+		uerr("cannot find a urb of seqnum %u\n", pdu->base.seqnum);
+		uinfo("max seqnum %d\n", atomic_read(&the_controller->seqnum));
+		usbip_event_add(ud, VDEV_EVENT_ERROR_TCP);
+		return;
+	}
+
+
+	/* unpack the pdu to a urb */
+	usbip_pack_pdu(pdu, urb, USBIP_RET_SUBMIT, 0);
+
+
+	/* recv transfer buffer */
+	if (usbip_recv_xbuff(ud, urb) < 0)
+		return;
+
+
+	/* recv iso_packet_descriptor */
+	if (usbip_recv_iso(ud, urb) < 0)
+		return;
+
+
+	if (dbg_flag_vhci_rx)
+		usbip_dump_urb(urb);
+
+
+	dbg_vhci_rx("now giveback urb %p\n", urb);
+
+	spin_lock(&the_controller->lock);
+	usb_hcd_unlink_urb_from_ep(vhci_to_hcd(the_controller), urb);
+	spin_unlock(&the_controller->lock);
+
+	usb_hcd_giveback_urb(vhci_to_hcd(the_controller), urb, urb->status);
+
+
+	dbg_vhci_rx("Leave\n");
+
+	return;
+}
+
+
+static struct vhci_unlink *dequeue_pending_unlink(struct vhci_device *vdev,
+		struct usbip_header *pdu)
+{
+	struct vhci_unlink *unlink, *tmp;
+
+	spin_lock(&vdev->priv_lock);
+
+	list_for_each_entry_safe(unlink, tmp, &vdev->unlink_rx, list) {
+		uinfo("unlink->seqnum %lu\n", unlink->seqnum);
+		if (unlink->seqnum == pdu->base.seqnum) {
+			dbg_vhci_rx("found pending unlink, %lu\n",
+							unlink->seqnum);
+			list_del(&unlink->list);
+
+			spin_unlock(&vdev->priv_lock);
+			return unlink;
+		}
+	}
+
+	spin_unlock(&vdev->priv_lock);
+
+	return NULL;
+}
+
+
+static void vhci_recv_ret_unlink(struct vhci_device *vdev,
+						struct usbip_header *pdu)
+{
+	struct vhci_unlink *unlink;
+	struct urb *urb;
+
+	usbip_dump_header(pdu);
+
+	unlink = dequeue_pending_unlink(vdev, pdu);
+	if (!unlink) {
+		uinfo("cannot find the pending unlink %u\n", pdu->base.seqnum);
+		return;
+	}
+
+	urb = pickup_urb_and_free_priv(vdev, unlink->unlink_seqnum);
+	if (!urb) {
+		/*
+		 * I get the result of a unlink request. But, it seems that I
+		 * already received the result of its submit result and gave
+		 * back the URB.
+		 */
+		uinfo("the urb (seqnum %d) was already given backed\n",
+							pdu->base.seqnum);
+	} else {
+		dbg_vhci_rx("now giveback urb %p\n", urb);
+
+		/* If unlink is succeed, status is -ECONNRESET */
+		urb->status = pdu->u.ret_unlink.status;
+		uinfo("%d\n", urb->status);
+
+		spin_lock(&the_controller->lock);
+		usb_hcd_unlink_urb_from_ep(vhci_to_hcd(the_controller), urb);
+		spin_unlock(&the_controller->lock);
+
+		usb_hcd_giveback_urb(vhci_to_hcd(the_controller), urb,
+								urb->status);
+	}
+
+	kfree(unlink);
+
+	return;
+}
+
+/* recv a pdu */
+static void vhci_rx_pdu(struct usbip_device *ud)
+{
+	int ret;
+	struct usbip_header pdu;
+	struct vhci_device *vdev = container_of(ud, struct vhci_device, ud);
+
+
+	dbg_vhci_rx("Enter\n");
+
+	memset(&pdu, 0, sizeof(pdu));
+
+
+	/* 1. receive a pdu header */
+	ret = usbip_xmit(0, ud->tcp_socket, (char *) &pdu, sizeof(pdu), 0);
+	if (ret != sizeof(pdu)) {
+		uerr("receiving pdu failed! size is %d, should be %d\n",
+				ret, sizeof(pdu));
+		usbip_event_add(ud, VDEV_EVENT_ERROR_TCP);
+		return;
+	}
+
+	usbip_header_correct_endian(&pdu, 0);
+
+	if (dbg_flag_vhci_rx)
+		usbip_dump_header(&pdu);
+
+	switch (pdu.base.command) {
+	case USBIP_RET_SUBMIT:
+		vhci_recv_ret_submit(vdev, &pdu);
+		break;
+	case USBIP_RET_UNLINK:
+		vhci_recv_ret_unlink(vdev, &pdu);
+		break;
+	default:
+		/* NOTREACHED */
+		uerr("unknown pdu %u\n", pdu.base.command);
+		usbip_dump_header(&pdu);
+		usbip_event_add(ud, VDEV_EVENT_ERROR_TCP);
+	}
+}
+
+
+/*-------------------------------------------------------------------------*/
+
+void vhci_rx_loop(struct usbip_task *ut)
+{
+	struct usbip_device *ud = container_of(ut, struct usbip_device, tcp_rx);
+
+
+	while (1) {
+		if (signal_pending(current)) {
+			dbg_vhci_rx("signal catched!\n");
+			break;
+		}
+
+
+		if (usbip_event_happend(ud))
+			break;
+
+		vhci_rx_pdu(ud);
+	}
+}
+
diff --git a/drivers/staging/usbip/vhci_sysfs.c b/drivers/staging/usbip/vhci_sysfs.c
new file mode 100644
index 0000000..24c2851
--- /dev/null
+++ b/drivers/staging/usbip/vhci_sysfs.c
@@ -0,0 +1,250 @@
+/*
+ * Copyright (C) 2003-2008 Takahiro Hirofuchi
+ *
+ * This is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or
+ * (at your option) any later version.
+ *
+ * This is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
+ * USA.
+ */
+
+#include "usbip_common.h"
+#include "vhci.h"
+
+#include <linux/in.h>
+
+/* TODO: refine locking ?*/
+
+/* Sysfs entry to show port status */
+static ssize_t show_status(struct device *dev, struct device_attribute *attr,
+			   char *out)
+{
+	char *s = out;
+	int i = 0;
+
+	if (!the_controller || !out)
+		BUG();
+
+	spin_lock(&the_controller->lock);
+
+	/*
+	 * output example:
+	 * prt sta spd dev socket           local_busid
+	 * 000 004 000 000         c5a7bb80 1-2.3
+	 * 001 004 000 000         d8cee980 2-3.4
+	 *
+	 * IP address can be retrieved from a socket pointer address by looking
+	 * up /proc/net/{tcp,tcp6}. Also, a userland program may remember a
+	 * port number and its peer IP address.
+	 */
+	out += sprintf(out, "prt sta spd bus dev socket           "
+		       "local_busid\n");
+
+	for (i = 0; i < VHCI_NPORTS; i++) {
+		struct vhci_device *vdev = port_to_vdev(i);
+
+		spin_lock(&vdev->ud.lock);
+
+		out += sprintf(out, "%03u %03u ", i, vdev->ud.status);
+
+		if (vdev->ud.status == VDEV_ST_USED) {
+			out += sprintf(out, "%03u %08x ",
+					vdev->speed, vdev->devid);
+			out += sprintf(out, "%16p ", vdev->ud.tcp_socket);
+			out += sprintf(out, "%s", vdev->udev->dev.bus_id);
+
+		} else
+			out += sprintf(out, "000 000 000 0000000000000000 0-0");
+
+		out += sprintf(out, "\n");
+
+		spin_unlock(&vdev->ud.lock);
+	}
+
+	spin_unlock(&the_controller->lock);
+
+	return out - s;
+}
+static DEVICE_ATTR(status, S_IRUGO, show_status, NULL);
+
+/* Sysfs entry to shutdown a virtual connection */
+static int vhci_port_disconnect(__u32 rhport)
+{
+	struct vhci_device *vdev;
+
+	dbg_vhci_sysfs("enter\n");
+
+	/* lock */
+	spin_lock(&the_controller->lock);
+
+	vdev = port_to_vdev(rhport);
+
+	spin_lock(&vdev->ud.lock);
+	if (vdev->ud.status == VDEV_ST_NULL) {
+		uerr("not connected %d\n", vdev->ud.status);
+
+		/* unlock */
+		spin_unlock(&vdev->ud.lock);
+		spin_unlock(&the_controller->lock);
+
+		return -EINVAL;
+	}
+
+	/* unlock */
+	spin_unlock(&vdev->ud.lock);
+	spin_unlock(&the_controller->lock);
+
+	usbip_event_add(&vdev->ud, VDEV_EVENT_DOWN);
+
+	return 0;
+}
+
+static ssize_t store_detach(struct device *dev, struct device_attribute *attr,
+			    const char *buf, size_t count)
+{
+	int err;
+	__u32 rhport = 0;
+
+	sscanf(buf, "%u", &rhport);
+
+	/* check rhport */
+	if (rhport >= VHCI_NPORTS) {
+		uerr("invalid port %u\n", rhport);
+		return -EINVAL;
+	}
+
+	err = vhci_port_disconnect(rhport);
+	if (err < 0)
+		return -EINVAL;
+
+	dbg_vhci_sysfs("Leave\n");
+	return count;
+}
+static DEVICE_ATTR(detach, S_IWUSR, NULL, store_detach);
+
+/* Sysfs entry to establish a virtual connection */
+static int valid_args(__u32 rhport, enum usb_device_speed speed)
+{
+	/* check rhport */
+	if ((rhport < 0) || (rhport >= VHCI_NPORTS)) {
+		uerr("port %u\n", rhport);
+		return -EINVAL;
+	}
+
+	/* check speed */
+	switch (speed) {
+	case USB_SPEED_LOW:
+	case USB_SPEED_FULL:
+	case USB_SPEED_HIGH:
+	case USB_SPEED_VARIABLE:
+		break;
+	default:
+		uerr("speed %d\n", speed);
+		return -EINVAL;
+	}
+
+	return 0;
+}
+
+/*
+ * To start a new USB/IP attachment, a userland program needs to setup a TCP
+ * connection and then write its socket descriptor with remote device
+ * information into this sysfs file.
+ *
+ * A remote device is virtually attached to the root-hub port of @rhport with
+ * @speed. @devid is embedded into a request to specify the remote device in a
+ * server host.
+ *
+ * write() returns 0 on success, else negative errno.
+ */
+static ssize_t store_attach(struct device *dev, struct device_attribute *attr,
+			    const char *buf, size_t count)
+{
+	struct vhci_device *vdev;
+	struct socket *socket;
+	int sockfd = 0;
+	__u32 rhport = 0, devid = 0, speed = 0;
+
+	/*
+	 * @rhport: port number of vhci_hcd
+	 * @sockfd: socket descriptor of an established TCP connection
+	 * @devid: unique device identifier in a remote host
+	 * @speed: usb device speed in a remote host
+	 */
+	sscanf(buf, "%u %u %u %u", &rhport, &sockfd, &devid, &speed);
+
+	dbg_vhci_sysfs("rhport(%u) sockfd(%u) devid(%u) speed(%u)\n",
+			rhport, sockfd, devid, speed);
+
+
+	/* check received parameters */
+	if (valid_args(rhport, speed) < 0)
+		return -EINVAL;
+
+	/* check sockfd */
+	socket = sockfd_to_socket(sockfd);
+	if (!socket)
+		return  -EINVAL;
+
+	/* now need lock until setting vdev status as used */
+
+	/* begin a lock */
+	spin_lock(&the_controller->lock);
+
+	vdev = port_to_vdev(rhport);
+
+	spin_lock(&vdev->ud.lock);
+
+	if (vdev->ud.status != VDEV_ST_NULL) {
+		/* end of the lock */
+		spin_unlock(&vdev->ud.lock);
+		spin_unlock(&the_controller->lock);
+
+		uerr("port %d already used\n", rhport);
+		return -EINVAL;
+	}
+
+	uinfo("rhport(%u) sockfd(%d) devid(%u) speed(%u)\n",
+			rhport, sockfd, devid, speed);
+
+	vdev->devid         = devid;
+	vdev->speed         = speed;
+	vdev->ud.tcp_socket = socket;
+	vdev->ud.status     = VDEV_ST_NOTASSIGNED;
+
+	spin_unlock(&vdev->ud.lock);
+	spin_unlock(&the_controller->lock);
+	/* end the lock */
+
+	/*
+	 * this function will sleep, so should be out of the lock. but, it's ok
+	 * because we already marked vdev as being used. really?
+	 */
+	usbip_start_threads(&vdev->ud);
+
+	rh_port_connect(rhport, speed);
+
+	return count;
+}
+static DEVICE_ATTR(attach, S_IWUSR, NULL, store_attach);
+
+static struct attribute *dev_attrs[] = {
+	&dev_attr_status.attr,
+	&dev_attr_detach.attr,
+	&dev_attr_attach.attr,
+	&dev_attr_usbip_debug.attr,
+	NULL,
+};
+
+struct attribute_group dev_attr_group = {
+	.attrs = dev_attrs,
+};
diff --git a/drivers/staging/usbip/vhci_tx.c b/drivers/staging/usbip/vhci_tx.c
new file mode 100644
index 0000000..1f552a9
--- /dev/null
+++ b/drivers/staging/usbip/vhci_tx.c
@@ -0,0 +1,239 @@
+/*
+ * Copyright (C) 2003-2008 Takahiro Hirofuchi
+ *
+ * This is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or
+ * (at your option) any later version.
+ *
+ * This is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307,
+ * USA.
+ */
+
+#include "usbip_common.h"
+#include "vhci.h"
+
+
+static void setup_cmd_submit_pdu(struct usbip_header *pdup,  struct urb *urb)
+{
+	struct vhci_priv *priv = ((struct vhci_priv *)urb->hcpriv);
+	struct vhci_device *vdev = priv->vdev;
+
+	dbg_vhci_tx("URB, local devnum %u, remote devid %u\n",
+				usb_pipedevice(urb->pipe), vdev->devid);
+
+	pdup->base.command = USBIP_CMD_SUBMIT;
+	pdup->base.seqnum  = priv->seqnum;
+	pdup->base.devid   = vdev->devid;
+	if (usb_pipein(urb->pipe))
+		pdup->base.direction = USBIP_DIR_IN;
+	else
+		pdup->base.direction = USBIP_DIR_OUT;
+	pdup->base.ep      = usb_pipeendpoint(urb->pipe);
+
+	usbip_pack_pdu(pdup, urb, USBIP_CMD_SUBMIT, 1);
+
+	if (urb->setup_packet)
+		memcpy(pdup->u.cmd_submit.setup, urb->setup_packet, 8);
+}
+
+static struct vhci_priv *dequeue_from_priv_tx(struct vhci_device *vdev)
+{
+	unsigned long flags;
+	struct vhci_priv *priv, *tmp;
+
+	spin_lock_irqsave(&vdev->priv_lock, flags);
+
+	list_for_each_entry_safe(priv, tmp, &vdev->priv_tx, list) {
+		list_move_tail(&priv->list, &vdev->priv_rx);
+		spin_unlock_irqrestore(&vdev->priv_lock, flags);
+		return priv;
+	}
+
+	spin_unlock_irqrestore(&vdev->priv_lock, flags);
+
+	return NULL;
+}
+
+
+
+static int vhci_send_cmd_submit(struct vhci_device *vdev)
+{
+	struct vhci_priv *priv = NULL;
+
+	struct msghdr msg;
+	struct kvec iov[3];
+	size_t txsize;
+
+	size_t total_size = 0;
+
+	while ((priv = dequeue_from_priv_tx(vdev)) != NULL) {
+		int ret;
+		struct urb *urb = priv->urb;
+		struct usbip_header pdu_header;
+		void *iso_buffer = NULL;
+
+		txsize = 0;
+		memset(&pdu_header, 0, sizeof(pdu_header));
+		memset(&msg, 0, sizeof(msg));
+		memset(&iov, 0, sizeof(iov));
+
+		dbg_vhci_tx("setup txdata urb %p\n", urb);
+
+
+		/* 1. setup usbip_header */
+		setup_cmd_submit_pdu(&pdu_header, urb);
+		usbip_header_correct_endian(&pdu_header, 1);
+
+		iov[0].iov_base = &pdu_header;
+		iov[0].iov_len  = sizeof(pdu_header);
+		txsize += sizeof(pdu_header);
+
+		/* 2. setup transfer buffer */
+		if (!usb_pipein(urb->pipe) && urb->transfer_buffer_length > 0) {
+			iov[1].iov_base = urb->transfer_buffer;
+			iov[1].iov_len  = urb->transfer_buffer_length;
+			txsize += urb->transfer_buffer_length;
+		}
+
+		/* 3. setup iso_packet_descriptor */
+		if (usb_pipetype(urb->pipe) == PIPE_ISOCHRONOUS) {
+			ssize_t len = 0;
+
+			iso_buffer = usbip_alloc_iso_desc_pdu(urb, &len);
+			if (!iso_buffer) {
+				usbip_event_add(&vdev->ud,
+						SDEV_EVENT_ERROR_MALLOC);
+				return -1;
+			}
+
+			iov[2].iov_base = iso_buffer;
+			iov[2].iov_len  = len;
+			txsize += len;
+		}
+
+		ret = kernel_sendmsg(vdev->ud.tcp_socket, &msg, iov, 3, txsize);
+		if (ret != txsize) {
+			uerr("sendmsg failed!, retval %d for %zd\n", ret,
+								txsize);
+			kfree(iso_buffer);
+			usbip_event_add(&vdev->ud, VDEV_EVENT_ERROR_TCP);
+			return -1;
+		}
+
+		kfree(iso_buffer);
+		dbg_vhci_tx("send txdata\n");
+
+		total_size += txsize;
+	}
+
+	return total_size;
+}
+
+
+/*-------------------------------------------------------------------------*/
+
+static struct vhci_unlink *dequeue_from_unlink_tx(struct vhci_device *vdev)
+{
+	unsigned long flags;
+	struct vhci_unlink *unlink, *tmp;
+
+	spin_lock_irqsave(&vdev->priv_lock, flags);
+
+	list_for_each_entry_safe(unlink, tmp, &vdev->unlink_tx, list) {
+		list_move_tail(&unlink->list, &vdev->unlink_rx);
+		spin_unlock_irqrestore(&vdev->priv_lock, flags);
+		return unlink;
+	}
+
+	spin_unlock_irqrestore(&vdev->priv_lock, flags);
+
+	return NULL;
+}
+
+static int vhci_send_cmd_unlink(struct vhci_device *vdev)
+{
+	struct vhci_unlink *unlink = NULL;
+
+	struct msghdr msg;
+	struct kvec iov[3];
+	size_t txsize;
+
+	size_t total_size = 0;
+
+	while ((unlink = dequeue_from_unlink_tx(vdev)) != NULL) {
+		int ret;
+		struct usbip_header pdu_header;
+
+		txsize = 0;
+		memset(&pdu_header, 0, sizeof(pdu_header));
+		memset(&msg, 0, sizeof(msg));
+		memset(&iov, 0, sizeof(iov));
+
+		dbg_vhci_tx("setup cmd unlink, %lu \n", unlink->seqnum);
+
+
+		/* 1. setup usbip_header */
+		pdu_header.base.command = USBIP_CMD_UNLINK;
+		pdu_header.base.seqnum  = unlink->seqnum;
+		pdu_header.base.devid	= vdev->devid;
+		pdu_header.base.ep	= 0;
+		pdu_header.u.cmd_unlink.seqnum = unlink->unlink_seqnum;
+
+		usbip_header_correct_endian(&pdu_header, 1);
+
+		iov[0].iov_base = &pdu_header;
+		iov[0].iov_len  = sizeof(pdu_header);
+		txsize += sizeof(pdu_header);
+
+		ret = kernel_sendmsg(vdev->ud.tcp_socket, &msg, iov, 1, txsize);
+		if (ret != txsize) {
+			uerr("sendmsg failed!, retval %d for %zd\n", ret,
+								txsize);
+			usbip_event_add(&vdev->ud, VDEV_EVENT_ERROR_TCP);
+			return -1;
+		}
+
+
+		dbg_vhci_tx("send txdata\n");
+
+		total_size += txsize;
+	}
+
+	return total_size;
+}
+
+
+/*-------------------------------------------------------------------------*/
+
+void vhci_tx_loop(struct usbip_task *ut)
+{
+	struct usbip_device *ud = container_of(ut, struct usbip_device, tcp_tx);
+	struct vhci_device *vdev = container_of(ud, struct vhci_device, ud);
+
+	while (1) {
+		if (signal_pending(current)) {
+			uinfo("vhci_tx signal catched\n");
+			break;
+		}
+
+		if (vhci_send_cmd_submit(vdev) < 0)
+			break;
+
+		if (vhci_send_cmd_unlink(vdev) < 0)
+			break;
+
+		wait_event_interruptible(vdev->waitq_tx,
+				(!list_empty(&vdev->priv_tx) ||
+				 !list_empty(&vdev->unlink_tx)));
+
+		dbg_vhci_tx("pending urbs ?, now wake up\n");
+	}
+}
diff --git a/drivers/staging/winbond/Kconfig b/drivers/staging/winbond/Kconfig
new file mode 100644
index 0000000..10d72be
--- /dev/null
+++ b/drivers/staging/winbond/Kconfig
@@ -0,0 +1,7 @@
+config W35UND
+	tristate "Winbond driver"
+	depends on MAC80211 && WLAN_80211 && EXPERIMENTAL && !4KSTACKS
+	default n
+	---help---
+	  This is highly experimental driver for winbond wifi card on some Kohjinsha notebooks
+	  Check http://code.google.com/p/winbondport/ for new version
diff --git a/drivers/staging/winbond/Makefile b/drivers/staging/winbond/Makefile
new file mode 100644
index 0000000..29c98bf
--- /dev/null
+++ b/drivers/staging/winbond/Makefile
@@ -0,0 +1,18 @@
+	DRIVER_DIR=./linux
+
+w35und-objs := $(DRIVER_DIR)/wbusb.o $(DRIVER_DIR)/wb35reg.o $(DRIVER_DIR)/wb35rx.o $(DRIVER_DIR)/wb35tx.o \
+	mds.o \
+	mlmetxrx.o \
+	mto.o	\
+	phy_calibration.o	\
+	reg.o			\
+	rxisr.o			\
+	sme_api.o		\
+	wbhal.o			\
+	wblinux.o		\
+
+
+obj-$(CONFIG_W35UND) += w35und.o
+
+
+
diff --git a/drivers/staging/winbond/README b/drivers/staging/winbond/README
new file mode 100644
index 0000000..707b6b3
--- /dev/null
+++ b/drivers/staging/winbond/README
@@ -0,0 +1,10 @@
+TODO:
+	- sparse cleanups
+	- checkpatch cleanups
+	- kerneldoc cleanups
+	- remove typedefs
+	- remove unused ioctls
+	- use cfg80211 for regulatory stuff
+
+Please send patches to Greg Kroah-Hartman <greg@kroah.com> and
+Pavel Machek <pavel@suse.cz>
diff --git a/drivers/staging/winbond/adapter.h b/drivers/staging/winbond/adapter.h
new file mode 100644
index 0000000..609701d
--- /dev/null
+++ b/drivers/staging/winbond/adapter.h
@@ -0,0 +1,23 @@
+//
+// ADAPTER.H -
+// Windows NDIS global variable 'Adapter' typedef
+//
+#define MAX_ANSI_STRING		40
+typedef struct WB32_ADAPTER
+{
+	u32 AdapterIndex; // 20060703.4 Add for using pAdapterContext global Adapter point
+
+	WB_LOCALDESCRIPT	sLocalPara;		// Myself connected parameters
+	PWB_BSSDESCRIPTION	asBSSDescriptElement;
+
+	MLME_FRAME		sMlmeFrame;		// connect to peerSTA parameters
+
+	MTO_PARAMETERS		sMtoPara; // MTO_struct ...
+	hw_data_t			sHwData; //For HAL
+	MDS					Mds;
+
+	WBLINUX		WbLinux;
+        struct iw_statistics iw_stats;
+
+	u8	LinkName[MAX_ANSI_STRING];
+} WB32_ADAPTER, ADAPTER, *PWB32_ADAPTER, *PADAPTER;
diff --git a/drivers/staging/winbond/bss_f.h b/drivers/staging/winbond/bss_f.h
new file mode 100644
index 0000000..c957bc9
--- /dev/null
+++ b/drivers/staging/winbond/bss_f.h
@@ -0,0 +1,59 @@
+//
+// BSS descriptor DataBase management global function
+//
+
+void vBSSdescriptionInit(PWB32_ADAPTER Adapter);
+void vBSSfoundList(PWB32_ADAPTER Adapter);
+u8 boChanFilter(PWB32_ADAPTER Adapter, u8 ChanNo);
+u16 wBSSallocateEntry(PWB32_ADAPTER Adapter);
+u16 wBSSGetEntry(PWB32_ADAPTER Adapter);
+void vSimpleHouseKeeping(PWB32_ADAPTER Adapter);
+u16 wBSShouseKeeping(PWB32_ADAPTER Adapter);
+void ClearBSSdescpt(PWB32_ADAPTER Adapter, u16 i);
+u16 wBSSfindBssID(PWB32_ADAPTER Adapter, u8 *pbBssid);
+u16 wBSSfindDedicateCandidate(PWB32_ADAPTER Adapter, struct SSID_Element *psSsid, u8 *pbBssid);
+u16 wBSSfindMACaddr(PWB32_ADAPTER Adapter, u8 *pbMacAddr);
+u16 wBSSsearchMACaddr(PWB32_ADAPTER Adapter, u8 *pbMacAddr, u8 band);
+u16 wBSSaddScanData(PWB32_ADAPTER, u16, psRXDATA);
+u16 wBSSUpdateScanData(PWB32_ADAPTER Adapter, u16 wBssIdx, psRXDATA psRcvData);
+u16 wBSScreateIBSSdata(PWB32_ADAPTER Adapter, PWB_BSSDESCRIPTION psDesData);
+void DesiredRate2BSSdescriptor(PWB32_ADAPTER Adapter, PWB_BSSDESCRIPTION psDesData,
+							 u8 *pBasicRateSet, u8 BasicRateCount,
+							 u8 *pOperationRateSet, u8 OperationRateCount);
+void DesiredRate2InfoElement(PWB32_ADAPTER Adapter, u8	*addr, u16 *iFildOffset,
+							 u8 *pBasicRateSet, u8 BasicRateCount,
+							 u8 *pOperationRateSet, u8 OperationRateCount);
+void BSSAddIBSSdata(PWB32_ADAPTER Adapter, PWB_BSSDESCRIPTION psDesData);
+unsigned char boCmpMacAddr( PUCHAR, PUCHAR );
+unsigned char boCmpSSID(struct SSID_Element *psSSID1, struct SSID_Element *psSSID2);
+u16 wBSSfindSSID(PWB32_ADAPTER Adapter, struct SSID_Element *psSsid);
+u16 wRoamingQuery(PWB32_ADAPTER Adapter);
+void vRateToBitmap(PWB32_ADAPTER Adapter, u16 index);
+u8 bRateToBitmapIndex(PWB32_ADAPTER Adapter, u8 bRate);
+u8 bBitmapToRate(u8 i);
+unsigned char boIsERPsta(PWB32_ADAPTER Adapter, u16 i);
+unsigned char boCheckConnect(PWB32_ADAPTER Adapter);
+unsigned char boCheckSignal(PWB32_ADAPTER Adapter);
+void AddIBSSIe(PWB32_ADAPTER Adapter,PWB_BSSDESCRIPTION psDesData );//added by ws for WPA_None06/01/04
+void BssScanUpToDate(PWB32_ADAPTER Adapter);
+void BssUpToDate(PWB32_ADAPTER Adapter);
+void RateSort(u8 *RateArray, u8 num, u8 mode);
+void RateReSortForSRate(PWB32_ADAPTER Adapter, u8 *RateArray, u8 num);
+void Assemble_IE(PWB32_ADAPTER Adapter, u16 wBssIdx);
+void SetMaxTxRate(PWB32_ADAPTER Adapter);
+
+void CreateWpaIE(PWB32_ADAPTER Adapter, u16* iFildOffset, PUCHAR msg, struct  Management_Frame* msgHeader,
+				 struct Association_Request_Frame_Body* msgBody, u16 iMSindex); //added by WS 05/14/05
+
+#ifdef _WPA2_
+void CreateRsnIE(PWB32_ADAPTER Adapter, u16* iFildOffset, PUCHAR msg, struct  Management_Frame* msgHeader,
+				 struct Association_Request_Frame_Body* msgBody, u16 iMSindex);//added by WS 05/14/05
+
+u16 SearchPmkid(PWB32_ADAPTER Adapter, struct  Management_Frame* msgHeader,
+				   struct PMKID_Information_Element * AssoReq_PMKID );
+#endif
+
+
+
+
+
diff --git a/drivers/staging/winbond/bssdscpt.h b/drivers/staging/winbond/bssdscpt.h
new file mode 100644
index 0000000..97150a2
--- /dev/null
+++ b/drivers/staging/winbond/bssdscpt.h
@@ -0,0 +1,156 @@
+//+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
+//	bssdscpt.c
+//		BSS descriptor data base
+//	history :
+//
+//	Description:
+//		BSS descriptor data base will store the information of the stations at the
+//		surrounding environment. The first entry( psBSS(0) ) will not be used and the
+//		second one( psBSS(1) ) will be used for the broadcast address.
+//+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
+
+//#define MAX_ACC_RSSI_COUNT		10
+#define MAX_ACC_RSSI_COUNT		6
+
+///////////////////////////////////////////////////////////////////////////
+//
+// BSS Description set Element , to store scan received Beacon information
+//
+// Our's differs slightly from the specs. The specify a PHY_Parameter_Set.
+// Since we're only doing a DS design right now, we just have a DS structure.
+//////////////////////////////////////////////////////////////////////////////
+typedef struct BSSDescriptionElement
+{
+	u32		SlotValid;
+	u32		PowerSaveMode;
+	RXLAYER1	RxLayer1;
+
+    u8		abPeerAddress[ MAC_ADDR_LENGTH + 2 ]; // peer MAC Address associated with this session. 6-OCTET value
+    u32		dwBgScanStamp;		// BgScan Sequence Counter stamp, record psROAM->dwScanCounter.
+
+	u16		Beacon_Period;
+	u16		wATIM_Window;
+
+    u8		abBssID[ MAC_ADDR_LENGTH + 2 ];				// 6B
+
+    u8		bBssType;
+    u8		DTIM_Period;        // 1 octet usually from TIM element, if present
+	u8		boInTimerHandler;
+	u8		boERP;			// analysis ERP or (extended) supported rate element
+
+	u8		Timestamp[8];
+	u8		BasicRate[32];
+	u8		OperationalRate[32];
+	u32		dwBasicRateBitmap;			//bit map, retrieve from SupportedRateSet
+	u32		dwOperationalRateBitmap;	//bit map, retrieve from SupportedRateSet and
+										// ExtendedSupportedRateSet
+	// For RSSI calculating
+	u32		HalRssi[MAX_ACC_RSSI_COUNT]; // Encode. It must use MACRO of HAL to get the LNA and AGC data
+	u32		HalRssiIndex;
+
+	////From beacon/probe response
+    struct SSID_Element SSID;				// 34B
+	u8	reserved_1[ 2 ];
+
+    struct Capability_Information_Element   CapabilityInformation;  // 2B
+	u8	reserved_2[ 2 ];
+
+    struct CF_Parameter_Set_Element    CF_Parameter_Set;		// 8B
+    struct IBSS_Parameter_Set_Element  IBSS_Parameter_Set;		// 4B
+    struct TIM_Element                 TIM_Element_Set; 			// 256B
+
+    struct DS_Parameter_Set_Element    DS_Parameter_Set;		// 3B
+	u8	reserved_3;
+
+	struct ERP_Information_Element		ERP_Information_Set;	// 3B
+	u8	reserved_4;
+
+    struct Supported_Rates_Element     SupportedRateSet;			// 10B
+	u8	reserved_5[2];
+
+	struct Extended_Supported_Rates_Element	ExtendedSupportedRateSet;	// 257B
+	u8	reserved_6[3];
+
+	u8	band;
+	u8	reserved_7[3];
+
+	// for MLME module
+    u16		wState;			// the current state of the system
+	u16		wIndex;			// THIS BSS element entry index
+
+	void*	psAdapter;		// pointer to THIS Adapter
+	OS_TIMER	nTimer;  // MLME timer
+
+    // Authentication
+    u16		wAuthAlgo;      // peer MAC MLME use Auth algorithm, default OPEN_AUTH
+    u16		wAuthSeqNum;    // current local MAC sendout AuthReq sequence number
+
+	u8		auth_challengeText[128];
+
+	////For XP:
+    u32		ies_len;		// information element length
+    u8		ies[256];		// information element
+
+	////For WPA
+	u8	RsnIe_Type[2];		//added by ws for distinguish WPA and WPA2 05/14/04
+	u8	RsnIe_len;
+    u8	Rsn_Num;
+
+    // to record the rsn cipher suites,addded by ws 09/05/04
+	SUITE_SELECTOR			group_cipher; // 4B
+	SUITE_SELECTOR			pairwise_key_cipher_suites[WLAN_MAX_PAIRWISE_CIPHER_SUITE_COUNT];
+	SUITE_SELECTOR			auth_key_mgt_suites[WLAN_MAX_AUTH_KEY_MGT_SUITE_LIST_COUNT];
+
+	u16					pairwise_key_cipher_suite_count;
+	u16					auth_key_mgt_suite_count;
+
+	u8					pairwise_key_cipher_suite_selected;
+	u8					auth_key_mgt_suite_selected;
+	u8					reserved_8[2];
+
+	struct RSN_Capability_Element  rsn_capabilities; // 2B
+	u8					reserved_9[2];
+
+    //to record the rsn cipher suites for WPA2
+    #ifdef _WPA2_
+	u32					pre_auth;		//added by WS for distinguish for 05/04/04
+    SUITE_SELECTOR			wpa2_group_cipher; // 4B
+	SUITE_SELECTOR			wpa2_pairwise_key_cipher_suites[WLAN_MAX_PAIRWISE_CIPHER_SUITE_COUNT];
+	SUITE_SELECTOR			wpa2_auth_key_mgt_suites[WLAN_MAX_AUTH_KEY_MGT_SUITE_LIST_COUNT];
+
+	u16					wpa2_pairwise_key_cipher_suite_count;
+	u16					wpa2_auth_key_mgt_suite_count;
+
+	u8					wpa2_pairwise_key_cipher_suite_selected;
+	u8					wpa2_auth_key_mgt_suite_selected;
+	u8					reserved_10[2];
+
+	struct RSN_Capability_Element  wpa2_rsn_capabilities; // 2B
+	u8					reserved_11[2];
+    #endif //endif _WPA2_
+
+	//For Replay protection
+//	u8		PairwiseTSC[6];
+//	u8		GroupTSC[6];
+
+	////For up-to-date
+	u32		ScanTimeStamp;	//for the decision whether the station/AP(may exist at
+							//different channels) has left. It must be detected by
+							//scanning. Local device may connected or disconnected.
+	u32		BssTimeStamp;	//Only for the decision whether the station/AP(exist in
+							//the same channel, and no scanning) if local device has
+							//connected successfully.
+
+	// 20061108 Add for storing WPS_IE. [E id][Length][OUI][Data]
+	u8		WPS_IE_Data[MAX_IE_APPEND_SIZE];
+	u16		WPS_IE_length;
+	u16		WPS_IE_length_tmp; // For verify there is an WPS_IE in Beacon or probe response
+
+} WB_BSSDESCRIPTION, *PWB_BSSDESCRIPTION;
+
+#define wBSSConnectedSTA(Adapter)             \
+    ((u16)(Adapter)->sLocalPara.wConnectedSTAindex)
+
+#define psBSS(i)			(&(Adapter->asBSSDescriptElement[(i)]))
+
+
diff --git a/drivers/staging/winbond/ds_tkip.h b/drivers/staging/winbond/ds_tkip.h
new file mode 100644
index 0000000..29e5055
--- /dev/null
+++ b/drivers/staging/winbond/ds_tkip.h
@@ -0,0 +1,33 @@
+// Rotation functions on 32 bit values
+#define ROL32( A, n ) \
+    ( ((A) << (n)) | ( ((A)>>(32-(n)))  & ( (1UL << (n)) - 1 ) ) )
+
+#define ROR32( A, n )   ROL32( (A), 32-(n) )
+
+
+typedef struct tkip
+{
+    u32	K0, K1;		// Key
+	union
+	{
+		struct // Current state
+		{
+			u32	L;
+			u32	R;
+		};
+		u8	LR[8];
+	};
+	union
+	{
+		u32	M;		// Message accumulator (single word)
+		u8	Mb[4];
+	};
+	s32		bytes_in_M;	// # bytes in M
+} tkip_t;
+
+//void _append_data( PUCHAR pData, u16 size, tkip_t *p );
+void Mds_MicGet(  void* Adapter,  void* pRxLayer1,  PUCHAR pKey,  PUCHAR pMic );
+void Mds_MicFill(  void* Adapter,  void* pDes,  PUCHAR XmitBufAddress );
+
+
+
diff --git a/drivers/staging/winbond/gl_80211.h b/drivers/staging/winbond/gl_80211.h
new file mode 100644
index 0000000..1806d81
--- /dev/null
+++ b/drivers/staging/winbond/gl_80211.h
@@ -0,0 +1,125 @@
+
+#ifndef __GL_80211_H__
+#define __GL_80211_H__
+
+/****************** CONSTANT AND MACRO SECTION ******************************/
+
+/* BSS Type */
+enum {
+    WLAN_BSSTYPE_INFRASTRUCTURE         = 0,
+    WLAN_BSSTYPE_INDEPENDENT,
+    WLAN_BSSTYPE_ANY_BSS,
+};
+
+
+
+/* Preamble_Type, see <SFS-802.11G-MIB-203> */
+typedef enum preamble_type {
+    WLAN_PREAMBLE_TYPE_SHORT,
+    WLAN_PREAMBLE_TYPE_LONG,
+}    preamble_type_e;
+
+
+/* Slot_Time_Type, see <SFS-802.11G-MIB-208> */
+typedef enum slot_time_type {
+    WLAN_SLOT_TIME_TYPE_LONG,
+    WLAN_SLOT_TIME_TYPE_SHORT,
+}    slot_time_type_e;
+
+/*--------------------------------------------------------------------------*/
+/* Encryption Mode */
+typedef enum {
+    WEP_DISABLE                                         = 0,
+    WEP_64,
+    WEP_128,
+
+    ENCRYPT_DISABLE,
+    ENCRYPT_WEP,
+    ENCRYPT_WEP_NOKEY,
+    ENCRYPT_TKIP,
+    ENCRYPT_TKIP_NOKEY,
+    ENCRYPT_CCMP,
+    ENCRYPT_CCMP_NOKEY,
+}    encryption_mode_e;
+
+typedef enum _WLAN_RADIO {
+    WLAN_RADIO_ON,
+    WLAN_RADIO_OFF,
+    WLAN_RADIO_MAX, // not a real type, defined as an upper bound
+} WLAN_RADIO;
+
+typedef struct _WLAN_RADIO_STATUS {
+	WLAN_RADIO HWStatus;
+	WLAN_RADIO SWStatus;
+} WLAN_RADIO_STATUS;
+
+//----------------------------------------------------------------------------
+// 20041021 1.1.81.1000 ybjiang
+// add for radio notification
+typedef
+void (*RADIO_NOTIFICATION_HANDLER)(
+	void *Data,
+	void *RadioStatusBuffer,
+	u32 RadioStatusBufferLen
+	);
+
+typedef struct _WLAN_RADIO_NOTIFICATION
+{
+    RADIO_NOTIFICATION_HANDLER RadioChangeHandler;
+    void *Data;
+} WLAN_RADIO_NOTIFICATION;
+
+//----------------------------------------------------------------------------
+// 20041102 1.1.91.1000 ybjiang
+// add for OID_802_11_CUST_REGION_CAPABILITIES and OID_802_11_OID_REGION
+typedef enum _WLAN_REGION_CODE
+{
+	WLAN_REGION_UNKNOWN,
+	WLAN_REGION_EUROPE,
+	WLAN_REGION_JAPAN,
+	WLAN_REGION_USA,
+	WLAN_REGION_FRANCE,
+	WLAN_REGION_SPAIN,
+	WLAN_REGION_ISRAEL,
+	WLAN_REGION_MAX, // not a real type, defined as an upper bound
+} WLAN_REGION_CODE;
+
+#define REGION_NAME_MAX_LENGTH   256
+
+typedef struct _WLAN_REGION_CHANNELS
+{
+	u32 Length;
+	u32 NameLength;
+	u8 Name[REGION_NAME_MAX_LENGTH];
+	WLAN_REGION_CODE Code;
+	u32 Frequency[1];
+} WLAN_REGION_CHANNELS;
+
+typedef struct _WLAN_REGION_CAPABILITIES
+{
+	u32 NumberOfItems;
+	WLAN_REGION_CHANNELS Region[1];
+} WLAN_REGION_CAPABILITIES;
+
+typedef struct _region_name_map {
+	WLAN_REGION_CODE region;
+	u8 *name;
+	u32 *channels;
+} region_name_map;
+
+/*--------------------------------------------------------------------------*/
+#define MAC2STR(a) (a)[0], (a)[1], (a)[2], (a)[3], (a)[4], (a)[5]
+#define MACSTR "%02X:%02X:%02X:%02X:%02X:%02X"
+
+// TODO: 0627 kevin
+#define MIC2STR(a) (a)[0], (a)[1], (a)[2], (a)[3], (a)[4], (a)[5], (a)[6], (a)[7]
+#define MICSTR "%02X %02X %02X %02X %02X %02X %02X %02X"
+
+#define MICKEY2STR(a)   MIC2STR(a)
+#define MICKEYSTR       MICSTR
+
+
+#endif /* __GL_80211_H__ */
+/*** end of file ***/
+
+
diff --git a/drivers/staging/winbond/ioctls.h b/drivers/staging/winbond/ioctls.h
new file mode 100644
index 0000000..e8b35dc
--- /dev/null
+++ b/drivers/staging/winbond/ioctls.h
@@ -0,0 +1,678 @@
+//============================================================================
+//  IOCTLS.H -
+//
+//  Description:
+//    Define the IOCTL codes.
+//
+//  Revision history:
+//  --------------------------------------------------------------------------
+//
+//  Copyright (c) 2002-2004 Winbond Electronics Corp. All rights reserved.
+//=============================================================================
+
+#ifndef _IOCTLS_H
+#define _IOCTLS_H
+
+// PD43 Keep it - Used with the Win33 application
+// #include <winioctl.h>
+
+//========================================================
+// 20040108 ADD the follow for test
+//========================================================
+#define INFORMATION_LENGTH sizeof(unsigned int)
+
+#define WB32_IOCTL_INDEX  0x0900 //­×§ďĽHŤKŹŰŽe//
+
+#define Wb32_RegisterRead			CTL_CODE(	\
+			FILE_DEVICE_UNKNOWN,				\
+            WB32_IOCTL_INDEX + 0,				\
+            METHOD_BUFFERED,					\
+            FILE_ANY_ACCESS)
+
+#define Wb32_RegisterWrite			CTL_CODE(	\
+            FILE_DEVICE_UNKNOWN,				\
+            WB32_IOCTL_INDEX + 1,				\
+            METHOD_BUFFERED,					\
+            FILE_ANY_ACCESS)
+
+#define Wb32_SendPacket				CTL_CODE(	\
+            FILE_DEVICE_UNKNOWN,				\
+            WB32_IOCTL_INDEX + 2,				\
+            METHOD_BUFFERED,					\
+            FILE_ANY_ACCESS)
+
+#define Wb32_QuerySendResult		CTL_CODE(	\
+            FILE_DEVICE_UNKNOWN,				\
+            WB32_IOCTL_INDEX + 3,				\
+            METHOD_BUFFERED,					\
+            FILE_ANY_ACCESS)
+
+#define Wb32_SetFragmentThreshold	CTL_CODE(	\
+            FILE_DEVICE_UNKNOWN,				\
+            WB32_IOCTL_INDEX + 4,				\
+            METHOD_BUFFERED,					\
+            FILE_ANY_ACCESS)
+
+#define Wb32_SetLinkStatus		CTL_CODE(	\
+            FILE_DEVICE_UNKNOWN,				\
+            WB32_IOCTL_INDEX + 5,				\
+            METHOD_BUFFERED,					\
+            FILE_ANY_ACCESS)
+
+#define Wb32_SetBulkIn			CTL_CODE(	\
+            FILE_DEVICE_UNKNOWN,				\
+            WB32_IOCTL_INDEX + 6,				\
+            METHOD_BUFFERED,					\
+            FILE_ANY_ACCESS)
+
+#define Wb32_LoopbackTest			CTL_CODE(	\
+            FILE_DEVICE_UNKNOWN,				\
+            WB32_IOCTL_INDEX + 7,				\
+            METHOD_BUFFERED,					\
+            FILE_ANY_ACCESS)
+
+#define Wb35_EEPromRead				CTL_CODE(	\
+            FILE_DEVICE_UNKNOWN,				\
+            WB32_IOCTL_INDEX + 8,				\
+            METHOD_BUFFERED,					\
+            FILE_ANY_ACCESS)
+
+#define Wb35_EEPromWrite			CTL_CODE(	\
+            FILE_DEVICE_UNKNOWN,				\
+            WB32_IOCTL_INDEX + 9,				\
+            METHOD_BUFFERED,					\
+            FILE_ANY_ACCESS)
+
+#define Wb35_FlashReadData			CTL_CODE(	\
+            FILE_DEVICE_UNKNOWN,				\
+            WB32_IOCTL_INDEX + 10,				\
+            METHOD_BUFFERED,					\
+            FILE_ANY_ACCESS)
+
+#define Wb35_FlashWrite				CTL_CODE(	\
+            FILE_DEVICE_UNKNOWN,				\
+            WB32_IOCTL_INDEX + 11,				\
+            METHOD_BUFFERED,					\
+            FILE_ANY_ACCESS)
+
+#define Wb35_FlashWriteBurst		CTL_CODE(	\
+            FILE_DEVICE_UNKNOWN,				\
+            WB32_IOCTL_INDEX + 12,				\
+            METHOD_BUFFERED,					\
+            FILE_ANY_ACCESS)
+
+#define Wb35_TxBurstStart			CTL_CODE(	\
+            FILE_DEVICE_UNKNOWN,				\
+            WB32_IOCTL_INDEX + 13,				\
+            METHOD_BUFFERED,					\
+            FILE_ANY_ACCESS)
+
+#define Wb35_TxBurstStop			CTL_CODE(	\
+            FILE_DEVICE_UNKNOWN,				\
+            WB32_IOCTL_INDEX + 14,				\
+            METHOD_BUFFERED,					\
+            FILE_ANY_ACCESS)
+
+#define Wb35_TxBurstStatus			CTL_CODE(	\
+            FILE_DEVICE_UNKNOWN,				\
+            WB32_IOCTL_INDEX + 15,				\
+            METHOD_BUFFERED,					\
+            FILE_ANY_ACCESS)
+
+// For IOCTL interface
+//================================================
+#define LINKNAME_STRING     "\\DosDevices\\W35UND"
+#define NTDEVICE_STRING     "\\Device\\W35UND"
+#define APPLICATION_LINK	"\\\\.\\W35UND"
+
+#define WB_IOCTL_INDEX      0x0800
+#define WB_IOCTL_TS_INDEX   WB_IOCTL_INDEX + 60
+#define WB_IOCTL_DUT_INDEX  WB_IOCTL_TS_INDEX + 40
+
+//=============================================================================
+// IOCTLS defined for DUT (Device Under Test)
+
+// IOCTL_WB_802_11_DUT_MAC_ADDRESS
+// Query: Return the dot11StationID
+// Set  : Set the dot11StationID. Demo only.
+//
+#define IOCTL_WB_802_11_DUT_MAC_ADDRESS     CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                        \
+            WB_IOCTL_DUT_INDEX + 1,                     \
+            METHOD_BUFFERED,                            \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_BSS_DESCRIPTION
+// Query: Return the info. of the current connected BSS.
+// Set  : None.
+//
+#define IOCTL_WB_802_11_DUT_BSS_DESCRIPTION   CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                          \
+            WB_IOCTL_DUT_INDEX + 2,                       \
+            METHOD_BUFFERED,                              \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_TX_RATE
+// Query: Return the current transmission rate.
+// Set  : Set the transmission rate of the Tx packets.
+//
+#define IOCTL_WB_802_11_DUT_TX_RATE             CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 3,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_CURRENT_STA_STATE
+// Query: Return the current STA state. (WB_STASTATE type)
+// Set  : None.
+//
+#define IOCTL_WB_802_11_DUT_CURRENT_STA_STATE   CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 4,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+/////////// 10/31/02' Added /////////////////////
+
+// IOCTL_WB_802_11_DUT_START_IBSS_REQUEST
+// Query: None.
+// Set  : Start a new IBSS
+//
+#define IOCTL_WB_802_11_DUT_START_IBSS_REQUEST  CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 5,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_JOIN_REQUEST
+// Query: None.
+// Set  : Synchronize with the selected BSS
+//
+#define IOCTL_WB_802_11_DUT_JOIN_REQUEST        CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 6,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_AUTHEN_REQUEST
+// Query: None.
+// Set  : Authenticate with the BSS
+//
+#define IOCTL_WB_802_11_DUT_AUTHEN_REQUEST      CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 7,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_DEAUTHEN_REQUEST
+// Query: None.
+// Set  : DeAuthenticate withe the BSS
+//
+#define IOCTL_WB_802_11_DUT_DEAUTHEN_REQUEST    CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 8,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_ASSOC_REQUEST
+// Query: None.
+// Set  : Associate withe the BSS
+//
+#define IOCTL_WB_802_11_DUT_ASSOC_REQUEST       CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 9,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_REASSOC_REQUEST
+// Query: None.
+// Set  : ReAssociate withe the BSS
+//
+#define IOCTL_WB_802_11_DUT_REASSOC_REQUEST     CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 10,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+
+// IOCTL_WB_802_11_DUT_DISASSOC_REQUEST
+// Query: None.
+// Set  : DisAssociate withe the BSS
+//
+#define IOCTL_WB_802_11_DUT_DISASSOC_REQUEST    CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 11,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_FRAG_THRESHOLD
+// Query: Return the dot11FragmentThreshold
+// Set  : Set the dot11FragmentThreshold
+//
+#define IOCTL_WB_802_11_DUT_FRAG_THRESHOLD      CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 12,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_RTS_THRESHOLD
+// Query: Return the dot11RTSThreshold
+// Set  : Set the dot11RTSThresold
+//
+#define IOCTL_WB_802_11_DUT_RTS_THRESHOLD       CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 13,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_WEP_KEYMODE
+// Query: Get the WEP key mode.
+// Set  : Set the WEP key mode: disable/64 bits/128 bits
+//
+#define IOCTL_WB_802_11_DUT_WEP_KEYMODE         CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 14,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_WEP_KEYVALUE
+// Query: None.
+// Set  : fill in the WEP key value
+//
+#define IOCTL_WB_802_11_DUT_WEP_KEYVALUE        CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 15,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_RESET
+// Query: None.
+// Set  : Reset S/W and H/W
+//
+#define IOCTL_WB_802_11_DUT_RESET          CTL_CODE(       \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 16,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_POWER_SAVE
+// Query: None.
+// Set  : Set Power Save Mode
+//
+#define IOCTL_WB_802_11_DUT_POWER_SAVE    CTL_CODE(        \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 17,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_BSSID_LIST_SCAN
+// Query: None.
+// Set  :
+//
+#define IOCTL_WB_802_11_DUT_BSSID_LIST_SCAN CTL_CODE(      \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 18,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_BSSID_LIST
+// Query: Return the BSS info of BSSs in the last scanning process
+// Set  : None.
+//
+#define IOCTL_WB_802_11_DUT_BSSID_LIST    CTL_CODE(        \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 19,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_STATISTICS
+// Query: Return the statistics of Tx/Rx.
+// Set  : None.
+//
+#define IOCTL_WB_802_11_DUT_STATISTICS    CTL_CODE(        \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 20,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_ACCEPT_BEACON
+// Query: Return the current mode to accept beacon or not.
+// Set  : Enable or disable allowing the HW-MAC to pass the beacon to the SW-MAC
+// Arguments: unsigned char
+//
+#define IOCTL_WB_802_11_DUT_ACCEPT_BEACON  CTL_CODE(       \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 21,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_ROAMING
+// Query: Return the roaming function status
+// Set  : Enable/Disable the roaming function.
+#define IOCTL_WB_802_11_DUT_ROAMING        CTL_CODE(       \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 22,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_DTO
+// Query: Return the DTO(Data Throughput Optimization)
+//        function status (TRUE or FALSE)
+// Set  : Enable/Disable the DTO function.
+//
+#define IOCTL_WB_802_11_DUT_DTO            CTL_CODE(       \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 23,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_ANTENNA_DIVERSITY
+// Query: Return the antenna diversity status. (TRUE/ON or FALSE/OFF)
+// Set  : Enable/Disable the antenna diversity.
+//
+#define IOCTL_WB_802_11_DUT_ANTENNA_DIVERSITY CTL_CODE(    \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 24,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+//-------------- new added for a+b+g ---------------------
+// IOCTL_WB_802_11_DUT_MAC_OPERATION_MODE
+// Query: Return the MAC operation mode. (MODE_802_11_BG, MODE_802_11_A,
+//			 MODE_802_11_ABG, MODE_802_11_BG_IBSS)
+// Set  : Set the MAC operation mode.
+//
+#define IOCTL_WB_802_11_DUT_MAC_OPERATION_MODE CTL_CODE(    \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 25,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_TX_RATE_REDEFINED
+// Query: Return the current tx rate which follows the definition in spec. (for
+//			example, 5.5M => 0x0b)
+// Set  : None
+//
+#define IOCTL_WB_802_11_DUT_TX_RATE_REDEFINED CTL_CODE(    \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 26,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_PREAMBLE_MODE
+// Query: Return the preamble mode. (auto or long)
+// Set  : Set the preamble mode.
+//
+#define IOCTL_WB_802_11_DUT_PREAMBLE_MODE CTL_CODE(    \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 27,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_SLOT_TIME_MODE
+// Query: Return the slot time mode. (auto or long)
+// Set  : Set the slot time mode.
+//
+#define IOCTL_WB_802_11_DUT_SLOT_TIME_MODE CTL_CODE(    \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 28,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+//------------------------------------------------------------------
+
+// IOCTL_WB_802_11_DUT_ADVANCE_STATUS
+// Query:
+// Set  : NONE
+//
+#define IOCTL_WB_802_11_DUT_ADVANCE_STATUS CTL_CODE(    \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 29,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_TX_RATE_MODE
+// Query: Return the tx rate mode. (RATE_AUTO, RATE_1M, .., RATE_54M, RATE_MAX)
+// Set  : Set the tx rate mode.  (RATE_AUTO, RATE_1M, .., RATE_54M, RATE_MAX)
+//
+#define IOCTL_WB_802_11_DUT_TX_RATE_MODE CTL_CODE(    \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 30,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_DTO_PARA
+// Query: Return the DTO parameters
+// Set  : Set the DTO parameters
+//
+#define IOCTL_WB_802_11_DUT_DTO_PARA CTL_CODE(    \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 31,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_EVENT_LOG
+// Query: Return event log
+// Set  : Reset event log
+//
+#define IOCTL_WB_802_11_DUT_EVENT_LOG CTL_CODE(    \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 32,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_CWMIN
+// Query: NONE(It will be obtained by IOCTL_WB_802_11_DUT_ADVANCE_STATUS)
+// Set  : Set CWMin value
+//
+#define IOCTL_WB_802_11_DUT_CWMIN CTL_CODE(    \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 33,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_DUT_CWMAX
+// Query: NONE(It will be obtained by IOCTL_WB_802_11_DUT_ADVANCE_STATUS)
+// Set  : Set CWMax value
+//
+#define IOCTL_WB_802_11_DUT_CWMAX CTL_CODE(    \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_DUT_INDEX + 34,                        \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+
+//==========================================================
+// IOCTLs for Testing
+
+// IOCTL_WB_802_11_TS_SET_CXX_REG
+// Query: None
+// Set  : Write the value to one of Cxx register.
+//
+#define IOCTL_WB_802_11_TS_SET_CXX_REG  CTL_CODE(          \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 0,                          \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_TS_GET_CXX_REG
+// Query: Return the value of the Cxx register.
+// Set  : Write the reg no. (0x00, 0x04, 0x08 etc)
+//
+#define IOCTL_WB_802_11_TS_GET_CXX_REG  CTL_CODE(          \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 1,                          \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_TS_SET_DXX_REG
+// Query: None
+// Set  : Write the value to one of Dxx register.
+//
+#define IOCTL_WB_802_11_TS_SET_DXX_REG  CTL_CODE(          \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 2,                          \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// IOCTL_WB_802_11_TS_GET_DXX_REG
+// Query: Return the value of the Dxx register.
+// Set  : Write the reg no. (0x00, 0x04, 0x08 etc)
+//
+#define IOCTL_WB_802_11_TS_GET_DXX_REG  CTL_CODE(          \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 3,                          \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+//============================================================
+// [TS]
+
+#define IOCTL_WB_802_11_TS_TX_RATE              CTL_CODE(   \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 4,                          \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_CURRENT_CHANNEL      CTL_CODE(   \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 5,                          \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_ENABLE_SEQNO         CTL_CODE(   \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 6,                          \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_ENALBE_ACKEDPACKET   CTL_CODE(   \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 7,                          \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_INHIBIT_CRC          CTL_CODE(   \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 8,                          \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_RESET_RCV_COUNTER    CTL_CODE(   \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 9,                          \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_SET_TX_TRIGGER       CTL_CODE(   \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 10,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_FAILED_TX_COUNT       CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 11,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// [TS1]
+#define IOCTL_WB_802_11_TS_TX_POWER             CTL_CODE(   \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 12,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_MODE_ENABLE			 CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 13,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_MODE_DISABLE			 CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 14,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_ANTENNA				 CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 15,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_ADAPTER_INFO			 CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 16,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_MAC_ADDRESS			 CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 17,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_BSSID				 CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 18,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_RF_PARAMETER			 CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 19,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_FILTER				 CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 20,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_CALIBRATION			 CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 21,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_BSS_MODE				 CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 22,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_SET_SSID				 CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 23,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_IBSS_CHANNEL			 CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 24,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+// set/query the slot time value(short or long slot time)
+#define IOCTL_WB_802_11_TS_SLOT_TIME			 CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 25,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_SLOT_TIME			 CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 25,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#define IOCTL_WB_802_11_TS_RX_STATISTICS		 CTL_CODE(  \
+            FILE_DEVICE_UNKNOWN,                            \
+            WB_IOCTL_TS_INDEX + 26,                         \
+            METHOD_BUFFERED,                                \
+            FILE_ANY_ACCESS)
+
+#endif  // #ifndef _IOCTLS_H
+
+
diff --git a/drivers/staging/winbond/linux/common.h b/drivers/staging/winbond/linux/common.h
new file mode 100644
index 0000000..6b00bad
--- /dev/null
+++ b/drivers/staging/winbond/linux/common.h
@@ -0,0 +1,143 @@
+//
+// common.h
+//
+// This file contains the OS dependant definition and function.
+// Every OS has this file individual.
+//
+
+#define DebugUsbdStatusInformation( _A )
+
+#ifndef COMMON_DEF
+#define COMMON_DEF
+
+#include <linux/version.h>
+#include <linux/usb.h>
+#include <linux/kernel.h> //need for kernel alert
+#include <linux/autoconf.h>
+#include <linux/sched.h>
+#include <linux/signal.h>
+#include <linux/slab.h> //memory allocate
+#include <linux/module.h>
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/init.h>//need for init and exit modules marco
+#include <linux/ctype.h>
+#include <linux/wait.h>
+#include <linux/list.h>
+#include <linux/wireless.h>
+#include <linux/if_arp.h>
+#include <asm/uaccess.h>
+#include <net/iw_handler.h>
+#include <linux/skbuff.h>
+
+
+//#define DEBUG_ENABLED  1
+
+
+
+//===============================================================
+// Common type definition
+//===============================================================
+
+typedef u8*            PUCHAR;
+typedef s8*            PCHAR;
+typedef u8*            PBOOLEAN;
+typedef u16*           PUSHORT;
+typedef u32*           PULONG;
+typedef s16*   PSHORT;
+
+
+//===========================================
+#define IGNORE      2
+#define	SUCCESS     1
+#define	FAILURE     0
+
+
+#ifndef true
+#define true        1
+#endif
+
+#ifndef false
+#define false       0
+#endif
+
+// PD43 20021108
+#ifndef TRUE
+#define TRUE        1
+#endif
+
+#ifndef FALSE
+#define FALSE       0
+#endif
+
+#define STATUS_MEDIA_CONNECT 1
+#define STATUS_MEDIA_DISCONNECT 0
+
+#ifndef BIT
+#define BIT(x)                  (1 << (x))
+#endif
+
+typedef struct urb * PURB;
+
+
+
+//==================================================================================================
+// Common function definition
+//==================================================================================================
+#ifndef abs
+#define abs(_T)							((_T) < 0 ? -_T : _T)
+#endif
+#define DEBUG_ENABLED
+#define ETH_LENGTH_OF_ADDRESS	6
+#ifdef DEBUG_ENABLED
+#define WBDEBUG( _M )	printk _M
+#else
+#define WBDEBUG( _M )	0
+#endif
+
+#define OS_DISCONNECTED	0
+#define OS_CONNECTED	1
+
+
+#define OS_EVENT_INDICATE( _A, _B, _F )
+#define OS_PMKID_STATUS_EVENT( _A )
+
+
+/* Uff, no, longs are not atomic on all architectures Linux
+ * supports. This should really use atomic_t */
+
+#define OS_ATOMIC			u32
+#define OS_ATOMIC_READ( _A, _V )	_V
+#define OS_ATOMIC_INC( _A, _V )		EncapAtomicInc( _A, (void*)_V )
+#define OS_ATOMIC_DEC( _A, _V )		EncapAtomicDec( _A, (void*)_V )
+#define OS_MEMORY_CLEAR( _A, _S )	memset( (PUCHAR)_A,0,_S)
+#define OS_MEMORY_COMPARE( _A, _B, _S )	(memcmp(_A,_B,_S)? 0 : 1) // Definition is reverse with Ndis 1: the same 0: different
+
+
+#define OS_SPIN_LOCK				spinlock_t
+#define OS_SPIN_LOCK_ALLOCATE( _S )		spin_lock_init( _S );
+#define OS_SPIN_LOCK_FREE( _S )
+#define OS_SPIN_LOCK_ACQUIRED( _S )		spin_lock_irq( _S )
+#define OS_SPIN_LOCK_RELEASED( _S )		spin_unlock_irq( _S );
+
+#define OS_TIMER	struct timer_list
+#define OS_TIMER_INITIAL( _T, _F, _P )			\
+{							\
+	init_timer( _T );				\
+	(_T)->function = (void *)_F##_1a;		\
+	(_T)->data = (unsigned long)_P;			\
+}
+
+// _S : Millisecond
+// 20060420 At least 1 large than jiffies
+#define OS_TIMER_SET( _T, _S )					\
+{								\
+	(_T)->expires = jiffies + ((_S*HZ+999)/1000);\
+	add_timer( _T );					\
+}
+#define OS_TIMER_CANCEL( _T, _B )		del_timer_sync( _T )
+#define OS_TIMER_GET_SYS_TIME( _T )		(*_T=jiffies)
+
+
+#endif // COMMON_DEF
+
diff --git a/drivers/staging/winbond/linux/sysdef.h b/drivers/staging/winbond/linux/sysdef.h
new file mode 100644
index 0000000..d46d63e
--- /dev/null
+++ b/drivers/staging/winbond/linux/sysdef.h
@@ -0,0 +1,73 @@
+
+
+//
+// Winbond WLAN System Configuration defines
+//
+
+//=====================================================================
+// Current directory is Linux
+// The definition WB_LINUX is a keyword for this OS
+//=====================================================================
+#ifndef SYS_DEF_H
+#define SYS_DEF_H
+#define WB_LINUX
+#define WB_LINUX_WPA_PSK
+
+
+//#define _IBSS_BEACON_SEQ_STICK_
+#define _USE_FALLBACK_RATE_
+//#define ANTDIV_DEFAULT_ON
+
+#define _WPA2_	// 20061122 It's needed for current Linux driver
+
+
+#ifndef _WPA_PSK_DEBUG
+#undef  _WPA_PSK_DEBUG
+#endif
+
+// debug print options, mark what debug you don't need
+
+#ifdef FULL_DEBUG
+#define _PE_STATE_DUMP_
+#define _PE_TX_DUMP_
+#define _PE_RX_DUMP_
+#define _PE_OID_DUMP_
+#define _PE_DTO_DUMP_
+#define _PE_REG_DUMP_
+#define _PE_USB_INI_DUMP_
+#endif
+
+
+
+#include "common.h"	// Individual file depends on OS
+
+#include "../wb35_ver.h"
+#include "../mac_structures.h"
+#include "../ds_tkip.h"
+#include "../localpara.h"
+#include "../sme_s.h"
+#include "../scan_s.h"
+#include "../mds_s.h"
+#include "../mlme_s.h"
+#include "../bssdscpt.h"
+#include "../sme_api.h"
+#include "../gl_80211.h"
+#include "../mto.h"
+#include "../wblinux_s.h"
+#include "../wbhal_s.h"
+
+
+#include "../adapter.h"
+
+#include "../mlme_mib.h"
+#include "../mds_f.h"
+#include "../bss_f.h"
+#include "../mlmetxrx_f.h"
+#include "../mto_f.h"
+#include "../wbhal_f.h"
+#include "../wblinux_f.h"
+// Kernel Timer resolution, NDIS is 10ms, 10000us
+#define MIN_TIMEOUT_VAL	(10) //ms
+
+
+#endif
diff --git a/drivers/staging/winbond/linux/wb35reg.c b/drivers/staging/winbond/linux/wb35reg.c
new file mode 100644
index 0000000..2c0b454
--- /dev/null
+++ b/drivers/staging/winbond/linux/wb35reg.c
@@ -0,0 +1,747 @@
+#include "sysdef.h"
+
+extern void phy_calibration_winbond(hw_data_t *phw_data, u32 frequency);
+
+// TRUE  : read command process successfully
+// FALSE : register not support
+// RegisterNo : start base
+// pRegisterData : data point
+// NumberOfData : number of register data
+// Flag : AUTO_INCREMENT - RegisterNo will auto increment 4
+//		  NO_INCREMENT - Function will write data into the same register
+unsigned char
+Wb35Reg_BurstWrite(phw_data_t pHwData, u16 RegisterNo, PULONG pRegisterData, u8 NumberOfData, u8 Flag)
+{
+	PWB35REG pWb35Reg = &pHwData->Wb35Reg;
+	PURB		pUrb = NULL;
+	PREG_QUEUE	pRegQueue = NULL;
+	u16		UrbSize;
+	struct      usb_ctrlrequest *dr;
+	u16		i, DataSize = NumberOfData*4;
+
+	// Module shutdown
+	if (pHwData->SurpriseRemove)
+		return FALSE;
+
+	// Trying to use burst write function if use new hardware
+	UrbSize = sizeof(REG_QUEUE) + DataSize + sizeof(struct usb_ctrlrequest);
+	OS_MEMORY_ALLOC( (void* *)&pRegQueue, UrbSize );
+	pUrb = wb_usb_alloc_urb(0);
+	if( pUrb && pRegQueue ) {
+		pRegQueue->DIRECT = 2;// burst write register
+		pRegQueue->INDEX = RegisterNo;
+		pRegQueue->pBuffer = (PULONG)((PUCHAR)pRegQueue + sizeof(REG_QUEUE));
+		memcpy( pRegQueue->pBuffer, pRegisterData, DataSize );
+		//the function for reversing register data from little endian to big endian
+		for( i=0; i<NumberOfData ; i++ )
+			pRegQueue->pBuffer[i] = cpu_to_le32( pRegQueue->pBuffer[i] );
+
+		dr = (struct usb_ctrlrequest *)((PUCHAR)pRegQueue + sizeof(REG_QUEUE) + DataSize);
+		dr->bRequestType = USB_TYPE_VENDOR | USB_DIR_OUT | USB_RECIP_DEVICE;
+		dr->bRequest = 0x04; // USB or vendor-defined request code, burst mode
+		dr->wValue = cpu_to_le16( Flag ); // 0: Register number auto-increment, 1: No auto increment
+		dr->wIndex = cpu_to_le16( RegisterNo );
+		dr->wLength = cpu_to_le16( DataSize );
+		pRegQueue->Next = NULL;
+		pRegQueue->pUsbReq = dr;
+		pRegQueue->pUrb = pUrb;
+
+		OS_SPIN_LOCK_ACQUIRED( &pWb35Reg->EP0VM_spin_lock );
+		if (pWb35Reg->pRegFirst == NULL)
+			pWb35Reg->pRegFirst = pRegQueue;
+		else
+			pWb35Reg->pRegLast->Next = pRegQueue;
+		pWb35Reg->pRegLast = pRegQueue;
+
+		OS_SPIN_LOCK_RELEASED( &pWb35Reg->EP0VM_spin_lock );
+
+		// Start EP0VM
+		Wb35Reg_EP0VM_start(pHwData);
+
+		return TRUE;
+	} else {
+		if (pUrb)
+			usb_free_urb(pUrb);
+		if (pRegQueue)
+			kfree(pRegQueue);
+		return FALSE;
+	}
+   return FALSE;
+}
+
+void
+Wb35Reg_Update(phw_data_t pHwData,  u16 RegisterNo,  u32 RegisterValue)
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+	switch (RegisterNo) {
+	case 0x3b0: pWb35Reg->U1B0 = RegisterValue; break;
+	case 0x3bc: pWb35Reg->U1BC_LEDConfigure = RegisterValue; break;
+	case 0x400: pWb35Reg->D00_DmaControl = RegisterValue; break;
+	case 0x800: pWb35Reg->M00_MacControl = RegisterValue; break;
+	case 0x804: pWb35Reg->M04_MulticastAddress1 = RegisterValue; break;
+	case 0x808: pWb35Reg->M08_MulticastAddress2 = RegisterValue; break;
+	case 0x824: pWb35Reg->M24_MacControl = RegisterValue; break;
+	case 0x828: pWb35Reg->M28_MacControl = RegisterValue; break;
+	case 0x82c: pWb35Reg->M2C_MacControl = RegisterValue; break;
+	case 0x838: pWb35Reg->M38_MacControl = RegisterValue; break;
+	case 0x840: pWb35Reg->M40_MacControl = RegisterValue; break;
+	case 0x844: pWb35Reg->M44_MacControl = RegisterValue; break;
+	case 0x848: pWb35Reg->M48_MacControl = RegisterValue; break;
+	case 0x84c: pWb35Reg->M4C_MacStatus = RegisterValue; break;
+	case 0x860: pWb35Reg->M60_MacControl = RegisterValue; break;
+	case 0x868: pWb35Reg->M68_MacControl = RegisterValue; break;
+	case 0x870: pWb35Reg->M70_MacControl = RegisterValue; break;
+	case 0x874: pWb35Reg->M74_MacControl = RegisterValue; break;
+	case 0x878: pWb35Reg->M78_ERPInformation = RegisterValue; break;
+	case 0x87C: pWb35Reg->M7C_MacControl = RegisterValue; break;
+	case 0x880: pWb35Reg->M80_MacControl = RegisterValue; break;
+	case 0x884: pWb35Reg->M84_MacControl = RegisterValue; break;
+	case 0x888: pWb35Reg->M88_MacControl = RegisterValue; break;
+	case 0x898: pWb35Reg->M98_MacControl = RegisterValue; break;
+	case 0x100c: pWb35Reg->BB0C = RegisterValue; break;
+	case 0x102c: pWb35Reg->BB2C = RegisterValue; break;
+	case 0x1030: pWb35Reg->BB30 = RegisterValue; break;
+	case 0x103c: pWb35Reg->BB3C = RegisterValue; break;
+	case 0x1048: pWb35Reg->BB48 = RegisterValue; break;
+	case 0x104c: pWb35Reg->BB4C = RegisterValue; break;
+	case 0x1050: pWb35Reg->BB50 = RegisterValue; break;
+	case 0x1054: pWb35Reg->BB54 = RegisterValue; break;
+	case 0x1058: pWb35Reg->BB58 = RegisterValue; break;
+	case 0x105c: pWb35Reg->BB5C = RegisterValue; break;
+	case 0x1060: pWb35Reg->BB60 = RegisterValue; break;
+	}
+}
+
+// TRUE  : read command process successfully
+// FALSE : register not support
+unsigned char
+Wb35Reg_WriteSync(  phw_data_t pHwData,  u16 RegisterNo,  u32 RegisterValue )
+{
+	PWB35REG pWb35Reg = &pHwData->Wb35Reg;
+	int ret = -1;
+
+	// Module shutdown
+	if (pHwData->SurpriseRemove)
+		return FALSE;
+
+	RegisterValue = cpu_to_le32(RegisterValue);
+
+	// update the register by send usb message------------------------------------
+	pWb35Reg->SyncIoPause = 1;
+
+	// 20060717.5 Wait until EP0VM stop
+	while (pWb35Reg->EP0vm_state != VM_STOP)
+		OS_SLEEP(10000);
+
+	// Sync IoCallDriver
+	pWb35Reg->EP0vm_state = VM_RUNNING;
+	ret = usb_control_msg( pHwData->WbUsb.udev,
+			       usb_sndctrlpipe( pHwData->WbUsb.udev, 0 ),
+			       0x03, USB_TYPE_VENDOR | USB_RECIP_DEVICE | USB_DIR_OUT,
+			       0x0,RegisterNo, &RegisterValue, 4, HZ*100 );
+	pWb35Reg->EP0vm_state = VM_STOP;
+	pWb35Reg->SyncIoPause = 0;
+
+	Wb35Reg_EP0VM_start(pHwData);
+
+	if (ret < 0) {
+		#ifdef _PE_REG_DUMP_
+		WBDEBUG(("EP0 Write register usb message sending error\n"));
+		#endif
+
+		pHwData->SurpriseRemove = 1; // 20060704.2
+		return FALSE;
+	}
+
+	return TRUE;
+}
+
+// TRUE  : read command process successfully
+// FALSE : register not support
+unsigned char
+Wb35Reg_Write(  phw_data_t pHwData,  u16 RegisterNo,  u32 RegisterValue )
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+	struct usb_ctrlrequest *dr;
+	PURB		pUrb = NULL;
+	PREG_QUEUE	pRegQueue = NULL;
+	u16		UrbSize;
+
+
+	// Module shutdown
+	if (pHwData->SurpriseRemove)
+		return FALSE;
+
+	// update the register by send urb request------------------------------------
+	UrbSize = sizeof(REG_QUEUE) + sizeof(struct usb_ctrlrequest);
+	OS_MEMORY_ALLOC( (void* *)&pRegQueue, UrbSize );
+	pUrb = wb_usb_alloc_urb(0);
+	if (pUrb && pRegQueue) {
+		pRegQueue->DIRECT = 1;// burst write register
+		pRegQueue->INDEX = RegisterNo;
+		pRegQueue->VALUE = cpu_to_le32(RegisterValue);
+		pRegQueue->RESERVED_VALID = FALSE;
+		dr = (struct usb_ctrlrequest *)((PUCHAR)pRegQueue + sizeof(REG_QUEUE));
+		dr->bRequestType = USB_TYPE_VENDOR|USB_DIR_OUT |USB_RECIP_DEVICE;
+		dr->bRequest = 0x03; // USB or vendor-defined request code, burst mode
+		dr->wValue = cpu_to_le16(0x0);
+		dr->wIndex = cpu_to_le16(RegisterNo);
+		dr->wLength = cpu_to_le16(4);
+
+		// Enter the sending queue
+		pRegQueue->Next = NULL;
+		pRegQueue->pUsbReq = dr;
+		pRegQueue->pUrb = pUrb;
+
+		OS_SPIN_LOCK_ACQUIRED(&pWb35Reg->EP0VM_spin_lock );
+		if (pWb35Reg->pRegFirst == NULL)
+			pWb35Reg->pRegFirst = pRegQueue;
+		else
+			pWb35Reg->pRegLast->Next = pRegQueue;
+		pWb35Reg->pRegLast = pRegQueue;
+
+		OS_SPIN_LOCK_RELEASED( &pWb35Reg->EP0VM_spin_lock );
+
+		// Start EP0VM
+		Wb35Reg_EP0VM_start(pHwData);
+
+		return TRUE;
+	} else {
+		if (pUrb)
+			usb_free_urb(pUrb);
+		kfree(pRegQueue);
+		return FALSE;
+	}
+}
+
+//This command will be executed with a user defined value. When it completes,
+//this value is useful. For example, hal_set_current_channel will use it.
+// TRUE  : read command process successfully
+// FALSE : register not support
+unsigned char
+Wb35Reg_WriteWithCallbackValue( phw_data_t pHwData, u16 RegisterNo, u32 RegisterValue,
+				PCHAR pValue, s8 Len)
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+	struct usb_ctrlrequest *dr;
+	PURB		pUrb = NULL;
+	PREG_QUEUE	pRegQueue = NULL;
+	u16		UrbSize;
+
+	// Module shutdown
+	if (pHwData->SurpriseRemove)
+		return FALSE;
+
+	// update the register by send urb request------------------------------------
+	UrbSize = sizeof(REG_QUEUE) + sizeof(struct usb_ctrlrequest);
+	OS_MEMORY_ALLOC((void* *) &pRegQueue, UrbSize );
+	pUrb = wb_usb_alloc_urb(0);
+	if (pUrb && pRegQueue) {
+		pRegQueue->DIRECT = 1;// burst write register
+		pRegQueue->INDEX = RegisterNo;
+		pRegQueue->VALUE = cpu_to_le32(RegisterValue);
+		//NOTE : Users must guarantee the size of value will not exceed the buffer size.
+		memcpy(pRegQueue->RESERVED, pValue, Len);
+		pRegQueue->RESERVED_VALID = TRUE;
+		dr = (struct usb_ctrlrequest *)((PUCHAR)pRegQueue + sizeof(REG_QUEUE));
+		dr->bRequestType = USB_TYPE_VENDOR|USB_DIR_OUT |USB_RECIP_DEVICE;
+		dr->bRequest = 0x03; // USB or vendor-defined request code, burst mode
+		dr->wValue = cpu_to_le16(0x0);
+		dr->wIndex = cpu_to_le16(RegisterNo);
+		dr->wLength = cpu_to_le16(4);
+
+		// Enter the sending queue
+		pRegQueue->Next = NULL;
+		pRegQueue->pUsbReq = dr;
+		pRegQueue->pUrb = pUrb;
+		OS_SPIN_LOCK_ACQUIRED (&pWb35Reg->EP0VM_spin_lock );
+		if( pWb35Reg->pRegFirst == NULL )
+			pWb35Reg->pRegFirst = pRegQueue;
+		else
+			pWb35Reg->pRegLast->Next = pRegQueue;
+		pWb35Reg->pRegLast = pRegQueue;
+
+		OS_SPIN_LOCK_RELEASED ( &pWb35Reg->EP0VM_spin_lock );
+
+		// Start EP0VM
+		Wb35Reg_EP0VM_start(pHwData);
+		return TRUE;
+	} else {
+		if (pUrb)
+			usb_free_urb(pUrb);
+		kfree(pRegQueue);
+		return FALSE;
+	}
+}
+
+// TRUE  : read command process successfully
+// FALSE : register not support
+// pRegisterValue : It must be a resident buffer due to asynchronous read register.
+unsigned char
+Wb35Reg_ReadSync(  phw_data_t pHwData,  u16 RegisterNo,   PULONG pRegisterValue )
+{
+	PWB35REG pWb35Reg = &pHwData->Wb35Reg;
+	PULONG	pltmp = pRegisterValue;
+	int ret = -1;
+
+	// Module shutdown
+	if (pHwData->SurpriseRemove)
+		return FALSE;
+
+	// Read the register by send usb message------------------------------------
+
+	pWb35Reg->SyncIoPause = 1;
+
+	// 20060717.5 Wait until EP0VM stop
+	while (pWb35Reg->EP0vm_state != VM_STOP)
+		OS_SLEEP(10000);
+
+	pWb35Reg->EP0vm_state = VM_RUNNING;
+	ret = usb_control_msg( pHwData->WbUsb.udev,
+			       usb_rcvctrlpipe(pHwData->WbUsb.udev, 0),
+			       0x01, USB_TYPE_VENDOR|USB_RECIP_DEVICE|USB_DIR_IN,
+			       0x0, RegisterNo, pltmp, 4, HZ*100 );
+
+	*pRegisterValue = cpu_to_le32(*pltmp);
+
+	pWb35Reg->EP0vm_state = VM_STOP;
+
+	Wb35Reg_Update( pHwData, RegisterNo, *pRegisterValue );
+	pWb35Reg->SyncIoPause = 0;
+
+	Wb35Reg_EP0VM_start( pHwData );
+
+	if (ret < 0) {
+		#ifdef _PE_REG_DUMP_
+		WBDEBUG(("EP0 Read register usb message sending error\n"));
+		#endif
+
+		pHwData->SurpriseRemove = 1; // 20060704.2
+		return FALSE;
+	}
+
+	return TRUE;
+}
+
+// TRUE  : read command process successfully
+// FALSE : register not support
+// pRegisterValue : It must be a resident buffer due to asynchronous read register.
+unsigned char
+Wb35Reg_Read(phw_data_t pHwData, u16 RegisterNo,  PULONG pRegisterValue )
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+	struct usb_ctrlrequest * dr;
+	PURB		pUrb;
+	PREG_QUEUE	pRegQueue;
+	u16		UrbSize;
+
+	// Module shutdown
+	if (pHwData->SurpriseRemove)
+		return FALSE;
+
+	// update the variable by send Urb to read register ------------------------------------
+	UrbSize = sizeof(REG_QUEUE) + sizeof(struct usb_ctrlrequest);
+	OS_MEMORY_ALLOC( (void* *)&pRegQueue, UrbSize );
+	pUrb = wb_usb_alloc_urb(0);
+	if( pUrb && pRegQueue )
+	{
+		pRegQueue->DIRECT = 0;// read register
+		pRegQueue->INDEX = RegisterNo;
+		pRegQueue->pBuffer = pRegisterValue;
+		dr = (struct usb_ctrlrequest *)((PUCHAR)pRegQueue + sizeof(REG_QUEUE));
+		dr->bRequestType = USB_TYPE_VENDOR|USB_RECIP_DEVICE|USB_DIR_IN;
+		dr->bRequest = 0x01; // USB or vendor-defined request code, burst mode
+		dr->wValue = cpu_to_le16(0x0);
+		dr->wIndex = cpu_to_le16 (RegisterNo);
+		dr->wLength = cpu_to_le16 (4);
+
+		// Enter the sending queue
+		pRegQueue->Next = NULL;
+		pRegQueue->pUsbReq = dr;
+		pRegQueue->pUrb = pUrb;
+		OS_SPIN_LOCK_ACQUIRED ( &pWb35Reg->EP0VM_spin_lock );
+		if( pWb35Reg->pRegFirst == NULL )
+			pWb35Reg->pRegFirst = pRegQueue;
+		else
+			pWb35Reg->pRegLast->Next = pRegQueue;
+		pWb35Reg->pRegLast = pRegQueue;
+
+		OS_SPIN_LOCK_RELEASED( &pWb35Reg->EP0VM_spin_lock );
+
+		// Start EP0VM
+		Wb35Reg_EP0VM_start( pHwData );
+
+		return TRUE;
+	} else {
+		if (pUrb)
+			usb_free_urb( pUrb );
+		kfree(pRegQueue);
+		return FALSE;
+	}
+}
+
+
+void
+Wb35Reg_EP0VM_start(  phw_data_t pHwData )
+{
+	PWB35REG pWb35Reg = &pHwData->Wb35Reg;
+
+	if (OS_ATOMIC_INC( pHwData->Adapter, &pWb35Reg->RegFireCount) == 1) {
+		pWb35Reg->EP0vm_state = VM_RUNNING;
+		Wb35Reg_EP0VM(pHwData);
+	} else
+		OS_ATOMIC_DEC( pHwData->Adapter, &pWb35Reg->RegFireCount );
+}
+
+void
+Wb35Reg_EP0VM(phw_data_t pHwData )
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+	PURB		pUrb;
+	struct usb_ctrlrequest *dr;
+	PULONG		pBuffer;
+	int			ret = -1;
+	PREG_QUEUE	pRegQueue;
+
+
+	if (pWb35Reg->SyncIoPause)
+		goto cleanup;
+
+	if (pHwData->SurpriseRemove)
+		goto cleanup;
+
+	// Get the register data and send to USB through Irp
+	OS_SPIN_LOCK_ACQUIRED( &pWb35Reg->EP0VM_spin_lock );
+	pRegQueue = pWb35Reg->pRegFirst;
+	OS_SPIN_LOCK_RELEASED( &pWb35Reg->EP0VM_spin_lock );
+
+	if (!pRegQueue)
+		goto cleanup;
+
+	// Get an Urb, send it
+	pUrb = (PURB)pRegQueue->pUrb;
+
+	dr = pRegQueue->pUsbReq;
+	pUrb = pRegQueue->pUrb;
+	pBuffer = pRegQueue->pBuffer;
+	if (pRegQueue->DIRECT == 1) // output
+		pBuffer = &pRegQueue->VALUE;
+
+	usb_fill_control_urb( pUrb, pHwData->WbUsb.udev,
+			      REG_DIRECTION(pHwData->WbUsb.udev,pRegQueue),
+			      (PUCHAR)dr,pBuffer,cpu_to_le16(dr->wLength),
+			      Wb35Reg_EP0VM_complete, (void*)pHwData);
+
+	pWb35Reg->EP0vm_state = VM_RUNNING;
+
+	ret = wb_usb_submit_urb( pUrb );
+
+	if (ret < 0) {
+#ifdef _PE_REG_DUMP_
+		WBDEBUG(("EP0 Irp sending error\n"));
+#endif
+		goto cleanup;
+	}
+
+	return;
+
+ cleanup:
+	pWb35Reg->EP0vm_state = VM_STOP;
+	OS_ATOMIC_DEC( pHwData->Adapter, &pWb35Reg->RegFireCount );
+}
+
+
+void
+Wb35Reg_EP0VM_complete(PURB pUrb)
+{
+	phw_data_t  pHwData = (phw_data_t)pUrb->context;
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+	PREG_QUEUE	pRegQueue;
+
+
+	// Variable setting
+	pWb35Reg->EP0vm_state = VM_COMPLETED;
+	pWb35Reg->EP0VM_status = pUrb->status;
+
+	if (pHwData->SurpriseRemove) { // Let WbWlanHalt to handle surprise remove
+		pWb35Reg->EP0vm_state = VM_STOP;
+		OS_ATOMIC_DEC( pHwData->Adapter, &pWb35Reg->RegFireCount );
+	} else {
+		// Complete to send, remove the URB from the first
+		OS_SPIN_LOCK_ACQUIRED( &pWb35Reg->EP0VM_spin_lock );
+		pRegQueue = pWb35Reg->pRegFirst;
+		if (pRegQueue == pWb35Reg->pRegLast)
+			pWb35Reg->pRegLast = NULL;
+		pWb35Reg->pRegFirst = pWb35Reg->pRegFirst->Next;
+		OS_SPIN_LOCK_RELEASED( &pWb35Reg->EP0VM_spin_lock );
+
+		if (pWb35Reg->EP0VM_status) {
+#ifdef _PE_REG_DUMP_
+			WBDEBUG(("EP0 IoCompleteRoutine return error\n"));
+			DebugUsbdStatusInformation( pWb35Reg->EP0VM_status );
+#endif
+			pWb35Reg->EP0vm_state = VM_STOP;
+			pHwData->SurpriseRemove = 1;
+		} else {
+			// Success. Update the result
+
+			// Start the next send
+			Wb35Reg_EP0VM(pHwData);
+		}
+
+   		kfree(pRegQueue);
+	}
+
+	usb_free_urb(pUrb);
+}
+
+
+void
+Wb35Reg_destroy(phw_data_t pHwData)
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+	PURB		pUrb;
+	PREG_QUEUE	pRegQueue;
+
+
+	Uxx_power_off_procedure(pHwData);
+
+	// Wait for Reg operation completed
+	do {
+		OS_SLEEP(10000); // Delay for waiting function enter 940623.1.a
+	} while (pWb35Reg->EP0vm_state != VM_STOP);
+	OS_SLEEP(10000);  // Delay for waiting function enter 940623.1.b
+
+	// Release all the data in RegQueue
+	OS_SPIN_LOCK_ACQUIRED( &pWb35Reg->EP0VM_spin_lock );
+	pRegQueue = pWb35Reg->pRegFirst;
+	while (pRegQueue) {
+		if (pRegQueue == pWb35Reg->pRegLast)
+			pWb35Reg->pRegLast = NULL;
+		pWb35Reg->pRegFirst = pWb35Reg->pRegFirst->Next;
+
+		pUrb = pRegQueue->pUrb;
+		OS_SPIN_LOCK_RELEASED( &pWb35Reg->EP0VM_spin_lock );
+		if (pUrb) {
+			usb_free_urb(pUrb);
+			kfree(pRegQueue);
+		} else {
+			#ifdef _PE_REG_DUMP_
+			WBDEBUG(("EP0 queue release error\n"));
+			#endif
+		}
+		OS_SPIN_LOCK_ACQUIRED( &pWb35Reg->EP0VM_spin_lock );
+
+		pRegQueue = pWb35Reg->pRegFirst;
+	}
+	OS_SPIN_LOCK_RELEASED( &pWb35Reg->EP0VM_spin_lock );
+
+	// Free resource
+	OS_SPIN_LOCK_FREE(  &pWb35Reg->EP0VM_spin_lock );
+}
+
+//====================================================================================
+// The function can be run in passive-level only.
+//====================================================================================
+unsigned char Wb35Reg_initial(phw_data_t pHwData)
+{
+	PWB35REG pWb35Reg=&pHwData->Wb35Reg;
+	u32 ltmp;
+	u32 SoftwareSet, VCO_trim, TxVga, Region_ScanInterval;
+
+	// Spin lock is acquired for read and write IRP command
+	OS_SPIN_LOCK_ALLOCATE( &pWb35Reg->EP0VM_spin_lock );
+
+	// Getting RF module type from EEPROM ------------------------------------
+	Wb35Reg_WriteSync( pHwData, 0x03b4, 0x080d0000 ); // Start EEPROM access + Read + address(0x0d)
+	Wb35Reg_ReadSync( pHwData, 0x03b4, &ltmp );
+
+	//Update RF module type and determine the PHY type by inf or EEPROM
+	pWb35Reg->EEPROMPhyType = (u8)( ltmp & 0xff );
+	// 0 V MAX2825, 1 V MAX2827, 2 V MAX2828, 3 V MAX2829
+	// 16V AL2230, 17 - AL7230, 18 - AL2230S
+	// 32 Reserved
+	// 33 - W89RF242(TxVGA 0~19), 34 - W89RF242(TxVGA 0~34)
+	if (pWb35Reg->EEPROMPhyType != RF_DECIDE_BY_INF) {
+		if( (pWb35Reg->EEPROMPhyType == RF_MAXIM_2825)	||
+			(pWb35Reg->EEPROMPhyType == RF_MAXIM_2827)	||
+			(pWb35Reg->EEPROMPhyType == RF_MAXIM_2828)	||
+			(pWb35Reg->EEPROMPhyType == RF_MAXIM_2829)	||
+			(pWb35Reg->EEPROMPhyType == RF_MAXIM_V1)	||
+			(pWb35Reg->EEPROMPhyType == RF_AIROHA_2230)	||
+			(pWb35Reg->EEPROMPhyType == RF_AIROHA_2230S)    ||
+			(pWb35Reg->EEPROMPhyType == RF_AIROHA_7230)	||
+			(pWb35Reg->EEPROMPhyType == RF_WB_242)		||
+			(pWb35Reg->EEPROMPhyType == RF_WB_242_1))
+			pHwData->phy_type = pWb35Reg->EEPROMPhyType;
+	}
+
+	// Power On procedure running. The relative parameter will be set according to phy_type
+	Uxx_power_on_procedure( pHwData );
+
+	// Reading MAC address
+	Uxx_ReadEthernetAddress( pHwData );
+
+	// Read VCO trim for RF parameter
+	Wb35Reg_WriteSync( pHwData, 0x03b4, 0x08200000 );
+	Wb35Reg_ReadSync( pHwData, 0x03b4, &VCO_trim );
+
+	// Read Antenna On/Off of software flag
+	Wb35Reg_WriteSync( pHwData, 0x03b4, 0x08210000 );
+	Wb35Reg_ReadSync( pHwData, 0x03b4, &SoftwareSet );
+
+	// Read TXVGA
+	Wb35Reg_WriteSync( pHwData, 0x03b4, 0x08100000 );
+	Wb35Reg_ReadSync( pHwData, 0x03b4, &TxVga );
+
+	// Get Scan interval setting from EEPROM offset 0x1c
+	Wb35Reg_WriteSync( pHwData, 0x03b4, 0x081d0000 );
+	Wb35Reg_ReadSync( pHwData, 0x03b4, &Region_ScanInterval );
+
+	// Update Ethernet address
+	memcpy( pHwData->CurrentMacAddress, pHwData->PermanentMacAddress, ETH_LENGTH_OF_ADDRESS );
+
+	// Update software variable
+	pHwData->SoftwareSet = (u16)(SoftwareSet & 0xffff);
+	TxVga &= 0x000000ff;
+	pHwData->PowerIndexFromEEPROM = (u8)TxVga;
+	pHwData->VCO_trim = (u8)VCO_trim & 0xff;
+	if (pHwData->VCO_trim == 0xff)
+		pHwData->VCO_trim = 0x28;
+
+	pWb35Reg->EEPROMRegion = (u8)(Region_ScanInterval>>8); // 20060720
+	if( pWb35Reg->EEPROMRegion<1 || pWb35Reg->EEPROMRegion>6 )
+		pWb35Reg->EEPROMRegion = REGION_AUTO;
+
+	//For Get Tx VGA from EEPROM 20060315.5 move here
+	GetTxVgaFromEEPROM( pHwData );
+
+	// Set Scan Interval
+	pHwData->Scan_Interval = (u8)(Region_ScanInterval & 0xff) * 10;
+	if ((pHwData->Scan_Interval == 2550) || (pHwData->Scan_Interval < 10)) // Is default setting 0xff * 10
+		pHwData->Scan_Interval = SCAN_MAX_CHNL_TIME;
+
+	// Initial register
+	RFSynthesizer_initial(pHwData);
+
+	BBProcessor_initial(pHwData); // Async write, must wait until complete
+
+	Wb35Reg_phy_calibration(pHwData);
+
+	Mxx_initial(pHwData);
+	Dxx_initial(pHwData);
+
+	if (pHwData->SurpriseRemove)
+		return FALSE;
+	else
+		return TRUE; // Initial fail
+}
+
+//===================================================================================
+//  CardComputeCrc --
+//
+//  Description:
+//    Runs the AUTODIN II CRC algorithm on buffer Buffer of length, Length.
+//
+//  Arguments:
+//    Buffer - the input buffer
+//    Length - the length of Buffer
+//
+//  Return Value:
+//    The 32-bit CRC value.
+//
+//  Note:
+//    This is adapted from the comments in the assembly language
+//    version in _GENREQ.ASM of the DWB NE1000/2000 driver.
+//==================================================================================
+u32
+CardComputeCrc(PUCHAR Buffer, u32 Length)
+{
+    u32 Crc, Carry;
+    u32  i, j;
+    u8 CurByte;
+
+    Crc = 0xffffffff;
+
+    for (i = 0; i < Length; i++) {
+
+        CurByte = Buffer[i];
+
+        for (j = 0; j < 8; j++) {
+
+            Carry     = ((Crc & 0x80000000) ? 1 : 0) ^ (CurByte & 0x01);
+            Crc     <<= 1;
+            CurByte >>= 1;
+
+            if (Carry) {
+                Crc =(Crc ^ 0x04c11db6) | Carry;
+            }
+        }
+    }
+
+    return Crc;
+}
+
+
+//==================================================================
+// BitReverse --
+//   Reverse the bits in the input argument, dwData, which is
+//   regarded as a string of bits with the length, DataLength.
+//
+// Arguments:
+//   dwData     :
+//   DataLength :
+//
+// Return:
+//   The converted value.
+//==================================================================
+u32 BitReverse( u32 dwData, u32 DataLength)
+{
+	u32   HalfLength, i, j;
+	u32   BitA, BitB;
+
+	if ( DataLength <= 0)       return 0;   // No conversion is done.
+	dwData = dwData & (0xffffffff >> (32 - DataLength));
+
+	HalfLength = DataLength / 2;
+	for ( i = 0, j = DataLength-1 ; i < HalfLength; i++, j--)
+	{
+		BitA = GetBit( dwData, i);
+		BitB = GetBit( dwData, j);
+		if (BitA && !BitB) {
+			dwData = ClearBit( dwData, i);
+			dwData = SetBit( dwData, j);
+		} else if (!BitA && BitB) {
+			dwData = SetBit( dwData, i);
+			dwData = ClearBit( dwData, j);
+		} else
+		{
+			// Do nothing since these two bits are of the save values.
+		}
+	}
+
+	return dwData;
+}
+
+void Wb35Reg_phy_calibration(  phw_data_t pHwData )
+{
+	u32 BB3c, BB54;
+
+	if ((pHwData->phy_type == RF_WB_242) ||
+		(pHwData->phy_type == RF_WB_242_1)) {
+		phy_calibration_winbond ( pHwData, 2412 ); // Sync operation
+		Wb35Reg_ReadSync( pHwData, 0x103c, &BB3c );
+		Wb35Reg_ReadSync( pHwData, 0x1054, &BB54 );
+
+		pHwData->BB3c_cal = BB3c;
+		pHwData->BB54_cal = BB54;
+
+		RFSynthesizer_initial(pHwData);
+		BBProcessor_initial(pHwData); // Async operation
+
+		Wb35Reg_WriteSync( pHwData, 0x103c, BB3c );
+		Wb35Reg_WriteSync( pHwData, 0x1054, BB54 );
+	}
+}
+
+
diff --git a/drivers/staging/winbond/linux/wb35reg_f.h b/drivers/staging/winbond/linux/wb35reg_f.h
new file mode 100644
index 0000000..38e2906
--- /dev/null
+++ b/drivers/staging/winbond/linux/wb35reg_f.h
@@ -0,0 +1,56 @@
+//====================================
+// Interface function declare
+//====================================
+unsigned char Wb35Reg_initial(  phw_data_t pHwData );
+void Uxx_power_on_procedure(  phw_data_t pHwData );
+void Uxx_power_off_procedure(  phw_data_t pHwData );
+void Uxx_ReadEthernetAddress(  phw_data_t pHwData );
+void Dxx_initial(  phw_data_t pHwData );
+void Mxx_initial(  phw_data_t pHwData );
+void RFSynthesizer_initial(  phw_data_t pHwData );
+//void RFSynthesizer_SwitchingChannel(  phw_data_t pHwData,  s8 Channel );
+void RFSynthesizer_SwitchingChannel(  phw_data_t pHwData,  ChanInfo Channel );
+void BBProcessor_initial(  phw_data_t pHwData );
+void BBProcessor_RateChanging(  phw_data_t pHwData,  u8 rate ); // 20060613.1
+//void RF_RateChanging(  phw_data_t pHwData,  u8 rate ); // 20060626.5.c Add
+u8 RFSynthesizer_SetPowerIndex(  phw_data_t pHwData,  u8 PowerIndex );
+u8 RFSynthesizer_SetMaxim2828_24Power(  phw_data_t,  u8 index );
+u8 RFSynthesizer_SetMaxim2828_50Power(  phw_data_t,  u8 index );
+u8 RFSynthesizer_SetMaxim2827_24Power(  phw_data_t,  u8 index );
+u8 RFSynthesizer_SetMaxim2827_50Power(  phw_data_t,  u8 index );
+u8 RFSynthesizer_SetMaxim2825Power(  phw_data_t,  u8 index );
+u8 RFSynthesizer_SetAiroha2230Power(  phw_data_t,  u8 index );
+u8 RFSynthesizer_SetAiroha7230Power(  phw_data_t,  u8 index );
+u8 RFSynthesizer_SetWinbond242Power(  phw_data_t,  u8 index );
+void GetTxVgaFromEEPROM(  phw_data_t pHwData );
+void EEPROMTxVgaAdjust(  phw_data_t pHwData ); // 20060619.5 Add
+
+#define RFWriteControlData( _A, _V ) Wb35Reg_Write( _A, 0x0864, _V )
+
+void Wb35Reg_destroy(  phw_data_t pHwData );
+
+unsigned char Wb35Reg_Read(  phw_data_t pHwData,  u16 RegisterNo,   PULONG pRegisterValue );
+unsigned char Wb35Reg_ReadSync(  phw_data_t pHwData,  u16 RegisterNo,   PULONG pRegisterValue );
+unsigned char Wb35Reg_Write(  phw_data_t pHwData,  u16 RegisterNo,  u32 RegisterValue );
+unsigned char Wb35Reg_WriteSync(  phw_data_t pHwData,  u16 RegisterNo,  u32 RegisterValue );
+unsigned char Wb35Reg_WriteWithCallbackValue(  phw_data_t pHwData,
+								 u16 RegisterNo,
+								 u32 RegisterValue,
+								 PCHAR pValue,
+								 s8	Len);
+unsigned char Wb35Reg_BurstWrite(  phw_data_t pHwData,  u16 RegisterNo,  PULONG pRegisterData,  u8 NumberOfData,  u8 Flag );
+
+void Wb35Reg_EP0VM(  phw_data_t pHwData );
+void Wb35Reg_EP0VM_start(  phw_data_t pHwData );
+void Wb35Reg_EP0VM_complete(  PURB pUrb );
+
+u32 BitReverse( u32 dwData, u32 DataLength);
+
+void CardGetMulticastBit(   u8 Address[MAC_ADDR_LENGTH],  u8 *Byte,  u8 *Value );
+u32 CardComputeCrc(  PUCHAR Buffer,  u32 Length );
+
+void Wb35Reg_phy_calibration(  phw_data_t pHwData );
+void Wb35Reg_Update(  phw_data_t pHwData,  u16 RegisterNo,  u32 RegisterValue );
+unsigned char adjust_TXVGA_for_iq_mag(  phw_data_t pHwData );
+
+
diff --git a/drivers/staging/winbond/linux/wb35reg_s.h b/drivers/staging/winbond/linux/wb35reg_s.h
new file mode 100644
index 0000000..a7595b1
--- /dev/null
+++ b/drivers/staging/winbond/linux/wb35reg_s.h
@@ -0,0 +1,170 @@
+//=======================================================================================
+/*
+				HAL setting function
+
+		========================================
+		|Uxx| 	|Dxx|	|Mxx|	|BB|	|RF|
+		========================================
+			|					|
+		Wb35Reg_Read		Wb35Reg_Write
+
+		----------------------------------------
+				WbUsb_CallUSBDASync					supplied By WbUsb module
+*/
+//=======================================================================================
+
+#define     GetBit( dwData, i)      ( dwData & (0x00000001 << i))
+#define     SetBit( dwData, i)      ( dwData | (0x00000001 << i))
+#define     ClearBit( dwData, i)    ( dwData & ~(0x00000001 << i))
+
+#define		IGNORE_INCREMENT	0
+#define		AUTO_INCREMENT		0
+#define		NO_INCREMENT		1
+#define REG_DIRECTION(_x,_y)   ((_y)->DIRECT ==0 ? usb_rcvctrlpipe(_x,0) : usb_sndctrlpipe(_x,0))
+#define REG_BUF_SIZE(_x)       ((_x)->bRequest== 0x04 ? cpu_to_le16((_x)->wLength) : 4)
+
+// 20060613.2 Add the follow definition
+#define BB48_DEFAULT_AL2230_11B		0x0033447c
+#define BB4C_DEFAULT_AL2230_11B		0x0A00FEFF
+#define BB48_DEFAULT_AL2230_11G		0x00332C1B
+#define BB4C_DEFAULT_AL2230_11G		0x0A00FEFF
+
+
+#define BB48_DEFAULT_WB242_11B		0x00292315	//backoff  2dB
+#define BB4C_DEFAULT_WB242_11B		0x0800FEFF	//backoff  2dB
+//#define BB48_DEFAULT_WB242_11B		0x00201B11	//backoff  4dB
+//#define BB4C_DEFAULT_WB242_11B		0x0600FF00	//backoff  4dB
+#define BB48_DEFAULT_WB242_11G		0x00453B24
+#define BB4C_DEFAULT_WB242_11G		0x0E00FEFF
+
+//====================================
+// Default setting for Mxx
+//====================================
+#define DEFAULT_CWMIN					31		//(M2C) CWmin. Its value is in the range 0-31.
+#define DEFAULT_CWMAX					1023	//(M2C) CWmax. Its value is in the range 0-1023.
+#define DEFAULT_AID						1		//(M34) AID. Its value is in the range 1-2007.
+
+#ifdef _USE_FALLBACK_RATE_
+#define DEFAULT_RATE_RETRY_LIMIT		2		//(M38) as named
+#else
+#define DEFAULT_RATE_RETRY_LIMIT		7		//(M38) as named
+#endif
+
+#define DEFAULT_LONG_RETRY_LIMIT		7		//(M38) LongRetryLimit. Its value is in the range 0-15.
+#define DEFAULT_SHORT_RETRY_LIMIT		7		//(M38) ShortRetryLimit. Its value is in the range 0-15.
+#define DEFAULT_PIFST					25		//(M3C) PIFS Time. Its value is in the range 0-65535.
+#define DEFAULT_EIFST					354		//(M3C) EIFS Time. Its value is in the range 0-1048575.
+#define DEFAULT_DIFST					45		//(M3C) DIFS Time. Its value is in the range 0-65535.
+#define DEFAULT_SIFST					5		//(M3C) SIFS Time. Its value is in the range 0-65535.
+#define DEFAULT_OSIFST					10		//(M3C) Original SIFS Time. Its value is in the range 0-15.
+#define DEFAULT_ATIMWD					0		//(M40) ATIM Window. Its value is in the range 0-65535.
+#define DEFAULT_SLOT_TIME				20		//(M40) ($) SlotTime. Its value is in the range 0-255.
+#define DEFAULT_MAX_TX_MSDU_LIFE_TIME	512	//(M44) MaxTxMSDULifeTime. Its value is in the range 0-4294967295.
+#define DEFAULT_BEACON_INTERVAL			500		//(M48) Beacon Interval. Its value is in the range 0-65535.
+#define DEFAULT_PROBE_DELAY_TIME		200		//(M48) Probe Delay Time. Its value is in the range 0-65535.
+#define DEFAULT_PROTOCOL_VERSION		0		//(M4C)
+#define DEFAULT_MAC_POWER_STATE			2		//(M4C) 2: MAC at power active
+#define DEFAULT_DTIM_ALERT_TIME			0
+
+
+typedef struct _REG_QUEUE
+{
+    struct  urb *pUrb;
+	void*	pUsbReq;
+	void*	Next;
+	union
+	{
+		u32	VALUE;
+		PULONG	pBuffer;
+	};
+	u8	RESERVED[4];// space reserved for communication
+
+    u16	INDEX; // For storing the register index
+    u8	RESERVED_VALID;	//Indicate whether the RESERVED space is valid at this command.
+	u8	DIRECT; // 0:In   1:Out
+
+} REG_QUEUE, *PREG_QUEUE;
+
+//====================================
+// Internal variable for module
+//====================================
+#define MAX_SQ3_FILTER_SIZE		5
+typedef struct _WB35REG
+{
+	//============================
+	// Register Bank backup
+	//============================
+	u32	U1B0;			//bit16 record the h/w radio on/off status
+	u32	U1BC_LEDConfigure;
+	u32	D00_DmaControl;
+	u32	M00_MacControl;
+	union {
+		struct {
+			u32	M04_MulticastAddress1;
+			u32	M08_MulticastAddress2;
+		};
+		u8		Multicast[8];	// contents of card multicast registers
+	};
+
+	u32	M24_MacControl;
+	u32	M28_MacControl;
+	u32	M2C_MacControl;
+	u32	M38_MacControl;
+	u32	M3C_MacControl; // 20060214 backup only
+	u32	M40_MacControl;
+	u32	M44_MacControl; // 20060214 backup only
+	u32	M48_MacControl; // 20060214 backup only
+	u32	M4C_MacStatus;
+	u32	M60_MacControl; // 20060214 backup only
+	u32	M68_MacControl; // 20060214 backup only
+	u32	M70_MacControl; // 20060214 backup only
+	u32	M74_MacControl; // 20060214 backup only
+	u32	M78_ERPInformation;//930206.2.b
+	u32	M7C_MacControl; // 20060214 backup only
+	u32	M80_MacControl; // 20060214 backup only
+	u32	M84_MacControl; // 20060214 backup only
+	u32	M88_MacControl; // 20060214 backup only
+	u32	M98_MacControl; // 20060214 backup only
+
+	//[20040722 WK]
+	//Baseband register
+	u32	BB0C;	// Used for LNA calculation
+	u32	BB2C;	//
+	u32	BB30;	//11b acquisition control register
+	u32	BB3C;
+	u32	BB48;	// 20051221.1.a 20060613.1 Fix OBW issue of 11b/11g rate
+	u32	BB4C;	// 20060613.1  Fix OBW issue of 11b/11g rate
+	u32	BB50;	//mode control register
+	u32	BB54;
+	u32 	BB58;	//IQ_ALPHA
+	u32	BB5C;	// For test
+	u32	BB60;	// for WTO read value
+
+	//-------------------
+	// VM
+	//-------------------
+	OS_SPIN_LOCK	EP0VM_spin_lock; // 4B
+	u32	        EP0VM_status;//$$
+	PREG_QUEUE	    pRegFirst;
+	PREG_QUEUE	    pRegLast;
+	OS_ATOMIC       RegFireCount;
+
+	// Hardware status
+	u8	EP0vm_state;
+	u8	mac_power_save;
+	u8	EEPROMPhyType; // 0 ~ 15 for Maxim (0 ĄV MAX2825, 1 ĄV MAX2827, 2 ĄV MAX2828, 3 ĄV MAX2829),
+						   // 16 ~ 31 for Airoha (16 ĄV AL2230, 11 - AL7230)
+						   // 32 ~ Reserved
+						   // 33 ~ 47 For WB242 ( 33 - WB242, 34 - WB242 with new Txvga 0.5 db step)
+						   // 48 ~ 255 ARE RESERVED.
+	u8	EEPROMRegion;	//Region setting in EEPROM
+
+	u32	SyncIoPause; // If user use the Sync Io to access Hw, then pause the async access
+
+	u8	LNAValue[4]; //Table for speed up running
+	u32	SQ3_filter[MAX_SQ3_FILTER_SIZE];
+	u32	SQ3_index;
+
+} WB35REG, *PWB35REG;
+
+
diff --git a/drivers/staging/winbond/linux/wb35rx.c b/drivers/staging/winbond/linux/wb35rx.c
new file mode 100644
index 0000000..26157eb
--- /dev/null
+++ b/drivers/staging/winbond/linux/wb35rx.c
@@ -0,0 +1,337 @@
+//============================================================================
+//  Copyright (c) 1996-2002 Winbond Electronic Corporation
+//
+//  Module Name:
+//    Wb35Rx.c
+//
+//  Abstract:
+//    Processing the Rx message from down layer
+//
+//============================================================================
+#include "sysdef.h"
+
+
+void Wb35Rx_start(phw_data_t pHwData)
+{
+	PWB35RX pWb35Rx = &pHwData->Wb35Rx;
+
+	// Allow only one thread to run into the Wb35Rx() function
+	if (OS_ATOMIC_INC(pHwData->Adapter, &pWb35Rx->RxFireCounter) == 1) {
+		pWb35Rx->EP3vm_state = VM_RUNNING;
+		Wb35Rx(pHwData);
+	} else
+		OS_ATOMIC_DEC(pHwData->Adapter, &pWb35Rx->RxFireCounter);
+}
+
+// This function cannot reentrain
+void Wb35Rx(  phw_data_t pHwData )
+{
+	PWB35RX	pWb35Rx = &pHwData->Wb35Rx;
+	PUCHAR	pRxBufferAddress;
+	PURB	pUrb = (PURB)pWb35Rx->RxUrb;
+	int	retv;
+	u32	RxBufferId;
+
+	//
+	// Issuing URB
+	//
+	do {
+		if (pHwData->SurpriseRemove || pHwData->HwStop)
+			break;
+
+		if (pWb35Rx->rx_halt)
+			break;
+
+		// Get RxBuffer's ID
+		RxBufferId = pWb35Rx->RxBufferId;
+		if (!pWb35Rx->RxOwner[RxBufferId]) {
+			// It's impossible to run here.
+			#ifdef _PE_RX_DUMP_
+			WBDEBUG(("Rx driver fifo unavailable\n"));
+			#endif
+			break;
+		}
+
+		// Update buffer point, then start to bulkin the data from USB
+		pWb35Rx->RxBufferId++;
+		pWb35Rx->RxBufferId %= MAX_USB_RX_BUFFER_NUMBER;
+
+		pWb35Rx->CurrentRxBufferId = RxBufferId;
+
+		if (1 != OS_MEMORY_ALLOC((void* *)&pWb35Rx->pDRx, MAX_USB_RX_BUFFER)) {
+			printk("w35und: Rx memory alloc failed\n");
+			break;
+		}
+		pRxBufferAddress = pWb35Rx->pDRx;
+
+		usb_fill_bulk_urb(pUrb, pHwData->WbUsb.udev,
+				  usb_rcvbulkpipe(pHwData->WbUsb.udev, 3),
+				  pRxBufferAddress, MAX_USB_RX_BUFFER,
+				  Wb35Rx_Complete, pHwData);
+
+		pWb35Rx->EP3vm_state = VM_RUNNING;
+
+		retv = wb_usb_submit_urb(pUrb);
+
+		if (retv != 0) {
+			printk("Rx URB sending error\n");
+			break;
+		}
+		return;
+	} while(FALSE);
+
+	// VM stop
+	pWb35Rx->EP3vm_state = VM_STOP;
+	OS_ATOMIC_DEC( pHwData->Adapter, &pWb35Rx->RxFireCounter );
+}
+
+void Wb35Rx_Complete(PURB pUrb)
+{
+	phw_data_t	pHwData = pUrb->context;
+	PWB35RX		pWb35Rx = &pHwData->Wb35Rx;
+	PUCHAR		pRxBufferAddress;
+	u32		SizeCheck;
+	u16		BulkLength;
+	u32		RxBufferId;
+	R00_DESCRIPTOR 	R00;
+
+	// Variable setting
+	pWb35Rx->EP3vm_state = VM_COMPLETED;
+	pWb35Rx->EP3VM_status = pUrb->status;//Store the last result of Irp
+
+	do {
+		RxBufferId = pWb35Rx->CurrentRxBufferId;
+
+		pRxBufferAddress = pWb35Rx->pDRx;
+		BulkLength = (u16)pUrb->actual_length;
+
+		// The IRP is completed
+		pWb35Rx->EP3vm_state = VM_COMPLETED;
+
+		if (pHwData->SurpriseRemove || pHwData->HwStop) // Must be here, or RxBufferId is invalid
+			break;
+
+		if (pWb35Rx->rx_halt)
+			break;
+
+		// Start to process the data only in successful condition
+		pWb35Rx->RxOwner[ RxBufferId ] = 0; // Set the owner to driver
+		R00.value = le32_to_cpu(*(PULONG)pRxBufferAddress);
+
+		// The URB is completed, check the result
+		if (pWb35Rx->EP3VM_status != 0) {
+			#ifdef _PE_USB_STATE_DUMP_
+			WBDEBUG(("EP3 IoCompleteRoutine return error\n"));
+			DebugUsbdStatusInformation( pWb35Rx->EP3VM_status );
+			#endif
+			pWb35Rx->EP3vm_state = VM_STOP;
+			break;
+		}
+
+		// 20060220 For recovering. check if operating in single USB mode
+		if (!HAL_USB_MODE_BURST(pHwData)) {
+			SizeCheck = R00.R00_receive_byte_count;  //20060926 anson's endian
+			if ((SizeCheck & 0x03) > 0)
+				SizeCheck -= 4;
+			SizeCheck = (SizeCheck + 3) & ~0x03;
+			SizeCheck += 12; // 8 + 4 badbeef
+			if ((BulkLength > 1600) ||
+				(SizeCheck > 1600) ||
+				(BulkLength != SizeCheck) ||
+				(BulkLength == 0)) { // Add for fail Urb
+				pWb35Rx->EP3vm_state = VM_STOP;
+				pWb35Rx->Ep3ErrorCount2++;
+			}
+		}
+
+		// Indicating the receiving data
+		pWb35Rx->ByteReceived += BulkLength;
+		pWb35Rx->RxBufferSize[ RxBufferId ] = BulkLength;
+
+		if (!pWb35Rx->RxOwner[ RxBufferId ])
+			Wb35Rx_indicate(pHwData);
+
+		kfree(pWb35Rx->pDRx);
+		// Do the next receive
+		Wb35Rx(pHwData);
+		return;
+
+	} while(FALSE);
+
+	pWb35Rx->RxOwner[ RxBufferId ] = 1; // Set the owner to hardware
+	OS_ATOMIC_DEC( pHwData->Adapter, &pWb35Rx->RxFireCounter );
+	pWb35Rx->EP3vm_state = VM_STOP;
+}
+
+//=====================================================================================
+unsigned char Wb35Rx_initial(phw_data_t pHwData)
+{
+	PWB35RX pWb35Rx = &pHwData->Wb35Rx;
+
+	// Initial the Buffer Queue
+	Wb35Rx_reset_descriptor( pHwData );
+
+	pWb35Rx->RxUrb = wb_usb_alloc_urb(0);
+	return (!!pWb35Rx->RxUrb);
+}
+
+void Wb35Rx_stop(phw_data_t pHwData)
+{
+	PWB35RX pWb35Rx = &pHwData->Wb35Rx;
+
+	// Canceling the Irp if already sends it out.
+	if (pWb35Rx->EP3vm_state == VM_RUNNING) {
+		usb_unlink_urb( pWb35Rx->RxUrb ); // Only use unlink, let Wb35Rx_destroy to free them
+		#ifdef _PE_RX_DUMP_
+		WBDEBUG(("EP3 Rx stop\n"));
+		#endif
+	}
+}
+
+// Needs process context
+void Wb35Rx_destroy(phw_data_t pHwData)
+{
+	PWB35RX pWb35Rx = &pHwData->Wb35Rx;
+
+	do {
+		OS_SLEEP(10000); // Delay for waiting function enter 940623.1.a
+	} while (pWb35Rx->EP3vm_state != VM_STOP);
+	OS_SLEEP(10000); // Delay for waiting function exit 940623.1.b
+
+	if (pWb35Rx->RxUrb)
+		usb_free_urb( pWb35Rx->RxUrb );
+	#ifdef _PE_RX_DUMP_
+	WBDEBUG(("Wb35Rx_destroy OK\n"));
+	#endif
+}
+
+void Wb35Rx_reset_descriptor(  phw_data_t pHwData )
+{
+	PWB35RX pWb35Rx = &pHwData->Wb35Rx;
+	u32	i;
+
+	pWb35Rx->ByteReceived = 0;
+	pWb35Rx->RxProcessIndex = 0;
+	pWb35Rx->RxBufferId = 0;
+	pWb35Rx->EP3vm_state = VM_STOP;
+	pWb35Rx->rx_halt = 0;
+
+	// Initial the Queue. The last buffer is reserved for used if the Rx resource is unavailable.
+	for( i=0; i<MAX_USB_RX_BUFFER_NUMBER; i++ )
+		pWb35Rx->RxOwner[i] = 1;
+}
+
+void Wb35Rx_adjust(PDESCRIPTOR pRxDes)
+{
+	PULONG	pRxBufferAddress;
+	u32	DecryptionMethod;
+	u32	i;
+	u16	BufferSize;
+
+	DecryptionMethod = pRxDes->R01.R01_decryption_method;
+	pRxBufferAddress = pRxDes->buffer_address[0];
+	BufferSize = pRxDes->buffer_size[0];
+
+	// Adjust the last part of data. Only data left
+	BufferSize -= 4; // For CRC-32
+	if (DecryptionMethod)
+		BufferSize -= 4;
+	if (DecryptionMethod == 3) // For CCMP
+		BufferSize -= 4;
+
+	// Adjust the IV field which after 802.11 header and ICV field.
+	if (DecryptionMethod == 1) // For WEP
+	{
+		for( i=6; i>0; i-- )
+			pRxBufferAddress[i] = pRxBufferAddress[i-1];
+		pRxDes->buffer_address[0] = pRxBufferAddress + 1;
+		BufferSize -= 4; // 4 byte for IV
+	}
+	else if( DecryptionMethod ) // For TKIP and CCMP
+	{
+		for (i=7; i>1; i--)
+			pRxBufferAddress[i] = pRxBufferAddress[i-2];
+		pRxDes->buffer_address[0] = pRxBufferAddress + 2;//Update the descriptor, shift 8 byte
+		BufferSize -= 8; // 8 byte for IV + ICV
+	}
+	pRxDes->buffer_size[0] = BufferSize;
+}
+
+extern void packet_came(char *pRxBufferAddress, int PacketSize);
+
+
+u16 Wb35Rx_indicate(phw_data_t pHwData)
+{
+	DESCRIPTOR	RxDes;
+	PWB35RX	pWb35Rx = &pHwData->Wb35Rx;
+	PUCHAR		pRxBufferAddress;
+	u16		PacketSize;
+	u16		stmp, BufferSize, stmp2 = 0;
+	u32		RxBufferId;
+
+	// Only one thread be allowed to run into the following
+	do {
+		RxBufferId = pWb35Rx->RxProcessIndex;
+		if (pWb35Rx->RxOwner[ RxBufferId ]) //Owner by VM
+			break;
+
+		pWb35Rx->RxProcessIndex++;
+		pWb35Rx->RxProcessIndex %= MAX_USB_RX_BUFFER_NUMBER;
+
+		pRxBufferAddress = pWb35Rx->pDRx;
+		BufferSize = pWb35Rx->RxBufferSize[ RxBufferId ];
+
+		// Parse the bulkin buffer
+		while (BufferSize >= 4) {
+			if ((cpu_to_le32(*(PULONG)pRxBufferAddress) & 0x0fffffff) == RX_END_TAG) //Is ending? 921002.9.a
+				break;
+
+			// Get the R00 R01 first
+			RxDes.R00.value = le32_to_cpu(*(PULONG)pRxBufferAddress);
+			PacketSize = (u16)RxDes.R00.R00_receive_byte_count;
+			RxDes.R01.value = le32_to_cpu(*((PULONG)(pRxBufferAddress+4)));
+			// For new DMA 4k
+			if ((PacketSize & 0x03) > 0)
+				PacketSize -= 4;
+
+			// Basic check for Rx length. Is length valid?
+			if (PacketSize > MAX_PACKET_SIZE) {
+				#ifdef _PE_RX_DUMP_
+				WBDEBUG(("Serious ERROR : Rx data size too long, size =%d\n", PacketSize));
+				#endif
+
+				pWb35Rx->EP3vm_state = VM_STOP;
+				pWb35Rx->Ep3ErrorCount2++;
+				break;
+			}
+
+			// Start to process Rx buffer
+//			RxDes.Descriptor_ID = RxBufferId; // Due to synchronous indicate, the field doesn't necessary to use.
+			BufferSize -= 8; //subtract 8 byte for 35's USB header length
+			pRxBufferAddress += 8;
+
+			RxDes.buffer_address[0] = pRxBufferAddress;
+			RxDes.buffer_size[0] = PacketSize;
+			RxDes.buffer_number = 1;
+			RxDes.buffer_start_index = 0;
+			RxDes.buffer_total_size = RxDes.buffer_size[0];
+			Wb35Rx_adjust(&RxDes);
+
+			packet_came(pRxBufferAddress, PacketSize);
+
+			// Move RxBuffer point to the next
+			stmp = PacketSize + 3;
+			stmp &= ~0x03; // 4n alignment
+			pRxBufferAddress += stmp;
+			BufferSize -= stmp;
+			stmp2 += stmp;
+		}
+
+		// Reclaim resource
+		pWb35Rx->RxOwner[ RxBufferId ] = 1;
+	} while(TRUE);
+
+	return stmp2;
+}
+
+
diff --git a/drivers/staging/winbond/linux/wb35rx_f.h b/drivers/staging/winbond/linux/wb35rx_f.h
new file mode 100644
index 0000000..daa3e73
--- /dev/null
+++ b/drivers/staging/winbond/linux/wb35rx_f.h
@@ -0,0 +1,17 @@
+//====================================
+// Interface function declare
+//====================================
+void		Wb35Rx_reset_descriptor(  phw_data_t pHwData );
+unsigned char		Wb35Rx_initial(  phw_data_t pHwData );
+void		Wb35Rx_destroy(  phw_data_t pHwData );
+void		Wb35Rx_stop(  phw_data_t pHwData );
+u16		Wb35Rx_indicate(  phw_data_t pHwData );
+void		Wb35Rx_adjust(  PDESCRIPTOR pRxDes );
+void		Wb35Rx_start(  phw_data_t pHwData );
+
+void		Wb35Rx(  phw_data_t pHwData );
+void		Wb35Rx_Complete(  PURB pUrb );
+
+
+
+
diff --git a/drivers/staging/winbond/linux/wb35rx_s.h b/drivers/staging/winbond/linux/wb35rx_s.h
new file mode 100644
index 0000000..53b831f
--- /dev/null
+++ b/drivers/staging/winbond/linux/wb35rx_s.h
@@ -0,0 +1,48 @@
+//============================================================================
+// wb35rx.h --
+//============================================================================
+
+// Definition for this module used
+#define MAX_USB_RX_BUFFER	4096	// This parameter must be 4096 931130.4.f
+
+#define MAX_USB_RX_BUFFER_NUMBER	ETHERNET_RX_DESCRIPTORS		// Maximum 254, 255 is RESERVED ID
+#define RX_INTERFACE				0	// Interface 1
+#define RX_PIPE						2	// Pipe 3
+#define MAX_PACKET_SIZE				1600 //1568	// 8 + 1532 + 4 + 24(IV EIV MIC ICV CRC) for check DMA data 931130.4.g
+#define RX_END_TAG					0x0badbeef
+
+
+//====================================
+// Internal variable for module
+//====================================
+typedef struct _WB35RX
+{
+	u32			ByteReceived;// For calculating throughput of BulkIn
+	OS_ATOMIC		RxFireCounter;// Does Wb35Rx module fire?
+
+	u8	RxBuffer[ MAX_USB_RX_BUFFER_NUMBER ][ ((MAX_USB_RX_BUFFER+3) & ~0x03 ) ];
+	u16	RxBufferSize[ ((MAX_USB_RX_BUFFER_NUMBER+1) & ~0x01) ];
+	u8	RxOwner[ ((MAX_USB_RX_BUFFER_NUMBER+3) & ~0x03 ) ];//Ownership of buffer  0: SW 1:HW
+
+	u32	RxProcessIndex;//The next index to process
+	u32	RxBufferId;
+	u32	EP3vm_state;
+
+	u32	rx_halt; // For VM stopping
+
+	u16	MoreDataSize;
+	u16	PacketSize;
+
+	u32	CurrentRxBufferId; // For complete routine usage
+	u32	Rx3UrbCancel;
+
+	u32	LastR1; // For RSSI reporting
+	struct urb *				RxUrb;
+	u32		Ep3ErrorCount2; // 20060625.1 Usbd for Rx DMA error count
+
+	int		EP3VM_status;
+	PUCHAR	pDRx;
+
+} WB35RX, *PWB35RX;
+
+
diff --git a/drivers/staging/winbond/linux/wb35tx.c b/drivers/staging/winbond/linux/wb35tx.c
new file mode 100644
index 0000000..cf19c3b
--- /dev/null
+++ b/drivers/staging/winbond/linux/wb35tx.c
@@ -0,0 +1,313 @@
+//============================================================================
+//  Copyright (c) 1996-2002 Winbond Electronic Corporation
+//
+//  Module Name:
+//    Wb35Tx.c
+//
+//  Abstract:
+//    Processing the Tx message and put into down layer
+//
+//============================================================================
+#include "sysdef.h"
+
+
+unsigned char
+Wb35Tx_get_tx_buffer(phw_data_t pHwData, PUCHAR *pBuffer )
+{
+	PWB35TX pWb35Tx = &pHwData->Wb35Tx;
+
+	*pBuffer = pWb35Tx->TxBuffer[0];
+	return TRUE;
+}
+
+void Wb35Tx_start(phw_data_t pHwData)
+{
+	PWB35TX pWb35Tx = &pHwData->Wb35Tx;
+
+	// Allow only one thread to run into function
+	if (OS_ATOMIC_INC(pHwData->Adapter, &pWb35Tx->TxFireCounter) == 1) {
+		pWb35Tx->EP4vm_state = VM_RUNNING;
+		Wb35Tx(pHwData);
+	} else
+		OS_ATOMIC_DEC( pHwData->Adapter, &pWb35Tx->TxFireCounter );
+}
+
+
+void Wb35Tx(phw_data_t pHwData)
+{
+	PWB35TX		pWb35Tx = &pHwData->Wb35Tx;
+	PADAPTER	Adapter = pHwData->Adapter;
+	PUCHAR		pTxBufferAddress;
+	PMDS		pMds = &Adapter->Mds;
+	struct urb *	pUrb = (struct urb *)pWb35Tx->Tx4Urb;
+	int         	retv;
+	u32		SendIndex;
+
+
+	if (pHwData->SurpriseRemove || pHwData->HwStop)
+		goto cleanup;
+
+	if (pWb35Tx->tx_halt)
+		goto cleanup;
+
+	// Ownership checking
+	SendIndex = pWb35Tx->TxSendIndex;
+	if (!pMds->TxOwner[SendIndex]) //No more data need to be sent, return immediately
+		goto cleanup;
+
+	pTxBufferAddress = pWb35Tx->TxBuffer[SendIndex];
+	//
+	// Issuing URB
+	//
+	usb_fill_bulk_urb(pUrb, pHwData->WbUsb.udev,
+			  usb_sndbulkpipe(pHwData->WbUsb.udev, 4),
+			  pTxBufferAddress, pMds->TxBufferSize[ SendIndex ],
+			  Wb35Tx_complete, pHwData);
+
+	pWb35Tx->EP4vm_state = VM_RUNNING;
+	retv = wb_usb_submit_urb( pUrb );
+	if (retv<0) {
+		printk("EP4 Tx Irp sending error\n");
+		goto cleanup;
+	}
+
+	// Check if driver needs issue Irp for EP2
+	pWb35Tx->TxFillCount += pMds->TxCountInBuffer[SendIndex];
+	if (pWb35Tx->TxFillCount > 12)
+		Wb35Tx_EP2VM_start( pHwData );
+
+	pWb35Tx->ByteTransfer += pMds->TxBufferSize[SendIndex];
+	return;
+
+ cleanup:
+	pWb35Tx->EP4vm_state = VM_STOP;
+	OS_ATOMIC_DEC( pHwData->Adapter, &pWb35Tx->TxFireCounter );
+}
+
+
+void Wb35Tx_complete(struct urb * pUrb)
+{
+	phw_data_t	pHwData = pUrb->context;
+	PADAPTER	Adapter = (PADAPTER)pHwData->Adapter;
+	PWB35TX		pWb35Tx = &pHwData->Wb35Tx;
+	PMDS		pMds = &Adapter->Mds;
+
+	printk("wb35: tx complete\n");
+	// Variable setting
+	pWb35Tx->EP4vm_state = VM_COMPLETED;
+	pWb35Tx->EP4VM_status = pUrb->status; //Store the last result of Irp
+	pMds->TxOwner[ pWb35Tx->TxSendIndex ] = 0;// Set the owner. Free the owner bit always.
+	pWb35Tx->TxSendIndex++;
+	pWb35Tx->TxSendIndex %= MAX_USB_TX_BUFFER_NUMBER;
+
+	do {
+		if (pHwData->SurpriseRemove || pHwData->HwStop) // Let WbWlanHalt to handle surprise remove
+			break;
+
+		if (pWb35Tx->tx_halt)
+			break;
+
+		// The URB is completed, check the result
+		if (pWb35Tx->EP4VM_status != 0) {
+			printk("URB submission failed\n");
+			pWb35Tx->EP4vm_state = VM_STOP;
+			break; // Exit while(FALSE);
+		}
+
+		Mds_Tx(Adapter);
+		Wb35Tx(pHwData);
+		return;
+	} while(FALSE);
+
+	OS_ATOMIC_DEC( pHwData->Adapter, &pWb35Tx->TxFireCounter );
+	pWb35Tx->EP4vm_state = VM_STOP;
+}
+
+void Wb35Tx_reset_descriptor(  phw_data_t pHwData )
+{
+	PWB35TX pWb35Tx = &pHwData->Wb35Tx;
+
+	pWb35Tx->TxSendIndex = 0;
+	pWb35Tx->tx_halt = 0;
+}
+
+unsigned char Wb35Tx_initial(phw_data_t pHwData)
+{
+	PWB35TX pWb35Tx = &pHwData->Wb35Tx;
+
+	pWb35Tx->Tx4Urb = wb_usb_alloc_urb(0);
+	if (!pWb35Tx->Tx4Urb)
+		return FALSE;
+
+	pWb35Tx->Tx2Urb = wb_usb_alloc_urb(0);
+	if (!pWb35Tx->Tx2Urb)
+	{
+		usb_free_urb( pWb35Tx->Tx4Urb );
+		return FALSE;
+	}
+
+	return TRUE;
+}
+
+//======================================================
+void Wb35Tx_stop(phw_data_t pHwData)
+{
+	PWB35TX pWb35Tx = &pHwData->Wb35Tx;
+
+	// Trying to canceling the Trp of EP2
+	if (pWb35Tx->EP2vm_state == VM_RUNNING)
+		usb_unlink_urb( pWb35Tx->Tx2Urb ); // Only use unlink, let Wb35Tx_destrot to free them
+	#ifdef _PE_TX_DUMP_
+	WBDEBUG(("EP2 Tx stop\n"));
+	#endif
+
+	// Trying to canceling the Irp of EP4
+	if (pWb35Tx->EP4vm_state == VM_RUNNING)
+		usb_unlink_urb( pWb35Tx->Tx4Urb ); // Only use unlink, let Wb35Tx_destrot to free them
+	#ifdef _PE_TX_DUMP_
+	WBDEBUG(("EP4 Tx stop\n"));
+	#endif
+}
+
+//======================================================
+void Wb35Tx_destroy(phw_data_t pHwData)
+{
+	PWB35TX pWb35Tx = &pHwData->Wb35Tx;
+
+	// Wait for VM stop
+	do {
+		OS_SLEEP(10000);  // Delay for waiting function enter 940623.1.a
+	} while( (pWb35Tx->EP2vm_state != VM_STOP) && (pWb35Tx->EP4vm_state != VM_STOP) );
+	OS_SLEEP(10000);  // Delay for waiting function enter 940623.1.b
+
+	if (pWb35Tx->Tx4Urb)
+		usb_free_urb( pWb35Tx->Tx4Urb );
+
+	if (pWb35Tx->Tx2Urb)
+		usb_free_urb( pWb35Tx->Tx2Urb );
+
+	#ifdef _PE_TX_DUMP_
+	WBDEBUG(("Wb35Tx_destroy OK\n"));
+	#endif
+}
+
+void Wb35Tx_CurrentTime(phw_data_t pHwData, u32 TimeCount)
+{
+	PWB35TX pWb35Tx = &pHwData->Wb35Tx;
+	unsigned char Trigger = FALSE;
+
+	if (pWb35Tx->TxTimer > TimeCount)
+		Trigger = TRUE;
+	else if (TimeCount > (pWb35Tx->TxTimer+500))
+		Trigger = TRUE;
+
+	if (Trigger) {
+		pWb35Tx->TxTimer = TimeCount;
+		Wb35Tx_EP2VM_start( pHwData );
+	}
+}
+
+void Wb35Tx_EP2VM_start(phw_data_t pHwData)
+{
+	PWB35TX pWb35Tx = &pHwData->Wb35Tx;
+
+	// Allow only one thread to run into function
+	if (OS_ATOMIC_INC( pHwData->Adapter, &pWb35Tx->TxResultCount ) == 1) {
+		pWb35Tx->EP2vm_state = VM_RUNNING;
+		Wb35Tx_EP2VM( pHwData );
+	}
+	else
+		OS_ATOMIC_DEC( pHwData->Adapter, &pWb35Tx->TxResultCount );
+}
+
+
+void Wb35Tx_EP2VM(phw_data_t pHwData)
+{
+	PWB35TX pWb35Tx = &pHwData->Wb35Tx;
+	struct urb *	pUrb = (struct urb *)pWb35Tx->Tx2Urb;
+	PULONG	pltmp = (PULONG)pWb35Tx->EP2_buf;
+	int		retv;
+
+	do {
+		if (pHwData->SurpriseRemove || pHwData->HwStop)
+			break;
+
+		if (pWb35Tx->tx_halt)
+			break;
+
+		//
+		// Issuing URB
+		//
+		usb_fill_int_urb( pUrb, pHwData->WbUsb.udev, usb_rcvintpipe(pHwData->WbUsb.udev,2),
+				  pltmp, MAX_INTERRUPT_LENGTH, Wb35Tx_EP2VM_complete, pHwData, 32);
+
+		pWb35Tx->EP2vm_state = VM_RUNNING;
+		retv = wb_usb_submit_urb( pUrb );
+
+		if(retv < 0) {
+			#ifdef _PE_TX_DUMP_
+			WBDEBUG(("EP2 Tx Irp sending error\n"));
+			#endif
+			break;
+		}
+
+		return;
+
+	} while(FALSE);
+
+	pWb35Tx->EP2vm_state = VM_STOP;
+	OS_ATOMIC_DEC( pHwData->Adapter, &pWb35Tx->TxResultCount );
+}
+
+
+void Wb35Tx_EP2VM_complete(struct urb * pUrb)
+{
+	phw_data_t	pHwData = pUrb->context;
+	T02_DESCRIPTOR	T02, TSTATUS;
+	PADAPTER	Adapter = (PADAPTER)pHwData->Adapter;
+	PWB35TX		pWb35Tx = &pHwData->Wb35Tx;
+	PULONG		pltmp = (PULONG)pWb35Tx->EP2_buf;
+	u32		i;
+	u16		InterruptInLength;
+
+
+	// Variable setting
+	pWb35Tx->EP2vm_state = VM_COMPLETED;
+	pWb35Tx->EP2VM_status = pUrb->status;
+
+	do {
+		// For Linux 2.4. Interrupt will always trigger
+		if( pHwData->SurpriseRemove || pHwData->HwStop ) // Let WbWlanHalt to handle surprise remove
+			break;
+
+		if( pWb35Tx->tx_halt )
+			break;
+
+		//The Urb is completed, check the result
+		if (pWb35Tx->EP2VM_status != 0) {
+			WBDEBUG(("EP2 IoCompleteRoutine return error\n"));
+			pWb35Tx->EP2vm_state= VM_STOP;
+			break; // Exit while(FALSE);
+		}
+
+		// Update the Tx result
+		InterruptInLength = pUrb->actual_length;
+		// Modify for minimum memory access and DWORD alignment.
+		T02.value = cpu_to_le32(pltmp[0]) >> 8; // [31:8] -> [24:0]
+		InterruptInLength -= 1;// 20051221.1.c Modify the follow for more stable
+		InterruptInLength >>= 2; // InterruptInLength/4
+		for (i=1; i<=InterruptInLength; i++) {
+			T02.value |= ((cpu_to_le32(pltmp[i]) & 0xff) << 24);
+
+			TSTATUS.value = T02.value;  //20061009 anson's endian
+			Mds_SendComplete( Adapter, &TSTATUS );
+			T02.value = cpu_to_le32(pltmp[i]) >> 8;
+		}
+
+		return;
+	} while(FALSE);
+
+	OS_ATOMIC_DEC( pHwData->Adapter, &pWb35Tx->TxResultCount );
+	pWb35Tx->EP2vm_state = VM_STOP;
+}
+
diff --git a/drivers/staging/winbond/linux/wb35tx_f.h b/drivers/staging/winbond/linux/wb35tx_f.h
new file mode 100644
index 0000000..7705a84
--- /dev/null
+++ b/drivers/staging/winbond/linux/wb35tx_f.h
@@ -0,0 +1,20 @@
+//====================================
+// Interface function declare
+//====================================
+unsigned char Wb35Tx_initial(	 phw_data_t pHwData );
+void Wb35Tx_destroy(  phw_data_t pHwData );
+unsigned char Wb35Tx_get_tx_buffer(  phw_data_t pHwData,  PUCHAR *pBuffer );
+
+void Wb35Tx_EP2VM(  phw_data_t pHwData );
+void Wb35Tx_EP2VM_start(  phw_data_t pHwData );
+void Wb35Tx_EP2VM_complete(  PURB purb );
+
+void Wb35Tx_start(  phw_data_t pHwData );
+void Wb35Tx_stop(  phw_data_t pHwData );
+void Wb35Tx(  phw_data_t pHwData );
+void Wb35Tx_complete(  PURB purb );
+void Wb35Tx_reset_descriptor(  phw_data_t pHwData );
+
+void Wb35Tx_CurrentTime(  phw_data_t pHwData,  u32 TimeCount );
+
+
diff --git a/drivers/staging/winbond/linux/wb35tx_s.h b/drivers/staging/winbond/linux/wb35tx_s.h
new file mode 100644
index 0000000..ac43257
--- /dev/null
+++ b/drivers/staging/winbond/linux/wb35tx_s.h
@@ -0,0 +1,47 @@
+//====================================
+// IS89C35 Tx related definition
+//====================================
+#define TX_INTERFACE			0	// Interface 1
+#define TX_PIPE					3	// endpoint 4
+#define TX_INTERRUPT			1	// endpoint 2
+#define MAX_INTERRUPT_LENGTH	64	// It must be 64 for EP2 hardware
+
+
+
+//====================================
+// Internal variable for module
+//====================================
+
+
+typedef struct _WB35TX
+{
+	// For Tx buffer
+	u8	TxBuffer[ MAX_USB_TX_BUFFER_NUMBER ][ MAX_USB_TX_BUFFER ];
+
+	// For Interrupt pipe
+	u8	EP2_buf[MAX_INTERRUPT_LENGTH];
+
+	OS_ATOMIC	TxResultCount;// For thread control of EP2 931130.4.m
+	OS_ATOMIC	TxFireCounter;// For thread control of EP4 931130.4.n
+	u32			ByteTransfer;
+
+	u32	    TxSendIndex;// The next index of Mds array to be sent
+	u32	    EP2vm_state; // for EP2vm state
+	u32	    EP4vm_state; // for EP4vm state
+	u32	    tx_halt; // Stopping VM
+
+	struct urb *				Tx4Urb;
+	struct urb *				Tx2Urb;
+
+	int		EP2VM_status;
+	int		EP4VM_status;
+
+	u32	TxFillCount; // 20060928
+	u32	TxTimer; // 20060928 Add if sending packet not great than 13
+
+} WB35TX, *PWB35TX;
+
+
+
+
+
diff --git a/drivers/staging/winbond/linux/wbusb.c b/drivers/staging/winbond/linux/wbusb.c
new file mode 100644
index 0000000..cbad5fb
--- /dev/null
+++ b/drivers/staging/winbond/linux/wbusb.c
@@ -0,0 +1,404 @@
+/*
+ * Copyright 2008 Pavel Machek <pavel@suse.cz>
+ *
+ * Distribute under GPLv2.
+ */
+#include "sysdef.h"
+#include <net/mac80211.h>
+
+
+MODULE_AUTHOR( DRIVER_AUTHOR );
+MODULE_DESCRIPTION( DRIVER_DESC );
+MODULE_LICENSE("GPL");
+MODULE_VERSION("0.1");
+
+
+//============================================================
+// vendor ID and product ID can into here for others
+//============================================================
+static struct usb_device_id Id_Table[] =
+{
+  {USB_DEVICE( 0x0416, 0x0035 )},
+  {USB_DEVICE( 0x18E8, 0x6201 )},
+  {USB_DEVICE( 0x18E8, 0x6206 )},
+  {USB_DEVICE( 0x18E8, 0x6217 )},
+  {USB_DEVICE( 0x18E8, 0x6230 )},
+  {USB_DEVICE( 0x18E8, 0x6233 )},
+  {USB_DEVICE( 0x1131, 0x2035 )},
+  {  }
+};
+
+MODULE_DEVICE_TABLE(usb, Id_Table);
+
+static struct usb_driver wb35_driver = {
+	.name =		"w35und",
+	.probe =	wb35_probe,
+	.disconnect = wb35_disconnect,
+	.id_table = Id_Table,
+};
+
+static const struct ieee80211_rate wbsoft_rates[] = {
+	{ .bitrate = 10, .flags = IEEE80211_RATE_SHORT_PREAMBLE },
+};
+
+static const struct ieee80211_channel wbsoft_channels[] = {
+	{ .center_freq = 2412},
+};
+
+int wbsoft_enabled;
+struct ieee80211_hw *my_dev;
+PADAPTER my_adapter;
+
+static int wbsoft_add_interface(struct ieee80211_hw *dev,
+				 struct ieee80211_if_init_conf *conf)
+{
+	printk("wbsoft_add interface called\n");
+	return 0;
+}
+
+static void wbsoft_remove_interface(struct ieee80211_hw *dev,
+				     struct ieee80211_if_init_conf *conf)
+{
+	printk("wbsoft_remove interface called\n");
+}
+
+static int wbsoft_nop(void)
+{
+	printk("wbsoft_nop called\n");
+	return 0;
+}
+
+static void wbsoft_configure_filter(struct ieee80211_hw *dev,
+				     unsigned int changed_flags,
+				     unsigned int *total_flags,
+				     int mc_count, struct dev_mc_list *mclist)
+{
+	unsigned int bit_nr, new_flags;
+	u32 mc_filter[2];
+	int i;
+
+	new_flags = 0;
+
+	if (*total_flags & FIF_PROMISC_IN_BSS) {
+		new_flags |= FIF_PROMISC_IN_BSS;
+		mc_filter[1] = mc_filter[0] = ~0;
+	} else if ((*total_flags & FIF_ALLMULTI) || (mc_count > 32)) {
+		new_flags |= FIF_ALLMULTI;
+		mc_filter[1] = mc_filter[0] = ~0;
+	} else {
+		mc_filter[1] = mc_filter[0] = 0;
+		for (i = 0; i < mc_count; i++) {
+			if (!mclist)
+				break;
+			printk("Should call ether_crc here\n");
+			//bit_nr = ether_crc(ETH_ALEN, mclist->dmi_addr) >> 26;
+			bit_nr = 0;
+
+			bit_nr &= 0x3F;
+			mc_filter[bit_nr >> 5] |= 1 << (bit_nr & 31);
+			mclist = mclist->next;
+		}
+	}
+
+	dev->flags &= ~IEEE80211_HW_RX_INCLUDES_FCS;
+
+	*total_flags = new_flags;
+}
+
+static int wbsoft_tx(struct ieee80211_hw *dev, struct sk_buff *skb,
+		      struct ieee80211_tx_control *control)
+{
+	char *buffer = kmalloc(skb->len, GFP_ATOMIC);
+	printk("Sending frame %d bytes\n", skb->len);
+	memcpy(buffer, skb->data, skb->len);
+	if (1 == MLMESendFrame(my_adapter, buffer, skb->len, FRAME_TYPE_802_11_MANAGEMENT))
+		printk("frame sent ok (%d bytes)?\n", skb->len);
+	return NETDEV_TX_OK;
+}
+
+
+static int wbsoft_start(struct ieee80211_hw *dev)
+{
+	wbsoft_enabled = 1;
+	printk("wbsoft_start called\n");
+	return 0;
+}
+
+static int wbsoft_config(struct ieee80211_hw *dev, struct ieee80211_conf *conf)
+{
+	ChanInfo ch;
+	printk("wbsoft_config called\n");
+
+	ch.band = 1;
+	ch.ChanNo = 1;	/* Should use channel_num, or something, as that is already pre-translated */
+
+
+	hal_set_current_channel(&my_adapter->sHwData, ch);
+	hal_set_beacon_period(&my_adapter->sHwData, conf->beacon_int);
+//	hal_set_cap_info(&my_adapter->sHwData, ?? );
+// hal_set_ssid(phw_data_t pHwData,  PUCHAR pssid,  u8 ssid_len); ??
+	hal_set_accept_broadcast(&my_adapter->sHwData, 1);
+	hal_set_accept_promiscuous(&my_adapter->sHwData,  1);
+	hal_set_accept_multicast(&my_adapter->sHwData,  1);
+	hal_set_accept_beacon(&my_adapter->sHwData,  1);
+	hal_set_radio_mode(&my_adapter->sHwData,  0);
+	//hal_set_antenna_number(  phw_data_t pHwData, u8 number )
+	//hal_set_rf_power(phw_data_t pHwData, u8 PowerIndex)
+
+
+//	hal_start_bss(&my_adapter->sHwData, WLAN_BSSTYPE_INFRASTRUCTURE);	??
+
+//void hal_set_rates(phw_data_t pHwData, PUCHAR pbss_rates,
+//		   u8 length, unsigned char basic_rate_set)
+
+	return 0;
+}
+
+static int wbsoft_config_interface(struct ieee80211_hw *dev,
+				    struct ieee80211_vif *vif,
+				    struct ieee80211_if_conf *conf)
+{
+	printk("wbsoft_config_interface called\n");
+	return 0;
+}
+
+static u64 wbsoft_get_tsf(struct ieee80211_hw *dev)
+{
+	printk("wbsoft_get_tsf called\n");
+	return 0;
+}
+
+static const struct ieee80211_ops wbsoft_ops = {
+	.tx			= wbsoft_tx,
+	.start			= wbsoft_start,		/* Start can be pretty much empty as we do WbWLanInitialize() during probe? */
+	.stop			= wbsoft_nop,
+	.add_interface		= wbsoft_add_interface,
+	.remove_interface	= wbsoft_remove_interface,
+	.config			= wbsoft_config,
+	.config_interface	= wbsoft_config_interface,
+	.configure_filter	= wbsoft_configure_filter,
+	.get_stats		= wbsoft_nop,
+	.get_tx_stats		= wbsoft_nop,
+	.get_tsf		= wbsoft_get_tsf,
+// conf_tx: hal_set_cwmin()/hal_set_cwmax;
+};
+
+struct wbsoft_priv {
+};
+
+
+int __init wb35_init(void)
+{
+	printk("[w35und]driver init\n");
+	return usb_register(&wb35_driver);
+}
+
+void __exit wb35_exit(void)
+{
+	printk("[w35und]driver exit\n");
+	usb_deregister( &wb35_driver );
+}
+
+module_init(wb35_init);
+module_exit(wb35_exit);
+
+// Usb kernel subsystem will call this function when a new device is plugged into.
+int wb35_probe(struct usb_interface *intf, const struct usb_device_id *id_table)
+{
+	PADAPTER	Adapter;
+	PWBLINUX	pWbLinux;
+	PWBUSB		pWbUsb;
+        struct usb_host_interface *interface;
+	struct usb_endpoint_descriptor *endpoint;
+	int	i, ret = -1;
+	u32	ltmp;
+	struct usb_device *udev = interface_to_usbdev(intf);
+
+	usb_get_dev(udev);
+
+	printk("[w35und]wb35_probe ->\n");
+
+	do {
+		for (i=0; i<(sizeof(Id_Table)/sizeof(struct usb_device_id)); i++ ) {
+			if ((udev->descriptor.idVendor == Id_Table[i].idVendor) &&
+				(udev->descriptor.idProduct == Id_Table[i].idProduct)) {
+				printk("[w35und]Found supported hardware\n");
+				break;
+			}
+		}
+		if ((i == (sizeof(Id_Table)/sizeof(struct usb_device_id)))) {
+			#ifdef _PE_USB_INI_DUMP_
+			WBDEBUG(("[w35und] This is not the one we are interested about\n"));
+			#endif
+			return -ENODEV;
+		}
+
+		// 20060630.2 Check the device if it already be opened
+		ret = usb_control_msg(udev, usb_rcvctrlpipe( udev, 0 ),
+				      0x01, USB_TYPE_VENDOR|USB_RECIP_DEVICE|USB_DIR_IN,
+				      0x0, 0x400, &ltmp, 4, HZ*100 );
+		if( ret < 0 )
+			break;
+
+		ltmp = cpu_to_le32(ltmp);
+		if (ltmp)  // Is already initialized?
+			break;
+
+
+		Adapter = kzalloc(sizeof(ADAPTER), GFP_KERNEL);
+
+		my_adapter = Adapter;
+		pWbLinux = &Adapter->WbLinux;
+		pWbUsb = &Adapter->sHwData.WbUsb;
+		pWbUsb->udev = udev;
+
+	        interface = intf->cur_altsetting;
+	        endpoint = &interface->endpoint[0].desc;
+
+		if (endpoint[2].wMaxPacketSize == 512) {
+			printk("[w35und] Working on USB 2.0\n");
+			pWbUsb->IsUsb20 = 1;
+		}
+
+		if (!WbWLanInitialize(Adapter)) {
+			printk("[w35und]WbWLanInitialize fail\n");
+			break;
+		}
+
+		{
+			struct wbsoft_priv *priv;
+			struct ieee80211_hw *dev;
+			int res;
+
+			dev = ieee80211_alloc_hw(sizeof(*priv), &wbsoft_ops);
+
+			if (!dev) {
+				printk("w35und: ieee80211 alloc failed\n" );
+				BUG();
+			}
+
+			my_dev = dev;
+
+			SET_IEEE80211_DEV(dev, &udev->dev);
+			{
+				phw_data_t pHwData = &Adapter->sHwData;
+				unsigned char		dev_addr[MAX_ADDR_LEN];
+				hal_get_permanent_address(pHwData, dev_addr);
+				SET_IEEE80211_PERM_ADDR(dev, dev_addr);
+			}
+
+
+			dev->extra_tx_headroom = 12;	/* FIXME */
+			dev->flags = 0;
+
+			dev->channel_change_time = 1000;
+//			dev->max_rssi = 100;
+
+			dev->queues = 1;
+
+			static struct ieee80211_supported_band band;
+
+			band.channels = wbsoft_channels;
+			band.n_channels = ARRAY_SIZE(wbsoft_channels);
+			band.bitrates = wbsoft_rates;
+			band.n_bitrates = ARRAY_SIZE(wbsoft_rates);
+
+			dev->wiphy->bands[IEEE80211_BAND_2GHZ] = &band;
+#if 0
+			wbsoft_modes[0].num_channels = 1;
+			wbsoft_modes[0].channels = wbsoft_channels;
+			wbsoft_modes[0].mode = MODE_IEEE80211B;
+			wbsoft_modes[0].num_rates = ARRAY_SIZE(wbsoft_rates);
+			wbsoft_modes[0].rates = wbsoft_rates;
+
+			res = ieee80211_register_hwmode(dev, &wbsoft_modes[0]);
+			BUG_ON(res);
+#endif
+
+			res = ieee80211_register_hw(dev);
+			BUG_ON(res);
+		}
+
+		usb_set_intfdata( intf, Adapter );
+
+		printk("[w35und] _probe OK\n");
+		return 0;
+
+	} while(FALSE);
+
+	return -ENOMEM;
+}
+
+void packet_came(char *pRxBufferAddress, int PacketSize)
+{
+	struct sk_buff *skb;
+	struct ieee80211_rx_status rx_status = {0};
+
+	if (!wbsoft_enabled)
+		return;
+
+	skb = dev_alloc_skb(PacketSize);
+	if (!skb) {
+		printk("Not enough memory for packet, FIXME\n");
+		return;
+	}
+
+	memcpy(skb_put(skb, PacketSize),
+	       pRxBufferAddress,
+	       PacketSize);
+
+/*
+	rx_status.rate = 10;
+	rx_status.channel = 1;
+	rx_status.freq = 12345;
+	rx_status.phymode = MODE_IEEE80211B;
+*/
+
+	ieee80211_rx_irqsafe(my_dev, skb, &rx_status);
+}
+
+unsigned char
+WbUsb_initial(phw_data_t pHwData)
+{
+	return 1;
+}
+
+
+void
+WbUsb_destroy(phw_data_t pHwData)
+{
+}
+
+int wb35_open(struct net_device *netdev)
+{
+	PADAPTER Adapter = (PADAPTER)netdev->priv;
+	phw_data_t pHwData = &Adapter->sHwData;
+
+        netif_start_queue(netdev);
+
+	//TODO : put here temporarily
+	hal_set_accept_broadcast(pHwData, 1); // open accept broadcast
+
+	return 0;
+}
+
+int wb35_close(struct net_device *netdev)
+{
+	netif_stop_queue(netdev);
+	return 0;
+}
+
+void wb35_disconnect(struct usb_interface *intf)
+{
+	PWBLINUX pWbLinux;
+	PADAPTER Adapter = usb_get_intfdata(intf);
+	usb_set_intfdata(intf, NULL);
+
+        pWbLinux = &Adapter->WbLinux;
+
+	// Card remove
+	WbWlanHalt(Adapter);
+
+}
+
+
diff --git a/drivers/staging/winbond/linux/wbusb_f.h b/drivers/staging/winbond/linux/wbusb_f.h
new file mode 100644
index 0000000..cae29e1
--- /dev/null
+++ b/drivers/staging/winbond/linux/wbusb_f.h
@@ -0,0 +1,34 @@
+//++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
+// Copyright (c) 1996-2004 Winbond Electronic Corporation
+//
+//  Module Name:
+//    wbusb_f.h
+//
+//  Abstract:
+//    Linux driver.
+//
+//  Author:
+//
+//+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
+
+int wb35_open(struct net_device *netdev);
+int wb35_close(struct net_device *netdev);
+unsigned char WbUsb_initial(phw_data_t pHwData);
+void WbUsb_destroy(phw_data_t pHwData);
+unsigned char WbWLanInitialize(PADAPTER Adapter);
+#define	WbUsb_Stop( _A )
+
+int wb35_probe(struct usb_interface *intf,const struct usb_device_id *id_table);
+void wb35_disconnect(struct usb_interface *intf);
+
+
+#define wb_usb_submit_urb(_A) usb_submit_urb(_A, GFP_ATOMIC)
+#define wb_usb_alloc_urb(_A) usb_alloc_urb(_A, GFP_ATOMIC)
+
+#define WbUsb_CheckForHang( _P )
+#define WbUsb_DetectStart( _P, _I )
+
+
+
+
+
diff --git a/drivers/staging/winbond/linux/wbusb_s.h b/drivers/staging/winbond/linux/wbusb_s.h
new file mode 100644
index 0000000..d5c1d53
--- /dev/null
+++ b/drivers/staging/winbond/linux/wbusb_s.h
@@ -0,0 +1,42 @@
+//++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
+// Copyright (c) 1996-2004 Winbond Electronic Corporation
+//
+//  Module Name:
+//    wbusb_s.h
+//
+//  Abstract:
+//    Linux driver.
+//
+//  Author:
+//
+//+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
+
+#define OS_SLEEP( _MT )	{ set_current_state(TASK_INTERRUPTIBLE); \
+			  schedule_timeout( _MT*HZ/1000000 ); }
+
+
+//---------------------------------------------------------------------------
+//  RW_CONTEXT --
+//
+//  Used to track driver-generated io irps
+//---------------------------------------------------------------------------
+typedef struct _RW_CONTEXT
+{
+	void*			pHwData;
+	PURB			pUrb;
+	void*			pCallBackFunctionParameter;
+} RW_CONTEXT, *PRW_CONTEXT;
+
+
+
+
+#define DRIVER_AUTHOR "Original by: Jeff Lee<YY_Lee@issc.com.tw> Adapted to 2.6.x by Costantino Leandro (Rxart Desktop) <le_costantino@pixartargentina.com.ar>"
+#define DRIVER_DESC   "IS89C35 802.11bg WLAN USB Driver"
+
+
+
+typedef struct _WBUSB {
+	u32	IsUsb20;
+	struct usb_device *udev;
+	u32	DetectCount;
+} WBUSB, *PWBUSB;
diff --git a/drivers/staging/winbond/localpara.h b/drivers/staging/winbond/localpara.h
new file mode 100644
index 0000000..268cf91
--- /dev/null
+++ b/drivers/staging/winbond/localpara.h
@@ -0,0 +1,275 @@
+//=============================================================
+// LocalPara.h -
+//=============================================================
+//Define the local ability
+
+#define LOCAL_DEFAULT_BEACON_PERIOD			100		//ms
+#define LOCAL_DEFAULT_ATIM_WINDOW			0
+#define LOCAL_DEFAULT_ERP_CAPABILITY		0x0431	//0x0001:	ESS
+													//0x0010:	Privacy
+													//0x0020:	short preamble
+													//0x0400:	short slot time
+#define LOCAL_DEFAULT_LISTEN_INTERVAL		5
+
+//#define LOCAL_DEFAULT_24_CHANNEL_NUM		11		// channel 1..11
+#define LOCAL_DEFAULT_24_CHANNEL_NUM		13		// channel 1..13
+#define LOCAL_DEFAULT_5_CHANNEL_NUM			8		// channel 36..64
+
+#define LOCAL_USA_24_CHANNEL_NUM			11
+#define LOCAL_USA_5_CHANNEL_NUM				12
+#define LOCAL_EUROPE_24_CHANNEL_NUM			13
+#define LOCAL_EUROPE_5_CHANNEL_NUM			19
+#define LOCAL_JAPAN_24_CHANNEL_NUM			14
+#define LOCAL_JAPAN_5_CHANNEL_NUM			11
+#define LOCAL_UNKNOWN_24_CHANNEL_NUM		14
+#define LOCAL_UNKNOWN_5_CHANNEL_NUM			34	//not include 165
+
+
+#define psLOCAL			(&(Adapter->sLocalPara))
+
+#define MODE_802_11_BG			0
+#define MODE_802_11_A			1
+#define MODE_802_11_ABG			2
+#define MODE_802_11_BG_IBSS		3
+#define MODE_802_11_B			4
+#define MODE_AUTO				255
+
+#define BAND_TYPE_DSSS			0
+#define BAND_TYPE_OFDM_24		1
+#define BAND_TYPE_OFDM_5		2
+
+//refer Bitmap2RateValue table
+#define LOCAL_ALL_SUPPORTED_RATES_BITMAP		0x130c1a66	//the bitmap value of all the H/W supported rates
+															//1, 2, 5.5, 11, 6, 9, 12, 18, 24, 36, 48, 54
+#define LOCAL_OFDM_SUPPORTED_RATES_BITMAP		0x130c1240	//the bitmap value of all the H/W supported rates
+															//except to non-OFDM rates
+															//6, 9, 12, 18, 24, 36, 48, 54
+
+#define LOCAL_11B_SUPPORTED_RATE_BITMAP			0x826
+#define LOCAL_11B_BASIC_RATE_BITMAP				0x826
+#define LOCAL_11B_OPERATION_RATE_BITMAP			0x826
+#define LOCAL_11G_BASIC_RATE_BITMAP				0x826		//1, 2, 5.5, 11
+#define LOCAL_11G_OPERATION_RATE_BITMAP			0x130c1240	//6, 9, 12, 18, 24, 36, 48, 54
+#define LOCAL_11A_BASIC_RATE_BITMAP				0x01001040	//6, 12, 24
+#define LOCAL_11A_OPERATION_RATE_BITMAP			0x120c0200	//9, 18, 36, 48, 54
+
+
+
+#define PWR_ACTIVE		0
+#define PWR_SAVE		1
+#define PWR_TX_IDLE_CYCLE			6
+
+//bPreambleMode and bSlotTimeMode
+#define AUTO_MODE			0
+#define LONG_MODE			1
+
+//Region definition
+#define REGION_AUTO			0xff
+#define REGION_UNKNOWN		0
+#define REGION_EUROPE		1	//ETSI
+#define REGION_JAPAN		2	//MKK
+#define REGION_USA			3	//FCC
+#define	REGION_FRANCE		4	//FRANCE
+#define REGION_SPAIN		5	//SPAIN
+#define REGION_ISRAEL		6	//ISRAEL
+//#define REGION_CANADA		7	//IC
+
+#define MAX_BSS_DESCRIPT_ELEMENT		32
+#define MAX_PMKID_CandidateList         16
+
+//High byte : Event number,  low byte : reason
+//Event definition
+//-- SME/MLME event
+#define EVENT_RCV_DEAUTH					0x0100
+#define EVENT_JOIN_FAIL						0x0200
+#define EVENT_AUTH_FAIL						0x0300
+#define EVENT_ASSOC_FAIL					0x0400
+#define EVENT_LOST_SIGNAL					0x0500
+#define EVENT_BSS_DESCRIPT_LACK				0x0600
+#define EVENT_COUNTERMEASURE				0x0700
+#define EVENT_JOIN_FILTER					0x0800
+//-- TX/RX event
+#define EVENT_RX_BUFF_UNAVAILABLE			0x4100
+
+#define EVENT_CONNECT						0x8100
+#define EVENT_DISCONNECT					0x8200
+#define EVENT_SCAN_REQ						0x8300
+
+//Reason of Event
+#define EVENT_REASON_FILTER_BASIC_RATE		0x0001
+#define EVENT_REASON_FILTER_PRIVACY			0x0002
+#define EVENT_REASON_FILTER_AUTH_MODE		0x0003
+#define EVENT_REASON_TIMEOUT				0x00ff
+
+// 20061108 WPS IE buffer
+#define MAX_IE_APPEND_SIZE					256 + 4 // Due to [E id][Length][OUI][Data] may 257 bytes
+
+typedef struct _EVENTLOG
+{
+	u16		Count;			//Total count from start
+	u16		index;			//Buffer index, 0 ~ 63
+	u32		EventValue[64];	//BYTE 3~2 : count, BYTE 1 : Event, BYTE 0 : reason
+} Event_Log, *pEvent_Log;
+
+typedef struct _ChanInfo
+{
+	u8		band;
+	u8		ChanNo;
+} ChanInfo, *pChanInfo;
+
+typedef struct _CHAN_LIST
+{
+	u16				Count;
+	ChanInfo		Channel[50]; // 100B
+} CHAN_LIST, *psCHAN_LIST;
+
+typedef struct _RadioOff
+{
+	u8			boHwRadioOff;
+	u8			boSwRadioOff;
+} RadioOff, *psRadioOff;
+
+//===========================================================================
+typedef struct LOCAL_PARA
+{
+	u8			PermanentAddress[ MAC_ADDR_LENGTH + 2 ]; 	// read from EPROM, manufacture set for each NetCard
+    u8    		ThisMacAddress[ MAC_ADDR_LENGTH + 2 ];			// the driver will use actually.
+
+	u32			MTUsize;				// Ind to Uplayer, Max transmission unit size
+
+	u8			region_INF;	//region setting from INF
+	u8			region;		//real region setting of the device
+	u8			Reserved_1[2];
+
+    //// power-save variables
+    u8  		  	iPowerSaveMode;     // 0 indicates it is on, 1 indicates it is off
+	u8			ShutDowned;
+	u8			ATIMmode;
+	u8			ExcludeUnencrypted;
+
+	u16			CheckCountForPS;	//Unit ime count for the decision to enter PS mode
+	u8			boHasTxActivity;	//tx activity has occurred
+	u8			boMacPsValid;		//Power save mode obtained from H/W is valid or not
+
+	//// Rate
+	u8			TxRateMode;				// Initial, input from Registry, may be updated by GUI
+											//Tx Rate Mode: auto(DTO on), max, 1M, 2M, ..
+	u8			CurrentTxRate;			// The current Tx rate
+	u8			CurrentTxRateForMng;	// The current Tx rate for management frames
+										// It will be decided before connection succeeds.
+	u8			CurrentTxFallbackRate;
+
+	//for Rate handler
+	u8			BRateSet[32];			//basic rate set
+	u8			SRateSet[32];			//support rate set
+
+	u8			NumOfBRate;
+	u8			NumOfSRate;
+	u8			NumOfDsssRateInSRate;	//number of DSSS rates in supported rate set
+	u8			reserved1;
+
+	u32			dwBasicRateBitmap;		//bit map of basic rates
+	u32			dwSupportRateBitmap;	//bit map of all support rates including
+										//basic and operational rates
+
+	////For SME/MLME handler
+	u16			wOldSTAindex;			// valid when boHandover=TRUE, store old connected STA index
+	u16			wConnectedSTAindex;		// Index of peerly connected AP or IBSS in
+										// the descriptionset.
+    u16			Association_ID;     	// The Association ID in the (Re)Association
+            	                    	// Response frame.
+    u16			ListenInterval;     	// The listen interval when SME invoking MLME_
+            	                    	// (Re)Associate_Request().
+
+	RadioOff		RadioOffStatus;
+	u8			Reserved0[2];
+
+	u8			boMsRadioOff;			// Ndis demands to be true when set Disassoc. OID and be false when set SSID OID.
+	u8			boAntennaDiversity;		//TRUE/ON or FALSE/OFF
+	u8			bAntennaNo;				//which antenna
+	u8			bConnectFlag;			//the connect status flag for roaming task
+
+	u8			RoamStatus;
+	u8			reserved7[3];
+
+	ChanInfo	CurrentChan;			//Current channel no. and channel band. It may be changed by scanning.
+	u8			boHandover;				// Roaming, Hnadover to other AP.
+	u8			boCCAbusy;
+
+	u16			CWMax;					// It may not be the real value that H/W used
+	u8			CWMin;					// 255: set according to 802.11 spec.
+	u8			reserved2;
+
+	//11G:
+	u8			bMacOperationMode;		// operation in 802.11b or 802.11g
+	u8			bSlotTimeMode;			//AUTO, s32
+	u8			bPreambleMode;			//AUTO, s32
+	u8			boNonERPpresent;
+
+	u8			boProtectMechanism;	// H/W will take the necessary action based on this variable
+	u8			boShortPreamble;	// H/W will take the necessary action based on this variable
+	u8			boShortSlotTime;	// H/W will take the necessary action based on this variable
+	u8			reserved_3;
+
+	u32       	RSN_IE_Bitmap;		//added by WS
+	u32      		RSN_OUI_Type;		//added by WS
+
+	//For the BSSID
+	u8			HwBssid[MAC_ADDR_LENGTH + 2];
+	u32			HwBssidValid;
+
+	//For scan list
+	u8			BssListCount;							//Total count of valid descriptor indexes
+	u8			boReceiveUncorrectInfo;	//important settings in beacon/probe resp. have been changed
+	u8			NoOfJoinerInIbss;
+	u8			reserved_4;
+
+	u8			BssListIndex[ (MAX_BSS_DESCRIPT_ELEMENT+3) & ~0x03 ];	//Store the valid descriptor indexes obtained from scannings
+	u8			JoinerInIbss[ (MAX_BSS_DESCRIPT_ELEMENT+3) & ~0x03 ];	//save the BssDescriptor index in this
+														//IBSS. The index 0 is local descriptor
+														//(psLOCAL->wConnectedSTAindex).
+														//If CONNECTED : NoOfJoinerInIbss >=2
+														//		else   : NoOfJoinerInIbss <=1
+
+	//// General Statistics, count at Rx_handler or Tx_callback interrupt handler
+    u64 	GS_XMIT_OK;				// Good Frames Transmitted
+    u64 	GS_RCV_OK;				// Good Frames Received
+	u32		GS_RCV_ERROR;			// Frames received with crc error
+	u32		GS_XMIT_ERROR;			// Bad Frames Transmitted
+	u32		GS_RCV_NO_BUFFER;		// Receive Buffer underrun
+	u32		GS_XMIT_ONE_COLLISION;	// one collision
+	u32		GS_XMIT_MORE_COLLISIONS;// more collisions
+
+    //================================================================
+    // Statistics (no matter whether it had done successfully) -wkchen
+    //================================================================
+    u32		   	_NumRxMSDU;
+    u32	   		_NumTxMSDU;
+    u32	   		_dot11WEPExcludedCount;
+    u32	   		_dot11WEPUndecryptableCount;
+    u32	   		_dot11FrameDuplicateCount;
+
+	ChanInfo	IbssChanSetting;	// 2B. Start IBSS Channel setting by registry or WWU.
+	u8		reserved_5[2];		//It may not be used after considering RF type,
+									//region and modulation type.
+
+	CHAN_LIST	sSupportChanList;	// 86B. It will be obtained according to RF type and region
+	u8		reserved_6[2];		//two variables are for wep key error detection added by ws 02/02/04
+
+    u32	      bWepKeyError;
+    u32         bToSelfPacketReceived;
+    u32         WepKeyDetectTimerCount;
+
+	Event_Log	EventLog;
+
+	u16		SignalLostTh;
+	u16		SignalRoamTh;
+
+	// 20061108 WPS IE Append
+	u8		IE_Append_data[MAX_IE_APPEND_SIZE];
+	u16		IE_Append_size;
+	u16		reserved_7;
+
+} WB_LOCALDESCRIPT, *PWB_LOCALDESCRIPT;
+
+
diff --git a/drivers/staging/winbond/mac_structures.h b/drivers/staging/winbond/mac_structures.h
new file mode 100644
index 0000000..031d2cb
--- /dev/null
+++ b/drivers/staging/winbond/mac_structures.h
@@ -0,0 +1,670 @@
+//++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
+// MAC_Structures.h
+//
+// This file contains the definitions and data structures used by SW-MAC.
+//
+// Revision Histoy
+//=================
+// 0.1      2002        UN00
+// 0.2      20021004    PD43 CCLiu6
+//          20021018    PD43 CCLiu6
+//                      Add enum_TxRate type
+//                      Modify enum_STAState type
+// 0.3      20021023    PE23 CYLiu update MAC session struct
+//          20021108
+//          20021122    PD43 Austin
+//                      Deleted some unused.
+//          20021129    PD43 Austin
+//			20030617	increase the 802.11g definition
+//++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
+
+#ifndef _MAC_Structures_H_
+#define _MAC_Structures_H_
+
+
+//=========================================================
+// Some miscellaneous definitions
+//-----
+#define MAX_CHANNELS                        30
+#define MAC_ADDR_LENGTH                     6
+#define MAX_WEP_KEY_SIZE                    16  // 128 bits
+#define	MAX_802_11_FRAGMENT_NUMBER		10 // By spec
+
+//========================================================
+// 802.11 Frame define
+//-----
+#define MASK_PROTOCOL_VERSION_TYPE	0x0F
+#define MASK_FRAGMENT_NUMBER		0x000F
+#define SEQUENCE_NUMBER_SHIFT		4
+#define DIFFER_11_TO_3				18
+#define DOT_11_MAC_HEADER_SIZE		24
+#define DOT_11_SNAP_SIZE			6
+#define DOT_11_DURATION_OFFSET		2
+#define DOT_11_SEQUENCE_OFFSET		22 //Sequence control offset
+#define DOT_11_TYPE_OFFSET			30 //The start offset of 802.11 Frame//
+#define DOT_11_DATA_OFFSET          24
+#define DOT_11_DA_OFFSET			4
+#define DOT_3_TYPE_ARP				0x80F3
+#define DOT_3_TYPE_IPX				0x8137
+#define DOT_3_TYPE_OFFSET			12
+
+
+#define ETHERNET_HEADER_SIZE			14
+#define MAX_ETHERNET_PACKET_SIZE		1514
+
+
+//-----  management : Type of Bits (2, 3) and Subtype of Bits (4, 5, 6, 7)
+#define MAC_SUBTYPE_MNGMNT_ASSOC_REQUEST    0x00
+#define MAC_SUBTYPE_MNGMNT_ASSOC_RESPONSE   0x10
+#define MAC_SUBTYPE_MNGMNT_REASSOC_REQUEST  0x20
+#define MAC_SUBTYPE_MNGMNT_REASSOC_RESPONSE 0x30
+#define MAC_SUBTYPE_MNGMNT_PROBE_REQUEST    0x40
+#define MAC_SUBTYPE_MNGMNT_PROBE_RESPONSE   0x50
+#define MAC_SUBTYPE_MNGMNT_BEACON           0x80
+#define MAC_SUBTYPE_MNGMNT_ATIM             0x90
+#define MAC_SUBTYPE_MNGMNT_DISASSOCIATION   0xA0
+#define MAC_SUBTYPE_MNGMNT_AUTHENTICATION   0xB0
+#define MAC_SUBTYPE_MNGMNT_DEAUTHENTICATION 0xC0
+
+//-----  control : Type of Bits (2, 3) and Subtype of Bits (4, 5, 6, 7)
+#define MAC_SUBTYPE_CONTROL_PSPOLL          0xA4
+#define MAC_SUBTYPE_CONTROL_RTS             0xB4
+#define MAC_SUBTYPE_CONTROL_CTS             0xC4
+#define MAC_SUBTYPE_CONTROL_ACK             0xD4
+#define MAC_SUBTYPE_CONTROL_CFEND           0xE4
+#define MAC_SUBTYPE_CONTROL_CFEND_CFACK     0xF4
+
+//-----  data : Type of Bits (2, 3) and Subtype of Bits (4, 5, 6, 7)
+#define MAC_SUBTYPE_DATA                    0x08
+#define MAC_SUBTYPE_DATA_CFACK              0x18
+#define MAC_SUBTYPE_DATA_CFPOLL             0x28
+#define MAC_SUBTYPE_DATA_CFACK_CFPOLL       0x38
+#define MAC_SUBTYPE_DATA_NULL               0x48
+#define MAC_SUBTYPE_DATA_CFACK_NULL         0x58
+#define MAC_SUBTYPE_DATA_CFPOLL_NULL        0x68
+#define MAC_SUBTYPE_DATA_CFACK_CFPOLL_NULL  0x78
+
+//-----  Frame Type of Bits (2, 3)
+#define MAC_TYPE_MANAGEMENT                 0x00
+#define MAC_TYPE_CONTROL                    0x04
+#define MAC_TYPE_DATA                       0x08
+
+//----- definitions for Management Frame Element ID (1 BYTE)
+#define ELEMENT_ID_SSID                     0
+#define ELEMENT_ID_SUPPORTED_RATES          1
+#define ELEMENT_ID_FH_PARAMETER_SET         2
+#define ELEMENT_ID_DS_PARAMETER_SET         3
+#define ELEMENT_ID_CF_PARAMETER_SET         4
+#define ELEMENT_ID_TIM                      5
+#define ELEMENT_ID_IBSS_PARAMETER_SET       6
+// 7~15 reserverd
+#define ELEMENT_ID_CHALLENGE_TEXT           16
+// 17~31 reserved for challenge text extension
+// 32~255 reserved
+//--  11G  --
+#define ELEMENT_ID_ERP_INFORMATION			42
+#define ELEMENT_ID_EXTENDED_SUPPORTED_RATES 50
+
+//--  WPA  --
+
+#define ELEMENT_ID_RSN_WPA					221
+#ifdef _WPA2_
+#define ELEMENT_ID_RSN_WPA2				    48
+#endif //endif WPA2
+
+#define WLAN_MAX_PAIRWISE_CIPHER_SUITE_COUNT    ((u16) 6)
+#define WLAN_MAX_AUTH_KEY_MGT_SUITE_LIST_COUNT  ((u16) 2)
+
+#ifdef WB_LINUX
+#define UNALIGNED
+#endif
+
+//========================================================
+typedef enum enum_PowerManagementMode
+{
+    ACTIVE = 0,
+    POWER_SAVE
+} WB_PM_Mode, *PWB_PM_MODE;
+
+//===================================================================
+//  Reason Code (Table 18): indicate the reason of DisAssoc, DeAuthen
+//  length of ReasonCode is 2 Octs.
+//===================================================================
+#define REASON_REASERED             0
+#define REASON_UNSPECIDIED          1
+#define REASON_PREAUTH_INVALID      2
+#define DEAUTH_REASON_LEFT_BSS      3
+#define DISASS_REASON_AP_INACTIVE   4
+#define DISASS_REASON_AP_BUSY       5
+#define REASON_CLASS2_FRAME_FROM_NONAUTH_STA    6
+#define REASON_CLASS3_FRAME_FROM_NONASSO_STA    7
+#define DISASS_REASON_LEFT_BSS      8
+#define REASON_NOT_AUTH_YET         9
+//802.11i define
+#define REASON_INVALID_IE						13
+#define REASON_MIC_ERROR						14
+#define REASON_4WAY_HANDSHAKE_TIMEOUT			15
+#define REASON_GROUPKEY_UPDATE_TIMEOUT			16
+#define REASON_IE_DIFF_4WAY_ASSOC				17
+#define REASON_INVALID_MULTICAST_CIPHER			18
+#define REASON_INVALID_UNICAST_CIPHER			19
+#define REASON_INVALID_AKMP						20
+#define REASON_UNSUPPORTED_RSNIE_VERSION		21
+#define REASON_INVALID_RSNIE_CAPABILITY			22
+#define REASON_802_1X_AUTH_FAIL					23
+#define	REASON_CIPHER_REJECT_PER_SEC_POLICY		14
+
+/*
+//===========================================================
+// enum_MMPDUResultCode --
+//   Status code (2 Octs) in the MMPDU's frame body. Table.19
+//
+//===========================================================
+enum enum_MMPDUResultCode
+{
+//    SUCCESS   = 0,      // Redefined
+    UNSPECIFIED_FAILURE                         = 1,
+
+    // 2 - 9 Reserved
+
+    NOT_SUPPROT_CAPABILITIES                    = 10,
+
+    //REASSOCIATION_DENIED
+    //
+    REASSOC_DENIED_UNABLE_CFM_ASSOC_EXIST       = 11,
+
+    //ASSOCIATION_DENIED_NOT_IN_STANDARD
+    //
+    ASSOC_DENIED_REASON_NOT_IN_STANDARD         = 12,
+    PEER_NOT_SUPPORT_AUTH_ALGORITHM             = 13,
+    AUTH_SEQNUM_OUT_OF_EXPECT                   = 14,
+    AUTH_REJECT_REASON_CHALLENGE_FAIL           = 15,
+    AUTH_REJECT_REASON_WAIT_TIMEOUT             = 16,
+    ASSOC_DENIED_REASON_AP_BUSY                 = 17,
+    ASSOC_DENIED_REASON_NOT_SUPPORT_BASIC_RATE  = 18
+} WB_MMPDURESULTCODE, *PWB_MMPDURESULTCODE;
+*/
+
+//===========================================================
+// enum_TxRate --
+//   Define the transmission constants based on W89C32 MAC
+//   target specification.
+//===========================================================
+typedef enum enum_TxRate
+{
+    TXRATE_1M               = 0,
+    TXRATE_2MLONG           = 2,
+    TXRATE_2MSHORT          = 3,
+    TXRATE_55MLONG          = 4,
+    TXRATE_55MSHORT         = 5,
+    TXRATE_11MLONG          = 6,
+    TXRATE_11MSHORT         = 7,
+    TXRATE_AUTO             = 255           // PD43 20021108
+} WB_TXRATE, *PWB_TXRATE;
+
+
+#define	RATE_BITMAP_1M				1
+#define	RATE_BITMAP_2M				2
+#define	RATE_BITMAP_5dot5M			5
+#define RATE_BITMAP_6M				6
+#define RATE_BITMAP_9M				9
+#define RATE_BITMAP_11M				11
+#define RATE_BITMAP_12M				12
+#define RATE_BITMAP_18M				18
+#define RATE_BITMAP_22M				22
+#define RATE_BITMAP_24M				24
+#define RATE_BITMAP_33M				17
+#define RATE_BITMAP_36M				19
+#define RATE_BITMAP_48M				25
+#define RATE_BITMAP_54M				28
+
+#define RATE_AUTO					0
+#define RATE_1M						2
+#define RATE_2M						4
+#define RATE_5dot5M					11
+#define RATE_6M						12
+#define RATE_9M						18
+#define RATE_11M					22
+#define RATE_12M					24
+#define RATE_18M					36
+#define RATE_22M					44
+#define RATE_24M					48
+#define RATE_33M					66
+#define RATE_36M					72
+#define RATE_48M					96
+#define RATE_54M					108
+#define RATE_MAX					255
+
+//CAPABILITY
+#define CAPABILITY_ESS_BIT				0x0001
+#define CAPABILITY_IBSS_BIT				0x0002
+#define CAPABILITY_CF_POLL_BIT			0x0004
+#define CAPABILITY_CF_POLL_REQ_BIT		0x0008
+#define CAPABILITY_PRIVACY_BIT			0x0010
+#define CAPABILITY_SHORT_PREAMBLE_BIT	0x0020
+#define CAPABILITY_PBCC_BIT				0x0040
+#define CAPABILITY_CHAN_AGILITY_BIT		0x0080
+#define CAPABILITY_SHORT_SLOT_TIME_BIT	0x0400
+#define CAPABILITY_DSSS_OFDM_BIT		0x2000
+
+
+struct Capability_Information_Element
+{
+  union
+  {
+  	u16 __attribute__ ((packed)) wValue;
+    #ifdef _BIG_ENDIAN_  //20060926 add by anson's endian
+    struct _Capability
+    {
+        //--  11G  --
+	u8	Reserved3 : 2;
+	u8	DSSS_OFDM : 1;
+	u8	Reserved2 : 2;
+	u8	Short_Slot_Time : 1;
+	u8    Reserved1 : 2;
+	u8    Channel_Agility : 1;
+	u8    PBCC : 1;
+	u8    ShortPreamble : 1;
+	u8    CF_Privacy : 1;
+	u8    CF_Poll_Request : 1;
+	u8    CF_Pollable : 1;
+	u8    IBSS : 1;
+	u8    ESS : 1;
+    } __attribute__ ((packed)) Capability;
+    #else
+    struct _Capability
+    {
+        u8    ESS : 1;
+        u8    IBSS : 1;
+        u8    CF_Pollable : 1;
+        u8    CF_Poll_Request : 1;
+        u8    CF_Privacy : 1;
+        u8    ShortPreamble : 1;
+        u8    PBCC : 1;
+        u8    Channel_Agility : 1;
+        u8    Reserved1 : 2;
+		//--  11G  --
+		u8	Short_Slot_Time : 1;
+		u8	Reserved2 : 2;
+		u8	DSSS_OFDM : 1;
+		u8	Reserved3 : 2;
+    } __attribute__ ((packed)) Capability;
+    #endif
+  }__attribute__ ((packed)) ;
+}__attribute__ ((packed));
+
+struct FH_Parameter_Set_Element
+{
+    u8    Element_ID;
+    u8    Length;
+    u8    Dwell_Time[2];
+    u8    Hop_Set;
+    u8    Hop_Pattern;
+    u8    Hop_Index;
+};
+
+struct DS_Parameter_Set_Element
+{
+    u8    Element_ID;
+    u8    Length;
+    u8    Current_Channel;
+};
+
+struct Supported_Rates_Element
+{
+    u8    Element_ID;
+    u8    Length;
+    u8    SupportedRates[8];
+}__attribute__ ((packed));
+
+struct SSID_Element
+{
+    u8    Element_ID;
+    u8    Length;
+    u8    SSID[32];
+}__attribute__ ((packed)) ;
+
+struct CF_Parameter_Set_Element
+{
+    u8    Element_ID;
+    u8    Length;
+    u8    CFP_Count;
+    u8    CFP_Period;
+    u8    CFP_MaxDuration[2];     // in Time Units
+    u8    CFP_DurRemaining[2];    // in time units
+};
+
+struct TIM_Element
+{
+    u8    Element_ID;
+    u8    Length;
+    u8    DTIM_Count;
+    u8    DTIM_Period;
+    u8    Bitmap_Control;
+    u8    Partial_Virtual_Bitmap[251];
+};
+
+struct IBSS_Parameter_Set_Element
+{
+    u8    Element_ID;
+    u8    Length;
+    u8    ATIM_Window[2];
+};
+
+struct Challenge_Text_Element
+{
+    u8    Element_ID;
+    u8    Length;
+    u8    Challenge_Text[253];
+};
+
+struct PHY_Parameter_Set_Element
+{
+//  int     aSlotTime;
+//  int     aSifsTime;
+    s32     aCCATime;
+    s32     aRxTxTurnaroundTime;
+    s32     aTxPLCPDelay;
+    s32     RxPLCPDelay;
+    s32     aRxTxSwitchTime;
+    s32     aTxRampOntime;
+    s32     aTxRampOffTime;
+    s32     aTxRFDelay;
+    s32     aRxRFDelay;
+    s32     aAirPropagationTime;
+    s32     aMACProcessingDelay;
+    s32     aPreambleLength;
+    s32     aPLCPHeaderLength;
+    s32     aMPDUDurationFactor;
+    s32     aMPDUMaxLength;
+//  int     aCWmin;
+//  int     aCWmax;
+};
+
+//--  11G  --
+struct ERP_Information_Element
+{
+    u8	Element_ID;
+    u8	Length;
+    #ifdef _BIG_ENDIAN_ //20060926 add by anson's endian
+    	u8	Reserved:5;   //20060926 add by anson
+       u8	Barker_Preamble_Mode:1;
+	u8	Use_Protection:1;
+       u8	NonERP_Present:1;
+    #else
+	u8	NonERP_Present:1;
+	u8	Use_Protection:1;
+	u8	Barker_Preamble_Mode:1;
+	u8	Reserved:5;
+    #endif
+};
+
+struct Extended_Supported_Rates_Element
+{
+    u8	Element_ID;
+    u8	Length;
+    u8	ExtendedSupportedRates[255];
+}__attribute__ ((packed));
+
+//WPA(802.11i draft 3.0)
+#define VERSION_WPA				1
+#ifdef _WPA2_
+#define VERSION_WPA2            1
+#endif //end def  _WPA2_
+#define OUI_WPA					0x00F25000	//WPA2.0 OUI=00:50:F2, the MSB is reserved for suite type
+#ifdef _WPA2_
+#define OUI_WPA2				0x00AC0F00	// for wpa2 change to 0x00ACOF04 by Ws 26/04/04
+#endif //end def _WPA2_
+
+#define OUI_WPA_ADDITIONAL		0x01
+#define WLAN_MIN_RSN_WPA_LENGTH                 6 //added by ws 09/10/04
+#ifdef _WPA2_
+#define WLAN_MIN_RSN_WPA2_LENGTH                2 // Fix to 2 09/14/05
+#endif //end def _WPA2_
+
+#define oui_wpa                  (u32)(OUI_WPA|OUI_WPA_ADDITIONAL)
+
+#define WPA_OUI_BIG    ((u32) 0x01F25000)//added by ws 09/23/04
+#define WPA_OUI_LITTLE  ((u32) 0x01F25001)//added by ws 09/23/04
+
+#define WPA_WPS_OUI				cpu_to_le32(0x04F25000) // 20061108 For WPS. It's little endian. Big endian is 0x0050F204
+
+//-----WPA2-----
+#ifdef _WPA2_
+#define WPA2_OUI_BIG    ((u32)0x01AC0F00)
+#define WPA2_OUI_LITTLE ((u32)0x01AC0F01)
+#endif //end def _WPA2_
+
+//Authentication suite
+#define OUI_AUTH_WPA_NONE           0x00 //for WPA_NONE
+#define OUI_AUTH_8021X				0x01
+#define OUI_AUTH_PSK				0x02
+//Cipher suite
+#define OUI_CIPHER_GROUP_KEY        0x00  //added by ws 05/21/04
+#define OUI_CIPHER_WEP_40			0x01
+#define OUI_CIPHER_TKIP				0x02
+#define OUI_CIPHER_CCMP				0x04
+#define OUI_CIPHER_WEP_104			0x05
+
+typedef struct _SUITE_SELECTOR_
+{
+	union
+	{
+		u8	Value[4];
+		struct _SUIT_
+		{
+			u8	OUI[3];
+			u8	Type;
+		}SuitSelector;
+	};
+}SUITE_SELECTOR;
+
+//--  WPA  --
+struct	RSN_Information_Element
+{
+	u8					Element_ID;
+	u8					Length;
+	UNALIGNED SUITE_SELECTOR	OuiWPAAdditional;//WPA version 2.0 additional field, and should be 00:50:F2:01
+	u16					Version;
+	SUITE_SELECTOR		GroupKeySuite;
+	u16					PairwiseKeySuiteCount;
+	SUITE_SELECTOR		PairwiseKeySuite[1];
+}__attribute__ ((packed));
+struct RSN_Auth_Sub_Information_Element
+{
+	u16				AuthKeyMngtSuiteCount;
+	SUITE_SELECTOR	AuthKeyMngtSuite[1];
+}__attribute__ ((packed));
+
+//--  WPA2  --
+struct RSN_Capability_Element
+{
+  union
+  {
+	u16	__attribute__ ((packed))	wValue;
+    #ifdef _BIG_ENDIAN_	 //20060927 add by anson's endian
+    struct _RSN_Capability
+    {
+    	u16   __attribute__ ((packed))  Reserved2 : 8; // 20051201
+	u16   __attribute__ ((packed))  Reserved1 : 2;
+	u16   __attribute__ ((packed))  GTK_Replay_Counter : 2;
+	u16   __attribute__ ((packed))  PTK_Replay_Counter : 2;
+	u16   __attribute__ ((packed))  No_Pairwise : 1;
+        u16   __attribute__ ((packed))  Pre_Auth : 1;
+    }__attribute__ ((packed))  RSN_Capability;
+    #else
+    struct _RSN_Capability
+    {
+        u16   __attribute__ ((packed))  Pre_Auth : 1;
+        u16   __attribute__ ((packed))  No_Pairwise : 1;
+        u16   __attribute__ ((packed))  PTK_Replay_Counter : 2;
+	    u16   __attribute__ ((packed))  GTK_Replay_Counter : 2;
+	    u16   __attribute__ ((packed))  Reserved1 : 2;
+	    u16   __attribute__ ((packed))  Reserved2 : 8; // 20051201
+    }__attribute__ ((packed))  RSN_Capability;
+    #endif
+
+  }__attribute__ ((packed)) ;
+}__attribute__ ((packed)) ;
+
+#ifdef _WPA2_
+typedef struct _PMKID
+{
+  u8 pValue[16];
+}PMKID;
+
+struct	WPA2_RSN_Information_Element
+{
+	u8					Element_ID;
+	u8					Length;
+	u16					Version;
+	SUITE_SELECTOR		GroupKeySuite;
+	u16					PairwiseKeySuiteCount;
+	SUITE_SELECTOR		PairwiseKeySuite[1];
+
+}__attribute__ ((packed));
+
+struct WPA2_RSN_Auth_Sub_Information_Element
+{
+	u16				AuthKeyMngtSuiteCount;
+	SUITE_SELECTOR	AuthKeyMngtSuite[1];
+}__attribute__ ((packed));
+
+
+struct PMKID_Information_Element
+{
+	u16				PMKID_Count;
+	PMKID pmkid [16] ;
+}__attribute__ ((packed));
+
+#endif //enddef _WPA2_
+//============================================================
+// MAC Frame structure (different type) and subfield structure
+//============================================================
+struct MAC_frame_control
+{
+    u8    mac_frame_info; // a combination of the [Protocol Version, Control Type, Control Subtype]
+    #ifdef _BIG_ENDIAN_ //20060927 add by anson's endian
+    u8    order:1;
+    u8    WEP:1;
+    u8    more_data:1;
+    u8    pwr_mgt:1;
+    u8    retry:1;
+    u8    more_frag:1;
+    u8    from_ds:1;
+    u8    to_ds:1;
+    #else
+    u8    to_ds:1;
+    u8    from_ds:1;
+    u8    more_frag:1;
+    u8    retry:1;
+    u8    pwr_mgt:1;
+    u8    more_data:1;
+    u8    WEP:1;
+    u8    order:1;
+    #endif
+} __attribute__ ((packed));
+
+struct Management_Frame {
+    struct MAC_frame_control frame_control; // 2B, ToDS,FromDS,MoreFrag,MoreData,Order=0
+    u16		duration;
+    u8		DA[MAC_ADDR_LENGTH];			// Addr1
+    u8		SA[MAC_ADDR_LENGTH];			// Addr2
+    u8		BSSID[MAC_ADDR_LENGTH];			// Addr3
+    u16		Sequence_Control;
+    // Management Frame Body <= 325 bytes
+    // FCS 4 bytes
+}__attribute__ ((packed));
+
+// SW-MAC don't Tx/Rx Control-Frame, HW-MAC do it.
+struct Control_Frame {
+    struct MAC_frame_control frame_control; // ToDS,FromDS,MoreFrag,Retry,MoreData,WEP,Order=0
+    u16		duration;
+    u8		RA[MAC_ADDR_LENGTH];
+    u8		TA[MAC_ADDR_LENGTH];
+    u16		FCS;
+}__attribute__ ((packed));
+
+struct Data_Frame {
+    struct MAC_frame_control frame_control;
+    u16		duration;
+    u8		Addr1[MAC_ADDR_LENGTH];
+    u8		Addr2[MAC_ADDR_LENGTH];
+    u8		Addr3[MAC_ADDR_LENGTH];
+    u16		Sequence_Control;
+    u8		Addr4[MAC_ADDR_LENGTH]; // only exist when ToDS=FromDS=1
+    // Data Frame Body <= 2312
+    // FCS
+}__attribute__ ((packed));
+
+struct Disassociation_Frame_Body
+{
+    u16    reasonCode;
+}__attribute__ ((packed));
+
+struct Association_Request_Frame_Body
+{
+    u16    capability_information;
+    u16    listenInterval;
+    u8     Current_AP_Address[MAC_ADDR_LENGTH];//for reassociation only
+    // SSID (2+32 bytes)
+    // Supported_Rates (2+8 bytes)
+}__attribute__ ((packed));
+
+struct Association_Response_Frame_Body
+{
+    u16    capability_information;
+    u16    statusCode;
+    u16    Association_ID;
+    struct Supported_Rates_Element supportedRates;
+}__attribute__ ((packed));
+
+/*struct Reassociation_Request_Frame_Body
+{
+    u16    capability_information;
+    u16    listenInterval;
+    u8     Current_AP_Address[MAC_ADDR_LENGTH];
+    // SSID (2+32 bytes)
+    // Supported_Rates (2+8 bytes)
+};*/
+// eliminated by WS 07/22/04 comboined with associateion request frame.
+
+struct Reassociation_Response_Frame_Body
+{
+    u16    capability_information;
+    u16    statusCode;
+    u16    Association_ID;
+    struct Supported_Rates_Element supportedRates;
+}__attribute__ ((packed));
+
+struct Deauthentication_Frame_Body
+{
+    u16    reasonCode;
+}__attribute__ ((packed));
+
+
+struct Probe_Response_Frame_Body
+{
+    u16    Timestamp;
+    u16    Beacon_Interval;
+    u16    Capability_Information;
+    // SSID
+    // Supported_Rates
+    // PHY parameter Set (DS Parameters)
+    // CF parameter Set
+    // IBSS parameter Set
+}__attribute__ ((packed));
+
+struct Authentication_Frame_Body
+{
+    u16    algorithmNumber;
+    u16    sequenceNumber;
+    u16    statusCode;
+    // NB: don't include ChallengeText in this structure
+	// struct Challenge_Text_Element sChallengeTextElement; // wkchen added
+}__attribute__ ((packed));
+
+
+#endif // _MAC_Structure_H_
+
+
diff --git a/drivers/staging/winbond/mds.c b/drivers/staging/winbond/mds.c
new file mode 100644
index 0000000..8ce6389
--- /dev/null
+++ b/drivers/staging/winbond/mds.c
@@ -0,0 +1,630 @@
+#include "os_common.h"
+
+void
+Mds_reset_descriptor(PADAPTER Adapter)
+{
+	PMDS pMds = &Adapter->Mds;
+
+	pMds->TxPause = 0;
+	pMds->TxThreadCount = 0;
+	pMds->TxFillIndex = 0;
+	pMds->TxDesIndex = 0;
+	pMds->ScanTxPause = 0;
+	memset(pMds->TxOwner, 0, ((MAX_USB_TX_BUFFER_NUMBER + 3) & ~0x03));
+}
+
+unsigned char
+Mds_initial(PADAPTER Adapter)
+{
+	PMDS pMds = &Adapter->Mds;
+
+	pMds->TxPause = FALSE;
+	pMds->TxRTSThreshold = DEFAULT_RTSThreshold;
+	pMds->TxFragmentThreshold = DEFAULT_FRAGMENT_THRESHOLD;
+
+	vRxTimerInit(Adapter);//for WPA countermeasure
+
+	return hal_get_tx_buffer( &Adapter->sHwData, &pMds->pTxBuffer );
+}
+
+void
+Mds_Destroy(PADAPTER Adapter)
+{
+	vRxTimerStop(Adapter);
+}
+
+void
+Mds_Tx(PADAPTER Adapter)
+{
+	phw_data_t	pHwData = &Adapter->sHwData;
+	PMDS		pMds = &Adapter->Mds;
+	DESCRIPTOR	TxDes;
+	PDESCRIPTOR	pTxDes = &TxDes;
+	PUCHAR		XmitBufAddress;
+	u16		XmitBufSize, PacketSize, stmp, CurrentSize, FragmentThreshold;
+	u8		FillIndex, TxDesIndex, FragmentCount, FillCount;
+	unsigned char	BufferFilled = FALSE, MICAdd = 0;
+
+
+	if (pMds->TxPause)
+		return;
+	if (!hal_driver_init_OK(pHwData))
+		return;
+
+	//Only one thread can be run here
+	if (!OS_ATOMIC_INC( Adapter, &pMds->TxThreadCount) == 1)
+		goto cleanup;
+
+	// Start to fill the data
+	do {
+		FillIndex = pMds->TxFillIndex;
+		if (pMds->TxOwner[FillIndex]) { // Is owned by software 0:Yes 1:No
+#ifdef _PE_TX_DUMP_
+			WBDEBUG(("[Mds_Tx] Tx Owner is H/W.\n"));
+#endif
+			break;
+		}
+
+		XmitBufAddress = pMds->pTxBuffer + (MAX_USB_TX_BUFFER * FillIndex); //Get buffer
+		XmitBufSize = 0;
+		FillCount = 0;
+		do {
+			PacketSize = Adapter->sMlmeFrame.len;
+			if (!PacketSize)
+				break;
+
+			//For Check the buffer resource
+			FragmentThreshold = CURRENT_FRAGMENT_THRESHOLD;
+			//931130.5.b
+			FragmentCount = PacketSize/FragmentThreshold + 1;
+			stmp = PacketSize + FragmentCount*32 + 8;//931130.5.c 8:MIC
+			if ((XmitBufSize + stmp) >= MAX_USB_TX_BUFFER) {
+				printk("[Mds_Tx] Excess max tx buffer.\n");
+				break; // buffer is not enough
+			}
+
+
+			//
+			// Start transmitting
+			//
+			BufferFilled = TRUE;
+
+			/* Leaves first u8 intact */
+			memset((PUCHAR)pTxDes + 1, 0, sizeof(DESCRIPTOR) - 1);
+
+			TxDesIndex = pMds->TxDesIndex;//Get the current ID
+			pTxDes->Descriptor_ID = TxDesIndex;
+			pMds->TxDesFrom[ TxDesIndex ] = 2;//Storing the information of source comming from
+			pMds->TxDesIndex++;
+			pMds->TxDesIndex %= MAX_USB_TX_DESCRIPTOR;
+
+			MLME_GetNextPacket( Adapter, pTxDes );
+
+			// Copy header. 8byte USB + 24byte 802.11Hdr. Set TxRate, Preamble type
+			Mds_HeaderCopy( Adapter, pTxDes, XmitBufAddress );
+
+			// For speed up Key setting
+			if (pTxDes->EapFix) {
+#ifdef _PE_TX_DUMP_
+				WBDEBUG(("35: EPA 4th frame detected. Size = %d\n", PacketSize));
+#endif
+				pHwData->IsKeyPreSet = 1;
+			}
+
+			// Copy (fragment) frame body, and set USB, 802.11 hdr flag
+			CurrentSize = Mds_BodyCopy(Adapter, pTxDes, XmitBufAddress);
+
+			// Set RTS/CTS and Normal duration field into buffer
+			Mds_DurationSet(Adapter, pTxDes, XmitBufAddress);
+
+			//
+			// Calculation MIC from buffer which maybe fragment, then fill into temporary address 8 byte
+			// 931130.5.e
+			if (MICAdd)
+				Mds_MicFill( Adapter, pTxDes, XmitBufAddress );
+
+			//Shift to the next address
+			XmitBufSize += CurrentSize;
+			XmitBufAddress += CurrentSize;
+
+#ifdef _IBSS_BEACON_SEQ_STICK_
+			if ((XmitBufAddress[ DOT_11_DA_OFFSET+8 ] & 0xfc) != MAC_SUBTYPE_MNGMNT_PROBE_REQUEST) // +8 for USB hdr
+#endif
+				pMds->TxToggle = TRUE;
+
+			// Get packet to transmit completed, 1:TESTSTA 2:MLME 3: Ndis data
+			MLME_SendComplete(Adapter, 0, TRUE);
+
+			// Software TSC count 20060214
+			pMds->TxTsc++;
+			if (pMds->TxTsc == 0)
+				pMds->TxTsc_2++;
+
+			FillCount++; // 20060928
+		} while (HAL_USB_MODE_BURST(pHwData)); // End of multiple MSDU copy loop. FALSE = single TRUE = multiple sending
+
+		// Move to the next one, if necessary
+		if (BufferFilled) {
+			// size setting
+			pMds->TxBufferSize[ FillIndex ] = XmitBufSize;
+
+			// 20060928 set Tx count
+			pMds->TxCountInBuffer[FillIndex] = FillCount;
+
+			// Set owner flag
+			pMds->TxOwner[FillIndex] = 1;
+
+			pMds->TxFillIndex++;
+			pMds->TxFillIndex %= MAX_USB_TX_BUFFER_NUMBER;
+			BufferFilled = FALSE;
+		} else
+			break;
+
+		if (!PacketSize) // No more pk for transmitting
+			break;
+
+	} while(TRUE);
+
+	//
+	// Start to send by lower module
+	//
+	if (!pHwData->IsKeyPreSet)
+		Wb35Tx_start(pHwData);
+
+ cleanup:
+	OS_ATOMIC_DEC( Adapter, &pMds->TxThreadCount );
+}
+
+void
+Mds_SendComplete(PADAPTER Adapter, PT02_DESCRIPTOR pT02)
+{
+	PMDS	pMds = &Adapter->Mds;
+	phw_data_t	pHwData = &Adapter->sHwData;
+	u8	PacketId = (u8)pT02->T02_Tx_PktID;
+	unsigned char	SendOK = TRUE;
+	u8	RetryCount, TxRate;
+
+	if (pT02->T02_IgnoreResult) // Don't care the result
+		return;
+	if (pT02->T02_IsLastMpdu) {
+		//TODO: DTO -- get the retry count and fragment count
+		// Tx rate
+		TxRate = pMds->TxRate[ PacketId ][ 0 ];
+		RetryCount = (u8)pT02->T02_MPDU_Cnt;
+		if (pT02->value & FLAG_ERROR_TX_MASK) {
+			SendOK = FALSE;
+
+			if (pT02->T02_transmit_abort || pT02->T02_out_of_MaxTxMSDULiftTime) {
+				//retry error
+				pHwData->dto_tx_retry_count += (RetryCount+1);
+				//[for tx debug]
+				if (RetryCount<7)
+					pHwData->tx_retry_count[RetryCount] += RetryCount;
+				else
+					pHwData->tx_retry_count[7] += RetryCount;
+				#ifdef _PE_STATE_DUMP_
+				WBDEBUG(("dto_tx_retry_count =%d\n", pHwData->dto_tx_retry_count));
+				#endif
+				MTO_SetTxCount(Adapter, TxRate, RetryCount);
+			}
+			pHwData->dto_tx_frag_count += (RetryCount+1);
+
+			//[for tx debug]
+			if (pT02->T02_transmit_abort_due_to_TBTT)
+				pHwData->tx_TBTT_start_count++;
+			if (pT02->T02_transmit_without_encryption_due_to_wep_on_false)
+				pHwData->tx_WepOn_false_count++;
+			if (pT02->T02_discard_due_to_null_wep_key)
+				pHwData->tx_Null_key_count++;
+		} else {
+			if (pT02->T02_effective_transmission_rate)
+				pHwData->tx_ETR_count++;
+			MTO_SetTxCount(Adapter, TxRate, RetryCount);
+		}
+
+		// Clear send result buffer
+		pMds->TxResult[ PacketId ] = 0;
+	} else
+		pMds->TxResult[ PacketId ] |= ((u16)(pT02->value & 0x0ffff));
+}
+
+void
+Mds_HeaderCopy(PADAPTER Adapter, PDESCRIPTOR pDes, PUCHAR TargetBuffer)
+{
+	PMDS	pMds = &Adapter->Mds;
+	PUCHAR	src_buffer = pDes->buffer_address[0];//931130.5.g
+	PT00_DESCRIPTOR	pT00;
+	PT01_DESCRIPTOR	pT01;
+	u16	stmp;
+	u8	i, ctmp1, ctmp2, ctmpf;
+	u16	FragmentThreshold = CURRENT_FRAGMENT_THRESHOLD;
+
+
+	stmp = pDes->buffer_total_size;
+	//
+	// Set USB header 8 byte
+	//
+	pT00 = (PT00_DESCRIPTOR)TargetBuffer;
+	TargetBuffer += 4;
+	pT01 = (PT01_DESCRIPTOR)TargetBuffer;
+	TargetBuffer += 4;
+
+	pT00->value = 0;// Clear
+	pT01->value = 0;// Clear
+
+	pT00->T00_tx_packet_id = pDes->Descriptor_ID;// Set packet ID
+	pT00->T00_header_length = 24;// Set header length
+	pT01->T01_retry_abort_ebable = 1;//921013 931130.5.h
+
+	// Key ID setup
+	pT01->T01_wep_id = 0;
+
+	FragmentThreshold = DEFAULT_FRAGMENT_THRESHOLD;	//Do not fragment
+	// Copy full data, the 1'st buffer contain all the data 931130.5.j
+	memcpy( TargetBuffer, src_buffer, DOT_11_MAC_HEADER_SIZE );// Copy header
+	pDes->buffer_address[0] = src_buffer + DOT_11_MAC_HEADER_SIZE;
+	pDes->buffer_total_size -= DOT_11_MAC_HEADER_SIZE;
+	pDes->buffer_size[0] = pDes->buffer_total_size;
+
+	// Set fragment threshold
+	FragmentThreshold -= (DOT_11_MAC_HEADER_SIZE + 4);
+	pDes->FragmentThreshold = FragmentThreshold;
+
+	// Set more frag bit
+	TargetBuffer[1] |= 0x04;// Set more frag bit
+
+	//
+	// Set tx rate
+	//
+	stmp = *(PUSHORT)(TargetBuffer+30); // 2n alignment address
+
+	//Use basic rate
+	ctmp1 = ctmpf = CURRENT_TX_RATE_FOR_MNG;
+
+	pDes->TxRate = ctmp1;
+	#ifdef _PE_TX_DUMP_
+	WBDEBUG(("Tx rate =%x\n", ctmp1));
+	#endif
+
+	pT01->T01_modulation_type = (ctmp1%3) ? 0 : 1;
+
+	for( i=0; i<2; i++ ) {
+		if( i == 1 )
+			ctmp1 = ctmpf;
+
+		pMds->TxRate[pDes->Descriptor_ID][i] = ctmp1; // backup the ta rate and fall back rate
+
+		if( ctmp1 == 108) ctmp2 = 7;
+		else if( ctmp1 == 96 ) ctmp2 = 6; // Rate convert for USB
+		else if( ctmp1 == 72 ) ctmp2 = 5;
+		else if( ctmp1 == 48 ) ctmp2 = 4;
+		else if( ctmp1 == 36 ) ctmp2 = 3;
+		else if( ctmp1 == 24 ) ctmp2 = 2;
+		else if( ctmp1 == 18 ) ctmp2 = 1;
+		else if( ctmp1 == 12 ) ctmp2 = 0;
+		else if( ctmp1 == 22 ) ctmp2 = 3;
+		else if( ctmp1 == 11 ) ctmp2 = 2;
+		else if( ctmp1 == 4  ) ctmp2 = 1;
+		else ctmp2 = 0; // if( ctmp1 == 2  ) or default
+
+		if( i == 0 )
+			pT01->T01_transmit_rate = ctmp2;
+		else
+			pT01->T01_fall_back_rate = ctmp2;
+	}
+
+	//
+	// Set preamble type
+	//
+	if ((pT01->T01_modulation_type == 0) && (pT01->T01_transmit_rate == 0))	// RATE_1M
+		pDes->PreambleMode =  WLAN_PREAMBLE_TYPE_LONG;
+	else
+		pDes->PreambleMode =  CURRENT_PREAMBLE_MODE;
+	pT01->T01_plcp_header_length = pDes->PreambleMode;	// Set preamble
+
+}
+
+// The function return the 4n size of usb pk
+u16
+Mds_BodyCopy(PADAPTER Adapter, PDESCRIPTOR pDes, PUCHAR TargetBuffer)
+{
+	PT00_DESCRIPTOR	pT00;
+	PMDS	pMds = &Adapter->Mds;
+	PUCHAR	buffer, src_buffer, pctmp;
+	u16	Size = 0;
+	u16	SizeLeft, CopySize, CopyLeft, stmp;
+	u8	buf_index, FragmentCount = 0;
+
+
+	// Copy fragment body
+	buffer = TargetBuffer; // shift 8B usb + 24B 802.11
+	SizeLeft = pDes->buffer_total_size;
+	buf_index = pDes->buffer_start_index;
+
+	pT00 = (PT00_DESCRIPTOR)buffer;
+	while (SizeLeft) {
+		pT00 = (PT00_DESCRIPTOR)buffer;
+		CopySize = SizeLeft;
+		if (SizeLeft > pDes->FragmentThreshold) {
+			CopySize = pDes->FragmentThreshold;
+			pT00->T00_frame_length = 24 + CopySize;//Set USB length
+		} else
+			pT00->T00_frame_length = 24 + SizeLeft;//Set USB length
+
+		SizeLeft -= CopySize;
+
+		// 1 Byte operation
+		pctmp = (PUCHAR)( buffer + 8 + DOT_11_SEQUENCE_OFFSET );
+		*pctmp &= 0xf0;
+		*pctmp |= FragmentCount;//931130.5.m
+		if( !FragmentCount )
+			pT00->T00_first_mpdu = 1;
+
+		buffer += 32; // 8B usb + 24B 802.11 header
+		Size += 32;
+
+		// Copy into buffer
+		stmp = CopySize + 3;
+		stmp &= ~0x03;//4n Alignment
+		Size += stmp;// Current 4n offset of mpdu
+
+		while (CopySize) {
+			// Copy body
+			src_buffer = pDes->buffer_address[buf_index];
+			CopyLeft = CopySize;
+			if (CopySize >= pDes->buffer_size[buf_index]) {
+				CopyLeft = pDes->buffer_size[buf_index];
+
+				// Get the next buffer of descriptor
+				buf_index++;
+				buf_index %= MAX_DESCRIPTOR_BUFFER_INDEX;
+			} else {
+				PUCHAR	pctmp = pDes->buffer_address[buf_index];
+				pctmp += CopySize;
+				pDes->buffer_address[buf_index] = pctmp;
+				pDes->buffer_size[buf_index] -= CopySize;
+			}
+
+			memcpy(buffer, src_buffer, CopyLeft);
+			buffer += CopyLeft;
+			CopySize -= CopyLeft;
+		}
+
+		// 931130.5.n
+		if (pMds->MicAdd) {
+			if (!SizeLeft) {
+				pMds->MicWriteAddress[ pMds->MicWriteIndex ] = buffer - pMds->MicAdd;
+				pMds->MicWriteSize[ pMds->MicWriteIndex ] = pMds->MicAdd;
+				pMds->MicAdd = 0;
+			}
+			else if( SizeLeft < 8 ) //931130.5.p
+			{
+				pMds->MicAdd = SizeLeft;
+				pMds->MicWriteAddress[ pMds->MicWriteIndex ] = buffer - ( 8 - SizeLeft );
+				pMds->MicWriteSize[ pMds->MicWriteIndex ] = 8 - SizeLeft;
+				pMds->MicWriteIndex++;
+			}
+		}
+
+		// Does it need to generate the new header for next mpdu?
+		if (SizeLeft) {
+			buffer = TargetBuffer + Size; // Get the next 4n start address
+			memcpy( buffer, TargetBuffer, 32 );//Copy 8B USB +24B 802.11
+			pT00 = (PT00_DESCRIPTOR)buffer;
+			pT00->T00_first_mpdu = 0;
+		}
+
+		FragmentCount++;
+	}
+
+	pT00->T00_last_mpdu = 1;
+	pT00->T00_IsLastMpdu = 1;
+	buffer = (PUCHAR)pT00 + 8; // +8 for USB hdr
+	buffer[1] &= ~0x04; // Clear more frag bit of 802.11 frame control
+	pDes->FragmentCount = FragmentCount; // Update the correct fragment number
+	return Size;
+}
+
+
+void
+Mds_DurationSet(  PADAPTER Adapter,  PDESCRIPTOR pDes,  PUCHAR buffer )
+{
+	PT00_DESCRIPTOR	pT00;
+	PT01_DESCRIPTOR	pT01;
+	u16	Duration, NextBodyLen, OffsetSize;
+	u8	Rate, i;
+	unsigned char	CTS_on = FALSE, RTS_on = FALSE;
+	PT00_DESCRIPTOR pNextT00;
+	u16 BodyLen;
+	unsigned char boGroupAddr = FALSE;
+
+
+	OffsetSize = pDes->FragmentThreshold + 32 + 3;
+	OffsetSize &= ~0x03;
+	Rate = pDes->TxRate >> 1;
+	if (!Rate)
+		Rate = 1;
+
+	pT00 = (PT00_DESCRIPTOR)buffer;
+	pT01 = (PT01_DESCRIPTOR)(buffer+4);
+	pNextT00 = (PT00_DESCRIPTOR)(buffer+OffsetSize);
+
+	if( buffer[ DOT_11_DA_OFFSET+8 ] & 0x1 ) // +8 for USB hdr
+		boGroupAddr = TRUE;
+
+	//========================================
+	// Set RTS/CTS mechanism
+	//========================================
+	if (!boGroupAddr)
+	{
+		//NOTE : If the protection mode is enabled and the MSDU will be fragmented,
+		//		 the tx rates of MPDUs will all be DSSS rates. So it will not use
+		//		 CTS-to-self in this case. CTS-To-self will only be used when without
+		//		 fragmentation. -- 20050112
+		BodyLen = (u16)pT00->T00_frame_length;	//include 802.11 header
+		BodyLen += 4;	//CRC
+
+		if( BodyLen >= CURRENT_RTS_THRESHOLD )
+			RTS_on = TRUE; // Using RTS
+		else
+		{
+			if( pT01->T01_modulation_type ) // Is using OFDM
+			{
+				if( CURRENT_PROTECT_MECHANISM ) // Is using protect
+					CTS_on = TRUE; // Using CTS
+			}
+		}
+	}
+
+	if( RTS_on || CTS_on )
+	{
+		if( pT01->T01_modulation_type) // Is using OFDM
+		{
+			//CTS duration
+			// 2 SIFS + DATA transmit time + 1 ACK
+			// ACK Rate : 24 Mega bps
+			// ACK frame length = 14 bytes
+			Duration = 2*DEFAULT_SIFSTIME +
+					   2*PREAMBLE_PLUS_SIGNAL_PLUS_SIGNALEXTENSION +
+					   ((BodyLen*8 + 22 + Rate*4 - 1)/(Rate*4))*Tsym +
+					   ((112 + 22 + 95)/96)*Tsym;
+		}
+		else	//DSSS
+		{
+			//CTS duration
+			// 2 SIFS + DATA transmit time + 1 ACK
+			// Rate : ?? Mega bps
+			// ACK frame length = 14 bytes
+			if( pT01->T01_plcp_header_length ) //long preamble
+				Duration = LONG_PREAMBLE_PLUS_PLCPHEADER_TIME*2;
+			else
+				Duration = SHORT_PREAMBLE_PLUS_PLCPHEADER_TIME*2;
+
+			Duration += ( ((BodyLen + 14)*8 + Rate-1) / Rate +
+						DEFAULT_SIFSTIME*2 );
+		}
+
+		if( RTS_on )
+		{
+			if( pT01->T01_modulation_type ) // Is using OFDM
+			{
+				//CTS + 1 SIFS + CTS duration
+				//CTS Rate : 24 Mega bps
+				//CTS frame length = 14 bytes
+				Duration += (DEFAULT_SIFSTIME +
+								PREAMBLE_PLUS_SIGNAL_PLUS_SIGNALEXTENSION +
+								((112 + 22 + 95)/96)*Tsym);
+			}
+			else
+			{
+				//CTS + 1 SIFS + CTS duration
+				//CTS Rate : ?? Mega bps
+				//CTS frame length = 14 bytes
+				if( pT01->T01_plcp_header_length ) //long preamble
+					Duration += LONG_PREAMBLE_PLUS_PLCPHEADER_TIME;
+				else
+					Duration += SHORT_PREAMBLE_PLUS_PLCPHEADER_TIME;
+
+				Duration += ( ((112 + Rate-1) / Rate) + DEFAULT_SIFSTIME );
+			}
+		}
+
+		// Set the value into USB descriptor
+		pT01->T01_add_rts = RTS_on ? 1 : 0;
+		pT01->T01_add_cts = CTS_on ? 1 : 0;
+		pT01->T01_rts_cts_duration = Duration;
+	}
+
+	//=====================================
+	// Fill the more fragment descriptor
+	//=====================================
+	if( boGroupAddr )
+		Duration = 0;
+	else
+	{
+		for( i=pDes->FragmentCount-1; i>0; i-- )
+		{
+			NextBodyLen = (u16)pNextT00->T00_frame_length;
+			NextBodyLen += 4;	//CRC
+
+			if( pT01->T01_modulation_type )
+			{
+				//OFDM
+				// data transmit time + 3 SIFS + 2 ACK
+				// Rate : ??Mega bps
+				// ACK frame length = 14 bytes, tx rate = 24M
+				Duration = PREAMBLE_PLUS_SIGNAL_PLUS_SIGNALEXTENSION * 3;
+				Duration += (((NextBodyLen*8 + 22 + Rate*4 - 1)/(Rate*4)) * Tsym +
+							(((2*14)*8 + 22 + 95)/96)*Tsym +
+							DEFAULT_SIFSTIME*3);
+			}
+			else
+			{
+				//DSSS
+				// data transmit time + 2 ACK + 3 SIFS
+				// Rate : ??Mega bps
+				// ACK frame length = 14 bytes
+				//TODO :
+				if( pT01->T01_plcp_header_length ) //long preamble
+					Duration = LONG_PREAMBLE_PLUS_PLCPHEADER_TIME*3;
+				else
+					Duration = SHORT_PREAMBLE_PLUS_PLCPHEADER_TIME*3;
+
+				Duration += ( ((NextBodyLen + (2*14))*8 + Rate-1) / Rate +
+							DEFAULT_SIFSTIME*3 );
+			}
+
+			((PUSHORT)buffer)[5] = cpu_to_le16(Duration);// 4 USHOR for skip 8B USB, 2USHORT=FC + Duration
+
+			//----20061009 add by anson's endian
+			pNextT00->value = cpu_to_le32(pNextT00->value);
+			pT01->value = cpu_to_le32( pT01->value );
+			//----end 20061009 add by anson's endian
+
+			buffer += OffsetSize;
+			pT01 = (PT01_DESCRIPTOR)(buffer+4);
+			if (i != 1)	//The last fragment will not have the next fragment
+				pNextT00 = (PT00_DESCRIPTOR)(buffer+OffsetSize);
+		}
+
+		//=====================================
+		// Fill the last fragment descriptor
+		//=====================================
+		if( pT01->T01_modulation_type )
+		{
+			//OFDM
+			// 1 SIFS + 1 ACK
+			// Rate : 24 Mega bps
+			// ACK frame length = 14 bytes
+			Duration = PREAMBLE_PLUS_SIGNAL_PLUS_SIGNALEXTENSION;
+			//The Tx rate of ACK use 24M
+			Duration += (((112 + 22 + 95)/96)*Tsym + DEFAULT_SIFSTIME );
+		}
+		else
+		{
+			// DSSS
+			// 1 ACK + 1 SIFS
+			// Rate : ?? Mega bps
+			// ACK frame length = 14 bytes(112 bits)
+			if( pT01->T01_plcp_header_length ) //long preamble
+				Duration = LONG_PREAMBLE_PLUS_PLCPHEADER_TIME;
+			else
+				Duration = SHORT_PREAMBLE_PLUS_PLCPHEADER_TIME;
+
+			Duration += ( (112 + Rate-1)/Rate +	DEFAULT_SIFSTIME );
+		}
+	}
+
+	((PUSHORT)buffer)[5] = cpu_to_le16(Duration);// 4 USHOR for skip 8B USB, 2USHORT=FC + Duration
+	pT00->value = cpu_to_le32(pT00->value);
+	pT01->value = cpu_to_le32(pT01->value);
+	//--end 20061009 add
+
+}
+
+void MDS_EthernetPacketReceive(  PADAPTER Adapter,  PRXLAYER1 pRxLayer1 )
+{
+		OS_RECEIVE_PACKET_INDICATE( Adapter, pRxLayer1 );
+}
+
+
diff --git a/drivers/staging/winbond/mds_f.h b/drivers/staging/winbond/mds_f.h
new file mode 100644
index 0000000..651188b
--- /dev/null
+++ b/drivers/staging/winbond/mds_f.h
@@ -0,0 +1,33 @@
+unsigned char Mds_initial(  PADAPTER Adapter );
+void Mds_Destroy(  PADAPTER Adapter );
+void Mds_Tx(  PADAPTER Adapter );
+void Mds_HeaderCopy(  PADAPTER Adapter,  PDESCRIPTOR pDes,  PUCHAR TargetBuffer );
+u16 Mds_BodyCopy(  PADAPTER Adapter,  PDESCRIPTOR pDes,  PUCHAR TargetBuffer );
+void Mds_DurationSet(  PADAPTER Adapter,  PDESCRIPTOR pDes,  PUCHAR TargetBuffer );
+void Mds_SendComplete(  PADAPTER Adapter,  PT02_DESCRIPTOR pT02 );
+void Mds_MpduProcess(  PADAPTER Adapter,  PDESCRIPTOR pRxDes );
+void Mds_reset_descriptor(  PADAPTER Adapter );
+extern void DataDmp(u8 *pdata, u32 len, u32 offset);
+
+
+void vRxTimerInit(PWB32_ADAPTER Adapter);
+void vRxTimerStart(PWB32_ADAPTER Adapter, int timeout_value);
+void RxTimerHandler_1a( PADAPTER Adapter);
+void vRxTimerStop(PWB32_ADAPTER Adapter);
+void RxTimerHandler( void*			SystemSpecific1,
+					   PWB32_ADAPTER 	Adapter,
+					   void*			SystemSpecific2,
+					   void*			SystemSpecific3);
+
+
+// For Asynchronous indicating. The routine collocates with USB.
+void Mds_MsduProcess(  PWB32_ADAPTER Adapter,  PRXLAYER1 pRxLayer1,  u8 SlotIndex);
+
+// For data frame sending 20060802
+u16 MDS_GetPacketSize(  PADAPTER Adapter );
+void MDS_GetNextPacket(  PADAPTER Adapter,  PDESCRIPTOR pDes );
+void MDS_GetNextPacketComplete(  PADAPTER Adapter,  PDESCRIPTOR pDes );
+void MDS_SendResult(  PADAPTER Adapter,  u8 PacketId,  unsigned char SendOK );
+void MDS_EthernetPacketReceive(  PADAPTER Adapter,  PRXLAYER1 pRxLayer1 );
+
+
diff --git a/drivers/staging/winbond/mds_s.h b/drivers/staging/winbond/mds_s.h
new file mode 100644
index 0000000..4738279
--- /dev/null
+++ b/drivers/staging/winbond/mds_s.h
@@ -0,0 +1,183 @@
+////////////////////////////////////////////////////////////////////////////////////////////////////////
+#define MAX_USB_TX_DESCRIPTOR		15		// IS89C35 ability
+#define MAX_USB_TX_BUFFER_NUMBER	4		// Virtual pre-buffer number of MAX_USB_TX_BUFFER
+#define MAX_USB_TX_BUFFER			4096	// IS89C35 ability 4n alignment is required for hardware
+
+#define MDS_EVENT_INDICATE( _A, _B, _F )	OS_EVENT_INDICATE( _A, _B, _F )
+#define AUTH_REQUEST_PAIRWISE_ERROR			0		// _F flag setting
+#define AUTH_REQUEST_GROUP_ERROR			1		// _F flag setting
+
+// For variable setting
+#define CURRENT_BSS_TYPE				psBSS(psLOCAL->wConnectedSTAindex)->bBssType
+#define CURRENT_WEP_MODE				psSME->_dot11PrivacyInvoked
+#define CURRENT_BSSID					psBSS(psLOCAL->wConnectedSTAindex)->abBssID
+#define CURRENT_DESIRED_WPA_ENABLE		((psSME->bDesiredAuthMode==WPA_AUTH)||(psSME->bDesiredAuthMode==WPAPSK_AUTH))
+#ifdef _WPA2_
+#define CURRENT_DESIRED_WPA2_ENABLE		((psSME->bDesiredAuthMode==WPA2_AUTH)||(psSME->bDesiredAuthMode==WPA2PSK_AUTH))
+#endif //end def _WPA2_
+#define CURRENT_PAIRWISE_KEY_OK			psSME->pairwise_key_ok
+//[20040712 WS]
+#define CURRENT_GROUP_KEY_OK			psSME->group_key_ok
+#define CURRENT_PAIRWISE_KEY			psSME->tx_mic_key
+#define CURRENT_GROUP_KEY				psSME->group_tx_mic_key
+#define CURRENT_ENCRYPT_STATUS			psSME->encrypt_status
+#define CURRENT_WEP_ID					Adapter->sSmePara._dot11WEPDefaultKeyID
+#define CURRENT_CONTROL_PORT_BLOCK		( psSME->wpa_ok!=1 || (Adapter->Mds.boCounterMeasureBlock==1 && (CURRENT_ENCRYPT_STATUS==ENCRYPT_TKIP)) )
+#define CURRENT_FRAGMENT_THRESHOLD		(Adapter->Mds.TxFragmentThreshold & ~0x1)
+#define CURRENT_PREAMBLE_MODE			psLOCAL->boShortPreamble?WLAN_PREAMBLE_TYPE_SHORT:WLAN_PREAMBLE_TYPE_LONG
+#define CURRENT_LINK_ON					OS_LINK_STATUS
+#define CURRENT_TX_RATE					Adapter->sLocalPara.CurrentTxRate
+#define CURRENT_FALL_BACK_TX_RATE		Adapter->sLocalPara.CurrentTxFallbackRate
+#define CURRENT_TX_RATE_FOR_MNG			Adapter->sLocalPara.CurrentTxRateForMng
+#define CURRENT_PROTECT_MECHANISM		psLOCAL->boProtectMechanism
+#define CURRENT_RTS_THRESHOLD			Adapter->Mds.TxRTSThreshold
+
+#define MIB_GS_XMIT_OK_INC				Adapter->sLocalPara.GS_XMIT_OK++
+#define MIB_GS_RCV_OK_INC				Adapter->sLocalPara.GS_RCV_OK++
+#define MIB_GS_XMIT_ERROR_INC			Adapter->sLocalPara.GS_XMIT_ERROR
+
+//---------- TX -----------------------------------
+#define ETHERNET_TX_DESCRIPTORS         MAX_USB_TX_BUFFER_NUMBER
+
+//---------- RX ------------------------------------
+#define ETHERNET_RX_DESCRIPTORS			8	//It's not necessary to allocate more than 2 in sync indicate
+
+//================================================================
+// Configration default value
+//================================================================
+#define DEFAULT_MULTICASTLISTMAX		32 		// standard
+#define DEFAULT_TX_BURSTLENGTH			3 		// 32 Longwords
+#define DEFAULT_RX_BURSTLENGTH			3 		// 32 Longwords
+#define DEFAULT_TX_THRESHOLD			0 		// Full Packet
+#define DEFAULT_RX_THRESHOLD			0 		// Full Packet
+#define DEFAULT_MAXTXRATE				6 		// 11 Mbps (Long)
+#define DEFAULT_CHANNEL					3 		// Chennel 3
+#define DEFAULT_RTSThreshold			2347 	// Disable RTS
+//#define DEFAULT_PME						1 		// Enable
+#define DEFAULT_PME						0 		// Disable
+#define DEFAULT_SIFSTIME				10
+#define DEFAULT_ACKTIME_1ML             304     // 148+44+112 911220 by LCC
+#define DEFAULT_ACKTIME_2ML             248     // 148+44+56 911220 by LCC
+#define DEFAULT_FRAGMENT_THRESHOLD      2346 	// No fragment
+#define DEFAULT_PREAMBLE_LENGTH			72
+#define DEFAULT_PLCPHEADERTIME_LENGTH	24
+
+/*------------------------------------------------------------------------
+ 0.96 sec since time unit of the R03 for the current, W89C32 is about 60ns
+ instead of 960 ns. This shall be fixed in the future W89C32
+ -------------------------------------------------------------------------*/
+#define DEFAULT_MAX_RECEIVE_TIME        16440000
+
+#define RX_BUF_SIZE						2352        // 600 	// For 301 must be multiple of 8
+#define MAX_RX_DESCRIPTORS              18         // Rx Layer 2
+#define MAX_BUFFER_QUEUE	8 // The value is always equal 8 due to NDIS_PACKET's MiniportReserved field size
+
+
+// For brand-new rx system
+#define MDS_ID_IGNORE				ETHERNET_RX_DESCRIPTORS
+
+// For Tx Packet status classify
+#define PACKET_FREE_TO_USE						0
+#define PACKET_COME_FROM_NDIS					0x08
+#define PACKET_COME_FROM_MLME					0x80
+#define PACKET_SEND_COMPLETE					0xff
+
+typedef struct _MDS
+{
+	// For Tx usage
+	u8	TxOwner[ ((MAX_USB_TX_BUFFER_NUMBER + 3) & ~0x03) ];
+	PUCHAR	pTxBuffer;
+	u16	TxBufferSize[ ((MAX_USB_TX_BUFFER_NUMBER + 1) & ~0x01) ];
+	u8	TxDesFrom[ ((MAX_USB_TX_DESCRIPTOR + 3) & ~0x03) ];//931130.4.u // 1: MLME 2: NDIS control 3: NDIS data
+	u8	TxCountInBuffer[ ((MAX_USB_TX_DESCRIPTOR + 3) & ~0x03) ]; // 20060928
+
+	u8	TxFillIndex;//the next index of TxBuffer can be used
+	u8	TxDesIndex;//The next index of TxDes can be used
+	u8	ScanTxPause;	//data Tx pause because the scanning is progressing, but probe request Tx won't.
+	u8	TxPause;//For pause the Mds_Tx modult
+
+	OS_ATOMIC	TxThreadCount;//For thread counting 931130.4.v
+//950301 delete due to HW
+//	OS_ATOMIC	TxConcurrentCount;//931130.4.w
+
+	u16	TxResult[ ((MAX_USB_TX_DESCRIPTOR + 1) & ~0x01) ];//Collect the sending result of Mpdu
+
+	u8	MicRedundant[8]; // For tmp use
+	PUCHAR	MicWriteAddress[2]; //The start address to fill the Mic, use 2 point due to Mic maybe fragment
+
+	u16	MicWriteSize[2]; //931130.4.x
+
+	u16	MicAdd; // If want to add the Mic, this variable equal to 8
+	u16	MicWriteIndex;//The number of MicWriteAddress 931130.4.y
+
+	u8	TxRate[ ((MAX_USB_TX_DESCRIPTOR+1)&~0x01) ][2]; // [0] current tx rate, [1] fall back rate
+	u8	TxInfo[ ((MAX_USB_TX_DESCRIPTOR+1)&~0x01) ];	//Store information for callback function
+
+	//WKCHEN added for scanning mechanism
+	u8	TxToggle;		//It is TRUE if there are tx activities in some time interval
+	u8	Reserved_[3];
+
+	//---------- for Tx Parameter
+	u16	TxFragmentThreshold;    	// For frame body only
+	u16	TxRTSThreshold;
+
+	u32		MaxReceiveTime;//911220.3 Add
+
+	// depend on OS,
+	u32					MulticastListNo;
+	u32					PacketFilter; // Setting by NDIS, the current packet filter in use.
+	u8					MulticastAddressesArray[DEFAULT_MULTICASTLISTMAX][MAC_ADDR_LENGTH];
+
+	//COUNTERMEASURE
+	u8		bMICfailCount;
+	u8		boCounterMeasureBlock;
+	u8		reserved_4[2];
+
+	//NDIS_MINIPORT_TIMER	nTimer;
+	OS_TIMER	nTimer;
+
+	u32	TxTsc; // 20060214
+	u32	TxTsc_2; // 20060214
+
+} MDS, *PMDS;
+
+
+typedef struct _RxBuffer
+{
+    PUCHAR  pBufferAddress;     // Pointer the received data buffer.
+	u16	BufferSize;
+	u8	RESERVED;
+	u8	BufferIndex;// Only 1 byte
+} RXBUFFER, *PRXBUFFER;
+
+//
+// Reveive Layer 1 Format.
+//----------------------------
+typedef struct _RXLAYER1
+{
+    u16  SequenceNumber;     // The sequence number of the last received packet.
+	u16	BufferTotalSize;
+
+	u32	InUsed;
+    u32   DecryptionMethod;   // The desired defragment number of the next incoming packet.
+
+	u8	DeFragmentNumber;
+	u8	FrameType;
+    u8	TypeEncapsulated;
+	u8	BufferNumber;
+
+	u32	FirstFrameArrivedTime;
+
+	RXBUFFER	BufferQueue[ MAX_BUFFER_QUEUE ];
+
+	u8		LastFrameType; // 20061004 for fix intel 3945 's bug
+	u8		RESERVED[3];  //@@ anson
+
+	/////////////////////////////////////////////////////////////////////////////////////////////
+	// For brand-new Rx system
+	u8	ReservedBuffer[ 2400 ];//If Buffer ID is reserved one, it must copy the data into this area
+	PUCHAR	ReservedBufferPoint;// Point to the next availabe address of reserved buffer
+
+}RXLAYER1, * PRXLAYER1;
+
+
diff --git a/drivers/staging/winbond/mlme_mib.h b/drivers/staging/winbond/mlme_mib.h
new file mode 100644
index 0000000..8975973
--- /dev/null
+++ b/drivers/staging/winbond/mlme_mib.h
@@ -0,0 +1,84 @@
+//============================================================================
+//  MLMEMIB.H -
+//
+//  Description:
+//    Get and Set some of MLME MIB attributes.
+//
+//  Revision history:
+//  --------------------------------------------------------------------------
+//           20030117  PD43 Austin Liu
+//                     Initial release
+//
+//  Copyright (c) 2003 Winbond Electronics Corp. All rights reserved.
+//============================================================================
+
+#ifndef _MLME_MIB_H
+#define _MLME_MIB_H
+
+//============================================================================
+// MLMESetExcludeUnencrypted --
+//
+// Description:
+//   Set the dot11ExcludeUnencrypted value.
+//
+// Arguments:
+//   Adapter        - The pointer to the miniport adapter context.
+//   ExUnencrypted  - unsigned char type. The value to be set.
+//
+// Return values:
+//   None.
+//============================================================================
+#define MLMESetExcludeUnencrypted(Adapter, ExUnencrypted)     \
+{                                                              \
+    (Adapter)->sLocalPara.ExcludeUnencrypted = ExUnencrypted;             \
+}
+
+//============================================================================
+// MLMEGetExcludeUnencrypted --
+//
+// Description:
+//   Get the dot11ExcludeUnencrypted value.
+//
+// Arguments:
+//   Adapter        - The pointer to the miniport adapter context.
+//
+// Return values:
+//   unsigned char type. The current dot11ExcludeUnencrypted value.
+//============================================================================
+#define MLMEGetExcludeUnencrypted(Adapter) ((unsigned char) (Adapter)->sLocalPara.ExcludeUnencrypted)
+
+//============================================================================
+// MLMESetMaxReceiveLifeTime --
+//
+// Description:
+//   Set the dot11MaxReceiveLifeTime value.
+//
+// Arguments:
+//   Adapter        - The pointer to the miniport adapter context.
+//   ReceiveLifeTime- u32 type. The value to be set.
+//
+// Return values:
+//   None.
+//============================================================================
+#define MLMESetMaxReceiveLifeTime(Adapter, ReceiveLifeTime)    \
+{                                                               \
+    (Adapter)->Mds.MaxReceiveTime = ReceiveLifeTime;                \
+}
+
+//============================================================================
+// MLMESetMaxReceiveLifeTime --
+//
+// Description:
+//   Get the dot11MaxReceiveLifeTime value.
+//
+// Arguments:
+//   Adapter        - The pointer to the miniport adapter context.
+//
+// Return values:
+//   u32 type. The current dot11MaxReceiveLifeTime value.
+//============================================================================
+#define MLMEGetMaxReceiveLifeTime(Adapter) ((u32) (Adapter)->Mds.MaxReceiveTime)
+
+#endif
+
+
diff --git a/drivers/staging/winbond/mlme_s.h b/drivers/staging/winbond/mlme_s.h
new file mode 100644
index 0000000..58094f6
--- /dev/null
+++ b/drivers/staging/winbond/mlme_s.h
@@ -0,0 +1,195 @@
+//+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
+//	Mlme.h
+//		Define the related definitions of MLME module
+//	history -- 01/14/03' created
+//
+//+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
+
+#define AUTH_REJECT_REASON_CHALLENGE_FAIL		1
+
+//====== the state of MLME module
+#define INACTIVE			0x0
+#define IDLE_SCAN			0x1
+
+//====== the state of MLME/ESS module
+#define STATE_1				0x2
+#define AUTH_REQ			0x3
+#define AUTH_WEP			0x4
+#define STATE_2				0x5
+#define ASSOC_REQ			0x6
+#define STATE_3				0x7
+
+//====== the state of MLME/IBSS module
+#define IBSS_JOIN_SYNC		0x8
+#define IBSS_AUTH_REQ		0x9
+#define IBSS_AUTH_CHANLGE	0xa
+#define IBSS_AUTH_WEP		0xb
+#define IBSS_AUTH_IND		0xc
+#define IBSS_STATE_2		0xd
+
+
+
+//=========================================
+//depend on D5C(MAC timing control 03 register): MaxTxMSDULifeTime default 0x80000us
+#define AUTH_FAIL_TIMEOUT		550
+#define ASSOC_FAIL_TIMEOUT		550
+#define REASSOC_FAIL_TIMEOUT	550
+
+
+
+//
+// MLME task global CONSTANTS, STRUCTURE, variables
+//
+
+
+/////////////////////////////////////////////////////////////
+//  enum_ResultCode --
+//  Result code returned from MLME to SME.
+//
+/////////////////////////////////////////////////////////////
+// PD43 20030829 Modifiled
+//#define	SUCCESS								0
+#define MLME_SUCCESS                        0 //follow spec.
+#define	INVALID_PARAMETERS					1 //Not following spec.
+#define	NOT_SUPPPORTED						2
+#define	TIMEOUT								3
+#define	TOO_MANY_SIMULTANEOUS_REQUESTS		4
+#define REFUSED								5
+#define	BSS_ALREADY_STARTED_OR_JOINED		6
+#define	TRANSMIT_FRAME_FAIL					7
+#define	NO_BSS_FOUND						8
+#define RETRY								9
+#define GIVE_UP								10
+
+
+#define OPEN_AUTH							0
+#define SHARE_AUTH							1
+#define ANY_AUTH							2
+#define WPA_AUTH							3	//for WPA
+#define WPAPSK_AUTH							4
+#define WPANONE_AUTH						5
+///////////////////////////////////////////// added by ws 04/19/04
+#ifdef _WPA2_
+#define WPA2_AUTH                           6//for WPA2
+#define WPA2PSK_AUTH                        7
+#endif //end def _WPA2_
+
+//////////////////////////////////////////////////////////////////
+//define the msg type of MLME module
+//////////////////////////////////////////////////////////////////
+//--------------------------------------------------------
+//from SME
+
+#define MLMEMSG_AUTH_REQ				0x0b
+#define MLMEMSG_DEAUTH_REQ				0x0c
+#define MLMEMSG_ASSOC_REQ				0x0d
+#define MLMEMSG_REASSOC_REQ				0x0e
+#define MLMEMSG_DISASSOC_REQ			0x0f
+#define MLMEMSG_START_IBSS_REQ			0x10
+#define MLMEMSG_IBSS_NET_CFM			0x11
+
+//from RX :
+#define MLMEMSG_RCV_MLMEFRAME			0x20
+#define MLMEMSG_RCV_ASSOCRSP			0x22
+#define MLMEMSG_RCV_REASSOCRSP			0x24
+#define MLMEMSG_RCV_DISASSOC			0x2b
+#define MLMEMSG_RCV_AUTH				0x2c
+#define MLMEMSG_RCV_DEAUTH				0x2d
+
+
+//from TX callback
+#define MLMEMSG_TX_CALLBACK				0x40
+#define MLMEMSG_ASSOCREQ_CALLBACK		0x41
+#define MLMEMSG_REASSOCREQ_CALLBACK		0x43
+#define MLMEMSG_DISASSOC_CALLBACK		0x4a
+#define MLMEMSG_AUTH_CALLBACK			0x4c
+#define MLMEMSG_DEAUTH_CALLBACK			0x4d
+
+//#define MLMEMSG_JOIN_FAIL				4
+//#define MLMEMSG_AUTHEN_FAIL			18
+#define MLMEMSG_TIMEOUT					0x50
+
+///////////////////////////////////////////////////////////////////////////
+//Global data structures
+#define MAX_NUM_TX_MMPDU	2
+#define MAX_MMPDU_SIZE		1512
+#define MAX_NUM_RX_MMPDU	6
+
+
+///////////////////////////////////////////////////////////////////////////
+//MACRO
+#define boMLME_InactiveState(_AA_)	(_AA_->wState==INACTIVE)
+#define boMLME_IdleScanState(_BB_)	(_BB_->wState==IDLE_SCAN)
+#define boMLME_FoundSTAinfo(_CC_)	(_CC_->wState>=IDLE_SCAN)
+
+typedef struct _MLME_FRAME
+{
+	//NDIS_PACKET		MLME_Packet;
+	PCHAR			pMMPDU;
+	u16			len;
+	u8			DataType;
+	u8			IsInUsed;
+
+	OS_SPIN_LOCK	MLMESpinLock;
+
+    u8		TxMMPDU[MAX_NUM_TX_MMPDU][MAX_MMPDU_SIZE];
+	u8		TxMMPDUInUse[ (MAX_NUM_TX_MMPDU+3) & ~0x03 ];
+
+	u16		wNumTxMMPDU;
+	u16		wNumTxMMPDUDiscarded;
+
+    u8		RxMMPDU[MAX_NUM_RX_MMPDU][MAX_MMPDU_SIZE];
+    u8	 	SaveRxBufSlotInUse[ (MAX_NUM_RX_MMPDU+3) & ~0x03 ];
+
+	u16		wNumRxMMPDU;
+	u16		wNumRxMMPDUDiscarded;
+
+	u16		wNumRxMMPDUInMLME; 	// Number of the Rx MMPDU
+	u16		reserved_1;			//  in MLME.
+                    	            //  excluding the discarded
+} MLME_FRAME, *psMLME_FRAME;
+
+typedef struct _AUTHREQ {
+
+	u8 	peerMACaddr[MAC_ADDR_LENGTH];
+	u16	wAuthAlgorithm;
+
+} MLME_AUTHREQ_PARA, *psMLME_AUTHREQ_PARA;
+
+struct _Reason_Code {
+
+	u8	peerMACaddr[MAC_ADDR_LENGTH];
+	u16	wReasonCode;
+};
+typedef struct _Reason_Code MLME_DEAUTHREQ_PARA, *psMLME_DEAUTHREQ_PARA;
+typedef struct _Reason_Code MLME_DISASSOCREQ_PARA, *psMLME_DISASSOCREQ_PARA;
+
+typedef struct _ASSOCREQ {
+  u8       PeerSTAAddr[MAC_ADDR_LENGTH];
+  u16       CapabilityInfo;
+  u16       ListenInterval;
+
+}__attribute__ ((packed)) MLME_ASSOCREQ_PARA, *psMLME_ASSOCREQ_PARA;
+
+typedef struct _REASSOCREQ {
+  u8       NewAPAddr[MAC_ADDR_LENGTH];
+  u16       CapabilityInfo;
+  u16       ListenInterval;
+
+}__attribute__ ((packed)) MLME_REASSOCREQ_PARA, *psMLME_REASSOCREQ_PARA;
+
+typedef struct _MLMECALLBACK {
+
+  u8 	*psFramePtr;
+  u8		bResult;
+
+} MLME_TXCALLBACK, *psMLME_TXCALLBACK;
+
+typedef struct _RXDATA
+{
+	s32		FrameLength;
+	u8	__attribute__ ((packed)) *pbFramePtr;
+
+}__attribute__ ((packed)) RXDATA, *psRXDATA;
+
+
diff --git a/drivers/staging/winbond/mlmetxrx.c b/drivers/staging/winbond/mlmetxrx.c
new file mode 100644
index 0000000..46b091e
--- /dev/null
+++ b/drivers/staging/winbond/mlmetxrx.c
@@ -0,0 +1,150 @@
+//============================================================================
+//  Module Name:
+//    MLMETxRx.C
+//
+//  Description:
+//    The interface between MDS (MAC Data Service) and MLME.
+//
+//  Revision History:
+//  --------------------------------------------------------------------------
+//          200209      UN20 Jennifer Xu
+//                      Initial Release
+//          20021108    PD43 Austin Liu
+//          20030117    PD43 Austin Liu
+//                      Deleted MLMEReturnPacket and MLMEProcThread()
+//
+//  Copyright (c) 1996-2002 Winbond Electronics Corp. All Rights Reserved.
+//============================================================================
+#include "os_common.h"
+
+void MLMEResetTxRx(PWB32_ADAPTER Adapter)
+{
+	s32     i;
+
+	// Reset the interface between MDS and MLME
+	for (i = 0; i < MAX_NUM_TX_MMPDU; i++)
+		Adapter->sMlmeFrame.TxMMPDUInUse[i] = FALSE;
+	for (i = 0; i < MAX_NUM_RX_MMPDU; i++)
+		Adapter->sMlmeFrame.SaveRxBufSlotInUse[i] = FALSE;
+
+	Adapter->sMlmeFrame.wNumRxMMPDUInMLME   = 0;
+	Adapter->sMlmeFrame.wNumRxMMPDUDiscarded = 0;
+	Adapter->sMlmeFrame.wNumRxMMPDU          = 0;
+	Adapter->sMlmeFrame.wNumTxMMPDUDiscarded = 0;
+	Adapter->sMlmeFrame.wNumTxMMPDU          = 0;
+	Adapter->sLocalPara.boCCAbusy    = FALSE;
+	Adapter->sLocalPara.iPowerSaveMode     = PWR_ACTIVE;     // Power active
+}
+
+//=============================================================================
+//	Function:
+//    MLMEGetMMPDUBuffer()
+//
+//	Description:
+//    Return the pointer to an available data buffer with
+//    the size MAX_MMPDU_SIZE for a MMPDU.
+//
+//  Arguments:
+//    Adapter   - pointer to the miniport adapter context.
+//
+//	Return value:
+//    NULL     : No available data buffer available
+//    Otherwise: Pointer to the data buffer
+//=============================================================================
+
+/* FIXME: Should this just be replaced with kmalloc() and kfree()? */
+u8 *MLMEGetMMPDUBuffer(PWB32_ADAPTER Adapter)
+{
+	s32 i;
+	u8 *returnVal;
+
+	for (i = 0; i< MAX_NUM_TX_MMPDU; i++) {
+		if (Adapter->sMlmeFrame.TxMMPDUInUse[i] == FALSE)
+			break;
+	}
+	if (i >= MAX_NUM_TX_MMPDU) return NULL;
+
+	returnVal = (u8 *)&(Adapter->sMlmeFrame.TxMMPDU[i]);
+	Adapter->sMlmeFrame.TxMMPDUInUse[i] = TRUE;
+
+	return returnVal;
+}
+
+//=============================================================================
+u8 MLMESendFrame(PWB32_ADAPTER Adapter, u8 *pMMPDU, u16 len, u8 DataType)
+/*	DataType : FRAME_TYPE_802_11_MANAGEMENT, FRAME_TYPE_802_11_MANAGEMENT_CHALLENGE,
+				FRAME_TYPE_802_11_DATA */
+{
+	if (Adapter->sMlmeFrame.IsInUsed != PACKET_FREE_TO_USE) {
+		Adapter->sMlmeFrame.wNumTxMMPDUDiscarded++;
+		return FALSE;
+	}
+	Adapter->sMlmeFrame.IsInUsed = PACKET_COME_FROM_MLME;
+
+	// Keep information for sending
+	Adapter->sMlmeFrame.pMMPDU = pMMPDU;
+	Adapter->sMlmeFrame.DataType = DataType;
+	// len must be the last setting due to QUERY_SIZE_SECOND of Mds
+	Adapter->sMlmeFrame.len = len;
+	Adapter->sMlmeFrame.wNumTxMMPDU++;
+
+	// H/W will enter power save by set the register. S/W don't send null frame
+	//with PWRMgt bit enbled to enter power save now.
+
+	// Transmit NDIS packet
+	Mds_Tx(Adapter);
+	return TRUE;
+}
+
+void
+MLME_GetNextPacket(PADAPTER Adapter, PDESCRIPTOR pDes)
+{
+#define DESCRIPTOR_ADD_BUFFER( _D, _A, _S ) \
+{\
+	_D->InternalUsed = _D->buffer_start_index + _D->buffer_number; \
+	_D->InternalUsed %= MAX_DESCRIPTOR_BUFFER_INDEX; \
+	_D->buffer_address[ _D->InternalUsed ] = _A; \
+	_D->buffer_size[ _D->InternalUsed ] = _S; \
+	_D->buffer_total_size += _S; \
+	_D->buffer_number++;\
+}
+
+	DESCRIPTOR_ADD_BUFFER( pDes, Adapter->sMlmeFrame.pMMPDU, Adapter->sMlmeFrame.len );
+	pDes->Type = Adapter->sMlmeFrame.DataType;
+}
+
+void MLMEfreeMMPDUBuffer(PWB32_ADAPTER Adapter, PCHAR pData)
+{
+	int i;
+
+	// Reclaim the data buffer
+	for (i = 0; i < MAX_NUM_TX_MMPDU; i++) {
+		if (pData == (PCHAR)&(Adapter->sMlmeFrame.TxMMPDU[i]))
+			break;
+	}
+	if (Adapter->sMlmeFrame.TxMMPDUInUse[i])
+		Adapter->sMlmeFrame.TxMMPDUInUse[i] = FALSE;
+	else  {
+		// Something wrong
+		// PD43 Add debug code here???
+	}
+}
+
+void
+MLME_SendComplete(PADAPTER Adapter, u8 PacketID, unsigned char SendOK)
+{
+	MLME_TXCALLBACK	TxCallback;
+
+    // Reclaim the data buffer
+	Adapter->sMlmeFrame.len = 0;
+	MLMEfreeMMPDUBuffer( Adapter, Adapter->sMlmeFrame.pMMPDU );
+
+
+	TxCallback.bResult = MLME_SUCCESS;
+
+	// Return resource
+	Adapter->sMlmeFrame.IsInUsed = PACKET_FREE_TO_USE;
+}
+
+
+
diff --git a/drivers/staging/winbond/mlmetxrx_f.h b/drivers/staging/winbond/mlmetxrx_f.h
new file mode 100644
index 0000000..d74e225
--- /dev/null
+++ b/drivers/staging/winbond/mlmetxrx_f.h
@@ -0,0 +1,52 @@
+//================================================================
+// MLMETxRx.H --
+//
+//   Functions defined in MLMETxRx.c.
+//
+// Copyright (c) 2002 Winbond Electrics Corp. All Rights Reserved.
+//================================================================
+#ifndef _MLMETXRX_H
+#define _MLMETXRX_H
+
+void
+MLMEProcThread(
+     PWB32_ADAPTER    Adapter
+	);
+
+void MLMEResetTxRx( PWB32_ADAPTER Adapter);
+
+u8 *
+MLMEGetMMPDUBuffer(
+     PWB32_ADAPTER    Adapter
+   );
+
+void MLMEfreeMMPDUBuffer( PWB32_ADAPTER Adapter,  PCHAR pData);
+
+void MLME_GetNextPacket(  PADAPTER Adapter,  PDESCRIPTOR pDes );
+u8 MLMESendFrame( PWB32_ADAPTER Adapter,
+					u8	*pMMPDU,
+					u16	len,
+					 u8	DataType);
+
+void
+MLME_SendComplete(  PWB32_ADAPTER Adapter,  u8 PacketID,  unsigned char SendOK );
+
+void
+MLMERcvFrame(
+     PWB32_ADAPTER    Adapter,
+     PRXBUFFER        pRxBufferArray,
+     u8            NumOfBuffer,
+     u8            ReturnSlotIndex
+	);
+
+void
+MLMEReturnPacket(
+     PWB32_ADAPTER    Adapter,
+     PUCHAR           pRxBufer
+   );
+#ifdef _IBSS_BEACON_SEQ_STICK_
+s8 SendBCNullData(PWB32_ADAPTER Adapter, u16 wIdx);
+#endif
+
+#endif
+
diff --git a/drivers/staging/winbond/mto.c b/drivers/staging/winbond/mto.c
new file mode 100644
index 0000000..2ef60e5
--- /dev/null
+++ b/drivers/staging/winbond/mto.c
@@ -0,0 +1,1229 @@
+//============================================================================
+//  MTO.C -
+//
+//  Description:
+//    MAC Throughput Optimization for W89C33 802.11g WLAN STA.
+//
+//    The following MIB attributes or internal variables will be affected
+//    while the MTO is being executed:
+//       dot11FragmentationThreshold,
+//       dot11RTSThreshold,
+//       transmission rate and PLCP preamble type,
+//       CCA mode,
+//       antenna diversity.
+//
+//  Revision history:
+//  --------------------------------------------------------------------------
+//           20031227  UN20 Pete Chao
+//                     First draft
+//  20031229           Turbo                copy from PD43
+//  20040210           Kevin                revised
+//  Copyright (c) 2003 Winbond Electronics Corp. All rights reserved.
+//============================================================================
+
+// LA20040210_DTO kevin
+#include "os_common.h"
+
+// Declare SQ3 to rate and fragmentation threshold table
+// Declare fragmentation thresholds table
+#define MTO_MAX_SQ3_LEVELS                      14
+#define MTO_MAX_FRAG_TH_LEVELS                  5
+#define MTO_MAX_DATA_RATE_LEVELS                12
+
+u16 MTO_Frag_Th_Tbl[MTO_MAX_FRAG_TH_LEVELS] =
+{
+    256, 384, 512, 768, 1536
+};
+
+u8  MTO_SQ3_Level[MTO_MAX_SQ3_LEVELS] =
+{
+    0, 26, 30, 32, 34, 35, 37, 42, 44, 46, 54, 62, 78, 81
+};
+u8  MTO_SQ3toRate[MTO_MAX_SQ3_LEVELS] =
+{
+    0, 1, 1, 2, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11
+};
+u8  MTO_SQ3toFrag[MTO_MAX_SQ3_LEVELS] =
+{
+    0, 2, 2, 3, 3, 4, 4, 4, 4, 4, 4, 4, 4, 4
+};
+
+// One Exchange Time table
+//
+u16 MTO_One_Exchange_Time_Tbl_l[MTO_MAX_FRAG_TH_LEVELS][MTO_MAX_DATA_RATE_LEVELS] =
+{
+    { 2554, 1474,  822,    0,    0,  636,    0,    0,    0,    0,    0,    0},
+    { 3578, 1986, 1009,    0,    0,  729,    0,    0,    0,    0,    0,    0},
+    { 4602, 2498, 1195,    0,    0,  822,    0,    0,    0,    0,    0,    0},
+    { 6650, 3522, 1567,    0,    0, 1009,    0,    0,    0,    0,    0,    0},
+    {12794, 6594, 2684,    0,    0, 1567,    0,    0,    0,    0,    0,    0}
+};
+
+u16 MTO_One_Exchange_Time_Tbl_s[MTO_MAX_FRAG_TH_LEVELS][MTO_MAX_DATA_RATE_LEVELS] =
+{
+    {    0, 1282,  630,  404,  288,  444,  232,  172,  144,  116,  100,   96},
+    {    0, 1794,  817,  572,  400,  537,  316,  228,  188,  144,  124,  116},
+    {    0, 2306, 1003,  744,  516,  630,  400,  288,  228,  172,  144,  136},
+    {    0, 3330, 1375, 1084,  744,  817,  572,  400,  316,  228,  188,  172},
+    {    0, 6402, 2492, 2108, 1424, 1375, 1084,  740,  572,  400,  316,  284}
+};
+
+#define MTO_ONE_EXCHANGE_TIME(preamble_type, frag_th_lvl, data_rate_lvl) \
+            (preamble_type) ?   MTO_One_Exchange_Time_Tbl_s[frag_th_lvl][data_rate_lvl] : \
+                                MTO_One_Exchange_Time_Tbl_l[frag_th_lvl][data_rate_lvl]
+
+// Declare data rate table
+//The following table will be changed at anytime if the opration rate supported by AP don't
+//match the table
+u8  MTO_Data_Rate_Tbl[MTO_MAX_DATA_RATE_LEVELS] =
+{
+    2, 4, 11, 22, 12, 18, 24, 36, 48, 72, 96, 108
+};
+
+//The Stardard_Data_Rate_Tbl and Level2PerTbl table is used to indirectly retreive PER
+//information from Rate_PER_TBL
+//The default settings is AP can support full rate set.
+static u8  Stardard_Data_Rate_Tbl[MTO_MAX_DATA_RATE_LEVELS] =
+{
+	2, 4, 11, 22, 12, 18, 24, 36, 48, 72, 96, 108
+};
+static u8  Level2PerTbl[MTO_MAX_DATA_RATE_LEVELS] =
+{
+	0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11
+};
+//How many kind of tx rate can be supported by AP
+//DTO will change Rate between MTO_Data_Rate_Tbl[0] and MTO_Data_Rate_Tbl[MTO_DataRateAvailableLevel-1]
+static u8  MTO_DataRateAvailableLevel = MTO_MAX_DATA_RATE_LEVELS;
+//Smoothed PER table for each different RATE based on packet length of 1514
+static int Rate_PER_TBL[91][MTO_MAX_DATA_RATE_LEVELS] = {
+//        1M    2M    5.5M  11M   6M    9M    12M     18M    24M    36M    48M   54M
+/* 0%  */{ 93,   177,  420,  538,  690,  774,  1001,  1401,  1768,  2358,  2838,  3039},
+/* 1%  */{ 92,   176,  416,  533,  683,  767,  992,   1389,  1752,  2336,  2811,  3010},
+/* 2%  */{ 91,   174,  412,  528,  675,  760,  983,   1376,  1735,  2313,  2783,  2979},
+/* 3%  */{ 90,   172,  407,  523,  667,  753,  973,   1363,  1719,  2290,  2755,  2948},
+/* 4%  */{ 90,   170,  403,  518,  659,  746,  964,   1350,  1701,  2266,  2726,  2916},
+/* 5%  */{ 89,   169,  398,  512,  651,  738,  954,   1336,  1684,  2242,  2696,  2884},
+/* 6%  */{ 88,   167,  394,  507,  643,  731,  944,   1322,  1666,  2217,  2665,  2851},
+/* 7%  */{ 87,   165,  389,  502,  635,  723,  935,   1308,  1648,  2192,  2634,  2817},
+/* 8%  */{ 86,   163,  384,  497,  626,  716,  924,   1294,  1629,  2166,  2602,  2782},
+/* 9%  */{ 85,   161,  380,  491,  618,  708,  914,   1279,  1611,  2140,  2570,  2747},
+/* 10% */{ 84,   160,  375,  486,  609,  700,  904,   1265,  1591,  2113,  2537,  2711},
+/* 11% */{ 83,   158,  370,  480,  600,  692,  894,   1250,  1572,  2086,  2503,  2675},
+/* 12% */{ 82,   156,  365,  475,  592,  684,  883,   1234,  1552,  2059,  2469,  2638},
+/* 13% */{ 81,   154,  360,  469,  583,  676,  872,   1219,  1532,  2031,  2435,  2600},
+/* 14% */{ 80,   152,  355,  464,  574,  668,  862,   1204,  1512,  2003,  2400,  2562},
+/* 15% */{ 79,   150,  350,  458,  565,  660,  851,   1188,  1492,  1974,  2365,  2524},
+/* 16% */{ 78,   148,  345,  453,  556,  652,  840,   1172,  1471,  1945,  2329,  2485},
+/* 17% */{ 77,   146,  340,  447,  547,  643,  829,   1156,  1450,  1916,  2293,  2446},
+/* 18% */{ 76,   144,  335,  441,  538,  635,  818,   1140,  1429,  1887,  2256,  2406},
+/* 19% */{ 75,   143,  330,  436,  529,  627,  807,   1124,  1408,  1857,  2219,  2366},
+/* 20% */{ 74,   141,  325,  430,  520,  618,  795,   1107,  1386,  1827,  2182,  2326},
+/* 21% */{ 73,   139,  320,  424,  510,  610,  784,   1091,  1365,  1797,  2145,  2285},
+/* 22% */{ 72,   137,  314,  418,  501,  601,  772,   1074,  1343,  1766,  2107,  2244},
+/* 23% */{ 71,   135,  309,  412,  492,  592,  761,   1057,  1321,  1736,  2069,  2203},
+/* 24% */{ 70,   133,  304,  407,  482,  584,  749,   1040,  1299,  1705,  2031,  2161},
+/* 25% */{ 69,   131,  299,  401,  473,  575,  738,   1023,  1277,  1674,  1992,  2120},
+/* 26% */{ 68,   129,  293,  395,  464,  566,  726,   1006,  1254,  1642,  1953,  2078},
+/* 27% */{ 67,   127,  288,  389,  454,  557,  714,   989,   1232,  1611,  1915,  2035},
+/* 28% */{ 66,   125,  283,  383,  445,  549,  703,   972,   1209,  1579,  1876,  1993},
+/* 29% */{ 65,   123,  278,  377,  436,  540,  691,   955,   1187,  1548,  1836,  1951},
+/* 30% */{ 64,   121,  272,  371,  426,  531,  679,   937,   1164,  1516,  1797,  1908},
+/* 31% */{ 63,   119,  267,  365,  417,  522,  667,   920,   1141,  1484,  1758,  1866},
+/* 32% */{ 62,   117,  262,  359,  407,  513,  655,   902,   1118,  1453,  1719,  1823},
+/* 33% */{ 61,   115,  256,  353,  398,  504,  643,   885,   1095,  1421,  1679,  1781},
+/* 34% */{ 60,   113,  251,  347,  389,  495,  631,   867,   1072,  1389,  1640,  1738},
+/* 35% */{ 59,   111,  246,  341,  379,  486,  619,   850,   1049,  1357,  1600,  1695},
+/* 36% */{ 58,   108,  240,  335,  370,  477,  607,   832,   1027,  1325,  1561,  1653},
+/* 37% */{ 57,   106,  235,  329,  361,  468,  595,   815,   1004,  1293,  1522,  1610},
+/* 38% */{ 56,   104,  230,  323,  351,  459,  584,   797,   981,   1261,  1483,  1568},
+/* 39% */{ 55,   102,  224,  317,  342,  450,  572,   780,   958,   1230,  1443,  1526},
+/* 40% */{ 54,   100,  219,  311,  333,  441,  560,   762,   935,   1198,  1404,  1484},
+/* 41% */{ 53,   98,   214,  305,  324,  432,  548,   744,   912,   1166,  1366,  1442},
+/* 42% */{ 52,   96,   209,  299,  315,  423,  536,   727,   889,   1135,  1327,  1400},
+/* 43% */{ 51,   94,   203,  293,  306,  414,  524,   709,   866,   1104,  1289,  1358},
+/* 44% */{ 50,   92,   198,  287,  297,  405,  512,   692,   844,   1072,  1250,  1317},
+/* 45% */{ 49,   90,   193,  281,  288,  396,  500,   675,   821,   1041,  1212,  1276},
+/* 46% */{ 48,   88,   188,  275,  279,  387,  488,   657,   799,   1011,  1174,  1236},
+/* 47% */{ 47,   86,   183,  269,  271,  378,  476,   640,   777,   980,   1137,  1195},
+/* 48% */{ 46,   84,   178,  262,  262,  369,  464,   623,   754,   949,   1100,  1155},
+/* 49% */{ 45,   82,   173,  256,  254,  360,  452,   606,   732,   919,   1063,  1116},
+/* 50% */{ 44,   80,   168,  251,  245,  351,  441,   589,   710,   889,   1026,  1076},
+/* 51% */{ 43,   78,   163,  245,  237,  342,  429,   572,   689,   860,   990,   1038},
+/* 52% */{ 42,   76,   158,  239,  228,  333,  417,   555,   667,   830,   955,   999},
+/* 53% */{ 41,   74,   153,  233,  220,  324,  406,   538,   645,   801,   919,   961},
+/* 54% */{ 40,   72,   148,  227,  212,  315,  394,   522,   624,   773,   884,   924},
+/* 55% */{ 39,   70,   143,  221,  204,  307,  383,   505,   603,   744,   850,   887},
+/* 56% */{ 38,   68,   138,  215,  196,  298,  371,   489,   582,   716,   816,   851},
+/* 57% */{ 37,   67,   134,  209,  189,  289,  360,   473,   562,   688,   783,   815},
+/* 58% */{ 36,   65,   129,  203,  181,  281,  349,   457,   541,   661,   750,   780},
+/* 59% */{ 35,   63,   124,  197,  174,  272,  338,   441,   521,   634,   717,   745},
+/* 60% */{ 34,   61,   120,  192,  166,  264,  327,   425,   501,   608,   686,   712},
+/* 61% */{ 33,   59,   115,  186,  159,  255,  316,   409,   482,   582,   655,   678},
+/* 62% */{ 32,   57,   111,  180,  152,  247,  305,   394,   462,   556,   624,   646},
+/* 63% */{ 31,   55,   107,  174,  145,  238,  294,   379,   443,   531,   594,   614},
+/* 64% */{ 30,   53,   102,  169,  138,  230,  283,   364,   425,   506,   565,   583},
+/* 65% */{ 29,   52,   98,   163,  132,  222,  273,   349,   406,   482,   536,   553},
+/* 66% */{ 28,   50,   94,   158,  125,  214,  262,   334,   388,   459,   508,   523},
+/* 67% */{ 27,   48,   90,   152,  119,  206,  252,   320,   370,   436,   481,   495},
+/* 68% */{ 26,   46,   86,   147,  113,  198,  242,   306,   353,   413,   455,   467},
+/* 69% */{ 26,   44,   82,   141,  107,  190,  231,   292,   336,   391,   429,   440},
+/* 70% */{ 25,   43,   78,   136,  101,  182,  221,   278,   319,   370,   405,   414},
+/* 71% */{ 24,   41,   74,   130,  95,   174,  212,   265,   303,   350,   381,   389},
+/* 72% */{ 23,   39,   71,   125,  90,   167,  202,   252,   287,   329,   358,   365},
+/* 73% */{ 22,   37,   67,   119,  85,   159,  192,   239,   271,   310,   335,   342},
+/* 74% */{ 21,   36,   63,   114,  80,   151,  183,   226,   256,   291,   314,   320},
+/* 75% */{ 20,   34,   60,   109,  75,   144,  174,   214,   241,   273,   294,   298},
+/* 76% */{ 19,   32,   57,   104,  70,   137,  164,   202,   227,   256,   274,   278},
+/* 77% */{ 18,   31,   53,   99,   66,   130,  155,   190,   213,   239,   256,   259},
+/* 78% */{ 17,   29,   50,   94,   62,   122,  146,   178,   200,   223,   238,   241},
+/* 79% */{ 16,   28,   47,   89,   58,   115,  138,   167,   187,   208,   222,   225},
+/* 80% */{ 16,   26,   44,   84,   54,   109,  129,   156,   175,   194,   206,   209},
+/* 81% */{ 15,   24,   41,   79,   50,   102,  121,   146,   163,   180,   192,   194},
+/* 82% */{ 14,   23,   39,   74,   47,   95,   113,   136,   151,   167,   178,   181},
+/* 83% */{ 13,   21,   36,   69,   44,   89,   105,   126,   140,   155,   166,   169},
+/* 84% */{ 12,   20,   33,   64,   41,   82,   97,    116,   130,   144,   155,   158},
+/* 85% */{ 11,   19,   31,   60,   39,   76,   89,    107,   120,   134,   145,   149},
+/* 86% */{ 11,   17,   29,   55,   36,   70,   82,    98,    110,   125,   136,   140},
+/* 87% */{ 10,   16,   26,   51,   34,   64,   75,    90,    102,   116,   128,   133},
+/* 88% */{ 9,    14,   24,   46,   32,   58,   68,    81,    93,    108,   121,   128},
+/* 89% */{ 8,    13,   22,   42,   31,   52,   61,    74,    86,    102,   116,   124},
+/* 90% */{ 7,    12,   21,   37,   29,   46,   54,    66,    79,    96,    112,   121}
+};
+
+#define RSSIBUF_NUM 10
+#define RSSI2RATE_SIZE 9
+
+static TXRETRY_REC TxRateRec={MTO_MAX_DATA_RATE_LEVELS - 1, 0};   //new record=>TxRateRec
+static int TxRetryRate;
+//static int SQ3, BSS_PK_CNT, NIDLESLOT, SLOT_CNT, INTERF_CNT, GAP_CNT, DS_EVM;
+static s32 RSSIBuf[RSSIBUF_NUM]={-70, -70, -70, -70, -70, -70, -70, -70, -70, -70};
+static s32 RSSISmoothed=-700;
+static int RSSIBufIndex=0;
+static u8 max_rssi_rate;
+static int rate_tbl[13] = {0,1,2,5,11,6,9,12,18,24,36,48,54};
+//[WKCHEN]static core_data_t *pMTOcore_data=NULL;
+
+static int TotalTxPkt = 0;
+static int TotalTxPktRetry = 0;
+static int TxPktPerAnt[3] = {0,0,0};
+static int RXRSSIANT[3] ={-70,-70,-70};
+static int TxPktRetryPerAnt[3] = {0,0,0};
+//static int TxDominateFlag=FALSE;
+static u8 old_antenna[4]={1 ,0 ,1 ,0};
+static int retryrate_rec[MTO_MAX_DATA_RATE_LEVELS];//this record the retry rate at different data rate
+
+static int PeriodTotalTxPkt = 0;
+static int PeriodTotalTxPktRetry = 0;
+
+typedef struct
+{
+	s32 RSSI;
+	u8  TxRate;
+}RSSI2RATE;
+
+static RSSI2RATE RSSI2RateTbl[RSSI2RATE_SIZE] =
+{
+	{-740, 108},  // 54M
+	{-760, 96},  // 48M
+	{-820, 72},  // 36M
+	{-850, 48},  // 24M
+	{-870, 36},  // 18M
+	{-890, 24},  // 12M
+	{-900, 12},  // 6M
+	{-920, 11}, // 5.5M
+	{-950, 4}, // 2M
+};
+static u8 untogglecount;
+static u8 last_rate_ant; //this is used for antenna backoff-hh
+
+u8	boSparseTxTraffic = FALSE;
+
+void MTO_Init(MTO_FUNC_INPUT);
+void AntennaToggleInitiator(MTO_FUNC_INPUT);
+void AntennaToggleState(MTO_FUNC_INPUT);
+void TxPwrControl(MTO_FUNC_INPUT);
+void GetFreshAntennaData(MTO_FUNC_INPUT);
+void TxRateReductionCtrl(MTO_FUNC_INPUT);
+/** 1.1.31.1000 Turbo modify */
+//void MTO_SetDTORateRange(int type);
+void MTO_SetDTORateRange(MTO_FUNC_INPUT, u8 *pRateArray, u8 ArraySize);
+void MTO_SetTxCount(MTO_FUNC_INPUT, u8 t0, u8 index);
+void MTO_TxFailed(MTO_FUNC_INPUT);
+void SmoothRSSI(s32 new_rssi);
+void hal_get_dto_para(MTO_FUNC_INPUT, char *buffer);
+u8 CalcNewRate(MTO_FUNC_INPUT, u8 old_rate, u32 retry_cnt, u32 tx_frag_cnt);
+u8 GetMaxRateLevelFromRSSI(void);
+u8 MTO_GetTxFallbackRate(MTO_FUNC_INPUT);
+int Divide(int a, int b);
+void multiagc(MTO_FUNC_INPUT, u8 high_gain_mode);
+
+//===========================================================================
+//  MTO_Init --
+//
+//  Description:
+//    Set DTO Tx Rate Scope because different AP could have different Rate set.
+//    After our staion join with AP, LM core will call this function to initialize
+//    Tx Rate table.
+//
+//  Arguments:
+//    pRateArray      - The pointer to the Tx Rate Array by the following order
+//                    - 2, 4, 11, 22, 12, 18, 24, 36, 48, 72, 96, 108
+//                    - DTO won't check whether rate order is invalid or not
+//    ArraySize       - The array size to indicate how many tx rate we can choose
+//
+//  sample code:
+//	{
+//		u8 RateArray[4] = {2, 4, 11, 22};
+//		MTO_SetDTORateRange(RateArray, 4);
+//	}
+//
+//  Return Value:
+//    None
+//============================================================================
+void MTO_SetDTORateRange(MTO_FUNC_INPUT,u8 *pRateArray, u8 ArraySize)
+{
+	u8	i, j=0;
+
+	for(i=0;i<ArraySize;i++)
+	{
+		if(pRateArray[i] == 22)
+			break;
+	}
+	if(i < ArraySize) //we need adjust the order of rate list because 11Mbps rate exists
+	{
+		for(;i>0;i--)
+		{
+			if(pRateArray[i-1] <= 11)
+				break;
+			pRateArray[i] = pRateArray[i-1];
+		}
+		pRateArray[i] = 22;
+		MTO_OFDM_RATE_LEVEL() = i;
+	}
+	else
+	{
+		for(i=0; i<ArraySize; i++)
+		{
+			if (pRateArray[i] >= 12)
+				break;
+		}
+		MTO_OFDM_RATE_LEVEL() = i;
+	}
+
+	for(i=0;i<ArraySize;i++)
+	{
+		MTO_Data_Rate_Tbl[i] = pRateArray[i];
+		for(;j<MTO_MAX_DATA_RATE_LEVELS;j++)
+		{
+			if(Stardard_Data_Rate_Tbl[j] == pRateArray[i])
+				break;
+		}
+		Level2PerTbl[i] = j;
+		#ifdef _PE_DTO_DUMP_
+		WBDEBUG(("[MTO]:Op Rate[%d]: %d\n",i, MTO_Data_Rate_Tbl[i]));
+		#endif
+	}
+	MTO_DataRateAvailableLevel = ArraySize;
+	if( MTO_DATA().RatePolicy ) // 0 means that no registry setting
+	{
+		if( MTO_DATA().RatePolicy == 1 )
+			TxRateRec.tx_rate = 0;	//ascent
+		else
+			TxRateRec.tx_rate = MTO_DataRateAvailableLevel -1 ;	//descent
+	}
+	else
+	{
+		if( MTO_INITTXRATE_MODE )
+			TxRateRec.tx_rate = 0;	//ascent
+		else
+			TxRateRec.tx_rate = MTO_DataRateAvailableLevel -1 ;	//descent
+	}
+	TxRateRec.tx_retry_rate = 0;
+	//set default rate for initial use
+	MTO_RATE_LEVEL() = TxRateRec.tx_rate;
+	MTO_FALLBACK_RATE_LEVEL() = MTO_RATE_LEVEL();
+}
+
+//===========================================================================
+//  MTO_Init --
+//
+//  Description:
+//    Initialize MTO parameters.
+//
+//    This function should be invoked during system initialization.
+//
+//  Arguments:
+//    Adapter      - The pointer to the Miniport Adapter Context
+//
+//  Return Value:
+//    None
+//============================================================================
+void MTO_Init(MTO_FUNC_INPUT)
+{
+    int i;
+	//WBDEBUG(("[MTO] -> MTO_Init()\n"));
+	//[WKCHEN]pMTOcore_data = pcore_data;
+// 20040510 Turbo add for global variable
+    MTO_TMR_CNT()       = 0;
+    MTO_TOGGLE_STATE()  = TOGGLE_STATE_IDLE;
+    MTO_TX_RATE_REDUCTION_STATE() = RATE_CHGSTATE_IDLE;
+    MTO_BACKOFF_TMR()   = 0;
+    MTO_LAST_RATE()     = 11;
+    MTO_CO_EFFICENT()   = 0;
+
+    //MTO_TH_FIXANT()     = MTO_DEFAULT_TH_FIXANT;
+    MTO_TH_CNT()        = MTO_DEFAULT_TH_CNT;
+    MTO_TH_SQ3()        = MTO_DEFAULT_TH_SQ3;
+    MTO_TH_IDLE_SLOT()  = MTO_DEFAULT_TH_IDLE_SLOT;
+    MTO_TH_PR_INTERF()  = MTO_DEFAULT_TH_PR_INTERF;
+
+    MTO_TMR_AGING()     = MTO_DEFAULT_TMR_AGING;
+    MTO_TMR_PERIODIC()  = MTO_DEFAULT_TMR_PERIODIC;
+
+    //[WKCHEN]MTO_CCA_MODE_SETUP()= (u8) hal_get_cca_mode(MTO_HAL());
+    //[WKCHEN]MTO_CCA_MODE()      = MTO_CCA_MODE_SETUP();
+
+    //MTO_PREAMBLE_TYPE() = MTO_PREAMBLE_LONG;
+    MTO_PREAMBLE_TYPE() = MTO_PREAMBLE_SHORT;   // for test
+
+    MTO_ANT_SEL()       = hal_get_antenna_number(MTO_HAL());
+    MTO_ANT_MAC()       = MTO_ANT_SEL();
+    MTO_CNT_ANT(0)      = 0;
+    MTO_CNT_ANT(1)      = 0;
+    MTO_SQ_ANT(0)       = 0;
+    MTO_SQ_ANT(1)       = 0;
+    MTO_ANT_DIVERSITY() = MTO_ANTENNA_DIVERSITY_ON;
+    //CardSet_AntennaDiversity(Adapter, MTO_ANT_DIVERSITY());
+    //PLMESetAntennaDiversity( Adapter, MTO_ANT_DIVERSITY());
+
+    MTO_AGING_TIMEOUT() = 0;//MTO_TMR_AGING() / MTO_TMR_PERIODIC();
+
+    // The following parameters should be initialized to the values set by user
+    //
+    //MTO_RATE_LEVEL()            = 10;
+    MTO_RATE_LEVEL()            = 0;
+	MTO_FALLBACK_RATE_LEVEL()	= MTO_RATE_LEVEL();
+    MTO_FRAG_TH_LEVEL()         = 4;
+    /** 1.1.23.1000 Turbo modify from -1 to +1
+	MTO_RTS_THRESHOLD()         = MTO_FRAG_TH() - 1;
+    MTO_RTS_THRESHOLD_SETUP()   = MTO_FRAG_TH() - 1;
+	*/
+	MTO_RTS_THRESHOLD()         = MTO_FRAG_TH() + 1;
+    MTO_RTS_THRESHOLD_SETUP()   = MTO_FRAG_TH() + 1;
+    // 1.1.23.1000 Turbo add for mto change preamble from 0 to 1
+	MTO_RATE_CHANGE_ENABLE()    = 1;
+    MTO_FRAG_CHANGE_ENABLE()    = 0;          // 1.1.29.1000 Turbo add don't support frag
+	//The default valud of ANTDIV_DEFAULT_ON will be decided by EEPROM
+	//#ifdef ANTDIV_DEFAULT_ON
+    //MTO_ANT_DIVERSITY_ENABLE()  = 1;
+	//#else
+    //MTO_ANT_DIVERSITY_ENABLE()  = 0;
+	//#endif
+    MTO_POWER_CHANGE_ENABLE()   = 1;
+	MTO_PREAMBLE_CHANGE_ENABLE()= 1;
+    MTO_RTS_CHANGE_ENABLE()     = 0;          // 1.1.29.1000 Turbo add don't support frag
+    // 20040512 Turbo add
+	//old_antenna[0] = 1;
+	//old_antenna[1] = 0;
+	//old_antenna[2] = 1;
+	//old_antenna[3] = 0;
+	for (i=0;i<MTO_MAX_DATA_RATE_LEVELS;i++)
+		retryrate_rec[i]=5;
+
+	MTO_TXFLOWCOUNT() = 0;
+	//--------- DTO threshold parameters -------------
+	//MTOPARA_PERIODIC_CHECK_CYCLE() = 50;
+	MTOPARA_PERIODIC_CHECK_CYCLE() = 10;
+	MTOPARA_RSSI_TH_FOR_ANTDIV() = 10;
+	MTOPARA_TXCOUNT_TH_FOR_CALC_RATE() = 50;
+	MTOPARA_TXRATE_INC_TH()	= 10;
+	MTOPARA_TXRATE_DEC_TH() = 30;
+	MTOPARA_TXRATE_EQ_TH() = 40;
+	MTOPARA_TXRATE_BACKOFF() = 12;
+	MTOPARA_TXRETRYRATE_REDUCE() = 6;
+	if ( MTO_TXPOWER_FROM_EEPROM == 0xff)
+	{
+		switch( MTO_HAL()->phy_type)
+		{
+			case RF_AIROHA_2230:
+			case RF_AIROHA_2230S: // 20060420 Add this
+				MTOPARA_TXPOWER_INDEX() = 46; // MAX-8 // @@ Only for AL 2230
+				break;
+			case RF_AIROHA_7230:
+				MTOPARA_TXPOWER_INDEX() = 49;
+				break;
+			case RF_WB_242:
+				MTOPARA_TXPOWER_INDEX() = 10;
+				break;
+			case RF_WB_242_1:
+				MTOPARA_TXPOWER_INDEX() = 24; // ->10 20060316.1 modify
+				break;
+		}
+	}
+	else	//follow the setting from EEPROM
+		MTOPARA_TXPOWER_INDEX() = MTO_TXPOWER_FROM_EEPROM;
+	hal_set_rf_power(MTO_HAL(), (u8)MTOPARA_TXPOWER_INDEX());
+	//------------------------------------------------
+
+	// For RSSI turning 20060808.4 Cancel load from EEPROM
+	MTO_DATA().RSSI_high = -41;
+	MTO_DATA().RSSI_low = -60;
+}
+
+//---------------------------------------------------------------------------//
+static u32 DTO_Rx_Info[13][3];
+static u32 DTO_RxCRCFail_Info[13][3];
+static u32 AntennaToggleBkoffTimer=5;
+typedef struct{
+	int RxRate;
+	int RxRatePkts;
+	int index;
+}RXRATE_ANT;
+RXRATE_ANT RxRatePeakAnt[3];
+
+#define ANT0    0
+#define ANT1    1
+#define OLD_ANT 2
+
+void SearchPeakRxRate(int index)
+{
+	int i;
+	RxRatePeakAnt[index].RxRatePkts=0;
+	//Find out the best rx rate which is used on different antenna
+	for(i=1;i<13;i++)
+	{
+		if(DTO_Rx_Info[i][index] > (u32) RxRatePeakAnt[index].RxRatePkts)
+		{
+			RxRatePeakAnt[index].RxRatePkts = DTO_Rx_Info[i][index];
+			RxRatePeakAnt[index].RxRate = rate_tbl[i];
+			RxRatePeakAnt[index].index = i;
+		}
+	}
+}
+
+void ResetDTO_RxInfo(int index, MTO_FUNC_INPUT)
+{
+	int i;
+
+	#ifdef _PE_DTO_DUMP_
+	WBDEBUG(("ResetDTOrx\n"));
+	#endif
+
+	for(i=0;i<13;i++)
+		DTO_Rx_Info[i][index] = MTO_HAL()->rx_ok_count[i];
+
+	for(i=0;i<13;i++)
+		DTO_RxCRCFail_Info[i][index] = MTO_HAL()->rx_err_count[i];
+
+	TotalTxPkt = 0;
+	TotalTxPktRetry = 0;
+}
+
+void GetDTO_RxInfo(int index, MTO_FUNC_INPUT)
+{
+	int i;
+
+	#ifdef _PE_DTO_DUMP_
+	WBDEBUG(("GetDTOrx\n"));
+	#endif
+
+	//PDEBUG(("[MTO]:DTO_Rx_Info[%d]=%d, rx_ok_count=%d\n", index, DTO_Rx_Info[0][index], phw_data->rx_ok_count[0]));
+	for(i=0;i<13;i++)
+		DTO_Rx_Info[i][index] = abs(MTO_HAL()->rx_ok_count[i] - DTO_Rx_Info[i][index]);
+	if(DTO_Rx_Info[0][index]==0) DTO_Rx_Info[0][index] = 1;
+
+	for(i=0;i<13;i++)
+		DTO_RxCRCFail_Info[i][index] = MTO_HAL()->rx_err_count[i] - DTO_RxCRCFail_Info[i][index];
+
+	TxPktPerAnt[index] = TotalTxPkt;
+	TxPktRetryPerAnt[index] = TotalTxPktRetry;
+	TotalTxPkt = 0;
+	TotalTxPktRetry = 0;
+}
+
+void OutputDebugInfo(int index1, int index2)
+{
+	#ifdef _PE_DTO_DUMP_
+	WBDEBUG(("[HHDTO]:Total Rx (%d)\t\t(%d) \n ", DTO_Rx_Info[0][index1], DTO_Rx_Info[0][index2]));
+    WBDEBUG(("[HHDTO]:RECEIVE RSSI: (%d)\t\t(%d) \n ", RXRSSIANT[index1], RXRSSIANT[index2]));
+	WBDEBUG(("[HHDTO]:TX packet correct rate: (%d)%%\t\t(%d)%% \n ",Divide(TxPktPerAnt[index1]*100,TxPktRetryPerAnt[index1]), Divide(TxPktPerAnt[index2]*100,TxPktRetryPerAnt[index2])));
+	#endif
+	{
+		int tmp1, tmp2;
+		#ifdef _PE_DTO_DUMP_
+		WBDEBUG(("[HHDTO]:Total Tx (%d)\t\t(%d) \n ", TxPktPerAnt[index1], TxPktPerAnt[index2]));
+		WBDEBUG(("[HHDTO]:Total Tx retry (%d)\t\t(%d) \n ", TxPktRetryPerAnt[index1], TxPktRetryPerAnt[index2]));
+		#endif
+		tmp1 = TxPktPerAnt[index1] + DTO_Rx_Info[0][index1];
+		tmp2 = TxPktPerAnt[index2] + DTO_Rx_Info[0][index2];
+		#ifdef _PE_DTO_DUMP_
+		WBDEBUG(("[HHDTO]:Total Tx+RX (%d)\t\t(%d) \n ", tmp1, tmp2));
+		#endif
+	}
+}
+
+unsigned char TxDominate(int index)
+{
+	int tmp;
+
+	tmp = TxPktPerAnt[index] + DTO_Rx_Info[0][index];
+
+	if(Divide(TxPktPerAnt[index]*100, tmp) > 40)
+		return TRUE;
+	else
+		return FALSE;
+}
+
+unsigned char CmpTxRetryRate(int index1, int index2)
+{
+	int tx_retry_rate1, tx_retry_rate2;
+	tx_retry_rate1 = Divide((TxPktRetryPerAnt[index1] - TxPktPerAnt[index1])*100, TxPktRetryPerAnt[index1]);
+	tx_retry_rate2 = Divide((TxPktRetryPerAnt[index2] - TxPktPerAnt[index2])*100, TxPktRetryPerAnt[index2]);
+	#ifdef _PE_DTO_DUMP_
+	WBDEBUG(("[MTO]:TxRetry Ant0: (%d%%)  Ant1: (%d%%) \n ", tx_retry_rate1, tx_retry_rate2));
+	#endif
+
+	if(tx_retry_rate1 > tx_retry_rate2)
+		return TRUE;
+	else
+		return FALSE;
+}
+
+void GetFreshAntennaData(MTO_FUNC_INPUT)
+{
+    u8      x;
+
+	x = hal_get_antenna_number(MTO_HAL());
+	//hal_get_bss_pk_cnt(MTO_HAL());
+	//hal_get_est_sq3(MTO_HAL(), 1);
+	old_antenna[0] = x;
+	//if this is the function for timer
+	ResetDTO_RxInfo(x, MTO_FUNC_INPUT_DATA);
+	if(AntennaToggleBkoffTimer)
+			AntennaToggleBkoffTimer--;
+	if (abs(last_rate_ant-MTO_RATE_LEVEL())>1)  //backoff timer reset
+		AntennaToggleBkoffTimer=0;
+
+	if (MTO_ANT_DIVERSITY() != MTO_ANTENNA_DIVERSITY_ON ||
+		MTO_ANT_DIVERSITY_ENABLE() != 1)
+	AntennaToggleBkoffTimer=1;
+	#ifdef _PE_DTO_DUMP_
+	WBDEBUG(("[HHDTO]:**last data rate=%d,now data rate=%d**antenna toggle timer=%d",last_rate_ant,MTO_RATE_LEVEL(),AntennaToggleBkoffTimer));
+	#endif
+	last_rate_ant=MTO_RATE_LEVEL();
+	if(AntennaToggleBkoffTimer==0)
+	{
+		MTO_TOGGLE_STATE() = TOGGLE_STATE_WAIT0;
+		#ifdef _PE_DTO_DUMP_
+		WBDEBUG(("[HHDTO]:===state is starting==for antenna toggle==="));
+		#endif
+	}
+	else
+		MTO_TOGGLE_STATE() = TOGGLE_STATE_IDLE;
+
+	if ((MTO_BACKOFF_TMR()!=0)&&(MTO_RATE_LEVEL()>MTO_DataRateAvailableLevel - 3))
+	{
+		MTO_TOGGLE_STATE() = TOGGLE_STATE_IDLE;
+		#ifdef _PE_DTO_DUMP_
+		WBDEBUG(("[HHDTO]:===the data rate is %d (good)and will not toogle  ===",MTO_DATA_RATE()>>1));
+		#endif
+	}
+
+
+}
+
+int WB_PCR[2]; //packet correct rate
+
+void AntennaToggleState(MTO_FUNC_INPUT)
+{
+    int decideantflag = 0;
+	u8      x;
+	s32     rssi;
+
+	if(MTO_ANT_DIVERSITY_ENABLE() != 1)
+		return;
+	x = hal_get_antenna_number(MTO_HAL());
+	switch(MTO_TOGGLE_STATE())
+	{
+
+	   //Missing.....
+	   case TOGGLE_STATE_IDLE:
+	 case TOGGLE_STATE_BKOFF:
+	             break;;
+
+		case TOGGLE_STATE_WAIT0://========
+	               GetDTO_RxInfo(x, MTO_FUNC_INPUT_DATA);
+			sme_get_rssi(MTO_FUNC_INPUT_DATA, &rssi);
+			RXRSSIANT[x] = rssi;
+			#ifdef _PE_DTO_DUMP_
+			WBDEBUG(("[HHDTO] **wait0==== Collecting Ant%d--rssi=%d\n", x,RXRSSIANT[x]));
+			#endif
+
+			//change antenna and reset the data at changed antenna
+			x = (~x) & 0x01;
+			MTO_ANT_SEL() = x;
+			hal_set_antenna_number(MTO_HAL(), MTO_ANT_SEL());
+			LOCAL_ANTENNA_NO() = x;
+
+			MTO_TOGGLE_STATE() = TOGGLE_STATE_WAIT1;//go to wait1
+			ResetDTO_RxInfo(x, MTO_FUNC_INPUT_DATA);
+			break;
+		case TOGGLE_STATE_WAIT1://=====wait1
+			//MTO_CNT_ANT(x) = hal_get_bss_pk_cnt(MTO_HAL());
+			//RXRSSIANT[x] = hal_get_rssi(MTO_HAL());
+			sme_get_rssi(MTO_FUNC_INPUT_DATA, &rssi);
+			RXRSSIANT[x] = rssi;
+			GetDTO_RxInfo(x, MTO_FUNC_INPUT_DATA);
+			#ifdef _PE_DTO_DUMP_
+			WBDEBUG(("[HHDTO] **wait1==== Collecting Ant%d--rssi=%d\n", x,RXRSSIANT[x]));
+			#endif
+			MTO_TOGGLE_STATE() = TOGGLE_STATE_MAKEDESISION;
+			break;
+		case TOGGLE_STATE_MAKEDESISION:
+			#ifdef _PE_DTO_DUMP_
+			WBDEBUG(("[HHDTO]:Ant--0-----------------1---\n"));
+			OutputDebugInfo(ANT0,ANT1);
+			#endif
+			//PDEBUG(("[HHDTO] **decision====\n "));
+
+			//=====following is the decision produrce
+			//
+			//    first: compare the rssi if difference >10
+			//           select the larger one
+			//           ,others go to second
+			//    second: comapre the tx+rx packet count if difference >100
+			//            use larger total packets antenna
+			//    third::compare the tx PER if packets>20
+			//                           if difference >5% using the bigger one
+			//
+			//    fourth:compare the RX PER if packets>20
+			//                    if PER difference <5%
+			//                   using old antenna
+			//
+			//
+			if (abs(RXRSSIANT[ANT0]-RXRSSIANT[ANT1]) > MTOPARA_RSSI_TH_FOR_ANTDIV())//====rssi_th
+			{
+				if (RXRSSIANT[ANT0]>RXRSSIANT[ANT1])
+				{
+					decideantflag=1;
+					MTO_ANT_MAC() = ANT0;
+				}
+				else
+				{
+					decideantflag=1;
+					MTO_ANT_MAC() = ANT1;
+				}
+				#ifdef _PE_DTO_DUMP_
+				WBDEBUG(("Select antenna by RSSI\n"));
+				#endif
+			}
+			else if  (abs(TxPktPerAnt[ANT0] + DTO_Rx_Info[0][ANT0]-TxPktPerAnt[ANT1]-DTO_Rx_Info[0][ANT1])<50)//=====total packet_th
+			{
+				#ifdef _PE_DTO_DUMP_
+				WBDEBUG(("Total tx/rx is close\n"));
+				#endif
+				if (TxDominate(ANT0) && TxDominate(ANT1))
+				{
+					if ((TxPktPerAnt[ANT0]>10) && (TxPktPerAnt[ANT1]>10))//====tx packet_th
+					{
+						WB_PCR[ANT0]=Divide(TxPktPerAnt[ANT0]*100,TxPktRetryPerAnt[ANT0]);
+						WB_PCR[ANT1]=Divide(TxPktPerAnt[ANT1]*100,TxPktRetryPerAnt[ANT1]);
+						if (abs(WB_PCR[ANT0]-WB_PCR[ANT1])>5)// tx PER_th
+						{
+							#ifdef _PE_DTO_DUMP_
+							WBDEBUG(("Decide by Tx correct rate\n"));
+							#endif
+							if (WB_PCR[ANT0]>WB_PCR[ANT1])
+							{
+								decideantflag=1;
+								MTO_ANT_MAC() = ANT0;
+							}
+							else
+							{
+								decideantflag=1;
+								MTO_ANT_MAC() = ANT1;
+							}
+						}
+						else
+						{
+							decideantflag=0;
+							untogglecount++;
+							MTO_ANT_MAC() = old_antenna[0];
+						}
+					}
+					else
+					{
+						decideantflag=0;
+						MTO_ANT_MAC() = old_antenna[0];
+					}
+				}
+				else if ((DTO_Rx_Info[0][ANT0]>10)&&(DTO_Rx_Info[0][ANT1]>10))//rx packet th
+				{
+					#ifdef _PE_DTO_DUMP_
+					WBDEBUG(("Decide by Rx\n"));
+					#endif
+					if (abs(DTO_Rx_Info[0][ANT0] - DTO_Rx_Info[0][ANT1])>50)
+					{
+						if (DTO_Rx_Info[0][ANT0] > DTO_Rx_Info[0][ANT1])
+						{
+							decideantflag=1;
+							MTO_ANT_MAC() = ANT0;
+						}
+						else
+						{
+							decideantflag=1;
+							MTO_ANT_MAC() = ANT1;
+						}
+					}
+					else
+					{
+						decideantflag=0;
+						untogglecount++;
+						MTO_ANT_MAC() = old_antenna[0];
+					}
+				}
+				else
+				{
+					decideantflag=0;
+					MTO_ANT_MAC() = old_antenna[0];
+				}
+			}
+			else if ((TxPktPerAnt[ANT0]+DTO_Rx_Info[0][ANT0])>(TxPktPerAnt[ANT1]+DTO_Rx_Info[0][ANT1]))//use more packekts
+			{
+				#ifdef _PE_DTO_DUMP_
+				WBDEBUG(("decide by total tx/rx : ANT 0\n"));
+				#endif
+
+				decideantflag=1;
+				MTO_ANT_MAC() = ANT0;
+			}
+			else
+			{
+				#ifdef _PE_DTO_DUMP_
+				WBDEBUG(("decide by total tx/rx : ANT 1\n"));
+				#endif
+				decideantflag=1;
+				MTO_ANT_MAC() = ANT1;
+
+			}
+			//this is force ant toggle
+			if (decideantflag==1)
+				untogglecount=0;
+
+			untogglecount=untogglecount%4;
+			if (untogglecount==3) //change antenna
+				MTO_ANT_MAC() = ((~old_antenna[0]) & 0x1);
+			#ifdef _PE_DTO_DUMP_
+			WBDEBUG(("[HHDTO]:==================untoggle-count=%d",untogglecount));
+			#endif
+
+
+
+
+			//PDEBUG(("[HHDTO] **********************************DTO ENABLE=%d",MTO_ANT_DIVERSITY_ENABLE()));
+			if(MTO_ANT_DIVERSITY_ENABLE() == 1)
+			{
+					MTO_ANT_SEL() = MTO_ANT_MAC();
+					hal_set_antenna_number(MTO_HAL(), MTO_ANT_SEL());
+					LOCAL_ANTENNA_NO() = MTO_ANT_SEL();
+					#ifdef _PE_DTO_DUMP_
+					WBDEBUG(("[HHDTO] ==decision==*******antflag=%d******************selected antenna=%d\n",decideantflag,MTO_ANT_SEL()));
+					#endif
+			}
+			if (decideantflag)
+			{
+				old_antenna[3]=old_antenna[2];//store antenna info
+				old_antenna[2]=old_antenna[1];
+				old_antenna[1]=old_antenna[0];
+				old_antenna[0]= MTO_ANT_MAC();
+			}
+			#ifdef _PE_DTO_DUMP_
+			WBDEBUG(("[HHDTO]:**old antenna=[%d][%d][%d][%d]\n",old_antenna[0],old_antenna[1],old_antenna[2],old_antenna[3]));
+			#endif
+			if (old_antenna[0]!=old_antenna[1])
+				AntennaToggleBkoffTimer=0;
+			else if (old_antenna[1]!=old_antenna[2])
+				AntennaToggleBkoffTimer=1;
+			else if (old_antenna[2]!=old_antenna[3])
+				AntennaToggleBkoffTimer=2;
+			else
+				AntennaToggleBkoffTimer=4;
+
+			#ifdef _PE_DTO_DUMP_
+			WBDEBUG(("[HHDTO]:**back off timer=%d",AntennaToggleBkoffTimer));
+			#endif
+
+			ResetDTO_RxInfo(MTO_ANT_MAC(), MTO_FUNC_INPUT_DATA);
+			if (AntennaToggleBkoffTimer==0 && decideantflag)
+				MTO_TOGGLE_STATE() = TOGGLE_STATE_WAIT0;
+			else
+				MTO_TOGGLE_STATE() = TOGGLE_STATE_IDLE;
+			break;
+	}
+
+}
+
+void multiagc(MTO_FUNC_INPUT, u8 high_gain_mode )
+{
+	s32		rssi;
+	hw_data_t	*pHwData = MTO_HAL();
+
+	sme_get_rssi(MTO_FUNC_INPUT_DATA, &rssi);
+
+	if( (RF_WB_242 == pHwData->phy_type) ||
+		(RF_WB_242_1 == pHwData->phy_type) ) // 20060619.5 Add
+	{
+		if (high_gain_mode==1)
+		{
+			//hw_set_dxx_reg(phw_data, 0x0C, 0xf8f52230);
+			//hw_set_dxx_reg(phw_data, 0x20, 0x06C43440);
+			Wb35Reg_Write( pHwData, 0x100C, 0xF2F32232 ); // 940916 0xf8f52230 );
+			Wb35Reg_Write( pHwData, 0x1020, 0x04cb3440 ); // 940915 0x06C43440
+		}
+		else if (high_gain_mode==0)
+		{
+			//hw_set_dxx_reg(phw_data, 0x0C, 0xEEEE000D);
+			//hw_set_dxx_reg(phw_data, 0x20, 0x06c41440);
+			Wb35Reg_Write( pHwData, 0x100C, 0xEEEE000D );
+			Wb35Reg_Write( pHwData, 0x1020, 0x04cb1440 ); // 940915 0x06c41440
+		}
+		#ifdef _PE_DTO_DUMP_
+		WBDEBUG(("[HHDTOAGC] **rssi=%d, high gain mode=%d", rssi, high_gain_mode));
+		#endif
+	}
+}
+
+void TxPwrControl(MTO_FUNC_INPUT)
+{
+    s32     rssi;
+	hw_data_t	*pHwData = MTO_HAL();
+
+	sme_get_rssi(MTO_FUNC_INPUT_DATA, &rssi);
+	if( (RF_WB_242 == pHwData->phy_type) ||
+		(RF_WB_242_1 == pHwData->phy_type) ) // 20060619.5 Add
+	{
+		static u8 high_gain_mode; //this is for winbond RF switch LNA
+		                          //using different register setting
+
+		if (high_gain_mode==1)
+		{
+			if( rssi > MTO_DATA().RSSI_high )
+			{
+				//hw_set_dxx_reg(phw_data, 0x0C, 0xf8f52230);
+				//hw_set_dxx_reg(phw_data, 0x20, 0x05541640);
+				high_gain_mode=0;
+			}
+			else
+			{
+				//hw_set_dxx_reg(phw_data, 0x0C, 0xf8f51830);
+				//hw_set_dxx_reg(phw_data, 0x20, 0x05543E40);
+				high_gain_mode=1;
+			}
+		}
+		else //if (high_gain_mode==0)
+		{
+			if( rssi < MTO_DATA().RSSI_low )
+			{
+				//hw_set_dxx_reg(phw_data, 0x0C, 0xf8f51830);
+				//hw_set_dxx_reg(phw_data, 0x20, 0x05543E40);
+				high_gain_mode=1;
+			}
+			else
+			{
+				//hw_set_dxx_reg(phw_data, 0x0C, 0xf8f52230);
+				//hw_set_dxx_reg(phw_data, 0x20, 0x05541640);
+				high_gain_mode=0;
+			}
+		}
+
+		// Always high gain 20051014. Using the initial value only.
+		multiagc(MTO_FUNC_INPUT_DATA, high_gain_mode);
+	}
+}
+
+
+u8 CalcNewRate(MTO_FUNC_INPUT, u8 old_rate, u32 retry_cnt, u32 tx_frag_cnt)
+{
+	int i;
+	u8 new_rate;
+    u32 retry_rate;
+	int TxThrouput1, TxThrouput2, TxThrouput3, BestThroupht;
+
+	if(tx_frag_cnt < MTOPARA_TXCOUNT_TH_FOR_CALC_RATE()) //too few packets transmit
+	{
+		return 0xff;
+	}
+	retry_rate = Divide(retry_cnt * 100, tx_frag_cnt);
+
+	if(retry_rate > 90) retry_rate = 90; //always truncate to 90% due to lookup table size
+	#ifdef _PE_DTO_DUMP_
+	WBDEBUG(("##### Current level =%d, Retry count =%d, Frag count =%d\n",
+						old_rate, retry_cnt, tx_frag_cnt));
+	WBDEBUG(("*##* Retry rate =%d, throughput =%d\n",
+						retry_rate, Rate_PER_TBL[retry_rate][old_rate]));
+	WBDEBUG(("TxRateRec.tx_rate =%d, Retry rate = %d, throughput = %d\n",
+						TxRateRec.tx_rate, TxRateRec.tx_retry_rate,
+						Rate_PER_TBL[TxRateRec.tx_retry_rate][Level2PerTbl[TxRateRec.tx_rate]]));
+	WBDEBUG(("old_rate-1 =%d, Retry rate = %d, throughput = %d\n",
+						old_rate-1, retryrate_rec[old_rate-1],
+						Rate_PER_TBL[retryrate_rec[old_rate-1]][old_rate-1]));
+	WBDEBUG(("old_rate+1 =%d, Retry rate = %d, throughput = %d\n",
+						old_rate+1, retryrate_rec[old_rate+1],
+						Rate_PER_TBL[retryrate_rec[old_rate+1]][old_rate+1]));
+	#endif
+
+	//following is for record the retry rate at the different data rate
+	if (abs(retry_rate-retryrate_rec[old_rate])<50)//---the per TH
+		retryrate_rec[old_rate] = retry_rate; //update retry rate
+	else
+	{
+		for (i=0;i<MTO_DataRateAvailableLevel;i++) //reset all retry rate
+			retryrate_rec[i]=0;
+		retryrate_rec[old_rate] = retry_rate;
+		#ifdef _PE_DTO_DUMP_
+		WBDEBUG(("Reset retry rate table\n"));
+		#endif
+	}
+
+	if(TxRateRec.tx_rate > old_rate)   //Decrease Tx Rate
+	{
+		TxThrouput1 = Rate_PER_TBL[TxRateRec.tx_retry_rate][Level2PerTbl[TxRateRec.tx_rate]];
+		TxThrouput2 = Rate_PER_TBL[retry_rate][Level2PerTbl[old_rate]];
+		if(TxThrouput1 > TxThrouput2)
+		{
+			new_rate = TxRateRec.tx_rate;
+			BestThroupht = TxThrouput1;
+		}
+		else
+		{
+			new_rate = old_rate;
+			BestThroupht = TxThrouput2;
+		}
+		if((old_rate > 0) &&(retry_rate>MTOPARA_TXRATE_DEC_TH()))   //Min Rate
+		{
+			TxThrouput3 = Rate_PER_TBL[retryrate_rec[old_rate-1]][Level2PerTbl[old_rate-1]];
+			if(BestThroupht < TxThrouput3)
+			{
+				new_rate = old_rate - 1;
+				#ifdef _PE_DTO_DUMP_
+				WBDEBUG(("--------\n"));
+				#endif
+				BestThroupht = TxThrouput3;
+			}
+		}
+	}
+	else if(TxRateRec.tx_rate < old_rate)  //Increase Tx Rate
+	{
+		TxThrouput1 = Rate_PER_TBL[TxRateRec.tx_retry_rate][Level2PerTbl[TxRateRec.tx_rate]];
+		TxThrouput2 = Rate_PER_TBL[retry_rate][Level2PerTbl[old_rate]];
+		if(TxThrouput1 > TxThrouput2)
+		{
+			new_rate = TxRateRec.tx_rate;
+			BestThroupht = TxThrouput1;
+		}
+		else
+		{
+			new_rate = old_rate;
+			BestThroupht = TxThrouput2;
+		}
+		if ((old_rate < MTO_DataRateAvailableLevel - 1)&&(retry_rate<MTOPARA_TXRATE_INC_TH()))
+		{
+			//TxThrouput3 = Rate_PER_TBL[retryrate_rec[old_rate+1]][Level2PerTbl[old_rate+1]];
+			if (retryrate_rec[old_rate+1] > MTOPARA_TXRETRYRATE_REDUCE())
+				TxThrouput3 = Rate_PER_TBL[retryrate_rec[old_rate+1]-MTOPARA_TXRETRYRATE_REDUCE()][Level2PerTbl[old_rate+1]];
+			else
+				TxThrouput3 = Rate_PER_TBL[retryrate_rec[old_rate+1]][Level2PerTbl[old_rate+1]];
+			if(BestThroupht < TxThrouput3)
+			{
+				new_rate = old_rate + 1;
+				#ifdef _PE_DTO_DUMP_
+				WBDEBUG(("++++++++++\n"));
+				#endif
+				BestThroupht = TxThrouput3;
+			}
+		}
+	}
+	else  //Tx Rate no change
+	{
+		TxThrouput2 = Rate_PER_TBL[retry_rate][Level2PerTbl[old_rate]];
+		new_rate = old_rate;
+		BestThroupht = TxThrouput2;
+
+		if (retry_rate <MTOPARA_TXRATE_EQ_TH())    //th for change higher rate
+		{
+			if(old_rate < MTO_DataRateAvailableLevel - 1)
+			{
+				//TxThrouput3 = Rate_PER_TBL[retryrate_rec[old_rate+1]][Level2PerTbl[old_rate+1]];
+				if (retryrate_rec[old_rate+1] > MTOPARA_TXRETRYRATE_REDUCE())
+					TxThrouput3 = Rate_PER_TBL[retryrate_rec[old_rate+1]-MTOPARA_TXRETRYRATE_REDUCE()][Level2PerTbl[old_rate+1]];
+				else
+					TxThrouput3 = Rate_PER_TBL[retryrate_rec[old_rate+1]][Level2PerTbl[old_rate+1]];
+				if(BestThroupht < TxThrouput3)
+				{
+					new_rate = old_rate + 1;
+					BestThroupht = TxThrouput3;
+					#ifdef _PE_DTO_DUMP_
+					WBDEBUG(("=++++++++++\n"));
+					#endif
+				}
+			}
+		}
+		else
+		if(old_rate > 0)   //Min Rate
+		{
+			TxThrouput3 = Rate_PER_TBL[retryrate_rec[old_rate-1]][Level2PerTbl[old_rate-1]];
+			if(BestThroupht < TxThrouput3)
+			{
+				new_rate = old_rate - 1;
+				#ifdef _PE_DTO_DUMP_
+				WBDEBUG(("=--------\n"));
+				#endif
+				BestThroupht = TxThrouput3;
+			}
+		}
+	}
+
+	if (!LOCAL_IS_IBSS_MODE())
+	{
+	max_rssi_rate = GetMaxRateLevelFromRSSI();
+	#ifdef _PE_DTO_DUMP_
+	WBDEBUG(("[MTO]:RSSI2Rate=%d\n", MTO_Data_Rate_Tbl[max_rssi_rate]));
+	#endif
+	if(new_rate > max_rssi_rate)
+		new_rate = max_rssi_rate;
+	}
+
+	//save new rate;
+	TxRateRec.tx_rate = old_rate;
+	TxRateRec.tx_retry_rate = (u8) retry_rate;
+	TxRetryRate = retry_rate;
+	return new_rate;
+}
+
+void SmoothRSSI(s32 new_rssi)
+{
+	RSSISmoothed = RSSISmoothed + new_rssi - RSSIBuf[RSSIBufIndex];
+	RSSIBuf[RSSIBufIndex] = new_rssi;
+	RSSIBufIndex = (RSSIBufIndex + 1) % 10;
+}
+
+u8 GetMaxRateLevelFromRSSI(void)
+{
+	u8 i;
+	u8 TxRate;
+
+	for(i=0;i<RSSI2RATE_SIZE;i++)
+	{
+		if(RSSISmoothed > RSSI2RateTbl[i].RSSI)
+			break;
+	}
+	#ifdef _PE_DTO_DUMP_
+	WBDEBUG(("[MTO]:RSSI=%d\n", Divide(RSSISmoothed, 10)));
+	#endif
+	if(i < RSSI2RATE_SIZE)
+		TxRate = RSSI2RateTbl[i].TxRate;
+	else
+		TxRate = 2;  //divided by 2 = 1Mbps
+
+	for(i=MTO_DataRateAvailableLevel-1;i>0;i--)
+	{
+		if(TxRate >=MTO_Data_Rate_Tbl[i])
+			break;
+	}
+	return i;
+}
+
+//===========================================================================
+//  Description:
+//      If we enable DTO, we will ignore the tx count with different tx rate from
+//      DTO rate. This is because when we adjust DTO tx rate, there could be some
+//      packets in the tx queue with previous tx rate
+void MTO_SetTxCount(MTO_FUNC_INPUT, u8 tx_rate, u8 index)
+{
+	MTO_TXFLOWCOUNT()++;
+	if ((MTO_ENABLE==1) && (MTO_RATE_CHANGE_ENABLE()==1))
+	{
+		if(tx_rate == MTO_DATA_RATE())
+		{
+			if (index == 0)
+			{
+				if (boSparseTxTraffic)
+					MTO_HAL()->dto_tx_frag_count += MTOPARA_PERIODIC_CHECK_CYCLE();
+				else
+					MTO_HAL()->dto_tx_frag_count += 1;
+			}
+			else
+			{
+				if (index<8)
+				{
+					MTO_HAL()->dto_tx_retry_count += index;
+					MTO_HAL()->dto_tx_frag_count += (index+1);
+				}
+				else
+				{
+					MTO_HAL()->dto_tx_retry_count += 7;
+					MTO_HAL()->dto_tx_frag_count += 7;
+				}
+			}
+		}
+		else if(MTO_DATA_RATE()>48 && tx_rate ==48)
+		{//ALFRED
+			if (index<3) //for reduciing data rate scheme ,
+				         //do not calcu different data rate
+						 //3 is the reducing data rate at retry
+			{
+				MTO_HAL()->dto_tx_retry_count += index;
+				MTO_HAL()->dto_tx_frag_count += (index+1);
+			}
+			else
+			{
+				MTO_HAL()->dto_tx_retry_count += 3;
+				MTO_HAL()->dto_tx_frag_count += 3;
+			}
+
+		}
+	}
+	else
+	{
+		MTO_HAL()->dto_tx_retry_count += index;
+		MTO_HAL()->dto_tx_frag_count += (index+1);
+	}
+	TotalTxPkt ++;
+	TotalTxPktRetry += (index+1);
+
+	PeriodTotalTxPkt ++;
+	PeriodTotalTxPktRetry += (index+1);
+}
+
+u8 MTO_GetTxFallbackRate(MTO_FUNC_INPUT)
+{
+	return MTO_DATA_FALLBACK_RATE();
+}
+
+
+//===========================================================================
+//  MTO_TxFailed --
+//
+//  Description:
+//    Failure of transmitting a packet indicates that certain MTO parmeters
+//    may need to be adjusted. This function is called when NIC just failed
+//    to transmit a packet or when MSDULifeTime expired.
+//
+//  Arguments:
+//    Adapter      - The pointer to the Miniport Adapter Context
+//
+//  Return Value:
+//    None
+//============================================================================
+void MTO_TxFailed(MTO_FUNC_INPUT)
+{
+	return;
+}
+
+int Divide(int a, int b)
+{
+	if (b==0) b=1;
+	return a/b;
+}
+
+
diff --git a/drivers/staging/winbond/mto.h b/drivers/staging/winbond/mto.h
new file mode 100644
index 0000000..f47936f
--- /dev/null
+++ b/drivers/staging/winbond/mto.h
@@ -0,0 +1,265 @@
+//==================================================================
+// MTO.H
+//
+// Revision history
+//=================================
+//          20030110    UN20 Pete Chao
+//                      Initial Release
+//
+// Copyright (c) 2003 Winbond Electronics Corp. All rights reserved.
+//==================================================================
+#ifndef __MTO_H__
+#define __MTO_H__
+
+#define MTO_DEFAULT_TH_CNT              5
+#define MTO_DEFAULT_TH_SQ3              112  //OLD IS 13 reference JohnXu
+#define MTO_DEFAULT_TH_IDLE_SLOT        15
+#define MTO_DEFAULT_TH_PR_INTERF        30
+#define MTO_DEFAULT_TMR_AGING           25  // unit: slot time  10 reference JohnXu
+#define MTO_DEFAULT_TMR_PERIODIC        5   // unit: slot time
+
+#define MTO_ANTENNA_DIVERSITY_OFF       0
+#define MTO_ANTENNA_DIVERSITY_ON        1
+
+// LA20040210_DTO kevin
+//#define MTO_PREAMBLE_LONG               0
+//#define MTO_PREAMBLE_SHORT              1
+#define MTO_PREAMBLE_LONG               WLAN_PREAMBLE_TYPE_LONG
+#define MTO_PREAMBLE_SHORT              WLAN_PREAMBLE_TYPE_SHORT
+
+typedef enum {
+    TOGGLE_STATE_IDLE             = 0,
+    TOGGLE_STATE_WAIT0            = 1,
+    TOGGLE_STATE_WAIT1            = 2,
+    TOGGLE_STATE_MAKEDESISION     = 3,
+	TOGGLE_STATE_BKOFF            = 4
+} TOGGLE_STATE;
+
+typedef enum {
+    RATE_CHGSTATE_IDLE         = 0,
+    RATE_CHGSTATE_CALCULATE    = 1,
+    RATE_CHGSTATE_BACKOFF	   = 2
+} TX_RATE_REDUCTION_STATE;
+
+//============================================================================
+// struct _MTOParameters --
+//
+//   Defines the parameters used in the MAC Throughput Optimization algorithm
+//============================================================================
+typedef struct _MTO_PARAMETERS
+{
+	u8      Th_Fixant;
+	u8      Th_Cnt;
+	u8      Th_SQ3;
+	u8      Th_IdleSlot;
+
+	u16     Tmr_Aging;
+	u8      Th_PrInterf;
+	u8      Tmr_Periodic;
+
+	//---------        wkchen added      -------------
+	u32		TxFlowCount;	//to judge what kind the tx flow(sparse or busy) is
+	//------------------------------------------------
+
+	//--------- DTO threshold parameters -------------
+	u16		DTO_PeriodicCheckCycle;
+	u16		DTO_RssiThForAntDiv;
+
+	u16		DTO_TxCountThForCalcNewRate;
+	u16		DTO_TxRateIncTh;
+
+	u16		DTO_TxRateDecTh;
+	u16		DTO_TxRateEqTh;
+
+	u16		DTO_TxRateBackOff;
+	u16		DTO_TxRetryRateReduce;
+
+	u16		DTO_TxPowerIndex;	//0 ~ 31
+	u16		reserved_1;
+	//------------------------------------------------
+
+	u8      PowerChangeEnable;
+	u8      AntDiversityEnable;
+	u8      Ant_mac;
+	u8      Ant_div;
+
+	u8      CCA_Mode;
+	u8      CCA_Mode_Setup;
+	u8      Preamble_Type;
+	u8      PreambleChangeEnable;
+
+	u8      DataRateLevel;
+	u8      DataRateChangeEnable;
+	u8      FragThresholdLevel;
+	u8      FragThresholdChangeEnable;
+
+	u16     RTSThreshold;
+	u16     RTSThreshold_Setup;
+
+	u32     AvgIdleSlot;
+	u32     Pr_Interf;
+	u32     AvgGapBtwnInterf;
+
+	u8	   RTSChangeEnable;
+	u8      Ant_sel;
+	u8      aging_timeout;
+	u8	   reserved_2;
+
+	u32     Cnt_Ant[2];
+	u32     SQ_Ant[2];
+
+// 20040510 remove from globe vairable
+	u32                     TmrCnt;
+	u32                     BackoffTmr;
+	TOGGLE_STATE            ToggleState;
+	TX_RATE_REDUCTION_STATE TxRateReductionState;
+
+	u8                      Last_Rate;
+	u8                      Co_efficent;
+	u8		FallbackRateLevel;
+	u8		OfdmRateLevel;
+
+	u8		RatePolicy;
+	u8		reserved_3[3];
+
+	// For RSSI turning
+	s32		RSSI_high;
+	s32		RSSI_low;
+
+} MTO_PARAMETERS, *PMTO_PARAMETERS;
+
+
+#define MTO_FUNC_INPUT              PWB32_ADAPTER	Adapter
+#define MTO_FUNC_INPUT_DATA         Adapter
+#define MTO_DATA()                  (Adapter->sMtoPara)
+#define MTO_HAL()                   (&Adapter->sHwData)
+#define MTO_SET_PREAMBLE_TYPE(x)    // 20040511 Turbo mark LM_PREAMBLE_TYPE(&pcore_data->lm_data) = (x)
+#define MTO_ENABLE					(Adapter->sLocalPara.TxRateMode == RATE_AUTO)
+#define MTO_TXPOWER_FROM_EEPROM		(Adapter->sHwData.PowerIndexFromEEPROM)
+#define LOCAL_ANTENNA_NO()			(Adapter->sLocalPara.bAntennaNo)
+#define LOCAL_IS_CONNECTED()		(Adapter->sLocalPara.wConnectedSTAindex != 0)
+#define LOCAL_IS_IBSS_MODE()		(Adapter->asBSSDescriptElement[Adapter->sLocalPara.wConnectedSTAindex].bBssType == IBSS_NET)
+#define MTO_INITTXRATE_MODE			(Adapter->sHwData.SoftwareSet&0x2)	//bit 1
+// 20040510 Turbo add
+#define MTO_TMR_CNT()               MTO_DATA().TmrCnt
+#define MTO_TOGGLE_STATE()          MTO_DATA().ToggleState
+#define MTO_TX_RATE_REDUCTION_STATE() MTO_DATA().TxRateReductionState
+#define MTO_BACKOFF_TMR()           MTO_DATA().BackoffTmr
+#define MTO_LAST_RATE()             MTO_DATA().Last_Rate
+#define MTO_CO_EFFICENT()           MTO_DATA().Co_efficent
+
+#define MTO_TH_CNT()                MTO_DATA().Th_Cnt
+#define MTO_TH_SQ3()                MTO_DATA().Th_SQ3
+#define MTO_TH_IDLE_SLOT()          MTO_DATA().Th_IdleSlot
+#define MTO_TH_PR_INTERF()          MTO_DATA().Th_PrInterf
+
+#define MTO_TMR_AGING()             MTO_DATA().Tmr_Aging
+#define MTO_TMR_PERIODIC()          MTO_DATA().Tmr_Periodic
+
+#define MTO_POWER_CHANGE_ENABLE()   MTO_DATA().PowerChangeEnable
+#define MTO_ANT_DIVERSITY_ENABLE()  Adapter->sLocalPara.boAntennaDiversity
+#define MTO_ANT_MAC()               MTO_DATA().Ant_mac
+#define MTO_ANT_DIVERSITY()         MTO_DATA().Ant_div
+#define MTO_CCA_MODE()              MTO_DATA().CCA_Mode
+#define MTO_CCA_MODE_SETUP()        MTO_DATA().CCA_Mode_Setup
+#define MTO_PREAMBLE_TYPE()         MTO_DATA().Preamble_Type
+#define MTO_PREAMBLE_CHANGE_ENABLE()         MTO_DATA().PreambleChangeEnable
+
+#define MTO_RATE_LEVEL()            MTO_DATA().DataRateLevel
+#define MTO_FALLBACK_RATE_LEVEL()	MTO_DATA().FallbackRateLevel
+#define MTO_OFDM_RATE_LEVEL()		MTO_DATA().OfdmRateLevel
+#define MTO_RATE_CHANGE_ENABLE()    MTO_DATA().DataRateChangeEnable
+#define MTO_FRAG_TH_LEVEL()         MTO_DATA().FragThresholdLevel
+#define MTO_FRAG_CHANGE_ENABLE()    MTO_DATA().FragThresholdChangeEnable
+#define MTO_RTS_THRESHOLD()         MTO_DATA().RTSThreshold
+#define MTO_RTS_CHANGE_ENABLE()     MTO_DATA().RTSChangeEnable
+#define MTO_RTS_THRESHOLD_SETUP()   MTO_DATA().RTSThreshold_Setup
+
+#define MTO_AVG_IDLE_SLOT()         MTO_DATA().AvgIdleSlot
+#define MTO_PR_INTERF()             MTO_DATA().Pr_Interf
+#define MTO_AVG_GAP_BTWN_INTERF()   MTO_DATA().AvgGapBtwnInterf
+
+#define MTO_ANT_SEL()               MTO_DATA().Ant_sel
+#define MTO_CNT_ANT(x)              MTO_DATA().Cnt_Ant[(x)]
+#define MTO_SQ_ANT(x)               MTO_DATA().SQ_Ant[(x)]
+#define MTO_AGING_TIMEOUT()         MTO_DATA().aging_timeout
+
+
+#define MTO_TXFLOWCOUNT()			MTO_DATA().TxFlowCount
+//--------- DTO threshold parameters -------------
+#define	MTOPARA_PERIODIC_CHECK_CYCLE()		MTO_DATA().DTO_PeriodicCheckCycle
+#define	MTOPARA_RSSI_TH_FOR_ANTDIV()		MTO_DATA().DTO_RssiThForAntDiv
+#define	MTOPARA_TXCOUNT_TH_FOR_CALC_RATE()	MTO_DATA().DTO_TxCountThForCalcNewRate
+#define	MTOPARA_TXRATE_INC_TH()			MTO_DATA().DTO_TxRateIncTh
+#define	MTOPARA_TXRATE_DEC_TH()			MTO_DATA().DTO_TxRateDecTh
+#define MTOPARA_TXRATE_EQ_TH()			MTO_DATA().DTO_TxRateEqTh
+#define	MTOPARA_TXRATE_BACKOFF()		MTO_DATA().DTO_TxRateBackOff
+#define	MTOPARA_TXRETRYRATE_REDUCE()		MTO_DATA().DTO_TxRetryRateReduce
+#define MTOPARA_TXPOWER_INDEX()			MTO_DATA().DTO_TxPowerIndex
+//------------------------------------------------
+
+
+extern u8   MTO_Data_Rate_Tbl[];
+extern u16  MTO_Frag_Th_Tbl[];
+
+#define MTO_DATA_RATE()          MTO_Data_Rate_Tbl[MTO_RATE_LEVEL()]
+#define MTO_DATA_FALLBACK_RATE() MTO_Data_Rate_Tbl[MTO_FALLBACK_RATE_LEVEL()]	//next level
+#define MTO_FRAG_TH()            MTO_Frag_Th_Tbl[MTO_FRAG_TH_LEVEL()]
+
+typedef struct {
+	u8 tx_rate;
+	u8 tx_retry_rate;
+} TXRETRY_REC;
+
+typedef struct _STATISTICS_INFO {
+	u32   Rate54M;
+	u32   Rate48M;
+	u32   Rate36M;
+	u32   Rate24M;
+	u32   Rate18M;
+	u32   Rate12M;
+	u32   Rate9M;
+	u32   Rate6M;
+	u32   Rate11MS;
+	u32   Rate11ML;
+	u32   Rate55MS;
+	u32   Rate55ML;
+	u32   Rate2MS;
+	u32   Rate2ML;
+	u32   Rate1M;
+	u32   Rate54MOK;
+	u32   Rate48MOK;
+	u32   Rate36MOK;
+	u32   Rate24MOK;
+	u32   Rate18MOK;
+	u32   Rate12MOK;
+	u32   Rate9MOK;
+	u32   Rate6MOK;
+	u32   Rate11MSOK;
+	u32   Rate11MLOK;
+	u32   Rate55MSOK;
+	u32   Rate55MLOK;
+	u32   Rate2MSOK;
+	u32   Rate2MLOK;
+	u32   Rate1MOK;
+	u32   SQ3;
+	s32   RSSIAVG;
+	s32   RSSIMAX;
+	s32   TXRATE;
+	s32   TxRetryRate;
+	s32   BSS_PK_CNT;
+	s32   NIDLESLOT;
+	s32   SLOT_CNT;
+	s32   INTERF_CNT;
+	s32   GAP_CNT;
+	s32   DS_EVM;
+	s32   RcvBeaconNum;
+	s32   RXRATE;
+	s32   RxBytes;
+	s32   TxBytes;
+	s32   Antenna;
+} STATISTICS_INFO, *PSTATISTICS_INFO;
+
+#endif //__MTO_H__
+
+
diff --git a/drivers/staging/winbond/mto_f.h b/drivers/staging/winbond/mto_f.h
new file mode 100644
index 0000000..30b3df2
--- /dev/null
+++ b/drivers/staging/winbond/mto_f.h
@@ -0,0 +1,7 @@
+extern void MTO_Init(PWB32_ADAPTER);
+extern void MTO_PeriodicTimerExpired(PWB32_ADAPTER);
+extern void MTO_SetDTORateRange(PWB32_ADAPTER, u8 *, u8);
+extern u8 MTO_GetTxRate(MTO_FUNC_INPUT, u32 fpdu_len);
+extern u8 MTO_GetTxFallbackRate(MTO_FUNC_INPUT);
+extern void MTO_SetTxCount(MTO_FUNC_INPUT, u8 t0, u8 index);
+
diff --git a/drivers/staging/winbond/os_common.h b/drivers/staging/winbond/os_common.h
new file mode 100644
index 0000000..e24ff41
--- /dev/null
+++ b/drivers/staging/winbond/os_common.h
@@ -0,0 +1,2 @@
+#include "linux/sysdef.h"
+
diff --git a/drivers/staging/winbond/phy_calibration.c b/drivers/staging/winbond/phy_calibration.c
new file mode 100644
index 0000000..272a650
--- /dev/null
+++ b/drivers/staging/winbond/phy_calibration.c
@@ -0,0 +1,1759 @@
+/*
+ * phy_302_calibration.c
+ *
+ * Copyright (C) 2002, 2005  Winbond Electronics Corp.
+ *
+ * modification history
+ * ---------------------------------------------------------------------------
+ * 0.01.001, 2003-04-16, Kevin      created
+ *
+ */
+
+/****************** INCLUDE FILES SECTION ***********************************/
+#include "os_common.h"
+#include "phy_calibration.h"
+
+
+/****************** DEBUG CONSTANT AND MACRO SECTION ************************/
+
+/****************** LOCAL CONSTANT AND MACRO SECTION ************************/
+#define LOOP_TIMES      20
+#define US              1000//MICROSECOND
+
+#define AG_CONST        0.6072529350
+#define FIXED(X)        ((s32)((X) * 32768.0))
+#define DEG2RAD(X)      0.017453 * (X)
+
+/****************** LOCAL TYPE DEFINITION SECTION ***************************/
+typedef s32         fixed; /* 16.16 fixed-point */
+
+static const fixed Angles[]=
+{
+    FIXED(DEG2RAD(45.0)),    FIXED(DEG2RAD(26.565)),  FIXED(DEG2RAD(14.0362)),
+    FIXED(DEG2RAD(7.12502)), FIXED(DEG2RAD(3.57633)), FIXED(DEG2RAD(1.78991)),
+    FIXED(DEG2RAD(0.895174)),FIXED(DEG2RAD(0.447614)),FIXED(DEG2RAD(0.223811)),
+    FIXED(DEG2RAD(0.111906)),FIXED(DEG2RAD(0.055953)),FIXED(DEG2RAD(0.027977))
+};
+
+/****************** LOCAL FUNCTION DECLARATION SECTION **********************/
+//void    _phy_rf_write_delay(hw_data_t *phw_data);
+//void    phy_init_rf(hw_data_t *phw_data);
+
+/****************** FUNCTION DEFINITION SECTION *****************************/
+
+s32 _s13_to_s32(u32 data)
+{
+    u32     val;
+
+    val = (data & 0x0FFF);
+
+    if ((data & BIT(12)) != 0)
+    {
+        val |= 0xFFFFF000;
+    }
+
+    return ((s32) val);
+}
+
+u32 _s32_to_s13(s32 data)
+{
+    u32     val;
+
+    if (data > 4095)
+    {
+        data = 4095;
+    }
+    else if (data < -4096)
+    {
+        data = -4096;
+    }
+
+    val = data & 0x1FFF;
+
+    return val;
+}
+
+/****************************************************************************/
+s32 _s4_to_s32(u32 data)
+{
+    s32     val;
+
+    val = (data & 0x0007);
+
+    if ((data & BIT(3)) != 0)
+    {
+        val |= 0xFFFFFFF8;
+    }
+
+    return val;
+}
+
+u32 _s32_to_s4(s32 data)
+{
+    u32     val;
+
+    if (data > 7)
+    {
+        data = 7;
+    }
+    else if (data < -8)
+    {
+        data = -8;
+    }
+
+    val = data & 0x000F;
+
+    return val;
+}
+
+/****************************************************************************/
+s32 _s5_to_s32(u32 data)
+{
+    s32     val;
+
+    val = (data & 0x000F);
+
+    if ((data & BIT(4)) != 0)
+    {
+        val |= 0xFFFFFFF0;
+    }
+
+    return val;
+}
+
+u32 _s32_to_s5(s32 data)
+{
+    u32     val;
+
+    if (data > 15)
+    {
+        data = 15;
+    }
+    else if (data < -16)
+    {
+        data = -16;
+    }
+
+    val = data & 0x001F;
+
+    return val;
+}
+
+/****************************************************************************/
+s32 _s6_to_s32(u32 data)
+{
+    s32     val;
+
+    val = (data & 0x001F);
+
+    if ((data & BIT(5)) != 0)
+    {
+        val |= 0xFFFFFFE0;
+    }
+
+    return val;
+}
+
+u32 _s32_to_s6(s32 data)
+{
+    u32     val;
+
+    if (data > 31)
+    {
+        data = 31;
+    }
+    else if (data < -32)
+    {
+        data = -32;
+    }
+
+    val = data & 0x003F;
+
+    return val;
+}
+
+/****************************************************************************/
+s32 _s9_to_s32(u32 data)
+{
+    s32     val;
+
+    val = data & 0x00FF;
+
+    if ((data & BIT(8)) != 0)
+    {
+        val |= 0xFFFFFF00;
+    }
+
+    return val;
+}
+
+u32 _s32_to_s9(s32 data)
+{
+    u32     val;
+
+    if (data > 255)
+    {
+        data = 255;
+    }
+    else if (data < -256)
+    {
+        data = -256;
+    }
+
+    val = data & 0x01FF;
+
+    return val;
+}
+
+/****************************************************************************/
+s32 _floor(s32 n)
+{
+    if (n > 0)
+    {
+        n += 5;
+    }
+    else
+    {
+        n -= 5;
+    }
+
+    return (n/10);
+}
+
+/****************************************************************************/
+// The following code is sqare-root function.
+// sqsum is the input and the output is sq_rt;
+// The maximum of sqsum = 2^27 -1;
+u32 _sqrt(u32 sqsum)
+{
+    u32     sq_rt;
+
+    int     g0, g1, g2, g3, g4;
+    int     seed;
+    int     next;
+    int     step;
+
+    g4 =  sqsum / 100000000;
+    g3 = (sqsum - g4*100000000) /1000000;
+    g2 = (sqsum - g4*100000000 - g3*1000000) /10000;
+    g1 = (sqsum - g4*100000000 - g3*1000000 - g2*10000) /100;
+    g0 = (sqsum - g4*100000000 - g3*1000000 - g2*10000 - g1*100);
+
+    next = g4;
+    step = 0;
+    seed = 0;
+    while (((seed+1)*(step+1)) <= next)
+    {
+    	step++;
+    	seed++;
+    }
+
+    sq_rt = seed * 10000;
+    next = (next-(seed*step))*100 + g3;
+
+    step = 0;
+    seed = 2 * seed * 10;
+    while (((seed+1)*(step+1)) <= next)
+    {
+        step++;
+    	seed++;
+    }
+
+    sq_rt = sq_rt + step * 1000;
+    next = (next - seed * step) * 100 + g2;
+    seed = (seed + step) * 10;
+    step = 0;
+    while (((seed+1)*(step+1)) <= next)
+    {
+        step++;
+    	seed++;
+    }
+
+    sq_rt = sq_rt + step * 100;
+    next = (next - seed * step) * 100 + g1;
+    seed = (seed + step) * 10;
+    step = 0;
+
+    while (((seed+1)*(step+1)) <= next)
+    {
+        step++;
+    	seed++;
+    }
+
+    sq_rt = sq_rt + step * 10;
+    next = (next - seed* step) * 100 + g0;
+    seed = (seed + step) * 10;
+    step = 0;
+
+    while (((seed+1)*(step+1)) <= next)
+    {
+        step++;
+    	seed++;
+    }
+
+    sq_rt = sq_rt + step;
+
+    return sq_rt;
+}
+
+/****************************************************************************/
+void _sin_cos(s32 angle, s32 *sin, s32 *cos)
+{
+    fixed       X, Y, TargetAngle, CurrAngle;
+    unsigned    Step;
+
+    X=FIXED(AG_CONST);      // AG_CONST * cos(0)
+    Y=0;                    // AG_CONST * sin(0)
+    TargetAngle=abs(angle);
+    CurrAngle=0;
+
+    for (Step=0; Step < 12; Step++)
+    {
+        fixed NewX;
+
+        if(TargetAngle > CurrAngle)
+        {
+            NewX=X - (Y >> Step);
+            Y=(X >> Step) + Y;
+            X=NewX;
+            CurrAngle += Angles[Step];
+        }
+        else
+        {
+            NewX=X + (Y >> Step);
+            Y=-(X >> Step) + Y;
+            X=NewX;
+            CurrAngle -= Angles[Step];
+        }
+    }
+
+    if (angle > 0)
+    {
+        *cos = X;
+        *sin = Y;
+    }
+    else
+    {
+        *cos = X;
+        *sin = -Y;
+    }
+}
+
+
+void _reset_rx_cal(hw_data_t *phw_data)
+{
+	u32     val;
+
+	hw_get_dxx_reg(phw_data, 0x54, &val);
+
+	if (phw_data->revision == 0x2002) // 1st-cut
+	{
+		val &= 0xFFFF0000;
+	}
+	else // 2nd-cut
+	{
+		val &= 0x000003FF;
+	}
+
+	hw_set_dxx_reg(phw_data, 0x54, val);
+}
+
+
+// ************for winbond calibration*********
+//
+
+//
+//
+// *********************************************
+void _rxadc_dc_offset_cancellation_winbond(hw_data_t *phw_data, u32 frequency)
+{
+    u32     reg_agc_ctrl3;
+    u32     reg_a_acq_ctrl;
+    u32     reg_b_acq_ctrl;
+    u32     val;
+
+    PHY_DEBUG(("[CAL] -> [1]_rxadc_dc_offset_cancellation()\n"));
+    phy_init_rf(phw_data);
+
+    // set calibration channel
+    if( (RF_WB_242 == phw_data->phy_type) ||
+		(RF_WB_242_1 == phw_data->phy_type) ) // 20060619.5 Add
+    {
+        if ((frequency >= 2412) && (frequency <= 2484))
+        {
+            // w89rf242 change frequency to 2390Mhz
+            PHY_DEBUG(("[CAL] W89RF242/11G/Channel=2390Mhz\n"));
+			phy_set_rf_data(phw_data, 3, (3<<24)|0x025586);
+
+        }
+    }
+    else
+	{
+
+	}
+
+	// reset cancel_dc_i[9:5] and cancel_dc_q[4:0] in register DC_Cancel
+	hw_get_dxx_reg(phw_data, 0x5C, &val);
+	val &= ~(0x03FF);
+	hw_set_dxx_reg(phw_data, 0x5C, val);
+
+	// reset the TX and RX IQ calibration data
+	hw_set_dxx_reg(phw_data, 0x3C, 0);
+	hw_set_dxx_reg(phw_data, 0x54, 0);
+
+	hw_set_dxx_reg(phw_data, 0x58, 0x30303030); // IQ_Alpha Changed
+
+	// a. Disable AGC
+	hw_get_dxx_reg(phw_data, REG_AGC_CTRL3, &reg_agc_ctrl3);
+	reg_agc_ctrl3 &= ~BIT(2);
+	reg_agc_ctrl3 |= (MASK_LNA_FIX_GAIN|MASK_AGC_FIX);
+	hw_set_dxx_reg(phw_data, REG_AGC_CTRL3, reg_agc_ctrl3);
+
+	hw_get_dxx_reg(phw_data, REG_AGC_CTRL5, &val);
+	val |= MASK_AGC_FIX_GAIN;
+	hw_set_dxx_reg(phw_data, REG_AGC_CTRL5, val);
+
+	// b. Turn off BB RX
+	hw_get_dxx_reg(phw_data, REG_A_ACQ_CTRL, &reg_a_acq_ctrl);
+	reg_a_acq_ctrl |= MASK_AMER_OFF_REG;
+	hw_set_dxx_reg(phw_data, REG_A_ACQ_CTRL, reg_a_acq_ctrl);
+
+	hw_get_dxx_reg(phw_data, REG_B_ACQ_CTRL, &reg_b_acq_ctrl);
+	reg_b_acq_ctrl |= MASK_BMER_OFF_REG;
+	hw_set_dxx_reg(phw_data, REG_B_ACQ_CTRL, reg_b_acq_ctrl);
+
+	// c. Make sure MAC is in receiving mode
+	// d. Turn ON ADC calibration
+	//    - ADC calibrator is triggered by this signal rising from 0 to 1
+	hw_get_dxx_reg(phw_data, REG_MODE_CTRL, &val);
+	val &= ~MASK_ADC_DC_CAL_STR;
+	hw_set_dxx_reg(phw_data, REG_MODE_CTRL, val);
+
+	val |= MASK_ADC_DC_CAL_STR;
+	hw_set_dxx_reg(phw_data, REG_MODE_CTRL, val);
+	pa_stall_execution(US); // *MUST* wait for a while
+
+	// e. The result are shown in "adc_dc_cal_i[8:0] and adc_dc_cal_q[8:0]"
+#ifdef _DEBUG
+	hw_get_dxx_reg(phw_data, REG_OFFSET_READ, &val);
+	PHY_DEBUG(("[CAL]    REG_OFFSET_READ = 0x%08X\n", val));
+
+	PHY_DEBUG(("[CAL]    ** adc_dc_cal_i = %d (0x%04X)\n",
+			   _s9_to_s32(val&0x000001FF), val&0x000001FF));
+	PHY_DEBUG(("[CAL]    ** adc_dc_cal_q = %d (0x%04X)\n",
+			   _s9_to_s32((val&0x0003FE00)>>9), (val&0x0003FE00)>>9));
+#endif
+
+	hw_get_dxx_reg(phw_data, REG_MODE_CTRL, &val);
+	val &= ~MASK_ADC_DC_CAL_STR;
+	hw_set_dxx_reg(phw_data, REG_MODE_CTRL, val);
+
+	// f. Turn on BB RX
+	//hw_get_dxx_reg(phw_data, REG_A_ACQ_CTRL, &reg_a_acq_ctrl);
+	reg_a_acq_ctrl &= ~MASK_AMER_OFF_REG;
+	hw_set_dxx_reg(phw_data, REG_A_ACQ_CTRL, reg_a_acq_ctrl);
+
+	//hw_get_dxx_reg(phw_data, REG_B_ACQ_CTRL, &reg_b_acq_ctrl);
+	reg_b_acq_ctrl &= ~MASK_BMER_OFF_REG;
+	hw_set_dxx_reg(phw_data, REG_B_ACQ_CTRL, reg_b_acq_ctrl);
+
+	// g. Enable AGC
+	//hw_get_dxx_reg(phw_data, REG_AGC_CTRL3, &val);
+	reg_agc_ctrl3 |= BIT(2);
+	reg_agc_ctrl3 &= ~(MASK_LNA_FIX_GAIN|MASK_AGC_FIX);
+	hw_set_dxx_reg(phw_data, REG_AGC_CTRL3, reg_agc_ctrl3);
+}
+
+////////////////////////////////////////////////////////
+void _txidac_dc_offset_cancellation_winbond(hw_data_t *phw_data)
+{
+	u32     reg_agc_ctrl3;
+	u32     reg_mode_ctrl;
+	u32     reg_dc_cancel;
+	s32     iqcal_image_i;
+	s32     iqcal_image_q;
+	u32     sqsum;
+	s32     mag_0;
+	s32     mag_1;
+	s32     fix_cancel_dc_i = 0;
+	u32     val;
+	int     loop;
+
+	PHY_DEBUG(("[CAL] -> [2]_txidac_dc_offset_cancellation()\n"));
+
+	// a. Set to "TX calibration mode"
+
+	//0x01 0xEE3FC2  ; 3B8FF  ; Calibration (6a). enable TX IQ calibration loop circuits
+	phy_set_rf_data(phw_data, 1, (1<<24)|0xEE3FC2);
+	//0x0B 0x1905D6  ; 06417  ; Calibration (6b). enable TX I/Q cal loop squaring circuit
+	phy_set_rf_data(phw_data, 11, (11<<24)|0x1901D6);
+	//0x05 0x24C60A  ; 09318  ; Calibration (6c). setting TX-VGA gain: TXGCH=2 & GPK=110 --> to be optimized
+	phy_set_rf_data(phw_data, 5, (5<<24)|0x24C48A);
+    //0x06 0x06880C  ; 01A20  ; Calibration (6d). RXGCH=00; RXGCL=100 000 (RXVGA=32) --> to be optimized
+	phy_set_rf_data(phw_data, 6, (6<<24)|0x06890C);
+	//0x00 0xFDF1C0  ; 3F7C7  ; Calibration (6e). turn on IQ imbalance/Test mode
+	phy_set_rf_data(phw_data, 0, (0<<24)|0xFDF1C0);
+
+	hw_set_dxx_reg(phw_data, 0x58, 0x30303030); // IQ_Alpha Changed
+
+	// a. Disable AGC
+	hw_get_dxx_reg(phw_data, REG_AGC_CTRL3, &reg_agc_ctrl3);
+	reg_agc_ctrl3 &= ~BIT(2);
+	reg_agc_ctrl3 |= (MASK_LNA_FIX_GAIN|MASK_AGC_FIX);
+	hw_set_dxx_reg(phw_data, REG_AGC_CTRL3, reg_agc_ctrl3);
+
+	hw_get_dxx_reg(phw_data, REG_AGC_CTRL5, &val);
+	val |= MASK_AGC_FIX_GAIN;
+	hw_set_dxx_reg(phw_data, REG_AGC_CTRL5, val);
+
+	// b. set iqcal_mode[1:0] to 0x2 and set iqcal_tone[3:2] to 0
+	hw_get_dxx_reg(phw_data, REG_MODE_CTRL, &reg_mode_ctrl);
+
+	PHY_DEBUG(("[CAL]    MODE_CTRL (read) = 0x%08X\n", reg_mode_ctrl));
+	reg_mode_ctrl &= ~(MASK_IQCAL_TONE_SEL|MASK_IQCAL_MODE);
+
+	// mode=2, tone=0
+	//reg_mode_ctrl |= (MASK_CALIB_START|2);
+
+	// mode=2, tone=1
+	//reg_mode_ctrl |= (MASK_CALIB_START|2|(1<<2));
+
+	// mode=2, tone=2
+	reg_mode_ctrl |= (MASK_CALIB_START|2|(2<<2));
+	hw_set_dxx_reg(phw_data, REG_MODE_CTRL, reg_mode_ctrl);
+	PHY_DEBUG(("[CAL]    MODE_CTRL (write) = 0x%08X\n", reg_mode_ctrl));
+	pa_stall_execution(US);
+
+	hw_get_dxx_reg(phw_data, 0x5C, &reg_dc_cancel);
+	PHY_DEBUG(("[CAL]    DC_CANCEL (read) = 0x%08X\n", reg_dc_cancel));
+
+	for (loop = 0; loop < LOOP_TIMES; loop++)
+	{
+		PHY_DEBUG(("[CAL] [%d.] ==================================\n", loop));
+
+		// c.
+		// reset cancel_dc_i[9:5] and cancel_dc_q[4:0] in register DC_Cancel
+		reg_dc_cancel &= ~(0x03FF);
+		PHY_DEBUG(("[CAL]    DC_CANCEL (write) = 0x%08X\n", reg_dc_cancel));
+		hw_set_dxx_reg(phw_data, 0x5C, reg_dc_cancel);
+		pa_stall_execution(US);
+
+		hw_get_dxx_reg(phw_data, REG_CALIB_READ2, &val);
+		PHY_DEBUG(("[CAL]    CALIB_READ2 = 0x%08X\n", val));
+
+		iqcal_image_i = _s13_to_s32(val & 0x00001FFF);
+		iqcal_image_q = _s13_to_s32((val & 0x03FFE000) >> 13);
+		sqsum = iqcal_image_i*iqcal_image_i + iqcal_image_q*iqcal_image_q;
+		mag_0 = (s32) _sqrt(sqsum);
+		PHY_DEBUG(("[CAL]    mag_0=%d (iqcal_image_i=%d, iqcal_image_q=%d)\n",
+				   mag_0, iqcal_image_i, iqcal_image_q));
+
+		// d.
+		reg_dc_cancel |= (1 << CANCEL_DC_I_SHIFT);
+		PHY_DEBUG(("[CAL]    DC_CANCEL (write) = 0x%08X\n", reg_dc_cancel));
+		hw_set_dxx_reg(phw_data, 0x5C, reg_dc_cancel);
+		pa_stall_execution(US);
+
+		hw_get_dxx_reg(phw_data, REG_CALIB_READ2, &val);
+		PHY_DEBUG(("[CAL]    CALIB_READ2 = 0x%08X\n", val));
+
+		iqcal_image_i = _s13_to_s32(val & 0x00001FFF);
+		iqcal_image_q = _s13_to_s32((val & 0x03FFE000) >> 13);
+		sqsum = iqcal_image_i*iqcal_image_i + iqcal_image_q*iqcal_image_q;
+		mag_1 = (s32) _sqrt(sqsum);
+		PHY_DEBUG(("[CAL]    mag_1=%d (iqcal_image_i=%d, iqcal_image_q=%d)\n",
+				   mag_1, iqcal_image_i, iqcal_image_q));
+
+		// e. Calculate the correct DC offset cancellation value for I
+		if (mag_0 != mag_1)
+		{
+			fix_cancel_dc_i = (mag_0*10000) / (mag_0*10000 - mag_1*10000);
+		}
+		else
+		{
+			if (mag_0 == mag_1)
+			{
+				PHY_DEBUG(("[CAL]   ***** mag_0 = mag_1 !!\n"));
+			}
+
+			fix_cancel_dc_i = 0;
+		}
+
+		PHY_DEBUG(("[CAL]    ** fix_cancel_dc_i = %d (0x%04X)\n",
+				   fix_cancel_dc_i, _s32_to_s5(fix_cancel_dc_i)));
+
+		if ((abs(mag_1-mag_0)*6) > mag_0)
+		{
+			break;
+		}
+	}
+
+	if ( loop >= 19 )
+	   fix_cancel_dc_i = 0;
+
+	reg_dc_cancel &= ~(0x03FF);
+	reg_dc_cancel |= (_s32_to_s5(fix_cancel_dc_i) << CANCEL_DC_I_SHIFT);
+	hw_set_dxx_reg(phw_data, 0x5C, reg_dc_cancel);
+	PHY_DEBUG(("[CAL]    DC_CANCEL (write) = 0x%08X\n", reg_dc_cancel));
+
+	// g.
+	reg_mode_ctrl &= ~MASK_CALIB_START;
+	hw_set_dxx_reg(phw_data, REG_MODE_CTRL, reg_mode_ctrl);
+	PHY_DEBUG(("[CAL]    MODE_CTRL (write) = 0x%08X\n", reg_mode_ctrl));
+	pa_stall_execution(US);
+}
+
+///////////////////////////////////////////////////////
+void _txqdac_dc_offset_cacellation_winbond(hw_data_t *phw_data)
+{
+	u32     reg_agc_ctrl3;
+	u32     reg_mode_ctrl;
+	u32     reg_dc_cancel;
+	s32     iqcal_image_i;
+	s32     iqcal_image_q;
+	u32     sqsum;
+	s32     mag_0;
+	s32     mag_1;
+	s32     fix_cancel_dc_q = 0;
+	u32     val;
+	int     loop;
+
+	PHY_DEBUG(("[CAL] -> [3]_txqdac_dc_offset_cacellation()\n"));
+	//0x01 0xEE3FC2  ; 3B8FF  ; Calibration (6a). enable TX IQ calibration loop circuits
+	phy_set_rf_data(phw_data, 1, (1<<24)|0xEE3FC2);
+	//0x0B 0x1905D6  ; 06417  ; Calibration (6b). enable TX I/Q cal loop squaring circuit
+	phy_set_rf_data(phw_data, 11, (11<<24)|0x1901D6);
+	//0x05 0x24C60A  ; 09318  ; Calibration (6c). setting TX-VGA gain: TXGCH=2 & GPK=110 --> to be optimized
+	phy_set_rf_data(phw_data, 5, (5<<24)|0x24C48A);
+    //0x06 0x06880C  ; 01A20  ; Calibration (6d). RXGCH=00; RXGCL=100 000 (RXVGA=32) --> to be optimized
+	phy_set_rf_data(phw_data, 6, (6<<24)|0x06890C);
+	//0x00 0xFDF1C0  ; 3F7C7  ; Calibration (6e). turn on IQ imbalance/Test mode
+	phy_set_rf_data(phw_data, 0, (0<<24)|0xFDF1C0);
+
+	hw_set_dxx_reg(phw_data, 0x58, 0x30303030); // IQ_Alpha Changed
+
+	// a. Disable AGC
+	hw_get_dxx_reg(phw_data, REG_AGC_CTRL3, &reg_agc_ctrl3);
+	reg_agc_ctrl3 &= ~BIT(2);
+	reg_agc_ctrl3 |= (MASK_LNA_FIX_GAIN|MASK_AGC_FIX);
+	hw_set_dxx_reg(phw_data, REG_AGC_CTRL3, reg_agc_ctrl3);
+
+	hw_get_dxx_reg(phw_data, REG_AGC_CTRL5, &val);
+	val |= MASK_AGC_FIX_GAIN;
+	hw_set_dxx_reg(phw_data, REG_AGC_CTRL5, val);
+
+	// a. set iqcal_mode[1:0] to 0x3 and set iqcal_tone[3:2] to 0
+	hw_get_dxx_reg(phw_data, REG_MODE_CTRL, &reg_mode_ctrl);
+	PHY_DEBUG(("[CAL]    MODE_CTRL (read) = 0x%08X\n", reg_mode_ctrl));
+
+	//reg_mode_ctrl &= ~(MASK_IQCAL_TONE_SEL|MASK_IQCAL_MODE);
+	reg_mode_ctrl &= ~(MASK_IQCAL_MODE);
+	reg_mode_ctrl |= (MASK_CALIB_START|3);
+	hw_set_dxx_reg(phw_data, REG_MODE_CTRL, reg_mode_ctrl);
+	PHY_DEBUG(("[CAL]    MODE_CTRL (write) = 0x%08X\n", reg_mode_ctrl));
+	pa_stall_execution(US);
+
+	hw_get_dxx_reg(phw_data, 0x5C, &reg_dc_cancel);
+	PHY_DEBUG(("[CAL]    DC_CANCEL (read) = 0x%08X\n", reg_dc_cancel));
+
+	for (loop = 0; loop < LOOP_TIMES; loop++)
+	{
+		PHY_DEBUG(("[CAL] [%d.] ==================================\n", loop));
+
+		// b.
+		// reset cancel_dc_q[4:0] in register DC_Cancel
+		reg_dc_cancel &= ~(0x001F);
+		PHY_DEBUG(("[CAL]    DC_CANCEL (write) = 0x%08X\n", reg_dc_cancel));
+		hw_set_dxx_reg(phw_data, 0x5C, reg_dc_cancel);
+		pa_stall_execution(US);
+
+		hw_get_dxx_reg(phw_data, REG_CALIB_READ2, &val);
+		PHY_DEBUG(("[CAL]    CALIB_READ2 = 0x%08X\n", val));
+		pa_stall_execution(US);
+
+		iqcal_image_i = _s13_to_s32(val & 0x00001FFF);
+		iqcal_image_q = _s13_to_s32((val & 0x03FFE000) >> 13);
+		sqsum = iqcal_image_i*iqcal_image_i + iqcal_image_q*iqcal_image_q;
+		mag_0 = _sqrt(sqsum);
+		PHY_DEBUG(("[CAL]    mag_0=%d (iqcal_image_i=%d, iqcal_image_q=%d)\n",
+				   mag_0, iqcal_image_i, iqcal_image_q));
+
+		// c.
+		reg_dc_cancel |= (1 << CANCEL_DC_Q_SHIFT);
+		PHY_DEBUG(("[CAL]    DC_CANCEL (write) = 0x%08X\n", reg_dc_cancel));
+		hw_set_dxx_reg(phw_data, 0x5C, reg_dc_cancel);
+		pa_stall_execution(US);
+
+		hw_get_dxx_reg(phw_data, REG_CALIB_READ2, &val);
+		PHY_DEBUG(("[CAL]    CALIB_READ2 = 0x%08X\n", val));
+		pa_stall_execution(US);
+
+		iqcal_image_i = _s13_to_s32(val & 0x00001FFF);
+		iqcal_image_q = _s13_to_s32((val & 0x03FFE000) >> 13);
+		sqsum = iqcal_image_i*iqcal_image_i + iqcal_image_q*iqcal_image_q;
+		mag_1 = _sqrt(sqsum);
+		PHY_DEBUG(("[CAL]    mag_1=%d (iqcal_image_i=%d, iqcal_image_q=%d)\n",
+				   mag_1, iqcal_image_i, iqcal_image_q));
+
+		// d. Calculate the correct DC offset cancellation value for I
+		if (mag_0 != mag_1)
+		{
+			fix_cancel_dc_q = (mag_0*10000) / (mag_0*10000 - mag_1*10000);
+		}
+		else
+		{
+			if (mag_0 == mag_1)
+			{
+				PHY_DEBUG(("[CAL]   ***** mag_0 = mag_1 !!\n"));
+			}
+
+			fix_cancel_dc_q = 0;
+		}
+
+		PHY_DEBUG(("[CAL]    ** fix_cancel_dc_q = %d (0x%04X)\n",
+				   fix_cancel_dc_q, _s32_to_s5(fix_cancel_dc_q)));
+
+		if ((abs(mag_1-mag_0)*6) > mag_0)
+		{
+			break;
+		}
+	}
+
+	if ( loop >= 19 )
+	   fix_cancel_dc_q = 0;
+
+	reg_dc_cancel &= ~(0x001F);
+	reg_dc_cancel |= (_s32_to_s5(fix_cancel_dc_q) << CANCEL_DC_Q_SHIFT);
+	hw_set_dxx_reg(phw_data, 0x5C, reg_dc_cancel);
+	PHY_DEBUG(("[CAL]    DC_CANCEL (write) = 0x%08X\n", reg_dc_cancel));
+
+
+	// f.
+	reg_mode_ctrl &= ~MASK_CALIB_START;
+	hw_set_dxx_reg(phw_data, REG_MODE_CTRL, reg_mode_ctrl);
+	PHY_DEBUG(("[CAL]    MODE_CTRL (write) = 0x%08X\n", reg_mode_ctrl));
+	pa_stall_execution(US);
+}
+
+//20060612.1.a 20060718.1 Modify
+u8 _tx_iq_calibration_loop_winbond(hw_data_t *phw_data,
+						   s32 a_2_threshold,
+						   s32 b_2_threshold)
+{
+	u32     reg_mode_ctrl;
+	s32     iq_mag_0_tx;
+	s32     iqcal_tone_i0;
+	s32     iqcal_tone_q0;
+	s32     iqcal_tone_i;
+	s32     iqcal_tone_q;
+	u32     sqsum;
+	s32     rot_i_b;
+	s32     rot_q_b;
+	s32     tx_cal_flt_b[4];
+	s32     tx_cal[4];
+	s32     tx_cal_reg[4];
+	s32     a_2, b_2;
+	s32     sin_b, sin_2b;
+	s32     cos_b, cos_2b;
+	s32     divisor;
+	s32     temp1, temp2;
+	u32     val;
+	u16     loop;
+	s32     iqcal_tone_i_avg,iqcal_tone_q_avg;
+	u8      verify_count;
+	int capture_time;
+
+	PHY_DEBUG(("[CAL] -> _tx_iq_calibration_loop()\n"));
+	PHY_DEBUG(("[CAL]    ** a_2_threshold = %d\n", a_2_threshold));
+	PHY_DEBUG(("[CAL]    ** b_2_threshold = %d\n", b_2_threshold));
+
+	verify_count = 0;
+
+	hw_get_dxx_reg(phw_data, REG_MODE_CTRL, &reg_mode_ctrl);
+	PHY_DEBUG(("[CAL]    MODE_CTRL (read) = 0x%08X\n", reg_mode_ctrl));
+
+	loop = LOOP_TIMES;
+
+	while (loop > 0)
+	{
+		PHY_DEBUG(("[CAL] [%d.] <_tx_iq_calibration_loop>\n", (LOOP_TIMES-loop+1)));
+
+		iqcal_tone_i_avg=0;
+		iqcal_tone_q_avg=0;
+		if( !hw_set_dxx_reg(phw_data, 0x3C, 0x00) ) // 20060718.1 modify
+			return 0;
+		for(capture_time=0;capture_time<10;capture_time++)
+		{
+			// a. Set iqcal_mode[1:0] to 0x2 and set "calib_start" to 0x1 to
+			//    enable "IQ alibration Mode II"
+			reg_mode_ctrl &= ~(MASK_IQCAL_TONE_SEL|MASK_IQCAL_MODE);
+			reg_mode_ctrl &= ~MASK_IQCAL_MODE;
+			reg_mode_ctrl |= (MASK_CALIB_START|0x02);
+			reg_mode_ctrl |= (MASK_CALIB_START|0x02|2<<2);
+			hw_set_dxx_reg(phw_data, REG_MODE_CTRL, reg_mode_ctrl);
+			PHY_DEBUG(("[CAL]    MODE_CTRL (write) = 0x%08X\n", reg_mode_ctrl));
+			pa_stall_execution(US);
+
+			// b.
+			hw_get_dxx_reg(phw_data, REG_CALIB_READ1, &val);
+			PHY_DEBUG(("[CAL]    CALIB_READ1 = 0x%08X\n", val));
+			pa_stall_execution(US);
+
+			iqcal_tone_i0 = _s13_to_s32(val & 0x00001FFF);
+			iqcal_tone_q0 = _s13_to_s32((val & 0x03FFE000) >> 13);
+			PHY_DEBUG(("[CAL]    ** iqcal_tone_i0=%d, iqcal_tone_q0=%d\n",
+				   iqcal_tone_i0, iqcal_tone_q0));
+
+			sqsum = iqcal_tone_i0*iqcal_tone_i0 +
+			iqcal_tone_q0*iqcal_tone_q0;
+			iq_mag_0_tx = (s32) _sqrt(sqsum);
+			PHY_DEBUG(("[CAL]    ** iq_mag_0_tx=%d\n", iq_mag_0_tx));
+
+			// c. Set "calib_start" to 0x0
+			reg_mode_ctrl &= ~MASK_CALIB_START;
+			hw_set_dxx_reg(phw_data, REG_MODE_CTRL, reg_mode_ctrl);
+			PHY_DEBUG(("[CAL]    MODE_CTRL (write) = 0x%08X\n", reg_mode_ctrl));
+			pa_stall_execution(US);
+
+			// d. Set iqcal_mode[1:0] to 0x3 and set "calib_start" to 0x1 to
+			//    enable "IQ alibration Mode II"
+			//hw_get_dxx_reg(phw_data, REG_MODE_CTRL, &val);
+			hw_get_dxx_reg(phw_data, REG_MODE_CTRL, &reg_mode_ctrl);
+			reg_mode_ctrl &= ~MASK_IQCAL_MODE;
+			reg_mode_ctrl |= (MASK_CALIB_START|0x03);
+			hw_set_dxx_reg(phw_data, REG_MODE_CTRL, reg_mode_ctrl);
+			PHY_DEBUG(("[CAL]    MODE_CTRL (write) = 0x%08X\n", reg_mode_ctrl));
+			pa_stall_execution(US);
+
+			// e.
+			hw_get_dxx_reg(phw_data, REG_CALIB_READ1, &val);
+			PHY_DEBUG(("[CAL]    CALIB_READ1 = 0x%08X\n", val));
+			pa_stall_execution(US);
+
+			iqcal_tone_i = _s13_to_s32(val & 0x00001FFF);
+			iqcal_tone_q = _s13_to_s32((val & 0x03FFE000) >> 13);
+			PHY_DEBUG(("[CAL]    ** iqcal_tone_i = %d, iqcal_tone_q = %d\n",
+			iqcal_tone_i, iqcal_tone_q));
+			if( capture_time == 0)
+			{
+				continue;
+			}
+			else
+			{
+				iqcal_tone_i_avg=( iqcal_tone_i_avg*(capture_time-1) +iqcal_tone_i)/capture_time;
+				iqcal_tone_q_avg=( iqcal_tone_q_avg*(capture_time-1) +iqcal_tone_q)/capture_time;
+			}
+		}
+
+		iqcal_tone_i = iqcal_tone_i_avg;
+		iqcal_tone_q = iqcal_tone_q_avg;
+
+
+		rot_i_b = (iqcal_tone_i * iqcal_tone_i0 +
+				   iqcal_tone_q * iqcal_tone_q0) / 1024;
+		rot_q_b = (iqcal_tone_i * iqcal_tone_q0 * (-1) +
+				   iqcal_tone_q * iqcal_tone_i0) / 1024;
+		PHY_DEBUG(("[CAL]    ** rot_i_b = %d, rot_q_b = %d\n",
+				   rot_i_b, rot_q_b));
+
+		// f.
+		divisor = ((iq_mag_0_tx * iq_mag_0_tx * 2)/1024 - rot_i_b) * 2;
+
+		if (divisor == 0)
+		{
+			PHY_DEBUG(("[CAL] ** <_tx_iq_calibration_loop> ERROR *******\n"));
+			PHY_DEBUG(("[CAL] ** divisor=0 to calculate EPS and THETA !!\n"));
+			PHY_DEBUG(("[CAL] ******************************************\n"));
+			break;
+		}
+
+		a_2 = (rot_i_b * 32768) / divisor;
+		b_2 = (rot_q_b * (-32768)) / divisor;
+		PHY_DEBUG(("[CAL]    ***** EPSILON/2 = %d\n", a_2));
+		PHY_DEBUG(("[CAL]    ***** THETA/2   = %d\n", b_2));
+
+		phw_data->iq_rsdl_gain_tx_d2 = a_2;
+		phw_data->iq_rsdl_phase_tx_d2 = b_2;
+
+		//if ((abs(a_2) < 150) && (abs(b_2) < 100))
+		//if ((abs(a_2) < 200) && (abs(b_2) < 200))
+		if ((abs(a_2) < a_2_threshold) && (abs(b_2) < b_2_threshold))
+		{
+			verify_count++;
+
+			PHY_DEBUG(("[CAL] ** <_tx_iq_calibration_loop> *************\n"));
+			PHY_DEBUG(("[CAL] ** VERIFY OK # %d !!\n", verify_count));
+			PHY_DEBUG(("[CAL] ******************************************\n"));
+
+			if (verify_count > 2)
+			{
+				PHY_DEBUG(("[CAL] ** <_tx_iq_calibration_loop> *********\n"));
+				PHY_DEBUG(("[CAL] ** TX_IQ_CALIBRATION (EPS,THETA) OK !!\n"));
+				PHY_DEBUG(("[CAL] **************************************\n"));
+				return 0;
+			}
+
+			continue;
+		}
+		else
+		{
+			verify_count = 0;
+		}
+
+		_sin_cos(b_2, &sin_b, &cos_b);
+		_sin_cos(b_2*2, &sin_2b, &cos_2b);
+		PHY_DEBUG(("[CAL]    ** sin(b/2)=%d, cos(b/2)=%d\n", sin_b, cos_b));
+		PHY_DEBUG(("[CAL]    ** sin(b)=%d, cos(b)=%d\n", sin_2b, cos_2b));
+
+		if (cos_2b == 0)
+		{
+			PHY_DEBUG(("[CAL] ** <_tx_iq_calibration_loop> ERROR *******\n"));
+			PHY_DEBUG(("[CAL] ** cos(b)=0 !!\n"));
+			PHY_DEBUG(("[CAL] ******************************************\n"));
+			break;
+		}
+
+		// 1280 * 32768 = 41943040
+		temp1 = (41943040/cos_2b)*cos_b;
+
+		//temp2 = (41943040/cos_2b)*sin_b*(-1);
+		if (phw_data->revision == 0x2002) // 1st-cut
+		{
+			temp2 = (41943040/cos_2b)*sin_b*(-1);
+		}
+		else // 2nd-cut
+		{
+			temp2 = (41943040*4/cos_2b)*sin_b*(-1);
+		}
+
+		tx_cal_flt_b[0] = _floor(temp1/(32768+a_2));
+		tx_cal_flt_b[1] = _floor(temp2/(32768+a_2));
+		tx_cal_flt_b[2] = _floor(temp2/(32768-a_2));
+		tx_cal_flt_b[3] = _floor(temp1/(32768-a_2));
+		PHY_DEBUG(("[CAL]    ** tx_cal_flt_b[0] = %d\n", tx_cal_flt_b[0]));
+		PHY_DEBUG(("[CAL]       tx_cal_flt_b[1] = %d\n", tx_cal_flt_b[1]));
+		PHY_DEBUG(("[CAL]       tx_cal_flt_b[2] = %d\n", tx_cal_flt_b[2]));
+		PHY_DEBUG(("[CAL]       tx_cal_flt_b[3] = %d\n", tx_cal_flt_b[3]));
+
+		tx_cal[2] = tx_cal_flt_b[2];
+		tx_cal[2] = tx_cal[2] +3;
+		tx_cal[1] = tx_cal[2];
+		tx_cal[3] = tx_cal_flt_b[3] - 128;
+		tx_cal[0] = -tx_cal[3]+1;
+
+		PHY_DEBUG(("[CAL]       tx_cal[0] = %d\n", tx_cal[0]));
+		PHY_DEBUG(("[CAL]       tx_cal[1] = %d\n", tx_cal[1]));
+		PHY_DEBUG(("[CAL]       tx_cal[2] = %d\n", tx_cal[2]));
+		PHY_DEBUG(("[CAL]       tx_cal[3] = %d\n", tx_cal[3]));
+
+		//if ((tx_cal[0] == 0) && (tx_cal[1] == 0) &&
+		//    (tx_cal[2] == 0) && (tx_cal[3] == 0))
+		//{
+		//    PHY_DEBUG(("[CAL] ** <_tx_iq_calibration_loop> *************\n"));
+		//    PHY_DEBUG(("[CAL] ** TX_IQ_CALIBRATION COMPLETE !!\n"));
+		//    PHY_DEBUG(("[CAL] ******************************************\n"));
+		//    return 0;
+		//}
+
+		// g.
+		if (phw_data->revision == 0x2002) // 1st-cut
+		{
+			hw_get_dxx_reg(phw_data, 0x54, &val);
+			PHY_DEBUG(("[CAL]    ** 0x54 = 0x%08X\n", val));
+			tx_cal_reg[0] = _s4_to_s32((val & 0xF0000000) >> 28);
+			tx_cal_reg[1] = _s4_to_s32((val & 0x0F000000) >> 24);
+			tx_cal_reg[2] = _s4_to_s32((val & 0x00F00000) >> 20);
+			tx_cal_reg[3] = _s4_to_s32((val & 0x000F0000) >> 16);
+		}
+		else // 2nd-cut
+		{
+			hw_get_dxx_reg(phw_data, 0x3C, &val);
+			PHY_DEBUG(("[CAL]    ** 0x3C = 0x%08X\n", val));
+			tx_cal_reg[0] = _s5_to_s32((val & 0xF8000000) >> 27);
+			tx_cal_reg[1] = _s6_to_s32((val & 0x07E00000) >> 21);
+			tx_cal_reg[2] = _s6_to_s32((val & 0x001F8000) >> 15);
+			tx_cal_reg[3] = _s5_to_s32((val & 0x00007C00) >> 10);
+
+		}
+
+		PHY_DEBUG(("[CAL]    ** tx_cal_reg[0] = %d\n", tx_cal_reg[0]));
+		PHY_DEBUG(("[CAL]       tx_cal_reg[1] = %d\n", tx_cal_reg[1]));
+		PHY_DEBUG(("[CAL]       tx_cal_reg[2] = %d\n", tx_cal_reg[2]));
+		PHY_DEBUG(("[CAL]       tx_cal_reg[3] = %d\n", tx_cal_reg[3]));
+
+		if (phw_data->revision == 0x2002) // 1st-cut
+		{
+			if (((tx_cal_reg[0]==7) || (tx_cal_reg[0]==(-8))) &&
+				((tx_cal_reg[3]==7) || (tx_cal_reg[3]==(-8))))
+			{
+				PHY_DEBUG(("[CAL] ** <_tx_iq_calibration_loop> *********\n"));
+				PHY_DEBUG(("[CAL] ** TX_IQ_CALIBRATION SATUATION !!\n"));
+				PHY_DEBUG(("[CAL] **************************************\n"));
+				break;
+			}
+		}
+		else // 2nd-cut
+		{
+			if (((tx_cal_reg[0]==31) || (tx_cal_reg[0]==(-32))) &&
+				((tx_cal_reg[3]==31) || (tx_cal_reg[3]==(-32))))
+			{
+				PHY_DEBUG(("[CAL] ** <_tx_iq_calibration_loop> *********\n"));
+				PHY_DEBUG(("[CAL] ** TX_IQ_CALIBRATION SATUATION !!\n"));
+				PHY_DEBUG(("[CAL] **************************************\n"));
+				break;
+			}
+		}
+
+		tx_cal[0] = tx_cal[0] + tx_cal_reg[0];
+		tx_cal[1] = tx_cal[1] + tx_cal_reg[1];
+		tx_cal[2] = tx_cal[2] + tx_cal_reg[2];
+		tx_cal[3] = tx_cal[3] + tx_cal_reg[3];
+		PHY_DEBUG(("[CAL]    ** apply tx_cal[0] = %d\n", tx_cal[0]));
+		PHY_DEBUG(("[CAL]       apply tx_cal[1] = %d\n", tx_cal[1]));
+		PHY_DEBUG(("[CAL]       apply tx_cal[2] = %d\n", tx_cal[2]));
+		PHY_DEBUG(("[CAL]       apply tx_cal[3] = %d\n", tx_cal[3]));
+
+		if (phw_data->revision == 0x2002) // 1st-cut
+		{
+			val &= 0x0000FFFF;
+			val |= ((_s32_to_s4(tx_cal[0]) << 28)|
+					(_s32_to_s4(tx_cal[1]) << 24)|
+					(_s32_to_s4(tx_cal[2]) << 20)|
+					(_s32_to_s4(tx_cal[3]) << 16));
+			hw_set_dxx_reg(phw_data, 0x54, val);
+			PHY_DEBUG(("[CAL]    ** CALIB_DATA = 0x%08X\n", val));
+			return 0;
+		}
+		else // 2nd-cut
+		{
+			val &= 0x000003FF;
+			val |= ((_s32_to_s5(tx_cal[0]) << 27)|
+					(_s32_to_s6(tx_cal[1]) << 21)|
+					(_s32_to_s6(tx_cal[2]) << 15)|
+					(_s32_to_s5(tx_cal[3]) << 10));
+			hw_set_dxx_reg(phw_data, 0x3C, val);
+			PHY_DEBUG(("[CAL]    ** TX_IQ_CALIBRATION = 0x%08X\n", val));
+			return 0;
+		}
+
+		// i. Set "calib_start" to 0x0
+		reg_mode_ctrl &= ~MASK_CALIB_START;
+		hw_set_dxx_reg(phw_data, REG_MODE_CTRL, reg_mode_ctrl);
+		PHY_DEBUG(("[CAL]    MODE_CTRL (write) = 0x%08X\n", reg_mode_ctrl));
+
+		loop--;
+	}
+
+	return 1;
+}
+
+void _tx_iq_calibration_winbond(hw_data_t *phw_data)
+{
+	u32     reg_agc_ctrl3;
+#ifdef _DEBUG
+	s32     tx_cal_reg[4];
+
+#endif
+	u32     reg_mode_ctrl;
+	u32     val;
+	u8      result;
+
+	PHY_DEBUG(("[CAL] -> [4]_tx_iq_calibration()\n"));
+
+	//0x01 0xEE3FC2  ; 3B8FF  ; Calibration (6a). enable TX IQ calibration loop circuits
+	phy_set_rf_data(phw_data, 1, (1<<24)|0xEE3FC2);
+	//0x0B 0x1905D6  ; 06417  ; Calibration (6b). enable TX I/Q cal loop squaring circuit
+	phy_set_rf_data(phw_data, 11, (11<<24)|0x19BDD6); // 20060612.1.a 0x1905D6);
+	//0x05 0x24C60A  ; 09318  ; Calibration (6c). setting TX-VGA gain: TXGCH=2 & GPK=110 --> to be optimized
+	phy_set_rf_data(phw_data, 5, (5<<24)|0x24C60A); //0x24C60A (high temperature)
+    //0x06 0x06880C  ; 01A20  ; Calibration (6d). RXGCH=00; RXGCL=100 000 (RXVGA=32) --> to be optimized
+	phy_set_rf_data(phw_data, 6, (6<<24)|0x34880C); // 20060612.1.a 0x06890C);
+	//0x00 0xFDF1C0  ; 3F7C7  ; Calibration (6e). turn on IQ imbalance/Test mode
+	phy_set_rf_data(phw_data, 0, (0<<24)|0xFDF1C0);
+	//; [BB-chip]: Calibration (6f).Send test pattern
+	//; [BB-chip]: Calibration (6g). Search RXGCL optimal value
+	//; [BB-chip]: Calibration (6h). Caculate TX-path IQ imbalance and setting TX path IQ compensation table
+	//phy_set_rf_data(phw_data, 3, (3<<24)|0x025586);
+
+	OS_SLEEP(30000); // 20060612.1.a 30ms delay. Add the follow 2 lines
+	//To adjust TXVGA to fit iq_mag_0 range from 1250 ~ 1750
+	adjust_TXVGA_for_iq_mag( phw_data );
+
+	// a. Disable AGC
+	hw_get_dxx_reg(phw_data, REG_AGC_CTRL3, &reg_agc_ctrl3);
+	reg_agc_ctrl3 &= ~BIT(2);
+	reg_agc_ctrl3 |= (MASK_LNA_FIX_GAIN|MASK_AGC_FIX);
+	hw_set_dxx_reg(phw_data, REG_AGC_CTRL3, reg_agc_ctrl3);
+
+	hw_get_dxx_reg(phw_data, REG_AGC_CTRL5, &val);
+	val |= MASK_AGC_FIX_GAIN;
+	hw_set_dxx_reg(phw_data, REG_AGC_CTRL5, val);
+
+	result = _tx_iq_calibration_loop_winbond(phw_data, 150, 100);
+
+	if (result > 0)
+	{
+		if (phw_data->revision == 0x2002) // 1st-cut
+		{
+			hw_get_dxx_reg(phw_data, 0x54, &val);
+			val &= 0x0000FFFF;
+			hw_set_dxx_reg(phw_data, 0x54, val);
+		}
+		else // 2nd-cut
+		{
+			hw_get_dxx_reg(phw_data, 0x3C, &val);
+			val &= 0x000003FF;
+			hw_set_dxx_reg(phw_data, 0x3C, val);
+		}
+
+		result = _tx_iq_calibration_loop_winbond(phw_data, 300, 200);
+
+		if (result > 0)
+		{
+			if (phw_data->revision == 0x2002) // 1st-cut
+			{
+				hw_get_dxx_reg(phw_data, 0x54, &val);
+				val &= 0x0000FFFF;
+				hw_set_dxx_reg(phw_data, 0x54, val);
+			}
+			else // 2nd-cut
+			{
+				hw_get_dxx_reg(phw_data, 0x3C, &val);
+				val &= 0x000003FF;
+				hw_set_dxx_reg(phw_data, 0x3C, val);
+			}
+
+			result = _tx_iq_calibration_loop_winbond(phw_data, 500, 400);
+			if (result > 0)
+			{
+				if (phw_data->revision == 0x2002) // 1st-cut
+				{
+					hw_get_dxx_reg(phw_data, 0x54, &val);
+					val &= 0x0000FFFF;
+					hw_set_dxx_reg(phw_data, 0x54, val);
+				}
+				else // 2nd-cut
+				{
+					hw_get_dxx_reg(phw_data, 0x3C, &val);
+					val &= 0x000003FF;
+					hw_set_dxx_reg(phw_data, 0x3C, val);
+				}
+
+
+				result = _tx_iq_calibration_loop_winbond(phw_data, 700, 500);
+
+				if (result > 0)
+				{
+					PHY_DEBUG(("[CAL] ** <_tx_iq_calibration> **************\n"));
+					PHY_DEBUG(("[CAL] ** TX_IQ_CALIBRATION FAILURE !!\n"));
+					PHY_DEBUG(("[CAL] **************************************\n"));
+
+					if (phw_data->revision == 0x2002) // 1st-cut
+					{
+						hw_get_dxx_reg(phw_data, 0x54, &val);
+						val &= 0x0000FFFF;
+						hw_set_dxx_reg(phw_data, 0x54, val);
+					}
+					else // 2nd-cut
+					{
+						hw_get_dxx_reg(phw_data, 0x3C, &val);
+						val &= 0x000003FF;
+						hw_set_dxx_reg(phw_data, 0x3C, val);
+					}
+				}
+			}
+		}
+	}
+
+	// i. Set "calib_start" to 0x0
+	hw_get_dxx_reg(phw_data, REG_MODE_CTRL, &reg_mode_ctrl);
+	reg_mode_ctrl &= ~MASK_CALIB_START;
+	hw_set_dxx_reg(phw_data, REG_MODE_CTRL, reg_mode_ctrl);
+	PHY_DEBUG(("[CAL]    MODE_CTRL (write) = 0x%08X\n", reg_mode_ctrl));
+
+	// g. Enable AGC
+	//hw_get_dxx_reg(phw_data, REG_AGC_CTRL3, &val);
+	reg_agc_ctrl3 |= BIT(2);
+	reg_agc_ctrl3 &= ~(MASK_LNA_FIX_GAIN|MASK_AGC_FIX);
+	hw_set_dxx_reg(phw_data, REG_AGC_CTRL3, reg_agc_ctrl3);
+
+#ifdef _DEBUG
+	if (phw_data->revision == 0x2002) // 1st-cut
+	{
+		hw_get_dxx_reg(phw_data, 0x54, &val);
+		PHY_DEBUG(("[CAL]    ** 0x54 = 0x%08X\n", val));
+		tx_cal_reg[0] = _s4_to_s32((val & 0xF0000000) >> 28);
+		tx_cal_reg[1] = _s4_to_s32((val & 0x0F000000) >> 24);
+		tx_cal_reg[2] = _s4_to_s32((val & 0x00F00000) >> 20);
+		tx_cal_reg[3] = _s4_to_s32((val & 0x000F0000) >> 16);
+	}
+	else // 2nd-cut
+	{
+		hw_get_dxx_reg(phw_data, 0x3C, &val);
+		PHY_DEBUG(("[CAL]    ** 0x3C = 0x%08X\n", val));
+		tx_cal_reg[0] = _s5_to_s32((val & 0xF8000000) >> 27);
+		tx_cal_reg[1] = _s6_to_s32((val & 0x07E00000) >> 21);
+		tx_cal_reg[2] = _s6_to_s32((val & 0x001F8000) >> 15);
+		tx_cal_reg[3] = _s5_to_s32((val & 0x00007C00) >> 10);
+
+	}
+
+	PHY_DEBUG(("[CAL]    ** tx_cal_reg[0] = %d\n", tx_cal_reg[0]));
+	PHY_DEBUG(("[CAL]       tx_cal_reg[1] = %d\n", tx_cal_reg[1]));
+	PHY_DEBUG(("[CAL]       tx_cal_reg[2] = %d\n", tx_cal_reg[2]));
+	PHY_DEBUG(("[CAL]       tx_cal_reg[3] = %d\n", tx_cal_reg[3]));
+#endif
+
+
+	// for test - BEN
+	// RF Control Override
+}
+
+/////////////////////////////////////////////////////////////////////////////////////////
+u8 _rx_iq_calibration_loop_winbond(hw_data_t *phw_data, u16 factor, u32 frequency)
+{
+	u32     reg_mode_ctrl;
+	s32     iqcal_tone_i;
+	s32     iqcal_tone_q;
+	s32     iqcal_image_i;
+	s32     iqcal_image_q;
+	s32     rot_tone_i_b;
+	s32     rot_tone_q_b;
+	s32     rot_image_i_b;
+	s32     rot_image_q_b;
+	s32     rx_cal_flt_b[4];
+	s32     rx_cal[4];
+	s32     rx_cal_reg[4];
+	s32     a_2, b_2;
+	s32     sin_b, sin_2b;
+	s32     cos_b, cos_2b;
+	s32     temp1, temp2;
+	u32     val;
+	u16     loop;
+
+	u32     pwr_tone;
+	u32     pwr_image;
+	u8      verify_count;
+
+	s32     iqcal_tone_i_avg,iqcal_tone_q_avg;
+	s32     iqcal_image_i_avg,iqcal_image_q_avg;
+	u16		capture_time;
+
+	PHY_DEBUG(("[CAL] -> [5]_rx_iq_calibration_loop()\n"));
+	PHY_DEBUG(("[CAL] ** factor = %d\n", factor));
+
+
+// RF Control Override
+	hw_get_cxx_reg(phw_data, 0x80, &val);
+	val |= BIT(19);
+	hw_set_cxx_reg(phw_data, 0x80, val);
+
+// RF_Ctrl
+	hw_get_cxx_reg(phw_data, 0xE4, &val);
+	val |= BIT(0);
+	hw_set_cxx_reg(phw_data, 0xE4, val);
+	PHY_DEBUG(("[CAL] ** RF_CTRL(0xE4) = 0x%08X", val));
+
+	hw_set_dxx_reg(phw_data, 0x58, 0x44444444); // IQ_Alpha
+
+	// b.
+
+	hw_get_dxx_reg(phw_data, REG_MODE_CTRL, &reg_mode_ctrl);
+	PHY_DEBUG(("[CAL]    MODE_CTRL (read) = 0x%08X\n", reg_mode_ctrl));
+
+	verify_count = 0;
+
+	//for (loop = 0; loop < 1; loop++)
+	//for (loop = 0; loop < LOOP_TIMES; loop++)
+	loop = LOOP_TIMES;
+	while (loop > 0)
+	{
+		PHY_DEBUG(("[CAL] [%d.] <_rx_iq_calibration_loop>\n", (LOOP_TIMES-loop+1)));
+		iqcal_tone_i_avg=0;
+		iqcal_tone_q_avg=0;
+		iqcal_image_i_avg=0;
+		iqcal_image_q_avg=0;
+		capture_time=0;
+
+		for(capture_time=0; capture_time<10; capture_time++)
+		{
+		// i. Set "calib_start" to 0x0
+		reg_mode_ctrl &= ~MASK_CALIB_START;
+		if( !hw_set_dxx_reg(phw_data, REG_MODE_CTRL, reg_mode_ctrl) )//20060718.1 modify
+			return 0;
+		PHY_DEBUG(("[CAL]    MODE_CTRL (write) = 0x%08X\n", reg_mode_ctrl));
+		pa_stall_execution(US);
+
+		reg_mode_ctrl &= ~MASK_IQCAL_MODE;
+		reg_mode_ctrl |= (MASK_CALIB_START|0x1);
+		hw_set_dxx_reg(phw_data, REG_MODE_CTRL, reg_mode_ctrl);
+		PHY_DEBUG(("[CAL]    MODE_CTRL (write) = 0x%08X\n", reg_mode_ctrl));
+		pa_stall_execution(US);  //Should be read out after 450us
+
+		// c.
+		hw_get_dxx_reg(phw_data, REG_CALIB_READ1, &val);
+		PHY_DEBUG(("[CAL]    CALIB_READ1 = 0x%08X\n", val));
+
+		iqcal_tone_i = _s13_to_s32(val & 0x00001FFF);
+		iqcal_tone_q = _s13_to_s32((val & 0x03FFE000) >> 13);
+		PHY_DEBUG(("[CAL]    ** iqcal_tone_i = %d, iqcal_tone_q = %d\n",
+				   iqcal_tone_i, iqcal_tone_q));
+
+		hw_get_dxx_reg(phw_data, REG_CALIB_READ2, &val);
+		PHY_DEBUG(("[CAL]    CALIB_READ2 = 0x%08X\n", val));
+
+		iqcal_image_i = _s13_to_s32(val & 0x00001FFF);
+		iqcal_image_q = _s13_to_s32((val & 0x03FFE000) >> 13);
+		PHY_DEBUG(("[CAL]    ** iqcal_image_i = %d, iqcal_image_q = %d\n",
+				   iqcal_image_i, iqcal_image_q));
+			if( capture_time == 0)
+			{
+				continue;
+			}
+			else
+			{
+				iqcal_image_i_avg=( iqcal_image_i_avg*(capture_time-1) +iqcal_image_i)/capture_time;
+				iqcal_image_q_avg=( iqcal_image_q_avg*(capture_time-1) +iqcal_image_q)/capture_time;
+				iqcal_tone_i_avg=( iqcal_tone_i_avg*(capture_time-1) +iqcal_tone_i)/capture_time;
+				iqcal_tone_q_avg=( iqcal_tone_q_avg*(capture_time-1) +iqcal_tone_q)/capture_time;
+			}
+		}
+
+
+		iqcal_image_i = iqcal_image_i_avg;
+		iqcal_image_q = iqcal_image_q_avg;
+		iqcal_tone_i = iqcal_tone_i_avg;
+		iqcal_tone_q = iqcal_tone_q_avg;
+
+		// d.
+		rot_tone_i_b = (iqcal_tone_i * iqcal_tone_i +
+						iqcal_tone_q * iqcal_tone_q) / 1024;
+		rot_tone_q_b = (iqcal_tone_i * iqcal_tone_q * (-1) +
+						iqcal_tone_q * iqcal_tone_i) / 1024;
+		rot_image_i_b = (iqcal_image_i * iqcal_tone_i -
+						 iqcal_image_q * iqcal_tone_q) / 1024;
+		rot_image_q_b = (iqcal_image_i * iqcal_tone_q +
+						 iqcal_image_q * iqcal_tone_i) / 1024;
+
+		PHY_DEBUG(("[CAL]    ** rot_tone_i_b  = %d\n", rot_tone_i_b));
+		PHY_DEBUG(("[CAL]    ** rot_tone_q_b  = %d\n", rot_tone_q_b));
+		PHY_DEBUG(("[CAL]    ** rot_image_i_b = %d\n", rot_image_i_b));
+		PHY_DEBUG(("[CAL]    ** rot_image_q_b = %d\n", rot_image_q_b));
+
+		// f.
+		if (rot_tone_i_b == 0)
+		{
+			PHY_DEBUG(("[CAL] ** <_rx_iq_calibration_loop> ERROR *******\n"));
+			PHY_DEBUG(("[CAL] ** rot_tone_i_b=0 to calculate EPS and THETA !!\n"));
+			PHY_DEBUG(("[CAL] ******************************************\n"));
+			break;
+		}
+
+		a_2 = (rot_image_i_b * 32768) / rot_tone_i_b -
+			phw_data->iq_rsdl_gain_tx_d2;
+		b_2 = (rot_image_q_b * 32768) / rot_tone_i_b -
+			phw_data->iq_rsdl_phase_tx_d2;
+
+		PHY_DEBUG(("[CAL]    ** iq_rsdl_gain_tx_d2 = %d\n", phw_data->iq_rsdl_gain_tx_d2));
+		PHY_DEBUG(("[CAL]    ** iq_rsdl_phase_tx_d2= %d\n", phw_data->iq_rsdl_phase_tx_d2));
+		PHY_DEBUG(("[CAL]    ***** EPSILON/2 = %d\n", a_2));
+		PHY_DEBUG(("[CAL]    ***** THETA/2   = %d\n", b_2));
+
+		_sin_cos(b_2, &sin_b, &cos_b);
+		_sin_cos(b_2*2, &sin_2b, &cos_2b);
+		PHY_DEBUG(("[CAL]    ** sin(b/2)=%d, cos(b/2)=%d\n", sin_b, cos_b));
+		PHY_DEBUG(("[CAL]    ** sin(b)=%d, cos(b)=%d\n", sin_2b, cos_2b));
+
+		if (cos_2b == 0)
+		{
+			PHY_DEBUG(("[CAL] ** <_rx_iq_calibration_loop> ERROR *******\n"));
+			PHY_DEBUG(("[CAL] ** cos(b)=0 !!\n"));
+			PHY_DEBUG(("[CAL] ******************************************\n"));
+			break;
+		}
+
+		// 1280 * 32768 = 41943040
+		temp1 = (41943040/cos_2b)*cos_b;
+
+		//temp2 = (41943040/cos_2b)*sin_b*(-1);
+		if (phw_data->revision == 0x2002) // 1st-cut
+		{
+			temp2 = (41943040/cos_2b)*sin_b*(-1);
+		}
+		else // 2nd-cut
+		{
+			temp2 = (41943040*4/cos_2b)*sin_b*(-1);
+		}
+
+		rx_cal_flt_b[0] = _floor(temp1/(32768+a_2));
+		rx_cal_flt_b[1] = _floor(temp2/(32768-a_2));
+		rx_cal_flt_b[2] = _floor(temp2/(32768+a_2));
+		rx_cal_flt_b[3] = _floor(temp1/(32768-a_2));
+
+		PHY_DEBUG(("[CAL]    ** rx_cal_flt_b[0] = %d\n", rx_cal_flt_b[0]));
+		PHY_DEBUG(("[CAL]       rx_cal_flt_b[1] = %d\n", rx_cal_flt_b[1]));
+		PHY_DEBUG(("[CAL]       rx_cal_flt_b[2] = %d\n", rx_cal_flt_b[2]));
+		PHY_DEBUG(("[CAL]       rx_cal_flt_b[3] = %d\n", rx_cal_flt_b[3]));
+
+		rx_cal[0] = rx_cal_flt_b[0] - 128;
+		rx_cal[1] = rx_cal_flt_b[1];
+		rx_cal[2] = rx_cal_flt_b[2];
+		rx_cal[3] = rx_cal_flt_b[3] - 128;
+		PHY_DEBUG(("[CAL]    ** rx_cal[0] = %d\n", rx_cal[0]));
+		PHY_DEBUG(("[CAL]       rx_cal[1] = %d\n", rx_cal[1]));
+		PHY_DEBUG(("[CAL]       rx_cal[2] = %d\n", rx_cal[2]));
+		PHY_DEBUG(("[CAL]       rx_cal[3] = %d\n", rx_cal[3]));
+
+		// e.
+		pwr_tone = (iqcal_tone_i*iqcal_tone_i + iqcal_tone_q*iqcal_tone_q);
+		pwr_image = (iqcal_image_i*iqcal_image_i + iqcal_image_q*iqcal_image_q)*factor;
+
+		PHY_DEBUG(("[CAL]    ** pwr_tone  = %d\n", pwr_tone));
+		PHY_DEBUG(("[CAL]    ** pwr_image  = %d\n", pwr_image));
+
+		if (pwr_tone > pwr_image)
+		{
+			verify_count++;
+
+			PHY_DEBUG(("[CAL] ** <_rx_iq_calibration_loop> *************\n"));
+			PHY_DEBUG(("[CAL] ** VERIFY OK # %d !!\n", verify_count));
+			PHY_DEBUG(("[CAL] ******************************************\n"));
+
+			if (verify_count > 2)
+			{
+				PHY_DEBUG(("[CAL] ** <_rx_iq_calibration_loop> *********\n"));
+				PHY_DEBUG(("[CAL] ** RX_IQ_CALIBRATION OK !!\n"));
+				PHY_DEBUG(("[CAL] **************************************\n"));
+				return 0;
+			}
+
+			continue;
+		}
+		// g.
+		hw_get_dxx_reg(phw_data, 0x54, &val);
+		PHY_DEBUG(("[CAL]    ** 0x54 = 0x%08X\n", val));
+
+		if (phw_data->revision == 0x2002) // 1st-cut
+		{
+			rx_cal_reg[0] = _s4_to_s32((val & 0x0000F000) >> 12);
+			rx_cal_reg[1] = _s4_to_s32((val & 0x00000F00) >>  8);
+			rx_cal_reg[2] = _s4_to_s32((val & 0x000000F0) >>  4);
+			rx_cal_reg[3] = _s4_to_s32((val & 0x0000000F));
+		}
+		else // 2nd-cut
+		{
+			rx_cal_reg[0] = _s5_to_s32((val & 0xF8000000) >> 27);
+			rx_cal_reg[1] = _s6_to_s32((val & 0x07E00000) >> 21);
+			rx_cal_reg[2] = _s6_to_s32((val & 0x001F8000) >> 15);
+			rx_cal_reg[3] = _s5_to_s32((val & 0x00007C00) >> 10);
+		}
+
+		PHY_DEBUG(("[CAL]    ** rx_cal_reg[0] = %d\n", rx_cal_reg[0]));
+		PHY_DEBUG(("[CAL]       rx_cal_reg[1] = %d\n", rx_cal_reg[1]));
+		PHY_DEBUG(("[CAL]       rx_cal_reg[2] = %d\n", rx_cal_reg[2]));
+		PHY_DEBUG(("[CAL]       rx_cal_reg[3] = %d\n", rx_cal_reg[3]));
+
+		if (phw_data->revision == 0x2002) // 1st-cut
+		{
+			if (((rx_cal_reg[0]==7) || (rx_cal_reg[0]==(-8))) &&
+				((rx_cal_reg[3]==7) || (rx_cal_reg[3]==(-8))))
+			{
+				PHY_DEBUG(("[CAL] ** <_rx_iq_calibration_loop> *********\n"));
+				PHY_DEBUG(("[CAL] ** RX_IQ_CALIBRATION SATUATION !!\n"));
+				PHY_DEBUG(("[CAL] **************************************\n"));
+				break;
+			}
+		}
+		else // 2nd-cut
+		{
+			if (((rx_cal_reg[0]==31) || (rx_cal_reg[0]==(-32))) &&
+				((rx_cal_reg[3]==31) || (rx_cal_reg[3]==(-32))))
+			{
+				PHY_DEBUG(("[CAL] ** <_rx_iq_calibration_loop> *********\n"));
+				PHY_DEBUG(("[CAL] ** RX_IQ_CALIBRATION SATUATION !!\n"));
+				PHY_DEBUG(("[CAL] **************************************\n"));
+				break;
+			}
+		}
+
+		rx_cal[0] = rx_cal[0] + rx_cal_reg[0];
+		rx_cal[1] = rx_cal[1] + rx_cal_reg[1];
+		rx_cal[2] = rx_cal[2] + rx_cal_reg[2];
+		rx_cal[3] = rx_cal[3] + rx_cal_reg[3];
+		PHY_DEBUG(("[CAL]    ** apply rx_cal[0] = %d\n", rx_cal[0]));
+		PHY_DEBUG(("[CAL]       apply rx_cal[1] = %d\n", rx_cal[1]));
+		PHY_DEBUG(("[CAL]       apply rx_cal[2] = %d\n", rx_cal[2]));
+		PHY_DEBUG(("[CAL]       apply rx_cal[3] = %d\n", rx_cal[3]));
+
+		hw_get_dxx_reg(phw_data, 0x54, &val);
+		if (phw_data->revision == 0x2002) // 1st-cut
+		{
+			val &= 0x0000FFFF;
+			val |= ((_s32_to_s4(rx_cal[0]) << 12)|
+					(_s32_to_s4(rx_cal[1]) <<  8)|
+					(_s32_to_s4(rx_cal[2]) <<  4)|
+					(_s32_to_s4(rx_cal[3])));
+			hw_set_dxx_reg(phw_data, 0x54, val);
+		}
+		else // 2nd-cut
+		{
+			val &= 0x000003FF;
+			val |= ((_s32_to_s5(rx_cal[0]) << 27)|
+					(_s32_to_s6(rx_cal[1]) << 21)|
+					(_s32_to_s6(rx_cal[2]) << 15)|
+					(_s32_to_s5(rx_cal[3]) << 10));
+			hw_set_dxx_reg(phw_data, 0x54, val);
+
+			if( loop == 3 )
+			return 0;
+		}
+		PHY_DEBUG(("[CAL]    ** CALIB_DATA = 0x%08X\n", val));
+
+		loop--;
+	}
+
+	return 1;
+}
+
+//////////////////////////////////////////////////////////
+
+//////////////////////////////////////////////////////////////////////////
+void _rx_iq_calibration_winbond(hw_data_t *phw_data, u32 frequency)
+{
+// figo 20050523 marked thsi flag for can't compile for relesase
+#ifdef _DEBUG
+	s32     rx_cal_reg[4];
+	u32     val;
+#endif
+
+	u8      result;
+
+	PHY_DEBUG(("[CAL] -> [5]_rx_iq_calibration()\n"));
+// a. Set RFIC to "RX calibration mode"
+	//; ----- Calibration (7). RX path IQ imbalance calibration loop
+	//	0x01 0xFFBFC2  ; 3FEFF  ; Calibration (7a). enable RX IQ calibration loop circuits
+	phy_set_rf_data(phw_data, 1, (1<<24)|0xEFBFC2);
+	//	0x0B 0x1A01D6  ; 06817  ; Calibration (7b). enable RX I/Q cal loop SW1 circuit
+	phy_set_rf_data(phw_data, 11, (11<<24)|0x1A05D6);
+	//0x05 0x24848A  ; 09212  ; Calibration (7c). setting TX-VGA gain (TXGCH) to 2 --> to be optimized
+	phy_set_rf_data(phw_data, 5, (5<<24)| phw_data->txvga_setting_for_cal);
+	//0x06 0x06840C  ; 01A10  ; Calibration (7d). RXGCH=00; RXGCL=010 000 (RXVGA) --> to be optimized
+	phy_set_rf_data(phw_data, 6, (6<<24)|0x06834C);
+	//0x00 0xFFF1C0  ; 3F7C7  ; Calibration (7e). turn on IQ imbalance/Test mode
+	phy_set_rf_data(phw_data, 0, (0<<24)|0xFFF1C0);
+
+	//  ; [BB-chip]: Calibration (7f). Send test pattern
+	//	; [BB-chip]: Calibration (7g). Search RXGCL optimal value
+	//	; [BB-chip]: Calibration (7h). Caculate RX-path IQ imbalance and setting RX path IQ compensation table
+
+	result = _rx_iq_calibration_loop_winbond(phw_data, 12589, frequency);
+
+	if (result > 0)
+	{
+		_reset_rx_cal(phw_data);
+		result = _rx_iq_calibration_loop_winbond(phw_data, 7943, frequency);
+
+		if (result > 0)
+		{
+			_reset_rx_cal(phw_data);
+			result = _rx_iq_calibration_loop_winbond(phw_data, 5011, frequency);
+
+			if (result > 0)
+			{
+				PHY_DEBUG(("[CAL] ** <_rx_iq_calibration> **************\n"));
+				PHY_DEBUG(("[CAL] ** RX_IQ_CALIBRATION FAILURE !!\n"));
+				PHY_DEBUG(("[CAL] **************************************\n"));
+				_reset_rx_cal(phw_data);
+			}
+		}
+	}
+
+#ifdef _DEBUG
+	hw_get_dxx_reg(phw_data, 0x54, &val);
+	PHY_DEBUG(("[CAL]    ** 0x54 = 0x%08X\n", val));
+
+	if (phw_data->revision == 0x2002) // 1st-cut
+	{
+		rx_cal_reg[0] = _s4_to_s32((val & 0x0000F000) >> 12);
+		rx_cal_reg[1] = _s4_to_s32((val & 0x00000F00) >>  8);
+		rx_cal_reg[2] = _s4_to_s32((val & 0x000000F0) >>  4);
+		rx_cal_reg[3] = _s4_to_s32((val & 0x0000000F));
+	}
+	else // 2nd-cut
+	{
+		rx_cal_reg[0] = _s5_to_s32((val & 0xF8000000) >> 27);
+		rx_cal_reg[1] = _s6_to_s32((val & 0x07E00000) >> 21);
+		rx_cal_reg[2] = _s6_to_s32((val & 0x001F8000) >> 15);
+		rx_cal_reg[3] = _s5_to_s32((val & 0x00007C00) >> 10);
+	}
+
+	PHY_DEBUG(("[CAL]    ** rx_cal_reg[0] = %d\n", rx_cal_reg[0]));
+	PHY_DEBUG(("[CAL]       rx_cal_reg[1] = %d\n", rx_cal_reg[1]));
+	PHY_DEBUG(("[CAL]       rx_cal_reg[2] = %d\n", rx_cal_reg[2]));
+	PHY_DEBUG(("[CAL]       rx_cal_reg[3] = %d\n", rx_cal_reg[3]));
+#endif
+
+}
+
+////////////////////////////////////////////////////////////////////////
+void phy_calibration_winbond(hw_data_t *phw_data, u32 frequency)
+{
+	u32     reg_mode_ctrl;
+	u32     iq_alpha;
+
+	PHY_DEBUG(("[CAL] -> phy_calibration_winbond()\n"));
+
+	// 20040701 1.1.25.1000 kevin
+	hw_get_cxx_reg(phw_data, 0x80, &mac_ctrl);
+	hw_get_cxx_reg(phw_data, 0xE4, &rf_ctrl);
+	hw_get_dxx_reg(phw_data, 0x58, &iq_alpha);
+
+
+
+	_rxadc_dc_offset_cancellation_winbond(phw_data, frequency);
+	//_txidac_dc_offset_cancellation_winbond(phw_data);
+	//_txqdac_dc_offset_cacellation_winbond(phw_data);
+
+	_tx_iq_calibration_winbond(phw_data);
+	_rx_iq_calibration_winbond(phw_data, frequency);
+
+	//------------------------------------------------------------------------
+	hw_get_dxx_reg(phw_data, REG_MODE_CTRL, &reg_mode_ctrl);
+	reg_mode_ctrl &= ~(MASK_IQCAL_TONE_SEL|MASK_IQCAL_MODE|MASK_CALIB_START); // set when finish
+	hw_set_dxx_reg(phw_data, REG_MODE_CTRL, reg_mode_ctrl);
+	PHY_DEBUG(("[CAL]    MODE_CTRL (write) = 0x%08X\n", reg_mode_ctrl));
+
+	// i. Set RFIC to "Normal mode"
+	hw_set_cxx_reg(phw_data, 0x80, mac_ctrl);
+	hw_set_cxx_reg(phw_data, 0xE4, rf_ctrl);
+	hw_set_dxx_reg(phw_data, 0x58, iq_alpha);
+
+
+	//------------------------------------------------------------------------
+	phy_init_rf(phw_data);
+
+}
+
+//===========================
+void phy_set_rf_data(  phw_data_t pHwData,  u32 index,  u32 value )
+{
+   u32 ltmp=0;
+
+    switch( pHwData->phy_type )
+	{
+		case RF_MAXIM_2825:
+		case RF_MAXIM_V1: // 11g Winbond 2nd BB(with Phy board (v1) + Maxim 331)
+			ltmp = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( value, 18 );
+			break;
+
+		case RF_MAXIM_2827:
+			ltmp = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( value, 18 );
+			break;
+
+		case RF_MAXIM_2828:
+			ltmp = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( value, 18 );
+			break;
+
+		case RF_MAXIM_2829:
+			ltmp = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( value, 18 );
+			break;
+
+		case RF_AIROHA_2230:
+		case RF_AIROHA_2230S: // 20060420 Add this
+			ltmp = (1 << 31) | (0 << 30) | (20 << 24) | BitReverse( value, 20 );
+			break;
+
+		case RF_AIROHA_7230:
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | (value&0xffffff);
+			break;
+
+		case RF_WB_242:
+		case RF_WB_242_1: // 20060619.5 Add
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( value, 24 );
+			break;
+	}
+
+	Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+}
+
+// 20060717 modify as Bruce's mail
+unsigned char adjust_TXVGA_for_iq_mag(hw_data_t *phw_data)
+{
+	int init_txvga = 0;
+	u32     reg_mode_ctrl;
+	u32     val;
+	s32     iqcal_tone_i0;
+	s32     iqcal_tone_q0;
+	u32     sqsum;
+	s32     iq_mag_0_tx;
+	u8		reg_state;
+	int		current_txvga;
+
+
+	reg_state = 0;
+	for( init_txvga=0; init_txvga<10; init_txvga++)
+	{
+		current_txvga = ( 0x24C40A|(init_txvga<<6) );
+		phy_set_rf_data(phw_data, 5, ((5<<24)|current_txvga) );
+		phw_data->txvga_setting_for_cal = current_txvga;
+
+		//pa_stall_execution(30000);//Sleep(30);
+		OS_SLEEP(30000); // 20060612.1.a
+
+		if( !hw_get_dxx_reg(phw_data, REG_MODE_CTRL, &reg_mode_ctrl) ) // 20060718.1 modify
+			return FALSE;
+
+		PHY_DEBUG(("[CAL]    MODE_CTRL (read) = 0x%08X\n", reg_mode_ctrl));
+
+		// a. Set iqcal_mode[1:0] to 0x2 and set "calib_start" to 0x1 to
+		//    enable "IQ alibration Mode II"
+		reg_mode_ctrl &= ~(MASK_IQCAL_TONE_SEL|MASK_IQCAL_MODE);
+		reg_mode_ctrl &= ~MASK_IQCAL_MODE;
+		reg_mode_ctrl |= (MASK_CALIB_START|0x02);
+		reg_mode_ctrl |= (MASK_CALIB_START|0x02|2<<2);
+		hw_set_dxx_reg(phw_data, REG_MODE_CTRL, reg_mode_ctrl);
+		PHY_DEBUG(("[CAL]    MODE_CTRL (write) = 0x%08X\n", reg_mode_ctrl));
+
+		//pa_stall_execution(US);
+		OS_SLEEP(1); // 20060612.1.a
+
+		//pa_stall_execution(300);//Sleep(30);
+		OS_SLEEP(300); // 20060612.1.a
+
+		// b.
+		hw_get_dxx_reg(phw_data, REG_CALIB_READ1, &val);
+
+		PHY_DEBUG(("[CAL]    CALIB_READ1 = 0x%08X\n", val));
+		//pa_stall_execution(US);
+		//pa_stall_execution(300);//Sleep(30);
+		OS_SLEEP(300); // 20060612.1.a
+
+		iqcal_tone_i0 = _s13_to_s32(val & 0x00001FFF);
+		iqcal_tone_q0 = _s13_to_s32((val & 0x03FFE000) >> 13);
+		PHY_DEBUG(("[CAL]    ** iqcal_tone_i0=%d, iqcal_tone_q0=%d\n",
+				   iqcal_tone_i0, iqcal_tone_q0));
+
+		sqsum = iqcal_tone_i0*iqcal_tone_i0 + iqcal_tone_q0*iqcal_tone_q0;
+		iq_mag_0_tx = (s32) _sqrt(sqsum);
+		PHY_DEBUG(("[CAL]    ** auto_adjust_txvga_for_iq_mag_0_tx=%d\n", iq_mag_0_tx));
+
+		if( iq_mag_0_tx>=700 && iq_mag_0_tx<=1750 )
+			break;
+		else if(iq_mag_0_tx > 1750)
+		{
+			init_txvga=-2;
+			continue;
+		}
+		else
+			continue;
+
+	}
+
+	if( iq_mag_0_tx>=700 && iq_mag_0_tx<=1750 )
+		return TRUE;
+	else
+		return FALSE;
+}
+
+
+
diff --git a/drivers/staging/winbond/phy_calibration.h b/drivers/staging/winbond/phy_calibration.h
new file mode 100644
index 0000000..b6a65d3
--- /dev/null
+++ b/drivers/staging/winbond/phy_calibration.h
@@ -0,0 +1,101 @@
+// 20031229 Turbo add
+#define REG_AGC_CTRL1               0x1000
+#define REG_AGC_CTRL2               0x1004
+#define REG_AGC_CTRL3               0x1008
+#define REG_AGC_CTRL4               0x100C
+#define REG_AGC_CTRL5               0x1010
+#define REG_AGC_CTRL6               0x1014
+#define REG_AGC_CTRL7               0x1018
+#define REG_AGC_CTRL8               0x101C
+#define REG_AGC_CTRL9               0x1020
+#define REG_AGC_CTRL10              0x1024
+#define REG_CCA_CTRL                0x1028
+#define REG_A_ACQ_CTRL              0x102C
+#define REG_B_ACQ_CTRL              0x1030
+#define REG_A_TXRX_CTRL             0x1034
+#define REG_B_TXRX_CTRL             0x1038
+#define REG_A_TX_COEF3              0x103C
+#define REG_A_TX_COEF2              0x1040
+#define REG_A_TX_COEF1              0x1044
+#define REG_B_TX_COEF2              0x1048
+#define REG_B_TX_COEF1              0x104C
+#define REG_MODE_CTRL               0x1050
+#define REG_CALIB_DATA              0x1054
+#define REG_IQ_ALPHA                0x1058
+#define REG_DC_CANCEL               0x105C
+#define REG_WTO_READ                0x1060
+#define REG_OFFSET_READ             0x1064
+#define REG_CALIB_READ1             0x1068
+#define REG_CALIB_READ2             0x106C
+#define REG_A_FREQ_EST              0x1070
+
+
+
+
+//  20031101 Turbo add
+#define MASK_AMER_OFF_REG          BIT(31)
+
+#define MASK_BMER_OFF_REG          BIT(31)
+
+#define MASK_LNA_FIX_GAIN          (BIT(3)|BIT(4))
+#define MASK_AGC_FIX               BIT(1)
+
+#define MASK_AGC_FIX_GAIN          0xFF00
+
+#define MASK_ADC_DC_CAL_STR        BIT(10)
+#define MASK_CALIB_START           BIT(4)
+#define MASK_IQCAL_TONE_SEL        (BIT(3)|BIT(2))
+#define MASK_IQCAL_MODE            (BIT(1)|BIT(0))
+
+#define MASK_TX_CAL_0              0xF0000000
+#define TX_CAL_0_SHIFT             28
+#define MASK_TX_CAL_1              0x0F000000
+#define TX_CAL_1_SHIFT             24
+#define MASK_TX_CAL_2              0x00F00000
+#define TX_CAL_2_SHIFT             20
+#define MASK_TX_CAL_3              0x000F0000
+#define TX_CAL_3_SHIFT             16
+#define MASK_RX_CAL_0              0x0000F000
+#define RX_CAL_0_SHIFT             12
+#define MASK_RX_CAL_1              0x00000F00
+#define RX_CAL_1_SHIFT             8
+#define MASK_RX_CAL_2              0x000000F0
+#define RX_CAL_2_SHIFT             4
+#define MASK_RX_CAL_3              0x0000000F
+#define RX_CAL_3_SHIFT             0
+
+#define MASK_CANCEL_DC_I           0x3E0
+#define CANCEL_DC_I_SHIFT          5
+#define MASK_CANCEL_DC_Q           0x01F
+#define CANCEL_DC_Q_SHIFT          0
+
+// LA20040210 kevin
+//#define MASK_ADC_DC_CAL_I(x)       (((x)&0x1FE00)>>9)
+//#define MASK_ADC_DC_CAL_Q(x)       ((x)&0x1FF)
+#define MASK_ADC_DC_CAL_I(x)       (((x)&0x0003FE00)>>9)
+#define MASK_ADC_DC_CAL_Q(x)       ((x)&0x000001FF)
+
+// LA20040210 kevin (Turbo has wrong definition)
+//#define MASK_IQCAL_TONE_I          0x7FFC000
+//#define SHIFT_IQCAL_TONE_I(x)      ((x)>>13)
+//#define MASK_IQCAL_TONE_Q          0x1FFF
+//#define SHIFT_IQCAL_TONE_Q(x)      ((x)>>0)
+#define MASK_IQCAL_TONE_I          0x00001FFF
+#define SHIFT_IQCAL_TONE_I(x)      ((x)>>0)
+#define MASK_IQCAL_TONE_Q          0x03FFE000
+#define SHIFT_IQCAL_TONE_Q(x)      ((x)>>13)
+
+// LA20040210 kevin (Turbo has wrong definition)
+//#define MASK_IQCAL_IMAGE_I         0x7FFC000
+//#define SHIFT_IQCAL_IMAGE_I(x)     ((x)>>13)
+//#define MASK_IQCAL_IMAGE_Q         0x1FFF
+//#define SHIFT_IQCAL_IMAGE_Q(x)     ((x)>>0)
+
+//#define MASK_IQCAL_IMAGE_I         0x00001FFF
+//#define SHIFT_IQCAL_IMAGE_I(x)     ((x)>>0)
+//#define MASK_IQCAL_IMAGE_Q         0x03FFE000
+//#define SHIFT_IQCAL_IMAGE_Q(x)     ((x)>>13)
+
+void phy_set_rf_data(  phw_data_t pHwData,  u32 index,  u32 value );
+#define phy_init_rf( _A )	//RFSynthesizer_initial( _A )
+
diff --git a/drivers/staging/winbond/reg.c b/drivers/staging/winbond/reg.c
new file mode 100644
index 0000000..b475c7a
--- /dev/null
+++ b/drivers/staging/winbond/reg.c
@@ -0,0 +1,2683 @@
+#include "os_common.h"
+
+///////////////////////////////////////////////////////////////////////////////////////////////////
+// Original Phy.h
+//*****************************************************************************
+
+/*****************************************************************************
+; For MAXIM2825/6/7 Ver. 331 or more
+; Edited by Tiger, Sep-17-2003
+; revised by Ben, Sep-18-2003
+
+0x00 0x000a2
+0x01 0x21cc0
+;0x02 0x13802
+0x02 0x1383a
+
+;channe1 01 ; 0x03 0x30142 ; 0x04 0x0b333;
+;channe1 02 ;0x03 0x32141 ;0x04 0x08444;
+;channe1 03 ;0x03 0x32143 ;0x04 0x0aeee;
+;channe1 04 ;0x03 0x32142 ;0x04 0x0b333;
+;channe1 05 ;0x03 0x31141 ;0x04 0x08444;
+;channe1 06 ;
+0x03 0x31143;
+0x04 0x0aeee;
+;channe1 07 ;0x03 0x31142 ;0x04 0x0b333;
+;channe1 08 ;0x03 0x33141 ;0x04 0x08444;
+;channe1 09 ;0x03 0x33143 ;0x04 0x0aeee;
+;channe1 10 ;0x03 0x33142 ;0x04 0x0b333;
+;channe1 11 ;0x03 0x30941 ;0x04 0x08444;
+;channe1 12 ;0x03 0x30943 ;0x04 0x0aeee;
+;channe1 13 ;0x03 0x30942 ;0x04 0x0b333;
+
+0x05 0x28986
+0x06 0x18008
+0x07 0x38400
+0x08 0x05100; 100 Hz DC
+;0x08 0x05900; 30 KHz DC
+0x09 0x24f08
+0x0a 0x17e00, 0x17ea0
+0x0b 0x37d80
+0x0c 0x0c900 // 0x0ca00 (lager power 9db than 0x0c000), 0x0c000
+*****************************************************************************/
+// MAX2825 (pure b/g)
+u32 max2825_rf_data[] =
+{
+    (0x00<<18)|0x000a2,
+    (0x01<<18)|0x21cc0,
+    (0x02<<18)|0x13806,
+    (0x03<<18)|0x30142,
+    (0x04<<18)|0x0b333,
+    (0x05<<18)|0x289A6,
+    (0x06<<18)|0x18008,
+    (0x07<<18)|0x38000,
+    (0x08<<18)|0x05100,
+    (0x09<<18)|0x24f08,
+    (0x0A<<18)|0x14000,
+    (0x0B<<18)|0x37d80,
+    (0x0C<<18)|0x0c100   // 11a: 0x0c300, 11g: 0x0c100
+};
+
+u32 max2825_channel_data_24[][3] =
+{
+    {(0x03<<18)|0x30142, (0x04<<18)|0x0b333, (0x05<<18)|0x289A6}, // channe1 01
+    {(0x03<<18)|0x32141, (0x04<<18)|0x08444, (0x05<<18)|0x289A6}, // channe1 02
+    {(0x03<<18)|0x32143, (0x04<<18)|0x0aeee, (0x05<<18)|0x289A6}, // channe1 03
+    {(0x03<<18)|0x32142, (0x04<<18)|0x0b333, (0x05<<18)|0x289A6}, // channe1 04
+    {(0x03<<18)|0x31141, (0x04<<18)|0x08444, (0x05<<18)|0x289A6}, // channe1 05
+    {(0x03<<18)|0x31143, (0x04<<18)|0x0aeee, (0x05<<18)|0x289A6}, // channe1 06
+    {(0x03<<18)|0x31142, (0x04<<18)|0x0b333, (0x05<<18)|0x289A6}, // channe1 07
+    {(0x03<<18)|0x33141, (0x04<<18)|0x08444, (0x05<<18)|0x289A6}, // channe1 08
+    {(0x03<<18)|0x33143, (0x04<<18)|0x0aeee, (0x05<<18)|0x289A6}, // channe1 09
+    {(0x03<<18)|0x33142, (0x04<<18)|0x0b333, (0x05<<18)|0x289A6}, // channe1 10
+    {(0x03<<18)|0x30941, (0x04<<18)|0x08444, (0x05<<18)|0x289A6}, // channe1 11
+    {(0x03<<18)|0x30943, (0x04<<18)|0x0aeee, (0x05<<18)|0x289A6}, // channe1 12
+    {(0x03<<18)|0x30942, (0x04<<18)|0x0b333, (0x05<<18)|0x289A6}, // channe1 13
+    {(0x03<<18)|0x32941, (0x04<<18)|0x09999, (0x05<<18)|0x289A6} // 14 (2484MHz) hhmodify
+};
+
+u32 max2825_power_data_24[] = {(0x0C<<18)|0x0c000, (0x0C<<18)|0x0c100};
+
+/****************************************************************************/
+// MAX2827 (a/b/g)
+u32 max2827_rf_data[] =
+{
+    (0x00<<18)|0x000a2,
+    (0x01<<18)|0x21cc0,
+    (0x02<<18)|0x13806,
+    (0x03<<18)|0x30142,
+    (0x04<<18)|0x0b333,
+    (0x05<<18)|0x289A6,
+    (0x06<<18)|0x18008,
+    (0x07<<18)|0x38000,
+    (0x08<<18)|0x05100,
+    (0x09<<18)|0x24f08,
+    (0x0A<<18)|0x14000,
+    (0x0B<<18)|0x37d80,
+    (0x0C<<18)|0x0c100   // 11a: 0x0c300, 11g: 0x0c100
+};
+
+u32 max2827_channel_data_24[][3] =
+{
+    {(0x03<<18)|0x30142, (0x04<<18)|0x0b333, (0x05<<18)|0x289A6}, // channe1 01
+    {(0x03<<18)|0x32141, (0x04<<18)|0x08444, (0x05<<18)|0x289A6}, // channe1 02
+    {(0x03<<18)|0x32143, (0x04<<18)|0x0aeee, (0x05<<18)|0x289A6}, // channe1 03
+    {(0x03<<18)|0x32142, (0x04<<18)|0x0b333, (0x05<<18)|0x289A6}, // channe1 04
+    {(0x03<<18)|0x31141, (0x04<<18)|0x08444, (0x05<<18)|0x289A6}, // channe1 05
+    {(0x03<<18)|0x31143, (0x04<<18)|0x0aeee, (0x05<<18)|0x289A6}, // channe1 06
+    {(0x03<<18)|0x31142, (0x04<<18)|0x0b333, (0x05<<18)|0x289A6}, // channe1 07
+    {(0x03<<18)|0x33141, (0x04<<18)|0x08444, (0x05<<18)|0x289A6}, // channe1 08
+    {(0x03<<18)|0x33143, (0x04<<18)|0x0aeee, (0x05<<18)|0x289A6}, // channe1 09
+    {(0x03<<18)|0x33142, (0x04<<18)|0x0b333, (0x05<<18)|0x289A6}, // channe1 10
+    {(0x03<<18)|0x30941, (0x04<<18)|0x08444, (0x05<<18)|0x289A6}, // channe1 11
+    {(0x03<<18)|0x30943, (0x04<<18)|0x0aeee, (0x05<<18)|0x289A6}, // channe1 12
+    {(0x03<<18)|0x30942, (0x04<<18)|0x0b333, (0x05<<18)|0x289A6}, // channe1 13
+    {(0x03<<18)|0x32941, (0x04<<18)|0x09999, (0x05<<18)|0x289A6}  // 14 (2484MHz) hhmodify
+};
+
+u32 max2827_channel_data_50[][3] =
+{
+    {(0x03<<18)|0x33cc3, (0x04<<18)|0x08ccc, (0x05<<18)|0x2A9A6}, // channel 36
+    {(0x03<<18)|0x302c0, (0x04<<18)|0x08000, (0x05<<18)|0x2A9A6}, // channel 40
+    {(0x03<<18)|0x302c2, (0x04<<18)|0x0b333, (0x05<<18)|0x2A9A6}, // channel 44
+    {(0x03<<18)|0x322c1, (0x04<<18)|0x09999, (0x05<<18)|0x2A9A6}, // channel 48
+    {(0x03<<18)|0x312c1, (0x04<<18)|0x0a666, (0x05<<18)|0x2A9A6}, // channel 52
+    {(0x03<<18)|0x332c3, (0x04<<18)|0x08ccc, (0x05<<18)|0x2A9A6}, // channel 56
+    {(0x03<<18)|0x30ac0, (0x04<<18)|0x08000, (0x05<<18)|0x2A9A6}, // channel 60
+    {(0x03<<18)|0x30ac2, (0x04<<18)|0x0b333, (0x05<<18)|0x2A9A6} // channel 64
+};
+
+u32 max2827_power_data_24[] = {(0x0C<<18)|0x0C000, (0x0C<<18)|0x0D600, (0x0C<<18)|0x0C100};
+u32 max2827_power_data_50[] = {(0x0C<<18)|0x0C400, (0x0C<<18)|0x0D500, (0x0C<<18)|0x0C300};
+
+/****************************************************************************/
+// MAX2828 (a/b/g)
+u32 max2828_rf_data[] =
+{
+    (0x00<<18)|0x000a2,
+    (0x01<<18)|0x21cc0,
+    (0x02<<18)|0x13806,
+    (0x03<<18)|0x30142,
+    (0x04<<18)|0x0b333,
+    (0x05<<18)|0x289A6,
+    (0x06<<18)|0x18008,
+    (0x07<<18)|0x38000,
+    (0x08<<18)|0x05100,
+    (0x09<<18)|0x24f08,
+    (0x0A<<18)|0x14000,
+    (0x0B<<18)|0x37d80,
+    (0x0C<<18)|0x0c100   // 11a: 0x0c300, 11g: 0x0c100
+};
+
+u32 max2828_channel_data_24[][3] =
+{
+    {(0x03<<18)|0x30142, (0x04<<18)|0x0b333, (0x05<<18)|0x289A6}, // channe1 01
+    {(0x03<<18)|0x32141, (0x04<<18)|0x08444, (0x05<<18)|0x289A6}, // channe1 02
+    {(0x03<<18)|0x32143, (0x04<<18)|0x0aeee, (0x05<<18)|0x289A6}, // channe1 03
+    {(0x03<<18)|0x32142, (0x04<<18)|0x0b333, (0x05<<18)|0x289A6}, // channe1 04
+    {(0x03<<18)|0x31141, (0x04<<18)|0x08444, (0x05<<18)|0x289A6}, // channe1 05
+    {(0x03<<18)|0x31143, (0x04<<18)|0x0aeee, (0x05<<18)|0x289A6}, // channe1 06
+    {(0x03<<18)|0x31142, (0x04<<18)|0x0b333, (0x05<<18)|0x289A6}, // channe1 07
+    {(0x03<<18)|0x33141, (0x04<<18)|0x08444, (0x05<<18)|0x289A6}, // channe1 08
+    {(0x03<<18)|0x33143, (0x04<<18)|0x0aeee, (0x05<<18)|0x289A6}, // channe1 09
+    {(0x03<<18)|0x33142, (0x04<<18)|0x0b333, (0x05<<18)|0x289A6}, // channe1 10
+    {(0x03<<18)|0x30941, (0x04<<18)|0x08444, (0x05<<18)|0x289A6}, // channe1 11
+    {(0x03<<18)|0x30943, (0x04<<18)|0x0aeee, (0x05<<18)|0x289A6}, // channe1 12
+    {(0x03<<18)|0x30942, (0x04<<18)|0x0b333, (0x05<<18)|0x289A6}, // channe1 13
+    {(0x03<<18)|0x32941, (0x04<<18)|0x09999, (0x05<<18)|0x289A6}  // 14 (2484MHz) hhmodify
+};
+
+u32 max2828_channel_data_50[][3] =
+{
+    {(0x03<<18)|0x33cc3, (0x04<<18)|0x08ccc, (0x05<<18)|0x289A6}, // channel 36
+    {(0x03<<18)|0x302c0, (0x04<<18)|0x08000, (0x05<<18)|0x289A6}, // channel 40
+    {(0x03<<18)|0x302c2, (0x04<<18)|0x0b333, (0x05<<18)|0x289A6}, // channel 44
+    {(0x03<<18)|0x322c1, (0x04<<18)|0x09999, (0x05<<18)|0x289A6}, // channel 48
+    {(0x03<<18)|0x312c1, (0x04<<18)|0x0a666, (0x05<<18)|0x289A6}, // channel 52
+    {(0x03<<18)|0x332c3, (0x04<<18)|0x08ccc, (0x05<<18)|0x289A6}, // channel 56
+    {(0x03<<18)|0x30ac0, (0x04<<18)|0x08000, (0x05<<18)|0x289A6}, // channel 60
+    {(0x03<<18)|0x30ac2, (0x04<<18)|0x0b333, (0x05<<18)|0x289A6} // channel 64
+};
+
+u32 max2828_power_data_24[] = {(0x0C<<18)|0x0c000, (0x0C<<18)|0x0c100};
+u32 max2828_power_data_50[] = {(0x0C<<18)|0x0c000, (0x0C<<18)|0x0c100};
+
+/****************************************************************************/
+// LA20040728 kevin
+// MAX2829 (a/b/g)
+u32 max2829_rf_data[] =
+{
+    (0x00<<18)|0x000a2,
+    (0x01<<18)|0x23520,
+    (0x02<<18)|0x13802,
+    (0x03<<18)|0x30142,
+    (0x04<<18)|0x0b333,
+    (0x05<<18)|0x28906,
+    (0x06<<18)|0x18008,
+    (0x07<<18)|0x3B500,
+    (0x08<<18)|0x05100,
+    (0x09<<18)|0x24f08,
+    (0x0A<<18)|0x14000,
+    (0x0B<<18)|0x37d80,
+    (0x0C<<18)|0x0F300 //TXVGA=51, (MAX-6 dB)
+};
+
+u32 max2829_channel_data_24[][3] =
+{
+    {(3<<18)|0x30142, (4<<18)|0x0b333, (5<<18)|0x289C6},  // 01 (2412MHz)
+    {(3<<18)|0x32141, (4<<18)|0x08444, (5<<18)|0x289C6},  // 02 (2417MHz)
+    {(3<<18)|0x32143, (4<<18)|0x0aeee, (5<<18)|0x289C6},  // 03 (2422MHz)
+    {(3<<18)|0x32142, (4<<18)|0x0b333, (5<<18)|0x289C6},  // 04 (2427MHz)
+    {(3<<18)|0x31141, (4<<18)|0x08444, (5<<18)|0x289C6},  // 05 (2432MHz)
+    {(3<<18)|0x31143, (4<<18)|0x0aeee, (5<<18)|0x289C6},  // 06 (2437MHz)
+    {(3<<18)|0x31142, (4<<18)|0x0b333, (5<<18)|0x289C6},  // 07 (2442MHz)
+    {(3<<18)|0x33141, (4<<18)|0x08444, (5<<18)|0x289C6},  // 08 (2447MHz)
+    {(3<<18)|0x33143, (4<<18)|0x0aeee, (5<<18)|0x289C6},  // 09 (2452MHz)
+    {(3<<18)|0x33142, (4<<18)|0x0b333, (5<<18)|0x289C6},  // 10 (2457MHz)
+    {(3<<18)|0x30941, (4<<18)|0x08444, (5<<18)|0x289C6},  // 11 (2462MHz)
+    {(3<<18)|0x30943, (4<<18)|0x0aeee, (5<<18)|0x289C6},  // 12 (2467MHz)
+    {(3<<18)|0x30942, (4<<18)|0x0b333, (5<<18)|0x289C6},  // 13 (2472MHz)
+    {(3<<18)|0x32941, (4<<18)|0x09999, (5<<18)|0x289C6},  // 14 (2484MHz) hh-modify
+};
+
+u32 max2829_channel_data_50[][4] =
+{
+     {36, (3<<18)|0x33cc3, (4<<18)|0x08ccc, (5<<18)|0x2A946}, // 36 (5.180GHz)
+     {40, (3<<18)|0x302c0, (4<<18)|0x08000, (5<<18)|0x2A946}, // 40 (5.200GHz)
+     {44, (3<<18)|0x302c2, (4<<18)|0x0b333, (5<<18)|0x2A946}, // 44 (5.220GHz)
+     {48, (3<<18)|0x322c1, (4<<18)|0x09999, (5<<18)|0x2A946}, // 48 (5.240GHz)
+     {52, (3<<18)|0x312c1, (4<<18)|0x0a666, (5<<18)|0x2A946}, // 52 (5.260GHz)
+     {56, (3<<18)|0x332c3, (4<<18)|0x08ccc, (5<<18)|0x2A946}, // 56 (5.280GHz)
+     {60, (3<<18)|0x30ac0, (4<<18)|0x08000, (5<<18)|0x2A946}, // 60 (5.300GHz)
+     {64, (3<<18)|0x30ac2, (4<<18)|0x0b333, (5<<18)|0x2A946}, // 64 (5.320GHz)
+
+    {100, (3<<18)|0x30ec0, (4<<18)|0x08000, (5<<18)|0x2A9C6}, // 100 (5.500GHz)
+    {104, (3<<18)|0x30ec2, (4<<18)|0x0b333, (5<<18)|0x2A9C6}, // 104 (5.520GHz)
+    {108, (3<<18)|0x32ec1, (4<<18)|0x09999, (5<<18)|0x2A9C6}, // 108 (5.540GHz)
+    {112, (3<<18)|0x31ec1, (4<<18)|0x0a666, (5<<18)|0x2A9C6}, // 112 (5.560GHz)
+    {116, (3<<18)|0x33ec3, (4<<18)|0x08ccc, (5<<18)|0x2A9C6}, // 116 (5.580GHz)
+    {120, (3<<18)|0x301c0, (4<<18)|0x08000, (5<<18)|0x2A9C6}, // 120 (5.600GHz)
+    {124, (3<<18)|0x301c2, (4<<18)|0x0b333, (5<<18)|0x2A9C6}, // 124 (5.620GHz)
+    {128, (3<<18)|0x321c1, (4<<18)|0x09999, (5<<18)|0x2A9C6}, // 128 (5.640GHz)
+    {132, (3<<18)|0x311c1, (4<<18)|0x0a666, (5<<18)|0x2A9C6}, // 132 (5.660GHz)
+    {136, (3<<18)|0x331c3, (4<<18)|0x08ccc, (5<<18)|0x2A9C6}, // 136 (5.680GHz)
+    {140, (3<<18)|0x309c0, (4<<18)|0x08000, (5<<18)|0x2A9C6}, // 140 (5.700GHz)
+
+    {149, (3<<18)|0x329c2, (4<<18)|0x0b333, (5<<18)|0x2A9C6}, // 149 (5.745GHz)
+    {153, (3<<18)|0x319c1, (4<<18)|0x09999, (5<<18)|0x2A9C6}, // 153 (5.765GHz)
+    {157, (3<<18)|0x339c1, (4<<18)|0x0a666, (5<<18)|0x2A9C6}, // 157 (5.785GHz)
+    {161, (3<<18)|0x305c3, (4<<18)|0x08ccc, (5<<18)|0x2A9C6}, // 161 (5.805GHz)
+
+    // Japan
+    { 184, (3<<18)|0x308c2, (4<<18)|0x0b333, (5<<18)|0x2A946}, // 184 (4.920GHz)
+    { 188, (3<<18)|0x328c1, (4<<18)|0x09999, (5<<18)|0x2A946}, // 188 (4.940GHz)
+    { 192, (3<<18)|0x318c1, (4<<18)|0x0a666, (5<<18)|0x2A946}, // 192 (4.960GHz)
+    { 196, (3<<18)|0x338c3, (4<<18)|0x08ccc, (5<<18)|0x2A946}, // 196 (4.980GHz)
+    {   8, (3<<18)|0x324c1, (4<<18)|0x09999, (5<<18)|0x2A946}, //   8 (5.040GHz)
+    {  12, (3<<18)|0x314c1, (4<<18)|0x0a666, (5<<18)|0x2A946}, //  12 (5.060GHz)
+    {  16, (3<<18)|0x334c3, (4<<18)|0x08ccc, (5<<18)|0x2A946}, //  16 (5.080GHz)
+    {  34, (3<<18)|0x31cc2, (4<<18)|0x0b333, (5<<18)|0x2A946}, //  34 (5.170GHz)
+    {  38, (3<<18)|0x33cc1, (4<<18)|0x09999, (5<<18)|0x2A946}, //  38 (5.190GHz)
+    {  42, (3<<18)|0x302c1, (4<<18)|0x0a666, (5<<18)|0x2A946}, //  42 (5.210GHz)
+    {  46, (3<<18)|0x322c3, (4<<18)|0x08ccc, (5<<18)|0x2A946}, //  46 (5.230GHz)
+};
+
+/*****************************************************************************
+; For MAXIM2825/6/7 Ver. 317 or less
+; Edited by Tiger, Sep-17-2003  for 2.4Ghz channels
+; Updated by Tiger, Sep-22-2003 for 5.0Ghz channels
+; Corrected by Tiger, Sep-23-2003, for 0x03 and 0x04 of 5.0Ghz channels
+
+0x00 0x00080
+0x01 0x214c0
+0x02 0x13802
+
+;2.4GHz Channels
+;channe1 01 (2.412GHz); 0x03 0x30143 ;0x04 0x0accc
+;channe1 02 (2.417GHz); 0x03 0x32140 ;0x04 0x09111
+;channe1 03 (2.422GHz); 0x03 0x32142 ;0x04 0x0bbbb
+;channe1 04 (2.427GHz); 0x03 0x32143 ;0x04 0x0accc
+;channe1 05 (2.432GHz); 0x03 0x31140 ;0x04 0x09111
+;channe1 06 (2.437GHz); 0x03 0x31142 ;0x04 0x0bbbb
+;channe1 07 (2.442GHz); 0x03 0x31143 ;0x04 0x0accc
+;channe1 08 (2.447GHz); 0x03 0x33140 ;0x04 0x09111
+;channe1 09 (2.452GHz); 0x03 0x33142 ;0x04 0x0bbbb
+;channe1 10 (2.457GHz); 0x03 0x33143 ;0x04 0x0accc
+;channe1 11 (2.462GHz); 0x03 0x30940 ;0x04 0x09111
+;channe1 12 (2.467GHz); 0x03 0x30942 ;0x04 0x0bbbb
+;channe1 13 (2.472GHz); 0x03 0x30943 ;0x04 0x0accc
+
+;5.0Ghz Channels
+;channel 36 (5.180GHz); 0x03 0x33cc0 ;0x04 0x0b333
+;channel 40 (5.200GHz); 0x03 0x302c0 ;0x04 0x08000
+;channel 44 (5.220GHz); 0x03 0x302c2 ;0x04 0x0b333
+;channel 48 (5.240GHz); 0x03 0x322c1 ;0x04 0x09999
+;channel 52 (5.260GHz); 0x03 0x312c1 ;0x04 0x0a666
+;channel 56 (5.280GHz); 0x03 0x332c3 ;0x04 0x08ccc
+;channel 60 (5.300GHz); 0x03 0x30ac0 ;0x04 0x08000
+;channel 64 (5.320GHz); 0x03 0x30ac2 ;0x04 0x08333
+
+;2.4GHz band ;0x05 0x28986;
+;5.0GHz band
+0x05 0x2a986
+
+0x06 0x18008
+0x07 0x38400
+0x08 0x05108
+0x09 0x27ff8
+0x0a 0x14000
+0x0b 0x37f99
+0x0c 0x0c000
+*****************************************************************************/
+u32 maxim_317_rf_data[]     =
+{
+    (0x00<<18)|0x000a2,
+    (0x01<<18)|0x214c0,
+    (0x02<<18)|0x13802,
+    (0x03<<18)|0x30143,
+    (0x04<<18)|0x0accc,
+    (0x05<<18)|0x28986,
+    (0x06<<18)|0x18008,
+    (0x07<<18)|0x38400,
+    (0x08<<18)|0x05108,
+    (0x09<<18)|0x27ff8,
+    (0x0A<<18)|0x14000,
+    (0x0B<<18)|0x37f99,
+    (0x0C<<18)|0x0c000
+};
+
+u32 maxim_317_channel_data_24[][3]    =
+{
+    {(0x03<<18)|0x30143, (0x04<<18)|0x0accc, (0x05<<18)|0x28986}, // channe1 01
+    {(0x03<<18)|0x32140, (0x04<<18)|0x09111, (0x05<<18)|0x28986}, // channe1 02
+    {(0x03<<18)|0x32142, (0x04<<18)|0x0bbbb, (0x05<<18)|0x28986}, // channe1 03
+    {(0x03<<18)|0x32143, (0x04<<18)|0x0accc, (0x05<<18)|0x28986}, // channe1 04
+    {(0x03<<18)|0x31140, (0x04<<18)|0x09111, (0x05<<18)|0x28986}, // channe1 05
+    {(0x03<<18)|0x31142, (0x04<<18)|0x0bbbb, (0x05<<18)|0x28986}, // channe1 06
+    {(0x03<<18)|0x31143, (0x04<<18)|0x0accc, (0x05<<18)|0x28986}, // channe1 07
+    {(0x03<<18)|0x33140, (0x04<<18)|0x09111, (0x05<<18)|0x28986}, // channe1 08
+    {(0x03<<18)|0x33142, (0x04<<18)|0x0bbbb, (0x05<<18)|0x28986}, // channe1 09
+    {(0x03<<18)|0x33143, (0x04<<18)|0x0accc, (0x05<<18)|0x28986}, // channe1 10
+    {(0x03<<18)|0x30940, (0x04<<18)|0x09111, (0x05<<18)|0x28986}, // channe1 11
+    {(0x03<<18)|0x30942, (0x04<<18)|0x0bbbb, (0x05<<18)|0x28986}, // channe1 12
+    {(0x03<<18)|0x30943, (0x04<<18)|0x0accc, (0x05<<18)|0x28986} // channe1 13
+};
+
+u32 maxim_317_channel_data_50[][3]    =
+{
+    {(0x03<<18)|0x33cc0, (0x04<<18)|0x0b333, (0x05<<18)|0x2a986}, // channel 36
+    {(0x03<<18)|0x302c0, (0x04<<18)|0x08000, (0x05<<18)|0x2a986}, // channel 40
+    {(0x03<<18)|0x302c3, (0x04<<18)|0x0accc, (0x05<<18)|0x2a986}, // channel 44
+    {(0x03<<18)|0x322c1, (0x04<<18)|0x09666, (0x05<<18)|0x2a986}, // channel 48
+    {(0x03<<18)|0x312c2, (0x04<<18)|0x09999, (0x05<<18)|0x2a986}, // channel 52
+    {(0x03<<18)|0x332c0, (0x04<<18)|0x0b333, (0x05<<18)|0x2a99e}, // channel 56
+    {(0x03<<18)|0x30ac0, (0x04<<18)|0x08000, (0x05<<18)|0x2a99e}, // channel 60
+    {(0x03<<18)|0x30ac3, (0x04<<18)|0x0accc, (0x05<<18)|0x2a99e} // channel 64
+};
+
+u32 maxim_317_power_data_24[] = {(0x0C<<18)|0x0c000, (0x0C<<18)|0x0c100};
+u32 maxim_317_power_data_50[] = {(0x0C<<18)|0x0c000, (0x0C<<18)|0x0c100};
+
+/*****************************************************************************
+;;AL2230 MP (Mass Production Version)
+;;RF Registers Setting for Airoha AL2230 silicon after June 1st, 2004
+;;Updated by Tiger Huang (June 1st, 2004)
+;;20-bit length and LSB first
+
+;;Ch01 (2412MHz) ;0x00 0x09EFC ;0x01 0x8CCCC;
+;;Ch02 (2417MHz) ;0x00 0x09EFC ;0x01 0x8CCCD;
+;;Ch03 (2422MHz) ;0x00 0x09E7C ;0x01 0x8CCCC;
+;;Ch04 (2427MHz) ;0x00 0x09E7C ;0x01 0x8CCCD;
+;;Ch05 (2432MHz) ;0x00 0x05EFC ;0x01 0x8CCCC;
+;;Ch06 (2437MHz) ;0x00 0x05EFC ;0x01 0x8CCCD;
+;;Ch07 (2442MHz) ;0x00 0x05E7C ;0x01 0x8CCCC;
+;;Ch08 (2447MHz) ;0x00 0x05E7C ;0x01 0x8CCCD;
+;;Ch09 (2452MHz) ;0x00 0x0DEFC ;0x01 0x8CCCC;
+;;Ch10 (2457MHz) ;0x00 0x0DEFC ;0x01 0x8CCCD;
+;;Ch11 (2462MHz) ;0x00 0x0DE7C ;0x01 0x8CCCC;
+;;Ch12 (2467MHz) ;0x00 0x0DE7C ;0x01 0x8CCCD;
+;;Ch13 (2472MHz) ;0x00 0x03EFC ;0x01 0x8CCCC;
+;;Ch14 (2484Mhz) ;0x00 0x03E7C ;0x01 0x86666;
+
+0x02 0x401D8; RXDCOC BW 100Hz for RXHP low
+;;0x02 0x481DC; RXDCOC BW 30Khz for RXHP low
+
+0x03 0xCFFF0
+0x04 0x23800
+0x05 0xA3B72
+0x06 0x6DA01
+0x07 0xE1688
+0x08 0x11600
+0x09 0x99E02
+0x0A 0x5DDB0
+0x0B 0xD9900
+0x0C 0x3FFBD
+0x0D 0xB0000
+0x0F 0xF00A0
+
+;RF Calibration for Airoha AL2230
+;Edit by Ben Chang (01/30/04)
+;Updated by Tiger Huang (03/03/04)
+0x0f 0xf00a0 ; Initial Setting
+0x0f 0xf00b0 ; Activate TX DCC
+0x0f 0xf02a0 ; Activate Phase Calibration
+0x0f 0xf00e0 ; Activate Filter RC Calibration
+0x0f 0xf00a0 ; Restore Initial Setting
+*****************************************************************************/
+
+u32 al2230_rf_data[]     =
+{
+    (0x00<<20)|0x09EFC,
+    (0x01<<20)|0x8CCCC,
+    (0x02<<20)|0x40058,// 20060627 Anson 0x401D8,
+    (0x03<<20)|0xCFFF0,
+    (0x04<<20)|0x24100,// 20060627 Anson 0x23800,
+    (0x05<<20)|0xA3B2F,// 20060627 Anson 0xA3B72
+    (0x06<<20)|0x6DA01,
+    (0x07<<20)|0xE3628,// 20060627 Anson 0xE1688,
+    (0x08<<20)|0x11600,
+    (0x09<<20)|0x9DC02,// 20060627 Anosn 0x97602,//0x99E02, //0x9AE02
+    (0x0A<<20)|0x5ddb0, // 941206 For QCOM interference 0x588b0,//0x5DDB0, 940601 adj 0x5aa30 for bluetooth
+    (0x0B<<20)|0xD9900,
+    (0x0C<<20)|0x3FFBD,
+    (0x0D<<20)|0xB0000,
+    (0x0F<<20)|0xF01A0 // 20060627 Anson 0xF00A0
+};
+
+u32 al2230s_rf_data[]     =
+{
+    (0x00<<20)|0x09EFC,
+    (0x01<<20)|0x8CCCC,
+    (0x02<<20)|0x40058,// 20060419 0x401D8,
+    (0x03<<20)|0xCFFF0,
+    (0x04<<20)|0x24100,// 20060419 0x23800,
+    (0x05<<20)|0xA3B2F,// 20060419 0xA3B72,
+    (0x06<<20)|0x6DA01,
+    (0x07<<20)|0xE3628,// 20060419 0xE1688,
+    (0x08<<20)|0x11600,
+    (0x09<<20)|0x9DC02,// 20060419 0x97602,//0x99E02, //0x9AE02
+    (0x0A<<20)|0x5DDB0,// 941206 For QCOM interference 0x588b0,//0x5DDB0, 940601 adj 0x5aa30 for bluetooth
+    (0x0B<<20)|0xD9900,
+    (0x0C<<20)|0x3FFBD,
+    (0x0D<<20)|0xB0000,
+    (0x0F<<20)|0xF01A0 // 20060419 0xF00A0
+};
+
+u32 al2230_channel_data_24[][2] =
+{
+    {(0x00<<20)|0x09EFC, (0x01<<20)|0x8CCCC}, // channe1 01
+    {(0x00<<20)|0x09EFC, (0x01<<20)|0x8CCCD}, // channe1 02
+    {(0x00<<20)|0x09E7C, (0x01<<20)|0x8CCCC}, // channe1 03
+    {(0x00<<20)|0x09E7C, (0x01<<20)|0x8CCCD}, // channe1 04
+    {(0x00<<20)|0x05EFC, (0x01<<20)|0x8CCCC}, // channe1 05
+    {(0x00<<20)|0x05EFC, (0x01<<20)|0x8CCCD}, // channe1 06
+    {(0x00<<20)|0x05E7C, (0x01<<20)|0x8CCCC}, // channe1 07
+    {(0x00<<20)|0x05E7C, (0x01<<20)|0x8CCCD}, // channe1 08
+    {(0x00<<20)|0x0DEFC, (0x01<<20)|0x8CCCC}, // channe1 09
+    {(0x00<<20)|0x0DEFC, (0x01<<20)|0x8CCCD}, // channe1 10
+    {(0x00<<20)|0x0DE7C, (0x01<<20)|0x8CCCC}, // channe1 11
+    {(0x00<<20)|0x0DE7C, (0x01<<20)|0x8CCCD}, // channe1 12
+    {(0x00<<20)|0x03EFC, (0x01<<20)|0x8CCCC}, // channe1 13
+    {(0x00<<20)|0x03E7C, (0x01<<20)|0x86666} // channe1 14
+};
+
+// Current setting. u32 airoha_power_data_24[] = {(0x09<<20)|0x90202, (0x09<<20)|0x96602, (0x09<<20)|0x97602};
+#define AIROHA_TXVGA_LOW_INDEX		31		// Index for 0x90202
+#define AIROHA_TXVGA_MIDDLE_INDEX	12		// Index for 0x96602
+#define AIROHA_TXVGA_HIGH_INDEX		8		// Index for 0x97602 1.0.24.0 1.0.28.0
+/*
+u32 airoha_power_data_24[] =
+{
+    0x9FE02,          // Max - 0 dB
+    0x9BE02,          // Max - 1 dB
+    0x9DE02,          // Max - 2 dB
+    0x99E02,          // Max - 3 dB
+    0x9EE02,          // Max - 4 dB
+    0x9AE02,          // Max - 5 dB
+    0x9CE02,          // Max - 6 dB
+    0x98E02,          // Max - 7 dB
+    0x97602,          // Max - 8 dB
+    0x93602,          // Max - 9 dB
+    0x95602,          // Max - 10 dB
+    0x91602,          // Max - 11 dB
+    0x96602,          // Max - 12 dB
+    0x92602,          // Max - 13 dB
+    0x94602,          // Max - 14 dB
+    0x90602,          // Max - 15 dB
+    0x97A02,          // Max - 16 dB
+    0x93A02,          // Max - 17 dB
+    0x95A02,          // Max - 18 dB
+    0x91A02,          // Max - 19 dB
+    0x96A02,          // Max - 20 dB
+    0x92A02,          // Max - 21 dB
+    0x94A02,          // Max - 22 dB
+    0x90A02,          // Max - 23 dB
+    0x97202,          // Max - 24 dB
+    0x93202,          // Max - 25 dB
+    0x95202,          // Max - 26 dB
+    0x91202,          // Max - 27 dB
+    0x96202,          // Max - 28 dB
+    0x92202,          // Max - 29 dB
+    0x94202,          // Max - 30 dB
+    0x90202           // Max - 31 dB
+};
+*/
+
+// 20040927 1.1.69.1000 ybjiang
+// from John
+u32 al2230_txvga_data[][2] =
+{
+	//value	, index
+	{0x090202, 0},
+	{0x094202, 2},
+	{0x092202, 4},
+	{0x096202, 6},
+	{0x091202, 8},
+	{0x095202, 10},
+	{0x093202, 12},
+	{0x097202, 14},
+	{0x090A02, 16},
+	{0x094A02, 18},
+	{0x092A02, 20},
+	{0x096A02, 22},
+	{0x091A02, 24},
+	{0x095A02, 26},
+	{0x093A02, 28},
+	{0x097A02, 30},
+	{0x090602, 32},
+	{0x094602, 34},
+	{0x092602, 36},
+	{0x096602, 38},
+	{0x091602, 40},
+	{0x095602, 42},
+	{0x093602, 44},
+	{0x097602, 46},
+	{0x090E02, 48},
+	{0x098E02, 49},
+	{0x094E02, 50},
+	{0x09CE02, 51},
+	{0x092E02, 52},
+	{0x09AE02, 53},
+	{0x096E02, 54},
+	{0x09EE02, 55},
+	{0x091E02, 56},
+	{0x099E02, 57},
+	{0x095E02, 58},
+	{0x09DE02, 59},
+	{0x093E02, 60},
+	{0x09BE02, 61},
+	{0x097E02, 62},
+	{0x09FE02, 63}
+};
+
+//--------------------------------
+// For Airoha AL7230, 2.4Ghz band
+// Edit by Tiger, (March, 9, 2005)
+// 24bit, MSB first
+
+//channel independent registers:
+u32 al7230_rf_data_24[]	=
+{
+	(0x00<<24)|0x003790,
+	(0x01<<24)|0x133331,
+	(0x02<<24)|0x841FF2,
+	(0x03<<24)|0x3FDFA3,
+	(0x04<<24)|0x7FD784,
+	(0x05<<24)|0x802B55,
+	(0x06<<24)|0x56AF36,
+	(0x07<<24)|0xCE0207,
+	(0x08<<24)|0x6EBC08,
+	(0x09<<24)|0x221BB9,
+	(0x0A<<24)|0xE0000A,
+	(0x0B<<24)|0x08071B,
+	(0x0C<<24)|0x000A3C,
+	(0x0D<<24)|0xFFFFFD,
+	(0x0E<<24)|0x00000E,
+	(0x0F<<24)|0x1ABA8F
+};
+
+u32 al7230_channel_data_24[][2] =
+{
+    {(0x00<<24)|0x003790, (0x01<<24)|0x133331}, // channe1 01
+    {(0x00<<24)|0x003790, (0x01<<24)|0x1B3331}, // channe1 02
+    {(0x00<<24)|0x003790, (0x01<<24)|0x033331}, // channe1 03
+    {(0x00<<24)|0x003790, (0x01<<24)|0x0B3331}, // channe1 04
+    {(0x00<<24)|0x0037A0, (0x01<<24)|0x133331}, // channe1 05
+    {(0x00<<24)|0x0037A0, (0x01<<24)|0x1B3331}, // channe1 06
+    {(0x00<<24)|0x0037A0, (0x01<<24)|0x033331}, // channe1 07
+    {(0x00<<24)|0x0037A0, (0x01<<24)|0x0B3331}, // channe1 08
+    {(0x00<<24)|0x0037B0, (0x01<<24)|0x133331}, // channe1 09
+    {(0x00<<24)|0x0037B0, (0x01<<24)|0x1B3331}, // channe1 10
+    {(0x00<<24)|0x0037B0, (0x01<<24)|0x033331}, // channe1 11
+    {(0x00<<24)|0x0037B0, (0x01<<24)|0x0B3331}, // channe1 12
+    {(0x00<<24)|0x0037C0, (0x01<<24)|0x133331}, // channe1 13
+	{(0x00<<24)|0x0037C0, (0x01<<24)|0x066661}  // channel 14
+};
+
+//channel independent registers:
+u32 al7230_rf_data_50[]	=
+{
+	(0x00<<24)|0x0FF520,
+	(0x01<<24)|0x000001,
+	(0x02<<24)|0x451FE2,
+	(0x03<<24)|0x5FDFA3,
+	(0x04<<24)|0x6FD784,
+	(0x05<<24)|0x853F55,
+	(0x06<<24)|0x56AF36,
+	(0x07<<24)|0xCE0207,
+	(0x08<<24)|0x6EBC08,
+	(0x09<<24)|0x221BB9,
+	(0x0A<<24)|0xE0600A,
+	(0x0B<<24)|0x08044B,
+	(0x0C<<24)|0x00143C,
+	(0x0D<<24)|0xFFFFFD,
+	(0x0E<<24)|0x00000E,
+	(0x0F<<24)|0x12BACF //5Ghz default state
+};
+
+u32 al7230_channel_data_5[][4] =
+{
+	//channel dependent registers: 0x00, 0x01 and 0x04
+	//11J ===========
+	{184, (0x00<<24)|0x0FF520, (0x01<<24)|0x000001, (0x04<<24)|0x67F784}, // channel 184
+	{188, (0x00<<24)|0x0FF520, (0x01<<24)|0x0AAAA1, (0x04<<24)|0x77F784}, // channel 188
+	{192, (0x00<<24)|0x0FF530, (0x01<<24)|0x155551, (0x04<<24)|0x77F784}, // channel 192
+	{196, (0x00<<24)|0x0FF530, (0x01<<24)|0x000001, (0x04<<24)|0x67F784}, // channel 196
+	{8,   (0x00<<24)|0x0FF540, (0x01<<24)|0x000001, (0x04<<24)|0x67F784}, // channel 008
+	{12,  (0x00<<24)|0x0FF540, (0x01<<24)|0x0AAAA1, (0x04<<24)|0x77F784}, // channel 012
+	{16,  (0x00<<24)|0x0FF550, (0x01<<24)|0x155551, (0x04<<24)|0x77F784}, // channel 016
+	{34,  (0x00<<24)|0x0FF560, (0x01<<24)|0x055551, (0x04<<24)|0x77F784}, // channel 034
+	{38,  (0x00<<24)|0x0FF570, (0x01<<24)|0x100001, (0x04<<24)|0x77F784}, // channel 038
+	{42,  (0x00<<24)|0x0FF570, (0x01<<24)|0x1AAAA1, (0x04<<24)|0x77F784}, // channel 042
+	{46,  (0x00<<24)|0x0FF570, (0x01<<24)|0x055551, (0x04<<24)|0x77F784}, // channel 046
+	//11 A/H =========
+	{36,  (0x00<<24)|0x0FF560, (0x01<<24)|0x0AAAA1, (0x04<<24)|0x77F784}, // channel 036
+	{40,  (0x00<<24)|0x0FF570, (0x01<<24)|0x155551, (0x04<<24)|0x77F784}, // channel 040
+	{44,  (0x00<<24)|0x0FF570, (0x01<<24)|0x000001, (0x04<<24)|0x67F784}, // channel 044
+	{48,  (0x00<<24)|0x0FF570, (0x01<<24)|0x0AAAA1, (0x04<<24)|0x77F784}, // channel 048
+	{52,  (0x00<<24)|0x0FF580, (0x01<<24)|0x155551, (0x04<<24)|0x77F784}, // channel 052
+	{56,  (0x00<<24)|0x0FF580, (0x01<<24)|0x000001, (0x04<<24)|0x67F784}, // channel 056
+	{60,  (0x00<<24)|0x0FF580, (0x01<<24)|0x0AAAA1, (0x04<<24)|0x77F784}, // channel 060
+	{64,  (0x00<<24)|0x0FF590, (0x01<<24)|0x155551, (0x04<<24)|0x77F784}, // channel 064
+	{100, (0x00<<24)|0x0FF5C0, (0x01<<24)|0x155551, (0x04<<24)|0x77F784}, // channel 100
+	{104, (0x00<<24)|0x0FF5C0, (0x01<<24)|0x000001, (0x04<<24)|0x67F784}, // channel 104
+	{108, (0x00<<24)|0x0FF5C0, (0x01<<24)|0x0AAAA1, (0x04<<24)|0x77F784}, // channel 108
+	{112, (0x00<<24)|0x0FF5D0, (0x01<<24)|0x155551, (0x04<<24)|0x77F784}, // channel 112
+	{116, (0x00<<24)|0x0FF5D0, (0x01<<24)|0x000001, (0x04<<24)|0x67F784}, // channel 116
+	{120, (0x00<<24)|0x0FF5D0, (0x01<<24)|0x0AAAA1, (0x04<<24)|0x77F784}, // channel 120
+	{124, (0x00<<24)|0x0FF5E0, (0x01<<24)|0x155551, (0x04<<24)|0x77F784}, // channel 124
+	{128, (0x00<<24)|0x0FF5E0, (0x01<<24)|0x000001, (0x04<<24)|0x67F784}, // channel 128
+	{132, (0x00<<24)|0x0FF5E0, (0x01<<24)|0x0AAAA1, (0x04<<24)|0x77F784}, // channel 132
+	{136, (0x00<<24)|0x0FF5F0, (0x01<<24)|0x155551, (0x04<<24)|0x77F784}, // channel 136
+	{140, (0x00<<24)|0x0FF5F0, (0x01<<24)|0x000001, (0x04<<24)|0x67F784}, // channel 140
+	{149, (0x00<<24)|0x0FF600, (0x01<<24)|0x180001, (0x04<<24)|0x77F784}, // channel 149
+	{153, (0x00<<24)|0x0FF600, (0x01<<24)|0x02AAA1, (0x04<<24)|0x77F784}, // channel 153
+	{157, (0x00<<24)|0x0FF600, (0x01<<24)|0x0D5551, (0x04<<24)|0x77F784}, // channel 157
+	{161, (0x00<<24)|0x0FF610, (0x01<<24)|0x180001, (0x04<<24)|0x77F784}, // channel 161
+	{165, (0x00<<24)|0x0FF610, (0x01<<24)|0x02AAA1, (0x04<<24)|0x77F784}  // channel 165
+};
+
+//; RF Calibration <=== Register 0x0F
+//0x0F 0x1ABA8F; start from 2.4Ghz default state
+//0x0F 0x9ABA8F; TXDC compensation
+//0x0F 0x3ABA8F; RXFIL adjustment
+//0x0F 0x1ABA8F; restore 2.4Ghz default state
+
+//;TXVGA Mapping Table <=== Register 0x0B
+u32 al7230_txvga_data[][2] =
+{
+	{0x08040B, 0}, //TXVGA=0;
+	{0x08041B, 1}, //TXVGA=1;
+	{0x08042B, 2}, //TXVGA=2;
+	{0x08043B, 3}, //TXVGA=3;
+	{0x08044B, 4}, //TXVGA=4;
+	{0x08045B, 5}, //TXVGA=5;
+	{0x08046B, 6}, //TXVGA=6;
+	{0x08047B, 7}, //TXVGA=7;
+	{0x08048B, 8}, //TXVGA=8;
+	{0x08049B, 9}, //TXVGA=9;
+	{0x0804AB, 10}, //TXVGA=10;
+	{0x0804BB, 11}, //TXVGA=11;
+	{0x0804CB, 12}, //TXVGA=12;
+	{0x0804DB, 13}, //TXVGA=13;
+	{0x0804EB, 14}, //TXVGA=14;
+	{0x0804FB, 15}, //TXVGA=15;
+	{0x08050B, 16}, //TXVGA=16;
+	{0x08051B, 17}, //TXVGA=17;
+	{0x08052B, 18}, //TXVGA=18;
+	{0x08053B, 19}, //TXVGA=19;
+	{0x08054B, 20}, //TXVGA=20;
+	{0x08055B, 21}, //TXVGA=21;
+	{0x08056B, 22}, //TXVGA=22;
+	{0x08057B, 23}, //TXVGA=23;
+	{0x08058B, 24}, //TXVGA=24;
+	{0x08059B, 25}, //TXVGA=25;
+	{0x0805AB, 26}, //TXVGA=26;
+	{0x0805BB, 27}, //TXVGA=27;
+	{0x0805CB, 28}, //TXVGA=28;
+	{0x0805DB, 29}, //TXVGA=29;
+	{0x0805EB, 30}, //TXVGA=30;
+	{0x0805FB, 31}, //TXVGA=31;
+	{0x08060B, 32}, //TXVGA=32;
+	{0x08061B, 33}, //TXVGA=33;
+	{0x08062B, 34}, //TXVGA=34;
+	{0x08063B, 35}, //TXVGA=35;
+	{0x08064B, 36}, //TXVGA=36;
+	{0x08065B, 37}, //TXVGA=37;
+	{0x08066B, 38}, //TXVGA=38;
+	{0x08067B, 39}, //TXVGA=39;
+	{0x08068B, 40}, //TXVGA=40;
+	{0x08069B, 41}, //TXVGA=41;
+	{0x0806AB, 42}, //TXVGA=42;
+	{0x0806BB, 43}, //TXVGA=43;
+	{0x0806CB, 44}, //TXVGA=44;
+	{0x0806DB, 45}, //TXVGA=45;
+	{0x0806EB, 46}, //TXVGA=46;
+	{0x0806FB, 47}, //TXVGA=47;
+	{0x08070B, 48}, //TXVGA=48;
+	{0x08071B, 49}, //TXVGA=49;
+	{0x08072B, 50}, //TXVGA=50;
+	{0x08073B, 51}, //TXVGA=51;
+	{0x08074B, 52}, //TXVGA=52;
+	{0x08075B, 53}, //TXVGA=53;
+	{0x08076B, 54}, //TXVGA=54;
+	{0x08077B, 55}, //TXVGA=55;
+	{0x08078B, 56}, //TXVGA=56;
+	{0x08079B, 57}, //TXVGA=57;
+	{0x0807AB, 58}, //TXVGA=58;
+	{0x0807BB, 59}, //TXVGA=59;
+	{0x0807CB, 60}, //TXVGA=60;
+	{0x0807DB, 61}, //TXVGA=61;
+	{0x0807EB, 62}, //TXVGA=62;
+	{0x0807FB, 63}, //TXVGA=63;
+};
+//--------------------------------
+
+
+//; W89RF242 RFIC SPI programming initial data
+//; Winbond WLAN 11g RFIC BB-SPI register -- version FA5976A rev 1.3b
+//; Update Date: Ocotber 3, 2005 by PP10 Hsiang-Te Ho
+//;
+//; Version 1.3b revision items: (Oct. 1, 2005 by HTHo) for FA5976A
+u32 w89rf242_rf_data[]     =
+{
+    (0x00<<24)|0xF86100, // 20060721 0xF86100, //; 3E184; MODA  (0x00) -- Normal mode ; calibration off
+    (0x01<<24)|0xEFFFC2, //; 3BFFF; MODB  (0x01) -- turn off RSSI, and other circuits are turned on
+    (0x02<<24)|0x102504, //; 04094; FSET  (0x02) -- default 20MHz crystal ; Icmp=1.5mA
+    (0x03<<24)|0x026286, //; 0098A; FCHN  (0x03) -- default CH7, 2442MHz
+    (0x04<<24)|0x000208, // 20060612.1.a 0x0002C8, // 20050818 // 20050816 0x000388
+						 //; 02008; FCAL  (0x04) -- XTAL Freq Trim=001000 (socket board#1); FA5976AYG_v1.3C
+    (0x05<<24)|0x24C60A, // 20060612.1.a 0x24C58A, // 941003 0x24C48A, // 20050818.2 0x24848A, // 20050818 // 20050816 0x24C48A
+						 //; 09316; GANA  (0x05) -- TX VGA default (TXVGA=0x18(12)) & TXGPK=110 ; FA5976A_1.3D
+    (0x06<<24)|0x3432CC, // 941003 0x26C34C, // 20050818 0x06B40C
+						 //; 0D0CB; GANB  (0x06) -- RXDC(DC offset) on; LNA=11; RXVGA=001011(11) ; RXFLSW=11(010001); RXGPK=00; RXGCF=00; -50dBm input
+    (0x07<<24)|0x0C68CE, // 20050818.2 0x0C66CE, // 20050818 // 20050816 0x0C68CE
+						 //; 031A3; FILT  (0x07) -- TX/RX filter with auto-tuning; TFLBW=011; RFLBW=100
+    (0x08<<24)|0x100010, //; 04000; TCAL  (0x08) -- //for LO
+    (0x09<<24)|0x004012, // 20060612.1.a 0x6E4012, // 0x004012,
+						 //; 1B900; RCALA (0x09) -- FASTS=11; HPDE=01 (100nsec); SEHP=1 (select B0 pin=RXHP); RXHP=1 (Turn on RXHP function)(FA5976A_1.3C)
+    (0x0A<<24)|0x704014, //; 1C100; RCALB (0x0A)
+    (0x0B<<24)|0x18BDD6, // 941003 0x1805D6, // 20050818.2 0x1801D6, // 20050818 // 20050816 0x1805D6
+						 //; 062F7; IQCAL (0x0B) -- Turn on LO phase tuner=0111 & RX-LO phase = 0111; FA5976A_1.3B (2005/09/29)
+    (0x0C<<24)|0x575558, // 20050818.2 0x555558, // 20050818 // 20050816 0x575558
+						 //; 15D55 ; IBSA  (0x0C) -- IFPre =11 ; TC5376A_v1.3A for corner
+    (0x0D<<24)|0x55545A, // 20060612.1.a 0x55555A,
+						 //; 15555 ; IBSB  (0x0D)
+    (0x0E<<24)|0x5557DC, // 20060612.1.a 0x55555C, // 941003 0x5557DC,
+						 //; 1555F ; IBSC  (0x0E) -- IRLNA & IRLNB (PTAT & Const current)=01/01; FA5976B_1.3F (2005/11/25)
+	(0x10<<24)|0x000C20, // 941003 0x000020, // 20050818
+						 //; 00030 ; TMODA (0x10) -- LNA_gain_step=0011 ; LNA=15/16dB
+	(0x11<<24)|0x0C0022, // 941003 0x030022  // 20050818.2 0x030022  // 20050818 // 20050816 0x0C0022
+						 //; 03000 ; TMODB (0x11) -- Turn ON RX-Q path Test Switch; To improve IQ path group delay (FA5976A_1.3C)
+	(0x12<<24)|0x000024  // 20060612.1.a 0x001824  // 941003 add
+						 //; TMODC (0x12) -- Turn OFF Tempearure sensor
+};
+
+u32 w89rf242_channel_data_24[][2] =
+{
+    {(0x03<<24)|0x025B06, (0x04<<24)|0x080408}, // channe1 01
+    {(0x03<<24)|0x025C46, (0x04<<24)|0x080408}, // channe1 02
+    {(0x03<<24)|0x025D86, (0x04<<24)|0x080408}, // channe1 03
+    {(0x03<<24)|0x025EC6, (0x04<<24)|0x080408}, // channe1 04
+    {(0x03<<24)|0x026006, (0x04<<24)|0x080408}, // channe1 05
+    {(0x03<<24)|0x026146, (0x04<<24)|0x080408}, // channe1 06
+    {(0x03<<24)|0x026286, (0x04<<24)|0x080408}, // channe1 07
+    {(0x03<<24)|0x0263C6, (0x04<<24)|0x080408}, // channe1 08
+    {(0x03<<24)|0x026506, (0x04<<24)|0x080408}, // channe1 09
+    {(0x03<<24)|0x026646, (0x04<<24)|0x080408}, // channe1 10
+    {(0x03<<24)|0x026786, (0x04<<24)|0x080408}, // channe1 11
+    {(0x03<<24)|0x0268C6, (0x04<<24)|0x080408}, // channe1 12
+    {(0x03<<24)|0x026A06, (0x04<<24)|0x080408}, // channe1 13
+    {(0x03<<24)|0x026D06, (0x04<<24)|0x080408}  // channe1 14
+};
+
+u32 w89rf242_power_data_24[] = {(0x05<<24)|0x24C48A, (0x05<<24)|0x24C48A, (0x05<<24)|0x24C48A};
+
+// 20060315.6 Enlarge for new scale
+// 20060316.6 20060619.2.a add mapping array
+u32 w89rf242_txvga_old_mapping[][2] =
+{
+	{0, 0} , // New <-> Old
+	{1, 1} ,
+	{2, 2} ,
+	{3, 3} ,
+	{4, 4} ,
+	{6, 5} ,
+	{8, 6 },
+	{10, 7 },
+	{12, 8 },
+	{14, 9 },
+	{16, 10},
+	{18, 11},
+	{20, 12},
+	{22, 13},
+	{24, 14},
+	{26, 15},
+	{28, 16},
+	{30, 17},
+	{32, 18},
+	{34, 19},
+
+
+};
+
+// 20060619.3 modify from Bruce's mail
+u32 w89rf242_txvga_data[][5] =
+{
+	//low gain mode
+	{ (0x05<<24)|0x24C00A, 0, 0x00292315, 0x0800FEFF, 0x52523131 },//  ; min gain
+	{ (0x05<<24)|0x24C80A, 1, 0x00292315, 0x0800FEFF, 0x52523131 },
+	{ (0x05<<24)|0x24C04A, 2, 0x00292315, 0x0800FEFF, 0x52523131 },//  (default) +14dBm (ANT)
+	{ (0x05<<24)|0x24C84A, 3, 0x00292315, 0x0800FEFF, 0x52523131 },
+
+	//TXVGA=0x10
+	{ (0x05<<24)|0x24C40A, 4, 0x00292315, 0x0800FEFF, 0x60603838 },
+	{ (0x05<<24)|0x24C40A, 5, 0x00262114, 0x0700FEFF, 0x65653B3B },
+
+	//TXVGA=0x11
+	{ (0x05<<24)|0x24C44A, 6, 0x00241F13, 0x0700FFFF, 0x58583333 },
+	{ (0x05<<24)|0x24C44A, 7, 0x00292315, 0x0800FEFF, 0x5E5E3737 },
+
+	//TXVGA=0x12
+	{ (0x05<<24)|0x24C48A, 8, 0x00262114, 0x0700FEFF, 0x53533030 },
+	{ (0x05<<24)|0x24C48A, 9, 0x00241F13, 0x0700FFFF, 0x59593434 },
+
+	//TXVGA=0x13
+	{ (0x05<<24)|0x24C4CA, 10, 0x00292315, 0x0800FEFF, 0x52523030 },
+	{ (0x05<<24)|0x24C4CA, 11, 0x00262114, 0x0700FEFF, 0x56563232 },
+
+	//TXVGA=0x14
+	{ (0x05<<24)|0x24C50A, 12, 0x00292315, 0x0800FEFF, 0x54543131 },
+	{ (0x05<<24)|0x24C50A, 13, 0x00262114, 0x0700FEFF, 0x58583434 },
+
+	//TXVGA=0x15
+	{ (0x05<<24)|0x24C54A, 14, 0x00292315, 0x0800FEFF, 0x54543131 },
+	{ (0x05<<24)|0x24C54A, 15, 0x00262114, 0x0700FEFF, 0x59593434 },
+
+	//TXVGA=0x16
+	{ (0x05<<24)|0x24C58A, 16, 0x00292315, 0x0800FEFF, 0x55553131 },
+	{ (0x05<<24)|0x24C58A, 17, 0x00292315, 0x0800FEFF, 0x5B5B3535 },
+
+	//TXVGA=0x17
+	{ (0x05<<24)|0x24C5CA, 18, 0x00262114, 0x0700FEFF, 0x51512F2F },
+	{ (0x05<<24)|0x24C5CA, 19, 0x00241F13, 0x0700FFFF, 0x55553131 },
+
+	//TXVGA=0x18
+	{ (0x05<<24)|0x24C60A, 20, 0x00292315, 0x0800FEFF, 0x4F4F2E2E },
+	{ (0x05<<24)|0x24C60A, 21, 0x00262114, 0x0700FEFF, 0x53533030 },
+
+	//TXVGA=0x19
+	{ (0x05<<24)|0x24C64A, 22, 0x00292315, 0x0800FEFF, 0x4E4E2D2D },
+	{ (0x05<<24)|0x24C64A, 23, 0x00262114, 0x0700FEFF, 0x53533030 },
+
+	//TXVGA=0x1A
+	{ (0x05<<24)|0x24C68A, 24, 0x00292315, 0x0800FEFF, 0x50502E2E },
+	{ (0x05<<24)|0x24C68A, 25, 0x00262114, 0x0700FEFF, 0x55553131 },
+
+	//TXVGA=0x1B
+	{ (0x05<<24)|0x24C6CA, 26, 0x00262114, 0x0700FEFF, 0x53533030 },
+	{ (0x05<<24)|0x24C6CA, 27, 0x00292315, 0x0800FEFF, 0x5A5A3434 },
+
+	//TXVGA=0x1C
+	{ (0x05<<24)|0x24C70A, 28, 0x00292315, 0x0800FEFF, 0x55553131 },
+	{ (0x05<<24)|0x24C70A, 29, 0x00292315, 0x0800FEFF, 0x5D5D3636 },
+
+	//TXVGA=0x1D
+	{ (0x05<<24)|0x24C74A, 30, 0x00292315, 0x0800FEFF, 0x5F5F3737 },
+	{ (0x05<<24)|0x24C74A, 31, 0x00262114, 0x0700FEFF, 0x65653B3B },
+
+	//TXVGA=0x1E
+	{ (0x05<<24)|0x24C78A, 32, 0x00292315, 0x0800FEFF, 0x66663B3B },
+	{ (0x05<<24)|0x24C78A, 33, 0x00262114, 0x0700FEFF, 0x70704141 },
+
+	//TXVGA=0x1F
+	{ (0x05<<24)|0x24C7CA, 34, 0x00292315, 0x0800FEFF, 0x72724242 }
+};
+
+///////////////////////////////////////////////////////////////////////////////////////////////////
+///////////////////////////////////////////////////////////////////////////////////////////////////
+///////////////////////////////////////////////////////////////////////////////////////////////////
+
+
+
+//=============================================================================================================
+//  Uxx_ReadEthernetAddress --
+//
+//  Routine Description:
+//    Reads in the Ethernet address from the IC.
+//
+//  Arguments:
+//    pHwData        - The pHwData structure
+//
+//  Return Value:
+//
+//    The address is stored in EthernetIDAddr.
+//=============================================================================================================
+void
+Uxx_ReadEthernetAddress(  phw_data_t pHwData )
+{
+	u32	ltmp;
+
+	// Reading Ethernet address from EEPROM and set into hardware due to MAC address maybe change.
+	// Only unplug and plug again can make hardware read EEPROM again. 20060727
+	Wb35Reg_WriteSync( pHwData, 0x03b4, 0x08000000 ); // Start EEPROM access + Read + address(0x0d)
+	Wb35Reg_ReadSync( pHwData, 0x03b4, &ltmp );
+	*(PUSHORT)pHwData->PermanentMacAddress = cpu_to_le16((u16)ltmp); //20060926 anson's endian
+	Wb35Reg_WriteSync( pHwData, 0x03b4, 0x08010000 ); // Start EEPROM access + Read + address(0x0d)
+	Wb35Reg_ReadSync( pHwData, 0x03b4, &ltmp );
+	*(PUSHORT)(pHwData->PermanentMacAddress + 2) = cpu_to_le16((u16)ltmp); //20060926 anson's endian
+	Wb35Reg_WriteSync( pHwData, 0x03b4, 0x08020000 ); // Start EEPROM access + Read + address(0x0d)
+	Wb35Reg_ReadSync( pHwData, 0x03b4, &ltmp );
+	*(PUSHORT)(pHwData->PermanentMacAddress + 4) = cpu_to_le16((u16)ltmp); //20060926 anson's endian
+	*(PUSHORT)(pHwData->PermanentMacAddress + 6) = 0;
+	Wb35Reg_WriteSync( pHwData, 0x03e8, cpu_to_le32(*(PULONG)pHwData->PermanentMacAddress) ); //20060926 anson's endian
+	Wb35Reg_WriteSync( pHwData, 0x03ec, cpu_to_le32(*(PULONG)(pHwData->PermanentMacAddress+4)) ); //20060926 anson's endian
+}
+
+
+//===============================================================================================================
+//  CardGetMulticastBit --
+//  Description:
+//    For a given multicast address, returns the byte and bit in the card multicast registers that it hashes to.
+//    Calls CardComputeCrc() to determine the CRC value.
+//  Arguments:
+//    Address - the address
+//    Byte - the byte that it hashes to
+//    Value - will have a 1 in the relevant bit
+//  Return Value:
+//    None.
+//==============================================================================================================
+void CardGetMulticastBit(   u8 Address[ETH_LENGTH_OF_ADDRESS],
+						   u8 *Byte,  u8 *Value )
+{
+    u32 Crc;
+    u32 BitNumber;
+
+    // First compute the CRC.
+    Crc = CardComputeCrc(Address, ETH_LENGTH_OF_ADDRESS);
+
+	// The computed CRC is bit0~31 from left to right
+	//At first we should do right shift 25bits, and read 7bits by using '&', 2^7=128
+	BitNumber = (u32) ((Crc >> 26) & 0x3f);
+
+	*Byte  = (u8) (BitNumber >> 3);// 900514 original (BitNumber / 8)
+	*Value = (u8) ((u8)1 << (BitNumber % 8));
+}
+
+void Uxx_power_on_procedure(  phw_data_t pHwData )
+{
+	u32	ltmp, loop;
+
+	if( pHwData->phy_type <= RF_MAXIM_V1 )
+		Wb35Reg_WriteSync( pHwData, 0x03d4, 0xffffff38 );
+	else
+	{
+		Wb35Reg_WriteSync( pHwData, 0x03f4, 0xFF5807FF );// 20060721 For NEW IC 0xFF5807FF
+
+		// 20060511.1 Fix the following 4 steps for Rx of RF 2230 initial fail
+		Wb35Reg_WriteSync( pHwData, 0x03d4, 0x80 );// regulator on only
+		OS_SLEEP(10000); // Modify 20051221.1.b
+		Wb35Reg_WriteSync( pHwData, 0x03d4, 0xb8 );// REG_ON RF_RSTN on, and
+		OS_SLEEP(10000); // Modify 20051221.1.b
+
+		ltmp = 0x4968;
+		if( (pHwData->phy_type == RF_WB_242) ||
+			(RF_WB_242_1 == pHwData->phy_type) ) // 20060619.5 Add
+			ltmp = 0x4468;
+		Wb35Reg_WriteSync( pHwData, 0x03d0, ltmp );
+
+		Wb35Reg_WriteSync( pHwData, 0x03d4, 0xa0 );// PLL_PD REF_PD set to 0
+
+		OS_SLEEP(20000); // Modify 20051221.1.b
+		Wb35Reg_ReadSync( pHwData, 0x03d0, &ltmp );
+		loop = 500; // Wait for 5 second 20061101
+		while( !(ltmp & 0x20) && loop-- )
+		{
+			OS_SLEEP(10000); // Modify 20051221.1.b
+			if( !Wb35Reg_ReadSync( pHwData, 0x03d0, &ltmp ) )
+				break;
+		}
+
+		Wb35Reg_WriteSync( pHwData, 0x03d4, 0xe0 );// MLK_EN
+	}
+
+	Wb35Reg_WriteSync( pHwData, 0x03b0, 1 );// Reset hardware first
+	OS_SLEEP(10000); // Add this 20051221.1.b
+
+	// Set burst write delay
+	Wb35Reg_WriteSync( pHwData, 0x03f8, 0x7ff );
+}
+
+void Set_ChanIndep_RfData_al7230_24(  phw_data_t pHwData, u32 *pltmp ,char number)
+{
+	u8	i;
+
+	for( i=0; i<number; i++ )
+	{
+		pHwData->phy_para[i] = al7230_rf_data_24[i];
+		pltmp[i] = (1 << 31) | (0 << 30) | (24 << 24) | (al7230_rf_data_24[i]&0xffffff);
+	}
+}
+
+void Set_ChanIndep_RfData_al7230_50(  phw_data_t pHwData, u32 *pltmp, char number)
+{
+	u8	i;
+
+	for( i=0; i<number; i++ )
+	{
+		pHwData->phy_para[i] = al7230_rf_data_50[i];
+		pltmp[i] = (1 << 31) | (0 << 30) | (24 << 24) | (al7230_rf_data_50[i]&0xffffff);
+	}
+}
+
+
+//=============================================================================================================
+// RFSynthesizer_initial --
+//=============================================================================================================
+void
+RFSynthesizer_initial(phw_data_t pHwData)
+{
+	u32	altmp[32];
+	PULONG	pltmp = altmp;
+	u32	ltmp;
+	u8	number=0x00; // The number of register vale
+	u8	i;
+
+	//
+	// bit[31]      SPI Enable.
+	//              1=perform synthesizer program operation. This bit will
+	//              cleared automatically after the operation is completed.
+	// bit[30]      SPI R/W Control
+	//              0=write,    1=read
+	// bit[29:24]   SPI Data Format Length
+	// bit[17:4 ]   RF Data bits.
+	// bit[3 :0 ]   RF address.
+	switch( pHwData->phy_type )
+	{
+	case RF_MAXIM_2825:
+	case RF_MAXIM_V1: // 11g Winbond 2nd BB(with Phy board (v1) + Maxim 331)
+		number = sizeof(max2825_rf_data)/sizeof(max2825_rf_data[0]);
+		for( i=0; i<number; i++ )
+		{
+			pHwData->phy_para[i] = max2825_rf_data[i];// Backup Rf parameter
+			pltmp[i] = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( max2825_rf_data[i], 18);
+		}
+		break;
+
+	case RF_MAXIM_2827:
+		number = sizeof(max2827_rf_data)/sizeof(max2827_rf_data[0]);
+		for( i=0; i<number; i++ )
+		{
+			pHwData->phy_para[i] = max2827_rf_data[i];
+			pltmp[i] = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( max2827_rf_data[i], 18);
+		}
+		break;
+
+	case RF_MAXIM_2828:
+		number = sizeof(max2828_rf_data)/sizeof(max2828_rf_data[0]);
+		for( i=0; i<number; i++ )
+		{
+			pHwData->phy_para[i] = max2828_rf_data[i];
+			pltmp[i] = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( max2828_rf_data[i], 18);
+		}
+		break;
+
+	case RF_MAXIM_2829:
+		number = sizeof(max2829_rf_data)/sizeof(max2829_rf_data[0]);
+		for( i=0; i<number; i++ )
+		{
+			pHwData->phy_para[i] = max2829_rf_data[i];
+			pltmp[i] = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( max2829_rf_data[i], 18);
+		}
+		break;
+
+	case RF_AIROHA_2230:
+		number = sizeof(al2230_rf_data)/sizeof(al2230_rf_data[0]);
+		for( i=0; i<number; i++ )
+		{
+			pHwData->phy_para[i] = al2230_rf_data[i];
+			pltmp[i] = (1 << 31) | (0 << 30) | (20 << 24) | BitReverse( al2230_rf_data[i], 20);
+		}
+		break;
+
+	case RF_AIROHA_2230S:
+		number = sizeof(al2230s_rf_data)/sizeof(al2230s_rf_data[0]);
+		for( i=0; i<number; i++ )
+		{
+			pHwData->phy_para[i] = al2230s_rf_data[i];
+			pltmp[i] = (1 << 31) | (0 << 30) | (20 << 24) | BitReverse( al2230s_rf_data[i], 20);
+		}
+		break;
+
+	case RF_AIROHA_7230:
+
+		//Start to fill RF parameters, PLL_ON should be pulled low.
+		Wb35Reg_WriteSync( pHwData, 0x03dc, 0x00000000 );
+#ifdef _PE_STATE_DUMP_
+		WBDEBUG(("* PLL_ON    low\n"));
+#endif
+
+		number = sizeof(al7230_rf_data_24)/sizeof(al7230_rf_data_24[0]);
+		Set_ChanIndep_RfData_al7230_24(pHwData, pltmp, number);
+		break;
+
+	case RF_WB_242:
+	case RF_WB_242_1: // 20060619.5 Add
+		number = sizeof(w89rf242_rf_data)/sizeof(w89rf242_rf_data[0]);
+		for( i=0; i<number; i++ )
+		{
+			ltmp = w89rf242_rf_data[i];
+			if( i == 4 ) // Update the VCO trim from EEPROM
+			{
+				ltmp &= ~0xff0; // Mask bit4 ~bit11
+				ltmp |= pHwData->VCO_trim<<4;
+			}
+
+			pHwData->phy_para[i] = ltmp;
+			pltmp[i] = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( ltmp, 24);
+		}
+		break;
+	}
+
+	pHwData->phy_number = number;
+
+	 // The 16 is the maximum capability of hardware. Here use 12
+	if( number > 12 ) {
+		//Wb35Reg_BurstWrite( pHwData, 0x0864, pltmp, 12, NO_INCREMENT );
+		for( i=0; i<12; i++ ) // For Al2230
+			Wb35Reg_WriteSync( pHwData, 0x0864, pltmp[i] );
+
+		pltmp += 12;
+		number -= 12;
+	}
+
+	// Write to register. number must less and equal than 16
+	for( i=0; i<number; i++ )
+		Wb35Reg_WriteSync( pHwData, 0x864, pltmp[i] );
+
+	// 20060630.1 Calibration only 1 time
+	if( pHwData->CalOneTime )
+		return;
+	pHwData->CalOneTime = 1;
+
+	switch( pHwData->phy_type )
+	{
+		case RF_AIROHA_2230:
+
+			// 20060511.1 --- Modifying the follow step for Rx issue-----------------
+			ltmp = (1 << 31) | (0 << 30) | (20 << 24) | BitReverse( (0x07<<20)|0xE168E, 20);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP(10000);
+			ltmp = (1 << 31) | (0 << 30) | (20 << 24) | BitReverse( al2230_rf_data[7], 20);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP(10000);
+
+		case RF_AIROHA_2230S: // 20060420 Add this
+
+			// 20060511.1 --- Modifying the follow step for Rx issue-----------------
+			Wb35Reg_WriteSync( pHwData, 0x03d4, 0x80 );// regulator on only
+			OS_SLEEP(10000); // Modify 20051221.1.b
+
+			Wb35Reg_WriteSync( pHwData, 0x03d4, 0xa0 );// PLL_PD REF_PD set to 0
+			OS_SLEEP(10000); // Modify 20051221.1.b
+
+			Wb35Reg_WriteSync( pHwData, 0x03d4, 0xe0 );// MLK_EN
+			Wb35Reg_WriteSync( pHwData, 0x03b0, 1 );// Reset hardware first
+			OS_SLEEP(10000); // Add this 20051221.1.b
+			//------------------------------------------------------------------------
+
+			// The follow code doesn't use the burst-write mode
+			//phy_set_rf_data(phw_data, 0x0F, (0x0F<<20) | 0xF01A0); //Raise Initial Setting
+			ltmp = (1 << 31) | (0 << 30) | (20 << 24) | BitReverse( (0x0F<<20) | 0xF01A0, 20);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+
+			ltmp = pHwData->Wb35Reg.BB5C & 0xfffff000;
+			Wb35Reg_WriteSync( pHwData, 0x105c, ltmp );
+			pHwData->Wb35Reg.BB50 |= 0x13;//(MASK_IQCAL_MODE|MASK_CALIB_START);//20060315.1 modify
+        	Wb35Reg_WriteSync( pHwData, 0x1050, pHwData->Wb35Reg.BB50);
+			OS_SLEEP(5000);
+
+			//phy_set_rf_data(phw_data, 0x0F, (0x0F<<20) | 0xF01B0); //Activate Filter Cal.
+			ltmp = (1 << 31) | (0 << 30) | (20 << 24) | BitReverse( (0x0F<<20) | 0xF01B0, 20);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP(5000);
+
+			//phy_set_rf_data(phw_data, 0x0F, (0x0F<<20) | 0xF01e0); //Activate TX DCC
+			ltmp = (1 << 31) | (0 << 30) | (20 << 24) | BitReverse( (0x0F<<20) | 0xF01E0, 20);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP(5000);
+
+			//phy_set_rf_data(phw_data, 0x0F, (0x0F<<20) | 0xF01A0); //Resotre Initial Setting
+			ltmp = (1 << 31) | (0 << 30) | (20 << 24) | BitReverse( (0x0F<<20) | 0xF01A0, 20);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+
+//			//Force TXI(Q)P(N) to normal control
+			Wb35Reg_WriteSync( pHwData, 0x105c, pHwData->Wb35Reg.BB5C );
+			pHwData->Wb35Reg.BB50 &= ~0x13;//(MASK_IQCAL_MODE|MASK_CALIB_START);
+        	Wb35Reg_WriteSync( pHwData, 0x1050, pHwData->Wb35Reg.BB50);
+			break;
+
+		case RF_AIROHA_7230:
+
+			//RF parameters have filled completely, PLL_ON should be
+			//pulled high
+			Wb35Reg_WriteSync( pHwData, 0x03dc, 0x00000080 );
+			#ifdef _PE_STATE_DUMP_
+			WBDEBUG(("* PLL_ON    high\n"));
+			#endif
+
+			//2.4GHz
+			//ltmp = (1 << 31) | (0 << 30) | (24 << 24) | 0x1ABA8F;
+			//Wb35Reg_WriteSync pHwData, 0x0864, ltmp );
+			//OS_SLEEP(1000); // Sleep 1 ms
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | 0x9ABA8F;
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP(5000);
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | 0x3ABA8F;
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP(5000);
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | 0x1ABA8F;
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP(5000);
+
+			//5GHz
+			Wb35Reg_WriteSync( pHwData, 0x03dc, 0x00000000 );
+			#ifdef _PE_STATE_DUMP_
+			WBDEBUG(("* PLL_ON    low\n"));
+			#endif
+
+			number = sizeof(al7230_rf_data_50)/sizeof(al7230_rf_data_50[0]);
+			Set_ChanIndep_RfData_al7230_50(pHwData, pltmp, number);
+			// Write to register. number must less and equal than 16
+			for( i=0; i<number; i++ )
+				Wb35Reg_WriteSync( pHwData, 0x0864, pltmp[i] );
+			OS_SLEEP(5000);
+
+			Wb35Reg_WriteSync( pHwData, 0x03dc, 0x00000080 );
+			#ifdef _PE_STATE_DUMP_
+			WBDEBUG(("* PLL_ON    high\n"));
+			#endif
+
+			//ltmp = (1 << 31) | (0 << 30) | (24 << 24) | 0x12BACF;
+			//Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | 0x9ABA8F;
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP(5000);
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | 0x3ABA8F;
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP(5000);
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | 0x12BACF;
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP(5000);
+
+			//Wb35Reg_WriteSync( pHwData, 0x03dc, 0x00000080 );
+			//WBDEBUG(("* PLL_ON    high\n"));
+			break;
+
+		case RF_WB_242:
+		case RF_WB_242_1: // 20060619.5 Add
+
+			//
+			// ; Version 1.3B revision items: for FA5976A , October 3, 2005 by HTHo
+			//
+			ltmp = pHwData->Wb35Reg.BB5C & 0xfffff000;
+			Wb35Reg_WriteSync( pHwData, 0x105c, ltmp );
+			Wb35Reg_WriteSync( pHwData, 0x1058, 0 );
+			pHwData->Wb35Reg.BB50 |= 0x3;//(MASK_IQCAL_MODE|MASK_CALIB_START);//20060630
+	      	Wb35Reg_WriteSync( pHwData, 0x1050, pHwData->Wb35Reg.BB50);
+
+			//----- Calibration (1). VCO frequency calibration
+			//Calibration (1a.0). Synthesizer reset (HTHo corrected 2005/05/10)
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x0F<<24) | 0x00101E, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP( 5000 ); // Sleep 5ms
+			//Calibration (1a). VCO frequency calibration mode ; waiting 2msec VCO calibration time
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xFE69c0, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP( 2000 ); // Sleep 2ms
+
+			//----- Calibration (2). TX baseband Gm-C filter auto-tuning
+			//Calibration (2a). turn off ENCAL signal
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xF8EBC0, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			//Calibration (2b.0). TX filter auto-tuning BW: TFLBW=101 (TC5376A default)
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x07<<24) | 0x0C68CE, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			//Calibration (2b). send TX reset signal (HTHo corrected May 10, 2005)
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x0F<<24) | 0x00201E, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			//Calibration (2c). turn-on TX Gm-C filter auto-tuning
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xFCEBC0, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP( 150 ); // Sleep 150 us
+			//turn off ENCAL signal
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xF8EBC0, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+
+			//----- Calibration (3). RX baseband Gm-C filter auto-tuning
+			//Calibration (3a). turn off ENCAL signal
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xFAEDC0, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			//Calibration (3b.0). RX filter auto-tuning BW: RFLBW=100 (TC5376A+corner default; July 26, 2005)
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x07<<24) | 0x0C68CE, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			//Calibration (3b). send RX reset signal (HTHo corrected May 10, 2005)
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x0F<<24) | 0x00401E, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			//Calibration (3c). turn-on RX Gm-C filter auto-tuning
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xFEEDC0, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP( 150 ); // Sleep 150 us
+			//Calibration (3e). turn off ENCAL signal
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xFAEDC0, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+
+			//----- Calibration (4). TX LO leakage calibration
+			//Calibration (4a). TX LO leakage calibration
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xFD6BC0, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP( 150 ); // Sleep 150 us
+
+			//----- Calibration (5). RX DC offset calibration
+			//Calibration (5a). turn off ENCAL signal and set to RX SW DC caliration mode
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xFAEDC0, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			//Calibration (5b). turn off AGC servo-loop & RSSI
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x01<<24) | 0xEBFFC2, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+
+			//; for LNA=11 --------
+			//Calibration (5c-h). RX DC offset current bias ON; & LNA=11; RXVGA=111111
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x06<<24) | 0x343FCC, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			//Calibration (5d). turn on RX DC offset cal function; and waiting 2 msec cal time
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xFF6DC0, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP(2000); // Sleep 2ms
+			//Calibration (5f). turn off ENCAL signal
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xFAEDC0, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+
+			//; for LNA=10 --------
+			//Calibration (5c-m). RX DC offset current bias ON; & LNA=10; RXVGA=111111
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x06<<24) | 0x342FCC, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			//Calibration (5d). turn on RX DC offset cal function; and waiting 2 msec cal time
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xFF6DC0, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP(2000); // Sleep 2ms
+			//Calibration (5f). turn off ENCAL signal
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xFAEDC0, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+
+			//; for LNA=01 --------
+			//Calibration (5c-m). RX DC offset current bias ON; & LNA=01; RXVGA=111111
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x06<<24) | 0x341FCC, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			//Calibration (5d). turn on RX DC offset cal function; and waiting 2 msec cal time
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xFF6DC0, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP(2000); // Sleep 2ms
+			//Calibration (5f). turn off ENCAL signal
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xFAEDC0, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+
+			//; for LNA=00 --------
+			//Calibration (5c-l). RX DC offset current bias ON; & LNA=00; RXVGA=111111
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x06<<24) | 0x340FCC, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			//Calibration (5d). turn on RX DC offset cal function; and waiting 2 msec cal time
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xFF6DC0, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP(2000); // Sleep 2ms
+			//Calibration (5f). turn off ENCAL signal
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xFAEDC0, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			//Calibration (5g). turn on AGC servo-loop
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x01<<24) | 0xEFFFC2, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+
+			//; ----- Calibration (7). Switch RF chip to normal mode
+			//0x00 0xF86100 ; 3E184   ; Switch RF chip to normal mode
+//			OS_SLEEP(10000); // @@ 20060721
+			ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( (0x00<<24) | 0xF86100, 24);
+			Wb35Reg_WriteSync( pHwData, 0x0864, ltmp );
+			OS_SLEEP(5000); // Sleep 5 ms
+
+//			//write back
+//			Wb35Reg_WriteSync( pHwData, 0x105c, pHwData->Wb35Reg.BB5C );
+//			pHwData->Wb35Reg.BB50 &= ~0x13;//(MASK_IQCAL_MODE|MASK_CALIB_START); // 20060315.1 fix
+//      	Wb35Reg_WriteSync( pHwData, 0x1050, pHwData->Wb35Reg.BB50);
+//			OS_SLEEP(1000); // Sleep 1 ms
+			break;
+	}
+}
+
+void BBProcessor_AL7230_2400(  phw_data_t pHwData)
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+	u32	pltmp[12];
+
+	pltmp[0] = 0x16A8337A; // 0x16a5215f; // 0x1000 AGC_Ctrl1
+	pltmp[1] = 0x9AFF9AA6; // 0x9aff9ca6; // 0x1004 AGC_Ctrl2
+	pltmp[2] = 0x55D00A04; // 0x55d00a04; // 0x1008 AGC_Ctrl3
+	pltmp[3] = 0xFFF72031; // 0xFfFf2138; // 0x100c AGC_Ctrl4
+	pWb35Reg->BB0C = 0xFFF72031;
+	pltmp[4] = 0x0FacDCC5; // 0x1010 AGC_Ctrl5 // 20050927 0x0FacDCB7
+	pltmp[5] = 0x00CAA333; // 0x00eaa333; // 0x1014 AGC_Ctrl6
+	pltmp[6] = 0xF2211111; // 0x11111111; // 0x1018 AGC_Ctrl7
+	pltmp[7] = 0x0FA3F0ED; // 0x101c AGC_Ctrl8
+	pltmp[8] = 0x06443440; // 0x1020 AGC_Ctrl9
+	pltmp[9] = 0xA8002A79; // 0xa9002A79; // 0x1024 AGC_Ctrl10
+	pltmp[10] = 0x40000528; // 20050927 0x40000228
+	pltmp[11] = 0x232D7F30; // 0x23457f30;// 0x102c A_ACQ_Ctrl
+	pWb35Reg->BB2C = 0x232D7F30;
+	Wb35Reg_BurstWrite( pHwData, 0x1000, pltmp, 12, AUTO_INCREMENT );
+
+	pltmp[0] = 0x00002c54; // 0x1030 B_ACQ_Ctrl
+	pWb35Reg->BB30 = 0x00002c54;
+	pltmp[1] = 0x00C0D6C5; // 0x1034 A_TXRX_Ctrl
+	pltmp[2] = 0x5B2C8769; // 0x1038 B_TXRX_Ctrl
+	pltmp[3] = 0x00000000; // 0x103c 11a TX LS filter
+	pWb35Reg->BB3C = 0x00000000;
+	pltmp[4] = 0x00003F29; // 0x1040 11a TX LS filter
+	pltmp[5] = 0x0EFEFBFE; // 0x1044 11a TX LS filter
+	pltmp[6] = 0x00332C1B; // 0x00453B24; // 0x1048 11b TX RC filter
+	pltmp[7] = 0x0A00FEFF; // 0x0E00FEFF; // 0x104c 11b TX RC filter
+	pltmp[8] = 0x2B106208; // 0x1050 MODE_Ctrl
+	pWb35Reg->BB50 = 0x2B106208;
+	pltmp[9] = 0; // 0x1054
+	pWb35Reg->BB54 = 0x00000000;
+	pltmp[10] = 0x52524242; // 0x64645252; // 0x1058 IQ_Alpha
+	pWb35Reg->BB58 = 0x52524242;
+	pltmp[11] = 0xAA0AC000; // 0x105c DC_Cancel
+	Wb35Reg_BurstWrite( pHwData, 0x1030, pltmp, 12, AUTO_INCREMENT );
+
+}
+
+void BBProcessor_AL7230_5000(  phw_data_t pHwData)
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+	u32	pltmp[12];
+
+	pltmp[0] = 0x16AA6678; // 0x1000 AGC_Ctrl1
+	pltmp[1] = 0x9AFFA0B2; // 0x1004 AGC_Ctrl2
+	pltmp[2] = 0x55D00A04; // 0x1008 AGC_Ctrl3
+	pltmp[3] = 0xEFFF233E; // 0x100c AGC_Ctrl4
+	pWb35Reg->BB0C = 0xEFFF233E;
+	pltmp[4] = 0x0FacDCC5; // 0x1010 AGC_Ctrl5 // 20050927 0x0FacDCB7
+	pltmp[5] = 0x00CAA333; // 0x1014 AGC_Ctrl6
+	pltmp[6] = 0xF2432111; // 0x1018 AGC_Ctrl7
+	pltmp[7] = 0x0FA3F0ED; // 0x101c AGC_Ctrl8
+	pltmp[8] = 0x05C43440; // 0x1020 AGC_Ctrl9
+	pltmp[9] = 0x00002A79; // 0x1024 AGC_Ctrl10
+	pltmp[10] = 0x40000528; // 20050927 0x40000228
+	pltmp[11] = 0x232FDF30;// 0x102c A_ACQ_Ctrl
+	pWb35Reg->BB2C = 0x232FDF30;
+	Wb35Reg_BurstWrite( pHwData, 0x1000, pltmp, 12, AUTO_INCREMENT );
+
+	pltmp[0] = 0x80002C7C; // 0x1030 B_ACQ_Ctrl
+	pltmp[1] = 0x00C0D6C5; // 0x1034 A_TXRX_Ctrl
+	pltmp[2] = 0x5B2C8769; // 0x1038 B_TXRX_Ctrl
+	pltmp[3] = 0x00000000; // 0x103c 11a TX LS filter
+	pWb35Reg->BB3C = 0x00000000;
+	pltmp[4] = 0x00003F29; // 0x1040 11a TX LS filter
+	pltmp[5] = 0x0EFEFBFE; // 0x1044 11a TX LS filter
+	pltmp[6] = 0x00332C1B; // 0x1048 11b TX RC filter
+	pltmp[7] = 0x0A00FEFF; // 0x104c 11b TX RC filter
+	pltmp[8] = 0x2B107208; // 0x1050 MODE_Ctrl
+	pWb35Reg->BB50 = 0x2B107208;
+	pltmp[9] = 0; // 0x1054
+	pWb35Reg->BB54 = 0x00000000;
+	pltmp[10] = 0x52524242; // 0x1058 IQ_Alpha
+	pWb35Reg->BB58 = 0x52524242;
+	pltmp[11] = 0xAA0AC000; // 0x105c DC_Cancel
+	Wb35Reg_BurstWrite( pHwData, 0x1030, pltmp, 12, AUTO_INCREMENT );
+
+}
+
+//=============================================================================================================
+//  BBProcessorPowerupInit --
+//
+//  Description:
+//    Initialize the Baseband processor.
+//
+//  Arguments:
+//    pHwData    - Handle of the USB Device.
+//
+//  Return values:
+//    None.
+//=============================================================================================================
+void
+BBProcessor_initial(  phw_data_t pHwData )
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+	u32	i, pltmp[12];
+
+    switch( pHwData->phy_type )
+    {
+		case RF_MAXIM_V1: // Initializng the Winbond 2nd BB(with Phy board (v1) + Maxim 331)
+
+			pltmp[0] = 0x16F47E77; // 0x1000 AGC_Ctrl1
+			pltmp[1] = 0x9AFFAEA4; // 0x1004 AGC_Ctrl2
+			pltmp[2] = 0x55D00A04; // 0x1008 AGC_Ctrl3
+			pltmp[3] = 0xEFFF1A34; // 0x100c AGC_Ctrl4
+			pWb35Reg->BB0C = 0xEFFF1A34;
+			pltmp[4] = 0x0FABE0B7; // 0x1010 AGC_Ctrl5
+			pltmp[5] = 0x00CAA332; // 0x1014 AGC_Ctrl6
+			pltmp[6] = 0xF6632111; // 0x1018 AGC_Ctrl7
+			pltmp[7] = 0x0FA3F0ED; // 0x101c AGC_Ctrl8
+			pltmp[8] = 0x04CC3640; // 0x1020 AGC_Ctrl9
+			pltmp[9] = 0x00002A79; // 0x1024 AGC_Ctrl10
+			pltmp[10] = (pHwData->phy_type==3) ? 0x40000a28 : 0x40000228; // 0x1028 MAXIM_331(b31=0) + WBRF_V1(b11=1) : MAXIM_331(b31=0) + WBRF_V2(b11=0)
+			pltmp[11] = 0x232FDF30; // 0x102c A_ACQ_Ctrl
+			pWb35Reg->BB2C = 0x232FDF30; //Modify for 33's 1.0.95.xxx version, antenna 1
+			Wb35Reg_BurstWrite( pHwData, 0x1000, pltmp, 12, AUTO_INCREMENT );
+
+			pltmp[0] = 0x00002C54; // 0x1030 B_ACQ_Ctrl
+			pWb35Reg->BB30 = 0x00002C54;
+			pltmp[1] = 0x00C0D6C5; // 0x1034 A_TXRX_Ctrl
+			pltmp[2] = 0x5B6C8769; // 0x1038 B_TXRX_Ctrl
+			pltmp[3] = 0x00000000; // 0x103c 11a TX LS filter
+			pWb35Reg->BB3C = 0x00000000;
+			pltmp[4] = 0x00003F29; // 0x1040 11a TX LS filter
+			pltmp[5] = 0x0EFEFBFE; // 0x1044 11a TX LS filter
+			pltmp[6] = 0x00453B24; // 0x1048 11b TX RC filter
+			pltmp[7] = 0x0E00FEFF; // 0x104c 11b TX RC filter
+			pltmp[8] = 0x27106208; // 0x1050 MODE_Ctrl
+			pWb35Reg->BB50 = 0x27106208;
+			pltmp[9] = 0; // 0x1054
+			pWb35Reg->BB54 = 0x00000000;
+			pltmp[10] = 0x64646464; // 0x1058 IQ_Alpha
+			pWb35Reg->BB58 = 0x64646464;
+			pltmp[11] = 0xAA0AC000; // 0x105c DC_Cancel
+			Wb35Reg_BurstWrite( pHwData, 0x1030, pltmp, 12, AUTO_INCREMENT );
+
+			Wb35Reg_Write( pHwData, 0x1070, 0x00000045 );
+			break;
+
+		//------------------------------------------------------------------
+		//[20040722 WK]
+		//Only for baseband version 2
+//		case RF_MAXIM_317:
+		case RF_MAXIM_2825:
+		case RF_MAXIM_2827:
+		case RF_MAXIM_2828:
+
+			pltmp[0] = 0x16b47e77; // 0x1000 AGC_Ctrl1
+			pltmp[1] = 0x9affaea4; // 0x1004 AGC_Ctrl2
+			pltmp[2] = 0x55d00a04; // 0x1008 AGC_Ctrl3
+			pltmp[3] = 0xefff1a34; // 0x100c AGC_Ctrl4
+			pWb35Reg->BB0C = 0xefff1a34;
+			pltmp[4] = 0x0fabe0b7; // 0x1010 AGC_Ctrl5
+			pltmp[5] = 0x00caa332; // 0x1014 AGC_Ctrl6
+			pltmp[6] = 0xf6632111; // 0x1018 AGC_Ctrl7
+			pltmp[7] = 0x0FA3F0ED; // 0x101c AGC_Ctrl8
+			pltmp[8] = 0x04CC3640; // 0x1020 AGC_Ctrl9
+			pltmp[9] = 0x00002A79; // 0x1024 AGC_Ctrl10
+			pltmp[10] = 0x40000528; // 0x40000128; Modify for 33's 1.0.95
+			pltmp[11] = 0x232fdf30; // 0x102c A_ACQ_Ctrl
+			pWb35Reg->BB2C = 0x232fdf30; //Modify for 33's 1.0.95.xxx version, antenna 1
+			Wb35Reg_BurstWrite( pHwData, 0x1000, pltmp, 12, AUTO_INCREMENT );
+
+			pltmp[0] = 0x00002C54; // 0x1030 B_ACQ_Ctrl
+			pWb35Reg->BB30 = 0x00002C54;
+			pltmp[1] = 0x00C0D6C5; // 0x1034 A_TXRX_Ctrl
+			pltmp[2] = 0x5B6C8769; // 0x1038 B_TXRX_Ctrl
+			pltmp[3] = 0x00000000; // 0x103c 11a TX LS filter
+			pWb35Reg->BB3C = 0x00000000;
+			pltmp[4] = 0x00003F29; // 0x1040 11a TX LS filter
+			pltmp[5] = 0x0EFEFBFE; // 0x1044 11a TX LS filter
+			pltmp[6] = 0x00453B24; // 0x1048 11b TX RC filter
+			pltmp[7] = 0x0D00FDFF; // 0x104c 11b TX RC filter
+			pltmp[8] = 0x27106208; // 0x1050 MODE_Ctrl
+			pWb35Reg->BB50 = 0x27106208;
+			pltmp[9] = 0; // 0x1054
+			pWb35Reg->BB54 = 0x00000000;
+			pltmp[10] = 0x64646464; // 0x1058 IQ_Alpha
+			pWb35Reg->BB58 = 0x64646464;
+			pltmp[11] = 0xAA28C000; // 0x105c DC_Cancel
+			Wb35Reg_BurstWrite( pHwData, 0x1030, pltmp, 12, AUTO_INCREMENT );
+
+			Wb35Reg_Write( pHwData, 0x1070, 0x00000045 );
+			break;
+
+		case RF_MAXIM_2829:
+
+			pltmp[0] = 0x16b47e77; // 0x1000 AGC_Ctrl1
+			pltmp[1] = 0x9affaea4; // 0x1004 AGC_Ctrl2
+			pltmp[2] = 0x55d00a04; // 0x1008 AGC_Ctrl3
+			pltmp[3] = 0xf4ff1632; // 0xefff1a34; // 0x100c AGC_Ctrl4 Modify for 33's 1.0.95
+			pWb35Reg->BB0C = 0xf4ff1632; // 0xefff1a34; Modify for 33's 1.0.95
+			pltmp[4] = 0x0fabe0b7; // 0x1010 AGC_Ctrl5
+			pltmp[5] = 0x00caa332; // 0x1014 AGC_Ctrl6
+			pltmp[6] = 0xf8632112; // 0xf6632111; // 0x1018 AGC_Ctrl7 Modify for 33's 1.0.95
+			pltmp[7] = 0x0FA3F0ED; // 0x101c AGC_Ctrl8
+			pltmp[8] = 0x04CC3640; // 0x1020 AGC_Ctrl9
+			pltmp[9] = 0x00002A79; // 0x1024 AGC_Ctrl10
+			pltmp[10] = 0x40000528; // 0x40000128; modify for 33's 1.0.95
+			pltmp[11] = 0x232fdf30; // 0x102c A_ACQ_Ctrl
+			pWb35Reg->BB2C = 0x232fdf30; //Modify for 33's 1.0.95.xxx version, antenna 1
+			Wb35Reg_BurstWrite( pHwData, 0x1000, pltmp, 12, AUTO_INCREMENT );
+
+			pltmp[0] = 0x00002C54; // 0x1030 B_ACQ_Ctrl
+			pWb35Reg->BB30 = 0x00002C54;
+			pltmp[1] = 0x00C0D6C5; // 0x1034 A_TXRX_Ctrl
+			pltmp[2] = 0x5b2c8769; // 0x5B6C8769; // 0x1038 B_TXRX_Ctrl Modify for 33's 1.0.95
+			pltmp[3] = 0x00000000; // 0x103c 11a TX LS filter
+			pWb35Reg->BB3C = 0x00000000;
+			pltmp[4] = 0x00003F29; // 0x1040 11a TX LS filter
+			pltmp[5] = 0x0EFEFBFE; // 0x1044 11a TX LS filter
+			pltmp[6] = 0x002c2617; // 0x00453B24; // 0x1048 11b TX RC filter Modify for 33's 1.0.95
+			pltmp[7] = 0x0800feff; // 0x0D00FDFF; // 0x104c 11b TX RC filter Modify for 33's 1.0.95
+			pltmp[8] = 0x27106208; // 0x1050 MODE_Ctrl
+			pWb35Reg->BB50 = 0x27106208;
+			pltmp[9] = 0; // 0x1054
+			pWb35Reg->BB54 = 0x00000000;
+			pltmp[10] = 0x64644a4a; // 0x64646464; // 0x1058 IQ_Alpha Modify for 33's 1.0.95
+			pWb35Reg->BB58 = 0x64646464;
+			pltmp[11] = 0xAA28C000; // 0x105c DC_Cancel
+			Wb35Reg_BurstWrite( pHwData, 0x1030, pltmp, 12, AUTO_INCREMENT );
+
+			Wb35Reg_Write( pHwData, 0x1070, 0x00000045 );
+			break;
+
+		case RF_AIROHA_2230:
+
+			pltmp[0] = 0X16764A77; // 0x1000 AGC_Ctrl1		//0x16765A77
+			pltmp[1] = 0x9affafb2; // 0x1004 AGC_Ctrl2
+			pltmp[2] = 0x55d00a04; // 0x1008 AGC_Ctrl3
+			pltmp[3] = 0xFFFd203c; // 0xFFFb203a; // 0x100c AGC_Ctrl4 Modify for 33's 1.0.95.xxx version
+			pWb35Reg->BB0C = 0xFFFd203c;
+			pltmp[4] = 0X0FBFDCc5; // 0X0FBFDCA0; // 0x1010 AGC_Ctrl5 //0x0FB2E0B7 Modify for 33's 1.0.95.xxx version
+			pltmp[5] = 0x00caa332; // 0x00caa333; // 0x1014 AGC_Ctrl6 Modify for 33's 1.0.95.xxx version
+			pltmp[6] = 0XF6632111; // 0XF1632112; // 0x1018 AGC_Ctrl7		//0xf6632112 Modify for 33's 1.0.95.xxx version
+			pltmp[7] = 0x0FA3F0ED; // 0x101c AGC_Ctrl8
+			pltmp[8] = 0x04C43640; // 0x1020 AGC_Ctrl9
+			pltmp[9] = 0x00002A79; // 0x1024 AGC_Ctrl10
+			pltmp[10] = 0X40000528;							//0x40000228
+			pltmp[11] = 0x232dfF30; // 0x232A9F30; // 0x102c A_ACQ_Ctrl	//0x232a9730
+			pWb35Reg->BB2C = 0x232dfF30; //Modify for 33's 1.0.95.xxx version, antenna 1
+			Wb35Reg_BurstWrite( pHwData, 0x1000, pltmp, 12, AUTO_INCREMENT );
+
+			pltmp[0] = 0x00002C54; // 0x1030 B_ACQ_Ctrl
+			pWb35Reg->BB30 = 0x00002C54;
+			pltmp[1] = 0x00C0D6C5; // 0x1034 A_TXRX_Ctrl
+			pltmp[2] = 0x5B2C8769; // 0x1038 B_TXRX_Ctrl	//0x5B6C8769
+			pltmp[3] = 0x00000000; // 0x103c 11a TX LS filter
+			pWb35Reg->BB3C = 0x00000000;
+			pltmp[4] = 0x00003F29; // 0x1040 11a TX LS filter
+			pltmp[5] = 0x0EFEFBFE; // 0x1044 11a TX LS filter
+			pltmp[6] = BB48_DEFAULT_AL2230_11G; // 0x1048 11b TX RC filter 20060613.2
+			pWb35Reg->BB48 = BB48_DEFAULT_AL2230_11G; // 20051221 ch14 20060613.2
+			pltmp[7] = BB4C_DEFAULT_AL2230_11G; // 0x104c 11b TX RC filter 20060613.2
+			pWb35Reg->BB4C = BB4C_DEFAULT_AL2230_11G; // 20060613.1 20060613.2
+			pltmp[8] = 0x27106200; // 0x1050 MODE_Ctrl
+			pWb35Reg->BB50 = 0x27106200;
+			pltmp[9] = 0; // 0x1054
+			pWb35Reg->BB54 = 0x00000000;
+			pltmp[10] = 0x52524242; // 0x1058 IQ_Alpha
+			pWb35Reg->BB58 = 0x52524242;
+			pltmp[11] = 0xAA0AC000; // 0x105c DC_Cancel
+			Wb35Reg_BurstWrite( pHwData, 0x1030, pltmp, 12, AUTO_INCREMENT );
+
+			Wb35Reg_Write( pHwData, 0x1070, 0x00000045 );
+			break;
+
+		case RF_AIROHA_2230S: // 20060420 Add this
+
+			pltmp[0] = 0X16764A77; // 0x1000 AGC_Ctrl1		//0x16765A77
+			pltmp[1] = 0x9affafb2; // 0x1004 AGC_Ctrl2
+			pltmp[2] = 0x55d00a04; // 0x1008 AGC_Ctrl3
+			pltmp[3] = 0xFFFd203c; // 0xFFFb203a; // 0x100c AGC_Ctrl4 Modify for 33's 1.0.95.xxx version
+			pWb35Reg->BB0C = 0xFFFd203c;
+			pltmp[4] = 0X0FBFDCc5; // 0X0FBFDCA0; // 0x1010 AGC_Ctrl5 //0x0FB2E0B7 Modify for 33's 1.0.95.xxx version
+			pltmp[5] = 0x00caa332; // 0x00caa333; // 0x1014 AGC_Ctrl6 Modify for 33's 1.0.95.xxx version
+			pltmp[6] = 0XF6632111; // 0XF1632112; // 0x1018 AGC_Ctrl7		//0xf6632112 Modify for 33's 1.0.95.xxx version
+			pltmp[7] = 0x0FA3F0ED; // 0x101c AGC_Ctrl8
+			pltmp[8] = 0x04C43640; // 0x1020 AGC_Ctrl9
+			pltmp[9] = 0x00002A79; // 0x1024 AGC_Ctrl10
+			pltmp[10] = 0X40000528;							//0x40000228
+			pltmp[11] = 0x232dfF30; // 0x232A9F30; // 0x102c A_ACQ_Ctrl	//0x232a9730
+			pWb35Reg->BB2C = 0x232dfF30; //Modify for 33's 1.0.95.xxx version, antenna 1
+			Wb35Reg_BurstWrite( pHwData, 0x1000, pltmp, 12, AUTO_INCREMENT );
+
+			pltmp[0] = 0x00002C54; // 0x1030 B_ACQ_Ctrl
+			pWb35Reg->BB30 = 0x00002C54;
+			pltmp[1] = 0x00C0D6C5; // 0x1034 A_TXRX_Ctrl
+			pltmp[2] = 0x5B2C8769; // 0x1038 B_TXRX_Ctrl	//0x5B6C8769
+			pltmp[3] = 0x00000000; // 0x103c 11a TX LS filter
+			pWb35Reg->BB3C = 0x00000000;
+			pltmp[4] = 0x00003F29; // 0x1040 11a TX LS filter
+			pltmp[5] = 0x0EFEFBFE; // 0x1044 11a TX LS filter
+			pltmp[6] = BB48_DEFAULT_AL2230_11G; // 0x1048 11b TX RC filter 20060613.2
+			pWb35Reg->BB48 = BB48_DEFAULT_AL2230_11G; // 20051221 ch14 20060613.2
+			pltmp[7] = BB4C_DEFAULT_AL2230_11G; // 0x104c 11b TX RC filter 20060613.2
+			pWb35Reg->BB4C = BB4C_DEFAULT_AL2230_11G; // 20060613.1
+			pltmp[8] = 0x27106200; // 0x1050 MODE_Ctrl
+			pWb35Reg->BB50 = 0x27106200;
+			pltmp[9] = 0; // 0x1054
+			pWb35Reg->BB54 = 0x00000000;
+			pltmp[10] = 0x52523232; // 20060419 0x52524242; // 0x1058 IQ_Alpha
+			pWb35Reg->BB58 = 0x52523232; // 20060419 0x52524242;
+			pltmp[11] = 0xAA0AC000; // 0x105c DC_Cancel
+			Wb35Reg_BurstWrite( pHwData, 0x1030, pltmp, 12, AUTO_INCREMENT );
+
+			Wb35Reg_Write( pHwData, 0x1070, 0x00000045 );
+			break;
+
+		case RF_AIROHA_7230:
+/*
+			pltmp[0] = 0x16a84a77; // 0x1000 AGC_Ctrl1
+			pltmp[1] = 0x9affafb2; // 0x1004 AGC_Ctrl2
+			pltmp[2] = 0x55d00a04; // 0x1008 AGC_Ctrl3
+			pltmp[3] = 0xFFFb203a; // 0x100c AGC_Ctrl4
+			pWb35Reg->BB0c = 0xFFFb203a;
+			pltmp[4] = 0x0FBFDCB7; // 0x1010 AGC_Ctrl5
+			pltmp[5] = 0x00caa333; // 0x1014 AGC_Ctrl6
+			pltmp[6] = 0xf6632112; // 0x1018 AGC_Ctrl7
+			pltmp[7] = 0x0FA3F0ED; // 0x101c AGC_Ctrl8
+			pltmp[8] = 0x04C43640; // 0x1020 AGC_Ctrl9
+			pltmp[9] = 0x00002A79; // 0x1024 AGC_Ctrl10
+			pltmp[10] = 0x40000228;
+			pltmp[11] = 0x232A9F30;// 0x102c A_ACQ_Ctrl
+			pWb35Reg->BB2c = 0x232A9F30;
+			Wb35Reg_BurstWrite( pHwData, 0x1000, pltmp, 12, AUTO_INCREMENT );
+
+			pltmp[0] = 0x00002C54; // 0x1030 B_ACQ_Ctrl
+			pWb35Reg->BB30 = 0x00002C54;
+			pltmp[1] = 0x00C0D6C5; // 0x1034 A_TXRX_Ctrl
+			pltmp[2] = 0x5B2C8769; // 0x1038 B_TXRX_Ctrl
+			pltmp[3] = 0x00000000; // 0x103c 11a TX LS filter
+			pWb35Reg->BB3c = 0x00000000;
+			pltmp[4] = 0x00003F29; // 0x1040 11a TX LS filter
+			pltmp[5] = 0x0EFEFBFE; // 0x1044 11a TX LS filter
+			pltmp[6] = 0x00453B24; // 0x1048 11b TX RC filter
+			pltmp[7] = 0x0E00FEFF; // 0x104c 11b TX RC filter
+			pltmp[8] = 0x27106200; // 0x1050 MODE_Ctrl
+			pWb35Reg->BB50 = 0x27106200;
+			pltmp[9] = 0; // 0x1054
+			pWb35Reg->BB54 = 0x00000000;
+			pltmp[10] = 0x64645252; // 0x1058 IQ_Alpha
+			pWb35Reg->BB58 = 0x64645252;
+			pltmp[11] = 0xAA0AC000; // 0x105c DC_Cancel
+			Wb35Reg_BurstWrite( pHwData, 0x1030, pltmp, 12, AUTO_INCREMENT );
+*/
+			BBProcessor_AL7230_2400( pHwData );
+
+			Wb35Reg_Write( pHwData, 0x1070, 0x00000045 );
+			break;
+
+		case RF_WB_242:
+		case RF_WB_242_1: // 20060619.5 Add
+
+			pltmp[0] = 0x16A8525D; // 0x1000 AGC_Ctrl1
+			pltmp[1] = 0x9AFF9ABA; // 0x1004 AGC_Ctrl2
+			pltmp[2] = 0x55D00A04; // 0x1008 AGC_Ctrl3
+			pltmp[3] = 0xEEE91C32; // 0x100c AGC_Ctrl4
+			pWb35Reg->BB0C = 0xEEE91C32;
+			pltmp[4] = 0x0FACDCC5; // 0x1010 AGC_Ctrl5
+			pltmp[5] = 0x000AA344; // 0x1014 AGC_Ctrl6
+			pltmp[6] = 0x22222221; // 0x1018 AGC_Ctrl7
+			pltmp[7] = 0x0FA3F0ED; // 0x101c AGC_Ctrl8
+			pltmp[8] = 0x04CC3440; // 20051018 0x03CB3440; // 0x1020 AGC_Ctrl9 20051014 0x03C33440
+			pltmp[9] = 0xA9002A79; // 0x1024 AGC_Ctrl10
+			pltmp[10] = 0x40000528; // 0x1028
+			pltmp[11] = 0x23457F30; // 0x102c A_ACQ_Ctrl
+			pWb35Reg->BB2C = 0x23457F30;
+			Wb35Reg_BurstWrite( pHwData, 0x1000, pltmp, 12, AUTO_INCREMENT );
+
+			pltmp[0] = 0x00002C54; // 0x1030 B_ACQ_Ctrl
+			pWb35Reg->BB30 = 0x00002C54;
+			pltmp[1] = 0x00C0D6C5; // 0x1034 A_TXRX_Ctrl
+			pltmp[2] = 0x5B2C8769; // 0x1038 B_TXRX_Ctrl
+			pltmp[3] = pHwData->BB3c_cal; // 0x103c 11a TX LS filter
+			pWb35Reg->BB3C = pHwData->BB3c_cal;
+			pltmp[4] = 0x00003F29; // 0x1040 11a TX LS filter
+			pltmp[5] = 0x0EFEFBFE; // 0x1044 11a TX LS filter
+			pltmp[6] = BB48_DEFAULT_WB242_11G; // 0x1048 11b TX RC filter 20060613.2
+			pWb35Reg->BB48 = BB48_DEFAULT_WB242_11G; // 20060613.1 20060613.2
+			pltmp[7] = BB4C_DEFAULT_WB242_11G; // 0x104c 11b TX RC filter 20060613.2
+			pWb35Reg->BB4C = BB4C_DEFAULT_WB242_11G; // 20060613.1 20060613.2
+			pltmp[8] = 0x27106208; // 0x1050 MODE_Ctrl
+			pWb35Reg->BB50 = 0x27106208;
+			pltmp[9] = pHwData->BB54_cal; // 0x1054
+			pWb35Reg->BB54 = pHwData->BB54_cal;
+			pltmp[10] = 0x52523131; // 0x1058 IQ_Alpha
+			pWb35Reg->BB58 = 0x52523131;
+			pltmp[11] = 0xAA0AC000; // 20060825 0xAA2AC000; // 0x105c DC_Cancel
+			Wb35Reg_BurstWrite( pHwData, 0x1030, pltmp, 12, AUTO_INCREMENT );
+
+			Wb35Reg_Write( pHwData, 0x1070, 0x00000045 );
+			break;
+    }
+
+	// Fill the LNA table
+	pWb35Reg->LNAValue[0] = (u8)(pWb35Reg->BB0C & 0xff);
+	pWb35Reg->LNAValue[1] = 0;
+	pWb35Reg->LNAValue[2] = (u8)((pWb35Reg->BB0C & 0xff00)>>8);
+	pWb35Reg->LNAValue[3] = 0;
+
+	// Fill SQ3 table
+	for( i=0; i<MAX_SQ3_FILTER_SIZE; i++ )
+		pWb35Reg->SQ3_filter[i] = 0x2f; // half of Bit 0 ~ 6
+}
+
+void set_tx_power_per_channel_max2829(  phw_data_t pHwData,  ChanInfo Channel)
+{
+	RFSynthesizer_SetPowerIndex( pHwData, 100 ); // 20060620.1 Modify
+}
+
+void set_tx_power_per_channel_al2230(  phw_data_t pHwData,  ChanInfo Channel )
+{
+	u8	index = 100;
+
+	if (pHwData->TxVgaFor24[Channel.ChanNo - 1] != 0xff) // 20060620.1 Add
+		index = pHwData->TxVgaFor24[Channel.ChanNo - 1];
+
+	RFSynthesizer_SetPowerIndex( pHwData, index );
+}
+
+void set_tx_power_per_channel_al7230(  phw_data_t pHwData,  ChanInfo Channel)
+{
+	u8	i, index = 100;
+
+	switch ( Channel.band )
+	{
+		case BAND_TYPE_DSSS:
+		case BAND_TYPE_OFDM_24:
+			{
+				if (pHwData->TxVgaFor24[Channel.ChanNo - 1] != 0xff)
+					index = pHwData->TxVgaFor24[Channel.ChanNo - 1];
+			}
+			break;
+		case BAND_TYPE_OFDM_5:
+			{
+				for (i =0; i<35; i++)
+				{
+					if (Channel.ChanNo == pHwData->TxVgaFor50[i].ChanNo)
+					{
+						if (pHwData->TxVgaFor50[i].TxVgaValue != 0xff)
+							index = pHwData->TxVgaFor50[i].TxVgaValue;
+						break;
+					}
+				}
+			}
+			break;
+	}
+	RFSynthesizer_SetPowerIndex( pHwData, index );
+}
+
+void set_tx_power_per_channel_wb242(  phw_data_t pHwData,  ChanInfo Channel)
+{
+	u8	index = 100;
+
+	switch ( Channel.band )
+	{
+		case BAND_TYPE_DSSS:
+		case BAND_TYPE_OFDM_24:
+			{
+				if (pHwData->TxVgaFor24[Channel.ChanNo - 1] != 0xff)
+					index = pHwData->TxVgaFor24[Channel.ChanNo - 1];
+			}
+			break;
+		case BAND_TYPE_OFDM_5:
+			break;
+	}
+	RFSynthesizer_SetPowerIndex( pHwData, index );
+}
+
+//=============================================================================================================
+// RFSynthesizer_SwitchingChannel --
+//
+// Description:
+//   Swithch the RF channel.
+//
+// Arguments:
+//   pHwData    - Handle of the USB Device.
+//   Channel    - The channel no.
+//
+// Return values:
+//   None.
+//=============================================================================================================
+void
+RFSynthesizer_SwitchingChannel(  phw_data_t pHwData,  ChanInfo Channel )
+{
+	PWB35REG pWb35Reg = &pHwData->Wb35Reg;
+	u32	pltmp[16]; // The 16 is the maximum capability of hardware
+	u32	count, ltmp;
+	u8	i, j, number;
+	u8	ChnlTmp;
+
+	switch( pHwData->phy_type )
+	{
+		case RF_MAXIM_2825:
+		case RF_MAXIM_V1: // 11g Winbond 2nd BB(with Phy board (v1) + Maxim 331)
+
+			if( Channel.band <= BAND_TYPE_OFDM_24 ) // channel 1 ~ 13
+			{
+				for( i=0; i<3; i++ )
+					pltmp[i] = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( max2825_channel_data_24[Channel.ChanNo-1][i], 18);
+				Wb35Reg_BurstWrite( pHwData, 0x0864, pltmp, 3, NO_INCREMENT );
+			}
+			RFSynthesizer_SetPowerIndex( pHwData, 100 );
+			break;
+
+		case RF_MAXIM_2827:
+
+			if( Channel.band <= BAND_TYPE_OFDM_24 ) // channel 1 ~ 13
+			{
+				for( i=0; i<3; i++ )
+					pltmp[i] = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( max2827_channel_data_24[Channel.ChanNo-1][i], 18);
+				Wb35Reg_BurstWrite( pHwData, 0x0864, pltmp, 3, NO_INCREMENT );
+			}
+			else if( Channel.band == BAND_TYPE_OFDM_5 ) // channel 36 ~ 64
+			{
+				ChnlTmp = (Channel.ChanNo - 36) / 4;
+				for( i=0; i<3; i++ )
+					pltmp[i] = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( max2827_channel_data_50[ChnlTmp][i], 18);
+				Wb35Reg_BurstWrite( pHwData, 0x0864, pltmp, 3, NO_INCREMENT );
+			}
+			RFSynthesizer_SetPowerIndex( pHwData, 100 );
+			break;
+
+		case RF_MAXIM_2828:
+
+			if( Channel.band <= BAND_TYPE_OFDM_24 ) // channel 1 ~ 13
+			{
+				for( i=0; i<3; i++ )
+					pltmp[i] = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( max2828_channel_data_24[Channel.ChanNo-1][i], 18);
+				Wb35Reg_BurstWrite( pHwData, 0x0864, pltmp, 3, NO_INCREMENT );
+			}
+			else if( Channel.band == BAND_TYPE_OFDM_5 ) // channel 36 ~ 64
+			{
+				ChnlTmp = (Channel.ChanNo - 36) / 4;
+				for ( i = 0; i < 3; i++)
+					pltmp[i] = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( max2828_channel_data_50[ChnlTmp][i], 18);
+				Wb35Reg_BurstWrite( pHwData, 0x0864, pltmp, 3, NO_INCREMENT );
+			}
+			RFSynthesizer_SetPowerIndex( pHwData, 100 );
+			break;
+
+		case RF_MAXIM_2829:
+
+			if( Channel.band <= BAND_TYPE_OFDM_24)
+			{
+				for( i=0; i<3; i++ )
+					pltmp[i] = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( max2829_channel_data_24[Channel.ChanNo-1][i], 18);
+				Wb35Reg_BurstWrite( pHwData, 0x0864, pltmp, 3, NO_INCREMENT );
+			}
+			else if( Channel.band == BAND_TYPE_OFDM_5 )
+			{
+				count = sizeof(max2829_channel_data_50) / sizeof(max2829_channel_data_50[0]);
+
+				for( i=0; i<count; i++ )
+				{
+					if( max2829_channel_data_50[i][0] == Channel.ChanNo )
+					{
+						for( j=0; j<3; j++ )
+							pltmp[j] = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( max2829_channel_data_50[i][j+1], 18);
+						Wb35Reg_BurstWrite( pHwData, 0x0864, pltmp, 3, NO_INCREMENT );
+
+						if( (max2829_channel_data_50[i][3] & 0x3FFFF) == 0x2A946 )
+						{
+							ltmp = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( (5<<18)|0x2A906, 18);
+							Wb35Reg_Write( pHwData, 0x0864, ltmp );
+						}
+						else    // 0x2A9C6
+						{
+							ltmp = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( (5<<18)|0x2A986, 18);
+							Wb35Reg_Write( pHwData, 0x0864, ltmp );
+						}
+					}
+				}
+			}
+			set_tx_power_per_channel_max2829( pHwData, Channel );
+			break;
+
+		case RF_AIROHA_2230:
+		case RF_AIROHA_2230S: // 20060420 Add this
+
+			if( Channel.band <= BAND_TYPE_OFDM_24 ) // channel 1 ~ 14
+			{
+				for( i=0; i<2; i++ )
+					pltmp[i] = (1 << 31) | (0 << 30) | (20 << 24) | BitReverse( al2230_channel_data_24[Channel.ChanNo-1][i], 20);
+				Wb35Reg_BurstWrite( pHwData, 0x0864, pltmp, 2, NO_INCREMENT );
+			}
+			set_tx_power_per_channel_al2230( pHwData, Channel );
+			break;
+
+		case RF_AIROHA_7230:
+
+			//Start to fill RF parameters, PLL_ON should be pulled low.
+			//Wb35Reg_Write( pHwData, 0x03dc, 0x00000000 );
+			//WBDEBUG(("* PLL_ON    low\n"));
+
+			//Channel independent registers
+			if( Channel.band != pHwData->band)
+			{
+				if (Channel.band <= BAND_TYPE_OFDM_24)
+				{
+					//Update BB register
+					BBProcessor_AL7230_2400(pHwData);
+
+					number = sizeof(al7230_rf_data_24)/sizeof(al7230_rf_data_24[0]);
+					Set_ChanIndep_RfData_al7230_24(pHwData, pltmp, number);
+				}
+				else
+				{
+					//Update BB register
+					BBProcessor_AL7230_5000(pHwData);
+
+					number = sizeof(al7230_rf_data_50)/sizeof(al7230_rf_data_50[0]);
+					Set_ChanIndep_RfData_al7230_50(pHwData, pltmp, number);
+				}
+
+				// Write to register. number must less and equal than 16
+				Wb35Reg_BurstWrite( pHwData, 0x0864, pltmp, number, NO_INCREMENT );
+				#ifdef _PE_STATE_DUMP_
+				WBDEBUG(("Band changed\n"));
+				#endif
+			}
+
+			if( Channel.band <= BAND_TYPE_OFDM_24 ) // channel 1 ~ 14
+			{
+				for( i=0; i<2; i++ )
+					pltmp[i] = (1 << 31) | (0 << 30) | (24 << 24) | (al7230_channel_data_24[Channel.ChanNo-1][i]&0xffffff);
+				Wb35Reg_BurstWrite( pHwData, 0x0864, pltmp, 2, NO_INCREMENT );
+			}
+			else if( Channel.band == BAND_TYPE_OFDM_5 )
+			{
+				//Update Reg12
+				if ((Channel.ChanNo > 64) && (Channel.ChanNo <= 165))
+				{
+					ltmp = (1 << 31) | (0 << 30) | (24 << 24) | 0x00143c;
+					Wb35Reg_Write( pHwData, 0x0864, ltmp );
+				}
+				else	//reg12 = 0x00147c at Channel 4920 ~ 5320
+				{
+					ltmp = (1 << 31) | (0 << 30) | (24 << 24) | 0x00147c;
+					Wb35Reg_Write( pHwData, 0x0864, ltmp );
+				}
+
+				count = sizeof(al7230_channel_data_5) / sizeof(al7230_channel_data_5[0]);
+
+				for (i=0; i<count; i++)
+				{
+					if (al7230_channel_data_5[i][0] == Channel.ChanNo)
+					{
+						for( j=0; j<3; j++ )
+							pltmp[j] = (1 << 31) | (0 << 30) | (24 << 24) | ( al7230_channel_data_5[i][j+1]&0xffffff);
+						Wb35Reg_BurstWrite( pHwData, 0x0864, pltmp, 3, NO_INCREMENT );
+					}
+				}
+			}
+			set_tx_power_per_channel_al7230(pHwData, Channel);
+			break;
+
+		case RF_WB_242:
+		case RF_WB_242_1: // 20060619.5 Add
+
+			if( Channel.band <= BAND_TYPE_OFDM_24 ) // channel 1 ~ 14
+			{
+				ltmp = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( w89rf242_channel_data_24[Channel.ChanNo-1][0], 24);
+				Wb35Reg_Write( pHwData, 0x864, ltmp );
+			}
+			set_tx_power_per_channel_wb242(pHwData, Channel);
+			break;
+	}
+
+	if( Channel.band <= BAND_TYPE_OFDM_24 )
+	{
+        // BB: select 2.4 GHz, bit[12-11]=00
+		pWb35Reg->BB50 &= ~(BIT(11)|BIT(12));
+		Wb35Reg_Write( pHwData, 0x1050, pWb35Reg->BB50 ); // MODE_Ctrl
+        // MAC: select 2.4 GHz, bit[5]=0
+		pWb35Reg->M78_ERPInformation &= ~BIT(5);
+		Wb35Reg_Write( pHwData, 0x0878, pWb35Reg->M78_ERPInformation );
+        // enable 11b Baseband
+		pWb35Reg->BB30 &= ~BIT(31);
+		Wb35Reg_Write( pHwData, 0x1030, pWb35Reg->BB30 );
+	}
+	else if( (Channel.band == BAND_TYPE_OFDM_5) )
+	{
+        // BB: select 5 GHz
+		pWb35Reg->BB50 &= ~(BIT(11)|BIT(12));
+		if (Channel.ChanNo <=64 )
+			pWb35Reg->BB50 |= BIT(12);				// 10-5.25GHz
+		else if ((Channel.ChanNo >= 100) && (Channel.ChanNo <= 124))
+			pWb35Reg->BB50 |= BIT(11);				// 01-5.48GHz
+		else if ((Channel.ChanNo >=128) && (Channel.ChanNo <= 161))
+			pWb35Reg->BB50 |= (BIT(12)|BIT(11));	// 11-5.775GHz
+		else	//Chan 184 ~ 196 will use bit[12-11] = 10 in version sh-src-1.2.25
+			pWb35Reg->BB50 |= BIT(12);
+		Wb35Reg_Write( pHwData, 0x1050, pWb35Reg->BB50 ); // MODE_Ctrl
+
+		//(1) M78 should alway use 2.4G setting when using RF_AIROHA_7230
+		//(2) BB30 has been updated previously.
+		if (pHwData->phy_type != RF_AIROHA_7230)
+		{
+    	    // MAC: select 5 GHz, bit[5]=1
+			pWb35Reg->M78_ERPInformation |= BIT(5);
+			Wb35Reg_Write( pHwData, 0x0878, pWb35Reg->M78_ERPInformation );
+
+    	    // disable 11b Baseband
+			pWb35Reg->BB30 |= BIT(31);
+			Wb35Reg_Write( pHwData, 0x1030, pWb35Reg->BB30 );
+		}
+	}
+}
+
+//Set the tx power directly from DUT GUI, not from the EEPROM. Return the current setting
+u8 RFSynthesizer_SetPowerIndex(  phw_data_t pHwData,  u8 PowerIndex )
+{
+	u32	Band = pHwData->band;
+	u8	index=0;
+
+	if( pHwData->power_index == PowerIndex ) // 20060620.1 Add
+		return PowerIndex;
+
+	if (RF_MAXIM_2825 == pHwData->phy_type)
+	{
+		// Channel 1 - 13
+		index = RFSynthesizer_SetMaxim2825Power( pHwData, PowerIndex );
+	}
+	else if (RF_MAXIM_2827 == pHwData->phy_type)
+	{
+		if( Band <= BAND_TYPE_OFDM_24 )    // Channel 1 - 13
+			index = RFSynthesizer_SetMaxim2827_24Power( pHwData, PowerIndex );
+		else// if( Band == BAND_TYPE_OFDM_5 )  // Channel 36 - 64
+			index = RFSynthesizer_SetMaxim2827_50Power( pHwData, PowerIndex );
+	}
+	else if (RF_MAXIM_2828 == pHwData->phy_type)
+	{
+		if( Band <= BAND_TYPE_OFDM_24 )    // Channel 1 - 13
+			index = RFSynthesizer_SetMaxim2828_24Power( pHwData, PowerIndex );
+		else// if( Band == BAND_TYPE_OFDM_5 )  // Channel 36 - 64
+			index = RFSynthesizer_SetMaxim2828_50Power( pHwData, PowerIndex );
+	}
+	else if( RF_AIROHA_2230 == pHwData->phy_type )
+	{
+		//Power index: 0 ~ 63 // Channel 1 - 14
+		index = RFSynthesizer_SetAiroha2230Power( pHwData, PowerIndex );
+		index = (u8)al2230_txvga_data[index][1];
+	}
+	else if( RF_AIROHA_2230S == pHwData->phy_type ) // 20060420 Add this
+	{
+		//Power index: 0 ~ 63 // Channel 1 - 14
+		index = RFSynthesizer_SetAiroha2230Power( pHwData, PowerIndex );
+		index = (u8)al2230_txvga_data[index][1];
+	}
+	else if( RF_AIROHA_7230 == pHwData->phy_type )
+	{
+		//Power index: 0 ~ 63
+		index = RFSynthesizer_SetAiroha7230Power( pHwData, PowerIndex );
+		index = (u8)al7230_txvga_data[index][1];
+	}
+	else if( (RF_WB_242 == pHwData->phy_type) ||
+		 (RF_WB_242_1 == pHwData->phy_type) ) // 20060619.5 Add
+	{
+		//Power index: 0 ~ 19 for original. New range is 0 ~ 33
+		index = RFSynthesizer_SetWinbond242Power( pHwData, PowerIndex );
+		index = (u8)w89rf242_txvga_data[index][1];
+	}
+
+	pHwData->power_index = index;  // Backup current
+	return index;
+}
+
+//-- Sub function
+u8 RFSynthesizer_SetMaxim2828_24Power(  phw_data_t pHwData, u8 index )
+{
+	u32		PowerData;
+	if( index > 1 ) index = 1;
+	PowerData = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( max2828_power_data_24[index], 18);
+	Wb35Reg_Write( pHwData, 0x0864, PowerData );
+	return index;
+}
+//--
+u8 RFSynthesizer_SetMaxim2828_50Power(  phw_data_t pHwData, u8 index )
+{
+	u32		PowerData;
+	if( index > 1 ) index = 1;
+	PowerData = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( max2828_power_data_50[index], 18);
+	Wb35Reg_Write( pHwData, 0x0864, PowerData );
+	return index;
+}
+//--
+u8 RFSynthesizer_SetMaxim2827_24Power(  phw_data_t pHwData, u8 index )
+{
+	u32		PowerData;
+	if( index > 1 ) index = 1;
+	PowerData = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( max2827_power_data_24[index], 18);
+	Wb35Reg_Write( pHwData, 0x0864, PowerData );
+	return index;
+}
+//--
+u8 RFSynthesizer_SetMaxim2827_50Power(  phw_data_t pHwData, u8 index )
+{
+	u32		PowerData;
+	if( index > 1 ) index = 1;
+	PowerData = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( max2827_power_data_50[index], 18);
+	Wb35Reg_Write( pHwData, 0x0864, PowerData );
+	return index;
+}
+//--
+u8 RFSynthesizer_SetMaxim2825Power(  phw_data_t pHwData, u8 index )
+{
+	u32		PowerData;
+	if( index > 1 ) index = 1;
+	PowerData = (1 << 31) | (0 << 30) | (18 << 24) | BitReverse( max2825_power_data_24[index], 18);
+	Wb35Reg_Write( pHwData, 0x0864, PowerData );
+	return index;
+}
+//--
+u8 RFSynthesizer_SetAiroha2230Power(  phw_data_t pHwData, u8 index )
+{
+	u32		PowerData;
+	u8		i,count;
+
+	count = sizeof(al2230_txvga_data) / sizeof(al2230_txvga_data[0]);
+	for (i=0; i<count; i++)
+	{
+		if (al2230_txvga_data[i][1] >= index)
+			break;
+	}
+	if (i == count)
+		i--;
+
+	PowerData = (1 << 31) | (0 << 30) | (20 << 24) | BitReverse( al2230_txvga_data[i][0], 20);
+	Wb35Reg_Write( pHwData, 0x0864, PowerData );
+	return i;
+}
+//--
+u8 RFSynthesizer_SetAiroha7230Power(  phw_data_t pHwData, u8 index )
+{
+	u32		PowerData;
+	u8		i,count;
+
+	//PowerData = (1 << 31) | (0 << 30) | (20 << 24) | BitReverse( airoha_power_data_24[index], 20);
+	count = sizeof(al7230_txvga_data) / sizeof(al7230_txvga_data[0]);
+	for (i=0; i<count; i++)
+	{
+		if (al7230_txvga_data[i][1] >= index)
+			break;
+	}
+	if (i == count)
+		i--;
+	PowerData = (1 << 31) | (0 << 30) | (24 << 24) | (al7230_txvga_data[i][0]&0xffffff);
+	Wb35Reg_Write( pHwData, 0x0864, PowerData );
+	return i;
+}
+
+u8 RFSynthesizer_SetWinbond242Power(  phw_data_t pHwData, u8 index )
+{
+	u32		PowerData;
+	u8		i,count;
+
+	count = sizeof(w89rf242_txvga_data) / sizeof(w89rf242_txvga_data[0]);
+	for (i=0; i<count; i++)
+	{
+		if (w89rf242_txvga_data[i][1] >= index)
+			break;
+	}
+	if (i == count)
+		i--;
+
+	// Set TxVga into RF
+	PowerData = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( w89rf242_txvga_data[i][0], 24);
+	Wb35Reg_Write( pHwData, 0x0864, PowerData );
+
+	// Update BB48 BB4C BB58 for high precision txvga
+	Wb35Reg_Write( pHwData, 0x1048, w89rf242_txvga_data[i][2] );
+	Wb35Reg_Write( pHwData, 0x104c, w89rf242_txvga_data[i][3] );
+	Wb35Reg_Write( pHwData, 0x1058, w89rf242_txvga_data[i][4] );
+
+// Rf vga 0 ~ 3 for temperature compensate. It will affect the scan Bss.
+// The i value equals to 8 or 7 usually. So It's not necessary to setup this RF register.
+//	if( i <= 3 )
+//		PowerData = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( 0x000024, 24 );
+//	else
+//		PowerData = (1 << 31) | (0 << 30) | (24 << 24) | BitReverse( 0x001824, 24 );
+//	Wb35Reg_Write( pHwData, 0x0864, PowerData );
+	return i;
+}
+
+//===========================================================================================================
+// Dxx_initial --
+// Mxx_initial --
+	//
+//  Routine Description:
+//		Initial the hardware setting and module variable
+	//
+//===========================================================================================================
+void Dxx_initial(  phw_data_t pHwData )
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+
+	// Old IC:Single mode only.
+	// New IC: operation decide by Software set bit[4]. 1:multiple 0: single
+	pWb35Reg->D00_DmaControl = 0xc0000004;	//Txon, Rxon, multiple Rx for new 4k DMA
+											//Txon, Rxon, single Rx for old 8k ASIC
+	if( !HAL_USB_MODE_BURST( pHwData ) )
+		pWb35Reg->D00_DmaControl = 0xc0000000;//Txon, Rxon, single Rx for new 4k DMA
+
+	Wb35Reg_WriteSync( pHwData, 0x0400, pWb35Reg->D00_DmaControl );
+}
+
+void Mxx_initial(  phw_data_t pHwData )
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+	u32		tmp;
+	u32		pltmp[11];
+	u16	i;
+
+
+	//======================================================
+	// Initial Mxx register
+	//======================================================
+
+	// M00 bit set
+#ifdef _IBSS_BEACON_SEQ_STICK_
+	pWb35Reg->M00_MacControl = 0; // Solve beacon sequence number stop by software
+#else
+	pWb35Reg->M00_MacControl = 0x80000000; // Solve beacon sequence number stop by hardware
+#endif
+
+	// M24 disable enter power save, BB RxOn and enable NAV attack
+	pWb35Reg->M24_MacControl = 0x08040042;
+	pltmp[0] = pWb35Reg->M24_MacControl;
+
+	pltmp[1] = 0; // Skip M28, because no initialize value is required.
+
+	// M2C CWmin and CWmax setting
+	pHwData->cwmin = DEFAULT_CWMIN;
+	pHwData->cwmax = DEFAULT_CWMAX;
+	pWb35Reg->M2C_MacControl = DEFAULT_CWMIN << 10;
+	pWb35Reg->M2C_MacControl |= DEFAULT_CWMAX;
+	pltmp[2] = pWb35Reg->M2C_MacControl;
+
+	// M30 BSSID
+	pltmp[3] = *(PULONG)pHwData->bssid;
+
+	// M34
+	pHwData->AID = DEFAULT_AID;
+	tmp = *(PUSHORT)(pHwData->bssid+4);
+	tmp |= DEFAULT_AID << 16;
+	pltmp[4] = tmp;
+
+	// M38
+	pWb35Reg->M38_MacControl = (DEFAULT_RATE_RETRY_LIMIT<<8) | (DEFAULT_LONG_RETRY_LIMIT << 4) | DEFAULT_SHORT_RETRY_LIMIT;
+	pltmp[5] = pWb35Reg->M38_MacControl;
+
+	// M3C
+	tmp = (DEFAULT_PIFST << 26) | (DEFAULT_EIFST << 16) | (DEFAULT_DIFST << 8) | (DEFAULT_SIFST << 4) | DEFAULT_OSIFST ;
+	pWb35Reg->M3C_MacControl = tmp;
+	pltmp[6] = tmp;
+
+	// M40
+	pHwData->slot_time_select = DEFAULT_SLOT_TIME;
+	tmp = (DEFAULT_ATIMWD << 16) | DEFAULT_SLOT_TIME;
+	pWb35Reg->M40_MacControl = tmp;
+	pltmp[7] = tmp;
+
+	// M44
+	tmp = DEFAULT_MAX_TX_MSDU_LIFE_TIME << 10; // *1024
+	pWb35Reg->M44_MacControl = tmp;
+	pltmp[8] = tmp;
+
+	// M48
+	pHwData->BeaconPeriod = DEFAULT_BEACON_INTERVAL;
+	pHwData->ProbeDelay = DEFAULT_PROBE_DELAY_TIME;
+	tmp = (DEFAULT_BEACON_INTERVAL << 16) | DEFAULT_PROBE_DELAY_TIME;
+	pWb35Reg->M48_MacControl = tmp;
+	pltmp[9] = tmp;
+
+	//M4C
+	pWb35Reg->M4C_MacStatus = (DEFAULT_PROTOCOL_VERSION << 30) | (DEFAULT_MAC_POWER_STATE << 28) | (DEFAULT_DTIM_ALERT_TIME << 24);
+	pltmp[10] = pWb35Reg->M4C_MacStatus;
+
+	// Burst write
+	//Wb35Reg_BurstWrite( pHwData, 0x0824, pltmp, 11, AUTO_INCREMENT );
+	for( i=0; i<11; i++ )
+		Wb35Reg_WriteSync( pHwData, 0x0824 + i*4, pltmp[i] );
+
+	// M60
+	Wb35Reg_WriteSync( pHwData, 0x0860, 0x12481248 );
+	pWb35Reg->M60_MacControl = 0x12481248;
+
+	// M68
+	Wb35Reg_WriteSync( pHwData, 0x0868, 0x00050900 ); // 20051018 0x000F0F00 ); // 940930 0x00131300
+	pWb35Reg->M68_MacControl = 0x00050900;
+
+	// M98
+	Wb35Reg_WriteSync( pHwData, 0x0898, 0xffff8888 );
+	pWb35Reg->M98_MacControl = 0xffff8888;
+}
+
+
+void Uxx_power_off_procedure(  phw_data_t pHwData )
+{
+	// SW, PMU reset and turn off clock
+	Wb35Reg_WriteSync( pHwData, 0x03b0, 3 );
+	Wb35Reg_WriteSync( pHwData, 0x03f0, 0xf9 );
+}
+
+//Decide the TxVga of every channel
+void GetTxVgaFromEEPROM(  phw_data_t pHwData )
+{
+	u32		i, j, ltmp;
+	u16		Value[MAX_TXVGA_EEPROM];
+	PUCHAR		pctmp;
+	u8		ctmp=0;
+
+	// Get the entire TxVga setting in EEPROM
+	for( i=0; i<MAX_TXVGA_EEPROM; i++ )
+	{
+		Wb35Reg_WriteSync( pHwData, 0x03b4, 0x08100000 + 0x00010000*i );
+		Wb35Reg_ReadSync( pHwData, 0x03b4, &ltmp );
+		Value[i] = (u16)( ltmp & 0xffff ); // Get 16 bit available
+		Value[i] = cpu_to_le16( Value[i] ); // [7:0]2412 [7:0]2417 ....
+	}
+
+	// Adjust the filed which fills with reserved value.
+	pctmp = (PUCHAR)Value;
+	for( i=0; i<(MAX_TXVGA_EEPROM*2); i++ )
+	{
+		if( pctmp[i] != 0xff )
+			ctmp = pctmp[i];
+		else
+			pctmp[i] = ctmp;
+	}
+
+	// Adjust WB_242 to WB_242_1 TxVga scale
+	if( pHwData->phy_type == RF_WB_242 )
+	{
+		for( i=0; i<4; i++ ) // Only 2412 2437 2462 2484 case must be modified
+		{
+			for( j=0; j<(sizeof(w89rf242_txvga_old_mapping)/sizeof(w89rf242_txvga_old_mapping[0])); j++ )
+			{
+				if( pctmp[i] < (u8)w89rf242_txvga_old_mapping[j][1] )
+				{
+					pctmp[i] = (u8)w89rf242_txvga_old_mapping[j][0];
+					break;
+				}
+			}
+
+			if( j == (sizeof(w89rf242_txvga_old_mapping)/sizeof(w89rf242_txvga_old_mapping[0])) )
+				pctmp[i] = (u8)w89rf242_txvga_old_mapping[j-1][0];
+		}
+	}
+
+	// 20060621 Add
+	memcpy( pHwData->TxVgaSettingInEEPROM, pctmp, MAX_TXVGA_EEPROM*2 ); //MAX_TXVGA_EEPROM is u16 count
+	EEPROMTxVgaAdjust( pHwData );
+}
+
+// This function will affect the TxVga parameter in HAL. If hal_set_current_channel
+// or RFSynthesizer_SetPowerIndex be called, new TxVga will take effect.
+// TxVgaSettingInEEPROM of sHwData is an u8 array point to EEPROM contain for IS89C35
+// This function will use default TxVgaSettingInEEPROM data to calculate new TxVga.
+void EEPROMTxVgaAdjust(  phw_data_t pHwData ) // 20060619.5 Add
+{
+	PUCHAR		pTxVga = pHwData->TxVgaSettingInEEPROM;
+	s16		i, stmp;
+
+	//-- 2.4G -- 20060704.2 Request from Tiger
+	//channel 1 ~ 5
+	stmp = pTxVga[1] - pTxVga[0];
+	for( i=0; i<5; i++ )
+		pHwData->TxVgaFor24[i] = pTxVga[0] + stmp*i/4;
+	//channel 6 ~ 10
+	stmp = pTxVga[2] - pTxVga[1];
+	for( i=5; i<10; i++ )
+		pHwData->TxVgaFor24[i] = pTxVga[1] + stmp*(i-5)/4;
+	//channel 11 ~ 13
+	stmp = pTxVga[3] - pTxVga[2];
+	for( i=10; i<13; i++ )
+		pHwData->TxVgaFor24[i] = pTxVga[2] + stmp*(i-10)/2;
+	//channel 14
+	pHwData->TxVgaFor24[13] = pTxVga[3];
+
+	//-- 5G --
+	if( pHwData->phy_type == RF_AIROHA_7230 )
+	{
+		//channel 184
+		pHwData->TxVgaFor50[0].ChanNo = 184;
+		pHwData->TxVgaFor50[0].TxVgaValue = pTxVga[4];
+		//channel 196
+		pHwData->TxVgaFor50[3].ChanNo = 196;
+		pHwData->TxVgaFor50[3].TxVgaValue = pTxVga[5];
+		//interpolate
+		pHwData->TxVgaFor50[1].ChanNo = 188;
+		pHwData->TxVgaFor50[2].ChanNo = 192;
+		stmp = pTxVga[5] - pTxVga[4];
+		pHwData->TxVgaFor50[2].TxVgaValue = pTxVga[5] - stmp/3;
+		pHwData->TxVgaFor50[1].TxVgaValue = pTxVga[5] - stmp*2/3;
+
+		//channel 16
+		pHwData->TxVgaFor50[6].ChanNo = 16;
+		pHwData->TxVgaFor50[6].TxVgaValue = pTxVga[6];
+		pHwData->TxVgaFor50[4].ChanNo = 8;
+		pHwData->TxVgaFor50[4].TxVgaValue = pTxVga[6];
+		pHwData->TxVgaFor50[5].ChanNo = 12;
+		pHwData->TxVgaFor50[5].TxVgaValue = pTxVga[6];
+
+		//channel 36
+		pHwData->TxVgaFor50[8].ChanNo = 36;
+		pHwData->TxVgaFor50[8].TxVgaValue = pTxVga[7];
+		pHwData->TxVgaFor50[7].ChanNo = 34;
+		pHwData->TxVgaFor50[7].TxVgaValue = pTxVga[7];
+		pHwData->TxVgaFor50[9].ChanNo = 38;
+		pHwData->TxVgaFor50[9].TxVgaValue = pTxVga[7];
+
+		//channel 40
+		pHwData->TxVgaFor50[10].ChanNo = 40;
+		pHwData->TxVgaFor50[10].TxVgaValue = pTxVga[8];
+		//channel 48
+		pHwData->TxVgaFor50[14].ChanNo = 48;
+		pHwData->TxVgaFor50[14].TxVgaValue = pTxVga[9];
+		//interpolate
+		pHwData->TxVgaFor50[11].ChanNo = 42;
+		pHwData->TxVgaFor50[12].ChanNo = 44;
+		pHwData->TxVgaFor50[13].ChanNo = 46;
+		stmp = pTxVga[9] - pTxVga[8];
+		pHwData->TxVgaFor50[13].TxVgaValue = pTxVga[9] - stmp/4;
+		pHwData->TxVgaFor50[12].TxVgaValue = pTxVga[9] - stmp*2/4;
+		pHwData->TxVgaFor50[11].TxVgaValue = pTxVga[9] - stmp*3/4;
+
+		//channel 52
+		pHwData->TxVgaFor50[15].ChanNo = 52;
+		pHwData->TxVgaFor50[15].TxVgaValue = pTxVga[10];
+		//channel 64
+		pHwData->TxVgaFor50[18].ChanNo = 64;
+		pHwData->TxVgaFor50[18].TxVgaValue = pTxVga[11];
+		//interpolate
+		pHwData->TxVgaFor50[16].ChanNo = 56;
+		pHwData->TxVgaFor50[17].ChanNo = 60;
+		stmp = pTxVga[11] - pTxVga[10];
+		pHwData->TxVgaFor50[17].TxVgaValue = pTxVga[11] - stmp/3;
+		pHwData->TxVgaFor50[16].TxVgaValue = pTxVga[11] - stmp*2/3;
+
+		//channel 100
+		pHwData->TxVgaFor50[19].ChanNo = 100;
+		pHwData->TxVgaFor50[19].TxVgaValue = pTxVga[12];
+		//channel 112
+		pHwData->TxVgaFor50[22].ChanNo = 112;
+		pHwData->TxVgaFor50[22].TxVgaValue = pTxVga[13];
+		//interpolate
+		pHwData->TxVgaFor50[20].ChanNo = 104;
+		pHwData->TxVgaFor50[21].ChanNo = 108;
+		stmp = pTxVga[13] - pTxVga[12];
+		pHwData->TxVgaFor50[21].TxVgaValue = pTxVga[13] - stmp/3;
+		pHwData->TxVgaFor50[20].TxVgaValue = pTxVga[13] - stmp*2/3;
+
+		//channel 128
+		pHwData->TxVgaFor50[26].ChanNo = 128;
+		pHwData->TxVgaFor50[26].TxVgaValue = pTxVga[14];
+		//interpolate
+		pHwData->TxVgaFor50[23].ChanNo = 116;
+		pHwData->TxVgaFor50[24].ChanNo = 120;
+		pHwData->TxVgaFor50[25].ChanNo = 124;
+		stmp = pTxVga[14] - pTxVga[13];
+		pHwData->TxVgaFor50[25].TxVgaValue = pTxVga[14] - stmp/4;
+		pHwData->TxVgaFor50[24].TxVgaValue = pTxVga[14] - stmp*2/4;
+		pHwData->TxVgaFor50[23].TxVgaValue = pTxVga[14] - stmp*3/4;
+
+		//channel 140
+		pHwData->TxVgaFor50[29].ChanNo = 140;
+		pHwData->TxVgaFor50[29].TxVgaValue = pTxVga[15];
+		//interpolate
+		pHwData->TxVgaFor50[27].ChanNo = 132;
+		pHwData->TxVgaFor50[28].ChanNo = 136;
+		stmp = pTxVga[15] - pTxVga[14];
+		pHwData->TxVgaFor50[28].TxVgaValue = pTxVga[15] - stmp/3;
+		pHwData->TxVgaFor50[27].TxVgaValue = pTxVga[15] - stmp*2/3;
+
+		//channel 149
+		pHwData->TxVgaFor50[30].ChanNo = 149;
+		pHwData->TxVgaFor50[30].TxVgaValue = pTxVga[16];
+		//channel 165
+		pHwData->TxVgaFor50[34].ChanNo = 165;
+		pHwData->TxVgaFor50[34].TxVgaValue = pTxVga[17];
+		//interpolate
+		pHwData->TxVgaFor50[31].ChanNo = 153;
+		pHwData->TxVgaFor50[32].ChanNo = 157;
+		pHwData->TxVgaFor50[33].ChanNo = 161;
+		stmp = pTxVga[17] - pTxVga[16];
+		pHwData->TxVgaFor50[33].TxVgaValue = pTxVga[17] - stmp/4;
+		pHwData->TxVgaFor50[32].TxVgaValue = pTxVga[17] - stmp*2/4;
+		pHwData->TxVgaFor50[31].TxVgaValue = pTxVga[17] - stmp*3/4;
+	}
+
+	#ifdef _PE_STATE_DUMP_
+	WBDEBUG((" TxVgaFor24 : \n"));
+	DataDmp((u8 *)pHwData->TxVgaFor24, 14 ,0);
+	WBDEBUG((" TxVgaFor50 : \n"));
+	DataDmp((u8 *)pHwData->TxVgaFor50, 70 ,0);
+	#endif
+}
+
+void BBProcessor_RateChanging(  phw_data_t pHwData,  u8 rate ) // 20060613.1
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+	unsigned char		Is11bRate;
+
+	Is11bRate = (rate % 6) ? 1 : 0;
+	switch( pHwData->phy_type )
+	{
+		case RF_AIROHA_2230:
+		case RF_AIROHA_2230S: // 20060420 Add this
+			if( Is11bRate )
+			{
+				if( (pWb35Reg->BB48 != BB48_DEFAULT_AL2230_11B) &&
+					(pWb35Reg->BB4C != BB4C_DEFAULT_AL2230_11B) )
+				{
+					Wb35Reg_Write( pHwData, 0x1048, BB48_DEFAULT_AL2230_11B );
+					Wb35Reg_Write( pHwData, 0x104c, BB4C_DEFAULT_AL2230_11B );
+				}
+			}
+			else
+			{
+				if( (pWb35Reg->BB48 != BB48_DEFAULT_AL2230_11G) &&
+					(pWb35Reg->BB4C != BB4C_DEFAULT_AL2230_11G) )
+				{
+					Wb35Reg_Write( pHwData, 0x1048, BB48_DEFAULT_AL2230_11G );
+					Wb35Reg_Write( pHwData, 0x104c, BB4C_DEFAULT_AL2230_11G );
+				}
+			}
+			break;
+
+		case RF_WB_242: // 20060623 The fix only for old TxVGA setting
+			if( Is11bRate )
+			{
+				if( (pWb35Reg->BB48 != BB48_DEFAULT_WB242_11B) &&
+					(pWb35Reg->BB4C != BB4C_DEFAULT_WB242_11B) )
+				{
+					pWb35Reg->BB48 = BB48_DEFAULT_WB242_11B;
+					pWb35Reg->BB4C = BB4C_DEFAULT_WB242_11B;
+					Wb35Reg_Write( pHwData, 0x1048, BB48_DEFAULT_WB242_11B );
+					Wb35Reg_Write( pHwData, 0x104c, BB4C_DEFAULT_WB242_11B );
+				}
+			}
+			else
+			{
+				if( (pWb35Reg->BB48 != BB48_DEFAULT_WB242_11G) &&
+					(pWb35Reg->BB4C != BB4C_DEFAULT_WB242_11G) )
+				{
+					pWb35Reg->BB48 = BB48_DEFAULT_WB242_11G;
+					pWb35Reg->BB4C = BB4C_DEFAULT_WB242_11G;
+					Wb35Reg_Write( pHwData, 0x1048, BB48_DEFAULT_WB242_11G );
+					Wb35Reg_Write( pHwData, 0x104c, BB4C_DEFAULT_WB242_11G );
+				}
+			}
+			break;
+	}
+}
+
+
+
+
+
+
+
diff --git a/drivers/staging/winbond/rxisr.c b/drivers/staging/winbond/rxisr.c
new file mode 100644
index 0000000..18e942c
--- /dev/null
+++ b/drivers/staging/winbond/rxisr.c
@@ -0,0 +1,30 @@
+#include "os_common.h"
+
+void vRxTimerInit(PWB32_ADAPTER Adapter)
+{
+	OS_TIMER_INITIAL(&(Adapter->Mds.nTimer), (void*) RxTimerHandler, (void*) Adapter);
+}
+
+void vRxTimerStart(PWB32_ADAPTER Adapter, int timeout_value)
+{
+	if (timeout_value<MIN_TIMEOUT_VAL)
+		timeout_value=MIN_TIMEOUT_VAL;
+
+	OS_TIMER_SET( &(Adapter->Mds.nTimer), timeout_value );
+}
+
+void vRxTimerStop(PWB32_ADAPTER Adapter)
+{
+	OS_TIMER_CANCEL( &(Adapter->Mds.nTimer), 0 );
+}
+
+void RxTimerHandler_1a( PADAPTER Adapter)
+{
+	RxTimerHandler(NULL, Adapter, NULL, NULL);
+}
+
+void RxTimerHandler(void* SystemSpecific1, PWB32_ADAPTER Adapter,
+		    void* SystemSpecific2, void* SystemSpecific3)
+{
+	WARN_ON(1);
+}
diff --git a/drivers/staging/winbond/scan_s.h b/drivers/staging/winbond/scan_s.h
new file mode 100644
index 0000000..1d1b0c4
--- /dev/null
+++ b/drivers/staging/winbond/scan_s.h
@@ -0,0 +1,115 @@
+//
+// SCAN task global CONSTANTS, STRUCTURES, variables
+//
+
+//////////////////////////////////////////////////////////////////////////
+//define the msg type of SCAN module
+#define SCANMSG_SCAN_REQ			0x01
+#define SCANMSG_BEACON				0x02
+#define SCANMSG_PROBE_RESPONSE		0x03
+#define SCANMSG_TIMEOUT				0x04
+#define SCANMSG_TXPROBE_FAIL		0x05
+#define SCANMSG_ENABLE_BGSCAN		0x06
+#define SCANMSG_STOP_SCAN			0x07
+
+// BSS Type =>conform to
+// IBSS             : ToDS/FromDS = 00
+// Infrastructure   : ToDS/FromDS = 01
+#define IBSS_NET			0
+#define ESS_NET				1
+#define ANYBSS_NET			2
+
+// Scan Type
+#define ACTIVE_SCAN			0
+#define PASSIVE_SCAN		1
+
+///////////////////////////////////////////////////////////////////////////
+//Global data structures, Initial Scan & Background Scan
+typedef struct _SCAN_REQ_PARA	//mandatory parameters for SCAN request
+{
+	u32				ScanType;			//passive/active scan
+
+	CHAN_LIST		sChannelList;	// 86B
+	u8			reserved_1[2];
+
+	struct SSID_Element	sSSID; // 34B. scan only for this SSID
+	u8			reserved_2[2];
+
+} SCAN_REQ_PARA, *psSCAN_REQ_PARA;
+
+typedef struct _SCAN_PARAMETERS
+{
+	u16				wState;
+	u16				iCurrentChannelIndex;
+
+	SCAN_REQ_PARA	sScanReq;
+
+	u8				BSSID[MAC_ADDR_LENGTH + 2];		//scan only for this BSSID
+
+	u32				BssType;						//scan only for this BSS type
+
+	//struct SSID_Element	sSSID;						//scan only for this SSID
+	u16				ProbeDelay;
+	u16				MinChannelTime;
+
+	u16				MaxChannelTime;
+	u16				reserved_1;
+
+    s32				iBgScanPeriod;				// XP: 5 sec
+
+    u8				boBgScan;					// Wb: enable BG scan, For XP, this value must be FALSE
+    u8				boFastScan;					// Wb: reserved
+	u8				boCCAbusy;					// Wb: HWMAC CCA busy status
+	u8				reserved_2;
+
+	//NDIS_MINIPORT_TIMER	nTimer;
+	OS_TIMER			nTimer;
+
+	u32				ScanTimeStamp;			//Increase 1 per background scan(1 minute)
+	u32				BssTimeStamp;			//Increase 1 per connect status check
+	u32				RxNumPerAntenna[2];		//
+
+	u8				AntennaToggle;			//
+	u8				boInTimerHandler;
+	u8 				boTimerActive;				// Wb: reserved
+	u8				boSave;
+
+	u32				BScanEnable; // Background scan enable. Default is On
+
+} SCAN_PARAMETERS, *psSCAN_PARAMETERS;
+
+// Encapsulate 'Adapter' data structure
+#define psSCAN			(&(Adapter->sScanPara))
+#define psSCANREQ			(&(Adapter->sScanPara.sScanReq))
+
+//+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
+//	scan.h
+//		Define the related definitions of scan module
+//	history -- 01/14/03' created
+//
+//+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
+
+//Define the state of scan module
+#define SCAN_INACTIVE						0
+#define WAIT_PROBE_DELAY					1
+#define WAIT_RESPONSE_MIN					2
+#define WAIT_RESPONSE_MAX_ACTIVE			3
+#define WAIT_BEACON_MAX_PASSIVE				4
+#define SCAN_COMPLETE						5
+#define BG_SCAN								6
+#define BG_SCANNING							7
+
+
+// The value will load from EEPROM
+// If 0xff is set in EEPOM, the driver will use SCAN_MAX_CHNL_TIME instead.
+// The definition is in WbHal.h
+//	#define SCAN_MAX_CHNL_TIME				(50)
+
+
+
+// static functions
+
+//static void ScanTimerHandler(PWB32_ADAPTER Adapter);
+//static void vScanTimerStart(PWB32_ADAPTER	Adapter, int timeout_value);
+//static void vScanTimerStop(PWB32_ADAPTER Adapter);
+
diff --git a/drivers/staging/winbond/sme_api.c b/drivers/staging/winbond/sme_api.c
new file mode 100644
index 0000000..40e93b7
--- /dev/null
+++ b/drivers/staging/winbond/sme_api.c
@@ -0,0 +1,13 @@
+//------------------------------------------------------------------------------------
+// sme_api.c
+//
+// Copyright(C) 2002 Winbond Electronics Corp.
+//
+//
+//------------------------------------------------------------------------------------
+#include "os_common.h"
+
+s8 sme_get_rssi(void *pcore_data, s32 *prssi)
+{
+       BUG();
+}
diff --git a/drivers/staging/winbond/sme_api.h b/drivers/staging/winbond/sme_api.h
new file mode 100644
index 0000000..016b225
--- /dev/null
+++ b/drivers/staging/winbond/sme_api.h
@@ -0,0 +1,265 @@
+/*
+ * sme_api.h
+ *
+ * Copyright(C) 2002 Winbond Electronics Corp.
+ *
+ * modification history
+ * ---------------------------------------------------------------------------
+ * 1.00.001, 2003-04-21, Kevin       created
+ * 1.00.002, 2003-05-14, PD43 & PE20 modified
+ *
+ */
+
+#ifndef __SME_API_H__
+#define __SME_API_H__
+
+/****************** INCLUDE FILES SECTION ***********************************/
+//#include "GL\gl_core.h"
+
+/****************** CONSTANT AND MACRO SECTION ******************************/
+#define _INLINE      __inline
+
+#define MEDIA_STATE_DISCONNECTED    0
+#define MEDIA_STATE_CONNECTED       1
+
+//ARRAY CHECK
+#define MAX_POWER_TO_DB 32
+
+/****************** TYPE DEFINITION SECTION *********************************/
+
+/****************** EXPORTED FUNCTION DECLARATION SECTION *******************/
+
+// OID_802_11_BSSID
+s8 sme_get_bssid(void *pcore_data, u8 *pbssid);
+s8 sme_get_desired_bssid(void *pcore_data, u8 *pbssid);//Not use
+s8 sme_set_desired_bssid(void *pcore_data, u8 *pbssid);
+
+// OID_802_11_SSID
+s8 sme_get_ssid(void *pcore_data, u8 *pssid, u8 *pssid_len);
+s8 sme_get_desired_ssid(void *pcore_data, u8 *pssid, u8 *pssid_len);// Not use
+s8 sme_set_desired_ssid(void *pcore_data, u8 *pssid, u8 ssid_len);
+
+// OID_802_11_INFRASTRUCTURE_MODE
+s8 sme_get_bss_type(void *pcore_data, u8 *pbss_type);
+s8 sme_get_desired_bss_type(void *pcore_data, u8 *pbss_type);//Not use
+s8 sme_set_desired_bss_type(void *pcore_data, u8 bss_type);
+
+// OID_802_11_FRAGMENTATION_THRESHOLD
+s8 sme_get_fragment_threshold(void *pcore_data, u32 *pthreshold);
+s8 sme_set_fragment_threshold(void *pcore_data, u32 threshold);
+
+// OID_802_11_RTS_THRESHOLD
+s8 sme_get_rts_threshold(void *pcore_data, u32 *pthreshold);
+s8 sme_set_rts_threshold(void *pcore_data, u32 threshold);
+
+// OID_802_11_RSSI
+s8 sme_get_rssi(void *pcore_data, s32 *prssi);
+
+// OID_802_11_CONFIGURATION
+s8 sme_get_beacon_period(void *pcore_data, u16 *pbeacon_period);
+s8 sme_set_beacon_period(void *pcore_data, u16 beacon_period);
+
+s8 sme_get_atim_window(void *pcore_data, u16 *patim_window);
+s8 sme_set_atim_window(void *pcore_data, u16 atim_window);
+
+s8 sme_get_current_channel(void *pcore_data, u8 *pcurrent_channel);
+s8 sme_get_current_band(void *pcore_data, u8 *pcurrent_band);
+s8 sme_set_current_channel(void *pcore_data, u8 current_channel);
+
+// OID_802_11_BSSID_LIST
+s8 sme_get_scan_bss_count(void *pcore_data, u8 *pcount);
+s8 sme_get_scan_bss(void *pcore_data, u8 index, void **ppbss);
+
+s8 sme_get_connected_bss(void *pcore_data, void **ppbss_now);
+
+// OID_802_11_AUTHENTICATION_MODE
+s8 sme_get_auth_mode(void *pcore_data, u8 *pauth_mode);
+s8 sme_set_auth_mode(void *pcore_data, u8 auth_mode);
+
+// OID_802_11_WEP_STATUS / OID_802_11_ENCRYPTION_STATUS
+s8 sme_get_wep_mode(void *pcore_data, u8 *pwep_mode);
+s8 sme_set_wep_mode(void *pcore_data, u8 wep_mode);
+//s8 sme_get_encryption_status(void *pcore_data, u8 *pstatus);
+//s8 sme_set_encryption_status(void *pcore_data, u8 status);
+
+// ???????????????????????????????????????
+
+// OID_GEN_VENDOR_ID
+// OID_802_3_PERMANENT_ADDRESS
+s8 sme_get_permanent_mac_addr(void *pcore_data, u8 *pmac_addr);
+
+// OID_802_3_CURRENT_ADDRESS
+s8 sme_get_current_mac_addr(void *pcore_data, u8 *pmac_addr);
+
+// OID_802_11_NETWORK_TYPE_IN_USE
+s8 sme_get_network_type_in_use(void *pcore_data, u8 *ptype);
+s8 sme_set_network_type_in_use(void *pcore_data, u8 type);
+
+// OID_802_11_SUPPORTED_RATES
+s8 sme_get_supported_rate(void *pcore_data, u8 *prates);
+
+// OID_802_11_ADD_WEP
+//12/29/03' wkchen
+s8 sme_set_add_wep(void *pcore_data, u32 key_index, u32 key_len,
+					 u8 *Address, u8 *key);
+
+// OID_802_11_REMOVE_WEP
+s8 sme_set_remove_wep(void *pcre_data, u32 key_index);
+
+// OID_802_11_DISASSOCIATE
+s8 sme_set_disassociate(void *pcore_data);
+
+// OID_802_11_POWER_MODE
+s8 sme_get_power_mode(void *pcore_data, u8 *pmode);
+s8 sme_set_power_mode(void *pcore_data, u8 mode);
+
+// OID_802_11_BSSID_LIST_SCAN
+s8 sme_set_bssid_list_scan(void *pcore_data, void *pscan_para);
+
+// OID_802_11_RELOAD_DEFAULTS
+s8 sme_set_reload_defaults(void *pcore_data, u8 reload_type);
+
+
+// The following SME API functions are used for WPA
+//
+// Mandatory OIDs for WPA
+//
+
+// OID_802_11_ADD_KEY
+//s8 sme_set_add_key(void *pcore_data, NDIS_802_11_KEY *pkey);
+
+// OID_802_11_REMOVE_KEY
+//s8 sme_set_remove_key(void *pcore_data, NDIS_802_11_REMOVE_KEY *pkey);
+
+// OID_802_11_ASSOCIATION_INFORMATION
+//s8 sme_set_association_information(void *pcore_data,
+//                    NDIS_802_11_ASSOCIATION_INFORMATION *pinfo);
+
+// OID_802_11_TEST
+//s8 sme_set_test(void *pcore_data, NDIS_802_11_TEST *ptest_data);
+
+//--------------------------------------------------------------------------//
+/*
+// The left OIDs
+
+// OID_802_11_NETWORK_TYPES_SUPPORTED
+// OID_802_11_TX_POWER_LEVEL
+// OID_802_11_RSSI_TRIGGER
+// OID_802_11_NUMBER_OF_ANTENNAS
+// OID_802_11_RX_ANTENNA_SELECTED
+// OID_802_11_TX_ANTENNA_SELECTED
+// OID_802_11_STATISTICS
+// OID_802_11_DESIRED_RATES
+// OID_802_11_PRIVACY_FILTER
+
+*/
+
+/*------------------------- none-standard ----------------------------------*/
+s8 sme_get_connect_status(void *pcore_data, u8 *pstatus);
+
+/*++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++*/
+//s8 sme_get_scan_type(void *pcore_data, u8 *pscan_type);
+//s8 sme_set_scan_type(void *pcore_data, u8 scan_type);
+
+//s8 sme_get_scan_channel_list(void *pcore_data, u8 *pscan_type);
+//s8 sme_set_scan_channel_list(void *pcore_data, u8 scan_type);
+
+
+void sme_get_encryption_status(void *pcore_data, u8 *EncryptStatus);
+void sme_set_encryption_status(void *pcore_data, u8 EncryptStatus);
+s8 sme_add_key(void		*pcore_data,
+					u32		key_index,
+					u8		key_len,
+					u8		key_type,
+					u8		*key_bssid,
+					//u8		*key_rsc,
+					u8		*ptx_tsc,
+					u8		*prx_tsc,
+					u8		*key_material);
+void sme_remove_default_key(void *pcore_data, int index);
+void sme_remove_mapping_key(void *pcore_data, u8 *pmac_addr);
+void sme_clear_all_mapping_key(void *pcore_data);
+void sme_clear_all_default_key(void *pcore_data);
+
+
+
+s8 sme_set_preamble_mode(void *pcore_data, u8 mode);
+s8 sme_get_preamble_mode(void *pcore_data, u8 *mode);
+s8 sme_get_preamble_type(void *pcore_data, u8 *type);
+s8 sme_set_slottime_mode(void *pcore_data, u8 mode);
+s8 sme_get_slottime_mode(void *pcore_data, u8 *mode);
+s8 sme_get_slottime_type(void *pcore_data, u8 *type);
+s8 sme_set_txrate_policy(void *pcore_data, u8 policy);
+s8 sme_get_txrate_policy(void *pcore_data, u8 *policy);
+s8 sme_get_cwmin_value(void *pcore_data, u8 *cwmin);
+s8 sme_get_cwmax_value(void *pcore_data, u16 *cwmax);
+s8 sme_get_ms_radio_mode(void *pcore_data, u8 * pMsRadioOff);
+s8 sme_set_ms_radio_mode(void *pcore_data, u8 boMsRadioOff);
+s8 sme_get_radio_mode(void *pcore_data, psRadioOff pRadioOffData);
+s8 sme_set_radio_mode(void *pcore_data, RadioOff RadioOffData);
+
+void sme_get_tx_power_level(void *pcore_data, u32 *TxPower);
+u8 sme_set_tx_power_level(void *pcore_data, u32 TxPower);
+void sme_get_antenna_count(void *pcore_data, u32 *AntennaCount);
+void sme_get_rx_antenna(void *pcore_data, u32 *RxAntenna);
+u8 sme_set_rx_antenna(void *pcore_data, u32 RxAntenna);
+void sme_get_tx_antenna(void *pcore_data, u32 *TxAntenna);
+s8 sme_set_tx_antenna(void *pcore_data, u32 TxAntenna);
+s8 sme_set_IBSS_chan(void *pcore_data, ChanInfo chan);
+
+//20061108 WPS
+s8 sme_set_IE_append(void *pcore_data, PUCHAR buffer, u16 buf_len);
+
+
+
+
+//================== Local functions ======================
+//#ifdef _HSINCHU
+//void drv_translate_rssi();   // HW RSSI bit -> NDIS RSSI representation
+//void drv_translate_bss_description(); // Local bss desc -> NDIS bss desc
+//void drv_translate_channel(u8 NetworkType, u8 ChannelNumber, u32 *freq); // channel number -> channel /freq.
+//#endif _HSINCHU
+//
+static const u32 PowerDbToMw[] =
+{
+	56,	//mW, MAX - 0,	17.5 dbm
+	40,	//mW, MAX - 1,	16.0 dbm
+	30,	//mW, MAX - 2,	14.8 dbm
+	20,	//mW, MAX - 3,	13.0 dbm
+	15,	//mW, MAX - 4,	11.8 dbm
+	12,	//mW, MAX - 5,	10.6 dbm
+	9,	//mW, MAX - 6,	 9.4 dbm
+	7,	//mW, MAX - 7,	 8.3 dbm
+	5,	//mW, MAX - 8,	 6.4 dbm
+	4,	//mW, MAX - 9,	 5.3 dbm
+	3,	//mW, MAX - 10,  4.0 dbm
+	2,	//mW, MAX - 11,  ? dbm
+	2,	//mW, MAX - 12,  ? dbm
+	2,	//mW, MAX - 13,  ? dbm
+	2,	//mW, MAX - 14,  ? dbm
+	2,	//mW, MAX - 15,  ? dbm
+	2,	//mW, MAX - 16,  ? dbm
+	2,	//mW, MAX - 17,  ? dbm
+	2,	//mW, MAX - 18,  ? dbm
+	1,	//mW, MAX - 19,  ? dbm
+	1,	//mW, MAX - 20,  ? dbm
+	1,	//mW, MAX - 21,  ? dbm
+	1,	//mW, MAX - 22,  ? dbm
+	1,	//mW, MAX - 23,  ? dbm
+	1,	//mW, MAX - 24,  ? dbm
+	1,	//mW, MAX - 25,  ? dbm
+	1,	//mW, MAX - 26,  ? dbm
+	1,	//mW, MAX - 27,  ? dbm
+	1,	//mW, MAX - 28,  ? dbm
+	1,	//mW, MAX - 29,  ? dbm
+	1,	//mW, MAX - 30,  ? dbm
+	1	//mW, MAX - 31,  ? dbm
+};
+
+
+
+
+
+#endif /* __SME_API_H__ */
+
+
diff --git a/drivers/staging/winbond/sme_s.h b/drivers/staging/winbond/sme_s.h
new file mode 100644
index 0000000..dfd2fbc
--- /dev/null
+++ b/drivers/staging/winbond/sme_s.h
@@ -0,0 +1,228 @@
+//
+// SME_S.H -
+// SME task global CONSTANTS, STRUCTURES, variables
+//
+
+//////////////////////////////////////////////////////////////////////////
+//define the msg type of SME module
+// 0x00~0x1F : MSG from GUI dispatch
+// 0x20~0x3F : MSG from MLME
+// 0x40~0x5F : MSG from SCAN
+// 0x60~0x6F : MSG from TX/RX
+// 0x70~0x7F : MSG from ROAMING
+// 0x80~0x8F : MSG from ISR
+// 0x90		 : MSG TimeOut
+
+// from GUI
+#define SMEMSG_SCAN_REQ					0x01
+//#define SMEMSG_PASSIVE_SCAN_REQ			0x02
+#define SMEMSG_JOIN_REQ					0x03
+#define SMEMSG_START_IBSS				0x04
+#define SMEMSG_DISCONNECT_REQ			0x05
+#define SMEMSG_AUTHEN_REQ				0x06
+#define SMEMSG_DEAUTHEN_REQ				0x07
+#define SMEMSG_ASSOC_REQ				0x08
+#define SMEMSG_REASSOC_REQ				0x09
+#define SMEMSG_DISASSOC_REQ				0x0a
+#define SMEMSG_POWERSAVE_REQ			0x0b
+
+
+// from MLME
+#define SMEMSG_AUTHEN_CFM				0x21
+#define SMEMSG_AUTHEN_IND				0x22
+#define SMEMSG_ASSOC_CFM				0x23
+#define SMEMSG_DEAUTHEN_IND				0x24
+#define SMEMSG_DISASSOC_IND				0x25
+// from SCAN
+#define SMEMSG_SCAN_CFM					0x41
+#define SMEMSG_START_IBSS_CFM			0x42
+// from MTO, function call to set SME parameters
+
+// 0x60~0x6F : MSG from TX/RX
+//#define SMEMSG_IBSS_JOIN_UPDATE_BSSID	0x61
+#define SMEMSG_COUNTERMEASURE_MICFAIL_TIMEOUT		0x62
+#define SMEMSG_COUNTERMEASURE_BLOCK_TIMEOUT	0x63
+// from ROAMING
+#define SMEMSG_HANDOVER_JOIN_REQ		0x71
+#define SMEMSG_END_ROAMING				0x72
+#define SMEMSG_SCAN_JOIN_REQ			0x73
+// from ISR
+#define SMEMSG_TSF_SYNC_IND				0x81
+// from TimeOut
+#define SMEMSG_TIMEOUT					0x91
+
+
+
+#define MAX_PMKID_Accunt                16
+//@added by ws 04/22/05
+#define Cipher_Disabled                 0
+#define Cipher_Wep                      1
+#define Cipher_Tkip                     2
+#define Cipher_Ccmp                     4
+
+
+///////////////////////////////////////////////////////////////////////////
+//Constants
+
+///////////////////////////////////////////////////////////////////////////
+//Global data structures
+
+#define NUMOFWEPENTRIES     64
+
+typedef enum _WEPKeyMode
+{
+    WEPKEY_DISABLED = 0,
+    WEPKEY_64       = 1,
+    WEPKEY_128      = 2
+
+} WEPKEYMODE, *pWEPKEYMODE;
+
+#ifdef _WPA2_
+
+typedef struct _BSSInfo
+{
+  u8        PreAuthBssID[6];
+  PMKID        pmkid_value;
+}BSSID_Info;
+
+typedef struct _PMKID_Table //added by ws 05/05/04
+{
+   u32  Length;
+   u32  BSSIDInfoCount;
+   BSSID_Info BSSIDInfo[16];
+
+} PMKID_Table;
+
+#endif //end def _WPA2_
+
+#define MAX_BASIC_RATE_SET          15
+#define MAX_OPT_RATE_SET            MAX_BASIC_RATE_SET
+
+
+typedef struct _SME_PARAMETERS
+{
+    u16				wState;
+	u8				boDUTmode;
+	u8				bDesiredPowerSave;
+
+	// SME timer and timeout value
+	//NDIS_MINIPORT_TIMER	nTimer;
+	OS_TIMER			nTimer;
+
+	u8				boInTimerHandler;
+	u8 				boAuthRetryActive;
+	u8				reserved_0[2];
+
+	u32				AuthenRetryTimerVal;	// NOTE: Assoc don't fail timeout
+	u32				JoinFailTimerVal;		// 10*Beacon-Interval
+
+	//Rates
+	u8				BSSBasicRateSet[(MAX_BASIC_RATE_SET + 3) & ~0x03 ];    // BSS basic rate set
+	u8				OperationalRateSet[(MAX_OPT_RATE_SET + 3) & ~0x03 ]; // Operational rate set
+
+	u8				NumOfBSSBasicRate;
+	u8				NumOfOperationalRate;
+	u8				reserved_1[2];
+
+	u32				BasicRateBitmap;
+	u32				OpRateBitmap;
+
+	// System parameters Set by GUI
+	//-------------------- start IBSS parameter ---------------------------//
+	u32				boStartIBSS;			//Start IBSS toggle
+
+	u16				wBeaconPeriod;
+	u16				wATIM_Window;
+
+	ChanInfo			IbssChan; // 2B	//channel setting when start IBSS
+	u8				reserved_2[2];
+
+    // Join related
+	u16				wDesiredJoinBSS;		// BSS index which desire to join
+	u8				boJoinReq;				//Join request toggle
+	u8				bDesiredBSSType;		//for Join request
+
+    u16				wCapabilityInfo;        // Used when invoking the MLME_Associate_request().
+	u16				wNonERPcapabilityInfo;
+
+    struct SSID_Element sDesiredSSID; // 34 B
+	u8				reserved_3[2];
+
+	u8    			abDesiredBSSID[MAC_ADDR_LENGTH + 2];
+
+	u8				bJoinScanCount;			// the time of scan-join action need to do
+	u8				bDesiredAuthMode;       // AUTH_OPEN_SYSTEM or AUTH_SHARED_KEY
+	u8				reserved_4[2];
+
+    // Encryption parameters
+	u8     			_dot11PrivacyInvoked;
+    u8             	_dot11PrivacyOptionImplemented;
+	u8				reserved_5[2];
+
+    //@ ws added
+    u8				DesiredEncrypt;
+	u8				encrypt_status;	//ENCRYPT_DISABLE, ENCRYPT_WEP, ENCRYPT_WEP_NOKEY, ENCRYPT_TKIP, ...
+	u8				key_length;
+	u8				pairwise_key_ok;
+
+	u8				group_key_ok;
+    u8				wpa_ok;             // indicate the control port of 802.1x is open or close
+	u8				pairwise_key_type;
+	u8				group_key_type;
+
+    u32               _dot11WEPDefaultKeyID;
+
+	u8              	tx_mic_key[8];      // TODO: 0627 kevin-TKIP
+	u8              	rx_mic_key[8];      // TODO: 0627 kevin-TKIP
+	u8				group_tx_mic_key[8];
+	u8				group_rx_mic_key[8];
+
+//	#ifdef _WPA_
+	u8				AssocReqVarIE[200];
+	u8				AssocRespVarIE[200];
+
+	u16				AssocReqVarLen;
+	u16				AssocRespVarLen;
+	u8				boReassoc;				//use assoc. or reassoc.
+	u8				reserved_6[3];
+	u16				AssocRespCapability;
+	u16				AssocRespStatus;
+//	#endif
+
+	#ifdef _WPA2_
+    u8               PmkIdTable[256];
+    u32               PmkidTableIndex;
+	#endif //end def _WPA2_
+
+} SME_PARAMETERS, *PSME_PARAMETERS;
+
+#define psSME			(&(Adapter->sSmePara))
+
+#define wSMEGetCurrentSTAState(Adapter)		((u16)(Adapter)->sSmePara.wState)
+
+
+
+//+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
+//	SmeModule.h
+//		Define the related definitions of SME module
+//	history -- 01/14/03' created
+//
+//+++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++++
+
+//Define the state of SME module
+#define DISABLED						0
+#define INIT_SCAN						1
+#define SCAN_READY						2
+#define START_IBSS						3
+#define JOIN_PENDING					4
+#define JOIN_CFM						5
+#define AUTHENTICATE_PENDING			6
+#define AUTHENTICATED					7
+#define CONNECTED						8
+//#define EAP_STARTING					9
+//#define EAPOL_AUTHEN_PENDING			10
+//#define SECURE_CONNECTED				11
+
+
+// Static function
+
diff --git a/drivers/staging/winbond/wb35_ver.h b/drivers/staging/winbond/wb35_ver.h
new file mode 100644
index 0000000..2433bc0
--- /dev/null
+++ b/drivers/staging/winbond/wb35_ver.h
@@ -0,0 +1,30 @@
+//
+// Only define one of follow
+//
+
+#ifdef WB_WIN
+	#define VER_FILEVERSION             1,00,47,00
+	#define VER_FILEVERSION_STR         "1.00.47.00"
+	#define WB32_DRIVER_MAJOR_VERSION   0x0100
+	#define WB32_DRIVER_MINOR_VERSION   0x4700
+#endif
+
+#ifdef WB_CE
+	#define VER_FILEVERSION             2,00,47,00
+	#define VER_FILEVERSION_STR         "2.00.47.00"
+	#define WB32_DRIVER_MAJOR_VERSION   0x0200
+	#define WB32_DRIVER_MINOR_VERSION   0x4700
+#endif
+
+#ifdef WB_LINUX
+	#define VER_FILEVERSION             3,00,47,00
+	#define VER_FILEVERSION_STR         "3.00.47.00"
+	#define WB32_DRIVER_MAJOR_VERSION   0x0300
+	#define WB32_DRIVER_MINOR_VERSION   0x4700
+#endif
+
+
+
+
+
+
diff --git a/drivers/staging/winbond/wbhal.c b/drivers/staging/winbond/wbhal.c
new file mode 100644
index 0000000..daf4422
--- /dev/null
+++ b/drivers/staging/winbond/wbhal.c
@@ -0,0 +1,878 @@
+#include "os_common.h"
+
+void hal_get_ethernet_address( phw_data_t pHwData, PUCHAR current_address )
+{
+	if( pHwData->SurpriseRemove ) return;
+
+	memcpy( current_address, pHwData->CurrentMacAddress, ETH_LENGTH_OF_ADDRESS );
+}
+
+void hal_set_ethernet_address( phw_data_t pHwData, PUCHAR current_address )
+{
+	u32 ltmp[2];
+
+	if( pHwData->SurpriseRemove ) return;
+
+	memcpy( pHwData->CurrentMacAddress, current_address, ETH_LENGTH_OF_ADDRESS );
+
+	ltmp[0]= cpu_to_le32( *(PULONG)pHwData->CurrentMacAddress );
+	ltmp[1]= cpu_to_le32( *(PULONG)(pHwData->CurrentMacAddress + 4) ) & 0xffff;
+
+	Wb35Reg_BurstWrite( pHwData, 0x03e8, ltmp, 2, AUTO_INCREMENT );
+}
+
+void hal_get_permanent_address( phw_data_t pHwData, PUCHAR pethernet_address )
+{
+	if( pHwData->SurpriseRemove ) return;
+
+	memcpy( pethernet_address, pHwData->PermanentMacAddress, 6 );
+}
+
+u8 hal_init_hardware(phw_data_t pHwData, PWB32_ADAPTER Adapter)
+{
+	u16 SoftwareSet;
+	pHwData->Adapter = Adapter;
+
+	// Initial the variable
+	pHwData->MaxReceiveLifeTime = DEFAULT_MSDU_LIFE_TIME; // Setting Rx maximum MSDU life time
+	pHwData->FragmentThreshold = DEFAULT_FRAGMENT_THRESHOLD; // Setting default fragment threshold
+
+	if (WbUsb_initial(pHwData)) {
+		pHwData->InitialResource = 1;
+		if( Wb35Reg_initial(pHwData)) {
+			pHwData->InitialResource = 2;
+			if (Wb35Tx_initial(pHwData)) {
+				pHwData->InitialResource = 3;
+				if (Wb35Rx_initial(pHwData)) {
+					pHwData->InitialResource = 4;
+					OS_TIMER_INITIAL( &pHwData->LEDTimer, hal_led_control, pHwData );
+					OS_TIMER_SET( &pHwData->LEDTimer, 1000 ); // 20060623
+
+					//
+					// For restrict to vendor's hardware
+					//
+					SoftwareSet = hal_software_set( pHwData );
+
+					#ifdef Vendor2
+					// Try to make sure the EEPROM contain
+					SoftwareSet >>= 8;
+					if( SoftwareSet != 0x82 )
+						return FALSE;
+					#endif
+
+					Wb35Rx_start( pHwData );
+					Wb35Tx_EP2VM_start( pHwData );
+
+					return TRUE;
+				}
+			}
+		}
+	}
+
+	pHwData->SurpriseRemove = 1;
+	return FALSE;
+}
+
+
+void hal_halt(phw_data_t pHwData, void *ppa_data)
+{
+	switch( pHwData->InitialResource )
+	{
+		case 4:
+		case 3: OS_TIMER_CANCEL( &pHwData->LEDTimer, &cancel );
+			OS_SLEEP(100000); // Wait for Timer DPC exit 940623.2
+			Wb35Rx_destroy( pHwData ); // Release the Rx
+		case 2: Wb35Tx_destroy( pHwData ); // Release the Tx
+		case 1: Wb35Reg_destroy( pHwData ); // Release the Wb35 Regisster resources
+				WbUsb_destroy( pHwData );// Release the WbUsb
+	}
+}
+
+//---------------------------------------------------------------------------------------------------
+void hal_set_rates(phw_data_t pHwData, PUCHAR pbss_rates,
+		   u8 length, unsigned char basic_rate_set)
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+	u32		tmp, tmp1;
+	u8		Rate[12]={ 2, 4, 11, 22, 12, 18, 24, 36, 48, 72, 96, 108 };
+	u8		SupportedRate[16];
+	u8		i, j, k, Count1, Count2, Byte;
+
+	if( pHwData->SurpriseRemove ) return;
+
+	if (basic_rate_set) {
+		pWb35Reg->M28_MacControl &= ~0x000fff00;
+		tmp1 = 0x00000100;
+	} else {
+		pWb35Reg->M28_MacControl &= ~0xfff00000;
+		tmp1 = 0x00100000;
+	}
+
+	tmp = 0;
+	for (i=0; i<length; i++) {
+		Byte = pbss_rates[i] & 0x7f;
+		for (j=0; j<12; j++) {
+			if( Byte == Rate[j] )
+				break;
+		}
+
+		if (j < 12)
+			tmp |= (tmp1<<j);
+	}
+
+	pWb35Reg->M28_MacControl |= tmp;
+	Wb35Reg_Write( pHwData, 0x0828, pWb35Reg->M28_MacControl );
+
+	// 930206.2.c M78 setting
+	j = k = Count1 = Count2 = 0;
+	memset( SupportedRate, 0, 16 );
+	tmp = 0x00100000;
+	tmp1 = 0x00000100;
+	for (i=0; i<12; i++) { // Get the supported rate
+		if (tmp & pWb35Reg->M28_MacControl) {
+			SupportedRate[j] = Rate[i];
+
+			if (tmp1 & pWb35Reg->M28_MacControl)
+				SupportedRate[j] |= 0x80;
+
+			if (k)
+				Count2++;
+			else
+				Count1++;
+
+			j++;
+		}
+
+		if (i==4 && k==0) {
+			if( !(pWb35Reg->M28_MacControl & 0x000ff000) ) // if basic rate in 11g domain)
+			{
+				k = 1;
+				j = 8;
+			}
+		}
+
+		tmp <<= 1;
+		tmp1 <<= 1;
+	}
+
+	// Fill data into support rate until buffer full
+	//---20060926 add by anson's endian
+	for (i=0; i<4; i++)
+		*(PULONG)(SupportedRate+(i<<2)) = cpu_to_le32( *(PULONG)(SupportedRate+(i<<2)) );
+	//--- end 20060926 add by anson's endian
+	Wb35Reg_BurstWrite( pHwData,0x087c, (PULONG)SupportedRate, 4, AUTO_INCREMENT );
+	pWb35Reg->M7C_MacControl = ((PULONG)SupportedRate)[0];
+	pWb35Reg->M80_MacControl = ((PULONG)SupportedRate)[1];
+	pWb35Reg->M84_MacControl = ((PULONG)SupportedRate)[2];
+	pWb35Reg->M88_MacControl = ((PULONG)SupportedRate)[3];
+
+	// Fill length
+	tmp = Count1<<28 | Count2<<24;
+	pWb35Reg->M78_ERPInformation &= ~0xff000000;
+	pWb35Reg->M78_ERPInformation |= tmp;
+	Wb35Reg_Write( pHwData, 0x0878, pWb35Reg->M78_ERPInformation );
+}
+
+
+//---------------------------------------------------------------------------------------------------
+void hal_set_beacon_period(  phw_data_t pHwData,  u16 beacon_period )
+{
+	u32	tmp;
+
+	if( pHwData->SurpriseRemove ) return;
+
+	pHwData->BeaconPeriod = beacon_period;
+	tmp = pHwData->BeaconPeriod << 16;
+	tmp |= pHwData->ProbeDelay;
+	Wb35Reg_Write( pHwData, 0x0848, tmp );
+}
+
+
+void hal_set_current_channel_ex(  phw_data_t pHwData,  ChanInfo channel )
+{
+	PWB35REG pWb35Reg = &pHwData->Wb35Reg;
+
+	if( pHwData->SurpriseRemove )
+		return;
+
+	printk("Going to channel: %d/%d\n", channel.band, channel.ChanNo);
+
+	RFSynthesizer_SwitchingChannel( pHwData, channel );// Switch channel
+	pHwData->Channel = channel.ChanNo;
+	pHwData->band = channel.band;
+	#ifdef _PE_STATE_DUMP_
+	WBDEBUG(("Set channel is %d, band =%d\n", pHwData->Channel, pHwData->band));
+	#endif
+	pWb35Reg->M28_MacControl &= ~0xff; // Clean channel information field
+	pWb35Reg->M28_MacControl |= channel.ChanNo;
+	Wb35Reg_WriteWithCallbackValue( pHwData, 0x0828, pWb35Reg->M28_MacControl,
+					(PCHAR)&channel, sizeof(ChanInfo));
+}
+//---------------------------------------------------------------------------------------------------
+void hal_set_current_channel(  phw_data_t pHwData,  ChanInfo channel )
+{
+	hal_set_current_channel_ex( pHwData, channel );
+}
+//---------------------------------------------------------------------------------------------------
+void hal_get_current_channel(  phw_data_t pHwData,  ChanInfo *channel )
+{
+	channel->ChanNo = pHwData->Channel;
+	channel->band = pHwData->band;
+}
+//---------------------------------------------------------------------------------------------------
+void hal_set_accept_broadcast(  phw_data_t pHwData,  u8 enable )
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+
+	if( pHwData->SurpriseRemove ) return;
+
+	pWb35Reg->M00_MacControl &= ~0x02000000;//The HW value
+
+	if (enable)
+		pWb35Reg->M00_MacControl |= 0x02000000;//The HW value
+
+	Wb35Reg_Write( pHwData, 0x0800, pWb35Reg->M00_MacControl );
+}
+
+//for wep key error detection, we need to accept broadcast packets to be received temporary.
+void hal_set_accept_promiscuous( phw_data_t pHwData,  u8 enable)
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+
+	if (pHwData->SurpriseRemove) return;
+	if (enable) {
+		pWb35Reg->M00_MacControl |= 0x00400000;
+		Wb35Reg_Write( pHwData, 0x0800, pWb35Reg->M00_MacControl );
+	} else {
+		pWb35Reg->M00_MacControl&=~0x00400000;
+		Wb35Reg_Write( pHwData, 0x0800, pWb35Reg->M00_MacControl );
+	}
+}
+
+void hal_set_accept_multicast(  phw_data_t pHwData,  u8 enable )
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+
+	if( pHwData->SurpriseRemove ) return;
+
+	pWb35Reg->M00_MacControl &= ~0x01000000;//The HW value
+	if (enable)  pWb35Reg->M00_MacControl |= 0x01000000;//The HW value
+	Wb35Reg_Write( pHwData, 0x0800, pWb35Reg->M00_MacControl );
+}
+
+void hal_set_accept_beacon(  phw_data_t pHwData,  u8 enable )
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+
+	if( pHwData->SurpriseRemove ) return;
+
+	// 20040108 debug
+	if( !enable )//Due to SME and MLME are not suitable for 35
+		return;
+
+	pWb35Reg->M00_MacControl &= ~0x04000000;//The HW value
+	if( enable )
+		pWb35Reg->M00_MacControl |= 0x04000000;//The HW value
+
+	Wb35Reg_Write( pHwData, 0x0800, pWb35Reg->M00_MacControl );
+}
+//---------------------------------------------------------------------------------------------------
+void hal_set_multicast_address( phw_data_t pHwData, PUCHAR address, u8 number )
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+	u8		Byte, Bit;
+
+	if( pHwData->SurpriseRemove ) return;
+
+	//Erases and refills the card multicast registers. Used when an address
+	//    has been deleted and all bits must be recomputed.
+	pWb35Reg->M04_MulticastAddress1 = 0;
+	pWb35Reg->M08_MulticastAddress2 = 0;
+
+	while( number )
+	{
+		number--;
+		CardGetMulticastBit( (address+(number*ETH_LENGTH_OF_ADDRESS)), &Byte, &Bit);
+		pWb35Reg->Multicast[Byte] |= Bit;
+	}
+
+	// Updating register
+	Wb35Reg_BurstWrite( pHwData, 0x0804, (PULONG)pWb35Reg->Multicast, 2, AUTO_INCREMENT );
+}
+//---------------------------------------------------------------------------------------------------
+u8 hal_get_accept_beacon(  phw_data_t pHwData )
+{
+	PWB35REG pWb35Reg = &pHwData->Wb35Reg;
+
+	if( pHwData->SurpriseRemove ) return 0;
+
+	if( pWb35Reg->M00_MacControl & 0x04000000 )
+		return 1;
+	else
+		return 0;
+}
+
+unsigned char hal_reset_hardware( phw_data_t pHwData, void* ppa )
+{
+	// Not implement yet
+	return TRUE;
+}
+
+void hal_stop(  phw_data_t pHwData )
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+
+	pHwData->Wb35Rx.rx_halt = 1;
+	Wb35Rx_stop( pHwData );
+
+	pHwData->Wb35Tx.tx_halt = 1;
+	Wb35Tx_stop( pHwData );
+
+	pWb35Reg->D00_DmaControl &= ~0xc0000000;//Tx Off, Rx Off
+	Wb35Reg_Write( pHwData, 0x0400, pWb35Reg->D00_DmaControl );
+
+	WbUsb_Stop( pHwData ); // 20051230 Add.4
+}
+
+unsigned char hal_idle(phw_data_t pHwData)
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+	PWBUSB	pWbUsb = &pHwData->WbUsb;
+
+	if( !pHwData->SurpriseRemove && ( pWbUsb->DetectCount || pWb35Reg->EP0vm_state!=VM_STOP ) )
+		return FALSE;
+
+	return TRUE;
+}
+//---------------------------------------------------------------------------------------------------
+void hal_set_cwmin(  phw_data_t pHwData,  u8	cwin_min )
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+
+	if( pHwData->SurpriseRemove ) return;
+
+	pHwData->cwmin = cwin_min;
+	pWb35Reg->M2C_MacControl &= ~0x7c00;	//bit 10 ~ 14
+	pWb35Reg->M2C_MacControl |= (pHwData->cwmin<<10);
+	Wb35Reg_Write( pHwData, 0x082c, pWb35Reg->M2C_MacControl );
+}
+
+s32 hal_get_rssi(  phw_data_t pHwData,  u32 *HalRssiArry,  u8 Count )
+{
+	PWB35REG pWb35Reg = &pHwData->Wb35Reg;
+	R01_DESCRIPTOR	r01;
+	s32 ltmp = 0, tmp;
+	u8	i;
+
+	if( pHwData->SurpriseRemove ) return -200;
+	if( Count > MAX_ACC_RSSI_COUNT ) // Because the TS may use this funtion
+		Count = MAX_ACC_RSSI_COUNT;
+
+	// RSSI = C1 + C2 * (agc_state[7:0] + offset_map(lna_state[1:0]))
+	// C1 = -195, C2 = 0.66 = 85/128
+	for (i=0; i<Count; i++)
+	{
+		r01.value = HalRssiArry[i];
+		tmp = ((( r01.R01_AGC_state + pWb35Reg->LNAValue[r01.R01_LNA_state]) * 85 ) >>7 ) - 195;
+		ltmp += tmp;
+	}
+	ltmp /= Count;
+	if( pHwData->phy_type == RF_AIROHA_2230 ) ltmp -= 5; // 10;
+	if( pHwData->phy_type == RF_AIROHA_2230S ) ltmp -= 5; // 10; 20060420 Add this
+
+	//if( ltmp < -200 ) ltmp = -200;
+	if( ltmp < -110 ) ltmp = -110;// 1.0.24.0 For NJRC
+
+	return ltmp;
+}
+//----------------------------------------------------------------------------------------------------
+s32 hal_get_rssi_bss(  phw_data_t pHwData,  u16 idx,  u8 Count )
+{
+	PWB35REG pWb35Reg = &pHwData->Wb35Reg;
+	R01_DESCRIPTOR	r01;
+	s32 ltmp = 0, tmp;
+	u8	i, j;
+	PADAPTER	Adapter = pHwData->Adapter;
+//	u32 *HalRssiArry = psBSS(idx)->HalRssi;
+
+	if( pHwData->SurpriseRemove ) return -200;
+	if( Count > MAX_ACC_RSSI_COUNT ) // Because the TS may use this funtion
+		Count = MAX_ACC_RSSI_COUNT;
+
+	// RSSI = C1 + C2 * (agc_state[7:0] + offset_map(lna_state[1:0]))
+	// C1 = -195, C2 = 0.66 = 85/128
+#if 0
+	for (i=0; i<Count; i++)
+	{
+		r01.value = HalRssiArry[i];
+		tmp = ((( r01.R01_AGC_state + pWb35Reg->LNAValue[r01.R01_LNA_state]) * 85 ) >>7 ) - 195;
+		ltmp += tmp;
+	}
+#else
+	if (psBSS(idx)->HalRssiIndex == 0)
+		psBSS(idx)->HalRssiIndex = MAX_ACC_RSSI_COUNT;
+	j = (u8)psBSS(idx)->HalRssiIndex-1;
+
+	for (i=0; i<Count; i++)
+	{
+		r01.value = psBSS(idx)->HalRssi[j];
+		tmp = ((( r01.R01_AGC_state + pWb35Reg->LNAValue[r01.R01_LNA_state]) * 85 ) >>7 ) - 195;
+		ltmp += tmp;
+		if (j == 0)
+		{
+			j = MAX_ACC_RSSI_COUNT;
+		}
+		j--;
+	}
+#endif
+	ltmp /= Count;
+	if( pHwData->phy_type == RF_AIROHA_2230 ) ltmp -= 5; // 10;
+	if( pHwData->phy_type == RF_AIROHA_2230S ) ltmp -= 5; // 10; 20060420 Add this
+
+	//if( ltmp < -200 ) ltmp = -200;
+	if( ltmp < -110 ) ltmp = -110;// 1.0.24.0 For NJRC
+
+	return ltmp;
+}
+
+//---------------------------------------------------------------------------
+void hal_led_control_1a(  phw_data_t pHwData )
+{
+	hal_led_control( NULL, pHwData, NULL, NULL );
+}
+
+void hal_led_control(  void* S1,  phw_data_t pHwData,  void* S3,  void* S4 )
+{
+	PADAPTER	Adapter = pHwData->Adapter;
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+	u32	LEDSet = (pHwData->SoftwareSet & HAL_LED_SET_MASK) >> HAL_LED_SET_SHIFT;
+	u8	LEDgray[20] = { 0,3,4,6,8,10,11,12,13,14,15,14,13,12,11,10,8,6,4,2 };
+	u8	LEDgray2[30] = { 7,8,9,10,11,12,13,14,15,0,0,0,0,0,0,0,0,0,0,0,0,0,15,14,13,12,11,10,9,8 };
+	u32	TimeInterval = 500, ltmp, ltmp2;
+        ltmp=0;
+
+	if( pHwData->SurpriseRemove ) return;
+
+	if( pHwData->LED_control ) {
+		ltmp2 = pHwData->LED_control & 0xff;
+		if( ltmp2 == 5 ) // 5 is WPS mode
+		{
+			TimeInterval = 100;
+			ltmp2 = (pHwData->LED_control>>8) & 0xff;
+			switch( ltmp2 )
+			{
+				case 1: // [0.2 On][0.1 Off]...
+					pHwData->LED_Blinking %= 3;
+					ltmp = 0x1010; // Led 1 & 0 Green and Red
+					if( pHwData->LED_Blinking == 2 ) // Turn off
+						ltmp = 0;
+					break;
+				case 2: // [0.1 On][0.1 Off]...
+					pHwData->LED_Blinking %= 2;
+					ltmp = 0x0010; // Led 0 red color
+					if( pHwData->LED_Blinking ) // Turn off
+						ltmp = 0;
+					break;
+				case 3: // [0.1 On][0.1 Off][0.1 On][0.1 Off][0.1 On][0.1 Off][0.1 On][0.1 Off][0.1 On][0.1 Off][0.5 Off]...
+					pHwData->LED_Blinking %= 15;
+					ltmp = 0x0010; // Led 0 red color
+					if( (pHwData->LED_Blinking >= 9) || (pHwData->LED_Blinking%2) ) // Turn off 0.6 sec
+						ltmp = 0;
+					break;
+				case 4: // [300 On][ off ]
+					ltmp = 0x1000; // Led 1 Green color
+					if( pHwData->LED_Blinking >= 3000 )
+						ltmp = 0; // led maybe on after 300sec * 32bit counter overlap.
+					break;
+			}
+			pHwData->LED_Blinking++;
+
+			pWb35Reg->U1BC_LEDConfigure = ltmp;
+			if( LEDSet != 7 ) // Only 111 mode has 2 LEDs on PCB.
+			{
+				pWb35Reg->U1BC_LEDConfigure |= (ltmp &0xff)<<8; // Copy LED result to each LED control register
+				pWb35Reg->U1BC_LEDConfigure |= (ltmp &0xff00)>>8;
+			}
+			Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure );
+		}
+	}
+	else if( pHwData->CurrentRadioSw || pHwData->CurrentRadioHw ) // If radio off
+	{
+		if( pWb35Reg->U1BC_LEDConfigure & 0x1010 )
+		{
+			pWb35Reg->U1BC_LEDConfigure &= ~0x1010;
+			Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure );
+		}
+	}
+	else
+	{
+		switch( LEDSet )
+		{
+			case 4: // [100] Only 1 Led be placed on PCB and use pin 21 of IC. Use LED_0 for showing
+				if( !pHwData->LED_LinkOn ) // Blink only if not Link On
+				{
+					// Blinking if scanning is on progress
+					if( pHwData->LED_Scanning )
+					{
+						if( pHwData->LED_Blinking == 0 )
+						{
+							pWb35Reg->U1BC_LEDConfigure |= 0x10;
+							Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure ); // LED_0 On
+							pHwData->LED_Blinking = 1;
+							TimeInterval = 300;
+						}
+						else
+						{
+							pWb35Reg->U1BC_LEDConfigure &= ~0x10;
+							Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure ); // LED_0 Off
+							pHwData->LED_Blinking = 0;
+							TimeInterval = 300;
+						}
+					}
+					else
+					{
+						//Turn Off LED_0
+						if( pWb35Reg->U1BC_LEDConfigure & 0x10 )
+						{
+							pWb35Reg->U1BC_LEDConfigure &= ~0x10;
+							Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure ); // LED_0 Off
+						}
+					}
+				}
+				else
+				{
+					// Turn On LED_0
+					if( (pWb35Reg->U1BC_LEDConfigure & 0x10) == 0 )
+					{
+						pWb35Reg->U1BC_LEDConfigure |= 0x10;
+						Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure ); // LED_0 Off
+					}
+				}
+				break;
+
+			case 6: // [110] Only 1 Led be placed on PCB and use pin 21 of IC. Use LED_0 for showing
+				if( !pHwData->LED_LinkOn ) // Blink only if not Link On
+				{
+					// Blinking if scanning is on progress
+					if( pHwData->LED_Scanning )
+					{
+						if( pHwData->LED_Blinking == 0 )
+						{
+							pWb35Reg->U1BC_LEDConfigure &= ~0xf;
+							pWb35Reg->U1BC_LEDConfigure |= 0x10;
+							Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure ); // LED_0 On
+							pHwData->LED_Blinking = 1;
+							TimeInterval = 300;
+						}
+						else
+						{
+							pWb35Reg->U1BC_LEDConfigure &= ~0x1f;
+							Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure ); // LED_0 Off
+							pHwData->LED_Blinking = 0;
+							TimeInterval = 300;
+						}
+					}
+					else
+					{
+						// 20060901 Gray blinking if in disconnect state and not scanning
+						ltmp = pWb35Reg->U1BC_LEDConfigure;
+						pWb35Reg->U1BC_LEDConfigure &= ~0x1f;
+						if( LEDgray2[(pHwData->LED_Blinking%30)] )
+						{
+							pWb35Reg->U1BC_LEDConfigure |= 0x10;
+							pWb35Reg->U1BC_LEDConfigure |= LEDgray2[ (pHwData->LED_Blinking%30) ];
+						}
+						pHwData->LED_Blinking++;
+						if( pWb35Reg->U1BC_LEDConfigure != ltmp )
+							Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure ); // LED_0 Off
+						TimeInterval = 100;
+					}
+				}
+				else
+				{
+					// Turn On LED_0
+					if( (pWb35Reg->U1BC_LEDConfigure & 0x10) == 0 )
+					{
+						pWb35Reg->U1BC_LEDConfigure |= 0x10;
+						Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure ); // LED_0 Off
+					}
+				}
+				break;
+
+			case 5: // [101] Only 1 Led be placed on PCB and use LED_1 for showing
+				if( !pHwData->LED_LinkOn ) // Blink only if not Link On
+				{
+					// Blinking if scanning is on progress
+					if( pHwData->LED_Scanning )
+					{
+						if( pHwData->LED_Blinking == 0 )
+						{
+							pWb35Reg->U1BC_LEDConfigure |= 0x1000;
+							Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure ); // LED_1 On
+							pHwData->LED_Blinking = 1;
+							TimeInterval = 300;
+						}
+						else
+						{
+							pWb35Reg->U1BC_LEDConfigure &= ~0x1000;
+							Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure ); // LED_1 Off
+							pHwData->LED_Blinking = 0;
+							TimeInterval = 300;
+						}
+					}
+					else
+					{
+						//Turn Off LED_1
+						if( pWb35Reg->U1BC_LEDConfigure & 0x1000 )
+						{
+							pWb35Reg->U1BC_LEDConfigure &= ~0x1000;
+							Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure ); // LED_1 Off
+						}
+					}
+				}
+				else
+				{
+					// Is transmitting/receiving ??
+					if( (OS_CURRENT_RX_BYTE( Adapter ) != pHwData->RxByteCountLast ) ||
+						(OS_CURRENT_TX_BYTE( Adapter ) != pHwData->TxByteCountLast ) )
+					{
+						if( (pWb35Reg->U1BC_LEDConfigure & 0x3000) != 0x3000 )
+						{
+							pWb35Reg->U1BC_LEDConfigure |= 0x3000;
+							Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure ); // LED_1 On
+						}
+
+						// Update variable
+						pHwData->RxByteCountLast = OS_CURRENT_RX_BYTE( Adapter );
+						pHwData->TxByteCountLast = OS_CURRENT_TX_BYTE( Adapter );
+						TimeInterval = 200;
+					}
+					else
+					{
+						// Turn On LED_1 and blinking if transmitting/receiving
+						 if( (pWb35Reg->U1BC_LEDConfigure & 0x3000) != 0x1000 )
+						 {
+							 pWb35Reg->U1BC_LEDConfigure &= ~0x3000;
+							 pWb35Reg->U1BC_LEDConfigure |= 0x1000;
+							 Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure ); // LED_1 On
+						 }
+					}
+				}
+				break;
+
+			default: // Default setting. 2 LED be placed on PCB. LED_0: Link On LED_1 Active
+				if( (pWb35Reg->U1BC_LEDConfigure & 0x3000) != 0x3000 )
+				{
+					pWb35Reg->U1BC_LEDConfigure |= 0x3000;// LED_1 is always on and event enable
+					Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure );
+				}
+
+				if( pHwData->LED_Blinking )
+				{
+					// Gray blinking
+					pWb35Reg->U1BC_LEDConfigure &= ~0x0f;
+					pWb35Reg->U1BC_LEDConfigure |= 0x10;
+					pWb35Reg->U1BC_LEDConfigure |= LEDgray[ (pHwData->LED_Blinking-1)%20 ];
+					Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure );
+
+					pHwData->LED_Blinking += 2;
+					if( pHwData->LED_Blinking < 40 )
+						TimeInterval = 100;
+					else
+					{
+						pHwData->LED_Blinking = 0; // Stop blinking
+						pWb35Reg->U1BC_LEDConfigure &= ~0x0f;
+						Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure );
+					}
+					break;
+				}
+
+				if( pHwData->LED_LinkOn )
+				{
+					if( !(pWb35Reg->U1BC_LEDConfigure & 0x10) ) // Check the LED_0
+					{
+						//Try to turn ON LED_0 after gray blinking
+						pWb35Reg->U1BC_LEDConfigure |= 0x10;
+						pHwData->LED_Blinking = 1; //Start blinking
+						TimeInterval = 50;
+					}
+				}
+				else
+				{
+					if( pWb35Reg->U1BC_LEDConfigure & 0x10 ) // Check the LED_0
+					{
+						pWb35Reg->U1BC_LEDConfigure &= ~0x10;
+						Wb35Reg_Write( pHwData, 0x03bc, pWb35Reg->U1BC_LEDConfigure );
+					}
+				}
+				break;
+		}
+
+		//20060828.1 Active send null packet to avoid AP disconnect
+		if( pHwData->LED_LinkOn )
+		{
+			pHwData->NullPacketCount += TimeInterval;
+			if( pHwData->NullPacketCount >= DEFAULT_NULL_PACKET_COUNT )
+			{
+				pHwData->NullPacketCount = 0;
+			}
+		}
+	}
+
+	pHwData->time_count += TimeInterval;
+	Wb35Tx_CurrentTime( pHwData, pHwData->time_count ); // 20060928 add
+	OS_TIMER_SET( &pHwData->LEDTimer, TimeInterval ); // 20060623.1
+}
+
+
+void hal_set_phy_type(  phw_data_t pHwData,  u8 PhyType )
+{
+	pHwData->phy_type = PhyType;
+}
+
+void hal_get_phy_type(  phw_data_t pHwData,  u8 *PhyType )
+{
+	*PhyType = pHwData->phy_type;
+}
+
+void hal_reset_counter(  phw_data_t pHwData )
+{
+	pHwData->dto_tx_retry_count = 0;
+	pHwData->dto_tx_frag_count = 0;
+	memset( pHwData->tx_retry_count, 0, 8);
+}
+
+void hal_set_radio_mode( phw_data_t pHwData,  unsigned char radio_off)
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+
+	if( pHwData->SurpriseRemove ) return;
+
+	if (radio_off)	//disable Baseband receive off
+	{
+		pHwData->CurrentRadioSw = 1; // off
+		pWb35Reg->M24_MacControl &= 0xffffffbf;
+	}
+	else
+	{
+		pHwData->CurrentRadioSw = 0; // on
+		pWb35Reg->M24_MacControl |= 0x00000040;
+	}
+	Wb35Reg_Write( pHwData, 0x0824, pWb35Reg->M24_MacControl );
+}
+
+u8 hal_get_antenna_number(  phw_data_t pHwData )
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+
+	if ((pWb35Reg->BB2C & BIT(11)) == 0)
+		return 0;
+	else
+		return 1;
+}
+
+void hal_set_antenna_number(  phw_data_t pHwData, u8 number )
+{
+
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+
+	if (number == 1) {
+		pWb35Reg->BB2C |= BIT(11);
+	} else {
+		pWb35Reg->BB2C &= ~BIT(11);
+	}
+	Wb35Reg_Write( pHwData, 0x102c, pWb35Reg->BB2C );
+#ifdef _PE_STATE_DUMP_
+	WBDEBUG(("Current antenna number : %d\n", number));
+#endif
+}
+
+//----------------------------------------------------------------------------------------------------
+//0 : radio on; 1: radio off
+u8 hal_get_hw_radio_off(  phw_data_t pHwData )
+{
+	PWB35REG	pWb35Reg = &pHwData->Wb35Reg;
+
+	if( pHwData->SurpriseRemove ) return 1;
+
+	//read the bit16 of register U1B0
+	Wb35Reg_Read( pHwData, 0x3b0, &pWb35Reg->U1B0 );
+	if ((pWb35Reg->U1B0 & 0x00010000)) {
+		pHwData->CurrentRadioHw = 1;
+		return 1;
+	} else {
+		pHwData->CurrentRadioHw = 0;
+		return 0;
+	}
+}
+
+unsigned char hal_get_dxx_reg(  phw_data_t pHwData,  u16 number,  PULONG pValue )
+{
+	if( number < 0x1000 )
+		number += 0x1000;
+	return Wb35Reg_ReadSync( pHwData, number, pValue );
+}
+
+unsigned char hal_set_dxx_reg(  phw_data_t pHwData,  u16 number,  u32 value )
+{
+	unsigned char	ret;
+
+	if( number < 0x1000 )
+		number += 0x1000;
+	ret = Wb35Reg_WriteSync( pHwData, number, value );
+	return ret;
+}
+
+void hal_scan_status_indicate(phw_data_t pHwData, unsigned char IsOnProgress)
+{
+	if( pHwData->SurpriseRemove ) return;
+	pHwData->LED_Scanning = IsOnProgress ? 1 : 0;
+}
+
+void hal_system_power_change(phw_data_t pHwData, u32 PowerState)
+{
+	if( PowerState != 0 )
+	{
+		pHwData->SurpriseRemove = 1;
+		if( pHwData->WbUsb.IsUsb20 )
+			hal_stop( pHwData );
+	}
+	else
+	{
+		if( !pHwData->WbUsb.IsUsb20 )
+			hal_stop( pHwData );
+	}
+}
+
+void hal_surprise_remove(  phw_data_t pHwData )
+{
+	PADAPTER Adapter = pHwData->Adapter;
+	if (OS_ATOMIC_INC( Adapter, &pHwData->SurpriseRemoveCount ) == 1) {
+		#ifdef _PE_STATE_DUMP_
+		WBDEBUG(("Calling hal_surprise_remove\n"));
+		#endif
+		OS_STOP( Adapter );
+	}
+}
+
+void hal_rate_change(  phw_data_t pHwData ) // Notify the HAL rate is changing 20060613.1
+{
+	PADAPTER	Adapter = pHwData->Adapter;
+	u8		rate = CURRENT_TX_RATE;
+
+	BBProcessor_RateChanging( pHwData, rate );
+}
+
+void hal_set_rf_power(phw_data_t pHwData, u8 PowerIndex)
+{
+	RFSynthesizer_SetPowerIndex( pHwData, PowerIndex );
+}
+
+unsigned char hal_set_LED(phw_data_t pHwData, u32 Mode) // 20061108 for WPS led control
+{
+	pHwData->LED_Blinking = 0;
+	pHwData->LED_control = Mode;
+	OS_TIMER_SET( &pHwData->LEDTimer, 10 ); // 20060623
+	return TRUE;
+}
+
diff --git a/drivers/staging/winbond/wbhal_f.h b/drivers/staging/winbond/wbhal_f.h
new file mode 100644
index 0000000..fe25f97
--- /dev/null
+++ b/drivers/staging/winbond/wbhal_f.h
@@ -0,0 +1,122 @@
+//=====================================================================
+// Device related include
+//=====================================================================
+#ifdef WB_LINUX
+	#include "linux/wbusb_f.h"
+	#include "linux/wb35reg_f.h"
+	#include "linux/wb35tx_f.h"
+	#include "linux/wb35rx_f.h"
+#else
+	#include "wbusb_f.h"
+	#include "wb35reg_f.h"
+	#include "wb35tx_f.h"
+	#include "wb35rx_f.h"
+#endif
+
+//====================================================================================
+// Function declaration
+//====================================================================================
+void hal_remove_mapping_key(  phw_data_t pHwData,  PUCHAR pmac_addr );
+void hal_remove_default_key(  phw_data_t pHwData,  u32 index );
+unsigned char hal_set_mapping_key(  phw_data_t Adapter,  PUCHAR pmac_addr,  u8 null_key,  u8 wep_on,  PUCHAR ptx_tsc,  PUCHAR prx_tsc,  u8 key_type,  u8 key_len,  PUCHAR pkey_data );
+unsigned char hal_set_default_key(  phw_data_t Adapter,  u8 index,  u8 null_key,  u8 wep_on,  PUCHAR ptx_tsc,  PUCHAR prx_tsc,  u8 key_type,  u8 key_len,  PUCHAR pkey_data );
+void hal_clear_all_default_key(  phw_data_t pHwData );
+void hal_clear_all_group_key(  phw_data_t pHwData );
+void hal_clear_all_mapping_key(  phw_data_t pHwData );
+void hal_clear_all_key(  phw_data_t pHwData );
+void hal_get_ethernet_address(  phw_data_t pHwData,  PUCHAR current_address );
+void hal_set_ethernet_address(  phw_data_t pHwData,  PUCHAR current_address );
+void hal_get_permanent_address(  phw_data_t pHwData,  PUCHAR pethernet_address );
+unsigned char hal_init_hardware(  phw_data_t pHwData,  PADAPTER Adapter );
+void hal_set_power_save_mode(  phw_data_t pHwData,  unsigned char power_save,  unsigned char wakeup,  unsigned char dtim );
+void hal_get_power_save_mode(  phw_data_t pHwData,   PBOOLEAN pin_pwr_save );
+void hal_set_slot_time(  phw_data_t pHwData,  u8 type );
+#define hal_set_atim_window( _A, _ATM )
+void hal_set_rates(  phw_data_t pHwData,  PUCHAR pbss_rates,  u8 length,  unsigned char basic_rate_set );
+#define hal_set_basic_rates( _A, _R, _L ) hal_set_rates( _A, _R, _L, TRUE )
+#define hal_set_op_rates( _A, _R, _L ) hal_set_rates( _A, _R, _L, FALSE )
+void hal_start_bss(  phw_data_t pHwData,  u8 mac_op_mode );
+void hal_join_request(  phw_data_t pHwData,  u8 bss_type ); // 0:BSS STA 1:IBSS STA//
+void hal_stop_sync_bss(  phw_data_t pHwData );
+void hal_resume_sync_bss(  phw_data_t pHwData);
+void hal_set_aid(  phw_data_t pHwData,  u16 aid );
+void hal_set_bssid(  phw_data_t pHwData,  PUCHAR pbssid );
+void hal_get_bssid(  phw_data_t pHwData,  PUCHAR pbssid );
+void hal_set_beacon_period(  phw_data_t pHwData,  u16 beacon_period );
+void hal_set_listen_interval(  phw_data_t pHwData,  u16 listen_interval );
+void hal_set_cap_info(  phw_data_t pHwData,  u16 capability_info );
+void hal_set_ssid(  phw_data_t pHwData,  PUCHAR pssid,  u8 ssid_len );
+void hal_set_current_channel(  phw_data_t pHwData,  ChanInfo channel );
+void hal_set_current_channel_ex(  phw_data_t pHwData,  ChanInfo channel );
+void hal_get_current_channel(  phw_data_t pHwData,  ChanInfo *channel );
+void hal_set_accept_broadcast(  phw_data_t pHwData,  u8 enable );
+void hal_set_accept_multicast(  phw_data_t pHwData,  u8 enable );
+void hal_set_accept_beacon(  phw_data_t pHwData,  u8 enable );
+void hal_set_multicast_address(  phw_data_t pHwData,  PUCHAR address,  u8 number );
+u8 hal_get_accept_beacon(  phw_data_t pHwData );
+void hal_stop(  phw_data_t pHwData );
+void hal_halt(  phw_data_t pHwData, void *ppa_data );
+void hal_start_tx0(  phw_data_t pHwData );
+void hal_set_phy_type(  phw_data_t pHwData,  u8 PhyType );
+void hal_get_phy_type(  phw_data_t pHwData,  u8 *PhyType );
+unsigned char hal_reset_hardware(  phw_data_t pHwData,  void* ppa );
+void hal_set_cwmin(  phw_data_t pHwData,  u8	cwin_min );
+#define hal_get_cwmin( _A ) ( (_A)->cwmin )
+void hal_set_cwmax(  phw_data_t pHwData,  u16 cwin_max );
+#define hal_get_cwmax( _A ) ( (_A)->cwmax )
+void hal_set_rsn_wpa(  phw_data_t pHwData,  u32 * RSN_IE_Bitmap , u32 * RSN_OUI_type , unsigned char bDesiredAuthMode);
+//s32 hal_get_rssi(  phw_data_t pHwData,  u32 HalRssi );
+s32 hal_get_rssi(  phw_data_t pHwData,  u32 *HalRssiArry,  u8 Count );
+s32 hal_get_rssi_bss(  phw_data_t pHwData,  u16 idx,  u8 Count );
+void hal_set_connect_info(  phw_data_t pHwData,  unsigned char boConnect );
+u8 hal_get_est_sq3(  phw_data_t pHwData,  u8 Count );
+void hal_led_control_1a(  phw_data_t pHwData );
+void hal_led_control(  void* S1,  phw_data_t pHwData,  void* S3,  void* S4 );
+void hal_set_rf_power(  phw_data_t pHwData,  u8 PowerIndex ); // 20060621 Modify
+void hal_reset_counter(  phw_data_t pHwData );
+void hal_set_radio_mode(  phw_data_t pHwData,  unsigned char boValue);
+void hal_descriptor_indicate(  phw_data_t pHwData,  PDESCRIPTOR pDes );
+u8 hal_get_antenna_number(  phw_data_t pHwData );
+void hal_set_antenna_number(  phw_data_t pHwData, u8 number );
+u32 hal_get_bss_pk_cnt(  phw_data_t pHwData );
+#define hal_get_region_from_EEPROM( _A ) ( (_A)->Wb35Reg.EEPROMRegion )
+void hal_set_accept_promiscuous		(  phw_data_t pHwData,  u8 enable);
+#define hal_get_tx_buffer( _A, _B ) Wb35Tx_get_tx_buffer( _A, _B )
+u8 hal_get_hw_radio_off			(  phw_data_t pHwData );
+#define hal_software_set( _A )		(_A->SoftwareSet)
+#define hal_driver_init_OK( _A )	(_A->IsInitOK)
+#define hal_rssi_boundary_high( _A ) (_A->RSSI_high)
+#define hal_rssi_boundary_low( _A ) (_A->RSSI_low)
+#define hal_scan_interval( _A )		(_A->Scan_Interval)
+void hal_scan_status_indicate(  phw_data_t pHwData, u8 status);	// 0: complete, 1: in progress
+void hal_system_power_change(  phw_data_t pHwData, u32 PowerState ); // 20051230 -=D0 1=D1 ..
+void hal_surprise_remove(  phw_data_t pHwData );
+
+#define PHY_DEBUG( msg, args... )
+
+
+
+void hal_rate_change(  phw_data_t pHwData ); // Notify the HAL rate is changing 20060613.1
+unsigned char hal_get_dxx_reg(  phw_data_t pHwData,  u16 number,  PULONG pValue );
+unsigned char hal_set_dxx_reg(  phw_data_t pHwData,  u16 number,  u32 value );
+#define hal_get_time_count( _P )	(_P->time_count/10)	// return 100ms count
+#define hal_detect_error( _P )		(_P->WbUsb.DetectCount)
+unsigned char hal_set_LED(  phw_data_t pHwData,  u32 Mode ); // 20061108 for WPS led control
+
+//-------------------------------------------------------------------------
+// The follow function is unused for IS89C35
+//-------------------------------------------------------------------------
+#define hal_disable_interrupt(_A)
+#define hal_enable_interrupt(_A)
+#define hal_get_interrupt_type( _A)
+#define hal_get_clear_interrupt(_A)
+#define hal_ibss_disconnect(_A) hal_stop_sync_bss(_A)
+#define hal_join_request_stop(_A)
+unsigned char	hal_idle(  phw_data_t pHwData );
+#define pa_stall_execution( _A )	//OS_SLEEP( 1 )
+#define hw_get_cxx_reg( _A, _B, _C )
+#define hw_set_cxx_reg( _A, _B, _C )
+#define hw_get_dxx_reg( _A, _B, _C )	hal_get_dxx_reg( _A, _B, (PULONG)_C )
+#define hw_set_dxx_reg( _A, _B, _C )	hal_set_dxx_reg( _A, _B, (u32)_C )
+
+
diff --git a/drivers/staging/winbond/wbhal_s.h b/drivers/staging/winbond/wbhal_s.h
new file mode 100644
index 0000000..5b862ff
--- /dev/null
+++ b/drivers/staging/winbond/wbhal_s.h
@@ -0,0 +1,615 @@
+//[20040722 WK]
+#define HAL_LED_SET_MASK		0x001c	//20060901 Extend
+#define HAL_LED_SET_SHIFT		2
+
+//supported RF type
+#define RF_MAXIM_2825		0
+#define RF_MAXIM_2827		1
+#define RF_MAXIM_2828		2
+#define RF_MAXIM_2829		3
+#define RF_MAXIM_V1			15
+#define RF_AIROHA_2230		16
+#define RF_AIROHA_7230		17
+#define RF_AIROHA_2230S		18	// 20060420 Add this
+// #define RF_RFMD_2959		32	// 20060626 Remove all about RFMD
+#define RF_WB_242			33
+#define RF_WB_242_1			34	// 20060619.5 Add
+#define RF_DECIDE_BY_INF	255
+
+//----------------------------------------------------------------
+// The follow define connect to upper layer
+//	User must modify for connection between HAL and upper layer
+//----------------------------------------------------------------
+
+
+
+
+/////////////////////////////////////////////////////////////////////////////////////////////////////
+//================================================================================================
+// Common define
+//================================================================================================
+#define HAL_USB_MODE_BURST( _H )	(_H->SoftwareSet & 0x20 ) // Bit 5 20060901 Modify
+
+// Scan interval
+#define SCAN_MAX_CHNL_TIME				(50)
+
+// For TxL2 Frame typr recognise
+#define FRAME_TYPE_802_3_DATA			0
+#define FRAME_TYPE_802_11_MANAGEMENT		1
+#define FRAME_TYPE_802_11_MANAGEMENT_CHALLENGE  2
+#define FRAME_TYPE_802_11_CONTROL		3
+#define FRAME_TYPE_802_11_DATA			4
+#define FRAME_TYPE_PROMISCUOUS			5
+
+// The follow definition is used for convert the frame--------------------
+#define DOT_11_SEQUENCE_OFFSET		22 //Sequence control offset
+#define DOT_3_TYPE_OFFSET			12
+#define DOT_11_MAC_HEADER_SIZE		24
+#define DOT_11_SNAP_SIZE			6
+#define DOT_11_TYPE_OFFSET			30 //The start offset of 802.11 Frame. Type encapsulatuin.
+#define DEFAULT_SIFSTIME			10
+#define DEFAULT_FRAGMENT_THRESHOLD		2346 // No fragment
+#define DEFAULT_MSDU_LIFE_TIME			0xffff
+
+#define LONG_PREAMBLE_PLUS_PLCPHEADER_TIME						(144+48)
+#define SHORT_PREAMBLE_PLUS_PLCPHEADER_TIME 					(72+24)
+#define PREAMBLE_PLUS_SIGNAL_PLUS_SIGNALEXTENSION				(16+4+6)
+#define Tsym 4
+
+//  Frame Type of Bits (2, 3)---------------------------------------------
+#define MAC_TYPE_MANAGEMENT			0x00
+#define MAC_TYPE_CONTROL			0x04
+#define MAC_TYPE_DATA				0x08
+#define MASK_FRAGMENT_NUMBER		0x000F
+#define SEQUENCE_NUMBER_SHIFT		4
+
+#define  HAL_WOL_TYPE_WAKEUP_FRAME		0x01
+#define  HAL_WOL_TYPE_MAGIC_PACKET		0x02
+
+// 20040106 ADDED
+#define HAL_KEYTYPE_WEP40                       0
+#define HAL_KEYTYPE_WEP104                      1
+#define HAL_KEYTYPE_TKIP                        2 // 128 bit key
+#define HAL_KEYTYPE_AES_CCMP                    3 // 128 bit key
+
+// For VM state
+enum {
+	VM_STOP = 0,
+	VM_RUNNING,
+	VM_COMPLETED
+};
+
+// Be used for 802.11 mac header
+typedef struct _MAC_FRAME_CONTROL {
+	u8	mac_frame_info; // this is a combination of the protovl version, type and subtype
+	u8	to_ds:1;
+	u8	from_ds:1;
+	u8	more_frag:1;
+	u8	retry:1;
+	u8	pwr_mgt:1;
+	u8	more_data:1;
+	u8	WEP:1;
+	u8	order:1;
+} MAC_FRAME_CONTROL, *PMAC_FRAME_CONTROL;
+
+//-----------------------------------------------------
+// Normal Key table format
+//-----------------------------------------------------
+// The order of KEY index is MAPPING_KEY_START_INDEX > GROUP_KEY_START_INDEX
+#define MAX_KEY_TABLE				24	// 24 entry for storing key data
+#define GROUP_KEY_START_INDEX		4
+#define MAPPING_KEY_START_INDEX		8
+typedef struct _KEY_TABLE
+{
+	u32	DW0_Valid:1;
+	u32	DW0_NullKey:1;
+	u32	DW0_Security_Mode:2;//0:WEP 40 bit 1:WEP 104 bit 2:TKIP 128 bit 3:CCMP 128 bit
+	u32	DW0_WEPON:1;
+	u32	DW0_RESERVED:11;
+	u32	DW0_Address1:16;
+
+	u32	DW1_Address2;
+
+	u32	DW2_RxSequenceCount1;
+
+	u32	DW3_RxSequenceCount2:16;
+	u32	DW3_RESERVED:16;
+
+	u32	DW4_TxSequenceCount1;
+
+	u32	DW5_TxSequenceCount2:16;
+	u32	DW5_RESERVED:16;
+
+} KEY_TABLE, *PKEY_TABLE;
+
+//--------------------------------------------------------
+// 			 Descriptor
+//--------------------------------------------------------
+#define MAX_DESCRIPTOR_BUFFER_INDEX	8	// Have to multiple of 2
+//#define FLAG_ERROR_TX_MASK			cpu_to_le32(0x000000bf) //20061009 marked by anson's endian
+#define FLAG_ERROR_TX_MASK			0x000000bf  //20061009 anson's endian
+//#define FLAG_ERROR_RX_MASK			0x00000c3f
+//#define FLAG_ERROR_RX_MASK			cpu_to_le32(0x0000083f)	//20061009 marked by anson's endian
+									//Don't care replay error,
+												//it is handled by S/W
+#define FLAG_ERROR_RX_MASK			0x0000083f	//20060926 anson's endian
+
+#define FLAG_BAND_RX_MASK			0x10000000	//Bit 28
+
+typedef struct _R00_DESCRIPTOR
+{
+	union
+	{
+		u32	value;
+		#ifdef _BIG_ENDIAN_  //20060926 anson's endian
+		struct
+		{
+			u32	R00_packet_or_buffer_status:1;
+			u32	R00_packet_in_fifo:1;
+			u32	R00_RESERVED:2;
+			u32	R00_receive_byte_count:12;
+			u32	R00_receive_time_index:16;
+		};
+		#else
+		struct
+		{
+			u32	R00_receive_time_index:16;
+			u32	R00_receive_byte_count:12;
+			u32	R00_RESERVED:2;
+			u32	R00_packet_in_fifo:1;
+			u32	R00_packet_or_buffer_status:1;
+		};
+		#endif
+	};
+} R00_DESCRIPTOR, *PR00_DESCRIPTOR;
+
+typedef struct _T00_DESCRIPTOR
+{
+	union
+	{
+		u32	value;
+		#ifdef _BIG_ENDIAN_  //20061009 anson's endian
+		struct
+		{
+			u32	T00_first_mpdu:1; // for hardware use
+			u32	T00_last_mpdu:1; // for hardware use
+			u32	T00_IsLastMpdu:1;// 0: not   1:Yes for software used
+			u32	T00_IgnoreResult:1;// The same mechanism with T00 setting. 050111 Modify for TS
+			u32	T00_RESERVED_ID:2;//3 bit ID reserved
+			u32	T00_tx_packet_id:4;//930519.4.e 930810.3.c
+			u32	T00_RESERVED:4;
+			u32	T00_header_length:6;
+			u32	T00_frame_length:12;
+		};
+		#else
+		struct
+		{
+			u32	T00_frame_length:12;
+			u32	T00_header_length:6;
+			u32	T00_RESERVED:4;
+			u32	T00_tx_packet_id:4;//930519.4.e 930810.3.c
+			u32	T00_RESERVED_ID:2;//3 bit ID reserved
+			u32	T00_IgnoreResult:1;// The same mechanism with T00 setting. 050111 Modify for TS
+			u32	T00_IsLastMpdu:1;// 0: not   1:Yes for software used
+			u32	T00_last_mpdu:1; // for hardware use
+			u32	T00_first_mpdu:1; // for hardware use
+		};
+		#endif
+	};
+} T00_DESCRIPTOR, *PT00_DESCRIPTOR;
+
+typedef struct _R01_DESCRIPTOR
+{
+	union
+	{
+		u32	value;
+		#ifdef _BIG_ENDIAN_ //20060926 add by anson's endian
+		struct
+		{
+			u32	R01_RESERVED:3;
+			u32	R01_mod_type:1;
+			u32	R01_pre_type:1;
+			u32	R01_data_rate:3;
+			u32	R01_AGC_state:8;
+			u32	R01_LNA_state:2;
+			u32	R01_decryption_method:2;
+			u32	R01_mic_error:1;
+			u32	R01_replay:1;
+			u32	R01_broadcast_frame:1;
+			u32	R01_multicast_frame:1;
+			u32	R01_directed_frame:1;
+			u32	R01_receive_frame_antenna_selection:1;
+			u32	R01_frame_receive_during_atim_window:1;
+			u32	R01_protocol_version_error:1;
+			u32	R01_authentication_frame_icv_error:1;
+			u32	R01_null_key_to_authentication_frame:1;
+			u32	R01_icv_error:1;
+			u32	R01_crc_error:1;
+		};
+		#else
+		struct
+		{
+			u32	R01_crc_error:1;
+			u32	R01_icv_error:1;
+			u32	R01_null_key_to_authentication_frame:1;
+			u32	R01_authentication_frame_icv_error:1;
+			u32	R01_protocol_version_error:1;
+			u32	R01_frame_receive_during_atim_window:1;
+			u32	R01_receive_frame_antenna_selection:1;
+			u32	R01_directed_frame:1;
+			u32	R01_multicast_frame:1;
+			u32	R01_broadcast_frame:1;
+			u32	R01_replay:1;
+			u32	R01_mic_error:1;
+			u32	R01_decryption_method:2;
+			u32	R01_LNA_state:2;
+			u32	R01_AGC_state:8;
+			u32	R01_data_rate:3;
+			u32	R01_pre_type:1;
+			u32	R01_mod_type:1;
+			u32	R01_RESERVED:3;
+		};
+		#endif
+	};
+} R01_DESCRIPTOR, *PR01_DESCRIPTOR;
+
+typedef struct _T01_DESCRIPTOR
+{
+	union
+	{
+		u32	value;
+		#ifdef _BIG_ENDIAN_ //20061009 anson's endian
+		struct
+		{
+			u32	T01_rts_cts_duration:16;
+			u32	T01_fall_back_rate:3;
+			u32	T01_add_rts:1;
+			u32	T01_add_cts:1;
+			u32	T01_modulation_type:1;
+			u32	T01_plcp_header_length:1;
+			u32	T01_transmit_rate:3;
+			u32	T01_wep_id:2;
+			u32	T01_add_challenge_text:1;
+			u32	T01_inhibit_crc:1;
+			u32	T01_loop_back_wep_mode:1;
+			u32	T01_retry_abort_ebable:1;
+		};
+		#else
+		struct
+		{
+			u32	T01_retry_abort_ebable:1;
+			u32	T01_loop_back_wep_mode:1;
+			u32	T01_inhibit_crc:1;
+			u32	T01_add_challenge_text:1;
+			u32	T01_wep_id:2;
+			u32	T01_transmit_rate:3;
+			u32	T01_plcp_header_length:1;
+			u32	T01_modulation_type:1;
+			u32	T01_add_cts:1;
+			u32	T01_add_rts:1;
+			u32	T01_fall_back_rate:3;
+			u32	T01_rts_cts_duration:16;
+		};
+		#endif
+	};
+} T01_DESCRIPTOR, *PT01_DESCRIPTOR;
+
+typedef struct _T02_DESCRIPTOR
+{
+	union
+	{
+		u32	value;
+		#ifdef _BIG_ENDIAN_  //20061009 add by anson's endian
+		struct
+		{
+			u32	T02_IsLastMpdu:1;// The same mechanism with T00 setting
+			u32	T02_IgnoreResult:1;// The same mechanism with T00 setting. 050111 Modify for TS
+			u32	T02_RESERVED_ID:2;// The same mechanism with T00 setting
+			u32	T02_Tx_PktID:4;
+			u32	T02_MPDU_Cnt:4;
+			u32	T02_RTS_Cnt:4;
+			u32	T02_RESERVED:7;
+			u32	T02_transmit_complete:1;
+			u32	T02_transmit_abort_due_to_TBTT:1;
+			u32	T02_effective_transmission_rate:1;
+			u32	T02_transmit_without_encryption_due_to_wep_on_false:1;
+			u32	T02_discard_due_to_null_wep_key:1;
+			u32	T02_RESERVED_1:1;
+			u32	T02_out_of_MaxTxMSDULiftTime:1;
+			u32	T02_transmit_abort:1;
+			u32	T02_transmit_fail:1;
+		};
+		#else
+		struct
+		{
+			u32	T02_transmit_fail:1;
+			u32	T02_transmit_abort:1;
+			u32	T02_out_of_MaxTxMSDULiftTime:1;
+			u32	T02_RESERVED_1:1;
+			u32	T02_discard_due_to_null_wep_key:1;
+			u32	T02_transmit_without_encryption_due_to_wep_on_false:1;
+			u32	T02_effective_transmission_rate:1;
+			u32	T02_transmit_abort_due_to_TBTT:1;
+			u32	T02_transmit_complete:1;
+			u32	T02_RESERVED:7;
+			u32	T02_RTS_Cnt:4;
+			u32	T02_MPDU_Cnt:4;
+			u32	T02_Tx_PktID:4;
+			u32	T02_RESERVED_ID:2;// The same mechanism with T00 setting
+			u32	T02_IgnoreResult:1;// The same mechanism with T00 setting. 050111 Modify for TS
+			u32	T02_IsLastMpdu:1;// The same mechanism with T00 setting
+		};
+		#endif
+	};
+} T02_DESCRIPTOR, *PT02_DESCRIPTOR;
+
+typedef struct _DESCRIPTOR {		// Skip length = 8 DWORD
+	// ID for descriptor ---, The field doesn't be cleard in the operation of Descriptor definition
+	u8	Descriptor_ID;
+	//----------------------The above region doesn't be cleared by DESCRIPTOR_RESET------
+	u8	RESERVED[3];
+
+	u16	FragmentThreshold;
+	u8	InternalUsed;//Only can be used by operation of descriptor definition
+	u8	Type;// 0: 802.3	1:802.11 data frame	2:802.11 management frame
+
+	u8	PreambleMode;// 0: short 1:long
+	u8	TxRate;
+	u8	FragmentCount;
+	u8	EapFix; // For speed up key install
+
+	// For R00 and T00 ----------------------------------------------
+	union
+	{
+		R00_DESCRIPTOR	R00;
+		T00_DESCRIPTOR	T00;
+	};
+
+	// For R01 and T01 ----------------------------------------------
+	union
+	{
+		R01_DESCRIPTOR	R01;
+		T01_DESCRIPTOR	T01;
+	};
+
+	// For R02 and T02 ----------------------------------------------
+	union
+	{
+		u32			R02;
+		T02_DESCRIPTOR	T02;
+	};
+
+	// For R03 and T03 ----------------------------------------------
+	// For software used
+	union
+	{
+		u32	R03;
+		u32	T03;
+		struct
+		{
+			u8	buffer_number;
+			u8	buffer_start_index;
+			u16	buffer_total_size;
+		};
+	};
+
+	// For storing the buffer
+	u16	buffer_size[ MAX_DESCRIPTOR_BUFFER_INDEX ];
+	void*	buffer_address[ MAX_DESCRIPTOR_BUFFER_INDEX ];//931130.4.q
+
+} DESCRIPTOR, *PDESCRIPTOR;
+
+
+#define DEFAULT_NULL_PACKET_COUNT		180000	//20060828.1 Add. 180 seconds
+
+#define MAX_TXVGA_EEPROM	9	//How many word(u16) of EEPROM will be used for TxVGA
+#define MAX_RF_PARAMETER	32
+
+typedef struct _TXVGA_FOR_50 {
+	u8	ChanNo;
+	u8	TxVgaValue;
+} TXVGA_FOR_50;
+
+
+//=====================================================================
+// Device related include
+//=====================================================================
+
+#include "linux/wbusb_s.h"
+#include "linux/wb35reg_s.h"
+#include "linux/wb35tx_s.h"
+#include "linux/wb35rx_s.h"
+
+
+// For Hal using ==================================================================
+typedef struct _HW_DATA_T
+{
+	// For compatible with 33
+	u32	revision;
+	u32	BB3c_cal; // The value for Tx calibration comes from EEPROM
+	u32	BB54_cal; // The value for Rx calibration comes from EEPROM
+
+
+	// For surprise remove
+	u32	SurpriseRemove; // 0: Normal 1: Surprise remove
+	u8	InitialResource;
+	u8	IsKeyPreSet;
+	u8	CalOneTime; // 20060630.1
+
+	u8	VCO_trim;
+
+	// For Fix 1'st DMA bug
+	u32	FragCount;
+	u32	DMAFix; //V1_DMA_FIX The variable can be removed if driver want to save mem space for V2.
+
+	//=======================================================================================
+	// For USB driver, hal need more variables. Due to
+	//	1. NDIS-WDM operation
+	//	2. The SME, MLME and OLD MDS need Adapter structure, but the driver under HAL doesn't
+	//		have that parameter when receiving and indicating packet.
+	//		The MDS must input the Adapter pointer as the second parameter of hal_init_hardware.
+	//		The function usage is different than PCI driver.
+	//=======================================================================================
+	void* Adapter;
+
+	//===============================================
+	// Definition for MAC address
+	//===============================================
+	u8		PermanentMacAddress[ETH_LENGTH_OF_ADDRESS + 2]; // The Enthernet addr that are stored in EEPROM.  + 2 to 8-byte alignment
+	u8		CurrentMacAddress[ETH_LENGTH_OF_ADDRESS + 2]; // The Enthernet addr that are in used.  + 2 to 8-byte alignment
+
+	//=====================================================================
+	// Definition for 802.11
+	//=====================================================================
+	PUCHAR	bssid_pointer; // Used by hal_get_bssid for return value
+	u8	bssid[8];// Only 6 byte will be used. 8 byte is required for read buffer
+	u8	ssid[32];// maximum ssid length is 32 byte
+
+	u16	AID;
+	u8	ssid_length;
+	u8	Channel;
+
+	u16	ListenInterval;
+	u16	CapabilityInformation;
+
+	u16	BeaconPeriod;
+	u16	ProbeDelay;
+
+	u8	bss_type;// 0: IBSS_NET or 1:ESS_NET
+	u8	preamble;// 0: short preamble, 1: long preamble
+	u8	slot_time_select;// 9 or 20 value
+	u8	phy_type;// Phy select
+
+	u32	phy_para[MAX_RF_PARAMETER];
+	u32	phy_number;
+
+	u32	CurrentRadioSw; // 20060320.2 0:On 1:Off
+	u32	CurrentRadioHw; // 20060825 0:On 1:Off
+
+	PUCHAR	power_save_point;  // Used by hal_get_power_save_mode for return value
+	u8	cwmin;
+	u8	desired_power_save;
+	u8	dtim;// Is running dtim
+	u8	mapping_key_replace_index;//In Key table, the next index be replaced 931130.4.r
+
+	u16	MaxReceiveLifeTime;
+	u16	FragmentThreshold;
+	u16	FragmentThreshold_tmp;
+	u16	cwmax;
+
+	u8	Key_slot[MAX_KEY_TABLE][8]; //Ownership record for key slot. For Alignment
+	u32	Key_content[MAX_KEY_TABLE][12]; // 10DW for each entry + 2 for burst command( Off and On valid bit)
+	u8	CurrentDefaultKeyIndex;
+	u32	CurrentDefaultKeyLength;
+
+	//========================================================================
+	// Variable for each module
+	//========================================================================
+	WBUSB		WbUsb; // Need WbUsb.h
+	WB35REG		Wb35Reg; // Need Wb35Reg.h
+	WB35TX		Wb35Tx; // Need Wb35Tx.h
+	WB35RX		Wb35Rx; // Need Wb35Rx.h
+
+	OS_TIMER	LEDTimer;// For LED
+
+	u32		LEDpoint;// For LED
+
+    u32         dto_tx_retry_count;         // LA20040210_DTO kevin
+    u32         dto_tx_frag_count;          // LA20040210_DTO kevin
+    u32         rx_ok_count[13];    // index=0: total rx ok
+    //u32         rx_ok_bytes[13];    // index=0, total rx ok bytes
+    u32         rx_err_count[13];   // index=0: total rx err
+
+	//for Tx debug
+	u32			tx_TBTT_start_count;
+	u32			tx_ETR_count;
+	u32			tx_WepOn_false_count;
+	u32			tx_Null_key_count;
+	u32			tx_retry_count[8];
+
+	u8		PowerIndexFromEEPROM; // For 2412MHz
+	u8		power_index;
+	u8		IsWaitJoinComplete;	// TRUE: set join request
+	u8		band;
+
+	u16		SoftwareSet;
+	u16		Reserved_s;
+
+	u32		IsInitOK; // 0: Driver starting   1: Driver init OK
+
+	// For Phy calibration
+    s32		iq_rsdl_gain_tx_d2;
+    s32		iq_rsdl_phase_tx_d2;
+	u32		txvga_setting_for_cal; // 20060703.1 Add
+
+	u8		TxVgaSettingInEEPROM[ (((MAX_TXVGA_EEPROM*2)+3) & ~0x03) ]; // 20060621 For backup EEPROM value
+	u8		TxVgaFor24[16]; // Max is 14, 2 for alignment
+	TXVGA_FOR_50	TxVgaFor50[36];	// 35 channels in 5G. 35x2 = 70 byte. 2 for alignments
+
+	u16		Scan_Interval;
+	u16		RESERVED6;
+
+	// LED control
+	u32		LED_control;
+		// LED_control 4 byte: Gray_Led_1[3]		Gray_Led_0[2]		Led[1]			Led[0]
+		// Gray_Led
+		//		For Led gray setting
+		// Led
+		//		0: normal control, LED behavior will decide by EEPROM setting
+		//		1: Turn off specific LED
+		//		2: Always on specific LED
+		//		3: slow blinking specific LED
+		//		4: fast blinking specific LED
+		//		5: WPS led control is set. Led0 is Red, Led1 id Green
+		//			Led[1] is parameter for WPS LED mode
+		//				 // 1:InProgress  2: Error 3: Session overlap 4: Success 20061108 control
+
+	u32		LED_LinkOn;		//Turn LED on control
+	u32		LED_Scanning;	// Let LED in scan process control
+	u32		LED_Blinking; // Temp variable for shining
+	u32		RxByteCountLast;
+	u32		TxByteCountLast;
+
+	s32		SurpriseRemoveCount;
+
+	// For global timer
+	u32		time_count;//TICK_TIME_100ms 1 = 100ms
+
+	// For error recover
+	u32		HwStop;
+
+	// 20060828.1 for avoid AP disconnect
+	u32		NullPacketCount;
+
+} hw_data_t, *phw_data_t;
+
+// The mapping of Rx and Tx descriptor field
+typedef struct _HAL_RATE
+{
+	// DSSS
+	u32	RESERVED_0;
+	u32   NumRate2MS;
+	u32   NumRate55MS;
+	u32   NumRate11MS;
+
+	u32	RESERVED_1[4];
+
+	u32   NumRate1M;
+	u32   NumRate2ML;
+	u32   NumRate55ML;
+	u32   NumRate11ML;
+
+	u32	RESERVED_2[4];
+
+	// OFDM
+	u32   NumRate6M;
+	u32   NumRate9M;
+	u32   NumRate12M;
+	u32   NumRate18M;
+	u32   NumRate24M;
+	u32   NumRate36M;
+	u32   NumRate48M;
+	u32   NumRate54M;
+} HAL_RATE, *PHAL_RATE;
+
+
diff --git a/drivers/staging/winbond/wblinux.c b/drivers/staging/winbond/wblinux.c
new file mode 100644
index 0000000..2eade5a
--- /dev/null
+++ b/drivers/staging/winbond/wblinux.c
@@ -0,0 +1,277 @@
+//============================================================================
+//  Copyright (c) 1996-2005 Winbond Electronic Corporation
+//
+//  Module Name:
+//    wblinux.c
+//
+//  Abstract:
+//    Linux releated routines
+//
+//============================================================================
+#include "os_common.h"
+
+u32
+WBLINUX_MemoryAlloc(void* *VirtualAddress, u32 Length)
+{
+	*VirtualAddress = kzalloc( Length, GFP_ATOMIC ); //GFP_KERNEL is not suitable
+
+	if (*VirtualAddress == NULL)
+		return 0;
+	return 1;
+}
+
+s32
+EncapAtomicInc(PADAPTER Adapter, void* pAtomic)
+{
+	PWBLINUX pWbLinux = &Adapter->WbLinux;
+	u32	ltmp;
+	PULONG	pltmp = (PULONG)pAtomic;
+	OS_SPIN_LOCK_ACQUIRED( &pWbLinux->AtomicSpinLock );
+	(*pltmp)++;
+	ltmp = (*pltmp);
+	OS_SPIN_LOCK_RELEASED( &pWbLinux->AtomicSpinLock );
+	return ltmp;
+}
+
+s32
+EncapAtomicDec(PADAPTER Adapter, void* pAtomic)
+{
+	PWBLINUX pWbLinux = &Adapter->WbLinux;
+	u32	ltmp;
+	PULONG	pltmp = (PULONG)pAtomic;
+	OS_SPIN_LOCK_ACQUIRED( &pWbLinux->AtomicSpinLock );
+	(*pltmp)--;
+	ltmp = (*pltmp);
+	OS_SPIN_LOCK_RELEASED( &pWbLinux->AtomicSpinLock );
+	return ltmp;
+}
+
+unsigned char
+WBLINUX_Initial(PADAPTER Adapter)
+{
+	PWBLINUX pWbLinux = &Adapter->WbLinux;
+
+	OS_SPIN_LOCK_ALLOCATE( &pWbLinux->SpinLock );
+	OS_SPIN_LOCK_ALLOCATE( &pWbLinux->AtomicSpinLock );
+	return TRUE;
+}
+
+void
+WBLinux_ReceivePacket(PADAPTER Adapter, PRXLAYER1 pRxLayer1)
+{
+	BUG();
+}
+
+
+void
+WBLINUX_GetNextPacket(PADAPTER Adapter,  PDESCRIPTOR pDes)
+{
+	BUG();
+}
+
+void
+WBLINUX_GetNextPacketCompleted(PADAPTER Adapter, PDESCRIPTOR pDes)
+{
+	BUG();
+}
+
+void
+WBLINUX_Destroy(PADAPTER Adapter)
+{
+	WBLINUX_stop( Adapter );
+	OS_SPIN_LOCK_FREE( &pWbNdis->SpinLock );
+#ifdef _PE_USB_INI_DUMP_
+	WBDEBUG(("[w35und] unregister_netdev!\n"));
+#endif
+}
+
+void
+WBLINUX_stop(  PADAPTER Adapter )
+{
+	PWBLINUX	pWbLinux = &Adapter->WbLinux;
+	struct sk_buff *pSkb;
+
+	if (OS_ATOMIC_INC( Adapter, &pWbLinux->ThreadCount ) == 1) {
+		// Shutdown module immediately
+		pWbLinux->shutdown = 1;
+
+		while (pWbLinux->skb_array[ pWbLinux->skb_GetIndex ]) {
+			// Trying to free the un-sending packet
+			pSkb = pWbLinux->skb_array[ pWbLinux->skb_GetIndex ];
+			pWbLinux->skb_array[ pWbLinux->skb_GetIndex ] = NULL;
+			if( in_irq() )
+				dev_kfree_skb_irq( pSkb );
+			else
+				dev_kfree_skb( pSkb );
+
+			pWbLinux->skb_GetIndex++;
+			pWbLinux->skb_GetIndex %= WBLINUX_PACKET_ARRAY_SIZE;
+		}
+
+#ifdef _PE_STATE_DUMP_
+		WBDEBUG(( "[w35und] SKB_RELEASE OK\n" ));
+#endif
+	}
+
+	OS_ATOMIC_DEC( Adapter, &pWbLinux->ThreadCount );
+}
+
+void
+WbWlanHalt(  PADAPTER Adapter )
+{
+	//---------------------
+	Adapter->sLocalPara.ShutDowned = TRUE;
+
+	Mds_Destroy( Adapter );
+
+	// Turn off Rx and Tx hardware ability
+	hal_stop( &Adapter->sHwData );
+#ifdef _PE_USB_INI_DUMP_
+	WBDEBUG(("[w35und] Hal_stop O.K.\n"));
+#endif
+	OS_SLEEP(100000);// Waiting Irp completed
+
+	// Destroy the NDIS module
+	WBLINUX_Destroy( Adapter );
+
+	// Halt the HAL
+	hal_halt(&Adapter->sHwData, NULL);
+}
+
+unsigned char
+WbWLanInitialize(PADAPTER Adapter)
+{
+	phw_data_t	pHwData;
+	PUCHAR		pMacAddr, pMacAddr2;
+	u32		InitStep = 0;
+	u8		EEPROM_region;
+	u8		HwRadioOff;
+
+	do {
+		//
+		// Setting default value for Linux
+		//
+		Adapter->sLocalPara.region_INF = REGION_AUTO;
+		Adapter->sLocalPara.TxRateMode = RATE_AUTO;
+		psLOCAL->bMacOperationMode = MODE_802_11_BG;	// B/G mode
+		Adapter->Mds.TxRTSThreshold = DEFAULT_RTSThreshold;
+		Adapter->Mds.TxFragmentThreshold = DEFAULT_FRAGMENT_THRESHOLD;
+		hal_set_phy_type( &Adapter->sHwData, RF_WB_242_1 );
+		Adapter->sLocalPara.MTUsize = MAX_ETHERNET_PACKET_SIZE;
+		psLOCAL->bPreambleMode = AUTO_MODE;
+		Adapter->sLocalPara.RadioOffStatus.boSwRadioOff = FALSE;
+		pHwData = &Adapter->sHwData;
+		hal_set_phy_type( pHwData, RF_DECIDE_BY_INF );
+
+		//
+		// Initial each module and variable
+		//
+		if (!WBLINUX_Initial(Adapter)) {
+#ifdef _PE_USB_INI_DUMP_
+			WBDEBUG(("[w35und]WBNDIS initialization failed\n"));
+#endif
+			break;
+		}
+
+		// Initial Software variable
+		Adapter->sLocalPara.ShutDowned = FALSE;
+
+		//added by ws for wep key error detection
+		Adapter->sLocalPara.bWepKeyError= FALSE;
+		Adapter->sLocalPara.bToSelfPacketReceived = FALSE;
+		Adapter->sLocalPara.WepKeyDetectTimerCount= 2 * 100; /// 2 seconds
+
+		// Initial USB hal
+		InitStep = 1;
+		pHwData = &Adapter->sHwData;
+		if (!hal_init_hardware(pHwData, Adapter))
+			break;
+
+		EEPROM_region = hal_get_region_from_EEPROM( pHwData );
+		if (EEPROM_region != REGION_AUTO)
+			psLOCAL->region = EEPROM_region;
+		else {
+			if (psLOCAL->region_INF != REGION_AUTO)
+				psLOCAL->region = psLOCAL->region_INF;
+			else
+				psLOCAL->region = REGION_USA;	//default setting
+		}
+
+		// Get Software setting flag from hal
+		Adapter->sLocalPara.boAntennaDiversity = FALSE;
+		if (hal_software_set(pHwData) & 0x00000001)
+			Adapter->sLocalPara.boAntennaDiversity = TRUE;
+
+		//
+		// For TS module
+		//
+		InitStep = 2;
+
+		// For MDS module
+		InitStep = 3;
+		Mds_initial(Adapter);
+
+		//=======================================
+		// Initialize the SME, SCAN, MLME, ROAM
+		//=======================================
+		InitStep = 4;
+		InitStep = 5;
+		InitStep = 6;
+
+		// If no user-defined address in the registry, use the addresss "burned" on the NIC instead.
+		pMacAddr = Adapter->sLocalPara.ThisMacAddress;
+		pMacAddr2 = Adapter->sLocalPara.PermanentAddress;
+		hal_get_permanent_address( pHwData, Adapter->sLocalPara.PermanentAddress );// Reading ethernet address from EEPROM
+		if (OS_MEMORY_COMPARE(pMacAddr, "\x00\x00\x00\x00\x00\x00", MAC_ADDR_LENGTH )) // Is equal
+		{
+			memcpy( pMacAddr, pMacAddr2, MAC_ADDR_LENGTH );
+		} else {
+			// Set the user define MAC address
+			hal_set_ethernet_address( pHwData, Adapter->sLocalPara.ThisMacAddress );
+		}
+
+		//get current antenna
+		psLOCAL->bAntennaNo = hal_get_antenna_number(pHwData);
+#ifdef _PE_STATE_DUMP_
+		WBDEBUG(("Driver init, antenna no = %d\n", psLOCAL->bAntennaNo));
+#endif
+		hal_get_hw_radio_off( pHwData );
+
+		// Waiting for HAL setting OK
+		while (!hal_idle(pHwData))
+			OS_SLEEP(10000);
+
+		MTO_Init(Adapter);
+
+		HwRadioOff = hal_get_hw_radio_off( pHwData );
+		psLOCAL->RadioOffStatus.boHwRadioOff = !!HwRadioOff;
+
+		hal_set_radio_mode( pHwData, (unsigned char)(psLOCAL->RadioOffStatus.boSwRadioOff || psLOCAL->RadioOffStatus.boHwRadioOff) );
+
+		hal_driver_init_OK(pHwData) = 1; // Notify hal that the driver is ready now.
+		//set a tx power for reference.....
+//		sme_set_tx_power_level(Adapter, 12);	FIXME?
+		return TRUE;
+	}
+	while(FALSE);
+
+	switch (InitStep) {
+	case 5:
+	case 4:
+	case 3: Mds_Destroy( Adapter );
+	case 2:
+	case 1: WBLINUX_Destroy( Adapter );
+		hal_halt( pHwData, NULL );
+	case 0: break;
+	}
+
+	return FALSE;
+}
+
+void WBLINUX_ConnectStatus(PADAPTER Adapter, u32 flag)
+{
+	PWBLINUX	pWbLinux = &Adapter->WbLinux;
+
+	pWbLinux->LinkStatus = flag; // OS_DISCONNECTED	or  OS_CONNECTED
+}
+
diff --git a/drivers/staging/winbond/wblinux_f.h b/drivers/staging/winbond/wblinux_f.h
new file mode 100644
index 0000000..68240c5
--- /dev/null
+++ b/drivers/staging/winbond/wblinux_f.h
@@ -0,0 +1,23 @@
+//=========================================================================
+// Copyright (c) 1996-2004 Winbond Electronic Corporation
+//
+// wblinux_f.h
+//
+u32 WBLINUX_MemoryAlloc(  void* *VirtualAddress,  u32 Length );
+s32 EncapAtomicInc(  PADAPTER Adapter,  void* pAtomic );
+s32 EncapAtomicDec(  PADAPTER Adapter,  void* pAtomic );
+void WBLinux_ReceivePacket(  PADAPTER Adapter,  PRXLAYER1 pRxLayer1 );
+unsigned char WBLINUX_Initial(  PADAPTER Adapter );
+int wb35_start_xmit(struct sk_buff *skb, struct net_device *netdev );
+void WBLINUX_GetNextPacket(  PADAPTER Adapter,  PDESCRIPTOR pDes );
+void WBLINUX_GetNextPacketCompleted(  PADAPTER Adapter,  PDESCRIPTOR pDes );
+void WBLINUX_stop(  PADAPTER Adapter );
+void WBLINUX_Destroy(  PADAPTER Adapter );
+void wb35_set_multicast( struct net_device *netdev );
+struct net_device_stats * wb35_netdev_stats( struct net_device *netdev );
+void WBLINUX_stop(  PADAPTER Adapter );
+void WbWlanHalt(  PADAPTER Adapter );
+void WBLINUX_ConnectStatus(  PADAPTER Adapter,  u32 flag );
+
+
+
diff --git a/drivers/staging/winbond/wblinux_s.h b/drivers/staging/winbond/wblinux_s.h
new file mode 100644
index 0000000..97e9167
--- /dev/null
+++ b/drivers/staging/winbond/wblinux_s.h
@@ -0,0 +1,45 @@
+//============================================================
+// wblinux_s.h
+//
+#define OS_MEMORY_ALLOC( _V, _S )	WBLINUX_MemoryAlloc( _V, _S )
+#define OS_LINK_STATUS			(Adapter->WbLinux.LinkStatus == OS_CONNECTED)
+#define OS_SET_SHUTDOWN( _A )		_A->WbLinux.shutdown=1
+#define OS_SET_RESUME( _A )		_A->WbLinux.shutdown=0
+#define OS_CONNECT_STATUS_INDICATE( _A, _F )		WBLINUX_ConnectStatus( _A, _F )
+#define OS_DISCONNECTED	0
+#define OS_CONNECTED	1
+#define OS_STOP( _A )	WBLINUX_stop( _A )
+
+#define OS_CURRENT_RX_BYTE( _A )		_A->WbLinux.RxByteCount
+#define OS_CURRENT_TX_BYTE( _A )		_A->WbLinux.TxByteCount
+#define OS_EVENT_INDICATE( _A, _B, _F )
+#define OS_PMKID_STATUS_EVENT( _A )
+#define OS_RECEIVE_PACKET_INDICATE( _A, _D )		WBLinux_ReceivePacket( _A, _D )
+#define OS_RECEIVE_802_1X_PACKET_INDICATE( _A, _D )	EAP_ReceivePacket( _A, _D )
+#define OS_GET_PACKET( _A, _D )				WBLINUX_GetNextPacket( _A, _D )
+#define OS_GET_PACKET_COMPLETE( _A, _D )	WBLINUX_GetNextPacketCompleted( _A, _D )
+#define OS_SEND_RESULT( _A, _ID, _R )
+
+#define WBLINUX_PACKET_ARRAY_SIZE	(ETHERNET_TX_DESCRIPTORS*4)
+
+typedef struct _WBLINUX
+{
+	OS_SPIN_LOCK	AtomicSpinLock;
+	OS_SPIN_LOCK	SpinLock;
+	u32	shutdown;
+
+	OS_ATOMIC	ThreadCount;
+
+	u32	LinkStatus;		// OS_DISCONNECTED or OS_CONNECTED
+
+	u32	RxByteCount;
+	u32	TxByteCount;
+
+	struct sk_buff *skb_array[ WBLINUX_PACKET_ARRAY_SIZE ];
+	struct sk_buff *packet_return;
+	s32	skb_SetIndex;
+	s32	skb_GetIndex;
+	s32	netif_state_stop; // 1: stop  0: normal
+} WBLINUX, *PWBLINUX;
+
+
diff --git a/drivers/staging/wlan-ng/Kconfig b/drivers/staging/wlan-ng/Kconfig
new file mode 100644
index 0000000..10b1f0f
--- /dev/null
+++ b/drivers/staging/wlan-ng/Kconfig
@@ -0,0 +1,10 @@
+config PRISM2_USB
+	tristate "Prism2.5 USB driver"
+	depends on USB
+	default n
+	---help---
+	  This is the wlan-ng prism 2.5 USB driver for a wide range of
+	  old USB wireless devices.
+
+	  To compile this driver as a module, choose M here: the module
+	  will be called prism2_usb.
diff --git a/drivers/staging/wlan-ng/Makefile b/drivers/staging/wlan-ng/Makefile
new file mode 100644
index 0000000..777b511
--- /dev/null
+++ b/drivers/staging/wlan-ng/Makefile
@@ -0,0 +1,9 @@
+obj-$(CONFIG_PRISM2_USB) += prism2_usb.o
+obj-$(CONFIG_PRISM2_USB) += p80211.o
+
+p80211-objs := p80211mod.o \
+		p80211conv.o \
+		p80211req.o \
+		p80211wep.o \
+		p80211wext.o \
+		p80211netdev.o
diff --git a/drivers/staging/wlan-ng/README b/drivers/staging/wlan-ng/README
new file mode 100644
index 0000000..f50e4eb
--- /dev/null
+++ b/drivers/staging/wlan-ng/README
@@ -0,0 +1,8 @@
+TODO:
+	- checkpatch.pl cleanups
+	- sparse warnings
+	- Lindent cleanups
+	- move to use the in-kernel wireless stack
+	- possible enable the pcmcia and pci portions of the driver
+
+Please send all patches to Greg Kroah-Hartman <greg@kroah.com>
diff --git a/drivers/staging/wlan-ng/hfa384x.c b/drivers/staging/wlan-ng/hfa384x.c
new file mode 100644
index 0000000..04df3fd
--- /dev/null
+++ b/drivers/staging/wlan-ng/hfa384x.c
@@ -0,0 +1,4018 @@
+/* src/prism2/driver/hfa384x.c
+*
+* Implements the functions of the Intersil hfa384x MAC
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* This file implements functions that correspond to the prism2/hfa384x
+* 802.11 MAC hardware and firmware host interface.
+*
+* The functions can be considered to represent several levels of
+* abstraction.  The lowest level functions are simply C-callable wrappers
+* around the register accesses.  The next higher level represents C-callable
+* prism2 API functions that match the Intersil documentation as closely
+* as is reasonable.  The next higher layer implements common sequences
+* of invokations of the API layer (e.g. write to bap, followed by cmd).
+*
+* Common sequences:
+* hfa384x_drvr_xxx	Highest level abstractions provided by the
+*			hfa384x code.  They are driver defined wrappers
+*			for common sequences.  These functions generally
+*			use the services of the lower levels.
+*
+* hfa384x_drvr_xxxconfig  An example of the drvr level abstraction. These
+*			functions are wrappers for the RID get/set
+*			sequence. They 	call copy_[to|from]_bap() and
+*			cmd_access().	These functions operate on the
+*			RIDs and buffers without validation.  The caller
+*			is responsible for that.
+*
+* API wrapper functions:
+* hfa384x_cmd_xxx	functions that provide access to the f/w commands.
+*			The function arguments correspond to each command
+*			argument, even command arguments that get packed
+*			into single registers.  These functions _just_
+*			issue the command by setting the cmd/parm regs
+*			& reading the status/resp regs.  Additional
+*			activities required to fully use a command
+*			(read/write from/to bap, get/set int status etc.)
+*			are implemented separately.  Think of these as
+*			C-callable prism2 commands.
+*
+* Lowest Layer Functions:
+* hfa384x_docmd_xxx	These functions implement the sequence required
+*			to issue any prism2 command.  Primarily used by the
+*			hfa384x_cmd_xxx functions.
+*
+* hfa384x_bap_xxx	BAP read/write access functions.
+*			Note: we usually use BAP0 for non-interrupt context
+*			 and BAP1 for interrupt context.
+*
+* hfa384x_dl_xxx	download related functions.
+*
+* Driver State Issues:
+* Note that there are two pairs of functions that manage the
+* 'initialized' and 'running' states of the hw/MAC combo.  The four
+* functions are create(), destroy(), start(), and stop().  create()
+* sets up the data structures required to support the hfa384x_*
+* functions and destroy() cleans them up.  The start() function gets
+* the actual hardware running and enables the interrupts.  The stop()
+* function shuts the hardware down.  The sequence should be:
+* create()
+*  .
+*  .  Self contained test routines can run here, particularly
+*  .  corereset() and test_hostif().
+*  .
+* start()
+*  .
+*  .  Do interesting things w/ the hardware
+*  .
+* stop()
+* destroy()
+*
+* Note that destroy() can be called without calling stop() first.
+* --------------------------------------------------------------------
+*/
+
+/*================================================================*/
+
+/* System Includes */
+#define WLAN_DBVAR	prism2_debug
+#include "version.h"
+
+
+#include <linux/version.h>
+
+#include <linux/module.h>
+#include <linux/kernel.h>
+#include <linux/sched.h>
+#include <linux/types.h>
+#include <linux/slab.h>
+#include <linux/wireless.h>
+#include <linux/netdevice.h>
+#include <linux/timer.h>
+#include <asm/semaphore.h>
+#include <asm/io.h>
+#include <linux/delay.h>
+#include <asm/byteorder.h>
+#include <linux/list.h>
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,5,0))
+#include <linux/tqueue.h>
+#else
+#include <linux/workqueue.h>
+#endif
+
+#if (WLAN_HOSTIF == WLAN_PCMCIA)
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,13) )
+#include <pcmcia/version.h>
+#endif
+#include <pcmcia/cs_types.h>
+#include <pcmcia/cs.h>
+#include <pcmcia/cistpl.h>
+#include <pcmcia/ds.h>
+#include <pcmcia/cisreg.h>
+#endif
+
+#if ((WLAN_HOSTIF == WLAN_PLX) || (WLAN_HOSTIF == WLAN_PCI))
+#include <linux/ioport.h>
+#include <linux/pci.h>
+#endif
+
+#include "wlan_compat.h"
+
+// XXXX #define CMD_IRQ
+
+/*================================================================*/
+/* Project Includes */
+
+#include "p80211types.h"
+#include "p80211hdr.h"
+#include "p80211mgmt.h"
+#include "p80211conv.h"
+#include "p80211msg.h"
+#include "p80211netdev.h"
+#include "p80211req.h"
+#include "p80211metadef.h"
+#include "p80211metastruct.h"
+#include "hfa384x.h"
+#include "prism2mgmt.h"
+
+/*================================================================*/
+/* Local Constants */
+
+static const UINT16 crc16tab[256] =
+{
+	0x0000, 0xc0c1, 0xc181, 0x0140, 0xc301, 0x03c0, 0x0280, 0xc241,
+	0xc601, 0x06c0, 0x0780, 0xc741, 0x0500, 0xc5c1, 0xc481, 0x0440,
+	0xcc01, 0x0cc0, 0x0d80, 0xcd41, 0x0f00, 0xcfc1, 0xce81, 0x0e40,
+	0x0a00, 0xcac1, 0xcb81, 0x0b40, 0xc901, 0x09c0, 0x0880, 0xc841,
+	0xd801, 0x18c0, 0x1980, 0xd941, 0x1b00, 0xdbc1, 0xda81, 0x1a40,
+	0x1e00, 0xdec1, 0xdf81, 0x1f40, 0xdd01, 0x1dc0, 0x1c80, 0xdc41,
+	0x1400, 0xd4c1, 0xd581, 0x1540, 0xd701, 0x17c0, 0x1680, 0xd641,
+	0xd201, 0x12c0, 0x1380, 0xd341, 0x1100, 0xd1c1, 0xd081, 0x1040,
+	0xf001, 0x30c0, 0x3180, 0xf141, 0x3300, 0xf3c1, 0xf281, 0x3240,
+	0x3600, 0xf6c1, 0xf781, 0x3740, 0xf501, 0x35c0, 0x3480, 0xf441,
+	0x3c00, 0xfcc1, 0xfd81, 0x3d40, 0xff01, 0x3fc0, 0x3e80, 0xfe41,
+	0xfa01, 0x3ac0, 0x3b80, 0xfb41, 0x3900, 0xf9c1, 0xf881, 0x3840,
+	0x2800, 0xe8c1, 0xe981, 0x2940, 0xeb01, 0x2bc0, 0x2a80, 0xea41,
+	0xee01, 0x2ec0, 0x2f80, 0xef41, 0x2d00, 0xedc1, 0xec81, 0x2c40,
+	0xe401, 0x24c0, 0x2580, 0xe541, 0x2700, 0xe7c1, 0xe681, 0x2640,
+	0x2200, 0xe2c1, 0xe381, 0x2340, 0xe101, 0x21c0, 0x2080, 0xe041,
+	0xa001, 0x60c0, 0x6180, 0xa141, 0x6300, 0xa3c1, 0xa281, 0x6240,
+	0x6600, 0xa6c1, 0xa781, 0x6740, 0xa501, 0x65c0, 0x6480, 0xa441,
+	0x6c00, 0xacc1, 0xad81, 0x6d40, 0xaf01, 0x6fc0, 0x6e80, 0xae41,
+	0xaa01, 0x6ac0, 0x6b80, 0xab41, 0x6900, 0xa9c1, 0xa881, 0x6840,
+	0x7800, 0xb8c1, 0xb981, 0x7940, 0xbb01, 0x7bc0, 0x7a80, 0xba41,
+	0xbe01, 0x7ec0, 0x7f80, 0xbf41, 0x7d00, 0xbdc1, 0xbc81, 0x7c40,
+	0xb401, 0x74c0, 0x7580, 0xb541, 0x7700, 0xb7c1, 0xb681, 0x7640,
+	0x7200, 0xb2c1, 0xb381, 0x7340, 0xb101, 0x71c0, 0x7080, 0xb041,
+	0x5000, 0x90c1, 0x9181, 0x5140, 0x9301, 0x53c0, 0x5280, 0x9241,
+	0x9601, 0x56c0, 0x5780, 0x9741, 0x5500, 0x95c1, 0x9481, 0x5440,
+	0x9c01, 0x5cc0, 0x5d80, 0x9d41, 0x5f00, 0x9fc1, 0x9e81, 0x5e40,
+	0x5a00, 0x9ac1, 0x9b81, 0x5b40, 0x9901, 0x59c0, 0x5880, 0x9841,
+	0x8801, 0x48c0, 0x4980, 0x8941, 0x4b00, 0x8bc1, 0x8a81, 0x4a40,
+	0x4e00, 0x8ec1, 0x8f81, 0x4f40, 0x8d01, 0x4dc0, 0x4c80, 0x8c41,
+	0x4400, 0x84c1, 0x8581, 0x4540, 0x8701, 0x47c0, 0x4680, 0x8641,
+	0x8201, 0x42c0, 0x4380, 0x8341, 0x4100, 0x81c1, 0x8081, 0x4040
+};
+
+/*================================================================*/
+/* Local Macros */
+
+/*================================================================*/
+/* Local Types */
+
+/*================================================================*/
+/* Local Static Definitions */
+extern int prism2_debug;
+
+/*================================================================*/
+/* Local Function Declarations */
+
+static void	hfa384x_int_dtim(wlandevice_t *wlandev);
+static void	hfa384x_int_infdrop(wlandevice_t *wlandev);
+
+static void     hfa384x_bap_tasklet(unsigned long data);
+
+static void	hfa384x_int_info(wlandevice_t *wlandev);
+static void	hfa384x_int_txexc(wlandevice_t *wlandev);
+static void	hfa384x_int_tx(wlandevice_t *wlandev);
+static void	hfa384x_int_rx(wlandevice_t *wlandev);
+
+#ifdef CMD_IRQ
+static void	hfa384x_int_cmd(wlandevice_t *wlandev);
+#endif
+static void	hfa384x_int_rxmonitor( wlandevice_t *wlandev,
+			UINT16 rxfid, hfa384x_rx_frame_t *rxdesc);
+static void	hfa384x_int_alloc(wlandevice_t *wlandev);
+
+static int hfa384x_docmd_wait( hfa384x_t *hw, hfa384x_metacmd_t *cmd);
+
+static int hfa384x_dl_docmd_wait( hfa384x_t *hw, hfa384x_metacmd_t *cmd);
+
+static UINT16
+hfa384x_mkcrc16(UINT8 *p, int len);
+
+int hfa384x_copy_to_bap4(hfa384x_t *hw, UINT16 bap, UINT16 id, UINT16 offset,
+			 void *buf, UINT len, void* buf2, UINT len2,
+			 void *buf3, UINT len3, void* buf4, UINT len4);
+
+/*================================================================*/
+/* Function Definitions */
+
+static UINT16
+txfid_queue_empty(hfa384x_t *hw)
+{
+	return (hw->txfid_head == hw->txfid_tail) ? 1 : 0;
+}
+
+static UINT16
+txfid_queue_remove(hfa384x_t *hw)
+{
+	UINT16 result= 0;
+
+	if (txfid_queue_empty(hw)) {
+		WLAN_LOG_DEBUG(3,"queue empty.\n");
+	} else {
+		result = hw->txfid_queue[hw->txfid_head];
+		hw->txfid_head = (hw->txfid_head + 1) % hw->txfid_N;
+	}
+
+	return (UINT16)result;
+}
+
+static INT16
+txfid_queue_add(hfa384x_t *hw, UINT16 val)
+{
+	INT16 result = 0;
+
+	if (hw->txfid_head == ((hw->txfid_tail + 1) % hw->txfid_N)) {
+		result = -1;
+		WLAN_LOG_DEBUG(3,"queue full.\n");
+	} else {
+		hw->txfid_queue[hw->txfid_tail] = val;
+		result = hw->txfid_tail;
+		hw->txfid_tail = (hw->txfid_tail + 1) % hw->txfid_N;
+	}
+
+	return result;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_create
+*
+* Initializes the hfa384x_t data structure for use.  Note this
+* does _not_ intialize the actual hardware, just the data structures
+* we use to keep track of its state.
+*
+* Arguments:
+*	hw		device structure
+*	irq		device irq number
+*	iobase		[pcmcia] i/o base address for register access
+*			[pci] zero
+*			[plx] i/o base address for register access
+*	membase		[pcmcia] pcmcia_cs "link" pointer
+*			[pci] memory base address for register access
+*			[plx] memory base address for card attribute memory
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+void hfa384x_create(hfa384x_t *hw, UINT irq, UINT32 iobase,
+		    UINT8 __iomem *membase)
+{
+	DBFENTER;
+	memset(hw, 0, sizeof(hfa384x_t));
+	hw->irq = irq;
+	hw->iobase = iobase;
+	hw->membase = membase;
+	spin_lock_init(&(hw->cmdlock));
+
+	/* BAP setup */
+ 	spin_lock_init(&(hw->baplock));
+	tasklet_init(&hw->bap_tasklet,
+		     hfa384x_bap_tasklet,
+		     (unsigned long) hw);
+
+	init_waitqueue_head(&hw->cmdq);
+	sema_init(&hw->infofid_sem, 1);
+
+        hw->txfid_head = 0;
+        hw->txfid_tail = 0;
+        hw->txfid_N = HFA384x_DRVR_FIDSTACKLEN_MAX;
+        memset(hw->txfid_queue, 0, sizeof(hw->txfid_queue));
+
+	hw->isram16 = 1;
+
+	/* Init the auth queue head */
+	skb_queue_head_init(&hw->authq);
+
+	INIT_WORK2(&hw->link_bh, prism2sta_processing_defer);
+
+        INIT_WORK2(&hw->commsqual_bh, prism2sta_commsqual_defer);
+
+	init_timer(&hw->commsqual_timer);
+	hw->commsqual_timer.data = (unsigned long) hw;
+	hw->commsqual_timer.function = prism2sta_commsqual_timer;
+
+	hw->link_status = HFA384x_LINK_NOTCONNECTED;
+	hw->state = HFA384x_STATE_INIT;
+
+	DBFEXIT;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_destroy
+*
+* Partner to hfa384x_create().  This function cleans up the hw
+* structure so that it can be freed by the caller using a simple
+* kfree.  Currently, this function is just a placeholder.  If, at some
+* point in the future, an hw in the 'shutdown' state requires a 'deep'
+* kfree, this is where it should be done.  Note that if this function
+* is called on a _running_ hw structure, the drvr_stop() function is
+* called.
+*
+* Arguments:
+*	hw		device structure
+*
+* Returns:
+*	nothing, this function is not allowed to fail.
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+void
+hfa384x_destroy( hfa384x_t *hw)
+{
+	struct sk_buff *skb;
+
+	DBFENTER;
+
+	if ( hw->state == HFA384x_STATE_RUNNING ) {
+		hfa384x_drvr_stop(hw);
+	}
+	hw->state = HFA384x_STATE_PREINIT;
+
+	if (hw->scanresults) {
+		kfree(hw->scanresults);
+		hw->scanresults = NULL;
+	}
+
+        /* Now to clean out the auth queue */
+        while ( (skb = skb_dequeue(&hw->authq)) ) {
+                dev_kfree_skb(skb);
+        }
+
+	DBFEXIT;
+	return;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_getconfig
+*
+* Performs the sequence necessary to read a config/info item.
+*
+* Arguments:
+*	hw		device structure
+*	rid		config/info record id (host order)
+*	buf		host side record buffer.  Upon return it will
+*			contain the body portion of the record (minus the
+*			RID and len).
+*	len		buffer length (in bytes, should match record length)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*	-ENODATA 	length mismatch between argument and retrieved
+*			record.
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_drvr_getconfig(hfa384x_t *hw, UINT16 rid, void *buf, UINT16 len)
+{
+	int 		result = 0;
+	DBFENTER;
+
+	result = hfa384x_cmd_access( hw, 0, rid, buf, len);
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_setconfig
+*
+* Performs the sequence necessary to write a config/info item.
+*
+* Arguments:
+*	hw		device structure
+*	rid		config/info record id (in host order)
+*	buf		host side record buffer
+*	len		buffer length (in bytes)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_drvr_setconfig(hfa384x_t *hw, UINT16 rid, void *buf, UINT16 len)
+{
+	int		result = 0;
+	DBFENTER;
+
+	result = hfa384x_cmd_access( hw, 1, rid, buf, len);
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_readpda
+*
+* Performs the sequence to read the PDA space.  Note there is no
+* drvr_writepda() function.  Writing a PDA is
+* generally implemented by a calling component via calls to
+* cmd_download and writing to the flash download buffer via the
+* aux regs.
+*
+* Arguments:
+*	hw		device structure
+*	buf		buffer to store PDA in
+*	len		buffer length
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*	-ETIMEOUT	timout waiting for the cmd regs to become
+*			available, or waiting for the control reg
+*			to indicate the Aux port is enabled.
+*	-ENODATA	the buffer does NOT contain a valid PDA.
+*			Either the card PDA is bad, or the auxdata
+*			reads are giving us garbage.
+
+*
+* Side effects:
+*
+* Call context:
+*	process thread or non-card interrupt.
+----------------------------------------------------------------*/
+int hfa384x_drvr_readpda(hfa384x_t *hw, void *buf, UINT len)
+{
+	int		result = 0;
+	UINT16		*pda = buf;
+	int		pdaok = 0;
+	int		morepdrs = 1;
+	int		currpdr = 0;	/* word offset of the current pdr */
+	int		i;
+	UINT16		pdrlen;		/* pdr length in bytes, host order */
+	UINT16		pdrcode;	/* pdr code, host order */
+	UINT16		crc;
+	UINT16		pdacrc;
+	struct pdaloc {
+		UINT32	cardaddr;
+		UINT16	auxctl;
+	} pdaloc[] =
+	{
+		{ HFA3842_PDA_BASE,		HFA384x_AUX_CTL_NV},
+		{ HFA3842_PDA_BASE,		HFA384x_AUX_CTL_EXTDS},
+		{ HFA3841_PDA_BASE,		HFA384x_AUX_CTL_NV},
+		{ HFA3841_PDA_BASE,		HFA384x_AUX_CTL_EXTDS},
+		{ HFA3841_PDA_BOGUS_BASE,	HFA384x_AUX_CTL_NV}
+	};
+
+	DBFENTER;
+	/* Check for aux available */
+	result = hfa384x_cmd_aux_enable(hw, 0);
+	if ( result ) {
+		WLAN_LOG_DEBUG(1,"aux_enable() failed. result=%d\n", result);
+		goto failed;
+	}
+
+	/* Read the pda from each known address.  */
+	for ( i = 0; i < (sizeof(pdaloc)/sizeof(pdaloc[0])); i++) {
+		WLAN_LOG_DEBUG( 3, "Checking PDA@(0x%08x,%s)\n",
+			pdaloc[i].cardaddr,
+			pdaloc[i].auxctl == HFA384x_AUX_CTL_NV ?
+			"CTL_NV" : "CTL_EXTDS");
+
+		/* Copy bufsize bytes from our current pdaloc */
+		hfa384x_copy_from_aux(hw,
+			pdaloc[i].cardaddr,
+			pdaloc[i].auxctl,
+			buf,
+			len);
+
+		/* Test for garbage */
+		/* Traverse the PDR list Looking for PDA-END */
+		pdaok = 1;	/* intially assume good */
+		morepdrs = 1;
+		currpdr = 0;
+		while ( pdaok && morepdrs ) {
+			pdrlen = hfa384x2host_16(pda[currpdr]) * 2;
+			pdrcode = hfa384x2host_16(pda[currpdr+1]);
+
+			/* Test for completion at END record */
+			if ( pdrcode == HFA384x_PDR_END_OF_PDA ) {
+				if ( pdrlen == 4 ) {
+					morepdrs = 0;
+					/* Calculate CRC-16 and compare to PDA
+					 * value.  Note the addition of 2 words
+					 * for ENDREC.len and ENDREC.code
+					 * fields.
+					 */
+					crc = hfa384x_mkcrc16( (UINT8*)pda,
+						(currpdr + 2) * sizeof(UINT16));
+					pdacrc =hfa384x2host_16(pda[currpdr+2]);
+					if ( crc != pdacrc ) {
+						WLAN_LOG_DEBUG(3,
+						"PDA crc failed:"
+						"calc_crc=0x%04x,"
+						"pdr_crc=0x%04x.\n",
+						crc, pdacrc);
+						pdaok = 0;
+					}
+				} else {
+					WLAN_LOG_DEBUG(3,
+					"END record detected w/ "
+					"len(%d) != 2, assuming bad PDA\n",
+					pdrlen);
+					pdaok = 0;
+
+				}
+				break;
+			}
+
+			/* Test the record length */
+			if ( pdrlen > HFA384x_PDR_LEN_MAX || pdrlen == 0) {
+				WLAN_LOG_DEBUG(3,
+					"pdrlen for address #%d "
+					"at %#x:%#x:%d\n",
+					i, pdaloc[i].cardaddr,
+					pdaloc[i].auxctl, pdrlen);
+				WLAN_LOG_DEBUG(3,"pdrlen invalid=%d\n",
+					pdrlen);
+				pdaok = 0;
+				break;
+			}
+
+			/* Move to the next pdr */
+			if ( morepdrs ) {
+				/* note the access to pda[], we need words */
+				currpdr += hfa384x2host_16(pda[currpdr]) + 1;
+				if (currpdr*sizeof(UINT16) > len) {
+					WLAN_LOG_DEBUG(3,
+					"Didn't find PDA_END in buffer, "
+					"trying next location.\n");
+					pdaok = 0;
+					break;
+				}
+			}
+		}
+		if ( pdaok ) {
+			WLAN_LOG_INFO(
+				"PDA Read from 0x%08x in %s space.\n",
+				pdaloc[i].cardaddr,
+				pdaloc[i].auxctl == 0 ? "EXTDS" :
+				pdaloc[i].auxctl == 1 ? "NV" :
+				pdaloc[i].auxctl == 2 ? "PHY" :
+				pdaloc[i].auxctl == 3 ? "ICSRAM" :
+				"<bogus auxctl>");
+			break;
+		}
+	}
+	result = pdaok ? 0 : -ENODATA;
+
+	if ( result ) {
+		WLAN_LOG_DEBUG(3,"Failure: pda is not okay\n");
+	}
+
+	hfa384x_cmd_aux_disable(hw);
+failed:
+	DBFEXIT;
+	return result;
+}
+
+
+
+/*----------------------------------------------------------------
+* mkpda_crc
+*
+* Calculates the CRC16 for the given PDA and inserts the value
+* into the end record.
+*
+* Arguments:
+*	pda	ptr to the PDA data structure.
+*
+* Returns:
+*	0	- success
+*	~0	- failure (probably an errno)
+----------------------------------------------------------------*/
+static UINT16
+hfa384x_mkcrc16(UINT8 *p, int len)
+{
+	UINT16	crc = 0;
+	UINT8	*lim = p + len;
+
+	while (p < lim) {
+		crc = (crc >> 8 ) ^ crc16tab[(crc & 0xff) ^ *p++];
+	}
+
+	return crc;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_ramdl_enable
+*
+* Begins the ram download state.  Checks to see that we're not
+* already in a download state and that a port isn't enabled.
+* Sets the download state and calls cmd_download with the
+* ENABLE_VOLATILE subcommand and the exeaddr argument.
+*
+* Arguments:
+*	hw		device structure
+*	exeaddr		the card execution address that will be
+*                       jumped to when ramdl_disable() is called
+*			(host order).
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_drvr_ramdl_enable(hfa384x_t *hw, UINT32 exeaddr)
+{
+	int		result = 0;
+	UINT16		lowaddr;
+	UINT16		hiaddr;
+	int		i;
+	DBFENTER;
+	/* Check that a port isn't active */
+	for ( i = 0; i < HFA384x_PORTID_MAX; i++) {
+		if ( hw->port_enabled[i] ) {
+			WLAN_LOG_DEBUG(1,"Can't download with a port enabled.\n");
+			result = -EINVAL;
+			goto done;
+		}
+	}
+
+	/* Check that we're not already in a download state */
+	if ( hw->dlstate != HFA384x_DLSTATE_DISABLED ) {
+		WLAN_LOG_DEBUG(1,"Download state not disabled.\n");
+		result = -EINVAL;
+		goto done;
+	}
+
+	/* Are we supposed to go into genesis mode? */
+	if (exeaddr == 0x3f0000) {
+		UINT16 initseq[2] = { 0xe100, 0xffa1 };
+		UINT16 readbuf[2];
+		UINT8 hcr = 0x0f; /* Default to x16 SRAM */
+		hw->isram16 = 1;
+
+		WLAN_LOG_DEBUG(1, "Dropping into Genesis mode\n");
+
+		/* Issue card reset and enable aux port */
+		hfa384x_corereset(hw, prism2_reset_holdtime,
+				  prism2_reset_settletime, 0);
+		hfa384x_cmd_aux_enable(hw, 1);
+
+		/* Genesis set */
+		hfa384x_copy_to_aux(hw, 0x7E0038, HFA384x_AUX_CTL_EXTDS,
+				    initseq, sizeof(initseq));
+
+		hfa384x_corereset(hw, prism2_reset_holdtime,
+				  prism2_reset_settletime, hcr);
+
+		/* Validate memory config */
+		hfa384x_copy_to_aux(hw, 0x7E0038, HFA384x_AUX_CTL_EXTDS,
+				    initseq, sizeof(initseq));
+		hfa384x_copy_from_aux(hw, 0x7E0038, HFA384x_AUX_CTL_EXTDS,
+				    readbuf, sizeof(initseq));
+		WLAN_HEX_DUMP(3, "readback", readbuf, sizeof(readbuf));
+
+		if (memcmp(initseq, readbuf, sizeof(readbuf))) {
+			hcr = 0x1f; /* x8 SRAM */
+			hw->isram16 = 0;
+
+			hfa384x_copy_to_aux(hw, 0x7E0038, HFA384x_AUX_CTL_EXTDS,
+					    initseq, sizeof(initseq));
+			hfa384x_corereset(hw, prism2_reset_holdtime,
+					  prism2_reset_settletime, hcr);
+
+			hfa384x_copy_to_aux(hw, 0x7E0038, HFA384x_AUX_CTL_EXTDS,
+					    initseq, sizeof(initseq));
+			hfa384x_copy_from_aux(hw, 0x7E0038, HFA384x_AUX_CTL_EXTDS,
+					    readbuf, sizeof(initseq));
+			WLAN_HEX_DUMP(2, "readback", readbuf, sizeof(readbuf));
+
+			if (memcmp(initseq, readbuf, sizeof(readbuf))) {
+				WLAN_LOG_ERROR("Genesis mode failed\n");
+				result = -1;
+				goto done;
+			}
+		}
+
+		/* Now we're in genesis mode */
+		hw->dlstate = HFA384x_DLSTATE_GENESIS;
+		goto done;
+	}
+
+	/* Retrieve the buffer loc&size and timeout */
+	if ( (result = hfa384x_drvr_getconfig(hw, HFA384x_RID_DOWNLOADBUFFER,
+				&(hw->bufinfo), sizeof(hw->bufinfo))) ) {
+		goto done;
+	}
+	hw->bufinfo.page = hfa384x2host_16(hw->bufinfo.page);
+	hw->bufinfo.offset = hfa384x2host_16(hw->bufinfo.offset);
+	hw->bufinfo.len = hfa384x2host_16(hw->bufinfo.len);
+	if ( (result = hfa384x_drvr_getconfig16(hw, HFA384x_RID_MAXLOADTIME,
+				&(hw->dltimeout))) ) {
+		goto done;
+	}
+	hw->dltimeout = hfa384x2host_16(hw->dltimeout);
+
+	/* Enable the aux port */
+	if ( (result = hfa384x_cmd_aux_enable(hw, 0)) ) {
+		WLAN_LOG_DEBUG(1,"Aux enable failed, result=%d.\n", result);
+		goto done;
+	}
+
+	/* Call the download(1,addr) function */
+	lowaddr = HFA384x_ADDR_CMD_MKOFF(exeaddr);
+	hiaddr =  HFA384x_ADDR_CMD_MKPAGE(exeaddr);
+
+	result = hfa384x_cmd_download(hw, HFA384x_PROGMODE_RAM,
+			lowaddr, hiaddr, 0);
+	if ( result == 0) {
+		/* Set the download state */
+		hw->dlstate = HFA384x_DLSTATE_RAMENABLED;
+	} else {
+		WLAN_LOG_DEBUG(1,"cmd_download(0x%04x, 0x%04x) failed, result=%d.\n",
+				lowaddr,hiaddr, result);
+		/* Disable  the aux port */
+		hfa384x_cmd_aux_disable(hw);
+	}
+
+ done:
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_ramdl_disable
+*
+* Ends the ram download state.
+*
+* Arguments:
+*	hw		device structure
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_drvr_ramdl_disable(hfa384x_t *hw)
+{
+	DBFENTER;
+	/* Check that we're already in the download state */
+	if ( ( hw->dlstate != HFA384x_DLSTATE_RAMENABLED ) &&
+	     ( hw->dlstate != HFA384x_DLSTATE_GENESIS ) ) {
+		return -EINVAL;
+	}
+
+	if (hw->dlstate == HFA384x_DLSTATE_GENESIS) {
+		hfa384x_corereset(hw, prism2_reset_holdtime,
+				  prism2_reset_settletime,
+				  hw->isram16 ? 0x07: 0x17);
+		goto done;
+	}
+
+	/* Disable the aux port */
+	hfa384x_cmd_download(hw, HFA384x_PROGMODE_DISABLE, 0, 0 , 0);
+
+ done:
+	hw->dlstate = HFA384x_DLSTATE_DISABLED;
+	hfa384x_cmd_aux_disable(hw);
+
+	DBFEXIT;
+	return 0;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_ramdl_write
+*
+* Performs a RAM download of a chunk of data. First checks to see
+* that we're in the RAM download state, then uses the aux functions
+* to 1) copy the data, 2) readback and compare.  The download
+* state is unaffected.  When all data has been written using
+* this function, call drvr_ramdl_disable() to end the download state
+* and restart the MAC.
+*
+* Arguments:
+*	hw		device structure
+*	daddr		Card address to write to. (host order)
+*	buf		Ptr to data to write.
+*	len		Length of data (host order).
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_drvr_ramdl_write(hfa384x_t *hw, UINT32 daddr, void* buf, UINT32 len)
+{
+	int		result = 0;
+	UINT8		*verbuf;
+	DBFENTER;
+	/* Check that we're in the ram download state */
+	if ( ( hw->dlstate != HFA384x_DLSTATE_RAMENABLED ) &&
+	     ( hw->dlstate != HFA384x_DLSTATE_GENESIS ) ) {
+		return -EINVAL;
+	}
+
+	WLAN_LOG_INFO("Writing %d bytes to ram @0x%06x\n", len, daddr);
+#if 0
+WLAN_HEX_DUMP(1, "dldata", buf, len);
+#endif
+	/* Copy the data via the aux port */
+	hfa384x_copy_to_aux(hw, daddr, HFA384x_AUX_CTL_EXTDS, buf, len);
+
+	/* Create a buffer for the verify */
+	verbuf = kmalloc(len, GFP_KERNEL);
+	if (verbuf == NULL ) return 1;
+
+	/* Read back and compare */
+	hfa384x_copy_from_aux(hw, daddr, HFA384x_AUX_CTL_EXTDS, verbuf, len);
+
+	if ( memcmp(buf, verbuf, len) ) {
+		WLAN_LOG_DEBUG(1,"ramdl verify failed!\n");
+		result = -EINVAL;
+	}
+
+	kfree_s(verbuf, len);
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_flashdl_enable
+*
+* Begins the flash download state.  Checks to see that we're not
+* already in a download state and that a port isn't enabled.
+* Sets the download state and retrieves the flash download
+* buffer location, buffer size, and timeout length.
+*
+* Arguments:
+*	hw		device structure
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_drvr_flashdl_enable(hfa384x_t *hw)
+{
+	int		result = 0;
+	int		i;
+
+	DBFENTER;
+	/* Check that a port isn't active */
+	for ( i = 0; i < HFA384x_PORTID_MAX; i++) {
+		if ( hw->port_enabled[i] ) {
+			WLAN_LOG_DEBUG(1,"called when port enabled.\n");
+			return -EINVAL;
+		}
+	}
+
+	/* Check that we're not already in a download state */
+	if ( hw->dlstate != HFA384x_DLSTATE_DISABLED ) {
+		return -EINVAL;
+	}
+
+	/* Retrieve the buffer loc&size and timeout */
+	if ( (result = hfa384x_drvr_getconfig(hw, HFA384x_RID_DOWNLOADBUFFER,
+				&(hw->bufinfo), sizeof(hw->bufinfo))) ) {
+		return result;
+	}
+	hw->bufinfo.page = hfa384x2host_16(hw->bufinfo.page);
+	hw->bufinfo.offset = hfa384x2host_16(hw->bufinfo.offset);
+	hw->bufinfo.len = hfa384x2host_16(hw->bufinfo.len);
+	if ( (result = hfa384x_drvr_getconfig16(hw, HFA384x_RID_MAXLOADTIME,
+				&(hw->dltimeout))) ) {
+		return result;
+	}
+	hw->dltimeout = hfa384x2host_16(hw->dltimeout);
+
+	/* Enable the aux port */
+	if ( (result = hfa384x_cmd_aux_enable(hw, 0)) ) {
+		return result;
+	}
+
+	hw->dlstate = HFA384x_DLSTATE_FLASHENABLED;
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_flashdl_disable
+*
+* Ends the flash download state.  Note that this will cause the MAC
+* firmware to restart.
+*
+* Arguments:
+*	hw		device structure
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_drvr_flashdl_disable(hfa384x_t *hw)
+{
+	DBFENTER;
+	/* Check that we're already in the download state */
+	if ( hw->dlstate != HFA384x_DLSTATE_FLASHENABLED ) {
+		return -EINVAL;
+	}
+
+	/* There isn't much we can do at this point, so I don't */
+	/*  bother  w/ the return value */
+	hfa384x_cmd_download(hw, HFA384x_PROGMODE_DISABLE, 0, 0 , 0);
+	hw->dlstate = HFA384x_DLSTATE_DISABLED;
+
+	/* Disable the aux port */
+	hfa384x_cmd_aux_disable(hw);
+
+	DBFEXIT;
+	return 0;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_flashdl_write
+*
+* Performs a FLASH download of a chunk of data. First checks to see
+* that we're in the FLASH download state, then sets the download
+* mode, uses the aux functions to 1) copy the data to the flash
+* buffer, 2) sets the download 'write flash' mode, 3) readback and
+* compare.  Lather rinse, repeat as many times an necessary to get
+* all the given data into flash.
+* When all data has been written using this function (possibly
+* repeatedly), call drvr_flashdl_disable() to end the download state
+* and restart the MAC.
+*
+* Arguments:
+*	hw		device structure
+*	daddr		Card address to write to. (host order)
+*	buf		Ptr to data to write.
+*	len		Length of data (host order).
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_drvr_flashdl_write(hfa384x_t *hw, UINT32 daddr, void* buf, UINT32 len)
+{
+	int		result = 0;
+	UINT8		*verbuf;
+	UINT32		dlbufaddr;
+	UINT32		currlen;
+	UINT32		currdaddr;
+	UINT16		destlo;
+	UINT16		desthi;
+	int		nwrites;
+	int		i;
+
+	DBFENTER;
+	/* Check that we're in the flash download state */
+	if ( hw->dlstate != HFA384x_DLSTATE_FLASHENABLED ) {
+		return -EINVAL;
+	}
+
+	WLAN_LOG_INFO("Download %d bytes to flash @0x%06x\n", len, daddr);
+
+	/* Need a flat address for arithmetic */
+	dlbufaddr = HFA384x_ADDR_AUX_MKFLAT(
+			hw->bufinfo.page,
+			hw->bufinfo.offset);
+	verbuf = kmalloc(hw->bufinfo.len, GFP_KERNEL);
+
+#if 0
+WLAN_LOG_WARNING("dlbuf@0x%06lx len=%d to=%d\n", dlbufaddr, hw->bufinfo.len, hw->dltimeout);
+#endif
+	/* Figure out how many times to to the flash prog */
+	nwrites = len / hw->bufinfo.len;
+	nwrites += (len % hw->bufinfo.len) ? 1 : 0;
+
+	if ( verbuf == NULL ) {
+		WLAN_LOG_ERROR("Failed to allocate flash verify buffer\n");
+		return 1;
+	}
+	/* For each */
+	for ( i = 0; i < nwrites; i++) {
+		/* Get the dest address and len */
+		currlen = (len - (hw->bufinfo.len * i)) > hw->bufinfo.len ?
+				hw->bufinfo.len :
+				(len - (hw->bufinfo.len * i));
+		currdaddr = daddr + (hw->bufinfo.len * i);
+		destlo = HFA384x_ADDR_CMD_MKOFF(currdaddr);
+		desthi = HFA384x_ADDR_CMD_MKPAGE(currdaddr);
+		WLAN_LOG_INFO("Writing %d bytes to flash @0x%06x\n", currlen, currdaddr);
+#if 0
+WLAN_HEX_DUMP(1, "dldata", buf+(hw->bufinfo.len*i), currlen);
+#endif
+		/* Set the download mode */
+		result = hfa384x_cmd_download(hw, HFA384x_PROGMODE_NV,
+				destlo, desthi, currlen);
+		if ( result ) {
+			WLAN_LOG_ERROR("download(NV,lo=%x,hi=%x,len=%x) "
+				"cmd failed, result=%d. Aborting d/l\n",
+				destlo, desthi, currlen, result);
+			goto exit_proc;
+		}
+		/* copy the data to the flash buffer */
+		hfa384x_copy_to_aux(hw, dlbufaddr, HFA384x_AUX_CTL_EXTDS,
+					buf+(hw->bufinfo.len*i), currlen);
+		/* set the download 'write flash' mode */
+		result = hfa384x_cmd_download(hw, HFA384x_PROGMODE_NVWRITE, 0,0,0);
+		if ( result ) {
+			WLAN_LOG_ERROR(
+				"download(NVWRITE,lo=%x,hi=%x,len=%x) "
+				"cmd failed, result=%d. Aborting d/l\n",
+				destlo, desthi, currlen, result);
+			goto exit_proc;
+		}
+		/* readback and compare, if fail...bail */
+		hfa384x_copy_from_aux(hw,
+				currdaddr, HFA384x_AUX_CTL_NV,
+				verbuf, currlen);
+
+		if ( memcmp(buf+(hw->bufinfo.len*i), verbuf, currlen) ) {
+			return -EINVAL;
+		}
+	}
+
+exit_proc:
+         /* DOH! This kfree's for you Mark :-) My forehead hurts... */
+         kfree(verbuf);
+
+	/* Leave the firmware in the 'post-prog' mode.  flashdl_disable will */
+	/*  actually disable programming mode.  Remember, that will cause the */
+	/*  the firmware to effectively reset itself. */
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_initialize
+*
+* Issues the initialize command and sets the hw->state based
+* on the result.
+*
+* Arguments:
+*	hw		device structure
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_cmd_initialize(hfa384x_t *hw)
+{
+	int result = 0;
+	int i;
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+
+	/* we don't want to be interrupted during the reset */
+	hfa384x_setreg(hw, 0, HFA384x_INTEN);
+	hfa384x_setreg(hw, 0xffff, HFA384x_EVACK);
+
+	cmd.cmd = HFA384x_CMDCODE_INIT;
+	cmd.parm0 = 0;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+	spin_lock_bh(&hw->cmdlock);
+	result = hfa384x_docmd_wait(hw, &cmd);
+	spin_unlock_bh(&hw->cmdlock);
+
+	if ( result == 0 ) {
+		for ( i = 0; i < HFA384x_NUMPORTS_MAX; i++) {
+			hw->port_enabled[i] = 0;
+		}
+	}
+
+        hw->link_status = HFA384x_LINK_NOTCONNECTED;
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_commtallies
+*
+* Send a commtallies inquiry to the MAC.  Note that this is an async
+* call that will result in an info frame arriving sometime later.
+*
+* Arguments:
+*	hw		device structure
+*
+* Returns:
+*	zero		success.
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int hfa384x_drvr_commtallies( hfa384x_t *hw )
+{
+	hfa384x_metacmd_t cmd;
+	int result;
+
+	DBFENTER;
+
+	cmd.cmd = HFA384x_CMDCODE_INQ;
+	cmd.parm0 = HFA384x_IT_COMMTALLIES;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+	spin_lock_bh(&hw->cmdlock);
+	result = hfa384x_docmd_wait(hw, &cmd);
+	spin_unlock_bh(&hw->cmdlock);
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_enable
+*
+* Issues the enable command to enable communications on one of
+* the MACs 'ports'.  Only macport 0 is valid  for stations.
+* APs may also enable macports 1-6.  Only ports that are currently
+* disabled may be enabled.
+*
+* Arguments:
+*	hw		device structure
+*	macport		MAC port number
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_drvr_enable(hfa384x_t *hw, UINT16 macport)
+{
+	int	result = 0;
+
+	DBFENTER;
+	if ((!hw->isap && macport != 0) ||
+	    (hw->isap && !(macport <= HFA384x_PORTID_MAX)) ||
+	    (hw->port_enabled[macport]) ){
+		result = -EINVAL;
+	} else {
+		result = hfa384x_cmd_enable(hw, macport);
+		if ( result == 0 ) {
+			hw->port_enabled[macport] = 1;
+		}
+	}
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_enable
+*
+* Issues the the enable command to enable communications on one of the
+* MACs 'ports'.
+*
+* Arguments:
+*	hw		device structure
+*	macport		MAC port number
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_cmd_enable(hfa384x_t *hw, UINT16 macport)
+{
+	int	result = 0;
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+
+	cmd.cmd = HFA384x_CMD_CMDCODE_SET(HFA384x_CMDCODE_ENABLE) |
+		  HFA384x_CMD_MACPORT_SET(macport);
+	cmd.parm0 = 0;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+	spin_lock_bh(&hw->cmdlock);
+	result = hfa384x_docmd_wait(hw, &cmd);
+	spin_unlock_bh(&hw->cmdlock);
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_disable
+*
+* Issues the disable command to stop communications on one of
+* the MACs 'ports'.  Only macport 0 is valid  for stations.
+* APs may also disable macports 1-6.  Only ports that have been
+* previously enabled may be disabled.
+*
+* Arguments:
+*	hw		device structure
+*	macport		MAC port number (host order)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_drvr_disable(hfa384x_t *hw, UINT16 macport)
+{
+	int	result = 0;
+
+	DBFENTER;
+	if ((!hw->isap && macport != 0) ||
+	    (hw->isap && !(macport <= HFA384x_PORTID_MAX)) ||
+	    !(hw->port_enabled[macport]) ){
+		result = -EINVAL;
+	} else {
+		result = hfa384x_cmd_disable(hw, macport);
+		if ( result == 0 ) {
+			hw->port_enabled[macport] = 0;
+		}
+	}
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_disable
+*
+* Issues the command to disable a port.
+*
+* Arguments:
+*	hw		device structure
+*	macport		MAC port number (host order)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_cmd_disable(hfa384x_t *hw, UINT16 macport)
+{
+	int	result = 0;
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+
+	cmd.cmd = HFA384x_CMD_CMDCODE_SET(HFA384x_CMDCODE_DISABLE) |
+		  HFA384x_CMD_MACPORT_SET(macport);
+	cmd.parm0 = 0;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+	spin_lock_bh(&hw->cmdlock);
+	result = hfa384x_docmd_wait(hw, &cmd);
+	spin_unlock_bh(&hw->cmdlock);
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_diagnose
+*
+* Issues the diagnose command to test the: register interface,
+* MAC controller (including loopback), External RAM, Non-volatile
+* memory integrity, and synthesizers.  Following execution of this
+* command, MAC/firmware are in the 'initial state'.  Therefore,
+* the Initialize command should be issued after successful
+* completion of this command.  This function may only be called
+* when the MAC is in the 'communication disabled' state.
+*
+* Arguments:
+*	hw		device structure
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+#define DIAG_PATTERNA ((UINT16)0xaaaa)
+#define DIAG_PATTERNB ((UINT16)0x5555)
+
+int hfa384x_cmd_diagnose(hfa384x_t *hw)
+{
+	int	result = 0;
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+
+	cmd.cmd = HFA384x_CMD_CMDCODE_SET(HFA384x_CMDCODE_DIAG);
+	cmd.parm0 = DIAG_PATTERNA;
+	cmd.parm1 = DIAG_PATTERNB;
+	cmd.parm2 = 0;
+
+	spin_lock_bh(&hw->cmdlock);
+	result = hfa384x_docmd_wait(hw, &cmd);
+	spin_unlock_bh(&hw->cmdlock);
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_allocate
+*
+* Issues the allocate command instructing the firmware to allocate
+* a 'frame structure buffer' in MAC controller RAM.  This command
+* does not provide the result, it only initiates one of the f/w's
+* asynchronous processes to construct the buffer.  When the
+* allocation is complete, it will be indicated via the Alloc
+* bit in the EvStat register and the FID identifying the allocated
+* space will be available from the AllocFID register.  Some care
+* should be taken when waiting for the Alloc event.  If a Tx or
+* Notify command w/ Reclaim has been previously executed, it's
+* possible the first Alloc event after execution of this command
+* will be for the reclaimed buffer and not the one you asked for.
+* This case must be handled in the Alloc event handler.
+*
+* Arguments:
+*	hw		device structure
+*	len		allocation length, must be an even value
+*			in the range [4-2400]. (host order)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_cmd_allocate(hfa384x_t *hw, UINT16 len)
+{
+	int	result = 0;
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+
+	if ( (len % 2) ||
+	     len < HFA384x_CMD_ALLOC_LEN_MIN ||
+	     len > HFA384x_CMD_ALLOC_LEN_MAX ) {
+		result = -EINVAL;
+	} else {
+		cmd.cmd = HFA384x_CMD_CMDCODE_SET(HFA384x_CMDCODE_ALLOC);
+		cmd.parm0 = len;
+		cmd.parm1 = 0;
+		cmd.parm2 = 0;
+
+		spin_lock_bh(&hw->cmdlock);
+		result = hfa384x_docmd_wait(hw, &cmd);
+		spin_unlock_bh(&hw->cmdlock);
+	}
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_transmit
+*
+* Instructs the firmware to transmit a frame previously copied
+* to a given buffer.  This function returns immediately, the Tx
+* results are available via the Tx or TxExc events (if the frame
+* control bits are set).  The reclaim argument specifies if the
+* FID passed will be used by the f/w tx process or returned for
+* use w/ another transmit command.  If reclaim is set, expect an
+* Alloc event signalling the availibility of the FID for reuse.
+*
+* NOTE: hw->cmdlock MUST BE HELD before calling this function!
+*
+* Arguments:
+*	hw		device structure
+*	reclaim		[0|1] indicates whether the given FID will
+*			be handed back (via Alloc event) for reuse.
+*			(host order)
+*	qos		[0-3] Value to put in the QoS field of the
+*			tx command, identifies a queue to place the
+*			outgoing frame in.
+*			(host order)
+*	fid		FID of buffer containing the frame that was
+*			previously copied to MAC memory via the bap.
+*			(host order)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*	hw->resp0 will contain the FID being used by async tx
+*	process.  If reclaim==0, resp0 will be the same as the fid
+*	argument.  If reclaim==1, resp0 will be the different and
+*	is the value to watch for in the Tx|TxExc to indicate completion
+*	of the frame passed in fid.
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_cmd_transmit(hfa384x_t *hw, UINT16 reclaim, UINT16 qos, UINT16 fid)
+{
+	int	result = 0;
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+	cmd.cmd = HFA384x_CMD_CMDCODE_SET(HFA384x_CMDCODE_TX) |
+		HFA384x_CMD_RECL_SET(reclaim) |
+		HFA384x_CMD_QOS_SET(qos);
+	cmd.parm0 = fid;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+	result = hfa384x_docmd_wait(hw, &cmd);
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_clearpersist
+*
+* Instructs the firmware to clear the persistence bit in a given
+* FID.  This has the effect of telling the firmware to drop the
+* persistent frame.  The FID must be one that was previously used
+* to transmit a PRST frame.
+*
+* Arguments:
+*	hw		device structure
+*	fid		FID of the persistent frame (host order)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_cmd_clearpersist(hfa384x_t *hw, UINT16 fid)
+{
+	int	result = 0;
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+
+	cmd.cmd = HFA384x_CMD_CMDCODE_SET(HFA384x_CMDCODE_CLRPRST);
+	cmd.parm0 = fid;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+	spin_lock_bh(&hw->cmdlock);
+	result = hfa384x_docmd_wait(hw, &cmd);
+	spin_unlock_bh(&hw->cmdlock);
+
+	DBFEXIT;
+	return result;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_notify
+*
+* Sends an info frame to the firmware to alter the behavior
+* of the f/w asynch processes.  Can only be called when the MAC
+* is in the enabled state.
+*
+* Arguments:
+*	hw		device structure
+*	reclaim		[0|1] indicates whether the given FID will
+*			be handed back (via Alloc event) for reuse.
+*			(host order)
+*	fid		FID of buffer containing the frame that was
+*			previously copied to MAC memory via the bap.
+*			(host order)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*	hw->resp0 will contain the FID being used by async notify
+*	process.  If reclaim==0, resp0 will be the same as the fid
+*	argument.  If reclaim==1, resp0 will be the different.
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_cmd_notify(hfa384x_t *hw, UINT16 reclaim, UINT16 fid,
+		       void *buf, UINT16 len)
+{
+	int	result = 0;
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+	cmd.cmd = HFA384x_CMD_CMDCODE_SET(HFA384x_CMDCODE_NOTIFY) |
+		HFA384x_CMD_RECL_SET(reclaim);
+	cmd.parm0 = fid;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+	spin_lock_bh(&hw->cmdlock);
+
+        /* Copy the record to FID */
+        result = hfa384x_copy_to_bap(hw, HFA384x_BAP_PROC, hw->infofid, 0, buf, len);
+        if ( result ) {
+                WLAN_LOG_DEBUG(1,
+			"copy_to_bap(%04x, 0, %d) failed, result=0x%x\n",
+                        hw->infofid, len, result);
+		result = -EIO;
+                goto failed;
+        }
+
+	result = hfa384x_docmd_wait(hw, &cmd);
+
+ failed:
+	spin_unlock_bh(&hw->cmdlock);
+
+	DBFEXIT;
+	return result;
+}
+
+
+#if 0
+/*----------------------------------------------------------------
+* hfa384x_cmd_inquiry
+*
+* Requests an info frame from the firmware.  The info frame will
+* be delivered asynchronously via the Info event.
+*
+* Arguments:
+*	hw		device structure
+*	fid		FID of the info frame requested. (host order)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+static int hfa384x_cmd_inquiry(hfa384x_t *hw, UINT16 fid)
+{
+	int	result = 0;
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+
+	cmd.cmd = HFA384x_CMD_CMDCODE_SET(HFA384x_CMDCODE_INQ);
+	cmd.parm0 = fid;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+	spin_lock_bh(&hw->cmdlock);
+	result = hfa384x_docmd_wait(hw, &cmd);
+	spin_unlock_bh(&hw->cmdlock);
+
+	DBFEXIT;
+	return result;
+}
+#endif
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_access
+*
+* Requests that a given record be copied to/from the record
+* buffer.  If we're writing from the record buffer, the contents
+* must previously have been written to the record buffer via the
+* bap.  If we're reading into the record buffer, the record can
+* be read out of the record buffer after this call.
+*
+* Arguments:
+*	hw		device structure
+*	write		[0|1] copy the record buffer to the given
+*			configuration record. (host order)
+*	rid		RID of the record to read/write. (host order)
+*	buf		host side record buffer.  Upon return it will
+*			contain the body portion of the record (minus the
+*			RID and len).
+*	len		buffer length (in bytes, should match record length)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_cmd_access(hfa384x_t *hw, UINT16 write, UINT16 rid,
+		       void* buf, UINT16 len)
+{
+	int	result = 0;
+	hfa384x_metacmd_t cmd;
+	hfa384x_rec_t	rec;
+
+	DBFENTER;
+
+#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,4,0))
+	/* This should NOT be called in interrupt context! */
+	if (in_irq()) {
+		WLAN_LOG_ERROR("Krap, in Interrupt context!");
+#ifdef WLAN_INCLUDE_DEBUG
+		BUG();
+#endif
+	}
+#endif
+	spin_lock_bh(&hw->cmdlock);
+
+	if (write) {
+		rec.rid = host2hfa384x_16(rid);
+		rec.reclen = host2hfa384x_16((len/2) + 1); /* note conversion to words, +1 for rid field */
+		/* write the record */
+		result = hfa384x_copy_to_bap4( hw, HFA384x_BAP_PROC, rid, 0,
+					       &rec, sizeof(rec),
+					       buf, len,
+					       NULL, 0, NULL, 0);
+		if ( result ) {
+			WLAN_LOG_DEBUG(3,"Failure writing record header+data\n");
+			goto fail;
+		}
+
+	}
+
+	cmd.cmd = HFA384x_CMD_CMDCODE_SET(HFA384x_CMDCODE_ACCESS) |
+		HFA384x_CMD_WRITE_SET(write);
+	cmd.parm0 = rid;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+	result = hfa384x_docmd_wait(hw, &cmd);
+	if ( result ) {
+		WLAN_LOG_ERROR("Call to hfa384x_docmd_wait failed (%d %d)\n",
+				result, cmd.result.resp0);
+		goto fail;
+	}
+
+	if (!write) {
+		result = hfa384x_copy_from_bap( hw, HFA384x_BAP_PROC, rid, 0, &rec, sizeof(rec));
+		if ( result ) {
+			WLAN_LOG_DEBUG(3,"Call to hfa384x_copy_from_bap failed\n");
+			goto fail;
+		}
+
+		/* Validate the record length */
+		if ( ((hfa384x2host_16(rec.reclen)-1)*2) != len ) {  /* note body len calculation in bytes */
+			WLAN_LOG_DEBUG(1, "RID len mismatch, rid=0x%04x hlen=%d fwlen=%d\n",
+					rid, len, (hfa384x2host_16(rec.reclen)-1)*2);
+			result = -ENODATA;
+			goto fail;
+		}
+
+		result = hfa384x_copy_from_bap( hw, HFA384x_BAP_PROC, rid, sizeof(rec), buf, len);
+
+	}
+
+ fail:
+	spin_unlock_bh(&hw->cmdlock);
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_monitor
+*
+* Enables the 'monitor mode' of the MAC.  Here's the description of
+* monitor mode that I've received thus far:
+*
+*  "The "monitor mode" of operation is that the MAC passes all
+*  frames for which the PLCP checks are correct. All received
+*  MPDUs are passed to the host with MAC Port = 7, with a
+*  receive status of good, FCS error, or undecryptable. Passing
+*  certain MPDUs is a violation of the 802.11 standard, but useful
+*  for a debugging tool."  Normal communication is not possible
+*  while monitor mode is enabled.
+*
+* Arguments:
+*	hw		device structure
+*	enable		a code (0x0b|0x0f) that enables/disables
+*			monitor mode. (host order)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_cmd_monitor(hfa384x_t *hw, UINT16 enable)
+{
+	int	result = 0;
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+
+	cmd.cmd = HFA384x_CMD_CMDCODE_SET(HFA384x_CMDCODE_MONITOR) |
+		HFA384x_CMD_AINFO_SET(enable);
+	cmd.parm0 = 0;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+	spin_lock_bh(&hw->cmdlock);
+	result = hfa384x_docmd_wait(hw, &cmd);
+	spin_unlock_bh(&hw->cmdlock);
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_download
+*
+* Sets the controls for the MAC controller code/data download
+* process.  The arguments set the mode and address associated
+* with a download.  Note that the aux registers should be enabled
+* prior to setting one of the download enable modes.
+*
+* Arguments:
+*	hw		device structure
+*	mode		0 - Disable programming and begin code exec
+*			1 - Enable volatile mem programming
+*			2 - Enable non-volatile mem programming
+*			3 - Program non-volatile section from NV download
+*			    buffer.
+*			(host order)
+*	lowaddr
+*	highaddr	For mode 1, sets the high & low order bits of
+*			the "destination address".  This address will be
+*			the execution start address when download is
+*			subsequently disabled.
+*			For mode 2, sets the high & low order bits of
+*			the destination in NV ram.
+*			For modes 0 & 3, should be zero. (host order)
+*			NOTE: these address args are in CMD format
+*	codelen		Length of the data to write in mode 2,
+*			zero otherwise. (host order)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_cmd_download(hfa384x_t *hw, UINT16 mode, UINT16 lowaddr,
+				UINT16 highaddr, UINT16 codelen)
+{
+	int	result = 0;
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+
+	cmd.cmd = HFA384x_CMD_CMDCODE_SET(HFA384x_CMDCODE_DOWNLD) |
+		HFA384x_CMD_PROGMODE_SET(mode);
+	cmd.parm0 = lowaddr;
+	cmd.parm1 = highaddr;
+	cmd.parm2 = codelen;
+
+	spin_lock_bh(&hw->cmdlock);
+	result = hfa384x_dl_docmd_wait(hw, &cmd);
+	spin_unlock_bh(&hw->cmdlock);
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_aux_enable
+*
+* Goes through the process of enabling the auxilary port.  This
+* is necessary prior to raw reads/writes to card data space.
+* Direct access to the card data space is only used for downloading
+* code and debugging.
+* Note that a call to this function is required before attempting
+* a download.
+*
+* Arguments:
+*	hw		device structure
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout)
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_cmd_aux_enable(hfa384x_t *hw, int force)
+{
+	int		result = -ETIMEDOUT;
+	unsigned long	flags;
+	UINT32		retries_remaining;
+	UINT16		reg;
+	UINT		auxen_mirror = hw->auxen;
+
+	DBFENTER;
+
+	/* Check for existing enable */
+	if ( hw->auxen ) {
+		hw->auxen++;
+		return 0;
+	}
+
+	/* acquire the lock */
+	spin_lock_irqsave( &(hw->cmdlock), flags);
+	/* wait for cmd register busy bit to clear */
+	retries_remaining = 100000;
+	do {
+		reg = hfa384x_getreg(hw, HFA384x_CMD);
+		udelay(10);
+	}
+	while (HFA384x_CMD_ISBUSY(reg) && --retries_remaining);
+	if (retries_remaining != 0) {
+		/* busy bit clear, it's OK to write to ParamX regs */
+		hfa384x_setreg(hw, HFA384x_AUXPW0,
+			HFA384x_PARAM0);
+		hfa384x_setreg(hw, HFA384x_AUXPW1,
+			HFA384x_PARAM1);
+		hfa384x_setreg(hw, HFA384x_AUXPW2,
+			HFA384x_PARAM2);
+
+		/* Set the aux enable in the Control register */
+		hfa384x_setreg(hw, HFA384x_CONTROL_AUX_DOENABLE,
+			HFA384x_CONTROL);
+
+		/* Now wait for completion */
+		retries_remaining = 100000;
+		do {
+			reg = hfa384x_getreg(hw, HFA384x_CONTROL);
+			udelay(10);
+		}
+		while ( ((reg & (BIT14|BIT15)) != HFA384x_CONTROL_AUX_ISENABLED) &&
+			--retries_remaining );
+		if (retries_remaining != 0) {
+			result = 0;
+			hw->auxen++;
+		}
+	}
+
+	/* Force it enabled even if the command failed, if told.. */
+	if ((hw->auxen == auxen_mirror) && force)
+		hw->auxen++;
+
+	spin_unlock_irqrestore( &(hw->cmdlock), flags);
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_aux_disable
+*
+* Goes through the process of disabling the auxilary port
+* enabled with aux_enable().
+*
+* Arguments:
+*	hw		device structure
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout)
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_cmd_aux_disable(hfa384x_t *hw)
+{
+	int		result = -ETIMEDOUT;
+	unsigned long   timeout;
+	UINT16		reg = 0;
+
+	DBFENTER;
+
+	/* See if there's more than one enable */
+	if (hw->auxen) hw->auxen--;
+	if (hw->auxen) return 0;
+
+	/* Clear the aux enable in the Control register */
+	hfa384x_setreg(hw, 0, HFA384x_PARAM0);
+	hfa384x_setreg(hw, 0, HFA384x_PARAM1);
+	hfa384x_setreg(hw, 0, HFA384x_PARAM2);
+	hfa384x_setreg(hw, HFA384x_CONTROL_AUX_DODISABLE,
+		HFA384x_CONTROL);
+
+	/* Now wait for completion */
+	timeout = jiffies + 1*HZ;
+	reg = hfa384x_getreg(hw, HFA384x_CONTROL);
+	while ( ((reg & (BIT14|BIT15)) != HFA384x_CONTROL_AUX_ISDISABLED) &&
+		time_before(jiffies,timeout) ){
+		udelay(10);
+		reg = hfa384x_getreg(hw, HFA384x_CONTROL);
+	}
+	if ((reg & (BIT14|BIT15)) == HFA384x_CONTROL_AUX_ISDISABLED ) {
+		result = 0;
+	}
+	DBFEXIT;
+	return result;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_low_level
+*
+* Write test commands to the card.  Some test commands don't make
+* sense without prior set-up.  For example, continous TX isn't very
+* useful until you set the channel.  That functionality should be
+*
+* Side effects:
+*
+* Call context:
+*      process thread
+* -----------------------------------------------------------------*/
+int hfa384x_drvr_low_level(hfa384x_t *hw, hfa384x_metacmd_t *cmd)
+{
+	int             result = 0;
+	DBFENTER;
+
+	/* Do i need a host2hfa... conversion ? */
+#if 0
+	printk(KERN_INFO "%#x %#x %#x %#x\n", cmd->cmd, cmd->parm0, cmd->parm1, cmd->parm2);
+#endif
+	spin_lock_bh(&hw->cmdlock);
+	result = hfa384x_docmd_wait(hw, cmd);
+	spin_unlock_bh(&hw->cmdlock);
+
+	DBFEXIT;
+	return result;
+}
+
+
+/* TODO: determine if these will ever be needed */
+#if 0
+int hfa384x_cmd_readmif(hfa384x_t *hw)
+{
+	DBFENTER;
+	DBFEXIT;
+	return 0;
+}
+
+
+int hfa384x_cmd_writemif(hfa384x_t *hw)
+{
+	DBFENTER;
+	DBFEXIT;
+	return 0;
+}
+#endif
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_mmi_read
+*
+* Read mmi registers.  mmi is intersil-speak for the baseband
+* processor registers.
+*
+* Arguments:
+*       hw              device structure
+*       register        The test register to be accessed (must be even #).
+*
+* Returns:
+*       0               success
+*       >0              f/w reported error - f/w status code
+*       <0              driver reported error
+*
+* Side effects:
+*
+* Call context:
+*       process thread
+----------------------------------------------------------------*/
+int hfa384x_drvr_mmi_read(hfa384x_t *hw, UINT32 addr, UINT32 *resp)
+{
+        int             result = 0;
+	hfa384x_metacmd_t cmd;
+
+        DBFENTER;
+	cmd.cmd = (UINT16) 0x30;
+	cmd.parm0 = (UINT16) addr;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+        /* Do i need a host2hfa... conversion ? */
+	spin_lock_bh(&hw->cmdlock);
+	result = hfa384x_docmd_wait(hw, &cmd);
+	spin_unlock_bh(&hw->cmdlock);
+
+	*resp = (UINT32) cmd.result.resp0;
+
+        DBFEXIT;
+        return result;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_mmi_write
+*
+* Read mmi registers.  mmi is intersil-speak for the baseband
+* processor registers.
+*
+* Arguments:
+*       hw              device structure
+*       addr            The test register to be accessed (must be even #).
+*       data            The data value to write to the register.
+*
+* Returns:
+*       0               success
+*       >0              f/w reported error - f/w status code
+*       <0              driver reported error
+*
+* Side effects:
+*
+* Call context:
+*       process thread
+----------------------------------------------------------------*/
+
+int
+hfa384x_drvr_mmi_write(hfa384x_t *hw, UINT32 addr, UINT32 data)
+{
+        int             result = 0;
+	hfa384x_metacmd_t cmd;
+
+        DBFENTER;
+	cmd.cmd = (UINT16) 0x31;
+	cmd.parm0 = (UINT16) addr;
+	cmd.parm1 = (UINT16) data;
+	cmd.parm2 = 0;
+
+        WLAN_LOG_DEBUG(1,"mmi write : addr = 0x%08x\n", addr);
+        WLAN_LOG_DEBUG(1,"mmi write : data = 0x%08x\n", data);
+
+        /* Do i need a host2hfa... conversion ? */
+	spin_lock_bh(&hw->cmdlock);
+	result = hfa384x_docmd_wait(hw, &cmd);
+	spin_unlock_bh(&hw->cmdlock);
+
+        DBFEXIT;
+        return result;
+}
+
+
+/* TODO: determine if these will ever be needed */
+#if 0
+int hfa384x_cmd_readmif(hfa384x_t *hw)
+{
+        DBFENTER;
+        DBFEXIT;
+        return 0;
+}
+
+
+int hfa384x_cmd_writemif(hfa384x_t *hw)
+{
+        DBFENTER;
+        DBFEXIT;
+        return 0;
+}
+#endif
+
+
+
+/*----------------------------------------------------------------
+* hfa384x_copy_from_bap
+*
+* Copies a collection of bytes from the MAC controller memory via
+* one set of BAP registers.
+*
+* Arguments:
+*	hw		device structure
+*	bap		[0|1] which BAP to use
+*	id		FID or RID, destined for the select register (host order)
+*	offset		An _even_ offset into the buffer for the given
+*			FID/RID.  We haven't the means to validate this,
+*			so be careful. (host order)
+*	buf		ptr to array of bytes
+*	len		length of data to transfer in bytes
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - value of offset reg.
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+*	interrupt
+----------------------------------------------------------------*/
+int hfa384x_copy_from_bap(hfa384x_t *hw, UINT16 bap, UINT16 id, UINT16 offset,
+				void *buf, UINT len)
+{
+	int		result = 0;
+	unsigned long	flags = 0;
+	UINT8		*d = (UINT8*)buf;
+	UINT		selectreg;
+	UINT		offsetreg;
+	UINT		datareg;
+	UINT		i;
+	UINT16		reg = 0;
+
+	DBFENTER;
+
+	/* Validate bap, offset, buf, and len */
+	if ( (bap > 1) ||
+	     (offset > HFA384x_BAP_OFFSET_MAX) ||
+	     (offset % 2) ||
+	     (buf == NULL) ||
+	     (len > HFA384x_BAP_DATALEN_MAX) ){
+	     	result = -EINVAL;
+	} else {
+		selectreg = (bap == 1) ?  HFA384x_SELECT1 : HFA384x_SELECT0 ;
+		offsetreg = (bap == 1) ?  HFA384x_OFFSET1 : HFA384x_OFFSET0 ;
+		datareg =   (bap == 1) ?  HFA384x_DATA1 : HFA384x_DATA0 ;
+
+		/* Obtain lock */
+		spin_lock_irqsave( &(hw->baplock), flags);
+
+		/* Write id to select reg */
+		hfa384x_setreg(hw, id, selectreg);
+		/* Write offset to offset reg */
+		hfa384x_setreg(hw, offset, offsetreg);
+		/* Wait for offset[busy] to clear (see BAP_TIMEOUT) */
+		i = 0;
+		do {
+			reg = hfa384x_getreg(hw, offsetreg);
+			if ( i > 0 ) udelay(10);
+			i++;
+		} while ( i < prism2_bap_timeout && HFA384x_OFFSET_ISBUSY(reg));
+#if (WLAN_HOSTIF != WLAN_PCI)
+		/* Release lock */
+		spin_unlock_irqrestore( &(hw->baplock), flags);
+#endif
+
+		if ( HFA384x_OFFSET_ISBUSY(reg) ){
+			/* If timeout, return -ETIMEDOUT */
+			result = reg;
+		} else if ( HFA384x_OFFSET_ISERR(reg) ){
+			/* If offset[err] == 1, return -EINVAL */
+			result = reg;
+		} else {
+			/* Read even(len) buf contents from data reg */
+			for ( i = 0; i < (len & 0xfffe); i+=2 ) {
+				*(UINT16*)(&(d[i])) =
+					hfa384x_getreg_noswap(hw, datareg);
+			}
+			/* If len odd, handle last byte */
+			if ( len % 2 ){
+				reg = hfa384x_getreg_noswap(hw, datareg);
+				d[len-1] = ((UINT8*)(&reg))[0];
+			}
+		}
+
+		/* According to Intersil errata dated 9/16/02:
+
+		"In PRISM PCI MAC host interface, if both BAPs are concurrently
+		 requesing memory access, both will accept the Ack.   There is no
+		 firmware workaround possible.  To prevent BAP access failures or
+		 hang conditions the host MUST NOT access both BAPs in sucession
+		 unless at least 5us elapses between accesses.  The safest choice
+		 is to USE ONLY ONE BAP for all data movement operations."
+
+		 What this means:
+
+		 We have to serialize ALL BAP accesses, and furthermore, add a 5us
+		 delay after access if we're using a PCI platform.
+
+		 Unfortunately, this means we have to lock out interrupts througout
+		 the entire BAP copy.
+
+		 It remains to be seen if "BAP access" means "BAP setup" or the more
+		 literal definition of "copying data back and forth"  I'm erring for
+		 the latter, safer definition.  -- SLP.
+
+		*/
+
+#if (WLAN_HOSTIF == WLAN_PCI)
+		udelay(5);
+		/* Release lock */
+		spin_unlock_irqrestore( &(hw->baplock), flags);
+#endif
+
+	}
+
+	if (result) {
+	  WLAN_LOG_DEBUG(1,
+			  "copy_from_bap(0x%04x, 0, %d) failed, result=0x%x\n",
+			  reg, len, result);
+	}
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_copy_to_bap
+*
+* Copies a collection of bytes to the MAC controller memory via
+* one set of BAP registers.
+*
+* Arguments:
+*	hw		device structure
+*	bap		[0|1] which BAP to use
+*	id		FID or RID, destined for the select register (host order)
+*	offset		An _even_ offset into the buffer for the given
+*			FID/RID.  We haven't the means to validate this,
+*			so be careful. (host order)
+*	buf		ptr to array of bytes
+*	len		length of data to transfer (in bytes)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - value of offset reg.
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+*	interrupt
+----------------------------------------------------------------*/
+int hfa384x_copy_to_bap(hfa384x_t *hw, UINT16 bap, UINT16 id, UINT16 offset,
+				void *buf, UINT len)
+{
+	return hfa384x_copy_to_bap4(hw, bap, id, offset, buf, len, NULL, 0, NULL, 0, NULL, 0);
+}
+
+int hfa384x_copy_to_bap4(hfa384x_t *hw, UINT16 bap, UINT16 id, UINT16 offset,
+			 void *buf, UINT len1, void* buf2, UINT len2,
+			 void *buf3, UINT len3, void *buf4, UINT len4)
+{
+	int		result = 0;
+	unsigned long	flags = 0;
+	UINT8		*d;
+	UINT		selectreg;
+	UINT		offsetreg;
+	UINT		datareg;
+	UINT		i;
+	UINT16		reg;
+
+	DBFENTER;
+
+//	printk(KERN_DEBUG "ctb1 %d id %04x o %d %d %d %d %d\n", bap, id, offset, len1, len2, len3, len4);
+
+	/* Validate bap, offset, buf, and len */
+	if ( (bap > 1) ||
+	     (offset > HFA384x_BAP_OFFSET_MAX) ||
+	     (offset % 2) ||
+	     (buf == NULL) ||
+	     (len1+len2+len3+len4 > HFA384x_BAP_DATALEN_MAX) ){
+	     	result = -EINVAL;
+	} else {
+		selectreg = (bap == 1) ? HFA384x_SELECT1 : HFA384x_SELECT0;
+		offsetreg = (bap == 1) ? HFA384x_OFFSET1 : HFA384x_OFFSET0;
+		datareg =   (bap == 1) ? HFA384x_DATA1   : HFA384x_DATA0;
+		/* Obtain lock */
+		spin_lock_irqsave( &(hw->baplock), flags);
+
+		/* Write id to select reg */
+		hfa384x_setreg(hw, id, selectreg);
+		udelay(10);
+		/* Write offset to offset reg */
+		hfa384x_setreg(hw, offset, offsetreg);
+		/* Wait for offset[busy] to clear (see BAP_TIMEOUT) */
+		i = 0;
+		do {
+			reg = hfa384x_getreg(hw, offsetreg);
+			if ( i > 0 ) udelay(10);
+			i++;
+		} while ( i < prism2_bap_timeout && HFA384x_OFFSET_ISBUSY(reg));
+
+#if (WLAN_HOSTIF != WLAN_PCI)
+		/* Release lock */
+		spin_unlock_irqrestore( &(hw->baplock), flags);
+#endif
+
+		if ( HFA384x_OFFSET_ISBUSY(reg) ){
+			/* If timeout, return reg */
+			result = reg;
+		} else if ( HFA384x_OFFSET_ISERR(reg) ){
+			/* If offset[err] == 1, return reg */
+			result = reg;
+		} else {
+			d = (UINT8*)buf;
+			/* Write even(len1) buf contents to data reg */
+			for ( i = 0; i < (len1 & 0xfffe); i+=2 ) {
+				hfa384x_setreg_noswap(hw,
+					*(UINT16*)(&(d[i])), datareg);
+			}
+			if (len1 & 1) {
+				UINT16 data;
+				UINT8 *b = (UINT8 *) &data;
+				b[0] = d[len1-1];
+				if (buf2 != NULL) {
+					d = (UINT8*)buf2;
+					b[1] = d[0];
+					len2--;
+					buf2++;
+				}
+				hfa384x_setreg_noswap(hw, data, datareg);
+			}
+			if ((buf2 != NULL) && (len2 > 0)) {
+				/* Write even(len2) buf contents to data reg */
+				d = (UINT8*)buf2;
+				for ( i = 0; i < (len2 & 0xfffe); i+=2 ) {
+					hfa384x_setreg_noswap(hw, *(UINT16*)(&(d[i])), datareg);
+				}
+				if (len2 & 1) {
+					UINT16 data;
+					UINT8 *b = (UINT8 *) &data;
+					b[0] = d[len2-1];
+					if (buf3 != NULL) {
+						d = (UINT8*)buf3;
+						b[1] = d[0];
+						len3--;
+						buf3++;
+					}
+					hfa384x_setreg_noswap(hw, data, datareg);
+				}
+			}
+
+			if ((buf3 != NULL) && (len3 > 0)) {
+				/* Write even(len3) buf contents to data reg */
+				d = (UINT8*)buf3;
+				for ( i = 0; i < (len3 & 0xfffe); i+=2 ) {
+					hfa384x_setreg_noswap(hw, *(UINT16*)(&(d[i])), datareg);
+				}
+				if (len3 & 1) {
+					UINT16 data;
+					UINT8 *b = (UINT8 *) &data;
+					b[0] = d[len3-1];
+					if (buf4 != NULL) {
+						d = (UINT8*)buf4;
+						b[1] = d[0];
+						len4--;
+						buf4++;
+					}
+					hfa384x_setreg_noswap(hw, data, datareg);
+				}
+			}
+			if ((buf4 != NULL) && (len4 > 0)) {
+				/* Write even(len4) buf contents to data reg */
+				d = (UINT8*)buf4;
+				for ( i = 0; i < (len4 & 0xfffe); i+=2 ) {
+					hfa384x_setreg_noswap(hw, *(UINT16*)(&(d[i])), datareg);
+				}
+				if (len4 & 1) {
+					UINT16 data;
+					UINT8 *b = (UINT8 *) &data;
+					b[0] = d[len4-1];
+					b[1] = 0;
+
+					hfa384x_setreg_noswap(hw, data, datareg);
+				}
+			}
+//			printk(KERN_DEBUG "ctb2 %d id %04x o %d %d %d %d %d\n", bap, id, offset, len1, len2, len3, len4);
+
+		}
+
+#if (WLAN_HOSTIF == WLAN_PCI)
+		udelay(5);
+		/* Release lock */
+		spin_unlock_irqrestore( &(hw->baplock), flags);
+#endif
+
+	}
+
+	if (result)
+		WLAN_LOG_ERROR("copy_to_bap() failed.\n");
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_copy_from_aux
+*
+* Copies a collection of bytes from the controller memory.  The
+* Auxiliary port MUST be enabled prior to calling this function.
+* We _might_ be in a download state.
+*
+* Arguments:
+*	hw		device structure
+*	cardaddr	address in hfa384x data space to read
+*	auxctl		address space select
+*	buf		ptr to destination host buffer
+*	len		length of data to transfer (in bytes)
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*	buf contains the data copied
+*
+* Call context:
+*	process thread
+*	interrupt
+----------------------------------------------------------------*/
+void
+hfa384x_copy_from_aux(
+	hfa384x_t *hw, UINT32 cardaddr, UINT32 auxctl, void *buf, UINT len)
+{
+	UINT16		currpage;
+	UINT16		curroffset;
+	UINT		i = 0;
+
+	DBFENTER;
+
+	if ( !(hw->auxen) ) {
+		WLAN_LOG_DEBUG(1,
+			"Attempt to read 0x%04x when aux not enabled\n",
+			cardaddr);
+		return;
+
+	}
+	/* Build appropriate aux page and offset */
+	currpage = HFA384x_AUX_MKPAGE(cardaddr);
+	curroffset = HFA384x_AUX_MKOFF(cardaddr, auxctl);
+	hfa384x_setreg(hw, currpage, HFA384x_AUXPAGE);
+	hfa384x_setreg(hw, curroffset, HFA384x_AUXOFFSET);
+	udelay(5);	/* beat */
+
+	/* read the data */
+	while ( i < len) {
+		*((UINT16*)(buf+i)) = hfa384x_getreg_noswap(hw, HFA384x_AUXDATA);
+		i+=2;
+		curroffset+=2;
+		if ( (curroffset&HFA384x_ADDR_AUX_OFF_MASK) >
+			HFA384x_ADDR_AUX_OFF_MAX ) {
+			currpage++;
+			curroffset = 0;
+			curroffset = HFA384x_AUX_MKOFF(curroffset, auxctl);
+			hfa384x_setreg(hw, currpage, HFA384x_AUXPAGE);
+			hfa384x_setreg(hw, curroffset, HFA384x_AUXOFFSET);
+			udelay(5);	/* beat */
+		}
+	}
+	/* Make sure the auxctl bits are clear */
+	hfa384x_setreg(hw, 0, HFA384x_AUXOFFSET);
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_copy_to_aux
+*
+* Copies a collection of bytes to the controller memory.  The
+* Auxiliary port MUST be enabled prior to calling this function.
+* We _might_ be in a download state.
+*
+* Arguments:
+*	hw		device structure
+*	cardaddr	address in hfa384x data space to read
+*	auxctl		address space select
+*	buf		ptr to destination host buffer
+*	len		length of data to transfer (in bytes)
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*	Controller memory now contains a copy of buf
+*
+* Call context:
+*	process thread
+*	interrupt
+----------------------------------------------------------------*/
+void
+hfa384x_copy_to_aux(
+	hfa384x_t *hw, UINT32 cardaddr, UINT32 auxctl, void *buf, UINT len)
+{
+	UINT16		currpage;
+	UINT16		curroffset;
+	UINT		i = 0;
+
+	DBFENTER;
+
+	if ( !(hw->auxen) ) {
+		WLAN_LOG_DEBUG(1,
+			"Attempt to read 0x%04x when aux not enabled\n",
+			cardaddr);
+		return;
+
+	}
+	/* Build appropriate aux page and offset */
+	currpage = HFA384x_AUX_MKPAGE(cardaddr);
+	curroffset = HFA384x_AUX_MKOFF(cardaddr, auxctl);
+	hfa384x_setreg(hw, currpage, HFA384x_AUXPAGE);
+	hfa384x_setreg(hw, curroffset, HFA384x_AUXOFFSET);
+	udelay(5);	/* beat */
+
+	/* write the data */
+	while ( i < len) {
+		hfa384x_setreg_noswap(hw,
+			*((UINT16*)(buf+i)), HFA384x_AUXDATA);
+		i+=2;
+		curroffset+=2;
+		if ( curroffset > HFA384x_ADDR_AUX_OFF_MAX ) {
+			currpage++;
+			curroffset = 0;
+			hfa384x_setreg(hw, currpage, HFA384x_AUXPAGE);
+			hfa384x_setreg(hw, curroffset, HFA384x_AUXOFFSET);
+			udelay(5);	/* beat */
+		}
+	}
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_wait
+*
+* Waits for availability of the Command register, then
+* issues the given command.  Then polls the Evstat register
+* waiting for command completion.  Timeouts shouldn't be
+* possible since we're preventing overlapping commands and all
+* commands should be cleared and acknowledged.
+*
+* Arguments:
+*	wlandev		device structure
+*       cmd             cmd structure.  Includes all arguments and result
+*                       data points.  All in host order.
+*
+* Returns:
+*	0		success
+*	-ETIMEDOUT	timed out waiting for register ready or
+*			command completion
+*	>0		command indicated error, Status and Resp0-2 are
+*			in hw structure.
+*
+* Side effects:
+*
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+static int hfa384x_docmd_wait( hfa384x_t *hw, hfa384x_metacmd_t *cmd)
+{
+	int		result = -ETIMEDOUT;
+	UINT16		reg = 0;
+	UINT16          counter;
+
+	DBFENTER;
+
+	hw->cmdflag = 0;
+	hw->cmddata = cmd;
+
+	/* wait for the busy bit to clear */
+	counter = 0;
+	reg = hfa384x_getreg(hw, HFA384x_CMD);
+	while ( HFA384x_CMD_ISBUSY(reg) &&
+		(counter < 10)) {
+		reg = hfa384x_getreg(hw, HFA384x_CMD);
+		counter++;
+		udelay(10);
+	}
+
+	if (HFA384x_CMD_ISBUSY(reg)) {
+		WLAN_LOG_ERROR("hfa384x_cmd timeout(1), reg=0x%0hx.\n", reg);
+		goto failed;
+	}
+	if (!HFA384x_CMD_ISBUSY(reg)) {
+		/* busy bit clear, write command */
+		hfa384x_setreg(hw, cmd->parm0, HFA384x_PARAM0);
+		hfa384x_setreg(hw, cmd->parm1, HFA384x_PARAM1);
+		hfa384x_setreg(hw, cmd->parm2, HFA384x_PARAM2);
+		hfa384x_setreg(hw, cmd->cmd, HFA384x_CMD);
+
+#ifdef CMD_IRQ
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,2,0))
+		while (! hw->cmdflag)
+			interruptible_sleep_on(&hw->cmdq);
+#else
+		wait_event_interruptible(hw->cmdq, hw->cmdflag);
+#endif
+		result = HFA384x_STATUS_RESULT_GET(cmd->status);
+#else // CMD_IRQ
+		/* Now wait for completion */
+		counter = 0;
+		reg = hfa384x_getreg(hw, HFA384x_EVSTAT);
+		/* Initialization is the problem.  It takes about
+                   100ms. "normal" commands are typically is about
+                   200-400 us (I've never seen less than 200).  Longer
+                   is better so that we're not hammering the bus. */
+		while ( !HFA384x_EVSTAT_ISCMD(reg) &&
+			(counter < 5000)) {
+			reg = hfa384x_getreg(hw, HFA384x_EVSTAT);
+			counter++;
+			udelay(200);
+		}
+
+		if ( HFA384x_EVSTAT_ISCMD(reg) ) {
+			result = 0;
+			cmd->result.status = hfa384x_getreg(hw, HFA384x_STATUS);
+			cmd->result.resp0 = hfa384x_getreg(hw, HFA384x_RESP0);
+			cmd->result.resp1 = hfa384x_getreg(hw, HFA384x_RESP1);
+			cmd->result.resp2 = hfa384x_getreg(hw, HFA384x_RESP2);
+			hfa384x_setreg(hw, HFA384x_EVACK_CMD,
+				HFA384x_EVACK);
+			result = HFA384x_STATUS_RESULT_GET(cmd->result.status);
+		} else {
+			WLAN_LOG_ERROR("hfa384x_cmd timeout(2), reg=0x%0hx.\n", reg);
+		}
+#endif  /* CMD_IRQ */
+	}
+
+ failed:
+	hw->cmdflag = 0;
+	hw->cmddata = NULL;
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_dl_docmd_wait
+*
+* Waits for availability of the Command register, then
+* issues the given command.  Then polls the Evstat register
+* waiting for command completion.  Timeouts shouldn't be
+* possible since we're preventing overlapping commands and all
+* commands should be cleared and acknowledged.
+*
+* This routine is only used for downloads.  Since it doesn't lock out
+* interrupts the system response is much better.
+*
+* Arguments:
+*	wlandev		device structure
+*       cmd             cmd structure.  Includes all arguments and result
+*                       data points.  All in host order.
+*
+* Returns:
+*	0		success
+*	-ETIMEDOUT	timed out waiting for register ready or
+*			command completion
+*	>0		command indicated error, Status and Resp0-2 are
+*			in hw structure.
+*
+* Side effects:
+*
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+static int hfa384x_dl_docmd_wait( hfa384x_t *hw, hfa384x_metacmd_t *cmd)
+{
+	int		result = -ETIMEDOUT;
+	unsigned long	timeout;
+	UINT16		reg = 0;
+
+	DBFENTER;
+	/* wait for the busy bit to clear */
+	timeout = jiffies + 1*HZ;
+	reg = hfa384x_getreg(hw, HFA384x_CMD);
+	while ( HFA384x_CMD_ISBUSY(reg) && time_before( jiffies, timeout) ) {
+		reg = hfa384x_getreg(hw, HFA384x_CMD);
+		udelay(10);
+	}
+	if (HFA384x_CMD_ISBUSY(reg)) {
+		WLAN_LOG_WARNING("Timed out waiting for cmd register.\n");
+		goto failed;
+	}
+
+	if (!HFA384x_CMD_ISBUSY(reg)) {
+		/* busy bit clear, write command */
+		hfa384x_setreg(hw, cmd->parm0, HFA384x_PARAM0);
+		hfa384x_setreg(hw, cmd->parm1, HFA384x_PARAM1);
+		hfa384x_setreg(hw, cmd->parm2, HFA384x_PARAM2);
+		hfa384x_setreg(hw, cmd->cmd, HFA384x_CMD);
+
+		/* Now wait for completion */
+		if ( (HFA384x_CMD_CMDCODE_GET(cmd->cmd) == HFA384x_CMDCODE_DOWNLD) ) {
+			/* dltimeout is in ms */
+			timeout = (((UINT32)hw->dltimeout) / 1000UL) * HZ;
+			if ( timeout > 0 ) {
+				timeout += jiffies;
+			} else {
+				timeout = jiffies + 1*HZ;
+			}
+		} else {
+			timeout = jiffies + 1*HZ;
+		}
+		reg = hfa384x_getreg(hw, HFA384x_EVSTAT);
+		while ( !HFA384x_EVSTAT_ISCMD(reg) && time_before(jiffies,timeout) ) {
+			udelay(100);
+			reg = hfa384x_getreg(hw, HFA384x_EVSTAT);
+		}
+		if ( HFA384x_EVSTAT_ISCMD(reg) ) {
+			result = 0;
+			cmd->result.status = hfa384x_getreg(hw, HFA384x_STATUS);
+			cmd->result.resp0 = hfa384x_getreg(hw, HFA384x_RESP0);
+			cmd->result.resp1 = hfa384x_getreg(hw, HFA384x_RESP1);
+			cmd->result.resp2 = hfa384x_getreg(hw, HFA384x_RESP2);
+			hfa384x_setreg(hw, HFA384x_EVACK_CMD, HFA384x_EVACK);
+			result = HFA384x_STATUS_RESULT_GET(cmd->result.status);
+		}
+	}
+
+failed:
+	DBFEXIT;
+	return result;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_start
+*
+* Issues the MAC initialize command, sets up some data structures,
+* and enables the interrupts.  After this function completes, the
+* low-level stuff should be ready for any/all commands.
+*
+* Arguments:
+*	hw		device structure
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_drvr_start(hfa384x_t *hw)
+{
+	int	result = 0;
+	UINT16			reg;
+	int			i;
+	int			j;
+	DBFENTER;
+
+	/* call initialize */
+	result = hfa384x_cmd_initialize(hw);
+	if (result != 0) {
+		WLAN_LOG_ERROR("Initialize command failed.\n");
+		goto failed;
+	}
+
+	/* make sure interrupts are disabled and any layabout events cleared */
+	hfa384x_setreg(hw, 0, HFA384x_INTEN);
+	hfa384x_setreg(hw, 0xffff, HFA384x_EVACK);
+
+        hw->txfid_head = 0;
+        hw->txfid_tail = 0;
+        hw->txfid_N = HFA384x_DRVR_FIDSTACKLEN_MAX;
+        memset(hw->txfid_queue, 0, sizeof(hw->txfid_queue));
+
+	/* Allocate tx and notify FIDs */
+	/* First, tx */
+	for ( i = 0; i < HFA384x_DRVR_FIDSTACKLEN_MAX-1; i++) {
+		result = hfa384x_cmd_allocate(hw, HFA384x_DRVR_TXBUF_MAX);
+		if (result != 0) {
+			WLAN_LOG_ERROR("Allocate(tx) command failed.\n");
+			goto failed;
+		}
+		j = 0;
+		do {
+			reg = hfa384x_getreg(hw, HFA384x_EVSTAT);
+			udelay(10);
+			j++;
+		} while ( !HFA384x_EVSTAT_ISALLOC(reg) && j < 50); /* 50 is timeout */
+		if ( j >= 50 ) {
+			WLAN_LOG_ERROR("Timed out waiting for evalloc(tx).\n");
+			result = -ETIMEDOUT;
+			goto failed;
+		}
+		reg = hfa384x_getreg(hw, HFA384x_ALLOCFID);
+
+		txfid_queue_add(hw, reg);
+
+		WLAN_LOG_DEBUG(4,"hw->txfid_queue[%d]=0x%04x\n",i,reg);
+
+		reg = HFA384x_EVACK_ALLOC_SET(1);
+		hfa384x_setreg(hw, reg, HFA384x_EVACK);
+
+	}
+
+	/* Now, the info frame fid */
+	result = hfa384x_cmd_allocate(hw, HFA384x_INFOFRM_MAXLEN);
+	if (result != 0) {
+		WLAN_LOG_ERROR("Allocate(tx) command failed.\n");
+		goto failed;
+	}
+	i = 0;
+	do {
+		reg = hfa384x_getreg(hw, HFA384x_EVSTAT);
+		udelay(10);
+		i++;
+	} while ( !HFA384x_EVSTAT_ISALLOC(reg) && i < 50); /* 50 is timeout */
+	if ( i >= 50 ) {
+		WLAN_LOG_ERROR("Timed out waiting for evalloc(info).\n");
+		result = -ETIMEDOUT;
+		goto failed;
+	}
+	hw->infofid = hfa384x_getreg(hw, HFA384x_ALLOCFID);
+	reg = HFA384x_EVACK_ALLOC_SET(1);
+	hfa384x_setreg(hw, reg, HFA384x_EVACK);
+	WLAN_LOG_DEBUG(4,"hw->infofid=0x%04x\n", hw->infofid);
+
+	/* Set swsupport regs to magic # for card presence detection */
+	hfa384x_setreg(hw, HFA384x_DRVR_MAGIC, HFA384x_SWSUPPORT0);
+
+	/* Now enable the interrupts and set the running state */
+	hfa384x_setreg(hw, 0xffff, HFA384x_EVSTAT);
+	hfa384x_events_all(hw);
+
+	hw->state = HFA384x_STATE_RUNNING;
+
+	goto done;
+failed:
+	WLAN_LOG_ERROR("Failed, result=%d\n", result);
+done:
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_stop
+*
+* Issues the initialize command to leave us in the 'reset' state.
+*
+* Arguments:
+*	hw		device structure
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_drvr_stop(hfa384x_t *hw)
+{
+	int	result = 0;
+	int i;
+	DBFENTER;
+
+	del_timer_sync(&hw->commsqual_timer);
+
+	if ( hw->wlandev->hwremoved ) {
+		/* only flush when we're shutting down for good */
+		flush_scheduled_work();
+	}
+
+	if (hw->state == HFA384x_STATE_RUNNING) {
+		/*
+		 * Send the MAC initialize cmd.
+		 */
+		hfa384x_cmd_initialize(hw);
+
+		/*
+		 * Make absolutely sure interrupts are disabled and any
+		 * layabout events cleared
+		 */
+		hfa384x_setreg(hw, 0, HFA384x_INTEN);
+		hfa384x_setreg(hw, 0xffff, HFA384x_EVACK);
+	}
+
+	tasklet_kill(&hw->bap_tasklet);
+
+	hw->link_status = HFA384x_LINK_NOTCONNECTED;
+	hw->state = HFA384x_STATE_INIT;
+
+	/* Clear all the port status */
+	for ( i = 0; i < HFA384x_NUMPORTS_MAX; i++) {
+		hw->port_enabled[i] = 0;
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_txframe
+*
+* Takes a frame from prism2sta and queues it for transmission.
+*
+* Arguments:
+*	hw		device structure
+*	skb		packet buffer struct.  Contains an 802.11
+*			data frame.
+*       p80211_hdr      points to the 802.11 header for the packet.
+* Returns:
+*	0		Success and more buffs available
+*	1		Success but no more buffs
+*	2		Allocation failure
+*	3		MAC Tx command failed
+*	4		Buffer full or queue busy
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+int hfa384x_drvr_txframe(hfa384x_t *hw, struct sk_buff *skb, p80211_hdr_t *p80211_hdr, p80211_metawep_t *p80211_wep)
+{
+	hfa384x_tx_frame_t	txdesc;
+	UINT16			macq = 0;
+	UINT16			fid;
+	int			result;
+
+	DBFENTER;
+
+	/* Build Tx frame structure */
+	/* Set up the control field */
+	memset(&txdesc, 0, sizeof(txdesc));
+
+/* Tx complete and Tx exception disable per dleach.  Might be causing
+ * buf depletion
+ */
+#define DOBOTH 1
+#if DOBOTH
+	txdesc.tx_control =
+		HFA384x_TX_MACPORT_SET(0) | HFA384x_TX_STRUCTYPE_SET(1) |
+		HFA384x_TX_TXEX_SET(1) | HFA384x_TX_TXOK_SET(1);
+#elif DOEXC
+	txdesc.tx_control =
+		HFA384x_TX_MACPORT_SET(0) | HFA384x_TX_STRUCTYPE_SET(1) |
+		HFA384x_TX_TXEX_SET(1) | HFA384x_TX_TXOK_SET(0);
+#else
+	txdesc.tx_control =
+		HFA384x_TX_MACPORT_SET(0) | HFA384x_TX_STRUCTYPE_SET(1) |
+		HFA384x_TX_TXEX_SET(0) | HFA384x_TX_TXOK_SET(0);
+#endif
+
+	/* if we're using host WEP, increase size by IV+ICV */
+	if (p80211_wep->data) {
+		txdesc.data_len = host2hfa384x_16(skb->len+8);
+		//		txdesc.tx_control |= HFA384x_TX_NOENCRYPT_SET(1);
+	} else {
+		txdesc.data_len =  host2hfa384x_16(skb->len);
+	}
+
+	txdesc.tx_control = host2hfa384x_16(txdesc.tx_control);
+	/* copy the header over to the txdesc */
+	memcpy(&(txdesc.frame_control), p80211_hdr, sizeof(p80211_hdr_t));
+
+	/* Since tbusy is set whenever the stack is empty, there should
+	 * always be something on the stack if we get to this point.
+	 * [MSM]: NOT TRUE!!!!! so I added the test of fid below.
+	 */
+
+	/* Allocate FID */
+
+	fid = txfid_queue_remove(hw);
+
+	if ( fid == 0 ) { /* stack or queue was empty */
+		return 4;
+	}
+
+	/* now let's get the cmdlock */
+	spin_lock(&hw->cmdlock);
+
+	/* Copy descriptor+payload to FID */
+        if (p80211_wep->data) {
+		result = hfa384x_copy_to_bap4(hw, HFA384x_BAP_PROC, fid, 0,
+					      &txdesc, sizeof(txdesc),
+					      p80211_wep->iv, sizeof(p80211_wep->iv),
+					      p80211_wep->data, skb->len,
+					      p80211_wep->icv, sizeof(p80211_wep->icv));
+	} else {
+		result = hfa384x_copy_to_bap4(hw, HFA384x_BAP_PROC, fid, 0,
+					      &txdesc, sizeof(txdesc),
+					      skb->data, skb->len,
+					      NULL, 0, NULL, 0);
+	}
+
+	if ( result ) {
+		WLAN_LOG_DEBUG(1,
+			"copy_to_bap(%04x, %d, %d) failed, result=0x%x\n",
+			fid,
+		 	sizeof(txdesc),
+	 		skb->len,
+			result);
+
+		/* put the fid back in the queue */
+		txfid_queue_add(hw, fid);
+
+		result = 3;
+		goto failed;
+	}
+
+	/* Issue Tx command */
+	result = hfa384x_cmd_transmit(hw, HFA384x_TXCMD_RECL, macq, fid);
+
+	if ( result != 0 ) {
+		txfid_queue_add(hw, fid);
+
+		WLAN_LOG_DEBUG(1,"cmd_tx(%04x) failed, result=%d\n",
+			fid, result);
+		result = 3;
+		goto failed;
+	}
+
+	/* indicate we haven't any buffers, int_alloc will clear */
+	result = txfid_queue_empty(hw);
+failed:
+
+	spin_unlock(&hw->cmdlock);
+
+	DBFEXIT;
+	return result;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_interrupt
+*
+* Driver interrupt handler.
+*
+* Arguments:
+*	irq		irq number
+*	dev_id		pointer to the device
+*	regs		registers
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*	May result in a frame being passed up the stack or an info
+*	frame being handled.
+*
+* Call context:
+*	Ummm, could it be interrupt?
+----------------------------------------------------------------*/
+irqreturn_t hfa384x_interrupt(int irq, void *dev_id PT_REGS)
+{
+	int			reg;
+	wlandevice_t		*wlandev = (wlandevice_t*)dev_id;
+	hfa384x_t		*hw = wlandev->priv;
+	int			ev_read = 0;
+	DBFENTER;
+
+	if (!wlandev || wlandev->hwremoved)
+		return IRQ_NONE;  /* Not much we can do w/o hardware */
+#if (WLAN_HOSTIF == WLAN_PCMCIA)
+	if (hw->iobase == 0)  /* XXX FIXME Properly */
+		return IRQ_NONE;
+#endif
+
+	for (;;ev_read++) {
+		if (ev_read >= prism2_irq_evread_max)
+			break;
+
+		/* Check swsupport reg magic # for card presence */
+		reg = hfa384x_getreg(hw, HFA384x_SWSUPPORT0);
+		if ( reg != HFA384x_DRVR_MAGIC) {
+			WLAN_LOG_DEBUG(2, "irq=%d, no magic.  Card removed?.\n", irq);
+			break;
+		}
+
+		/* read the EvStat register for interrupt enabled events */
+		reg = hfa384x_getreg(hw, HFA384x_EVSTAT);
+
+		/* AND with the enabled interrupts */
+		reg &= hfa384x_getreg(hw, HFA384x_INTEN);
+
+		/* Handle the events */
+		if ( HFA384x_EVSTAT_ISWTERR(reg) ){
+			WLAN_LOG_ERROR(
+			"Error: WTERR interrupt received (unhandled).\n");
+			hfa384x_setreg(hw, HFA384x_EVACK_WTERR_SET(1),
+				HFA384x_EVACK);
+		}
+
+		if ( HFA384x_EVSTAT_ISINFDROP(reg) ){
+			hfa384x_int_infdrop(wlandev);
+			hfa384x_setreg(hw, HFA384x_EVACK_INFDROP_SET(1),
+				HFA384x_EVACK);
+		}
+
+		if (HFA384x_EVSTAT_ISBAP_OP(reg)) {
+			/* Disable the BAP interrupts */
+			hfa384x_events_nobap(hw);
+			tasklet_schedule(&hw->bap_tasklet);
+		}
+
+		if ( HFA384x_EVSTAT_ISALLOC(reg) ){
+			hfa384x_int_alloc(wlandev);
+			hfa384x_setreg(hw, HFA384x_EVACK_ALLOC_SET(1),
+				HFA384x_EVACK);
+		}
+
+		if ( HFA384x_EVSTAT_ISDTIM(reg) ){
+			hfa384x_int_dtim(wlandev);
+			hfa384x_setreg(hw, HFA384x_EVACK_DTIM_SET(1),
+				HFA384x_EVACK);
+		}
+#ifdef CMD_IRQ
+		if ( HFA384x_EVSTAT_ISCMD(reg) ){
+			hfa384x_int_cmd(wlandev);
+			hfa384x_setreg(hw, HFA384x_EVACK_CMD_SET(1),
+				       HFA384x_EVACK);
+		}
+#endif
+
+		/* allow the evstat to be updated after the evack */
+		udelay(20);
+	}
+
+	DBFEXIT;
+	return IRQ_HANDLED;
+}
+
+#ifdef CMD_IRQ
+/*----------------------------------------------------------------
+* hfa384x_int_cmd
+*
+* Handles command completion event.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+void hfa384x_int_cmd(wlandevice_t *wlandev)
+{
+	hfa384x_t		*hw = wlandev->priv;
+	DBFENTER;
+
+	// check to make sure it's the right command?
+	if (hw->cmddata) {
+		hw->cmddata->status = hfa384x_getreg(hw, HFA384x_STATUS);
+		hw->cmddata->resp0 = hfa384x_getreg(hw, HFA384x_RESP0);
+		hw->cmddata->resp1 = hfa384x_getreg(hw, HFA384x_RESP1);
+		hw->cmddata->resp2 = hfa384x_getreg(hw, HFA384x_RESP2);
+	}
+	hw->cmdflag = 1;
+
+	printk(KERN_INFO "um. int_cmd\n");
+
+	wake_up_interruptible(&hw->cmdq);
+
+	// XXXX perform a bap copy too?
+
+	DBFEXIT;
+	return;
+}
+#endif
+
+/*----------------------------------------------------------------
+* hfa384x_int_dtim
+*
+* Handles the DTIM early warning event.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void hfa384x_int_dtim(wlandevice_t *wlandev)
+{
+#if 0
+	hfa384x_t		*hw = wlandev->priv;
+#endif
+	DBFENTER;
+	prism2sta_ev_dtim(wlandev);
+	DBFEXIT;
+	return;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_int_infdrop
+*
+* Handles the InfDrop event.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void hfa384x_int_infdrop(wlandevice_t *wlandev)
+{
+#if 0
+	hfa384x_t		*hw = wlandev->priv;
+#endif
+	DBFENTER;
+	prism2sta_ev_infdrop(wlandev);
+	DBFEXIT;
+	return;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_int_info
+*
+* Handles the Info event.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	tasklet
+----------------------------------------------------------------*/
+static void hfa384x_int_info(wlandevice_t *wlandev)
+{
+	hfa384x_t		*hw = wlandev->priv;
+	UINT16			reg;
+	hfa384x_InfFrame_t	inf;
+	int			result;
+	DBFENTER;
+	/* Retrieve the FID */
+	reg = hfa384x_getreg(hw, HFA384x_INFOFID);
+
+	/* Retrieve the length */
+	result = hfa384x_copy_from_bap( hw,
+		HFA384x_BAP_INT, reg, 0, &inf.framelen, sizeof(UINT16));
+	if ( result ) {
+		WLAN_LOG_DEBUG(1,
+			"copy_from_bap(0x%04x, 0, %d) failed, result=0x%x\n",
+			reg, sizeof(inf), result);
+		goto failed;
+	}
+	inf.framelen = hfa384x2host_16(inf.framelen);
+
+	/* Retrieve the rest */
+	result = hfa384x_copy_from_bap( hw,
+		HFA384x_BAP_INT, reg, sizeof(UINT16),
+		&(inf.infotype), inf.framelen * sizeof(UINT16));
+	if ( result ) {
+		WLAN_LOG_DEBUG(1,
+			"copy_from_bap(0x%04x, 0, %d) failed, result=0x%x\n",
+			reg, sizeof(inf), result);
+		goto failed;
+	}
+
+	prism2sta_ev_info(wlandev, &inf);
+failed:
+	DBFEXIT;
+	return;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_int_txexc
+*
+* Handles the TxExc event.  A Transmit Exception event indicates
+* that the MAC's TX process was unsuccessful - so the packet did
+* not get transmitted.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	tasklet
+----------------------------------------------------------------*/
+static void hfa384x_int_txexc(wlandevice_t *wlandev)
+{
+	hfa384x_t		*hw = wlandev->priv;
+	UINT16			status;
+	UINT16			fid;
+	int			result = 0;
+	DBFENTER;
+	/* Collect the status and display */
+	fid = hfa384x_getreg(hw, HFA384x_TXCOMPLFID);
+	result = hfa384x_copy_from_bap(hw, HFA384x_BAP_INT, fid, 0, &status, sizeof(status));
+	if ( result ) {
+		WLAN_LOG_DEBUG(1,
+			"copy_from_bap(0x%04x, 0, %d) failed, result=0x%x\n",
+			fid, sizeof(status), result);
+		goto failed;
+	}
+	status = hfa384x2host_16(status);
+	prism2sta_ev_txexc(wlandev, status);
+failed:
+	DBFEXIT;
+	return;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_int_tx
+*
+* Handles the Tx event.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	tasklet
+----------------------------------------------------------------*/
+static void hfa384x_int_tx(wlandevice_t *wlandev)
+{
+	hfa384x_t		*hw = wlandev->priv;
+	UINT16			fid;
+	UINT16			status;
+	int			result = 0;
+	DBFENTER;
+	fid = hfa384x_getreg(hw, HFA384x_TXCOMPLFID);
+	result = hfa384x_copy_from_bap(hw, HFA384x_BAP_INT, fid, 0, &status, sizeof(status));
+	if ( result ) {
+		WLAN_LOG_DEBUG(1,
+			"copy_from_bap(0x%04x, 0, %d) failed, result=0x%x\n",
+			fid, sizeof(status), result);
+		goto failed;
+	}
+	status = hfa384x2host_16(status);
+	prism2sta_ev_tx(wlandev, status);
+failed:
+	DBFEXIT;
+	return;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_int_rx
+*
+* Handles the Rx event.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	tasklet
+----------------------------------------------------------------*/
+static void hfa384x_int_rx(wlandevice_t *wlandev)
+{
+	hfa384x_t		*hw = wlandev->priv;
+	UINT16			rxfid;
+	hfa384x_rx_frame_t	rxdesc;
+	int			result;
+	int                     hdrlen;
+	UINT16                  fc;
+	p80211_rxmeta_t	*rxmeta;
+	struct sk_buff          *skb = NULL;
+	UINT8 *datap;
+
+	DBFENTER;
+
+	/* Get the FID */
+	rxfid = hfa384x_getreg(hw, HFA384x_RXFID);
+	/* Get the descriptor (including headers) */
+	result = hfa384x_copy_from_bap(hw,
+			HFA384x_BAP_INT,
+			rxfid,
+			0,
+			&rxdesc,
+			sizeof(rxdesc));
+	if ( result ) {
+		WLAN_LOG_DEBUG(1,
+			"copy_from_bap(0x%04x, %d, %d) failed, result=0x%x\n",
+			rxfid,
+			0,
+			sizeof(rxdesc),
+			result);
+		goto done;
+	}
+
+	/* Byte order convert once up front. */
+	rxdesc.status =	hfa384x2host_16(rxdesc.status);
+	rxdesc.time =	hfa384x2host_32(rxdesc.time);
+
+	/* drop errors and whatnot in promisc mode */
+	if (( wlandev->netdev->flags & IFF_PROMISC ) &&
+	    (HFA384x_RXSTATUS_ISFCSERR(rxdesc.status) ||
+	     HFA384x_RXSTATUS_ISUNDECR(rxdesc.status)))
+	  goto done;
+
+	/* Now handle frame based on port# */
+	switch( HFA384x_RXSTATUS_MACPORT_GET(rxdesc.status) )
+	{
+	case 0:
+
+		fc = ieee2host16(rxdesc.frame_control);
+
+		/* If exclude and we receive an unencrypted, drop it */
+		if ( (wlandev->hostwep & HOSTWEP_EXCLUDEUNENCRYPTED) &&
+		     !WLAN_GET_FC_ISWEP(fc)) {
+			goto done;
+		}
+
+		hdrlen = p80211_headerlen(fc);
+
+		/* Allocate the buffer, note CRC (aka FCS). pballoc */
+		/* assumes there needs to be space for one */
+		skb = dev_alloc_skb(hfa384x2host_16(rxdesc.data_len) + hdrlen + WLAN_CRC_LEN + 2); /* a little extra */
+
+		if ( ! skb ) {
+			WLAN_LOG_ERROR("alloc_skb failed.\n");
+			goto done;
+                }
+
+		skb->dev = wlandev->netdev;
+
+		/* theoretically align the IP header on a 32-bit word. */
+		if ( hdrlen == WLAN_HDR_A4_LEN )
+			skb_reserve(skb, 2);
+
+		/* Copy the 802.11 hdr to the buffer */
+		datap = skb_put(skb, WLAN_HDR_A3_LEN);
+		memcpy(datap, &rxdesc.frame_control, WLAN_HDR_A3_LEN);
+
+		/* Snag the A4 address if present */
+		if (hdrlen == WLAN_HDR_A4_LEN) {
+			datap = skb_put(skb, WLAN_ADDR_LEN);
+			memcpy(datap, &rxdesc.address4, WLAN_HDR_A3_LEN);
+		}
+
+		/* we can convert the data_len as we passed the original on */
+		rxdesc.data_len = hfa384x2host_16(rxdesc.data_len);
+
+		/* Copy the payload data to the buffer */
+		if ( rxdesc.data_len > 0 ) {
+			datap = skb_put(skb, rxdesc.data_len);
+			result = hfa384x_copy_from_bap(hw,
+				HFA384x_BAP_INT, rxfid, HFA384x_RX_DATA_OFF,
+				datap, rxdesc.data_len);
+			if ( result ) {
+				WLAN_LOG_DEBUG(1,
+					"copy_from_bap(0x%04x, %d, %d) failed, result=0x%x\n",
+					rxfid,
+					HFA384x_RX_DATA_OFF,
+					rxdesc.data_len,
+					result);
+				goto failed;
+			}
+		}
+		/* the prism2 cards don't return the FCS */
+		datap = skb_put(skb, WLAN_CRC_LEN);
+		memset (datap, 0xff, WLAN_CRC_LEN);
+		skb_reset_mac_header(skb);
+
+		/* Attach the rxmeta, set some stuff */
+		p80211skb_rxmeta_attach(wlandev, skb);
+		rxmeta = P80211SKB_RXMETA(skb);
+		rxmeta->mactime = rxdesc.time;
+		rxmeta->rxrate = rxdesc.rate;
+		rxmeta->signal = rxdesc.signal - hw->dbmadjust;
+		rxmeta->noise = rxdesc.silence - hw->dbmadjust;
+
+		prism2sta_ev_rx(wlandev, skb);
+		goto done;
+	case 7:
+
+        	if ( ! HFA384x_RXSTATUS_ISFCSERR(rxdesc.status) ) {
+                        hfa384x_int_rxmonitor( wlandev, rxfid, &rxdesc);
+                } else {
+                        WLAN_LOG_DEBUG(3,"Received monitor frame: FCSerr set\n");
+                }
+		goto done;
+
+	default:
+
+		WLAN_LOG_WARNING("Received frame on unsupported port=%d\n",
+			HFA384x_RXSTATUS_MACPORT_GET(rxdesc.status) );
+		goto done;
+	}
+
+ failed:
+	dev_kfree_skb(skb);
+
+ done:
+	DBFEXIT;
+	return;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_int_rxmonitor
+*
+* Helper function for int_rx.  Handles monitor frames.
+* Note that this function allocates space for the FCS and sets it
+* to 0xffffffff.  The hfa384x doesn't give us the FCS value but the
+* higher layers expect it.  0xffffffff is used as a flag to indicate
+* the FCS is bogus.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	rxfid		received FID
+*	rxdesc		rx descriptor read from card in int_rx
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*	Allocates an skb and passes it up via the PF_PACKET interface.
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void hfa384x_int_rxmonitor( wlandevice_t *wlandev, UINT16 rxfid,
+				   hfa384x_rx_frame_t *rxdesc)
+{
+	hfa384x_t			*hw = wlandev->priv;
+	UINT				hdrlen = 0;
+	UINT				datalen = 0;
+	UINT				skblen = 0;
+	UINT				truncated = 0;
+	UINT8				*datap;
+	UINT16				fc;
+	struct sk_buff			*skb;
+
+	DBFENTER;
+	/* Don't forget the status, time, and data_len fields are in host order */
+	/* Figure out how big the frame is */
+	fc = ieee2host16(rxdesc->frame_control);
+	hdrlen = p80211_headerlen(fc);
+	datalen = hfa384x2host_16(rxdesc->data_len);
+
+	/* Allocate an ind message+framesize skb */
+	skblen = sizeof(p80211msg_lnxind_wlansniffrm_t) +
+		hdrlen + datalen + WLAN_CRC_LEN;
+
+	/* sanity check the length */
+	if ( skblen >
+		(sizeof(p80211msg_lnxind_wlansniffrm_t) +
+		WLAN_HDR_A4_LEN + WLAN_DATA_MAXLEN + WLAN_CRC_LEN) ) {
+		WLAN_LOG_DEBUG(1, "overlen frm: len=%d\n",
+			skblen - sizeof(p80211msg_lnxind_wlansniffrm_t));
+	}
+
+	if ( (skb = dev_alloc_skb(skblen)) == NULL ) {
+		WLAN_LOG_ERROR("alloc_skb failed trying to allocate %d bytes\n", skblen);
+		return;
+	}
+
+	/* only prepend the prism header if in the right mode */
+	if ((wlandev->netdev->type == ARPHRD_IEEE80211_PRISM) &&
+	    (hw->sniffhdr == 0)) {
+		p80211msg_lnxind_wlansniffrm_t	*msg;
+		datap = skb_put(skb, sizeof(p80211msg_lnxind_wlansniffrm_t));
+		msg = (p80211msg_lnxind_wlansniffrm_t*) datap;
+
+		/* Initialize the message members */
+		msg->msgcode = DIDmsg_lnxind_wlansniffrm;
+		msg->msglen = sizeof(p80211msg_lnxind_wlansniffrm_t);
+		strcpy(msg->devname, wlandev->name);
+
+		msg->hosttime.did = DIDmsg_lnxind_wlansniffrm_hosttime;
+		msg->hosttime.status = 0;
+		msg->hosttime.len = 4;
+		msg->hosttime.data = jiffies;
+
+		msg->mactime.did = DIDmsg_lnxind_wlansniffrm_mactime;
+		msg->mactime.status = 0;
+		msg->mactime.len = 4;
+		msg->mactime.data = rxdesc->time * 1000;
+
+		msg->channel.did = DIDmsg_lnxind_wlansniffrm_channel;
+		msg->channel.status = 0;
+		msg->channel.len = 4;
+		msg->channel.data = hw->sniff_channel;
+
+		msg->rssi.did = DIDmsg_lnxind_wlansniffrm_rssi;
+		msg->rssi.status = P80211ENUM_msgitem_status_no_value;
+		msg->rssi.len = 4;
+		msg->rssi.data = 0;
+
+		msg->sq.did = DIDmsg_lnxind_wlansniffrm_sq;
+		msg->sq.status = P80211ENUM_msgitem_status_no_value;
+		msg->sq.len = 4;
+		msg->sq.data = 0;
+
+		msg->signal.did = DIDmsg_lnxind_wlansniffrm_signal;
+		msg->signal.status = 0;
+		msg->signal.len = 4;
+		msg->signal.data = rxdesc->signal;
+
+		msg->noise.did = DIDmsg_lnxind_wlansniffrm_noise;
+		msg->noise.status = 0;
+		msg->noise.len = 4;
+		msg->noise.data = rxdesc->silence;
+
+		msg->rate.did = DIDmsg_lnxind_wlansniffrm_rate;
+		msg->rate.status = 0;
+		msg->rate.len = 4;
+		msg->rate.data = rxdesc->rate / 5; /* set to 802.11 units */
+
+		msg->istx.did = DIDmsg_lnxind_wlansniffrm_istx;
+		msg->istx.status = 0;
+		msg->istx.len = 4;
+		msg->istx.data = P80211ENUM_truth_false;
+
+		msg->frmlen.did = DIDmsg_lnxind_wlansniffrm_frmlen;
+		msg->frmlen.status = 0;
+		msg->frmlen.len = 4;
+		msg->frmlen.data = hdrlen + datalen + WLAN_CRC_LEN;
+	} else if ((wlandev->netdev->type == ARPHRD_IEEE80211_PRISM) &&
+		   (hw->sniffhdr != 0)) {
+		p80211_caphdr_t		*caphdr;
+		/* The NEW header format! */
+		datap = skb_put(skb, sizeof(p80211_caphdr_t));
+		caphdr = (p80211_caphdr_t*) datap;
+
+		caphdr->version =	htonl(P80211CAPTURE_VERSION);
+		caphdr->length =	htonl(sizeof(p80211_caphdr_t));
+		caphdr->mactime =	__cpu_to_be64(rxdesc->time);
+		caphdr->hosttime =	__cpu_to_be64(jiffies);
+		caphdr->phytype =	htonl(4); /* dss_dot11_b */
+		caphdr->channel =	htonl(hw->sniff_channel);
+		caphdr->datarate =	htonl(rxdesc->rate);
+		caphdr->antenna =	htonl(0); /* unknown */
+		caphdr->priority =	htonl(0); /* unknown */
+		caphdr->ssi_type =	htonl(3); /* rssi_raw */
+		caphdr->ssi_signal =	htonl(rxdesc->signal);
+		caphdr->ssi_noise =	htonl(rxdesc->silence);
+		caphdr->preamble =	htonl(0); /* unknown */
+		caphdr->encoding =	htonl(1); /* cck */
+	}
+	/* Copy the 802.11 header to the skb (ctl frames may be less than a full header) */
+	datap = skb_put(skb, hdrlen);
+	memcpy( datap, &(rxdesc->frame_control), hdrlen);
+
+	/* If any, copy the data from the card to the skb */
+	if ( datalen > 0 )
+	{
+		/* Truncate the packet if the user wants us to */
+		UINT	dataread = datalen;
+		if(hw->sniff_truncate > 0 && dataread > hw->sniff_truncate) {
+			dataread = hw->sniff_truncate;
+			truncated = 1;
+		}
+
+		datap = skb_put(skb, dataread);
+		hfa384x_copy_from_bap(hw,
+			HFA384x_BAP_INT, rxfid, HFA384x_RX_DATA_OFF,
+			datap, dataread);
+
+		/* check for unencrypted stuff if WEP bit set. */
+		if (*(datap - hdrlen + 1) & 0x40) // wep set
+		  if ((*(datap) == 0xaa) && (*(datap+1) == 0xaa))
+		    *(datap - hdrlen + 1) &= 0xbf; // clear wep; it's the 802.2 header!
+	}
+
+	if (!truncated && hw->sniff_fcs) {
+		/* Set the FCS */
+		datap = skb_put(skb, WLAN_CRC_LEN);
+		memset( datap, 0xff, WLAN_CRC_LEN);
+	}
+
+	/* pass it back up */
+	prism2sta_ev_rx(wlandev, skb);
+
+	DBFEXIT;
+	return;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_int_alloc
+*
+* Handles the Alloc event.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void hfa384x_int_alloc(wlandevice_t *wlandev)
+{
+	hfa384x_t		*hw = wlandev->priv;
+	UINT16			fid;
+	INT16			result;
+
+	DBFENTER;
+
+	/* Handle the reclaimed FID */
+	/*   collect the FID and push it onto the stack */
+	fid = hfa384x_getreg(hw, HFA384x_ALLOCFID);
+
+	if ( fid != hw->infofid ) { /* It's a transmit fid */
+		WLAN_LOG_DEBUG(5, "int_alloc(%#x)\n", fid);
+		result = txfid_queue_add(hw, fid);
+		if (result != -1) {
+			prism2sta_ev_alloc(wlandev);
+			WLAN_LOG_DEBUG(5, "q_add.\n");
+		} else {
+			WLAN_LOG_DEBUG(5, "q_full.\n");
+		}
+	} else {
+		/* unlock the info fid */
+		up(&hw->infofid_sem);
+	}
+
+	DBFEXIT;
+	return;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_handover
+*
+* Sends a handover notification to the MAC.
+*
+* Arguments:
+*	hw		device structure
+*	addr		address of station that's left
+*
+* Returns:
+*	zero		success.
+*	-ERESTARTSYS	received signal while waiting for semaphore.
+*	-EIO		failed to write to bap, or failed in cmd.
+*
+* Side effects:
+*
+* Call context:
+*	process thread, NOTE: this call may block on a semaphore!
+----------------------------------------------------------------*/
+int hfa384x_drvr_handover( hfa384x_t *hw, UINT8 *addr)
+{
+	int			result = 0;
+        hfa384x_HandoverAddr_t  rec;
+        UINT                    len;
+        DBFENTER;
+
+	/* Acquire the infofid */
+	if ( down_interruptible(&hw->infofid_sem) ) {
+		result = -ERESTARTSYS;
+		goto failed;
+	}
+
+        /* Set up the record */
+        len = sizeof(hfa384x_HandoverAddr_t);
+        rec.framelen = host2hfa384x_16(len/2 - 1);
+        rec.infotype = host2hfa384x_16(HFA384x_IT_HANDOVERADDR);
+        memcpy(rec.handover_addr, addr, sizeof(rec.handover_addr));
+
+        /* Issue the command */
+        result = hfa384x_cmd_notify(hw, 1, hw->infofid, &rec, len);
+
+        if ( result != 0 ) {
+                WLAN_LOG_DEBUG(1,"cmd_notify(%04x) failed, result=%d",
+                        hw->infofid, result);
+		result = -EIO;
+                goto failed;
+        }
+
+failed:
+	DBFEXIT;
+	return result;
+}
+
+void hfa384x_tx_timeout(wlandevice_t *wlandev)
+{
+	DBFENTER;
+
+	WLAN_LOG_WARNING("Implement me.\n");
+
+	DBFEXIT;
+}
+
+/* Handles all "rx" BAP operations */
+static void     hfa384x_bap_tasklet(unsigned long data)
+{
+	hfa384x_t *hw = (hfa384x_t *) data;
+	wlandevice_t *wlandev = hw->wlandev;
+	int counter = prism2_irq_evread_max;
+	int			reg;
+
+	DBFENTER;
+
+	while (counter-- > 0) {
+		/* Get interrupt register */
+		reg = hfa384x_getreg(hw, HFA384x_EVSTAT);
+
+		if ((reg == 0xffff) ||
+		    !(reg & HFA384x_INT_BAP_OP)) {
+			break;
+		}
+
+		if ( HFA384x_EVSTAT_ISINFO(reg) ){
+			hfa384x_int_info(wlandev);
+			hfa384x_setreg(hw, HFA384x_EVACK_INFO_SET(1),
+				HFA384x_EVACK);
+		}
+		if ( HFA384x_EVSTAT_ISTXEXC(reg) ){
+			hfa384x_int_txexc(wlandev);
+			hfa384x_setreg(hw, HFA384x_EVACK_TXEXC_SET(1),
+				HFA384x_EVACK);
+		}
+		if ( HFA384x_EVSTAT_ISTX(reg) ){
+			hfa384x_int_tx(wlandev);
+			hfa384x_setreg(hw, HFA384x_EVACK_TX_SET(1),
+				HFA384x_EVACK);
+		}
+		if ( HFA384x_EVSTAT_ISRX(reg) ){
+			hfa384x_int_rx(wlandev);
+			hfa384x_setreg(hw, HFA384x_EVACK_RX_SET(1),
+				HFA384x_EVACK);
+		}
+	}
+
+	/* re-enable interrupts */
+	hfa384x_events_all(hw);
+
+	DBFEXIT;
+}
diff --git a/drivers/staging/wlan-ng/hfa384x.h b/drivers/staging/wlan-ng/hfa384x.h
new file mode 100644
index 0000000..a205463
--- /dev/null
+++ b/drivers/staging/wlan-ng/hfa384x.h
@@ -0,0 +1,3067 @@
+/* hfa384x.h
+*
+* Defines the constants and data structures for the hfa384x
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+*   [Implementation and usage notes]
+*
+*   [References]
+*	CW10 Programmer's Manual v1.5
+*	IEEE 802.11 D10.0
+*
+* --------------------------------------------------------------------
+*/
+
+#ifndef _HFA384x_H
+#define _HFA384x_H
+
+/*=============================================================*/
+#define HFA384x_FIRMWARE_VERSION(a,b,c) (((a) << 16) + ((b) << 8) + (c))
+
+#define HFA384x_LEVEL_TO_dBm(v)   (0x100 + (v) * 100 / 255 - 100)
+
+/*------ Constants --------------------------------------------*/
+/*--- Mins & Maxs -----------------------------------*/
+#define		HFA384x_CMD_ALLOC_LEN_MIN	((UINT16)4)
+#define		HFA384x_CMD_ALLOC_LEN_MAX	((UINT16)2400)
+#define		HFA384x_BAP_DATALEN_MAX		((UINT16)4096)
+#define		HFA384x_BAP_OFFSET_MAX		((UINT16)4096)
+#define		HFA384x_PORTID_MAX		((UINT16)7)
+#define		HFA384x_NUMPORTS_MAX		((UINT16)(HFA384x_PORTID_MAX+1))
+#define		HFA384x_PDR_LEN_MAX		((UINT16)512)	/* in bytes, from EK */
+#define		HFA384x_PDA_RECS_MAX		((UINT16)200)	/* a guess */
+#define		HFA384x_PDA_LEN_MAX		((UINT16)1024)	/* in bytes, from EK */
+#define		HFA384x_SCANRESULT_MAX		((UINT16)31)
+#define		HFA384x_HSCANRESULT_MAX		((UINT16)31)
+#define		HFA384x_CHINFORESULT_MAX	((UINT16)16)
+#define		HFA384x_DRVR_FIDSTACKLEN_MAX	(10)
+#define		HFA384x_DRVR_TXBUF_MAX		(sizeof(hfa384x_tx_frame_t) + \
+						WLAN_DATA_MAXLEN - \
+						WLAN_WEP_IV_LEN - \
+						WLAN_WEP_ICV_LEN + 2)
+#define		HFA384x_DRVR_MAGIC		(0x4a2d)
+#define		HFA384x_INFODATA_MAXLEN		(sizeof(hfa384x_infodata_t))
+#define		HFA384x_INFOFRM_MAXLEN		(sizeof(hfa384x_InfFrame_t))
+#define		HFA384x_RID_GUESSING_MAXLEN	2048  /* I'm not really sure */
+#define		HFA384x_RIDDATA_MAXLEN		HFA384x_RID_GUESSING_MAXLEN
+#define		HFA384x_USB_RWMEM_MAXLEN	2048
+
+/*--- Support Constants -----------------------------*/
+#define		HFA384x_BAP_PROC			((UINT16)0)
+#define		HFA384x_BAP_INT				((UINT16)1)
+#define		HFA384x_PORTTYPE_IBSS			((UINT16)0)
+#define		HFA384x_PORTTYPE_BSS			((UINT16)1)
+#define		HFA384x_PORTTYPE_WDS			((UINT16)2)
+#define		HFA384x_PORTTYPE_PSUEDOIBSS		((UINT16)3)
+#define		HFA384x_PORTTYPE_HOSTAP    		((UINT16)6)
+#define		HFA384x_WEPFLAGS_PRIVINVOKED		((UINT16)BIT0)
+#define		HFA384x_WEPFLAGS_EXCLUDE		((UINT16)BIT1)
+#define		HFA384x_WEPFLAGS_DISABLE_TXCRYPT	((UINT16)BIT4)
+#define		HFA384x_WEPFLAGS_DISABLE_RXCRYPT	((UINT16)BIT7)
+#define		HFA384x_WEPFLAGS_DISALLOW_MIXED 	((UINT16)BIT11)
+#define		HFA384x_WEPFLAGS_IV_INTERVAL1		((UINT16)0)
+#define		HFA384x_WEPFLAGS_IV_INTERVAL10		((UINT16)BIT5)
+#define		HFA384x_WEPFLAGS_IV_INTERVAL50		((UINT16)BIT6)
+#define		HFA384x_WEPFLAGS_IV_INTERVAL100		((UINT16)(BIT5 | BIT6))
+#define		HFA384x_WEPFLAGS_FIRMWARE_WPA  		((UINT16)BIT8)
+#define		HFA384x_WEPFLAGS_HOST_MIC      		((UINT16)BIT9)
+#define 	HFA384x_ROAMMODE_FWSCAN_FWROAM		((UINT16)1)
+#define 	HFA384x_ROAMMODE_FWSCAN_HOSTROAM	((UINT16)2)
+#define 	HFA384x_ROAMMODE_HOSTSCAN_HOSTROAM	((UINT16)3)
+#define 	HFA384x_PORTSTATUS_DISABLED		((UINT16)1)
+#define 	HFA384x_PORTSTATUS_INITSRCH		((UINT16)2)
+#define 	HFA384x_PORTSTATUS_CONN_IBSS		((UINT16)3)
+#define 	HFA384x_PORTSTATUS_CONN_ESS		((UINT16)4)
+#define 	HFA384x_PORTSTATUS_OOR_ESS		((UINT16)5)
+#define 	HFA384x_PORTSTATUS_CONN_WDS		((UINT16)6)
+#define 	HFA384x_PORTSTATUS_HOSTAP		((UINT16)8)
+#define		HFA384x_RATEBIT_1			((UINT16)1)
+#define		HFA384x_RATEBIT_2			((UINT16)2)
+#define		HFA384x_RATEBIT_5dot5			((UINT16)4)
+#define		HFA384x_RATEBIT_11			((UINT16)8)
+
+/*--- Just some symbolic names for legibility -------*/
+#define		HFA384x_TXCMD_NORECL		((UINT16)0)
+#define		HFA384x_TXCMD_RECL		((UINT16)1)
+
+/*--- MAC Internal memory constants and macros ------*/
+/* masks and macros used to manipulate MAC internal memory addresses. */
+/* MAC internal memory addresses are 23 bit quantities.  The MAC uses
+ * a paged address space where the upper 16 bits are the page number
+ * and the lower 7 bits are the offset.  There are various Host API
+ * elements that require two 16-bit quantities to specify a MAC
+ * internal memory address.  Unfortunately, some of the API's use a
+ * page/offset format where the offset value is JUST the lower seven
+ * bits and the page is  the remaining 16 bits.  Some of the API's
+ * assume that the 23 bit address has been split at the 16th bit.  We
+ * refer to these two formats as AUX format and CMD format.  The
+ * macros below help handle some of this.
+ */
+
+/* Handy constant */
+#define		HFA384x_ADDR_AUX_OFF_MAX	((UINT16)0x007f)
+
+/* Mask bits for discarding unwanted pieces in a flat address */
+#define		HFA384x_ADDR_FLAT_AUX_PAGE_MASK	(0x007fff80)
+#define		HFA384x_ADDR_FLAT_AUX_OFF_MASK	(0x0000007f)
+#define		HFA384x_ADDR_FLAT_CMD_PAGE_MASK	(0xffff0000)
+#define		HFA384x_ADDR_FLAT_CMD_OFF_MASK	(0x0000ffff)
+
+/* Mask bits for discarding unwanted pieces in AUX format 16-bit address parts */
+#define		HFA384x_ADDR_AUX_PAGE_MASK	(0xffff)
+#define		HFA384x_ADDR_AUX_OFF_MASK	(0x007f)
+
+/* Mask bits for discarding unwanted pieces in CMD format 16-bit address parts */
+#define		HFA384x_ADDR_CMD_PAGE_MASK	(0x007f)
+#define		HFA384x_ADDR_CMD_OFF_MASK	(0xffff)
+
+/* Make a 32-bit flat address from AUX format 16-bit page and offset */
+#define		HFA384x_ADDR_AUX_MKFLAT(p,o)	\
+		(((UINT32)(((UINT16)(p))&HFA384x_ADDR_AUX_PAGE_MASK)) <<7) | \
+		((UINT32)(((UINT16)(o))&HFA384x_ADDR_AUX_OFF_MASK))
+
+/* Make a 32-bit flat address from CMD format 16-bit page and offset */
+#define		HFA384x_ADDR_CMD_MKFLAT(p,o)	\
+		(((UINT32)(((UINT16)(p))&HFA384x_ADDR_CMD_PAGE_MASK)) <<16) | \
+		((UINT32)(((UINT16)(o))&HFA384x_ADDR_CMD_OFF_MASK))
+
+/* Make AUX format offset and page from a 32-bit flat address */
+#define		HFA384x_ADDR_AUX_MKPAGE(f) \
+		((UINT16)((((UINT32)(f))&HFA384x_ADDR_FLAT_AUX_PAGE_MASK)>>7))
+#define		HFA384x_ADDR_AUX_MKOFF(f) \
+		((UINT16)(((UINT32)(f))&HFA384x_ADDR_FLAT_AUX_OFF_MASK))
+
+/* Make CMD format offset and page from a 32-bit flat address */
+#define		HFA384x_ADDR_CMD_MKPAGE(f) \
+		((UINT16)((((UINT32)(f))&HFA384x_ADDR_FLAT_CMD_PAGE_MASK)>>16))
+#define		HFA384x_ADDR_CMD_MKOFF(f) \
+		((UINT16)(((UINT32)(f))&HFA384x_ADDR_FLAT_CMD_OFF_MASK))
+
+/*--- Aux register masks/tests ----------------------*/
+/* Some of the upper bits of the AUX offset register are used to */
+/*  select address space. */
+#define		HFA384x_AUX_CTL_EXTDS	(0x00)
+#define		HFA384x_AUX_CTL_NV	(0x01)
+#define		HFA384x_AUX_CTL_PHY	(0x02)
+#define		HFA384x_AUX_CTL_ICSRAM	(0x03)
+
+/* Make AUX register offset and page values from a flat address */
+#define		HFA384x_AUX_MKOFF(f, c) \
+	(HFA384x_ADDR_AUX_MKOFF(f) | (((UINT16)(c))<<12))
+#define		HFA384x_AUX_MKPAGE(f)	HFA384x_ADDR_AUX_MKPAGE(f)
+
+
+/*--- Controller Memory addresses -------------------*/
+#define		HFA3842_PDA_BASE	(0x007f0000UL)
+#define		HFA3841_PDA_BASE	(0x003f0000UL)
+#define		HFA3841_PDA_BOGUS_BASE	(0x00390000UL)
+
+/*--- Driver Download states  -----------------------*/
+#define		HFA384x_DLSTATE_DISABLED		0
+#define		HFA384x_DLSTATE_RAMENABLED		1
+#define		HFA384x_DLSTATE_FLASHENABLED		2
+#define		HFA384x_DLSTATE_FLASHWRITTEN		3
+#define		HFA384x_DLSTATE_FLASHWRITEPENDING	4
+#define		HFA384x_DLSTATE_GENESIS 		5
+
+/*--- Register I/O offsets --------------------------*/
+#if ((WLAN_HOSTIF == WLAN_PCMCIA) || (WLAN_HOSTIF == WLAN_PLX))
+
+#define		HFA384x_CMD_OFF			(0x00)
+#define		HFA384x_PARAM0_OFF		(0x02)
+#define		HFA384x_PARAM1_OFF		(0x04)
+#define		HFA384x_PARAM2_OFF		(0x06)
+#define		HFA384x_STATUS_OFF		(0x08)
+#define		HFA384x_RESP0_OFF		(0x0A)
+#define		HFA384x_RESP1_OFF		(0x0C)
+#define		HFA384x_RESP2_OFF		(0x0E)
+#define		HFA384x_INFOFID_OFF		(0x10)
+#define		HFA384x_RXFID_OFF		(0x20)
+#define		HFA384x_ALLOCFID_OFF		(0x22)
+#define		HFA384x_TXCOMPLFID_OFF		(0x24)
+#define		HFA384x_SELECT0_OFF		(0x18)
+#define		HFA384x_OFFSET0_OFF		(0x1C)
+#define		HFA384x_DATA0_OFF		(0x36)
+#define		HFA384x_SELECT1_OFF		(0x1A)
+#define		HFA384x_OFFSET1_OFF		(0x1E)
+#define		HFA384x_DATA1_OFF		(0x38)
+#define		HFA384x_EVSTAT_OFF		(0x30)
+#define		HFA384x_INTEN_OFF		(0x32)
+#define		HFA384x_EVACK_OFF		(0x34)
+#define		HFA384x_CONTROL_OFF		(0x14)
+#define		HFA384x_SWSUPPORT0_OFF		(0x28)
+#define		HFA384x_SWSUPPORT1_OFF		(0x2A)
+#define		HFA384x_SWSUPPORT2_OFF		(0x2C)
+#define		HFA384x_AUXPAGE_OFF		(0x3A)
+#define		HFA384x_AUXOFFSET_OFF		(0x3C)
+#define		HFA384x_AUXDATA_OFF		(0x3E)
+
+#elif (WLAN_HOSTIF == WLAN_PCI || WLAN_HOSTIF == WLAN_USB)
+
+#define		HFA384x_CMD_OFF			(0x00)
+#define		HFA384x_PARAM0_OFF		(0x04)
+#define		HFA384x_PARAM1_OFF		(0x08)
+#define		HFA384x_PARAM2_OFF		(0x0c)
+#define		HFA384x_STATUS_OFF		(0x10)
+#define		HFA384x_RESP0_OFF		(0x14)
+#define		HFA384x_RESP1_OFF		(0x18)
+#define		HFA384x_RESP2_OFF		(0x1c)
+#define		HFA384x_INFOFID_OFF		(0x20)
+#define		HFA384x_RXFID_OFF		(0x40)
+#define		HFA384x_ALLOCFID_OFF		(0x44)
+#define		HFA384x_TXCOMPLFID_OFF		(0x48)
+#define		HFA384x_SELECT0_OFF		(0x30)
+#define		HFA384x_OFFSET0_OFF		(0x38)
+#define		HFA384x_DATA0_OFF		(0x6c)
+#define		HFA384x_SELECT1_OFF		(0x34)
+#define		HFA384x_OFFSET1_OFF		(0x3c)
+#define		HFA384x_DATA1_OFF		(0x70)
+#define		HFA384x_EVSTAT_OFF		(0x60)
+#define		HFA384x_INTEN_OFF		(0x64)
+#define		HFA384x_EVACK_OFF		(0x68)
+#define		HFA384x_CONTROL_OFF		(0x28)
+#define		HFA384x_SWSUPPORT0_OFF		(0x50)
+#define		HFA384x_SWSUPPORT1_OFF		(0x54)
+#define		HFA384x_SWSUPPORT2_OFF		(0x58)
+#define		HFA384x_AUXPAGE_OFF		(0x74)
+#define		HFA384x_AUXOFFSET_OFF		(0x78)
+#define		HFA384x_AUXDATA_OFF		(0x7c)
+#define		HFA384x_PCICOR_OFF		(0x4c)
+#define		HFA384x_PCIHCR_OFF		(0x5c)
+#define		HFA384x_PCI_M0_ADDRH_OFF	(0x80)
+#define		HFA384x_PCI_M0_ADDRL_OFF	(0x84)
+#define		HFA384x_PCI_M0_LEN_OFF		(0x88)
+#define		HFA384x_PCI_M0_CTL_OFF		(0x8c)
+#define		HFA384x_PCI_STATUS_OFF		(0x98)
+#define		HFA384x_PCI_M1_ADDRH_OFF	(0xa0)
+#define		HFA384x_PCI_M1_ADDRL_OFF	(0xa4)
+#define		HFA384x_PCI_M1_LEN_OFF		(0xa8)
+#define		HFA384x_PCI_M1_CTL_OFF		(0xac)
+
+#endif
+
+/*--- Register Field Masks --------------------------*/
+#define		HFA384x_CMD_BUSY		((UINT16)BIT15)
+#define		HFA384x_CMD_AINFO		((UINT16)(BIT14 | BIT13 | BIT12 | BIT11 | BIT10 | BIT9 | BIT8))
+#define		HFA384x_CMD_MACPORT		((UINT16)(BIT10 | BIT9 | BIT8))
+#define		HFA384x_CMD_RECL		((UINT16)BIT8)
+#define		HFA384x_CMD_WRITE		((UINT16)BIT8)
+#define		HFA384x_CMD_PROGMODE		((UINT16)(BIT9 | BIT8))
+#define		HFA384x_CMD_CMDCODE		((UINT16)(BIT5 | BIT4 | BIT3 | BIT2 | BIT1 | BIT0))
+
+#define		HFA384x_STATUS_RESULT		((UINT16)(BIT14 | BIT13 | BIT12 | BIT11 | BIT10 | BIT9 | BIT8))
+#define		HFA384x_STATUS_CMDCODE		((UINT16)(BIT5 | BIT4 | BIT3 | BIT2 | BIT1 | BIT0))
+
+#define		HFA384x_OFFSET_BUSY		((UINT16)BIT15)
+#define		HFA384x_OFFSET_ERR		((UINT16)BIT14)
+#define		HFA384x_OFFSET_DATAOFF		((UINT16)(BIT11 | BIT10 | BIT9 | BIT8 | BIT7 | BIT6 | BIT5 | BIT4 | BIT3 | BIT2 | BIT1))
+
+#define		HFA384x_EVSTAT_TICK		((UINT16)BIT15)
+#define		HFA384x_EVSTAT_WTERR		((UINT16)BIT14)
+#define		HFA384x_EVSTAT_INFDROP		((UINT16)BIT13)
+#define		HFA384x_EVSTAT_INFO		((UINT16)BIT7)
+#define		HFA384x_EVSTAT_DTIM		((UINT16)BIT5)
+#define		HFA384x_EVSTAT_CMD		((UINT16)BIT4)
+#define		HFA384x_EVSTAT_ALLOC		((UINT16)BIT3)
+#define		HFA384x_EVSTAT_TXEXC		((UINT16)BIT2)
+#define		HFA384x_EVSTAT_TX		((UINT16)BIT1)
+#define		HFA384x_EVSTAT_RX		((UINT16)BIT0)
+
+#define         HFA384x_INT_BAP_OP           (HFA384x_EVSTAT_INFO|HFA384x_EVSTAT_RX|HFA384x_EVSTAT_TX|HFA384x_EVSTAT_TXEXC)
+
+#define         HFA384x_INT_NORMAL           (HFA384x_EVSTAT_INFO|HFA384x_EVSTAT_RX|HFA384x_EVSTAT_TX|HFA384x_EVSTAT_TXEXC|HFA384x_EVSTAT_INFDROP|HFA384x_EVSTAT_ALLOC|HFA384x_EVSTAT_DTIM)
+
+#define		HFA384x_INTEN_TICK		((UINT16)BIT15)
+#define		HFA384x_INTEN_WTERR		((UINT16)BIT14)
+#define		HFA384x_INTEN_INFDROP		((UINT16)BIT13)
+#define		HFA384x_INTEN_INFO		((UINT16)BIT7)
+#define		HFA384x_INTEN_DTIM		((UINT16)BIT5)
+#define		HFA384x_INTEN_CMD		((UINT16)BIT4)
+#define		HFA384x_INTEN_ALLOC		((UINT16)BIT3)
+#define		HFA384x_INTEN_TXEXC		((UINT16)BIT2)
+#define		HFA384x_INTEN_TX		((UINT16)BIT1)
+#define		HFA384x_INTEN_RX		((UINT16)BIT0)
+
+#define		HFA384x_EVACK_TICK		((UINT16)BIT15)
+#define		HFA384x_EVACK_WTERR		((UINT16)BIT14)
+#define		HFA384x_EVACK_INFDROP		((UINT16)BIT13)
+#define		HFA384x_EVACK_INFO		((UINT16)BIT7)
+#define		HFA384x_EVACK_DTIM		((UINT16)BIT5)
+#define		HFA384x_EVACK_CMD		((UINT16)BIT4)
+#define		HFA384x_EVACK_ALLOC		((UINT16)BIT3)
+#define		HFA384x_EVACK_TXEXC		((UINT16)BIT2)
+#define		HFA384x_EVACK_TX		((UINT16)BIT1)
+#define		HFA384x_EVACK_RX		((UINT16)BIT0)
+
+#define		HFA384x_CONTROL_AUXEN		((UINT16)(BIT15 | BIT14))
+
+
+/*--- Command Code Constants --------------------------*/
+/*--- Controller Commands --------------------------*/
+#define		HFA384x_CMDCODE_INIT		((UINT16)0x00)
+#define		HFA384x_CMDCODE_ENABLE		((UINT16)0x01)
+#define		HFA384x_CMDCODE_DISABLE		((UINT16)0x02)
+#define		HFA384x_CMDCODE_DIAG		((UINT16)0x03)
+
+/*--- Buffer Mgmt Commands --------------------------*/
+#define		HFA384x_CMDCODE_ALLOC		((UINT16)0x0A)
+#define		HFA384x_CMDCODE_TX		((UINT16)0x0B)
+#define		HFA384x_CMDCODE_CLRPRST		((UINT16)0x12)
+
+/*--- Regulate Commands --------------------------*/
+#define		HFA384x_CMDCODE_NOTIFY		((UINT16)0x10)
+#define		HFA384x_CMDCODE_INQ		((UINT16)0x11)
+
+/*--- Configure Commands --------------------------*/
+#define		HFA384x_CMDCODE_ACCESS		((UINT16)0x21)
+#define		HFA384x_CMDCODE_DOWNLD		((UINT16)0x22)
+
+/*--- Debugging Commands -----------------------------*/
+#define 	HFA384x_CMDCODE_MONITOR		((UINT16)(0x38))
+#define		HFA384x_MONITOR_ENABLE		((UINT16)(0x0b))
+#define		HFA384x_MONITOR_DISABLE		((UINT16)(0x0f))
+
+/*--- Result Codes --------------------------*/
+#define		HFA384x_SUCCESS			((UINT16)(0x00))
+#define		HFA384x_CARD_FAIL		((UINT16)(0x01))
+#define		HFA384x_NO_BUFF			((UINT16)(0x05))
+#define		HFA384x_CMD_ERR			((UINT16)(0x7F))
+
+/*--- Programming Modes --------------------------
+	MODE 0: Disable programming
+	MODE 1: Enable volatile memory programming
+	MODE 2: Enable non-volatile memory programming
+	MODE 3: Program non-volatile memory section
+--------------------------------------------------*/
+#define		HFA384x_PROGMODE_DISABLE	((UINT16)0x00)
+#define		HFA384x_PROGMODE_RAM		((UINT16)0x01)
+#define		HFA384x_PROGMODE_NV		((UINT16)0x02)
+#define		HFA384x_PROGMODE_NVWRITE	((UINT16)0x03)
+
+/*--- AUX register enable --------------------------*/
+#define		HFA384x_AUXPW0			((UINT16)0xfe01)
+#define		HFA384x_AUXPW1			((UINT16)0xdc23)
+#define		HFA384x_AUXPW2			((UINT16)0xba45)
+
+#define		HFA384x_CONTROL_AUX_ISDISABLED	((UINT16)0x0000)
+#define		HFA384x_CONTROL_AUX_ISENABLED	((UINT16)0xc000)
+#define		HFA384x_CONTROL_AUX_DOENABLE	((UINT16)0x8000)
+#define		HFA384x_CONTROL_AUX_DODISABLE	((UINT16)0x4000)
+
+/*--- Record ID Constants --------------------------*/
+/*--------------------------------------------------------------------
+Configuration RIDs: Network Parameters, Static Configuration Entities
+--------------------------------------------------------------------*/
+#define		HFA384x_RID_CNFPORTTYPE		((UINT16)0xFC00)
+#define		HFA384x_RID_CNFOWNMACADDR	((UINT16)0xFC01)
+#define		HFA384x_RID_CNFDESIREDSSID	((UINT16)0xFC02)
+#define		HFA384x_RID_CNFOWNCHANNEL	((UINT16)0xFC03)
+#define		HFA384x_RID_CNFOWNSSID		((UINT16)0xFC04)
+#define		HFA384x_RID_CNFOWNATIMWIN	((UINT16)0xFC05)
+#define		HFA384x_RID_CNFSYSSCALE		((UINT16)0xFC06)
+#define		HFA384x_RID_CNFMAXDATALEN	((UINT16)0xFC07)
+#define		HFA384x_RID_CNFWDSADDR		((UINT16)0xFC08)
+#define		HFA384x_RID_CNFPMENABLED	((UINT16)0xFC09)
+#define		HFA384x_RID_CNFPMEPS		((UINT16)0xFC0A)
+#define		HFA384x_RID_CNFMULTICASTRX	((UINT16)0xFC0B)
+#define		HFA384x_RID_CNFMAXSLEEPDUR	((UINT16)0xFC0C)
+#define		HFA384x_RID_CNFPMHOLDDUR	((UINT16)0xFC0D)
+#define		HFA384x_RID_CNFOWNNAME		((UINT16)0xFC0E)
+#define		HFA384x_RID_CNFOWNDTIMPER	((UINT16)0xFC10)
+#define		HFA384x_RID_CNFWDSADDR1		((UINT16)0xFC11)
+#define		HFA384x_RID_CNFWDSADDR2		((UINT16)0xFC12)
+#define		HFA384x_RID_CNFWDSADDR3		((UINT16)0xFC13)
+#define		HFA384x_RID_CNFWDSADDR4		((UINT16)0xFC14)
+#define		HFA384x_RID_CNFWDSADDR5		((UINT16)0xFC15)
+#define		HFA384x_RID_CNFWDSADDR6		((UINT16)0xFC16)
+#define		HFA384x_RID_CNFMCASTPMBUFF	((UINT16)0xFC17)
+
+/*--------------------------------------------------------------------
+Configuration RID lengths: Network Params, Static Config Entities
+  This is the length of JUST the DATA part of the RID (does not
+  include the len or code fields)
+--------------------------------------------------------------------*/
+/* TODO: fill in the rest of these */
+#define		HFA384x_RID_CNFPORTTYPE_LEN	((UINT16)2)
+#define		HFA384x_RID_CNFOWNMACADDR_LEN	((UINT16)6)
+#define		HFA384x_RID_CNFDESIREDSSID_LEN	((UINT16)34)
+#define		HFA384x_RID_CNFOWNCHANNEL_LEN	((UINT16)2)
+#define		HFA384x_RID_CNFOWNSSID_LEN	((UINT16)34)
+#define		HFA384x_RID_CNFOWNATIMWIN_LEN	((UINT16)2)
+#define		HFA384x_RID_CNFSYSSCALE_LEN	((UINT16)0)
+#define		HFA384x_RID_CNFMAXDATALEN_LEN	((UINT16)0)
+#define		HFA384x_RID_CNFWDSADDR_LEN	((UINT16)6)
+#define		HFA384x_RID_CNFPMENABLED_LEN	((UINT16)0)
+#define		HFA384x_RID_CNFPMEPS_LEN	((UINT16)0)
+#define		HFA384x_RID_CNFMULTICASTRX_LEN	((UINT16)0)
+#define		HFA384x_RID_CNFMAXSLEEPDUR_LEN	((UINT16)0)
+#define		HFA384x_RID_CNFPMHOLDDUR_LEN	((UINT16)0)
+#define		HFA384x_RID_CNFOWNNAME_LEN	((UINT16)34)
+#define		HFA384x_RID_CNFOWNDTIMPER_LEN	((UINT16)0)
+#define		HFA384x_RID_CNFWDSADDR1_LEN	((UINT16)6)
+#define		HFA384x_RID_CNFWDSADDR2_LEN	((UINT16)6)
+#define		HFA384x_RID_CNFWDSADDR3_LEN	((UINT16)6)
+#define		HFA384x_RID_CNFWDSADDR4_LEN	((UINT16)6)
+#define		HFA384x_RID_CNFWDSADDR5_LEN	((UINT16)6)
+#define		HFA384x_RID_CNFWDSADDR6_LEN	((UINT16)6)
+#define		HFA384x_RID_CNFMCASTPMBUFF_LEN	((UINT16)0)
+#define		HFA384x_RID_CNFAUTHENTICATION_LEN ((UINT16)sizeof(UINT16))
+#define		HFA384x_RID_CNFMAXSLEEPDUR_LEN	((UINT16)0)
+
+/*--------------------------------------------------------------------
+Configuration RIDs: Network Parameters, Dynamic Configuration Entities
+--------------------------------------------------------------------*/
+#define		HFA384x_RID_GROUPADDR		((UINT16)0xFC80)
+#define		HFA384x_RID_CREATEIBSS		((UINT16)0xFC81)
+#define		HFA384x_RID_FRAGTHRESH		((UINT16)0xFC82)
+#define		HFA384x_RID_RTSTHRESH		((UINT16)0xFC83)
+#define		HFA384x_RID_TXRATECNTL		((UINT16)0xFC84)
+#define		HFA384x_RID_PROMISCMODE		((UINT16)0xFC85)
+#define		HFA384x_RID_FRAGTHRESH0		((UINT16)0xFC90)
+#define		HFA384x_RID_FRAGTHRESH1		((UINT16)0xFC91)
+#define		HFA384x_RID_FRAGTHRESH2		((UINT16)0xFC92)
+#define		HFA384x_RID_FRAGTHRESH3		((UINT16)0xFC93)
+#define		HFA384x_RID_FRAGTHRESH4		((UINT16)0xFC94)
+#define		HFA384x_RID_FRAGTHRESH5		((UINT16)0xFC95)
+#define		HFA384x_RID_FRAGTHRESH6		((UINT16)0xFC96)
+#define		HFA384x_RID_RTSTHRESH0		((UINT16)0xFC97)
+#define		HFA384x_RID_RTSTHRESH1		((UINT16)0xFC98)
+#define		HFA384x_RID_RTSTHRESH2		((UINT16)0xFC99)
+#define		HFA384x_RID_RTSTHRESH3		((UINT16)0xFC9A)
+#define		HFA384x_RID_RTSTHRESH4		((UINT16)0xFC9B)
+#define		HFA384x_RID_RTSTHRESH5		((UINT16)0xFC9C)
+#define		HFA384x_RID_RTSTHRESH6		((UINT16)0xFC9D)
+#define		HFA384x_RID_TXRATECNTL0		((UINT16)0xFC9E)
+#define		HFA384x_RID_TXRATECNTL1		((UINT16)0xFC9F)
+#define		HFA384x_RID_TXRATECNTL2		((UINT16)0xFCA0)
+#define		HFA384x_RID_TXRATECNTL3		((UINT16)0xFCA1)
+#define		HFA384x_RID_TXRATECNTL4		((UINT16)0xFCA2)
+#define		HFA384x_RID_TXRATECNTL5		((UINT16)0xFCA3)
+#define		HFA384x_RID_TXRATECNTL6		((UINT16)0xFCA4)
+
+/*--------------------------------------------------------------------
+Configuration RID Lengths: Network Param, Dynamic Config Entities
+  This is the length of JUST the DATA part of the RID (does not
+  include the len or code fields)
+--------------------------------------------------------------------*/
+/* TODO: fill in the rest of these */
+#define		HFA384x_RID_GROUPADDR_LEN	((UINT16)16 * WLAN_ADDR_LEN)
+#define		HFA384x_RID_CREATEIBSS_LEN	((UINT16)0)
+#define		HFA384x_RID_FRAGTHRESH_LEN	((UINT16)0)
+#define		HFA384x_RID_RTSTHRESH_LEN	((UINT16)0)
+#define		HFA384x_RID_TXRATECNTL_LEN	((UINT16)4)
+#define		HFA384x_RID_PROMISCMODE_LEN	((UINT16)2)
+#define		HFA384x_RID_FRAGTHRESH0_LEN	((UINT16)0)
+#define		HFA384x_RID_FRAGTHRESH1_LEN	((UINT16)0)
+#define		HFA384x_RID_FRAGTHRESH2_LEN	((UINT16)0)
+#define		HFA384x_RID_FRAGTHRESH3_LEN	((UINT16)0)
+#define		HFA384x_RID_FRAGTHRESH4_LEN	((UINT16)0)
+#define		HFA384x_RID_FRAGTHRESH5_LEN	((UINT16)0)
+#define		HFA384x_RID_FRAGTHRESH6_LEN	((UINT16)0)
+#define		HFA384x_RID_RTSTHRESH0_LEN	((UINT16)0)
+#define		HFA384x_RID_RTSTHRESH1_LEN	((UINT16)0)
+#define		HFA384x_RID_RTSTHRESH2_LEN	((UINT16)0)
+#define		HFA384x_RID_RTSTHRESH3_LEN	((UINT16)0)
+#define		HFA384x_RID_RTSTHRESH4_LEN	((UINT16)0)
+#define		HFA384x_RID_RTSTHRESH5_LEN	((UINT16)0)
+#define		HFA384x_RID_RTSTHRESH6_LEN	((UINT16)0)
+#define		HFA384x_RID_TXRATECNTL0_LEN	((UINT16)0)
+#define		HFA384x_RID_TXRATECNTL1_LEN	((UINT16)0)
+#define		HFA384x_RID_TXRATECNTL2_LEN	((UINT16)0)
+#define		HFA384x_RID_TXRATECNTL3_LEN	((UINT16)0)
+#define		HFA384x_RID_TXRATECNTL4_LEN	((UINT16)0)
+#define		HFA384x_RID_TXRATECNTL5_LEN	((UINT16)0)
+#define		HFA384x_RID_TXRATECNTL6_LEN	((UINT16)0)
+
+/*--------------------------------------------------------------------
+Configuration RIDs: Behavior Parameters
+--------------------------------------------------------------------*/
+#define		HFA384x_RID_ITICKTIME		((UINT16)0xFCE0)
+
+/*--------------------------------------------------------------------
+Configuration RID Lengths: Behavior Parameters
+  This is the length of JUST the DATA part of the RID (does not
+  include the len or code fields)
+--------------------------------------------------------------------*/
+#define		HFA384x_RID_ITICKTIME_LEN	((UINT16)2)
+
+/*----------------------------------------------------------------------
+Information RIDs: NIC Information
+--------------------------------------------------------------------*/
+#define		HFA384x_RID_MAXLOADTIME		((UINT16)0xFD00)
+#define		HFA384x_RID_DOWNLOADBUFFER	((UINT16)0xFD01)
+#define		HFA384x_RID_PRIIDENTITY		((UINT16)0xFD02)
+#define		HFA384x_RID_PRISUPRANGE		((UINT16)0xFD03)
+#define		HFA384x_RID_PRI_CFIACTRANGES	((UINT16)0xFD04)
+#define		HFA384x_RID_NICSERIALNUMBER	((UINT16)0xFD0A)
+#define		HFA384x_RID_NICIDENTITY		((UINT16)0xFD0B)
+#define		HFA384x_RID_MFISUPRANGE		((UINT16)0xFD0C)
+#define		HFA384x_RID_CFISUPRANGE		((UINT16)0xFD0D)
+#define		HFA384x_RID_CHANNELLIST		((UINT16)0xFD10)
+#define		HFA384x_RID_REGULATORYDOMAINS	((UINT16)0xFD11)
+#define		HFA384x_RID_TEMPTYPE		((UINT16)0xFD12)
+#define		HFA384x_RID_CIS			((UINT16)0xFD13)
+#define		HFA384x_RID_STAIDENTITY		((UINT16)0xFD20)
+#define		HFA384x_RID_STASUPRANGE		((UINT16)0xFD21)
+#define		HFA384x_RID_STA_MFIACTRANGES	((UINT16)0xFD22)
+#define		HFA384x_RID_STA_CFIACTRANGES	((UINT16)0xFD23)
+#define		HFA384x_RID_BUILDSEQ		((UINT16)0xFFFE)
+#define		HFA384x_RID_FWID		((UINT16)0xFFFF)
+
+/*----------------------------------------------------------------------
+Information RID Lengths: NIC Information
+  This is the length of JUST the DATA part of the RID (does not
+  include the len or code fields)
+--------------------------------------------------------------------*/
+#define		HFA384x_RID_MAXLOADTIME_LEN		((UINT16)0)
+#define		HFA384x_RID_DOWNLOADBUFFER_LEN		((UINT16)sizeof(hfa384x_downloadbuffer_t))
+#define		HFA384x_RID_PRIIDENTITY_LEN		((UINT16)8)
+#define		HFA384x_RID_PRISUPRANGE_LEN		((UINT16)10)
+#define		HFA384x_RID_CFIACTRANGES_LEN		((UINT16)10)
+#define		HFA384x_RID_NICSERIALNUMBER_LEN		((UINT16)12)
+#define		HFA384x_RID_NICIDENTITY_LEN		((UINT16)8)
+#define		HFA384x_RID_MFISUPRANGE_LEN		((UINT16)10)
+#define		HFA384x_RID_CFISUPRANGE_LEN		((UINT16)10)
+#define		HFA384x_RID_CHANNELLIST_LEN		((UINT16)0)
+#define		HFA384x_RID_REGULATORYDOMAINS_LEN	((UINT16)12)
+#define		HFA384x_RID_TEMPTYPE_LEN		((UINT16)0)
+#define		HFA384x_RID_CIS_LEN			((UINT16)480)
+#define		HFA384x_RID_STAIDENTITY_LEN		((UINT16)8)
+#define		HFA384x_RID_STASUPRANGE_LEN		((UINT16)10)
+#define		HFA384x_RID_MFIACTRANGES_LEN		((UINT16)10)
+#define		HFA384x_RID_CFIACTRANGES2_LEN		((UINT16)10)
+#define		HFA384x_RID_BUILDSEQ_LEN		((UINT16)sizeof(hfa384x_BuildSeq_t))
+#define		HFA384x_RID_FWID_LEN			((UINT16)sizeof(hfa384x_FWID_t))
+
+/*--------------------------------------------------------------------
+Information RIDs:  MAC Information
+--------------------------------------------------------------------*/
+#define		HFA384x_RID_PORTSTATUS		((UINT16)0xFD40)
+#define		HFA384x_RID_CURRENTSSID		((UINT16)0xFD41)
+#define		HFA384x_RID_CURRENTBSSID	((UINT16)0xFD42)
+#define		HFA384x_RID_COMMSQUALITY	((UINT16)0xFD43)
+#define		HFA384x_RID_CURRENTTXRATE	((UINT16)0xFD44)
+#define		HFA384x_RID_CURRENTBCNINT	((UINT16)0xFD45)
+#define		HFA384x_RID_CURRENTSCALETHRESH	((UINT16)0xFD46)
+#define		HFA384x_RID_PROTOCOLRSPTIME	((UINT16)0xFD47)
+#define		HFA384x_RID_SHORTRETRYLIMIT	((UINT16)0xFD48)
+#define		HFA384x_RID_LONGRETRYLIMIT	((UINT16)0xFD49)
+#define		HFA384x_RID_MAXTXLIFETIME	((UINT16)0xFD4A)
+#define		HFA384x_RID_MAXRXLIFETIME	((UINT16)0xFD4B)
+#define		HFA384x_RID_CFPOLLABLE		((UINT16)0xFD4C)
+#define		HFA384x_RID_AUTHALGORITHMS	((UINT16)0xFD4D)
+#define		HFA384x_RID_PRIVACYOPTIMP	((UINT16)0xFD4F)
+#define		HFA384x_RID_DBMCOMMSQUALITY	((UINT16)0xFD51)
+#define		HFA384x_RID_CURRENTTXRATE1	((UINT16)0xFD80)
+#define		HFA384x_RID_CURRENTTXRATE2	((UINT16)0xFD81)
+#define		HFA384x_RID_CURRENTTXRATE3	((UINT16)0xFD82)
+#define		HFA384x_RID_CURRENTTXRATE4	((UINT16)0xFD83)
+#define		HFA384x_RID_CURRENTTXRATE5	((UINT16)0xFD84)
+#define		HFA384x_RID_CURRENTTXRATE6	((UINT16)0xFD85)
+#define		HFA384x_RID_OWNMACADDRESS	((UINT16)0xFD86)
+// #define	HFA384x_RID_PCFINFO		((UINT16)0xFD87)
+#define		HFA384x_RID_SCANRESULTS       	((UINT16)0xFD88) // NEW
+#define		HFA384x_RID_HOSTSCANRESULTS   	((UINT16)0xFD89) // NEW
+#define		HFA384x_RID_AUTHENTICATIONUSED	((UINT16)0xFD8A) // NEW
+#define		HFA384x_RID_ASSOCIATEFAILURE  	((UINT16)0xFD8D) // 1.8.0
+
+/*--------------------------------------------------------------------
+Information RID Lengths:  MAC Information
+  This is the length of JUST the DATA part of the RID (does not
+  include the len or code fields)
+--------------------------------------------------------------------*/
+#define		HFA384x_RID_PORTSTATUS_LEN		((UINT16)0)
+#define		HFA384x_RID_CURRENTSSID_LEN		((UINT16)34)
+#define		HFA384x_RID_CURRENTBSSID_LEN		((UINT16)WLAN_BSSID_LEN)
+#define		HFA384x_RID_COMMSQUALITY_LEN		((UINT16)sizeof(hfa384x_commsquality_t))
+#define		HFA384x_RID_DBMCOMMSQUALITY_LEN		((UINT16)sizeof(hfa384x_dbmcommsquality_t))
+#define		HFA384x_RID_CURRENTTXRATE_LEN		((UINT16)0)
+#define		HFA384x_RID_CURRENTBCNINT_LEN		((UINT16)0)
+#define		HFA384x_RID_STACURSCALETHRESH_LEN	((UINT16)12)
+#define		HFA384x_RID_APCURSCALETHRESH_LEN	((UINT16)6)
+#define		HFA384x_RID_PROTOCOLRSPTIME_LEN		((UINT16)0)
+#define		HFA384x_RID_SHORTRETRYLIMIT_LEN		((UINT16)0)
+#define		HFA384x_RID_LONGRETRYLIMIT_LEN		((UINT16)0)
+#define		HFA384x_RID_MAXTXLIFETIME_LEN		((UINT16)0)
+#define		HFA384x_RID_MAXRXLIFETIME_LEN		((UINT16)0)
+#define		HFA384x_RID_CFPOLLABLE_LEN		((UINT16)0)
+#define		HFA384x_RID_AUTHALGORITHMS_LEN		((UINT16)4)
+#define		HFA384x_RID_PRIVACYOPTIMP_LEN		((UINT16)0)
+#define		HFA384x_RID_CURRENTTXRATE1_LEN		((UINT16)0)
+#define		HFA384x_RID_CURRENTTXRATE2_LEN		((UINT16)0)
+#define		HFA384x_RID_CURRENTTXRATE3_LEN		((UINT16)0)
+#define		HFA384x_RID_CURRENTTXRATE4_LEN		((UINT16)0)
+#define		HFA384x_RID_CURRENTTXRATE5_LEN		((UINT16)0)
+#define		HFA384x_RID_CURRENTTXRATE6_LEN		((UINT16)0)
+#define		HFA384x_RID_OWNMACADDRESS_LEN		((UINT16)6)
+#define		HFA384x_RID_PCFINFO_LEN			((UINT16)6)
+#define		HFA384x_RID_CNFAPPCFINFO_LEN		((UINT16)sizeof(hfa384x_PCFInfo_data_t))
+#define		HFA384x_RID_SCANREQUEST_LEN		((UINT16)sizeof(hfa384x_ScanRequest_data_t))
+#define		HFA384x_RID_JOINREQUEST_LEN		((UINT16)sizeof(hfa384x_JoinRequest_data_t))
+#define		HFA384x_RID_AUTHENTICATESTA_LEN		((UINT16)sizeof(hfa384x_authenticateStation_data_t))
+#define		HFA384x_RID_CHANNELINFOREQUEST_LEN	((UINT16)sizeof(hfa384x_ChannelInfoRequest_data_t))
+/*--------------------------------------------------------------------
+Information RIDs:  Modem Information
+--------------------------------------------------------------------*/
+#define		HFA384x_RID_PHYTYPE		((UINT16)0xFDC0)
+#define		HFA384x_RID_CURRENTCHANNEL	((UINT16)0xFDC1)
+#define		HFA384x_RID_CURRENTPOWERSTATE	((UINT16)0xFDC2)
+#define		HFA384x_RID_CCAMODE		((UINT16)0xFDC3)
+#define		HFA384x_RID_SUPPORTEDDATARATES	((UINT16)0xFDC6)
+#define		HFA384x_RID_LFOSTATUS           ((UINT16)0xFDC7) // 1.7.1
+
+/*--------------------------------------------------------------------
+Information RID Lengths:  Modem Information
+  This is the length of JUST the DATA part of the RID (does not
+  include the len or code fields)
+--------------------------------------------------------------------*/
+#define		HFA384x_RID_PHYTYPE_LEN			((UINT16)0)
+#define		HFA384x_RID_CURRENTCHANNEL_LEN		((UINT16)0)
+#define		HFA384x_RID_CURRENTPOWERSTATE_LEN	((UINT16)0)
+#define		HFA384x_RID_CCAMODE_LEN			((UINT16)0)
+#define		HFA384x_RID_SUPPORTEDDATARATES_LEN	((UINT16)10)
+
+/*--------------------------------------------------------------------
+API ENHANCEMENTS (NOT ALREADY IMPLEMENTED)
+--------------------------------------------------------------------*/
+#define		HFA384x_RID_CNFWEPDEFAULTKEYID	((UINT16)0xFC23)
+#define		HFA384x_RID_CNFWEPDEFAULTKEY0	((UINT16)0xFC24)
+#define		HFA384x_RID_CNFWEPDEFAULTKEY1	((UINT16)0xFC25)
+#define		HFA384x_RID_CNFWEPDEFAULTKEY2	((UINT16)0xFC26)
+#define		HFA384x_RID_CNFWEPDEFAULTKEY3	((UINT16)0xFC27)
+#define		HFA384x_RID_CNFWEPFLAGS		((UINT16)0xFC28)
+#define		HFA384x_RID_CNFWEPKEYMAPTABLE	((UINT16)0xFC29)
+#define		HFA384x_RID_CNFAUTHENTICATION	((UINT16)0xFC2A)
+#define		HFA384x_RID_CNFMAXASSOCSTATIONS	((UINT16)0xFC2B)
+#define		HFA384x_RID_CNFTXCONTROL	((UINT16)0xFC2C)
+#define		HFA384x_RID_CNFROAMINGMODE	((UINT16)0xFC2D)
+#define		HFA384x_RID_CNFHOSTAUTHASSOC	((UINT16)0xFC2E)
+#define		HFA384x_RID_CNFRCVCRCERROR	((UINT16)0xFC30)
+// #define		HFA384x_RID_CNFMMLIFE		((UINT16)0xFC31)
+#define		HFA384x_RID_CNFALTRETRYCNT	((UINT16)0xFC32)
+#define		HFA384x_RID_CNFAPBCNINT		((UINT16)0xFC33)
+#define		HFA384x_RID_CNFAPPCFINFO	((UINT16)0xFC34)
+#define		HFA384x_RID_CNFSTAPCFINFO	((UINT16)0xFC35)
+#define		HFA384x_RID_CNFPRIORITYQUSAGE	((UINT16)0xFC37)
+#define		HFA384x_RID_CNFTIMCTRL		((UINT16)0xFC40)
+#define		HFA384x_RID_CNFTHIRTY2TALLY	((UINT16)0xFC42)
+#define		HFA384x_RID_CNFENHSECURITY	((UINT16)0xFC43)
+#define		HFA384x_RID_CNFDBMADJUST  	((UINT16)0xFC46) // NEW
+#define		HFA384x_RID_CNFWPADATA       	((UINT16)0xFC48) // 1.7.0
+#define		HFA384x_RID_CNFPROPOGATIONDELAY	((UINT16)0xFC49) // 1.7.6
+#define		HFA384x_RID_CNFSHORTPREAMBLE	((UINT16)0xFCB0)
+#define		HFA384x_RID_CNFEXCLONGPREAMBLE	((UINT16)0xFCB1)
+#define		HFA384x_RID_CNFAUTHRSPTIMEOUT	((UINT16)0xFCB2)
+#define		HFA384x_RID_CNFBASICRATES	((UINT16)0xFCB3)
+#define		HFA384x_RID_CNFSUPPRATES	((UINT16)0xFCB4)
+#define		HFA384x_RID_CNFFALLBACKCTRL	((UINT16)0xFCB5) // NEW
+#define		HFA384x_RID_WEPKEYSTATUS   	((UINT16)0xFCB6) // NEW
+#define		HFA384x_RID_WEPKEYMAPINDEX 	((UINT16)0xFCB7) // NEW
+#define		HFA384x_RID_BROADCASTKEYID 	((UINT16)0xFCB8) // NEW
+#define		HFA384x_RID_ENTSECFLAGEYID 	((UINT16)0xFCB9) // NEW
+#define		HFA384x_RID_CNFPASSIVESCANCTRL	((UINT16)0xFCBA) // NEW STA
+#define		HFA384x_RID_CNFWPAHANDLING	((UINT16)0xFCBB) // 1.7.0
+#define		HFA384x_RID_MDCCONTROL        	((UINT16)0xFCBC) // 1.7.0/1.4.0
+#define		HFA384x_RID_MDCCOUNTRY        	((UINT16)0xFCBD) // 1.7.0/1.4.0
+#define		HFA384x_RID_TXPOWERMAX        	((UINT16)0xFCBE) // 1.7.0/1.4.0
+#define		HFA384x_RID_CNFLFOENBLED      	((UINT16)0xFCBF) // 1.6.3
+#define         HFA384x_RID_CAPINFO             ((UINT16)0xFCC0) // 1.7.0/1.3.7
+#define         HFA384x_RID_LISTENINTERVAL      ((UINT16)0xFCC1) // 1.7.0/1.3.7
+#define         HFA384x_RID_DIVERSITYENABLED    ((UINT16)0xFCC2) // 1.7.0/1.3.7
+#define         HFA384x_RID_LED_CONTROL         ((UINT16)0xFCC4) // 1.7.6
+#define         HFA384x_RID_HFO_DELAY           ((UINT16)0xFCC5) // 1.7.6
+#define         HFA384x_RID_DISSALOWEDBSSID     ((UINT16)0xFCC6) // 1.8.0
+#define		HFA384x_RID_SCANREQUEST		((UINT16)0xFCE1)
+#define		HFA384x_RID_JOINREQUEST		((UINT16)0xFCE2)
+#define		HFA384x_RID_AUTHENTICATESTA	((UINT16)0xFCE3)
+#define		HFA384x_RID_CHANNELINFOREQUEST	((UINT16)0xFCE4)
+#define		HFA384x_RID_HOSTSCAN          	((UINT16)0xFCE5) // NEW STA
+#define		HFA384x_RID_ASSOCIATESTA	((UINT16)0xFCE6)
+
+#define		HFA384x_RID_CNFWEPDEFAULTKEY_LEN	((UINT16)6)
+#define		HFA384x_RID_CNFWEP128DEFAULTKEY_LEN	((UINT16)14)
+#define		HFA384x_RID_CNFPRIOQUSAGE_LEN		((UINT16)4)
+/*--------------------------------------------------------------------
+PD Record codes
+--------------------------------------------------------------------*/
+#define HFA384x_PDR_PCB_PARTNUM		((UINT16)0x0001)
+#define HFA384x_PDR_PDAVER		((UINT16)0x0002)
+#define HFA384x_PDR_NIC_SERIAL		((UINT16)0x0003)
+#define HFA384x_PDR_MKK_MEASUREMENTS	((UINT16)0x0004)
+#define HFA384x_PDR_NIC_RAMSIZE		((UINT16)0x0005)
+#define HFA384x_PDR_MFISUPRANGE		((UINT16)0x0006)
+#define HFA384x_PDR_CFISUPRANGE		((UINT16)0x0007)
+#define HFA384x_PDR_NICID		((UINT16)0x0008)
+//#define HFA384x_PDR_REFDAC_MEASUREMENTS	((UINT16)0x0010)
+//#define HFA384x_PDR_VGDAC_MEASUREMENTS	((UINT16)0x0020)
+//#define HFA384x_PDR_LEVEL_COMP_MEASUREMENTS	((UINT16)0x0030)
+//#define HFA384x_PDR_MODEM_TRIMDAC_MEASUREMENTS	((UINT16)0x0040)
+//#define HFA384x_PDR_COREGA_HACK		((UINT16)0x00ff)
+#define HFA384x_PDR_MAC_ADDRESS		((UINT16)0x0101)
+//#define HFA384x_PDR_MKK_CALLNAME	((UINT16)0x0102)
+#define HFA384x_PDR_REGDOMAIN		((UINT16)0x0103)
+#define HFA384x_PDR_ALLOWED_CHANNEL	((UINT16)0x0104)
+#define HFA384x_PDR_DEFAULT_CHANNEL	((UINT16)0x0105)
+//#define HFA384x_PDR_PRIVACY_OPTION	((UINT16)0x0106)
+#define HFA384x_PDR_TEMPTYPE		((UINT16)0x0107)
+//#define HFA384x_PDR_REFDAC_SETUP	((UINT16)0x0110)
+//#define HFA384x_PDR_VGDAC_SETUP		((UINT16)0x0120)
+//#define HFA384x_PDR_LEVEL_COMP_SETUP	((UINT16)0x0130)
+//#define HFA384x_PDR_TRIMDAC_SETUP	((UINT16)0x0140)
+#define HFA384x_PDR_IFR_SETTING		((UINT16)0x0200)
+#define HFA384x_PDR_RFR_SETTING		((UINT16)0x0201)
+#define HFA384x_PDR_HFA3861_BASELINE	((UINT16)0x0202)
+#define HFA384x_PDR_HFA3861_SHADOW	((UINT16)0x0203)
+#define HFA384x_PDR_HFA3861_IFRF	((UINT16)0x0204)
+#define HFA384x_PDR_HFA3861_CHCALSP	((UINT16)0x0300)
+#define HFA384x_PDR_HFA3861_CHCALI	((UINT16)0x0301)
+#define HFA384x_PDR_MAX_TX_POWER  	((UINT16)0x0302)
+#define HFA384x_PDR_MASTER_CHAN_LIST	((UINT16)0x0303)
+#define HFA384x_PDR_3842_NIC_CONFIG	((UINT16)0x0400)
+#define HFA384x_PDR_USB_ID		((UINT16)0x0401)
+#define HFA384x_PDR_PCI_ID		((UINT16)0x0402)
+#define HFA384x_PDR_PCI_IFCONF		((UINT16)0x0403)
+#define HFA384x_PDR_PCI_PMCONF		((UINT16)0x0404)
+#define HFA384x_PDR_RFENRGY		((UINT16)0x0406)
+#define HFA384x_PDR_USB_POWER_TYPE      ((UINT16)0x0407)
+//#define HFA384x_PDR_UNKNOWN408		((UINT16)0x0408)
+#define HFA384x_PDR_USB_MAX_POWER	((UINT16)0x0409)
+#define HFA384x_PDR_USB_MANUFACTURER	((UINT16)0x0410)
+#define HFA384x_PDR_USB_PRODUCT  	((UINT16)0x0411)
+#define HFA384x_PDR_ANT_DIVERSITY   	((UINT16)0x0412)
+#define HFA384x_PDR_HFO_DELAY       	((UINT16)0x0413)
+#define HFA384x_PDR_SCALE_THRESH 	((UINT16)0x0414)
+
+#define HFA384x_PDR_HFA3861_MANF_TESTSP	((UINT16)0x0900)
+#define HFA384x_PDR_HFA3861_MANF_TESTI	((UINT16)0x0901)
+#define HFA384x_PDR_END_OF_PDA		((UINT16)0x0000)
+
+
+/*=============================================================*/
+/*------ Macros -----------------------------------------------*/
+
+/*--- Register ID macros ------------------------*/
+
+#define		HFA384x_CMD		HFA384x_CMD_OFF
+#define		HFA384x_PARAM0		HFA384x_PARAM0_OFF
+#define		HFA384x_PARAM1		HFA384x_PARAM1_OFF
+#define		HFA384x_PARAM2		HFA384x_PARAM2_OFF
+#define		HFA384x_STATUS		HFA384x_STATUS_OFF
+#define		HFA384x_RESP0		HFA384x_RESP0_OFF
+#define		HFA384x_RESP1		HFA384x_RESP1_OFF
+#define		HFA384x_RESP2		HFA384x_RESP2_OFF
+#define		HFA384x_INFOFID		HFA384x_INFOFID_OFF
+#define		HFA384x_RXFID		HFA384x_RXFID_OFF
+#define		HFA384x_ALLOCFID	HFA384x_ALLOCFID_OFF
+#define		HFA384x_TXCOMPLFID	HFA384x_TXCOMPLFID_OFF
+#define		HFA384x_SELECT0		HFA384x_SELECT0_OFF
+#define		HFA384x_OFFSET0		HFA384x_OFFSET0_OFF
+#define		HFA384x_DATA0		HFA384x_DATA0_OFF
+#define		HFA384x_SELECT1		HFA384x_SELECT1_OFF
+#define		HFA384x_OFFSET1		HFA384x_OFFSET1_OFF
+#define		HFA384x_DATA1		HFA384x_DATA1_OFF
+#define		HFA384x_EVSTAT		HFA384x_EVSTAT_OFF
+#define		HFA384x_INTEN		HFA384x_INTEN_OFF
+#define		HFA384x_EVACK		HFA384x_EVACK_OFF
+#define		HFA384x_CONTROL		HFA384x_CONTROL_OFF
+#define		HFA384x_SWSUPPORT0	HFA384x_SWSUPPORT0_OFF
+#define		HFA384x_SWSUPPORT1	HFA384x_SWSUPPORT1_OFF
+#define		HFA384x_SWSUPPORT2	HFA384x_SWSUPPORT2_OFF
+#define		HFA384x_AUXPAGE		HFA384x_AUXPAGE_OFF
+#define		HFA384x_AUXOFFSET	HFA384x_AUXOFFSET_OFF
+#define		HFA384x_AUXDATA		HFA384x_AUXDATA_OFF
+#define		HFA384x_PCICOR		HFA384x_PCICOR_OFF
+#define		HFA384x_PCIHCR		HFA384x_PCIHCR_OFF
+
+
+/*--- Register Test/Get/Set Field macros ------------------------*/
+
+#define		HFA384x_CMD_ISBUSY(value)		((UINT16)(((UINT16)value) & HFA384x_CMD_BUSY))
+#define		HFA384x_CMD_AINFO_GET(value)		((UINT16)(((UINT16)(value) & HFA384x_CMD_AINFO) >> 8))
+#define		HFA384x_CMD_AINFO_SET(value)		((UINT16)((UINT16)(value) << 8))
+#define		HFA384x_CMD_MACPORT_GET(value)		((UINT16)(HFA384x_CMD_AINFO_GET((UINT16)(value) & HFA384x_CMD_MACPORT)))
+#define		HFA384x_CMD_MACPORT_SET(value)		((UINT16)HFA384x_CMD_AINFO_SET(value))
+#define		HFA384x_CMD_ISRECL(value)		((UINT16)(HFA384x_CMD_AINFO_GET((UINT16)(value) & HFA384x_CMD_RECL)))
+#define		HFA384x_CMD_RECL_SET(value)		((UINT16)HFA384x_CMD_AINFO_SET(value))
+#define		HFA384x_CMD_QOS_GET(value)		((UINT16((((UINT16)(value))&((UINT16)0x3000)) >> 12))
+#define		HFA384x_CMD_QOS_SET(value)		((UINT16)((((UINT16)(value)) << 12) & 0x3000))
+#define		HFA384x_CMD_ISWRITE(value)		((UINT16)(HFA384x_CMD_AINFO_GET((UINT16)(value) & HFA384x_CMD_WRITE)))
+#define		HFA384x_CMD_WRITE_SET(value)		((UINT16)HFA384x_CMD_AINFO_SET((UINT16)value))
+#define		HFA384x_CMD_PROGMODE_GET(value)		((UINT16)(HFA384x_CMD_AINFO_GET((UINT16)(value) & HFA384x_CMD_PROGMODE)))
+#define		HFA384x_CMD_PROGMODE_SET(value)		((UINT16)HFA384x_CMD_AINFO_SET((UINT16)value))
+#define		HFA384x_CMD_CMDCODE_GET(value)		((UINT16)(((UINT16)(value)) & HFA384x_CMD_CMDCODE))
+#define		HFA384x_CMD_CMDCODE_SET(value)		((UINT16)(value))
+
+#define		HFA384x_STATUS_RESULT_GET(value)	((UINT16)((((UINT16)(value)) & HFA384x_STATUS_RESULT) >> 8))
+#define		HFA384x_STATUS_RESULT_SET(value)	(((UINT16)(value)) << 8)
+#define		HFA384x_STATUS_CMDCODE_GET(value)	(((UINT16)(value)) & HFA384x_STATUS_CMDCODE)
+#define		HFA384x_STATUS_CMDCODE_SET(value)	((UINT16)(value))
+
+#define		HFA384x_OFFSET_ISBUSY(value)		((UINT16)(((UINT16)(value)) & HFA384x_OFFSET_BUSY))
+#define		HFA384x_OFFSET_ISERR(value)		((UINT16)(((UINT16)(value)) & HFA384x_OFFSET_ERR))
+#define		HFA384x_OFFSET_DATAOFF_GET(value)	((UINT16)(((UINT16)(value)) & HFA384x_OFFSET_DATAOFF))
+#define		HFA384x_OFFSET_DATAOFF_SET(value)	((UINT16)(value))
+
+#define		HFA384x_EVSTAT_ISTICK(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVSTAT_TICK))
+#define		HFA384x_EVSTAT_ISWTERR(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVSTAT_WTERR))
+#define		HFA384x_EVSTAT_ISINFDROP(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVSTAT_INFDROP))
+#define		HFA384x_EVSTAT_ISINFO(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVSTAT_INFO))
+#define		HFA384x_EVSTAT_ISDTIM(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVSTAT_DTIM))
+#define		HFA384x_EVSTAT_ISCMD(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVSTAT_CMD))
+#define		HFA384x_EVSTAT_ISALLOC(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVSTAT_ALLOC))
+#define		HFA384x_EVSTAT_ISTXEXC(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVSTAT_TXEXC))
+#define		HFA384x_EVSTAT_ISTX(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVSTAT_TX))
+#define		HFA384x_EVSTAT_ISRX(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVSTAT_RX))
+
+#define		HFA384x_EVSTAT_ISBAP_OP(value)		((UINT16)(((UINT16)(value)) & HFA384x_INT_BAP_OP))
+
+#define		HFA384x_INTEN_ISTICK(value)		((UINT16)(((UINT16)(value)) & HFA384x_INTEN_TICK))
+#define		HFA384x_INTEN_TICK_SET(value)		((UINT16)(((UINT16)(value)) << 15))
+#define		HFA384x_INTEN_ISWTERR(value)		((UINT16)(((UINT16)(value)) & HFA384x_INTEN_WTERR))
+#define		HFA384x_INTEN_WTERR_SET(value)		((UINT16)(((UINT16)(value)) << 14))
+#define		HFA384x_INTEN_ISINFDROP(value)		((UINT16)(((UINT16)(value)) & HFA384x_INTEN_INFDROP))
+#define		HFA384x_INTEN_INFDROP_SET(value)	((UINT16)(((UINT16)(value)) << 13))
+#define		HFA384x_INTEN_ISINFO(value)		((UINT16)(((UINT16)(value)) & HFA384x_INTEN_INFO))
+#define		HFA384x_INTEN_INFO_SET(value)		((UINT16)(((UINT16)(value)) << 7))
+#define		HFA384x_INTEN_ISDTIM(value)		((UINT16)(((UINT16)(value)) & HFA384x_INTEN_DTIM))
+#define		HFA384x_INTEN_DTIM_SET(value)		((UINT16)(((UINT16)(value)) << 5))
+#define		HFA384x_INTEN_ISCMD(value)		((UINT16)(((UINT16)(value)) & HFA384x_INTEN_CMD))
+#define		HFA384x_INTEN_CMD_SET(value)		((UINT16)(((UINT16)(value)) << 4))
+#define		HFA384x_INTEN_ISALLOC(value)		((UINT16)(((UINT16)(value)) & HFA384x_INTEN_ALLOC))
+#define		HFA384x_INTEN_ALLOC_SET(value)		((UINT16)(((UINT16)(value)) << 3))
+#define		HFA384x_INTEN_ISTXEXC(value)		((UINT16)(((UINT16)(value)) & HFA384x_INTEN_TXEXC))
+#define		HFA384x_INTEN_TXEXC_SET(value)		((UINT16)(((UINT16)(value)) << 2))
+#define		HFA384x_INTEN_ISTX(value)		((UINT16)(((UINT16)(value)) & HFA384x_INTEN_TX))
+#define		HFA384x_INTEN_TX_SET(value)		((UINT16)(((UINT16)(value)) << 1))
+#define		HFA384x_INTEN_ISRX(value)		((UINT16)(((UINT16)(value)) & HFA384x_INTEN_RX))
+#define		HFA384x_INTEN_RX_SET(value)		((UINT16)(((UINT16)(value)) << 0))
+
+#define		HFA384x_EVACK_ISTICK(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVACK_TICK))
+#define		HFA384x_EVACK_TICK_SET(value)		((UINT16)(((UINT16)(value)) << 15))
+#define		HFA384x_EVACK_ISWTERR(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVACK_WTERR))
+#define		HFA384x_EVACK_WTERR_SET(value)		((UINT16)(((UINT16)(value)) << 14))
+#define		HFA384x_EVACK_ISINFDROP(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVACK_INFDROP))
+#define		HFA384x_EVACK_INFDROP_SET(value)	((UINT16)(((UINT16)(value)) << 13))
+#define		HFA384x_EVACK_ISINFO(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVACK_INFO))
+#define		HFA384x_EVACK_INFO_SET(value)		((UINT16)(((UINT16)(value)) << 7))
+#define		HFA384x_EVACK_ISDTIM(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVACK_DTIM))
+#define		HFA384x_EVACK_DTIM_SET(value)		((UINT16)(((UINT16)(value)) << 5))
+#define		HFA384x_EVACK_ISCMD(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVACK_CMD))
+#define		HFA384x_EVACK_CMD_SET(value)		((UINT16)(((UINT16)(value)) << 4))
+#define		HFA384x_EVACK_ISALLOC(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVACK_ALLOC))
+#define		HFA384x_EVACK_ALLOC_SET(value)		((UINT16)(((UINT16)(value)) << 3))
+#define		HFA384x_EVACK_ISTXEXC(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVACK_TXEXC))
+#define		HFA384x_EVACK_TXEXC_SET(value)		((UINT16)(((UINT16)(value)) << 2))
+#define		HFA384x_EVACK_ISTX(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVACK_TX))
+#define		HFA384x_EVACK_TX_SET(value)		((UINT16)(((UINT16)(value)) << 1))
+#define		HFA384x_EVACK_ISRX(value)		((UINT16)(((UINT16)(value)) & HFA384x_EVACK_RX))
+#define		HFA384x_EVACK_RX_SET(value)		((UINT16)(((UINT16)(value)) << 0))
+
+#define		HFA384x_CONTROL_AUXEN_SET(value)	((UINT16)(((UINT16)(value)) << 14))
+#define		HFA384x_CONTROL_AUXEN_GET(value)	((UINT16)(((UINT16)(value)) >> 14))
+
+/* Byte Order */
+#ifdef __KERNEL__
+#define hfa384x2host_16(n)	(__le16_to_cpu((UINT16)(n)))
+#define hfa384x2host_32(n)	(__le32_to_cpu((UINT32)(n)))
+#define host2hfa384x_16(n)	(__cpu_to_le16((UINT16)(n)))
+#define host2hfa384x_32(n)	(__cpu_to_le32((UINT32)(n)))
+#endif
+
+/* Host Maintained State Info */
+#define HFA384x_STATE_PREINIT	0
+#define HFA384x_STATE_INIT	1
+#define HFA384x_STATE_RUNNING	2
+
+/*=============================================================*/
+/*------ Types and their related constants --------------------*/
+
+#define HFA384x_HOSTAUTHASSOC_HOSTAUTH   BIT0
+#define HFA384x_HOSTAUTHASSOC_HOSTASSOC  BIT1
+
+#define HFA384x_WHAHANDLING_DISABLED     0
+#define HFA384x_WHAHANDLING_PASSTHROUGH  BIT1
+
+/*-------------------------------------------------------------*/
+/* Commonly used basic types */
+typedef struct hfa384x_bytestr
+{
+	UINT16	len;
+	UINT8	data[0];
+} __WLAN_ATTRIB_PACK__ hfa384x_bytestr_t;
+
+typedef struct hfa384x_bytestr32
+{
+	UINT16	len;
+	UINT8	data[32];
+} __WLAN_ATTRIB_PACK__ hfa384x_bytestr32_t;
+
+/*--------------------------------------------------------------------
+Configuration Record Structures:
+	Network Parameters, Static Configuration Entities
+--------------------------------------------------------------------*/
+/* Prototype structure: all configuration record structures start with
+these members */
+
+typedef struct hfa384x_record
+{
+	UINT16	reclen;
+	UINT16	rid;
+} __WLAN_ATTRIB_PACK__ hfa384x_rec_t;
+
+typedef struct hfa384x_record16
+{
+	UINT16	reclen;
+	UINT16	rid;
+	UINT16	val;
+} __WLAN_ATTRIB_PACK__ hfa384x_rec16_t;
+
+typedef struct hfa384x_record32
+{
+	UINT16	reclen;
+	UINT16	rid;
+	UINT32	val;
+} __WLAN_ATTRIB_PACK__ hfa384x_rec32;
+
+/*-- Hardware/Firmware Component Information ----------*/
+typedef struct hfa384x_compident
+{
+	UINT16	id;
+	UINT16	variant;
+	UINT16	major;
+	UINT16	minor;
+} __WLAN_ATTRIB_PACK__ hfa384x_compident_t;
+
+typedef struct hfa384x_caplevel
+{
+	UINT16	role;
+	UINT16	id;
+	UINT16	variant;
+	UINT16	bottom;
+	UINT16	top;
+} __WLAN_ATTRIB_PACK__ hfa384x_caplevel_t;
+
+/*-- Configuration Record: cnfPortType --*/
+typedef struct hfa384x_cnfPortType
+{
+	UINT16	cnfPortType;
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfPortType_t;
+
+/*-- Configuration Record: cnfOwnMACAddress --*/
+typedef struct hfa384x_cnfOwnMACAddress
+{
+	UINT8	cnfOwnMACAddress[6];
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfOwnMACAddress_t;
+
+/*-- Configuration Record: cnfDesiredSSID --*/
+typedef struct hfa384x_cnfDesiredSSID
+{
+	UINT8	cnfDesiredSSID[34];
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfDesiredSSID_t;
+
+/*-- Configuration Record: cnfOwnChannel --*/
+typedef struct hfa384x_cnfOwnChannel
+{
+	UINT16	cnfOwnChannel;
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfOwnChannel_t;
+
+/*-- Configuration Record: cnfOwnSSID --*/
+typedef struct hfa384x_cnfOwnSSID
+{
+	UINT8	cnfOwnSSID[34];
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfOwnSSID_t;
+
+/*-- Configuration Record: cnfOwnATIMWindow --*/
+typedef struct hfa384x_cnfOwnATIMWindow
+{
+	UINT16	cnfOwnATIMWindow;
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfOwnATIMWindow_t;
+
+/*-- Configuration Record: cnfSystemScale --*/
+typedef struct hfa384x_cnfSystemScale
+{
+	UINT16	cnfSystemScale;
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfSystemScale_t;
+
+/*-- Configuration Record: cnfMaxDataLength --*/
+typedef struct hfa384x_cnfMaxDataLength
+{
+	UINT16	cnfMaxDataLength;
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfMaxDataLength_t;
+
+/*-- Configuration Record: cnfWDSAddress --*/
+typedef struct hfa384x_cnfWDSAddress
+{
+	UINT8	cnfWDSAddress[6];
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfWDSAddress_t;
+
+/*-- Configuration Record: cnfPMEnabled --*/
+typedef struct hfa384x_cnfPMEnabled
+{
+	UINT16	cnfPMEnabled;
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfPMEnabled_t;
+
+/*-- Configuration Record: cnfPMEPS --*/
+typedef struct hfa384x_cnfPMEPS
+{
+	UINT16	cnfPMEPS;
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfPMEPS_t;
+
+/*-- Configuration Record: cnfMulticastReceive --*/
+typedef struct hfa384x_cnfMulticastReceive
+{
+	UINT16	cnfMulticastReceive;
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfMulticastReceive_t;
+
+/*-- Configuration Record: cnfAuthentication --*/
+#define HFA384x_CNFAUTHENTICATION_OPENSYSTEM	0x0001
+#define HFA384x_CNFAUTHENTICATION_SHAREDKEY	0x0002
+#define HFA384x_CNFAUTHENTICATION_LEAP     	0x0004
+
+/*-- Configuration Record: cnfMaxSleepDuration --*/
+typedef struct hfa384x_cnfMaxSleepDuration
+{
+	UINT16	cnfMaxSleepDuration;
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfMaxSleepDuration_t;
+
+/*-- Configuration Record: cnfPMHoldoverDuration --*/
+typedef struct hfa384x_cnfPMHoldoverDuration
+{
+	UINT16	cnfPMHoldoverDuration;
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfPMHoldoverDuration_t;
+
+/*-- Configuration Record: cnfOwnName --*/
+typedef struct hfa384x_cnfOwnName
+{
+	UINT8	cnfOwnName[34];
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfOwnName_t;
+
+/*-- Configuration Record: cnfOwnDTIMPeriod --*/
+typedef struct hfa384x_cnfOwnDTIMPeriod
+{
+	UINT16	cnfOwnDTIMPeriod;
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfOwnDTIMPeriod_t;
+
+/*-- Configuration Record: cnfWDSAddress --*/
+typedef struct hfa384x_cnfWDSAddressN
+{
+	UINT8	cnfWDSAddress[6];
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfWDSAddressN_t;
+
+/*-- Configuration Record: cnfMulticastPMBuffering --*/
+typedef struct hfa384x_cnfMulticastPMBuffering
+{
+	UINT16	cnfMulticastPMBuffering;
+} __WLAN_ATTRIB_PACK__ hfa384x_cnfMulticastPMBuffering_t;
+
+/*--------------------------------------------------------------------
+Configuration Record Structures:
+	Network Parameters, Dynamic Configuration Entities
+--------------------------------------------------------------------*/
+
+/*-- Configuration Record: GroupAddresses --*/
+typedef struct hfa384x_GroupAddresses
+{
+	UINT8	MACAddress[16][6];
+} __WLAN_ATTRIB_PACK__ hfa384x_GroupAddresses_t;
+
+/*-- Configuration Record: CreateIBSS --*/
+typedef struct hfa384x_CreateIBSS
+{
+	UINT16	CreateIBSS;
+} __WLAN_ATTRIB_PACK__ hfa384x_CreateIBSS_t;
+
+#define HFA384x_CREATEIBSS_JOINCREATEIBSS          0
+#define HFA384x_CREATEIBSS_JOINESS_JOINCREATEIBSS  1
+#define HFA384x_CREATEIBSS_JOINIBSS                2
+#define HFA384x_CREATEIBSS_JOINESS_JOINIBSS        3
+
+/*-- Configuration Record: FragmentationThreshold --*/
+typedef struct hfa384x_FragmentationThreshold
+{
+	UINT16	FragmentationThreshold;
+} __WLAN_ATTRIB_PACK__ hfa384x_FragmentationThreshold_t;
+
+/*-- Configuration Record: RTSThreshold --*/
+typedef struct hfa384x_RTSThreshold
+{
+	UINT16	RTSThreshold;
+} __WLAN_ATTRIB_PACK__ hfa384x_RTSThreshold_t;
+
+/*-- Configuration Record: TxRateControl --*/
+typedef struct hfa384x_TxRateControl
+{
+	UINT16	TxRateControl;
+} __WLAN_ATTRIB_PACK__ hfa384x_TxRateControl_t;
+
+/*-- Configuration Record: PromiscuousMode --*/
+typedef struct hfa384x_PromiscuousMode
+{
+	UINT16	PromiscuousMode;
+} __WLAN_ATTRIB_PACK__ hfa384x_PromiscuousMode_t;
+
+/*-- Configuration Record: ScanRequest (data portion only) --*/
+typedef struct hfa384x_ScanRequest_data
+{
+	UINT16	channelList;
+	UINT16	txRate;
+} __WLAN_ATTRIB_PACK__ hfa384x_ScanRequest_data_t;
+
+/*-- Configuration Record: HostScanRequest (data portion only) --*/
+typedef struct hfa384x_HostScanRequest_data
+{
+	UINT16	channelList;
+	UINT16	txRate;
+	hfa384x_bytestr32_t ssid;
+} __WLAN_ATTRIB_PACK__ hfa384x_HostScanRequest_data_t;
+
+/*-- Configuration Record: JoinRequest (data portion only) --*/
+typedef struct hfa384x_JoinRequest_data
+{
+	UINT8	bssid[WLAN_BSSID_LEN];
+	UINT16	channel;
+} __WLAN_ATTRIB_PACK__ hfa384x_JoinRequest_data_t;
+
+/*-- Configuration Record: authenticateStation (data portion only) --*/
+typedef struct hfa384x_authenticateStation_data
+{
+	UINT8	address[WLAN_ADDR_LEN];
+	UINT16	status;
+	UINT16	algorithm;
+} __WLAN_ATTRIB_PACK__ hfa384x_authenticateStation_data_t;
+
+/*-- Configuration Record: associateStation (data portion only) --*/
+typedef struct hfa384x_associateStation_data
+{
+	UINT8	address[WLAN_ADDR_LEN];
+	UINT16	status;
+	UINT16	type;
+} __WLAN_ATTRIB_PACK__ hfa384x_associateStation_data_t;
+
+/*-- Configuration Record: ChannelInfoRequest (data portion only) --*/
+typedef struct hfa384x_ChannelInfoRequest_data
+{
+	UINT16	channelList;
+	UINT16	channelDwellTime;
+} __WLAN_ATTRIB_PACK__ hfa384x_ChannelInfoRequest_data_t;
+
+/*-- Configuration Record: WEPKeyMapping (data portion only) --*/
+typedef struct hfa384x_WEPKeyMapping
+{
+	UINT8	address[WLAN_ADDR_LEN];
+	UINT16	key_index;
+	UINT8 	key[16];
+	UINT8 	mic_transmit_key[4];
+	UINT8 	mic_receive_key[4];
+} __WLAN_ATTRIB_PACK__ hfa384x_WEPKeyMapping_t;
+
+/*-- Configuration Record: WPAData       (data portion only) --*/
+typedef struct hfa384x_WPAData
+{
+	UINT16	datalen;
+        UINT8 	data[0]; // max 80
+} __WLAN_ATTRIB_PACK__ hfa384x_WPAData_t;
+
+/*--------------------------------------------------------------------
+Configuration Record Structures: Behavior Parameters
+--------------------------------------------------------------------*/
+
+/*-- Configuration Record: TickTime --*/
+typedef struct hfa384x_TickTime
+{
+	UINT16	TickTime;
+} __WLAN_ATTRIB_PACK__ hfa384x_TickTime_t;
+
+/*--------------------------------------------------------------------
+Information Record Structures: NIC Information
+--------------------------------------------------------------------*/
+
+/*-- Information Record: MaxLoadTime --*/
+typedef struct hfa384x_MaxLoadTime
+{
+	UINT16	MaxLoadTime;
+} __WLAN_ATTRIB_PACK__ hfa384x_MaxLoadTime_t;
+
+/*-- Information Record: DownLoadBuffer --*/
+/* NOTE: The page and offset are in AUX format */
+typedef struct hfa384x_downloadbuffer
+{
+	UINT16	page;
+	UINT16	offset;
+	UINT16	len;
+} __WLAN_ATTRIB_PACK__ hfa384x_downloadbuffer_t;
+
+/*-- Information Record: PRIIdentity --*/
+typedef struct hfa384x_PRIIdentity
+{
+	UINT16	PRICompID;
+	UINT16	PRIVariant;
+	UINT16	PRIMajorVersion;
+	UINT16	PRIMinorVersion;
+} __WLAN_ATTRIB_PACK__ hfa384x_PRIIdentity_t;
+
+/*-- Information Record: PRISupRange --*/
+typedef struct hfa384x_PRISupRange
+{
+	UINT16	PRIRole;
+	UINT16	PRIID;
+	UINT16	PRIVariant;
+	UINT16	PRIBottom;
+	UINT16	PRITop;
+} __WLAN_ATTRIB_PACK__ hfa384x_PRISupRange_t;
+
+/*-- Information Record: CFIActRanges --*/
+typedef struct hfa384x_CFIActRanges
+{
+	UINT16	CFIRole;
+	UINT16	CFIID;
+	UINT16	CFIVariant;
+	UINT16	CFIBottom;
+	UINT16	CFITop;
+} __WLAN_ATTRIB_PACK__ hfa384x_CFIActRanges_t;
+
+/*-- Information Record: NICSerialNumber --*/
+typedef struct hfa384x_NICSerialNumber
+{
+	UINT8	NICSerialNumber[12];
+} __WLAN_ATTRIB_PACK__ hfa384x_NICSerialNumber_t;
+
+/*-- Information Record: NICIdentity --*/
+typedef struct hfa384x_NICIdentity
+{
+	UINT16	NICCompID;
+	UINT16	NICVariant;
+	UINT16	NICMajorVersion;
+	UINT16	NICMinorVersion;
+} __WLAN_ATTRIB_PACK__ hfa384x_NICIdentity_t;
+
+/*-- Information Record: MFISupRange --*/
+typedef struct hfa384x_MFISupRange
+{
+	UINT16	MFIRole;
+	UINT16	MFIID;
+	UINT16	MFIVariant;
+	UINT16	MFIBottom;
+	UINT16	MFITop;
+} __WLAN_ATTRIB_PACK__ hfa384x_MFISupRange_t;
+
+/*-- Information Record: CFISupRange --*/
+typedef struct hfa384x_CFISupRange
+{
+	UINT16	CFIRole;
+	UINT16	CFIID;
+	UINT16	CFIVariant;
+	UINT16	CFIBottom;
+	UINT16	CFITop;
+} __WLAN_ATTRIB_PACK__ hfa384x_CFISupRange_t;
+
+/*-- Information Record: BUILDSEQ:BuildSeq --*/
+typedef struct hfa384x_BuildSeq {
+	UINT16	primary;
+	UINT16	secondary;
+} __WLAN_ATTRIB_PACK__ hfa384x_BuildSeq_t;
+
+/*-- Information Record: FWID --*/
+#define HFA384x_FWID_LEN	14
+typedef struct hfa384x_FWID {
+	UINT8	primary[HFA384x_FWID_LEN];
+	UINT8	secondary[HFA384x_FWID_LEN];
+} __WLAN_ATTRIB_PACK__ hfa384x_FWID_t;
+
+/*-- Information Record: ChannelList --*/
+typedef struct hfa384x_ChannelList
+{
+	UINT16	ChannelList;
+} __WLAN_ATTRIB_PACK__ hfa384x_ChannelList_t;
+
+/*-- Information Record: RegulatoryDomains --*/
+typedef struct hfa384x_RegulatoryDomains
+{
+	UINT8	RegulatoryDomains[12];
+} __WLAN_ATTRIB_PACK__ hfa384x_RegulatoryDomains_t;
+
+/*-- Information Record: TempType --*/
+typedef struct hfa384x_TempType
+{
+	UINT16	TempType;
+} __WLAN_ATTRIB_PACK__ hfa384x_TempType_t;
+
+/*-- Information Record: CIS --*/
+typedef struct hfa384x_CIS
+{
+	UINT8	CIS[480];
+} __WLAN_ATTRIB_PACK__ hfa384x_CIS_t;
+
+/*-- Information Record: STAIdentity --*/
+typedef struct hfa384x_STAIdentity
+{
+	UINT16	STACompID;
+	UINT16	STAVariant;
+	UINT16	STAMajorVersion;
+	UINT16	STAMinorVersion;
+} __WLAN_ATTRIB_PACK__ hfa384x_STAIdentity_t;
+
+/*-- Information Record: STASupRange --*/
+typedef struct hfa384x_STASupRange
+{
+	UINT16	STARole;
+	UINT16	STAID;
+	UINT16	STAVariant;
+	UINT16	STABottom;
+	UINT16	STATop;
+} __WLAN_ATTRIB_PACK__ hfa384x_STASupRange_t;
+
+/*-- Information Record: MFIActRanges --*/
+typedef struct hfa384x_MFIActRanges
+{
+	UINT16	MFIRole;
+	UINT16	MFIID;
+	UINT16	MFIVariant;
+	UINT16	MFIBottom;
+	UINT16	MFITop;
+} __WLAN_ATTRIB_PACK__ hfa384x_MFIActRanges_t;
+
+/*--------------------------------------------------------------------
+Information Record Structures: NIC Information
+--------------------------------------------------------------------*/
+
+/*-- Information Record: PortStatus --*/
+typedef struct hfa384x_PortStatus
+{
+	UINT16	PortStatus;
+} __WLAN_ATTRIB_PACK__ hfa384x_PortStatus_t;
+
+#define HFA384x_PSTATUS_DISABLED	((UINT16)1)
+#define HFA384x_PSTATUS_SEARCHING	((UINT16)2)
+#define HFA384x_PSTATUS_CONN_IBSS	((UINT16)3)
+#define HFA384x_PSTATUS_CONN_ESS	((UINT16)4)
+#define HFA384x_PSTATUS_OUTOFRANGE	((UINT16)5)
+#define HFA384x_PSTATUS_CONN_WDS	((UINT16)6)
+
+/*-- Information Record: CurrentSSID --*/
+typedef struct hfa384x_CurrentSSID
+{
+	UINT8	CurrentSSID[34];
+} __WLAN_ATTRIB_PACK__ hfa384x_CurrentSSID_t;
+
+/*-- Information Record: CurrentBSSID --*/
+typedef struct hfa384x_CurrentBSSID
+{
+	UINT8	CurrentBSSID[6];
+} __WLAN_ATTRIB_PACK__ hfa384x_CurrentBSSID_t;
+
+/*-- Information Record: commsquality --*/
+typedef struct hfa384x_commsquality
+{
+	UINT16	CQ_currBSS;
+	UINT16	ASL_currBSS;
+	UINT16	ANL_currFC;
+} __WLAN_ATTRIB_PACK__ hfa384x_commsquality_t;
+
+/*-- Information Record: dmbcommsquality --*/
+typedef struct hfa384x_dbmcommsquality
+{
+	UINT16	CQdbm_currBSS;
+	UINT16	ASLdbm_currBSS;
+	UINT16	ANLdbm_currFC;
+} __WLAN_ATTRIB_PACK__ hfa384x_dbmcommsquality_t;
+
+/*-- Information Record: CurrentTxRate --*/
+typedef struct hfa384x_CurrentTxRate
+{
+	UINT16	CurrentTxRate;
+} __WLAN_ATTRIB_PACK__ hfa384x_CurrentTxRate_t;
+
+/*-- Information Record: CurrentBeaconInterval --*/
+typedef struct hfa384x_CurrentBeaconInterval
+{
+	UINT16	CurrentBeaconInterval;
+} __WLAN_ATTRIB_PACK__ hfa384x_CurrentBeaconInterval_t;
+
+/*-- Information Record: CurrentScaleThresholds --*/
+typedef struct hfa384x_CurrentScaleThresholds
+{
+	UINT16	EnergyDetectThreshold;
+	UINT16	CarrierDetectThreshold;
+	UINT16	DeferDetectThreshold;
+	UINT16	CellSearchThreshold; /* Stations only */
+	UINT16	DeadSpotThreshold; /* Stations only */
+} __WLAN_ATTRIB_PACK__ hfa384x_CurrentScaleThresholds_t;
+
+/*-- Information Record: ProtocolRspTime --*/
+typedef struct hfa384x_ProtocolRspTime
+{
+	UINT16	ProtocolRspTime;
+} __WLAN_ATTRIB_PACK__ hfa384x_ProtocolRspTime_t;
+
+/*-- Information Record: ShortRetryLimit --*/
+typedef struct hfa384x_ShortRetryLimit
+{
+	UINT16	ShortRetryLimit;
+} __WLAN_ATTRIB_PACK__ hfa384x_ShortRetryLimit_t;
+
+/*-- Information Record: LongRetryLimit --*/
+typedef struct hfa384x_LongRetryLimit
+{
+	UINT16	LongRetryLimit;
+} __WLAN_ATTRIB_PACK__ hfa384x_LongRetryLimit_t;
+
+/*-- Information Record: MaxTransmitLifetime --*/
+typedef struct hfa384x_MaxTransmitLifetime
+{
+	UINT16	MaxTransmitLifetime;
+} __WLAN_ATTRIB_PACK__ hfa384x_MaxTransmitLifetime_t;
+
+/*-- Information Record: MaxReceiveLifetime --*/
+typedef struct hfa384x_MaxReceiveLifetime
+{
+	UINT16	MaxReceiveLifetime;
+} __WLAN_ATTRIB_PACK__ hfa384x_MaxReceiveLifetime_t;
+
+/*-- Information Record: CFPollable --*/
+typedef struct hfa384x_CFPollable
+{
+	UINT16	CFPollable;
+} __WLAN_ATTRIB_PACK__ hfa384x_CFPollable_t;
+
+/*-- Information Record: AuthenticationAlgorithms --*/
+typedef struct hfa384x_AuthenticationAlgorithms
+{
+	UINT16	AuthenticationType;
+	UINT16	TypeEnabled;
+} __WLAN_ATTRIB_PACK__ hfa384x_AuthenticationAlgorithms_t;
+
+/*-- Information Record: AuthenticationAlgorithms
+(data only --*/
+typedef struct hfa384x_AuthenticationAlgorithms_data
+{
+	UINT16	AuthenticationType;
+	UINT16	TypeEnabled;
+} __WLAN_ATTRIB_PACK__ hfa384x_AuthenticationAlgorithms_data_t;
+
+/*-- Information Record: PrivacyOptionImplemented --*/
+typedef struct hfa384x_PrivacyOptionImplemented
+{
+	UINT16	PrivacyOptionImplemented;
+} __WLAN_ATTRIB_PACK__ hfa384x_PrivacyOptionImplemented_t;
+
+/*-- Information Record: OwnMACAddress --*/
+typedef struct hfa384x_OwnMACAddress
+{
+	UINT8	OwnMACAddress[6];
+} __WLAN_ATTRIB_PACK__ hfa384x_OwnMACAddress_t;
+
+/*-- Information Record: PCFInfo --*/
+typedef struct hfa384x_PCFInfo
+{
+	UINT16	MediumOccupancyLimit;
+	UINT16	CFPPeriod;
+	UINT16	CFPMaxDuration;
+	UINT16	CFPFlags;
+} __WLAN_ATTRIB_PACK__ hfa384x_PCFInfo_t;
+
+/*-- Information Record: PCFInfo (data portion only) --*/
+typedef struct hfa384x_PCFInfo_data
+{
+	UINT16	MediumOccupancyLimit;
+	UINT16	CFPPeriod;
+	UINT16	CFPMaxDuration;
+	UINT16	CFPFlags;
+} __WLAN_ATTRIB_PACK__ hfa384x_PCFInfo_data_t;
+
+/*--------------------------------------------------------------------
+Information Record Structures: Modem Information Records
+--------------------------------------------------------------------*/
+
+/*-- Information Record: PHYType --*/
+typedef struct hfa384x_PHYType
+{
+	UINT16	PHYType;
+} __WLAN_ATTRIB_PACK__ hfa384x_PHYType_t;
+
+/*-- Information Record: CurrentChannel --*/
+typedef struct hfa384x_CurrentChannel
+{
+	UINT16	CurrentChannel;
+} __WLAN_ATTRIB_PACK__ hfa384x_CurrentChannel_t;
+
+/*-- Information Record: CurrentPowerState --*/
+typedef struct hfa384x_CurrentPowerState
+{
+	UINT16	CurrentPowerState;
+} __WLAN_ATTRIB_PACK__ hfa384x_CurrentPowerState_t;
+
+/*-- Information Record: CCAMode --*/
+typedef struct hfa384x_CCAMode
+{
+	UINT16	CCAMode;
+} __WLAN_ATTRIB_PACK__ hfa384x_CCAMode_t;
+
+/*-- Information Record: SupportedDataRates --*/
+typedef struct hfa384x_SupportedDataRates
+{
+	UINT8	SupportedDataRates[10];
+} __WLAN_ATTRIB_PACK__ hfa384x_SupportedDataRates_t;
+
+/*-- Information Record: LFOStatus --*/
+typedef struct hfa384x_LFOStatus
+{
+	UINT16  TestResults;
+	UINT16  LFOResult;
+	UINT16  VRHFOResult;
+} __WLAN_ATTRIB_PACK__ hfa384x_LFOStatus_t;
+
+#define HFA384x_TESTRESULT_ALLPASSED    BIT0
+#define HFA384x_TESTRESULT_LFO_FAIL     BIT1
+#define HFA384x_TESTRESULT_VR_HF0_FAIL  BIT2
+#define HFA384x_HOST_FIRM_COORDINATE    BIT7
+#define HFA384x_TESTRESULT_COORDINATE   BIT15
+
+/*-- Information Record: LEDControl --*/
+typedef struct hfa384x_LEDControl
+{
+	UINT16  searching_on;
+	UINT16  searching_off;
+	UINT16  assoc_on;
+	UINT16  assoc_off;
+	UINT16  activity;
+} __WLAN_ATTRIB_PACK__ hfa384x_LEDControl_t;
+
+/*--------------------------------------------------------------------
+                 FRAME DESCRIPTORS AND FRAME STRUCTURES
+
+FRAME DESCRIPTORS: Offsets
+
+----------------------------------------------------------------------
+Control Info (offset 44-51)
+--------------------------------------------------------------------*/
+#define		HFA384x_FD_STATUS_OFF			((UINT16)0x44)
+#define		HFA384x_FD_TIME_OFF			((UINT16)0x46)
+#define		HFA384x_FD_SWSUPPORT_OFF		((UINT16)0x4A)
+#define		HFA384x_FD_SILENCE_OFF			((UINT16)0x4A)
+#define		HFA384x_FD_SIGNAL_OFF			((UINT16)0x4B)
+#define		HFA384x_FD_RATE_OFF			((UINT16)0x4C)
+#define		HFA384x_FD_RXFLOW_OFF			((UINT16)0x4D)
+#define		HFA384x_FD_RESERVED_OFF			((UINT16)0x4E)
+#define		HFA384x_FD_TXCONTROL_OFF		((UINT16)0x50)
+/*--------------------------------------------------------------------
+802.11 Header (offset 52-6B)
+--------------------------------------------------------------------*/
+#define		HFA384x_FD_FRAMECONTROL_OFF		((UINT16)0x52)
+#define		HFA384x_FD_DURATIONID_OFF		((UINT16)0x54)
+#define		HFA384x_FD_ADDRESS1_OFF			((UINT16)0x56)
+#define		HFA384x_FD_ADDRESS2_OFF			((UINT16)0x5C)
+#define		HFA384x_FD_ADDRESS3_OFF			((UINT16)0x62)
+#define		HFA384x_FD_SEQCONTROL_OFF		((UINT16)0x68)
+#define		HFA384x_FD_ADDRESS4_OFF			((UINT16)0x6A)
+#define		HFA384x_FD_DATALEN_OFF			((UINT16)0x70)
+/*--------------------------------------------------------------------
+802.3 Header (offset 72-7F)
+--------------------------------------------------------------------*/
+#define		HFA384x_FD_DESTADDRESS_OFF		((UINT16)0x72)
+#define		HFA384x_FD_SRCADDRESS_OFF		((UINT16)0x78)
+#define		HFA384x_FD_DATALENGTH_OFF		((UINT16)0x7E)
+
+/*--------------------------------------------------------------------
+FRAME STRUCTURES: Communication Frames
+----------------------------------------------------------------------
+Communication Frames: Transmit Frames
+--------------------------------------------------------------------*/
+/*-- Communication Frame: Transmit Frame Structure --*/
+typedef struct hfa384x_tx_frame
+{
+	UINT16	status;
+	UINT16	reserved1;
+	UINT16	reserved2;
+	UINT32	sw_support;
+	UINT8	tx_retrycount;
+	UINT8   tx_rate;
+	UINT16	tx_control;
+
+	/*-- 802.11 Header Information --*/
+
+	UINT16	frame_control;
+	UINT16	duration_id;
+	UINT8	address1[6];
+	UINT8	address2[6];
+	UINT8	address3[6];
+	UINT16	sequence_control;
+	UINT8	address4[6];
+	UINT16	data_len; /* little endian format */
+
+	/*-- 802.3 Header Information --*/
+
+	UINT8	dest_addr[6];
+	UINT8	src_addr[6];
+	UINT16	data_length; /* big endian format */
+} __WLAN_ATTRIB_PACK__ hfa384x_tx_frame_t;
+/*--------------------------------------------------------------------
+Communication Frames: Field Masks for Transmit Frames
+--------------------------------------------------------------------*/
+/*-- Status Field --*/
+#define		HFA384x_TXSTATUS_ACKERR			((UINT16)BIT5)
+#define		HFA384x_TXSTATUS_FORMERR		((UINT16)BIT3)
+#define		HFA384x_TXSTATUS_DISCON			((UINT16)BIT2)
+#define		HFA384x_TXSTATUS_AGEDERR		((UINT16)BIT1)
+#define		HFA384x_TXSTATUS_RETRYERR		((UINT16)BIT0)
+/*-- Transmit Control Field --*/
+#define		HFA384x_TX_CFPOLL			((UINT16)BIT12)
+#define		HFA384x_TX_PRST				((UINT16)BIT11)
+#define		HFA384x_TX_MACPORT			((UINT16)(BIT10 | BIT9 | BIT8))
+#define		HFA384x_TX_NOENCRYPT			((UINT16)BIT7)
+#define		HFA384x_TX_RETRYSTRAT			((UINT16)(BIT6 | BIT5))
+#define		HFA384x_TX_STRUCTYPE			((UINT16)(BIT4 | BIT3))
+#define		HFA384x_TX_TXEX				((UINT16)BIT2)
+#define		HFA384x_TX_TXOK				((UINT16)BIT1)
+/*--------------------------------------------------------------------
+Communication Frames: Test/Get/Set Field Values for Transmit Frames
+--------------------------------------------------------------------*/
+/*-- Status Field --*/
+#define HFA384x_TXSTATUS_ISERROR(v)	\
+	(((UINT16)(v))&\
+	(HFA384x_TXSTATUS_ACKERR|HFA384x_TXSTATUS_FORMERR|\
+	HFA384x_TXSTATUS_DISCON|HFA384x_TXSTATUS_AGEDERR|\
+	HFA384x_TXSTATUS_RETRYERR))
+
+#define	HFA384x_TXSTATUS_ISACKERR(v)	((UINT16)(((UINT16)(v)) & HFA384x_TXSTATUS_ACKERR))
+#define	HFA384x_TXSTATUS_ISFORMERR(v)	((UINT16)(((UINT16)(v)) & HFA384x_TXSTATUS_FORMERR))
+#define	HFA384x_TXSTATUS_ISDISCON(v)	((UINT16)(((UINT16)(v)) & HFA384x_TXSTATUS_DISCON))
+#define	HFA384x_TXSTATUS_ISAGEDERR(v)	((UINT16)(((UINT16)(v)) & HFA384x_TXSTATUS_AGEDERR))
+#define	HFA384x_TXSTATUS_ISRETRYERR(v)	((UINT16)(((UINT16)(v)) & HFA384x_TXSTATUS_RETRYERR))
+
+#define	HFA384x_TX_GET(v,m,s)		((((UINT16)(v))&((UINT16)(m)))>>((UINT16)(s)))
+#define	HFA384x_TX_SET(v,m,s)		((((UINT16)(v))<<((UINT16)(s)))&((UINT16)(m)))
+
+#define	HFA384x_TX_CFPOLL_GET(v)	HFA384x_TX_GET(v, HFA384x_TX_CFPOLL,12)
+#define	HFA384x_TX_CFPOLL_SET(v)	HFA384x_TX_SET(v, HFA384x_TX_CFPOLL,12)
+#define	HFA384x_TX_PRST_GET(v)		HFA384x_TX_GET(v, HFA384x_TX_PRST,11)
+#define	HFA384x_TX_PRST_SET(v)		HFA384x_TX_SET(v, HFA384x_TX_PRST,11)
+#define	HFA384x_TX_MACPORT_GET(v)	HFA384x_TX_GET(v, HFA384x_TX_MACPORT, 8)
+#define	HFA384x_TX_MACPORT_SET(v)	HFA384x_TX_SET(v, HFA384x_TX_MACPORT, 8)
+#define	HFA384x_TX_NOENCRYPT_GET(v)	HFA384x_TX_GET(v, HFA384x_TX_NOENCRYPT, 7)
+#define	HFA384x_TX_NOENCRYPT_SET(v)	HFA384x_TX_SET(v, HFA384x_TX_NOENCRYPT, 7)
+#define	HFA384x_TX_RETRYSTRAT_GET(v)	HFA384x_TX_GET(v, HFA384x_TX_RETRYSTRAT, 5)
+#define	HFA384x_TX_RETRYSTRAT_SET(v)	HFA384x_TX_SET(v, HFA384x_TX_RETRYSTRAT, 5)
+#define	HFA384x_TX_STRUCTYPE_GET(v)	HFA384x_TX_GET(v, HFA384x_TX_STRUCTYPE, 3)
+#define	HFA384x_TX_STRUCTYPE_SET(v)	HFA384x_TX_SET(v, HFA384x_TX_STRUCTYPE, 3)
+#define	HFA384x_TX_TXEX_GET(v)		HFA384x_TX_GET(v, HFA384x_TX_TXEX, 2)
+#define	HFA384x_TX_TXEX_SET(v)		HFA384x_TX_SET(v, HFA384x_TX_TXEX, 2)
+#define	HFA384x_TX_TXOK_GET(v)		HFA384x_TX_GET(v, HFA384x_TX_TXOK, 1)
+#define	HFA384x_TX_TXOK_SET(v)		HFA384x_TX_SET(v, HFA384x_TX_TXOK, 1)
+/*--------------------------------------------------------------------
+Communication Frames: Receive Frames
+--------------------------------------------------------------------*/
+/*-- Communication Frame: Receive Frame Structure --*/
+typedef struct hfa384x_rx_frame
+{
+	/*-- MAC rx descriptor (hfa384x byte order) --*/
+	UINT16	status;
+	UINT32	time;
+	UINT8	silence;
+	UINT8	signal;
+	UINT8	rate;
+	UINT8	rx_flow;
+	UINT16	reserved1;
+	UINT16	reserved2;
+
+	/*-- 802.11 Header Information (802.11 byte order) --*/
+	UINT16	frame_control;
+	UINT16	duration_id;
+	UINT8	address1[6];
+	UINT8	address2[6];
+	UINT8	address3[6];
+	UINT16	sequence_control;
+	UINT8	address4[6];
+	UINT16	data_len; /* hfa384x (little endian) format */
+
+	/*-- 802.3 Header Information --*/
+	UINT8	dest_addr[6];
+	UINT8	src_addr[6];
+	UINT16	data_length; /* IEEE? (big endian) format */
+} __WLAN_ATTRIB_PACK__ hfa384x_rx_frame_t;
+/*--------------------------------------------------------------------
+Communication Frames: Field Masks for Receive Frames
+--------------------------------------------------------------------*/
+/*-- Offsets --------*/
+#define		HFA384x_RX_DATA_LEN_OFF			((UINT16)44)
+#define		HFA384x_RX_80211HDR_OFF			((UINT16)14)
+#define		HFA384x_RX_DATA_OFF			((UINT16)60)
+
+/*-- Status Fields --*/
+#define		HFA384x_RXSTATUS_MSGTYPE		((UINT16)(BIT15 | BIT14 | BIT13))
+#define		HFA384x_RXSTATUS_MACPORT		((UINT16)(BIT10 | BIT9 | BIT8))
+#define		HFA384x_RXSTATUS_UNDECR			((UINT16)BIT1)
+#define		HFA384x_RXSTATUS_FCSERR			((UINT16)BIT0)
+/*--------------------------------------------------------------------
+Communication Frames: Test/Get/Set Field Values for Receive Frames
+--------------------------------------------------------------------*/
+#define		HFA384x_RXSTATUS_MSGTYPE_GET(value)	((UINT16)((((UINT16)(value)) & HFA384x_RXSTATUS_MSGTYPE) >> 13))
+#define		HFA384x_RXSTATUS_MSGTYPE_SET(value)	((UINT16)(((UINT16)(value)) << 13))
+#define		HFA384x_RXSTATUS_MACPORT_GET(value)	((UINT16)((((UINT16)(value)) & HFA384x_RXSTATUS_MACPORT) >> 8))
+#define		HFA384x_RXSTATUS_MACPORT_SET(value)	((UINT16)(((UINT16)(value)) << 8))
+#define		HFA384x_RXSTATUS_ISUNDECR(value)	((UINT16)(((UINT16)(value)) & HFA384x_RXSTATUS_UNDECR))
+#define		HFA384x_RXSTATUS_ISFCSERR(value)	((UINT16)(((UINT16)(value)) & HFA384x_RXSTATUS_FCSERR))
+/*--------------------------------------------------------------------
+ FRAME STRUCTURES: Information Types and Information Frame Structures
+----------------------------------------------------------------------
+Information Types
+--------------------------------------------------------------------*/
+#define		HFA384x_IT_HANDOVERADDR			((UINT16)0xF000UL)
+#define		HFA384x_IT_HANDOVERDEAUTHADDRESS	((UINT16)0xF001UL)//AP 1.3.7
+#define		HFA384x_IT_COMMTALLIES			((UINT16)0xF100UL)
+#define		HFA384x_IT_SCANRESULTS			((UINT16)0xF101UL)
+#define		HFA384x_IT_CHINFORESULTS		((UINT16)0xF102UL)
+#define		HFA384x_IT_HOSTSCANRESULTS		((UINT16)0xF103UL)
+#define		HFA384x_IT_LINKSTATUS			((UINT16)0xF200UL)
+#define		HFA384x_IT_ASSOCSTATUS			((UINT16)0xF201UL)
+#define		HFA384x_IT_AUTHREQ			((UINT16)0xF202UL)
+#define		HFA384x_IT_PSUSERCNT			((UINT16)0xF203UL)
+#define		HFA384x_IT_KEYIDCHANGED			((UINT16)0xF204UL)
+#define		HFA384x_IT_ASSOCREQ    			((UINT16)0xF205UL)
+#define		HFA384x_IT_MICFAILURE  			((UINT16)0xF206UL)
+
+/*--------------------------------------------------------------------
+Information Frames Structures
+----------------------------------------------------------------------
+Information Frames: Notification Frame Structures
+--------------------------------------------------------------------*/
+/*--  Notification Frame,MAC Mgmt: Handover Address --*/
+typedef struct hfa384x_HandoverAddr
+{
+	UINT16	framelen;
+	UINT16	infotype;
+	UINT8	handover_addr[WLAN_BSSID_LEN];
+} __WLAN_ATTRIB_PACK__ hfa384x_HandoverAddr_t;
+
+/*--  Inquiry Frame, Diagnose: Communication Tallies --*/
+typedef struct hfa384x_CommTallies16
+{
+	UINT16	txunicastframes;
+	UINT16	txmulticastframes;
+	UINT16	txfragments;
+	UINT16	txunicastoctets;
+	UINT16	txmulticastoctets;
+	UINT16	txdeferredtrans;
+	UINT16	txsingleretryframes;
+	UINT16	txmultipleretryframes;
+	UINT16	txretrylimitexceeded;
+	UINT16	txdiscards;
+	UINT16	rxunicastframes;
+	UINT16	rxmulticastframes;
+	UINT16	rxfragments;
+	UINT16	rxunicastoctets;
+	UINT16	rxmulticastoctets;
+	UINT16	rxfcserrors;
+	UINT16	rxdiscardsnobuffer;
+	UINT16	txdiscardswrongsa;
+	UINT16	rxdiscardswepundecr;
+	UINT16	rxmsginmsgfrag;
+	UINT16	rxmsginbadmsgfrag;
+} __WLAN_ATTRIB_PACK__ hfa384x_CommTallies16_t;
+
+typedef struct hfa384x_CommTallies32
+{
+	UINT32	txunicastframes;
+	UINT32	txmulticastframes;
+	UINT32	txfragments;
+	UINT32	txunicastoctets;
+	UINT32	txmulticastoctets;
+	UINT32	txdeferredtrans;
+	UINT32	txsingleretryframes;
+	UINT32	txmultipleretryframes;
+	UINT32	txretrylimitexceeded;
+	UINT32	txdiscards;
+	UINT32	rxunicastframes;
+	UINT32	rxmulticastframes;
+	UINT32	rxfragments;
+	UINT32	rxunicastoctets;
+	UINT32	rxmulticastoctets;
+	UINT32	rxfcserrors;
+	UINT32	rxdiscardsnobuffer;
+	UINT32	txdiscardswrongsa;
+	UINT32	rxdiscardswepundecr;
+	UINT32	rxmsginmsgfrag;
+	UINT32	rxmsginbadmsgfrag;
+} __WLAN_ATTRIB_PACK__ hfa384x_CommTallies32_t;
+
+/*--  Inquiry Frame, Diagnose: Scan Results & Subfields--*/
+typedef struct hfa384x_ScanResultSub
+{
+	UINT16	chid;
+	UINT16	anl;
+	UINT16	sl;
+	UINT8	bssid[WLAN_BSSID_LEN];
+	UINT16	bcnint;
+	UINT16	capinfo;
+	hfa384x_bytestr32_t	ssid;
+	UINT8	supprates[10]; /* 802.11 info element */
+	UINT16	proberesp_rate;
+} __WLAN_ATTRIB_PACK__ hfa384x_ScanResultSub_t;
+
+typedef struct hfa384x_ScanResult
+{
+	UINT16	rsvd;
+	UINT16	scanreason;
+	hfa384x_ScanResultSub_t
+		result[HFA384x_SCANRESULT_MAX];
+} __WLAN_ATTRIB_PACK__ hfa384x_ScanResult_t;
+
+/*--  Inquiry Frame, Diagnose: ChInfo Results & Subfields--*/
+typedef struct hfa384x_ChInfoResultSub
+{
+	UINT16	chid;
+	UINT16	anl;
+	UINT16	pnl;
+	UINT16	active;
+} __WLAN_ATTRIB_PACK__ hfa384x_ChInfoResultSub_t;
+
+#define HFA384x_CHINFORESULT_BSSACTIVE	BIT0
+#define HFA384x_CHINFORESULT_PCFACTIVE	BIT1
+
+typedef struct hfa384x_ChInfoResult
+{
+	UINT16	scanchannels;
+	hfa384x_ChInfoResultSub_t
+		result[HFA384x_CHINFORESULT_MAX];
+} __WLAN_ATTRIB_PACK__ hfa384x_ChInfoResult_t;
+
+/*--  Inquiry Frame, Diagnose: Host Scan Results & Subfields--*/
+typedef struct hfa384x_HScanResultSub
+{
+	UINT16	chid;
+	UINT16	anl;
+	UINT16	sl;
+	UINT8	bssid[WLAN_BSSID_LEN];
+	UINT16	bcnint;
+	UINT16	capinfo;
+	hfa384x_bytestr32_t	ssid;
+	UINT8	supprates[10]; /* 802.11 info element */
+	UINT16	proberesp_rate;
+	UINT16	atim;
+} __WLAN_ATTRIB_PACK__ hfa384x_HScanResultSub_t;
+
+typedef struct hfa384x_HScanResult
+{
+	UINT16	nresult;
+	UINT16	rsvd;
+	hfa384x_HScanResultSub_t
+		result[HFA384x_HSCANRESULT_MAX];
+} __WLAN_ATTRIB_PACK__ hfa384x_HScanResult_t;
+
+/*--  Unsolicited Frame, MAC Mgmt: LinkStatus --*/
+
+#define HFA384x_LINK_NOTCONNECTED	((UINT16)0)
+#define HFA384x_LINK_CONNECTED		((UINT16)1)
+#define HFA384x_LINK_DISCONNECTED	((UINT16)2)
+#define HFA384x_LINK_AP_CHANGE		((UINT16)3)
+#define HFA384x_LINK_AP_OUTOFRANGE	((UINT16)4)
+#define HFA384x_LINK_AP_INRANGE		((UINT16)5)
+#define HFA384x_LINK_ASSOCFAIL		((UINT16)6)
+
+typedef struct hfa384x_LinkStatus
+{
+	UINT16	linkstatus;
+} __WLAN_ATTRIB_PACK__ hfa384x_LinkStatus_t;
+
+
+/*--  Unsolicited Frame, MAC Mgmt: AssociationStatus (--*/
+
+#define HFA384x_ASSOCSTATUS_STAASSOC	((UINT16)1)
+#define HFA384x_ASSOCSTATUS_REASSOC	((UINT16)2)
+#define HFA384x_ASSOCSTATUS_DISASSOC	((UINT16)3)
+#define HFA384x_ASSOCSTATUS_ASSOCFAIL	((UINT16)4)
+#define HFA384x_ASSOCSTATUS_AUTHFAIL	((UINT16)5)
+
+typedef struct hfa384x_AssocStatus
+{
+	UINT16	assocstatus;
+	UINT8	sta_addr[WLAN_ADDR_LEN];
+	/* old_ap_addr is only valid if assocstatus == 2 */
+	UINT8	old_ap_addr[WLAN_ADDR_LEN];
+	UINT16	reason;
+	UINT16	reserved;
+} __WLAN_ATTRIB_PACK__ hfa384x_AssocStatus_t;
+
+/*--  Unsolicited Frame, MAC Mgmt: AuthRequest (AP Only) --*/
+
+typedef struct hfa384x_AuthRequest
+{
+	UINT8	sta_addr[WLAN_ADDR_LEN];
+	UINT16	algorithm;
+} __WLAN_ATTRIB_PACK__ hfa384x_AuthReq_t;
+
+/*--  Unsolicited Frame, MAC Mgmt: AssocRequest (AP Only) --*/
+
+typedef struct hfa384x_AssocRequest
+{
+	UINT8	sta_addr[WLAN_ADDR_LEN];
+	UINT16	type;
+	UINT8   wpa_data[80];
+} __WLAN_ATTRIB_PACK__ hfa384x_AssocReq_t;
+
+
+#define HFA384x_ASSOCREQ_TYPE_ASSOC     0
+#define HFA384x_ASSOCREQ_TYPE_REASSOC   1
+
+/*--  Unsolicited Frame, MAC Mgmt: MIC Failure  (AP Only) --*/
+
+typedef struct hfa384x_MicFailure
+{
+	UINT8	sender[WLAN_ADDR_LEN];
+	UINT8	dest[WLAN_ADDR_LEN];
+} __WLAN_ATTRIB_PACK__ hfa384x_MicFailure_t;
+
+/*--  Unsolicited Frame, MAC Mgmt: PSUserCount (AP Only) --*/
+
+typedef struct hfa384x_PSUserCount
+{
+	UINT16	usercnt;
+} __WLAN_ATTRIB_PACK__ hfa384x_PSUserCount_t;
+
+typedef struct hfa384x_KeyIDChanged
+{
+	UINT8	sta_addr[WLAN_ADDR_LEN];
+	UINT16	keyid;
+} __WLAN_ATTRIB_PACK__ hfa384x_KeyIDChanged_t;
+
+/*--  Collection of all Inf frames ---------------*/
+typedef union hfa384x_infodata {
+	hfa384x_CommTallies16_t	commtallies16;
+	hfa384x_CommTallies32_t	commtallies32;
+	hfa384x_ScanResult_t	scanresult;
+	hfa384x_ChInfoResult_t	chinforesult;
+	hfa384x_HScanResult_t	hscanresult;
+	hfa384x_LinkStatus_t	linkstatus;
+	hfa384x_AssocStatus_t	assocstatus;
+	hfa384x_AuthReq_t	authreq;
+	hfa384x_PSUserCount_t	psusercnt;
+	hfa384x_KeyIDChanged_t  keyidchanged;
+} __WLAN_ATTRIB_PACK__ hfa384x_infodata_t;
+
+typedef struct hfa384x_InfFrame
+{
+	UINT16			framelen;
+	UINT16			infotype;
+	hfa384x_infodata_t	info;
+} __WLAN_ATTRIB_PACK__ hfa384x_InfFrame_t;
+
+#if (WLAN_HOSTIF == WLAN_USB)
+/*--------------------------------------------------------------------
+USB Packet structures and constants.
+--------------------------------------------------------------------*/
+
+/* Should be sent to the ctrlout endpoint */
+#define HFA384x_USB_ENBULKIN	6
+
+/* Should be sent to the bulkout endpoint */
+#define HFA384x_USB_TXFRM	0
+#define HFA384x_USB_CMDREQ	1
+#define HFA384x_USB_WRIDREQ	2
+#define HFA384x_USB_RRIDREQ	3
+#define HFA384x_USB_WMEMREQ	4
+#define HFA384x_USB_RMEMREQ	5
+
+/* Received from the bulkin endpoint */
+#define HFA384x_USB_ISFRM(a)	(!((a) & 0x8000))
+#define HFA384x_USB_ISTXFRM(a)	(((a) & 0x9000) == 0x1000)
+#define HFA384x_USB_ISRXFRM(a)	(!((a) & 0x9000))
+#define HFA384x_USB_INFOFRM	0x8000
+#define HFA384x_USB_CMDRESP	0x8001
+#define HFA384x_USB_WRIDRESP	0x8002
+#define HFA384x_USB_RRIDRESP	0x8003
+#define HFA384x_USB_WMEMRESP	0x8004
+#define HFA384x_USB_RMEMRESP	0x8005
+#define HFA384x_USB_BUFAVAIL	0x8006
+#define HFA384x_USB_ERROR	0x8007
+
+/*------------------------------------*/
+/* Request (bulk OUT) packet contents */
+
+typedef struct hfa384x_usb_txfrm {
+	hfa384x_tx_frame_t	desc;
+	UINT8			data[WLAN_DATA_MAXLEN];
+} __WLAN_ATTRIB_PACK__ hfa384x_usb_txfrm_t;
+
+typedef struct hfa384x_usb_cmdreq {
+	UINT16		type;
+	UINT16		cmd;
+	UINT16		parm0;
+	UINT16		parm1;
+	UINT16		parm2;
+	UINT8		pad[54];
+} __WLAN_ATTRIB_PACK__ hfa384x_usb_cmdreq_t;
+
+typedef struct hfa384x_usb_wridreq {
+	UINT16		type;
+	UINT16		frmlen;
+	UINT16		rid;
+	UINT8		data[HFA384x_RIDDATA_MAXLEN];
+} __WLAN_ATTRIB_PACK__ hfa384x_usb_wridreq_t;
+
+typedef struct hfa384x_usb_rridreq {
+	UINT16		type;
+	UINT16		frmlen;
+	UINT16		rid;
+	UINT8		pad[58];
+} __WLAN_ATTRIB_PACK__ hfa384x_usb_rridreq_t;
+
+typedef struct hfa384x_usb_wmemreq {
+	UINT16		type;
+	UINT16		frmlen;
+	UINT16		offset;
+	UINT16		page;
+	UINT8		data[HFA384x_USB_RWMEM_MAXLEN];
+} __WLAN_ATTRIB_PACK__ hfa384x_usb_wmemreq_t;
+
+typedef struct hfa384x_usb_rmemreq {
+	UINT16		type;
+	UINT16		frmlen;
+	UINT16		offset;
+	UINT16		page;
+	UINT8		pad[56];
+} __WLAN_ATTRIB_PACK__ hfa384x_usb_rmemreq_t;
+
+/*------------------------------------*/
+/* Response (bulk IN) packet contents */
+
+typedef struct hfa384x_usb_rxfrm {
+	hfa384x_rx_frame_t	desc;
+	UINT8			data[WLAN_DATA_MAXLEN];
+} __WLAN_ATTRIB_PACK__ hfa384x_usb_rxfrm_t;
+
+typedef struct hfa384x_usb_infofrm {
+	UINT16			type;
+	hfa384x_InfFrame_t	info;
+} __WLAN_ATTRIB_PACK__ hfa384x_usb_infofrm_t;
+
+typedef struct hfa384x_usb_statusresp {
+	UINT16		type;
+	UINT16		status;
+	UINT16		resp0;
+	UINT16		resp1;
+	UINT16		resp2;
+} __WLAN_ATTRIB_PACK__ hfa384x_usb_cmdresp_t;
+
+typedef hfa384x_usb_cmdresp_t hfa384x_usb_wridresp_t;
+
+typedef struct hfa384x_usb_rridresp {
+	UINT16		type;
+	UINT16		frmlen;
+	UINT16		rid;
+	UINT8		data[HFA384x_RIDDATA_MAXLEN];
+} __WLAN_ATTRIB_PACK__ hfa384x_usb_rridresp_t;
+
+typedef hfa384x_usb_cmdresp_t hfa384x_usb_wmemresp_t;
+
+typedef struct hfa384x_usb_rmemresp {
+	UINT16		type;
+	UINT16		frmlen;
+	UINT8		data[HFA384x_USB_RWMEM_MAXLEN];
+} __WLAN_ATTRIB_PACK__ hfa384x_usb_rmemresp_t;
+
+typedef struct hfa384x_usb_bufavail {
+	UINT16		type;
+	UINT16		frmlen;
+} __WLAN_ATTRIB_PACK__ hfa384x_usb_bufavail_t;
+
+typedef struct hfa384x_usb_error {
+	UINT16		type;
+	UINT16		errortype;
+} __WLAN_ATTRIB_PACK__ hfa384x_usb_error_t;
+
+/*----------------------------------------------------------*/
+/* Unions for packaging all the known packet types together */
+
+typedef union hfa384x_usbout {
+	UINT16			type;
+	hfa384x_usb_txfrm_t	txfrm;
+	hfa384x_usb_cmdreq_t	cmdreq;
+	hfa384x_usb_wridreq_t	wridreq;
+	hfa384x_usb_rridreq_t	rridreq;
+	hfa384x_usb_wmemreq_t	wmemreq;
+	hfa384x_usb_rmemreq_t	rmemreq;
+} __WLAN_ATTRIB_PACK__ hfa384x_usbout_t;
+
+typedef union hfa384x_usbin {
+	UINT16			type;
+	hfa384x_usb_rxfrm_t	rxfrm;
+	hfa384x_usb_txfrm_t	txfrm;
+	hfa384x_usb_infofrm_t	infofrm;
+	hfa384x_usb_cmdresp_t	cmdresp;
+	hfa384x_usb_wridresp_t	wridresp;
+	hfa384x_usb_rridresp_t	rridresp;
+	hfa384x_usb_wmemresp_t	wmemresp;
+	hfa384x_usb_rmemresp_t	rmemresp;
+	hfa384x_usb_bufavail_t	bufavail;
+	hfa384x_usb_error_t	usberror;
+	UINT8			boguspad[3000];
+} __WLAN_ATTRIB_PACK__ hfa384x_usbin_t;
+
+#endif /* WLAN_USB */
+
+/*--------------------------------------------------------------------
+PD record structures.
+--------------------------------------------------------------------*/
+
+typedef struct hfa384x_pdr_pcb_partnum
+{
+	UINT8	num[8];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_pcb_partnum_t;
+
+typedef struct hfa384x_pdr_pcb_tracenum
+{
+	UINT8	num[8];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_pcb_tracenum_t;
+
+typedef struct hfa384x_pdr_nic_serial
+{
+	UINT8	num[12];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_nic_serial_t;
+
+typedef struct hfa384x_pdr_mkk_measurements
+{
+	double	carrier_freq;
+	double	occupied_band;
+	double	power_density;
+	double	tx_spur_f1;
+	double	tx_spur_f2;
+	double	tx_spur_f3;
+	double	tx_spur_f4;
+	double	tx_spur_l1;
+	double	tx_spur_l2;
+	double	tx_spur_l3;
+	double	tx_spur_l4;
+	double	rx_spur_f1;
+	double	rx_spur_f2;
+	double	rx_spur_l1;
+	double	rx_spur_l2;
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_mkk_measurements_t;
+
+typedef struct hfa384x_pdr_nic_ramsize
+{
+	UINT8	size[12]; /* units of KB */
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_nic_ramsize_t;
+
+typedef struct hfa384x_pdr_mfisuprange
+{
+	UINT16	id;
+	UINT16	variant;
+	UINT16	bottom;
+	UINT16	top;
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_mfisuprange_t;
+
+typedef struct hfa384x_pdr_cfisuprange
+{
+	UINT16	id;
+	UINT16	variant;
+	UINT16	bottom;
+	UINT16	top;
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_cfisuprange_t;
+
+typedef struct hfa384x_pdr_nicid
+{
+	UINT16	id;
+	UINT16	variant;
+	UINT16	major;
+	UINT16	minor;
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_nicid_t;
+
+
+typedef struct hfa384x_pdr_refdac_measurements
+{
+	UINT16	value[0];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_refdac_measurements_t;
+
+typedef struct hfa384x_pdr_vgdac_measurements
+{
+	UINT16	value[0];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_vgdac_measurements_t;
+
+typedef struct hfa384x_pdr_level_comp_measurements
+{
+	UINT16	value[0];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_level_compc_measurements_t;
+
+typedef struct hfa384x_pdr_mac_address
+{
+	UINT8	addr[6];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_mac_address_t;
+
+typedef struct hfa384x_pdr_mkk_callname
+{
+	UINT8	callname[8];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_mkk_callname_t;
+
+typedef struct hfa384x_pdr_regdomain
+{
+	UINT16	numdomains;
+	UINT16	domain[5];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_regdomain_t;
+
+typedef struct hfa384x_pdr_allowed_channel
+{
+	UINT16	ch_bitmap;
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_allowed_channel_t;
+
+typedef struct hfa384x_pdr_default_channel
+{
+	UINT16	channel;
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_default_channel_t;
+
+typedef struct hfa384x_pdr_privacy_option
+{
+	UINT16	available;
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_privacy_option_t;
+
+typedef struct hfa384x_pdr_temptype
+{
+	UINT16	type;
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_temptype_t;
+
+typedef struct hfa384x_pdr_refdac_setup
+{
+	UINT16	ch_value[14];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_refdac_setup_t;
+
+typedef struct hfa384x_pdr_vgdac_setup
+{
+	UINT16	ch_value[14];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_vgdac_setup_t;
+
+typedef struct hfa384x_pdr_level_comp_setup
+{
+	UINT16	ch_value[14];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_level_comp_setup_t;
+
+typedef struct hfa384x_pdr_trimdac_setup
+{
+	UINT16	trimidac;
+	UINT16	trimqdac;
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_trimdac_setup_t;
+
+typedef struct hfa384x_pdr_ifr_setting
+{
+	UINT16	value[3];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_ifr_setting_t;
+
+typedef struct hfa384x_pdr_rfr_setting
+{
+	UINT16	value[3];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_rfr_setting_t;
+
+typedef struct hfa384x_pdr_hfa3861_baseline
+{
+	UINT16	value[50];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_hfa3861_baseline_t;
+
+typedef struct hfa384x_pdr_hfa3861_shadow
+{
+	UINT32	value[32];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_hfa3861_shadow_t;
+
+typedef struct hfa384x_pdr_hfa3861_ifrf
+{
+	UINT32	value[20];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_hfa3861_ifrf_t;
+
+typedef struct hfa384x_pdr_hfa3861_chcalsp
+{
+	UINT16	value[14];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_hfa3861_chcalsp_t;
+
+typedef struct hfa384x_pdr_hfa3861_chcali
+{
+	UINT16	value[17];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_hfa3861_chcali_t;
+
+typedef struct hfa384x_pdr_hfa3861_nic_config
+{
+	UINT16	config_bitmap;
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_nic_config_t;
+
+typedef struct hfa384x_pdr_hfo_delay
+{
+	UINT8   hfo_delay;
+} __WLAN_ATTRIB_PACK__ hfa384x_hfo_delay_t;
+
+typedef struct hfa384x_pdr_hfa3861_manf_testsp
+{
+	UINT16	value[30];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_hfa3861_manf_testsp_t;
+
+typedef struct hfa384x_pdr_hfa3861_manf_testi
+{
+	UINT16	value[30];
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_hfa3861_manf_testi_t;
+
+typedef struct hfa384x_end_of_pda
+{
+	UINT16	crc;
+} __WLAN_ATTRIB_PACK__ hfa384x_pdr_end_of_pda_t;
+
+typedef struct hfa384x_pdrec
+{
+	UINT16	len; /* in words */
+	UINT16	code;
+	union pdr {
+	hfa384x_pdr_pcb_partnum_t	pcb_partnum;
+	hfa384x_pdr_pcb_tracenum_t	pcb_tracenum;
+	hfa384x_pdr_nic_serial_t	nic_serial;
+	hfa384x_pdr_mkk_measurements_t	mkk_measurements;
+	hfa384x_pdr_nic_ramsize_t	nic_ramsize;
+	hfa384x_pdr_mfisuprange_t	mfisuprange;
+	hfa384x_pdr_cfisuprange_t	cfisuprange;
+	hfa384x_pdr_nicid_t		nicid;
+	hfa384x_pdr_refdac_measurements_t	refdac_measurements;
+	hfa384x_pdr_vgdac_measurements_t	vgdac_measurements;
+	hfa384x_pdr_level_compc_measurements_t	level_compc_measurements;
+	hfa384x_pdr_mac_address_t	mac_address;
+	hfa384x_pdr_mkk_callname_t	mkk_callname;
+	hfa384x_pdr_regdomain_t		regdomain;
+	hfa384x_pdr_allowed_channel_t	allowed_channel;
+	hfa384x_pdr_default_channel_t	default_channel;
+	hfa384x_pdr_privacy_option_t	privacy_option;
+	hfa384x_pdr_temptype_t		temptype;
+	hfa384x_pdr_refdac_setup_t	refdac_setup;
+	hfa384x_pdr_vgdac_setup_t	vgdac_setup;
+	hfa384x_pdr_level_comp_setup_t	level_comp_setup;
+	hfa384x_pdr_trimdac_setup_t	trimdac_setup;
+	hfa384x_pdr_ifr_setting_t	ifr_setting;
+	hfa384x_pdr_rfr_setting_t	rfr_setting;
+	hfa384x_pdr_hfa3861_baseline_t	hfa3861_baseline;
+	hfa384x_pdr_hfa3861_shadow_t	hfa3861_shadow;
+	hfa384x_pdr_hfa3861_ifrf_t	hfa3861_ifrf;
+	hfa384x_pdr_hfa3861_chcalsp_t	hfa3861_chcalsp;
+	hfa384x_pdr_hfa3861_chcali_t	hfa3861_chcali;
+	hfa384x_pdr_nic_config_t	nic_config;
+	hfa384x_hfo_delay_t             hfo_delay;
+	hfa384x_pdr_hfa3861_manf_testsp_t	hfa3861_manf_testsp;
+	hfa384x_pdr_hfa3861_manf_testi_t	hfa3861_manf_testi;
+	hfa384x_pdr_end_of_pda_t	end_of_pda;
+
+	} data;
+} __WLAN_ATTRIB_PACK__ hfa384x_pdrec_t;
+
+
+#ifdef __KERNEL__
+/*--------------------------------------------------------------------
+---  MAC state structure, argument to all functions --
+---  Also, a collection of support types --
+--------------------------------------------------------------------*/
+typedef struct hfa384x_statusresult
+{
+	UINT16	status;
+	UINT16	resp0;
+	UINT16	resp1;
+	UINT16	resp2;
+} hfa384x_cmdresult_t;
+
+#if (WLAN_HOSTIF == WLAN_USB)
+
+/* USB Control Exchange (CTLX):
+ *  A queue of the structure below is maintained for all of the
+ *  Request/Response type USB packets supported by Prism2.
+ */
+/* The following hfa384x_* structures are arguments to
+ * the usercb() for the different CTLX types.
+ */
+typedef hfa384x_cmdresult_t hfa384x_wridresult_t;
+typedef hfa384x_cmdresult_t hfa384x_wmemresult_t;
+
+typedef struct hfa384x_rridresult
+{
+	UINT16		rid;
+	const void	*riddata;
+	UINT		riddata_len;
+} hfa384x_rridresult_t;
+
+enum ctlx_state {
+	CTLX_START = 0,	/* Start state, not queued */
+
+	CTLX_COMPLETE,	/* CTLX successfully completed */
+	CTLX_REQ_FAILED,	/* OUT URB completed w/ error */
+
+	CTLX_PENDING,		/* Queued, data valid */
+	CTLX_REQ_SUBMITTED,	/* OUT URB submitted */
+	CTLX_REQ_COMPLETE,	/* OUT URB complete */
+	CTLX_RESP_COMPLETE	/* IN URB received */
+};
+typedef enum ctlx_state  CTLX_STATE;
+
+struct hfa384x_usbctlx;
+struct hfa384x;
+
+typedef void (*ctlx_cmdcb_t)( struct hfa384x*, const struct hfa384x_usbctlx* );
+
+typedef void (*ctlx_usercb_t)(
+	struct hfa384x	*hw,
+	void		*ctlxresult,
+	void		*usercb_data);
+
+typedef struct hfa384x_usbctlx
+{
+	struct list_head	list;
+
+	size_t			outbufsize;
+	hfa384x_usbout_t	outbuf;		/* pkt buf for OUT */
+	hfa384x_usbin_t		inbuf;		/* pkt buf for IN(a copy) */
+
+	CTLX_STATE		state;		/* Tracks running state */
+
+	struct completion	done;
+	volatile int		reapable;	/* Food for the reaper task */
+
+	ctlx_cmdcb_t		cmdcb;		/* Async command callback */
+	ctlx_usercb_t		usercb;		/* Async user callback, */
+	void			*usercb_data;	/*  at CTLX completion  */
+
+	int			variant;	/* Identifies cmd variant */
+} hfa384x_usbctlx_t;
+
+typedef struct hfa384x_usbctlxq
+{
+	spinlock_t		lock;
+	struct list_head	pending;
+	struct list_head	active;
+	struct list_head	completing;
+	struct list_head	reapable;
+} hfa384x_usbctlxq_t;
+#endif
+
+typedef struct hfa484x_metacmd
+{
+	UINT16		cmd;
+
+	UINT16          parm0;
+	UINT16          parm1;
+	UINT16          parm2;
+
+#if 0 //XXX cmd irq stuff
+	UINT16          bulkid;         /* what RID/FID to copy down. */
+	int             bulklen;        /* how much to copy from BAP */
+        char            *bulkdata;      /* And to where? */
+#endif
+
+	hfa384x_cmdresult_t result;
+} hfa384x_metacmd_t;
+
+#define	MAX_PRISM2_GRP_ADDR	16
+#define	MAX_GRP_ADDR		32
+#define WLAN_COMMENT_MAX	80  /* Max. length of user comment string. */
+
+#define MM_SAT_PCF		(BIT14)
+#define MM_GCSD_PCF		(BIT15)
+#define MM_GCSD_PCF_EB		(BIT14 | BIT15)
+
+#define WLAN_STATE_STOPPED	0   /* Network is not active. */
+#define WLAN_STATE_STARTED	1   /* Network has been started. */
+
+#define WLAN_AUTH_MAX           60  /* Max. # of authenticated stations. */
+#define WLAN_ACCESS_MAX		60  /* Max. # of stations in an access list. */
+#define WLAN_ACCESS_NONE	0   /* No stations may be authenticated. */
+#define WLAN_ACCESS_ALL		1   /* All stations may be authenticated. */
+#define WLAN_ACCESS_ALLOW	2   /* Authenticate only "allowed" stations. */
+#define WLAN_ACCESS_DENY	3   /* Do not authenticate "denied" stations. */
+
+/* XXX These are going away ASAP */
+typedef struct prism2sta_authlist
+{
+	UINT	cnt;
+	UINT8	addr[WLAN_AUTH_MAX][WLAN_ADDR_LEN];
+	UINT8	assoc[WLAN_AUTH_MAX];
+} prism2sta_authlist_t;
+
+typedef struct prism2sta_accesslist
+{
+	UINT	modify;
+	UINT	cnt;
+	UINT8	addr[WLAN_ACCESS_MAX][WLAN_ADDR_LEN];
+	UINT	cnt1;
+	UINT8	addr1[WLAN_ACCESS_MAX][WLAN_ADDR_LEN];
+} prism2sta_accesslist_t;
+
+typedef struct hfa384x
+{
+#if (WLAN_HOSTIF != WLAN_USB)
+	/* Resource config */
+	UINT32			iobase;
+	char			__iomem *membase;
+	UINT32			irq;
+#else
+	/* USB support data */
+	struct usb_device	*usb;
+	struct urb		rx_urb;
+	struct sk_buff		*rx_urb_skb;
+	struct urb		tx_urb;
+	struct urb		ctlx_urb;
+	hfa384x_usbout_t	txbuff;
+	hfa384x_usbctlxq_t	ctlxq;
+	struct timer_list	reqtimer;
+	struct timer_list	resptimer;
+
+	struct timer_list	throttle;
+
+	struct tasklet_struct	reaper_bh;
+	struct tasklet_struct	completion_bh;
+
+	struct work_struct	usb_work;
+
+	unsigned long		usb_flags;
+#define THROTTLE_RX	0
+#define THROTTLE_TX	1
+#define WORK_RX_HALT	2
+#define WORK_TX_HALT	3
+#define WORK_RX_RESUME	4
+#define WORK_TX_RESUME	5
+
+	unsigned short		req_timer_done:1;
+	unsigned short		resp_timer_done:1;
+
+	int                     endp_in;
+	int                     endp_out;
+#endif /* !USB */
+
+#if (WLAN_HOSTIF == WLAN_PCMCIA)
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+	struct pcmcia_device *pdev;
+#else
+	dev_link_t	*link;
+#endif
+	dev_node_t	node;
+#endif
+
+	int                     sniff_fcs;
+	int                     sniff_channel;
+	int                     sniff_truncate;
+	int                     sniffhdr;
+
+	wait_queue_head_t cmdq;	        /* wait queue itself */
+
+	/* Controller state */
+	UINT32		state;
+	UINT32		isap;
+	UINT8		port_enabled[HFA384x_NUMPORTS_MAX];
+#if (WLAN_HOSTIF != WLAN_USB)
+	UINT		auxen;
+	UINT            isram16;
+#endif /* !USB */
+
+	/* Download support */
+	UINT				dlstate;
+	hfa384x_downloadbuffer_t	bufinfo;
+	UINT16				dltimeout;
+
+#if (WLAN_HOSTIF != WLAN_USB)
+	spinlock_t	cmdlock;
+	volatile int    cmdflag;        /* wait queue flag */
+	hfa384x_metacmd_t *cmddata;      /* for our async callback */
+
+	/* BAP support */
+	spinlock_t	baplock;
+	struct tasklet_struct   bap_tasklet;
+
+	/* MAC buffer ids */
+        UINT16          txfid_head;
+        UINT16          txfid_tail;
+        UINT            txfid_N;
+        UINT16          txfid_queue[HFA384x_DRVR_FIDSTACKLEN_MAX];
+	UINT16			infofid;
+	struct semaphore	infofid_sem;
+#endif /* !USB */
+
+	int                          scanflag;    /* to signal scan comlete */
+	int                          join_ap;        /* are we joined to a specific ap */
+	int                          join_retries;   /* number of join retries till we fail */
+	hfa384x_JoinRequest_data_t   joinreq;        /* join request saved data */
+
+	wlandevice_t            *wlandev;
+	/* Timer to allow for the deferred processing of linkstatus messages */
+	struct work_struct 	link_bh;
+
+        struct work_struct      commsqual_bh;
+	hfa384x_commsquality_t  qual;
+	struct timer_list	commsqual_timer;
+
+	UINT16 link_status;
+	UINT16 link_status_new;
+	struct sk_buff_head        authq;
+
+	/* And here we have stuff that used to be in priv */
+
+	/* State variables */
+	UINT		presniff_port_type;
+	UINT16		presniff_wepflags;
+	UINT32		dot11_desired_bss_type;
+	int		ap;	/* AP flag: 0 - Station, 1 - Access Point. */
+
+	int             dbmadjust;
+
+	/* Group Addresses - right now, there are up to a total
+	of MAX_GRP_ADDR group addresses */
+	UINT8		dot11_grp_addr[MAX_GRP_ADDR][WLAN_ADDR_LEN];
+	UINT		dot11_grpcnt;
+
+	/* Component Identities */
+	hfa384x_compident_t	ident_nic;
+	hfa384x_compident_t	ident_pri_fw;
+	hfa384x_compident_t	ident_sta_fw;
+	hfa384x_compident_t	ident_ap_fw;
+	UINT16			mm_mods;
+
+	/* Supplier compatibility ranges */
+	hfa384x_caplevel_t	cap_sup_mfi;
+	hfa384x_caplevel_t	cap_sup_cfi;
+	hfa384x_caplevel_t	cap_sup_pri;
+	hfa384x_caplevel_t	cap_sup_sta;
+	hfa384x_caplevel_t	cap_sup_ap;
+
+	/* Actor compatibility ranges */
+	hfa384x_caplevel_t	cap_act_pri_cfi; /* pri f/w to controller interface */
+	hfa384x_caplevel_t	cap_act_sta_cfi; /* sta f/w to controller interface */
+	hfa384x_caplevel_t	cap_act_sta_mfi; /* sta f/w to modem interface */
+	hfa384x_caplevel_t	cap_act_ap_cfi;  /* ap f/w to controller interface */
+	hfa384x_caplevel_t	cap_act_ap_mfi;  /* ap f/w to modem interface */
+
+	UINT32			psusercount;  /* Power save user count. */
+	hfa384x_CommTallies32_t	tallies;      /* Communication tallies. */
+	UINT8			comment[WLAN_COMMENT_MAX+1]; /* User comment */
+
+	/* Channel Info request results (AP only) */
+	struct {
+		atomic_t		done;
+		UINT8			count;
+		hfa384x_ChInfoResult_t	results;
+	} channel_info;
+
+	hfa384x_InfFrame_t      *scanresults;
+
+
+        prism2sta_authlist_t	authlist;     /* Authenticated station list. */
+	UINT			accessmode;   /* Access mode. */
+        prism2sta_accesslist_t	allow;        /* Allowed station list. */
+        prism2sta_accesslist_t	deny;         /* Denied station list. */
+
+} hfa384x_t;
+
+/*=============================================================*/
+/*--- Function Declarations -----------------------------------*/
+/*=============================================================*/
+#if (WLAN_HOSTIF == WLAN_USB)
+void
+hfa384x_create(
+	hfa384x_t *hw,
+	struct usb_device *usb);
+#else
+void
+hfa384x_create(
+	hfa384x_t *hw,
+	UINT irq,
+	UINT32 iobase,
+	UINT8 __iomem *membase);
+#endif
+
+void hfa384x_destroy(hfa384x_t *hw);
+
+irqreturn_t
+hfa384x_interrupt(int irq, void *dev_id PT_REGS);
+int
+hfa384x_corereset( hfa384x_t *hw, int holdtime, int settletime, int genesis);
+int
+hfa384x_drvr_chinforesults( hfa384x_t *hw);
+int
+hfa384x_drvr_commtallies( hfa384x_t *hw);
+int
+hfa384x_drvr_disable(hfa384x_t *hw, UINT16 macport);
+int
+hfa384x_drvr_enable(hfa384x_t *hw, UINT16 macport);
+int
+hfa384x_drvr_flashdl_enable(hfa384x_t *hw);
+int
+hfa384x_drvr_flashdl_disable(hfa384x_t *hw);
+int
+hfa384x_drvr_flashdl_write(hfa384x_t *hw, UINT32 daddr, void* buf, UINT32 len);
+int
+hfa384x_drvr_getconfig(hfa384x_t *hw, UINT16 rid, void *buf, UINT16 len);
+int
+hfa384x_drvr_handover( hfa384x_t *hw, UINT8 *addr);
+int
+hfa384x_drvr_hostscanresults( hfa384x_t *hw);
+int
+hfa384x_drvr_low_level(hfa384x_t *hw, hfa384x_metacmd_t *cmd);
+int
+hfa384x_drvr_mmi_read(hfa384x_t *hw, UINT32 address, UINT32 *result);
+int
+hfa384x_drvr_mmi_write(hfa384x_t *hw, UINT32 address, UINT32 data);
+int
+hfa384x_drvr_ramdl_enable(hfa384x_t *hw, UINT32 exeaddr);
+int
+hfa384x_drvr_ramdl_disable(hfa384x_t *hw);
+int
+hfa384x_drvr_ramdl_write(hfa384x_t *hw, UINT32 daddr, void* buf, UINT32 len);
+int
+hfa384x_drvr_readpda(hfa384x_t *hw, void *buf, UINT len);
+int
+hfa384x_drvr_scanresults( hfa384x_t *hw);
+
+int
+hfa384x_drvr_setconfig(hfa384x_t *hw, UINT16 rid, void *buf, UINT16 len);
+
+static inline int
+hfa384x_drvr_getconfig16(hfa384x_t *hw, UINT16 rid, void *val)
+{
+	int		result = 0;
+	result = hfa384x_drvr_getconfig(hw, rid, val, sizeof(UINT16));
+	if ( result == 0 ) {
+		*((UINT16*)val) = hfa384x2host_16(*((UINT16*)val));
+	}
+	return result;
+}
+
+static inline int
+hfa384x_drvr_getconfig32(hfa384x_t *hw, UINT16 rid, void *val)
+{
+	int		result = 0;
+
+	result = hfa384x_drvr_getconfig(hw, rid, val, sizeof(UINT32));
+	if ( result == 0 ) {
+		*((UINT32*)val) = hfa384x2host_32(*((UINT32*)val));
+	}
+
+	return result;
+}
+
+static inline int
+hfa384x_drvr_setconfig16(hfa384x_t *hw, UINT16 rid, UINT16 val)
+{
+	UINT16 value = host2hfa384x_16(val);
+	return hfa384x_drvr_setconfig(hw, rid, &value, sizeof(value));
+}
+
+static inline int
+hfa384x_drvr_setconfig32(hfa384x_t *hw, UINT16 rid, UINT32 val)
+{
+	UINT32 value = host2hfa384x_32(val);
+	return hfa384x_drvr_setconfig(hw, rid, &value, sizeof(value));
+}
+
+#if (WLAN_HOSTIF == WLAN_USB)
+int
+hfa384x_drvr_getconfig_async(hfa384x_t     *hw,
+                              UINT16        rid,
+                              ctlx_usercb_t usercb,
+                              void          *usercb_data);
+
+int
+hfa384x_drvr_setconfig_async(hfa384x_t *hw,
+                              UINT16 rid,
+                              void *buf,
+                              UINT16 len,
+                              ctlx_usercb_t usercb,
+                              void *usercb_data);
+#else
+static inline int
+hfa384x_drvr_setconfig_async(hfa384x_t *hw, UINT16 rid, void *buf, UINT16 len,
+			     void *ptr1, void *ptr2)
+{
+         (void)ptr1;
+         (void)ptr2;
+         return hfa384x_drvr_setconfig(hw, rid, buf, len);
+}
+#endif
+
+static inline int
+hfa384x_drvr_setconfig16_async(hfa384x_t *hw, UINT16 rid, UINT16 val)
+{
+	UINT16 value = host2hfa384x_16(val);
+	return hfa384x_drvr_setconfig_async(hw, rid, &value, sizeof(value),
+					    NULL , NULL);
+}
+
+static inline int
+hfa384x_drvr_setconfig32_async(hfa384x_t *hw, UINT16 rid, UINT32 val)
+{
+	UINT32 value = host2hfa384x_32(val);
+	return hfa384x_drvr_setconfig_async(hw, rid, &value, sizeof(value),
+					    NULL , NULL);
+}
+
+
+int
+hfa384x_drvr_start(hfa384x_t *hw);
+int
+hfa384x_drvr_stop(hfa384x_t *hw);
+int
+hfa384x_drvr_txframe(hfa384x_t *hw, struct sk_buff *skb, p80211_hdr_t *p80211_hdr, p80211_metawep_t *p80211_wep);
+void
+hfa384x_tx_timeout(wlandevice_t *wlandev);
+
+int
+hfa384x_cmd_initialize(hfa384x_t *hw);
+int
+hfa384x_cmd_enable(hfa384x_t *hw, UINT16 macport);
+int
+hfa384x_cmd_disable(hfa384x_t *hw, UINT16 macport);
+int
+hfa384x_cmd_diagnose(hfa384x_t *hw);
+int
+hfa384x_cmd_allocate(hfa384x_t *hw, UINT16 len);
+int
+hfa384x_cmd_transmit(hfa384x_t *hw, UINT16 reclaim, UINT16 qos, UINT16 fid);
+int
+hfa384x_cmd_clearpersist(hfa384x_t *hw, UINT16 fid);
+int
+hfa384x_cmd_notify(hfa384x_t *hw, UINT16 reclaim, UINT16 fid, void *buf, UINT16 len);
+int
+hfa384x_cmd_inquire(hfa384x_t *hw, UINT16 fid);
+int
+hfa384x_cmd_access(hfa384x_t *hw, UINT16 write, UINT16 rid, void *buf, UINT16 len);
+int
+hfa384x_cmd_monitor(hfa384x_t *hw, UINT16 enable);
+int
+hfa384x_cmd_download(
+	hfa384x_t *hw,
+	UINT16 mode,
+	UINT16 lowaddr,
+	UINT16 highaddr,
+	UINT16 codelen);
+int
+hfa384x_cmd_aux_enable(hfa384x_t *hw, int force);
+int
+hfa384x_cmd_aux_disable(hfa384x_t *hw);
+int
+hfa384x_copy_from_bap(
+	hfa384x_t *hw,
+	UINT16	bap,
+	UINT16	id,
+	UINT16	offset,
+	void	*buf,
+	UINT	len);
+int
+hfa384x_copy_to_bap(
+	hfa384x_t *hw,
+	UINT16	bap,
+	UINT16	id,
+	UINT16	offset,
+	void	*buf,
+	UINT	len);
+void
+hfa384x_copy_from_aux(
+	hfa384x_t *hw,
+	UINT32	cardaddr,
+	UINT32	auxctl,
+	void	*buf,
+	UINT	len);
+void
+hfa384x_copy_to_aux(
+	hfa384x_t *hw,
+	UINT32	cardaddr,
+	UINT32	auxctl,
+	void	*buf,
+	UINT	len);
+
+#if (WLAN_HOSTIF != WLAN_USB)
+
+/*
+   HFA384x is a LITTLE ENDIAN part.
+
+   the get/setreg functions implicitly byte-swap the data to LE.
+   the _noswap variants do not perform a byte-swap on the data.
+*/
+
+static inline UINT16
+__hfa384x_getreg(hfa384x_t *hw, UINT reg);
+
+static inline void
+__hfa384x_setreg(hfa384x_t *hw, UINT16 val, UINT reg);
+
+static inline UINT16
+__hfa384x_getreg_noswap(hfa384x_t *hw, UINT reg);
+
+static inline void
+__hfa384x_setreg_noswap(hfa384x_t *hw, UINT16 val, UINT reg);
+
+#ifdef REVERSE_ENDIAN
+#define hfa384x_getreg __hfa384x_getreg_noswap
+#define hfa384x_setreg __hfa384x_setreg_noswap
+#define hfa384x_getreg_noswap __hfa384x_getreg
+#define hfa384x_setreg_noswap __hfa384x_setreg
+#else
+#define hfa384x_getreg __hfa384x_getreg
+#define hfa384x_setreg __hfa384x_setreg
+#define hfa384x_getreg_noswap __hfa384x_getreg_noswap
+#define hfa384x_setreg_noswap __hfa384x_setreg_noswap
+#endif
+
+/*----------------------------------------------------------------
+* hfa384x_getreg
+*
+* Retrieve the value of one of the MAC registers.  Done here
+* because different PRISM2 MAC parts use different buses and such.
+* NOTE: This function returns the value in HOST ORDER!!!!!!
+*
+* Arguments:
+*       hw         MAC part structure
+*       reg        Register identifier (offset for I/O based i/f)
+*
+* Returns:
+*       Value from the register in HOST ORDER!!!!
+----------------------------------------------------------------*/
+static inline UINT16
+__hfa384x_getreg(hfa384x_t *hw, UINT reg)
+{
+/*	printk(KERN_DEBUG "Reading from 0x%0x\n", hw->membase + reg); */
+#if ((WLAN_HOSTIF == WLAN_PCMCIA) || (WLAN_HOSTIF == WLAN_PLX))
+	return wlan_inw_le16_to_cpu(hw->iobase+reg);
+#elif (WLAN_HOSTIF == WLAN_PCI)
+	return __le16_to_cpu(readw(hw->membase + reg));
+#endif
+}
+
+/*----------------------------------------------------------------
+* hfa384x_setreg
+*
+* Set the value of one of the MAC registers.  Done here
+* because different PRISM2 MAC parts use different buses and such.
+* NOTE: This function assumes the value is in HOST ORDER!!!!!!
+*
+* Arguments:
+*       hw	MAC part structure
+*	val	Value, in HOST ORDER!!, to put in the register
+*       reg	Register identifier (offset for I/O based i/f)
+*
+* Returns:
+*       Nothing
+----------------------------------------------------------------*/
+static inline void
+__hfa384x_setreg(hfa384x_t *hw, UINT16 val, UINT reg)
+{
+#if ((WLAN_HOSTIF == WLAN_PCMCIA) || (WLAN_HOSTIF == WLAN_PLX))
+	wlan_outw_cpu_to_le16( val, hw->iobase + reg);
+	return;
+#elif (WLAN_HOSTIF == WLAN_PCI)
+	writew(__cpu_to_le16(val), hw->membase + reg);
+	return;
+#endif
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_getreg_noswap
+*
+* Retrieve the value of one of the MAC registers.  Done here
+* because different PRISM2 MAC parts use different buses and such.
+*
+* Arguments:
+*       hw         MAC part structure
+*       reg        Register identifier (offset for I/O based i/f)
+*
+* Returns:
+*       Value from the register.
+----------------------------------------------------------------*/
+static inline UINT16
+__hfa384x_getreg_noswap(hfa384x_t *hw, UINT reg)
+{
+#if ((WLAN_HOSTIF == WLAN_PCMCIA) || (WLAN_HOSTIF == WLAN_PLX))
+	return wlan_inw(hw->iobase+reg);
+#elif (WLAN_HOSTIF == WLAN_PCI)
+	return readw(hw->membase + reg);
+#endif
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_setreg_noswap
+*
+* Set the value of one of the MAC registers.  Done here
+* because different PRISM2 MAC parts use different buses and such.
+*
+* Arguments:
+*       hw	MAC part structure
+*	val	Value to put in the register
+*       reg	Register identifier (offset for I/O based i/f)
+*
+* Returns:
+*       Nothing
+----------------------------------------------------------------*/
+static inline void
+__hfa384x_setreg_noswap(hfa384x_t *hw, UINT16 val, UINT reg)
+{
+#if ((WLAN_HOSTIF == WLAN_PCMCIA) || (WLAN_HOSTIF == WLAN_PLX))
+	wlan_outw( val, hw->iobase + reg);
+	return;
+#elif (WLAN_HOSTIF == WLAN_PCI)
+	writew(val, hw->membase + reg);
+	return;
+#endif
+}
+
+
+static inline void hfa384x_events_all(hfa384x_t *hw)
+{
+	hfa384x_setreg(hw,
+		       HFA384x_INT_NORMAL
+#ifdef CMD_IRQ
+		       | HFA384x_INTEN_CMD_SET(1)
+#endif
+		       ,
+		       HFA384x_INTEN);
+
+}
+
+static inline void hfa384x_events_nobap(hfa384x_t *hw)
+{
+	hfa384x_setreg(hw,
+		        (HFA384x_INT_NORMAL & ~HFA384x_INT_BAP_OP)
+#ifdef CMD_IRQ
+		       | HFA384x_INTEN_CMD_SET(1)
+#endif
+		       ,
+		       HFA384x_INTEN);
+
+}
+
+#endif /* WLAN_HOSTIF != WLAN_USB */
+#endif /* __KERNEL__ */
+
+#endif  /* _HFA384x_H */
diff --git a/drivers/staging/wlan-ng/hfa384x_usb.c b/drivers/staging/wlan-ng/hfa384x_usb.c
new file mode 100644
index 0000000..db0c502
--- /dev/null
+++ b/drivers/staging/wlan-ng/hfa384x_usb.c
@@ -0,0 +1,5027 @@
+/* src/prism2/driver/hfa384x_usb.c
+*
+* Functions that talk to the USB variantof the Intersil hfa384x MAC
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* This file implements functions that correspond to the prism2/hfa384x
+* 802.11 MAC hardware and firmware host interface.
+*
+* The functions can be considered to represent several levels of
+* abstraction.  The lowest level functions are simply C-callable wrappers
+* around the register accesses.  The next higher level represents C-callable
+* prism2 API functions that match the Intersil documentation as closely
+* as is reasonable.  The next higher layer implements common sequences
+* of invokations of the API layer (e.g. write to bap, followed by cmd).
+*
+* Common sequences:
+* hfa384x_drvr_xxx	Highest level abstractions provided by the
+*			hfa384x code.  They are driver defined wrappers
+*			for common sequences.  These functions generally
+*			use the services of the lower levels.
+*
+* hfa384x_drvr_xxxconfig  An example of the drvr level abstraction. These
+*			functions are wrappers for the RID get/set
+*			sequence. They 	call copy_[to|from]_bap() and
+*			cmd_access().	These functions operate on the
+*			RIDs and buffers without validation.  The caller
+*			is responsible for that.
+*
+* API wrapper functions:
+* hfa384x_cmd_xxx	functions that provide access to the f/w commands.
+*			The function arguments correspond to each command
+*			argument, even command arguments that get packed
+*			into single registers.  These functions _just_
+*			issue the command by setting the cmd/parm regs
+*			& reading the status/resp regs.  Additional
+*			activities required to fully use a command
+*			(read/write from/to bap, get/set int status etc.)
+*			are implemented separately.  Think of these as
+*			C-callable prism2 commands.
+*
+* Lowest Layer Functions:
+* hfa384x_docmd_xxx	These functions implement the sequence required
+*			to issue any prism2 command.  Primarily used by the
+*			hfa384x_cmd_xxx functions.
+*
+* hfa384x_bap_xxx	BAP read/write access functions.
+*			Note: we usually use BAP0 for non-interrupt context
+*			 and BAP1 for interrupt context.
+*
+* hfa384x_dl_xxx	download related functions.
+*
+* Driver State Issues:
+* Note that there are two pairs of functions that manage the
+* 'initialized' and 'running' states of the hw/MAC combo.  The four
+* functions are create(), destroy(), start(), and stop().  create()
+* sets up the data structures required to support the hfa384x_*
+* functions and destroy() cleans them up.  The start() function gets
+* the actual hardware running and enables the interrupts.  The stop()
+* function shuts the hardware down.  The sequence should be:
+* create()
+* start()
+*  .
+*  .  Do interesting things w/ the hardware
+*  .
+* stop()
+* destroy()
+*
+* Note that destroy() can be called without calling stop() first.
+* --------------------------------------------------------------------
+*/
+
+/*================================================================*/
+/* System Includes */
+#define WLAN_DBVAR	prism2_debug
+
+#include "version.h"
+
+
+#include <linux/version.h>
+
+#include <linux/module.h>
+#include <linux/kernel.h>
+#include <linux/sched.h>
+#include <linux/types.h>
+#include <linux/slab.h>
+#include <linux/wireless.h>
+#include <linux/netdevice.h>
+#include <linux/timer.h>
+#include <asm/io.h>
+#include <linux/delay.h>
+#include <asm/byteorder.h>
+#include <asm/bitops.h>
+#include <linux/list.h>
+#include <linux/usb.h>
+
+#include "wlan_compat.h"
+
+#if (WLAN_HOSTIF != WLAN_USB)
+#error "This file is specific to USB"
+#endif
+
+
+#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,10)
+static int
+wait_for_completion_interruptible(struct completion *x)
+{
+  int ret = 0;
+
+  might_sleep();
+
+  spin_lock_irq(&x->wait.lock);
+  if (!x->done) {
+    DECLARE_WAITQUEUE(wait, current);
+
+    wait.flags |= WQ_FLAG_EXCLUSIVE;
+    __add_wait_queue_tail(&x->wait, &wait);
+    do {
+      if (signal_pending(current)) {
+        ret = -ERESTARTSYS;
+        __remove_wait_queue(&x->wait, &wait);
+        goto out;
+      }
+      __set_current_state(TASK_INTERRUPTIBLE);
+      spin_unlock_irq(&x->wait.lock);
+      schedule();
+      spin_lock_irq(&x->wait.lock);
+    } while (!x->done);
+    __remove_wait_queue(&x->wait, &wait);
+  }
+  x->done--;
+out:
+  spin_unlock_irq(&x->wait.lock);
+
+  return ret;
+}
+#endif
+
+#if LINUX_VERSION_CODE < KERNEL_VERSION(2,5,69)
+static void
+usb_init_urb(struct urb *urb)
+{
+	memset(urb, 0, sizeof(*urb));
+#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,5,0) /* tune me! */
+	urb->count = (atomic_t)ATOMIC_INIT(1);
+#endif
+	spin_lock_init(&urb->lock);
+}
+#endif
+
+#if LINUX_VERSION_CODE >= KERNEL_VERSION(2,5,0) /* tune me! */
+#  define SUBMIT_URB(u,f)  usb_submit_urb(u,f)
+#else
+#  define SUBMIT_URB(u,f)  usb_submit_urb(u)
+#endif
+
+/*================================================================*/
+/* Project Includes */
+
+#include "p80211types.h"
+#include "p80211hdr.h"
+#include "p80211mgmt.h"
+#include "p80211conv.h"
+#include "p80211msg.h"
+#include "p80211netdev.h"
+#include "p80211req.h"
+#include "p80211metadef.h"
+#include "p80211metastruct.h"
+#include "hfa384x.h"
+#include "prism2mgmt.h"
+
+/*================================================================*/
+/* Local Constants */
+
+enum cmd_mode
+{
+  DOWAIT = 0,
+  DOASYNC
+};
+typedef enum cmd_mode CMD_MODE;
+
+#define THROTTLE_JIFFIES	(HZ/8)
+
+/*================================================================*/
+/* Local Macros */
+
+#define ROUNDUP64(a) (((a)+63)&~63)
+
+/*================================================================*/
+/* Local Types */
+
+/*================================================================*/
+/* Local Static Definitions */
+extern int prism2_debug;
+
+/*================================================================*/
+/* Local Function Declarations */
+
+#ifdef DEBUG_USB
+static void
+dbprint_urb(struct urb* urb);
+#endif
+
+static void
+hfa384x_int_rxmonitor(
+	wlandevice_t *wlandev,
+	hfa384x_usb_rxfrm_t *rxfrm);
+
+static void
+hfa384x_usb_defer(struct work_struct *data);
+
+static int
+submit_rx_urb(hfa384x_t *hw, gfp_t flags);
+
+static int
+submit_tx_urb(hfa384x_t *hw, struct urb *tx_urb, gfp_t flags);
+
+/*---------------------------------------------------*/
+/* Callbacks */
+#ifdef URB_ONLY_CALLBACK
+static void
+hfa384x_usbout_callback(struct urb *urb);
+static void
+hfa384x_ctlxout_callback(struct urb *urb);
+static void
+hfa384x_usbin_callback(struct urb *urb);
+#else
+static void
+hfa384x_usbout_callback(struct urb *urb, struct pt_regs *regs);
+static void
+hfa384x_ctlxout_callback(struct urb *urb, struct pt_regs *regs);
+static void
+hfa384x_usbin_callback(struct urb *urb, struct pt_regs *regs);
+#endif
+
+static void
+hfa384x_usbin_txcompl(wlandevice_t *wlandev, hfa384x_usbin_t *usbin);
+
+static void
+hfa384x_usbin_rx(wlandevice_t *wlandev, struct sk_buff *skb);
+
+static void
+hfa384x_usbin_info(wlandevice_t *wlandev, hfa384x_usbin_t *usbin);
+
+static void
+hfa384x_usbout_tx(wlandevice_t *wlandev, hfa384x_usbout_t *usbout);
+
+static void hfa384x_usbin_ctlx(hfa384x_t *hw, hfa384x_usbin_t *usbin,
+			       int urb_status);
+
+/*---------------------------------------------------*/
+/* Functions to support the prism2 usb command queue */
+
+static void
+hfa384x_usbctlxq_run(hfa384x_t *hw);
+
+static void
+hfa384x_usbctlx_reqtimerfn(unsigned long data);
+
+static void
+hfa384x_usbctlx_resptimerfn(unsigned long data);
+
+static void
+hfa384x_usb_throttlefn(unsigned long data);
+
+static void
+hfa384x_usbctlx_completion_task(unsigned long data);
+
+static void
+hfa384x_usbctlx_reaper_task(unsigned long data);
+
+static int
+hfa384x_usbctlx_submit(hfa384x_t *hw, hfa384x_usbctlx_t *ctlx);
+
+static void
+unlocked_usbctlx_complete(hfa384x_t *hw, hfa384x_usbctlx_t *ctlx);
+
+struct usbctlx_completor
+{
+	int (*complete)(struct usbctlx_completor*);
+};
+typedef struct usbctlx_completor usbctlx_completor_t;
+
+static int
+hfa384x_usbctlx_complete_sync(hfa384x_t *hw,
+                              hfa384x_usbctlx_t *ctlx,
+                              usbctlx_completor_t *completor);
+
+static int
+unlocked_usbctlx_cancel_async(hfa384x_t *hw, hfa384x_usbctlx_t *ctlx);
+
+static void
+hfa384x_cb_status(hfa384x_t *hw, const hfa384x_usbctlx_t *ctlx);
+
+static void
+hfa384x_cb_rrid(hfa384x_t *hw, const hfa384x_usbctlx_t *ctlx);
+
+static int
+usbctlx_get_status(const hfa384x_usb_cmdresp_t *cmdresp,
+                   hfa384x_cmdresult_t *result);
+
+static void
+usbctlx_get_rridresult(const hfa384x_usb_rridresp_t *rridresp,
+                       hfa384x_rridresult_t *result);
+
+/*---------------------------------------------------*/
+/* Low level req/resp CTLX formatters and submitters */
+static int
+hfa384x_docmd(
+	hfa384x_t *hw,
+	CMD_MODE mode,
+	hfa384x_metacmd_t *cmd,
+	ctlx_cmdcb_t cmdcb,
+	ctlx_usercb_t usercb,
+	void	*usercb_data);
+
+static int
+hfa384x_dorrid(
+	hfa384x_t *hw,
+	CMD_MODE mode,
+	UINT16	rid,
+	void	*riddata,
+	UINT	riddatalen,
+	ctlx_cmdcb_t cmdcb,
+	ctlx_usercb_t usercb,
+	void	*usercb_data);
+
+static int
+hfa384x_dowrid(
+	hfa384x_t *hw,
+	CMD_MODE mode,
+	UINT16	rid,
+	void	*riddata,
+	UINT	riddatalen,
+	ctlx_cmdcb_t cmdcb,
+	ctlx_usercb_t usercb,
+	void	*usercb_data);
+
+static int
+hfa384x_dormem(
+	hfa384x_t *hw,
+	CMD_MODE mode,
+	UINT16	page,
+	UINT16	offset,
+	void	*data,
+	UINT	len,
+	ctlx_cmdcb_t cmdcb,
+	ctlx_usercb_t usercb,
+	void	*usercb_data);
+
+static int
+hfa384x_dowmem(
+	hfa384x_t *hw,
+	CMD_MODE mode,
+	UINT16	page,
+	UINT16	offset,
+	void	*data,
+	UINT	len,
+	ctlx_cmdcb_t cmdcb,
+	ctlx_usercb_t usercb,
+	void	*usercb_data);
+
+static int
+hfa384x_isgood_pdrcode(UINT16 pdrcode);
+
+/*================================================================*/
+/* Function Definitions */
+static inline const char* ctlxstr(CTLX_STATE s)
+{
+	static const char* ctlx_str[] = {
+		"Initial state",
+		"Complete",
+		"Request failed",
+		"Request pending",
+		"Request packet submitted",
+		"Request packet completed",
+		"Response packet completed"
+	};
+
+	return ctlx_str[s];
+};
+
+
+static inline hfa384x_usbctlx_t*
+get_active_ctlx(hfa384x_t *hw)
+{
+	return list_entry(hw->ctlxq.active.next, hfa384x_usbctlx_t, list);
+}
+
+
+#ifdef DEBUG_USB
+void
+dbprint_urb(struct urb* urb)
+{
+	WLAN_LOG_DEBUG(3,"urb->pipe=0x%08x\n", urb->pipe);
+	WLAN_LOG_DEBUG(3,"urb->status=0x%08x\n", urb->status);
+	WLAN_LOG_DEBUG(3,"urb->transfer_flags=0x%08x\n", urb->transfer_flags);
+	WLAN_LOG_DEBUG(3,"urb->transfer_buffer=0x%08x\n", (UINT)urb->transfer_buffer);
+	WLAN_LOG_DEBUG(3,"urb->transfer_buffer_length=0x%08x\n", urb->transfer_buffer_length);
+	WLAN_LOG_DEBUG(3,"urb->actual_length=0x%08x\n", urb->actual_length);
+	WLAN_LOG_DEBUG(3,"urb->bandwidth=0x%08x\n", urb->bandwidth);
+	WLAN_LOG_DEBUG(3,"urb->setup_packet(ctl)=0x%08x\n", (UINT)urb->setup_packet);
+	WLAN_LOG_DEBUG(3,"urb->start_frame(iso/irq)=0x%08x\n", urb->start_frame);
+	WLAN_LOG_DEBUG(3,"urb->interval(irq)=0x%08x\n", urb->interval);
+	WLAN_LOG_DEBUG(3,"urb->error_count(iso)=0x%08x\n", urb->error_count);
+	WLAN_LOG_DEBUG(3,"urb->timeout=0x%08x\n", urb->timeout);
+	WLAN_LOG_DEBUG(3,"urb->context=0x%08x\n", (UINT)urb->context);
+	WLAN_LOG_DEBUG(3,"urb->complete=0x%08x\n", (UINT)urb->complete);
+}
+#endif
+
+
+/*----------------------------------------------------------------
+* submit_rx_urb
+*
+* Listen for input data on the BULK-IN pipe. If the pipe has
+* stalled then schedule it to be reset.
+*
+* Arguments:
+*	hw		device struct
+*	memflags	memory allocation flags
+*
+* Returns:
+*	error code from submission
+*
+* Call context:
+*	Any
+----------------------------------------------------------------*/
+static int
+submit_rx_urb(hfa384x_t *hw, gfp_t memflags)
+{
+	struct sk_buff *skb;
+	int result;
+
+	DBFENTER;
+
+	skb = dev_alloc_skb(sizeof(hfa384x_usbin_t));
+	if (skb == NULL) {
+		result = -ENOMEM;
+		goto done;
+	}
+
+	/* Post the IN urb */
+	usb_fill_bulk_urb(&hw->rx_urb, hw->usb,
+	              hw->endp_in,
+	              skb->data, sizeof(hfa384x_usbin_t),
+	              hfa384x_usbin_callback, hw->wlandev);
+
+	hw->rx_urb_skb = skb;
+
+	result = -ENOLINK;
+	if ( !hw->wlandev->hwremoved && !test_bit(WORK_RX_HALT, &hw->usb_flags)) {
+		result = SUBMIT_URB(&hw->rx_urb, memflags);
+
+		/* Check whether we need to reset the RX pipe */
+		if (result == -EPIPE) {
+			WLAN_LOG_WARNING("%s rx pipe stalled: requesting reset\n",
+			                 hw->wlandev->netdev->name);
+			if ( !test_and_set_bit(WORK_RX_HALT, &hw->usb_flags) )
+				schedule_work(&hw->usb_work);
+		}
+	}
+
+	/* Don't leak memory if anything should go wrong */
+	if (result != 0) {
+		dev_kfree_skb(skb);
+		hw->rx_urb_skb = NULL;
+	}
+
+ done:
+
+	DBFEXIT;
+	return result;
+}
+
+/*----------------------------------------------------------------
+* submit_tx_urb
+*
+* Prepares and submits the URB of transmitted data. If the
+* submission fails then it will schedule the output pipe to
+* be reset.
+*
+* Arguments:
+*	hw		device struct
+*	tx_urb		URB of data for tranmission
+*	memflags	memory allocation flags
+*
+* Returns:
+*	error code from submission
+*
+* Call context:
+*	Any
+----------------------------------------------------------------*/
+static int
+submit_tx_urb(hfa384x_t *hw, struct urb *tx_urb, gfp_t memflags)
+{
+	struct net_device *netdev = hw->wlandev->netdev;
+	int result;
+
+	DBFENTER;
+
+	result = -ENOLINK;
+	if ( netif_running(netdev) ) {
+
+		if ( !hw->wlandev->hwremoved && !test_bit(WORK_TX_HALT, &hw->usb_flags) ) {
+			result = SUBMIT_URB(tx_urb, memflags);
+
+			/* Test whether we need to reset the TX pipe */
+			if (result == -EPIPE) {
+				WLAN_LOG_WARNING("%s tx pipe stalled: requesting reset\n",
+				                 netdev->name);
+				set_bit(WORK_TX_HALT, &hw->usb_flags);
+				schedule_work(&hw->usb_work);
+			} else if (result == 0) {
+				netif_stop_queue(netdev);
+			}
+		}
+	}
+
+	DBFEXIT;
+
+	return result;
+}
+
+/*----------------------------------------------------------------
+* hfa394x_usb_defer
+*
+* There are some things that the USB stack cannot do while
+* in interrupt context, so we arrange this function to run
+* in process context.
+*
+* Arguments:
+*	hw	device structure
+*
+* Returns:
+*	nothing
+*
+* Call context:
+*	process (by design)
+----------------------------------------------------------------*/
+static void
+hfa384x_usb_defer(struct work_struct *data)
+{
+	hfa384x_t *hw = container_of(data, struct hfa384x, usb_work);
+	struct net_device *netdev = hw->wlandev->netdev;
+
+	DBFENTER;
+
+	/* Don't bother trying to reset anything if the plug
+	 * has been pulled ...
+	 */
+	if ( hw->wlandev->hwremoved ) {
+		DBFEXIT;
+		return;
+	}
+
+	/* Reception has stopped: try to reset the input pipe */
+	if (test_bit(WORK_RX_HALT, &hw->usb_flags)) {
+		int ret;
+
+		usb_kill_urb(&hw->rx_urb);  /* Cannot be holding spinlock! */
+
+		ret = usb_clear_halt(hw->usb, hw->endp_in);
+		if (ret != 0) {
+			printk(KERN_ERR
+			       "Failed to clear rx pipe for %s: err=%d\n",
+			       netdev->name, ret);
+		} else {
+			printk(KERN_INFO "%s rx pipe reset complete.\n",
+			                 netdev->name);
+			clear_bit(WORK_RX_HALT, &hw->usb_flags);
+			set_bit(WORK_RX_RESUME, &hw->usb_flags);
+		}
+	}
+
+	/* Resume receiving data back from the device. */
+	if ( test_bit(WORK_RX_RESUME, &hw->usb_flags) ) {
+		int ret;
+
+		ret = submit_rx_urb(hw, GFP_KERNEL);
+		if (ret != 0) {
+			printk(KERN_ERR
+			       "Failed to resume %s rx pipe.\n", netdev->name);
+		} else {
+			clear_bit(WORK_RX_RESUME, &hw->usb_flags);
+		}
+	}
+
+	/* Transmission has stopped: try to reset the output pipe */
+	if (test_bit(WORK_TX_HALT, &hw->usb_flags)) {
+		int ret;
+
+		usb_kill_urb(&hw->tx_urb);
+		ret = usb_clear_halt(hw->usb, hw->endp_out);
+		if (ret != 0) {
+			printk(KERN_ERR
+			       "Failed to clear tx pipe for %s: err=%d\n",
+			       netdev->name, ret);
+		} else {
+			printk(KERN_INFO "%s tx pipe reset complete.\n",
+			                 netdev->name);
+			clear_bit(WORK_TX_HALT, &hw->usb_flags);
+			set_bit(WORK_TX_RESUME, &hw->usb_flags);
+
+			/* Stopping the BULK-OUT pipe also blocked
+			 * us from sending any more CTLX URBs, so
+			 * we need to re-run our queue ...
+			 */
+			hfa384x_usbctlxq_run(hw);
+		}
+	}
+
+	/* Resume transmitting. */
+	if ( test_and_clear_bit(WORK_TX_RESUME, &hw->usb_flags) ) {
+		p80211netdev_wake_queue(hw->wlandev);
+	}
+
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_create
+*
+* Sets up the hfa384x_t data structure for use.  Note this
+* does _not_ intialize the actual hardware, just the data structures
+* we use to keep track of its state.
+*
+* Arguments:
+*	hw		device structure
+*	irq		device irq number
+*	iobase		i/o base address for register access
+*	membase		memory base address for register access
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+void
+hfa384x_create( hfa384x_t *hw, struct usb_device *usb)
+{
+	DBFENTER;
+
+	memset(hw, 0, sizeof(hfa384x_t));
+	hw->usb = usb;
+
+	/* set up the endpoints */
+	hw->endp_in = usb_rcvbulkpipe(usb, 1);
+	hw->endp_out = usb_sndbulkpipe(usb, 2);
+
+	/* Set up the waitq */
+	init_waitqueue_head(&hw->cmdq);
+
+	/* Initialize the command queue */
+	spin_lock_init(&hw->ctlxq.lock);
+	INIT_LIST_HEAD(&hw->ctlxq.pending);
+	INIT_LIST_HEAD(&hw->ctlxq.active);
+	INIT_LIST_HEAD(&hw->ctlxq.completing);
+	INIT_LIST_HEAD(&hw->ctlxq.reapable);
+
+	/* Initialize the authentication queue */
+	skb_queue_head_init(&hw->authq);
+
+	tasklet_init(&hw->reaper_bh,
+	             hfa384x_usbctlx_reaper_task,
+	             (unsigned long)hw);
+	tasklet_init(&hw->completion_bh,
+	             hfa384x_usbctlx_completion_task,
+	             (unsigned long)hw);
+	INIT_WORK2(&hw->link_bh, prism2sta_processing_defer);
+	INIT_WORK2(&hw->usb_work, hfa384x_usb_defer);
+
+	init_timer(&hw->throttle);
+	hw->throttle.function = hfa384x_usb_throttlefn;
+	hw->throttle.data = (unsigned long)hw;
+
+	init_timer(&hw->resptimer);
+	hw->resptimer.function = hfa384x_usbctlx_resptimerfn;
+	hw->resptimer.data = (unsigned long)hw;
+
+	init_timer(&hw->reqtimer);
+	hw->reqtimer.function = hfa384x_usbctlx_reqtimerfn;
+	hw->reqtimer.data = (unsigned long)hw;
+
+	usb_init_urb(&hw->rx_urb);
+	usb_init_urb(&hw->tx_urb);
+	usb_init_urb(&hw->ctlx_urb);
+
+	hw->link_status = HFA384x_LINK_NOTCONNECTED;
+	hw->state = HFA384x_STATE_INIT;
+
+        INIT_WORK2(&hw->commsqual_bh, prism2sta_commsqual_defer);
+	init_timer(&hw->commsqual_timer);
+	hw->commsqual_timer.data = (unsigned long) hw;
+	hw->commsqual_timer.function = prism2sta_commsqual_timer;
+
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_destroy
+*
+* Partner to hfa384x_create().  This function cleans up the hw
+* structure so that it can be freed by the caller using a simple
+* kfree.  Currently, this function is just a placeholder.  If, at some
+* point in the future, an hw in the 'shutdown' state requires a 'deep'
+* kfree, this is where it should be done.  Note that if this function
+* is called on a _running_ hw structure, the drvr_stop() function is
+* called.
+*
+* Arguments:
+*	hw		device structure
+*
+* Returns:
+*	nothing, this function is not allowed to fail.
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+void
+hfa384x_destroy( hfa384x_t *hw)
+{
+	struct sk_buff *skb;
+
+	DBFENTER;
+
+	if ( hw->state == HFA384x_STATE_RUNNING ) {
+		hfa384x_drvr_stop(hw);
+	}
+	hw->state = HFA384x_STATE_PREINIT;
+
+	if (hw->scanresults) {
+		kfree(hw->scanresults);
+		hw->scanresults = NULL;
+	}
+
+	/* Now to clean out the auth queue */
+        while ( (skb = skb_dequeue(&hw->authq)) ) {
+                dev_kfree_skb(skb);
+        }
+
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+ */
+static hfa384x_usbctlx_t* usbctlx_alloc(void)
+{
+	hfa384x_usbctlx_t *ctlx;
+
+	ctlx = kmalloc(sizeof(*ctlx), in_interrupt() ? GFP_ATOMIC : GFP_KERNEL);
+	if (ctlx != NULL)
+	{
+		memset(ctlx, 0, sizeof(*ctlx));
+		init_completion(&ctlx->done);
+	}
+
+	return ctlx;
+}
+
+
+/*----------------------------------------------------------------
+ *
+----------------------------------------------------------------*/
+static int
+usbctlx_get_status(const hfa384x_usb_cmdresp_t *cmdresp,
+                   hfa384x_cmdresult_t *result)
+{
+	DBFENTER;
+
+	result->status = hfa384x2host_16(cmdresp->status);
+	result->resp0 = hfa384x2host_16(cmdresp->resp0);
+	result->resp1 = hfa384x2host_16(cmdresp->resp1);
+	result->resp2 = hfa384x2host_16(cmdresp->resp2);
+
+	WLAN_LOG_DEBUG(4, "cmdresult:status=0x%04x "
+	                  "resp0=0x%04x resp1=0x%04x resp2=0x%04x\n",
+	                result->status,
+	                result->resp0,
+	                result->resp1,
+	                result->resp2);
+
+	DBFEXIT;
+	return (result->status & HFA384x_STATUS_RESULT);
+}
+
+static void
+usbctlx_get_rridresult(const hfa384x_usb_rridresp_t *rridresp,
+                       hfa384x_rridresult_t *result)
+{
+	DBFENTER;
+
+	result->rid = hfa384x2host_16(rridresp->rid);
+	result->riddata = rridresp->data;
+	result->riddata_len = ((hfa384x2host_16(rridresp->frmlen) - 1) * 2);
+
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* Completor object:
+* This completor must be passed to hfa384x_usbctlx_complete_sync()
+* when processing a CTLX that returns a hfa384x_cmdresult_t structure.
+----------------------------------------------------------------*/
+struct usbctlx_cmd_completor
+{
+	usbctlx_completor_t	head;
+
+	const hfa384x_usb_cmdresp_t	*cmdresp;
+	hfa384x_cmdresult_t	*result;
+};
+typedef struct usbctlx_cmd_completor usbctlx_cmd_completor_t;
+
+static int usbctlx_cmd_completor_fn(usbctlx_completor_t *head)
+{
+	usbctlx_cmd_completor_t *complete = (usbctlx_cmd_completor_t*)head;
+	return usbctlx_get_status(complete->cmdresp, complete->result);
+}
+
+static inline usbctlx_completor_t*
+init_cmd_completor(usbctlx_cmd_completor_t *completor,
+                   const hfa384x_usb_cmdresp_t *cmdresp,
+                   hfa384x_cmdresult_t *result)
+{
+	completor->head.complete = usbctlx_cmd_completor_fn;
+	completor->cmdresp = cmdresp;
+	completor->result = result;
+	return &(completor->head);
+}
+
+/*----------------------------------------------------------------
+* Completor object:
+* This completor must be passed to hfa384x_usbctlx_complete_sync()
+* when processing a CTLX that reads a RID.
+----------------------------------------------------------------*/
+struct usbctlx_rrid_completor
+{
+	usbctlx_completor_t	head;
+
+	const hfa384x_usb_rridresp_t	*rridresp;
+	void			*riddata;
+	UINT			riddatalen;
+};
+typedef struct usbctlx_rrid_completor usbctlx_rrid_completor_t;
+
+static int usbctlx_rrid_completor_fn(usbctlx_completor_t *head)
+{
+	usbctlx_rrid_completor_t *complete = (usbctlx_rrid_completor_t*)head;
+	hfa384x_rridresult_t rridresult;
+
+	usbctlx_get_rridresult(complete->rridresp, &rridresult);
+
+	/* Validate the length, note body len calculation in bytes */
+	if ( rridresult.riddata_len != complete->riddatalen ) {
+		WLAN_LOG_WARNING(
+			"RID len mismatch, rid=0x%04x hlen=%d fwlen=%d\n",
+		        rridresult.rid,
+		        complete->riddatalen,
+		        rridresult.riddata_len);
+		return -ENODATA;
+	}
+
+	memcpy(complete->riddata,
+	       rridresult.riddata,
+	       complete->riddatalen);
+	return 0;
+}
+
+static inline usbctlx_completor_t*
+init_rrid_completor(usbctlx_rrid_completor_t *completor,
+                    const hfa384x_usb_rridresp_t *rridresp,
+                    void *riddata,
+                    UINT riddatalen)
+{
+	completor->head.complete = usbctlx_rrid_completor_fn;
+	completor->rridresp = rridresp;
+	completor->riddata = riddata;
+	completor->riddatalen = riddatalen;
+	return &(completor->head);
+}
+
+/*----------------------------------------------------------------
+* Completor object:
+* Interprets the results of a synchronous RID-write
+----------------------------------------------------------------*/
+typedef usbctlx_cmd_completor_t usbctlx_wrid_completor_t;
+#define init_wrid_completor  init_cmd_completor
+
+/*----------------------------------------------------------------
+* Completor object:
+* Interprets the results of a synchronous memory-write
+----------------------------------------------------------------*/
+typedef usbctlx_cmd_completor_t usbctlx_wmem_completor_t;
+#define init_wmem_completor  init_cmd_completor
+
+/*----------------------------------------------------------------
+* Completor object:
+* Interprets the results of a synchronous memory-read
+----------------------------------------------------------------*/
+struct usbctlx_rmem_completor
+{
+        usbctlx_completor_t           head;
+
+        const hfa384x_usb_rmemresp_t  *rmemresp;
+        void                          *data;
+        UINT                          len;
+};
+typedef struct usbctlx_rmem_completor usbctlx_rmem_completor_t;
+
+static int usbctlx_rmem_completor_fn(usbctlx_completor_t *head)
+{
+	usbctlx_rmem_completor_t *complete = (usbctlx_rmem_completor_t*)head;
+
+	WLAN_LOG_DEBUG(4,"rmemresp:len=%d\n", complete->rmemresp->frmlen);
+	memcpy(complete->data, complete->rmemresp->data, complete->len);
+	return 0;
+}
+
+static inline usbctlx_completor_t*
+init_rmem_completor(usbctlx_rmem_completor_t *completor,
+                    hfa384x_usb_rmemresp_t *rmemresp,
+                    void *data,
+                    UINT len)
+{
+	completor->head.complete = usbctlx_rmem_completor_fn;
+	completor->rmemresp = rmemresp;
+	completor->data = data;
+	completor->len = len;
+	return &(completor->head);
+}
+
+/*----------------------------------------------------------------
+* hfa384x_cb_status
+*
+* Ctlx_complete handler for async CMD type control exchanges.
+* mark the hw struct as such.
+*
+* Note: If the handling is changed here, it should probably be
+*       changed in docmd as well.
+*
+* Arguments:
+*	hw		hw struct
+*	ctlx		completed CTLX
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void
+hfa384x_cb_status(hfa384x_t *hw, const hfa384x_usbctlx_t *ctlx)
+{
+	DBFENTER;
+
+	if ( ctlx->usercb != NULL ) {
+		hfa384x_cmdresult_t cmdresult;
+
+		if (ctlx->state != CTLX_COMPLETE) {
+			memset(&cmdresult, 0, sizeof(cmdresult));
+			cmdresult.status = HFA384x_STATUS_RESULT_SET(HFA384x_CMD_ERR);
+		} else {
+			usbctlx_get_status(&ctlx->inbuf.cmdresp, &cmdresult);
+		}
+
+		ctlx->usercb(hw, &cmdresult, ctlx->usercb_data);
+	}
+
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_cb_rrid
+*
+* CTLX completion handler for async RRID type control exchanges.
+*
+* Note: If the handling is changed here, it should probably be
+*       changed in dorrid as well.
+*
+* Arguments:
+*	hw		hw struct
+*	ctlx		completed CTLX
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void
+hfa384x_cb_rrid(hfa384x_t *hw, const hfa384x_usbctlx_t *ctlx)
+{
+	DBFENTER;
+
+	if ( ctlx->usercb != NULL ) {
+		hfa384x_rridresult_t rridresult;
+
+		if (ctlx->state != CTLX_COMPLETE) {
+			memset(&rridresult, 0, sizeof(rridresult));
+			rridresult.rid = hfa384x2host_16(ctlx->outbuf.rridreq.rid);
+		} else {
+			usbctlx_get_rridresult(&ctlx->inbuf.rridresp, &rridresult);
+		}
+
+		ctlx->usercb(hw, &rridresult, ctlx->usercb_data);
+	}
+
+	DBFEXIT;
+}
+
+static inline int
+hfa384x_docmd_wait(hfa384x_t *hw, hfa384x_metacmd_t *cmd)
+{
+	return hfa384x_docmd(hw, DOWAIT, cmd, NULL, NULL, NULL);
+}
+
+static inline int
+hfa384x_docmd_async(hfa384x_t *hw,
+                    hfa384x_metacmd_t *cmd,
+                    ctlx_cmdcb_t cmdcb,
+                    ctlx_usercb_t usercb,
+                    void *usercb_data)
+{
+	return hfa384x_docmd(hw, DOASYNC, cmd,
+	                        cmdcb, usercb, usercb_data);
+}
+
+static inline int
+hfa384x_dorrid_wait(hfa384x_t *hw, UINT16 rid, void *riddata, UINT riddatalen)
+{
+	return hfa384x_dorrid(hw, DOWAIT,
+	                      rid, riddata, riddatalen,
+	                      NULL, NULL, NULL);
+}
+
+static inline int
+hfa384x_dorrid_async(hfa384x_t *hw,
+                     UINT16 rid, void *riddata, UINT riddatalen,
+                     ctlx_cmdcb_t cmdcb,
+                     ctlx_usercb_t usercb,
+                     void *usercb_data)
+{
+	return hfa384x_dorrid(hw, DOASYNC,
+	                      rid, riddata, riddatalen,
+	                      cmdcb, usercb, usercb_data);
+}
+
+static inline int
+hfa384x_dowrid_wait(hfa384x_t *hw, UINT16 rid, void *riddata, UINT riddatalen)
+{
+	return hfa384x_dowrid(hw, DOWAIT,
+	                      rid, riddata, riddatalen,
+	                      NULL, NULL, NULL);
+}
+
+static inline int
+hfa384x_dowrid_async(hfa384x_t *hw,
+                     UINT16 rid, void *riddata, UINT riddatalen,
+                     ctlx_cmdcb_t cmdcb,
+                     ctlx_usercb_t usercb,
+                     void *usercb_data)
+{
+	return hfa384x_dowrid(hw, DOASYNC,
+	                      rid, riddata, riddatalen,
+	                      cmdcb, usercb, usercb_data);
+}
+
+static inline int
+hfa384x_dormem_wait(hfa384x_t *hw,
+                    UINT16 page, UINT16 offset, void *data, UINT len)
+{
+	return hfa384x_dormem(hw, DOWAIT,
+	                      page, offset, data, len,
+	                      NULL, NULL, NULL);
+}
+
+static inline int
+hfa384x_dormem_async(hfa384x_t *hw,
+                     UINT16 page, UINT16 offset, void *data, UINT len,
+                     ctlx_cmdcb_t cmdcb,
+                     ctlx_usercb_t usercb,
+                     void *usercb_data)
+{
+	return hfa384x_dormem(hw, DOASYNC,
+	                      page, offset, data, len,
+	                      cmdcb, usercb, usercb_data);
+}
+
+static inline int
+hfa384x_dowmem_wait(
+        hfa384x_t *hw,
+        UINT16  page,
+        UINT16  offset,
+        void    *data,
+        UINT    len)
+{
+	return hfa384x_dowmem(hw, DOWAIT,
+                                  page, offset, data, len,
+	                          NULL, NULL, NULL);
+}
+
+static inline int
+hfa384x_dowmem_async(
+        hfa384x_t *hw,
+        UINT16  page,
+        UINT16  offset,
+        void    *data,
+        UINT    len,
+        ctlx_cmdcb_t cmdcb,
+        ctlx_usercb_t usercb,
+        void    *usercb_data)
+{
+	return hfa384x_dowmem(hw, DOASYNC,
+                                  page, offset, data, len,
+	                          cmdcb, usercb, usercb_data);
+}
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_initialize
+*
+* Issues the initialize command and sets the hw->state based
+* on the result.
+*
+* Arguments:
+*	hw		device structure
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int
+hfa384x_cmd_initialize(hfa384x_t *hw)
+{
+	int	result = 0;
+	int	i;
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+
+
+	cmd.cmd = HFA384x_CMDCODE_INIT;
+	cmd.parm0 = 0;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+	result = hfa384x_docmd_wait(hw, &cmd);
+
+
+	WLAN_LOG_DEBUG(3,"cmdresp.init: "
+		"status=0x%04x, resp0=0x%04x, "
+		"resp1=0x%04x, resp2=0x%04x\n",
+		cmd.result.status,
+		cmd.result.resp0,
+		cmd.result.resp1,
+		cmd.result.resp2);
+	if ( result == 0 ) {
+		for ( i = 0; i < HFA384x_NUMPORTS_MAX; i++) {
+			hw->port_enabled[i] = 0;
+		}
+	}
+
+        hw->link_status = HFA384x_LINK_NOTCONNECTED;
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_disable
+*
+* Issues the disable command to stop communications on one of
+* the MACs 'ports'.
+*
+* Arguments:
+*	hw		device structure
+*	macport		MAC port number (host order)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int hfa384x_cmd_disable(hfa384x_t *hw, UINT16 macport)
+{
+	int	result = 0;
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+
+	cmd.cmd = HFA384x_CMD_CMDCODE_SET(HFA384x_CMDCODE_DISABLE) |
+		  HFA384x_CMD_MACPORT_SET(macport);
+	cmd.parm0 = 0;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+	result = hfa384x_docmd_wait(hw, &cmd);
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_enable
+*
+* Issues the enable command to enable communications on one of
+* the MACs 'ports'.
+*
+* Arguments:
+*	hw		device structure
+*	macport		MAC port number
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int hfa384x_cmd_enable(hfa384x_t *hw, UINT16 macport)
+{
+	int	result = 0;
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+
+	cmd.cmd = HFA384x_CMD_CMDCODE_SET(HFA384x_CMDCODE_ENABLE) |
+		  HFA384x_CMD_MACPORT_SET(macport);
+	cmd.parm0 = 0;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+	result = hfa384x_docmd_wait(hw, &cmd);
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_notify
+*
+* Sends an info frame to the firmware to alter the behavior
+* of the f/w asynch processes.  Can only be called when the MAC
+* is in the enabled state.
+*
+* Arguments:
+*	hw		device structure
+*	reclaim		[0|1] indicates whether the given FID will
+*			be handed back (via Alloc event) for reuse.
+*			(host order)
+*	fid		FID of buffer containing the frame that was
+*			previously copied to MAC memory via the bap.
+*			(host order)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*	hw->resp0 will contain the FID being used by async notify
+*	process.  If reclaim==0, resp0 will be the same as the fid
+*	argument.  If reclaim==1, resp0 will be the different.
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int hfa384x_cmd_notify(hfa384x_t *hw, UINT16 reclaim, UINT16 fid,
+		       void *buf, UINT16 len)
+{
+#if 0
+	int	result = 0;
+	UINT16	cmd;
+	DBFENTER;
+	cmd =	HFA384x_CMD_CMDCODE_SET(HFA384x_CMDCODE_NOTIFY) |
+		HFA384x_CMD_RECL_SET(reclaim);
+	result = hfa384x_docmd_wait(hw, cmd);
+
+	DBFEXIT;
+	return result;
+#endif
+return 0;
+}
+
+
+#if 0
+/*----------------------------------------------------------------
+* hfa384x_cmd_inquiry
+*
+* Requests an info frame from the firmware.  The info frame will
+* be delivered asynchronously via the Info event.
+*
+* Arguments:
+*	hw		device structure
+*	fid		FID of the info frame requested. (host order)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int hfa384x_cmd_inquiry(hfa384x_t *hw, UINT16 fid)
+{
+	int	result = 0;
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+
+	cmd.cmd = HFA384x_CMD_CMDCODE_SET(HFA384x_CMDCODE_INQ);
+	cmd.parm0 = 0;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+	result = hfa384x_docmd_wait(hw, &cmd);
+
+	DBFEXIT;
+	return result;
+}
+#endif
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_monitor
+*
+* Enables the 'monitor mode' of the MAC.  Here's the description of
+* monitor mode that I've received thus far:
+*
+*  "The "monitor mode" of operation is that the MAC passes all
+*  frames for which the PLCP checks are correct. All received
+*  MPDUs are passed to the host with MAC Port = 7, with a
+*  receive status of good, FCS error, or undecryptable. Passing
+*  certain MPDUs is a violation of the 802.11 standard, but useful
+*  for a debugging tool."  Normal communication is not possible
+*  while monitor mode is enabled.
+*
+* Arguments:
+*	hw		device structure
+*	enable		a code (0x0b|0x0f) that enables/disables
+*			monitor mode. (host order)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int hfa384x_cmd_monitor(hfa384x_t *hw, UINT16 enable)
+{
+	int	result = 0;
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+
+	cmd.cmd = HFA384x_CMD_CMDCODE_SET(HFA384x_CMDCODE_MONITOR) |
+		HFA384x_CMD_AINFO_SET(enable);
+	cmd.parm0 = 0;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+	result = hfa384x_docmd_wait(hw, &cmd);
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_cmd_download
+*
+* Sets the controls for the MAC controller code/data download
+* process.  The arguments set the mode and address associated
+* with a download.  Note that the aux registers should be enabled
+* prior to setting one of the download enable modes.
+*
+* Arguments:
+*	hw		device structure
+*	mode		0 - Disable programming and begin code exec
+*			1 - Enable volatile mem programming
+*			2 - Enable non-volatile mem programming
+*			3 - Program non-volatile section from NV download
+*			    buffer.
+*			(host order)
+*	lowaddr
+*	highaddr	For mode 1, sets the high & low order bits of
+*			the "destination address".  This address will be
+*			the execution start address when download is
+*			subsequently disabled.
+*			For mode 2, sets the high & low order bits of
+*			the destination in NV ram.
+*			For modes 0 & 3, should be zero. (host order)
+*			NOTE: these are CMD format.
+*	codelen		Length of the data to write in mode 2,
+*			zero otherwise. (host order)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int hfa384x_cmd_download(hfa384x_t *hw, UINT16 mode, UINT16 lowaddr,
+				UINT16 highaddr, UINT16 codelen)
+{
+	int	result = 0;
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+	WLAN_LOG_DEBUG(5,
+		"mode=%d, lowaddr=0x%04x, highaddr=0x%04x, codelen=%d\n",
+		mode, lowaddr, highaddr, codelen);
+
+	cmd.cmd = (HFA384x_CMD_CMDCODE_SET(HFA384x_CMDCODE_DOWNLD) |
+		   HFA384x_CMD_PROGMODE_SET(mode));
+
+	cmd.parm0 = lowaddr;
+	cmd.parm1 = highaddr;
+	cmd.parm2 = codelen;
+
+	result = hfa384x_docmd_wait(hw, &cmd);
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_copy_from_aux
+*
+* Copies a collection of bytes from the controller memory.  The
+* Auxiliary port MUST be enabled prior to calling this function.
+* We _might_ be in a download state.
+*
+* Arguments:
+*	hw		device structure
+*	cardaddr	address in hfa384x data space to read
+*	auxctl		address space select
+*	buf		ptr to destination host buffer
+*	len		length of data to transfer (in bytes)
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*	buf contains the data copied
+*
+* Call context:
+*	process
+*	interrupt
+----------------------------------------------------------------*/
+void
+hfa384x_copy_from_aux(
+	hfa384x_t *hw, UINT32 cardaddr, UINT32 auxctl, void *buf, UINT len)
+{
+	DBFENTER;
+	WLAN_LOG_ERROR("not used in USB.\n");
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_copy_to_aux
+*
+* Copies a collection of bytes to the controller memory.  The
+* Auxiliary port MUST be enabled prior to calling this function.
+* We _might_ be in a download state.
+*
+* Arguments:
+*	hw		device structure
+*	cardaddr	address in hfa384x data space to read
+*	auxctl		address space select
+*	buf		ptr to destination host buffer
+*	len		length of data to transfer (in bytes)
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*	Controller memory now contains a copy of buf
+*
+* Call context:
+*	process
+*	interrupt
+----------------------------------------------------------------*/
+void
+hfa384x_copy_to_aux(
+	hfa384x_t *hw, UINT32 cardaddr, UINT32 auxctl, void *buf, UINT len)
+{
+	DBFENTER;
+	WLAN_LOG_ERROR("not used in USB.\n");
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_corereset
+*
+* Perform a reset of the hfa38xx MAC core.  We assume that the hw
+* structure is in its "created" state.  That is, it is initialized
+* with proper values.  Note that if a reset is done after the
+* device has been active for awhile, the caller might have to clean
+* up some leftover cruft in the hw structure.
+*
+* Arguments:
+*	hw		device structure
+*	holdtime	how long (in ms) to hold the reset
+*	settletime	how long (in ms) to wait after releasing
+*			the reset
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int hfa384x_corereset(hfa384x_t *hw, int holdtime, int settletime, int genesis)
+{
+#if 0
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,5,0))
+	struct usb_device	*parent = hw->usb->parent;
+	int			i;
+	int			port = -1;
+#endif
+#endif
+	int 			result = 0;
+
+
+#define P2_USB_RT_PORT		(USB_TYPE_CLASS | USB_RECIP_OTHER)
+#define P2_USB_FEAT_RESET	4
+#define P2_USB_FEAT_C_RESET	20
+
+	DBFENTER;
+
+#if 0
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,5,0))
+	/* Find the hub port */
+	for ( i = 0; i < parent->maxchild; i++) {
+		if (parent->children[i] == hw->usb) {
+			port = i;
+			break;
+		}
+	}
+	if (port < 0) return -ENOENT;
+
+	/* Set and clear the reset */
+	usb_control_msg(parent, usb_sndctrlpipe(parent, 0),
+		USB_REQ_SET_FEATURE, P2_USB_RT_PORT, P2_USB_FEAT_RESET,
+		port+1, NULL, 0, 1*HZ);
+	wait_ms(holdtime);
+	usb_control_msg(parent, usb_sndctrlpipe(parent, 0),
+		USB_REQ_CLEAR_FEATURE, P2_USB_RT_PORT, P2_USB_FEAT_C_RESET,
+		port+1, NULL, 0, 1*HZ);
+	wait_ms(settletime);
+
+	/* Set the device address */
+	result=usb_set_address(hw->usb);
+	if (result < 0) {
+		WLAN_LOG_ERROR("reset_usbdev: Dev not accepting address, "
+			"result=%d\n", result);
+		clear_bit(hw->usb->devnum, &hw->usb->bus->devmap.devicemap);
+		hw->usb->devnum = -1;
+		goto done;
+	}
+	/* Let the address settle */
+	wait_ms(20);
+
+	/* Assume we're reusing the original descriptor data */
+
+	/* Set the configuration. */
+	WLAN_LOG_DEBUG(3, "Setting Configuration %d\n",
+		hw->usb->config[0].bConfigurationValue);
+	result=usb_set_configuration(hw->usb, hw->usb->config[0].bConfigurationValue);
+	if ( result ) {
+		WLAN_LOG_ERROR("usb_set_configuration() failed, result=%d.\n",
+				result);
+		goto done;
+	}
+	/* Let the configuration settle */
+	wait_ms(20);
+
+ done:
+#else
+	result=usb_reset_device(hw->usb);
+	if(result<0) {
+		WLAN_LOG_ERROR("usb_reset_device() failed, result=%d.\n",result);
+	}
+#endif
+#endif
+
+	result=usb_reset_device(hw->usb);
+	if(result<0) {
+		WLAN_LOG_ERROR("usb_reset_device() failed, result=%d.\n",result);
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_usbctlx_complete_sync
+*
+* Waits for a synchronous CTLX object to complete,
+* and then handles the response.
+*
+* Arguments:
+*	hw		device structure
+*	ctlx	 	CTLX ptr
+*	completor	functor object to decide what to
+*			do with the CTLX's result.
+*
+* Returns:
+*	0		Success
+*	-ERESTARTSYS	Interrupted by a signal
+*	-EIO		CTLX failed
+*	-ENODEV		Adapter was unplugged
+*	???		Result from completor
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+static int hfa384x_usbctlx_complete_sync(hfa384x_t *hw,
+					 hfa384x_usbctlx_t *ctlx,
+					 usbctlx_completor_t *completor)
+{
+	unsigned long flags;
+	int result;
+
+	DBFENTER;
+
+	result = wait_for_completion_interruptible(&ctlx->done);
+
+	spin_lock_irqsave(&hw->ctlxq.lock, flags);
+
+	/*
+	 * We can only handle the CTLX if the USB disconnect
+	 * function has not run yet ...
+	 */
+	cleanup:
+	if ( hw->wlandev->hwremoved )
+	{
+		spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+		result = -ENODEV;
+	}
+	else if ( result != 0 )
+	{
+		int runqueue = 0;
+
+		/*
+		 * We were probably interrupted, so delete
+		 * this CTLX asynchronously, kill the timers
+		 * and the URB, and then start the next
+		 * pending CTLX.
+		 *
+		 * NOTE: We can only delete the timers and
+		 *       the URB if this CTLX is active.
+		 */
+		if (ctlx == get_active_ctlx(hw))
+		{
+			spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+
+			del_singleshot_timer_sync(&hw->reqtimer);
+			del_singleshot_timer_sync(&hw->resptimer);
+			hw->req_timer_done = 1;
+			hw->resp_timer_done = 1;
+			usb_kill_urb(&hw->ctlx_urb);
+
+			spin_lock_irqsave(&hw->ctlxq.lock, flags);
+
+			runqueue = 1;
+
+			/*
+			 * This scenario is so unlikely that I'm
+			 * happy with a grubby "goto" solution ...
+			 */
+			if ( hw->wlandev->hwremoved )
+				goto cleanup;
+		}
+
+		/*
+		 * The completion task will send this CTLX
+		 * to the reaper the next time it runs. We
+		 * are no longer in a hurry.
+		 */
+		ctlx->reapable = 1;
+		ctlx->state = CTLX_REQ_FAILED;
+		list_move_tail(&ctlx->list, &hw->ctlxq.completing);
+
+		spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+
+		if (runqueue)
+			hfa384x_usbctlxq_run(hw);
+	} else {
+		if (ctlx->state == CTLX_COMPLETE) {
+			result = completor->complete(completor);
+		} else {
+			WLAN_LOG_WARNING("CTLX[%d] error: state(%s)\n",
+			                 hfa384x2host_16(ctlx->outbuf.type),
+			                 ctlxstr(ctlx->state));
+			result = -EIO;
+		}
+
+		list_del(&ctlx->list);
+		spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+		kfree(ctlx);
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_docmd
+*
+* Constructs a command CTLX and submits it.
+*
+* NOTE: Any changes to the 'post-submit' code in this function
+*       need to be carried over to hfa384x_cbcmd() since the handling
+*       is virtually identical.
+*
+* Arguments:
+*	hw		device structure
+*	mode		DOWAIT or DOASYNC
+*       cmd             cmd structure.  Includes all arguments and result
+*                       data points.  All in host order. in host order
+*	cmdcb		command-specific callback
+*	usercb		user callback for async calls, NULL for DOWAIT calls
+*	usercb_data	user supplied data pointer for async calls, NULL
+*			for DOASYNC calls
+*
+* Returns:
+*	0		success
+*	-EIO		CTLX failure
+*	-ERESTARTSYS	Awakened on signal
+*	>0		command indicated error, Status and Resp0-2 are
+*			in hw structure.
+*
+* Side effects:
+*
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+static int
+hfa384x_docmd(
+	hfa384x_t *hw,
+	CMD_MODE mode,
+	hfa384x_metacmd_t *cmd,
+	ctlx_cmdcb_t	cmdcb,
+	ctlx_usercb_t	usercb,
+	void	*usercb_data)
+{
+	int			result;
+	hfa384x_usbctlx_t	*ctlx;
+
+	DBFENTER;
+	ctlx = usbctlx_alloc();
+	if ( ctlx == NULL ) {
+		result = -ENOMEM;
+		goto done;
+	}
+
+	/* Initialize the command */
+	ctlx->outbuf.cmdreq.type = 	host2hfa384x_16(HFA384x_USB_CMDREQ);
+	ctlx->outbuf.cmdreq.cmd =	host2hfa384x_16(cmd->cmd);
+	ctlx->outbuf.cmdreq.parm0 =	host2hfa384x_16(cmd->parm0);
+	ctlx->outbuf.cmdreq.parm1 =	host2hfa384x_16(cmd->parm1);
+	ctlx->outbuf.cmdreq.parm2 =	host2hfa384x_16(cmd->parm2);
+
+	ctlx->outbufsize = sizeof(ctlx->outbuf.cmdreq);
+
+	WLAN_LOG_DEBUG(4, "cmdreq: cmd=0x%04x "
+		"parm0=0x%04x parm1=0x%04x parm2=0x%04x\n",
+		cmd->cmd,
+		cmd->parm0,
+		cmd->parm1,
+		cmd->parm2);
+
+	ctlx->reapable = mode;
+	ctlx->cmdcb = cmdcb;
+	ctlx->usercb = usercb;
+	ctlx->usercb_data = usercb_data;
+
+	result = hfa384x_usbctlx_submit(hw, ctlx);
+	if (result != 0) {
+		kfree(ctlx);
+	} else if (mode == DOWAIT) {
+		usbctlx_cmd_completor_t completor;
+
+		result = hfa384x_usbctlx_complete_sync(
+		             hw, ctlx, init_cmd_completor(&completor,
+		                                          &ctlx->inbuf.cmdresp,
+		                                          &cmd->result) );
+	}
+
+done:
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_dorrid
+*
+* Constructs a read rid CTLX and issues it.
+*
+* NOTE: Any changes to the 'post-submit' code in this function
+*       need to be carried over to hfa384x_cbrrid() since the handling
+*       is virtually identical.
+*
+* Arguments:
+*	hw		device structure
+*	mode		DOWAIT or DOASYNC
+*	rid		Read RID number (host order)
+*	riddata		Caller supplied buffer that MAC formatted RID.data
+*			record will be written to for DOWAIT calls. Should
+*			be NULL for DOASYNC calls.
+*	riddatalen	Buffer length for DOWAIT calls. Zero for DOASYNC calls.
+*	cmdcb		command callback for async calls, NULL for DOWAIT calls
+*	usercb		user callback for async calls, NULL for DOWAIT calls
+*	usercb_data	user supplied data pointer for async calls, NULL
+*			for DOWAIT calls
+*
+* Returns:
+*	0		success
+*	-EIO		CTLX failure
+*	-ERESTARTSYS	Awakened on signal
+*	-ENODATA	riddatalen != macdatalen
+*	>0		command indicated error, Status and Resp0-2 are
+*			in hw structure.
+*
+* Side effects:
+*
+* Call context:
+*	interrupt (DOASYNC)
+*	process (DOWAIT or DOASYNC)
+----------------------------------------------------------------*/
+static int
+hfa384x_dorrid(
+	hfa384x_t *hw,
+	CMD_MODE mode,
+	UINT16	rid,
+	void	*riddata,
+	UINT	riddatalen,
+        ctlx_cmdcb_t cmdcb,
+	ctlx_usercb_t usercb,
+	void	*usercb_data)
+{
+	int			result;
+	hfa384x_usbctlx_t	*ctlx;
+
+	DBFENTER;
+	ctlx = usbctlx_alloc();
+	if ( ctlx == NULL ) {
+		result = -ENOMEM;
+		goto done;
+	}
+
+	/* Initialize the command */
+	ctlx->outbuf.rridreq.type =   host2hfa384x_16(HFA384x_USB_RRIDREQ);
+	ctlx->outbuf.rridreq.frmlen =
+		host2hfa384x_16(sizeof(ctlx->outbuf.rridreq.rid));
+	ctlx->outbuf.rridreq.rid =    host2hfa384x_16(rid);
+
+	ctlx->outbufsize = sizeof(ctlx->outbuf.rridreq);
+
+	ctlx->reapable = mode;
+	ctlx->cmdcb = cmdcb;
+	ctlx->usercb = usercb;
+	ctlx->usercb_data = usercb_data;
+
+	/* Submit the CTLX */
+	result = hfa384x_usbctlx_submit(hw, ctlx);
+	if (result != 0) {
+		kfree(ctlx);
+	} else if (mode == DOWAIT) {
+		usbctlx_rrid_completor_t completor;
+
+		result = hfa384x_usbctlx_complete_sync(
+		           hw, ctlx, init_rrid_completor(&completor,
+		                                         &ctlx->inbuf.rridresp,
+		                                         riddata,
+		                                         riddatalen) );
+	}
+
+done:
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_dowrid
+*
+* Constructs a write rid CTLX and issues it.
+*
+* NOTE: Any changes to the 'post-submit' code in this function
+*       need to be carried over to hfa384x_cbwrid() since the handling
+*       is virtually identical.
+*
+* Arguments:
+*	hw		device structure
+*	CMD_MODE	DOWAIT or DOASYNC
+*	rid		RID code
+*	riddata		Data portion of RID formatted for MAC
+*	riddatalen	Length of the data portion in bytes
+*       cmdcb           command callback for async calls, NULL for DOWAIT calls
+*	usercb		user callback for async calls, NULL for DOWAIT calls
+*	usercb_data	user supplied data pointer for async calls
+*
+* Returns:
+*	0		success
+*	-ETIMEDOUT	timed out waiting for register ready or
+*			command completion
+*	>0		command indicated error, Status and Resp0-2 are
+*			in hw structure.
+*
+* Side effects:
+*
+* Call context:
+*	interrupt (DOASYNC)
+*	process (DOWAIT or DOASYNC)
+----------------------------------------------------------------*/
+static int
+hfa384x_dowrid(
+	hfa384x_t *hw,
+	CMD_MODE mode,
+	UINT16	rid,
+	void	*riddata,
+	UINT	riddatalen,
+	ctlx_cmdcb_t cmdcb,
+	ctlx_usercb_t usercb,
+	void	*usercb_data)
+{
+	int			result;
+	hfa384x_usbctlx_t	*ctlx;
+
+	DBFENTER;
+	ctlx = usbctlx_alloc();
+	if ( ctlx == NULL ) {
+		result = -ENOMEM;
+		goto done;
+	}
+
+	/* Initialize the command */
+	ctlx->outbuf.wridreq.type =   host2hfa384x_16(HFA384x_USB_WRIDREQ);
+	ctlx->outbuf.wridreq.frmlen = host2hfa384x_16(
+					(sizeof(ctlx->outbuf.wridreq.rid) +
+					riddatalen + 1) / 2);
+	ctlx->outbuf.wridreq.rid =    host2hfa384x_16(rid);
+	memcpy(ctlx->outbuf.wridreq.data, riddata, riddatalen);
+
+	ctlx->outbufsize = sizeof(ctlx->outbuf.wridreq.type) +
+	                   sizeof(ctlx->outbuf.wridreq.frmlen) +
+	                   sizeof(ctlx->outbuf.wridreq.rid) +
+	                   riddatalen;
+
+	ctlx->reapable = mode;
+	ctlx->cmdcb = cmdcb;
+	ctlx->usercb = usercb;
+	ctlx->usercb_data = usercb_data;
+
+	/* Submit the CTLX */
+	result = hfa384x_usbctlx_submit(hw, ctlx);
+	if (result != 0) {
+		kfree(ctlx);
+	} else if (mode == DOWAIT) {
+		usbctlx_wrid_completor_t completor;
+		hfa384x_cmdresult_t wridresult;
+
+		result = hfa384x_usbctlx_complete_sync(
+		               hw,
+		               ctlx,
+		               init_wrid_completor(&completor,
+		                                   &ctlx->inbuf.wridresp,
+		                                   &wridresult) );
+	}
+
+done:
+	DBFEXIT;
+	return result;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_dormem
+*
+* Constructs a readmem CTLX and issues it.
+*
+* NOTE: Any changes to the 'post-submit' code in this function
+*       need to be carried over to hfa384x_cbrmem() since the handling
+*       is virtually identical.
+*
+* Arguments:
+*	hw		device structure
+*	mode		DOWAIT or DOASYNC
+*	page		MAC address space page (CMD format)
+*	offset		MAC address space offset
+*	data		Ptr to data buffer to receive read
+*	len		Length of the data to read (max == 2048)
+*	cmdcb		command callback for async calls, NULL for DOWAIT calls
+*	usercb		user callback for async calls, NULL for DOWAIT calls
+*	usercb_data	user supplied data pointer for async calls
+*
+* Returns:
+*	0		success
+*	-ETIMEDOUT	timed out waiting for register ready or
+*			command completion
+*	>0		command indicated error, Status and Resp0-2 are
+*			in hw structure.
+*
+* Side effects:
+*
+* Call context:
+*	interrupt (DOASYNC)
+*	process (DOWAIT or DOASYNC)
+----------------------------------------------------------------*/
+static int
+hfa384x_dormem(
+	hfa384x_t *hw,
+	CMD_MODE mode,
+	UINT16	page,
+	UINT16	offset,
+	void	*data,
+	UINT	len,
+	ctlx_cmdcb_t cmdcb,
+	ctlx_usercb_t usercb,
+	void	*usercb_data)
+{
+	int			result;
+	hfa384x_usbctlx_t	*ctlx;
+
+	DBFENTER;
+	ctlx = usbctlx_alloc();
+	if ( ctlx == NULL ) {
+		result = -ENOMEM;
+		goto done;
+	}
+
+	/* Initialize the command */
+	ctlx->outbuf.rmemreq.type =    host2hfa384x_16(HFA384x_USB_RMEMREQ);
+	ctlx->outbuf.rmemreq.frmlen =  host2hfa384x_16(
+					sizeof(ctlx->outbuf.rmemreq.offset) +
+					sizeof(ctlx->outbuf.rmemreq.page) +
+					len);
+	ctlx->outbuf.rmemreq.offset =	host2hfa384x_16(offset);
+	ctlx->outbuf.rmemreq.page =	host2hfa384x_16(page);
+
+	ctlx->outbufsize = sizeof(ctlx->outbuf.rmemreq);
+
+	WLAN_LOG_DEBUG(4,
+		"type=0x%04x frmlen=%d offset=0x%04x page=0x%04x\n",
+		ctlx->outbuf.rmemreq.type,
+		ctlx->outbuf.rmemreq.frmlen,
+		ctlx->outbuf.rmemreq.offset,
+		ctlx->outbuf.rmemreq.page);
+
+	WLAN_LOG_DEBUG(4,"pktsize=%zd\n",
+		ROUNDUP64(sizeof(ctlx->outbuf.rmemreq)));
+
+	ctlx->reapable = mode;
+	ctlx->cmdcb = cmdcb;
+	ctlx->usercb = usercb;
+	ctlx->usercb_data = usercb_data;
+
+	result = hfa384x_usbctlx_submit(hw, ctlx);
+	if (result != 0) {
+		kfree(ctlx);
+	} else if ( mode == DOWAIT ) {
+                usbctlx_rmem_completor_t completor;
+
+                result = hfa384x_usbctlx_complete_sync(
+                           hw, ctlx, init_rmem_completor(&completor,
+                                                         &ctlx->inbuf.rmemresp,
+                                                         data,
+                                                         len) );
+	}
+
+done:
+	DBFEXIT;
+	return result;
+}
+
+
+
+/*----------------------------------------------------------------
+* hfa384x_dowmem
+*
+* Constructs a writemem CTLX and issues it.
+*
+* NOTE: Any changes to the 'post-submit' code in this function
+*       need to be carried over to hfa384x_cbwmem() since the handling
+*       is virtually identical.
+*
+* Arguments:
+*	hw		device structure
+*	mode		DOWAIT or DOASYNC
+*	page		MAC address space page (CMD format)
+*	offset		MAC address space offset
+*	data		Ptr to data buffer containing write data
+*	len		Length of the data to read (max == 2048)
+*	cmdcb		command callback for async calls, NULL for DOWAIT calls
+*	usercb		user callback for async calls, NULL for DOWAIT calls
+*	usercb_data	user supplied data pointer for async calls.
+*
+* Returns:
+*	0		success
+*	-ETIMEDOUT	timed out waiting for register ready or
+*			command completion
+*	>0		command indicated error, Status and Resp0-2 are
+*			in hw structure.
+*
+* Side effects:
+*
+* Call context:
+*	interrupt (DOWAIT)
+*	process (DOWAIT or DOASYNC)
+----------------------------------------------------------------*/
+static int
+hfa384x_dowmem(
+	hfa384x_t *hw,
+	CMD_MODE mode,
+	UINT16	page,
+	UINT16	offset,
+	void	*data,
+	UINT	len,
+	ctlx_cmdcb_t cmdcb,
+	ctlx_usercb_t usercb,
+	void	*usercb_data)
+{
+	int			result;
+	hfa384x_usbctlx_t	*ctlx;
+
+	DBFENTER;
+	WLAN_LOG_DEBUG(5, "page=0x%04x offset=0x%04x len=%d\n",
+		page,offset,len);
+
+	ctlx = usbctlx_alloc();
+	if ( ctlx == NULL ) {
+		result = -ENOMEM;
+		goto done;
+	}
+
+	/* Initialize the command */
+	ctlx->outbuf.wmemreq.type =   host2hfa384x_16(HFA384x_USB_WMEMREQ);
+	ctlx->outbuf.wmemreq.frmlen = host2hfa384x_16(
+					sizeof(ctlx->outbuf.wmemreq.offset) +
+					sizeof(ctlx->outbuf.wmemreq.page) +
+					len);
+	ctlx->outbuf.wmemreq.offset = host2hfa384x_16(offset);
+	ctlx->outbuf.wmemreq.page =   host2hfa384x_16(page);
+	memcpy(ctlx->outbuf.wmemreq.data, data, len);
+
+	ctlx->outbufsize = sizeof(ctlx->outbuf.wmemreq.type) +
+	                   sizeof(ctlx->outbuf.wmemreq.frmlen) +
+	                   sizeof(ctlx->outbuf.wmemreq.offset) +
+	                   sizeof(ctlx->outbuf.wmemreq.page) +
+	                   len;
+
+	ctlx->reapable = mode;
+	ctlx->cmdcb = cmdcb;
+	ctlx->usercb = usercb;
+	ctlx->usercb_data = usercb_data;
+
+	result = hfa384x_usbctlx_submit(hw, ctlx);
+	if (result != 0) {
+		kfree(ctlx);
+	} else if ( mode == DOWAIT ) {
+                usbctlx_wmem_completor_t completor;
+                hfa384x_cmdresult_t wmemresult;
+
+                result = hfa384x_usbctlx_complete_sync(
+                               hw,
+                               ctlx,
+                               init_wmem_completor(&completor,
+                                                   &ctlx->inbuf.wmemresp,
+                                                   &wmemresult) );
+	}
+
+done:
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_commtallies
+*
+* Send a commtallies inquiry to the MAC.  Note that this is an async
+* call that will result in an info frame arriving sometime later.
+*
+* Arguments:
+*	hw		device structure
+*
+* Returns:
+*	zero		success.
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int hfa384x_drvr_commtallies( hfa384x_t *hw )
+{
+	hfa384x_metacmd_t cmd;
+
+	DBFENTER;
+
+	cmd.cmd = HFA384x_CMDCODE_INQ;
+	cmd.parm0 = HFA384x_IT_COMMTALLIES;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+	hfa384x_docmd_async(hw, &cmd, NULL, NULL, NULL);
+
+	DBFEXIT;
+	return 0;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_disable
+*
+* Issues the disable command to stop communications on one of
+* the MACs 'ports'.  Only macport 0 is valid  for stations.
+* APs may also disable macports 1-6.  Only ports that have been
+* previously enabled may be disabled.
+*
+* Arguments:
+*	hw		device structure
+*	macport		MAC port number (host order)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int hfa384x_drvr_disable(hfa384x_t *hw, UINT16 macport)
+{
+	int	result = 0;
+
+	DBFENTER;
+	if ((!hw->isap && macport != 0) ||
+	    (hw->isap && !(macport <= HFA384x_PORTID_MAX)) ||
+	    !(hw->port_enabled[macport]) ){
+		result = -EINVAL;
+	} else {
+		result = hfa384x_cmd_disable(hw, macport);
+		if ( result == 0 ) {
+			hw->port_enabled[macport] = 0;
+		}
+	}
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_enable
+*
+* Issues the enable command to enable communications on one of
+* the MACs 'ports'.  Only macport 0 is valid  for stations.
+* APs may also enable macports 1-6.  Only ports that are currently
+* disabled may be enabled.
+*
+* Arguments:
+*	hw		device structure
+*	macport		MAC port number
+*
+* Returns:
+*	0		success
+*	>0		f/w reported failure - f/w status code
+*	<0		driver reported error (timeout|bad arg)
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int hfa384x_drvr_enable(hfa384x_t *hw, UINT16 macport)
+{
+	int	result = 0;
+
+	DBFENTER;
+	if ((!hw->isap && macport != 0) ||
+	    (hw->isap && !(macport <= HFA384x_PORTID_MAX)) ||
+	    (hw->port_enabled[macport]) ){
+		result = -EINVAL;
+	} else {
+		result = hfa384x_cmd_enable(hw, macport);
+		if ( result == 0 ) {
+			hw->port_enabled[macport] = 1;
+		}
+	}
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_flashdl_enable
+*
+* Begins the flash download state.  Checks to see that we're not
+* already in a download state and that a port isn't enabled.
+* Sets the download state and retrieves the flash download
+* buffer location, buffer size, and timeout length.
+*
+* Arguments:
+*	hw		device structure
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int hfa384x_drvr_flashdl_enable(hfa384x_t *hw)
+{
+	int		result = 0;
+	int		i;
+
+	DBFENTER;
+	/* Check that a port isn't active */
+	for ( i = 0; i < HFA384x_PORTID_MAX; i++) {
+		if ( hw->port_enabled[i] ) {
+			WLAN_LOG_DEBUG(1,"called when port enabled.\n");
+			return -EINVAL;
+		}
+	}
+
+	/* Check that we're not already in a download state */
+	if ( hw->dlstate != HFA384x_DLSTATE_DISABLED ) {
+		return -EINVAL;
+	}
+
+	/* Retrieve the buffer loc&size and timeout */
+	if ( (result = hfa384x_drvr_getconfig(hw, HFA384x_RID_DOWNLOADBUFFER,
+				&(hw->bufinfo), sizeof(hw->bufinfo))) ) {
+		return result;
+	}
+	hw->bufinfo.page = hfa384x2host_16(hw->bufinfo.page);
+	hw->bufinfo.offset = hfa384x2host_16(hw->bufinfo.offset);
+	hw->bufinfo.len = hfa384x2host_16(hw->bufinfo.len);
+	if ( (result = hfa384x_drvr_getconfig16(hw, HFA384x_RID_MAXLOADTIME,
+				&(hw->dltimeout))) ) {
+		return result;
+	}
+	hw->dltimeout = hfa384x2host_16(hw->dltimeout);
+
+	WLAN_LOG_DEBUG(1,"flashdl_enable\n");
+
+	hw->dlstate = HFA384x_DLSTATE_FLASHENABLED;
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_flashdl_disable
+*
+* Ends the flash download state.  Note that this will cause the MAC
+* firmware to restart.
+*
+* Arguments:
+*	hw		device structure
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int hfa384x_drvr_flashdl_disable(hfa384x_t *hw)
+{
+	DBFENTER;
+	/* Check that we're already in the download state */
+	if ( hw->dlstate != HFA384x_DLSTATE_FLASHENABLED ) {
+		return -EINVAL;
+	}
+
+	WLAN_LOG_DEBUG(1,"flashdl_enable\n");
+
+	/* There isn't much we can do at this point, so I don't */
+	/*  bother  w/ the return value */
+	hfa384x_cmd_download(hw, HFA384x_PROGMODE_DISABLE, 0, 0 , 0);
+	hw->dlstate = HFA384x_DLSTATE_DISABLED;
+
+	DBFEXIT;
+	return 0;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_flashdl_write
+*
+* Performs a FLASH download of a chunk of data. First checks to see
+* that we're in the FLASH download state, then sets the download
+* mode, uses the aux functions to 1) copy the data to the flash
+* buffer, 2) sets the download 'write flash' mode, 3) readback and
+* compare.  Lather rinse, repeat as many times an necessary to get
+* all the given data into flash.
+* When all data has been written using this function (possibly
+* repeatedly), call drvr_flashdl_disable() to end the download state
+* and restart the MAC.
+*
+* Arguments:
+*	hw		device structure
+*	daddr		Card address to write to. (host order)
+*	buf		Ptr to data to write.
+*	len		Length of data (host order).
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int
+hfa384x_drvr_flashdl_write(
+	hfa384x_t	*hw,
+	UINT32		daddr,
+	void		*buf,
+	UINT32		len)
+{
+	int		result = 0;
+	UINT32		dlbufaddr;
+	int		nburns;
+	UINT32		burnlen;
+	UINT32		burndaddr;
+	UINT16		burnlo;
+	UINT16		burnhi;
+	int		nwrites;
+	UINT8		*writebuf;
+	UINT16		writepage;
+	UINT16		writeoffset;
+	UINT32		writelen;
+	int		i;
+	int		j;
+
+	DBFENTER;
+	WLAN_LOG_DEBUG(5,"daddr=0x%08x len=%d\n", daddr, len);
+
+	/* Check that we're in the flash download state */
+	if ( hw->dlstate != HFA384x_DLSTATE_FLASHENABLED ) {
+		return -EINVAL;
+	}
+
+	WLAN_LOG_INFO("Download %d bytes to flash @0x%06x\n", len, daddr);
+
+	/* Convert to flat address for arithmetic */
+	/* NOTE: dlbuffer RID stores the address in AUX format */
+	dlbufaddr = HFA384x_ADDR_AUX_MKFLAT(
+			hw->bufinfo.page, hw->bufinfo.offset);
+	WLAN_LOG_DEBUG(5,
+		"dlbuf.page=0x%04x dlbuf.offset=0x%04x dlbufaddr=0x%08x\n",
+		hw->bufinfo.page, hw->bufinfo.offset, dlbufaddr);
+
+#if 0
+WLAN_LOG_WARNING("dlbuf@0x%06lx len=%d to=%d\n", dlbufaddr, hw->bufinfo.len, hw->dltimeout);
+#endif
+	/* Calculations to determine how many fills of the dlbuffer to do
+	 * and how many USB wmemreq's to do for each fill.  At this point
+	 * in time, the dlbuffer size and the wmemreq size are the same.
+	 * Therefore, nwrites should always be 1.  The extra complexity
+	 * here is a hedge against future changes.
+	 */
+
+	/* Figure out how many times to do the flash programming */
+	nburns = len / hw->bufinfo.len;
+	nburns += (len % hw->bufinfo.len) ? 1 : 0;
+
+	/* For each flash program cycle, how many USB wmemreq's are needed? */
+	nwrites = hw->bufinfo.len / HFA384x_USB_RWMEM_MAXLEN;
+	nwrites += (hw->bufinfo.len % HFA384x_USB_RWMEM_MAXLEN) ? 1 : 0;
+
+	/* For each burn */
+	for ( i = 0; i < nburns; i++) {
+		/* Get the dest address and len */
+		burnlen = (len - (hw->bufinfo.len * i)) > hw->bufinfo.len ?
+				hw->bufinfo.len :
+				(len - (hw->bufinfo.len * i));
+		burndaddr = daddr + (hw->bufinfo.len * i);
+		burnlo = HFA384x_ADDR_CMD_MKOFF(burndaddr);
+		burnhi = HFA384x_ADDR_CMD_MKPAGE(burndaddr);
+
+		WLAN_LOG_INFO("Writing %d bytes to flash @0x%06x\n",
+			burnlen, burndaddr);
+
+		/* Set the download mode */
+		result = hfa384x_cmd_download(hw, HFA384x_PROGMODE_NV,
+				burnlo, burnhi, burnlen);
+		if ( result ) {
+			WLAN_LOG_ERROR("download(NV,lo=%x,hi=%x,len=%x) "
+				"cmd failed, result=%d. Aborting d/l\n",
+				burnlo, burnhi, burnlen, result);
+			goto exit_proc;
+		}
+
+		/* copy the data to the flash download buffer */
+		for ( j=0; j < nwrites; j++) {
+			writebuf = buf +
+				(i*hw->bufinfo.len) +
+				(j*HFA384x_USB_RWMEM_MAXLEN);
+
+			writepage = HFA384x_ADDR_CMD_MKPAGE(
+					dlbufaddr +
+					(j*HFA384x_USB_RWMEM_MAXLEN));
+			writeoffset = HFA384x_ADDR_CMD_MKOFF(
+					dlbufaddr +
+					(j*HFA384x_USB_RWMEM_MAXLEN));
+
+			writelen = burnlen-(j*HFA384x_USB_RWMEM_MAXLEN);
+			writelen = writelen  > HFA384x_USB_RWMEM_MAXLEN ?
+					HFA384x_USB_RWMEM_MAXLEN :
+					writelen;
+
+			result = hfa384x_dowmem_wait( hw,
+					writepage,
+					writeoffset,
+					writebuf,
+					writelen );
+#if 0
+
+Comment out for debugging, assume the write was successful.
+			if (result) {
+				WLAN_LOG_ERROR(
+					"Write to dl buffer failed, "
+					"result=0x%04x. Aborting.\n",
+					result);
+				goto exit_proc;
+			}
+#endif
+
+		}
+
+		/* set the download 'write flash' mode */
+		result = hfa384x_cmd_download(hw,
+				HFA384x_PROGMODE_NVWRITE,
+				0,0,0);
+		if ( result ) {
+			WLAN_LOG_ERROR(
+				"download(NVWRITE,lo=%x,hi=%x,len=%x) "
+				"cmd failed, result=%d. Aborting d/l\n",
+				burnlo, burnhi, burnlen, result);
+			goto exit_proc;
+		}
+
+		/* TODO: We really should do a readback and compare. */
+	}
+
+exit_proc:
+
+	/* Leave the firmware in the 'post-prog' mode.  flashdl_disable will */
+	/*  actually disable programming mode.  Remember, that will cause the */
+	/*  the firmware to effectively reset itself. */
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_getconfig
+*
+* Performs the sequence necessary to read a config/info item.
+*
+* Arguments:
+*	hw		device structure
+*	rid		config/info record id (host order)
+*	buf		host side record buffer.  Upon return it will
+*			contain the body portion of the record (minus the
+*			RID and len).
+*	len		buffer length (in bytes, should match record length)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*	-ENODATA 	length mismatch between argument and retrieved
+*			record.
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int hfa384x_drvr_getconfig(hfa384x_t *hw, UINT16 rid, void *buf, UINT16 len)
+{
+	int 			result;
+	DBFENTER;
+
+	result = hfa384x_dorrid_wait(hw, rid, buf, len);
+
+	DBFEXIT;
+	return result;
+}
+
+/*----------------------------------------------------------------
+ * hfa384x_drvr_getconfig_async
+ *
+ * Performs the sequence necessary to perform an async read of
+ * of a config/info item.
+ *
+ * Arguments:
+ *       hw              device structure
+ *       rid             config/info record id (host order)
+ *       buf             host side record buffer.  Upon return it will
+ *                       contain the body portion of the record (minus the
+ *                       RID and len).
+ *       len             buffer length (in bytes, should match record length)
+ *       cbfn            caller supplied callback, called when the command
+ *                       is done (successful or not).
+ *       cbfndata        pointer to some caller supplied data that will be
+ *                       passed in as an argument to the cbfn.
+ *
+ * Returns:
+ *       nothing         the cbfn gets a status argument identifying if
+ *                       any errors occur.
+ * Side effects:
+ *       Queues an hfa384x_usbcmd_t for subsequent execution.
+ *
+ * Call context:
+ *       Any
+ ----------------------------------------------------------------*/
+int
+hfa384x_drvr_getconfig_async(
+         hfa384x_t               *hw,
+         UINT16                  rid,
+         ctlx_usercb_t           usercb,
+         void                    *usercb_data)
+{
+         return hfa384x_dorrid_async(hw, rid, NULL, 0,
+				     hfa384x_cb_rrid, usercb, usercb_data);
+}
+
+/*----------------------------------------------------------------
+ * hfa384x_drvr_setconfig_async
+ *
+ * Performs the sequence necessary to write a config/info item.
+ *
+ * Arguments:
+ *       hw              device structure
+ *       rid             config/info record id (in host order)
+ *       buf             host side record buffer
+ *       len             buffer length (in bytes)
+ *       usercb          completion callback
+ *       usercb_data     completion callback argument
+ *
+ * Returns:
+ *       0               success
+ *       >0              f/w reported error - f/w status code
+ *       <0              driver reported error
+ *
+ * Side effects:
+ *
+ * Call context:
+ *       process
+ ----------------------------------------------------------------*/
+int
+hfa384x_drvr_setconfig_async(
+         hfa384x_t       *hw,
+         UINT16          rid,
+         void            *buf,
+         UINT16          len,
+         ctlx_usercb_t   usercb,
+         void            *usercb_data)
+{
+	return hfa384x_dowrid_async(hw, rid, buf, len,
+				    hfa384x_cb_status, usercb, usercb_data);
+}
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_handover
+*
+* Sends a handover notification to the MAC.
+*
+* Arguments:
+*	hw		device structure
+*	addr		address of station that's left
+*
+* Returns:
+*	zero		success.
+*	-ERESTARTSYS	received signal while waiting for semaphore.
+*	-EIO		failed to write to bap, or failed in cmd.
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int hfa384x_drvr_handover( hfa384x_t *hw, UINT8 *addr)
+{
+        DBFENTER;
+	WLAN_LOG_ERROR("Not currently supported in USB!\n");
+	DBFEXIT;
+	return -EIO;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_low_level
+*
+* Write test commands to the card.  Some test commands don't make
+* sense without prior set-up.  For example, continous TX isn't very
+* useful until you set the channel.  That functionality should be
+*
+* Side effects:
+*
+* Call context:
+*      process thread
+* -----------------------------------------------------------------*/
+int hfa384x_drvr_low_level(hfa384x_t *hw, hfa384x_metacmd_t *cmd)
+{
+	int             result;
+	DBFENTER;
+
+	/* Do i need a host2hfa... conversion ? */
+
+	result = hfa384x_docmd_wait(hw, cmd);
+
+	DBFEXIT;
+	return result;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_mmi_read
+*
+* Read mmi registers.  mmi is intersil-speak for the baseband
+* processor registers.
+*
+* Arguments:
+*       hw              device structure
+*       register        The test register to be accessed (must be even #).
+*
+* Returns:
+*       0               success
+*       >0              f/w reported error - f/w status code
+*       <0              driver reported error
+*
+* Side effects:
+*
+* Call context:
+*       process
+----------------------------------------------------------------*/
+int hfa384x_drvr_mmi_read(hfa384x_t *hw, UINT32 addr, UINT32 *resp)
+{
+#if 0
+        int             result = 0;
+        UINT16  cmd_code = (UINT16) 0x30;
+        UINT16 param = (UINT16) addr;
+        DBFENTER;
+
+        /* Do i need a host2hfa... conversion ? */
+        result = hfa384x_docmd_wait(hw, cmd_code);
+
+        DBFEXIT;
+        return result;
+#endif
+return 0;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_mmi_write
+*
+* Read mmi registers.  mmi is intersil-speak for the baseband
+* processor registers.
+*
+* Arguments:
+*       hw              device structure
+*       addr            The test register to be accessed (must be even #).
+*       data            The data value to write to the register.
+*
+* Returns:
+*       0               success
+*       >0              f/w reported error - f/w status code
+*       <0              driver reported error
+*
+* Side effects:
+*
+* Call context:
+*       process
+----------------------------------------------------------------*/
+
+int
+hfa384x_drvr_mmi_write(hfa384x_t *hw, UINT32 addr, UINT32 data)
+{
+#if 0
+        int             result = 0;
+        UINT16  cmd_code = (UINT16) 0x31;
+        UINT16 param0 = (UINT16) addr;
+        UINT16 param1 = (UINT16) data;
+        DBFENTER;
+
+        WLAN_LOG_DEBUG(1,"mmi write : addr = 0x%08lx\n", addr);
+        WLAN_LOG_DEBUG(1,"mmi write : data = 0x%08lx\n", data);
+
+        /* Do i need a host2hfa... conversion ? */
+        result = hfa384x_docmd_wait(hw, cmd_code);
+
+        DBFEXIT;
+        return result;
+#endif
+return 0;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_ramdl_disable
+*
+* Ends the ram download state.
+*
+* Arguments:
+*	hw		device structure
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int
+hfa384x_drvr_ramdl_disable(hfa384x_t *hw)
+{
+	DBFENTER;
+	/* Check that we're already in the download state */
+	if ( hw->dlstate != HFA384x_DLSTATE_RAMENABLED ) {
+		return -EINVAL;
+	}
+
+	WLAN_LOG_DEBUG(3,"ramdl_disable()\n");
+
+	/* There isn't much we can do at this point, so I don't */
+	/*  bother  w/ the return value */
+	hfa384x_cmd_download(hw, HFA384x_PROGMODE_DISABLE, 0, 0 , 0);
+	hw->dlstate = HFA384x_DLSTATE_DISABLED;
+
+	DBFEXIT;
+	return 0;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_ramdl_enable
+*
+* Begins the ram download state.  Checks to see that we're not
+* already in a download state and that a port isn't enabled.
+* Sets the download state and calls cmd_download with the
+* ENABLE_VOLATILE subcommand and the exeaddr argument.
+*
+* Arguments:
+*	hw		device structure
+*	exeaddr		the card execution address that will be
+*                       jumped to when ramdl_disable() is called
+*			(host order).
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int
+hfa384x_drvr_ramdl_enable(hfa384x_t *hw, UINT32 exeaddr)
+{
+	int		result = 0;
+	UINT16		lowaddr;
+	UINT16		hiaddr;
+	int		i;
+	DBFENTER;
+	/* Check that a port isn't active */
+	for ( i = 0; i < HFA384x_PORTID_MAX; i++) {
+		if ( hw->port_enabled[i] ) {
+			WLAN_LOG_ERROR(
+				"Can't download with a macport enabled.\n");
+			return -EINVAL;
+		}
+	}
+
+	/* Check that we're not already in a download state */
+	if ( hw->dlstate != HFA384x_DLSTATE_DISABLED ) {
+		WLAN_LOG_ERROR(
+			"Download state not disabled.\n");
+		return -EINVAL;
+	}
+
+	WLAN_LOG_DEBUG(3,"ramdl_enable, exeaddr=0x%08x\n", exeaddr);
+
+	/* Call the download(1,addr) function */
+	lowaddr = HFA384x_ADDR_CMD_MKOFF(exeaddr);
+	hiaddr =  HFA384x_ADDR_CMD_MKPAGE(exeaddr);
+
+	result = hfa384x_cmd_download(hw, HFA384x_PROGMODE_RAM,
+			lowaddr, hiaddr, 0);
+
+	if ( result == 0) {
+		/* Set the download state */
+		hw->dlstate = HFA384x_DLSTATE_RAMENABLED;
+	} else {
+		WLAN_LOG_DEBUG(1,
+			"cmd_download(0x%04x, 0x%04x) failed, result=%d.\n",
+			lowaddr,
+			hiaddr,
+			result);
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_ramdl_write
+*
+* Performs a RAM download of a chunk of data. First checks to see
+* that we're in the RAM download state, then uses the [read|write]mem USB
+* commands to 1) copy the data, 2) readback and compare.  The download
+* state is unaffected.  When all data has been written using
+* this function, call drvr_ramdl_disable() to end the download state
+* and restart the MAC.
+*
+* Arguments:
+*	hw		device structure
+*	daddr		Card address to write to. (host order)
+*	buf		Ptr to data to write.
+*	len		Length of data (host order).
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int
+hfa384x_drvr_ramdl_write(hfa384x_t *hw, UINT32 daddr, void* buf, UINT32 len)
+{
+	int		result = 0;
+	int		nwrites;
+	UINT8		*data = buf;
+	int		i;
+	UINT32		curraddr;
+	UINT16		currpage;
+	UINT16		curroffset;
+	UINT16		currlen;
+	DBFENTER;
+	/* Check that we're in the ram download state */
+	if ( hw->dlstate != HFA384x_DLSTATE_RAMENABLED ) {
+		return -EINVAL;
+	}
+
+	WLAN_LOG_INFO("Writing %d bytes to ram @0x%06x\n", len, daddr);
+
+	/* How many dowmem calls?  */
+	nwrites = len / HFA384x_USB_RWMEM_MAXLEN;
+	nwrites += len % HFA384x_USB_RWMEM_MAXLEN ? 1 : 0;
+
+	/* Do blocking wmem's */
+	for(i=0; i < nwrites; i++) {
+		/* make address args */
+		curraddr = daddr + (i * HFA384x_USB_RWMEM_MAXLEN);
+		currpage = HFA384x_ADDR_CMD_MKPAGE(curraddr);
+		curroffset = HFA384x_ADDR_CMD_MKOFF(curraddr);
+		currlen = len - (i * HFA384x_USB_RWMEM_MAXLEN);
+		if ( currlen > HFA384x_USB_RWMEM_MAXLEN) {
+			currlen = HFA384x_USB_RWMEM_MAXLEN;
+		}
+
+	 	/* Do blocking ctlx */
+		result = hfa384x_dowmem_wait( hw,
+				currpage,
+				curroffset,
+				data + (i*HFA384x_USB_RWMEM_MAXLEN),
+				currlen );
+
+		if (result) break;
+
+		/* TODO: We really should have a readback. */
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_readpda
+*
+* Performs the sequence to read the PDA space.  Note there is no
+* drvr_writepda() function.  Writing a PDA is
+* generally implemented by a calling component via calls to
+* cmd_download and writing to the flash download buffer via the
+* aux regs.
+*
+* Arguments:
+*	hw		device structure
+*	buf		buffer to store PDA in
+*	len		buffer length
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*	-ETIMEOUT	timout waiting for the cmd regs to become
+*			available, or waiting for the control reg
+*			to indicate the Aux port is enabled.
+*	-ENODATA	the buffer does NOT contain a valid PDA.
+*			Either the card PDA is bad, or the auxdata
+*			reads are giving us garbage.
+
+*
+* Side effects:
+*
+* Call context:
+*	process or non-card interrupt.
+----------------------------------------------------------------*/
+int hfa384x_drvr_readpda(hfa384x_t *hw, void *buf, UINT len)
+{
+	int		result = 0;
+	UINT16		*pda = buf;
+	int		pdaok = 0;
+	int		morepdrs = 1;
+	int		currpdr = 0;	/* word offset of the current pdr */
+	size_t		i;
+	UINT16		pdrlen;		/* pdr length in bytes, host order */
+	UINT16		pdrcode;	/* pdr code, host order */
+	UINT16		currpage;
+	UINT16		curroffset;
+	struct pdaloc {
+		UINT32	cardaddr;
+		UINT16	auxctl;
+	} pdaloc[] =
+	{
+		{ HFA3842_PDA_BASE,		0},
+		{ HFA3841_PDA_BASE,		0},
+		{ HFA3841_PDA_BOGUS_BASE,	0}
+	};
+
+	DBFENTER;
+
+	/* Read the pda from each known address.  */
+	for ( i = 0; i < ARRAY_SIZE(pdaloc); i++) {
+		/* Make address */
+		currpage = HFA384x_ADDR_CMD_MKPAGE(pdaloc[i].cardaddr);
+		curroffset = HFA384x_ADDR_CMD_MKOFF(pdaloc[i].cardaddr);
+
+		result = hfa384x_dormem_wait(hw,
+			currpage,
+			curroffset,
+			buf,
+			len);		/* units of bytes */
+
+		if (result) {
+			WLAN_LOG_WARNING(
+					  "Read from index %zd failed, continuing\n",
+				i );
+			continue;
+		}
+
+		/* Test for garbage */
+		pdaok = 1;	/* initially assume good */
+		morepdrs = 1;
+		while ( pdaok && morepdrs ) {
+			pdrlen = hfa384x2host_16(pda[currpdr]) * 2;
+			pdrcode = hfa384x2host_16(pda[currpdr+1]);
+			/* Test the record length */
+			if ( pdrlen > HFA384x_PDR_LEN_MAX || pdrlen == 0) {
+				WLAN_LOG_ERROR("pdrlen invalid=%d\n",
+					pdrlen);
+				pdaok = 0;
+				break;
+			}
+			/* Test the code */
+			if ( !hfa384x_isgood_pdrcode(pdrcode) ) {
+				WLAN_LOG_ERROR("pdrcode invalid=%d\n",
+					pdrcode);
+				pdaok = 0;
+				break;
+			}
+			/* Test for completion */
+			if ( pdrcode == HFA384x_PDR_END_OF_PDA) {
+				morepdrs = 0;
+			}
+
+			/* Move to the next pdr (if necessary) */
+			if ( morepdrs ) {
+				/* note the access to pda[], need words here */
+				currpdr += hfa384x2host_16(pda[currpdr]) + 1;
+			}
+		}
+		if ( pdaok ) {
+			WLAN_LOG_INFO(
+				"PDA Read from 0x%08x in %s space.\n",
+				pdaloc[i].cardaddr,
+				pdaloc[i].auxctl == 0 ? "EXTDS" :
+				pdaloc[i].auxctl == 1 ? "NV" :
+				pdaloc[i].auxctl == 2 ? "PHY" :
+				pdaloc[i].auxctl == 3 ? "ICSRAM" :
+				"<bogus auxctl>");
+			break;
+		}
+	}
+	result = pdaok ? 0 : -ENODATA;
+
+	if ( result ) {
+		WLAN_LOG_DEBUG(3,"Failure: pda is not okay\n");
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_setconfig
+*
+* Performs the sequence necessary to write a config/info item.
+*
+* Arguments:
+*	hw		device structure
+*	rid		config/info record id (in host order)
+*	buf		host side record buffer
+*	len		buffer length (in bytes)
+*
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int hfa384x_drvr_setconfig(hfa384x_t *hw, UINT16 rid, void *buf, UINT16 len)
+{
+	return hfa384x_dowrid_wait(hw, rid, buf, len);
+}
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_start
+*
+* Issues the MAC initialize command, sets up some data structures,
+* and enables the interrupts.  After this function completes, the
+* low-level stuff should be ready for any/all commands.
+*
+* Arguments:
+*	hw		device structure
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int hfa384x_drvr_start(hfa384x_t *hw)
+{
+	int		result;
+	DBFENTER;
+
+	might_sleep();
+
+	if (usb_clear_halt(hw->usb, hw->endp_in)) {
+		WLAN_LOG_ERROR(
+			"Failed to reset bulk in endpoint.\n");
+	}
+
+	if (usb_clear_halt(hw->usb, hw->endp_out)) {
+		WLAN_LOG_ERROR(
+			"Failed to reset bulk out endpoint.\n");
+	}
+
+	/* Synchronous unlink, in case we're trying to restart the driver */
+	usb_kill_urb(&hw->rx_urb);
+
+	/* Post the IN urb */
+	result = submit_rx_urb(hw, GFP_KERNEL);
+	if (result != 0) {
+		WLAN_LOG_ERROR(
+			"Fatal, failed to submit RX URB, result=%d\n",
+			result);
+		goto done;
+	}
+
+	/* call initialize */
+	result = hfa384x_cmd_initialize(hw);
+	if (result != 0) {
+		usb_kill_urb(&hw->rx_urb);
+		WLAN_LOG_ERROR(
+			"cmd_initialize() failed, result=%d\n",
+			result);
+		goto done;
+	}
+
+	hw->state = HFA384x_STATE_RUNNING;
+
+done:
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_stop
+*
+* Shuts down the MAC to the point where it is safe to unload the
+* driver.  Any subsystem that may be holding a data or function
+* ptr into the driver must be cleared/deinitialized.
+*
+* Arguments:
+*	hw		device structure
+* Returns:
+*	0		success
+*	>0		f/w reported error - f/w status code
+*	<0		driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+int
+hfa384x_drvr_stop(hfa384x_t *hw)
+{
+	int	result = 0;
+	int	i;
+	DBFENTER;
+
+	might_sleep();
+
+	/* There's no need for spinlocks here. The USB "disconnect"
+	 * function sets this "removed" flag and then calls us.
+	 */
+	if ( !hw->wlandev->hwremoved ) {
+		/* Call initialize to leave the MAC in its 'reset' state */
+		hfa384x_cmd_initialize(hw);
+
+		/* Cancel the rxurb */
+		usb_kill_urb(&hw->rx_urb);
+	}
+
+	hw->link_status = HFA384x_LINK_NOTCONNECTED;
+	hw->state = HFA384x_STATE_INIT;
+
+	del_timer_sync(&hw->commsqual_timer);
+
+	/* Clear all the port status */
+	for ( i = 0; i < HFA384x_NUMPORTS_MAX; i++) {
+		hw->port_enabled[i] = 0;
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_drvr_txframe
+*
+* Takes a frame from prism2sta and queues it for transmission.
+*
+* Arguments:
+*	hw		device structure
+*	skb		packet buffer struct.  Contains an 802.11
+*			data frame.
+*       p80211_hdr      points to the 802.11 header for the packet.
+* Returns:
+*	0		Success and more buffs available
+*	1		Success but no more buffs
+*	2		Allocation failure
+*	4		Buffer full or queue busy
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+int hfa384x_drvr_txframe(hfa384x_t *hw, struct sk_buff *skb, p80211_hdr_t *p80211_hdr, p80211_metawep_t *p80211_wep)
+
+{
+	int		usbpktlen = sizeof(hfa384x_tx_frame_t);
+	int		result;
+	int		ret;
+	char		*ptr;
+
+	DBFENTER;
+
+	if (hw->tx_urb.status == -EINPROGRESS) {
+		WLAN_LOG_WARNING("TX URB already in use\n");
+		result = 3;
+		goto exit;
+	}
+
+	/* Build Tx frame structure */
+	/* Set up the control field */
+	memset(&hw->txbuff.txfrm.desc, 0, sizeof(hw->txbuff.txfrm.desc));
+
+	/* Setup the usb type field */
+	hw->txbuff.type = host2hfa384x_16(HFA384x_USB_TXFRM);
+
+	/* Set up the sw_support field to identify this frame */
+	hw->txbuff.txfrm.desc.sw_support = 0x0123;
+
+/* Tx complete and Tx exception disable per dleach.  Might be causing
+ * buf depletion
+ */
+//#define DOEXC  SLP -- doboth breaks horribly under load, doexc less so.
+#if defined(DOBOTH)
+	hw->txbuff.txfrm.desc.tx_control =
+		HFA384x_TX_MACPORT_SET(0) | HFA384x_TX_STRUCTYPE_SET(1) |
+		HFA384x_TX_TXEX_SET(1) | HFA384x_TX_TXOK_SET(1);
+#elif defined(DOEXC)
+	hw->txbuff.txfrm.desc.tx_control =
+		HFA384x_TX_MACPORT_SET(0) | HFA384x_TX_STRUCTYPE_SET(1) |
+		HFA384x_TX_TXEX_SET(1) | HFA384x_TX_TXOK_SET(0);
+#else
+	hw->txbuff.txfrm.desc.tx_control =
+		HFA384x_TX_MACPORT_SET(0) | HFA384x_TX_STRUCTYPE_SET(1) |
+		HFA384x_TX_TXEX_SET(0) | HFA384x_TX_TXOK_SET(0);
+#endif
+	hw->txbuff.txfrm.desc.tx_control =
+		host2hfa384x_16(hw->txbuff.txfrm.desc.tx_control);
+
+	/* copy the header over to the txdesc */
+	memcpy(&(hw->txbuff.txfrm.desc.frame_control), p80211_hdr, sizeof(p80211_hdr_t));
+
+	/* if we're using host WEP, increase size by IV+ICV */
+	if (p80211_wep->data) {
+		hw->txbuff.txfrm.desc.data_len = host2hfa384x_16(skb->len+8);
+		// hw->txbuff.txfrm.desc.tx_control |= HFA384x_TX_NOENCRYPT_SET(1);
+		usbpktlen+=8;
+	} else {
+		hw->txbuff.txfrm.desc.data_len = host2hfa384x_16(skb->len);
+	}
+
+	usbpktlen += skb->len;
+
+	/* copy over the WEP IV if we are using host WEP */
+	ptr = hw->txbuff.txfrm.data;
+	if (p80211_wep->data) {
+		memcpy(ptr, p80211_wep->iv, sizeof(p80211_wep->iv));
+		ptr+= sizeof(p80211_wep->iv);
+		memcpy(ptr, p80211_wep->data, skb->len);
+	} else {
+		memcpy(ptr, skb->data, skb->len);
+	}
+	/* copy over the packet data */
+	ptr+= skb->len;
+
+	/* copy over the WEP ICV if we are using host WEP */
+	if (p80211_wep->data) {
+		memcpy(ptr, p80211_wep->icv, sizeof(p80211_wep->icv));
+	}
+
+	/* Send the USB packet */
+	usb_fill_bulk_urb( &(hw->tx_urb), hw->usb,
+	               hw->endp_out,
+	               &(hw->txbuff), ROUNDUP64(usbpktlen),
+	               hfa384x_usbout_callback, hw->wlandev );
+	hw->tx_urb.transfer_flags |= USB_QUEUE_BULK;
+
+	result = 1;
+	ret = submit_tx_urb(hw, &hw->tx_urb, GFP_ATOMIC);
+	if ( ret != 0 ) {
+		WLAN_LOG_ERROR(
+			"submit_tx_urb() failed, error=%d\n", ret);
+		result = 3;
+	}
+
+ exit:
+	DBFEXIT;
+	return result;
+}
+
+void hfa384x_tx_timeout(wlandevice_t *wlandev)
+{
+	hfa384x_t	*hw = wlandev->priv;
+	unsigned long flags;
+
+	DBFENTER;
+
+	spin_lock_irqsave(&hw->ctlxq.lock, flags);
+
+	if ( !hw->wlandev->hwremoved &&
+	     /* Note the bitwise OR, not the logical OR. */
+	     ( !test_and_set_bit(WORK_TX_HALT, &hw->usb_flags) |
+	       !test_and_set_bit(WORK_RX_HALT, &hw->usb_flags) ) )
+	{
+		schedule_work(&hw->usb_work);
+	}
+
+	spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+
+	DBFEXIT;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_usbctlx_reaper_task
+*
+* Tasklet to delete dead CTLX objects
+*
+* Arguments:
+*	data	ptr to a hfa384x_t
+*
+* Returns:
+*
+* Call context:
+*	Interrupt
+----------------------------------------------------------------*/
+static void hfa384x_usbctlx_reaper_task(unsigned long data)
+{
+	hfa384x_t	*hw = (hfa384x_t*)data;
+	struct list_head *entry;
+	struct list_head *temp;
+	unsigned long	flags;
+
+	DBFENTER;
+
+	spin_lock_irqsave(&hw->ctlxq.lock, flags);
+
+	/* This list is guaranteed to be empty if someone
+	 * has unplugged the adapter.
+	 */
+	list_for_each_safe(entry, temp, &hw->ctlxq.reapable) {
+		hfa384x_usbctlx_t	*ctlx;
+
+		ctlx = list_entry(entry, hfa384x_usbctlx_t, list);
+		list_del(&ctlx->list);
+		kfree(ctlx);
+	}
+
+	spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+
+	DBFEXIT;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_usbctlx_completion_task
+*
+* Tasklet to call completion handlers for returned CTLXs
+*
+* Arguments:
+*	data	ptr to hfa384x_t
+*
+* Returns:
+*	Nothing
+*
+* Call context:
+*	Interrupt
+----------------------------------------------------------------*/
+static void hfa384x_usbctlx_completion_task(unsigned long data)
+{
+	hfa384x_t *hw = (hfa384x_t*)data;
+	struct list_head *entry;
+	struct list_head *temp;
+	unsigned long flags;
+
+	int reap = 0;
+
+	DBFENTER;
+
+	spin_lock_irqsave(&hw->ctlxq.lock, flags);
+
+	/* This list is guaranteed to be empty if someone
+	 * has unplugged the adapter ...
+	 */
+	list_for_each_safe(entry, temp, &hw->ctlxq.completing) {
+		hfa384x_usbctlx_t *ctlx;
+
+		ctlx = list_entry(entry, hfa384x_usbctlx_t, list);
+
+		/* Call the completion function that this
+		 * command was assigned, assuming it has one.
+		 */
+		if ( ctlx->cmdcb != NULL ) {
+			spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+			ctlx->cmdcb(hw, ctlx);
+			spin_lock_irqsave(&hw->ctlxq.lock, flags);
+
+			/* Make sure we don't try and complete
+			 * this CTLX more than once!
+			 */
+			ctlx->cmdcb = NULL;
+
+			/* Did someone yank the adapter out
+			 * while our list was (briefly) unlocked?
+			 */
+			if ( hw->wlandev->hwremoved )
+			{
+				reap = 0;
+				break;
+			}
+		}
+
+		/*
+		 * "Reapable" CTLXs are ones which don't have any
+		 * threads waiting for them to die. Hence they must
+		 * be delivered to The Reaper!
+		 */
+		if ( ctlx->reapable ) {
+			/* Move the CTLX off the "completing" list (hopefully)
+			 * on to the "reapable" list where the reaper task
+			 * can find it. And "reapable" means that this CTLX
+			 * isn't sitting on a wait-queue somewhere.
+			 */
+			list_move_tail(&ctlx->list, &hw->ctlxq.reapable);
+			reap = 1;
+		}
+
+		complete(&ctlx->done);
+	}
+	spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+
+	if (reap)
+		tasklet_schedule(&hw->reaper_bh);
+
+	DBFEXIT;
+}
+
+/*----------------------------------------------------------------
+* unlocked_usbctlx_cancel_async
+*
+* Mark the CTLX dead asynchronously, and ensure that the
+* next command on the queue is run afterwards.
+*
+* Arguments:
+*	hw	ptr to the hfa384x_t structure
+*	ctlx	ptr to a CTLX structure
+*
+* Returns:
+*	0	the CTLX's URB is inactive
+* -EINPROGRESS	the URB is currently being unlinked
+*
+* Call context:
+*	Either process or interrupt, but presumably interrupt
+----------------------------------------------------------------*/
+static int unlocked_usbctlx_cancel_async(hfa384x_t *hw, hfa384x_usbctlx_t *ctlx)
+{
+	int ret;
+
+	DBFENTER;
+
+	/*
+	 * Try to delete the URB containing our request packet.
+	 * If we succeed, then its completion handler will be
+	 * called with a status of -ECONNRESET.
+	 */
+	hw->ctlx_urb.transfer_flags |= URB_ASYNC_UNLINK;
+	ret = usb_unlink_urb(&hw->ctlx_urb);
+
+	if (ret != -EINPROGRESS) {
+		/*
+		 * The OUT URB had either already completed
+		 * or was still in the pending queue, so the
+		 * URB's completion function will not be called.
+		 * We will have to complete the CTLX ourselves.
+		 */
+		ctlx->state = CTLX_REQ_FAILED;
+		unlocked_usbctlx_complete(hw, ctlx);
+		ret = 0;
+	}
+
+	DBFEXIT;
+
+	return ret;
+}
+
+/*----------------------------------------------------------------
+* unlocked_usbctlx_complete
+*
+* A CTLX has completed.  It may have been successful, it may not
+* have been. At this point, the CTLX should be quiescent.  The URBs
+* aren't active and the timers should have been stopped.
+*
+* The CTLX is migrated to the "completing" queue, and the completing
+* tasklet is scheduled.
+*
+* Arguments:
+*	hw		ptr to a hfa384x_t structure
+*	ctlx		ptr to a ctlx structure
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	Either, assume interrupt
+----------------------------------------------------------------*/
+static void unlocked_usbctlx_complete(hfa384x_t *hw, hfa384x_usbctlx_t *ctlx)
+{
+	DBFENTER;
+
+	/* Timers have been stopped, and ctlx should be in
+	 * a terminal state. Retire it from the "active"
+	 * queue.
+	 */
+	list_move_tail(&ctlx->list, &hw->ctlxq.completing);
+	tasklet_schedule(&hw->completion_bh);
+
+	switch (ctlx->state) {
+	case CTLX_COMPLETE:
+	case CTLX_REQ_FAILED:
+		/* This are the correct terminating states. */
+		break;
+
+	default:
+		WLAN_LOG_ERROR("CTLX[%d] not in a terminating state(%s)\n",
+		               hfa384x2host_16(ctlx->outbuf.type),
+		               ctlxstr(ctlx->state));
+		break;
+	} /* switch */
+
+	DBFEXIT;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_usbctlxq_run
+*
+* Checks to see if the head item is running.  If not, starts it.
+*
+* Arguments:
+*	hw	ptr to hfa384x_t
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	any
+----------------------------------------------------------------*/
+static void
+hfa384x_usbctlxq_run(hfa384x_t	*hw)
+{
+	unsigned long		flags;
+	DBFENTER;
+
+	/* acquire lock */
+	spin_lock_irqsave(&hw->ctlxq.lock, flags);
+
+	/* Only one active CTLX at any one time, because there's no
+	 * other (reliable) way to match the response URB to the
+	 * correct CTLX.
+	 *
+	 * Don't touch any of these CTLXs if the hardware
+	 * has been removed or the USB subsystem is stalled.
+	 */
+	if ( !list_empty(&hw->ctlxq.active) ||
+	     test_bit(WORK_TX_HALT, &hw->usb_flags) ||
+	     hw->wlandev->hwremoved )
+		goto unlock;
+
+	while ( !list_empty(&hw->ctlxq.pending) ) {
+		hfa384x_usbctlx_t	*head;
+		int			result;
+
+		/* This is the first pending command */
+		head = list_entry(hw->ctlxq.pending.next,
+		                  hfa384x_usbctlx_t,
+		                  list);
+
+		/* We need to split this off to avoid a race condition */
+		list_move_tail(&head->list, &hw->ctlxq.active);
+
+		/* Fill the out packet */
+		usb_fill_bulk_urb( &(hw->ctlx_urb), hw->usb,
+		                   hw->endp_out,
+		                   &(head->outbuf), ROUNDUP64(head->outbufsize),
+		                   hfa384x_ctlxout_callback, hw);
+		hw->ctlx_urb.transfer_flags |= USB_QUEUE_BULK;
+
+		/* Now submit the URB and update the CTLX's state
+		 */
+		if ((result = SUBMIT_URB(&hw->ctlx_urb, GFP_ATOMIC)) == 0) {
+			/* This CTLX is now running on the active queue */
+			head->state = CTLX_REQ_SUBMITTED;
+
+			/* Start the OUT wait timer */
+			hw->req_timer_done = 0;
+			hw->reqtimer.expires = jiffies + HZ;
+			add_timer(&hw->reqtimer);
+
+			/* Start the IN wait timer */
+			hw->resp_timer_done = 0;
+			hw->resptimer.expires = jiffies + 2*HZ;
+			add_timer(&hw->resptimer);
+
+			break;
+		}
+
+		if (result == -EPIPE) {
+			/* The OUT pipe needs resetting, so put
+			 * this CTLX back in the "pending" queue
+			 * and schedule a reset ...
+			 */
+			WLAN_LOG_WARNING("%s tx pipe stalled: requesting reset\n",
+			                 hw->wlandev->netdev->name);
+			list_move(&head->list, &hw->ctlxq.pending);
+			set_bit(WORK_TX_HALT, &hw->usb_flags);
+			schedule_work(&hw->usb_work);
+			break;
+		}
+
+		if (result == -ESHUTDOWN) {
+			WLAN_LOG_WARNING("%s urb shutdown!\n",
+					 hw->wlandev->netdev->name);
+			break;
+		}
+
+		WLAN_LOG_ERROR("Failed to submit CTLX[%d]: error=%d\n",
+		               hfa384x2host_16(head->outbuf.type), result);
+		unlocked_usbctlx_complete(hw, head);
+	} /* while */
+
+	unlock:
+	spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_usbin_callback
+*
+* Callback for URBs on the BULKIN endpoint.
+*
+* Arguments:
+*	urb		ptr to the completed urb
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+#ifdef URB_ONLY_CALLBACK
+static void hfa384x_usbin_callback(struct urb *urb)
+#else
+static void hfa384x_usbin_callback(struct urb *urb, struct pt_regs *regs)
+#endif
+{
+	wlandevice_t		*wlandev = urb->context;
+	hfa384x_t		*hw;
+	hfa384x_usbin_t		*usbin = (hfa384x_usbin_t *) urb->transfer_buffer;
+	struct sk_buff          *skb = NULL;
+	int			result;
+	int                     urb_status;
+	UINT16			type;
+
+	enum USBIN_ACTION {
+		HANDLE,
+		RESUBMIT,
+		ABORT
+	} action;
+
+	DBFENTER;
+
+	if ( !wlandev ||
+	     !wlandev->netdev ||
+	     !netif_device_present(wlandev->netdev) )
+		goto exit;
+
+	hw = wlandev->priv;
+	if (!hw)
+		goto exit;
+
+	skb = hw->rx_urb_skb;
+	if (!skb || (skb->data != urb->transfer_buffer)) {
+		BUG();
+	}
+	hw->rx_urb_skb = NULL;
+
+	/* Check for error conditions within the URB */
+	switch (urb->status) {
+	case 0:
+		action = HANDLE;
+
+		/* Check for short packet */
+		if ( urb->actual_length == 0 ) {
+			++(wlandev->linux_stats.rx_errors);
+			++(wlandev->linux_stats.rx_length_errors);
+			action = RESUBMIT;
+		}
+		break;
+
+	case -EPIPE:
+		WLAN_LOG_WARNING("%s rx pipe stalled: requesting reset\n",
+		                 wlandev->netdev->name);
+		if ( !test_and_set_bit(WORK_RX_HALT, &hw->usb_flags) )
+			schedule_work(&hw->usb_work);
+		++(wlandev->linux_stats.rx_errors);
+		action = ABORT;
+		break;
+
+	case -EILSEQ:
+	case -ETIMEDOUT:
+	case -EPROTO:
+		if ( !test_and_set_bit(THROTTLE_RX, &hw->usb_flags) &&
+		     !timer_pending(&hw->throttle) ) {
+			mod_timer(&hw->throttle, jiffies + THROTTLE_JIFFIES);
+		}
+		++(wlandev->linux_stats.rx_errors);
+		action = ABORT;
+		break;
+
+	case -EOVERFLOW:
+		++(wlandev->linux_stats.rx_over_errors);
+		action = RESUBMIT;
+		break;
+
+	case -ENODEV:
+	case -ESHUTDOWN:
+		WLAN_LOG_DEBUG(3,"status=%d, device removed.\n", urb->status);
+		action = ABORT;
+		break;
+
+	case -ENOENT:
+	case -ECONNRESET:
+		WLAN_LOG_DEBUG(3,"status=%d, urb explicitly unlinked.\n", urb->status);
+		action = ABORT;
+		break;
+
+	default:
+		WLAN_LOG_DEBUG(3,"urb status=%d, transfer flags=0x%x\n",
+		                 urb->status, urb->transfer_flags);
+		++(wlandev->linux_stats.rx_errors);
+		action = RESUBMIT;
+		break;
+	}
+
+	urb_status = urb->status;
+
+	if (action != ABORT) {
+		/* Repost the RX URB */
+		result = submit_rx_urb(hw, GFP_ATOMIC);
+
+		if (result != 0) {
+			WLAN_LOG_ERROR(
+				"Fatal, failed to resubmit rx_urb. error=%d\n",
+				result);
+		}
+	}
+
+	/* Handle any USB-IN packet */
+	/* Note: the check of the sw_support field, the type field doesn't
+	 *       have bit 12 set like the docs suggest.
+	 */
+	type = hfa384x2host_16(usbin->type);
+	if (HFA384x_USB_ISRXFRM(type)) {
+		if (action == HANDLE) {
+			if (usbin->txfrm.desc.sw_support == 0x0123) {
+				hfa384x_usbin_txcompl(wlandev, usbin);
+			} else {
+				skb_put(skb, sizeof(*usbin));
+				hfa384x_usbin_rx(wlandev, skb);
+				skb = NULL;
+			}
+		}
+		goto exit;
+	}
+	if (HFA384x_USB_ISTXFRM(type)) {
+		if (action == HANDLE)
+			hfa384x_usbin_txcompl(wlandev, usbin);
+		goto exit;
+	}
+	switch (type) {
+	case HFA384x_USB_INFOFRM:
+		if (action == ABORT)
+			goto exit;
+		if (action == HANDLE)
+			hfa384x_usbin_info(wlandev, usbin);
+		break;
+
+	case HFA384x_USB_CMDRESP:
+	case HFA384x_USB_WRIDRESP:
+	case HFA384x_USB_RRIDRESP:
+	case HFA384x_USB_WMEMRESP:
+	case HFA384x_USB_RMEMRESP:
+		/* ALWAYS, ALWAYS, ALWAYS handle this CTLX!!!! */
+		hfa384x_usbin_ctlx(hw, usbin, urb_status);
+		break;
+
+	case HFA384x_USB_BUFAVAIL:
+		WLAN_LOG_DEBUG(3,"Received BUFAVAIL packet, frmlen=%d\n",
+			usbin->bufavail.frmlen);
+		break;
+
+	case HFA384x_USB_ERROR:
+		WLAN_LOG_DEBUG(3,"Received USB_ERROR packet, errortype=%d\n",
+			usbin->usberror.errortype);
+		break;
+
+	default:
+		WLAN_LOG_DEBUG(3,"Unrecognized USBIN packet, type=%x, status=%d\n",
+			usbin->type, urb_status);
+		break;
+	} /* switch */
+
+exit:
+
+	if (skb)
+		dev_kfree_skb(skb);
+
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_usbin_ctlx
+*
+* We've received a URB containing a Prism2 "response" message.
+* This message needs to be matched up with a CTLX on the active
+* queue and our state updated accordingly.
+*
+* Arguments:
+*	hw		ptr to hfa384x_t
+*	usbin		ptr to USB IN packet
+*	urb_status	status of this Bulk-In URB
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void hfa384x_usbin_ctlx(hfa384x_t *hw, hfa384x_usbin_t *usbin,
+			       int urb_status)
+{
+	hfa384x_usbctlx_t	*ctlx;
+	int			run_queue = 0;
+	unsigned long		flags;
+
+	DBFENTER;
+
+retry:
+	spin_lock_irqsave(&hw->ctlxq.lock, flags);
+
+	/* There can be only one CTLX on the active queue
+	 * at any one time, and this is the CTLX that the
+	 * timers are waiting for.
+	 */
+	if ( list_empty(&hw->ctlxq.active) ) {
+		goto unlock;
+	}
+
+	/* Remove the "response timeout". It's possible that
+	 * we are already too late, and that the timeout is
+	 * already running. And that's just too bad for us,
+	 * because we could lose our CTLX from the active
+	 * queue here ...
+	 */
+	if (del_timer(&hw->resptimer) == 0) {
+		if (hw->resp_timer_done == 0) {
+			spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+			goto retry;
+		}
+	}
+	else {
+		hw->resp_timer_done = 1;
+	}
+
+	ctlx = get_active_ctlx(hw);
+
+	if (urb_status != 0) {
+		/*
+		 * Bad CTLX, so get rid of it. But we only
+		 * remove it from the active queue if we're no
+		 * longer expecting the OUT URB to complete.
+		 */
+		if (unlocked_usbctlx_cancel_async(hw, ctlx) == 0)
+			run_queue = 1;
+	} else {
+		const UINT16 intype = (usbin->type&~host2hfa384x_16(0x8000));
+
+		/*
+		 * Check that our message is what we're expecting ...
+		 */
+		if (ctlx->outbuf.type != intype) {
+			WLAN_LOG_WARNING("Expected IN[%d], received IN[%d] - ignored.\n",
+			                 hfa384x2host_16(ctlx->outbuf.type),
+			                 hfa384x2host_16(intype));
+			goto unlock;
+		}
+
+		/* This URB has succeeded, so grab the data ... */
+		memcpy(&ctlx->inbuf, usbin, sizeof(ctlx->inbuf));
+
+		switch (ctlx->state) {
+		case CTLX_REQ_SUBMITTED:
+			/*
+			 * We have received our response URB before
+			 * our request has been acknowledged. Odd,
+			 * but our OUT URB is still alive...
+			 */
+			WLAN_LOG_DEBUG(0, "Causality violation: please reboot Universe, or email linux-wlan-devel@lists.linux-wlan.com\n");
+			ctlx->state = CTLX_RESP_COMPLETE;
+			break;
+
+		case CTLX_REQ_COMPLETE:
+			/*
+			 * This is the usual path: our request
+			 * has already been acknowledged, and
+			 * now we have received the reply too.
+			 */
+			ctlx->state = CTLX_COMPLETE;
+			unlocked_usbctlx_complete(hw, ctlx);
+			run_queue = 1;
+			break;
+
+		default:
+			/*
+			 * Throw this CTLX away ...
+			 */
+			WLAN_LOG_ERROR("Matched IN URB, CTLX[%d] in invalid state(%s)."
+			               " Discarded.\n",
+			               hfa384x2host_16(ctlx->outbuf.type),
+			               ctlxstr(ctlx->state));
+			if (unlocked_usbctlx_cancel_async(hw, ctlx) == 0)
+				run_queue = 1;
+			break;
+		} /* switch */
+	}
+
+unlock:
+	spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+
+	if (run_queue)
+		hfa384x_usbctlxq_run(hw);
+
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_usbin_txcompl
+*
+* At this point we have the results of a previous transmit.
+*
+* Arguments:
+*	wlandev		wlan device
+*	usbin		ptr to the usb transfer buffer
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void hfa384x_usbin_txcompl(wlandevice_t *wlandev, hfa384x_usbin_t *usbin)
+{
+	UINT16			status;
+	DBFENTER;
+
+	status = hfa384x2host_16(usbin->type); /* yeah I know it says type...*/
+
+	/* Was there an error? */
+	if (HFA384x_TXSTATUS_ISERROR(status)) {
+		prism2sta_ev_txexc(wlandev, status);
+	} else {
+		prism2sta_ev_tx(wlandev, status);
+	}
+	// prism2sta_ev_alloc(wlandev);
+
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_usbin_rx
+*
+* At this point we have a successful received a rx frame packet.
+*
+* Arguments:
+*	wlandev		wlan device
+*	usbin		ptr to the usb transfer buffer
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void hfa384x_usbin_rx(wlandevice_t *wlandev, struct sk_buff *skb)
+{
+	hfa384x_usbin_t         *usbin = (hfa384x_usbin_t *) skb->data;
+	hfa384x_t               *hw = wlandev->priv;
+	int                     hdrlen;
+	p80211_rxmeta_t         *rxmeta;
+	UINT16                  data_len;
+	UINT16                  fc;
+
+	DBFENTER;
+
+	/* Byte order convert once up front. */
+	usbin->rxfrm.desc.status =
+		hfa384x2host_16(usbin->rxfrm.desc.status);
+	usbin->rxfrm.desc.time =
+		hfa384x2host_32(usbin->rxfrm.desc.time);
+
+	/* Now handle frame based on port# */
+	switch( HFA384x_RXSTATUS_MACPORT_GET(usbin->rxfrm.desc.status) )
+	{
+	case 0:
+		fc = ieee2host16(usbin->rxfrm.desc.frame_control);
+
+		/* If exclude and we receive an unencrypted, drop it */
+		if ( (wlandev->hostwep & HOSTWEP_EXCLUDEUNENCRYPTED) &&
+		     !WLAN_GET_FC_ISWEP(fc)){
+			goto done;
+		}
+
+		data_len = hfa384x2host_16(usbin->rxfrm.desc.data_len);
+
+		/* How much header data do we have? */
+		hdrlen = p80211_headerlen(fc);
+
+		/* Pull off the descriptor */
+		skb_pull(skb, sizeof(hfa384x_rx_frame_t));
+
+		/* Now shunt the header block up against the data block
+		 * with an "overlapping" copy
+		 */
+		memmove(skb_push(skb, hdrlen),
+		        &usbin->rxfrm.desc.frame_control,
+		        hdrlen);
+
+		skb->dev = wlandev->netdev;
+		skb->dev->last_rx = jiffies;
+
+		/* And set the frame length properly */
+		skb_trim(skb, data_len + hdrlen);
+
+		/* The prism2 series does not return the CRC */
+		memset(skb_put(skb, WLAN_CRC_LEN), 0xff, WLAN_CRC_LEN);
+
+		skb_reset_mac_header(skb);
+
+		/* Attach the rxmeta, set some stuff */
+		p80211skb_rxmeta_attach(wlandev, skb);
+		rxmeta = P80211SKB_RXMETA(skb);
+		rxmeta->mactime = usbin->rxfrm.desc.time;
+		rxmeta->rxrate = usbin->rxfrm.desc.rate;
+		rxmeta->signal = usbin->rxfrm.desc.signal - hw->dbmadjust;
+		rxmeta->noise = usbin->rxfrm.desc.silence - hw->dbmadjust;
+
+		prism2sta_ev_rx(wlandev, skb);
+
+		break;
+
+	case 7:
+		if ( ! HFA384x_RXSTATUS_ISFCSERR(usbin->rxfrm.desc.status) ) {
+			/* Copy to wlansnif skb */
+			hfa384x_int_rxmonitor( wlandev, &usbin->rxfrm);
+			dev_kfree_skb(skb);
+		} else {
+			WLAN_LOG_DEBUG(3,"Received monitor frame: FCSerr set\n");
+		}
+		break;
+
+	default:
+		WLAN_LOG_WARNING("Received frame on unsupported port=%d\n",
+			HFA384x_RXSTATUS_MACPORT_GET(usbin->rxfrm.desc.status) );
+		goto done;
+		break;
+	}
+
+done:
+	DBFEXIT;
+	return;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_int_rxmonitor
+*
+* Helper function for int_rx.  Handles monitor frames.
+* Note that this function allocates space for the FCS and sets it
+* to 0xffffffff.  The hfa384x doesn't give us the FCS value but the
+* higher layers expect it.  0xffffffff is used as a flag to indicate
+* the FCS is bogus.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	rxfrm		rx descriptor read from card in int_rx
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*	Allocates an skb and passes it up via the PF_PACKET interface.
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void hfa384x_int_rxmonitor( wlandevice_t *wlandev, hfa384x_usb_rxfrm_t *rxfrm)
+{
+	hfa384x_rx_frame_t              *rxdesc = &(rxfrm->desc);
+	UINT				hdrlen = 0;
+	UINT				datalen = 0;
+	UINT				skblen = 0;
+	p80211msg_lnxind_wlansniffrm_t	*msg;
+	UINT8				*datap;
+	UINT16				fc;
+	struct sk_buff			*skb;
+	hfa384x_t		        *hw = wlandev->priv;
+
+
+	DBFENTER;
+	/* Don't forget the status, time, and data_len fields are in host order */
+	/* Figure out how big the frame is */
+	fc = ieee2host16(rxdesc->frame_control);
+	hdrlen = p80211_headerlen(fc);
+	datalen = hfa384x2host_16(rxdesc->data_len);
+
+	/* Allocate an ind message+framesize skb */
+	skblen = sizeof(p80211msg_lnxind_wlansniffrm_t) +
+		hdrlen + datalen + WLAN_CRC_LEN;
+
+	/* sanity check the length */
+	if ( skblen >
+		(sizeof(p80211msg_lnxind_wlansniffrm_t) +
+		WLAN_HDR_A4_LEN + WLAN_DATA_MAXLEN + WLAN_CRC_LEN) ) {
+		WLAN_LOG_DEBUG(1, "overlen frm: len=%zd\n",
+			skblen - sizeof(p80211msg_lnxind_wlansniffrm_t));
+	}
+
+	if ( (skb = dev_alloc_skb(skblen)) == NULL ) {
+		WLAN_LOG_ERROR("alloc_skb failed trying to allocate %d bytes\n", skblen);
+		return;
+	}
+
+	/* only prepend the prism header if in the right mode */
+	if ((wlandev->netdev->type == ARPHRD_IEEE80211_PRISM) &&
+	    (hw->sniffhdr == 0)) {
+		datap = skb_put(skb, sizeof(p80211msg_lnxind_wlansniffrm_t));
+		msg = (p80211msg_lnxind_wlansniffrm_t*) datap;
+
+		/* Initialize the message members */
+		msg->msgcode = DIDmsg_lnxind_wlansniffrm;
+		msg->msglen = sizeof(p80211msg_lnxind_wlansniffrm_t);
+		strcpy(msg->devname, wlandev->name);
+
+		msg->hosttime.did = DIDmsg_lnxind_wlansniffrm_hosttime;
+		msg->hosttime.status = 0;
+		msg->hosttime.len = 4;
+		msg->hosttime.data = jiffies;
+
+		msg->mactime.did = DIDmsg_lnxind_wlansniffrm_mactime;
+		msg->mactime.status = 0;
+		msg->mactime.len = 4;
+		msg->mactime.data = rxdesc->time;
+
+		msg->channel.did = DIDmsg_lnxind_wlansniffrm_channel;
+		msg->channel.status = 0;
+		msg->channel.len = 4;
+		msg->channel.data = hw->sniff_channel;
+
+		msg->rssi.did = DIDmsg_lnxind_wlansniffrm_rssi;
+		msg->rssi.status = P80211ENUM_msgitem_status_no_value;
+		msg->rssi.len = 4;
+		msg->rssi.data = 0;
+
+		msg->sq.did = DIDmsg_lnxind_wlansniffrm_sq;
+		msg->sq.status = P80211ENUM_msgitem_status_no_value;
+		msg->sq.len = 4;
+		msg->sq.data = 0;
+
+		msg->signal.did = DIDmsg_lnxind_wlansniffrm_signal;
+		msg->signal.status = 0;
+		msg->signal.len = 4;
+		msg->signal.data = rxdesc->signal;
+
+		msg->noise.did = DIDmsg_lnxind_wlansniffrm_noise;
+		msg->noise.status = 0;
+		msg->noise.len = 4;
+		msg->noise.data = rxdesc->silence;
+
+		msg->rate.did = DIDmsg_lnxind_wlansniffrm_rate;
+		msg->rate.status = 0;
+		msg->rate.len = 4;
+		msg->rate.data = rxdesc->rate / 5; /* set to 802.11 units */
+
+		msg->istx.did = DIDmsg_lnxind_wlansniffrm_istx;
+		msg->istx.status = 0;
+		msg->istx.len = 4;
+		msg->istx.data = P80211ENUM_truth_false;
+
+		msg->frmlen.did = DIDmsg_lnxind_wlansniffrm_frmlen;
+		msg->frmlen.status = 0;
+		msg->frmlen.len = 4;
+		msg->frmlen.data = hdrlen + datalen + WLAN_CRC_LEN;
+	} else if ((wlandev->netdev->type == ARPHRD_IEEE80211_PRISM) &&
+		   (hw->sniffhdr != 0)) {
+		p80211_caphdr_t		*caphdr;
+		/* The NEW header format! */
+		datap = skb_put(skb, sizeof(p80211_caphdr_t));
+		caphdr = (p80211_caphdr_t*) datap;
+
+		caphdr->version =	htonl(P80211CAPTURE_VERSION);
+		caphdr->length =	htonl(sizeof(p80211_caphdr_t));
+		caphdr->mactime =	__cpu_to_be64(rxdesc->time) * 1000;
+		caphdr->hosttime =	__cpu_to_be64(jiffies);
+		caphdr->phytype =	htonl(4); /* dss_dot11_b */
+		caphdr->channel =	htonl(hw->sniff_channel);
+		caphdr->datarate =	htonl(rxdesc->rate);
+		caphdr->antenna =	htonl(0); /* unknown */
+		caphdr->priority =	htonl(0); /* unknown */
+		caphdr->ssi_type =	htonl(3); /* rssi_raw */
+		caphdr->ssi_signal =	htonl(rxdesc->signal);
+		caphdr->ssi_noise =	htonl(rxdesc->silence);
+		caphdr->preamble =	htonl(0); /* unknown */
+		caphdr->encoding =	htonl(1); /* cck */
+	}
+
+	/* Copy the 802.11 header to the skb (ctl frames may be less than a full header) */
+	datap = skb_put(skb, hdrlen);
+	memcpy( datap, &(rxdesc->frame_control), hdrlen);
+
+	/* If any, copy the data from the card to the skb */
+	if ( datalen > 0 )
+	{
+		datap = skb_put(skb, datalen);
+		memcpy(datap, rxfrm->data, datalen);
+
+		/* check for unencrypted stuff if WEP bit set. */
+		if (*(datap - hdrlen + 1) & 0x40) // wep set
+		  if ((*(datap) == 0xaa) && (*(datap+1) == 0xaa))
+		    *(datap - hdrlen + 1) &= 0xbf; // clear wep; it's the 802.2 header!
+	}
+
+	if (hw->sniff_fcs) {
+		/* Set the FCS */
+		datap = skb_put(skb, WLAN_CRC_LEN);
+		memset( datap, 0xff, WLAN_CRC_LEN);
+	}
+
+	/* pass it back up */
+	prism2sta_ev_rx(wlandev, skb);
+
+	DBFEXIT;
+	return;
+}
+
+
+
+/*----------------------------------------------------------------
+* hfa384x_usbin_info
+*
+* At this point we have a successful received a Prism2 info frame.
+*
+* Arguments:
+*	wlandev		wlan device
+*	usbin		ptr to the usb transfer buffer
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void hfa384x_usbin_info(wlandevice_t *wlandev, hfa384x_usbin_t *usbin)
+{
+	DBFENTER;
+
+	usbin->infofrm.info.framelen = hfa384x2host_16(usbin->infofrm.info.framelen);
+	prism2sta_ev_info(wlandev, &usbin->infofrm.info);
+
+	DBFEXIT;
+}
+
+
+
+/*----------------------------------------------------------------
+* hfa384x_usbout_callback
+*
+* Callback for URBs on the BULKOUT endpoint.
+*
+* Arguments:
+*	urb		ptr to the completed urb
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+#ifdef URB_ONLY_CALLBACK
+static void hfa384x_usbout_callback(struct urb *urb)
+#else
+static void hfa384x_usbout_callback(struct urb *urb, struct pt_regs *regs)
+#endif
+{
+	wlandevice_t		*wlandev = urb->context;
+	hfa384x_usbout_t	*usbout = urb->transfer_buffer;
+	DBFENTER;
+
+#ifdef DEBUG_USB
+	dbprint_urb(urb);
+#endif
+
+	if ( wlandev &&
+	     wlandev->netdev ) {
+
+		switch(urb->status) {
+		case 0:
+			hfa384x_usbout_tx(wlandev, usbout);
+			break;
+
+		case -EPIPE:
+		{
+			hfa384x_t *hw = wlandev->priv;
+			WLAN_LOG_WARNING("%s tx pipe stalled: requesting reset\n",
+			                 wlandev->netdev->name);
+			if ( !test_and_set_bit(WORK_TX_HALT, &hw->usb_flags) )
+				schedule_work(&hw->usb_work);
+			++(wlandev->linux_stats.tx_errors);
+			break;
+		}
+
+		case -EPROTO:
+		case -ETIMEDOUT:
+		case -EILSEQ:
+		{
+			hfa384x_t *hw = wlandev->priv;
+
+			if ( !test_and_set_bit(THROTTLE_TX, &hw->usb_flags)
+			     && !timer_pending(&hw->throttle) ) {
+				mod_timer(&hw->throttle,
+				          jiffies + THROTTLE_JIFFIES);
+			}
+			++(wlandev->linux_stats.tx_errors);
+			netif_stop_queue(wlandev->netdev);
+			break;
+		}
+
+		case -ENOENT:
+		case -ESHUTDOWN:
+			/* Ignorable errors */
+			break;
+
+		default:
+			WLAN_LOG_INFO("unknown urb->status=%d\n", urb->status);
+			++(wlandev->linux_stats.tx_errors);
+			break;
+		} /* switch */
+	}
+
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_ctlxout_callback
+*
+* Callback for control data on the BULKOUT endpoint.
+*
+* Arguments:
+*	urb		ptr to the completed urb
+*
+* Returns:
+* nothing
+*
+* Side effects:
+*
+* Call context:
+* interrupt
+----------------------------------------------------------------*/
+#ifdef URB_ONLY_CALLBACK
+static void hfa384x_ctlxout_callback(struct urb *urb)
+#else
+static void hfa384x_ctlxout_callback(struct urb *urb, struct pt_regs *regs)
+#endif
+{
+	hfa384x_t	*hw = urb->context;
+	int             delete_resptimer = 0;
+	int             timer_ok = 1;
+	int		run_queue = 0;
+	hfa384x_usbctlx_t	*ctlx;
+	unsigned long	flags;
+
+	DBFENTER;
+
+	WLAN_LOG_DEBUG(3,"urb->status=%d\n", urb->status);
+#ifdef DEBUG_USB
+	dbprint_urb(urb);
+#endif
+	if ( (urb->status == -ESHUTDOWN) ||
+	     (urb->status == -ENODEV) ||
+	     (hw == NULL) )
+		goto done;
+
+retry:
+	spin_lock_irqsave(&hw->ctlxq.lock, flags);
+
+	/*
+	 * Only one CTLX at a time on the "active" list, and
+	 * none at all if we are unplugged. However, we can
+	 * rely on the disconnect function to clean everything
+	 * up if someone unplugged the adapter.
+	 */
+	if ( list_empty(&hw->ctlxq.active) ) {
+		spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+		goto done;
+	}
+
+	/*
+	 * Having something on the "active" queue means
+	 * that we have timers to worry about ...
+	 */
+	if (del_timer(&hw->reqtimer) == 0) {
+		if (hw->req_timer_done == 0) {
+			/*
+			 * This timer was actually running while we
+			 * were trying to delete it. Let it terminate
+			 * gracefully instead.
+			 */
+			spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+			goto retry;
+		}
+	}
+	else {
+		hw->req_timer_done = 1;
+	}
+
+	ctlx = get_active_ctlx(hw);
+
+	if ( urb->status == 0 ) {
+		/* Request portion of a CTLX is successful */
+		switch ( ctlx->state ) {
+		case CTLX_REQ_SUBMITTED:
+			/* This OUT-ACK received before IN */
+			ctlx->state = CTLX_REQ_COMPLETE;
+			break;
+
+		case CTLX_RESP_COMPLETE:
+			/* IN already received before this OUT-ACK,
+			 * so this command must now be complete.
+			 */
+			ctlx->state = CTLX_COMPLETE;
+			unlocked_usbctlx_complete(hw, ctlx);
+			run_queue = 1;
+			break;
+
+		default:
+			/* This is NOT a valid CTLX "success" state! */
+			WLAN_LOG_ERROR(
+			    "Illegal CTLX[%d] success state(%s, %d) in OUT URB\n",
+			    hfa384x2host_16(ctlx->outbuf.type),
+			    ctlxstr(ctlx->state), urb->status);
+			break;
+		} /* switch */
+	} else {
+		/* If the pipe has stalled then we need to reset it */
+		if ( (urb->status == -EPIPE) &&
+		      !test_and_set_bit(WORK_TX_HALT, &hw->usb_flags) ) {
+			WLAN_LOG_WARNING("%s tx pipe stalled: requesting reset\n",
+			                 hw->wlandev->netdev->name);
+			schedule_work(&hw->usb_work);
+		}
+
+		/* If someone cancels the OUT URB then its status
+		 * should be either -ECONNRESET or -ENOENT.
+		 */
+		ctlx->state = CTLX_REQ_FAILED;
+		unlocked_usbctlx_complete(hw, ctlx);
+		delete_resptimer = 1;
+		run_queue = 1;
+	}
+
+ delresp:
+	if (delete_resptimer) {
+		if ((timer_ok = del_timer(&hw->resptimer)) != 0) {
+			hw->resp_timer_done = 1;
+		}
+	}
+
+	spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+
+	if ( !timer_ok && (hw->resp_timer_done == 0) ) {
+		spin_lock_irqsave(&hw->ctlxq.lock, flags);
+		goto delresp;
+	}
+
+	if (run_queue)
+		hfa384x_usbctlxq_run(hw);
+
+ done:
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_usbctlx_reqtimerfn
+*
+* Timer response function for CTLX request timeouts.  If this
+* function is called, it means that the callback for the OUT
+* URB containing a Prism2.x XXX_Request was never called.
+*
+* Arguments:
+*	data		a ptr to the hfa384x_t
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void
+hfa384x_usbctlx_reqtimerfn(unsigned long data)
+{
+	hfa384x_t	*hw = (hfa384x_t*)data;
+	unsigned long   flags;
+	DBFENTER;
+
+	spin_lock_irqsave(&hw->ctlxq.lock, flags);
+
+	hw->req_timer_done = 1;
+
+	/* Removing the hardware automatically empties
+	 * the active list ...
+	 */
+	if ( !list_empty(&hw->ctlxq.active) )
+	{
+		/*
+		 * We must ensure that our URB is removed from
+		 * the system, if it hasn't already expired.
+		 */
+		hw->ctlx_urb.transfer_flags |= URB_ASYNC_UNLINK;
+		if (usb_unlink_urb(&hw->ctlx_urb) == -EINPROGRESS)
+		{
+			hfa384x_usbctlx_t *ctlx = get_active_ctlx(hw);
+
+			ctlx->state = CTLX_REQ_FAILED;
+
+			/* This URB was active, but has now been
+			 * cancelled. It will now have a status of
+			 * -ECONNRESET in the callback function.
+			 *
+			 * We are cancelling this CTLX, so we're
+			 * not going to need to wait for a response.
+			 * The URB's callback function will check
+			 * that this timer is truly dead.
+			 */
+			if (del_timer(&hw->resptimer) != 0)
+				hw->resp_timer_done = 1;
+		}
+	}
+
+	spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_usbctlx_resptimerfn
+*
+* Timer response function for CTLX response timeouts.  If this
+* function is called, it means that the callback for the IN
+* URB containing a Prism2.x XXX_Response was never called.
+*
+* Arguments:
+*	data		a ptr to the hfa384x_t
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void
+hfa384x_usbctlx_resptimerfn(unsigned long data)
+{
+	hfa384x_t *hw = (hfa384x_t*)data;
+	unsigned long   flags;
+
+	DBFENTER;
+
+	spin_lock_irqsave(&hw->ctlxq.lock, flags);
+
+	hw->resp_timer_done = 1;
+
+	/* The active list will be empty if the
+	 * adapter has been unplugged ...
+	 */
+	if ( !list_empty(&hw->ctlxq.active) )
+	{
+		hfa384x_usbctlx_t *ctlx = get_active_ctlx(hw);
+
+		if ( unlocked_usbctlx_cancel_async(hw, ctlx) == 0 )
+		{
+			spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+			hfa384x_usbctlxq_run(hw);
+			goto done;
+		}
+	}
+
+	spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+
+ done:
+	DBFEXIT;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_usb_throttlefn
+*
+*
+* Arguments:
+*	data	ptr to hw
+*
+* Returns:
+*	Nothing
+*
+* Side effects:
+*
+* Call context:
+*	Interrupt
+----------------------------------------------------------------*/
+static void
+hfa384x_usb_throttlefn(unsigned long data)
+{
+	hfa384x_t *hw = (hfa384x_t*)data;
+	unsigned long   flags;
+
+	DBFENTER;
+
+	spin_lock_irqsave(&hw->ctlxq.lock, flags);
+
+	/*
+	 * We need to check BOTH the RX and the TX throttle controls,
+	 * so we use the bitwise OR instead of the logical OR.
+	 */
+	WLAN_LOG_DEBUG(3, "flags=0x%lx\n", hw->usb_flags);
+	if ( !hw->wlandev->hwremoved &&
+	     (
+	       (test_and_clear_bit(THROTTLE_RX, &hw->usb_flags) &&
+	       !test_and_set_bit(WORK_RX_RESUME, &hw->usb_flags))
+	       |
+	       (test_and_clear_bit(THROTTLE_TX, &hw->usb_flags) &&
+	        !test_and_set_bit(WORK_TX_RESUME, &hw->usb_flags))
+	     ) )
+	{
+		schedule_work(&hw->usb_work);
+	}
+
+	spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_usbctlx_submit
+*
+* Called from the doxxx functions to submit a CTLX to the queue
+*
+* Arguments:
+*	hw		ptr to the hw struct
+*	ctlx		ctlx structure to enqueue
+*
+* Returns:
+*	-ENODEV if the adapter is unplugged
+*	0
+*
+* Side effects:
+*
+* Call context:
+*	process or interrupt
+----------------------------------------------------------------*/
+static int
+hfa384x_usbctlx_submit(
+	hfa384x_t		*hw,
+	hfa384x_usbctlx_t	*ctlx)
+{
+	unsigned long flags;
+	int ret;
+
+	DBFENTER;
+
+	spin_lock_irqsave(&hw->ctlxq.lock, flags);
+
+	if (hw->wlandev->hwremoved) {
+		spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+		ret = -ENODEV;
+	} else {
+		ctlx->state = CTLX_PENDING;
+		list_add_tail(&ctlx->list, &hw->ctlxq.pending);
+
+		spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+		hfa384x_usbctlxq_run(hw);
+		ret = 0;
+	}
+
+	DBFEXIT;
+	return ret;
+}
+
+
+/*----------------------------------------------------------------
+* hfa384x_usbout_tx
+*
+* At this point we have finished a send of a frame.  Mark the URB
+* as available and call ev_alloc to notify higher layers we're
+* ready for more.
+*
+* Arguments:
+*	wlandev		wlan device
+*	usbout		ptr to the usb transfer buffer
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void hfa384x_usbout_tx(wlandevice_t *wlandev, hfa384x_usbout_t *usbout)
+{
+	DBFENTER;
+
+	prism2sta_ev_alloc(wlandev);
+
+	DBFEXIT;
+}
+
+/*----------------------------------------------------------------
+* hfa384x_isgood_pdrcore
+*
+* Quick check of PDR codes.
+*
+* Arguments:
+*	pdrcode		PDR code number (host order)
+*
+* Returns:
+*	zero		not good.
+*	one		is good.
+*
+* Side effects:
+*
+* Call context:
+----------------------------------------------------------------*/
+static int
+hfa384x_isgood_pdrcode(UINT16 pdrcode)
+{
+	switch(pdrcode) {
+	case HFA384x_PDR_END_OF_PDA:
+	case HFA384x_PDR_PCB_PARTNUM:
+	case HFA384x_PDR_PDAVER:
+	case HFA384x_PDR_NIC_SERIAL:
+	case HFA384x_PDR_MKK_MEASUREMENTS:
+	case HFA384x_PDR_NIC_RAMSIZE:
+	case HFA384x_PDR_MFISUPRANGE:
+	case HFA384x_PDR_CFISUPRANGE:
+	case HFA384x_PDR_NICID:
+	case HFA384x_PDR_MAC_ADDRESS:
+	case HFA384x_PDR_REGDOMAIN:
+	case HFA384x_PDR_ALLOWED_CHANNEL:
+	case HFA384x_PDR_DEFAULT_CHANNEL:
+	case HFA384x_PDR_TEMPTYPE:
+	case HFA384x_PDR_IFR_SETTING:
+	case HFA384x_PDR_RFR_SETTING:
+	case HFA384x_PDR_HFA3861_BASELINE:
+	case HFA384x_PDR_HFA3861_SHADOW:
+	case HFA384x_PDR_HFA3861_IFRF:
+	case HFA384x_PDR_HFA3861_CHCALSP:
+	case HFA384x_PDR_HFA3861_CHCALI:
+	case HFA384x_PDR_3842_NIC_CONFIG:
+	case HFA384x_PDR_USB_ID:
+	case HFA384x_PDR_PCI_ID:
+	case HFA384x_PDR_PCI_IFCONF:
+	case HFA384x_PDR_PCI_PMCONF:
+	case HFA384x_PDR_RFENRGY:
+	case HFA384x_PDR_HFA3861_MANF_TESTSP:
+	case HFA384x_PDR_HFA3861_MANF_TESTI:
+		/* code is OK */
+		return 1;
+		break;
+	default:
+		if ( pdrcode < 0x1000 ) {
+			/* code is OK, but we don't know exactly what it is */
+			WLAN_LOG_DEBUG(3,
+				"Encountered unknown PDR#=0x%04x, "
+				"assuming it's ok.\n",
+				pdrcode);
+			return 1;
+		} else {
+			/* bad code */
+			WLAN_LOG_DEBUG(3,
+				"Encountered unknown PDR#=0x%04x, "
+				"(>=0x1000), assuming it's bad.\n",
+				pdrcode);
+			return 0;
+		}
+		break;
+	}
+	return 0; /* avoid compiler warnings */
+}
+
diff --git a/drivers/staging/wlan-ng/p80211conv.c b/drivers/staging/wlan-ng/p80211conv.c
new file mode 100644
index 0000000..68121b9
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211conv.c
@@ -0,0 +1,683 @@
+/* src/p80211/p80211conv.c
+*
+* Ether/802.11 conversions and packet buffer routines
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* This file defines the functions that perform Ethernet to/from
+* 802.11 frame conversions.
+*
+* --------------------------------------------------------------------
+*/
+/*================================================================*/
+/* System Includes */
+
+#define __NO_VERSION__		/* prevent the static definition */
+
+
+#include <linux/version.h>
+
+#include <linux/module.h>
+#include <linux/kernel.h>
+#include <linux/sched.h>
+#include <linux/types.h>
+#include <linux/skbuff.h>
+#include <linux/slab.h>
+#include <linux/wireless.h>
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/if_ether.h>
+
+#include <asm/byteorder.h>
+
+#include "version.h"
+#include "wlan_compat.h"
+
+/*================================================================*/
+/* Project Includes */
+
+#include "p80211types.h"
+#include "p80211hdr.h"
+#include "p80211conv.h"
+#include "p80211mgmt.h"
+#include "p80211msg.h"
+#include "p80211netdev.h"
+#include "p80211ioctl.h"
+#include "p80211req.h"
+
+
+/*================================================================*/
+/* Local Constants */
+
+/*================================================================*/
+/* Local Macros */
+
+
+/*================================================================*/
+/* Local Types */
+
+
+/*================================================================*/
+/* Local Static Definitions */
+
+static UINT8	oui_rfc1042[] = {0x00, 0x00, 0x00};
+static UINT8	oui_8021h[] = {0x00, 0x00, 0xf8};
+
+/*================================================================*/
+/* Local Function Declarations */
+
+
+/*================================================================*/
+/* Function Definitions */
+
+/*----------------------------------------------------------------
+* p80211pb_ether_to_80211
+*
+* Uses the contents of the ether frame and the etherconv setting
+* to build the elements of the 802.11 frame.
+*
+* We don't actually set
+* up the frame header here.  That's the MAC's job.  We're only handling
+* conversion of DIXII or 802.3+LLC frames to something that works
+* with 802.11.
+*
+* Note -- 802.11 header is NOT part of the skb.  Likewise, the 802.11
+*         FCS is also not present and will need to be added elsewhere.
+*
+* Arguments:
+*	ethconv		Conversion type to perform
+*	skb		skbuff containing the ether frame
+*       p80211_hdr      802.11 header
+*
+* Returns:
+*	0 on success, non-zero otherwise
+*
+* Call context:
+*	May be called in interrupt or non-interrupt context
+----------------------------------------------------------------*/
+int skb_ether_to_p80211( wlandevice_t *wlandev, UINT32 ethconv, struct sk_buff *skb, p80211_hdr_t *p80211_hdr, p80211_metawep_t *p80211_wep)
+{
+
+	UINT16          fc;
+	UINT16          proto;
+	wlan_ethhdr_t   e_hdr;
+	wlan_llc_t      *e_llc;
+	wlan_snap_t     *e_snap;
+	int foo;
+
+	DBFENTER;
+	memcpy(&e_hdr, skb->data, sizeof(e_hdr));
+
+	if (skb->len <= 0) {
+		WLAN_LOG_DEBUG(1, "zero-length skb!\n");
+		return 1;
+	}
+
+	if ( ethconv == WLAN_ETHCONV_ENCAP ) { /* simplest case */
+	        WLAN_LOG_DEBUG(3, "ENCAP len: %d\n", skb->len);
+		/* here, we don't care what kind of ether frm. Just stick it */
+		/*  in the 80211 payload */
+		/* which is to say, leave the skb alone. */
+	} else {
+		/* step 1: classify ether frame, DIX or 802.3? */
+		proto = ntohs(e_hdr.type);
+		if ( proto <= 1500 ) {
+		        WLAN_LOG_DEBUG(3, "802.3 len: %d\n", skb->len);
+                        /* codes <= 1500 reserved for 802.3 lengths */
+			/* it's 802.3, pass ether payload unchanged,  */
+
+			/* trim off ethernet header */
+			skb_pull(skb, WLAN_ETHHDR_LEN);
+
+			/*   leave off any PAD octets.  */
+			skb_trim(skb, proto);
+		} else {
+		        WLAN_LOG_DEBUG(3, "DIXII len: %d\n", skb->len);
+			/* it's DIXII, time for some conversion */
+
+			/* trim off ethernet header */
+			skb_pull(skb, WLAN_ETHHDR_LEN);
+
+			/* tack on SNAP */
+			e_snap = (wlan_snap_t *) skb_push(skb, sizeof(wlan_snap_t));
+			e_snap->type = htons(proto);
+			if ( ethconv == WLAN_ETHCONV_8021h && p80211_stt_findproto(proto) ) {
+				memcpy( e_snap->oui, oui_8021h, WLAN_IEEE_OUI_LEN);
+			} else {
+				memcpy( e_snap->oui, oui_rfc1042, WLAN_IEEE_OUI_LEN);
+			}
+
+			/* tack on llc */
+			e_llc = (wlan_llc_t *) skb_push(skb, sizeof(wlan_llc_t));
+			e_llc->dsap = 0xAA;	/* SNAP, see IEEE 802 */
+			e_llc->ssap = 0xAA;
+			e_llc->ctl = 0x03;
+
+		}
+	}
+
+	/* Set up the 802.11 header */
+	/* It's a data frame */
+	fc = host2ieee16( WLAN_SET_FC_FTYPE(WLAN_FTYPE_DATA) |
+			  WLAN_SET_FC_FSTYPE(WLAN_FSTYPE_DATAONLY));
+
+	switch ( wlandev->macmode ) {
+	case WLAN_MACMODE_IBSS_STA:
+		memcpy(p80211_hdr->a3.a1, &e_hdr.daddr, WLAN_ADDR_LEN);
+		memcpy(p80211_hdr->a3.a2, wlandev->netdev->dev_addr, WLAN_ADDR_LEN);
+		memcpy(p80211_hdr->a3.a3, wlandev->bssid, WLAN_ADDR_LEN);
+		break;
+	case WLAN_MACMODE_ESS_STA:
+		fc |= host2ieee16(WLAN_SET_FC_TODS(1));
+		memcpy(p80211_hdr->a3.a1, wlandev->bssid, WLAN_ADDR_LEN);
+		memcpy(p80211_hdr->a3.a2, wlandev->netdev->dev_addr, WLAN_ADDR_LEN);
+		memcpy(p80211_hdr->a3.a3, &e_hdr.daddr, WLAN_ADDR_LEN);
+		break;
+	case WLAN_MACMODE_ESS_AP:
+		fc |= host2ieee16(WLAN_SET_FC_FROMDS(1));
+		memcpy(p80211_hdr->a3.a1, &e_hdr.daddr, WLAN_ADDR_LEN);
+		memcpy(p80211_hdr->a3.a2, wlandev->bssid, WLAN_ADDR_LEN);
+		memcpy(p80211_hdr->a3.a3, &e_hdr.saddr, WLAN_ADDR_LEN);
+		break;
+	default:
+		WLAN_LOG_ERROR("Error: Converting eth to wlan in unknown mode.\n");
+		return 1;
+		break;
+	}
+
+	p80211_wep->data = NULL;
+
+	if ((wlandev->hostwep & HOSTWEP_PRIVACYINVOKED) && (wlandev->hostwep & HOSTWEP_ENCRYPT)) {
+		// XXXX need to pick keynum other than default?
+
+#if 1
+		p80211_wep->data = kmalloc(skb->len, GFP_ATOMIC);
+#else
+		p80211_wep->data = skb->data;
+#endif
+
+		if ((foo = wep_encrypt(wlandev, skb->data, p80211_wep->data,
+				       skb->len,
+				(wlandev->hostwep & HOSTWEP_DEFAULTKEY_MASK),
+				p80211_wep->iv, p80211_wep->icv))) {
+			WLAN_LOG_WARNING("Host en-WEP failed, dropping frame (%d).\n", foo);
+			return 2;
+		}
+		fc |= host2ieee16(WLAN_SET_FC_ISWEP(1));
+	}
+
+
+	//	skb->nh.raw = skb->data;
+
+	p80211_hdr->a3.fc = fc;
+	p80211_hdr->a3.dur = 0;
+	p80211_hdr->a3.seq = 0;
+
+	DBFEXIT;
+	return 0;
+}
+
+/* jkriegl: from orinoco, modified */
+static void orinoco_spy_gather(wlandevice_t *wlandev, char *mac,
+			       p80211_rxmeta_t *rxmeta)
+{
+        int i;
+
+        /* Gather wireless spy statistics: for each packet, compare the
+         * source address with out list, and if match, get the stats... */
+
+        for (i = 0; i < wlandev->spy_number; i++) {
+
+                if (!memcmp(wlandev->spy_address[i], mac, ETH_ALEN)) {
+			memcpy(wlandev->spy_address[i], mac, ETH_ALEN);
+                        wlandev->spy_stat[i].level = rxmeta->signal;
+                        wlandev->spy_stat[i].noise = rxmeta->noise;
+                        wlandev->spy_stat[i].qual = (rxmeta->signal > rxmeta->noise) ? \
+                                                     (rxmeta->signal - rxmeta->noise) : 0;
+                        wlandev->spy_stat[i].updated = 0x7;
+                }
+        }
+}
+
+/*----------------------------------------------------------------
+* p80211pb_80211_to_ether
+*
+* Uses the contents of a received 802.11 frame and the etherconv
+* setting to build an ether frame.
+*
+* This function extracts the src and dest address from the 802.11
+* frame to use in the construction of the eth frame.
+*
+* Arguments:
+*	ethconv		Conversion type to perform
+*	skb		Packet buffer containing the 802.11 frame
+*
+* Returns:
+*	0 on success, non-zero otherwise
+*
+* Call context:
+*	May be called in interrupt or non-interrupt context
+----------------------------------------------------------------*/
+int skb_p80211_to_ether( wlandevice_t *wlandev, UINT32 ethconv, struct sk_buff *skb)
+{
+	netdevice_t     *netdev = wlandev->netdev;
+	UINT16          fc;
+	UINT            payload_length;
+	UINT            payload_offset;
+	UINT8		daddr[WLAN_ETHADDR_LEN];
+	UINT8		saddr[WLAN_ETHADDR_LEN];
+	p80211_hdr_t    *w_hdr;
+	wlan_ethhdr_t   *e_hdr;
+	wlan_llc_t      *e_llc;
+	wlan_snap_t     *e_snap;
+
+	int foo;
+
+	DBFENTER;
+
+	payload_length = skb->len - WLAN_HDR_A3_LEN - WLAN_CRC_LEN;
+	payload_offset = WLAN_HDR_A3_LEN;
+
+	w_hdr = (p80211_hdr_t *) skb->data;
+
+        /* setup some vars for convenience */
+	fc = ieee2host16(w_hdr->a3.fc);
+	if ( (WLAN_GET_FC_TODS(fc) == 0) && (WLAN_GET_FC_FROMDS(fc) == 0) ) {
+		memcpy(daddr, w_hdr->a3.a1, WLAN_ETHADDR_LEN);
+		memcpy(saddr, w_hdr->a3.a2, WLAN_ETHADDR_LEN);
+	} else if( (WLAN_GET_FC_TODS(fc) == 0) && (WLAN_GET_FC_FROMDS(fc) == 1) ) {
+		memcpy(daddr, w_hdr->a3.a1, WLAN_ETHADDR_LEN);
+		memcpy(saddr, w_hdr->a3.a3, WLAN_ETHADDR_LEN);
+	} else if( (WLAN_GET_FC_TODS(fc) == 1) && (WLAN_GET_FC_FROMDS(fc) == 0) ) {
+		memcpy(daddr, w_hdr->a3.a3, WLAN_ETHADDR_LEN);
+		memcpy(saddr, w_hdr->a3.a2, WLAN_ETHADDR_LEN);
+	} else {
+		payload_offset = WLAN_HDR_A4_LEN;
+		payload_length -= ( WLAN_HDR_A4_LEN - WLAN_HDR_A3_LEN );
+		if (payload_length < 0 ) {
+			WLAN_LOG_ERROR("A4 frame too short!\n");
+			return 1;
+		}
+		memcpy(daddr, w_hdr->a4.a3, WLAN_ETHADDR_LEN);
+		memcpy(saddr, w_hdr->a4.a4, WLAN_ETHADDR_LEN);
+	}
+
+	/* perform de-wep if necessary.. */
+	if ((wlandev->hostwep & HOSTWEP_PRIVACYINVOKED) && WLAN_GET_FC_ISWEP(fc) && (wlandev->hostwep & HOSTWEP_DECRYPT)) {
+		if (payload_length <= 8) {
+			WLAN_LOG_ERROR("WEP frame too short (%u).\n",
+					skb->len);
+			return 1;
+		}
+		if ((foo = wep_decrypt(wlandev, skb->data + payload_offset + 4,
+				       payload_length - 8, -1,
+				       skb->data + payload_offset,
+				       skb->data + payload_offset + payload_length - 4))) {
+			/* de-wep failed, drop skb. */
+			WLAN_LOG_DEBUG(1, "Host de-WEP failed, dropping frame (%d).\n", foo);
+			wlandev->rx.decrypt_err++;
+			return 2;
+		}
+
+		/* subtract the IV+ICV length off the payload */
+		payload_length -= 8;
+		/* chop off the IV */
+		skb_pull(skb, 4);
+		/* chop off the ICV. */
+		skb_trim(skb, skb->len - 4);
+
+		wlandev->rx.decrypt++;
+	}
+
+	e_hdr = (wlan_ethhdr_t *) (skb->data + payload_offset);
+
+	e_llc = (wlan_llc_t *) (skb->data + payload_offset);
+	e_snap = (wlan_snap_t *) (skb->data + payload_offset + sizeof(wlan_llc_t));
+
+	/* Test for the various encodings */
+	if ( (payload_length >= sizeof(wlan_ethhdr_t)) &&
+	     ( e_llc->dsap != 0xaa || e_llc->ssap != 0xaa ) &&
+	     ((memcmp(daddr, e_hdr->daddr, WLAN_ETHADDR_LEN) == 0) ||
+	     (memcmp(saddr, e_hdr->saddr, WLAN_ETHADDR_LEN) == 0))) {
+		WLAN_LOG_DEBUG(3, "802.3 ENCAP len: %d\n", payload_length);
+		/* 802.3 Encapsulated */
+		/* Test for an overlength frame */
+		if ( payload_length > (netdev->mtu + WLAN_ETHHDR_LEN)) {
+			/* A bogus length ethfrm has been encap'd. */
+			/* Is someone trying an oflow attack? */
+			WLAN_LOG_ERROR("ENCAP frame too large (%d > %d)\n",
+				payload_length, netdev->mtu + WLAN_ETHHDR_LEN);
+			return 1;
+		}
+
+		/* Chop off the 802.11 header.  it's already sane. */
+		skb_pull(skb, payload_offset);
+		/* chop off the 802.11 CRC */
+		skb_trim(skb, skb->len - WLAN_CRC_LEN);
+
+	} else if ((payload_length >= sizeof(wlan_llc_t) + sizeof(wlan_snap_t)) &&
+		   (e_llc->dsap == 0xaa) &&
+		   (e_llc->ssap == 0xaa) &&
+		   (e_llc->ctl == 0x03) &&
+		   (((memcmp( e_snap->oui, oui_rfc1042, WLAN_IEEE_OUI_LEN)==0) &&
+		    (ethconv == WLAN_ETHCONV_8021h) &&
+		    (p80211_stt_findproto(ieee2host16(e_snap->type)))) ||
+		    (memcmp( e_snap->oui, oui_rfc1042, WLAN_IEEE_OUI_LEN)!=0)))
+	{
+		WLAN_LOG_DEBUG(3, "SNAP+RFC1042 len: %d\n", payload_length);
+		/* it's a SNAP + RFC1042 frame && protocol is in STT */
+		/* build 802.3 + RFC1042 */
+
+		/* Test for an overlength frame */
+		if ( payload_length > netdev->mtu ) {
+			/* A bogus length ethfrm has been sent. */
+			/* Is someone trying an oflow attack? */
+			WLAN_LOG_ERROR("SNAP frame too large (%d > %d)\n",
+				payload_length, netdev->mtu);
+			return 1;
+		}
+
+		/* chop 802.11 header from skb. */
+		skb_pull(skb, payload_offset);
+
+		/* create 802.3 header at beginning of skb. */
+		e_hdr = (wlan_ethhdr_t *) skb_push(skb, WLAN_ETHHDR_LEN);
+		memcpy(e_hdr->daddr, daddr, WLAN_ETHADDR_LEN);
+		memcpy(e_hdr->saddr, saddr, WLAN_ETHADDR_LEN);
+		e_hdr->type = htons(payload_length);
+
+		/* chop off the 802.11 CRC */
+		skb_trim(skb, skb->len - WLAN_CRC_LEN);
+
+	}  else if ((payload_length >= sizeof(wlan_llc_t) + sizeof(wlan_snap_t)) &&
+		    (e_llc->dsap == 0xaa) &&
+		    (e_llc->ssap == 0xaa) &&
+		    (e_llc->ctl == 0x03) ) {
+		WLAN_LOG_DEBUG(3, "802.1h/RFC1042 len: %d\n", payload_length);
+		/* it's an 802.1h frame || (an RFC1042 && protocol is not in STT) */
+		/* build a DIXII + RFC894 */
+
+		/* Test for an overlength frame */
+		if ((payload_length - sizeof(wlan_llc_t) - sizeof(wlan_snap_t))
+		    > netdev->mtu) {
+			/* A bogus length ethfrm has been sent. */
+			/* Is someone trying an oflow attack? */
+			WLAN_LOG_ERROR("DIXII frame too large (%ld > %d)\n",
+					(long int) (payload_length - sizeof(wlan_llc_t) -
+						    sizeof(wlan_snap_t)),
+					netdev->mtu);
+			return 1;
+		}
+
+		/* chop 802.11 header from skb. */
+		skb_pull(skb, payload_offset);
+
+		/* chop llc header from skb. */
+		skb_pull(skb, sizeof(wlan_llc_t));
+
+		/* chop snap header from skb. */
+		skb_pull(skb, sizeof(wlan_snap_t));
+
+		/* create 802.3 header at beginning of skb. */
+		e_hdr = (wlan_ethhdr_t *) skb_push(skb, WLAN_ETHHDR_LEN);
+		e_hdr->type = e_snap->type;
+		memcpy(e_hdr->daddr, daddr, WLAN_ETHADDR_LEN);
+		memcpy(e_hdr->saddr, saddr, WLAN_ETHADDR_LEN);
+
+		/* chop off the 802.11 CRC */
+		skb_trim(skb, skb->len - WLAN_CRC_LEN);
+	} else {
+		WLAN_LOG_DEBUG(3, "NON-ENCAP len: %d\n", payload_length);
+		/* any NON-ENCAP */
+		/* it's a generic 80211+LLC or IPX 'Raw 802.3' */
+		/*  build an 802.3 frame */
+		/* allocate space and setup hostbuf */
+
+		/* Test for an overlength frame */
+		if ( payload_length > netdev->mtu ) {
+			/* A bogus length ethfrm has been sent. */
+			/* Is someone trying an oflow attack? */
+			WLAN_LOG_ERROR("OTHER frame too large (%d > %d)\n",
+				payload_length,
+				netdev->mtu);
+			return 1;
+		}
+
+		/* Chop off the 802.11 header. */
+		skb_pull(skb, payload_offset);
+
+		/* create 802.3 header at beginning of skb. */
+		e_hdr = (wlan_ethhdr_t *) skb_push(skb, WLAN_ETHHDR_LEN);
+		memcpy(e_hdr->daddr, daddr, WLAN_ETHADDR_LEN);
+		memcpy(e_hdr->saddr, saddr, WLAN_ETHADDR_LEN);
+		e_hdr->type = htons(payload_length);
+
+		/* chop off the 802.11 CRC */
+		skb_trim(skb, skb->len - WLAN_CRC_LEN);
+
+	}
+
+	skb->protocol = eth_type_trans(skb, netdev);
+	skb_reset_mac_header(skb);
+
+        /* jkriegl: process signal and noise as set in hfa384x_int_rx() */
+	/* jkriegl: only process signal/noise if requested by iwspy */
+        if (wlandev->spy_number)
+                orinoco_spy_gather(wlandev, eth_hdr(skb)->h_source, P80211SKB_RXMETA(skb));
+
+	/* Free the metadata */
+	p80211skb_rxmeta_detach(skb);
+
+	DBFEXIT;
+	return 0;
+}
+
+/*----------------------------------------------------------------
+* p80211_stt_findproto
+*
+* Searches the 802.1h Selective Translation Table for a given
+* protocol.
+*
+* Arguments:
+*	proto	protocl number (in host order) to search for.
+*
+* Returns:
+*	1 - if the table is empty or a match is found.
+*	0 - if the table is non-empty and a match is not found.
+*
+* Call context:
+*	May be called in interrupt or non-interrupt context
+----------------------------------------------------------------*/
+int p80211_stt_findproto(UINT16 proto)
+{
+	/* Always return found for now.  This is the behavior used by the */
+	/*  Zoom Win95 driver when 802.1h mode is selected */
+	/* TODO: If necessary, add an actual search we'll probably
+		 need this to match the CMAC's way of doing things.
+		 Need to do some testing to confirm.
+	*/
+
+	if (proto == 0x80f3)  /* APPLETALK */
+		return 1;
+
+	return 0;
+}
+
+/*----------------------------------------------------------------
+* p80211skb_rxmeta_detach
+*
+* Disconnects the frmmeta and rxmeta from an skb.
+*
+* Arguments:
+*	wlandev		The wlandev this skb belongs to.
+*	skb		The skb we're attaching to.
+*
+* Returns:
+*	0 on success, non-zero otherwise
+*
+* Call context:
+*	May be called in interrupt or non-interrupt context
+----------------------------------------------------------------*/
+void
+p80211skb_rxmeta_detach(struct sk_buff *skb)
+{
+	p80211_rxmeta_t		*rxmeta;
+	p80211_frmmeta_t	*frmmeta;
+
+	DBFENTER;
+	/* Sanity checks */
+	if ( skb==NULL ) {			/* bad skb */
+		WLAN_LOG_DEBUG(1, "Called w/ null skb.\n");
+		goto exit;
+	}
+	frmmeta = P80211SKB_FRMMETA(skb);
+	if ( frmmeta == NULL ) { 		/* no magic */
+		WLAN_LOG_DEBUG(1, "Called w/ bad frmmeta magic.\n");
+		goto exit;
+	}
+	rxmeta = frmmeta->rx;
+	if ( rxmeta == NULL ) {			/* bad meta ptr */
+		WLAN_LOG_DEBUG(1, "Called w/ bad rxmeta ptr.\n");
+		goto exit;
+	}
+
+	/* Free rxmeta */
+	kfree(rxmeta);
+
+	/* Clear skb->cb */
+	memset(skb->cb, 0, sizeof(skb->cb));
+exit:
+	DBFEXIT;
+	return;
+}
+
+/*----------------------------------------------------------------
+* p80211skb_rxmeta_attach
+*
+* Allocates a p80211rxmeta structure, initializes it, and attaches
+* it to an skb.
+*
+* Arguments:
+*	wlandev		The wlandev this skb belongs to.
+*	skb		The skb we're attaching to.
+*
+* Returns:
+*	0 on success, non-zero otherwise
+*
+* Call context:
+*	May be called in interrupt or non-interrupt context
+----------------------------------------------------------------*/
+int
+p80211skb_rxmeta_attach(struct wlandevice *wlandev, struct sk_buff *skb)
+{
+	int			result = 0;
+	p80211_rxmeta_t		*rxmeta;
+	p80211_frmmeta_t	*frmmeta;
+
+	DBFENTER;
+
+	/* If these already have metadata, we error out! */
+	if (P80211SKB_RXMETA(skb) != NULL) {
+		WLAN_LOG_ERROR("%s: RXmeta already attached!\n",
+				wlandev->name);
+		result = 0;
+		goto exit;
+	}
+
+	/* Allocate the rxmeta */
+	rxmeta = kmalloc(sizeof(p80211_rxmeta_t), GFP_ATOMIC);
+
+	if ( rxmeta == NULL ) {
+		WLAN_LOG_ERROR("%s: Failed to allocate rxmeta.\n",
+				wlandev->name);
+		result = 1;
+		goto exit;
+	}
+
+	/* Initialize the rxmeta */
+	memset(rxmeta, 0, sizeof(p80211_rxmeta_t));
+	rxmeta->wlandev = wlandev;
+	rxmeta->hosttime = jiffies;
+
+	/* Overlay a frmmeta_t onto skb->cb */
+	memset(skb->cb, 0, sizeof(p80211_frmmeta_t));
+	frmmeta = (p80211_frmmeta_t*)(skb->cb);
+	frmmeta->magic = P80211_FRMMETA_MAGIC;
+	frmmeta->rx = rxmeta;
+exit:
+	DBFEXIT;
+	return result;
+}
+
+/*----------------------------------------------------------------
+* p80211skb_free
+*
+* Frees an entire p80211skb by checking and freeing the meta struct
+* and then freeing the skb.
+*
+* Arguments:
+*	wlandev		The wlandev this skb belongs to.
+*	skb		The skb we're attaching to.
+*
+* Returns:
+*	0 on success, non-zero otherwise
+*
+* Call context:
+*	May be called in interrupt or non-interrupt context
+----------------------------------------------------------------*/
+void
+p80211skb_free(struct wlandevice *wlandev, struct sk_buff *skb)
+{
+	p80211_frmmeta_t	*meta;
+	DBFENTER;
+	meta = P80211SKB_FRMMETA(skb);
+	if ( meta && meta->rx) {
+		p80211skb_rxmeta_detach(skb);
+	} else {
+		WLAN_LOG_ERROR("Freeing an skb (%p) w/ no frmmeta.\n", skb);
+	}
+
+	dev_kfree_skb(skb);
+	DBFEXIT;
+	return;
+}
diff --git a/drivers/staging/wlan-ng/p80211conv.h b/drivers/staging/wlan-ng/p80211conv.h
new file mode 100644
index 0000000..3f5ab57c
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211conv.h
@@ -0,0 +1,186 @@
+/* p80211conv.h
+*
+* Ether/802.11 conversions and packet buffer routines
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* This file declares the functions, types and macros that perform
+* Ethernet to/from 802.11 frame conversions.
+*
+* --------------------------------------------------------------------
+*/
+
+#ifndef _LINUX_P80211CONV_H
+#define _LINUX_P80211CONV_H
+
+/*================================================================*/
+/* Constants */
+
+#define WLAN_ETHADDR_LEN	6
+#define WLAN_IEEE_OUI_LEN	3
+
+#define WLAN_ETHCONV_ENCAP	1
+#define WLAN_ETHCONV_RFC1042	2
+#define WLAN_ETHCONV_8021h	3
+
+#define WLAN_MIN_ETHFRM_LEN	60
+#define WLAN_MAX_ETHFRM_LEN	1514
+#define WLAN_ETHHDR_LEN		14
+
+#define P80211CAPTURE_VERSION	0x80211001
+
+/*================================================================*/
+/* Macros */
+
+#define	P80211_FRMMETA_MAGIC		0x802110
+
+#define P80211SKB_FRMMETA(s) \
+	(((((p80211_frmmeta_t*)((s)->cb))->magic)==P80211_FRMMETA_MAGIC) ? \
+		((p80211_frmmeta_t*)((s)->cb)) : \
+		(NULL))
+
+#define P80211SKB_RXMETA(s) \
+	(P80211SKB_FRMMETA((s)) ?  P80211SKB_FRMMETA((s))->rx : ((p80211_rxmeta_t*)(NULL)))
+
+typedef struct p80211_rxmeta
+{
+	struct wlandevice	*wlandev;
+
+	UINT64	mactime;	/* Hi-rez MAC-supplied time value */
+	UINT64	hosttime;	/* Best-rez host supplied time value */
+
+	UINT	rxrate;		/* Receive data rate in 100kbps */
+	UINT	priority;	/* 0-15, 0=contention, 6=CF */
+	INT	signal;		/* An SSI, see p80211netdev.h */
+	INT	noise;		/* An SSI, see p80211netdev.h */
+	UINT	channel;	/* Receive channel (mostly for snifs) */
+	UINT	preamble;	/* P80211ENUM_preambletype_* */
+	UINT	encoding;	/* P80211ENUM_encoding_* */
+
+} p80211_rxmeta_t;
+
+typedef struct p80211_frmmeta
+{
+	UINT			magic;
+	p80211_rxmeta_t		*rx;
+} p80211_frmmeta_t;
+
+void p80211skb_free(struct wlandevice *wlandev, struct sk_buff *skb);
+int p80211skb_rxmeta_attach(struct wlandevice *wlandev, struct sk_buff *skb);
+void p80211skb_rxmeta_detach(struct sk_buff *skb);
+
+/*================================================================*/
+/* Types */
+
+/*
+ * Frame capture header.  (See doc/capturefrm.txt)
+ */
+typedef struct p80211_caphdr
+{
+	UINT32		version;
+	UINT32		length;
+	UINT64		mactime;
+	UINT64		hosttime;
+	UINT32		phytype;
+	UINT32		channel;
+	UINT32		datarate;
+	UINT32		antenna;
+	UINT32		priority;
+	UINT32		ssi_type;
+	INT32		ssi_signal;
+	INT32		ssi_noise;
+	UINT32		preamble;
+	UINT32		encoding;
+} p80211_caphdr_t;
+
+/* buffer free method pointer type */
+typedef void (* freebuf_method_t)(void *buf, int size);
+
+typedef struct p80211_metawep {
+	void  *data;
+	UINT8 iv[4];
+	UINT8 icv[4];
+} p80211_metawep_t;
+
+/* local ether header type */
+typedef struct wlan_ethhdr
+{
+	UINT8	daddr[WLAN_ETHADDR_LEN];
+	UINT8	saddr[WLAN_ETHADDR_LEN];
+	UINT16	type;
+} __WLAN_ATTRIB_PACK__ wlan_ethhdr_t;
+
+/* local llc header type */
+typedef struct wlan_llc
+{
+	UINT8	dsap;
+	UINT8	ssap;
+	UINT8	ctl;
+} __WLAN_ATTRIB_PACK__ wlan_llc_t;
+
+/* local snap header type */
+typedef struct wlan_snap
+{
+	UINT8	oui[WLAN_IEEE_OUI_LEN];
+	UINT16	type;
+} __WLAN_ATTRIB_PACK__ wlan_snap_t;
+
+/* Circular include trick */
+struct wlandevice;
+
+/*================================================================*/
+/* Externs */
+
+/*================================================================*/
+/*Function Declarations */
+
+int skb_p80211_to_ether( struct wlandevice *wlandev, UINT32 ethconv,
+			 struct sk_buff *skb);
+int skb_ether_to_p80211( struct wlandevice *wlandev, UINT32 ethconv,
+			 struct sk_buff *skb, p80211_hdr_t *p80211_hdr,
+			 p80211_metawep_t *p80211_wep );
+
+int p80211_stt_findproto(UINT16 proto);
+int p80211_stt_addproto(UINT16 proto);
+
+#endif
diff --git a/drivers/staging/wlan-ng/p80211hdr.h b/drivers/staging/wlan-ng/p80211hdr.h
new file mode 100644
index 0000000..b7b0872
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211hdr.h
@@ -0,0 +1,299 @@
+/* p80211hdr.h
+*
+* Macros, types, and functions for handling 802.11 MAC headers
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* This file declares the constants and types used in the interface
+* between a wlan driver and the user mode utilities.
+*
+* Note:
+*  - Constant values are always in HOST byte order.  To assign
+*    values to multi-byte fields they _must_ be converted to
+*    ieee byte order.  To retrieve multi-byte values from incoming
+*    frames, they must be converted to host order.
+*
+* All functions declared here are implemented in p80211.c
+* --------------------------------------------------------------------
+*/
+
+#ifndef _P80211HDR_H
+#define _P80211HDR_H
+
+/*================================================================*/
+/* System Includes */
+
+/*================================================================*/
+/* Project Includes */
+
+#ifndef  _WLAN_COMPAT_H
+#include "wlan_compat.h"
+#endif
+
+
+/*================================================================*/
+/* Constants */
+
+/*--- Sizes -----------------------------------------------*/
+#define WLAN_ADDR_LEN			6
+#define WLAN_CRC_LEN			4
+#define WLAN_BSSID_LEN			6
+#define WLAN_BSS_TS_LEN			8
+#define WLAN_HDR_A3_LEN			24
+#define WLAN_HDR_A4_LEN			30
+#define WLAN_SSID_MAXLEN		32
+#define WLAN_DATA_MAXLEN		2312
+#define WLAN_A3FR_MAXLEN		(WLAN_HDR_A3_LEN + WLAN_DATA_MAXLEN + WLAN_CRC_LEN)
+#define WLAN_A4FR_MAXLEN		(WLAN_HDR_A4_LEN + WLAN_DATA_MAXLEN + WLAN_CRC_LEN)
+#define WLAN_BEACON_FR_MAXLEN		(WLAN_HDR_A3_LEN + 334)
+#define WLAN_ATIM_FR_MAXLEN		(WLAN_HDR_A3_LEN + 0)
+#define WLAN_DISASSOC_FR_MAXLEN		(WLAN_HDR_A3_LEN + 2)
+#define WLAN_ASSOCREQ_FR_MAXLEN		(WLAN_HDR_A3_LEN + 48)
+#define WLAN_ASSOCRESP_FR_MAXLEN	(WLAN_HDR_A3_LEN + 16)
+#define WLAN_REASSOCREQ_FR_MAXLEN	(WLAN_HDR_A3_LEN + 54)
+#define WLAN_REASSOCRESP_FR_MAXLEN	(WLAN_HDR_A3_LEN + 16)
+#define WLAN_PROBEREQ_FR_MAXLEN		(WLAN_HDR_A3_LEN + 44)
+#define WLAN_PROBERESP_FR_MAXLEN	(WLAN_HDR_A3_LEN + 78)
+#define WLAN_AUTHEN_FR_MAXLEN		(WLAN_HDR_A3_LEN + 261)
+#define WLAN_DEAUTHEN_FR_MAXLEN		(WLAN_HDR_A3_LEN + 2)
+#define WLAN_WEP_NKEYS			4
+#define WLAN_WEP_MAXKEYLEN		13
+#define WLAN_CHALLENGE_IE_LEN		130
+#define WLAN_CHALLENGE_LEN		128
+#define WLAN_WEP_IV_LEN			4
+#define WLAN_WEP_ICV_LEN		4
+
+/*--- Frame Control Field -------------------------------------*/
+/* Frame Types */
+#define WLAN_FTYPE_MGMT			0x00
+#define WLAN_FTYPE_CTL			0x01
+#define WLAN_FTYPE_DATA			0x02
+
+/* Frame subtypes */
+/* Management */
+#define WLAN_FSTYPE_ASSOCREQ		0x00
+#define WLAN_FSTYPE_ASSOCRESP		0x01
+#define WLAN_FSTYPE_REASSOCREQ		0x02
+#define WLAN_FSTYPE_REASSOCRESP		0x03
+#define WLAN_FSTYPE_PROBEREQ		0x04
+#define WLAN_FSTYPE_PROBERESP		0x05
+#define WLAN_FSTYPE_BEACON		0x08
+#define WLAN_FSTYPE_ATIM		0x09
+#define WLAN_FSTYPE_DISASSOC		0x0a
+#define WLAN_FSTYPE_AUTHEN		0x0b
+#define WLAN_FSTYPE_DEAUTHEN		0x0c
+
+/* Control */
+#define WLAN_FSTYPE_BLOCKACKREQ		0x8
+#define WLAN_FSTYPE_BLOCKACK  		0x9
+#define WLAN_FSTYPE_PSPOLL		0x0a
+#define WLAN_FSTYPE_RTS			0x0b
+#define WLAN_FSTYPE_CTS			0x0c
+#define WLAN_FSTYPE_ACK			0x0d
+#define WLAN_FSTYPE_CFEND		0x0e
+#define WLAN_FSTYPE_CFENDCFACK		0x0f
+
+/* Data */
+#define WLAN_FSTYPE_DATAONLY		0x00
+#define WLAN_FSTYPE_DATA_CFACK		0x01
+#define WLAN_FSTYPE_DATA_CFPOLL		0x02
+#define WLAN_FSTYPE_DATA_CFACK_CFPOLL	0x03
+#define WLAN_FSTYPE_NULL		0x04
+#define WLAN_FSTYPE_CFACK		0x05
+#define WLAN_FSTYPE_CFPOLL		0x06
+#define WLAN_FSTYPE_CFACK_CFPOLL	0x07
+
+
+/*================================================================*/
+/* Macros */
+
+/*--- FC Macros ----------------------------------------------*/
+/* Macros to get/set the bitfields of the Frame Control Field */
+/*  GET_FC_??? - takes the host byte-order value of an FC     */
+/*               and retrieves the value of one of the        */
+/*               bitfields and moves that value so its lsb is */
+/*               in bit 0.                                    */
+/*  SET_FC_??? - takes a host order value for one of the FC   */
+/*               bitfields and moves it to the proper bit     */
+/*               location for ORing into a host order FC.     */
+/*               To send the FC produced from SET_FC_???,     */
+/*               one must put the bytes in IEEE order.        */
+/*  e.g.                                                      */
+/*     printf("the frame subtype is %x",                      */
+/*                 GET_FC_FTYPE( ieee2host( rx.fc )))         */
+/*                                                            */
+/*     tx.fc = host2ieee( SET_FC_FTYPE(WLAN_FTYP_CTL) |       */
+/*                        SET_FC_FSTYPE(WLAN_FSTYPE_RTS) );   */
+/*------------------------------------------------------------*/
+
+#define WLAN_GET_FC_PVER(n)	 (((UINT16)(n)) & (BIT0 | BIT1))
+#define WLAN_GET_FC_FTYPE(n)	((((UINT16)(n)) & (BIT2 | BIT3)) >> 2)
+#define WLAN_GET_FC_FSTYPE(n)	((((UINT16)(n)) & (BIT4|BIT5|BIT6|BIT7)) >> 4)
+#define WLAN_GET_FC_TODS(n) 	((((UINT16)(n)) & (BIT8)) >> 8)
+#define WLAN_GET_FC_FROMDS(n)	((((UINT16)(n)) & (BIT9)) >> 9)
+#define WLAN_GET_FC_MOREFRAG(n) ((((UINT16)(n)) & (BIT10)) >> 10)
+#define WLAN_GET_FC_RETRY(n)	((((UINT16)(n)) & (BIT11)) >> 11)
+#define WLAN_GET_FC_PWRMGT(n)	((((UINT16)(n)) & (BIT12)) >> 12)
+#define WLAN_GET_FC_MOREDATA(n) ((((UINT16)(n)) & (BIT13)) >> 13)
+#define WLAN_GET_FC_ISWEP(n)	((((UINT16)(n)) & (BIT14)) >> 14)
+#define WLAN_GET_FC_ORDER(n)	((((UINT16)(n)) & (BIT15)) >> 15)
+
+#define WLAN_SET_FC_PVER(n)	((UINT16)(n))
+#define WLAN_SET_FC_FTYPE(n)	(((UINT16)(n)) << 2)
+#define WLAN_SET_FC_FSTYPE(n)	(((UINT16)(n)) << 4)
+#define WLAN_SET_FC_TODS(n) 	(((UINT16)(n)) << 8)
+#define WLAN_SET_FC_FROMDS(n)	(((UINT16)(n)) << 9)
+#define WLAN_SET_FC_MOREFRAG(n) (((UINT16)(n)) << 10)
+#define WLAN_SET_FC_RETRY(n)	(((UINT16)(n)) << 11)
+#define WLAN_SET_FC_PWRMGT(n)	(((UINT16)(n)) << 12)
+#define WLAN_SET_FC_MOREDATA(n) (((UINT16)(n)) << 13)
+#define WLAN_SET_FC_ISWEP(n)	(((UINT16)(n)) << 14)
+#define WLAN_SET_FC_ORDER(n)	(((UINT16)(n)) << 15)
+
+/*--- Duration Macros ----------------------------------------*/
+/* Macros to get/set the bitfields of the Duration Field      */
+/*  - the duration value is only valid when bit15 is zero     */
+/*  - the firmware handles these values, so I'm not going     */
+/*    these macros right now.                                 */
+/*------------------------------------------------------------*/
+
+/*--- Sequence Control  Macros -------------------------------*/
+/* Macros to get/set the bitfields of the Sequence Control    */
+/* Field.                                                     */
+/*------------------------------------------------------------*/
+#define WLAN_GET_SEQ_FRGNUM(n) (((UINT16)(n)) & (BIT0|BIT1|BIT2|BIT3))
+#define WLAN_GET_SEQ_SEQNUM(n) ((((UINT16)(n)) & (~(BIT0|BIT1|BIT2|BIT3))) >> 4)
+
+/*--- Data ptr macro -----------------------------------------*/
+/* Creates a UINT8* to the data portion of a frame            */
+/* Assumes you're passing in a ptr to the beginning of the hdr*/
+/*------------------------------------------------------------*/
+#define WLAN_HDR_A3_DATAP(p) (((UINT8*)(p)) + WLAN_HDR_A3_LEN)
+#define WLAN_HDR_A4_DATAP(p) (((UINT8*)(p)) + WLAN_HDR_A4_LEN)
+
+#define DOT11_RATE5_ISBASIC_GET(r)     (((UINT8)(r)) & BIT7)
+
+/*================================================================*/
+/* Types */
+
+/* BSS Timestamp */
+typedef UINT8 wlan_bss_ts_t[WLAN_BSS_TS_LEN];
+
+/* Generic 802.11 Header types */
+
+typedef struct p80211_hdr_a3
+{
+	UINT16	fc;
+	UINT16	dur;
+	UINT8	a1[WLAN_ADDR_LEN];
+	UINT8	a2[WLAN_ADDR_LEN];
+	UINT8	a3[WLAN_ADDR_LEN];
+	UINT16	seq;
+} __WLAN_ATTRIB_PACK__ p80211_hdr_a3_t;
+
+typedef struct p80211_hdr_a4
+{
+	UINT16	fc;
+	UINT16	dur;
+	UINT8	a1[WLAN_ADDR_LEN];
+	UINT8	a2[WLAN_ADDR_LEN];
+	UINT8	a3[WLAN_ADDR_LEN];
+	UINT16	seq;
+	UINT8	a4[WLAN_ADDR_LEN];
+} __WLAN_ATTRIB_PACK__ p80211_hdr_a4_t;
+
+typedef union p80211_hdr
+{
+	p80211_hdr_a3_t		a3;
+	p80211_hdr_a4_t		a4;
+} __WLAN_ATTRIB_PACK__ p80211_hdr_t;
+
+
+/*================================================================*/
+/* Extern Declarations */
+
+
+/*================================================================*/
+/* Function Declarations */
+
+/* Frame and header lenght macros */
+
+#define WLAN_CTL_FRAMELEN(fstype) (\
+	(fstype) == WLAN_FSTYPE_BLOCKACKREQ	? 24 : \
+	(fstype) == WLAN_FSTYPE_BLOCKACK   	? 152 : \
+	(fstype) == WLAN_FSTYPE_PSPOLL		? 20 : \
+	(fstype) == WLAN_FSTYPE_RTS		? 20 : \
+	(fstype) == WLAN_FSTYPE_CTS		? 14 : \
+	(fstype) == WLAN_FSTYPE_ACK		? 14 : \
+	(fstype) == WLAN_FSTYPE_CFEND		? 20 : \
+	(fstype) == WLAN_FSTYPE_CFENDCFACK	? 20 : 4)
+
+#define WLAN_FCS_LEN			4
+
+/* ftcl in HOST order */
+inline static UINT16 p80211_headerlen(UINT16 fctl)
+{
+	UINT16 hdrlen = 0;
+
+	switch ( WLAN_GET_FC_FTYPE(fctl) ) {
+	case WLAN_FTYPE_MGMT:
+		hdrlen = WLAN_HDR_A3_LEN;
+		break;
+	case WLAN_FTYPE_DATA:
+		hdrlen = WLAN_HDR_A3_LEN;
+		if ( WLAN_GET_FC_TODS(fctl) && WLAN_GET_FC_FROMDS(fctl) ) {
+			hdrlen += WLAN_ADDR_LEN;
+		}
+		break;
+	case WLAN_FTYPE_CTL:
+		hdrlen = WLAN_CTL_FRAMELEN(WLAN_GET_FC_FSTYPE(fctl)) -
+			WLAN_FCS_LEN;
+		break;
+	default:
+		hdrlen = WLAN_HDR_A3_LEN;
+	}
+
+	return hdrlen;
+}
+
+#endif /* _P80211HDR_H */
diff --git a/drivers/staging/wlan-ng/p80211ioctl.h b/drivers/staging/wlan-ng/p80211ioctl.h
new file mode 100644
index 0000000..25b2ea8
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211ioctl.h
@@ -0,0 +1,123 @@
+/* p80211ioctl.h
+*
+* Declares constants and types for the p80211 ioctls
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+*  While this file is called 'ioctl' is purpose goes a little beyond
+*  that.  This file defines the types and contants used to implement
+*  the p80211 request/confirm/indicate interfaces on Linux.  The
+*  request/confirm interface is, in fact, normally implemented as an
+*  ioctl.  The indicate interface on the other hand, is implemented
+*  using the Linux 'netlink' interface.
+*
+*  The reason I say that request/confirm is 'normally' implemented
+*  via ioctl is that we're reserving the right to be able to send
+*  request commands via the netlink interface.  This will be necessary
+*  if we ever need to send request messages when there aren't any
+*  wlan network devices present (i.e. sending a message that only p80211
+*  cares about.
+* --------------------------------------------------------------------
+*/
+
+
+#ifndef _P80211IOCTL_H
+#define _P80211IOCTL_H
+
+/*================================================================*/
+/* Constants */
+
+/*----------------------------------------------------------------*/
+/* p80211 ioctl "request" codes.  See argument 2 of ioctl(2). */
+
+#define P80211_IFTEST		(SIOCDEVPRIVATE + 0)
+#define P80211_IFREQ		(SIOCDEVPRIVATE + 1)
+
+/*----------------------------------------------------------------*/
+/* Magic number, a quick test to see we're getting the desired struct */
+
+#define P80211_IOCTL_MAGIC	(0x4a2d464dUL)
+
+/*----------------------------------------------------------------*/
+/* Netlink protocol numbers for the indication interface */
+
+#define P80211_NL_SOCK_IND	NETLINK_USERSOCK
+
+/*----------------------------------------------------------------*/
+/* Netlink multicast bits for different types of messages */
+
+#define P80211_NL_MCAST_GRP_MLME	BIT0	/* Local station messages */
+#define P80211_NL_MCAST_GRP_SNIFF	BIT1	/* Sniffer messages */
+#define P80211_NL_MCAST_GRP_DIST	BIT2	/* Distribution system messages */
+
+/*================================================================*/
+/* Macros */
+
+
+/*================================================================*/
+/* Types */
+
+/*----------------------------------------------------------------*/
+/* A ptr to the following structure type is passed as the third */
+/*  argument to the ioctl system call when issuing a request to */
+/*  the p80211 module. */
+
+typedef struct p80211ioctl_req
+{
+	char 	name[WLAN_DEVNAMELEN_MAX];
+	caddr_t data;
+	UINT32	magic;
+	UINT16	len;
+	UINT32	result;
+} __WLAN_ATTRIB_PACK__ p80211ioctl_req_t;
+
+
+/*================================================================*/
+/* Extern Declarations */
+
+
+/*================================================================*/
+/* Function Declarations */
+
+
+#endif /* _P80211IOCTL_H */
diff --git a/drivers/staging/wlan-ng/p80211meta.h b/drivers/staging/wlan-ng/p80211meta.h
new file mode 100644
index 0000000..5cb3f5a
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211meta.h
@@ -0,0 +1,169 @@
+/* p80211meta.h
+*
+* Macros, constants, types, and funcs for p80211 metadata
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* This file declares some of the constants and types used in various
+* parts of the linux-wlan system.
+*
+* Notes:
+*   - Constant values are always in HOST byte order.
+*
+* All functions and statics declared here are implemented in p80211types.c
+*   --------------------------------------------------------------------
+*/
+
+#ifndef _P80211META_H
+#define _P80211META_H
+
+/*================================================================*/
+/* System Includes */
+
+/*================================================================*/
+/* Project Includes */
+
+#ifndef _WLAN_COMPAT_H
+#include "wlan_compat.h"
+#endif
+
+/*================================================================*/
+/* Constants */
+
+/*----------------------------------------------------------------*/
+/* */
+
+/*================================================================*/
+/* Macros */
+
+/*----------------------------------------------------------------*/
+/* The following macros are used to ensure consistent naming */
+/*  conventions for all the different metadata lists. */
+
+#define MKREQMETANAME(name)		p80211meta_ ## req ## _ ## name
+#define MKINDMETANAME(name)		p80211meta_ ## ind ## _ ## name
+#define MKMIBMETANAME(name)		p80211meta_ ## mib ## _ ## name
+#define MKGRPMETANAME(name)		p80211meta_ ## grp ## _ ## name
+
+#define MKREQMETASIZE(name)		p80211meta_ ## req ## _ ## name ## _ ## size
+#define MKINDMETASIZE(name)		p80211meta_ ## ind ## _ ## name ## _ ## size
+#define MKMIBMETASIZE(name)		p80211meta_ ## mib ## _ ## name ## _ ## size
+#define MKGRPMETASIZE(name)		p80211meta_ ## grp ## _ ## name ## _ ## size
+
+#define GETMETASIZE(aptr)		(**((UINT32**)(aptr)))
+
+/*----------------------------------------------------------------*/
+/* The following ifdef depends on the following defines: */
+/*  P80211_NOINCLUDESTRINGS - if defined, all metadata name fields */
+/*                               are empty strings */
+
+#ifdef P80211_NOINCLUDESTRINGS
+	#define	MKITEMNAME(s)	("")
+#else
+	#define	MKITEMNAME(s)	(s)
+#endif
+
+/*================================================================*/
+/* Types */
+
+/*----------------------------------------------------------------*/
+/* The following structure types are used for the metadata */
+/* representation of category list metadata, group list metadata, */
+/* and data item metadata for both Mib and Messages. */
+
+typedef struct p80211meta
+{
+	char			*name;		/* data item name */
+	UINT32			did;		/* partial did */
+	UINT32			flags;		/* set of various flag bits */
+	UINT32			min;		/* min value of a BOUNDEDINT */
+	UINT32			max;		/* max value of a BOUNDEDINT */
+
+	UINT32			maxlen;		/* maxlen of a OCTETSTR or DISPLAYSTR */
+	UINT32			minlen;		/* minlen of a OCTETSTR or DISPLAYSTR */
+	p80211enum_t		*enumptr;	/* ptr to the enum type for ENUMINT */
+	p80211_totext_t		totextptr;	/* ptr to totext conversion function */
+	p80211_fromtext_t	fromtextptr;	/* ptr to totext conversion function */
+	p80211_valid_t		validfunptr;	/* ptr to totext conversion function */
+} p80211meta_t;
+
+typedef struct grplistitem
+{
+	char		*name;
+	p80211meta_t	*itemlist;
+} grplistitem_t;
+
+typedef struct catlistitem
+{
+	char		*name;
+	grplistitem_t	*grplist;
+} catlistitem_t;
+
+/*================================================================*/
+/* Extern Declarations */
+
+/*----------------------------------------------------------------*/
+/* */
+
+/*================================================================*/
+/* Function Declarations */
+
+/*----------------------------------------------------------------*/
+/* */
+UINT32 p80211_text2did(catlistitem_t *catlist, char *catname, char *grpname, char *itemname);
+UINT32 p80211_text2catdid(catlistitem_t *list, char *name );
+UINT32 p80211_text2grpdid(grplistitem_t *list, char *name );
+UINT32 p80211_text2itemdid(p80211meta_t *list, char *name );
+UINT32 p80211_isvalid_did( catlistitem_t *catlist, UINT32 did );
+UINT32 p80211_isvalid_catdid( catlistitem_t *catlist, UINT32 did );
+UINT32 p80211_isvalid_grpdid( catlistitem_t *catlist, UINT32 did );
+UINT32 p80211_isvalid_itemdid( catlistitem_t *catlist, UINT32 did );
+catlistitem_t *p80211_did2cat( catlistitem_t *catlist, UINT32 did );
+grplistitem_t *p80211_did2grp( catlistitem_t *catlist, UINT32 did );
+p80211meta_t *p80211_did2item( catlistitem_t *catlist, UINT32 did );
+UINT32 p80211item_maxdatalen( struct catlistitem *metalist, UINT32 did );
+UINT32 p80211_metaname2did(struct catlistitem *metalist, char *itemname);
+UINT32 p80211item_getoffset( struct catlistitem *metalist, UINT32 did );
+int p80211item_gettype(p80211meta_t *meta);
+
+#endif /* _P80211META_H */
diff --git a/drivers/staging/wlan-ng/p80211metadef.h b/drivers/staging/wlan-ng/p80211metadef.h
new file mode 100644
index 0000000..2c7f435
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211metadef.h
@@ -0,0 +1,2524 @@
+/* This file is GENERATED AUTOMATICALLY.  DO NOT EDIT OR MODIFY.
+* --------------------------------------------------------------------
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*/
+
+#ifndef _P80211MKMETADEF_H
+#define _P80211MKMETADEF_H
+
+
+#define DIDmsg_cat_dot11req \
+			P80211DID_MKSECTION(1)
+#define DIDmsg_dot11req_mibget \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(1))
+#define DIDmsg_dot11req_mibget_mibattribute \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11req_mibget_resultcode \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_dot11req_mibset \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2))
+#define DIDmsg_dot11req_mibset_mibattribute \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11req_mibset_resultcode \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_dot11req_powermgmt \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3))
+#define DIDmsg_dot11req_powermgmt_powermgmtmode \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11req_powermgmt_wakeup \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_dot11req_powermgmt_receivedtims \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_dot11req_powermgmt_resultcode \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_dot11req_scan \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(4))
+#define DIDmsg_dot11req_scan_bsstype \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11req_scan_bssid \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_dot11req_scan_ssid \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_dot11req_scan_scantype \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_dot11req_scan_probedelay \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(5) | 0x00000000)
+#define DIDmsg_dot11req_scan_channellist \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(6) | 0x00000000)
+#define DIDmsg_dot11req_scan_minchanneltime \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(7) | 0x00000000)
+#define DIDmsg_dot11req_scan_maxchanneltime \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(8) | 0x00000000)
+#define DIDmsg_dot11req_scan_resultcode \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(9) | 0x00000000)
+#define DIDmsg_dot11req_scan_numbss \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(10) | 0x00000000)
+#define DIDmsg_dot11req_scan_append \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(11) | 0x00000000)
+#define DIDmsg_dot11req_scan_results \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5))
+#define DIDmsg_dot11req_scan_results_bssindex \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_resultcode \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_signal \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_noise \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_bssid \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(5) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_ssid \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(6) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_bsstype \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(7) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_beaconperiod \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(8) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_dtimperiod \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(9) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_timestamp \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(10) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_localtime \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(11) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_fhdwelltime \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(12) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_fhhopset \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(13) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_fhhoppattern \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(14) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_fhhopindex \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(15) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_dschannel \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(16) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_cfpcount \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(17) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_cfpperiod \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(18) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_cfpmaxduration \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(19) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_cfpdurremaining \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(20) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_ibssatimwindow \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(21) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_cfpollable \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(22) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_cfpollreq \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(23) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_privacy \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(24) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_basicrate1 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(25) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_basicrate2 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(26) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_basicrate3 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(27) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_basicrate4 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(28) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_basicrate5 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(29) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_basicrate6 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(30) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_basicrate7 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(31) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_basicrate8 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(32) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_supprate1 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(33) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_supprate2 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(34) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_supprate3 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(35) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_supprate4 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(36) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_supprate5 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(37) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_supprate6 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(38) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_supprate7 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(39) | 0x00000000)
+#define DIDmsg_dot11req_scan_results_supprate8 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(40) | 0x00000000)
+#define DIDmsg_dot11req_join \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6))
+#define DIDmsg_dot11req_join_bssid \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11req_join_joinfailuretimeout \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_dot11req_join_basicrate1 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_dot11req_join_basicrate2 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_dot11req_join_basicrate3 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(5) | 0x00000000)
+#define DIDmsg_dot11req_join_basicrate4 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(6) | 0x00000000)
+#define DIDmsg_dot11req_join_basicrate5 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(7) | 0x00000000)
+#define DIDmsg_dot11req_join_basicrate6 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(8) | 0x00000000)
+#define DIDmsg_dot11req_join_basicrate7 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(9) | 0x00000000)
+#define DIDmsg_dot11req_join_basicrate8 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(10) | 0x00000000)
+#define DIDmsg_dot11req_join_operationalrate1 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(11) | 0x00000000)
+#define DIDmsg_dot11req_join_operationalrate2 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(12) | 0x00000000)
+#define DIDmsg_dot11req_join_operationalrate3 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(13) | 0x00000000)
+#define DIDmsg_dot11req_join_operationalrate4 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(14) | 0x00000000)
+#define DIDmsg_dot11req_join_operationalrate5 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(15) | 0x00000000)
+#define DIDmsg_dot11req_join_operationalrate6 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(16) | 0x00000000)
+#define DIDmsg_dot11req_join_operationalrate7 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(17) | 0x00000000)
+#define DIDmsg_dot11req_join_operationalrate8 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(18) | 0x00000000)
+#define DIDmsg_dot11req_join_resultcode \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(19) | 0x00000000)
+#define DIDmsg_dot11req_authenticate \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(7))
+#define DIDmsg_dot11req_authenticate_peerstaaddress \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11req_authenticate_authenticationtype \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_dot11req_authenticate_authenticationfailuretimeout \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_dot11req_authenticate_resultcode \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_dot11req_deauthenticate \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(8))
+#define DIDmsg_dot11req_deauthenticate_peerstaaddress \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(8) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11req_deauthenticate_reasoncode \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(8) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_dot11req_deauthenticate_resultcode \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(8) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_dot11req_associate \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(9))
+#define DIDmsg_dot11req_associate_peerstaaddress \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(9) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11req_associate_associatefailuretimeout \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(9) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_dot11req_associate_cfpollable \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(9) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_dot11req_associate_cfpollreq \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(9) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_dot11req_associate_privacy \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(9) | \
+			P80211DID_MKITEM(5) | 0x00000000)
+#define DIDmsg_dot11req_associate_listeninterval \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(9) | \
+			P80211DID_MKITEM(6) | 0x00000000)
+#define DIDmsg_dot11req_associate_resultcode \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(9) | \
+			P80211DID_MKITEM(7) | 0x00000000)
+#define DIDmsg_dot11req_reassociate \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(10))
+#define DIDmsg_dot11req_reassociate_newapaddress \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(10) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11req_reassociate_reassociatefailuretimeout \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(10) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_dot11req_reassociate_cfpollable \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(10) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_dot11req_reassociate_cfpollreq \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(10) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_dot11req_reassociate_privacy \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(10) | \
+			P80211DID_MKITEM(5) | 0x00000000)
+#define DIDmsg_dot11req_reassociate_listeninterval \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(10) | \
+			P80211DID_MKITEM(6) | 0x00000000)
+#define DIDmsg_dot11req_reassociate_resultcode \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(10) | \
+			P80211DID_MKITEM(7) | 0x00000000)
+#define DIDmsg_dot11req_disassociate \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(11))
+#define DIDmsg_dot11req_disassociate_peerstaaddress \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(11) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11req_disassociate_reasoncode \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(11) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_dot11req_disassociate_resultcode \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(11) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_dot11req_reset \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(12))
+#define DIDmsg_dot11req_reset_setdefaultmib \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(12) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11req_reset_macaddress \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(12) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_dot11req_reset_resultcode \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(12) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_dot11req_start \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13))
+#define DIDmsg_dot11req_start_ssid \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11req_start_bsstype \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_dot11req_start_beaconperiod \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_dot11req_start_dtimperiod \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_dot11req_start_cfpperiod \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(5) | 0x00000000)
+#define DIDmsg_dot11req_start_cfpmaxduration \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(6) | 0x00000000)
+#define DIDmsg_dot11req_start_fhdwelltime \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(7) | 0x00000000)
+#define DIDmsg_dot11req_start_fhhopset \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(8) | 0x00000000)
+#define DIDmsg_dot11req_start_fhhoppattern \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(9) | 0x00000000)
+#define DIDmsg_dot11req_start_dschannel \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(10) | 0x00000000)
+#define DIDmsg_dot11req_start_ibssatimwindow \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(11) | 0x00000000)
+#define DIDmsg_dot11req_start_probedelay \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(12) | 0x00000000)
+#define DIDmsg_dot11req_start_cfpollable \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(13) | 0x00000000)
+#define DIDmsg_dot11req_start_cfpollreq \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(14) | 0x00000000)
+#define DIDmsg_dot11req_start_basicrate1 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(15) | 0x00000000)
+#define DIDmsg_dot11req_start_basicrate2 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(16) | 0x00000000)
+#define DIDmsg_dot11req_start_basicrate3 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(17) | 0x00000000)
+#define DIDmsg_dot11req_start_basicrate4 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(18) | 0x00000000)
+#define DIDmsg_dot11req_start_basicrate5 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(19) | 0x00000000)
+#define DIDmsg_dot11req_start_basicrate6 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(20) | 0x00000000)
+#define DIDmsg_dot11req_start_basicrate7 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(21) | 0x00000000)
+#define DIDmsg_dot11req_start_basicrate8 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(22) | 0x00000000)
+#define DIDmsg_dot11req_start_operationalrate1 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(23) | 0x00000000)
+#define DIDmsg_dot11req_start_operationalrate2 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(24) | 0x00000000)
+#define DIDmsg_dot11req_start_operationalrate3 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(25) | 0x00000000)
+#define DIDmsg_dot11req_start_operationalrate4 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(26) | 0x00000000)
+#define DIDmsg_dot11req_start_operationalrate5 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(27) | 0x00000000)
+#define DIDmsg_dot11req_start_operationalrate6 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(28) | 0x00000000)
+#define DIDmsg_dot11req_start_operationalrate7 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(29) | 0x00000000)
+#define DIDmsg_dot11req_start_operationalrate8 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(30) | 0x00000000)
+#define DIDmsg_dot11req_start_resultcode \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(31) | 0x00000000)
+#define DIDmsg_cat_dot11ind \
+			P80211DID_MKSECTION(2)
+#define DIDmsg_dot11ind_authenticate \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(1))
+#define DIDmsg_dot11ind_authenticate_peerstaaddress \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11ind_authenticate_authenticationtype \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_dot11ind_deauthenticate \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2))
+#define DIDmsg_dot11ind_deauthenticate_peerstaaddress \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11ind_deauthenticate_reasoncode \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_dot11ind_associate \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3))
+#define DIDmsg_dot11ind_associate_peerstaaddress \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11ind_associate_aid \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_dot11ind_reassociate \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(4))
+#define DIDmsg_dot11ind_reassociate_peerstaaddress \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11ind_reassociate_aid \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_dot11ind_reassociate_oldapaddress \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_dot11ind_disassociate \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(5))
+#define DIDmsg_dot11ind_disassociate_peerstaaddress \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_dot11ind_disassociate_reasoncode \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_cat_lnxreq \
+			P80211DID_MKSECTION(3)
+#define DIDmsg_lnxreq_ifstate \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(1))
+#define DIDmsg_lnxreq_ifstate_ifstate \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_lnxreq_ifstate_resultcode \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_lnxreq_wlansniff \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(2))
+#define DIDmsg_lnxreq_wlansniff_enable \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_lnxreq_wlansniff_channel \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_lnxreq_wlansniff_prismheader \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_lnxreq_wlansniff_wlanheader \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_lnxreq_wlansniff_keepwepflags \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(5) | 0x00000000)
+#define DIDmsg_lnxreq_wlansniff_stripfcs \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(6) | 0x00000000)
+#define DIDmsg_lnxreq_wlansniff_packet_trunc \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(7) | 0x00000000)
+#define DIDmsg_lnxreq_wlansniff_resultcode \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(8) | 0x00000000)
+#define DIDmsg_lnxreq_hostwep \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(3))
+#define DIDmsg_lnxreq_hostwep_resultcode \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_lnxreq_hostwep_decrypt \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_lnxreq_hostwep_encrypt \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_lnxreq_commsquality \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(4))
+#define DIDmsg_lnxreq_commsquality_resultcode \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_lnxreq_commsquality_dbm \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_lnxreq_commsquality_link \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_lnxreq_commsquality_level \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_lnxreq_commsquality_noise \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(5) | 0x00000000)
+#define DIDmsg_lnxreq_autojoin \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(5))
+#define DIDmsg_lnxreq_autojoin_ssid \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_lnxreq_autojoin_authtype \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_lnxreq_autojoin_resultcode \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_cat_lnxind \
+			P80211DID_MKSECTION(4)
+#define DIDmsg_lnxind_wlansniffrm \
+			(P80211DID_MKSECTION(4) | \
+			P80211DID_MKGROUP(1))
+#define DIDmsg_lnxind_wlansniffrm_hosttime \
+			(P80211DID_MKSECTION(4) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_lnxind_wlansniffrm_mactime \
+			(P80211DID_MKSECTION(4) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_lnxind_wlansniffrm_channel \
+			(P80211DID_MKSECTION(4) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_lnxind_wlansniffrm_rssi \
+			(P80211DID_MKSECTION(4) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_lnxind_wlansniffrm_sq \
+			(P80211DID_MKSECTION(4) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(5) | 0x00000000)
+#define DIDmsg_lnxind_wlansniffrm_signal \
+			(P80211DID_MKSECTION(4) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(6) | 0x00000000)
+#define DIDmsg_lnxind_wlansniffrm_noise \
+			(P80211DID_MKSECTION(4) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(7) | 0x00000000)
+#define DIDmsg_lnxind_wlansniffrm_rate \
+			(P80211DID_MKSECTION(4) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(8) | 0x00000000)
+#define DIDmsg_lnxind_wlansniffrm_istx \
+			(P80211DID_MKSECTION(4) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(9) | 0x00000000)
+#define DIDmsg_lnxind_wlansniffrm_frmlen \
+			(P80211DID_MKSECTION(4) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(10) | 0x00000000)
+#define DIDmsg_lnxind_roam \
+			(P80211DID_MKSECTION(4) | \
+			P80211DID_MKGROUP(2))
+#define DIDmsg_lnxind_roam_reason \
+			(P80211DID_MKSECTION(4) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_cat_p2req \
+			P80211DID_MKSECTION(5)
+#define DIDmsg_p2req_join \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1))
+#define DIDmsg_p2req_join_bssid \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_join_basicrate1 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_join_basicrate2 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_p2req_join_basicrate3 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_p2req_join_basicrate4 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(5) | 0x00000000)
+#define DIDmsg_p2req_join_basicrate5 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(6) | 0x00000000)
+#define DIDmsg_p2req_join_basicrate6 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(7) | 0x00000000)
+#define DIDmsg_p2req_join_basicrate7 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(8) | 0x00000000)
+#define DIDmsg_p2req_join_basicrate8 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(9) | 0x00000000)
+#define DIDmsg_p2req_join_operationalrate1 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(10) | 0x00000000)
+#define DIDmsg_p2req_join_operationalrate2 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(11) | 0x00000000)
+#define DIDmsg_p2req_join_operationalrate3 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(12) | 0x00000000)
+#define DIDmsg_p2req_join_operationalrate4 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(13) | 0x00000000)
+#define DIDmsg_p2req_join_operationalrate5 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(14) | 0x00000000)
+#define DIDmsg_p2req_join_operationalrate6 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(15) | 0x00000000)
+#define DIDmsg_p2req_join_operationalrate7 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(16) | 0x00000000)
+#define DIDmsg_p2req_join_operationalrate8 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(17) | 0x00000000)
+#define DIDmsg_p2req_join_ssid \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(18) | 0x00000000)
+#define DIDmsg_p2req_join_channel \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(19) | 0x00000000)
+#define DIDmsg_p2req_join_authtype \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(20) | 0x00000000)
+#define DIDmsg_p2req_join_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(21) | 0x00000000)
+#define DIDmsg_p2req_readpda \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2))
+#define DIDmsg_p2req_readpda_pda \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_readpda_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_readcis \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3))
+#define DIDmsg_p2req_readcis_cis \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_readcis_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_auxport_state \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(4))
+#define DIDmsg_p2req_auxport_state_enable \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_auxport_state_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_auxport_read \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5))
+#define DIDmsg_p2req_auxport_read_addr \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_auxport_read_len \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_auxport_read_data \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_p2req_auxport_read_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_p2req_auxport_write \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6))
+#define DIDmsg_p2req_auxport_write_addr \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_auxport_write_len \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_auxport_write_data \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_p2req_auxport_write_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_p2req_low_level \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(7))
+#define DIDmsg_p2req_low_level_command \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_low_level_param0 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_low_level_param1 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_p2req_low_level_param2 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_p2req_low_level_resp0 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(5) | 0x00000000)
+#define DIDmsg_p2req_low_level_resp1 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(6) | 0x00000000)
+#define DIDmsg_p2req_low_level_resp2 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(7) | 0x00000000)
+#define DIDmsg_p2req_low_level_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(8) | 0x00000000)
+#define DIDmsg_p2req_test_command \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(8))
+#define DIDmsg_p2req_test_command_testcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(8) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_test_command_testparam \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(8) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_test_command_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(8) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_p2req_test_command_status \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(8) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_p2req_test_command_resp0 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(8) | \
+			P80211DID_MKITEM(5) | 0x00000000)
+#define DIDmsg_p2req_test_command_resp1 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(8) | \
+			P80211DID_MKITEM(6) | 0x00000000)
+#define DIDmsg_p2req_test_command_resp2 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(8) | \
+			P80211DID_MKITEM(7) | 0x00000000)
+#define DIDmsg_p2req_mmi_read \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(9))
+#define DIDmsg_p2req_mmi_read_addr \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(9) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_mmi_read_value \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(9) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_mmi_read_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(9) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_p2req_mmi_write \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(10))
+#define DIDmsg_p2req_mmi_write_addr \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(10) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_mmi_write_data \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(10) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_mmi_write_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(10) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_p2req_ramdl_state \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(11))
+#define DIDmsg_p2req_ramdl_state_enable \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(11) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_ramdl_state_exeaddr \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(11) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_ramdl_state_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(11) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_p2req_ramdl_write \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(12))
+#define DIDmsg_p2req_ramdl_write_addr \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(12) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_ramdl_write_len \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(12) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_ramdl_write_data \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(12) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_p2req_ramdl_write_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(12) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_p2req_flashdl_state \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(13))
+#define DIDmsg_p2req_flashdl_state_enable \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_flashdl_state_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(13) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_flashdl_write \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(14))
+#define DIDmsg_p2req_flashdl_write_addr \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(14) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_flashdl_write_len \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(14) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_flashdl_write_data \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(14) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_p2req_flashdl_write_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(14) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_p2req_mm_state \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(15))
+#define DIDmsg_p2req_mm_state_enable \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(15) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_mm_state_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(15) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_dump_state \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(16))
+#define DIDmsg_p2req_dump_state_level \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(16) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_dump_state_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(16) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_channel_info \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(17))
+#define DIDmsg_p2req_channel_info_channellist \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(17) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_channel_info_channeldwelltime \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(17) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_channel_info_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(17) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_p2req_channel_info_numchinfo \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(17) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_p2req_channel_info_results \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(18))
+#define DIDmsg_p2req_channel_info_results_channel \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(18) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmsg_p2req_channel_info_results_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(18) | \
+			P80211DID_MKITEM(2) | 0x00000000)
+#define DIDmsg_p2req_channel_info_results_avgnoiselevel \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(18) | \
+			P80211DID_MKITEM(3) | 0x00000000)
+#define DIDmsg_p2req_channel_info_results_peaknoiselevel \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(18) | \
+			P80211DID_MKITEM(4) | 0x00000000)
+#define DIDmsg_p2req_channel_info_results_bssactive \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(18) | \
+			P80211DID_MKITEM(5) | 0x00000000)
+#define DIDmsg_p2req_channel_info_results_pcfactive \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(18) | \
+			P80211DID_MKITEM(6) | 0x00000000)
+#define DIDmsg_p2req_enable \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(19))
+#define DIDmsg_p2req_enable_resultcode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(19) | \
+			P80211DID_MKITEM(1) | 0x00000000)
+#define DIDmib_cat_dot11smt \
+			P80211DID_MKSECTION(1)
+#define DIDmib_dot11smt_p80211Table \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(1))
+#define DIDmib_dot11smt_p80211Table_p80211_ifstate \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(1) | 0x10000000)
+#define DIDmib_dot11smt_dot11StationConfigTable \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2))
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11StationID \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(1) | 0x18000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11MediumOccupancyLimit \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(2) | 0x18000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11CFPollable \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(3) | 0x10000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11CFPPeriod \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(4) | 0x18000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11CFPMaxDuration \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(5) | 0x18000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11AuthenticationResponseTimeOut \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(6) | 0x18000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11PrivacyOptionImplemented \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(7) | 0x10000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11PowerManagementMode \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(8) | 0x18000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11DesiredSSID \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(9) | 0x18000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11DesiredBSSType \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(10) | 0x18000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11OperationalRateSet \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(11) | 0x18000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11BeaconPeriod \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(12) | 0x18000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11DTIMPeriod \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(13) | 0x18000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11AssociationResponseTimeOut \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(14) | 0x10000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11DisassociateReason \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(15) | 0x10000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11DisassociateStation \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(16) | 0x10000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11DeauthenticateReason \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(17) | 0x10000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11DeauthenticateStation \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(18) | 0x10000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11AuthenticateFailStatus \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(19) | 0x10000000)
+#define DIDmib_dot11smt_dot11StationConfigTable_dot11AuthenticateFailStation \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(20) | 0x10000000)
+#define DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3))
+#define DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithm1 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(1) | 0x14000000)
+#define DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithmsEnable1 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(2) | 0x1c000000)
+#define DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithm2 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(3) | 0x14000000)
+#define DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithmsEnable2 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(4) | 0x1c000000)
+#define DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithm3 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(5) | 0x14000000)
+#define DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithmsEnable3 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(6) | 0x1c000000)
+#define DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithm4 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(7) | 0x14000000)
+#define DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithmsEnable4 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(8) | 0x1c000000)
+#define DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithm5 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(9) | 0x14000000)
+#define DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithmsEnable5 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(10) | 0x1c000000)
+#define DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithm6 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(11) | 0x14000000)
+#define DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithmsEnable6 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(12) | 0x1c000000)
+#define DIDmib_dot11smt_dot11WEPDefaultKeysTable \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(4))
+#define DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey0 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(1) | 0x0c000000)
+#define DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey1 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(2) | 0x0c000000)
+#define DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey2 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(3) | 0x0c000000)
+#define DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey3 \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(4) | 0x0c000000)
+#define DIDmib_dot11smt_dot11WEPKeyMappingsTable \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5))
+#define DIDmib_dot11smt_dot11WEPKeyMappingsTable_dot11WEPKeyMappingIndex \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(1) | 0x1c000000)
+#define DIDmib_dot11smt_dot11WEPKeyMappingsTable_dot11WEPKeyMappingAddress \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(2) | 0x1c000000)
+#define DIDmib_dot11smt_dot11WEPKeyMappingsTable_dot11WEPKeyMappingWEPOn \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(3) | 0x1c000000)
+#define DIDmib_dot11smt_dot11WEPKeyMappingsTable_dot11WEPKeyMappingValue \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(4) | 0x1c000000)
+#define DIDmib_dot11smt_dot11PrivacyTable \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6))
+#define DIDmib_dot11smt_dot11PrivacyTable_dot11PrivacyInvoked \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(1) | 0x18000000)
+#define DIDmib_dot11smt_dot11PrivacyTable_dot11WEPDefaultKeyID \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(2) | 0x18000000)
+#define DIDmib_dot11smt_dot11PrivacyTable_dot11WEPKeyMappingLength \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(3) | 0x18000000)
+#define DIDmib_dot11smt_dot11PrivacyTable_dot11ExcludeUnencrypted \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(4) | 0x18000000)
+#define DIDmib_dot11smt_dot11PrivacyTable_dot11WEPICVErrorCount \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(5) | 0x10000000)
+#define DIDmib_dot11smt_dot11PrivacyTable_dot11WEPExcludedCount \
+			(P80211DID_MKSECTION(1) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(6) | 0x10000000)
+#define DIDmib_cat_dot11mac \
+			P80211DID_MKSECTION(2)
+#define DIDmib_dot11mac_dot11OperationTable \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(1))
+#define DIDmib_dot11mac_dot11OperationTable_dot11MACAddress \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(1) | 0x18000000)
+#define DIDmib_dot11mac_dot11OperationTable_dot11RTSThreshold \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(2) | 0x18000000)
+#define DIDmib_dot11mac_dot11OperationTable_dot11ShortRetryLimit \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(3) | 0x10000000)
+#define DIDmib_dot11mac_dot11OperationTable_dot11LongRetryLimit \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(4) | 0x10000000)
+#define DIDmib_dot11mac_dot11OperationTable_dot11FragmentationThreshold \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(5) | 0x18000000)
+#define DIDmib_dot11mac_dot11OperationTable_dot11MaxTransmitMSDULifetime \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(6) | 0x10000000)
+#define DIDmib_dot11mac_dot11OperationTable_dot11MaxReceiveLifetime \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(7) | 0x10000000)
+#define DIDmib_dot11mac_dot11OperationTable_dot11ManufacturerID \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(8) | 0x10000000)
+#define DIDmib_dot11mac_dot11OperationTable_dot11ProductID \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(9) | 0x10000000)
+#define DIDmib_dot11mac_dot11CountersTable \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2))
+#define DIDmib_dot11mac_dot11CountersTable_dot11TransmittedFragmentCount \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(1) | 0x10000000)
+#define DIDmib_dot11mac_dot11CountersTable_dot11MulticastTransmittedFrameCount \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(2) | 0x10000000)
+#define DIDmib_dot11mac_dot11CountersTable_dot11FailedCount \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(3) | 0x10000000)
+#define DIDmib_dot11mac_dot11CountersTable_dot11RetryCount \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(4) | 0x10000000)
+#define DIDmib_dot11mac_dot11CountersTable_dot11MultipleRetryCount \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(5) | 0x10000000)
+#define DIDmib_dot11mac_dot11CountersTable_dot11FrameDuplicateCount \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(6) | 0x10000000)
+#define DIDmib_dot11mac_dot11CountersTable_dot11RTSSuccessCount \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(7) | 0x10000000)
+#define DIDmib_dot11mac_dot11CountersTable_dot11RTSFailureCount \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(8) | 0x10000000)
+#define DIDmib_dot11mac_dot11CountersTable_dot11ACKFailureCount \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(9) | 0x10000000)
+#define DIDmib_dot11mac_dot11CountersTable_dot11ReceivedFragmentCount \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(10) | 0x10000000)
+#define DIDmib_dot11mac_dot11CountersTable_dot11MulticastReceivedFrameCount \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(11) | 0x10000000)
+#define DIDmib_dot11mac_dot11CountersTable_dot11FCSErrorCount \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(12) | 0x10000000)
+#define DIDmib_dot11mac_dot11CountersTable_dot11TransmittedFrameCount \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(13) | 0x10000000)
+#define DIDmib_dot11mac_dot11CountersTable_dot11WEPUndecryptableCount \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(14) | 0x10000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3))
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address1 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(1) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address2 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(2) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address3 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(3) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address4 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(4) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address5 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(5) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address6 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(6) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address7 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(7) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address8 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(8) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address9 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(9) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address10 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(10) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address11 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(11) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address12 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(12) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address13 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(13) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address14 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(14) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address15 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(15) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address16 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(16) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address17 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(17) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address18 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(18) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address19 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(19) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address20 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(20) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address21 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(21) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address22 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(22) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address23 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(23) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address24 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(24) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address25 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(25) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address26 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(26) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address27 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(27) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address28 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(28) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address29 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(29) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address30 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(30) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address31 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(31) | 0x1c000000)
+#define DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address32 \
+			(P80211DID_MKSECTION(2) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(32) | 0x1c000000)
+#define DIDmib_cat_dot11phy \
+			P80211DID_MKSECTION(3)
+#define DIDmib_dot11phy_dot11PhyOperationTable \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(1))
+#define DIDmib_dot11phy_dot11PhyOperationTable_dot11PHYType \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(1) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyOperationTable_dot11CurrentRegDomain \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(2) | 0x18000000)
+#define DIDmib_dot11phy_dot11PhyOperationTable_dot11TempType \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(3) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyOperationTable_dot11ChannelAgilityPresent \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(4) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyOperationTable_dot11ChannelAgilityEnabled \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(5) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyOperationTable_dot11ShortPreambleEnabled \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(6) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyAntennaTable \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(2))
+#define DIDmib_dot11phy_dot11PhyAntennaTable_dot11CurrentTxAntenna \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(1) | 0x18000000)
+#define DIDmib_dot11phy_dot11PhyAntennaTable_dot11DiversitySupport \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(2) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyAntennaTable_dot11CurrentRxAntenna \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(3) | 0x18000000)
+#define DIDmib_dot11phy_dot11PhyTxPowerTable \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(3))
+#define DIDmib_dot11phy_dot11PhyTxPowerTable_dot11NumberSupportedPowerLevels \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(1) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel1 \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(2) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel2 \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(3) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel3 \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(4) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel4 \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(5) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel5 \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(6) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel6 \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(7) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel7 \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(8) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel8 \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(9) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyTxPowerTable_dot11CurrentTxPowerLevel \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(10) | 0x18000000)
+#define DIDmib_dot11phy_dot11PhyFHSSTable \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(4))
+#define DIDmib_dot11phy_dot11PhyFHSSTable_dot11HopTime \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(1) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyFHSSTable_dot11CurrentChannelNumber \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(2) | 0x18000000)
+#define DIDmib_dot11phy_dot11PhyFHSSTable_dot11MaxDwellTime \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(3) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyFHSSTable_dot11CurrentDwellTime \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(4) | 0x18000000)
+#define DIDmib_dot11phy_dot11PhyFHSSTable_dot11CurrentSet \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(5) | 0x18000000)
+#define DIDmib_dot11phy_dot11PhyFHSSTable_dot11CurrentPattern \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(6) | 0x18000000)
+#define DIDmib_dot11phy_dot11PhyFHSSTable_dot11CurrentIndex \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(7) | 0x18000000)
+#define DIDmib_dot11phy_dot11PhyDSSSTable \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(5))
+#define DIDmib_dot11phy_dot11PhyDSSSTable_dot11CurrentChannel \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(1) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyDSSSTable_dot11CCAModeSupported \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(2) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyDSSSTable_dot11CurrentCCAMode \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(3) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyDSSSTable_dot11EDThreshold \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(4) | 0x18000000)
+#define DIDmib_dot11phy_dot11PhyDSSSTable_dot11ShortPreambleOptionImplemented \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(5) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyDSSSTable_dot11PBCCOptionImplemented \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(6) | 0x10000000)
+#define DIDmib_dot11phy_dot11PhyIRTable \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(6))
+#define DIDmib_dot11phy_dot11PhyIRTable_dot11CCAWatchdogTimerMax \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(1) | 0x18000000)
+#define DIDmib_dot11phy_dot11PhyIRTable_dot11CCAWatchdogCountMax \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(2) | 0x18000000)
+#define DIDmib_dot11phy_dot11PhyIRTable_dot11CCAWatchdogTimerMin \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(3) | 0x18000000)
+#define DIDmib_dot11phy_dot11PhyIRTable_dot11CCAWatchdogCountMin \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(4) | 0x18000000)
+#define DIDmib_dot11phy_dot11RegDomainsSupportedTable \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(7))
+#define DIDmib_dot11phy_dot11RegDomainsSupportedTable_dot11RegDomainsSupportIndex \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(1) | 0x1c000000)
+#define DIDmib_dot11phy_dot11RegDomainsSupportedTable_dot11RegDomainsSupportValue \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(2) | 0x14000000)
+#define DIDmib_dot11phy_dot11AntennasListTable \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(8))
+#define DIDmib_dot11phy_dot11AntennasListTable_dot11AntennaListIndex \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(8) | \
+			P80211DID_MKITEM(1) | 0x1c000000)
+#define DIDmib_dot11phy_dot11AntennasListTable_dot11SupportedTxAntenna \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(8) | \
+			P80211DID_MKITEM(2) | 0x1c000000)
+#define DIDmib_dot11phy_dot11AntennasListTable_dot11SupportedRxAntenna \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(8) | \
+			P80211DID_MKITEM(3) | 0x1c000000)
+#define DIDmib_dot11phy_dot11AntennasListTable_dot11DiversitySelectionRx \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(8) | \
+			P80211DID_MKITEM(4) | 0x1c000000)
+#define DIDmib_dot11phy_dot11SupportedDataRatesTxTable \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(9))
+#define DIDmib_dot11phy_dot11SupportedDataRatesTxTable_dot11SupportedDataRatesTxIndex \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(9) | \
+			P80211DID_MKITEM(1) | 0x1c000000)
+#define DIDmib_dot11phy_dot11SupportedDataRatesTxTable_dot11SupportedDataRatesTxValue \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(9) | \
+			P80211DID_MKITEM(2) | 0x14000000)
+#define DIDmib_dot11phy_dot11SupportedDataRatesRxTable \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(10))
+#define DIDmib_dot11phy_dot11SupportedDataRatesRxTable_dot11SupportedDataRatesRxIndex \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(10) | \
+			P80211DID_MKITEM(1) | 0x1c000000)
+#define DIDmib_dot11phy_dot11SupportedDataRatesRxTable_dot11SupportedDataRatesRxValue \
+			(P80211DID_MKSECTION(3) | \
+			P80211DID_MKGROUP(10) | \
+			P80211DID_MKITEM(2) | 0x14000000)
+#define DIDmib_cat_lnx \
+			P80211DID_MKSECTION(4)
+#define DIDmib_lnx_lnxConfigTable \
+			(P80211DID_MKSECTION(4) | \
+			P80211DID_MKGROUP(1))
+#define DIDmib_lnx_lnxConfigTable_lnxRSNAIE \
+			(P80211DID_MKSECTION(4) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(1) | 0x18000000)
+#define DIDmib_cat_p2 \
+			P80211DID_MKSECTION(5)
+#define DIDmib_p2_p2Table \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1))
+#define DIDmib_p2_p2Table_p2MMTx \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(1) | 0x18000000)
+#define DIDmib_p2_p2Table_p2EarlyBeacon \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(2) | 0x18000000)
+#define DIDmib_p2_p2Table_p2ReceivedFrameStatistics \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(3) | 0x10000000)
+#define DIDmib_p2_p2Table_p2CommunicationTallies \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(4) | 0x10000000)
+#define DIDmib_p2_p2Table_p2Authenticated \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(5) | 0x10000000)
+#define DIDmib_p2_p2Table_p2Associated \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(6) | 0x10000000)
+#define DIDmib_p2_p2Table_p2PowerSaveUserCount \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(7) | 0x10000000)
+#define DIDmib_p2_p2Table_p2Comment \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(8) | 0x18000000)
+#define DIDmib_p2_p2Table_p2AccessMode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(9) | 0x18000000)
+#define DIDmib_p2_p2Table_p2AccessAllow \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(10) | 0x18000000)
+#define DIDmib_p2_p2Table_p2AccessDeny \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(11) | 0x18000000)
+#define DIDmib_p2_p2Table_p2ChannelInfoResults \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(1) | \
+			P80211DID_MKITEM(12) | 0x10000000)
+#define DIDmib_p2_p2Static \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2))
+#define DIDmib_p2_p2Static_p2CnfPortType \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(1) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfOwnMACAddress \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(2) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfDesiredSSID \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(3) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfOwnChannel \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(4) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfOwnSSID \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(5) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfOwnATIMWindow \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(6) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfSystemScale \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(7) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfMaxDataLength \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(8) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfWDSAddress \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(9) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfPMEnabled \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(10) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfPMEPS \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(11) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfMulticastReceive \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(12) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfMaxSleepDuration \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(13) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfPMHoldoverDuration \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(14) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfOwnName \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(15) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfOwnDTIMPeriod \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(16) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfWDSAddress1 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(17) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfWDSAddress2 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(18) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfWDSAddress3 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(19) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfWDSAddress4 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(20) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfWDSAddress5 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(21) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfWDSAddress6 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(22) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfMulticastPMBuffering \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(23) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfWEPDefaultKeyID \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(24) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfWEPDefaultKey0 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(25) | 0x08000000)
+#define DIDmib_p2_p2Static_p2CnfWEPDefaultKey1 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(26) | 0x08000000)
+#define DIDmib_p2_p2Static_p2CnfWEPDefaultKey2 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(27) | 0x08000000)
+#define DIDmib_p2_p2Static_p2CnfWEPDefaultKey3 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(28) | 0x08000000)
+#define DIDmib_p2_p2Static_p2CnfWEPFlags \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(29) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfAuthentication \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(30) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfMaxAssociatedStations \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(31) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfTxControl \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(32) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfRoamingMode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(33) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfHostAuthentication \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(34) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfRcvCrcError \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(35) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfAltRetryCount \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(36) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfBeaconInterval \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(37) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfMediumOccupancyLimit \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(38) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfCFPPeriod \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(39) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfCFPMaxDuration \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(40) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfCFPFlags \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(41) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfSTAPCFInfo \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(42) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfPriorityQUsage \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(43) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfTIMCtrl \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(44) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfThirty2Tally \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(45) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfEnhSecurity \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(46) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfShortPreamble \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(47) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfExcludeLongPreamble \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(48) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfAuthenticationRspTO \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(49) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfBasicRates \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(50) | 0x18000000)
+#define DIDmib_p2_p2Static_p2CnfSupportedRates \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(2) | \
+			P80211DID_MKITEM(51) | 0x18000000)
+#define DIDmib_p2_p2Dynamic \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3))
+#define DIDmib_p2_p2Dynamic_p2CreateIBSS \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(1) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2FragmentationThreshold \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(2) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2RTSThreshold \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(3) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2TxRateControl \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(4) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2PromiscuousMode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(5) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2FragmentationThreshold0 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(6) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2FragmentationThreshold1 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(7) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2FragmentationThreshold2 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(8) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2FragmentationThreshold3 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(9) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2FragmentationThreshold4 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(10) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2FragmentationThreshold5 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(11) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2FragmentationThreshold6 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(12) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2RTSThreshold0 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(13) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2RTSThreshold1 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(14) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2RTSThreshold2 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(15) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2RTSThreshold3 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(16) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2RTSThreshold4 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(17) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2RTSThreshold5 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(18) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2RTSThreshold6 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(19) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2TxRateControl0 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(20) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2TxRateControl1 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(21) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2TxRateControl2 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(22) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2TxRateControl3 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(23) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2TxRateControl4 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(24) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2TxRateControl5 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(25) | 0x18000000)
+#define DIDmib_p2_p2Dynamic_p2TxRateControl6 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(3) | \
+			P80211DID_MKITEM(26) | 0x18000000)
+#define DIDmib_p2_p2Behavior \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(4))
+#define DIDmib_p2_p2Behavior_p2TickTime \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(4) | \
+			P80211DID_MKITEM(1) | 0x18000000)
+#define DIDmib_p2_p2NIC \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5))
+#define DIDmib_p2_p2NIC_p2MaxLoadTime \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(1) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2DLBufferPage \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(2) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2DLBufferOffset \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(3) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2DLBufferLength \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(4) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2PRIIdentity \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(5) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2PRISupRange \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(6) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2CFIActRanges \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(7) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2NICSerialNumber \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(8) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2NICIdentity \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(9) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2MFISupRange \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(10) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2CFISupRange \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(11) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2ChannelList \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(12) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2RegulatoryDomains \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(13) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2TempType \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(14) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2STAIdentity \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(15) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2STASupRange \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(16) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2MFIActRanges \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(17) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2STACFIActRanges \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(18) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2BuildSequence \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(19) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2PrimaryFWID \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(20) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2SecondaryFWID \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(21) | 0x10000000)
+#define DIDmib_p2_p2NIC_p2TertiaryFWID \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(5) | \
+			P80211DID_MKITEM(22) | 0x10000000)
+#define DIDmib_p2_p2MAC \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6))
+#define DIDmib_p2_p2MAC_p2PortStatus \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(1) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2CurrentSSID \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(2) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2CurrentBSSID \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(3) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2CommsQuality \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(4) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2CommsQualityCQ \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(5) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2CommsQualityASL \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(6) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2CommsQualityANL \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(7) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2dbmCommsQuality \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(8) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2dbmCommsQualityCQ \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(9) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2dbmCommsQualityASL \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(10) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2dbmCommsQualityANL \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(11) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2CurrentTxRate \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(12) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2CurrentBeaconInterval \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(13) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2StaCurrentScaleThresholds \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(14) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2APCurrentScaleThresholds \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(15) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2ProtocolRspTime \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(16) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2ShortRetryLimit \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(17) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2LongRetryLimit \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(18) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2MaxTransmitLifetime \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(19) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2MaxReceiveLifetime \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(20) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2CFPollable \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(21) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2AuthenticationAlgorithms \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(22) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2PrivacyOptionImplemented \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(23) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2CurrentTxRate1 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(24) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2CurrentTxRate2 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(25) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2CurrentTxRate3 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(26) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2CurrentTxRate4 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(27) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2CurrentTxRate5 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(28) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2CurrentTxRate6 \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(29) | 0x10000000)
+#define DIDmib_p2_p2MAC_p2OwnMACAddress \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(6) | \
+			P80211DID_MKITEM(30) | 0x10000000)
+#define DIDmib_p2_p2Modem \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(7))
+#define DIDmib_p2_p2Modem_p2PHYType \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(1) | 0x10000000)
+#define DIDmib_p2_p2Modem_p2CurrentChannel \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(2) | 0x10000000)
+#define DIDmib_p2_p2Modem_p2CurrentPowerState \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(3) | 0x10000000)
+#define DIDmib_p2_p2Modem_p2CCAMode \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(4) | 0x10000000)
+#define DIDmib_p2_p2Modem_p2SupportedDataRates \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(5) | 0x10000000)
+#define DIDmib_p2_p2Modem_p2TxPowerMax \
+			(P80211DID_MKSECTION(5) | \
+			P80211DID_MKGROUP(7) | \
+			P80211DID_MKITEM(6) | 0x18000000)
+#endif
diff --git a/drivers/staging/wlan-ng/p80211metamib.h b/drivers/staging/wlan-ng/p80211metamib.h
new file mode 100644
index 0000000..19867fd
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211metamib.h
@@ -0,0 +1,105 @@
+/* p80211metamib.h
+*
+* Macros, const, types, and funcs for p80211 mib metadata
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* This file declares some of the constants and types used in various
+* parts of the linux-wlan system.
+*
+* Notes:
+*   - Constant values are always in HOST byte order.
+*
+* All functions and statics declared here are implemented in p80211types.c
+*   --------------------------------------------------------------------
+*/
+
+#ifndef _P80211METAMIB_H
+#define _P80211METAMIB_H
+
+/*================================================================*/
+/* System Includes */
+
+/*================================================================*/
+/* Project Includes */
+
+#ifndef _WLAN_COMPAT_H
+#include "wlan_compat.h"
+#endif
+
+/*================================================================*/
+/* Constants */
+
+/*----------------------------------------------------------------*/
+/* */
+
+/*================================================================*/
+/* Macros */
+
+/*----------------------------------------------------------------*/
+/* */
+
+/*================================================================*/
+/* Types */
+
+/*----------------------------------------------------------------*/
+/* */
+
+/*================================================================*/
+/* Extern Declarations */
+
+/*----------------------------------------------------------------*/
+/* The following is the external declaration for the mib */
+/* category metadata list */
+
+extern catlistitem_t mib_catlist[];
+extern UINT32 mib_catlist_size;
+
+
+/*================================================================*/
+/* Function Declarations */
+
+/*----------------------------------------------------------------*/
+/* */
+
+#endif /* _P80211METAMIB_H */
diff --git a/drivers/staging/wlan-ng/p80211metamsg.h b/drivers/staging/wlan-ng/p80211metamsg.h
new file mode 100644
index 0000000..4d6dfcc
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211metamsg.h
@@ -0,0 +1,105 @@
+/* p80211metamsg.h
+*
+* Macros, const, types, and funcs for p80211 msg metadata
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* This file declares some of the constants and types used in various
+* parts of the linux-wlan system.
+*
+* Notes:
+*   - Constant values are always in HOST byte order.
+*
+* All functions and statics declared here are implemented in p80211types.c
+*   --------------------------------------------------------------------
+*/
+
+#ifndef _P80211METAMSG_H
+#define _P80211METAMSG_H
+
+/*================================================================*/
+/* System Includes */
+
+/*================================================================*/
+/* Project Includes */
+
+#ifndef _WLAN_COMPAT_H
+#include "wlan_compat.h"
+#endif
+
+/*================================================================*/
+/* Constants */
+
+/*----------------------------------------------------------------*/
+/* */
+
+/*================================================================*/
+/* Macros */
+
+/*----------------------------------------------------------------*/
+/* */
+
+/*================================================================*/
+/* Types */
+
+/*----------------------------------------------------------------*/
+/* */
+
+/*================================================================*/
+/* Extern Declarations */
+
+/*----------------------------------------------------------------*/
+/* The following is the external declaration for the message */
+/* category metadata list */
+
+extern catlistitem_t msg_catlist[];
+extern UINT32 msg_catlist_size;
+
+
+/*================================================================*/
+/* Function Declarations */
+
+/*----------------------------------------------------------------*/
+/* */
+
+#endif /* _P80211METAMSG_H */
diff --git a/drivers/staging/wlan-ng/p80211metastruct.h b/drivers/staging/wlan-ng/p80211metastruct.h
new file mode 100644
index 0000000..715f4b2
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211metastruct.h
@@ -0,0 +1,644 @@
+/* This file is GENERATED AUTOMATICALLY.  DO NOT EDIT OR MODIFY.
+* --------------------------------------------------------------------
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*/
+
+#ifndef _P80211MKMETASTRUCT_H
+#define _P80211MKMETASTRUCT_H
+
+
+typedef struct p80211msg_dot11req_mibget
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_unk392_t	mibattribute	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11req_mibget_t;
+
+typedef struct p80211msg_dot11req_mibset
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_unk392_t	mibattribute	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11req_mibset_t;
+
+typedef struct p80211msg_dot11req_powermgmt
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	powermgmtmode	;
+	p80211item_uint32_t	wakeup	;
+	p80211item_uint32_t	receivedtims	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11req_powermgmt_t;
+
+typedef struct p80211msg_dot11req_scan
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	bsstype	;
+	p80211item_pstr6_t	bssid	;
+	UINT8	pad_0C[1]	;
+	p80211item_pstr32_t	ssid	;
+	UINT8	pad_1D[3]	;
+	p80211item_uint32_t	scantype	;
+	p80211item_uint32_t	probedelay	;
+	p80211item_pstr14_t	channellist	;
+	UINT8	pad_2C[1]	;
+	p80211item_uint32_t	minchanneltime	;
+	p80211item_uint32_t	maxchanneltime	;
+	p80211item_uint32_t	resultcode	;
+	p80211item_uint32_t	numbss	;
+	p80211item_uint32_t	append	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11req_scan_t;
+
+typedef struct p80211msg_dot11req_scan_results
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	bssindex	;
+	p80211item_uint32_t	resultcode	;
+	p80211item_uint32_t	signal	;
+	p80211item_uint32_t	noise	;
+	p80211item_pstr6_t	bssid	;
+	UINT8	pad_3C[1]	;
+	p80211item_pstr32_t	ssid	;
+	UINT8	pad_4D[3]	;
+	p80211item_uint32_t	bsstype	;
+	p80211item_uint32_t	beaconperiod	;
+	p80211item_uint32_t	dtimperiod	;
+	p80211item_uint32_t	timestamp	;
+	p80211item_uint32_t	localtime	;
+	p80211item_uint32_t	fhdwelltime	;
+	p80211item_uint32_t	fhhopset	;
+	p80211item_uint32_t	fhhoppattern	;
+	p80211item_uint32_t	fhhopindex	;
+	p80211item_uint32_t	dschannel	;
+	p80211item_uint32_t	cfpcount	;
+	p80211item_uint32_t	cfpperiod	;
+	p80211item_uint32_t	cfpmaxduration	;
+	p80211item_uint32_t	cfpdurremaining	;
+	p80211item_uint32_t	ibssatimwindow	;
+	p80211item_uint32_t	cfpollable	;
+	p80211item_uint32_t	cfpollreq	;
+	p80211item_uint32_t	privacy	;
+	p80211item_uint32_t	basicrate1	;
+	p80211item_uint32_t	basicrate2	;
+	p80211item_uint32_t	basicrate3	;
+	p80211item_uint32_t	basicrate4	;
+	p80211item_uint32_t	basicrate5	;
+	p80211item_uint32_t	basicrate6	;
+	p80211item_uint32_t	basicrate7	;
+	p80211item_uint32_t	basicrate8	;
+	p80211item_uint32_t	supprate1	;
+	p80211item_uint32_t	supprate2	;
+	p80211item_uint32_t	supprate3	;
+	p80211item_uint32_t	supprate4	;
+	p80211item_uint32_t	supprate5	;
+	p80211item_uint32_t	supprate6	;
+	p80211item_uint32_t	supprate7	;
+	p80211item_uint32_t	supprate8	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11req_scan_results_t;
+
+typedef struct p80211msg_dot11req_join
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_pstr6_t	bssid	;
+	UINT8	pad_5C[1]	;
+	p80211item_uint32_t	joinfailuretimeout	;
+	p80211item_uint32_t	basicrate1	;
+	p80211item_uint32_t	basicrate2	;
+	p80211item_uint32_t	basicrate3	;
+	p80211item_uint32_t	basicrate4	;
+	p80211item_uint32_t	basicrate5	;
+	p80211item_uint32_t	basicrate6	;
+	p80211item_uint32_t	basicrate7	;
+	p80211item_uint32_t	basicrate8	;
+	p80211item_uint32_t	operationalrate1	;
+	p80211item_uint32_t	operationalrate2	;
+	p80211item_uint32_t	operationalrate3	;
+	p80211item_uint32_t	operationalrate4	;
+	p80211item_uint32_t	operationalrate5	;
+	p80211item_uint32_t	operationalrate6	;
+	p80211item_uint32_t	operationalrate7	;
+	p80211item_uint32_t	operationalrate8	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11req_join_t;
+
+typedef struct p80211msg_dot11req_authenticate
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_pstr6_t	peerstaaddress	;
+	UINT8	pad_6C[1]	;
+	p80211item_uint32_t	authenticationtype	;
+	p80211item_uint32_t	authenticationfailuretimeout	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11req_authenticate_t;
+
+typedef struct p80211msg_dot11req_deauthenticate
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_pstr6_t	peerstaaddress	;
+	UINT8	pad_7C[1]	;
+	p80211item_uint32_t	reasoncode	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11req_deauthenticate_t;
+
+typedef struct p80211msg_dot11req_associate
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_pstr6_t	peerstaaddress	;
+	UINT8	pad_8C[1]	;
+	p80211item_uint32_t	associatefailuretimeout	;
+	p80211item_uint32_t	cfpollable	;
+	p80211item_uint32_t	cfpollreq	;
+	p80211item_uint32_t	privacy	;
+	p80211item_uint32_t	listeninterval	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11req_associate_t;
+
+typedef struct p80211msg_dot11req_reassociate
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_pstr6_t	newapaddress	;
+	UINT8	pad_9C[1]	;
+	p80211item_uint32_t	reassociatefailuretimeout	;
+	p80211item_uint32_t	cfpollable	;
+	p80211item_uint32_t	cfpollreq	;
+	p80211item_uint32_t	privacy	;
+	p80211item_uint32_t	listeninterval	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11req_reassociate_t;
+
+typedef struct p80211msg_dot11req_disassociate
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_pstr6_t	peerstaaddress	;
+	UINT8	pad_10C[1]	;
+	p80211item_uint32_t	reasoncode	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11req_disassociate_t;
+
+typedef struct p80211msg_dot11req_reset
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	setdefaultmib	;
+	p80211item_pstr6_t	macaddress	;
+	UINT8	pad_11C[1]	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11req_reset_t;
+
+typedef struct p80211msg_dot11req_start
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_pstr32_t	ssid	;
+	UINT8	pad_12D[3]	;
+	p80211item_uint32_t	bsstype	;
+	p80211item_uint32_t	beaconperiod	;
+	p80211item_uint32_t	dtimperiod	;
+	p80211item_uint32_t	cfpperiod	;
+	p80211item_uint32_t	cfpmaxduration	;
+	p80211item_uint32_t	fhdwelltime	;
+	p80211item_uint32_t	fhhopset	;
+	p80211item_uint32_t	fhhoppattern	;
+	p80211item_uint32_t	dschannel	;
+	p80211item_uint32_t	ibssatimwindow	;
+	p80211item_uint32_t	probedelay	;
+	p80211item_uint32_t	cfpollable	;
+	p80211item_uint32_t	cfpollreq	;
+	p80211item_uint32_t	basicrate1	;
+	p80211item_uint32_t	basicrate2	;
+	p80211item_uint32_t	basicrate3	;
+	p80211item_uint32_t	basicrate4	;
+	p80211item_uint32_t	basicrate5	;
+	p80211item_uint32_t	basicrate6	;
+	p80211item_uint32_t	basicrate7	;
+	p80211item_uint32_t	basicrate8	;
+	p80211item_uint32_t	operationalrate1	;
+	p80211item_uint32_t	operationalrate2	;
+	p80211item_uint32_t	operationalrate3	;
+	p80211item_uint32_t	operationalrate4	;
+	p80211item_uint32_t	operationalrate5	;
+	p80211item_uint32_t	operationalrate6	;
+	p80211item_uint32_t	operationalrate7	;
+	p80211item_uint32_t	operationalrate8	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11req_start_t;
+
+typedef struct p80211msg_dot11ind_authenticate
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_pstr6_t	peerstaaddress	;
+	UINT8	pad_13C[1]	;
+	p80211item_uint32_t	authenticationtype	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11ind_authenticate_t;
+
+typedef struct p80211msg_dot11ind_deauthenticate
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_pstr6_t	peerstaaddress	;
+	UINT8	pad_14C[1]	;
+	p80211item_uint32_t	reasoncode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11ind_deauthenticate_t;
+
+typedef struct p80211msg_dot11ind_associate
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_pstr6_t	peerstaaddress	;
+	UINT8	pad_15C[1]	;
+	p80211item_uint32_t	aid	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11ind_associate_t;
+
+typedef struct p80211msg_dot11ind_reassociate
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_pstr6_t	peerstaaddress	;
+	UINT8	pad_16C[1]	;
+	p80211item_uint32_t	aid	;
+	p80211item_pstr6_t	oldapaddress	;
+	UINT8	pad_17C[1]	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11ind_reassociate_t;
+
+typedef struct p80211msg_dot11ind_disassociate
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_pstr6_t	peerstaaddress	;
+	UINT8	pad_18C[1]	;
+	p80211item_uint32_t	reasoncode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_dot11ind_disassociate_t;
+
+typedef struct p80211msg_lnxreq_ifstate
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	ifstate	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_lnxreq_ifstate_t;
+
+typedef struct p80211msg_lnxreq_wlansniff
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	enable	;
+	p80211item_uint32_t	channel	;
+	p80211item_uint32_t	prismheader	;
+	p80211item_uint32_t	wlanheader	;
+	p80211item_uint32_t	keepwepflags	;
+	p80211item_uint32_t	stripfcs	;
+	p80211item_uint32_t	packet_trunc	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_lnxreq_wlansniff_t;
+
+typedef struct p80211msg_lnxreq_hostwep
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	resultcode	;
+	p80211item_uint32_t	decrypt	;
+	p80211item_uint32_t	encrypt	;
+} __WLAN_ATTRIB_PACK__ p80211msg_lnxreq_hostwep_t;
+
+typedef struct p80211msg_lnxreq_commsquality
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	resultcode	;
+	p80211item_uint32_t	dbm	;
+	p80211item_uint32_t	link	;
+	p80211item_uint32_t	level	;
+	p80211item_uint32_t	noise	;
+} __WLAN_ATTRIB_PACK__ p80211msg_lnxreq_commsquality_t;
+
+typedef struct p80211msg_lnxreq_autojoin
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_pstr32_t	ssid	;
+	UINT8	pad_19D[3]	;
+	p80211item_uint32_t	authtype	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_lnxreq_autojoin_t;
+
+typedef struct p80211msg_lnxind_wlansniffrm
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	hosttime	;
+	p80211item_uint32_t	mactime	;
+	p80211item_uint32_t	channel	;
+	p80211item_uint32_t	rssi	;
+	p80211item_uint32_t	sq	;
+	p80211item_uint32_t	signal	;
+	p80211item_uint32_t	noise	;
+	p80211item_uint32_t	rate	;
+	p80211item_uint32_t	istx	;
+	p80211item_uint32_t	frmlen	;
+} __WLAN_ATTRIB_PACK__ p80211msg_lnxind_wlansniffrm_t;
+
+typedef struct p80211msg_lnxind_roam
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	reason	;
+} __WLAN_ATTRIB_PACK__ p80211msg_lnxind_roam_t;
+
+typedef struct p80211msg_p2req_join
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_pstr6_t	bssid	;
+	UINT8	pad_20C[1]	;
+	p80211item_uint32_t	basicrate1	;
+	p80211item_uint32_t	basicrate2	;
+	p80211item_uint32_t	basicrate3	;
+	p80211item_uint32_t	basicrate4	;
+	p80211item_uint32_t	basicrate5	;
+	p80211item_uint32_t	basicrate6	;
+	p80211item_uint32_t	basicrate7	;
+	p80211item_uint32_t	basicrate8	;
+	p80211item_uint32_t	operationalrate1	;
+	p80211item_uint32_t	operationalrate2	;
+	p80211item_uint32_t	operationalrate3	;
+	p80211item_uint32_t	operationalrate4	;
+	p80211item_uint32_t	operationalrate5	;
+	p80211item_uint32_t	operationalrate6	;
+	p80211item_uint32_t	operationalrate7	;
+	p80211item_uint32_t	operationalrate8	;
+	p80211item_pstr32_t	ssid	;
+	UINT8	pad_21D[3]	;
+	p80211item_uint32_t	channel	;
+	p80211item_uint32_t	authtype	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_join_t;
+
+typedef struct p80211msg_p2req_readpda
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_unk1024_t	pda	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_readpda_t;
+
+typedef struct p80211msg_p2req_readcis
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_unk1024_t	cis	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_readcis_t;
+
+typedef struct p80211msg_p2req_auxport_state
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	enable	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_auxport_state_t;
+
+typedef struct p80211msg_p2req_auxport_read
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	addr	;
+	p80211item_uint32_t	len	;
+	p80211item_unk1024_t	data	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_auxport_read_t;
+
+typedef struct p80211msg_p2req_auxport_write
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	addr	;
+	p80211item_uint32_t	len	;
+	p80211item_unk1024_t	data	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_auxport_write_t;
+
+typedef struct p80211msg_p2req_low_level
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	command	;
+	p80211item_uint32_t	param0	;
+	p80211item_uint32_t	param1	;
+	p80211item_uint32_t	param2	;
+	p80211item_uint32_t	resp0	;
+	p80211item_uint32_t	resp1	;
+	p80211item_uint32_t	resp2	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_low_level_t;
+
+typedef struct p80211msg_p2req_test_command
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	testcode	;
+	p80211item_uint32_t	testparam	;
+	p80211item_uint32_t	resultcode	;
+	p80211item_uint32_t	status	;
+	p80211item_uint32_t	resp0	;
+	p80211item_uint32_t	resp1	;
+	p80211item_uint32_t	resp2	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_test_command_t;
+
+typedef struct p80211msg_p2req_mmi_read
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	addr	;
+	p80211item_uint32_t	value	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_mmi_read_t;
+
+typedef struct p80211msg_p2req_mmi_write
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	addr	;
+	p80211item_uint32_t	data	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_mmi_write_t;
+
+typedef struct p80211msg_p2req_ramdl_state
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	enable	;
+	p80211item_uint32_t	exeaddr	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_ramdl_state_t;
+
+typedef struct p80211msg_p2req_ramdl_write
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	addr	;
+	p80211item_uint32_t	len	;
+	p80211item_unk4096_t	data	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_ramdl_write_t;
+
+typedef struct p80211msg_p2req_flashdl_state
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	enable	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_flashdl_state_t;
+
+typedef struct p80211msg_p2req_flashdl_write
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	addr	;
+	p80211item_uint32_t	len	;
+	p80211item_unk4096_t	data	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_flashdl_write_t;
+
+typedef struct p80211msg_p2req_mm_state
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	enable	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_mm_state_t;
+
+typedef struct p80211msg_p2req_dump_state
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	level	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_dump_state_t;
+
+typedef struct p80211msg_p2req_channel_info
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	channellist	;
+	p80211item_uint32_t	channeldwelltime	;
+	p80211item_uint32_t	resultcode	;
+	p80211item_uint32_t	numchinfo	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_channel_info_t;
+
+typedef struct p80211msg_p2req_channel_info_results
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	channel	;
+	p80211item_uint32_t	resultcode	;
+	p80211item_uint32_t	avgnoiselevel	;
+	p80211item_uint32_t	peaknoiselevel	;
+	p80211item_uint32_t	bssactive	;
+	p80211item_uint32_t	pcfactive	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_channel_info_results_t;
+
+typedef struct p80211msg_p2req_enable
+{
+	UINT32		msgcode	;
+	UINT32		msglen	;
+	UINT8		devname[WLAN_DEVNAMELEN_MAX]	;
+	p80211item_uint32_t	resultcode	;
+} __WLAN_ATTRIB_PACK__ p80211msg_p2req_enable_t;
+
+#endif
diff --git a/drivers/staging/wlan-ng/p80211mgmt.h b/drivers/staging/wlan-ng/p80211mgmt.h
new file mode 100644
index 0000000..bd4c1629
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211mgmt.h
@@ -0,0 +1,575 @@
+/* p80211mgmt.h
+*
+* Macros, types, and functions to handle 802.11 mgmt frames
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* This file declares the constants and types used in the interface
+* between a wlan driver and the user mode utilities.
+*
+* Notes:
+*  - Constant values are always in HOST byte order.  To assign
+*    values to multi-byte fields they _must_ be converted to
+*    ieee byte order.  To retrieve multi-byte values from incoming
+*    frames, they must be converted to host order.
+*
+*  - The len member of the frame structure does NOT!!! include
+*    the MAC CRC.  Therefore, the len field on rx'd frames should
+*    have 4 subtracted from it.
+*
+* All functions declared here are implemented in p80211.c
+*
+* The types, macros, and functions defined here are primarily
+* used for encoding and decoding management frames.  They are
+* designed to follow these patterns of use:
+*
+* DECODE:
+* 1) a frame of length len is received into buffer b
+* 2) using the hdr structure and macros, we determine the type
+* 3) an appropriate mgmt frame structure, mf, is allocated and zeroed
+* 4) mf.hdr = b
+*    mf.buf = b
+*    mf.len = len
+* 5) call mgmt_decode( mf )
+* 6) the frame field pointers in mf are now set.  Note that any
+*    multi-byte frame field values accessed using the frame field
+*    pointers are in ieee byte order and will have to be converted
+*    to host order.
+*
+* ENCODE:
+* 1) Library client allocates buffer space for maximum length
+*    frame of the desired type
+* 2) Library client allocates a mgmt frame structure, called mf,
+*    of the desired type
+* 3) Set the following:
+*    mf.type = <desired type>
+*    mf.buf = <allocated buffer address>
+* 4) call mgmt_encode( mf )
+* 5) all of the fixed field pointers and fixed length information element
+*    pointers in mf are now set to their respective locations in the
+*    allocated space (fortunately, all variable length information elements
+*    fall at the end of their respective frames).
+* 5a) The length field is set to include the last of the fixed and fixed
+*     length fields.  It may have to be updated for optional or variable
+* 	length information elements.
+* 6) Optional and variable length information elements are special cases
+*    and must be handled individually by the client code.
+* --------------------------------------------------------------------
+*/
+
+#ifndef _P80211MGMT_H
+#define _P80211MGMT_H
+
+/*================================================================*/
+/* System Includes */
+
+/*================================================================*/
+/* Project Includes */
+
+#ifndef  _WLAN_COMPAT_H
+#include "wlan_compat.h"
+#endif
+
+#ifndef  _P80211HDR_H
+#include "p80211hdr.h"
+#endif
+
+
+/*================================================================*/
+/* Constants */
+
+/*-- Information Element IDs --------------------*/
+#define WLAN_EID_SSID		0
+#define WLAN_EID_SUPP_RATES	1
+#define WLAN_EID_FH_PARMS	2
+#define WLAN_EID_DS_PARMS	3
+#define WLAN_EID_CF_PARMS	4
+#define WLAN_EID_TIM		5
+#define WLAN_EID_IBSS_PARMS	6
+/*-- values 7-15 reserved --*/
+#define WLAN_EID_CHALLENGE	16
+/*-- values 17-31 reserved for challenge text extension --*/
+/*-- values 32-255 reserved --*/
+
+/*-- Reason Codes -------------------------------*/
+#define WLAN_MGMT_REASON_RSVD			0
+#define WLAN_MGMT_REASON_UNSPEC			1
+#define WLAN_MGMT_REASON_PRIOR_AUTH_INVALID	2
+#define WLAN_MGMT_REASON_DEAUTH_LEAVING		3
+#define WLAN_MGMT_REASON_DISASSOC_INACTIVE	4
+#define WLAN_MGMT_REASON_DISASSOC_AP_BUSY	5
+#define WLAN_MGMT_REASON_CLASS2_NONAUTH		6
+#define WLAN_MGMT_REASON_CLASS3_NONASSOC	7
+#define WLAN_MGMT_REASON_DISASSOC_STA_HASLEFT	8
+#define WLAN_MGMT_REASON_CANT_ASSOC_NONAUTH	9
+
+/*-- Status Codes -------------------------------*/
+#define WLAN_MGMT_STATUS_SUCCESS		0
+#define WLAN_MGMT_STATUS_UNSPEC_FAILURE		1
+#define WLAN_MGMT_STATUS_CAPS_UNSUPPORTED	10
+#define WLAN_MGMT_STATUS_REASSOC_NO_ASSOC	11
+#define WLAN_MGMT_STATUS_ASSOC_DENIED_UNSPEC	12
+#define WLAN_MGMT_STATUS_UNSUPPORTED_AUTHALG	13
+#define WLAN_MGMT_STATUS_RX_AUTH_NOSEQ		14
+#define WLAN_MGMT_STATUS_CHALLENGE_FAIL		15
+#define WLAN_MGMT_STATUS_AUTH_TIMEOUT		16
+#define WLAN_MGMT_STATUS_ASSOC_DENIED_BUSY	17
+#define WLAN_MGMT_STATUS_ASSOC_DENIED_RATES	18
+  /* p80211b additions */
+#define WLAN_MGMT_STATUS_ASSOC_DENIED_NOSHORT	19
+#define WLAN_MGMT_STATUS_ASSOC_DENIED_NOPBCC	20
+#define WLAN_MGMT_STATUS_ASSOC_DENIED_NOAGILITY	21
+
+
+
+/*-- Auth Algorithm Field ---------------------------*/
+#define WLAN_AUTH_ALG_OPENSYSTEM		0
+#define WLAN_AUTH_ALG_SHAREDKEY			1
+
+/*-- Management Frame Field Offsets -------------*/
+/* Note: Not all fields are listed because of variable lengths,   */
+/*       see the code in p80211.c to see how we search for fields */
+/* Note: These offsets are from the start of the frame data       */
+
+#define WLAN_BEACON_OFF_TS			0
+#define WLAN_BEACON_OFF_BCN_INT			8
+#define WLAN_BEACON_OFF_CAPINFO			10
+#define WLAN_BEACON_OFF_SSID			12
+
+#define WLAN_DISASSOC_OFF_REASON		0
+
+#define WLAN_ASSOCREQ_OFF_CAP_INFO		0
+#define WLAN_ASSOCREQ_OFF_LISTEN_INT		2
+#define WLAN_ASSOCREQ_OFF_SSID			4
+
+#define WLAN_ASSOCRESP_OFF_CAP_INFO		0
+#define WLAN_ASSOCRESP_OFF_STATUS		2
+#define WLAN_ASSOCRESP_OFF_AID			4
+#define WLAN_ASSOCRESP_OFF_SUPP_RATES		6
+
+#define WLAN_REASSOCREQ_OFF_CAP_INFO		0
+#define WLAN_REASSOCREQ_OFF_LISTEN_INT		2
+#define WLAN_REASSOCREQ_OFF_CURR_AP		4
+#define WLAN_REASSOCREQ_OFF_SSID		10
+
+#define WLAN_REASSOCRESP_OFF_CAP_INFO		0
+#define WLAN_REASSOCRESP_OFF_STATUS		2
+#define WLAN_REASSOCRESP_OFF_AID		4
+#define WLAN_REASSOCRESP_OFF_SUPP_RATES		6
+
+#define WLAN_PROBEREQ_OFF_SSID			0
+
+#define WLAN_PROBERESP_OFF_TS			0
+#define WLAN_PROBERESP_OFF_BCN_INT		8
+#define WLAN_PROBERESP_OFF_CAP_INFO		10
+#define WLAN_PROBERESP_OFF_SSID			12
+
+#define WLAN_AUTHEN_OFF_AUTH_ALG		0
+#define WLAN_AUTHEN_OFF_AUTH_SEQ		2
+#define WLAN_AUTHEN_OFF_STATUS			4
+#define WLAN_AUTHEN_OFF_CHALLENGE		6
+
+#define WLAN_DEAUTHEN_OFF_REASON		0
+
+
+/*================================================================*/
+/* Macros */
+
+/*-- Capability Field ---------------------------*/
+#define WLAN_GET_MGMT_CAP_INFO_ESS(n)		((n) & BIT0)
+#define WLAN_GET_MGMT_CAP_INFO_IBSS(n)		(((n) & BIT1) >> 1)
+#define WLAN_GET_MGMT_CAP_INFO_CFPOLLABLE(n)	(((n) & BIT2) >> 2)
+#define WLAN_GET_MGMT_CAP_INFO_CFPOLLREQ(n)	(((n) & BIT3) >> 3)
+#define WLAN_GET_MGMT_CAP_INFO_PRIVACY(n)	(((n) & BIT4) >> 4)
+  /* p80211b additions */
+#define WLAN_GET_MGMT_CAP_INFO_SHORT(n)		(((n) & BIT5) >> 5)
+#define WLAN_GET_MGMT_CAP_INFO_PBCC(n)		(((n) & BIT6) >> 6)
+#define WLAN_GET_MGMT_CAP_INFO_AGILITY(n)	(((n) & BIT7) >> 7)
+
+#define WLAN_SET_MGMT_CAP_INFO_ESS(n)		(n)
+#define WLAN_SET_MGMT_CAP_INFO_IBSS(n)		((n) << 1)
+#define WLAN_SET_MGMT_CAP_INFO_CFPOLLABLE(n)	((n) << 2)
+#define WLAN_SET_MGMT_CAP_INFO_CFPOLLREQ(n)	((n) << 3)
+#define WLAN_SET_MGMT_CAP_INFO_PRIVACY(n)	((n) << 4)
+  /* p80211b additions */
+#define WLAN_SET_MGMT_CAP_INFO_SHORT(n)		((n) << 5)
+#define WLAN_SET_MGMT_CAP_INFO_PBCC(n)		((n) << 6)
+#define WLAN_SET_MGMT_CAP_INFO_AGILITY(n)	((n) << 7)
+
+
+/*================================================================*/
+/* Types */
+
+/*-- Information Element Types --------------------*/
+/* prototype structure, all IEs start with these members */
+
+typedef struct wlan_ie
+{
+	UINT8	eid;
+	UINT8	len;
+} __WLAN_ATTRIB_PACK__ wlan_ie_t;
+
+/*-- Service Set Identity (SSID)  -----------------*/
+typedef struct wlan_ie_ssid
+{
+	UINT8	eid;
+	UINT8	len;
+	UINT8	ssid[1];  /* may be zero, ptrs may overlap */
+} __WLAN_ATTRIB_PACK__ wlan_ie_ssid_t;
+
+/*-- Supported Rates  -----------------------------*/
+typedef struct wlan_ie_supp_rates
+{
+	UINT8	eid;
+	UINT8	len;
+	UINT8	rates[1];  /* had better be at LEAST one! */
+} __WLAN_ATTRIB_PACK__ wlan_ie_supp_rates_t;
+
+/*-- FH Parameter Set  ----------------------------*/
+typedef struct wlan_ie_fh_parms
+{
+	UINT8	eid;
+	UINT8	len;
+	UINT16	dwell;
+	UINT8	hopset;
+	UINT8	hoppattern;
+	UINT8	hopindex;
+} __WLAN_ATTRIB_PACK__ wlan_ie_fh_parms_t;
+
+/*-- DS Parameter Set  ----------------------------*/
+typedef struct wlan_ie_ds_parms
+{
+	UINT8	eid;
+	UINT8	len;
+	UINT8	curr_ch;
+} __WLAN_ATTRIB_PACK__ wlan_ie_ds_parms_t;
+
+/*-- CF Parameter Set  ----------------------------*/
+
+typedef struct wlan_ie_cf_parms
+{
+	UINT8	eid;
+	UINT8	len;
+	UINT8	cfp_cnt;
+	UINT8	cfp_period;
+	UINT16	cfp_maxdur;
+	UINT16	cfp_durremaining;
+} __WLAN_ATTRIB_PACK__ wlan_ie_cf_parms_t;
+
+/*-- TIM ------------------------------------------*/
+typedef struct wlan_ie_tim
+{
+	UINT8	eid;
+	UINT8	len;
+	UINT8	dtim_cnt;
+	UINT8	dtim_period;
+	UINT8	bitmap_ctl;
+	UINT8	virt_bm[1];
+} __WLAN_ATTRIB_PACK__ wlan_ie_tim_t;
+
+/*-- IBSS Parameter Set ---------------------------*/
+typedef struct wlan_ie_ibss_parms
+{
+	UINT8	eid;
+	UINT8	len;
+	UINT16	atim_win;
+} __WLAN_ATTRIB_PACK__ wlan_ie_ibss_parms_t;
+
+/*-- Challenge Text  ------------------------------*/
+typedef struct wlan_ie_challenge
+{
+	UINT8	eid;
+	UINT8	len;
+	UINT8	challenge[1];
+} __WLAN_ATTRIB_PACK__ wlan_ie_challenge_t;
+
+/*-------------------------------------------------*/
+/*  Frame Types  */
+
+/* prototype structure, all mgmt frame types will start with these members */
+typedef struct wlan_fr_mgmt
+{
+	UINT16			type;
+	UINT16			len;	/* DOES NOT include CRC !!!!*/
+	UINT8			*buf;
+	p80211_hdr_t		*hdr;
+	/* used for target specific data, skb in Linux */
+	void			*priv;
+	/*-- fixed fields -----------*/
+	/*-- info elements ----------*/
+} wlan_fr_mgmt_t;
+
+/*-- Beacon ---------------------------------------*/
+typedef struct wlan_fr_beacon
+{
+	UINT16			type;
+	UINT16			len;
+	UINT8			*buf;
+	p80211_hdr_t		*hdr;
+	/* used for target specific data, skb in Linux */
+	void			*priv;
+	/*-- fixed fields -----------*/
+	UINT64			*ts;
+	UINT16			*bcn_int;
+	UINT16			*cap_info;
+	/*-- info elements ----------*/
+	wlan_ie_ssid_t		*ssid;
+	wlan_ie_supp_rates_t	*supp_rates;
+	wlan_ie_fh_parms_t	*fh_parms;
+	wlan_ie_ds_parms_t	*ds_parms;
+	wlan_ie_cf_parms_t	*cf_parms;
+	wlan_ie_ibss_parms_t	*ibss_parms;
+	wlan_ie_tim_t		*tim;
+
+} wlan_fr_beacon_t;
+
+
+/*-- IBSS ATIM ------------------------------------*/
+typedef struct wlan_fr_ibssatim
+{
+	UINT16			type;
+	UINT16			len;
+	UINT8*			buf;
+	p80211_hdr_t		*hdr;
+	/* used for target specific data, skb in Linux */
+	void			*priv;
+
+	/*-- fixed fields -----------*/
+	/*-- info elements ----------*/
+
+	/* this frame type has a null body */
+
+} wlan_fr_ibssatim_t;
+
+/*-- Disassociation -------------------------------*/
+typedef struct wlan_fr_disassoc
+{
+	UINT16			type;
+	UINT16			len;
+	UINT8			*buf;
+	p80211_hdr_t		*hdr;
+	/* used for target specific data, skb in Linux */
+	void			*priv;
+	/*-- fixed fields -----------*/
+	UINT16			*reason;
+
+	/*-- info elements ----------*/
+
+} wlan_fr_disassoc_t;
+
+/*-- Association Request --------------------------*/
+typedef struct wlan_fr_assocreq
+{
+	UINT16			type;
+	UINT16			len;
+	UINT8*			buf;
+	p80211_hdr_t		*hdr;
+	/* used for target specific data, skb in Linux */
+	void			*priv;
+	/*-- fixed fields -----------*/
+	UINT16			*cap_info;
+	UINT16			*listen_int;
+	/*-- info elements ----------*/
+	wlan_ie_ssid_t		*ssid;
+	wlan_ie_supp_rates_t	*supp_rates;
+
+} wlan_fr_assocreq_t;
+
+/*-- Association Response -------------------------*/
+typedef struct wlan_fr_assocresp
+{
+	UINT16			type;
+	UINT16			len;
+	UINT8			*buf;
+	p80211_hdr_t		*hdr;
+	/* used for target specific data, skb in Linux */
+	void			*priv;
+	/*-- fixed fields -----------*/
+	UINT16			*cap_info;
+	UINT16			*status;
+	UINT16			*aid;
+	/*-- info elements ----------*/
+	wlan_ie_supp_rates_t	*supp_rates;
+
+} wlan_fr_assocresp_t;
+
+/*-- Reassociation Request ------------------------*/
+typedef struct wlan_fr_reassocreq
+{
+	UINT16			type;
+	UINT16			len;
+	UINT8			*buf;
+	p80211_hdr_t		*hdr;
+	/* used for target specific data, skb in Linux */
+	void			*priv;
+	/*-- fixed fields -----------*/
+	UINT16			*cap_info;
+	UINT16			*listen_int;
+	UINT8			*curr_ap;
+	/*-- info elements ----------*/
+	wlan_ie_ssid_t		*ssid;
+	wlan_ie_supp_rates_t	*supp_rates;
+
+} wlan_fr_reassocreq_t;
+
+/*-- Reassociation Response -----------------------*/
+typedef struct wlan_fr_reassocresp
+{
+	UINT16			type;
+	UINT16			len;
+	UINT8			*buf;
+	p80211_hdr_t		*hdr;
+	/* used for target specific data, skb in Linux */
+	void			*priv;
+	/*-- fixed fields -----------*/
+	UINT16			*cap_info;
+	UINT16			*status;
+	UINT16			*aid;
+	/*-- info elements ----------*/
+	wlan_ie_supp_rates_t	*supp_rates;
+
+} wlan_fr_reassocresp_t;
+
+/*-- Probe Request --------------------------------*/
+typedef struct wlan_fr_probereq
+{
+	UINT16			type;
+	UINT16			len;
+	UINT8			*buf;
+	p80211_hdr_t		*hdr;
+	/* used for target specific data, skb in Linux */
+	void			*priv;
+	/*-- fixed fields -----------*/
+	/*-- info elements ----------*/
+	wlan_ie_ssid_t		*ssid;
+	wlan_ie_supp_rates_t	*supp_rates;
+
+} wlan_fr_probereq_t;
+
+/*-- Probe Response -------------------------------*/
+typedef struct wlan_fr_proberesp
+{
+	UINT16			type;
+	UINT16			len;
+	UINT8			*buf;
+	p80211_hdr_t		*hdr;
+	/* used for target specific data, skb in Linux */
+	void			*priv;
+	/*-- fixed fields -----------*/
+	UINT64			*ts;
+	UINT16			*bcn_int;
+	UINT16			*cap_info;
+	/*-- info elements ----------*/
+	wlan_ie_ssid_t		*ssid;
+	wlan_ie_supp_rates_t	*supp_rates;
+	wlan_ie_fh_parms_t	*fh_parms;
+	wlan_ie_ds_parms_t	*ds_parms;
+	wlan_ie_cf_parms_t	*cf_parms;
+	wlan_ie_ibss_parms_t	*ibss_parms;
+} wlan_fr_proberesp_t;
+
+/*-- Authentication -------------------------------*/
+typedef struct wlan_fr_authen
+{
+	UINT16			type;
+	UINT16			len;
+	UINT8			*buf;
+	p80211_hdr_t		*hdr;
+	/* used for target specific data, skb in Linux */
+	void			*priv;
+	/*-- fixed fields -----------*/
+	UINT16			*auth_alg;
+	UINT16			*auth_seq;
+	UINT16			*status;
+	/*-- info elements ----------*/
+	wlan_ie_challenge_t	*challenge;
+
+} wlan_fr_authen_t;
+
+/*-- Deauthenication -----------------------------*/
+typedef struct wlan_fr_deauthen
+{
+	UINT16			type;
+	UINT16			len;
+	UINT8			*buf;
+	p80211_hdr_t		*hdr;
+	/* used for target specific data, skb in Linux */
+	void			*priv;
+	/*-- fixed fields -----------*/
+	UINT16			*reason;
+
+	/*-- info elements ----------*/
+
+} wlan_fr_deauthen_t;
+
+
+/*================================================================*/
+/* Extern Declarations */
+
+
+/*================================================================*/
+/* Function Declarations */
+
+void wlan_mgmt_encode_beacon( wlan_fr_beacon_t  *f );
+void wlan_mgmt_decode_beacon( wlan_fr_beacon_t  *f );
+void wlan_mgmt_encode_disassoc( wlan_fr_disassoc_t  *f );
+void wlan_mgmt_decode_disassoc( wlan_fr_disassoc_t  *f );
+void wlan_mgmt_encode_assocreq( wlan_fr_assocreq_t  *f );
+void wlan_mgmt_decode_assocreq( wlan_fr_assocreq_t  *f );
+void wlan_mgmt_encode_assocresp( wlan_fr_assocresp_t  *f );
+void wlan_mgmt_decode_assocresp( wlan_fr_assocresp_t  *f );
+void wlan_mgmt_encode_reassocreq( wlan_fr_reassocreq_t  *f );
+void wlan_mgmt_decode_reassocreq( wlan_fr_reassocreq_t  *f );
+void wlan_mgmt_encode_reassocresp( wlan_fr_reassocresp_t  *f );
+void wlan_mgmt_decode_reassocresp( wlan_fr_reassocresp_t  *f );
+void wlan_mgmt_encode_probereq( wlan_fr_probereq_t  *f );
+void wlan_mgmt_decode_probereq( wlan_fr_probereq_t  *f );
+void wlan_mgmt_encode_proberesp( wlan_fr_proberesp_t  *f );
+void wlan_mgmt_decode_proberesp( wlan_fr_proberesp_t  *f );
+void wlan_mgmt_encode_authen( wlan_fr_authen_t  *f );
+void wlan_mgmt_decode_authen( wlan_fr_authen_t  *f );
+void wlan_mgmt_encode_deauthen( wlan_fr_deauthen_t  *f );
+void wlan_mgmt_decode_deauthen( wlan_fr_deauthen_t  *f );
+
+
+#endif /* _P80211MGMT_H */
diff --git a/drivers/staging/wlan-ng/p80211mod.c b/drivers/staging/wlan-ng/p80211mod.c
new file mode 100644
index 0000000..e2c3f63
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211mod.c
@@ -0,0 +1,216 @@
+/* src/p80211/p80211mod.c
+*
+* Module entry and exit for p80211
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* This file contains the p80211.o entry and exit points defined for linux
+* kernel modules.
+*
+* Notes:
+* - all module parameters for  p80211.o should be defined here.
+*
+* --------------------------------------------------------------------
+*/
+
+/*================================================================*/
+/* System Includes */
+
+
+#include <linux/version.h>
+
+#include <linux/module.h>
+#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,4,25))
+#include <linux/moduleparam.h>
+#endif
+
+#include <linux/kernel.h>
+#include <linux/sched.h>
+#include <linux/types.h>
+#include <linux/wireless.h>
+#include <linux/netdevice.h>
+
+#include "version.h"
+#include "wlan_compat.h"
+
+/*================================================================*/
+/* Project Includes */
+
+#include "p80211types.h"
+#include "p80211hdr.h"
+#include "p80211mgmt.h"
+#include "p80211conv.h"
+#include "p80211msg.h"
+#include "p80211netdev.h"
+#include "p80211req.h"
+
+/*================================================================*/
+/* Local Constants */
+
+
+/*================================================================*/
+/* Local Macros */
+
+
+/*================================================================*/
+/* Local Types */
+
+
+/*================================================================*/
+/* Local Static Definitions */
+
+static char *version = "p80211.o: " WLAN_RELEASE;
+
+
+/*----------------------------------------------------------------*/
+/* --Module Parameters */
+
+int wlan_watchdog = 5000;
+module_param(wlan_watchdog, int, 0644);
+MODULE_PARM_DESC(wlan_watchdog, "transmit timeout in milliseconds");
+
+int wlan_wext_write = 0;
+#if WIRELESS_EXT > 12
+module_param(wlan_wext_write, int, 0644);
+MODULE_PARM_DESC(wlan_wext_write, "enable write wireless extensions");
+#endif
+
+#ifdef WLAN_INCLUDE_DEBUG
+int wlan_debug=0;
+module_param(wlan_debug, int, 0644);
+MODULE_PARM_DESC(wlan_debug, "p80211 debug level");
+#endif
+
+MODULE_LICENSE("Dual MPL/GPL");
+
+/*================================================================*/
+/* Local Function Declarations */
+
+int	init_module(void);
+void	cleanup_module(void);
+
+/*================================================================*/
+/* Function Definitions */
+
+/*----------------------------------------------------------------
+* init_module
+*
+* Module initialization routine, called once at module load time.
+*
+* Arguments:
+*	none
+*
+* Returns:
+*	0	- success
+*	~0	- failure, module is unloaded.
+*
+* Side effects:
+*	TODO: define
+*
+* Call context:
+*	process thread (insmod or modprobe)
+----------------------------------------------------------------*/
+int init_module(void)
+{
+        DBFENTER;
+
+#if 0
+        printk(KERN_NOTICE "%s (%s) Loaded\n", version, WLAN_BUILD_DATE);
+#endif
+
+	p80211netdev_startup();
+#ifdef CONFIG_HOTPLUG
+	p80211_run_sbin_hotplug(NULL, WLAN_HOTPLUG_STARTUP);
+#endif
+
+        DBFEXIT;
+        return 0;
+}
+
+
+/*----------------------------------------------------------------
+* cleanup_module
+*
+* Called at module unload time.  This is our last chance to
+* clean up after ourselves.
+*
+* Arguments:
+*	none
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*	TODO: define
+*
+* Call context:
+*	process thread
+*
+----------------------------------------------------------------*/
+void cleanup_module(void)
+{
+        DBFENTER;
+
+#ifdef CONFIG_HOTPLUG
+	p80211_run_sbin_hotplug(NULL, WLAN_HOTPLUG_SHUTDOWN);
+#endif
+	p80211netdev_shutdown();
+        printk(KERN_NOTICE "%s Unloaded\n", version);
+
+        DBFEXIT;
+        return;
+}
+
+EXPORT_SYMBOL(p80211netdev_hwremoved);
+EXPORT_SYMBOL(register_wlandev);
+EXPORT_SYMBOL(p80211netdev_rx);
+EXPORT_SYMBOL(unregister_wlandev);
+EXPORT_SYMBOL(wlan_setup);
+EXPORT_SYMBOL(wlan_unsetup);
+EXPORT_SYMBOL(p80211_suspend);
+EXPORT_SYMBOL(p80211_resume);
+
+EXPORT_SYMBOL(p80211skb_free);
+EXPORT_SYMBOL(p80211skb_rxmeta_attach);
+
+EXPORT_SYMBOL(p80211wext_event_associated);
diff --git a/drivers/staging/wlan-ng/p80211msg.h b/drivers/staging/wlan-ng/p80211msg.h
new file mode 100644
index 0000000..c14e9fb
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211msg.h
@@ -0,0 +1,102 @@
+/* p80211msg.h
+*
+* Macros, constants, types, and funcs for req and ind messages
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*/
+
+#ifndef _P80211MSG_H
+#define _P80211MSG_H
+
+/*================================================================*/
+/* System Includes */
+
+/*================================================================*/
+/* Project Includes */
+
+#ifndef _WLAN_COMPAT_H
+#include "wlan_compat.h"
+#endif
+
+/*================================================================*/
+/* Constants */
+
+#define MSG_BUFF_LEN		4000
+#define WLAN_DEVNAMELEN_MAX	16
+
+/*================================================================*/
+/* Macros */
+
+/*================================================================*/
+/* Types */
+
+/*--------------------------------------------------------------------*/
+/*----- Message Structure Types --------------------------------------*/
+
+/*--------------------------------------------------------------------*/
+/* Prototype msg type */
+
+typedef struct p80211msg
+{
+	UINT32	msgcode;
+	UINT32	msglen;
+	UINT8	devname[WLAN_DEVNAMELEN_MAX];
+} __WLAN_ATTRIB_PACK__ p80211msg_t;
+
+typedef struct p80211msgd
+{
+	UINT32	msgcode;
+	UINT32	msglen;
+	UINT8	devname[WLAN_DEVNAMELEN_MAX];
+	UINT8	args[0];
+} __WLAN_ATTRIB_PACK__ p80211msgd_t;
+
+/*================================================================*/
+/* Extern Declarations */
+
+
+/*================================================================*/
+/* Function Declarations */
+
+#endif  /* _P80211MSG_H */
+
diff --git a/drivers/staging/wlan-ng/p80211netdev.c b/drivers/staging/wlan-ng/p80211netdev.c
new file mode 100644
index 0000000..11f84a8
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211netdev.c
@@ -0,0 +1,1502 @@
+/* src/p80211/p80211knetdev.c
+*
+* Linux Kernel net device interface
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* The functions required for a Linux network device are defined here.
+*
+* --------------------------------------------------------------------
+*/
+
+
+/*================================================================*/
+/* System Includes */
+
+
+#include <linux/version.h>
+
+#include <linux/module.h>
+#include <linux/kernel.h>
+#include <linux/sched.h>
+#include <linux/types.h>
+#include <linux/skbuff.h>
+#include <linux/slab.h>
+#include <linux/proc_fs.h>
+#include <linux/interrupt.h>
+#include <linux/netdevice.h>
+#include <linux/kmod.h>
+#include <linux/if_arp.h>
+#include <linux/wireless.h>
+#include <linux/sockios.h>
+#include <linux/etherdevice.h>
+
+#include <asm/bitops.h>
+#include <asm/uaccess.h>
+#include <asm/byteorder.h>
+
+#ifdef SIOCETHTOOL
+#include <linux/ethtool.h>
+#endif
+
+#if WIRELESS_EXT > 12
+#include <net/iw_handler.h>
+#endif
+#include <net/net_namespace.h>
+
+/*================================================================*/
+/* Project Includes */
+
+#include "version.h"
+#include "wlan_compat.h"
+#include "p80211types.h"
+#include "p80211hdr.h"
+#include "p80211conv.h"
+#include "p80211mgmt.h"
+#include "p80211msg.h"
+#include "p80211netdev.h"
+#include "p80211ioctl.h"
+#include "p80211req.h"
+#include "p80211metastruct.h"
+#include "p80211metadef.h"
+
+/*================================================================*/
+/* Local Constants */
+
+/*================================================================*/
+/* Local Macros */
+
+
+/*================================================================*/
+/* Local Types */
+
+/*================================================================*/
+/* Local Static Definitions */
+
+#define __NO_VERSION__		/* prevent the static definition */
+
+#ifdef CONFIG_PROC_FS
+static struct proc_dir_entry	*proc_p80211;
+#endif
+
+/*================================================================*/
+/* Local Function Declarations */
+
+/* Support functions */
+static void p80211netdev_rx_bh(unsigned long arg);
+
+/* netdevice method functions */
+static int p80211knetdev_init( netdevice_t *netdev);
+static struct net_device_stats* p80211knetdev_get_stats(netdevice_t *netdev);
+static int p80211knetdev_open( netdevice_t *netdev);
+static int p80211knetdev_stop( netdevice_t *netdev );
+static int p80211knetdev_hard_start_xmit( struct sk_buff *skb, netdevice_t *netdev);
+static void p80211knetdev_set_multicast_list(netdevice_t *dev);
+static int p80211knetdev_do_ioctl(netdevice_t *dev, struct ifreq *ifr, int cmd);
+static int p80211knetdev_set_mac_address(netdevice_t *dev, void *addr);
+static void p80211knetdev_tx_timeout(netdevice_t *netdev);
+static int p80211_rx_typedrop( wlandevice_t *wlandev, UINT16 fc);
+
+#ifdef CONFIG_PROC_FS
+static int
+p80211netdev_proc_read(
+	char	*page,
+	char	**start,
+	off_t	offset,
+	int	count,
+	int	*eof,
+	void	*data);
+#endif
+
+/*================================================================*/
+/* Function Definitions */
+
+/*----------------------------------------------------------------
+* p80211knetdev_startup
+*
+* Initialize the wlandevice/netdevice part of 802.11 services at
+* load time.
+*
+* Arguments:
+*	none
+*
+* Returns:
+*	nothing
+----------------------------------------------------------------*/
+void p80211netdev_startup(void)
+{
+	DBFENTER;
+
+#ifdef CONFIG_PROC_FS
+	if (init_net.proc_net != NULL) {
+		proc_p80211 = create_proc_entry(
+				"p80211",
+				(S_IFDIR|S_IRUGO|S_IXUGO),
+				init_net.proc_net);
+	}
+#endif
+	DBFEXIT;
+	return;
+}
+
+/*----------------------------------------------------------------
+* p80211knetdev_shutdown
+*
+* Shutdown the wlandevice/netdevice part of 802.11 services at
+* unload time.
+*
+* Arguments:
+*	none
+*
+* Returns:
+*	nothing
+----------------------------------------------------------------*/
+void
+p80211netdev_shutdown(void)
+{
+	DBFENTER;
+#ifdef CONFIG_PROC_FS
+	if (proc_p80211 != NULL) {
+		remove_proc_entry("p80211", init_net.proc_net);
+	}
+#endif
+	DBFEXIT;
+}
+
+/*----------------------------------------------------------------
+* p80211knetdev_init
+*
+* Init method for a Linux netdevice.  Called in response to
+* register_netdev.
+*
+* Arguments:
+*	none
+*
+* Returns:
+*	nothing
+----------------------------------------------------------------*/
+static int p80211knetdev_init( netdevice_t *netdev)
+{
+	DBFENTER;
+	/* Called in response to register_netdev */
+	/* This is usually the probe function, but the probe has */
+	/* already been done by the MSD and the create_kdev */
+	/* function.  All we do here is return success */
+	DBFEXIT;
+	return 0;
+}
+
+
+/*----------------------------------------------------------------
+* p80211knetdev_get_stats
+*
+* Statistics retrieval for linux netdevices.  Here we're reporting
+* the Linux i/f level statistics.  Hence, for the primary numbers,
+* we don't want to report the numbers from the MIB.  Eventually,
+* it might be useful to collect some of the error counters though.
+*
+* Arguments:
+*	netdev		Linux netdevice
+*
+* Returns:
+*	the address of the statistics structure
+----------------------------------------------------------------*/
+static struct net_device_stats*
+p80211knetdev_get_stats(netdevice_t *netdev)
+{
+	wlandevice_t	*wlandev = (wlandevice_t*)netdev->priv;
+	DBFENTER;
+
+	/* TODO: review the MIB stats for items that correspond to
+		linux stats */
+
+	DBFEXIT;
+	return &(wlandev->linux_stats);
+}
+
+
+/*----------------------------------------------------------------
+* p80211knetdev_open
+*
+* Linux netdevice open method.  Following a successful call here,
+* the device is supposed to be ready for tx and rx.  In our
+* situation that may not be entirely true due to the state of the
+* MAC below.
+*
+* Arguments:
+*	netdev		Linux network device structure
+*
+* Returns:
+*	zero on success, non-zero otherwise
+----------------------------------------------------------------*/
+static int p80211knetdev_open( netdevice_t *netdev )
+{
+	int 		result = 0; /* success */
+	wlandevice_t	*wlandev = (wlandevice_t*)(netdev->priv);
+
+	DBFENTER;
+
+	/* Check to make sure the MSD is running */
+	if ( wlandev->msdstate != WLAN_MSD_RUNNING ) {
+		return -ENODEV;
+	}
+
+	/* Tell the MSD to open */
+	if ( wlandev->open != NULL) {
+		result = wlandev->open(wlandev);
+		if ( result == 0 ) {
+#if ( LINUX_VERSION_CODE < KERNEL_VERSION(2,3,43) )
+			netdev->interrupt = 0;
+#endif
+			p80211netdev_start_queue(wlandev);
+			wlandev->state = WLAN_DEVICE_OPEN;
+		}
+	} else {
+		result = -EAGAIN;
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* p80211knetdev_stop
+*
+* Linux netdevice stop (close) method.  Following this call,
+* no frames should go up or down through this interface.
+*
+* Arguments:
+*	netdev		Linux network device structure
+*
+* Returns:
+*	zero on success, non-zero otherwise
+----------------------------------------------------------------*/
+static int p80211knetdev_stop( netdevice_t *netdev )
+{
+	int		result = 0;
+	wlandevice_t	*wlandev = (wlandevice_t*)(netdev->priv);
+
+	DBFENTER;
+
+	if ( wlandev->close != NULL ) {
+		result = wlandev->close(wlandev);
+	}
+
+	p80211netdev_stop_queue(wlandev);
+	wlandev->state = WLAN_DEVICE_CLOSED;
+
+	DBFEXIT;
+	return result;
+}
+
+/*----------------------------------------------------------------
+* p80211netdev_rx
+*
+* Frame receive function called by the mac specific driver.
+*
+* Arguments:
+*	wlandev		WLAN network device structure
+*	skb		skbuff containing a full 802.11 frame.
+* Returns:
+*	nothing
+* Side effects:
+*
+----------------------------------------------------------------*/
+void
+p80211netdev_rx(wlandevice_t *wlandev, struct sk_buff *skb )
+{
+	DBFENTER;
+
+	/* Enqueue for post-irq processing */
+	skb_queue_tail(&wlandev->nsd_rxq, skb);
+
+	tasklet_schedule(&wlandev->rx_bh);
+
+        DBFEXIT;
+	return;
+}
+
+/*----------------------------------------------------------------
+* p80211netdev_rx_bh
+*
+* Deferred processing of all received frames.
+*
+* Arguments:
+*	wlandev		WLAN network device structure
+*	skb		skbuff containing a full 802.11 frame.
+* Returns:
+*	nothing
+* Side effects:
+*
+----------------------------------------------------------------*/
+static void p80211netdev_rx_bh(unsigned long arg)
+{
+	wlandevice_t *wlandev = (wlandevice_t *) arg;
+	struct sk_buff *skb = NULL;
+	netdevice_t     *dev = wlandev->netdev;
+	p80211_hdr_a3_t *hdr;
+	UINT16 fc;
+
+        DBFENTER;
+
+	/* Let's empty our our queue */
+	while ( (skb = skb_dequeue(&wlandev->nsd_rxq)) ) {
+		if (wlandev->state == WLAN_DEVICE_OPEN) {
+
+			if (dev->type != ARPHRD_ETHER) {
+				/* RAW frame; we shouldn't convert it */
+				// XXX Append the Prism Header here instead.
+
+				/* set up various data fields */
+				skb->dev = dev;
+				skb_reset_mac_header(skb);
+				skb->ip_summed = CHECKSUM_NONE;
+				skb->pkt_type = PACKET_OTHERHOST;
+				skb->protocol = htons(ETH_P_80211_RAW);
+				dev->last_rx = jiffies;
+
+				wlandev->linux_stats.rx_packets++;
+				wlandev->linux_stats.rx_bytes += skb->len;
+				netif_rx_ni(skb);
+				continue;
+			} else {
+				hdr = (p80211_hdr_a3_t *)skb->data;
+				fc = ieee2host16(hdr->fc);
+				if (p80211_rx_typedrop(wlandev, fc)) {
+					dev_kfree_skb(skb);
+					continue;
+				}
+
+				/* perform mcast filtering */
+				if (wlandev->netdev->flags & IFF_ALLMULTI) {
+					/* allow my local address through */
+					if (memcmp(hdr->a1, wlandev->netdev->dev_addr, WLAN_ADDR_LEN) != 0) {
+						/* but reject anything else that isn't multicast */
+						if (!(hdr->a1[0] & 0x01)) {
+							dev_kfree_skb(skb);
+							continue;
+						}
+					}
+				}
+
+				if ( skb_p80211_to_ether(wlandev, wlandev->ethconv, skb) == 0 ) {
+					skb->dev->last_rx = jiffies;
+					wlandev->linux_stats.rx_packets++;
+					wlandev->linux_stats.rx_bytes += skb->len;
+					netif_rx_ni(skb);
+					continue;
+				}
+				WLAN_LOG_DEBUG(1, "p80211_to_ether failed.\n");
+			}
+		}
+		dev_kfree_skb(skb);
+	}
+
+        DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* p80211knetdev_hard_start_xmit
+*
+* Linux netdevice method for transmitting a frame.
+*
+* Arguments:
+*	skb	Linux sk_buff containing the frame.
+*	netdev	Linux netdevice.
+*
+* Side effects:
+*	If the lower layers report that buffers are full. netdev->tbusy
+*	will be set to prevent higher layers from sending more traffic.
+*
+*	Note: If this function returns non-zero, higher layers retain
+*	      ownership of the skb.
+*
+* Returns:
+*	zero on success, non-zero on failure.
+----------------------------------------------------------------*/
+static int p80211knetdev_hard_start_xmit( struct sk_buff *skb, netdevice_t *netdev)
+{
+	int		result = 0;
+	int		txresult = -1;
+	wlandevice_t	*wlandev = (wlandevice_t*)netdev->priv;
+	p80211_hdr_t    p80211_hdr;
+	p80211_metawep_t p80211_wep;
+
+	DBFENTER;
+
+	if (skb == NULL) {
+		return 0;
+	}
+
+        if (wlandev->state != WLAN_DEVICE_OPEN) {
+		result = 1;
+		goto failed;
+	}
+
+	memset(&p80211_hdr, 0, sizeof(p80211_hdr_t));
+	memset(&p80211_wep, 0, sizeof(p80211_metawep_t));
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,3,38) )
+	if ( test_and_set_bit(0, (void*)&(netdev->tbusy)) != 0 ) {
+		/* We've been called w/ tbusy set, has the tx */
+		/* path stalled?   */
+		WLAN_LOG_DEBUG(1, "called when tbusy set\n");
+		result = 1;
+		goto failed;
+	}
+#else
+	if ( netif_queue_stopped(netdev) ) {
+		WLAN_LOG_DEBUG(1, "called when queue stopped.\n");
+		result = 1;
+		goto failed;
+	}
+
+	netif_stop_queue(netdev);
+
+	/* No timeout handling here, 2.3.38+ kernels call the
+	 * timeout function directly.
+	 * TODO: Add timeout handling.
+	*/
+#endif
+
+	/* Check to see that a valid mode is set */
+	switch( wlandev->macmode ) {
+	case WLAN_MACMODE_IBSS_STA:
+	case WLAN_MACMODE_ESS_STA:
+	case WLAN_MACMODE_ESS_AP:
+		break;
+	default:
+		/* Mode isn't set yet, just drop the frame
+		 * and return success .
+		 * TODO: we need a saner way to handle this
+		 */
+		if(skb->protocol != ETH_P_80211_RAW) {
+			p80211netdev_start_queue(wlandev);
+			WLAN_LOG_NOTICE(
+				"Tx attempt prior to association, frame dropped.\n");
+			wlandev->linux_stats.tx_dropped++;
+			result = 0;
+			goto failed;
+		}
+		break;
+	}
+
+	/* Check for raw transmits */
+	if(skb->protocol == ETH_P_80211_RAW) {
+		if (!capable(CAP_NET_ADMIN)) {
+			result = 1;
+			goto failed;
+		}
+		/* move the header over */
+		memcpy(&p80211_hdr, skb->data, sizeof(p80211_hdr_t));
+		skb_pull(skb, sizeof(p80211_hdr_t));
+	} else {
+		if ( skb_ether_to_p80211(wlandev, wlandev->ethconv, skb, &p80211_hdr, &p80211_wep) != 0 ) {
+			/* convert failed */
+			WLAN_LOG_DEBUG(1, "ether_to_80211(%d) failed.\n",
+					wlandev->ethconv);
+			result = 1;
+			goto failed;
+		}
+	}
+	if ( wlandev->txframe == NULL ) {
+		result = 1;
+		goto failed;
+	}
+
+	netdev->trans_start = jiffies;
+
+	wlandev->linux_stats.tx_packets++;
+	/* count only the packet payload */
+	wlandev->linux_stats.tx_bytes += skb->len;
+
+	txresult = wlandev->txframe(wlandev, skb, &p80211_hdr, &p80211_wep);
+
+	if ( txresult == 0) {
+		/* success and more buf */
+		/* avail, re: hw_txdata */
+		p80211netdev_wake_queue(wlandev);
+		result = 0;
+	} else if ( txresult == 1 ) {
+		/* success, no more avail */
+		WLAN_LOG_DEBUG(3, "txframe success, no more bufs\n");
+		/* netdev->tbusy = 1;  don't set here, irqhdlr */
+		/*   may have already cleared it */
+		result = 0;
+	} else if ( txresult == 2 ) {
+		/* alloc failure, drop frame */
+		WLAN_LOG_DEBUG(3, "txframe returned alloc_fail\n");
+		result = 1;
+	} else {
+		/* buffer full or queue busy, drop frame. */
+		WLAN_LOG_DEBUG(3, "txframe returned full or busy\n");
+		result = 1;
+	}
+
+ failed:
+	/* Free up the WEP buffer if it's not the same as the skb */
+	if ((p80211_wep.data) && (p80211_wep.data != skb->data))
+		kfree(p80211_wep.data);
+
+	/* we always free the skb here, never in a lower level. */
+	if (!result)
+		dev_kfree_skb(skb);
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* p80211knetdev_set_multicast_list
+*
+* Called from higher lavers whenever there's a need to set/clear
+* promiscuous mode or rewrite the multicast list.
+*
+* Arguments:
+*	none
+*
+* Returns:
+*	nothing
+----------------------------------------------------------------*/
+static void p80211knetdev_set_multicast_list(netdevice_t *dev)
+{
+	wlandevice_t	*wlandev = (wlandevice_t*)dev->priv;
+
+	DBFENTER;
+
+	/* TODO:  real multicast support as well */
+
+	if (wlandev->set_multicast_list)
+		wlandev->set_multicast_list(wlandev, dev);
+
+	DBFEXIT;
+}
+
+#ifdef SIOCETHTOOL
+
+static int p80211netdev_ethtool(wlandevice_t *wlandev, void __user *useraddr)
+{
+	UINT32 ethcmd;
+	struct ethtool_drvinfo info;
+	struct ethtool_value edata;
+
+	memset(&info, 0, sizeof(info));
+	memset(&edata, 0, sizeof(edata));
+
+	if (copy_from_user(&ethcmd, useraddr, sizeof(ethcmd)))
+		return -EFAULT;
+
+	switch (ethcmd) {
+	case ETHTOOL_GDRVINFO:
+		info.cmd = ethcmd;
+		snprintf(info.driver, sizeof(info.driver), "p80211_%s",
+			 wlandev->nsdname);
+		snprintf(info.version, sizeof(info.version), "%s",
+			 WLAN_RELEASE);
+
+		// info.fw_version
+		// info.bus_info
+
+		if (copy_to_user(useraddr, &info, sizeof(info)))
+			return -EFAULT;
+		return 0;
+#ifdef ETHTOOL_GLINK
+	case ETHTOOL_GLINK:
+		edata.cmd = ethcmd;
+
+		if (wlandev->linkstatus &&
+		    (wlandev->macmode != WLAN_MACMODE_NONE)) {
+			edata.data = 1;
+		} else {
+			edata.data = 0;
+		}
+
+		if (copy_to_user(useraddr, &edata, sizeof(edata)))
+                        return -EFAULT;
+		return 0;
+	}
+#endif
+
+	return -EOPNOTSUPP;
+}
+
+#endif
+
+/*----------------------------------------------------------------
+* p80211knetdev_do_ioctl
+*
+* Handle an ioctl call on one of our devices.  Everything Linux
+* ioctl specific is done here.  Then we pass the contents of the
+* ifr->data to the request message handler.
+*
+* Arguments:
+*	dev	Linux kernel netdevice
+*	ifr	Our private ioctl request structure, typed for the
+*		generic struct ifreq so we can use ptr to func
+*		w/o cast.
+*
+* Returns:
+*	zero on success, a negative errno on failure.  Possible values:
+*		-ENETDOWN Device isn't up.
+*		-EBUSY	cmd already in progress
+*		-ETIME	p80211 cmd timed out (MSD may have its own timers)
+*		-EFAULT memory fault copying msg from user buffer
+*		-ENOMEM unable to allocate kernel msg buffer
+*		-ENOSYS	bad magic, it the cmd really for us?
+*		-EINTR	sleeping on cmd, awakened by signal, cmd cancelled.
+*
+* Call Context:
+*	Process thread (ioctl caller).  TODO: SMP support may require
+*	locks.
+----------------------------------------------------------------*/
+static int p80211knetdev_do_ioctl(netdevice_t *dev, struct ifreq *ifr, int cmd)
+{
+	int			result = 0;
+	p80211ioctl_req_t	*req = (p80211ioctl_req_t*)ifr;
+	wlandevice_t		*wlandev = (wlandevice_t*)dev->priv;
+	UINT8			*msgbuf;
+	DBFENTER;
+
+	WLAN_LOG_DEBUG(2, "rx'd ioctl, cmd=%d, len=%d\n", cmd, req->len);
+
+#if WIRELESS_EXT < 13
+	/* Is this a wireless extensions ioctl? */
+	if ((cmd >= SIOCIWFIRST) && (cmd <= SIOCIWLAST)) {
+		if ((result = p80211wext_support_ioctl(dev, ifr, cmd))
+		    != (-EOPNOTSUPP)) {
+			goto bail;
+		}
+	}
+#endif
+
+#ifdef SIOCETHTOOL
+	if (cmd == SIOCETHTOOL) {
+		result = p80211netdev_ethtool(wlandev, (void __user *) ifr->ifr_data);
+		goto bail;
+	}
+#endif
+
+	/* Test the magic, assume ifr is good if it's there */
+	if ( req->magic != P80211_IOCTL_MAGIC ) {
+		result = -ENOSYS;
+		goto bail;
+	}
+
+	if ( cmd == P80211_IFTEST ) {
+		result = 0;
+		goto bail;
+	} else if ( cmd != P80211_IFREQ ) {
+		result = -ENOSYS;
+		goto bail;
+	}
+
+	/* Allocate a buf of size req->len */
+	if ((msgbuf = kmalloc( req->len, GFP_KERNEL))) {
+		if ( copy_from_user( msgbuf, (void __user *) req->data, req->len) ) {
+			result = -EFAULT;
+		} else {
+			result = p80211req_dorequest( wlandev, msgbuf);
+		}
+
+		if ( result == 0 ) {
+			if ( copy_to_user( (void __user *) req->data, msgbuf, req->len)) {
+				result = -EFAULT;
+			}
+		}
+		kfree(msgbuf);
+	} else {
+		result = -ENOMEM;
+	}
+bail:
+	DBFEXIT;
+
+	return result; /* If allocate,copyfrom or copyto fails, return errno */
+}
+
+/*----------------------------------------------------------------
+* p80211knetdev_set_mac_address
+*
+* Handles the ioctl for changing the MACAddress of a netdevice
+*
+* references: linux/netdevice.h and drivers/net/net_init.c
+*
+* NOTE: [MSM] We only prevent address changes when the netdev is
+* up.  We don't control anything based on dot11 state.  If the
+* address is changed on a STA that's currently associated, you
+* will probably lose the ability to send and receive data frames.
+* Just be aware.  Therefore, this should usually only be done
+* prior to scan/join/auth/assoc.
+*
+* Arguments:
+*	dev	netdevice struct
+*	addr	the new MACAddress (a struct)
+*
+* Returns:
+*	zero on success, a negative errno on failure.  Possible values:
+*		-EBUSY	device is bussy (cmd not possible)
+*		-and errors returned by: p80211req_dorequest(..)
+*
+* by: Collin R. Mulliner <collin@mulliner.org>
+----------------------------------------------------------------*/
+static int p80211knetdev_set_mac_address(netdevice_t *dev, void *addr)
+{
+	struct sockaddr			*new_addr = addr;
+	p80211msg_dot11req_mibset_t	dot11req;
+	p80211item_unk392_t		*mibattr;
+	p80211item_pstr6_t		*macaddr;
+	p80211item_uint32_t		*resultcode;
+	int result = 0;
+
+	DBFENTER;
+	/* If we're running, we don't allow MAC address changes */
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,3,38) )
+	if ( dev->start) {
+		return -EBUSY;
+	}
+#else
+	if (netif_running(dev)) {
+		return -EBUSY;
+	}
+#endif
+
+	/* Set up some convenience pointers. */
+	mibattr = &dot11req.mibattribute;
+	macaddr = (p80211item_pstr6_t*)&mibattr->data;
+	resultcode = &dot11req.resultcode;
+
+	/* Set up a dot11req_mibset */
+	memset(&dot11req, 0, sizeof(p80211msg_dot11req_mibset_t));
+	dot11req.msgcode = DIDmsg_dot11req_mibset;
+	dot11req.msglen = sizeof(p80211msg_dot11req_mibset_t);
+	memcpy(dot11req.devname,
+		((wlandevice_t*)(dev->priv))->name,
+		WLAN_DEVNAMELEN_MAX - 1);
+
+	/* Set up the mibattribute argument */
+	mibattr->did = DIDmsg_dot11req_mibset_mibattribute;
+	mibattr->status = P80211ENUM_msgitem_status_data_ok;
+	mibattr->len = sizeof(mibattr->data);
+
+	macaddr->did = DIDmib_dot11mac_dot11OperationTable_dot11MACAddress;
+	macaddr->status = P80211ENUM_msgitem_status_data_ok;
+	macaddr->len = sizeof(macaddr->data);
+	macaddr->data.len = WLAN_ADDR_LEN;
+	memcpy(&macaddr->data.data, new_addr->sa_data, WLAN_ADDR_LEN);
+
+	/* Set up the resultcode argument */
+	resultcode->did = DIDmsg_dot11req_mibset_resultcode;
+	resultcode->status = P80211ENUM_msgitem_status_no_value;
+	resultcode->len = sizeof(resultcode->data);
+	resultcode->data = 0;
+
+	/* now fire the request */
+	result = p80211req_dorequest(dev->priv, (UINT8*)&dot11req);
+
+	/* If the request wasn't successful, report an error and don't
+	 * change the netdev address
+	 */
+	if ( result != 0 || resultcode->data != P80211ENUM_resultcode_success) {
+		WLAN_LOG_ERROR(
+		"Low-level driver failed dot11req_mibset(dot11MACAddress).\n");
+		result = -EADDRNOTAVAIL;
+	} else {
+		/* everything's ok, change the addr in netdev */
+		memcpy(dev->dev_addr, new_addr->sa_data, dev->addr_len);
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+static int wlan_change_mtu(netdevice_t *dev, int new_mtu)
+{
+	DBFENTER;
+	// 2312 is max 802.11 payload, 20 is overhead, (ether + llc +snap)
+	// and another 8 for wep.
+        if ( (new_mtu < 68) || (new_mtu > (2312 - 20 - 8)))
+                return -EINVAL;
+
+        dev->mtu = new_mtu;
+
+	DBFEXIT;
+
+        return 0;
+}
+
+
+
+/*----------------------------------------------------------------
+* wlan_setup
+*
+* Roughly matches the functionality of ether_setup.  Here
+* we set up any members of the wlandevice structure that are common
+* to all devices.  Additionally, we allocate a linux 'struct device'
+* and perform the same setup as ether_setup.
+*
+* Note: It's important that the caller have setup the wlandev->name
+*	ptr prior to calling this function.
+*
+* Arguments:
+*	wlandev		ptr to the wlandev structure for the
+*			interface.
+* Returns:
+*	zero on success, non-zero otherwise.
+* Call Context:
+*	Should be process thread.  We'll assume it might be
+*	interrupt though.  When we add support for statically
+*	compiled drivers, this function will be called in the
+*	context of the kernel startup code.
+----------------------------------------------------------------*/
+int wlan_setup(wlandevice_t *wlandev)
+{
+	int		result = 0;
+	netdevice_t	*dev;
+
+	DBFENTER;
+
+	/* Set up the wlandev */
+	wlandev->state = WLAN_DEVICE_CLOSED;
+	wlandev->ethconv = WLAN_ETHCONV_8021h;
+	wlandev->macmode = WLAN_MACMODE_NONE;
+
+	/* Set up the rx queue */
+	skb_queue_head_init(&wlandev->nsd_rxq);
+	tasklet_init(&wlandev->rx_bh,
+		     p80211netdev_rx_bh,
+		     (unsigned long)wlandev);
+
+	/* Allocate and initialize the struct device */
+	dev = kmalloc(sizeof(netdevice_t), GFP_ATOMIC);
+	if ( dev == NULL ) {
+		WLAN_LOG_ERROR("Failed to alloc netdev.\n");
+		result = 1;
+	} else {
+		memset( dev, 0, sizeof(netdevice_t));
+		ether_setup(dev);
+		wlandev->netdev = dev;
+		dev->priv = wlandev;
+		dev->hard_start_xmit =	p80211knetdev_hard_start_xmit;
+		dev->get_stats =	p80211knetdev_get_stats;
+#ifdef HAVE_PRIVATE_IOCTL
+		dev->do_ioctl = 	p80211knetdev_do_ioctl;
+#endif
+#ifdef HAVE_MULTICAST
+		dev->set_multicast_list = p80211knetdev_set_multicast_list;
+#endif
+		dev->init =		p80211knetdev_init;
+		dev->open =		p80211knetdev_open;
+		dev->stop =		p80211knetdev_stop;
+
+#ifdef CONFIG_NET_WIRELESS
+#if ((WIRELESS_EXT < 17) && (WIRELESS_EXT < 21))
+		dev->get_wireless_stats = p80211wext_get_wireless_stats;
+#endif
+#if WIRELESS_EXT > 12
+		dev->wireless_handlers = &p80211wext_handler_def;
+#endif
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,3,38) )
+		dev->tbusy = 1;
+		dev->start = 0;
+#else
+		netif_stop_queue(dev);
+#endif
+#ifdef HAVE_CHANGE_MTU
+		dev->change_mtu = wlan_change_mtu;
+#endif
+#ifdef HAVE_SET_MAC_ADDR
+		dev->set_mac_address =	p80211knetdev_set_mac_address;
+#endif
+#ifdef HAVE_TX_TIMEOUT
+		dev->tx_timeout      =  &p80211knetdev_tx_timeout;
+		dev->watchdog_timeo  =  (wlan_watchdog * HZ) / 1000;
+#endif
+		netif_carrier_off(dev);
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+/*----------------------------------------------------------------
+* wlan_unsetup
+*
+* This function is paired with the wlan_setup routine.  It should
+* be called after unregister_wlandev.  Basically, all it does is
+* free the 'struct device' that's associated with the wlandev.
+* We do it here because the 'struct device' isn't allocated
+* explicitly in the driver code, it's done in wlan_setup.  To
+* do the free in the driver might seem like 'magic'.
+*
+* Arguments:
+*	wlandev		ptr to the wlandev structure for the
+*			interface.
+* Returns:
+*	zero on success, non-zero otherwise.
+* Call Context:
+*	Should be process thread.  We'll assume it might be
+*	interrupt though.  When we add support for statically
+*	compiled drivers, this function will be called in the
+*	context of the kernel startup code.
+----------------------------------------------------------------*/
+int wlan_unsetup(wlandevice_t *wlandev)
+{
+	int		result = 0;
+
+	DBFENTER;
+
+	tasklet_kill(&wlandev->rx_bh);
+
+	if (wlandev->netdev == NULL ) {
+		WLAN_LOG_ERROR("called without wlandev->netdev set.\n");
+		result = 1;
+	} else {
+		free_netdev(wlandev->netdev);
+		wlandev->netdev = NULL;
+	}
+
+	DBFEXIT;
+	return 0;
+}
+
+
+
+/*----------------------------------------------------------------
+* register_wlandev
+*
+* Roughly matches the functionality of register_netdev.  This function
+* is called after the driver has successfully probed and set up the
+* resources for the device.  It's now ready to become a named device
+* in the Linux system.
+*
+* First we allocate a name for the device (if not already set), then
+* we call the Linux function register_netdevice.
+*
+* Arguments:
+*	wlandev		ptr to the wlandev structure for the
+*			interface.
+* Returns:
+*	zero on success, non-zero otherwise.
+* Call Context:
+*	Can be either interrupt or not.
+----------------------------------------------------------------*/
+int register_wlandev(wlandevice_t *wlandev)
+{
+	int		i = 0;
+	netdevice_t	*dev = wlandev->netdev;
+
+	DBFENTER;
+
+	i = dev_alloc_name(wlandev->netdev, "wlan%d");
+	if (i >= 0) {
+		i = register_netdev(wlandev->netdev);
+	}
+	if (i != 0) {
+		return -EIO;
+	}
+
+#if ( LINUX_VERSION_CODE < KERNEL_VERSION(2,4,0) )
+	dev->name = wlandev->name;
+#else
+	strcpy(wlandev->name, dev->name);
+#endif
+
+#ifdef CONFIG_PROC_FS
+	if (proc_p80211) {
+		wlandev->procdir = proc_mkdir(wlandev->name, proc_p80211);
+		if ( wlandev->procdir )
+			wlandev->procwlandev =
+				create_proc_read_entry("wlandev", 0,
+						       wlandev->procdir,
+						       p80211netdev_proc_read,
+						       wlandev);
+		if (wlandev->nsd_proc_read)
+			create_proc_read_entry("nsd", 0,
+					       wlandev->procdir,
+					       wlandev->nsd_proc_read,
+					       wlandev);
+	}
+#endif
+
+#ifdef CONFIG_HOTPLUG
+	p80211_run_sbin_hotplug(wlandev, WLAN_HOTPLUG_REGISTER);
+#endif
+
+	DBFEXIT;
+	return 0;
+}
+
+
+/*----------------------------------------------------------------
+* unregister_wlandev
+*
+* Roughly matches the functionality of unregister_netdev.  This
+* function is called to remove a named device from the system.
+*
+* First we tell linux that the device should no longer exist.
+* Then we remove it from the list of known wlan devices.
+*
+* Arguments:
+*	wlandev		ptr to the wlandev structure for the
+*			interface.
+* Returns:
+*	zero on success, non-zero otherwise.
+* Call Context:
+*	Can be either interrupt or not.
+----------------------------------------------------------------*/
+int unregister_wlandev(wlandevice_t *wlandev)
+{
+	struct sk_buff *skb;
+
+	DBFENTER;
+
+#ifdef CONFIG_HOTPLUG
+	p80211_run_sbin_hotplug(wlandev, WLAN_HOTPLUG_REMOVE);
+#endif
+
+#ifdef CONFIG_PROC_FS
+	if ( wlandev->procwlandev ) {
+		remove_proc_entry("wlandev", wlandev->procdir);
+	}
+	if ( wlandev->nsd_proc_read ) {
+		remove_proc_entry("nsd", wlandev->procdir);
+	}
+	if (wlandev->procdir) {
+		remove_proc_entry(wlandev->name, proc_p80211);
+	}
+#endif
+
+	unregister_netdev(wlandev->netdev);
+
+	/* Now to clean out the rx queue */
+	while ( (skb = skb_dequeue(&wlandev->nsd_rxq)) ) {
+		dev_kfree_skb(skb);
+	}
+
+	DBFEXIT;
+	return 0;
+}
+
+#ifdef CONFIG_PROC_FS
+/*----------------------------------------------------------------
+* proc_read
+*
+* Read function for /proc/net/p80211/<device>/wlandev
+*
+* Arguments:
+*	buf
+*	start
+*	offset
+*	count
+*	eof
+*	data
+* Returns:
+*	zero on success, non-zero otherwise.
+* Call Context:
+*	Can be either interrupt or not.
+----------------------------------------------------------------*/
+static int
+p80211netdev_proc_read(
+	char	*page,
+	char	**start,
+	off_t	offset,
+	int	count,
+	int	*eof,
+	void	*data)
+{
+	char	 *p = page;
+	wlandevice_t *wlandev = (wlandevice_t *) data;
+
+	DBFENTER;
+	if (offset != 0) {
+		*eof = 1;
+		goto exit;
+	}
+
+	p += sprintf(p, "p80211 version: %s (%s)\n\n",
+		     WLAN_RELEASE, WLAN_BUILD_DATE);
+	p += sprintf(p, "name       : %s\n", wlandev->name);
+	p += sprintf(p, "nsd name   : %s\n", wlandev->nsdname);
+	p += sprintf(p, "address    : %02x:%02x:%02x:%02x:%02x:%02x\n",
+		     wlandev->netdev->dev_addr[0], wlandev->netdev->dev_addr[1], wlandev->netdev->dev_addr[2],
+		     wlandev->netdev->dev_addr[3], wlandev->netdev->dev_addr[4], wlandev->netdev->dev_addr[5]);
+	p += sprintf(p, "nsd caps   : %s%s%s%s%s%s%s%s%s%s\n",
+		     (wlandev->nsdcaps & P80211_NSDCAP_HARDWAREWEP) ? "wep_hw " : "",
+		     (wlandev->nsdcaps & P80211_NSDCAP_TIEDWEP) ? "wep_tied " : "",
+		     (wlandev->nsdcaps & P80211_NSDCAP_NOHOSTWEP) ? "wep_hw_only " : "",
+		     (wlandev->nsdcaps & P80211_NSDCAP_PBCC) ? "pbcc " : "",
+		     (wlandev->nsdcaps & P80211_NSDCAP_SHORT_PREAMBLE) ? "short_preamble " : "",
+		     (wlandev->nsdcaps & P80211_NSDCAP_AGILITY) ? "agility " : "",
+		     (wlandev->nsdcaps & P80211_NSDCAP_AP_RETRANSMIT) ? "ap_retransmit " : "",
+		     (wlandev->nsdcaps & P80211_NSDCAP_HWFRAGMENT) ? "hw_frag " : "",
+		     (wlandev->nsdcaps & P80211_NSDCAP_AUTOJOIN) ? "autojoin " : "",
+		     (wlandev->nsdcaps & P80211_NSDCAP_NOSCAN) ? "" : "scan ");
+
+
+	p += sprintf(p, "bssid      : %02x:%02x:%02x:%02x:%02x:%02x\n",
+		     wlandev->bssid[0], wlandev->bssid[1], wlandev->bssid[2],
+		     wlandev->bssid[3], wlandev->bssid[4], wlandev->bssid[5]);
+
+	p += sprintf(p, "Enabled    : %s%s\n",
+		     (wlandev->shortpreamble) ? "short_preamble " : "",
+		     (wlandev->hostwep & HOSTWEP_PRIVACYINVOKED) ? "privacy" : "");
+
+
+ exit:
+	DBFEXIT;
+	return (p - page);
+}
+#endif
+
+/*----------------------------------------------------------------
+* p80211netdev_hwremoved
+*
+* Hardware removed notification. This function should be called
+* immediately after an MSD has detected that the underlying hardware
+* has been yanked out from under us.  The primary things we need
+* to do are:
+*   - Mark the wlandev
+*   - Prevent any further traffic from the knetdev i/f
+*   - Prevent any further requests from mgmt i/f
+*   - If there are any waitq'd mgmt requests or mgmt-frame exchanges,
+*     shut them down.
+*   - Call the MSD hwremoved function.
+*
+* The remainder of the cleanup will be handled by unregister().
+* Our primary goal here is to prevent as much tickling of the MSD
+* as possible since the MSD is already in a 'wounded' state.
+*
+* TODO: As new features are added, this function should be
+*       updated.
+*
+* Arguments:
+*	wlandev		WLAN network device structure
+* Returns:
+*	nothing
+* Side effects:
+*
+* Call context:
+*	Usually interrupt.
+----------------------------------------------------------------*/
+void p80211netdev_hwremoved(wlandevice_t *wlandev)
+{
+	DBFENTER;
+	wlandev->hwremoved = 1;
+	if ( wlandev->state == WLAN_DEVICE_OPEN) {
+		p80211netdev_stop_queue(wlandev);
+	}
+
+	netif_device_detach(wlandev->netdev);
+
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* p80211_rx_typedrop
+*
+* Classifies the frame, increments the appropriate counter, and
+* returns 0|1|2 indicating whether the driver should handle, ignore, or
+* drop the frame
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	fc		frame control field
+*
+* Returns:
+*	zero if the frame should be handled by the driver,
+*       one if the frame should be ignored
+*       anything else means we drop it.
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static int p80211_rx_typedrop( wlandevice_t *wlandev, UINT16 fc)
+{
+	UINT16	ftype;
+	UINT16	fstype;
+	int	drop = 0;
+	/* Classify frame, increment counter */
+	ftype = WLAN_GET_FC_FTYPE(fc);
+	fstype = WLAN_GET_FC_FSTYPE(fc);
+#if 0
+	WLAN_LOG_DEBUG(4,
+		"rx_typedrop : ftype=%d fstype=%d.\n", ftype, fstype);
+#endif
+	switch ( ftype ) {
+	case WLAN_FTYPE_MGMT:
+		if ((wlandev->netdev->flags & IFF_PROMISC) ||
+			(wlandev->netdev->flags & IFF_ALLMULTI)) {
+			drop = 1;
+			break;
+		}
+		WLAN_LOG_DEBUG(3, "rx'd mgmt:\n");
+		wlandev->rx.mgmt++;
+		switch( fstype ) {
+		case WLAN_FSTYPE_ASSOCREQ:
+			/* printk("assocreq"); */
+			wlandev->rx.assocreq++;
+			break;
+		case WLAN_FSTYPE_ASSOCRESP:
+			/* printk("assocresp"); */
+			wlandev->rx.assocresp++;
+			break;
+		case WLAN_FSTYPE_REASSOCREQ:
+			/* printk("reassocreq"); */
+			wlandev->rx.reassocreq++;
+			break;
+		case WLAN_FSTYPE_REASSOCRESP:
+			/* printk("reassocresp"); */
+			wlandev->rx.reassocresp++;
+			break;
+		case WLAN_FSTYPE_PROBEREQ:
+			/* printk("probereq"); */
+			wlandev->rx.probereq++;
+			break;
+		case WLAN_FSTYPE_PROBERESP:
+			/* printk("proberesp"); */
+			wlandev->rx.proberesp++;
+			break;
+		case WLAN_FSTYPE_BEACON:
+			/* printk("beacon"); */
+			wlandev->rx.beacon++;
+			break;
+		case WLAN_FSTYPE_ATIM:
+			/* printk("atim"); */
+			wlandev->rx.atim++;
+			break;
+		case WLAN_FSTYPE_DISASSOC:
+			/* printk("disassoc"); */
+			wlandev->rx.disassoc++;
+			break;
+		case WLAN_FSTYPE_AUTHEN:
+			/* printk("authen"); */
+			wlandev->rx.authen++;
+			break;
+		case WLAN_FSTYPE_DEAUTHEN:
+			/* printk("deauthen"); */
+			wlandev->rx.deauthen++;
+			break;
+		default:
+			/* printk("unknown"); */
+			wlandev->rx.mgmt_unknown++;
+			break;
+		}
+		/* printk("\n"); */
+		drop = 2;
+		break;
+
+	case WLAN_FTYPE_CTL:
+		if ((wlandev->netdev->flags & IFF_PROMISC) ||
+			(wlandev->netdev->flags & IFF_ALLMULTI)) {
+			drop = 1;
+			break;
+		}
+		WLAN_LOG_DEBUG(3, "rx'd ctl:\n");
+		wlandev->rx.ctl++;
+		switch( fstype ) {
+		case WLAN_FSTYPE_PSPOLL:
+			/* printk("pspoll"); */
+			wlandev->rx.pspoll++;
+			break;
+		case WLAN_FSTYPE_RTS:
+			/* printk("rts"); */
+			wlandev->rx.rts++;
+			break;
+		case WLAN_FSTYPE_CTS:
+			/* printk("cts"); */
+			wlandev->rx.cts++;
+			break;
+		case WLAN_FSTYPE_ACK:
+			/* printk("ack"); */
+			wlandev->rx.ack++;
+			break;
+		case WLAN_FSTYPE_CFEND:
+			/* printk("cfend"); */
+			wlandev->rx.cfend++;
+			break;
+		case WLAN_FSTYPE_CFENDCFACK:
+			/* printk("cfendcfack"); */
+			wlandev->rx.cfendcfack++;
+			break;
+		default:
+			/* printk("unknown"); */
+			wlandev->rx.ctl_unknown++;
+			break;
+		}
+		/* printk("\n"); */
+		drop = 2;
+		break;
+
+	case WLAN_FTYPE_DATA:
+		wlandev->rx.data++;
+		switch( fstype ) {
+		case WLAN_FSTYPE_DATAONLY:
+			wlandev->rx.dataonly++;
+			break;
+		case WLAN_FSTYPE_DATA_CFACK:
+			wlandev->rx.data_cfack++;
+			break;
+		case WLAN_FSTYPE_DATA_CFPOLL:
+			wlandev->rx.data_cfpoll++;
+			break;
+		case WLAN_FSTYPE_DATA_CFACK_CFPOLL:
+			wlandev->rx.data__cfack_cfpoll++;
+			break;
+		case WLAN_FSTYPE_NULL:
+			WLAN_LOG_DEBUG(3, "rx'd data:null\n");
+			wlandev->rx.null++;
+			break;
+		case WLAN_FSTYPE_CFACK:
+			WLAN_LOG_DEBUG(3, "rx'd data:cfack\n");
+			wlandev->rx.cfack++;
+			break;
+		case WLAN_FSTYPE_CFPOLL:
+			WLAN_LOG_DEBUG(3, "rx'd data:cfpoll\n");
+			wlandev->rx.cfpoll++;
+			break;
+		case WLAN_FSTYPE_CFACK_CFPOLL:
+			WLAN_LOG_DEBUG(3, "rx'd data:cfack_cfpoll\n");
+			wlandev->rx.cfack_cfpoll++;
+			break;
+		default:
+			/* printk("unknown"); */
+			wlandev->rx.data_unknown++;
+			break;
+		}
+
+		break;
+	}
+	return drop;
+}
+
+#ifdef CONFIG_HOTPLUG
+/* Notify userspace when a netdevice event occurs,
+ * by running '/sbin/hotplug net' with certain
+ * environment variables set.
+ */
+int p80211_run_sbin_hotplug(wlandevice_t *wlandev, char *action)
+{
+        char *argv[3], *envp[7], ifname[12 + IFNAMSIZ], action_str[32];
+	char nsdname[32], wlan_wext[32];
+        int i;
+
+	if (wlandev) {
+		sprintf(ifname, "INTERFACE=%s", wlandev->name);
+		sprintf(nsdname, "NSDNAME=%s", wlandev->nsdname);
+	} else {
+		sprintf(ifname, "INTERFACE=null");
+		sprintf(nsdname, "NSDNAME=null");
+	}
+
+	sprintf(wlan_wext, "WLAN_WEXT=%s", wlan_wext_write ? "y" : "");
+        sprintf(action_str, "ACTION=%s", action);
+
+        i = 0;
+        argv[i++] = hotplug_path;
+        argv[i++] = "wlan";
+        argv[i] = NULL;
+
+        i = 0;
+        /* minimal command environment */
+        envp [i++] = "HOME=/";
+        envp [i++] = "PATH=/sbin:/bin:/usr/sbin:/usr/bin";
+        envp [i++] = ifname;
+        envp [i++] = action_str;
+        envp [i++] = nsdname;
+        envp [i++] = wlan_wext;
+        envp [i] = NULL;
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,5,62))
+        return call_usermodehelper(argv [0], argv, envp);
+#else
+        return call_usermodehelper(argv [0], argv, envp, 0);
+#endif
+}
+
+#endif
+
+
+void    p80211_suspend(wlandevice_t *wlandev)
+{
+	DBFENTER;
+
+#ifdef CONFIG_HOTPLUG
+	p80211_run_sbin_hotplug(wlandev, WLAN_HOTPLUG_SUSPEND);
+#endif
+
+	DBFEXIT;
+}
+
+void    p80211_resume(wlandevice_t *wlandev)
+{
+	DBFENTER;
+
+#ifdef CONFIG_HOTPLUG
+	p80211_run_sbin_hotplug(wlandev, WLAN_HOTPLUG_RESUME);
+#endif
+
+	DBFEXIT;
+}
+
+static void p80211knetdev_tx_timeout( netdevice_t *netdev)
+{
+	wlandevice_t	*wlandev = (wlandevice_t*)netdev->priv;
+	DBFENTER;
+
+	if (wlandev->tx_timeout) {
+		wlandev->tx_timeout(wlandev);
+	} else {
+		WLAN_LOG_WARNING("Implement tx_timeout for %s\n",
+				 wlandev->nsdname);
+		p80211netdev_wake_queue(wlandev);
+	}
+
+	DBFEXIT;
+}
diff --git a/drivers/staging/wlan-ng/p80211netdev.h b/drivers/staging/wlan-ng/p80211netdev.h
new file mode 100644
index 0000000..9b2e0cd
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211netdev.h
@@ -0,0 +1,336 @@
+/* p80211netdev.h
+*
+* WLAN net device structure and functions
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* This file declares the structure type that represents each wlan
+* interface.
+*
+* --------------------------------------------------------------------
+*/
+
+#ifndef _LINUX_P80211NETDEV_H
+#define _LINUX_P80211NETDEV_H
+
+#include <linux/interrupt.h>
+#include <linux/wireless.h>
+
+/*================================================================*/
+/* Constants */
+
+#define WLAN_DEVICE_CLOSED	0
+#define WLAN_DEVICE_OPEN	1
+
+#define WLAN_MACMODE_NONE	0
+#define WLAN_MACMODE_IBSS_STA	1
+#define WLAN_MACMODE_ESS_STA	2
+#define WLAN_MACMODE_ESS_AP	3
+
+/* MSD States */
+#define WLAN_MSD_START			-1
+#define WLAN_MSD_DRIVERLOADED		0
+#define WLAN_MSD_HWPRESENT_PENDING	1
+#define WLAN_MSD_HWFAIL			2
+#define WLAN_MSD_HWPRESENT		3
+#define WLAN_MSD_FWLOAD_PENDING		4
+#define WLAN_MSD_FWLOAD			5
+#define WLAN_MSD_RUNNING_PENDING	6
+#define WLAN_MSD_RUNNING		7
+
+#ifndef ETH_P_ECONET
+#define ETH_P_ECONET   0x0018    /* needed for 2.2.x kernels */
+#endif
+
+#define ETH_P_80211_RAW        (ETH_P_ECONET + 1)
+
+#ifndef ARPHRD_IEEE80211
+#define ARPHRD_IEEE80211 801     /* kernel 2.4.6 */
+#endif
+
+#ifndef ARPHRD_IEEE80211_PRISM  /* kernel 2.4.18 */
+#define ARPHRD_IEEE80211_PRISM 802
+#endif
+
+/*--- NSD Capabilities Flags ------------------------------*/
+#define P80211_NSDCAP_HARDWAREWEP           0x01  /* hardware wep engine */
+#define P80211_NSDCAP_TIEDWEP               0x02  /* can't decouple en/de */
+#define P80211_NSDCAP_NOHOSTWEP             0x04  /* must use hardware wep */
+#define P80211_NSDCAP_PBCC                  0x08  /* hardware supports PBCC */
+#define P80211_NSDCAP_SHORT_PREAMBLE        0x10  /* hardware supports */
+#define P80211_NSDCAP_AGILITY               0x20  /* hardware supports */
+#define P80211_NSDCAP_AP_RETRANSMIT         0x40  /* nsd handles retransmits */
+#define P80211_NSDCAP_HWFRAGMENT            0x80  /* nsd handles frag/defrag */
+#define P80211_NSDCAP_AUTOJOIN              0x100  /* nsd does autojoin */
+#define P80211_NSDCAP_NOSCAN                0x200  /* nsd can scan */
+
+/*================================================================*/
+/* Macros */
+
+/*================================================================*/
+/* Types */
+
+/* Received frame statistics */
+typedef struct p80211_frmrx_t
+{
+	UINT32	mgmt;
+	UINT32	assocreq;
+	UINT32	assocresp;
+	UINT32	reassocreq;
+	UINT32	reassocresp;
+	UINT32	probereq;
+	UINT32	proberesp;
+	UINT32	beacon;
+	UINT32	atim;
+	UINT32	disassoc;
+	UINT32	authen;
+	UINT32	deauthen;
+	UINT32	mgmt_unknown;
+	UINT32	ctl;
+	UINT32	pspoll;
+	UINT32	rts;
+	UINT32	cts;
+	UINT32	ack;
+	UINT32	cfend;
+	UINT32	cfendcfack;
+	UINT32	ctl_unknown;
+	UINT32	data;
+	UINT32	dataonly;
+	UINT32	data_cfack;
+	UINT32	data_cfpoll;
+	UINT32	data__cfack_cfpoll;
+	UINT32	null;
+	UINT32	cfack;
+	UINT32	cfpoll;
+	UINT32	cfack_cfpoll;
+	UINT32	data_unknown;
+	UINT32  decrypt;
+	UINT32  decrypt_err;
+} p80211_frmrx_t;
+
+#ifdef WIRELESS_EXT
+/* called by /proc/net/wireless */
+struct iw_statistics* p80211wext_get_wireless_stats(netdevice_t *dev);
+/* wireless extensions' ioctls */
+int p80211wext_support_ioctl(netdevice_t *dev, struct ifreq *ifr, int cmd);
+#if WIRELESS_EXT > 12
+extern struct iw_handler_def p80211wext_handler_def;
+#endif
+
+int p80211wext_event_associated(struct wlandevice *wlandev, int assoc);
+
+#endif /* wireless extensions */
+
+/* WEP stuff */
+#define NUM_WEPKEYS 4
+#define MAX_KEYLEN 32
+
+#define HOSTWEP_DEFAULTKEY_MASK (BIT1|BIT0)
+#define HOSTWEP_DECRYPT  BIT4
+#define HOSTWEP_ENCRYPT  BIT5
+#define HOSTWEP_PRIVACYINVOKED BIT6
+#define HOSTWEP_EXCLUDEUNENCRYPTED BIT7
+
+extern int wlan_watchdog;
+extern int wlan_wext_write;
+
+/* WLAN device type */
+typedef struct wlandevice
+{
+	struct wlandevice	*next;		/* link for list of devices */
+	void			*priv;		/* private data for MSD */
+
+	/* Subsystem State */
+	char		name[WLAN_DEVNAMELEN_MAX]; /* Dev name, from register_wlandev()*/
+	char		*nsdname;
+
+	UINT32          state;          /* Device I/F state (open/closed) */
+	UINT32		msdstate;	/* state of underlying driver */
+	UINT32		hwremoved;	/* Has the hw been yanked out? */
+
+	/* Hardware config */
+	UINT		irq;
+	UINT		iobase;
+	UINT		membase;
+	UINT32          nsdcaps;  /* NSD Capabilities flags */
+
+	/* Config vars */
+	UINT		ethconv;
+
+	/* device methods (init by MSD, used by p80211 */
+	int		(*open)(struct wlandevice *wlandev);
+	int		(*close)(struct wlandevice *wlandev);
+	void		(*reset)(struct wlandevice *wlandev );
+	int		(*txframe)(struct wlandevice *wlandev, struct sk_buff *skb, p80211_hdr_t *p80211_hdr, p80211_metawep_t *p80211_wep);
+	int		(*mlmerequest)(struct wlandevice *wlandev, p80211msg_t *msg);
+	int             (*set_multicast_list)(struct wlandevice *wlandev,
+					      netdevice_t *dev);
+	void		(*tx_timeout)(struct wlandevice *wlandev);
+
+#ifdef CONFIG_PROC_FS
+	int             (*nsd_proc_read)(char *page, char **start, off_t offset, int count, int	*eof, void *data);
+#endif
+
+	/* 802.11 State */
+	UINT8		bssid[WLAN_BSSID_LEN];
+	p80211pstr32_t	ssid;
+	UINT32		macmode;
+	int             linkstatus;
+	int             shortpreamble;  /* C bool */
+
+	/* WEP State */
+	UINT8 wep_keys[NUM_WEPKEYS][MAX_KEYLEN];
+	UINT8 wep_keylens[NUM_WEPKEYS];
+	int   hostwep;
+
+	/* Request/Confirm i/f state (used by p80211) */
+	unsigned long		request_pending; /* flag, access atomically */
+
+	/* netlink socket */
+	/* queue for indications waiting for cmd completion */
+	/* Linux netdevice and support */
+	netdevice_t		*netdev;	/* ptr to linux netdevice */
+	struct net_device_stats linux_stats;
+
+#ifdef CONFIG_PROC_FS
+	/* Procfs support */
+	struct proc_dir_entry	*procdir;
+	struct proc_dir_entry	*procwlandev;
+#endif
+
+	/* Rx bottom half */
+	struct tasklet_struct	rx_bh;
+
+	struct sk_buff_head	nsd_rxq;
+
+	/* 802.11 device statistics */
+	struct p80211_frmrx_t	rx;
+
+/* compatibility to wireless extensions */
+#ifdef WIRELESS_EXT
+	struct iw_statistics	wstats;
+
+	/* jkriegl: iwspy fields */
+        UINT8			spy_number;
+        char			spy_address[IW_MAX_SPY][ETH_ALEN];
+        struct iw_quality       spy_stat[IW_MAX_SPY];
+
+#endif
+
+} wlandevice_t;
+
+/* WEP stuff */
+int wep_change_key(wlandevice_t *wlandev, int keynum, UINT8* key, int keylen);
+int wep_decrypt(wlandevice_t *wlandev, UINT8 *buf, UINT32 len, int key_override, UINT8 *iv, UINT8 *icv);
+int wep_encrypt(wlandevice_t *wlandev, UINT8 *buf, UINT8 *dst, UINT32 len, int keynum, UINT8 *iv, UINT8 *icv);
+
+/*================================================================*/
+/* Externs */
+
+/*================================================================*/
+/* Function Declarations */
+
+void	p80211netdev_startup(void);
+void	p80211netdev_shutdown(void);
+int	wlan_setup(wlandevice_t *wlandev);
+int	wlan_unsetup(wlandevice_t *wlandev);
+int	register_wlandev(wlandevice_t *wlandev);
+int	unregister_wlandev(wlandevice_t *wlandev);
+void	p80211netdev_rx(wlandevice_t *wlandev, struct sk_buff *skb);
+void	p80211netdev_hwremoved(wlandevice_t *wlandev);
+void    p80211_suspend(wlandevice_t *wlandev);
+void    p80211_resume(wlandevice_t *wlandev);
+
+/*================================================================*/
+/* Function Definitions */
+
+static inline void
+p80211netdev_stop_queue(wlandevice_t *wlandev)
+{
+	if ( !wlandev ) return;
+	if ( !wlandev->netdev ) return;
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,3,38) )
+	wlandev->netdev->tbusy = 1;
+	wlandev->netdev->start = 0;
+#else
+	netif_stop_queue(wlandev->netdev);
+#endif
+}
+
+static inline void
+p80211netdev_start_queue(wlandevice_t *wlandev)
+{
+	if ( !wlandev ) return;
+	if ( !wlandev->netdev ) return;
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,3,38) )
+	wlandev->netdev->tbusy = 0;
+	wlandev->netdev->start = 1;
+#else
+	netif_start_queue(wlandev->netdev);
+#endif
+}
+
+static inline void
+p80211netdev_wake_queue(wlandevice_t *wlandev)
+{
+	if ( !wlandev ) return;
+	if ( !wlandev->netdev ) return;
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,3,38) )
+	wlandev->netdev->tbusy = 0;
+	mark_bh(NET_BH);
+#else
+	netif_wake_queue(wlandev->netdev);
+#endif
+}
+
+#ifdef CONFIG_HOTPLUG
+#define WLAN_HOTPLUG_REGISTER "register"
+#define WLAN_HOTPLUG_REMOVE   "remove"
+#define WLAN_HOTPLUG_STARTUP  "startup"
+#define WLAN_HOTPLUG_SHUTDOWN "shutdown"
+#define WLAN_HOTPLUG_SUSPEND "suspend"
+#define WLAN_HOTPLUG_RESUME "resume"
+int p80211_run_sbin_hotplug(wlandevice_t *wlandev, char *action);
+#endif
+
+#endif
diff --git a/drivers/staging/wlan-ng/p80211req.c b/drivers/staging/wlan-ng/p80211req.c
new file mode 100644
index 0000000..0233abe
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211req.c
@@ -0,0 +1,329 @@
+/* src/p80211/p80211req.c
+*
+* Request/Indication/MacMgmt interface handling functions
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* This file contains the functions, types, and macros to support the
+* MLME request interface that's implemented via the device ioctls.
+*
+* --------------------------------------------------------------------
+*/
+
+/*================================================================*/
+/* System Includes */
+
+
+#include <linux/version.h>
+
+#include <linux/module.h>
+#include <linux/kernel.h>
+#include <linux/sched.h>
+#include <linux/types.h>
+#include <linux/skbuff.h>
+#include <linux/slab.h>
+#include <linux/wireless.h>
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <net/sock.h>
+#include <linux/netlink.h>
+
+#include "version.h"
+#include "wlan_compat.h"
+
+/*================================================================*/
+/* Project Includes */
+
+#include "p80211types.h"
+#include "p80211hdr.h"
+#include "p80211mgmt.h"
+#include "p80211conv.h"
+#include "p80211msg.h"
+#include "p80211netdev.h"
+#include "p80211ioctl.h"
+#include "p80211metadef.h"
+#include "p80211metastruct.h"
+#include "p80211req.h"
+
+/*================================================================*/
+/* Local Constants */
+
+/* Maximum amount of time we'll wait for a request to complete */
+#define P80211REQ_MAXTIME	3*HZ	/* 3 seconds */
+
+/*================================================================*/
+/* Local Macros */
+
+/*================================================================*/
+/* Local Types */
+
+/*================================================================*/
+/* Local Static Definitions */
+
+/*================================================================*/
+/* Local Function Declarations */
+
+static void p80211req_handlemsg( wlandevice_t *wlandev, p80211msg_t *msg);
+static int p80211req_mibset_mibget(wlandevice_t *wlandev, p80211msg_dot11req_mibget_t *mib_msg, int isget);
+
+/*================================================================*/
+/* Function Definitions */
+
+
+/*----------------------------------------------------------------
+* p80211req_dorequest
+*
+* Handles an MLME reqest/confirm message.
+*
+* Arguments:
+*	wlandev		WLAN device struct
+*	msgbuf		Buffer containing a request message
+*
+* Returns:
+*	0 on success, an errno otherwise
+*
+* Call context:
+*	Potentially blocks the caller, so it's a good idea to
+*	not call this function from an interrupt context.
+----------------------------------------------------------------*/
+int p80211req_dorequest( wlandevice_t *wlandev, UINT8 *msgbuf)
+{
+	int		result = 0;
+	p80211msg_t	*msg = (p80211msg_t*)msgbuf;
+
+	DBFENTER;
+
+	/* Check to make sure the MSD is running */
+	if (
+	!((wlandev->msdstate == WLAN_MSD_HWPRESENT &&
+	msg->msgcode == DIDmsg_lnxreq_ifstate) ||
+	wlandev->msdstate == WLAN_MSD_RUNNING ||
+	wlandev->msdstate == WLAN_MSD_FWLOAD) ) {
+		return -ENODEV;
+	}
+
+	/* Check Permissions */
+	if (!capable(CAP_NET_ADMIN) &&
+	    (msg->msgcode != DIDmsg_dot11req_mibget)) {
+		WLAN_LOG_ERROR("%s: only dot11req_mibget allowed for non-root.\n", wlandev->name);
+		return -EPERM;
+	}
+
+	/* Check for busy status */
+	if ( test_and_set_bit(1, &(wlandev->request_pending))) {
+		return -EBUSY;
+	}
+
+	/* Allow p80211 to look at msg and handle if desired. */
+	/* So far, all p80211 msgs are immediate, no waitq/timer necessary */
+	/* This may change. */
+	p80211req_handlemsg(wlandev, msg);
+
+	/* Pass it down to wlandev via wlandev->mlmerequest */
+	if ( wlandev->mlmerequest != NULL )
+		wlandev->mlmerequest(wlandev, msg);
+
+	clear_bit( 1, &(wlandev->request_pending));
+	DBFEXIT;
+	return result;	/* if result==0, msg->status still may contain an err */
+}
+
+/*----------------------------------------------------------------
+* p80211req_handlemsg
+*
+* p80211 message handler.  Primarily looks for messages that
+* belong to p80211 and then dispatches the appropriate response.
+* TODO: we don't do anything yet.  Once the linuxMIB is better
+*	defined we'll need a get/set handler.
+*
+* Arguments:
+*	wlandev		WLAN device struct
+*	msg		message structure
+*
+* Returns:
+*	nothing (any results are set in the status field of the msg)
+*
+* Call context:
+*	Process thread
+----------------------------------------------------------------*/
+static void p80211req_handlemsg( wlandevice_t *wlandev, p80211msg_t *msg)
+{
+        DBFENTER;
+
+	switch (msg->msgcode) {
+
+	case DIDmsg_lnxreq_hostwep: {
+		p80211msg_lnxreq_hostwep_t *req = (p80211msg_lnxreq_hostwep_t*) msg;
+		wlandev->hostwep &= ~(HOSTWEP_DECRYPT|HOSTWEP_ENCRYPT);
+		if (req->decrypt.data == P80211ENUM_truth_true)
+			wlandev->hostwep |= HOSTWEP_DECRYPT;
+		if (req->encrypt.data == P80211ENUM_truth_true)
+			wlandev->hostwep |= HOSTWEP_ENCRYPT;
+
+		break;
+	}
+	case DIDmsg_dot11req_mibget:
+	case DIDmsg_dot11req_mibset: {
+		int isget = (msg->msgcode == DIDmsg_dot11req_mibget);
+		p80211msg_dot11req_mibget_t  *mib_msg = (p80211msg_dot11req_mibget_t *) msg;
+		p80211req_mibset_mibget (wlandev, mib_msg, isget);
+	}
+	default:
+		// XXX do nothing!
+		;
+	} /* switch msg->msgcode */
+
+	DBFEXIT;
+
+	return;
+}
+
+static int p80211req_mibset_mibget(wlandevice_t *wlandev,
+				   p80211msg_dot11req_mibget_t *mib_msg,
+				   int isget)
+{
+	p80211itemd_t   *mibitem = (p80211itemd_t *) mib_msg->mibattribute.data;
+	p80211pstrd_t  *pstr = (p80211pstrd_t*) mibitem->data;
+	UINT8 *key = mibitem->data + sizeof(p80211pstrd_t);
+
+	DBFENTER;
+
+	switch (mibitem->did) {
+	case DIDmib_dot11smt_p80211Table_p80211_ifstate: {
+		UINT32 *data = (UINT32 *) mibitem->data;
+		if (isget)
+			switch (wlandev->msdstate) {
+			case WLAN_MSD_HWPRESENT:
+				*data = P80211ENUM_ifstate_disable;
+				break;
+			case WLAN_MSD_FWLOAD:
+				*data = P80211ENUM_ifstate_fwload;
+				break;
+			case WLAN_MSD_RUNNING:
+				*data = P80211ENUM_ifstate_enable;
+				break;
+			default:
+				*data = P80211ENUM_ifstate_enable;
+			}
+		break;
+	}
+	case DIDmib_dot11phy_dot11PhyOperationTable_dot11ShortPreambleEnabled: {
+		UINT32 *data = (UINT32 *) mibitem->data;
+
+		if (isget)
+			*data = wlandev->shortpreamble;
+		else
+			wlandev->shortpreamble = *data;
+		break;
+	}
+	case DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey0: {
+		if (!isget)
+			wep_change_key(wlandev, 0, key, pstr->len);
+		break;
+	}
+	case DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey1: {
+		if (!isget)
+			wep_change_key(wlandev, 1, key, pstr->len);
+		break;
+	}
+	case DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey2: {
+		if (!isget)
+			wep_change_key(wlandev, 2, key, pstr->len);
+		break;
+	}
+	case DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey3: {
+		if (!isget)
+			wep_change_key(wlandev, 3, key, pstr->len);
+		break;
+	}
+	case DIDmib_dot11smt_dot11PrivacyTable_dot11WEPDefaultKeyID: {
+		UINT32 *data = (UINT32 *) mibitem->data;
+
+		if (isget) {
+			*data = wlandev->hostwep & HOSTWEP_DEFAULTKEY_MASK;
+			} else {
+				wlandev->hostwep &= ~(HOSTWEP_DEFAULTKEY_MASK);
+
+				wlandev->hostwep |= (*data & HOSTWEP_DEFAULTKEY_MASK);
+			}
+		break;
+	}
+	case DIDmib_dot11smt_dot11PrivacyTable_dot11PrivacyInvoked: {
+		UINT32 *data = (UINT32 *) mibitem->data;
+
+		if (isget) {
+			if (wlandev->hostwep & HOSTWEP_PRIVACYINVOKED)
+				*data = P80211ENUM_truth_true;
+			else
+				*data = P80211ENUM_truth_false;
+		} else {
+				wlandev->hostwep &= ~(HOSTWEP_PRIVACYINVOKED);
+				if (*data == P80211ENUM_truth_true)
+					wlandev->hostwep |= HOSTWEP_PRIVACYINVOKED;
+		}
+		break;
+	}
+	case DIDmib_dot11smt_dot11PrivacyTable_dot11ExcludeUnencrypted: {
+		UINT32 *data = (UINT32 *) mibitem->data;
+
+		if (isget) {
+			if (wlandev->hostwep & HOSTWEP_EXCLUDEUNENCRYPTED)
+				*data = P80211ENUM_truth_true;
+			else
+				*data = P80211ENUM_truth_false;
+		} else {
+			wlandev->hostwep &= ~(HOSTWEP_EXCLUDEUNENCRYPTED);
+			if (*data == P80211ENUM_truth_true)
+				wlandev->hostwep |= HOSTWEP_EXCLUDEUNENCRYPTED;
+		}
+		break;
+	}
+	default:
+		// XXXX do nothing!
+		;
+	}
+
+	DBFEXIT;
+	return 0;
+}
+
diff --git a/drivers/staging/wlan-ng/p80211req.h b/drivers/staging/wlan-ng/p80211req.h
new file mode 100644
index 0000000..54abdce
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211req.h
@@ -0,0 +1,68 @@
+/* p80211req.h
+*
+* Request handling functions
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*/
+
+#ifndef _LINUX_P80211REQ_H
+#define _LINUX_P80211REQ_H
+
+/*================================================================*/
+/* Constants */
+
+/*================================================================*/
+/* Macros */
+
+/*================================================================*/
+/* Types */
+
+/*================================================================*/
+/* Externs */
+
+/*================================================================*/
+/* Function Declarations */
+
+int	p80211req_dorequest(wlandevice_t *wlandev, UINT8 *msgbuf);
+
+#endif
diff --git a/drivers/staging/wlan-ng/p80211types.h b/drivers/staging/wlan-ng/p80211types.h
new file mode 100644
index 0000000..811b0ce
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211types.h
@@ -0,0 +1,675 @@
+/* p80211types.h
+*
+* Macros, constants, types, and funcs for p80211 data types
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* This file declares some of the constants and types used in various
+* parts of the linux-wlan system.
+*
+* Notes:
+*   - Constant values are always in HOST byte order.
+*
+* All functions and statics declared here are implemented in p80211types.c
+*   --------------------------------------------------------------------
+*/
+
+#ifndef _P80211TYPES_H
+#define _P80211TYPES_H
+
+/*================================================================*/
+/* System Includes */
+/*================================================================*/
+
+/*================================================================*/
+/* Project Includes */
+/*================================================================*/
+
+#ifndef _WLAN_COMPAT_H
+#include "wlan_compat.h"
+#endif
+
+/*================================================================*/
+/* Constants */
+/*================================================================*/
+
+/*----------------------------------------------------------------*/
+/* p80211 data type codes used for MIB items and message */
+/* arguments. The various metadata structures provide additional */
+/* information about these types. */
+
+#define P80211_TYPE_OCTETSTR		1	/* pascal array of bytes */
+#define P80211_TYPE_DISPLAYSTR		2	/* pascal array of bytes containing ascii */
+#define P80211_TYPE_INT			4	/* UINT32 min and max limited by 32 bits */
+#define P80211_TYPE_ENUMINT		5	/* UINT32 holding a numeric
+						   code that can be mapped
+						   to a textual name */
+#define P80211_TYPE_UNKDATA		6	/* Data item containing an
+						   unknown data type */
+#define P80211_TYPE_INTARRAY		7	/* Array of 32-bit integers. */
+#define P80211_TYPE_BITARRAY		8	/* Array of bits. */
+#define P80211_TYPE_MACARRAY		9	/* Array of MAC addresses. */
+
+/*----------------------------------------------------------------*/
+/* The following constants are indexes into the Mib Category List */
+/* and the Message Category List */
+
+/* Mib Category List */
+#define P80211_MIB_CAT_DOT11SMT		1
+#define P80211_MIB_CAT_DOT11MAC		2
+#define P80211_MIB_CAT_DOT11PHY		3
+
+#define P80211SEC_DOT11SMT		P80211_MIB_CAT_DOT11SMT
+#define P80211SEC_DOT11MAC		P80211_MIB_CAT_DOT11MAC
+#define P80211SEC_DOT11PHY		P80211_MIB_CAT_DOT11PHY
+
+/* Message Category List */
+#define P80211_MSG_CAT_DOT11REQ		1
+#define P80211_MSG_CAT_DOT11IND		2
+/* #define P80211_MSG_CAT_DOT11CFM		3 (doesn't exist at this time) */
+
+#define P80211SEC_DOT11REQ		P80211_MSG_CAT_DOT11REQ
+#define P80211SEC_DOT11IND		P80211_MSG_CAT_DOT11IND
+/* #define P80211SEC_DOT11CFM		P80211_MSG_CAT_DOT11CFM  (doesn't exist at this time */
+
+
+
+/*----------------------------------------------------------------*/
+/* p80211 DID field codes that represent access type and */
+/* is_table status. */
+
+#define P80211DID_ACCESS_READ		0x10000000
+#define P80211DID_ACCESS_WRITE		0x08000000
+#define P80211DID_WRITEONLY		0x00000001
+#define P80211DID_READONLY		0x00000002
+#define P80211DID_READWRITE		0x00000003
+#define P80211DID_ISTABLE_FALSE		0
+#define P80211DID_ISTABLE_TRUE		1
+
+/*----------------------------------------------------------------*/
+/* p80211 enumeration constants.  The value to text mappings for */
+/*  these is in p80211types.c.  These defines were generated */
+/*  from the mappings. */
+
+/* error codes for lookups */
+#define P80211ENUM_BAD				0xffffffffUL
+#define P80211ENUM_BADSTR			"P80211ENUM_BAD"
+
+#define P80211ENUM_truth_false			0
+#define P80211ENUM_truth_true			1
+#define P80211ENUM_ifstate_disable		0
+#define P80211ENUM_ifstate_fwload		1
+#define P80211ENUM_ifstate_enable		2
+#define P80211ENUM_powermgmt_active		1
+#define P80211ENUM_powermgmt_powersave		2
+#define P80211ENUM_bsstype_infrastructure	1
+#define P80211ENUM_bsstype_independent		2
+#define P80211ENUM_bsstype_any			3
+#define P80211ENUM_authalg_opensystem		1
+#define P80211ENUM_authalg_sharedkey		2
+#define P80211ENUM_phytype_fhss			1
+#define P80211ENUM_phytype_dsss			2
+#define P80211ENUM_phytype_irbaseband		3
+#define P80211ENUM_temptype_commercial		1
+#define P80211ENUM_temptype_industrial		2
+#define P80211ENUM_regdomain_fcc		16
+#define P80211ENUM_regdomain_doc		32
+#define P80211ENUM_regdomain_etsi		48
+#define P80211ENUM_regdomain_spain		49
+#define P80211ENUM_regdomain_france		50
+#define P80211ENUM_regdomain_mkk		64
+#define P80211ENUM_ccamode_edonly		1
+#define P80211ENUM_ccamode_csonly		2
+#define P80211ENUM_ccamode_edandcs		4
+#define P80211ENUM_ccamode_cswithtimer		8
+#define P80211ENUM_ccamode_hrcsanded		16
+#define P80211ENUM_diversity_fixedlist		1
+#define P80211ENUM_diversity_notsupported	2
+#define P80211ENUM_diversity_dynamic		3
+#define P80211ENUM_scantype_active		1
+#define P80211ENUM_scantype_passive		2
+#define P80211ENUM_scantype_both		3
+#define P80211ENUM_resultcode_success		1
+#define P80211ENUM_resultcode_invalid_parameters	2
+#define P80211ENUM_resultcode_not_supported	3
+#define P80211ENUM_resultcode_timeout		4
+#define P80211ENUM_resultcode_too_many_req	5
+#define P80211ENUM_resultcode_refused		6
+#define P80211ENUM_resultcode_bss_already	7
+#define P80211ENUM_resultcode_invalid_access	8
+#define P80211ENUM_resultcode_invalid_mibattribute	9
+#define P80211ENUM_resultcode_cant_set_readonly_mib	10
+#define P80211ENUM_resultcode_implementation_failure	11
+#define P80211ENUM_resultcode_cant_get_writeonly_mib	12
+#define P80211ENUM_reason_unspec_reason		1
+#define P80211ENUM_reason_auth_not_valid	2
+#define P80211ENUM_reason_deauth_lv_ss		3
+#define P80211ENUM_reason_inactivity		4
+#define P80211ENUM_reason_ap_overload		5
+#define P80211ENUM_reason_class23_err		6
+#define P80211ENUM_reason_class3_err		7
+#define P80211ENUM_reason_disas_lv_ss		8
+#define P80211ENUM_reason_asoc_not_auth		9
+#define P80211ENUM_status_successful		0
+#define P80211ENUM_status_unspec_failure	1
+#define P80211ENUM_status_unsup_cap		10
+#define P80211ENUM_status_reasoc_no_asoc	11
+#define P80211ENUM_status_fail_other		12
+#define P80211ENUM_status_unspt_alg		13
+#define P80211ENUM_status_auth_seq_fail		14
+#define P80211ENUM_status_chlng_fail		15
+#define P80211ENUM_status_auth_timeout		16
+#define P80211ENUM_status_ap_full		17
+#define P80211ENUM_status_unsup_rate		18
+#define P80211ENUM_status_unsup_shortpreamble	19
+#define P80211ENUM_status_unsup_pbcc		20
+#define P80211ENUM_status_unsup_agility		21
+#define P80211ENUM_msgitem_status_data_ok		0
+#define P80211ENUM_msgitem_status_no_value		1
+#define P80211ENUM_msgitem_status_invalid_itemname	2
+#define P80211ENUM_msgitem_status_invalid_itemdata	3
+#define P80211ENUM_msgitem_status_missing_itemdata	4
+#define P80211ENUM_msgitem_status_incomplete_itemdata	5
+#define P80211ENUM_msgitem_status_invalid_msg_did	6
+#define P80211ENUM_msgitem_status_invalid_mib_did	7
+#define P80211ENUM_msgitem_status_missing_conv_func	8
+#define P80211ENUM_msgitem_status_string_too_long	9
+#define P80211ENUM_msgitem_status_data_out_of_range	10
+#define P80211ENUM_msgitem_status_string_too_short	11
+#define P80211ENUM_msgitem_status_missing_valid_func	12
+#define P80211ENUM_msgitem_status_unknown		13
+#define P80211ENUM_msgitem_status_invalid_did		14
+#define P80211ENUM_msgitem_status_missing_print_func	15
+
+#define P80211ENUM_lnxroam_reason_unknown        0
+#define P80211ENUM_lnxroam_reason_beacon         1
+#define P80211ENUM_lnxroam_reason_signal         2
+#define P80211ENUM_lnxroam_reason_txretry        3
+#define P80211ENUM_lnxroam_reason_notjoined      4
+
+#define P80211ENUM_p2preamble_long               0
+#define P80211ENUM_p2preamble_short              2
+#define P80211ENUM_p2preamble_mixed              3
+
+/*----------------------------------------------------------------*/
+/* p80211 max length constants for the different pascal strings. */
+
+#define MAXLEN_PSTR6		(6)	/* pascal array of 6 bytes */
+#define MAXLEN_PSTR14		(14)	/* pascal array of 14 bytes */
+#define MAXLEN_PSTR32		(32)	/* pascal array of 32 bytes */
+#define MAXLEN_PSTR255		(255)	/* pascal array of 255 bytes */
+#define MAXLEN_MIBATTRIBUTE	(392)	/* maximum mibattribute */
+					/* where the size of the DATA itself */
+					/* is a DID-LEN-DATA triple */
+					/* with a max size of 4+4+384 */
+
+#define P80211_SET_INT(item, value) do { \
+	(item).data   = (value); \
+	(item).status = P80211ENUM_msgitem_status_data_ok; \
+	} while(0)
+/*----------------------------------------------------------------*/
+/* string constants */
+
+#define NOT_SET			"NOT_SET"
+#define NOT_SUPPORTED		"NOT_SUPPORTED"
+#define UNKNOWN_DATA		"UNKNOWN_DATA"
+
+
+/*--------------------------------------------------------------------*/
+/*  Metadata flags  */
+
+/* MSM: Do these belong in p80211meta.h? I'm not sure. */
+
+#define ISREQUIRED		(0x80000000UL)
+#define ISREQUEST		(0x40000000UL)
+#define ISCONFIRM		(0x20000000UL)
+
+
+/*================================================================*/
+/* Macros */
+
+/*--------------------------------------------------------------------*/
+/* The following macros are used to manipulate the 'flags' field in   */
+/*  the metadata.  These are only used when the metadata is for       */
+/*  command arguments to determine if the data item is required, and  */
+/*  whether the metadata item is for a request command, confirm       */
+/*  command or both.                                                  */
+/*--------------------------------------------------------------------*/
+/* MSM: Do these belong in p80211meta.h?  I'm not sure */
+
+#define P80211ITEM_SETFLAGS(q, r, c)	( q | r | c )
+
+#define P80211ITEM_ISREQUIRED(flags)	(((UINT32)(flags & ISREQUIRED)) >> 31 )
+#define P80211ITEM_ISREQUEST(flags)	(((UINT32)(flags & ISREQUEST)) >> 30 )
+#define P80211ITEM_ISCONFIRM(flags)	(((UINT32)(flags & ISCONFIRM)) >> 29 )
+
+/*----------------------------------------------------------------*/
+/* The following macro creates a name for an enum */
+
+#define MKENUMNAME(name) p80211enum_ ## name
+
+/*----------------------------------------------------------------
+* The following constants and macros are used to construct and
+* deconstruct the Data ID codes.  The coding is as follows:
+*
+*     ...rwtnnnnnnnniiiiiiggggggssssss      s - Section
+*                                           g - Group
+*                                           i - Item
+*                                           n - Index
+*                                           t - Table flag
+*                                           w - Write flag
+*                                           r - Read flag
+*                                           . - Unused
+*/
+
+#define P80211DID_INVALID		0xffffffffUL
+#define P80211DID_VALID			0x00000000UL
+
+#define P80211DID_LSB_SECTION		(0)
+#define P80211DID_LSB_GROUP		(6)
+#define P80211DID_LSB_ITEM		(12)
+#define P80211DID_LSB_INDEX		(18)
+#define P80211DID_LSB_ISTABLE		(26)
+#define P80211DID_LSB_ACCESS 		(27)
+
+#define P80211DID_MASK_SECTION		(0x0000003fUL)
+#define P80211DID_MASK_GROUP		(0x0000003fUL)
+#define P80211DID_MASK_ITEM		(0x0000003fUL)
+#define P80211DID_MASK_INDEX		(0x000000ffUL)
+#define P80211DID_MASK_ISTABLE		(0x00000001UL)
+#define P80211DID_MASK_ACCESS 		(0x00000003UL)
+
+
+#define P80211DID_MK(a,m,l)	((((UINT32)(a)) & (m)) << (l))
+
+#define P80211DID_MKSECTION(a)	P80211DID_MK(a, \
+					P80211DID_MASK_SECTION, \
+					P80211DID_LSB_SECTION )
+#define P80211DID_MKGROUP(a)	P80211DID_MK(a, \
+					P80211DID_MASK_GROUP, \
+					P80211DID_LSB_GROUP )
+#define P80211DID_MKITEM(a)	P80211DID_MK(a, \
+					P80211DID_MASK_ITEM, \
+					P80211DID_LSB_ITEM )
+#define P80211DID_MKINDEX(a)	P80211DID_MK(a, \
+					P80211DID_MASK_INDEX, \
+					P80211DID_LSB_INDEX )
+#define P80211DID_MKISTABLE(a)	P80211DID_MK(a, \
+					P80211DID_MASK_ISTABLE, \
+					P80211DID_LSB_ISTABLE )
+
+
+#define P80211DID_MKID(s,g,i,n,t,a)	(P80211DID_MKSECTION(s) | \
+						P80211DID_MKGROUP(g) | \
+				 		P80211DID_MKITEM(i) | \
+				 		P80211DID_MKINDEX(n) | \
+						P80211DID_MKISTABLE(t) | \
+						(a) )
+
+
+#define P80211DID_GET(a,m,l)	((((UINT32)(a)) >> (l)) & (m))
+
+#define P80211DID_SECTION(a)	P80211DID_GET(a, \
+					P80211DID_MASK_SECTION, \
+					P80211DID_LSB_SECTION)
+#define P80211DID_GROUP(a)	P80211DID_GET(a, \
+					P80211DID_MASK_GROUP, \
+					P80211DID_LSB_GROUP)
+#define P80211DID_ITEM(a)	P80211DID_GET(a, \
+					P80211DID_MASK_ITEM, \
+					P80211DID_LSB_ITEM)
+#define P80211DID_INDEX(a)	P80211DID_GET(a, \
+					P80211DID_MASK_INDEX, \
+					P80211DID_LSB_INDEX)
+#define P80211DID_ISTABLE(a)	P80211DID_GET(a, \
+					P80211DID_MASK_ISTABLE, \
+					P80211DID_LSB_ISTABLE)
+#define P80211DID_ACCESS(a)	P80211DID_GET(a, \
+					P80211DID_MASK_ACCESS, \
+					P80211DID_LSB_ACCESS)
+
+/*================================================================*/
+/* Types */
+
+/*----------------------------------------------------------------*/
+/* The following structure types are used for the represenation */
+/*  of ENUMINT type metadata. */
+
+typedef struct p80211enumpair
+{
+	UINT32			val;
+	char			*name;
+} p80211enumpair_t;
+
+typedef struct p80211enum
+{
+	INT			nitems;
+	p80211enumpair_t	*list;
+} p80211enum_t;
+
+/*----------------------------------------------------------------*/
+/* The following structure types are used to store data items in */
+/*  messages. */
+
+/* Template pascal string */
+typedef struct p80211pstr
+{
+	UINT8		len;
+} __WLAN_ATTRIB_PACK__ p80211pstr_t;
+
+typedef struct p80211pstrd
+{
+	UINT8		len;
+	UINT8		data[0];
+} __WLAN_ATTRIB_PACK__ p80211pstrd_t;
+
+/* Maximum pascal string */
+typedef struct p80211pstr255
+{
+	UINT8		len;
+	UINT8		data[MAXLEN_PSTR255];
+} __WLAN_ATTRIB_PACK__ p80211pstr255_t;
+
+/* pascal string for macaddress and bssid */
+typedef struct p80211pstr6
+{
+	UINT8		len;
+	UINT8		data[MAXLEN_PSTR6];
+} __WLAN_ATTRIB_PACK__ p80211pstr6_t;
+
+/* pascal string for channel list */
+typedef struct p80211pstr14
+{
+	UINT8		len;
+	UINT8		data[MAXLEN_PSTR14];
+} __WLAN_ATTRIB_PACK__ p80211pstr14_t;
+
+/* pascal string for ssid */
+typedef struct p80211pstr32
+{
+	UINT8		len;
+	UINT8		data[MAXLEN_PSTR32];
+} __WLAN_ATTRIB_PACK__ p80211pstr32_t;
+
+/* MAC address array */
+typedef struct p80211macarray
+{
+	UINT32		cnt;
+	UINT8		data[1][MAXLEN_PSTR6];
+} __WLAN_ATTRIB_PACK__ p80211macarray_t;
+
+/* prototype template */
+typedef struct p80211item
+{
+	UINT32		did;
+	UINT16		status;
+	UINT16		len;
+} __WLAN_ATTRIB_PACK__ p80211item_t;
+
+/* prototype template w/ data item */
+typedef struct p80211itemd
+{
+	UINT32		did;
+	UINT16		status;
+	UINT16		len;
+	UINT8		data[0];
+} __WLAN_ATTRIB_PACK__ p80211itemd_t;
+
+/* message data item for INT, BOUNDEDINT, ENUMINT */
+typedef struct p80211item_uint32
+{
+	UINT32		did;
+	UINT16		status;
+	UINT16		len;
+	UINT32		data;
+} __WLAN_ATTRIB_PACK__ p80211item_uint32_t;
+
+/* message data item for OCTETSTR, DISPLAYSTR */
+typedef struct p80211item_pstr6
+{
+	UINT32		did;
+	UINT16		status;
+	UINT16		len;
+	p80211pstr6_t	data;
+} __WLAN_ATTRIB_PACK__ p80211item_pstr6_t;
+
+/* message data item for OCTETSTR, DISPLAYSTR */
+typedef struct p80211item_pstr14
+{
+	UINT32			did;
+	UINT16			status;
+	UINT16			len;
+	p80211pstr14_t		data;
+} __WLAN_ATTRIB_PACK__ p80211item_pstr14_t;
+
+/* message data item for OCTETSTR, DISPLAYSTR */
+typedef struct p80211item_pstr32
+{
+	UINT32			did;
+	UINT16			status;
+	UINT16			len;
+	p80211pstr32_t		data;
+} __WLAN_ATTRIB_PACK__ p80211item_pstr32_t;
+
+/* message data item for OCTETSTR, DISPLAYSTR */
+typedef struct p80211item_pstr255
+{
+	UINT32			did;
+	UINT16			status;
+	UINT16			len;
+	p80211pstr255_t		data;
+} __WLAN_ATTRIB_PACK__ p80211item_pstr255_t;
+
+/* message data item for UNK 392, namely mib items */
+typedef struct  p80211item_unk392
+{
+	UINT32		did;
+	UINT16		status;
+	UINT16		len;
+	UINT8		data[MAXLEN_MIBATTRIBUTE];
+} __WLAN_ATTRIB_PACK__ p80211item_unk392_t;
+
+/* message data item for UNK 1025, namely p2 pdas */
+typedef struct  p80211item_unk1024
+{
+	UINT32		did;
+	UINT16		status;
+	UINT16		len;
+	UINT8		data[1024];
+}  __WLAN_ATTRIB_PACK__ p80211item_unk1024_t;
+
+/* message data item for UNK 4096, namely p2 download chunks */
+typedef struct  p80211item_unk4096
+{
+	UINT32		did;
+	UINT16		status;
+	UINT16		len;
+	UINT8		data[4096];
+}  __WLAN_ATTRIB_PACK__ p80211item_unk4096_t;
+
+struct catlistitem;
+
+/*----------------------------------------------------------------*/
+/* The following structure type is used to represent all of the */
+/*  metadata items.  Some components may choose to use more, */
+/*  less or different metadata items. */
+
+typedef void (*p80211_totext_t)( struct catlistitem *, UINT32 did, UINT8* itembuf, char *textbuf);
+typedef void (*p80211_fromtext_t)( struct catlistitem *, UINT32 did, UINT8* itembuf, char *textbuf);
+typedef UINT32 (*p80211_valid_t)( struct catlistitem *, UINT32 did, UINT8* itembuf);
+
+
+/*================================================================*/
+/* Extern Declarations */
+
+/*----------------------------------------------------------------*/
+/* Enumeration Lists */
+/*  The following are the external declarations */
+/*  for all enumerations  */
+
+extern p80211enum_t MKENUMNAME(truth);
+extern p80211enum_t MKENUMNAME(ifstate);
+extern p80211enum_t MKENUMNAME(powermgmt);
+extern p80211enum_t MKENUMNAME(bsstype);
+extern p80211enum_t MKENUMNAME(authalg);
+extern p80211enum_t MKENUMNAME(phytype);
+extern p80211enum_t MKENUMNAME(temptype);
+extern p80211enum_t MKENUMNAME(regdomain);
+extern p80211enum_t MKENUMNAME(ccamode);
+extern p80211enum_t MKENUMNAME(diversity);
+extern p80211enum_t MKENUMNAME(scantype);
+extern p80211enum_t MKENUMNAME(resultcode);
+extern p80211enum_t MKENUMNAME(reason);
+extern p80211enum_t MKENUMNAME(status);
+extern p80211enum_t MKENUMNAME(msgcode);
+extern p80211enum_t MKENUMNAME(msgitem_status);
+
+extern p80211enum_t MKENUMNAME(lnxroam_reason);
+
+extern p80211enum_t MKENUMNAME(p2preamble);
+
+/*================================================================*/
+/* Function Declarations */
+
+/*----------------------------------------------------------------*/
+/* The following declare some utility functions for use with the */
+/*  p80211enum_t type. */
+
+UINT32 p80211enum_text2int(p80211enum_t *ep, char *text);
+UINT32 p80211enum_int2text(p80211enum_t *ep, UINT32 val, char *text);
+void p80211_error2text(int err_code, char *err_str);
+
+/*----------------------------------------------------------------*/
+/* The following declare some utility functions for use with the */
+/*  p80211item_t and p80211meta_t types. */
+
+/*----------------------------------------------------------------*/
+/* The following declare functions that perform validation and    */
+/* text to binary conversions based on the metadata for interface */
+/* and MIB data items.                                            */
+/*----------------------------------------------------------------*/
+
+/*-- DISPLAYSTR ------------------------------------------------------*/
+/* pstr ==> cstr */
+void p80211_totext_displaystr( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+
+/* cstr ==> pstr */
+void p80211_fromtext_displaystr( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+
+/* function that checks validity of a displaystr binary value */
+UINT32 p80211_isvalid_displaystr( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf );
+
+/*-- OCTETSTR --------------------------------------------------------*/
+/* pstr ==> "xx:xx:...." */
+void p80211_totext_octetstr( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+
+/* "xx:xx:...." ==> pstr */
+void p80211_fromtext_octetstr( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+
+/* function that checks validity of an octetstr binary value */
+UINT32 p80211_isvalid_octetstr( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf );
+
+/*-- INT -------------------------------------------------------------*/
+/* UINT32 ==> %d */
+void p80211_totext_int( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+
+/* %d ==> UINT32 */
+void p80211_fromtext_int( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+
+/* function that checks validity of an int's binary value (always successful) */
+UINT32 p80211_isvalid_int( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf );
+
+/*-- ENUMINT ---------------------------------------------------------*/
+/* UINT32 ==> <valuename> */
+void p80211_totext_enumint( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+
+/* <valuename> ==> UINT32 */
+void p80211_fromtext_enumint( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+
+/* function that checks validity of an enum's binary value */
+UINT32 p80211_isvalid_enumint( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf );
+
+/*-- INTARRAY --------------------------------------------------------*/
+/* UINT32[] => %d,%d,%d,... */
+void p80211_totext_intarray( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+
+/* %d,%d,%d,... ==> UINT32[] */
+void p80211_fromtext_intarray( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+
+/* function that checks validity of an integer array's value */
+UINT32 p80211_isvalid_intarray( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf );
+
+/*-- BITARRAY --------------------------------------------------------*/
+/* UINT32 ==> %d,%d,%d,... */
+void p80211_totext_bitarray( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+
+/* %d,%d,%d,... ==> UINT32 */
+void p80211_fromtext_bitarray( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+
+/* function that checks validity of a bit array's value */
+UINT32 p80211_isvalid_bitarray( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf );
+
+/*-- MACARRAY --------------------------------------------------------*/
+void p80211_totext_macarray( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+
+void p80211_fromtext_macarray( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+
+/* function that checks validity of a MAC address array's value */
+UINT32 p80211_isvalid_macarray( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf );
+
+/*-- MIBATTRIUBTE ------------------------------------------------------*/
+/* <mibvalue> ==> <textual representation identified in MIB metadata> */
+void p80211_totext_getmibattribute( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+void p80211_totext_setmibattribute( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+
+
+/* <textual representation identified in MIB metadata> ==> <mibvalue> */
+void p80211_fromtext_getmibattribute( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+void p80211_fromtext_setmibattribute( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf, char *textbuf );
+
+/* function that checks validity of a mibitem's binary value */
+UINT32 p80211_isvalid_getmibattribute( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf );
+UINT32 p80211_isvalid_setmibattribute( struct catlistitem *metalist, UINT32 did, UINT8 *itembuf );
+
+#endif /* _P80211TYPES_H */
+
diff --git a/drivers/staging/wlan-ng/p80211wep.c b/drivers/staging/wlan-ng/p80211wep.c
new file mode 100644
index 0000000..53fe298
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211wep.c
@@ -0,0 +1,317 @@
+/* src/p80211/p80211wep.c
+*
+* WEP encode/decode for P80211.
+*
+* Copyright (C) 2002 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*/
+
+/*================================================================*/
+/* System Includes */
+
+
+#include <linux/version.h>
+
+#include <linux/netdevice.h>
+#include <linux/wireless.h>
+#include <linux/slab.h>
+#include <linux/random.h>
+
+#include "version.h"
+#include "wlan_compat.h"
+
+// #define WEP_DEBUG
+
+/*================================================================*/
+/* Project Includes */
+
+#include "version.h"
+#include "p80211hdr.h"
+#include "p80211types.h"
+#include "p80211msg.h"
+#include "p80211conv.h"
+#include "p80211netdev.h"
+
+/*================================================================*/
+/* Local Constants */
+
+#define SSWAP(a,b) {UINT8 tmp = s[a]; s[a] = s[b]; s[b] = tmp;}
+#define WEP_KEY(x)       (((x) & 0xC0) >> 6)
+
+/*================================================================*/
+/* Local Macros */
+
+
+/*================================================================*/
+/* Local Types */
+
+
+/*================================================================*/
+/* Local Static Definitions */
+
+static const UINT32 wep_crc32_table[256] = {
+        0x00000000L, 0x77073096L, 0xee0e612cL, 0x990951baL, 0x076dc419L,
+        0x706af48fL, 0xe963a535L, 0x9e6495a3L, 0x0edb8832L, 0x79dcb8a4L,
+        0xe0d5e91eL, 0x97d2d988L, 0x09b64c2bL, 0x7eb17cbdL, 0xe7b82d07L,
+        0x90bf1d91L, 0x1db71064L, 0x6ab020f2L, 0xf3b97148L, 0x84be41deL,
+        0x1adad47dL, 0x6ddde4ebL, 0xf4d4b551L, 0x83d385c7L, 0x136c9856L,
+        0x646ba8c0L, 0xfd62f97aL, 0x8a65c9ecL, 0x14015c4fL, 0x63066cd9L,
+        0xfa0f3d63L, 0x8d080df5L, 0x3b6e20c8L, 0x4c69105eL, 0xd56041e4L,
+        0xa2677172L, 0x3c03e4d1L, 0x4b04d447L, 0xd20d85fdL, 0xa50ab56bL,
+        0x35b5a8faL, 0x42b2986cL, 0xdbbbc9d6L, 0xacbcf940L, 0x32d86ce3L,
+        0x45df5c75L, 0xdcd60dcfL, 0xabd13d59L, 0x26d930acL, 0x51de003aL,
+        0xc8d75180L, 0xbfd06116L, 0x21b4f4b5L, 0x56b3c423L, 0xcfba9599L,
+        0xb8bda50fL, 0x2802b89eL, 0x5f058808L, 0xc60cd9b2L, 0xb10be924L,
+        0x2f6f7c87L, 0x58684c11L, 0xc1611dabL, 0xb6662d3dL, 0x76dc4190L,
+        0x01db7106L, 0x98d220bcL, 0xefd5102aL, 0x71b18589L, 0x06b6b51fL,
+        0x9fbfe4a5L, 0xe8b8d433L, 0x7807c9a2L, 0x0f00f934L, 0x9609a88eL,
+        0xe10e9818L, 0x7f6a0dbbL, 0x086d3d2dL, 0x91646c97L, 0xe6635c01L,
+        0x6b6b51f4L, 0x1c6c6162L, 0x856530d8L, 0xf262004eL, 0x6c0695edL,
+        0x1b01a57bL, 0x8208f4c1L, 0xf50fc457L, 0x65b0d9c6L, 0x12b7e950L,
+        0x8bbeb8eaL, 0xfcb9887cL, 0x62dd1ddfL, 0x15da2d49L, 0x8cd37cf3L,
+        0xfbd44c65L, 0x4db26158L, 0x3ab551ceL, 0xa3bc0074L, 0xd4bb30e2L,
+        0x4adfa541L, 0x3dd895d7L, 0xa4d1c46dL, 0xd3d6f4fbL, 0x4369e96aL,
+        0x346ed9fcL, 0xad678846L, 0xda60b8d0L, 0x44042d73L, 0x33031de5L,
+        0xaa0a4c5fL, 0xdd0d7cc9L, 0x5005713cL, 0x270241aaL, 0xbe0b1010L,
+        0xc90c2086L, 0x5768b525L, 0x206f85b3L, 0xb966d409L, 0xce61e49fL,
+        0x5edef90eL, 0x29d9c998L, 0xb0d09822L, 0xc7d7a8b4L, 0x59b33d17L,
+        0x2eb40d81L, 0xb7bd5c3bL, 0xc0ba6cadL, 0xedb88320L, 0x9abfb3b6L,
+        0x03b6e20cL, 0x74b1d29aL, 0xead54739L, 0x9dd277afL, 0x04db2615L,
+        0x73dc1683L, 0xe3630b12L, 0x94643b84L, 0x0d6d6a3eL, 0x7a6a5aa8L,
+        0xe40ecf0bL, 0x9309ff9dL, 0x0a00ae27L, 0x7d079eb1L, 0xf00f9344L,
+        0x8708a3d2L, 0x1e01f268L, 0x6906c2feL, 0xf762575dL, 0x806567cbL,
+        0x196c3671L, 0x6e6b06e7L, 0xfed41b76L, 0x89d32be0L, 0x10da7a5aL,
+        0x67dd4accL, 0xf9b9df6fL, 0x8ebeeff9L, 0x17b7be43L, 0x60b08ed5L,
+        0xd6d6a3e8L, 0xa1d1937eL, 0x38d8c2c4L, 0x4fdff252L, 0xd1bb67f1L,
+        0xa6bc5767L, 0x3fb506ddL, 0x48b2364bL, 0xd80d2bdaL, 0xaf0a1b4cL,
+        0x36034af6L, 0x41047a60L, 0xdf60efc3L, 0xa867df55L, 0x316e8eefL,
+        0x4669be79L, 0xcb61b38cL, 0xbc66831aL, 0x256fd2a0L, 0x5268e236L,
+        0xcc0c7795L, 0xbb0b4703L, 0x220216b9L, 0x5505262fL, 0xc5ba3bbeL,
+        0xb2bd0b28L, 0x2bb45a92L, 0x5cb36a04L, 0xc2d7ffa7L, 0xb5d0cf31L,
+        0x2cd99e8bL, 0x5bdeae1dL, 0x9b64c2b0L, 0xec63f226L, 0x756aa39cL,
+        0x026d930aL, 0x9c0906a9L, 0xeb0e363fL, 0x72076785L, 0x05005713L,
+        0x95bf4a82L, 0xe2b87a14L, 0x7bb12baeL, 0x0cb61b38L, 0x92d28e9bL,
+        0xe5d5be0dL, 0x7cdcefb7L, 0x0bdbdf21L, 0x86d3d2d4L, 0xf1d4e242L,
+        0x68ddb3f8L, 0x1fda836eL, 0x81be16cdL, 0xf6b9265bL, 0x6fb077e1L,
+        0x18b74777L, 0x88085ae6L, 0xff0f6a70L, 0x66063bcaL, 0x11010b5cL,
+        0x8f659effL, 0xf862ae69L, 0x616bffd3L, 0x166ccf45L, 0xa00ae278L,
+        0xd70dd2eeL, 0x4e048354L, 0x3903b3c2L, 0xa7672661L, 0xd06016f7L,
+        0x4969474dL, 0x3e6e77dbL, 0xaed16a4aL, 0xd9d65adcL, 0x40df0b66L,
+        0x37d83bf0L, 0xa9bcae53L, 0xdebb9ec5L, 0x47b2cf7fL, 0x30b5ffe9L,
+        0xbdbdf21cL, 0xcabac28aL, 0x53b39330L, 0x24b4a3a6L, 0xbad03605L,
+        0xcdd70693L, 0x54de5729L, 0x23d967bfL, 0xb3667a2eL, 0xc4614ab8L,
+        0x5d681b02L, 0x2a6f2b94L, 0xb40bbe37L, 0xc30c8ea1L, 0x5a05df1bL,
+        0x2d02ef8dL
+};
+
+/*================================================================*/
+/* Local Function Declarations */
+
+/*================================================================*/
+/* Function Definitions */
+
+/* keylen in bytes! */
+
+int wep_change_key(wlandevice_t *wlandev, int keynum, UINT8* key, int keylen)
+{
+	if (keylen < 0)  return -1;
+	if (keylen >= MAX_KEYLEN) return -1;
+	if (key == NULL) return -1;
+	if (keynum < 0)  return -1;
+	if (keynum >= NUM_WEPKEYS) return -1;
+
+
+#ifdef WEP_DEBUG
+	printk(KERN_DEBUG "WEP key %d len %d = %02x:%02x:%02x:%02x:%02x:%02x:%02x:%02x\n", keynum, keylen, key[0], key[1], key[2], key[3], key[4], key[5], key[6], key[7]);
+#endif
+
+	wlandev->wep_keylens[keynum] = keylen;
+	memcpy(wlandev->wep_keys[keynum], key, keylen);
+
+	return 0;
+}
+
+/*
+  4-byte IV at start of buffer, 4-byte ICV at end of buffer.
+  if successful, buf start is payload begin, length -= 8;
+ */
+int wep_decrypt(wlandevice_t *wlandev, UINT8 *buf, UINT32 len, int key_override, UINT8 *iv, UINT8 *icv)
+{
+	UINT32 i, j, k, crc, keylen;
+	UINT8 s[256], key[64], c_crc[4];
+	UINT8 keyidx;
+
+	/* Needs to be at least 8 bytes of payload */
+	if (len <= 0) return -1;
+
+	/* initialize the first bytes of the key from the IV */
+	key[0] = iv[0];
+	key[1] = iv[1];
+	key[2] = iv[2];
+	keyidx = WEP_KEY(iv[3]);
+
+	if (key_override >= 0)
+		keyidx = key_override;
+
+	if (keyidx >= NUM_WEPKEYS) return -2;
+
+	keylen = wlandev->wep_keylens[keyidx];
+
+	if (keylen == 0) return -3;
+
+	/* copy the rest of the key over from the designated key */
+	memcpy(key+3, wlandev->wep_keys[keyidx], keylen);
+
+	keylen+=3;  /* add in IV bytes */
+
+#ifdef WEP_DEBUG
+	printk(KERN_DEBUG "D %d: %02x %02x %02x (%d %d) %02x:%02x:%02x:%02x:%02x\n", len, key[0], key[1], key[2], keyidx, keylen, key[3], key[4], key[5], key[6], key[7]);
+#endif
+
+	/* set up the RC4 state */
+	for (i = 0; i < 256; i++)
+		s[i] = i;
+	j = 0;
+	for (i = 0; i < 256; i++) {
+		j = (j + s[i] + key[i % keylen]) & 0xff;
+		SSWAP(i,j);
+	}
+
+	/* Apply the RC4 to the data, update the CRC32 */
+	crc = ~0;
+	i = j = 0;
+	for (k = 0; k < len; k++) {
+		i = (i+1) & 0xff;
+		j = (j+s[i]) & 0xff;
+		SSWAP(i,j);
+		buf[k] ^= s[(s[i] + s[j]) & 0xff];
+		crc = wep_crc32_table[(crc ^ buf[k]) & 0xff] ^ (crc >> 8);
+	}
+	crc = ~crc;
+
+	/* now let's check the crc */
+	c_crc[0] = crc;
+	c_crc[1] = crc >> 8;
+	c_crc[2] = crc >> 16;
+	c_crc[3] = crc >> 24;
+
+	for (k = 0; k < 4; k++) {
+		i = (i + 1) & 0xff;
+		j = (j+s[i]) & 0xff;
+		SSWAP(i,j);
+		if ((c_crc[k] ^ s[(s[i] + s[j]) & 0xff]) != icv[k])
+			return -(4 | (k << 4)) ; /* ICV mismatch */
+	}
+
+	return 0;
+}
+
+/* encrypts in-place. */
+int wep_encrypt(wlandevice_t *wlandev, UINT8 *buf, UINT8 *dst, UINT32 len, int keynum, UINT8 *iv, UINT8 *icv)
+{
+	UINT32 i, j, k, crc, keylen;
+	UINT8 s[256], key[64];
+
+	/* no point in WEPping an empty frame */
+	if (len <= 0) return -1;
+
+	/* we need to have a real key.. */
+	if (keynum >= NUM_WEPKEYS) return -2;
+	keylen = wlandev->wep_keylens[keynum];
+	if (keylen <= 0) return -3;
+
+	/* use a random IV.  And skip known weak ones. */
+	get_random_bytes(iv, 3);
+	while ((iv[1] == 0xff) && (iv[0] >= 3) && (iv[0] < keylen))
+		get_random_bytes(iv, 3);
+
+	iv[3] = (keynum & 0x03) << 6;
+
+	key[0] = iv[0];
+	key[1] = iv[1];
+	key[2] = iv[2];
+
+	/* copy the rest of the key over from the designated key */
+	memcpy(key+3, wlandev->wep_keys[keynum], keylen);
+
+	keylen+=3;  /* add in IV bytes */
+
+#ifdef WEP_DEBUG
+	printk(KERN_DEBUG "E %d (%d/%d %d) %02x %02x %02x %02x:%02x:%02x:%02x:%02x\n", len,  iv[3], keynum, keylen, key[0], key[1], key[2], key[3], key[4], key[5], key[6], key[7]);
+#endif
+
+	/* set up the RC4 state */
+	for (i = 0; i < 256; i++)
+		s[i] = i;
+	j = 0;
+	for (i = 0; i < 256; i++) {
+		j = (j + s[i] + key[i % keylen]) & 0xff;
+		SSWAP(i,j);
+	}
+
+	/* Update CRC32 then apply RC4 to the data */
+	crc = ~0;
+	i = j = 0;
+	for (k = 0; k < len; k++) {
+		crc = wep_crc32_table[(crc ^ buf[k]) & 0xff] ^ (crc >> 8);
+		i = (i+1) & 0xff;
+		j = (j+s[i]) & 0xff;
+		SSWAP(i,j);
+		dst[k] = buf[k] ^ s[(s[i] + s[j]) & 0xff];
+	}
+	crc = ~crc;
+
+	/* now let's encrypt the crc */
+	icv[0] = crc;
+	icv[1] = crc >> 8;
+	icv[2] = crc >> 16;
+	icv[3] = crc >> 24;
+
+	for (k = 0; k < 4; k++) {
+		i = (i + 1) & 0xff;
+		j = (j+s[i]) & 0xff;
+		SSWAP(i,j);
+		icv[k] ^= s[(s[i] + s[j]) & 0xff];
+	}
+
+	return 0;
+}
diff --git a/drivers/staging/wlan-ng/p80211wext.c b/drivers/staging/wlan-ng/p80211wext.c
new file mode 100644
index 0000000..906ba43
--- /dev/null
+++ b/drivers/staging/wlan-ng/p80211wext.c
@@ -0,0 +1,2048 @@
+/* src/p80211/p80211wext.c
+*
+* Glue code to make linux-wlan-ng a happy wireless extension camper.
+*
+* original author:  Reyk Floeter <reyk@synack.de>
+* Completely re-written by Solomon Peachy <solomon@linux-wlan.com>
+*
+* Copyright (C) 2002 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*/
+
+/*================================================================*/
+/* System Includes */
+
+
+#include <linux/version.h>
+
+#include <linux/kernel.h>
+#include <linux/sched.h>
+#include <linux/types.h>
+#include <linux/slab.h>
+#include <linux/netdevice.h>
+#include <linux/etherdevice.h>
+#include <linux/wireless.h>
+#if WIRELESS_EXT > 12
+#include <net/iw_handler.h>
+#endif
+#include <linux/if_arp.h>
+#include <asm/bitops.h>
+#include <asm/uaccess.h>
+#include <asm/byteorder.h>
+
+/*================================================================*/
+/* Project Includes */
+
+#include "version.h"
+#include "wlan_compat.h"
+
+#include "p80211types.h"
+#include "p80211hdr.h"
+#include "p80211conv.h"
+#include "p80211mgmt.h"
+#include "p80211msg.h"
+#include "p80211metastruct.h"
+#include "p80211metadef.h"
+#include "p80211netdev.h"
+#include "p80211ioctl.h"
+#include "p80211req.h"
+
+static int p80211wext_giwrate(netdevice_t *dev,
+			      struct iw_request_info *info,
+			      struct iw_param *rrq, char *extra);
+static int p80211wext_giwessid(netdevice_t *dev,
+			       struct iw_request_info *info,
+			       struct iw_point *data, char *essid);
+/* compatibility to wireless extensions */
+#ifdef WIRELESS_EXT
+
+static UINT8 p80211_mhz_to_channel(UINT16 mhz)
+{
+	if (mhz >= 5000) {
+		return ((mhz - 5000) / 5);
+	}
+
+	if (mhz == 2482)
+		return 14;
+
+	if (mhz >= 2407) {
+		return ((mhz - 2407) / 5);
+	}
+
+	return 0;
+}
+
+static UINT16 p80211_channel_to_mhz(UINT8 ch, int dot11a)
+{
+
+	if (ch == 0)
+		return 0;
+	if (ch > 200)
+		return 0;
+
+	/* 5G */
+
+	if (dot11a) {
+		return (5000 + (5 * ch));
+	}
+
+	/* 2.4G */
+
+	if (ch == 14)
+		return 2484;
+
+	if ((ch < 14) && (ch > 0)) {
+		return (2407 + (5 * ch));
+	}
+
+	return 0;
+}
+
+/* taken from orinoco.c ;-) */
+static const long p80211wext_channel_freq[] = {
+	2412, 2417, 2422, 2427, 2432, 2437, 2442,
+	2447, 2452, 2457, 2462, 2467, 2472, 2484
+};
+#define NUM_CHANNELS (sizeof(p80211wext_channel_freq) / sizeof(p80211wext_channel_freq[0]))
+
+/* steal a spare bit to store the shared/opensystems state. should default to open if not set */
+#define HOSTWEP_SHAREDKEY BIT3
+
+
+/** function declarations =============== */
+
+static int qual_as_percent(int snr ) {
+  if ( snr <= 0 )
+    return 0;
+  if ( snr <= 40 )
+    return snr*5/2;
+  return 100;
+}
+
+
+
+
+static int p80211wext_dorequest(wlandevice_t *wlandev, UINT32 did, UINT32 data)
+{
+	p80211msg_dot11req_mibset_t	msg;
+	p80211item_uint32_t		mibitem;
+	int	result;
+
+	DBFENTER;
+
+	msg.msgcode = DIDmsg_dot11req_mibset;
+	mibitem.did = did;
+	mibitem.data = data;
+	memcpy(&msg.mibattribute.data, &mibitem, sizeof(mibitem));
+	result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+	DBFEXIT;
+	return result;
+}
+
+static int p80211wext_autojoin(wlandevice_t *wlandev)
+{
+	p80211msg_lnxreq_autojoin_t     msg;
+	struct iw_point			data;
+	char ssid[IW_ESSID_MAX_SIZE];
+
+	int result;
+	int err = 0;
+
+	DBFENTER;
+
+	/* Get ESSID */
+	result = p80211wext_giwessid(wlandev->netdev, NULL, &data, ssid);
+
+	if (result) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+	if ( wlandev->hostwep & HOSTWEP_SHAREDKEY )
+	  msg.authtype.data = P80211ENUM_authalg_sharedkey;
+	else
+	  msg.authtype.data = P80211ENUM_authalg_opensystem;
+
+	msg.msgcode = DIDmsg_lnxreq_autojoin;
+
+	/* Trim the last '\0' to fit the SSID format */
+
+	if (data.length && ssid[data.length-1] == '\0') {
+		data.length = data.length - 1;
+	}
+
+	memcpy(msg.ssid.data.data, ssid, data.length);
+	msg.ssid.data.len = data.length;
+
+	result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+	if (result) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+exit:
+
+	DBFEXIT;
+	return err;
+
+}
+
+/* called by /proc/net/wireless */
+struct iw_statistics* p80211wext_get_wireless_stats (netdevice_t *dev)
+{
+	p80211msg_lnxreq_commsquality_t  quality;
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	struct iw_statistics* wstats = &wlandev->wstats;
+	int retval;
+
+	DBFENTER;
+	/* Check */
+	if ( (wlandev == NULL) || (wlandev->msdstate != WLAN_MSD_RUNNING) )
+		return NULL;
+
+	/* XXX Only valid in station mode */
+	wstats->status = 0;
+
+	/* build request message */
+	quality.msgcode = DIDmsg_lnxreq_commsquality;
+	quality.dbm.data = P80211ENUM_truth_true;
+	quality.dbm.status = P80211ENUM_msgitem_status_data_ok;
+
+	/* send message to nsd */
+	if ( wlandev->mlmerequest == NULL )
+		return NULL;
+
+	retval = wlandev->mlmerequest(wlandev, (p80211msg_t*) &quality);
+
+	wstats->qual.qual = qual_as_percent(quality.link.data);    /* overall link quality */
+	wstats->qual.level = quality.level.data;  /* instant signal level */
+	wstats->qual.noise = quality.noise.data;  /* instant noise level */
+
+#if WIRELESS_EXT > 18
+	wstats->qual.updated = IW_QUAL_ALL_UPDATED | IW_QUAL_DBM;
+#else
+	wstats->qual.updated = 7;
+#endif
+	wstats->discard.code = wlandev->rx.decrypt_err;
+	wstats->discard.nwid = 0;
+	wstats->discard.misc = 0;
+
+#if WIRELESS_EXT > 11
+	wstats->discard.fragment = 0;  // incomplete fragments
+	wstats->discard.retries = 0;   // tx retries.
+	wstats->miss.beacon = 0;
+#endif
+
+	DBFEXIT;
+
+	return wstats;
+}
+
+static int p80211wext_giwname(netdevice_t *dev,
+			      struct iw_request_info *info,
+			      char *name, char *extra)
+{
+	struct iw_param rate;
+	int result;
+	int err = 0;
+
+	DBFENTER;
+
+	result = p80211wext_giwrate(dev, NULL, &rate, NULL);
+
+	if (result) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+	switch (rate.value) {
+	case 1000000:
+	case 2000000:
+		strcpy(name, "IEEE 802.11-DS");
+		break;
+	case 5500000:
+	case 11000000:
+		strcpy(name, "IEEE 802.11-b");
+		break;
+	}
+exit:
+	DBFEXIT;
+	return err;
+}
+
+static int p80211wext_giwfreq(netdevice_t *dev,
+			      struct iw_request_info *info,
+			      struct iw_freq *freq, char *extra)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	p80211item_uint32_t             mibitem;
+	p80211msg_dot11req_mibset_t     msg;
+	int result;
+	int err = 0;
+
+	DBFENTER;
+
+	msg.msgcode = DIDmsg_dot11req_mibget;
+	mibitem.did = DIDmib_dot11phy_dot11PhyDSSSTable_dot11CurrentChannel;
+	memcpy(&msg.mibattribute.data, &mibitem, sizeof(mibitem));
+	result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+	if (result) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+	memcpy(&mibitem, &msg.mibattribute.data, sizeof(mibitem));
+
+	if (mibitem.data > NUM_CHANNELS) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+	/* convert into frequency instead of a channel */
+	freq->e = 1;
+	freq->m = p80211_channel_to_mhz(mibitem.data, 0) * 100000;
+
+ exit:
+	DBFEXIT;
+	return err;
+}
+
+static int p80211wext_siwfreq(netdevice_t *dev,
+			      struct iw_request_info *info,
+			      struct iw_freq *freq, char *extra)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	p80211item_uint32_t             mibitem;
+	p80211msg_dot11req_mibset_t     msg;
+	int result;
+	int err = 0;
+
+	DBFENTER;
+
+	if (!wlan_wext_write) {
+		err = (-EOPNOTSUPP);
+		goto exit;
+	}
+
+	msg.msgcode = DIDmsg_dot11req_mibset;
+	mibitem.did = DIDmib_dot11phy_dot11PhyDSSSTable_dot11CurrentChannel;
+	mibitem.status = P80211ENUM_msgitem_status_data_ok;
+
+	if ( (freq->e == 0) && (freq->m <= 1000) )
+		mibitem.data = freq->m;
+	else
+		mibitem.data = p80211_mhz_to_channel(freq->m);
+
+	memcpy(&msg.mibattribute.data, &mibitem, sizeof(mibitem));
+	result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+	if (result) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+ exit:
+	DBFEXIT;
+	return err;
+}
+
+#if WIRELESS_EXT > 8
+
+static int p80211wext_giwmode(netdevice_t *dev,
+			      struct iw_request_info *info,
+			      __u32 *mode, char *extra)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+
+	DBFENTER;
+
+	switch (wlandev->macmode) {
+	case WLAN_MACMODE_IBSS_STA:
+		*mode = IW_MODE_ADHOC;
+		break;
+	case WLAN_MACMODE_ESS_STA:
+		*mode = IW_MODE_INFRA;
+		break;
+	case WLAN_MACMODE_ESS_AP:
+		*mode = IW_MODE_MASTER;
+		break;
+	default:
+		/* Not set yet. */
+		*mode = IW_MODE_AUTO;
+	}
+
+	DBFEXIT;
+	return 0;
+}
+
+static int p80211wext_siwmode(netdevice_t *dev,
+			      struct iw_request_info *info,
+			      __u32 *mode, char *extra)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	p80211item_uint32_t             mibitem;
+	p80211msg_dot11req_mibset_t     msg;
+	int 	result;
+	int     err = 0;
+
+	DBFENTER;
+
+	if (!wlan_wext_write) {
+		err = (-EOPNOTSUPP);
+		goto exit;
+	}
+
+	if (*mode != IW_MODE_ADHOC && *mode != IW_MODE_INFRA &&
+	    *mode != IW_MODE_MASTER) {
+		err = (-EOPNOTSUPP);
+		goto exit;
+	}
+
+	/* Operation mode is the same with current mode */
+	if (*mode == wlandev->macmode)
+		goto exit;
+
+	switch (*mode) {
+	case IW_MODE_ADHOC:
+		wlandev->macmode = WLAN_MACMODE_IBSS_STA;
+		break;
+	case IW_MODE_INFRA:
+		wlandev->macmode = WLAN_MACMODE_ESS_STA;
+		break;
+	case IW_MODE_MASTER:
+		wlandev->macmode = WLAN_MACMODE_ESS_AP;
+		break;
+	default:
+		/* Not set yet. */
+		WLAN_LOG_INFO("Operation mode: %d not support\n", *mode);
+		return -EOPNOTSUPP;
+	}
+
+	/* Set Operation mode to the PORT TYPE RID */
+
+#warning "get rid of p2mib here"
+
+	msg.msgcode = DIDmsg_dot11req_mibset;
+	mibitem.did = DIDmib_p2_p2Static_p2CnfPortType;
+	mibitem.data = (*mode == IW_MODE_ADHOC) ? 0 : 1;
+	memcpy(&msg.mibattribute.data, &mibitem, sizeof(mibitem));
+	result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+	if (result)
+		err = -EFAULT;
+
+ exit:
+	DBFEXIT;
+
+	return err;
+}
+
+
+static int p80211wext_giwrange(netdevice_t *dev,
+			       struct iw_request_info *info,
+			       struct iw_point *data, char *extra)
+{
+        struct iw_range *range = (struct iw_range *) extra;
+	int i, val;
+
+	DBFENTER;
+
+	// for backward compatability set size & zero everything we don't understand
+	data->length = sizeof(*range);
+	memset(range,0,sizeof(*range));
+
+#if WIRELESS_EXT > 9
+	range->txpower_capa = IW_TXPOW_DBM;
+	// XXX what about min/max_pmp, min/max_pmt, etc.
+#endif
+
+#if WIRELESS_EXT > 10
+	range->we_version_compiled = WIRELESS_EXT;
+	range->we_version_source = 13;
+
+	range->retry_capa = IW_RETRY_LIMIT;
+	range->retry_flags = IW_RETRY_LIMIT;
+	range->min_retry = 0;
+	range->max_retry = 255;
+#endif /* WIRELESS_EXT > 10 */
+
+#if WIRELESS_EXT > 16
+        range->event_capa[0] = (IW_EVENT_CAPA_K_0 |  //mode/freq/ssid
+                                IW_EVENT_CAPA_MASK(SIOCGIWAP) |
+                                IW_EVENT_CAPA_MASK(SIOCGIWSCAN));
+        range->event_capa[1] = IW_EVENT_CAPA_K_1;  //encode
+        range->event_capa[4] = (IW_EVENT_CAPA_MASK(IWEVQUAL) |
+                                IW_EVENT_CAPA_MASK(IWEVCUSTOM) );
+#endif
+
+	range->num_channels = NUM_CHANNELS;
+
+	/* XXX need to filter against the regulatory domain &| active set */
+	val = 0;
+	for (i = 0; i < NUM_CHANNELS ; i++) {
+		range->freq[val].i = i + 1;
+		range->freq[val].m = p80211wext_channel_freq[i] * 100000;
+		range->freq[val].e = 1;
+		val++;
+	}
+
+	range->num_frequency = val;
+
+	/* Max of /proc/net/wireless */
+	range->max_qual.qual = 100;
+	range->max_qual.level = 0;
+	range->max_qual.noise = 0;
+	range->sensitivity = 3;
+	// XXX these need to be nsd-specific!
+
+	range->min_rts = 0;
+	range->max_rts = 2347;
+	range->min_frag = 256;
+	range->max_frag = 2346;
+
+	range->max_encoding_tokens = NUM_WEPKEYS;
+	range->num_encoding_sizes = 2;
+	range->encoding_size[0] = 5;
+	range->encoding_size[1] = 13;
+
+	// XXX what about num_bitrates/throughput?
+	range->num_bitrates = 0;
+
+	/* estimated max throughput */
+	// XXX need to cap it if we're running at ~2Mbps..
+	range->throughput = 5500000;
+
+	DBFEXIT;
+	return 0;
+}
+#endif
+
+static int p80211wext_giwap(netdevice_t *dev,
+			    struct iw_request_info *info,
+			    struct sockaddr *ap_addr, char *extra)
+{
+
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+
+	DBFENTER;
+
+	memcpy(ap_addr->sa_data, wlandev->bssid, WLAN_BSSID_LEN);
+	ap_addr->sa_family = ARPHRD_ETHER;
+
+	DBFEXIT;
+	return 0;
+}
+
+#if WIRELESS_EXT > 8
+static int p80211wext_giwencode(netdevice_t *dev,
+				struct iw_request_info *info,
+				struct iw_point *erq, char *key)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	int err = 0;
+	int i;
+
+	DBFENTER;
+
+	if (wlandev->hostwep & HOSTWEP_PRIVACYINVOKED)
+		erq->flags = IW_ENCODE_ENABLED;
+	else
+		erq->flags = IW_ENCODE_DISABLED;
+
+	if (wlandev->hostwep & HOSTWEP_EXCLUDEUNENCRYPTED)
+		erq->flags |= IW_ENCODE_RESTRICTED;
+	else
+		erq->flags |= IW_ENCODE_OPEN;
+
+	i = (erq->flags & IW_ENCODE_INDEX) - 1;
+
+	if (i == -1)
+		i = wlandev->hostwep & HOSTWEP_DEFAULTKEY_MASK;
+
+	if ((i < 0) || (i >= NUM_WEPKEYS)) {
+		err = -EINVAL;
+		goto exit;
+	}
+
+	erq->flags |= i + 1;
+
+	/* copy the key from the driver cache as the keys are read-only MIBs */
+	erq->length = wlandev->wep_keylens[i];
+	memcpy(key, wlandev->wep_keys[i], erq->length);
+
+ exit:
+	DBFEXIT;
+	return err;
+}
+
+static int p80211wext_siwencode(netdevice_t *dev,
+				struct iw_request_info *info,
+				struct iw_point *erq, char *key)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	p80211msg_dot11req_mibset_t	msg;
+	p80211item_pstr32_t		pstr;
+
+	int err = 0;
+	int result = 0;
+	int enable = 0;
+	int i;
+
+	DBFENTER;
+	if (!wlan_wext_write) {
+		err = (-EOPNOTSUPP);
+		goto exit;
+	}
+
+	/* Check the Key index first. */
+	if((i = (erq->flags & IW_ENCODE_INDEX))) {
+
+		if ((i < 1) || (i > NUM_WEPKEYS)) {
+			err = -EINVAL;
+			goto exit;
+		}
+		else
+			i--;
+
+		result = p80211wext_dorequest(wlandev, DIDmib_dot11smt_dot11PrivacyTable_dot11WEPDefaultKeyID, i);
+
+		if (result) {
+			err = -EFAULT;
+			goto exit;
+		}
+		else {
+			enable = 1;
+		}
+
+	}
+	else {
+		// Do not thing when no Key Index
+	}
+
+	/* Check if there is no key information in the iwconfig request */
+	if((erq->flags & IW_ENCODE_NOKEY) == 0 && enable == 1) {
+
+		/*------------------------------------------------------------
+		 * If there is WEP Key for setting, check the Key Information
+		 * and then set it to the firmware.
+		 -------------------------------------------------------------*/
+
+		if (erq->length > 0) {
+
+			/* copy the key from the driver cache as the keys are read-only MIBs */
+			wlandev->wep_keylens[i] = erq->length;
+			memcpy(wlandev->wep_keys[i], key, erq->length);
+
+			/* Prepare data struture for p80211req_dorequest. */
+			memcpy(pstr.data.data, key, erq->length);
+			pstr.data.len = erq->length;
+
+			switch(i)
+			{
+				case 0:
+					pstr.did = DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey0;
+					break;
+
+				case 1:
+					pstr.did = DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey1;
+					break;
+
+				case 2:
+					pstr.did = DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey2;
+					break;
+
+				case 3:
+					pstr.did = DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey3;
+					break;
+
+				default:
+					err = -EINVAL;
+					goto exit;
+			}
+
+			msg.msgcode = DIDmsg_dot11req_mibset;
+			memcpy(&msg.mibattribute.data, &pstr, sizeof(pstr));
+			result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+			if (result) {
+				err = -EFAULT;
+				goto exit;
+			}
+		}
+
+	}
+
+	/* Check the PrivacyInvoked flag */
+	if (erq->flags & IW_ENCODE_DISABLED) {
+		result = p80211wext_dorequest(wlandev, DIDmib_dot11smt_dot11PrivacyTable_dot11PrivacyInvoked, P80211ENUM_truth_false);
+	}
+	else if((erq->flags & IW_ENCODE_ENABLED) || enable == 1) {
+		result = p80211wext_dorequest(wlandev, DIDmib_dot11smt_dot11PrivacyTable_dot11PrivacyInvoked, P80211ENUM_truth_true);
+	}
+
+	if (result) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+	/* Check the ExcludeUnencrypted flag */
+	if (erq->flags & IW_ENCODE_RESTRICTED) {
+		result = p80211wext_dorequest(wlandev, DIDmib_dot11smt_dot11PrivacyTable_dot11ExcludeUnencrypted, P80211ENUM_truth_true);
+	}
+	else if (erq->flags & IW_ENCODE_OPEN) {
+		result = p80211wext_dorequest(wlandev, DIDmib_dot11smt_dot11PrivacyTable_dot11ExcludeUnencrypted, P80211ENUM_truth_false);
+	}
+
+	if (result) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+ exit:
+
+	DBFEXIT;
+	return err;
+}
+
+static int p80211wext_giwessid(netdevice_t *dev,
+			       struct iw_request_info *info,
+			       struct iw_point *data, char *essid)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+
+	DBFENTER;
+
+	if (wlandev->ssid.len) {
+		data->length = wlandev->ssid.len;
+		data->flags = 1;
+		memcpy(essid, wlandev->ssid.data, data->length);
+		essid[data->length] = 0;
+#if (WIRELESS_EXT < 21)
+		data->length++;
+#endif
+	} else {
+	  	memset(essid, 0, sizeof(wlandev->ssid.data));
+		data->length = 0;
+		data->flags = 0;
+	}
+
+	DBFEXIT;
+	return 0;
+}
+
+static int p80211wext_siwessid(netdevice_t *dev,
+			       struct iw_request_info *info,
+			       struct iw_point *data, char *essid)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	p80211msg_lnxreq_autojoin_t     msg;
+
+	int result;
+	int err = 0;
+	int length = data->length;
+
+	DBFENTER;
+
+	if (!wlan_wext_write) {
+		err = (-EOPNOTSUPP);
+		goto exit;
+	}
+
+
+	if ( wlandev->hostwep & HOSTWEP_SHAREDKEY )
+	  msg.authtype.data = P80211ENUM_authalg_sharedkey;
+	else
+	  msg.authtype.data = P80211ENUM_authalg_opensystem;
+
+	msg.msgcode = DIDmsg_lnxreq_autojoin;
+
+#if (WIRELESS_EXT < 21)
+	if (length) length--;
+#endif
+
+	/* Trim the last '\0' to fit the SSID format */
+
+	if (length && essid[length-1] == '\0') {
+	  length--;
+	}
+
+	memcpy(msg.ssid.data.data, essid, length);
+	msg.ssid.data.len = length;
+
+	WLAN_LOG_DEBUG(1,"autojoin_ssid for %s \n",essid);
+	result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+        WLAN_LOG_DEBUG(1,"autojoin_ssid %d\n",result);
+
+	if (result) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+ exit:
+	DBFEXIT;
+	return err;
+}
+
+
+static int p80211wext_siwcommit(netdevice_t *dev,
+				struct iw_request_info *info,
+				struct iw_point *data, char *essid)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	int err = 0;
+
+	DBFENTER;
+
+	if (!wlan_wext_write) {
+		err = (-EOPNOTSUPP);
+		goto exit;
+	}
+
+	/* Auto Join */
+	err = p80211wext_autojoin(wlandev);
+
+ exit:
+ 	DBFEXIT;
+	return err;
+}
+
+
+static int p80211wext_giwrate(netdevice_t *dev,
+			      struct iw_request_info *info,
+			      struct iw_param *rrq, char *extra)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	p80211item_uint32_t             mibitem;
+	p80211msg_dot11req_mibset_t     msg;
+	int result;
+	int err = 0;
+
+	DBFENTER;
+
+	msg.msgcode = DIDmsg_dot11req_mibget;
+	mibitem.did = DIDmib_p2_p2MAC_p2CurrentTxRate;
+	memcpy(&msg.mibattribute.data, &mibitem, sizeof(mibitem));
+	result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+	if (result) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+	memcpy(&mibitem, &msg.mibattribute.data, sizeof(mibitem));
+
+	rrq->fixed = 0;   /* can it change? */
+	rrq->disabled = 0;
+	rrq->value = 0;
+
+#define		HFA384x_RATEBIT_1			((UINT16)1)
+#define		HFA384x_RATEBIT_2			((UINT16)2)
+#define		HFA384x_RATEBIT_5dot5			((UINT16)4)
+#define		HFA384x_RATEBIT_11			((UINT16)8)
+
+	switch (mibitem.data) {
+	case HFA384x_RATEBIT_1:
+		rrq->value = 1000000;
+		break;
+	case HFA384x_RATEBIT_2:
+		rrq->value = 2000000;
+		break;
+	case HFA384x_RATEBIT_5dot5:
+		rrq->value = 5500000;
+		break;
+	case HFA384x_RATEBIT_11:
+		rrq->value = 11000000;
+		break;
+	default:
+		err = -EINVAL;
+	}
+ exit:
+	DBFEXIT;
+	return err;
+}
+
+static int p80211wext_giwrts(netdevice_t *dev,
+			     struct iw_request_info *info,
+			     struct iw_param *rts, char *extra)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	p80211item_uint32_t             mibitem;
+	p80211msg_dot11req_mibset_t     msg;
+	int result;
+	int err = 0;
+
+	DBFENTER;
+
+	msg.msgcode = DIDmsg_dot11req_mibget;
+	mibitem.did = DIDmib_dot11mac_dot11OperationTable_dot11RTSThreshold;
+	memcpy(&msg.mibattribute.data, &mibitem, sizeof(mibitem));
+	result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+	if (result) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+	memcpy(&mibitem, &msg.mibattribute.data, sizeof(mibitem));
+
+	rts->value = mibitem.data;
+	rts->disabled = (rts->value == 2347);
+	rts->fixed = 1;
+
+ exit:
+	DBFEXIT;
+	return err;
+}
+
+
+static int p80211wext_siwrts(netdevice_t *dev,
+			     struct iw_request_info *info,
+			     struct iw_param *rts, char *extra)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	p80211item_uint32_t             mibitem;
+	p80211msg_dot11req_mibset_t     msg;
+	int result;
+	int err = 0;
+
+	DBFENTER;
+
+	if (!wlan_wext_write) {
+		err = (-EOPNOTSUPP);
+		goto exit;
+	}
+
+	msg.msgcode = DIDmsg_dot11req_mibget;
+	mibitem.did = DIDmib_dot11mac_dot11OperationTable_dot11RTSThreshold;
+	if (rts->disabled)
+		mibitem.data = 2347;
+	else
+		mibitem.data = rts->value;
+
+	memcpy(&msg.mibattribute.data, &mibitem, sizeof(mibitem));
+	result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+	if (result) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+ exit:
+	DBFEXIT;
+	return err;
+}
+
+static int p80211wext_giwfrag(netdevice_t *dev,
+			      struct iw_request_info *info,
+			      struct iw_param *frag, char *extra)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	p80211item_uint32_t             mibitem;
+	p80211msg_dot11req_mibset_t     msg;
+	int result;
+	int err = 0;
+
+	DBFENTER;
+
+	msg.msgcode = DIDmsg_dot11req_mibget;
+	mibitem.did = DIDmib_dot11mac_dot11OperationTable_dot11FragmentationThreshold;
+	memcpy(&msg.mibattribute.data, &mibitem, sizeof(mibitem));
+	result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+	if (result) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+	memcpy(&mibitem, &msg.mibattribute.data, sizeof(mibitem));
+
+	frag->value = mibitem.data;
+	frag->disabled = (frag->value == 2346);
+	frag->fixed = 1;
+
+ exit:
+	DBFEXIT;
+	return err;
+}
+
+static int p80211wext_siwfrag(netdevice_t *dev,
+			      struct iw_request_info *info,
+			      struct iw_param *frag, char *extra)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	p80211item_uint32_t             mibitem;
+	p80211msg_dot11req_mibset_t     msg;
+	int result;
+	int err = 0;
+
+	DBFENTER;
+
+	if (!wlan_wext_write) {
+		err = (-EOPNOTSUPP);
+		goto exit;
+	}
+
+	msg.msgcode = DIDmsg_dot11req_mibset;
+	mibitem.did = DIDmib_dot11mac_dot11OperationTable_dot11FragmentationThreshold;
+
+	if (frag->disabled)
+		mibitem.data = 2346;
+	else
+		mibitem.data = frag->value;
+
+	memcpy(&msg.mibattribute.data, &mibitem, sizeof(mibitem));
+	result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+	if (result) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+ exit:
+	DBFEXIT;
+	return err;
+}
+
+#endif  /* WIRELESS_EXT > 8 */
+
+#if WIRELESS_EXT > 10
+
+#ifndef IW_RETRY_LONG
+#define IW_RETRY_LONG IW_RETRY_MAX
+#endif
+
+#ifndef IW_RETRY_SHORT
+#define IW_RETRY_SHORT IW_RETRY_MIN
+#endif
+
+static int p80211wext_giwretry(netdevice_t *dev,
+			       struct iw_request_info *info,
+			       struct iw_param *rrq, char *extra)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	p80211item_uint32_t             mibitem;
+	p80211msg_dot11req_mibset_t     msg;
+	int result;
+	int err = 0;
+	UINT16 shortretry, longretry, lifetime;
+
+	DBFENTER;
+
+	msg.msgcode = DIDmsg_dot11req_mibget;
+	mibitem.did = DIDmib_dot11mac_dot11OperationTable_dot11ShortRetryLimit;
+
+	memcpy(&msg.mibattribute.data, &mibitem, sizeof(mibitem));
+	result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+	if (result) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+	memcpy(&mibitem, &msg.mibattribute.data, sizeof(mibitem));
+
+	shortretry = mibitem.data;
+
+	mibitem.did = DIDmib_dot11mac_dot11OperationTable_dot11LongRetryLimit;
+
+	memcpy(&msg.mibattribute.data, &mibitem, sizeof(mibitem));
+	result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+	if (result) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+	memcpy(&mibitem, &msg.mibattribute.data, sizeof(mibitem));
+
+	longretry = mibitem.data;
+
+	mibitem.did = DIDmib_dot11mac_dot11OperationTable_dot11MaxTransmitMSDULifetime;
+
+	memcpy(&msg.mibattribute.data, &mibitem, sizeof(mibitem));
+	result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+	if (result) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+	memcpy(&mibitem, &msg.mibattribute.data, sizeof(mibitem));
+
+	lifetime = mibitem.data;
+
+	rrq->disabled = 0;
+
+	if ((rrq->flags & IW_RETRY_TYPE) == IW_RETRY_LIFETIME) {
+		rrq->flags = IW_RETRY_LIFETIME;
+		rrq->value = lifetime * 1024;
+	} else {
+		if (rrq->flags & IW_RETRY_LONG) {
+			rrq->flags = IW_RETRY_LIMIT | IW_RETRY_LONG;
+			rrq->value = longretry;
+		} else {
+			rrq->flags = IW_RETRY_LIMIT;
+			rrq->value = shortretry;
+			if (shortretry != longretry)
+				rrq->flags |= IW_RETRY_SHORT;
+		}
+	}
+
+ exit:
+	DBFEXIT;
+	return err;
+
+}
+
+static int p80211wext_siwretry(netdevice_t *dev,
+			       struct iw_request_info *info,
+			       struct iw_param *rrq, char *extra)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	p80211item_uint32_t             mibitem;
+	p80211msg_dot11req_mibset_t     msg;
+	int result;
+	int err = 0;
+
+	DBFENTER;
+
+	if (!wlan_wext_write) {
+		err = (-EOPNOTSUPP);
+		goto exit;
+	}
+
+	if (rrq->disabled) {
+		err = -EINVAL;
+		goto exit;
+	}
+
+	msg.msgcode = DIDmsg_dot11req_mibset;
+
+	if ((rrq->flags & IW_RETRY_TYPE) == IW_RETRY_LIFETIME) {
+		mibitem.did = DIDmib_dot11mac_dot11OperationTable_dot11MaxTransmitMSDULifetime;
+		mibitem.data =  rrq->value /= 1024;
+
+		memcpy(&msg.mibattribute.data, &mibitem, sizeof(mibitem));
+		result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+		if (result) {
+			err = -EFAULT;
+			goto exit;
+		}
+	} else {
+		if (rrq->flags & IW_RETRY_LONG) {
+			mibitem.did = DIDmib_dot11mac_dot11OperationTable_dot11LongRetryLimit;
+			mibitem.data = rrq->value;
+
+			memcpy(&msg.mibattribute.data, &mibitem, sizeof(mibitem));
+			result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+			if (result) {
+				err = -EFAULT;
+				goto exit;
+			}
+		}
+
+		if (rrq->flags & IW_RETRY_SHORT) {
+			mibitem.did = DIDmib_dot11mac_dot11OperationTable_dot11ShortRetryLimit;
+			mibitem.data = rrq->value;
+
+			memcpy(&msg.mibattribute.data, &mibitem, sizeof(mibitem));
+			result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+			if (result) {
+				err = -EFAULT;
+				goto exit;
+			}
+		}
+	}
+
+ exit:
+	DBFEXIT;
+	return err;
+
+}
+
+#endif /* WIRELESS_EXT > 10 */
+
+#if WIRELESS_EXT > 9
+static int p80211wext_siwtxpow(netdevice_t *dev,
+                               struct iw_request_info *info,
+                               struct iw_param *rrq, char *extra)
+{
+        wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+        p80211item_uint32_t             mibitem;
+        p80211msg_dot11req_mibset_t     msg;
+        int result;
+        int err = 0;
+
+        DBFENTER;
+
+       if (!wlan_wext_write) {
+                err = (-EOPNOTSUPP);
+                goto exit;
+        }
+
+        msg.msgcode = DIDmsg_dot11req_mibset;
+
+        switch (rrq->value) {
+
+          case 1 : mibitem.did = DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel1; break;
+          case 2 : mibitem.did = DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel2; break;
+          case 3 : mibitem.did = DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel3; break;
+          case 4 : mibitem.did = DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel4; break;
+          case 5 : mibitem.did = DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel5; break;
+          case 6 : mibitem.did = DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel6; break;
+          case 7 : mibitem.did = DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel7; break;
+          case 8 : mibitem.did = DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel8; break;
+          default: mibitem.did = DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel8; break;
+	}
+
+        memcpy(&msg.mibattribute.data, &mibitem, sizeof(mibitem));
+        result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+        if (result) {
+                err = -EFAULT;
+                goto exit;
+        }
+
+ exit:
+        DBFEXIT;
+        return err;
+}
+
+static int p80211wext_giwtxpow(netdevice_t *dev,
+			       struct iw_request_info *info,
+			       struct iw_param *rrq, char *extra)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	p80211item_uint32_t             mibitem;
+	p80211msg_dot11req_mibset_t     msg;
+	int result;
+	int err = 0;
+
+	DBFENTER;
+
+	msg.msgcode = DIDmsg_dot11req_mibget;
+	mibitem.did = DIDmib_dot11phy_dot11PhyTxPowerTable_dot11CurrentTxPowerLevel;
+
+	memcpy(&msg.mibattribute.data, &mibitem, sizeof(mibitem));
+	result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+
+	if (result) {
+		err = -EFAULT;
+		goto exit;
+	}
+
+	memcpy(&mibitem, &msg.mibattribute.data, sizeof(mibitem));
+
+	// XXX handle OFF by setting disabled = 1;
+
+	rrq->flags = 0; // IW_TXPOW_DBM;
+	rrq->disabled = 0;
+	rrq->fixed = 0;
+	rrq->value = mibitem.data;
+
+ exit:
+	DBFEXIT;
+	return err;
+}
+#endif /* WIRELESS_EXT > 9 */
+
+static int p80211wext_siwspy(netdevice_t *dev,
+			     struct iw_request_info *info,
+			     struct iw_point *srq, char *extra)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+        struct sockaddr address[IW_MAX_SPY];
+        int number = srq->length;
+        int i;
+
+	DBFENTER;
+
+	/* Copy the data from the input buffer */
+	memcpy(address, extra, sizeof(struct sockaddr)*number);
+
+        wlandev->spy_number = 0;
+
+        if (number > 0) {
+
+                /* extract the addresses */
+                for (i = 0; i < number; i++) {
+
+                        memcpy(wlandev->spy_address[i], address[i].sa_data, ETH_ALEN);
+		}
+
+                /* reset stats */
+                memset(wlandev->spy_stat, 0, sizeof(struct iw_quality) * IW_MAX_SPY);
+
+                /* set number of addresses */
+                wlandev->spy_number = number;
+        }
+
+	DBFEXIT;
+	return 0;
+}
+
+/* jkriegl: from orinoco, modified */
+static int p80211wext_giwspy(netdevice_t *dev,
+			     struct iw_request_info *info,
+			     struct iw_point *srq, char *extra)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+
+        struct sockaddr address[IW_MAX_SPY];
+        struct iw_quality spy_stat[IW_MAX_SPY];
+        int number;
+        int i;
+
+	DBFENTER;
+
+        number = wlandev->spy_number;
+
+        if (number > 0) {
+
+                /* populate address and spy struct's */
+                for (i = 0; i < number; i++) {
+                        memcpy(address[i].sa_data, wlandev->spy_address[i], ETH_ALEN);
+                        address[i].sa_family = AF_UNIX;
+                	memcpy(&spy_stat[i], &wlandev->spy_stat[i], sizeof(struct iw_quality));
+                }
+
+		/* reset update flag */
+                for (i=0; i < number; i++)
+                        wlandev->spy_stat[i].updated = 0;
+        }
+
+        /* push stuff to user space */
+        srq->length = number;
+	memcpy(extra, address, sizeof(struct sockaddr)*number);
+	memcpy(extra+sizeof(struct sockaddr)*number, spy_stat, sizeof(struct iw_quality)*number);
+
+	DBFEXIT;
+	return 0;
+}
+
+static int prism2_result2err (int prism2_result)
+{
+	int err = 0;
+
+	switch (prism2_result) {
+		case P80211ENUM_resultcode_invalid_parameters:
+			err = -EINVAL;
+			break;
+		case P80211ENUM_resultcode_implementation_failure:
+			err = -EIO;
+			break;
+		case P80211ENUM_resultcode_not_supported:
+			err = -EOPNOTSUPP;
+			break;
+		default:
+			err = 0;
+			break;
+	}
+
+	return err;
+}
+
+#if WIRELESS_EXT > 13
+static int p80211wext_siwscan(netdevice_t *dev,
+			     struct iw_request_info *info,
+			     struct iw_point *srq, char *extra)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	p80211msg_dot11req_scan_t	msg;
+	int result;
+	int err = 0;
+	int i = 0;
+
+	DBFENTER;
+
+	if (wlandev->macmode == WLAN_MACMODE_ESS_AP) {
+		WLAN_LOG_ERROR("Can't scan in AP mode\n");
+		err = (-EOPNOTSUPP);
+		goto exit;
+	}
+
+	memset(&msg, 0x00, sizeof(p80211msg_dot11req_scan_t));
+	msg.msgcode = DIDmsg_dot11req_scan;
+	msg.bsstype.data = P80211ENUM_bsstype_any;
+
+	memset(&(msg.bssid.data), 0xFF, sizeof (p80211item_pstr6_t));
+	msg.bssid.data.len = 6;
+
+	msg.scantype.data = P80211ENUM_scantype_active;
+	msg.probedelay.data = 0;
+
+	for (i = 1; i <= 14; i++)
+		msg.channellist.data.data[i-1] = i;
+	msg.channellist.data.len = 14;
+
+	msg.maxchanneltime.data = 250;
+	msg.minchanneltime.data = 200;
+
+	result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+	if (result)
+		err = prism2_result2err (msg.resultcode.data);
+
+ exit:
+	DBFEXIT;
+	return err;
+}
+
+
+/* Helper to translate scan into Wireless Extensions scan results.
+ * Inspired by the prism54 code, which was in turn inspired by the
+ * airo driver code.
+ */
+static char *
+wext_translate_bss(struct iw_request_info *info, char *current_ev,
+		   char *end_buf, p80211msg_dot11req_scan_results_t *bss)
+{
+	struct iw_event iwe;	/* Temporary buffer */
+
+	/* The first entry must be the MAC address */
+	memcpy(iwe.u.ap_addr.sa_data, bss->bssid.data.data, WLAN_BSSID_LEN);
+	iwe.u.ap_addr.sa_family = ARPHRD_ETHER;
+	iwe.cmd = SIOCGIWAP;
+	current_ev = iwe_stream_add_event(info, current_ev, end_buf, &iwe, IW_EV_ADDR_LEN);
+
+	/* The following entries will be displayed in the same order we give them */
+
+	/* The ESSID. */
+	if (bss->ssid.data.len > 0) {
+		char essid[IW_ESSID_MAX_SIZE + 1];
+		int size;
+
+		size = wlan_min(IW_ESSID_MAX_SIZE, bss->ssid.data.len);
+		memset(&essid, 0, sizeof (essid));
+		memcpy(&essid, bss->ssid.data.data, size);
+		WLAN_LOG_DEBUG(1, " essid size = %d\n", size);
+		iwe.u.data.length = size;
+		iwe.u.data.flags = 1;
+		iwe.cmd = SIOCGIWESSID;
+		current_ev = iwe_stream_add_point(info, current_ev, end_buf, &iwe, &essid[0]);
+		WLAN_LOG_DEBUG(1, " essid size OK.\n");
+	}
+
+	switch (bss->bsstype.data) {
+		case P80211ENUM_bsstype_infrastructure:
+			iwe.u.mode = IW_MODE_MASTER;
+			break;
+
+		case P80211ENUM_bsstype_independent:
+			iwe.u.mode = IW_MODE_ADHOC;
+			break;
+
+		default:
+			iwe.u.mode = 0;
+			break;
+	}
+	iwe.cmd = SIOCGIWMODE;
+	if (iwe.u.mode)
+		current_ev = iwe_stream_add_event(info, current_ev, end_buf, &iwe, IW_EV_UINT_LEN);
+
+	/* Encryption capability */
+	if (bss->privacy.data == P80211ENUM_truth_true)
+		iwe.u.data.flags = IW_ENCODE_ENABLED | IW_ENCODE_NOKEY;
+	else
+		iwe.u.data.flags = IW_ENCODE_DISABLED;
+	iwe.u.data.length = 0;
+	iwe.cmd = SIOCGIWENCODE;
+	current_ev = iwe_stream_add_point(info, current_ev, end_buf, &iwe, NULL);
+
+	/* Add frequency. (short) bss->channel is the frequency in MHz */
+	iwe.u.freq.m = bss->dschannel.data;
+	iwe.u.freq.e = 0;
+	iwe.cmd = SIOCGIWFREQ;
+	current_ev = iwe_stream_add_event(info, current_ev, end_buf, &iwe, IW_EV_FREQ_LEN);
+
+	/* Add quality statistics */
+	iwe.u.qual.level = bss->signal.data;
+	iwe.u.qual.noise = bss->noise.data;
+	/* do a simple SNR for quality */
+	iwe.u.qual.qual = qual_as_percent(bss->signal.data - bss->noise.data);
+	iwe.cmd = IWEVQUAL;
+	current_ev = iwe_stream_add_event(info, current_ev, end_buf, &iwe, IW_EV_QUAL_LEN);
+
+	return current_ev;
+}
+
+
+static int p80211wext_giwscan(netdevice_t *dev,
+			     struct iw_request_info *info,
+			     struct iw_point *srq, char *extra)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	p80211msg_dot11req_scan_results_t	msg;
+	int result = 0;
+	int err = 0;
+	int i = 0;
+	int scan_good = 0;
+	char *current_ev = extra;
+
+	DBFENTER;
+
+	/* Since wireless tools doesn't really have a way of passing how
+	 * many scan results results there were back here, keep grabbing them
+	 * until we fail.
+	 */
+	do {
+		memset(&msg, 0, sizeof(msg));
+		msg.msgcode = DIDmsg_dot11req_scan_results;
+		msg.bssindex.data = i;
+
+		result = p80211req_dorequest(wlandev, (UINT8*)&msg);
+		if ((result != 0) ||
+		    (msg.resultcode.data != P80211ENUM_resultcode_success)) {
+			break;
+		}
+
+		current_ev = wext_translate_bss(info, current_ev, extra + IW_SCAN_MAX_DATA, &msg);
+		scan_good = 1;
+		i++;
+	} while (i < IW_MAX_AP);
+
+	srq->length = (current_ev - extra);
+	srq->flags = 0;	/* todo */
+
+	if (result && !scan_good)
+		err = prism2_result2err (msg.resultcode.data);
+
+	DBFEXIT;
+	return err;
+}
+#endif
+
+/*****************************************************/
+//extra wireless extensions stuff to support NetworkManager (I hope)
+
+#if WIRELESS_EXT > 17
+/* SIOCSIWENCODEEXT */
+static int p80211wext_set_encodeext(struct net_device *dev,
+				struct iw_request_info *info,
+				union iwreq_data *wrqu, char *extra)
+{
+  wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+  struct iw_encode_ext *ext = (struct iw_encode_ext *)extra;
+	p80211msg_dot11req_mibset_t	msg;
+	p80211item_pstr32_t		*pstr;
+
+  int result = 0;
+  struct iw_point *encoding = &wrqu->encoding;
+  int idx = encoding->flags & IW_ENCODE_INDEX;
+
+  WLAN_LOG_DEBUG(1,"set_encode_ext flags[%d] alg[%d] keylen[%d]\n",ext->ext_flags,(int)ext->alg,(int)ext->key_len);
+
+
+  if ( ext->ext_flags & IW_ENCODE_EXT_GROUP_KEY ) {
+    // set default key ? I'm not sure if this the the correct thing to do here
+
+    if ( idx ) {
+      if (idx < 1 || idx > NUM_WEPKEYS) {
+	return -EINVAL;
+      } else
+	idx--;
+    }
+    WLAN_LOG_DEBUG(1,"setting default key (%d)\n",idx);
+    result = p80211wext_dorequest(wlandev, DIDmib_dot11smt_dot11PrivacyTable_dot11WEPDefaultKeyID, idx);
+    if ( result )
+      return -EFAULT;
+  }
+
+
+  if ( ext->ext_flags & IW_ENCODE_EXT_SET_TX_KEY ) {
+    if ( ! ext->alg & IW_ENCODE_ALG_WEP) {
+      WLAN_LOG_DEBUG(1,"asked to set a non wep key :(");
+      return -EINVAL;
+    }
+    if (idx) {
+      if (idx <1 || idx > NUM_WEPKEYS)
+	return -EINVAL;
+      else
+	idx--;
+    }
+    WLAN_LOG_DEBUG(1,"Set WEP key (%d)\n",idx);
+    wlandev->wep_keylens[idx] = ext->key_len;
+    memcpy(wlandev->wep_keys[idx], ext->key, ext->key_len);
+
+    memset( &msg,0,sizeof(msg));
+    pstr = (p80211item_pstr32_t*)&msg.mibattribute.data;
+    memcpy(pstr->data.data, ext->key,ext->key_len);
+    pstr->data.len = ext->key_len;
+    switch (idx) {
+    case 0:
+      pstr->did = DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey0;
+      break;
+    case 1:
+      pstr->did = DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey1;
+      break;
+    case 2:
+      pstr->did = DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey2;
+      break;
+    case 3:
+      pstr->did = DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey3;
+      break;
+    default:
+      break;
+    }
+    msg.msgcode = DIDmsg_dot11req_mibset;
+    result = p80211req_dorequest(wlandev,(UINT8*)&msg);
+    WLAN_LOG_DEBUG(1,"result (%d)\n",result);
+  }
+  return result;
+}
+
+/* SIOCGIWENCODEEXT */
+static int p80211wext_get_encodeext(struct net_device *dev,
+				struct iw_request_info *info,
+				union iwreq_data *wrqu, char *extra)
+
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+	struct iw_encode_ext *ext = (struct iw_encode_ext *)extra;
+
+	struct iw_point *encoding = &wrqu->encoding;
+	int result = 0;
+	int max_len;
+	int idx;
+
+	DBFENTER;
+
+	WLAN_LOG_DEBUG(1,"get_encode_ext flags[%d] alg[%d] keylen[%d]\n",ext->ext_flags,(int)ext->alg,(int)ext->key_len);
+
+
+	max_len = encoding->length - sizeof(*ext);
+	if ( max_len <= 0) {
+		WLAN_LOG_DEBUG(1,"get_encodeext max_len [%d] invalid\n",max_len);
+		result = -EINVAL;
+		goto exit;
+	}
+	idx = encoding->flags & IW_ENCODE_INDEX;
+
+	WLAN_LOG_DEBUG(1,"get_encode_ext index [%d]\n",idx);
+
+	if (idx) {
+		if (idx < 1 || idx > NUM_WEPKEYS ) {
+			WLAN_LOG_DEBUG(1,"get_encode_ext invalid key index [%d]\n",idx);
+			result = -EINVAL;
+			goto exit;
+		}
+		idx--;
+	} else {
+		/* default key ? not sure what to do */
+		/* will just use key[0] for now ! FIX ME */
+	}
+
+	encoding->flags = idx + 1;
+	memset(ext,0,sizeof(*ext));
+
+	ext->alg = IW_ENCODE_ALG_WEP;
+	ext->key_len = wlandev->wep_keylens[idx];
+	memcpy( ext->key, wlandev->wep_keys[idx] , ext->key_len );
+
+	encoding->flags |= IW_ENCODE_ENABLED;
+exit:
+	DBFEXIT;
+
+	return result;
+}
+
+
+/* SIOCSIWAUTH */
+static int p80211_wext_set_iwauth (struct net_device *dev,
+				   struct iw_request_info *info,
+				   union iwreq_data *wrqu, char *extra)
+{
+  wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+  struct iw_param *param = &wrqu->param;
+  int result =0;
+
+  WLAN_LOG_DEBUG(1,"set_iwauth flags[%d]\n",(int)param->flags & IW_AUTH_INDEX );
+
+  switch (param->flags & IW_AUTH_INDEX) {
+  case IW_AUTH_DROP_UNENCRYPTED:
+    WLAN_LOG_DEBUG(1,"drop_unencrypted %d\n",param->value);
+    if (param->value)
+      result = p80211wext_dorequest(wlandev, DIDmib_dot11smt_dot11PrivacyTable_dot11ExcludeUnencrypted, P80211ENUM_truth_true);
+    else
+      result = p80211wext_dorequest(wlandev, DIDmib_dot11smt_dot11PrivacyTable_dot11ExcludeUnencrypted, P80211ENUM_truth_false);
+    break;
+
+  case IW_AUTH_PRIVACY_INVOKED:
+    WLAN_LOG_DEBUG(1,"privacy invoked %d\n",param->value);
+    if ( param->value)
+      result = p80211wext_dorequest(wlandev, DIDmib_dot11smt_dot11PrivacyTable_dot11PrivacyInvoked, P80211ENUM_truth_true);
+    else
+      result = p80211wext_dorequest(wlandev, DIDmib_dot11smt_dot11PrivacyTable_dot11PrivacyInvoked, P80211ENUM_truth_false);
+
+    break;
+
+  case IW_AUTH_80211_AUTH_ALG:
+    if ( param->value & IW_AUTH_ALG_OPEN_SYSTEM ) {
+      WLAN_LOG_DEBUG(1,"set open_system\n");
+      wlandev->hostwep &= ~HOSTWEP_SHAREDKEY;
+    } else if ( param->value & IW_AUTH_ALG_SHARED_KEY) {
+      WLAN_LOG_DEBUG(1,"set shared key\n");
+      wlandev->hostwep |= HOSTWEP_SHAREDKEY;
+    } else {
+      /* don't know what to do know :( */
+      WLAN_LOG_DEBUG(1,"unknown AUTH_ALG (%d)\n",param->value);
+      result = -EINVAL;
+    }
+    break;
+
+  default:
+    break;
+  }
+
+
+
+  return result;
+}
+
+/* SIOCSIWAUTH */
+static int p80211_wext_get_iwauth (struct net_device *dev,
+				   struct iw_request_info *info,
+				   union iwreq_data *wrqu, char *extra)
+{
+  wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+  struct iw_param *param = &wrqu->param;
+  int result =0;
+
+  WLAN_LOG_DEBUG(1,"get_iwauth flags[%d]\n",(int)param->flags & IW_AUTH_INDEX );
+
+  switch (param->flags & IW_AUTH_INDEX) {
+  case IW_AUTH_DROP_UNENCRYPTED:
+    param->value = wlandev->hostwep & HOSTWEP_EXCLUDEUNENCRYPTED?1:0;
+    break;
+
+  case IW_AUTH_PRIVACY_INVOKED:
+    param->value = wlandev->hostwep & HOSTWEP_PRIVACYINVOKED?1:0;
+    break;
+
+  case IW_AUTH_80211_AUTH_ALG:
+    param->value = wlandev->hostwep & HOSTWEP_SHAREDKEY?IW_AUTH_ALG_SHARED_KEY:IW_AUTH_ALG_OPEN_SYSTEM;
+    break;
+
+
+  default:
+    break;
+  }
+
+
+
+  return result;
+}
+
+
+#endif
+
+
+
+
+
+
+/*****************************************************/
+
+
+
+
+
+/*
+typedef int (*iw_handler)(netdevice_t *dev, struct iw_request_info *info,
+                          union iwreq_data *wrqu, char *extra);
+*/
+
+#if WIRELESS_EXT > 12
+static iw_handler p80211wext_handlers[] =  {
+	(iw_handler) p80211wext_siwcommit,		/* SIOCSIWCOMMIT */
+	(iw_handler) p80211wext_giwname,		/* SIOCGIWNAME */
+	(iw_handler) NULL,				/* SIOCSIWNWID */
+	(iw_handler) NULL,				/* SIOCGIWNWID */
+	(iw_handler) p80211wext_siwfreq,  		/* SIOCSIWFREQ */
+	(iw_handler) p80211wext_giwfreq,  		/* SIOCGIWFREQ */
+	(iw_handler) p80211wext_siwmode,       		/* SIOCSIWMODE */
+	(iw_handler) p80211wext_giwmode,       		/* SIOCGIWMODE */
+	(iw_handler) NULL,                 		/* SIOCSIWSENS */
+	(iw_handler) NULL,                		/* SIOCGIWSENS */
+	(iw_handler) NULL, /* not used */     		/* SIOCSIWRANGE */
+	(iw_handler) p80211wext_giwrange,      		/* SIOCGIWRANGE */
+	(iw_handler) NULL, /* not used */     		/* SIOCSIWPRIV */
+	(iw_handler) NULL, /* kernel code */   		/* SIOCGIWPRIV */
+	(iw_handler) NULL, /* not used */     		/* SIOCSIWSTATS */
+	(iw_handler) NULL, /* kernel code */   		/* SIOCGIWSTATS */
+	(iw_handler) p80211wext_siwspy,			/* SIOCSIWSPY */
+	(iw_handler) p80211wext_giwspy,			/* SIOCGIWSPY */
+	(iw_handler) NULL,				/* -- hole -- */
+	(iw_handler) NULL,				/* -- hole -- */
+	(iw_handler) NULL,              		/* SIOCSIWAP */
+	(iw_handler) p80211wext_giwap,         		/* SIOCGIWAP */
+	(iw_handler) NULL,				/* -- hole -- */
+	(iw_handler) NULL,                  		/* SIOCGIWAPLIST */
+#if WIRELESS_EXT > 13
+	(iw_handler) p80211wext_siwscan,			/* SIOCSIWSCAN */
+	(iw_handler) p80211wext_giwscan,			/* SIOCGIWSCAN */
+#else /* WIRELESS_EXT > 13 */
+	(iw_handler) NULL,	/* null */		/* SIOCSIWSCAN */
+	(iw_handler) NULL,	/* null */		/* SIOCGIWSCAN */
+#endif /* WIRELESS_EXT > 13 */
+	(iw_handler) p80211wext_siwessid,  		/* SIOCSIWESSID */
+	(iw_handler) p80211wext_giwessid,      		/* SIOCGIWESSID */
+	(iw_handler) NULL,                 		/* SIOCSIWNICKN */
+	(iw_handler) p80211wext_giwessid,      		/* SIOCGIWNICKN */
+	(iw_handler) NULL,				/* -- hole -- */
+	(iw_handler) NULL,				/* -- hole -- */
+	(iw_handler) NULL,                		/* SIOCSIWRATE */
+	(iw_handler) p80211wext_giwrate,      		/* SIOCGIWRATE */
+	(iw_handler) p80211wext_siwrts,  		/* SIOCSIWRTS */
+	(iw_handler) p80211wext_giwrts,        		/* SIOCGIWRTS */
+	(iw_handler) p80211wext_siwfrag,      		/* SIOCSIWFRAG */
+	(iw_handler) p80211wext_giwfrag,   		/* SIOCGIWFRAG */
+	(iw_handler) p80211wext_siwtxpow,           	/* SIOCSIWTXPOW */
+	(iw_handler) p80211wext_giwtxpow,  		/* SIOCGIWTXPOW */
+	(iw_handler) p80211wext_siwretry,     		/* SIOCSIWRETRY */
+	(iw_handler) p80211wext_giwretry,  		/* SIOCGIWRETRY */
+	(iw_handler) p80211wext_siwencode,     		/* SIOCSIWENCODE */
+	(iw_handler) p80211wext_giwencode,  		/* SIOCGIWENCODE */
+	(iw_handler) NULL,                 		/* SIOCSIWPOWER */
+	(iw_handler) NULL,                  		/* SIOCGIWPOWER */
+#if WIRELESS_EXT > 17
+/* WPA operations */
+
+	(iw_handler) NULL,				/* -- hole -- */
+	(iw_handler) NULL,				/* -- hole -- */
+	(iw_handler) NULL, /* SIOCSIWGENIE	set generic IE */
+	(iw_handler) NULL, /* SIOCGIWGENIE	get generic IE */
+	(iw_handler) p80211_wext_set_iwauth, /* SIOCSIWAUTH	set authentication mode params */
+	(iw_handler) p80211_wext_get_iwauth, /* SIOCGIWAUTH	get authentication mode params */
+
+	(iw_handler) p80211wext_set_encodeext, /* SIOCSIWENCODEEXT  set encoding token & mode */
+	(iw_handler) p80211wext_get_encodeext, /* SIOCGIWENCODEEXT  get encoding token & mode */
+	(iw_handler) NULL, /* SIOCSIWPMKSA	PMKSA cache operation */
+#endif
+};
+
+struct iw_handler_def p80211wext_handler_def = {
+	.num_standard = sizeof(p80211wext_handlers) / sizeof(iw_handler),
+	.num_private = 0,
+	.num_private_args = 0,
+        .standard = p80211wext_handlers,
+	.private = NULL,
+	.private_args = NULL,
+#if WIRELESS_EXT > 16
+	.get_wireless_stats = p80211wext_get_wireless_stats
+#endif
+};
+
+#endif
+
+/* wireless extensions' ioctls */
+int p80211wext_support_ioctl(netdevice_t *dev, struct ifreq *ifr, int cmd)
+{
+	wlandevice_t *wlandev = (wlandevice_t*)dev->priv;
+
+#if WIRELESS_EXT < 13
+	struct iwreq *iwr = (struct iwreq*)ifr;
+#endif
+
+	p80211item_uint32_t             mibitem;
+	int err = 0;
+
+	DBFENTER;
+
+	mibitem.status = P80211ENUM_msgitem_status_data_ok;
+
+	if ( wlandev->msdstate != WLAN_MSD_RUNNING ) {
+		err = -ENODEV;
+		goto exit;
+	}
+
+	WLAN_LOG_DEBUG(1, "Received wireless extension ioctl #%d.\n", cmd);
+
+	switch (cmd) {
+#if WIRELESS_EXT < 13
+	case SIOCSIWNAME:  /* unused  */
+		err = (-EOPNOTSUPP);
+		break;
+	case SIOCGIWNAME: /* get name == wireless protocol */
+                err = p80211wext_giwname(dev, NULL, (char *) &iwr->u, NULL);
+		break;
+	case SIOCSIWNWID:
+	case SIOCGIWNWID:
+		err = (-EOPNOTSUPP);
+		break;
+	case SIOCSIWFREQ: /* set channel */
+                err = p80211wext_siwfreq(dev, NULL, &(iwr->u.freq), NULL);
+		break;
+	case SIOCGIWFREQ: /* get channel */
+                err = p80211wext_giwfreq(dev, NULL, &(iwr->u.freq), NULL);
+		break;
+	case SIOCSIWRANGE:
+	case SIOCSIWPRIV:
+	case SIOCSIWAP: /* set access point MAC addresses (BSSID) */
+		err = (-EOPNOTSUPP);
+		break;
+
+	case SIOCGIWAP:	/* get access point MAC addresses (BSSID) */
+                err = p80211wext_giwap(dev, NULL, &(iwr->u.ap_addr), NULL);
+		break;
+
+#if WIRELESS_EXT > 8
+	case SIOCSIWMODE: /* set operation mode */
+	case SIOCSIWESSID: /* set SSID (network name) */
+	case SIOCSIWRATE: /* set default bit rate (bps) */
+		err = (-EOPNOTSUPP);
+		break;
+
+	case SIOCGIWMODE: /* get operation mode */
+		err = p80211wext_giwmode(dev, NULL, &iwr->u.mode, NULL);
+
+		break;
+	case SIOCGIWNICKN: /* get node name/nickname */
+	case SIOCGIWESSID: /* get SSID */
+		if(iwr->u.essid.pointer) {
+                        char ssid[IW_ESSID_MAX_SIZE+1];
+			memset(ssid, 0, sizeof(ssid));
+
+			err = p80211wext_giwessid(dev, NULL, &iwr->u.essid, ssid);
+			if(copy_to_user(iwr->u.essid.pointer, ssid, sizeof(ssid)))
+				err = (-EFAULT);
+		}
+		break;
+	case SIOCGIWRATE:
+                err = p80211wext_giwrate(dev, NULL, &iwr->u.bitrate, NULL);
+		break;
+	case SIOCGIWRTS:
+		err = p80211wext_giwrts(dev, NULL, &iwr->u.rts, NULL);
+		break;
+	case SIOCGIWFRAG:
+		err = p80211wext_giwfrag(dev, NULL, &iwr->u.rts, NULL);
+		break;
+	case SIOCGIWENCODE:
+		if (!capable(CAP_NET_ADMIN))
+			err = -EPERM;
+		else if (iwr->u.encoding.pointer) {
+			char keybuf[MAX_KEYLEN];
+			err = p80211wext_giwencode(dev, NULL,
+						     &iwr->u.encoding, keybuf);
+			if (copy_to_user(iwr->u.encoding.pointer, keybuf,
+					 iwr->u.encoding.length))
+				err = -EFAULT;
+		}
+		break;
+	case SIOCGIWAPLIST:
+	case SIOCSIWRTS:
+	case SIOCSIWFRAG:
+	case SIOCSIWSENS:
+	case SIOCGIWSENS:
+	case SIOCSIWNICKN: /* set node name/nickname */
+	case SIOCSIWENCODE: /* set encoding token & mode */
+	case SIOCSIWSPY:
+	case SIOCGIWSPY:
+	case SIOCSIWPOWER:
+	case SIOCGIWPOWER:
+	case SIOCGIWPRIV:
+		err = (-EOPNOTSUPP);
+		break;
+	case SIOCGIWRANGE:
+		if(iwr->u.data.pointer != NULL) {
+                        struct iw_range range;
+                        err = p80211wext_giwrange(dev, NULL, &iwr->u.data,
+						  (char *) &range);
+			/* Push that up to the caller */
+			if (copy_to_user(iwr->u.data.pointer, &range, sizeof(range)))
+				err = -EFAULT;
+		}
+		break;
+#endif /* WIRELESS_EXT > 8 */
+#if WIRELESS_EXT > 9
+	case SIOCSIWTXPOW:
+		err = (-EOPNOTSUPP);
+		break;
+	case SIOCGIWTXPOW:
+		err = p80211wext_giwtxpow(dev, NULL, &iwr->u.txpower, NULL);
+		break;
+#endif /* WIRELESS_EXT > 9 */
+#if WIRELESS_EXT > 10
+	case SIOCSIWRETRY:
+		err = (-EOPNOTSUPP);
+		break;
+	case SIOCGIWRETRY:
+		err = p80211wext_giwretry(dev, NULL, &iwr->u.retry, NULL);
+		break;
+#endif /* WIRELESS_EXT > 10 */
+
+#endif /* WIRELESS_EXT <= 12 */
+
+	default:
+		err = (-EOPNOTSUPP);
+		break;
+	}
+
+ exit:
+	DBFEXIT;
+	return (err);
+}
+
+int p80211wext_event_associated(wlandevice_t *wlandev, int assoc)
+{
+        union iwreq_data data;
+
+        DBFENTER;
+
+#if WIRELESS_EXT > 13
+        /* Send the association state first */
+        data.ap_addr.sa_family = ARPHRD_ETHER;
+        if (assoc) {
+                memcpy(data.ap_addr.sa_data, wlandev->bssid, WLAN_ADDR_LEN);
+        } else {
+                memset(data.ap_addr.sa_data, 0, WLAN_ADDR_LEN);
+        }
+
+        if (wlan_wext_write)
+                wireless_send_event(wlandev->netdev, SIOCGIWAP, &data, NULL);
+
+        if (!assoc) goto done;
+
+        // XXX send association data, like IEs, etc etc.
+#endif
+ done:
+        DBFEXIT;
+        return 0;
+}
+
+
+#endif /* compatibility to wireless extensions */
+
+
+
+
diff --git a/drivers/staging/wlan-ng/prism2_cs.c b/drivers/staging/wlan-ng/prism2_cs.c
new file mode 100644
index 0000000..63ce565
--- /dev/null
+++ b/drivers/staging/wlan-ng/prism2_cs.c
@@ -0,0 +1,1487 @@
+#define WLAN_HOSTIF WLAN_PCMCIA
+#include "hfa384x.c"
+#include "prism2mgmt.c"
+#include "prism2mib.c"
+#include "prism2sta.c"
+
+#if (LINUX_VERSION_CODE <= KERNEL_VERSION(2,4,21) )
+#if (WLAN_CPU_FAMILY == WLAN_Ix86)
+#ifndef CONFIG_ISA
+#warning "You may need to enable ISA support in your kernel."
+#endif
+#endif
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,11) )
+static u_int	irq_mask = 0xdeb8;		/* Interrupt mask */
+static int	irq_list[4] = { -1 };		/* Interrupt list */
+#endif
+static u_int	prism2_ignorevcc=1;		/* Boolean, if set, we
+						 * ignore what the Vcc
+						 * is set to and what the CIS
+						 * says.
+						 */
+module_param( prism2_ignorevcc, int, 0644);
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,11) )
+#if (LINUX_VERSION_CODE <= KERNEL_VERSION(2,6,9))
+static int numlist = 4;
+module_param_array(irq_list, int, numlist, 0444);
+#else
+module_param_array(irq_list, int, NULL, 0444);
+#endif
+module_param( irq_mask, int, 0644);
+#endif
+
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,15)
+static int prism2_cs_suspend(struct pcmcia_device *pdev);
+static int prism2_cs_resume(struct pcmcia_device *pdev);
+static void prism2_cs_remove(struct pcmcia_device *pdev);
+static int prism2_cs_probe(struct pcmcia_device *pdev);
+#else
+dev_link_t	*prism2sta_attach(void);
+static void	prism2sta_detach(dev_link_t *link);
+static void	prism2sta_config(dev_link_t *link);
+static void	prism2sta_release(u_long arg);
+static int 	prism2sta_event (event_t event, int priority, event_callback_args_t *args);
+
+static dev_link_t	*dev_list = NULL;	/* head of instance list */
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,5,68))
+/*----------------------------------------------------------------
+* cs_error
+*
+* Utility function to print card services error messages.
+*
+* Arguments:
+*	handle	client handle identifying this CS client
+*	func	CS function number that generated the error
+*	ret	CS function return code
+*
+* Returns:
+*	nothing
+* Side effects:
+*
+* Call context:
+*	process thread
+*	interrupt
+----------------------------------------------------------------*/
+static void cs_error(client_handle_t handle, int func, int ret)
+{
+#if (defined(CS_RELEASE_CODE) && (CS_RELEASE_CODE < 0x2911))
+	CardServices(ReportError, dev_info, (void *)func, (void *)ret);
+#else
+	error_info_t err = { func, ret };
+	pcmcia_report_error(handle, &err);
+#endif
+}
+#else // kernel_version
+
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,12)
+static struct pcmcia_device_id prism2_cs_ids[] = {
+	PCMCIA_DEVICE_PROD_ID12("INTERSIL",  "HFA384x/IEEE", 0x74c5e40d, 0xdb472a18), // Intersil PRISM2 Reference Design 11Mb/s 802.11b WLAN Card
+	PCMCIA_DEVICE_MANF_CARD(0x0138, 0x0002), // Compaq WL100/200 11Mb/s 802.11b WLAN Card
+	PCMCIA_DEVICE_MANF_CARD(0x028a, 0x0002), // Compaq iPaq HNW-100 11Mb/s 802.11b WLAN Card
+	PCMCIA_DEVICE_MANF_CARD(0x0250, 0x0002), // Samsung SWL2000-N 11Mb/s 802.11b WLAN Card
+	PCMCIA_DEVICE_MANF_CARD(0xd601, 0x0002), // Z-Com XI300 11Mb/s 802.11b WLAN Card
+	PCMCIA_DEVICE_PROD_ID12("ZoomAir 11Mbps High",  "Rate wireless Networking", 0x273fe3db, 0x32a1eaee), // ZoomAir 4100 11Mb/s 802.11b WLAN Card
+	PCMCIA_DEVICE_PROD_ID123("Instant Wireless ",  " Network PC CARD",  "Version 01.02", 0x11d901af, 0x6e9bd926, 0x4b74baa0), // Linksys WPC11 11Mbps 802.11b WLAN Card
+	PCMCIA_DEVICE_PROD_ID123("Addtron",  "AWP-100 Wireless PCMCIA",  "Version 01.02", 0xe6ec52ce, 0x8649af2, 0x4b74baa0), // Addtron AWP-100 11Mbps 802.11b WLAN Card
+	PCMCIA_DEVICE_PROD_ID123("D",  "Link DWL-650 11Mbps WLAN Card",  "Version 01.02", 0x71b18589, 0xb6f1b0ab, 0x4b74baa0), // D-Link DWL-650 11Mbps 802.11b WLAN Card
+	PCMCIA_DEVICE_PROD_ID123("SMC",  "SMC2632W",  "Version 01.02", 0xc4f8b18b, 0x474a1f2a, 0x4b74baa0), // SMC 2632W 11Mbps 802.11b WLAN Card
+	PCMCIA_DEVICE_PROD_ID1234("Intersil",  "PRISM 2_5 PCMCIA ADAPTER",  "ISL37300P",  "Eval-RevA", 0x4b801a17, 0x6345a0bf, 0xc9049a39, 0xc23adc0e), // BroMax Freeport 11Mbps 802.11b WLAN Card (Prism 2.5)
+	PCMCIA_DEVICE_PROD_ID123("U.S. Robotics",  "IEEE 802.11b PC-CARD",  "Version 01.02", 0xc7b8df9d, 0x1700d087, 0x4b74baa0), // U.S. Robotics IEEE 802.11b PC-CARD
+	PCMCIA_DEVICE_PROD_ID12("Digital Data Communications",  "WPC-0100", 0xfdd73470, 0xe0b6f146), // Level-One WPC-0100
+	PCMCIA_DEVICE_MANF_CARD(0x0274, 0x1612), // Bromax OEM 11Mbps 802.11b WLAN Card (Prism 2.5)
+	PCMCIA_DEVICE_MANF_CARD(0x0274, 0x1613), // Bromax OEM 11Mbps 802.11b WLAN Card (Prism 3)
+	PCMCIA_DEVICE_PROD_ID12("corega K.K.",  "Wireless LAN PCC-11", 0x5261440f, 0xa6405584), // corega K.K. Wireless LAN PCC-11
+	PCMCIA_DEVICE_PROD_ID12("corega K.K.",  "Wireless LAN PCCA-11", 0x5261440f, 0xdf6115f9), // corega K.K. Wireless LAN PCCA-11
+	PCMCIA_DEVICE_MANF_CARD(0xc001, 0x0008), // CONTEC FLEXSCAN/FX-DDS110-PCC
+	PCMCIA_DEVICE_PROD_ID12("PLANEX",  "GeoWave/GW-NS110", 0x209f40ab, 0x46263178), // PLANEX GeoWave/GW-NS110
+	PCMCIA_DEVICE_PROD_ID123("OEM",  "PRISM2 IEEE 802.11 PC-Card",  "Version 01.02", 0xfea54c90, 0x48f2bdd6, 0x4b74baa0), // Ambicom WL1100 11Mbps 802.11b WLAN Card
+	PCMCIA_DEVICE_PROD_ID123("LeArtery",  "SYNCBYAIR 11Mbps Wireless LAN PC Card",  "Version 01.02", 0x7e3b326a, 0x49893e92, 0x4b74baa0), // LeArtery SYNCBYAIR 11Mbps 802.11b WLAN Card
+PCMCIA_DEVICE_MANF_CARD(0x01ff, 0x0008), // Intermec MobileLAN 11Mbps 802.11b WLAN Card
+	PCMCIA_DEVICE_PROD_ID123("NETGEAR MA401 Wireless PC",  "Card",  "Version 01.00", 0xa37434e9, 0x9762e8f1, 0xa57adb8c), // NETGEAR MA401 11Mbps 802.11 WLAN Card
+	PCMCIA_DEVICE_PROD_ID1234("Intersil",  "PRISM Freedom PCMCIA Adapter",  "ISL37100P",  "Eval-RevA", 0x4b801a17, 0xf222ec2d, 0x630d52b2, 0xc23adc0e), // Intersil PRISM Freedom 11mbps 802.11 WLAN Card
+	PCMCIA_DEVICE_PROD_ID123("OTC",  "Wireless AirEZY 2411-PCC WLAN Card",  "Version 01.02", 0x4ac44287, 0x235a6bed, 0x4b74baa0), // OTC Wireless AirEZY 2411-PCC 11Mbps 802.11 WLAN Card
+	PCMCIA_DEVICE_PROD_ID1234("802.11",  "11Mbps Wireless LAN Card",  "v08C1",  ""   , 0xb67a610e, 0x655aa7b7, 0x264b451a, 0x0), // Dynalink L11HDT 11Mbps 802.11 WLAN Card
+	PCMCIA_DEVICE_MANF_CARD(0xc250, 0x0002), // Dynalink L11HDT 11Mbps 802.11 WLAN Card
+	PCMCIA_DEVICE_PROD_ID12("PROXIM",  "RangeLAN-DS/LAN PC CARD", 0xc6536a5e, 0x3f35797d), // PROXIM RangeLAN-DS/LAN PC CARD
+	PCMCIA_DEVICE_PROD_ID1234("ACTIONTEC",  "PRISM Wireless LAN PC Card",  "0381",  "RevA", 0x393089da, 0xa71e69d5, 0x90471fa9, 0x57a66194), // ACTIONTEC PRISM Wireless LAN PC Card
+	PCMCIA_DEVICE_MANF_CARD(0x1668, 0x0101), // ACTIONTEC PRISM Wireless LAN PC Card
+	PCMCIA_DEVICE_PROD_ID12("3Com",  "3CRWE737A AirConnect Wireless LAN PC Card", 0x41240e5b, 0x56010af3), // 3Com AirConnect 3CRWE737A
+	PCMCIA_DEVICE_PROD_ID12("3Com",  "3CRWE777A AirConnect Wireless LAN PCI Card"  , 0x41240e5b, 0xafc7c33e), // 3Com AirConnect 3CRWE777A
+	PCMCIA_DEVICE_PROD_ID12("ASUS",  "802_11b_PC_CARD_25", 0x78fc06ee, 0xdb9aa842), // ASUS WL-100 802.11b WLAN  PC Card
+	PCMCIA_DEVICE_PROD_ID12("ASUS",  "802_11B_CF_CARD_25", 0x78fc06ee, 0x45a50c1e), // ASUS WL-110 802.11b WLAN CF Card
+	PCMCIA_DEVICE_PROD_ID12("BUFFALO",  "WLI-CF-S11G", 0x2decece3, 0x82067c18), // BUFFALO WLI-CF-S11G 802.11b WLAN Card
+	PCMCIA_DEVICE_PROD_ID1234("The Linksys Group, Inc.", "Wireless Network CF Card", "ISL37300P", "RevA", 0xa5f472c2, 0x9c05598d, 0xc9049a39, 0x57a66194), // Linksys WCF11 11Mbps 802.11b WLAN Card (Prism 2.5)
+	PCMCIA_DEVICE_PROD_ID1234("Linksys",  "Wireless CompactFlash Card",  "",  "", 0x733cc81, 0xc52f395, 0x0, 0x0), // Linksys WCF12 11Mbps 802.11b WLAN Card (Prism 3)
+	PCMCIA_DEVICE_MANF_CARD(0x028a, 0x0673), // Linksys WCF12 11Mbps 802.11b WLAN Card (Prism 3)
+	PCMCIA_DEVICE_PROD_ID1234("NETGEAR MA401RA Wireless PC",  "Card",  "ISL37300P",  "Eval-RevA", 0x306467f, 0x9762e8f1, 0xc9049a39, 0xc23adc0e), // NETGEAR MA401RA 11Mbps 802.11 WLAN Card
+	PCMCIA_DEVICE_MANF_CARD(0xd601, 0x0005), // D-Link DCF-660W  11Mbps 802.11b WLAN Card
+	PCMCIA_DEVICE_MANF_CARD(0x02d2, 0x0001), // Microsoft Wireless Notebook Adapter MN-520
+	PCMCIA_DEVICE_MANF_CARD(0x0089, 0x0002), // AnyPoint(TM) Wireless II PC Card
+	PCMCIA_DEVICE_PROD_ID1234("D",  "Link DRC-650 11Mbps WLAN Card",  "Version 01.02",  "" , 0x71b18589, 0xf144e3ac, 0x4b74baa0, 0x0), // D-Link DRC-650 802.11b WLAN Card
+	PCMCIA_DEVICE_MANF_CARD(0x9005, 0x0021), // Adaptec AWN-8030
+	PCMCIA_DEVICE_MANF_CARD(0x000b, 0x7110), // D-Link DWL-650 rev P 802.11b WLAN card
+	// PCMCIA_DEVICE_PROD_ID1234("D-Link",  "DWL-650 Wireless PC Card RevP",  "ISL37101P-10",  "A3", 0x1a424a1c, 0x6ea57632, 0xdd97a26b, 0x56b21f52), // D-Link DWL-650 rev P 802.11b WLAN card
+	PCMCIA_DEVICE_PROD_ID123("INTERSIL",   "I-GATE 11M PC Card / PC Card plus",  "Version 01.02", 0x74c5e40d, 0x8304ff77, 0x4b74baa0), // I-Gate 11M PC Card
+	PCMCIA_DEVICE_PROD_ID1234("BENQ",  "AWL100 PCMCIA ADAPTER",  "ISL37300P",  "Eval-RevA", 0x35dadc74, 0x1f7fedb, 0xc9049a39, 0xc23adc0e), // benQ AWL100 802.11b WLAN Card
+	PCMCIA_DEVICE_MANF_CARD(0x000b, 0x7300), // benQ AWL100 802.11b WLAN Card
+	// PCMCIA_DEVICE_PROD_ID1("INTERSIL", 0x74c5e40d), // Intersil Prism 2 card
+	// PCMCIA_DEVICE_MANF_CARD(0x0156, 0x0002), // Intersil Prism 2 card
+
+	PCMCIA_DEVICE_NULL
+};
+
+MODULE_DEVICE_TABLE(pcmcia, prism2_cs_ids);
+#endif
+
+static struct pcmcia_driver prism2_cs_driver = {
+	.drv = {
+		.name = "prism2_cs",
+	},
+	.owner = THIS_MODULE,
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,15)
+	.suspend = prism2_cs_suspend,
+	.resume = prism2_cs_resume,
+	.remove = prism2_cs_remove,
+	.probe = prism2_cs_probe,
+	.id_table = prism2_cs_ids,
+#else
+	.attach = prism2sta_attach,
+	.detach = prism2sta_detach,
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,12)
+	.id_table = prism2_cs_ids,
+	.event =  prism2sta_event,
+#endif // > 2.6.12
+#endif // <= 2.6.15
+};
+#endif /* kernel_version */
+
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,15)
+#define CS_CHECK(fn, ret) \
+do { last_fn = (fn); if ((last_ret = (ret)) != 0) goto cs_failed; } while (0)
+
+#define CFG_CHECK(fn, retf) \
+do { int ret = (retf); \
+if (ret != 0) { \
+        WLAN_LOG_DEBUG(1, "CardServices(" #fn ") returned %d\n", ret); \
+        cs_error(pdev, fn, ret); \
+        goto next_entry; \
+} \
+} while (0)
+
+static void prism2_cs_remove(struct pcmcia_device *pdev)
+{
+	struct wlandevice  *wlandev;
+
+#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,17)
+        dev_link_t *link = dev_to_instance(pdev);
+#endif
+
+	DBFENTER;
+
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+	wlandev = pdev->priv;
+#else
+	wlandev = link->priv;
+#endif
+
+	if (wlandev) {
+		p80211netdev_hwremoved(wlandev);
+		unregister_wlandev(wlandev);
+		wlan_unsetup(wlandev);
+		if (wlandev->priv) {
+			hfa384x_t *hw = wlandev->priv;
+			wlandev->priv = NULL;
+			if (hw) {
+				hfa384x_destroy(hw);
+				kfree(hw);
+			}
+		}
+		kfree(wlandev);
+	}
+
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+	pdev->priv = NULL;
+        pcmcia_disable_device(pdev);
+#else
+        if (link->state & DEV_CONFIG) {
+	        if (link->win)
+			pcmcia_release_window(link->win);
+		pcmcia_release_configuration(link->handle);
+		if (link->io.NumPorts1)
+			pcmcia_release_io(link->handle, &link->io);
+		if (link->irq.AssignedIRQ)
+			pcmcia_release_irq(link->handle, &link->irq);
+
+		link->state &= ~DEV_CONFIG;
+	}
+
+	link->priv = NULL;
+	kfree(link);
+#endif
+
+	DBFEXIT;
+	return;
+}
+
+static int prism2_cs_suspend(struct pcmcia_device *pdev)
+{
+	struct wlandevice  *wlandev;
+
+#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,17)
+        dev_link_t *link = dev_to_instance(pdev);
+#endif
+
+	DBFENTER;
+
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+	wlandev = pdev->priv;
+	prism2sta_ifstate(wlandev, P80211ENUM_ifstate_disable);
+#else
+	wlandev = link->priv;
+
+        link->state |= DEV_SUSPEND;
+        if (link->state & DEV_CONFIG) {
+		prism2sta_ifstate(wlandev, P80211ENUM_ifstate_disable);
+		pcmcia_release_configuration(link->handle);
+	}
+#endif
+
+	DBFEXIT;
+
+	return 0;
+}
+
+static int prism2_cs_resume(struct pcmcia_device *pdev)
+{
+	struct wlandevice  *wlandev;
+
+#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,17)
+        dev_link_t *link = dev_to_instance(pdev);
+#endif
+
+	DBFENTER;
+
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+	wlandev = pdev->priv;
+	// XXX do something here?
+#else
+	wlandev = link->priv;
+        link->state &= ~DEV_SUSPEND;
+        if (link->state & DEV_CONFIG) {
+                pcmcia_request_configuration(link->handle, &link->conf);
+		// XXX do something here?
+	}
+#endif
+
+
+	DBFEXIT;
+
+	return 0;
+}
+
+static int prism2_cs_probe(struct pcmcia_device *pdev)
+{
+	int rval = 0;
+	struct wlandevice *wlandev = NULL;
+	hfa384x_t *hw = NULL;
+
+        config_info_t socketconf;
+        cisparse_t *parse = NULL;
+	tuple_t tuple;
+	uint8_t	buf[64];
+        int last_fn, last_ret;
+        cistpl_cftable_entry_t dflt = { 0 };
+
+#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,17)
+	dev_link_t *link;
+#endif
+
+	DBFENTER;
+
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+	/* Set up interrupt type */
+        pdev->conf.IntType = INT_MEMORY_AND_IO;
+#else
+        link = kmalloc(sizeof(dev_link_t), GFP_KERNEL);
+        if (link == NULL)
+                return -ENOMEM;
+        memset(link, 0, sizeof(dev_link_t));
+
+        link->conf.Vcc = 33;
+        link->conf.IntType = INT_MEMORY_AND_IO;
+
+        link->handle = pdev;
+        pdev->instance = link;
+        link->state |= DEV_PRESENT | DEV_CONFIG_PENDING;
+
+#endif
+
+	// VCC crap?
+        parse = kmalloc(sizeof(cisparse_t), GFP_KERNEL);
+
+	wlandev = create_wlan();
+	if (!wlandev || !parse) {
+		WLAN_LOG_ERROR("%s: Memory allocation failure.\n", dev_info);
+		rval = -EIO;
+		goto failed;
+	}
+	hw = wlandev->priv;
+
+	if ( wlan_setup(wlandev) != 0 ) {
+		WLAN_LOG_ERROR("%s: wlan_setup() failed.\n", dev_info);
+		rval = -EIO;
+		goto failed;
+	}
+
+	/* Initialize the hw struct for now */
+	hfa384x_create(hw, 0, 0, NULL);
+	hw->wlandev = wlandev;
+
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+	hw->pdev = pdev;
+	pdev->priv = wlandev;
+#else
+	hw->link = link;
+	link->priv = wlandev;
+#endif
+
+        tuple.DesiredTuple = CISTPL_CONFIG;
+        tuple.Attributes = 0;
+        tuple.TupleData = buf;
+        tuple.TupleDataMax = sizeof(buf);
+        tuple.TupleOffset = 0;
+        CS_CHECK(GetFirstTuple, pcmcia_get_first_tuple(pdev, &tuple));
+        CS_CHECK(GetTupleData, pcmcia_get_tuple_data(pdev, &tuple));
+        CS_CHECK(ParseTuple, pcmcia_parse_tuple(pdev, &tuple, parse));
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+        pdev->conf.ConfigBase = parse->config.base;
+        pdev->conf.Present = parse->config.rmask[0];
+#else
+        link->conf.ConfigBase = parse->config.base;
+        link->conf.Present = parse->config.rmask[0];
+
+	link->conf.Vcc = socketconf.Vcc;
+#endif
+        CS_CHECK(GetConfigurationInfo,
+                 pcmcia_get_configuration_info(pdev, &socketconf));
+
+	tuple.DesiredTuple = CISTPL_CFTABLE_ENTRY;
+	CS_CHECK(GetFirstTuple, pcmcia_get_first_tuple(pdev, &tuple));
+        for (;;) {
+		cistpl_cftable_entry_t *cfg = &(parse->cftable_entry);
+                CFG_CHECK(GetTupleData,
+                           pcmcia_get_tuple_data(pdev, &tuple));
+                CFG_CHECK(ParseTuple,
+                           pcmcia_parse_tuple(pdev, &tuple, parse));
+
+                if (cfg->flags & CISTPL_CFTABLE_DEFAULT)
+                        dflt = *cfg;
+                if (cfg->index == 0)
+                        goto next_entry;
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+                pdev->conf.ConfigIndex = cfg->index;
+#else
+                link->conf.ConfigIndex = cfg->index;
+#endif
+
+                /* Does this card need audio output? */
+                if (cfg->flags & CISTPL_CFTABLE_AUDIO) {
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+                        pdev->conf.Attributes |= CONF_ENABLE_SPKR;
+                        pdev->conf.Status = CCSR_AUDIO_ENA;
+#else
+                        link->conf.Attributes |= CONF_ENABLE_SPKR;
+                        link->conf.Status = CCSR_AUDIO_ENA;
+#endif
+                }
+
+                /* Use power settings for Vcc and Vpp if present */
+                /*  Note that the CIS values need to be rescaled */
+                if (cfg->vcc.present & (1 << CISTPL_POWER_VNOM)) {
+                        if (socketconf.Vcc != cfg->vcc.param[CISTPL_POWER_VNOM] /
+                            10000 && !prism2_ignorevcc) {
+                                WLAN_LOG_DEBUG(1, "  Vcc mismatch - skipping"
+                                       " this entry\n");
+                                goto next_entry;
+                        }
+                } else if (dflt.vcc.present & (1 << CISTPL_POWER_VNOM)) {
+                        if (socketconf.Vcc != dflt.vcc.param[CISTPL_POWER_VNOM] /
+                            10000 && !prism2_ignorevcc) {
+                                WLAN_LOG_DEBUG(1, "  Vcc (default) mismatch "
+                                       "- skipping this entry\n");
+                                goto next_entry;
+                        }
+                }
+
+                if (cfg->vpp1.present & (1 << CISTPL_POWER_VNOM)) {
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+                        pdev->conf.Vpp =
+                                cfg->vpp1.param[CISTPL_POWER_VNOM] / 10000;
+#else
+                        link->conf.Vpp1 = link->conf.Vpp2 =
+                                cfg->vpp1.param[CISTPL_POWER_VNOM] / 10000;
+#endif
+                } else if (dflt.vpp1.present & (1 << CISTPL_POWER_VNOM)) {
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+                        pdev->conf.Vpp =
+                                dflt.vpp1.param[CISTPL_POWER_VNOM] / 10000;
+#else
+                        link->conf.Vpp1 = link->conf.Vpp2 =
+                                dflt.vpp1.param[CISTPL_POWER_VNOM] / 10000;
+#endif
+		}
+
+		/* Do we need to allocate an interrupt? */
+		/* HACK: due to a bad CIS....we ALWAYS need an interrupt */
+		/* if (cfg->irq.IRQInfo1 || dflt.irq.IRQInfo1) */
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+		pdev->conf.Attributes |= CONF_ENABLE_IRQ;
+#else
+		link->conf.Attributes |= CONF_ENABLE_IRQ;
+#endif
+
+		/* IO window settings */
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+		pdev->io.NumPorts1 = pdev->io.NumPorts2 = 0;
+		if ((cfg->io.nwin > 0) || (dflt.io.nwin > 0)) {
+			cistpl_io_t *io = (cfg->io.nwin) ? &cfg->io : &dflt.io;
+			pdev->io.Attributes1 = IO_DATA_PATH_WIDTH_AUTO;
+			if (!(io->flags & CISTPL_IO_8BIT))
+				pdev->io.Attributes1 = IO_DATA_PATH_WIDTH_16;
+			if (!(io->flags & CISTPL_IO_16BIT))
+				pdev->io.Attributes1 = IO_DATA_PATH_WIDTH_8;
+			pdev->io.BasePort1 = io->win[0].base;
+			if  ( pdev->io.BasePort1 != 0 ) {
+				WLAN_LOG_WARNING(
+				"Brain damaged CIS: hard coded iobase="
+				"0x%x, try letting pcmcia_cs decide...\n",
+				pdev->io.BasePort1 );
+				pdev->io.BasePort1 = 0;
+			}
+			pdev->io.NumPorts1 = io->win[0].len;
+			if (io->nwin > 1) {
+				pdev->io.Attributes2 = pdev->io.Attributes1;
+				pdev->io.BasePort2 = io->win[1].base;
+				pdev->io.NumPorts2 = io->win[1].len;
+			}
+		}
+		/* This reserves IO space but doesn't actually enable it */
+		CFG_CHECK(RequestIO, pcmcia_request_io(pdev, &pdev->io));
+#else
+		link->io.NumPorts1 = link->io.NumPorts2 = 0;
+		if ((cfg->io.nwin > 0) || (dflt.io.nwin > 0)) {
+			cistpl_io_t *io = (cfg->io.nwin) ? &cfg->io : &dflt.io;
+			link->io.Attributes1 = IO_DATA_PATH_WIDTH_AUTO;
+			if (!(io->flags & CISTPL_IO_8BIT))
+				link->io.Attributes1 = IO_DATA_PATH_WIDTH_16;
+			if (!(io->flags & CISTPL_IO_16BIT))
+				link->io.Attributes1 = IO_DATA_PATH_WIDTH_8;
+			link->io.BasePort1 = io->win[0].base;
+			if  ( link->io.BasePort1 != 0 ) {
+				WLAN_LOG_WARNING(
+				"Brain damaged CIS: hard coded iobase="
+				"0x%x, try letting pcmcia_cs decide...\n",
+				link->io.BasePort1 );
+				link->io.BasePort1 = 0;
+			}
+			link->io.NumPorts1 = io->win[0].len;
+			if (io->nwin > 1) {
+				link->io.Attributes2 = link->io.Attributes1;
+				link->io.BasePort2 = io->win[1].base;
+				link->io.NumPorts2 = io->win[1].len;
+			}
+		}
+		/* This reserves IO space but doesn't actually enable it */
+		CFG_CHECK(RequestIO, pcmcia_request_io(pdev, &link->io));
+#endif
+		/* If we got this far, we're cool! */
+		break;
+
+	next_entry:
+		if (cfg->flags & CISTPL_CFTABLE_DEFAULT)
+			dflt = *cfg;
+		CS_CHECK(GetNextTuple, pcmcia_get_next_tuple(pdev, &tuple));
+
+	}
+
+	/* Let pcmcia know the device name */
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+	pdev->dev_node = &hw->node;
+#else
+	link->dev = &hw->node;
+#endif
+
+	/* Register the network device and get assigned a name */
+	SET_MODULE_OWNER(wlandev->netdev);
+	SET_NETDEV_DEV(wlandev->netdev,  &handle_to_dev(pdev));
+	if (register_wlandev(wlandev) != 0) {
+		WLAN_LOG_NOTICE("prism2sta_cs: register_wlandev() failed.\n");
+		goto failed;
+	}
+
+	strcpy(hw->node.dev_name, wlandev->name);
+
+	/* Allocate an interrupt line.  Note that this does not assign a */
+	/* handler to the interrupt, unless the 'Handler' member of the */
+	/* irq structure is initialized. */
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+	if (pdev->conf.Attributes & CONF_ENABLE_IRQ) {
+		pdev->irq.IRQInfo1 = IRQ_LEVEL_ID;
+		pdev->irq.Attributes = IRQ_TYPE_EXCLUSIVE | IRQ_HANDLE_PRESENT;
+		pdev->irq.Handler = hfa384x_interrupt;
+		pdev->irq.Instance = wlandev;
+		CS_CHECK(RequestIRQ, pcmcia_request_irq(pdev, &pdev->irq));
+	}
+#else
+	if (link->conf.Attributes & CONF_ENABLE_IRQ) {
+		link->irq.IRQInfo1 = IRQ_LEVEL_ID;
+		link->irq.Attributes = IRQ_TYPE_EXCLUSIVE | IRQ_HANDLE_PRESENT;
+		link->irq.Handler = hfa384x_interrupt;
+		link->irq.Instance = wlandev;
+		CS_CHECK(RequestIRQ, pcmcia_request_irq(pdev, &link->irq));
+	}
+#endif
+
+	/* This actually configures the PCMCIA socket -- setting up */
+	/* the I/O windows and the interrupt mapping, and putting the */
+	/* card and host interface into "Memory and IO" mode. */
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+	CS_CHECK(RequestConfiguration, pcmcia_request_configuration(pdev, &pdev->conf));
+#else
+	CS_CHECK(RequestConfiguration, pcmcia_request_configuration(pdev, &link->conf));
+#endif
+
+	/* Fill the netdevice with this info */
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+	wlandev->netdev->irq = pdev->irq.AssignedIRQ;
+	wlandev->netdev->base_addr = pdev->io.BasePort1;
+#else
+	wlandev->netdev->irq = link->irq.AssignedIRQ;
+	wlandev->netdev->base_addr = link->io.BasePort1;
+#endif
+
+	/* And the rest of the hw structure */
+	hw->irq = wlandev->netdev->irq;
+	hw->iobase = wlandev->netdev->base_addr;
+
+#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,17)
+	link->state |= DEV_CONFIG;
+	link->state &= ~DEV_CONFIG_PENDING;
+#endif
+
+	/* And now we're done! */
+	wlandev->msdstate = WLAN_MSD_HWPRESENT;
+
+	goto done;
+
+ cs_failed:
+        cs_error(pdev, last_fn, last_ret);
+
+failed:
+	// wlandev, hw, etc etc..
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+	pdev->priv = NULL;
+#else
+	pdev->instance = NULL;
+	if (link) {
+		link->priv = NULL;
+		kfree(link);
+	}
+#endif
+	if (wlandev) {
+		wlan_unsetup(wlandev);
+		if (wlandev->priv) {
+			hw = wlandev->priv;
+			wlandev->priv = NULL;
+			if (hw) {
+				hfa384x_destroy(hw);
+				kfree(hw);
+			}
+		}
+		kfree(wlandev);
+	}
+
+done:
+	if (parse) kfree(parse);
+
+	DBFEXIT;
+	return rval;
+}
+#else  // <= 2.6.15
+#define CS_CHECK(fn, ret) \
+do { last_fn = (fn); if ((last_ret = (ret)) != 0) goto cs_failed; } while (0)
+
+#define CFG_CHECK(fn, retf) \
+do { int ret = (retf); \
+if (ret != 0) { \
+        WLAN_LOG_DEBUG(1, "CardServices(" #fn ") returned %d\n", ret); \
+        cs_error(link->handle, fn, ret); \
+        goto next_entry; \
+} \
+} while (0)
+
+/*----------------------------------------------------------------
+* prism2sta_attach
+*
+* Half of the attach/detach pair.  Creates and registers a device
+* instance with Card Services.  In this case, it also creates the
+* wlandev structure and device private structure.  These are
+* linked to the device instance via its priv member.
+*
+* Arguments:
+*	none
+*
+* Returns:
+*	A valid ptr to dev_link_t on success, NULL otherwise
+*
+* Side effects:
+*
+*
+* Call context:
+*	process thread (insmod/init_module/register_pccard_driver)
+----------------------------------------------------------------*/
+dev_link_t *prism2sta_attach(void)
+{
+	client_reg_t		client_reg;
+	int			result;
+	dev_link_t		*link = NULL;
+	wlandevice_t		*wlandev = NULL;
+	hfa384x_t		*hw = NULL;
+
+	DBFENTER;
+
+	/* Alloc our structures */
+	link =		kmalloc(sizeof(struct dev_link_t), GFP_KERNEL);
+
+	if (!link || ((wlandev = create_wlan()) == NULL)) {
+		WLAN_LOG_ERROR("%s: Memory allocation failure.\n", dev_info);
+		result = -EIO;
+		goto failed;
+	}
+	hw = wlandev->priv;
+
+	/* Clear all the structs */
+	memset(link, 0, sizeof(struct dev_link_t));
+
+	if ( wlan_setup(wlandev) != 0 ) {
+		WLAN_LOG_ERROR("%s: wlan_setup() failed.\n", dev_info);
+		result = -EIO;
+		goto failed;
+	}
+
+	/* Initialize the hw struct for now */
+	hfa384x_create(hw, 0, 0, NULL);
+	hw->wlandev = wlandev;
+
+	/* Initialize the PC card device object. */
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,0))
+	init_timer(&link->release);
+	link->release.function = &prism2sta_release;
+	link->release.data = (u_long)link;
+#endif
+	link->conf.IntType = INT_MEMORY_AND_IO;
+	link->priv = wlandev;
+#if (defined(CS_RELEASE_CODE) && (CS_RELEASE_CODE < 0x2911))
+	link->irq.Instance = wlandev;
+#endif
+
+	/* Link in to the list of devices managed by this driver */
+	link->next = dev_list;
+	dev_list = link;
+
+	/* Register with Card Services */
+	client_reg.dev_info = &dev_info;
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,11) )
+	client_reg.Attributes = INFO_IO_CLIENT | INFO_CARD_SHARE;
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,13) )
+	client_reg.EventMask =
+		CS_EVENT_CARD_INSERTION | CS_EVENT_CARD_REMOVAL |
+		CS_EVENT_RESET_REQUEST |
+		CS_EVENT_RESET_PHYSICAL | CS_EVENT_CARD_RESET |
+		CS_EVENT_PM_SUSPEND | CS_EVENT_PM_RESUME;
+	client_reg.event_handler = &prism2sta_event;
+#endif
+
+	client_reg.Version = 0x0210;
+	client_reg.event_callback_args.client_data = link;
+
+	result = pcmcia_register_client(&link->handle, &client_reg);
+	if (result != 0) {
+		cs_error(link->handle, RegisterClient, result);
+		prism2sta_detach(link);
+		return NULL;
+	}
+
+	goto done;
+
+ failed:
+	if (link)	kfree(link);
+	if (wlandev)	kfree(wlandev);
+	if (hw)		kfree(hw);
+	link = NULL;
+
+ done:
+	DBFEXIT;
+	return link;
+}
+
+
+/*----------------------------------------------------------------
+* prism2sta_detach
+*
+* Remove one of the device instances managed by this driver.
+*   Search the list for the given instance,
+*   check our flags for a waiting timer'd release call
+*   call release
+*   Deregister the instance with Card Services
+*   (netdevice) unregister the network device.
+*   unlink the instance from the list
+*   free the link, priv, and priv->priv memory
+* Note: the dev_list variable is a driver scoped static used to
+*	maintain a list of device instances managed by this
+*	driver.
+*
+* Arguments:
+*	link	ptr to the instance to detach
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*	the link structure is gone, the netdevice is gone
+*
+* Call context:
+*	Might be interrupt, don't block.
+----------------------------------------------------------------*/
+void prism2sta_detach(dev_link_t *link)
+{
+	dev_link_t		**linkp;
+	wlandevice_t		*wlandev;
+	hfa384x_t		*hw;
+
+	DBFENTER;
+
+	/* Locate prev device structure */
+	for (linkp = &dev_list; *linkp; linkp = &(*linkp)->next) {
+		if (*linkp == link) break;
+	}
+
+	if (*linkp != NULL) {
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,4,0))
+		unsigned long	flags;
+		/* Get rid of any timer'd release call */
+		save_flags(flags);
+		cli();
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,0))
+		if (link->state & DEV_RELEASE_PENDING) {
+			del_timer_sync(&link->release);
+			link->state &= ~DEV_RELEASE_PENDING;
+		}
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,4,0))
+		restore_flags(flags);
+#endif
+
+		/* If link says we're still config'd, call release */
+		if (link->state & DEV_CONFIG) {
+			prism2sta_release((u_long)link);
+			if (link->state & DEV_STALE_CONFIG) {
+				link->state |= DEV_STALE_LINK;
+				return;
+			}
+		}
+
+		/* Tell Card Services we're not around any more */
+		if (link->handle) {
+			pcmcia_deregister_client(link->handle);
+		}
+
+		/* Unlink device structure, free bits */
+		*linkp = link->next;
+		if ( link->priv != NULL ) {
+			wlandev = (wlandevice_t*)link->priv;
+			p80211netdev_hwremoved(wlandev);
+			if (link->dev != NULL) {
+				unregister_wlandev(wlandev);
+			}
+			wlan_unsetup(wlandev);
+			if (wlandev->priv) {
+				hw = wlandev->priv;
+				wlandev->priv = NULL;
+				if (hw) {
+					hfa384x_destroy(hw);
+					kfree(hw);
+				}
+			}
+			link->priv = NULL;
+			kfree(wlandev);
+		}
+		kfree(link);
+	}
+
+	DBFEXIT;
+	return;
+}
+
+/*----------------------------------------------------------------
+* prism2sta_config
+*
+* Half of the config/release pair.  Usually called in response to
+* a card insertion event.  At this point, we _know_ there's some
+* physical device present.  That means we can start poking around
+* at the CIS and at any device specific config data we want.
+*
+* Note the gotos and the macros.  I recoded this once without
+* them, and it got incredibly ugly.  It's actually simpler with
+* them.
+*
+* Arguments:
+*	link	the dev_link_t structure created in attach that
+*		represents this device instance.
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*	Resources (irq, io, mem) are allocated
+*	The pcmcia dev_link->node->name is set
+*	(For netcards) The device structure is finished and,
+*	  most importantly, registered.  This means that there
+*	  is now a _named_ device that can be configured from
+*	  userland.
+*
+* Call context:
+*	May be called from a timer.  Don't block!
+----------------------------------------------------------------*/
+#define CS_CHECK(fn, ret) \
+do { last_fn = (fn); if ((last_ret = (ret)) != 0) goto cs_failed; } while (0)
+
+#define CFG_CHECK(fn, retf) \
+do { int ret = (retf); \
+if (ret != 0) { \
+        WLAN_LOG_DEBUG(1, "CardServices(" #fn ") returned %d\n", ret); \
+        cs_error(link->handle, fn, ret); \
+        goto next_entry; \
+} \
+} while (0)
+
+void prism2sta_config(dev_link_t *link)
+{
+	client_handle_t		handle;
+	wlandevice_t		*wlandev;
+	hfa384x_t               *hw;
+	int			last_fn;
+	int			last_ret;
+	tuple_t			tuple;
+	cisparse_t		parse;
+	config_info_t		socketconf;
+	UINT8			buf[64];
+	int			minVcc = 0;
+	int			maxVcc = 0;
+	cistpl_cftable_entry_t	dflt = { 0 };
+
+	DBFENTER;
+
+	handle = link->handle;
+	wlandev = (wlandevice_t*)link->priv;
+	hw = wlandev->priv;
+
+	/* Collect the config register info */
+	tuple.DesiredTuple = CISTPL_CONFIG;
+	tuple.Attributes = 0;
+	tuple.TupleData = buf;
+	tuple.TupleDataMax = sizeof(buf);
+	tuple.TupleOffset = 0;
+	CS_CHECK(GetFirstTuple, pcmcia_get_first_tuple(handle, &tuple));
+	CS_CHECK(GetTupleData, pcmcia_get_tuple_data(handle, &tuple));
+	CS_CHECK(ParseTuple, pcmcia_parse_tuple(handle, &tuple, &parse));
+
+	link->conf.ConfigBase = parse.config.base;
+	link->conf.Present = parse.config.rmask[0];
+
+	/* Configure card */
+	link->state |= DEV_CONFIG;
+
+	/* Acquire the current socket config (need Vcc setting) */
+	CS_CHECK(GetConfigurationInfo, pcmcia_get_configuration_info(handle, &socketconf));
+
+	/* Loop through the config table entries until we find one that works */
+	/* Assumes a complete and valid CIS */
+	tuple.DesiredTuple = CISTPL_CFTABLE_ENTRY;
+	CS_CHECK(GetFirstTuple, pcmcia_get_first_tuple(handle, &tuple));
+	while (1) {
+		cistpl_cftable_entry_t *cfg = &(parse.cftable_entry);
+		CFG_CHECK(GetTupleData, pcmcia_get_tuple_data(handle, &tuple));
+		CFG_CHECK(ParseTuple, pcmcia_parse_tuple(handle, &tuple, &parse));
+
+		if (cfg->index == 0) goto next_entry;
+		link->conf.ConfigIndex = cfg->index;
+
+		/* Lets print out the Vcc that the controller+pcmcia-cs set
+		 * for us, cause that's what we're going to use.
+		 */
+		WLAN_LOG_DEBUG(1,"Initial Vcc=%d/10v\n", socketconf.Vcc);
+		if (prism2_ignorevcc) {
+			link->conf.Vcc = socketconf.Vcc;
+			goto skipvcc;
+		}
+
+		/* Use power settings for Vcc and Vpp if present */
+		/* Note that the CIS values need to be rescaled */
+		if (cfg->vcc.present & (1<<CISTPL_POWER_VNOM)) {
+			WLAN_LOG_DEBUG(1, "Vcc obtained from curtupl.VNOM\n");
+			minVcc = maxVcc =
+				cfg->vcc.param[CISTPL_POWER_VNOM]/10000;
+		} else if (dflt.vcc.present & (1<<CISTPL_POWER_VNOM)) {
+			WLAN_LOG_DEBUG(1, "Vcc set from dflt.VNOM\n");
+			minVcc = maxVcc =
+				dflt.vcc.param[CISTPL_POWER_VNOM]/10000;
+		} else if ((cfg->vcc.present & (1<<CISTPL_POWER_VMAX)) &&
+			   (cfg->vcc.present & (1<<CISTPL_POWER_VMIN)) ) {
+			WLAN_LOG_DEBUG(1, "Vcc set from curtupl(VMIN,VMAX)\n");			minVcc = cfg->vcc.param[CISTPL_POWER_VMIN]/10000;
+			maxVcc = cfg->vcc.param[CISTPL_POWER_VMAX]/10000;
+		} else if ((dflt.vcc.present & (1<<CISTPL_POWER_VMAX)) &&
+			   (dflt.vcc.present & (1<<CISTPL_POWER_VMIN)) ) {
+			WLAN_LOG_DEBUG(1, "Vcc set from dflt(VMIN,VMAX)\n");
+			minVcc = dflt.vcc.param[CISTPL_POWER_VMIN]/10000;
+			maxVcc = dflt.vcc.param[CISTPL_POWER_VMAX]/10000;
+		}
+
+		if ( socketconf.Vcc >= minVcc && socketconf.Vcc <= maxVcc) {
+			link->conf.Vcc = socketconf.Vcc;
+		} else {
+			/* [MSM]: Note that I've given up trying to change
+			 * the Vcc if a change is indicated.  It seems the
+			 * system&socketcontroller&card vendors can't seem
+			 * to get it right, so I'm tired of trying to hack
+			 * my way around it.  pcmcia-cs does its best using
+			 * the voltage sense pins but sometimes the controller
+			 * lies.  Then, even if we have a good read on the VS
+			 * pins, some system designs will silently ignore our
+			 * requests to set the voltage.  Additionally, some
+			 * vendors have 3.3v indicated on their sense pins,
+			 * but 5v specified in the CIS or vice-versa.  I've
+			 * had it.  My only recommendation is "let the buyer
+			 * beware".  Your system might supply 5v to a 3v card
+			 * (possibly causing damage) or a 3v capable system
+			 * might supply 5v to a 3v capable card (wasting
+			 * precious battery life).
+			 * My only recommendation (if you care) is to get
+			 * yourself an extender card (I don't know where, I
+			 * have only one myself) and a meter and test it for
+			 * yourself.
+			 */
+			goto next_entry;
+		}
+skipvcc:
+		WLAN_LOG_DEBUG(1, "link->conf.Vcc=%d\n", link->conf.Vcc);
+
+		/* Do we need to allocate an interrupt? */
+		/* HACK: due to a bad CIS....we ALWAYS need an interrupt */
+		/* if (cfg->irq.IRQInfo1 || dflt.irq.IRQInfo1) */
+			link->conf.Attributes |= CONF_ENABLE_IRQ;
+
+		/* IO window settings */
+		link->io.NumPorts1 = link->io.NumPorts2 = 0;
+		if ((cfg->io.nwin > 0) || (dflt.io.nwin > 0)) {
+			cistpl_io_t *io = (cfg->io.nwin) ? &cfg->io : &dflt.io;
+			link->io.Attributes1 = IO_DATA_PATH_WIDTH_AUTO;
+			if (!(io->flags & CISTPL_IO_8BIT))
+				link->io.Attributes1 = IO_DATA_PATH_WIDTH_16;
+			if (!(io->flags & CISTPL_IO_16BIT))
+				link->io.Attributes1 = IO_DATA_PATH_WIDTH_8;
+			link->io.BasePort1 = io->win[0].base;
+			if  ( link->io.BasePort1 != 0 ) {
+				WLAN_LOG_WARNING(
+				"Brain damaged CIS: hard coded iobase="
+				"0x%x, try letting pcmcia_cs decide...\n",
+				link->io.BasePort1 );
+				link->io.BasePort1 = 0;
+			}
+			link->io.NumPorts1 = io->win[0].len;
+			if (io->nwin > 1) {
+				link->io.Attributes2 = link->io.Attributes1;
+				link->io.BasePort2 = io->win[1].base;
+				link->io.NumPorts2 = io->win[1].len;
+			}
+		}
+
+		/* This reserves IO space but doesn't actually enable it */
+		CFG_CHECK(RequestIO, pcmcia_request_io(link->handle, &link->io));
+
+		/* If we got this far, we're cool! */
+		break;
+
+next_entry:
+		if (cfg->flags & CISTPL_CFTABLE_DEFAULT)
+			dflt = *cfg;
+		CS_CHECK(GetNextTuple,
+                         pcmcia_get_next_tuple(handle, &tuple));
+	}
+
+	/* Allocate an interrupt line.  Note that this does not assign a */
+	/* handler to the interrupt, unless the 'Handler' member of the */
+	/* irq structure is initialized. */
+	if (link->conf.Attributes & CONF_ENABLE_IRQ)
+	{
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,11) )
+		int			i;
+		link->irq.IRQInfo1 = IRQ_INFO2_VALID | IRQ_LEVEL_ID;
+		if (irq_list[0] == -1)
+			link->irq.IRQInfo2 = irq_mask;
+		else
+			for (i=0; i<4; i++)
+				link->irq.IRQInfo2 |= 1 << irq_list[i];
+#else
+		link->irq.IRQInfo1 = IRQ_LEVEL_ID;
+#endif
+		link->irq.Attributes = IRQ_TYPE_EXCLUSIVE | IRQ_HANDLE_PRESENT;
+		link->irq.Handler = hfa384x_interrupt;
+		link->irq.Instance = wlandev;
+		CS_CHECK(RequestIRQ, pcmcia_request_irq(link->handle, &link->irq));
+	}
+
+	/* This actually configures the PCMCIA socket -- setting up */
+	/* the I/O windows and the interrupt mapping, and putting the */
+	/* card and host interface into "Memory and IO" mode. */
+	CS_CHECK(RequestConfiguration, pcmcia_request_configuration(link->handle, &link->conf));
+
+	/* Fill the netdevice with this info */
+	wlandev->netdev->irq = link->irq.AssignedIRQ;
+	wlandev->netdev->base_addr = link->io.BasePort1;
+
+	/* Report what we've done */
+	WLAN_LOG_INFO("%s: index 0x%02x: Vcc %d.%d",
+		dev_info, link->conf.ConfigIndex,
+		link->conf.Vcc/10, link->conf.Vcc%10);
+	if (link->conf.Vpp1)
+		printk(", Vpp %d.%d", link->conf.Vpp1/10, link->conf.Vpp1%10);
+	if (link->conf.Attributes & CONF_ENABLE_IRQ)
+		printk(", irq %d", link->irq.AssignedIRQ);
+	if (link->io.NumPorts1)
+		printk(", io 0x%04x-0x%04x", link->io.BasePort1, link->io.BasePort1+link->io.NumPorts1-1);
+	if (link->io.NumPorts2)
+		printk(" & 0x%04x-0x%04x", link->io.BasePort2, link->io.BasePort2+link->io.NumPorts2-1);
+	printk("\n");
+
+	link->state &= ~DEV_CONFIG_PENDING;
+
+	/* Let pcmcia know the device name */
+	link->dev = &hw->node;
+
+	/* Register the network device and get assigned a name */
+	SET_MODULE_OWNER(wlandev->netdev);
+#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,11) )
+	SET_NETDEV_DEV(wlandev->netdev,  &handle_to_dev(link->handle));
+#endif
+	if (register_wlandev(wlandev) != 0) {
+		WLAN_LOG_NOTICE("prism2sta_cs: register_wlandev() failed.\n");
+		goto failed;
+	}
+
+	strcpy(hw->node.dev_name, wlandev->name);
+
+	/* Any device custom config/query stuff should be done here */
+	/* For a netdevice, we should at least grab the mac address */
+
+	return;
+cs_failed:
+	cs_error(link->handle, last_fn, last_ret);
+	WLAN_LOG_ERROR("NextTuple failure? It's probably a Vcc mismatch.\n");
+
+failed:
+	prism2sta_release((u_long)link);
+	return;
+}
+
+/*----------------------------------------------------------------
+* prism2sta_release
+*
+* Half of the config/release pair.  Usually called in response to
+* a card ejection event.  Checks to make sure no higher layers
+* are still (or think they are) using the card via the link->open
+* field.
+*
+* NOTE: Don't forget to increment the link->open variable in the
+*  device_open method, and decrement it in the device_close
+*  method.
+*
+* Arguments:
+*	arg	a generic 32 bit variable.  It's the value that
+*		we assigned to link->release.data in sta_attach().
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*	All resources should be released after this function
+*	executes and finds the device !open.
+*
+* Call context:
+*	Possibly in a timer context.  Don't do anything that'll
+*	block.
+----------------------------------------------------------------*/
+void prism2sta_release(u_long arg)
+{
+        dev_link_t	*link = (dev_link_t *)arg;
+
+	DBFENTER;
+
+	/* First thing we should do is get the MSD back to the
+	 * HWPRESENT state.  I.e. everything quiescent.
+	 */
+	prism2sta_ifstate(link->priv, P80211ENUM_ifstate_disable);
+
+        if (link->open) {
+		/* TODO: I don't think we're even using this bit of code
+		 * and I don't think it's hurting us at the moment.
+		 */
+                WLAN_LOG_DEBUG(1,
+			"prism2sta_cs: release postponed, '%s' still open\n",
+			link->dev->dev_name);
+                link->state |= DEV_STALE_CONFIG;
+                return;
+        }
+
+        pcmcia_release_configuration(link->handle);
+        pcmcia_release_io(link->handle, &link->io);
+        pcmcia_release_irq(link->handle, &link->irq);
+
+        link->state &= ~(DEV_CONFIG | DEV_RELEASE_PENDING);
+
+	DBFEXIT;
+}
+
+/*----------------------------------------------------------------
+* prism2sta_event
+*
+* Handler for card services events.
+*
+* Arguments:
+*	event		The event code
+*	priority	hi/low - REMOVAL is the only hi
+*	args		ptr to card services struct containing info about
+*			pcmcia status
+*
+* Returns:
+*	Zero on success, non-zero otherwise
+*
+* Side effects:
+*
+*
+* Call context:
+*	Both interrupt and process thread, depends on the event.
+----------------------------------------------------------------*/
+static int
+prism2sta_event (
+	event_t event,
+	int priority,
+	event_callback_args_t *args)
+{
+	int			result = 0;
+	dev_link_t		*link = (dev_link_t *) args->client_data;
+	wlandevice_t		*wlandev = (wlandevice_t*)link->priv;
+	hfa384x_t		*hw = NULL;
+
+	DBFENTER;
+
+	if (wlandev) hw = wlandev->priv;
+
+	switch (event)
+	{
+	case CS_EVENT_CARD_INSERTION:
+		WLAN_LOG_DEBUG(5,"event is INSERTION\n");
+		link->state |= DEV_PRESENT | DEV_CONFIG_PENDING;
+		prism2sta_config(link);
+		if (!(link->state & DEV_CONFIG)) {
+			wlandev->netdev->irq = 0;
+			WLAN_LOG_ERROR(
+				"%s: Initialization failed!\n", dev_info);
+			wlandev->msdstate = WLAN_MSD_HWFAIL;
+			break;
+		}
+
+		/* Fill in the rest of the hw struct */
+		hw->irq = wlandev->netdev->irq;
+		hw->iobase = wlandev->netdev->base_addr;
+		hw->link = link;
+
+		if (prism2_doreset) {
+			result = hfa384x_corereset(hw,
+					prism2_reset_holdtime,
+					prism2_reset_settletime, 0);
+			if ( result ) {
+				WLAN_LOG_ERROR(
+					"corereset() failed, result=%d.\n",
+					result);
+				wlandev->msdstate = WLAN_MSD_HWFAIL;
+				break;
+			}
+		}
+
+#if 0
+		/*
+		 * TODO: test_hostif() not implemented yet.
+		 */
+		result = hfa384x_test_hostif(hw);
+		if (result) {
+			WLAN_LOG_ERROR(
+			"test_hostif() failed, result=%d.\n", result);
+			wlandev->msdstate = WLAN_MSD_HWFAIL;
+			break;
+		}
+#endif
+		wlandev->msdstate = WLAN_MSD_HWPRESENT;
+		break;
+
+	case CS_EVENT_CARD_REMOVAL:
+		WLAN_LOG_DEBUG(5,"event is REMOVAL\n");
+		link->state &= ~DEV_PRESENT;
+
+		if (wlandev) {
+			p80211netdev_hwremoved(wlandev);
+		}
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,0))
+		if (link->state & DEV_CONFIG)
+		{
+			link->release.expires = jiffies + (HZ/20);
+			add_timer(&link->release);
+		}
+#endif
+		break;
+	case CS_EVENT_RESET_REQUEST:
+		WLAN_LOG_DEBUG(5,"event is RESET_REQUEST\n");
+		WLAN_LOG_NOTICE(
+			"prism2 card reset not supported "
+			"due to post-reset user mode configuration "
+			"requirements.\n");
+		WLAN_LOG_NOTICE(
+			"  From user mode, use "
+			"'cardctl suspend;cardctl resume' "
+			"instead.\n");
+		break;
+	case CS_EVENT_RESET_PHYSICAL:
+	case CS_EVENT_CARD_RESET:
+		WLAN_LOG_WARNING("Rx'd CS_EVENT_RESET_xxx, should not "
+			"be possible since RESET_REQUEST was denied.\n");
+		break;
+
+	case CS_EVENT_PM_SUSPEND:
+		WLAN_LOG_DEBUG(5,"event is SUSPEND\n");
+		link->state |= DEV_SUSPEND;
+		if (link->state & DEV_CONFIG)
+		{
+			prism2sta_ifstate(wlandev, P80211ENUM_ifstate_disable);
+			pcmcia_release_configuration(link->handle);
+		}
+		break;
+
+	case CS_EVENT_PM_RESUME:
+		WLAN_LOG_DEBUG(5,"event is RESUME\n");
+		link->state &= ~DEV_SUSPEND;
+		if (link->state & DEV_CONFIG) {
+			pcmcia_request_configuration(link->handle, &link->conf);
+		}
+		break;
+	}
+
+	DBFEXIT;
+	return 0;  /* noone else does anthing with the return value */
+}
+#endif // <= 2.6.15
+
+
+
+int hfa384x_corereset(hfa384x_t *hw, int holdtime, int settletime, int genesis)
+{
+	int		result = 0;
+	conf_reg_t	reg;
+	UINT8		corsave;
+	DBFENTER;
+
+	WLAN_LOG_DEBUG(3, "Doing reset via CardServices().\n");
+
+	/* Collect COR */
+	reg.Function = 0;
+	reg.Action = CS_READ;
+	reg.Offset = CISREG_COR;
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+	result = pcmcia_access_configuration_register(hw->pdev, &reg);
+#else
+	result = pcmcia_access_configuration_register(
+			hw->link->handle,
+			&reg);
+#endif
+	if (result != CS_SUCCESS ) {
+		WLAN_LOG_ERROR(
+			":0: AccessConfigurationRegister(CS_READ) failed,"
+			"result=%d.\n", result);
+		result = -EIO;
+	}
+	corsave = reg.Value;
+
+	/* Write reset bit (BIT7) */
+	reg.Value |= BIT7;
+	reg.Action = CS_WRITE;
+	reg.Offset = CISREG_COR;
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+	result = pcmcia_access_configuration_register(hw->pdev, &reg);
+#else
+	result = pcmcia_access_configuration_register(
+			hw->link->handle,
+			&reg);
+#endif
+	if (result != CS_SUCCESS ) {
+		WLAN_LOG_ERROR(
+			":1: AccessConfigurationRegister(CS_WRITE) failed,"
+			"result=%d.\n", result);
+		result = -EIO;
+	}
+
+	/* Hold for holdtime */
+	mdelay(holdtime);
+
+	if (genesis) {
+		reg.Value = genesis;
+		reg.Action = CS_WRITE;
+		reg.Offset = CISREG_CCSR;
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+		result = pcmcia_access_configuration_register(hw->pdev, &reg);
+#else
+		result = pcmcia_access_configuration_register(
+				      hw->link->handle,
+				      &reg);
+#endif
+		if (result != CS_SUCCESS ) {
+			WLAN_LOG_ERROR(
+				":1: AccessConfigurationRegister(CS_WRITE) failed,"
+				"result=%d.\n", result);
+			result = -EIO;
+		}
+	}
+
+	/* Hold for holdtime */
+	mdelay(holdtime);
+
+	/* Clear reset bit */
+	reg.Value &= ~BIT7;
+	reg.Action = CS_WRITE;
+	reg.Offset = CISREG_COR;
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+	result = pcmcia_access_configuration_register(hw->pdev, &reg);
+#else
+	result = pcmcia_access_configuration_register(
+				      hw->link->handle,
+				      &reg);
+#endif
+	if (result != CS_SUCCESS ) {
+		WLAN_LOG_ERROR(
+			":2: AccessConfigurationRegister(CS_WRITE) failed,"
+			"result=%d.\n", result);
+		result = -EIO;
+		goto done;
+	}
+
+	/* Wait for settletime */
+	mdelay(settletime);
+
+	/* Set non-reset bits back what they were */
+	reg.Value = corsave;
+	reg.Action = CS_WRITE;
+	reg.Offset = CISREG_COR;
+#if LINUX_VERSION_CODE > KERNEL_VERSION(2,6,16)
+	result = pcmcia_access_configuration_register(hw->pdev, &reg);
+#else
+	result = pcmcia_access_configuration_register(
+				      hw->link->handle,
+				      &reg);
+#endif
+	if (result != CS_SUCCESS ) {
+		WLAN_LOG_ERROR(
+			":2: AccessConfigurationRegister(CS_WRITE) failed,"
+			"result=%d.\n", result);
+		result = -EIO;
+		goto done;
+	}
+
+done:
+	DBFEXIT;
+	return result;
+}
+
+#ifdef MODULE
+
+static int __init prism2cs_init(void)
+{
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,5,68))
+	servinfo_t	serv;
+#endif
+
+	DBFENTER;
+
+        WLAN_LOG_NOTICE("%s Loaded\n", version);
+        WLAN_LOG_NOTICE("dev_info is: %s\n", dev_info);
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,5,68))
+	pcmcia_get_card_services_info(&serv);
+	if ( serv.Revision != CS_RELEASE_CODE )
+	{
+		printk(KERN_NOTICE"%s: CardServices release does not match!\n", dev_info);
+		return -1;
+	}
+
+	/* This call will result in a call to prism2sta_attach */
+	/*   and eventually prism2sta_detach */
+	register_pccard_driver( &dev_info, &prism2sta_attach, &prism2sta_detach);
+#else
+	pcmcia_register_driver(&prism2_cs_driver);
+#endif
+
+	DBFEXIT;
+	return 0;
+}
+
+static void __exit prism2cs_cleanup(void)
+{
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,5,68))
+        dev_link_t *link = dev_list;
+        dev_link_t *nlink;
+        DBFENTER;
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,10) )
+	for (link=dev_list; link != NULL; link = nlink) {
+		nlink = link->next;
+		if ( link->state & DEV_CONFIG ) {
+			prism2sta_release((u_long)link);
+		}
+		prism2sta_detach(link); /* remember detach() frees link */
+	}
+#endif
+
+	unregister_pccard_driver( &dev_info);
+#else
+	pcmcia_unregister_driver(&prism2_cs_driver);
+#endif
+
+        printk(KERN_NOTICE "%s Unloaded\n", version);
+
+        DBFEXIT;
+        return;
+}
+
+module_init(prism2cs_init);
+module_exit(prism2cs_cleanup);
+
+#endif // MODULE
+
diff --git a/drivers/staging/wlan-ng/prism2_pci.c b/drivers/staging/wlan-ng/prism2_pci.c
new file mode 100644
index 0000000..afe32df
--- /dev/null
+++ b/drivers/staging/wlan-ng/prism2_pci.c
@@ -0,0 +1,332 @@
+#define WLAN_HOSTIF WLAN_PCI
+#include "hfa384x.c"
+#include "prism2mgmt.c"
+#include "prism2mib.c"
+#include "prism2sta.c"
+
+#define PCI_SIZE		0x1000		/* Memory size - 4K bytes */
+
+/* ISL3874A 11Mb/s WLAN controller */
+#define PCIVENDOR_INTERSIL	0x1260UL
+#define PCIDEVICE_ISL3874	0x3873UL /* [MSM] yeah I know...the ID says
+					    3873. Trust me, it's a 3874. */
+
+/* Samsung SWL-2210P 11Mb/s WLAN controller (uses ISL3874A) */
+#define PCIVENDOR_SAMSUNG      0x167dUL
+#define PCIDEVICE_SWL_2210P    0xa000UL
+
+#define PCIVENDOR_NETGEAR      0x1385UL /* for MA311 */
+
+/* PCI Class & Sub-Class code, Network-'Other controller' */
+#define PCI_CLASS_NETWORK_OTHERS 0x280
+
+
+/*----------------------------------------------------------------
+* prism2sta_probe_pci
+*
+* Probe routine called when a PCI device w/ matching ID is found.
+* The ISL3874 implementation uses the following map:
+*   BAR0: Prism2.x registers memory mapped, size=4k
+* Here's the sequence:
+*   - Allocate the PCI resources.
+*   - Read the PCMCIA attribute memory to make sure we have a WLAN card
+*   - Reset the MAC
+*   - Initialize the netdev and wlan data
+*   - Initialize the MAC
+*
+* Arguments:
+*	pdev		ptr to pci device structure containing info about
+*			pci configuration.
+*	id		ptr to the device id entry that matched this device.
+*
+* Returns:
+*	zero		- success
+*	negative	- failed
+*
+* Side effects:
+*
+*
+* Call context:
+*	process thread
+*
+----------------------------------------------------------------*/
+static int __devinit
+prism2sta_probe_pci(
+	struct pci_dev *pdev,
+	const struct pci_device_id *id)
+{
+	int		result;
+	phys_t		phymem = 0;
+	void		__iomem *mem = NULL;
+        wlandevice_t    *wlandev = NULL;
+	hfa384x_t	*hw = NULL;
+
+	DBFENTER;
+
+	/* Enable the pci device */
+	if (pci_enable_device(pdev)) {
+		WLAN_LOG_ERROR("%s: pci_enable_device() failed.\n", dev_info);
+		result = -EIO;
+		goto fail;
+	}
+
+	/* Figure out our resources */
+	phymem = pci_resource_start(pdev, 0);
+
+        if (!request_mem_region(phymem, pci_resource_len(pdev, 0), "Prism2")) {
+		printk(KERN_ERR "prism2: Cannot reserve PCI memory region\n");
+		result = -EIO;
+		goto fail;
+        }
+
+	mem = ioremap(phymem, PCI_SIZE);
+	if ( mem == 0 ) {
+		WLAN_LOG_ERROR("%s: ioremap() failed.\n", dev_info);
+		result = -EIO;
+		goto fail;
+	}
+
+	/* Log the device */
+        WLAN_LOG_INFO("A Prism2.5 PCI device found, "
+		"phymem:0x%llx, irq:%d, mem:0x%p\n",
+		(unsigned long long)phymem, pdev->irq, mem);
+
+	if ((wlandev = create_wlan()) == NULL) {
+		WLAN_LOG_ERROR("%s: Memory allocation failure.\n", dev_info);
+		result = -EIO;
+		goto fail;
+	}
+	hw = wlandev->priv;
+
+	if ( wlan_setup(wlandev) != 0 ) {
+		WLAN_LOG_ERROR("%s: wlan_setup() failed.\n", dev_info);
+		result = -EIO;
+		goto fail;
+	}
+
+	/* Setup netdevice's ability to report resources
+	 * Note: the netdevice was allocated by wlan_setup()
+	 */
+        wlandev->netdev->irq = pdev->irq;
+        wlandev->netdev->mem_start = (unsigned long) mem;
+        wlandev->netdev->mem_end = wlandev->netdev->mem_start +
+		pci_resource_len(pdev, 0);
+
+	/* Initialize the hw data */
+        hfa384x_create(hw, wlandev->netdev->irq, 0, mem);
+	hw->wlandev = wlandev;
+
+	/* Register the wlandev, this gets us a name and registers the
+	 * linux netdevice.
+	 */
+	SET_MODULE_OWNER(wlandev->netdev);
+#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0))
+       SET_NETDEV_DEV(wlandev->netdev, &(pdev->dev));
+#endif
+        if ( register_wlandev(wlandev) != 0 ) {
+		WLAN_LOG_ERROR("%s: register_wlandev() failed.\n", dev_info);
+		result = -EIO;
+		goto fail;
+        }
+
+#if 0
+	/* TODO: Move this and an irq test into an hfa384x_testif() routine.
+	 */
+	outw(PRISM2STA_MAGIC, HFA384x_SWSUPPORT(wlandev->netdev->base_addr));
+	reg=inw( HFA384x_SWSUPPORT(wlandev->netdev->base_addr));
+	if ( reg != PRISM2STA_MAGIC ) {
+		WLAN_LOG_ERROR("MAC register access test failed!\n");
+		result = -EIO;
+		goto fail;
+	}
+#endif
+
+	/* Do a chip-level reset on the MAC */
+	if (prism2_doreset) {
+		result = hfa384x_corereset(hw,
+				prism2_reset_holdtime,
+				prism2_reset_settletime, 0);
+		if (result != 0) {
+			WLAN_LOG_ERROR(
+				"%s: hfa384x_corereset() failed.\n",
+				dev_info);
+			unregister_wlandev(wlandev);
+			hfa384x_destroy(hw);
+			result = -EIO;
+			goto fail;
+		}
+	}
+
+        pci_set_drvdata(pdev, wlandev);
+
+	/* Shouldn't actually hook up the IRQ until we
+	 * _know_ things are alright.  A test routine would help.
+	 */
+       	request_irq(wlandev->netdev->irq, hfa384x_interrupt,
+		SA_SHIRQ, wlandev->name, wlandev);
+
+	wlandev->msdstate = WLAN_MSD_HWPRESENT;
+
+	result = 0;
+	goto done;
+
+ fail:
+	pci_set_drvdata(pdev, NULL);
+	if (wlandev)	kfree(wlandev);
+	if (hw)		kfree(hw);
+        if (mem)        iounmap(mem);
+	pci_release_regions(pdev);
+        pci_disable_device(pdev);
+
+ done:
+	DBFEXIT;
+	return result;
+}
+
+static void __devexit prism2sta_remove_pci(struct pci_dev *pdev)
+{
+       	wlandevice_t		*wlandev;
+	hfa384x_t	*hw;
+
+	wlandev = (wlandevice_t *) pci_get_drvdata(pdev);
+	hw = wlandev->priv;
+
+	p80211netdev_hwremoved(wlandev);
+
+	/* reset hardware */
+	prism2sta_ifstate(wlandev, P80211ENUM_ifstate_disable);
+
+        if (pdev->irq)
+		free_irq(pdev->irq, wlandev);
+
+	unregister_wlandev(wlandev);
+
+	/* free local stuff */
+	if (hw) {
+		hfa384x_destroy(hw);
+		kfree(hw);
+	}
+
+	iounmap((void __iomem *)wlandev->netdev->mem_start);
+	wlan_unsetup(wlandev);
+
+	pci_release_regions(pdev);
+        pci_disable_device(pdev);
+	pci_set_drvdata(pdev, NULL);
+
+	kfree(wlandev);
+}
+
+
+static struct pci_device_id pci_id_tbl[] = {
+	{
+		PCIVENDOR_INTERSIL, PCIDEVICE_ISL3874,
+		PCI_ANY_ID, PCI_ANY_ID,
+		0, 0,
+		/* Driver data, we just put the name here */
+		(unsigned long)"Intersil Prism2.5 ISL3874 11Mb/s WLAN Controller"
+	},
+	{
+		PCIVENDOR_INTERSIL, 0x3872,
+		PCI_ANY_ID, PCI_ANY_ID,
+		0, 0,
+		/* Driver data, we just put the name here */
+		(unsigned long)"Intersil Prism2.5 ISL3872 11Mb/s WLAN Controller"
+	},
+        {
+               PCIVENDOR_SAMSUNG, PCIDEVICE_SWL_2210P,
+               PCI_ANY_ID, PCI_ANY_ID,
+               0, 0,
+               /* Driver data, we just put the name here */
+               (unsigned long)"Samsung MagicLAN SWL-2210P 11Mb/s WLAN Controller"
+	},
+	{ /* for NetGear MA311 */
+		PCIVENDOR_NETGEAR, 0x3872,
+		PCI_ANY_ID, PCI_ANY_ID,
+		0, 0,
+		/* Driver data, we just put the name here */
+		(unsigned long)"Netgear MA311 WLAN Controller"
+	},
+	{
+		0, 0, 0, 0, 0, 0, 0
+	}
+};
+
+MODULE_DEVICE_TABLE(pci, pci_id_tbl);
+
+/* Function declared here because of ptr reference below */
+static int  __devinit prism2sta_probe_pci(struct pci_dev *pdev,
+				const struct pci_device_id *id);
+static void  __devexit prism2sta_remove_pci(struct pci_dev *pdev);
+
+static struct pci_driver prism2_pci_drv_id = {
+        .name = "prism2_pci",
+        .id_table = pci_id_tbl,
+        .probe = prism2sta_probe_pci,
+        .remove = prism2sta_remove_pci,
+#ifdef CONFIG_PM
+        .suspend = prism2sta_suspend_pci,
+        .resume = prism2sta_resume_pci,
+#endif
+};
+
+#ifdef MODULE
+
+static int __init prism2pci_init(void)
+{
+        WLAN_LOG_NOTICE("%s Loaded\n", version);
+	return pci_module_init(&prism2_pci_drv_id);
+};
+
+static void __exit prism2pci_cleanup(void)
+{
+	pci_unregister_driver(&prism2_pci_drv_id);
+};
+
+module_init(prism2pci_init);
+module_exit(prism2pci_cleanup);
+
+#endif
+
+int hfa384x_corereset(hfa384x_t *hw, int holdtime, int settletime, int genesis)
+{
+	int		result = 0;
+	unsigned long	timeout;
+	UINT16	reg;
+	DBFENTER;
+
+	/* Assert reset and wait awhile
+	 * (note: these delays are _really_ long, but they appear to be
+	 *        necessary.)
+	 */
+	hfa384x_setreg(hw, 0xc5, HFA384x_PCICOR);
+	timeout = jiffies + HZ/4;
+	while(time_before(jiffies, timeout)) udelay(5);
+
+	if (genesis) {
+		hfa384x_setreg(hw, genesis, HFA384x_PCIHCR);
+		timeout = jiffies + HZ/4;
+		while(time_before(jiffies, timeout)) udelay(5);
+	}
+
+	/* Clear the reset and wait some more
+	 */
+	hfa384x_setreg(hw, 0x45, HFA384x_PCICOR);
+	timeout = jiffies + HZ/2;
+	while(time_before(jiffies, timeout)) udelay(5);
+
+	/* Wait for f/w to complete initialization (CMD:BUSY == 0)
+	 */
+	timeout = jiffies + 2*HZ;
+	reg = hfa384x_getreg(hw, HFA384x_CMD);
+	while ( HFA384x_CMD_ISBUSY(reg) && time_before( jiffies, timeout) ) {
+		reg = hfa384x_getreg(hw, HFA384x_CMD);
+		udelay(10);
+	}
+	if (HFA384x_CMD_ISBUSY(reg)) {
+		WLAN_LOG_WARNING("corereset: Timed out waiting for cmd register.\n");
+		result=1;
+	}
+	DBFEXIT;
+	return result;
+}
diff --git a/drivers/staging/wlan-ng/prism2_plx.c b/drivers/staging/wlan-ng/prism2_plx.c
new file mode 100644
index 0000000..320443f
--- /dev/null
+++ b/drivers/staging/wlan-ng/prism2_plx.c
@@ -0,0 +1,472 @@
+#define WLAN_HOSTIF WLAN_PLX
+#include "hfa384x.c"
+#include "prism2mgmt.c"
+#include "prism2mib.c"
+#include "prism2sta.c"
+
+#define PLX_ATTR_SIZE	0x1000	/* Attribute memory size - 4K bytes */
+#define COR_OFFSET	0x3e0	/* COR attribute offset of Prism2 PC card */
+#define COR_VALUE	0x41	/* Enable PC card with irq in level trigger */
+#define PLX_INTCSR	0x4c	/* Interrupt Control and Status Register */
+#define PLX_INTCSR_INTEN (1<<6) /* Interrupt Enable bit */
+#define PLX_MIN_ATTR_LEN 512    /* at least 2 x 256 is needed for CIS */
+
+/* 3Com 3CRW777A (PLX) board ID */
+#define PCIVENDOR_3COM       0x10B7
+#define PCIDEVICE_AIRCONNECT 0x7770
+
+/* Eumitcom PCI WL11000 PCI Adapter (PLX) board device+vendor ID */
+#define PCIVENDOR_EUMITCOM	0x1638UL
+#define PCIDEVICE_WL11000	0x1100UL
+
+/* Global Sun Tech GL24110P PCI Adapter (PLX) board device+vendor ID */
+#define PCIVENDOR_GLOBALSUN	0x16abUL
+#define PCIDEVICE_GL24110P	0x1101UL
+#define PCIDEVICE_GL24110P_ALT	0x1102UL
+
+/* Netgear MA301 PCI Adapter (PLX) board device+vendor ID */
+#define PCIVENDOR_NETGEAR	0x1385UL
+#define PCIDEVICE_MA301		0x4100UL
+
+/* US Robotics USR2410 PCI Adapter (PLX) board device+vendor ID */
+#define	PCIVENDOR_USROBOTICS    0x16ecUL
+#define PCIDEVICE_USR2410       0x3685UL
+
+/* Linksys WPC11 card with the WDT11 adapter (PLX) board device+vendor ID */
+#define	PCIVENDOR_Linksys       0x16abUL
+#define PCIDEVICE_Wpc11Wdt11    0x1102UL
+
+/* National Datacomm Corp SOHOware Netblaster II PCI */
+#define PCIVENDOR_NDC	        0x15e8UL
+#define PCIDEVICE_NCP130_PLX 	0x0130UL
+#define PCIDEVICE_NCP130_ASIC	0x0131UL
+
+/* NDC NCP130_PLX is also sold by Corega. Their name is CGWLPCIA11 */
+#define PCIVENDOR_COREGA       PCIVENDOR_NDC
+#define PCIDEVICE_CGWLPCIA11   PCIDEVICE_NCP130_PLX
+
+/* PCI Class & Sub-Class code, Network-'Other controller' */
+#define PCI_CLASS_NETWORK_OTHERS 0x280
+
+/*----------------------------------------------------------------
+* prism2sta_probe_plx
+*
+* Probe routine called when a PCI device w/ matching ID is found.
+* This PLX implementation uses the following map:
+*   BAR0: Unused
+*   BAR1: ????
+*   BAR2: PCMCIA attribute memory
+*   BAR3: PCMCIA i/o space
+* Here's the sequence:
+*   - Allocate the PCI resources.
+*   - Read the PCMCIA attribute memory to make sure we have a WLAN card
+*   - Reset the MAC using the PCMCIA COR
+*   - Initialize the netdev and wlan data
+*   - Initialize the MAC
+*
+* Arguments:
+*	pdev		ptr to pci device structure containing info about
+*			pci configuration.
+*	id		ptr to the device id entry that matched this device.
+*
+* Returns:
+*	zero		- success
+*	negative	- failed
+*
+* Side effects:
+*
+*
+* Call context:
+*	process thread
+*
+----------------------------------------------------------------*/
+static int __devinit
+prism2sta_probe_plx(
+	struct pci_dev			*pdev,
+	const struct pci_device_id	*id)
+{
+	int		result;
+        phys_t	pccard_ioaddr;
+	phys_t  pccard_attr_mem;
+        unsigned int    pccard_attr_len;
+	void __iomem *attr_mem = NULL;
+	UINT32		plx_addr;
+        wlandevice_t    *wlandev = NULL;
+	hfa384x_t	*hw = NULL;
+	int		reg;
+        u32		regic;
+
+	if (pci_enable_device(pdev))
+		return -EIO;
+
+	/* TMC7160 boards are special */
+	if ((pdev->vendor == PCIVENDOR_NDC) &&
+	    (pdev->device == PCIDEVICE_NCP130_ASIC)) {
+		unsigned long delay;
+
+		pccard_attr_mem = 0;
+		pccard_ioaddr = pci_resource_start(pdev, 1);
+
+		outb(0x45, pccard_ioaddr);
+		delay = jiffies + 1*HZ;
+		while (time_before(jiffies, delay));
+
+		if (inb(pccard_ioaddr) != 0x45) {
+			WLAN_LOG_ERROR("Initialize the TMC7160 failed. (0x%x)\n", inb(pccard_ioaddr));
+			return -EIO;
+		}
+
+		pccard_ioaddr = pci_resource_start(pdev, 2);
+		prism2_doreset = 0;
+
+		WLAN_LOG_INFO("NDC NCP130 with TMC716(ASIC) PCI interface device found at io:0x%x, irq:%d\n", pccard_ioaddr, pdev->irq);
+		goto init;
+	}
+
+	/* Collect the resource requirements */
+	pccard_attr_mem = pci_resource_start(pdev, 2);
+	pccard_attr_len = pci_resource_len(pdev, 2);
+        if (pccard_attr_len < PLX_MIN_ATTR_LEN)
+		return -EIO;
+
+	pccard_ioaddr = pci_resource_start(pdev, 3);
+
+	/* bjoern: We need to tell the card to enable interrupts, in
+	 * case the serial eprom didn't do this already. See the
+	 * PLX9052 data book, p8-1 and 8-24 for reference.
+	 * [MSM]: This bit of code came from the orinoco_cs driver.
+	 */
+	plx_addr = pci_resource_start(pdev, 1);
+
+	regic = 0;
+	regic = inl(plx_addr+PLX_INTCSR);
+	if(regic & PLX_INTCSR_INTEN) {
+		WLAN_LOG_DEBUG(1,
+			"%s: Local Interrupt already enabled\n", dev_info);
+	} else {
+		regic |= PLX_INTCSR_INTEN;
+		outl(regic, plx_addr+PLX_INTCSR);
+		regic = inl(plx_addr+PLX_INTCSR);
+		if(!(regic & PLX_INTCSR_INTEN)) {
+			WLAN_LOG_ERROR(
+				"%s: Couldn't enable Local Interrupts\n",
+				dev_info);
+			return -EIO;
+		}
+	}
+
+	/* These assignments are here in case of future mappings for
+	 * io space and irq that might be similar to ioremap
+	 */
+        if (!request_mem_region(pccard_attr_mem, pci_resource_len(pdev, 2), "Prism2")) {
+		WLAN_LOG_ERROR("%s: Couldn't reserve PCI memory region\n", dev_info);
+		return -EIO;
+        }
+
+	attr_mem = ioremap(pccard_attr_mem, pccard_attr_len);
+
+	WLAN_LOG_INFO("A PLX PCI/PCMCIA interface device found, "
+		"phymem:0x%llx, phyio=0x%x, irq:%d, "
+		"mem: 0x%lx\n",
+		(unsigned long long)pccard_attr_mem, pccard_ioaddr, pdev->irq,
+		(unsigned long)attr_mem);
+
+	/* Verify whether PC card is present.
+	 * [MSM] This needs improvement, the right thing to do is
+	 * probably to walk the CIS looking for the vendor and product
+	 * IDs.  It would be nice if this could be tied in with the
+	 * etc/pcmcia/wlan-ng.conf file.  Any volunteers?  ;-)
+	 */
+	if (
+	readb(attr_mem + 0) != 0x01 || readb(attr_mem + 2) != 0x03 ||
+	readb(attr_mem + 4) != 0x00 || readb(attr_mem + 6) != 0x00 ||
+	readb(attr_mem + 8) != 0xFF || readb(attr_mem + 10) != 0x17 ||
+	readb(attr_mem + 12) != 0x04 || readb(attr_mem + 14) != 0x67) {
+		WLAN_LOG_ERROR("Prism2 PC card CIS is invalid.\n");
+		return -EIO;
+        }
+        WLAN_LOG_INFO("A PCMCIA WLAN adapter was found.\n");
+
+        /* Write COR to enable PC card */
+	writeb(COR_VALUE, attr_mem + COR_OFFSET);
+	reg = readb(attr_mem + COR_OFFSET);
+
+ init:
+
+	/*
+	 * Now do everything the same as a PCI device
+	 * [MSM] TODO: We could probably factor this out of pcmcia/pci/plx
+	 * and perhaps usb.  Perhaps a task for another day.......
+	 */
+
+	if ((wlandev = create_wlan()) == NULL) {
+		WLAN_LOG_ERROR("%s: Memory allocation failure.\n", dev_info);
+		result = -EIO;
+		goto failed;
+	}
+
+	hw = wlandev->priv;
+
+	if ( wlan_setup(wlandev) != 0 ) {
+		WLAN_LOG_ERROR("%s: wlan_setup() failed.\n", dev_info);
+		result = -EIO;
+		goto failed;
+	}
+
+	/* Setup netdevice's ability to report resources
+	 * Note: the netdevice was allocated by wlan_setup()
+	 */
+        wlandev->netdev->irq = pdev->irq;
+        wlandev->netdev->base_addr = pccard_ioaddr;
+        wlandev->netdev->mem_start = (unsigned long)attr_mem;
+        wlandev->netdev->mem_end = (unsigned long)attr_mem + pci_resource_len(pdev, 0);
+
+	/* Initialize the hw data */
+        hfa384x_create(hw, wlandev->netdev->irq, pccard_ioaddr, attr_mem);
+	hw->wlandev = wlandev;
+
+	/* Register the wlandev, this gets us a name and registers the
+	 * linux netdevice.
+	 */
+	SET_MODULE_OWNER(wlandev->netdev);
+#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0))
+       SET_NETDEV_DEV(wlandev->netdev, &(pdev->dev));
+#endif
+        if ( register_wlandev(wlandev) != 0 ) {
+		WLAN_LOG_ERROR("%s: register_wlandev() failed.\n", dev_info);
+		result = -EIO;
+		goto failed;
+        }
+
+#if 0
+	/* TODO: Move this and an irq test into an hfa384x_testif() routine.
+	 */
+	outw(PRISM2STA_MAGIC, HFA384x_SWSUPPORT(wlandev->netdev->base_addr));
+	reg=inw( HFA384x_SWSUPPORT(wlandev->netdev->base_addr));
+	if ( reg != PRISM2STA_MAGIC ) {
+		WLAN_LOG_ERROR("MAC register access test failed!\n");
+ 		result = -EIO;
+		goto failed;
+	}
+#endif
+
+	/* Do a chip-level reset on the MAC */
+	if (prism2_doreset) {
+		result = hfa384x_corereset(hw,
+				prism2_reset_holdtime,
+				prism2_reset_settletime, 0);
+		if (result != 0) {
+			unregister_wlandev(wlandev);
+			hfa384x_destroy(hw);
+			WLAN_LOG_ERROR(
+				"%s: hfa384x_corereset() failed.\n",
+				dev_info);
+			result = -EIO;
+			goto failed;
+		}
+	}
+
+	pci_set_drvdata(pdev, wlandev);
+
+	/* Shouldn't actually hook up the IRQ until we
+	 * _know_ things are alright.  A test routine would help.
+	 */
+       	request_irq(wlandev->netdev->irq, hfa384x_interrupt,
+		SA_SHIRQ, wlandev->name, wlandev);
+
+	wlandev->msdstate = WLAN_MSD_HWPRESENT;
+
+	result = 0;
+
+	goto done;
+
+ failed:
+
+	pci_set_drvdata(pdev, NULL);
+	if (wlandev)	kfree(wlandev);
+	if (hw)		kfree(hw);
+        if (attr_mem)        iounmap(attr_mem);
+	pci_release_regions(pdev);
+        pci_disable_device(pdev);
+
+ done:
+	DBFEXIT;
+        return result;
+}
+
+static void __devexit prism2sta_remove_plx(struct pci_dev *pdev)
+{
+       	wlandevice_t		*wlandev;
+	hfa384x_t               *hw;
+
+	wlandev = (wlandevice_t *) pci_get_drvdata(pdev);
+	hw = wlandev->priv;
+
+	p80211netdev_hwremoved(wlandev);
+
+	/* reset hardware */
+	prism2sta_ifstate(wlandev, P80211ENUM_ifstate_disable);
+
+        if (pdev->irq)
+		free_irq(pdev->irq, wlandev);
+
+	unregister_wlandev(wlandev);
+
+	/* free local stuff */
+	if (hw) {
+		hfa384x_destroy(hw);
+		kfree(hw);
+	}
+
+	iounmap((void __iomem *)wlandev->netdev->mem_start);
+	wlan_unsetup(wlandev);
+
+	pci_release_regions(pdev);
+        pci_disable_device(pdev);
+	pci_set_drvdata(pdev, NULL);
+
+	kfree(wlandev);
+}
+
+static struct pci_device_id plx_id_tbl[] = {
+	{
+		PCIVENDOR_EUMITCOM, PCIDEVICE_WL11000,
+		PCI_ANY_ID, PCI_ANY_ID,
+		0, 0,
+		/* Driver data, we just put the name here */
+		(unsigned long)"Eumitcom WL11000 PCI(PLX) card"
+	},
+	{
+		PCIVENDOR_GLOBALSUN, PCIDEVICE_GL24110P,
+		PCI_ANY_ID, PCI_ANY_ID,
+		0, 0,
+		/* Driver data, we just put the name here */
+		(unsigned long)"Global Sun Tech GL24110P PCI(PLX) card"
+	},
+	{
+		PCIVENDOR_GLOBALSUN, PCIDEVICE_GL24110P_ALT,
+		PCI_ANY_ID, PCI_ANY_ID,
+		0, 0,
+		/* Driver data, we just put the name here */
+		(unsigned long)"Global Sun Tech GL24110P PCI(PLX) card"
+	},
+	{
+		PCIVENDOR_NETGEAR, PCIDEVICE_MA301,
+		PCI_ANY_ID, PCI_ANY_ID,
+		0, 0,
+		/* Driver data, we just put the name here */
+		(unsigned long)"Global Sun Tech GL24110P PCI(PLX) card"
+	},
+	{
+		PCIVENDOR_USROBOTICS, PCIDEVICE_USR2410,
+		PCI_ANY_ID, PCI_ANY_ID,
+		0, 0,
+		/* Driver data, we just put the name here */
+		(unsigned long)"US Robotics USR2410 PCI(PLX) card"
+	},
+	{
+		PCIVENDOR_Linksys, PCIDEVICE_Wpc11Wdt11,
+		PCI_ANY_ID, PCI_ANY_ID,
+		0, 0,
+		/* Driver data, we just put the name here */
+		(unsigned long)"Linksys WPC11 with WDT11 PCI(PLX) adapter"
+	},
+	{
+	        PCIVENDOR_NDC, PCIDEVICE_NCP130_PLX,
+		PCI_ANY_ID, PCI_ANY_ID,
+		0, 0,
+		/* Driver data, we just put the name here */
+		(unsigned long)"NDC Netblaster II PCI(PLX)"
+	},
+	{
+	        PCIVENDOR_NDC, PCIDEVICE_NCP130_ASIC,
+		PCI_ANY_ID, PCI_ANY_ID,
+		0, 0,
+		/* Driver data, we just put the name here */
+		(unsigned long)"NDC Netblaster II PCI(TMC7160)"
+	},
+	{
+		PCIVENDOR_3COM, PCIDEVICE_AIRCONNECT,
+		PCI_ANY_ID, PCI_ANY_ID,
+		0, 0,
+		/* Driver data, we just put the name here */
+		(unsigned long)"3Com AirConnect PCI 802.11b 11Mb/s WLAN Controller"
+	},
+	{
+		0, 0, 0, 0, 0, 0, 0
+	}
+};
+
+MODULE_DEVICE_TABLE(pci, plx_id_tbl);
+
+/* Function declared here because of ptr reference below */
+static int __devinit prism2sta_probe_plx(struct pci_dev *pdev,
+					 const struct pci_device_id *);
+static void __devexit prism2sta_remove_plx(struct pci_dev *pdev);
+
+static struct pci_driver prism2_plx_drv_id = {
+        .name = "prism2_plx",
+        .id_table = plx_id_tbl,
+        .probe = prism2sta_probe_plx,
+        .remove = prism2sta_remove_plx,
+#ifdef CONFIG_PM
+        .suspend = prism2sta_suspend_pci,
+        .resume = prism2sta_resume_pci,
+#endif
+};
+
+#ifdef MODULE
+
+static int __init prism2plx_init(void)
+{
+        WLAN_LOG_NOTICE("%s Loaded\n", version);
+	return pci_module_init(&prism2_plx_drv_id);
+};
+
+static void __exit prism2plx_cleanup(void)
+{
+	pci_unregister_driver(&prism2_plx_drv_id);
+};
+
+module_init(prism2plx_init);
+module_exit(prism2plx_cleanup);
+
+#endif // MODULE
+
+
+int hfa384x_corereset(hfa384x_t *hw, int holdtime, int settletime, int genesis)
+{
+	int		result = 0;
+
+#define COR_OFFSET	0x3e0	/* COR attribute offset of Prism2 PC card */
+#define COR_VALUE	0x41	/* Enable PC card with irq in level trigger */
+
+#define HCR_OFFSET	0x3e2	/* HCR attribute offset of Prism2 PC card */
+
+	UINT8		corsave;
+	DBFENTER;
+
+	WLAN_LOG_DEBUG(3, "Doing reset via direct COR access.\n");
+
+	/* Collect COR */
+	corsave = readb(hw->membase + COR_OFFSET);
+	/* Write reset bit (BIT7) */
+	writeb(corsave | BIT7, hw->membase + COR_OFFSET);
+	/* Hold for holdtime */
+	mdelay(holdtime);
+
+	if (genesis) {
+		writeb(genesis, hw->membase + HCR_OFFSET);
+		/* Hold for holdtime */
+		mdelay(holdtime);
+	}
+
+	/* Clear reset bit */
+	writeb(corsave & ~BIT7, hw->membase + COR_OFFSET);
+	/* Wait for settletime */
+	mdelay(settletime);
+	/* Set non-reset bits back what they were */
+	writeb(corsave, hw->membase + COR_OFFSET);
+	DBFEXIT;
+	return result;
+}
diff --git a/drivers/staging/wlan-ng/prism2_usb.c b/drivers/staging/wlan-ng/prism2_usb.c
new file mode 100644
index 0000000..e45be23
--- /dev/null
+++ b/drivers/staging/wlan-ng/prism2_usb.c
@@ -0,0 +1,361 @@
+#define WLAN_HOSTIF WLAN_USB
+#include "hfa384x_usb.c"
+#include "prism2mgmt.c"
+#include "prism2mib.c"
+#include "prism2sta.c"
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,4,0))
+#error "prism2_usb requires at least a 2.4.x kernel!"
+#endif
+
+#define PRISM_USB_DEVICE(vid, pid, name) \
+           USB_DEVICE(vid, pid),  \
+           .driver_info = (unsigned long) name
+
+static struct usb_device_id usb_prism_tbl[] = {
+	{PRISM_USB_DEVICE(0x04bb, 0x0922, "IOData AirPort WN-B11/USBS")},
+	{PRISM_USB_DEVICE(0x07aa, 0x0012, "Corega Wireless LAN USB Stick-11")},
+	{PRISM_USB_DEVICE(0x09aa, 0x3642, "Prism2.x 11Mbps WLAN USB Adapter")},
+	{PRISM_USB_DEVICE(0x1668, 0x0408, "Actiontec Prism2.5 11Mbps WLAN USB Adapter")},
+	{PRISM_USB_DEVICE(0x1668, 0x0421, "Actiontec Prism2.5 11Mbps WLAN USB Adapter")},
+	{PRISM_USB_DEVICE(0x1915, 0x2236, "Linksys WUSB11v3.0 11Mbps WLAN USB Adapter")},
+	{PRISM_USB_DEVICE(0x066b, 0x2212, "Linksys WUSB11v2.5 11Mbps WLAN USB Adapter")},
+	{PRISM_USB_DEVICE(0x066b, 0x2213, "Linksys WUSB12v1.1 11Mbps WLAN USB Adapter")},
+	{PRISM_USB_DEVICE(0x067c, 0x1022, "Siemens SpeedStream 1022 11Mbps WLAN USB Adapter")},
+	{PRISM_USB_DEVICE(0x049f, 0x0033, "Compaq/Intel W100 PRO/Wireless 11Mbps multiport WLAN Adapter")},
+	{PRISM_USB_DEVICE(0x0411, 0x0016, "Melco WLI-USB-S11 11Mbps WLAN Adapter")},
+	{PRISM_USB_DEVICE(0x08de, 0x7a01, "PRISM25 IEEE 802.11 Mini USB Adapter")},
+	{PRISM_USB_DEVICE(0x8086, 0x1111, "Intel PRO/Wireless 2011B LAN USB Adapter")},
+	{PRISM_USB_DEVICE(0x0d8e, 0x7a01, "PRISM25 IEEE 802.11 Mini USB Adapter")},
+	{PRISM_USB_DEVICE(0x045e, 0x006e, "Microsoft MN510 Wireless USB Adapter")},
+	{PRISM_USB_DEVICE(0x0967, 0x0204, "Acer Warplink USB Adapter")},
+	{PRISM_USB_DEVICE(0x0cde, 0x0002, "Z-Com 725/726 Prism2.5 USB/USB Integrated")},
+	{PRISM_USB_DEVICE(0x0cde, 0x0005, "Z-Com Xl735 Wireless 802.11b USB Adapter")},
+	{PRISM_USB_DEVICE(0x413c, 0x8100, "Dell TrueMobile 1180 Wireless USB Adapter")},
+	{PRISM_USB_DEVICE(0x0b3b, 0x1601, "ALLNET 0193 11Mbps WLAN USB Adapter")},
+	{PRISM_USB_DEVICE(0x0b3b, 0x1602, "ZyXEL ZyAIR B200 Wireless USB Adapter")},
+	{PRISM_USB_DEVICE(0x0baf, 0x00eb, "USRobotics USR1120 Wireless USB Adapter")},
+	{PRISM_USB_DEVICE(0x0411, 0x0027, "Melco WLI-USB-KS11G 11Mbps WLAN Adapter")},
+        {PRISM_USB_DEVICE(0x04f1, 0x3009, "JVC MP-XP7250 Builtin USB WLAN Adapter")},
+	{PRISM_USB_DEVICE(0x0846, 0x4110, "NetGear MA111")},
+        {PRISM_USB_DEVICE(0x03f3, 0x0020, "Adaptec AWN-8020 USB WLAN Adapter")},
+//	{PRISM_USB_DEVICE(0x0ace, 0x1201, "ZyDAS ZD1201 Wireless USB Adapter")},
+	{PRISM_USB_DEVICE(0x2821, 0x3300, "ASUS-WL140 Wireless USB Adapter")},
+	{PRISM_USB_DEVICE(0x2001, 0x3700, "DWL-122 Wireless USB Adapter")},
+	{PRISM_USB_DEVICE(0x2001, 0x3702, "DWL-120 Rev F Wireless USB Adapter")},
+	{PRISM_USB_DEVICE(0x50c2, 0x4013, "Averatec USB WLAN Adapter")},
+	{PRISM_USB_DEVICE(0x2c02, 0x14ea, "Planex GW-US11H WLAN USB Adapter")},
+	{PRISM_USB_DEVICE(0x124a, 0x168b, "Airvast PRISM3 WLAN USB Adapter")},
+	{PRISM_USB_DEVICE(0x083a, 0x3503, "T-Sinus 111 USB WLAN Adapter")},
+	{PRISM_USB_DEVICE(0x2821, 0x3300, "Hawking HighDB USB Adapter")},
+	{PRISM_USB_DEVICE(0x0411, 0x0044, "Melco WLI-USB-KB11 11Mbps WLAN Adapter")},
+	{PRISM_USB_DEVICE(0x1668, 0x6106, "ROPEX FreeLan 802.11b USB Adapter")},
+	{PRISM_USB_DEVICE(0x124a, 0x4017, "Pheenet WL-503IA 802.11b USB Adapter")},
+	{PRISM_USB_DEVICE(0x0bb2, 0x0302, "Ambit Microsystems Corp.")},
+	{PRISM_USB_DEVICE(0x9016, 0x182d, "Sitecom WL-022 802.11b USB Adapter")},
+	{PRISM_USB_DEVICE(0x0543, 0x0f01, "ViewSonic Airsync USB Adapter 11Mbps (Prism2.5)")},
+	{ /* terminator */ }
+};
+
+MODULE_DEVICE_TABLE(usb, usb_prism_tbl);
+
+/*----------------------------------------------------------------
+* prism2sta_probe_usb
+*
+* Probe routine called by the USB subsystem.
+*
+* Arguments:
+*	dev		ptr to the usb_device struct
+*	ifnum		interface number being offered
+*
+* Returns:
+*	NULL		- we're not claiming the device+interface
+*	non-NULL	- we are claiming the device+interface and
+*			  this is a ptr to the data we want back
+*			  when disconnect is called.
+*
+* Side effects:
+*
+* Call context:
+*	I'm not sure, assume it's interrupt.
+*
+----------------------------------------------------------------*/
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,5,0))
+static void __devinit *prism2sta_probe_usb(
+	struct usb_device *dev,
+	unsigned int ifnum,
+	const struct usb_device_id *id)
+#else
+static int prism2sta_probe_usb(
+	struct usb_interface *interface,
+	const struct usb_device_id *id)
+#endif
+{
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,5,0))
+	struct usb_interface *interface;
+#else
+	struct usb_device *dev;
+#endif
+
+	wlandevice_t	*wlandev = NULL;
+	hfa384x_t	*hw = NULL;
+	int              result = 0;
+
+	DBFENTER;
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,5,0))
+	interface = &dev->actconfig->interface[ifnum];
+#else
+	dev = interface_to_usbdev(interface);
+#endif
+
+
+	if ((wlandev = create_wlan()) == NULL) {
+		WLAN_LOG_ERROR("%s: Memory allocation failure.\n", dev_info);
+		result = -EIO;
+		goto failed;
+	}
+	hw = wlandev->priv;
+
+	if ( wlan_setup(wlandev) != 0 ) {
+		WLAN_LOG_ERROR("%s: wlan_setup() failed.\n", dev_info);
+		result = -EIO;
+		goto failed;
+	}
+
+	/* Initialize the hw data */
+	hfa384x_create(hw, dev);
+	hw->wlandev = wlandev;
+
+	/* Register the wlandev, this gets us a name and registers the
+	 * linux netdevice.
+	 */
+#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0))
+	SET_NETDEV_DEV(wlandev->netdev, &(interface->dev));
+#endif
+        if ( register_wlandev(wlandev) != 0 ) {
+		WLAN_LOG_ERROR("%s: register_wlandev() failed.\n", dev_info);
+		result = -EIO;
+		goto failed;
+        }
+
+	/* Do a chip-level reset on the MAC */
+	if (prism2_doreset) {
+		result = hfa384x_corereset(hw,
+				prism2_reset_holdtime,
+				prism2_reset_settletime, 0);
+		if (result != 0) {
+			unregister_wlandev(wlandev);
+			hfa384x_destroy(hw);
+			result = -EIO;
+			WLAN_LOG_ERROR(
+				"%s: hfa384x_corereset() failed.\n",
+				dev_info);
+			goto failed;
+		}
+	}
+
+#ifndef NEW_MODULE_CODE
+	usb_inc_dev_use(dev);
+#endif
+#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,15))
+	usb_get_dev(dev);
+#endif
+
+	wlandev->msdstate = WLAN_MSD_HWPRESENT;
+
+	goto done;
+
+ failed:
+	if (wlandev)	kfree(wlandev);
+	if (hw)		kfree(hw);
+	wlandev = NULL;
+
+ done:
+	DBFEXIT;
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,5,0))
+	return wlandev;
+#else
+	usb_set_intfdata(interface, wlandev);
+	return result;
+#endif
+}
+
+
+/*----------------------------------------------------------------
+* prism2sta_disconnect_usb
+*
+* Called when a device previously claimed by probe is removed
+* from the USB.
+*
+* Arguments:
+*	dev		ptr to the usb_device struct
+*	ptr		ptr returned by probe() when the device
+*                       was claimed.
+*
+* Returns:
+*	Nothing
+*
+* Side effects:
+*
+* Call context:
+*	process
+----------------------------------------------------------------*/
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,5,0))
+static void __devexit
+prism2sta_disconnect_usb(struct usb_device *dev, void *ptr)
+#else
+static void
+prism2sta_disconnect_usb(struct usb_interface *interface)
+#endif
+{
+#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,5,0))
+	wlandevice_t		*wlandev;
+#else
+	wlandevice_t		*wlandev = (wlandevice_t*)ptr;
+#endif
+
+        DBFENTER;
+
+#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,5,0))
+	wlandev = (wlandevice_t *) usb_get_intfdata(interface);
+#endif
+
+	if ( wlandev != NULL ) {
+		LIST_HEAD(cleanlist);
+		struct list_head	*entry;
+		struct list_head	*temp;
+		unsigned long		flags;
+
+		hfa384x_t		*hw = wlandev->priv;
+
+		if (!hw)
+			goto exit;
+
+		spin_lock_irqsave(&hw->ctlxq.lock, flags);
+
+		p80211netdev_hwremoved(wlandev);
+		list_splice_init(&hw->ctlxq.reapable, &cleanlist);
+		list_splice_init(&hw->ctlxq.completing, &cleanlist);
+		list_splice_init(&hw->ctlxq.pending, &cleanlist);
+		list_splice_init(&hw->ctlxq.active, &cleanlist);
+
+		spin_unlock_irqrestore(&hw->ctlxq.lock, flags);
+
+		/* There's no hardware to shutdown, but the driver
+		 * might have some tasks or tasklets that must be
+		 * stopped before we can tear everything down.
+		 */
+		prism2sta_ifstate(wlandev, P80211ENUM_ifstate_disable);
+
+		del_singleshot_timer_sync(&hw->throttle);
+		del_singleshot_timer_sync(&hw->reqtimer);
+		del_singleshot_timer_sync(&hw->resptimer);
+
+		/* Unlink all the URBs. This "removes the wheels"
+		 * from the entire CTLX handling mechanism.
+		 */
+		usb_kill_urb(&hw->rx_urb);
+		usb_kill_urb(&hw->tx_urb);
+		usb_kill_urb(&hw->ctlx_urb);
+
+		tasklet_kill(&hw->completion_bh);
+		tasklet_kill(&hw->reaper_bh);
+
+		flush_scheduled_work();
+
+		/* Now we complete any outstanding commands
+		 * and tell everyone who is waiting for their
+		 * responses that we have shut down.
+		 */
+		list_for_each(entry, &cleanlist) {
+			hfa384x_usbctlx_t	*ctlx;
+
+			ctlx = list_entry(entry, hfa384x_usbctlx_t, list);
+			complete(&ctlx->done);
+		}
+
+		/* Give any outstanding synchronous commands
+		 * a chance to complete. All they need to do
+		 * is "wake up", so that's easy.
+		 * (I'd like a better way to do this, really.)
+		 */
+		msleep(100);
+
+		/* Now delete the CTLXs, because no-one else can now. */
+		list_for_each_safe(entry, temp, &cleanlist) {
+			hfa384x_usbctlx_t *ctlx;
+
+			ctlx = list_entry(entry, hfa384x_usbctlx_t, list);
+			kfree(ctlx);
+		}
+
+		/* Unhook the wlandev */
+		unregister_wlandev(wlandev);
+		wlan_unsetup(wlandev);
+
+#ifndef NEW_MODULE_CODE
+		usb_dec_dev_use(hw->usb);
+#endif
+#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,15))
+		usb_put_dev(hw->usb);
+#endif
+
+		hfa384x_destroy(hw);
+		kfree(hw);
+
+		kfree(wlandev);
+	}
+
+ exit:
+
+#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,5,0))
+	usb_set_intfdata(interface, NULL);
+#endif
+	DBFEXIT;
+}
+
+
+static struct usb_driver prism2_usb_driver = {
+#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,4,19)) && (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,16))
+	.owner = THIS_MODULE,
+#endif
+	.name = "prism2_usb",
+	.probe = prism2sta_probe_usb,
+	.disconnect = prism2sta_disconnect_usb,
+	.id_table = usb_prism_tbl,
+	/* fops, minor? */
+};
+
+#ifdef MODULE
+
+static int __init prism2usb_init(void)
+{
+        DBFENTER;
+
+        WLAN_LOG_NOTICE("%s Loaded\n", version);
+        WLAN_LOG_NOTICE("dev_info is: %s\n", dev_info);
+
+	/* This call will result in calls to prism2sta_probe_usb. */
+	return usb_register(&prism2_usb_driver);
+
+	DBFEXIT;
+};
+
+static void __exit prism2usb_cleanup(void)
+{
+        DBFENTER;
+
+	usb_deregister(&prism2_usb_driver);
+
+        printk(KERN_NOTICE "%s Unloaded\n", version);
+
+	DBFEXIT;
+};
+
+module_init(prism2usb_init);
+module_exit(prism2usb_cleanup);
+
+#endif // module
diff --git a/drivers/staging/wlan-ng/prism2mgmt.c b/drivers/staging/wlan-ng/prism2mgmt.c
new file mode 100644
index 0000000..c975025
--- /dev/null
+++ b/drivers/staging/wlan-ng/prism2mgmt.c
@@ -0,0 +1,2956 @@
+/* src/prism2/driver/prism2mgmt.c
+*
+* Management request handler functions.
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* The functions in this file handle management requests sent from
+* user mode.
+*
+* Most of these functions have two separate blocks of code that are
+* conditional on whether this is a station or an AP.  This is used
+* to separate out the STA and AP responses to these management primitives.
+* It's a choice (good, bad, indifferent?) to have the code in the same
+* place so it's clear that the same primitive is implemented in both
+* cases but has different behavior.
+*
+* --------------------------------------------------------------------
+*/
+
+/*================================================================*/
+/* System Includes */
+#define WLAN_DBVAR	prism2_debug
+
+#include "version.h"
+
+
+#include <linux/version.h>
+
+#include <linux/if_arp.h>
+#include <linux/module.h>
+#include <linux/kernel.h>
+#include <linux/wait.h>
+#include <linux/sched.h>
+#include <linux/types.h>
+#include <linux/slab.h>
+#include <linux/wireless.h>
+#include <linux/netdevice.h>
+#include <linux/delay.h>
+#include <asm/io.h>
+#include <asm/byteorder.h>
+#include <linux/random.h>
+
+#if (WLAN_HOSTIF == WLAN_USB)
+#include <linux/usb.h>
+#endif
+
+#if (WLAN_HOSTIF == WLAN_PCMCIA)
+#include <pcmcia/version.h>
+#include <pcmcia/cs_types.h>
+#include <pcmcia/cs.h>
+#include <pcmcia/cistpl.h>
+#include <pcmcia/ds.h>
+#include <pcmcia/cisreg.h>
+#endif
+
+#include "wlan_compat.h"
+
+/*================================================================*/
+/* Project Includes */
+
+#include "p80211types.h"
+#include "p80211hdr.h"
+#include "p80211mgmt.h"
+#include "p80211conv.h"
+#include "p80211msg.h"
+#include "p80211netdev.h"
+#include "p80211metadef.h"
+#include "p80211metastruct.h"
+#include "hfa384x.h"
+#include "prism2mgmt.h"
+
+/*================================================================*/
+/* Local Constants */
+
+
+/*================================================================*/
+/* Local Macros */
+
+/* Converts 802.11 format rate specifications to prism2 */
+#define p80211rate_to_p2bit(n)	((((n)&~BIT7) == 2) ? BIT0 : \
+				 (((n)&~BIT7) == 4) ? BIT1 : \
+				 (((n)&~BIT7) == 11) ? BIT2 : \
+				 (((n)&~BIT7) == 22) ? BIT3 : 0)
+
+/*================================================================*/
+/* Local Types */
+
+
+/*================================================================*/
+/* Local Static Definitions */
+
+
+/*================================================================*/
+/* Local Function Declarations */
+
+
+/*================================================================*/
+/* Function Definitions */
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_powermgmt
+*
+* Set the power management state of this station's MAC.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+*	interrupt
+----------------------------------------------------------------*/
+int prism2mgmt_powermgmt(wlandevice_t *wlandev, void *msgp)
+{
+	int 			result = 0;
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_dot11req_powermgmt_t	*msg = msgp;
+
+	DBFENTER;
+
+	if (!hw->ap) {
+
+		/*** STATION ***/
+
+		/*
+		 * Set CNFPMENABLED (on or off)
+		 * Set CNFMULTICASTRX (if PM on, otherwise clear)
+		 * Spout a notice stating that SleepDuration and
+		 * HoldoverDuration and PMEPS also have an impact.
+		 */
+		/* Powermgmt is currently unsupported for STA */
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+	} else {
+
+		/*** ACCESS POINT ***/
+
+		/* Powermgmt is never supported for AP */
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_scan
+*
+* Initiate a scan for BSSs.
+*
+* This function corresponds to MLME-scan.request and part of
+* MLME-scan.confirm.  As far as I can tell in the standard, there
+* are no restrictions on when a scan.request may be issued.  We have
+* to handle in whatever state the driver/MAC happen to be.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+*	interrupt
+----------------------------------------------------------------*/
+int prism2mgmt_scan(wlandevice_t *wlandev, void *msgp)
+{
+	int 			result = 0;
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_dot11req_scan_t	*msg = msgp;
+        UINT16                  roamingmode, word;
+	int                     i, timeout;
+	int                     istmpenable = 0;
+
+        hfa384x_HostScanRequest_data_t  scanreq;
+
+	DBFENTER;
+
+        if (hw->ap) {
+                WLAN_LOG_ERROR("Prism2 in AP mode cannot perform scans.\n");
+                result = 1;
+                msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+                goto exit;
+        }
+
+        /* gatekeeper check */
+        if (HFA384x_FIRMWARE_VERSION(hw->ident_sta_fw.major,
+                                     hw->ident_sta_fw.minor,
+                                     hw->ident_sta_fw.variant) <
+            HFA384x_FIRMWARE_VERSION(1,3,2)) {
+		WLAN_LOG_ERROR("HostScan not supported with current firmware (<1.3.2).\n");
+                result = 1;
+                msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+		goto exit;
+	}
+
+        memset(&scanreq, 0, sizeof(scanreq));
+
+        /* save current roaming mode */
+        result = hfa384x_drvr_getconfig16(hw,
+                        HFA384x_RID_CNFROAMINGMODE, &roamingmode);
+        if ( result ) {
+                WLAN_LOG_ERROR("getconfig(ROAMMODE) failed. result=%d\n",
+                                result);
+                msg->resultcode.data =
+                        P80211ENUM_resultcode_implementation_failure;
+                goto exit;
+        }
+
+        /* drop into mode 3 for the scan */
+        result = hfa384x_drvr_setconfig16(hw,
+                        HFA384x_RID_CNFROAMINGMODE,
+			HFA384x_ROAMMODE_HOSTSCAN_HOSTROAM);
+        if ( result ) {
+                WLAN_LOG_ERROR("setconfig(ROAMINGMODE) failed. result=%d\n",
+                                result);
+                msg->resultcode.data =
+                        P80211ENUM_resultcode_implementation_failure;
+                goto exit;
+        }
+
+        /* active or passive? */
+        if (HFA384x_FIRMWARE_VERSION(hw->ident_sta_fw.major,
+                                     hw->ident_sta_fw.minor,
+                                     hw->ident_sta_fw.variant) >
+            HFA384x_FIRMWARE_VERSION(1,5,0)) {
+                if (msg->scantype.data != P80211ENUM_scantype_active) {
+                        word = host2hfa384x_16(msg->maxchanneltime.data);
+                } else {
+                        word = 0;
+                }
+                result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFPASSIVESCANCTRL, word);
+                if ( result ) {
+                        WLAN_LOG_WARNING("Passive scan not supported with "
+					  "current firmware.  (<1.5.1)\n");
+                }
+        }
+
+	/* set up the txrate to be 2MBPS. Should be fastest basicrate... */
+	word = HFA384x_RATEBIT_2;
+	scanreq.txRate = host2hfa384x_16(word);
+
+        /* set up the channel list */
+        word = 0;
+        for (i = 0; i < msg->channellist.data.len; i++) {
+                UINT8 channel = msg->channellist.data.data[i];
+                if (channel > 14) continue;
+                /* channel 1 is BIT0 ... channel 14 is BIT13 */
+                word |= (1 << (channel-1));
+        }
+        scanreq.channelList = host2hfa384x_16(word);
+
+        /* set up the ssid, if present. */
+        scanreq.ssid.len = host2hfa384x_16(msg->ssid.data.len);
+        memcpy(scanreq.ssid.data, msg->ssid.data.data, msg->ssid.data.len);
+
+	/* Enable the MAC port if it's not already enabled  */
+	result = hfa384x_drvr_getconfig16(hw, HFA384x_RID_PORTSTATUS, &word);
+	if ( result ) {
+		WLAN_LOG_ERROR("getconfig(PORTSTATUS) failed. "
+				"result=%d\n", result);
+		msg->resultcode.data =
+			P80211ENUM_resultcode_implementation_failure;
+		goto exit;
+	}
+	if (word == HFA384x_PORTSTATUS_DISABLED) {
+		UINT16 wordbuf[17];
+
+		result = hfa384x_drvr_setconfig16(hw,
+			HFA384x_RID_CNFROAMINGMODE,
+			HFA384x_ROAMMODE_HOSTSCAN_HOSTROAM);
+		if ( result ) {
+			WLAN_LOG_ERROR("setconfig(ROAMINGMODE) failed. result=%d\n", result);
+			msg->resultcode.data =
+				P80211ENUM_resultcode_implementation_failure;
+			goto exit;
+		}
+		/* Construct a bogus SSID and assign it to OwnSSID and
+		 * DesiredSSID
+		 */
+		wordbuf[0] = host2hfa384x_16(WLAN_SSID_MAXLEN);
+		get_random_bytes(&wordbuf[1], WLAN_SSID_MAXLEN);
+		result = hfa384x_drvr_setconfig( hw, HFA384x_RID_CNFOWNSSID,
+				wordbuf, HFA384x_RID_CNFOWNSSID_LEN);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to set OwnSSID.\n");
+			msg->resultcode.data =
+				P80211ENUM_resultcode_implementation_failure;
+			goto exit;
+		}
+		result = hfa384x_drvr_setconfig( hw, HFA384x_RID_CNFDESIREDSSID,
+				wordbuf, HFA384x_RID_CNFDESIREDSSID_LEN);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to set DesiredSSID.\n");
+			msg->resultcode.data =
+				P80211ENUM_resultcode_implementation_failure;
+			goto exit;
+		}
+		/* bsstype */
+		result = hfa384x_drvr_setconfig16(hw,
+				HFA384x_RID_CNFPORTTYPE,
+				HFA384x_PORTTYPE_IBSS);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to set CNFPORTTYPE.\n");
+			msg->resultcode.data =
+				P80211ENUM_resultcode_implementation_failure;
+			goto exit;
+		}
+		/* ibss options */
+		result = hfa384x_drvr_setconfig16(hw,
+				HFA384x_RID_CREATEIBSS,
+				HFA384x_CREATEIBSS_JOINCREATEIBSS);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to set CREATEIBSS.\n");
+			msg->resultcode.data =
+				P80211ENUM_resultcode_implementation_failure;
+			goto exit;
+		}
+		result = hfa384x_drvr_enable(hw, 0);
+		if ( result ) {
+			WLAN_LOG_ERROR("drvr_enable(0) failed. "
+					"result=%d\n", result);
+			msg->resultcode.data =
+			P80211ENUM_resultcode_implementation_failure;
+			goto exit;
+		}
+		istmpenable = 1;
+	}
+
+        /* Figure out our timeout first Kus, then HZ */
+        timeout = msg->channellist.data.len * msg->maxchanneltime.data;
+	timeout = (timeout * HZ)/1000;
+
+        /* Issue the scan request */
+        hw->scanflag = 0;
+
+	WLAN_HEX_DUMP(5,"hscanreq", &scanreq, sizeof(scanreq));
+
+        result = hfa384x_drvr_setconfig( hw,
+                        HFA384x_RID_HOSTSCAN, &scanreq,
+                        sizeof(hfa384x_HostScanRequest_data_t));
+        if ( result ) {
+                WLAN_LOG_ERROR("setconfig(SCANREQUEST) failed. result=%d\n",
+                                result);
+                msg->resultcode.data =
+                        P80211ENUM_resultcode_implementation_failure;
+                goto exit;
+        }
+
+        /* sleep until info frame arrives */
+        wait_event_interruptible_timeout(hw->cmdq, hw->scanflag, timeout);
+
+	msg->numbss.status = P80211ENUM_msgitem_status_data_ok;
+	if (hw->scanflag == -1)
+		hw->scanflag = 0;
+
+	msg->numbss.data = hw->scanflag;
+
+        hw->scanflag = 0;
+
+	/* Disable port if we temporarily enabled it. */
+	if (istmpenable) {
+		result = hfa384x_drvr_disable(hw, 0);
+		if ( result ) {
+			WLAN_LOG_ERROR("drvr_disable(0) failed. "
+					"result=%d\n", result);
+			msg->resultcode.data =
+			P80211ENUM_resultcode_implementation_failure;
+			goto exit;
+		}
+	}
+
+	/* restore original roaming mode */
+	result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFROAMINGMODE,
+					  roamingmode);
+        if ( result ) {
+                WLAN_LOG_ERROR("setconfig(ROAMMODE) failed. result=%d\n",
+                                result);
+                msg->resultcode.data =
+                        P80211ENUM_resultcode_implementation_failure;
+                goto exit;
+        }
+
+        result = 0;
+        msg->resultcode.data = P80211ENUM_resultcode_success;
+
+ exit:
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_scan_results
+*
+* Retrieve the BSS description for one of the BSSs identified in
+* a scan.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+*	interrupt
+----------------------------------------------------------------*/
+int prism2mgmt_scan_results(wlandevice_t *wlandev, void *msgp)
+{
+	int 			result = 0;
+        p80211msg_dot11req_scan_results_t       *req;
+	hfa384x_t		*hw = wlandev->priv;
+	hfa384x_HScanResultSub_t *item = NULL;
+
+	int count;
+
+	DBFENTER;
+
+        req = (p80211msg_dot11req_scan_results_t *) msgp;
+
+	req->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+
+	if (hw->ap) {
+		result = 1;
+		req->resultcode.data = P80211ENUM_resultcode_not_supported;
+		goto exit;
+	}
+
+	if (! hw->scanresults) {
+		WLAN_LOG_ERROR("dot11req_scan_results can only be used after a successful dot11req_scan.\n");
+		result = 2;
+		req->resultcode.data = P80211ENUM_resultcode_invalid_parameters;
+		goto exit;
+	}
+
+        count = (hw->scanresults->framelen - 3) / 32;
+	if (count > 32)  count = 32;
+
+	if (req->bssindex.data >= count) {
+		WLAN_LOG_DEBUG(0, "requested index (%d) out of range (%d)\n",
+				req->bssindex.data, count);
+		result = 2;
+		req->resultcode.data = P80211ENUM_resultcode_invalid_parameters;
+		goto exit;
+	}
+
+	item = &(hw->scanresults->info.hscanresult.result[req->bssindex.data]);
+	/* signal and noise */
+	req->signal.status = P80211ENUM_msgitem_status_data_ok;
+	req->noise.status = P80211ENUM_msgitem_status_data_ok;
+	req->signal.data = hfa384x2host_16(item->sl);
+	req->noise.data = hfa384x2host_16(item->anl);
+
+	/* BSSID */
+	req->bssid.status = P80211ENUM_msgitem_status_data_ok;
+	req->bssid.data.len = WLAN_BSSID_LEN;
+	memcpy(req->bssid.data.data, item->bssid, WLAN_BSSID_LEN);
+
+	/* SSID */
+	req->ssid.status = P80211ENUM_msgitem_status_data_ok;
+	req->ssid.data.len = hfa384x2host_16(item->ssid.len);
+	memcpy(req->ssid.data.data, item->ssid.data, req->ssid.data.len);
+
+	/* supported rates */
+        for (count = 0; count < 10 ; count++)
+                if (item->supprates[count] == 0)
+                        break;
+
+#define REQBASICRATE(N) \
+	if ((count >= N) && DOT11_RATE5_ISBASIC_GET(item->supprates[(N)-1])) { \
+		req->basicrate ## N .data = item->supprates[(N)-1]; \
+		req->basicrate ## N .status = P80211ENUM_msgitem_status_data_ok; \
+	}
+
+	REQBASICRATE(1);
+	REQBASICRATE(2);
+	REQBASICRATE(3);
+	REQBASICRATE(4);
+	REQBASICRATE(5);
+	REQBASICRATE(6);
+	REQBASICRATE(7);
+	REQBASICRATE(8);
+
+#define REQSUPPRATE(N) \
+	if (count >= N) { \
+		req->supprate ## N .data = item->supprates[(N)-1]; \
+		req->supprate ## N .status = P80211ENUM_msgitem_status_data_ok; \
+	}
+
+	REQSUPPRATE(1);
+	REQSUPPRATE(2);
+	REQSUPPRATE(3);
+	REQSUPPRATE(4);
+	REQSUPPRATE(5);
+	REQSUPPRATE(6);
+	REQSUPPRATE(7);
+	REQSUPPRATE(8);
+
+	/* beacon period */
+	req->beaconperiod.status = P80211ENUM_msgitem_status_data_ok;
+	req->beaconperiod.data = hfa384x2host_16(item->bcnint);
+
+	/* timestamps */
+	req->timestamp.status = P80211ENUM_msgitem_status_data_ok;
+	req->timestamp.data = jiffies;
+	req->localtime.status = P80211ENUM_msgitem_status_data_ok;
+	req->localtime.data = jiffies;
+
+	/* atim window */
+	req->ibssatimwindow.status = P80211ENUM_msgitem_status_data_ok;
+	req->ibssatimwindow.data = hfa384x2host_16(item->atim);
+
+	/* Channel */
+	req->dschannel.status = P80211ENUM_msgitem_status_data_ok;
+	req->dschannel.data = hfa384x2host_16(item->chid);
+
+	/* capinfo bits */
+	count = hfa384x2host_16(item->capinfo);
+
+	/* privacy flag */
+	req->privacy.status = P80211ENUM_msgitem_status_data_ok;
+	req->privacy.data = WLAN_GET_MGMT_CAP_INFO_PRIVACY(count);
+
+	/* cfpollable */
+	req->cfpollable.status = P80211ENUM_msgitem_status_data_ok;
+	req->cfpollable.data = WLAN_GET_MGMT_CAP_INFO_CFPOLLABLE(count);
+
+	/* cfpollreq */
+	req->cfpollreq.status = P80211ENUM_msgitem_status_data_ok;
+	req->cfpollreq.data = WLAN_GET_MGMT_CAP_INFO_CFPOLLREQ(count);
+
+	/* bsstype */
+	req->bsstype.status =  P80211ENUM_msgitem_status_data_ok;
+	req->bsstype.data = (WLAN_GET_MGMT_CAP_INFO_ESS(count)) ?
+		P80211ENUM_bsstype_infrastructure :
+		P80211ENUM_bsstype_independent;
+
+	// item->proberesp_rate
+/*
+	req->fhdwelltime
+	req->fhhopset
+	req->fhhoppattern
+	req->fhhopindex
+        req->cfpdurremaining
+*/
+
+	result = 0;
+	req->resultcode.data = P80211ENUM_resultcode_success;
+
+ exit:
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_join
+*
+* Join a BSS whose BSS description was previously obtained with
+* a scan.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+*	interrupt
+----------------------------------------------------------------*/
+int prism2mgmt_join(wlandevice_t *wlandev, void *msgp)
+{
+	int 			result = 0;
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_dot11req_join_t	*msg = msgp;
+	DBFENTER;
+
+	if (!hw->ap) {
+
+		/*** STATION ***/
+
+		/* TODO: Implement after scan */
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+	} else {
+
+		/*** ACCESS POINT ***/
+
+		/* Never supported by APs */
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_p2_join
+*
+* Join a specific BSS
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+*	interrupt
+----------------------------------------------------------------*/
+int prism2mgmt_p2_join(wlandevice_t *wlandev, void *msgp)
+{
+	int 			result = 0;
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_p2req_join_t	*msg = msgp;
+	UINT16			reg;
+	p80211pstrd_t		*pstr;
+	UINT8			bytebuf[256];
+	hfa384x_bytestr_t	*p2bytestr = (hfa384x_bytestr_t*)bytebuf;
+        hfa384x_JoinRequest_data_t	joinreq;
+	DBFENTER;
+
+	if (!hw->ap) {
+
+		wlandev->macmode = WLAN_MACMODE_NONE;
+
+		/*** STATION ***/
+		/* Set the PortType */
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_success;
+
+		/* ess port */
+		result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFPORTTYPE, 1);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to set Port Type\n");
+			goto failed;
+		}
+
+		/* Set the auth type */
+		if ( msg->authtype.data == P80211ENUM_authalg_sharedkey ) {
+			reg = HFA384x_CNFAUTHENTICATION_SHAREDKEY;
+		} else {
+			reg = HFA384x_CNFAUTHENTICATION_OPENSYSTEM;
+		}
+		result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFAUTHENTICATION, reg);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to set Authentication\n");
+			goto failed;
+		}
+
+		/* Turn off all roaming */
+		hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFROAMINGMODE, 3);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to Turn off Roaming\n");
+			goto failed;
+		}
+
+		/* Basic rates */
+                reg = 0;
+		if ( msg->basicrate1.status == P80211ENUM_msgitem_status_data_ok ) {
+			reg = p80211rate_to_p2bit(msg->basicrate1.data);
+		}
+		if ( msg->basicrate2.status == P80211ENUM_msgitem_status_data_ok ) {
+			reg |= p80211rate_to_p2bit(msg->basicrate2.data);
+		}
+		if ( msg->basicrate3.status == P80211ENUM_msgitem_status_data_ok ) {
+			reg |= p80211rate_to_p2bit(msg->basicrate3.data);
+		}
+		if ( msg->basicrate4.status == P80211ENUM_msgitem_status_data_ok ) {
+			reg |= p80211rate_to_p2bit(msg->basicrate4.data);
+		}
+		if ( msg->basicrate5.status == P80211ENUM_msgitem_status_data_ok ) {
+			reg |= p80211rate_to_p2bit(msg->basicrate5.data);
+		}
+		if ( msg->basicrate6.status == P80211ENUM_msgitem_status_data_ok ) {
+			reg |= p80211rate_to_p2bit(msg->basicrate6.data);
+		}
+		if ( msg->basicrate7.status == P80211ENUM_msgitem_status_data_ok ) {
+			reg |= p80211rate_to_p2bit(msg->basicrate7.data);
+		}
+		if ( msg->basicrate8.status == P80211ENUM_msgitem_status_data_ok ) {
+			reg |= p80211rate_to_p2bit(msg->basicrate8.data);
+		}
+		if( reg == 0)
+			 reg = 0x03;
+		result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFBASICRATES, reg);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to set basicrates=%d.\n", reg);
+			goto failed;
+		}
+
+		/* Operational rates (supprates and txratecontrol) */
+		reg = 0;
+		if ( msg->operationalrate1.status == P80211ENUM_msgitem_status_data_ok ) {
+			reg = p80211rate_to_p2bit(msg->operationalrate1.data);
+		}
+		if ( msg->operationalrate2.status == P80211ENUM_msgitem_status_data_ok ) {
+			reg |= p80211rate_to_p2bit(msg->operationalrate2.data);
+		}
+		if ( msg->operationalrate3.status == P80211ENUM_msgitem_status_data_ok ) {
+			reg |= p80211rate_to_p2bit(msg->operationalrate3.data);
+		}
+		if ( msg->operationalrate4.status == P80211ENUM_msgitem_status_data_ok ) {
+			reg |= p80211rate_to_p2bit(msg->operationalrate4.data);
+		}
+		if ( msg->operationalrate5.status == P80211ENUM_msgitem_status_data_ok ) {
+			reg |= p80211rate_to_p2bit(msg->operationalrate5.data);
+		}
+		if ( msg->operationalrate6.status == P80211ENUM_msgitem_status_data_ok ) {
+			reg |= p80211rate_to_p2bit(msg->operationalrate6.data);
+		}
+		if ( msg->operationalrate7.status == P80211ENUM_msgitem_status_data_ok ) {
+			reg |= p80211rate_to_p2bit(msg->operationalrate7.data);
+		}
+		if ( msg->operationalrate8.status == P80211ENUM_msgitem_status_data_ok ) {
+			reg |= p80211rate_to_p2bit(msg->operationalrate8.data);
+		}
+		if( reg == 0)
+			 reg = 0x0f;
+		result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFSUPPRATES, reg);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to set supprates=%d.\n", reg);
+			goto failed;
+		}
+
+ 		result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_TXRATECNTL, reg);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to set txrates=%d.\n", reg);
+			goto failed;
+		}
+
+		/* Set the ssid */
+		memset(bytebuf, 0, 256);
+		pstr = (p80211pstrd_t*)&(msg->ssid.data);
+		prism2mgmt_pstr2bytestr(p2bytestr, pstr);
+		result = hfa384x_drvr_setconfig(
+			hw, HFA384x_RID_CNFDESIREDSSID,
+			bytebuf, HFA384x_RID_CNFDESIREDSSID_LEN);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to set SSID\n");
+			goto failed;
+		}
+
+		/* Enable the Port */
+		result = hfa384x_cmd_enable(hw, 0);
+		if ( result ) {
+			WLAN_LOG_ERROR("Enable macport failed, result=%d.\n", result);
+			goto failed;
+		}
+
+		/* Fill in the join request */
+		joinreq.channel = msg->channel.data;
+		memcpy( joinreq.bssid, ((unsigned char *) &msg->bssid.data) + 1, WLAN_BSSID_LEN);
+		hw->joinreq = joinreq;
+		hw->join_ap = 1;
+
+		/* Send the join request */
+		result = hfa384x_drvr_setconfig( hw,
+			HFA384x_RID_JOINREQUEST,
+			&joinreq, HFA384x_RID_JOINREQUEST_LEN);
+                if(result != 0) {
+			WLAN_LOG_ERROR("Join request failed, result=%d.\n", result);
+			goto failed;
+		}
+
+	} else {
+
+		/*** ACCESS POINT ***/
+
+		/* Never supported by APs */
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+	}
+
+        goto done;
+failed:
+	WLAN_LOG_DEBUG(1, "Failed to set a config option, result=%d\n", result);
+	msg->resultcode.data = P80211ENUM_resultcode_invalid_parameters;
+
+done:
+        result = 0;
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_authenticate
+*
+* Station should be begin an authentication exchange.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+*	interrupt
+----------------------------------------------------------------*/
+int prism2mgmt_authenticate(wlandevice_t *wlandev, void *msgp)
+{
+	int 			result = 0;
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_dot11req_authenticate_t	*msg = msgp;
+	DBFENTER;
+
+	if (!hw->ap) {
+
+		/*** STATION ***/
+
+		/* TODO: Decide how we're going to handle this one w/ Prism2 */
+		/*       It could be entertaining since Prism2 doesn't have  */
+		/*       an explicit way to control this */
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+	} else {
+
+		/*** ACCESS POINT ***/
+
+		/* Never supported by APs */
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_deauthenticate
+*
+* Send a deauthenticate notification.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+*	interrupt
+----------------------------------------------------------------*/
+int prism2mgmt_deauthenticate(wlandevice_t *wlandev, void *msgp)
+{
+	int 			result = 0;
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_dot11req_deauthenticate_t	*msg = msgp;
+	DBFENTER;
+
+	if (!hw->ap) {
+
+		/*** STATION ***/
+
+		/* TODO: Decide how we're going to handle this one w/ Prism2 */
+		/*       It could be entertaining since Prism2 doesn't have  */
+		/*       an explicit way to control this */
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+	} else {
+
+		/*** ACCESS POINT ***/
+		hfa384x_drvr_handover(hw, msg->peerstaaddress.data.data);
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_success;
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_associate
+*
+* Associate with an ESS.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+*	interrupt
+----------------------------------------------------------------*/
+int prism2mgmt_associate(wlandevice_t *wlandev, void *msgp)
+{
+	hfa384x_t		*hw = wlandev->priv;
+	int 			result = 0;
+	p80211msg_dot11req_associate_t	*msg = msgp;
+	DBFENTER;
+
+	if (!hw->ap) {
+
+		/*** STATION ***/
+
+#if 0
+		/* Set the TxRates */
+		reg = 0x000f;
+		hfa384x_drvr_setconfig16(hw, HFA384x_RID_TXRATECNTL, reg);
+#endif
+
+		/* Set the PortType */
+		/* ess port */
+		hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFPORTTYPE, 1);
+
+		/* Enable the Port */
+		hfa384x_drvr_enable(hw, 0);
+
+		/* Set the resultcode */
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_success;
+
+	} else {
+
+		/*** ACCESS POINT ***/
+
+		/* Never supported on AP */
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_reassociate
+*
+* Renew association because of a BSS change.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+*	interrupt
+----------------------------------------------------------------*/
+int prism2mgmt_reassociate(wlandevice_t *wlandev, void *msgp)
+{
+	int 			result = 0;
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_dot11req_reassociate_t	*msg = msgp;
+	DBFENTER;
+
+	if (!hw->ap) {
+
+		/*** STATION ***/
+
+		/* TODO: Not supported yet...not sure how we're going to do it */
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+	} else {
+
+		/*** ACCESS POINT ***/
+
+		/* Never supported on AP */
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_disassociate
+*
+* Send a disassociation notification.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+*	interrupt
+----------------------------------------------------------------*/
+int prism2mgmt_disassociate(wlandevice_t *wlandev, void *msgp)
+{
+	int 			result = 0;
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_dot11req_disassociate_t	*msg = msgp;
+	DBFENTER;
+
+	if (!hw->ap) {
+
+		/*** STATION ***/
+
+		/* TODO: Not supported yet...not sure how to do it */
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+	} else {
+
+		/*** ACCESS POINT ***/
+		hfa384x_drvr_handover(hw, msg->peerstaaddress.data.data);
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_success;
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_reset
+*
+* Reset the MAC and MSD.  The p80211 layer has it's own handling
+* that should be done before and after this function.
+* Procedure:
+*   - disable system interrupts ??
+*   - disable MAC interrupts
+*   - restore system interrupts
+*   - issue the MAC initialize command
+*   - clear any MSD level state (including timers, queued events,
+*     etc.).  Note that if we're removing timer'd/queue events, we may
+*     need to have remained in the system interrupt disabled state.
+*     We should be left in the same state that we're in following
+*     driver initialization.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer, MAY BE NULL! for a driver local
+*			call.
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread, commonly wlanctl, but might be rmmod/pci_close.
+----------------------------------------------------------------*/
+int prism2mgmt_reset(wlandevice_t *wlandev, void *msgp)
+{
+	int 			result = 0;
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_dot11req_reset_t	*msg = msgp;
+	DBFENTER;
+
+	/*
+	 * This is supported on both AP and STA and it's not allowed
+	 * to fail.
+	 */
+	if ( msgp ) {
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_success;
+		WLAN_LOG_INFO("dot11req_reset: the macaddress and "
+			"setdefaultmib arguments are currently unsupported.\n");
+	}
+
+	/*
+	 * If we got this far, the MSD must be in the MSDRUNNING state
+	 * therefore, we must stop and then restart the hw/MAC combo.
+	 */
+	hfa384x_drvr_stop(hw);
+	result = hfa384x_drvr_start(hw);
+	if (result != 0) {
+		WLAN_LOG_ERROR("dot11req_reset: Initialize command failed,"
+				" bad things will happen from here.\n");
+		return 0;
+	}
+
+	DBFEXIT;
+	return 0;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_start
+*
+* Start a BSS.  Any station can do this for IBSS, only AP for ESS.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+*	interrupt
+----------------------------------------------------------------*/
+int prism2mgmt_start(wlandevice_t *wlandev, void *msgp)
+{
+	int 			result = 0;
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_dot11req_start_t	*msg = msgp;
+
+	p80211pstrd_t		*pstr;
+	UINT8			bytebuf[80];
+	hfa384x_bytestr_t	*p2bytestr = (hfa384x_bytestr_t*)bytebuf;
+	hfa384x_PCFInfo_data_t	*pcfinfo = (hfa384x_PCFInfo_data_t*)bytebuf;
+	UINT16			word;
+	DBFENTER;
+
+	wlandev->macmode = WLAN_MACMODE_NONE;
+
+	/* Set the SSID */
+	memcpy(&wlandev->ssid, &msg->ssid.data, sizeof(msg->ssid.data));
+
+	if (!hw->ap) {
+		/*** ADHOC IBSS ***/
+		/* see if current f/w is less than 8c3 */
+		if (HFA384x_FIRMWARE_VERSION(hw->ident_sta_fw.major,
+					     hw->ident_sta_fw.minor,
+					     hw->ident_sta_fw.variant) <
+		    HFA384x_FIRMWARE_VERSION(0,8,3)) {
+			/* Ad-Hoc not quite supported on Prism2 */
+			msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+			msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+			goto done;
+		}
+
+  		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+
+		/*** STATION ***/
+		/* Set the REQUIRED config items */
+		/* SSID */
+		pstr = (p80211pstrd_t*)&(msg->ssid.data);
+		prism2mgmt_pstr2bytestr(p2bytestr, pstr);
+		result = hfa384x_drvr_setconfig( hw, HFA384x_RID_CNFOWNSSID,
+				bytebuf, HFA384x_RID_CNFOWNSSID_LEN);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to set CnfOwnSSID\n");
+			goto failed;
+		}
+		result = hfa384x_drvr_setconfig( hw, HFA384x_RID_CNFDESIREDSSID,
+				bytebuf, HFA384x_RID_CNFDESIREDSSID_LEN);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to set CnfDesiredSSID\n");
+			goto failed;
+		}
+
+		/* bsstype - we use the default in the ap firmware */
+		/* IBSS port */
+		hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFPORTTYPE, 0);
+
+		/* beacon period */
+		word = msg->beaconperiod.data;
+		result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFAPBCNINT, word);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to set beacon period=%d.\n", word);
+			goto failed;
+		}
+
+		/* dschannel */
+		word = msg->dschannel.data;
+		result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFOWNCHANNEL, word);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to set channel=%d.\n", word);
+			goto failed;
+		}
+		/* Basic rates */
+		word = p80211rate_to_p2bit(msg->basicrate1.data);
+		if ( msg->basicrate2.status == P80211ENUM_msgitem_status_data_ok ) {
+			word |= p80211rate_to_p2bit(msg->basicrate2.data);
+		}
+		if ( msg->basicrate3.status == P80211ENUM_msgitem_status_data_ok ) {
+			word |= p80211rate_to_p2bit(msg->basicrate3.data);
+		}
+		if ( msg->basicrate4.status == P80211ENUM_msgitem_status_data_ok ) {
+			word |= p80211rate_to_p2bit(msg->basicrate4.data);
+		}
+		if ( msg->basicrate5.status == P80211ENUM_msgitem_status_data_ok ) {
+			word |= p80211rate_to_p2bit(msg->basicrate5.data);
+		}
+		if ( msg->basicrate6.status == P80211ENUM_msgitem_status_data_ok ) {
+			word |= p80211rate_to_p2bit(msg->basicrate6.data);
+		}
+		if ( msg->basicrate7.status == P80211ENUM_msgitem_status_data_ok ) {
+			word |= p80211rate_to_p2bit(msg->basicrate7.data);
+		}
+		if ( msg->basicrate8.status == P80211ENUM_msgitem_status_data_ok ) {
+			word |= p80211rate_to_p2bit(msg->basicrate8.data);
+		}
+		result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFBASICRATES, word);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to set basicrates=%d.\n", word);
+			goto failed;
+		}
+
+		/* Operational rates (supprates and txratecontrol) */
+		word = p80211rate_to_p2bit(msg->operationalrate1.data);
+		if ( msg->operationalrate2.status == P80211ENUM_msgitem_status_data_ok ) {
+			word |= p80211rate_to_p2bit(msg->operationalrate2.data);
+		}
+		if ( msg->operationalrate3.status == P80211ENUM_msgitem_status_data_ok ) {
+			word |= p80211rate_to_p2bit(msg->operationalrate3.data);
+		}
+		if ( msg->operationalrate4.status == P80211ENUM_msgitem_status_data_ok ) {
+			word |= p80211rate_to_p2bit(msg->operationalrate4.data);
+		}
+		if ( msg->operationalrate5.status == P80211ENUM_msgitem_status_data_ok ) {
+			word |= p80211rate_to_p2bit(msg->operationalrate5.data);
+		}
+		if ( msg->operationalrate6.status == P80211ENUM_msgitem_status_data_ok ) {
+			word |= p80211rate_to_p2bit(msg->operationalrate6.data);
+		}
+		if ( msg->operationalrate7.status == P80211ENUM_msgitem_status_data_ok ) {
+			word |= p80211rate_to_p2bit(msg->operationalrate7.data);
+		}
+		if ( msg->operationalrate8.status == P80211ENUM_msgitem_status_data_ok ) {
+			word |= p80211rate_to_p2bit(msg->operationalrate8.data);
+		}
+		result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFSUPPRATES, word);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to set supprates=%d.\n", word);
+			goto failed;
+		}
+
+ 		result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_TXRATECNTL, word);
+		if ( result ) {
+			WLAN_LOG_ERROR("Failed to set txrates=%d.\n", word);
+			goto failed;
+		}
+
+		/* Set the macmode so the frame setup code knows what to do */
+		if ( msg->bsstype.data == P80211ENUM_bsstype_independent ) {
+			wlandev->macmode = WLAN_MACMODE_IBSS_STA;
+			/* lets extend the data length a bit */
+			hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFMAXDATALEN, 2304);
+		}
+
+		/* Enable the Port */
+		result = hfa384x_drvr_enable(hw, 0);
+		if ( result ) {
+			WLAN_LOG_ERROR("Enable macport failed, result=%d.\n", result);
+			goto failed;
+		}
+
+		msg->resultcode.data = P80211ENUM_resultcode_success;
+
+		goto done;
+	}
+
+	/*** ACCESS POINT ***/
+
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+
+	/* Validate the command, if BSStype=infra is the tertiary loaded? */
+	if ( msg->bsstype.data == P80211ENUM_bsstype_independent ) {
+		WLAN_LOG_ERROR("AP driver cannot create IBSS.\n");
+		goto failed;
+	} else if ( hw->cap_sup_sta.id != 5) {
+		WLAN_LOG_ERROR("AP driver failed to detect AP firmware.\n");
+		goto failed;
+	}
+
+	/* Set the REQUIRED config items */
+	/* SSID */
+	pstr = (p80211pstrd_t*)&(msg->ssid.data);
+	prism2mgmt_pstr2bytestr(p2bytestr, pstr);
+	result = hfa384x_drvr_setconfig( hw, HFA384x_RID_CNFOWNSSID,
+				bytebuf, HFA384x_RID_CNFOWNSSID_LEN);
+	if ( result ) {
+		WLAN_LOG_ERROR("Failed to set SSID, result=0x%04x\n", result);
+		goto failed;
+	}
+
+	/* bsstype - we use the default in the ap firmware */
+
+	/* beacon period */
+	word = msg->beaconperiod.data;
+	result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFAPBCNINT, word);
+	if ( result ) {
+		WLAN_LOG_ERROR("Failed to set beacon period=%d.\n", word);
+		goto failed;
+	}
+
+	/* dschannel */
+	word = msg->dschannel.data;
+	result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFOWNCHANNEL, word);
+	if ( result ) {
+		WLAN_LOG_ERROR("Failed to set channel=%d.\n", word);
+		goto failed;
+	}
+	/* Basic rates */
+	word = p80211rate_to_p2bit(msg->basicrate1.data);
+	if ( msg->basicrate2.status == P80211ENUM_msgitem_status_data_ok ) {
+		word |= p80211rate_to_p2bit(msg->basicrate2.data);
+	}
+	if ( msg->basicrate3.status == P80211ENUM_msgitem_status_data_ok ) {
+		word |= p80211rate_to_p2bit(msg->basicrate3.data);
+	}
+	if ( msg->basicrate4.status == P80211ENUM_msgitem_status_data_ok ) {
+		word |= p80211rate_to_p2bit(msg->basicrate4.data);
+	}
+	if ( msg->basicrate5.status == P80211ENUM_msgitem_status_data_ok ) {
+		word |= p80211rate_to_p2bit(msg->basicrate5.data);
+	}
+	if ( msg->basicrate6.status == P80211ENUM_msgitem_status_data_ok ) {
+		word |= p80211rate_to_p2bit(msg->basicrate6.data);
+	}
+	if ( msg->basicrate7.status == P80211ENUM_msgitem_status_data_ok ) {
+		word |= p80211rate_to_p2bit(msg->basicrate7.data);
+	}
+	if ( msg->basicrate8.status == P80211ENUM_msgitem_status_data_ok ) {
+		word |= p80211rate_to_p2bit(msg->basicrate8.data);
+	}
+	result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFBASICRATES, word);
+	if ( result ) {
+		WLAN_LOG_ERROR("Failed to set basicrates=%d.\n", word);
+		goto failed;
+	}
+
+	/* Operational rates (supprates and txratecontrol) */
+	word = p80211rate_to_p2bit(msg->operationalrate1.data);
+	if ( msg->operationalrate2.status == P80211ENUM_msgitem_status_data_ok ) {
+		word |= p80211rate_to_p2bit(msg->operationalrate2.data);
+	}
+	if ( msg->operationalrate3.status == P80211ENUM_msgitem_status_data_ok ) {
+		word |= p80211rate_to_p2bit(msg->operationalrate3.data);
+	}
+	if ( msg->operationalrate4.status == P80211ENUM_msgitem_status_data_ok ) {
+		word |= p80211rate_to_p2bit(msg->operationalrate4.data);
+	}
+	if ( msg->operationalrate5.status == P80211ENUM_msgitem_status_data_ok ) {
+		word |= p80211rate_to_p2bit(msg->operationalrate5.data);
+	}
+	if ( msg->operationalrate6.status == P80211ENUM_msgitem_status_data_ok ) {
+		word |= p80211rate_to_p2bit(msg->operationalrate6.data);
+	}
+	if ( msg->operationalrate7.status == P80211ENUM_msgitem_status_data_ok ) {
+		word |= p80211rate_to_p2bit(msg->operationalrate7.data);
+	}
+	if ( msg->operationalrate8.status == P80211ENUM_msgitem_status_data_ok ) {
+		word |= p80211rate_to_p2bit(msg->operationalrate8.data);
+	}
+	result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFSUPPRATES, word);
+	if ( result ) {
+		WLAN_LOG_ERROR("Failed to set supprates=%d.\n", word);
+		goto failed;
+	}
+	result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_TXRATECNTL0, word);
+	if ( result ) {
+		WLAN_LOG_ERROR("Failed to set txrates=%d.\n", word);
+		goto failed;
+	}
+
+	/* ibssatimwindow */
+	if (msg->ibssatimwindow.status == P80211ENUM_msgitem_status_data_ok) {
+		WLAN_LOG_INFO("prism2mgmt_start: atimwindow not used in "
+			       "Infrastructure mode, ignored.\n");
+	}
+
+	/* DTIM period */
+	word = msg->dtimperiod.data;
+	result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFOWNDTIMPER, word);
+	if ( result ) {
+		WLAN_LOG_ERROR("Failed to set dtim period=%d.\n", word);
+		goto failed;
+	}
+
+	/* probedelay */
+	if (msg->probedelay.status == P80211ENUM_msgitem_status_data_ok) {
+		WLAN_LOG_INFO("prism2mgmt_start: probedelay not "
+			       "supported in prism2, ignored.\n");
+	}
+
+	/* cfpollable, cfpollreq, cfpperiod, cfpmaxduration */
+	if (msg->cfpollable.data == P80211ENUM_truth_true &&
+	    msg->cfpollreq.data == P80211ENUM_truth_true ) {
+		WLAN_LOG_ERROR("cfpollable=cfpollreq=true is illegal.\n");
+		result = -1;
+		goto failed;
+	}
+
+	/* read the PCFInfo and update */
+	result = hfa384x_drvr_getconfig(hw, HFA384x_RID_CNFAPPCFINFO,
+					pcfinfo, HFA384x_RID_CNFAPPCFINFO_LEN);
+	if ( result ) {
+		WLAN_LOG_INFO("prism2mgmt_start: read(pcfinfo) failed, "
+				"assume it's "
+				"not supported, pcf settings ignored.\n");
+		goto pcf_skip;
+	}
+	if ((msg->cfpollable.data == P80211ENUM_truth_false &&
+	     msg->cfpollreq.data == P80211ENUM_truth_false) ) {
+	    	pcfinfo->MediumOccupancyLimit = 0;
+		pcfinfo->CFPPeriod = 0;
+		pcfinfo->CFPMaxDuration = 0;
+		pcfinfo->CFPFlags &= host2hfa384x_16((UINT16)~BIT0);
+
+		if ( msg->cfpperiod.status == P80211ENUM_msgitem_status_data_ok ||
+		     msg->cfpmaxduration.status == P80211ENUM_msgitem_status_data_ok ) {
+			WLAN_LOG_WARNING(
+				"Setting cfpperiod or cfpmaxduration when "
+				"cfpollable and cfreq are false is pointless.\n");
+		}
+	}
+	if ((msg->cfpollable.data == P80211ENUM_truth_true ||
+	     msg->cfpollreq.data == P80211ENUM_truth_true) ) {
+		if ( msg->cfpollable.data == P80211ENUM_truth_true) {
+			pcfinfo->CFPFlags |= host2hfa384x_16((UINT16)BIT0);
+		}
+
+		if ( msg->cfpperiod.status == P80211ENUM_msgitem_status_data_ok) {
+			pcfinfo->CFPPeriod = msg->cfpperiod.data;
+			pcfinfo->CFPPeriod = host2hfa384x_16(pcfinfo->CFPPeriod);
+		}
+
+		if ( msg->cfpmaxduration.status == P80211ENUM_msgitem_status_data_ok) {
+			pcfinfo->CFPMaxDuration = msg->cfpmaxduration.data;
+			pcfinfo->CFPMaxDuration = host2hfa384x_16(pcfinfo->CFPMaxDuration);
+			pcfinfo->MediumOccupancyLimit = pcfinfo->CFPMaxDuration;
+		}
+	}
+	result = hfa384x_drvr_setconfig(hw, HFA384x_RID_CNFAPPCFINFO,
+					pcfinfo, HFA384x_RID_CNFAPPCFINFO_LEN);
+	if ( result ) {
+		WLAN_LOG_ERROR("write(pcfinfo) failed.\n");
+		goto failed;
+	}
+
+pcf_skip:
+	/* Set the macmode so the frame setup code knows what to do */
+	if ( msg->bsstype.data == P80211ENUM_bsstype_infrastructure ) {
+		wlandev->macmode = WLAN_MACMODE_ESS_AP;
+		/* lets extend the data length a bit */
+		hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFMAXDATALEN, 2304);
+	}
+
+	/* Set the BSSID to the same as our MAC */
+	memcpy( wlandev->bssid, wlandev->netdev->dev_addr, WLAN_BSSID_LEN);
+
+	/* Enable the Port */
+	result = hfa384x_drvr_enable(hw, 0);
+	if ( result ) {
+		WLAN_LOG_ERROR("Enable macport failed, result=%d.\n", result);
+		goto failed;
+	}
+
+	msg->resultcode.data = P80211ENUM_resultcode_success;
+
+	goto done;
+failed:
+	WLAN_LOG_DEBUG(1, "Failed to set a config option, result=%d\n", result);
+	msg->resultcode.data = P80211ENUM_resultcode_invalid_parameters;
+
+done:
+	result = 0;
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_enable
+*
+* Start a BSS.  Any station can do this for IBSS, only AP for ESS.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+*	interrupt
+----------------------------------------------------------------*/
+int prism2mgmt_enable(wlandevice_t *wlandev, void *msgp)
+{
+	int			result = 0;
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_p2req_enable_t	*msg = msgp;
+	DBFENTER;
+
+	if (!hw->ap) {
+
+		/*** STATION ***/
+
+		/* Ad-Hoc not quite supported on Prism2 */
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+		goto done;
+	}
+
+	/*** ACCESS POINT ***/
+
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+
+	/* Is the tertiary loaded? */
+	if ( hw->cap_sup_sta.id != 5) {
+		WLAN_LOG_ERROR("AP driver failed to detect AP firmware.\n");
+		goto failed;
+	}
+
+	/* Set the macmode so the frame setup code knows what to do */
+	wlandev->macmode = WLAN_MACMODE_ESS_AP;
+
+	/* Set the BSSID to the same as our MAC */
+	memcpy( wlandev->bssid, wlandev->netdev->dev_addr, WLAN_BSSID_LEN);
+
+	/* Enable the Port */
+	result = hfa384x_drvr_enable(hw, 0);
+	if ( result ) {
+		WLAN_LOG_ERROR("Enable macport failed, result=%d.\n", result);
+		goto failed;
+	}
+
+	msg->resultcode.data = P80211ENUM_resultcode_success;
+
+	goto done;
+failed:
+	msg->resultcode.data = P80211ENUM_resultcode_invalid_parameters;
+
+done:
+	result = 0;
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_readpda
+*
+* Collect the PDA data and put it in the message.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+----------------------------------------------------------------*/
+int prism2mgmt_readpda(wlandevice_t *wlandev, void *msgp)
+{
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_p2req_readpda_t	*msg = msgp;
+	int				result;
+	DBFENTER;
+
+	/* We only support collecting the PDA when in the FWLOAD
+	 * state.
+	 */
+	if (wlandev->msdstate != WLAN_MSD_FWLOAD) {
+		WLAN_LOG_ERROR(
+			"PDA may only be read "
+			"in the fwload state.\n");
+		msg->resultcode.data =
+			P80211ENUM_resultcode_implementation_failure;
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+	} else {
+		/*  Call drvr_readpda(), it handles the auxport enable
+		 *  and validating the returned PDA.
+		 */
+		result = hfa384x_drvr_readpda(
+			hw,
+			msg->pda.data,
+			HFA384x_PDA_LEN_MAX);
+		if (result) {
+			WLAN_LOG_ERROR(
+				"hfa384x_drvr_readpda() failed, "
+				"result=%d\n",
+				result);
+
+			msg->resultcode.data =
+				P80211ENUM_resultcode_implementation_failure;
+			msg->resultcode.status =
+				P80211ENUM_msgitem_status_data_ok;
+			DBFEXIT;
+			return 0;
+		}
+		msg->pda.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_success;
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+	}
+
+	DBFEXIT;
+	return 0;
+}
+
+/*----------------------------------------------------------------
+* prism2mgmt_readcis
+*
+* Collect the CIS data and put it in the message.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+----------------------------------------------------------------*/
+int prism2mgmt_readcis(wlandevice_t *wlandev, void *msgp)
+{
+	int			result;
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_p2req_readcis_t	*msg = msgp;
+
+	DBFENTER;
+
+        memset(msg->cis.data, 0, sizeof(msg->cis.data));
+
+	result = hfa384x_drvr_getconfig(hw, HFA384x_RID_CIS,
+					msg->cis.data, HFA384x_RID_CIS_LEN);
+	if ( result ) {
+		WLAN_LOG_INFO("prism2mgmt_readcis: read(cis) failed.\n");
+		msg->cis.status = P80211ENUM_msgitem_status_no_value;
+		msg->resultcode.data = P80211ENUM_resultcode_implementation_failure;
+
+		}
+	else {
+		msg->cis.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_success;
+		}
+
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+
+	DBFEXIT;
+	return 0;
+}
+
+/*----------------------------------------------------------------
+* prism2mgmt_auxport_state
+*
+* Enables/Disables the card's auxiliary port.  Should be called
+* before and after a sequence of auxport_read()/auxport_write()
+* calls.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+----------------------------------------------------------------*/
+int prism2mgmt_auxport_state(wlandevice_t *wlandev, void *msgp)
+{
+	p80211msg_p2req_auxport_state_t	*msg = msgp;
+
+#if (WLAN_HOSTIF != WLAN_USB)
+	hfa384x_t		*hw = wlandev->priv;
+	DBFENTER;
+
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+	if (msg->enable.data == P80211ENUM_truth_true) {
+		if ( hfa384x_cmd_aux_enable(hw, 0) ) {
+			msg->resultcode.data = P80211ENUM_resultcode_implementation_failure;
+		} else {
+			msg->resultcode.data = P80211ENUM_resultcode_success;
+		}
+	} else {
+		hfa384x_cmd_aux_disable(hw);
+		msg->resultcode.data = P80211ENUM_resultcode_success;
+	}
+
+#else /* !USB */
+	DBFENTER;
+
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+	msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+
+#endif /* WLAN_HOSTIF != WLAN_USB */
+
+	DBFEXIT;
+	return 0;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_auxport_read
+*
+* Copies data from the card using the auxport.  The auxport must
+* have previously been enabled.  Note: this is not the way to
+* do downloads, see the [ram|flash]dl functions.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+----------------------------------------------------------------*/
+int prism2mgmt_auxport_read(wlandevice_t *wlandev, void *msgp)
+{
+#if (WLAN_HOSTIF != WLAN_USB)
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_p2req_auxport_read_t	*msg = msgp;
+	UINT32			addr;
+	UINT32			len;
+	UINT8*			buf;
+	UINT32			maxlen = sizeof(msg->data.data);
+	DBFENTER;
+
+	if ( hw->auxen ) {
+		addr = msg->addr.data;
+		len = msg->len.data;
+		buf = msg->data.data;
+		if ( len <= maxlen ) {  /* max read/write size */
+			hfa384x_copy_from_aux(hw, addr, HFA384x_AUX_CTL_EXTDS, buf, len);
+			msg->resultcode.data = P80211ENUM_resultcode_success;
+		} else {
+			WLAN_LOG_DEBUG(1,"Attempt to read > maxlen from auxport.\n");
+			msg->resultcode.data = P80211ENUM_resultcode_refused;
+		}
+
+	} else {
+		msg->resultcode.data = P80211ENUM_resultcode_refused;
+	}
+	msg->data.status = P80211ENUM_msgitem_status_data_ok;
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+
+	DBFEXIT;
+	return 0;
+#else
+	DBFENTER;
+
+	WLAN_LOG_ERROR("prism2mgmt_auxport_read: Not supported on USB.\n");
+
+	DBFEXIT;
+	return 0;
+#endif
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_auxport_write
+*
+* Copies data to the card using the auxport.  The auxport must
+* have previously been enabled.  Note: this is not the way to
+* do downloads, see the [ram|flash]dl functions.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+----------------------------------------------------------------*/
+int prism2mgmt_auxport_write(wlandevice_t *wlandev, void *msgp)
+{
+#if (WLAN_HOSTIF != WLAN_USB)
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_p2req_auxport_write_t	*msg = msgp;
+	UINT32			addr;
+	UINT32			len;
+	UINT8*			buf;
+	UINT32			maxlen = sizeof(msg->data.data);
+	DBFENTER;
+
+	if ( hw->auxen ) {
+		addr = msg->addr.data;
+		len = msg->len.data;
+		buf = msg->data.data;
+		if ( len <= maxlen ) {  /* max read/write size */
+			hfa384x_copy_to_aux(hw, addr, HFA384x_AUX_CTL_EXTDS, buf, len);
+		} else {
+			WLAN_LOG_DEBUG(1,"Attempt to write > maxlen from auxport.\n");
+			msg->resultcode.data = P80211ENUM_resultcode_refused;
+		}
+
+	} else {
+		msg->resultcode.data = P80211ENUM_resultcode_refused;
+	}
+	msg->data.status = P80211ENUM_msgitem_status_data_ok;
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+
+	DBFEXIT;
+	return 0;
+#else
+	DBFENTER;
+	WLAN_LOG_ERROR("prism2mgmt_auxport_read: Not supported on USB.\n");
+	DBFEXIT;
+	return 0;
+#endif
+}
+
+/*----------------------------------------------------------------
+* prism2mgmt_low_level
+*
+* Puts the card into the desired test mode.
+*
+* Arguments:
+*       wlandev         wlan device structure
+*       msgp            ptr to msg buffer
+*
+* Returns:
+*       0       success and done
+*       <0      success, but we're waiting for something to finish.
+*       >0      an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*       process thread  (usually)
+----------------------------------------------------------------*/
+int prism2mgmt_low_level(wlandevice_t *wlandev, void *msgp)
+{
+	hfa384x_t		*hw = wlandev->priv;
+        p80211msg_p2req_low_level_t     *msg = msgp;
+	hfa384x_metacmd_t cmd;
+        DBFENTER;
+
+        msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+
+        /* call some routine to execute the test command */
+	cmd.cmd = (UINT16) msg->command.data;
+	cmd.parm0 = (UINT16) msg->param0.data;
+	cmd.parm1 = (UINT16) msg->param1.data;
+	cmd.parm2 = (UINT16) msg->param2.data;
+
+        hfa384x_drvr_low_level(hw,&cmd);
+
+        msg->resp0.data = (UINT32) cmd.result.resp0;
+        msg->resp1.data = (UINT32) cmd.result.resp1;
+        msg->resp2.data = (UINT32) cmd.result.resp2;
+
+        msg->resultcode.data = P80211ENUM_resultcode_success;
+
+        DBFEXIT;
+        return 0;
+}
+
+/*----------------------------------------------------------------
+* prism2mgmt_test_command
+*
+* Puts the card into the desired test mode.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+----------------------------------------------------------------*/
+int prism2mgmt_test_command(wlandevice_t *wlandev, void *msgp)
+{
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_p2req_test_command_t	*msg = msgp;
+	hfa384x_metacmd_t cmd;
+
+        DBFENTER;
+
+	cmd.cmd = ((UINT16) msg->testcode.data) << 8 | 0x38;
+	cmd.parm0 = (UINT16) msg->testparam.data;
+	cmd.parm1 = 0;
+	cmd.parm2 = 0;
+
+        /* call some routine to execute the test command */
+
+        hfa384x_drvr_low_level(hw,&cmd);
+
+        msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+        msg->resultcode.data = P80211ENUM_resultcode_success;
+
+        msg->status.status = P80211ENUM_msgitem_status_data_ok;
+        msg->status.data = cmd.result.status;
+        msg->resp0.status = P80211ENUM_msgitem_status_data_ok;
+        msg->resp0.data = cmd.result.resp0;
+        msg->resp1.status = P80211ENUM_msgitem_status_data_ok;
+        msg->resp1.data = cmd.result.resp1;
+        msg->resp2.status = P80211ENUM_msgitem_status_data_ok;
+        msg->resp2.data = cmd.result.resp2;
+
+	DBFEXIT;
+	return 0;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_mmi_read
+*
+* Read from one of the MMI registers.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+----------------------------------------------------------------*/
+int prism2mgmt_mmi_read(wlandevice_t *wlandev, void *msgp)
+{
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_p2req_mmi_read_t	*msg = msgp;
+	UINT32 resp = 0;
+
+	DBFENTER;
+
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+
+	/* call some routine to execute the test command */
+
+	hfa384x_drvr_mmi_read(hw, msg->addr.data, &resp);
+
+	/* I'm not sure if this is "architecturally" correct, but it
+           is expedient. */
+
+	msg->value.status = P80211ENUM_msgitem_status_data_ok;
+	msg->value.data = resp;
+	msg->resultcode.data = P80211ENUM_resultcode_success;
+
+	DBFEXIT;
+	return 0;
+}
+
+/*----------------------------------------------------------------
+* prism2mgmt_mmi_write
+*
+* Write a data value to one of the MMI registers.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+----------------------------------------------------------------*/
+int prism2mgmt_mmi_write(wlandevice_t *wlandev, void *msgp)
+{
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_p2req_mmi_write_t	*msg = msgp;
+	DBFENTER;
+
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+
+	/* call some routine to execute the test command */
+
+	hfa384x_drvr_mmi_write(hw, msg->addr.data, msg->data.data);
+
+	msg->resultcode.data = P80211ENUM_resultcode_success;
+
+	DBFEXIT;
+	return 0;
+}
+
+/*----------------------------------------------------------------
+* prism2mgmt_ramdl_state
+*
+* Establishes the beginning/end of a card RAM download session.
+*
+* It is expected that the ramdl_write() function will be called
+* one or more times between the 'enable' and 'disable' calls to
+* this function.
+*
+* Note: This function should not be called when a mac comm port
+*       is active.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+----------------------------------------------------------------*/
+int prism2mgmt_ramdl_state(wlandevice_t *wlandev, void *msgp)
+{
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_p2req_ramdl_state_t	*msg = msgp;
+	DBFENTER;
+
+	if (wlandev->msdstate != WLAN_MSD_FWLOAD) {
+		WLAN_LOG_ERROR(
+			"ramdl_state(): may only be called "
+			"in the fwload state.\n");
+		msg->resultcode.data =
+			P80211ENUM_resultcode_implementation_failure;
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		DBFEXIT;
+		return 0;
+	}
+
+	/*
+	** Note: Interrupts are locked out if this is an AP and are NOT
+	** locked out if this is a station.
+	*/
+
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+	if  ( msg->enable.data == P80211ENUM_truth_true ) {
+		if ( hfa384x_drvr_ramdl_enable(hw, msg->exeaddr.data) ) {
+			msg->resultcode.data = P80211ENUM_resultcode_implementation_failure;
+		} else {
+			msg->resultcode.data = P80211ENUM_resultcode_success;
+		}
+	} else {
+		hfa384x_drvr_ramdl_disable(hw);
+		msg->resultcode.data = P80211ENUM_resultcode_success;
+	}
+
+	DBFEXIT;
+	return 0;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_ramdl_write
+*
+* Writes a buffer to the card RAM using the download state.  This
+* is for writing code to card RAM.  To just read or write raw data
+* use the aux functions.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+----------------------------------------------------------------*/
+int prism2mgmt_ramdl_write(wlandevice_t *wlandev, void *msgp)
+{
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_p2req_ramdl_write_t	*msg = msgp;
+	UINT32			addr;
+	UINT32			len;
+	UINT8			*buf;
+	DBFENTER;
+
+	if (wlandev->msdstate != WLAN_MSD_FWLOAD) {
+		WLAN_LOG_ERROR(
+			"ramdl_write(): may only be called "
+			"in the fwload state.\n");
+		msg->resultcode.data =
+			P80211ENUM_resultcode_implementation_failure;
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		DBFEXIT;
+		return 0;
+	}
+
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+	/* first validate the length */
+	if  ( msg->len.data > sizeof(msg->data.data) ) {
+		msg->resultcode.status = P80211ENUM_resultcode_invalid_parameters;
+		return 0;
+	}
+	/* call the hfa384x function to do the write */
+	addr = msg->addr.data;
+	len = msg->len.data;
+	buf = msg->data.data;
+	if ( hfa384x_drvr_ramdl_write(hw, addr, buf, len) ) {
+		msg->resultcode.data = P80211ENUM_resultcode_refused;
+
+	}
+	msg->resultcode.data = P80211ENUM_resultcode_success;
+
+	DBFEXIT;
+	return 0;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_flashdl_state
+*
+* Establishes the beginning/end of a card Flash download session.
+*
+* It is expected that the flashdl_write() function will be called
+* one or more times between the 'enable' and 'disable' calls to
+* this function.
+*
+* Note: This function should not be called when a mac comm port
+*       is active.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+----------------------------------------------------------------*/
+int prism2mgmt_flashdl_state(wlandevice_t *wlandev, void *msgp)
+{
+	int			result = 0;
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_p2req_flashdl_state_t	*msg = msgp;
+	DBFENTER;
+
+	if (wlandev->msdstate != WLAN_MSD_FWLOAD) {
+		WLAN_LOG_ERROR(
+			"flashdl_state(): may only be called "
+			"in the fwload state.\n");
+		msg->resultcode.data =
+			P80211ENUM_resultcode_implementation_failure;
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		DBFEXIT;
+		return 0;
+	}
+
+	/*
+	** Note: Interrupts are locked out if this is an AP and are NOT
+	** locked out if this is a station.
+	*/
+
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+	if  ( msg->enable.data == P80211ENUM_truth_true ) {
+		if ( hfa384x_drvr_flashdl_enable(hw) ) {
+			msg->resultcode.data = P80211ENUM_resultcode_implementation_failure;
+		} else {
+			msg->resultcode.data = P80211ENUM_resultcode_success;
+		}
+	} else {
+		hfa384x_drvr_flashdl_disable(hw);
+		msg->resultcode.data = P80211ENUM_resultcode_success;
+		/* NOTE: At this point, the MAC is in the post-reset
+		 * state and the driver is in the fwload state.
+		 * We need to get the MAC back into the fwload
+		 * state.  To do this, we set the nsdstate to HWPRESENT
+		 * and then call the ifstate function to redo everything
+		 * that got us into the fwload state.
+		 */
+		wlandev->msdstate = WLAN_MSD_HWPRESENT;
+		result = prism2sta_ifstate(wlandev, P80211ENUM_ifstate_fwload);
+		if (result != P80211ENUM_resultcode_success) {
+			WLAN_LOG_ERROR("prism2sta_ifstate(fwload) failed,"
+				"P80211ENUM_resultcode=%d\n", result);
+			msg->resultcode.data =
+				P80211ENUM_resultcode_implementation_failure;
+			result = -1;
+		}
+	}
+
+	DBFEXIT;
+	return 0;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_flashdl_write
+*
+*
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+----------------------------------------------------------------*/
+int prism2mgmt_flashdl_write(wlandevice_t *wlandev, void *msgp)
+{
+	hfa384x_t		*hw = wlandev->priv;
+	p80211msg_p2req_flashdl_write_t	*msg = msgp;
+	UINT32			addr;
+	UINT32			len;
+	UINT8			*buf;
+	DBFENTER;
+
+	if (wlandev->msdstate != WLAN_MSD_FWLOAD) {
+		WLAN_LOG_ERROR(
+			"flashdl_write(): may only be called "
+			"in the fwload state.\n");
+		msg->resultcode.data =
+			P80211ENUM_resultcode_implementation_failure;
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		DBFEXIT;
+		return 0;
+	}
+
+	/*
+	** Note: Interrupts are locked out if this is an AP and are NOT
+	** locked out if this is a station.
+	*/
+
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+	/* first validate the length */
+	if  ( msg->len.data > sizeof(msg->data.data) ) {
+		msg->resultcode.status =
+			P80211ENUM_resultcode_invalid_parameters;
+		return 0;
+	}
+	/* call the hfa384x function to do the write */
+	addr = msg->addr.data;
+	len = msg->len.data;
+	buf = msg->data.data;
+	if ( hfa384x_drvr_flashdl_write(hw, addr, buf, len) ) {
+		msg->resultcode.data = P80211ENUM_resultcode_refused;
+
+	}
+	msg->resultcode.data = P80211ENUM_resultcode_success;
+
+	DBFEXIT;
+	return 0;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_dump_state
+*
+* Dumps the driver's and hardware's current state via the kernel
+* log at KERN_NOTICE level.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+----------------------------------------------------------------*/
+int prism2mgmt_dump_state(wlandevice_t *wlandev, void *msgp)
+{
+	p80211msg_p2req_dump_state_t	*msg = msgp;
+	int				result = 0;
+
+#if (WLAN_HOSTIF != WLAN_USB)
+	hfa384x_t		*hw = wlandev->priv;
+	UINT16				auxbuf[15];
+	DBFENTER;
+
+	WLAN_LOG_NOTICE("prism2 driver and hardware state:\n");
+	if  ( (result = hfa384x_cmd_aux_enable(hw, 0)) ) {
+		WLAN_LOG_ERROR("aux_enable failed, result=%d\n", result);
+		goto failed;
+	}
+	hfa384x_copy_from_aux(hw,
+		0x01e2,
+		HFA384x_AUX_CTL_EXTDS,
+		auxbuf,
+		sizeof(auxbuf));
+	hfa384x_cmd_aux_disable(hw);
+	WLAN_LOG_NOTICE("  cmac: FreeBlocks=%d\n", auxbuf[5]);
+	WLAN_LOG_NOTICE("  cmac: IntEn=0x%02x EvStat=0x%02x\n",
+		hfa384x_getreg(hw, HFA384x_INTEN),
+		hfa384x_getreg(hw, HFA384x_EVSTAT));
+
+	#ifdef USE_FID_STACK
+	WLAN_LOG_NOTICE("  drvr: txfid_top=%d stacksize=%d\n",
+		hw->txfid_top,HFA384x_DRVR_FIDSTACKLEN_MAX);
+	#else
+	WLAN_LOG_NOTICE("  drvr: txfid_head=%d txfid_tail=%d txfid_N=%d\n",
+		hw->txfid_head, hw->txfid_tail, hw->txfid_N);
+	#endif
+
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+	msg->resultcode.data = P80211ENUM_resultcode_success;
+
+#else /* (WLAN_HOSTIF == WLAN_USB) */
+
+	DBFENTER;
+
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+	msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+	goto failed;
+
+#endif /* (WLAN_HOSTIF != WLAN_USB) */
+
+failed:
+	DBFEXIT;
+	return result;
+}
+
+/*----------------------------------------------------------------
+* prism2mgmt_channel_info
+*
+* Issues a ChannelInfoRequest.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+----------------------------------------------------------------*/
+int prism2mgmt_channel_info(wlandevice_t *wlandev, void *msgp)
+{
+	p80211msg_p2req_channel_info_t	*msg=msgp;
+	hfa384x_t			*hw = wlandev->priv;
+	int				result, i, n=0;
+	UINT16				channel_mask=0;
+	hfa384x_ChannelInfoRequest_data_t	chinforeq;
+	// unsigned long 			now;
+
+	DBFENTER;
+
+	if (!hw->ap) {
+
+		/*** STATION ***/
+
+		/* Not supported in STA f/w */
+		P80211_SET_INT(msg->resultcode, P80211ENUM_resultcode_not_supported);
+		goto done;
+	}
+
+	/*** ACCESS POINT ***/
+
+#define CHINFO_TIMEOUT 2
+
+	P80211_SET_INT(msg->resultcode, P80211ENUM_resultcode_success);
+
+	/* setting default value for channellist = all channels */
+	if (!msg->channellist.data) {
+		P80211_SET_INT(msg->channellist, 0x00007FFE);
+	}
+	/* setting default value for channeldwelltime = 100 ms */
+	if (!msg->channeldwelltime.data) {
+		P80211_SET_INT(msg->channeldwelltime, 100);
+	}
+	channel_mask = (UINT16) (msg->channellist.data >> 1);
+	for (i=0, n=0; i < 14; i++) {
+		if (channel_mask & (1<<i)) {
+			n++;
+		}
+	}
+	P80211_SET_INT(msg->numchinfo, n);
+	chinforeq.channelList = host2hfa384x_16(channel_mask);
+	chinforeq.channelDwellTime = host2hfa384x_16(msg->channeldwelltime.data);
+
+	atomic_set(&hw->channel_info.done, 1);
+
+	result = hfa384x_drvr_setconfig( hw, HFA384x_RID_CHANNELINFOREQUEST,
+					 &chinforeq, HFA384x_RID_CHANNELINFOREQUEST_LEN);
+	if ( result ) {
+		WLAN_LOG_ERROR("setconfig(CHANNELINFOREQUEST) failed. result=%d\n",
+				result);
+		msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+		goto done;
+	}
+	/*
+	now = jiffies;
+	while (atomic_read(&hw->channel_info.done) != 1) {
+		if ((jiffies - now) > CHINFO_TIMEOUT*HZ) {
+			WLAN_LOG_NOTICE("ChannelInfo results not received in %d seconds, aborting.\n",
+					CHINFO_TIMEOUT);
+			msg->resultcode.data = P80211ENUM_resultcode_timeout;
+			goto done;
+		}
+		current->state = TASK_INTERRUPTIBLE;
+		schedule_timeout(HZ/4);
+		current->state = TASK_RUNNING;
+	}
+	*/
+
+done:
+
+	DBFEXIT;
+	return 0;
+}
+
+/*----------------------------------------------------------------
+* prism2mgmt_channel_info_results
+*
+* Returns required ChannelInfo result.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+----------------------------------------------------------------*/
+int prism2mgmt_channel_info_results(wlandevice_t *wlandev, void *msgp)
+{
+	hfa384x_t			*hw = wlandev->priv;
+
+	p80211msg_p2req_channel_info_results_t	*msg=msgp;
+	int				result=0;
+	int		channel;
+
+	DBFENTER;
+
+	if (!hw->ap) {
+
+		/*** STATION ***/
+
+		/* Not supported in STA f/w */
+		P80211_SET_INT(msg->resultcode, P80211ENUM_resultcode_not_supported);
+		goto done;
+	}
+
+	/*** ACCESS POINT ***/
+
+	switch (atomic_read(&hw->channel_info.done)) {
+	case 0: msg->resultcode.status = P80211ENUM_msgitem_status_no_value;
+		goto done;
+	case 1: msg->resultcode.status = P80211ENUM_msgitem_status_incomplete_itemdata;
+		goto done;
+	}
+
+	P80211_SET_INT(msg->resultcode, P80211ENUM_resultcode_success);
+	channel=msg->channel.data-1;
+
+	if (channel < 0 || ! (hw->channel_info.results.scanchannels & 1<<channel) ) {
+		msg->resultcode.data = P80211ENUM_resultcode_invalid_parameters;
+		goto done;
+	}
+	WLAN_LOG_DEBUG(2, "chinfo_results: channel %d, avg/peak level=%d/%d dB, active=%d\n",
+			channel+1,
+			hw->channel_info.results.result[channel].anl,
+			hw->channel_info.results.result[channel].pnl,
+			hw->channel_info.results.result[channel].active
+		);
+	P80211_SET_INT(msg->avgnoiselevel, hw->channel_info.results.result[channel].anl);
+	P80211_SET_INT(msg->peaknoiselevel, hw->channel_info.results.result[channel].pnl);
+	P80211_SET_INT(msg->bssactive, hw->channel_info.results.result[channel].active &
+		HFA384x_CHINFORESULT_BSSACTIVE
+                ? P80211ENUM_truth_true
+                : P80211ENUM_truth_false) ;
+	P80211_SET_INT(msg->pcfactive, hw->channel_info.results.result[channel].active &
+		HFA384x_CHINFORESULT_PCFACTIVE
+                ? P80211ENUM_truth_true
+                : P80211ENUM_truth_false) ;
+
+done:
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_autojoin
+*
+* Associate with an ESS.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+*	interrupt
+----------------------------------------------------------------*/
+int prism2mgmt_autojoin(wlandevice_t *wlandev, void *msgp)
+{
+	hfa384x_t			*hw = wlandev->priv;
+	int 			result = 0;
+	UINT16			reg;
+	UINT16			port_type;
+	p80211msg_lnxreq_autojoin_t	*msg = msgp;
+	p80211pstrd_t		*pstr;
+	UINT8			bytebuf[256];
+	hfa384x_bytestr_t	*p2bytestr = (hfa384x_bytestr_t*)bytebuf;
+	DBFENTER;
+
+	wlandev->macmode = WLAN_MACMODE_NONE;
+
+	/* Set the SSID */
+	memcpy(&wlandev->ssid, &msg->ssid.data, sizeof(msg->ssid.data));
+
+	if (hw->ap) {
+
+		/*** ACCESS POINT ***/
+
+		/* Never supported on AP */
+		msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+		msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+		goto done;
+	}
+
+	/* Disable the Port */
+	hfa384x_drvr_disable(hw, 0);
+
+	/*** STATION ***/
+	/* Set the TxRates */
+	hfa384x_drvr_setconfig16(hw, HFA384x_RID_TXRATECNTL, 0x000f);
+
+	/* Set the auth type */
+	if ( msg->authtype.data == P80211ENUM_authalg_sharedkey ) {
+		reg = HFA384x_CNFAUTHENTICATION_SHAREDKEY;
+	} else {
+		reg = HFA384x_CNFAUTHENTICATION_OPENSYSTEM;
+	}
+	hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFAUTHENTICATION, reg);
+
+	/* Set the ssid */
+	memset(bytebuf, 0, 256);
+	pstr = (p80211pstrd_t*)&(msg->ssid.data);
+	prism2mgmt_pstr2bytestr(p2bytestr, pstr);
+        result = hfa384x_drvr_setconfig(
+			hw, HFA384x_RID_CNFDESIREDSSID,
+			bytebuf, HFA384x_RID_CNFDESIREDSSID_LEN);
+#if 0
+	/* we can use the new-fangled auto-unknown mode if the firmware
+	   is 1.3.3 or newer */
+	if (HFA384x_FIRMARE_VERSION(hw->ident_sta_fw.major,
+				    hw->ident_sta_fw.minor,
+				    hw->ident_sta_fw.variant) >=
+	    HFA384x_FIRMWARE_VERSION(1,3,3)) {
+		/* Set up the IBSS options */
+		reg =  HFA384x_CREATEIBSS_JOINESS_JOINCREATEIBSS;
+		hfa384x_drvr_setconfig16(hw, HFA384x_RID_CREATEIBSS, reg);
+
+		/* Set the PortType */
+		port_type = HFA384x_PORTTYPE_IBSS;
+	} else {
+		port_type = HFA384x_PORTTYPE_BSS;
+	}
+#else
+	port_type = HFA384x_PORTTYPE_BSS;
+#endif
+	/* Set the PortType */
+	hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFPORTTYPE, port_type);
+
+	/* Enable the Port */
+	hfa384x_drvr_enable(hw, 0);
+
+	/* Set the resultcode */
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+	msg->resultcode.data = P80211ENUM_resultcode_success;
+
+done:
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_wlansniff
+*
+* Start or stop sniffing.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+*	interrupt
+----------------------------------------------------------------*/
+int prism2mgmt_wlansniff(wlandevice_t *wlandev, void *msgp)
+{
+	int 			result = 0;
+	p80211msg_lnxreq_wlansniff_t	*msg = msgp;
+
+	hfa384x_t			*hw = wlandev->priv;
+	UINT16			word;
+
+	DBFENTER;
+
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+	switch (msg->enable.data)
+	{
+	case P80211ENUM_truth_false:
+		/* Confirm that we're in monitor mode */
+		if ( wlandev->netdev->type == ARPHRD_ETHER ) {
+			msg->resultcode.data = P80211ENUM_resultcode_invalid_parameters;
+			result = 0;
+			goto exit;
+		}
+		/* Disable monitor mode */
+		result = hfa384x_cmd_monitor(hw, HFA384x_MONITOR_DISABLE);
+		if ( result ) {
+			WLAN_LOG_DEBUG(1,
+				"failed to disable monitor mode, result=%d\n",
+				result);
+			goto failed;
+		}
+		/* Disable port 0 */
+		result = hfa384x_drvr_disable(hw, 0);
+		if ( result ) {
+			WLAN_LOG_DEBUG(1,
+			"failed to disable port 0 after sniffing, result=%d\n",
+			result);
+			goto failed;
+		}
+		/* Clear the driver state */
+		wlandev->netdev->type = ARPHRD_ETHER;
+
+		/* Restore the wepflags */
+		result = hfa384x_drvr_setconfig16(hw,
+				HFA384x_RID_CNFWEPFLAGS,
+				hw->presniff_wepflags);
+		if ( result ) {
+			WLAN_LOG_DEBUG(1,
+			"failed to restore wepflags=0x%04x, result=%d\n",
+			hw->presniff_wepflags,
+			result);
+			goto failed;
+		}
+
+		/* Set the port to its prior type and enable (if necessary) */
+		if (hw->presniff_port_type != 0 ) {
+			word = hw->presniff_port_type;
+			result = hfa384x_drvr_setconfig16(hw,
+				HFA384x_RID_CNFPORTTYPE, word);
+			if ( result ) {
+				WLAN_LOG_DEBUG(1,
+				"failed to restore porttype, result=%d\n",
+				result);
+				goto failed;
+			}
+
+			/* Enable the port */
+			result = hfa384x_drvr_enable(hw, 0);
+			if ( result ) {
+				WLAN_LOG_DEBUG(1, "failed to enable port to presniff setting, result=%d\n", result);
+				goto failed;
+			}
+		} else {
+			result = hfa384x_drvr_disable(hw, 0);
+
+		}
+
+		WLAN_LOG_INFO("monitor mode disabled\n");
+		msg->resultcode.data = P80211ENUM_resultcode_success;
+		result = 0;
+		goto exit;
+		break;
+	case P80211ENUM_truth_true:
+		/* Disable the port (if enabled), only check Port 0 */
+		if ( hw->port_enabled[0]) {
+			if (wlandev->netdev->type == ARPHRD_ETHER) {
+				/* Save macport 0 state */
+				result = hfa384x_drvr_getconfig16(hw,
+								  HFA384x_RID_CNFPORTTYPE,
+								  &(hw->presniff_port_type));
+				if ( result ) {
+					WLAN_LOG_DEBUG(1,"failed to read porttype, result=%d\n", result);
+					goto failed;
+				}
+				/* Save the wepflags state */
+				result = hfa384x_drvr_getconfig16(hw,
+								  HFA384x_RID_CNFWEPFLAGS,
+								  &(hw->presniff_wepflags));
+				if ( result ) {
+					WLAN_LOG_DEBUG(1,"failed to read wepflags, result=%d\n", result);
+					goto failed;
+				}
+				hfa384x_drvr_stop(hw);
+				result = hfa384x_drvr_start(hw);
+				if ( result ) {
+					WLAN_LOG_DEBUG(1,
+						       "failed to restart the card for sniffing, result=%d\n",
+						       result);
+					goto failed;
+				}
+			} else {
+				/* Disable the port */
+				result = hfa384x_drvr_disable(hw, 0);
+				if ( result ) {
+					WLAN_LOG_DEBUG(1,
+						       "failed to enable port for sniffing, result=%d\n",
+						       result);
+					goto failed;
+				}
+			}
+		} else {
+			hw->presniff_port_type = 0;
+		}
+
+		/* Set the channel we wish to sniff  */
+		word = msg->channel.data;
+		result = hfa384x_drvr_setconfig16(hw,
+						  HFA384x_RID_CNFOWNCHANNEL, word);
+		hw->sniff_channel=word;
+
+		if ( result ) {
+			WLAN_LOG_DEBUG(1,
+				       "failed to set channel %d, result=%d\n",
+					       word,
+				       result);
+			goto failed;
+		}
+
+		/* Now if we're already sniffing, we can skip the rest */
+		if (wlandev->netdev->type != ARPHRD_ETHER) {
+			/* Set the port type to pIbss */
+			word = HFA384x_PORTTYPE_PSUEDOIBSS;
+			result = hfa384x_drvr_setconfig16(hw,
+							  HFA384x_RID_CNFPORTTYPE, word);
+			if ( result ) {
+				WLAN_LOG_DEBUG(1,
+					       "failed to set porttype %d, result=%d\n",
+					       word,
+					       result);
+				goto failed;
+			}
+			if ((msg->keepwepflags.status == P80211ENUM_msgitem_status_data_ok) && (msg->keepwepflags.data != P80211ENUM_truth_true)) {
+				/* Set the wepflags for no decryption */
+				word = HFA384x_WEPFLAGS_DISABLE_TXCRYPT |
+					HFA384x_WEPFLAGS_DISABLE_RXCRYPT;
+				result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFWEPFLAGS, word);
+			}
+
+			if ( result ) {
+				WLAN_LOG_DEBUG(1,
+					       "failed to set wepflags=0x%04x, result=%d\n",
+					       word,
+					       result);
+				goto failed;
+			}
+		}
+
+		/* Do we want to strip the FCS in monitor mode? */
+		if ((msg->stripfcs.status == P80211ENUM_msgitem_status_data_ok) && (msg->stripfcs.data == P80211ENUM_truth_true)) {
+			hw->sniff_fcs = 0;
+		} else {
+			hw->sniff_fcs = 1;
+		}
+
+		/* Do we want to truncate the packets? */
+		if (msg->packet_trunc.status == P80211ENUM_msgitem_status_data_ok) {
+			hw->sniff_truncate = msg->packet_trunc.data;
+		} else {
+			hw->sniff_truncate = 0;
+		}
+
+		/* Enable the port */
+		result = hfa384x_drvr_enable(hw, 0);
+		if ( result ) {
+			WLAN_LOG_DEBUG(1,
+			"failed to enable port for sniffing, result=%d\n",
+			result);
+			goto failed;
+		}
+		/* Enable monitor mode */
+		result = hfa384x_cmd_monitor(hw, HFA384x_MONITOR_ENABLE);
+		if ( result ) {
+			WLAN_LOG_DEBUG(1,
+			"failed to enable monitor mode, result=%d\n",
+			result);
+			goto failed;
+		}
+
+		if (wlandev->netdev->type == ARPHRD_ETHER) {
+			WLAN_LOG_INFO("monitor mode enabled\n");
+		}
+
+		/* Set the driver state */
+		/* Do we want the prism2 header? */
+		if ((msg->prismheader.status == P80211ENUM_msgitem_status_data_ok) && (msg->prismheader.data == P80211ENUM_truth_true)) {
+			hw->sniffhdr = 0;
+			wlandev->netdev->type = ARPHRD_IEEE80211_PRISM;
+		} else if ((msg->wlanheader.status == P80211ENUM_msgitem_status_data_ok) && (msg->wlanheader.data == P80211ENUM_truth_true)) {
+			hw->sniffhdr = 1;
+			wlandev->netdev->type = ARPHRD_IEEE80211_PRISM;
+		} else {
+			wlandev->netdev->type = ARPHRD_IEEE80211;
+		}
+
+		msg->resultcode.data = P80211ENUM_resultcode_success;
+		result = 0;
+		goto exit;
+		break;
+	default:
+		msg->resultcode.data = P80211ENUM_resultcode_invalid_parameters;
+		result = 0;
+		goto exit;
+		break;
+	}
+
+failed:
+	msg->resultcode.data = P80211ENUM_resultcode_refused;
+	result = 0;
+exit:
+
+	DBFEXIT;
+	return result;
+}
diff --git a/drivers/staging/wlan-ng/prism2mgmt.h b/drivers/staging/wlan-ng/prism2mgmt.h
new file mode 100644
index 0000000..733fd99
--- /dev/null
+++ b/drivers/staging/wlan-ng/prism2mgmt.h
@@ -0,0 +1,182 @@
+/* prism2mgmt.h
+*
+* Declares the mgmt command handler functions
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* This file contains the constants and data structures for interaction
+* with the hfa384x Wireless LAN (WLAN) Media Access Contoller (MAC).
+* The hfa384x is a portion of the Harris PRISM(tm) WLAN chipset.
+*
+* [Implementation and usage notes]
+*
+* [References]
+*   CW10 Programmer's Manual v1.5
+*   IEEE 802.11 D10.0
+*
+*    --------------------------------------------------------------------
+*/
+
+#ifndef _PRISM2MGMT_H
+#define _PRISM2MGMT_H
+
+
+/*=============================================================*/
+/*------ Constants --------------------------------------------*/
+
+/*=============================================================*/
+/*------ Macros -----------------------------------------------*/
+
+/*=============================================================*/
+/*------ Types and their related constants --------------------*/
+
+/*=============================================================*/
+/*------ Static variable externs ------------------------------*/
+
+#if (WLAN_HOSTIF != WLAN_USB)
+extern int      prism2_bap_timeout;
+extern int	prism2_irq_evread_max;
+#endif
+extern int	prism2_debug;
+extern int      prism2_reset_holdtime;
+extern int      prism2_reset_settletime;
+/*=============================================================*/
+/*--- Function Declarations -----------------------------------*/
+/*=============================================================*/
+
+UINT32
+prism2sta_ifstate(wlandevice_t *wlandev, UINT32 ifstate);
+
+void
+prism2sta_ev_dtim(wlandevice_t *wlandev);
+void
+prism2sta_ev_infdrop(wlandevice_t *wlandev);
+void
+prism2sta_ev_info(wlandevice_t *wlandev, hfa384x_InfFrame_t *inf);
+void
+prism2sta_ev_txexc(wlandevice_t *wlandev, UINT16 status);
+void
+prism2sta_ev_tx(wlandevice_t *wlandev, UINT16 status);
+void
+prism2sta_ev_rx(wlandevice_t *wlandev, struct sk_buff *skb);
+void
+prism2sta_ev_alloc(wlandevice_t *wlandev);
+
+
+int prism2mgmt_mibset_mibget(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_powermgmt(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_scan(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_scan_results(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_join(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_p2_join(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_authenticate(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_deauthenticate(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_associate(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_reassociate(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_disassociate(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_reset(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_start(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_wlansniff(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_readpda(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_readcis(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_auxport_state(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_auxport_read(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_auxport_write(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_low_level(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_test_command(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_mmi_read(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_mmi_write(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_ramdl_state(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_ramdl_write(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_flashdl_state(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_flashdl_write(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_mm_state(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_dump_state(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_enable(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_channel_info(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_channel_info_results(wlandevice_t *wlandev, void *msgp);
+int prism2mgmt_autojoin(wlandevice_t *wlandev, void *msgp);
+
+/*---------------------------------------------------------------
+* conversion functions going between wlan message data types and
+* Prism2 data types
+---------------------------------------------------------------*/
+/* byte area conversion functions*/
+void prism2mgmt_pstr2bytearea(UINT8 *bytearea, p80211pstrd_t *pstr);
+void prism2mgmt_bytearea2pstr(UINT8 *bytearea, p80211pstrd_t *pstr, int len);
+
+/* byte string conversion functions*/
+void prism2mgmt_pstr2bytestr(hfa384x_bytestr_t *bytestr, p80211pstrd_t *pstr);
+void prism2mgmt_bytestr2pstr(hfa384x_bytestr_t *bytestr, p80211pstrd_t *pstr);
+
+/* integer conversion functions */
+void prism2mgmt_prism2int2p80211int(UINT16 *prism2int, UINT32 *wlanint);
+void prism2mgmt_p80211int2prism2int(UINT16 *prism2int, UINT32 *wlanint);
+
+/* enumerated integer conversion functions */
+void prism2mgmt_prism2enum2p80211enum(UINT16 *prism2enum, UINT32 *wlanenum, UINT16 rid);
+void prism2mgmt_p80211enum2prism2enum(UINT16 *prism2enum, UINT32 *wlanenum, UINT16 rid);
+
+/* functions to convert a bit area to/from an Operational Rate Set */
+void prism2mgmt_get_oprateset(UINT16 *rate, p80211pstrd_t *pstr);
+void prism2mgmt_set_oprateset(UINT16 *rate, p80211pstrd_t *pstr);
+
+/* functions to convert Group Addresses */
+void prism2mgmt_get_grpaddr(UINT32 did,
+	p80211pstrd_t *pstr, hfa384x_t *priv );
+int prism2mgmt_set_grpaddr(UINT32 did,
+	UINT8 *prism2buf, p80211pstrd_t *pstr, hfa384x_t *priv );
+int prism2mgmt_get_grpaddr_index( UINT32 did );
+
+void prism2sta_processing_defer(struct work_struct *data);
+
+void prism2sta_commsqual_defer(struct work_struct *data);
+void prism2sta_commsqual_timer(unsigned long data);
+
+/*=============================================================*/
+/*--- Inline Function Definitions (if supported) --------------*/
+/*=============================================================*/
+
+
+
+#endif
diff --git a/drivers/staging/wlan-ng/prism2mib.c b/drivers/staging/wlan-ng/prism2mib.c
new file mode 100644
index 0000000..268fd9b
--- /dev/null
+++ b/drivers/staging/wlan-ng/prism2mib.c
@@ -0,0 +1,3799 @@
+/* src/prism2/driver/prism2mib.c
+*
+* Management request for mibset/mibget
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* The functions in this file handle the mibset/mibget management
+* functions.
+*
+* --------------------------------------------------------------------
+*/
+
+/*================================================================*/
+/* System Includes */
+#define WLAN_DBVAR	prism2_debug
+
+#include "version.h"
+
+
+#include <linux/version.h>
+
+#include <linux/module.h>
+#include <linux/kernel.h>
+#include <linux/sched.h>
+#include <linux/types.h>
+#include <linux/slab.h>
+#include <linux/wireless.h>
+#include <linux/netdevice.h>
+#include <asm/io.h>
+#include <linux/delay.h>
+#include <asm/byteorder.h>
+
+#include "wlan_compat.h"
+
+//#if (WLAN_HOSTIF == WLAN_PCMCIA)
+//#include <pcmcia/version.h>
+//#include <pcmcia/cs_types.h>
+//#include <pcmcia/cs.h>
+//#include <pcmcia/cistpl.h>
+//#include <pcmcia/ds.h>
+//#include <pcmcia/cisreg.h>
+//#endif
+//
+//#if ((WLAN_HOSTIF == WLAN_PLX) || (WLAN_HOSTIF == WLAN_PCI))
+//#include <linux/ioport.h>
+//#include <linux/pci.h>
+//endif
+
+//#if (WLAN_HOSTIF == WLAN_USB)
+#include <linux/usb.h>
+//#endif
+
+#include "wlan_compat.h"
+
+/*================================================================*/
+/* Project Includes */
+
+#include "p80211types.h"
+#include "p80211hdr.h"
+#include "p80211mgmt.h"
+#include "p80211conv.h"
+#include "p80211msg.h"
+#include "p80211netdev.h"
+#include "p80211metadef.h"
+#include "p80211metastruct.h"
+#include "hfa384x.h"
+#include "prism2mgmt.h"
+
+/*================================================================*/
+/* Local Constants */
+
+#define MIB_TMP_MAXLEN    200    /* Max length of RID record (in bytes). */
+
+/*================================================================*/
+/* Local Types */
+
+#define  F_AP         0x1        /* MIB is supported on Access Points. */
+#define  F_STA        0x2        /* MIB is supported on stations. */
+#define  F_READ       0x4        /* MIB may be read. */
+#define  F_WRITE      0x8        /* MIB may be written. */
+
+typedef struct mibrec
+{
+    UINT32   did;
+    UINT16   flag;
+    UINT16   parm1;
+    UINT16   parm2;
+    UINT16   parm3;
+    int      (*func)(struct mibrec                *mib,
+                     int                          isget,
+                     wlandevice_t                 *wlandev,
+                     hfa384x_t                    *hw,
+                     p80211msg_dot11req_mibset_t  *msg,
+                     void                         *data);
+} mibrec_t;
+
+/*================================================================*/
+/* Local Function Declarations */
+
+static int prism2mib_bytestr2pstr(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_bytearea2pstr(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_uint32(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_uint32array(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_uint32offset(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_truth(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_preamble(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_flag(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_appcfinfoflag(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_regulatorydomains(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_wepdefaultkey(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_powermanagement(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_privacyinvoked(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_excludeunencrypted(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_fragmentationthreshold(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_operationalrateset(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_groupaddress(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_fwid(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_authalg(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_authalgenable(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static int prism2mib_priv(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data);
+
+static void prism2mib_priv_authlist(
+hfa384x_t      *hw,
+prism2sta_authlist_t  *list);
+
+static void prism2mib_priv_accessmode(
+hfa384x_t         *hw,
+UINT32            mode);
+
+static void prism2mib_priv_accessallow(
+hfa384x_t         *hw,
+p80211macarray_t  *macarray);
+
+static void prism2mib_priv_accessdeny(
+hfa384x_t         *hw,
+p80211macarray_t  *macarray);
+
+static void prism2mib_priv_deauthenticate(
+hfa384x_t         *hw,
+UINT8             *addr);
+
+/*================================================================*/
+/* Local Static Definitions */
+
+static mibrec_t mibtab[] = {
+
+    /* dot11smt MIB's */
+
+    { DIDmib_dot11smt_dot11StationConfigTable_dot11StationID,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFOWNMACADDR, HFA384x_RID_CNFOWNMACADDR_LEN, 0,
+          prism2mib_bytearea2pstr },
+    { DIDmib_dot11smt_dot11StationConfigTable_dot11MediumOccupancyLimit,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFAPPCFINFO, HFA384x_RID_CNFAPPCFINFO_LEN, 0,
+          prism2mib_uint32offset },
+    { DIDmib_dot11smt_dot11StationConfigTable_dot11CFPollable,
+          F_STA | F_READ,
+          HFA384x_RID_CFPOLLABLE, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11smt_dot11StationConfigTable_dot11CFPPeriod,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFAPPCFINFO, HFA384x_RID_CNFAPPCFINFO_LEN, 1,
+          prism2mib_uint32offset },
+    { DIDmib_dot11smt_dot11StationConfigTable_dot11CFPMaxDuration,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFAPPCFINFO, HFA384x_RID_CNFAPPCFINFO_LEN, 2,
+          prism2mib_uint32offset },
+    { DIDmib_dot11smt_dot11StationConfigTable_dot11AuthenticationResponseTimeOut,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFAUTHRSPTIMEOUT, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11smt_dot11StationConfigTable_dot11PrivacyOptionImplemented,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_PRIVACYOPTIMP, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11smt_dot11StationConfigTable_dot11PowerManagementMode,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFPMENABLED, 0, 0,
+          prism2mib_powermanagement },
+    { DIDmib_dot11smt_dot11StationConfigTable_dot11DesiredSSID,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFDESIREDSSID, HFA384x_RID_CNFDESIREDSSID_LEN, 0,
+          prism2mib_bytestr2pstr },
+    { DIDmib_dot11smt_dot11StationConfigTable_dot11DesiredBSSType,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_priv },
+    { DIDmib_dot11smt_dot11StationConfigTable_dot11OperationalRateSet,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_TXRATECNTL, 0, 0,
+          prism2mib_operationalrateset },
+    { DIDmib_dot11smt_dot11StationConfigTable_dot11OperationalRateSet,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_TXRATECNTL0, 0, 0,
+          prism2mib_operationalrateset },
+    { DIDmib_dot11smt_dot11StationConfigTable_dot11BeaconPeriod,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFAPBCNINT, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11smt_dot11StationConfigTable_dot11DTIMPeriod,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFOWNDTIMPER, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11smt_dot11StationConfigTable_dot11AssociationResponseTimeOut,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_PROTOCOLRSPTIME, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithm1,
+          F_AP | F_STA | F_READ,
+          1, 0, 0,
+          prism2mib_authalg },
+    { DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithm2,
+          F_AP | F_STA | F_READ,
+          2, 0, 0,
+          prism2mib_authalg },
+    { DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithm3,
+          F_AP | F_STA | F_READ,
+          3, 0, 0,
+          prism2mib_authalg },
+    { DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithm4,
+          F_AP | F_STA | F_READ,
+          4, 0, 0,
+          prism2mib_authalg },
+    { DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithm5,
+          F_AP | F_STA | F_READ,
+          5, 0, 0,
+          prism2mib_authalg },
+    { DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithm6,
+          F_AP | F_STA | F_READ,
+          6, 0, 0,
+          prism2mib_authalg },
+    { DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithmsEnable1,
+          F_AP | F_STA | F_READ | F_WRITE,
+          1, 0, 0,
+          prism2mib_authalgenable },
+    { DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithmsEnable2,
+          F_AP | F_STA | F_READ | F_WRITE,
+          2, 0, 0,
+          prism2mib_authalgenable },
+    { DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithmsEnable3,
+          F_AP | F_STA | F_READ | F_WRITE,
+          3, 0, 0,
+          prism2mib_authalgenable },
+    { DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithmsEnable4,
+          F_AP | F_STA | F_READ | F_WRITE,
+          4, 0, 0,
+          prism2mib_authalgenable },
+    { DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithmsEnable5,
+          F_AP | F_STA | F_READ | F_WRITE,
+          5, 0, 0,
+          prism2mib_authalgenable },
+    { DIDmib_dot11smt_dot11AuthenticationAlgorithmsTable_dot11AuthenticationAlgorithmsEnable6,
+          F_AP | F_STA | F_READ | F_WRITE,
+          6, 0, 0,
+          prism2mib_authalgenable },
+    { DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey0,
+          F_AP | F_STA | F_WRITE,
+          HFA384x_RID_CNFWEPDEFAULTKEY0, 0, 0,
+          prism2mib_wepdefaultkey },
+    { DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey1,
+          F_AP | F_STA | F_WRITE,
+          HFA384x_RID_CNFWEPDEFAULTKEY1, 0, 0,
+          prism2mib_wepdefaultkey },
+    { DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey2,
+          F_AP | F_STA | F_WRITE,
+          HFA384x_RID_CNFWEPDEFAULTKEY2, 0, 0,
+          prism2mib_wepdefaultkey },
+    { DIDmib_dot11smt_dot11WEPDefaultKeysTable_dot11WEPDefaultKey3,
+          F_AP | F_STA | F_WRITE,
+          HFA384x_RID_CNFWEPDEFAULTKEY3, 0, 0,
+          prism2mib_wepdefaultkey },
+    { DIDmib_dot11smt_dot11PrivacyTable_dot11PrivacyInvoked,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFWEPFLAGS, HFA384x_WEPFLAGS_PRIVINVOKED, 0,
+          prism2mib_privacyinvoked },
+    { DIDmib_dot11smt_dot11PrivacyTable_dot11WEPDefaultKeyID,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFWEPDEFAULTKEYID, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11smt_dot11PrivacyTable_dot11ExcludeUnencrypted,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFWEPFLAGS, HFA384x_WEPFLAGS_EXCLUDE, 0,
+          prism2mib_excludeunencrypted },
+    { DIDmib_dot11phy_dot11PhyOperationTable_dot11ShortPreambleEnabled,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFSHORTPREAMBLE, 0, 0,
+          prism2mib_preamble },
+
+    /* dot11mac MIB's */
+
+    { DIDmib_dot11mac_dot11OperationTable_dot11MACAddress,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFOWNMACADDR, HFA384x_RID_CNFOWNMACADDR_LEN, 0,
+          prism2mib_bytearea2pstr },
+    { DIDmib_dot11mac_dot11OperationTable_dot11RTSThreshold,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_RTSTHRESH, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11mac_dot11OperationTable_dot11RTSThreshold,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_RTSTHRESH0, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11mac_dot11OperationTable_dot11ShortRetryLimit,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_SHORTRETRYLIMIT, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11mac_dot11OperationTable_dot11LongRetryLimit,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_LONGRETRYLIMIT, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11mac_dot11OperationTable_dot11FragmentationThreshold,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_FRAGTHRESH, 0, 0,
+          prism2mib_fragmentationthreshold },
+    { DIDmib_dot11mac_dot11OperationTable_dot11FragmentationThreshold,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_FRAGTHRESH0, 0, 0,
+          prism2mib_fragmentationthreshold },
+    { DIDmib_dot11mac_dot11OperationTable_dot11MaxTransmitMSDULifetime,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_MAXTXLIFETIME, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11mac_dot11OperationTable_dot11MaxReceiveLifetime,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_MAXRXLIFETIME, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address1,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address2,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address3,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address4,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address5,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address6,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address7,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address8,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address9,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address10,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address11,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address12,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address13,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address14,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address15,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address16,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address17,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address18,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address19,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address20,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address21,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address22,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address23,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address24,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address25,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address26,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address27,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address28,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address29,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address30,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address31,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+    { DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address32,
+          F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_groupaddress },
+
+    /* dot11phy MIB's */
+
+    { DIDmib_dot11phy_dot11PhyOperationTable_dot11PHYType,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_PHYTYPE, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11phy_dot11PhyOperationTable_dot11TempType,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_TEMPTYPE, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11phy_dot11PhyDSSSTable_dot11CurrentChannel,
+          F_STA | F_READ,
+          HFA384x_RID_CURRENTCHANNEL, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11phy_dot11PhyDSSSTable_dot11CurrentChannel,
+          F_AP | F_READ,
+          HFA384x_RID_CNFOWNCHANNEL, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11phy_dot11PhyDSSSTable_dot11CurrentCCAMode,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_CCAMODE, 0, 0,
+          prism2mib_uint32 },
+
+    /* p2Table MIB's */
+
+    { DIDmib_p2_p2Table_p2MMTx,
+          F_AP | F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_priv },
+    { DIDmib_p2_p2Table_p2EarlyBeacon,
+          F_AP | F_READ | F_WRITE,
+          BIT7, 0, 0,
+          prism2mib_appcfinfoflag },
+    { DIDmib_p2_p2Table_p2ReceivedFrameStatistics,
+          F_AP | F_STA | F_READ,
+          0, 0, 0,
+          prism2mib_priv },
+    { DIDmib_p2_p2Table_p2CommunicationTallies,
+          F_AP | F_STA | F_READ,
+          0, 0, 0,
+          prism2mib_priv },
+    { DIDmib_p2_p2Table_p2Authenticated,
+          F_AP | F_READ,
+          0, 0, 0,
+          prism2mib_priv },
+    { DIDmib_p2_p2Table_p2Associated,
+          F_AP | F_READ,
+          0, 0, 0,
+          prism2mib_priv },
+    { DIDmib_p2_p2Table_p2PowerSaveUserCount,
+          F_AP | F_READ,
+          0, 0, 0,
+          prism2mib_priv },
+    { DIDmib_p2_p2Table_p2Comment,
+          F_AP | F_STA | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_priv },
+    { DIDmib_p2_p2Table_p2AccessMode,
+          F_AP | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_priv },
+    { DIDmib_p2_p2Table_p2AccessAllow,
+          F_AP | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_priv },
+    { DIDmib_p2_p2Table_p2AccessDeny,
+          F_AP | F_READ | F_WRITE,
+          0, 0, 0,
+          prism2mib_priv },
+    { DIDmib_p2_p2Table_p2ChannelInfoResults,
+          F_AP | F_READ,
+          0, 0, 0,
+          prism2mib_priv },
+
+    /* p2Static MIB's */
+
+    { DIDmib_p2_p2Static_p2CnfPortType,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFPORTTYPE, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfOwnMACAddress,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFOWNMACADDR, HFA384x_RID_CNFOWNMACADDR_LEN, 0,
+          prism2mib_bytearea2pstr },
+    { DIDmib_p2_p2Static_p2CnfDesiredSSID,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFDESIREDSSID, HFA384x_RID_CNFDESIREDSSID_LEN, 0,
+          prism2mib_bytestr2pstr },
+    { DIDmib_p2_p2Static_p2CnfOwnChannel,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFOWNCHANNEL, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfOwnSSID,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFOWNSSID, HFA384x_RID_CNFOWNSSID_LEN, 0,
+          prism2mib_bytestr2pstr },
+    { DIDmib_p2_p2Static_p2CnfOwnATIMWindow,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFOWNATIMWIN, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfSystemScale,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFSYSSCALE, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfMaxDataLength,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFMAXDATALEN, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfWDSAddress,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFWDSADDR, HFA384x_RID_CNFWDSADDR_LEN, 0,
+          prism2mib_bytearea2pstr },
+    { DIDmib_p2_p2Static_p2CnfPMEnabled,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFPMENABLED, 0, 0,
+          prism2mib_truth },
+    { DIDmib_p2_p2Static_p2CnfPMEPS,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFPMEPS, 0, 0,
+          prism2mib_truth },
+    { DIDmib_p2_p2Static_p2CnfMulticastReceive,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFMULTICASTRX, 0, 0,
+          prism2mib_truth },
+    { DIDmib_p2_p2Static_p2CnfMaxSleepDuration,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFMAXSLEEPDUR, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfPMHoldoverDuration,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFPMHOLDDUR, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfOwnName,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFOWNNAME, HFA384x_RID_CNFOWNNAME_LEN, 0,
+          prism2mib_bytestr2pstr },
+    { DIDmib_p2_p2Static_p2CnfOwnDTIMPeriod,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFOWNDTIMPER, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfWDSAddress1,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFWDSADDR1, HFA384x_RID_CNFWDSADDR1_LEN, 0,
+          prism2mib_bytearea2pstr },
+    { DIDmib_p2_p2Static_p2CnfWDSAddress2,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFWDSADDR2, HFA384x_RID_CNFWDSADDR2_LEN, 0,
+          prism2mib_bytearea2pstr },
+    { DIDmib_p2_p2Static_p2CnfWDSAddress3,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFWDSADDR3, HFA384x_RID_CNFWDSADDR3_LEN, 0,
+          prism2mib_bytearea2pstr },
+    { DIDmib_p2_p2Static_p2CnfWDSAddress4,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFWDSADDR4, HFA384x_RID_CNFWDSADDR4_LEN, 0,
+          prism2mib_bytearea2pstr },
+    { DIDmib_p2_p2Static_p2CnfWDSAddress5,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFWDSADDR5, HFA384x_RID_CNFWDSADDR5_LEN, 0,
+          prism2mib_bytearea2pstr },
+    { DIDmib_p2_p2Static_p2CnfWDSAddress6,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFWDSADDR6, HFA384x_RID_CNFWDSADDR6_LEN, 0,
+          prism2mib_bytearea2pstr },
+    { DIDmib_p2_p2Static_p2CnfMulticastPMBuffering,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFMCASTPMBUFF, 0, 0,
+          prism2mib_truth },
+    { DIDmib_p2_p2Static_p2CnfWEPDefaultKeyID,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFWEPDEFAULTKEYID, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfWEPDefaultKey0,
+          F_AP | F_STA | F_WRITE,
+          HFA384x_RID_CNFWEPDEFAULTKEY0, 0, 0,
+          prism2mib_wepdefaultkey },
+    { DIDmib_p2_p2Static_p2CnfWEPDefaultKey1,
+          F_AP | F_STA | F_WRITE,
+          HFA384x_RID_CNFWEPDEFAULTKEY1, 0, 0,
+          prism2mib_wepdefaultkey },
+    { DIDmib_p2_p2Static_p2CnfWEPDefaultKey2,
+          F_AP | F_STA | F_WRITE,
+          HFA384x_RID_CNFWEPDEFAULTKEY2, 0, 0,
+          prism2mib_wepdefaultkey },
+    { DIDmib_p2_p2Static_p2CnfWEPDefaultKey3,
+          F_AP | F_STA | F_WRITE,
+          HFA384x_RID_CNFWEPDEFAULTKEY3, 0, 0,
+          prism2mib_wepdefaultkey },
+    { DIDmib_p2_p2Static_p2CnfWEPFlags,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFWEPFLAGS, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfAuthentication,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFAUTHENTICATION, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfMaxAssociatedStations,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFMAXASSOCSTATIONS, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfTxControl,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFTXCONTROL, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfRoamingMode,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFROAMINGMODE, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfHostAuthentication,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFHOSTAUTHASSOC, 0, 0,
+          prism2mib_truth },
+    { DIDmib_p2_p2Static_p2CnfRcvCrcError,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFRCVCRCERROR, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfAltRetryCount,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFALTRETRYCNT, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfBeaconInterval,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFAPBCNINT, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfMediumOccupancyLimit,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFAPPCFINFO, HFA384x_RID_CNFAPPCFINFO_LEN, 0,
+          prism2mib_uint32offset },
+    { DIDmib_p2_p2Static_p2CnfCFPPeriod,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFAPPCFINFO, HFA384x_RID_CNFAPPCFINFO_LEN, 1,
+          prism2mib_uint32offset },
+    { DIDmib_p2_p2Static_p2CnfCFPMaxDuration,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFAPPCFINFO, HFA384x_RID_CNFAPPCFINFO_LEN, 2,
+          prism2mib_uint32offset },
+    { DIDmib_p2_p2Static_p2CnfCFPFlags,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFAPPCFINFO, HFA384x_RID_CNFAPPCFINFO_LEN, 3,
+          prism2mib_uint32offset },
+    { DIDmib_p2_p2Static_p2CnfSTAPCFInfo,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFSTAPCFINFO, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfPriorityQUsage,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFPRIORITYQUSAGE, HFA384x_RID_CNFPRIOQUSAGE_LEN, 0,
+          prism2mib_uint32array },
+    { DIDmib_p2_p2Static_p2CnfTIMCtrl,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFTIMCTRL, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfThirty2Tally,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFTHIRTY2TALLY, 0, 0,
+          prism2mib_truth },
+    { DIDmib_p2_p2Static_p2CnfEnhSecurity,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFENHSECURITY, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfShortPreamble,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFSHORTPREAMBLE, 0, 0,
+          prism2mib_preamble },
+    { DIDmib_p2_p2Static_p2CnfExcludeLongPreamble,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_CNFEXCLONGPREAMBLE, 0, 0,
+          prism2mib_truth },
+    { DIDmib_p2_p2Static_p2CnfAuthenticationRspTO,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFAUTHRSPTIMEOUT, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfBasicRates,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFBASICRATES, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Static_p2CnfSupportedRates,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFSUPPRATES, 0, 0,
+          prism2mib_uint32 },
+
+    /* p2Dynamic MIB's */
+
+    { DIDmib_p2_p2Dynamic_p2CreateIBSS,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CREATEIBSS, 0, 0,
+          prism2mib_truth },
+    { DIDmib_p2_p2Dynamic_p2FragmentationThreshold,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_FRAGTHRESH, 0, 0,
+          prism2mib_fragmentationthreshold },
+    { DIDmib_p2_p2Dynamic_p2RTSThreshold,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_RTSTHRESH, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Dynamic_p2TxRateControl,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_TXRATECNTL, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Dynamic_p2PromiscuousMode,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_PROMISCMODE, 0, 0,
+          prism2mib_truth },
+    { DIDmib_p2_p2Dynamic_p2FragmentationThreshold0,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_FRAGTHRESH0, 0, 0,
+          prism2mib_fragmentationthreshold },
+    { DIDmib_p2_p2Dynamic_p2FragmentationThreshold1,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_FRAGTHRESH1, 0, 0,
+          prism2mib_fragmentationthreshold },
+    { DIDmib_p2_p2Dynamic_p2FragmentationThreshold2,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_FRAGTHRESH2, 0, 0,
+          prism2mib_fragmentationthreshold },
+    { DIDmib_p2_p2Dynamic_p2FragmentationThreshold3,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_FRAGTHRESH3, 0, 0,
+          prism2mib_fragmentationthreshold },
+    { DIDmib_p2_p2Dynamic_p2FragmentationThreshold4,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_FRAGTHRESH4, 0, 0,
+          prism2mib_fragmentationthreshold },
+    { DIDmib_p2_p2Dynamic_p2FragmentationThreshold5,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_FRAGTHRESH5, 0, 0,
+          prism2mib_fragmentationthreshold },
+    { DIDmib_p2_p2Dynamic_p2FragmentationThreshold6,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_FRAGTHRESH6, 0, 0,
+          prism2mib_fragmentationthreshold },
+    { DIDmib_p2_p2Dynamic_p2RTSThreshold0,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_RTSTHRESH0, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Dynamic_p2RTSThreshold1,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_RTSTHRESH1, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Dynamic_p2RTSThreshold2,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_RTSTHRESH2, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Dynamic_p2RTSThreshold3,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_RTSTHRESH3, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Dynamic_p2RTSThreshold4,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_RTSTHRESH4, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Dynamic_p2RTSThreshold5,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_RTSTHRESH5, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Dynamic_p2RTSThreshold6,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_RTSTHRESH6, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Dynamic_p2TxRateControl0,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_TXRATECNTL0, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Dynamic_p2TxRateControl1,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_TXRATECNTL1, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Dynamic_p2TxRateControl2,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_TXRATECNTL2, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Dynamic_p2TxRateControl3,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_TXRATECNTL3, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Dynamic_p2TxRateControl4,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_TXRATECNTL4, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Dynamic_p2TxRateControl5,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_TXRATECNTL5, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Dynamic_p2TxRateControl6,
+          F_AP | F_READ | F_WRITE,
+          HFA384x_RID_TXRATECNTL6, 0, 0,
+          prism2mib_uint32 },
+
+    /* p2Behavior MIB's */
+
+    { DIDmib_p2_p2Behavior_p2TickTime,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_ITICKTIME, 0, 0,
+          prism2mib_uint32 },
+
+    /* p2NIC MIB's */
+
+    { DIDmib_p2_p2NIC_p2MaxLoadTime,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_MAXLOADTIME, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2NIC_p2DLBufferPage,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_DOWNLOADBUFFER, HFA384x_RID_DOWNLOADBUFFER_LEN, 0,
+          prism2mib_uint32offset },
+    { DIDmib_p2_p2NIC_p2DLBufferOffset,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_DOWNLOADBUFFER, HFA384x_RID_DOWNLOADBUFFER_LEN, 1,
+          prism2mib_uint32offset },
+    { DIDmib_p2_p2NIC_p2DLBufferLength,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_DOWNLOADBUFFER, HFA384x_RID_DOWNLOADBUFFER_LEN, 2,
+          prism2mib_uint32offset },
+    { DIDmib_p2_p2NIC_p2PRIIdentity,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_PRIIDENTITY, HFA384x_RID_PRIIDENTITY_LEN, 0,
+          prism2mib_uint32array },
+    { DIDmib_p2_p2NIC_p2PRISupRange,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_PRISUPRANGE, HFA384x_RID_PRISUPRANGE_LEN, 0,
+          prism2mib_uint32array },
+    { DIDmib_p2_p2NIC_p2CFIActRanges,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_PRI_CFIACTRANGES, HFA384x_RID_CFIACTRANGES_LEN, 0,
+          prism2mib_uint32array },
+    { DIDmib_p2_p2NIC_p2BuildSequence,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_BUILDSEQ, HFA384x_RID_BUILDSEQ_LEN, 0,
+          prism2mib_uint32array },
+    { DIDmib_p2_p2NIC_p2PrimaryFWID,
+          F_AP | F_STA | F_READ,
+          0, 0, 0,
+          prism2mib_fwid },
+    { DIDmib_p2_p2NIC_p2SecondaryFWID,
+          F_AP | F_STA | F_READ,
+          0, 0, 0,
+          prism2mib_fwid },
+    { DIDmib_p2_p2NIC_p2TertiaryFWID,
+          F_AP | F_READ,
+          0, 0, 0,
+          prism2mib_fwid },
+    { DIDmib_p2_p2NIC_p2NICSerialNumber,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_NICSERIALNUMBER, HFA384x_RID_NICSERIALNUMBER_LEN, 0,
+          prism2mib_bytearea2pstr },
+    { DIDmib_p2_p2NIC_p2NICIdentity,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_NICIDENTITY, HFA384x_RID_NICIDENTITY_LEN, 0,
+          prism2mib_uint32array },
+    { DIDmib_p2_p2NIC_p2MFISupRange,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_MFISUPRANGE, HFA384x_RID_MFISUPRANGE_LEN, 0,
+          prism2mib_uint32array },
+    { DIDmib_p2_p2NIC_p2CFISupRange,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_CFISUPRANGE, HFA384x_RID_CFISUPRANGE_LEN, 0,
+          prism2mib_uint32array },
+    { DIDmib_p2_p2NIC_p2ChannelList,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_CHANNELLIST, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2NIC_p2RegulatoryDomains,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_REGULATORYDOMAINS, HFA384x_RID_REGULATORYDOMAINS_LEN, 0,
+          prism2mib_regulatorydomains },
+    { DIDmib_p2_p2NIC_p2TempType,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_TEMPTYPE, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2NIC_p2STAIdentity,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_STAIDENTITY, HFA384x_RID_STAIDENTITY_LEN, 0,
+          prism2mib_uint32array },
+    { DIDmib_p2_p2NIC_p2STASupRange,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_STASUPRANGE, HFA384x_RID_STASUPRANGE_LEN, 0,
+          prism2mib_uint32array },
+    { DIDmib_p2_p2NIC_p2MFIActRanges,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_STA_MFIACTRANGES, HFA384x_RID_MFIACTRANGES_LEN, 0,
+          prism2mib_uint32array },
+    { DIDmib_p2_p2NIC_p2STACFIActRanges,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_STA_CFIACTRANGES, HFA384x_RID_CFIACTRANGES2_LEN, 0,
+          prism2mib_uint32array },
+
+    /* p2MAC MIB's */
+
+    { DIDmib_p2_p2MAC_p2PortStatus,
+          F_STA | F_READ,
+          HFA384x_RID_PORTSTATUS, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2MAC_p2CurrentSSID,
+          F_STA | F_READ,
+          HFA384x_RID_CURRENTSSID, HFA384x_RID_CURRENTSSID_LEN, 0,
+          prism2mib_bytestr2pstr },
+    { DIDmib_p2_p2MAC_p2CurrentBSSID,
+          F_STA | F_READ,
+          HFA384x_RID_CURRENTBSSID, HFA384x_RID_CURRENTBSSID_LEN, 0,
+          prism2mib_bytearea2pstr },
+    { DIDmib_p2_p2MAC_p2CommsQuality,
+          F_STA | F_READ,
+          HFA384x_RID_COMMSQUALITY, HFA384x_RID_COMMSQUALITY_LEN, 0,
+          prism2mib_uint32array },
+    { DIDmib_p2_p2MAC_p2CommsQualityCQ,
+          F_STA | F_READ,
+          HFA384x_RID_COMMSQUALITY, HFA384x_RID_COMMSQUALITY_LEN, 0,
+          prism2mib_uint32offset },
+    { DIDmib_p2_p2MAC_p2CommsQualityASL,
+          F_STA | F_READ,
+          HFA384x_RID_COMMSQUALITY, HFA384x_RID_COMMSQUALITY_LEN, 1,
+          prism2mib_uint32offset },
+    { DIDmib_p2_p2MAC_p2CommsQualityANL,
+          F_STA | F_READ,
+          HFA384x_RID_COMMSQUALITY, HFA384x_RID_COMMSQUALITY_LEN, 2,
+          prism2mib_uint32offset },
+    { DIDmib_p2_p2MAC_p2dbmCommsQuality,
+          F_STA | F_READ,
+          HFA384x_RID_DBMCOMMSQUALITY, HFA384x_RID_DBMCOMMSQUALITY_LEN, 0,
+          prism2mib_uint32array },
+    { DIDmib_p2_p2MAC_p2dbmCommsQualityCQ,
+          F_STA | F_READ,
+          HFA384x_RID_COMMSQUALITY, HFA384x_RID_COMMSQUALITY_LEN, 0,
+          prism2mib_uint32offset },
+    { DIDmib_p2_p2MAC_p2dbmCommsQualityASL,
+          F_STA | F_READ,
+          HFA384x_RID_COMMSQUALITY, HFA384x_RID_COMMSQUALITY_LEN, 1,
+          prism2mib_uint32offset },
+    { DIDmib_p2_p2MAC_p2dbmCommsQualityANL,
+          F_STA | F_READ,
+          HFA384x_RID_COMMSQUALITY, HFA384x_RID_COMMSQUALITY_LEN, 2,
+          prism2mib_uint32offset },
+    { DIDmib_p2_p2MAC_p2CurrentTxRate,
+          F_STA | F_READ,
+          HFA384x_RID_CURRENTTXRATE, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2MAC_p2CurrentBeaconInterval,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_CURRENTBCNINT, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2MAC_p2StaCurrentScaleThresholds,
+          F_STA | F_READ,
+          HFA384x_RID_CURRENTSCALETHRESH, HFA384x_RID_STACURSCALETHRESH_LEN, 0,
+          prism2mib_uint32array },
+    { DIDmib_p2_p2MAC_p2APCurrentScaleThresholds,
+          F_AP | F_READ,
+          HFA384x_RID_CURRENTSCALETHRESH, HFA384x_RID_APCURSCALETHRESH_LEN, 0,
+          prism2mib_uint32array },
+    { DIDmib_p2_p2MAC_p2ProtocolRspTime,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_PROTOCOLRSPTIME, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2MAC_p2ShortRetryLimit,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_SHORTRETRYLIMIT, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2MAC_p2LongRetryLimit,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_LONGRETRYLIMIT, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2MAC_p2MaxTransmitLifetime,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_MAXTXLIFETIME, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2MAC_p2MaxReceiveLifetime,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_MAXRXLIFETIME, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2MAC_p2CFPollable,
+          F_STA | F_READ,
+          HFA384x_RID_CFPOLLABLE, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2MAC_p2AuthenticationAlgorithms,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_AUTHALGORITHMS, HFA384x_RID_AUTHALGORITHMS_LEN, 0,
+          prism2mib_uint32array },
+    { DIDmib_p2_p2MAC_p2PrivacyOptionImplemented,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_PRIVACYOPTIMP, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2MAC_p2CurrentTxRate1,
+          F_AP | F_READ,
+          HFA384x_RID_CURRENTTXRATE1, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2MAC_p2CurrentTxRate2,
+          F_AP | F_READ,
+          HFA384x_RID_CURRENTTXRATE2, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2MAC_p2CurrentTxRate3,
+          F_AP | F_READ,
+          HFA384x_RID_CURRENTTXRATE3, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2MAC_p2CurrentTxRate4,
+          F_AP | F_READ,
+          HFA384x_RID_CURRENTTXRATE4, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2MAC_p2CurrentTxRate5,
+          F_AP | F_READ,
+          HFA384x_RID_CURRENTTXRATE5, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2MAC_p2CurrentTxRate6,
+          F_AP | F_READ,
+          HFA384x_RID_CURRENTTXRATE6, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2MAC_p2OwnMACAddress,
+          F_AP | F_READ,
+          HFA384x_RID_OWNMACADDRESS, HFA384x_RID_OWNMACADDRESS_LEN, 0,
+          prism2mib_bytearea2pstr },
+
+    /* p2Modem MIB's */
+
+    { DIDmib_p2_p2Modem_p2PHYType,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_PHYTYPE, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Modem_p2CurrentChannel,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_CURRENTCHANNEL, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Modem_p2CurrentPowerState,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_CURRENTPOWERSTATE, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Modem_p2CCAMode,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_CCAMODE, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Modem_p2TxPowerMax,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_TXPOWERMAX, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_dot11phy_dot11PhyTxPowerTable_dot11CurrentTxPowerLevel,
+          F_AP | F_STA | F_READ | F_WRITE,
+          HFA384x_RID_TXPOWERMAX, 0, 0,
+          prism2mib_uint32 },
+    { DIDmib_p2_p2Modem_p2SupportedDataRates,
+          F_AP | F_STA | F_READ,
+          HFA384x_RID_SUPPORTEDDATARATES, HFA384x_RID_SUPPORTEDDATARATES_LEN, 0,
+          prism2mib_bytestr2pstr },
+
+    /* And finally, lnx mibs */
+    { DIDmib_lnx_lnxConfigTable_lnxRSNAIE,
+          F_STA | F_READ | F_WRITE,
+          HFA384x_RID_CNFWPADATA, 0, 0,
+          prism2mib_priv },
+    { 0, 0, 0, 0, 0, NULL}};
+
+/*----------------------------------------------------------------
+These MIB's are not supported at this time:
+
+DIDmib_dot11phy_dot11PhyOperationTable_dot11ChannelAgilityPresent
+DIDmib_dot11phy_dot11PhyOperationTable_dot11ChannelAgilityEnabled
+DIDmib_dot11phy_dot11PhyDSSSTable_dot11PBCCOptionImplemented
+DIDmib_dot11phy_dot11RegDomainsSupportedTable_dot11RegDomainsSupportIndex
+DIDmib_dot11phy_dot11SupportedDataRatesTxTable_dot11SupportedDataRatesTxIndex
+DIDmib_dot11phy_dot11SupportedDataRatesTxTable_dot11SupportedDataRatesTxValue
+DIDmib_dot11phy_dot11SupportedDataRatesRxTable_dot11SupportedDataRatesRxIndex
+DIDmib_dot11phy_dot11SupportedDataRatesRxTable_dot11SupportedDataRatesRxValue
+
+DIDmib_dot11phy_dot11RegDomainsSupportedTable_dot11RegDomainsSupportValue
+TODO: need to investigate why wlan has this as enumerated and Prism2 has this
+      as btye str.
+
+DIDmib_dot11phy_dot11PhyDSSSTable_dot11ShortPreambleOptionImplemented
+TODO: Find out the firmware version number(s) for identifying
+      whether the firmware is capable of short preamble. TRUE or FALSE
+      will be returned based on the version of the firmware.
+
+WEP Key mappings aren't supported in the f/w.
+DIDmib_dot11smt_dot11WEPKeyMappingsTable_dot11WEPKeyMappingIndex
+DIDmib_dot11smt_dot11WEPKeyMappingsTable_dot11WEPKeyMappingAddress
+DIDmib_dot11smt_dot11WEPKeyMappingsTable_dot11WEPKeyMappingWEPOn
+DIDmib_dot11smt_dot11WEPKeyMappingsTable_dot11WEPKeyMappingValue
+DIDmib_dot11smt_dot11PrivacyTable_dot11WEPKeyMappingLength
+
+TODO: implement counters.
+DIDmib_dot11smt_dot11PrivacyTable_dot11WEPICVErrorCount
+DIDmib_dot11smt_dot11PrivacyTable_dot11WEPExcludedCount
+DIDmib_dot11mac_dot11CountersTable_dot11TransmittedFragmentCount
+DIDmib_dot11mac_dot11CountersTable_dot11MulticastTransmittedFrameCount
+DIDmib_dot11mac_dot11CountersTable_dot11FailedCount
+DIDmib_dot11mac_dot11CountersTable_dot11RetryCount
+DIDmib_dot11mac_dot11CountersTable_dot11MultipleRetryCount
+DIDmib_dot11mac_dot11CountersTable_dot11FrameDuplicateCount
+DIDmib_dot11mac_dot11CountersTable_dot11RTSSuccessCount
+DIDmib_dot11mac_dot11CountersTable_dot11RTSFailureCount
+DIDmib_dot11mac_dot11CountersTable_dot11ACKFailureCount
+DIDmib_dot11mac_dot11CountersTable_dot11ReceivedFragmentCount
+DIDmib_dot11mac_dot11CountersTable_dot11MulticastReceivedFrameCount
+DIDmib_dot11mac_dot11CountersTable_dot11FCSErrorCount
+DIDmib_dot11mac_dot11CountersTable_dot11TransmittedFrameCount
+DIDmib_dot11mac_dot11CountersTable_dot11WEPUndecryptableCount
+
+TODO: implement sane values for these.
+DIDmib_dot11mac_dot11OperationTable_dot11ManufacturerID
+DIDmib_dot11mac_dot11OperationTable_dot11ProductID
+
+Not too worried about these at the moment.
+DIDmib_dot11phy_dot11PhyAntennaTable_dot11CurrentTxAntenna
+DIDmib_dot11phy_dot11PhyAntennaTable_dot11DiversitySupport
+DIDmib_dot11phy_dot11PhyAntennaTable_dot11CurrentRxAntenna
+DIDmib_dot11phy_dot11PhyTxPowerTable_dot11NumberSupportedPowerLevels
+DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel1
+DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel2
+DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel3
+DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel4
+DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel5
+DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel6
+DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel7
+DIDmib_dot11phy_dot11PhyTxPowerTable_dot11TxPowerLevel8
+DIDmib_dot11phy_dot11PhyTxPowerTable_dot11CurrentTxPowerLevel
+
+Ummm, FH and IR don't apply
+DIDmib_dot11phy_dot11PhyFHSSTable_dot11HopTime
+DIDmib_dot11phy_dot11PhyFHSSTable_dot11CurrentChannelNumber
+DIDmib_dot11phy_dot11PhyFHSSTable_dot11MaxDwellTime
+DIDmib_dot11phy_dot11PhyFHSSTable_dot11CurrentDwellTime
+DIDmib_dot11phy_dot11PhyFHSSTable_dot11CurrentSet
+DIDmib_dot11phy_dot11PhyFHSSTable_dot11CurrentPattern
+DIDmib_dot11phy_dot11PhyFHSSTable_dot11CurrentIndex
+DIDmib_dot11phy_dot11PhyDSSSTable_dot11CCAModeSupported
+DIDmib_dot11phy_dot11PhyDSSSTable_dot11EDThreshold
+DIDmib_dot11phy_dot11PhyIRTable_dot11CCAWatchdogTimerMax
+DIDmib_dot11phy_dot11PhyIRTable_dot11CCAWatchdogCountMax
+DIDmib_dot11phy_dot11PhyIRTable_dot11CCAWatchdogTimerMin
+DIDmib_dot11phy_dot11PhyIRTable_dot11CCAWatchdogCountMin
+
+We just don't have enough antennas right now to worry about this.
+DIDmib_dot11phy_dot11AntennasListTable_dot11AntennaListIndex
+DIDmib_dot11phy_dot11AntennasListTable_dot11SupportedTxAntenna
+DIDmib_dot11phy_dot11AntennasListTable_dot11SupportedRxAntenna
+DIDmib_dot11phy_dot11AntennasListTable_dot11DiversitySelectionRx
+
+------------------------------------------------------------------*/
+
+/*================================================================*/
+/* Function Definitions */
+
+/*----------------------------------------------------------------
+* prism2mgmt_mibset_mibget
+*
+* Set the value of a mib item.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+*	0	success and done
+*	<0	success, but we're waiting for something to finish.
+*	>0	an error occurred while handling the message.
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+*	interrupt
+----------------------------------------------------------------*/
+
+int prism2mgmt_mibset_mibget(wlandevice_t *wlandev, void *msgp)
+{
+	hfa384x_t		*hw = wlandev->priv;
+	int			result, isget;
+	mibrec_t		*mib;
+	UINT16			which;
+
+	p80211msg_dot11req_mibset_t	*msg = msgp;
+	p80211itemd_t			*mibitem;
+
+	DBFENTER;
+
+	msg->resultcode.status = P80211ENUM_msgitem_status_data_ok;
+	msg->resultcode.data = P80211ENUM_resultcode_success;
+
+	/*
+	** Determine if this is an Access Point or a station.
+	*/
+
+	which = hw->ap ? F_AP : F_STA;
+
+	/*
+	** Find the MIB in the MIB table.  Note that a MIB may be in the
+	** table twice...once for an AP and once for a station.  Make sure
+	** to get the correct one.  Note that DID=0 marks the end of the
+	** MIB table.
+	*/
+
+	mibitem = (p80211itemd_t *) msg->mibattribute.data;
+
+	for (mib = mibtab; mib->did != 0; mib++)
+		if (mib->did == mibitem->did && (mib->flag & which))
+			break;
+
+	if (mib->did == 0) {
+		msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+		goto done;
+	}
+
+	/*
+	** Determine if this is a "mibget" or a "mibset".  If this is a
+	** "mibget", then make sure that the MIB may be read.  Otherwise,
+	** this is a "mibset" so make make sure that the MIB may be written.
+	*/
+
+	isget = (msg->msgcode == DIDmsg_dot11req_mibget);
+
+	if (isget) {
+		if (!(mib->flag & F_READ)) {
+			msg->resultcode.data =
+				P80211ENUM_resultcode_cant_get_writeonly_mib;
+			goto done;
+		}
+	} else {
+		if (!(mib->flag & F_WRITE)) {
+			msg->resultcode.data =
+				P80211ENUM_resultcode_cant_set_readonly_mib;
+			goto done;
+		}
+	}
+
+	/*
+	** Execute the MIB function.  If things worked okay, then make
+	** sure that the MIB function also worked okay.  If so, and this
+	** is a "mibget", then the status value must be set for both the
+	** "mibattribute" parameter and the mib item within the data
+	** portion of the "mibattribute".
+	*/
+
+	result = mib->func(mib, isget, wlandev, hw, msg,
+			   (void *) mibitem->data);
+
+	if (msg->resultcode.data == P80211ENUM_resultcode_success) {
+		if (result != 0) {
+			WLAN_LOG_DEBUG(1, "get/set failure, result=%d\n",
+					result);
+			msg->resultcode.data =
+				 P80211ENUM_resultcode_implementation_failure;
+		} else {
+			if (isget) {
+				msg->mibattribute.status =
+					P80211ENUM_msgitem_status_data_ok;
+				mibitem->status =
+					P80211ENUM_msgitem_status_data_ok;
+			}
+		}
+	}
+
+done:
+	DBFEXIT;
+
+	return(0);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_bytestr2pstr
+*
+* Get/set pstr data to/from a byte string.
+*
+* MIB record parameters:
+*       parm1    Prism2 RID value.
+*       parm2    Number of bytes of RID data.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_bytestr2pstr(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int                result;
+	p80211pstrd_t      *pstr = (p80211pstrd_t*) data;
+	UINT8              bytebuf[MIB_TMP_MAXLEN];
+	hfa384x_bytestr_t  *p2bytestr = (hfa384x_bytestr_t*) bytebuf;
+
+	DBFENTER;
+
+	if (isget) {
+		result = hfa384x_drvr_getconfig(hw, mib->parm1, bytebuf, mib->parm2);
+		prism2mgmt_bytestr2pstr(p2bytestr, pstr);
+	} else {
+		memset(bytebuf, 0, mib->parm2);
+		prism2mgmt_pstr2bytestr(p2bytestr, pstr);
+		result = hfa384x_drvr_setconfig(hw, mib->parm1, bytebuf, mib->parm2);
+	}
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_bytearea2pstr
+*
+* Get/set pstr data to/from a byte area.
+*
+* MIB record parameters:
+*       parm1    Prism2 RID value.
+*       parm2    Number of bytes of RID data.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_bytearea2pstr(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int            result;
+	p80211pstrd_t  *pstr = (p80211pstrd_t*) data;
+	UINT8          bytebuf[MIB_TMP_MAXLEN];
+
+	DBFENTER;
+
+	if (isget) {
+		result = hfa384x_drvr_getconfig(hw, mib->parm1, bytebuf, mib->parm2);
+		prism2mgmt_bytearea2pstr(bytebuf, pstr,	mib->parm2);
+	} else {
+		memset(bytebuf, 0, mib->parm2);
+		prism2mgmt_pstr2bytearea(bytebuf, pstr);
+		result = hfa384x_drvr_setconfig(hw, mib->parm1, bytebuf, mib->parm2);
+	}
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_uint32
+*
+* Get/set uint32 data.
+*
+* MIB record parameters:
+*       parm1    Prism2 RID value.
+*       parm2    Not used.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_uint32(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int     result;
+	UINT32  *uint32 = (UINT32*) data;
+	UINT8   bytebuf[MIB_TMP_MAXLEN];
+	UINT16  *wordbuf = (UINT16*) bytebuf;
+
+	DBFENTER;
+
+	if (isget) {
+		result = hfa384x_drvr_getconfig16(hw, mib->parm1, wordbuf);
+		*uint32 = *wordbuf;
+		/* [MSM] Removed, getconfig16 returns the value in host order.
+		 * prism2mgmt_prism2int2p80211int(wordbuf, uint32);
+		 */
+	} else {
+		/* [MSM] Removed, setconfig16 expects host order.
+		 * prism2mgmt_p80211int2prism2int(wordbuf, uint32);
+		 */
+		*wordbuf = *uint32;
+		result = hfa384x_drvr_setconfig16(hw, mib->parm1, *wordbuf);
+	}
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_uint32array
+*
+* Get/set an array of uint32 data.
+*
+* MIB record parameters:
+*       parm1    Prism2 RID value.
+*       parm2    Number of bytes of RID data.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_uint32array(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int     result;
+	UINT32  *uint32 = (UINT32 *) data;
+	UINT8   bytebuf[MIB_TMP_MAXLEN];
+	UINT16  *wordbuf = (UINT16*) bytebuf;
+	int     i, cnt;
+
+	DBFENTER;
+
+	cnt = mib->parm2 / sizeof(UINT16);
+
+	if (isget) {
+		result = hfa384x_drvr_getconfig(hw, mib->parm1, wordbuf, mib->parm2);
+		for (i = 0; i < cnt; i++)
+			prism2mgmt_prism2int2p80211int(wordbuf+i, uint32+i);
+	} else {
+		for (i = 0; i < cnt; i++)
+			prism2mgmt_p80211int2prism2int(wordbuf+i, uint32+i);
+		result = hfa384x_drvr_setconfig(hw, mib->parm1, wordbuf, mib->parm2);
+		}
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_uint32offset
+*
+* Get/set a single element in an array of uint32 data.
+*
+* MIB record parameters:
+*       parm1    Prism2 RID value.
+*       parm2    Number of bytes of RID data.
+*       parm3    Element index.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_uint32offset(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int     result;
+	UINT32  *uint32 = (UINT32*) data;
+	UINT8   bytebuf[MIB_TMP_MAXLEN];
+	UINT16  *wordbuf = (UINT16*) bytebuf;
+	UINT16  cnt;
+
+	DBFENTER;
+
+	cnt = mib->parm2 / sizeof(UINT16);
+
+	result = hfa384x_drvr_getconfig(hw, mib->parm1, wordbuf, mib->parm2);
+	if (result == 0) {
+		if (isget) {
+			if (mib->parm3 < cnt)
+				prism2mgmt_prism2int2p80211int(wordbuf+mib->parm3, uint32);
+			else
+				*uint32 = 0;
+		} else {
+			if (mib->parm3 < cnt) {
+				prism2mgmt_p80211int2prism2int(wordbuf+mib->parm3, uint32);
+				result = hfa384x_drvr_setconfig(hw, mib->parm1, wordbuf, mib->parm2);
+			}
+		}
+	}
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_truth
+*
+* Get/set truth data.
+*
+* MIB record parameters:
+*       parm1    Prism2 RID value.
+*       parm2    Not used.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_truth(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int     result;
+	UINT32  *uint32 = (UINT32*) data;
+	UINT8   bytebuf[MIB_TMP_MAXLEN];
+	UINT16  *wordbuf = (UINT16*) bytebuf;
+
+	DBFENTER;
+
+	if (isget) {
+		result = hfa384x_drvr_getconfig16(hw, mib->parm1, wordbuf);
+		*uint32 = (*wordbuf) ?
+				P80211ENUM_truth_true : P80211ENUM_truth_false;
+	} else {
+		*wordbuf = ((*uint32) == P80211ENUM_truth_true) ? 1 : 0;
+		result = hfa384x_drvr_setconfig16(hw, mib->parm1, *wordbuf);
+	}
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_flag
+*
+* Get/set a flag.
+*
+* MIB record parameters:
+*       parm1    Prism2 RID value.
+*       parm2    Bit to get/set.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_flag(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int     result;
+	UINT32  *uint32 = (UINT32*) data;
+	UINT8   bytebuf[MIB_TMP_MAXLEN];
+	UINT16  *wordbuf = (UINT16*) bytebuf;
+	UINT32  flags;
+
+	DBFENTER;
+
+	result = hfa384x_drvr_getconfig16(hw, mib->parm1, wordbuf);
+	if (result == 0) {
+		/* [MSM] Removed, getconfig16 returns the value in host order.
+		 * prism2mgmt_prism2int2p80211int(wordbuf, &flags);
+		 */
+		flags = *wordbuf;
+		if (isget) {
+			*uint32 = (flags & mib->parm2) ?
+				P80211ENUM_truth_true : P80211ENUM_truth_false;
+		} else {
+			if ((*uint32) == P80211ENUM_truth_true)
+				flags |= mib->parm2;
+			else
+				flags &= ~mib->parm2;
+			/* [MSM] Removed, setconfig16 expects host order.
+			 * prism2mgmt_p80211int2prism2int(wordbuf, &flags);
+			 */
+			*wordbuf = flags;
+			result = hfa384x_drvr_setconfig16(hw, mib->parm1, *wordbuf);
+		}
+	}
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_appcfinfoflag
+*
+* Get/set a single flag in the APPCFINFO record.
+*
+* MIB record parameters:
+*       parm1    Bit to get/set.
+*       parm2    Not used.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_appcfinfoflag(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int     result;
+	UINT32  *uint32 = (UINT32*) data;
+	UINT8   bytebuf[MIB_TMP_MAXLEN];
+	UINT16  *wordbuf = (UINT16*) bytebuf;
+	UINT16  word;
+
+	DBFENTER;
+
+	result = hfa384x_drvr_getconfig(hw, HFA384x_RID_CNFAPPCFINFO,
+					bytebuf, HFA384x_RID_CNFAPPCFINFO_LEN);
+	if (result == 0) {
+		if (isget) {
+			*uint32 = (hfa384x2host_16(wordbuf[3]) & mib->parm1) ?
+				P80211ENUM_truth_true : P80211ENUM_truth_false;
+		} else {
+			word = hfa384x2host_16(wordbuf[3]);
+			word = ((*uint32) == P80211ENUM_truth_true) ?
+				(word | mib->parm1) : (word & ~mib->parm1);
+			wordbuf[3] = host2hfa384x_16(word);
+			result = hfa384x_drvr_setconfig(hw, HFA384x_RID_CNFAPPCFINFO,
+					bytebuf, HFA384x_RID_CNFAPPCFINFO_LEN);
+		}
+	}
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_regulatorydomains
+*
+* Get regulatory domain data.
+*
+* MIB record parameters:
+*       parm1    Prism2 RID value.
+*       parm2    Number of bytes of RID data.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_regulatorydomains(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int            result;
+	UINT32         cnt;
+	p80211pstrd_t  *pstr = (p80211pstrd_t*) data;
+	UINT8          bytebuf[MIB_TMP_MAXLEN];
+	UINT16         *wordbuf = (UINT16*) bytebuf;
+
+	DBFENTER;
+
+	result = 0;
+
+	if (isget) {
+		result = hfa384x_drvr_getconfig(hw, mib->parm1, wordbuf, mib->parm2);
+		prism2mgmt_prism2int2p80211int(wordbuf, &cnt);
+		pstr->len = (UINT8) cnt;
+		memcpy(pstr->data, &wordbuf[1], pstr->len);
+	}
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_wepdefaultkey
+*
+* Get/set WEP default keys.
+*
+* MIB record parameters:
+*       parm1    Prism2 RID value.
+*       parm2    Number of bytes of RID data.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_wepdefaultkey(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int            result;
+	p80211pstrd_t  *pstr = (p80211pstrd_t*) data;
+	UINT8          bytebuf[MIB_TMP_MAXLEN];
+	UINT16         len;
+
+	DBFENTER;
+
+	if (isget) {
+		result = 0;    /* Should never happen. */
+	} else {
+		len = (pstr->len > 5) ? HFA384x_RID_CNFWEP128DEFAULTKEY_LEN :
+					HFA384x_RID_CNFWEPDEFAULTKEY_LEN;
+		memset(bytebuf, 0, len);
+		prism2mgmt_pstr2bytearea(bytebuf, pstr);
+		result = hfa384x_drvr_setconfig(hw, mib->parm1, bytebuf, len);
+	}
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_powermanagement
+*
+* Get/set 802.11 power management value.  Note that this is defined differently
+* by 802.11 and Prism2:
+*
+*       Meaning     802.11       Prism2
+*        active       1           false
+*      powersave      2           true
+*
+* MIB record parameters:
+*       parm1    Prism2 RID value.
+*       parm2    Not used.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_powermanagement(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int     result;
+	UINT32  *uint32 = (UINT32*) data;
+	UINT32  value;
+
+	DBFENTER;
+
+	if (isget) {
+		result = prism2mib_uint32(mib, isget, wlandev, hw, msg, &value);
+		*uint32 = (value == 0) ? 1 : 2;
+	} else {
+		value = ((*uint32) == 1) ? 0 : 1;
+		result = prism2mib_uint32(mib, isget, wlandev, hw, msg, &value);
+	}
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_preamble
+*
+* Get/set Prism2 short preamble
+*
+* MIB record parameters:
+*       parm1    Prism2 RID value.
+*       parm2    Not used.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_preamble(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int     result;
+	UINT32  *uint32 = (UINT32*) data;
+	UINT8   bytebuf[MIB_TMP_MAXLEN];
+	UINT16  *wordbuf = (UINT16*) bytebuf;
+
+	DBFENTER;
+
+	if (isget) {
+		result = hfa384x_drvr_getconfig16(hw, mib->parm1, wordbuf);
+		*uint32 = *wordbuf;
+	} else {
+		*wordbuf = *uint32;
+		result = hfa384x_drvr_setconfig16(hw, mib->parm1, *wordbuf);
+	}
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_privacyinvoked
+*
+* Get/set the dot11PrivacyInvoked value.
+*
+* MIB record parameters:
+*       parm1    Prism2 RID value.
+*       parm2    Bit value for PrivacyInvoked flag.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_privacyinvoked(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int     result;
+
+	DBFENTER;
+
+	if (wlandev->hostwep & HOSTWEP_DECRYPT) {
+		if (wlandev->hostwep & HOSTWEP_DECRYPT)
+			mib->parm2 |= HFA384x_WEPFLAGS_DISABLE_RXCRYPT;
+		if (wlandev->hostwep & HOSTWEP_ENCRYPT)
+			mib->parm2 |= HFA384x_WEPFLAGS_DISABLE_TXCRYPT;
+	}
+
+	result = prism2mib_flag(mib, isget, wlandev, hw, msg, data);
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_excludeunencrypted
+*
+* Get/set the dot11ExcludeUnencrypted value.
+*
+* MIB record parameters:
+*       parm1    Prism2 RID value.
+*       parm2    Bit value for ExcludeUnencrypted flag.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_excludeunencrypted(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int     result;
+
+	DBFENTER;
+
+	result = prism2mib_flag(mib, isget, wlandev, hw, msg, data);
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_fragmentationthreshold
+*
+* Get/set the fragmentation threshold.
+*
+* MIB record parameters:
+*       parm1    Prism2 RID value.
+*       parm2    Not used.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_fragmentationthreshold(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int     result;
+	UINT32  *uint32 = (UINT32*) data;
+
+	DBFENTER;
+
+	if (!isget)
+		if ((*uint32) % 2) {
+			WLAN_LOG_WARNING("Attempt to set odd number "
+					  "FragmentationThreshold\n");
+			msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+			return(0);
+		}
+
+	result = prism2mib_uint32(mib, isget, wlandev, hw, msg, data);
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_operationalrateset
+*
+* Get/set the operational rate set.
+*
+* MIB record parameters:
+*       parm1    Prism2 RID value.
+*       parm2    Not used.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_operationalrateset(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int            result;
+	p80211pstrd_t  *pstr = (p80211pstrd_t *) data;
+	UINT8          bytebuf[MIB_TMP_MAXLEN];
+	UINT16         *wordbuf = (UINT16*) bytebuf;
+
+	DBFENTER;
+
+	if (isget) {
+		result = hfa384x_drvr_getconfig16(hw, mib->parm1, wordbuf);
+		prism2mgmt_get_oprateset(wordbuf, pstr);
+	} else {
+		prism2mgmt_set_oprateset(wordbuf, pstr);
+		result = hfa384x_drvr_setconfig16(hw, mib->parm1, *wordbuf);
+		result = hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFSUPPRATES, *wordbuf);
+	}
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_groupaddress
+*
+* Get/set the dot11GroupAddressesTable.
+*
+* MIB record parameters:
+*       parm1    Not used.
+*       parm2    Not used.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_groupaddress(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int            result;
+	p80211pstrd_t  *pstr = (p80211pstrd_t *) data;
+	UINT8          bytebuf[MIB_TMP_MAXLEN];
+	UINT16         len;
+
+	DBFENTER;
+
+	/* TODO: fix this.  f/w doesn't support mcast filters */
+
+	if (isget) {
+		prism2mgmt_get_grpaddr(mib->did, pstr, hw);
+		return(0);
+	}
+
+	result = prism2mgmt_set_grpaddr(mib->did, bytebuf, pstr, hw);
+	if (result != 0) {
+		msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+		return(result);
+	}
+
+	if (hw->dot11_grpcnt <= MAX_PRISM2_GRP_ADDR) {
+		len = hw->dot11_grpcnt * WLAN_ADDR_LEN;
+		memcpy(bytebuf, hw->dot11_grp_addr[0], len);
+		result = hfa384x_drvr_setconfig(hw, HFA384x_RID_GROUPADDR, bytebuf, len);
+
+		/*
+		** Turn off promiscuous mode if count is equal to MAX.  We may
+		** have been at a higher count in promiscuous mode and need to
+		** turn it off.
+		*/
+
+		/* but only if we're not already in promisc mode. :) */
+		if ((hw->dot11_grpcnt == MAX_PRISM2_GRP_ADDR) &&
+		    !( wlandev->netdev->flags & IFF_PROMISC)) {
+			result = hfa384x_drvr_setconfig16(hw,
+					     HFA384x_RID_PROMISCMODE, 0);
+		}
+	} else {
+
+		/*
+		** Clear group addresses in card and set to promiscuous mode.
+		*/
+
+		memset(bytebuf, 0, sizeof(bytebuf));
+		result = hfa384x_drvr_setconfig(hw, HFA384x_RID_GROUPADDR,
+						bytebuf, 0);
+		if (result == 0) {
+			result = hfa384x_drvr_setconfig16(hw,
+					HFA384x_RID_PROMISCMODE, 1);
+		}
+	}
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_fwid
+*
+* Get the firmware ID.
+*
+* MIB record parameters:
+*       parm1    Not used.
+*       parm2    Not used.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_fwid(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int             result;
+	p80211pstrd_t   *pstr = (p80211pstrd_t *) data;
+	hfa384x_FWID_t  fwid;
+
+	DBFENTER;
+
+	if (isget) {
+		result = hfa384x_drvr_getconfig(hw, HFA384x_RID_FWID,
+						&fwid, HFA384x_RID_FWID_LEN);
+		if (mib->did == DIDmib_p2_p2NIC_p2PrimaryFWID) {
+			fwid.primary[HFA384x_FWID_LEN - 1] = '\0';
+			pstr->len = strlen(fwid.primary);
+			memcpy(pstr->data, fwid.primary, pstr->len);
+		} else {
+			fwid.secondary[HFA384x_FWID_LEN - 1] = '\0';
+			pstr->len = strlen(fwid.secondary);
+			memcpy(pstr->data, fwid.secondary, pstr->len);
+		}
+	} else
+		result = 0;     /* Should never happen. */
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_authalg
+*
+* Get values from the AuhtenticationAlgorithmsTable.
+*
+* MIB record parameters:
+*       parm1    Table index (1-6).
+*       parm2    Not used.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_authalg(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	UINT32  *uint32 = (UINT32*) data;
+
+	DBFENTER;
+
+	/* MSM: pkx supplied code that  code queries RID FD4D....but the f/w's
+         *  results are bogus. Therefore, we have to simulate the appropriate
+         *  results here in the driver based on our knowledge of existing MAC
+         *  features.  That's the whole point behind this ugly function.
+         */
+
+	if (isget) {
+		msg->resultcode.data = P80211ENUM_resultcode_success;
+		switch (mib->parm1) {
+			case 1: /* Open System */
+				*uint32 = P80211ENUM_authalg_opensystem;
+				break;
+			case 2: /* SharedKey */
+				*uint32 = P80211ENUM_authalg_sharedkey;
+				break;
+			default:
+				*uint32 = 0;
+				msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+				break;
+		}
+	}
+
+	DBFEXIT;
+	return(0);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_authalgenable
+*
+* Get/set the enable values from the AuhtenticationAlgorithmsTable.
+*
+* MIB record parameters:
+*       parm1    Table index (1-6).
+*       parm2    Not used.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_authalgenable(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	int     result;
+	UINT32  *uint32 = (UINT32*) data;
+
+	int     index;
+	UINT16  cnf_auth;
+	UINT16	mask;
+
+	DBFENTER;
+
+	index = mib->parm1 - 1;
+
+	result = hfa384x_drvr_getconfig16( hw,
+			HFA384x_RID_CNFAUTHENTICATION, &cnf_auth);
+	WLAN_LOG_DEBUG(2,"cnfAuthentication0=%d, index=%d\n", cnf_auth, index);
+
+	if (isget) {
+		if ( index == 0 || index == 1 ) {
+			*uint32 = (cnf_auth & (1<<index)) ?
+				P80211ENUM_truth_true: P80211ENUM_truth_false;
+		} else {
+			*uint32 = P80211ENUM_truth_false;
+			msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+		}
+	} else {
+		if ( index == 0 || index == 1 ) {
+			mask = 1 << index;
+			if (*uint32==P80211ENUM_truth_true ) {
+				cnf_auth |= mask;
+			} else {
+				cnf_auth &= ~mask;
+			}
+			result = hfa384x_drvr_setconfig16( hw,
+					HFA384x_RID_CNFAUTHENTICATION, cnf_auth);
+			WLAN_LOG_DEBUG(2,"cnfAuthentication:=%d\n", cnf_auth);
+			if ( result ) {
+				WLAN_LOG_DEBUG(1,"Unable to set p2cnfAuthentication to %d\n", cnf_auth);
+				msg->resultcode.data = P80211ENUM_resultcode_implementation_failure;
+			}
+		} else {
+			msg->resultcode.data = P80211ENUM_resultcode_not_supported;
+		}
+	}
+
+	DBFEXIT;
+	return(result);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_priv
+*
+* Get/set values in the "priv" data structure.
+*
+* MIB record parameters:
+*       parm1    Not used.
+*       parm2    Not used.
+*       parm3    Not used.
+*
+* Arguments:
+*       mib      MIB record.
+*       isget    MIBGET/MIBSET flag.
+*       wlandev  wlan device structure.
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       msg      Message structure.
+*       data     Data buffer.
+*
+* Returns:
+*       0   - Success.
+*       ~0  - Error.
+*
+----------------------------------------------------------------*/
+
+static int prism2mib_priv(
+mibrec_t                     *mib,
+int                          isget,
+wlandevice_t                 *wlandev,
+hfa384x_t                    *hw,
+p80211msg_dot11req_mibset_t  *msg,
+void                         *data)
+{
+	UINT32            *uint32 = (UINT32*) data;
+	p80211pstrd_t     *pstr = (p80211pstrd_t*) data;
+	p80211macarray_t  *macarray = (p80211macarray_t *) data;
+
+	int  i, cnt, result, done;
+
+	prism2sta_authlist_t  old;
+
+	/*
+	** "test" is a lot longer than necessary but who cares?  ...as long as
+	** it is long enough!
+	*/
+
+	UINT8  test[sizeof(wlandev->rx) + sizeof(hw->tallies)];
+
+	DBFENTER;
+
+	switch (mib->did) {
+	case DIDmib_p2_p2Table_p2ReceivedFrameStatistics:
+
+		/*
+		** Note: The values in this record are changed by the
+		** interrupt handler and therefore cannot be guaranteed
+		** to be stable while they are being copied.  However,
+		** the interrupt handler will take priority over this
+		** code.  Hence, if the same values are copied twice,
+		** then we are ensured that the values have not been
+		** changed.  If they have, then just try again.  Don't
+		** try more than 10 times...if we still haven't got it,
+		** then the values we do have are probably good enough.
+		** This scheme for copying values is used in order to
+		** prevent having to block the interrupt handler while
+		** we copy the values.
+		*/
+
+		if (isget)
+			for (i = 0; i < 10; i++) {
+				memcpy(data, &wlandev->rx, sizeof(wlandev->rx));
+				memcpy(test, &wlandev->rx, sizeof(wlandev->rx));
+				if (memcmp(data, test, sizeof(wlandev->rx)) == 0) break;
+			}
+
+		break;
+
+	case DIDmib_p2_p2Table_p2CommunicationTallies:
+
+		/*
+		** Note: The values in this record are changed by the
+		** interrupt handler and therefore cannot be guaranteed
+		** to be stable while they are being copied.  See the
+		** note above about copying values.
+		*/
+
+		if (isget) {
+			result = hfa384x_drvr_commtallies(hw);
+
+			/* ?????? We need to wait a bit here for the */
+			/*   tallies to get updated. ?????? */
+			/* MSM: TODO: The right way to do this is to
+			 *      add a "commtallie" wait queue to the
+			 *      priv structure that gets run every time
+			 *      we receive a commtally info frame.
+			 *      This process would sleep on that
+			 *      queue and get awakened when the
+			 *      the requested info frame arrives.
+			 *      Don't have time to do and test this
+			 *      right now.
+			 */
+
+			/* Ugh, this is nasty. */
+			for (i = 0; i < 10; i++) {
+				memcpy(data,
+				       &hw->tallies,
+				       sizeof(hw->tallies));
+				memcpy(test,
+				       &hw->tallies,
+				       sizeof(hw->tallies));
+				if ( memcmp(data,
+					    test,
+					    sizeof(hw->tallies)) == 0)
+					break;
+			}
+		}
+
+		break;
+
+	case DIDmib_p2_p2Table_p2Authenticated:
+
+		if (isget) {
+			prism2mib_priv_authlist(hw, &old);
+
+			macarray->cnt = 0;
+			for (i = 0; i < old.cnt; i++) {
+				if (!old.assoc[i]) {
+					memcpy(macarray->data[macarray->cnt], old.addr[i], WLAN_ADDR_LEN);
+					macarray->cnt++;
+				}
+			}
+		}
+
+		break;
+
+	case DIDmib_p2_p2Table_p2Associated:
+
+		if (isget) {
+			prism2mib_priv_authlist(hw, &old);
+
+			macarray->cnt = 0;
+			for (i = 0; i < old.cnt; i++) {
+				if (old.assoc[i]) {
+					memcpy(macarray->data[macarray->cnt], old.addr[i], WLAN_ADDR_LEN);
+					macarray->cnt++;
+				}
+			}
+		}
+
+		break;
+
+	case DIDmib_p2_p2Table_p2PowerSaveUserCount:
+
+		if (isget)
+			*uint32 = hw->psusercount;
+
+		break;
+
+	case DIDmib_p2_p2Table_p2Comment:
+
+		if (isget) {
+			pstr->len = strlen(hw->comment);
+			memcpy(pstr->data, hw->comment, pstr->len);
+		} else {
+			cnt = pstr->len;
+			if (cnt < 0) cnt = 0;
+			if (cnt >= sizeof(hw->comment))
+				cnt = sizeof(hw->comment)-1;
+			memcpy(hw->comment, pstr->data, cnt);
+			pstr->data[cnt] = '\0';
+		}
+
+		break;
+
+	case DIDmib_p2_p2Table_p2AccessMode:
+
+		if (isget)
+			*uint32 = hw->accessmode;
+		else
+			prism2mib_priv_accessmode(hw, *uint32);
+
+		break;
+
+	case DIDmib_p2_p2Table_p2AccessAllow:
+
+		if (isget) {
+			macarray->cnt = hw->allow.cnt;
+			memcpy(macarray->data, hw->allow.addr,
+			       macarray->cnt*WLAN_ADDR_LEN);
+		} else {
+			prism2mib_priv_accessallow(hw, macarray);
+		}
+
+		break;
+
+	case DIDmib_p2_p2Table_p2AccessDeny:
+
+		if (isget) {
+			macarray->cnt = hw->deny.cnt;
+			memcpy(macarray->data, hw->deny.addr,
+			       macarray->cnt*WLAN_ADDR_LEN);
+		} else {
+			prism2mib_priv_accessdeny(hw, macarray);
+		}
+
+		break;
+
+	case DIDmib_p2_p2Table_p2ChannelInfoResults:
+
+		if (isget) {
+			done = atomic_read(&hw->channel_info.done);
+			if (done == 0) {
+				msg->resultcode.status = P80211ENUM_msgitem_status_no_value;
+				break;
+			}
+			if (done == 1) {
+				msg->resultcode.status = P80211ENUM_msgitem_status_incomplete_itemdata;
+				break;
+			}
+
+			for (i = 0; i < 14; i++, uint32 += 5) {
+				uint32[0] = i+1;
+				uint32[1] = hw->channel_info.results.result[i].anl;
+				uint32[2] = hw->channel_info.results.result[i].pnl;
+				uint32[3] = (hw->channel_info.results.result[i].active & HFA384x_CHINFORESULT_BSSACTIVE) ? 1 : 0;
+				uint32[4] = (hw->channel_info.results.result[i].active & HFA384x_CHINFORESULT_PCFACTIVE) ? 1 : 0;
+			}
+		}
+
+		break;
+
+	case DIDmib_dot11smt_dot11StationConfigTable_dot11DesiredBSSType:
+
+		if (isget)
+			*uint32 = hw->dot11_desired_bss_type;
+		else
+			hw->dot11_desired_bss_type = *uint32;
+
+		break;
+
+	case DIDmib_lnx_lnxConfigTable_lnxRSNAIE: {
+		hfa384x_WPAData_t wpa;
+		if (isget) {
+			hfa384x_drvr_getconfig( hw, HFA384x_RID_CNFWPADATA,
+						(UINT8 *) &wpa, sizeof(wpa));
+			pstr->len = hfa384x2host_16(wpa.datalen);
+			memcpy(pstr->data, wpa.data, pstr->len);
+		} else {
+			wpa.datalen = host2hfa384x_16(pstr->len);
+			memcpy(wpa.data, pstr->data, pstr->len);
+
+			result = hfa384x_drvr_setconfig(hw, HFA384x_RID_CNFWPADATA,
+				(UINT8 *) &wpa, sizeof(wpa));
+		}
+		break;
+	}
+	default:
+		WLAN_LOG_ERROR("Unhandled DID 0x%08x\n", mib->did);
+	}
+
+	DBFEXIT;
+	return(0);
+}
+
+/*----------------------------------------------------------------
+* prism2mib_priv_authlist
+*
+* Get a copy of the list of authenticated stations.
+*
+* Arguments:
+*       priv     "priv" structure.
+*       list     List of authenticated stations.
+*
+* Returns:
+*	Nothing
+*
+----------------------------------------------------------------*/
+
+static void prism2mib_priv_authlist(
+hfa384x_t             *hw,
+prism2sta_authlist_t  *list)
+{
+	prism2sta_authlist_t  test;
+	int                   i;
+
+	DBFENTER;
+
+	/*
+	** Note: The values in this record are changed by the interrupt
+	** handler and therefore cannot be guaranteed to be stable while
+	** they are being copied.  However, the interrupt handler will
+	** take priority over this code.  Hence, if the same values are
+	** copied twice, then we are ensured that the values have not
+	** been changed.  If they have, then just try again.  Don't try
+	** more than 10 times...the list of authenticated stations is
+	** unlikely to be changing frequently enough that we can't get
+	** a snapshot in 10 tries.  Don't try more than this so that we
+	** don't risk locking-up for long periods of time.  If we still
+	** haven't got the snapshot, then generate an error message and
+	** return an empty list (since this is the only valid list that
+	** we can guarentee).  This scheme for copying values is used in
+	** order to prevent having to block the interrupt handler while
+	** we copy the values.
+	*/
+
+	for (i = 0; i < 10; i++) {
+		memcpy(list, &hw->authlist, sizeof(prism2sta_authlist_t));
+		memcpy(&test, &hw->authlist, sizeof(prism2sta_authlist_t));
+		if (memcmp(list, &test, sizeof(prism2sta_authlist_t)) == 0)
+			break;
+	}
+
+	if (i >= 10) {
+		list->cnt = 0;
+		WLAN_LOG_ERROR("Could not obtain snapshot of authenticated stations.\n");
+		}
+
+	DBFEXIT;
+	return;
+}
+
+/*----------------------------------------------------------------
+* prism2mib_priv_accessmode
+*
+* Set the Access Mode.
+*
+* Arguments:
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       mode     New access mode.
+*
+* Returns:
+*	Nothing
+*
+----------------------------------------------------------------*/
+
+static void prism2mib_priv_accessmode(
+hfa384x_t         *hw,
+UINT32            mode)
+{
+	prism2sta_authlist_t  old;
+	int                   i, j, deauth;
+	UINT8                 *addr;
+
+	DBFENTER;
+
+	/*
+	** If the mode is not changing or it is changing to "All", then it's
+	** okay to go ahead without a lot of messing around.  Otherwise, the
+	** access mode is changing in a way that may leave some stations
+	** authenticated which should not be authenticated.  It will be
+	** necessary to de-authenticate these stations.
+	*/
+
+	if (mode == WLAN_ACCESS_ALL || mode == hw->accessmode) {
+		hw->accessmode = mode;
+		return;
+	}
+
+	/*
+	** Switch to the new access mode.  Once this is done, then the interrupt
+	** handler (which uses this value) will be prevented from authenticating
+	** ADDITIONAL stations which should not be authenticated.  Then get a
+	** copy of the current list of authenticated stations.
+	*/
+
+	hw->accessmode = mode;
+
+	prism2mib_priv_authlist(hw, &old);
+
+	/*
+	** Now go through the list of previously authenticated stations (some
+	** of which might de-authenticate themselves while we are processing it
+	** but that is okay).  Any station which no longer matches the access
+	** mode, must be de-authenticated.
+	*/
+
+	for (i = 0; i < old.cnt; i++) {
+		addr = old.addr[i];
+
+		if (mode == WLAN_ACCESS_NONE)
+			deauth = 1;
+		else {
+			if (mode == WLAN_ACCESS_ALLOW) {
+				for (j = 0; j < hw->allow.cnt; j++)
+					if (memcmp(addr, hw->allow.addr[j],
+							WLAN_ADDR_LEN) == 0)
+						break;
+				deauth = (j >= hw->allow.cnt);
+			} else {
+				for (j = 0; j < hw->deny.cnt; j++)
+					if (memcmp(addr, hw->deny.addr[j],
+							WLAN_ADDR_LEN) == 0)
+						break;
+				deauth = (j < hw->deny.cnt);
+			}
+		}
+
+		if (deauth) prism2mib_priv_deauthenticate(hw, addr);
+	}
+
+	DBFEXIT;
+	return;
+}
+
+/*----------------------------------------------------------------
+* prism2mib_priv_accessallow
+*
+* Change the list of allowed MAC addresses.
+*
+* Arguments:
+*       priv      "priv" structure.
+*       hw        "hw" structure.
+*       macarray  New array of MAC addresses.
+*
+* Returns:
+*	Nothing
+*
+----------------------------------------------------------------*/
+
+static void prism2mib_priv_accessallow(
+hfa384x_t         *hw,
+p80211macarray_t  *macarray)
+{
+	prism2sta_authlist_t  old;
+	int                   i, j;
+
+	DBFENTER;
+
+	/*
+	** Change the access list.  Note that the interrupt handler may be in
+	** the middle of using the access list!!!  Since the interrupt handler
+	** will	always have priority over this process and this is the only
+	** process that will modify the list, this problem can be handled as
+	** follows:
+	**
+	**    1. Set the "modify" flag.
+	**    2. Change the first copy of the list.
+	**    3. Clear the "modify" flag.
+	**    4. Change the backup copy of the list.
+	**
+	** The interrupt handler will check the "modify" flag.  If NOT set, then
+	** the first copy of the list is valid and may be used.  Otherwise, the
+	** first copy is being changed but the backup copy is valid and may be
+	** used.  Doing things this way prevents having to have the interrupt
+	** handler block while the list is being updated.
+	*/
+
+	hw->allow.modify = 1;
+
+	hw->allow.cnt = macarray->cnt;
+	memcpy(hw->allow.addr, macarray->data, macarray->cnt*WLAN_ADDR_LEN);
+
+	hw->allow.modify = 0;
+
+	hw->allow.cnt1 = macarray->cnt;
+	memcpy(hw->allow.addr1, macarray->data, macarray->cnt*WLAN_ADDR_LEN);
+
+	/*
+	** If the current access mode is "Allow", then changing the access
+	** list may leave some stations authenticated which should not be
+	** authenticated.  It will be necessary to de-authenticate these
+	** stations.  Otherwise, the list can be changed without a lot of fuss.
+	*/
+
+	if (hw->accessmode == WLAN_ACCESS_ALLOW) {
+
+		/*
+		** Go through the list of authenticated stations (some of
+		** which might de-authenticate themselves while we are
+		** processing it but that is okay).  Any station which is
+		** no longer in the list of allowed stations, must be
+		** de-authenticated.
+		*/
+
+		prism2mib_priv_authlist(hw, &old);
+
+		for (i = 0; i < old.cnt; i++) {
+			for (j = 0; j < hw->allow.cnt; j++)
+				if (memcmp(old.addr[i], hw->allow.addr[j],
+							WLAN_ADDR_LEN) == 0)
+					break;
+			if (j >= hw->allow.cnt)
+				prism2mib_priv_deauthenticate(hw, old.addr[i]);
+		}
+	}
+
+	DBFEXIT;
+	return;
+}
+
+/*----------------------------------------------------------------
+* prism2mib_priv_accessdeny
+*
+* Change the list of denied MAC addresses.
+*
+* Arguments:
+*       priv      "priv" structure.
+*       hw        "hw" structure.
+*       macarray  New array of MAC addresses.
+*
+* Returns:
+*	Nothing
+*
+----------------------------------------------------------------*/
+
+static void prism2mib_priv_accessdeny(
+hfa384x_t         *hw,
+p80211macarray_t  *macarray)
+{
+	prism2sta_authlist_t  old;
+	int                   i, j;
+
+	DBFENTER;
+
+	/*
+	** Change the access list.  Note that the interrupt handler may be in
+	** the middle of using the access list!!!  Since the interrupt handler
+	** will always have priority over this process and this is the only
+	** process that will modify the list, this problem can be handled as
+	** follows:
+	**
+	**    1. Set the "modify" flag.
+	**    2. Change the first copy of the list.
+	**    3. Clear the "modify" flag.
+	**    4. Change the backup copy of the list.
+	**
+	** The interrupt handler will check the "modify" flag.  If NOT set, then
+	** the first copy of the list is valid and may be used.  Otherwise, the
+	** first copy is being changed but the backup copy is valid and may be
+	** used.  Doing things this way prevents having to have the interrupt
+	** handler block while the list is being updated.
+	*/
+
+	hw->deny.modify = 1;
+
+	hw->deny.cnt = macarray->cnt;
+	memcpy(hw->deny.addr, macarray->data, macarray->cnt*WLAN_ADDR_LEN);
+
+	hw->deny.modify = 0;
+
+	hw->deny.cnt1 = macarray->cnt;
+	memcpy(hw->deny.addr1, macarray->data, macarray->cnt*WLAN_ADDR_LEN);
+
+	/*
+	** If the current access mode is "Deny", then changing the access
+	** list may leave some stations authenticated which should not be
+	** authenticated.  It will be necessary to de-authenticate these
+	** stations.  Otherwise, the list can be changed without a lot of fuss.
+	*/
+
+	if (hw->accessmode == WLAN_ACCESS_DENY) {
+
+		/*
+		** Go through the list of authenticated stations (some of
+		** which might de-authenticate themselves while we are
+		** processing it but that is okay).  Any station which is
+		** now in the list of denied stations, must be de-authenticated.
+		*/
+
+		prism2mib_priv_authlist(hw, &old);
+
+		for (i = 0; i < old.cnt; i++)
+			for (j = 0; j < hw->deny.cnt; j++)
+				if (memcmp(old.addr[i], hw->deny.addr[j],
+							 WLAN_ADDR_LEN) == 0) {
+					prism2mib_priv_deauthenticate(hw, old.addr[i]);
+					break;
+				}
+	}
+
+	DBFEXIT;
+	return;
+}
+
+/*----------------------------------------------------------------
+* prism2mib_priv_deauthenticate
+*
+* De-authenticate a station.  This is done by sending a HandoverAddress
+* information frame to the firmware.  This should work, according to
+* Intersil.
+*
+* Arguments:
+*       priv     "priv" structure.
+*       hw       "hw" structure.
+*       addr     MAC address of station to be de-authenticated.
+*
+* Returns:
+*	Nothing
+*
+----------------------------------------------------------------*/
+
+static void prism2mib_priv_deauthenticate(
+hfa384x_t         *hw,
+UINT8             *addr)
+{
+	DBFENTER;
+	hfa384x_drvr_handover(hw, addr);
+	DBFEXIT;
+	return;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_pstr2bytestr
+*
+* Convert the pstr data in the WLAN message structure into an hfa384x
+* byte string format.
+*
+* Arguments:
+*	bytestr		hfa384x byte string data type
+*	pstr		wlan message data
+*
+* Returns:
+*	Nothing
+*
+----------------------------------------------------------------*/
+
+void prism2mgmt_pstr2bytestr(hfa384x_bytestr_t *bytestr, p80211pstrd_t *pstr)
+{
+	DBFENTER;
+
+	bytestr->len = host2hfa384x_16((UINT16)(pstr->len));
+	memcpy(bytestr->data, pstr->data, pstr->len);
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_pstr2bytearea
+*
+* Convert the pstr data in the WLAN message structure into an hfa384x
+* byte area format.
+*
+* Arguments:
+*	bytearea	hfa384x byte area data type
+*	pstr		wlan message data
+*
+* Returns:
+*	Nothing
+*
+----------------------------------------------------------------*/
+
+void prism2mgmt_pstr2bytearea(UINT8 *bytearea, p80211pstrd_t *pstr)
+{
+	DBFENTER;
+
+	memcpy(bytearea, pstr->data, pstr->len);
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_bytestr2pstr
+*
+* Convert the data in an hfa384x byte string format into a
+* pstr in the WLAN message.
+*
+* Arguments:
+*	bytestr		hfa384x byte string data type
+*	msg		wlan message
+*
+* Returns:
+*	Nothing
+*
+----------------------------------------------------------------*/
+
+void prism2mgmt_bytestr2pstr(hfa384x_bytestr_t *bytestr, p80211pstrd_t *pstr)
+{
+	DBFENTER;
+
+	pstr->len = (UINT8)(hfa384x2host_16((UINT16)(bytestr->len)));
+	memcpy(pstr->data, bytestr->data, pstr->len);
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_bytearea2pstr
+*
+* Convert the data in an hfa384x byte area format into a pstr
+* in the WLAN message.
+*
+* Arguments:
+*	bytearea	hfa384x byte area data type
+*	msg		wlan message
+*
+* Returns:
+*	Nothing
+*
+----------------------------------------------------------------*/
+
+void prism2mgmt_bytearea2pstr(UINT8 *bytearea, p80211pstrd_t *pstr, int len)
+{
+	DBFENTER;
+
+	pstr->len = (UINT8)len;
+	memcpy(pstr->data, bytearea, len);
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_prism2int2p80211int
+*
+* Convert an hfa384x integer into a wlan integer
+*
+* Arguments:
+*	prism2enum	pointer to hfa384x integer
+*	wlanenum	pointer to p80211 integer
+*
+* Returns:
+*	Nothing
+*
+----------------------------------------------------------------*/
+
+void prism2mgmt_prism2int2p80211int(UINT16 *prism2int, UINT32 *wlanint)
+{
+	DBFENTER;
+
+	*wlanint = (UINT32)hfa384x2host_16(*prism2int);
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_p80211int2prism2int
+*
+* Convert a wlan integer into an hfa384x integer
+*
+* Arguments:
+*	prism2enum	pointer to hfa384x integer
+*	wlanenum	pointer to p80211 integer
+*
+* Returns:
+*	Nothing
+*
+----------------------------------------------------------------*/
+
+void prism2mgmt_p80211int2prism2int(UINT16 *prism2int, UINT32 *wlanint)
+{
+	DBFENTER;
+
+	*prism2int = host2hfa384x_16((UINT16)(*wlanint));
+	DBFEXIT;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_prism2enum2p80211enum
+*
+* Convert the hfa384x enumerated int into a p80211 enumerated int
+*
+* Arguments:
+*	prism2enum	pointer to hfa384x integer
+*	wlanenum	pointer to p80211 integer
+*	rid		hfa384x record id
+*
+* Returns:
+*	Nothing
+*
+----------------------------------------------------------------*/
+void prism2mgmt_prism2enum2p80211enum(UINT16 *prism2enum, UINT32 *wlanenum, UINT16 rid)
+{
+	DBFENTER;
+
+	/* At the moment, the need for this functionality hasn't
+	presented itself. All the wlan enumerated values are
+	a 1-to-1 match against the Prism2 enumerated values*/
+	DBFEXIT;
+	return;
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_p80211enum2prism2enum
+*
+* Convert the p80211 enumerated int into an hfa384x enumerated int
+*
+* Arguments:
+*	prism2enum	pointer to hfa384x integer
+*	wlanenum	pointer to p80211 integer
+*	rid		hfa384x record id
+*
+* Returns:
+*	Nothing
+*
+----------------------------------------------------------------*/
+void prism2mgmt_p80211enum2prism2enum(UINT16 *prism2enum, UINT32 *wlanenum, UINT16 rid)
+{
+	DBFENTER;
+
+	/* At the moment, the need for this functionality hasn't
+	presented itself. All the wlan enumerated values are
+	a 1-to-1 match against the Prism2 enumerated values*/
+	DBFEXIT;
+	return;
+}
+
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_get_oprateset
+*
+* Convert the hfa384x bit area into a wlan octet string.
+*
+* Arguments:
+*	rate		Prism2 bit area
+*	pstr		wlan octet string
+*
+* Returns:
+*	Nothing
+*
+----------------------------------------------------------------*/
+void prism2mgmt_get_oprateset(UINT16 *rate, p80211pstrd_t *pstr)
+{
+	UINT8	len;
+	UINT8	*datarate;
+
+	DBFENTER;
+
+	len = 0;
+	datarate = pstr->data;
+
+ 	/* 1 Mbps */
+	if ( BIT0 & (*rate) ) {
+		len += (UINT8)1;
+		*datarate = (UINT8)2;
+		datarate++;
+	}
+
+ 	/* 2 Mbps */
+	if ( BIT1 & (*rate) ) {
+		len += (UINT8)1;
+		*datarate = (UINT8)4;
+		datarate++;
+	}
+
+ 	/* 5.5 Mbps */
+	if ( BIT2 & (*rate) ) {
+		len += (UINT8)1;
+		*datarate = (UINT8)11;
+		datarate++;
+	}
+
+ 	/* 11 Mbps */
+	if ( BIT3 & (*rate) ) {
+		len += (UINT8)1;
+		*datarate = (UINT8)22;
+		datarate++;
+	}
+
+	pstr->len = len;
+
+	DBFEXIT;
+	return;
+}
+
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_set_oprateset
+*
+* Convert the wlan octet string into an hfa384x bit area.
+*
+* Arguments:
+*	rate		Prism2 bit area
+*	pstr		wlan octet string
+*
+* Returns:
+*	Nothing
+*
+----------------------------------------------------------------*/
+void prism2mgmt_set_oprateset(UINT16 *rate, p80211pstrd_t *pstr)
+{
+	UINT8	*datarate;
+	int	i;
+
+	DBFENTER;
+
+	*rate = 0;
+
+	datarate = pstr->data;
+
+	for ( i=0; i < pstr->len; i++, datarate++ ) {
+		switch (*datarate) {
+		case 2: /* 1 Mbps */
+			*rate |= BIT0;
+			break;
+		case 4: /* 2 Mbps */
+			*rate |= BIT1;
+			break;
+		case 11: /* 5.5 Mbps */
+			*rate |= BIT2;
+			break;
+		case 22: /* 11 Mbps */
+			*rate |= BIT3;
+			break;
+		default:
+			WLAN_LOG_DEBUG(1, "Unrecoginzed Rate of %d\n",
+				*datarate);
+			break;
+		}
+	}
+
+	DBFEXIT;
+	return;
+}
+
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_get_grpaddr
+*
+* Retrieves a particular group address from the list of
+* group addresses.
+*
+* Arguments:
+*	did		mibitem did
+*	pstr		wlan octet string
+*	priv		prism2 driver private data structure
+*
+* Returns:
+*	Nothing
+*
+----------------------------------------------------------------*/
+void prism2mgmt_get_grpaddr(UINT32 did, p80211pstrd_t *pstr,
+	hfa384x_t *hw )
+{
+	int	index;
+
+	DBFENTER;
+
+	index = prism2mgmt_get_grpaddr_index(did);
+
+	if ( index >= 0 ) {
+		pstr->len = WLAN_ADDR_LEN;
+		memcpy(pstr->data, hw->dot11_grp_addr[index],
+			WLAN_ADDR_LEN);
+	}
+
+	DBFEXIT;
+	return;
+}
+
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_set_grpaddr
+*
+* Convert the wlan octet string into an hfa384x bit area.
+*
+* Arguments:
+*	did		mibitem did
+*	buf
+*	groups
+*
+* Returns:
+*	0	Success
+*	!0	Error
+*
+----------------------------------------------------------------*/
+int prism2mgmt_set_grpaddr(UINT32 did, UINT8 *prism2buf,
+	p80211pstrd_t *pstr, hfa384x_t *hw )
+{
+	UINT8	no_addr[WLAN_ADDR_LEN];
+	int	index;
+
+	DBFENTER;
+
+	memset(no_addr, 0, WLAN_ADDR_LEN);
+	if (memcmp(no_addr, pstr->data, WLAN_ADDR_LEN) != 0) {
+
+		/*
+		** The address is NOT 0 so we are "adding" an address to the
+		** group address list.  Check to make sure we aren't trying
+		** to add more than the maximum allowed number of group
+		** addresses in the list.  The new address is added to the
+		** end of the list regardless of the DID used to add the
+		** address.
+		*/
+
+		if (hw->dot11_grpcnt >= MAX_GRP_ADDR) return(-1);
+
+		memcpy(hw->dot11_grp_addr[hw->dot11_grpcnt], pstr->data,
+								 WLAN_ADDR_LEN);
+		hw->dot11_grpcnt += 1;
+	} else {
+
+		/*
+		** The address is 0.  Interpret this as "deleting" an address
+		** from the group address list.  Get the address index from
+		** the DID.  If this is within the range of used addresses,
+		** then delete the specified address by shifting all following
+		** addresses down.  Then clear the last address (which should
+		** now be unused).  If the address index is NOT within the
+		** range of used addresses, then just ignore the address.
+		*/
+
+		index = prism2mgmt_get_grpaddr_index(did);
+		if (index >= 0 && index < hw->dot11_grpcnt) {
+			hw->dot11_grpcnt -= 1;
+			memmove(hw->dot11_grp_addr[index],
+				hw->dot11_grp_addr[index + 1],
+				((hw->dot11_grpcnt)-index) * WLAN_ADDR_LEN);
+			memset(hw->dot11_grp_addr[hw->dot11_grpcnt], 0,
+								 WLAN_ADDR_LEN);
+		}
+	}
+
+	DBFEXIT;
+	return(0);
+}
+
+
+/*----------------------------------------------------------------
+* prism2mgmt_get_grpaddr_index
+*
+* Gets the index in the group address list based on the did.
+*
+* Arguments:
+*	did		mibitem did
+*
+* Returns:
+*	>= 0	If valid did
+*	< 0	If not valid did
+*
+----------------------------------------------------------------*/
+int prism2mgmt_get_grpaddr_index( UINT32 did )
+{
+	int	index;
+
+	DBFENTER;
+
+	index = -1;
+
+	switch (did) {
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address1:
+		index = 0;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address2:
+		index = 1;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address3:
+		index = 2;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address4:
+		index = 3;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address5:
+		index = 4;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address6:
+		index = 5;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address7:
+		index = 6;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address8:
+		index = 7;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address9:
+		index = 8;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address10:
+		index = 9;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address11:
+		index = 10;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address12:
+		index = 11;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address13:
+		index = 12;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address14:
+		index = 13;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address15:
+		index = 14;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address16:
+		index = 15;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address17:
+		index = 16;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address18:
+		index = 17;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address19:
+		index = 18;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address20:
+		index = 19;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address21:
+		index = 20;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address22:
+		index = 21;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address23:
+		index = 22;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address24:
+		index = 23;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address25:
+		index = 24;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address26:
+		index = 25;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address27:
+		index = 26;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address28:
+		index = 27;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address29:
+		index = 28;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address30:
+		index = 29;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address31:
+		index = 30;
+		break;
+	case DIDmib_dot11mac_dot11GroupAddressesTable_dot11Address32:
+		index = 31;
+		break;
+	}
+
+	DBFEXIT;
+	return index;
+}
diff --git a/drivers/staging/wlan-ng/prism2sta.c b/drivers/staging/wlan-ng/prism2sta.c
new file mode 100644
index 0000000..18aa15f
--- /dev/null
+++ b/drivers/staging/wlan-ng/prism2sta.c
@@ -0,0 +1,2502 @@
+/* src/prism2/driver/prism2sta.c
+*
+* Implements the station functionality for prism2
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*
+* This file implements the module and linux pcmcia routines for the
+* prism2 driver.
+*
+* --------------------------------------------------------------------
+*/
+
+/*================================================================*/
+/* System Includes */
+#define WLAN_DBVAR	prism2_debug
+
+#include "version.h"
+
+
+#include <linux/version.h>
+
+#include <linux/module.h>
+#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,4,25))
+#include <linux/moduleparam.h>
+#endif
+
+#include <linux/kernel.h>
+#include <linux/sched.h>
+#include <linux/types.h>
+#include <linux/init.h>
+#include <linux/slab.h>
+#include <linux/wireless.h>
+#include <linux/netdevice.h>
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,5,0))
+#include <linux/tqueue.h>
+#else
+#include <linux/workqueue.h>
+#endif
+
+#include <asm/io.h>
+#include <linux/delay.h>
+#include <asm/byteorder.h>
+#include <linux/if_arp.h>
+
+#if (WLAN_HOSTIF == WLAN_PCMCIA)
+#include <pcmcia/version.h>
+#include <pcmcia/cs_types.h>
+#include <pcmcia/cs.h>
+#include <pcmcia/cistpl.h>
+#include <pcmcia/ds.h>
+#include <pcmcia/cisreg.h>
+#endif
+
+#include "wlan_compat.h"
+
+#if ((WLAN_HOSTIF == WLAN_PLX) || (WLAN_HOSTIF == WLAN_PCI))
+#include <linux/ioport.h>
+#include <linux/pci.h>
+#endif
+
+/*================================================================*/
+/* Project Includes */
+
+#include "p80211types.h"
+#include "p80211hdr.h"
+#include "p80211mgmt.h"
+#include "p80211conv.h"
+#include "p80211msg.h"
+#include "p80211netdev.h"
+#include "p80211req.h"
+#include "p80211metadef.h"
+#include "p80211metastruct.h"
+#include "hfa384x.h"
+#include "prism2mgmt.h"
+
+/*================================================================*/
+/* Local Constants */
+
+/*================================================================*/
+/* Local Macros */
+
+/*================================================================*/
+/* Local Types */
+
+/*================================================================*/
+/* Local Static Definitions */
+
+#if (WLAN_HOSTIF == WLAN_PCMCIA)
+#define DRIVER_SUFFIX	"_cs"
+#elif (WLAN_HOSTIF == WLAN_PLX)
+#define DRIVER_SUFFIX	"_plx"
+typedef char* dev_info_t;
+#elif (WLAN_HOSTIF == WLAN_PCI)
+#define DRIVER_SUFFIX	"_pci"
+typedef char* dev_info_t;
+#elif (WLAN_HOSTIF == WLAN_USB)
+#define DRIVER_SUFFIX	"_usb"
+typedef char* dev_info_t;
+#else
+#error "HOSTIF unsupported or undefined!"
+#endif
+
+static char		*version = "prism2" DRIVER_SUFFIX ".o: " WLAN_RELEASE;
+static dev_info_t	dev_info = "prism2" DRIVER_SUFFIX;
+
+#if (WLAN_HOSTIF == WLAN_PLX || WLAN_HOSTIF == WLAN_PCI)
+#ifdef CONFIG_PM
+static int prism2sta_suspend_pci(struct pci_dev *pdev, pm_message_t state);
+static int prism2sta_resume_pci(struct pci_dev *pdev);
+#endif
+#endif
+
+#if (WLAN_HOSTIF == WLAN_PCI)
+
+#endif /* WLAN_PCI */
+
+static wlandevice_t *create_wlan(void);
+
+/*----------------------------------------------------------------*/
+/* --Module Parameters */
+
+int      prism2_reset_holdtime=30;	/* Reset hold time in ms */
+int	 prism2_reset_settletime=100;	/* Reset settle time in ms */
+
+#if (WLAN_HOSTIF == WLAN_USB)
+static int	prism2_doreset=0;		/* Do a reset at init? */
+#else
+static int      prism2_doreset=1;		/* Do a reset at init? */
+int             prism2_bap_timeout=1000;        /* BAP timeout */
+int		prism2_irq_evread_max=20;	/* Maximum number of
+						 * ev_reads (loops)
+						 * in irq handler
+						 */
+#endif
+
+#ifdef WLAN_INCLUDE_DEBUG
+int prism2_debug=0;
+module_param( prism2_debug, int, 0644);
+MODULE_PARM_DESC(prism2_debug, "prism2 debugging");
+#endif
+
+module_param( prism2_doreset, int, 0644);
+MODULE_PARM_DESC(prism2_doreset, "Issue a reset on initialization");
+
+module_param( prism2_reset_holdtime, int, 0644);
+MODULE_PARM_DESC( prism2_reset_holdtime, "reset hold time in ms");
+module_param( prism2_reset_settletime, int, 0644);
+MODULE_PARM_DESC( prism2_reset_settletime, "reset settle time in ms");
+
+#if (WLAN_HOSTIF != WLAN_USB)
+module_param( prism2_bap_timeout, int, 0644);
+MODULE_PARM_DESC(prism2_bap_timeout, "BufferAccessPath Timeout in 10*n us");
+module_param( prism2_irq_evread_max, int, 0644);
+MODULE_PARM_DESC( prism2_irq_evread_max, "Maximim number of event reads in interrupt handler");
+#endif
+
+MODULE_LICENSE("Dual MPL/GPL");
+
+/*================================================================*/
+/* Local Function Declarations */
+
+static int	prism2sta_open(wlandevice_t *wlandev);
+static int	prism2sta_close(wlandevice_t *wlandev);
+static void	prism2sta_reset(wlandevice_t *wlandev );
+static int      prism2sta_txframe(wlandevice_t *wlandev, struct sk_buff *skb, p80211_hdr_t *p80211_hdr, p80211_metawep_t *p80211_wep);
+static int	prism2sta_mlmerequest(wlandevice_t *wlandev, p80211msg_t *msg);
+static int	prism2sta_getcardinfo(wlandevice_t *wlandev);
+static int	prism2sta_globalsetup(wlandevice_t *wlandev);
+static int      prism2sta_setmulticast(wlandevice_t *wlandev,
+				       netdevice_t *dev);
+
+static void	prism2sta_inf_handover(
+			wlandevice_t *wlandev, hfa384x_InfFrame_t *inf);
+static void	prism2sta_inf_tallies(
+			wlandevice_t *wlandev, hfa384x_InfFrame_t *inf);
+static void     prism2sta_inf_hostscanresults(
+			wlandevice_t *wlandev, hfa384x_InfFrame_t *inf);
+static void	prism2sta_inf_scanresults(
+			wlandevice_t *wlandev, hfa384x_InfFrame_t *inf);
+static void	prism2sta_inf_chinforesults(
+			wlandevice_t *wlandev, hfa384x_InfFrame_t *inf);
+static void	prism2sta_inf_linkstatus(
+			wlandevice_t *wlandev, hfa384x_InfFrame_t *inf);
+static void	prism2sta_inf_assocstatus(
+			wlandevice_t *wlandev, hfa384x_InfFrame_t *inf);
+static void	prism2sta_inf_authreq(
+			wlandevice_t *wlandev, hfa384x_InfFrame_t *inf);
+static void	prism2sta_inf_authreq_defer(
+			wlandevice_t *wlandev, hfa384x_InfFrame_t *inf);
+static void	prism2sta_inf_psusercnt(
+			wlandevice_t *wlandev, hfa384x_InfFrame_t *inf);
+
+#ifdef CONFIG_PROC_FS
+static int
+prism2sta_proc_read(
+	char	*page,
+	char	**start,
+	off_t	offset,
+	int	count,
+	int	*eof,
+	void	*data);
+#endif
+
+/*================================================================*/
+/* Function Definitions */
+
+/*----------------------------------------------------------------
+* dmpmem
+*
+* Debug utility function to dump memory to the kernel debug log.
+*
+* Arguments:
+*	buf	ptr data we want dumped
+*	len	length of data
+*
+* Returns:
+*	nothing
+* Side effects:
+*
+* Call context:
+*	process thread
+*	interrupt
+----------------------------------------------------------------*/
+inline void dmpmem(void *buf, int n)
+{
+	int c;
+	for ( c= 0; c < n; c++) {
+		if ( (c % 16) == 0 ) printk(KERN_DEBUG"dmp[%d]: ", c);
+		printk("%02x ", ((UINT8*)buf)[c]);
+		if ( (c % 16) == 15 ) printk("\n");
+	}
+	if ( (c % 16) != 0 ) printk("\n");
+}
+
+
+/*----------------------------------------------------------------
+* prism2sta_open
+*
+* WLAN device open method.  Called from p80211netdev when kernel
+* device open (start) method is called in response to the
+* SIOCSIIFFLAGS ioctl changing the flags bit IFF_UP
+* from clear to set.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*
+* Returns:
+*	0	success
+*	>0	f/w reported error
+*	<0	driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+static int prism2sta_open(wlandevice_t *wlandev)
+{
+	DBFENTER;
+
+#ifdef ANCIENT_MODULE_CODE
+	MOD_INC_USE_COUNT;
+#endif
+
+	/* We don't currently have to do anything else.
+	 * The setup of the MAC should be subsequently completed via
+	 * the mlme commands.
+	 * Higher layers know we're ready from dev->start==1 and
+	 * dev->tbusy==0.  Our rx path knows to pass up received/
+	 * frames because of dev->flags&IFF_UP is true.
+	 */
+
+	DBFEXIT;
+	return 0;
+}
+
+
+/*----------------------------------------------------------------
+* prism2sta_close
+*
+* WLAN device close method.  Called from p80211netdev when kernel
+* device close method is called in response to the
+* SIOCSIIFFLAGS ioctl changing the flags bit IFF_UP
+* from set to clear.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*
+* Returns:
+*	0	success
+*	>0	f/w reported error
+*	<0	driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+static int prism2sta_close(wlandevice_t *wlandev)
+{
+	DBFENTER;
+
+#ifdef ANCIENT_MODULE_CODE
+	MOD_DEC_USE_COUNT;
+#endif
+
+	/* We don't currently have to do anything else.
+	 * Higher layers know we're not ready from dev->start==0 and
+	 * dev->tbusy==1.  Our rx path knows to not pass up received
+	 * frames because of dev->flags&IFF_UP is false.
+	 */
+
+	DBFEXIT;
+	return 0;
+}
+
+
+/*----------------------------------------------------------------
+* prism2sta_reset
+*
+* Not currently implented.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	none
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+static void prism2sta_reset(wlandevice_t *wlandev )
+{
+	DBFENTER;
+	DBFEXIT;
+	return;
+}
+
+
+/*----------------------------------------------------------------
+* prism2sta_txframe
+*
+* Takes a frame from p80211 and queues it for transmission.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	pb		packet buffer struct.  Contains an 802.11
+*			data frame.
+*       p80211_hdr      points to the 802.11 header for the packet.
+* Returns:
+*	0		Success and more buffs available
+*	1		Success but no more buffs
+*	2		Allocation failure
+*	4		Buffer full or queue busy
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+static int prism2sta_txframe(wlandevice_t *wlandev, struct sk_buff *skb,
+			     p80211_hdr_t *p80211_hdr,
+			     p80211_metawep_t *p80211_wep)
+{
+	hfa384x_t		*hw = (hfa384x_t *)wlandev->priv;
+	int			result;
+	DBFENTER;
+
+	/* If necessary, set the 802.11 WEP bit */
+	if ((wlandev->hostwep & (HOSTWEP_PRIVACYINVOKED | HOSTWEP_ENCRYPT)) == HOSTWEP_PRIVACYINVOKED) {
+		p80211_hdr->a3.fc |= host2ieee16(WLAN_SET_FC_ISWEP(1));
+	}
+
+	result = hfa384x_drvr_txframe(hw, skb, p80211_hdr, p80211_wep);
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2sta_mlmerequest
+*
+* wlan command message handler.  All we do here is pass the message
+* over to the prism2sta_mgmt_handler.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msg		wlan command message
+* Returns:
+*	0		success
+*	<0		successful acceptance of message, but we're
+*			waiting for an async process to finish before
+*			we're done with the msg.  When the asynch
+*			process is done, we'll call the p80211
+*			function p80211req_confirm() .
+*	>0		An error occurred while we were handling
+*			the message.
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+static int prism2sta_mlmerequest(wlandevice_t *wlandev, p80211msg_t *msg)
+{
+        hfa384x_t               *hw = (hfa384x_t *)wlandev->priv;
+
+	int result = 0;
+	DBFENTER;
+
+	switch( msg->msgcode )
+	{
+	case DIDmsg_dot11req_mibget :
+		WLAN_LOG_DEBUG(2,"Received mibget request\n");
+		result = prism2mgmt_mibset_mibget(wlandev, msg);
+		break;
+	case DIDmsg_dot11req_mibset :
+		WLAN_LOG_DEBUG(2,"Received mibset request\n");
+		result = prism2mgmt_mibset_mibget(wlandev, msg);
+		break;
+	case DIDmsg_dot11req_powermgmt :
+		WLAN_LOG_DEBUG(2,"Received powermgmt request\n");
+		result = prism2mgmt_powermgmt(wlandev, msg);
+		break;
+	case DIDmsg_dot11req_scan :
+		WLAN_LOG_DEBUG(2,"Received scan request\n");
+		result = prism2mgmt_scan(wlandev, msg);
+		break;
+	case DIDmsg_dot11req_scan_results :
+		WLAN_LOG_DEBUG(2,"Received scan_results request\n");
+		result = prism2mgmt_scan_results(wlandev, msg);
+		break;
+	case DIDmsg_dot11req_join :
+		WLAN_LOG_DEBUG(2,"Received join request\n");
+		result = prism2mgmt_join(wlandev, msg);
+		break;
+	case DIDmsg_dot11req_authenticate :
+		WLAN_LOG_DEBUG(2,"Received authenticate request\n");
+		result = prism2mgmt_authenticate(wlandev, msg);
+		break;
+	case DIDmsg_dot11req_deauthenticate :
+		WLAN_LOG_DEBUG(2,"Received mlme deauthenticate request\n");
+		result = prism2mgmt_deauthenticate(wlandev, msg);
+		break;
+	case DIDmsg_dot11req_associate :
+		WLAN_LOG_DEBUG(2,"Received mlme associate request\n");
+		result = prism2mgmt_associate(wlandev, msg);
+		break;
+	case DIDmsg_dot11req_reassociate :
+		WLAN_LOG_DEBUG(2,"Received mlme reassociate request\n");
+		result = prism2mgmt_reassociate(wlandev, msg);
+		break;
+	case DIDmsg_dot11req_disassociate :
+		WLAN_LOG_DEBUG(2,"Received mlme disassociate request\n");
+		result = prism2mgmt_disassociate(wlandev, msg);
+		break;
+	case DIDmsg_dot11req_reset :
+		WLAN_LOG_DEBUG(2,"Received mlme reset request\n");
+		result = prism2mgmt_reset(wlandev, msg);
+		break;
+	case DIDmsg_dot11req_start :
+		WLAN_LOG_DEBUG(2,"Received mlme start request\n");
+		result = prism2mgmt_start(wlandev, msg);
+		break;
+	/*
+	 * Prism2 specific messages
+	 */
+	case DIDmsg_p2req_join :
+		WLAN_LOG_DEBUG(2,"Received p2 join request\n");
+		result = prism2mgmt_p2_join(wlandev, msg);
+		break;
+       	case DIDmsg_p2req_readpda :
+		WLAN_LOG_DEBUG(2,"Received mlme readpda request\n");
+		result = prism2mgmt_readpda(wlandev, msg);
+		break;
+	case DIDmsg_p2req_readcis :
+		WLAN_LOG_DEBUG(2,"Received mlme readcis request\n");
+		result = prism2mgmt_readcis(wlandev, msg);
+		break;
+	case DIDmsg_p2req_auxport_state :
+		WLAN_LOG_DEBUG(2,"Received mlme auxport_state request\n");
+		result = prism2mgmt_auxport_state(wlandev, msg);
+		break;
+	case DIDmsg_p2req_auxport_read :
+		WLAN_LOG_DEBUG(2,"Received mlme auxport_read request\n");
+		result = prism2mgmt_auxport_read(wlandev, msg);
+		break;
+	case DIDmsg_p2req_auxport_write :
+		WLAN_LOG_DEBUG(2,"Received mlme auxport_write request\n");
+		result = prism2mgmt_auxport_write(wlandev, msg);
+		break;
+	case DIDmsg_p2req_low_level :
+		WLAN_LOG_DEBUG(2,"Received mlme low_level request\n");
+		result = prism2mgmt_low_level(wlandev, msg);
+		break;
+        case DIDmsg_p2req_test_command :
+                WLAN_LOG_DEBUG(2,"Received mlme test_command request\n");
+                result = prism2mgmt_test_command(wlandev, msg);
+                break;
+        case DIDmsg_p2req_mmi_read :
+                WLAN_LOG_DEBUG(2,"Received mlme mmi_read request\n");
+                result = prism2mgmt_mmi_read(wlandev, msg);
+                break;
+        case DIDmsg_p2req_mmi_write :
+                WLAN_LOG_DEBUG(2,"Received mlme mmi_write request\n");
+                result = prism2mgmt_mmi_write(wlandev, msg);
+                break;
+	case DIDmsg_p2req_ramdl_state :
+		WLAN_LOG_DEBUG(2,"Received mlme ramdl_state request\n");
+		result = prism2mgmt_ramdl_state(wlandev, msg);
+		break;
+	case DIDmsg_p2req_ramdl_write :
+		WLAN_LOG_DEBUG(2,"Received mlme ramdl_write request\n");
+		result = prism2mgmt_ramdl_write(wlandev, msg);
+		break;
+	case DIDmsg_p2req_flashdl_state :
+		WLAN_LOG_DEBUG(2,"Received mlme flashdl_state request\n");
+		result = prism2mgmt_flashdl_state(wlandev, msg);
+		break;
+	case DIDmsg_p2req_flashdl_write :
+		WLAN_LOG_DEBUG(2,"Received mlme flashdl_write request\n");
+		result = prism2mgmt_flashdl_write(wlandev, msg);
+		break;
+	case DIDmsg_p2req_dump_state :
+		WLAN_LOG_DEBUG(2,"Received mlme dump_state request\n");
+		result = prism2mgmt_dump_state(wlandev, msg);
+		break;
+	case DIDmsg_p2req_channel_info :
+		WLAN_LOG_DEBUG(2,"Received mlme channel_info request\n");
+		result = prism2mgmt_channel_info(wlandev, msg);
+		break;
+	case DIDmsg_p2req_channel_info_results :
+		WLAN_LOG_DEBUG(2,"Received mlme channel_info_results request\n");
+		result = prism2mgmt_channel_info_results(wlandev, msg);
+		break;
+	/*
+	 * Linux specific messages
+	 */
+	case DIDmsg_lnxreq_hostwep :
+		break;   // ignore me.
+        case DIDmsg_lnxreq_ifstate :
+		{
+		p80211msg_lnxreq_ifstate_t	*ifstatemsg;
+                WLAN_LOG_DEBUG(2,"Received mlme ifstate request\n");
+		ifstatemsg = (p80211msg_lnxreq_ifstate_t*)msg;
+                result = prism2sta_ifstate(wlandev, ifstatemsg->ifstate.data);
+		ifstatemsg->resultcode.status =
+			P80211ENUM_msgitem_status_data_ok;
+		ifstatemsg->resultcode.data = result;
+		result = 0;
+		}
+                break;
+        case DIDmsg_lnxreq_wlansniff :
+                WLAN_LOG_DEBUG(2,"Received mlme wlansniff request\n");
+                result = prism2mgmt_wlansniff(wlandev, msg);
+                break;
+	case DIDmsg_lnxreq_autojoin :
+		WLAN_LOG_DEBUG(2,"Received mlme autojoin request\n");
+		result = prism2mgmt_autojoin(wlandev, msg);
+		break;
+	case DIDmsg_p2req_enable :
+		WLAN_LOG_DEBUG(2,"Received mlme enable request\n");
+		result = prism2mgmt_enable(wlandev, msg);
+		break;
+	case DIDmsg_lnxreq_commsquality: {
+		p80211msg_lnxreq_commsquality_t *qualmsg;
+
+		WLAN_LOG_DEBUG(2,"Received commsquality request\n");
+
+		if (hw->ap)
+			break;
+
+		qualmsg = (p80211msg_lnxreq_commsquality_t*) msg;
+
+		qualmsg->link.status = P80211ENUM_msgitem_status_data_ok;
+		qualmsg->level.status = P80211ENUM_msgitem_status_data_ok;
+		qualmsg->noise.status = P80211ENUM_msgitem_status_data_ok;
+
+
+		qualmsg->link.data = hfa384x2host_16(hw->qual.CQ_currBSS);
+		qualmsg->level.data = hfa384x2host_16(hw->qual.ASL_currBSS);
+		qualmsg->noise.data = hfa384x2host_16(hw->qual.ANL_currFC);
+
+		break;
+	}
+	default:
+		WLAN_LOG_WARNING("Unknown mgmt request message 0x%08x", msg->msgcode);
+		break;
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2sta_ifstate
+*
+* Interface state.  This is the primary WLAN interface enable/disable
+* handler.  Following the driver/load/deviceprobe sequence, this
+* function must be called with a state of "enable" before any other
+* commands will be accepted.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	msgp		ptr to msg buffer
+*
+* Returns:
+* 	A p80211 message resultcode value.
+*
+* Side effects:
+*
+* Call context:
+*	process thread  (usually)
+*	interrupt
+----------------------------------------------------------------*/
+UINT32 prism2sta_ifstate(wlandevice_t *wlandev, UINT32 ifstate)
+{
+        hfa384x_t               *hw = (hfa384x_t *)wlandev->priv;
+	UINT32 			result;
+	DBFENTER;
+
+	result = P80211ENUM_resultcode_implementation_failure;
+
+	WLAN_LOG_DEBUG(2, "Current MSD state(%d), requesting(%d)\n",
+	                  wlandev->msdstate, ifstate);
+	switch (ifstate)
+	{
+	case P80211ENUM_ifstate_fwload:
+		switch (wlandev->msdstate) {
+		case WLAN_MSD_HWPRESENT:
+			wlandev->msdstate = WLAN_MSD_FWLOAD_PENDING;
+			/*
+			 * Initialize the device+driver sufficiently
+			 * for firmware loading.
+			 */
+#if (WLAN_HOSTIF != WLAN_USB)
+			result=hfa384x_cmd_initialize(hw);
+#else
+			if ((result=hfa384x_drvr_start(hw))) {
+				WLAN_LOG_ERROR(
+					"hfa384x_drvr_start() failed,"
+					"result=%d\n", (int)result);
+				result =
+				P80211ENUM_resultcode_implementation_failure;
+				wlandev->msdstate = WLAN_MSD_HWPRESENT;
+				break;
+			}
+#endif
+			wlandev->msdstate = WLAN_MSD_FWLOAD;
+			result = P80211ENUM_resultcode_success;
+			break;
+		case WLAN_MSD_FWLOAD:
+			hfa384x_cmd_initialize(hw);
+			result = P80211ENUM_resultcode_success;
+			break;
+		case WLAN_MSD_RUNNING:
+			WLAN_LOG_WARNING(
+				"Cannot enter fwload state from enable state,"
+				"you must disable first.\n");
+			result = P80211ENUM_resultcode_invalid_parameters;
+			break;
+		case WLAN_MSD_HWFAIL:
+		default:
+			/* probe() had a problem or the msdstate contains
+			 * an unrecognized value, there's nothing we can do.
+			 */
+			result = P80211ENUM_resultcode_implementation_failure;
+			break;
+		}
+		break;
+	case P80211ENUM_ifstate_enable:
+		switch (wlandev->msdstate) {
+		case WLAN_MSD_HWPRESENT:
+		case WLAN_MSD_FWLOAD:
+			wlandev->msdstate = WLAN_MSD_RUNNING_PENDING;
+			/* Initialize the device+driver for full
+			 * operation. Note that this might me an FWLOAD to
+			 * to RUNNING transition so we must not do a chip
+			 * or board level reset.  Note that on failure,
+			 * the MSD state is set to HWPRESENT because we
+			 * can't make any assumptions about the state
+			 * of the hardware or a previous firmware load.
+			 */
+			if ((result=hfa384x_drvr_start(hw))) {
+				WLAN_LOG_ERROR(
+					"hfa384x_drvr_start() failed,"
+					"result=%d\n", (int)result);
+				result =
+				P80211ENUM_resultcode_implementation_failure;
+				wlandev->msdstate = WLAN_MSD_HWPRESENT;
+				break;
+			}
+
+			if ((result=prism2sta_getcardinfo(wlandev))) {
+				WLAN_LOG_ERROR(
+					"prism2sta_getcardinfo() failed,"
+					"result=%d\n", (int)result);
+				result =
+				P80211ENUM_resultcode_implementation_failure;
+				hfa384x_drvr_stop(hw);
+				wlandev->msdstate = WLAN_MSD_HWPRESENT;
+				break;
+			}
+			if ((result=prism2sta_globalsetup(wlandev))) {
+				WLAN_LOG_ERROR(
+					"prism2sta_globalsetup() failed,"
+					"result=%d\n", (int)result);
+				result =
+				P80211ENUM_resultcode_implementation_failure;
+				hfa384x_drvr_stop(hw);
+				wlandev->msdstate = WLAN_MSD_HWPRESENT;
+				break;
+			}
+			wlandev->msdstate = WLAN_MSD_RUNNING;
+			hw->join_ap = 0;
+			hw->join_retries = 60;
+			result = P80211ENUM_resultcode_success;
+			break;
+		case WLAN_MSD_RUNNING:
+			/* Do nothing, we're already in this state.*/
+			result = P80211ENUM_resultcode_success;
+			break;
+		case WLAN_MSD_HWFAIL:
+		default:
+			/* probe() had a problem or the msdstate contains
+			 * an unrecognized value, there's nothing we can do.
+			 */
+			result = P80211ENUM_resultcode_implementation_failure;
+			break;
+		}
+		break;
+	case P80211ENUM_ifstate_disable:
+		switch (wlandev->msdstate) {
+		case WLAN_MSD_HWPRESENT:
+			/* Do nothing, we're already in this state.*/
+			result = P80211ENUM_resultcode_success;
+			break;
+		case WLAN_MSD_FWLOAD:
+		case WLAN_MSD_RUNNING:
+			wlandev->msdstate = WLAN_MSD_HWPRESENT_PENDING;
+			/*
+			 * TODO: Shut down the MAC completely. Here a chip
+			 * or board level reset is probably called for.
+			 * After a "disable" _all_ results are lost, even
+			 * those from a fwload.
+			 */
+			if (!wlandev->hwremoved)
+				netif_carrier_off(wlandev->netdev);
+
+			hfa384x_drvr_stop(hw);
+
+			wlandev->macmode = WLAN_MACMODE_NONE;
+			wlandev->msdstate = WLAN_MSD_HWPRESENT;
+			result = P80211ENUM_resultcode_success;
+			break;
+		case WLAN_MSD_HWFAIL:
+		default:
+			/* probe() had a problem or the msdstate contains
+			 * an unrecognized value, there's nothing we can do.
+			 */
+			result = P80211ENUM_resultcode_implementation_failure;
+			break;
+		}
+		break;
+	default:
+		result = P80211ENUM_resultcode_invalid_parameters;
+		break;
+	}
+
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2sta_getcardinfo
+*
+* Collect the NICID, firmware version and any other identifiers
+* we'd like to have in host-side data structures.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*
+* Returns:
+*	0	success
+*	>0	f/w reported error
+*	<0	driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	Either.
+----------------------------------------------------------------*/
+static int prism2sta_getcardinfo(wlandevice_t *wlandev)
+{
+	int 			result = 0;
+        hfa384x_t               *hw = (hfa384x_t *)wlandev->priv;
+	UINT16                  temp;
+	UINT8			snum[HFA384x_RID_NICSERIALNUMBER_LEN];
+	char			pstr[(HFA384x_RID_NICSERIALNUMBER_LEN * 4) + 1];
+
+	DBFENTER;
+
+	/* Collect version and compatibility info */
+	/*  Some are critical, some are not */
+	/* NIC identity */
+	result = hfa384x_drvr_getconfig(hw, HFA384x_RID_NICIDENTITY,
+			&hw->ident_nic, sizeof(hfa384x_compident_t));
+	if ( result ) {
+		WLAN_LOG_ERROR("Failed to retrieve NICIDENTITY\n");
+		goto failed;
+	}
+
+	/* get all the nic id fields in host byte order */
+	hw->ident_nic.id = hfa384x2host_16(hw->ident_nic.id);
+	hw->ident_nic.variant = hfa384x2host_16(hw->ident_nic.variant);
+	hw->ident_nic.major = hfa384x2host_16(hw->ident_nic.major);
+	hw->ident_nic.minor = hfa384x2host_16(hw->ident_nic.minor);
+
+	WLAN_LOG_INFO( "ident: nic h/w: id=0x%02x %d.%d.%d\n",
+			hw->ident_nic.id, hw->ident_nic.major,
+			hw->ident_nic.minor, hw->ident_nic.variant);
+
+	/* Primary f/w identity */
+	result = hfa384x_drvr_getconfig(hw, HFA384x_RID_PRIIDENTITY,
+			&hw->ident_pri_fw, sizeof(hfa384x_compident_t));
+	if ( result ) {
+		WLAN_LOG_ERROR("Failed to retrieve PRIIDENTITY\n");
+		goto failed;
+	}
+
+	/* get all the private fw id fields in host byte order */
+	hw->ident_pri_fw.id = hfa384x2host_16(hw->ident_pri_fw.id);
+	hw->ident_pri_fw.variant = hfa384x2host_16(hw->ident_pri_fw.variant);
+	hw->ident_pri_fw.major = hfa384x2host_16(hw->ident_pri_fw.major);
+	hw->ident_pri_fw.minor = hfa384x2host_16(hw->ident_pri_fw.minor);
+
+	WLAN_LOG_INFO( "ident: pri f/w: id=0x%02x %d.%d.%d\n",
+			hw->ident_pri_fw.id, hw->ident_pri_fw.major,
+			hw->ident_pri_fw.minor, hw->ident_pri_fw.variant);
+
+	/* Station (Secondary?) f/w identity */
+	result = hfa384x_drvr_getconfig(hw, HFA384x_RID_STAIDENTITY,
+			&hw->ident_sta_fw, sizeof(hfa384x_compident_t));
+	if ( result ) {
+		WLAN_LOG_ERROR("Failed to retrieve STAIDENTITY\n");
+		goto failed;
+	}
+
+	if (hw->ident_nic.id < 0x8000) {
+		WLAN_LOG_ERROR("FATAL: Card is not an Intersil Prism2/2.5/3\n");
+		result = -1;
+		goto failed;
+	}
+
+	/* get all the station fw id fields in host byte order */
+	hw->ident_sta_fw.id = hfa384x2host_16(hw->ident_sta_fw.id);
+	hw->ident_sta_fw.variant = hfa384x2host_16(hw->ident_sta_fw.variant);
+	hw->ident_sta_fw.major = hfa384x2host_16(hw->ident_sta_fw.major);
+	hw->ident_sta_fw.minor = hfa384x2host_16(hw->ident_sta_fw.minor);
+
+	/* strip out the 'special' variant bits */
+	hw->mm_mods = hw->ident_sta_fw.variant & (BIT14 | BIT15);
+	hw->ident_sta_fw.variant &= ~((UINT16)(BIT14 | BIT15));
+
+	if  ( hw->ident_sta_fw.id == 0x1f ) {
+		hw->ap = 0;
+		WLAN_LOG_INFO(
+			"ident: sta f/w: id=0x%02x %d.%d.%d\n",
+			hw->ident_sta_fw.id, hw->ident_sta_fw.major,
+			hw->ident_sta_fw.minor, hw->ident_sta_fw.variant);
+	} else {
+		hw->ap = 1;
+		WLAN_LOG_INFO(
+			"ident:  ap f/w: id=0x%02x %d.%d.%d\n",
+			hw->ident_sta_fw.id, hw->ident_sta_fw.major,
+			hw->ident_sta_fw.minor, hw->ident_sta_fw.variant);
+	}
+
+	/* Compatibility range, Modem supplier */
+	result = hfa384x_drvr_getconfig(hw, HFA384x_RID_MFISUPRANGE,
+			&hw->cap_sup_mfi, sizeof(hfa384x_caplevel_t));
+	if ( result ) {
+		WLAN_LOG_ERROR("Failed to retrieve MFISUPRANGE\n");
+		goto failed;
+	}
+
+	/* get all the Compatibility range, modem interface supplier
+	fields in byte order */
+	hw->cap_sup_mfi.role = hfa384x2host_16(hw->cap_sup_mfi.role);
+	hw->cap_sup_mfi.id = hfa384x2host_16(hw->cap_sup_mfi.id);
+	hw->cap_sup_mfi.variant = hfa384x2host_16(hw->cap_sup_mfi.variant);
+	hw->cap_sup_mfi.bottom = hfa384x2host_16(hw->cap_sup_mfi.bottom);
+	hw->cap_sup_mfi.top = hfa384x2host_16(hw->cap_sup_mfi.top);
+
+	WLAN_LOG_INFO(
+		"MFI:SUP:role=0x%02x:id=0x%02x:var=0x%02x:b/t=%d/%d\n",
+		hw->cap_sup_mfi.role, hw->cap_sup_mfi.id,
+		hw->cap_sup_mfi.variant, hw->cap_sup_mfi.bottom,
+		hw->cap_sup_mfi.top);
+
+	/* Compatibility range, Controller supplier */
+	result = hfa384x_drvr_getconfig(hw, HFA384x_RID_CFISUPRANGE,
+			&hw->cap_sup_cfi, sizeof(hfa384x_caplevel_t));
+	if ( result ) {
+		WLAN_LOG_ERROR("Failed to retrieve CFISUPRANGE\n");
+		goto failed;
+	}
+
+	/* get all the Compatibility range, controller interface supplier
+	fields in byte order */
+	hw->cap_sup_cfi.role = hfa384x2host_16(hw->cap_sup_cfi.role);
+	hw->cap_sup_cfi.id = hfa384x2host_16(hw->cap_sup_cfi.id);
+	hw->cap_sup_cfi.variant = hfa384x2host_16(hw->cap_sup_cfi.variant);
+	hw->cap_sup_cfi.bottom = hfa384x2host_16(hw->cap_sup_cfi.bottom);
+	hw->cap_sup_cfi.top = hfa384x2host_16(hw->cap_sup_cfi.top);
+
+	WLAN_LOG_INFO(
+		"CFI:SUP:role=0x%02x:id=0x%02x:var=0x%02x:b/t=%d/%d\n",
+		hw->cap_sup_cfi.role, hw->cap_sup_cfi.id,
+		hw->cap_sup_cfi.variant, hw->cap_sup_cfi.bottom,
+		hw->cap_sup_cfi.top);
+
+	/* Compatibility range, Primary f/w supplier */
+	result = hfa384x_drvr_getconfig(hw, HFA384x_RID_PRISUPRANGE,
+			&hw->cap_sup_pri, sizeof(hfa384x_caplevel_t));
+	if ( result ) {
+		WLAN_LOG_ERROR("Failed to retrieve PRISUPRANGE\n");
+		goto failed;
+	}
+
+	/* get all the Compatibility range, primary firmware supplier
+	fields in byte order */
+	hw->cap_sup_pri.role = hfa384x2host_16(hw->cap_sup_pri.role);
+	hw->cap_sup_pri.id = hfa384x2host_16(hw->cap_sup_pri.id);
+	hw->cap_sup_pri.variant = hfa384x2host_16(hw->cap_sup_pri.variant);
+	hw->cap_sup_pri.bottom = hfa384x2host_16(hw->cap_sup_pri.bottom);
+	hw->cap_sup_pri.top = hfa384x2host_16(hw->cap_sup_pri.top);
+
+	WLAN_LOG_INFO(
+		"PRI:SUP:role=0x%02x:id=0x%02x:var=0x%02x:b/t=%d/%d\n",
+		hw->cap_sup_pri.role, hw->cap_sup_pri.id,
+		hw->cap_sup_pri.variant, hw->cap_sup_pri.bottom,
+		hw->cap_sup_pri.top);
+
+	/* Compatibility range, Station f/w supplier */
+	result = hfa384x_drvr_getconfig(hw, HFA384x_RID_STASUPRANGE,
+			&hw->cap_sup_sta, sizeof(hfa384x_caplevel_t));
+	if ( result ) {
+		WLAN_LOG_ERROR("Failed to retrieve STASUPRANGE\n");
+		goto failed;
+	}
+
+	/* get all the Compatibility range, station firmware supplier
+	fields in byte order */
+	hw->cap_sup_sta.role = hfa384x2host_16(hw->cap_sup_sta.role);
+	hw->cap_sup_sta.id = hfa384x2host_16(hw->cap_sup_sta.id);
+	hw->cap_sup_sta.variant = hfa384x2host_16(hw->cap_sup_sta.variant);
+	hw->cap_sup_sta.bottom = hfa384x2host_16(hw->cap_sup_sta.bottom);
+	hw->cap_sup_sta.top = hfa384x2host_16(hw->cap_sup_sta.top);
+
+	if ( hw->cap_sup_sta.id == 0x04 ) {
+		WLAN_LOG_INFO(
+		"STA:SUP:role=0x%02x:id=0x%02x:var=0x%02x:b/t=%d/%d\n",
+		hw->cap_sup_sta.role, hw->cap_sup_sta.id,
+		hw->cap_sup_sta.variant, hw->cap_sup_sta.bottom,
+		hw->cap_sup_sta.top);
+	} else {
+		WLAN_LOG_INFO(
+		"AP:SUP:role=0x%02x:id=0x%02x:var=0x%02x:b/t=%d/%d\n",
+		hw->cap_sup_sta.role, hw->cap_sup_sta.id,
+		hw->cap_sup_sta.variant, hw->cap_sup_sta.bottom,
+		hw->cap_sup_sta.top);
+	}
+
+	/* Compatibility range, primary f/w actor, CFI supplier */
+	result = hfa384x_drvr_getconfig(hw, HFA384x_RID_PRI_CFIACTRANGES,
+			&hw->cap_act_pri_cfi, sizeof(hfa384x_caplevel_t));
+	if ( result ) {
+		WLAN_LOG_ERROR("Failed to retrieve PRI_CFIACTRANGES\n");
+		goto failed;
+	}
+
+	/* get all the Compatibility range, primary f/w actor, CFI supplier
+	fields in byte order */
+	hw->cap_act_pri_cfi.role = hfa384x2host_16(hw->cap_act_pri_cfi.role);
+	hw->cap_act_pri_cfi.id = hfa384x2host_16(hw->cap_act_pri_cfi.id);
+	hw->cap_act_pri_cfi.variant = hfa384x2host_16(hw->cap_act_pri_cfi.variant);
+	hw->cap_act_pri_cfi.bottom = hfa384x2host_16(hw->cap_act_pri_cfi.bottom);
+	hw->cap_act_pri_cfi.top = hfa384x2host_16(hw->cap_act_pri_cfi.top);
+
+	WLAN_LOG_INFO(
+		"PRI-CFI:ACT:role=0x%02x:id=0x%02x:var=0x%02x:b/t=%d/%d\n",
+		hw->cap_act_pri_cfi.role, hw->cap_act_pri_cfi.id,
+		hw->cap_act_pri_cfi.variant, hw->cap_act_pri_cfi.bottom,
+		hw->cap_act_pri_cfi.top);
+
+	/* Compatibility range, sta f/w actor, CFI supplier */
+	result = hfa384x_drvr_getconfig(hw, HFA384x_RID_STA_CFIACTRANGES,
+			&hw->cap_act_sta_cfi, sizeof(hfa384x_caplevel_t));
+	if ( result ) {
+		WLAN_LOG_ERROR("Failed to retrieve STA_CFIACTRANGES\n");
+		goto failed;
+	}
+
+	/* get all the Compatibility range, station f/w actor, CFI supplier
+	fields in byte order */
+	hw->cap_act_sta_cfi.role = hfa384x2host_16(hw->cap_act_sta_cfi.role);
+	hw->cap_act_sta_cfi.id = hfa384x2host_16(hw->cap_act_sta_cfi.id);
+	hw->cap_act_sta_cfi.variant = hfa384x2host_16(hw->cap_act_sta_cfi.variant);
+	hw->cap_act_sta_cfi.bottom = hfa384x2host_16(hw->cap_act_sta_cfi.bottom);
+	hw->cap_act_sta_cfi.top = hfa384x2host_16(hw->cap_act_sta_cfi.top);
+
+	WLAN_LOG_INFO(
+		"STA-CFI:ACT:role=0x%02x:id=0x%02x:var=0x%02x:b/t=%d/%d\n",
+		hw->cap_act_sta_cfi.role, hw->cap_act_sta_cfi.id,
+		hw->cap_act_sta_cfi.variant, hw->cap_act_sta_cfi.bottom,
+		hw->cap_act_sta_cfi.top);
+
+	/* Compatibility range, sta f/w actor, MFI supplier */
+	result = hfa384x_drvr_getconfig(hw, HFA384x_RID_STA_MFIACTRANGES,
+			&hw->cap_act_sta_mfi, sizeof(hfa384x_caplevel_t));
+	if ( result ) {
+		WLAN_LOG_ERROR("Failed to retrieve STA_MFIACTRANGES\n");
+		goto failed;
+	}
+
+	/* get all the Compatibility range, station f/w actor, MFI supplier
+	fields in byte order */
+	hw->cap_act_sta_mfi.role = hfa384x2host_16(hw->cap_act_sta_mfi.role);
+	hw->cap_act_sta_mfi.id = hfa384x2host_16(hw->cap_act_sta_mfi.id);
+	hw->cap_act_sta_mfi.variant = hfa384x2host_16(hw->cap_act_sta_mfi.variant);
+	hw->cap_act_sta_mfi.bottom = hfa384x2host_16(hw->cap_act_sta_mfi.bottom);
+	hw->cap_act_sta_mfi.top = hfa384x2host_16(hw->cap_act_sta_mfi.top);
+
+	WLAN_LOG_INFO(
+		"STA-MFI:ACT:role=0x%02x:id=0x%02x:var=0x%02x:b/t=%d/%d\n",
+		hw->cap_act_sta_mfi.role, hw->cap_act_sta_mfi.id,
+		hw->cap_act_sta_mfi.variant, hw->cap_act_sta_mfi.bottom,
+		hw->cap_act_sta_mfi.top);
+
+	/* Serial Number */
+	result = hfa384x_drvr_getconfig(hw, HFA384x_RID_NICSERIALNUMBER,
+			snum, HFA384x_RID_NICSERIALNUMBER_LEN);
+	if ( !result ) {
+		wlan_mkprintstr(snum, HFA384x_RID_NICSERIALNUMBER_LEN,
+				pstr, sizeof(pstr));
+		WLAN_LOG_INFO("Prism2 card SN: %s\n", pstr);
+	} else {
+		WLAN_LOG_ERROR("Failed to retrieve Prism2 Card SN\n");
+		goto failed;
+	}
+
+	/* Collect the MAC address */
+	result = hfa384x_drvr_getconfig(hw, HFA384x_RID_CNFOWNMACADDR,
+		wlandev->netdev->dev_addr, WLAN_ADDR_LEN);
+	if ( result != 0 ) {
+		WLAN_LOG_ERROR("Failed to retrieve mac address\n");
+		goto failed;
+	}
+
+	/* short preamble is always implemented */
+	wlandev->nsdcaps |= P80211_NSDCAP_SHORT_PREAMBLE;
+
+	/* find out if hardware wep is implemented */
+	hfa384x_drvr_getconfig16(hw, HFA384x_RID_PRIVACYOPTIMP, &temp);
+	if (temp)
+		wlandev->nsdcaps |= P80211_NSDCAP_HARDWAREWEP;
+
+	/* get the dBm Scaling constant */
+	hfa384x_drvr_getconfig16(hw, HFA384x_RID_CNFDBMADJUST, &temp);
+	hw->dbmadjust = temp;
+
+	/* Only enable scan by default on newer firmware */
+        if (HFA384x_FIRMWARE_VERSION(hw->ident_sta_fw.major,
+                                     hw->ident_sta_fw.minor,
+                                     hw->ident_sta_fw.variant) <
+	    HFA384x_FIRMWARE_VERSION(1,5,5)) {
+		wlandev->nsdcaps |= P80211_NSDCAP_NOSCAN;
+	}
+
+	/* TODO: Set any internally managed config items */
+
+	goto done;
+failed:
+	WLAN_LOG_ERROR("Failed, result=%d\n", result);
+done:
+	DBFEXIT;
+	return result;
+}
+
+
+/*----------------------------------------------------------------
+* prism2sta_globalsetup
+*
+* Set any global RIDs that we want to set at device activation.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*
+* Returns:
+*	0	success
+*	>0	f/w reported error
+*	<0	driver reported error
+*
+* Side effects:
+*
+* Call context:
+*	process thread
+----------------------------------------------------------------*/
+static int prism2sta_globalsetup(wlandevice_t *wlandev)
+{
+	hfa384x_t               *hw = (hfa384x_t *)wlandev->priv;
+
+	/* Set the maximum frame size */
+	return hfa384x_drvr_setconfig16(hw, HFA384x_RID_CNFMAXDATALEN,
+	                                    WLAN_DATA_MAXLEN);
+}
+
+static int prism2sta_setmulticast(wlandevice_t *wlandev, netdevice_t *dev)
+{
+	int result = 0;
+	hfa384x_t               *hw = (hfa384x_t *)wlandev->priv;
+
+	UINT16  promisc;
+
+	DBFENTER;
+
+	/* If we're not ready, what's the point? */
+	if ( hw->state != HFA384x_STATE_RUNNING )
+		goto exit;
+
+	/* If we're an AP, do nothing here */
+	if (hw->ap)
+		goto exit;
+
+	if ( (dev->flags & (IFF_PROMISC | IFF_ALLMULTI)) != 0 )
+		promisc = P80211ENUM_truth_true;
+	else
+		promisc = P80211ENUM_truth_false;
+
+	result = hfa384x_drvr_setconfig16_async(hw, HFA384x_RID_PROMISCMODE, promisc);
+
+	/* XXX TODO: configure the multicast list */
+	// CLEAR_HW_MULTICAST_LIST
+	// struct dev_mc_list element = dev->mc_list;
+	// while (element != null) {
+	//  HW_ADD_MULTICAST_ADDR(element->dmi_addr, dmi_addrlen)
+	//  element = element->next;
+	// }
+
+ exit:
+	DBFEXIT;
+	return result;
+}
+
+/*----------------------------------------------------------------
+* prism2sta_inf_handover
+*
+* Handles the receipt of a Handover info frame. Should only be present
+* in APs only.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	inf		ptr to info frame (contents in hfa384x order)
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void prism2sta_inf_handover(wlandevice_t *wlandev, hfa384x_InfFrame_t *inf)
+{
+	DBFENTER;
+	WLAN_LOG_DEBUG(2,"received infoframe:HANDOVER (unhandled)\n");
+	DBFEXIT;
+	return;
+}
+
+
+/*----------------------------------------------------------------
+* prism2sta_inf_tallies
+*
+* Handles the receipt of a CommTallies info frame.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	inf		ptr to info frame (contents in hfa384x order)
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void prism2sta_inf_tallies(wlandevice_t *wlandev, hfa384x_InfFrame_t *inf)
+{
+        hfa384x_t               *hw = (hfa384x_t *)wlandev->priv;
+	UINT16			*src16;
+	UINT32			*dst;
+	UINT32			*src32;
+	int			i;
+	int			cnt;
+
+	DBFENTER;
+
+	/*
+	** Determine if these are 16-bit or 32-bit tallies, based on the
+	** record length of the info record.
+	*/
+
+	cnt = sizeof(hfa384x_CommTallies32_t) / sizeof(UINT32);
+	if (inf->framelen > 22) {
+		dst   = (UINT32 *) &hw->tallies;
+		src32 = (UINT32 *) &inf->info.commtallies32;
+		for (i = 0; i < cnt; i++, dst++, src32++)
+			*dst += hfa384x2host_32(*src32);
+	} else {
+		dst   = (UINT32 *) &hw->tallies;
+		src16 = (UINT16 *) &inf->info.commtallies16;
+		for (i = 0; i < cnt; i++, dst++, src16++)
+			*dst += hfa384x2host_16(*src16);
+	}
+
+	DBFEXIT;
+
+	return;
+}
+
+/*----------------------------------------------------------------
+* prism2sta_inf_scanresults
+*
+* Handles the receipt of a Scan Results info frame.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	inf		ptr to info frame (contents in hfa384x order)
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void prism2sta_inf_scanresults(wlandevice_t *wlandev,
+				      hfa384x_InfFrame_t *inf)
+{
+
+        hfa384x_t               *hw = (hfa384x_t *)wlandev->priv;
+	int			nbss;
+	hfa384x_ScanResult_t	*sr = &(inf->info.scanresult);
+	int			i;
+	hfa384x_JoinRequest_data_t	joinreq;
+	int			result;
+	DBFENTER;
+
+	/* Get the number of results, first in bytes, then in results */
+	nbss = (inf->framelen * sizeof(UINT16)) -
+		sizeof(inf->infotype) -
+		sizeof(inf->info.scanresult.scanreason);
+	nbss /= sizeof(hfa384x_ScanResultSub_t);
+
+	/* Print em */
+	WLAN_LOG_DEBUG(1,"rx scanresults, reason=%d, nbss=%d:\n",
+		inf->info.scanresult.scanreason, nbss);
+	for ( i = 0; i < nbss; i++) {
+		WLAN_LOG_DEBUG(1, "chid=%d anl=%d sl=%d bcnint=%d\n",
+			sr->result[i].chid,
+			sr->result[i].anl,
+			sr->result[i].sl,
+			sr->result[i].bcnint);
+		WLAN_LOG_DEBUG(1, "  capinfo=0x%04x proberesp_rate=%d\n",
+			sr->result[i].capinfo,
+			sr->result[i].proberesp_rate);
+	}
+	/* issue a join request */
+	joinreq.channel = sr->result[0].chid;
+	memcpy( joinreq.bssid, sr->result[0].bssid, WLAN_BSSID_LEN);
+	result = hfa384x_drvr_setconfig( hw,
+			HFA384x_RID_JOINREQUEST,
+			&joinreq, HFA384x_RID_JOINREQUEST_LEN);
+	if (result) {
+		WLAN_LOG_ERROR("setconfig(joinreq) failed, result=%d\n", result);
+	}
+
+	DBFEXIT;
+	return;
+}
+
+/*----------------------------------------------------------------
+* prism2sta_inf_hostscanresults
+*
+* Handles the receipt of a Scan Results info frame.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	inf		ptr to info frame (contents in hfa384x order)
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void prism2sta_inf_hostscanresults(wlandevice_t *wlandev,
+					  hfa384x_InfFrame_t *inf)
+{
+        hfa384x_t               *hw = (hfa384x_t *)wlandev->priv;
+	int			nbss;
+	DBFENTER;
+
+	nbss = (inf->framelen - 3) / 32;
+	WLAN_LOG_DEBUG(1, "Received %d hostscan results\n", nbss);
+
+	if (nbss > 32)
+		nbss = 32;
+
+	if (hw->scanresults)
+		kfree(hw->scanresults);
+
+	hw->scanresults = kmalloc(sizeof(hfa384x_InfFrame_t), GFP_ATOMIC);
+	memcpy(hw->scanresults, inf, sizeof(hfa384x_InfFrame_t));
+
+	if (nbss == 0)
+		nbss = -1;
+
+        /* Notify/wake the sleeping caller. */
+        hw->scanflag = nbss;
+        wake_up_interruptible(&hw->cmdq);
+
+	DBFEXIT;
+};
+
+/*----------------------------------------------------------------
+* prism2sta_inf_chinforesults
+*
+* Handles the receipt of a Channel Info Results info frame.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	inf		ptr to info frame (contents in hfa384x order)
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void prism2sta_inf_chinforesults(wlandevice_t *wlandev,
+					hfa384x_InfFrame_t *inf)
+{
+        hfa384x_t               *hw = (hfa384x_t *)wlandev->priv;
+	unsigned int		i, n;
+
+	DBFENTER;
+	hw->channel_info.results.scanchannels =
+		hfa384x2host_16(inf->info.chinforesult.scanchannels);
+#if 0
+	memcpy(&inf->info.chinforesult, &hw->channel_info.results, sizeof(hfa384x_ChInfoResult_t));
+#endif
+
+	for (i=0, n=0; i<HFA384x_CHINFORESULT_MAX; i++) {
+		if (hw->channel_info.results.scanchannels & (1<<i)) {
+			int 	channel=hfa384x2host_16(inf->info.chinforesult.result[n].chid)-1;
+			hfa384x_ChInfoResultSub_t *chinforesult=&hw->channel_info.results.result[channel];
+			chinforesult->chid   = channel;
+			chinforesult->anl    = hfa384x2host_16(inf->info.chinforesult.result[n].anl);
+			chinforesult->pnl    = hfa384x2host_16(inf->info.chinforesult.result[n].pnl);
+			chinforesult->active = hfa384x2host_16(inf->info.chinforesult.result[n].active);
+			WLAN_LOG_DEBUG(2, "chinfo: channel %d, %s level (avg/peak)=%d/%d dB, pcf %d\n",
+					channel+1,
+					chinforesult->active &
+					HFA384x_CHINFORESULT_BSSACTIVE ? "signal" : "noise",
+					chinforesult->anl, chinforesult->pnl,
+					chinforesult->active & HFA384x_CHINFORESULT_PCFACTIVE ? 1 : 0
+			);
+			n++;
+		}
+	}
+	atomic_set(&hw->channel_info.done, 2);
+
+	hw->channel_info.count = n;
+	DBFEXIT;
+	return;
+}
+
+void prism2sta_processing_defer(struct work_struct *data)
+{
+	hfa384x_t		*hw = container_of(data, struct hfa384x, link_bh);
+	wlandevice_t            *wlandev = hw->wlandev;
+	hfa384x_bytestr32_t ssid;
+	int			result;
+
+	DBFENTER;
+	/* First let's process the auth frames */
+	{
+		struct sk_buff          *skb;
+		hfa384x_InfFrame_t *inf;
+
+		while ( (skb = skb_dequeue(&hw->authq)) ) {
+			inf = (hfa384x_InfFrame_t *) skb->data;
+			prism2sta_inf_authreq_defer(wlandev, inf);
+		}
+
+	}
+
+	/* Now let's handle the linkstatus stuff */
+	if (hw->link_status == hw->link_status_new)
+		goto failed;
+
+	hw->link_status = hw->link_status_new;
+
+	switch(hw->link_status) {
+	case HFA384x_LINK_NOTCONNECTED:
+		/* I'm currently assuming that this is the initial link
+		 * state.  It should only be possible immediately
+		 * following an Enable command.
+		 * Response:
+		 * Block Transmits, Ignore receives of data frames
+		 */
+		netif_carrier_off(wlandev->netdev);
+
+		WLAN_LOG_INFO("linkstatus=NOTCONNECTED (unhandled)\n");
+		break;
+
+	case HFA384x_LINK_CONNECTED:
+		/* This one indicates a successful scan/join/auth/assoc.
+		 * When we have the full MLME complement, this event will
+		 * signify successful completion of both mlme_authenticate
+		 * and mlme_associate.  State management will get a little
+		 * ugly here.
+		 * Response:
+		 * Indicate authentication and/or association
+		 * Enable Transmits, Receives and pass up data frames
+		 */
+
+		netif_carrier_on(wlandev->netdev);
+
+		/* If we are joining a specific AP, set our state and reset retries */
+		if(hw->join_ap == 1)
+			hw->join_ap = 2;
+		hw->join_retries = 60;
+
+		/* Don't call this in monitor mode */
+		if ( wlandev->netdev->type == ARPHRD_ETHER ) {
+			UINT16			portstatus;
+
+			WLAN_LOG_INFO("linkstatus=CONNECTED\n");
+
+			/* For non-usb devices, we can use the sync versions */
+			/* Collect the BSSID, and set state to allow tx */
+
+			result = hfa384x_drvr_getconfig(hw,
+							HFA384x_RID_CURRENTBSSID,
+							wlandev->bssid, WLAN_BSSID_LEN);
+			if ( result ) {
+				WLAN_LOG_DEBUG(1,
+					       "getconfig(0x%02x) failed, result = %d\n",
+					       HFA384x_RID_CURRENTBSSID, result);
+				goto failed;
+			}
+
+			result = hfa384x_drvr_getconfig(hw,
+							HFA384x_RID_CURRENTSSID,
+							&ssid, sizeof(ssid));
+			if ( result ) {
+				WLAN_LOG_DEBUG(1,
+					       "getconfig(0x%02x) failed, result = %d\n",
+					       HFA384x_RID_CURRENTSSID, result);
+				goto failed;
+			}
+			prism2mgmt_bytestr2pstr((hfa384x_bytestr_t *)&ssid,
+						(p80211pstrd_t *) &wlandev->ssid);
+
+			/* Collect the port status */
+			result = hfa384x_drvr_getconfig16(hw,
+							  HFA384x_RID_PORTSTATUS, &portstatus);
+			if ( result ) {
+				WLAN_LOG_DEBUG(1,
+					       "getconfig(0x%02x) failed, result = %d\n",
+					       HFA384x_RID_PORTSTATUS, result);
+				goto failed;
+			}
+			wlandev->macmode =
+				(portstatus == HFA384x_PSTATUS_CONN_IBSS) ?
+				WLAN_MACMODE_IBSS_STA : WLAN_MACMODE_ESS_STA;
+
+			/* Get the ball rolling on the comms quality stuff */
+			prism2sta_commsqual_defer(&hw->commsqual_bh);
+		}
+		break;
+
+	case HFA384x_LINK_DISCONNECTED:
+		/* This one indicates that our association is gone.  We've
+		 * lost connection with the AP and/or been disassociated.
+		 * This indicates that the MAC has completely cleared it's
+		 * associated state.  We * should send a deauth indication
+		 * (implying disassoc) up * to the MLME.
+		 * Response:
+		 * Indicate Deauthentication
+		 * Block Transmits, Ignore receives of data frames
+		 */
+		if(hw->join_ap == 2)
+		{
+			hfa384x_JoinRequest_data_t      joinreq;
+			joinreq = hw->joinreq;
+			/* Send the join request */
+			hfa384x_drvr_setconfig( hw,
+				HFA384x_RID_JOINREQUEST,
+				&joinreq, HFA384x_RID_JOINREQUEST_LEN);
+			WLAN_LOG_INFO("linkstatus=DISCONNECTED (re-submitting join)\n");
+		} else {
+			if (wlandev->netdev->type == ARPHRD_ETHER)
+				WLAN_LOG_INFO("linkstatus=DISCONNECTED (unhandled)\n");
+		}
+		wlandev->macmode = WLAN_MACMODE_NONE;
+
+		netif_carrier_off(wlandev->netdev);
+
+		break;
+
+	case HFA384x_LINK_AP_CHANGE:
+		/* This one indicates that the MAC has decided to and
+		 * successfully completed a change to another AP.  We
+		 * should probably implement a reassociation indication
+		 * in response to this one.  I'm thinking that the the
+		 * p80211 layer needs to be notified in case of
+		 * buffering/queueing issues.  User mode also needs to be
+		 * notified so that any BSS dependent elements can be
+		 * updated.
+		 * associated state.  We * should send a deauth indication
+		 * (implying disassoc) up * to the MLME.
+		 * Response:
+		 * Indicate Reassociation
+		 * Enable Transmits, Receives and pass up data frames
+		 */
+		WLAN_LOG_INFO("linkstatus=AP_CHANGE\n");
+
+		result = hfa384x_drvr_getconfig(hw,
+						HFA384x_RID_CURRENTBSSID,
+						wlandev->bssid, WLAN_BSSID_LEN);
+		if ( result ) {
+			WLAN_LOG_DEBUG(1,
+				       "getconfig(0x%02x) failed, result = %d\n",
+				       HFA384x_RID_CURRENTBSSID, result);
+			goto failed;
+		}
+
+		result = hfa384x_drvr_getconfig(hw,
+						HFA384x_RID_CURRENTSSID,
+						&ssid, sizeof(ssid));
+		if ( result ) {
+			WLAN_LOG_DEBUG(1,
+				       "getconfig(0x%02x) failed, result = %d\n",
+				       HFA384x_RID_CURRENTSSID, result);
+			goto failed;
+		}
+		prism2mgmt_bytestr2pstr((hfa384x_bytestr_t *)&ssid,
+					(p80211pstrd_t *) &wlandev->ssid);
+
+
+		hw->link_status = HFA384x_LINK_CONNECTED;
+		netif_carrier_on(wlandev->netdev);
+
+		break;
+
+	case HFA384x_LINK_AP_OUTOFRANGE:
+		/* This one indicates that the MAC has decided that the
+		 * AP is out of range, but hasn't found a better candidate
+		 * so the MAC maintains its "associated" state in case
+		 * we get back in range.  We should block transmits and
+		 * receives in this state.  Do we need an indication here?
+		 * Probably not since a polling user-mode element would
+		 * get this status from from p2PortStatus(FD40). What about
+		 * p80211?
+		 * Response:
+		 * Block Transmits, Ignore receives of data frames
+		 */
+		WLAN_LOG_INFO("linkstatus=AP_OUTOFRANGE (unhandled)\n");
+
+		netif_carrier_off(wlandev->netdev);
+
+		break;
+
+	case HFA384x_LINK_AP_INRANGE:
+		/* This one indicates that the MAC has decided that the
+		 * AP is back in range.  We continue working with our
+		 * existing association.
+		 * Response:
+		 * Enable Transmits, Receives and pass up data frames
+		 */
+		WLAN_LOG_INFO("linkstatus=AP_INRANGE\n");
+
+		hw->link_status = HFA384x_LINK_CONNECTED;
+		netif_carrier_on(wlandev->netdev);
+
+		break;
+
+	case HFA384x_LINK_ASSOCFAIL:
+		/* This one is actually a peer to CONNECTED.  We've
+		 * requested a join for a given SSID and optionally BSSID.
+		 * We can use this one to indicate authentication and
+		 * association failures.  The trick is going to be
+		 * 1) identifying the failure, and 2) state management.
+		 * Response:
+		 * Disable Transmits, Ignore receives of data frames
+		 */
+		if(hw->join_ap && --hw->join_retries > 0)
+		{
+			hfa384x_JoinRequest_data_t      joinreq;
+			joinreq = hw->joinreq;
+			/* Send the join request */
+			hfa384x_drvr_setconfig( hw,
+				HFA384x_RID_JOINREQUEST,
+				&joinreq, HFA384x_RID_JOINREQUEST_LEN);
+			WLAN_LOG_INFO("linkstatus=ASSOCFAIL (re-submitting join)\n");
+		} else {
+			WLAN_LOG_INFO("linkstatus=ASSOCFAIL (unhandled)\n");
+		}
+
+		netif_carrier_off(wlandev->netdev);
+
+		break;
+
+	default:
+		/* This is bad, IO port problems? */
+		WLAN_LOG_WARNING(
+			"unknown linkstatus=0x%02x\n", hw->link_status);
+		goto failed;
+		break;
+	}
+
+	wlandev->linkstatus = (hw->link_status == HFA384x_LINK_CONNECTED);
+#ifdef WIRELESS_EXT
+	p80211wext_event_associated(wlandev, wlandev->linkstatus);
+#endif
+
+ failed:
+	DBFEXIT;
+}
+
+/*----------------------------------------------------------------
+* prism2sta_inf_linkstatus
+*
+* Handles the receipt of a Link Status info frame.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	inf		ptr to info frame (contents in hfa384x order)
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void prism2sta_inf_linkstatus(wlandevice_t *wlandev,
+				     hfa384x_InfFrame_t *inf)
+{
+        hfa384x_t               *hw = (hfa384x_t *)wlandev->priv;
+
+	DBFENTER;
+
+	hw->link_status_new = hfa384x2host_16(inf->info.linkstatus.linkstatus);
+
+	schedule_work(&hw->link_bh);
+
+	DBFEXIT;
+	return;
+}
+
+/*----------------------------------------------------------------
+* prism2sta_inf_assocstatus
+*
+* Handles the receipt of an Association Status info frame. Should
+* be present in APs only.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	inf		ptr to info frame (contents in hfa384x order)
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void prism2sta_inf_assocstatus(wlandevice_t *wlandev,
+				      hfa384x_InfFrame_t *inf)
+{
+        hfa384x_t               *hw = (hfa384x_t *)wlandev->priv;
+	hfa384x_AssocStatus_t	rec;
+	int			i;
+
+	DBFENTER;
+
+	memcpy(&rec, &inf->info.assocstatus, sizeof(rec));
+	rec.assocstatus = hfa384x2host_16(rec.assocstatus);
+	rec.reason      = hfa384x2host_16(rec.reason);
+
+	/*
+	** Find the address in the list of authenticated stations.  If it wasn't
+	** found, then this address has not been previously authenticated and
+	** something weird has happened if this is anything other than an
+	** "authentication failed" message.  If the address was found, then
+	** set the "associated" flag for that station, based on whether the
+	** station is associating or losing its association.  Something weird
+	** has also happened if we find the address in the list of authenticated
+	** stations but we are getting an "authentication failed" message.
+	*/
+
+	for (i = 0; i < hw->authlist.cnt; i++)
+		if (memcmp(rec.sta_addr, hw->authlist.addr[i], WLAN_ADDR_LEN) == 0)
+			break;
+
+	if (i >= hw->authlist.cnt) {
+		if (rec.assocstatus != HFA384x_ASSOCSTATUS_AUTHFAIL)
+			WLAN_LOG_WARNING("assocstatus info frame received for non-authenticated station.\n");
+	} else {
+		hw->authlist.assoc[i] =
+			(rec.assocstatus == HFA384x_ASSOCSTATUS_STAASSOC ||
+			 rec.assocstatus == HFA384x_ASSOCSTATUS_REASSOC);
+
+		if (rec.assocstatus == HFA384x_ASSOCSTATUS_AUTHFAIL)
+			WLAN_LOG_WARNING("authfail assocstatus info frame received for authenticated station.\n");
+	}
+
+	DBFEXIT;
+
+	return;
+}
+
+/*----------------------------------------------------------------
+* prism2sta_inf_authreq
+*
+* Handles the receipt of an Authentication Request info frame. Should
+* be present in APs only.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	inf		ptr to info frame (contents in hfa384x order)
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+*
+----------------------------------------------------------------*/
+static void prism2sta_inf_authreq(wlandevice_t *wlandev,
+				  hfa384x_InfFrame_t *inf)
+{
+        hfa384x_t               *hw = (hfa384x_t *)wlandev->priv;
+	struct sk_buff *skb;
+
+	DBFENTER;
+
+	skb = dev_alloc_skb(sizeof(*inf));
+	if (skb) {
+		skb_put(skb, sizeof(*inf));
+		memcpy(skb->data, inf, sizeof(*inf));
+		skb_queue_tail(&hw->authq, skb);
+		schedule_work(&hw->link_bh);
+	}
+
+	DBFEXIT;
+}
+
+static void prism2sta_inf_authreq_defer(wlandevice_t *wlandev,
+					hfa384x_InfFrame_t *inf)
+{
+        hfa384x_t               *hw = (hfa384x_t *)wlandev->priv;
+	hfa384x_authenticateStation_data_t  rec;
+
+	int    i, added, result, cnt;
+	UINT8  *addr;
+
+	DBFENTER;
+
+	/*
+	** Build the AuthenticateStation record.  Initialize it for denying
+	** authentication.
+	*/
+
+	memcpy(rec.address, inf->info.authreq.sta_addr, WLAN_ADDR_LEN);
+	rec.status = P80211ENUM_status_unspec_failure;
+
+	/*
+	** Authenticate based on the access mode.
+	*/
+
+	switch (hw->accessmode) {
+		case WLAN_ACCESS_NONE:
+
+			/*
+			** Deny all new authentications.  However, if a station
+			** is ALREADY authenticated, then accept it.
+			*/
+
+			for (i = 0; i < hw->authlist.cnt; i++)
+				if (memcmp(rec.address, hw->authlist.addr[i],
+						WLAN_ADDR_LEN) == 0) {
+					rec.status = P80211ENUM_status_successful;
+					break;
+				}
+
+			break;
+
+		case WLAN_ACCESS_ALL:
+
+			/*
+			** Allow all authentications.
+			*/
+
+			rec.status = P80211ENUM_status_successful;
+			break;
+
+		case WLAN_ACCESS_ALLOW:
+
+			/*
+			** Only allow the authentication if the MAC address
+			** is in the list of allowed addresses.
+			**
+			** Since this is the interrupt handler, we may be here
+			** while the access list is in the middle of being
+			** updated.  Choose the list which is currently okay.
+			** See "prism2mib_priv_accessallow()" for details.
+			*/
+
+			if (hw->allow.modify == 0) {
+				cnt  = hw->allow.cnt;
+				addr = hw->allow.addr[0];
+			} else {
+				cnt  = hw->allow.cnt1;
+				addr = hw->allow.addr1[0];
+			}
+
+			for (i = 0; i < cnt; i++, addr += WLAN_ADDR_LEN)
+				if (memcmp(rec.address, addr, WLAN_ADDR_LEN) == 0) {
+					rec.status = P80211ENUM_status_successful;
+					break;
+				}
+
+			break;
+
+		case WLAN_ACCESS_DENY:
+
+			/*
+			** Allow the authentication UNLESS the MAC address is
+			** in the list of denied addresses.
+			**
+			** Since this is the interrupt handler, we may be here
+			** while the access list is in the middle of being
+			** updated.  Choose the list which is currently okay.
+			** See "prism2mib_priv_accessdeny()" for details.
+			*/
+
+			if (hw->deny.modify == 0) {
+				cnt  = hw->deny.cnt;
+				addr = hw->deny.addr[0];
+			} else {
+				cnt  = hw->deny.cnt1;
+				addr = hw->deny.addr1[0];
+			}
+
+			rec.status = P80211ENUM_status_successful;
+
+			for (i = 0; i < cnt; i++, addr += WLAN_ADDR_LEN)
+				if (memcmp(rec.address, addr, WLAN_ADDR_LEN) == 0) {
+					rec.status = P80211ENUM_status_unspec_failure;
+					break;
+				}
+
+			break;
+	}
+
+	/*
+	** If the authentication is okay, then add the MAC address to the list
+	** of authenticated stations.  Don't add the address if it is already in
+	** the list.  (802.11b does not seem to disallow a station from issuing
+	** an authentication request when the station is already authenticated.
+	** Does this sort of thing ever happen?  We might as well do the check
+	** just in case.)
+	*/
+
+	added = 0;
+
+	if (rec.status == P80211ENUM_status_successful) {
+		for (i = 0; i < hw->authlist.cnt; i++)
+			if (memcmp(rec.address, hw->authlist.addr[i], WLAN_ADDR_LEN) == 0)
+				break;
+
+		if (i >= hw->authlist.cnt) {
+			if (hw->authlist.cnt >= WLAN_AUTH_MAX) {
+				rec.status = P80211ENUM_status_ap_full;
+			} else {
+				memcpy(hw->authlist.addr[hw->authlist.cnt],
+					rec.address, WLAN_ADDR_LEN);
+				hw->authlist.cnt++;
+				added = 1;
+			}
+		}
+	}
+
+	/*
+	** Send back the results of the authentication.  If this doesn't work,
+	** then make sure to remove the address from the authenticated list if
+	** it was added.
+	*/
+
+	rec.status = host2hfa384x_16(rec.status);
+	rec.algorithm = inf->info.authreq.algorithm;
+
+	result = hfa384x_drvr_setconfig(hw, HFA384x_RID_AUTHENTICATESTA,
+							&rec, sizeof(rec));
+	if (result) {
+		if (added) hw->authlist.cnt--;
+		WLAN_LOG_ERROR("setconfig(authenticatestation) failed, result=%d\n", result);
+	}
+
+	DBFEXIT;
+
+	return;
+}
+
+
+/*----------------------------------------------------------------
+* prism2sta_inf_psusercnt
+*
+* Handles the receipt of a PowerSaveUserCount info frame. Should
+* be present in APs only.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	inf		ptr to info frame (contents in hfa384x order)
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+static void prism2sta_inf_psusercnt(wlandevice_t *wlandev,
+				    hfa384x_InfFrame_t *inf)
+{
+        hfa384x_t               *hw = (hfa384x_t *)wlandev->priv;
+
+	DBFENTER;
+
+	hw->psusercount = hfa384x2host_16(inf->info.psusercnt.usercnt);
+
+	DBFEXIT;
+
+	return;
+}
+
+/*----------------------------------------------------------------
+* prism2sta_ev_dtim
+*
+* Handles the DTIM early warning event.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+void prism2sta_ev_dtim(wlandevice_t *wlandev)
+{
+#if 0
+        hfa384x_t               *hw = (hfa384x_t *)wlandev->priv;
+#endif
+	DBFENTER;
+	WLAN_LOG_DEBUG(3, "DTIM event, currently unhandled.\n");
+	DBFEXIT;
+	return;
+}
+
+
+/*----------------------------------------------------------------
+* prism2sta_ev_infdrop
+*
+* Handles the InfDrop event.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+void prism2sta_ev_infdrop(wlandevice_t *wlandev)
+{
+#if 0
+        hfa384x_t               *hw = (hfa384x_t *)wlandev->priv;
+#endif
+	DBFENTER;
+	WLAN_LOG_DEBUG(3, "Info frame dropped due to card mem low.\n");
+	DBFEXIT;
+	return;
+}
+
+
+/*----------------------------------------------------------------
+* prism2sta_ev_info
+*
+* Handles the Info event.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	inf		ptr to a generic info frame
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+void prism2sta_ev_info(wlandevice_t *wlandev, hfa384x_InfFrame_t *inf)
+{
+	DBFENTER;
+	inf->infotype = hfa384x2host_16(inf->infotype);
+	/* Dispatch */
+	switch ( inf->infotype ) {
+		case HFA384x_IT_HANDOVERADDR:
+			prism2sta_inf_handover(wlandev, inf);
+			break;
+		case HFA384x_IT_COMMTALLIES:
+			prism2sta_inf_tallies(wlandev, inf);
+			break;
+               case HFA384x_IT_HOSTSCANRESULTS:
+                        prism2sta_inf_hostscanresults(wlandev, inf);
+                        break;
+		case HFA384x_IT_SCANRESULTS:
+			prism2sta_inf_scanresults(wlandev, inf);
+			break;
+		case HFA384x_IT_CHINFORESULTS:
+			prism2sta_inf_chinforesults(wlandev, inf);
+			break;
+		case HFA384x_IT_LINKSTATUS:
+			prism2sta_inf_linkstatus(wlandev, inf);
+			break;
+		case HFA384x_IT_ASSOCSTATUS:
+			prism2sta_inf_assocstatus(wlandev, inf);
+			break;
+		case HFA384x_IT_AUTHREQ:
+			prism2sta_inf_authreq(wlandev, inf);
+			break;
+		case HFA384x_IT_PSUSERCNT:
+			prism2sta_inf_psusercnt(wlandev, inf);
+			break;
+	        case HFA384x_IT_KEYIDCHANGED:
+			WLAN_LOG_WARNING("Unhandled IT_KEYIDCHANGED\n");
+			break;
+	        case HFA384x_IT_ASSOCREQ:
+			WLAN_LOG_WARNING("Unhandled IT_ASSOCREQ\n");
+			break;
+	        case HFA384x_IT_MICFAILURE:
+			WLAN_LOG_WARNING("Unhandled IT_MICFAILURE\n");
+			break;
+		default:
+			WLAN_LOG_WARNING(
+				"Unknown info type=0x%02x\n", inf->infotype);
+			break;
+	}
+	DBFEXIT;
+	return;
+}
+
+
+/*----------------------------------------------------------------
+* prism2sta_ev_txexc
+*
+* Handles the TxExc event.  A Transmit Exception event indicates
+* that the MAC's TX process was unsuccessful - so the packet did
+* not get transmitted.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	status		tx frame status word
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+void prism2sta_ev_txexc(wlandevice_t *wlandev, UINT16 status)
+{
+	DBFENTER;
+
+	WLAN_LOG_DEBUG(3, "TxExc status=0x%x.\n", status);
+
+	DBFEXIT;
+	return;
+}
+
+
+/*----------------------------------------------------------------
+* prism2sta_ev_tx
+*
+* Handles the Tx event.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*	status		tx frame status word
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+void prism2sta_ev_tx(wlandevice_t *wlandev, UINT16 status)
+{
+	DBFENTER;
+	WLAN_LOG_DEBUG(4, "Tx Complete, status=0x%04x\n", status);
+	/* update linux network stats */
+	wlandev->linux_stats.tx_packets++;
+	DBFEXIT;
+	return;
+}
+
+
+/*----------------------------------------------------------------
+* prism2sta_ev_rx
+*
+* Handles the Rx event.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+void prism2sta_ev_rx(wlandevice_t *wlandev, struct sk_buff *skb)
+{
+	DBFENTER;
+
+	p80211netdev_rx(wlandev, skb);
+
+	DBFEXIT;
+	return;
+}
+
+/*----------------------------------------------------------------
+* prism2sta_ev_alloc
+*
+* Handles the Alloc event.
+*
+* Arguments:
+*	wlandev		wlan device structure
+*
+* Returns:
+*	nothing
+*
+* Side effects:
+*
+* Call context:
+*	interrupt
+----------------------------------------------------------------*/
+void prism2sta_ev_alloc(wlandevice_t *wlandev)
+{
+	DBFENTER;
+
+	p80211netdev_wake_queue(wlandev);
+
+	DBFEXIT;
+	return;
+}
+
+#if (WLAN_HOSTIF == WLAN_PLX || WLAN_HOSTIF == WLAN_PCI)
+#ifdef CONFIG_PM
+static int prism2sta_suspend_pci(struct pci_dev *pdev, pm_message_t state)
+{
+       	wlandevice_t		*wlandev;
+
+	wlandev = (wlandevice_t *) pci_get_drvdata(pdev);
+
+	/* reset hardware */
+	if (wlandev) {
+		prism2sta_ifstate(wlandev, P80211ENUM_ifstate_disable);
+		p80211_suspend(wlandev);
+	}
+
+	// call a netif_device_detach(wlandev->netdev) ?
+
+	return 0;
+}
+
+static int prism2sta_resume_pci (struct pci_dev *pdev)
+{
+       	wlandevice_t		*wlandev;
+
+	wlandev = (wlandevice_t *) pci_get_drvdata(pdev);
+
+	if (wlandev) {
+		prism2sta_ifstate(wlandev, P80211ENUM_ifstate_disable);
+		p80211_resume(wlandev);
+	}
+
+        return 0;
+}
+#endif
+#endif
+
+/*----------------------------------------------------------------
+* create_wlan
+*
+* Called at module init time.  This creates the wlandevice_t structure
+* and initializes it with relevant bits.
+*
+* Arguments:
+*	none
+*
+* Returns:
+*	the created wlandevice_t structure.
+*
+* Side effects:
+* 	also allocates the priv/hw structures.
+*
+* Call context:
+*	process thread
+*
+----------------------------------------------------------------*/
+static wlandevice_t *create_wlan(void)
+{
+        wlandevice_t    *wlandev = NULL;
+	hfa384x_t	*hw = NULL;
+
+      	/* Alloc our structures */
+	wlandev =	kmalloc(sizeof(wlandevice_t), GFP_KERNEL);
+	hw =		kmalloc(sizeof(hfa384x_t), GFP_KERNEL);
+
+	if (!wlandev || !hw) {
+		WLAN_LOG_ERROR("%s: Memory allocation failure.\n", dev_info);
+		if (wlandev)	kfree(wlandev);
+		if (hw)		kfree(hw);
+		return NULL;
+	}
+
+	/* Clear all the structs */
+	memset(wlandev, 0, sizeof(wlandevice_t));
+	memset(hw, 0, sizeof(hfa384x_t));
+
+	/* Initialize the network device object. */
+	wlandev->nsdname = dev_info;
+	wlandev->msdstate = WLAN_MSD_HWPRESENT_PENDING;
+	wlandev->priv = hw;
+	wlandev->open = prism2sta_open;
+	wlandev->close = prism2sta_close;
+	wlandev->reset = prism2sta_reset;
+#ifdef CONFIG_PROC_FS
+	wlandev->nsd_proc_read = prism2sta_proc_read;
+#endif
+	wlandev->txframe = prism2sta_txframe;
+	wlandev->mlmerequest = prism2sta_mlmerequest;
+	wlandev->set_multicast_list = prism2sta_setmulticast;
+	wlandev->tx_timeout = hfa384x_tx_timeout;
+
+	wlandev->nsdcaps = P80211_NSDCAP_HWFRAGMENT |
+	                   P80211_NSDCAP_AUTOJOIN;
+
+	/* Initialize the device private data stucture. */
+        hw->dot11_desired_bss_type = 1;
+
+	return wlandev;
+}
+
+#ifdef CONFIG_PROC_FS
+static int
+prism2sta_proc_read(
+	char	*page,
+	char	**start,
+	off_t	offset,
+	int	count,
+	int	*eof,
+	void	*data)
+{
+	char	 *p = page;
+	wlandevice_t *wlandev = (wlandevice_t *) data;
+	hfa384x_t *hw = (hfa384x_t *) wlandev->priv;
+
+	UINT16 hwtype = 0;
+
+	DBFENTER;
+	if (offset != 0) {
+		*eof = 1;
+		goto exit;
+	}
+
+	// XXX 0x0001 for prism2.5/3, 0x0000 for prism2.
+	hwtype = BIT0;
+
+#if (WLAN_HOSTIF != WLAN_USB)
+	if (hw->isram16)
+		hwtype |= BIT1;
+#endif
+
+#if (WLAN_HOSTIF == WLAN_PCI)
+	hwtype |= BIT2;
+#endif
+
+#define PRISM2_CVS_ID "$Id: prism2sta.c 1826 2007-03-19 15:37:00Z pizza $"
+
+	p += sprintf(p, "# %s version %s (%s) '%s'\n\n",
+		     dev_info,
+		     WLAN_RELEASE, WLAN_BUILD_DATE, PRISM2_CVS_ID);
+
+	p += sprintf(p, "# nic h/w: id=0x%02x %d.%d.%d\n",
+		     hw->ident_nic.id, hw->ident_nic.major,
+		     hw->ident_nic.minor, hw->ident_nic.variant);
+
+	p += sprintf(p, "# pri f/w: id=0x%02x %d.%d.%d\n",
+		     hw->ident_pri_fw.id, hw->ident_pri_fw.major,
+		     hw->ident_pri_fw.minor, hw->ident_pri_fw.variant);
+
+	if (hw->ident_sta_fw.id == 0x1f) {
+		p += sprintf(p, "# sta f/w: id=0x%02x %d.%d.%d\n",
+			     hw->ident_sta_fw.id, hw->ident_sta_fw.major,
+			     hw->ident_sta_fw.minor, hw->ident_sta_fw.variant);
+	} else {
+		p += sprintf(p, "# ap f/w: id=0x%02x %d.%d.%d\n",
+			     hw->ident_sta_fw.id, hw->ident_sta_fw.major,
+			     hw->ident_sta_fw.minor, hw->ident_sta_fw.variant);
+	}
+
+#if (WLAN_HOSTIF != WLAN_USB)
+	p += sprintf(p, "# initial nic hw type, needed for SSF ramdl\n");
+	p += sprintf(p, "initnichw=%04x\n", hwtype);
+#endif
+
+ exit:
+	DBFEXIT;
+	return (p - page);
+}
+#endif
+
+void prism2sta_commsqual_defer(struct work_struct *data)
+{
+	hfa384x_t		*hw = container_of(data, struct hfa384x, commsqual_bh);
+        wlandevice_t            *wlandev = hw->wlandev;
+	hfa384x_bytestr32_t ssid;
+	int result = 0;
+
+	DBFENTER;
+
+	if (hw->wlandev->hwremoved)
+		goto done;
+
+	/* we don't care if we're in AP mode */
+	if ((wlandev->macmode == WLAN_MACMODE_NONE) ||
+	    (wlandev->macmode == WLAN_MACMODE_ESS_AP)) {
+		goto done;
+	}
+
+	/* It only makes sense to poll these in non-IBSS */
+	if (wlandev->macmode != WLAN_MACMODE_IBSS_STA) {
+		result = hfa384x_drvr_getconfig(hw, HFA384x_RID_DBMCOMMSQUALITY,
+						&hw->qual,
+						HFA384x_RID_DBMCOMMSQUALITY_LEN);
+
+		if (result) {
+			WLAN_LOG_ERROR("error fetching commsqual\n");
+			goto done;
+		}
+
+		// qual.CQ_currBSS; // link
+		// ASL_currBSS;  // level
+		// qual.ANL_currFC; // noise
+
+		WLAN_LOG_DEBUG(3, "commsqual %d %d %d\n",
+			       hfa384x2host_16(hw->qual.CQ_currBSS),
+			       hfa384x2host_16(hw->qual.ASL_currBSS),
+			       hfa384x2host_16(hw->qual.ANL_currFC));
+	}
+
+	/* Lastly, we need to make sure the BSSID didn't change on us */
+	result = hfa384x_drvr_getconfig(hw,
+					HFA384x_RID_CURRENTBSSID,
+					wlandev->bssid, WLAN_BSSID_LEN);
+	if ( result ) {
+		WLAN_LOG_DEBUG(1,
+			       "getconfig(0x%02x) failed, result = %d\n",
+			       HFA384x_RID_CURRENTBSSID, result);
+		goto done;
+	}
+
+	result = hfa384x_drvr_getconfig(hw,
+					HFA384x_RID_CURRENTSSID,
+					&ssid, sizeof(ssid));
+	if ( result ) {
+		WLAN_LOG_DEBUG(1,
+			       "getconfig(0x%02x) failed, result = %d\n",
+			       HFA384x_RID_CURRENTSSID, result);
+		goto done;
+	}
+	prism2mgmt_bytestr2pstr((hfa384x_bytestr_t *)&ssid,
+				(p80211pstrd_t *) &wlandev->ssid);
+
+
+	/* Reschedule timer */
+	mod_timer(&hw->commsqual_timer, jiffies + HZ);
+
+ done:
+	DBFEXIT;
+}
+
+void prism2sta_commsqual_timer(unsigned long data)
+{
+        hfa384x_t               *hw = (hfa384x_t *) data;
+
+	DBFENTER;
+
+	schedule_work(&hw->commsqual_bh);
+
+	DBFEXIT;
+}
diff --git a/drivers/staging/wlan-ng/version.h b/drivers/staging/wlan-ng/version.h
new file mode 100644
index 0000000..305f882
--- /dev/null
+++ b/drivers/staging/wlan-ng/version.h
@@ -0,0 +1,64 @@
+/* src/include/wlan/version.h
+*
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*/
+#ifndef _WLAN_VERSION_H
+#define _WLAN_VERSION_H
+#ifndef KERNEL_VERSION
+#define KERNEL_VERSION(a,b,c) (((a) << 16) + ((b) << 8) + (c))
+#endif
+
+/* WLAN_HOSTIF (generally set on the command line, not detected) */
+#define WLAN_NONE                       0
+#define WLAN_PCMCIA                     1
+#define WLAN_ISA                        2
+#define WLAN_PCI                        3
+#define WLAN_USB                        4
+#define WLAN_PLX                        5
+#define WLAN_SLAVE                      6
+#define WLAN_RELEASE	"0.2.8"
+#define WLAN_RELEASE_CODE 0x000208
+#define WLAN_BUILD_DATE "Thu Oct  2 11:04:42 PDT 2008"
+
+#endif
diff --git a/drivers/staging/wlan-ng/wlan_compat.h b/drivers/staging/wlan-ng/wlan_compat.h
new file mode 100644
index 0000000..1702657
--- /dev/null
+++ b/drivers/staging/wlan-ng/wlan_compat.h
@@ -0,0 +1,757 @@
+/* wlan_compat.h
+*
+* Types and macros to aid in portability
+*
+* Copyright (C) 1999 AbsoluteValue Systems, Inc.  All Rights Reserved.
+* --------------------------------------------------------------------
+*
+* linux-wlan
+*
+*   The contents of this file are subject to the Mozilla Public
+*   License Version 1.1 (the "License"); you may not use this file
+*   except in compliance with the License. You may obtain a copy of
+*   the License at http://www.mozilla.org/MPL/
+*
+*   Software distributed under the License is distributed on an "AS
+*   IS" basis, WITHOUT WARRANTY OF ANY KIND, either express or
+*   implied. See the License for the specific language governing
+*   rights and limitations under the License.
+*
+*   Alternatively, the contents of this file may be used under the
+*   terms of the GNU Public License version 2 (the "GPL"), in which
+*   case the provisions of the GPL are applicable instead of the
+*   above.  If you wish to allow the use of your version of this file
+*   only under the terms of the GPL and not to allow others to use
+*   your version of this file under the MPL, indicate your decision
+*   by deleting the provisions above and replace them with the notice
+*   and other provisions required by the GPL.  If you do not delete
+*   the provisions above, a recipient may use your version of this
+*   file under either the MPL or the GPL.
+*
+* --------------------------------------------------------------------
+*
+* Inquiries regarding the linux-wlan Open Source project can be
+* made directly to:
+*
+* AbsoluteValue Systems Inc.
+* info@linux-wlan.com
+* http://www.linux-wlan.com
+*
+* --------------------------------------------------------------------
+*
+* Portions of the development of this software were funded by
+* Intersil Corporation as part of PRISM(R) chipset product development.
+*
+* --------------------------------------------------------------------
+*/
+
+#ifndef _WLAN_COMPAT_H
+#define _WLAN_COMPAT_H
+
+/*=============================================================*/
+/*------ Establish Platform Identity --------------------------*/
+/*=============================================================*/
+/* Key macros: */
+/* WLAN_CPU_FAMILY */
+	#define WLAN_Ix86			1
+	#define WLAN_PPC			2
+	#define WLAN_Ix96			3
+	#define WLAN_ARM			4
+	#define WLAN_ALPHA			5
+	#define WLAN_MIPS			6
+	#define WLAN_HPPA			7
+	#define WLAN_SPARC			8
+	#define WLAN_SH    			9
+	#define WLAN_x86_64                     10
+/* WLAN_SYSARCH */
+	#define WLAN_PCAT			1
+	#define WLAN_MBX			2
+	#define WLAN_RPX			3
+	#define WLAN_LWARCH			4
+	#define WLAN_PMAC			5
+	#define WLAN_SKIFF			6
+	#define WLAN_BITSY			7
+	#define WLAN_ALPHAARCH			7
+	#define WLAN_MIPSARCH			9
+	#define WLAN_HPPAARCH			10
+	#define WLAN_SPARCARCH			11
+	#define WLAN_SHARCH   			12
+
+/* Note: the PLX HOSTIF above refers to some vendors implementations for */
+/*       PCI.  It's a PLX chip that is a PCI to PCMCIA adapter, but it   */
+/*       isn't a real PCMCIA host interface adapter providing all the    */
+/*       card&socket services.                                           */
+
+#if (defined(CONFIG_PPC) || defined(CONFIG_8xx) || defined(__powerpc__))
+#ifndef __ppc__
+#define __ppc__
+#endif
+#endif
+
+#if defined(__KERNEL__)
+
+#ifndef AUTOCONF_INCLUDED
+#include <linux/config.h>
+#endif
+
+#if defined(__x86_64__)
+	#define WLAN_CPU_FAMILY		WLAN_x86_64
+	#define WLAN_SYSARCH		WLAN_PCAT
+#elif defined(__i386__) || defined(__i486__) || defined(__i586__) || defined(__i686__)
+	#define WLAN_CPU_FAMILY		WLAN_Ix86
+	#define WLAN_SYSARCH		WLAN_PCAT
+#elif defined(__ppc__)
+	#define WLAN_CPU_FAMILY		WLAN_PPC
+	#if defined(CONFIG_MBX)
+		#define WLAN_SYSARCH	WLAN_MBX
+	#elif defined(CONFIG_RPXLITE)
+		#define WLAN_SYSARCH	WLAN_RPX
+	#elif defined(CONFIG_RPXCLASSIC)
+		#define WLAN_SYSARCH	WLAN_RPX
+	#else
+		#define WLAN_SYSARCH	WLAN_PMAC
+	#endif
+#elif defined(__arm__)
+	#define WLAN_CPU_FAMILY		WLAN_ARM
+	#define WLAN_SYSARCH		WLAN_SKIFF
+#elif defined(__alpha__)
+	#define WLAN_CPU_FAMILY		WLAN_ALPHA
+	#define WLAN_SYSARCH		WLAN_ALPHAARCH
+#elif defined(__mips__)
+	#define WLAN_CPU_FAMILY		WLAN_MIPS
+	#define WLAN_SYSARCH		WLAN_MIPSARCH
+#elif defined(__hppa__)
+	#define WLAN_CPU_FAMILY		WLAN_HPPA
+	#define WLAN_SYSARCH		WLAN_HPPAARCH
+#elif defined(__sparc__)
+        #define WLAN_CPU_FAMILY         WLAN_SPARC
+        #define WLAN_SYSARCH            WLAN_SPARC
+#elif defined(__sh__)
+        #define WLAN_CPU_FAMILY         WLAN_SH
+        #define WLAN_SYSARCH            WLAN_SHARCH
+        #ifndef __LITTLE_ENDIAN__
+        #define __LITTLE_ENDIAN__
+        #endif
+#else
+	#error "No CPU identified!"
+#endif
+#endif /* __KERNEL__ */
+
+/*
+   Some big endian machines implicitly do all I/O in little endian mode.
+
+   In particular:
+          Linux/PPC on PowerMacs (PCI)
+	  Arm/Intel Xscale (PCI)
+
+   This may also affect PLX boards and other BE &| PPC platforms;
+   as new ones are discovered, add them below.
+*/
+
+#if defined(WLAN_HOSTIF)
+#if ((WLAN_HOSTIF == WLAN_PCI) || (WLAN_HOSTIF == WLAN_PLX))
+#if ((WLAN_SYSARCH == WLAN_SKIFF) || (WLAN_SYSARCH == WLAN_PMAC) || (WLAN_SYSARCH == WLAN_SPARC))
+#define REVERSE_ENDIAN
+#endif
+#endif
+#endif
+
+/*=============================================================*/
+/*------ Bit settings -----------------------------------------*/
+/*=============================================================*/
+
+#define BIT0	0x00000001
+#define BIT1	0x00000002
+#define BIT2	0x00000004
+#define BIT3	0x00000008
+#define BIT4	0x00000010
+#define BIT5	0x00000020
+#define BIT6	0x00000040
+#define BIT7	0x00000080
+#define BIT8	0x00000100
+#define BIT9	0x00000200
+#define BIT10	0x00000400
+#define BIT11	0x00000800
+#define BIT12	0x00001000
+#define BIT13	0x00002000
+#define BIT14	0x00004000
+#define BIT15	0x00008000
+#define BIT16	0x00010000
+#define BIT17	0x00020000
+#define BIT18	0x00040000
+#define BIT19	0x00080000
+#define BIT20	0x00100000
+#define BIT21	0x00200000
+#define BIT22	0x00400000
+#define BIT23	0x00800000
+#define BIT24	0x01000000
+#define BIT25	0x02000000
+#define BIT26	0x04000000
+#define BIT27	0x08000000
+#define BIT28	0x10000000
+#define BIT29	0x20000000
+#define BIT30	0x40000000
+#define BIT31	0x80000000
+
+#include <linux/types.h>
+
+typedef u_int8_t	UINT8;
+typedef u_int16_t	UINT16;
+typedef u_int32_t	UINT32;
+
+typedef int8_t		INT8;
+typedef int16_t		INT16;
+typedef int32_t		INT32;
+
+typedef unsigned int    UINT;
+typedef signed int      INT;
+
+typedef u_int64_t	UINT64;
+typedef int64_t		INT64;
+
+#define UINT8_MAX	(0xffUL)
+#define UINT16_MAX	(0xffffUL)
+#define UINT32_MAX	(0xffffffffUL)
+
+#define INT8_MAX	(0x7fL)
+#define INT16_MAX	(0x7fffL)
+#define INT32_MAX	(0x7fffffffL)
+
+/*=============================================================*/
+/*------ Compiler Portability Macros --------------------------*/
+/*=============================================================*/
+#define __WLAN_ATTRIB_PACK__		__attribute__ ((packed))
+
+/*=============================================================*/
+/*------ OS Portability Macros --------------------------------*/
+/*=============================================================*/
+
+#ifndef WLAN_DBVAR
+#define WLAN_DBVAR	wlan_debug
+#endif
+
+#ifndef KERNEL_VERSION
+#define KERNEL_VERSION(a,b,c) (((a) << 16) + ((b) << 8) + (c))
+#endif
+
+#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,0))
+#  if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,8))
+#    include <linux/hardirq.h>
+#  else
+#    include <asm/hardirq.h>
+#  endif
+#elif defined(__KERNEL__)
+#  define PREEMPT_MASK  (0x000000FFUL)
+#  define preempt_count() (0UL)
+#endif
+
+#define WLAN_LOG_ERROR(x,args...) printk(KERN_ERR "%s: " x , __FUNCTION__ , ##args);
+
+#define WLAN_LOG_WARNING(x,args...) printk(KERN_WARNING "%s: " x , __FUNCTION__ , ##args);
+
+#define WLAN_LOG_NOTICE(x,args...) printk(KERN_NOTICE "%s: " x , __FUNCTION__ , ##args);
+
+#define WLAN_LOG_INFO(args... ) printk(KERN_INFO args)
+
+#if defined(WLAN_INCLUDE_DEBUG)
+	#define WLAN_ASSERT(c) if ((!(c)) && WLAN_DBVAR >= 1) { \
+		WLAN_LOG_DEBUG(1, "Assertion failure!\n"); }
+	#define WLAN_HEX_DUMP( l, x, p, n)	if( WLAN_DBVAR >= (l) ){ \
+		int __i__; \
+		printk(KERN_DEBUG x ":"); \
+		for( __i__=0; __i__ < (n); __i__++) \
+			printk( " %02x", ((UINT8*)(p))[__i__]); \
+		printk("\n"); }
+	#define DBFENTER { if ( WLAN_DBVAR >= 5 ){ WLAN_LOG_DEBUG(3,"---->\n"); } }
+	#define DBFEXIT  { if ( WLAN_DBVAR >= 5 ){ WLAN_LOG_DEBUG(3,"<----\n"); } }
+
+	#define WLAN_LOG_DEBUG(l,x,args...) if ( WLAN_DBVAR >= (l)) printk(KERN_DEBUG "%s(%lu): " x ,  __FUNCTION__, (preempt_count() & PREEMPT_MASK), ##args );
+#else
+	#define WLAN_ASSERT(c)
+	#define WLAN_HEX_DUMP( l, s, p, n)
+	#define DBFENTER
+	#define DBFEXIT
+
+	#define WLAN_LOG_DEBUG(l, s, args...)
+#endif
+
+#ifdef CONFIG_SMP
+#define __SMP__			1
+#endif
+
+#if defined(__KERNEL__)
+
+#if ((LINUX_VERSION_CODE < KERNEL_VERSION(2,5,0)) || (LINUX_VERSION_CODE >= KERNEL_VERSION(2,6,19)))
+#define URB_ONLY_CALLBACK
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,19))
+#define PT_REGS    , struct pt_regs *regs
+#else
+#define PT_REGS
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,7))
+#  define del_singleshot_timer_sync(a)  del_timer_sync(a)
+#endif
+
+#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,4,17))
+#define CONFIG_NETLINK		1
+#endif
+
+#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,4,0))
+#define kfree_s(a, b)	kfree((a))
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,2,18))
+#ifndef init_waitqueue_head
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,0,16))
+#define init_waitqueue_head(p)  (*(p) = NULL)
+#else
+#define init_waitqueue_head(p)  init_waitqueue(p)
+#endif
+typedef struct wait_queue *wait_queue_head_t;
+typedef struct wait_queue wait_queue_t;
+#define set_current_state(b)  { current->state = (b); mb(); }
+#define init_waitqueue_entry(a, b) { (a)->task = current; }
+#endif
+#endif
+
+#ifndef wait_event_interruptible_timeout
+// retval == 0; signal met; we're good.
+// retval < 0; interrupted by signal.
+// retval > 0; timed out.
+
+#if (LINUX_VERSION_CODE >= KERNEL_VERSION(2,4,0))  // fixme?
+
+#define __wait_event_interruptible_timeout(wq, condition, ret)            \
+do {                                                                      \
+          wait_queue_t __wait;                                            \
+          init_waitqueue_entry(&__wait, current);                         \
+	                                                                  \
+          add_wait_queue(&wq, &__wait);                                   \
+          for (;;) {                                                      \
+                  set_current_state(TASK_INTERRUPTIBLE);                  \
+                  if (condition)                                          \
+                          break;                                          \
+                  if (!signal_pending(current)) {                         \
+                          ret = schedule_timeout(ret)    ;                \
+                          if (!ret)                                       \
+                                 break;                                   \
+                          continue;                                       \
+                  }                                                       \
+                  ret = -ERESTARTSYS;                                     \
+                  break;                                                  \
+          }                                                               \
+          set_current_state(TASK_RUNNING);                                \
+          remove_wait_queue(&wq, &__wait);                                \
+} while (0)
+
+#else // 2.2
+
+
+#define __wait_event_interruptible_timeout(wq, condition, ret)          \
+do {                                                                    \
+        struct wait_queue __wait;                                       \
+                                                                        \
+        __wait.task = current;                                          \
+        add_wait_queue(&wq, &__wait);                                   \
+        for (;;) {                                                      \
+                current->state = TASK_INTERRUPTIBLE;                    \
+                if (condition)                                          \
+                        break;                                          \
+                if (!signal_pending(current)) {                         \
+                        ret = schedule_timeout(ret);                    \
+                        if (!ret)                                       \
+                               break;                                   \
+                        continue;                                       \
+                }                                                       \
+                ret = -ERESTARTSYS;                                     \
+                break;                                                  \
+        }                                                               \
+        current->state = TASK_RUNNING;                                  \
+        remove_wait_queue(&wq, &__wait);                                \
+} while (0)
+
+#endif  // version >= 2.4
+
+#define wait_event_interruptible_timeout(wq, condition, timeout)	  \
+({									  \
+	long __ret = timeout;						  \
+	if (!(condition))						  \
+		__wait_event_interruptible_timeout(wq, condition, __ret); \
+	__ret;								  \
+})
+
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,4,20))
+#ifdef _LINUX_LIST_H
+
+static inline void list_move_tail(struct list_head *list,
+          struct list_head *head)
+{
+        __list_del(list->prev, list->next);
+        list_add_tail(list, head);
+}
+
+static inline void __list_splice(struct list_head *list,
+				 struct list_head *head)
+{
+      struct list_head *first = list->next;
+      struct list_head *last = list->prev;
+      struct list_head *at = head->next;
+
+      first->prev = head;
+      head->next = first;
+
+      last->next = at;
+      at->prev = last;
+}
+
+static inline void list_move(struct list_head *list, struct list_head *head)
+{
+      __list_del(list->prev, list->next);
+      list_add(list, head);
+}
+
+static inline void list_splice_init(struct list_head *list,
+            struct list_head *head)
+{
+	if (!list_empty(list)) {
+		__list_splice(list, head);
+		INIT_LIST_HEAD(list);
+	}
+}
+
+
+#endif  // LIST_H
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,1,90))
+#define spin_lock(l)            do { } while (0)
+#define spin_unlock(l)          do { } while (0)
+#define spin_lock_irqsave(l,f)  do { save_flags(f); cli(); } while (0)
+#define spin_unlock_irqrestore(l,f) do { restore_flags(f); } while (0)
+#define spin_lock_init(s)       do { } while (0)
+#define spin_trylock(l)         (1)
+typedef int spinlock_t;
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,4,0)) // XXX ???
+#define spin_lock_bh         spin_lock
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,4,0))
+#ifdef CONFIG_SMP
+#define spin_is_locked(x)       (*(volatile char *)(&(x)->lock) <= 0)
+#else
+#define spin_is_locked(l)       (0)
+#endif
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,4,28))
+#define __user
+#define __iomem
+#endif
+
+#ifdef _LINUX_PROC_FS_H
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,3,25))
+
+extern inline struct proc_dir_entry *
+create_proc_read_entry(const char *name, mode_t mode,
+                       struct proc_dir_entry *base,
+                       read_proc_t *read_proc, void *data)
+{
+    struct proc_dir_entry *res = create_proc_entry(name, mode, base);
+    if (res) {
+        res->read_proc = read_proc;
+        res->data = data;
+    }
+    return res;
+}
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,3,29))
+#ifndef proc_mkdir
+#define proc_mkdir(name, root) create_proc_entry(name, S_IFDIR, root)
+#endif
+#endif
+#endif /* _LINUX_PROC_FS_H */
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,5,0))
+#ifndef INIT_TQUEUE
+#define PREPARE_TQUEUE(_tq, _routine, _data)                    \
+        do {                                                    \
+                (_tq)->routine = _routine;                      \
+                (_tq)->data = _data;                            \
+        } while (0)
+#define INIT_TQUEUE(_tq, _routine, _data)                       \
+        do {                                                    \
+                INIT_LIST_HEAD(&(_tq)->list);                   \
+                (_tq)->sync = 0;                                \
+                PREPARE_TQUEUE((_tq), (_routine), (_data));     \
+        } while (0)
+#endif
+
+#ifndef container_of
+#define container_of(ptr, type, member) ({			\
+        const typeof( ((type *)0)->member ) *__mptr = (ptr);	\
+        (type *)( (char *)__mptr - offsetof(type,member) );})
+#endif
+
+#ifndef INIT_WORK
+#define work_struct tq_struct
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,4,0))
+#define schedule_work(a)   queue_task(a, &tq_scheduler)
+#else
+#define schedule_work(a)  schedule_task(a)
+#endif
+
+#define flush_scheduled_work  flush_scheduled_tasks
+#define INIT_WORK2(_wq, _routine)  INIT_TQUEUE(_wq, (void (*)(void *))_routine, _wq)
+#endif
+
+#else // >= 2.5 kernel
+
+#if LINUX_VERSION_CODE < KERNEL_VERSION(2,6,20)
+#define INIT_WORK2(_wq, _routine)	INIT_WORK(_wq, (void (*)(void *))_routine, _wq)
+#else
+#define INIT_WORK2(_wq, _routine)	INIT_WORK(_wq, _routine)
+#endif
+
+#endif // >= 2.5 kernel
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,3,38))
+typedef struct device netdevice_t;
+#elif (LINUX_VERSION_CODE < KERNEL_VERSION(2,4,4))
+typedef struct net_device netdevice_t;
+#else
+#undef netdevice_t
+typedef struct net_device netdevice_t;
+#endif
+
+#ifdef WIRELESS_EXT
+#if (WIRELESS_EXT < 13)
+struct iw_request_info
+{
+        __u16           cmd;            /* Wireless Extension command */
+        __u16           flags;          /* More to come ;-) */
+};
+#endif
+#endif
+
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,1,18))
+#define MODULE_PARM(a,b)        extern int __bogus_decl
+#define MODULE_AUTHOR(a)        extern int __bogus_decl
+#define MODULE_DESCRIPTION(a)   extern int __bogus_decl
+#define MODULE_SUPPORTED_DEVICE(a) extern int __bogus_decl
+#undef  GET_USE_COUNT
+#define GET_USE_COUNT(m)        mod_use_count_
+#endif
+
+#ifndef MODULE_OWNER
+#define MODULE_OWNER(a)         extern int __bogus_decl
+#define ANCIENT_MODULE_CODE
+#endif
+
+#ifndef MODULE_LICENSE
+#define MODULE_LICENSE(m)       extern int __bogus_decl
+#endif
+
+/* TODO:  Do we care about this? */
+#ifndef MODULE_DEVICE_TABLE
+#define MODULE_DEVICE_TABLE(foo,bar)
+#endif
+
+#define wlan_minutes2ticks(a) ((a)*(wlan_ticks_per_sec *  60))
+#define wlan_seconds2ticks(a) ((a)*(wlan_ticks_per_sec))
+
+#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,5,47))
+#define NEW_MODULE_CODE
+#ifdef ANCIENT_MODULE_CODE
+#undef ANCIENT_MODULE_CODE
+#endif
+#elif (LINUX_VERSION_CODE < KERNEL_VERSION(2,4,25))
+#define module_param(name, type, perm)                                       \
+        static inline void *__check_existence_##name(void) { return &name; } \
+        MODULE_PARM(name, _MODULE_PARM_STRING_ ## type)
+
+#define _MODULE_PARM_STRING_byte "b"
+#define _MODULE_PARM_STRING_short "h"
+#define _MODULE_PARM_STRING_ushort "h"
+#define _MODULE_PARM_STRING_int "i"
+#define _MODULE_PARM_STRING_uint "i"
+#define _MODULE_PARM_STRING_long "l"
+#define _MODULE_PARM_STRING_ulong "l"
+#define _MODULE_PARM_STRING_bool "i"
+#endif
+
+/* linux < 2.5.69 */
+#ifndef IRQ_NONE
+typedef void irqreturn_t;
+#define IRQ_NONE
+#define IRQ_HANDLED
+#define IRQ_RETVAL(x)
+#endif
+
+#ifndef in_atomic
+#define in_atomic()  0
+#endif
+
+#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,13))
+#define URB_ASYNC_UNLINK 0
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,7))
+#define URB_ASYNC_UNLINK  USB_ASYNC_UNLINK
+#define usb_fill_bulk_urb  FILL_BULK_URB
+#define usb_kill_urb  usb_unlink_urb
+#else
+#define USB_QUEUE_BULK 0
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,11))
+typedef u32 pm_message_t;
+#endif
+
+#if (LINUX_VERSION_CODE > KERNEL_VERSION(2,6,9))
+#define hotplug_path  "/etc/hotplug/wlan.agent"
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,0))
+#define free_netdev(x)       kfree(x)
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,6,9))
+#define eth_hdr(x)           (x)->mac.ethernet
+#endif
+
+#if (LINUX_VERSION_CODE < KERNEL_VERSION(2,4,0))
+#define del_timer_sync(a)       del_timer(a)
+#endif
+
+#ifndef might_sleep
+#define might_sleep(a)   do { } while (0)
+#endif
+
+/* Apparently 2.4.2 ethtool is quite different, maybe newer too? */
+#if (defined(SIOETHTOOL) && !defined(ETHTOOL_GDRVINFO))
+#undef SIOETHTOOL
+#endif
+
+// pcmcia-cs stuff
+#if ((LINUX_VERSION_CODE < KERNEL_VERSION(2,5,68)) && \
+     !defined(pcmcia_access_configuration_register))
+#define pcmcia_access_configuration_register(handle, reg) \
+        CardServices(AccessConfigurationRegister, handle, reg)
+#define pcmcia_register_client(handle, reg) \
+        CardServices(RegisterClient, handle, reg)
+#define pcmcia_deregister_client(handle) \
+        CardServices(DeregisterClient, handle)
+#define pcmcia_get_first_tuple(handle, tuple) \
+        CardServices(GetFirstTuple, handle, tuple)
+#define pcmcia_get_next_tuple(handle, tuple) \
+        CardServices(GetNextTuple, handle, tuple)
+#define pcmcia_get_tuple_data(handle, tuple) \
+        CardServices(GetTupleData, handle, tuple)
+#define pcmcia_parse_tuple(handle, tuple, parse) \
+        CardServices(ParseTuple, handle, tuple, parse)
+#define pcmcia_get_configuration_info(handle, config) \
+        CardServices(GetConfigurationInfo, handle, config)
+#define pcmcia_request_io(handle, req) \
+        CardServices(RequestIO, handle, req)
+#define pcmcia_request_irq(handle, req) \
+        CardServices(RequestIRQ, handle, req)
+#define pcmcia_request_configuration(handle, req) \
+        CardServices(RequestConfiguration, handle, req)
+#define pcmcia_release_configuration(handle) \
+        CardServices(ReleaseConfiguration, handle)
+#define pcmcia_release_io(handle, req) \
+        CardServices(ReleaseIO, handle, req)
+#define pcmcia_release_irq(handle, req) \
+        CardServices(ReleaseIRQ, handle, req)
+#define pcmcia_release_window(win) \
+        CardServices(ReleaseWindow, win)
+#define pcmcia_get_card_services_info(info) \
+        CardServices(GetCardServicesInfo, info)
+#define pcmcia_report_error(handle, err) \
+        CardServices(ReportError, handle, err)
+#endif
+
+#endif /* __KERNEL__ */
+
+/*=============================================================*/
+/*------ Hardware Portability Macros --------------------------*/
+/*=============================================================*/
+
+#define ieee2host16(n)	__le16_to_cpu(n)
+#define ieee2host32(n)	__le32_to_cpu(n)
+#define host2ieee16(n)	__cpu_to_le16(n)
+#define host2ieee32(n)	__cpu_to_le32(n)
+
+#if (WLAN_CPU_FAMILY != WLAN_MIPS)
+typedef UINT32 phys_t;
+#endif
+
+#if (WLAN_CPU_FAMILY == WLAN_PPC)
+       #define wlan_inw(a)                     in_be16((unsigned short *)((a)+_IO_BASE))
+       #define wlan_inw_le16_to_cpu(a)         inw((a))
+       #define wlan_outw(v,a)                  out_be16((unsigned short *)((a)+_IO_BASE), (v))
+       #define wlan_outw_cpu_to_le16(v,a)      outw((v),(a))
+#else
+       #define wlan_inw(a)                     inw((a))
+       #define wlan_inw_le16_to_cpu(a)         __cpu_to_le16(inw((a)))
+       #define wlan_outw(v,a)                  outw((v),(a))
+       #define wlan_outw_cpu_to_le16(v,a)      outw(__cpu_to_le16((v)),(a))
+#endif
+
+/*=============================================================*/
+/*--- General Macros ------------------------------------------*/
+/*=============================================================*/
+
+#define wlan_max(a, b) (((a) > (b)) ? (a) : (b))
+#define wlan_min(a, b) (((a) < (b)) ? (a) : (b))
+
+#define wlan_isprint(c)	(((c) > (0x19)) && ((c) < (0x7f)))
+
+#define wlan_hexchar(x) (((x) < 0x0a) ? ('0' + (x)) : ('a' + ((x) - 0x0a)))
+
+/* Create a string of printable chars from something that might not be */
+/* It's recommended that the str be 4*len + 1 bytes long */
+#define wlan_mkprintstr(buf, buflen, str, strlen) \
+{ \
+	int i = 0; \
+	int j = 0; \
+	memset(str, 0, (strlen)); \
+	for (i = 0; i < (buflen); i++) { \
+		if ( wlan_isprint((buf)[i]) ) { \
+			(str)[j] = (buf)[i]; \
+			j++; \
+		} else { \
+			(str)[j] = '\\'; \
+			(str)[j+1] = 'x'; \
+			(str)[j+2] = wlan_hexchar(((buf)[i] & 0xf0) >> 4); \
+			(str)[j+3] = wlan_hexchar(((buf)[i] & 0x0f)); \
+			j += 4; \
+		} \
+	} \
+}
+
+/*=============================================================*/
+/*--- Variables -----------------------------------------------*/
+/*=============================================================*/
+
+#ifdef WLAN_INCLUDE_DEBUG
+extern int wlan_debug;
+#endif
+
+extern int wlan_ethconv;		/* What's the default ethconv? */
+
+/*=============================================================*/
+/*--- Functions -----------------------------------------------*/
+/*=============================================================*/
+#endif /* _WLAN_COMPAT_H */
+
diff --git a/drivers/usb/atm/usbatm.c b/drivers/usb/atm/usbatm.c
index 0da2c25..06dd114 100644
--- a/drivers/usb/atm/usbatm.c
+++ b/drivers/usb/atm/usbatm.c
@@ -344,7 +344,7 @@
 				__func__, sarb->len, vcc);
 		/* discard cells already received */
 		skb_trim(sarb, 0);
-		UDSL_ASSERT(sarb->tail + ATM_CELL_PAYLOAD <= sarb->end);
+		UDSL_ASSERT(instance, sarb->tail + ATM_CELL_PAYLOAD <= sarb->end);
 	}
 
 	memcpy(skb_tail_pointer(sarb), source + ATM_CELL_HEADER, ATM_CELL_PAYLOAD);
@@ -432,7 +432,7 @@
 		unsigned char *cell_buf = instance->cell_buf;
 		unsigned int space_left = stride - buf_usage;
 
-		UDSL_ASSERT(buf_usage <= stride);
+		UDSL_ASSERT(instance, buf_usage <= stride);
 
 		if (avail_data >= space_left) {
 			/* add new data and process cell */
@@ -475,7 +475,7 @@
 	unsigned int stride = instance->tx_channel.stride;
 
 	vdbg("%s: skb->len=%d, avail_space=%u", __func__, skb->len, avail_space);
-	UDSL_ASSERT(!(avail_space % stride));
+	UDSL_ASSERT(instance, !(avail_space % stride));
 
 	for (bytes_written = 0; bytes_written < avail_space && ctrl->len;
 	     bytes_written += stride, target += stride) {
@@ -547,7 +547,7 @@
 				if (!urb->iso_frame_desc[i].status) {
 					unsigned int actual_length = urb->iso_frame_desc[i].actual_length;
 
-					UDSL_ASSERT(actual_length <= packet_size);
+					UDSL_ASSERT(instance, actual_length <= packet_size);
 
 					if (!merge_length)
 						merge_start = (unsigned char *)urb->transfer_buffer + urb->iso_frame_desc[i].offset;
@@ -1188,7 +1188,7 @@
 		struct urb *urb;
 		unsigned int iso_packets = usb_pipeisoc(channel->endpoint) ? channel->buf_size / channel->packet_size : 0;
 
-		UDSL_ASSERT(!usb_pipeisoc(channel->endpoint) || usb_pipein(channel->endpoint));
+		UDSL_ASSERT(instance, !usb_pipeisoc(channel->endpoint) || usb_pipein(channel->endpoint));
 
 		urb = usb_alloc_urb(iso_packets, GFP_KERNEL);
 		if (!urb) {
diff --git a/drivers/usb/atm/usbatm.h b/drivers/usb/atm/usbatm.h
index e6887c6..f6f4508 100644
--- a/drivers/usb/atm/usbatm.h
+++ b/drivers/usb/atm/usbatm.h
@@ -40,9 +40,15 @@
 */
 
 #ifdef DEBUG
-#define UDSL_ASSERT(x)	BUG_ON(!(x))
+#define UDSL_ASSERT(instance, x)	BUG_ON(!(x))
 #else
-#define UDSL_ASSERT(x)	do { if (!(x)) warn("failed assertion '%s' at line %d", __stringify(x), __LINE__); } while(0)
+#define UDSL_ASSERT(instance, x)					\
+	do {	\
+		if (!(x))						\
+			dev_warn(&(instance)->usb_intf->dev,		\
+				 "failed assertion '%s' at line %d",	\
+				 __stringify(x), __LINE__);		\
+	} while(0)
 #endif
 
 #define usb_err(instance, format, arg...)	\
diff --git a/drivers/usb/atm/xusbatm.c b/drivers/usb/atm/xusbatm.c
index 8472543..17d167b 100644
--- a/drivers/usb/atm/xusbatm.c
+++ b/drivers/usb/atm/xusbatm.c
@@ -193,7 +193,7 @@
 	    num_vendor != num_product ||
 	    num_vendor != num_rx_endpoint ||
 	    num_vendor != num_tx_endpoint) {
-		warn("malformed module parameters");
+		printk(KERN_WARNING "xusbatm: malformed module parameters\n");
 		return -EINVAL;
 	}
 
diff --git a/drivers/usb/class/Kconfig b/drivers/usb/class/Kconfig
index 66f17ed..2519e32 100644
--- a/drivers/usb/class/Kconfig
+++ b/drivers/usb/class/Kconfig
@@ -40,3 +40,13 @@
 	  To compile this driver as a module, choose M here: the
 	  module will be called cdc-wdm.
 
+config USB_TMC
+	tristate "USB Test and Measurement Class support"
+	depends on USB
+	help
+	  Say Y here if you want to connect a USB device that follows
+	  the USB.org specification for USB Test and Measurement devices
+	  to your computer's USB port.
+
+	  To compile this driver as a module, choose M here: the
+	  module will be called usbtmc.
diff --git a/drivers/usb/class/Makefile b/drivers/usb/class/Makefile
index 535d59a..32e8527 100644
--- a/drivers/usb/class/Makefile
+++ b/drivers/usb/class/Makefile
@@ -6,3 +6,4 @@
 obj-$(CONFIG_USB_ACM)		+= cdc-acm.o
 obj-$(CONFIG_USB_PRINTER)	+= usblp.o
 obj-$(CONFIG_USB_WDM)		+= cdc-wdm.o
+obj-$(CONFIG_USB_TMC)		+= usbtmc.o
diff --git a/drivers/usb/class/cdc-acm.c b/drivers/usb/class/cdc-acm.c
index c257453..fab23ee 100644
--- a/drivers/usb/class/cdc-acm.c
+++ b/drivers/usb/class/cdc-acm.c
@@ -326,8 +326,8 @@
 	usb_mark_last_busy(acm->dev);
 	retval = usb_submit_urb (urb, GFP_ATOMIC);
 	if (retval)
-		err ("%s - usb_submit_urb failed with result %d",
-		     __func__, retval);
+		dev_err(&urb->dev->dev, "%s - usb_submit_urb failed with "
+			"result %d", __func__, retval);
 }
 
 /* data interface returns incoming bytes, or we got unthrottled */
@@ -514,7 +514,7 @@
 
 	rv = usb_autopm_get_interface(acm->control);
 	if (rv < 0) {
-		err("Autopm failure in %s", __func__);
+		dev_err(&acm->dev->dev, "Autopm failure in %s\n", __func__);
 		return;
 	}
 	if (acm->delayed_wb) {
@@ -924,7 +924,7 @@
 	
 	/* normal probing*/
 	if (!buffer) {
-		err("Weird descriptor references\n");
+		dev_err(&intf->dev, "Weird descriptor references\n");
 		return -EINVAL;
 	}
 
@@ -934,21 +934,24 @@
 			buflen = intf->cur_altsetting->endpoint->extralen;
 			buffer = intf->cur_altsetting->endpoint->extra;
 		} else {
-			err("Zero length descriptor references\n");
+			dev_err(&intf->dev,
+				"Zero length descriptor references\n");
 			return -EINVAL;
 		}
 	}
 
 	while (buflen > 0) {
 		if (buffer [1] != USB_DT_CS_INTERFACE) {
-			err("skipping garbage\n");
+			dev_err(&intf->dev, "skipping garbage\n");
 			goto next_desc;
 		}
 
 		switch (buffer [2]) {
 			case USB_CDC_UNION_TYPE: /* we've found it */
 				if (union_header) {
-					err("More than one union descriptor, skipping ...");
+					dev_err(&intf->dev, "More than one "
+						"union descriptor, "
+						"skipping ...\n");
 					goto next_desc;
 				}
 				union_header = (struct usb_cdc_union_desc *)
@@ -966,7 +969,9 @@
 				call_management_function = buffer[3];
 				call_interface_num = buffer[4];
 				if ((call_management_function & 3) != 3)
-					err("This device cannot do calls on its own. It is no modem.");
+					dev_err(&intf->dev, "This device "
+						"cannot do calls on its own. "
+						"It is no modem.\n");
 				break;
 			default:
 				/* there are LOTS more CDC descriptors that
@@ -1051,7 +1056,7 @@
 	for (minor = 0; minor < ACM_TTY_MINORS && acm_table[minor]; minor++);
 
 	if (minor == ACM_TTY_MINORS) {
-		err("no more free acm devices");
+		dev_err(&intf->dev, "no more free acm devices\n");
 		return -ENODEV;
 	}
 
@@ -1454,7 +1459,8 @@
 		return retval;
 	}
 
-	info(DRIVER_VERSION ":" DRIVER_DESC);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 
 	return 0;
 }
diff --git a/drivers/usb/class/cdc-wdm.c b/drivers/usb/class/cdc-wdm.c
index 7e8e123..7429f70 100644
--- a/drivers/usb/class/cdc-wdm.c
+++ b/drivers/usb/class/cdc-wdm.c
@@ -132,10 +132,12 @@
 				"nonzero urb status received: -ESHUTDOWN");
 			break;
 		case -EPIPE:
-			err("nonzero urb status received: -EPIPE");
+			dev_err(&desc->intf->dev,
+				"nonzero urb status received: -EPIPE\n");
 			break;
 		default:
-			err("Unexpected error %d", status);
+			dev_err(&desc->intf->dev,
+				"Unexpected error %d\n", status);
 			break;
 		}
 	}
@@ -170,16 +172,18 @@
 			return; /* unplug */
 		case -EPIPE:
 			set_bit(WDM_INT_STALL, &desc->flags);
-			err("Stall on int endpoint");
+			dev_err(&desc->intf->dev, "Stall on int endpoint\n");
 			goto sw; /* halt is cleared in work */
 		default:
-			err("nonzero urb status received: %d", status);
+			dev_err(&desc->intf->dev,
+				"nonzero urb status received: %d\n", status);
 			break;
 		}
 	}
 
 	if (urb->actual_length < sizeof(struct usb_cdc_notification)) {
-		err("wdm_int_callback - %d bytes", urb->actual_length);
+		dev_err(&desc->intf->dev, "wdm_int_callback - %d bytes\n",
+			urb->actual_length);
 		goto exit;
 	}
 
@@ -198,7 +202,8 @@
 		goto exit;
 	default:
 		clear_bit(WDM_POLL_RUNNING, &desc->flags);
-		err("unknown notification %d received: index %d len %d",
+		dev_err(&desc->intf->dev,
+			"unknown notification %d received: index %d len %d\n",
 			dr->bNotificationType, dr->wIndex, dr->wLength);
 		goto exit;
 	}
@@ -236,14 +241,16 @@
 sw:
 			rv = schedule_work(&desc->rxwork);
 			if (rv)
-				err("Cannot schedule work");
+				dev_err(&desc->intf->dev,
+					"Cannot schedule work\n");
 		}
 	}
 exit:
 	rv = usb_submit_urb(urb, GFP_ATOMIC);
 	if (rv)
-		err("%s - usb_submit_urb failed with result %d",
-		     __func__, rv);
+		dev_err(&desc->intf->dev,
+			"%s - usb_submit_urb failed with result %d\n",
+			__func__, rv);
 
 }
 
@@ -353,7 +360,7 @@
 	if (rv < 0) {
 		kfree(buf);
 		clear_bit(WDM_IN_USE, &desc->flags);
-		err("Tx URB error: %d", rv);
+		dev_err(&desc->intf->dev, "Tx URB error: %d\n", rv);
 	} else {
 		dev_dbg(&desc->intf->dev, "Tx URB has been submitted index=%d",
 			req->wIndex);
@@ -401,7 +408,8 @@
 			int t = desc->rerr;
 			desc->rerr = 0;
 			spin_unlock_irq(&desc->iuspin);
-			err("reading had resulted in %d", t);
+			dev_err(&desc->intf->dev,
+				"reading had resulted in %d\n", t);
 			rv = -EIO;
 			goto err;
 		}
@@ -440,7 +448,7 @@
 err:
 	mutex_unlock(&desc->rlock);
 	if (rv < 0)
-		err("wdm_read: exit error");
+		dev_err(&desc->intf->dev, "wdm_read: exit error\n");
 	return rv;
 }
 
@@ -450,7 +458,8 @@
 
 	wait_event(desc->wait, !test_bit(WDM_IN_USE, &desc->flags));
 	if (desc->werr < 0)
-		err("Error in flush path: %d", desc->werr);
+		dev_err(&desc->intf->dev, "Error in flush path: %d\n",
+			desc->werr);
 
 	return desc->werr;
 }
@@ -502,7 +511,7 @@
 
 	rv = usb_autopm_get_interface(desc->intf);
 	if (rv < 0) {
-		err("Error autopm - %d", rv);
+		dev_err(&desc->intf->dev, "Error autopm - %d\n", rv);
 		goto out;
 	}
 	intf->needs_remote_wakeup = 1;
@@ -512,7 +521,8 @@
 		rv = usb_submit_urb(desc->validity, GFP_KERNEL);
 		if (rv < 0) {
 			desc->count--;
-			err("Error submitting int urb - %d", rv);
+			dev_err(&desc->intf->dev,
+				"Error submitting int urb - %d\n", rv);
 		}
 	} else {
 		rv = 0;
@@ -600,7 +610,7 @@
 
 	while (buflen > 0) {
 		if (buffer [1] != USB_DT_CS_INTERFACE) {
-			err("skipping garbage");
+			dev_err(&intf->dev, "skipping garbage\n");
 			goto next_desc;
 		}
 
@@ -614,7 +624,8 @@
 				"Finding maximum buffer length: %d", maxcom);
 			break;
 		default:
-			err("Ignoring extra header, type %d, length %d",
+			dev_err(&intf->dev,
+				"Ignoring extra header, type %d, length %d\n",
 				buffer[2], buffer[0]);
 			break;
 		}
@@ -772,7 +783,8 @@
 	if (desc->count) {
 		rv = usb_submit_urb(desc->validity, GFP_NOIO);
 		if (rv < 0)
-			err("Error resume submitting int urb - %d", rv);
+			dev_err(&desc->intf->dev,
+				"Error resume submitting int urb - %d\n", rv);
 	}
 	return rv;
 }
diff --git a/drivers/usb/class/usblp.c b/drivers/usb/class/usblp.c
index 0647164..b5775af 100644
--- a/drivers/usb/class/usblp.c
+++ b/drivers/usb/class/usblp.c
@@ -593,8 +593,9 @@
 				err = usblp_hp_channel_change_request(usblp,
 					arg, &newChannel);
 				if (err < 0) {
-					err("usblp%d: error = %d setting "
-						"HP channel",
+					dev_err(&usblp->dev->dev,
+						"usblp%d: error = %d setting "
+						"HP channel\n",
 						usblp->minor, err);
 					retval = -EIO;
 					goto done;
@@ -1076,15 +1077,16 @@
 		       const struct usb_device_id *id)
 {
 	struct usb_device *dev = interface_to_usbdev (intf);
-	struct usblp *usblp = NULL;
+	struct usblp *usblp;
 	int protocol;
 	int retval;
 
 	/* Malloc and start initializing usblp structure so we can use it
 	 * directly. */
-	if (!(usblp = kzalloc(sizeof(struct usblp), GFP_KERNEL))) {
+	usblp = kzalloc(sizeof(struct usblp), GFP_KERNEL);
+	if (!usblp) {
 		retval = -ENOMEM;
-		goto abort;
+		goto abort_ret;
 	}
 	usblp->dev = dev;
 	mutex_init(&usblp->wmut);
@@ -1179,12 +1181,11 @@
 	usb_set_intfdata (intf, NULL);
 	device_remove_file(&intf->dev, &dev_attr_ieee1284_id);
 abort:
-	if (usblp) {
-		kfree(usblp->readbuf);
-		kfree(usblp->statusbuf);
-		kfree(usblp->device_id_string);
-		kfree(usblp);
-	}
+	kfree(usblp->readbuf);
+	kfree(usblp->statusbuf);
+	kfree(usblp->device_id_string);
+	kfree(usblp);
+abort_ret:
 	return retval;
 }
 
@@ -1345,7 +1346,7 @@
 	usb_deregister_dev(intf, &usblp_class);
 
 	if (!usblp || !usblp->dev) {
-		err("bogus disconnect");
+		dev_err(&intf->dev, "bogus disconnect\n");
 		BUG ();
 	}
 
diff --git a/drivers/usb/class/usbtmc.c b/drivers/usb/class/usbtmc.c
new file mode 100644
index 0000000..543811f
--- /dev/null
+++ b/drivers/usb/class/usbtmc.c
@@ -0,0 +1,1087 @@
+/**
+ * drivers/usb/class/usbtmc.c - USB Test & Measurment class driver
+ *
+ * Copyright (C) 2007 Stefan Kopp, Gechingen, Germany
+ * Copyright (C) 2008 Novell, Inc.
+ * Copyright (C) 2008 Greg Kroah-Hartman <gregkh@suse.de>
+ *
+ * This program is free software; you can redistribute it and/or
+ * modify it under the terms of the GNU General Public License
+ * as published by the Free Software Foundation; either version 2
+ * of the License, or (at your option) any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * The GNU General Public License is available at
+ * http://www.gnu.org/copyleft/gpl.html.
+ */
+
+#include <linux/init.h>
+#include <linux/module.h>
+#include <linux/fs.h>
+#include <linux/uaccess.h>
+#include <linux/kref.h>
+#include <linux/mutex.h>
+#include <linux/usb.h>
+#include <linux/usb/tmc.h>
+
+
+#define USBTMC_MINOR_BASE	176
+
+/*
+ * Size of driver internal IO buffer. Must be multiple of 4 and at least as
+ * large as wMaxPacketSize (which is usually 512 bytes).
+ */
+#define USBTMC_SIZE_IOBUFFER	2048
+
+/* Default USB timeout (in milliseconds) */
+#define USBTMC_TIMEOUT		10
+
+/*
+ * Maximum number of read cycles to empty bulk in endpoint during CLEAR and
+ * ABORT_BULK_IN requests. Ends the loop if (for whatever reason) a short
+ * packet is never read.
+ */
+#define USBTMC_MAX_READS_TO_CLEAR_BULK_IN	100
+
+static struct usb_device_id usbtmc_devices[] = {
+	{ USB_INTERFACE_INFO(USB_CLASS_APP_SPEC, 3, 0), },
+	{ 0, } /* terminating entry */
+};
+
+/*
+ * This structure is the capabilities for the device
+ * See section 4.2.1.8 of the USBTMC specification for details.
+ */
+struct usbtmc_dev_capabilities {
+	__u8 interface_capabilities;
+	__u8 device_capabilities;
+	__u8 usb488_interface_capabilities;
+	__u8 usb488_device_capabilities;
+};
+
+/* This structure holds private data for each USBTMC device. One copy is
+ * allocated for each USBTMC device in the driver's probe function.
+ */
+struct usbtmc_device_data {
+	const struct usb_device_id *id;
+	struct usb_device *usb_dev;
+	struct usb_interface *intf;
+
+	unsigned int bulk_in;
+	unsigned int bulk_out;
+
+	u8 bTag;
+	u8 bTag_last_write;	/* needed for abort */
+	u8 bTag_last_read;	/* needed for abort */
+
+	/* attributes from the USB TMC spec for this device */
+	u8 TermChar;
+	bool TermCharEnabled;
+	bool auto_abort;
+
+	struct usbtmc_dev_capabilities	capabilities;
+	struct kref kref;
+	struct mutex io_mutex;	/* only one i/o function running at a time */
+};
+#define to_usbtmc_data(d) container_of(d, struct usbtmc_device_data, kref)
+
+/* Forward declarations */
+static struct usb_driver usbtmc_driver;
+
+static void usbtmc_delete(struct kref *kref)
+{
+	struct usbtmc_device_data *data = to_usbtmc_data(kref);
+
+	usb_put_dev(data->usb_dev);
+	kfree(data);
+}
+
+static int usbtmc_open(struct inode *inode, struct file *filp)
+{
+	struct usb_interface *intf;
+	struct usbtmc_device_data *data;
+	int retval = -ENODEV;
+
+	intf = usb_find_interface(&usbtmc_driver, iminor(inode));
+	if (!intf) {
+		printk(KERN_ERR KBUILD_MODNAME
+		       ": can not find device for minor %d", iminor(inode));
+		goto exit;
+	}
+
+	data = usb_get_intfdata(intf);
+	kref_get(&data->kref);
+
+	/* Store pointer in file structure's private data field */
+	filp->private_data = data;
+
+exit:
+	return retval;
+}
+
+static int usbtmc_release(struct inode *inode, struct file *file)
+{
+	struct usbtmc_device_data *data = file->private_data;
+
+	kref_put(&data->kref, usbtmc_delete);
+	return 0;
+}
+
+static int usbtmc_ioctl_abort_bulk_in(struct usbtmc_device_data *data)
+{
+	char *buffer;
+	struct device *dev;
+	int rv;
+	int n;
+	int actual;
+	struct usb_host_interface *current_setting;
+	int max_size;
+
+	dev = &data->intf->dev;
+	buffer = kmalloc(USBTMC_SIZE_IOBUFFER, GFP_KERNEL);
+	if (!buffer)
+		return -ENOMEM;
+
+	rv = usb_control_msg(data->usb_dev,
+			     usb_rcvctrlpipe(data->usb_dev, 0),
+			     USBTMC_REQUEST_INITIATE_ABORT_BULK_IN,
+			     USB_DIR_IN | USB_TYPE_CLASS | USB_RECIP_ENDPOINT,
+			     data->bTag_last_read, data->bulk_in,
+			     buffer, 2, USBTMC_TIMEOUT);
+
+	if (rv < 0) {
+		dev_err(dev, "usb_control_msg returned %d\n", rv);
+		goto exit;
+	}
+
+	dev_dbg(dev, "INITIATE_ABORT_BULK_IN returned %x\n", buffer[0]);
+
+	if (buffer[0] == USBTMC_STATUS_FAILED) {
+		rv = 0;
+		goto exit;
+	}
+
+	if (buffer[0] != USBTMC_STATUS_SUCCESS) {
+		dev_err(dev, "INITIATE_ABORT_BULK_IN returned %x\n",
+			buffer[0]);
+		rv = -EPERM;
+		goto exit;
+	}
+
+	max_size = 0;
+	current_setting = data->intf->cur_altsetting;
+	for (n = 0; n < current_setting->desc.bNumEndpoints; n++)
+		if (current_setting->endpoint[n].desc.bEndpointAddress ==
+			data->bulk_in)
+			max_size = le16_to_cpu(current_setting->endpoint[n].
+						desc.wMaxPacketSize);
+
+	if (max_size == 0) {
+		dev_err(dev, "Couldn't get wMaxPacketSize\n");
+		rv = -EPERM;
+		goto exit;
+	}
+
+	dev_dbg(&data->intf->dev, "wMaxPacketSize is %d\n", max_size);
+
+	n = 0;
+
+	do {
+		dev_dbg(dev, "Reading from bulk in EP\n");
+
+		rv = usb_bulk_msg(data->usb_dev,
+				  usb_rcvbulkpipe(data->usb_dev,
+						  data->bulk_in),
+				  buffer, USBTMC_SIZE_IOBUFFER,
+				  &actual, USBTMC_TIMEOUT);
+
+		n++;
+
+		if (rv < 0) {
+			dev_err(dev, "usb_bulk_msg returned %d\n", rv);
+			goto exit;
+		}
+	} while ((actual == max_size) &&
+		 (n < USBTMC_MAX_READS_TO_CLEAR_BULK_IN));
+
+	if (actual == max_size) {
+		dev_err(dev, "Couldn't clear device buffer within %d cycles\n",
+			USBTMC_MAX_READS_TO_CLEAR_BULK_IN);
+		rv = -EPERM;
+		goto exit;
+	}
+
+	n = 0;
+
+usbtmc_abort_bulk_in_status:
+	rv = usb_control_msg(data->usb_dev,
+			     usb_rcvctrlpipe(data->usb_dev, 0),
+			     USBTMC_REQUEST_CHECK_ABORT_BULK_IN_STATUS,
+			     USB_DIR_IN | USB_TYPE_CLASS | USB_RECIP_ENDPOINT,
+			     0, data->bulk_in, buffer, 0x08,
+			     USBTMC_TIMEOUT);
+
+	if (rv < 0) {
+		dev_err(dev, "usb_control_msg returned %d\n", rv);
+		goto exit;
+	}
+
+	dev_dbg(dev, "INITIATE_ABORT_BULK_IN returned %x\n", buffer[0]);
+
+	if (buffer[0] == USBTMC_STATUS_SUCCESS) {
+		rv = 0;
+		goto exit;
+	}
+
+	if (buffer[0] != USBTMC_STATUS_PENDING) {
+		dev_err(dev, "INITIATE_ABORT_BULK_IN returned %x\n", buffer[0]);
+		rv = -EPERM;
+		goto exit;
+	}
+
+	if (buffer[1] == 1)
+		do {
+			dev_dbg(dev, "Reading from bulk in EP\n");
+
+			rv = usb_bulk_msg(data->usb_dev,
+					  usb_rcvbulkpipe(data->usb_dev,
+							  data->bulk_in),
+					  buffer, USBTMC_SIZE_IOBUFFER,
+					  &actual, USBTMC_TIMEOUT);
+
+			n++;
+
+			if (rv < 0) {
+				dev_err(dev, "usb_bulk_msg returned %d\n", rv);
+				goto exit;
+			}
+		} while ((actual = max_size) &&
+			 (n < USBTMC_MAX_READS_TO_CLEAR_BULK_IN));
+
+	if (actual == max_size) {
+		dev_err(dev, "Couldn't clear device buffer within %d cycles\n",
+			USBTMC_MAX_READS_TO_CLEAR_BULK_IN);
+		rv = -EPERM;
+		goto exit;
+	}
+
+	goto usbtmc_abort_bulk_in_status;
+
+exit:
+	kfree(buffer);
+	return rv;
+
+}
+
+static int usbtmc_ioctl_abort_bulk_out(struct usbtmc_device_data *data)
+{
+	struct device *dev;
+	u8 *buffer;
+	int rv;
+	int n;
+
+	dev = &data->intf->dev;
+
+	buffer = kmalloc(8, GFP_KERNEL);
+	if (!buffer)
+		return -ENOMEM;
+
+	rv = usb_control_msg(data->usb_dev,
+			     usb_rcvctrlpipe(data->usb_dev, 0),
+			     USBTMC_REQUEST_INITIATE_ABORT_BULK_OUT,
+			     USB_DIR_IN | USB_TYPE_CLASS | USB_RECIP_ENDPOINT,
+			     data->bTag_last_write, data->bulk_out,
+			     buffer, 2, USBTMC_TIMEOUT);
+
+	if (rv < 0) {
+		dev_err(dev, "usb_control_msg returned %d\n", rv);
+		goto exit;
+	}
+
+	dev_dbg(dev, "INITIATE_ABORT_BULK_OUT returned %x\n", buffer[0]);
+
+	if (buffer[0] != USBTMC_STATUS_SUCCESS) {
+		dev_err(dev, "INITIATE_ABORT_BULK_OUT returned %x\n",
+			buffer[0]);
+		rv = -EPERM;
+		goto exit;
+	}
+
+	n = 0;
+
+usbtmc_abort_bulk_out_check_status:
+	rv = usb_control_msg(data->usb_dev,
+			     usb_rcvctrlpipe(data->usb_dev, 0),
+			     USBTMC_REQUEST_CHECK_ABORT_BULK_OUT_STATUS,
+			     USB_DIR_IN | USB_TYPE_CLASS | USB_RECIP_ENDPOINT,
+			     0, data->bulk_out, buffer, 0x08,
+			     USBTMC_TIMEOUT);
+	n++;
+	if (rv < 0) {
+		dev_err(dev, "usb_control_msg returned %d\n", rv);
+		goto exit;
+	}
+
+	dev_dbg(dev, "CHECK_ABORT_BULK_OUT returned %x\n", buffer[0]);
+
+	if (buffer[0] == USBTMC_STATUS_SUCCESS)
+		goto usbtmc_abort_bulk_out_clear_halt;
+
+	if ((buffer[0] == USBTMC_STATUS_PENDING) &&
+	    (n < USBTMC_MAX_READS_TO_CLEAR_BULK_IN))
+		goto usbtmc_abort_bulk_out_check_status;
+
+	rv = -EPERM;
+	goto exit;
+
+usbtmc_abort_bulk_out_clear_halt:
+	rv = usb_control_msg(data->usb_dev,
+			     usb_sndctrlpipe(data->usb_dev, 0),
+			     USB_REQ_CLEAR_FEATURE,
+			     USB_DIR_OUT | USB_TYPE_STANDARD |
+			     USB_RECIP_ENDPOINT,
+			     USB_ENDPOINT_HALT, data->bulk_out, buffer,
+			     0, USBTMC_TIMEOUT);
+
+	if (rv < 0) {
+		dev_err(dev, "usb_control_msg returned %d\n", rv);
+		goto exit;
+	}
+	rv = 0;
+
+exit:
+	kfree(buffer);
+	return rv;
+}
+
+static ssize_t usbtmc_read(struct file *filp, char __user *buf,
+			   size_t count, loff_t *f_pos)
+{
+	struct usbtmc_device_data *data;
+	struct device *dev;
+	unsigned long int n_characters;
+	u8 *buffer;
+	int actual;
+	int done;
+	int remaining;
+	int retval;
+	int this_part;
+
+	/* Get pointer to private data structure */
+	data = filp->private_data;
+	dev = &data->intf->dev;
+
+	buffer = kmalloc(USBTMC_SIZE_IOBUFFER, GFP_KERNEL);
+	if (!buffer)
+		return -ENOMEM;
+
+	mutex_lock(&data->io_mutex);
+
+	remaining = count;
+	done = 0;
+
+	while (remaining > 0) {
+		if (remaining > USBTMC_SIZE_IOBUFFER - 12 - 3)
+			this_part = USBTMC_SIZE_IOBUFFER - 12 - 3;
+		else
+			this_part = remaining;
+
+		/* Setup IO buffer for DEV_DEP_MSG_IN message
+		 * Refer to class specs for details
+		 */
+		buffer[0] = 2;
+		buffer[1] = data->bTag;
+		buffer[2] = ~(data->bTag);
+		buffer[3] = 0; /* Reserved */
+		buffer[4] = (this_part - 12 - 3) & 255;
+		buffer[5] = ((this_part - 12 - 3) >> 8) & 255;
+		buffer[6] = ((this_part - 12 - 3) >> 16) & 255;
+		buffer[7] = ((this_part - 12 - 3) >> 24) & 255;
+		buffer[8] = data->TermCharEnabled * 2;
+		/* Use term character? */
+		buffer[9] = data->TermChar;
+		buffer[10] = 0; /* Reserved */
+		buffer[11] = 0; /* Reserved */
+
+		/* Send bulk URB */
+		retval = usb_bulk_msg(data->usb_dev,
+				      usb_sndbulkpipe(data->usb_dev,
+						      data->bulk_out),
+				      buffer, 12, &actual, USBTMC_TIMEOUT);
+
+		/* Store bTag (in case we need to abort) */
+		data->bTag_last_write = data->bTag;
+
+		/* Increment bTag -- and increment again if zero */
+		data->bTag++;
+		if (!data->bTag)
+			(data->bTag)++;
+
+		if (retval < 0) {
+			dev_err(dev, "usb_bulk_msg returned %d\n", retval);
+			if (data->auto_abort)
+				usbtmc_ioctl_abort_bulk_out(data);
+			goto exit;
+		}
+
+		/* Send bulk URB */
+		retval = usb_bulk_msg(data->usb_dev,
+				      usb_rcvbulkpipe(data->usb_dev,
+						      data->bulk_in),
+				      buffer, USBTMC_SIZE_IOBUFFER, &actual,
+				      USBTMC_TIMEOUT);
+
+		/* Store bTag (in case we need to abort) */
+		data->bTag_last_read = data->bTag;
+
+		if (retval < 0) {
+			dev_err(dev, "Unable to read data, error %d\n", retval);
+			if (data->auto_abort)
+				usbtmc_ioctl_abort_bulk_in(data);
+			goto exit;
+		}
+
+		/* How many characters did the instrument send? */
+		n_characters = buffer[4] +
+			       (buffer[5] << 8) +
+			       (buffer[6] << 16) +
+			       (buffer[7] << 24);
+
+		/* Copy buffer to user space */
+		if (copy_to_user(buf + done, &buffer[12], n_characters)) {
+			/* There must have been an addressing problem */
+			retval = -EFAULT;
+			goto exit;
+		}
+
+		done += n_characters;
+		if (n_characters < USBTMC_SIZE_IOBUFFER)
+			remaining = 0;
+	}
+
+	/* Update file position value */
+	*f_pos = *f_pos + done;
+	retval = done;
+
+exit:
+	mutex_unlock(&data->io_mutex);
+	kfree(buffer);
+	return retval;
+}
+
+static ssize_t usbtmc_write(struct file *filp, const char __user *buf,
+			    size_t count, loff_t *f_pos)
+{
+	struct usbtmc_device_data *data;
+	u8 *buffer;
+	int retval;
+	int actual;
+	unsigned long int n_bytes;
+	int n;
+	int remaining;
+	int done;
+	int this_part;
+
+	data = filp->private_data;
+
+	buffer = kmalloc(USBTMC_SIZE_IOBUFFER, GFP_KERNEL);
+	if (!buffer)
+		return -ENOMEM;
+
+	mutex_lock(&data->io_mutex);
+
+	remaining = count;
+	done = 0;
+
+	while (remaining > 0) {
+		if (remaining > USBTMC_SIZE_IOBUFFER - 12) {
+			this_part = USBTMC_SIZE_IOBUFFER - 12;
+			buffer[8] = 0;
+		} else {
+			this_part = remaining;
+			buffer[8] = 1;
+		}
+
+		/* Setup IO buffer for DEV_DEP_MSG_OUT message */
+		buffer[0] = 1;
+		buffer[1] = data->bTag;
+		buffer[2] = ~(data->bTag);
+		buffer[3] = 0; /* Reserved */
+		buffer[4] = this_part & 255;
+		buffer[5] = (this_part >> 8) & 255;
+		buffer[6] = (this_part >> 16) & 255;
+		buffer[7] = (this_part >> 24) & 255;
+		/* buffer[8] is set above... */
+		buffer[9] = 0; /* Reserved */
+		buffer[10] = 0; /* Reserved */
+		buffer[11] = 0; /* Reserved */
+
+		if (copy_from_user(&buffer[12], buf + done, this_part)) {
+			retval = -EFAULT;
+			goto exit;
+		}
+
+		n_bytes = 12 + this_part;
+		if (this_part % 4)
+			n_bytes += 4 - this_part % 4;
+			for (n = 12 + this_part; n < n_bytes; n++)
+				buffer[n] = 0;
+
+		retval = usb_bulk_msg(data->usb_dev,
+				      usb_sndbulkpipe(data->usb_dev,
+						      data->bulk_out),
+				      buffer, n_bytes, &actual, USBTMC_TIMEOUT);
+
+		data->bTag_last_write = data->bTag;
+		data->bTag++;
+
+		if (!data->bTag)
+			data->bTag++;
+
+		if (retval < 0) {
+			dev_err(&data->intf->dev,
+				"Unable to send data, error %d\n", retval);
+			if (data->auto_abort)
+				usbtmc_ioctl_abort_bulk_out(data);
+			goto exit;
+		}
+
+		remaining -= this_part;
+		done += this_part;
+	}
+
+	retval = count;
+exit:
+	mutex_unlock(&data->io_mutex);
+	kfree(buffer);
+	return retval;
+}
+
+static int usbtmc_ioctl_clear(struct usbtmc_device_data *data)
+{
+	struct usb_host_interface *current_setting;
+	struct usb_endpoint_descriptor *desc;
+	struct device *dev;
+	u8 *buffer;
+	int rv;
+	int n;
+	int actual;
+	int max_size;
+
+	dev = &data->intf->dev;
+
+	dev_dbg(dev, "Sending INITIATE_CLEAR request\n");
+
+	buffer = kmalloc(USBTMC_SIZE_IOBUFFER, GFP_KERNEL);
+	if (!buffer)
+		return -ENOMEM;
+
+	rv = usb_control_msg(data->usb_dev,
+			     usb_rcvctrlpipe(data->usb_dev, 0),
+			     USBTMC_REQUEST_INITIATE_CLEAR,
+			     USB_DIR_IN | USB_TYPE_CLASS | USB_RECIP_INTERFACE,
+			     0, 0, buffer, 1, USBTMC_TIMEOUT);
+	if (rv < 0) {
+		dev_err(dev, "usb_control_msg returned %d\n", rv);
+		goto exit;
+	}
+
+	dev_dbg(dev, "INITIATE_CLEAR returned %x\n", buffer[0]);
+
+	if (buffer[0] != USBTMC_STATUS_SUCCESS) {
+		dev_err(dev, "INITIATE_CLEAR returned %x\n", buffer[0]);
+		rv = -EPERM;
+		goto exit;
+	}
+
+	max_size = 0;
+	current_setting = data->intf->cur_altsetting;
+	for (n = 0; n < current_setting->desc.bNumEndpoints; n++) {
+		desc = &current_setting->endpoint[n].desc;
+		if (desc->bEndpointAddress == data->bulk_in)
+			max_size = le16_to_cpu(desc->wMaxPacketSize);
+	}
+
+	if (max_size == 0) {
+		dev_err(dev, "Couldn't get wMaxPacketSize\n");
+		rv = -EPERM;
+		goto exit;
+	}
+
+	dev_dbg(dev, "wMaxPacketSize is %d\n", max_size);
+
+	n = 0;
+
+usbtmc_clear_check_status:
+
+	dev_dbg(dev, "Sending CHECK_CLEAR_STATUS request\n");
+
+	rv = usb_control_msg(data->usb_dev,
+			     usb_rcvctrlpipe(data->usb_dev, 0),
+			     USBTMC_REQUEST_CHECK_CLEAR_STATUS,
+			     USB_DIR_IN | USB_TYPE_CLASS | USB_RECIP_INTERFACE,
+			     0, 0, buffer, 2, USBTMC_TIMEOUT);
+	if (rv < 0) {
+		dev_err(dev, "usb_control_msg returned %d\n", rv);
+		goto exit;
+	}
+
+	dev_dbg(dev, "CHECK_CLEAR_STATUS returned %x\n", buffer[0]);
+
+	if (buffer[0] == USBTMC_STATUS_SUCCESS)
+		goto usbtmc_clear_bulk_out_halt;
+
+	if (buffer[0] != USBTMC_STATUS_PENDING) {
+		dev_err(dev, "CHECK_CLEAR_STATUS returned %x\n", buffer[0]);
+		rv = -EPERM;
+		goto exit;
+	}
+
+	if (buffer[1] == 1)
+		do {
+			dev_dbg(dev, "Reading from bulk in EP\n");
+
+			rv = usb_bulk_msg(data->usb_dev,
+					  usb_rcvbulkpipe(data->usb_dev,
+							  data->bulk_in),
+					  buffer, USBTMC_SIZE_IOBUFFER,
+					  &actual, USBTMC_TIMEOUT);
+			n++;
+
+			if (rv < 0) {
+				dev_err(dev, "usb_control_msg returned %d\n",
+					rv);
+				goto exit;
+			}
+		} while ((actual == max_size) &&
+			  (n < USBTMC_MAX_READS_TO_CLEAR_BULK_IN));
+
+	if (actual == max_size) {
+		dev_err(dev, "Couldn't clear device buffer within %d cycles\n",
+			USBTMC_MAX_READS_TO_CLEAR_BULK_IN);
+		rv = -EPERM;
+		goto exit;
+	}
+
+	goto usbtmc_clear_check_status;
+
+usbtmc_clear_bulk_out_halt:
+
+	rv = usb_control_msg(data->usb_dev,
+			     usb_sndctrlpipe(data->usb_dev, 0),
+			     USB_REQ_CLEAR_FEATURE,
+			     USB_DIR_OUT | USB_TYPE_STANDARD |
+			     USB_RECIP_ENDPOINT,
+			     USB_ENDPOINT_HALT,
+			     data->bulk_out, buffer, 0,
+			     USBTMC_TIMEOUT);
+	if (rv < 0) {
+		dev_err(dev, "usb_control_msg returned %d\n", rv);
+		goto exit;
+	}
+	rv = 0;
+
+exit:
+	kfree(buffer);
+	return rv;
+}
+
+static int usbtmc_ioctl_clear_out_halt(struct usbtmc_device_data *data)
+{
+	u8 *buffer;
+	int rv;
+
+	buffer = kmalloc(2, GFP_KERNEL);
+	if (!buffer)
+		return -ENOMEM;
+
+	rv = usb_control_msg(data->usb_dev,
+			     usb_sndctrlpipe(data->usb_dev, 0),
+			     USB_REQ_CLEAR_FEATURE,
+			     USB_DIR_OUT | USB_TYPE_STANDARD |
+			     USB_RECIP_ENDPOINT,
+			     USB_ENDPOINT_HALT, data->bulk_out,
+			     buffer, 0, USBTMC_TIMEOUT);
+
+	if (rv < 0) {
+		dev_err(&data->usb_dev->dev, "usb_control_msg returned %d\n",
+			rv);
+		goto exit;
+	}
+	rv = 0;
+
+exit:
+	kfree(buffer);
+	return rv;
+}
+
+static int usbtmc_ioctl_clear_in_halt(struct usbtmc_device_data *data)
+{
+	u8 *buffer;
+	int rv;
+
+	buffer = kmalloc(2, GFP_KERNEL);
+	if (!buffer)
+		return -ENOMEM;
+
+	rv = usb_control_msg(data->usb_dev, usb_sndctrlpipe(data->usb_dev, 0),
+			     USB_REQ_CLEAR_FEATURE,
+			     USB_DIR_OUT | USB_TYPE_STANDARD |
+			     USB_RECIP_ENDPOINT,
+			     USB_ENDPOINT_HALT, data->bulk_in, buffer, 0,
+			     USBTMC_TIMEOUT);
+
+	if (rv < 0) {
+		dev_err(&data->usb_dev->dev, "usb_control_msg returned %d\n",
+			rv);
+		goto exit;
+	}
+	rv = 0;
+
+exit:
+	kfree(buffer);
+	return rv;
+}
+
+static int get_capabilities(struct usbtmc_device_data *data)
+{
+	struct device *dev = &data->usb_dev->dev;
+	char *buffer;
+	int rv;
+
+	buffer = kmalloc(0x18, GFP_KERNEL);
+	if (!buffer)
+		return -ENOMEM;
+
+	rv = usb_control_msg(data->usb_dev, usb_rcvctrlpipe(data->usb_dev, 0),
+			     USBTMC_REQUEST_GET_CAPABILITIES,
+			     USB_DIR_IN | USB_TYPE_CLASS | USB_RECIP_INTERFACE,
+			     0, 0, buffer, 0x18, USBTMC_TIMEOUT);
+	if (rv < 0) {
+		dev_err(dev, "usb_control_msg returned %d\n", rv);
+		return rv;
+	}
+
+	dev_dbg(dev, "GET_CAPABILITIES returned %x\n", buffer[0]);
+	dev_dbg(dev, "Interface capabilities are %x\n", buffer[4]);
+	dev_dbg(dev, "Device capabilities are %x\n", buffer[5]);
+	dev_dbg(dev, "USB488 interface capabilities are %x\n", buffer[14]);
+	dev_dbg(dev, "USB488 device capabilities are %x\n", buffer[15]);
+	if (buffer[0] != USBTMC_STATUS_SUCCESS) {
+		dev_err(dev, "GET_CAPABILITIES returned %x\n", buffer[0]);
+		return -EPERM;
+	}
+
+	data->capabilities.interface_capabilities = buffer[4];
+	data->capabilities.device_capabilities = buffer[5];
+	data->capabilities.usb488_interface_capabilities = buffer[14];
+	data->capabilities.usb488_device_capabilities = buffer[15];
+
+	kfree(buffer);
+	return 0;
+}
+
+#define capability_attribute(name)					\
+static ssize_t show_##name(struct device *dev,				\
+			   struct device_attribute *attr, char *buf)	\
+{									\
+	struct usb_interface *intf = to_usb_interface(dev);		\
+	struct usbtmc_device_data *data = usb_get_intfdata(intf);	\
+									\
+	return sprintf(buf, "%d\n", data->capabilities.name);		\
+}									\
+static DEVICE_ATTR(name, S_IRUGO, show_##name, NULL)
+
+capability_attribute(interface_capabilities);
+capability_attribute(device_capabilities);
+capability_attribute(usb488_interface_capabilities);
+capability_attribute(usb488_device_capabilities);
+
+static struct attribute *capability_attrs[] = {
+	&dev_attr_interface_capabilities.attr,
+	&dev_attr_device_capabilities.attr,
+	&dev_attr_usb488_interface_capabilities.attr,
+	&dev_attr_usb488_device_capabilities.attr,
+	NULL,
+};
+
+static struct attribute_group capability_attr_grp = {
+	.attrs = capability_attrs,
+};
+
+static ssize_t show_TermChar(struct device *dev,
+			     struct device_attribute *attr, char *buf)
+{
+	struct usb_interface *intf = to_usb_interface(dev);
+	struct usbtmc_device_data *data = usb_get_intfdata(intf);
+
+	return sprintf(buf, "%c\n", data->TermChar);
+}
+
+static ssize_t store_TermChar(struct device *dev,
+			      struct device_attribute *attr,
+			      const char *buf, size_t count)
+{
+	struct usb_interface *intf = to_usb_interface(dev);
+	struct usbtmc_device_data *data = usb_get_intfdata(intf);
+
+	if (count < 1)
+		return -EINVAL;
+	data->TermChar = buf[0];
+	return count;
+}
+static DEVICE_ATTR(TermChar, S_IRUGO, show_TermChar, store_TermChar);
+
+#define data_attribute(name)						\
+static ssize_t show_##name(struct device *dev,				\
+			   struct device_attribute *attr, char *buf)	\
+{									\
+	struct usb_interface *intf = to_usb_interface(dev);		\
+	struct usbtmc_device_data *data = usb_get_intfdata(intf);	\
+									\
+	return sprintf(buf, "%d\n", data->name);			\
+}									\
+static ssize_t store_##name(struct device *dev,				\
+			    struct device_attribute *attr,		\
+			    const char *buf, size_t count)		\
+{									\
+	struct usb_interface *intf = to_usb_interface(dev);		\
+	struct usbtmc_device_data *data = usb_get_intfdata(intf);	\
+	ssize_t result;							\
+	unsigned val;							\
+									\
+	result = sscanf(buf, "%u\n", &val);				\
+	if (result != 1)						\
+		result = -EINVAL;					\
+	data->name = val;						\
+	if (result < 0)							\
+		return result;						\
+	else								\
+		return count;						\
+}									\
+static DEVICE_ATTR(name, S_IRUGO, show_##name, store_##name)
+
+data_attribute(TermCharEnabled);
+data_attribute(auto_abort);
+
+static struct attribute *data_attrs[] = {
+	&dev_attr_TermChar.attr,
+	&dev_attr_TermCharEnabled.attr,
+	&dev_attr_auto_abort.attr,
+	NULL,
+};
+
+static struct attribute_group data_attr_grp = {
+	.attrs = data_attrs,
+};
+
+static int usbtmc_ioctl_indicator_pulse(struct usbtmc_device_data *data)
+{
+	struct device *dev;
+	u8 *buffer;
+	int rv;
+
+	dev = &data->intf->dev;
+
+	buffer = kmalloc(2, GFP_KERNEL);
+	if (!buffer)
+		return -ENOMEM;
+
+	rv = usb_control_msg(data->usb_dev,
+			     usb_rcvctrlpipe(data->usb_dev, 0),
+			     USBTMC_REQUEST_INDICATOR_PULSE,
+			     USB_DIR_IN | USB_TYPE_CLASS | USB_RECIP_INTERFACE,
+			     0, 0, buffer, 0x01, USBTMC_TIMEOUT);
+
+	if (rv < 0) {
+		dev_err(dev, "usb_control_msg returned %d\n", rv);
+		goto exit;
+	}
+
+	dev_dbg(dev, "INDICATOR_PULSE returned %x\n", buffer[0]);
+
+	if (buffer[0] != USBTMC_STATUS_SUCCESS) {
+		dev_err(dev, "INDICATOR_PULSE returned %x\n", buffer[0]);
+		rv = -EPERM;
+		goto exit;
+	}
+	rv = 0;
+
+exit:
+	kfree(buffer);
+	return rv;
+}
+
+static long usbtmc_ioctl(struct file *file, unsigned int cmd, unsigned long arg)
+{
+	struct usbtmc_device_data *data;
+	int retval = -EBADRQC;
+
+	data = file->private_data;
+	mutex_lock(&data->io_mutex);
+
+	switch (cmd) {
+	case USBTMC_IOCTL_CLEAR_OUT_HALT:
+		retval = usbtmc_ioctl_clear_out_halt(data);
+
+	case USBTMC_IOCTL_CLEAR_IN_HALT:
+		retval = usbtmc_ioctl_clear_in_halt(data);
+
+	case USBTMC_IOCTL_INDICATOR_PULSE:
+		retval = usbtmc_ioctl_indicator_pulse(data);
+
+	case USBTMC_IOCTL_CLEAR:
+		retval = usbtmc_ioctl_clear(data);
+
+	case USBTMC_IOCTL_ABORT_BULK_OUT:
+		retval = usbtmc_ioctl_abort_bulk_out(data);
+
+	case USBTMC_IOCTL_ABORT_BULK_IN:
+		retval = usbtmc_ioctl_abort_bulk_in(data);
+	}
+
+	mutex_unlock(&data->io_mutex);
+	return retval;
+}
+
+static struct file_operations fops = {
+	.owner		= THIS_MODULE,
+	.read		= usbtmc_read,
+	.write		= usbtmc_write,
+	.open		= usbtmc_open,
+	.release	= usbtmc_release,
+	.unlocked_ioctl	= usbtmc_ioctl,
+};
+
+static struct usb_class_driver usbtmc_class = {
+	.name =		"usbtmc%d",
+	.fops =		&fops,
+	.minor_base =	USBTMC_MINOR_BASE,
+};
+
+
+static int usbtmc_probe(struct usb_interface *intf,
+			const struct usb_device_id *id)
+{
+	struct usbtmc_device_data *data;
+	struct usb_host_interface *iface_desc;
+	struct usb_endpoint_descriptor *endpoint;
+	int n;
+	int retcode;
+
+	dev_dbg(&intf->dev, "%s called\n", __func__);
+
+	data = kmalloc(sizeof(struct usbtmc_device_data), GFP_KERNEL);
+	if (!data) {
+		dev_err(&intf->dev, "Unable to allocate kernel memory\n");
+		return -ENOMEM;
+	}
+
+	data->intf = intf;
+	data->id = id;
+	data->usb_dev = usb_get_dev(interface_to_usbdev(intf));
+	usb_set_intfdata(intf, data);
+	kref_init(&data->kref);
+	mutex_init(&data->io_mutex);
+
+	/* Initialize USBTMC bTag and other fields */
+	data->bTag	= 1;
+	data->TermCharEnabled = 0;
+	data->TermChar = '\n';
+
+	/* USBTMC devices have only one setting, so use that */
+	iface_desc = data->intf->cur_altsetting;
+
+	/* Find bulk in endpoint */
+	for (n = 0; n < iface_desc->desc.bNumEndpoints; n++) {
+		endpoint = &iface_desc->endpoint[n].desc;
+
+		if (usb_endpoint_is_bulk_in(endpoint)) {
+			data->bulk_in = endpoint->bEndpointAddress;
+			dev_dbg(&intf->dev, "Found bulk in endpoint at %u\n",
+				data->bulk_in);
+			break;
+		}
+	}
+
+	/* Find bulk out endpoint */
+	for (n = 0; n < iface_desc->desc.bNumEndpoints; n++) {
+		endpoint = &iface_desc->endpoint[n].desc;
+
+		if (usb_endpoint_is_bulk_out(endpoint)) {
+			data->bulk_out = endpoint->bEndpointAddress;
+			dev_dbg(&intf->dev, "Found Bulk out endpoint at %u\n",
+				data->bulk_out);
+			break;
+		}
+	}
+
+	retcode = get_capabilities(data);
+	if (retcode)
+		dev_err(&intf->dev, "can't read capabilities\n");
+	else
+		retcode = sysfs_create_group(&intf->dev.kobj,
+					     &capability_attr_grp);
+
+	retcode = sysfs_create_group(&intf->dev.kobj, &data_attr_grp);
+
+	retcode = usb_register_dev(intf, &usbtmc_class);
+	if (retcode) {
+		dev_err(&intf->dev, "Not able to get a minor"
+			" (base %u, slice default): %d\n", USBTMC_MINOR_BASE,
+			retcode);
+		goto error_register;
+	}
+	dev_dbg(&intf->dev, "Using minor number %d\n", intf->minor);
+
+	return 0;
+
+error_register:
+	sysfs_remove_group(&intf->dev.kobj, &capability_attr_grp);
+	sysfs_remove_group(&intf->dev.kobj, &data_attr_grp);
+	kref_put(&data->kref, usbtmc_delete);
+	return retcode;
+}
+
+static void usbtmc_disconnect(struct usb_interface *intf)
+{
+	struct usbtmc_device_data *data;
+
+	dev_dbg(&intf->dev, "usbtmc_disconnect called\n");
+
+	data = usb_get_intfdata(intf);
+	usb_deregister_dev(intf, &usbtmc_class);
+	sysfs_remove_group(&intf->dev.kobj, &capability_attr_grp);
+	sysfs_remove_group(&intf->dev.kobj, &data_attr_grp);
+	kref_put(&data->kref, usbtmc_delete);
+}
+
+static struct usb_driver usbtmc_driver = {
+	.name		= "usbtmc",
+	.id_table	= usbtmc_devices,
+	.probe		= usbtmc_probe,
+	.disconnect	= usbtmc_disconnect
+};
+
+static int __init usbtmc_init(void)
+{
+	int retcode;
+
+	retcode = usb_register(&usbtmc_driver);
+	if (retcode)
+		printk(KERN_ERR KBUILD_MODNAME": Unable to register driver\n");
+	return retcode;
+}
+module_init(usbtmc_init);
+
+static void __exit usbtmc_exit(void)
+{
+	usb_deregister(&usbtmc_driver);
+}
+module_exit(usbtmc_exit);
+
+MODULE_LICENSE("GPL");
diff --git a/drivers/usb/core/Kconfig b/drivers/usb/core/Kconfig
index cc9f397..e1759d1 100644
--- a/drivers/usb/core/Kconfig
+++ b/drivers/usb/core/Kconfig
@@ -134,5 +134,5 @@
 	  If you say Y here, then Linux will refuse to enumerate
 	  external hubs.  OTG hosts are allowed to reduce hardware
 	  and software costs by not supporting external hubs.  So
-	  are "Emedded Hosts" that don't offer OTG support.
+	  are "Embedded Hosts" that don't offer OTG support.
 
diff --git a/drivers/usb/core/devio.c b/drivers/usb/core/devio.c
index 7a4fa79..2bccefe 100644
--- a/drivers/usb/core/devio.c
+++ b/drivers/usb/core/devio.c
@@ -413,7 +413,8 @@
 	if (likely(ifnum < 8*sizeof(ps->ifclaimed)))
 		clear_bit(ifnum, &ps->ifclaimed);
 	else
-		warn("interface number %u out of range", ifnum);
+		dev_warn(&intf->dev, "interface number %u out of range\n",
+			 ifnum);
 
 	usb_set_intfdata(intf, NULL);
 
@@ -624,6 +625,8 @@
 	smp_wmb();
 	list_add_tail(&ps->list, &dev->filelist);
 	file->private_data = ps;
+	snoop(&dev->dev, "opened by process %d: %s\n", task_pid_nr(current),
+			current->comm);
  out:
 	if (ret) {
 		kfree(ps);
@@ -1774,19 +1777,20 @@
 	retval = register_chrdev_region(USB_DEVICE_DEV, USB_DEVICE_MAX,
 					"usb_device");
 	if (retval) {
-		err("unable to register minors for usb_device");
+		printk(KERN_ERR "Unable to register minors for usb_device\n");
 		goto out;
 	}
 	cdev_init(&usb_device_cdev, &usbdev_file_operations);
 	retval = cdev_add(&usb_device_cdev, USB_DEVICE_DEV, USB_DEVICE_MAX);
 	if (retval) {
-		err("unable to get usb_device major %d", USB_DEVICE_MAJOR);
+		printk(KERN_ERR "Unable to get usb_device major %d\n",
+		       USB_DEVICE_MAJOR);
 		goto error_cdev;
 	}
 #ifdef CONFIG_USB_DEVICE_CLASS
 	usb_classdev_class = class_create(THIS_MODULE, "usb_device");
 	if (IS_ERR(usb_classdev_class)) {
-		err("unable to register usb_device class");
+		printk(KERN_ERR "Unable to register usb_device class\n");
 		retval = PTR_ERR(usb_classdev_class);
 		cdev_del(&usb_device_cdev);
 		usb_classdev_class = NULL;
diff --git a/drivers/usb/core/driver.c b/drivers/usb/core/driver.c
index 5a7fa6f..e935be7 100644
--- a/drivers/usb/core/driver.c
+++ b/drivers/usb/core/driver.c
@@ -1070,7 +1070,8 @@
 				struct usb_driver *driver;
 
 				driver = to_usb_driver(intf->dev.driver);
-				if (!driver->reset_resume)
+				if (!driver->reset_resume ||
+				    intf->needs_remote_wakeup)
 					return -EOPNOTSUPP;
 			}
 		}
diff --git a/drivers/usb/core/endpoint.c b/drivers/usb/core/endpoint.c
index 2291213..946fae4 100644
--- a/drivers/usb/core/endpoint.c
+++ b/drivers/usb/core/endpoint.c
@@ -169,7 +169,8 @@
 	error = alloc_chrdev_region(&dev, 0, MAX_ENDPOINT_MINORS,
 				    "usb_endpoint");
 	if (error) {
-		err("unable to get a dynamic major for usb endpoints");
+		printk(KERN_ERR "Unable to get a dynamic major for "
+		       "usb endpoints.\n");
 		return error;
 	}
 	usb_endpoint_major = MAJOR(dev);
diff --git a/drivers/usb/core/file.c b/drivers/usb/core/file.c
index 55f7f31..997e659 100644
--- a/drivers/usb/core/file.c
+++ b/drivers/usb/core/file.c
@@ -86,7 +86,7 @@
 	usb_class->class = class_create(THIS_MODULE, "usb");
 	if (IS_ERR(usb_class->class)) {
 		result = IS_ERR(usb_class->class);
-		err("class_create failed for usb devices");
+		printk(KERN_ERR "class_create failed for usb devices\n");
 		kfree(usb_class);
 		usb_class = NULL;
 	}
@@ -115,7 +115,8 @@
 
 	error = register_chrdev(USB_MAJOR, "usb", &usb_fops);
 	if (error)
-		err("unable to get major %d for usb devices", USB_MAJOR);
+		printk(KERN_ERR "Unable to get major %d for usb devices\n",
+		       USB_MAJOR);
 
 	return error;
 }
diff --git a/drivers/usb/core/hcd.c b/drivers/usb/core/hcd.c
index c8035a8..fc9018e 100644
--- a/drivers/usb/core/hcd.c
+++ b/drivers/usb/core/hcd.c
@@ -81,6 +81,10 @@
 
 /*-------------------------------------------------------------------------*/
 
+/* Keep track of which host controller drivers are loaded */
+unsigned long usb_hcds_loaded;
+EXPORT_SYMBOL_GPL(usb_hcds_loaded);
+
 /* host controllers we manage */
 LIST_HEAD (usb_bus_list);
 EXPORT_SYMBOL_GPL (usb_bus_list);
diff --git a/drivers/usb/core/hcd.h b/drivers/usb/core/hcd.h
index e710ce0..2dcde61 100644
--- a/drivers/usb/core/hcd.h
+++ b/drivers/usb/core/hcd.h
@@ -482,4 +482,10 @@
  */
 extern struct rw_semaphore ehci_cf_port_reset_rwsem;
 
+/* Keep track of which host controller drivers are loaded */
+#define USB_UHCI_LOADED		0
+#define USB_OHCI_LOADED		1
+#define USB_EHCI_LOADED		2
+extern unsigned long usb_hcds_loaded;
+
 #endif /* __KERNEL__ */
diff --git a/drivers/usb/core/hub.c b/drivers/usb/core/hub.c
index d999638..d73ce26 100644
--- a/drivers/usb/core/hub.c
+++ b/drivers/usb/core/hub.c
@@ -77,6 +77,7 @@
 	unsigned		has_indicators:1;
 	u8			indicator[USB_MAXCHILDREN];
 	struct delayed_work	leds;
+	struct delayed_work	init_work;
 };
 
 
@@ -100,6 +101,15 @@
 MODULE_PARM_DESC (blinkenlights, "true to cycle leds on hubs");
 
 /*
+ * Device SATA8000 FW1.0 from DATAST0R Technology Corp requires about
+ * 10 seconds to send reply for the initial 64-byte descriptor request.
+ */
+/* define initial 64-byte descriptor request timeout in milliseconds */
+static int initial_descriptor_timeout = USB_CTRL_GET_TIMEOUT;
+module_param(initial_descriptor_timeout, int, S_IRUGO|S_IWUSR);
+MODULE_PARM_DESC(initial_descriptor_timeout, "initial 64-byte descriptor request timeout in milliseconds (default 5000 - 5.0 seconds)");
+
+/*
  * As of 2.6.10 we introduce a new USB device initialization scheme which
  * closely resembles the way Windows works.  Hopefully it will be compatible
  * with a wider range of devices than the old scheme.  However some previously
@@ -515,10 +525,14 @@
 }
 EXPORT_SYMBOL_GPL(usb_hub_tt_clear_buffer);
 
-static void hub_power_on(struct usb_hub *hub)
+/* If do_delay is false, return the number of milliseconds the caller
+ * needs to delay.
+ */
+static unsigned hub_power_on(struct usb_hub *hub, bool do_delay)
 {
 	int port1;
 	unsigned pgood_delay = hub->descriptor->bPwrOn2PwrGood * 2;
+	unsigned delay;
 	u16 wHubCharacteristics =
 			le16_to_cpu(hub->descriptor->wHubCharacteristics);
 
@@ -537,7 +551,10 @@
 		set_port_feature(hub->hdev, port1, USB_PORT_FEAT_POWER);
 
 	/* Wait at least 100 msec for power to become stable */
-	msleep(max(pgood_delay, (unsigned) 100));
+	delay = max(pgood_delay, (unsigned) 100);
+	if (do_delay)
+		msleep(delay);
+	return delay;
 }
 
 static int hub_hub_status(struct usb_hub *hub,
@@ -599,21 +616,55 @@
 }
 
 enum hub_activation_type {
-	HUB_INIT, HUB_POST_RESET, HUB_RESUME, HUB_RESET_RESUME
+	HUB_INIT, HUB_INIT2, HUB_INIT3,
+	HUB_POST_RESET, HUB_RESUME, HUB_RESET_RESUME,
 };
 
+static void hub_init_func2(struct work_struct *ws);
+static void hub_init_func3(struct work_struct *ws);
+
 static void hub_activate(struct usb_hub *hub, enum hub_activation_type type)
 {
 	struct usb_device *hdev = hub->hdev;
 	int port1;
 	int status;
 	bool need_debounce_delay = false;
+	unsigned delay;
+
+	/* Continue a partial initialization */
+	if (type == HUB_INIT2)
+		goto init2;
+	if (type == HUB_INIT3)
+		goto init3;
 
 	/* After a resume, port power should still be on.
 	 * For any other type of activation, turn it on.
 	 */
-	if (type != HUB_RESUME)
-		hub_power_on(hub);
+	if (type != HUB_RESUME) {
+
+		/* Speed up system boot by using a delayed_work for the
+		 * hub's initial power-up delays.  This is pretty awkward
+		 * and the implementation looks like a home-brewed sort of
+		 * setjmp/longjmp, but it saves at least 100 ms for each
+		 * root hub (assuming usbcore is compiled into the kernel
+		 * rather than as a module).  It adds up.
+		 *
+		 * This can't be done for HUB_RESUME or HUB_RESET_RESUME
+		 * because for those activation types the ports have to be
+		 * operational when we return.  In theory this could be done
+		 * for HUB_POST_RESET, but it's easier not to.
+		 */
+		if (type == HUB_INIT) {
+			delay = hub_power_on(hub, false);
+			PREPARE_DELAYED_WORK(&hub->init_work, hub_init_func2);
+			schedule_delayed_work(&hub->init_work,
+					msecs_to_jiffies(delay));
+			return;		/* Continues at init2: below */
+		} else {
+			hub_power_on(hub, true);
+		}
+	}
+ init2:
 
 	/* Check each port and set hub->change_bits to let khubd know
 	 * which ports need attention.
@@ -692,9 +743,20 @@
 	 * If any port-status changes do occur during this delay, khubd
 	 * will see them later and handle them normally.
 	 */
-	if (need_debounce_delay)
-		msleep(HUB_DEBOUNCE_STABLE);
+	if (need_debounce_delay) {
+		delay = HUB_DEBOUNCE_STABLE;
 
+		/* Don't do a long sleep inside a workqueue routine */
+		if (type == HUB_INIT2) {
+			PREPARE_DELAYED_WORK(&hub->init_work, hub_init_func3);
+			schedule_delayed_work(&hub->init_work,
+					msecs_to_jiffies(delay));
+			return;		/* Continues at init3: below */
+		} else {
+			msleep(delay);
+		}
+	}
+ init3:
 	hub->quiescing = 0;
 
 	status = usb_submit_urb(hub->urb, GFP_NOIO);
@@ -707,6 +769,21 @@
 	kick_khubd(hub);
 }
 
+/* Implement the continuations for the delays above */
+static void hub_init_func2(struct work_struct *ws)
+{
+	struct usb_hub *hub = container_of(ws, struct usb_hub, init_work.work);
+
+	hub_activate(hub, HUB_INIT2);
+}
+
+static void hub_init_func3(struct work_struct *ws)
+{
+	struct usb_hub *hub = container_of(ws, struct usb_hub, init_work.work);
+
+	hub_activate(hub, HUB_INIT3);
+}
+
 enum hub_quiescing_type {
 	HUB_DISCONNECT, HUB_PRE_RESET, HUB_SUSPEND
 };
@@ -716,6 +793,8 @@
 	struct usb_device *hdev = hub->hdev;
 	int i;
 
+	cancel_delayed_work_sync(&hub->init_work);
+
 	/* khubd and related activity won't re-trigger */
 	hub->quiescing = 1;
 
@@ -1099,6 +1178,7 @@
 	hub->intfdev = &intf->dev;
 	hub->hdev = hdev;
 	INIT_DELAYED_WORK(&hub->leds, led_work);
+	INIT_DELAYED_WORK(&hub->init_work, NULL);
 	usb_get_intf(intf);
 
 	usb_set_intfdata (intf, hub);
@@ -2467,7 +2547,7 @@
 					USB_REQ_GET_DESCRIPTOR, USB_DIR_IN,
 					USB_DT_DEVICE << 8, 0,
 					buf, GET_DESCRIPTOR_BUFSIZE,
-					USB_CTRL_GET_TIMEOUT);
+					initial_descriptor_timeout);
 				switch (buf->bMaxPacketSize0) {
 				case 8: case 16: case 32: case 64: case 255:
 					if (buf->bDescriptorType ==
@@ -3035,7 +3115,7 @@
 					i);
 				clear_port_feature(hdev, i,
 					USB_PORT_FEAT_C_OVER_CURRENT);
-				hub_power_on(hub);
+				hub_power_on(hub, true);
 			}
 
 			if (portchange & USB_PORT_STAT_C_RESET) {
@@ -3070,7 +3150,7 @@
 				dev_dbg (hub_dev, "overcurrent change\n");
 				msleep(500);	/* Cool down */
 				clear_hub_feature(hdev, C_HUB_OVER_CURRENT);
-                        	hub_power_on(hub);
+                        	hub_power_on(hub, true);
 			}
 		}
 
diff --git a/drivers/usb/core/inode.c b/drivers/usb/core/inode.c
index 77fa7a0..9463226 100644
--- a/drivers/usb/core/inode.c
+++ b/drivers/usb/core/inode.c
@@ -180,8 +180,8 @@
 			listmode = option & S_IRWXUGO;
 			break;
 		default:
-			err("usbfs: unrecognised mount option \"%s\" "
-			    "or missing value\n", p);
+			printk(KERN_ERR "usbfs: unrecognised mount option "
+			       "\"%s\" or missing value\n", p);
 			return -EINVAL;
 		}
 	}
@@ -240,7 +240,9 @@
 				update_special(bus);
 				break;
 			default:
-				warn("Unknown node %s mode %x found on remount!\n",bus->d_name.name,bus->d_inode->i_mode);
+				printk(KERN_WARNING "usbfs: Unknown node %s "
+				       "mode %x found on remount!\n",
+				       bus->d_name.name, bus->d_inode->i_mode);
 				break;
 			}
 		}
@@ -259,7 +261,7 @@
 		return 0;
 
 	if (parse_options(sb, data)) {
-		warn("usbfs: mount parameter error:");
+		printk(KERN_WARNING "usbfs: mount parameter error.\n");
 		return -EINVAL;
 	}
 
@@ -599,7 +601,7 @@
 	/* create the devices special file */
 	retval = simple_pin_fs(&usb_fs_type, &usbfs_mount, &usbfs_mount_count);
 	if (retval) {
-		err ("Unable to get usbfs mount");
+		printk(KERN_ERR "Unable to get usbfs mount\n");
 		goto exit;
 	}
 
@@ -611,7 +613,7 @@
 					       NULL, &usbfs_devices_fops,
 					       listuid, listgid);
 	if (devices_usbfs_dentry == NULL) {
-		err ("Unable to create devices usbfs file");
+		printk(KERN_ERR "Unable to create devices usbfs file\n");
 		retval = -ENODEV;
 		goto error_clean_mounts;
 	}
@@ -663,7 +665,7 @@
 	bus->usbfs_dentry = fs_create_file (name, busmode | S_IFDIR, parent,
 					    bus, NULL, busuid, busgid);
 	if (bus->usbfs_dentry == NULL) {
-		err ("error creating usbfs bus entry");
+		printk(KERN_ERR "Error creating usbfs bus entry\n");
 		return;
 	}
 }
@@ -694,7 +696,7 @@
 					    &usbdev_file_operations,
 					    devuid, devgid);
 	if (dev->usbfs_dentry == NULL) {
-		err ("error creating usbfs device entry");
+		printk(KERN_ERR "Error creating usbfs device entry\n");
 		return;
 	}
 
diff --git a/drivers/usb/core/message.c b/drivers/usb/core/message.c
index 286b443..8877385 100644
--- a/drivers/usb/core/message.c
+++ b/drivers/usb/core/message.c
@@ -1204,7 +1204,8 @@
 
 	alt = usb_altnum_to_altsetting(iface, alternate);
 	if (!alt) {
-		warn("selecting invalid altsetting %d", alternate);
+		dev_warn(&dev->dev, "selecting invalid altsetting %d",
+			 alternate);
 		return -EINVAL;
 	}
 
diff --git a/drivers/usb/core/sysfs.c b/drivers/usb/core/sysfs.c
index 5e1f5d5..f66fba1 100644
--- a/drivers/usb/core/sysfs.c
+++ b/drivers/usb/core/sysfs.c
@@ -743,6 +743,29 @@
 }
 static DEVICE_ATTR(modalias, S_IRUGO, show_modalias, NULL);
 
+static ssize_t show_supports_autosuspend(struct device *dev,
+		struct device_attribute *attr, char *buf)
+{
+	struct usb_interface *intf;
+	struct usb_device *udev;
+	int ret;
+
+	intf = to_usb_interface(dev);
+	udev = interface_to_usbdev(intf);
+
+	usb_lock_device(udev);
+	/* Devices will be autosuspended even when an interface isn't claimed */
+	if (!intf->dev.driver ||
+			to_usb_driver(intf->dev.driver)->supports_autosuspend)
+		ret = sprintf(buf, "%u\n", 1);
+	else
+		ret = sprintf(buf, "%u\n", 0);
+	usb_unlock_device(udev);
+
+	return ret;
+}
+static DEVICE_ATTR(supports_autosuspend, S_IRUGO, show_supports_autosuspend, NULL);
+
 static struct attribute *intf_attrs[] = {
 	&dev_attr_bInterfaceNumber.attr,
 	&dev_attr_bAlternateSetting.attr,
@@ -751,6 +774,7 @@
 	&dev_attr_bInterfaceSubClass.attr,
 	&dev_attr_bInterfaceProtocol.attr,
 	&dev_attr_modalias.attr,
+	&dev_attr_supports_autosuspend.attr,
 	NULL,
 };
 static struct attribute_group intf_attr_grp = {
diff --git a/drivers/usb/core/urb.c b/drivers/usb/core/urb.c
index 47111e8..f263800 100644
--- a/drivers/usb/core/urb.c
+++ b/drivers/usb/core/urb.c
@@ -10,6 +10,8 @@
 
 #define to_urb(d) container_of(d, struct urb, kref)
 
+static DEFINE_SPINLOCK(usb_reject_lock);
+
 static void urb_destroy(struct kref *kref)
 {
 	struct urb *urb = to_urb(kref);
@@ -68,7 +70,7 @@
 		iso_packets * sizeof(struct usb_iso_packet_descriptor),
 		mem_flags);
 	if (!urb) {
-		err("alloc_urb: kmalloc failed");
+		printk(KERN_ERR "alloc_urb: kmalloc failed\n");
 		return NULL;
 	}
 	usb_init_urb(urb);
@@ -127,6 +129,13 @@
 	usb_get_urb(urb);
 	list_add_tail(&urb->anchor_list, &anchor->urb_list);
 	urb->anchor = anchor;
+
+	if (unlikely(anchor->poisoned)) {
+		spin_lock(&usb_reject_lock);
+		urb->reject++;
+		spin_unlock(&usb_reject_lock);
+	}
+
 	spin_unlock_irqrestore(&anchor->lock, flags);
 }
 EXPORT_SYMBOL_GPL(usb_anchor_urb);
@@ -398,7 +407,7 @@
 
 	/* fail if submitter gave bogus flags */
 	if (urb->transfer_flags != orig_flags) {
-		err("BOGUS urb flags, %x --> %x",
+		dev_err(&dev->dev, "BOGUS urb flags, %x --> %x\n",
 			orig_flags, urb->transfer_flags);
 		return -EINVAL;
 	}
@@ -544,25 +553,70 @@
  */
 void usb_kill_urb(struct urb *urb)
 {
-	static DEFINE_MUTEX(reject_mutex);
-
 	might_sleep();
 	if (!(urb && urb->dev && urb->ep))
 		return;
-	mutex_lock(&reject_mutex);
+	spin_lock_irq(&usb_reject_lock);
 	++urb->reject;
-	mutex_unlock(&reject_mutex);
+	spin_unlock_irq(&usb_reject_lock);
 
 	usb_hcd_unlink_urb(urb, -ENOENT);
 	wait_event(usb_kill_urb_queue, atomic_read(&urb->use_count) == 0);
 
-	mutex_lock(&reject_mutex);
+	spin_lock_irq(&usb_reject_lock);
 	--urb->reject;
-	mutex_unlock(&reject_mutex);
+	spin_unlock_irq(&usb_reject_lock);
 }
 EXPORT_SYMBOL_GPL(usb_kill_urb);
 
 /**
+ * usb_poison_urb - reliably kill a transfer and prevent further use of an URB
+ * @urb: pointer to URB describing a previously submitted request,
+ *	may be NULL
+ *
+ * This routine cancels an in-progress request.  It is guaranteed that
+ * upon return all completion handlers will have finished and the URB
+ * will be totally idle and cannot be reused.  These features make
+ * this an ideal way to stop I/O in a disconnect() callback.
+ * If the request has not already finished or been unlinked
+ * the completion handler will see urb->status == -ENOENT.
+ *
+ * After and while the routine runs, attempts to resubmit the URB will fail
+ * with error -EPERM.  Thus even if the URB's completion handler always
+ * tries to resubmit, it will not succeed and the URB will become idle.
+ *
+ * This routine may not be used in an interrupt context (such as a bottom
+ * half or a completion handler), or when holding a spinlock, or in other
+ * situations where the caller can't schedule().
+ */
+void usb_poison_urb(struct urb *urb)
+{
+	might_sleep();
+	if (!(urb && urb->dev && urb->ep))
+		return;
+	spin_lock_irq(&usb_reject_lock);
+	++urb->reject;
+	spin_unlock_irq(&usb_reject_lock);
+
+	usb_hcd_unlink_urb(urb, -ENOENT);
+	wait_event(usb_kill_urb_queue, atomic_read(&urb->use_count) == 0);
+}
+EXPORT_SYMBOL_GPL(usb_poison_urb);
+
+void usb_unpoison_urb(struct urb *urb)
+{
+	unsigned long flags;
+
+	if (!urb)
+		return;
+
+	spin_lock_irqsave(&usb_reject_lock, flags);
+	--urb->reject;
+	spin_unlock_irqrestore(&usb_reject_lock, flags);
+}
+EXPORT_SYMBOL_GPL(usb_unpoison_urb);
+
+/**
  * usb_kill_anchored_urbs - cancel transfer requests en masse
  * @anchor: anchor the requests are bound to
  *
@@ -589,6 +643,35 @@
 }
 EXPORT_SYMBOL_GPL(usb_kill_anchored_urbs);
 
+
+/**
+ * usb_poison_anchored_urbs - cease all traffic from an anchor
+ * @anchor: anchor the requests are bound to
+ *
+ * this allows all outstanding URBs to be poisoned starting
+ * from the back of the queue. Newly added URBs will also be
+ * poisoned
+ */
+void usb_poison_anchored_urbs(struct usb_anchor *anchor)
+{
+	struct urb *victim;
+
+	spin_lock_irq(&anchor->lock);
+	anchor->poisoned = 1;
+	while (!list_empty(&anchor->urb_list)) {
+		victim = list_entry(anchor->urb_list.prev, struct urb,
+				    anchor_list);
+		/* we must make sure the URB isn't freed before we kill it*/
+		usb_get_urb(victim);
+		spin_unlock_irq(&anchor->lock);
+		/* this will unanchor the URB */
+		usb_poison_urb(victim);
+		usb_put_urb(victim);
+		spin_lock_irq(&anchor->lock);
+	}
+	spin_unlock_irq(&anchor->lock);
+}
+EXPORT_SYMBOL_GPL(usb_poison_anchored_urbs);
 /**
  * usb_unlink_anchored_urbs - asynchronously cancel transfer requests en masse
  * @anchor: anchor the requests are bound to
@@ -633,3 +716,73 @@
 				  msecs_to_jiffies(timeout));
 }
 EXPORT_SYMBOL_GPL(usb_wait_anchor_empty_timeout);
+
+/**
+ * usb_get_from_anchor - get an anchor's oldest urb
+ * @anchor: the anchor whose urb you want
+ *
+ * this will take the oldest urb from an anchor,
+ * unanchor and return it
+ */
+struct urb *usb_get_from_anchor(struct usb_anchor *anchor)
+{
+	struct urb *victim;
+	unsigned long flags;
+
+	spin_lock_irqsave(&anchor->lock, flags);
+	if (!list_empty(&anchor->urb_list)) {
+		victim = list_entry(anchor->urb_list.next, struct urb,
+				    anchor_list);
+		usb_get_urb(victim);
+		spin_unlock_irqrestore(&anchor->lock, flags);
+		usb_unanchor_urb(victim);
+	} else {
+		spin_unlock_irqrestore(&anchor->lock, flags);
+		victim = NULL;
+	}
+
+	return victim;
+}
+
+EXPORT_SYMBOL_GPL(usb_get_from_anchor);
+
+/**
+ * usb_scuttle_anchored_urbs - unanchor all an anchor's urbs
+ * @anchor: the anchor whose urbs you want to unanchor
+ *
+ * use this to get rid of all an anchor's urbs
+ */
+void usb_scuttle_anchored_urbs(struct usb_anchor *anchor)
+{
+	struct urb *victim;
+	unsigned long flags;
+
+	spin_lock_irqsave(&anchor->lock, flags);
+	while (!list_empty(&anchor->urb_list)) {
+		victim = list_entry(anchor->urb_list.prev, struct urb,
+				    anchor_list);
+		usb_get_urb(victim);
+		spin_unlock_irqrestore(&anchor->lock, flags);
+		/* this may free the URB */
+		usb_unanchor_urb(victim);
+		usb_put_urb(victim);
+		spin_lock_irqsave(&anchor->lock, flags);
+	}
+	spin_unlock_irqrestore(&anchor->lock, flags);
+}
+
+EXPORT_SYMBOL_GPL(usb_scuttle_anchored_urbs);
+
+/**
+ * usb_anchor_empty - is an anchor empty
+ * @anchor: the anchor you want to query
+ *
+ * returns 1 if the anchor has no urbs associated with it
+ */
+int usb_anchor_empty(struct usb_anchor *anchor)
+{
+	return list_empty(&anchor->urb_list);
+}
+
+EXPORT_SYMBOL_GPL(usb_anchor_empty);
+
diff --git a/drivers/usb/gadget/Kconfig b/drivers/usb/gadget/Kconfig
index acc95b2..dd4cd5a 100644
--- a/drivers/usb/gadget/Kconfig
+++ b/drivers/usb/gadget/Kconfig
@@ -45,7 +45,7 @@
 
 config USB_GADGET_DEBUG
 	boolean "Debugging messages (DEVELOPMENT)"
-	depends on USB_GADGET && DEBUG_KERNEL
+	depends on DEBUG_KERNEL
 	help
 	   Many controller and gadget drivers will print some debugging
 	   messages if you use this option to ask for those messages.
@@ -59,7 +59,7 @@
 
 config USB_GADGET_DEBUG_FILES
 	boolean "Debugging information files (DEVELOPMENT)"
-	depends on USB_GADGET && PROC_FS
+	depends on PROC_FS
 	help
 	   Some of the drivers in the "gadget" framework can expose
 	   debugging information in files such as /proc/driver/udc
@@ -70,7 +70,7 @@
 
 config USB_GADGET_DEBUG_FS
 	boolean "Debugging information files in debugfs (DEVELOPMENT)"
-	depends on USB_GADGET && DEBUG_FS
+	depends on DEBUG_FS
 	help
 	   Some of the drivers in the "gadget" framework can expose
 	   debugging information in files under /sys/kernel/debug/.
@@ -79,12 +79,36 @@
 	   Enable these files by choosing "Y" here.  If in doubt, or
 	   to conserve kernel memory, say "N".
 
+config USB_GADGET_VBUS_DRAW
+	int "Maximum VBUS Power usage (2-500 mA)"
+	range 2 500
+	default 2
+	help
+	   Some devices need to draw power from USB when they are
+	   configured, perhaps to operate circuitry or to recharge
+	   batteries.  This is in addition to any local power supply,
+	   such as an AC adapter or batteries.
+
+	   Enter the maximum power your device draws through USB, in
+	   milliAmperes.  The permitted range of values is 2 - 500 mA;
+	   0 mA would be legal, but can make some hosts misbehave.
+
+	   This value will be used except for system-specific gadget
+	   drivers that have more specific information.
+
 config	USB_GADGET_SELECTED
 	boolean
 
 #
 # USB Peripheral Controller Support
 #
+# The order here is alphabetical, except that integrated controllers go
+# before discrete ones so they will be the initial/default value:
+#   - integrated/SOC controllers first
+#   - licensed IP used in both SOC and discrete versions
+#   - discrete ones (including all PCI-only controllers)
+#   - debug/dummy gadget+hcd is last.
+#
 choice
 	prompt "USB Peripheral Controller"
 	depends on USB_GADGET
@@ -94,26 +118,27 @@
 	   Many controller drivers are platform-specific; these
 	   often need board-specific hooks.
 
-config USB_GADGET_AMD5536UDC
-	boolean "AMD5536 UDC"
-	depends on PCI
-	select USB_GADGET_DUALSPEED
+#
+# Integrated controllers
+#
+
+config USB_GADGET_AT91
+	boolean "Atmel AT91 USB Device Port"
+	depends on ARCH_AT91 && !ARCH_AT91SAM9RL && !ARCH_AT91CAP9
+	select USB_GADGET_SELECTED
 	help
-	   The AMD5536 UDC is part of the AMD Geode CS5536, an x86 southbridge.
-	   It is a USB Highspeed DMA capable USB device controller. Beside ep0
-	   it provides 4 IN and 4 OUT endpoints (bulk or interrupt type).
-	   The UDC port supports OTG operation, and may be used as a host port
-	   if it's not being used to implement peripheral or OTG roles.
+	   Many Atmel AT91 processors (such as the AT91RM2000) have a
+	   full speed USB Device Port with support for five configurable
+	   endpoints (plus endpoint zero).
 
 	   Say "y" to link the driver statically, or "m" to build a
-	   dynamically linked module called "amd5536udc" and force all
+	   dynamically linked module called "at91_udc" and force all
 	   gadget drivers to also be dynamically linked.
 
-config USB_AMD5536UDC
+config USB_AT91
 	tristate
-	depends on USB_GADGET_AMD5536UDC
+	depends on USB_GADGET_AT91
 	default USB_GADGET
-	select USB_GADGET_SELECTED
 
 config USB_GADGET_ATMEL_USBA
 	boolean "Atmel USBA"
@@ -150,28 +175,50 @@
 	default USB_GADGET
 	select USB_GADGET_SELECTED
 
-config USB_GADGET_NET2280
-	boolean "NetChip 228x"
-	depends on PCI
-	select USB_GADGET_DUALSPEED
+config USB_GADGET_LH7A40X
+	boolean "LH7A40X"
+	depends on ARCH_LH7A40X
 	help
-	   NetChip 2280 / 2282 is a PCI based USB peripheral controller which
-	   supports both full and high speed USB 2.0 data transfers.  
-	   
-	   It has six configurable endpoints, as well as endpoint zero
-	   (for control transfers) and several endpoints with dedicated
-	   functions.
+	   This driver provides USB Device Controller driver for LH7A40x
 
-	   Say "y" to link the driver statically, or "m" to build a
-	   dynamically linked module called "net2280" and force all
-	   gadget drivers to also be dynamically linked.
-
-config USB_NET2280
+config USB_LH7A40X
 	tristate
-	depends on USB_GADGET_NET2280
+	depends on USB_GADGET_LH7A40X
 	default USB_GADGET
 	select USB_GADGET_SELECTED
 
+config USB_GADGET_OMAP
+	boolean "OMAP USB Device Controller"
+	depends on ARCH_OMAP
+	select ISP1301_OMAP if MACH_OMAP_H2 || MACH_OMAP_H3 || MACH_OMAP_H4_OTG
+	help
+	   Many Texas Instruments OMAP processors have flexible full
+	   speed USB device controllers, with support for up to 30
+	   endpoints (plus endpoint zero).  This driver supports the
+	   controller in the OMAP 1611, and should work with controllers
+	   in other OMAP processors too, given minor tweaks.
+
+	   Say "y" to link the driver statically, or "m" to build a
+	   dynamically linked module called "omap_udc" and force all
+	   gadget drivers to also be dynamically linked.
+
+config USB_OMAP
+	tristate
+	depends on USB_GADGET_OMAP
+	default USB_GADGET
+	select USB_GADGET_SELECTED
+
+config USB_OTG
+	boolean "OTG Support"
+	depends on USB_GADGET_OMAP && ARCH_OMAP_OTG && USB_OHCI_HCD
+	help
+	   The most notable feature of USB OTG is support for a
+	   "Dual-Role" device, which can act as either a device
+	   or a host.  The initial role choice can be changed
+	   later, when two dual-role devices talk to each other.
+
+	   Select this only if your OMAP board has a Mini-AB connector.
+
 config USB_GADGET_PXA25X
 	boolean "PXA 25x or IXP 4xx"
 	depends on (ARCH_PXA && PXA25x) || ARCH_IXP4XX
@@ -203,6 +250,61 @@
 	default y if USB_ETH
 	default y if USB_G_SERIAL
 
+config USB_GADGET_PXA27X
+	boolean "PXA 27x"
+	depends on ARCH_PXA && PXA27x
+	help
+	   Intel's PXA 27x series XScale ARM v5TE processors include
+	   an integrated full speed USB 1.1 device controller.
+
+	   It has up to 23 endpoints, as well as endpoint zero (for
+	   control transfers).
+
+	   Say "y" to link the driver statically, or "m" to build a
+	   dynamically linked module called "pxa27x_udc" and force all
+	   gadget drivers to also be dynamically linked.
+
+config USB_PXA27X
+	tristate
+	depends on USB_GADGET_PXA27X
+	default USB_GADGET
+	select USB_GADGET_SELECTED
+
+config USB_GADGET_S3C2410
+	boolean "S3C2410 USB Device Controller"
+	depends on ARCH_S3C2410
+	help
+	  Samsung's S3C2410 is an ARM-4 processor with an integrated
+	  full speed USB 1.1 device controller.  It has 4 configurable
+	  endpoints, as well as endpoint zero (for control transfers).
+
+	  This driver has been tested on the S3C2410, S3C2412, and
+	  S3C2440 processors.
+
+config USB_S3C2410
+	tristate
+	depends on USB_GADGET_S3C2410
+	default USB_GADGET
+	select USB_GADGET_SELECTED
+
+config USB_S3C2410_DEBUG
+	boolean "S3C2410 udc debug messages"
+	depends on USB_GADGET_S3C2410
+
+#
+# Controllers available in both integrated and discrete versions
+#
+
+# musb builds in ../musb along with host support
+config USB_GADGET_MUSB_HDRC
+	boolean "Inventra HDRC USB Peripheral (TI, ...)"
+	depends on USB_MUSB_HDRC && (USB_MUSB_PERIPHERAL || USB_MUSB_OTG)
+	select USB_GADGET_DUALSPEED
+	select USB_GADGET_SELECTED
+	help
+	  This OTG-capable silicon IP is used in dual designs including
+	  the TI DaVinci, OMAP 243x, OMAP 343x, and TUSB 6010.
+
 config USB_GADGET_M66592
 	boolean "Renesas M66592 USB Peripheral Controller"
 	select USB_GADGET_DUALSPEED
@@ -231,23 +333,69 @@
 	   However, this problem is improved if change a value of
 	   NET_IP_ALIGN to 4.
 
-config USB_GADGET_PXA27X
-	boolean "PXA 27x"
-	depends on ARCH_PXA && PXA27x
-	help
-	   Intel's PXA 27x series XScale ARM v5TE processors include
-	   an integrated full speed USB 1.1 device controller.
+#
+# Controllers available only in discrete form (and all PCI controllers)
+#
 
-	   It has up to 23 endpoints, as well as endpoint zero (for
-	   control transfers).
+config USB_GADGET_AMD5536UDC
+	boolean "AMD5536 UDC"
+	depends on PCI
+	select USB_GADGET_DUALSPEED
+	help
+	   The AMD5536 UDC is part of the AMD Geode CS5536, an x86 southbridge.
+	   It is a USB Highspeed DMA capable USB device controller. Beside ep0
+	   it provides 4 IN and 4 OUT endpoints (bulk or interrupt type).
+	   The UDC port supports OTG operation, and may be used as a host port
+	   if it's not being used to implement peripheral or OTG roles.
 
 	   Say "y" to link the driver statically, or "m" to build a
-	   dynamically linked module called "pxa27x_udc" and force all
+	   dynamically linked module called "amd5536udc" and force all
 	   gadget drivers to also be dynamically linked.
 
-config USB_PXA27X
+config USB_AMD5536UDC
 	tristate
-	depends on USB_GADGET_PXA27X
+	depends on USB_GADGET_AMD5536UDC
+	default USB_GADGET
+	select USB_GADGET_SELECTED
+
+config USB_GADGET_FSL_QE
+	boolean "Freescale QE/CPM USB Device Controller"
+	depends on FSL_SOC && (QUICC_ENGINE || CPM)
+	help
+	   Some of Freescale PowerPC processors have a Full Speed
+	   QE/CPM2 USB controller, which support device mode with 4
+	   programmable endpoints. This driver supports the
+	   controller in the MPC8360 and MPC8272, and should work with
+	   controllers having QE or CPM2, given minor tweaks.
+
+	   Set CONFIG_USB_GADGET to "m" to build this driver as a
+	   dynmically linked module called "fsl_qe_udc".
+
+config USB_FSL_QE
+	tristate
+	depends on USB_GADGET_FSL_QE
+	default USB_GADGET
+	select USB_GADGET_SELECTED
+
+config USB_GADGET_NET2280
+	boolean "NetChip 228x"
+	depends on PCI
+	select USB_GADGET_DUALSPEED
+	help
+	   NetChip 2280 / 2282 is a PCI based USB peripheral controller which
+	   supports both full and high speed USB 2.0 data transfers.
+
+	   It has six configurable endpoints, as well as endpoint zero
+	   (for control transfers) and several endpoints with dedicated
+	   functions.
+
+	   Say "y" to link the driver statically, or "m" to build a
+	   dynamically linked module called "net2280" and force all
+	   gadget drivers to also be dynamically linked.
+
+config USB_NET2280
+	tristate
+	depends on USB_GADGET_NET2280
 	default USB_GADGET
 	select USB_GADGET_SELECTED
 
@@ -257,7 +405,7 @@
 	help
 	   The Toshiba TC86C001 is a PCI device which includes controllers
 	   for full speed USB devices, IDE, I2C, SIO, plus a USB host (OHCI).
-	   
+
 	   The device controller has three configurable (bulk or interrupt)
 	   endpoints, plus endpoint zero (for control transfers).
 
@@ -272,98 +420,9 @@
 	select USB_GADGET_SELECTED
 
 
-config USB_GADGET_LH7A40X
-	boolean "LH7A40X"
-	depends on ARCH_LH7A40X
-	help
-    This driver provides USB Device Controller driver for LH7A40x
-
-config USB_LH7A40X
-	tristate
-	depends on USB_GADGET_LH7A40X
-	default USB_GADGET
-	select USB_GADGET_SELECTED
-
-# built in ../musb along with host support
-config USB_GADGET_MUSB_HDRC
-	boolean "Inventra HDRC USB Peripheral (TI, ...)"
-	depends on USB_MUSB_HDRC && (USB_MUSB_PERIPHERAL || USB_MUSB_OTG)
-	select USB_GADGET_DUALSPEED
-	select USB_GADGET_SELECTED
-	help
-	  This OTG-capable silicon IP is used in dual designs including
-	  the TI DaVinci, OMAP 243x, OMAP 343x, and TUSB 6010.
-
-config USB_GADGET_OMAP
-	boolean "OMAP USB Device Controller"
-	depends on ARCH_OMAP
-	select ISP1301_OMAP if MACH_OMAP_H2 || MACH_OMAP_H3
-	help
-	   Many Texas Instruments OMAP processors have flexible full
-	   speed USB device controllers, with support for up to 30
-	   endpoints (plus endpoint zero).  This driver supports the
-	   controller in the OMAP 1611, and should work with controllers
-	   in other OMAP processors too, given minor tweaks.
-
-	   Say "y" to link the driver statically, or "m" to build a
-	   dynamically linked module called "omap_udc" and force all
-	   gadget drivers to also be dynamically linked.
-
-config USB_OMAP
-	tristate
-	depends on USB_GADGET_OMAP
-	default USB_GADGET
-	select USB_GADGET_SELECTED
-
-config USB_OTG
-	boolean "OTG Support"
-	depends on USB_GADGET_OMAP && ARCH_OMAP_OTG && USB_OHCI_HCD
-	help
-	   The most notable feature of USB OTG is support for a
-	   "Dual-Role" device, which can act as either a device
-	   or a host.  The initial role choice can be changed
-	   later, when two dual-role devices talk to each other.
-
-	   Select this only if your OMAP board has a Mini-AB connector.
-
-config USB_GADGET_S3C2410
-	boolean "S3C2410 USB Device Controller"
-	depends on ARCH_S3C2410
-	help
-	  Samsung's S3C2410 is an ARM-4 processor with an integrated
-	  full speed USB 1.1 device controller.  It has 4 configurable
-	  endpoints, as well as endpoint zero (for control transfers).
-
-	  This driver has been tested on the S3C2410, S3C2412, and
-	  S3C2440 processors.
-
-config USB_S3C2410
-	tristate
-	depends on USB_GADGET_S3C2410
-	default USB_GADGET
-	select USB_GADGET_SELECTED
-
-config USB_S3C2410_DEBUG
-	boolean "S3C2410 udc debug messages"
-	depends on USB_GADGET_S3C2410
-
-config USB_GADGET_AT91
-	boolean "AT91 USB Device Port"
-	depends on ARCH_AT91 && !ARCH_AT91SAM9RL && !ARCH_AT91CAP9
-	select USB_GADGET_SELECTED
-	help
-	   Many Atmel AT91 processors (such as the AT91RM2000) have a
-	   full speed USB Device Port with support for five configurable
-	   endpoints (plus endpoint zero).
-
-	   Say "y" to link the driver statically, or "m" to build a
-	   dynamically linked module called "at91_udc" and force all
-	   gadget drivers to also be dynamically linked.
-
-config USB_AT91
-	tristate
-	depends on USB_GADGET_AT91
-	default USB_GADGET
+#
+# LAST -- dummy/emulated controller
+#
 
 config USB_GADGET_DUMMY_HCD
 	boolean "Dummy HCD (DEVELOPMENT)"
@@ -553,19 +612,23 @@
 	  normal operation.
 
 config USB_G_SERIAL
-	tristate "Serial Gadget (with CDC ACM support)"
+	tristate "Serial Gadget (with CDC ACM and CDC OBEX support)"
 	help
 	  The Serial Gadget talks to the Linux-USB generic serial driver.
 	  This driver supports a CDC-ACM module option, which can be used
 	  to interoperate with MS-Windows hosts or with the Linux-USB
 	  "cdc-acm" driver.
 
+	  This driver also supports a CDC-OBEX option.  You will need a
+	  user space OBEX server talking to /dev/ttyGS*, since the kernel
+	  itself doesn't implement the OBEX protocol.
+
 	  Say "y" to link the driver statically, or "m" to build a
 	  dynamically linked module called "g_serial".
 
 	  For more information, see Documentation/usb/gadget_serial.txt
 	  which includes instructions and a "driver info file" needed to
-	  make MS-Windows work with this driver.
+	  make MS-Windows work with CDC ACM.
 
 config USB_MIDI_GADGET
 	tristate "MIDI Gadget (EXPERIMENTAL)"
diff --git a/drivers/usb/gadget/Makefile b/drivers/usb/gadget/Makefile
index 2267fa0..bd4041b 100644
--- a/drivers/usb/gadget/Makefile
+++ b/drivers/usb/gadget/Makefile
@@ -18,6 +18,7 @@
 obj-$(CONFIG_USB_ATMEL_USBA)	+= atmel_usba_udc.o
 obj-$(CONFIG_USB_FSL_USB2)	+= fsl_usb2_udc.o
 obj-$(CONFIG_USB_M66592)	+= m66592-udc.o
+obj-$(CONFIG_USB_FSL_QE)	+= fsl_qe_udc.o
 
 #
 # USB gadget drivers
diff --git a/drivers/usb/gadget/cdc2.c b/drivers/usb/gadget/cdc2.c
index a724fc1..5495b17 100644
--- a/drivers/usb/gadget/cdc2.c
+++ b/drivers/usb/gadget/cdc2.c
@@ -155,7 +155,6 @@
 	.bConfigurationValue	= 1,
 	/* .iConfiguration = DYNAMIC */
 	.bmAttributes		= USB_CONFIG_ATT_SELFPOWER,
-	.bMaxPower		= 1,	/* 2 mA, minimal */
 };
 
 /*-------------------------------------------------------------------------*/
diff --git a/drivers/usb/gadget/composite.c b/drivers/usb/gadget/composite.c
index 85c876c..f2da026 100644
--- a/drivers/usb/gadget/composite.c
+++ b/drivers/usb/gadget/composite.c
@@ -128,6 +128,70 @@
 }
 
 /**
+ * usb_function_deactivate - prevent function and gadget enumeration
+ * @function: the function that isn't yet ready to respond
+ *
+ * Blocks response of the gadget driver to host enumeration by
+ * preventing the data line pullup from being activated.  This is
+ * normally called during @bind() processing to change from the
+ * initial "ready to respond" state, or when a required resource
+ * becomes available.
+ *
+ * For example, drivers that serve as a passthrough to a userspace
+ * daemon can block enumeration unless that daemon (such as an OBEX,
+ * MTP, or print server) is ready to handle host requests.
+ *
+ * Not all systems support software control of their USB peripheral
+ * data pullups.
+ *
+ * Returns zero on success, else negative errno.
+ */
+int usb_function_deactivate(struct usb_function *function)
+{
+	struct usb_composite_dev	*cdev = function->config->cdev;
+	int				status = 0;
+
+	spin_lock(&cdev->lock);
+
+	if (cdev->deactivations == 0)
+		status = usb_gadget_disconnect(cdev->gadget);
+	if (status == 0)
+		cdev->deactivations++;
+
+	spin_unlock(&cdev->lock);
+	return status;
+}
+
+/**
+ * usb_function_activate - allow function and gadget enumeration
+ * @function: function on which usb_function_activate() was called
+ *
+ * Reverses effect of usb_function_deactivate().  If no more functions
+ * are delaying their activation, the gadget driver will respond to
+ * host enumeration procedures.
+ *
+ * Returns zero on success, else negative errno.
+ */
+int usb_function_activate(struct usb_function *function)
+{
+	struct usb_composite_dev	*cdev = function->config->cdev;
+	int				status = 0;
+
+	spin_lock(&cdev->lock);
+
+	if (WARN_ON(cdev->deactivations == 0))
+		status = -EINVAL;
+	else {
+		cdev->deactivations--;
+		if (cdev->deactivations == 0)
+			status = usb_gadget_connect(cdev->gadget);
+	}
+
+	spin_unlock(&cdev->lock);
+	return status;
+}
+
+/**
  * usb_interface_id() - allocate an unused interface ID
  * @config: configuration associated with the interface
  * @function: function handling the interface
@@ -181,7 +245,7 @@
 	c->bConfigurationValue = config->bConfigurationValue;
 	c->iConfiguration = config->iConfiguration;
 	c->bmAttributes = USB_CONFIG_ATT_ONE | config->bmAttributes;
-	c->bMaxPower = config->bMaxPower;
+	c->bMaxPower = config->bMaxPower ? : (CONFIG_USB_GADGET_VBUS_DRAW / 2);
 
 	/* There may be e.g. OTG descriptors */
 	if (config->descriptors) {
@@ -368,7 +432,7 @@
 	}
 
 	/* when we return, be sure our power usage is valid */
-	power = 2 * c->bMaxPower;
+	power = c->bMaxPower ? (2 * c->bMaxPower) : CONFIG_USB_GADGET_VBUS_DRAW;
 done:
 	usb_gadget_vbus_draw(gadget, power);
 	return result;
diff --git a/drivers/usb/gadget/dummy_hcd.c b/drivers/usb/gadget/dummy_hcd.c
index 7600a0c..9064696 100644
--- a/drivers/usb/gadget/dummy_hcd.c
+++ b/drivers/usb/gadget/dummy_hcd.c
@@ -82,6 +82,7 @@
 	const struct usb_endpoint_descriptor *desc;
 	struct usb_ep			ep;
 	unsigned			halted : 1;
+	unsigned			wedged : 1;
 	unsigned			already_seen : 1;
 	unsigned			setup_stage : 1;
 };
@@ -436,6 +437,7 @@
 	/* at this point real hardware should be NAKing transfers
 	 * to that endpoint, until a buffer is queued to it.
 	 */
+	ep->halted = ep->wedged = 0;
 	retval = 0;
 done:
 	return retval;
@@ -597,7 +599,7 @@
 }
 
 static int
-dummy_set_halt (struct usb_ep *_ep, int value)
+dummy_set_halt_and_wedge(struct usb_ep *_ep, int value, int wedged)
 {
 	struct dummy_ep		*ep;
 	struct dummy		*dum;
@@ -609,16 +611,32 @@
 	if (!dum->driver)
 		return -ESHUTDOWN;
 	if (!value)
-		ep->halted = 0;
+		ep->halted = ep->wedged = 0;
 	else if (ep->desc && (ep->desc->bEndpointAddress & USB_DIR_IN) &&
 			!list_empty (&ep->queue))
 		return -EAGAIN;
-	else
+	else {
 		ep->halted = 1;
+		if (wedged)
+			ep->wedged = 1;
+	}
 	/* FIXME clear emulated data toggle too */
 	return 0;
 }
 
+static int
+dummy_set_halt(struct usb_ep *_ep, int value)
+{
+	return dummy_set_halt_and_wedge(_ep, value, 0);
+}
+
+static int dummy_set_wedge(struct usb_ep *_ep)
+{
+	if (!_ep || _ep->name == ep0name)
+		return -EINVAL;
+	return dummy_set_halt_and_wedge(_ep, 1, 1);
+}
+
 static const struct usb_ep_ops dummy_ep_ops = {
 	.enable		= dummy_enable,
 	.disable	= dummy_disable,
@@ -630,6 +648,7 @@
 	.dequeue	= dummy_dequeue,
 
 	.set_halt	= dummy_set_halt,
+	.set_wedge	= dummy_set_wedge,
 };
 
 /*-------------------------------------------------------------------------*/
@@ -760,7 +779,8 @@
 		ep->ep.name = ep_name [i];
 		ep->ep.ops = &dummy_ep_ops;
 		list_add_tail (&ep->ep.ep_list, &dum->gadget.ep_list);
-		ep->halted = ep->already_seen = ep->setup_stage = 0;
+		ep->halted = ep->wedged = ep->already_seen =
+				ep->setup_stage = 0;
 		ep->ep.maxpacket = ~0;
 		ep->last_io = jiffies;
 		ep->gadget = &dum->gadget;
@@ -1351,7 +1371,7 @@
 				} else if (setup.bRequestType == Ep_Request) {
 					// endpoint halt
 					ep2 = find_endpoint (dum, w_index);
-					if (!ep2) {
+					if (!ep2 || ep2->ep.name == ep0name) {
 						value = -EOPNOTSUPP;
 						break;
 					}
@@ -1380,7 +1400,8 @@
 						value = -EOPNOTSUPP;
 						break;
 					}
-					ep2->halted = 0;
+					if (!ep2->wedged)
+						ep2->halted = 0;
 					value = 0;
 					status = 0;
 				}
diff --git a/drivers/usb/gadget/ether.c b/drivers/usb/gadget/ether.c
index 944c8e8..37252d0 100644
--- a/drivers/usb/gadget/ether.c
+++ b/drivers/usb/gadget/ether.c
@@ -242,7 +242,6 @@
 	.bConfigurationValue	= 2,
 	/* .iConfiguration = DYNAMIC */
 	.bmAttributes		= USB_CONFIG_ATT_SELFPOWER,
-	.bMaxPower		= 1,	/* 2 mA, minimal */
 };
 
 /*-------------------------------------------------------------------------*/
@@ -271,7 +270,6 @@
 	.bConfigurationValue	= 1,
 	/* .iConfiguration = DYNAMIC */
 	.bmAttributes		= USB_CONFIG_ATT_SELFPOWER,
-	.bMaxPower		= 1,	/* 2 mA, minimal */
 };
 
 /*-------------------------------------------------------------------------*/
diff --git a/drivers/usb/gadget/f_loopback.c b/drivers/usb/gadget/f_loopback.c
index 87dde01..8affe1d 100644
--- a/drivers/usb/gadget/f_loopback.c
+++ b/drivers/usb/gadget/f_loopback.c
@@ -352,7 +352,6 @@
 	.bind		= loopback_bind_config,
 	.bConfigurationValue = 2,
 	.bmAttributes	= USB_CONFIG_ATT_SELFPOWER,
-	.bMaxPower	= 1,	/* 2 mA, minimal */
 	/* .iConfiguration = DYNAMIC */
 };
 
diff --git a/drivers/usb/gadget/f_obex.c b/drivers/usb/gadget/f_obex.c
new file mode 100644
index 0000000..80c2e7e
--- /dev/null
+++ b/drivers/usb/gadget/f_obex.c
@@ -0,0 +1,493 @@
+/*
+ * f_obex.c -- USB CDC OBEX function driver
+ *
+ * Copyright (C) 2008 Nokia Corporation
+ * Contact: Felipe Balbi <felipe.balbi@nokia.com>
+ *
+ * Based on f_acm.c by Al Borchers and David Brownell.
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or
+ * (at your option) any later version.
+ *
+ * This program is distributed in the hope that it will be useful,
+ * but WITHOUT ANY WARRANTY; without even the implied warranty of
+ * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
+ * GNU General Public License for more details.
+ *
+ * You should have received a copy of the GNU General Public License
+ * along with this program; if not, write to the Free Software
+ * Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
+ */
+
+/* #define VERBOSE_DEBUG */
+
+#include <linux/kernel.h>
+#include <linux/utsname.h>
+#include <linux/device.h>
+
+#include "u_serial.h"
+#include "gadget_chips.h"
+
+
+/*
+ * This CDC OBEX function support just packages a TTY-ish byte stream.
+ * A user mode server will put it into "raw" mode and handle all the
+ * relevant protocol details ... this is just a kernel passthrough.
+ * When possible, we prevent gadget enumeration until that server is
+ * ready to handle the commands.
+ */
+
+struct obex_ep_descs {
+	struct usb_endpoint_descriptor	*obex_in;
+	struct usb_endpoint_descriptor	*obex_out;
+};
+
+struct f_obex {
+	struct gserial			port;
+	u8				ctrl_id;
+	u8				data_id;
+	u8				port_num;
+	u8				can_activate;
+
+	struct obex_ep_descs		fs;
+	struct obex_ep_descs		hs;
+};
+
+static inline struct f_obex *func_to_obex(struct usb_function *f)
+{
+	return container_of(f, struct f_obex, port.func);
+}
+
+static inline struct f_obex *port_to_obex(struct gserial *p)
+{
+	return container_of(p, struct f_obex, port);
+}
+
+/*-------------------------------------------------------------------------*/
+
+#define OBEX_CTRL_IDX	0
+#define OBEX_DATA_IDX	1
+
+static struct usb_string obex_string_defs[] = {
+	[OBEX_CTRL_IDX].s	= "CDC Object Exchange (OBEX)",
+	[OBEX_DATA_IDX].s	= "CDC OBEX Data",
+	{  },	/* end of list */
+};
+
+static struct usb_gadget_strings obex_string_table = {
+	.language		= 0x0409,	/* en-US */
+	.strings		= obex_string_defs,
+};
+
+static struct usb_gadget_strings *obex_strings[] = {
+	&obex_string_table,
+	NULL,
+};
+
+/*-------------------------------------------------------------------------*/
+
+static struct usb_interface_descriptor obex_control_intf __initdata = {
+	.bLength		= sizeof(obex_control_intf),
+	.bDescriptorType	= USB_DT_INTERFACE,
+	.bInterfaceNumber	= 0,
+
+	.bAlternateSetting	= 0,
+	.bNumEndpoints		= 0,
+	.bInterfaceClass	= USB_CLASS_COMM,
+	.bInterfaceSubClass	= USB_CDC_SUBCLASS_OBEX,
+};
+
+static struct usb_interface_descriptor obex_data_nop_intf __initdata = {
+	.bLength		= sizeof(obex_data_nop_intf),
+	.bDescriptorType	= USB_DT_INTERFACE,
+	.bInterfaceNumber	= 1,
+
+	.bAlternateSetting	= 0,
+	.bNumEndpoints		= 0,
+	.bInterfaceClass	= USB_CLASS_CDC_DATA,
+};
+
+static struct usb_interface_descriptor obex_data_intf __initdata = {
+	.bLength		= sizeof(obex_data_intf),
+	.bDescriptorType	= USB_DT_INTERFACE,
+	.bInterfaceNumber	= 2,
+
+	.bAlternateSetting	= 1,
+	.bNumEndpoints		= 2,
+	.bInterfaceClass	= USB_CLASS_CDC_DATA,
+};
+
+static struct usb_cdc_header_desc obex_cdc_header_desc __initdata = {
+	.bLength		= sizeof(obex_cdc_header_desc),
+	.bDescriptorType	= USB_DT_CS_INTERFACE,
+	.bDescriptorSubType	= USB_CDC_HEADER_TYPE,
+	.bcdCDC			= __constant_cpu_to_le16(0x0120),
+};
+
+static struct usb_cdc_union_desc obex_cdc_union_desc __initdata = {
+	.bLength		= sizeof(obex_cdc_union_desc),
+	.bDescriptorType	= USB_DT_CS_INTERFACE,
+	.bDescriptorSubType	= USB_CDC_UNION_TYPE,
+	.bMasterInterface0	= 1,
+	.bSlaveInterface0	= 2,
+};
+
+static struct usb_cdc_obex_desc obex_desc __initdata = {
+	.bLength		= sizeof(obex_desc),
+	.bDescriptorType	= USB_DT_CS_INTERFACE,
+	.bDescriptorSubType	= USB_CDC_OBEX_TYPE,
+	.bcdVersion		= __constant_cpu_to_le16(0x0100),
+};
+
+/* High-Speed Support */
+
+static struct usb_endpoint_descriptor obex_hs_ep_out_desc __initdata = {
+	.bLength		= USB_DT_ENDPOINT_SIZE,
+	.bDescriptorType	= USB_DT_ENDPOINT,
+
+	.bEndpointAddress	= USB_DIR_OUT,
+	.bmAttributes		= USB_ENDPOINT_XFER_BULK,
+	.wMaxPacketSize		= __constant_cpu_to_le16(512),
+};
+
+static struct usb_endpoint_descriptor obex_hs_ep_in_desc __initdata = {
+	.bLength		= USB_DT_ENDPOINT_SIZE,
+	.bDescriptorType	= USB_DT_ENDPOINT,
+
+	.bEndpointAddress	= USB_DIR_IN,
+	.bmAttributes		= USB_ENDPOINT_XFER_BULK,
+	.wMaxPacketSize		= __constant_cpu_to_le16(512),
+};
+
+static struct usb_descriptor_header *hs_function[] __initdata = {
+	(struct usb_descriptor_header *) &obex_control_intf,
+	(struct usb_descriptor_header *) &obex_cdc_header_desc,
+	(struct usb_descriptor_header *) &obex_desc,
+	(struct usb_descriptor_header *) &obex_cdc_union_desc,
+
+	(struct usb_descriptor_header *) &obex_data_nop_intf,
+	(struct usb_descriptor_header *) &obex_data_intf,
+	(struct usb_descriptor_header *) &obex_hs_ep_in_desc,
+	(struct usb_descriptor_header *) &obex_hs_ep_out_desc,
+	NULL,
+};
+
+/* Full-Speed Support */
+
+static struct usb_endpoint_descriptor obex_fs_ep_in_desc __initdata = {
+	.bLength		= USB_DT_ENDPOINT_SIZE,
+	.bDescriptorType	= USB_DT_ENDPOINT,
+
+	.bEndpointAddress	= USB_DIR_IN,
+	.bmAttributes		= USB_ENDPOINT_XFER_BULK,
+};
+
+static struct usb_endpoint_descriptor obex_fs_ep_out_desc __initdata = {
+	.bLength		= USB_DT_ENDPOINT_SIZE,
+	.bDescriptorType	= USB_DT_ENDPOINT,
+
+	.bEndpointAddress	= USB_DIR_OUT,
+	.bmAttributes		= USB_ENDPOINT_XFER_BULK,
+};
+
+static struct usb_descriptor_header *fs_function[] __initdata = {
+	(struct usb_descriptor_header *) &obex_control_intf,
+	(struct usb_descriptor_header *) &obex_cdc_header_desc,
+	(struct usb_descriptor_header *) &obex_desc,
+	(struct usb_descriptor_header *) &obex_cdc_union_desc,
+
+	(struct usb_descriptor_header *) &obex_data_nop_intf,
+	(struct usb_descriptor_header *) &obex_data_intf,
+	(struct usb_descriptor_header *) &obex_fs_ep_in_desc,
+	(struct usb_descriptor_header *) &obex_fs_ep_out_desc,
+	NULL,
+};
+
+/*-------------------------------------------------------------------------*/
+
+static int obex_set_alt(struct usb_function *f, unsigned intf, unsigned alt)
+{
+	struct f_obex		*obex = func_to_obex(f);
+	struct usb_composite_dev *cdev = f->config->cdev;
+
+	if (intf == obex->ctrl_id) {
+		if (alt != 0)
+			goto fail;
+		/* NOP */
+		DBG(cdev, "reset obex ttyGS%d control\n", obex->port_num);
+
+	} else if (intf == obex->data_id) {
+		if (alt > 1)
+			goto fail;
+
+		if (obex->port.in->driver_data) {
+			DBG(cdev, "reset obex ttyGS%d\n", obex->port_num);
+			gserial_disconnect(&obex->port);
+		}
+
+		if (!obex->port.in_desc) {
+			DBG(cdev, "init obex ttyGS%d\n", obex->port_num);
+			obex->port.in_desc = ep_choose(cdev->gadget,
+					obex->hs.obex_in, obex->fs.obex_in);
+			obex->port.out_desc = ep_choose(cdev->gadget,
+					obex->hs.obex_out, obex->fs.obex_out);
+		}
+
+		if (alt == 1) {
+			DBG(cdev, "activate obex ttyGS%d\n", obex->port_num);
+			gserial_connect(&obex->port, obex->port_num);
+		}
+
+	} else
+		goto fail;
+
+	return 0;
+
+fail:
+	return -EINVAL;
+}
+
+static int obex_get_alt(struct usb_function *f, unsigned intf)
+{
+	struct f_obex		*obex = func_to_obex(f);
+
+	if (intf == obex->ctrl_id)
+		return 0;
+
+	return obex->port.in->driver_data ? 1 : 0;
+}
+
+static void obex_disable(struct usb_function *f)
+{
+	struct f_obex	*obex = func_to_obex(f);
+	struct usb_composite_dev *cdev = f->config->cdev;
+
+	DBG(cdev, "obex ttyGS%d disable\n", obex->port_num);
+	gserial_disconnect(&obex->port);
+}
+
+/*-------------------------------------------------------------------------*/
+
+static void obex_connect(struct gserial *g)
+{
+	struct f_obex		*obex = port_to_obex(g);
+	struct usb_composite_dev *cdev = g->func.config->cdev;
+	int			status;
+
+	if (!obex->can_activate)
+		return;
+
+	status = usb_function_activate(&g->func);
+	if (status)
+		DBG(cdev, "obex ttyGS%d function activate --> %d\n",
+			obex->port_num, status);
+}
+
+static void obex_disconnect(struct gserial *g)
+{
+	struct f_obex		*obex = port_to_obex(g);
+	struct usb_composite_dev *cdev = g->func.config->cdev;
+	int			status;
+
+	if (!obex->can_activate)
+		return;
+
+	status = usb_function_deactivate(&g->func);
+	if (status)
+		DBG(cdev, "obex ttyGS%d function deactivate --> %d\n",
+			obex->port_num, status);
+}
+
+/*-------------------------------------------------------------------------*/
+
+static int __init
+obex_bind(struct usb_configuration *c, struct usb_function *f)
+{
+	struct usb_composite_dev *cdev = c->cdev;
+	struct f_obex		*obex = func_to_obex(f);
+	int			status;
+	struct usb_ep		*ep;
+
+	/* allocate instance-specific interface IDs, and patch descriptors */
+
+	status = usb_interface_id(c, f);
+	if (status < 0)
+		goto fail;
+	obex->ctrl_id = status;
+
+	obex_control_intf.bInterfaceNumber = status;
+	obex_cdc_union_desc.bMasterInterface0 = status;
+
+	status = usb_interface_id(c, f);
+	if (status < 0)
+		goto fail;
+	obex->data_id = status;
+
+	obex_data_nop_intf.bInterfaceNumber = status;
+	obex_data_intf.bInterfaceNumber = status;
+	obex_cdc_union_desc.bSlaveInterface0 = status;
+
+	/* allocate instance-specific endpoints */
+
+	ep = usb_ep_autoconfig(cdev->gadget, &obex_fs_ep_in_desc);
+	if (!ep)
+		goto fail;
+	obex->port.in = ep;
+	ep->driver_data = cdev;	/* claim */
+
+	ep = usb_ep_autoconfig(cdev->gadget, &obex_fs_ep_out_desc);
+	if (!ep)
+		goto fail;
+	obex->port.out = ep;
+	ep->driver_data = cdev;	/* claim */
+
+	/* copy descriptors, and track endpoint copies */
+	f->descriptors = usb_copy_descriptors(fs_function);
+
+	obex->fs.obex_in = usb_find_endpoint(fs_function,
+			f->descriptors, &obex_fs_ep_in_desc);
+	obex->fs.obex_out = usb_find_endpoint(fs_function,
+			f->descriptors, &obex_fs_ep_out_desc);
+
+	/* support all relevant hardware speeds... we expect that when
+	 * hardware is dual speed, all bulk-capable endpoints work at
+	 * both speeds
+	 */
+	if (gadget_is_dualspeed(c->cdev->gadget)) {
+
+		obex_hs_ep_in_desc.bEndpointAddress =
+				obex_fs_ep_in_desc.bEndpointAddress;
+		obex_hs_ep_out_desc.bEndpointAddress =
+				obex_fs_ep_out_desc.bEndpointAddress;
+
+		/* copy descriptors, and track endpoint copies */
+		f->hs_descriptors = usb_copy_descriptors(hs_function);
+
+		obex->hs.obex_in = usb_find_endpoint(hs_function,
+				f->descriptors, &obex_hs_ep_in_desc);
+		obex->hs.obex_out = usb_find_endpoint(hs_function,
+				f->descriptors, &obex_hs_ep_out_desc);
+	}
+
+	/* Avoid letting this gadget enumerate until the userspace
+	 * OBEX server is active.
+	 */
+	status = usb_function_deactivate(f);
+	if (status < 0)
+		WARNING(cdev, "obex ttyGS%d: can't prevent enumeration, %d\n",
+			obex->port_num, status);
+	else
+		obex->can_activate = true;
+
+
+	DBG(cdev, "obex ttyGS%d: %s speed IN/%s OUT/%s\n",
+			obex->port_num,
+			gadget_is_dualspeed(c->cdev->gadget) ? "dual" : "full",
+			obex->port.in->name, obex->port.out->name);
+
+	return 0;
+
+fail:
+	/* we might as well release our claims on endpoints */
+	if (obex->port.out)
+		obex->port.out->driver_data = NULL;
+	if (obex->port.in)
+		obex->port.in->driver_data = NULL;
+
+	ERROR(cdev, "%s/%p: can't bind, err %d\n", f->name, f, status);
+
+	return status;
+}
+
+static void
+obex_unbind(struct usb_configuration *c, struct usb_function *f)
+{
+	if (gadget_is_dualspeed(c->cdev->gadget))
+		usb_free_descriptors(f->hs_descriptors);
+	usb_free_descriptors(f->descriptors);
+	kfree(func_to_obex(f));
+}
+
+/* Some controllers can't support CDC OBEX ... */
+static inline bool can_support_obex(struct usb_configuration *c)
+{
+	/* Since the first interface is a NOP, we can ignore the
+	 * issue of multi-interface support on most controllers.
+	 *
+	 * Altsettings are mandatory, however...
+	 */
+	if (!gadget_supports_altsettings(c->cdev->gadget))
+		return false;
+
+	/* everything else is *probably* fine ... */
+	return true;
+}
+
+/**
+ * obex_bind_config - add a CDC OBEX function to a configuration
+ * @c: the configuration to support the CDC OBEX instance
+ * @port_num: /dev/ttyGS* port this interface will use
+ * Context: single threaded during gadget setup
+ *
+ * Returns zero on success, else negative errno.
+ *
+ * Caller must have called @gserial_setup() with enough ports to
+ * handle all the ones it binds.  Caller is also responsible
+ * for calling @gserial_cleanup() before module unload.
+ */
+int __init obex_bind_config(struct usb_configuration *c, u8 port_num)
+{
+	struct f_obex	*obex;
+	int		status;
+
+	if (!can_support_obex(c))
+		return -EINVAL;
+
+	/* maybe allocate device-global string IDs, and patch descriptors */
+	if (obex_string_defs[OBEX_CTRL_IDX].id == 0) {
+		status = usb_string_id(c->cdev);
+		if (status < 0)
+			return status;
+		obex_string_defs[OBEX_CTRL_IDX].id = status;
+
+		obex_control_intf.iInterface = status;
+
+		status = usb_string_id(c->cdev);
+		if (status < 0)
+			return status;
+		obex_string_defs[OBEX_DATA_IDX].id = status;
+
+		obex_data_nop_intf.iInterface =
+			obex_data_intf.iInterface = status;
+	}
+
+	/* allocate and initialize one new instance */
+	obex = kzalloc(sizeof *obex, GFP_KERNEL);
+	if (!obex)
+		return -ENOMEM;
+
+	obex->port_num = port_num;
+
+	obex->port.connect = obex_connect;
+	obex->port.disconnect = obex_disconnect;
+
+	obex->port.func.name = "obex";
+	obex->port.func.strings = obex_strings;
+	/* descriptors are per-instance copies */
+	obex->port.func.bind = obex_bind;
+	obex->port.func.unbind = obex_unbind;
+	obex->port.func.set_alt = obex_set_alt;
+	obex->port.func.get_alt = obex_get_alt;
+	obex->port.func.disable = obex_disable;
+
+	status = usb_add_function(c, &obex->port.func);
+	if (status)
+		kfree(obex);
+
+	return status;
+}
+
+MODULE_AUTHOR("Felipe Balbi");
+MODULE_LICENSE("GPL");
diff --git a/drivers/usb/gadget/f_sourcesink.c b/drivers/usb/gadget/f_sourcesink.c
index f18c3a1..dc84d26 100644
--- a/drivers/usb/gadget/f_sourcesink.c
+++ b/drivers/usb/gadget/f_sourcesink.c
@@ -552,7 +552,6 @@
 	.setup		= sourcesink_setup,
 	.bConfigurationValue = 3,
 	.bmAttributes	= USB_CONFIG_ATT_SELFPOWER,
-	.bMaxPower	= 1,	/* 2 mA, minimal */
 	/* .iConfiguration = DYNAMIC */
 };
 
diff --git a/drivers/usb/gadget/file_storage.c b/drivers/usb/gadget/file_storage.c
index 0c632d2..c4e62a6 100644
--- a/drivers/usb/gadget/file_storage.c
+++ b/drivers/usb/gadget/file_storage.c
@@ -851,7 +851,7 @@
 	.bConfigurationValue =	CONFIG_VALUE,
 	.iConfiguration =	STRING_CONFIG,
 	.bmAttributes =		USB_CONFIG_ATT_ONE | USB_CONFIG_ATT_SELFPOWER,
-	.bMaxPower =		1,	// self-powered
+	.bMaxPower =		CONFIG_USB_GADGET_VBUS_DRAW / 2,
 };
 
 static struct usb_otg_descriptor
@@ -2676,11 +2676,24 @@
 	/* Verify the length of the command itself */
 	if (cmnd_size != fsg->cmnd_size) {
 
-		/* Special case workaround: MS-Windows issues REQUEST SENSE
-		 * with cbw->Length == 12 (it should be 6). */
-		if (fsg->cmnd[0] == SC_REQUEST_SENSE && fsg->cmnd_size == 12)
+		/* Special case workaround: There are plenty of buggy SCSI
+		 * implementations. Many have issues with cbw->Length
+		 * field passing a wrong command size. For those cases we
+		 * always try to work around the problem by using the length
+		 * sent by the host side provided it is at least as large
+		 * as the correct command length.
+		 * Examples of such cases would be MS-Windows, which issues
+		 * REQUEST SENSE with cbw->Length == 12 where it should
+		 * be 6, and xbox360 issuing INQUIRY, TEST UNIT READY and
+		 * REQUEST SENSE with cbw->Length == 10 where it should
+		 * be 6 as well.
+		 */
+		if (cmnd_size <= fsg->cmnd_size) {
+			DBG(fsg, "%s is buggy! Expected length %d "
+					"but we got %d\n", name,
+					cmnd_size, fsg->cmnd_size);
 			cmnd_size = fsg->cmnd_size;
-		else {
+		} else {
 			fsg->phase_error = 1;
 			return -EINVAL;
 		}
diff --git a/drivers/usb/gadget/fsl_qe_udc.c b/drivers/usb/gadget/fsl_qe_udc.c
new file mode 100644
index 0000000..1fe8b44
--- /dev/null
+++ b/drivers/usb/gadget/fsl_qe_udc.c
@@ -0,0 +1,2760 @@
+/*
+ * driver/usb/gadget/fsl_qe_udc.c
+ *
+ * Copyright (c) 2006-2008 Freescale Semiconductor, Inc. All rights reserved.
+ *
+ * 	Xie Xiaobo <X.Xie@freescale.com>
+ * 	Li Yang <leoli@freescale.com>
+ * 	Based on bareboard code from Shlomi Gridish.
+ *
+ * Description:
+ * Freescle QE/CPM USB Pheripheral Controller Driver
+ * The controller can be found on MPC8360, MPC8272, and etc.
+ * MPC8360 Rev 1.1 may need QE mircocode update
+ *
+ * This program is free software; you can redistribute it and/or modify it
+ * under the terms of the GNU General Public License as published by the
+ * Free Software Foundation;  either version 2 of the License, or (at your
+ * option) any later version.
+ */
+
+#undef USB_TRACE
+
+#include <linux/module.h>
+#include <linux/kernel.h>
+#include <linux/init.h>
+#include <linux/ioport.h>
+#include <linux/types.h>
+#include <linux/errno.h>
+#include <linux/slab.h>
+#include <linux/list.h>
+#include <linux/interrupt.h>
+#include <linux/io.h>
+#include <linux/moduleparam.h>
+#include <linux/of_platform.h>
+#include <linux/dma-mapping.h>
+#include <linux/usb/ch9.h>
+#include <linux/usb/gadget.h>
+#include <linux/usb/otg.h>
+#include <asm/qe.h>
+#include <asm/cpm.h>
+#include <asm/dma.h>
+#include <asm/reg.h>
+#include "fsl_qe_udc.h"
+
+#define DRIVER_DESC     "Freescale QE/CPM USB Device Controller driver"
+#define DRIVER_AUTHOR   "Xie XiaoBo"
+#define DRIVER_VERSION  "1.0"
+
+#define DMA_ADDR_INVALID        (~(dma_addr_t)0)
+
+static const char driver_name[] = "fsl_qe_udc";
+static const char driver_desc[] = DRIVER_DESC;
+
+/*ep name is important in gadget, it should obey the convention of ep_match()*/
+static const char *const ep_name[] = {
+	"ep0-control", /* everyone has ep0 */
+	/* 3 configurable endpoints */
+	"ep1",
+	"ep2",
+	"ep3",
+};
+
+static struct usb_endpoint_descriptor qe_ep0_desc = {
+	.bLength =		USB_DT_ENDPOINT_SIZE,
+	.bDescriptorType =	USB_DT_ENDPOINT,
+
+	.bEndpointAddress =	0,
+	.bmAttributes =		USB_ENDPOINT_XFER_CONTROL,
+	.wMaxPacketSize =	USB_MAX_CTRL_PAYLOAD,
+};
+
+/* it is initialized in probe()  */
+static struct qe_udc *udc_controller;
+
+/********************************************************************
+ *      Internal Used Function Start
+********************************************************************/
+/*-----------------------------------------------------------------
+ * done() - retire a request; caller blocked irqs
+ *--------------------------------------------------------------*/
+static void done(struct qe_ep *ep, struct qe_req *req, int status)
+{
+	struct qe_udc *udc = ep->udc;
+	unsigned char stopped = ep->stopped;
+
+	/* the req->queue pointer is used by ep_queue() func, in which
+	 * the request will be added into a udc_ep->queue 'd tail
+	 * so here the req will be dropped from the ep->queue
+	 */
+	list_del_init(&req->queue);
+
+	/* req.status should be set as -EINPROGRESS in ep_queue() */
+	if (req->req.status == -EINPROGRESS)
+		req->req.status = status;
+	else
+		status = req->req.status;
+
+	if (req->mapped) {
+		dma_unmap_single(udc->gadget.dev.parent,
+			req->req.dma, req->req.length,
+			ep_is_in(ep)
+				? DMA_TO_DEVICE
+				: DMA_FROM_DEVICE);
+		req->req.dma = DMA_ADDR_INVALID;
+		req->mapped = 0;
+	} else
+		dma_sync_single_for_cpu(udc->gadget.dev.parent,
+			req->req.dma, req->req.length,
+			ep_is_in(ep)
+				? DMA_TO_DEVICE
+				: DMA_FROM_DEVICE);
+
+	if (status && (status != -ESHUTDOWN))
+		dev_vdbg(udc->dev, "complete %s req %p stat %d len %u/%u\n",
+			ep->ep.name, &req->req, status,
+			req->req.actual, req->req.length);
+
+	/* don't modify queue heads during completion callback */
+	ep->stopped = 1;
+	spin_unlock(&udc->lock);
+
+	/* this complete() should a func implemented by gadget layer,
+	 * eg fsg->bulk_in_complete() */
+	if (req->req.complete)
+		req->req.complete(&ep->ep, &req->req);
+
+	spin_lock(&udc->lock);
+
+	ep->stopped = stopped;
+}
+
+/*-----------------------------------------------------------------
+ * nuke(): delete all requests related to this ep
+ *--------------------------------------------------------------*/
+static void nuke(struct qe_ep *ep, int status)
+{
+	/* Whether this eq has request linked */
+	while (!list_empty(&ep->queue)) {
+		struct qe_req *req = NULL;
+		req = list_entry(ep->queue.next, struct qe_req, queue);
+
+		done(ep, req, status);
+	}
+}
+
+/*---------------------------------------------------------------------------*
+ * USB and Endpoint manipulate process, include parameter and register       *
+ *---------------------------------------------------------------------------*/
+/* @value: 1--set stall 0--clean stall */
+static int qe_eprx_stall_change(struct qe_ep *ep, int value)
+{
+	u16 tem_usep;
+	u8 epnum = ep->epnum;
+	struct qe_udc *udc = ep->udc;
+
+	tem_usep = in_be16(&udc->usb_regs->usb_usep[epnum]);
+	tem_usep = tem_usep & ~USB_RHS_MASK;
+	if (value == 1)
+		tem_usep |= USB_RHS_STALL;
+	else if (ep->dir == USB_DIR_IN)
+		tem_usep |= USB_RHS_IGNORE_OUT;
+
+	out_be16(&udc->usb_regs->usb_usep[epnum], tem_usep);
+	return 0;
+}
+
+static int qe_eptx_stall_change(struct qe_ep *ep, int value)
+{
+	u16 tem_usep;
+	u8 epnum = ep->epnum;
+	struct qe_udc *udc = ep->udc;
+
+	tem_usep = in_be16(&udc->usb_regs->usb_usep[epnum]);
+	tem_usep = tem_usep & ~USB_THS_MASK;
+	if (value == 1)
+		tem_usep |= USB_THS_STALL;
+	else if (ep->dir == USB_DIR_OUT)
+		tem_usep |= USB_THS_IGNORE_IN;
+
+	out_be16(&udc->usb_regs->usb_usep[epnum], tem_usep);
+
+	return 0;
+}
+
+static int qe_ep0_stall(struct qe_udc *udc)
+{
+	qe_eptx_stall_change(&udc->eps[0], 1);
+	qe_eprx_stall_change(&udc->eps[0], 1);
+	udc_controller->ep0_state = WAIT_FOR_SETUP;
+	udc_controller->ep0_dir = 0;
+	return 0;
+}
+
+static int qe_eprx_nack(struct qe_ep *ep)
+{
+	u8 epnum = ep->epnum;
+	struct qe_udc *udc = ep->udc;
+
+	if (ep->state == EP_STATE_IDLE) {
+		/* Set the ep's nack */
+		clrsetbits_be16(&udc->usb_regs->usb_usep[epnum],
+				USB_RHS_MASK, USB_RHS_NACK);
+
+		/* Mask Rx and Busy interrupts */
+		clrbits16(&udc->usb_regs->usb_usbmr,
+				(USB_E_RXB_MASK | USB_E_BSY_MASK));
+
+		ep->state = EP_STATE_NACK;
+	}
+	return 0;
+}
+
+static int qe_eprx_normal(struct qe_ep *ep)
+{
+	struct qe_udc *udc = ep->udc;
+
+	if (ep->state == EP_STATE_NACK) {
+		clrsetbits_be16(&udc->usb_regs->usb_usep[ep->epnum],
+				USB_RTHS_MASK, USB_THS_IGNORE_IN);
+
+		/* Unmask RX interrupts */
+		out_be16(&udc->usb_regs->usb_usber,
+				USB_E_BSY_MASK | USB_E_RXB_MASK);
+		setbits16(&udc->usb_regs->usb_usbmr,
+				(USB_E_RXB_MASK | USB_E_BSY_MASK));
+
+		ep->state = EP_STATE_IDLE;
+		ep->has_data = 0;
+	}
+
+	return 0;
+}
+
+static int qe_ep_cmd_stoptx(struct qe_ep *ep)
+{
+	if (ep->udc->soc_type == PORT_CPM)
+		cpm_command(CPM_USB_STOP_TX | (ep->epnum << CPM_USB_EP_SHIFT),
+				CPM_USB_STOP_TX_OPCODE);
+	else
+		qe_issue_cmd(QE_USB_STOP_TX, QE_CR_SUBBLOCK_USB,
+				ep->epnum, 0);
+
+	return 0;
+}
+
+static int qe_ep_cmd_restarttx(struct qe_ep *ep)
+{
+	if (ep->udc->soc_type == PORT_CPM)
+		cpm_command(CPM_USB_RESTART_TX | (ep->epnum <<
+				CPM_USB_EP_SHIFT), CPM_USB_RESTART_TX_OPCODE);
+	else
+		qe_issue_cmd(QE_USB_RESTART_TX, QE_CR_SUBBLOCK_USB,
+				ep->epnum, 0);
+
+	return 0;
+}
+
+static int qe_ep_flushtxfifo(struct qe_ep *ep)
+{
+	struct qe_udc *udc = ep->udc;
+	int i;
+
+	i = (int)ep->epnum;
+
+	qe_ep_cmd_stoptx(ep);
+	out_8(&udc->usb_regs->usb_uscom,
+		USB_CMD_FLUSH_FIFO | (USB_CMD_EP_MASK & (ep->epnum)));
+	out_be16(&udc->ep_param[i]->tbptr, in_be16(&udc->ep_param[i]->tbase));
+	out_be32(&udc->ep_param[i]->tstate, 0);
+	out_be16(&udc->ep_param[i]->tbcnt, 0);
+
+	ep->c_txbd = ep->txbase;
+	ep->n_txbd = ep->txbase;
+	qe_ep_cmd_restarttx(ep);
+	return 0;
+}
+
+static int qe_ep_filltxfifo(struct qe_ep *ep)
+{
+	struct qe_udc *udc = ep->udc;
+
+	out_8(&udc->usb_regs->usb_uscom,
+			USB_CMD_STR_FIFO | (USB_CMD_EP_MASK & (ep->epnum)));
+	return 0;
+}
+
+static int qe_epbds_reset(struct qe_udc *udc, int pipe_num)
+{
+	struct qe_ep *ep;
+	u32 bdring_len;
+	struct qe_bd __iomem *bd;
+	int i;
+
+	ep = &udc->eps[pipe_num];
+
+	if (ep->dir == USB_DIR_OUT)
+		bdring_len = USB_BDRING_LEN_RX;
+	else
+		bdring_len = USB_BDRING_LEN;
+
+	bd = ep->rxbase;
+	for (i = 0; i < (bdring_len - 1); i++) {
+		out_be32((u32 __iomem *)bd, R_E | R_I);
+		bd++;
+	}
+	out_be32((u32 __iomem *)bd, R_E | R_I | R_W);
+
+	bd = ep->txbase;
+	for (i = 0; i < USB_BDRING_LEN_TX - 1; i++) {
+		out_be32(&bd->buf, 0);
+		out_be32((u32 __iomem *)bd, 0);
+		bd++;
+	}
+	out_be32((u32 __iomem *)bd, T_W);
+
+	return 0;
+}
+
+static int qe_ep_reset(struct qe_udc *udc, int pipe_num)
+{
+	struct qe_ep *ep;
+	u16 tmpusep;
+
+	ep = &udc->eps[pipe_num];
+	tmpusep = in_be16(&udc->usb_regs->usb_usep[pipe_num]);
+	tmpusep &= ~USB_RTHS_MASK;
+
+	switch (ep->dir) {
+	case USB_DIR_BOTH:
+		qe_ep_flushtxfifo(ep);
+		break;
+	case USB_DIR_OUT:
+		tmpusep |= USB_THS_IGNORE_IN;
+		break;
+	case USB_DIR_IN:
+		qe_ep_flushtxfifo(ep);
+		tmpusep |= USB_RHS_IGNORE_OUT;
+		break;
+	default:
+		break;
+	}
+	out_be16(&udc->usb_regs->usb_usep[pipe_num], tmpusep);
+
+	qe_epbds_reset(udc, pipe_num);
+
+	return 0;
+}
+
+static int qe_ep_toggledata01(struct qe_ep *ep)
+{
+	ep->data01 ^= 0x1;
+	return 0;
+}
+
+static int qe_ep_bd_init(struct qe_udc *udc, unsigned char pipe_num)
+{
+	struct qe_ep *ep = &udc->eps[pipe_num];
+	unsigned long tmp_addr = 0;
+	struct usb_ep_para __iomem *epparam;
+	int i;
+	struct qe_bd __iomem *bd;
+	int bdring_len;
+
+	if (ep->dir == USB_DIR_OUT)
+		bdring_len = USB_BDRING_LEN_RX;
+	else
+		bdring_len = USB_BDRING_LEN;
+
+	epparam = udc->ep_param[pipe_num];
+	/* alloc multi-ram for BD rings and set the ep parameters */
+	tmp_addr = cpm_muram_alloc(sizeof(struct qe_bd) * (bdring_len +
+				USB_BDRING_LEN_TX), QE_ALIGNMENT_OF_BD);
+	out_be16(&epparam->rbase, (u16)tmp_addr);
+	out_be16(&epparam->tbase, (u16)(tmp_addr +
+				(sizeof(struct qe_bd) * bdring_len)));
+
+	out_be16(&epparam->rbptr, in_be16(&epparam->rbase));
+	out_be16(&epparam->tbptr, in_be16(&epparam->tbase));
+
+	ep->rxbase = cpm_muram_addr(tmp_addr);
+	ep->txbase = cpm_muram_addr(tmp_addr + (sizeof(struct qe_bd)
+				* bdring_len));
+	ep->n_rxbd = ep->rxbase;
+	ep->e_rxbd = ep->rxbase;
+	ep->n_txbd = ep->txbase;
+	ep->c_txbd = ep->txbase;
+	ep->data01 = 0; /* data0 */
+
+	/* Init TX and RX bds */
+	bd = ep->rxbase;
+	for (i = 0; i < bdring_len - 1; i++) {
+		out_be32(&bd->buf, 0);
+		out_be32((u32 __iomem *)bd, 0);
+		bd++;
+	}
+	out_be32(&bd->buf, 0);
+	out_be32((u32 __iomem *)bd, R_W);
+
+	bd = ep->txbase;
+	for (i = 0; i < USB_BDRING_LEN_TX - 1; i++) {
+		out_be32(&bd->buf, 0);
+		out_be32((u32 __iomem *)bd, 0);
+		bd++;
+	}
+	out_be32(&bd->buf, 0);
+	out_be32((u32 __iomem *)bd, T_W);
+
+	return 0;
+}
+
+static int qe_ep_rxbd_update(struct qe_ep *ep)
+{
+	unsigned int size;
+	int i;
+	unsigned int tmp;
+	struct qe_bd __iomem *bd;
+	unsigned int bdring_len;
+
+	if (ep->rxbase == NULL)
+		return -EINVAL;
+
+	bd = ep->rxbase;
+
+	ep->rxframe = kmalloc(sizeof(*ep->rxframe), GFP_ATOMIC);
+	if (ep->rxframe == NULL) {
+		dev_err(ep->udc->dev, "malloc rxframe failed\n");
+		return -ENOMEM;
+	}
+
+	qe_frame_init(ep->rxframe);
+
+	if (ep->dir == USB_DIR_OUT)
+		bdring_len = USB_BDRING_LEN_RX;
+	else
+		bdring_len = USB_BDRING_LEN;
+
+	size = (ep->ep.maxpacket + USB_CRC_SIZE + 2) * (bdring_len + 1);
+	ep->rxbuffer = kzalloc(size, GFP_ATOMIC);
+	if (ep->rxbuffer == NULL) {
+		dev_err(ep->udc->dev, "malloc rxbuffer failed,size=%d\n",
+				size);
+		kfree(ep->rxframe);
+		return -ENOMEM;
+	}
+
+	ep->rxbuf_d = virt_to_phys((void *)ep->rxbuffer);
+	if (ep->rxbuf_d == DMA_ADDR_INVALID) {
+		ep->rxbuf_d = dma_map_single(udc_controller->gadget.dev.parent,
+					ep->rxbuffer,
+					size,
+					DMA_FROM_DEVICE);
+		ep->rxbufmap = 1;
+	} else {
+		dma_sync_single_for_device(udc_controller->gadget.dev.parent,
+					ep->rxbuf_d, size,
+					DMA_FROM_DEVICE);
+		ep->rxbufmap = 0;
+	}
+
+	size = ep->ep.maxpacket + USB_CRC_SIZE + 2;
+	tmp = ep->rxbuf_d;
+	tmp = (u32)(((tmp >> 2) << 2) + 4);
+
+	for (i = 0; i < bdring_len - 1; i++) {
+		out_be32(&bd->buf, tmp);
+		out_be32((u32 __iomem *)bd, (R_E | R_I));
+		tmp = tmp + size;
+		bd++;
+	}
+	out_be32(&bd->buf, tmp);
+	out_be32((u32 __iomem *)bd, (R_E | R_I | R_W));
+
+	return 0;
+}
+
+static int qe_ep_register_init(struct qe_udc *udc, unsigned char pipe_num)
+{
+	struct qe_ep *ep = &udc->eps[pipe_num];
+	struct usb_ep_para __iomem *epparam;
+	u16 usep, logepnum;
+	u16 tmp;
+	u8 rtfcr = 0;
+
+	epparam = udc->ep_param[pipe_num];
+
+	usep = 0;
+	logepnum = (ep->desc->bEndpointAddress & USB_ENDPOINT_NUMBER_MASK);
+	usep |= (logepnum << USB_EPNUM_SHIFT);
+
+	switch (ep->desc->bmAttributes & 0x03) {
+	case USB_ENDPOINT_XFER_BULK:
+		usep |= USB_TRANS_BULK;
+		break;
+	case USB_ENDPOINT_XFER_ISOC:
+		usep |=  USB_TRANS_ISO;
+		break;
+	case USB_ENDPOINT_XFER_INT:
+		usep |= USB_TRANS_INT;
+		break;
+	default:
+		usep |= USB_TRANS_CTR;
+		break;
+	}
+
+	switch (ep->dir) {
+	case USB_DIR_OUT:
+		usep |= USB_THS_IGNORE_IN;
+		break;
+	case USB_DIR_IN:
+		usep |= USB_RHS_IGNORE_OUT;
+		break;
+	default:
+		break;
+	}
+	out_be16(&udc->usb_regs->usb_usep[pipe_num], usep);
+
+	rtfcr = 0x30;
+	out_8(&epparam->rbmr, rtfcr);
+	out_8(&epparam->tbmr, rtfcr);
+
+	tmp = (u16)(ep->ep.maxpacket + USB_CRC_SIZE);
+	/* MRBLR must be divisble by 4 */
+	tmp = (u16)(((tmp >> 2) << 2) + 4);
+	out_be16(&epparam->mrblr, tmp);
+
+	return 0;
+}
+
+static int qe_ep_init(struct qe_udc *udc,
+		      unsigned char pipe_num,
+		      const struct usb_endpoint_descriptor *desc)
+{
+	struct qe_ep *ep = &udc->eps[pipe_num];
+	unsigned long flags;
+	int reval = 0;
+	u16 max = 0;
+
+	max = le16_to_cpu(desc->wMaxPacketSize);
+
+	/* check the max package size validate for this endpoint */
+	/* Refer to USB2.0 spec table 9-13,
+	*/
+	if (pipe_num != 0) {
+		switch (desc->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK) {
+		case USB_ENDPOINT_XFER_BULK:
+			if (strstr(ep->ep.name, "-iso")
+					|| strstr(ep->ep.name, "-int"))
+				goto en_done;
+			switch (udc->gadget.speed) {
+			case USB_SPEED_HIGH:
+			if ((max == 128) || (max == 256) || (max == 512))
+				break;
+			default:
+				switch (max) {
+				case 4:
+				case 8:
+				case 16:
+				case 32:
+				case 64:
+					break;
+				default:
+				case USB_SPEED_LOW:
+					goto en_done;
+				}
+			}
+			break;
+		case USB_ENDPOINT_XFER_INT:
+			if (strstr(ep->ep.name, "-iso"))	/* bulk is ok */
+				goto en_done;
+			switch (udc->gadget.speed) {
+			case USB_SPEED_HIGH:
+				if (max <= 1024)
+					break;
+			case USB_SPEED_FULL:
+				if (max <= 64)
+					break;
+			default:
+				if (max <= 8)
+					break;
+				goto en_done;
+			}
+			break;
+		case USB_ENDPOINT_XFER_ISOC:
+			if (strstr(ep->ep.name, "-bulk")
+				|| strstr(ep->ep.name, "-int"))
+				goto en_done;
+			switch (udc->gadget.speed) {
+			case USB_SPEED_HIGH:
+				if (max <= 1024)
+					break;
+			case USB_SPEED_FULL:
+				if (max <= 1023)
+					break;
+			default:
+				goto en_done;
+			}
+			break;
+		case USB_ENDPOINT_XFER_CONTROL:
+			if (strstr(ep->ep.name, "-iso")
+				|| strstr(ep->ep.name, "-int"))
+				goto en_done;
+			switch (udc->gadget.speed) {
+			case USB_SPEED_HIGH:
+			case USB_SPEED_FULL:
+				switch (max) {
+				case 1:
+				case 2:
+				case 4:
+				case 8:
+				case 16:
+				case 32:
+				case 64:
+					break;
+				default:
+					goto en_done;
+				}
+			case USB_SPEED_LOW:
+				switch (max) {
+				case 1:
+				case 2:
+				case 4:
+				case 8:
+					break;
+				default:
+					goto en_done;
+				}
+			default:
+				goto en_done;
+			}
+			break;
+
+		default:
+			goto en_done;
+		}
+	} /* if ep0*/
+
+	spin_lock_irqsave(&udc->lock, flags);
+
+	/* initialize ep structure */
+	ep->ep.maxpacket = max;
+	ep->tm = (u8)(desc->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK);
+	ep->desc = desc;
+	ep->stopped = 0;
+	ep->init = 1;
+
+	if (pipe_num == 0) {
+		ep->dir = USB_DIR_BOTH;
+		udc->ep0_dir = USB_DIR_OUT;
+		udc->ep0_state = WAIT_FOR_SETUP;
+	} else	{
+		switch (desc->bEndpointAddress & USB_ENDPOINT_DIR_MASK) {
+		case USB_DIR_OUT:
+			ep->dir = USB_DIR_OUT;
+			break;
+		case USB_DIR_IN:
+			ep->dir = USB_DIR_IN;
+		default:
+			break;
+		}
+	}
+
+	/* hardware special operation */
+	qe_ep_bd_init(udc, pipe_num);
+	if ((ep->tm == USBP_TM_CTL) || (ep->dir == USB_DIR_OUT)) {
+		reval = qe_ep_rxbd_update(ep);
+		if (reval)
+			goto en_done1;
+	}
+
+	if ((ep->tm == USBP_TM_CTL) || (ep->dir == USB_DIR_IN)) {
+		ep->txframe = kmalloc(sizeof(*ep->txframe), GFP_ATOMIC);
+		if (ep->txframe == NULL) {
+			dev_err(udc->dev, "malloc txframe failed\n");
+			goto en_done2;
+		}
+		qe_frame_init(ep->txframe);
+	}
+
+	qe_ep_register_init(udc, pipe_num);
+
+	/* Now HW will be NAKing transfers to that EP,
+	 * until a buffer is queued to it. */
+	spin_unlock_irqrestore(&udc->lock, flags);
+
+	return 0;
+en_done2:
+	kfree(ep->rxbuffer);
+	kfree(ep->rxframe);
+en_done1:
+	spin_unlock_irqrestore(&udc->lock, flags);
+en_done:
+	dev_dbg(udc->dev, "failed to initialize %s\n", ep->ep.name);
+	return -ENODEV;
+}
+
+static inline void qe_usb_enable(void)
+{
+	setbits8(&udc_controller->usb_regs->usb_usmod, USB_MODE_EN);
+}
+
+static inline void qe_usb_disable(void)
+{
+	clrbits8(&udc_controller->usb_regs->usb_usmod, USB_MODE_EN);
+}
+
+/*----------------------------------------------------------------------------*
+ *		USB and EP basic manipulate function end		      *
+ *----------------------------------------------------------------------------*/
+
+
+/******************************************************************************
+		UDC transmit and receive process
+ ******************************************************************************/
+static void recycle_one_rxbd(struct qe_ep *ep)
+{
+	u32 bdstatus;
+
+	bdstatus = in_be32((u32 __iomem *)ep->e_rxbd);
+	bdstatus = R_I | R_E | (bdstatus & R_W);
+	out_be32((u32 __iomem *)ep->e_rxbd, bdstatus);
+
+	if (bdstatus & R_W)
+		ep->e_rxbd = ep->rxbase;
+	else
+		ep->e_rxbd++;
+}
+
+static void recycle_rxbds(struct qe_ep *ep, unsigned char stopatnext)
+{
+	u32 bdstatus;
+	struct qe_bd __iomem *bd, *nextbd;
+	unsigned char stop = 0;
+
+	nextbd = ep->n_rxbd;
+	bd = ep->e_rxbd;
+	bdstatus = in_be32((u32 __iomem *)bd);
+
+	while (!(bdstatus & R_E) && !(bdstatus & BD_LENGTH_MASK) && !stop) {
+		bdstatus = R_E | R_I | (bdstatus & R_W);
+		out_be32((u32 __iomem *)bd, bdstatus);
+
+		if (bdstatus & R_W)
+			bd = ep->rxbase;
+		else
+			bd++;
+
+		bdstatus = in_be32((u32 __iomem *)bd);
+		if (stopatnext && (bd == nextbd))
+			stop = 1;
+	}
+
+	ep->e_rxbd = bd;
+}
+
+static void ep_recycle_rxbds(struct qe_ep *ep)
+{
+	struct qe_bd __iomem *bd = ep->n_rxbd;
+	u32 bdstatus;
+	u8 epnum = ep->epnum;
+	struct qe_udc *udc = ep->udc;
+
+	bdstatus = in_be32((u32 __iomem *)bd);
+	if (!(bdstatus & R_E) && !(bdstatus & BD_LENGTH_MASK)) {
+		bd = ep->rxbase +
+				((in_be16(&udc->ep_param[epnum]->rbptr) -
+				  in_be16(&udc->ep_param[epnum]->rbase))
+				 >> 3);
+		bdstatus = in_be32((u32 __iomem *)bd);
+
+		if (bdstatus & R_W)
+			bd = ep->rxbase;
+		else
+			bd++;
+
+		ep->e_rxbd = bd;
+		recycle_rxbds(ep, 0);
+		ep->e_rxbd = ep->n_rxbd;
+	} else
+		recycle_rxbds(ep, 1);
+
+	if (in_be16(&udc->usb_regs->usb_usber) & USB_E_BSY_MASK)
+		out_be16(&udc->usb_regs->usb_usber, USB_E_BSY_MASK);
+
+	if (ep->has_data <= 0 && (!list_empty(&ep->queue)))
+		qe_eprx_normal(ep);
+
+	ep->localnack = 0;
+}
+
+static void setup_received_handle(struct qe_udc *udc,
+					struct usb_ctrlrequest *setup);
+static int qe_ep_rxframe_handle(struct qe_ep *ep);
+static void ep0_req_complete(struct qe_udc *udc, struct qe_req *req);
+/* when BD PID is setup, handle the packet */
+static int ep0_setup_handle(struct qe_udc *udc)
+{
+	struct qe_ep *ep = &udc->eps[0];
+	struct qe_frame *pframe;
+	unsigned int fsize;
+	u8 *cp;
+
+	pframe = ep->rxframe;
+	if ((frame_get_info(pframe) & PID_SETUP)
+			&& (udc->ep0_state == WAIT_FOR_SETUP)) {
+		fsize = frame_get_length(pframe);
+		if (unlikely(fsize != 8))
+			return -EINVAL;
+		cp = (u8 *)&udc->local_setup_buff;
+		memcpy(cp, pframe->data, fsize);
+		ep->data01 = 1;
+
+		/* handle the usb command base on the usb_ctrlrequest */
+		setup_received_handle(udc, &udc->local_setup_buff);
+		return 0;
+	}
+	return -EINVAL;
+}
+
+static int qe_ep0_rx(struct qe_udc *udc)
+{
+	struct qe_ep *ep = &udc->eps[0];
+	struct qe_frame *pframe;
+	struct qe_bd __iomem *bd;
+	u32 bdstatus, length;
+	u32 vaddr;
+
+	pframe = ep->rxframe;
+
+	if (ep->dir == USB_DIR_IN) {
+		dev_err(udc->dev, "ep0 not a control endpoint\n");
+		return -EINVAL;
+	}
+
+	bd = ep->n_rxbd;
+	bdstatus = in_be32((u32 __iomem *)bd);
+	length = bdstatus & BD_LENGTH_MASK;
+
+	while (!(bdstatus & R_E) && length) {
+		if ((bdstatus & R_F) && (bdstatus & R_L)
+			&& !(bdstatus & R_ERROR)) {
+			if (length == USB_CRC_SIZE) {
+				udc->ep0_state = WAIT_FOR_SETUP;
+				dev_vdbg(udc->dev,
+					"receive a ZLP in status phase\n");
+			} else {
+				qe_frame_clean(pframe);
+				vaddr = (u32)phys_to_virt(in_be32(&bd->buf));
+				frame_set_data(pframe, (u8 *)vaddr);
+				frame_set_length(pframe,
+						(length - USB_CRC_SIZE));
+				frame_set_status(pframe, FRAME_OK);
+				switch (bdstatus & R_PID) {
+				case R_PID_SETUP:
+					frame_set_info(pframe, PID_SETUP);
+					break;
+				case R_PID_DATA1:
+					frame_set_info(pframe, PID_DATA1);
+					break;
+				default:
+					frame_set_info(pframe, PID_DATA0);
+					break;
+				}
+
+				if ((bdstatus & R_PID) == R_PID_SETUP)
+					ep0_setup_handle(udc);
+				else
+					qe_ep_rxframe_handle(ep);
+			}
+		} else {
+			dev_err(udc->dev, "The receive frame with error!\n");
+		}
+
+		/* note: don't clear the rxbd's buffer address */
+		recycle_one_rxbd(ep);
+
+		/* Get next BD */
+		if (bdstatus & R_W)
+			bd = ep->rxbase;
+		else
+			bd++;
+
+		bdstatus = in_be32((u32 __iomem *)bd);
+		length = bdstatus & BD_LENGTH_MASK;
+
+	}
+
+	ep->n_rxbd = bd;
+
+	return 0;
+}
+
+static int qe_ep_rxframe_handle(struct qe_ep *ep)
+{
+	struct qe_frame *pframe;
+	u8 framepid = 0;
+	unsigned int fsize;
+	u8 *cp;
+	struct qe_req *req;
+
+	pframe = ep->rxframe;
+
+	if (frame_get_info(pframe) & PID_DATA1)
+		framepid = 0x1;
+
+	if (framepid != ep->data01) {
+		dev_err(ep->udc->dev, "the data01 error!\n");
+		return -EIO;
+	}
+
+	fsize = frame_get_length(pframe);
+	if (list_empty(&ep->queue)) {
+		dev_err(ep->udc->dev, "the %s have no requeue!\n", ep->name);
+	} else {
+		req = list_entry(ep->queue.next, struct qe_req, queue);
+
+		cp = (u8 *)(req->req.buf) + req->req.actual;
+		if (cp) {
+			memcpy(cp, pframe->data, fsize);
+			req->req.actual += fsize;
+			if ((fsize < ep->ep.maxpacket) ||
+					(req->req.actual >= req->req.length)) {
+				if (ep->epnum == 0)
+					ep0_req_complete(ep->udc, req);
+				else
+					done(ep, req, 0);
+				if (list_empty(&ep->queue) && ep->epnum != 0)
+					qe_eprx_nack(ep);
+			}
+		}
+	}
+
+	qe_ep_toggledata01(ep);
+
+	return 0;
+}
+
+static void ep_rx_tasklet(unsigned long data)
+{
+	struct qe_udc *udc = (struct qe_udc *)data;
+	struct qe_ep *ep;
+	struct qe_frame *pframe;
+	struct qe_bd __iomem *bd;
+	unsigned long flags;
+	u32 bdstatus, length;
+	u32 vaddr, i;
+
+	spin_lock_irqsave(&udc->lock, flags);
+
+	for (i = 1; i < USB_MAX_ENDPOINTS; i++) {
+		ep = &udc->eps[i];
+
+		if (ep->dir == USB_DIR_IN || ep->enable_tasklet == 0) {
+			dev_dbg(udc->dev,
+				"This is a transmit ep or disable tasklet!\n");
+			continue;
+		}
+
+		pframe = ep->rxframe;
+		bd = ep->n_rxbd;
+		bdstatus = in_be32((u32 __iomem *)bd);
+		length = bdstatus & BD_LENGTH_MASK;
+
+		while (!(bdstatus & R_E) && length) {
+			if (list_empty(&ep->queue)) {
+				qe_eprx_nack(ep);
+				dev_dbg(udc->dev,
+					"The rxep have noreq %d\n",
+					ep->has_data);
+				break;
+			}
+
+			if ((bdstatus & R_F) && (bdstatus & R_L)
+				&& !(bdstatus & R_ERROR)) {
+				qe_frame_clean(pframe);
+				vaddr = (u32)phys_to_virt(in_be32(&bd->buf));
+				frame_set_data(pframe, (u8 *)vaddr);
+				frame_set_length(pframe,
+						(length - USB_CRC_SIZE));
+				frame_set_status(pframe, FRAME_OK);
+				switch (bdstatus & R_PID) {
+				case R_PID_DATA1:
+					frame_set_info(pframe, PID_DATA1);
+					break;
+				case R_PID_SETUP:
+					frame_set_info(pframe, PID_SETUP);
+					break;
+				default:
+					frame_set_info(pframe, PID_DATA0);
+					break;
+				}
+				/* handle the rx frame */
+				qe_ep_rxframe_handle(ep);
+			} else {
+				dev_err(udc->dev,
+					"error in received frame\n");
+			}
+			/* note: don't clear the rxbd's buffer address */
+			/*clear the length */
+			out_be32((u32 __iomem *)bd, bdstatus & BD_STATUS_MASK);
+			ep->has_data--;
+			if (!(ep->localnack))
+				recycle_one_rxbd(ep);
+
+			/* Get next BD */
+			if (bdstatus & R_W)
+				bd = ep->rxbase;
+			else
+				bd++;
+
+			bdstatus = in_be32((u32 __iomem *)bd);
+			length = bdstatus & BD_LENGTH_MASK;
+		}
+
+		ep->n_rxbd = bd;
+
+		if (ep->localnack)
+			ep_recycle_rxbds(ep);
+
+		ep->enable_tasklet = 0;
+	} /* for i=1 */
+
+	spin_unlock_irqrestore(&udc->lock, flags);
+}
+
+static int qe_ep_rx(struct qe_ep *ep)
+{
+	struct qe_udc *udc;
+	struct qe_frame *pframe;
+	struct qe_bd __iomem *bd;
+	u16 swoffs, ucoffs, emptybds;
+
+	udc = ep->udc;
+	pframe = ep->rxframe;
+
+	if (ep->dir == USB_DIR_IN) {
+		dev_err(udc->dev, "transmit ep in rx function\n");
+		return -EINVAL;
+	}
+
+	bd = ep->n_rxbd;
+
+	swoffs = (u16)(bd - ep->rxbase);
+	ucoffs = (u16)((in_be16(&udc->ep_param[ep->epnum]->rbptr) -
+			in_be16(&udc->ep_param[ep->epnum]->rbase)) >> 3);
+	if (swoffs < ucoffs)
+		emptybds = USB_BDRING_LEN_RX - ucoffs + swoffs;
+	else
+		emptybds = swoffs - ucoffs;
+
+	if (emptybds < MIN_EMPTY_BDS) {
+		qe_eprx_nack(ep);
+		ep->localnack = 1;
+		dev_vdbg(udc->dev, "%d empty bds, send NACK\n", emptybds);
+	}
+	ep->has_data = USB_BDRING_LEN_RX - emptybds;
+
+	if (list_empty(&ep->queue)) {
+		qe_eprx_nack(ep);
+		dev_vdbg(udc->dev, "The rxep have no req queued with %d BDs\n",
+				ep->has_data);
+		return 0;
+	}
+
+	tasklet_schedule(&udc->rx_tasklet);
+	ep->enable_tasklet = 1;
+
+	return 0;
+}
+
+/* send data from a frame, no matter what tx_req */
+static int qe_ep_tx(struct qe_ep *ep, struct qe_frame *frame)
+{
+	struct qe_udc *udc = ep->udc;
+	struct qe_bd __iomem *bd;
+	u16 saveusbmr;
+	u32 bdstatus, pidmask;
+	u32 paddr;
+
+	if (ep->dir == USB_DIR_OUT) {
+		dev_err(udc->dev, "receive ep passed to tx function\n");
+		return -EINVAL;
+	}
+
+	/* Disable the Tx interrupt */
+	saveusbmr = in_be16(&udc->usb_regs->usb_usbmr);
+	out_be16(&udc->usb_regs->usb_usbmr,
+			saveusbmr & ~(USB_E_TXB_MASK | USB_E_TXE_MASK));
+
+	bd = ep->n_txbd;
+	bdstatus = in_be32((u32 __iomem *)bd);
+
+	if (!(bdstatus & (T_R | BD_LENGTH_MASK))) {
+		if (frame_get_length(frame) == 0) {
+			frame_set_data(frame, udc->nullbuf);
+			frame_set_length(frame, 2);
+			frame->info |= (ZLP | NO_CRC);
+			dev_vdbg(udc->dev, "the frame size = 0\n");
+		}
+		paddr = virt_to_phys((void *)frame->data);
+		out_be32(&bd->buf, paddr);
+		bdstatus = (bdstatus&T_W);
+		if (!(frame_get_info(frame) & NO_CRC))
+			bdstatus |= T_R | T_I | T_L | T_TC
+					| frame_get_length(frame);
+		else
+			bdstatus |= T_R | T_I | T_L | frame_get_length(frame);
+
+		/* if the packet is a ZLP in status phase */
+		if ((ep->epnum == 0) && (udc->ep0_state == DATA_STATE_NEED_ZLP))
+			ep->data01 = 0x1;
+
+		if (ep->data01) {
+			pidmask = T_PID_DATA1;
+			frame->info |= PID_DATA1;
+		} else {
+			pidmask = T_PID_DATA0;
+			frame->info |= PID_DATA0;
+		}
+		bdstatus |= T_CNF;
+		bdstatus |= pidmask;
+		out_be32((u32 __iomem *)bd, bdstatus);
+		qe_ep_filltxfifo(ep);
+
+		/* enable the TX interrupt */
+		out_be16(&udc->usb_regs->usb_usbmr, saveusbmr);
+
+		qe_ep_toggledata01(ep);
+		if (bdstatus & T_W)
+			ep->n_txbd = ep->txbase;
+		else
+			ep->n_txbd++;
+
+		return 0;
+	} else {
+		out_be16(&udc->usb_regs->usb_usbmr, saveusbmr);
+		dev_vdbg(udc->dev, "The tx bd is not ready!\n");
+		return -EBUSY;
+	}
+}
+
+/* when a bd was transmitted, the function can
+ * handle the tx_req, not include ep0           */
+static int txcomplete(struct qe_ep *ep, unsigned char restart)
+{
+	if (ep->tx_req != NULL) {
+		if (!restart) {
+			int asent = ep->last;
+			ep->sent += asent;
+			ep->last -= asent;
+		} else {
+			ep->last = 0;
+		}
+
+		/* a request already were transmitted completely */
+		if ((ep->tx_req->req.length - ep->sent) <= 0) {
+			ep->tx_req->req.actual = (unsigned int)ep->sent;
+			done(ep, ep->tx_req, 0);
+			ep->tx_req = NULL;
+			ep->last = 0;
+			ep->sent = 0;
+		}
+	}
+
+	/* we should gain a new tx_req fot this endpoint */
+	if (ep->tx_req == NULL) {
+		if (!list_empty(&ep->queue)) {
+			ep->tx_req = list_entry(ep->queue.next,	struct qe_req,
+							queue);
+			ep->last = 0;
+			ep->sent = 0;
+		}
+	}
+
+	return 0;
+}
+
+/* give a frame and a tx_req, send some data */
+static int qe_usb_senddata(struct qe_ep *ep, struct qe_frame *frame)
+{
+	unsigned int size;
+	u8 *buf;
+
+	qe_frame_clean(frame);
+	size = min_t(u32, (ep->tx_req->req.length - ep->sent),
+				ep->ep.maxpacket);
+	buf = (u8 *)ep->tx_req->req.buf + ep->sent;
+	if (buf && size) {
+		ep->last = size;
+		frame_set_data(frame, buf);
+		frame_set_length(frame, size);
+		frame_set_status(frame, FRAME_OK);
+		frame_set_info(frame, 0);
+		return qe_ep_tx(ep, frame);
+	}
+	return -EIO;
+}
+
+/* give a frame struct,send a ZLP */
+static int sendnulldata(struct qe_ep *ep, struct qe_frame *frame, uint infor)
+{
+	struct qe_udc *udc = ep->udc;
+
+	if (frame == NULL)
+		return -ENODEV;
+
+	qe_frame_clean(frame);
+	frame_set_data(frame, (u8 *)udc->nullbuf);
+	frame_set_length(frame, 2);
+	frame_set_status(frame, FRAME_OK);
+	frame_set_info(frame, (ZLP | NO_CRC | infor));
+
+	return qe_ep_tx(ep, frame);
+}
+
+static int frame_create_tx(struct qe_ep *ep, struct qe_frame *frame)
+{
+	struct qe_req *req = ep->tx_req;
+	int reval;
+
+	if (req == NULL)
+		return -ENODEV;
+
+	if ((req->req.length - ep->sent) > 0)
+		reval = qe_usb_senddata(ep, frame);
+	else
+		reval = sendnulldata(ep, frame, 0);
+
+	return reval;
+}
+
+/* if direction is DIR_IN, the status is Device->Host
+ * if direction is DIR_OUT, the status transaction is Device<-Host
+ * in status phase, udc create a request and gain status */
+static int ep0_prime_status(struct qe_udc *udc, int direction)
+{
+
+	struct qe_ep *ep = &udc->eps[0];
+
+	if (direction == USB_DIR_IN) {
+		udc->ep0_state = DATA_STATE_NEED_ZLP;
+		udc->ep0_dir = USB_DIR_IN;
+		sendnulldata(ep, ep->txframe, SETUP_STATUS | NO_REQ);
+	} else {
+		udc->ep0_dir = USB_DIR_OUT;
+		udc->ep0_state = WAIT_FOR_OUT_STATUS;
+	}
+
+	return 0;
+}
+
+/* a request complete in ep0, whether gadget request or udc request */
+static void ep0_req_complete(struct qe_udc *udc, struct qe_req *req)
+{
+	struct qe_ep *ep = &udc->eps[0];
+	/* because usb and ep's status already been set in ch9setaddress() */
+
+	switch (udc->ep0_state) {
+	case DATA_STATE_XMIT:
+		done(ep, req, 0);
+		/* receive status phase */
+		if (ep0_prime_status(udc, USB_DIR_OUT))
+			qe_ep0_stall(udc);
+		break;
+
+	case DATA_STATE_NEED_ZLP:
+		done(ep, req, 0);
+		udc->ep0_state = WAIT_FOR_SETUP;
+		break;
+
+	case DATA_STATE_RECV:
+		done(ep, req, 0);
+		/* send status phase */
+		if (ep0_prime_status(udc, USB_DIR_IN))
+			qe_ep0_stall(udc);
+		break;
+
+	case WAIT_FOR_OUT_STATUS:
+		done(ep, req, 0);
+		udc->ep0_state = WAIT_FOR_SETUP;
+		break;
+
+	case WAIT_FOR_SETUP:
+		dev_vdbg(udc->dev, "Unexpected interrupt\n");
+		break;
+
+	default:
+		qe_ep0_stall(udc);
+		break;
+	}
+}
+
+static int ep0_txcomplete(struct qe_ep *ep, unsigned char restart)
+{
+	struct qe_req *tx_req = NULL;
+	struct qe_frame *frame = ep->txframe;
+
+	if ((frame_get_info(frame) & (ZLP | NO_REQ)) == (ZLP | NO_REQ)) {
+		if (!restart)
+			ep->udc->ep0_state = WAIT_FOR_SETUP;
+		else
+			sendnulldata(ep, ep->txframe, SETUP_STATUS | NO_REQ);
+		return 0;
+	}
+
+	tx_req = ep->tx_req;
+	if (tx_req != NULL) {
+		if (!restart) {
+			int asent = ep->last;
+			ep->sent += asent;
+			ep->last -= asent;
+		} else {
+			ep->last = 0;
+		}
+
+		/* a request already were transmitted completely */
+		if ((ep->tx_req->req.length - ep->sent) <= 0) {
+			ep->tx_req->req.actual = (unsigned int)ep->sent;
+			ep0_req_complete(ep->udc, ep->tx_req);
+			ep->tx_req = NULL;
+			ep->last = 0;
+			ep->sent = 0;
+		}
+	} else {
+		dev_vdbg(ep->udc->dev, "the ep0_controller have no req\n");
+	}
+
+	return 0;
+}
+
+static int ep0_txframe_handle(struct qe_ep *ep)
+{
+	/* if have error, transmit again */
+	if (frame_get_status(ep->txframe) & FRAME_ERROR) {
+		qe_ep_flushtxfifo(ep);
+		dev_vdbg(ep->udc->dev, "The EP0 transmit data have error!\n");
+		if (frame_get_info(ep->txframe) & PID_DATA0)
+			ep->data01 = 0;
+		else
+			ep->data01 = 1;
+
+		ep0_txcomplete(ep, 1);
+	} else
+		ep0_txcomplete(ep, 0);
+
+	frame_create_tx(ep, ep->txframe);
+	return 0;
+}
+
+static int qe_ep0_txconf(struct qe_ep *ep)
+{
+	struct qe_bd __iomem *bd;
+	struct qe_frame *pframe;
+	u32 bdstatus;
+
+	bd = ep->c_txbd;
+	bdstatus = in_be32((u32 __iomem *)bd);
+	while (!(bdstatus & T_R) && (bdstatus & ~T_W)) {
+		pframe = ep->txframe;
+
+		/* clear and recycle the BD */
+		out_be32((u32 __iomem *)bd, bdstatus & T_W);
+		out_be32(&bd->buf, 0);
+		if (bdstatus & T_W)
+			ep->c_txbd = ep->txbase;
+		else
+			ep->c_txbd++;
+
+		if (ep->c_txbd == ep->n_txbd) {
+			if (bdstatus & DEVICE_T_ERROR) {
+				frame_set_status(pframe, FRAME_ERROR);
+				if (bdstatus & T_TO)
+					pframe->status |= TX_ER_TIMEOUT;
+				if (bdstatus & T_UN)
+					pframe->status |= TX_ER_UNDERUN;
+			}
+			ep0_txframe_handle(ep);
+		}
+
+		bd = ep->c_txbd;
+		bdstatus = in_be32((u32 __iomem *)bd);
+	}
+
+	return 0;
+}
+
+static int ep_txframe_handle(struct qe_ep *ep)
+{
+	if (frame_get_status(ep->txframe) & FRAME_ERROR) {
+		qe_ep_flushtxfifo(ep);
+		dev_vdbg(ep->udc->dev, "The EP0 transmit data have error!\n");
+		if (frame_get_info(ep->txframe) & PID_DATA0)
+			ep->data01 = 0;
+		else
+			ep->data01 = 1;
+
+		txcomplete(ep, 1);
+	} else
+		txcomplete(ep, 0);
+
+	frame_create_tx(ep, ep->txframe); /* send the data */
+	return 0;
+}
+
+/* confirm the already trainsmited bd */
+static int qe_ep_txconf(struct qe_ep *ep)
+{
+	struct qe_bd __iomem *bd;
+	struct qe_frame *pframe = NULL;
+	u32 bdstatus;
+	unsigned char breakonrxinterrupt = 0;
+
+	bd = ep->c_txbd;
+	bdstatus = in_be32((u32 __iomem *)bd);
+	while (!(bdstatus & T_R) && (bdstatus & ~T_W)) {
+		pframe = ep->txframe;
+		if (bdstatus & DEVICE_T_ERROR) {
+			frame_set_status(pframe, FRAME_ERROR);
+			if (bdstatus & T_TO)
+				pframe->status |= TX_ER_TIMEOUT;
+			if (bdstatus & T_UN)
+				pframe->status |= TX_ER_UNDERUN;
+		}
+
+		/* clear and recycle the BD */
+		out_be32((u32 __iomem *)bd, bdstatus & T_W);
+		out_be32(&bd->buf, 0);
+		if (bdstatus & T_W)
+			ep->c_txbd = ep->txbase;
+		else
+			ep->c_txbd++;
+
+		/* handle the tx frame */
+		ep_txframe_handle(ep);
+		bd = ep->c_txbd;
+		bdstatus = in_be32((u32 __iomem *)bd);
+	}
+	if (breakonrxinterrupt)
+		return -EIO;
+	else
+		return 0;
+}
+
+/* Add a request in queue, and try to transmit a packet */
+static int ep_req_send(struct qe_ep *ep, struct qe_req *req)
+{
+	int reval = 0;
+
+	if (ep->tx_req == NULL) {
+		ep->sent = 0;
+		ep->last = 0;
+		txcomplete(ep, 0); /* can gain a new tx_req */
+		reval = frame_create_tx(ep, ep->txframe);
+	}
+	return reval;
+}
+
+/* Maybe this is a good ideal */
+static int ep_req_rx(struct qe_ep *ep, struct qe_req *req)
+{
+	struct qe_udc *udc = ep->udc;
+	struct qe_frame *pframe = NULL;
+	struct qe_bd __iomem *bd;
+	u32 bdstatus, length;
+	u32 vaddr, fsize;
+	u8 *cp;
+	u8 finish_req = 0;
+	u8 framepid;
+
+	if (list_empty(&ep->queue)) {
+		dev_vdbg(udc->dev, "the req already finish!\n");
+		return 0;
+	}
+	pframe = ep->rxframe;
+
+	bd = ep->n_rxbd;
+	bdstatus = in_be32((u32 __iomem *)bd);
+	length = bdstatus & BD_LENGTH_MASK;
+
+	while (!(bdstatus & R_E) && length) {
+		if (finish_req)
+			break;
+		if ((bdstatus & R_F) && (bdstatus & R_L)
+					&& !(bdstatus & R_ERROR)) {
+			qe_frame_clean(pframe);
+			vaddr = (u32)phys_to_virt(in_be32(&bd->buf));
+			frame_set_data(pframe, (u8 *)vaddr);
+			frame_set_length(pframe, (length - USB_CRC_SIZE));
+			frame_set_status(pframe, FRAME_OK);
+			switch (bdstatus & R_PID) {
+			case R_PID_DATA1:
+				frame_set_info(pframe, PID_DATA1); break;
+			default:
+				frame_set_info(pframe, PID_DATA0); break;
+			}
+			/* handle the rx frame */
+
+			if (frame_get_info(pframe) & PID_DATA1)
+				framepid = 0x1;
+			else
+				framepid = 0;
+
+			if (framepid != ep->data01) {
+				dev_vdbg(udc->dev, "the data01 error!\n");
+			} else {
+				fsize = frame_get_length(pframe);
+
+				cp = (u8 *)(req->req.buf) + req->req.actual;
+				if (cp) {
+					memcpy(cp, pframe->data, fsize);
+					req->req.actual += fsize;
+					if ((fsize < ep->ep.maxpacket)
+						|| (req->req.actual >=
+							req->req.length)) {
+						finish_req = 1;
+						done(ep, req, 0);
+						if (list_empty(&ep->queue))
+							qe_eprx_nack(ep);
+					}
+				}
+				qe_ep_toggledata01(ep);
+			}
+		} else {
+			dev_err(udc->dev, "The receive frame with error!\n");
+		}
+
+		/* note: don't clear the rxbd's buffer address *
+		 * only Clear the length */
+		out_be32((u32 __iomem *)bd, (bdstatus & BD_STATUS_MASK));
+		ep->has_data--;
+
+		/* Get next BD */
+		if (bdstatus & R_W)
+			bd = ep->rxbase;
+		else
+			bd++;
+
+		bdstatus = in_be32((u32 __iomem *)bd);
+		length = bdstatus & BD_LENGTH_MASK;
+	}
+
+	ep->n_rxbd = bd;
+	ep_recycle_rxbds(ep);
+
+	return 0;
+}
+
+/* only add the request in queue */
+static int ep_req_receive(struct qe_ep *ep, struct qe_req *req)
+{
+	if (ep->state == EP_STATE_NACK) {
+		if (ep->has_data <= 0) {
+			/* Enable rx and unmask rx interrupt */
+			qe_eprx_normal(ep);
+		} else {
+			/* Copy the exist BD data */
+			ep_req_rx(ep, req);
+		}
+	}
+
+	return 0;
+}
+
+/********************************************************************
+	Internal Used Function End
+********************************************************************/
+
+/*-----------------------------------------------------------------------
+	Endpoint Management Functions For Gadget
+ -----------------------------------------------------------------------*/
+static int qe_ep_enable(struct usb_ep *_ep,
+			 const struct usb_endpoint_descriptor *desc)
+{
+	struct qe_udc *udc;
+	struct qe_ep *ep;
+	int retval = 0;
+	unsigned char epnum;
+
+	ep = container_of(_ep, struct qe_ep, ep);
+
+	/* catch various bogus parameters */
+	if (!_ep || !desc || ep->desc || _ep->name == ep_name[0] ||
+			(desc->bDescriptorType != USB_DT_ENDPOINT))
+		return -EINVAL;
+
+	udc = ep->udc;
+	if (!udc->driver || (udc->gadget.speed == USB_SPEED_UNKNOWN))
+		return -ESHUTDOWN;
+
+	epnum = (u8)desc->bEndpointAddress & 0xF;
+
+	retval = qe_ep_init(udc, epnum, desc);
+	if (retval != 0) {
+		cpm_muram_free(cpm_muram_offset(ep->rxbase));
+		dev_dbg(udc->dev, "enable ep%d failed\n", ep->epnum);
+		return -EINVAL;
+	}
+	dev_dbg(udc->dev, "enable ep%d successful\n", ep->epnum);
+	return 0;
+}
+
+static int qe_ep_disable(struct usb_ep *_ep)
+{
+	struct qe_udc *udc;
+	struct qe_ep *ep;
+	unsigned long flags;
+	unsigned int size;
+
+	ep = container_of(_ep, struct qe_ep, ep);
+	udc = ep->udc;
+
+	if (!_ep || !ep->desc) {
+		dev_dbg(udc->dev, "%s not enabled\n", _ep ? ep->ep.name : NULL);
+		return -EINVAL;
+	}
+
+	spin_lock_irqsave(&udc->lock, flags);
+	/* Nuke all pending requests (does flush) */
+	nuke(ep, -ESHUTDOWN);
+	ep->desc = NULL;
+	ep->stopped = 1;
+	spin_unlock_irqrestore(&udc->lock, flags);
+
+	cpm_muram_free(cpm_muram_offset(ep->rxbase));
+
+	if (ep->dir == USB_DIR_OUT)
+		size = (ep->ep.maxpacket + USB_CRC_SIZE + 2) *
+				(USB_BDRING_LEN_RX + 1);
+	else
+		size = (ep->ep.maxpacket + USB_CRC_SIZE + 2) *
+				(USB_BDRING_LEN + 1);
+
+	if (ep->dir != USB_DIR_IN) {
+		kfree(ep->rxframe);
+		if (ep->rxbufmap) {
+			dma_unmap_single(udc_controller->gadget.dev.parent,
+					ep->rxbuf_d, size,
+					DMA_FROM_DEVICE);
+			ep->rxbuf_d = DMA_ADDR_INVALID;
+		} else {
+			dma_sync_single_for_cpu(
+					udc_controller->gadget.dev.parent,
+					ep->rxbuf_d, size,
+					DMA_FROM_DEVICE);
+		}
+		kfree(ep->rxbuffer);
+	}
+
+	if (ep->dir != USB_DIR_OUT)
+		kfree(ep->txframe);
+
+	dev_dbg(udc->dev, "disabled %s OK\n", _ep->name);
+	return 0;
+}
+
+static struct usb_request *qe_alloc_request(struct usb_ep *_ep,	gfp_t gfp_flags)
+{
+	struct qe_req *req;
+
+	req = kzalloc(sizeof(*req), gfp_flags);
+	if (!req)
+		return NULL;
+
+	req->req.dma = DMA_ADDR_INVALID;
+
+	INIT_LIST_HEAD(&req->queue);
+
+	return &req->req;
+}
+
+static void qe_free_request(struct usb_ep *_ep, struct usb_request *_req)
+{
+	struct qe_req *req;
+
+	req = container_of(_req, struct qe_req, req);
+
+	if (_req)
+		kfree(req);
+}
+
+/* queues (submits) an I/O request to an endpoint */
+static int qe_ep_queue(struct usb_ep *_ep, struct usb_request *_req,
+				gfp_t gfp_flags)
+{
+	struct qe_ep *ep = container_of(_ep, struct qe_ep, ep);
+	struct qe_req *req = container_of(_req, struct qe_req, req);
+	struct qe_udc *udc;
+	unsigned long flags;
+	int reval;
+
+	udc = ep->udc;
+	/* catch various bogus parameters */
+	if (!_req || !req->req.complete || !req->req.buf
+			|| !list_empty(&req->queue)) {
+		dev_dbg(udc->dev, "bad params\n");
+		return -EINVAL;
+	}
+	if (!_ep || (!ep->desc && ep_index(ep))) {
+		dev_dbg(udc->dev, "bad ep\n");
+		return -EINVAL;
+	}
+
+	if (!udc->driver || udc->gadget.speed == USB_SPEED_UNKNOWN)
+		return -ESHUTDOWN;
+
+	req->ep = ep;
+
+	/* map virtual address to hardware */
+	if (req->req.dma == DMA_ADDR_INVALID) {
+		req->req.dma = dma_map_single(ep->udc->gadget.dev.parent,
+					req->req.buf,
+					req->req.length,
+					ep_is_in(ep)
+					? DMA_TO_DEVICE :
+					DMA_FROM_DEVICE);
+		req->mapped = 1;
+	} else {
+		dma_sync_single_for_device(ep->udc->gadget.dev.parent,
+					req->req.dma, req->req.length,
+					ep_is_in(ep)
+					? DMA_TO_DEVICE :
+					DMA_FROM_DEVICE);
+		req->mapped = 0;
+	}
+
+	req->req.status = -EINPROGRESS;
+	req->req.actual = 0;
+
+	list_add_tail(&req->queue, &ep->queue);
+	dev_vdbg(udc->dev, "gadget have request in %s! %d\n",
+			ep->name, req->req.length);
+	spin_lock_irqsave(&udc->lock, flags);
+	/* push the request to device */
+	if (ep_is_in(ep))
+		reval = ep_req_send(ep, req);
+
+	/* EP0 */
+	if (ep_index(ep) == 0 && req->req.length > 0) {
+		if (ep_is_in(ep))
+			udc->ep0_state = DATA_STATE_XMIT;
+		else
+			udc->ep0_state = DATA_STATE_RECV;
+	}
+
+	if (ep->dir == USB_DIR_OUT)
+		reval = ep_req_receive(ep, req);
+
+	spin_unlock_irqrestore(&udc->lock, flags);
+
+	return 0;
+}
+
+/* dequeues (cancels, unlinks) an I/O request from an endpoint */
+static int qe_ep_dequeue(struct usb_ep *_ep, struct usb_request *_req)
+{
+	struct qe_ep *ep = container_of(_ep, struct qe_ep, ep);
+	struct qe_req *req;
+	unsigned long flags;
+
+	if (!_ep || !_req)
+		return -EINVAL;
+
+	spin_lock_irqsave(&ep->udc->lock, flags);
+
+	/* make sure it's actually queued on this endpoint */
+	list_for_each_entry(req, &ep->queue, queue) {
+		if (&req->req == _req)
+			break;
+	}
+
+	if (&req->req != _req) {
+		spin_unlock_irqrestore(&ep->udc->lock, flags);
+		return -EINVAL;
+	}
+
+	done(ep, req, -ECONNRESET);
+
+	spin_unlock_irqrestore(&ep->udc->lock, flags);
+	return 0;
+}
+
+/*-----------------------------------------------------------------
+ * modify the endpoint halt feature
+ * @ep: the non-isochronous endpoint being stalled
+ * @value: 1--set halt  0--clear halt
+ * Returns zero, or a negative error code.
+*----------------------------------------------------------------*/
+static int qe_ep_set_halt(struct usb_ep *_ep, int value)
+{
+	struct qe_ep *ep;
+	unsigned long flags;
+	int status = -EOPNOTSUPP;
+	struct qe_udc *udc;
+
+	ep = container_of(_ep, struct qe_ep, ep);
+	if (!_ep || !ep->desc) {
+		status = -EINVAL;
+		goto out;
+	}
+
+	udc = ep->udc;
+	/* Attempt to halt IN ep will fail if any transfer requests
+	 * are still queue */
+	if (value && ep_is_in(ep) && !list_empty(&ep->queue)) {
+		status = -EAGAIN;
+		goto out;
+	}
+
+	status = 0;
+	spin_lock_irqsave(&ep->udc->lock, flags);
+	qe_eptx_stall_change(ep, value);
+	qe_eprx_stall_change(ep, value);
+	spin_unlock_irqrestore(&ep->udc->lock, flags);
+
+	if (ep->epnum == 0) {
+		udc->ep0_state = WAIT_FOR_SETUP;
+		udc->ep0_dir = 0;
+	}
+
+	/* set data toggle to DATA0 on clear halt */
+	if (value == 0)
+		ep->data01 = 0;
+out:
+	dev_vdbg(udc->dev, "%s %s halt stat %d\n", ep->ep.name,
+			value ?  "set" : "clear", status);
+
+	return status;
+}
+
+static struct usb_ep_ops qe_ep_ops = {
+	.enable = qe_ep_enable,
+	.disable = qe_ep_disable,
+
+	.alloc_request = qe_alloc_request,
+	.free_request = qe_free_request,
+
+	.queue = qe_ep_queue,
+	.dequeue = qe_ep_dequeue,
+
+	.set_halt = qe_ep_set_halt,
+};
+
+/*------------------------------------------------------------------------
+	Gadget Driver Layer Operations
+ ------------------------------------------------------------------------*/
+
+/* Get the current frame number */
+static int qe_get_frame(struct usb_gadget *gadget)
+{
+	u16 tmp;
+
+	tmp = in_be16(&udc_controller->usb_param->frame_n);
+	if (tmp & 0x8000)
+		tmp = tmp & 0x07ff;
+	else
+		tmp = -EINVAL;
+
+	return (int)tmp;
+}
+
+/* Tries to wake up the host connected to this gadget
+ *
+ * Return : 0-success
+ * Negative-this feature not enabled by host or not supported by device hw
+ */
+static int qe_wakeup(struct usb_gadget *gadget)
+{
+	return -ENOTSUPP;
+}
+
+/* Notify controller that VBUS is powered, Called by whatever
+   detects VBUS sessions */
+static int qe_vbus_session(struct usb_gadget *gadget, int is_active)
+{
+	return -ENOTSUPP;
+}
+
+/* constrain controller's VBUS power usage
+ * This call is used by gadget drivers during SET_CONFIGURATION calls,
+ * reporting how much power the device may consume.  For example, this
+ * could affect how quickly batteries are recharged.
+ *
+ * Returns zero on success, else negative errno.
+ */
+static int qe_vbus_draw(struct usb_gadget *gadget, unsigned mA)
+{
+	return -ENOTSUPP;
+}
+
+/* Change Data+ pullup status
+ * this func is used by usb_gadget_connect/disconnect
+ */
+static int qe_pullup(struct usb_gadget *gadget, int is_on)
+{
+	return -ENOTSUPP;
+}
+
+/* defined in usb_gadget.h */
+static struct usb_gadget_ops qe_gadget_ops = {
+	.get_frame = qe_get_frame,
+	.wakeup = qe_wakeup,
+/*	.set_selfpowered = qe_set_selfpowered,*/ /* always selfpowered */
+	.vbus_session = qe_vbus_session,
+	.vbus_draw = qe_vbus_draw,
+	.pullup = qe_pullup,
+};
+
+/*-------------------------------------------------------------------------
+	USB ep0 Setup process in BUS Enumeration
+ -------------------------------------------------------------------------*/
+static int udc_reset_ep_queue(struct qe_udc *udc, u8 pipe)
+{
+	struct qe_ep *ep = &udc->eps[pipe];
+
+	nuke(ep, -ECONNRESET);
+	ep->tx_req = NULL;
+	return 0;
+}
+
+static int reset_queues(struct qe_udc *udc)
+{
+	u8 pipe;
+
+	for (pipe = 0; pipe < USB_MAX_ENDPOINTS; pipe++)
+		udc_reset_ep_queue(udc, pipe);
+
+	/* report disconnect; the driver is already quiesced */
+	spin_unlock(&udc->lock);
+	udc->driver->disconnect(&udc->gadget);
+	spin_lock(&udc->lock);
+
+	return 0;
+}
+
+static void ch9setaddress(struct qe_udc *udc, u16 value, u16 index,
+			u16 length)
+{
+	/* Save the new address to device struct */
+	udc->device_address = (u8) value;
+	/* Update usb state */
+	udc->usb_state = USB_STATE_ADDRESS;
+
+	/* Status phase , send a ZLP */
+	if (ep0_prime_status(udc, USB_DIR_IN))
+		qe_ep0_stall(udc);
+}
+
+static void ownercomplete(struct usb_ep *_ep, struct usb_request *_req)
+{
+	struct qe_req *req = container_of(_req, struct qe_req, req);
+
+	req->req.buf = NULL;
+	kfree(req);
+}
+
+static void ch9getstatus(struct qe_udc *udc, u8 request_type, u16 value,
+			u16 index, u16 length)
+{
+	u16 usb_status = 0;
+	struct qe_req *req;
+	struct qe_ep *ep;
+	int status = 0;
+
+	ep = &udc->eps[0];
+	if ((request_type & USB_RECIP_MASK) == USB_RECIP_DEVICE) {
+		/* Get device status */
+		usb_status = 1 << USB_DEVICE_SELF_POWERED;
+	} else if ((request_type & USB_RECIP_MASK) == USB_RECIP_INTERFACE) {
+		/* Get interface status */
+		/* We don't have interface information in udc driver */
+		usb_status = 0;
+	} else if ((request_type & USB_RECIP_MASK) == USB_RECIP_ENDPOINT) {
+		/* Get endpoint status */
+		int pipe = index & USB_ENDPOINT_NUMBER_MASK;
+		struct qe_ep *target_ep = &udc->eps[pipe];
+		u16 usep;
+
+		/* stall if endpoint doesn't exist */
+		if (!target_ep->desc)
+			goto stall;
+
+		usep = in_be16(&udc->usb_regs->usb_usep[pipe]);
+		if (index & USB_DIR_IN) {
+			if (target_ep->dir != USB_DIR_IN)
+				goto stall;
+			if ((usep & USB_THS_MASK) == USB_THS_STALL)
+				usb_status = 1 << USB_ENDPOINT_HALT;
+		} else {
+			if (target_ep->dir != USB_DIR_OUT)
+				goto stall;
+			if ((usep & USB_RHS_MASK) == USB_RHS_STALL)
+				usb_status = 1 << USB_ENDPOINT_HALT;
+		}
+	}
+
+	req = container_of(qe_alloc_request(&ep->ep, GFP_KERNEL),
+					struct qe_req, req);
+	req->req.length = 2;
+	req->req.buf = udc->statusbuf;
+	*(u16 *)req->req.buf = cpu_to_le16(usb_status);
+	req->req.status = -EINPROGRESS;
+	req->req.actual = 0;
+	req->req.complete = ownercomplete;
+
+	udc->ep0_dir = USB_DIR_IN;
+
+	/* data phase */
+	status = qe_ep_queue(&ep->ep, &req->req, GFP_ATOMIC);
+
+	if (status == 0)
+		return;
+stall:
+	dev_err(udc->dev, "Can't respond to getstatus request \n");
+	qe_ep0_stall(udc);
+}
+
+/* only handle the setup request, suppose the device in normal status */
+static void setup_received_handle(struct qe_udc *udc,
+				struct usb_ctrlrequest *setup)
+{
+	/* Fix Endian (udc->local_setup_buff is cpu Endian now)*/
+	u16 wValue = le16_to_cpu(setup->wValue);
+	u16 wIndex = le16_to_cpu(setup->wIndex);
+	u16 wLength = le16_to_cpu(setup->wLength);
+
+	/* clear the previous request in the ep0 */
+	udc_reset_ep_queue(udc, 0);
+
+	if (setup->bRequestType & USB_DIR_IN)
+		udc->ep0_dir = USB_DIR_IN;
+	else
+		udc->ep0_dir = USB_DIR_OUT;
+
+	switch (setup->bRequest) {
+	case USB_REQ_GET_STATUS:
+		/* Data+Status phase form udc */
+		if ((setup->bRequestType & (USB_DIR_IN | USB_TYPE_MASK))
+					!= (USB_DIR_IN | USB_TYPE_STANDARD))
+			break;
+		ch9getstatus(udc, setup->bRequestType, wValue, wIndex,
+					wLength);
+		return;
+
+	case USB_REQ_SET_ADDRESS:
+		/* Status phase from udc */
+		if (setup->bRequestType != (USB_DIR_OUT | USB_TYPE_STANDARD |
+						USB_RECIP_DEVICE))
+			break;
+		ch9setaddress(udc, wValue, wIndex, wLength);
+		return;
+
+	case USB_REQ_CLEAR_FEATURE:
+	case USB_REQ_SET_FEATURE:
+		/* Requests with no data phase, status phase from udc */
+		if ((setup->bRequestType & USB_TYPE_MASK)
+					!= USB_TYPE_STANDARD)
+			break;
+
+		if ((setup->bRequestType & USB_RECIP_MASK)
+				== USB_RECIP_ENDPOINT) {
+			int pipe = wIndex & USB_ENDPOINT_NUMBER_MASK;
+			struct qe_ep *ep;
+
+			if (wValue != 0 || wLength != 0
+				|| pipe > USB_MAX_ENDPOINTS)
+				break;
+			ep = &udc->eps[pipe];
+
+			spin_unlock(&udc->lock);
+			qe_ep_set_halt(&ep->ep,
+					(setup->bRequest == USB_REQ_SET_FEATURE)
+						? 1 : 0);
+			spin_lock(&udc->lock);
+		}
+
+		ep0_prime_status(udc, USB_DIR_IN);
+
+		return;
+
+	default:
+		break;
+	}
+
+	if (wLength) {
+		/* Data phase from gadget, status phase from udc */
+		if (setup->bRequestType & USB_DIR_IN) {
+			udc->ep0_state = DATA_STATE_XMIT;
+			udc->ep0_dir = USB_DIR_IN;
+		} else {
+			udc->ep0_state = DATA_STATE_RECV;
+			udc->ep0_dir = USB_DIR_OUT;
+		}
+		spin_unlock(&udc->lock);
+		if (udc->driver->setup(&udc->gadget,
+					&udc->local_setup_buff) < 0)
+			qe_ep0_stall(udc);
+		spin_lock(&udc->lock);
+	} else {
+		/* No data phase, IN status from gadget */
+		udc->ep0_dir = USB_DIR_IN;
+		spin_unlock(&udc->lock);
+		if (udc->driver->setup(&udc->gadget,
+					&udc->local_setup_buff) < 0)
+			qe_ep0_stall(udc);
+		spin_lock(&udc->lock);
+		udc->ep0_state = DATA_STATE_NEED_ZLP;
+	}
+}
+
+/*-------------------------------------------------------------------------
+	USB Interrupt handlers
+ -------------------------------------------------------------------------*/
+static void suspend_irq(struct qe_udc *udc)
+{
+	udc->resume_state = udc->usb_state;
+	udc->usb_state = USB_STATE_SUSPENDED;
+
+	/* report suspend to the driver ,serial.c not support this*/
+	if (udc->driver->suspend)
+		udc->driver->suspend(&udc->gadget);
+}
+
+static void resume_irq(struct qe_udc *udc)
+{
+	udc->usb_state = udc->resume_state;
+	udc->resume_state = 0;
+
+	/* report resume to the driver , serial.c not support this*/
+	if (udc->driver->resume)
+		udc->driver->resume(&udc->gadget);
+}
+
+static void idle_irq(struct qe_udc *udc)
+{
+	u8 usbs;
+
+	usbs = in_8(&udc->usb_regs->usb_usbs);
+	if (usbs & USB_IDLE_STATUS_MASK) {
+		if ((udc->usb_state) != USB_STATE_SUSPENDED)
+			suspend_irq(udc);
+	} else {
+		if (udc->usb_state == USB_STATE_SUSPENDED)
+			resume_irq(udc);
+	}
+}
+
+static int reset_irq(struct qe_udc *udc)
+{
+	unsigned char i;
+
+	qe_usb_disable();
+	out_8(&udc->usb_regs->usb_usadr, 0);
+
+	for (i = 0; i < USB_MAX_ENDPOINTS; i++) {
+		if (udc->eps[i].init)
+			qe_ep_reset(udc, i);
+	}
+
+	reset_queues(udc);
+	udc->usb_state = USB_STATE_DEFAULT;
+	udc->ep0_state = WAIT_FOR_SETUP;
+	udc->ep0_dir = USB_DIR_OUT;
+	qe_usb_enable();
+	return 0;
+}
+
+static int bsy_irq(struct qe_udc *udc)
+{
+	return 0;
+}
+
+static int txe_irq(struct qe_udc *udc)
+{
+	return 0;
+}
+
+/* ep0 tx interrupt also in here */
+static int tx_irq(struct qe_udc *udc)
+{
+	struct qe_ep *ep;
+	struct qe_bd __iomem *bd;
+	int i, res = 0;
+
+	if ((udc->usb_state == USB_STATE_ADDRESS)
+		&& (in_8(&udc->usb_regs->usb_usadr) == 0))
+		out_8(&udc->usb_regs->usb_usadr, udc->device_address);
+
+	for (i = (USB_MAX_ENDPOINTS-1); ((i >= 0) && (res == 0)); i--) {
+		ep = &udc->eps[i];
+		if (ep && ep->init && (ep->dir != USB_DIR_OUT)) {
+			bd = ep->c_txbd;
+			if (!(in_be32((u32 __iomem *)bd) & T_R)
+						&& (in_be32(&bd->buf))) {
+				/* confirm the transmitted bd */
+				if (ep->epnum == 0)
+					res = qe_ep0_txconf(ep);
+				else
+					res = qe_ep_txconf(ep);
+			}
+		}
+	}
+	return res;
+}
+
+
+/* setup packect's rx is handle in the function too */
+static void rx_irq(struct qe_udc *udc)
+{
+	struct qe_ep *ep;
+	struct qe_bd __iomem *bd;
+	int i;
+
+	for (i = 0; i < USB_MAX_ENDPOINTS; i++) {
+		ep = &udc->eps[i];
+		if (ep && ep->init && (ep->dir != USB_DIR_IN)) {
+			bd = ep->n_rxbd;
+			if (!(in_be32((u32 __iomem *)bd) & R_E)
+						&& (in_be32(&bd->buf))) {
+				if (ep->epnum == 0) {
+					qe_ep0_rx(udc);
+				} else {
+					/*non-setup package receive*/
+					qe_ep_rx(ep);
+				}
+			}
+		}
+	}
+}
+
+static irqreturn_t qe_udc_irq(int irq, void *_udc)
+{
+	struct qe_udc *udc = (struct qe_udc *)_udc;
+	u16 irq_src;
+	irqreturn_t status = IRQ_NONE;
+	unsigned long flags;
+
+	spin_lock_irqsave(&udc->lock, flags);
+
+	irq_src = in_be16(&udc->usb_regs->usb_usber) &
+		in_be16(&udc->usb_regs->usb_usbmr);
+	/* Clear notification bits */
+	out_be16(&udc->usb_regs->usb_usber, irq_src);
+	/* USB Interrupt */
+	if (irq_src & USB_E_IDLE_MASK) {
+		idle_irq(udc);
+		irq_src &= ~USB_E_IDLE_MASK;
+		status = IRQ_HANDLED;
+	}
+
+	if (irq_src & USB_E_TXB_MASK) {
+		tx_irq(udc);
+		irq_src &= ~USB_E_TXB_MASK;
+		status = IRQ_HANDLED;
+	}
+
+	if (irq_src & USB_E_RXB_MASK) {
+		rx_irq(udc);
+		irq_src &= ~USB_E_RXB_MASK;
+		status = IRQ_HANDLED;
+	}
+
+	if (irq_src & USB_E_RESET_MASK) {
+		reset_irq(udc);
+		irq_src &= ~USB_E_RESET_MASK;
+		status = IRQ_HANDLED;
+	}
+
+	if (irq_src & USB_E_BSY_MASK) {
+		bsy_irq(udc);
+		irq_src &= ~USB_E_BSY_MASK;
+		status = IRQ_HANDLED;
+	}
+
+	if (irq_src & USB_E_TXE_MASK) {
+		txe_irq(udc);
+		irq_src &= ~USB_E_TXE_MASK;
+		status = IRQ_HANDLED;
+	}
+
+	spin_unlock_irqrestore(&udc->lock, flags);
+
+	return status;
+}
+
+/*-------------------------------------------------------------------------
+	Gadget driver register and unregister.
+ --------------------------------------------------------------------------*/
+int usb_gadget_register_driver(struct usb_gadget_driver *driver)
+{
+	int retval;
+	unsigned long flags = 0;
+
+	/* standard operations */
+	if (!udc_controller)
+		return -ENODEV;
+
+	if (!driver || (driver->speed != USB_SPEED_FULL
+			&& driver->speed != USB_SPEED_HIGH)
+			|| !driver->bind || !driver->disconnect
+			|| !driver->setup)
+		return -EINVAL;
+
+	if (udc_controller->driver)
+		return -EBUSY;
+
+	/* lock is needed but whether should use this lock or another */
+	spin_lock_irqsave(&udc_controller->lock, flags);
+
+	driver->driver.bus = NULL;
+	/* hook up the driver */
+	udc_controller->driver = driver;
+	udc_controller->gadget.dev.driver = &driver->driver;
+	udc_controller->gadget.speed = (enum usb_device_speed)(driver->speed);
+	spin_unlock_irqrestore(&udc_controller->lock, flags);
+
+	retval = driver->bind(&udc_controller->gadget);
+	if (retval) {
+		dev_err(udc_controller->dev, "bind to %s --> %d",
+				driver->driver.name, retval);
+		udc_controller->gadget.dev.driver = NULL;
+		udc_controller->driver = NULL;
+		return retval;
+	}
+
+	/* Enable IRQ reg and Set usbcmd reg EN bit */
+	qe_usb_enable();
+
+	out_be16(&udc_controller->usb_regs->usb_usber, 0xffff);
+	out_be16(&udc_controller->usb_regs->usb_usbmr, USB_E_DEFAULT_DEVICE);
+	udc_controller->usb_state = USB_STATE_ATTACHED;
+	udc_controller->ep0_state = WAIT_FOR_SETUP;
+	udc_controller->ep0_dir = USB_DIR_OUT;
+	dev_info(udc_controller->dev, "%s bind to driver %s \n",
+		udc_controller->gadget.name, driver->driver.name);
+	return 0;
+}
+EXPORT_SYMBOL(usb_gadget_register_driver);
+
+int usb_gadget_unregister_driver(struct usb_gadget_driver *driver)
+{
+	struct qe_ep *loop_ep;
+	unsigned long flags;
+
+	if (!udc_controller)
+		return -ENODEV;
+
+	if (!driver || driver != udc_controller->driver)
+		return -EINVAL;
+
+	/* stop usb controller, disable intr */
+	qe_usb_disable();
+
+	/* in fact, no needed */
+	udc_controller->usb_state = USB_STATE_ATTACHED;
+	udc_controller->ep0_state = WAIT_FOR_SETUP;
+	udc_controller->ep0_dir = 0;
+
+	/* stand operation */
+	spin_lock_irqsave(&udc_controller->lock, flags);
+	udc_controller->gadget.speed = USB_SPEED_UNKNOWN;
+	nuke(&udc_controller->eps[0], -ESHUTDOWN);
+	list_for_each_entry(loop_ep, &udc_controller->gadget.ep_list,
+				ep.ep_list)
+		nuke(loop_ep, -ESHUTDOWN);
+	spin_unlock_irqrestore(&udc_controller->lock, flags);
+
+	/* unbind gadget and unhook driver. */
+	driver->unbind(&udc_controller->gadget);
+	udc_controller->gadget.dev.driver = NULL;
+	udc_controller->driver = NULL;
+
+	dev_info(udc_controller->dev, "unregistered gadget driver '%s'\r\n",
+			driver->driver.name);
+	return 0;
+}
+EXPORT_SYMBOL(usb_gadget_unregister_driver);
+
+/* udc structure's alloc and setup, include ep-param alloc */
+static struct qe_udc __devinit *qe_udc_config(struct of_device *ofdev)
+{
+	struct qe_udc *udc;
+	struct device_node *np = ofdev->node;
+	unsigned int tmp_addr = 0;
+	struct usb_device_para __iomem *usbpram;
+	unsigned int i;
+	u64 size;
+	u32 offset;
+
+	udc = kzalloc(sizeof(*udc), GFP_KERNEL);
+	if (udc == NULL) {
+		dev_err(&ofdev->dev, "malloc udc failed\n");
+		goto cleanup;
+	}
+
+	udc->dev = &ofdev->dev;
+
+	/* get default address of usb parameter in MURAM from device tree */
+	offset = *of_get_address(np, 1, &size, NULL);
+	udc->usb_param = cpm_muram_addr(offset);
+	memset_io(udc->usb_param, 0, size);
+
+	usbpram = udc->usb_param;
+	out_be16(&usbpram->frame_n, 0);
+	out_be32(&usbpram->rstate, 0);
+
+	tmp_addr = cpm_muram_alloc((USB_MAX_ENDPOINTS *
+					sizeof(struct usb_ep_para)),
+					   USB_EP_PARA_ALIGNMENT);
+
+	for (i = 0; i < USB_MAX_ENDPOINTS; i++) {
+		out_be16(&usbpram->epptr[i], (u16)tmp_addr);
+		udc->ep_param[i] = cpm_muram_addr(tmp_addr);
+		tmp_addr += 32;
+	}
+
+	memset_io(udc->ep_param[0], 0,
+			USB_MAX_ENDPOINTS * sizeof(struct usb_ep_para));
+
+	udc->resume_state = USB_STATE_NOTATTACHED;
+	udc->usb_state = USB_STATE_POWERED;
+	udc->ep0_dir = 0;
+
+	spin_lock_init(&udc->lock);
+	return udc;
+
+cleanup:
+	kfree(udc);
+	return NULL;
+}
+
+/* USB Controller register init */
+static int __devinit qe_udc_reg_init(struct qe_udc *udc)
+{
+	struct usb_ctlr __iomem *qe_usbregs;
+	qe_usbregs = udc->usb_regs;
+
+	/* Init the usb register */
+	out_8(&qe_usbregs->usb_usmod, 0x01);
+	out_be16(&qe_usbregs->usb_usbmr, 0);
+	out_8(&qe_usbregs->usb_uscom, 0);
+	out_be16(&qe_usbregs->usb_usber, USBER_ALL_CLEAR);
+
+	return 0;
+}
+
+static int __devinit qe_ep_config(struct qe_udc *udc, unsigned char pipe_num)
+{
+	struct qe_ep *ep = &udc->eps[pipe_num];
+
+	ep->udc = udc;
+	strcpy(ep->name, ep_name[pipe_num]);
+	ep->ep.name = ep_name[pipe_num];
+
+	ep->ep.ops = &qe_ep_ops;
+	ep->stopped = 1;
+	ep->ep.maxpacket = (unsigned short) ~0;
+	ep->desc = NULL;
+	ep->dir = 0xff;
+	ep->epnum = (u8)pipe_num;
+	ep->sent = 0;
+	ep->last = 0;
+	ep->init = 0;
+	ep->rxframe = NULL;
+	ep->txframe = NULL;
+	ep->tx_req = NULL;
+	ep->state = EP_STATE_IDLE;
+	ep->has_data = 0;
+
+	/* the queue lists any req for this ep */
+	INIT_LIST_HEAD(&ep->queue);
+
+	/* gagdet.ep_list used for ep_autoconfig so no ep0*/
+	if (pipe_num != 0)
+		list_add_tail(&ep->ep.ep_list, &udc->gadget.ep_list);
+
+	ep->gadget = &udc->gadget;
+
+	return 0;
+}
+
+/*-----------------------------------------------------------------------
+ *	UDC device Driver operation functions				*
+ *----------------------------------------------------------------------*/
+static void qe_udc_release(struct device *dev)
+{
+	int i = 0;
+
+	complete(udc_controller->done);
+	cpm_muram_free(cpm_muram_offset(udc_controller->ep_param[0]));
+	for (i = 0; i < USB_MAX_ENDPOINTS; i++)
+		udc_controller->ep_param[i] = NULL;
+
+	kfree(udc_controller);
+	udc_controller = NULL;
+}
+
+/* Driver probe functions */
+static int __devinit qe_udc_probe(struct of_device *ofdev,
+			const struct of_device_id *match)
+{
+	struct device_node *np = ofdev->node;
+	struct qe_ep *ep;
+	unsigned int ret = 0;
+	unsigned int i;
+	const void *prop;
+
+	prop = of_get_property(np, "mode", NULL);
+	if (!prop || strcmp(prop, "peripheral"))
+		return -ENODEV;
+
+	/* Initialize the udc structure including QH member and other member */
+	udc_controller = qe_udc_config(ofdev);
+	if (!udc_controller) {
+		dev_dbg(&ofdev->dev, "udc_controll is NULL\n");
+		return -ENOMEM;
+	}
+
+	udc_controller->soc_type = (unsigned long)match->data;
+	udc_controller->usb_regs = of_iomap(np, 0);
+	if (!udc_controller->usb_regs) {
+		ret = -ENOMEM;
+		goto err1;
+	}
+
+	/* initialize usb hw reg except for regs for EP,
+	 * leave usbintr reg untouched*/
+	qe_udc_reg_init(udc_controller);
+
+	/* here comes the stand operations for probe
+	 * set the qe_udc->gadget.xxx */
+	udc_controller->gadget.ops = &qe_gadget_ops;
+
+	/* gadget.ep0 is a pointer */
+	udc_controller->gadget.ep0 = &udc_controller->eps[0].ep;
+
+	INIT_LIST_HEAD(&udc_controller->gadget.ep_list);
+
+	/* modify in register gadget process */
+	udc_controller->gadget.speed = USB_SPEED_UNKNOWN;
+
+	/* name: Identifies the controller hardware type. */
+	udc_controller->gadget.name = driver_name;
+
+	device_initialize(&udc_controller->gadget.dev);
+
+	strcpy(udc_controller->gadget.dev.bus_id, "gadget");
+
+	udc_controller->gadget.dev.release = qe_udc_release;
+	udc_controller->gadget.dev.parent = &ofdev->dev;
+
+	/* initialize qe_ep struct */
+	for (i = 0; i < USB_MAX_ENDPOINTS ; i++) {
+		/* because the ep type isn't decide here so
+		 * qe_ep_init() should be called in ep_enable() */
+
+		/* setup the qe_ep struct and link ep.ep.list
+		 * into gadget.ep_list */
+		qe_ep_config(udc_controller, (unsigned char)i);
+	}
+
+	/* ep0 initialization in here */
+	ret = qe_ep_init(udc_controller, 0, &qe_ep0_desc);
+	if (ret)
+		goto err2;
+
+	/* create a buf for ZLP send, need to remain zeroed */
+	udc_controller->nullbuf = kzalloc(256, GFP_KERNEL);
+	if (udc_controller->nullbuf == NULL) {
+		dev_dbg(udc_controller->dev, "cannot alloc nullbuf\n");
+		ret = -ENOMEM;
+		goto err3;
+	}
+
+	/* buffer for data of get_status request */
+	udc_controller->statusbuf = kzalloc(2, GFP_KERNEL);
+	if (udc_controller->statusbuf == NULL) {
+		ret = -ENOMEM;
+		goto err4;
+	}
+
+	udc_controller->nullp = virt_to_phys((void *)udc_controller->nullbuf);
+	if (udc_controller->nullp == DMA_ADDR_INVALID) {
+		udc_controller->nullp = dma_map_single(
+					udc_controller->gadget.dev.parent,
+					udc_controller->nullbuf,
+					256,
+					DMA_TO_DEVICE);
+		udc_controller->nullmap = 1;
+	} else {
+		dma_sync_single_for_device(udc_controller->gadget.dev.parent,
+					udc_controller->nullp, 256,
+					DMA_TO_DEVICE);
+	}
+
+	tasklet_init(&udc_controller->rx_tasklet, ep_rx_tasklet,
+			(unsigned long)udc_controller);
+	/* request irq and disable DR  */
+	udc_controller->usb_irq = irq_of_parse_and_map(np, 0);
+
+	ret = request_irq(udc_controller->usb_irq, qe_udc_irq, 0,
+				driver_name, udc_controller);
+	if (ret) {
+		dev_err(udc_controller->dev, "cannot request irq %d err %d \n",
+			udc_controller->usb_irq, ret);
+		goto err5;
+	}
+
+	ret = device_add(&udc_controller->gadget.dev);
+	if (ret)
+		goto err6;
+
+	dev_info(udc_controller->dev,
+			"%s USB controller initialized as device\n",
+			(udc_controller->soc_type == PORT_QE) ? "QE" : "CPM");
+	return 0;
+
+err6:
+	free_irq(udc_controller->usb_irq, udc_controller);
+err5:
+	if (udc_controller->nullmap) {
+		dma_unmap_single(udc_controller->gadget.dev.parent,
+			udc_controller->nullp, 256,
+				DMA_TO_DEVICE);
+			udc_controller->nullp = DMA_ADDR_INVALID;
+	} else {
+		dma_sync_single_for_cpu(udc_controller->gadget.dev.parent,
+			udc_controller->nullp, 256,
+				DMA_TO_DEVICE);
+	}
+	kfree(udc_controller->statusbuf);
+err4:
+	kfree(udc_controller->nullbuf);
+err3:
+	ep = &udc_controller->eps[0];
+	cpm_muram_free(cpm_muram_offset(ep->rxbase));
+	kfree(ep->rxframe);
+	kfree(ep->rxbuffer);
+	kfree(ep->txframe);
+err2:
+	iounmap(udc_controller->usb_regs);
+err1:
+	kfree(udc_controller);
+
+	return ret;
+}
+
+#ifdef CONFIG_PM
+static int qe_udc_suspend(struct of_device *dev, pm_message_t state)
+{
+	return -ENOTSUPP;
+}
+
+static int qe_udc_resume(struct of_device *dev)
+{
+	return -ENOTSUPP;
+}
+#endif
+
+static int __devexit qe_udc_remove(struct of_device *ofdev)
+{
+	struct qe_ep *ep;
+	unsigned int size;
+
+	DECLARE_COMPLETION(done);
+
+	if (!udc_controller)
+		return -ENODEV;
+
+	udc_controller->done = &done;
+	tasklet_disable(&udc_controller->rx_tasklet);
+
+	if (udc_controller->nullmap) {
+		dma_unmap_single(udc_controller->gadget.dev.parent,
+			udc_controller->nullp, 256,
+				DMA_TO_DEVICE);
+			udc_controller->nullp = DMA_ADDR_INVALID;
+	} else {
+		dma_sync_single_for_cpu(udc_controller->gadget.dev.parent,
+			udc_controller->nullp, 256,
+				DMA_TO_DEVICE);
+	}
+	kfree(udc_controller->statusbuf);
+	kfree(udc_controller->nullbuf);
+
+	ep = &udc_controller->eps[0];
+	cpm_muram_free(cpm_muram_offset(ep->rxbase));
+	size = (ep->ep.maxpacket + USB_CRC_SIZE + 2) * (USB_BDRING_LEN + 1);
+
+	kfree(ep->rxframe);
+	if (ep->rxbufmap) {
+		dma_unmap_single(udc_controller->gadget.dev.parent,
+				ep->rxbuf_d, size,
+				DMA_FROM_DEVICE);
+		ep->rxbuf_d = DMA_ADDR_INVALID;
+	} else {
+		dma_sync_single_for_cpu(udc_controller->gadget.dev.parent,
+				ep->rxbuf_d, size,
+				DMA_FROM_DEVICE);
+	}
+
+	kfree(ep->rxbuffer);
+	kfree(ep->txframe);
+
+	free_irq(udc_controller->usb_irq, udc_controller);
+
+	tasklet_kill(&udc_controller->rx_tasklet);
+
+	iounmap(udc_controller->usb_regs);
+
+	device_unregister(&udc_controller->gadget.dev);
+	/* wait for release() of gadget.dev to free udc */
+	wait_for_completion(&done);
+
+	return 0;
+}
+
+/*-------------------------------------------------------------------------*/
+static struct of_device_id __devinitdata qe_udc_match[] = {
+	{
+		.compatible = "fsl,mpc8360-qe-usb",
+		.data = (void *)PORT_QE,
+	},
+	{
+		.compatible = "fsl,mpc8272-cpm-usb",
+		.data = (void *)PORT_CPM,
+	},
+	{},
+};
+
+MODULE_DEVICE_TABLE(of, qe_udc_match);
+
+static struct of_platform_driver udc_driver = {
+	.name           = (char *)driver_name,
+	.match_table    = qe_udc_match,
+	.probe          = qe_udc_probe,
+	.remove         = __devexit_p(qe_udc_remove),
+#ifdef CONFIG_PM
+	.suspend        = qe_udc_suspend,
+	.resume         = qe_udc_resume,
+#endif
+};
+
+static int __init qe_udc_init(void)
+{
+	printk(KERN_INFO "%s: %s, %s\n", driver_name, driver_desc,
+			DRIVER_VERSION);
+	return of_register_platform_driver(&udc_driver);
+}
+
+static void __exit qe_udc_exit(void)
+{
+	of_unregister_platform_driver(&udc_driver);
+}
+
+module_init(qe_udc_init);
+module_exit(qe_udc_exit);
+
+MODULE_DESCRIPTION(DRIVER_DESC);
+MODULE_AUTHOR(DRIVER_AUTHOR);
+MODULE_LICENSE("GPL");
+
diff --git a/drivers/usb/gadget/fsl_qe_udc.h b/drivers/usb/gadget/fsl_qe_udc.h
new file mode 100644
index 0000000..31b2710
--- /dev/null
+++ b/drivers/usb/gadget/fsl_qe_udc.h
@@ -0,0 +1,437 @@
+/*
+ * drivers/usb/gadget/qe_udc.h
+ *
+ * Copyright (C) 2006-2008 Freescale Semiconductor, Inc. All rights reserved.
+ *
+ * 	Xiaobo Xie <X.Xie@freescale.com>
+ * 	Li Yang <leoli@freescale.com>
+ *
+ * Description:
+ * Freescale USB device/endpoint management registers
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License as published by
+ * the Free Software Foundation; either version 2 of the License, or (at
+ * your option) any later version.
+ */
+
+#ifndef __FSL_QE_UDC_H
+#define __FSL_QE_UDC_H
+
+/* SoC type */
+#define PORT_CPM	0
+#define PORT_QE		1
+
+#define USB_MAX_ENDPOINTS               4
+#define USB_MAX_PIPES                   USB_MAX_ENDPOINTS
+#define USB_EP0_MAX_SIZE		64
+#define USB_MAX_CTRL_PAYLOAD            0x4000
+#define USB_BDRING_LEN			16
+#define USB_BDRING_LEN_RX		256
+#define USB_BDRING_LEN_TX		16
+#define MIN_EMPTY_BDS			128
+#define MAX_DATA_BDS			8
+#define USB_CRC_SIZE			2
+#define USB_DIR_BOTH			0x88
+#define R_BUF_MAXSIZE			0x800
+#define USB_EP_PARA_ALIGNMENT		32
+
+/* USB Mode Register bit define */
+#define USB_MODE_EN		0x01
+#define USB_MODE_HOST		0x02
+#define USB_MODE_TEST		0x04
+#define USB_MODE_SFTE		0x08
+#define USB_MODE_RESUME		0x40
+#define USB_MODE_LSS		0x80
+
+/* USB Slave Address Register Mask */
+#define USB_SLVADDR_MASK	0x7F
+
+/* USB Endpoint register define */
+#define USB_EPNUM_MASK		0xF000
+#define USB_EPNUM_SHIFT		12
+
+#define USB_TRANS_MODE_SHIFT	8
+#define USB_TRANS_CTR		0x0000
+#define USB_TRANS_INT		0x0100
+#define USB_TRANS_BULK		0x0200
+#define USB_TRANS_ISO		0x0300
+
+#define USB_EP_MF		0x0020
+#define USB_EP_RTE		0x0010
+
+#define USB_THS_SHIFT		2
+#define USB_THS_MASK		0x000c
+#define USB_THS_NORMAL		0x0
+#define USB_THS_IGNORE_IN	0x0004
+#define USB_THS_NACK		0x0008
+#define USB_THS_STALL		0x000c
+
+#define USB_RHS_SHIFT   	0
+#define USB_RHS_MASK		0x0003
+#define USB_RHS_NORMAL  	0x0
+#define USB_RHS_IGNORE_OUT	0x0001
+#define USB_RHS_NACK		0x0002
+#define USB_RHS_STALL		0x0003
+
+#define USB_RTHS_MASK		0x000f
+
+/* USB Command Register define */
+#define USB_CMD_STR_FIFO	0x80
+#define USB_CMD_FLUSH_FIFO	0x40
+#define USB_CMD_ISFT		0x20
+#define USB_CMD_DSFT		0x10
+#define USB_CMD_EP_MASK		0x03
+
+/* USB Event and Mask Register define */
+#define USB_E_MSF_MASK		0x0800
+#define USB_E_SFT_MASK		0x0400
+#define USB_E_RESET_MASK	0x0200
+#define USB_E_IDLE_MASK		0x0100
+#define USB_E_TXE4_MASK		0x0080
+#define USB_E_TXE3_MASK		0x0040
+#define USB_E_TXE2_MASK		0x0020
+#define USB_E_TXE1_MASK		0x0010
+#define USB_E_SOF_MASK		0x0008
+#define USB_E_BSY_MASK		0x0004
+#define USB_E_TXB_MASK		0x0002
+#define USB_E_RXB_MASK		0x0001
+#define USBER_ALL_CLEAR 	0x0fff
+
+#define USB_E_DEFAULT_DEVICE   (USB_E_RESET_MASK | USB_E_TXE4_MASK | \
+				USB_E_TXE3_MASK | USB_E_TXE2_MASK | \
+				USB_E_TXE1_MASK | USB_E_BSY_MASK | \
+				USB_E_TXB_MASK | USB_E_RXB_MASK)
+
+#define USB_E_TXE_MASK         (USB_E_TXE4_MASK | USB_E_TXE3_MASK|\
+				 USB_E_TXE2_MASK | USB_E_TXE1_MASK)
+/* USB Status Register define */
+#define USB_IDLE_STATUS_MASK	0x01
+
+/* USB Start of Frame Timer */
+#define USB_USSFT_MASK		0x3FFF
+
+/* USB Frame Number Register */
+#define USB_USFRN_MASK		0xFFFF
+
+struct usb_device_para{
+	u16	epptr[4];
+	u32	rstate;
+	u32	rptr;
+	u16	frame_n;
+	u16	rbcnt;
+	u32	rtemp;
+	u32	rxusb_data;
+	u16	rxuptr;
+	u8	reso[2];
+	u32	softbl;
+	u8	sofucrctemp;
+};
+
+struct usb_ep_para{
+	u16	rbase;
+	u16	tbase;
+	u8	rbmr;
+	u8	tbmr;
+	u16	mrblr;
+	u16	rbptr;
+	u16	tbptr;
+	u32	tstate;
+	u32	tptr;
+	u16	tcrc;
+	u16	tbcnt;
+	u32	ttemp;
+	u16	txusbu_ptr;
+	u8	reserve[2];
+};
+
+#define USB_BUSMODE_GBL		0x20
+#define USB_BUSMODE_BO_MASK	0x18
+#define USB_BUSMODE_BO_SHIFT	0x3
+#define USB_BUSMODE_BE		0x2
+#define USB_BUSMODE_CETM	0x04
+#define USB_BUSMODE_DTB		0x02
+
+/* Endpoint basic handle */
+#define ep_index(EP)		((EP)->desc->bEndpointAddress & 0xF)
+#define ep_maxpacket(EP)	((EP)->ep.maxpacket)
+#define ep_is_in(EP)	((ep_index(EP) == 0) ? (EP->udc->ep0_dir == \
+			USB_DIR_IN) : ((EP)->desc->bEndpointAddress \
+			& USB_DIR_IN) == USB_DIR_IN)
+
+/* ep0 transfer state */
+#define WAIT_FOR_SETUP          0
+#define DATA_STATE_XMIT         1
+#define DATA_STATE_NEED_ZLP     2
+#define WAIT_FOR_OUT_STATUS     3
+#define DATA_STATE_RECV         4
+
+/* ep tramsfer mode */
+#define USBP_TM_CTL	0
+#define USBP_TM_ISO	1
+#define USBP_TM_BULK	2
+#define USBP_TM_INT	3
+
+/*-----------------------------------------------------------------------------
+	USB RX And TX DATA Frame
+ -----------------------------------------------------------------------------*/
+struct qe_frame{
+	u8 *data;
+	u32 len;
+	u32 status;
+	u32 info;
+
+	void *privdata;
+	struct list_head node;
+};
+
+/* Frame structure, info field. */
+#define PID_DATA0              0x80000000 /* Data toggle zero */
+#define PID_DATA1              0x40000000 /* Data toggle one  */
+#define PID_SETUP              0x20000000 /* setup bit */
+#define SETUP_STATUS           0x10000000 /* setup status bit */
+#define SETADDR_STATUS         0x08000000 /* setupup address status bit */
+#define NO_REQ                 0x04000000 /* Frame without request */
+#define HOST_DATA              0x02000000 /* Host data frame */
+#define FIRST_PACKET_IN_FRAME  0x01000000 /* first packet in the frame */
+#define TOKEN_FRAME            0x00800000 /* Host token frame */
+#define ZLP                    0x00400000 /* Zero length packet */
+#define IN_TOKEN_FRAME         0x00200000 /* In token package */
+#define OUT_TOKEN_FRAME        0x00100000 /* Out token package */
+#define SETUP_TOKEN_FRAME      0x00080000 /* Setup token package */
+#define STALL_FRAME            0x00040000 /* Stall handshake */
+#define NACK_FRAME             0x00020000 /* Nack handshake */
+#define NO_PID                 0x00010000 /* No send PID */
+#define NO_CRC                 0x00008000 /* No send CRC */
+#define HOST_COMMAND           0x00004000 /* Host command frame   */
+
+/* Frame status field */
+/* Receive side */
+#define FRAME_OK               0x00000000 /* Frame tranmitted or received OK */
+#define FRAME_ERROR            0x80000000 /* Error occured on frame */
+#define START_FRAME_LOST       0x40000000 /* START_FRAME_LOST */
+#define END_FRAME_LOST         0x20000000 /* END_FRAME_LOST */
+#define RX_ER_NONOCT           0x10000000 /* Rx Non Octet Aligned Packet */
+#define RX_ER_BITSTUFF         0x08000000 /* Frame Aborted --Received packet
+					     with bit stuff error */
+#define RX_ER_CRC              0x04000000 /* Received packet with CRC error */
+#define RX_ER_OVERUN           0x02000000 /* Over-run occured on reception */
+#define RX_ER_PID              0x01000000 /* Wrong PID received */
+/* Tranmit side */
+#define TX_ER_NAK              0x00800000 /* Received NAK handshake */
+#define TX_ER_STALL            0x00400000 /* Received STALL handshake */
+#define TX_ER_TIMEOUT          0x00200000 /* Transmit time out */
+#define TX_ER_UNDERUN          0x00100000 /* Transmit underrun */
+#define FRAME_INPROGRESS       0x00080000 /* Frame is being transmitted */
+#define ER_DATA_UNDERUN        0x00040000 /* Frame is shorter then expected */
+#define ER_DATA_OVERUN         0x00020000 /* Frame is longer then expected */
+
+/* QE USB frame operation functions */
+#define frame_get_length(frm) (frm->len)
+#define frame_set_length(frm, leng) (frm->len = leng)
+#define frame_get_data(frm) (frm->data)
+#define frame_set_data(frm, dat) (frm->data = dat)
+#define frame_get_info(frm) (frm->info)
+#define frame_set_info(frm, inf) (frm->info = inf)
+#define frame_get_status(frm) (frm->status)
+#define frame_set_status(frm, stat) (frm->status = stat)
+#define frame_get_privdata(frm) (frm->privdata)
+#define frame_set_privdata(frm, dat) (frm->privdata = dat)
+
+static inline void qe_frame_clean(struct qe_frame *frm)
+{
+	frame_set_data(frm, NULL);
+	frame_set_length(frm, 0);
+	frame_set_status(frm, FRAME_OK);
+	frame_set_info(frm, 0);
+	frame_set_privdata(frm, NULL);
+}
+
+static inline void qe_frame_init(struct qe_frame *frm)
+{
+	qe_frame_clean(frm);
+	INIT_LIST_HEAD(&(frm->node));
+}
+
+struct qe_req {
+	struct usb_request req;
+	struct list_head queue;
+	/* ep_queue() func will add
+	 a request->queue into a udc_ep->queue 'd tail */
+	struct qe_ep *ep;
+	unsigned mapped:1;
+};
+
+struct qe_ep {
+	struct usb_ep ep;
+	struct list_head queue;
+	struct qe_udc *udc;
+	const struct usb_endpoint_descriptor *desc;
+	struct usb_gadget *gadget;
+
+	u8 state;
+
+	struct qe_bd __iomem *rxbase;
+	struct qe_bd __iomem *n_rxbd;
+	struct qe_bd __iomem *e_rxbd;
+
+	struct qe_bd __iomem *txbase;
+	struct qe_bd __iomem *n_txbd;
+	struct qe_bd __iomem *c_txbd;
+
+	struct qe_frame *rxframe;
+	u8 *rxbuffer;
+	dma_addr_t rxbuf_d;
+	u8 rxbufmap;
+	unsigned char localnack;
+	int has_data;
+
+	struct qe_frame *txframe;
+	struct qe_req *tx_req;
+	int sent;  /*data already sent */
+	int last;  /*data sent in the last time*/
+
+	u8 dir;
+	u8 epnum;
+	u8 tm; /* transfer mode */
+	u8 data01;
+	u8 init;
+
+	u8 already_seen;
+	u8 enable_tasklet;
+	u8 setup_stage;
+	u32 last_io;            /* timestamp */
+
+	char name[14];
+
+	unsigned double_buf:1;
+	unsigned stopped:1;
+	unsigned fnf:1;
+	unsigned has_dma:1;
+
+	u8 ackwait;
+	u8 dma_channel;
+	u16 dma_counter;
+	int lch;
+
+	struct timer_list timer;
+};
+
+struct qe_udc {
+	struct usb_gadget gadget;
+	struct usb_gadget_driver *driver;
+	struct device *dev;
+	struct qe_ep eps[USB_MAX_ENDPOINTS];
+	struct usb_ctrlrequest local_setup_buff;
+	spinlock_t lock;	/* lock for set/config qe_udc */
+	unsigned long soc_type;		/* QE or CPM soc */
+
+	struct qe_req *status_req;	/* ep0 status request */
+
+	/* USB and EP Parameter Block pointer */
+	struct usb_device_para __iomem *usb_param;
+	struct usb_ep_para __iomem *ep_param[4];
+
+	u32 max_pipes;          /* Device max pipes */
+	u32 max_use_endpts;     /* Max endpointes to be used */
+	u32 bus_reset;          /* Device is bus reseting */
+	u32 resume_state;       /* USB state to resume*/
+	u32 usb_state;          /* USB current state */
+	u32 usb_next_state;     /* USB next state */
+	u32 ep0_state;          /* Enpoint zero state */
+	u32 ep0_dir;            /* Enpoint zero direction: can be
+				USB_DIR_IN or USB_DIR_OUT*/
+	u32 usb_sof_count;      /* SOF count */
+	u32 errors;             /* USB ERRORs count */
+
+	u8 *tmpbuf;
+	u32 c_start;
+	u32 c_end;
+
+	u8 *nullbuf;
+	u8 *statusbuf;
+	dma_addr_t nullp;
+	u8 nullmap;
+	u8 device_address;	/* Device USB address */
+
+	unsigned int usb_clock;
+	unsigned int usb_irq;
+	struct usb_ctlr __iomem *usb_regs;
+
+	struct tasklet_struct rx_tasklet;
+
+	struct completion *done;	/* to make sure release() is done */
+};
+
+#define EP_STATE_IDLE	0
+#define EP_STATE_NACK	1
+#define EP_STATE_STALL	2
+
+/*
+ * transmit BD's status
+ */
+#define T_R           0x80000000         /* ready bit */
+#define T_W           0x20000000         /* wrap bit */
+#define T_I           0x10000000         /* interrupt on completion */
+#define T_L           0x08000000         /* last */
+#define T_TC          0x04000000         /* transmit CRC */
+#define T_CNF         0x02000000         /* wait for  transmit confirm */
+#define T_LSP         0x01000000         /* Low-speed transaction */
+#define T_PID         0x00c00000         /* packet id */
+#define T_NAK         0x00100000         /* No ack. */
+#define T_STAL        0x00080000         /* Stall recieved */
+#define T_TO          0x00040000         /* time out */
+#define T_UN          0x00020000         /* underrun */
+
+#define DEVICE_T_ERROR    (T_UN | T_TO)
+#define HOST_T_ERROR      (T_UN | T_TO | T_NAK | T_STAL)
+#define DEVICE_T_BD_MASK  DEVICE_T_ERROR
+#define HOST_T_BD_MASK    HOST_T_ERROR
+
+#define T_PID_SHIFT   6
+#define T_PID_DATA0   0x00800000         /* Data 0 toggle */
+#define T_PID_DATA1   0x00c00000         /* Data 1 toggle */
+
+/*
+ * receive BD's status
+ */
+#define R_E           0x80000000         /* buffer empty */
+#define R_W           0x20000000         /* wrap bit */
+#define R_I           0x10000000         /* interrupt on reception */
+#define R_L           0x08000000         /* last */
+#define R_F           0x04000000         /* first */
+#define R_PID         0x00c00000         /* packet id */
+#define R_NO          0x00100000         /* Rx Non Octet Aligned Packet */
+#define R_AB          0x00080000         /* Frame Aborted */
+#define R_CR          0x00040000         /* CRC Error */
+#define R_OV          0x00020000         /* Overrun */
+
+#define R_ERROR       (R_NO | R_AB | R_CR | R_OV)
+#define R_BD_MASK     R_ERROR
+
+#define R_PID_DATA0   0x00000000
+#define R_PID_DATA1   0x00400000
+#define R_PID_SETUP   0x00800000
+
+#define CPM_USB_STOP_TX 0x2e600000
+#define CPM_USB_RESTART_TX 0x2e600000
+#define CPM_USB_STOP_TX_OPCODE 0x0a
+#define CPM_USB_RESTART_TX_OPCODE 0x0b
+#define CPM_USB_EP_SHIFT 5
+
+#ifndef CONFIG_CPM
+inline int cpm_command(u32 command, u8 opcode)
+{
+	return -EOPNOTSUPP;
+}
+#endif
+
+#ifndef CONFIG_QUICC_ENGINE
+inline int qe_issue_cmd(u32 cmd, u32 device, u8 mcn_protocol,
+	u32 cmd_input)
+{
+	return -EOPNOTSUPP;
+}
+#endif
+
+#endif  /* __FSL_QE_UDC_H */
diff --git a/drivers/usb/gadget/fsl_usb2_udc.c b/drivers/usb/gadget/fsl_usb2_udc.c
index 45ad556..091bb55 100644
--- a/drivers/usb/gadget/fsl_usb2_udc.c
+++ b/drivers/usb/gadget/fsl_usb2_udc.c
@@ -23,11 +23,8 @@
 #include <linux/ioport.h>
 #include <linux/types.h>
 #include <linux/errno.h>
-#include <linux/delay.h>
-#include <linux/sched.h>
 #include <linux/slab.h>
 #include <linux/init.h>
-#include <linux/timer.h>
 #include <linux/list.h>
 #include <linux/interrupt.h>
 #include <linux/proc_fs.h>
@@ -44,11 +41,9 @@
 
 #include <asm/byteorder.h>
 #include <asm/io.h>
-#include <asm/irq.h>
 #include <asm/system.h>
 #include <asm/unaligned.h>
 #include <asm/dma.h>
-#include <asm/cacheflush.h>
 
 #include "fsl_usb2_udc.h"
 
@@ -61,8 +56,8 @@
 static const char driver_name[] = "fsl-usb2-udc";
 static const char driver_desc[] = DRIVER_DESC;
 
-volatile static struct usb_dr_device *dr_regs = NULL;
-volatile static struct usb_sys_interface *usb_sys_regs = NULL;
+static struct usb_dr_device *dr_regs;
+static struct usb_sys_interface *usb_sys_regs;
 
 /* it is initialized in probe()  */
 static struct fsl_udc *udc_controller = NULL;
@@ -76,16 +71,14 @@
 	.wMaxPacketSize =	USB_MAX_CTRL_PAYLOAD,
 };
 
-static int fsl_udc_suspend(struct platform_device *pdev, pm_message_t state);
-static int fsl_udc_resume(struct platform_device *pdev);
 static void fsl_ep_fifo_flush(struct usb_ep *_ep);
 
 #ifdef CONFIG_PPC32
 #define fsl_readl(addr)		in_le32(addr)
-#define fsl_writel(addr, val32) out_le32(val32, addr)
+#define fsl_writel(val32, addr) out_le32(addr, val32)
 #else
 #define fsl_readl(addr)		readl(addr)
-#define fsl_writel(addr, val32) writel(addr, val32)
+#define fsl_writel(val32, addr) writel(val32, addr)
 #endif
 
 /********************************************************************
@@ -185,10 +178,6 @@
 	unsigned long timeout;
 #define FSL_UDC_RESET_TIMEOUT 1000
 
-	/* before here, make sure dr_regs has been initialized */
-	if (!udc)
-		return -EINVAL;
-
 	/* Stop and reset the usb controller */
 	tmp = fsl_readl(&dr_regs->usbcmd);
 	tmp &= ~USB_CMD_RUN_STOP;
@@ -202,7 +191,7 @@
 	timeout = jiffies + FSL_UDC_RESET_TIMEOUT;
 	while (fsl_readl(&dr_regs->usbcmd) & USB_CMD_CTRL_RESET) {
 		if (time_after(jiffies, timeout)) {
-			ERR("udc reset timeout! \n");
+			ERR("udc reset timeout!\n");
 			return -ETIMEDOUT;
 		}
 		cpu_relax();
@@ -315,7 +304,8 @@
 	return;
 }
 
-void dr_ep_setup(unsigned char ep_num, unsigned char dir, unsigned char ep_type)
+static void dr_ep_setup(unsigned char ep_num, unsigned char dir,
+			unsigned char ep_type)
 {
 	unsigned int tmp_epctrl = 0;
 
@@ -563,7 +553,7 @@
 	/* nuke all pending requests (does flush) */
 	nuke(ep, -ESHUTDOWN);
 
-	ep->desc = 0;
+	ep->desc = NULL;
 	ep->stopped = 1;
 	spin_unlock_irqrestore(&udc->lock, flags);
 
@@ -602,7 +592,7 @@
 }
 
 /*-------------------------------------------------------------------------*/
-static int fsl_queue_td(struct fsl_ep *ep, struct fsl_req *req)
+static void fsl_queue_td(struct fsl_ep *ep, struct fsl_req *req)
 {
 	int i = ep_index(ep) * 2 + ep_is_in(ep);
 	u32 temp, bitmask, tmp_stat;
@@ -653,13 +643,16 @@
 			| EP_QUEUE_HEAD_STATUS_HALT));
 	dQH->size_ioc_int_sts &= temp;
 
+	/* Ensure that updates to the QH will occure before priming. */
+	wmb();
+
 	/* Prime endpoint by writing 1 to ENDPTPRIME */
 	temp = ep_is_in(ep)
 		? (1 << (ep_index(ep) + 16))
 		: (1 << (ep_index(ep)));
 	fsl_writel(temp, &dr_regs->endpointprime);
 out:
-	return 0;
+	return;
 }
 
 /* Fill in the dTD structure
@@ -710,7 +703,7 @@
 		*is_last = 0;
 
 	if ((*is_last) == 0)
-		VDBG("multi-dtd request!\n");
+		VDBG("multi-dtd request!");
 	/* Fill in the transfer size; set active bit */
 	swap_temp = ((*length << DTD_LENGTH_BIT_POS) | DTD_STATUS_ACTIVE);
 
@@ -773,11 +766,11 @@
 	/* catch various bogus parameters */
 	if (!_req || !req->req.complete || !req->req.buf
 			|| !list_empty(&req->queue)) {
-		VDBG("%s, bad params\n", __func__);
+		VDBG("%s, bad params", __func__);
 		return -EINVAL;
 	}
 	if (unlikely(!_ep || !ep->desc)) {
-		VDBG("%s, bad ep\n", __func__);
+		VDBG("%s, bad ep", __func__);
 		return -EINVAL;
 	}
 	if (ep->desc->bmAttributes == USB_ENDPOINT_XFER_ISOC) {
@@ -1069,7 +1062,7 @@
 
 	udc = container_of(gadget, struct fsl_udc, gadget);
 	spin_lock_irqsave(&udc->lock, flags);
-	VDBG("VBUS %s\n", is_active ? "on" : "off");
+	VDBG("VBUS %s", is_active ? "on" : "off");
 	udc->vbus_active = (is_active != 0);
 	if (can_pullup(udc))
 		fsl_writel((fsl_readl(&dr_regs->usbcmd) | USB_CMD_RUN_STOP),
@@ -1146,7 +1139,6 @@
 {
 	struct fsl_req *req = udc->status_req;
 	struct fsl_ep *ep;
-	int status = 0;
 
 	if (direction == EP_DIR_IN)
 		udc->ep0_dir = USB_DIR_IN;
@@ -1164,27 +1156,21 @@
 	req->dtd_count = 0;
 
 	if (fsl_req_to_dtd(req) == 0)
-		status = fsl_queue_td(ep, req);
+		fsl_queue_td(ep, req);
 	else
 		return -ENOMEM;
 
-	if (status)
-		ERR("Can't queue ep0 status request \n");
 	list_add_tail(&req->queue, &ep->queue);
 
-	return status;
+	return 0;
 }
 
-static inline int udc_reset_ep_queue(struct fsl_udc *udc, u8 pipe)
+static void udc_reset_ep_queue(struct fsl_udc *udc, u8 pipe)
 {
 	struct fsl_ep *ep = get_ep_by_pipe(udc, pipe);
 
-	if (!ep->name)
-		return 0;
-
-	nuke(ep, -ESHUTDOWN);
-
-	return 0;
+	if (ep->name)
+		nuke(ep, -ESHUTDOWN);
 }
 
 /*
@@ -1208,10 +1194,8 @@
 		u16 index, u16 length)
 {
 	u16 tmp = 0;		/* Status, cpu endian */
-
 	struct fsl_req *req;
 	struct fsl_ep *ep;
-	int status = 0;
 
 	ep = &udc->eps[0];
 
@@ -1250,14 +1234,10 @@
 
 	/* prime the data phase */
 	if ((fsl_req_to_dtd(req) == 0))
-		status = fsl_queue_td(ep, req);
+		fsl_queue_td(ep, req);
 	else			/* no mem */
 		goto stall;
 
-	if (status) {
-		ERR("Can't respond to getstatus request \n");
-		goto stall;
-	}
 	list_add_tail(&req->queue, &ep->queue);
 	udc->ep0_state = DATA_STATE_XMIT;
 	return;
@@ -1397,7 +1377,7 @@
 		udc->ep0_state = WAIT_FOR_SETUP;
 		break;
 	case WAIT_FOR_SETUP:
-		ERR("Unexpect ep0 packets \n");
+		ERR("Unexpect ep0 packets\n");
 		break;
 	default:
 		ep0stall(udc);
@@ -1476,7 +1456,7 @@
 				status = -EILSEQ;
 				break;
 			} else
-				ERR("Unknown error has occured (0x%x)!\r\n",
+				ERR("Unknown error has occured (0x%x)!\n",
 					errors);
 
 		} else if (le32_to_cpu(curr_td->size_ioc_sts)
@@ -1495,7 +1475,7 @@
 			}
 		} else {
 			td_complete++;
-			VDBG("dTD transmitted successful ");
+			VDBG("dTD transmitted successful");
 		}
 
 		if (j != curr_req->dtd_count - 1)
@@ -1568,9 +1548,6 @@
 {
 	u32 speed;
 
-	if (udc->bus_reset)
-		udc->bus_reset = 0;
-
 	/* Bus resetting is finished */
 	if (!(fsl_readl(&dr_regs->portsc1) & PORTSCX_PORT_RESET)) {
 		/* Get the speed */
@@ -1678,8 +1655,6 @@
 
 	if (fsl_readl(&dr_regs->portsc1) & PORTSCX_PORT_RESET) {
 		VDBG("Bus reset");
-		/* Bus is reseting */
-		udc->bus_reset = 1;
 		/* Reset all the queues, include XD, dTD, EP queue
 		 * head and TR Queue */
 		reset_queues(udc);
@@ -1768,7 +1743,7 @@
 	}
 
 	if (irq_src & (USB_STS_ERR | USB_STS_SYS_ERR)) {
-		VDBG("Error IRQ %x ", irq_src);
+		VDBG("Error IRQ %x", irq_src);
 	}
 
 	spin_unlock_irqrestore(&udc->lock, flags);
@@ -1799,7 +1774,7 @@
 	/* lock is needed but whether should use this lock or another */
 	spin_lock_irqsave(&udc_controller->lock, flags);
 
-	driver->driver.bus = 0;
+	driver->driver.bus = NULL;
 	/* hook up the driver */
 	udc_controller->driver = driver;
 	udc_controller->gadget.dev.driver = &driver->driver;
@@ -1809,8 +1784,8 @@
 	retval = driver->bind(&udc_controller->gadget);
 	if (retval) {
 		VDBG("bind to %s --> %d", driver->driver.name, retval);
-		udc_controller->gadget.dev.driver = 0;
-		udc_controller->driver = 0;
+		udc_controller->gadget.dev.driver = NULL;
+		udc_controller->driver = NULL;
 		goto out;
 	}
 
@@ -1819,12 +1794,12 @@
 	udc_controller->usb_state = USB_STATE_ATTACHED;
 	udc_controller->ep0_state = WAIT_FOR_SETUP;
 	udc_controller->ep0_dir = 0;
-	printk(KERN_INFO "%s: bind to driver %s \n",
+	printk(KERN_INFO "%s: bind to driver %s\n",
 			udc_controller->gadget.name, driver->driver.name);
 
 out:
 	if (retval)
-		printk("retval %d \n", retval);
+		printk("gadget driver register failed %d\n", retval);
 	return retval;
 }
 EXPORT_SYMBOL(usb_gadget_register_driver);
@@ -1842,7 +1817,7 @@
 		return -EINVAL;
 
 	if (udc_controller->transceiver)
-		(void)otg_set_peripheral(udc_controller->transceiver, 0);
+		otg_set_peripheral(udc_controller->transceiver, NULL);
 
 	/* stop DR, disable intr */
 	dr_controller_stop(udc_controller);
@@ -1863,10 +1838,10 @@
 
 	/* unbind gadget and unhook driver. */
 	driver->unbind(&udc_controller->gadget);
-	udc_controller->gadget.dev.driver = 0;
-	udc_controller->driver = 0;
+	udc_controller->gadget.dev.driver = NULL;
+	udc_controller->driver = NULL;
 
-	printk("unregistered gadget driver '%s'\r\n", driver->driver.name);
+	printk("unregistered gadget driver '%s'\n", driver->driver.name);
 	return 0;
 }
 EXPORT_SYMBOL(usb_gadget_unregister_driver);
@@ -1922,7 +1897,7 @@
 	tmp_reg = fsl_readl(&dr_regs->usbsts);
 	t = scnprintf(next, size,
 			"USB Status Reg:\n"
-			"Dr Suspend: %d" "Reset Received: %d" "System Error: %s"
+			"Dr Suspend: %d Reset Received: %d System Error: %s "
 			"USB Error Interrupt: %s\n\n",
 			(tmp_reg & USB_STS_SUSPEND) ? 1 : 0,
 			(tmp_reg & USB_STS_RESET) ? 1 : 0,
@@ -1934,11 +1909,11 @@
 	tmp_reg = fsl_readl(&dr_regs->usbintr);
 	t = scnprintf(next, size,
 			"USB Intrrupt Enable Reg:\n"
-			"Sleep Enable: %d" "SOF Received Enable: %d"
+			"Sleep Enable: %d SOF Received Enable: %d "
 			"Reset Enable: %d\n"
-			"System Error Enable: %d"
+			"System Error Enable: %d "
 			"Port Change Dectected Enable: %d\n"
-			"USB Error Intr Enable: %d" "USB Intr Enable: %d\n\n",
+			"USB Error Intr Enable: %d USB Intr Enable: %d\n\n",
 			(tmp_reg & USB_INTR_DEVICE_SUSPEND) ? 1 : 0,
 			(tmp_reg & USB_INTR_SOF_EN) ? 1 : 0,
 			(tmp_reg & USB_INTR_RESET_EN) ? 1 : 0,
@@ -1951,21 +1926,21 @@
 
 	tmp_reg = fsl_readl(&dr_regs->frindex);
 	t = scnprintf(next, size,
-			"USB Frame Index Reg:" "Frame Number is 0x%x\n\n",
+			"USB Frame Index Reg: Frame Number is 0x%x\n\n",
 			(tmp_reg & USB_FRINDEX_MASKS));
 	size -= t;
 	next += t;
 
 	tmp_reg = fsl_readl(&dr_regs->deviceaddr);
 	t = scnprintf(next, size,
-			"USB Device Address Reg:" "Device Addr is 0x%x\n\n",
+			"USB Device Address Reg: Device Addr is 0x%x\n\n",
 			(tmp_reg & USB_DEVICE_ADDRESS_MASK));
 	size -= t;
 	next += t;
 
 	tmp_reg = fsl_readl(&dr_regs->endpointlistaddr);
 	t = scnprintf(next, size,
-			"USB Endpoint List Address Reg:"
+			"USB Endpoint List Address Reg: "
 			"Device Addr is 0x%x\n\n",
 			(tmp_reg & USB_EP_LIST_ADDRESS_MASK));
 	size -= t;
@@ -1974,11 +1949,12 @@
 	tmp_reg = fsl_readl(&dr_regs->portsc1);
 	t = scnprintf(next, size,
 		"USB Port Status&Control Reg:\n"
-		"Port Transceiver Type : %s" "Port Speed: %s \n"
-		"PHY Low Power Suspend: %s" "Port Reset: %s"
-		"Port Suspend Mode: %s \n" "Over-current Change: %s"
+		"Port Transceiver Type : %s Port Speed: %s\n"
+		"PHY Low Power Suspend: %s Port Reset: %s "
+		"Port Suspend Mode: %s\n"
+		"Over-current Change: %s "
 		"Port Enable/Disable Change: %s\n"
-		"Port Enabled/Disabled: %s"
+		"Port Enabled/Disabled: %s "
 		"Current Connect Status: %s\n\n", ( {
 			char *s;
 			switch (tmp_reg & PORTSCX_PTS_FSLS) {
@@ -2023,7 +1999,7 @@
 
 	tmp_reg = fsl_readl(&dr_regs->usbmode);
 	t = scnprintf(next, size,
-			"USB Mode Reg:" "Controller Mode is : %s\n\n", ( {
+			"USB Mode Reg: Controller Mode is: %s\n\n", ( {
 				char *s;
 				switch (tmp_reg & USB_MODE_CTRL_MODE_HOST) {
 				case USB_MODE_CTRL_MODE_IDLE:
@@ -2042,7 +2018,7 @@
 
 	tmp_reg = fsl_readl(&dr_regs->endptsetupstat);
 	t = scnprintf(next, size,
-			"Endpoint Setup Status Reg:" "SETUP on ep 0x%x\n\n",
+			"Endpoint Setup Status Reg: SETUP on ep 0x%x\n\n",
 			(tmp_reg & EP_SETUP_STATUS_MASK));
 	size -= t;
 	next += t;
@@ -2055,12 +2031,12 @@
 		next += t;
 	}
 	tmp_reg = fsl_readl(&dr_regs->endpointprime);
-	t = scnprintf(next, size, "EP Prime Reg = [0x%x]\n", tmp_reg);
+	t = scnprintf(next, size, "EP Prime Reg = [0x%x]\n\n", tmp_reg);
 	size -= t;
 	next += t;
 
 	tmp_reg = usb_sys_regs->snoop1;
-	t = scnprintf(next, size, "\nSnoop1 Reg : = [0x%x]\n\n", tmp_reg);
+	t = scnprintf(next, size, "Snoop1 Reg : = [0x%x]\n\n", tmp_reg);
 	size -= t;
 	next += t;
 
@@ -2084,7 +2060,7 @@
 	} else {
 		list_for_each_entry(req, &ep->queue, queue) {
 			t = scnprintf(next, size,
-				"req %p actual 0x%x length 0x%x  buf %p\n",
+				"req %p actual 0x%x length 0x%x buf %p\n",
 				&req->req, req->req.actual,
 				req->req.length, req->req.buf);
 			size -= t;
@@ -2110,7 +2086,7 @@
 			} else {
 				list_for_each_entry(req, &ep->queue, queue) {
 					t = scnprintf(next, size,
-						"req %p actual 0x%x length"
+						"req %p actual 0x%x length "
 						"0x%x  buf %p\n",
 						&req->req, req->req.actual,
 						req->req.length, req->req.buf);
@@ -2202,7 +2178,6 @@
 	udc->usb_state = USB_STATE_POWERED;
 	udc->ep0_dir = 0;
 	udc->remote_wakeup = 0;	/* default to 0 on reset */
-	spin_lock_init(&udc->lock);
 
 	return 0;
 }
@@ -2254,7 +2229,7 @@
 	u32 dccparams;
 
 	if (strcmp(pdev->name, driver_name)) {
-		VDBG("Wrong device\n");
+		VDBG("Wrong device");
 		return -ENODEV;
 	}
 
@@ -2264,23 +2239,26 @@
 		return -ENOMEM;
 	}
 
+	spin_lock_init(&udc_controller->lock);
+	udc_controller->stopped = 1;
+
 	res = platform_get_resource(pdev, IORESOURCE_MEM, 0);
 	if (!res) {
-		kfree(udc_controller);
-		return -ENXIO;
+		ret = -ENXIO;
+		goto err_kfree;
 	}
 
 	if (!request_mem_region(res->start, res->end - res->start + 1,
 				driver_name)) {
-		ERR("request mem region for %s failed \n", pdev->name);
-		kfree(udc_controller);
-		return -EBUSY;
+		ERR("request mem region for %s failed\n", pdev->name);
+		ret = -EBUSY;
+		goto err_kfree;
 	}
 
 	dr_regs = ioremap(res->start, res->end - res->start + 1);
 	if (!dr_regs) {
 		ret = -ENOMEM;
-		goto err1;
+		goto err_release_mem_region;
 	}
 
 	usb_sys_regs = (struct usb_sys_interface *)
@@ -2291,7 +2269,7 @@
 	if (!(dccparams & DCCPARAMS_DC)) {
 		ERR("This SOC doesn't support device role\n");
 		ret = -ENODEV;
-		goto err2;
+		goto err_iounmap;
 	}
 	/* Get max device endpoints */
 	/* DEN is bidirectional ep number, max_ep doubles the number */
@@ -2300,22 +2278,22 @@
 	udc_controller->irq = platform_get_irq(pdev, 0);
 	if (!udc_controller->irq) {
 		ret = -ENODEV;
-		goto err2;
+		goto err_iounmap;
 	}
 
 	ret = request_irq(udc_controller->irq, fsl_udc_irq, IRQF_SHARED,
 			driver_name, udc_controller);
 	if (ret != 0) {
-		ERR("cannot request irq %d err %d \n",
+		ERR("cannot request irq %d err %d\n",
 				udc_controller->irq, ret);
-		goto err2;
+		goto err_iounmap;
 	}
 
 	/* Initialize the udc structure including QH member and other member */
 	if (struct_udc_setup(udc_controller, pdev)) {
 		ERR("Can't initialize udc data structure\n");
 		ret = -ENOMEM;
-		goto err3;
+		goto err_free_irq;
 	}
 
 	/* initialize usb hw reg except for regs for EP,
@@ -2336,7 +2314,7 @@
 	udc_controller->gadget.dev.parent = &pdev->dev;
 	ret = device_register(&udc_controller->gadget.dev);
 	if (ret < 0)
-		goto err3;
+		goto err_free_irq;
 
 	/* setup QH and epctrl for ep0 */
 	ep0_setup(udc_controller);
@@ -2366,20 +2344,22 @@
 			DTD_ALIGNMENT, UDC_DMA_BOUNDARY);
 	if (udc_controller->td_pool == NULL) {
 		ret = -ENOMEM;
-		goto err4;
+		goto err_unregister;
 	}
 	create_proc_file();
 	return 0;
 
-err4:
+err_unregister:
 	device_unregister(&udc_controller->gadget.dev);
-err3:
+err_free_irq:
 	free_irq(udc_controller->irq, udc_controller);
-err2:
+err_iounmap:
 	iounmap(dr_regs);
-err1:
+err_release_mem_region:
 	release_mem_region(res->start, res->end - res->start + 1);
+err_kfree:
 	kfree(udc_controller);
+	udc_controller = NULL;
 	return ret;
 }
 
@@ -2469,7 +2449,7 @@
 static void __exit udc_exit(void)
 {
 	platform_driver_unregister(&udc_driver);
-	printk("%s unregistered \n", driver_desc);
+	printk("%s unregistered\n", driver_desc);
 }
 
 module_exit(udc_exit);
diff --git a/drivers/usb/gadget/fsl_usb2_udc.h b/drivers/usb/gadget/fsl_usb2_udc.h
index 6131752..e63ef12 100644
--- a/drivers/usb/gadget/fsl_usb2_udc.h
+++ b/drivers/usb/gadget/fsl_usb2_udc.h
@@ -424,16 +424,6 @@
 /* Controller dma boundary */
 #define UDC_DMA_BOUNDARY			0x1000
 
-/* -----------------------------------------------------------------------*/
-/* ##### enum data
-*/
-typedef enum {
-	e_ULPI,
-	e_UTMI_8BIT,
-	e_UTMI_16BIT,
-	e_SERIAL
-} e_PhyInterface;
-
 /*-------------------------------------------------------------------------*/
 
 /* ### driver private data
@@ -469,9 +459,9 @@
 #define EP_DIR_OUT	0
 
 struct fsl_udc {
-
 	struct usb_gadget gadget;
 	struct usb_gadget_driver *driver;
+	struct completion *done;	/* to make sure release() is done */
 	struct fsl_ep *eps;
 	unsigned int max_ep;
 	unsigned int irq;
@@ -492,20 +482,13 @@
 	size_t ep_qh_size;		/* size after alignment adjustment*/
 	dma_addr_t ep_qh_dma;		/* dma address of QH */
 
-	u32 max_pipes;		/* Device max pipes */
-	u32 max_use_endpts;	/* Max endpointes to be used */
-	u32 bus_reset;		/* Device is bus reseting */
+	u32 max_pipes;          /* Device max pipes */
 	u32 resume_state;	/* USB state to resume */
 	u32 usb_state;		/* USB current state */
-	u32 usb_next_state;	/* USB next state */
 	u32 ep0_state;		/* Endpoint zero state */
 	u32 ep0_dir;		/* Endpoint zero direction: can be
 				   USB_DIR_IN or USB_DIR_OUT */
-	u32 usb_sof_count;	/* SOF count */
-	u32 errors;		/* USB ERRORs count */
 	u8 device_address;	/* Device USB address */
-
-	struct completion *done;	/* to make sure release() is done */
 };
 
 /*-------------------------------------------------------------------------*/
diff --git a/drivers/usb/gadget/gadget_chips.h b/drivers/usb/gadget/gadget_chips.h
index 17d9905..4e3107d 100644
--- a/drivers/usb/gadget/gadget_chips.h
+++ b/drivers/usb/gadget/gadget_chips.h
@@ -151,6 +151,13 @@
 #define	gadget_is_m66592(g)	0
 #endif
 
+/* Freescale CPM/QE UDC SUPPORT */
+#ifdef CONFIG_USB_GADGET_FSL_QE
+#define gadget_is_fsl_qe(g)	!strcmp("fsl_qe_udc", (g)->name)
+#else
+#define gadget_is_fsl_qe(g)	0
+#endif
+
 
 // CONFIG_USB_GADGET_SX2
 // CONFIG_USB_GADGET_AU1X00
@@ -216,6 +223,8 @@
 		return 0x20;
 	else if (gadget_is_m66592(gadget))
 		return 0x21;
+	else if (gadget_is_fsl_qe(gadget))
+		return 0x22;
 	return -ENOENT;
 }
 
diff --git a/drivers/usb/gadget/gmidi.c b/drivers/usb/gadget/gmidi.c
index 6eee760..60d3f9e 100644
--- a/drivers/usb/gadget/gmidi.c
+++ b/drivers/usb/gadget/gmidi.c
@@ -222,7 +222,7 @@
 	 * power properties of the device. Is it selfpowered?
 	 */
 	.bmAttributes =		USB_CONFIG_ATT_ONE,
-	.bMaxPower =		1,
+	.bMaxPower =		CONFIG_USB_GADGET_VBUS_DRAW / 2,
 };
 
 /* B.3.1  Standard AC Interface Descriptor */
diff --git a/drivers/usb/gadget/net2280.c b/drivers/usb/gadget/net2280.c
index 5cfb5eb..8ae70de 100644
--- a/drivers/usb/gadget/net2280.c
+++ b/drivers/usb/gadget/net2280.c
@@ -178,6 +178,7 @@
 
 	/* ep_reset() has already been called */
 	ep->stopped = 0;
+	ep->wedged = 0;
 	ep->out_overflow = 0;
 
 	/* set speed-dependent max packet; may kick in high bandwidth */
@@ -1218,7 +1219,7 @@
 static int net2280_fifo_status (struct usb_ep *_ep);
 
 static int
-net2280_set_halt (struct usb_ep *_ep, int value)
+net2280_set_halt_and_wedge(struct usb_ep *_ep, int value, int wedged)
 {
 	struct net2280_ep	*ep;
 	unsigned long		flags;
@@ -1239,16 +1240,21 @@
 	else if (ep->is_in && value && net2280_fifo_status (_ep) != 0)
 		retval = -EAGAIN;
 	else {
-		VDEBUG (ep->dev, "%s %s halt\n", _ep->name,
-				value ? "set" : "clear");
+		VDEBUG (ep->dev, "%s %s %s\n", _ep->name,
+				value ? "set" : "clear",
+				wedged ? "wedge" : "halt");
 		/* set/clear, then synch memory views with the device */
 		if (value) {
 			if (ep->num == 0)
 				ep->dev->protocol_stall = 1;
 			else
 				set_halt (ep);
-		} else
+			if (wedged)
+				ep->wedged = 1;
+		} else {
 			clear_halt (ep);
+			ep->wedged = 0;
+		}
 		(void) readl (&ep->regs->ep_rsp);
 	}
 	spin_unlock_irqrestore (&ep->dev->lock, flags);
@@ -1257,6 +1263,20 @@
 }
 
 static int
+net2280_set_halt(struct usb_ep *_ep, int value)
+{
+	return net2280_set_halt_and_wedge(_ep, value, 0);
+}
+
+static int
+net2280_set_wedge(struct usb_ep *_ep)
+{
+	if (!_ep || _ep->name == ep0name)
+		return -EINVAL;
+	return net2280_set_halt_and_wedge(_ep, 1, 1);
+}
+
+static int
 net2280_fifo_status (struct usb_ep *_ep)
 {
 	struct net2280_ep	*ep;
@@ -1302,6 +1322,7 @@
 	.dequeue	= net2280_dequeue,
 
 	.set_halt	= net2280_set_halt,
+	.set_wedge	= net2280_set_wedge,
 	.fifo_status	= net2280_fifo_status,
 	.fifo_flush	= net2280_fifo_flush,
 };
@@ -2410,9 +2431,14 @@
 				goto do_stall;
 			if ((e = get_ep_by_addr (dev, w_index)) == 0)
 				goto do_stall;
-			clear_halt (e);
+			if (e->wedged) {
+				VDEBUG(dev, "%s wedged, halt not cleared\n",
+						ep->ep.name);
+			} else {
+				VDEBUG(dev, "%s clear halt\n", ep->ep.name);
+				clear_halt(e);
+			}
 			allow_status (ep);
-			VDEBUG (dev, "%s clear halt\n", ep->ep.name);
 			goto next_endpoints;
 			}
 			break;
@@ -2427,6 +2453,8 @@
 				goto do_stall;
 			if ((e = get_ep_by_addr (dev, w_index)) == 0)
 				goto do_stall;
+			if (e->ep.name == ep0name)
+				goto do_stall;
 			set_halt (e);
 			allow_status (ep);
 			VDEBUG (dev, "%s set halt\n", ep->ep.name);
diff --git a/drivers/usb/gadget/net2280.h b/drivers/usb/gadget/net2280.h
index 81a71db..c368522 100644
--- a/drivers/usb/gadget/net2280.h
+++ b/drivers/usb/gadget/net2280.h
@@ -109,6 +109,7 @@
 						in_fifo_validate : 1,
 						out_overflow : 1,
 						stopped : 1,
+						wedged : 1,
 						is_in : 1,
 						is_iso : 1,
 						responded : 1;
diff --git a/drivers/usb/gadget/omap_udc.c b/drivers/usb/gadget/omap_udc.c
index bb54cca..34e9e39 100644
--- a/drivers/usb/gadget/omap_udc.c
+++ b/drivers/usb/gadget/omap_udc.c
@@ -2313,6 +2313,13 @@
 
 	tmp = omap_readl(OTG_REV);
 	if (cpu_is_omap24xx()) {
+		/*
+		 * REVISIT: Not clear how this works on OMAP2.  trans
+		 * is ANDed to produce bits 7 and 8, which might make
+		 * sense for USB_TRANSCEIVER_CTRL on OMAP1,
+		 * but with CONTROL_DEVCONF, these bits have something to
+		 * do with the frame adjustment counter and McBSP2.
+		 */
 		ctrl_name = "control_devconf";
 		trans = omap_ctrl_readl(OMAP2_CONTROL_DEVCONF0);
 	} else {
diff --git a/drivers/usb/gadget/printer.c b/drivers/usb/gadget/printer.c
index 2b3b9e1..5a3034f 100644
--- a/drivers/usb/gadget/printer.c
+++ b/drivers/usb/gadget/printer.c
@@ -252,7 +252,7 @@
 	.bConfigurationValue =	DEV_CONFIG_VALUE,
 	.iConfiguration =	0,
 	.bmAttributes =		USB_CONFIG_ATT_ONE | USB_CONFIG_ATT_SELFPOWER,
-	.bMaxPower =		1	/* Self-Powered */
+	.bMaxPower =		CONFIG_USB_GADGET_VBUS_DRAW / 2,
 };
 
 static struct usb_interface_descriptor intf_desc = {
@@ -1278,8 +1278,7 @@
 	/* respond with data transfer before status phase? */
 	if (value >= 0) {
 		req->length = value;
-		req->zero = value < wLength
-				&& (value % gadget->ep0->maxpacket) == 0;
+		req->zero = value < wLength;
 		value = usb_ep_queue(gadget->ep0, req, GFP_ATOMIC);
 		if (value < 0) {
 			DBG(dev, "ep_queue --> %d\n", value);
@@ -1477,7 +1476,6 @@
 	if (gadget->is_otg) {
 		otg_desc.bmAttributes |= USB_OTG_HNP,
 		config_desc.bmAttributes |= USB_CONFIG_ATT_WAKEUP;
-		config_desc.bMaxPower = 4;
 	}
 
 	spin_lock_init(&dev->lock);
diff --git a/drivers/usb/gadget/pxa27x_udc.c b/drivers/usb/gadget/pxa27x_udc.c
index 7cbc78a..bcf375c 100644
--- a/drivers/usb/gadget/pxa27x_udc.c
+++ b/drivers/usb/gadget/pxa27x_udc.c
@@ -22,7 +22,6 @@
 #include <linux/module.h>
 #include <linux/kernel.h>
 #include <linux/types.h>
-#include <linux/version.h>
 #include <linux/errno.h>
 #include <linux/platform_device.h>
 #include <linux/delay.h>
diff --git a/drivers/usb/gadget/s3c2410_udc.c b/drivers/usb/gadget/s3c2410_udc.c
index 29d13eb..48f51b1 100644
--- a/drivers/usb/gadget/s3c2410_udc.c
+++ b/drivers/usb/gadget/s3c2410_udc.c
@@ -1651,7 +1651,7 @@
 		return -EBUSY;
 
 	if (!driver->bind || !driver->setup
-			|| driver->speed != USB_SPEED_FULL) {
+			|| driver->speed < USB_SPEED_FULL) {
 		printk(KERN_ERR "Invalid driver: bind %p setup %p speed %d\n",
 			driver->bind, driver->setup, driver->speed);
 		return -EINVAL;
diff --git a/drivers/usb/gadget/serial.c b/drivers/usb/gadget/serial.c
index 3faa7a7..37879af 100644
--- a/drivers/usb/gadget/serial.c
+++ b/drivers/usb/gadget/serial.c
@@ -43,6 +43,7 @@
 #include "epautoconf.c"
 
 #include "f_acm.c"
+#include "f_obex.c"
 #include "f_serial.c"
 #include "u_serial.c"
 
@@ -56,6 +57,7 @@
 #define GS_VENDOR_ID			0x0525	/* NetChip */
 #define GS_PRODUCT_ID			0xa4a6	/* Linux-USB Serial Gadget */
 #define GS_CDC_PRODUCT_ID		0xa4a7	/* ... as CDC-ACM */
+#define GS_CDC_OBEX_PRODUCT_ID		0xa4a9	/* ... as CDC-OBEX */
 
 /* string IDs are assigned dynamically */
 
@@ -125,6 +127,10 @@
 module_param(use_acm, bool, 0);
 MODULE_PARM_DESC(use_acm, "Use CDC ACM, default=yes");
 
+static int use_obex = false;
+module_param(use_obex, bool, 0);
+MODULE_PARM_DESC(use_obex, "Use CDC OBEX, default=no");
+
 static unsigned n_ports = 1;
 module_param(n_ports, uint, 0);
 MODULE_PARM_DESC(n_ports, "number of ports to create, default=1");
@@ -139,6 +145,8 @@
 	for (i = 0; i < n_ports && status == 0; i++) {
 		if (use_acm)
 			status = acm_bind_config(c, i);
+		else if (use_obex)
+			status = obex_bind_config(c, i);
 		else
 			status = gser_bind_config(c, i);
 	}
@@ -151,7 +159,6 @@
 	/* .bConfigurationValue = f(use_acm) */
 	/* .iConfiguration = DYNAMIC */
 	.bmAttributes	= USB_CONFIG_ATT_SELFPOWER,
-	.bMaxPower	= 1,	/* 2 mA, minimal */
 };
 
 static int __init gs_bind(struct usb_composite_dev *cdev)
@@ -249,6 +256,12 @@
 		device_desc.bDeviceClass = USB_CLASS_COMM;
 		device_desc.idProduct =
 				__constant_cpu_to_le16(GS_CDC_PRODUCT_ID);
+	} else if (use_obex) {
+		serial_config_driver.label = "CDC OBEX config";
+		serial_config_driver.bConfigurationValue = 3;
+		device_desc.bDeviceClass = USB_CLASS_COMM;
+		device_desc.idProduct =
+			__constant_cpu_to_le16(GS_CDC_OBEX_PRODUCT_ID);
 	} else {
 		serial_config_driver.label = "Generic Serial config";
 		serial_config_driver.bConfigurationValue = 1;
diff --git a/drivers/usb/gadget/u_ether.c b/drivers/usb/gadget/u_ether.c
index dbd575a..66948b7 100644
--- a/drivers/usb/gadget/u_ether.c
+++ b/drivers/usb/gadget/u_ether.c
@@ -873,6 +873,13 @@
 		spin_lock(&dev->lock);
 		dev->port_usb = link;
 		link->ioport = dev;
+		if (netif_running(dev->net)) {
+			if (link->open)
+				link->open(link);
+		} else {
+			if (link->close)
+				link->close(link);
+		}
 		spin_unlock(&dev->lock);
 
 		netif_carrier_on(dev->net);
diff --git a/drivers/usb/gadget/u_serial.h b/drivers/usb/gadget/u_serial.h
index af3910d..300f0ed 100644
--- a/drivers/usb/gadget/u_serial.h
+++ b/drivers/usb/gadget/u_serial.h
@@ -62,5 +62,6 @@
 /* functions are bound to configurations by a config or gadget driver */
 int acm_bind_config(struct usb_configuration *c, u8 port_num);
 int gser_bind_config(struct usb_configuration *c, u8 port_num);
+int obex_bind_config(struct usb_configuration *c, u8 port_num);
 
 #endif /* __U_SERIAL_H */
diff --git a/drivers/usb/host/ehci-dbg.c b/drivers/usb/host/ehci-dbg.c
index b0f8ed5..0cb53ca 100644
--- a/drivers/usb/host/ehci-dbg.c
+++ b/drivers/usb/host/ehci-dbg.c
@@ -358,7 +358,8 @@
 	struct usb_bus *bus;
 	struct mutex mutex;	/* protect filling of buffer */
 	size_t count;		/* number of characters filled into buffer */
-	char *page;
+	char *output_buf;
+	size_t alloc_size;
 };
 
 #define speed_char(info1) ({ char tmp; \
@@ -488,8 +489,8 @@
 
 	hcd = bus_to_hcd(buf->bus);
 	ehci = hcd_to_ehci (hcd);
-	next = buf->page;
-	size = PAGE_SIZE;
+	next = buf->output_buf;
+	size = buf->alloc_size;
 
 	*next = 0;
 
@@ -510,7 +511,7 @@
 	}
 	spin_unlock_irqrestore (&ehci->lock, flags);
 
-	return strlen(buf->page);
+	return strlen(buf->output_buf);
 }
 
 #define DBG_SCHED_LIMIT 64
@@ -531,8 +532,8 @@
 
 	hcd = bus_to_hcd(buf->bus);
 	ehci = hcd_to_ehci (hcd);
-	next = buf->page;
-	size = PAGE_SIZE;
+	next = buf->output_buf;
+	size = buf->alloc_size;
 
 	temp = scnprintf (next, size, "size = %d\n", ehci->periodic_size);
 	size -= temp;
@@ -568,14 +569,16 @@
 				for (temp = 0; temp < seen_count; temp++) {
 					if (seen [temp].ptr != p.ptr)
 						continue;
-					if (p.qh->qh_next.ptr)
+					if (p.qh->qh_next.ptr) {
 						temp = scnprintf (next, size,
 							" ...");
-					p.ptr = NULL;
+						size -= temp;
+						next += temp;
+					}
 					break;
 				}
 				/* show more info the first time around */
-				if (temp == seen_count && p.ptr) {
+				if (temp == seen_count) {
 					u32	scratch = hc32_to_cpup(ehci,
 							&p.qh->hw_info1);
 					struct ehci_qtd	*qtd;
@@ -649,7 +652,7 @@
 	spin_unlock_irqrestore (&ehci->lock, flags);
 	kfree (seen);
 
-	return PAGE_SIZE - size;
+	return buf->alloc_size - size;
 }
 #undef DBG_SCHED_LIMIT
 
@@ -665,14 +668,14 @@
 
 	hcd = bus_to_hcd(buf->bus);
 	ehci = hcd_to_ehci (hcd);
-	next = buf->page;
-	size = PAGE_SIZE;
+	next = buf->output_buf;
+	size = buf->alloc_size;
 
 	spin_lock_irqsave (&ehci->lock, flags);
 
 	if (!test_bit(HCD_FLAG_HW_ACCESSIBLE, &hcd->flags)) {
 		size = scnprintf (next, size,
-			"bus %s, device %s (driver " DRIVER_VERSION ")\n"
+			"bus %s, device %s\n"
 			"%s\n"
 			"SUSPENDED (no register access)\n",
 			hcd->self.controller->bus->name,
@@ -684,7 +687,7 @@
 	/* Capability Registers */
 	i = HC_VERSION(ehci_readl(ehci, &ehci->caps->hc_capbase));
 	temp = scnprintf (next, size,
-		"bus %s, device %s (driver " DRIVER_VERSION ")\n"
+		"bus %s, device %s\n"
 		"%s\n"
 		"EHCI %x.%02x, hcd state %d\n",
 		hcd->self.controller->bus->name,
@@ -808,7 +811,7 @@
 done:
 	spin_unlock_irqrestore (&ehci->lock, flags);
 
-	return PAGE_SIZE - size;
+	return buf->alloc_size - size;
 }
 
 static struct debug_buffer *alloc_buffer(struct usb_bus *bus,
@@ -822,6 +825,7 @@
 		buf->bus = bus;
 		buf->fill_func = fill_func;
 		mutex_init(&buf->mutex);
+		buf->alloc_size = PAGE_SIZE;
 	}
 
 	return buf;
@@ -831,10 +835,10 @@
 {
 	int ret = 0;
 
-	if (!buf->page)
-		buf->page = (char *)get_zeroed_page(GFP_KERNEL);
+	if (!buf->output_buf)
+		buf->output_buf = (char *)vmalloc(buf->alloc_size);
 
-	if (!buf->page) {
+	if (!buf->output_buf) {
 		ret = -ENOMEM;
 		goto out;
 	}
@@ -867,7 +871,7 @@
 	mutex_unlock(&buf->mutex);
 
 	ret = simple_read_from_buffer(user_buf, len, offset,
-				      buf->page, buf->count);
+				      buf->output_buf, buf->count);
 
 out:
 	return ret;
@@ -879,8 +883,8 @@
 	struct debug_buffer *buf = file->private_data;
 
 	if (buf) {
-		if (buf->page)
-			free_page((unsigned long)buf->page);
+		if (buf->output_buf)
+			vfree(buf->output_buf);
 		kfree(buf);
 	}
 
@@ -895,10 +899,14 @@
 
 static int debug_periodic_open(struct inode *inode, struct file *file)
 {
-	file->private_data = alloc_buffer(inode->i_private,
-					  fill_periodic_buffer);
+	struct debug_buffer *buf;
+	buf = alloc_buffer(inode->i_private, fill_periodic_buffer);
+	if (!buf)
+		return -ENOMEM;
 
-	return file->private_data ? 0 : -ENOMEM;
+	buf->alloc_size = (sizeof(void *) == 4 ? 6 : 8)*PAGE_SIZE;
+	file->private_data = buf;
+	return 0;
 }
 
 static int debug_registers_open(struct inode *inode, struct file *file)
diff --git a/drivers/usb/host/ehci-hcd.c b/drivers/usb/host/ehci-hcd.c
index 8409e07..d343afa 100644
--- a/drivers/usb/host/ehci-hcd.c
+++ b/drivers/usb/host/ehci-hcd.c
@@ -24,6 +24,7 @@
 #include <linux/ioport.h>
 #include <linux/sched.h>
 #include <linux/slab.h>
+#include <linux/vmalloc.h>
 #include <linux/errno.h>
 #include <linux/init.h>
 #include <linux/timer.h>
@@ -59,7 +60,6 @@
  * providing early devices for those host controllers to talk to!
  */
 
-#define DRIVER_VERSION "10 Dec 2004"
 #define DRIVER_AUTHOR "David Brownell"
 #define DRIVER_DESC "USB 2.0 'Enhanced' Host Controller (EHCI) Driver"
 
@@ -620,9 +620,9 @@
 
 	temp = HC_VERSION(ehci_readl(ehci, &ehci->caps->hc_capbase));
 	ehci_info (ehci,
-		"USB %x.%x started, EHCI %x.%02x, driver %s%s\n",
+		"USB %x.%x started, EHCI %x.%02x%s\n",
 		((ehci->sbrn & 0xf0)>>4), (ehci->sbrn & 0x0f),
-		temp >> 8, temp & 0xff, DRIVER_VERSION,
+		temp >> 8, temp & 0xff,
 		ignore_oc ? ", overcurrent ignored" : "");
 
 	ehci_writel(ehci, INTR_MASK,
@@ -706,7 +706,7 @@
 		pcd_status = status;
 
 		/* resume root hub? */
-		if (!(ehci_readl(ehci, &ehci->regs->command) & CMD_RUN))
+		if (!(cmd & CMD_RUN))
 			usb_hcd_resume_root_hub(hcd);
 
 		while (i--) {
@@ -715,8 +715,11 @@
 
 			if (pstatus & PORT_OWNER)
 				continue;
-			if (!(pstatus & PORT_RESUME)
-					|| ehci->reset_done [i] != 0)
+			if (!(test_bit(i, &ehci->suspended_ports) &&
+					((pstatus & PORT_RESUME) ||
+						!(pstatus & PORT_SUSPEND)) &&
+					(pstatus & PORT_PE) &&
+					ehci->reset_done[i] == 0))
 				continue;
 
 			/* start 20 msec resume signaling from this port,
@@ -731,9 +734,8 @@
 
 	/* PCI errors [4.15.2.4] */
 	if (unlikely ((status & STS_FATAL) != 0)) {
-		dbg_cmd (ehci, "fatal", ehci_readl(ehci,
-						   &ehci->regs->command));
-		dbg_status (ehci, "fatal", status);
+		dbg_cmd(ehci, "fatal", cmd);
+		dbg_status(ehci, "fatal", status);
 		if (status & STS_HALT) {
 			ehci_err (ehci, "fatal error\n");
 dead:
@@ -994,9 +996,7 @@
 
 /*-------------------------------------------------------------------------*/
 
-#define DRIVER_INFO DRIVER_VERSION " " DRIVER_DESC
-
-MODULE_DESCRIPTION (DRIVER_INFO);
+MODULE_DESCRIPTION(DRIVER_DESC);
 MODULE_AUTHOR (DRIVER_AUTHOR);
 MODULE_LICENSE ("GPL");
 
@@ -1020,11 +1020,6 @@
 #define	PS3_SYSTEM_BUS_DRIVER	ps3_ehci_driver
 #endif
 
-#if defined(CONFIG_440EPX) && !defined(CONFIG_PPC_MERGE)
-#include "ehci-ppc-soc.c"
-#define	PLATFORM_DRIVER		ehci_ppc_soc_driver
-#endif
-
 #ifdef CONFIG_USB_EHCI_HCD_PPC_OF
 #include "ehci-ppc-of.c"
 #define OF_PLATFORM_DRIVER	ehci_hcd_ppc_of_driver
@@ -1049,6 +1044,16 @@
 {
 	int retval = 0;
 
+	if (usb_disabled())
+		return -ENODEV;
+
+	printk(KERN_INFO "%s: " DRIVER_DESC "\n", hcd_name);
+	set_bit(USB_EHCI_LOADED, &usb_hcds_loaded);
+	if (test_bit(USB_UHCI_LOADED, &usb_hcds_loaded) ||
+			test_bit(USB_OHCI_LOADED, &usb_hcds_loaded))
+		printk(KERN_WARNING "Warning! ehci_hcd should always be loaded"
+				" before uhci_hcd and ohci_hcd, not after\n");
+
 	pr_debug("%s: block sizes: qh %Zd qtd %Zd itd %Zd sitd %Zd\n",
 		 hcd_name,
 		 sizeof(struct ehci_qh), sizeof(struct ehci_qtd),
@@ -1056,8 +1061,10 @@
 
 #ifdef DEBUG
 	ehci_debug_root = debugfs_create_dir("ehci", NULL);
-	if (!ehci_debug_root)
-		return -ENOENT;
+	if (!ehci_debug_root) {
+		retval = -ENOENT;
+		goto err_debug;
+	}
 #endif
 
 #ifdef PLATFORM_DRIVER
@@ -1105,6 +1112,8 @@
 	debugfs_remove(ehci_debug_root);
 	ehci_debug_root = NULL;
 #endif
+err_debug:
+	clear_bit(USB_EHCI_LOADED, &usb_hcds_loaded);
 	return retval;
 }
 module_init(ehci_hcd_init);
@@ -1126,6 +1135,7 @@
 #ifdef DEBUG
 	debugfs_remove(ehci_debug_root);
 #endif
+	clear_bit(USB_EHCI_LOADED, &usb_hcds_loaded);
 }
 module_exit(ehci_hcd_cleanup);
 
diff --git a/drivers/usb/host/ehci-hub.c b/drivers/usb/host/ehci-hub.c
index 740835b..218f966 100644
--- a/drivers/usb/host/ehci-hub.c
+++ b/drivers/usb/host/ehci-hub.c
@@ -236,10 +236,8 @@
 		temp = ehci_readl(ehci, &ehci->regs->port_status [i]);
 		temp &= ~(PORT_RWC_BITS | PORT_WAKE_BITS);
 		if (test_bit(i, &ehci->bus_suspended) &&
-				(temp & PORT_SUSPEND)) {
-			ehci->reset_done [i] = jiffies + msecs_to_jiffies (20);
+				(temp & PORT_SUSPEND))
 			temp |= PORT_RESUME;
-		}
 		ehci_writel(ehci, temp, &ehci->regs->port_status [i]);
 	}
 	i = HCS_N_PORTS (ehci->hcs_params);
@@ -482,10 +480,9 @@
 		 * controller by the user.
 		 */
 
-		if ((temp & mask) != 0
-				|| ((temp & PORT_RESUME) != 0
-					&& time_after_eq(jiffies,
-						ehci->reset_done[i]))) {
+		if ((temp & mask) != 0 || test_bit(i, &ehci->port_c_suspend)
+				|| (ehci->reset_done[i] && time_after_eq(
+					jiffies, ehci->reset_done[i]))) {
 			if (i < 7)
 			    buf [0] |= 1 << (i + 1);
 			else
@@ -688,6 +685,7 @@
 			/* resume completed? */
 			else if (time_after_eq(jiffies,
 					ehci->reset_done[wIndex])) {
+				clear_bit(wIndex, &ehci->suspended_ports);
 				set_bit(wIndex, &ehci->port_c_suspend);
 				ehci->reset_done[wIndex] = 0;
 
@@ -734,6 +732,9 @@
 					ehci_readl(ehci, status_reg));
 		}
 
+		if (!(temp & (PORT_RESUME|PORT_RESET)))
+			ehci->reset_done[wIndex] = 0;
+
 		/* transfer dedicated ports to the companion hc */
 		if ((temp & PORT_CONNECT) &&
 				test_bit(wIndex, &ehci->companion_ports)) {
@@ -757,8 +758,17 @@
 		}
 		if (temp & PORT_PE)
 			status |= 1 << USB_PORT_FEAT_ENABLE;
-		if (temp & (PORT_SUSPEND|PORT_RESUME))
+
+		/* maybe the port was unsuspended without our knowledge */
+		if (temp & (PORT_SUSPEND|PORT_RESUME)) {
 			status |= 1 << USB_PORT_FEAT_SUSPEND;
+		} else if (test_bit(wIndex, &ehci->suspended_ports)) {
+			clear_bit(wIndex, &ehci->suspended_ports);
+			ehci->reset_done[wIndex] = 0;
+			if (temp & PORT_PE)
+				set_bit(wIndex, &ehci->port_c_suspend);
+		}
+
 		if (temp & PORT_OC)
 			status |= 1 << USB_PORT_FEAT_OVER_CURRENT;
 		if (temp & PORT_RESET)
@@ -803,6 +813,7 @@
 					|| (temp & PORT_RESET) != 0)
 				goto error;
 			ehci_writel(ehci, temp | PORT_SUSPEND, status_reg);
+			set_bit(wIndex, &ehci->suspended_ports);
 			break;
 		case USB_PORT_FEAT_POWER:
 			if (HCS_PPC (ehci->hcs_params))
diff --git a/drivers/usb/host/ehci-ppc-soc.c b/drivers/usb/host/ehci-ppc-soc.c
deleted file mode 100644
index 529590e..0000000
--- a/drivers/usb/host/ehci-ppc-soc.c
+++ /dev/null
@@ -1,201 +0,0 @@
-/*
- * EHCI HCD (Host Controller Driver) for USB.
- *
- * (C) Copyright 2006-2007 Stefan Roese <sr@denx.de>, DENX Software Engineering
- *
- * Bus Glue for PPC On-Chip EHCI driver
- * Tested on AMCC 440EPx
- *
- * Based on "ehci-au1xxx.c" by K.Boge <karsten.boge@amd.com>
- *
- * This file is licenced under the GPL.
- */
-
-#include <linux/platform_device.h>
-
-extern int usb_disabled(void);
-
-/* called during probe() after chip reset completes */
-static int ehci_ppc_soc_setup(struct usb_hcd *hcd)
-{
-	struct ehci_hcd	*ehci = hcd_to_ehci(hcd);
-	int		retval;
-
-	retval = ehci_halt(ehci);
-	if (retval)
-		return retval;
-
-	retval = ehci_init(hcd);
-	if (retval)
-		return retval;
-
-	ehci->sbrn = 0x20;
-	return ehci_reset(ehci);
-}
-
-/**
- * usb_ehci_ppc_soc_probe - initialize PPC-SoC-based HCDs
- * Context: !in_interrupt()
- *
- * Allocates basic resources for this USB host controller, and
- * then invokes the start() method for the HCD associated with it
- * through the hotplug entry's driver_data.
- *
- */
-int usb_ehci_ppc_soc_probe(const struct hc_driver *driver,
-			   struct usb_hcd **hcd_out,
-			   struct platform_device *dev)
-{
-	int retval;
-	struct usb_hcd *hcd;
-	struct ehci_hcd *ehci;
-
-	if (dev->resource[1].flags != IORESOURCE_IRQ) {
-		pr_debug("resource[1] is not IORESOURCE_IRQ");
-		retval = -ENOMEM;
-	}
-	hcd = usb_create_hcd(driver, &dev->dev, "PPC-SOC EHCI");
-	if (!hcd)
-		return -ENOMEM;
-	hcd->rsrc_start = dev->resource[0].start;
-	hcd->rsrc_len = dev->resource[0].end - dev->resource[0].start + 1;
-
-	if (!request_mem_region(hcd->rsrc_start, hcd->rsrc_len, hcd_name)) {
-		pr_debug("request_mem_region failed");
-		retval = -EBUSY;
-		goto err1;
-	}
-
-	hcd->regs = ioremap(hcd->rsrc_start, hcd->rsrc_len);
-	if (!hcd->regs) {
-		pr_debug("ioremap failed");
-		retval = -ENOMEM;
-		goto err2;
-	}
-
-	ehci = hcd_to_ehci(hcd);
-	ehci->big_endian_mmio = 1;
-	ehci->big_endian_desc = 1;
-	ehci->caps = hcd->regs;
-	ehci->regs = hcd->regs + HC_LENGTH(ehci_readl(ehci, &ehci->caps->hc_capbase));
-
-	/* cache this readonly data; minimize chip reads */
-	ehci->hcs_params = ehci_readl(ehci, &ehci->caps->hcs_params);
-
-#if defined(CONFIG_440EPX)
-	/*
-	 * 440EPx Errata USBH_3
-	 * Fix: Enable Break Memory Transfer (BMT) in INSNREG3
-	 */
-	out_be32((void *)((ulong)(&ehci->regs->command) + 0x8c), (1 << 0));
-	ehci_dbg(ehci, "Break Memory Transfer (BMT) has beed enabled!\n");
-#endif
-
-	retval = usb_add_hcd(hcd, dev->resource[1].start, IRQF_DISABLED);
-	if (retval == 0)
-		return retval;
-
-	iounmap(hcd->regs);
-err2:
-	release_mem_region(hcd->rsrc_start, hcd->rsrc_len);
-err1:
-	usb_put_hcd(hcd);
-	return retval;
-}
-
-/* may be called without controller electrically present */
-/* may be called with controller, bus, and devices active */
-
-/**
- * usb_ehci_hcd_ppc_soc_remove - shutdown processing for PPC-SoC-based HCDs
- * @dev: USB Host Controller being removed
- * Context: !in_interrupt()
- *
- * Reverses the effect of usb_ehci_hcd_ppc_soc_probe(), first invoking
- * the HCD's stop() method.  It is always called from a thread
- * context, normally "rmmod", "apmd", or something similar.
- *
- */
-void usb_ehci_ppc_soc_remove(struct usb_hcd *hcd, struct platform_device *dev)
-{
-	usb_remove_hcd(hcd);
-	iounmap(hcd->regs);
-	release_mem_region(hcd->rsrc_start, hcd->rsrc_len);
-	usb_put_hcd(hcd);
-}
-
-static const struct hc_driver ehci_ppc_soc_hc_driver = {
-	.description = hcd_name,
-	.product_desc = "PPC-SOC EHCI",
-	.hcd_priv_size = sizeof(struct ehci_hcd),
-
-	/*
-	 * generic hardware linkage
-	 */
-	.irq = ehci_irq,
-	.flags = HCD_MEMORY | HCD_USB2,
-
-	/*
-	 * basic lifecycle operations
-	 */
-	.reset = ehci_ppc_soc_setup,
-	.start = ehci_run,
-	.stop = ehci_stop,
-	.shutdown = ehci_shutdown,
-
-	/*
-	 * managing i/o requests and associated device resources
-	 */
-	.urb_enqueue = ehci_urb_enqueue,
-	.urb_dequeue = ehci_urb_dequeue,
-	.endpoint_disable = ehci_endpoint_disable,
-
-	/*
-	 * scheduling support
-	 */
-	.get_frame_number = ehci_get_frame,
-
-	/*
-	 * root hub support
-	 */
-	.hub_status_data = ehci_hub_status_data,
-	.hub_control = ehci_hub_control,
-	.bus_suspend = ehci_bus_suspend,
-	.bus_resume = ehci_bus_resume,
-	.relinquish_port = ehci_relinquish_port,
-	.port_handed_over = ehci_port_handed_over,
-};
-
-static int ehci_hcd_ppc_soc_drv_probe(struct platform_device *pdev)
-{
-	struct usb_hcd *hcd = NULL;
-	int ret;
-
-	pr_debug("In ehci_hcd_ppc_soc_drv_probe\n");
-
-	if (usb_disabled())
-		return -ENODEV;
-
-	/* FIXME we only want one one probe() not two */
-	ret = usb_ehci_ppc_soc_probe(&ehci_ppc_soc_hc_driver, &hcd, pdev);
-	return ret;
-}
-
-static int ehci_hcd_ppc_soc_drv_remove(struct platform_device *pdev)
-{
-	struct usb_hcd *hcd = platform_get_drvdata(pdev);
-
-	/* FIXME we only want one one remove() not two */
-	usb_ehci_ppc_soc_remove(hcd, pdev);
-	return 0;
-}
-
-MODULE_ALIAS("platform:ppc-soc-ehci");
-static struct platform_driver ehci_ppc_soc_driver = {
-	.probe = ehci_hcd_ppc_soc_drv_probe,
-	.remove = ehci_hcd_ppc_soc_drv_remove,
-	.shutdown = usb_hcd_platform_shutdown,
-	.driver = {
-		.name = "ppc-soc-ehci",
-	}
-};
diff --git a/drivers/usb/host/ehci.h b/drivers/usb/host/ehci.h
index b697a13..b11798d 100644
--- a/drivers/usb/host/ehci.h
+++ b/drivers/usb/host/ehci.h
@@ -99,6 +99,8 @@
 			owned by the companion during a bus suspend */
 	unsigned long		port_c_suspend;		/* which ports have
 			the change-suspend feature turned on */
+	unsigned long		suspended_ports;	/* which ports are
+			suspended */
 
 	/* per-HC memory pools (could be per-bus, but ...) */
 	struct dma_pool		*qh_pool;	/* qh per active urb */
@@ -181,14 +183,16 @@
 	 * the async ring; just the I/O watchdog.  Note that if a
 	 * SHRINK were pending, OFF would never be requested.
 	 */
-	if (timer_pending(&ehci->watchdog)
-			&& ((BIT(TIMER_ASYNC_SHRINK) | BIT(TIMER_ASYNC_OFF))
-				& ehci->actions))
-		return;
+	enum ehci_timer_action oldactions = ehci->actions;
 
 	if (!test_and_set_bit (action, &ehci->actions)) {
 		unsigned long t;
 
+		if (timer_pending(&ehci->watchdog)
+			&& ((BIT(TIMER_ASYNC_SHRINK) | BIT(TIMER_ASYNC_OFF))
+				& oldactions))
+			return;
+
 		switch (action) {
 		case TIMER_IO_WATCHDOG:
 			t = EHCI_IO_JIFFIES;
@@ -204,7 +208,7 @@
 			t = DIV_ROUND_UP(EHCI_SHRINK_FRAMES * HZ, 1000) + 1;
 			break;
 		}
-		mod_timer(&ehci->watchdog, t + jiffies);
+		mod_timer(&ehci->watchdog, round_jiffies(t + jiffies));
 	}
 }
 
@@ -604,16 +608,7 @@
 /*
  * Big-endian read/write functions are arch-specific.
  * Other arches can be added if/when they're needed.
- *
- * REVISIT: arch/powerpc now has readl/writel_be, so the
- * definition below can die once the 4xx support is
- * finally ported over.
  */
-#if defined(CONFIG_PPC) && !defined(CONFIG_PPC_MERGE)
-#define readl_be(addr)		in_be32((__force unsigned *)addr)
-#define writel_be(val, addr)	out_be32((__force unsigned *)addr, val)
-#endif
-
 #if defined(CONFIG_ARM) && defined(CONFIG_ARCH_IXP4XX)
 #define readl_be(addr)		__raw_readl((__force unsigned *)addr)
 #define writel_be(val, addr)	__raw_writel(val, (__force unsigned *)addr)
diff --git a/drivers/usb/host/isp116x-hcd.c b/drivers/usb/host/isp116x-hcd.c
index ce1ca0b..4dda31b 100644
--- a/drivers/usb/host/isp116x-hcd.c
+++ b/drivers/usb/host/isp116x-hcd.c
@@ -1562,11 +1562,12 @@
 {
 	struct usb_hcd *hcd;
 	struct isp116x *isp116x;
-	struct resource *addr, *data;
+	struct resource *addr, *data, *ires;
 	void __iomem *addr_reg;
 	void __iomem *data_reg;
 	int irq;
 	int ret = 0;
+	unsigned long irqflags;
 
 	if (pdev->num_resources < 3) {
 		ret = -ENODEV;
@@ -1575,12 +1576,16 @@
 
 	data = platform_get_resource(pdev, IORESOURCE_MEM, 0);
 	addr = platform_get_resource(pdev, IORESOURCE_MEM, 1);
-	irq = platform_get_irq(pdev, 0);
-	if (!addr || !data || irq < 0) {
+	ires = platform_get_resource(pdev, IORESOURCE_IRQ, 0);
+
+	if (!addr || !data || !ires) {
 		ret = -ENODEV;
 		goto err1;
 	}
 
+	irq = ires->start;
+	irqflags = ires->flags & IRQF_TRIGGER_MASK;
+
 	if (pdev->dev.dma_mask) {
 		DBG("DMA not supported\n");
 		ret = -EINVAL;
@@ -1634,7 +1639,7 @@
 		goto err6;
 	}
 
-	ret = usb_add_hcd(hcd, irq, IRQF_DISABLED);
+	ret = usb_add_hcd(hcd, irq, irqflags | IRQF_DISABLED);
 	if (ret)
 		goto err6;
 
diff --git a/drivers/usb/host/isp1760-if.c b/drivers/usb/host/isp1760-if.c
index 051ef7b..af849f5 100644
--- a/drivers/usb/host/isp1760-if.c
+++ b/drivers/usb/host/isp1760-if.c
@@ -218,7 +218,7 @@
 	 * and reading back and checking the contents are same or not
 	 */
 	if (reg_data != 0xFACE) {
-		err("scratch register mismatch %x", reg_data);
+		dev_err(&dev->dev, "scratch register mismatch %x\n", reg_data);
 		goto clean;
 	}
 
@@ -232,9 +232,10 @@
 	hcd = isp1760_register(pci_mem_phy0, length, dev->irq,
 		IRQF_SHARED | IRQF_DISABLED, &dev->dev, dev_name(&dev->dev),
 		devflags);
-	pci_set_drvdata(dev, hcd);
-	if (!hcd)
+	if (!IS_ERR(hcd)) {
+		pci_set_drvdata(dev, hcd);
 		return 0;
+	}
 clean:
 	status = -ENODEV;
 	iounmap(iobase);
diff --git a/drivers/usb/host/ohci-dbg.c b/drivers/usb/host/ohci-dbg.c
index 7cef1d2..d3269656 100644
--- a/drivers/usb/host/ohci-dbg.c
+++ b/drivers/usb/host/ohci-dbg.c
@@ -649,7 +649,7 @@
 	ohci_dbg_sw (ohci, &next, &size,
 		"bus %s, device %s\n"
 		"%s\n"
-		"%s version " DRIVER_VERSION "\n",
+		"%s\n",
 		hcd->self.controller->bus->name,
 		dev_name(hcd->self.controller),
 		hcd->product_desc,
diff --git a/drivers/usb/host/ohci-hcd.c b/drivers/usb/host/ohci-hcd.c
index 8990196..8647dab 100644
--- a/drivers/usb/host/ohci-hcd.c
+++ b/drivers/usb/host/ohci-hcd.c
@@ -46,7 +46,6 @@
 
 #include "../core/hcd.h"
 
-#define DRIVER_VERSION "2006 August 04"
 #define DRIVER_AUTHOR "Roman Weissgaerber, David Brownell"
 #define DRIVER_DESC "USB 1.1 'Open' Host Controller (OHCI) Driver"
 
@@ -984,10 +983,8 @@
 
 /*-------------------------------------------------------------------------*/
 
-#define DRIVER_INFO DRIVER_VERSION " " DRIVER_DESC
-
 MODULE_AUTHOR (DRIVER_AUTHOR);
-MODULE_DESCRIPTION (DRIVER_INFO);
+MODULE_DESCRIPTION(DRIVER_DESC);
 MODULE_LICENSE ("GPL");
 
 #ifdef CONFIG_PCI
@@ -1095,9 +1092,10 @@
 	if (usb_disabled())
 		return -ENODEV;
 
-	printk (KERN_DEBUG "%s: " DRIVER_INFO "\n", hcd_name);
+	printk(KERN_INFO "%s: " DRIVER_DESC "\n", hcd_name);
 	pr_debug ("%s: block sizes: ed %Zd td %Zd\n", hcd_name,
 		sizeof (struct ed), sizeof (struct td));
+	set_bit(USB_OHCI_LOADED, &usb_hcds_loaded);
 
 #ifdef DEBUG
 	ohci_debug_root = debugfs_create_dir("ohci", NULL);
@@ -1184,6 +1182,7 @@
  error_debug:
 #endif
 
+	clear_bit(USB_OHCI_LOADED, &usb_hcds_loaded);
 	return retval;
 }
 module_init(ohci_hcd_mod_init);
@@ -1214,6 +1213,7 @@
 #ifdef DEBUG
 	debugfs_remove(ohci_debug_root);
 #endif
+	clear_bit(USB_OHCI_LOADED, &usb_hcds_loaded);
 }
 module_exit(ohci_hcd_mod_exit);
 
diff --git a/drivers/usb/host/ohci-hub.c b/drivers/usb/host/ohci-hub.c
index 7ea9a7b..32bbce9 100644
--- a/drivers/usb/host/ohci-hub.c
+++ b/drivers/usb/host/ohci-hub.c
@@ -359,21 +359,24 @@
 
 /* Carry out polling-, autostop-, and autoresume-related state changes */
 static int ohci_root_hub_state_changes(struct ohci_hcd *ohci, int changed,
-		int any_connected)
+		int any_connected, int rhsc_status)
 {
 	int	poll_rh = 1;
-	int	rhsc;
+	int	rhsc_enable;
 
-	rhsc = ohci_readl(ohci, &ohci->regs->intrenable) & OHCI_INTR_RHSC;
+	/* Some broken controllers never turn off RHCS in the interrupt
+	 * status register.  For their sake we won't re-enable RHSC
+	 * interrupts if the interrupt bit is already active.
+	 */
+	rhsc_enable = ohci_readl(ohci, &ohci->regs->intrenable) &
+			OHCI_INTR_RHSC;
+
 	switch (ohci->hc_control & OHCI_CTRL_HCFS) {
-
 	case OHCI_USB_OPER:
-		/* If no status changes are pending, enable status-change
-		 * interrupts.
-		 */
-		if (!rhsc && !changed) {
-			rhsc = OHCI_INTR_RHSC;
-			ohci_writel(ohci, rhsc, &ohci->regs->intrenable);
+		/* If no status changes are pending, enable RHSC interrupts. */
+		if (!rhsc_enable && !rhsc_status && !changed) {
+			rhsc_enable = OHCI_INTR_RHSC;
+			ohci_writel(ohci, rhsc_enable, &ohci->regs->intrenable);
 		}
 
 		/* Keep on polling until we know a device is connected
@@ -383,7 +386,7 @@
 			if (any_connected ||
 					!device_may_wakeup(&ohci_to_hcd(ohci)
 						->self.root_hub->dev)) {
-				if (rhsc)
+				if (rhsc_enable)
 					poll_rh = 0;
 			} else {
 				ohci->autostop = 1;
@@ -396,34 +399,45 @@
 				ohci->autostop = 0;
 				ohci->next_statechange = jiffies +
 						STATECHANGE_DELAY;
-			} else if (rhsc && time_after_eq(jiffies,
+			} else if (time_after_eq(jiffies,
 						ohci->next_statechange)
 					&& !ohci->ed_rm_list
 					&& !(ohci->hc_control &
 						OHCI_SCHED_ENABLES)) {
 				ohci_rh_suspend(ohci, 1);
-				poll_rh = 0;
+				if (rhsc_enable)
+					poll_rh = 0;
 			}
 		}
 		break;
 
-	/* if there is a port change, autostart or ask to be resumed */
 	case OHCI_USB_SUSPEND:
 	case OHCI_USB_RESUME:
+		/* if there is a port change, autostart or ask to be resumed */
 		if (changed) {
 			if (ohci->autostop)
 				ohci_rh_resume(ohci);
 			else
 				usb_hcd_resume_root_hub(ohci_to_hcd(ohci));
-		} else {
-			if (!rhsc && (ohci->autostop ||
-					ohci_to_hcd(ohci)->self.root_hub->
-						do_remote_wakeup))
-				ohci_writel(ohci, OHCI_INTR_RHSC,
-						&ohci->regs->intrenable);
 
-			/* everything is idle, no need for polling */
+		/* If remote wakeup is disabled, stop polling */
+		} else if (!ohci->autostop &&
+				!ohci_to_hcd(ohci)->self.root_hub->
+					do_remote_wakeup) {
 			poll_rh = 0;
+
+		} else {
+			/* If no status changes are pending,
+			 * enable RHSC interrupts
+			 */
+			if (!rhsc_enable && !rhsc_status) {
+				rhsc_enable = OHCI_INTR_RHSC;
+				ohci_writel(ohci, rhsc_enable,
+						&ohci->regs->intrenable);
+			}
+			/* Keep polling until RHSC is enabled */
+			if (rhsc_enable)
+				poll_rh = 0;
 		}
 		break;
 	}
@@ -441,18 +455,22 @@
  * autostop isn't used when CONFIG_PM is turned off.
  */
 static int ohci_root_hub_state_changes(struct ohci_hcd *ohci, int changed,
-		int any_connected)
+		int any_connected, int rhsc_status)
 {
 	/* If RHSC is enabled, don't poll */
 	if (ohci_readl(ohci, &ohci->regs->intrenable) & OHCI_INTR_RHSC)
 		return 0;
 
-	/* If no status changes are pending, enable status-change interrupts */
-	if (!changed) {
-		ohci_writel(ohci, OHCI_INTR_RHSC, &ohci->regs->intrenable);
-		return 0;
-	}
-	return 1;
+	/* If status changes are pending, continue polling.
+	 * Conversely, if no status changes are pending but the RHSC
+	 * status bit was set, then RHSC may be broken so continue polling.
+	 */
+	if (changed || rhsc_status)
+		return 1;
+
+	/* It's safe to re-enable RHSC interrupts */
+	ohci_writel(ohci, OHCI_INTR_RHSC, &ohci->regs->intrenable);
+	return 0;
 }
 
 #endif	/* CONFIG_PM */
@@ -467,6 +485,7 @@
 	struct ohci_hcd	*ohci = hcd_to_ohci (hcd);
 	int		i, changed = 0, length = 1;
 	int		any_connected = 0;
+	int		rhsc_status;
 	unsigned long	flags;
 
 	spin_lock_irqsave (&ohci->lock, flags);
@@ -492,12 +511,10 @@
 		length++;
 	}
 
-	/* Some broken controllers never turn off RHCS in the interrupt
-	 * status register.  For their sake we won't re-enable RHSC
-	 * interrupts if the flag is already set.
-	 */
-	if (ohci_readl(ohci, &ohci->regs->intrstatus) & OHCI_INTR_RHSC)
-		changed = 1;
+	/* Clear the RHSC status flag before reading the port statuses */
+	ohci_writel(ohci, OHCI_INTR_RHSC, &ohci->regs->intrstatus);
+	rhsc_status = ohci_readl(ohci, &ohci->regs->intrstatus) &
+			OHCI_INTR_RHSC;
 
 	/* look at each port */
 	for (i = 0; i < ohci->num_ports; i++) {
@@ -517,7 +534,7 @@
 	}
 
 	hcd->poll_rh = ohci_root_hub_state_changes(ohci, changed,
-			any_connected);
+			any_connected, rhsc_status);
 
 done:
 	spin_unlock_irqrestore (&ohci->lock, flags);
diff --git a/drivers/usb/host/ohci-omap.c b/drivers/usb/host/ohci-omap.c
index 5221856..91697bd 100644
--- a/drivers/usb/host/ohci-omap.c
+++ b/drivers/usb/host/ohci-omap.c
@@ -231,7 +231,7 @@
 
 	omap_ohci_clock_power(1);
 
-	if (cpu_is_omap1510()) {
+	if (cpu_is_omap15xx()) {
 		omap_1510_local_bus_power(1);
 		omap_1510_local_bus_init();
 	}
@@ -319,7 +319,7 @@
 	if (IS_ERR(usb_host_ck))
 		return PTR_ERR(usb_host_ck);
 
-	if (!cpu_is_omap1510())
+	if (!cpu_is_omap15xx())
 		usb_dc_ck = clk_get(0, "usb_dc_ck");
 	else
 		usb_dc_ck = clk_get(0, "lb_ck");
diff --git a/drivers/usb/host/ohci-pnx4008.c b/drivers/usb/host/ohci-pnx4008.c
index 658a2a9..e306ca6 100644
--- a/drivers/usb/host/ohci-pnx4008.c
+++ b/drivers/usb/host/ohci-pnx4008.c
@@ -331,7 +331,7 @@
 
 	int ret = 0, irq;
 
-	dev_dbg(&pdev->dev, "%s: " DRIVER_INFO " (pnx4008)\n", hcd_name);
+	dev_dbg(&pdev->dev, "%s: " DRIVER_DESC " (pnx4008)\n", hcd_name);
 	if (usb_disabled()) {
 		err("USB is disabled");
 		ret = -ENODEV;
diff --git a/drivers/usb/host/ohci.h b/drivers/usb/host/ohci.h
index faf622e..222011f 100644
--- a/drivers/usb/host/ohci.h
+++ b/drivers/usb/host/ohci.h
@@ -540,15 +540,7 @@
  * Big-endian read/write functions are arch-specific.
  * Other arches can be added if/when they're needed.
  *
- * REVISIT: arch/powerpc now has readl/writel_be, so the
- * definition below can die once the STB04xxx support is
- * finally ported over.
  */
-#if defined(CONFIG_PPC) && !defined(CONFIG_PPC_MERGE)
-#define readl_be(addr)		in_be32((__force unsigned *)addr)
-#define writel_be(val, addr)	out_be32((__force unsigned *)addr, val)
-#endif
-
 static inline unsigned int _ohci_readl (const struct ohci_hcd *ohci,
 					__hc32 __iomem * regs)
 {
diff --git a/drivers/usb/host/r8a66597-hcd.c b/drivers/usb/host/r8a66597-hcd.c
index ea7126f..c18d879 100644
--- a/drivers/usb/host/r8a66597-hcd.c
+++ b/drivers/usb/host/r8a66597-hcd.c
@@ -66,7 +66,7 @@
 module_param(endian, ushort, 0644);
 MODULE_PARM_DESC(endian, "data endian: big=256, little=0 (default=0)");
 
-static unsigned short irq_sense = INTL;
+static unsigned short irq_sense = 0xff;
 module_param(irq_sense, ushort, 0644);
 MODULE_PARM_DESC(irq_sense, "IRQ sense: low level=32, falling edge=0 "
 		"(default=32)");
@@ -118,7 +118,7 @@
 		r8a66597_write(r8a66597, SCKE, SYSCFG0);
 		tmp = r8a66597_read(r8a66597, SYSCFG0);
 		if (i++ > 1000) {
-			err("register access fail.");
+			printk(KERN_ERR "r8a66597: register access fail.\n");
 			return -ENXIO;
 		}
 	} while ((tmp & SCKE) != SCKE);
@@ -128,7 +128,7 @@
 		r8a66597_write(r8a66597, USBE, SYSCFG0);
 		tmp = r8a66597_read(r8a66597, SYSCFG0);
 		if (i++ > 1000) {
-			err("register access fail.");
+			printk(KERN_ERR "r8a66597: register access fail.\n");
 			return -ENXIO;
 		}
 	} while ((tmp & USBE) != USBE);
@@ -141,7 +141,7 @@
 		msleep(1);
 		tmp = r8a66597_read(r8a66597, SYSCFG0);
 		if (i++ > 500) {
-			err("register access fail.");
+			printk(KERN_ERR "r8a66597: register access fail.\n");
 			return -ENXIO;
 		}
 	} while ((tmp & SCKE) != SCKE);
@@ -265,7 +265,7 @@
 	if (root_port) {
 		*root_port = (devpath[0] & 0x0F) - 1;
 		if (*root_port >= R8A66597_MAX_ROOT_HUB)
-			err("illegal root port number");
+			printk(KERN_ERR "r8a66597: Illegal root port number.\n");
 	}
 	if (hub_port)
 		*hub_port = devpath[2] & 0x0F;
@@ -286,7 +286,7 @@
 		usbspd = HSMODE;
 		break;
 	default:
-		err("unknown speed");
+		printk(KERN_ERR "r8a66597: unknown speed\n");
 		break;
 	}
 
@@ -385,7 +385,7 @@
 	struct r8a66597_device *dev;
 
 	if (is_hub_limit(urb->dev->devpath)) {
-		err("Externel hub limit reached.");
+		dev_err(&urb->dev->dev, "External hub limit reached.\n");
 		return 0;
 	}
 
@@ -406,8 +406,9 @@
 		return addr;
 	}
 
-	err("cannot communicate with a USB device more than 10.(%x)",
-	    r8a66597->address_map);
+	dev_err(&urb->dev->dev,
+		"cannot communicate with a USB device more than 10.(%x)\n",
+		r8a66597->address_map);
 
 	return 0;
 }
@@ -447,7 +448,8 @@
 	do {
 		tmp = r8a66597_read(r8a66597, reg);
 		if (i++ > 1000000) {
-			err("register%lx, loop %x is timeout", reg, loop);
+			printk(KERN_ERR "r8a66597: register%lx, loop %x "
+			       "is timeout\n", reg, loop);
 			break;
 		}
 		ndelay(1);
@@ -675,7 +677,7 @@
 			array[i++] = 1;
 		break;
 	default:
-		err("Illegal type");
+		printk(KERN_ERR "r8a66597: Illegal type\n");
 		return 0;
 	}
 
@@ -705,7 +707,7 @@
 		r8a66597_type = R8A66597_ISO;
 		break;
 	default:
-		err("Illegal type");
+		printk(KERN_ERR "r8a66597: Illegal type\n");
 		r8a66597_type = 0x0000;
 		break;
 	}
@@ -724,7 +726,7 @@
 	else if (check_interrupt(pipenum))
 		bufnum = 4 + (pipenum - 6);
 	else
-		err("Illegal pipenum (%d)", pipenum);
+		printk(KERN_ERR "r8a66597: Illegal pipenum (%d)\n", pipenum);
 
 	return bufnum;
 }
@@ -740,7 +742,7 @@
 	else if (check_interrupt(pipenum))
 		buf_bsize = 0;
 	else
-		err("Illegal pipenum (%d)", pipenum);
+		printk(KERN_ERR "r8a66597: Illegal pipenum (%d)\n", pipenum);
 
 	return buf_bsize;
 }
@@ -760,10 +762,12 @@
 			if ((r8a66597->dma_map & (1 << i)) != 0)
 				continue;
 
-			info("address %d, EndpointAddress 0x%02x use DMA FIFO",
-			     usb_pipedevice(urb->pipe),
-			     info->dir_in ? USB_ENDPOINT_DIR_MASK + info->epnum
-					    : info->epnum);
+			dev_info(&dev->udev->dev,
+				 "address %d, EndpointAddress 0x%02x use "
+				 "DMA FIFO\n", usb_pipedevice(urb->pipe),
+				 info->dir_in ?
+				 	USB_ENDPOINT_DIR_MASK + info->epnum
+					: info->epnum);
 
 			r8a66597->dma_map |= 1 << i;
 			dev->dma_map |= 1 << i;
@@ -1187,7 +1191,7 @@
 		prepare_status_packet(r8a66597, td);
 		break;
 	default:
-		err("invalid type.");
+		printk(KERN_ERR "r8a66597: invalid type.\n");
 		break;
 	}
 
@@ -1295,7 +1299,7 @@
 	if (unlikely((tmp & FRDY) == 0)) {
 		pipe_stop(r8a66597, td->pipe);
 		pipe_irq_disable(r8a66597, pipenum);
-		err("in fifo not ready (%d)", pipenum);
+		printk(KERN_ERR "r8a66597: in fifo not ready (%d)\n", pipenum);
 		finish_request(r8a66597, td, pipenum, td->urb, -EPIPE);
 		return;
 	}
@@ -1370,7 +1374,7 @@
 	if (unlikely((tmp & FRDY) == 0)) {
 		pipe_stop(r8a66597, td->pipe);
 		pipe_irq_disable(r8a66597, pipenum);
-		err("out write fifo not ready. (%d)", pipenum);
+		printk(KERN_ERR "r8a66597: out fifo not ready (%d)\n", pipenum);
 		finish_request(r8a66597, td, pipenum, urb, -EPIPE);
 		return;
 	}
@@ -2005,7 +2009,7 @@
 		return dev;
 	}
 
-	err("get_r8a66597_device fail.(%d)\n", addr);
+	printk(KERN_ERR "r8a66597: get_r8a66597_device fail.(%d)\n", addr);
 	return NULL;
 }
 
@@ -2263,7 +2267,7 @@
 #define resource_len(r) (((r)->end - (r)->start) + 1)
 static int __init r8a66597_probe(struct platform_device *pdev)
 {
-	struct resource *res = NULL;
+	struct resource *res = NULL, *ires;
 	int irq = -1;
 	void __iomem *reg = NULL;
 	struct usb_hcd *hcd = NULL;
@@ -2274,7 +2278,7 @@
 
 	if (pdev->dev.dma_mask) {
 		ret = -EINVAL;
-		err("dma not support");
+		dev_err(&pdev->dev, "dma not supported\n");
 		goto clean_up;
 	}
 
@@ -2282,21 +2286,25 @@
 					   (char *)hcd_name);
 	if (!res) {
 		ret = -ENODEV;
-		err("platform_get_resource_byname error.");
+		dev_err(&pdev->dev, "platform_get_resource_byname error.\n");
 		goto clean_up;
 	}
 
-	irq = platform_get_irq(pdev, 0);
-	if (irq < 0) {
+	ires = platform_get_resource(pdev, IORESOURCE_IRQ, 0);
+	if (!ires) {
 		ret = -ENODEV;
-		err("platform_get_irq error.");
+		dev_err(&pdev->dev,
+			"platform_get_resource IORESOURCE_IRQ error.\n");
 		goto clean_up;
 	}
 
+	irq = ires->start;
+	irq_trigger = ires->flags & IRQF_TRIGGER_MASK;
+
 	reg = ioremap(res->start, resource_len(res));
 	if (reg == NULL) {
 		ret = -ENOMEM;
-		err("ioremap error.");
+		dev_err(&pdev->dev, "ioremap error.\n");
 		goto clean_up;
 	}
 
@@ -2304,7 +2312,7 @@
 	hcd = usb_create_hcd(&r8a66597_hc_driver, &pdev->dev, (char *)hcd_name);
 	if (!hcd) {
 		ret = -ENOMEM;
-		err("Failed to create hcd");
+		dev_err(&pdev->dev, "Failed to create hcd\n");
 		goto clean_up;
 	}
 	r8a66597 = hcd_to_r8a66597(hcd);
@@ -2329,13 +2337,33 @@
 	INIT_LIST_HEAD(&r8a66597->child_device);
 
 	hcd->rsrc_start = res->start;
-	if (irq_sense == INTL)
-		irq_trigger = IRQF_TRIGGER_LOW;
-	else
-		irq_trigger = IRQF_TRIGGER_FALLING;
+
+	/* irq_sense setting on cmdline takes precedence over resource
+	 * settings, so the introduction of irqflags in IRQ resourse
+	 * won't disturb existing setups */
+	switch (irq_sense) {
+		case INTL:
+			irq_trigger = IRQF_TRIGGER_LOW;
+			break;
+		case 0:
+			irq_trigger = IRQF_TRIGGER_FALLING;
+			break;
+		case 0xff:
+			if (irq_trigger)
+				irq_sense = (irq_trigger & IRQF_TRIGGER_LOW) ?
+					    INTL : 0;
+			else {
+				irq_sense = INTL;
+				irq_trigger = IRQF_TRIGGER_LOW;
+			}
+			break;
+		default:
+			dev_err(&pdev->dev, "Unknown irq_sense value.\n");
+	}
+
 	ret = usb_add_hcd(hcd, irq, IRQF_DISABLED | irq_trigger);
 	if (ret != 0) {
-		err("Failed to add hcd");
+		dev_err(&pdev->dev, "Failed to add hcd\n");
 		goto clean_up;
 	}
 
@@ -2364,7 +2392,8 @@
 	if (usb_disabled())
 		return -ENODEV;
 
-	info("driver %s, %s", hcd_name, DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": driver %s, %s\n", hcd_name,
+	       DRIVER_VERSION);
 	return platform_driver_register(&r8a66597_driver);
 }
 module_init(r8a66597_init);
diff --git a/drivers/usb/host/sl811-hcd.c b/drivers/usb/host/sl811-hcd.c
index 8a74bbb..e106e9d 100644
--- a/drivers/usb/host/sl811-hcd.c
+++ b/drivers/usb/host/sl811-hcd.c
@@ -1620,22 +1620,26 @@
 {
 	struct usb_hcd		*hcd;
 	struct sl811		*sl811;
-	struct resource		*addr, *data;
+	struct resource		*addr, *data, *ires;
 	int			irq;
 	void __iomem		*addr_reg;
 	void __iomem		*data_reg;
 	int			retval;
 	u8			tmp, ioaddr = 0;
+	unsigned long		irqflags;
 
 	/* basic sanity checks first.  board-specific init logic should
 	 * have initialized these three resources and probably board
 	 * specific platform_data.  we don't probe for IRQs, and do only
 	 * minimal sanity checking.
 	 */
-	irq = platform_get_irq(dev, 0);
-	if (dev->num_resources < 3 || irq < 0)
+	ires = platform_get_resource(dev, IORESOURCE_IRQ, 0);
+	if (dev->num_resources < 3 || !ires)
 		return -ENODEV;
 
+	irq = ires->start;
+	irqflags = ires->flags & IRQF_TRIGGER_MASK;
+
 	/* refuse to confuse usbcore */
 	if (dev->dev.dma_mask) {
 		DBG("no we won't dma\n");
@@ -1717,8 +1721,11 @@
 	 * triggers (e.g. most ARM CPUs).  Initial driver stress testing
 	 * was on a system with single edge triggering, so most sorts of
 	 * triggering arrangement should work.
+	 *
+	 * Use resource IRQ flags if set by platform device setup.
 	 */
-	retval = usb_add_hcd(hcd, irq, IRQF_DISABLED | IRQF_SHARED);
+	irqflags |= IRQF_SHARED;
+	retval = usb_add_hcd(hcd, irq, IRQF_DISABLED | irqflags);
 	if (retval != 0)
 		goto err6;
 
diff --git a/drivers/usb/host/uhci-hcd.c b/drivers/usb/host/uhci-hcd.c
index 3a7bfe7..cf5e4cf 100644
--- a/drivers/usb/host/uhci-hcd.c
+++ b/drivers/usb/host/uhci-hcd.c
@@ -53,7 +53,6 @@
 /*
  * Version Information
  */
-#define DRIVER_VERSION "v3.0"
 #define DRIVER_AUTHOR "Linus 'Frodo Rabbit' Torvalds, Johannes Erdfelt, \
 Randy Dunlap, Georg Acher, Deti Fliegl, Thomas Sailer, Roman Weissgaerber, \
 Alan Stern"
@@ -951,12 +950,13 @@
 {
 	int retval = -ENOMEM;
 
-	printk(KERN_INFO DRIVER_DESC " " DRIVER_VERSION "%s\n",
-			ignore_oc ? ", overcurrent ignored" : "");
-
 	if (usb_disabled())
 		return -ENODEV;
 
+	printk(KERN_INFO "uhci_hcd: " DRIVER_DESC "%s\n",
+			ignore_oc ? ", overcurrent ignored" : "");
+	set_bit(USB_UHCI_LOADED, &usb_hcds_loaded);
+
 	if (DEBUG_CONFIGURED) {
 		errbuf = kmalloc(ERRBUF_LEN, GFP_KERNEL);
 		if (!errbuf)
@@ -988,6 +988,7 @@
 
 errbuf_failed:
 
+	clear_bit(USB_UHCI_LOADED, &usb_hcds_loaded);
 	return retval;
 }
 
@@ -997,6 +998,7 @@
 	kmem_cache_destroy(uhci_up_cachep);
 	debugfs_remove(uhci_debugfs_root);
 	kfree(errbuf);
+	clear_bit(USB_UHCI_LOADED, &usb_hcds_loaded);
 }
 
 module_init(uhci_hcd_init);
diff --git a/drivers/usb/host/uhci-q.c b/drivers/usb/host/uhci-q.c
index 1f0c2cf..5631d89 100644
--- a/drivers/usb/host/uhci-q.c
+++ b/drivers/usb/host/uhci-q.c
@@ -1065,13 +1065,18 @@
 		}
 		if (exponent < 0)
 			return -EINVAL;
-		qh->period = 1 << exponent;
-		qh->skel = SKEL_INDEX(exponent);
 
-		/* For now, interrupt phase is fixed by the layout
-		 * of the QH lists. */
-		qh->phase = (qh->period / 2) & (MAX_PHASE - 1);
-		ret = uhci_check_bandwidth(uhci, qh);
+		/* If the slot is full, try a lower period */
+		do {
+			qh->period = 1 << exponent;
+			qh->skel = SKEL_INDEX(exponent);
+
+			/* For now, interrupt phase is fixed by the layout
+			 * of the QH lists.
+			 */
+			qh->phase = (qh->period / 2) & (MAX_PHASE - 1);
+			ret = uhci_check_bandwidth(uhci, qh);
+		} while (ret != 0 && --exponent >= 0);
 		if (ret)
 			return ret;
 	} else if (qh->period > urb->interval)
diff --git a/drivers/usb/image/mdc800.c b/drivers/usb/image/mdc800.c
index 0fb114c..878c77c 100644
--- a/drivers/usb/image/mdc800.c
+++ b/drivers/usb/image/mdc800.c
@@ -355,13 +355,14 @@
 	if (mdc800->camera_request_ready>0)
 	{
 		mdc800->camera_request_ready=0;
-		err ("timeout waiting for camera.");
+		dev_err(&mdc800->dev->dev, "timeout waiting for camera.\n");
 		return -1;
 	}
 	
 	if (mdc800->state == NOT_CONNECTED)
 	{
-		warn ("Camera gets disconnected during waiting for irq.");
+		printk(KERN_WARNING "mdc800: Camera gets disconnected "
+		       "during waiting for irq.\n");
 		mdc800->camera_request_ready=0;
 		return -2;
 	}
@@ -379,7 +380,8 @@
 	int status = urb->status;
 
 	if (status != 0)
-		err ("writing command fails (status=%i)", status);
+		dev_err(&mdc800->dev->dev,
+			"writing command fails (status=%i)\n", status);
 	else
 		mdc800->state=READY;
 	mdc800->written = 1;
@@ -406,7 +408,8 @@
 			mdc800->state=READY;
 		}
 	} else {
-		err ("request bytes fails (status:%i)", status);
+		dev_err(&mdc800->dev->dev,
+			"request bytes fails (status:%i)\n", status);
 	}
 	mdc800->downloaded = 1;
 	wake_up (&mdc800->download_wait);
@@ -443,13 +446,14 @@
 
 	if (mdc800->dev != NULL)
 	{
-		warn ("only one Mustek MDC800 is supported.");
+		dev_warn(&intf->dev, "only one Mustek MDC800 is supported.\n");
 		return -ENODEV;
 	}
 
 	if (dev->descriptor.bNumConfigurations != 1)
 	{
-		err ("probe fails -> wrong Number of Configuration");
+		dev_err(&intf->dev,
+			"probe fails -> wrong Number of Configuration\n");
 		return -ENODEV;
 	}
 	intf_desc = intf->cur_altsetting;
@@ -461,7 +465,7 @@
 		|| ( intf_desc->desc.bNumEndpoints != 4)
 	)
 	{
-		err ("probe fails -> wrong Interface");
+		dev_err(&intf->dev, "probe fails -> wrong Interface\n");
 		return -ENODEV;
 	}
 
@@ -482,19 +486,19 @@
 		}
 		if (mdc800->endpoint[i] == -1)
 		{
-			err ("probe fails -> Wrong Endpoints.");
+			dev_err(&intf->dev, "probe fails -> Wrong Endpoints.\n");
 			return -ENODEV;
 		}
 	}
 
 
-	info ("Found Mustek MDC800 on USB.");
+	dev_info(&intf->dev, "Found Mustek MDC800 on USB.\n");
 
 	mutex_lock(&mdc800->io_lock);
 
 	retval = usb_register_dev(intf, &mdc800_class);
 	if (retval) {
-		err ("Not able to get a minor for this device.");
+		dev_err(&intf->dev, "Not able to get a minor for this device.\n");
 		return -ENODEV;
 	}
 
@@ -570,7 +574,7 @@
 		mdc800->dev = NULL;
 		usb_set_intfdata(intf, NULL);
 	}
-	info ("Mustek MDC800 disconnected from USB.");
+	dev_info(&intf->dev, "Mustek MDC800 disconnected from USB.\n");
 }
 
 
@@ -644,7 +648,8 @@
 	mdc800->irq_urb->dev = mdc800->dev;
 	retval = usb_submit_urb (mdc800->irq_urb, GFP_KERNEL);
 	if (retval) {
-		err ("request USB irq fails (submit_retval=%i).", retval);
+		dev_err(&mdc800->dev->dev,
+			"request USB irq fails (submit_retval=%i).\n", retval);
 		errn = -EIO;
 		goto error_out;
 	}
@@ -701,7 +706,8 @@
 	}
 	if (mdc800->state == WORKING)
 	{
-		warn ("Illegal State \"working\" reached during read ?!");
+		printk(KERN_WARNING "mdc800: Illegal State \"working\""
+		       "reached during read ?!\n");
 		mutex_unlock(&mdc800->io_lock);
 		return -EBUSY;
 	}
@@ -733,7 +739,9 @@
 				mdc800->download_urb->dev = mdc800->dev;
 				retval = usb_submit_urb (mdc800->download_urb, GFP_KERNEL);
 				if (retval) {
-					err ("Can't submit download urb (retval=%i)",retval);
+					dev_err(&mdc800->dev->dev,
+						"Can't submit download urb "
+						"(retval=%i)\n", retval);
 					mutex_unlock(&mdc800->io_lock);
 					return len-left;
 				}
@@ -742,7 +750,10 @@
 				mdc800->downloaded = 0;
 				if (mdc800->download_urb->status != 0)
 				{
-					err ("request download-bytes fails (status=%i)",mdc800->download_urb->status);
+					dev_err(&mdc800->dev->dev,
+						"request download-bytes fails "
+						"(status=%i)\n",
+						mdc800->download_urb->status);
 					mutex_unlock(&mdc800->io_lock);
 					return len-left;
 				}
@@ -839,7 +850,8 @@
 
 			if (mdc800_usb_waitForIRQ (0,TO_GET_READY))
 			{
-				err ("Camera didn't get ready.\n");
+				dev_err(&mdc800->dev->dev,
+					"Camera didn't get ready.\n");
 				mutex_unlock(&mdc800->io_lock);
 				return -EIO;
 			}
@@ -851,7 +863,9 @@
 			mdc800->write_urb->dev = mdc800->dev;
 			retval = usb_submit_urb (mdc800->write_urb, GFP_KERNEL);
 			if (retval) {
-				err ("submitting write urb fails (retval=%i)", retval);
+				dev_err(&mdc800->dev->dev,
+					"submitting write urb fails "
+					"(retval=%i)\n", retval);
 				mutex_unlock(&mdc800->io_lock);
 				return -EIO;
 			}
@@ -870,7 +884,9 @@
 				case 0x3e: /* Take shot in Fine Mode (WCam Mode) */
 					if (mdc800->pic_len < 0)
 					{
-						err ("call 0x07 before 0x05,0x3e");
+						dev_err(&mdc800->dev->dev,
+							"call 0x07 before "
+							"0x05,0x3e\n");
 						mdc800->state=READY;
 						mutex_unlock(&mdc800->io_lock);
 						return -EIO;
@@ -890,7 +906,7 @@
 
 						if (mdc800_usb_waitForIRQ (1,TO_READ_FROM_IRQ))
 						{
-							err ("requesting answer from irq fails");
+							dev_err(&mdc800->dev->dev, "requesting answer from irq fails\n");
 							mutex_unlock(&mdc800->io_lock);
 							return -EIO;
 						}
@@ -918,7 +934,7 @@
 					{
 						if (mdc800_usb_waitForIRQ (0,TO_DEFAULT_COMMAND))
 						{
-							err ("Command Timeout.");
+							dev_err(&mdc800->dev->dev, "Command Timeout.\n");
 							mutex_unlock(&mdc800->io_lock);
 							return -EIO;
 						}
@@ -1018,7 +1034,8 @@
 	if (retval)
 		goto cleanup_on_fail;
 
-	info (DRIVER_VERSION ":" DRIVER_DESC);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 
 	return 0;
 
@@ -1028,7 +1045,7 @@
 
 	if (mdc800 != NULL)
 	{
-		err ("can't alloc memory!");
+		printk(KERN_ERR "mdc800: can't alloc memory!\n");
 
 		kfree(mdc800->download_urb_buffer);
 		kfree(mdc800->write_urb_buffer);
diff --git a/drivers/usb/misc/Kconfig b/drivers/usb/misc/Kconfig
index 4ea50e0..e463db5 100644
--- a/drivers/usb/misc/Kconfig
+++ b/drivers/usb/misc/Kconfig
@@ -42,6 +42,15 @@
 	  To compile this driver as a module, choose M here.  The module
 	  will be called adutux.
 
+config USB_SEVSEG
+	tristate "USB 7-Segment LED Display"
+	depends on USB
+	help
+	  Say Y here if you have a USB 7-Segment Display by Delcom
+
+	  To compile this driver as a module, choose M here: the
+	  module will be called usbsevseg.
+
 config USB_RIO500
 	tristate "USB Diamond Rio500 support"
 	depends on USB
@@ -271,3 +280,18 @@
 	  The firmware for this driver must be extracted from the MacOS
 	  driver beforehand. Tools for doing so are available at
 	  http://bersace03.free.fr
+
+config USB_VST
+	tristate "USB VST driver"
+	depends on USB
+	help
+	  This driver is intended for Vernier Software Technologies
+	  bulk usb devices such as their Ocean-Optics spectrometers or
+	  Labquest.
+	  It is a bulk channel driver with configurable read and write
+	  timeouts.
+
+	  To compile this driver as a module, choose M here: the
+	  module will be called vstusb.
+
+
diff --git a/drivers/usb/misc/Makefile b/drivers/usb/misc/Makefile
index 45b4e12..1334f7b 100644
--- a/drivers/usb/misc/Makefile
+++ b/drivers/usb/misc/Makefile
@@ -26,6 +26,8 @@
 obj-$(CONFIG_USB_TEST)		+= usbtest.o
 obj-$(CONFIG_USB_TRANCEVIBRATOR)	+= trancevibrator.o
 obj-$(CONFIG_USB_USS720)	+= uss720.o
+obj-$(CONFIG_USB_SEVSEG)	+= usbsevseg.o
+obj-$(CONFIG_USB_VST)		+= vstusb.o
 
 obj-$(CONFIG_USB_SISUSBVGA)	+= sisusbvga/
 
diff --git a/drivers/usb/misc/adutux.c b/drivers/usb/misc/adutux.c
index 965f6ea..7b6922e 100644
--- a/drivers/usb/misc/adutux.c
+++ b/drivers/usb/misc/adutux.c
@@ -283,8 +283,8 @@
 
 	interface = usb_find_interface(&adu_driver, subminor);
 	if (!interface) {
-		err("%s - error, can't find device for minor %d",
-		    __func__, subminor);
+		printk(KERN_ERR "adutux: %s - error, can't find device for "
+		       "minor %d\n", __func__, subminor);
 		retval = -ENODEV;
 		goto exit_no_device;
 	}
@@ -416,7 +416,8 @@
 	/* verify that the device wasn't unplugged */
 	if (dev->udev == NULL) {
 		retval = -ENODEV;
-		err("No device or device unplugged %d", retval);
+		printk(KERN_ERR "adutux: No device or device unplugged %d\n",
+		       retval);
 		goto exit;
 	}
 
@@ -576,7 +577,8 @@
 	/* verify that the device wasn't unplugged */
 	if (dev->udev == NULL) {
 		retval = -ENODEV;
-		err("No device or device unplugged %d", retval);
+		printk(KERN_ERR "adutux: No device or device unplugged %d\n",
+		       retval);
 		goto exit;
 	}
 
@@ -645,7 +647,8 @@
 			retval = usb_submit_urb(dev->interrupt_out_urb, GFP_KERNEL);
 			if (retval < 0) {
 				dev->out_urb_finished = 1;
-				err("Couldn't submit interrupt_out_urb %d", retval);
+				dev_err(&dev->udev->dev, "Couldn't submit "
+					"interrupt_out_urb %d\n", retval);
 				goto exit;
 			}
 
@@ -890,13 +893,14 @@
 	/* register this driver with the USB subsystem */
 	result = usb_register(&adu_driver);
 	if (result < 0) {
-		err("usb_register failed for the "__FILE__" driver. "
-		    "Error number %d", result);
+		printk(KERN_ERR "usb_register failed for the "__FILE__
+		       " driver. Error number %d\n", result);
 		goto exit;
 	}
 
-	info("adutux " DRIVER_DESC " " DRIVER_VERSION);
-	info("adutux is an experimental driver. Use at your own risk");
+	printk(KERN_INFO "adutux " DRIVER_DESC " " DRIVER_VERSION "\n");
+	printk(KERN_INFO "adutux is an experimental driver. "
+	       "Use at your own risk\n");
 
 exit:
 	dbg(2," %s : leave, return value %d", __func__, result);
diff --git a/drivers/usb/misc/appledisplay.c b/drivers/usb/misc/appledisplay.c
index a076c24..1d8e39a 100644
--- a/drivers/usb/misc/appledisplay.c
+++ b/drivers/usb/misc/appledisplay.c
@@ -130,7 +130,8 @@
 exit:
 	retval = usb_submit_urb(pdata->urb, GFP_ATOMIC);
 	if (retval) {
-		err("%s - usb_submit_urb failed with result %d",
+		dev_err(&pdata->udev->dev,
+			"%s - usb_submit_urb failed with result %d\n",
 			__func__, retval);
 	}
 }
@@ -220,7 +221,7 @@
 		}
 	}
 	if (!int_in_endpointAddr) {
-		err("Could not find int-in endpoint");
+		dev_err(&iface->dev, "Could not find int-in endpoint\n");
 		return -EIO;
 	}
 
@@ -228,7 +229,7 @@
 	pdata = kzalloc(sizeof(struct appledisplay), GFP_KERNEL);
 	if (!pdata) {
 		retval = -ENOMEM;
-		err("Out of memory");
+		dev_err(&iface->dev, "Out of memory\n");
 		goto error;
 	}
 
@@ -241,8 +242,8 @@
 	pdata->msgdata = kmalloc(ACD_MSG_BUFFER_LEN, GFP_KERNEL);
 	if (!pdata->msgdata) {
 		retval = -ENOMEM;
-		err("appledisplay: Allocating buffer for control messages "
-			"failed");
+		dev_err(&iface->dev,
+			"Allocating buffer for control messages failed\n");
 		goto error;
 	}
 
@@ -250,7 +251,7 @@
 	pdata->urb = usb_alloc_urb(0, GFP_KERNEL);
 	if (!pdata->urb) {
 		retval = -ENOMEM;
-		err("appledisplay: Allocating URB failed");
+		dev_err(&iface->dev, "Allocating URB failed\n");
 		goto error;
 	}
 
@@ -259,7 +260,7 @@
 		GFP_KERNEL, &pdata->urb->transfer_dma);
 	if (!pdata->urbdata) {
 		retval = -ENOMEM;
-		err("appledisplay: Allocating URB buffer failed");
+		dev_err(&iface->dev, "Allocating URB buffer failed\n");
 		goto error;
 	}
 
@@ -270,7 +271,7 @@
 		pdata, 1);
 	if (usb_submit_urb(pdata->urb, GFP_KERNEL)) {
 		retval = -EIO;
-		err("appledisplay: Submitting URB failed");
+		dev_err(&iface->dev, "Submitting URB failed\n");
 		goto error;
 	}
 
@@ -280,7 +281,7 @@
 	pdata->bd = backlight_device_register(bl_name, NULL, pdata,
 						&appledisplay_bl_data);
 	if (IS_ERR(pdata->bd)) {
-		err("appledisplay: Backlight registration failed");
+		dev_err(&iface->dev, "Backlight registration failed\n");
 		goto error;
 	}
 
@@ -291,7 +292,8 @@
 
 	if (brightness < 0) {
 		retval = brightness;
-		err("appledisplay: Error while getting initial brightness: %d", retval);
+		dev_err(&iface->dev,
+			"Error while getting initial brightness: %d\n", retval);
 		goto error;
 	}
 
@@ -314,7 +316,7 @@
 					pdata->urbdata, pdata->urb->transfer_dma);
 			usb_free_urb(pdata->urb);
 		}
-		if (pdata->bd)
+		if (pdata->bd && !IS_ERR(pdata->bd))
 			backlight_device_unregister(pdata->bd);
 		kfree(pdata->msgdata);
 	}
@@ -352,7 +354,7 @@
 {
 	wq = create_singlethread_workqueue("appledisplay");
 	if (!wq) {
-		err("Could not create work queue\n");
+		printk(KERN_ERR "appledisplay: Could not create work queue\n");
 		return -ENOMEM;
 	}
 
diff --git a/drivers/usb/misc/cypress_cy7c63.c b/drivers/usb/misc/cypress_cy7c63.c
index 9379404..5720bfe 100644
--- a/drivers/usb/misc/cypress_cy7c63.c
+++ b/drivers/usb/misc/cypress_cy7c63.c
@@ -278,9 +278,9 @@
 
 	/* register this driver with the USB subsystem */
 	result = usb_register(&cypress_driver);
-	if (result) {
-		err("Function usb_register failed! Error number: %d\n", result);
-	}
+	if (result)
+		printk(KERN_ERR KBUILD_MODNAME ": usb_register failed! "
+		       "Error number: %d\n", result);
 
 	return result;
 }
diff --git a/drivers/usb/misc/cytherm.c b/drivers/usb/misc/cytherm.c
index 1cd9e7e..4fb3c38 100644
--- a/drivers/usb/misc/cytherm.c
+++ b/drivers/usb/misc/cytherm.c
@@ -422,13 +422,14 @@
 	int result;
 
 	result = usb_register(&cytherm_driver);
-	if (result) 
-	{	
-		err("usb_register failed. Error number %d", result);
+	if (result) {
+		printk(KERN_ERR KBUILD_MODNAME ": usb_register failed! "
+		       "Error number: %d\n", result);
 		return result;
 	}
 
-	info(DRIVER_VERSION ":" DRIVER_DESC);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 }
 
diff --git a/drivers/usb/misc/emi26.c b/drivers/usb/misc/emi26.c
index 4b994a0..e762beb 100644
--- a/drivers/usb/misc/emi26.c
+++ b/drivers/usb/misc/emi26.c
@@ -50,7 +50,7 @@
 	unsigned char *buffer =  kmemdup(data, length, GFP_KERNEL);
 
 	if (!buffer) {
-		err("emi26: kmalloc(%d) failed.", length);
+		dev_err(&dev->dev, "kmalloc(%d) failed.\n", length);
 		return -ENOMEM;
 	}
 	/* Note: usb_control_msg returns negative value on error or length of the
@@ -64,11 +64,11 @@
 static int emi26_set_reset (struct usb_device *dev, unsigned char reset_bit)
 {
 	int response;
-	info("%s - %d", __func__, reset_bit);
+	dev_info(&dev->dev, "%s - %d\n", __func__, reset_bit);
 	/* printk(KERN_DEBUG "%s - %d", __func__, reset_bit); */
 	response = emi26_writememory (dev, CPUCS_REG, &reset_bit, 1, 0xa0);
 	if (response < 0) {
-		err("emi26: set_reset (%d) failed", reset_bit);
+		dev_err(&dev->dev, "set_reset (%d) failed\n", reset_bit);
 	}
 	return response;
 }
@@ -88,7 +88,8 @@
 
 	buf = kmalloc(FW_LOAD_SIZE, GFP_KERNEL);
 	if (!buf) {
-		err( "%s - error loading firmware: error = %d", __func__, -ENOMEM);
+		dev_err(&dev->dev, "%s - error loading firmware: error = %d\n",
+			__func__, -ENOMEM);
 		err = -ENOMEM;
 		goto wraperr;
 	}
@@ -106,14 +107,16 @@
 				    &dev->dev);
 	if (err) {
 	nofw:
-		err( "%s - request_firmware() failed", __func__);
+		dev_err(&dev->dev, "%s - request_firmware() failed\n",
+			__func__);
 		goto wraperr;
 	}
 
 	/* Assert reset (stop the CPU in the EMI) */
 	err = emi26_set_reset(dev,1);
 	if (err < 0) {
-		err( "%s - error loading firmware: error = %d", __func__, err);
+		dev_err(&dev->dev,"%s - error loading firmware: error = %d\n",
+			__func__, err);
 		goto wraperr;
 	}
 
@@ -254,7 +257,7 @@
 {
 	struct usb_device *dev = interface_to_usbdev(intf);
 
-	info("%s start", __func__);
+	dev_info(&intf->dev, "%s start\n", __func__);
 
 	emi26_load_firmware(dev);
 
diff --git a/drivers/usb/misc/emi62.c b/drivers/usb/misc/emi62.c
index 5d859de..602ee05 100644
--- a/drivers/usb/misc/emi62.c
+++ b/drivers/usb/misc/emi62.c
@@ -73,7 +73,7 @@
 static int emi62_set_reset (struct usb_device *dev, unsigned char reset_bit)
 {
 	int response;
-	info("%s - %d", __func__, reset_bit);
+	dev_info(&dev->dev, "%s - %d\n", __func__, reset_bit);
 	
 	response = emi62_writememory (dev, CPUCS_REG, &reset_bit, 1, 0xa0);
 	if (response < 0) {
@@ -271,7 +271,7 @@
 	struct usb_device *dev = interface_to_usbdev(intf);
 	dev_dbg(&intf->dev, "emi62_probe\n");
 
-	info("%s start", __func__);
+	dev_info(&intf->dev, "%s start\n", __func__);
 
 	emi62_load_firmware(dev);
 
diff --git a/drivers/usb/misc/ftdi-elan.c b/drivers/usb/misc/ftdi-elan.c
index 97c2809..79a7668 100644
--- a/drivers/usb/misc/ftdi-elan.c
+++ b/drivers/usb/misc/ftdi-elan.c
@@ -698,7 +698,7 @@
                 int retval = usb_bulk_msg(ftdi->udev,
                         usb_rcvbulkpipe(ftdi->udev, ftdi->bulk_in_endpointAddr),
                          ftdi->bulk_in_buffer, ftdi->bulk_in_size,
-                        &packet_bytes, msecs_to_jiffies(50));
+                        &packet_bytes, 50);
                 if (packet_bytes > 2) {
                         ftdi->bulk_in_left = packet_bytes - 2;
                         ftdi->bulk_in_last = 1;
@@ -960,7 +960,7 @@
                 int retval = usb_bulk_msg(ftdi->udev,
                         usb_rcvbulkpipe(ftdi->udev, ftdi->bulk_in_endpointAddr),
                          ftdi->bulk_in_buffer, ftdi->bulk_in_size,
-                        &packet_bytes, msecs_to_jiffies(500));
+                        &packet_bytes, 500);
                 char diag[30 *3 + 4];
                 char *d = diag;
                 int m = packet_bytes;
@@ -1880,7 +1880,7 @@
                 int retval = usb_bulk_msg(ftdi->udev,
                         usb_rcvbulkpipe(ftdi->udev, ftdi->bulk_in_endpointAddr),
                          ftdi->bulk_in_buffer, ftdi->bulk_in_size,
-                        &packet_bytes, msecs_to_jiffies(100));
+                        &packet_bytes, 100);
                 if (packet_bytes > 2) {
                         char diag[30 *3 + 4];
                         char *d = diag;
@@ -2067,7 +2067,7 @@
                                 usb_rcvbulkpipe(ftdi->udev,
                                 ftdi->bulk_in_endpointAddr),
                                 ftdi->bulk_in_buffer, ftdi->bulk_in_size,
-                                &packet_bytes, msecs_to_jiffies(500));
+                                &packet_bytes, 500);
                         if (packet_bytes > 2) {
                                 char diag[30 *3 + 4];
                                 char *d = diag;
@@ -2176,7 +2176,7 @@
                 int retval = usb_bulk_msg(ftdi->udev,
                         usb_rcvbulkpipe(ftdi->udev, ftdi->bulk_in_endpointAddr),
                          ftdi->bulk_in_buffer, ftdi->bulk_in_size,
-                        &packet_bytes, msecs_to_jiffies(1000));
+                        &packet_bytes, 1000);
                 if (packet_bytes > 2) {
                         char diag[30 *3 + 4];
                         char *d = diag;
diff --git a/drivers/usb/misc/idmouse.c b/drivers/usb/misc/idmouse.c
index 4bcf7fb..6da8887 100644
--- a/drivers/usb/misc/idmouse.c
+++ b/drivers/usb/misc/idmouse.c
@@ -403,14 +403,15 @@
 		mutex_unlock(&dev->lock);
 	}
 
-	info("%s disconnected", DRIVER_DESC);
+	dev_info(&interface->dev, "disconnected\n");
 }
 
 static int __init usb_idmouse_init(void)
 {
 	int result;
 
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 
 	/* register this driver with the USB subsystem */
 	result = usb_register(&idmouse_driver);
diff --git a/drivers/usb/misc/legousbtower.c b/drivers/usb/misc/legousbtower.c
index 9370326..ab0f322 100644
--- a/drivers/usb/misc/legousbtower.c
+++ b/drivers/usb/misc/legousbtower.c
@@ -851,9 +851,8 @@
 
 	dbg(2, "%s: enter", __func__);
 
-	if (udev == NULL) {
-		info ("udev is NULL.");
-	}
+	if (udev == NULL)
+		dev_info(&interface->dev, "udev is NULL.\n");
 
 	/* allocate memory for our device state and initialize it */
 
@@ -954,7 +953,9 @@
 	dev->minor = interface->minor;
 
 	/* let the user know what node this device is now attached to */
-	info ("LEGO USB Tower #%d now attached to major %d minor %d", (dev->minor - LEGO_USB_TOWER_MINOR_BASE), USB_MAJOR, dev->minor);
+	dev_info(&interface->dev, "LEGO USB Tower #%d now attached to major "
+		 "%d minor %d\n", (dev->minor - LEGO_USB_TOWER_MINOR_BASE),
+		 USB_MAJOR, dev->minor);
 
 	/* get the firmware version and log it */
 	result = usb_control_msg (udev,
@@ -971,10 +972,10 @@
 		retval = result;
 		goto error;
 	}
-	info("LEGO USB Tower firmware version is %d.%d build %d",
-	     get_version_reply.major,
-	     get_version_reply.minor,
-	     le16_to_cpu(get_version_reply.build_no));
+	dev_info(&interface->dev, "LEGO USB Tower firmware version is %d.%d "
+		 "build %d\n", get_version_reply.major,
+		 get_version_reply.minor,
+		 le16_to_cpu(get_version_reply.build_no));
 
 
 exit:
@@ -1021,7 +1022,8 @@
 		mutex_unlock(&dev->lock);
 	}
 
-	info("LEGO USB Tower #%d now disconnected", (minor - LEGO_USB_TOWER_MINOR_BASE));
+	dev_info(&interface->dev, "LEGO USB Tower #%d now disconnected\n",
+		 (minor - LEGO_USB_TOWER_MINOR_BASE));
 
 	dbg(2, "%s: leave", __func__);
 }
@@ -1046,7 +1048,8 @@
 		goto exit;
 	}
 
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 
 exit:
 	dbg(2, "%s: leave, return value %d", __func__, retval);
diff --git a/drivers/usb/misc/rio500.c b/drivers/usb/misc/rio500.c
index 248a12a..deb95bb 100644
--- a/drivers/usb/misc/rio500.c
+++ b/drivers/usb/misc/rio500.c
@@ -89,7 +89,7 @@
 
 	mutex_unlock(&(rio->lock));
 
-	info("Rio opened.");
+	dev_info(&rio->rio_dev->dev, "Rio opened.\n");
 
 	return 0;
 }
@@ -100,7 +100,7 @@
 
 	rio->isopen = 0;
 
-	info("Rio closed.");
+	dev_info(&rio->rio_dev->dev, "Rio closed.\n");
 	return 0;
 }
 
@@ -451,7 +451,7 @@
 	struct rio_usb_data *rio = &rio_instance;
 	int retval;
 
-	info("USB Rio found at address %d", dev->devnum);
+	dev_info(&intf->dev, "USB Rio found at address %d\n", dev->devnum);
 
 	retval = usb_register_dev(intf, &usb_rio_class);
 	if (retval) {
@@ -503,7 +503,7 @@
 		kfree(rio->ibuf);
 		kfree(rio->obuf);
 
-		info("USB Rio disconnected.");
+		dev_info(&intf->dev, "USB Rio disconnected.\n");
 
 		rio->present = 0;
 		mutex_unlock(&(rio->lock));
@@ -531,7 +531,8 @@
 	if (retval)
 		goto out;
 
-	info(DRIVER_VERSION ":" DRIVER_DESC);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 
 out:
 	return retval;
diff --git a/drivers/usb/misc/trancevibrator.c b/drivers/usb/misc/trancevibrator.c
index 03368ed..2e14102 100644
--- a/drivers/usb/misc/trancevibrator.c
+++ b/drivers/usb/misc/trancevibrator.c
@@ -144,7 +144,8 @@
 		return retval;
 	}
 
-	info(DRIVER_VERSION ":" DRIVER_DESC);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 }
 
diff --git a/drivers/usb/misc/usblcd.c b/drivers/usb/misc/usblcd.c
index 2db4228..e0ff9cc 100644
--- a/drivers/usb/misc/usblcd.c
+++ b/drivers/usb/misc/usblcd.c
@@ -311,7 +311,7 @@
 	dev->interface = interface;
 
 	if (le16_to_cpu(dev->udev->descriptor.idProduct) != 0x0001) {
-		warn(KERN_INFO "USBLCD model not supported.");
+		dev_warn(&interface->dev, "USBLCD model not supported.\n");
 		return -ENODEV;
 	}
 	
@@ -359,12 +359,13 @@
 
 	i = le16_to_cpu(dev->udev->descriptor.bcdDevice);
 
-	info("USBLCD Version %1d%1d.%1d%1d found at address %d",
-		(i & 0xF000)>>12,(i & 0xF00)>>8,(i & 0xF0)>>4,(i & 0xF),
-		dev->udev->devnum);
+	dev_info(&interface->dev, "USBLCD Version %1d%1d.%1d%1d found "
+		 "at address %d\n", (i & 0xF000)>>12, (i & 0xF00)>>8,
+		 (i & 0xF0)>>4,(i & 0xF), dev->udev->devnum);
 
 	/* let the user know what node this device is now attached to */
-	info("USB LCD device now attached to USBLCD-%d", interface->minor);
+	dev_info(&interface->dev, "USB LCD device now attached to USBLCD-%d\n",
+		 interface->minor);
 	return 0;
 
 error:
@@ -413,7 +414,7 @@
 	/* decrement our usage count */
 	kref_put(&dev->kref, lcd_delete);
 
-	info("USB LCD #%d now disconnected", minor);
+	dev_info(&interface->dev, "USB LCD #%d now disconnected\n", minor);
 }
 
 static struct usb_driver lcd_driver = {
diff --git a/drivers/usb/misc/usbsevseg.c b/drivers/usb/misc/usbsevseg.c
new file mode 100644
index 0000000..28a6a3a
--- /dev/null
+++ b/drivers/usb/misc/usbsevseg.c
@@ -0,0 +1,394 @@
+/*
+ * USB 7 Segment Driver
+ *
+ * Copyright (C) 2008 Harrison Metzger <harrisonmetz@gmail.com>
+ * Based on usbled.c by Greg Kroah-Hartman (greg@kroah.com)
+ *
+ *	This program is free software; you can redistribute it and/or
+ *	modify it under the terms of the GNU General Public License as
+ *	published by the Free Software Foundation, version 2.
+ *
+ */
+
+#include <linux/kernel.h>
+#include <linux/errno.h>
+#include <linux/init.h>
+#include <linux/slab.h>
+#include <linux/module.h>
+#include <linux/string.h>
+#include <linux/usb.h>
+
+
+#define DRIVER_AUTHOR "Harrison Metzger <harrisonmetz@gmail.com>"
+#define DRIVER_DESC "USB 7 Segment Driver"
+
+#define VENDOR_ID	0x0fc5
+#define PRODUCT_ID	0x1227
+#define MAXLEN		6
+
+/* table of devices that work with this driver */
+static struct usb_device_id id_table[] = {
+	{ USB_DEVICE(VENDOR_ID, PRODUCT_ID) },
+	{ },
+};
+MODULE_DEVICE_TABLE(usb, id_table);
+
+/* the different text display modes the device is capable of */
+static char *display_textmodes[] = {"raw", "hex", "ascii", NULL};
+
+struct usb_sevsegdev {
+	struct usb_device *udev;
+
+	u8 powered;
+	u8 mode_msb;
+	u8 mode_lsb;
+	u8 decimals[MAXLEN];
+	u8 textmode;
+	u8 text[MAXLEN];
+	u16 textlength;
+};
+
+/* sysfs_streq can't replace this completely
+ * If the device was in hex mode, and the user wanted a 0,
+ * if str commands are used, we would assume the end of string
+ * so mem commands are used.
+ */
+inline size_t my_memlen(const char *buf, size_t count)
+{
+	if (count > 0 && buf[count-1] == '\n')
+		return count - 1;
+	else
+		return count;
+}
+
+static void update_display_powered(struct usb_sevsegdev *mydev)
+{
+	int rc;
+
+	rc = usb_control_msg(mydev->udev,
+			usb_sndctrlpipe(mydev->udev, 0),
+			0x12,
+			0x48,
+			(80 * 0x100) + 10, /*  (power mode) */
+			(0x00 * 0x100) + (mydev->powered ? 1 : 0),
+			NULL,
+			0,
+			2000);
+	if (rc < 0)
+		dev_dbg(&mydev->udev->dev, "power retval = %d\n", rc);
+}
+
+static void update_display_mode(struct usb_sevsegdev *mydev)
+{
+	int rc;
+
+	rc = usb_control_msg(mydev->udev,
+			usb_sndctrlpipe(mydev->udev, 0),
+			0x12,
+			0x48,
+			(82 * 0x100) + 10, /* (set mode) */
+			(mydev->mode_msb * 0x100) + mydev->mode_lsb,
+			NULL,
+			0,
+			2000);
+
+	if (rc < 0)
+		dev_dbg(&mydev->udev->dev, "mode retval = %d\n", rc);
+}
+
+static void update_display_visual(struct usb_sevsegdev *mydev)
+{
+	int rc;
+	int i;
+	unsigned char *buffer;
+	u8 decimals = 0;
+
+	buffer = kzalloc(MAXLEN, GFP_KERNEL);
+	if (!buffer) {
+		dev_err(&mydev->udev->dev, "out of memory\n");
+		return;
+	}
+
+	/* The device is right to left, where as you write left to right */
+	for (i = 0; i < mydev->textlength; i++)
+		buffer[i] = mydev->text[mydev->textlength-1-i];
+
+	rc = usb_control_msg(mydev->udev,
+			usb_sndctrlpipe(mydev->udev, 0),
+			0x12,
+			0x48,
+			(85 * 0x100) + 10, /* (write text) */
+			(0 * 0x100) + mydev->textmode, /* mode  */
+			buffer,
+			mydev->textlength,
+			2000);
+
+	if (rc < 0)
+		dev_dbg(&mydev->udev->dev, "write retval = %d\n", rc);
+
+	kfree(buffer);
+
+	/* The device is right to left, where as you write left to right */
+	for (i = 0; i < sizeof(mydev->decimals); i++)
+		decimals |= mydev->decimals[i] << i;
+
+	rc = usb_control_msg(mydev->udev,
+			usb_sndctrlpipe(mydev->udev, 0),
+			0x12,
+			0x48,
+			(86 * 0x100) + 10, /* (set decimal) */
+			(0 * 0x100) + decimals, /* decimals */
+			NULL,
+			0,
+			2000);
+
+	if (rc < 0)
+		dev_dbg(&mydev->udev->dev, "decimal retval = %d\n", rc);
+}
+
+#define MYDEV_ATTR_SIMPLE_UNSIGNED(name, update_fcn)		\
+static ssize_t show_attr_##name(struct device *dev, 		\
+	struct device_attribute *attr, char *buf) 		\
+{								\
+	struct usb_interface *intf = to_usb_interface(dev);	\
+	struct usb_sevsegdev *mydev = usb_get_intfdata(intf);	\
+								\
+	return sprintf(buf, "%u\n", mydev->name);		\
+}								\
+								\
+static ssize_t set_attr_##name(struct device *dev, 		\
+	struct device_attribute *attr, const char *buf, size_t count) \
+{								\
+	struct usb_interface *intf = to_usb_interface(dev);	\
+	struct usb_sevsegdev *mydev = usb_get_intfdata(intf);	\
+								\
+	mydev->name = simple_strtoul(buf, NULL, 10);		\
+	update_fcn(mydev); \
+								\
+	return count;						\
+}								\
+static DEVICE_ATTR(name, S_IWUGO | S_IRUGO, show_attr_##name, set_attr_##name);
+
+static ssize_t show_attr_text(struct device *dev,
+	struct device_attribute *attr, char *buf)
+{
+	struct usb_interface *intf = to_usb_interface(dev);
+	struct usb_sevsegdev *mydev = usb_get_intfdata(intf);
+
+	return snprintf(buf, mydev->textlength, "%s\n", mydev->text);
+}
+
+static ssize_t set_attr_text(struct device *dev,
+	struct device_attribute *attr, const char *buf, size_t count)
+{
+	struct usb_interface *intf = to_usb_interface(dev);
+	struct usb_sevsegdev *mydev = usb_get_intfdata(intf);
+	size_t end = my_memlen(buf, count);
+
+	if (end > sizeof(mydev->text))
+		return -EINVAL;
+
+	memset(mydev->text, 0, sizeof(mydev->text));
+	mydev->textlength = end;
+
+	if (end > 0)
+		memcpy(mydev->text, buf, end);
+
+	update_display_visual(mydev);
+	return count;
+}
+
+static DEVICE_ATTR(text, S_IWUGO | S_IRUGO, show_attr_text, set_attr_text);
+
+static ssize_t show_attr_decimals(struct device *dev,
+	struct device_attribute *attr, char *buf)
+{
+	struct usb_interface *intf = to_usb_interface(dev);
+	struct usb_sevsegdev *mydev = usb_get_intfdata(intf);
+	int i;
+	int pos;
+
+	for (i = 0; i < sizeof(mydev->decimals); i++) {
+		pos = sizeof(mydev->decimals) - 1 - i;
+		if (mydev->decimals[i] == 0)
+			buf[pos] = '0';
+		else if (mydev->decimals[i] == 1)
+			buf[pos] = '1';
+		else
+			buf[pos] = 'x';
+	}
+
+	buf[sizeof(mydev->decimals)] = '\n';
+	return sizeof(mydev->decimals) + 1;
+}
+
+static ssize_t set_attr_decimals(struct device *dev,
+	struct device_attribute *attr, const char *buf, size_t count)
+{
+	struct usb_interface *intf = to_usb_interface(dev);
+	struct usb_sevsegdev *mydev = usb_get_intfdata(intf);
+	size_t end = my_memlen(buf, count);
+	int i;
+
+	if (end > sizeof(mydev->decimals))
+		return -EINVAL;
+
+	for (i = 0; i < end; i++)
+		if (buf[i] != '0' && buf[i] != '1')
+			return -EINVAL;
+
+	memset(mydev->decimals, 0, sizeof(mydev->decimals));
+	for (i = 0; i < end; i++)
+		if (buf[i] == '1')
+			mydev->decimals[end-1-i] = 1;
+
+	update_display_visual(mydev);
+
+	return count;
+}
+
+static DEVICE_ATTR(decimals, S_IWUGO | S_IRUGO,
+	show_attr_decimals, set_attr_decimals);
+
+static ssize_t show_attr_textmode(struct device *dev,
+	struct device_attribute *attr, char *buf)
+{
+	struct usb_interface *intf = to_usb_interface(dev);
+	struct usb_sevsegdev *mydev = usb_get_intfdata(intf);
+	int i;
+
+	buf[0] = 0;
+
+	for (i = 0; display_textmodes[i]; i++) {
+		if (mydev->textmode == i) {
+			strcat(buf, " [");
+			strcat(buf, display_textmodes[i]);
+			strcat(buf, "] ");
+		} else {
+			strcat(buf, " ");
+			strcat(buf, display_textmodes[i]);
+			strcat(buf, " ");
+		}
+	}
+	strcat(buf, "\n");
+
+
+	return strlen(buf);
+}
+
+static ssize_t set_attr_textmode(struct device *dev,
+	struct device_attribute *attr, const char *buf, size_t count)
+{
+	struct usb_interface *intf = to_usb_interface(dev);
+	struct usb_sevsegdev *mydev = usb_get_intfdata(intf);
+	int i;
+
+	for (i = 0; display_textmodes[i]; i++) {
+		if (sysfs_streq(display_textmodes[i], buf)) {
+			mydev->textmode = i;
+			update_display_visual(mydev);
+			return count;
+		}
+	}
+
+	return -EINVAL;
+}
+
+static DEVICE_ATTR(textmode, S_IWUGO | S_IRUGO,
+	show_attr_textmode, set_attr_textmode);
+
+
+MYDEV_ATTR_SIMPLE_UNSIGNED(powered, update_display_powered);
+MYDEV_ATTR_SIMPLE_UNSIGNED(mode_msb, update_display_mode);
+MYDEV_ATTR_SIMPLE_UNSIGNED(mode_lsb, update_display_mode);
+
+static struct attribute *dev_attrs[] = {
+	&dev_attr_powered.attr,
+	&dev_attr_text.attr,
+	&dev_attr_textmode.attr,
+	&dev_attr_decimals.attr,
+	&dev_attr_mode_msb.attr,
+	&dev_attr_mode_lsb.attr,
+	NULL
+};
+
+static struct attribute_group dev_attr_grp = {
+	.attrs = dev_attrs,
+};
+
+static int sevseg_probe(struct usb_interface *interface,
+	const struct usb_device_id *id)
+{
+	struct usb_device *udev = interface_to_usbdev(interface);
+	struct usb_sevsegdev *mydev = NULL;
+	int rc = -ENOMEM;
+
+	mydev = kzalloc(sizeof(struct usb_sevsegdev), GFP_KERNEL);
+	if (mydev == NULL) {
+		dev_err(&interface->dev, "Out of memory\n");
+		goto error_mem;
+	}
+
+	mydev->udev = usb_get_dev(udev);
+	usb_set_intfdata(interface, mydev);
+
+	/*set defaults */
+	mydev->textmode = 0x02; /* ascii mode */
+	mydev->mode_msb = 0x06; /* 6 characters */
+	mydev->mode_lsb = 0x3f; /* scanmode for 6 chars */
+
+	rc = sysfs_create_group(&interface->dev.kobj, &dev_attr_grp);
+	if (rc)
+		goto error;
+
+	dev_info(&interface->dev, "USB 7 Segment device now attached\n");
+	return 0;
+
+error:
+	usb_set_intfdata(interface, NULL);
+	usb_put_dev(mydev->udev);
+	kfree(mydev);
+error_mem:
+	return rc;
+}
+
+static void sevseg_disconnect(struct usb_interface *interface)
+{
+	struct usb_sevsegdev *mydev;
+
+	mydev = usb_get_intfdata(interface);
+	sysfs_remove_group(&interface->dev.kobj, &dev_attr_grp);
+	usb_set_intfdata(interface, NULL);
+	usb_put_dev(mydev->udev);
+	kfree(mydev);
+	dev_info(&interface->dev, "USB 7 Segment now disconnected\n");
+}
+
+static struct usb_driver sevseg_driver = {
+	.name =		"usbsevseg",
+	.probe =	sevseg_probe,
+	.disconnect =	sevseg_disconnect,
+	.id_table =	id_table,
+};
+
+static int __init usb_sevseg_init(void)
+{
+	int rc = 0;
+
+	rc = usb_register(&sevseg_driver);
+	if (rc)
+		err("usb_register failed. Error number %d", rc);
+	return rc;
+}
+
+static void __exit usb_sevseg_exit(void)
+{
+	usb_deregister(&sevseg_driver);
+}
+
+module_init(usb_sevseg_init);
+module_exit(usb_sevseg_exit);
+
+MODULE_AUTHOR(DRIVER_AUTHOR);
+MODULE_DESCRIPTION(DRIVER_DESC);
+MODULE_LICENSE("GPL");
diff --git a/drivers/usb/misc/uss720.c b/drivers/usb/misc/uss720.c
index f1255b0..9a6c27a 100644
--- a/drivers/usb/misc/uss720.c
+++ b/drivers/usb/misc/uss720.c
@@ -228,11 +228,12 @@
 		ret = rq->urb->status;
 		*val = priv->reg[(reg >= 9) ? 0 : regindex[reg]];
 		if (ret)
-			warn("get_1284_register: usb error %d", ret);
+			printk(KERN_WARNING "get_1284_register: "
+			       "usb error %d\n", ret);
 		kref_put(&rq->ref_count, destroy_async);
 		return ret;
 	}
-	warn("get_1284_register timeout");
+	printk(KERN_WARNING "get_1284_register timeout\n");
 	kill_all_async_requests_priv(priv);
 	return -EIO;
 }
@@ -716,7 +717,7 @@
 	spin_lock_init(&priv->asynclock);
 	INIT_LIST_HEAD(&priv->asynclist);
 	if (!(pp = parport_register_port(0, PARPORT_IRQ_NONE, PARPORT_DMA_NONE, &parport_uss720_ops))) {
-		warn("could not register parport");
+		printk(KERN_WARNING "uss720: could not register parport\n");
 		goto probe_abort;
 	}
 
@@ -800,10 +801,14 @@
 	if (retval)
 		goto out;
 
-	info(DRIVER_VERSION ":" DRIVER_DESC);
-	info("NOTE: this is a special purpose driver to allow nonstandard");
-	info("protocols (eg. bitbang) over USS720 usb to parallel cables");
-	info("If you just want to connect to a printer, use usblp instead");
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
+	printk(KERN_INFO KBUILD_MODNAME ": NOTE: this is a special purpose "
+	       "driver to allow nonstandard\n");
+	printk(KERN_INFO KBUILD_MODNAME ": protocols (eg. bitbang) over "
+	       "USS720 usb to parallel cables\n");
+	printk(KERN_INFO KBUILD_MODNAME ": If you just want to connect to a "
+	       "printer, use usblp instead\n");
 out:
 	return retval;
 }
diff --git a/drivers/usb/misc/vstusb.c b/drivers/usb/misc/vstusb.c
new file mode 100644
index 0000000..8648470c
--- /dev/null
+++ b/drivers/usb/misc/vstusb.c
@@ -0,0 +1,782 @@
+/*****************************************************************************
+ *  File: drivers/usb/misc/vstusb.c
+ *
+ *  Purpose: Support for the bulk USB Vernier Spectrophotometers
+ *
+ *  Author:     Johnnie Peters
+ *              Axian Consulting
+ *              Beaverton, OR, USA 97005
+ *
+ *  Modified by:     EQware Engineering, Inc.
+ *                   Oregon City, OR, USA 97045
+ *
+ *  Copyright:  2007, 2008
+ *              Vernier Software & Technology
+ *              Beaverton, OR, USA 97005
+ *
+ *  Web:        www.vernier.com
+ *
+ *  This program is free software; you can redistribute it and/or modify
+ *  it under the terms of the GNU General Public License version 2 as
+ *  published by the Free Software Foundation.
+ *
+ *****************************************************************************/
+#include <linux/kernel.h>
+#include <linux/errno.h>
+#include <linux/init.h>
+#include <linux/slab.h>
+#include <linux/module.h>
+#include <linux/mutex.h>
+#include <linux/uaccess.h>
+#include <linux/usb.h>
+
+#include <linux/usb/vstusb.h>
+
+#define DRIVER_VERSION "VST USB Driver Version 1.5"
+#define DRIVER_DESC "Vernier Software Technology Bulk USB Driver"
+
+#ifdef CONFIG_USB_DYNAMIC_MINORS
+	#define VSTUSB_MINOR_BASE	0
+#else
+	#define VSTUSB_MINOR_BASE	199
+#endif
+
+#define USB_VENDOR_OCEANOPTICS	0x2457
+#define USB_VENDOR_VERNIER	0x08F7	/* Vernier Software & Technology */
+
+#define USB_PRODUCT_USB2000	0x1002
+#define USB_PRODUCT_ADC1000_FW	0x1003	/* firmware download (renumerates) */
+#define USB_PRODUCT_ADC1000	0x1004
+#define USB_PRODUCT_HR2000_FW	0x1009	/* firmware download (renumerates) */
+#define USB_PRODUCT_HR2000	0x100A
+#define USB_PRODUCT_HR4000_FW	0x1011	/* firmware download (renumerates) */
+#define USB_PRODUCT_HR4000	0x1012
+#define USB_PRODUCT_USB650	0x1014	/* "Red Tide" */
+#define USB_PRODUCT_QE65000	0x1018
+#define USB_PRODUCT_USB4000	0x1022
+#define USB_PRODUCT_USB325	0x1024	/* "Vernier Spectrometer" */
+
+#define USB_PRODUCT_LABPRO	0x0001
+#define USB_PRODUCT_LABQUEST	0x0005
+
+#define VST_MAXBUFFER		(64*1024)
+
+static struct usb_device_id id_table[] = {
+	{ USB_DEVICE(USB_VENDOR_OCEANOPTICS, USB_PRODUCT_USB2000)},
+	{ USB_DEVICE(USB_VENDOR_OCEANOPTICS, USB_PRODUCT_HR4000)},
+	{ USB_DEVICE(USB_VENDOR_OCEANOPTICS, USB_PRODUCT_USB650)},
+	{ USB_DEVICE(USB_VENDOR_OCEANOPTICS, USB_PRODUCT_USB4000)},
+	{ USB_DEVICE(USB_VENDOR_OCEANOPTICS, USB_PRODUCT_USB325)},
+	{ USB_DEVICE(USB_VENDOR_VERNIER, USB_PRODUCT_LABQUEST)},
+	{ USB_DEVICE(USB_VENDOR_VERNIER, USB_PRODUCT_LABPRO)},
+	{},
+};
+
+MODULE_DEVICE_TABLE(usb, id_table);
+
+struct vstusb_device {
+	struct kref				kref;
+	struct mutex            lock;
+	struct usb_device       *usb_dev;
+	char                    present;
+	char                    isopen;
+	struct usb_anchor       submitted;
+	int                     rd_pipe;
+	int                     rd_timeout_ms;
+	int                     wr_pipe;
+	int                     wr_timeout_ms;
+};
+#define to_vst_dev(d) container_of(d, struct vstusb_device, kref)
+
+static struct usb_driver vstusb_driver;
+
+static void vstusb_delete(struct kref *kref)
+{
+	struct vstusb_device *vstdev = to_vst_dev(kref);
+
+	usb_put_dev(vstdev->usb_dev);
+	kfree(vstdev);
+}
+
+static int vstusb_open(struct inode *inode, struct file *file)
+{
+	struct vstusb_device *vstdev;
+	struct usb_interface *interface;
+
+	interface = usb_find_interface(&vstusb_driver, iminor(inode));
+
+	if (!interface) {
+		printk(KERN_ERR KBUILD_MODNAME
+		       ": %s - error, can't find device for minor %d\n",
+		       __func__, iminor(inode));
+		return -ENODEV;
+	}
+
+	vstdev = usb_get_intfdata(interface);
+
+	if (!vstdev)
+		return -ENODEV;
+
+	/* lock this device */
+	mutex_lock(&vstdev->lock);
+
+	/* can only open one time */
+	if ((!vstdev->present) || (vstdev->isopen)) {
+		mutex_unlock(&vstdev->lock);
+		return -EBUSY;
+	}
+
+	/* increment our usage count */
+	kref_get(&vstdev->kref);
+
+	vstdev->isopen = 1;
+
+	/* save device in the file's private structure */
+	file->private_data = vstdev;
+
+	dev_dbg(&vstdev->usb_dev->dev, "%s: opened\n", __func__);
+
+	mutex_unlock(&vstdev->lock);
+
+	return 0;
+}
+
+static int vstusb_release(struct inode *inode, struct file *file)
+{
+	struct vstusb_device *vstdev;
+
+	vstdev = file->private_data;
+
+	if (vstdev == NULL)
+		return -ENODEV;
+
+	mutex_lock(&vstdev->lock);
+
+	vstdev->isopen = 0;
+
+	dev_dbg(&vstdev->usb_dev->dev, "%s: released\n", __func__);
+
+	mutex_unlock(&vstdev->lock);
+
+	kref_put(&vstdev->kref, vstusb_delete);
+
+	return 0;
+}
+
+static void usb_api_blocking_completion(struct urb *urb)
+{
+	struct completion *completeit = urb->context;
+
+	complete(completeit);
+}
+
+static int vstusb_fill_and_send_urb(struct urb *urb,
+				    struct usb_device *usb_dev,
+				    unsigned int pipe, void *data,
+				    unsigned int len, struct completion *done)
+{
+	struct usb_host_endpoint *ep;
+	struct usb_host_endpoint **hostep;
+	unsigned int pipend;
+
+	int status;
+
+	hostep = usb_pipein(pipe) ? usb_dev->ep_in : usb_dev->ep_out;
+	pipend = usb_pipeendpoint(pipe);
+	ep = hostep[pipend];
+
+	if (!ep || (len == 0))
+		return -EINVAL;
+
+	if ((ep->desc.bmAttributes & USB_ENDPOINT_XFERTYPE_MASK)
+	    == USB_ENDPOINT_XFER_INT) {
+		pipe = (pipe & ~(3 << 30)) | (PIPE_INTERRUPT << 30);
+		usb_fill_int_urb(urb, usb_dev, pipe, data, len,
+				 (usb_complete_t)usb_api_blocking_completion,
+				 NULL, ep->desc.bInterval);
+	} else
+		usb_fill_bulk_urb(urb, usb_dev, pipe, data, len,
+				  (usb_complete_t)usb_api_blocking_completion,
+				  NULL);
+
+	init_completion(done);
+	urb->context = done;
+	urb->actual_length = 0;
+	status = usb_submit_urb(urb, GFP_KERNEL);
+
+	return status;
+}
+
+static int vstusb_complete_urb(struct urb *urb, struct completion *done,
+			       int timeout, int *actual_length)
+{
+	unsigned long expire;
+	int status;
+
+	expire = timeout ? msecs_to_jiffies(timeout) : MAX_SCHEDULE_TIMEOUT;
+	if (!wait_for_completion_interruptible_timeout(done, expire)) {
+		usb_kill_urb(urb);
+		status = urb->status == -ENOENT ? -ETIMEDOUT : urb->status;
+
+		dev_dbg(&urb->dev->dev,
+			"%s timed out on ep%d%s len=%d/%d, urb status = %d\n",
+			current->comm,
+			usb_pipeendpoint(urb->pipe),
+			usb_pipein(urb->pipe) ? "in" : "out",
+			urb->actual_length,
+			urb->transfer_buffer_length,
+			urb->status);
+
+	} else {
+		if (signal_pending(current)) {
+			/* if really an error */
+			if (urb->status && !((urb->status == -ENOENT)     ||
+					     (urb->status == -ECONNRESET) ||
+					     (urb->status == -ESHUTDOWN))) {
+				status = -EINTR;
+				usb_kill_urb(urb);
+			} else {
+				status = 0;
+			}
+
+			dev_dbg(&urb->dev->dev,
+				"%s: signal pending on ep%d%s len=%d/%d,"
+				"urb status = %d\n",
+				current->comm,
+				usb_pipeendpoint(urb->pipe),
+				usb_pipein(urb->pipe) ? "in" : "out",
+				urb->actual_length,
+				urb->transfer_buffer_length,
+				urb->status);
+
+		} else {
+			status = urb->status;
+		}
+	}
+
+	if (actual_length)
+		*actual_length = urb->actual_length;
+
+	return status;
+}
+
+static ssize_t vstusb_read(struct file *file, char __user *buffer,
+			   size_t count, loff_t *ppos)
+{
+	struct vstusb_device *vstdev;
+	int cnt = -1;
+	void *buf;
+	int retval = 0;
+
+	struct urb              *urb;
+	struct usb_device       *dev;
+	unsigned int            pipe;
+	int                     timeout;
+
+	DECLARE_COMPLETION_ONSTACK(done);
+
+	vstdev = file->private_data;
+
+	if (vstdev == NULL)
+		return -ENODEV;
+
+	/* verify that we actually want to read some data */
+	if ((count == 0) || (count > VST_MAXBUFFER))
+		return -EINVAL;
+
+	/* lock this object */
+	if (mutex_lock_interruptible(&vstdev->lock))
+		return -ERESTARTSYS;
+
+	/* anyone home */
+	if (!vstdev->present) {
+		mutex_unlock(&vstdev->lock);
+		printk(KERN_ERR KBUILD_MODNAME
+		       ": %s: device not present\n", __func__);
+		return -ENODEV;
+	}
+
+	/* pull out the necessary data */
+	dev =     vstdev->usb_dev;
+	pipe =    usb_rcvbulkpipe(dev, vstdev->rd_pipe);
+	timeout = vstdev->rd_timeout_ms;
+
+	buf = kmalloc(count, GFP_KERNEL);
+	if (buf == NULL) {
+		mutex_unlock(&vstdev->lock);
+		return -ENOMEM;
+	}
+
+	urb = usb_alloc_urb(0, GFP_KERNEL);
+	if (!urb) {
+		kfree(buf);
+		mutex_unlock(&vstdev->lock);
+		return -ENOMEM;
+	}
+
+	usb_anchor_urb(urb, &vstdev->submitted);
+	retval = vstusb_fill_and_send_urb(urb, dev, pipe, buf, count, &done);
+	mutex_unlock(&vstdev->lock);
+	if (retval) {
+		usb_unanchor_urb(urb);
+		dev_err(&dev->dev, "%s: error %d filling and sending urb %d\n",
+			__func__, retval, pipe);
+		goto exit;
+	}
+
+	retval = vstusb_complete_urb(urb, &done, timeout, &cnt);
+	if (retval) {
+		dev_err(&dev->dev, "%s: error %d completing urb %d\n",
+			__func__, retval, pipe);
+		goto exit;
+	}
+
+	if (copy_to_user(buffer, buf, cnt)) {
+		dev_err(&dev->dev, "%s: can't copy_to_user\n", __func__);
+		retval = -EFAULT;
+	} else {
+		retval = cnt;
+		dev_dbg(&dev->dev, "%s: read %d bytes from pipe %d\n",
+			__func__, cnt, pipe);
+	}
+
+exit:
+	usb_free_urb(urb);
+	kfree(buf);
+	return retval;
+}
+
+static ssize_t vstusb_write(struct file *file, const char __user *buffer,
+			    size_t count, loff_t *ppos)
+{
+	struct vstusb_device *vstdev;
+	int cnt = -1;
+	void *buf;
+	int retval = 0;
+
+	struct urb              *urb;
+	struct usb_device       *dev;
+	unsigned int            pipe;
+	int                     timeout;
+
+	DECLARE_COMPLETION_ONSTACK(done);
+
+	vstdev = file->private_data;
+
+	if (vstdev == NULL)
+		return -ENODEV;
+
+	/* verify that we actually have some data to write */
+	if ((count == 0) || (count > VST_MAXBUFFER))
+		return retval;
+
+	/* lock this object */
+	if (mutex_lock_interruptible(&vstdev->lock))
+		return -ERESTARTSYS;
+
+	/* anyone home */
+	if (!vstdev->present) {
+		mutex_unlock(&vstdev->lock);
+		printk(KERN_ERR KBUILD_MODNAME
+		       ": %s: device not present\n", __func__);
+		return -ENODEV;
+	}
+
+	/* pull out the necessary data */
+	dev =     vstdev->usb_dev;
+	pipe =    usb_sndbulkpipe(dev, vstdev->wr_pipe);
+	timeout = vstdev->wr_timeout_ms;
+
+	buf = kmalloc(count, GFP_KERNEL);
+	if (buf == NULL) {
+		mutex_unlock(&vstdev->lock);
+		return -ENOMEM;
+	}
+
+	urb = usb_alloc_urb(0, GFP_KERNEL);
+	if (!urb) {
+		kfree(buf);
+		mutex_unlock(&vstdev->lock);
+		return -ENOMEM;
+	}
+
+	if (copy_from_user(buf, buffer, count)) {
+		dev_err(&dev->dev, "%s: can't copy_from_user\n", __func__);
+		retval = -EFAULT;
+		goto exit;
+	}
+
+	usb_anchor_urb(urb, &vstdev->submitted);
+	retval = vstusb_fill_and_send_urb(urb, dev, pipe, buf, count, &done);
+	mutex_unlock(&vstdev->lock);
+	if (retval) {
+		usb_unanchor_urb(urb);
+		dev_err(&dev->dev, "%s: error %d filling and sending urb %d\n",
+			__func__, retval, pipe);
+		goto exit;
+	}
+
+	retval = vstusb_complete_urb(urb, &done, timeout, &cnt);
+	if (retval) {
+		dev_err(&dev->dev, "%s: error %d completing urb %d\n",
+			__func__, retval, pipe);
+		goto exit;
+	} else {
+		retval = cnt;
+		dev_dbg(&dev->dev, "%s: sent %d bytes to pipe %d\n",
+			__func__, cnt, pipe);
+	}
+
+exit:
+	usb_free_urb(urb);
+	kfree(buf);
+	return retval;
+}
+
+static long vstusb_ioctl(struct file *file, unsigned int cmd, unsigned long arg)
+{
+	int retval = 0;
+	int cnt = -1;
+	void __user *data = (void __user *)arg;
+	struct vstusb_args usb_data;
+
+	struct vstusb_device *vstdev;
+	void *buffer = NULL; /* must be initialized. buffer is
+			      *	referenced on exit but not all
+			      * ioctls allocate it */
+
+	struct urb              *urb = NULL; /* must be initialized. urb is
+					      *	referenced on exit but not all
+					      * ioctls allocate it */
+	struct usb_device       *dev;
+	unsigned int            pipe;
+	int                     timeout;
+
+	DECLARE_COMPLETION_ONSTACK(done);
+
+	vstdev = file->private_data;
+
+	if (_IOC_TYPE(cmd) != VST_IOC_MAGIC) {
+		dev_warn(&vstdev->usb_dev->dev,
+			 "%s: ioctl command %x, bad ioctl magic %x, "
+			 "expected %x\n", __func__, cmd,
+			 _IOC_TYPE(cmd), VST_IOC_MAGIC);
+		return -EINVAL;
+	}
+
+	if (vstdev == NULL)
+		return -ENODEV;
+
+	if (copy_from_user(&usb_data, data, sizeof(struct vstusb_args))) {
+		dev_err(&vstdev->usb_dev->dev, "%s: can't copy_from_user\n",
+			__func__);
+		return -EFAULT;
+	}
+
+	/* lock this object */
+	if (mutex_lock_interruptible(&vstdev->lock)) {
+		retval = -ERESTARTSYS;
+		goto exit;
+	}
+
+	/* anyone home */
+	if (!vstdev->present) {
+		mutex_unlock(&vstdev->lock);
+		dev_err(&vstdev->usb_dev->dev, "%s: device not present\n",
+			__func__);
+		retval = -ENODEV;
+		goto exit;
+	}
+
+	/* pull out the necessary data */
+	dev = vstdev->usb_dev;
+
+	switch (cmd) {
+
+	case IOCTL_VSTUSB_CONFIG_RW:
+
+		vstdev->rd_pipe = usb_data.rd_pipe;
+		vstdev->rd_timeout_ms = usb_data.rd_timeout_ms;
+		vstdev->wr_pipe = usb_data.wr_pipe;
+		vstdev->wr_timeout_ms = usb_data.wr_timeout_ms;
+
+		mutex_unlock(&vstdev->lock);
+
+		dev_dbg(&dev->dev, "%s: setting pipes/timeouts, "
+			"rdpipe = %d, rdtimeout = %d, "
+			"wrpipe = %d, wrtimeout = %d\n", __func__,
+			vstdev->rd_pipe, vstdev->rd_timeout_ms,
+			vstdev->wr_pipe, vstdev->wr_timeout_ms);
+		break;
+
+	case IOCTL_VSTUSB_SEND_PIPE:
+
+		if ((usb_data.count == 0) || (usb_data.count > VST_MAXBUFFER)) {
+			mutex_unlock(&vstdev->lock);
+			retval = -EINVAL;
+			goto exit;
+		}
+
+		buffer = kmalloc(usb_data.count, GFP_KERNEL);
+		if (buffer == NULL) {
+			mutex_unlock(&vstdev->lock);
+			retval = -ENOMEM;
+			goto exit;
+		}
+
+		urb = usb_alloc_urb(0, GFP_KERNEL);
+		if (!urb) {
+			mutex_unlock(&vstdev->lock);
+			retval = -ENOMEM;
+			goto exit;
+		}
+
+		timeout = usb_data.timeout_ms;
+
+		pipe = usb_sndbulkpipe(dev, usb_data.pipe);
+
+		if (copy_from_user(buffer, usb_data.buffer, usb_data.count)) {
+			dev_err(&dev->dev, "%s: can't copy_from_user\n",
+				__func__);
+			mutex_unlock(&vstdev->lock);
+			retval = -EFAULT;
+			goto exit;
+		}
+
+		usb_anchor_urb(urb, &vstdev->submitted);
+		retval = vstusb_fill_and_send_urb(urb, dev, pipe, buffer,
+						  usb_data.count, &done);
+		mutex_unlock(&vstdev->lock);
+		if (retval) {
+			usb_unanchor_urb(urb);
+			dev_err(&dev->dev,
+				"%s: error %d filling and sending urb %d\n",
+				__func__, retval, pipe);
+			goto exit;
+		}
+
+		retval = vstusb_complete_urb(urb, &done, timeout, &cnt);
+		if (retval) {
+			dev_err(&dev->dev, "%s: error %d completing urb %d\n",
+				__func__, retval, pipe);
+		}
+
+		break;
+	case IOCTL_VSTUSB_RECV_PIPE:
+
+		if ((usb_data.count == 0) || (usb_data.count > VST_MAXBUFFER)) {
+			mutex_unlock(&vstdev->lock);
+			retval = -EINVAL;
+			goto exit;
+		}
+
+		buffer = kmalloc(usb_data.count, GFP_KERNEL);
+		if (buffer == NULL) {
+			mutex_unlock(&vstdev->lock);
+			retval = -ENOMEM;
+			goto exit;
+		}
+
+		urb = usb_alloc_urb(0, GFP_KERNEL);
+		if (!urb) {
+			mutex_unlock(&vstdev->lock);
+			retval = -ENOMEM;
+			goto exit;
+		}
+
+		timeout = usb_data.timeout_ms;
+
+		pipe = usb_rcvbulkpipe(dev, usb_data.pipe);
+
+		usb_anchor_urb(urb, &vstdev->submitted);
+		retval = vstusb_fill_and_send_urb(urb, dev, pipe, buffer,
+						  usb_data.count, &done);
+		mutex_unlock(&vstdev->lock);
+		if (retval) {
+			usb_unanchor_urb(urb);
+			dev_err(&dev->dev,
+				"%s: error %d filling and sending urb %d\n",
+				__func__, retval, pipe);
+			goto exit;
+		}
+
+		retval = vstusb_complete_urb(urb, &done, timeout, &cnt);
+		if (retval) {
+			dev_err(&dev->dev, "%s: error %d completing urb %d\n",
+				__func__, retval, pipe);
+			goto exit;
+		}
+
+		if (copy_to_user(usb_data.buffer, buffer, cnt)) {
+			dev_err(&dev->dev, "%s: can't copy_to_user\n",
+				__func__);
+			retval = -EFAULT;
+			goto exit;
+		}
+
+		usb_data.count = cnt;
+		if (copy_to_user(data, &usb_data, sizeof(struct vstusb_args))) {
+			dev_err(&dev->dev, "%s: can't copy_to_user\n",
+				__func__);
+			retval = -EFAULT;
+		} else {
+			dev_dbg(&dev->dev, "%s: recv %d bytes from pipe %d\n",
+				__func__, usb_data.count, usb_data.pipe);
+		}
+
+		break;
+
+	default:
+		mutex_unlock(&vstdev->lock);
+		dev_warn(&dev->dev, "ioctl_vstusb: invalid ioctl cmd %x\n",
+			 cmd);
+		return -EINVAL;
+		break;
+	}
+exit:
+	usb_free_urb(urb);
+	kfree(buffer);
+	return retval;
+}
+
+static const struct file_operations vstusb_fops = {
+	.owner =                THIS_MODULE,
+	.read =                 vstusb_read,
+	.write =                vstusb_write,
+	.unlocked_ioctl =       vstusb_ioctl,
+	.compat_ioctl =         vstusb_ioctl,
+	.open =                 vstusb_open,
+	.release =              vstusb_release,
+};
+
+static struct usb_class_driver usb_vstusb_class = {
+	.name =         "usb/vstusb%d",
+	.fops =         &vstusb_fops,
+	.minor_base =   VSTUSB_MINOR_BASE,
+};
+
+static int vstusb_probe(struct usb_interface *intf,
+			const struct usb_device_id *id)
+{
+	struct usb_device *dev = interface_to_usbdev(intf);
+	struct vstusb_device *vstdev;
+	int i;
+	int retval = 0;
+
+	/* allocate memory for our device state and intialize it */
+
+	vstdev = kzalloc(sizeof(*vstdev), GFP_KERNEL);
+	if (vstdev == NULL)
+		return -ENOMEM;
+
+	/* must do usb_get_dev() prior to kref_init() since the kref_put()
+	 * release function will do a usb_put_dev() */
+	usb_get_dev(dev);
+	kref_init(&vstdev->kref);
+	mutex_init(&vstdev->lock);
+
+	i = dev->descriptor.bcdDevice;
+
+	dev_dbg(&intf->dev, "Version %1d%1d.%1d%1d found at address %d\n",
+		(i & 0xF000) >> 12, (i & 0xF00) >> 8,
+		(i & 0xF0) >> 4, (i & 0xF), dev->devnum);
+
+	vstdev->present = 1;
+	vstdev->isopen = 0;
+	vstdev->usb_dev = dev;
+	init_usb_anchor(&vstdev->submitted);
+
+	usb_set_intfdata(intf, vstdev);
+	retval = usb_register_dev(intf, &usb_vstusb_class);
+	if (retval) {
+		dev_err(&intf->dev,
+			"%s: Not able to get a minor for this device.\n",
+			__func__);
+		usb_set_intfdata(intf, NULL);
+		kref_put(&vstdev->kref, vstusb_delete);
+		return retval;
+	}
+
+	/* let the user know what node this device is now attached to */
+	dev_info(&intf->dev,
+		 "VST USB Device #%d now attached to major %d minor %d\n",
+		 (intf->minor - VSTUSB_MINOR_BASE), USB_MAJOR, intf->minor);
+
+	dev_info(&intf->dev, "%s, %s\n", DRIVER_DESC, DRIVER_VERSION);
+
+	return retval;
+}
+
+static void vstusb_disconnect(struct usb_interface *intf)
+{
+	struct vstusb_device *vstdev = usb_get_intfdata(intf);
+
+	usb_deregister_dev(intf, &usb_vstusb_class);
+	usb_set_intfdata(intf, NULL);
+
+	if (vstdev) {
+
+		mutex_lock(&vstdev->lock);
+		vstdev->present = 0;
+
+		usb_kill_anchored_urbs(&vstdev->submitted);
+
+		mutex_unlock(&vstdev->lock);
+
+		kref_put(&vstdev->kref, vstusb_delete);
+	}
+
+}
+
+static int vstusb_suspend(struct usb_interface *intf, pm_message_t message)
+{
+	struct vstusb_device *vstdev = usb_get_intfdata(intf);
+	int time;
+	if (!vstdev)
+		return 0;
+
+	mutex_lock(&vstdev->lock);
+	time = usb_wait_anchor_empty_timeout(&vstdev->submitted, 1000);
+	if (!time)
+		usb_kill_anchored_urbs(&vstdev->submitted);
+	mutex_unlock(&vstdev->lock);
+
+	return 0;
+}
+
+static int vstusb_resume(struct usb_interface *intf)
+{
+	return 0;
+}
+
+static struct usb_driver vstusb_driver = {
+	.name =         "vstusb",
+	.probe =        vstusb_probe,
+	.disconnect =   vstusb_disconnect,
+	.suspend =      vstusb_suspend,
+	.resume =       vstusb_resume,
+	.id_table = id_table,
+};
+
+static int __init vstusb_init(void)
+{
+	int rc;
+
+	rc = usb_register(&vstusb_driver);
+	if (rc)
+		printk(KERN_ERR "%s: failed to register (%d)", __func__, rc);
+
+	return rc;
+}
+
+static void __exit vstusb_exit(void)
+{
+	usb_deregister(&vstusb_driver);
+}
+
+module_init(vstusb_init);
+module_exit(vstusb_exit);
+
+MODULE_AUTHOR("Dennis O'Brien/Stephen Ware");
+MODULE_DESCRIPTION(DRIVER_VERSION);
+MODULE_LICENSE("GPL");
diff --git a/drivers/usb/mon/mon_main.c b/drivers/usb/mon/mon_main.c
index 442d807..5e0ab42 100644
--- a/drivers/usb/mon/mon_main.c
+++ b/drivers/usb/mon/mon_main.c
@@ -361,12 +361,12 @@
 	}
 	// MOD_INC_USE_COUNT(which_module?);
 
-	usb_register_notify(&mon_nb);
 
 	mutex_lock(&usb_bus_list_lock);
 	list_for_each_entry (ubus, &usb_bus_list, bus_list) {
 		mon_bus_init(ubus);
 	}
+	usb_register_notify(&mon_nb);
 	mutex_unlock(&usb_bus_list_lock);
 	return 0;
 
diff --git a/drivers/usb/musb/Kconfig b/drivers/usb/musb/Kconfig
index 58b2b8f..4b9542b 100644
--- a/drivers/usb/musb/Kconfig
+++ b/drivers/usb/musb/Kconfig
@@ -33,10 +33,6 @@
 	default y if ARCH_DAVINCI
 	default y if ARCH_OMAP2430
 	default y if ARCH_OMAP34XX
-	help
-	  Use a static <asm/arch/hdrc_cnf.h> file to describe how the
-	  controller is configured (endpoints, mechanisms, etc) on the
-	  current iteration of a given system-on-chip.
 
 comment "DaVinci 644x USB support"
 	depends on USB_MUSB_HDRC && ARCH_DAVINCI
diff --git a/drivers/usb/musb/cppi_dma.h b/drivers/usb/musb/cppi_dma.h
index fc5216b..729b407 100644
--- a/drivers/usb/musb/cppi_dma.h
+++ b/drivers/usb/musb/cppi_dma.h
@@ -119,8 +119,8 @@
 	void __iomem			*mregs;		/* Mentor regs */
 	void __iomem			*tibase;	/* TI/CPPI regs */
 
-	struct cppi_channel		tx[MUSB_C_NUM_EPT - 1];
-	struct cppi_channel		rx[MUSB_C_NUM_EPR - 1];
+	struct cppi_channel		tx[4];
+	struct cppi_channel		rx[4];
 
 	struct dma_pool			*pool;
 
diff --git a/drivers/usb/musb/davinci.c b/drivers/usb/musb/davinci.c
index 75baf18..dfb3bcb 100644
--- a/drivers/usb/musb/davinci.c
+++ b/drivers/usb/musb/davinci.c
@@ -30,6 +30,7 @@
 #include <linux/delay.h>
 #include <linux/clk.h>
 #include <linux/io.h>
+#include <linux/gpio.h>
 
 #include <asm/arch/hardware.h>
 #include <asm/arch/memory.h>
@@ -39,7 +40,7 @@
 #include "musb_core.h"
 
 #ifdef CONFIG_MACH_DAVINCI_EVM
-#include <asm/arch/i2c-client.h>
+#define GPIO_nVBUS_DRV		87
 #endif
 
 #include "davinci.h"
@@ -138,7 +139,6 @@
 /* VBUS SWITCHING IS BOARD-SPECIFIC */
 
 #ifdef CONFIG_MACH_DAVINCI_EVM
-#ifndef CONFIG_MACH_DAVINCI_EVM_OTG
 
 /* I2C operations are always synchronous, and require a task context.
  * With unloaded systems, using the shared workqueue seems to suffice
@@ -146,12 +146,11 @@
  */
 static void evm_deferred_drvvbus(struct work_struct *ignored)
 {
-	davinci_i2c_expander_op(0x3a, USB_DRVVBUS, vbus_state);
+	gpio_set_value_cansleep(GPIO_nVBUS_DRV, vbus_state);
 	vbus_state = !vbus_state;
 }
 static DECLARE_WORK(evm_vbus_work, evm_deferred_drvvbus);
 
-#endif	/* modified board */
 #endif	/* EVM */
 
 static void davinci_source_power(struct musb *musb, int is_on, int immediate)
@@ -165,21 +164,10 @@
 
 #ifdef CONFIG_MACH_DAVINCI_EVM
 	if (machine_is_davinci_evm()) {
-#ifdef CONFIG_MACH_DAVINCI_EVM_OTG
-		/* modified EVM board switching VBUS with GPIO(6) not I2C
-		 * NOTE:  PINMUX0.RGB888 (bit23) must be clear
-		 */
-		if (is_on)
-			gpio_set(GPIO(6));
-		else
-			gpio_clear(GPIO(6));
-		immediate = 1;
-#else
 		if (immediate)
-			davinci_i2c_expander_op(0x3a, USB_DRVVBUS, !is_on);
+			gpio_set_value_cansleep(GPIO_nVBUS_DRV, vbus_state);
 		else
 			schedule_work(&evm_vbus_work);
-#endif
 	}
 #endif
 	if (immediate)
diff --git a/drivers/usb/musb/musb_core.c b/drivers/usb/musb/musb_core.c
index 128e949..4a35745 100644
--- a/drivers/usb/musb/musb_core.c
+++ b/drivers/usb/musb/musb_core.c
@@ -82,9 +82,9 @@
 /*
  * This gets many kinds of configuration information:
  *	- Kconfig for everything user-configurable
- *	- <asm/arch/hdrc_cnf.h> for SOC or family details
  *	- platform_device for addressing, irq, and platform_data
  *	- platform_data is mostly for board-specific informarion
+ *	  (plus recentrly, SOC or family details)
  *
  * Most of the conditional compilation will (someday) vanish.
  */
@@ -974,9 +974,9 @@
 /*
  * The silicon either has hard-wired endpoint configurations, or else
  * "dynamic fifo" sizing.  The driver has support for both, though at this
- * writing only the dynamic sizing is very well tested.   We use normal
- * idioms to so both modes are compile-tested, but dead code elimination
- * leaves only the relevant one in the object file.
+ * writing only the dynamic sizing is very well tested.   Since we switched
+ * away from compile-time hardware parameters, we can no longer rely on
+ * dead code elimination to leave only the relevant one in the object file.
  *
  * We don't currently use dynamic fifo setup capability to do anything
  * more than selecting one of a bunch of predefined configurations.
@@ -1806,6 +1806,7 @@
 	musb->ctrl_base = mbase;
 	musb->nIrq = -ENODEV;
 	musb->config = config;
+	BUG_ON(musb->config->num_eps > MUSB_C_NUM_EPS);
 	for (epnum = 0, ep = musb->endpoints;
 			epnum < musb->config->num_eps;
 			epnum++, ep++) {
@@ -2054,15 +2055,6 @@
 
 	}
 
-	return 0;
-
-fail:
-	if (musb->clock)
-		clk_put(musb->clock);
-	device_init_wakeup(dev, 0);
-	musb_free(musb);
-	return status;
-
 #ifdef CONFIG_SYSFS
 	status = device_create_file(dev, &dev_attr_mode);
 	status = device_create_file(dev, &dev_attr_vbus);
@@ -2071,12 +2063,31 @@
 #endif /* CONFIG_USB_GADGET_MUSB_HDRC */
 	status = 0;
 #endif
+	if (status)
+		goto fail2;
+
+	return 0;
+
+fail2:
+#ifdef CONFIG_SYSFS
+	device_remove_file(musb->controller, &dev_attr_mode);
+	device_remove_file(musb->controller, &dev_attr_vbus);
+#ifdef CONFIG_USB_MUSB_OTG
+	device_remove_file(musb->controller, &dev_attr_srp);
+#endif
+#endif
+	musb_platform_exit(musb);
+fail:
+	dev_err(musb->controller,
+		"musb_init_controller failed with status %d\n", status);
+
+	if (musb->clock)
+		clk_put(musb->clock);
+	device_init_wakeup(dev, 0);
+	musb_free(musb);
 
 	return status;
 
-fail2:
-	musb_platform_exit(musb);
-	goto fail;
 }
 
 /*-------------------------------------------------------------------------*/
diff --git a/drivers/usb/musb/musb_gadget_ep0.c b/drivers/usb/musb/musb_gadget_ep0.c
index a57652f..3f5e30d 100644
--- a/drivers/usb/musb/musb_gadget_ep0.c
+++ b/drivers/usb/musb/musb_gadget_ep0.c
@@ -437,7 +437,7 @@
 {
 	void __iomem		*regs = musb->control_ep->regs;
 	struct usb_request	*req;
-	u16			tmp;
+	u16			count, csr;
 
 	req = next_ep0_request(musb);
 
@@ -449,35 +449,35 @@
 		unsigned	len = req->length - req->actual;
 
 		/* read the buffer */
-		tmp = musb_readb(regs, MUSB_COUNT0);
-		if (tmp > len) {
+		count = musb_readb(regs, MUSB_COUNT0);
+		if (count > len) {
 			req->status = -EOVERFLOW;
-			tmp = len;
+			count = len;
 		}
-		musb_read_fifo(&musb->endpoints[0], tmp, buf);
-		req->actual += tmp;
-		tmp = MUSB_CSR0_P_SVDRXPKTRDY;
-		if (tmp < 64 || req->actual == req->length) {
+		musb_read_fifo(&musb->endpoints[0], count, buf);
+		req->actual += count;
+		csr = MUSB_CSR0_P_SVDRXPKTRDY;
+		if (count < 64 || req->actual == req->length) {
 			musb->ep0_state = MUSB_EP0_STAGE_STATUSIN;
-			tmp |= MUSB_CSR0_P_DATAEND;
+			csr |= MUSB_CSR0_P_DATAEND;
 		} else
 			req = NULL;
 	} else
-		tmp = MUSB_CSR0_P_SVDRXPKTRDY | MUSB_CSR0_P_SENDSTALL;
+		csr = MUSB_CSR0_P_SVDRXPKTRDY | MUSB_CSR0_P_SENDSTALL;
 
 
 	/* Completion handler may choose to stall, e.g. because the
 	 * message just received holds invalid data.
 	 */
 	if (req) {
-		musb->ackpend = tmp;
+		musb->ackpend = csr;
 		musb_g_ep0_giveback(musb, req);
 		if (!musb->ackpend)
 			return;
 		musb->ackpend = 0;
 	}
 	musb_ep_select(musb->mregs, 0);
-	musb_writew(regs, MUSB_CSR0, tmp);
+	musb_writew(regs, MUSB_CSR0, csr);
 }
 
 /*
diff --git a/drivers/usb/musb/musb_host.c b/drivers/usb/musb/musb_host.c
index 8b4be01..3133990 100644
--- a/drivers/usb/musb/musb_host.c
+++ b/drivers/usb/musb/musb_host.c
@@ -108,7 +108,7 @@
 /*
  * Clear TX fifo. Needed to avoid BABBLE errors.
  */
-static inline void musb_h_tx_flush_fifo(struct musb_hw_ep *ep)
+static void musb_h_tx_flush_fifo(struct musb_hw_ep *ep)
 {
 	void __iomem	*epio = ep->regs;
 	u16		csr;
@@ -291,6 +291,7 @@
 			urb->actual_length, urb->transfer_buffer_length
 			);
 
+	usb_hcd_unlink_urb_from_ep(musb_to_hcd(musb), urb);
 	spin_unlock(&musb->lock);
 	usb_hcd_giveback_urb(musb_to_hcd(musb), urb, status);
 	spin_lock(&musb->lock);
@@ -353,8 +354,6 @@
 		break;
 	}
 
-	usb_hcd_unlink_urb_from_ep(musb_to_hcd(musb), urb);
-
 	qh->is_ready = 0;
 	__musb_giveback(musb, urb, status);
 	qh->is_ready = ready;
@@ -436,7 +435,7 @@
 	}
 }
 
-static inline u16 musb_h_flush_rxfifo(struct musb_hw_ep *hw_ep, u16 csr)
+static u16 musb_h_flush_rxfifo(struct musb_hw_ep *hw_ep, u16 csr)
 {
 	/* we don't want fifo to fill itself again;
 	 * ignore dma (various models),
@@ -1005,7 +1004,7 @@
 
 /*
  * Handle default endpoint interrupt as host. Only called in IRQ time
- * from the LinuxIsr() interrupt service routine.
+ * from musb_interrupt().
  *
  * called with controller irqlocked
  */
@@ -1791,7 +1790,9 @@
 	 */
 	qh = kzalloc(sizeof *qh, mem_flags);
 	if (!qh) {
+		spin_lock_irqsave(&musb->lock, flags);
 		usb_hcd_unlink_urb_from_ep(hcd, urb);
+		spin_unlock_irqrestore(&musb->lock, flags);
 		return -ENOMEM;
 	}
 
@@ -1873,7 +1874,11 @@
 			/* set up tt info if needed */
 			if (urb->dev->tt) {
 				qh->h_port_reg = (u8) urb->dev->ttport;
-				qh->h_addr_reg |= 0x80;
+				if (urb->dev->tt->hub)
+					qh->h_addr_reg =
+						(u8) urb->dev->tt->hub->devnum;
+				if (urb->dev->tt->multi)
+					qh->h_addr_reg |= 0x80;
 			}
 		}
 	}
@@ -1903,7 +1908,9 @@
 
 done:
 	if (ret != 0) {
+		spin_lock_irqsave(&musb->lock, flags);
 		usb_hcd_unlink_urb_from_ep(hcd, urb);
+		spin_unlock_irqrestore(&musb->lock, flags);
 		kfree(qh);
 	}
 	return ret;
diff --git a/drivers/usb/musb/musb_io.h b/drivers/usb/musb/musb_io.h
index 6bbedae..223f0a5 100644
--- a/drivers/usb/musb/musb_io.h
+++ b/drivers/usb/musb/musb_io.h
@@ -37,7 +37,9 @@
 
 #include <linux/io.h>
 
-#ifndef	CONFIG_ARM
+#if !defined(CONFIG_ARM) && !defined(CONFIG_SUPERH) \
+	&& !defined(CONFIG_AVR32) && !defined(CONFIG_PPC32) \
+	&& !defined(CONFIG_PPC64)
 static inline void readsl(const void __iomem *addr, void *buf, int len)
 	{ insl((unsigned long)addr, buf, len); }
 static inline void readsw(const void __iomem *addr, void *buf, int len)
diff --git a/drivers/usb/musb/musbhsdma.c b/drivers/usb/musb/musbhsdma.c
index 9ba8fb7..8c734ef 100644
--- a/drivers/usb/musb/musbhsdma.c
+++ b/drivers/usb/musb/musbhsdma.c
@@ -45,8 +45,8 @@
 #define MUSB_HSDMA_ADDRESS		0x8
 #define MUSB_HSDMA_COUNT		0xc
 
-#define MUSB_HSDMA_CHANNEL_OFFSET(_bChannel, _offset)		\
-		(MUSB_HSDMA_BASE + (_bChannel << 4) + _offset)
+#define MUSB_HSDMA_CHANNEL_OFFSET(_bchannel, _offset)		\
+		(MUSB_HSDMA_BASE + (_bchannel << 4) + _offset)
 
 /* control register (16-bit): */
 #define MUSB_HSDMA_ENABLE_SHIFT		0
@@ -67,23 +67,23 @@
 struct musb_dma_controller;
 
 struct musb_dma_channel {
-	struct dma_channel		Channel;
+	struct dma_channel		channel;
 	struct musb_dma_controller	*controller;
-	u32				dwStartAddress;
+	u32				start_addr;
 	u32				len;
-	u16				wMaxPacketSize;
-	u8				bIndex;
+	u16				max_packet_sz;
+	u8				idx;
 	u8				epnum;
 	u8				transmit;
 };
 
 struct musb_dma_controller {
-	struct dma_controller		Controller;
-	struct musb_dma_channel		aChannel[MUSB_HSDMA_CHANNELS];
-	void				*pDmaPrivate;
-	void __iomem			*pCoreBase;
-	u8				bChannelCount;
-	u8				bmUsedChannels;
+	struct dma_controller		controller;
+	struct musb_dma_channel		channel[MUSB_HSDMA_CHANNELS];
+	void				*private_data;
+	void __iomem			*base;
+	u8				channel_count;
+	u8				used_channels;
 	u8				irq;
 };
 
@@ -93,91 +93,91 @@
 	return 0;
 }
 
-static void dma_channel_release(struct dma_channel *pChannel);
+static void dma_channel_release(struct dma_channel *channel);
 
 static int dma_controller_stop(struct dma_controller *c)
 {
-	struct musb_dma_controller *controller =
-		container_of(c, struct musb_dma_controller, Controller);
-	struct musb *musb = (struct musb *) controller->pDmaPrivate;
-	struct dma_channel *pChannel;
-	u8 bBit;
+	struct musb_dma_controller *controller = container_of(c,
+			struct musb_dma_controller, controller);
+	struct musb *musb = controller->private_data;
+	struct dma_channel *channel;
+	u8 bit;
 
-	if (controller->bmUsedChannels != 0) {
+	if (controller->used_channels != 0) {
 		dev_err(musb->controller,
 			"Stopping DMA controller while channel active\n");
 
-		for (bBit = 0; bBit < MUSB_HSDMA_CHANNELS; bBit++) {
-			if (controller->bmUsedChannels & (1 << bBit)) {
-				pChannel = &controller->aChannel[bBit].Channel;
-				dma_channel_release(pChannel);
+		for (bit = 0; bit < MUSB_HSDMA_CHANNELS; bit++) {
+			if (controller->used_channels & (1 << bit)) {
+				channel = &controller->channel[bit].channel;
+				dma_channel_release(channel);
 
-				if (!controller->bmUsedChannels)
+				if (!controller->used_channels)
 					break;
 			}
 		}
 	}
+
 	return 0;
 }
 
 static struct dma_channel *dma_channel_allocate(struct dma_controller *c,
 				struct musb_hw_ep *hw_ep, u8 transmit)
 {
-	u8 bBit;
-	struct dma_channel *pChannel = NULL;
-	struct musb_dma_channel *pImplChannel = NULL;
-	struct musb_dma_controller *controller =
-			container_of(c, struct musb_dma_controller, Controller);
+	struct musb_dma_controller *controller = container_of(c,
+			struct musb_dma_controller, controller);
+	struct musb_dma_channel *musb_channel = NULL;
+	struct dma_channel *channel = NULL;
+	u8 bit;
 
-	for (bBit = 0; bBit < MUSB_HSDMA_CHANNELS; bBit++) {
-		if (!(controller->bmUsedChannels & (1 << bBit))) {
-			controller->bmUsedChannels |= (1 << bBit);
-			pImplChannel = &(controller->aChannel[bBit]);
-			pImplChannel->controller = controller;
-			pImplChannel->bIndex = bBit;
-			pImplChannel->epnum = hw_ep->epnum;
-			pImplChannel->transmit = transmit;
-			pChannel = &(pImplChannel->Channel);
-			pChannel->private_data = pImplChannel;
-			pChannel->status = MUSB_DMA_STATUS_FREE;
-			pChannel->max_len = 0x10000;
+	for (bit = 0; bit < MUSB_HSDMA_CHANNELS; bit++) {
+		if (!(controller->used_channels & (1 << bit))) {
+			controller->used_channels |= (1 << bit);
+			musb_channel = &(controller->channel[bit]);
+			musb_channel->controller = controller;
+			musb_channel->idx = bit;
+			musb_channel->epnum = hw_ep->epnum;
+			musb_channel->transmit = transmit;
+			channel = &(musb_channel->channel);
+			channel->private_data = musb_channel;
+			channel->status = MUSB_DMA_STATUS_FREE;
+			channel->max_len = 0x10000;
 			/* Tx => mode 1; Rx => mode 0 */
-			pChannel->desired_mode = transmit;
-			pChannel->actual_len = 0;
+			channel->desired_mode = transmit;
+			channel->actual_len = 0;
 			break;
 		}
 	}
-	return pChannel;
+
+	return channel;
 }
 
-static void dma_channel_release(struct dma_channel *pChannel)
+static void dma_channel_release(struct dma_channel *channel)
 {
-	struct musb_dma_channel *pImplChannel =
-		(struct musb_dma_channel *) pChannel->private_data;
+	struct musb_dma_channel *musb_channel = channel->private_data;
 
-	pChannel->actual_len = 0;
-	pImplChannel->dwStartAddress = 0;
-	pImplChannel->len = 0;
+	channel->actual_len = 0;
+	musb_channel->start_addr = 0;
+	musb_channel->len = 0;
 
-	pImplChannel->controller->bmUsedChannels &=
-		~(1 << pImplChannel->bIndex);
+	musb_channel->controller->used_channels &=
+		~(1 << musb_channel->idx);
 
-	pChannel->status = MUSB_DMA_STATUS_UNKNOWN;
+	channel->status = MUSB_DMA_STATUS_UNKNOWN;
 }
 
-static void configure_channel(struct dma_channel *pChannel,
+static void configure_channel(struct dma_channel *channel,
 				u16 packet_sz, u8 mode,
 				dma_addr_t dma_addr, u32 len)
 {
-	struct musb_dma_channel *pImplChannel =
-		(struct musb_dma_channel *) pChannel->private_data;
-	struct musb_dma_controller *controller = pImplChannel->controller;
-	void __iomem *mbase = controller->pCoreBase;
-	u8 bChannel = pImplChannel->bIndex;
+	struct musb_dma_channel *musb_channel = channel->private_data;
+	struct musb_dma_controller *controller = musb_channel->controller;
+	void __iomem *mbase = controller->base;
+	u8 bchannel = musb_channel->idx;
 	u16 csr = 0;
 
 	DBG(4, "%p, pkt_sz %d, addr 0x%x, len %d, mode %d\n",
-			pChannel, packet_sz, dma_addr, len, mode);
+			channel, packet_sz, dma_addr, len, mode);
 
 	if (mode) {
 		csr |= 1 << MUSB_HSDMA_MODE1_SHIFT;
@@ -195,180 +195,183 @@
 		}
 	}
 
-	csr |= (pImplChannel->epnum << MUSB_HSDMA_ENDPOINT_SHIFT)
+	csr |= (musb_channel->epnum << MUSB_HSDMA_ENDPOINT_SHIFT)
 		| (1 << MUSB_HSDMA_ENABLE_SHIFT)
 		| (1 << MUSB_HSDMA_IRQENABLE_SHIFT)
-		| (pImplChannel->transmit
+		| (musb_channel->transmit
 				? (1 << MUSB_HSDMA_TRANSMIT_SHIFT)
 				: 0);
 
 	/* address/count */
 	musb_writel(mbase,
-		MUSB_HSDMA_CHANNEL_OFFSET(bChannel, MUSB_HSDMA_ADDRESS),
+		MUSB_HSDMA_CHANNEL_OFFSET(bchannel, MUSB_HSDMA_ADDRESS),
 		dma_addr);
 	musb_writel(mbase,
-		MUSB_HSDMA_CHANNEL_OFFSET(bChannel, MUSB_HSDMA_COUNT),
+		MUSB_HSDMA_CHANNEL_OFFSET(bchannel, MUSB_HSDMA_COUNT),
 		len);
 
 	/* control (this should start things) */
 	musb_writew(mbase,
-		MUSB_HSDMA_CHANNEL_OFFSET(bChannel, MUSB_HSDMA_CONTROL),
+		MUSB_HSDMA_CHANNEL_OFFSET(bchannel, MUSB_HSDMA_CONTROL),
 		csr);
 }
 
-static int dma_channel_program(struct dma_channel *pChannel,
+static int dma_channel_program(struct dma_channel *channel,
 				u16 packet_sz, u8 mode,
 				dma_addr_t dma_addr, u32 len)
 {
-	struct musb_dma_channel *pImplChannel =
-			(struct musb_dma_channel *) pChannel->private_data;
+	struct musb_dma_channel *musb_channel = channel->private_data;
 
 	DBG(2, "ep%d-%s pkt_sz %d, dma_addr 0x%x length %d, mode %d\n",
-		pImplChannel->epnum,
-		pImplChannel->transmit ? "Tx" : "Rx",
+		musb_channel->epnum,
+		musb_channel->transmit ? "Tx" : "Rx",
 		packet_sz, dma_addr, len, mode);
 
-	BUG_ON(pChannel->status == MUSB_DMA_STATUS_UNKNOWN ||
-		pChannel->status == MUSB_DMA_STATUS_BUSY);
+	BUG_ON(channel->status == MUSB_DMA_STATUS_UNKNOWN ||
+		channel->status == MUSB_DMA_STATUS_BUSY);
 
-	pChannel->actual_len = 0;
-	pImplChannel->dwStartAddress = dma_addr;
-	pImplChannel->len = len;
-	pImplChannel->wMaxPacketSize = packet_sz;
-	pChannel->status = MUSB_DMA_STATUS_BUSY;
+	channel->actual_len = 0;
+	musb_channel->start_addr = dma_addr;
+	musb_channel->len = len;
+	musb_channel->max_packet_sz = packet_sz;
+	channel->status = MUSB_DMA_STATUS_BUSY;
 
 	if ((mode == 1) && (len >= packet_sz))
-		configure_channel(pChannel, packet_sz, 1, dma_addr, len);
+		configure_channel(channel, packet_sz, 1, dma_addr, len);
 	else
-		configure_channel(pChannel, packet_sz, 0, dma_addr, len);
+		configure_channel(channel, packet_sz, 0, dma_addr, len);
 
 	return true;
 }
 
-static int dma_channel_abort(struct dma_channel *pChannel)
+static int dma_channel_abort(struct dma_channel *channel)
 {
-	struct musb_dma_channel *pImplChannel =
-		(struct musb_dma_channel *) pChannel->private_data;
-	u8 bChannel = pImplChannel->bIndex;
-	void __iomem *mbase = pImplChannel->controller->pCoreBase;
+	struct musb_dma_channel *musb_channel = channel->private_data;
+	void __iomem *mbase = musb_channel->controller->base;
+
+	u8 bchannel = musb_channel->idx;
 	u16 csr;
 
-	if (pChannel->status == MUSB_DMA_STATUS_BUSY) {
-		if (pImplChannel->transmit) {
+	if (channel->status == MUSB_DMA_STATUS_BUSY) {
+		if (musb_channel->transmit) {
 
 			csr = musb_readw(mbase,
-				MUSB_EP_OFFSET(pImplChannel->epnum,
+				MUSB_EP_OFFSET(musb_channel->epnum,
 						MUSB_TXCSR));
 			csr &= ~(MUSB_TXCSR_AUTOSET |
 				 MUSB_TXCSR_DMAENAB |
 				 MUSB_TXCSR_DMAMODE);
 			musb_writew(mbase,
-				MUSB_EP_OFFSET(pImplChannel->epnum,
-						MUSB_TXCSR),
+				MUSB_EP_OFFSET(musb_channel->epnum, MUSB_TXCSR),
 				csr);
 		} else {
 			csr = musb_readw(mbase,
-				MUSB_EP_OFFSET(pImplChannel->epnum,
+				MUSB_EP_OFFSET(musb_channel->epnum,
 						MUSB_RXCSR));
 			csr &= ~(MUSB_RXCSR_AUTOCLEAR |
 				 MUSB_RXCSR_DMAENAB |
 				 MUSB_RXCSR_DMAMODE);
 			musb_writew(mbase,
-				MUSB_EP_OFFSET(pImplChannel->epnum,
-						MUSB_RXCSR),
+				MUSB_EP_OFFSET(musb_channel->epnum, MUSB_RXCSR),
 				csr);
 		}
 
 		musb_writew(mbase,
-			MUSB_HSDMA_CHANNEL_OFFSET(bChannel, MUSB_HSDMA_CONTROL),
+			MUSB_HSDMA_CHANNEL_OFFSET(bchannel, MUSB_HSDMA_CONTROL),
 			0);
 		musb_writel(mbase,
-			MUSB_HSDMA_CHANNEL_OFFSET(bChannel, MUSB_HSDMA_ADDRESS),
+			MUSB_HSDMA_CHANNEL_OFFSET(bchannel, MUSB_HSDMA_ADDRESS),
 			0);
 		musb_writel(mbase,
-			MUSB_HSDMA_CHANNEL_OFFSET(bChannel, MUSB_HSDMA_COUNT),
+			MUSB_HSDMA_CHANNEL_OFFSET(bchannel, MUSB_HSDMA_COUNT),
 			0);
 
-		pChannel->status = MUSB_DMA_STATUS_FREE;
+		channel->status = MUSB_DMA_STATUS_FREE;
 	}
+
 	return 0;
 }
 
 static irqreturn_t dma_controller_irq(int irq, void *private_data)
 {
-	struct musb_dma_controller *controller =
-		(struct musb_dma_controller *)private_data;
-	struct musb_dma_channel *pImplChannel;
-	struct musb *musb = controller->pDmaPrivate;
-	void __iomem *mbase = controller->pCoreBase;
-	struct dma_channel *pChannel;
-	u8 bChannel;
-	u16 csr;
-	u32 dwAddress;
-	u8 int_hsdma;
+	struct musb_dma_controller *controller = private_data;
+	struct musb *musb = controller->private_data;
+	struct musb_dma_channel *musb_channel;
+	struct dma_channel *channel;
+
+	void __iomem *mbase = controller->base;
+
 	irqreturn_t retval = IRQ_NONE;
+
 	unsigned long flags;
 
+	u8 bchannel;
+	u8 int_hsdma;
+
+	u32 addr;
+	u16 csr;
+
 	spin_lock_irqsave(&musb->lock, flags);
 
 	int_hsdma = musb_readb(mbase, MUSB_HSDMA_INTR);
 	if (!int_hsdma)
 		goto done;
 
-	for (bChannel = 0; bChannel < MUSB_HSDMA_CHANNELS; bChannel++) {
-		if (int_hsdma & (1 << bChannel)) {
-			pImplChannel = (struct musb_dma_channel *)
-					&(controller->aChannel[bChannel]);
-			pChannel = &pImplChannel->Channel;
+	for (bchannel = 0; bchannel < MUSB_HSDMA_CHANNELS; bchannel++) {
+		if (int_hsdma & (1 << bchannel)) {
+			musb_channel = (struct musb_dma_channel *)
+					&(controller->channel[bchannel]);
+			channel = &musb_channel->channel;
 
 			csr = musb_readw(mbase,
-					MUSB_HSDMA_CHANNEL_OFFSET(bChannel,
+					MUSB_HSDMA_CHANNEL_OFFSET(bchannel,
 							MUSB_HSDMA_CONTROL));
 
-			if (csr & (1 << MUSB_HSDMA_BUSERROR_SHIFT))
-				pImplChannel->Channel.status =
+			if (csr & (1 << MUSB_HSDMA_BUSERROR_SHIFT)) {
+				musb_channel->channel.status =
 					MUSB_DMA_STATUS_BUS_ABORT;
-			else {
+			} else {
 				u8 devctl;
 
-				dwAddress = musb_readl(mbase,
+				addr = musb_readl(mbase,
 						MUSB_HSDMA_CHANNEL_OFFSET(
-							bChannel,
+							bchannel,
 							MUSB_HSDMA_ADDRESS));
-				pChannel->actual_len = dwAddress
-					- pImplChannel->dwStartAddress;
+				channel->actual_len = addr
+					- musb_channel->start_addr;
 
 				DBG(2, "ch %p, 0x%x -> 0x%x (%d / %d) %s\n",
-					pChannel, pImplChannel->dwStartAddress,
-					dwAddress, pChannel->actual_len,
-					pImplChannel->len,
-					(pChannel->actual_len
-						< pImplChannel->len) ?
+					channel, musb_channel->start_addr,
+					addr, channel->actual_len,
+					musb_channel->len,
+					(channel->actual_len
+						< musb_channel->len) ?
 					"=> reconfig 0" : "=> complete");
 
 				devctl = musb_readb(mbase, MUSB_DEVCTL);
 
-				pChannel->status = MUSB_DMA_STATUS_FREE;
+				channel->status = MUSB_DMA_STATUS_FREE;
 
 				/* completed */
 				if ((devctl & MUSB_DEVCTL_HM)
-					&& (pImplChannel->transmit)
-					&& ((pChannel->desired_mode == 0)
-					    || (pChannel->actual_len &
-					    (pImplChannel->wMaxPacketSize - 1)))
+					&& (musb_channel->transmit)
+					&& ((channel->desired_mode == 0)
+					    || (channel->actual_len &
+					    (musb_channel->max_packet_sz - 1)))
 					 ) {
 					/* Send out the packet */
 					musb_ep_select(mbase,
-						pImplChannel->epnum);
+						musb_channel->epnum);
 					musb_writew(mbase, MUSB_EP_OFFSET(
-							pImplChannel->epnum,
+							musb_channel->epnum,
 							MUSB_TXCSR),
 						MUSB_TXCSR_TXPKTRDY);
-				} else
+				} else {
 					musb_dma_completion(
 						musb,
-						pImplChannel->epnum,
-						pImplChannel->transmit);
+						musb_channel->epnum,
+						musb_channel->transmit);
+				}
 			}
 		}
 	}
@@ -380,9 +383,9 @@
 
 void dma_controller_destroy(struct dma_controller *c)
 {
-	struct musb_dma_controller *controller;
+	struct musb_dma_controller *controller = container_of(c,
+			struct musb_dma_controller, controller);
 
-	controller = container_of(c, struct musb_dma_controller, Controller);
 	if (!controller)
 		return;
 
@@ -393,7 +396,7 @@
 }
 
 struct dma_controller *__init
-dma_controller_create(struct musb *musb, void __iomem *pCoreBase)
+dma_controller_create(struct musb *musb, void __iomem *base)
 {
 	struct musb_dma_controller *controller;
 	struct device *dev = musb->controller;
@@ -405,29 +408,30 @@
 		return NULL;
 	}
 
-	controller = kzalloc(sizeof(struct musb_dma_controller), GFP_KERNEL);
+	controller = kzalloc(sizeof(*controller), GFP_KERNEL);
 	if (!controller)
 		return NULL;
 
-	controller->bChannelCount = MUSB_HSDMA_CHANNELS;
-	controller->pDmaPrivate = musb;
-	controller->pCoreBase = pCoreBase;
+	controller->channel_count = MUSB_HSDMA_CHANNELS;
+	controller->private_data = musb;
+	controller->base = base;
 
-	controller->Controller.start = dma_controller_start;
-	controller->Controller.stop = dma_controller_stop;
-	controller->Controller.channel_alloc = dma_channel_allocate;
-	controller->Controller.channel_release = dma_channel_release;
-	controller->Controller.channel_program = dma_channel_program;
-	controller->Controller.channel_abort = dma_channel_abort;
+	controller->controller.start = dma_controller_start;
+	controller->controller.stop = dma_controller_stop;
+	controller->controller.channel_alloc = dma_channel_allocate;
+	controller->controller.channel_release = dma_channel_release;
+	controller->controller.channel_program = dma_channel_program;
+	controller->controller.channel_abort = dma_channel_abort;
 
 	if (request_irq(irq, dma_controller_irq, IRQF_DISABLED,
-			musb->controller->bus_id, &controller->Controller)) {
+			musb->controller->bus_id, &controller->controller)) {
 		dev_err(dev, "request_irq %d failed!\n", irq);
-		dma_controller_destroy(&controller->Controller);
+		dma_controller_destroy(&controller->controller);
+
 		return NULL;
 	}
 
 	controller->irq = irq;
 
-	return &controller->Controller;
+	return &controller->controller;
 }
diff --git a/drivers/usb/serial/aircable.c b/drivers/usb/serial/aircable.c
index 99fb7dc..537f953 100644
--- a/drivers/usb/serial/aircable.c
+++ b/drivers/usb/serial/aircable.c
@@ -220,8 +220,8 @@
 
 	buf = kzalloc(count + HCI_HEADER_LENGTH, GFP_ATOMIC);
 	if (!buf) {
-		err("%s- kzalloc(%d) failed.", __func__,
-		    count + HCI_HEADER_LENGTH);
+		dev_err(&port->dev, "%s- kzalloc(%d) failed.\n",
+			__func__, count + HCI_HEADER_LENGTH);
 		return;
 	}
 
@@ -276,7 +276,7 @@
 
 	if (!tty) {
 		schedule_work(&priv->rx_work);
-		err("%s - No tty available", __func__);
+		dev_err(&port->dev, "%s - No tty available\n", __func__);
 		return ;
 	}
 
@@ -336,7 +336,7 @@
 
 	priv = kzalloc(sizeof(struct aircable_private), GFP_KERNEL);
 	if (!priv) {
-		err("%s- kmalloc(%Zd) failed.", __func__,
+		dev_err(&port->dev, "%s- kmalloc(%Zd) failed.\n", __func__,
 			sizeof(struct aircable_private));
 		return -ENOMEM;
 	}
diff --git a/drivers/usb/serial/belkin_sa.c b/drivers/usb/serial/belkin_sa.c
index 1913bc7..b7eacad 100644
--- a/drivers/usb/serial/belkin_sa.c
+++ b/drivers/usb/serial/belkin_sa.c
@@ -187,7 +187,7 @@
 	/* see comments at top of file */
 	priv->bad_flow_control =
 		(le16_to_cpu(dev->descriptor.bcdDevice) <= 0x0206) ? 1 : 0;
-	info("bcdDevice: %04x, bfc: %d",
+	dev_info(&dev->dev, "bcdDevice: %04x, bfc: %d\n",
 					le16_to_cpu(dev->descriptor.bcdDevice),
 					priv->bad_flow_control);
 
@@ -228,7 +228,7 @@
 	port->read_urb->dev = port->serial->dev;
 	retval = usb_submit_urb(port->read_urb, GFP_KERNEL);
 	if (retval) {
-		err("usb_submit_urb(read bulk) failed");
+		dev_err(&port->dev, "usb_submit_urb(read bulk) failed\n");
 		goto exit;
 	}
 
@@ -236,7 +236,7 @@
 	retval = usb_submit_urb(port->interrupt_in_urb, GFP_KERNEL);
 	if (retval) {
 		usb_kill_urb(port->read_urb);
-		err(" usb_submit_urb(read int) failed");
+		dev_err(&port->dev, "usb_submit_urb(read int) failed\n");
 	}
 
 exit:
@@ -342,8 +342,8 @@
 exit:
 	retval = usb_submit_urb(urb, GFP_ATOMIC);
 	if (retval)
-		err("%s - usb_submit_urb failed with result %d",
-		     __func__, retval);
+		dev_err(&port->dev, "%s - usb_submit_urb failed with "
+			"result %d\n", __func__, retval);
 }
 
 static void belkin_sa_set_termios(struct tty_struct *tty,
@@ -382,12 +382,12 @@
 		if ((old_cflag & CBAUD) == B0) {
 			control_state |= (TIOCM_DTR|TIOCM_RTS);
 			if (BSA_USB_CMD(BELKIN_SA_SET_DTR_REQUEST, 1) < 0)
-				err("Set DTR error");
+				dev_err(&port->dev, "Set DTR error\n");
 			/* don't set RTS if using hardware flow control */
 			if (!(old_cflag & CRTSCTS))
 				if (BSA_USB_CMD(BELKIN_SA_SET_RTS_REQUEST
 								, 1) < 0)
-					err("Set RTS error");
+					dev_err(&port->dev, "Set RTS error\n");
 		}
 	}
 
@@ -403,18 +403,18 @@
 		/* Report the actual baud rate back to the caller */
 		tty_encode_baud_rate(tty, baud, baud);
 		if (BSA_USB_CMD(BELKIN_SA_SET_BAUDRATE_REQUEST, urb_value) < 0)
-			err("Set baudrate error");
+			dev_err(&port->dev, "Set baudrate error\n");
 	} else {
 		/* Disable flow control */
 		if (BSA_USB_CMD(BELKIN_SA_SET_FLOW_CTRL_REQUEST,
 						BELKIN_SA_FLOW_NONE) < 0)
-			err("Disable flowcontrol error");
+			dev_err(&port->dev, "Disable flowcontrol error\n");
 		/* Drop RTS and DTR */
 		control_state &= ~(TIOCM_DTR | TIOCM_RTS);
 		if (BSA_USB_CMD(BELKIN_SA_SET_DTR_REQUEST, 0) < 0)
-			err("DTR LOW error");
+			dev_err(&port->dev, "DTR LOW error\n");
 		if (BSA_USB_CMD(BELKIN_SA_SET_RTS_REQUEST, 0) < 0)
-			err("RTS LOW error");
+			dev_err(&port->dev, "RTS LOW error\n");
 	}
 
 	/* set the parity */
@@ -425,7 +425,7 @@
 		else
 			urb_value = BELKIN_SA_PARITY_NONE;
 		if (BSA_USB_CMD(BELKIN_SA_SET_PARITY_REQUEST, urb_value) < 0)
-			err("Set parity error");
+			dev_err(&port->dev, "Set parity error\n");
 	}
 
 	/* set the number of data bits */
@@ -448,7 +448,7 @@
 			break;
 		}
 		if (BSA_USB_CMD(BELKIN_SA_SET_DATA_BITS_REQUEST, urb_value) < 0)
-			err("Set data bits error");
+			dev_err(&port->dev, "Set data bits error\n");
 	}
 
 	/* set the number of stop bits */
@@ -457,7 +457,7 @@
 						: BELKIN_SA_STOP_BITS(1);
 		if (BSA_USB_CMD(BELKIN_SA_SET_STOP_BITS_REQUEST,
 							urb_value) < 0)
-			err("Set stop bits error");
+			dev_err(&port->dev, "Set stop bits error\n");
 	}
 
 	/* Set flow control */
@@ -478,7 +478,7 @@
 			urb_value &= ~(BELKIN_SA_FLOW_IRTS);
 
 		if (BSA_USB_CMD(BELKIN_SA_SET_FLOW_CTRL_REQUEST, urb_value) < 0)
-			err("Set flow control error");
+			dev_err(&port->dev, "Set flow control error\n");
 	}
 
 	/* save off the modified port settings */
@@ -494,7 +494,7 @@
 	struct usb_serial *serial = port->serial;
 
 	if (BSA_USB_CMD(BELKIN_SA_SET_BREAK_REQUEST, break_state ? 1 : 0) < 0)
-		err("Set break_ctl %d", break_state);
+		dev_err(&port->dev, "Set break_ctl %d\n", break_state);
 }
 
 
@@ -554,13 +554,13 @@
 
 	retval = BSA_USB_CMD(BELKIN_SA_SET_RTS_REQUEST, rts);
 	if (retval < 0) {
-		err("Set RTS error %d", retval);
+		dev_err(&port->dev, "Set RTS error %d\n", retval);
 		goto exit;
 	}
 
 	retval = BSA_USB_CMD(BELKIN_SA_SET_DTR_REQUEST, dtr);
 	if (retval < 0) {
-		err("Set DTR error %d", retval);
+		dev_err(&port->dev, "Set DTR error %d\n", retval);
 		goto exit;
 	}
 exit:
@@ -577,7 +577,8 @@
 	retval = usb_register(&belkin_driver);
 	if (retval)
 		goto failed_usb_register;
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 failed_usb_register:
 	usb_serial_deregister(&belkin_device);
diff --git a/drivers/usb/serial/cp2101.c b/drivers/usb/serial/cp2101.c
index 1279553..8008d0b 100644
--- a/drivers/usb/serial/cp2101.c
+++ b/drivers/usb/serial/cp2101.c
@@ -753,7 +753,8 @@
 	}
 
 	/* Success */
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 }
 
diff --git a/drivers/usb/serial/cyberjack.c b/drivers/usb/serial/cyberjack.c
index 94ef36c..858bdd0 100644
--- a/drivers/usb/serial/cyberjack.c
+++ b/drivers/usb/serial/cyberjack.c
@@ -141,7 +141,8 @@
 		result = usb_submit_urb(serial->port[i]->interrupt_in_urb,
 					GFP_KERNEL);
 		if (result)
-			err(" usb_submit_urb(read int) failed");
+			dev_err(&serial->dev->dev,
+				"usb_submit_urb(read int) failed\n");
 		dbg("%s - usb_submit_urb(int urb)", __func__);
 	}
 
@@ -274,8 +275,9 @@
 		/* send the data out the bulk port */
 		result = usb_submit_urb(port->write_urb, GFP_ATOMIC);
 		if (result) {
-			err("%s - failed submitting write urb, error %d",
-							__func__, result);
+			dev_err(&port->dev,
+				"%s - failed submitting write urb, error %d",
+				__func__, result);
 			/* Throw away data. No better idea what to do with it. */
 			priv->wrfilled = 0;
 			priv->wrsent = 0;
@@ -351,7 +353,9 @@
 			port->read_urb->dev = port->serial->dev;
 			result = usb_submit_urb(port->read_urb, GFP_ATOMIC);
 			if (result)
-				err("%s - failed resubmitting read urb, error %d", __func__, result);
+				dev_err(&port->dev, "%s - failed resubmitting "
+					"read urb, error %d\n",
+					__func__, result);
 			dbg("%s - usb_submit_urb(read urb)", __func__);
 		}
 	}
@@ -360,7 +364,7 @@
 	port->interrupt_in_urb->dev = port->serial->dev;
 	result = usb_submit_urb(port->interrupt_in_urb, GFP_ATOMIC);
 	if (result)
-		err(" usb_submit_urb(read int) failed");
+		dev_err(&port->dev, "usb_submit_urb(read int) failed\n");
 	dbg("%s - usb_submit_urb(int urb)", __func__);
 }
 
@@ -414,8 +418,8 @@
 		port->read_urb->dev = port->serial->dev;
 		result = usb_submit_urb(port->read_urb, GFP_ATOMIC);
 		if (result)
-			err("%s - failed resubmitting read urb, error %d",
-				__func__, result);
+			dev_err(&port->dev, "%s - failed resubmitting read "
+				"urb, error %d\n", __func__, result);
 		dbg("%s - usb_submit_urb(read urb)", __func__);
 	}
 }
@@ -462,8 +466,9 @@
 		/* send the data out the bulk port */
 		result = usb_submit_urb(port->write_urb, GFP_ATOMIC);
 		if (result) {
-			err("%s - failed submitting write urb, error %d",
-								__func__, result);
+			dev_err(&port->dev,
+				"%s - failed submitting write urb, error %d\n",
+				__func__, result);
 			/* Throw away data. No better idea what to do with it. */
 			priv->wrfilled = 0;
 			priv->wrsent = 0;
@@ -499,8 +504,9 @@
 	if (retval)
 		goto failed_usb_register;
 
-	info(DRIVER_VERSION " " DRIVER_AUTHOR);
-	info(DRIVER_DESC);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION " "
+	       DRIVER_AUTHOR "\n");
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_DESC "\n");
 
 	return 0;
 failed_usb_register:
diff --git a/drivers/usb/serial/cypress_m8.c b/drivers/usb/serial/cypress_m8.c
index f3514a9..eae4740 100644
--- a/drivers/usb/serial/cypress_m8.c
+++ b/drivers/usb/serial/cypress_m8.c
@@ -404,8 +404,8 @@
 			 retval != -ENODEV);
 
 		if (retval != sizeof(feature_buffer)) {
-			err("%s - failed sending serial line settings - %d",
-							__func__, retval);
+			dev_err(&port->dev, "%s - failed sending serial "
+				"line settings - %d\n", __func__, retval);
 			cypress_set_dead(port);
 		} else {
 			spin_lock_irqsave(&priv->lock, flags);
@@ -443,7 +443,8 @@
 						&& retval != -ENODEV);
 
 		if (retval != sizeof(feature_buffer)) {
-			err("%s - failed to retrieve serial line settings - %d", __func__, retval);
+			dev_err(&port->dev, "%s - failed to retrieve serial "
+				"line settings - %d\n", __func__, retval);
 			cypress_set_dead(port);
 			return retval;
 		} else {
@@ -476,8 +477,8 @@
 	priv->comm_is_ok = 0;
 	spin_unlock_irqrestore(&priv->lock, flags);
 
-	err("cypress_m8 suspending failing port %d - interval might be too short",
-	    port->number);
+	dev_err(&port->dev, "cypress_m8 suspending failing port %d - "
+		"interval might be too short\n", port->number);
 }
 
 
@@ -679,7 +680,8 @@
 
 	/* setup the port and start reading from the device */
 	if (!port->interrupt_in_urb) {
-		err("%s - interrupt_in_urb is empty!", __func__);
+		dev_err(&port->dev, "%s - interrupt_in_urb is empty!\n",
+			__func__);
 		return -1;
 	}
 
@@ -1107,8 +1109,8 @@
 		data_bits = 3;
 		break;
 	default:
-		err("%s - CSIZE was set, but not CS5-CS8",
-				__func__);
+		dev_err(&port->dev, "%s - CSIZE was set, but not CS5-CS8\n",
+			__func__);
 		data_bits = 3;
 	}
 	spin_lock_irqsave(&priv->lock, flags);
@@ -1658,7 +1660,8 @@
 	if (retval)
 		goto failed_usb_register;
 
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 
 failed_usb_register:
diff --git a/drivers/usb/serial/digi_acceleport.c b/drivers/usb/serial/digi_acceleport.c
index 5756ac6..69f84f0 100644
--- a/drivers/usb/serial/digi_acceleport.c
+++ b/drivers/usb/serial/digi_acceleport.c
@@ -661,7 +661,8 @@
 	}
 	spin_unlock_irqrestore(&oob_priv->dp_port_lock, flags);
 	if (ret)
-		err("%s: usb_submit_urb failed, ret=%d", __func__, ret);
+		dev_err(&port->dev, "%s: usb_submit_urb failed, ret=%d\n",
+			__func__, ret);
 	return ret;
 
 }
@@ -743,7 +744,8 @@
 	spin_unlock_irqrestore(&priv->dp_port_lock, flags);
 
 	if (ret)
-		err("%s: usb_submit_urb failed, ret=%d, port=%d",
+		dev_err(&port->dev,
+			"%s: usb_submit_urb failed, ret=%d, port=%d\n",
 			__func__, ret, priv->dp_port_num);
 	return ret;
 }
@@ -812,7 +814,8 @@
 	spin_unlock(&port_priv->dp_port_lock);
 	spin_unlock_irqrestore(&oob_priv->dp_port_lock, flags);
 	if (ret)
-		err("%s: usb_submit_urb failed, ret=%d", __func__, ret);
+		dev_err(&port->dev, "%s: usb_submit_urb failed, ret=%d\n",
+			__func__, ret);
 	return ret;
 }
 
@@ -907,7 +910,8 @@
 	spin_unlock_irqrestore(&priv->dp_port_lock, flags);
 
 	if (ret)
-		err("%s: usb_submit_urb failed, ret=%d, port=%d",
+		dev_err(&port->dev,
+			"%s: usb_submit_urb failed, ret=%d, port=%d\n",
 			__func__, ret, priv->dp_port_num);
 }
 
@@ -1214,7 +1218,8 @@
 	/* return length of new data written, or error */
 	spin_unlock_irqrestore(&priv->dp_port_lock, flags);
 	if (ret < 0)
-		err("%s: usb_submit_urb failed, ret=%d, port=%d",
+		dev_err(&port->dev,
+			"%s: usb_submit_urb failed, ret=%d, port=%d\n",
 			__func__, ret, priv->dp_port_num);
 	dbg("digi_write: returning %d", ret);
 	return ret;
@@ -1235,14 +1240,16 @@
 
 	/* port and serial sanity check */
 	if (port == NULL || (priv = usb_get_serial_port_data(port)) == NULL) {
-		err("%s: port or port->private is NULL, status=%d",
-		    __func__, status);
+		dev_err(&port->dev,
+			"%s: port or port->private is NULL, status=%d\n",
+			__func__, status);
 		return;
 	}
 	serial = port->serial;
 	if (serial == NULL || (serial_priv = usb_get_serial_data(serial)) == NULL) {
-		err("%s: serial or serial->private is NULL, status=%d",
-		    __func__, status);
+		dev_err(&port->dev,
+			"%s: serial or serial->private is NULL, status=%d\n",
+			__func__, status);
 		return;
 	}
 
@@ -1284,7 +1291,8 @@
 
 	spin_unlock(&priv->dp_port_lock);
 	if (ret)
-		err("%s: usb_submit_urb failed, ret=%d, port=%d",
+		dev_err(&port->dev,
+			"%s: usb_submit_urb failed, ret=%d, port=%d\n",
 			__func__, ret, priv->dp_port_num);
 }
 
@@ -1518,8 +1526,9 @@
 		port->write_urb->dev = port->serial->dev;
 		ret = usb_submit_urb(port->read_urb, GFP_KERNEL);
 		if (ret != 0) {
-			err("%s: usb_submit_urb failed, ret=%d, port=%d",
-					__func__, ret, i);
+			dev_err(&port->dev,
+				"%s: usb_submit_urb failed, ret=%d, port=%d\n",
+				__func__, ret, i);
 			break;
 		}
 	}
@@ -1618,22 +1627,26 @@
 	dbg("digi_read_bulk_callback: TOP");
 
 	/* port sanity check, do not resubmit if port is not valid */
-	if (port == NULL || (priv = usb_get_serial_port_data(port)) == NULL) {
-		err("%s: port or port->private is NULL, status=%d",
-		    __func__, status);
+	if (port == NULL)
+		return;
+	priv = usb_get_serial_port_data(port);
+	if (priv == NULL) {
+		dev_err(&port->dev, "%s: port->private is NULL, status=%d\n",
+			__func__, status);
 		return;
 	}
 	if (port->serial == NULL ||
 		(serial_priv = usb_get_serial_data(port->serial)) == NULL) {
-		err("%s: serial is bad or serial->private is NULL, status=%d",
-			__func__, status);
+		dev_err(&port->dev, "%s: serial is bad or serial->private "
+			"is NULL, status=%d\n", __func__, status);
 		return;
 	}
 
 	/* do not resubmit urb if it has any status error */
 	if (status) {
-		err("%s: nonzero read bulk status: status=%d, port=%d",
-		    __func__, status, priv->dp_port_num);
+		dev_err(&port->dev,
+			"%s: nonzero read bulk status: status=%d, port=%d\n",
+			__func__, status, priv->dp_port_num);
 		return;
 	}
 
@@ -1650,8 +1663,9 @@
 	urb->dev = port->serial->dev;
 	ret = usb_submit_urb(urb, GFP_ATOMIC);
 	if (ret != 0) {
-		err("%s: failed resubmitting urb, ret=%d, port=%d",
-		    __func__, ret, priv->dp_port_num);
+		dev_err(&port->dev,
+			"%s: failed resubmitting urb, ret=%d, port=%d\n",
+			__func__, ret, priv->dp_port_num);
 	}
 
 }
@@ -1687,10 +1701,11 @@
 
 	/* short/multiple packet check */
 	if (urb->actual_length != len + 2) {
-		err("%s: INCOMPLETE OR MULTIPLE PACKET, urb->status=%d, "
-		    "port=%d, opcode=%d, len=%d, actual_length=%d, "
-		    "status=%d", __func__, status, priv->dp_port_num,
-		    opcode, len, urb->actual_length, port_status);
+		dev_err(&port->dev, "%s: INCOMPLETE OR MULTIPLE PACKET, "
+			"urb->status=%d, port=%d, opcode=%d, len=%d, "
+			"actual_length=%d, status=%d\n", __func__, status,
+			priv->dp_port_num, opcode, len, urb->actual_length,
+			port_status);
 		return -1;
 	}
 
@@ -1854,7 +1869,8 @@
 	retval = usb_register(&digi_driver);
 	if (retval)
 		goto failed_usb_register;
-	info(DRIVER_VERSION ":" DRIVER_DESC);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 failed_usb_register:
 	usb_serial_deregister(&digi_acceleport_4_device);
diff --git a/drivers/usb/serial/empeg.c b/drivers/usb/serial/empeg.c
index 1072e84..8a69cce 100644
--- a/drivers/usb/serial/empeg.c
+++ b/drivers/usb/serial/empeg.c
@@ -416,7 +416,7 @@
 	dbg("%s", __func__);
 
 	if (serial->dev->actconfig->desc.bConfigurationValue != 1) {
-		err("active config #%d != 1 ??",
+		dev_err(&serial->dev->dev, "active config #%d != 1 ??\n",
 			serial->dev->actconfig->desc.bConfigurationValue);
 		return -ENODEV;
 	}
@@ -499,15 +499,15 @@
 		urb = usb_alloc_urb(0, GFP_KERNEL);
 		write_urb_pool[i] = urb;
 		if (urb == NULL) {
-			err("No more urbs???");
+			printk(KERN_ERR "empeg: No more urbs???\n");
 			continue;
 		}
 
 		urb->transfer_buffer = kmalloc(URB_TRANSFER_BUFFER_SIZE,
 								GFP_KERNEL);
 		if (!urb->transfer_buffer) {
-			err("%s - out of memory for urb buffers.",
-			    __func__);
+			printk(KERN_ERR "empeg: %s - out of memory for urb "
+			       "buffers.", __func__);
 			continue;
 		}
 	}
@@ -519,7 +519,8 @@
 	if (retval)
 		goto failed_usb_register;
 
-	info(DRIVER_VERSION ":" DRIVER_DESC);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 
 	return 0;
 failed_usb_register:
diff --git a/drivers/usb/serial/ezusb.c b/drivers/usb/serial/ezusb.c
index 711e84f..3cfc762 100644
--- a/drivers/usb/serial/ezusb.c
+++ b/drivers/usb/serial/ezusb.c
@@ -28,7 +28,8 @@
 
 	/* dbg("ezusb_writememory %x, %d", address, length); */
 	if (!serial->dev) {
-		err("%s - no physical device present, failing.", __func__);
+		printk(KERN_ERR "ezusb: %s - no physical device present, "
+		       "failing.\n", __func__);
 		return -ENODEV;
 	}
 
diff --git a/drivers/usb/serial/ftdi_sio.c b/drivers/usb/serial/ftdi_sio.c
index c2ac129..51d7bde 100644
--- a/drivers/usb/serial/ftdi_sio.c
+++ b/drivers/usb/serial/ftdi_sio.c
@@ -578,6 +578,7 @@
 	{ USB_DEVICE(FALCOM_VID, FALCOM_TWIST_PID) },
 	{ USB_DEVICE(FALCOM_VID, FALCOM_SAMBA_PID) },
 	{ USB_DEVICE(FTDI_VID, FTDI_SUUNTO_SPORTS_PID) },
+	{ USB_DEVICE(FTDI_VID, FTDI_OCEANIC_PID) },
 	{ USB_DEVICE(TTI_VID, TTI_QL355P_PID) },
 	{ USB_DEVICE(FTDI_VID, FTDI_RM_CANVIEW_PID) },
 	{ USB_DEVICE(BANDB_VID, BANDB_USOTL4_PID) },
@@ -1153,7 +1154,7 @@
 		/* Assume its an FT232R  */
 		priv->chip_type = FT232RL;
 	}
-	info("Detected %s", ftdi_chip_name[priv->chip_type]);
+	dev_info(&udev->dev, "Detected %s\n", ftdi_chip_name[priv->chip_type]);
 }
 
 
@@ -1326,7 +1327,7 @@
 
 	priv = kzalloc(sizeof(struct ftdi_private), GFP_KERNEL);
 	if (!priv) {
-		err("%s- kmalloc(%Zd) failed.", __func__,
+		dev_err(&port->dev, "%s- kmalloc(%Zd) failed.\n", __func__,
 					sizeof(struct ftdi_private));
 		return -ENOMEM;
 	}
@@ -1409,7 +1410,8 @@
 	dbg("%s", __func__);
 
 	if (interface == udev->actconfig->interface[0]) {
-		info("Ignoring serial port reserved for JTAG");
+		dev_info(&udev->dev,
+			 "Ignoring serial port reserved for JTAG\n");
 		return -ENODEV;
 	}
 
@@ -1427,7 +1429,8 @@
 
 	if (ep->enabled && ep_desc->wMaxPacketSize == 0) {
 		ep_desc->wMaxPacketSize = cpu_to_le16(0x40);
-		info("Fixing invalid wMaxPacketSize on read pipe");
+		dev_info(&serial->dev->dev,
+			 "Fixing invalid wMaxPacketSize on read pipe\n");
 	}
 
 	return 0;
@@ -1521,8 +1524,9 @@
 			ftdi_read_bulk_callback, port);
 	result = usb_submit_urb(port->read_urb, GFP_KERNEL);
 	if (result)
-		err("%s - failed submitting read urb, error %d",
-							__func__, result);
+		dev_err(&port->dev,
+			"%s - failed submitting read urb, error %d\n",
+			__func__, result);
 
 
 	return result;
@@ -1556,7 +1560,7 @@
 				    FTDI_SIO_SET_FLOW_CTRL_REQUEST_TYPE,
 				    0, priv->interface, buf, 0,
 				    WDR_TIMEOUT) < 0) {
-			err("error from flowcontrol urb");
+			dev_err(&port->dev, "error from flowcontrol urb\n");
 		}
 
 		/* drop RTS and DTR */
@@ -1621,14 +1625,15 @@
 
 	buffer = kmalloc(transfer_size, GFP_ATOMIC);
 	if (!buffer) {
-		err("%s ran out of kernel memory for urb ...", __func__);
+		dev_err(&port->dev,
+			"%s ran out of kernel memory for urb ...\n", __func__);
 		count = -ENOMEM;
 		goto error_no_buffer;
 	}
 
 	urb = usb_alloc_urb(0, GFP_ATOMIC);
 	if (!urb) {
-		err("%s - no more free urbs", __func__);
+		dev_err(&port->dev, "%s - no more free urbs\n", __func__);
 		count = -ENOMEM;
 		goto error_no_urb;
 	}
@@ -1672,8 +1677,9 @@
 
 	status = usb_submit_urb(urb, GFP_ATOMIC);
 	if (status) {
-		err("%s - failed submitting write urb, error %d",
-							__func__, status);
+		dev_err(&port->dev,
+			"%s - failed submitting write urb, error %d\n",
+			__func__, status);
 		count = status;
 		goto error;
 	} else {
@@ -1780,7 +1786,8 @@
 	buffered = (int)priv->tx_outstanding_bytes;
 	spin_unlock_irqrestore(&priv->tx_lock, flags);
 	if (buffered < 0) {
-		err("%s outstanding tx bytes is negative!", __func__);
+		dev_err(&port->dev, "%s outstanding tx bytes is negative!\n",
+			__func__);
 		buffered = 0;
 	}
 	return buffered;
@@ -1796,11 +1803,12 @@
 	int status = urb->status;
 
 	if (urb->number_of_packets > 0) {
-		err("%s transfer_buffer_length %d actual_length %d number of packets %d",
-				__func__,
-				urb->transfer_buffer_length,
-				urb->actual_length, urb->number_of_packets);
-		err("%s transfer_flags %x ", __func__, urb->transfer_flags);
+		dev_err(&port->dev, "%s transfer_buffer_length %d "
+			"actual_length %d number of packets %d\n", __func__,
+			urb->transfer_buffer_length,
+			urb->actual_length, urb->number_of_packets);
+		dev_err(&port->dev, "%s transfer_flags %x\n", __func__,
+			urb->transfer_flags);
 	}
 
 	dbg("%s - port %d", __func__, port->number);
@@ -1821,7 +1829,7 @@
 	}
 
 	if (urb != port->read_urb)
-		err("%s - Not my urb!", __func__);
+		dev_err(&port->dev, "%s - Not my urb!\n", __func__);
 
 	if (status) {
 		/* This will happen at close every time so it is a dbg not an
@@ -1924,7 +1932,8 @@
 
 		length = min(PKTSZ, urb->actual_length-packet_offset)-2;
 		if (length < 0) {
-			err("%s - bad packet length: %d", __func__, length+2);
+			dev_err(&port->dev, "%s - bad packet length: %d\n",
+				__func__, length+2);
 			length = 0;
 		}
 
@@ -2039,8 +2048,9 @@
 
 		result = usb_submit_urb(port->read_urb, GFP_ATOMIC);
 		if (result)
-			err("%s - failed resubmitting read urb, error %d",
-							__func__, result);
+			dev_err(&port->dev,
+				"%s - failed resubmitting read urb, error %d\n",
+				__func__, result);
 	}
 out:
 	tty_kref_put(tty);
@@ -2069,8 +2079,8 @@
 			FTDI_SIO_SET_DATA_REQUEST_TYPE,
 			urb_value , priv->interface,
 			buf, 0, WDR_TIMEOUT) < 0) {
-		err("%s FAILED to enable/disable break state (state was %d)",
-							__func__, break_state);
+		dev_err(&port->dev, "%s FAILED to enable/disable break state "
+			"(state was %d)\n", __func__, break_state);
 	}
 
 	dbg("%s break state is %d - urb is %d", __func__,
@@ -2142,7 +2152,7 @@
 		case CS7: urb_value |= 7; dbg("Setting CS7"); break;
 		case CS8: urb_value |= 8; dbg("Setting CS8"); break;
 		default:
-			err("CSIZE was set but not CS5-CS8");
+			dev_err(&port->dev, "CSIZE was set but not CS5-CS8\n");
 		}
 	}
 
@@ -2155,7 +2165,8 @@
 			    FTDI_SIO_SET_DATA_REQUEST_TYPE,
 			    urb_value , priv->interface,
 			    buf, 0, WDR_SHORT_TIMEOUT) < 0) {
-		err("%s FAILED to set databits/stopbits/parity", __func__);
+		dev_err(&port->dev, "%s FAILED to set "
+			"databits/stopbits/parity\n", __func__);
 	}
 
 	/* Now do the baudrate */
@@ -2166,14 +2177,17 @@
 				    FTDI_SIO_SET_FLOW_CTRL_REQUEST_TYPE,
 				    0, priv->interface,
 				    buf, 0, WDR_TIMEOUT) < 0) {
-			err("%s error from disable flowcontrol urb", __func__);
+			dev_err(&port->dev,
+				"%s error from disable flowcontrol urb\n",
+				__func__);
 		}
 		/* Drop RTS and DTR */
 		clear_mctrl(port, TIOCM_DTR | TIOCM_RTS);
 	} else {
 		/* set the baudrate determined before */
 		if (change_speed(tty, port))
-			err("%s urb failed to set baudrate", __func__);
+			dev_err(&port->dev, "%s urb failed to set baudrate\n",
+				__func__);
 		/* Ensure RTS and DTR are raised when baudrate changed from 0 */
 		if (!old_termios || (old_termios->c_cflag & CBAUD) == B0)
 			set_mctrl(port, TIOCM_DTR | TIOCM_RTS);
@@ -2189,7 +2203,8 @@
 				    FTDI_SIO_SET_FLOW_CTRL_REQUEST_TYPE,
 				    0 , (FTDI_SIO_RTS_CTS_HS | priv->interface),
 				    buf, 0, WDR_TIMEOUT) < 0) {
-			err("urb failed to set to rts/cts flow control");
+			dev_err(&port->dev,
+				"urb failed to set to rts/cts flow control\n");
 		}
 
 	} else {
@@ -2220,7 +2235,8 @@
 					    urb_value , (FTDI_SIO_XON_XOFF_HS
 							 | priv->interface),
 					    buf, 0, WDR_TIMEOUT) < 0) {
-				err("urb failed to set to xon/xoff flow control");
+				dev_err(&port->dev, "urb failed to set to "
+					"xon/xoff flow control\n");
 			}
 		} else {
 			/* else clause to only run if cflag ! CRTSCTS and iflag
@@ -2233,7 +2249,8 @@
 					    FTDI_SIO_SET_FLOW_CTRL_REQUEST_TYPE,
 					    0, priv->interface,
 					    buf, 0, WDR_TIMEOUT) < 0) {
-				err("urb failed to clear flow control");
+				dev_err(&port->dev,
+					"urb failed to clear flow control\n");
 			}
 		}
 
@@ -2425,7 +2442,8 @@
 	if (retval)
 		goto failed_usb_register;
 
-	info(DRIVER_VERSION ":" DRIVER_DESC);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 failed_usb_register:
 	usb_serial_deregister(&ftdi_sio_device);
@@ -2458,5 +2476,5 @@
 MODULE_PARM_DESC(vendor, "User specified vendor ID (default="
 		__MODULE_STRING(FTDI_VID)")");
 module_param(product, ushort, 0);
-MODULE_PARM_DESC(vendor, "User specified product ID");
+MODULE_PARM_DESC(product, "User specified product ID");
 
diff --git a/drivers/usb/serial/ftdi_sio.h b/drivers/usb/serial/ftdi_sio.h
index 8a5b6df..07a3992 100644
--- a/drivers/usb/serial/ftdi_sio.h
+++ b/drivers/usb/serial/ftdi_sio.h
@@ -628,6 +628,11 @@
 #define FTDI_SUUNTO_SPORTS_PID	0xF680	/* Suunto Sports instrument */
 
 /*
+ * Oceanic product ids
+ */
+#define FTDI_OCEANIC_PID	0xF460  /* Oceanic dive instrument */
+
+/*
  * TTi (Thurlby Thandar Instruments)
  */
 #define TTI_VID			0x103E	/* Vendor Id */
diff --git a/drivers/usb/serial/garmin_gps.c b/drivers/usb/serial/garmin_gps.c
index 2ad0569..8e6a66e 100644
--- a/drivers/usb/serial/garmin_gps.c
+++ b/drivers/usb/serial/garmin_gps.c
@@ -1585,7 +1585,8 @@
 	retval = usb_register(&garmin_driver);
 	if (retval)
 		goto failed_usb_register;
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 
 	return 0;
 failed_usb_register:
diff --git a/drivers/usb/serial/hp4x.c b/drivers/usb/serial/hp4x.c
index ab90586..4313292 100644
--- a/drivers/usb/serial/hp4x.c
+++ b/drivers/usb/serial/hp4x.c
@@ -63,7 +63,8 @@
 	retval = usb_register(&hp49gp_driver);
 	if (retval)
 		goto failed_usb_register;
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 failed_usb_register:
 	usb_serial_deregister(&hp49gp_device);
diff --git a/drivers/usb/serial/io_edgeport.c b/drivers/usb/serial/io_edgeport.c
index 611f97f..e85c8c0 100644
--- a/drivers/usb/serial/io_edgeport.c
+++ b/drivers/usb/serial/io_edgeport.c
@@ -3109,13 +3109,13 @@
 				edge_serial->interrupt_read_urb =
 						usb_alloc_urb(0, GFP_KERNEL);
 				if (!edge_serial->interrupt_read_urb) {
-					err("out of memory");
+					dev_err(&dev->dev, "out of memory\n");
 					return -ENOMEM;
 				}
 				edge_serial->interrupt_in_buffer =
 					kmalloc(buffer_size, GFP_KERNEL);
 				if (!edge_serial->interrupt_in_buffer) {
-					err("out of memory");
+					dev_err(&dev->dev, "out of memory\n");
 					usb_free_urb(edge_serial->interrupt_read_urb);
 					return -ENOMEM;
 				}
@@ -3146,13 +3146,13 @@
 				edge_serial->read_urb =
 						usb_alloc_urb(0, GFP_KERNEL);
 				if (!edge_serial->read_urb) {
-					err("out of memory");
+					dev_err(&dev->dev, "out of memory\n");
 					return -ENOMEM;
 				}
 				edge_serial->bulk_in_buffer =
 					kmalloc(buffer_size, GFP_KERNEL);
 				if (!edge_serial->bulk_in_buffer) {
-					err("out of memory");
+					dev_err(&dev->dev, "out of memory\n");
 					usb_free_urb(edge_serial->read_urb);
 					return -ENOMEM;
 				}
@@ -3181,7 +3181,8 @@
 		}
 
 		if (!interrupt_in_found || !bulk_in_found || !bulk_out_found) {
-			err("Error - the proper endpoints were not found!");
+			dev_err(&dev->dev, "Error - the proper endpoints "
+				"were not found!\n");
 			return -ENODEV;
 		}
 
@@ -3190,8 +3191,9 @@
 		response = usb_submit_urb(edge_serial->interrupt_read_urb,
 								GFP_KERNEL);
 		if (response)
-			err("%s - Error %d submitting control urb",
-							__func__, response);
+			dev_err(&dev->dev,
+				"%s - Error %d submitting control urb\n",
+				__func__, response);
 	}
 	return response;
 }
@@ -3253,7 +3255,8 @@
 	if (retval)
 		goto failed_usb_register;
 	atomic_set(&CmdUrbs, 0);
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 
 failed_usb_register:
diff --git a/drivers/usb/serial/io_ti.c b/drivers/usb/serial/io_ti.c
index 541dd8e..c3cdd00 100644
--- a/drivers/usb/serial/io_ti.c
+++ b/drivers/usb/serial/io_ti.c
@@ -2978,7 +2978,8 @@
 	retval = usb_register(&io_driver);
 	if (retval)
 		goto failed_usb_register;
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 failed_usb_register:
 	usb_serial_deregister(&edgeport_2port_device);
diff --git a/drivers/usb/serial/ipaq.c b/drivers/usb/serial/ipaq.c
index 2affa9c..132be74 100644
--- a/drivers/usb/serial/ipaq.c
+++ b/drivers/usb/serial/ipaq.c
@@ -608,7 +608,7 @@
 	bytes_out = 0;
 	priv = kmalloc(sizeof(struct ipaq_private), GFP_KERNEL);
 	if (priv == NULL) {
-		err("%s - Out of memory", __func__);
+		dev_err(&port->dev, "%s - Out of memory\n", __func__);
 		return -ENOMEM;
 	}
 	usb_set_serial_port_data(port, priv);
@@ -693,8 +693,7 @@
 	}
 
 	if (!retries && result) {
-		err("%s - failed doing control urb, error %d", __func__,
-		    result);
+		dev_err(&port->dev, "%s - failed doing control urb, error %d\n",			__func__, result);
 		goto error;
 	}
 
@@ -707,8 +706,9 @@
 
 	result = usb_submit_urb(port->read_urb, GFP_KERNEL);
 	if (result) {
-		err("%s - failed submitting read urb, error %d",
-						__func__, result);
+		dev_err(&port->dev,
+			"%s - failed submitting read urb, error %d\n",
+			__func__, result);
 		goto error;
 	}
 
@@ -716,7 +716,7 @@
 
 enomem:
 	result = -ENOMEM;
-	err("%s - Out of memory", __func__);
+	dev_err(&port->dev, "%s - Out of memory\n", __func__);
 error:
 	ipaq_destroy_lists(port);
 	kfree(priv);
@@ -781,8 +781,9 @@
 	    ipaq_read_bulk_callback, port);
 	result = usb_submit_urb(port->read_urb, GFP_ATOMIC);
 	if (result)
-		err("%s - failed resubmitting read urb, error %d",
-							__func__, result);
+		dev_err(&port->dev,
+			"%s - failed resubmitting read urb, error %d\n",
+			__func__, result);
 	return;
 }
 
@@ -847,7 +848,8 @@
 		spin_unlock_irqrestore(&write_list_lock, flags);
 		result = usb_submit_urb(port->write_urb, GFP_ATOMIC);
 		if (result)
-			err("%s - failed submitting write urb, error %d",
+			dev_err(&port->dev,
+				"%s - failed submitting write urb, error %d\n",
 				__func__, result);
 	} else {
 		spin_unlock_irqrestore(&write_list_lock, flags);
@@ -909,8 +911,9 @@
 		spin_unlock_irqrestore(&write_list_lock, flags);
 		result = usb_submit_urb(port->write_urb, GFP_ATOMIC);
 		if (result)
-			err("%s - failed submitting write urb, error %d",
-					__func__, result);
+			dev_err(&port->dev,
+				"%s - failed submitting write urb, error %d\n",
+				__func__, result);
 	} else {
 		priv->active = 0;
 		spin_unlock_irqrestore(&write_list_lock, flags);
@@ -957,7 +960,7 @@
 {
 	dbg("%s", __func__);
 	if (serial->dev->actconfig->desc.bConfigurationValue != 1) {
-		err("active config #%d != 1 ??",
+		dev_err(&serial->dev->dev, "active config #%d != 1 ??\n",
 			serial->dev->actconfig->desc.bConfigurationValue);
 		return -ENODEV;
 	}
@@ -976,7 +979,6 @@
 	retval = usb_serial_register(&ipaq_device);
 	if (retval)
 		goto failed_usb_serial_register;
-	info(DRIVER_DESC " " DRIVER_VERSION);
 	if (vendor) {
 		ipaq_id_table[0].idVendor = vendor;
 		ipaq_id_table[0].idProduct = product;
@@ -985,6 +987,8 @@
 	if (retval)
 		goto failed_usb_register;
 
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 failed_usb_register:
 	usb_serial_deregister(&ipaq_device);
diff --git a/drivers/usb/serial/ipw.c b/drivers/usb/serial/ipw.c
index 480cac2..3ac59a8 100644
--- a/drivers/usb/serial/ipw.c
+++ b/drivers/usb/serial/ipw.c
@@ -485,7 +485,8 @@
 		usb_serial_deregister(&ipw_device);
 		return retval;
 	}
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 }
 
diff --git a/drivers/usb/serial/ir-usb.c b/drivers/usb/serial/ir-usb.c
index 45d4043..b679a55 100644
--- a/drivers/usb/serial/ir-usb.c
+++ b/drivers/usb/serial/ir-usb.c
@@ -602,7 +602,8 @@
 	if (retval)
 		goto failed_usb_register;
 
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 
 	return 0;
 
diff --git a/drivers/usb/serial/iuu_phoenix.c b/drivers/usb/serial/iuu_phoenix.c
index 53710aa..e320972 100644
--- a/drivers/usb/serial/iuu_phoenix.c
+++ b/drivers/usb/serial/iuu_phoenix.c
@@ -1185,7 +1185,8 @@
 	retval = usb_register(&iuu_driver);
 	if (retval)
 		goto failed_usb_register;
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 failed_usb_register:
 	usb_serial_deregister(&iuu_device);
diff --git a/drivers/usb/serial/keyspan.c b/drivers/usb/serial/keyspan.c
index 15447af..9878c0f 100644
--- a/drivers/usb/serial/keyspan.c
+++ b/drivers/usb/serial/keyspan.c
@@ -217,7 +217,8 @@
 	if (retval)
 		goto failed_usb_register;
 
-	info(DRIVER_VERSION ":" DRIVER_DESC);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 
 	return 0;
 failed_usb_register:
diff --git a/drivers/usb/serial/keyspan_pda.c b/drivers/usb/serial/keyspan_pda.c
index 99e9a14..bf1ae24 100644
--- a/drivers/usb/serial/keyspan_pda.c
+++ b/drivers/usb/serial/keyspan_pda.c
@@ -742,11 +742,13 @@
 		fw_name = "keyspan_pda/xircom_pgs.fw";
 #endif
 	else {
-		err("%s: unknown vendor, aborting.", __func__);
+		dev_err(&serial->dev->dev, "%s: unknown vendor, aborting.\n",
+			__func__);
 		return -ENODEV;
 	}
 	if (request_ihex_firmware(&fw, fw_name, &serial->dev->dev)) {
-		err("failed to load firmware \"%s\"\n", fw_name);
+		dev_err(&serial->dev->dev, "failed to load firmware \"%s\"\n",
+			fw_name);
 		return -ENOENT;
 	}
 	record = (const struct ihex_binrec *)fw->data;
@@ -756,10 +758,10 @@
 					     (unsigned char *)record->data,
 					     be16_to_cpu(record->len), 0xa0);
 		if (response < 0) {
-			err("ezusb_writememory failed for Keyspan PDA "
-			    "firmware (%d %04X %p %d)",
-			    response, be32_to_cpu(record->addr),
-			    record->data, be16_to_cpu(record->len));
+			dev_err(&serial->dev->dev, "ezusb_writememory failed "
+				"for Keyspan PDA firmware (%d %04X %p %d)\n",
+				response, be32_to_cpu(record->addr),
+				record->data, be16_to_cpu(record->len));
 			break;
 		}
 		record = ihex_next_binrec(record);
@@ -874,7 +876,8 @@
 	retval = usb_register(&keyspan_pda_driver);
 	if (retval)
 		goto failed_usb_register;
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 failed_usb_register:
 #ifdef XIRCOM
diff --git a/drivers/usb/serial/kl5kusb105.c b/drivers/usb/serial/kl5kusb105.c
index ff3a07f..dc36a05 100644
--- a/drivers/usb/serial/kl5kusb105.c
+++ b/drivers/usb/serial/kl5kusb105.c
@@ -182,12 +182,12 @@
 			sizeof(struct klsi_105_port_settings),
 			KLSI_TIMEOUT);
 	if (rc < 0)
-		err("Change port settings failed (error = %d)", rc);
-	info("%s - %d byte block, baudrate %x, databits %d, u1 %d, u2 %d",
-	    __func__,
-	    settings->pktlen,
-	    settings->baudrate, settings->databits,
-	    settings->unknown1, settings->unknown2);
+		dev_err(&port->dev,
+			"Change port settings failed (error = %d)\n", rc);
+	dev_info(&port->serial->dev->dev,
+		 "%d byte block, baudrate %x, databits %d, u1 %d, u2 %d\n",
+		 settings->pktlen, settings->baudrate, settings->databits,
+		 settings->unknown1, settings->unknown2);
 	return rc;
 } /* klsi_105_chg_port_settings */
 
@@ -215,7 +215,7 @@
 	__u8 status_buf[KLSI_STATUSBUF_LEN] = { -1, -1};
 	__u16 status;
 
-	info("%s - sending SIO Poll request", __func__);
+	dev_info(&port->serial->dev->dev, "sending SIO Poll request\n");
 	rc = usb_control_msg(port->serial->dev,
 			     usb_rcvctrlpipe(port->serial->dev, 0),
 			     KL5KUSB105A_SIO_POLL,
@@ -226,12 +226,13 @@
 			     10000
 			     );
 	if (rc < 0)
-		err("Reading line status failed (error = %d)", rc);
+		dev_err(&port->dev, "Reading line status failed (error = %d)\n",
+			rc);
 	else {
 		status = get_unaligned_le16(status_buf);
 
-		info("%s - read status %x %x", __func__,
-		     status_buf[0], status_buf[1]);
+		dev_info(&port->serial->dev->dev, "read status %x %x",
+			 status_buf[0], status_buf[1]);
 
 		*line_state_p = klsi_105_status2linestate(status);
 	}
@@ -280,15 +281,16 @@
 
 			priv->write_urb_pool[j] = urb;
 			if (urb == NULL) {
-				err("No more urbs???");
+				dev_err(&serial->dev->dev, "No more urbs???\n");
 				goto err_cleanup;
 			}
 
 			urb->transfer_buffer =
 				kmalloc(URB_TRANSFER_BUFFER_SIZE, GFP_KERNEL);
 			if (!urb->transfer_buffer) {
-				err("%s - out of memory for urb buffers.",
-								__func__);
+				dev_err(&serial->dev->dev,
+					"%s - out of memory for urb buffers.\n",
+					__func__);
 				goto err_cleanup;
 			}
 		}
@@ -409,7 +411,8 @@
 
 	rc = usb_submit_urb(port->read_urb, GFP_KERNEL);
 	if (rc) {
-		err("%s - failed submitting read urb, error %d", __func__, rc);
+		dev_err(&port->dev, "%s - failed submitting read urb, "
+			"error %d\n", __func__, rc);
 		retval = rc;
 		goto exit;
 	}
@@ -424,7 +427,7 @@
 			     0,
 			     KLSI_TIMEOUT);
 	if (rc < 0) {
-		err("Enabling read failed (error = %d)", rc);
+		dev_err(&port->dev, "Enabling read failed (error = %d)\n", rc);
 		retval = rc;
 	} else
 		dbg("%s - enabled reading", __func__);
@@ -464,7 +467,8 @@
 				     NULL, 0,
 				     KLSI_TIMEOUT);
 		if (rc < 0)
-			err("Disabling read failed (error = %d)", rc);
+			dev_err(&port->dev,
+				"Disabling read failed (error = %d)\n", rc);
 	}
 	mutex_unlock(&port->serial->disc_mutex);
 
@@ -475,8 +479,9 @@
 	/* FIXME */
 	/* wgg - do I need this? I think so. */
 	usb_kill_urb(port->interrupt_in_urb);
-	info("kl5kusb105 port stats: %ld bytes in, %ld bytes out",
-					priv->bytes_in, priv->bytes_out);
+	dev_info(&port->serial->dev->dev,
+		 "port stats: %ld bytes in, %ld bytes out\n",
+		 priv->bytes_in, priv->bytes_out);
 } /* klsi_105_close */
 
 
@@ -522,7 +527,9 @@
 			urb->transfer_buffer =
 				kmalloc(URB_TRANSFER_BUFFER_SIZE, GFP_ATOMIC);
 			if (urb->transfer_buffer == NULL) {
-				err("%s - no more kernel memory...", __func__);
+				dev_err(&port->dev,
+					"%s - no more kernel memory...\n",
+					__func__);
 				goto exit;
 			}
 		}
@@ -549,8 +556,9 @@
 		/* send the data out the bulk port */
 		result = usb_submit_urb(urb, GFP_ATOMIC);
 		if (result) {
-			err("%s - failed submitting write urb, error %d",
-							__func__, result);
+			dev_err(&port->dev,
+				"%s - failed submitting write urb, error %d\n",
+				__func__, result);
 			goto exit;
 		}
 		buf += size;
@@ -694,8 +702,9 @@
 		      port);
 	rc = usb_submit_urb(port->read_urb, GFP_ATOMIC);
 	if (rc)
-		err("%s - failed resubmitting read urb, error %d",
-							__func__, rc);
+		dev_err(&port->dev,
+			"%s - failed resubmitting read urb, error %d\n",
+			__func__, rc);
 } /* klsi_105_read_bulk_callback */
 
 
@@ -799,7 +808,8 @@
 			priv->cfg.databits = kl5kusb105a_dtb_8;
 			break;
 		default:
-			err("CSIZE was not CS5-CS8, using default of 8");
+			dev_err(&port->dev,
+				"CSIZE was not CS5-CS8, using default of 8\n");
 			priv->cfg.databits = kl5kusb105a_dtb_8;
 			break;
 		}
@@ -886,7 +896,8 @@
 
 	rc = klsi_105_get_line_state(port, &line_state);
 	if (rc < 0) {
-		err("Reading line control failed (error = %d)", rc);
+		dev_err(&port->dev,
+			"Reading line control failed (error = %d)\n", rc);
 		/* better return value? EAGAIN? */
 		return rc;
 	}
@@ -944,8 +955,9 @@
 	port->read_urb->dev = port->serial->dev;
 	result = usb_submit_urb(port->read_urb, GFP_ATOMIC);
 	if (result)
-		err("%s - failed submitting read urb, error %d", __func__,
-		    result);
+		dev_err(&port->dev,
+			"%s - failed submitting read urb, error %d\n",
+			__func__, result);
 }
 
 
@@ -960,7 +972,8 @@
 	if (retval)
 		goto failed_usb_register;
 
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 failed_usb_register:
 	usb_serial_deregister(&kl5kusb105d_device);
diff --git a/drivers/usb/serial/kobil_sct.c b/drivers/usb/serial/kobil_sct.c
index cfcf37c..6286baa 100644
--- a/drivers/usb/serial/kobil_sct.c
+++ b/drivers/usb/serial/kobil_sct.c
@@ -744,8 +744,8 @@
 	if (retval)
 		goto failed_usb_register;
 
-	info(DRIVER_VERSION " " DRIVER_AUTHOR);
-	info(DRIVER_DESC);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 
 	return 0;
 failed_usb_register:
diff --git a/drivers/usb/serial/mct_u232.c b/drivers/usb/serial/mct_u232.c
index 9b2cef8..07710cf 100644
--- a/drivers/usb/serial/mct_u232.c
+++ b/drivers/usb/serial/mct_u232.c
@@ -246,7 +246,8 @@
 				0, 0, &divisor, MCT_U232_SET_BAUD_RATE_SIZE,
 				WDR_TIMEOUT);
 	if (rc < 0)	/*FIXME: What value speed results */
-		err("Set BAUD RATE %d failed (error = %d)", value, rc);
+		dev_err(&port->dev, "Set BAUD RATE %d failed (error = %d)\n",
+			value, rc);
 	else
 		tty_encode_baud_rate(tty, speed, speed);
 	dbg("set_baud_rate: value: 0x%x, divisor: 0x%x", value, divisor);
@@ -274,8 +275,9 @@
 				0, 0, &zero_byte, MCT_U232_SET_UNKNOWN1_SIZE,
 				WDR_TIMEOUT);
 	if (rc < 0)
-		err("Sending USB device request code %d failed (error = %d)",
-		    MCT_U232_SET_UNKNOWN1_REQUEST, rc);
+		dev_err(&port->dev, "Sending USB device request code %d "
+			"failed (error = %d)\n", MCT_U232_SET_UNKNOWN1_REQUEST,
+			rc);
 
 	if (port && C_CRTSCTS(tty))
 	   cts_enable_byte = 1;
@@ -288,8 +290,8 @@
 			0, 0, &cts_enable_byte, MCT_U232_SET_CTS_SIZE,
 			WDR_TIMEOUT);
 	if (rc < 0)
-		err("Sending USB device request code %d failed (error = %d)",
-					MCT_U232_SET_CTS_REQUEST, rc);
+		dev_err(&port->dev, "Sending USB device request code %d "
+			"failed (error = %d)\n", MCT_U232_SET_CTS_REQUEST, rc);
 
 	return rc;
 } /* mct_u232_set_baud_rate */
@@ -303,7 +305,8 @@
 			0, 0, &lcr, MCT_U232_SET_LINE_CTRL_SIZE,
 			WDR_TIMEOUT);
 	if (rc < 0)
-		err("Set LINE CTRL 0x%x failed (error = %d)", lcr, rc);
+		dev_err(&serial->dev->dev,
+			"Set LINE CTRL 0x%x failed (error = %d)\n", lcr, rc);
 	dbg("set_line_ctrl: 0x%x", lcr);
 	return rc;
 } /* mct_u232_set_line_ctrl */
@@ -325,7 +328,8 @@
 			0, 0, &mcr, MCT_U232_SET_MODEM_CTRL_SIZE,
 			WDR_TIMEOUT);
 	if (rc < 0)
-		err("Set MODEM CTRL 0x%x failed (error = %d)", mcr, rc);
+		dev_err(&serial->dev->dev,
+			"Set MODEM CTRL 0x%x failed (error = %d)\n", mcr, rc);
 	dbg("set_modem_ctrl: state=0x%x ==> mcr=0x%x", control_state, mcr);
 
 	return rc;
@@ -341,7 +345,8 @@
 			0, 0, msr, MCT_U232_GET_MODEM_STAT_SIZE,
 			WDR_TIMEOUT);
 	if (rc < 0) {
-		err("Get MODEM STATus failed (error = %d)", rc);
+		dev_err(&serial->dev->dev,
+			"Get MODEM STATus failed (error = %d)\n", rc);
 		*msr = 0;
 	}
 	dbg("get_modem_stat: 0x%x", *msr);
@@ -470,8 +475,9 @@
 	port->read_urb->dev = port->serial->dev;
 	retval = usb_submit_urb(port->read_urb, GFP_KERNEL);
 	if (retval) {
-		err("usb_submit_urb(read bulk) failed pipe 0x%x err %d",
-		    port->read_urb->pipe, retval);
+		dev_err(&port->dev,
+			"usb_submit_urb(read bulk) failed pipe 0x%x err %d\n",
+			port->read_urb->pipe, retval);
 		goto error;
 	}
 
@@ -479,8 +485,9 @@
 	retval = usb_submit_urb(port->interrupt_in_urb, GFP_KERNEL);
 	if (retval) {
 		usb_kill_urb(port->read_urb);
-		err(" usb_submit_urb(read int) failed pipe 0x%x err %d",
-		    port->interrupt_in_urb->pipe, retval);
+		dev_err(&port->dev,
+			"usb_submit_urb(read int) failed pipe 0x%x err %d",
+			port->interrupt_in_urb->pipe, retval);
 		goto error;
 	}
 	return 0;
@@ -612,8 +619,9 @@
 exit:
 	retval = usb_submit_urb(urb, GFP_ATOMIC);
 	if (retval)
-		err("%s - usb_submit_urb failed with result %d",
-		     __func__, retval);
+		dev_err(&port->dev,
+			"%s - usb_submit_urb failed with result %d\n",
+			__func__, retval);
 } /* mct_u232_read_int_callback */
 
 static void mct_u232_set_termios(struct tty_struct *tty,
@@ -680,7 +688,8 @@
 	case CS8:
 		last_lcr |= MCT_U232_DATA_BITS_8; break;
 	default:
-		err("CSIZE was not CS5-CS8, using default of 8");
+		dev_err(&port->dev,
+			"CSIZE was not CS5-CS8, using default of 8\n");
 		last_lcr |= MCT_U232_DATA_BITS_8;
 		break;
 	}
@@ -817,7 +826,8 @@
 	retval = usb_register(&mct_u232_driver);
 	if (retval)
 		goto failed_usb_register;
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 failed_usb_register:
 	usb_serial_deregister(&mct_u232_device);
diff --git a/drivers/usb/serial/mos7720.c b/drivers/usb/serial/mos7720.c
index 7b538ca..e772cc0 100644
--- a/drivers/usb/serial/mos7720.c
+++ b/drivers/usb/serial/mos7720.c
@@ -355,14 +355,16 @@
 		mos7720_port->write_urb_pool[j] = urb;
 
 		if (urb == NULL) {
-			err("No more urbs???");
+			dev_err(&port->dev, "No more urbs???\n");
 			continue;
 		}
 
 		urb->transfer_buffer = kmalloc(URB_TRANSFER_BUFFER_SIZE,
 					       GFP_KERNEL);
 		if (!urb->transfer_buffer) {
-			err("%s-out of memory for urb buffers.", __func__);
+			dev_err(&port->dev,
+				"%s-out of memory for urb buffers.\n",
+				__func__);
 			usb_free_urb(mos7720_port->write_urb_pool[j]);
 			mos7720_port->write_urb_pool[j] = NULL;
 			continue;
@@ -694,7 +696,8 @@
 		urb->transfer_buffer = kmalloc(URB_TRANSFER_BUFFER_SIZE,
 					       GFP_KERNEL);
 		if (urb->transfer_buffer == NULL) {
-			err("%s no more kernel memory...", __func__);
+			dev_err(&port->dev, "%s no more kernel memory...\n",
+				__func__);
 			goto exit;
 		}
 	}
@@ -714,8 +717,8 @@
 	/* send it down the pipe */
 	status = usb_submit_urb(urb, GFP_ATOMIC);
 	if (status) {
-		err("%s - usb_submit_urb(write bulk) failed with status = %d",
-		    __func__, status);
+		dev_err(&port->dev, "%s - usb_submit_urb(write bulk) failed "
+			"with status = %d\n", __func__, status);
 		bytes_sent = status;
 		goto exit;
 	}
@@ -975,7 +978,7 @@
 	/* Calculate the Divisor */
 	status = calc_baud_rate_divisor(baudrate, &divisor);
 	if (status) {
-		err("%s - bad baud rate", __func__);
+		dev_err(&port->dev, "%s - bad baud rate\n", __func__);
 		return status;
 	}
 
@@ -1478,7 +1481,7 @@
 	/* create our private serial structure */
 	mos7720_serial = kzalloc(sizeof(struct moschip_serial), GFP_KERNEL);
 	if (mos7720_serial == NULL) {
-		err("%s - Out of memory", __func__);
+		dev_err(&dev->dev, "%s - Out of memory\n", __func__);
 		return -ENOMEM;
 	}
 
@@ -1491,7 +1494,7 @@
 	for (i = 0; i < serial->num_ports; ++i) {
 		mos7720_port = kzalloc(sizeof(struct moschip_port), GFP_KERNEL);
 		if (mos7720_port == NULL) {
-			err("%s - Out of memory", __func__);
+			dev_err(&dev->dev, "%s - Out of memory\n", __func__);
 			usb_set_serial_data(serial, NULL);
 			kfree(mos7720_serial);
 			return -ENOMEM;
@@ -1585,7 +1588,8 @@
 	if (retval)
 		goto failed_port_device_register;
 
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 
 	/* Register with the usb */
 	retval = usb_register(&usb_driver);
diff --git a/drivers/usb/serial/mos7840.c b/drivers/usb/serial/mos7840.c
index 60543d7..fda4a64 100644
--- a/drivers/usb/serial/mos7840.c
+++ b/drivers/usb/serial/mos7840.c
@@ -844,7 +844,7 @@
 		mos7840_port->write_urb_pool[j] = urb;
 
 		if (urb == NULL) {
-			err("No more urbs???");
+			dev_err(&port->dev, "No more urbs???\n");
 			continue;
 		}
 
@@ -853,7 +853,9 @@
 		if (!urb->transfer_buffer) {
 			usb_free_urb(urb);
 			mos7840_port->write_urb_pool[j] = NULL;
-			err("%s-out of memory for urb buffers.", __func__);
+			dev_err(&port->dev,
+				"%s-out of memory for urb buffers.\n",
+				__func__);
 			continue;
 		}
 	}
@@ -1021,8 +1023,8 @@
 			    usb_submit_urb(serial->port[0]->interrupt_in_urb,
 					   GFP_KERNEL);
 			if (response) {
-				err("%s - Error %d submitting interrupt urb",
-				    __func__, response);
+				dev_err(&port->dev, "%s - Error %d submitting "
+					"interrupt urb\n", __func__, response);
 			}
 
 		}
@@ -1055,8 +1057,8 @@
 	    port->bulk_in_endpointAddress);
 	response = usb_submit_urb(mos7840_port->read_urb, GFP_KERNEL);
 	if (response) {
-		err("%s - Error %d submitting control urb", __func__,
-		    response);
+		dev_err(&port->dev, "%s - Error %d submitting control urb\n",
+			__func__, response);
 	}
 
 	/* initialize our wait queues */
@@ -1492,7 +1494,8 @@
 		    kmalloc(URB_TRANSFER_BUFFER_SIZE, GFP_KERNEL);
 
 		if (urb->transfer_buffer == NULL) {
-			err("%s no more kernel memory...", __func__);
+			dev_err(&port->dev, "%s no more kernel memory...\n",
+				__func__);
 			goto exit;
 		}
 	}
@@ -1517,8 +1520,8 @@
 
 	if (status) {
 		mos7840_port->busy[i] = 0;
-		err("%s - usb_submit_urb(write bulk) failed with status = %d",
-		    __func__, status);
+		dev_err(&port->dev, "%s - usb_submit_urb(write bulk) failed "
+			"with status = %d\n", __func__, status);
 		bytes_sent = status;
 		goto exit;
 	}
@@ -1856,8 +1859,7 @@
 		/* Calculate the Divisor */
 
 		if (status) {
-			err("%s - bad baud rate", __func__);
-			dbg("%s\n", "bad baud rate");
+			dev_err(&port->dev, "%s - bad baud rate\n", __func__);
 			return status;
 		}
 		/* Enable access to divisor latch */
@@ -2446,7 +2448,7 @@
 	for (i = 0; i < serial->num_ports; ++i) {
 		mos7840_port = kzalloc(sizeof(struct moschip_port), GFP_KERNEL);
 		if (mos7840_port == NULL) {
-			err("%s - Out of memory", __func__);
+			dev_err(&dev->dev, "%s - Out of memory\n", __func__);
 			status = -ENOMEM;
 			i--; /* don't follow NULL pointer cleaning up */
 			goto error;
@@ -2743,7 +2745,8 @@
 		goto failed_port_device_register;
 
 	dbg("%s\n", "Entring...");
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 
 	/* Register with the usb */
 	retval = usb_register(&io_driver);
diff --git a/drivers/usb/serial/omninet.c b/drivers/usb/serial/omninet.c
index c4d70b0..df65397 100644
--- a/drivers/usb/serial/omninet.c
+++ b/drivers/usb/serial/omninet.c
@@ -154,8 +154,8 @@
 
 	od = kmalloc(sizeof(struct omninet_data), GFP_KERNEL);
 	if (!od) {
-		err("%s- kmalloc(%Zd) failed.",
-				__func__, sizeof(struct omninet_data));
+		dev_err(&port->dev, "%s- kmalloc(%Zd) failed.\n",
+			__func__, sizeof(struct omninet_data));
 		return -ENOMEM;
 	}
 	usb_set_serial_port_data(port, od);
@@ -183,8 +183,9 @@
 			omninet_read_bulk_callback, port);
 	result = usb_submit_urb(port->read_urb, GFP_KERNEL);
 	if (result)
-		err("%s - failed submitting read urb, error %d",
-							__func__, result);
+		dev_err(&port->dev,
+			"%s - failed submitting read urb, error %d\n",
+			__func__, result);
 	return result;
 }
 
@@ -244,8 +245,9 @@
 			omninet_read_bulk_callback, port);
 	result = usb_submit_urb(urb, GFP_ATOMIC);
 	if (result)
-		err("%s - failed resubmitting read urb, error %d",
-						__func__, result);
+		dev_err(&port->dev,
+			"%s - failed resubmitting read urb, error %d\n",
+			__func__, result);
 
 	return;
 }
@@ -298,8 +300,9 @@
 	result = usb_submit_urb(wport->write_urb, GFP_ATOMIC);
 	if (result) {
 		wport->write_urb_busy = 0;
-		err("%s - failed submitting write urb, error %d",
-							__func__, result);
+		dev_err(&port->dev,
+			"%s - failed submitting write urb, error %d\n",
+			__func__, result);
 	} else
 		result = count;
 
@@ -364,7 +367,8 @@
 	retval = usb_register(&omninet_driver);
 	if (retval)
 		goto failed_usb_register;
-	info(DRIVER_VERSION ":" DRIVER_DESC);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 failed_usb_register:
 	usb_serial_deregister(&zyxel_omninet_device);
diff --git a/drivers/usb/serial/option.c b/drivers/usb/serial/option.c
index 6b1727e..3d87eab 100644
--- a/drivers/usb/serial/option.c
+++ b/drivers/usb/serial/option.c
@@ -79,27 +79,16 @@
 #define OPTION_PRODUCT_VIPER			0x6600
 #define OPTION_PRODUCT_VIPER_BUS		0x6601
 #define OPTION_PRODUCT_GT_MAX_READY		0x6701
-#define OPTION_PRODUCT_GT_MAX			0x6711
 #define OPTION_PRODUCT_FUJI_MODEM_LIGHT		0x6721
 #define OPTION_PRODUCT_FUJI_MODEM_GT		0x6741
 #define OPTION_PRODUCT_FUJI_MODEM_EX		0x6761
-#define OPTION_PRODUCT_FUJI_NETWORK_LIGHT	0x6731
-#define OPTION_PRODUCT_FUJI_NETWORK_GT		0x6751
-#define OPTION_PRODUCT_FUJI_NETWORK_EX		0x6771
 #define OPTION_PRODUCT_KOI_MODEM		0x6800
-#define OPTION_PRODUCT_KOI_NETWORK		0x6811
 #define OPTION_PRODUCT_SCORPION_MODEM		0x6901
-#define OPTION_PRODUCT_SCORPION_NETWORK		0x6911
 #define OPTION_PRODUCT_ETNA_MODEM		0x7001
-#define OPTION_PRODUCT_ETNA_NETWORK		0x7011
 #define OPTION_PRODUCT_ETNA_MODEM_LITE		0x7021
 #define OPTION_PRODUCT_ETNA_MODEM_GT		0x7041
 #define OPTION_PRODUCT_ETNA_MODEM_EX		0x7061
-#define OPTION_PRODUCT_ETNA_NETWORK_LITE	0x7031
-#define OPTION_PRODUCT_ETNA_NETWORK_GT		0x7051
-#define OPTION_PRODUCT_ETNA_NETWORK_EX		0x7071
 #define OPTION_PRODUCT_ETNA_KOI_MODEM		0x7100
-#define OPTION_PRODUCT_ETNA_KOI_NETWORK		0x7111
 
 #define HUAWEI_VENDOR_ID			0x12D1
 #define HUAWEI_PRODUCT_E600			0x1001
@@ -220,6 +209,16 @@
 #define ZTE_PRODUCT_MF628			0x0015
 #define ZTE_PRODUCT_CDMA_TECH			0xfffe
 
+/* Ericsson products */
+#define ERICSSON_VENDOR_ID			0x0bdb
+#define ERICSSON_PRODUCT_F3507G			0x1900
+
+/* Pantech products */
+#define PANTECH_VENDOR_ID			0x106c
+#define PANTECH_PRODUCT_PC5740			0x3701
+#define PANTECH_PRODUCT_PC5750			0x3702  /* PX-500 */
+#define PANTECH_PRODUCT_UM150			0x3711
+
 static struct usb_device_id option_ids[] = {
 	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_COLT) },
 	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_RICOLA) },
@@ -235,27 +234,16 @@
 	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_VIPER) },
 	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_VIPER_BUS) },
 	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_GT_MAX_READY) },
-	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_GT_MAX) },
 	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_FUJI_MODEM_LIGHT) },
 	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_FUJI_MODEM_GT) },
 	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_FUJI_MODEM_EX) },
-	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_FUJI_NETWORK_LIGHT) },
-	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_FUJI_NETWORK_GT) },
-	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_FUJI_NETWORK_EX) },
 	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_KOI_MODEM) },
-	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_KOI_NETWORK) },
 	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_SCORPION_MODEM) },
-	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_SCORPION_NETWORK) },
 	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_ETNA_MODEM) },
-	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_ETNA_NETWORK) },
 	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_ETNA_MODEM_LITE) },
 	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_ETNA_MODEM_GT) },
 	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_ETNA_MODEM_EX) },
-	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_ETNA_NETWORK_LITE) },
-	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_ETNA_NETWORK_GT) },
-	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_ETNA_NETWORK_EX) },
 	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_ETNA_KOI_MODEM) },
-	{ USB_DEVICE(OPTION_VENDOR_ID, OPTION_PRODUCT_ETNA_KOI_NETWORK) },
 	{ USB_DEVICE_AND_INTERFACE_INFO(HUAWEI_VENDOR_ID, HUAWEI_PRODUCT_E600, 0xff, 0xff, 0xff) },
 	{ USB_DEVICE_AND_INTERFACE_INFO(HUAWEI_VENDOR_ID, HUAWEI_PRODUCT_E220, 0xff, 0xff, 0xff) },
 	{ USB_DEVICE_AND_INTERFACE_INFO(HUAWEI_VENDOR_ID, HUAWEI_PRODUCT_E220BIS, 0xff, 0xff, 0xff) },
@@ -318,7 +306,8 @@
 	{ USB_DEVICE(DELL_VENDOR_ID, 0x8136) },	/* Dell Wireless HSDPA 5520 == Novatel Expedite EU860D */
 	{ USB_DEVICE(DELL_VENDOR_ID, 0x8137) },	/* Dell Wireless HSDPA 5520 */
 	{ USB_DEVICE(DELL_VENDOR_ID, 0x8138) },	/* Dell Wireless 5520 Voda I Mobile Broadband (3G HSDPA) Minicard */
-	{ USB_DEVICE(ANYDATA_VENDOR_ID, ANYDATA_PRODUCT_ADU_E100A) },
+	{ USB_DEVICE(DELL_VENDOR_ID, 0x8147) },	/* Dell Wireless 5530 Mobile Broadband (3G HSPA) Mini-Card */
+	{ USB_DEVICE(ANYDATA_VENDOR_ID, ANYDATA_PRODUCT_ADU_E100A) },	/* ADU-E100, ADU-310 */
 	{ USB_DEVICE(ANYDATA_VENDOR_ID, ANYDATA_PRODUCT_ADU_500A) },
 	{ USB_DEVICE(ANYDATA_VENDOR_ID, ANYDATA_PRODUCT_ADU_620UW) },
 	{ USB_DEVICE(AXESSTEL_VENDOR_ID, AXESSTEL_PRODUCT_MV110H) },
@@ -349,6 +338,10 @@
 	{ USB_DEVICE(TELIT_VENDOR_ID, TELIT_PRODUCT_UC864E) },
 	{ USB_DEVICE(ZTE_VENDOR_ID, ZTE_PRODUCT_MF628) },
 	{ USB_DEVICE(ZTE_VENDOR_ID, ZTE_PRODUCT_CDMA_TECH) },
+	{ USB_DEVICE(ERICSSON_VENDOR_ID, ERICSSON_PRODUCT_F3507G) },
+	{ USB_DEVICE(PANTECH_VENDOR_ID, PANTECH_PRODUCT_PC5740) },
+	{ USB_DEVICE(PANTECH_VENDOR_ID, PANTECH_PRODUCT_PC5750) },
+	{ USB_DEVICE(PANTECH_VENDOR_ID, PANTECH_PRODUCT_UM150) },
 	{ } /* Terminating entry */
 };
 MODULE_DEVICE_TABLE(usb, option_ids);
@@ -427,7 +420,8 @@
 	if (retval)
 		goto failed_driver_register;
 
-	info(DRIVER_DESC ": " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 
 	return 0;
 
diff --git a/drivers/usb/serial/pl2303.c b/drivers/usb/serial/pl2303.c
index 9084378..491c885 100644
--- a/drivers/usb/serial/pl2303.c
+++ b/drivers/usb/serial/pl2303.c
@@ -1147,7 +1147,7 @@
 	retval = usb_register(&pl2303_driver);
 	if (retval)
 		goto failed_usb_register;
-	info(DRIVER_DESC);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_DESC "\n");
 	return 0;
 failed_usb_register:
 	usb_serial_deregister(&pl2303_device);
diff --git a/drivers/usb/serial/safe_serial.c b/drivers/usb/serial/safe_serial.c
index 72903ac..4b463cd 100644
--- a/drivers/usb/serial/safe_serial.c
+++ b/drivers/usb/serial/safe_serial.c
@@ -250,17 +250,18 @@
 		if (!fcs) {
 			int actual_length = data[length - 2] >> 2;
 			if (actual_length <= (length - 2)) {
-				info("%s - actual: %d", __func__,
-							actual_length);
+				dev_info(&urb->dev->dev, "%s - actual: %d\n",
+					 __func__, actual_length);
 				tty_insert_flip_string(tty,
 							data, actual_length);
 				tty_flip_buffer_push(tty);
 			} else {
-				err("%s - inconsistent lengths %d:%d",
+				dev_err(&port->dev,
+					"%s - inconsistent lengths %d:%d\n",
 					__func__, actual_length, length);
 			}
 		} else {
-			err("%s - bad CRC %x", __func__, fcs);
+			dev_err(&port->dev, "%s - bad CRC %x\n", __func__, fcs);
 		}
 	} else {
 		tty_insert_flip_string(tty, data, length);
@@ -277,8 +278,9 @@
 
 	result = usb_submit_urb(urb, GFP_ATOMIC);
 	if (result)
-		err("%s - failed resubmitting read urb, error %d",
-							__func__, result);
+		dev_err(&port->dev,
+			"%s - failed resubmitting read urb, error %d\n",
+			__func__, result);
 		/* FIXME: Need a mechanism to retry later if this happens */
 }
 
@@ -369,8 +371,9 @@
 	result = usb_submit_urb(port->write_urb, GFP_KERNEL);
 	if (result) {
 		port->write_urb_busy = 0;
-		err("%s - failed submitting write urb, error %d",
-							__func__, result);
+		dev_err(&port->dev,
+			"%s - failed submitting write urb, error %d\n",
+			__func__, result);
 		return 0;
 	}
 	dbg("%s urb: %p submitted", __func__, port->write_urb);
@@ -428,14 +431,13 @@
 {
 	int i, retval;
 
-	info(DRIVER_VERSION " " DRIVER_AUTHOR);
-	info(DRIVER_DESC);
-	info("vendor: %x product: %x safe: %d padded: %d\n",
-					vendor, product, safe, padded);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 
 	/* if we have vendor / product parameters patch them into id list */
 	if (vendor || product) {
-		info("vendor: %x product: %x\n", vendor, product);
+		printk(KERN_INFO KBUILD_MODNAME ": vendor: %x product: %x\n",
+		       vendor, product);
 
 		for (i = 0; i < ARRAY_SIZE(id_table); i++) {
 			if (!id_table[i].idVendor && !id_table[i].idProduct) {
diff --git a/drivers/usb/serial/sierra.c b/drivers/usb/serial/sierra.c
index 8b9eaf3..0f2b672 100644
--- a/drivers/usb/serial/sierra.c
+++ b/drivers/usb/serial/sierra.c
@@ -247,7 +247,7 @@
 	struct sierra_port_private *portdata;
 	__u16 interface = 0;
 
-	dbg("%s", __func__);
+	dev_dbg(&port->dev, "%s", __func__);
 
 	portdata = usb_get_serial_port_data(port);
 
@@ -284,7 +284,7 @@
 static void sierra_set_termios(struct tty_struct *tty,
 		struct usb_serial_port *port, struct ktermios *old_termios)
 {
-	dbg("%s", __func__);
+	dev_dbg(&port->dev, "%s", __func__);
 	tty_termios_copy_hw(tty->termios, old_termios);
 	sierra_send_setup(tty, port);
 }
@@ -295,6 +295,7 @@
 	unsigned int value;
 	struct sierra_port_private *portdata;
 
+	dev_dbg(&port->dev, "%s", __func__);
 	portdata = usb_get_serial_port_data(port);
 
 	value = ((portdata->rts_state) ? TIOCM_RTS : 0) |
@@ -334,14 +335,14 @@
 	int status = urb->status;
 	unsigned long flags;
 
-	dbg("%s - port %d", __func__, port->number);
+	dev_dbg(&port->dev, "%s - port %d", __func__, port->number);
 
 	/* free up the transfer buffer, as usb_free_urb() does not do this */
 	kfree(urb->transfer_buffer);
 
 	if (status)
-		dbg("%s - nonzero write bulk status received: %d",
-		    __func__, status);
+		dev_dbg(&port->dev, "%s - nonzero write bulk status "
+		    "received: %d", __func__, status);
 
 	spin_lock_irqsave(&portdata->lock, flags);
 	--portdata->outstanding_urbs;
@@ -363,12 +364,12 @@
 
 	portdata = usb_get_serial_port_data(port);
 
-	dbg("%s: write (%d chars)", __func__, count);
+	dev_dbg(&port->dev, "%s: write (%d chars)", __func__, count);
 
 	spin_lock_irqsave(&portdata->lock, flags);
 	if (portdata->outstanding_urbs > N_OUT_URB) {
 		spin_unlock_irqrestore(&portdata->lock, flags);
-		dbg("%s - write limit hit\n", __func__);
+		dev_dbg(&port->dev, "%s - write limit hit\n", __func__);
 		return 0;
 	}
 	portdata->outstanding_urbs++;
@@ -437,8 +438,8 @@
 	port =  urb->context;
 
 	if (status) {
-		dbg("%s: nonzero status: %d on endpoint %02x.",
-		    __func__, status, endpoint);
+		dev_dbg(&port->dev, "%s: nonzero status: %d on"
+		    " endpoint %02x.", __func__, status, endpoint);
 	} else {
 		if (urb->actual_length) {
 		tty = tty_port_tty_get(&port->port);
@@ -447,7 +448,8 @@
 			tty_flip_buffer_push(tty);
 			tty_kref_put(tty);
 		} else
-			dbg("%s: empty read urb received", __func__);
+			dev_dbg(&port->dev, "%s: empty read urb"
+				" received", __func__);
 
 		/* Resubmit urb so we continue receiving */
 		if (port->port.count && status != -ESHUTDOWN) {
@@ -468,15 +470,17 @@
 	struct sierra_port_private *portdata = usb_get_serial_port_data(port);
 	struct usb_serial *serial = port->serial;
 
-	dbg("%s", __func__);
-	dbg("%s: urb %p port %p has data %p", __func__, urb, port, portdata);
+	dev_dbg(&port->dev, "%s", __func__);
+	dev_dbg(&port->dev, "%s: urb %p port %p has data %p", __func__,
+		urb, port, portdata);
 
 	if (status == 0) {
 		struct usb_ctrlrequest *req_pkt =
 				(struct usb_ctrlrequest *)urb->transfer_buffer;
 
 		if (!req_pkt) {
-			dbg("%s: NULL req_pkt\n", __func__);
+			dev_dbg(&port->dev, "%s: NULL req_pkt\n",
+				__func__);
 			return;
 		}
 		if ((req_pkt->bRequestType == 0xA1) &&
@@ -487,7 +491,8 @@
 					sizeof(struct usb_ctrlrequest));
 			struct tty_struct *tty;
 
-			dbg("%s: signal x%x", __func__, signals);
+			dev_dbg(&port->dev, "%s: signal x%x", __func__,
+				signals);
 
 			old_dcd_state = portdata->dcd_state;
 			portdata->cts_state = 1;
@@ -501,19 +506,20 @@
 				tty_hangup(tty);
 			tty_kref_put(tty);
 		} else {
-			dbg("%s: type %x req %x", __func__,
-				req_pkt->bRequestType, req_pkt->bRequest);
+			dev_dbg(&port->dev, "%s: type %x req %x",
+				__func__, req_pkt->bRequestType,
+				req_pkt->bRequest);
 		}
 	} else
-		dbg("%s: error %d", __func__, status);
+		dev_dbg(&port->dev, "%s: error %d", __func__, status);
 
 	/* Resubmit urb so we continue receiving IRQ data */
 	if (status != -ESHUTDOWN) {
 		urb->dev = serial->dev;
 		err = usb_submit_urb(urb, GFP_ATOMIC);
 		if (err)
-			dbg("%s: resubmit intr urb failed. (%d)",
-				__func__, err);
+			dev_dbg(&port->dev, "%s: resubmit intr urb "
+				"failed. (%d)",	__func__, err);
 	}
 }
 
@@ -523,14 +529,14 @@
 	struct sierra_port_private *portdata = usb_get_serial_port_data(port);
 	unsigned long flags;
 
-	dbg("%s - port %d", __func__, port->number);
+	dev_dbg(&port->dev, "%s - port %d", __func__, port->number);
 
 	/* try to give a good number back based on if we have any free urbs at
 	 * this point in time */
 	spin_lock_irqsave(&portdata->lock, flags);
 	if (portdata->outstanding_urbs > N_OUT_URB * 2 / 3) {
 		spin_unlock_irqrestore(&portdata->lock, flags);
-		dbg("%s - write limit hit\n", __func__);
+		dev_dbg(&port->dev, "%s - write limit hit\n", __func__);
 		return 0;
 	}
 	spin_unlock_irqrestore(&portdata->lock, flags);
@@ -549,7 +555,7 @@
 
 	portdata = usb_get_serial_port_data(port);
 
-	dbg("%s", __func__);
+	dev_dbg(&port->dev, "%s", __func__);
 
 	/* Set some sane defaults */
 	portdata->rts_state = 1;
@@ -561,8 +567,8 @@
 		if (!urb)
 			continue;
 		if (urb->dev != serial->dev) {
-			dbg("%s: dev %p != %p", __func__,
-				urb->dev, serial->dev);
+			dev_dbg(&port->dev, "%s: dev %p != %p",
+				 __func__, urb->dev, serial->dev);
 			continue;
 		}
 
@@ -601,7 +607,7 @@
 	struct usb_serial *serial = port->serial;
 	struct sierra_port_private *portdata;
 
-	dbg("%s", __func__);
+	dev_dbg(&port->dev, "%s", __func__);
 	portdata = usb_get_serial_port_data(port);
 
 	portdata->rts_state = 0;
@@ -630,7 +636,7 @@
 	int i;
 	int j;
 
-	dbg("%s", __func__);
+	dev_dbg(&serial->dev->dev, "%s", __func__);
 
 	/* Set Device mode to D0 */
 	sierra_set_power_state(serial->dev, 0x0000);
@@ -644,8 +650,9 @@
 		port = serial->port[i];
 		portdata = kzalloc(sizeof(*portdata), GFP_KERNEL);
 		if (!portdata) {
-			dbg("%s: kmalloc for sierra_port_private (%d) failed!.",
-					__func__, i);
+			dev_dbg(&port->dev, "%s: kmalloc for "
+				"sierra_port_private (%d) failed!.",
+				__func__, i);
 			return -ENOMEM;
 		}
 		spin_lock_init(&portdata->lock);
@@ -665,8 +672,8 @@
 		for (j = 0; j < N_IN_URB; ++j) {
 			urb = usb_alloc_urb(0, GFP_KERNEL);
 			if (urb == NULL) {
-				dbg("%s: alloc for in port failed.",
-				    __func__);
+				dev_dbg(&port->dev, "%s: alloc for in "
+					"port failed.", __func__);
 				continue;
 			}
 			/* Fill URB using supplied data. */
@@ -688,7 +695,7 @@
 	struct usb_serial_port *port;
 	struct sierra_port_private *portdata;
 
-	dbg("%s", __func__);
+	dev_dbg(&serial->dev->dev, "%s", __func__);
 
 	for (i = 0; i < serial->num_ports; ++i) {
 		port = serial->port[i];
@@ -743,7 +750,8 @@
 	if (retval)
 		goto failed_driver_register;
 
-	info(DRIVER_DESC ": " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 
 	return 0;
 
diff --git a/drivers/usb/serial/spcp8x5.c b/drivers/usb/serial/spcp8x5.c
index 1533d6e..a65bc2b 100644
--- a/drivers/usb/serial/spcp8x5.c
+++ b/drivers/usb/serial/spcp8x5.c
@@ -589,8 +589,8 @@
 	case 1000000:
 			buf[0] = 0x0b;	break;
 	default:
-		err("spcp825 driver does not support the baudrate "
-		    "requested, using default of 9600.");
+		dev_err(&port->dev, "spcp825 driver does not support the "
+			"baudrate requested, using default of 9600.\n");
 	}
 
 	/* Set Data Length : 00:5bit, 01:6bit, 10:7bit, 11:8bit */
@@ -629,7 +629,8 @@
 			    SET_UART_FORMAT_TYPE, SET_UART_FORMAT,
 			    uartdata, 0, NULL, 0, 100);
 	if (i < 0)
-		err("Set UART format %#x failed (error = %d)", uartdata, i);
+		dev_err(&port->dev, "Set UART format %#x failed (error = %d)\n",
+			uartdata, i);
 	dbg("0x21:0x40:0:0  %d\n", i);
 
 	if (cflag & CRTSCTS) {
@@ -1054,7 +1055,8 @@
 	retval = usb_register(&spcp8x5_driver);
 	if (retval)
 		goto failed_usb_register;
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 failed_usb_register:
 	usb_serial_deregister(&spcp8x5_device);
diff --git a/drivers/usb/serial/ti_usb_3410_5052.c b/drivers/usb/serial/ti_usb_3410_5052.c
index c90237d..31c42d1 100644
--- a/drivers/usb/serial/ti_usb_3410_5052.c
+++ b/drivers/usb/serial/ti_usb_3410_5052.c
@@ -85,7 +85,6 @@
 #include <linux/uaccess.h>
 #include <linux/usb.h>
 #include <linux/usb/serial.h>
-#include <linux/firmware.h>
 
 #include "ti_usb_3410_5052.h"
 
@@ -383,7 +382,8 @@
 	if (ret)
 		goto failed_usb;
 
-	info(TI_DRIVER_DESC " " TI_DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " TI_DRIVER_VERSION ":"
+	       TI_DRIVER_DESC "\n");
 
 	return 0;
 
diff --git a/drivers/usb/serial/usb-serial.c b/drivers/usb/serial/usb-serial.c
index e7d4246..8be3f39 100644
--- a/drivers/usb/serial/usb-serial.c
+++ b/drivers/usb/serial/usb-serial.c
@@ -1121,7 +1121,8 @@
 
 	result = bus_register(&usb_serial_bus_type);
 	if (result) {
-		err("%s - registering bus driver failed", __func__);
+		printk(KERN_ERR "usb-serial: %s - registering bus driver "
+		       "failed\n", __func__);
 		goto exit_bus;
 	}
 
@@ -1142,25 +1143,28 @@
 	tty_set_operations(usb_serial_tty_driver, &serial_ops);
 	result = tty_register_driver(usb_serial_tty_driver);
 	if (result) {
-		err("%s - tty_register_driver failed", __func__);
+		printk(KERN_ERR "usb-serial: %s - tty_register_driver failed\n",
+		       __func__);
 		goto exit_reg_driver;
 	}
 
 	/* register the USB driver */
 	result = usb_register(&usb_serial_driver);
 	if (result < 0) {
-		err("%s - usb_register failed", __func__);
+		printk(KERN_ERR "usb-serial: %s - usb_register failed\n",
+		       __func__);
 		goto exit_tty;
 	}
 
 	/* register the generic driver, if we should */
 	result = usb_serial_generic_register(debug);
 	if (result < 0) {
-		err("%s - registering generic driver failed", __func__);
+		printk(KERN_ERR "usb-serial: %s - registering generic "
+		       "driver failed\n", __func__);
 		goto exit_generic;
 	}
 
-	info(DRIVER_DESC);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_DESC "\n");
 
 	return result;
 
@@ -1174,7 +1178,8 @@
 	bus_unregister(&usb_serial_bus_type);
 
 exit_bus:
-	err("%s - returning with error %d", __func__, result);
+	printk(KERN_ERR "usb-serial: %s - returning with error %d\n",
+	       __func__, result);
 	put_tty_driver(usb_serial_tty_driver);
 	return result;
 }
@@ -1233,11 +1238,11 @@
 
 	retval = usb_serial_bus_register(driver);
 	if (retval) {
-		err("problem %d when registering driver %s",
-						retval, driver->description);
+		printk(KERN_ERR "usb-serial: problem %d when registering "
+		       "driver %s\n", retval, driver->description);
 		list_del(&driver->driver_list);
 	} else
-		info("USB Serial support registered for %s",
+		printk(KERN_INFO "USB Serial support registered for %s\n",
 						driver->description);
 
 	return retval;
@@ -1248,7 +1253,8 @@
 void usb_serial_deregister(struct usb_serial_driver *device)
 {
 	/* must be called with BKL held */
-	info("USB Serial deregistering driver %s", device->description);
+	printk(KERN_INFO "USB Serial deregistering driver %s\n",
+	       device->description);
 	list_del(&device->driver_list);
 	usb_serial_bus_deregister(device);
 }
diff --git a/drivers/usb/serial/visor.c b/drivers/usb/serial/visor.c
index a6d1c75..4facce3 100644
--- a/drivers/usb/serial/visor.c
+++ b/drivers/usb/serial/visor.c
@@ -768,7 +768,7 @@
 	dbg("%s", __func__);
 
 	if (serial->dev->actconfig->desc.bConfigurationValue != 1) {
-		err("active config #%d != 1 ??",
+		dev_err(&serial->dev->dev, "active config #%d != 1 ??\n",
 			serial->dev->actconfig->desc.bConfigurationValue);
 		return -ENODEV;
 	}
@@ -971,11 +971,14 @@
 				break;
 			}
 		}
-		info(
-		  "Untested USB device specified at time of module insertion");
-		info("Warning: This is not guaranteed to work");
-		info("Using a newer kernel is preferred to this method");
-		info("Adding Palm OS protocol 4.x support for unknown device: 0x%x/0x%x",
+		printk(KERN_INFO KBUILD_MODNAME
+		       ": Untested USB device specified at time of module insertion\n");
+		printk(KERN_INFO KBUILD_MODNAME
+		       ": Warning: This is not guaranteed to work\n");
+		printk(KERN_INFO KBUILD_MODNAME
+		       ": Using a newer kernel is preferred to this method\n");
+		printk(KERN_INFO KBUILD_MODNAME
+		       ": Adding Palm OS protocol 4.x support for unknown device: 0x%x/0x%x\n",
 			vendor, product);
 	}
 	retval = usb_serial_register(&handspring_device);
@@ -990,7 +993,7 @@
 	retval = usb_register(&visor_driver);
 	if (retval)
 		goto failed_usb_register;
-	info(DRIVER_DESC);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_DESC "\n");
 
 	return 0;
 failed_usb_register:
diff --git a/drivers/usb/serial/whiteheat.c b/drivers/usb/serial/whiteheat.c
index 11c8b97..5335d32 100644
--- a/drivers/usb/serial/whiteheat.c
+++ b/drivers/usb/serial/whiteheat.c
@@ -303,12 +303,15 @@
 
 	if (request_ihex_firmware(&firmware_fw, "whiteheat.fw",
 				  &serial->dev->dev)) {
-		err("%s - request \"whiteheat.fw\" failed", __func__);
+		dev_err(&serial->dev->dev,
+			"%s - request \"whiteheat.fw\" failed\n", __func__);
 		goto out;
 	}
 	if (request_ihex_firmware(&loader_fw, "whiteheat_loader.fw",
 			     &serial->dev->dev)) {
-		err("%s - request \"whiteheat_loader.fw\" failed", __func__);
+		dev_err(&serial->dev->dev,
+			"%s - request \"whiteheat_loader.fw\" failed\n",
+			__func__);
 		goto out;
 	}
 	ret = 0;
@@ -320,9 +323,10 @@
 					      (unsigned char *)record->data,
 					      be16_to_cpu(record->len), 0xa0);
 		if (response < 0) {
-			err("%s - ezusb_writememory failed for loader (%d %04X %p %d)",
-			    __func__, response, be32_to_cpu(record->addr),
-			    record->data, be16_to_cpu(record->len));
+			dev_err(&serial->dev->dev, "%s - ezusb_writememory "
+				"failed for loader (%d %04X %p %d)\n",
+				__func__, response, be32_to_cpu(record->addr),
+				record->data, be16_to_cpu(record->len));
 			break;
 		}
 		record = ihex_next_binrec(record);
@@ -338,9 +342,11 @@
 					      (unsigned char *)record->data,
 					      be16_to_cpu(record->len), 0xa3);
 		if (response < 0) {
-			err("%s - ezusb_writememory failed for first firmware step (%d %04X %p %d)", 
-			    __func__, response, be32_to_cpu(record->addr),
-			    record->data, be16_to_cpu(record->len));
+			dev_err(&serial->dev->dev, "%s - ezusb_writememory "
+				"failed for first firmware step "
+				"(%d %04X %p %d)\n", __func__, response,
+				be32_to_cpu(record->addr), record->data,
+				be16_to_cpu(record->len));
 			break;
 		}
 		++record;
@@ -354,9 +360,11 @@
 					      (unsigned char *)record->data,
 					      be16_to_cpu(record->len), 0xa0);
 		if (response < 0) {
-			err("%s - ezusb_writememory failed for second firmware step (%d %04X %p %d)", 
-			    __func__, response, be32_to_cpu(record->addr),
-			    record->data, be16_to_cpu(record->len));
+			dev_err(&serial->dev->dev, "%s - ezusb_writememory "
+				"failed for second firmware step "
+				"(%d %04X %p %d)\n", __func__, response,
+				be32_to_cpu(record->addr), record->data,
+				be16_to_cpu(record->len));
 			break;
 		}
 		++record;
@@ -421,12 +429,12 @@
 	ret = usb_bulk_msg(serial->dev, pipe, command, 2,
 						&alen, COMMAND_TIMEOUT_MS);
 	if (ret) {
-		err("%s: Couldn't send command [%d]",
-				serial->type->description, ret);
+		dev_err(&serial->dev->dev, "%s: Couldn't send command [%d]\n",
+			serial->type->description, ret);
 		goto no_firmware;
 	} else if (alen != 2) {
-		err("%s: Send command incomplete [%d]",
-				serial->type->description, alen);
+		dev_err(&serial->dev->dev, "%s: Send command incomplete [%d]\n",
+			serial->type->description, alen);
 		goto no_firmware;
 	}
 
@@ -437,31 +445,33 @@
 	ret = usb_bulk_msg(serial->dev, pipe, result,
 			sizeof(*hw_info) + 1, &alen, COMMAND_TIMEOUT_MS);
 	if (ret) {
-		err("%s: Couldn't get results [%d]",
-				serial->type->description, ret);
+		dev_err(&serial->dev->dev, "%s: Couldn't get results [%d]\n",
+			serial->type->description, ret);
 		goto no_firmware;
 	} else if (alen != sizeof(*hw_info) + 1) {
-		err("%s: Get results incomplete [%d]",
-				serial->type->description, alen);
+		dev_err(&serial->dev->dev, "%s: Get results incomplete [%d]\n",
+			serial->type->description, alen);
 		goto no_firmware;
 	} else if (result[0] != command[0]) {
-		err("%s: Command failed [%d]",
-				serial->type->description, result[0]);
+		dev_err(&serial->dev->dev, "%s: Command failed [%d]\n",
+			serial->type->description, result[0]);
 		goto no_firmware;
 	}
 
 	hw_info = (struct whiteheat_hw_info *)&result[1];
 
-	info("%s: Driver %s: Firmware v%d.%02d", serial->type->description,
-	     DRIVER_VERSION, hw_info->sw_major_rev, hw_info->sw_minor_rev);
+	dev_info(&serial->dev->dev, "%s: Driver %s: Firmware v%d.%02d\n",
+		 serial->type->description, DRIVER_VERSION,
+		 hw_info->sw_major_rev, hw_info->sw_minor_rev);
 
 	for (i = 0; i < serial->num_ports; i++) {
 		port = serial->port[i];
 
 		info = kmalloc(sizeof(struct whiteheat_private), GFP_KERNEL);
 		if (info == NULL) {
-			err("%s: Out of memory for port structures\n",
-					serial->type->description);
+			dev_err(&port->dev,
+				"%s: Out of memory for port structures\n",
+				serial->type->description);
 			goto no_private;
 		}
 
@@ -481,18 +491,20 @@
 		for (j = 0; j < urb_pool_size; j++) {
 			urb = usb_alloc_urb(0, GFP_KERNEL);
 			if (!urb) {
-				err("No free urbs available");
+				dev_err(&port->dev, "No free urbs available\n");
 				goto no_rx_urb;
 			}
 			buf_size = port->read_urb->transfer_buffer_length;
 			urb->transfer_buffer = kmalloc(buf_size, GFP_KERNEL);
 			if (!urb->transfer_buffer) {
-				err("Couldn't allocate urb buffer");
+				dev_err(&port->dev,
+					"Couldn't allocate urb buffer\n");
 				goto no_rx_buf;
 			}
 			wrap = kmalloc(sizeof(*wrap), GFP_KERNEL);
 			if (!wrap) {
-				err("Couldn't allocate urb wrapper");
+				dev_err(&port->dev,
+					"Couldn't allocate urb wrapper\n");
 				goto no_rx_wrap;
 			}
 			usb_fill_bulk_urb(urb, serial->dev,
@@ -505,18 +517,20 @@
 
 			urb = usb_alloc_urb(0, GFP_KERNEL);
 			if (!urb) {
-				err("No free urbs available");
+				dev_err(&port->dev, "No free urbs available\n");
 				goto no_tx_urb;
 			}
 			buf_size = port->write_urb->transfer_buffer_length;
 			urb->transfer_buffer = kmalloc(buf_size, GFP_KERNEL);
 			if (!urb->transfer_buffer) {
-				err("Couldn't allocate urb buffer");
+				dev_err(&port->dev,
+					"Couldn't allocate urb buffer\n");
 				goto no_tx_buf;
 			}
 			wrap = kmalloc(sizeof(*wrap), GFP_KERNEL);
 			if (!wrap) {
-				err("Couldn't allocate urb wrapper");
+				dev_err(&port->dev,
+					"Couldn't allocate urb wrapper\n");
 				goto no_tx_wrap;
 			}
 			usb_fill_bulk_urb(urb, serial->dev,
@@ -534,8 +548,9 @@
 	command_info = kmalloc(sizeof(struct whiteheat_command_private),
 								GFP_KERNEL);
 	if (command_info == NULL) {
-		err("%s: Out of memory for port structures\n",
-					serial->type->description);
+		dev_err(&serial->dev->dev,
+			"%s: Out of memory for port structures\n",
+			serial->type->description);
 		goto no_command_private;
 	}
 
@@ -552,12 +567,15 @@
 
 no_firmware:
 	/* Firmware likely not running */
-	err("%s: Unable to retrieve firmware version, try replugging\n",
-					serial->type->description);
-	err("%s: If the firmware is not running (status led not blinking)\n",
-					serial->type->description);
-	err("%s: please contact support@connecttech.com\n",
-					serial->type->description);
+	dev_err(&serial->dev->dev,
+		"%s: Unable to retrieve firmware version, try replugging\n",
+		serial->type->description);
+	dev_err(&serial->dev->dev,
+		"%s: If the firmware is not running (status led not blinking)\n",
+		serial->type->description);
+	dev_err(&serial->dev->dev,
+		"%s: please contact support@connecttech.com\n",
+		serial->type->description);
 	kfree(result);
 	return -ENODEV;
 
@@ -680,8 +698,9 @@
 	/* Start reading from the device */
 	retval = start_port_read(port);
 	if (retval) {
-		err("%s - failed submitting read urb, error %d",
-				__func__, retval);
+		dev_err(&port->dev,
+			"%s - failed submitting read urb, error %d\n",
+			__func__, retval);
 		firm_close(port);
 		stop_command_port(port->serial);
 		goto exit;
@@ -806,8 +825,9 @@
 		urb->transfer_buffer_length = bytes;
 		result = usb_submit_urb(urb, GFP_ATOMIC);
 		if (result) {
-			err("%s - failed submitting write urb, error %d",
-							__func__, result);
+			dev_err(&port->dev,
+				"%s - failed submitting write urb, error %d\n",
+				__func__, result);
 			sent = result;
 			spin_lock_irqsave(&info->lock, flags);
 			list_add(tmp, &info->tx_urbs_free);
@@ -1075,7 +1095,7 @@
 	wrap = urb_to_wrap(urb, &info->rx_urbs_submitted);
 	if (!wrap) {
 		spin_unlock(&info->lock);
-		err("%s - Not my urb!", __func__);
+		dev_err(&port->dev, "%s - Not my urb!\n", __func__);
 		return;
 	}
 	list_del(&wrap->list);
@@ -1119,7 +1139,7 @@
 	wrap = urb_to_wrap(urb, &info->tx_urbs_submitted);
 	if (!wrap) {
 		spin_unlock(&info->lock);
-		err("%s - Not my urb!", __func__);
+		dev_err(&port->dev, "%s - Not my urb!\n", __func__);
 		return;
 	}
 	list_move(&wrap->list, &info->tx_urbs_free);
@@ -1383,8 +1403,9 @@
 		command_port->read_urb->dev = serial->dev;
 		retval = usb_submit_urb(command_port->read_urb, GFP_KERNEL);
 		if (retval) {
-			err("%s - failed submitting read urb, error %d",
-							__func__, retval);
+			dev_err(&serial->dev->dev,
+				"%s - failed submitting read urb, error %d\n",
+				__func__, retval);
 			goto exit;
 		}
 	}
@@ -1522,7 +1543,8 @@
 		urb->dev = port->serial->dev;
 		result = usb_submit_urb(urb, GFP_ATOMIC);
 		if (result) {
-			err("%s - failed resubmitting read urb, error %d",
+			dev_err(&port->dev,
+				"%s - failed resubmitting read urb, error %d\n",
 				__func__, result);
 			spin_lock_irqsave(&info->lock, flags);
 			list_add(tmp, &info->rx_urbs_free);
@@ -1556,7 +1578,8 @@
 	retval = usb_register(&whiteheat_driver);
 	if (retval)
 		goto failed_usb_register;
-	info(DRIVER_DESC " " DRIVER_VERSION);
+	printk(KERN_INFO KBUILD_MODNAME ": " DRIVER_VERSION ":"
+	       DRIVER_DESC "\n");
 	return 0;
 failed_usb_register:
 	usb_serial_deregister(&whiteheat_device);
diff --git a/drivers/usb/storage/onetouch.c b/drivers/usb/storage/onetouch.c
index 98b89ea..c7bf895 100644
--- a/drivers/usb/storage/onetouch.c
+++ b/drivers/usb/storage/onetouch.c
@@ -78,8 +78,8 @@
 resubmit:
 	retval = usb_submit_urb (urb, GFP_ATOMIC);
 	if (retval)
-		err ("can't resubmit intr, %s-%s/input0, retval %d",
-			onetouch->udev->bus->bus_name,
+		dev_err(&dev->dev, "can't resubmit intr, %s-%s/input0, "
+			"retval %d\n", onetouch->udev->bus->bus_name,
 			onetouch->udev->devpath, retval);
 }
 
@@ -90,7 +90,7 @@
 	onetouch->is_open = 1;
 	onetouch->irq->dev = onetouch->udev;
 	if (usb_submit_urb(onetouch->irq, GFP_KERNEL)) {
-		err("usb_submit_urb failed");
+		dev_err(&dev->dev, "usb_submit_urb failed\n");
 		return -EIO;
 	}
 
@@ -117,7 +117,8 @@
 			break;
 		case US_RESUME:
 			if (usb_submit_urb(onetouch->irq, GFP_KERNEL) != 0)
-				err("usb_submit_urb failed");
+				dev_err(&onetouch->irq->dev->dev,
+					"usb_submit_urb failed\n");
 			break;
 		default:
 			break;
diff --git a/drivers/usb/storage/transport.c b/drivers/usb/storage/transport.c
index 3523a0b..79108d5 100644
--- a/drivers/usb/storage/transport.c
+++ b/drivers/usb/storage/transport.c
@@ -663,7 +663,7 @@
 	}
 
 	/* Did we transfer less than the minimum amount required? */
-	if (srb->result == SAM_STAT_GOOD &&
+	if ((srb->result == SAM_STAT_GOOD || srb->sense_buffer[2] == 0) &&
 			scsi_bufflen(srb) - scsi_get_resid(srb) < srb->underflow)
 		srb->result = (DID_ERROR << 16) | (SUGGEST_RETRY << 24);
 
diff --git a/fs/Kconfig b/fs/Kconfig
index 9e9d70c..d0a1174 100644
--- a/fs/Kconfig
+++ b/fs/Kconfig
@@ -160,7 +160,7 @@
 	  filesystem initially.
 
 	  To compile this file system support as a module, choose M here. The
-	  module will be called ext4dev.
+	  module will be called ext4.
 
 	  If unsure, say N.
 
diff --git a/fs/Makefile b/fs/Makefile
index d0c69f5..2168c90 100644
--- a/fs/Makefile
+++ b/fs/Makefile
@@ -71,7 +71,7 @@
 # Do not add any filesystems before this line
 obj-$(CONFIG_REISERFS_FS)	+= reiserfs/
 obj-$(CONFIG_EXT3_FS)		+= ext3/ # Before ext2 so root fs can be ext3
-obj-$(CONFIG_EXT4_FS)		+= ext4/ # Before ext2 so root fs can be ext4dev
+obj-$(CONFIG_EXT4_FS)		+= ext4/ # Before ext2 so root fs can be ext4
 obj-$(CONFIG_JBD)		+= jbd/
 obj-$(CONFIG_JBD2)		+= jbd2/
 obj-$(CONFIG_EXT2_FS)		+= ext2/
diff --git a/fs/binfmt_elf.c b/fs/binfmt_elf.c
index c76afa2..83d7200 100644
--- a/fs/binfmt_elf.c
+++ b/fs/binfmt_elf.c
@@ -1333,20 +1333,15 @@
 	prstatus->pr_pgrp = task_pgrp_vnr(p);
 	prstatus->pr_sid = task_session_vnr(p);
 	if (thread_group_leader(p)) {
+		struct task_cputime cputime;
+
 		/*
-		 * This is the record for the group leader.  Add in the
-		 * cumulative times of previous dead threads.  This total
-		 * won't include the time of each live thread whose state
-		 * is included in the core dump.  The final total reported
-		 * to our parent process when it calls wait4 will include
-		 * those sums as well as the little bit more time it takes
-		 * this and each other thread to finish dying after the
-		 * core dump synchronization phase.
+		 * This is the record for the group leader.  It shows the
+		 * group-wide total, not its individual thread total.
 		 */
-		cputime_to_timeval(cputime_add(p->utime, p->signal->utime),
-				   &prstatus->pr_utime);
-		cputime_to_timeval(cputime_add(p->stime, p->signal->stime),
-				   &prstatus->pr_stime);
+		thread_group_cputime(p, &cputime);
+		cputime_to_timeval(cputime.utime, &prstatus->pr_utime);
+		cputime_to_timeval(cputime.stime, &prstatus->pr_stime);
 	} else {
 		cputime_to_timeval(p->utime, &prstatus->pr_utime);
 		cputime_to_timeval(p->stime, &prstatus->pr_stime);
diff --git a/fs/block_dev.c b/fs/block_dev.c
index d84f0469..218408e 100644
--- a/fs/block_dev.c
+++ b/fs/block_dev.c
@@ -1262,7 +1262,7 @@
 
 /**
  * lookup_bdev  - lookup a struct block_device by name
- * @pathname:	special file representing the block device
+ * @path:	special file representing the block device
  *
  * Get a reference to the blockdevice at @pathname in the current
  * namespace if possible and return it.  Return ERR_PTR(error)
diff --git a/fs/ext4/balloc.c b/fs/ext4/balloc.c
index bd2ece2..b9821be 100644
--- a/fs/ext4/balloc.c
+++ b/fs/ext4/balloc.c
@@ -568,8 +568,16 @@
 
 	/* this isn't the right place to decide whether block is metadata
 	 * inode.c/extents.c knows better, but for safety ... */
-	if (S_ISDIR(inode->i_mode) || S_ISLNK(inode->i_mode) ||
-			ext4_should_journal_data(inode))
+	if (S_ISDIR(inode->i_mode) || S_ISLNK(inode->i_mode))
+		metadata = 1;
+
+	/* We need to make sure we don't reuse
+	 * block released untill the transaction commit.
+	 * writeback mode have weak data consistency so
+	 * don't force data as metadata when freeing block
+	 * for writeback mode.
+	 */
+	if (metadata == 0 && !ext4_should_writeback_data(inode))
 		metadata = 1;
 
 	sb = inode->i_sb;
diff --git a/fs/ext4/ext4.h b/fs/ext4/ext4.h
index 6690a41..4880cc3 100644
--- a/fs/ext4/ext4.h
+++ b/fs/ext4/ext4.h
@@ -511,7 +511,6 @@
 /*
  * Mount flags
  */
-#define EXT4_MOUNT_CHECK		0x00001	/* Do mount-time checks */
 #define EXT4_MOUNT_OLDALLOC		0x00002  /* Don't use the new Orlov allocator */
 #define EXT4_MOUNT_GRPID		0x00004	/* Create files with directory's group */
 #define EXT4_MOUNT_DEBUG		0x00008	/* Some debugging messages */
diff --git a/fs/ext4/ext4_sb.h b/fs/ext4/ext4_sb.h
index 6a0b40d..445fde6 100644
--- a/fs/ext4/ext4_sb.h
+++ b/fs/ext4/ext4_sb.h
@@ -99,9 +99,6 @@
 	struct inode *s_buddy_cache;
 	long s_blocks_reserved;
 	spinlock_t s_reserve_lock;
-	struct list_head s_active_transaction;
-	struct list_head s_closed_transaction;
-	struct list_head s_committed_transaction;
 	spinlock_t s_md_lock;
 	tid_t s_last_transaction;
 	unsigned short *s_mb_offsets, *s_mb_maxs;
diff --git a/fs/ext4/inode.c b/fs/ext4/inode.c
index 9b4ec9d..8dbf695 100644
--- a/fs/ext4/inode.c
+++ b/fs/ext4/inode.c
@@ -1648,6 +1648,7 @@
 	int ret = 0, err, nr_pages, i;
 	unsigned long index, end;
 	struct pagevec pvec;
+	long pages_skipped;
 
 	BUG_ON(mpd->next_page <= mpd->first_page);
 	pagevec_init(&pvec, 0);
@@ -1655,20 +1656,30 @@
 	end = mpd->next_page - 1;
 
 	while (index <= end) {
-		/* XXX: optimize tail */
-		nr_pages = pagevec_lookup(&pvec, mapping, index, PAGEVEC_SIZE);
+		/*
+		 * We can use PAGECACHE_TAG_DIRTY lookup here because
+		 * even though we have cleared the dirty flag on the page
+		 * We still keep the page in the radix tree with tag
+		 * PAGECACHE_TAG_DIRTY. See clear_page_dirty_for_io.
+		 * The PAGECACHE_TAG_DIRTY is cleared in set_page_writeback
+		 * which is called via the below writepage callback.
+		 */
+		nr_pages = pagevec_lookup_tag(&pvec, mapping, &index,
+					PAGECACHE_TAG_DIRTY,
+					min(end - index,
+					(pgoff_t)PAGEVEC_SIZE-1) + 1);
 		if (nr_pages == 0)
 			break;
 		for (i = 0; i < nr_pages; i++) {
 			struct page *page = pvec.pages[i];
 
-			index = page->index;
-			if (index > end)
-				break;
-			index++;
-
+			pages_skipped = mpd->wbc->pages_skipped;
 			err = mapping->a_ops->writepage(page, mpd->wbc);
-			if (!err)
+			if (!err && (pages_skipped == mpd->wbc->pages_skipped))
+				/*
+				 * have successfully written the page
+				 * without skipping the same
+				 */
 				mpd->pages_written++;
 			/*
 			 * In error case, we have to continue because
@@ -2104,7 +2115,6 @@
 			       struct writeback_control *wbc,
 			       struct mpage_da_data *mpd)
 {
-	long to_write;
 	int ret;
 
 	if (!mpd->get_block)
@@ -2119,19 +2129,18 @@
 	mpd->pages_written = 0;
 	mpd->retval = 0;
 
-	to_write = wbc->nr_to_write;
-
 	ret = write_cache_pages(mapping, wbc, __mpage_da_writepage, mpd);
-
 	/*
 	 * Handle last extent of pages
 	 */
 	if (!mpd->io_done && mpd->next_page != mpd->first_page) {
 		if (mpage_da_map_blocks(mpd) == 0)
 			mpage_da_submit_io(mpd);
-	}
 
-	wbc->nr_to_write = to_write - mpd->pages_written;
+		mpd->io_done = 1;
+		ret = MPAGE_DA_EXTENT_TAIL;
+	}
+	wbc->nr_to_write -= mpd->pages_written;
 	return ret;
 }
 
@@ -2360,12 +2369,14 @@
 static int ext4_da_writepages(struct address_space *mapping,
 			      struct writeback_control *wbc)
 {
+	pgoff_t	index;
+	int range_whole = 0;
 	handle_t *handle = NULL;
-	loff_t range_start = 0;
 	struct mpage_da_data mpd;
 	struct inode *inode = mapping->host;
+	int no_nrwrite_index_update;
+	long pages_written = 0, pages_skipped;
 	int needed_blocks, ret = 0, nr_to_writebump = 0;
-	long to_write, pages_skipped = 0;
 	struct ext4_sb_info *sbi = EXT4_SB(mapping->host->i_sb);
 
 	/*
@@ -2385,23 +2396,26 @@
 		nr_to_writebump = sbi->s_mb_stream_request - wbc->nr_to_write;
 		wbc->nr_to_write = sbi->s_mb_stream_request;
 	}
+	if (wbc->range_start == 0 && wbc->range_end == LLONG_MAX)
+		range_whole = 1;
 
-	if (!wbc->range_cyclic)
-		/*
-		 * If range_cyclic is not set force range_cont
-		 * and save the old writeback_index
-		 */
-		wbc->range_cont = 1;
-
-	range_start =  wbc->range_start;
-	pages_skipped = wbc->pages_skipped;
+	if (wbc->range_cyclic)
+		index = mapping->writeback_index;
+	else
+		index = wbc->range_start >> PAGE_CACHE_SHIFT;
 
 	mpd.wbc = wbc;
 	mpd.inode = mapping->host;
 
-restart_loop:
-	to_write = wbc->nr_to_write;
-	while (!ret && to_write > 0) {
+	/*
+	 * we don't want write_cache_pages to update
+	 * nr_to_write and writeback_index
+	 */
+	no_nrwrite_index_update = wbc->no_nrwrite_index_update;
+	wbc->no_nrwrite_index_update = 1;
+	pages_skipped = wbc->pages_skipped;
+
+	while (!ret && wbc->nr_to_write > 0) {
 
 		/*
 		 * we  insert one extent at a time. So we need
@@ -2422,48 +2436,53 @@
 			dump_stack();
 			goto out_writepages;
 		}
-		to_write -= wbc->nr_to_write;
-
 		mpd.get_block = ext4_da_get_block_write;
 		ret = mpage_da_writepages(mapping, wbc, &mpd);
 
 		ext4_journal_stop(handle);
 
-		if (mpd.retval == -ENOSPC)
+		if (mpd.retval == -ENOSPC) {
+			/* commit the transaction which would
+			 * free blocks released in the transaction
+			 * and try again
+			 */
 			jbd2_journal_force_commit_nested(sbi->s_journal);
-
-		/* reset the retry count */
-		if (ret == MPAGE_DA_EXTENT_TAIL) {
+			wbc->pages_skipped = pages_skipped;
+			ret = 0;
+		} else if (ret == MPAGE_DA_EXTENT_TAIL) {
 			/*
 			 * got one extent now try with
 			 * rest of the pages
 			 */
-			to_write += wbc->nr_to_write;
+			pages_written += mpd.pages_written;
+			wbc->pages_skipped = pages_skipped;
 			ret = 0;
-		} else if (wbc->nr_to_write) {
+		} else if (wbc->nr_to_write)
 			/*
 			 * There is no more writeout needed
 			 * or we requested for a noblocking writeout
 			 * and we found the device congested
 			 */
-			to_write += wbc->nr_to_write;
 			break;
-		}
-		wbc->nr_to_write = to_write;
 	}
+	if (pages_skipped != wbc->pages_skipped)
+		printk(KERN_EMERG "This should not happen leaving %s "
+				"with nr_to_write = %ld ret = %d\n",
+				__func__, wbc->nr_to_write, ret);
 
-	if (wbc->range_cont && (pages_skipped != wbc->pages_skipped)) {
-		/* We skipped pages in this loop */
-		wbc->range_start = range_start;
-		wbc->nr_to_write = to_write +
-				wbc->pages_skipped - pages_skipped;
-		wbc->pages_skipped = pages_skipped;
-		goto restart_loop;
-	}
+	/* Update index */
+	index += pages_written;
+	if (wbc->range_cyclic || (range_whole && wbc->nr_to_write > 0))
+		/*
+		 * set the writeback_index so that range_cyclic
+		 * mode will write it back later
+		 */
+		mapping->writeback_index = index;
 
 out_writepages:
-	wbc->nr_to_write = to_write - nr_to_writebump;
-	wbc->range_start = range_start;
+	if (!no_nrwrite_index_update)
+		wbc->no_nrwrite_index_update = 0;
+	wbc->nr_to_write -= nr_to_writebump;
 	return ret;
 }
 
@@ -4175,7 +4194,6 @@
 	struct inode *inode = &(ei->vfs_inode);
 	u64 i_blocks = inode->i_blocks;
 	struct super_block *sb = inode->i_sb;
-	int err = 0;
 
 	if (i_blocks <= ~0U) {
 		/*
@@ -4185,36 +4203,27 @@
 		raw_inode->i_blocks_lo   = cpu_to_le32(i_blocks);
 		raw_inode->i_blocks_high = 0;
 		ei->i_flags &= ~EXT4_HUGE_FILE_FL;
-	} else if (i_blocks <= 0xffffffffffffULL) {
+		return 0;
+	}
+	if (!EXT4_HAS_RO_COMPAT_FEATURE(sb, EXT4_FEATURE_RO_COMPAT_HUGE_FILE))
+		return -EFBIG;
+
+	if (i_blocks <= 0xffffffffffffULL) {
 		/*
 		 * i_blocks can be represented in a 48 bit variable
 		 * as multiple of 512 bytes
 		 */
-		err = ext4_update_rocompat_feature(handle, sb,
-					    EXT4_FEATURE_RO_COMPAT_HUGE_FILE);
-		if (err)
-			goto  err_out;
-		/* i_block is stored in the split  48 bit fields */
 		raw_inode->i_blocks_lo   = cpu_to_le32(i_blocks);
 		raw_inode->i_blocks_high = cpu_to_le16(i_blocks >> 32);
 		ei->i_flags &= ~EXT4_HUGE_FILE_FL;
 	} else {
-		/*
-		 * i_blocks should be represented in a 48 bit variable
-		 * as multiple of  file system block size
-		 */
-		err = ext4_update_rocompat_feature(handle, sb,
-					    EXT4_FEATURE_RO_COMPAT_HUGE_FILE);
-		if (err)
-			goto  err_out;
 		ei->i_flags |= EXT4_HUGE_FILE_FL;
 		/* i_block is stored in file system block size */
 		i_blocks = i_blocks >> (inode->i_blkbits - 9);
 		raw_inode->i_blocks_lo   = cpu_to_le32(i_blocks);
 		raw_inode->i_blocks_high = cpu_to_le16(i_blocks >> 32);
 	}
-err_out:
-	return err;
+	return 0;
 }
 
 /*
diff --git a/fs/ext4/mballoc.c b/fs/ext4/mballoc.c
index b580714..dfe17a1 100644
--- a/fs/ext4/mballoc.c
+++ b/fs/ext4/mballoc.c
@@ -2300,6 +2300,7 @@
 	}
 
 	INIT_LIST_HEAD(&meta_group_info[i]->bb_prealloc_list);
+	meta_group_info[i]->bb_free_root.rb_node = NULL;;
 
 #ifdef DOUBLE_CHECK
 	{
@@ -2522,9 +2523,6 @@
 	}
 
 	spin_lock_init(&sbi->s_md_lock);
-	INIT_LIST_HEAD(&sbi->s_active_transaction);
-	INIT_LIST_HEAD(&sbi->s_closed_transaction);
-	INIT_LIST_HEAD(&sbi->s_committed_transaction);
 	spin_lock_init(&sbi->s_bal_lock);
 
 	sbi->s_mb_max_to_scan = MB_DEFAULT_MAX_TO_SCAN;
@@ -2553,6 +2551,8 @@
 	ext4_mb_init_per_dev_proc(sb);
 	ext4_mb_history_init(sb);
 
+	sbi->s_journal->j_commit_callback = release_blocks_on_commit;
+
 	printk(KERN_INFO "EXT4-fs: mballoc enabled\n");
 	return 0;
 }
@@ -2568,7 +2568,7 @@
 		pa = list_entry(cur, struct ext4_prealloc_space, pa_group_list);
 		list_del(&pa->pa_group_list);
 		count++;
-		kfree(pa);
+		kmem_cache_free(ext4_pspace_cachep, pa);
 	}
 	if (count)
 		mb_debug("mballoc: %u PAs left\n", count);
@@ -2582,15 +2582,6 @@
 	struct ext4_group_info *grinfo;
 	struct ext4_sb_info *sbi = EXT4_SB(sb);
 
-	/* release freed, non-committed blocks */
-	spin_lock(&sbi->s_md_lock);
-	list_splice_init(&sbi->s_closed_transaction,
-			&sbi->s_committed_transaction);
-	list_splice_init(&sbi->s_active_transaction,
-			&sbi->s_committed_transaction);
-	spin_unlock(&sbi->s_md_lock);
-	ext4_mb_free_committed_blocks(sb);
-
 	if (sbi->s_group_info) {
 		for (i = 0; i < sbi->s_groups_count; i++) {
 			grinfo = ext4_get_group_info(sb, i);
@@ -2644,61 +2635,57 @@
 	return 0;
 }
 
-static noinline_for_stack void
-ext4_mb_free_committed_blocks(struct super_block *sb)
+/*
+ * This function is called by the jbd2 layer once the commit has finished,
+ * so we know we can free the blocks that were released with that commit.
+ */
+static void release_blocks_on_commit(journal_t *journal, transaction_t *txn)
 {
-	struct ext4_sb_info *sbi = EXT4_SB(sb);
-	int err;
-	int i;
-	int count = 0;
-	int count2 = 0;
-	struct ext4_free_metadata *md;
+	struct super_block *sb = journal->j_private;
 	struct ext4_buddy e4b;
+	struct ext4_group_info *db;
+	int err, count = 0, count2 = 0;
+	struct ext4_free_data *entry;
+	ext4_fsblk_t discard_block;
+	struct list_head *l, *ltmp;
 
-	if (list_empty(&sbi->s_committed_transaction))
-		return;
-
-	/* there is committed blocks to be freed yet */
-	do {
-		/* get next array of blocks */
-		md = NULL;
-		spin_lock(&sbi->s_md_lock);
-		if (!list_empty(&sbi->s_committed_transaction)) {
-			md = list_entry(sbi->s_committed_transaction.next,
-					struct ext4_free_metadata, list);
-			list_del(&md->list);
-		}
-		spin_unlock(&sbi->s_md_lock);
-
-		if (md == NULL)
-			break;
+	list_for_each_safe(l, ltmp, &txn->t_private_list) {
+		entry = list_entry(l, struct ext4_free_data, list);
 
 		mb_debug("gonna free %u blocks in group %lu (0x%p):",
-				md->num, md->group, md);
+			 entry->count, entry->group, entry);
 
-		err = ext4_mb_load_buddy(sb, md->group, &e4b);
+		err = ext4_mb_load_buddy(sb, entry->group, &e4b);
 		/* we expect to find existing buddy because it's pinned */
 		BUG_ON(err != 0);
 
+		db = e4b.bd_info;
 		/* there are blocks to put in buddy to make them really free */
-		count += md->num;
+		count += entry->count;
 		count2++;
-		ext4_lock_group(sb, md->group);
-		for (i = 0; i < md->num; i++) {
-			mb_debug(" %u", md->blocks[i]);
-			mb_free_blocks(NULL, &e4b, md->blocks[i], 1);
+		ext4_lock_group(sb, entry->group);
+		/* Take it out of per group rb tree */
+		rb_erase(&entry->node, &(db->bb_free_root));
+		mb_free_blocks(NULL, &e4b, entry->start_blk, entry->count);
+
+		if (!db->bb_free_root.rb_node) {
+			/* No more items in the per group rb tree
+			 * balance refcounts from ext4_mb_free_metadata()
+			 */
+			page_cache_release(e4b.bd_buddy_page);
+			page_cache_release(e4b.bd_bitmap_page);
 		}
-		mb_debug("\n");
-		ext4_unlock_group(sb, md->group);
+		ext4_unlock_group(sb, entry->group);
+		discard_block = (ext4_fsblk_t) entry->group * EXT4_BLOCKS_PER_GROUP(sb)
+			+ entry->start_blk
+			+ le32_to_cpu(EXT4_SB(sb)->s_es->s_first_data_block);
+		trace_mark(ext4_discard_blocks, "dev %s blk %llu count %u", sb->s_id,
+			   (unsigned long long) discard_block, entry->count);
+		sb_issue_discard(sb, discard_block, entry->count);
 
-		/* balance refcounts from ext4_mb_free_metadata() */
-		page_cache_release(e4b.bd_buddy_page);
-		page_cache_release(e4b.bd_bitmap_page);
-
-		kfree(md);
+		kmem_cache_free(ext4_free_ext_cachep, entry);
 		ext4_mb_release_desc(&e4b);
-
-	} while (md);
+	}
 
 	mb_debug("freed %u blocks in %u structures\n", count, count2);
 }
@@ -2712,6 +2699,7 @@
 
 static int ext4_mb_init_per_dev_proc(struct super_block *sb)
 {
+#ifdef CONFIG_PROC_FS
 	mode_t mode = S_IFREG | S_IRUGO | S_IWUSR;
 	struct ext4_sb_info *sbi = EXT4_SB(sb);
 	struct proc_dir_entry *proc;
@@ -2735,10 +2723,14 @@
 	remove_proc_entry(EXT4_MB_MAX_TO_SCAN_NAME, sbi->s_proc);
 	remove_proc_entry(EXT4_MB_STATS_NAME, sbi->s_proc);
 	return -ENOMEM;
+#else
+	return 0;
+#endif
 }
 
 static int ext4_mb_destroy_per_dev_proc(struct super_block *sb)
 {
+#ifdef CONFIG_PROC_FS
 	struct ext4_sb_info *sbi = EXT4_SB(sb);
 
 	if (sbi->s_proc == NULL)
@@ -2750,7 +2742,7 @@
 	remove_proc_entry(EXT4_MB_MIN_TO_SCAN_NAME, sbi->s_proc);
 	remove_proc_entry(EXT4_MB_MAX_TO_SCAN_NAME, sbi->s_proc);
 	remove_proc_entry(EXT4_MB_STATS_NAME, sbi->s_proc);
-
+#endif
 	return 0;
 }
 
@@ -2771,6 +2763,16 @@
 		kmem_cache_destroy(ext4_pspace_cachep);
 		return -ENOMEM;
 	}
+
+	ext4_free_ext_cachep =
+		kmem_cache_create("ext4_free_block_extents",
+				     sizeof(struct ext4_free_data),
+				     0, SLAB_RECLAIM_ACCOUNT, NULL);
+	if (ext4_free_ext_cachep == NULL) {
+		kmem_cache_destroy(ext4_pspace_cachep);
+		kmem_cache_destroy(ext4_ac_cachep);
+		return -ENOMEM;
+	}
 	return 0;
 }
 
@@ -2779,6 +2781,7 @@
 	/* XXX: synchronize_rcu(); */
 	kmem_cache_destroy(ext4_pspace_cachep);
 	kmem_cache_destroy(ext4_ac_cachep);
+	kmem_cache_destroy(ext4_free_ext_cachep);
 }
 
 
@@ -4324,8 +4327,6 @@
 		goto out1;
 	}
 
-	ext4_mb_poll_new_transaction(sb, handle);
-
 	*errp = ext4_mb_initialize_context(ac, ar);
 	if (*errp) {
 		ar->len = 0;
@@ -4384,35 +4385,20 @@
 
 	return block;
 }
-static void ext4_mb_poll_new_transaction(struct super_block *sb,
-						handle_t *handle)
+
+/*
+ * We can merge two free data extents only if the physical blocks
+ * are contiguous, AND the extents were freed by the same transaction,
+ * AND the blocks are associated with the same group.
+ */
+static int can_merge(struct ext4_free_data *entry1,
+			struct ext4_free_data *entry2)
 {
-	struct ext4_sb_info *sbi = EXT4_SB(sb);
-
-	if (sbi->s_last_transaction == handle->h_transaction->t_tid)
-		return;
-
-	/* new transaction! time to close last one and free blocks for
-	 * committed transaction. we know that only transaction can be
-	 * active, so previos transaction can be being logged and we
-	 * know that transaction before previous is known to be already
-	 * logged. this means that now we may free blocks freed in all
-	 * transactions before previous one. hope I'm clear enough ... */
-
-	spin_lock(&sbi->s_md_lock);
-	if (sbi->s_last_transaction != handle->h_transaction->t_tid) {
-		mb_debug("new transaction %lu, old %lu\n",
-				(unsigned long) handle->h_transaction->t_tid,
-				(unsigned long) sbi->s_last_transaction);
-		list_splice_init(&sbi->s_closed_transaction,
-				&sbi->s_committed_transaction);
-		list_splice_init(&sbi->s_active_transaction,
-				&sbi->s_closed_transaction);
-		sbi->s_last_transaction = handle->h_transaction->t_tid;
-	}
-	spin_unlock(&sbi->s_md_lock);
-
-	ext4_mb_free_committed_blocks(sb);
+	if ((entry1->t_tid == entry2->t_tid) &&
+	    (entry1->group == entry2->group) &&
+	    ((entry1->start_blk + entry1->count) == entry2->start_blk))
+		return 1;
+	return 0;
 }
 
 static noinline_for_stack int
@@ -4422,57 +4408,80 @@
 	struct ext4_group_info *db = e4b->bd_info;
 	struct super_block *sb = e4b->bd_sb;
 	struct ext4_sb_info *sbi = EXT4_SB(sb);
-	struct ext4_free_metadata *md;
-	int i;
+	struct ext4_free_data *entry, *new_entry;
+	struct rb_node **n = &db->bb_free_root.rb_node, *node;
+	struct rb_node *parent = NULL, *new_node;
+
 
 	BUG_ON(e4b->bd_bitmap_page == NULL);
 	BUG_ON(e4b->bd_buddy_page == NULL);
 
+	new_entry  = kmem_cache_alloc(ext4_free_ext_cachep, GFP_NOFS);
+	new_entry->start_blk = block;
+	new_entry->group  = group;
+	new_entry->count = count;
+	new_entry->t_tid = handle->h_transaction->t_tid;
+	new_node = &new_entry->node;
+
 	ext4_lock_group(sb, group);
-	for (i = 0; i < count; i++) {
-		md = db->bb_md_cur;
-		if (md && db->bb_tid != handle->h_transaction->t_tid) {
-			db->bb_md_cur = NULL;
-			md = NULL;
-		}
-
-		if (md == NULL) {
-			ext4_unlock_group(sb, group);
-			md = kmalloc(sizeof(*md), GFP_NOFS);
-			if (md == NULL)
-				return -ENOMEM;
-			md->num = 0;
-			md->group = group;
-
-			ext4_lock_group(sb, group);
-			if (db->bb_md_cur == NULL) {
-				spin_lock(&sbi->s_md_lock);
-				list_add(&md->list, &sbi->s_active_transaction);
-				spin_unlock(&sbi->s_md_lock);
-				/* protect buddy cache from being freed,
-				 * otherwise we'll refresh it from
-				 * on-disk bitmap and lose not-yet-available
-				 * blocks */
-				page_cache_get(e4b->bd_buddy_page);
-				page_cache_get(e4b->bd_bitmap_page);
-				db->bb_md_cur = md;
-				db->bb_tid = handle->h_transaction->t_tid;
-				mb_debug("new md 0x%p for group %lu\n",
-						md, md->group);
-			} else {
-				kfree(md);
-				md = db->bb_md_cur;
-			}
-		}
-
-		BUG_ON(md->num >= EXT4_BB_MAX_BLOCKS);
-		md->blocks[md->num] = block + i;
-		md->num++;
-		if (md->num == EXT4_BB_MAX_BLOCKS) {
-			/* no more space, put full container on a sb's list */
-			db->bb_md_cur = NULL;
+	if (!*n) {
+		/* first free block exent. We need to
+		   protect buddy cache from being freed,
+		 * otherwise we'll refresh it from
+		 * on-disk bitmap and lose not-yet-available
+		 * blocks */
+		page_cache_get(e4b->bd_buddy_page);
+		page_cache_get(e4b->bd_bitmap_page);
+	}
+	while (*n) {
+		parent = *n;
+		entry = rb_entry(parent, struct ext4_free_data, node);
+		if (block < entry->start_blk)
+			n = &(*n)->rb_left;
+		else if (block >= (entry->start_blk + entry->count))
+			n = &(*n)->rb_right;
+		else {
+			ext4_error(sb, __func__,
+			    "Double free of blocks %d (%d %d)\n",
+			    block, entry->start_blk, entry->count);
+			return 0;
 		}
 	}
+
+	rb_link_node(new_node, parent, n);
+	rb_insert_color(new_node, &db->bb_free_root);
+
+	/* Now try to see the extent can be merged to left and right */
+	node = rb_prev(new_node);
+	if (node) {
+		entry = rb_entry(node, struct ext4_free_data, node);
+		if (can_merge(entry, new_entry)) {
+			new_entry->start_blk = entry->start_blk;
+			new_entry->count += entry->count;
+			rb_erase(node, &(db->bb_free_root));
+			spin_lock(&sbi->s_md_lock);
+			list_del(&entry->list);
+			spin_unlock(&sbi->s_md_lock);
+			kmem_cache_free(ext4_free_ext_cachep, entry);
+		}
+	}
+
+	node = rb_next(new_node);
+	if (node) {
+		entry = rb_entry(node, struct ext4_free_data, node);
+		if (can_merge(new_entry, entry)) {
+			new_entry->count += entry->count;
+			rb_erase(node, &(db->bb_free_root));
+			spin_lock(&sbi->s_md_lock);
+			list_del(&entry->list);
+			spin_unlock(&sbi->s_md_lock);
+			kmem_cache_free(ext4_free_ext_cachep, entry);
+		}
+	}
+	/* Add the extent to transaction's private list */
+	spin_lock(&sbi->s_md_lock);
+	list_add(&new_entry->list, &handle->h_transaction->t_private_list);
+	spin_unlock(&sbi->s_md_lock);
 	ext4_unlock_group(sb, group);
 	return 0;
 }
@@ -4500,8 +4509,6 @@
 
 	*freed = 0;
 
-	ext4_mb_poll_new_transaction(sb, handle);
-
 	sbi = EXT4_SB(sb);
 	es = EXT4_SB(sb)->s_es;
 	if (block < le32_to_cpu(es->s_first_data_block) ||
diff --git a/fs/ext4/mballoc.h b/fs/ext4/mballoc.h
index b3b4828..b5dff1f 100644
--- a/fs/ext4/mballoc.h
+++ b/fs/ext4/mballoc.h
@@ -18,6 +18,8 @@
 #include <linux/pagemap.h>
 #include <linux/seq_file.h>
 #include <linux/version.h>
+#include <linux/blkdev.h>
+#include <linux/marker.h>
 #include "ext4_jbd2.h"
 #include "ext4.h"
 #include "group.h"
@@ -98,23 +100,29 @@
 
 static struct kmem_cache *ext4_pspace_cachep;
 static struct kmem_cache *ext4_ac_cachep;
+static struct kmem_cache *ext4_free_ext_cachep;
 
-#ifdef EXT4_BB_MAX_BLOCKS
-#undef EXT4_BB_MAX_BLOCKS
-#endif
-#define EXT4_BB_MAX_BLOCKS	30
+struct ext4_free_data {
+	/* this links the free block information from group_info */
+	struct rb_node node;
 
-struct ext4_free_metadata {
-	ext4_group_t group;
-	unsigned short num;
-	ext4_grpblk_t  blocks[EXT4_BB_MAX_BLOCKS];
+	/* this links the free block information from ext4_sb_info */
 	struct list_head list;
+
+	/* group which free block extent belongs */
+	ext4_group_t group;
+
+	/* free block extent */
+	ext4_grpblk_t start_blk;
+	ext4_grpblk_t count;
+
+	/* transaction which freed this extent */
+	tid_t	t_tid;
 };
 
 struct ext4_group_info {
 	unsigned long	bb_state;
-	unsigned long	bb_tid;
-	struct ext4_free_metadata *bb_md_cur;
+	struct rb_root  bb_free_root;
 	unsigned short	bb_first_free;
 	unsigned short	bb_free;
 	unsigned short	bb_fragments;
@@ -261,8 +269,6 @@
 
 static void ext4_mb_generate_from_pa(struct super_block *sb, void *bitmap,
 					ext4_group_t group);
-static void ext4_mb_poll_new_transaction(struct super_block *, handle_t *);
-static void ext4_mb_free_committed_blocks(struct super_block *);
 static void ext4_mb_return_to_preallocation(struct inode *inode,
 					struct ext4_buddy *e4b, sector_t block,
 					int count);
@@ -270,6 +276,7 @@
 			struct super_block *, struct ext4_prealloc_space *pa);
 static int ext4_mb_init_per_dev_proc(struct super_block *sb);
 static int ext4_mb_destroy_per_dev_proc(struct super_block *sb);
+static void release_blocks_on_commit(journal_t *journal, transaction_t *txn);
 
 
 static inline void ext4_lock_group(struct super_block *sb, ext4_group_t group)
diff --git a/fs/ext4/super.c b/fs/ext4/super.c
index dea8f13..9b2b2bc 100644
--- a/fs/ext4/super.c
+++ b/fs/ext4/super.c
@@ -374,66 +374,6 @@
 	 */
 }
 
-int ext4_update_compat_feature(handle_t *handle,
-					struct super_block *sb, __u32 compat)
-{
-	int err = 0;
-	if (!EXT4_HAS_COMPAT_FEATURE(sb, compat)) {
-		err = ext4_journal_get_write_access(handle,
-				EXT4_SB(sb)->s_sbh);
-		if (err)
-			return err;
-		EXT4_SET_COMPAT_FEATURE(sb, compat);
-		sb->s_dirt = 1;
-		handle->h_sync = 1;
-		BUFFER_TRACE(EXT4_SB(sb)->s_sbh,
-					"call ext4_journal_dirty_met adata");
-		err = ext4_journal_dirty_metadata(handle,
-				EXT4_SB(sb)->s_sbh);
-	}
-	return err;
-}
-
-int ext4_update_rocompat_feature(handle_t *handle,
-					struct super_block *sb, __u32 rocompat)
-{
-	int err = 0;
-	if (!EXT4_HAS_RO_COMPAT_FEATURE(sb, rocompat)) {
-		err = ext4_journal_get_write_access(handle,
-				EXT4_SB(sb)->s_sbh);
-		if (err)
-			return err;
-		EXT4_SET_RO_COMPAT_FEATURE(sb, rocompat);
-		sb->s_dirt = 1;
-		handle->h_sync = 1;
-		BUFFER_TRACE(EXT4_SB(sb)->s_sbh,
-					"call ext4_journal_dirty_met adata");
-		err = ext4_journal_dirty_metadata(handle,
-				EXT4_SB(sb)->s_sbh);
-	}
-	return err;
-}
-
-int ext4_update_incompat_feature(handle_t *handle,
-					struct super_block *sb, __u32 incompat)
-{
-	int err = 0;
-	if (!EXT4_HAS_INCOMPAT_FEATURE(sb, incompat)) {
-		err = ext4_journal_get_write_access(handle,
-				EXT4_SB(sb)->s_sbh);
-		if (err)
-			return err;
-		EXT4_SET_INCOMPAT_FEATURE(sb, incompat);
-		sb->s_dirt = 1;
-		handle->h_sync = 1;
-		BUFFER_TRACE(EXT4_SB(sb)->s_sbh,
-					"call ext4_journal_dirty_met adata");
-		err = ext4_journal_dirty_metadata(handle,
-				EXT4_SB(sb)->s_sbh);
-	}
-	return err;
-}
-
 /*
  * Open the external journal device
  */
@@ -904,7 +844,7 @@
 enum {
 	Opt_bsd_df, Opt_minix_df, Opt_grpid, Opt_nogrpid,
 	Opt_resgid, Opt_resuid, Opt_sb, Opt_err_cont, Opt_err_panic, Opt_err_ro,
-	Opt_nouid32, Opt_nocheck, Opt_debug, Opt_oldalloc, Opt_orlov,
+	Opt_nouid32, Opt_debug, Opt_oldalloc, Opt_orlov,
 	Opt_user_xattr, Opt_nouser_xattr, Opt_acl, Opt_noacl,
 	Opt_reservation, Opt_noreservation, Opt_noload, Opt_nobh, Opt_bh,
 	Opt_commit, Opt_journal_update, Opt_journal_inum, Opt_journal_dev,
@@ -915,7 +855,7 @@
 	Opt_jqfmt_vfsold, Opt_jqfmt_vfsv0, Opt_quota, Opt_noquota,
 	Opt_ignore, Opt_barrier, Opt_err, Opt_resize, Opt_usrquota,
 	Opt_grpquota, Opt_extents, Opt_noextents, Opt_i_version,
-	Opt_mballoc, Opt_nomballoc, Opt_stripe, Opt_delalloc, Opt_nodelalloc,
+	Opt_stripe, Opt_delalloc, Opt_nodelalloc,
 	Opt_inode_readahead_blks
 };
 
@@ -933,8 +873,6 @@
 	{Opt_err_panic, "errors=panic"},
 	{Opt_err_ro, "errors=remount-ro"},
 	{Opt_nouid32, "nouid32"},
-	{Opt_nocheck, "nocheck"},
-	{Opt_nocheck, "check=none"},
 	{Opt_debug, "debug"},
 	{Opt_oldalloc, "oldalloc"},
 	{Opt_orlov, "orlov"},
@@ -973,8 +911,6 @@
 	{Opt_extents, "extents"},
 	{Opt_noextents, "noextents"},
 	{Opt_i_version, "i_version"},
-	{Opt_mballoc, "mballoc"},
-	{Opt_nomballoc, "nomballoc"},
 	{Opt_stripe, "stripe=%u"},
 	{Opt_resize, "resize"},
 	{Opt_delalloc, "delalloc"},
@@ -1073,9 +1009,6 @@
 		case Opt_nouid32:
 			set_opt(sbi->s_mount_opt, NO_UID32);
 			break;
-		case Opt_nocheck:
-			clear_opt(sbi->s_mount_opt, CHECK);
-			break;
 		case Opt_debug:
 			set_opt(sbi->s_mount_opt, DEBUG);
 			break;
@@ -1618,14 +1551,14 @@
 		if (block_bitmap < first_block || block_bitmap > last_block) {
 			printk(KERN_ERR "EXT4-fs: ext4_check_descriptors: "
 			       "Block bitmap for group %lu not in group "
-			       "(block %llu)!", i, block_bitmap);
+			       "(block %llu)!\n", i, block_bitmap);
 			return 0;
 		}
 		inode_bitmap = ext4_inode_bitmap(sb, gdp);
 		if (inode_bitmap < first_block || inode_bitmap > last_block) {
 			printk(KERN_ERR "EXT4-fs: ext4_check_descriptors: "
 			       "Inode bitmap for group %lu not in group "
-			       "(block %llu)!", i, inode_bitmap);
+			       "(block %llu)!\n", i, inode_bitmap);
 			return 0;
 		}
 		inode_table = ext4_inode_table(sb, gdp);
@@ -1633,7 +1566,7 @@
 		    inode_table + sbi->s_itb_per_group - 1 > last_block) {
 			printk(KERN_ERR "EXT4-fs: ext4_check_descriptors: "
 			       "Inode table for group %lu not in group "
-			       "(block %llu)!", i, inode_table);
+			       "(block %llu)!\n", i, inode_table);
 			return 0;
 		}
 		spin_lock(sb_bgl_lock(sbi, i));
@@ -1778,13 +1711,13 @@
  *
  * Note, this does *not* consider any metadata overhead for vfs i_blocks.
  */
-static loff_t ext4_max_size(int blkbits)
+static loff_t ext4_max_size(int blkbits, int has_huge_files)
 {
 	loff_t res;
 	loff_t upper_limit = MAX_LFS_FILESIZE;
 
 	/* small i_blocks in vfs inode? */
-	if (sizeof(blkcnt_t) < sizeof(u64)) {
+	if (!has_huge_files || sizeof(blkcnt_t) < sizeof(u64)) {
 		/*
 		 * CONFIG_LSF is not enabled implies the inode
 		 * i_block represent total blocks in 512 bytes
@@ -1814,7 +1747,7 @@
  * block limit, and also a limit of (2^48 - 1) 512-byte sectors in i_blocks.
  * We need to be 1 filesystem block less than the 2^48 sector limit.
  */
-static loff_t ext4_max_bitmap_size(int bits)
+static loff_t ext4_max_bitmap_size(int bits, int has_huge_files)
 {
 	loff_t res = EXT4_NDIR_BLOCKS;
 	int meta_blocks;
@@ -1827,11 +1760,11 @@
 	 * total number of  512 bytes blocks of the file
 	 */
 
-	if (sizeof(blkcnt_t) < sizeof(u64)) {
+	if (!has_huge_files || sizeof(blkcnt_t) < sizeof(u64)) {
 		/*
-		 * CONFIG_LSF is not enabled implies the inode
-		 * i_block represent total blocks in 512 bytes
-		 * 32 == size of vfs inode i_blocks * 8
+		 * !has_huge_files or CONFIG_LSF is not enabled
+		 * implies the inode i_block represent total blocks in
+		 * 512 bytes 32 == size of vfs inode i_blocks * 8
 		 */
 		upper_limit = (1LL << 32) - 1;
 
@@ -1940,7 +1873,7 @@
 	int blocksize;
 	int db_count;
 	int i;
-	int needs_recovery;
+	int needs_recovery, has_huge_files;
 	__le32 features;
 	__u64 blocks_count;
 	int err;
@@ -2081,7 +2014,9 @@
 		       sb->s_id, le32_to_cpu(features));
 		goto failed_mount;
 	}
-	if (EXT4_HAS_RO_COMPAT_FEATURE(sb, EXT4_FEATURE_RO_COMPAT_HUGE_FILE)) {
+	has_huge_files = EXT4_HAS_RO_COMPAT_FEATURE(sb,
+				    EXT4_FEATURE_RO_COMPAT_HUGE_FILE);
+	if (has_huge_files) {
 		/*
 		 * Large file size enabled file system can only be
 		 * mount if kernel is build with CONFIG_LSF
@@ -2131,8 +2066,9 @@
 		}
 	}
 
-	sbi->s_bitmap_maxbytes = ext4_max_bitmap_size(sb->s_blocksize_bits);
-	sb->s_maxbytes = ext4_max_size(sb->s_blocksize_bits);
+	sbi->s_bitmap_maxbytes = ext4_max_bitmap_size(sb->s_blocksize_bits,
+						      has_huge_files);
+	sb->s_maxbytes = ext4_max_size(sb->s_blocksize_bits, has_huge_files);
 
 	if (le32_to_cpu(es->s_rev_level) == EXT4_GOOD_OLD_REV) {
 		sbi->s_inode_size = EXT4_GOOD_OLD_INODE_SIZE;
@@ -2456,6 +2392,21 @@
 			"available.\n");
 	}
 
+	if (test_opt(sb, DATA_FLAGS) == EXT4_MOUNT_JOURNAL_DATA) {
+		printk(KERN_WARNING "EXT4-fs: Ignoring delalloc option - "
+				"requested data journaling mode\n");
+		clear_opt(sbi->s_mount_opt, DELALLOC);
+	} else if (test_opt(sb, DELALLOC))
+		printk(KERN_INFO "EXT4-fs: delayed allocation enabled\n");
+
+	ext4_ext_init(sb);
+	err = ext4_mb_init(sb, needs_recovery);
+	if (err) {
+		printk(KERN_ERR "EXT4-fs: failed to initalize mballoc (%d)\n",
+		       err);
+		goto failed_mount4;
+	}
+
 	/*
 	 * akpm: core read_super() calls in here with the superblock locked.
 	 * That deadlocks, because orphan cleanup needs to lock the superblock
@@ -2475,21 +2426,6 @@
 	       test_opt(sb, DATA_FLAGS) == EXT4_MOUNT_ORDERED_DATA ? "ordered":
 	       "writeback");
 
-	if (test_opt(sb, DATA_FLAGS) == EXT4_MOUNT_JOURNAL_DATA) {
-		printk(KERN_WARNING "EXT4-fs: Ignoring delalloc option - "
-				"requested data journaling mode\n");
-		clear_opt(sbi->s_mount_opt, DELALLOC);
-	} else if (test_opt(sb, DELALLOC))
-		printk(KERN_INFO "EXT4-fs: delayed allocation enabled\n");
-
-	ext4_ext_init(sb);
-	err = ext4_mb_init(sb, needs_recovery);
-	if (err) {
-		printk(KERN_ERR "EXT4-fs: failed to initalize mballoc (%d)\n",
-		       err);
-		goto failed_mount4;
-	}
-
 	lock_kernel();
 	return 0;
 
diff --git a/fs/jbd2/commit.c b/fs/jbd2/commit.c
index 0abe02c..8b119e1 100644
--- a/fs/jbd2/commit.c
+++ b/fs/jbd2/commit.c
@@ -995,6 +995,9 @@
 	}
 	spin_unlock(&journal->j_list_lock);
 
+	if (journal->j_commit_callback)
+		journal->j_commit_callback(journal, commit_transaction);
+
 	trace_mark(jbd2_end_commit, "dev %s transaction %d head %d",
 		   journal->j_devname, commit_transaction->t_tid,
 		   journal->j_tail_sequence);
diff --git a/fs/jbd2/transaction.c b/fs/jbd2/transaction.c
index e5d5405..39b7805 100644
--- a/fs/jbd2/transaction.c
+++ b/fs/jbd2/transaction.c
@@ -52,6 +52,7 @@
 	transaction->t_expires = jiffies + journal->j_commit_interval;
 	spin_lock_init(&transaction->t_handle_lock);
 	INIT_LIST_HEAD(&transaction->t_inode_list);
+	INIT_LIST_HEAD(&transaction->t_private_list);
 
 	/* Set up the commit timer for the new transaction. */
 	journal->j_commit_timer.expires = round_jiffies(transaction->t_expires);
diff --git a/fs/partitions/check.c b/fs/partitions/check.c
index fbeb2f3..cfb0c80 100644
--- a/fs/partitions/check.c
+++ b/fs/partitions/check.c
@@ -195,6 +195,14 @@
 	return ERR_PTR(res);
 }
 
+static ssize_t part_partition_show(struct device *dev,
+				   struct device_attribute *attr, char *buf)
+{
+	struct hd_struct *p = dev_to_part(dev);
+
+	return sprintf(buf, "%d\n", p->partno);
+}
+
 static ssize_t part_start_show(struct device *dev,
 			       struct device_attribute *attr, char *buf)
 {
@@ -260,6 +268,7 @@
 }
 #endif
 
+static DEVICE_ATTR(partition, S_IRUGO, part_partition_show, NULL);
 static DEVICE_ATTR(start, S_IRUGO, part_start_show, NULL);
 static DEVICE_ATTR(size, S_IRUGO, part_size_show, NULL);
 static DEVICE_ATTR(stat, S_IRUGO, part_stat_show, NULL);
@@ -269,6 +278,7 @@
 #endif
 
 static struct attribute *part_attrs[] = {
+	&dev_attr_partition.attr,
 	&dev_attr_start.attr,
 	&dev_attr_size.attr,
 	&dev_attr_stat.attr,
diff --git a/fs/proc/array.c b/fs/proc/array.c
index f4bc0e7..bb9f4b0 100644
--- a/fs/proc/array.c
+++ b/fs/proc/array.c
@@ -388,20 +388,20 @@
 
 		/* add up live thread stats at the group level */
 		if (whole) {
+			struct task_cputime cputime;
 			struct task_struct *t = task;
 			do {
 				min_flt += t->min_flt;
 				maj_flt += t->maj_flt;
-				utime = cputime_add(utime, task_utime(t));
-				stime = cputime_add(stime, task_stime(t));
 				gtime = cputime_add(gtime, task_gtime(t));
 				t = next_thread(t);
 			} while (t != task);
 
 			min_flt += sig->min_flt;
 			maj_flt += sig->maj_flt;
-			utime = cputime_add(utime, sig->utime);
-			stime = cputime_add(stime, sig->stime);
+			thread_group_cputime(task, &cputime);
+			utime = cputime.utime;
+			stime = cputime.stime;
 			gtime = cputime_add(gtime, sig->gtime);
 		}
 
diff --git a/include/drm/drm.h b/include/drm/drm.h
index 38d3c6b..f46ba4b 100644
--- a/include/drm/drm.h
+++ b/include/drm/drm.h
@@ -36,7 +36,6 @@
 #ifndef _DRM_H_
 #define _DRM_H_
 
-#if defined(__linux__)
 #if defined(__KERNEL__)
 #endif
 #include <asm/ioctl.h>		/* For _IO* macros */
@@ -46,22 +45,6 @@
 #define DRM_IOC_WRITE		_IOC_WRITE
 #define DRM_IOC_READWRITE	_IOC_READ|_IOC_WRITE
 #define DRM_IOC(dir, group, nr, size) _IOC(dir, group, nr, size)
-#elif defined(__FreeBSD__) || defined(__NetBSD__) || defined(__OpenBSD__)
-#if defined(__FreeBSD__) && defined(IN_MODULE)
-/* Prevent name collision when including sys/ioccom.h */
-#undef ioctl
-#include <sys/ioccom.h>
-#define ioctl(a,b,c)		xf86ioctl(a,b,c)
-#else
-#include <sys/ioccom.h>
-#endif				/* __FreeBSD__ && xf86ioctl */
-#define DRM_IOCTL_NR(n)		((n) & 0xff)
-#define DRM_IOC_VOID		IOC_VOID
-#define DRM_IOC_READ		IOC_OUT
-#define DRM_IOC_WRITE		IOC_IN
-#define DRM_IOC_READWRITE	IOC_INOUT
-#define DRM_IOC(dir, group, nr, size) _IOC(dir, group, nr, size)
-#endif
 
 #define DRM_MAJOR       226
 #define DRM_MAX_MINOR   15
@@ -471,6 +454,7 @@
 enum drm_vblank_seq_type {
 	_DRM_VBLANK_ABSOLUTE = 0x0,	/**< Wait for specific vblank sequence number */
 	_DRM_VBLANK_RELATIVE = 0x1,	/**< Wait for given number of vblanks */
+	_DRM_VBLANK_FLIP = 0x8000000,   /**< Scheduled buffer swap should flip */
 	_DRM_VBLANK_NEXTONMISS = 0x10000000,	/**< If missed, wait for next vblank */
 	_DRM_VBLANK_SECONDARY = 0x20000000,	/**< Secondary display controller */
 	_DRM_VBLANK_SIGNAL = 0x40000000	/**< Send signal instead of blocking */
@@ -503,6 +487,19 @@
 	struct drm_wait_vblank_reply reply;
 };
 
+#define _DRM_PRE_MODESET 1
+#define _DRM_POST_MODESET 2
+
+/**
+ * DRM_IOCTL_MODESET_CTL ioctl argument type
+ *
+ * \sa drmModesetCtl().
+ */
+struct drm_modeset_ctl {
+	uint32_t crtc;
+	uint32_t cmd;
+};
+
 /**
  * DRM_IOCTL_AGP_ENABLE ioctl argument type.
  *
@@ -573,6 +570,34 @@
 	int drm_dd_minor;
 };
 
+/** DRM_IOCTL_GEM_CLOSE ioctl argument type */
+struct drm_gem_close {
+	/** Handle of the object to be closed. */
+	uint32_t handle;
+	uint32_t pad;
+};
+
+/** DRM_IOCTL_GEM_FLINK ioctl argument type */
+struct drm_gem_flink {
+	/** Handle for the object being named */
+	uint32_t handle;
+
+	/** Returned global name */
+	uint32_t name;
+};
+
+/** DRM_IOCTL_GEM_OPEN ioctl argument type */
+struct drm_gem_open {
+	/** Name of object being opened */
+	uint32_t name;
+
+	/** Returned handle for the object */
+	uint32_t handle;
+
+	/** Returned size of the object */
+	uint64_t size;
+};
+
 #define DRM_IOCTL_BASE			'd'
 #define DRM_IO(nr)			_IO(DRM_IOCTL_BASE,nr)
 #define DRM_IOR(nr,type)		_IOR(DRM_IOCTL_BASE,nr,type)
@@ -587,6 +612,10 @@
 #define DRM_IOCTL_GET_CLIENT            DRM_IOWR(0x05, struct drm_client)
 #define DRM_IOCTL_GET_STATS             DRM_IOR( 0x06, struct drm_stats)
 #define DRM_IOCTL_SET_VERSION		DRM_IOWR(0x07, struct drm_set_version)
+#define DRM_IOCTL_MODESET_CTL           DRM_IOW(0x08, struct drm_modeset_ctl)
+#define DRM_IOCTL_GEM_CLOSE		DRM_IOW (0x09, struct drm_gem_close)
+#define DRM_IOCTL_GEM_FLINK		DRM_IOWR(0x0a, struct drm_gem_flink)
+#define DRM_IOCTL_GEM_OPEN		DRM_IOWR(0x0b, struct drm_gem_open)
 
 #define DRM_IOCTL_SET_UNIQUE		DRM_IOW( 0x10, struct drm_unique)
 #define DRM_IOCTL_AUTH_MAGIC		DRM_IOW( 0x11, struct drm_auth)
diff --git a/include/drm/drmP.h b/include/drm/drmP.h
index 1c1b13e..59c796b 100644
--- a/include/drm/drmP.h
+++ b/include/drm/drmP.h
@@ -104,6 +104,7 @@
 #define DRIVER_DMA_QUEUE   0x200
 #define DRIVER_FB_DMA      0x400
 #define DRIVER_IRQ_VBL2    0x800
+#define DRIVER_GEM         0x1000
 
 /***********************************************************************/
 /** \name Begin the DRM... */
@@ -387,6 +388,10 @@
 	struct drm_minor *minor;
 	int remove_auth_on_close;
 	unsigned long lock_count;
+	/** Mapping of mm object handles to object pointers. */
+	struct idr object_idr;
+	/** Lock for synchronization of access to object_idr. */
+	spinlock_t table_lock;
 	struct file *filp;
 	void *driver_priv;
 };
@@ -558,6 +563,56 @@
 };
 
 /**
+ * This structure defines the drm_mm memory object, which will be used by the
+ * DRM for its buffer objects.
+ */
+struct drm_gem_object {
+	/** Reference count of this object */
+	struct kref refcount;
+
+	/** Handle count of this object. Each handle also holds a reference */
+	struct kref handlecount;
+
+	/** Related drm device */
+	struct drm_device *dev;
+
+	/** File representing the shmem storage */
+	struct file *filp;
+
+	/**
+	 * Size of the object, in bytes.  Immutable over the object's
+	 * lifetime.
+	 */
+	size_t size;
+
+	/**
+	 * Global name for this object, starts at 1. 0 means unnamed.
+	 * Access is covered by the object_name_lock in the related drm_device
+	 */
+	int name;
+
+	/**
+	 * Memory domains. These monitor which caches contain read/write data
+	 * related to the object. When transitioning from one set of domains
+	 * to another, the driver is called to ensure that caches are suitably
+	 * flushed and invalidated
+	 */
+	uint32_t read_domains;
+	uint32_t write_domain;
+
+	/**
+	 * While validating an exec operation, the
+	 * new read/write domain values are computed here.
+	 * They will be transferred to the above values
+	 * at the point that any cache flushing occurs
+	 */
+	uint32_t pending_read_domains;
+	uint32_t pending_write_domain;
+
+	void *driver_private;
+};
+
+/**
  * DRM driver structure. This structure represent the common code for
  * a family of cards. There will one drm_device for each card present
  * in this family
@@ -580,11 +635,54 @@
 	int (*kernel_context_switch) (struct drm_device *dev, int old,
 				      int new);
 	void (*kernel_context_switch_unlock) (struct drm_device *dev);
-	int (*vblank_wait) (struct drm_device *dev, unsigned int *sequence);
-	int (*vblank_wait2) (struct drm_device *dev, unsigned int *sequence);
 	int (*dri_library_name) (struct drm_device *dev, char *buf);
 
 	/**
+	 * get_vblank_counter - get raw hardware vblank counter
+	 * @dev: DRM device
+	 * @crtc: counter to fetch
+	 *
+	 * Driver callback for fetching a raw hardware vblank counter
+	 * for @crtc.  If a device doesn't have a hardware counter, the
+	 * driver can simply return the value of drm_vblank_count and
+	 * make the enable_vblank() and disable_vblank() hooks into no-ops,
+	 * leaving interrupts enabled at all times.
+	 *
+	 * Wraparound handling and loss of events due to modesetting is dealt
+	 * with in the DRM core code.
+	 *
+	 * RETURNS
+	 * Raw vblank counter value.
+	 */
+	u32 (*get_vblank_counter) (struct drm_device *dev, int crtc);
+
+	/**
+	 * enable_vblank - enable vblank interrupt events
+	 * @dev: DRM device
+	 * @crtc: which irq to enable
+	 *
+	 * Enable vblank interrupts for @crtc.  If the device doesn't have
+	 * a hardware vblank counter, this routine should be a no-op, since
+	 * interrupts will have to stay on to keep the count accurate.
+	 *
+	 * RETURNS
+	 * Zero on success, appropriate errno if the given @crtc's vblank
+	 * interrupt cannot be enabled.
+	 */
+	int (*enable_vblank) (struct drm_device *dev, int crtc);
+
+	/**
+	 * disable_vblank - disable vblank interrupt events
+	 * @dev: DRM device
+	 * @crtc: which irq to enable
+	 *
+	 * Disable vblank interrupts for @crtc.  If the device doesn't have
+	 * a hardware vblank counter, this routine should be a no-op, since
+	 * interrupts will have to stay on to keep the count accurate.
+	 */
+	void (*disable_vblank) (struct drm_device *dev, int crtc);
+
+	/**
 	 * Called by \c drm_device_is_agp.  Typically used to determine if a
 	 * card is really attached to AGP or not.
 	 *
@@ -601,7 +699,7 @@
 
 	irqreturn_t(*irq_handler) (DRM_IRQ_ARGS);
 	void (*irq_preinstall) (struct drm_device *dev);
-	void (*irq_postinstall) (struct drm_device *dev);
+	int (*irq_postinstall) (struct drm_device *dev);
 	void (*irq_uninstall) (struct drm_device *dev);
 	void (*reclaim_buffers) (struct drm_device *dev,
 				 struct drm_file * file_priv);
@@ -614,6 +712,18 @@
 	void (*set_version) (struct drm_device *dev,
 			     struct drm_set_version *sv);
 
+	int (*proc_init)(struct drm_minor *minor);
+	void (*proc_cleanup)(struct drm_minor *minor);
+
+	/**
+	 * Driver-specific constructor for drm_gem_objects, to set up
+	 * obj->driver_private.
+	 *
+	 * Returns 0 on success.
+	 */
+	int (*gem_init_object) (struct drm_gem_object *obj);
+	void (*gem_free_object) (struct drm_gem_object *obj);
+
 	int major;
 	int minor;
 	int patchlevel;
@@ -714,7 +824,6 @@
 
 	/** \name Context support */
 	/*@{ */
-	int irq;			/**< Interrupt used by board */
 	int irq_enabled;		/**< True if irq handler is enabled */
 	__volatile__ long context_flag;	/**< Context swapping flag */
 	__volatile__ long interrupt_flag; /**< Interruption handler flag */
@@ -730,13 +839,28 @@
 	/** \name VBLANK IRQ support */
 	/*@{ */
 
-	wait_queue_head_t vbl_queue;	/**< VBLANK wait queue */
-	atomic_t vbl_received;
-	atomic_t vbl_received2;		/**< number of secondary VBLANK interrupts */
+	/*
+	 * At load time, disabling the vblank interrupt won't be allowed since
+	 * old clients may not call the modeset ioctl and therefore misbehave.
+	 * Once the modeset ioctl *has* been called though, we can safely
+	 * disable them when unused.
+	 */
+	int vblank_disable_allowed;
+
+	wait_queue_head_t *vbl_queue;   /**< VBLANK wait queue */
+	atomic_t *_vblank_count;        /**< number of VBLANK interrupts (driver must alloc the right number of counters) */
 	spinlock_t vbl_lock;
-	struct list_head vbl_sigs;		/**< signal list to send on VBLANK */
-	struct list_head vbl_sigs2;	/**< signals to send on secondary VBLANK */
-	unsigned int vbl_pending;
+	struct list_head *vbl_sigs;	/**< signal list to send on VBLANK */
+	atomic_t vbl_signal_pending;    /* number of signals pending on all crtcs*/
+	atomic_t *vblank_refcount;      /* number of users of vblank interruptsper crtc */
+	u32 *last_vblank;               /* protected by dev->vbl_lock, used */
+					/* for wraparound handling */
+	int *vblank_enabled;            /* so we don't call enable more than
+					   once per disable */
+	int *vblank_inmodeset;          /* Display driver is setting mode */
+	struct timer_list vblank_disable_timer;
+
+	u32 max_vblank_count;           /**< size of vblank counter register */
 	spinlock_t tasklet_lock;	/**< For drm_locked_tasklet */
 	void (*locked_tasklet_func)(struct drm_device *dev);
 
@@ -757,6 +881,7 @@
 	struct pci_controller *hose;
 #endif
 	struct drm_sg_mem *sg;	/**< Scatter gather memory */
+	int num_crtcs;                  /**< Number of CRTCs on this device */
 	void *dev_private;		/**< device private data */
 	struct drm_sigdata sigdata;	   /**< For block_all_signals */
 	sigset_t sigmask;
@@ -771,8 +896,29 @@
 	spinlock_t drw_lock;
 	struct idr drw_idr;
 	/*@} */
+
+	/** \name GEM information */
+	/*@{ */
+	spinlock_t object_name_lock;
+	struct idr object_name_idr;
+	atomic_t object_count;
+	atomic_t object_memory;
+	atomic_t pin_count;
+	atomic_t pin_memory;
+	atomic_t gtt_count;
+	atomic_t gtt_memory;
+	uint32_t gtt_total;
+	uint32_t invalidate_domains;    /* domains pending invalidation */
+	uint32_t flush_domains;         /* domains pending flush */
+	/*@} */
+
 };
 
+static inline int drm_dev_to_irq(struct drm_device *dev)
+{
+	return dev->pdev->irq;
+}
+
 static __inline__ int drm_core_check_feature(struct drm_device *dev,
 					     int feature)
 {
@@ -867,6 +1013,11 @@
 extern DRM_AGP_MEM *drm_alloc_agp(struct drm_device *dev, int pages, u32 type);
 extern int drm_free_agp(DRM_AGP_MEM * handle, int pages);
 extern int drm_bind_agp(DRM_AGP_MEM * handle, unsigned int start);
+extern DRM_AGP_MEM *drm_agp_bind_pages(struct drm_device *dev,
+				       struct page **pages,
+				       unsigned long num_pages,
+				       uint32_t gtt_offset,
+				       uint32_t type);
 extern int drm_unbind_agp(DRM_AGP_MEM * handle);
 
 				/* Misc. IOCTL support (drm_ioctl.h) */
@@ -929,6 +1080,9 @@
 extern int drm_authmagic(struct drm_device *dev, void *data,
 			 struct drm_file *file_priv);
 
+/* Cache management (drm_cache.c) */
+void drm_clflush_pages(struct page *pages[], unsigned long num_pages);
+
 				/* Locking IOCTL support (drm_lock.h) */
 extern int drm_lock(struct drm_device *dev, void *data,
 		    struct drm_file *file_priv);
@@ -985,15 +1139,25 @@
 extern int drm_control(struct drm_device *dev, void *data,
 		       struct drm_file *file_priv);
 extern irqreturn_t drm_irq_handler(DRM_IRQ_ARGS);
+extern int drm_irq_install(struct drm_device *dev);
 extern int drm_irq_uninstall(struct drm_device *dev);
 extern void drm_driver_irq_preinstall(struct drm_device *dev);
 extern void drm_driver_irq_postinstall(struct drm_device *dev);
 extern void drm_driver_irq_uninstall(struct drm_device *dev);
 
+extern int drm_vblank_init(struct drm_device *dev, int num_crtcs);
 extern int drm_wait_vblank(struct drm_device *dev, void *data,
-			   struct drm_file *file_priv);
+			   struct drm_file *filp);
 extern int drm_vblank_wait(struct drm_device *dev, unsigned int *vbl_seq);
-extern void drm_vbl_send_signals(struct drm_device *dev);
+extern void drm_locked_tasklet(struct drm_device *dev,
+			       void(*func)(struct drm_device *));
+extern u32 drm_vblank_count(struct drm_device *dev, int crtc);
+extern void drm_handle_vblank(struct drm_device *dev, int crtc);
+extern int drm_vblank_get(struct drm_device *dev, int crtc);
+extern void drm_vblank_put(struct drm_device *dev, int crtc);
+/* Modesetting support */
+extern int drm_modeset_ctl(struct drm_device *dev, void *data,
+			   struct drm_file *file_priv);
 extern void drm_locked_tasklet(struct drm_device *dev, void(*func)(struct drm_device*));
 
 				/* AGP/GART support (drm_agpsupport.h) */
@@ -1026,6 +1190,7 @@
 extern int drm_agp_free_memory(DRM_AGP_MEM * handle);
 extern int drm_agp_bind_memory(DRM_AGP_MEM * handle, off_t start);
 extern int drm_agp_unbind_memory(DRM_AGP_MEM * handle);
+extern void drm_agp_chipset_flush(struct drm_device *dev);
 
 				/* Stub support (drm_stub.h) */
 extern int drm_get_dev(struct pci_dev *pdev, const struct pci_device_id *ent,
@@ -1088,6 +1253,66 @@
 extern int drm_mm_remove_space_from_tail(struct drm_mm *mm, unsigned long size);
 extern int drm_mm_add_space_to_tail(struct drm_mm *mm, unsigned long size);
 
+/* Graphics Execution Manager library functions (drm_gem.c) */
+int drm_gem_init(struct drm_device *dev);
+void drm_gem_object_free(struct kref *kref);
+struct drm_gem_object *drm_gem_object_alloc(struct drm_device *dev,
+					    size_t size);
+void drm_gem_object_handle_free(struct kref *kref);
+
+static inline void
+drm_gem_object_reference(struct drm_gem_object *obj)
+{
+	kref_get(&obj->refcount);
+}
+
+static inline void
+drm_gem_object_unreference(struct drm_gem_object *obj)
+{
+	if (obj == NULL)
+		return;
+
+	kref_put(&obj->refcount, drm_gem_object_free);
+}
+
+int drm_gem_handle_create(struct drm_file *file_priv,
+			  struct drm_gem_object *obj,
+			  int *handlep);
+
+static inline void
+drm_gem_object_handle_reference(struct drm_gem_object *obj)
+{
+	drm_gem_object_reference(obj);
+	kref_get(&obj->handlecount);
+}
+
+static inline void
+drm_gem_object_handle_unreference(struct drm_gem_object *obj)
+{
+	if (obj == NULL)
+		return;
+
+	/*
+	 * Must bump handle count first as this may be the last
+	 * ref, in which case the object would disappear before we
+	 * checked for a name
+	 */
+	kref_put(&obj->handlecount, drm_gem_object_handle_free);
+	drm_gem_object_unreference(obj);
+}
+
+struct drm_gem_object *drm_gem_object_lookup(struct drm_device *dev,
+					     struct drm_file *filp,
+					     int handle);
+int drm_gem_close_ioctl(struct drm_device *dev, void *data,
+			struct drm_file *file_priv);
+int drm_gem_flink_ioctl(struct drm_device *dev, void *data,
+			struct drm_file *file_priv);
+int drm_gem_open_ioctl(struct drm_device *dev, void *data,
+		       struct drm_file *file_priv);
+void drm_gem_open(struct drm_device *dev, struct drm_file *file_private);
+void drm_gem_release(struct drm_device *dev, struct drm_file *file_private);
+
 extern void drm_core_ioremap(struct drm_map *map, struct drm_device *dev);
 extern void drm_core_ioremap_wc(struct drm_map *map, struct drm_device *dev);
 extern void drm_core_ioremapfree(struct drm_map *map, struct drm_device *dev);
diff --git a/include/drm/drm_pciids.h b/include/drm/drm_pciids.h
index 135bd19..da04109 100644
--- a/include/drm/drm_pciids.h
+++ b/include/drm/drm_pciids.h
@@ -84,18 +84,18 @@
 	{0x1002, 0x5462, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV380|RADEON_IS_MOBILITY}, \
 	{0x1002, 0x5464, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV380|RADEON_IS_MOBILITY}, \
 	{0x1002, 0x5657, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV380|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x5548, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x5549, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x554A, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x554B, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x554C, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x554D, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x554E, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x554F, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x5550, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x5551, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x5552, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x5554, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x5548, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x5549, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x554A, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x554B, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x554C, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x554D, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x554E, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x554F, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x5550, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x5551, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x5552, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x5554, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
 	{0x1002, 0x564A, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV410|RADEON_IS_MOBILITY|RADEON_NEW_MEMMAP}, \
 	{0x1002, 0x564B, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV410|RADEON_IS_MOBILITY|RADEON_NEW_MEMMAP}, \
 	{0x1002, 0x564F, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV410|RADEON_IS_MOBILITY|RADEON_NEW_MEMMAP}, \
@@ -113,8 +113,10 @@
 	{0x1002, 0x5964, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV280}, \
 	{0x1002, 0x5965, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV280}, \
 	{0x1002, 0x5969, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV100}, \
-	{0x1002, 0x5a61, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RS480|RADEON_IS_IGP|RADEON_IS_MOBILITY|RADEON_IS_IGPGART}, \
-	{0x1002, 0x5a62, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RS480|RADEON_IS_IGP|RADEON_IS_MOBILITY|RADEON_IS_IGPGART}, \
+	{0x1002, 0x5a41, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RS400|RADEON_IS_IGP|RADEON_IS_IGPGART}, \
+	{0x1002, 0x5a42, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RS400|RADEON_IS_IGP|RADEON_IS_MOBILITY|RADEON_IS_IGPGART}, \
+	{0x1002, 0x5a61, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RS400|RADEON_IS_IGP|RADEON_IS_IGPGART}, \
+	{0x1002, 0x5a62, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RS400|RADEON_IS_IGP|RADEON_IS_MOBILITY|RADEON_IS_IGPGART}, \
 	{0x1002, 0x5b60, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV380|RADEON_NEW_MEMMAP}, \
 	{0x1002, 0x5b62, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV380|RADEON_NEW_MEMMAP}, \
 	{0x1002, 0x5b63, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV380|RADEON_NEW_MEMMAP}, \
@@ -122,16 +124,16 @@
 	{0x1002, 0x5b65, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV380|RADEON_NEW_MEMMAP}, \
 	{0x1002, 0x5c61, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV280|RADEON_IS_MOBILITY}, \
 	{0x1002, 0x5c63, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV280|RADEON_IS_MOBILITY}, \
-	{0x1002, 0x5d48, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_IS_MOBILITY|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x5d49, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_IS_MOBILITY|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x5d4a, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_IS_MOBILITY|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x5d4c, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x5d4d, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x5d4e, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x5d4f, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x5d50, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x5d52, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
-	{0x1002, 0x5d57, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R420|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x5d48, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_IS_MOBILITY|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x5d49, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_IS_MOBILITY|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x5d4a, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_IS_MOBILITY|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x5d4c, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x5d4d, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x5d4e, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x5d4f, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x5d50, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x5d52, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
+	{0x1002, 0x5d57, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_R423|RADEON_NEW_MEMMAP}, \
 	{0x1002, 0x5e48, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV410|RADEON_NEW_MEMMAP}, \
 	{0x1002, 0x5e4a, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV410|RADEON_NEW_MEMMAP}, \
 	{0x1002, 0x5e4b, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RV410|RADEON_NEW_MEMMAP}, \
@@ -237,6 +239,10 @@
 	{0x1002, 0x7835, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RS300|RADEON_IS_IGP|RADEON_IS_MOBILITY|RADEON_NEW_MEMMAP}, \
 	{0x1002, 0x791e, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RS690|RADEON_IS_IGP|RADEON_NEW_MEMMAP|RADEON_IS_IGPGART}, \
 	{0x1002, 0x791f, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RS690|RADEON_IS_IGP|RADEON_NEW_MEMMAP|RADEON_IS_IGPGART}, \
+	{0x1002, 0x796c, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RS740|RADEON_IS_IGP|RADEON_NEW_MEMMAP|RADEON_IS_IGPGART}, \
+	{0x1002, 0x796d, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RS740|RADEON_IS_IGP|RADEON_NEW_MEMMAP|RADEON_IS_IGPGART}, \
+	{0x1002, 0x796e, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RS740|RADEON_IS_IGP|RADEON_NEW_MEMMAP|RADEON_IS_IGPGART}, \
+	{0x1002, 0x796f, PCI_ANY_ID, PCI_ANY_ID, 0, 0, CHIP_RS740|RADEON_IS_IGP|RADEON_NEW_MEMMAP|RADEON_IS_IGPGART}, \
 	{0, 0, 0}
 
 #define r128_PCI_IDS \
diff --git a/include/drm/i915_drm.h b/include/drm/i915_drm.h
index 05c66cf..eb4b350 100644
--- a/include/drm/i915_drm.h
+++ b/include/drm/i915_drm.h
@@ -143,6 +143,22 @@
 #define DRM_I915_GET_VBLANK_PIPE	0x0e
 #define DRM_I915_VBLANK_SWAP	0x0f
 #define DRM_I915_HWS_ADDR	0x11
+#define DRM_I915_GEM_INIT	0x13
+#define DRM_I915_GEM_EXECBUFFER	0x14
+#define DRM_I915_GEM_PIN	0x15
+#define DRM_I915_GEM_UNPIN	0x16
+#define DRM_I915_GEM_BUSY	0x17
+#define DRM_I915_GEM_THROTTLE	0x18
+#define DRM_I915_GEM_ENTERVT	0x19
+#define DRM_I915_GEM_LEAVEVT	0x1a
+#define DRM_I915_GEM_CREATE	0x1b
+#define DRM_I915_GEM_PREAD	0x1c
+#define DRM_I915_GEM_PWRITE	0x1d
+#define DRM_I915_GEM_MMAP	0x1e
+#define DRM_I915_GEM_SET_DOMAIN	0x1f
+#define DRM_I915_GEM_SW_FINISH	0x20
+#define DRM_I915_GEM_SET_TILING	0x21
+#define DRM_I915_GEM_GET_TILING	0x22
 
 #define DRM_IOCTL_I915_INIT		DRM_IOW( DRM_COMMAND_BASE + DRM_I915_INIT, drm_i915_init_t)
 #define DRM_IOCTL_I915_FLUSH		DRM_IO ( DRM_COMMAND_BASE + DRM_I915_FLUSH)
@@ -160,6 +176,20 @@
 #define DRM_IOCTL_I915_SET_VBLANK_PIPE	DRM_IOW( DRM_COMMAND_BASE + DRM_I915_SET_VBLANK_PIPE, drm_i915_vblank_pipe_t)
 #define DRM_IOCTL_I915_GET_VBLANK_PIPE	DRM_IOR( DRM_COMMAND_BASE + DRM_I915_GET_VBLANK_PIPE, drm_i915_vblank_pipe_t)
 #define DRM_IOCTL_I915_VBLANK_SWAP	DRM_IOWR(DRM_COMMAND_BASE + DRM_I915_VBLANK_SWAP, drm_i915_vblank_swap_t)
+#define DRM_IOCTL_I915_GEM_PIN		DRM_IOWR(DRM_COMMAND_BASE + DRM_I915_GEM_PIN, struct drm_i915_gem_pin)
+#define DRM_IOCTL_I915_GEM_UNPIN	DRM_IOW(DRM_COMMAND_BASE + DRM_I915_GEM_UNPIN, struct drm_i915_gem_unpin)
+#define DRM_IOCTL_I915_GEM_BUSY		DRM_IOWR(DRM_COMMAND_BASE + DRM_I915_GEM_BUSY, struct drm_i915_gem_busy)
+#define DRM_IOCTL_I915_GEM_THROTTLE	DRM_IO ( DRM_COMMAND_BASE + DRM_I915_GEM_THROTTLE)
+#define DRM_IOCTL_I915_GEM_ENTERVT	DRM_IO(DRM_COMMAND_BASE + DRM_I915_GEM_ENTERVT)
+#define DRM_IOCTL_I915_GEM_LEAVEVT	DRM_IO(DRM_COMMAND_BASE + DRM_I915_GEM_LEAVEVT)
+#define DRM_IOCTL_I915_GEM_CREATE	DRM_IOWR(DRM_COMMAND_BASE + DRM_I915_GEM_CREATE, struct drm_i915_gem_create)
+#define DRM_IOCTL_I915_GEM_PREAD	DRM_IOW (DRM_COMMAND_BASE + DRM_I915_GEM_PREAD, struct drm_i915_gem_pread)
+#define DRM_IOCTL_I915_GEM_PWRITE	DRM_IOW (DRM_COMMAND_BASE + DRM_I915_GEM_PWRITE, struct drm_i915_gem_pwrite)
+#define DRM_IOCTL_I915_GEM_MMAP		DRM_IOWR(DRM_COMMAND_BASE + DRM_I915_GEM_MMAP, struct drm_i915_gem_mmap)
+#define DRM_IOCTL_I915_GEM_SET_DOMAIN	DRM_IOW (DRM_COMMAND_BASE + DRM_I915_GEM_SET_DOMAIN, struct drm_i915_gem_set_domain)
+#define DRM_IOCTL_I915_GEM_SW_FINISH	DRM_IOW (DRM_COMMAND_BASE + DRM_I915_GEM_SW_FINISH, struct drm_i915_gem_sw_finish)
+#define DRM_IOCTL_I915_GEM_SET_TILING	DRM_IOWR (DRM_COMMAND_BASE + DRM_I915_GEM_SET_TILING, struct drm_i915_gem_set_tiling)
+#define DRM_IOCTL_I915_GEM_GET_TILING	DRM_IOWR (DRM_COMMAND_BASE + DRM_I915_GEM_GET_TILING, struct drm_i915_gem_get_tiling)
 
 /* Allow drivers to submit batchbuffers directly to hardware, relying
  * on the security mechanisms provided by hardware.
@@ -200,6 +230,8 @@
 #define I915_PARAM_IRQ_ACTIVE            1
 #define I915_PARAM_ALLOW_BATCHBUFFER     2
 #define I915_PARAM_LAST_DISPATCH         3
+#define I915_PARAM_CHIPSET_ID            4
+#define I915_PARAM_HAS_GEM               5
 
 typedef struct drm_i915_getparam {
 	int param;
@@ -267,4 +299,305 @@
 	uint64_t addr;
 } drm_i915_hws_addr_t;
 
+struct drm_i915_gem_init {
+	/**
+	 * Beginning offset in the GTT to be managed by the DRM memory
+	 * manager.
+	 */
+	uint64_t gtt_start;
+	/**
+	 * Ending offset in the GTT to be managed by the DRM memory
+	 * manager.
+	 */
+	uint64_t gtt_end;
+};
+
+struct drm_i915_gem_create {
+	/**
+	 * Requested size for the object.
+	 *
+	 * The (page-aligned) allocated size for the object will be returned.
+	 */
+	uint64_t size;
+	/**
+	 * Returned handle for the object.
+	 *
+	 * Object handles are nonzero.
+	 */
+	uint32_t handle;
+	uint32_t pad;
+};
+
+struct drm_i915_gem_pread {
+	/** Handle for the object being read. */
+	uint32_t handle;
+	uint32_t pad;
+	/** Offset into the object to read from */
+	uint64_t offset;
+	/** Length of data to read */
+	uint64_t size;
+	/**
+	 * Pointer to write the data into.
+	 *
+	 * This is a fixed-size type for 32/64 compatibility.
+	 */
+	uint64_t data_ptr;
+};
+
+struct drm_i915_gem_pwrite {
+	/** Handle for the object being written to. */
+	uint32_t handle;
+	uint32_t pad;
+	/** Offset into the object to write to */
+	uint64_t offset;
+	/** Length of data to write */
+	uint64_t size;
+	/**
+	 * Pointer to read the data from.
+	 *
+	 * This is a fixed-size type for 32/64 compatibility.
+	 */
+	uint64_t data_ptr;
+};
+
+struct drm_i915_gem_mmap {
+	/** Handle for the object being mapped. */
+	uint32_t handle;
+	uint32_t pad;
+	/** Offset in the object to map. */
+	uint64_t offset;
+	/**
+	 * Length of data to map.
+	 *
+	 * The value will be page-aligned.
+	 */
+	uint64_t size;
+	/**
+	 * Returned pointer the data was mapped at.
+	 *
+	 * This is a fixed-size type for 32/64 compatibility.
+	 */
+	uint64_t addr_ptr;
+};
+
+struct drm_i915_gem_set_domain {
+	/** Handle for the object */
+	uint32_t handle;
+
+	/** New read domains */
+	uint32_t read_domains;
+
+	/** New write domain */
+	uint32_t write_domain;
+};
+
+struct drm_i915_gem_sw_finish {
+	/** Handle for the object */
+	uint32_t handle;
+};
+
+struct drm_i915_gem_relocation_entry {
+	/**
+	 * Handle of the buffer being pointed to by this relocation entry.
+	 *
+	 * It's appealing to make this be an index into the mm_validate_entry
+	 * list to refer to the buffer, but this allows the driver to create
+	 * a relocation list for state buffers and not re-write it per
+	 * exec using the buffer.
+	 */
+	uint32_t target_handle;
+
+	/**
+	 * Value to be added to the offset of the target buffer to make up
+	 * the relocation entry.
+	 */
+	uint32_t delta;
+
+	/** Offset in the buffer the relocation entry will be written into */
+	uint64_t offset;
+
+	/**
+	 * Offset value of the target buffer that the relocation entry was last
+	 * written as.
+	 *
+	 * If the buffer has the same offset as last time, we can skip syncing
+	 * and writing the relocation.  This value is written back out by
+	 * the execbuffer ioctl when the relocation is written.
+	 */
+	uint64_t presumed_offset;
+
+	/**
+	 * Target memory domains read by this operation.
+	 */
+	uint32_t read_domains;
+
+	/**
+	 * Target memory domains written by this operation.
+	 *
+	 * Note that only one domain may be written by the whole
+	 * execbuffer operation, so that where there are conflicts,
+	 * the application will get -EINVAL back.
+	 */
+	uint32_t write_domain;
+};
+
+/** @{
+ * Intel memory domains
+ *
+ * Most of these just align with the various caches in
+ * the system and are used to flush and invalidate as
+ * objects end up cached in different domains.
+ */
+/** CPU cache */
+#define I915_GEM_DOMAIN_CPU		0x00000001
+/** Render cache, used by 2D and 3D drawing */
+#define I915_GEM_DOMAIN_RENDER		0x00000002
+/** Sampler cache, used by texture engine */
+#define I915_GEM_DOMAIN_SAMPLER		0x00000004
+/** Command queue, used to load batch buffers */
+#define I915_GEM_DOMAIN_COMMAND		0x00000008
+/** Instruction cache, used by shader programs */
+#define I915_GEM_DOMAIN_INSTRUCTION	0x00000010
+/** Vertex address cache */
+#define I915_GEM_DOMAIN_VERTEX		0x00000020
+/** GTT domain - aperture and scanout */
+#define I915_GEM_DOMAIN_GTT		0x00000040
+/** @} */
+
+struct drm_i915_gem_exec_object {
+	/**
+	 * User's handle for a buffer to be bound into the GTT for this
+	 * operation.
+	 */
+	uint32_t handle;
+
+	/** Number of relocations to be performed on this buffer */
+	uint32_t relocation_count;
+	/**
+	 * Pointer to array of struct drm_i915_gem_relocation_entry containing
+	 * the relocations to be performed in this buffer.
+	 */
+	uint64_t relocs_ptr;
+
+	/** Required alignment in graphics aperture */
+	uint64_t alignment;
+
+	/**
+	 * Returned value of the updated offset of the object, for future
+	 * presumed_offset writes.
+	 */
+	uint64_t offset;
+};
+
+struct drm_i915_gem_execbuffer {
+	/**
+	 * List of buffers to be validated with their relocations to be
+	 * performend on them.
+	 *
+	 * This is a pointer to an array of struct drm_i915_gem_validate_entry.
+	 *
+	 * These buffers must be listed in an order such that all relocations
+	 * a buffer is performing refer to buffers that have already appeared
+	 * in the validate list.
+	 */
+	uint64_t buffers_ptr;
+	uint32_t buffer_count;
+
+	/** Offset in the batchbuffer to start execution from. */
+	uint32_t batch_start_offset;
+	/** Bytes used in batchbuffer from batch_start_offset */
+	uint32_t batch_len;
+	uint32_t DR1;
+	uint32_t DR4;
+	uint32_t num_cliprects;
+	/** This is a struct drm_clip_rect *cliprects */
+	uint64_t cliprects_ptr;
+};
+
+struct drm_i915_gem_pin {
+	/** Handle of the buffer to be pinned. */
+	uint32_t handle;
+	uint32_t pad;
+
+	/** alignment required within the aperture */
+	uint64_t alignment;
+
+	/** Returned GTT offset of the buffer. */
+	uint64_t offset;
+};
+
+struct drm_i915_gem_unpin {
+	/** Handle of the buffer to be unpinned. */
+	uint32_t handle;
+	uint32_t pad;
+};
+
+struct drm_i915_gem_busy {
+	/** Handle of the buffer to check for busy */
+	uint32_t handle;
+
+	/** Return busy status (1 if busy, 0 if idle) */
+	uint32_t busy;
+};
+
+#define I915_TILING_NONE	0
+#define I915_TILING_X		1
+#define I915_TILING_Y		2
+
+#define I915_BIT_6_SWIZZLE_NONE		0
+#define I915_BIT_6_SWIZZLE_9		1
+#define I915_BIT_6_SWIZZLE_9_10		2
+#define I915_BIT_6_SWIZZLE_9_11		3
+#define I915_BIT_6_SWIZZLE_9_10_11	4
+/* Not seen by userland */
+#define I915_BIT_6_SWIZZLE_UNKNOWN	5
+
+struct drm_i915_gem_set_tiling {
+	/** Handle of the buffer to have its tiling state updated */
+	uint32_t handle;
+
+	/**
+	 * Tiling mode for the object (I915_TILING_NONE, I915_TILING_X,
+	 * I915_TILING_Y).
+	 *
+	 * This value is to be set on request, and will be updated by the
+	 * kernel on successful return with the actual chosen tiling layout.
+	 *
+	 * The tiling mode may be demoted to I915_TILING_NONE when the system
+	 * has bit 6 swizzling that can't be managed correctly by GEM.
+	 *
+	 * Buffer contents become undefined when changing tiling_mode.
+	 */
+	uint32_t tiling_mode;
+
+	/**
+	 * Stride in bytes for the object when in I915_TILING_X or
+	 * I915_TILING_Y.
+	 */
+	uint32_t stride;
+
+	/**
+	 * Returned address bit 6 swizzling required for CPU access through
+	 * mmap mapping.
+	 */
+	uint32_t swizzle_mode;
+};
+
+struct drm_i915_gem_get_tiling {
+	/** Handle of the buffer to get tiling state for. */
+	uint32_t handle;
+
+	/**
+	 * Current tiling mode for the object (I915_TILING_NONE, I915_TILING_X,
+	 * I915_TILING_Y).
+	 */
+	uint32_t tiling_mode;
+
+	/**
+	 * Returned address bit 6 swizzling required for CPU access through
+	 * mmap mapping.
+	 */
+	uint32_t swizzle_mode;
+};
+
 #endif				/* _I915_DRM_H_ */
diff --git a/include/linux/bio.h b/include/linux/bio.h
index ff5b4cf..1c91a17 100644
--- a/include/linux/bio.h
+++ b/include/linux/bio.h
@@ -79,6 +79,13 @@
 
 	unsigned int		bi_size;	/* residual I/O count */
 
+	/*
+	 * To keep track of the max segment size, we account for the
+	 * sizes of the first and last mergeable segments in this bio.
+	 */
+	unsigned int		bi_seg_front_size;
+	unsigned int		bi_seg_back_size;
+
 	unsigned int		bi_max_vecs;	/* max bvl_vecs we can hold */
 
 	unsigned int		bi_comp_cpu;	/* completion CPU */
@@ -129,25 +136,30 @@
  * bit 2 -- barrier
  *	Insert a serialization point in the IO queue, forcing previously
  *	submitted IO to be completed before this oen is issued.
- * bit 3 -- fail fast, don't want low level driver retries
- * bit 4 -- synchronous I/O hint: the block layer will unplug immediately
+ * bit 3 -- synchronous I/O hint: the block layer will unplug immediately
  *	Note that this does NOT indicate that the IO itself is sync, just
  *	that the block layer will not postpone issue of this IO by plugging.
- * bit 5 -- metadata request
+ * bit 4 -- metadata request
  *	Used for tracing to differentiate metadata and data IO. May also
  *	get some preferential treatment in the IO scheduler
- * bit 6 -- discard sectors
+ * bit 5 -- discard sectors
  *	Informs the lower level device that this range of sectors is no longer
  *	used by the file system and may thus be freed by the device. Used
  *	for flash based storage.
+ * bit 6 -- fail fast device errors
+ * bit 7 -- fail fast transport errors
+ * bit 8 -- fail fast driver errors
+ *	Don't want driver retries for any fast fail whatever the reason.
  */
 #define BIO_RW		0	/* Must match RW in req flags (blkdev.h) */
 #define BIO_RW_AHEAD	1	/* Must match FAILFAST in req flags */
 #define BIO_RW_BARRIER	2
-#define BIO_RW_FAILFAST	3
-#define BIO_RW_SYNC	4
-#define BIO_RW_META	5
-#define BIO_RW_DISCARD	6
+#define BIO_RW_SYNC	3
+#define BIO_RW_META	4
+#define BIO_RW_DISCARD	5
+#define BIO_RW_FAILFAST_DEV		6
+#define BIO_RW_FAILFAST_TRANSPORT	7
+#define BIO_RW_FAILFAST_DRIVER		8
 
 /*
  * upper 16 bits of bi_rw define the io priority of this bio
@@ -174,7 +186,10 @@
 #define bio_sectors(bio)	((bio)->bi_size >> 9)
 #define bio_barrier(bio)	((bio)->bi_rw & (1 << BIO_RW_BARRIER))
 #define bio_sync(bio)		((bio)->bi_rw & (1 << BIO_RW_SYNC))
-#define bio_failfast(bio)	((bio)->bi_rw & (1 << BIO_RW_FAILFAST))
+#define bio_failfast_dev(bio)	((bio)->bi_rw &	(1 << BIO_RW_FAILFAST_DEV))
+#define bio_failfast_transport(bio)	\
+	((bio)->bi_rw & (1 << BIO_RW_FAILFAST_TRANSPORT))
+#define bio_failfast_driver(bio) ((bio)->bi_rw & (1 << BIO_RW_FAILFAST_DRIVER))
 #define bio_rw_ahead(bio)	((bio)->bi_rw & (1 << BIO_RW_AHEAD))
 #define bio_rw_meta(bio)	((bio)->bi_rw & (1 << BIO_RW_META))
 #define bio_discard(bio)	((bio)->bi_rw & (1 << BIO_RW_DISCARD))
diff --git a/include/linux/blkdev.h b/include/linux/blkdev.h
index a92d9e4..b4fe68f 100644
--- a/include/linux/blkdev.h
+++ b/include/linux/blkdev.h
@@ -87,7 +87,9 @@
  */
 enum rq_flag_bits {
 	__REQ_RW,		/* not set, read. set, write */
-	__REQ_FAILFAST,		/* no low level driver retries */
+	__REQ_FAILFAST_DEV,	/* no driver retries of device errors */
+	__REQ_FAILFAST_TRANSPORT, /* no driver retries of transport errors */
+	__REQ_FAILFAST_DRIVER,	/* no driver retries of driver errors */
 	__REQ_DISCARD,		/* request to discard sectors */
 	__REQ_SORTED,		/* elevator knows about this request */
 	__REQ_SOFTBARRIER,	/* may not be passed by ioscheduler */
@@ -111,8 +113,10 @@
 };
 
 #define REQ_RW		(1 << __REQ_RW)
+#define REQ_FAILFAST_DEV	(1 << __REQ_FAILFAST_DEV)
+#define REQ_FAILFAST_TRANSPORT	(1 << __REQ_FAILFAST_TRANSPORT)
+#define REQ_FAILFAST_DRIVER	(1 << __REQ_FAILFAST_DRIVER)
 #define REQ_DISCARD	(1 << __REQ_DISCARD)
-#define REQ_FAILFAST	(1 << __REQ_FAILFAST)
 #define REQ_SORTED	(1 << __REQ_SORTED)
 #define REQ_SOFTBARRIER	(1 << __REQ_SOFTBARRIER)
 #define REQ_HARDBARRIER	(1 << __REQ_HARDBARRIER)
@@ -560,7 +564,12 @@
 #define blk_special_request(rq)	((rq)->cmd_type == REQ_TYPE_SPECIAL)
 #define blk_sense_request(rq)	((rq)->cmd_type == REQ_TYPE_SENSE)
 
-#define blk_noretry_request(rq)	((rq)->cmd_flags & REQ_FAILFAST)
+#define blk_failfast_dev(rq)	((rq)->cmd_flags & REQ_FAILFAST_DEV)
+#define blk_failfast_transport(rq) ((rq)->cmd_flags & REQ_FAILFAST_TRANSPORT)
+#define blk_failfast_driver(rq)	((rq)->cmd_flags & REQ_FAILFAST_DRIVER)
+#define blk_noretry_request(rq)	(blk_failfast_dev(rq) ||	\
+				 blk_failfast_transport(rq) ||	\
+				 blk_failfast_driver(rq))
 #define blk_rq_started(rq)	((rq)->cmd_flags & REQ_STARTED)
 
 #define blk_account_rq(rq)	(blk_rq_started(rq) && (blk_fs_request(rq) || blk_discard_rq(rq))) 
@@ -856,7 +865,6 @@
 extern int blk_rq_map_sg(struct request_queue *, struct request *, struct scatterlist *);
 extern void blk_dump_rq_flags(struct request *, char *);
 extern void generic_unplug_device(struct request_queue *);
-extern void __generic_unplug_device(struct request_queue *);
 extern long nr_blockdev_pages(void);
 
 int blk_get_queue(struct request_queue *);
diff --git a/include/linux/blktrace_api.h b/include/linux/blktrace_api.h
index 3a31eb5..bdf505d 100644
--- a/include/linux/blktrace_api.h
+++ b/include/linux/blktrace_api.h
@@ -24,6 +24,7 @@
 	BLK_TC_AHEAD	= 1 << 11,	/* readahead */
 	BLK_TC_META	= 1 << 12,	/* metadata */
 	BLK_TC_DISCARD	= 1 << 13,	/* discard requests */
+	BLK_TC_DRV_DATA	= 1 << 14,	/* binary per-driver data */
 
 	BLK_TC_END	= 1 << 15,	/* only 16-bits, reminder */
 };
@@ -51,6 +52,7 @@
 	__BLK_TA_BOUNCE,		/* bio was bounced */
 	__BLK_TA_REMAP,			/* bio was remapped */
 	__BLK_TA_ABORT,			/* request aborted */
+	__BLK_TA_DRV_DATA,		/* driver-specific binary data */
 };
 
 /*
@@ -82,6 +84,7 @@
 #define BLK_TA_BOUNCE		(__BLK_TA_BOUNCE)
 #define BLK_TA_REMAP		(__BLK_TA_REMAP | BLK_TC_ACT(BLK_TC_QUEUE))
 #define BLK_TA_ABORT		(__BLK_TA_ABORT | BLK_TC_ACT(BLK_TC_QUEUE))
+#define BLK_TA_DRV_DATA	(__BLK_TA_DRV_DATA | BLK_TC_ACT(BLK_TC_DRV_DATA))
 
 #define BLK_TN_PROCESS		(__BLK_TN_PROCESS | BLK_TC_ACT(BLK_TC_NOTIFY))
 #define BLK_TN_TIMESTAMP	(__BLK_TN_TIMESTAMP | BLK_TC_ACT(BLK_TC_NOTIFY))
@@ -317,6 +320,34 @@
 	__blk_add_trace(bt, from, bio->bi_size, bio->bi_rw, BLK_TA_REMAP, !bio_flagged(bio, BIO_UPTODATE), sizeof(r), &r);
 }
 
+/**
+ * blk_add_driver_data - Add binary message with driver-specific data
+ * @q:		queue the io is for
+ * @rq:		io request
+ * @data:	driver-specific data
+ * @len:	length of driver-specific data
+ *
+ * Description:
+ *     Some drivers might want to write driver-specific data per request.
+ *
+ **/
+static inline void blk_add_driver_data(struct request_queue *q,
+				       struct request *rq,
+				       void *data, size_t len)
+{
+	struct blk_trace *bt = q->blk_trace;
+
+	if (likely(!bt))
+		return;
+
+	if (blk_pc_request(rq))
+		__blk_add_trace(bt, 0, rq->data_len, 0, BLK_TA_DRV_DATA,
+				rq->errors, len, data);
+	else
+		__blk_add_trace(bt, rq->hard_sector, rq->hard_nr_sectors << 9,
+				0, BLK_TA_DRV_DATA, rq->errors, len, data);
+}
+
 extern int blk_trace_setup(struct request_queue *q, char *name, dev_t dev,
 			   char __user *arg);
 extern int blk_trace_startstop(struct request_queue *q, int start);
@@ -330,6 +361,7 @@
 #define blk_add_trace_generic(q, rq, rw, what)	do { } while (0)
 #define blk_add_trace_pdu_int(q, what, bio, pdu)	do { } while (0)
 #define blk_add_trace_remap(q, bio, dev, f, t)	do {} while (0)
+#define blk_add_driver_data(q, rq, data, len)	do {} while (0)
 #define do_blk_trace_setup(q, name, dev, buts)	(-ENOTTY)
 #define blk_trace_setup(q, name, dev, arg)	(-ENOTTY)
 #define blk_trace_startstop(q, start)		(-ENOTTY)
diff --git a/include/linux/clocksource.h b/include/linux/clocksource.h
index 55e434f..f88d32f 100644
--- a/include/linux/clocksource.h
+++ b/include/linux/clocksource.h
@@ -45,7 +45,8 @@
  * @read:		returns a cycle value
  * @mask:		bitmask for two's complement
  *			subtraction of non 64 bit counters
- * @mult:		cycle to nanosecond multiplier
+ * @mult:		cycle to nanosecond multiplier (adjusted by NTP)
+ * @mult_orig:		cycle to nanosecond multiplier (unadjusted by NTP)
  * @shift:		cycle to nanosecond divisor (power of two)
  * @flags:		flags describing special properties
  * @vread:		vsyscall based read
@@ -63,6 +64,7 @@
 	cycle_t (*read)(void);
 	cycle_t mask;
 	u32 mult;
+	u32 mult_orig;
 	u32 shift;
 	unsigned long flags;
 	cycle_t (*vread)(void);
@@ -77,6 +79,7 @@
 	/* timekeeping specific data, ignore */
 	cycle_t cycle_interval;
 	u64	xtime_interval;
+	u32	raw_interval;
 	/*
 	 * Second part is written at each timer interrupt
 	 * Keep it in a different cache line to dirty no
@@ -85,6 +88,7 @@
 	cycle_t cycle_last ____cacheline_aligned_in_smp;
 	u64 xtime_nsec;
 	s64 error;
+	struct timespec raw_time;
 
 #ifdef CONFIG_CLOCKSOURCE_WATCHDOG
 	/* Watchdog related data, used by the framework */
@@ -201,17 +205,19 @@
 {
 	u64 tmp;
 
-	/* XXX - All of this could use a whole lot of optimization */
+	/* Do the ns -> cycle conversion first, using original mult */
 	tmp = length_nsec;
 	tmp <<= c->shift;
-	tmp += c->mult/2;
-	do_div(tmp, c->mult);
+	tmp += c->mult_orig/2;
+	do_div(tmp, c->mult_orig);
 
 	c->cycle_interval = (cycle_t)tmp;
 	if (c->cycle_interval == 0)
 		c->cycle_interval = 1;
 
+	/* Go back from cycles -> shifted ns, this time use ntp adjused mult */
 	c->xtime_interval = (u64)c->cycle_interval * c->mult;
+	c->raw_interval = ((u64)c->cycle_interval * c->mult_orig) >> c->shift;
 }
 
 
diff --git a/include/linux/dvb/frontend.h b/include/linux/dvb/frontend.h
index 6e4ace2..79a8ed8 100644
--- a/include/linux/dvb/frontend.h
+++ b/include/linux/dvb/frontend.h
@@ -166,6 +166,7 @@
 	VSB_16,
 	PSK_8,
 	APSK_16,
+	APSK_32,
 	DQPSK,
 } fe_modulation_t;
 
@@ -295,6 +296,7 @@
 	SYS_DVBC_ANNEX_AC,
 	SYS_DVBC_ANNEX_B,
 	SYS_DVBT,
+	SYS_DSS,
 	SYS_DVBS,
 	SYS_DVBS2,
 	SYS_DVBH,
diff --git a/include/linux/hrtimer.h b/include/linux/hrtimer.h
index 2f245fe..9a4e35c 100644
--- a/include/linux/hrtimer.h
+++ b/include/linux/hrtimer.h
@@ -125,12 +125,12 @@
 	enum hrtimer_restart		(*function)(struct hrtimer *);
 	struct hrtimer_clock_base	*base;
 	unsigned long			state;
-	enum hrtimer_cb_mode		cb_mode;
 	struct list_head		cb_entry;
+	enum hrtimer_cb_mode		cb_mode;
 #ifdef CONFIG_TIMER_STATS
+	int				start_pid;
 	void				*start_site;
 	char				start_comm[16];
-	int				start_pid;
 #endif
 };
 
@@ -155,10 +155,8 @@
  * @first:		pointer to the timer node which expires first
  * @resolution:		the resolution of the clock, in nanoseconds
  * @get_time:		function to retrieve the current time of the clock
- * @get_softirq_time:	function to retrieve the current time from the softirq
  * @softirq_time:	the time when running the hrtimer queue in the softirq
  * @offset:		offset of this clock to the monotonic base
- * @reprogram:		function to reprogram the timer event
  */
 struct hrtimer_clock_base {
 	struct hrtimer_cpu_base	*cpu_base;
@@ -167,13 +165,9 @@
 	struct rb_node		*first;
 	ktime_t			resolution;
 	ktime_t			(*get_time)(void);
-	ktime_t			(*get_softirq_time)(void);
 	ktime_t			softirq_time;
 #ifdef CONFIG_HIGH_RES_TIMERS
 	ktime_t			offset;
-	int			(*reprogram)(struct hrtimer *t,
-					     struct hrtimer_clock_base *b,
-					     ktime_t n);
 #endif
 };
 
diff --git a/include/linux/i2c-id.h b/include/linux/i2c-id.h
index 493435b..01d67ba 100644
--- a/include/linux/i2c-id.h
+++ b/include/linux/i2c-id.h
@@ -60,7 +60,7 @@
 #define I2C_DRIVERID_WM8775	69	/* wm8775 audio processor	*/
 #define I2C_DRIVERID_CS53L32A	70	/* cs53l32a audio processor	*/
 #define I2C_DRIVERID_CX25840	71	/* cx2584x video encoder	*/
-#define I2C_DRIVERID_SAA7127	72	/* saa7124 video encoder	*/
+#define I2C_DRIVERID_SAA7127	72	/* saa7127 video encoder	*/
 #define I2C_DRIVERID_SAA711X	73	/* saa711x video encoders	*/
 #define I2C_DRIVERID_AKITAIOEXP	74	/* IO Expander on Sharp SL-C1000 */
 #define I2C_DRIVERID_INFRARED	75	/* I2C InfraRed on Video boards */
diff --git a/include/linux/interrupt.h b/include/linux/interrupt.h
index 54b3623..35a61dc 100644
--- a/include/linux/interrupt.h
+++ b/include/linux/interrupt.h
@@ -11,6 +11,8 @@
 #include <linux/hardirq.h>
 #include <linux/sched.h>
 #include <linux/irqflags.h>
+#include <linux/smp.h>
+#include <linux/percpu.h>
 #include <asm/atomic.h>
 #include <asm/ptrace.h>
 #include <asm/system.h>
@@ -273,6 +275,25 @@
 extern void raise_softirq_irqoff(unsigned int nr);
 extern void raise_softirq(unsigned int nr);
 
+/* This is the worklist that queues up per-cpu softirq work.
+ *
+ * send_remote_sendirq() adds work to these lists, and
+ * the softirq handler itself dequeues from them.  The queues
+ * are protected by disabling local cpu interrupts and they must
+ * only be accessed by the local cpu that they are for.
+ */
+DECLARE_PER_CPU(struct list_head [NR_SOFTIRQS], softirq_work_list);
+
+/* Try to send a softirq to a remote cpu.  If this cannot be done, the
+ * work will be queued to the local cpu.
+ */
+extern void send_remote_softirq(struct call_single_data *cp, int cpu, int softirq);
+
+/* Like send_remote_softirq(), but the caller must disable local cpu interrupts
+ * and compute the current cpu, passed in as 'this_cpu'.
+ */
+extern void __send_remote_softirq(struct call_single_data *cp, int cpu,
+				  int this_cpu, int softirq);
 
 /* Tasklets --- multithreaded analogue of BHs.
 
diff --git a/include/linux/jbd2.h b/include/linux/jbd2.h
index 463d6f1..c7d106e 100644
--- a/include/linux/jbd2.h
+++ b/include/linux/jbd2.h
@@ -641,6 +641,11 @@
 	 */
 	int t_handle_count;
 
+	/*
+	 * For use by the filesystem to store fs-specific data
+	 * structures associated with the transaction
+	 */
+	struct list_head	t_private_list;
 };
 
 struct transaction_run_stats_s {
@@ -935,6 +940,10 @@
 
 	pid_t			j_last_sync_writer;
 
+	/* This function is called when a transaction is closed */
+	void			(*j_commit_callback)(journal_t *,
+						     transaction_t *);
+
 	/*
 	 * Journal statistics
 	 */
diff --git a/include/linux/kernel.h b/include/linux/kernel.h
index 6803318..5a566b7 100644
--- a/include/linux/kernel.h
+++ b/include/linux/kernel.h
@@ -265,6 +265,7 @@
 #define TAINT_DIE			7
 #define TAINT_OVERRIDDEN_ACPI_TABLE	8
 #define TAINT_WARN			9
+#define TAINT_CRAP			10
 
 extern void dump_stack(void) __cold;
 
diff --git a/include/linux/kernel_stat.h b/include/linux/kernel_stat.h
index cf9f40a..cac3750 100644
--- a/include/linux/kernel_stat.h
+++ b/include/linux/kernel_stat.h
@@ -52,6 +52,7 @@
 	return sum;
 }
 
+extern unsigned long long task_delta_exec(struct task_struct *);
 extern void account_user_time(struct task_struct *, cputime_t);
 extern void account_user_time_scaled(struct task_struct *, cputime_t);
 extern void account_system_time(struct task_struct *, int, cputime_t);
diff --git a/include/linux/posix-timers.h b/include/linux/posix-timers.h
index a7dd38f..a7c7213 100644
--- a/include/linux/posix-timers.h
+++ b/include/linux/posix-timers.h
@@ -45,8 +45,6 @@
 	int it_requeue_pending;		/* waiting to requeue this timer */
 #define REQUEUE_PENDING 1
 	int it_sigev_notify;		/* notify word of sigevent struct */
-	int it_sigev_signo;		/* signo word of sigevent struct */
-	sigval_t it_sigev_value;	/* value word of sigevent struct */
 	struct task_struct *it_process;	/* process to send signal to */
 	struct sigqueue *sigq;		/* signal queue entry. */
 	union {
@@ -115,4 +113,6 @@
 
 long clock_nanosleep_restart(struct restart_block *restart_block);
 
+void update_rlimit_cpu(unsigned long rlim_new);
+
 #endif
diff --git a/include/linux/sched.h b/include/linux/sched.h
index c226c7b..81c68fe 100644
--- a/include/linux/sched.h
+++ b/include/linux/sched.h
@@ -425,6 +425,39 @@
 	unsigned long		ac_minflt, ac_majflt;
 };
 
+/**
+ * struct task_cputime - collected CPU time counts
+ * @utime:		time spent in user mode, in &cputime_t units
+ * @stime:		time spent in kernel mode, in &cputime_t units
+ * @sum_exec_runtime:	total time spent on the CPU, in nanoseconds
+ *
+ * This structure groups together three kinds of CPU time that are
+ * tracked for threads and thread groups.  Most things considering
+ * CPU time want to group these counts together and treat all three
+ * of them in parallel.
+ */
+struct task_cputime {
+	cputime_t utime;
+	cputime_t stime;
+	unsigned long long sum_exec_runtime;
+};
+/* Alternate field names when used to cache expirations. */
+#define prof_exp	stime
+#define virt_exp	utime
+#define sched_exp	sum_exec_runtime
+
+/**
+ * struct thread_group_cputime - thread group interval timer counts
+ * @totals:		thread group interval timers; substructure for
+ *			uniprocessor kernel, per-cpu for SMP kernel.
+ *
+ * This structure contains the version of task_cputime, above, that is
+ * used for thread group CPU clock calculations.
+ */
+struct thread_group_cputime {
+	struct task_cputime *totals;
+};
+
 /*
  * NOTE! "signal_struct" does not have it's own
  * locking, because a shared signal_struct always
@@ -470,6 +503,17 @@
 	cputime_t it_prof_expires, it_virt_expires;
 	cputime_t it_prof_incr, it_virt_incr;
 
+	/*
+	 * Thread group totals for process CPU clocks.
+	 * See thread_group_cputime(), et al, for details.
+	 */
+	struct thread_group_cputime cputime;
+
+	/* Earliest-expiration cache. */
+	struct task_cputime cputime_expires;
+
+	struct list_head cpu_timers[3];
+
 	/* job control IDs */
 
 	/*
@@ -500,7 +544,7 @@
 	 * Live threads maintain their own counters and add to these
 	 * in __exit_signal, except for the group leader.
 	 */
-	cputime_t utime, stime, cutime, cstime;
+	cputime_t cutime, cstime;
 	cputime_t gtime;
 	cputime_t cgtime;
 	unsigned long nvcsw, nivcsw, cnvcsw, cnivcsw;
@@ -509,14 +553,6 @@
 	struct task_io_accounting ioac;
 
 	/*
-	 * Cumulative ns of scheduled CPU time for dead threads in the
-	 * group, not including a zombie group leader.  (This only differs
-	 * from jiffies_to_ns(utime + stime) if sched_clock uses something
-	 * other than jiffies.)
-	 */
-	unsigned long long sum_sched_runtime;
-
-	/*
 	 * We don't bother to synchronize most readers of this at all,
 	 * because there is no reader checking a limit that actually needs
 	 * to get both rlim_cur and rlim_max atomically, and either one
@@ -527,8 +563,6 @@
 	 */
 	struct rlimit rlim[RLIM_NLIMITS];
 
-	struct list_head cpu_timers[3];
-
 	/* keep the process-shared keyrings here so that they do the right
 	 * thing in threads created with CLONE_THREAD */
 #ifdef CONFIG_KEYS
@@ -1137,8 +1171,7 @@
 /* mm fault and swap info: this can arguably be seen as either mm-specific or thread-specific */
 	unsigned long min_flt, maj_flt;
 
-  	cputime_t it_prof_expires, it_virt_expires;
-	unsigned long long it_sched_expires;
+	struct task_cputime cputime_expires;
 	struct list_head cpu_timers[3];
 
 /* process credentials */
@@ -1588,6 +1621,7 @@
 
 extern unsigned long long
 task_sched_runtime(struct task_struct *task);
+extern unsigned long long thread_group_sched_runtime(struct task_struct *task);
 
 /* sched_exec is called by processes performing an exec */
 #ifdef CONFIG_SMP
@@ -2085,6 +2119,30 @@
 }
 
 /*
+ * Thread group CPU time accounting.
+ */
+
+extern int thread_group_cputime_alloc(struct task_struct *);
+extern void thread_group_cputime(struct task_struct *, struct task_cputime *);
+
+static inline void thread_group_cputime_init(struct signal_struct *sig)
+{
+	sig->cputime.totals = NULL;
+}
+
+static inline int thread_group_cputime_clone_thread(struct task_struct *curr)
+{
+	if (curr->signal->cputime.totals)
+		return 0;
+	return thread_group_cputime_alloc(curr);
+}
+
+static inline void thread_group_cputime_free(struct signal_struct *sig)
+{
+	free_percpu(sig->cputime.totals);
+}
+
+/*
  * Reevaluate whether the task has signals pending delivery.
  * Wake the task if so.
  * This is required every time the blocked sigset_t changes.
diff --git a/include/linux/smp.h b/include/linux/smp.h
index 66484d4..2e4d58b 100644
--- a/include/linux/smp.h
+++ b/include/linux/smp.h
@@ -7,6 +7,7 @@
  */
 
 #include <linux/errno.h>
+#include <linux/types.h>
 #include <linux/list.h>
 #include <linux/cpumask.h>
 
@@ -16,7 +17,8 @@
 	struct list_head list;
 	void (*func) (void *info);
 	void *info;
-	unsigned int flags;
+	u16 flags;
+	u16 priv;
 };
 
 #ifdef CONFIG_SMP
diff --git a/include/linux/time.h b/include/linux/time.h
index 51e883d..4f1c9db 100644
--- a/include/linux/time.h
+++ b/include/linux/time.h
@@ -119,6 +119,7 @@
 extern unsigned int alarm_setitimer(unsigned int seconds);
 extern int do_getitimer(int which, struct itimerval *value);
 extern void getnstimeofday(struct timespec *tv);
+extern void getrawmonotonic(struct timespec *ts);
 extern void getboottime(struct timespec *ts);
 extern void monotonic_to_bootbased(struct timespec *ts);
 
@@ -127,6 +128,9 @@
 extern void update_wall_time(void);
 extern void update_xtime_cache(u64 nsec);
 
+struct tms;
+extern void do_sys_times(struct tms *);
+
 /**
  * timespec_to_ns - Convert timespec to nanoseconds
  * @ts:		pointer to the timespec variable to be converted
@@ -216,6 +220,7 @@
 #define CLOCK_MONOTONIC			1
 #define CLOCK_PROCESS_CPUTIME_ID	2
 #define CLOCK_THREAD_CPUTIME_ID		3
+#define CLOCK_MONOTONIC_RAW		4
 
 /*
  * The IDs of various hardware clocks:
diff --git a/include/linux/timex.h b/include/linux/timex.h
index fc6035d..9007313 100644
--- a/include/linux/timex.h
+++ b/include/linux/timex.h
@@ -82,7 +82,7 @@
  */
 #define SHIFT_USEC 16		/* frequency offset scale (shift) */
 #define PPM_SCALE (NSEC_PER_USEC << (NTP_SCALE_SHIFT - SHIFT_USEC))
-#define PPM_SCALE_INV_SHIFT 20
+#define PPM_SCALE_INV_SHIFT 19
 #define PPM_SCALE_INV ((1ll << (PPM_SCALE_INV_SHIFT + NTP_SCALE_SHIFT)) / \
 		       PPM_SCALE + 1)
 
@@ -141,8 +141,15 @@
 #define ADJ_MICRO		0x1000	/* select microsecond resolution */
 #define ADJ_NANO		0x2000	/* select nanosecond resolution */
 #define ADJ_TICK		0x4000	/* tick value */
+
+#ifdef __KERNEL__
+#define ADJ_ADJTIME		0x8000	/* switch between adjtime/adjtimex modes */
+#define ADJ_OFFSET_SINGLESHOT	0x0001	/* old-fashioned adjtime */
+#define ADJ_OFFSET_READONLY	0x2000	/* read-only adjtime */
+#else
 #define ADJ_OFFSET_SINGLESHOT	0x8001	/* old-fashioned adjtime */
-#define ADJ_OFFSET_SS_READ	0xa001  /* read-only adjtime */
+#define ADJ_OFFSET_SS_READ	0xa001	/* read-only adjtime */
+#endif
 
 /* xntp 3.4 compatibility names */
 #define MOD_OFFSET	ADJ_OFFSET
diff --git a/include/linux/usb.h b/include/linux/usb.h
index 94ac74a..8fa973b 100644
--- a/include/linux/usb.h
+++ b/include/linux/usb.h
@@ -1135,6 +1135,7 @@
 	struct list_head urb_list;
 	wait_queue_head_t wait;
 	spinlock_t lock;
+	unsigned int poisoned:1;
 };
 
 static inline void init_usb_anchor(struct usb_anchor *anchor)
@@ -1459,12 +1460,18 @@
 extern int usb_submit_urb(struct urb *urb, gfp_t mem_flags);
 extern int usb_unlink_urb(struct urb *urb);
 extern void usb_kill_urb(struct urb *urb);
+extern void usb_poison_urb(struct urb *urb);
+extern void usb_unpoison_urb(struct urb *urb);
 extern void usb_kill_anchored_urbs(struct usb_anchor *anchor);
+extern void usb_poison_anchored_urbs(struct usb_anchor *anchor);
 extern void usb_unlink_anchored_urbs(struct usb_anchor *anchor);
 extern void usb_anchor_urb(struct urb *urb, struct usb_anchor *anchor);
 extern void usb_unanchor_urb(struct urb *urb);
 extern int usb_wait_anchor_empty_timeout(struct usb_anchor *anchor,
 					 unsigned int timeout);
+extern struct urb *usb_get_from_anchor(struct usb_anchor *anchor);
+extern void usb_scuttle_anchored_urbs(struct usb_anchor *anchor);
+extern int usb_anchor_empty(struct usb_anchor *anchor);
 
 /**
  * usb_urb_dir_in - check if an URB describes an IN transfer
diff --git a/include/linux/usb/Kbuild b/include/linux/usb/Kbuild
index 42e84fc..54c4463 100644
--- a/include/linux/usb/Kbuild
+++ b/include/linux/usb/Kbuild
@@ -4,4 +4,5 @@
 header-y += gadgetfs.h
 header-y += midi.h
 header-y += g_printer.h
-
+header-y += tmc.h
+header-y += vstusb.h
diff --git a/include/linux/usb/cdc.h b/include/linux/usb/cdc.h
index ca228bb..18a7293 100644
--- a/include/linux/usb/cdc.h
+++ b/include/linux/usb/cdc.h
@@ -160,6 +160,15 @@
 	__u8	bDetailData[0];
 } __attribute__ ((packed));
 
+/* "OBEX Control Model Functional Descriptor" */
+struct usb_cdc_obex_desc {
+	__u8	bLength;
+	__u8	bDescriptorType;
+	__u8	bDescriptorSubType;
+
+	__le16	bcdVersion;
+} __attribute__ ((packed));
+
 /*-------------------------------------------------------------------------*/
 
 /*
diff --git a/include/linux/usb/composite.h b/include/linux/usb/composite.h
index c932390..935c380 100644
--- a/include/linux/usb/composite.h
+++ b/include/linux/usb/composite.h
@@ -130,6 +130,9 @@
 
 int usb_add_function(struct usb_configuration *, struct usb_function *);
 
+int usb_function_deactivate(struct usb_function *);
+int usb_function_activate(struct usb_function *);
+
 int usb_interface_id(struct usb_configuration *, struct usb_function *);
 
 /**
@@ -316,9 +319,13 @@
 	struct usb_composite_driver	*driver;
 	u8				next_string_id;
 
-	spinlock_t			lock;
+	/* the gadget driver won't enable the data pullup
+	 * while the deactivation count is nonzero.
+	 */
+	unsigned			deactivations;
 
-	/* REVISIT use and existence of lock ... */
+	/* protects at least deactivation count */
+	spinlock_t			lock;
 };
 
 extern int usb_string_id(struct usb_composite_dev *c);
diff --git a/include/linux/usb/serial.h b/include/linux/usb/serial.h
index 655341d..0b8617a 100644
--- a/include/linux/usb/serial.h
+++ b/include/linux/usb/serial.h
@@ -192,7 +192,7 @@
  * The driver.owner field should be set to the module owner of this driver.
  * The driver.name field should be set to the name of this driver (remember
  * it will show up in sysfs, so it needs to be short and to the point.
- * Useing the module name is a good idea.)
+ * Using the module name is a good idea.)
  */
 struct usb_serial_driver {
 	const char *description;
diff --git a/include/linux/usb/tmc.h b/include/linux/usb/tmc.h
new file mode 100644
index 0000000..c045ae1
--- /dev/null
+++ b/include/linux/usb/tmc.h
@@ -0,0 +1,43 @@
+/*
+ * Copyright (C) 2007 Stefan Kopp, Gechingen, Germany
+ * Copyright (C) 2008 Novell, Inc.
+ * Copyright (C) 2008 Greg Kroah-Hartman <gregkh@suse.de>
+ *
+ * This file holds USB constants defined by the USB Device Class
+ * Definition for Test and Measurement devices published by the USB-IF.
+ *
+ * It also has the ioctl definitions for the usbtmc kernel driver that
+ * userspace needs to know about.
+ */
+
+#ifndef __LINUX_USB_TMC_H
+#define __LINUX_USB_TMC_H
+
+/* USB TMC status values */
+#define USBTMC_STATUS_SUCCESS				0x01
+#define USBTMC_STATUS_PENDING				0x02
+#define USBTMC_STATUS_FAILED				0x80
+#define USBTMC_STATUS_TRANSFER_NOT_IN_PROGRESS		0x81
+#define USBTMC_STATUS_SPLIT_NOT_IN_PROGRESS		0x82
+#define USBTMC_STATUS_SPLIT_IN_PROGRESS			0x83
+
+/* USB TMC requests values */
+#define USBTMC_REQUEST_INITIATE_ABORT_BULK_OUT		1
+#define USBTMC_REQUEST_CHECK_ABORT_BULK_OUT_STATUS	2
+#define USBTMC_REQUEST_INITIATE_ABORT_BULK_IN		3
+#define USBTMC_REQUEST_CHECK_ABORT_BULK_IN_STATUS	4
+#define USBTMC_REQUEST_INITIATE_CLEAR			5
+#define USBTMC_REQUEST_CHECK_CLEAR_STATUS		6
+#define USBTMC_REQUEST_GET_CAPABILITIES			7
+#define USBTMC_REQUEST_INDICATOR_PULSE			64
+
+/* Request values for USBTMC driver's ioctl entry point */
+#define USBTMC_IOC_NR			91
+#define USBTMC_IOCTL_INDICATOR_PULSE	_IO(USBTMC_IOC_NR, 1)
+#define USBTMC_IOCTL_CLEAR		_IO(USBTMC_IOC_NR, 2)
+#define USBTMC_IOCTL_ABORT_BULK_OUT	_IO(USBTMC_IOC_NR, 3)
+#define USBTMC_IOCTL_ABORT_BULK_IN	_IO(USBTMC_IOC_NR, 4)
+#define USBTMC_IOCTL_CLEAR_OUT_HALT	_IO(USBTMC_IOC_NR, 6)
+#define USBTMC_IOCTL_CLEAR_IN_HALT	_IO(USBTMC_IOC_NR, 7)
+
+#endif
diff --git a/include/linux/usb/vstusb.h b/include/linux/usb/vstusb.h
new file mode 100644
index 0000000..1cfac67
--- /dev/null
+++ b/include/linux/usb/vstusb.h
@@ -0,0 +1,71 @@
+/*****************************************************************************
+ *  File: drivers/usb/misc/vstusb.h
+ *
+ *  Purpose: Support for the bulk USB Vernier Spectrophotometers
+ *
+ *  Author:     EQware Engineering, Inc.
+ *              Oregon City, OR, USA 97045
+ *
+ *  Copyright:  2007, 2008
+ *              Vernier Software & Technology
+ *              Beaverton, OR, USA 97005
+ *
+ *  Web:        www.vernier.com
+ *
+ *  This program is free software; you can redistribute it and/or modify
+ *  it under the terms of the GNU General Public License version 2 as
+ *  published by the Free Software Foundation.
+ *
+ *****************************************************************************/
+/*****************************************************************************
+ *
+ *  The vstusb module is a standard usb 'client' driver running on top of the
+ *  standard usb host controller stack.
+ *
+ *  In general, vstusb supports standard bulk usb pipes.  It supports multiple
+ *  devices and multiple pipes per device.
+ *
+ *  The vstusb driver supports two interfaces:
+ *  1 - ioctl SEND_PIPE/RECV_PIPE - a general bulk write/read msg
+ *  	interface to any pipe with timeout support;
+ *  2 - standard read/write with ioctl config - offers standard read/write
+ *  	interface with ioctl configured pipes and timeouts.
+ *
+ *  Both interfaces can be signal from other process and will abort its i/o
+ *  operation.
+ *
+ *  A timeout of 0 means NO timeout.  The user can still terminate the read via
+ *  signal.
+ *
+ *  If using multiple threads with this driver, the user should ensure that
+ *  any reads, writes, or ioctls are complete before closing the device.
+ *  Changing read/write timeouts or pipes takes effect on next read/write.
+ *
+ *****************************************************************************/
+
+struct vstusb_args {
+	union {
+		/* this struct is used for IOCTL_VSTUSB_SEND_PIPE,	*
+		 * IOCTL_VSTUSB_RECV_PIPE, and read()/write() fops	*/
+		struct {
+			void __user	*buffer;
+			size_t          count;
+			unsigned int    timeout_ms;
+			int             pipe;
+		};
+
+		/* this one is used for IOCTL_VSTUSB_CONFIG_RW  	*/
+		struct {
+			int rd_pipe;
+			int rd_timeout_ms;
+			int wr_pipe;
+			int wr_timeout_ms;
+		};
+	};
+};
+
+#define VST_IOC_MAGIC 'L'
+#define VST_IOC_FIRST 0x20
+#define IOCTL_VSTUSB_SEND_PIPE	_IO(VST_IOC_MAGIC, VST_IOC_FIRST)
+#define IOCTL_VSTUSB_RECV_PIPE	_IO(VST_IOC_MAGIC, VST_IOC_FIRST + 1)
+#define IOCTL_VSTUSB_CONFIG_RW	_IO(VST_IOC_MAGIC, VST_IOC_FIRST + 2)
diff --git a/include/linux/writeback.h b/include/linux/writeback.h
index 12b15c5..e585657 100644
--- a/include/linux/writeback.h
+++ b/include/linux/writeback.h
@@ -63,7 +63,15 @@
 	unsigned for_writepages:1;	/* This is a writepages() call */
 	unsigned range_cyclic:1;	/* range_start is cyclic */
 	unsigned more_io:1;		/* more io to be dispatched */
-	unsigned range_cont:1;
+	/*
+	 * write_cache_pages() won't update wbc->nr_to_write and
+	 * mapping->writeback_index if no_nrwrite_index_update
+	 * is set.  write_cache_pages() may write more than we
+	 * requested and we want to make sure nr_to_write and
+	 * writeback_index are updated in a consistent manner
+	 * so we use a single control to update them
+	 */
+	unsigned no_nrwrite_index_update:1;
 };
 
 /*
diff --git a/include/media/soc_camera_platform.h b/include/media/soc_camera_platform.h
index 851f182..1d092b4 100644
--- a/include/media/soc_camera_platform.h
+++ b/include/media/soc_camera_platform.h
@@ -1,3 +1,13 @@
+/*
+ * Generic Platform Camera Driver Header
+ *
+ * Copyright (C) 2008 Magnus Damm
+ *
+ * This program is free software; you can redistribute it and/or modify
+ * it under the terms of the GNU General Public License version 2 as
+ * published by the Free Software Foundation.
+ */
+
 #ifndef __SOC_CAMERA_H__
 #define __SOC_CAMERA_H__
 
@@ -9,6 +19,7 @@
 	unsigned long format_depth;
 	struct v4l2_pix_format format;
 	unsigned long bus_param;
+	void (*power)(int);
 	int (*set_capture)(struct soc_camera_platform_info *info, int enable);
 };
 
diff --git a/include/media/tuner.h b/include/media/tuner.h
index 67c1f51..7d4e2db 100644
--- a/include/media/tuner.h
+++ b/include/media/tuner.h
@@ -123,6 +123,7 @@
 #define TUNER_TEA5761			75	/* Only FM Radio Tuner */
 #define TUNER_XC5000			76	/* Xceive Silicon Tuner */
 #define TUNER_TCL_MF02GIP_5N		77	/* TCL MF02GIP_5N */
+#define TUNER_PHILIPS_FMD1216MEX_MK3	78
 
 /* tv card specific */
 #define TDA9887_PRESENT 		(1<<0)
diff --git a/include/media/v4l2-i2c-drv-legacy.h b/include/media/v4l2-i2c-drv-legacy.h
index 975ffbf..e65dd9d 100644
--- a/include/media/v4l2-i2c-drv-legacy.h
+++ b/include/media/v4l2-i2c-drv-legacy.h
@@ -21,6 +21,17 @@
  * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  */
 
+/* NOTE: the full version of this header is in the v4l-dvb repository
+ * and allows v4l i2c drivers to be compiled on older kernels as well.
+ * The version of this header as it appears in the kernel is a stripped
+ * version (without all the backwards compatibility stuff) and so it
+ * looks a bit odd.
+ *
+ * If you look at the full version then you will understand the reason
+ * for introducing this header since you really don't want to have all
+ * the tricky backwards compatibility code in each and every i2c driver.
+ */
+
 struct v4l2_i2c_driver_data {
 	const char * const name;
 	int driverid;
diff --git a/include/media/v4l2-i2c-drv.h b/include/media/v4l2-i2c-drv.h
index 40ecef2..efdc8bf 100644
--- a/include/media/v4l2-i2c-drv.h
+++ b/include/media/v4l2-i2c-drv.h
@@ -21,6 +21,17 @@
  * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  */
 
+/* NOTE: the full version of this header is in the v4l-dvb repository
+ * and allows v4l i2c drivers to be compiled on older kernels as well.
+ * The version of this header as it appears in the kernel is a stripped
+ * version (without all the backwards compatibility stuff) and so it
+ * looks a bit odd.
+ *
+ * If you look at the full version then you will understand the reason
+ * for introducing this header since you really don't want to have all
+ * the tricky backwards compatibility code in each and every i2c driver.
+ */
+
 #ifndef __V4L2_I2C_DRV_H__
 #define __V4L2_I2C_DRV_H__
 
diff --git a/include/media/videobuf-dvb.h b/include/media/videobuf-dvb.h
index b777486..80471c2 100644
--- a/include/media/videobuf-dvb.h
+++ b/include/media/videobuf-dvb.h
@@ -16,7 +16,6 @@
 	int                        nfeeds;
 
 	/* videobuf_dvb_(un)register manges this */
-	struct dvb_adapter         adapter;
 	struct dvb_demux           demux;
 	struct dmxdev              dmxdev;
 	struct dmx_frontend        fe_hw;
@@ -24,12 +23,34 @@
 	struct dvb_net             net;
 };
 
-int videobuf_dvb_register(struct videobuf_dvb *dvb,
+struct videobuf_dvb_frontend {
+	struct list_head felist;
+	int id;
+	struct videobuf_dvb dvb;
+};
+
+struct videobuf_dvb_frontends {
+	struct list_head felist;
+	struct mutex lock;
+	struct dvb_adapter adapter;
+	int active_fe_id; /* Indicates which frontend in the felist is in use */
+	int gate; /* Frontend with gate control 0=!MFE,1=fe0,2=fe1 etc */
+};
+
+int videobuf_dvb_register_bus(struct videobuf_dvb_frontends *f,
 			  struct module *module,
 			  void *adapter_priv,
 			  struct device *device,
-			  short *adapter_nr);
-void videobuf_dvb_unregister(struct videobuf_dvb *dvb);
+			  short *adapter_nr,
+			  int mfe_shared);
+
+void videobuf_dvb_unregister_bus(struct videobuf_dvb_frontends *f);
+
+struct videobuf_dvb_frontend * videobuf_dvb_alloc_frontend(struct videobuf_dvb_frontends *f, int id);
+
+struct videobuf_dvb_frontend * videobuf_dvb_get_frontend(struct videobuf_dvb_frontends *f, int id);
+int videobuf_dvb_find_frontend(struct videobuf_dvb_frontends *f, struct dvb_frontend *p);
+
 
 /*
  * Local variables:
diff --git a/include/scsi/iscsi_if.h b/include/scsi/iscsi_if.h
index 16be12f..0c9514d 100644
--- a/include/scsi/iscsi_if.h
+++ b/include/scsi/iscsi_if.h
@@ -213,6 +213,8 @@
 	ISCSI_ERR_DATA_DGST		= ISCSI_ERR_BASE + 15,
 	ISCSI_ERR_PARAM_NOT_FOUND	= ISCSI_ERR_BASE + 16,
 	ISCSI_ERR_NO_SCSI_CMD		= ISCSI_ERR_BASE + 17,
+	ISCSI_ERR_INVALID_HOST		= ISCSI_ERR_BASE + 18,
+	ISCSI_ERR_XMIT_FAILED		= ISCSI_ERR_BASE + 19,
 };
 
 /*
diff --git a/include/scsi/libiscsi.h b/include/scsi/libiscsi.h
index 5e75bb7..61e53f1 100644
--- a/include/scsi/libiscsi.h
+++ b/include/scsi/libiscsi.h
@@ -287,6 +287,11 @@
 	struct iscsi_pool	cmdpool;	/* PDU's pool */
 };
 
+enum {
+	ISCSI_HOST_SETUP,
+	ISCSI_HOST_REMOVED,
+};
+
 struct iscsi_host {
 	char			*initiatorname;
 	/* hw address or netdev iscsi connection is bound to */
@@ -295,6 +300,12 @@
 	/* local address */
 	int			local_port;
 	char			local_address[ISCSI_ADDRESS_BUF_LEN];
+
+	wait_queue_head_t	session_removal_wq;
+	/* protects sessions and state */
+	spinlock_t		lock;
+	int			num_sessions;
+	int			state;
 };
 
 /*
@@ -302,7 +313,7 @@
  */
 extern int iscsi_change_queue_depth(struct scsi_device *sdev, int depth);
 extern int iscsi_eh_abort(struct scsi_cmnd *sc);
-extern int iscsi_eh_host_reset(struct scsi_cmnd *sc);
+extern int iscsi_eh_target_reset(struct scsi_cmnd *sc);
 extern int iscsi_eh_device_reset(struct scsi_cmnd *sc);
 extern int iscsi_queuecommand(struct scsi_cmnd *sc,
 			      void (*done)(struct scsi_cmnd *));
@@ -351,6 +362,8 @@
 extern int iscsi_conn_bind(struct iscsi_cls_session *, struct iscsi_cls_conn *,
 			   int);
 extern void iscsi_conn_failure(struct iscsi_conn *conn, enum iscsi_err err);
+extern void iscsi_session_failure(struct iscsi_cls_session *cls_session,
+				  enum iscsi_err err);
 extern int iscsi_conn_get_param(struct iscsi_cls_conn *cls_conn,
 				enum iscsi_param param, char *buf);
 extern void iscsi_suspend_tx(struct iscsi_conn *conn);
diff --git a/include/scsi/scsi.h b/include/scsi/scsi.h
index 192f871..a109165 100644
--- a/include/scsi/scsi.h
+++ b/include/scsi/scsi.h
@@ -381,6 +381,11 @@
 #define DID_IMM_RETRY   0x0c	/* Retry without decrementing retry count  */
 #define DID_REQUEUE	0x0d	/* Requeue command (no immediate retry) also
 				 * without decrementing the retry count	   */
+#define DID_TRANSPORT_DISRUPTED 0x0e /* Transport error disrupted execution
+				      * and the driver blocked the port to
+				      * recover the link. Transport class will
+				      * retry or fail IO */
+#define DID_TRANSPORT_FAILFAST	0x0f /* Transport class fastfailed the io */
 #define DRIVER_OK       0x00	/* Driver status                           */
 
 /*
@@ -426,6 +431,7 @@
 #define SCSI_MLQUEUE_HOST_BUSY   0x1055
 #define SCSI_MLQUEUE_DEVICE_BUSY 0x1056
 #define SCSI_MLQUEUE_EH_RETRY    0x1057
+#define SCSI_MLQUEUE_TARGET_BUSY 0x1058
 
 /*
  *  Use these to separate status msg and our bytes
diff --git a/include/scsi/scsi_device.h b/include/scsi/scsi_device.h
index b49e725..a37a814 100644
--- a/include/scsi/scsi_device.h
+++ b/include/scsi/scsi_device.h
@@ -238,6 +238,16 @@
 						 * for the device at a time. */
 	unsigned int		pdt_1f_for_no_lun;	/* PDT = 0x1f */
 						/* means no lun present */
+	/* commands actually active on LLD. protected by host lock. */
+	unsigned int		target_busy;
+	/*
+	 * LLDs should set this in the slave_alloc host template callout.
+	 * If set to zero then there is not limit.
+	 */
+	unsigned int		can_queue;
+	unsigned int		target_blocked;
+	unsigned int		max_target_blocked;
+#define SCSI_DEFAULT_TARGET_BLOCKED	3
 
 	char			scsi_level;
 	struct execute_work	ew;
diff --git a/include/scsi/scsi_transport_fc.h b/include/scsi/scsi_transport_fc.h
index 21018a4..49d8913 100644
--- a/include/scsi/scsi_transport_fc.h
+++ b/include/scsi/scsi_transport_fc.h
@@ -357,6 +357,7 @@
 /* bit field values for struct fc_rport "flags" field: */
 #define FC_RPORT_DEVLOSS_PENDING	0x01
 #define FC_RPORT_SCAN_PENDING		0x02
+#define FC_RPORT_FAST_FAIL_TIMEDOUT	0x03
 
 #define	dev_to_rport(d)				\
 	container_of(d, struct fc_rport, dev)
@@ -678,12 +679,15 @@
 		if (rport->roles & FC_PORT_ROLE_FCP_TARGET)
 			result = 0;
 		else if (rport->flags & FC_RPORT_DEVLOSS_PENDING)
-			result = DID_IMM_RETRY << 16;
+			result = DID_TRANSPORT_DISRUPTED << 16;
 		else
 			result = DID_NO_CONNECT << 16;
 		break;
 	case FC_PORTSTATE_BLOCKED:
-		result = DID_IMM_RETRY << 16;
+		if (rport->flags & FC_RPORT_FAST_FAIL_TIMEDOUT)
+			result = DID_TRANSPORT_FAILFAST << 16;
+		else
+			result = DID_TRANSPORT_DISRUPTED << 16;
 		break;
 	default:
 		result = DID_NO_CONNECT << 16;
diff --git a/include/scsi/scsi_transport_iscsi.h b/include/scsi/scsi_transport_iscsi.h
index 8b6c91d..c667cc3 100644
--- a/include/scsi/scsi_transport_iscsi.h
+++ b/include/scsi/scsi_transport_iscsi.h
@@ -135,7 +135,8 @@
 /*
  * control plane upcalls
  */
-extern void iscsi_conn_error(struct iscsi_cls_conn *conn, enum iscsi_err error);
+extern void iscsi_conn_error_event(struct iscsi_cls_conn *conn,
+				   enum iscsi_err error);
 extern int iscsi_recv_pdu(struct iscsi_cls_conn *conn, struct iscsi_hdr *hdr,
 			  char *data, uint32_t data_size);
 
@@ -207,7 +208,7 @@
 struct iscsi_endpoint {
 	void *dd_data;			/* LLD private data */
 	struct device dev;
-	unsigned int id;
+	uint64_t id;
 };
 
 /*
diff --git a/kernel/compat.c b/kernel/compat.c
index 143990e..8eafe3e 100644
--- a/kernel/compat.c
+++ b/kernel/compat.c
@@ -23,6 +23,7 @@
 #include <linux/timex.h>
 #include <linux/migrate.h>
 #include <linux/posix-timers.h>
+#include <linux/times.h>
 
 #include <asm/uaccess.h>
 
@@ -208,49 +209,23 @@
 	return 0;
 }
 
+static compat_clock_t clock_t_to_compat_clock_t(clock_t x)
+{
+	return compat_jiffies_to_clock_t(clock_t_to_jiffies(x));
+}
+
 asmlinkage long compat_sys_times(struct compat_tms __user *tbuf)
 {
-	/*
-	 *	In the SMP world we might just be unlucky and have one of
-	 *	the times increment as we use it. Since the value is an
-	 *	atomically safe type this is just fine. Conceptually its
-	 *	as if the syscall took an instant longer to occur.
-	 */
 	if (tbuf) {
+		struct tms tms;
 		struct compat_tms tmp;
-		struct task_struct *tsk = current;
-		struct task_struct *t;
-		cputime_t utime, stime, cutime, cstime;
 
-		read_lock(&tasklist_lock);
-		utime = tsk->signal->utime;
-		stime = tsk->signal->stime;
-		t = tsk;
-		do {
-			utime = cputime_add(utime, t->utime);
-			stime = cputime_add(stime, t->stime);
-			t = next_thread(t);
-		} while (t != tsk);
-
-		/*
-		 * While we have tasklist_lock read-locked, no dying thread
-		 * can be updating current->signal->[us]time.  Instead,
-		 * we got their counts included in the live thread loop.
-		 * However, another thread can come in right now and
-		 * do a wait call that updates current->signal->c[us]time.
-		 * To make sure we always see that pair updated atomically,
-		 * we take the siglock around fetching them.
-		 */
-		spin_lock_irq(&tsk->sighand->siglock);
-		cutime = tsk->signal->cutime;
-		cstime = tsk->signal->cstime;
-		spin_unlock_irq(&tsk->sighand->siglock);
-		read_unlock(&tasklist_lock);
-
-		tmp.tms_utime = compat_jiffies_to_clock_t(cputime_to_jiffies(utime));
-		tmp.tms_stime = compat_jiffies_to_clock_t(cputime_to_jiffies(stime));
-		tmp.tms_cutime = compat_jiffies_to_clock_t(cputime_to_jiffies(cutime));
-		tmp.tms_cstime = compat_jiffies_to_clock_t(cputime_to_jiffies(cstime));
+		do_sys_times(&tms);
+		/* Convert our struct tms to the compat version. */
+		tmp.tms_utime = clock_t_to_compat_clock_t(tms.tms_utime);
+		tmp.tms_stime = clock_t_to_compat_clock_t(tms.tms_stime);
+		tmp.tms_cutime = clock_t_to_compat_clock_t(tms.tms_cutime);
+		tmp.tms_cstime = clock_t_to_compat_clock_t(tms.tms_cstime);
 		if (copy_to_user(tbuf, &tmp, sizeof(tmp)))
 			return -EFAULT;
 	}
diff --git a/kernel/exit.c b/kernel/exit.c
index 0ef4673..059b38c 100644
--- a/kernel/exit.c
+++ b/kernel/exit.c
@@ -112,8 +112,6 @@
 		 * We won't ever get here for the group leader, since it
 		 * will have been the last reference on the signal_struct.
 		 */
-		sig->utime = cputime_add(sig->utime, task_utime(tsk));
-		sig->stime = cputime_add(sig->stime, task_stime(tsk));
 		sig->gtime = cputime_add(sig->gtime, task_gtime(tsk));
 		sig->min_flt += tsk->min_flt;
 		sig->maj_flt += tsk->maj_flt;
@@ -122,7 +120,6 @@
 		sig->inblock += task_io_get_inblock(tsk);
 		sig->oublock += task_io_get_oublock(tsk);
 		task_io_accounting_add(&sig->ioac, &tsk->ioac);
-		sig->sum_sched_runtime += tsk->se.sum_exec_runtime;
 		sig = NULL; /* Marker for below. */
 	}
 
@@ -1301,6 +1298,7 @@
 	if (likely(!traced)) {
 		struct signal_struct *psig;
 		struct signal_struct *sig;
+		struct task_cputime cputime;
 
 		/*
 		 * The resource counters for the group leader are in its
@@ -1316,20 +1314,23 @@
 		 * need to protect the access to p->parent->signal fields,
 		 * as other threads in the parent group can be right
 		 * here reaping other children at the same time.
+		 *
+		 * We use thread_group_cputime() to get times for the thread
+		 * group, which consolidates times for all threads in the
+		 * group including the group leader.
 		 */
 		spin_lock_irq(&p->parent->sighand->siglock);
 		psig = p->parent->signal;
 		sig = p->signal;
+		thread_group_cputime(p, &cputime);
 		psig->cutime =
 			cputime_add(psig->cutime,
-			cputime_add(p->utime,
-			cputime_add(sig->utime,
-				    sig->cutime)));
+			cputime_add(cputime.utime,
+				    sig->cutime));
 		psig->cstime =
 			cputime_add(psig->cstime,
-			cputime_add(p->stime,
-			cputime_add(sig->stime,
-				    sig->cstime)));
+			cputime_add(cputime.stime,
+				    sig->cstime));
 		psig->cgtime =
 			cputime_add(psig->cgtime,
 			cputime_add(p->gtime,
diff --git a/kernel/fork.c b/kernel/fork.c
index 30de644..44e64d7 100644
--- a/kernel/fork.c
+++ b/kernel/fork.c
@@ -759,15 +759,44 @@
 		kmem_cache_free(sighand_cachep, sighand);
 }
 
+
+/*
+ * Initialize POSIX timer handling for a thread group.
+ */
+static void posix_cpu_timers_init_group(struct signal_struct *sig)
+{
+	/* Thread group counters. */
+	thread_group_cputime_init(sig);
+
+	/* Expiration times and increments. */
+	sig->it_virt_expires = cputime_zero;
+	sig->it_virt_incr = cputime_zero;
+	sig->it_prof_expires = cputime_zero;
+	sig->it_prof_incr = cputime_zero;
+
+	/* Cached expiration times. */
+	sig->cputime_expires.prof_exp = cputime_zero;
+	sig->cputime_expires.virt_exp = cputime_zero;
+	sig->cputime_expires.sched_exp = 0;
+
+	/* The timer lists. */
+	INIT_LIST_HEAD(&sig->cpu_timers[0]);
+	INIT_LIST_HEAD(&sig->cpu_timers[1]);
+	INIT_LIST_HEAD(&sig->cpu_timers[2]);
+}
+
 static int copy_signal(unsigned long clone_flags, struct task_struct *tsk)
 {
 	struct signal_struct *sig;
 	int ret;
 
 	if (clone_flags & CLONE_THREAD) {
-		atomic_inc(&current->signal->count);
-		atomic_inc(&current->signal->live);
-		return 0;
+		ret = thread_group_cputime_clone_thread(current);
+		if (likely(!ret)) {
+			atomic_inc(&current->signal->count);
+			atomic_inc(&current->signal->live);
+		}
+		return ret;
 	}
 	sig = kmem_cache_alloc(signal_cachep, GFP_KERNEL);
 	tsk->signal = sig;
@@ -795,40 +824,25 @@
 	sig->it_real_incr.tv64 = 0;
 	sig->real_timer.function = it_real_fn;
 
-	sig->it_virt_expires = cputime_zero;
-	sig->it_virt_incr = cputime_zero;
-	sig->it_prof_expires = cputime_zero;
-	sig->it_prof_incr = cputime_zero;
-
 	sig->leader = 0;	/* session leadership doesn't inherit */
 	sig->tty_old_pgrp = NULL;
 	sig->tty = NULL;
 
-	sig->utime = sig->stime = sig->cutime = sig->cstime = cputime_zero;
+	sig->cutime = sig->cstime = cputime_zero;
 	sig->gtime = cputime_zero;
 	sig->cgtime = cputime_zero;
 	sig->nvcsw = sig->nivcsw = sig->cnvcsw = sig->cnivcsw = 0;
 	sig->min_flt = sig->maj_flt = sig->cmin_flt = sig->cmaj_flt = 0;
 	sig->inblock = sig->oublock = sig->cinblock = sig->coublock = 0;
 	task_io_accounting_init(&sig->ioac);
-	sig->sum_sched_runtime = 0;
-	INIT_LIST_HEAD(&sig->cpu_timers[0]);
-	INIT_LIST_HEAD(&sig->cpu_timers[1]);
-	INIT_LIST_HEAD(&sig->cpu_timers[2]);
 	taskstats_tgid_init(sig);
 
 	task_lock(current->group_leader);
 	memcpy(sig->rlim, current->signal->rlim, sizeof sig->rlim);
 	task_unlock(current->group_leader);
 
-	if (sig->rlim[RLIMIT_CPU].rlim_cur != RLIM_INFINITY) {
-		/*
-		 * New sole thread in the process gets an expiry time
-		 * of the whole CPU time limit.
-		 */
-		tsk->it_prof_expires =
-			secs_to_cputime(sig->rlim[RLIMIT_CPU].rlim_cur);
-	}
+	posix_cpu_timers_init_group(sig);
+
 	acct_init_pacct(&sig->pacct);
 
 	tty_audit_fork(sig);
@@ -838,6 +852,7 @@
 
 void __cleanup_signal(struct signal_struct *sig)
 {
+	thread_group_cputime_free(sig);
 	exit_thread_group_keys(sig);
 	tty_kref_put(sig->tty);
 	kmem_cache_free(signal_cachep, sig);
@@ -888,6 +903,19 @@
 #endif /* CONFIG_MM_OWNER */
 
 /*
+ * Initialize POSIX timer handling for a single task.
+ */
+static void posix_cpu_timers_init(struct task_struct *tsk)
+{
+	tsk->cputime_expires.prof_exp = cputime_zero;
+	tsk->cputime_expires.virt_exp = cputime_zero;
+	tsk->cputime_expires.sched_exp = 0;
+	INIT_LIST_HEAD(&tsk->cpu_timers[0]);
+	INIT_LIST_HEAD(&tsk->cpu_timers[1]);
+	INIT_LIST_HEAD(&tsk->cpu_timers[2]);
+}
+
+/*
  * This creates a new process as a copy of the old one,
  * but does not actually start it yet.
  *
@@ -997,12 +1025,7 @@
 	task_io_accounting_init(&p->ioac);
 	acct_clear_integrals(p);
 
-	p->it_virt_expires = cputime_zero;
-	p->it_prof_expires = cputime_zero;
-	p->it_sched_expires = 0;
-	INIT_LIST_HEAD(&p->cpu_timers[0]);
-	INIT_LIST_HEAD(&p->cpu_timers[1]);
-	INIT_LIST_HEAD(&p->cpu_timers[2]);
+	posix_cpu_timers_init(p);
 
 	p->lock_depth = -1;		/* -1 = no lock */
 	do_posix_clock_monotonic_gettime(&p->start_time);
@@ -1203,21 +1226,6 @@
 	if (clone_flags & CLONE_THREAD) {
 		p->group_leader = current->group_leader;
 		list_add_tail_rcu(&p->thread_group, &p->group_leader->thread_group);
-
-		if (!cputime_eq(current->signal->it_virt_expires,
-				cputime_zero) ||
-		    !cputime_eq(current->signal->it_prof_expires,
-				cputime_zero) ||
-		    current->signal->rlim[RLIMIT_CPU].rlim_cur != RLIM_INFINITY ||
-		    !list_empty(&current->signal->cpu_timers[0]) ||
-		    !list_empty(&current->signal->cpu_timers[1]) ||
-		    !list_empty(&current->signal->cpu_timers[2])) {
-			/*
-			 * Have child wake up on its first tick to check
-			 * for process CPU timers.
-			 */
-			p->it_prof_expires = jiffies_to_cputime(1);
-		}
 	}
 
 	if (likely(p->pid)) {
diff --git a/kernel/hrtimer.c b/kernel/hrtimer.c
index cdec83e..95978f4 100644
--- a/kernel/hrtimer.c
+++ b/kernel/hrtimer.c
@@ -1403,9 +1403,7 @@
 		if (!base->first)
 			continue;
 
-		if (base->get_softirq_time)
-			base->softirq_time = base->get_softirq_time();
-		else if (gettime) {
+		if (gettime) {
 			hrtimer_get_softirq_time(cpu_base);
 			gettime = 0;
 		}
@@ -1688,9 +1686,11 @@
 	new_base = &get_cpu_var(hrtimer_bases);
 
 	tick_cancel_sched_timer(cpu);
-
-	local_irq_disable();
-	spin_lock(&new_base->lock);
+	/*
+	 * The caller is globally serialized and nobody else
+	 * takes two locks at once, deadlock is not possible.
+	 */
+	spin_lock_irq(&new_base->lock);
 	spin_lock_nested(&old_base->lock, SINGLE_DEPTH_NESTING);
 
 	for (i = 0; i < HRTIMER_MAX_CLOCK_BASES; i++) {
@@ -1703,8 +1703,7 @@
 		raise = 1;
 
 	spin_unlock(&old_base->lock);
-	spin_unlock(&new_base->lock);
-	local_irq_enable();
+	spin_unlock_irq(&new_base->lock);
 	put_cpu_var(hrtimer_bases);
 
 	if (raise)
diff --git a/kernel/itimer.c b/kernel/itimer.c
index ab98274..db7c358 100644
--- a/kernel/itimer.c
+++ b/kernel/itimer.c
@@ -55,17 +55,15 @@
 		spin_unlock_irq(&tsk->sighand->siglock);
 		break;
 	case ITIMER_VIRTUAL:
-		read_lock(&tasklist_lock);
 		spin_lock_irq(&tsk->sighand->siglock);
 		cval = tsk->signal->it_virt_expires;
 		cinterval = tsk->signal->it_virt_incr;
 		if (!cputime_eq(cval, cputime_zero)) {
-			struct task_struct *t = tsk;
-			cputime_t utime = tsk->signal->utime;
-			do {
-				utime = cputime_add(utime, t->utime);
-				t = next_thread(t);
-			} while (t != tsk);
+			struct task_cputime cputime;
+			cputime_t utime;
+
+			thread_group_cputime(tsk, &cputime);
+			utime = cputime.utime;
 			if (cputime_le(cval, utime)) { /* about to fire */
 				cval = jiffies_to_cputime(1);
 			} else {
@@ -73,25 +71,19 @@
 			}
 		}
 		spin_unlock_irq(&tsk->sighand->siglock);
-		read_unlock(&tasklist_lock);
 		cputime_to_timeval(cval, &value->it_value);
 		cputime_to_timeval(cinterval, &value->it_interval);
 		break;
 	case ITIMER_PROF:
-		read_lock(&tasklist_lock);
 		spin_lock_irq(&tsk->sighand->siglock);
 		cval = tsk->signal->it_prof_expires;
 		cinterval = tsk->signal->it_prof_incr;
 		if (!cputime_eq(cval, cputime_zero)) {
-			struct task_struct *t = tsk;
-			cputime_t ptime = cputime_add(tsk->signal->utime,
-						      tsk->signal->stime);
-			do {
-				ptime = cputime_add(ptime,
-						    cputime_add(t->utime,
-								t->stime));
-				t = next_thread(t);
-			} while (t != tsk);
+			struct task_cputime times;
+			cputime_t ptime;
+
+			thread_group_cputime(tsk, &times);
+			ptime = cputime_add(times.utime, times.stime);
 			if (cputime_le(cval, ptime)) { /* about to fire */
 				cval = jiffies_to_cputime(1);
 			} else {
@@ -99,7 +91,6 @@
 			}
 		}
 		spin_unlock_irq(&tsk->sighand->siglock);
-		read_unlock(&tasklist_lock);
 		cputime_to_timeval(cval, &value->it_value);
 		cputime_to_timeval(cinterval, &value->it_interval);
 		break;
@@ -185,7 +176,6 @@
 	case ITIMER_VIRTUAL:
 		nval = timeval_to_cputime(&value->it_value);
 		ninterval = timeval_to_cputime(&value->it_interval);
-		read_lock(&tasklist_lock);
 		spin_lock_irq(&tsk->sighand->siglock);
 		cval = tsk->signal->it_virt_expires;
 		cinterval = tsk->signal->it_virt_incr;
@@ -200,7 +190,6 @@
 		tsk->signal->it_virt_expires = nval;
 		tsk->signal->it_virt_incr = ninterval;
 		spin_unlock_irq(&tsk->sighand->siglock);
-		read_unlock(&tasklist_lock);
 		if (ovalue) {
 			cputime_to_timeval(cval, &ovalue->it_value);
 			cputime_to_timeval(cinterval, &ovalue->it_interval);
@@ -209,7 +198,6 @@
 	case ITIMER_PROF:
 		nval = timeval_to_cputime(&value->it_value);
 		ninterval = timeval_to_cputime(&value->it_interval);
-		read_lock(&tasklist_lock);
 		spin_lock_irq(&tsk->sighand->siglock);
 		cval = tsk->signal->it_prof_expires;
 		cinterval = tsk->signal->it_prof_incr;
@@ -224,7 +212,6 @@
 		tsk->signal->it_prof_expires = nval;
 		tsk->signal->it_prof_incr = ninterval;
 		spin_unlock_irq(&tsk->sighand->siglock);
-		read_unlock(&tasklist_lock);
 		if (ovalue) {
 			cputime_to_timeval(cval, &ovalue->it_value);
 			cputime_to_timeval(cinterval, &ovalue->it_interval);
diff --git a/kernel/module.c b/kernel/module.c
index b7205f6..25bc9ac 100644
--- a/kernel/module.c
+++ b/kernel/module.c
@@ -1834,6 +1834,7 @@
 	Elf_Ehdr *hdr;
 	Elf_Shdr *sechdrs;
 	char *secstrings, *args, *modmagic, *strtab = NULL;
+	char *staging;
 	unsigned int i;
 	unsigned int symindex = 0;
 	unsigned int strindex = 0;
@@ -1989,6 +1990,14 @@
 		goto free_hdr;
 	}
 
+	staging = get_modinfo(sechdrs, infoindex, "staging");
+	if (staging) {
+		add_taint_module(mod, TAINT_CRAP);
+		printk(KERN_WARNING "%s: module is from the staging directory,"
+		       " the quality is unknown, you have been warned.\n",
+		       mod->name);
+	}
+
 	/* Now copy in args */
 	args = strndup_user(uargs, ~0UL >> 1);
 	if (IS_ERR(args)) {
@@ -2587,6 +2596,8 @@
 			buf[bx++] = 'P';
 		if (mod->taints & (1 << TAINT_FORCED_MODULE))
 			buf[bx++] = 'F';
+		if (mod->taints & (1 << TAINT_CRAP))
+			buf[bx++] = 'C';
 		/*
 		 * TAINT_FORCED_RMMOD: could be added.
 		 * TAINT_UNSAFE_SMP, TAINT_MACHINE_CHECK, TAINT_BAD_PAGE don't
diff --git a/kernel/panic.c b/kernel/panic.c
index f290e8e..bda561e 100644
--- a/kernel/panic.c
+++ b/kernel/panic.c
@@ -161,6 +161,7 @@
 	{ TAINT_DIE, 'D', ' ' },
 	{ TAINT_OVERRIDDEN_ACPI_TABLE, 'A', ' ' },
 	{ TAINT_WARN, 'W', ' ' },
+	{ TAINT_CRAP, 'C', ' ' },
 };
 
 /**
@@ -175,6 +176,7 @@
  *  'U' - Userspace-defined naughtiness.
  *  'A' - ACPI table overridden.
  *  'W' - Taint on warning.
+ *  'C' - modules from drivers/staging are loaded.
  *
  *	The string is overwritten by the next call to print_taint().
  */
diff --git a/kernel/posix-cpu-timers.c b/kernel/posix-cpu-timers.c
index c42a03a..153dcb2 100644
--- a/kernel/posix-cpu-timers.c
+++ b/kernel/posix-cpu-timers.c
@@ -7,6 +7,93 @@
 #include <linux/errno.h>
 #include <linux/math64.h>
 #include <asm/uaccess.h>
+#include <linux/kernel_stat.h>
+
+/*
+ * Allocate the thread_group_cputime structure appropriately and fill in the
+ * current values of the fields.  Called from copy_signal() via
+ * thread_group_cputime_clone_thread() when adding a second or subsequent
+ * thread to a thread group.  Assumes interrupts are enabled when called.
+ */
+int thread_group_cputime_alloc(struct task_struct *tsk)
+{
+	struct signal_struct *sig = tsk->signal;
+	struct task_cputime *cputime;
+
+	/*
+	 * If we have multiple threads and we don't already have a
+	 * per-CPU task_cputime struct (checked in the caller), allocate
+	 * one and fill it in with the times accumulated so far.  We may
+	 * race with another thread so recheck after we pick up the sighand
+	 * lock.
+	 */
+	cputime = alloc_percpu(struct task_cputime);
+	if (cputime == NULL)
+		return -ENOMEM;
+	spin_lock_irq(&tsk->sighand->siglock);
+	if (sig->cputime.totals) {
+		spin_unlock_irq(&tsk->sighand->siglock);
+		free_percpu(cputime);
+		return 0;
+	}
+	sig->cputime.totals = cputime;
+	cputime = per_cpu_ptr(sig->cputime.totals, smp_processor_id());
+	cputime->utime = tsk->utime;
+	cputime->stime = tsk->stime;
+	cputime->sum_exec_runtime = tsk->se.sum_exec_runtime;
+	spin_unlock_irq(&tsk->sighand->siglock);
+	return 0;
+}
+
+/**
+ * thread_group_cputime - Sum the thread group time fields across all CPUs.
+ *
+ * @tsk:	The task we use to identify the thread group.
+ * @times:	task_cputime structure in which we return the summed fields.
+ *
+ * Walk the list of CPUs to sum the per-CPU time fields in the thread group
+ * time structure.
+ */
+void thread_group_cputime(
+	struct task_struct *tsk,
+	struct task_cputime *times)
+{
+	struct signal_struct *sig;
+	int i;
+	struct task_cputime *tot;
+
+	sig = tsk->signal;
+	if (unlikely(!sig) || !sig->cputime.totals) {
+		times->utime = tsk->utime;
+		times->stime = tsk->stime;
+		times->sum_exec_runtime = tsk->se.sum_exec_runtime;
+		return;
+	}
+	times->stime = times->utime = cputime_zero;
+	times->sum_exec_runtime = 0;
+	for_each_possible_cpu(i) {
+		tot = per_cpu_ptr(tsk->signal->cputime.totals, i);
+		times->utime = cputime_add(times->utime, tot->utime);
+		times->stime = cputime_add(times->stime, tot->stime);
+		times->sum_exec_runtime += tot->sum_exec_runtime;
+	}
+}
+
+/*
+ * Called after updating RLIMIT_CPU to set timer expiration if necessary.
+ */
+void update_rlimit_cpu(unsigned long rlim_new)
+{
+	cputime_t cputime;
+
+	cputime = secs_to_cputime(rlim_new);
+	if (cputime_eq(current->signal->it_prof_expires, cputime_zero) ||
+	    cputime_lt(current->signal->it_prof_expires, cputime)) {
+		spin_lock_irq(&current->sighand->siglock);
+		set_process_cpu_timer(current, CPUCLOCK_PROF, &cputime, NULL);
+		spin_unlock_irq(&current->sighand->siglock);
+	}
+}
 
 static int check_clock(const clockid_t which_clock)
 {
@@ -158,10 +245,6 @@
 {
 	return p->utime;
 }
-static inline unsigned long long sched_ns(struct task_struct *p)
-{
-	return task_sched_runtime(p);
-}
 
 int posix_cpu_clock_getres(const clockid_t which_clock, struct timespec *tp)
 {
@@ -211,46 +294,7 @@
 		cpu->cpu = virt_ticks(p);
 		break;
 	case CPUCLOCK_SCHED:
-		cpu->sched = sched_ns(p);
-		break;
-	}
-	return 0;
-}
-
-/*
- * Sample a process (thread group) clock for the given group_leader task.
- * Must be called with tasklist_lock held for reading.
- * Must be called with tasklist_lock held for reading, and p->sighand->siglock.
- */
-static int cpu_clock_sample_group_locked(unsigned int clock_idx,
-					 struct task_struct *p,
-					 union cpu_time_count *cpu)
-{
-	struct task_struct *t = p;
- 	switch (clock_idx) {
-	default:
-		return -EINVAL;
-	case CPUCLOCK_PROF:
-		cpu->cpu = cputime_add(p->signal->utime, p->signal->stime);
-		do {
-			cpu->cpu = cputime_add(cpu->cpu, prof_ticks(t));
-			t = next_thread(t);
-		} while (t != p);
-		break;
-	case CPUCLOCK_VIRT:
-		cpu->cpu = p->signal->utime;
-		do {
-			cpu->cpu = cputime_add(cpu->cpu, virt_ticks(t));
-			t = next_thread(t);
-		} while (t != p);
-		break;
-	case CPUCLOCK_SCHED:
-		cpu->sched = p->signal->sum_sched_runtime;
-		/* Add in each other live thread.  */
-		while ((t = next_thread(t)) != p) {
-			cpu->sched += t->se.sum_exec_runtime;
-		}
-		cpu->sched += sched_ns(p);
+		cpu->sched = p->se.sum_exec_runtime + task_delta_exec(p);
 		break;
 	}
 	return 0;
@@ -264,13 +308,23 @@
 				  struct task_struct *p,
 				  union cpu_time_count *cpu)
 {
-	int ret;
-	unsigned long flags;
-	spin_lock_irqsave(&p->sighand->siglock, flags);
-	ret = cpu_clock_sample_group_locked(CPUCLOCK_WHICH(which_clock), p,
-					    cpu);
-	spin_unlock_irqrestore(&p->sighand->siglock, flags);
-	return ret;
+	struct task_cputime cputime;
+
+	thread_group_cputime(p, &cputime);
+	switch (which_clock) {
+	default:
+		return -EINVAL;
+	case CPUCLOCK_PROF:
+		cpu->cpu = cputime_add(cputime.utime, cputime.stime);
+		break;
+	case CPUCLOCK_VIRT:
+		cpu->cpu = cputime.utime;
+		break;
+	case CPUCLOCK_SCHED:
+		cpu->sched = cputime.sum_exec_runtime + task_delta_exec(p);
+		break;
+	}
+	return 0;
 }
 
 
@@ -471,80 +525,11 @@
 }
 void posix_cpu_timers_exit_group(struct task_struct *tsk)
 {
+	struct task_cputime cputime;
+
+	thread_group_cputime(tsk, &cputime);
 	cleanup_timers(tsk->signal->cpu_timers,
-		       cputime_add(tsk->utime, tsk->signal->utime),
-		       cputime_add(tsk->stime, tsk->signal->stime),
-		     tsk->se.sum_exec_runtime + tsk->signal->sum_sched_runtime);
-}
-
-
-/*
- * Set the expiry times of all the threads in the process so one of them
- * will go off before the process cumulative expiry total is reached.
- */
-static void process_timer_rebalance(struct task_struct *p,
-				    unsigned int clock_idx,
-				    union cpu_time_count expires,
-				    union cpu_time_count val)
-{
-	cputime_t ticks, left;
-	unsigned long long ns, nsleft;
- 	struct task_struct *t = p;
-	unsigned int nthreads = atomic_read(&p->signal->live);
-
-	if (!nthreads)
-		return;
-
-	switch (clock_idx) {
-	default:
-		BUG();
-		break;
-	case CPUCLOCK_PROF:
-		left = cputime_div_non_zero(cputime_sub(expires.cpu, val.cpu),
-				       nthreads);
-		do {
-			if (likely(!(t->flags & PF_EXITING))) {
-				ticks = cputime_add(prof_ticks(t), left);
-				if (cputime_eq(t->it_prof_expires,
-					       cputime_zero) ||
-				    cputime_gt(t->it_prof_expires, ticks)) {
-					t->it_prof_expires = ticks;
-				}
-			}
-			t = next_thread(t);
-		} while (t != p);
-		break;
-	case CPUCLOCK_VIRT:
-		left = cputime_div_non_zero(cputime_sub(expires.cpu, val.cpu),
-				       nthreads);
-		do {
-			if (likely(!(t->flags & PF_EXITING))) {
-				ticks = cputime_add(virt_ticks(t), left);
-				if (cputime_eq(t->it_virt_expires,
-					       cputime_zero) ||
-				    cputime_gt(t->it_virt_expires, ticks)) {
-					t->it_virt_expires = ticks;
-				}
-			}
-			t = next_thread(t);
-		} while (t != p);
-		break;
-	case CPUCLOCK_SCHED:
-		nsleft = expires.sched - val.sched;
-		do_div(nsleft, nthreads);
-		nsleft = max_t(unsigned long long, nsleft, 1);
-		do {
-			if (likely(!(t->flags & PF_EXITING))) {
-				ns = t->se.sum_exec_runtime + nsleft;
-				if (t->it_sched_expires == 0 ||
-				    t->it_sched_expires > ns) {
-					t->it_sched_expires = ns;
-				}
-			}
-			t = next_thread(t);
-		} while (t != p);
-		break;
-	}
+		       cputime.utime, cputime.stime, cputime.sum_exec_runtime);
 }
 
 static void clear_dead_task(struct k_itimer *timer, union cpu_time_count now)
@@ -608,29 +593,32 @@
 			default:
 				BUG();
 			case CPUCLOCK_PROF:
-				if (cputime_eq(p->it_prof_expires,
+				if (cputime_eq(p->cputime_expires.prof_exp,
 					       cputime_zero) ||
-				    cputime_gt(p->it_prof_expires,
+				    cputime_gt(p->cputime_expires.prof_exp,
 					       nt->expires.cpu))
-					p->it_prof_expires = nt->expires.cpu;
+					p->cputime_expires.prof_exp =
+						nt->expires.cpu;
 				break;
 			case CPUCLOCK_VIRT:
-				if (cputime_eq(p->it_virt_expires,
+				if (cputime_eq(p->cputime_expires.virt_exp,
 					       cputime_zero) ||
-				    cputime_gt(p->it_virt_expires,
+				    cputime_gt(p->cputime_expires.virt_exp,
 					       nt->expires.cpu))
-					p->it_virt_expires = nt->expires.cpu;
+					p->cputime_expires.virt_exp =
+						nt->expires.cpu;
 				break;
 			case CPUCLOCK_SCHED:
-				if (p->it_sched_expires == 0 ||
-				    p->it_sched_expires > nt->expires.sched)
-					p->it_sched_expires = nt->expires.sched;
+				if (p->cputime_expires.sched_exp == 0 ||
+				    p->cputime_expires.sched_exp >
+							nt->expires.sched)
+					p->cputime_expires.sched_exp =
+						nt->expires.sched;
 				break;
 			}
 		} else {
 			/*
-			 * For a process timer, we must balance
-			 * all the live threads' expirations.
+			 * For a process timer, set the cached expiration time.
 			 */
 			switch (CPUCLOCK_WHICH(timer->it_clock)) {
 			default:
@@ -641,7 +629,9 @@
 				    cputime_lt(p->signal->it_virt_expires,
 					       timer->it.cpu.expires.cpu))
 					break;
-				goto rebalance;
+				p->signal->cputime_expires.virt_exp =
+					timer->it.cpu.expires.cpu;
+				break;
 			case CPUCLOCK_PROF:
 				if (!cputime_eq(p->signal->it_prof_expires,
 						cputime_zero) &&
@@ -652,13 +642,12 @@
 				if (i != RLIM_INFINITY &&
 				    i <= cputime_to_secs(timer->it.cpu.expires.cpu))
 					break;
-				goto rebalance;
+				p->signal->cputime_expires.prof_exp =
+					timer->it.cpu.expires.cpu;
+				break;
 			case CPUCLOCK_SCHED:
-			rebalance:
-				process_timer_rebalance(
-					timer->it.cpu.task,
-					CPUCLOCK_WHICH(timer->it_clock),
-					timer->it.cpu.expires, now);
+				p->signal->cputime_expires.sched_exp =
+					timer->it.cpu.expires.sched;
 				break;
 			}
 		}
@@ -969,13 +958,13 @@
 	struct signal_struct *const sig = tsk->signal;
 
 	maxfire = 20;
-	tsk->it_prof_expires = cputime_zero;
+	tsk->cputime_expires.prof_exp = cputime_zero;
 	while (!list_empty(timers)) {
 		struct cpu_timer_list *t = list_first_entry(timers,
 						      struct cpu_timer_list,
 						      entry);
 		if (!--maxfire || cputime_lt(prof_ticks(tsk), t->expires.cpu)) {
-			tsk->it_prof_expires = t->expires.cpu;
+			tsk->cputime_expires.prof_exp = t->expires.cpu;
 			break;
 		}
 		t->firing = 1;
@@ -984,13 +973,13 @@
 
 	++timers;
 	maxfire = 20;
-	tsk->it_virt_expires = cputime_zero;
+	tsk->cputime_expires.virt_exp = cputime_zero;
 	while (!list_empty(timers)) {
 		struct cpu_timer_list *t = list_first_entry(timers,
 						      struct cpu_timer_list,
 						      entry);
 		if (!--maxfire || cputime_lt(virt_ticks(tsk), t->expires.cpu)) {
-			tsk->it_virt_expires = t->expires.cpu;
+			tsk->cputime_expires.virt_exp = t->expires.cpu;
 			break;
 		}
 		t->firing = 1;
@@ -999,13 +988,13 @@
 
 	++timers;
 	maxfire = 20;
-	tsk->it_sched_expires = 0;
+	tsk->cputime_expires.sched_exp = 0;
 	while (!list_empty(timers)) {
 		struct cpu_timer_list *t = list_first_entry(timers,
 						      struct cpu_timer_list,
 						      entry);
 		if (!--maxfire || tsk->se.sum_exec_runtime < t->expires.sched) {
-			tsk->it_sched_expires = t->expires.sched;
+			tsk->cputime_expires.sched_exp = t->expires.sched;
 			break;
 		}
 		t->firing = 1;
@@ -1055,10 +1044,10 @@
 {
 	int maxfire;
 	struct signal_struct *const sig = tsk->signal;
-	cputime_t utime, stime, ptime, virt_expires, prof_expires;
+	cputime_t utime, ptime, virt_expires, prof_expires;
 	unsigned long long sum_sched_runtime, sched_expires;
-	struct task_struct *t;
 	struct list_head *timers = sig->cpu_timers;
+	struct task_cputime cputime;
 
 	/*
 	 * Don't sample the current process CPU clocks if there are no timers.
@@ -1074,18 +1063,10 @@
 	/*
 	 * Collect the current process totals.
 	 */
-	utime = sig->utime;
-	stime = sig->stime;
-	sum_sched_runtime = sig->sum_sched_runtime;
-	t = tsk;
-	do {
-		utime = cputime_add(utime, t->utime);
-		stime = cputime_add(stime, t->stime);
-		sum_sched_runtime += t->se.sum_exec_runtime;
-		t = next_thread(t);
-	} while (t != tsk);
-	ptime = cputime_add(utime, stime);
-
+	thread_group_cputime(tsk, &cputime);
+	utime = cputime.utime;
+	ptime = cputime_add(utime, cputime.stime);
+	sum_sched_runtime = cputime.sum_exec_runtime;
 	maxfire = 20;
 	prof_expires = cputime_zero;
 	while (!list_empty(timers)) {
@@ -1193,60 +1174,18 @@
 		}
 	}
 
-	if (!cputime_eq(prof_expires, cputime_zero) ||
-	    !cputime_eq(virt_expires, cputime_zero) ||
-	    sched_expires != 0) {
-		/*
-		 * Rebalance the threads' expiry times for the remaining
-		 * process CPU timers.
-		 */
-
-		cputime_t prof_left, virt_left, ticks;
-		unsigned long long sched_left, sched;
-		const unsigned int nthreads = atomic_read(&sig->live);
-
-		if (!nthreads)
-			return;
-
-		prof_left = cputime_sub(prof_expires, utime);
-		prof_left = cputime_sub(prof_left, stime);
-		prof_left = cputime_div_non_zero(prof_left, nthreads);
-		virt_left = cputime_sub(virt_expires, utime);
-		virt_left = cputime_div_non_zero(virt_left, nthreads);
-		if (sched_expires) {
-			sched_left = sched_expires - sum_sched_runtime;
-			do_div(sched_left, nthreads);
-			sched_left = max_t(unsigned long long, sched_left, 1);
-		} else {
-			sched_left = 0;
-		}
-		t = tsk;
-		do {
-			if (unlikely(t->flags & PF_EXITING))
-				continue;
-
-			ticks = cputime_add(cputime_add(t->utime, t->stime),
-					    prof_left);
-			if (!cputime_eq(prof_expires, cputime_zero) &&
-			    (cputime_eq(t->it_prof_expires, cputime_zero) ||
-			     cputime_gt(t->it_prof_expires, ticks))) {
-				t->it_prof_expires = ticks;
-			}
-
-			ticks = cputime_add(t->utime, virt_left);
-			if (!cputime_eq(virt_expires, cputime_zero) &&
-			    (cputime_eq(t->it_virt_expires, cputime_zero) ||
-			     cputime_gt(t->it_virt_expires, ticks))) {
-				t->it_virt_expires = ticks;
-			}
-
-			sched = t->se.sum_exec_runtime + sched_left;
-			if (sched_expires && (t->it_sched_expires == 0 ||
-					      t->it_sched_expires > sched)) {
-				t->it_sched_expires = sched;
-			}
-		} while ((t = next_thread(t)) != tsk);
-	}
+	if (!cputime_eq(prof_expires, cputime_zero) &&
+	    (cputime_eq(sig->cputime_expires.prof_exp, cputime_zero) ||
+	     cputime_gt(sig->cputime_expires.prof_exp, prof_expires)))
+		sig->cputime_expires.prof_exp = prof_expires;
+	if (!cputime_eq(virt_expires, cputime_zero) &&
+	    (cputime_eq(sig->cputime_expires.virt_exp, cputime_zero) ||
+	     cputime_gt(sig->cputime_expires.virt_exp, virt_expires)))
+		sig->cputime_expires.virt_exp = virt_expires;
+	if (sched_expires != 0 &&
+	    (sig->cputime_expires.sched_exp == 0 ||
+	     sig->cputime_expires.sched_exp > sched_expires))
+		sig->cputime_expires.sched_exp = sched_expires;
 }
 
 /*
@@ -1314,6 +1253,86 @@
 	++timer->it_requeue_pending;
 }
 
+/**
+ * task_cputime_zero - Check a task_cputime struct for all zero fields.
+ *
+ * @cputime:	The struct to compare.
+ *
+ * Checks @cputime to see if all fields are zero.  Returns true if all fields
+ * are zero, false if any field is nonzero.
+ */
+static inline int task_cputime_zero(const struct task_cputime *cputime)
+{
+	if (cputime_eq(cputime->utime, cputime_zero) &&
+	    cputime_eq(cputime->stime, cputime_zero) &&
+	    cputime->sum_exec_runtime == 0)
+		return 1;
+	return 0;
+}
+
+/**
+ * task_cputime_expired - Compare two task_cputime entities.
+ *
+ * @sample:	The task_cputime structure to be checked for expiration.
+ * @expires:	Expiration times, against which @sample will be checked.
+ *
+ * Checks @sample against @expires to see if any field of @sample has expired.
+ * Returns true if any field of the former is greater than the corresponding
+ * field of the latter if the latter field is set.  Otherwise returns false.
+ */
+static inline int task_cputime_expired(const struct task_cputime *sample,
+					const struct task_cputime *expires)
+{
+	if (!cputime_eq(expires->utime, cputime_zero) &&
+	    cputime_ge(sample->utime, expires->utime))
+		return 1;
+	if (!cputime_eq(expires->stime, cputime_zero) &&
+	    cputime_ge(cputime_add(sample->utime, sample->stime),
+		       expires->stime))
+		return 1;
+	if (expires->sum_exec_runtime != 0 &&
+	    sample->sum_exec_runtime >= expires->sum_exec_runtime)
+		return 1;
+	return 0;
+}
+
+/**
+ * fastpath_timer_check - POSIX CPU timers fast path.
+ *
+ * @tsk:	The task (thread) being checked.
+ *
+ * Check the task and thread group timers.  If both are zero (there are no
+ * timers set) return false.  Otherwise snapshot the task and thread group
+ * timers and compare them with the corresponding expiration times.  Return
+ * true if a timer has expired, else return false.
+ */
+static inline int fastpath_timer_check(struct task_struct *tsk)
+{
+	struct signal_struct *sig = tsk->signal;
+
+	if (unlikely(!sig))
+		return 0;
+
+	if (!task_cputime_zero(&tsk->cputime_expires)) {
+		struct task_cputime task_sample = {
+			.utime = tsk->utime,
+			.stime = tsk->stime,
+			.sum_exec_runtime = tsk->se.sum_exec_runtime
+		};
+
+		if (task_cputime_expired(&task_sample, &tsk->cputime_expires))
+			return 1;
+	}
+	if (!task_cputime_zero(&sig->cputime_expires)) {
+		struct task_cputime group_sample;
+
+		thread_group_cputime(tsk, &group_sample);
+		if (task_cputime_expired(&group_sample, &sig->cputime_expires))
+			return 1;
+	}
+	return 0;
+}
+
 /*
  * This is called from the timer interrupt handler.  The irq handler has
  * already updated our counts.  We need to check if any timers fire now.
@@ -1326,42 +1345,31 @@
 
 	BUG_ON(!irqs_disabled());
 
-#define UNEXPIRED(clock) \
-		(cputime_eq(tsk->it_##clock##_expires, cputime_zero) || \
-		 cputime_lt(clock##_ticks(tsk), tsk->it_##clock##_expires))
-
-	if (UNEXPIRED(prof) && UNEXPIRED(virt) &&
-	    (tsk->it_sched_expires == 0 ||
-	     tsk->se.sum_exec_runtime < tsk->it_sched_expires))
+	/*
+	 * The fast path checks that there are no expired thread or thread
+	 * group timers.  If that's so, just return.
+	 */
+	if (!fastpath_timer_check(tsk))
 		return;
 
-#undef	UNEXPIRED
+	spin_lock(&tsk->sighand->siglock);
+	/*
+	 * Here we take off tsk->signal->cpu_timers[N] and
+	 * tsk->cpu_timers[N] all the timers that are firing, and
+	 * put them on the firing list.
+	 */
+	check_thread_timers(tsk, &firing);
+	check_process_timers(tsk, &firing);
 
 	/*
-	 * Double-check with locks held.
+	 * We must release these locks before taking any timer's lock.
+	 * There is a potential race with timer deletion here, as the
+	 * siglock now protects our private firing list.  We have set
+	 * the firing flag in each timer, so that a deletion attempt
+	 * that gets the timer lock before we do will give it up and
+	 * spin until we've taken care of that timer below.
 	 */
-	read_lock(&tasklist_lock);
-	if (likely(tsk->signal != NULL)) {
-		spin_lock(&tsk->sighand->siglock);
-
-		/*
-		 * Here we take off tsk->cpu_timers[N] and tsk->signal->cpu_timers[N]
-		 * all the timers that are firing, and put them on the firing list.
-		 */
-		check_thread_timers(tsk, &firing);
-		check_process_timers(tsk, &firing);
-
-		/*
-		 * We must release these locks before taking any timer's lock.
-		 * There is a potential race with timer deletion here, as the
-		 * siglock now protects our private firing list.  We have set
-		 * the firing flag in each timer, so that a deletion attempt
-		 * that gets the timer lock before we do will give it up and
-		 * spin until we've taken care of that timer below.
-		 */
-		spin_unlock(&tsk->sighand->siglock);
-	}
-	read_unlock(&tasklist_lock);
+	spin_unlock(&tsk->sighand->siglock);
 
 	/*
 	 * Now that all the timers on our list have the firing flag,
@@ -1389,10 +1397,9 @@
 
 /*
  * Set one of the process-wide special case CPU timers.
- * The tasklist_lock and tsk->sighand->siglock must be held by the caller.
- * The oldval argument is null for the RLIMIT_CPU timer, where *newval is
- * absolute; non-null for ITIMER_*, where *newval is relative and we update
- * it to be absolute, *oldval is absolute and we update it to be relative.
+ * The tsk->sighand->siglock must be held by the caller.
+ * The *newval argument is relative and we update it to be absolute, *oldval
+ * is absolute and we update it to be relative.
  */
 void set_process_cpu_timer(struct task_struct *tsk, unsigned int clock_idx,
 			   cputime_t *newval, cputime_t *oldval)
@@ -1401,7 +1408,7 @@
 	struct list_head *head;
 
 	BUG_ON(clock_idx == CPUCLOCK_SCHED);
-	cpu_clock_sample_group_locked(clock_idx, tsk, &now);
+	cpu_clock_sample_group(clock_idx, tsk, &now);
 
 	if (oldval) {
 		if (!cputime_eq(*oldval, cputime_zero)) {
@@ -1435,13 +1442,14 @@
 	    cputime_ge(list_first_entry(head,
 				  struct cpu_timer_list, entry)->expires.cpu,
 		       *newval)) {
-		/*
-		 * Rejigger each thread's expiry time so that one will
-		 * notice before we hit the process-cumulative expiry time.
-		 */
-		union cpu_time_count expires = { .sched = 0 };
-		expires.cpu = *newval;
-		process_timer_rebalance(tsk, clock_idx, expires, now);
+		switch (clock_idx) {
+		case CPUCLOCK_PROF:
+			tsk->signal->cputime_expires.prof_exp = *newval;
+			break;
+		case CPUCLOCK_VIRT:
+			tsk->signal->cputime_expires.virt_exp = *newval;
+			break;
+		}
 	}
 }
 
diff --git a/kernel/posix-timers.c b/kernel/posix-timers.c
index 5131e54..b931d7c 100644
--- a/kernel/posix-timers.c
+++ b/kernel/posix-timers.c
@@ -223,6 +223,15 @@
 }
 
 /*
+ * Get monotonic time for posix timers
+ */
+static int posix_get_monotonic_raw(clockid_t which_clock, struct timespec *tp)
+{
+	getrawmonotonic(tp);
+	return 0;
+}
+
+/*
  * Initialize everything, well, just everything in Posix clocks/timers ;)
  */
 static __init int init_posix_timers(void)
@@ -235,9 +244,15 @@
 		.clock_get = posix_ktime_get_ts,
 		.clock_set = do_posix_clock_nosettime,
 	};
+	struct k_clock clock_monotonic_raw = {
+		.clock_getres = hrtimer_get_res,
+		.clock_get = posix_get_monotonic_raw,
+		.clock_set = do_posix_clock_nosettime,
+	};
 
 	register_posix_clock(CLOCK_REALTIME, &clock_realtime);
 	register_posix_clock(CLOCK_MONOTONIC, &clock_monotonic);
+	register_posix_clock(CLOCK_MONOTONIC_RAW, &clock_monotonic_raw);
 
 	posix_timers_cache = kmem_cache_create("posix_timers_cache",
 					sizeof (struct k_itimer), 0, SLAB_PANIC,
@@ -298,6 +313,7 @@
 
 int posix_timer_event(struct k_itimer *timr, int si_private)
 {
+	int shared, ret;
 	/*
 	 * FIXME: if ->sigq is queued we can race with
 	 * dequeue_signal()->do_schedule_next_timer().
@@ -311,25 +327,10 @@
 	 */
 	timr->sigq->info.si_sys_private = si_private;
 
-	timr->sigq->info.si_signo = timr->it_sigev_signo;
-	timr->sigq->info.si_code = SI_TIMER;
-	timr->sigq->info.si_tid = timr->it_id;
-	timr->sigq->info.si_value = timr->it_sigev_value;
-
-	if (timr->it_sigev_notify & SIGEV_THREAD_ID) {
-		struct task_struct *leader;
-		int ret = send_sigqueue(timr->sigq, timr->it_process, 0);
-
-		if (likely(ret >= 0))
-			return ret;
-
-		timr->it_sigev_notify = SIGEV_SIGNAL;
-		leader = timr->it_process->group_leader;
-		put_task_struct(timr->it_process);
-		timr->it_process = leader;
-	}
-
-	return send_sigqueue(timr->sigq, timr->it_process, 1);
+	shared = !(timr->it_sigev_notify & SIGEV_THREAD_ID);
+	ret = send_sigqueue(timr->sigq, timr->it_process, shared);
+	/* If we failed to send the signal the timer stops. */
+	return ret > 0;
 }
 EXPORT_SYMBOL_GPL(posix_timer_event);
 
@@ -468,11 +469,9 @@
 		 struct sigevent __user *timer_event_spec,
 		 timer_t __user * created_timer_id)
 {
-	int error = 0;
-	struct k_itimer *new_timer = NULL;
-	int new_timer_id;
-	struct task_struct *process = NULL;
-	unsigned long flags;
+	struct k_itimer *new_timer;
+	int error, new_timer_id;
+	struct task_struct *process;
 	sigevent_t event;
 	int it_id_set = IT_ID_NOT_SET;
 
@@ -490,12 +489,11 @@
 		goto out;
 	}
 	spin_lock_irq(&idr_lock);
-	error = idr_get_new(&posix_timers_id, (void *) new_timer,
-			    &new_timer_id);
+	error = idr_get_new(&posix_timers_id, new_timer, &new_timer_id);
 	spin_unlock_irq(&idr_lock);
-	if (error == -EAGAIN)
-		goto retry;
-	else if (error) {
+	if (error) {
+		if (error == -EAGAIN)
+			goto retry;
 		/*
 		 * Weird looking, but we return EAGAIN if the IDR is
 		 * full (proper POSIX return value for this)
@@ -526,67 +524,43 @@
 			error = -EFAULT;
 			goto out;
 		}
-		new_timer->it_sigev_notify = event.sigev_notify;
-		new_timer->it_sigev_signo = event.sigev_signo;
-		new_timer->it_sigev_value = event.sigev_value;
-
-		read_lock(&tasklist_lock);
-		if ((process = good_sigevent(&event))) {
-			/*
-			 * We may be setting up this process for another
-			 * thread.  It may be exiting.  To catch this
-			 * case the we check the PF_EXITING flag.  If
-			 * the flag is not set, the siglock will catch
-			 * him before it is too late (in exit_itimers).
-			 *
-			 * The exec case is a bit more invloved but easy
-			 * to code.  If the process is in our thread
-			 * group (and it must be or we would not allow
-			 * it here) and is doing an exec, it will cause
-			 * us to be killed.  In this case it will wait
-			 * for us to die which means we can finish this
-			 * linkage with our last gasp. I.e. no code :)
-			 */
-			spin_lock_irqsave(&process->sighand->siglock, flags);
-			if (!(process->flags & PF_EXITING)) {
-				new_timer->it_process = process;
-				list_add(&new_timer->list,
-					 &process->signal->posix_timers);
-				if (new_timer->it_sigev_notify == (SIGEV_SIGNAL|SIGEV_THREAD_ID))
-					get_task_struct(process);
-				spin_unlock_irqrestore(&process->sighand->siglock, flags);
-			} else {
-				spin_unlock_irqrestore(&process->sighand->siglock, flags);
-				process = NULL;
-			}
-		}
-		read_unlock(&tasklist_lock);
+		rcu_read_lock();
+		process = good_sigevent(&event);
+		if (process)
+			get_task_struct(process);
+		rcu_read_unlock();
 		if (!process) {
 			error = -EINVAL;
 			goto out;
 		}
 	} else {
-		new_timer->it_sigev_notify = SIGEV_SIGNAL;
-		new_timer->it_sigev_signo = SIGALRM;
-		new_timer->it_sigev_value.sival_int = new_timer->it_id;
+		event.sigev_notify = SIGEV_SIGNAL;
+		event.sigev_signo = SIGALRM;
+		event.sigev_value.sival_int = new_timer->it_id;
 		process = current->group_leader;
-		spin_lock_irqsave(&process->sighand->siglock, flags);
-		new_timer->it_process = process;
-		list_add(&new_timer->list, &process->signal->posix_timers);
-		spin_unlock_irqrestore(&process->sighand->siglock, flags);
+		get_task_struct(process);
 	}
 
+	new_timer->it_sigev_notify     = event.sigev_notify;
+	new_timer->sigq->info.si_signo = event.sigev_signo;
+	new_timer->sigq->info.si_value = event.sigev_value;
+	new_timer->sigq->info.si_tid   = new_timer->it_id;
+	new_timer->sigq->info.si_code  = SI_TIMER;
+
+	spin_lock_irq(&current->sighand->siglock);
+	new_timer->it_process = process;
+	list_add(&new_timer->list, &current->signal->posix_timers);
+	spin_unlock_irq(&current->sighand->siglock);
+
+	return 0;
  	/*
 	 * In the case of the timer belonging to another task, after
 	 * the task is unlocked, the timer is owned by the other task
 	 * and may cease to exist at any time.  Don't use or modify
 	 * new_timer after the unlock call.
 	 */
-
 out:
-	if (error)
-		release_posix_timer(new_timer, it_id_set);
-
+	release_posix_timer(new_timer, it_id_set);
 	return error;
 }
 
@@ -597,7 +571,7 @@
  * the find to the timer lock.  To avoid a dead lock, the timer id MUST
  * be release with out holding the timer lock.
  */
-static struct k_itimer * lock_timer(timer_t timer_id, unsigned long *flags)
+static struct k_itimer *lock_timer(timer_t timer_id, unsigned long *flags)
 {
 	struct k_itimer *timr;
 	/*
@@ -605,23 +579,20 @@
 	 * flags part over to the timer lock.  Must not let interrupts in
 	 * while we are moving the lock.
 	 */
-
 	spin_lock_irqsave(&idr_lock, *flags);
-	timr = (struct k_itimer *) idr_find(&posix_timers_id, (int) timer_id);
+	timr = idr_find(&posix_timers_id, (int)timer_id);
 	if (timr) {
 		spin_lock(&timr->it_lock);
-
-		if ((timr->it_id != timer_id) || !(timr->it_process) ||
-				!same_thread_group(timr->it_process, current)) {
-			spin_unlock(&timr->it_lock);
-			spin_unlock_irqrestore(&idr_lock, *flags);
-			timr = NULL;
-		} else
+		if (timr->it_process &&
+		    same_thread_group(timr->it_process, current)) {
 			spin_unlock(&idr_lock);
-	} else
-		spin_unlock_irqrestore(&idr_lock, *flags);
+			return timr;
+		}
+		spin_unlock(&timr->it_lock);
+	}
+	spin_unlock_irqrestore(&idr_lock, *flags);
 
-	return timr;
+	return NULL;
 }
 
 /*
@@ -862,8 +833,7 @@
 	 * This keeps any tasks waiting on the spin lock from thinking
 	 * they got something (see the lock code above).
 	 */
-	if (timer->it_sigev_notify == (SIGEV_SIGNAL|SIGEV_THREAD_ID))
-		put_task_struct(timer->it_process);
+	put_task_struct(timer->it_process);
 	timer->it_process = NULL;
 
 	unlock_timer(timer, flags);
@@ -890,8 +860,7 @@
 	 * This keeps any tasks waiting on the spin lock from thinking
 	 * they got something (see the lock code above).
 	 */
-	if (timer->it_sigev_notify == (SIGEV_SIGNAL|SIGEV_THREAD_ID))
-		put_task_struct(timer->it_process);
+	put_task_struct(timer->it_process);
 	timer->it_process = NULL;
 
 	unlock_timer(timer, flags);
diff --git a/kernel/sched.c b/kernel/sched.c
index 6f23059..09a8c15 100644
--- a/kernel/sched.c
+++ b/kernel/sched.c
@@ -4052,23 +4052,26 @@
 EXPORT_PER_CPU_SYMBOL(kstat);
 
 /*
- * Return p->sum_exec_runtime plus any more ns on the sched_clock
- * that have not yet been banked in case the task is currently running.
+ * Return any ns on the sched_clock that have not yet been banked in
+ * @p in case that task is currently running.
  */
-unsigned long long task_sched_runtime(struct task_struct *p)
+unsigned long long task_delta_exec(struct task_struct *p)
 {
 	unsigned long flags;
-	u64 ns, delta_exec;
 	struct rq *rq;
+	u64 ns = 0;
 
 	rq = task_rq_lock(p, &flags);
-	ns = p->se.sum_exec_runtime;
+
 	if (task_current(rq, p)) {
+		u64 delta_exec;
+
 		update_rq_clock(rq);
 		delta_exec = rq->clock - p->se.exec_start;
 		if ((s64)delta_exec > 0)
-			ns += delta_exec;
+			ns = delta_exec;
 	}
+
 	task_rq_unlock(rq, &flags);
 
 	return ns;
@@ -4085,6 +4088,7 @@
 	cputime64_t tmp;
 
 	p->utime = cputime_add(p->utime, cputime);
+	account_group_user_time(p, cputime);
 
 	/* Add user time to cpustat. */
 	tmp = cputime_to_cputime64(cputime);
@@ -4109,6 +4113,7 @@
 	tmp = cputime_to_cputime64(cputime);
 
 	p->utime = cputime_add(p->utime, cputime);
+	account_group_user_time(p, cputime);
 	p->gtime = cputime_add(p->gtime, cputime);
 
 	cpustat->user = cputime64_add(cpustat->user, tmp);
@@ -4144,6 +4149,7 @@
 	}
 
 	p->stime = cputime_add(p->stime, cputime);
+	account_group_system_time(p, cputime);
 
 	/* Add system time to cpustat. */
 	tmp = cputime_to_cputime64(cputime);
@@ -4185,6 +4191,7 @@
 
 	if (p == rq->idle) {
 		p->stime = cputime_add(p->stime, steal);
+		account_group_system_time(p, steal);
 		if (atomic_read(&rq->nr_iowait) > 0)
 			cpustat->iowait = cputime64_add(cpustat->iowait, tmp);
 		else
diff --git a/kernel/sched_fair.c b/kernel/sched_fair.c
index 18fd171..f604dae 100644
--- a/kernel/sched_fair.c
+++ b/kernel/sched_fair.c
@@ -449,6 +449,7 @@
 		struct task_struct *curtask = task_of(curr);
 
 		cpuacct_charge(curtask, delta_exec);
+		account_group_exec_runtime(curtask, delta_exec);
 	}
 }
 
diff --git a/kernel/sched_rt.c b/kernel/sched_rt.c
index cdf5740..b446dc8 100644
--- a/kernel/sched_rt.c
+++ b/kernel/sched_rt.c
@@ -526,6 +526,8 @@
 	schedstat_set(curr->se.exec_max, max(curr->se.exec_max, delta_exec));
 
 	curr->se.sum_exec_runtime += delta_exec;
+	account_group_exec_runtime(curr, delta_exec);
+
 	curr->se.exec_start = rq->clock;
 	cpuacct_charge(curr, delta_exec);
 
@@ -1458,7 +1460,7 @@
 		p->rt.timeout++;
 		next = DIV_ROUND_UP(min(soft, hard), USEC_PER_SEC/HZ);
 		if (p->rt.timeout > next)
-			p->it_sched_expires = p->se.sum_exec_runtime;
+			p->cputime_expires.sched_exp = p->se.sum_exec_runtime;
 	}
 }
 
diff --git a/kernel/sched_stats.h b/kernel/sched_stats.h
index 8385d43..b8c1569 100644
--- a/kernel/sched_stats.h
+++ b/kernel/sched_stats.h
@@ -270,3 +270,89 @@
 #define sched_info_switch(t, next)		do { } while (0)
 #endif /* CONFIG_SCHEDSTATS || CONFIG_TASK_DELAY_ACCT */
 
+/*
+ * The following are functions that support scheduler-internal time accounting.
+ * These functions are generally called at the timer tick.  None of this depends
+ * on CONFIG_SCHEDSTATS.
+ */
+
+/**
+ * account_group_user_time - Maintain utime for a thread group.
+ *
+ * @tsk:	Pointer to task structure.
+ * @cputime:	Time value by which to increment the utime field of the
+ *		thread_group_cputime structure.
+ *
+ * If thread group time is being maintained, get the structure for the
+ * running CPU and update the utime field there.
+ */
+static inline void account_group_user_time(struct task_struct *tsk,
+					   cputime_t cputime)
+{
+	struct signal_struct *sig;
+
+	sig = tsk->signal;
+	if (unlikely(!sig))
+		return;
+	if (sig->cputime.totals) {
+		struct task_cputime *times;
+
+		times = per_cpu_ptr(sig->cputime.totals, get_cpu());
+		times->utime = cputime_add(times->utime, cputime);
+		put_cpu_no_resched();
+	}
+}
+
+/**
+ * account_group_system_time - Maintain stime for a thread group.
+ *
+ * @tsk:	Pointer to task structure.
+ * @cputime:	Time value by which to increment the stime field of the
+ *		thread_group_cputime structure.
+ *
+ * If thread group time is being maintained, get the structure for the
+ * running CPU and update the stime field there.
+ */
+static inline void account_group_system_time(struct task_struct *tsk,
+					     cputime_t cputime)
+{
+	struct signal_struct *sig;
+
+	sig = tsk->signal;
+	if (unlikely(!sig))
+		return;
+	if (sig->cputime.totals) {
+		struct task_cputime *times;
+
+		times = per_cpu_ptr(sig->cputime.totals, get_cpu());
+		times->stime = cputime_add(times->stime, cputime);
+		put_cpu_no_resched();
+	}
+}
+
+/**
+ * account_group_exec_runtime - Maintain exec runtime for a thread group.
+ *
+ * @tsk:	Pointer to task structure.
+ * @ns:		Time value by which to increment the sum_exec_runtime field
+ *		of the thread_group_cputime structure.
+ *
+ * If thread group time is being maintained, get the structure for the
+ * running CPU and update the sum_exec_runtime field there.
+ */
+static inline void account_group_exec_runtime(struct task_struct *tsk,
+					      unsigned long long ns)
+{
+	struct signal_struct *sig;
+
+	sig = tsk->signal;
+	if (unlikely(!sig))
+		return;
+	if (sig->cputime.totals) {
+		struct task_cputime *times;
+
+		times = per_cpu_ptr(sig->cputime.totals, get_cpu());
+		times->sum_exec_runtime += ns;
+		put_cpu_no_resched();
+	}
+}
diff --git a/kernel/signal.c b/kernel/signal.c
index e661b01..6eea582 100644
--- a/kernel/signal.c
+++ b/kernel/signal.c
@@ -1338,6 +1338,7 @@
 	struct siginfo info;
 	unsigned long flags;
 	struct sighand_struct *psig;
+	struct task_cputime cputime;
 	int ret = sig;
 
 	BUG_ON(sig == -1);
@@ -1368,10 +1369,9 @@
 
 	info.si_uid = tsk->uid;
 
-	info.si_utime = cputime_to_clock_t(cputime_add(tsk->utime,
-						       tsk->signal->utime));
-	info.si_stime = cputime_to_clock_t(cputime_add(tsk->stime,
-						       tsk->signal->stime));
+	thread_group_cputime(tsk, &cputime);
+	info.si_utime = cputime_to_jiffies(cputime.utime);
+	info.si_stime = cputime_to_jiffies(cputime.stime);
 
 	info.si_status = tsk->exit_code & 0x7f;
 	if (tsk->exit_code & 0x80)
diff --git a/kernel/softirq.c b/kernel/softirq.c
index d410014..7110dae 100644
--- a/kernel/softirq.c
+++ b/kernel/softirq.c
@@ -6,6 +6,8 @@
  *	Distribute under GPLv2.
  *
  *	Rewritten. Old one was good in 2.2, but in 2.3 it was immoral. --ANK (990903)
+ *
+ *	Remote softirq infrastructure is by Jens Axboe.
  */
 
 #include <linux/module.h>
@@ -470,17 +472,144 @@
 
 EXPORT_SYMBOL(tasklet_kill);
 
+DEFINE_PER_CPU(struct list_head [NR_SOFTIRQS], softirq_work_list);
+EXPORT_PER_CPU_SYMBOL(softirq_work_list);
+
+static void __local_trigger(struct call_single_data *cp, int softirq)
+{
+	struct list_head *head = &__get_cpu_var(softirq_work_list[softirq]);
+
+	list_add_tail(&cp->list, head);
+
+	/* Trigger the softirq only if the list was previously empty.  */
+	if (head->next == &cp->list)
+		raise_softirq_irqoff(softirq);
+}
+
+#ifdef CONFIG_USE_GENERIC_SMP_HELPERS
+static void remote_softirq_receive(void *data)
+{
+	struct call_single_data *cp = data;
+	unsigned long flags;
+	int softirq;
+
+	softirq = cp->priv;
+
+	local_irq_save(flags);
+	__local_trigger(cp, softirq);
+	local_irq_restore(flags);
+}
+
+static int __try_remote_softirq(struct call_single_data *cp, int cpu, int softirq)
+{
+	if (cpu_online(cpu)) {
+		cp->func = remote_softirq_receive;
+		cp->info = cp;
+		cp->flags = 0;
+		cp->priv = softirq;
+
+		__smp_call_function_single(cpu, cp);
+		return 0;
+	}
+	return 1;
+}
+#else /* CONFIG_USE_GENERIC_SMP_HELPERS */
+static int __try_remote_softirq(struct call_single_data *cp, int cpu, int softirq)
+{
+	return 1;
+}
+#endif
+
+/**
+ * __send_remote_softirq - try to schedule softirq work on a remote cpu
+ * @cp: private SMP call function data area
+ * @cpu: the remote cpu
+ * @this_cpu: the currently executing cpu
+ * @softirq: the softirq for the work
+ *
+ * Attempt to schedule softirq work on a remote cpu.  If this cannot be
+ * done, the work is instead queued up on the local cpu.
+ *
+ * Interrupts must be disabled.
+ */
+void __send_remote_softirq(struct call_single_data *cp, int cpu, int this_cpu, int softirq)
+{
+	if (cpu == this_cpu || __try_remote_softirq(cp, cpu, softirq))
+		__local_trigger(cp, softirq);
+}
+EXPORT_SYMBOL(__send_remote_softirq);
+
+/**
+ * send_remote_softirq - try to schedule softirq work on a remote cpu
+ * @cp: private SMP call function data area
+ * @cpu: the remote cpu
+ * @softirq: the softirq for the work
+ *
+ * Like __send_remote_softirq except that disabling interrupts and
+ * computing the current cpu is done for the caller.
+ */
+void send_remote_softirq(struct call_single_data *cp, int cpu, int softirq)
+{
+	unsigned long flags;
+	int this_cpu;
+
+	local_irq_save(flags);
+	this_cpu = smp_processor_id();
+	__send_remote_softirq(cp, cpu, this_cpu, softirq);
+	local_irq_restore(flags);
+}
+EXPORT_SYMBOL(send_remote_softirq);
+
+static int __cpuinit remote_softirq_cpu_notify(struct notifier_block *self,
+					       unsigned long action, void *hcpu)
+{
+	/*
+	 * If a CPU goes away, splice its entries to the current CPU
+	 * and trigger a run of the softirq
+	 */
+	if (action == CPU_DEAD || action == CPU_DEAD_FROZEN) {
+		int cpu = (unsigned long) hcpu;
+		int i;
+
+		local_irq_disable();
+		for (i = 0; i < NR_SOFTIRQS; i++) {
+			struct list_head *head = &per_cpu(softirq_work_list[i], cpu);
+			struct list_head *local_head;
+
+			if (list_empty(head))
+				continue;
+
+			local_head = &__get_cpu_var(softirq_work_list[i]);
+			list_splice_init(head, local_head);
+			raise_softirq_irqoff(i);
+		}
+		local_irq_enable();
+	}
+
+	return NOTIFY_OK;
+}
+
+static struct notifier_block __cpuinitdata remote_softirq_cpu_notifier = {
+	.notifier_call	= remote_softirq_cpu_notify,
+};
+
 void __init softirq_init(void)
 {
 	int cpu;
 
 	for_each_possible_cpu(cpu) {
+		int i;
+
 		per_cpu(tasklet_vec, cpu).tail =
 			&per_cpu(tasklet_vec, cpu).head;
 		per_cpu(tasklet_hi_vec, cpu).tail =
 			&per_cpu(tasklet_hi_vec, cpu).head;
+		for (i = 0; i < NR_SOFTIRQS; i++)
+			INIT_LIST_HEAD(&per_cpu(softirq_work_list[i], cpu));
 	}
 
+	register_hotcpu_notifier(&remote_softirq_cpu_notifier);
+
 	open_softirq(TASKLET_SOFTIRQ, tasklet_action);
 	open_softirq(HI_SOFTIRQ, tasklet_hi_action);
 }
diff --git a/kernel/sys.c b/kernel/sys.c
index 0bc8fa3..53879cd 100644
--- a/kernel/sys.c
+++ b/kernel/sys.c
@@ -853,38 +853,28 @@
 	return old_fsgid;
 }
 
+void do_sys_times(struct tms *tms)
+{
+	struct task_cputime cputime;
+	cputime_t cutime, cstime;
+
+	spin_lock_irq(&current->sighand->siglock);
+	thread_group_cputime(current, &cputime);
+	cutime = current->signal->cutime;
+	cstime = current->signal->cstime;
+	spin_unlock_irq(&current->sighand->siglock);
+	tms->tms_utime = cputime_to_clock_t(cputime.utime);
+	tms->tms_stime = cputime_to_clock_t(cputime.stime);
+	tms->tms_cutime = cputime_to_clock_t(cutime);
+	tms->tms_cstime = cputime_to_clock_t(cstime);
+}
+
 asmlinkage long sys_times(struct tms __user * tbuf)
 {
-	/*
-	 *	In the SMP world we might just be unlucky and have one of
-	 *	the times increment as we use it. Since the value is an
-	 *	atomically safe type this is just fine. Conceptually its
-	 *	as if the syscall took an instant longer to occur.
-	 */
 	if (tbuf) {
 		struct tms tmp;
-		struct task_struct *tsk = current;
-		struct task_struct *t;
-		cputime_t utime, stime, cutime, cstime;
 
-		spin_lock_irq(&tsk->sighand->siglock);
-		utime = tsk->signal->utime;
-		stime = tsk->signal->stime;
-		t = tsk;
-		do {
-			utime = cputime_add(utime, t->utime);
-			stime = cputime_add(stime, t->stime);
-			t = next_thread(t);
-		} while (t != tsk);
-
-		cutime = tsk->signal->cutime;
-		cstime = tsk->signal->cstime;
-		spin_unlock_irq(&tsk->sighand->siglock);
-
-		tmp.tms_utime = cputime_to_clock_t(utime);
-		tmp.tms_stime = cputime_to_clock_t(stime);
-		tmp.tms_cutime = cputime_to_clock_t(cutime);
-		tmp.tms_cstime = cputime_to_clock_t(cstime);
+		do_sys_times(&tmp);
 		if (copy_to_user(tbuf, &tmp, sizeof(struct tms)))
 			return -EFAULT;
 	}
@@ -1449,7 +1439,6 @@
 asmlinkage long sys_setrlimit(unsigned int resource, struct rlimit __user *rlim)
 {
 	struct rlimit new_rlim, *old_rlim;
-	unsigned long it_prof_secs;
 	int retval;
 
 	if (resource >= RLIM_NLIMITS)
@@ -1503,18 +1492,7 @@
 	if (new_rlim.rlim_cur == RLIM_INFINITY)
 		goto out;
 
-	it_prof_secs = cputime_to_secs(current->signal->it_prof_expires);
-	if (it_prof_secs == 0 || new_rlim.rlim_cur <= it_prof_secs) {
-		unsigned long rlim_cur = new_rlim.rlim_cur;
-		cputime_t cputime;
-
-		cputime = secs_to_cputime(rlim_cur);
-		read_lock(&tasklist_lock);
-		spin_lock_irq(&current->sighand->siglock);
-		set_process_cpu_timer(current, CPUCLOCK_PROF, &cputime, NULL);
-		spin_unlock_irq(&current->sighand->siglock);
-		read_unlock(&tasklist_lock);
-	}
+	update_rlimit_cpu(new_rlim.rlim_cur);
 out:
 	return 0;
 }
@@ -1552,11 +1530,8 @@
  *
  */
 
-static void accumulate_thread_rusage(struct task_struct *t, struct rusage *r,
-				     cputime_t *utimep, cputime_t *stimep)
+static void accumulate_thread_rusage(struct task_struct *t, struct rusage *r)
 {
-	*utimep = cputime_add(*utimep, t->utime);
-	*stimep = cputime_add(*stimep, t->stime);
 	r->ru_nvcsw += t->nvcsw;
 	r->ru_nivcsw += t->nivcsw;
 	r->ru_minflt += t->min_flt;
@@ -1570,12 +1545,13 @@
 	struct task_struct *t;
 	unsigned long flags;
 	cputime_t utime, stime;
+	struct task_cputime cputime;
 
 	memset((char *) r, 0, sizeof *r);
 	utime = stime = cputime_zero;
 
 	if (who == RUSAGE_THREAD) {
-		accumulate_thread_rusage(p, r, &utime, &stime);
+		accumulate_thread_rusage(p, r);
 		goto out;
 	}
 
@@ -1598,8 +1574,9 @@
 				break;
 
 		case RUSAGE_SELF:
-			utime = cputime_add(utime, p->signal->utime);
-			stime = cputime_add(stime, p->signal->stime);
+			thread_group_cputime(p, &cputime);
+			utime = cputime_add(utime, cputime.utime);
+			stime = cputime_add(stime, cputime.stime);
 			r->ru_nvcsw += p->signal->nvcsw;
 			r->ru_nivcsw += p->signal->nivcsw;
 			r->ru_minflt += p->signal->min_flt;
@@ -1608,7 +1585,7 @@
 			r->ru_oublock += p->signal->oublock;
 			t = p;
 			do {
-				accumulate_thread_rusage(t, r, &utime, &stime);
+				accumulate_thread_rusage(t, r);
 				t = next_thread(t);
 			} while (t != p);
 			break;
diff --git a/kernel/time/clocksource.c b/kernel/time/clocksource.c
index 093d4ac..9ed2eec 100644
--- a/kernel/time/clocksource.c
+++ b/kernel/time/clocksource.c
@@ -325,6 +325,9 @@
 	unsigned long flags;
 	int ret;
 
+	/* save mult_orig on registration */
+	c->mult_orig = c->mult;
+
 	spin_lock_irqsave(&clocksource_lock, flags);
 	ret = clocksource_enqueue(c);
 	if (!ret)
diff --git a/kernel/time/jiffies.c b/kernel/time/jiffies.c
index 4c256fd..1ca9955 100644
--- a/kernel/time/jiffies.c
+++ b/kernel/time/jiffies.c
@@ -61,6 +61,7 @@
 	.read		= jiffies_read,
 	.mask		= 0xffffffff, /*32bits*/
 	.mult		= NSEC_PER_JIFFY << JIFFIES_SHIFT, /* details above */
+	.mult_orig	= NSEC_PER_JIFFY << JIFFIES_SHIFT,
 	.shift		= JIFFIES_SHIFT,
 };
 
diff --git a/kernel/time/ntp.c b/kernel/time/ntp.c
index 1ad46f3..1a20715 100644
--- a/kernel/time/ntp.c
+++ b/kernel/time/ntp.c
@@ -10,13 +10,13 @@
 
 #include <linux/mm.h>
 #include <linux/time.h>
-#include <linux/timer.h>
 #include <linux/timex.h>
 #include <linux/jiffies.h>
 #include <linux/hrtimer.h>
 #include <linux/capability.h>
 #include <linux/math64.h>
 #include <linux/clocksource.h>
+#include <linux/workqueue.h>
 #include <asm/timex.h>
 
 /*
@@ -218,11 +218,11 @@
 /* Disable the cmos update - used by virtualization and embedded */
 int no_sync_cmos_clock  __read_mostly;
 
-static void sync_cmos_clock(unsigned long dummy);
+static void sync_cmos_clock(struct work_struct *work);
 
-static DEFINE_TIMER(sync_cmos_timer, sync_cmos_clock, 0, 0);
+static DECLARE_DELAYED_WORK(sync_cmos_work, sync_cmos_clock);
 
-static void sync_cmos_clock(unsigned long dummy)
+static void sync_cmos_clock(struct work_struct *work)
 {
 	struct timespec now, next;
 	int fail = 1;
@@ -258,13 +258,13 @@
 		next.tv_sec++;
 		next.tv_nsec -= NSEC_PER_SEC;
 	}
-	mod_timer(&sync_cmos_timer, jiffies + timespec_to_jiffies(&next));
+	schedule_delayed_work(&sync_cmos_work, timespec_to_jiffies(&next));
 }
 
 static void notify_cmos_timer(void)
 {
 	if (!no_sync_cmos_clock)
-		mod_timer(&sync_cmos_timer, jiffies + 1);
+		schedule_delayed_work(&sync_cmos_work, 0);
 }
 
 #else
@@ -277,38 +277,50 @@
 int do_adjtimex(struct timex *txc)
 {
 	struct timespec ts;
-	long save_adjust, sec;
 	int result;
 
-	/* In order to modify anything, you gotta be super-user! */
-	if (txc->modes && !capable(CAP_SYS_TIME))
-		return -EPERM;
-
-	/* Now we validate the data before disabling interrupts */
-
-	if ((txc->modes & ADJ_OFFSET_SINGLESHOT) == ADJ_OFFSET_SINGLESHOT) {
+	/* Validate the data before disabling interrupts */
+	if (txc->modes & ADJ_ADJTIME) {
 		/* singleshot must not be used with any other mode bits */
-		if (txc->modes & ~ADJ_OFFSET_SS_READ)
+		if (!(txc->modes & ADJ_OFFSET_SINGLESHOT))
 			return -EINVAL;
+		if (!(txc->modes & ADJ_OFFSET_READONLY) &&
+		    !capable(CAP_SYS_TIME))
+			return -EPERM;
+	} else {
+		/* In order to modify anything, you gotta be super-user! */
+		 if (txc->modes && !capable(CAP_SYS_TIME))
+			return -EPERM;
+
+		/* if the quartz is off by more than 10% something is VERY wrong! */
+		if (txc->modes & ADJ_TICK &&
+		    (txc->tick <  900000/USER_HZ ||
+		     txc->tick > 1100000/USER_HZ))
+				return -EINVAL;
+
+		if (txc->modes & ADJ_STATUS && time_state != TIME_OK)
+			hrtimer_cancel(&leap_timer);
 	}
 
-	/* if the quartz is off by more than 10% something is VERY wrong ! */
-	if (txc->modes & ADJ_TICK)
-		if (txc->tick <  900000/USER_HZ ||
-		    txc->tick > 1100000/USER_HZ)
-			return -EINVAL;
-
-	if (time_state != TIME_OK && txc->modes & ADJ_STATUS)
-		hrtimer_cancel(&leap_timer);
 	getnstimeofday(&ts);
 
 	write_seqlock_irq(&xtime_lock);
 
-	/* Save for later - semantics of adjtime is to return old value */
-	save_adjust = time_adjust;
-
 	/* If there are input parameters, then process them */
+	if (txc->modes & ADJ_ADJTIME) {
+		long save_adjust = time_adjust;
+
+		if (!(txc->modes & ADJ_OFFSET_READONLY)) {
+			/* adjtime() is independent from ntp_adjtime() */
+			time_adjust = txc->offset;
+			ntp_update_frequency();
+		}
+		txc->offset = save_adjust;
+		goto adj_done;
+	}
 	if (txc->modes) {
+		long sec;
+
 		if (txc->modes & ADJ_STATUS) {
 			if ((time_status & STA_PLL) &&
 			    !(txc->status & STA_PLL)) {
@@ -375,13 +387,8 @@
 		if (txc->modes & ADJ_TAI && txc->constant > 0)
 			time_tai = txc->constant;
 
-		if (txc->modes & ADJ_OFFSET) {
-			if (txc->modes == ADJ_OFFSET_SINGLESHOT)
-				/* adjtime() is independent from ntp_adjtime() */
-				time_adjust = txc->offset;
-			else
-				ntp_update_offset(txc->offset);
-		}
+		if (txc->modes & ADJ_OFFSET)
+			ntp_update_offset(txc->offset);
 		if (txc->modes & ADJ_TICK)
 			tick_usec = txc->tick;
 
@@ -389,22 +396,18 @@
 			ntp_update_frequency();
 	}
 
+	txc->offset = shift_right(time_offset * NTP_INTERVAL_FREQ,
+				  NTP_SCALE_SHIFT);
+	if (!(time_status & STA_NANO))
+		txc->offset /= NSEC_PER_USEC;
+
+adj_done:
 	result = time_state;	/* mostly `TIME_OK' */
 	if (time_status & (STA_UNSYNC|STA_CLOCKERR))
 		result = TIME_ERROR;
 
-	if ((txc->modes == ADJ_OFFSET_SINGLESHOT) ||
-	    (txc->modes == ADJ_OFFSET_SS_READ))
-		txc->offset = save_adjust;
-	else {
-		txc->offset = shift_right(time_offset * NTP_INTERVAL_FREQ,
-					  NTP_SCALE_SHIFT);
-		if (!(time_status & STA_NANO))
-			txc->offset /= NSEC_PER_USEC;
-	}
-	txc->freq	   = shift_right((s32)(time_freq >> PPM_SCALE_INV_SHIFT) *
-					 (s64)PPM_SCALE_INV,
-					 NTP_SCALE_SHIFT);
+	txc->freq	   = shift_right((time_freq >> PPM_SCALE_INV_SHIFT) *
+					 (s64)PPM_SCALE_INV, NTP_SCALE_SHIFT);
 	txc->maxerror	   = time_maxerror;
 	txc->esterror	   = time_esterror;
 	txc->status	   = time_status;
diff --git a/kernel/time/timekeeping.c b/kernel/time/timekeeping.c
index e91c29f..e7acfb4 100644
--- a/kernel/time/timekeeping.c
+++ b/kernel/time/timekeeping.c
@@ -58,27 +58,26 @@
 
 #ifdef CONFIG_GENERIC_TIME
 /**
- * __get_nsec_offset - Returns nanoseconds since last call to periodic_hook
+ * clocksource_forward_now - update clock to the current time
  *
- * private function, must hold xtime_lock lock when being
- * called. Returns the number of nanoseconds since the
- * last call to update_wall_time() (adjusted by NTP scaling)
+ * Forward the current clock to update its state since the last call to
+ * update_wall_time(). This is useful before significant clock changes,
+ * as it avoids having to deal with this time offset explicitly.
  */
-static inline s64 __get_nsec_offset(void)
+static void clocksource_forward_now(void)
 {
 	cycle_t cycle_now, cycle_delta;
-	s64 ns_offset;
+	s64 nsec;
 
-	/* read clocksource: */
 	cycle_now = clocksource_read(clock);
-
-	/* calculate the delta since the last update_wall_time: */
 	cycle_delta = (cycle_now - clock->cycle_last) & clock->mask;
+	clock->cycle_last = cycle_now;
 
-	/* convert to nanoseconds: */
-	ns_offset = cyc2ns(clock, cycle_delta);
+	nsec = cyc2ns(clock, cycle_delta);
+	timespec_add_ns(&xtime, nsec);
 
-	return ns_offset;
+	nsec = ((s64)cycle_delta * clock->mult_orig) >> clock->shift;
+	clock->raw_time.tv_nsec += nsec;
 }
 
 /**
@@ -89,6 +88,7 @@
  */
 void getnstimeofday(struct timespec *ts)
 {
+	cycle_t cycle_now, cycle_delta;
 	unsigned long seq;
 	s64 nsecs;
 
@@ -96,7 +96,15 @@
 		seq = read_seqbegin(&xtime_lock);
 
 		*ts = xtime;
-		nsecs = __get_nsec_offset();
+
+		/* read clocksource: */
+		cycle_now = clocksource_read(clock);
+
+		/* calculate the delta since the last update_wall_time: */
+		cycle_delta = (cycle_now - clock->cycle_last) & clock->mask;
+
+		/* convert to nanoseconds: */
+		nsecs = cyc2ns(clock, cycle_delta);
 
 	} while (read_seqretry(&xtime_lock, seq));
 
@@ -129,22 +137,22 @@
  */
 int do_settimeofday(struct timespec *tv)
 {
+	struct timespec ts_delta;
 	unsigned long flags;
-	time_t wtm_sec, sec = tv->tv_sec;
-	long wtm_nsec, nsec = tv->tv_nsec;
 
 	if ((unsigned long)tv->tv_nsec >= NSEC_PER_SEC)
 		return -EINVAL;
 
 	write_seqlock_irqsave(&xtime_lock, flags);
 
-	nsec -= __get_nsec_offset();
+	clocksource_forward_now();
 
-	wtm_sec  = wall_to_monotonic.tv_sec + (xtime.tv_sec - sec);
-	wtm_nsec = wall_to_monotonic.tv_nsec + (xtime.tv_nsec - nsec);
+	ts_delta.tv_sec = tv->tv_sec - xtime.tv_sec;
+	ts_delta.tv_nsec = tv->tv_nsec - xtime.tv_nsec;
+	wall_to_monotonic = timespec_sub(wall_to_monotonic, ts_delta);
 
-	set_normalized_timespec(&xtime, sec, nsec);
-	set_normalized_timespec(&wall_to_monotonic, wtm_sec, wtm_nsec);
+	xtime = *tv;
+
 	update_xtime_cache(0);
 
 	clock->error = 0;
@@ -170,22 +178,19 @@
 static void change_clocksource(void)
 {
 	struct clocksource *new;
-	cycle_t now;
-	u64 nsec;
 
 	new = clocksource_get_next();
 
 	if (clock == new)
 		return;
 
-	new->cycle_last = 0;
-	now = clocksource_read(new);
-	nsec =  __get_nsec_offset();
-	timespec_add_ns(&xtime, nsec);
+	clocksource_forward_now();
+
+	new->raw_time = clock->raw_time;
 
 	clock = new;
-	clock->cycle_last = now;
-
+	clock->cycle_last = 0;
+	clock->cycle_last = clocksource_read(new);
 	clock->error = 0;
 	clock->xtime_nsec = 0;
 	clocksource_calculate_interval(clock, NTP_INTERVAL_LENGTH);
@@ -200,11 +205,44 @@
 	 */
 }
 #else
+static inline void clocksource_forward_now(void) { }
 static inline void change_clocksource(void) { }
-static inline s64 __get_nsec_offset(void) { return 0; }
 #endif
 
 /**
+ * getrawmonotonic - Returns the raw monotonic time in a timespec
+ * @ts:		pointer to the timespec to be set
+ *
+ * Returns the raw monotonic time (completely un-modified by ntp)
+ */
+void getrawmonotonic(struct timespec *ts)
+{
+	unsigned long seq;
+	s64 nsecs;
+	cycle_t cycle_now, cycle_delta;
+
+	do {
+		seq = read_seqbegin(&xtime_lock);
+
+		/* read clocksource: */
+		cycle_now = clocksource_read(clock);
+
+		/* calculate the delta since the last update_wall_time: */
+		cycle_delta = (cycle_now - clock->cycle_last) & clock->mask;
+
+		/* convert to nanoseconds: */
+		nsecs = ((s64)cycle_delta * clock->mult_orig) >> clock->shift;
+
+		*ts = clock->raw_time;
+
+	} while (read_seqretry(&xtime_lock, seq));
+
+	timespec_add_ns(ts, nsecs);
+}
+EXPORT_SYMBOL(getrawmonotonic);
+
+
+/**
  * timekeeping_valid_for_hres - Check if timekeeping is suitable for hres
  */
 int timekeeping_valid_for_hres(void)
@@ -265,8 +303,6 @@
 static int timekeeping_suspended;
 /* time in seconds when suspend began */
 static unsigned long timekeeping_suspend_time;
-/* xtime offset when we went into suspend */
-static s64 timekeeping_suspend_nsecs;
 
 /**
  * timekeeping_resume - Resumes the generic timekeeping subsystem.
@@ -292,8 +328,6 @@
 		wall_to_monotonic.tv_sec -= sleep_length;
 		total_sleep_time += sleep_length;
 	}
-	/* Make sure that we have the correct xtime reference */
-	timespec_add_ns(&xtime, timekeeping_suspend_nsecs);
 	update_xtime_cache(0);
 	/* re-base the last cycle value */
 	clock->cycle_last = 0;
@@ -319,8 +353,7 @@
 	timekeeping_suspend_time = read_persistent_clock();
 
 	write_seqlock_irqsave(&xtime_lock, flags);
-	/* Get the current xtime offset */
-	timekeeping_suspend_nsecs = __get_nsec_offset();
+	clocksource_forward_now();
 	timekeeping_suspended = 1;
 	write_sequnlock_irqrestore(&xtime_lock, flags);
 
@@ -454,23 +487,29 @@
 #else
 	offset = clock->cycle_interval;
 #endif
-	clock->xtime_nsec += (s64)xtime.tv_nsec << clock->shift;
+	clock->xtime_nsec = (s64)xtime.tv_nsec << clock->shift;
 
 	/* normally this loop will run just once, however in the
 	 * case of lost or late ticks, it will accumulate correctly.
 	 */
 	while (offset >= clock->cycle_interval) {
 		/* accumulate one interval */
-		clock->xtime_nsec += clock->xtime_interval;
-		clock->cycle_last += clock->cycle_interval;
 		offset -= clock->cycle_interval;
+		clock->cycle_last += clock->cycle_interval;
 
+		clock->xtime_nsec += clock->xtime_interval;
 		if (clock->xtime_nsec >= (u64)NSEC_PER_SEC << clock->shift) {
 			clock->xtime_nsec -= (u64)NSEC_PER_SEC << clock->shift;
 			xtime.tv_sec++;
 			second_overflow();
 		}
 
+		clock->raw_time.tv_nsec += clock->raw_interval;
+		if (clock->raw_time.tv_nsec >= NSEC_PER_SEC) {
+			clock->raw_time.tv_nsec -= NSEC_PER_SEC;
+			clock->raw_time.tv_sec++;
+		}
+
 		/* accumulate error between NTP and clock interval */
 		clock->error += tick_length;
 		clock->error -= clock->xtime_interval << (NTP_SCALE_SHIFT - clock->shift);
@@ -479,9 +518,12 @@
 	/* correct the clock when NTP error is too big */
 	clocksource_adjust(offset);
 
-	/* store full nanoseconds into xtime */
-	xtime.tv_nsec = (s64)clock->xtime_nsec >> clock->shift;
+	/* store full nanoseconds into xtime after rounding it up and
+	 * add the remainder to the error difference.
+	 */
+	xtime.tv_nsec = ((s64)clock->xtime_nsec >> clock->shift) + 1;
 	clock->xtime_nsec -= (s64)xtime.tv_nsec << clock->shift;
+	clock->error += clock->xtime_nsec << (NTP_SCALE_SHIFT - clock->shift);
 
 	update_xtime_cache(cyc2ns(clock, offset));
 
diff --git a/kernel/time/timer_list.c b/kernel/time/timer_list.c
index a40e20f..f642691 100644
--- a/kernel/time/timer_list.c
+++ b/kernel/time/timer_list.c
@@ -47,13 +47,14 @@
 }
 
 static void
-print_timer(struct seq_file *m, struct hrtimer *timer, int idx, u64 now)
+print_timer(struct seq_file *m, struct hrtimer *taddr, struct hrtimer *timer,
+	    int idx, u64 now)
 {
 #ifdef CONFIG_TIMER_STATS
 	char tmp[TASK_COMM_LEN + 1];
 #endif
 	SEQ_printf(m, " #%d: ", idx);
-	print_name_offset(m, timer);
+	print_name_offset(m, taddr);
 	SEQ_printf(m, ", ");
 	print_name_offset(m, timer->function);
 	SEQ_printf(m, ", S:%02lx", timer->state);
@@ -99,7 +100,7 @@
 		tmp = *timer;
 		spin_unlock_irqrestore(&base->cpu_base->lock, flags);
 
-		print_timer(m, &tmp, i, now);
+		print_timer(m, timer, &tmp, i, now);
 		next++;
 		goto next_one;
 	}
@@ -109,6 +110,7 @@
 static void
 print_base(struct seq_file *m, struct hrtimer_clock_base *base, u64 now)
 {
+	SEQ_printf(m, "  .base:       %p\n", base);
 	SEQ_printf(m, "  .index:      %d\n",
 			base->index);
 	SEQ_printf(m, "  .resolution: %Lu nsecs\n",
@@ -183,12 +185,16 @@
 
 #ifdef CONFIG_GENERIC_CLOCKEVENTS
 static void
-print_tickdevice(struct seq_file *m, struct tick_device *td)
+print_tickdevice(struct seq_file *m, struct tick_device *td, int cpu)
 {
 	struct clock_event_device *dev = td->evtdev;
 
 	SEQ_printf(m, "\n");
 	SEQ_printf(m, "Tick Device: mode:     %d\n", td->mode);
+	if (cpu < 0)
+		SEQ_printf(m, "Broadcast device\n");
+	else
+		SEQ_printf(m, "Per CPU device: %d\n", cpu);
 
 	SEQ_printf(m, "Clock Event Device: ");
 	if (!dev) {
@@ -222,7 +228,7 @@
 	int cpu;
 
 #ifdef CONFIG_GENERIC_CLOCKEVENTS_BROADCAST
-	print_tickdevice(m, tick_get_broadcast_device());
+	print_tickdevice(m, tick_get_broadcast_device(), -1);
 	SEQ_printf(m, "tick_broadcast_mask: %08lx\n",
 		   tick_get_broadcast_mask()->bits[0]);
 #ifdef CONFIG_TICK_ONESHOT
@@ -232,7 +238,7 @@
 	SEQ_printf(m, "\n");
 #endif
 	for_each_online_cpu(cpu)
-		   print_tickdevice(m, tick_get_device(cpu));
+		print_tickdevice(m, tick_get_device(cpu), cpu);
 	SEQ_printf(m, "\n");
 }
 #else
@@ -244,7 +250,7 @@
 	u64 now = ktime_to_ns(ktime_get());
 	int cpu;
 
-	SEQ_printf(m, "Timer List Version: v0.3\n");
+	SEQ_printf(m, "Timer List Version: v0.4\n");
 	SEQ_printf(m, "HRTIMER_MAX_CLOCK_BASES: %d\n", HRTIMER_MAX_CLOCK_BASES);
 	SEQ_printf(m, "now at %Ld nsecs\n", (unsigned long long)now);
 
diff --git a/kernel/timer.c b/kernel/timer.c
index 510fe69..56becf3 100644
--- a/kernel/timer.c
+++ b/kernel/timer.c
@@ -1436,9 +1436,11 @@
 	BUG_ON(cpu_online(cpu));
 	old_base = per_cpu(tvec_bases, cpu);
 	new_base = get_cpu_var(tvec_bases);
-
-	local_irq_disable();
-	spin_lock(&new_base->lock);
+	/*
+	 * The caller is globally serialized and nobody else
+	 * takes two locks at once, deadlock is not possible.
+	 */
+	spin_lock_irq(&new_base->lock);
 	spin_lock_nested(&old_base->lock, SINGLE_DEPTH_NESTING);
 
 	BUG_ON(old_base->running_timer);
@@ -1453,8 +1455,7 @@
 	}
 
 	spin_unlock(&old_base->lock);
-	spin_unlock(&new_base->lock);
-	local_irq_enable();
+	spin_unlock_irq(&new_base->lock);
 	put_cpu_var(tvec_bases);
 }
 #endif /* CONFIG_HOTPLUG_CPU */
diff --git a/lib/Kconfig.debug b/lib/Kconfig.debug
index 31d784d..b0f239e 100644
--- a/lib/Kconfig.debug
+++ b/lib/Kconfig.debug
@@ -652,6 +652,11 @@
 	depends on BLOCK
 	default n
 	help
+	  BIG FAT WARNING: ENABLING THIS OPTION MIGHT BREAK BOOTING ON
+	  SOME DISTRIBUTIONS.  DO NOT ENABLE THIS UNLESS YOU KNOW WHAT
+	  YOU ARE DOING.  Distros, please enable this and fix whatever
+	  is broken.
+
 	  Conventionally, block device numbers are allocated from
 	  predetermined contiguous area.  However, extended block area
 	  may introduce non-contiguous block device numbers.  This
diff --git a/mm/page-writeback.c b/mm/page-writeback.c
index c130a13..b40f6d5 100644
--- a/mm/page-writeback.c
+++ b/mm/page-writeback.c
@@ -876,6 +876,7 @@
 	pgoff_t end;		/* Inclusive */
 	int scanned = 0;
 	int range_whole = 0;
+	long nr_to_write = wbc->nr_to_write;
 
 	if (wbc->nonblocking && bdi_write_congested(bdi)) {
 		wbc->encountered_congestion = 1;
@@ -939,7 +940,7 @@
 				unlock_page(page);
 				ret = 0;
 			}
-			if (ret || (--(wbc->nr_to_write) <= 0))
+			if (ret || (--nr_to_write <= 0))
 				done = 1;
 			if (wbc->nonblocking && bdi_write_congested(bdi)) {
 				wbc->encountered_congestion = 1;
@@ -958,11 +959,12 @@
 		index = 0;
 		goto retry;
 	}
-	if (wbc->range_cyclic || (range_whole && wbc->nr_to_write > 0))
-		mapping->writeback_index = index;
+	if (!wbc->no_nrwrite_index_update) {
+		if (wbc->range_cyclic || (range_whole && nr_to_write > 0))
+			mapping->writeback_index = index;
+		wbc->nr_to_write = nr_to_write;
+	}
 
-	if (wbc->range_cont)
-		wbc->range_start = index << PAGE_CACHE_SHIFT;
 	return ret;
 }
 EXPORT_SYMBOL(write_cache_pages);
diff --git a/mm/shmem.c b/mm/shmem.c
index bf66d01..d87958a 100644
--- a/mm/shmem.c
+++ b/mm/shmem.c
@@ -2580,6 +2580,7 @@
 	shmem_unacct_size(flags, size);
 	return ERR_PTR(error);
 }
+EXPORT_SYMBOL_GPL(shmem_file_setup);
 
 /**
  * shmem_zero_setup - setup a shared anonymous mapping
diff --git a/net/bluetooth/af_bluetooth.c b/net/bluetooth/af_bluetooth.c
index f6348e0..8f9431a 100644
--- a/net/bluetooth/af_bluetooth.c
+++ b/net/bluetooth/af_bluetooth.c
@@ -37,10 +37,7 @@
 #include <linux/poll.h>
 #include <net/sock.h>
 #include <asm/ioctls.h>
-
-#if defined(CONFIG_KMOD)
 #include <linux/kmod.h>
-#endif
 
 #include <net/bluetooth/bluetooth.h>
 
@@ -145,11 +142,8 @@
 	if (proto < 0 || proto >= BT_MAX_PROTO)
 		return -EINVAL;
 
-#if defined(CONFIG_KMOD)
-	if (!bt_proto[proto]) {
+	if (!bt_proto[proto])
 		request_module("bt-proto-%d", proto);
-	}
-#endif
 
 	err = -EPROTONOSUPPORT;
 
diff --git a/net/bridge/netfilter/ebtables.c b/net/bridge/netfilter/ebtables.c
index 5bb88eb..0fa208e 100644
--- a/net/bridge/netfilter/ebtables.c
+++ b/net/bridge/netfilter/ebtables.c
@@ -305,23 +305,14 @@
 	return NULL;
 }
 
-#ifndef CONFIG_KMOD
-#define find_inlist_lock(h,n,p,e,m) find_inlist_lock_noload((h),(n),(e),(m))
-#else
 static void *
 find_inlist_lock(struct list_head *head, const char *name, const char *prefix,
    int *error, struct mutex *mutex)
 {
-	void *ret;
-
-	ret = find_inlist_lock_noload(head, name, error, mutex);
-	if (!ret) {
-		request_module("%s%s", prefix, name);
-		ret = find_inlist_lock_noload(head, name, error, mutex);
-	}
-	return ret;
+	return try_then_request_module(
+			find_inlist_lock_noload(head, name, error, mutex),
+			"%s%s", prefix, name);
 }
-#endif
 
 static inline struct ebt_table *
 find_table_lock(const char *name, int *error, struct mutex *mutex)
diff --git a/net/can/af_can.c b/net/can/af_can.c
index 8035fbf..7d4d2b3 100644
--- a/net/can/af_can.c
+++ b/net/can/af_can.c
@@ -128,8 +128,8 @@
 	if (net != &init_net)
 		return -EAFNOSUPPORT;
 
-#ifdef CONFIG_KMOD
-	/* try to load protocol module, when CONFIG_KMOD is defined */
+#ifdef CONFIG_MODULES
+	/* try to load protocol module kernel is modular */
 	if (!proto_tab[protocol]) {
 		err = request_module("can-proto-%d", protocol);
 
diff --git a/net/core/dev.c b/net/core/dev.c
index 1408a083..868ec0b 100644
--- a/net/core/dev.c
+++ b/net/core/dev.c
@@ -4956,8 +4956,6 @@
 EXPORT_SYMBOL(br_fdb_put_hook);
 #endif
 
-#ifdef CONFIG_KMOD
 EXPORT_SYMBOL(dev_load);
-#endif
 
 EXPORT_PER_CPU_SYMBOL(softnet_data);
diff --git a/net/core/rtnetlink.c b/net/core/rtnetlink.c
index 3630131..31f29d2 100644
--- a/net/core/rtnetlink.c
+++ b/net/core/rtnetlink.c
@@ -1040,7 +1040,7 @@
 	struct nlattr *linkinfo[IFLA_INFO_MAX+1];
 	int err;
 
-#ifdef CONFIG_KMOD
+#ifdef CONFIG_MODULES
 replay:
 #endif
 	err = nlmsg_parse(nlh, sizeof(*ifm), tb, IFLA_MAX, ifla_policy);
@@ -1129,7 +1129,7 @@
 			return -EOPNOTSUPP;
 
 		if (!ops) {
-#ifdef CONFIG_KMOD
+#ifdef CONFIG_MODULES
 			if (kind[0]) {
 				__rtnl_unlock();
 				request_module("rtnl-link-%s", kind);
diff --git a/net/dccp/ccid.c b/net/dccp/ccid.c
index 4809753..8fe931a 100644
--- a/net/dccp/ccid.c
+++ b/net/dccp/ccid.c
@@ -154,7 +154,7 @@
 	struct ccid *ccid = NULL;
 
 	ccids_read_lock();
-#ifdef CONFIG_KMOD
+#ifdef CONFIG_MODULES
 	if (ccids[id] == NULL) {
 		/* We only try to load if in process context */
 		ccids_read_unlock();
diff --git a/net/decnet/dn_dev.c b/net/decnet/dn_dev.c
index 8008c86..28e26bd 100644
--- a/net/decnet/dn_dev.c
+++ b/net/decnet/dn_dev.c
@@ -490,9 +490,7 @@
 		return -EFAULT;
 	ifr->ifr_name[IFNAMSIZ-1] = 0;
 
-#ifdef CONFIG_KMOD
 	dev_load(&init_net, ifr->ifr_name);
-#endif
 
 	switch(cmd) {
 		case SIOCGIFADDR:
diff --git a/net/ipv4/devinet.c b/net/ipv4/devinet.c
index 5154e72..56fce3a 100644
--- a/net/ipv4/devinet.c
+++ b/net/ipv4/devinet.c
@@ -613,9 +613,7 @@
 	if (colon)
 		*colon = 0;
 
-#ifdef CONFIG_KMOD
 	dev_load(net, ifr.ifr_name);
-#endif
 
 	switch (cmd) {
 	case SIOCGIFADDR:	/* Get interface address */
diff --git a/net/ipv4/inet_diag.c b/net/ipv4/inet_diag.c
index 89cb047..564230d 100644
--- a/net/ipv4/inet_diag.c
+++ b/net/ipv4/inet_diag.c
@@ -53,11 +53,9 @@
 
 static const struct inet_diag_handler *inet_diag_lock_handler(int type)
 {
-#ifdef CONFIG_KMOD
 	if (!inet_diag_table[type])
 		request_module("net-pf-%d-proto-%d-type-%d", PF_NETLINK,
 			       NETLINK_INET_DIAG, type);
-#endif
 
 	mutex_lock(&inet_diag_table_mutex);
 	if (!inet_diag_table[type])
diff --git a/net/ipv4/route.c b/net/ipv4/route.c
index 942be04..2ea6dcc 100644
--- a/net/ipv4/route.c
+++ b/net/ipv4/route.c
@@ -1109,7 +1109,12 @@
 		printk("\n");
 	}
 #endif
-	rt_hash_table[hash].chain = rt;
+	/*
+	 * Since lookup is lockfree, we must make sure
+	 * previous writes to rt are comitted to memory
+	 * before making rt visible to other CPUS.
+	 */
+	rcu_assign_pointer(rt_hash_table[hash].chain, rt);
 	spin_unlock_bh(rt_hash_lock_addr(hash));
 	*rp = rt;
 	return 0;
diff --git a/net/ipv4/tcp_cong.c b/net/ipv4/tcp_cong.c
index 6a25082..4ec5b4e 100644
--- a/net/ipv4/tcp_cong.c
+++ b/net/ipv4/tcp_cong.c
@@ -115,7 +115,7 @@
 
 	spin_lock(&tcp_cong_list_lock);
 	ca = tcp_ca_find(name);
-#ifdef CONFIG_KMOD
+#ifdef CONFIG_MODULES
 	if (!ca && capable(CAP_SYS_MODULE)) {
 		spin_unlock(&tcp_cong_list_lock);
 
@@ -244,7 +244,7 @@
 	if (ca == icsk->icsk_ca_ops)
 		goto out;
 
-#ifdef CONFIG_KMOD
+#ifdef CONFIG_MODULES
 	/* not found attempt to autoload module */
 	if (!ca && capable(CAP_SYS_MODULE)) {
 		rcu_read_unlock();
diff --git a/net/netfilter/nf_conntrack_netlink.c b/net/netfilter/nf_conntrack_netlink.c
index 08e82d6..2e4ad96 100644
--- a/net/netfilter/nf_conntrack_netlink.c
+++ b/net/netfilter/nf_conntrack_netlink.c
@@ -822,7 +822,7 @@
 
 	parse_nat_setup = rcu_dereference(nfnetlink_parse_nat_setup_hook);
 	if (!parse_nat_setup) {
-#ifdef CONFIG_KMOD
+#ifdef CONFIG_MODULES
 		rcu_read_unlock();
 		nfnl_unlock();
 		if (request_module("nf-nat-ipv4") < 0) {
diff --git a/net/netfilter/nfnetlink.c b/net/netfilter/nfnetlink.c
index 4739f9f..9c0ba17 100644
--- a/net/netfilter/nfnetlink.c
+++ b/net/netfilter/nfnetlink.c
@@ -137,7 +137,7 @@
 replay:
 	ss = nfnetlink_get_subsys(type);
 	if (!ss) {
-#ifdef CONFIG_KMOD
+#ifdef CONFIG_MODULES
 		nfnl_unlock();
 		request_module("nfnetlink-subsys-%d", NFNL_SUBSYS_ID(type));
 		nfnl_lock();
diff --git a/net/netlink/af_netlink.c b/net/netlink/af_netlink.c
index 2fd8afa..480184a 100644
--- a/net/netlink/af_netlink.c
+++ b/net/netlink/af_netlink.c
@@ -435,7 +435,7 @@
 		return -EPROTONOSUPPORT;
 
 	netlink_lock_table();
-#ifdef CONFIG_KMOD
+#ifdef CONFIG_MODULES
 	if (!nl_table[protocol].registered) {
 		netlink_unlock_table();
 		request_module("net-pf-%d-proto-%d", PF_NETLINK, protocol);
diff --git a/net/phonet/af_phonet.c b/net/phonet/af_phonet.c
index 9e9c6fc..b9d97ef 100644
--- a/net/phonet/af_phonet.c
+++ b/net/phonet/af_phonet.c
@@ -67,11 +67,10 @@
 	}
 
 	pnp = phonet_proto_get(protocol);
-#ifdef CONFIG_KMOD
 	if (pnp == NULL &&
 	    request_module("net-pf-%d-proto-%d", PF_PHONET, protocol) == 0)
 		pnp = phonet_proto_get(protocol);
-#endif
+
 	if (pnp == NULL)
 		return -EPROTONOSUPPORT;
 	if (sock->type != pnp->sock_type) {
diff --git a/net/sched/act_api.c b/net/sched/act_api.c
index 9974b3f..8f457f1 100644
--- a/net/sched/act_api.c
+++ b/net/sched/act_api.c
@@ -494,7 +494,7 @@
 
 	a_o = tc_lookup_action_n(act_name);
 	if (a_o == NULL) {
-#ifdef CONFIG_KMOD
+#ifdef CONFIG_MODULES
 		rtnl_unlock();
 		request_module("act_%s", act_name);
 		rtnl_lock();
diff --git a/net/sched/cls_api.c b/net/sched/cls_api.c
index 8eb79e9..16e7ac9 100644
--- a/net/sched/cls_api.c
+++ b/net/sched/cls_api.c
@@ -227,7 +227,7 @@
 		err = -ENOENT;
 		tp_ops = tcf_proto_lookup_ops(tca[TCA_KIND]);
 		if (tp_ops == NULL) {
-#ifdef CONFIG_KMOD
+#ifdef CONFIG_MODULES
 			struct nlattr *kind = tca[TCA_KIND];
 			char name[IFNAMSIZ];
 
diff --git a/net/sched/ematch.c b/net/sched/ematch.c
index 5e6f82e..e82519e 100644
--- a/net/sched/ematch.c
+++ b/net/sched/ematch.c
@@ -224,7 +224,7 @@
 
 		if (em->ops == NULL) {
 			err = -ENOENT;
-#ifdef CONFIG_KMOD
+#ifdef CONFIG_MODULES
 			__rtnl_unlock();
 			request_module("ematch-kind-%u", em_hdr->kind);
 			rtnl_lock();
diff --git a/net/sched/sch_api.c b/net/sched/sch_api.c
index 1122c95..b16ad29 100644
--- a/net/sched/sch_api.c
+++ b/net/sched/sch_api.c
@@ -764,7 +764,7 @@
 	struct qdisc_size_table *stab;
 
 	ops = qdisc_lookup_ops(kind);
-#ifdef CONFIG_KMOD
+#ifdef CONFIG_MODULES
 	if (ops == NULL && kind != NULL) {
 		char name[IFNAMSIZ];
 		if (nla_strlcpy(name, kind, IFNAMSIZ) < IFNAMSIZ) {
diff --git a/net/socket.c b/net/socket.c
index 3e8d4e3..2b7a4b5 100644
--- a/net/socket.c
+++ b/net/socket.c
@@ -1142,7 +1142,7 @@
 
 	sock->type = type;
 
-#if defined(CONFIG_KMOD)
+#ifdef CONFIG_MODULES
 	/* Attempt to load a protocol module if the find failed.
 	 *
 	 * 12/09/1996 Marcin: But! this makes REALLY only sense, if the user
diff --git a/net/sunrpc/auth.c b/net/sunrpc/auth.c
index 6bfea9e..436bf1b 100644
--- a/net/sunrpc/auth.c
+++ b/net/sunrpc/auth.c
@@ -83,10 +83,8 @@
 	if (flavor >= RPC_AUTH_MAXFLAVOR)
 		goto out;
 
-#ifdef CONFIG_KMOD
 	if ((ops = auth_flavors[flavor]) == NULL)
 		request_module("rpc-auth-%u", flavor);
-#endif
 	spin_lock(&rpc_authflavor_lock);
 	ops = auth_flavors[flavor];
 	if (ops == NULL || !try_module_get(ops->owner)) {
diff --git a/scripts/mod/modpost.c b/scripts/mod/modpost.c
index 8e0de6a..8892161 100644
--- a/scripts/mod/modpost.c
+++ b/scripts/mod/modpost.c
@@ -1726,6 +1726,14 @@
 	buf_printf(b, "};\n");
 }
 
+void add_staging_flag(struct buffer *b, const char *name)
+{
+	static const char *staging_dir = "drivers/staging";
+
+	if (strncmp(staging_dir, name, strlen(staging_dir)) == 0)
+		buf_printf(b, "\nMODULE_INFO(staging, \"Y\");\n");
+}
+
 /**
  * Record CRCs for unresolved symbols
  **/
@@ -2135,6 +2143,7 @@
 		buf.pos = 0;
 
 		add_header(&buf, mod);
+		add_staging_flag(&buf, mod->name);
 		err |= add_versions(&buf, mod);
 		add_depends(&buf, mod, modules);
 		add_moddevtable(&buf, mod);
diff --git a/security/selinux/hooks.c b/security/selinux/hooks.c
index 576e511..3e3fde7 100644
--- a/security/selinux/hooks.c
+++ b/security/selinux/hooks.c
@@ -75,6 +75,7 @@
 #include <linux/string.h>
 #include <linux/selinux.h>
 #include <linux/mutex.h>
+#include <linux/posix-timers.h>
 
 #include "avc.h"
 #include "objsec.h"
@@ -2322,13 +2323,7 @@
 			initrlim = init_task.signal->rlim+i;
 			rlim->rlim_cur = min(rlim->rlim_max, initrlim->rlim_cur);
 		}
-		if (current->signal->rlim[RLIMIT_CPU].rlim_cur != RLIM_INFINITY) {
-			/*
-			 * This will cause RLIMIT_CPU calculations
-			 * to be refigured.
-			 */
-			current->it_prof_expires = jiffies_to_cputime(1);
-		}
+		update_rlimit_cpu(rlim->rlim_cur);
 	}
 
 	/* Wake up the parent if it is waiting so that it can
diff --git a/sound/core/jack.c b/sound/core/jack.c
index 8133a2b..bd2d9e6 100644
--- a/sound/core/jack.c
+++ b/sound/core/jack.c
@@ -147,6 +147,9 @@
  */
 void snd_jack_report(struct snd_jack *jack, int status)
 {
+	if (!jack)
+		return;
+
 	if (jack->type & SND_JACK_HEADPHONE)
 		input_report_switch(jack->input_dev, SW_HEADPHONE_INSERT,
 				    status & SND_JACK_HEADPHONE);
diff --git a/sound/core/pcm_lib.c b/sound/core/pcm_lib.c
index 6ea5cfb..9216910 100644
--- a/sound/core/pcm_lib.c
+++ b/sound/core/pcm_lib.c
@@ -908,12 +908,12 @@
 EXPORT_SYMBOL(snd_pcm_hw_rule_add);
 
 /**
- * snd_pcm_hw_constraint_mask
+ * snd_pcm_hw_constraint_mask - apply the given bitmap mask constraint
  * @runtime: PCM runtime instance
  * @var: hw_params variable to apply the mask
  * @mask: the bitmap mask
  *
- * Apply the constraint of the given bitmap mask to a mask parameter.
+ * Apply the constraint of the given bitmap mask to a 32-bit mask parameter.
  */
 int snd_pcm_hw_constraint_mask(struct snd_pcm_runtime *runtime, snd_pcm_hw_param_t var,
 			       u_int32_t mask)
@@ -928,12 +928,12 @@
 }
 
 /**
- * snd_pcm_hw_constraint_mask64
+ * snd_pcm_hw_constraint_mask64 - apply the given bitmap mask constraint
  * @runtime: PCM runtime instance
  * @var: hw_params variable to apply the mask
  * @mask: the 64bit bitmap mask
  *
- * Apply the constraint of the given bitmap mask to a mask parameter.
+ * Apply the constraint of the given bitmap mask to a 64-bit mask parameter.
  */
 int snd_pcm_hw_constraint_mask64(struct snd_pcm_runtime *runtime, snd_pcm_hw_param_t var,
 				 u_int64_t mask)
@@ -949,7 +949,7 @@
 }
 
 /**
- * snd_pcm_hw_constraint_integer
+ * snd_pcm_hw_constraint_integer - apply an integer constraint to an interval
  * @runtime: PCM runtime instance
  * @var: hw_params variable to apply the integer constraint
  *
@@ -964,7 +964,7 @@
 EXPORT_SYMBOL(snd_pcm_hw_constraint_integer);
 
 /**
- * snd_pcm_hw_constraint_minmax
+ * snd_pcm_hw_constraint_minmax - apply a min/max range constraint to an interval
  * @runtime: PCM runtime instance
  * @var: hw_params variable to apply the range
  * @min: the minimal value
@@ -995,7 +995,7 @@
 
 
 /**
- * snd_pcm_hw_constraint_list
+ * snd_pcm_hw_constraint_list - apply a list of constraints to a parameter
  * @runtime: PCM runtime instance
  * @cond: condition bits
  * @var: hw_params variable to apply the list constraint
@@ -1031,7 +1031,7 @@
 }
 
 /**
- * snd_pcm_hw_constraint_ratnums
+ * snd_pcm_hw_constraint_ratnums - apply ratnums constraint to a parameter
  * @runtime: PCM runtime instance
  * @cond: condition bits
  * @var: hw_params variable to apply the ratnums constraint
@@ -1064,7 +1064,7 @@
 }
 
 /**
- * snd_pcm_hw_constraint_ratdens
+ * snd_pcm_hw_constraint_ratdens - apply ratdens constraint to a parameter
  * @runtime: PCM runtime instance
  * @cond: condition bits
  * @var: hw_params variable to apply the ratdens constraint
@@ -1095,7 +1095,7 @@
 }
 
 /**
- * snd_pcm_hw_constraint_msbits
+ * snd_pcm_hw_constraint_msbits - add a hw constraint msbits rule
  * @runtime: PCM runtime instance
  * @cond: condition bits
  * @width: sample bits width
@@ -1123,7 +1123,7 @@
 }
 
 /**
- * snd_pcm_hw_constraint_step
+ * snd_pcm_hw_constraint_step - add a hw constraint step rule
  * @runtime: PCM runtime instance
  * @cond: condition bits
  * @var: hw_params variable to apply the step constraint
@@ -1154,7 +1154,7 @@
 }		
 
 /**
- * snd_pcm_hw_constraint_pow2
+ * snd_pcm_hw_constraint_pow2 - add a hw constraint power-of-2 rule
  * @runtime: PCM runtime instance
  * @cond: condition bits
  * @var: hw_params variable to apply the power-of-2 constraint
@@ -1202,13 +1202,13 @@
 EXPORT_SYMBOL(_snd_pcm_hw_params_any);
 
 /**
- * snd_pcm_hw_param_value
+ * snd_pcm_hw_param_value - return @params field @var value
  * @params: the hw_params instance
  * @var: parameter to retrieve
- * @dir: pointer to the direction (-1,0,1) or NULL
+ * @dir: pointer to the direction (-1,0,1) or %NULL
  *
- * Return the value for field PAR if it's fixed in configuration space 
- *  defined by PARAMS. Return -EINVAL otherwise
+ * Return the value for field @var if it's fixed in configuration space
+ * defined by @params. Return -%EINVAL otherwise.
  */
 int snd_pcm_hw_param_value(const struct snd_pcm_hw_params *params,
 			   snd_pcm_hw_param_t var, int *dir)
@@ -1271,13 +1271,13 @@
 
 
 /**
- * snd_pcm_hw_param_first
+ * snd_pcm_hw_param_first - refine config space and return minimum value
  * @pcm: PCM instance
  * @params: the hw_params instance
  * @var: parameter to retrieve
- * @dir: pointer to the direction (-1,0,1) or NULL
+ * @dir: pointer to the direction (-1,0,1) or %NULL
  *
- * Inside configuration space defined by PARAMS remove from PAR all 
+ * Inside configuration space defined by @params remove from @var all
  * values > minimum. Reduce configuration space accordingly.
  * Return the minimum.
  */
@@ -1317,13 +1317,13 @@
 
 
 /**
- * snd_pcm_hw_param_last
+ * snd_pcm_hw_param_last - refine config space and return maximum value
  * @pcm: PCM instance
  * @params: the hw_params instance
  * @var: parameter to retrieve
- * @dir: pointer to the direction (-1,0,1) or NULL
+ * @dir: pointer to the direction (-1,0,1) or %NULL
  *
- * Inside configuration space defined by PARAMS remove from PAR all 
+ * Inside configuration space defined by @params remove from @var all
  * values < maximum. Reduce configuration space accordingly.
  * Return the maximum.
  */
@@ -1345,11 +1345,11 @@
 EXPORT_SYMBOL(snd_pcm_hw_param_last);
 
 /**
- * snd_pcm_hw_param_choose
+ * snd_pcm_hw_param_choose - choose a configuration defined by @params
  * @pcm: PCM instance
  * @params: the hw_params instance
  *
- * Choose one configuration from configuration space defined by PARAMS
+ * Choose one configuration from configuration space defined by @params.
  * The configuration chosen is that obtained fixing in this order:
  * first access, first format, first subformat, min channels,
  * min rate, min period time, max buffer size, min tick time
diff --git a/sound/core/pcm_native.c b/sound/core/pcm_native.c
index e61e125..aef1868 100644
--- a/sound/core/pcm_native.c
+++ b/sound/core/pcm_native.c
@@ -875,10 +875,8 @@
 };
 
 /**
- * snd_pcm_start
+ * snd_pcm_start - start all linked streams
  * @substream: the PCM substream instance
- *
- * Start all linked streams.
  */
 int snd_pcm_start(struct snd_pcm_substream *substream)
 {
@@ -926,12 +924,11 @@
 };
 
 /**
- * snd_pcm_stop
+ * snd_pcm_stop - try to stop all running streams in the substream group
  * @substream: the PCM substream instance
  * @state: PCM state after stopping the stream
  *
- * Try to stop all running streams in the substream group.
- * The state of each stream is changed to the given value after that unconditionally.
+ * The state of each stream is then changed to the given state unconditionally.
  */
 int snd_pcm_stop(struct snd_pcm_substream *substream, int state)
 {
@@ -941,11 +938,10 @@
 EXPORT_SYMBOL(snd_pcm_stop);
 
 /**
- * snd_pcm_drain_done
+ * snd_pcm_drain_done - stop the DMA only when the given stream is playback
  * @substream: the PCM substream
  *
- * Stop the DMA only when the given stream is playback.
- * The state is changed to SETUP.
+ * After stopping, the state is changed to SETUP.
  * Unlike snd_pcm_stop(), this affects only the given stream.
  */
 int snd_pcm_drain_done(struct snd_pcm_substream *substream)
@@ -1065,10 +1061,9 @@
 };
 
 /**
- * snd_pcm_suspend
+ * snd_pcm_suspend - trigger SUSPEND to all linked streams
  * @substream: the PCM substream
  *
- * Trigger SUSPEND to all linked streams.
  * After this call, all streams are changed to SUSPENDED state.
  */
 int snd_pcm_suspend(struct snd_pcm_substream *substream)
@@ -1088,10 +1083,9 @@
 EXPORT_SYMBOL(snd_pcm_suspend);
 
 /**
- * snd_pcm_suspend_all
+ * snd_pcm_suspend_all - trigger SUSPEND to all substreams in the given pcm
  * @pcm: the PCM instance
  *
- * Trigger SUSPEND to all substreams in the given pcm.
  * After this call, all streams are changed to SUSPENDED state.
  */
 int snd_pcm_suspend_all(struct snd_pcm *pcm)
@@ -1313,11 +1307,9 @@
 };
 
 /**
- * snd_pcm_prepare
+ * snd_pcm_prepare - prepare the PCM substream to be triggerable
  * @substream: the PCM substream instance
  * @file: file to refer f_flags
- *
- * Prepare the PCM substream to be triggerable.
  */
 static int snd_pcm_prepare(struct snd_pcm_substream *substream,
 			   struct file *file)
diff --git a/sound/pci/hda/patch_nvhdmi.c b/sound/pci/hda/patch_nvhdmi.c
index 1a65775..2eed2c8 100644
--- a/sound/pci/hda/patch_nvhdmi.c
+++ b/sound/pci/hda/patch_nvhdmi.c
@@ -116,6 +116,7 @@
 	codec->pcm_info = info;
 
 	info->name = "NVIDIA HDMI";
+	info->pcm_type = HDA_PCM_TYPE_HDMI;
 	info->stream[SNDRV_PCM_STREAM_PLAYBACK] = nvhdmi_pcm_digital_playback;
 
 	return 0;
diff --git a/sound/soc/at32/playpaq_wm8510.c b/sound/soc/at32/playpaq_wm8510.c
index 98a2d58..b1966e4 100644
--- a/sound/soc/at32/playpaq_wm8510.c
+++ b/sound/soc/at32/playpaq_wm8510.c
@@ -304,7 +304,7 @@
 
 
 
-static const char *intercon[][3] = {
+static const struct snd_soc_dapm_route intercon[] = {
 	/* speaker connected to SPKOUT */
 	{"Ext Spk", NULL, "SPKOUTP"},
 	{"Ext Spk", NULL, "SPKOUTN"},
@@ -312,9 +312,6 @@
 	{"Mic Bias", NULL, "Int Mic"},
 	{"MICN", NULL, "Mic Bias"},
 	{"MICP", NULL, "Mic Bias"},
-
-	/* Terminator */
-	{NULL, NULL, NULL},
 };
 
 
@@ -334,11 +331,8 @@
 	/*
 	 * Setup audio path interconnects
 	 */
-	for (i = 0; intercon[i][0] != NULL; i++) {
-		snd_soc_dapm_connect_input(codec,
-					   intercon[i][0],
-					   intercon[i][1], intercon[i][2]);
-	}
+	snd_soc_dapm_add_routes(codec, intercon, ARRAY_SIZE(intercon));
+
 
 
 	/* always connected pins */
diff --git a/sound/soc/soc-dapm.c b/sound/soc/soc-dapm.c
index efbd0b3..7351db9 100644
--- a/sound/soc/soc-dapm.c
+++ b/sound/soc/soc-dapm.c
@@ -831,7 +831,7 @@
 		return ret;
 
 	asoc_debugfs = debugfs_create_dir("asoc", NULL);
-	if (!IS_ERR(asoc_debugfs))
+	if (!IS_ERR(asoc_debugfs) && asoc_debugfs)
 		debugfs_create_u32("dapm_pop_time", 0744, asoc_debugfs,
 				   &pop_time);
 	else