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//*****************************************************************************
//
// test02.cpp -- test that suspended processes with static sensitivity
// wake up when resumed.
//
// Original Author: Andy Goodrich, Forte Design Systems, Inc.
//
// CVS MODIFICATION LOG - modifiers, enter your name, affiliation, date and
// changes you are making here.
//
// $Log: test2.cpp,v $
// Revision 1.5 2011/04/02 00:08:19 acg
// Andy Goodrich: turn off corner case error checking.
//
// Revision 1.4 2011/03/07 19:32:09 acg
// Andy Goodrich: addition to set sc_core::sc_allow_process_control_corners
// to true so that this test avoids corner case error messages.
//
// Revision 1.3 2011/02/20 13:43:49 acg
// Andy Goodrich: updates for IEEE 1666 2011.
//
// Revision 1.2 2011/02/04 15:26:52 acg
// Andy Goodrich: changes for process control semantics.
//
// Revision 1.1 2009/07/28 18:43:55 acg
// Andy Goodrich: new standard test bench version of this test.
//
//*****************************************************************************
#define SC_INCLUDE_DYNAMIC_PROCESSES
#include "systemc.h"
enum my_process_states {
ST_SUSPENDD,
ST_NORMAL,
ST_SUSPENDED
};
inline ostream& time_stamp( ostream& os )
{
os << dec << sc_time_stamp() << "[" << sc_delta_count() << "]: ";
return os;
}
SC_MODULE(top) {
// constructor:
SC_CTOR(top)
{
m_state_cthread0 = ST_NORMAL;
m_state_method0 = ST_NORMAL;
m_state_thread0 = ST_NORMAL;
SC_THREAD(stimulator0);
SC_CTHREAD( target_cthread0, m_clk.pos() );
m_target_cthread0 = sc_get_current_process_handle();
SC_METHOD(target_method0);
sensitive << m_clk.pos();
m_target_method0 = sc_get_current_process_handle();
SC_THREAD(target_thread0);
sensitive << m_clk.neg();
m_target_thread0 = sc_get_current_process_handle();
}
// processes:
void stimulator0();
void target_cthread0();
void target_method0();
void target_thread0();
// Storage:
sc_in<bool> m_clk;
int m_state_cthread0;
int m_state_method0;
int m_state_thread0;
sc_process_handle m_target_cthread0;
sc_process_handle m_target_method0;
sc_process_handle m_target_thread0;
};
#define SUSPEND(TARGET) \
cout << endl; \
time_stamp(cout) << name << ": suspending target_" << #TARGET << endl; \
m_state_##TARGET = ST_SUSPENDD; \
m_target_##TARGET.suspend(); \
cout << endl;
#define RESUME(TARGET) \
cout << endl; \
time_stamp(cout) << name << ": resuming target_" << #TARGET << endl; \
m_state_##TARGET = ST_NORMAL; \
m_target_##TARGET.resume(); \
cout << endl;
void top::stimulator0()
{
const char* name = "stimulator";
wait(2, SC_NS);
SUSPEND(cthread0)
wait(3, SC_NS);
SUSPEND(method0)
wait(3, SC_NS);
SUSPEND(thread0)
wait(3, SC_NS);
RESUME(cthread0)
wait(3, SC_NS);
RESUME(method0)
wait(3, SC_NS);
RESUME(thread0)
wait(3, SC_NS);
SUSPEND(cthread0)
wait(3, SC_NS);
SUSPEND(method0)
wait(3, SC_NS);
SUSPEND(thread0)
wait(3, SC_NS);
RESUME(cthread0)
wait(3, SC_NS);
RESUME(method0)
wait(3, SC_NS);
RESUME(thread0)
wait(3, SC_NS);
::sc_core::wait(1000, SC_NS);
cout << endl;
time_stamp(cout) << name << ": terminating" << endl;
sc_stop();
}
void top::target_cthread0()
{
const char* name = "target_cthread0";
time_stamp(cout) << name << ": starting" << endl;
for (int i = 0; i < 12; i++)
{
wait();
if ( m_state_cthread0 == ST_SUSPENDD )
{
time_stamp(cout) << name << ": ERROR should not see this" << endl;
}
else
{
time_stamp(cout) << name << ": active" << endl;
}
}
time_stamp(cout) << name << ": terminating" << endl;
}
void top::target_method0()
{
const char* name = "target_method0";
static int state = 0;
switch( state )
{
case 0:
time_stamp(cout) << name << ": starting" << endl;
break;
default:
if ( m_state_method0 == ST_SUSPENDD )
{
time_stamp(cout) << name << ": ERROR should not see this" << endl;
}
else if ( state < 20 )
{
time_stamp(cout) << name << ": active" << endl;
}
break;
case 21:
time_stamp(cout) << name << ": terminating" << endl;
break;
}
state++;
}
void top::target_thread0()
{
const char* name = "target_thread0";
time_stamp(cout) << name << ": starting" << endl;
for (int i = 0; i < 12; i++)
{
wait();
if ( m_state_thread0 == ST_SUSPENDD )
{
time_stamp(cout) << name << ": ERROR should not see this" << endl;
}
else
{
time_stamp(cout) << name << ": active" << endl;
}
}
time_stamp(cout) << name << ": terminating" << endl;
}
int sc_main (int argc, char *argv[])
{
sc_core::sc_allow_process_control_corners = true;
sc_clock clock( "clock", 2.0, SC_NS );
top* top_p = new top("top");
top_p->m_clk(clock);
sc_core::sc_allow_process_control_corners = true;
sc_start();
return 0;
}