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/*****************************************************************************
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with this work for additional information regarding copyright ownership.
Accellera licenses this file to you under the Apache License, Version 2.0
(the "License"); you may not use this file except in compliance with the
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http://www.apache.org/licenses/LICENSE-2.0
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distributed under the License is distributed on an "AS IS" BASIS,
WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or
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*****************************************************************************/
/*****************************************************************************
sc_time.h -- The time class.
Original Author: Martin Janssen, Synopsys, Inc., 2001-05-21
CHANGE LOG AT THE END OF THE FILE
*****************************************************************************/
#ifndef SC_TIME_H
#define SC_TIME_H
#include "sysc/datatypes/int/sc_nbdefs.h"
#include "sysc/datatypes/fx/scfx_ieee.h"
#include "sysc/utils/sc_iostream.h"
namespace sc_core {
class sc_simcontext;
// friend operator declarations
const sc_time operator + ( const sc_time&, const sc_time& );
const sc_time operator - ( const sc_time&, const sc_time& );
const sc_time operator * ( const sc_time&, double );
const sc_time operator * ( double, const sc_time& );
const sc_time operator / ( const sc_time&, double );
double operator / ( const sc_time&, const sc_time& );
// ----------------------------------------------------------------------------
// ENUM : sc_time_unit
//
// Enumeration of time units.
// ----------------------------------------------------------------------------
enum sc_time_unit
{
SC_FS = 0,
SC_PS,
SC_NS,
SC_US,
SC_MS,
SC_SEC
};
// ----------------------------------------------------------------------------
// CLASS : sc_time
//
// The time class.
// ----------------------------------------------------------------------------
class sc_time
{
public:
typedef sc_dt::uint64 value_type;
// constructors
sc_time();
sc_time( double, sc_time_unit );
sc_time( double, sc_time_unit, sc_simcontext* );
sc_time( const sc_time& );
static sc_time from_value( value_type );
// deprecated, use from_value(v)
sc_time( double, bool scale );
sc_time( value_type, bool scale );
// assignment operator
sc_time& operator = ( const sc_time& );
// conversion functions
value_type value() const; // relative to the time resolution
double to_double() const; // relative to the time resolution
double to_default_time_units() const;
double to_seconds() const;
const std::string to_string() const;
// relational operators
bool operator == ( const sc_time& ) const;
bool operator != ( const sc_time& ) const;
bool operator < ( const sc_time& ) const;
bool operator <= ( const sc_time& ) const;
bool operator > ( const sc_time& ) const;
bool operator >= ( const sc_time& ) const;
// arithmetic operators
sc_time& operator += ( const sc_time& );
sc_time& operator -= ( const sc_time& );
friend const sc_time operator + ( const sc_time&, const sc_time& );
friend const sc_time operator - ( const sc_time&, const sc_time& );
sc_time& operator *= ( double );
sc_time& operator /= ( double );
sc_time& operator %= ( const sc_time& );
friend const sc_time operator * ( const sc_time&, double );
friend const sc_time operator * ( double, const sc_time& );
friend const sc_time operator / ( const sc_time&, double );
friend double operator / ( const sc_time&, const sc_time& );
friend const sc_time operator % ( const sc_time&, const sc_time& );
// print function
void print( ::std::ostream& os = std::cout ) const;
private:
value_type m_value;
};
// print operator
inline ::std::ostream& operator << ( ::std::ostream&, const sc_time& );
// IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII
// constructors
inline
sc_time::sc_time()
: m_value( 0 )
{}
inline
sc_time::sc_time( const sc_time& t )
: m_value( t.m_value )
{}
// assignment operator
inline
sc_time&
sc_time::operator = ( const sc_time& t )
{
m_value = t.m_value;
return *this;
}
// conversion functions
inline
sc_time::value_type
sc_time::value() const // relative to the time resolution
{
return m_value;
}
inline
double
sc_time::to_double() const // relative to the time resolution
{
return sc_dt::uint64_to_double( m_value );
}
// relational operators
inline
bool
sc_time::operator == ( const sc_time& t ) const
{
return ( m_value == t.m_value );
}
inline
bool
sc_time::operator != ( const sc_time& t ) const
{
return ( m_value != t.m_value );
}
inline
bool
sc_time::operator < ( const sc_time& t ) const
{
return ( m_value < t.m_value );
}
inline
bool
sc_time::operator <= ( const sc_time& t ) const
{
return ( m_value <= t.m_value );
}
inline
bool
sc_time::operator > ( const sc_time& t ) const
{
return ( m_value > t.m_value );
}
inline
bool
sc_time::operator >= ( const sc_time& t ) const
{
return ( m_value >= t.m_value );
}
// arithmetic operators
inline
sc_time&
sc_time::operator += ( const sc_time& t )
{
m_value += t.m_value;
return *this;
}
inline
sc_time&
sc_time::operator -= ( const sc_time& t )
{
m_value -= t.m_value;
return *this;
}
inline
const sc_time
operator + ( const sc_time& t1, const sc_time& t2 )
{
return sc_time( t1 ) += t2;
}
inline
const sc_time
operator - ( const sc_time& t1, const sc_time& t2 )
{
return sc_time( t1 ) -= t2;
}
inline
sc_time&
sc_time::operator *= ( double d )
{
// linux bug workaround; don't change next two lines
volatile double tmp = sc_dt::uint64_to_double( m_value ) * d + 0.5;
m_value = SCAST<sc_dt::int64>( tmp );
return *this;
}
inline
sc_time&
sc_time::operator /= ( double d )
{
// linux bug workaround; don't change next two lines
volatile double tmp = sc_dt::uint64_to_double( m_value ) / d + 0.5;
m_value = SCAST<sc_dt::int64>( tmp );
return *this;
}
inline
sc_time&
sc_time::operator %= ( const sc_time& t )
{
m_value %= t.m_value;
return *this;
}
inline
const sc_time
operator * ( const sc_time& t, double d )
{
sc_time tmp( t );
return tmp *= d;
}
inline
const sc_time
operator * ( double d, const sc_time& t )
{
sc_time tmp( t );
return tmp *= d;
}
inline
const sc_time
operator / ( const sc_time& t, double d )
{
sc_time tmp( t );
return tmp /= d;
}
inline
double
operator / ( const sc_time& t1, const sc_time& t2 )
{
return ( t1.to_double() / t2.to_double() );
}
inline
const sc_time
operator % ( const sc_time& t1, const sc_time& t2 )
{
sc_time tmp(t1);
return tmp %= t2;
}
// print operator
inline
::std::ostream&
operator << ( ::std::ostream& os, const sc_time& t )
{
t.print( os );
return os;
}
// ----------------------------------------------------------------------------
// STRUCT : sc_time_params
//
// Struct that holds the time resolution and default time unit.
// ----------------------------------------------------------------------------
struct sc_time_params
{
double time_resolution; // in femto seconds
bool time_resolution_specified;
bool time_resolution_fixed;
sc_time::value_type default_time_unit; // in time resolution
bool default_time_unit_specified;
sc_time_params();
~sc_time_params();
};
// ----------------------------------------------------------------------------
extern const sc_time SC_ZERO_TIME;
// functions for accessing the time resolution and default time unit
extern void sc_set_time_resolution( double, sc_time_unit );
extern sc_time sc_get_time_resolution();
extern void sc_set_default_time_unit( double, sc_time_unit );
extern sc_time sc_get_default_time_unit();
} // namespace sc_core
#endif
// $Log: sc_time.h,v $
// Revision 1.5 2011/08/26 20:46:11 acg
// Andy Goodrich: moved the modification log to the end of the file to
// eliminate source line number skew when check-ins are done.
//
// Revision 1.4 2011/02/18 20:27:14 acg
// Andy Goodrich: Updated Copyrights.
//
// Revision 1.3 2011/02/13 21:47:38 acg
// Andy Goodrich: update copyright notice.
//
// Revision 1.2 2008/05/22 17:06:27 acg
// Andy Goodrich: updated copyright notice to include 2008.
//
// Revision 1.1.1.1 2006/12/15 20:20:05 acg
// SystemC 2.3
//
// Revision 1.4 2006/05/08 18:02:06 acg
// Andy Goodrich: added David Long's forward declarations for friend
// functions, methods, and operators to keep the Microsoft compiler happy.
//
// Revision 1.3 2006/01/13 18:44:30 acg
// Added $Log to record CVS changes into the source.
// Taf!