sc_signal_ports.h
来自「基于4个mips核的noc设计」· C头文件 代码 · 共 1,744 行 · 第 1/3 页
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1,744 行
// the tricky part const sc_port_base* pb = this; return RCAST<const sc_signal_bool_deval&>( *pb ); }}// ----------------------------------------------------------------------------// CLASS : sc_in<sc_logic>//// Specialization of sc_in<T> for type sc_logic.// ----------------------------------------------------------------------------template <>class sc_in<sc_logic>: public sc_port<sc_signal_in_if<sc_logic>,1>{public: // typedefs typedef sc_logic data_type; typedef sc_signal_in_if<data_type> if_type; typedef sc_port<if_type,1> base_type; typedef sc_in<data_type> this_type; typedef if_type in_if_type; typedef base_type in_port_type; typedef sc_signal_inout_if<data_type> inout_if_type; typedef sc_port<inout_if_type,1> inout_port_type;public: // constructors sc_in() : base_type(), m_traces( 0 ) {} explicit sc_in( const char* name_ ) : base_type( name_ ), m_traces( 0 ) {} explicit sc_in( const in_if_type& interface_ ) : base_type( CCAST<in_if_type&>( interface_ ) ), m_traces( 0 ) {} sc_in( const char* name_, const in_if_type& interface_ ) : base_type( name_, CCAST<in_if_type&>( interface_ ) ), m_traces( 0 ) {} explicit sc_in( in_port_type& parent_ ) : base_type( parent_ ), m_traces( 0 ) {} sc_in( const char* name_, in_port_type& parent_ ) : base_type( name_, parent_ ), m_traces( 0 ) {} explicit sc_in( inout_port_type& parent_ ) : base_type(), m_traces( 0 ) { sc_port_base::bind( parent_ ); } sc_in( const char* name_, inout_port_type& parent_ ) : base_type( name_ ), m_traces( 0 ) { sc_port_base::bind( parent_ ); } sc_in( this_type& parent_ ) : base_type( parent_ ), m_traces( 0 ) {} sc_in( const char* name_, this_type& parent_ ) : base_type( name_, parent_ ), m_traces( 0 ) {} // destructor virtual ~sc_in() { remove_traces(); } // bind to in interface void bind( const in_if_type& interface_ ) { sc_port_base::bind( CCAST<in_if_type&>( interface_ ) ); } void operator () ( const in_if_type& interface_ ) { sc_port_base::bind( CCAST<in_if_type&>( interface_ ) ); } // bind to parent in port void bind( in_port_type& parent_ ) { sc_port_base::bind( parent_ ); } void operator () ( in_port_type& parent_ ) { sc_port_base::bind( parent_ ); } // bind to parent inout port void bind( inout_port_type& parent_ ) { sc_port_base::bind( parent_ ); } void operator () ( inout_port_type& parent_ ) { sc_port_base::bind( parent_ ); } // interface access shortcut methods // get the default event const sc_event& default_event() const { return (*this)->default_event(); } // get the value changed event const sc_event& value_changed_event() const { return (*this)->value_changed_event(); } // get the positive edge event const sc_event& posedge_event() const { return (*this)->posedge_event(); } // get the negative edge event const sc_event& negedge_event() const { return (*this)->negedge_event(); } // read the current value const data_type& read() const { return (*this)->read(); } operator const data_type& () const { return (*this)->read(); } // use for positive edge sensitivity sc_event_finder& pos() const { return *new sc_event_finder_t<in_if_type>( *this, &in_if_type::posedge_event ); } // use for negative edge sensitivity sc_event_finder& neg() const { return *new sc_event_finder_t<in_if_type>( *this, &in_if_type::negedge_event ); } // was there a value changed event? bool event() const { return (*this)->event(); } // was there a positive edge event? bool posedge() const { return (*this)->posedge(); } // was there a negative edge event? bool negedge() const { return (*this)->negedge(); } // delayed evaluation const sc_signal_logic_deval& delayed() const; // (other) event finder method(s) sc_event_finder& value_changed() const { return *new sc_event_finder_t<in_if_type>( *this, &in_if_type::value_changed_event ); } // called when elaboration is done /* WHEN DEFINING THIS METHOD IN A DERIVED CLASS, */ /* MAKE SURE THAT THIS METHOD IS CALLED AS WELL. */ virtual void end_of_elaboration(); static const char* const kind_string; virtual const char* kind() const { return kind_string; } // called by sc_trace void add_trace( sc_trace_file*, const sc_string& ) const;protected: void remove_traces() const; mutable sc_trace_params_vec* m_traces;protected: // called by pbind (for internal use only) virtual int vbind( sc_interface& ); virtual int vbind( sc_port_base& );private: // disabled sc_in( const this_type& ); this_type& operator = ( const this_type& );#ifdef __GNUC__ // Needed to circumvent a problem in the g++-2.95.2 compiler: // This unused variable forces the compiler to instantiate // an object of T template so an implicit conversion from // read() to a C++ intrinsic data type will work. static data_type dummy;#endif};// IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIII// delayed evaluationinlineconst sc_signal_logic_deval&sc_in<sc_logic>::delayed() const{ const in_if_type* iface = DCAST<const in_if_type*>( get_interface() ); if( iface != 0 ) { return RCAST<const sc_signal_logic_deval&>( *iface ); } else { // the tricky part const sc_port_base* pb = this; return RCAST<const sc_signal_logic_deval&>( *pb ); }}// ----------------------------------------------------------------------------// CLASS : sc_inout<T>//// The sc_signal<T> input/output port class.// ----------------------------------------------------------------------------template <class T>class sc_inout: public sc_port<sc_signal_inout_if<T>,1>{public: // typedefs typedef T data_type; typedef sc_signal_inout_if<data_type> if_type; typedef sc_port<if_type,1> base_type; typedef sc_inout<data_type> this_type; typedef sc_signal_in_if<data_type> in_if_type; typedef sc_port<in_if_type,1> in_port_type; typedef if_type inout_if_type; typedef base_type inout_port_type;public: // constructors sc_inout() : base_type(), m_init_val( 0 ), m_traces( 0 ) {} explicit sc_inout( const char* name_ ) : base_type( name_ ), m_init_val( 0 ), m_traces( 0 ) {} explicit sc_inout( inout_if_type& interface_ ) : base_type( interface_ ), m_init_val( 0 ), m_traces( 0 ) {} sc_inout( const char* name_, inout_if_type& interface_ ) : base_type( name_, interface_ ), m_init_val( 0 ), m_traces( 0 ) {} explicit sc_inout( inout_port_type& parent_ ) : base_type( parent_ ), m_init_val( 0 ), m_traces( 0 ) {} sc_inout( const char* name_, inout_port_type& parent_ ) : base_type( name_, parent_ ), m_init_val( 0 ), m_traces( 0 ) {} sc_inout( this_type& parent_ ) : base_type( parent_ ), m_init_val( 0 ), m_traces( 0 ) {} sc_inout( const char* name_, this_type& parent_ ) : base_type( name_, parent_ ), m_init_val( 0 ), m_traces( 0 ) {} // destructor virtual ~sc_inout(); // interface access shortcut methods // get the default event const sc_event& default_event() const { return (*this)->default_event(); } // get the value changed event const sc_event& value_changed_event() const { return (*this)->value_changed_event(); } // read the current value const data_type& read() const { return (*this)->read(); } operator const data_type& () const { return (*this)->read(); } // was there a value changed event? bool event() const { return (*this)->event(); } // write the new value this_type& write( const data_type& value_ ) { (*this)->write( value_ ); return *this; } this_type& operator = ( const data_type& value_ ) { (*this)->write( value_ ); return *this; } this_type& operator = ( const in_if_type& interface_ ) { (*this)->write( interface_.read() ); return *this; } this_type& operator = ( const in_port_type& port_ ) { (*this)->write( port_->read() ); return *this; } this_type& operator = ( const inout_port_type& port_ ) { (*this)->write( port_->read() ); return *this; } this_type& operator = ( const this_type& port_ ) { (*this)->write( port_->read() ); return *this; } // set initial value (can also be called when port is not bound yet) void initialize( const data_type& value_ ); void initialize( const in_if_type& interface_ ) { initialize( interface_.read() ); } // called when elaboration is done /* WHEN DEFINING THIS METHOD IN A DERIVED CLASS, */ /* MAKE SURE THAT THIS METHOD IS CALLED AS WELL. */ virtual void end_of_elaboration(); // (other) event finder method(s) sc_event_finder& value_changed() const { return *new sc_event_finder_t<in_if_type>( *this, &in_if_type::value_changed_event ); } static const char* const kind_string; virtual const char* kind() const { return kind_string; }protected: data_type* m_init_val;public: // called by sc_trace void add_trace( sc_trace_file*, const sc_string& ) const;protected: void remove_traces() const; mutable sc_trace_params_vec* m_traces;private: // disabled sc_inout( const this_type& );#ifdef __GNUC__ // Needed to circumvent a problem in the g++-2.95.2 compiler: // This unused variable forces the compiler to instantiate // an object of T template so an implicit conversion from // read() to a C++ intrinsic data type will work. static data_type dummy;#endif};// IIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIIItemplate <class T>const char* const sc_inout<T>::kind_string = "sc_inout";// destructortemplate <class T>inlinesc_inout<T>::~sc_inout(){ if( m_init_val != 0 ) { delete m_init_val; } remove_traces();}// set initial value (can also be called when port is not bound yet)template <class T>inlinevoidsc_inout<T>::initialize( const data_type& value_ ){ inout_if_type* iface = DCAST<inout_if_type*>( this->get_interface() ); if( iface != 0 ) { iface->write( value_ ); } else { if( m_init_val == 0 ) { m_init_val = new data_type; } *m_init_val = value_; }}// called when elaboration is donetemplate <class T>inlinevoidsc_inout<T>::end_of_elaboration(){ if( m_init_val != 0 ) { write( *m_init_val ); delete m_init_val; m_init_val = 0; } if( m_traces != 0 ) { for( int i = 0; i < m_traces->size(); ++ i ) { sc_trace_params* p = (*m_traces)[i]; in_if_type* iface = DCAST<in_if_type*>( this->get_interface() ); sc_trace( p->tf, iface->get_data_ref(), p->name ); } remove_traces(); }}// called by sc_tracetemplate <class T>inlinevoidsc_inout<T>::add_trace( sc_trace_file* tf_, const sc_string& name_ ) const{ if( tf_ != 0 ) { if( m_traces == 0 ) { m_traces = new sc_trace_params_vec; } m_traces->push_back( new sc_trace_params( tf_, name_ ) ); }}template <class T>inlinevoidsc_inout<T>::remove_traces() const{ if( m_traces != 0 ) { for( int i = m_traces->size() - 1; i >= 0; -- i ) { delete (*m_traces)[i]; } delete m_traces; m_traces = 0; }}// ----------------------------------------------------------------------------// CLASS : sc_inout<bool>//// Specialization of sc_inout<T> for type bool.// ----------------------------------------------------------------------------template <>class sc_inout<bool>: public sc_port<sc_signal_inout_if<bool>,1>{public: // typedefs typedef bool data_type; typedef sc_signal_inout_if<data_type> if_type; typedef sc_port<if_type,1> base_type; typedef sc_inout<data_type> this_type; typedef sc_signal_in_if<data_type> in_if_type; typedef sc_port<in_if_type,1> in_port_type; typedef if_type inout_if_type; typedef base_type inout_port_type;public: // constructors sc_inout() : base_type(), m_init_val( 0 ), m_traces( 0 ) {} explicit sc_inout( const char* name_ ) : base_type( name_ ), m_init_val( 0 ), m_traces( 0 ) {} explicit sc_inout( inout_if_type& interface_ ) : base_type( interface_ ), m_init_val( 0 ), m_traces( 0 ) {} sc_inout( const char* name_, inout_if_type& interface_ ) : base_type( name_, interface_ ), m_init_val( 0 ), m_traces( 0 ) {} explicit sc_inout( inout_port_type& parent_ ) : base_type( parent_ ), m_init_val( 0 ), m_traces( 0 ) {} sc_inout( const char* name_, inout_port_type& parent_ ) : base_type( name_, parent_ ), m_init_val( 0 ), m_traces( 0 ) {} sc_inout( this_type& parent_ ) : base_type( parent_ ), m_init_val( 0 ), m_traces( 0 ) {} sc_inout( const char* name_, this_type& parent_ ) : base_type( name_, parent_ ), m_init_val( 0 ), m_traces( 0 ) {} // destructor
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