00001
00002
00003
00004
00005
00006
00007
00008
00009
00010
00011
00012
00013
00014
00015
00016
00017
00018
00019
00020
00021
00022
00023
00024
00025
00026
00027
00028
00029
00030
00031
00032
00033
00034
00035
00036
00037
00038
00039
00040
00041
00042
00043
00044
00045
00046
00047
00048
00049
00050
00051
00052
00053
00054
00055
00056
00057
00058
00059
00060
00061 #ifndef SC_FIFO_H
00062 #define SC_FIFO_H
00063
00064
00065 #include "sysc/communication/sc_communication_ids.h"
00066 #include "sysc/communication/sc_prim_channel.h"
00067 #include "sysc/communication/sc_fifo_ifs.h"
00068 #include "sysc/kernel/sc_event.h"
00069 #include "sysc/kernel/sc_simcontext.h"
00070 #include "sysc/utils/sc_string.h"
00071 #include "sysc/tracing/sc_trace.h"
00072 #include <typeinfo>
00073
00074 namespace sc_core {
00075
00076
00077
00078
00079
00080
00081
00082 template <class T>
00083 class sc_fifo
00084 : public sc_fifo_in_if<T>,
00085 public sc_fifo_out_if<T>,
00086 public sc_prim_channel
00087 {
00088 public:
00089
00090
00091
00092 explicit sc_fifo( int size_ = 16 )
00093 : sc_prim_channel( sc_gen_unique_name( "fifo" ) )
00094 { init( size_ ); }
00095
00096 explicit sc_fifo( const char* name_, int size_ = 16 )
00097 : sc_prim_channel( name_ )
00098 { init( size_ ); }
00099
00100
00101
00102
00103 virtual ~sc_fifo()
00104 { delete [] m_buf; }
00105
00106
00107
00108
00109 virtual void register_port( sc_port_base&, const char* );
00110
00111
00112
00113 virtual void read( T& );
00114 virtual T read();
00115
00116
00117 virtual bool nb_read( T& );
00118
00119
00120
00121
00122 virtual int num_available() const
00123 { return ( m_num_readable - m_num_read ); }
00124
00125
00126
00127
00128 virtual const sc_event& data_written_event() const
00129 { return m_data_written_event; }
00130
00131
00132
00133 virtual void write( const T& );
00134
00135
00136 virtual bool nb_write( const T& );
00137
00138
00139
00140
00141 virtual int num_free() const
00142 { return ( m_size - m_num_readable - m_num_written ); }
00143
00144
00145
00146
00147 virtual const sc_event& data_read_event() const
00148 { return m_data_read_event; }
00149
00150
00151
00152
00153 operator T ()
00154 { return read(); }
00155
00156
00157 sc_fifo<T>& operator = ( const T& a )
00158 { write( a ); return *this; }
00159
00160
00161 void trace( sc_trace_file* tf ) const;
00162
00163
00164 virtual void print( ::std::ostream& = ::std::cout ) const;
00165 virtual void dump( ::std::ostream& = ::std::cout ) const;
00166
00167 virtual const char* kind() const
00168 { return "sc_fifo"; }
00169
00170 protected:
00171
00172 virtual void update();
00173
00174
00175
00176 void init( int );
00177
00178 void buf_init( int );
00179 bool buf_write( const T& );
00180 bool buf_read( T& );
00181
00182 protected:
00183
00184 int m_size;
00185 T* m_buf;
00186 int m_free;
00187 int m_ri;
00188 int m_wi;
00189
00190 sc_port_base* m_reader;
00191 sc_port_base* m_writer;
00192
00193 int m_num_readable;
00194 int m_num_read;
00195 int m_num_written;
00196
00197 sc_event m_data_read_event;
00198 sc_event m_data_written_event;
00199
00200 private:
00201
00202
00203 sc_fifo( const sc_fifo<T>& );
00204 sc_fifo& operator = ( const sc_fifo<T>& );
00205 };
00206
00207
00208
00209
00210 template <class T>
00211 inline
00212 void
00213 sc_fifo<T>::register_port( sc_port_base& port_,
00214 const char* if_typename_ )
00215 {
00216 std::string nm( if_typename_ );
00217 if( nm == typeid( sc_fifo_in_if<T> ).name() ) {
00218
00219 if( m_reader != 0 ) {
00220 SC_REPORT_ERROR( SC_ID_MORE_THAN_ONE_FIFO_READER_, 0 );
00221 }
00222 m_reader = &port_;
00223 } else {
00224
00225 if( m_writer != 0 ) {
00226 SC_REPORT_ERROR( SC_ID_MORE_THAN_ONE_FIFO_WRITER_, 0 );
00227 }
00228 m_writer = &port_;
00229 }
00230 }
00231
00232
00233
00234
00235 template <class T>
00236 inline
00237 void
00238 sc_fifo<T>::read( T& val_ )
00239 {
00240 while( num_available() == 0 ) {
00241 sc_core::wait( m_data_written_event );
00242 }
00243 m_num_read ++;
00244 buf_read( val_ );
00245 request_update();
00246 }
00247
00248 template <class T>
00249 inline
00250 T
00251 sc_fifo<T>::read()
00252 {
00253 T tmp;
00254 read( tmp );
00255 return tmp;
00256 }
00257
00258
00259
00260 template <class T>
00261 inline
00262 bool
00263 sc_fifo<T>::nb_read( T& val_ )
00264 {
00265 if( num_available() == 0 ) {
00266 return false;
00267 }
00268 m_num_read ++;
00269 buf_read( val_ );
00270 request_update();
00271 return true;
00272 }
00273
00274
00275
00276
00277 template <class T>
00278 inline
00279 void
00280 sc_fifo<T>::write( const T& val_ )
00281 {
00282 while( num_free() == 0 ) {
00283 sc_core::wait( m_data_read_event );
00284 }
00285 m_num_written ++;
00286 buf_write( val_ );
00287 request_update();
00288 }
00289
00290
00291
00292 template <class T>
00293 inline
00294 bool
00295 sc_fifo<T>::nb_write( const T& val_ )
00296 {
00297 if( num_free() == 0 ) {
00298 return false;
00299 }
00300 m_num_written ++;
00301 buf_write( val_ );
00302 request_update();
00303 return true;
00304 }
00305
00306
00307 template <class T>
00308 inline
00309 void
00310 sc_fifo<T>::trace( sc_trace_file* tf ) const
00311 {
00312 #if defined(DEBUG_SYSTEMC)
00313 char buf[32];
00314 std::string nm = name();
00315 for( int i = 0; i < m_size; ++ i ) {
00316 std::sprintf( buf, "_%d", i );
00317 sc_trace( tf, m_buf[i], nm + buf );
00318 }
00319 #endif
00320 }
00321
00322
00323 template <class T>
00324 inline
00325 void
00326 sc_fifo<T>::print( ::std::ostream& os ) const
00327 {
00328 if( m_free != m_size ) {
00329 int i = m_ri;
00330 do {
00331 os << m_buf[i] << ::std::endl;
00332 i = ( i + 1 ) % m_size;
00333 } while( i != m_wi );
00334 }
00335 }
00336
00337 template <class T>
00338 inline
00339 void
00340 sc_fifo<T>::dump( ::std::ostream& os ) const
00341 {
00342 os << "name = " << name() << ::std::endl;
00343 if( m_free != m_size ) {
00344 int i = m_ri;
00345 int j = 0;
00346 do {
00347 os << "value[" << i << "] = " << m_buf[i] << ::std::endl;
00348 i = ( i + 1 ) % m_size;
00349 j ++;
00350 } while( i != m_wi );
00351 }
00352 }
00353
00354
00355 template <class T>
00356 inline
00357 void
00358 sc_fifo<T>::update()
00359 {
00360 if( m_num_read > 0 ) {
00361 m_data_read_event.notify(SC_ZERO_TIME);
00362 }
00363
00364 if( m_num_written > 0 ) {
00365 m_data_written_event.notify(SC_ZERO_TIME);
00366 }
00367
00368 m_num_readable = m_size - m_free;
00369 m_num_read = 0;
00370 m_num_written = 0;
00371 }
00372
00373
00374
00375
00376 template <class T>
00377 inline
00378 void
00379 sc_fifo<T>::init( int size_ )
00380 {
00381 buf_init( size_ );
00382
00383 m_reader = 0;
00384 m_writer = 0;
00385
00386 m_num_readable = 0;
00387 m_num_read = 0;
00388 m_num_written = 0;
00389 }
00390
00391
00392 template <class T>
00393 inline
00394 void
00395 sc_fifo<T>::buf_init( int size_ )
00396 {
00397 if( size_ <= 0 ) {
00398 SC_REPORT_ERROR( SC_ID_INVALID_FIFO_SIZE_, 0 );
00399 }
00400 m_size = size_;
00401 m_buf = new T[m_size];
00402 m_free = m_size;
00403 m_ri = 0;
00404 m_wi = 0;
00405 }
00406
00407 template <class T>
00408 inline
00409 bool
00410 sc_fifo<T>::buf_write( const T& val_ )
00411 {
00412 if( m_free == 0 ) {
00413 return false;
00414 }
00415 m_buf[m_wi] = val_;
00416 m_wi = ( m_wi + 1 ) % m_size;
00417 m_free --;
00418 return true;
00419 }
00420
00421 template <class T>
00422 inline
00423 bool
00424 sc_fifo<T>::buf_read( T& val_ )
00425 {
00426 if( m_free == m_size ) {
00427 return false;
00428 }
00429 val_ = m_buf[m_ri];
00430 m_ri = ( m_ri + 1 ) % m_size;
00431 m_free ++;
00432 return true;
00433 }
00434
00435
00436
00437
00438 template <class T>
00439 inline
00440 ::std::ostream&
00441 operator << ( ::std::ostream& os, const sc_fifo<T>& a )
00442 {
00443 a.print( os );
00444 return os;
00445 }
00446
00447 }
00448
00449 #endif
00450
00451