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 #ifndef SCFX_MANT_H
00047 #define SCFX_MANT_H
00048
00049
00050 #include "sysc/datatypes/fx/scfx_ieee.h"
00051 #include "sysc/datatypes/fx/scfx_utils.h"
00052 #include "sysc/kernel/sc_macros.h"
00053
00054
00055 namespace sc_dt
00056 {
00057
00058
00059 class scfx_mant;
00060 class scfx_mant_ref;
00061
00062
00063 typedef unsigned int word;
00064 typedef unsigned short half_word;
00065
00066
00067
00068
00069
00070
00071
00072
00073 class scfx_mant
00074 {
00075
00076 word* m_array;
00077 int m_size;
00078
00079 public:
00080
00081 explicit scfx_mant( std::size_t );
00082 scfx_mant( const scfx_mant& );
00083
00084 scfx_mant& operator = ( const scfx_mant& );
00085
00086 ~scfx_mant();
00087
00088 void clear();
00089
00090 void resize_to( int, int = 0 );
00091
00092 int size() const;
00093
00094 word operator [] ( int ) const;
00095 word& operator [] ( int );
00096
00097 half_word half_at( int ) const;
00098 half_word& half_at( int );
00099
00100 half_word* half_addr( int = 0 ) const;
00101
00102 private:
00103
00104 static word* alloc( std::size_t );
00105 static void free( word*, std::size_t );
00106
00107 static word* alloc_word( std::size_t size );
00108 static void free_word( word* array, std::size_t size );
00109
00110 };
00111
00112
00113
00114
00115 inline
00116 int
00117 scfx_mant::size() const
00118 {
00119 return m_size;
00120 }
00121
00122
00123 inline
00124 word*
00125 scfx_mant::alloc( std::size_t size )
00126 {
00127 #if defined( SC_BIG_ENDIAN )
00128 return alloc_word( size ) + ( size - 1 );
00129 #elif defined( SC_LITTLE_ENDIAN )
00130 return alloc_word( size );
00131 #endif
00132 }
00133
00134 inline
00135 void
00136 scfx_mant::free( word* mant, std::size_t size )
00137 {
00138 #if defined( SC_BIG_ENDIAN )
00139 free_word( mant - ( size - 1 ), size );
00140 #elif defined( SC_LITTLE_ENDIAN )
00141 free_word( mant, size );
00142 #endif
00143 }
00144
00145 inline
00146 word
00147 scfx_mant::operator[]( int i ) const
00148 {
00149 SC_ASSERT_( i >= 0 && i < m_size, "mantissa index out of range" );
00150 #if defined( SC_BIG_ENDIAN )
00151 return m_array[-i];
00152 #elif defined( SC_LITTLE_ENDIAN )
00153 return m_array[i];
00154 #endif
00155 }
00156
00157 inline
00158 word&
00159 scfx_mant::operator[]( int i )
00160 {
00161 SC_ASSERT_( i >= 0 && i < m_size, "mantissa index out of range" );
00162 #if defined( SC_BIG_ENDIAN )
00163 return m_array[-i];
00164 #elif defined( SC_LITTLE_ENDIAN )
00165 return m_array[i];
00166 #endif
00167 }
00168
00169 inline
00170 scfx_mant::scfx_mant( std::size_t size )
00171 {
00172 m_array = alloc( m_size = size );
00173 }
00174
00175 inline
00176 scfx_mant::scfx_mant( const scfx_mant& rhs )
00177 {
00178 m_array = alloc( m_size = rhs.m_size );
00179 for( int i = 0; i < m_size; i ++ )
00180 {
00181 (*this)[i] = rhs[i];
00182 }
00183 }
00184
00185 inline
00186 scfx_mant&
00187 scfx_mant::operator = ( const scfx_mant& rhs )
00188 {
00189 if( &rhs != this )
00190 {
00191 if( m_size != rhs.m_size )
00192 {
00193 free( m_array, m_size );
00194 m_array = alloc( m_size = rhs.m_size );
00195 }
00196
00197 for( int i = 0; i < m_size; i ++ )
00198 {
00199 (*this)[i] = rhs[i];
00200 }
00201 }
00202 return *this;
00203 }
00204
00205 inline
00206 scfx_mant::~scfx_mant()
00207 {
00208 if( m_array != 0 )
00209 {
00210 free( m_array, m_size );
00211 }
00212 }
00213
00214 inline
00215 void
00216 scfx_mant::clear()
00217 {
00218 for( int i = 0; i < m_size; i ++ )
00219 {
00220 (*this)[i] = 0;
00221 }
00222 }
00223
00224 inline
00225 void
00226 scfx_mant::resize_to( int size, int restore )
00227 {
00228 if( size == m_size )
00229 {
00230 return;
00231 }
00232
00233 if( ! m_array )
00234 {
00235 m_array = alloc( m_size = size );
00236 }
00237 else
00238 {
00239 word* p = alloc( size );
00240
00241 if( restore )
00242 {
00243 int end = sc_min( size, m_size );
00244 if( restore == 1 )
00245 {
00246 for( int i = 0; i < size; i ++ )
00247 {
00248 if( i < end )
00249 {
00250 #if defined( SC_BIG_ENDIAN )
00251 p[-i] = m_array[-i];
00252 #elif defined( SC_LITTLE_ENDIAN )
00253 p[i] = m_array[i];
00254 #endif
00255 }
00256 else
00257 {
00258 #if defined( SC_BIG_ENDIAN )
00259 p[-i] = 0;
00260 #elif defined( SC_LITTLE_ENDIAN )
00261 p[i] = 0;
00262 #endif
00263 }
00264 }
00265 }
00266 else
00267 {
00268 for( int i = 0; i < size; i ++ )
00269 {
00270 if( i < end )
00271 {
00272 #if defined( SC_BIG_ENDIAN )
00273 p[-size+1+i] = m_array[-m_size+1+i];
00274 #elif defined( SC_LITTLE_ENDIAN )
00275 p[size-1-i] = m_array[m_size-1-i];
00276 #endif
00277 }
00278 else
00279 {
00280 #if defined( SC_BIG_ENDIAN )
00281 p[-size+1+i] = 0;
00282 #elif defined( SC_LITTLE_ENDIAN )
00283 p[size-1-i] = 0;
00284 #endif
00285 }
00286 }
00287 }
00288 }
00289
00290 free( m_array, m_size );
00291 m_array = p;
00292 m_size = size;
00293 }
00294 }
00295
00296 inline
00297 half_word
00298 scfx_mant::half_at( int i ) const
00299 {
00300 SC_ASSERT_( ( i >> 1 ) >= 0 && ( i >> 1 ) < m_size,
00301 "mantissa index out of range" );
00302 #if defined( SC_BIG_ENDIAN )
00303 return reinterpret_cast<half_word*>( m_array )[-i];
00304 #elif defined( SC_LITTLE_ENDIAN )
00305 return reinterpret_cast<half_word*>( m_array )[i];
00306 #endif
00307 }
00308
00309 inline
00310 half_word&
00311 scfx_mant::half_at( int i )
00312 {
00313 SC_ASSERT_( ( i >> 1 ) >= 0 && ( i >> 1 ) < m_size,
00314 "mantissa index out of range" );
00315 #if defined( SC_BIG_ENDIAN )
00316 return reinterpret_cast<half_word*>( m_array )[-i];
00317 #elif defined( SC_LITTLE_ENDIAN )
00318 return reinterpret_cast<half_word*>( m_array )[i];
00319 #endif
00320 }
00321
00322 inline
00323 half_word*
00324 scfx_mant::half_addr( int i ) const
00325 {
00326 SC_ASSERT_( i >= 0 && i < m_size, "mantissa index out of range" );
00327 #if defined( SC_BIG_ENDIAN )
00328 return reinterpret_cast<half_word*>( m_array - i ) + 1;
00329 #elif defined( SC_LITTLE_ENDIAN )
00330 return reinterpret_cast<half_word*>( m_array + i );
00331 #endif
00332 }
00333
00334
00335
00336
00337
00338
00339 inline
00340 void
00341 complement( scfx_mant& target, const scfx_mant& source, int size )
00342 {
00343 for( int i = 0; i < size; i ++ )
00344 {
00345 target[i] = ~source[i];
00346 }
00347 }
00348
00349
00350
00351
00352
00353
00354 inline
00355 void
00356 inc( scfx_mant& mant )
00357 {
00358 for( int i = 0; i < mant.size(); i ++ )
00359 {
00360 if( ++ mant[i] )
00361 {
00362 break;
00363 }
00364 }
00365 }
00366
00367
00368
00369
00370
00371
00372
00373
00374 class scfx_mant_ref
00375 {
00376
00377 scfx_mant* m_mant;
00378 bool m_not_const;
00379
00380 public:
00381
00382 scfx_mant_ref();
00383 scfx_mant_ref( const scfx_mant& );
00384 scfx_mant_ref( scfx_mant* );
00385
00386 scfx_mant_ref& operator = ( const scfx_mant& );
00387 scfx_mant_ref& operator = ( scfx_mant* );
00388
00389 ~scfx_mant_ref();
00390
00391 operator scfx_mant&();
00392
00393 word operator [] ( int );
00394
00395 private:
00396
00397 void remove_it();
00398
00399 scfx_mant_ref( const scfx_mant_ref& );
00400 scfx_mant_ref& operator = ( const scfx_mant_ref& );
00401
00402 void* operator new( std::size_t sz ) { return ::operator new( sz ); }
00403
00404 };
00405
00406
00407
00408
00409 inline
00410 void
00411 scfx_mant_ref::remove_it()
00412 {
00413 if( m_not_const )
00414 {
00415 delete m_mant;
00416 }
00417 }
00418
00419 inline
00420 scfx_mant_ref::scfx_mant_ref()
00421 : m_mant( 0 ), m_not_const( false )
00422 {}
00423
00424 inline
00425 scfx_mant_ref::scfx_mant_ref( const scfx_mant& mant )
00426 : m_mant( const_cast<scfx_mant*>( &mant ) ), m_not_const( false )
00427 {}
00428
00429 inline
00430 scfx_mant_ref::scfx_mant_ref( scfx_mant* mant )
00431 : m_mant( mant ), m_not_const( true )
00432 {}
00433
00434 inline
00435 scfx_mant_ref&
00436 scfx_mant_ref::operator = ( const scfx_mant& mant )
00437 {
00438 remove_it();
00439
00440 m_mant = const_cast<scfx_mant*>( &mant );
00441 m_not_const = false;
00442
00443 return *this;
00444 }
00445
00446 inline
00447 scfx_mant_ref&
00448 scfx_mant_ref::operator = ( scfx_mant* mant )
00449 {
00450 remove_it();
00451
00452 m_mant = mant;
00453 m_not_const = true;
00454
00455 return *this;
00456 }
00457
00458 inline
00459 scfx_mant_ref::~scfx_mant_ref()
00460 {
00461 remove_it();
00462 }
00463
00464 inline
00465 scfx_mant_ref::operator scfx_mant&()
00466 {
00467
00468 return *m_mant;
00469 }
00470
00471 inline
00472 word
00473 scfx_mant_ref::operator [] ( int i )
00474 {
00475 return (*m_mant)[i];
00476 }
00477
00478 }
00479
00480
00481 #endif
00482
00483