Coverage Report

Created: 2026-07-16 06:32

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/work/vvdec/source/Lib/CommonLib/Picture.cpp
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Source
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/* -----------------------------------------------------------------------------
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The copyright in this software is being made available under the Clear BSD
3
License, included below. No patent rights, trademark rights and/or 
4
other Intellectual Property Rights other than the copyrights concerning 
5
the Software are granted under this license.
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The Clear BSD License
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9
Copyright (c) 2018-2026, Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V. & The VVdeC Authors.
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All rights reserved.
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Redistribution and use in source and binary forms, with or without modification,
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are permitted (subject to the limitations in the disclaimer below) provided that
14
the following conditions are met:
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16
     * Redistributions of source code must retain the above copyright notice,
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     this list of conditions and the following disclaimer.
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19
     * Redistributions in binary form must reproduce the above copyright
20
     notice, this list of conditions and the following disclaimer in the
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     documentation and/or other materials provided with the distribution.
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     * Neither the name of the copyright holder nor the names of its
24
     contributors may be used to endorse or promote products derived from this
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     software without specific prior written permission.
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NO EXPRESS OR IMPLIED LICENSES TO ANY PARTY'S PATENT RIGHTS ARE GRANTED BY
28
THIS LICENSE. THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND
29
CONTRIBUTORS "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
30
LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A
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PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
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CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
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EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
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PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
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BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
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IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
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ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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POSSIBILITY OF SUCH DAMAGE.
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------------------------------------------------------------------------------------------- */
42
43
/** \file     Picture.cpp
44
 *  \brief    Description of a coded picture
45
 */
46
47
#include "Picture.h"
48
#include "ChromaFormat.h"
49
50
// ---------------------------------------------------------------------------
51
// picture methods
52
// ---------------------------------------------------------------------------
53
54
namespace vvdec
55
{
56
57
static void paddPicBorderTopCore(Pel *pi, ptrdiff_t stride,int width,int xmargin,int ymargin)
58
0
{
59
0
  for( int x = 0; x < xmargin; x++ )
60
0
  {
61
0
    pi[-xmargin + x] = pi[0];
62
0
    pi[width + x] = pi[width - 1];
63
0
  }
64
0
  pi -= xmargin;
65
  // pi is now (-marginX, 0)
66
0
  for( int y = 0; y < ymargin; y++ )
67
0
  {
68
0
    ::memcpy( pi - ( y + 1 )*stride, pi, sizeof( Pel )*( width + ( xmargin << 1 ) ) );
69
0
  }
70
0
}
71
72
static void paddPicBorderBotCore(Pel *pi, ptrdiff_t stride,int width,int xmargin,int ymargin)
73
0
{
74
0
  for( int x = 0; x < xmargin; x++ )
75
0
  {
76
0
    pi[-xmargin + x] = pi[0];
77
0
    pi[width  + x] = pi[width - 1];
78
0
  }
79
0
  pi -= xmargin;
80
  // pi is now the (-marginX, height-1)
81
0
  for( int y = 0; y < ymargin; y++ )
82
0
  {
83
0
    ::memcpy( pi + ( y + 1 )*stride, pi, sizeof( Pel )*( width + ( xmargin << 1 ) ) );
84
0
  }
85
0
}
86
87
static void paddPicBorderLeftRightCore(Pel *pi, ptrdiff_t stride,int width,int xmargin,int height)
88
0
{
89
0
  for( int y = 1; y < ( height - 1 ); y++ )
90
0
   {
91
0
     for( int x = 0; x < xmargin; x++ )
92
0
     {
93
0
       pi[-xmargin + x] = pi[0];
94
0
       pi[width + x] = pi[width - 1];
95
0
     }
96
0
     pi += stride;
97
0
   }
98
0
}
99
100
void Picture::create(const ChromaFormat &_chromaFormat, const Size &size, const unsigned _maxCUSize, const unsigned _margin, const int _layerId, UserAllocator* _userAllocator )
101
0
{
102
0
  layerId = _layerId;
103
0
  UnitArea::operator=( UnitArea( _chromaFormat, Area( Position{ 0, 0 }, size ) ) );
104
0
  margin            = _margin;
105
0
  m_bufs[PIC_RECONSTRUCTION].create( _chromaFormat, size, _maxCUSize, _margin, MEMORY_ALIGN_DEF_SIZE, true, _userAllocator );
106
0
}
107
108
void Picture::createWrapAroundBuf( const bool isWrapAround, const unsigned _maxCUSize )
109
0
{
110
0
  if( isWrapAround )
111
0
    m_bufs[PIC_RECON_WRAP].create( chromaFormat, Y().size(), _maxCUSize, margin, MEMORY_ALIGN_DEF_SIZE );
112
0
}
113
114
void Picture::resetForUse( int _layerId )
115
0
{
116
0
  CHECK( lockedByApplication, "the picture can not be re-used, because it has not been unlocked by the application." );
117
118
0
  if( cs )
119
0
  {
120
0
    cs->resetForUse();
121
0
  }
122
123
0
  m_subPicRefBufs.clear();
124
125
0
  m_dProcessingTime       = 0;
126
0
  subPicExtStarted        = false;
127
0
  borderExtStarted        = false;
128
0
  dpbReferenceMark        = unreferenced;
129
0
  stillReferenced         = false;
130
0
  isReferencePic          = false;
131
0
  progress                = Picture::init;
132
0
  neededForOutput         = false;
133
0
  wasLost                 = false;
134
0
  error                   = false;
135
0
  exceptionThrownOut      = false;
136
0
  topField                = false;
137
0
  fieldPic                = false;
138
0
  nonReferencePictureFlag = false;
139
0
  skippedDecCount         = 0;
140
141
0
  picCheckedDPH = false;
142
0
  subpicsCheckedDPH.clear();
143
0
  dphMismatch   = false;
144
145
0
  lockedByApplication = false;
146
147
0
  poc                 = 0;
148
0
  cts                 = 0;
149
0
  dts                 = 0;
150
0
  tempLayer           = std::numeric_limits<uint32_t>::max();
151
0
  depth               = 0;
152
0
  layerId             = _layerId;
153
0
  eNalUnitType        = NAL_UNIT_INVALID;
154
0
  bits                = 0;
155
0
  rap                 = 0;
156
0
  userData            = nullptr;
157
0
  decodingOrderNumber = 0;
158
159
0
  sliceSubpicIdx.clear();
160
0
  subPictures.clear();
161
162
0
  subLayerNonReferencePictureDueToSTSA = 0;
163
164
0
  m_divTasksCounter     .clearException();
165
0
  m_ctuTaskCounter      .clearException();
166
0
  m_borderExtTaskCounter.clearException();
167
0
  m_copyWrapBufDone     .clearException();
168
0
  reconDone             .clearException();
169
0
  parseDone             .clearException();
170
0
#if RECO_WHILE_PARSE
171
0
  std::for_each( ctuParsedBarrier.begin(), ctuParsedBarrier.end(), []( auto& b ) { b.clearException(); } );
172
0
#endif
173
174
0
  clearSliceBuffer();
175
176
0
  SEI_internal::deleteSEIs( seiMessageList );
177
178
0
  reconDone.lock();
179
0
}
180
181
void Picture::destroy()
182
0
{
183
0
  CHECK( lockedByApplication, "the picture can not be destroyed, because it has not been unlocked by the application." );
184
185
0
  for (uint32_t t = 0; t < NUM_PIC_TYPES; t++)
186
0
  {
187
0
    m_bufs[t].destroy();
188
0
  }
189
190
0
  if( cs )
191
0
  {
192
0
    cs->destroy();
193
0
    delete cs;
194
0
    cs = nullptr;
195
0
  }
196
197
0
#if  RECO_WHILE_PARSE
198
0
  ctuParsedBarrier.clear();
199
0
#endif
200
201
0
  clearSliceBuffer();
202
203
0
  SEI_internal::deleteSEIs( seiMessageList );
204
205
0
  subpicsCheckedDPH.clear();
206
207
0
  m_divTasksCounter     .clearException();
208
0
  m_ctuTaskCounter      .clearException();
209
0
  m_borderExtTaskCounter.clearException();
210
0
  m_copyWrapBufDone     .clearException();
211
0
  reconDone             .clearException();
212
0
  parseDone             .clearException();
213
0
#if RECO_WHILE_PARSE
214
0
  std::for_each( ctuParsedBarrier.begin(), ctuParsedBarrier.end(), []( auto& b ) { b.clearException(); } );
215
0
#endif
216
0
}
217
218
0
       PelBuf     Picture::getRecoBuf(const ComponentID compID, bool wrap)       { return getBuf(compID, wrap ? PIC_RECON_WRAP : PIC_RECONSTRUCTION); }
219
0
const CPelBuf     Picture::getRecoBuf(const ComponentID compID, bool wrap) const { return getBuf(compID, wrap ? PIC_RECON_WRAP : PIC_RECONSTRUCTION); }
220
0
       PelBuf     Picture::getRecoBuf(const CompArea &blk, bool wrap)            { return getBuf(blk,    wrap ? PIC_RECON_WRAP : PIC_RECONSTRUCTION); }
221
0
const CPelBuf     Picture::getRecoBuf(const CompArea &blk, bool wrap)      const { return getBuf(blk,    wrap ? PIC_RECON_WRAP : PIC_RECONSTRUCTION); }
222
0
       PelUnitBuf Picture::getRecoBuf(const UnitArea &unit, bool wrap)           { return getBuf(unit,   wrap ? PIC_RECON_WRAP : PIC_RECONSTRUCTION); }
223
0
const CPelUnitBuf Picture::getRecoBuf(const UnitArea &unit, bool wrap)     const { return getBuf(unit,   wrap ? PIC_RECON_WRAP : PIC_RECONSTRUCTION); }
224
0
       PelUnitBuf Picture::getRecoBuf( bool wrap )                               { return wrap ? m_bufs[PIC_RECON_WRAP] : m_bufs[PIC_RECONSTRUCTION]; }
225
0
const CPelUnitBuf Picture::getRecoBuf( bool wrap )                         const { return wrap ? m_bufs[PIC_RECON_WRAP] : m_bufs[PIC_RECONSTRUCTION]; }
226
227
Picture::Picture( bool enableOpt )
228
0
{
229
0
  paddPicBorderBot = paddPicBorderBotCore;
230
0
  paddPicBorderTop = paddPicBorderTopCore;
231
0
  paddPicBorderLeftRight = paddPicBorderLeftRightCore;
232
233
0
  if( enableOpt )
234
0
  {
235
#if ENABLE_SIMD_OPT_PICTURE && defined( TARGET_SIMD_X86 )
236
    initPictureX86();
237
#endif
238
#if ENABLE_SIMD_OPT_PICTURE && defined( TARGET_SIMD_ARM )
239
    initPictureARM();
240
#endif
241
0
  }
242
0
}
243
244
void Picture::finalInit( CUChunkCache* cuChunkCache, TUChunkCache* tuChunkCache, const SPS *sps, const PPS *pps, const std::shared_ptr<PicHeader>& ph, const APS* const alfApss[ALF_CTB_MAX_NUM_APS], const APS* lmcsAps, const APS* scalingListAps, bool phPSupdate )
245
0
{
246
0
  SEI_internal::deleteSEIs( seiMessageList );
247
0
  clearSliceBuffer();
248
249
0
  const ChromaFormat chromaFormatIDC = sps->getChromaFormatIdc();
250
0
  const int          iWidth          = pps->getPicWidthInLumaSamples();
251
0
  const int          iHeight         = pps->getPicHeightInLumaSamples();
252
253
0
  if( !cs )
254
0
  {
255
0
    cs = new CodingStructure( cuChunkCache, tuChunkCache );
256
0
    cs->create( chromaFormatIDC, Area( 0, 0, iWidth, iHeight ) );
257
0
  }
258
259
0
#if RECO_WHILE_PARSE
260
0
  if( ctuParsedBarrier.size() != pps->pcv->sizeInCtus )
261
0
  {
262
0
    ctuParsedBarrier = std::vector<Barrier>( pps->pcv->sizeInCtus );
263
0
  }
264
0
#endif
265
266
0
  parseDone   . lock();
267
0
  cs->picture   = this;
268
0
  cs->picHeader = ph;
269
0
  cs->pps       = pps->getSharedPtr();
270
0
  cs->sps       = sps->getSharedPtr();
271
0
  cs->pcv       = pps->pcv.get();
272
273
0
  if( phPSupdate )
274
0
  {
275
0
    ph->setSPSId         ( sps->getSPSId() );
276
0
    ph->setPPSId         ( pps->getPPSId() );
277
0
    ph->setLmcsAPS       ( lmcsAps        ? lmcsAps       ->getSharedPtr() : nullptr );
278
0
    ph->setScalingListAPS( scalingListAps ? scalingListAps->getSharedPtr() : nullptr );
279
0
  }
280
0
  nonReferencePictureFlag = ph->getNonReferencePictureFlag();
281
282
0
  for( int i = 0; i < ALF_CTB_MAX_NUM_APS; ++i )
283
0
  {
284
0
    cs->alfApss[i] = alfApss[i] ? alfApss[i]->getSharedPtr() : nullptr;
285
0
  }
286
0
  if( lmcsAps )
287
0
  {
288
0
    cs->lmcsAps = lmcsAps ? lmcsAps->getSharedPtr() : nullptr;
289
0
  }
290
291
0
  cs->allocTempInternals();
292
0
  cs->rebindPicBufs();
293
294
0
  if( sps->getIBCFlag() )
295
0
  {
296
0
    cs->initVIbcBuf( cs->pcv->heightInCtus, sps->getChromaFormatIdc(), sps->getMaxCUHeight() );
297
0
  }
298
299
0
  resetProcessingTime();
300
0
}
301
302
Slice* Picture::allocateNewSlice( Slice** pilot )
303
0
{
304
0
  if( pilot )
305
0
  {
306
0
    slices.push_back( *pilot );
307
0
    *pilot = new Slice;
308
0
    if( slices.size() >= 2 )
309
0
    {
310
0
      ( *pilot )->copySliceInfo( slices[slices.size() - 2] );
311
0
      ( *pilot )->initSlice();
312
0
    }
313
0
    ( *pilot )->setSPS( 0 );
314
0
    ( *pilot )->setPPS( 0 );
315
0
    ( *pilot )->setVPS( 0 );
316
0
    ( *pilot )->clearAlfAPSs();
317
0
  }
318
0
  else
319
0
  {
320
0
    slices.push_back( new Slice );
321
0
    if( slices.size() >= 2 )
322
0
    {
323
0
      slices.back()->copySliceInfo( slices[slices.size() - 2] );
324
0
      slices.back()->initSlice();
325
0
    }
326
0
  }
327
328
0
  Slice* slice = slices.back();
329
330
0
  slice->setPPS( cs->pps.get() );
331
0
  slice->setSPS( cs->sps.get() );
332
0
  slice->setVPS( cs->vps.get() );
333
0
  slice->setAlfApss( cs->alfApss );
334
0
  slice->setPic( this );
335
336
0
  return slice;
337
0
}
338
339
void Picture::clearSliceBuffer()
340
0
{
341
0
  for( auto &s: slices )
342
0
  {
343
0
    delete s;
344
0
  }
345
0
  slices.clear();
346
0
}
347
348
bool Picture::lastSliceOfPicPresent() const
349
0
{
350
0
  if( slices.empty() )
351
0
  {
352
0
    return false;
353
0
  }
354
0
  const Slice*   lastSlice      = slices.back();
355
0
  const unsigned lastCtuInSlice = lastSlice->getCtuAddrInSlice( lastSlice->getNumCtuInSlice() - 1 );
356
0
  return lastCtuInSlice == lastSlice->getPPS()->pcv->sizeInCtus - 1;
357
0
}
358
359
void Picture::waitForAllTasks()
360
0
{
361
0
  m_ctuTaskCounter.wait_nothrow();
362
0
  m_borderExtTaskCounter.wait_nothrow();
363
0
  m_divTasksCounter.wait_nothrow();   // this waits for the slice parsing and the finishPic Task
364
0
}
365
366
void Picture::ensureUsableAsRef()
367
0
{
368
0
#if RECO_WHILE_PARSE
369
0
  ctuParsedBarrier.clear();
370
0
#endif
371
0
  neededForOutput = false;
372
373
  // set referenced to true, because we don't know if it has been set correctly, but that way it will be available as a reference pic
374
0
  dpbReferenceMark = ShortTerm;
375
0
  stillReferenced  = true;
376
0
  isReferencePic   = true;
377
378
  // ensure cs->m_colMiMap is set to zero
379
0
  cs->initStructData();
380
381
0
  CHECK_FATAL( reconDone.hasException(), "to be usable as reference the picture should not have an Exception reconDone barrier" );
382
0
}
383
384
void Picture::fillGrey( const SPS* fallbackSPS )
385
0
{
386
0
  CHECK( !cs && !cs->sps && !fallbackSPS, "No SPS accessible" );
387
388
0
  const int bitDepth = cs && cs->sps ? cs->sps->getBitDepth() : fallbackSPS->getBitDepth();
389
  // fill in grey buffer for missing reference pictures (GDR or broken bitstream)
390
0
  const uint32_t yFill = 1 << ( bitDepth - 1 );
391
0
  const uint32_t cFill = 1 << ( bitDepth - 1 );
392
0
  getRecoBuf().Y().fill( yFill );
393
0
  getRecoBuf().Cb().fill( cFill );
394
0
  getRecoBuf().Cr().fill( cFill );
395
396
0
  progress = Picture::reconstructed;
397
0
  reconDone.unlock();
398
0
}
399
400
void Picture::extendPicBorder( bool top, bool bottom, bool leftrightT, bool leftrightB, ChannelType chType )
401
0
{
402
0
  if( cs->pps->getUseWrapAround() )
403
0
  {
404
0
    extendPicBorderWrap( top, bottom, leftrightT, leftrightB, chType );
405
0
  }
406
407
0
  extendPicBorderBuf( m_bufs[PIC_RECONSTRUCTION], top, bottom, leftrightT, leftrightB, chType );
408
0
}
409
410
void Picture::extendPicBorderWrap( bool top, bool bottom, bool leftrightT, bool leftrightB, ChannelType chType )
411
0
{
412
0
  for( int comp = 0; comp < getNumberValidComponents( cs->area.chromaFormat ); comp++ )
413
0
  {
414
0
    ComponentID compID = ComponentID( comp );
415
416
0
    if( chType != MAX_NUM_CHANNEL_TYPE && toChannelType( compID ) != chType )
417
0
      continue;
418
419
0
    PelBuf prw = m_bufs[PIC_RECON_WRAP].get( compID );
420
421
0
    const int xmargin = margin >> getComponentScaleX( compID, cs->area.chromaFormat );
422
0
    const int ymargin = margin >> getComponentScaleY( compID, cs->area.chromaFormat );
423
424
0
    int xoffset = cs->pps->getWrapAroundOffset() >> getComponentScaleX( compID, cs->area.chromaFormat );
425
0
    if( leftrightT )
426
0
    {
427
0
      Pel* piprw = prw.bufAt( 0, 1 );
428
429
0
      for( int y = 1; y < prw.height / 2; y++ )
430
0
      {
431
0
        for( int x = 0; x < xmargin; x++ )
432
0
        {
433
0
          if( x < xoffset )
434
0
          {
435
0
            piprw[-x - 1]        = piprw[-x - 1 + xoffset];
436
0
            piprw[prw.width + x] = piprw[prw.width + x - xoffset];
437
0
          }
438
0
          else
439
0
          {
440
0
            piprw[-x - 1]        = piprw[0];
441
0
            piprw[prw.width + x] = piprw[prw.width - 1];
442
0
          }
443
0
        }
444
0
        piprw += prw.stride;
445
0
      }
446
0
    }
447
0
    if( leftrightB )
448
0
    {
449
0
      Pel* piprw = prw.bufAt( 0, prw.height / 2 );
450
451
0
      for( int y = 1; y < prw.height / 2; y++ )
452
0
      {
453
0
        for( int x = 0; x < xmargin; x++ )
454
0
        {
455
0
          if( x < xoffset )
456
0
          {
457
0
            piprw[-x - 1]        = piprw[-x - 1 + xoffset];
458
0
            piprw[prw.width + x] = piprw[prw.width + x - xoffset];
459
0
          }
460
0
          else
461
0
          {
462
0
            piprw[-x - 1]        = piprw[0];
463
0
            piprw[prw.width + x] = piprw[prw.width - 1];
464
0
          }
465
0
        }
466
0
        piprw += prw.stride;
467
0
      }
468
0
    }
469
470
0
    if( bottom )
471
0
    {
472
0
      Pel* piprw = prw.bufAt( 0, prw.height - 1 );
473
474
0
      for( int x = 0; x < xmargin; x++ )
475
0
      {
476
0
        if( x < xoffset )
477
0
        {
478
0
          piprw[-x - 1]        = piprw[-x - 1 + xoffset];
479
0
          piprw[prw.width + x] = piprw[prw.width + x - xoffset];
480
0
        }
481
0
        else
482
0
        {
483
0
          piprw[-x - 1]        = piprw[0];
484
0
          piprw[prw.width + x] = piprw[prw.width - 1];
485
0
        }
486
0
      }
487
0
      piprw -= xmargin;
488
      // pi is now the (-marginX, height-1)
489
0
      for( int y = 0; y < ymargin; y++ )
490
0
      {
491
0
        ::memcpy( piprw + ( y + 1 ) * prw.stride, piprw, sizeof( Pel ) * ( prw.width + ( xmargin << 1 ) ) );
492
0
      }
493
0
    }
494
0
    if( top )
495
0
    {
496
0
      Pel* piprw = prw.bufAt( 0, 0 );
497
498
0
      for( int x = 0; x < xmargin; x++ )
499
0
      {
500
0
        if( x < xoffset )
501
0
        {
502
0
          piprw[-x - 1]        = piprw[-x - 1 + xoffset];
503
0
          piprw[prw.width + x] = piprw[prw.width + x - xoffset];
504
0
        }
505
0
        else
506
0
        {
507
0
          piprw[-x - 1]        = piprw[0];
508
0
          piprw[prw.width + x] = piprw[prw.width - 1];
509
0
        }
510
0
      }
511
0
      piprw -= xmargin;
512
      // pi is now (-marginX, 0)
513
0
      for( int y = 0; y < ymargin; y++ )
514
0
      {
515
0
        ::memcpy( piprw - ( y + 1 ) * prw.stride, piprw, sizeof( Pel ) * ( prw.width + ( xmargin << 1 ) ) );
516
0
      }
517
0
    }
518
0
  }
519
0
}
520
521
void Picture::extendPicBorderBuf( PelStorage& storage, bool top, bool bottom, bool leftrightT, bool leftrightB, ChannelType chType )
522
0
{
523
0
  for( int comp = 0; comp < getNumberValidComponents( cs->area.chromaFormat ); comp++ )
524
0
  {
525
0
    ComponentID compID = ComponentID( comp );
526
527
0
    if( chType != MAX_NUM_CHANNEL_TYPE && toChannelType( compID ) != chType )
528
0
      continue;
529
530
0
    PelBuf p = storage.bufs[compID];
531
532
0
    const int xmargin = margin >> getComponentScaleX( compID, cs->area.chromaFormat );
533
0
    const int ymargin = margin >> getComponentScaleY( compID, cs->area.chromaFormat );
534
535
0
    if( leftrightT )
536
0
    {
537
0
      Pel* pi = p.bufAt( 0, 1 );
538
0
      paddPicBorderLeftRight( pi, p.stride, p.width, xmargin, 1 + p.height / 2 );
539
0
    }
540
0
    if( leftrightB )
541
0
    {
542
0
      Pel* pi = p.bufAt( 0, p.height / 2 );
543
0
      paddPicBorderLeftRight( pi, p.stride, p.width, xmargin, 1 + p.height / 2 );
544
0
    }
545
0
    if( bottom )
546
0
    {
547
      // pi is now the (0,height) (bottom left of image within bigger picture
548
0
      Pel* pi = p.bufAt( 0, p.height - 1 );
549
0
      paddPicBorderBot( pi, p.stride, p.width, xmargin, ymargin );
550
0
    }
551
0
    if( top )
552
0
    {
553
      // pi is now the (0,height) (bottom left of image within bigger picture
554
0
      Pel* pi = p.bufAt( 0, 0 );
555
0
      paddPicBorderTop( pi, p.stride, p.width, xmargin, ymargin );
556
0
    }
557
0
  }
558
0
}
559
560
PelBuf Picture::getBuf( const CompArea &blk, const PictureType &type )
561
0
{
562
0
  if( !blk.valid() )
563
0
  {
564
0
    return PelBuf();
565
0
  }
566
567
0
  return m_bufs[type].getBuf( blk );
568
0
}
569
570
const CPelBuf Picture::getBuf( const CompArea &blk, const PictureType &type ) const
571
0
{
572
0
  if( !blk.valid() )
573
0
  {
574
0
    return PelBuf();
575
0
  }
576
577
0
  return m_bufs[type].getBuf( blk );
578
0
}
579
580
PelUnitBuf Picture::getBuf( const UnitArea &unit, const PictureType &type )
581
0
{
582
0
  if( chromaFormat == CHROMA_400 )
583
0
  {
584
0
    return PelUnitBuf( chromaFormat, getBuf( unit.Y(), type ) );
585
0
  }
586
0
  else
587
0
  {
588
0
    return PelUnitBuf( chromaFormat, getBuf( unit.Y(), type ), getBuf( unit.Cb(), type ), getBuf( unit.Cr(), type ) );
589
0
  }
590
0
}
591
592
const CPelUnitBuf Picture::getBuf( const UnitArea &unit, const PictureType &type ) const
593
0
{
594
0
  if( chromaFormat == CHROMA_400 )
595
0
  {
596
0
    return CPelUnitBuf( chromaFormat, getBuf( unit.Y(), type ) );
597
0
  }
598
0
  else
599
0
  {
600
0
    return CPelUnitBuf( chromaFormat, getBuf( unit.Y(), type ), getBuf( unit.Cb(), type ), getBuf( unit.Cr(), type ) );
601
0
  }
602
0
}
603
604
Pel* Picture::getOrigin( const PictureType &type, const ComponentID compID ) const
605
0
{
606
0
  return m_bufs[type].getOrigin( compID );
607
0
}
608
609
PelBuf Picture::getOriginBuf( const PictureType &type, const ComponentID compID )
610
0
{
611
0
  return m_bufs[type].getOriginBuf( compID );
612
0
}
613
614
Size Picture::getBufSize( const PictureType &type, const ComponentID compID ) const
615
0
{
616
0
  return m_bufs[type].getBufSize( compID );
617
0
}
618
619
void* Picture::getBufAllocator( const ComponentID compID )
620
0
{
621
0
  return m_bufs[PIC_RECONSTRUCTION].getBufAllocator( compID );
622
0
}
623
624
bool Picture::isExternAllocator() const
625
0
{
626
0
  return m_bufs[PIC_RECONSTRUCTION].isExternAllocator();
627
0
}
628
629
const UserAllocator* Picture::getUserAllocator() const
630
0
{
631
0
  return m_bufs[PIC_RECONSTRUCTION].getUserAllocator();
632
0
}
633
634
std::vector<Picture*> Picture::buildAllRefPicsVec()
635
0
{
636
0
  std::vector<Picture*> refPics;
637
0
  for( const Slice* slice : this->slices )
638
0
  {
639
0
    if( slice->isIntra() )
640
0
    {
641
0
      continue;
642
0
    }
643
644
0
    for( int iDir = REF_PIC_LIST_0; iDir < NUM_REF_PIC_LIST_01; ++iDir )
645
0
    {
646
0
      for( int iRefIdx = 0; iRefIdx < slice->getNumRefIdx( ( RefPicList ) iDir ); iRefIdx++ )
647
0
      {
648
0
        Picture* refPic = slice->getNoConstRefPic( ( RefPicList ) iDir, iRefIdx );
649
0
        if( std::find( refPics.cbegin(), refPics.cend(), refPic ) == refPics.cend() )
650
0
        {
651
0
          refPics.push_back( refPic );
652
0
        }
653
0
      }
654
0
    }
655
0
  }
656
657
0
  return refPics;
658
0
}
659
660
void Picture::startProcessingTimer()
661
0
{
662
0
  std::lock_guard<std::mutex> lock( m_timerMutex );
663
0
  m_processingStartTime = std::chrono::steady_clock::now();
664
0
}
665
666
void Picture::stopProcessingTimer()
667
0
{
668
0
  std::lock_guard<std::mutex> lock( m_timerMutex );
669
0
  auto endTime = std::chrono::steady_clock::now();
670
0
  m_dProcessingTime += std::chrono::duration<double>(endTime - m_processingStartTime).count();
671
0
}
672
673
}   // namespace vvdec