Coverage Report

Created: 2026-08-31 06:22

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/work/vvdec/source/Lib/DecoderLib/DecLibParser.cpp
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1
/* -----------------------------------------------------------------------------
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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.
6
7
The Clear BSD License
8
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,
13
are permitted (subject to the limitations in the disclaimer below) provided that
14
the following conditions are met:
15
16
     * Redistributions of source code must retain the above copyright notice,
17
     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
21
     documentation and/or other materials provided with the distribution.
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23
     * 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
25
     software without specific prior written permission.
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27
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
31
PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR
32
CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL,
33
EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO,
34
PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR
35
BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER
36
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
38
POSSIBILITY OF SUCH DAMAGE.
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------------------------------------------------------------------------------------------- */
42
43
#include "DecLib.h"
44
#include "DecLibParser.h"
45
#include "NALread.h"
46
47
#include "CommonLib/dtrace_next.h"
48
49
#include "UnitTools.h"
50
#include "Utilities/ThreadPool.h"
51
52
#include <unordered_map>
53
#include <utility>
54
55
namespace vvdec
56
{
57
template<class TArr, class TElem = decltype( std::declval<TArr>()[0] )>
58
void fill_array( TArr& array, const TElem& val )
59
2.66k
{
60
2.66k
  std::fill( std::begin( array ), std::end( array ), val );
61
2.66k
}
void vvdec::fill_array<vvdec::NalUnitType [64], vvdec::NalUnitType>(vvdec::NalUnitType (&) [64], vvdec::NalUnitType const&)
Line
Count
Source
59
667
{
60
667
  std::fill( std::begin( array ), std::end( array ), val );
61
667
}
void vvdec::fill_array<int [64], int>(int (&) [64], int const&)
Line
Count
Source
59
1.33k
{
60
1.33k
  std::fill( std::begin( array ), std::end( array ), val );
61
1.33k
}
void vvdec::fill_array<bool [64], bool>(bool (&) [64], bool const&)
Line
Count
Source
59
667
{
60
667
  std::fill( std::begin( array ), std::end( array ), val );
61
667
}
62
63
#ifdef TRACE_ENABLE_ITT
64
extern __itt_domain* itt_domain_prs;
65
extern __itt_domain* itt_domain_oth;
66
67
extern __itt_string_handle* itt_handle_parse;
68
extern __itt_string_handle* itt_handle_start;
69
70
#define ITT_TASKSTART( d, t ) __itt_task_begin( ( d ), __itt_null, __itt_null, ( t ) )
71
#define ITT_TASKEND( d, t )   __itt_task_end  ( ( d ) )
72
#else
73
#define ITT_TASKSTART( d, t )
74
#define ITT_TASKEND( d, t )
75
#endif
76
77
static const int INIT_POC = -MAX_INT;
78
79
DecLibParser::~DecLibParser()
80
1.33k
{
81
1.33k
  m_prefixSEINALUs.clear();
82
83
1.33k
  destroy();
84
1.33k
}
85
86
void DecLibParser::create( ThreadPool* tp, int parserFrameDelay, int numReconInst, int numDecThreads, ErrHandlingFlags errHandlingFlags )
87
667
{
88
667
  m_threadPool        = tp;
89
667
  m_parseFrameDelay   = parserFrameDelay;
90
667
  m_numDecThreads     = numDecThreads;
91
667
  m_maxPicReconSkip   = numReconInst - 1;
92
667
  m_errHandlingFlags  = errHandlingFlags;
93
94
667
  m_apcSlicePilot     = new Slice;
95
667
  m_uiSliceSegmentIdx = 0;
96
97
667
  fill_array( m_associatedIRAPType,     NAL_UNIT_INVALID );
98
667
  fill_array( m_pocCRA,                 INIT_POC );
99
667
  fill_array( m_gdrRecoveryPointPocVal, INIT_POC );
100
667
  fill_array( m_gdrRecovered,           false );
101
102
667
  m_cSliceDecoder.setContextStateVec( numDecThreads );
103
667
}
104
105
void DecLibParser::destroy()
106
2.00k
{
107
2.00k
  SEI_internal::deleteSEIs( m_seiMessageList );
108
109
2.00k
  m_threadPool    = nullptr;
110
111
2.00k
  delete m_apcSlicePilot;
112
2.00k
  m_apcSlicePilot = nullptr;
113
  
114
2.00k
  m_picHeader.reset();
115
  
116
2.00k
  m_cSliceDecoder.destroy();
117
  
118
2.00k
  if( m_dci )
119
30
  {
120
30
    delete m_dci;
121
30
    m_dci = NULL;
122
30
  }
123
2.00k
}
124
125
bool DecLibParser::parse( InputNALUnit& nalu )
126
1.37k
{
127
1.37k
  if( !nalu.isVcl() )
128
1.33k
  {
129
1.33k
    if( nalu.m_nalUnitType == NAL_UNIT_SUFFIX_APS || nalu.m_nalUnitType == NAL_UNIT_SUFFIX_SEI )
130
98
    {
131
98
      if( m_pcParsePic )
132
0
      {
133
0
        m_pcParsePic->bits += nalu.m_bits;
134
0
      }
135
98
    }
136
1.24k
    else
137
1.24k
    {
138
1.24k
      m_nonVCLbits += nalu.m_bits;
139
1.24k
    }
140
1.33k
  }
141
142
1.37k
  GCC_EXTRA_WARNING_switch_enum;
143
1.37k
  switch( nalu.m_nalUnitType )
144
1.37k
  {
145
2
  case NAL_UNIT_CODED_SLICE_TRAIL:
146
6
  case NAL_UNIT_CODED_SLICE_STSA:
147
8
  case NAL_UNIT_CODED_SLICE_RADL:
148
10
  case NAL_UNIT_CODED_SLICE_RASL:
149
12
  case NAL_UNIT_CODED_SLICE_IDR_W_RADL:
150
16
  case NAL_UNIT_CODED_SLICE_IDR_N_LP:
151
18
  case NAL_UNIT_CODED_SLICE_CRA:
152
18
  case NAL_UNIT_CODED_SLICE_GDR:
153
18
    try
154
18
    {
155
18
      if( !xDecodeSliceHead( nalu ) )
156
0
      {
157
0
        return false;
158
0
      }
159
18
      if( !xDecodeSliceMain( nalu ) || m_parseFrameList.size() <= m_parseFrameDelay )
160
0
      {
161
0
        return false;
162
0
      }
163
18
      return true;
164
18
    }
165
18
    catch( ... )
166
18
    {
167
18
      if( m_pcParsePic )
168
0
      {
169
0
        m_pcParsePic->error              = true;
170
0
        m_pcParsePic->exceptionThrownOut = true;
171
0
        if( m_pcParsePic->parseDone.hasException() )   // this happens only in the single-threaded case.
172
0
        {                                              // multithreaded mode should see exceptions from the parse tasks later
173
0
          m_pcParsePic->parseDone.clearException();
174
0
        }
175
0
      }
176
177
18
      std::rethrow_exception( std::current_exception() );
178
18
    }
179
180
8
  case NAL_UNIT_OPI:
181
    // NOT IMPLEMENTED
182
8
    return false;
183
184
32
  case NAL_UNIT_DCI:
185
32
    xDecodeDCI( nalu );
186
32
    return false;
187
188
16
  case NAL_UNIT_VPS:
189
16
    xDecodeVPS( nalu );
190
    // m_vps->m_iTargetLayer = iTargetOlsIdx;
191
16
    return false;
192
193
372
  case NAL_UNIT_SPS:
194
372
    xDecodeSPS( nalu );
195
372
    return false;
196
197
2
  case NAL_UNIT_PPS:
198
2
    xDecodePPS( nalu );
199
2
    return false;
200
201
82
  case NAL_UNIT_PREFIX_APS:
202
172
  case NAL_UNIT_SUFFIX_APS:
203
172
    xDecodeAPS( nalu );
204
172
    return false;
205
206
2
  case NAL_UNIT_PH:
207
2
    xDecodePicHeader( nalu );
208
2
    return false;
209
210
2
  case NAL_UNIT_ACCESS_UNIT_DELIMITER:
211
2
  {
212
2
    AUDReader audReader;
213
2
    uint32_t  picType;
214
2
    audReader.parseAccessUnitDelimiter( &( nalu.getBitstream() ), picType );
215
2
    msg( VERBOSE, "Found NAL_UNIT_ACCESS_UNIT_DELIMITER\n" );
216
2
    return false;
217
82
  }
218
219
664
  case NAL_UNIT_EOS:
220
664
    m_associatedIRAPType[nalu.m_nuhLayerId]     = NAL_UNIT_INVALID;
221
664
    m_pocCRA[nalu.m_nuhLayerId]                 = INIT_POC;
222
664
    m_gdrRecoveryPointPocVal[nalu.m_nuhLayerId] = INIT_POC;
223
664
    m_gdrRecovered[nalu.m_nuhLayerId]           = false;
224
664
    m_pocRandomAccess                           = MAX_INT;
225
664
    m_prevPOC                                   = MAX_INT;
226
664
    m_prevSliceSkipped                          = false;
227
664
    m_skippedPOC                                = 0;
228
664
    m_bFirstSliceInSequence[nalu.m_nuhLayerId]  = true;
229
664
    m_bFirstSliceInPicture                      = true;
230
664
    m_picListManager.restart();
231
664
    return false;
232
233
4
  case NAL_UNIT_EOB:
234
4
    return false;
235
236
4
  case NAL_UNIT_PREFIX_SEI:
237
    // Buffer up prefix SEI messages until SPS of associated VCL is known.
238
4
    m_prefixSEINALUs.emplace_back( nalu );
239
4
    m_pictureSeiNalus.emplace_back( std::move( nalu ) );
240
4
    return false;
241
242
8
  case NAL_UNIT_SUFFIX_SEI:
243
8
    if( m_pcParsePic /*&& !m_pcParsePic->wasLost*/ )
244
0
    {
245
0
      m_pictureSeiNalus.emplace_back( nalu );
246
0
      const SPS* sps = m_parameterSetManager.getActiveSPS();
247
0
      const VPS* vps = m_parameterSetManager.getVPS( sps->getVPSId() );
248
0
      m_seiReader.parseSEImessage( &( nalu.getBitstream() ), m_pcParsePic->seiMessageList, nalu.m_nalUnitType, nalu.m_nuhLayerId, nalu.m_temporalId, vps, sps, m_HRD, m_pDecodedSEIOutputStream );
249
250
0
      if( m_parseFrameDelay == 0 && !m_pcParsePic->error )   // if m_parseFrameDelay > 0, it has to be done in finishPicture()
251
0
      {
252
        // if parallel parsing is disabled, wait for the picture to finish
253
0
        if( m_threadPool->numThreads() == 0 )
254
0
        {
255
0
          m_threadPool->processTasksOnMainThread();
256
0
        }
257
0
        else
258
0
        {
259
0
          m_pcParsePic->reconDone.wait();
260
0
        }
261
0
        m_decLib.checkPictureHashSEI( m_pcParsePic );
262
0
      }
263
0
    }
264
8
    else
265
8
    {
266
8
      msg( NOTICE, "Received suffix SEI but no picture currently active.\n" );
267
8
    }
268
8
    return false;
269
270
14
  case NAL_UNIT_FD:
271
14
    return false;
272
273
6
  case NAL_UNIT_RESERVED_VCL_4:
274
16
  case NAL_UNIT_RESERVED_VCL_5:
275
20
  case NAL_UNIT_RESERVED_VCL_6:
276
22
  case NAL_UNIT_RESERVED_IRAP_VCL_11:
277
22
    msg( NOTICE, "Found reserved VCL NAL unit.\n" );
278
22
    xParsePrefixSEIsForUnknownVCLNal();
279
22
    return false;
280
2
  case NAL_UNIT_RESERVED_NVCL_26:
281
4
  case NAL_UNIT_RESERVED_NVCL_27:
282
4
    msg( NOTICE, "Found reserved NAL unit.\n" );
283
4
    return false;
284
2
  case NAL_UNIT_UNSPECIFIED_28:
285
4
  case NAL_UNIT_UNSPECIFIED_29:
286
18
  case NAL_UNIT_UNSPECIFIED_30:
287
34
  case NAL_UNIT_UNSPECIFIED_31:
288
34
    msg( NOTICE, "Found unspecified NAL unit.\n" );
289
34
    return false;
290
0
  case NAL_UNIT_INVALID:
291
0
  default:
292
0
    THROW_RECOVERABLE( "Invalid NAL unit type" );
293
0
    break;
294
1.37k
  }
295
0
  GCC_WARNING_RESET;
296
297
0
  return false;
298
1.37k
}
299
300
Picture* DecLibParser::getNextDecodablePicture()
301
648
{
302
648
  if( m_parseFrameList.empty() )
303
648
  {
304
648
    return nullptr;
305
648
  }
306
307
0
  if( m_threadPool->numThreads() == 0 || m_parseFrameDelay == 0 )
308
0
  {
309
    // adhere to strict decoding order if running singlethreaded
310
0
    Picture * pic = m_parseFrameList.front();
311
0
    m_parseFrameList.pop_front();
312
0
    return pic;
313
0
  }
314
315
0
  if( m_parseFrameList.front()->skippedDecCount >= MAX_OUT_OF_ORDER_PICS || m_parseFrameList.front()->error )
316
0
  {
317
0
    Picture* pic = m_parseFrameList.front();
318
0
    m_parseFrameList.pop_front();
319
0
    return pic;
320
0
  }
321
322
  // try to find next picture, that is parsed and has all reference pictures decoded
323
0
  for( auto picIt = m_parseFrameList.begin(); picIt != m_parseFrameList.end(); ++picIt )
324
0
  {
325
0
    Picture* pic = *picIt;
326
327
0
    if( pic->parseDone.getState() != Barrier::unlocked )   // this doesn't throw if the barrier has an exception set
328
0
      continue;
329
330
0
    if( pic->wasLost || pic->error )
331
0
      continue;
332
333
0
    bool allRefPicsDone = true;
334
0
    for( const Slice* slice: pic->slices )
335
0
    {
336
0
      if( slice->isIntra() )
337
0
      {
338
0
        continue;
339
0
      }
340
0
      for( int iDir = REF_PIC_LIST_0; iDir < NUM_REF_PIC_LIST_01 && allRefPicsDone; ++iDir )
341
0
      {
342
0
        for( int iRefIdx = 0; iRefIdx < slice->getNumRefIdx( (RefPicList) iDir ) && allRefPicsDone; iRefIdx++ )
343
0
        {
344
0
          const Picture* refPic = slice->getRefPic( (RefPicList) iDir, iRefIdx );
345
0
          if( refPic->progress < Picture::reconstructed )
346
0
          {
347
0
            allRefPicsDone = false;
348
0
            break;
349
0
          }
350
0
        }
351
0
      }
352
0
    }
353
354
0
    if( allRefPicsDone )
355
0
    {
356
      // increase skip count for all previous pictures
357
0
      for( auto& skipped: PicListRange{ m_parseFrameList.begin(), picIt } )
358
0
      {
359
0
        skipped->skippedDecCount++;
360
0
      }
361
362
0
      m_parseFrameList.erase( picIt );
363
0
      return pic;
364
0
    }
365
366
//    if( pic->getTLayer() < m_parseFrameList.front()->getTLayer() )
367
//    {
368
//      break;
369
//    }
370
0
  }
371
372
  // if no picture has all reference-pictures decoded, use next pic in (regular) decoding order.
373
0
  Picture * pic = m_parseFrameList.front();
374
0
  m_parseFrameList.pop_front();
375
0
  return pic;
376
0
}
377
378
void DecLibParser::checkAPSInPictureUnit()
379
0
{
380
0
  bool firstVCLFound  = false;
381
0
  bool suffixAPSFound = false;
382
383
0
  for( auto &nalu : m_pictureUnitNals )
384
0
  {
385
0
    if( NALUnit::isVclNalUnitType(nalu) )
386
0
    {
387
0
      firstVCLFound = true;
388
0
      CHECK( suffixAPSFound, "When any suffix APS NAL units are present in a PU, they shall follow the last VCL unit of the PU" );
389
0
    }
390
0
    else if( nalu == NAL_UNIT_PREFIX_APS )
391
0
    {
392
0
      CHECK( firstVCLFound, "When any prefix APS NAL units are present in a PU, they shall precede the first VCL unit of the PU");
393
0
    }
394
0
    else if( nalu == NAL_UNIT_SUFFIX_APS )
395
0
    {
396
0
      suffixAPSFound = true;
397
0
    }
398
0
  }
399
0
}
400
401
bool DecLibParser::xDecodeSliceHead( InputNALUnit& nalu )
402
18
{
403
  // all slices for the previous picture have been parsed
404
18
  if( m_pcParsePic && m_pcParsePic->lastSliceOfPicPresent() )
405
0
  {
406
0
    m_pcParsePic = nullptr;
407
0
  }
408
409
18
  m_apcSlicePilot->initSlice(); // the slice pilot is an object to prepare for a new slice
410
                                // it is not associated with picture, sps or pps structures.
411
412
18
  m_apcSlicePilot->setNalUnitType   ( nalu.m_nalUnitType );
413
18
  m_apcSlicePilot->setNalUnitLayerId( nalu.m_nuhLayerId  );
414
18
  m_apcSlicePilot->setTLayer        ( nalu.m_temporalId  );
415
416
18
  m_HLSReader.setBitstream( &nalu.getBitstream() );
417
418
18
  m_bFirstSliceInPicture = true;  // set for now, will be set correctly in parseSliceHeader
419
18
  m_HLSReader.parseSliceHeader( m_apcSlicePilot, m_picHeader, &m_parameterSetManager, m_prevTid0POC, m_bFirstSliceInPicture );
420
421
18
  CHECK( m_bFirstSliceInPicture != ( m_apcSlicePilot->getCtuAddrInSlice( 0 ) == 0 ), "first slice in picture should start at CTU-addr 0" );
422
423
18
  if( m_bFirstSliceInPicture )
424
0
  {
425
0
    m_uiSliceSegmentIdx = 0;
426
0
    m_apcSlicePilot->setPicHeader   ( m_picHeader.get() );
427
0
  }
428
18
  else // if it turns out, this was not the first slice in the picture, we need to parse the header again
429
18
  {
430
18
    m_uiSliceSegmentIdx++;
431
18
    CHECK( !m_pcParsePic, "m_pcParsePic should be initialized, when this is not the first slice in the picture" );
432
18
    CHECK( m_pcParsePic->slices.size() <= m_uiSliceSegmentIdx - 1 || m_pcParsePic->slices[m_uiSliceSegmentIdx - 1] == nullptr, "can't access previous slice" );
433
18
    CHECK( !m_pcParsePic->getMixedNaluTypesInPicFlag() && nalu.m_nalUnitType != m_pcParsePic->slices[m_uiSliceSegmentIdx - 1]->getNalUnitType(),
434
18
           "The value of NAL unit type shall be the same for all coded slice NAL units of a picture if pps_mixed_nalu_types_in_pic_flag is not set" );
435
436
18
    m_apcSlicePilot->copySliceInfo( m_pcParsePic->slices[m_uiSliceSegmentIdx - 1] );
437
438
18
    m_apcSlicePilot->setNalUnitType   ( nalu.m_nalUnitType );
439
18
    m_apcSlicePilot->setNalUnitLayerId( nalu.m_nuhLayerId );
440
18
    m_apcSlicePilot->setTLayer        ( nalu.m_temporalId );
441
442
18
    nalu.getBitstream().resetToStart();
443
18
    nalu.readNalUnitHeader();
444
18
    m_HLSReader.setBitstream        ( &nalu.getBitstream() );
445
446
18
    m_HLSReader.parseSliceHeader( m_apcSlicePilot, m_picHeader, &m_parameterSetManager, m_prevTid0POC, m_bFirstSliceInPicture );
447
18
  }
448
449
18
  const PPS* pps = static_cast<const ParameterSetManager&>( m_parameterSetManager ).getPPS( m_apcSlicePilot->getPicHeader()->getPPSId() );
450
18
  CHECK( pps == 0, "No PPS present" );
451
18
  const SPS* sps = static_cast<const ParameterSetManager&>( m_parameterSetManager ).getSPS( pps->getSPSId() );
452
18
  CHECK( sps == 0, "No SPS present" );
453
18
  const VPS* vps = static_cast<const ParameterSetManager&>( m_parameterSetManager ).getVPS( sps->getVPSId() );
454
18
  CHECK( sps->getVPSId() > 0 && vps == 0, "Invalid VPS" );
455
18
  if( sps->getVPSId() == 0 && m_prevLayerID != MAX_INT )
456
0
  {
457
0
    CHECK( m_prevLayerID != nalu.m_nuhLayerId, "All VCL NAL unit in the CVS shall have the same value of nuh_layer_id "
458
0
                                                           "when sps_video_parameter_set_id is equal to 0" );
459
0
  }
460
461
18
  CHECK( vps && !vps->getIndependentLayerFlag( nalu.m_nuhLayerId ), "Decoding of dependent layers not implemented. Dependent layer POC derivation was here." );
462
463
  // update independent slice index
464
18
  m_apcSlicePilot->setIndependentSliceIdx( m_uiSliceSegmentIdx );
465
466
18
  DTRACE_UPDATE( g_trace_ctx, std::make_pair( "poc", m_apcSlicePilot->getPOC() ) );
467
468
469
18
  if( m_bFirstSliceInPicture )
470
0
  {
471
0
    const auto pictureType = m_apcSlicePilot->getNalUnitType();
472
473
0
    if( !pps->getMixedNaluTypesInPicFlag()
474
0
        && ( pictureType == NAL_UNIT_CODED_SLICE_IDR_W_RADL
475
0
             || pictureType == NAL_UNIT_CODED_SLICE_IDR_N_LP
476
0
             || pictureType == NAL_UNIT_CODED_SLICE_CRA
477
0
             || pictureType == NAL_UNIT_CODED_SLICE_GDR ) )
478
0
    {
479
0
      m_pocCRA            [nalu.m_nuhLayerId] = m_apcSlicePilot->getPOC();
480
0
      m_associatedIRAPType[nalu.m_nuhLayerId] = pictureType;
481
0
    }
482
0
  }
483
484
18
  xUpdatePreviousTid0POC( m_apcSlicePilot );
485
486
18
  m_apcSlicePilot->setAssociatedIRAPPOC ( m_pocCRA            [nalu.m_nuhLayerId] );
487
18
  m_apcSlicePilot->setAssociatedIRAPType( m_associatedIRAPType[nalu.m_nuhLayerId] );
488
489
18
  if( m_apcSlicePilot->getRapPicFlag() || m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_GDR )
490
0
  {
491
    // Derive NoOutputBeforeRecoveryFlag
492
0
    if( !pps->getMixedNaluTypesInPicFlag() )
493
0
    {
494
0
      if( m_bFirstSliceInSequence[nalu.m_nuhLayerId] )
495
0
      {
496
0
        m_picHeader->setNoOutputBeforeRecoveryFlag( true );
497
0
      }
498
0
      else if( m_apcSlicePilot->getIdrPicFlag() )
499
0
      {
500
0
        m_picHeader->setNoOutputBeforeRecoveryFlag( true );
501
0
      }
502
0
      else if( m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_CRA )
503
0
      {
504
0
        m_picHeader->setNoOutputBeforeRecoveryFlag( m_picHeader->getHandleCraAsCvsStartFlag() );
505
0
      }
506
0
      else if( m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_GDR )
507
0
      {
508
0
        m_picHeader->setNoOutputBeforeRecoveryFlag( m_picHeader->getHandleGdrAsCvsStartFlag() );
509
0
      }
510
0
    }
511
0
    else
512
0
    {
513
0
      m_picHeader->setNoOutputBeforeRecoveryFlag( false );
514
0
    }
515
516
0
    if( m_apcSlicePilot->isCRAorGDR() )
517
0
    {
518
0
      m_lastNoOutputBeforeRecoveryFlag[nalu.m_nuhLayerId] = m_picHeader->getNoOutputBeforeRecoveryFlag();
519
0
    }
520
521
    // the inference for NoOutputOfPriorPicsFlag
522
0
    if( m_apcSlicePilot->getNoOutputOfPriorPicsFlag() )
523
0
    {
524
0
      m_lastPOCNoOutputPriorPics = m_apcSlicePilot->getPOC();
525
0
      m_isNoOutputPriorPics      = true;
526
0
    }
527
0
    else
528
0
    {
529
0
      m_isNoOutputPriorPics = false;
530
0
    }
531
0
  }
532
533
18
#if !DISABLE_CHECK_NO_OUTPUT_PRIOR_PICS_FLAG
534
18
  if( m_bFirstSliceInPicture && m_apcSlicePilot->getPOC() != m_prevPOC
535
0
      && ( m_apcSlicePilot->getRapPicFlag() || m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_GDR )
536
0
      && m_picHeader->getNoOutputBeforeRecoveryFlag()
537
0
      && getNoOutputPriorPicsFlag() )
538
0
  {
539
0
    checkNoOutputPriorPics();
540
0
    setNoOutputPriorPicsFlag( false );
541
0
  }
542
18
#endif
543
544
545
  //For inference of PicOutputFlag
546
18
  if( !pps->getMixedNaluTypesInPicFlag() && ( m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_RASL ) )
547
0
  {
548
0
    if( m_lastNoOutputBeforeRecoveryFlag[nalu.m_nuhLayerId] )
549
0
    {
550
0
      m_picHeader->setPicOutputFlag( false );
551
0
    }
552
0
  }
553
554
18
  if( sps->getVPSId() > 0 )
555
0
  {
556
0
    const VPS *vps = m_parameterSetManager.getVPS( sps->getVPSId() );
557
0
    CHECK( vps == 0, "No VPS present" );
558
0
    if( ( vps->getOlsModeIdc() == 0
559
0
          && vps->getGeneralLayerIdx( nalu.m_nuhLayerId ) < ( vps->getMaxLayers() - 1 )
560
0
          && vps->getOlsOutputLayerFlag( vps->m_iTargetLayer, vps->getMaxLayers() - 1 ) == 1 )
561
0
        || ( vps->getOlsModeIdc() == 2
562
0
             && vps->getOlsOutputLayerFlag( vps->m_iTargetLayer, vps->getGeneralLayerIdx( nalu.m_nuhLayerId ) ) == 0 ) )
563
0
    {
564
0
      m_picHeader->setPicOutputFlag( false );
565
0
    }
566
0
  }
567
568
  //Reset POC MSB when CRA or GDR has NoOutputBeforeRecoveryFlag equal to 1
569
18
  if( !pps->getMixedNaluTypesInPicFlag() && m_apcSlicePilot->isCRAorGDR() && m_lastNoOutputBeforeRecoveryFlag[nalu.m_nuhLayerId] )
570
0
  {
571
0
    int iMaxPOClsb = 1 << sps->getBitsForPOC();
572
0
    m_apcSlicePilot->setPOC( m_apcSlicePilot->getPOC() & ( iMaxPOClsb - 1 ) );
573
0
    xUpdatePreviousTid0POC ( m_apcSlicePilot );
574
0
    m_lastPOCNoOutputPriorPics = m_apcSlicePilot->getPOC();
575
0
  }
576
577
  // Skip pictures due to random access
578
18
  if( isRandomAccessSkipPicture() )
579
0
  {
580
0
    m_prevSliceSkipped = true;
581
0
    m_skippedPOC       = m_apcSlicePilot->getPOC();
582
0
    msg( VERBOSE, "POC %i: RASL not decodable\n", m_skippedPOC );
583
0
    return false;
584
0
  }
585
586
  // clear previous slice skipped flag
587
18
  m_prevSliceSkipped = false;
588
589
  //we should only get a different poc for a new picture (with CTU address==0)
590
18
  if(  m_apcSlicePilot->getPOC() != m_prevPOC
591
0
   && !m_bFirstSliceInSequence[nalu.m_nuhLayerId]
592
0
   &&  m_apcSlicePilot->getFirstCtuRsAddrInSlice() != 0 )
593
0
  {
594
0
    msg( WARNING, "Warning, the first slice of a picture might have been lost!\n");
595
0
  }
596
597
18
  m_prevLayerID = nalu.m_nuhLayerId;
598
599
  //detect lost reference picture and insert copy of earlier frame.
600
18
  if( m_apcSlicePilot->getSliceType() != I_SLICE )
601
0
  {
602
0
    for( const auto rplIdx: { REF_PIC_LIST_0, REF_PIC_LIST_1 } )
603
0
    {
604
0
      const auto* rpl = m_apcSlicePilot->getRPL( rplIdx );
605
606
0
      int missingPoc         = MAX_INT;
607
0
      int missingRefPicIndex = 0;
608
0
      while( !m_apcSlicePilot->checkThatAllRefPicsAreAvailable( m_dpbReferencePics,
609
0
                                                                rpl,
610
0
                                                                m_apcSlicePilot->getNumRefIdx( rplIdx ),
611
0
                                                                &missingPoc,
612
0
                                                                &missingRefPicIndex ) )
613
0
      {
614
0
        if( !pps->getMixedNaluTypesInPicFlag()
615
0
            && ( ( m_apcSlicePilot->isIDR() && ( sps->getIDRRefParamListPresent() || pps->getRplInfoInPhFlag() ) )
616
0
                 || ( m_apcSlicePilot->isCRAorGDR() && m_picHeader->getNoOutputBeforeRecoveryFlag() ) ) )
617
0
        {
618
0
          if( !rpl->isInterLayerRefPic( missingRefPicIndex ) )
619
0
          {
620
0
            prepareUnavailablePicture( false,
621
0
                                       pps,
622
0
                                       missingPoc,
623
0
                                       m_apcSlicePilot->getNalUnitLayerId(),
624
0
                                       rpl->isRefPicLongterm( missingRefPicIndex ),
625
0
                                       m_apcSlicePilot->getTLayer() );
626
0
          }
627
0
        }
628
0
        else
629
0
        {
630
0
          prepareUnavailablePicture( true,
631
0
                                     pps,
632
0
                                     missingPoc,
633
0
                                     m_apcSlicePilot->getNalUnitLayerId(),
634
0
                                     rpl->isRefPicLongterm( missingRefPicIndex ),
635
0
                                     m_apcSlicePilot->getTLayer() );
636
0
        }
637
0
      }
638
0
    }
639
0
  }
640
18
  xActivateParameterSets( nalu.m_nuhLayerId );
641
642
  // WARNING: don't use m_apcSlicePilot after this point, because it has been reallocated
643
644
18
  Slice* slice = m_pcParsePic->slices[m_uiSliceSegmentIdx];
645
646
18
  m_pcParsePic->neededForOutput = m_picHeader->getPicOutputFlag();
647
18
  if( m_pcParsePic->lastSliceOfPicPresent() )
648
0
  {
649
#if 0
650
    // TODO for VPS support:
651
    if( sps->getVPSId() > 0 && NOT IN OUTPUT LAYER SET )
652
    {
653
      m_pcParsePic->neededForOutput = false;
654
    }
655
    else
656
#endif
657
0
    {
658
0
      if( !m_gdrRecovered[nalu.m_nuhLayerId] && slice->getNalUnitType() == NAL_UNIT_CODED_SLICE_GDR && m_gdrRecoveryPointPocVal[nalu.m_nuhLayerId] == INIT_POC )
659
0
      {
660
0
        m_gdrRecoveryPointPocVal[nalu.m_nuhLayerId] = m_pcParsePic->poc + m_picHeader->getRecoveryPocCnt();
661
0
      }
662
663
0
      if( !m_gdrRecovered[nalu.m_nuhLayerId]
664
0
          && ( m_gdrRecoveryPointPocVal[nalu.m_nuhLayerId] == m_pcParsePic->poc || m_picHeader->getRecoveryPocCnt() == 0 ) )
665
0
      {
666
0
        m_gdrRecovered          [nalu.m_nuhLayerId] = true;
667
0
        m_gdrRecoveryPointPocVal[nalu.m_nuhLayerId] = INIT_POC;
668
0
      }
669
670
0
      const bool is_recovering_picture = slice->getAssociatedIRAPType() == NAL_UNIT_CODED_SLICE_GDR && m_pcParsePic->poc < m_gdrRecoveryPointPocVal[nalu.m_nuhLayerId];
671
0
      if( slice->getNalUnitType() == NAL_UNIT_CODED_SLICE_GDR && m_gdrRecovered[nalu.m_nuhLayerId] )
672
0
      {
673
0
        m_pcParsePic->neededForOutput = true;
674
0
      }
675
0
      else if( slice->getNalUnitType() == NAL_UNIT_CODED_SLICE_RASL && m_lastNoOutputBeforeRecoveryFlag[nalu.m_nuhLayerId] )
676
0
      {
677
0
        m_pcParsePic->neededForOutput = false;
678
0
      }
679
0
      else if( ( slice->getNalUnitType() == NAL_UNIT_CODED_SLICE_GDR && m_picHeader->getNoOutputBeforeRecoveryFlag() )
680
0
               || ( is_recovering_picture && ( !m_gdrRecovered[nalu.m_nuhLayerId] || m_lastNoOutputBeforeRecoveryFlag[nalu.m_nuhLayerId] ) ) )
681
0
      {
682
0
        m_pcParsePic->neededForOutput = false;
683
0
      }
684
0
    }
685
0
  }
686
687
18
  return true;
688
18
}
689
690
bool DecLibParser::xDecodeSliceMain( InputNALUnit& nalu )
691
0
{
692
0
  ITT_TASKSTART( itt_domain_oth, itt_handle_start );
693
  // actual decoding starts here
694
0
  Slice* pcSlice = m_pcParsePic->slices[m_uiSliceSegmentIdx];
695
0
  m_pcParsePic->poc              = pcSlice->getPOC();
696
0
  m_pcParsePic->tempLayer        = pcSlice->getTLayer();
697
0
  m_pcParsePic->dpbReferenceMark = pcSlice->getPicHeader()->getNonReferencePictureFlag() ? Picture::unreferenced : Picture::ShortTerm;
698
0
  m_pcParsePic->stillReferenced  = !!m_pcParsePic->dpbReferenceMark;
699
0
  m_pcParsePic->isReferencePic   = !!m_pcParsePic->dpbReferenceMark;
700
0
  m_pcParsePic->eNalUnitType     = nalu.m_nalUnitType;
701
0
  m_pcParsePic->cts              = nalu.m_cts;
702
0
  m_pcParsePic->dts              = nalu.m_dts;
703
0
  m_pcParsePic->rap              = nalu.m_rap;
704
0
  m_pcParsePic->userData         = nalu.m_userData;
705
0
  m_pcParsePic->bits            += nalu.m_bits + m_nonVCLbits;
706
0
  m_pcParsePic->layerId          = nalu.m_nuhLayerId;
707
0
  m_pcParsePic->subLayerNonReferencePictureDueToSTSA = false;
708
709
0
  m_nonVCLbits = 0;
710
711
0
  CHECK( m_pcParsePic->tempLayer != nalu.m_temporalId,
712
0
         "Currently parsed pic should have the same temporal layer as the NAL unit" );
713
714
0
  if( pcSlice->getSPS()->getProfileTierLevel()->getConstraintInfo()->getNoApsConstraintFlag() )
715
0
  {
716
0
    bool flag = pcSlice->getSPS()->getUseCCALF() || pcSlice->getPicHeader()->getNumAlfAps() || pcSlice->getPicHeader()->getAlfEnabledFlag( COMPONENT_Cb ) || pcSlice->getPicHeader()->getAlfEnabledFlag( COMPONENT_Cr );
717
0
    CHECK( flag, "When no_aps_constraint_flag is equal to 1, the values of "
718
0
                             "ph_num_alf_aps_ids_luma, sh_num_alf_aps_ids_luma, ph_alf_cb_flag, "
719
0
                             "ph_alf_cr_flag, sh_alf_cb_flag, sh_alf_cr_flag, "
720
0
                             "and sps_ccalf_enabled_flag shall all be equal to 0" )
721
0
  }
722
723
0
  if( pcSlice->getNalUnitLayerId() != pcSlice->getSPS()->getLayerId() )
724
0
  {
725
0
    CHECK( pcSlice->getSPS()->getLayerId() > pcSlice->getNalUnitLayerId(), "Layer Id of SPS cannot be greater than layer Id of VCL NAL unit the refer to it" );
726
0
    CHECK( pcSlice->getSPS()->getVPSId() == 0, "VPSId of the referred SPS cannot be 0 when layer Id of SPS and layer Id of current slice are different" );
727
0
    for (int i = 0; i < pcSlice->getVPS()->getNumOutputLayerSets(); i++ )
728
0
    {
729
0
      bool isCurrLayerInOls = false;
730
0
      bool isRefLayerInOls = false;
731
0
      int j = pcSlice->getVPS()->getNumLayersInOls(i) - 1;
732
0
      for (; j >= 0; j--)
733
0
      {
734
0
        if( pcSlice->getVPS()->getLayerIdInOls(i, j) == pcSlice->getNalUnitLayerId() )
735
0
        {
736
0
          isCurrLayerInOls = true;
737
0
        }
738
0
        if( pcSlice->getVPS()->getLayerIdInOls(i, j) == pcSlice->getSPS()->getLayerId() )
739
0
        {
740
0
          isRefLayerInOls = true;
741
0
        }
742
0
      }
743
0
      CHECK( isCurrLayerInOls && !isRefLayerInOls, "When VCL NAl unit in layer A refers to SPS in layer B, all OLS that contains layer A shall also contains layer B" );
744
0
    }
745
0
  }
746
0
  if( pcSlice->getNalUnitLayerId() != pcSlice->getPPS()->getLayerId() )
747
0
  {
748
0
    CHECK( pcSlice->getPPS()->getLayerId() > pcSlice->getNalUnitLayerId(), "Layer Id of PPS cannot be greater than layer Id of VCL NAL unit the refer to it" );
749
0
    CHECK( pcSlice->getSPS()->getVPSId() == 0, "VPSId of the referred SPS cannot be 0 when layer Id of PPS and layer Id of current slice are different" );
750
0
    for (int i = 0; i < pcSlice->getVPS()->getNumOutputLayerSets(); i++ )
751
0
    {
752
0
      bool isCurrLayerInOls = false;
753
0
      bool isRefLayerInOls = false;
754
0
      int j = pcSlice->getVPS()->getNumLayersInOls(i) - 1;
755
0
      for (; j >= 0; j--)
756
0
      {
757
0
        if( pcSlice->getVPS()->getLayerIdInOls(i, j) == pcSlice->getNalUnitLayerId() )
758
0
        {
759
0
          isCurrLayerInOls = true;
760
0
        }
761
0
        if( pcSlice->getVPS()->getLayerIdInOls(i, j) == pcSlice->getPPS()->getLayerId() )
762
0
        {
763
0
          isRefLayerInOls = true;
764
0
        }
765
0
      }
766
0
      CHECK( isCurrLayerInOls && !isRefLayerInOls, "When VCL NAl unit in layer A refers to PPS in layer B, all OLS that contains layer A shall also contains layer B" );
767
0
    }
768
0
  }
769
770
0
  if( m_bFirstSliceInPicture )
771
0
  {
772
0
    m_pcParsePic->setDecodingOrderNumber( m_decodingOrderCounter );
773
0
    m_decodingOrderCounter++;
774
775
0
    pcSlice->getPic()->subPictures.clear();
776
0
    pcSlice->getPic()->sliceSubpicIdx.clear();
777
778
0
    for( int subPicIdx = 0; subPicIdx < pcSlice->getSPS()->getNumSubPics(); subPicIdx++ )
779
0
    {
780
0
      pcSlice->getPic()->subPictures.push_back( pcSlice->getPPS()->getSubPic( subPicIdx ) );
781
0
    }
782
0
  }
783
784
0
  pcSlice->getPic()->sliceSubpicIdx.push_back(pcSlice->getPPS()->getSubPicIdxFromSubPicId(pcSlice->getSliceSubPicId()));
785
786
  // When decoding the slice header, the stored start and end addresses were actually RS addresses, not TS addresses.
787
  // Now, having set up the maps, convert them to the correct form.
788
789
  // Sanity check: verify that there are no duplicate POCs in the DPB before constructing the ref picture lists
790
0
  m_tmpSeenPocs.clear();
791
0
  m_tmpSeenPocs.reserve( m_dpbReferencePics.size() );
792
0
  for( auto& p: m_dpbReferencePics )
793
0
  {
794
0
    CHECK( m_tmpSeenPocs.count( p->poc ) != 0, "duplicate POC in DPB" );
795
0
    if( p->dpbReferenceMark )   // we only care about reference pictures in the DPB
796
0
    {
797
0
      m_tmpSeenPocs.insert( p->poc );
798
0
    }
799
0
  }
800
801
#if !DISABLE_CONFROMANCE_CHECK
802
  pcSlice->checkCRA( m_pocCRA[nalu.m_nuhLayerId], m_associatedIRAPType[nalu.m_nuhLayerId], m_picListManager.getPicListRange( m_pcParsePic ) );
803
#endif
804
0
  pcSlice->constructRefPicLists( m_dpbReferencePics );
805
#if !DISABLE_CONFROMANCE_CHECK
806
  pcSlice->checkRPL(pcSlice->getRPL0(), pcSlice->getRPL1(), m_associatedIRAPDecodingOrderNumber, m_picListManager.getPicListRange( m_pcParsePic ) );
807
  pcSlice->checkSTSA( m_picListManager.getPicListRange( pcParsePic ) );
808
#endif
809
810
#if TBC
811
  pcSlice->setPrevGDRSubpicPOC(m_prevGDRSubpicPOC[nalu.m_nuhLayerId][currSubPicIdx]);
812
  pcSlice->setPrevIRAPSubpicPOC(m_prevIRAPSubpicPOC[nalu.m_nuhLayerId][currSubPicIdx]);
813
  pcSlice->setPrevIRAPSubpicType(m_prevIRAPSubpicType[nalu.m_nuhLayerId][currSubPicIdx]);
814
  pcSlice->checkSubpicTypeConstraints(m_cListPic, pcSlice->getRPL0(), pcSlice->getRPL1(), m_prevIRAPSubpicDecOrderNo[nalu.m_nuhLayerId][currSubPicIdx]);
815
#endif
816
817
0
  if( m_pcParsePic->cs->vps && !m_pcParsePic->cs->vps->getIndependentLayerFlag( m_pcParsePic->cs->vps->getGeneralLayerIdx( nalu.m_nuhLayerId ) ) && m_pcParsePic->cs->pps->getNumSubPics() > 1 )
818
0
  {
819
0
    CU::checkConformanceILRP(pcSlice);
820
0
  }
821
822
0
  pcSlice->scaleRefPicList( m_pcParsePic->cs->picHeader.get() );
823
824
825
0
  if (!pcSlice->isIntra())
826
0
  {
827
0
    const int iCurrPOC  = pcSlice->getPOC();
828
829
0
    bool bLowDelay = true;
830
0
    for( int iRefIdx = 0; iRefIdx < pcSlice->getNumRefIdx( REF_PIC_LIST_0 ) && bLowDelay; iRefIdx++ )
831
0
    {
832
0
      if( pcSlice->getRefPOC( REF_PIC_LIST_0, iRefIdx ) > iCurrPOC )
833
0
      {
834
0
        bLowDelay = false;
835
0
      }
836
0
    }
837
0
    if( pcSlice->isInterB() )
838
0
    {
839
0
      for( int iRefIdx = 0; iRefIdx < pcSlice->getNumRefIdx( REF_PIC_LIST_1 ) && bLowDelay; iRefIdx++ )
840
0
      {
841
0
        if( pcSlice->getRefPOC( REF_PIC_LIST_1, iRefIdx ) > iCurrPOC )
842
0
        {
843
0
          bLowDelay = false;
844
0
        }
845
0
      }
846
0
    }
847
848
0
    pcSlice->setCheckLDC( bLowDelay );
849
0
  }
850
851
0
  if( pcSlice->getSPS()->getUseSMVD() && !pcSlice->getCheckLDC() && !pcSlice->getPicHeader()->getMvdL1ZeroFlag() )
852
0
  {
853
0
    int currPOC = pcSlice->getPOC();
854
855
0
    int forwardPOC = currPOC;
856
0
    int backwardPOC = currPOC;
857
0
    int ref = 0;
858
0
    int refIdx0 = -1;
859
0
    int refIdx1 = -1;
860
861
    // search nearest forward POC in List 0
862
0
    for ( ref = 0; ref < pcSlice->getNumRefIdx( REF_PIC_LIST_0 ); ref++ )
863
0
    {
864
0
      int poc = pcSlice->getRefPOC( REF_PIC_LIST_0, ref );
865
0
      const bool isRefLongTerm = pcSlice->getIsUsedAsLongTerm( REF_PIC_LIST_0, ref );
866
0
      if( poc < currPOC && ( poc > forwardPOC || refIdx0 == -1 ) && !isRefLongTerm )
867
0
      {
868
0
        forwardPOC = poc;
869
0
        refIdx0 = ref;
870
0
      }
871
0
    }
872
873
    // search nearest backward POC in List 1
874
0
    for ( ref = 0; ref < pcSlice->getNumRefIdx( REF_PIC_LIST_1 ); ref++ )
875
0
    {
876
0
      int poc = pcSlice->getRefPOC( REF_PIC_LIST_1, ref );
877
0
      const bool isRefLongTerm = pcSlice->getIsUsedAsLongTerm( REF_PIC_LIST_1, ref );
878
0
      if( poc > currPOC && ( poc < backwardPOC || refIdx1 == -1 ) && !isRefLongTerm )
879
0
      {
880
0
        backwardPOC = poc;
881
0
        refIdx1 = ref;
882
0
      }
883
0
    }
884
885
0
    if ( !(forwardPOC < currPOC && backwardPOC > currPOC) )
886
0
    {
887
0
      forwardPOC = currPOC;
888
0
      backwardPOC = currPOC;
889
0
      refIdx0 = -1;
890
0
      refIdx1 = -1;
891
892
      // search nearest backward POC in List 0
893
0
      for ( ref = 0; ref < pcSlice->getNumRefIdx( REF_PIC_LIST_0 ); ref++ )
894
0
      {
895
0
        int poc = pcSlice->getRefPOC( REF_PIC_LIST_0, ref );
896
0
        const bool isRefLongTerm = pcSlice->getIsUsedAsLongTerm( REF_PIC_LIST_0, ref );
897
0
        if( poc > currPOC && ( poc < backwardPOC || refIdx0 == -1 ) && !isRefLongTerm )
898
0
        {
899
0
          backwardPOC = poc;
900
0
          refIdx0 = ref;
901
0
        }
902
0
      }
903
904
      // search nearest forward POC in List 1
905
0
      for ( ref = 0; ref < pcSlice->getNumRefIdx( REF_PIC_LIST_1 ); ref++ )
906
0
      {
907
0
        int poc = pcSlice->getRefPOC( REF_PIC_LIST_1, ref );
908
0
        const bool isRefLongTerm = pcSlice->getIsUsedAsLongTerm( REF_PIC_LIST_1, ref );
909
0
        if( poc < currPOC && ( poc > forwardPOC || refIdx1 == -1 ) && !isRefLongTerm )
910
0
        {
911
0
          forwardPOC = poc;
912
0
          refIdx1 = ref;
913
0
        }
914
0
      }
915
0
    }
916
917
0
    if ( forwardPOC < currPOC && backwardPOC > currPOC )
918
0
    {
919
0
      pcSlice->setBiDirPred( true, refIdx0, refIdx1 );
920
0
    }
921
0
    else
922
0
    {
923
0
      pcSlice->setBiDirPred( false, -1, -1 );
924
0
    }
925
0
  }
926
0
  else
927
0
  {
928
0
    pcSlice->setBiDirPred( false, -1, -1 );
929
0
  }
930
931
  //---------------
932
0
  xCheckMixedNalUnit( pcSlice, nalu );
933
934
0
  if( m_bFirstSliceInPicture )
935
0
  {
936
0
#if RECO_WHILE_PARSE
937
0
    for( int ctu = 0; ctu < pcSlice->getPPS()->pcv->sizeInCtus; ctu++ )
938
0
    {
939
0
      m_pcParsePic->ctuParsedBarrier[ctu].lock();
940
0
    }
941
942
0
#endif
943
0
    m_parseFrameList.push_back( m_pcParsePic );
944
0
  }
945
946
0
  ITT_TASKEND( itt_domain_oth, itt_handle_start );
947
948
0
  static const auto parseTask = []( int threadId, void* param )
949
0
  {
950
0
    Slice* slice     = static_cast<Slice*>( param );
951
0
    auto&  decLib    = slice->parseTaskParams.decLibParser;
952
0
    auto&  bitstream = slice->parseTaskParams.bitstream;
953
0
    auto*  pic       = slice->getPic();
954
955
0
    try
956
0
    {
957
0
      pic->startProcessingTimer();
958
959
      //  Decode a picture
960
0
      ITT_TASKSTART( itt_domain_prs, itt_handle_parse );
961
0
      decLib->m_cSliceDecoder.parseSlice( slice, &bitstream, threadId );
962
0
      ITT_TASKEND( itt_domain_prs, itt_handle_parse );
963
964
0
      pic->stopProcessingTimer();
965
966
0
      bitstream.clearFifo();
967
0
      bitstream.clearEmulationPreventionByteLocation();
968
0
    }
969
0
    catch( ... )
970
0
    {
971
0
      pic->error = true;
972
0
      pic->parseDone.setException( std::current_exception() );
973
0
#if RECO_WHILE_PARSE
974
0
      for( auto& b: pic->ctuParsedBarrier )
975
0
      {
976
0
        b.setException( std::current_exception() );
977
0
      }
978
0
#endif
979
0
      std::rethrow_exception( std::current_exception() );
980
0
    }
981
0
    return true;
982
0
  };
983
984
0
  pcSlice->parseTaskParams.init( this, std::move( nalu.getBitstream() ) );
985
0
  pcSlice->parseDone.lock();
986
987
0
  auto expected = Picture::init;
988
0
  m_pcParsePic->progress.compare_exchange_strong( expected, Picture::parsing );   // if RECO_WHILE_PARSE reconstruction can already have started, so we make sure to not overwrite that state
989
990
0
  if( m_threadPool && m_threadPool->numThreads() > 0 )
991
0
  {
992
0
    if( m_uiSliceSegmentIdx > 0 )
993
0
    {
994
0
      m_threadPool->addBarrierTask( TP_TASK_NAME_ARG( "POC:" + std::to_string( m_pcParsePic->poc ) + " parseTask" )
995
0
                                    parseTask, pcSlice, &m_pcParsePic->m_divTasksCounter, &pcSlice->parseDone,
996
0
                                    CBarrierVec{ &m_pcParsePic->slices[m_uiSliceSegmentIdx - 1]->parseDone } );
997
0
    }
998
0
    else
999
0
    {
1000
0
      m_threadPool->addBarrierTask( TP_TASK_NAME_ARG( "POC:" + std::to_string( m_pcParsePic->poc ) + " parseTask" )
1001
0
                                    parseTask, pcSlice,  &m_pcParsePic->m_divTasksCounter, &pcSlice->parseDone );
1002
0
    }
1003
0
  }
1004
0
  else
1005
0
  {
1006
0
    parseTask( 0, pcSlice );
1007
0
    pcSlice->parseDone.unlock();
1008
0
    if( m_pcParsePic->slices.size() != 1 && !m_pcParsePic->parseDone.isBlocked() && m_numDecThreads == 0 )
1009
0
    {
1010
0
      while( !m_threadPool->processTasksOnMainThread() );
1011
0
    }
1012
0
  }
1013
1014
0
  if( pcSlice->getFirstCtuRsAddrInSlice() == 0 && !m_bFirstSliceInPicture )
1015
0
  {
1016
0
    if( m_prevPOC >= m_pocRandomAccess )
1017
0
    {
1018
0
      DTRACE_UPDATE( g_trace_ctx, std::make_pair( "final", 0 ) );
1019
0
    }
1020
0
  }
1021
0
  else
1022
0
  {
1023
0
    DTRACE_UPDATE( g_trace_ctx, std::make_pair( "final", 1 ) );
1024
0
  }
1025
0
  m_prevPOC = pcSlice->getPOC();
1026
1027
0
  m_bFirstSliceInSequence[nalu.m_nuhLayerId] = false;
1028
0
  m_bFirstSliceInBitstream                   = false;
1029
1030
1031
0
  const unsigned lastCtuInSlice = pcSlice->getCtuAddrInSlice( pcSlice->getNumCtuInSlice() - 1 );
1032
0
  if( lastCtuInSlice == pcSlice->getPPS()->pcv->sizeInCtus - 1 )
1033
0
  {
1034
0
    return true;
1035
0
  }
1036
1037
0
  return false;
1038
0
}
1039
1040
void DecLibParser::xActivateParameterSets( const int layerId )
1041
0
{
1042
0
  ParameterSetManager::ActivePSs paramSets;
1043
1044
0
  if( m_bFirstSliceInPicture )
1045
0
  {
1046
0
              paramSets = m_parameterSetManager.xActivateParameterSets( m_bFirstSliceInPicture, m_apcSlicePilot, m_picHeader.get() );
1047
0
    const SPS*  sps     = paramSets.sps;
1048
0
    const PPS*  pps     = paramSets.pps;
1049
0
    const APS** alfApss = paramSets.alfAPSs->data();
1050
0
    const APS*  lmcsAPS = paramSets.lmcsAps;
1051
0
    const APS*  scalingListAPS = paramSets.scalingListAps;
1052
1053
0
    xParsePrefixSEImessages();
1054
1055
0
    CHECK( sps->getBitDepth() > 12, "High bit depth support must be enabled at compile-time in order to decode this bitstream\n" );
1056
1057
0
    applyReferencePictureListBasedMarking( m_apcSlicePilot, layerId, *pps );
1058
1059
    //  Get a new picture buffer
1060
0
    m_pcParsePic = m_picListManager.getNewPicBuffer( *sps, *pps, m_apcSlicePilot->getTLayer(), layerId, m_parameterSetManager.getVPS( sps->getVPSId() ) );
1061
0
    CHECK( std::find( m_dpbReferencePics.cbegin(), m_dpbReferencePics.cend(), m_pcParsePic ) != m_dpbReferencePics.cend(), "reused picture shouldn't be in decoded picture buffer" );
1062
0
    m_dpbReferencePics.push_back( m_pcParsePic );
1063
    // assign these fields already, because they are needed by PicListManager::getPicListRange() and Slice::applyReferencePictureSet()
1064
0
    m_pcParsePic->poc          = m_apcSlicePilot->getPOC();
1065
0
    m_pcParsePic->eNalUnitType = m_apcSlicePilot->getNalUnitType();
1066
0
    m_pcParsePic->finalInit( &m_cuChunkCache, &m_tuChunkCache, sps, pps, m_picHeader, alfApss, lmcsAPS, scalingListAPS );
1067
1068
#if !DISABLE_CONFROMANCE_CHECK
1069
    m_apcSlicePilot->checkLeadingPictureRestrictions( m_dpbReferencePics );
1070
#endif
1071
1072
0
    m_pcParsePic->dpbReferenceMark = m_apcSlicePilot->getPicHeader()->getNonReferencePictureFlag() ? Picture::unreferenced : Picture::ShortTerm;
1073
0
    m_pcParsePic->stillReferenced  = !!m_pcParsePic->dpbReferenceMark;
1074
0
    m_pcParsePic->isReferencePic   = !!m_pcParsePic->dpbReferenceMark;
1075
1076
    // Set Field/Frame coding mode
1077
0
    bool isField    = false;
1078
0
    bool isTopField = false;
1079
0
    if(!m_seiMessageList.empty())
1080
0
    {
1081
      // Check if any new Frame Field Info SEI has arrived
1082
0
      seiMessages frameFieldSEIs = SEI_internal::getSeisByType( m_seiMessageList, VVDEC_FRAME_FIELD_INFO );
1083
0
      if(!frameFieldSEIs.empty())
1084
0
      {
1085
0
        const vvdecSEIFrameFieldInfo* ff = (vvdecSEIFrameFieldInfo*) frameFieldSEIs.front()->payload;
1086
0
        isField    = ff->fieldPicFlag;
1087
0
        isTopField = isField && (!ff->bottomFieldFlag);
1088
0
      }
1089
0
    }
1090
0
    m_pcParsePic->fieldPic = isField;
1091
0
    m_pcParsePic->topField = isTopField;
1092
1093
    // transfer any SEI messages that have been received to the picture
1094
0
    m_pcParsePic->seiMessageList = m_seiMessageList;
1095
0
    m_seiMessageList.clear();
1096
1097
0
    m_apcSlicePilot->setPicHeader( m_picHeader.get() );
1098
0
  }
1099
0
  else
1100
0
  {
1101
0
    paramSets = m_parameterSetManager.xActivateParameterSets( m_bFirstSliceInPicture, m_apcSlicePilot, m_picHeader.get() );
1102
0
    m_apcSlicePilot->setAlfApss( paramSets.alfAPSs->data() );
1103
1104
0
    for( int i = 0; i < ALF_CTB_MAX_NUM_APS; ++i )
1105
0
    {
1106
0
      m_pcParsePic->cs->alfApss[i] = paramSets.alfAPSs->data()[i] ? paramSets.alfAPSs->data()[i]->getSharedPtr() : nullptr;
1107
0
    }
1108
0
  }
1109
1110
  // make the slice-pilot a real slice, and set up the slice-pilot for the next slice
1111
0
  Slice* pSlice = m_pcParsePic->allocateNewSlice( &m_apcSlicePilot );
1112
0
  CHECK_FATAL( m_pcParsePic->slices.size() != ( m_uiSliceSegmentIdx + 1 ), "Invalid number of slices" );
1113
1114
0
  const VPS* vps = pSlice->getVPS_nothrow();
1115
0
  const SPS* sps = pSlice->getSPS();
1116
0
  const PPS* pps = pSlice->getPPS();
1117
1118
0
  if( !m_bFirstSliceInPicture )
1119
0
  {
1120
0
    const APS*  lmcsAPS = pSlice->getPicHeader()->getLmcsAPS().get();
1121
1122
    // check that the current active PPS has not changed...
1123
0
    CHECK( sps->getChangedFlag(), "Error - a new SPS has been decoded while processing a picture" );
1124
0
    CHECK( pps->getChangedFlag(), "Error - a new PPS has been decoded while processing a picture" );
1125
0
    for( int i = 0; i < ALF_CTB_MAX_NUM_APS; i++ )
1126
0
    {
1127
0
      const APS* aps = m_parameterSetManager.getAPS_nothrow( i, ALF_APS );
1128
0
      CHECK( aps && aps->getChangedFlag(), "Error - a new APS has been decoded while processing a picture" );
1129
0
    }
1130
0
    CHECK( lmcsAPS && lmcsAPS->getChangedFlag(), "Error - a new LMCS APS has been decoded while processing a picture" );
1131
1132
0
    xParsePrefixSEImessages();
1133
1134
    // Check if any new SEI has arrived
1135
0
    if( !m_seiMessageList.empty() )
1136
0
    {
1137
      // Currently only decoding Unit SEI message occurring between VCL NALUs copied
1138
0
      seiMessages& picSEI = m_pcParsePic->seiMessageList;
1139
0
      seiMessages decodingUnitInfos = SEI_internal::extractSeisByType( m_seiMessageList, VVDEC_DECODING_UNIT_INFO );
1140
0
      picSEI.insert( picSEI.end(), decodingUnitInfos.begin(), decodingUnitInfos.end() );
1141
0
      SEI_internal::deleteSEIs   ( m_seiMessageList );
1142
0
    }
1143
0
  }
1144
1145
0
  CHECK( !sps->getGDREnabledFlag() && m_picHeader->getGdrPicFlag(), "When gdr_enabled_flag is equal to 0, the value of gdr_pic_flag shall be equal to 0 " );
1146
0
  CHECK( !sps->getUseWP() && pps->getUseWP(), "When sps_weighted_pred_flag is equal to 0, the value of pps_weighted_pred_flag shall be equal to 0." );
1147
0
  CHECK( !sps->getUseWPBiPred() && pps->getWPBiPred(),
1148
0
         "When sps_weighted_bipred_flag is equal to 0, the value of pps_weighted_bipred_flag shall be equal to 0." );
1149
1150
0
  CHECK( !sps->getResChangeInClvsEnabledFlag() && pps->getPicWidthInLumaSamples() != sps->getMaxPicWidthInLumaSamples(),
1151
0
         "When res_change_in_clvs_allowed_flag equal to 0, the value of pic_width_in_luma_samples shall be equal to pic_width_max_in_luma_samples." );
1152
0
  CHECK( !sps->getResChangeInClvsEnabledFlag() && pps->getPicHeightInLumaSamples() != sps->getMaxPicHeightInLumaSamples(),
1153
0
         "When res_change_in_clvs_allowed_flag equal to 0, the value of pic_height_in_luma_samples shall be equal to pic_height_max_in_luma_samples." );
1154
0
  CHECK( sps->getResChangeInClvsEnabledFlag() && sps->getSubPicInfoPresentFlag() != 0,
1155
0
         "When res_change_in_clvs_allowed_flag is equal to 1, the value of subpic_info_present_flag shall be equal to 0." );
1156
0
  CHECK( sps->getResChangeInClvsEnabledFlag() && sps->getVirtualBoundariesEnabledFlag(),
1157
0
         "when the value of res_change_in_clvs_allowed_flag is equal to 1, the value of sps_virtual_boundaries_present_flag shall be equal to 0" );
1158
0
  if( vps && vps->m_numOutputLayersInOls[vps->m_iTargetLayer] > 1 )
1159
0
  {
1160
0
    CHECK( sps->getMaxPicWidthInLumaSamples() > vps->getOlsDpbPicSize( vps->m_iTargetLayer ).width,
1161
0
           "pic_width_max_in_luma_samples shall be less than or equal to the value of ols_dpb_pic_width[ i ]" );
1162
0
    CHECK( sps->getMaxPicHeightInLumaSamples() > vps->getOlsDpbPicSize( vps->m_iTargetLayer ).height,
1163
0
           "pic_height_max_in_luma_samples shall be less than or equal to the value of ols_dpb_pic_height[ i ]" );
1164
0
  }
1165
1166
0
  CHECK( sps->getProfileTierLevel()->getConstraintInfo()->getOneTilePerPicConstraintFlag() && pps->getNumTiles() != 1,
1167
0
         "When one_tile_per_pic_constraint_flag is equal to 1, each picture shall contain only one tile" );
1168
0
  CHECK( sps->getProfileTierLevel()->getConstraintInfo()->getOneSlicePerPicConstraintFlag() && pps->getRectSliceFlag() && pps->getNumSlicesInPic() != 1,
1169
0
         "When one_slice_per_pic_constraint_flag is equal to 1 and if pps_rect_slice_flag is equal to 1, the value of num_slices_in_pic_minus1 shall be equal to 0" );
1170
0
  CHECK( sps->getProfileTierLevel()->getConstraintInfo()->getNoRprConstraintFlag() && sps->getRprEnabledFlag(),
1171
0
         "When gci_no_ref_pic_resampling_constraint_flag is equal to 1, the value of sps_ref_pic_resampling_enabled_flag shall be equal to 0" );
1172
0
  CHECK( sps->getProfileTierLevel()->getConstraintInfo()->getNoResChangeInClvsConstraintFlag() && sps->getResChangeInClvsEnabledFlag(),
1173
0
         "When gci_no_res_change_in_clvs_constraint_flag is equal to 1, the value of sps_res_change_in_clvs_allowed_flag shall be equal to 0" );
1174
0
  CHECK( sps->getProfileTierLevel()->getConstraintInfo()->getNoIdrRplConstraintFlag() && sps->getIDRRefParamListPresent(),
1175
0
         "When gci_no_idr_rpl_constraint_flag equal to 1 , the value of sps_idr_rpl_present_flag shall be equal to 0" );
1176
0
  CHECK( sps->getProfileTierLevel()->getConstraintInfo()->getNoMixedNaluTypesInPicConstraintFlag() && pps->getMixedNaluTypesInPicFlag(),
1177
0
         "When gci_no_mixed_nalu_types_in_pic_constraint_flag equal to 1, the value of pps_mixed_nalu_types_in_pic_flag shall be equal to 0" );
1178
0
  CHECK( sps->getProfileTierLevel()->getConstraintInfo()->getNoRectSliceConstraintFlag() && pps->getRectSliceFlag(),
1179
0
         "When gci_no_rectangular_slice_constraint_flag equal to 1, the value of pps_rect_slice_flag shall be equal to 0" );
1180
0
  CHECK( sps->getProfileTierLevel()->getConstraintInfo()->getOneSlicePerSubpicConstraintFlag() && !pps->getSingleSlicePerSubPicFlag(),
1181
0
         "When gci_one_slice_per_subpic_constraint_flag equal to 1, the value of pps_single_slice_per_subpic_flag shall be equal to 1" );
1182
0
  CHECK( sps->getProfileTierLevel()->getConstraintInfo()->getNoSubpicInfoConstraintFlag() && sps->getSubPicInfoPresentFlag(),
1183
0
         "When gci_no_subpic_info_constraint_flag is equal to 1, the value of sps_subpic_info_present_flag shall be equal to 0" );
1184
1185
0
  if( sps->getProfileTierLevel()->getConstraintInfo()->getNoMttConstraintFlag() )
1186
0
  {
1187
0
    CHECK( sps->getMaxMTTHierarchyDepth() || sps->getMaxMTTHierarchyDepthI() || sps->getMaxMTTHierarchyDepthIChroma(),
1188
0
           "When gci_no_mtt_constraint_flag is equal to 1, the values of sps_max_mtt_hierarchy_depth_intra_slice_luma, sps_max_mtt_hierarchy_depth_inter_slice"
1189
0
           " and sps_max_mtt_hierarchy_depth_intra_slice_chroma shall be equal to 0" );
1190
0
  }
1191
0
  if( sps->getProfileTierLevel()->getConstraintInfo()->getNoWeightedPredictionConstraintFlag() )
1192
0
  {
1193
0
    CHECK( sps->getUseWP() || sps->getUseWPBiPred(),
1194
0
           "When gci_no_weighted_prediction_constraint_flag is equal to 1, the values of sps_weighted_pred_flag and sps_weighted_bipred_flag shall be equal to 0" );
1195
0
  }
1196
1197
0
  CHECK( sps->getProfileTierLevel()->getConstraintInfo()->getNoChromaQpOffsetConstraintFlag() && pps->getCuChromaQpOffsetEnabledFlag(),
1198
0
         "When gci_no_ChromaQpOffset_constraint_flag is equal to 1, the values of pps_cu_chroma_qp_offset_list_enabled_flag shall be equal to 0" );
1199
1200
0
  CHECK( sps->getCTUSize() > ( 1 << sps->getProfileTierLevel()->getConstraintInfo()->getMaxLog2CtuSizeConstraintIdc() ),
1201
0
         "The CTU size specified by sps_log2_ctu_size_minus5 shall not exceed the constraint specified by gci_three_minus_max_log2_ctu_size_constraint_idc" );
1202
0
  CHECK( sps->getProfileTierLevel()->getConstraintInfo()->getNoLumaTransformSize64ConstraintFlag() && sps->getLog2MaxTbSize() != 5,
1203
0
         "When gci_no_luma_transform_size_64_constraint_flag is equal to 1, the value of sps_max_luma_transform_size_64_flag shall be equal to 0" );
1204
1205
#if 0
1206
  if( vps && vps->getMaxLayers() > 1 )
1207
  {
1208
    // TODO: fix MT static maps
1209
    static std::unordered_map<int, int> m_layerChromaFormat;
1210
    static std::unordered_map<int, int> m_layerBitDepth;
1211
1212
    int curLayerIdx          = vps->getGeneralLayerIdx(layerId);
1213
    int curLayerChromaFormat = sps->getChromaFormatIdc();
1214
    int curLayerBitDepth     = sps->getBitDepth();
1215
1216
    if( pSlice->isClvssPu() && m_bFirstSliceInPicture )
1217
    {
1218
      m_layerChromaFormat[curLayerIdx] = curLayerChromaFormat;
1219
      m_layerBitDepth    [curLayerIdx] = curLayerBitDepth;
1220
    }
1221
    else
1222
    {
1223
      CHECK( m_layerChromaFormat[curLayerIdx] != curLayerChromaFormat, "Different chroma format in the same layer." );
1224
      CHECK( m_layerBitDepth    [curLayerIdx] != curLayerBitDepth, "Different bit-depth in the same layer." );
1225
    }
1226
1227
    for( int i = 0; i < curLayerIdx; i++ )
1228
    {
1229
      if( vps->getDirectRefLayerFlag( curLayerIdx, i ) )
1230
      {
1231
        int refLayerChromaFormat = m_layerChromaFormat[i];
1232
        CHECK( curLayerChromaFormat != refLayerChromaFormat, "The chroma formats of the current layer and the reference layer are different" );
1233
        int refLayerBitDepth = m_layerBitDepth[i];
1234
        CHECK( curLayerBitDepth != refLayerBitDepth, "The bit-depth of the current layer and the reference layer are different" );
1235
      }
1236
    }
1237
  }
1238
#endif
1239
1240
0
  const int minCuSize = 1 << sps->getLog2MinCodingBlockSize();
1241
0
  CHECK( ( pps->getPicWidthInLumaSamples()  % ( std::max( 8, minCuSize) ) ) != 0, "Coded frame width must be a multiple of Max(8, the minimum unit size)" );
1242
0
  CHECK( ( pps->getPicHeightInLumaSamples() % ( std::max( 8, minCuSize) ) ) != 0, "Coded frame height must be a multiple of Max(8, the minimum unit size)" );
1243
1244
0
  if( sps->getCTUSize() + 2 * ( 1 << sps->getLog2MinCodingBlockSize() ) > pps->getPicWidthInLumaSamples() )
1245
0
  {
1246
0
    CHECK( pps->getUseWrapAround(),
1247
0
           "Wraparound shall be disabled when the value of ( CtbSizeY / MinCbSizeY + 1) is greater than or equal to"
1248
0
           " ( pic_width_in_luma_samples / MinCbSizeY - 1 )" );
1249
0
  }
1250
1251
0
  if( pSlice->getPicHeader()->getGdrOrIrapPicFlag() && !pSlice->getPicHeader()->getGdrPicFlag()
1252
0
      && ( !vps || vps->getIndependentLayerFlag( vps->getGeneralLayerIdx( layerId ) ) ) )
1253
0
  {
1254
0
    CHECK( pSlice->getPicHeader()->getPicInterSliceAllowedFlag(),
1255
0
           "When gdr_or_irap_pic_flag is equal to 1 and gdr_pic_flag is equal to 0 and vps_independent_layer_flag[ GeneralLayerIdx[ nuh_layer_id ] ] "
1256
0
           "is equal to 1, ph_inter_slice_allowed_flag shall be equal to 0" );
1257
0
  }
1258
1259
0
  if( sps->getVPSId() && vps && vps->m_numLayersInOls[vps->m_iTargetLayer] == 1 )
1260
0
  {
1261
0
    CHECK( !sps->getPtlDpbHrdParamsPresentFlag(),
1262
0
           "When sps_video_parameter_set_id is greater than 0 and there is an OLS that contains only one layer"
1263
0
           " with nuh_layer_id equal to the nuh_layer_id of the SPS, the value of sps_ptl_dpb_hrd_params_present_flag shall be equal to 1" );
1264
0
  }
1265
1266
0
  ProfileLevelTierFeatures ptlFeature;
1267
0
  ptlFeature.extractPTLInformation(*sps);
1268
1269
0
  const LevelTierFeatures* ltFeature = ptlFeature.getLevelTierFeatures();
1270
0
  const ProfileFeatures*   pFeature  = ptlFeature.getProfileFeatures();
1271
1272
0
  CHECK( ltFeature && pps->getNumTileColumns() > ltFeature->maxTileCols, "Num tile columns signaled in PPS exceed level limits" );
1273
0
  CHECK( ltFeature && pps->getNumTiles() > ltFeature->maxTilesPerAu, "Num tiles signaled in PPS exceed level limits" );
1274
0
  CHECK( pFeature && sps->getBitDepth() > pFeature->maxBitDepth, "Bit depth exceed profile limit" );
1275
0
  CHECK( pFeature && sps->getChromaFormatIdc() > pFeature->maxChromaFormat, "Chroma format exceed profile limit" );
1276
0
}
1277
1278
void DecLibParser::prepareUnavailablePicture( bool isLost, const PPS* pps, int iUnavailablePoc, const int layerId, const bool longTermFlag, const int temporalId )
1279
0
{
1280
0
  if( isLost )
1281
0
  {
1282
0
    CHECK( !( m_errHandlingFlags & ERR_HANDLING_TRY_CONTINUE ), "missing reference picture poc: " << iUnavailablePoc );
1283
1284
0
    if( !m_picListManager.getBackPic() )
1285
0
    {
1286
0
      THROW_RECOVERABLE( "no pictures yet." );
1287
0
      return;
1288
0
    }
1289
0
    msg( WARNING, "inserting lost poc : %d\n", iUnavailablePoc );
1290
0
  }
1291
0
  else
1292
0
  {
1293
0
    msg( INFO, "inserting unavailable poc : %d\n", iUnavailablePoc );
1294
0
  }
1295
0
  Picture* cFillPic = m_picListManager.getNewPicBuffer( *m_parameterSetManager.getFirstSPS(), *m_parameterSetManager.getFirstPPS(), 0, layerId, m_parameterSetManager.getVPS( m_parameterSetManager.getFirstSPS()->getVPSId() ) );
1296
0
  CHECK( std::find( m_dpbReferencePics.cbegin(), m_dpbReferencePics.cend(), cFillPic ) != m_dpbReferencePics.cend(), "reused picture shouldn't be in decoded picture buffer" );
1297
0
  m_dpbReferencePics.push_back( cFillPic );
1298
0
  const APS* nullAlfApss[ALF_CTB_MAX_NUM_APS] = { nullptr, };
1299
0
  cFillPic->finalInit( &m_cuChunkCache, &m_tuChunkCache, m_parameterSetManager.getFirstSPS(), m_parameterSetManager.getFirstPPS(), m_picHeader, nullAlfApss, nullptr, nullptr, false );
1300
1301
0
  CHECK_FATAL( !cFillPic->slices.empty(), "fill pic should not contain slices, already." );
1302
0
  cFillPic->allocateNewSlice();
1303
0
  cFillPic->slices[0]->initSlice();
1304
0
  cFillPic->slices[0]->setPOC( iUnavailablePoc );
1305
0
  cFillPic->slices[0]->setTLayer( temporalId );
1306
0
  cFillPic->slices[0]->setNalUnitLayerId( layerId );
1307
1308
  // picture header is not derived for generated reference picture
1309
0
  cFillPic->slices[0]->setPicHeader( nullptr );
1310
0
  cFillPic->slices[0]->setPPS( pps );
1311
1312
0
  cFillPic->dpbReferenceMark        = longTermFlag ? Picture::LongTerm : Picture::ShortTerm;
1313
0
  cFillPic->stillReferenced         = true;
1314
0
  cFillPic->isReferencePic          = true;
1315
0
  cFillPic->poc                     = iUnavailablePoc;
1316
0
  cFillPic->neededForOutput         = false;
1317
0
  cFillPic->tempLayer               = temporalId;
1318
0
  cFillPic->nonReferencePictureFlag = false;
1319
0
  cFillPic->wasLost                 = isLost;
1320
1321
0
  if( cFillPic->slices[0]->getTLayer() == 0 &&
1322
0
      cFillPic->slices[0]->getNalUnitType() != NAL_UNIT_CODED_SLICE_RASL &&
1323
0
      cFillPic->slices[0]->getNalUnitType() != NAL_UNIT_CODED_SLICE_RADL )
1324
0
  {
1325
0
    m_prevTid0POC = cFillPic->slices[0]->getPOC();
1326
0
  }
1327
1328
0
  cFillPic->subPictures.clear();
1329
0
  cFillPic->sliceSubpicIdx.clear();
1330
1331
0
  for( int subPicIdx = 0; subPicIdx < pps->getNumSubPics(); subPicIdx++ )
1332
0
  {
1333
0
    cFillPic->subPictures.push_back( pps->getSubPic( subPicIdx ) );
1334
0
  }
1335
1336
0
  cFillPic->parseDone.unlock();
1337
1338
#if 0
1339
// NOT YET IMPLEMENTED
1340
  if( isLost && ( m_errHandlingFlags & ERR_HANDLING_COPY_CLOSEST ) )
1341
  {
1342
    // this will be filled in later, when closer pictures might have been reconstructed.
1343
1344
    cFillPic->progress = Picture::parsed;
1345
    m_parseFrameList.push_back( cFillPic );
1346
    return;
1347
  }
1348
#endif
1349
1350
0
  cFillPic->fillGrey( m_parameterSetManager.getFirstSPS() );
1351
1352
0
  if( m_pocRandomAccess == MAX_INT )
1353
0
  {
1354
0
    m_pocRandomAccess = iUnavailablePoc;
1355
0
  }
1356
0
}
1357
1358
#if 0
1359
// NOT YET IMPLEMENTED
1360
void DecLibParser::fillMissingPicBuf( Picture* pcPic, bool copyClosest )
1361
{
1362
  if( copyClosest )
1363
  {
1364
    CHECK_FATAL( pcPic->progress != Picture::parsed, "filled in picture should have been marked as parsed" );
1365
    CHECK_FATAL( pcPic->parseDone.isBlocked(), "parsed barrier should be unlocked" );
1366
1367
    auto closestPic = m_picListManager.findClosestPic( pcPic->poc );
1368
    if( closestPic )
1369
    {
1370
      CHECK_FATAL( closestPic->progress < Picture::reconstructed, "closest Picture is not yet reconstructed" )
1371
      // the next not-lost picture in the parseFrameList should be the one, that referenced this picture
1372
      auto referencedBy = std::find_if( m_parseFrameList.begin(), m_parseFrameList.end(), []( Picture* p ) { return !p->wasLost && !p->error; } );
1373
      msg( INFO, "copying picture %d to %d (%d)\n", closestPic->getPOC(), pcPic->poc, ( referencedBy != m_parseFrameList.end() ) ? ( *referencedBy )->poc : -1 );
1374
1375
      pcPic->getRecoBuf().copyFrom( closestPic->getRecoBuf() );
1376
1377
      pcPic->slices[0]->copySliceInfo( closestPic->slices[0] );
1378
      pcPic->slices[0]->setPOC( pcPic->poc );
1379
    }
1380
1381
    // currently we don't output filled-in reference pictures
1382
    // pcPic->neededForOutput = true;
1383
  }
1384
  else
1385
  {
1386
    pcPic->fillGrey( pcPic->cs->sps.get() );
1387
  }
1388
1389
  pcPic->progress = Picture::reconstructed;
1390
  pcPic->reconDone.unlock();
1391
}
1392
#endif
1393
1394
1395
// Function for applying picture marking based on the Reference Picture List
1396
void DecLibParser::applyReferencePictureListBasedMarking( Slice* currSlice, const int layerId, const PPS& pps )
1397
0
{
1398
  //  checkLeadingPictureRestrictions(rcListPic, pps);
1399
1400
  // mark long-term reference pictures in List0
1401
0
  for( const auto l: { REF_PIC_LIST_0, REF_PIC_LIST_1 } )
1402
0
  {
1403
0
    const ReferencePictureList* rpl = currSlice->getRPL( l );
1404
1405
0
    for( int i = 0; i < rpl->getNumRefEntries(); i++ )
1406
0
    {
1407
0
      if( !rpl->isRefPicLongterm( i ) || rpl->isInterLayerRefPic( i ) )
1408
0
      {
1409
0
        continue;
1410
0
      }
1411
1412
0
      Picture* availableST = nullptr;
1413
0
      for( Picture* pic: m_dpbReferencePics )
1414
0
      {
1415
0
        if( !pic->dpbReferenceMark )
1416
0
        {
1417
0
          continue;
1418
0
        }
1419
1420
0
        const int bitsForPoc = pic->cs->sps->getBitsForPOC();
1421
0
        const int curPoc     = pic->getPOC();
1422
0
        const int ltRefPoc   = rpl->calcLTRefPOC( currSlice->getPOC(), bitsForPoc, i );
1423
0
        if( pic->dpbReferenceMark == Picture::LongTerm && isLTPocEqual( curPoc, ltRefPoc, bitsForPoc, rpl->getDeltaPocMSBPresentFlag( i ) ) )
1424
0
        {
1425
0
          break;
1426
0
        }
1427
1428
        // if there was no such long-term check the short terms
1429
0
        if( pic->dpbReferenceMark == Picture::ShortTerm && isLTPocEqual( curPoc, ltRefPoc, bitsForPoc, rpl->getDeltaPocMSBPresentFlag( i ) ) )
1430
0
        {
1431
0
          availableST = pic;
1432
          // but don't break here, because we might still find a LT
1433
0
        }
1434
0
      }
1435
1436
      // the found picture was not yet marked as long term, so we mark it here
1437
0
      if ( availableST )
1438
0
      {
1439
0
        availableST->dpbReferenceMark = Picture::LongTerm;
1440
0
      }
1441
0
    }
1442
0
  }
1443
1444
0
  if( currSlice->isIDR() && !pps.getMixedNaluTypesInPicFlag() )
1445
0
  {
1446
0
    for( Picture* pic: m_dpbReferencePics )
1447
0
    {
1448
0
      pic->dpbReferenceMark = Picture::unreferenced;
1449
0
    }
1450
1451
    // ignore neededForOutput flag here, because we only care about reference pictures in the DPB
1452
0
    m_dpbReferencePics.remove_if( []( Picture* pic ) { return !pic->dpbReferenceMark; } );
1453
0
    return;
1454
0
  }
1455
1456
  // loop through all pictures in the reference picture buffer
1457
0
  for( Picture* pic: m_dpbReferencePics )
1458
0
  {
1459
0
    if( !pic->dpbReferenceMark )
1460
0
    {
1461
0
      continue;
1462
0
    }
1463
1464
0
    bool isReference = false;
1465
1466
0
    for( const auto l: { REF_PIC_LIST_0, REF_PIC_LIST_1 } )
1467
0
    {
1468
0
      if( currSlice->getRPL( l )->findInRefPicList( pic, currSlice->getPOC(), layerId ) )
1469
0
      {
1470
0
        isReference = true;
1471
0
        break;
1472
0
      }
1473
0
    }
1474
1475
    // mark the picture as "unused for reference" if it is not in
1476
    // the Reference Picture List
1477
0
    if( !isReference && pic->poc != currSlice->getPOC() && pic->layerId == layerId )
1478
0
    {
1479
0
      pic->dpbReferenceMark = Picture::unreferenced;
1480
0
    }
1481
1482
    // // sanity checks
1483
    // if( pic->referenced )
1484
    // {
1485
    //   // check that pictures of higher temporal layers are not used
1486
    //   CHECK_FATAL( pic->usedByCurr && pic->temporalId > this->getTLayer(), "Invalid state" );
1487
    // }
1488
0
  }
1489
1490
  // ignore neededForOutput flag here, because we only care about reference pictures in the DPB
1491
0
  m_dpbReferencePics.remove_if( []( Picture* pic ) { return !pic->dpbReferenceMark; } );
1492
0
}
1493
1494
void DecLibParser::xParsePrefixSEImessages()
1495
0
{
1496
0
  while( !m_prefixSEINALUs.empty() )
1497
0
  {
1498
0
    InputNALUnit& nalu = m_prefixSEINALUs.front();
1499
0
    const SPS *sps = m_parameterSetManager.getActiveSPS();
1500
0
    const VPS *vps = m_parameterSetManager.getVPS(sps->getVPSId());
1501
0
    m_seiReader.parseSEImessage( &(nalu.getBitstream()), m_seiMessageList, nalu.m_nalUnitType, nalu.m_nuhLayerId, nalu.m_temporalId, vps, sps, m_HRD, m_pDecodedSEIOutputStream );
1502
0
    m_prefixSEINALUs.pop_front();
1503
0
  }
1504
0
}
1505
1506
void DecLibParser::xParsePrefixSEIsForUnknownVCLNal()
1507
22
{
1508
22
  while (!m_prefixSEINALUs.empty())
1509
0
  {
1510
    // do nothing?
1511
0
    msg( VERBOSE, "Discarding Prefix SEI associated with unknown VCL NAL unit.\n");
1512
0
    m_prefixSEINALUs.pop_front();
1513
0
  }
1514
  // TODO: discard following suffix SEIs as well?
1515
22
}
1516
1517
void DecLibParser::xDecodePicHeader( InputNALUnit& nalu )
1518
2
{
1519
2
  m_HLSReader.setBitstream( &nalu.getBitstream() );
1520
2
  m_picHeader = std::make_shared<PicHeader>();
1521
2
  m_HLSReader.parsePictureHeader( m_picHeader.get(), &m_parameterSetManager, true );
1522
2
}
1523
1524
void DecLibParser::xDecodeVPS( InputNALUnit& nalu )
1525
16
{
1526
  // We don't parse the VPS, because the needed bounds checks in parseVPS() are not yet implemented, and we don't process it anyways
1527
#if 0
1528
  std::unique_ptr<VPS> vps( new VPS() );
1529
  m_HLSReader.setBitstream( &nalu.getBitstream() );
1530
  m_HLSReader.parseVPS( vps.get() );
1531
  m_parameterSetManager.storeVPS( vps.release(), nalu.getBitstream().getFifo() );
1532
#endif
1533
16
}
1534
1535
void DecLibParser::xDecodeDCI( InputNALUnit& nalu )
1536
32
{
1537
32
  m_HLSReader.setBitstream(&nalu.getBitstream());
1538
1539
32
  CHECK(nalu.m_temporalId, "The value of TemporalId of DCI NAL units shall be equal to 0");
1540
30
  if( !m_dci )
1541
30
  {
1542
30
    m_dci = new DCI;
1543
30
    m_HLSReader.parseDCI( m_dci );
1544
30
  }
1545
0
  else
1546
0
  {
1547
0
    DCI dupDCI;
1548
0
    m_HLSReader.parseDCI( &dupDCI );
1549
0
    CHECK( !m_dci->IsIndenticalDCI( dupDCI ), "Two signaled DCIs are different");
1550
0
  }
1551
30
}
1552
1553
void DecLibParser::xDecodeSPS( InputNALUnit& nalu )
1554
372
{
1555
372
  std::unique_ptr<SPS> sps( new SPS() );
1556
372
  m_HLSReader.setBitstream( &nalu.getBitstream() );
1557
372
  m_HLSReader.parseSPS( sps.get(), &m_parameterSetManager );
1558
372
  sps->setLayerId( nalu.m_nuhLayerId );
1559
372
  DTRACE( g_trace_ctx, D_QP_PER_CTU, "CTU Size: %dx%d", sps->getMaxCUWidth(), sps->getMaxCUHeight() );  // don't move after storeSPS, because SPS could have been deleted
1560
372
  m_parameterSetManager.storeSPS( sps.release(), nalu.getBitstream().getFifo() );
1561
372
}
1562
1563
void DecLibParser::xDecodePPS( InputNALUnit& nalu )
1564
2
{
1565
2
  std::unique_ptr<PPS> pps( new PPS() );
1566
2
  m_HLSReader.setBitstream( &nalu.getBitstream() );
1567
2
  m_HLSReader.parsePPS( pps.get(), &m_parameterSetManager );
1568
2
  pps->setLayerId( nalu.m_nuhLayerId );
1569
2
  m_parameterSetManager.storePPS( pps.release(), nalu.getBitstream().getFifo() );
1570
2
}
1571
1572
void DecLibParser::xDecodeAPS( InputNALUnit& nalu )
1573
172
{
1574
172
  std::unique_ptr<APS> aps( new APS() );
1575
172
  m_HLSReader.setBitstream( &nalu.getBitstream() );
1576
172
  if( !m_HLSReader.parseAPS( aps.get() ) )
1577
8
  {   // ignore unsupported APS types
1578
8
    return;
1579
8
  }
1580
164
  aps->setTemporalId( nalu.m_temporalId );
1581
164
  aps->setLayerId( nalu.m_nuhLayerId );
1582
164
  aps->setHasPrefixNalUnitType( nalu.m_nalUnitType == NAL_UNIT_PREFIX_APS );
1583
164
  m_parameterSetManager.storeAPS( aps.release(), nalu.getBitstream().getFifo() );
1584
164
}
1585
1586
void DecLibParser::xUpdatePreviousTid0POC(Slice * pSlice)
1587
0
{
1588
0
  if( pSlice->getTLayer() == 0 && pSlice->getNalUnitType() != NAL_UNIT_CODED_SLICE_RASL && pSlice->getNalUnitType() != NAL_UNIT_CODED_SLICE_RADL
1589
0
      && !pSlice->getPicHeader()->getNonReferencePictureFlag() )
1590
0
  {
1591
0
    m_prevTid0POC = pSlice->getPOC();
1592
0
  }
1593
0
}
1594
1595
1596
void DecLibParser::checkNoOutputPriorPics()
1597
0
{
1598
0
  if( !m_isNoOutputPriorPics )
1599
0
  {
1600
0
    return;
1601
0
  }
1602
1603
0
  for( auto& pcPicTmp: m_dpbReferencePics )
1604
0
  {
1605
0
    if( pcPicTmp->progress >= Picture::reconstructed && pcPicTmp->getPOC() < m_lastPOCNoOutputPriorPics )
1606
0
    {
1607
0
      pcPicTmp->neededForOutput = false;
1608
0
    }
1609
0
  }
1610
0
}
1611
1612
/** Function for checking if picture should be skipped because of random access. This function checks the skipping of pictures in the case of -s option random access.
1613
 *  All pictures prior to the random access point indicated by the counter iSkipFrame are skipped.
1614
 *  It also checks the type of Nal unit type at the random access point.
1615
 *  If the random access point is CRA/CRANT/BLA/BLANT, TFD pictures with POC less than the POC of the random access point are skipped.
1616
 *  If the random access point is IDR all pictures after the random access point are decoded.
1617
 *  If the random access point is none of the above, a warning is issues, and decoding of pictures with POC
1618
 *  equal to or greater than the random access point POC is attempted. For non IDR/CRA/BLA random
1619
 *  access point there is no guarantee that the decoder will not crash.
1620
 */
1621
bool DecLibParser::isRandomAccessSkipPicture()
1622
0
{
1623
0
  if( m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_IDR_W_RADL || m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_IDR_N_LP )
1624
0
  {
1625
0
    m_pocRandomAccess = -MAX_INT;   // no need to skip the reordered pictures in IDR, they are decodable.
1626
0
  }
1627
0
  else if( m_pocRandomAccess == MAX_INT )   // start of random access point, m_pocRandomAccess has not been set yet.
1628
0
  {
1629
0
#if GDR_ADJ
1630
0
    if( m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_CRA || m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_GDR )
1631
#else
1632
    if( m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_CRA )
1633
#endif
1634
0
    {
1635
      // set the POC random access since we need to skip the reordered pictures in the case of CRA/CRANT/BLA/BLANT.
1636
0
      m_pocRandomAccess = m_apcSlicePilot->getPOC();
1637
0
    }
1638
0
    else
1639
0
    {
1640
0
      if( !m_warningMessageSkipPicture )
1641
0
      {
1642
0
        msg( WARNING, "Warning: this is not a valid random access point and the data is discarded until the first CRA picture\n" );
1643
0
        m_warningMessageSkipPicture = true;
1644
0
      }
1645
0
      return true;
1646
0
    }
1647
0
  }
1648
  // skip the reordered pictures, if necessary
1649
0
  else if( m_apcSlicePilot->getPOC() < m_pocRandomAccess && ( m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_RASL ) )
1650
0
  {
1651
0
    return true;
1652
0
  }
1653
  // if we reach here, then the picture is not skipped.
1654
0
  return false;
1655
0
}
1656
1657
void DecLibParser::xCheckMixedNalUnit( Slice* pcSlice, const InputNALUnit& nalu )
1658
0
{
1659
0
  if( pcSlice->getPPS()->getMixedNaluTypesInPicFlag() )
1660
0
  {
1661
0
    CHECK(pcSlice->getPPS()->getNumSlicesInPic() < 2, "mixed nal unit type picture, but with less than 2 slices");
1662
1663
0
    CHECK( pcSlice->getNalUnitType() == NAL_UNIT_CODED_SLICE_GDR, "picture with mixed NAL unit type cannot have GDR slice");
1664
1665
    //Check that if current slice is IRAP type, the other type of NAL can only be TRAIL_NUT
1666
0
    if( pcSlice->getNalUnitType() == NAL_UNIT_CODED_SLICE_IDR_W_RADL
1667
0
        || pcSlice->getNalUnitType() == NAL_UNIT_CODED_SLICE_IDR_N_LP
1668
0
        || pcSlice->getNalUnitType() == NAL_UNIT_CODED_SLICE_CRA )
1669
0
    {
1670
0
      for( int i = 0; i < m_uiSliceSegmentIdx; i++ )
1671
0
      {
1672
0
        Slice* preSlice = m_pcParsePic->slices[i];
1673
0
        CHECK( pcSlice->getNalUnitType() != preSlice->getNalUnitType()
1674
0
                 && preSlice->getNalUnitType() != NAL_UNIT_CODED_SLICE_TRAIL,
1675
0
               "In a mixed NAL unt type picture, an IRAP slice can be mixed with Trail slice(s) only" );
1676
0
      }
1677
0
    }
1678
1679
    // if this is the last slice of the picture, check whether that there are at least two different NAL unit types in the picture
1680
0
    if( pcSlice->getPPS()->getNumSlicesInPic() == (m_uiSliceSegmentIdx + 1) )
1681
0
    {
1682
0
      bool hasDiffTypes = false;
1683
0
      for( int i = 1; !hasDiffTypes && i <= m_uiSliceSegmentIdx; i++ )
1684
0
      {
1685
0
        Slice* slice1 = m_pcParsePic->slices[i-1];
1686
0
        Slice* slice2 = m_pcParsePic->slices[i];
1687
0
        if( slice1->getNalUnitType() != slice2->getNalUnitType())
1688
0
        {
1689
0
          hasDiffTypes = true;
1690
0
        }
1691
0
      }
1692
0
      CHECK( !hasDiffTypes, "VCL NAL units of the picture shall have two or more different nal_unit_type values");
1693
0
    }
1694
0
  }
1695
0
  else   // all slices shall have the same nal unit type
1696
0
  {
1697
0
    bool sameNalUnitType = true;
1698
0
    for( int i = 0; i < m_uiSliceSegmentIdx; i++ )
1699
0
    {
1700
0
      Slice* PreSlice = m_pcParsePic->slices[i];
1701
0
      if( PreSlice->getNalUnitType() != pcSlice->getNalUnitType() )
1702
0
      {
1703
0
        sameNalUnitType = false;
1704
0
      }
1705
0
    }
1706
0
    CHECK( !sameNalUnitType, "mixed_nalu_types_in_pic_flag is zero, but have different nal unit types" );
1707
0
  }
1708
0
}
1709
1710
void DecLibParser::waitForPicsToFinishParsing( const std::vector<Picture*>& refPics )
1711
0
{
1712
0
  for( Picture* pic: refPics )
1713
0
  {
1714
0
    if( m_threadPool->numThreads() == 0 )
1715
0
    {
1716
0
      m_threadPool->processTasksOnMainThread();
1717
0
    }
1718
0
    try
1719
0
    {
1720
0
      pic->parseDone.wait();
1721
0
    }
1722
0
    catch( ... )
1723
0
    {
1724
0
      pic->waitForAllTasks();
1725
0
    }
1726
0
  }
1727
0
}
1728
1729
}   // namespace vvdec