Coverage Report

Created: 2026-09-01 06:57

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/work/vvenc/source/Lib/EncoderLib/CABACWriter.cpp
Line
Count
Source
1
/* -----------------------------------------------------------------------------
2
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) 2019-2026, Fraunhofer-Gesellschaft zur Förderung der angewandten Forschung e.V. & The VVenC Authors.
10
All rights reserved.
11
12
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.
18
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.
22
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.
26
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)
37
ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
38
POSSIBILITY OF SUCH DAMAGE.
39
40
41
------------------------------------------------------------------------------------------- */
42
43
44
/** \file     CABACWriter.cpp
45
 *  \brief    Writer for low level syntax
46
 */
47
48
#include "CABACWriter.h"
49
#include "EncLib.h"
50
#include "CommonLib/Contexts.h"
51
#include "CommonLib/UnitTools.h"
52
#include "CommonLib/SampleAdaptiveOffset.h"
53
#include "CommonLib/dtrace_buffer.h"
54
55
#include <map>
56
#include <algorithm>
57
58
//! \ingroup EncoderLib
59
//! \{
60
61
namespace vvenc {
62
63
void CABACWriter::initCtxModels( const Slice& slice )
64
11.6k
{
65
11.6k
  int       qp                = slice.sliceQp;
66
11.6k
  SliceType sliceType         = slice.sliceType;
67
11.6k
  SliceType encCABACTableIdx  = slice.encCABACTableIdx;
68
11.6k
  if( !slice.isIntra() && (encCABACTableIdx==VVENC_B_SLICE || encCABACTableIdx==VVENC_P_SLICE) && slice.pps->cabacInitPresent )
69
0
  {
70
0
    sliceType = encCABACTableIdx;
71
0
  }
72
11.6k
  m_BinEncoder.reset( qp, (int)sliceType );
73
11.6k
}
74
75
76
77
SliceType xGetCtxInitId( const Slice& slice, const BinEncIf& binEncoder, Ctx& ctxTest )
78
0
{
79
0
  const CtxStore& ctxStoreTest = static_cast<const CtxStore&>( ctxTest );
80
0
  const CtxStore& ctxStoreRef  = static_cast<const CtxStore&>( binEncoder.getCtx() );
81
0
  int qp = slice.sliceQp;
82
0
  if( !slice.isIntra() )
83
0
  {
84
0
    SliceType aSliceTypeChoices[] = { VVENC_B_SLICE, VVENC_P_SLICE };
85
0
    uint64_t  bestCost                 = std::numeric_limits<uint64_t>::max();
86
0
    SliceType bestSliceType       = aSliceTypeChoices[0];
87
0
    for (uint32_t idx=0; idx<2; idx++)
88
0
    {
89
0
      uint64_t  curCost           = 0;
90
0
      SliceType curSliceType = aSliceTypeChoices[idx];
91
0
      ctxTest.init( qp, (int)curSliceType );
92
0
      for( int k = 0; k < Ctx::NumberOfContexts; k++ )
93
0
      {
94
0
        if( binEncoder.getNumBins(k) > 0 )
95
0
        {
96
0
          curCost += uint64_t( binEncoder.getNumBins(k) ) * ctxStoreRef[k].estFracExcessBits( ctxStoreTest[k] );
97
0
        }
98
0
      }
99
0
      if (curCost < bestCost)
100
0
      {
101
0
        bestSliceType = curSliceType;
102
0
        bestCost      = curCost;
103
0
      }
104
0
    }
105
0
    return bestSliceType;
106
0
  }
107
0
  else
108
0
  {
109
0
    return VVENC_I_SLICE;
110
0
  }
111
0
}
112
113
114
SliceType CABACWriter::getCtxInitId( const Slice& slice )
115
0
{
116
0
  return  xGetCtxInitId( slice, m_BinEncoder, m_TestCtx );
117
0
}
118
119
120
unsigned estBits( BinEncIf& binEnc, const std::vector<bool>& bins, const Ctx& ctx, const int ctxId, const uint8_t winSize )
121
0
{
122
0
  binEnc.initCtxAndWinSize( ctxId, ctx, winSize );
123
0
  binEnc.start();
124
0
  const std::size_t numBins   = bins.size();
125
0
  unsigned          startBits = binEnc.getNumWrittenBits();
126
0
  for( std::size_t binId = 0; binId < numBins; binId++ )
127
0
  {
128
0
    unsigned  bin = ( bins[binId] ? 1 : 0 );
129
0
    binEnc.encodeBin( bin, ctxId );
130
0
  }
131
0
  unsigned endBits    = binEnc.getNumWrittenBits();
132
0
  unsigned codedBits  = endBits - startBits;
133
0
  return   codedBits;
134
0
}
135
136
137
//================================================================================
138
//  clause 7.3.8.1
139
//--------------------------------------------------------------------------------
140
//    void  end_of_slice()
141
//================================================================================
142
143
void CABACWriter::end_of_slice()
144
1.16k
{
145
1.16k
  m_BinEncoder.encodeBinTrm ( 1 );
146
1.16k
  m_BinEncoder.finish       ();
147
1.16k
}
148
149
150
//================================================================================
151
//  clause 7.3.8.2
152
//--------------------------------------------------------------------------------
153
//    bool  coding_tree_unit( cs, area, qp, ctuRsAddr, skipSao, skipAlf )
154
//================================================================================
155
156
void CABACWriter::coding_tree_unit( CodingStructure& cs, const UnitArea& area, int (&qps)[2], unsigned ctuRsAddr, bool skipSao /* = false */, bool skipAlf /* = false */ )
157
7.15k
{
158
7.15k
  CUCtx cuCtx( qps[CH_L] );
159
7.15k
  Partitioner *partitioner = &m_partitioner[0];
160
161
7.15k
  partitioner->initCtu( area, CH_L, *cs.slice );
162
163
7.15k
  if( !skipSao )
164
3.57k
  {
165
3.57k
    sao( *cs.slice, ctuRsAddr );
166
3.57k
  }
167
168
7.15k
  if (!skipAlf)
169
3.57k
  {
170
14.3k
    for (int compIdx = 0; compIdx < MAX_NUM_COMP; compIdx++)
171
10.7k
    {
172
10.7k
      if(cs.slice->alfEnabled[compIdx])
173
0
      {
174
0
        codeAlfCtuEnabledFlag(cs, ctuRsAddr, compIdx);
175
0
        if (isLuma(ComponentID(compIdx)))
176
0
        {
177
0
          codeAlfCtuFilterIndex(cs, ctuRsAddr);
178
0
        }
179
0
        if (isChroma(ComponentID(compIdx)))
180
0
        {
181
0
          codeAlfCtuAlternative(cs, ctuRsAddr, compIdx, &cs.slice->alfAps[cs.slice->chromaApsId]->alfParam );
182
0
        }
183
0
      }
184
10.7k
    }
185
3.57k
  }
186
187
7.15k
  if ( !skipAlf )
188
3.57k
  {
189
10.7k
    for ( int compIdx = 1; compIdx < getNumberValidComponents( cs.pcv->chrFormat ); compIdx++ )
190
7.15k
    {
191
7.15k
      if (cs.slice->ccAlfFilterParam.ccAlfFilterEnabled[compIdx - 1])
192
0
      {
193
0
        const int filterCount   = cs.slice->ccAlfFilterParam.ccAlfFilterCount[compIdx - 1];
194
195
0
        const int      ry = ctuRsAddr / cs.pcv->widthInCtus;
196
0
        const int      rx = ctuRsAddr % cs.pcv->widthInCtus;
197
0
        const Position lumaPos(rx * cs.pcv->maxCUSize, ry * cs.pcv->maxCUSize);
198
199
0
        codeCcAlfFilterControlIdc(cs.slice->ccAlfFilterControl[compIdx - 1][ctuRsAddr], cs, ComponentID(compIdx),
200
0
                                  ctuRsAddr, cs.slice->ccAlfFilterControl[compIdx - 1], lumaPos, filterCount);
201
0
      }
202
7.15k
    }
203
3.57k
  }
204
205
7.15k
  if ( CS::isDualITree(cs) && cs.pcv->chrFormat != CHROMA_400 && cs.pcv->maxCUSize > 64 )
206
7.15k
  {
207
7.15k
    CUCtx chromaCuCtx(qps[CH_C]);
208
7.15k
    Partitioner *chromaPartitioner = &m_partitioner[1];
209
7.15k
    chromaPartitioner->initCtu(area, CH_C, *cs.slice);
210
7.15k
    coding_tree(cs, *partitioner, cuCtx, chromaPartitioner, &chromaCuCtx);
211
7.15k
    qps[CH_L] = cuCtx.qp;
212
7.15k
    qps[CH_C] = chromaCuCtx.qp;
213
7.15k
  }
214
0
  else
215
0
  {
216
0
    coding_tree( cs, *partitioner, cuCtx );
217
0
    qps[CH_L] = cuCtx.qp;
218
0
    if( CS::isDualITree( cs ) && cs.pcv->chrFormat != CHROMA_400 )
219
0
    {
220
0
      CUCtx cuCtxChroma( qps[CH_C] );
221
0
      partitioner->initCtu( area, CH_C, *cs.slice );
222
0
      coding_tree( cs, *partitioner, cuCtxChroma );
223
0
      qps[CH_C] = cuCtxChroma.qp;
224
0
    }
225
0
  }
226
7.15k
}
227
228
229
//================================================================================
230
//  clause 7.3.8.3
231
//--------------------------------------------------------------------------------
232
//    void  sao             ( slice, ctuRsAddr )
233
//    void  sao_block_pars  ( saoPars, bitDepths, sliceEnabled, leftMergeAvail, aboveMergeAvail, onlyEstMergeInfo )
234
//    void  sao_offset_pars ( ctbPars, compID, sliceEnabled, bitDepth )
235
//================================================================================
236
237
void CABACWriter::sao( const Slice& slice, unsigned ctuRsAddr )
238
3.57k
{
239
3.57k
  const SPS& sps = *slice.sps;
240
3.57k
  if( !sps.saoEnabled )
241
0
  {
242
0
    return;
243
0
  }
244
245
3.57k
  CodingStructure&     cs                     = *slice.pic->cs;
246
3.57k
  const PreCalcValues& pcv                    = *cs.pcv;
247
3.57k
  const SAOBlkParam&  sao_ctu_pars            = cs.picture->getSAO()[ctuRsAddr];
248
3.57k
  bool                slice_sao_luma_flag     = ( slice.saoEnabled[ CH_L ] );
249
3.57k
  bool                slice_sao_chroma_flag   = ( slice.saoEnabled[ CH_C ] && sps.chromaFormatIdc != CHROMA_400 );
250
3.57k
  if( !slice_sao_luma_flag && !slice_sao_chroma_flag )
251
0
  {
252
0
    return;
253
0
  }
254
255
3.57k
  bool                sliceEnabled[3]         = { slice_sao_luma_flag, slice_sao_chroma_flag, slice_sao_chroma_flag };
256
3.57k
  int                 frame_width_in_ctus     = pcv.widthInCtus;
257
3.57k
  int                 ry                      = ctuRsAddr      / frame_width_in_ctus;
258
3.57k
  int                 rx                      = ctuRsAddr - ry * frame_width_in_ctus;
259
3.57k
  const Position      pos                     ( rx * cs.pcv->maxCUSize, ry * cs.pcv->maxCUSize );
260
3.57k
  const unsigned      curSliceIdx             = slice.independentSliceIdx;
261
3.57k
  const unsigned      curTileIdx              = cs.pps->getTileIdx( pos );
262
3.57k
  bool                leftMergeAvail          = cs.getCURestricted( pos.offset( -(int)pcv.maxCUSize, 0  ), pos, curSliceIdx, curTileIdx, CH_L, TREE_D ) ? true : false;
263
3.57k
  bool                aboveMergeAvail         = cs.getCURestricted( pos.offset( 0, -(int)pcv.maxCUSize ), pos, curSliceIdx, curTileIdx, CH_L, TREE_D ) ? true : false;
264
3.57k
  sao_block_pars( sao_ctu_pars, sps.bitDepths, sliceEnabled, leftMergeAvail, aboveMergeAvail, false );
265
3.57k
}
266
267
268
void CABACWriter::sao_block_pars( const SAOBlkParam& saoPars, const BitDepths& bitDepths, const bool* sliceEnabled, bool leftMergeAvail, bool aboveMergeAvail, bool onlyEstMergeInfo )
269
13.8k
{
270
13.8k
  bool isLeftMerge  = false;
271
13.8k
  bool isAboveMerge = false;
272
13.8k
  if( leftMergeAvail )
273
6.89k
  {
274
    // sao_merge_left_flag
275
6.89k
    isLeftMerge   = ( saoPars[COMP_Y].modeIdc == SAO_MODE_MERGE && saoPars[COMP_Y].typeIdc == SAO_MERGE_LEFT );
276
6.89k
    m_BinEncoder.encodeBin( (isLeftMerge), Ctx::SaoMergeFlag() );
277
6.89k
  }
278
13.8k
  if( aboveMergeAvail && !isLeftMerge )
279
5.65k
  {
280
    // sao_merge_above_flag
281
5.65k
    isAboveMerge  = ( saoPars[COMP_Y].modeIdc == SAO_MODE_MERGE && saoPars[COMP_Y].typeIdc == SAO_MERGE_ABOVE );
282
5.65k
    m_BinEncoder.encodeBin( (isAboveMerge), Ctx::SaoMergeFlag() );
283
5.65k
  }
284
13.8k
  if( onlyEstMergeInfo )
285
3.57k
  {
286
3.57k
    return; //only for RDO
287
3.57k
  }
288
10.2k
  if( !isLeftMerge && !isAboveMerge )
289
4.74k
  {
290
    // explicit parameters
291
18.9k
    for( int compIdx=0; compIdx < MAX_NUM_COMP; compIdx++ )
292
14.2k
    {
293
14.2k
      sao_offset_pars( saoPars[compIdx], ComponentID(compIdx), sliceEnabled[compIdx], bitDepths[ toChannelType(ComponentID(compIdx)) ] );
294
14.2k
    }
295
4.74k
  }
296
10.2k
}
297
298
299
void CABACWriter::sao_offset_pars( const SAOOffset& ctbPars, ComponentID compID, bool sliceEnabled, int bitDepth )
300
78.5k
{
301
78.5k
  if( !sliceEnabled )
302
0
  {
303
0
    CHECK( ctbPars.modeIdc != SAO_MODE_OFF, "Sao must be off, if it is disabled on slice level" );
304
0
    return;
305
0
  }
306
78.5k
  const bool isFirstCompOfChType = ( getFirstComponentOfChannel( toChannelType(compID) ) == compID );
307
308
78.5k
  if( isFirstCompOfChType )
309
52.3k
  {
310
    // sao_type_idx_luma / sao_type_idx_chroma
311
52.3k
    if( ctbPars.modeIdc == SAO_MODE_OFF )
312
16.5k
    {
313
16.5k
      m_BinEncoder.encodeBin  ( 0, Ctx::SaoTypeIdx() );
314
16.5k
    }
315
35.7k
    else if( ctbPars.typeIdc == SAO_TYPE_BO )
316
7.19k
    {
317
7.19k
      m_BinEncoder.encodeBin  ( 1, Ctx::SaoTypeIdx() );
318
7.19k
      m_BinEncoder.encodeBinEP( 0 );
319
7.19k
    }
320
28.5k
    else
321
28.5k
    {
322
28.5k
      CHECK(!( ctbPars.typeIdc < SAO_TYPE_START_BO ), "Unspecified error");
323
28.5k
      m_BinEncoder.encodeBin  ( 1, Ctx::SaoTypeIdx() );
324
28.5k
      m_BinEncoder.encodeBinEP( 1 );
325
28.5k
    }
326
52.3k
  }
327
328
78.5k
  if( ctbPars.modeIdc == SAO_MODE_NEW )
329
53.6k
  {
330
53.6k
    const int maxOffsetQVal = SampleAdaptiveOffset::getMaxOffsetQVal( bitDepth );
331
53.6k
    int       numClasses    = ( ctbPars.typeIdc == SAO_TYPE_BO ? 4 : NUM_SAO_EO_CLASSES );
332
53.6k
    int       k             = 0;
333
53.6k
    int       offset[4];
334
311k
    for( int i = 0; i < numClasses; i++ )
335
257k
    {
336
257k
      if( ctbPars.typeIdc != SAO_TYPE_BO && i == SAO_CLASS_EO_PLAIN )
337
42.8k
      {
338
42.8k
        continue;
339
42.8k
      }
340
214k
      int classIdx = ( ctbPars.typeIdc == SAO_TYPE_BO ? ( ctbPars.typeAuxInfo + i ) % NUM_SAO_BO_CLASSES : i );
341
214k
      offset[k++]  = ctbPars.offset[classIdx];
342
214k
    }
343
344
    // sao_offset_abs
345
268k
    for( int i = 0; i < 4; i++ )
346
214k
    {
347
214k
      unsigned absOffset = ( offset[i] < 0 ? -offset[i] : offset[i] );
348
214k
      unary_max_eqprob( absOffset, maxOffsetQVal );
349
214k
    }
350
351
    // band offset mode
352
53.6k
    if( ctbPars.typeIdc == SAO_TYPE_BO )
353
10.7k
    {
354
      // sao_offset_sign
355
53.8k
      for( int i = 0; i < 4; i++ )
356
43.1k
      {
357
43.1k
        if( offset[i] )
358
310
        {
359
310
          m_BinEncoder.encodeBinEP( (offset[i] < 0) );
360
310
        }
361
43.1k
      }
362
      // sao_band_position
363
10.7k
      m_BinEncoder.encodeBinsEP( ctbPars.typeAuxInfo, NUM_SAO_BO_CLASSES_LOG2 );
364
10.7k
    }
365
    // edge offset mode
366
42.8k
    else
367
42.8k
    {
368
42.8k
      if( isFirstCompOfChType )
369
28.5k
      {
370
        // sao_eo_class_luma / sao_eo_class_chroma
371
28.5k
        CHECK( ctbPars.typeIdc - SAO_TYPE_START_EO < 0, "sao edge offset class is outside valid range" );
372
28.5k
        m_BinEncoder.encodeBinsEP( ctbPars.typeIdc - SAO_TYPE_START_EO, NUM_SAO_EO_TYPES_LOG2 );
373
28.5k
      }
374
42.8k
    }
375
53.6k
  }
376
78.5k
}
377
378
379
//================================================================================
380
//  clause 7.3.8.4
381
//--------------------------------------------------------------------------------
382
//    void  coding_tree       ( cs, partitioner, cuCtx )
383
//    void  split_cu_flag     ( split, cs, partitioner )
384
//    void  split_cu_mode_mt  ( split, cs, partitioner )
385
//================================================================================
386
387
void CABACWriter::coding_tree(const CodingStructure& cs, Partitioner& partitioner, CUCtx& cuCtx, Partitioner* pPartitionerChroma, CUCtx* pCuCtxChroma)
388
154k
{
389
154k
  const PPS      &pps         = *cs.pps;
390
154k
  const UnitArea& currArea    = partitioner.currArea();
391
154k
  const CodingUnit &cu        = *cs.getCU( currArea.blocks[partitioner.chType], partitioner.chType, partitioner.treeType );
392
393
  // Reset delta QP coding flag and ChromaQPAdjustemt coding flag
394
  //Note: do not reset qg at chroma CU
395
154k
  if( pps.useDQP && partitioner.currQgEnable() && !isChroma( partitioner.chType ) )
396
13.3k
  {
397
13.3k
    cuCtx.qgStart    = true;
398
13.3k
    cuCtx.isDQPCoded          = false;
399
13.3k
  }
400
154k
  if( cs.slice->chromaQpAdjEnabled && partitioner.currQgChromaEnable() )
401
0
  {
402
0
    cuCtx.isChromaQpAdjCoded  = false;
403
0
  }
404
  // Reset delta QP coding flag and ChromaQPAdjustemt coding flag
405
154k
  if (CS::isDualITree(cs) && pPartitionerChroma != nullptr)
406
7.15k
  {
407
7.15k
    if (pps.useDQP && pPartitionerChroma->currQgEnable())
408
7.15k
    {
409
7.15k
      pCuCtxChroma->qgStart    = true;
410
7.15k
      pCuCtxChroma->isDQPCoded = false;
411
7.15k
    }
412
7.15k
    if (cs.slice->chromaQpAdjEnabled && pPartitionerChroma->currQgChromaEnable())
413
0
    {
414
0
      pCuCtxChroma->isChromaQpAdjCoded = false;
415
0
    }
416
7.15k
  }
417
418
154k
  determineNeighborCus( cs, partitioner.currArea(), partitioner.chType, partitioner.treeType );
419
420
154k
  const PartSplit splitMode = CU::getSplitAtDepth( cu, partitioner.currDepth );
421
422
154k
  split_cu_mode( splitMode, cs, partitioner );
423
424
154k
  CHECK( !partitioner.canSplit( splitMode, cs ), "The chosen split mode is invalid!" );
425
426
154k
  if( splitMode != CU_DONT_SPLIT )
427
79.2k
  {
428
79.2k
    if (CS::isDualITree(cs) && pPartitionerChroma != nullptr && (partitioner.currArea().lwidth() >= 64 || partitioner.currArea().lheight() >= 64))
429
7.15k
    {
430
7.15k
      partitioner.splitCurrArea(CU_QUAD_SPLIT, cs);
431
7.15k
      pPartitionerChroma->splitCurrArea(CU_QUAD_SPLIT, cs);
432
7.15k
      bool beContinue = true;
433
7.15k
      bool lumaContinue = true;
434
7.15k
      bool chromaContinue = true;
435
436
35.7k
      while (beContinue)
437
28.6k
      {
438
28.6k
        if (partitioner.currArea().lwidth() > 64 || partitioner.currArea().lheight() > 64)
439
0
        {
440
0
          if (cs.picture->blocks[partitioner.chType].contains(partitioner.currArea().blocks[partitioner.chType].pos()))
441
0
          {
442
0
            coding_tree(cs, partitioner, cuCtx, pPartitionerChroma, pCuCtxChroma);
443
0
          }
444
0
          lumaContinue = partitioner.nextPart(cs);
445
0
          chromaContinue = pPartitionerChroma->nextPart(cs);
446
0
          CHECK(lumaContinue != chromaContinue, "luma chroma partition should be matched");
447
0
          beContinue = lumaContinue;
448
0
        }
449
28.6k
        else
450
28.6k
        {
451
          //dual tree coding under 64x64 block
452
28.6k
          if (cs.picture->blocks[partitioner.chType].contains(partitioner.currArea().blocks[partitioner.chType].pos()))
453
19.0k
          {
454
19.0k
            coding_tree(cs, partitioner, cuCtx);
455
19.0k
          }
456
28.6k
          lumaContinue = partitioner.nextPart(cs);
457
28.6k
          if (cs.picture->blocks[pPartitionerChroma->chType].contains(pPartitionerChroma->currArea().blocks[pPartitionerChroma->chType].pos()))
458
19.0k
          {
459
19.0k
            coding_tree(cs, *pPartitionerChroma, *pCuCtxChroma);
460
19.0k
          }
461
28.6k
          chromaContinue = pPartitionerChroma->nextPart(cs);
462
28.6k
          CHECK(lumaContinue != chromaContinue, "luma chroma partition should be matched");
463
28.6k
          beContinue = lumaContinue;
464
28.6k
        }
465
28.6k
      }
466
7.15k
      partitioner.exitCurrSplit();
467
7.15k
      pPartitionerChroma->exitCurrSplit();
468
469
7.15k
    }
470
72.1k
    else
471
72.1k
    {
472
72.1k
      const ModeType modeTypeParent = partitioner.modeType;
473
72.1k
      const ModeType modeTypeChild = CU::getModeTypeAtDepth( cu, partitioner.currDepth );
474
72.1k
      mode_constraint( splitMode, cs, partitioner, modeTypeChild );
475
72.1k
      partitioner.modeType = modeTypeChild;
476
477
72.1k
      bool chromaNotSplit = modeTypeParent == MODE_TYPE_ALL && modeTypeChild == MODE_TYPE_INTRA ? true : false;
478
72.1k
      CHECK( chromaNotSplit && partitioner.chType != CH_L, "chType must be luma" );
479
72.1k
      if( partitioner.treeType == TREE_D )
480
72.1k
      {
481
72.1k
        partitioner.treeType = chromaNotSplit ? TREE_L : TREE_D;
482
72.1k
      }
483
72.1k
      partitioner.splitCurrArea( splitMode, cs );
484
485
72.1k
      do
486
178k
      {
487
178k
        if( cs.picture->blocks[partitioner.chType].contains( partitioner.currArea().blocks[partitioner.chType].pos() ) )
488
109k
        {
489
109k
          coding_tree( cs, partitioner, cuCtx );
490
109k
        }
491
178k
      } while( partitioner.nextPart( cs ) );
492
493
72.1k
      partitioner.exitCurrSplit();
494
72.1k
      if( chromaNotSplit )
495
0
      {
496
0
        if (isChromaEnabled(cs.pcv->chrFormat))
497
0
        {
498
0
          CHECK( partitioner.chType != CH_L, "must be luma status" );
499
0
          partitioner.chType = CH_C;
500
0
          partitioner.treeType = TREE_C;
501
502
0
          if( cs.picture->blocks[partitioner.chType].contains( partitioner.currArea().blocks[partitioner.chType].pos() ) )
503
0
          {
504
0
            coding_tree( cs, partitioner, cuCtx );
505
0
          }
506
0
        }
507
        //recover
508
0
        partitioner.chType = CH_L;
509
0
        partitioner.treeType = TREE_D;
510
0
      }
511
72.1k
      partitioner.modeType = modeTypeParent;
512
72.1k
    }
513
79.2k
    return;
514
79.2k
  }
515
516
  // Predict QP on start of quantization group
517
75.5k
  if( cuCtx.qgStart )
518
18.0k
  {
519
18.0k
    cuCtx.qgStart = false;
520
18.0k
    cuCtx.qp = CU::predictQP( cu, cuCtx.qp );
521
18.0k
  }
522
75.5k
  CHECK( cu.treeType != partitioner.treeType, "treeType mismatch" );
523
524
525
  // coding unit
526
75.5k
  coding_unit( cu, partitioner, cuCtx );
527
528
75.5k
  if( cu.chType == CH_C )
529
30.2k
  {
530
30.2k
    DTRACE_COND( (isEncoding()), g_trace_ctx, D_QP, "[chroma CU]x=%d, y=%d, w=%d, h=%d, qp=%d\n", cu.Cb().x, cu.Cb().y, cu.Cb().width, cu.Cb().height, cu.qp );
531
30.2k
  }
532
45.3k
  else
533
45.3k
  {
534
45.3k
    DTRACE_COND( ( isEncoding() ), g_trace_ctx, D_QP, "x=%d, y=%d, w=%d, h=%d, qp=%d\n", cu.Y().x, cu.Y().y, cu.Y().width, cu.Y().height, cu.qp );
535
45.3k
  }
536
75.5k
  DTRACE_BLOCK_REC_COND( ( !isEncoding() ), cs.picture->getRecoBuf( cu ), cu, cu.predMode );
537
75.5k
}
538
539
540
void CABACWriter::mode_constraint( const PartSplit split, const CodingStructure& cs, Partitioner& partitioner, const ModeType modeType )
541
242k
{
542
242k
  CHECK( split == CU_DONT_SPLIT, "splitMode shall not be no split" );
543
242k
  int val = CS::signalModeCons( cs, partitioner.currArea(), split, partitioner.modeType);
544
242k
  if( val == LDT_MODE_TYPE_SIGNAL )
545
0
  {
546
0
    CHECK( modeType == MODE_TYPE_ALL, "shall not be no constraint case" );
547
0
    bool flag = modeType == MODE_TYPE_INTRA;
548
0
    int ctxIdx = DeriveCtx::CtxModeConsFlag();
549
0
    m_BinEncoder.encodeBin( flag, Ctx::ModeConsFlag( ctxIdx ) );
550
0
    DTRACE( g_trace_ctx, D_SYNTAX, "mode_cons_flag() flag=%d\n", flag );
551
0
  }
552
242k
  else if( val == LDT_MODE_TYPE_INFER )
553
0
  {
554
0
    CHECK( modeType != MODE_TYPE_INTRA, "Wrong mode type" );
555
0
  }
556
242k
  else
557
242k
  {
558
242k
    CHECK( modeType != partitioner.modeType, "Wrong mode type" );
559
242k
  }
560
242k
}
561
562
563
void CABACWriter::split_cu_mode( const PartSplit split, const CodingStructure& cs, Partitioner& partitioner )
564
425k
{
565
425k
  bool canNo, canQt, canBh, canBv, canTh, canTv;
566
425k
  partitioner.canSplit( cs, canNo, canQt, canBh, canBv, canTh, canTv );
567
568
425k
  const bool canSpl[6] = { canNo, canQt, canBh, canBv, canTh, canTv };
569
570
425k
  unsigned ctxSplit = 0, ctxQtSplit = 0, ctxBttHV = 0, ctxBttH12 = 0, ctxBttV12;
571
425k
  DeriveCtx::CtxSplit( partitioner, ctxSplit, ctxQtSplit, ctxBttHV, ctxBttH12, ctxBttV12, canSpl );
572
573
425k
  const bool canSplit = canBh || canBv || canTh || canTv || canQt;
574
425k
  const bool isNo     = split == CU_DONT_SPLIT;
575
576
425k
  if( canNo && canSplit )
577
261k
  {
578
261k
    m_BinEncoder.encodeBin( !isNo, Ctx::SplitFlag( ctxSplit ) );
579
261k
  }
580
581
425k
  DTRACE( g_trace_ctx, D_SYNTAX, "split_cu_mode() ctx=%d split=%d\n", ctxSplit, !isNo );
582
583
425k
  if( isNo )
584
176k
  {
585
176k
    return;
586
176k
  }
587
588
249k
  const bool canBtt = canBh || canBv || canTh || canTv;
589
249k
  const bool isQt   = split == CU_QUAD_SPLIT;
590
591
249k
  if( canQt && canBtt )
592
98.2k
  {
593
98.2k
    m_BinEncoder.encodeBin( isQt, Ctx::SplitQtFlag( ctxQtSplit ) );
594
98.2k
  }
595
596
249k
  DTRACE( g_trace_ctx, D_SYNTAX, "split_cu_mode() ctx=%d qt=%d\n", ctxQtSplit, isQt );
597
598
249k
  if( isQt )
599
62.9k
  {
600
62.9k
    return;
601
62.9k
  }
602
603
186k
  const bool canHor = canBh || canTh;
604
186k
  const bool canVer = canBv || canTv;
605
186k
  const bool  isVer = split == CU_VERT_SPLIT || split == CU_TRIV_SPLIT;
606
607
186k
  if( canVer && canHor )
608
97.5k
  {
609
97.5k
    m_BinEncoder.encodeBin( isVer, Ctx::SplitHvFlag( ctxBttHV ) );
610
97.5k
  }
611
612
186k
  const bool can14 = isVer ? canTv : canTh;
613
186k
  const bool can12 = isVer ? canBv : canBh;
614
186k
  const bool  is12 = isVer ? ( split == CU_VERT_SPLIT ) : ( split == CU_HORZ_SPLIT );
615
616
186k
  if( can12 && can14 )
617
52.6k
  {
618
52.6k
    m_BinEncoder.encodeBin( is12, Ctx::Split12Flag( isVer ? ctxBttV12 : ctxBttH12 ) );
619
52.6k
  }
620
621
186k
  DTRACE( g_trace_ctx, D_SYNTAX, "split_cu_mode() ctxHv=%d ctx12=%d mode=%d\n", ctxBttHV, isVer ? ctxBttV12 : ctxBttH12, split );
622
186k
}
623
624
625
//================================================================================
626
//  clause 7.3.8.5
627
//--------------------------------------------------------------------------------
628
//    void  coding_unit               ( cu, partitioner, cuCtx )
629
//    void  cu_skip_flag              ( cu )
630
//    void  pred_mode                 ( cu )
631
//    void  part_mode                 ( cu )
632
//    void  cu_pred_data              ( pus )
633
//    void  cu_lic_flag               ( cu )
634
//    void  intra_luma_pred_modes     ( pus )
635
//    void  intra_chroma_pred_mode    ( cu )
636
//    void  cu_residual               ( cu, partitioner, cuCtx )
637
//    void  rqt_root_cbf              ( cu )
638
//    void  end_of_ctu                ( cu, cuCtx )
639
//================================================================================
640
641
void CABACWriter::coding_unit( const CodingUnit& cu, Partitioner& partitioner, CUCtx& cuCtx )
642
75.5k
{
643
75.5k
  DTRACE( g_trace_ctx, D_SYNTAX, "coding_unit() treeType=%d modeType=%d\n", cu.treeType, cu.modeType );
644
75.5k
  STAT_COUNT_CU_MODES( isEncoding() && partitioner.chType == CH_L, g_cuCounters1D[CU_CODED_FINALLY][0][!cu.slice->isIntra() + cu.slice->depth] );
645
75.5k
  STAT_COUNT_CU_MODES( isEncoding() && partitioner.chType == CH_L && !cu.slice->isIntra(), g_cuCounters2D[CU_CODED_FINALLY][Log2( cu.lheight() )][Log2( cu.lwidth() )] );
646
647
75.5k
  CodingStructure& cs = *cu.cs;
648
649
  // skip flag
650
75.5k
  if ((!cs.slice->isIntra() || cs.slice->sps->IBC) && cu.Y().valid())
651
45.3k
  {
652
45.3k
    cu_skip_flag( cu );
653
45.3k
  }
654
  
655
  // skip data
656
75.5k
  if( cu.skip )
657
0
  {
658
0
    CHECK( !cu.mergeFlag, "Merge flag has to be on!" );
659
0
    prediction_unit ( cu );
660
0
    CHECK(cu.colorTransform, "ACT should not be enabled for skip mode");
661
0
    end_of_ctu      ( cu, cuCtx );
662
0
    return;
663
0
  }
664
665
  // prediction mode and partitioning data
666
75.5k
  pred_mode ( cu );
667
75.5k
  if (CU::isIntra(cu))
668
75.5k
  {
669
75.5k
    adaptive_color_transform(cu);
670
75.5k
  }
671
75.5k
  if (CU::isPLT(cu))
672
0
  {
673
0
    THROW("no support");
674
0
    return;
675
0
  }
676
677
  // prediction data ( intra prediction modes / reference indexes + motion vectors )
678
75.5k
  cu_pred_data( cu );
679
680
  // residual data ( coded block flags + transform coefficient levels )
681
75.5k
  cu_residual( cu, partitioner, cuCtx );
682
683
  // end of cu
684
75.5k
  end_of_ctu( cu, cuCtx );
685
75.5k
}
686
687
688
void CABACWriter::cu_skip_flag( const CodingUnit& cu )
689
90.8k
{
690
90.8k
  unsigned ctxId = DeriveCtx::CtxSkipFlag();
691
692
90.8k
  if ((cu.slice->isIntra() || CU::isConsIntra(cu)) && cu.cs->slice->sps->IBC)
693
90.8k
  {
694
90.8k
    if (cu.lwidth() < 128 && cu.lheight() < 128) // disable IBC mode larger than 64x64
695
90.8k
    {
696
90.8k
      m_BinEncoder.encodeBin((cu.skip), Ctx::SkipFlag(ctxId));
697
90.8k
      DTRACE(g_trace_ctx, D_SYNTAX, "cu_skip_flag() ctx=%d skip=%d\n", ctxId, cu.skip ? 1 : 0);
698
90.8k
    }
699
90.8k
    return;
700
90.8k
  }
701
0
  if ( !cu.cs->slice->sps->IBC && cu.lwidth() == 4 && cu.lheight() == 4 )
702
0
  {
703
0
    return;
704
0
  }
705
0
  if( !cu.cs->slice->sps->IBC && CU::isConsIntra(cu) )
706
0
  {
707
0
    return;
708
0
  }
709
0
  m_BinEncoder.encodeBin( ( cu.skip ), Ctx::SkipFlag( ctxId ) );
710
711
0
  DTRACE( g_trace_ctx, D_SYNTAX, "cu_skip_flag() ctx=%d skip=%d\n", ctxId, cu.skip ? 1 : 0 );
712
0
  if (cu.skip && cu.cs->slice->sps->IBC)
713
0
  {
714
0
    if (cu.lwidth() < 128 && cu.lheight() < 128 && !CU::isConsInter(cu)) // disable IBC mode larger than 64x64 and disable IBC when only allowing inter mode
715
0
    {
716
0
      if ( cu.lwidth() == 4 && cu.lheight() == 4 )
717
0
      {
718
0
        return;
719
0
      }
720
0
      unsigned ctxidx = DeriveCtx::CtxIBCFlag(cu);
721
0
      m_BinEncoder.encodeBin(CU::isIBC(cu) ? 1 : 0, Ctx::IBCFlag(ctxidx));
722
0
      DTRACE(g_trace_ctx, D_SYNTAX, "ibc() ctx=%d cu.predMode=%d\n", ctxidx, cu.predMode);
723
0
    }
724
0
  }
725
0
}
726
727
728
void CABACWriter::pred_mode( const CodingUnit& cu )
729
350k
{
730
350k
  if (cu.cs->slice->sps->IBC && cu.chType != CH_C)
731
265k
  {
732
265k
    if( CU::isConsInter(cu) )
733
0
    {
734
0
      assert( CU::isInter( cu ) );
735
0
      return;
736
0
    }
737
738
265k
    if ( cu.cs->slice->isIntra() || ( cu.lwidth() == 4 && cu.lheight() == 4 ) || CU::isConsIntra(cu) )
739
265k
    {
740
265k
      if (cu.lwidth() < 128 && cu.lheight() < 128) // disable IBC mode larger than 64x64
741
265k
      {
742
265k
        unsigned ctxidx = DeriveCtx::CtxIBCFlag(cu);
743
265k
        m_BinEncoder.encodeBin(CU::isIBC(cu), Ctx::IBCFlag(ctxidx));
744
265k
      }
745
265k
      if (!CU::isIBC(cu) && cu.cs->slice->sps->PLT && cu.lwidth() <= 64 && cu.lheight() <= 64 && (cu.lumaSize().width * cu.lumaSize().height > 16))
746
0
      {
747
0
        m_BinEncoder.encodeBin(CU::isPLT(cu), Ctx::PLTFlag(0));
748
0
      }
749
265k
    }
750
0
    else
751
0
    {
752
0
      if( CU::isConsInter(cu) )
753
0
      {
754
0
        return;
755
0
      }
756
0
      m_BinEncoder.encodeBin((CU::isIntra(cu) || CU::isPLT(cu)), Ctx::PredMode(DeriveCtx::CtxPredModeFlag()));
757
0
      if (CU::isIntra(cu) || CU::isPLT(cu))
758
0
      {
759
0
        if (cu.cs->slice->sps->PLT && cu.lwidth() <= 64 && cu.lheight() <= 64 && (cu.lumaSize().width * cu.lumaSize().height > 16))
760
0
        {
761
0
          m_BinEncoder.encodeBin(CU::isPLT(cu), Ctx::PLTFlag(0));
762
0
        }
763
0
      }
764
0
      else
765
0
      {
766
0
        if (cu.lwidth() < 128 && cu.lheight() < 128) // disable IBC mode larger than 64x64
767
0
        {
768
0
          unsigned ctxidx = DeriveCtx::CtxIBCFlag(cu);
769
0
          m_BinEncoder.encodeBin(CU::isIBC(cu), Ctx::IBCFlag(ctxidx));
770
0
        }
771
0
      }
772
0
    }
773
265k
  }
774
85.2k
  else
775
85.2k
  {
776
85.2k
    if( CU::isConsInter(cu) )
777
0
    {
778
0
      assert( CU::isInter( cu ) );
779
0
      return;
780
0
    }
781
782
85.2k
    if ( cu.cs->slice->isIntra() || ( cu.lwidth() == 4 && cu.lheight() == 4 ) || CU::isConsIntra(cu) )
783
85.2k
    {
784
85.2k
      if (cu.cs->slice->sps->PLT && cu.lwidth() <= 64 && cu.lheight() <= 64 && ( ( (!isLuma(cu.chType)) && (cu.chromaSize().width * cu.chromaSize().height > 16) ) || ((isLuma(cu.chType)) && ((cu.lumaSize().width * cu.lumaSize().height) > 16 ) ) ) && (!CU::isLocalSepTree(cu) || isLuma(cu.chType) ) )
785
0
      {
786
0
        m_BinEncoder.encodeBin((CU::isPLT(cu)), Ctx::PLTFlag(0));
787
0
      }
788
85.2k
      return;
789
85.2k
    }
790
0
    m_BinEncoder.encodeBin((CU::isIntra(cu) || CU::isPLT(cu)), Ctx::PredMode(DeriveCtx::CtxPredModeFlag()));
791
0
    if ((CU::isIntra(cu) || CU::isPLT(cu)) && cu.cs->slice->sps->PLT && cu.lwidth() <= 64 && cu.lheight() <= 64&& ( ( (!isLuma(cu.chType)) && (cu.chromaSize().width * cu.chromaSize().height > 16) ) || ((isLuma(cu.chType)) && ((cu.lumaSize().width * cu.lumaSize().height) > 16 ) ) ) && (!CU::isLocalSepTree(cu) || isLuma(cu.chType)  ) )
792
0
    {
793
0
      m_BinEncoder.encodeBin((CU::isPLT(cu)), Ctx::PLTFlag(0));
794
0
    }
795
0
  }
796
350k
}
797
798
799
void CABACWriter::bdpcm_mode( const CodingUnit& cu, const ComponentID compID )
800
602k
{
801
602k
  if( !cu.cs->sps->BDPCM) return;
802
602k
  if( !CU::bdpcmAllowed( cu, compID ) ) return;
803
804
272k
  int bdpcmMode = cu.bdpcmM[toChannelType(compID)];
805
806
272k
  unsigned ctxId = isLuma(compID) ? 0 : 2; 
807
272k
  m_BinEncoder.encodeBin(bdpcmMode > 0 ? 1 : 0, Ctx::BDPCMMode(ctxId));
808
272k
  if (bdpcmMode)
809
48.8k
  {
810
48.8k
    m_BinEncoder.encodeBin(bdpcmMode > 1 ? 1 : 0, Ctx::BDPCMMode(ctxId+1));
811
48.8k
  }
812
272k
  if (isLuma(compID))
813
39.2k
  {
814
39.2k
    DTRACE(g_trace_ctx, D_SYNTAX, "bdpcm_mode(%d) x=%d, y=%d, w=%d, h=%d, bdpcm=%d\n", CH_L, cu.lumaPos().x, cu.lumaPos().y, cu.lwidth(), cu.lheight(), cu.bdpcmM[CH_L]);
815
39.2k
  }
816
232k
  else
817
232k
  {
818
232k
    DTRACE(g_trace_ctx, D_SYNTAX, "bdpcm_mode(%d) x=%d, y=%d, w=%d, h=%d, bdpcm=%d\n", CH_C, cu.chromaPos().x, cu.chromaPos().y, cu.chromaSize().width, cu.chromaSize().height, cu.bdpcmM[CH_C]);
819
232k
  }
820
272k
}
821
822
823
void CABACWriter::cu_pred_data( const CodingUnit& cu )
824
176k
{
825
176k
  if( CU::isIntra( cu ) )
826
154k
  {
827
154k
    if( cu.Y().valid() )
828
69.3k
    {
829
69.3k
      bdpcm_mode( cu, COMP_Y );
830
69.3k
    }
831
154k
    intra_luma_pred_modes  ( cu );
832
154k
    if( ( !cu.Y().valid() || ( !CU::isSepTree(cu) && cu.Y().valid() ) ) && isChromaEnabled(cu.chromaFormat) )
833
85.2k
    {
834
85.2k
      bdpcm_mode( cu, ComponentID(CH_C) );
835
85.2k
    } 
836
154k
    intra_chroma_pred_modes( cu );
837
154k
    return;
838
154k
  }
839
21.4k
  if (!cu.Y().valid()) // dual tree chroma CU
840
0
  {
841
0
    return;
842
0
  }
843
844
21.4k
  prediction_unit ( cu );
845
21.4k
  imv_mode        ( cu );
846
21.4k
  affine_amvr_mode( cu );
847
21.4k
  cu_bcw_flag     ( cu );
848
21.4k
}
849
850
851
void CABACWriter::cu_bcw_flag(const CodingUnit& cu)
852
21.4k
{
853
21.4k
  if(!CU::isBcwIdxCoded(cu))
854
21.4k
  {
855
21.4k
    return;
856
21.4k
  }
857
858
0
  CHECK(!(BCW_NUM > 1 && (BCW_NUM == 2 || (BCW_NUM & 0x01) == 1)), " !( BCW_NUM > 1 && ( BCW_NUM == 2 || ( BCW_NUM & 0x01 ) == 1 ) ) ");
859
0
  const uint8_t bcwCodingIdx = (uint8_t)g_BcwCodingOrder[CU::getValidBcwIdx(cu)];
860
861
0
  const int32_t numBcw = (cu.slice->checkLDC) ? 5 : 3;
862
0
  m_BinEncoder.encodeBin((bcwCodingIdx == 0 ? 0 : 1), Ctx::BcwIdx(0));
863
0
  if(numBcw > 2 && bcwCodingIdx != 0)
864
0
  {
865
0
    const uint32_t prefixNumBits = numBcw - 2;
866
0
    const uint32_t step = 1;
867
868
0
    uint8_t idx = 1;
869
0
    for(int ui = 0; ui < prefixNumBits; ++ui)
870
0
    {
871
0
      if (bcwCodingIdx == idx)
872
0
      {
873
0
        m_BinEncoder.encodeBinEP(0);
874
0
        break;
875
0
      }
876
0
      else
877
0
      {
878
0
        m_BinEncoder.encodeBinEP(1);
879
0
        idx += step;
880
0
      }
881
0
    }
882
0
  }
883
884
0
  DTRACE(g_trace_ctx, D_SYNTAX, "cu_bcw_flag() bcw_idx=%d\n", cu.BcwIdx ? 1 : 0);
885
0
}
886
887
888
void CABACWriter::xWriteTruncBinCode(uint32_t symbol, uint32_t maxSymbol)
889
805k
{
890
805k
  int thresh;
891
805k
  if (maxSymbol > 256)
892
0
  {
893
0
    int threshVal = 1 << 8;
894
0
    thresh = 8;
895
0
    while (threshVal <= maxSymbol)
896
0
    {
897
0
      thresh++;
898
0
      threshVal <<= 1;
899
0
    }
900
0
    thresh--;
901
0
  }
902
805k
  else
903
805k
  {
904
805k
    thresh = g_tbMax[maxSymbol];
905
805k
  }
906
907
805k
  int val = 1 << thresh;
908
805k
  assert(val <= maxSymbol);
909
805k
  assert((val << 1) > maxSymbol);
910
805k
  assert(symbol < maxSymbol);
911
805k
  int b = maxSymbol - val;
912
805k
  assert(b < val);
913
805k
  if (symbol < val - b)
914
250k
  {
915
250k
    m_BinEncoder.encodeBinsEP(symbol, thresh);
916
250k
  }
917
554k
  else
918
554k
  {
919
554k
    symbol += val - b;
920
554k
    assert(symbol < (val << 1));
921
554k
    assert((symbol >> 1) >= val - b);
922
554k
    m_BinEncoder.encodeBinsEP(symbol, thresh + 1);
923
554k
  }
924
805k
}
925
926
927
void CABACWriter::extend_ref_line(const CodingUnit& cu)
928
865k
{
929
865k
  if ( !cu.Y().valid() || cu.predMode != MODE_INTRA || !isLuma(cu.chType) || cu.bdpcmM[CH_L] )
930
0
  {
931
0
    return;
932
0
  }
933
865k
  if( !cu.cs->sps->MRL )
934
0
  {
935
0
    return;
936
0
  }
937
938
865k
  bool isFirstLineOfCtu = (((cu.block(COMP_Y).y)&((cu.cs->sps)->CTUSize - 1)) == 0);
939
865k
  if (isFirstLineOfCtu)
940
286k
  {
941
286k
    return;
942
286k
  }
943
579k
  int multiRefIdx = cu.multiRefIdx;
944
579k
  if (MRL_NUM_REF_LINES > 1)
945
579k
  {
946
579k
    m_BinEncoder.encodeBin(multiRefIdx != MULTI_REF_LINE_IDX[0], Ctx::MultiRefLineIdx(0));
947
579k
    if (MRL_NUM_REF_LINES > 2 && multiRefIdx != MULTI_REF_LINE_IDX[0])
948
158k
    {
949
158k
      m_BinEncoder.encodeBin(multiRefIdx != MULTI_REF_LINE_IDX[1], Ctx::MultiRefLineIdx(1));
950
158k
    }
951
579k
  }
952
579k
}
953
954
955
void CABACWriter::intra_luma_pred_modes( const CodingUnit& cu )
956
154k
{
957
154k
  if( !cu.Y().valid() || cu.bdpcmM[CH_L] )
958
90.0k
  {
959
90.0k
    return;
960
90.0k
  }
961
962
64.5k
  mip_flag(cu);
963
64.5k
  if (cu.mipFlag)
964
1.56k
  {
965
1.56k
    mip_pred_modes(cu);
966
1.56k
    return;
967
1.56k
  }
968
62.9k
  extend_ref_line( cu );
969
970
62.9k
  isp_mode( cu );
971
972
62.9k
  const int numMPMs   = NUM_MOST_PROBABLE_MODES;
973
62.9k
  unsigned  mpm_pred   [numMPMs];
974
62.9k
  unsigned  mpm_idx;
975
62.9k
  unsigned  ipred_mode ;
976
977
  // prev_intra_luma_pred_flag
978
62.9k
  {
979
62.9k
    CU::getIntraMPMs( cu, mpm_pred );
980
981
62.9k
    ipred_mode = cu.intraDir[0];
982
62.9k
    mpm_idx    = numMPMs;
983
63.0k
    for( unsigned idx = 0; idx < numMPMs; idx++ )
984
63.0k
    {
985
63.0k
      if( ipred_mode == mpm_pred[idx] )
986
62.9k
      {
987
62.9k
        mpm_idx = idx;
988
62.9k
        break;
989
62.9k
      }
990
63.0k
    }
991
62.9k
    if ( cu.multiRefIdx )
992
0
    {
993
0
      CHECK(mpm_idx >= numMPMs, "use of non-MPM");
994
0
    }
995
62.9k
    else
996
62.9k
    {
997
62.9k
      m_BinEncoder.encodeBin(mpm_idx < numMPMs, Ctx::IntraLumaMpmFlag());
998
62.9k
    }
999
62.9k
  }
1000
1001
  // mpm_idx / rem_intra_luma_pred_mode
1002
62.9k
  {
1003
62.9k
    if( mpm_idx < numMPMs )
1004
62.9k
    {
1005
62.9k
      {
1006
62.9k
        unsigned ctx = (cu.ispMode == NOT_INTRA_SUBPARTITIONS ? 1 : 0);
1007
62.9k
        if (cu.multiRefIdx == 0)
1008
62.9k
          m_BinEncoder.encodeBin(mpm_idx > 0, Ctx::IntraLumaPlanarFlag(ctx));
1009
62.9k
        if( mpm_idx )
1010
102
        {
1011
102
          m_BinEncoder.encodeBinEP( mpm_idx > 1 );
1012
102
        }
1013
62.9k
        if (mpm_idx > 1)
1014
0
        {
1015
0
          m_BinEncoder.encodeBinEP(mpm_idx > 2);
1016
0
        }
1017
62.9k
        if (mpm_idx > 2)
1018
0
        {
1019
0
          m_BinEncoder.encodeBinEP(mpm_idx > 3);
1020
0
        }
1021
62.9k
        if (mpm_idx > 3)
1022
0
        {
1023
0
          m_BinEncoder.encodeBinEP(mpm_idx > 4);
1024
0
        }
1025
62.9k
      }
1026
62.9k
    }
1027
0
    else
1028
0
    {
1029
      // sorting of MPMs
1030
0
      std::sort( mpm_pred, mpm_pred + numMPMs );
1031
1032
0
      {
1033
0
        for (int idx = numMPMs - 1; idx >= 0; idx--)
1034
0
        {
1035
0
          if (ipred_mode > mpm_pred[idx])
1036
0
          {
1037
0
            ipred_mode--;
1038
0
          }
1039
0
        }
1040
0
        CHECK(ipred_mode >= 64, "Incorrect mode");
1041
0
        xWriteTruncBinCode(ipred_mode, NUM_LUMA_MODE - NUM_MOST_PROBABLE_MODES);  // Remaining mode is truncated binary coded
1042
0
      }
1043
0
    }
1044
1045
62.9k
    DTRACE( g_trace_ctx, D_SYNTAX, "intra_luma_pred_modes() idx=%d pos=(%d,%d) mode=%d\n", 0, cu.lumaPos().x, cu.lumaPos().y, cu.intraDir[0] );
1046
62.9k
  }
1047
62.9k
}
1048
1049
1050
void CABACWriter::intra_luma_pred_mode( const CodingUnit& cu, const unsigned *mpmLst )
1051
1.07M
{
1052
1.07M
  if( cu.bdpcmM[CH_L] ) 
1053
6.96k
  {
1054
6.96k
    return;
1055
6.96k
  }
1056
1057
1.06M
  mip_flag(cu);
1058
1.06M
  if (cu.mipFlag)
1059
266k
  {
1060
266k
    mip_pred_mode(cu);
1061
266k
    return;
1062
266k
  }
1063
802k
  extend_ref_line( cu );
1064
1065
802k
  isp_mode( cu );
1066
1067
  // prev_intra_luma_pred_flag
1068
802k
  unsigned ipred_mode = cu.intraDir[0];
1069
802k
  static constexpr int numMPMs = NUM_MOST_PROBABLE_MODES;
1070
802k
  unsigned mpm_idx = numMPMs;
1071
802k
  unsigned  mpm_pred[numMPMs];
1072
1073
802k
  if (mpmLst)
1074
677k
  {
1075
677k
    memcpy(mpm_pred, mpmLst, sizeof(unsigned) * numMPMs);
1076
677k
  }
1077
125k
  else
1078
125k
  {
1079
125k
    CU::getIntraMPMs(cu, mpm_pred);
1080
125k
  }
1081
1082
4.20M
  for (int idx = 0; idx < numMPMs; idx++)
1083
3.72M
  {
1084
3.72M
    if (ipred_mode == mpm_pred[idx])
1085
321k
    {
1086
321k
      mpm_idx = idx;
1087
321k
      break;
1088
321k
    }
1089
3.72M
  }
1090
802k
  if (cu.multiRefIdx)
1091
158k
  {
1092
158k
    CHECK(mpm_idx >= numMPMs, "use of non-MPM");
1093
158k
  }
1094
644k
  else
1095
644k
  {
1096
644k
    m_BinEncoder.encodeBin(mpm_idx < numMPMs, Ctx::IntraLumaMpmFlag());
1097
644k
  }
1098
1099
  // mpm_idx / rem_intra_luma_pred_mode
1100
802k
  if( mpm_idx < numMPMs )
1101
321k
  {
1102
321k
    unsigned ctx = (cu.ispMode == NOT_INTRA_SUBPARTITIONS ? 1 : 0);
1103
321k
    if (cu.multiRefIdx == 0)
1104
163k
      m_BinEncoder.encodeBin( mpm_idx > 0, Ctx::IntraLumaPlanarFlag(ctx) );
1105
321k
    if( mpm_idx )
1106
216k
    {
1107
216k
      m_BinEncoder.encodeBinEP( mpm_idx > 1 );
1108
216k
    }
1109
321k
    if (mpm_idx > 1)
1110
122k
    {
1111
122k
      m_BinEncoder.encodeBinEP(mpm_idx > 2);
1112
122k
    }
1113
321k
    if (mpm_idx > 2)
1114
91.1k
    {
1115
91.1k
      m_BinEncoder.encodeBinEP(mpm_idx > 3);
1116
91.1k
    }
1117
321k
    if (mpm_idx > 3)
1118
60.6k
    {
1119
60.6k
      m_BinEncoder.encodeBinEP(mpm_idx > 4);
1120
60.6k
    }
1121
321k
  }
1122
480k
  else
1123
480k
  {
1124
    // mpm_pred[0] is always 0, i.e. PLANAR, so its always first in the list
1125
480k
    std::sort( mpm_pred + 1, mpm_pred + numMPMs );
1126
1127
3.36M
    for (int idx = numMPMs - 1; idx >= 0; idx--)
1128
2.88M
    {
1129
2.88M
      if (ipred_mode > mpm_pred[idx])
1130
1.56M
      {
1131
1.56M
        ipred_mode--;
1132
1.56M
      }
1133
2.88M
    }
1134
1135
480k
    xWriteTruncBinCode(ipred_mode, NUM_LUMA_MODE - NUM_MOST_PROBABLE_MODES);  // Remaining mode is truncated binary coded
1136
480k
  }
1137
802k
}
1138
1139
1140
void CABACWriter::intra_chroma_pred_modes( const CodingUnit& cu )
1141
154k
{
1142
154k
  if( cu.chromaFormat == CHROMA_400 || ( CU::isSepTree(cu) && cu.chType == CH_L ) || cu.bdpcmM[CH_C] )
1143
69.3k
  {
1144
69.3k
    return;
1145
69.3k
  }
1146
1147
85.2k
  intra_chroma_pred_mode( cu );
1148
85.2k
}
1149
1150
1151
void CABACWriter::intra_chroma_lmc_mode(const CodingUnit& cu)
1152
33.7k
{
1153
33.7k
  const unsigned intraDir = cu.intraDir[1];
1154
33.7k
  int lmModeList[10];
1155
33.7k
  CU::getLMSymbolList(cu, lmModeList);
1156
33.7k
  int symbol = -1;
1157
33.7k
  for (int k = 0; k < LM_SYMBOL_NUM; k++)
1158
33.7k
  {
1159
33.7k
    if (lmModeList[k] == intraDir)
1160
33.7k
    {
1161
33.7k
      symbol = k;
1162
33.7k
      break;
1163
33.7k
    }
1164
33.7k
  }
1165
33.7k
  CHECK(symbol < 0, "invalid symbol found");
1166
1167
33.7k
  m_BinEncoder.encodeBin(symbol == 0 ? 0 : 1, Ctx::CclmModeIdx(0));
1168
1169
33.7k
  if (symbol > 0)
1170
0
  {
1171
0
    CHECK(symbol > 2, "invalid symbol for MMLM");
1172
0
    unsigned int symbol_minus_1 = symbol - 1;
1173
0
    m_BinEncoder.encodeBinEP(symbol_minus_1);
1174
0
  }
1175
33.7k
}
1176
1177
1178
void CABACWriter::intra_chroma_pred_mode(const CodingUnit& cu)
1179
358k
{
1180
358k
  if (cu.colorTransform)
1181
0
  {
1182
0
    CHECK(cu.intraDir[CH_C] != DM_CHROMA_IDX, "chroma should use DM for adaptive color transform");
1183
0
    return;
1184
0
  }
1185
1186
358k
  const unsigned intraDir = cu.intraDir[1];
1187
358k
  if (cu.cs->sps->LMChroma && CU::checkCCLMAllowed(cu))
1188
245k
  {
1189
245k
    m_BinEncoder.encodeBin(CU::isLMCMode(intraDir) ? 1 : 0, Ctx::CclmModeFlag(0));
1190
245k
    if (CU::isLMCMode(intraDir))
1191
33.7k
    {
1192
33.7k
      intra_chroma_lmc_mode(cu);
1193
33.7k
      return;
1194
33.7k
    }
1195
245k
  }
1196
1197
324k
  const bool     isDerivedMode = intraDir == DM_CHROMA_IDX;
1198
324k
  m_BinEncoder.encodeBin(isDerivedMode ? 0 : 1, Ctx::IntraChromaPredMode(0));
1199
324k
  if (isDerivedMode)
1200
73.5k
  {
1201
73.5k
    return;
1202
73.5k
  }
1203
1204
  // chroma candidate index
1205
250k
  unsigned chromaCandModes[NUM_CHROMA_MODE];
1206
250k
  CU::getIntraChromaCandModes(cu, chromaCandModes);
1207
1208
250k
  int candId = 0;
1209
596k
  for (; candId < NUM_CHROMA_MODE; candId++)
1210
596k
  {
1211
596k
    if (intraDir == chromaCandModes[candId])
1212
250k
    {
1213
250k
      break;
1214
250k
    }
1215
596k
  }
1216
1217
250k
  CHECK(candId >= NUM_CHROMA_MODE, "Chroma prediction mode index out of bounds");
1218
250k
  CHECK(chromaCandModes[candId] == DM_CHROMA_IDX, "The intra dir cannot be DM_CHROMA for this path");
1219
250k
  {
1220
250k
    m_BinEncoder.encodeBinsEP(candId, 2);
1221
250k
  }
1222
250k
}
1223
1224
1225
void CABACWriter::cu_residual( const CodingUnit& cu, Partitioner& partitioner, CUCtx& cuCtx )
1226
176k
{
1227
176k
  if (!CU::isIntra(cu))
1228
21.4k
  {
1229
21.4k
    if( !cu.mergeFlag )
1230
21.4k
    {
1231
21.4k
      rqt_root_cbf( cu );
1232
21.4k
    }
1233
21.4k
    if( cu.rootCbf )
1234
131
    {
1235
131
      sbt_mode( cu );
1236
131
    }
1237
1238
21.4k
    if( !cu.rootCbf )
1239
21.3k
    {
1240
21.3k
      CHECK(cu.colorTransform, "ACT should not be enabled for root_cbf = 0");
1241
21.3k
      return;
1242
21.3k
    }
1243
21.4k
  }
1244
1245
154k
  if( CU::isInter( cu ) || CU::isIBC( cu ) )
1246
131
  {
1247
131
    adaptive_color_transform(cu);
1248
131
  }
1249
1250
154k
  cuCtx.violatesLfnstConstrained[CH_L] = false;
1251
154k
  cuCtx.violatesLfnstConstrained[CH_C] = false;
1252
154k
  cuCtx.lfnstLastScanPos               = false;
1253
154k
  cuCtx.violatesMtsCoeffConstraint     = false;
1254
154k
  cuCtx.mtsLastScanPos                                = false;
1255
1256
154k
  if( cu.ispMode && isLuma( partitioner.chType ) )
1257
41
  {
1258
41
    transform_tree( *cu.cs, partitioner, cuCtx, CU::getISPType( cu, getFirstComponentOfChannel( partitioner.chType ) ), 0 );
1259
41
  }
1260
154k
  else
1261
154k
  {
1262
154k
    transform_tree( *cu.cs, partitioner, cuCtx );
1263
154k
  }
1264
1265
154k
  residual_lfnst_mode( cu, cuCtx );
1266
154k
  mts_idx            ( cu, &cuCtx );
1267
154k
}
1268
1269
1270
void CABACWriter::rqt_root_cbf( const CodingUnit& cu )
1271
42.9k
{
1272
42.9k
  m_BinEncoder.encodeBin( cu.rootCbf, Ctx::QtRootCbf() );
1273
1274
42.9k
  DTRACE( g_trace_ctx, D_SYNTAX, "rqt_root_cbf() ctx=0 root_cbf=%d pos=(%d,%d)\n", cu.rootCbf ? 1 : 0, cu.lumaPos().x, cu.lumaPos().y );
1275
42.9k
}
1276
1277
1278
void CABACWriter::adaptive_color_transform(const CodingUnit& cu)
1279
75.7k
{
1280
75.7k
  if (!cu.slice->sps->useColorTrans )
1281
75.7k
  {
1282
75.7k
    return;
1283
75.7k
  }
1284
1285
0
  if (CU::isSepTree(cu))
1286
0
  {
1287
0
    CHECK(cu.colorTransform, "adaptive color transform should be disabled when dualtree and localtree are enabled");
1288
0
    return;
1289
0
  }
1290
1291
0
  if (CU::isInter(cu) || CU::isIBC(cu) || CU::isIntra(cu))
1292
0
  {
1293
0
    m_BinEncoder.encodeBin(cu.colorTransform, Ctx::ACTFlag());
1294
0
  }
1295
0
}
1296
1297
1298
void CABACWriter::sbt_mode( const CodingUnit& cu )
1299
131
{
1300
131
  uint8_t sbtAllowed = CU::checkAllowedSbt(cu);
1301
131
  if( !sbtAllowed )
1302
131
  {
1303
131
    return;
1304
131
  }
1305
1306
0
  SizeType cuWidth = cu.lwidth();
1307
0
  SizeType cuHeight = cu.lheight();
1308
0
  uint8_t sbtIdx = CU::getSbtIdx( cu.sbtInfo );
1309
0
  uint8_t sbtPos = CU::getSbtPos( cu.sbtInfo );
1310
1311
  //bin - flag
1312
0
  bool sbtFlag = cu.sbtInfo != 0;
1313
0
  uint8_t ctxIdx = ( cuWidth * cuHeight <= 256 ) ? 1 : 0;
1314
0
  m_BinEncoder.encodeBin( sbtFlag, Ctx::SbtFlag( ctxIdx ) );
1315
0
  if( !sbtFlag )
1316
0
  {
1317
0
    return;
1318
0
  }
1319
1320
0
  bool sbtQuadFlag = sbtIdx == SBT_HOR_QUAD || sbtIdx == SBT_VER_QUAD;
1321
0
  bool sbtHorFlag = sbtIdx == SBT_HOR_HALF || sbtIdx == SBT_HOR_QUAD;
1322
0
  bool sbtPosFlag = sbtPos == SBT_POS1;
1323
1324
0
  uint8_t sbtVerHalfAllow = CU::targetSbtAllowed( SBT_VER_HALF, sbtAllowed );
1325
0
  uint8_t sbtHorHalfAllow = CU::targetSbtAllowed( SBT_HOR_HALF, sbtAllowed );
1326
0
  uint8_t sbtVerQuadAllow = CU::targetSbtAllowed( SBT_VER_QUAD, sbtAllowed );
1327
0
  uint8_t sbtHorQuadAllow = CU::targetSbtAllowed( SBT_HOR_QUAD, sbtAllowed );
1328
  //bin - type
1329
0
  if( ( sbtHorHalfAllow || sbtVerHalfAllow ) && ( sbtHorQuadAllow || sbtVerQuadAllow ) )
1330
0
  {
1331
0
    m_BinEncoder.encodeBin( sbtQuadFlag, Ctx::SbtQuadFlag( 0 ) );
1332
0
  }
1333
0
  else
1334
0
  {
1335
0
    assert( sbtQuadFlag == 0 );
1336
0
  }
1337
1338
  //bin - dir
1339
0
  if( ( sbtQuadFlag && sbtVerQuadAllow && sbtHorQuadAllow ) || ( !sbtQuadFlag && sbtVerHalfAllow && sbtHorHalfAllow ) ) //both direction allowed
1340
0
  {
1341
0
    uint8_t ctxIdx = ( cuWidth == cuHeight ) ? 0 : ( cuWidth < cuHeight ? 1 : 2 );
1342
0
    m_BinEncoder.encodeBin( sbtHorFlag, Ctx::SbtHorFlag( ctxIdx ) );
1343
0
  }
1344
0
  else
1345
0
  {
1346
0
    assert( sbtHorFlag == ( ( sbtQuadFlag && sbtHorQuadAllow ) || ( !sbtQuadFlag && sbtHorHalfAllow ) ) );
1347
0
  }
1348
1349
  //bin - pos
1350
0
  m_BinEncoder.encodeBin( sbtPosFlag, Ctx::SbtPosFlag( 0 ) );
1351
1352
0
  DTRACE( g_trace_ctx, D_SYNTAX, "sbt_mode() pos=(%d,%d) sbtInfo=%d\n", cu.lx(), cu.ly(), (int)cu.sbtInfo );
1353
0
}
1354
1355
1356
void CABACWriter::end_of_ctu( const CodingUnit& cu, CUCtx& cuCtx )
1357
75.5k
{
1358
75.5k
  const bool    isLastSubCUOfCtu  = CU::isLastSubCUOfCtu( cu );
1359
1360
75.5k
  if ( isLastSubCUOfCtu
1361
14.3k
    && ( !CU::isSepTree(cu) || cu.chromaFormat == CHROMA_400 || isChroma( cu.chType ) )
1362
75.5k
      )
1363
7.15k
  {
1364
7.15k
    cuCtx.isDQPCoded = ( cu.cs->pps->useDQP && !cuCtx.isDQPCoded );
1365
1366
7.15k
  }
1367
75.5k
}
1368
1369
1370
void CABACWriter::cu_palette_info(const CodingUnit& cu, ComponentID compBegin, uint32_t numComp, CUCtx& cuCtx)
1371
0
{
1372
0
  THROW("no support");
1373
0
}
1374
1375
1376
//================================================================================
1377
//  clause 7.3.8.6
1378
//--------------------------------------------------------------------------------
1379
//    void  prediction_unit ( cu );
1380
//    void  merge_flag      ( cu );
1381
//    void  merge_idx       ( cu );
1382
//    void  inter_pred_idc  ( cu );
1383
//    void  ref_idx         ( cu, refList );
1384
//    void  mvp_flag        ( cu, refList );
1385
//================================================================================
1386
1387
void CABACWriter::prediction_unit( const CodingUnit& cu )
1388
21.4k
{
1389
21.4k
  CHECK( cu.treeType == TREE_C, "cannot be chroma CU" );
1390
21.4k
  if( cu.skip )
1391
0
  {
1392
0
    CHECK( !cu.mergeFlag, "merge_flag must be true for skipped CUs" );
1393
0
  }
1394
21.4k
  else
1395
21.4k
  {
1396
21.4k
    merge_flag( cu );
1397
21.4k
  }
1398
21.4k
  if( cu.mergeFlag )
1399
0
  {
1400
0
    merge_data(cu);
1401
0
  }
1402
21.4k
  else if (CU::isIBC(cu))
1403
21.4k
  {
1404
21.4k
    ref_idx(cu, REF_PIC_LIST_0);
1405
21.4k
    Mv mvd = cu.mvd[REF_PIC_LIST_0][0];
1406
21.4k
    mvd.changeIbcPrecInternal2Amvr(cu.imv);
1407
21.4k
    mvd_coding(mvd, 0); // already changed to signaling precision
1408
21.4k
    if ( cu.slice->sps->maxNumIBCMergeCand == 1 )
1409
0
    {
1410
0
      CHECK( cu.mvpIdx[REF_PIC_LIST_0], "mvpIdx for IBC mode should be 0" );
1411
0
    }
1412
21.4k
    else
1413
21.4k
    mvp_flag(cu, REF_PIC_LIST_0);
1414
21.4k
  }
1415
0
  else
1416
0
  {
1417
0
    inter_pred_idc( cu );
1418
0
    affine_flag   ( cu );
1419
0
    smvd_mode( cu );
1420
0
    if( cu.interDir != 2 /* PRED_L1 */ )
1421
0
    {
1422
0
      ref_idx     ( cu, REF_PIC_LIST_0 );
1423
0
      if ( cu.affine )
1424
0
      {
1425
0
        Mv mvd = cu.mvd[REF_PIC_LIST_0][0];
1426
0
        mvd.changeAffinePrecInternal2Amvr(cu.imv);
1427
0
        mvd_coding(mvd, 0); // already changed to signaling precision
1428
0
        mvd = cu.mvd[REF_PIC_LIST_0][1];
1429
0
        mvd.changeAffinePrecInternal2Amvr(cu.imv);
1430
0
        mvd_coding(mvd, 0); // already changed to signaling precision
1431
0
        if ( cu.affineType == AFFINEMODEL_6PARAM )
1432
0
        {
1433
0
          mvd = cu.mvd[REF_PIC_LIST_0][2];
1434
0
          mvd.changeAffinePrecInternal2Amvr(cu.imv);
1435
0
          mvd_coding(mvd, 0); // already changed to signaling precision
1436
0
        }
1437
0
      }
1438
0
      else
1439
0
      {
1440
0
        Mv mvd = cu.mvd[REF_PIC_LIST_0][0];
1441
0
        mvd.changeTransPrecInternal2Amvr(cu.imv);
1442
0
        mvd_coding(mvd, 0); // already changed to signaling precision
1443
0
      }
1444
0
      mvp_flag    ( cu, REF_PIC_LIST_0 );
1445
0
    }
1446
0
    if( cu.interDir != 1 /* PRED_L0 */ )
1447
0
    {
1448
0
      if ( cu.smvdMode != 1 )
1449
0
      {
1450
0
        ref_idx     ( cu, REF_PIC_LIST_1 );
1451
0
        if( !cu.cs->picHeader->mvdL1Zero || cu.interDir != 3 /* PRED_BI */ )
1452
0
        {
1453
0
          if ( cu.affine )
1454
0
          {
1455
0
            Mv mvd = cu.mvd[REF_PIC_LIST_1][0];
1456
0
            mvd.changeAffinePrecInternal2Amvr(cu.imv);
1457
0
            mvd_coding(mvd, 0); // already changed to signaling precision
1458
0
            mvd = cu.mvd[REF_PIC_LIST_1][1];
1459
0
            mvd.changeAffinePrecInternal2Amvr(cu.imv);
1460
0
            mvd_coding(mvd, 0); // already changed to signaling precision
1461
0
            if ( cu.affineType == AFFINEMODEL_6PARAM )
1462
0
            {
1463
0
              mvd = cu.mvd[REF_PIC_LIST_1][2];
1464
0
              mvd.changeAffinePrecInternal2Amvr(cu.imv);
1465
0
              mvd_coding(mvd, 0); // already changed to signaling precision
1466
0
            }
1467
0
          }
1468
0
          else
1469
0
          {
1470
0
            Mv mvd = cu.mvd[REF_PIC_LIST_1][0];
1471
0
            mvd.changeTransPrecInternal2Amvr(cu.imv);
1472
0
            mvd_coding(mvd, 0); // already changed to signaling precision
1473
0
          }
1474
0
        }
1475
0
      }
1476
0
      mvp_flag    ( cu, REF_PIC_LIST_1 );
1477
0
    }
1478
0
  }
1479
21.4k
}
1480
1481
1482
void CABACWriter::smvd_mode( const CodingUnit& cu )
1483
0
{
1484
0
  if ( cu.interDir != 3 || cu.affine )
1485
0
  {
1486
0
    return;
1487
0
  }
1488
1489
0
  if ( cu.cs->slice->biDirPred == false )
1490
0
  {
1491
0
    return;
1492
0
  }
1493
1494
0
  m_BinEncoder.encodeBin( cu.smvdMode ? 1 : 0, Ctx::SmvdFlag() );
1495
1496
0
  DTRACE( g_trace_ctx, D_SYNTAX, "symmvd_flag() symmvd=%d pos=(%d,%d) size=%dx%d\n", cu.smvdMode ? 1 : 0, cu.lumaPos().x, cu.lumaPos().y, cu.lumaSize().width, cu.lumaSize().height );
1497
0
}
1498
1499
1500
void CABACWriter::subblock_merge_flag( const CodingUnit& cu )
1501
0
{
1502
1503
0
  if ( !cu.cs->slice->isIntra() && (cu.slice->picHeader->maxNumAffineMergeCand > 0) && cu.lumaSize().width >= 8 && cu.lumaSize().height >= 8 )
1504
0
  {
1505
0
    unsigned ctxId = DeriveCtx::CtxAffineFlag();
1506
0
    m_BinEncoder.encodeBin( cu.affine, Ctx::SubblockMergeFlag( ctxId ) );
1507
0
    DTRACE( g_trace_ctx, D_SYNTAX, "subblock_merge_flag() subblock_merge_flag=%d ctx=%d pos=(%d,%d)\n", cu.affine ? 1 : 0, ctxId, cu.Y().x, cu.Y().y );
1508
0
  }
1509
0
}
1510
1511
1512
void CABACWriter::affine_flag( const CodingUnit& cu )
1513
0
{
1514
0
  if ( !cu.cs->slice->isIntra() && cu.cs->sps->Affine && cu.lumaSize().width > 8 && cu.lumaSize().height > 8 )
1515
0
  {
1516
0
    unsigned ctxId = DeriveCtx::CtxAffineFlag();
1517
0
    m_BinEncoder.encodeBin( cu.affine, Ctx::AffineFlag( ctxId ) );
1518
0
    DTRACE( g_trace_ctx, D_SYNTAX, "affine_flag() affine=%d ctx=%d pos=(%d,%d)\n", cu.affine ? 1 : 0, ctxId, cu.Y().x, cu.Y().y );
1519
1520
0
    if ( cu.affine && cu.cs->sps->AffineType )
1521
0
    {
1522
0
      unsigned ctxId = 0;
1523
0
      m_BinEncoder.encodeBin( cu.affineType, Ctx::AffineType( ctxId ) );
1524
0
      DTRACE( g_trace_ctx, D_SYNTAX, "affine_type() affine_type=%d ctx=%d pos=(%d,%d)\n", cu.affineType ? 1 : 0, ctxId, cu.Y().x, cu.Y().y );
1525
0
    }
1526
0
  }
1527
0
}
1528
1529
1530
void CABACWriter::merge_flag( const CodingUnit& cu )
1531
21.4k
{
1532
21.4k
  m_BinEncoder.encodeBin( cu.mergeFlag, Ctx::MergeFlag() );
1533
1534
21.4k
  DTRACE( g_trace_ctx, D_SYNTAX, "merge_flag() merge=%d pos=(%d,%d) size=%dx%d\n", cu.mergeFlag ? 1 : 0, cu.lumaPos().x, cu.lumaPos().y, cu.lumaSize().width, cu.lumaSize().height );
1535
21.4k
}
1536
1537
1538
void CABACWriter::merge_data(const CodingUnit& cu)
1539
0
{
1540
0
  if (CU::isIBC(cu))
1541
0
  {
1542
0
    merge_idx(cu);
1543
0
    return;
1544
0
  }
1545
0
  subblock_merge_flag(cu);
1546
0
  if (cu.affine)
1547
0
  {
1548
0
    merge_idx(cu);
1549
0
    return;
1550
0
  }
1551
1552
0
  const bool ciipAvailable = cu.cs->sps->CIIP && !cu.skip && cu.Y().maxDim() < MAX_CU_SIZE && cu.Y().area() >= 64;
1553
0
  const bool geoAvailable = cu.cs->slice->sps->GEO && cu.cs->slice->isInterB() && cu.cs->sps->maxNumGeoCand > 1
1554
0
                                                   && cu.Y().minDim() >= GEO_MIN_CU_SIZE && cu.Y().maxDim() <= GEO_MAX_CU_SIZE
1555
0
                                                   && cu.Y().maxDim() < 8 * cu.Y().minDim();
1556
1557
0
  if (geoAvailable || ciipAvailable)
1558
0
  {
1559
0
    m_BinEncoder.encodeBin(!cu.geo && !cu.ciip, Ctx::RegularMergeFlag(cu.skip ? 0 : 1));
1560
0
  }
1561
0
  if (!cu.geo && !cu.ciip)
1562
0
  {
1563
0
    if (cu.cs->sps->MMVD)
1564
0
    {
1565
0
      m_BinEncoder.encodeBin(cu.mmvdMergeFlag, Ctx::MmvdFlag(0));
1566
0
      DTRACE(g_trace_ctx, D_SYNTAX, "mmvd_merge_flag() mmvd_merge=%d pos=(%d,%d) size=%dx%d\n", cu.mmvdMergeFlag ? 1 : 0, cu.lumaPos().x, cu.lumaPos().y, cu.lumaSize().width, cu.lumaSize().height);
1567
0
    }
1568
0
    if (cu.mmvdMergeFlag || cu.mmvdSkip)
1569
0
    {
1570
0
      mmvd_merge_idx(cu);
1571
0
    }
1572
0
    else
1573
0
    {
1574
0
      merge_idx(cu);
1575
0
    }
1576
0
  }
1577
0
  else
1578
0
  {
1579
0
    if (geoAvailable && ciipAvailable)
1580
0
    {
1581
0
      ciip_flag(cu);
1582
0
    }
1583
0
    merge_idx(cu);
1584
0
  }
1585
0
}
1586
1587
1588
void CABACWriter::imv_mode( const CodingUnit& cu )
1589
21.4k
{
1590
21.4k
  const SPS *sps = cu.cs->sps;
1591
1592
21.4k
  if( !sps->AMVR )
1593
0
  {
1594
0
    return;
1595
0
  }
1596
21.4k
  if ( cu.affine )
1597
0
  {
1598
0
    return;
1599
0
  }
1600
1601
21.4k
  bool bNonZeroMvd = CU::hasSubCUNonZeroMVd( cu );
1602
21.4k
  if( !bNonZeroMvd )
1603
0
  {
1604
0
    return;
1605
0
  }
1606
1607
21.4k
  if (CU::isIBC(cu) == false)
1608
0
    m_BinEncoder.encodeBin( (cu.imv > 0), Ctx::ImvFlag( 0 ) );
1609
21.4k
  DTRACE( g_trace_ctx, D_SYNTAX, "imv_mode() value=%d ctx=%d\n", (cu.imv > 0), 0 );
1610
1611
21.4k
  if( sps->AMVR && cu.imv > 0 )
1612
21.4k
  {
1613
21.4k
    if (!CU::isIBC(cu))
1614
0
    {
1615
0
      m_BinEncoder.encodeBin(cu.imv < IMV_HPEL, Ctx::ImvFlag(4));
1616
0
      DTRACE(g_trace_ctx, D_SYNTAX, "imv_mode() value=%d ctx=%d\n", cu.imv < 3, 4);
1617
0
    }
1618
21.4k
    if (cu.imv < IMV_HPEL)
1619
21.4k
    {
1620
21.4k
    m_BinEncoder.encodeBin( (cu.imv > 1), Ctx::ImvFlag( 1 ) );
1621
21.4k
    DTRACE( g_trace_ctx, D_SYNTAX, "imv_mode() value=%d ctx=%d\n", (cu.imv > 1), 1 );
1622
21.4k
    }
1623
21.4k
  }
1624
1625
21.4k
  DTRACE( g_trace_ctx, D_SYNTAX, "imv_mode() IMVFlag=%d\n", cu.imv );
1626
21.4k
}
1627
1628
1629
void CABACWriter::affine_amvr_mode( const CodingUnit& cu )
1630
21.4k
{
1631
21.4k
  const SPS* sps = cu.slice->sps;
1632
1633
21.4k
  if( !sps->AffineAmvr || !cu.affine )
1634
21.4k
  {
1635
21.4k
    return;
1636
21.4k
  }
1637
1638
0
  if ( !CU::hasSubCUNonZeroAffineMVd( cu ) )
1639
0
  {
1640
0
    return;
1641
0
  }
1642
1643
0
  m_BinEncoder.encodeBin( (cu.imv > 0), Ctx::ImvFlag( 2 ) );
1644
0
  DTRACE( g_trace_ctx, D_SYNTAX, "affine_amvr_mode() value=%d ctx=%d\n", (cu.imv > 0), 2 );
1645
1646
0
  if( cu.imv > 0 )
1647
0
  {
1648
0
    m_BinEncoder.encodeBin( (cu.imv > 1), Ctx::ImvFlag( 3 ) );
1649
0
    DTRACE( g_trace_ctx, D_SYNTAX, "affine_amvr_mode() value=%d ctx=%d\n", (cu.imv > 1), 3 );
1650
0
  }
1651
0
  DTRACE( g_trace_ctx, D_SYNTAX, "affine_amvr_mode() IMVFlag=%d\n", cu.imv );
1652
0
}
1653
1654
1655
void CABACWriter::merge_idx( const CodingUnit& cu )
1656
0
{
1657
0
  if ( cu.affine )
1658
0
  {
1659
0
    int numCandminus1 = int( cu.cs->picHeader->maxNumAffineMergeCand ) - 1;
1660
0
    if ( numCandminus1 > 0 )
1661
0
    {
1662
0
      if ( cu.mergeIdx == 0 )
1663
0
      {
1664
0
        m_BinEncoder.encodeBin( 0, Ctx::AffMergeIdx() );
1665
0
        DTRACE( g_trace_ctx, D_SYNTAX, "aff_merge_idx() aff_merge_idx=%d\n", cu.mergeIdx );
1666
0
        return;
1667
0
      }
1668
0
      else
1669
0
      {
1670
0
        m_BinEncoder.encodeBin( 1, Ctx::AffMergeIdx() );
1671
0
        for ( unsigned idx = 1; idx < numCandminus1; idx++ )
1672
0
        {
1673
0
            m_BinEncoder.encodeBinEP( cu.mergeIdx == idx ? 0 : 1 );
1674
0
          if ( cu.mergeIdx == idx )
1675
0
          {
1676
0
            break;
1677
0
          }
1678
0
        }
1679
0
      }
1680
0
    }
1681
0
    DTRACE( g_trace_ctx, D_SYNTAX, "aff_merge_idx() aff_merge_idx=%d\n", cu.mergeIdx );
1682
0
  }
1683
0
  else
1684
0
  {
1685
0
    if( cu.geo )
1686
0
    {
1687
0
      uint8_t splitDir = cu.geoSplitDir;
1688
0
      uint8_t candIdx0 = cu.geoMergeIdx[0];
1689
0
      uint8_t candIdx1 = cu.geoMergeIdx[1];
1690
0
      DTRACE( g_trace_ctx, D_SYNTAX, "merge_idx() geo_split_dir=%d\n", splitDir );
1691
0
      DTRACE( g_trace_ctx, D_SYNTAX, "merge_idx() geo_idx0=%d\n", candIdx0 );
1692
0
      DTRACE( g_trace_ctx, D_SYNTAX, "merge_idx() geo_idx1=%d\n", candIdx1 );
1693
0
      xWriteTruncBinCode(splitDir, GEO_NUM_PARTITION_MODE);
1694
0
      candIdx1 -= candIdx1 < candIdx0 ? 0 : 1;
1695
0
      const int maxNumGeoCand = cu.cs->sps->maxNumGeoCand;
1696
0
      CHECK(maxNumGeoCand < 2, "Incorrect max number of geo candidates");
1697
0
      CHECK(candIdx0 >= maxNumGeoCand, "Incorrect candIdx0");
1698
0
      CHECK(candIdx1 >= maxNumGeoCand, "Incorrect candIdx1");
1699
0
      int numCandminus2 = maxNumGeoCand - 2;
1700
0
      m_BinEncoder.encodeBin( candIdx0 == 0 ? 0 : 1, Ctx::MergeIdx() );
1701
0
      if( candIdx0 > 0 )
1702
0
      {
1703
0
        unary_max_eqprob(candIdx0 - 1, numCandminus2);
1704
0
      }
1705
0
      if (numCandminus2 > 0)
1706
0
      {
1707
0
        m_BinEncoder.encodeBin(candIdx1 == 0 ? 0 : 1, Ctx::MergeIdx());
1708
0
        if (candIdx1 > 0)
1709
0
        {
1710
0
          unary_max_eqprob(candIdx1 - 1, numCandminus2 - 1);
1711
0
        }
1712
0
      }
1713
0
      return;
1714
0
    }
1715
0
    int numCandminus1 = (cu.predMode == MODE_IBC) ? (int(cu.cs->sps->maxNumIBCMergeCand) - 1) : (int(cu.cs->sps->maxNumMergeCand) - 1);
1716
0
    if( numCandminus1 > 0 )
1717
0
    {
1718
0
      if( cu.mergeIdx == 0 )
1719
0
      {
1720
0
        m_BinEncoder.encodeBin( 0, Ctx::MergeIdx() );
1721
0
        DTRACE( g_trace_ctx, D_SYNTAX, "merge_idx() merge_idx=%d\n", cu.mergeIdx );
1722
0
        return;
1723
0
      }
1724
0
      else
1725
0
      {
1726
0
        m_BinEncoder.encodeBin( 1, Ctx::MergeIdx() );
1727
0
        for( unsigned idx = 1; idx < numCandminus1; idx++ )
1728
0
        {
1729
0
          m_BinEncoder.encodeBinEP( cu.mergeIdx == idx ? 0 : 1 );
1730
0
          if( cu.mergeIdx == idx )
1731
0
          {
1732
0
            break;
1733
0
          }
1734
0
        }
1735
0
      }
1736
0
    }
1737
0
    DTRACE( g_trace_ctx, D_SYNTAX, "merge_idx() merge_idx=%d\n", cu.mergeIdx );
1738
0
  }
1739
0
}
1740
1741
1742
void CABACWriter::mmvd_merge_idx( const CodingUnit &cu )
1743
0
{
1744
0
  const int mvdBaseIdx  = cu.mmvdMergeIdx.pos.baseIdx;
1745
0
  const int mvdStep     = cu.mmvdMergeIdx.pos.step;
1746
0
  const int mvdPosition = cu.mmvdMergeIdx.pos.position;
1747
1748
0
  if( cu.cs->sps->maxNumMergeCand > 1 )
1749
0
  {
1750
0
    static_assert( MMVD_BASE_MV_NUM == 2, "" );
1751
0
    CHECK( mvdBaseIdx >= 2, "Invalid mvdBaseIdx" );
1752
0
    m_BinEncoder.encodeBin( mvdBaseIdx, Ctx::MmvdMergeIdx() );
1753
0
  }
1754
0
  DTRACE( g_trace_ctx, D_SYNTAX, "base_mvp_idx() base_mvp_idx=%d\n", mvdBaseIdx );
1755
1756
0
  int numCandminus1_step = MMVD_REFINE_STEP - 1;
1757
0
  if( numCandminus1_step > 0 )
1758
0
  {
1759
0
    if( mvdStep == 0 )
1760
0
    {
1761
0
      m_BinEncoder.encodeBin( 0, Ctx::MmvdStepMvpIdx() );
1762
0
    }
1763
0
    else
1764
0
    {
1765
0
      m_BinEncoder.encodeBin( 1, Ctx::MmvdStepMvpIdx() );
1766
0
      for( unsigned idx = 1; idx < numCandminus1_step; idx++ )
1767
0
      {
1768
0
        m_BinEncoder.encodeBinEP( mvdStep == idx ? 0 : 1 );
1769
0
        if( mvdStep == idx )
1770
0
        {
1771
0
          break;
1772
0
        }
1773
0
      }
1774
0
    }
1775
0
  }
1776
0
  DTRACE( g_trace_ctx, D_SYNTAX, "MmvdStepMvpIdx() MmvdStepMvpIdx=%d\n", mvdStep );
1777
1778
0
  m_BinEncoder.encodeBinsEP( mvdPosition, 2 );
1779
1780
0
  DTRACE( g_trace_ctx, D_SYNTAX, "pos() pos=%d\n", mvdPosition );
1781
0
  DTRACE( g_trace_ctx, D_SYNTAX, "mmvd_merge_idx() mmvd_merge_idx=%d\n", cu.mmvdMergeIdx.val );
1782
0
}
1783
1784
1785
void CABACWriter::inter_pred_idc( const CodingUnit& cu )
1786
0
{
1787
0
  if( !cu.cs->slice->isInterB() )
1788
0
  {
1789
0
    return;
1790
0
  }
1791
0
  if( !(CU::isBipredRestriction(cu)) )
1792
0
  {
1793
0
    unsigned ctxId = DeriveCtx::CtxInterDir(cu);
1794
0
    if( cu.interDir == 3 )
1795
0
    {
1796
0
      m_BinEncoder.encodeBin( 1, Ctx::InterDir(ctxId) );
1797
0
      DTRACE( g_trace_ctx, D_SYNTAX, "inter_pred_idc() ctx=%d value=%d pos=(%d,%d)\n", ctxId, cu.interDir, cu.lumaPos().x, cu.lumaPos().y );
1798
0
      return;
1799
0
    }
1800
0
    else
1801
0
    {
1802
0
      m_BinEncoder.encodeBin( 0, Ctx::InterDir(ctxId) );
1803
0
    }
1804
0
  }
1805
0
  m_BinEncoder.encodeBin( ( cu.interDir == 2 ), Ctx::InterDir( 5 ) );
1806
0
  DTRACE( g_trace_ctx, D_SYNTAX, "inter_pred_idc() ctx=5 value=%d pos=(%d,%d)\n", cu.interDir, cu.lumaPos().x, cu.lumaPos().y );
1807
0
}
1808
1809
1810
void CABACWriter::ref_idx( const CodingUnit& cu, RefPicList eRefList )
1811
21.4k
{
1812
21.4k
  if ( cu.smvdMode )
1813
0
  {
1814
0
    CHECK( cu.refIdx[eRefList] != cu.cs->slice->symRefIdx[ eRefList ], "Invalid reference index!\n" );
1815
0
    return;
1816
0
  }
1817
1818
21.4k
  int numRef  = cu.cs->slice->numRefIdx[eRefList];
1819
1820
21.4k
  if (eRefList == REF_PIC_LIST_0 && cu.cs->sps->IBC)
1821
21.4k
  {
1822
21.4k
    if (CU::isIBC(cu))
1823
21.4k
      return;
1824
21.4k
  }
1825
1826
0
  if( numRef <= 1 )
1827
0
  {
1828
0
    return;
1829
0
  }
1830
0
  int refIdx  = cu.refIdx[eRefList];
1831
0
  m_BinEncoder.encodeBin( (refIdx > 0), Ctx::RefPic() );
1832
0
  if( numRef <= 2 || refIdx == 0 )
1833
0
  {
1834
0
    DTRACE( g_trace_ctx, D_SYNTAX, "ref_idx() value=%d pos=(%d,%d)\n", refIdx, cu.lumaPos().x, cu.lumaPos().y );
1835
0
    return;
1836
0
  }
1837
0
  m_BinEncoder.encodeBin( (refIdx > 1), Ctx::RefPic(1) );
1838
0
  if( numRef <= 3 || refIdx == 1 )
1839
0
  {
1840
0
    DTRACE( g_trace_ctx, D_SYNTAX, "ref_idx() value=%d pos=(%d,%d)\n", refIdx, cu.lumaPos().x, cu.lumaPos().y );
1841
0
    return;
1842
0
  }
1843
0
  for( int idx = 3; idx < numRef; idx++ )
1844
0
  {
1845
0
    if( refIdx > idx - 1 )
1846
0
    {
1847
0
      m_BinEncoder.encodeBinEP( 1 );
1848
0
    }
1849
0
    else
1850
0
    {
1851
0
      m_BinEncoder.encodeBinEP( 0 );
1852
0
      break;
1853
0
    }
1854
0
  }
1855
0
  DTRACE( g_trace_ctx, D_SYNTAX, "ref_idx() value=%d pos=(%d,%d)\n", refIdx, cu.lumaPos().x, cu.lumaPos().y );
1856
0
}
1857
1858
1859
void CABACWriter::mvp_flag( const CodingUnit& cu, RefPicList eRefList )
1860
21.4k
{
1861
21.4k
  m_BinEncoder.encodeBin( cu.mvpIdx[eRefList], Ctx::MVPIdx() );
1862
21.4k
  DTRACE( g_trace_ctx, D_SYNTAX, "mvp_flag() value=%d pos=(%d,%d)\n", cu.mvpIdx[eRefList], cu.lumaPos().x, cu.lumaPos().y );
1863
21.4k
  DTRACE( g_trace_ctx, D_SYNTAX, "mvpIdx(refList:%d)=%d\n", eRefList, cu.mvpIdx[eRefList] );
1864
21.4k
}
1865
1866
1867
void CABACWriter::ciip_flag(const CodingUnit& cu)
1868
0
{
1869
0
  if (!cu.cs->sps->CIIP)
1870
0
  {
1871
0
    CHECK(cu.ciip == true, "invalid Ciip SPS");
1872
0
    return;
1873
0
  }
1874
0
  if (cu.skip)
1875
0
  {
1876
0
    CHECK(cu.ciip == true, "invalid Ciip and skip");
1877
0
    return;
1878
0
  }
1879
0
  m_BinEncoder.encodeBin(cu.ciip, Ctx::CiipFlag());
1880
0
  DTRACE(g_trace_ctx, D_SYNTAX, "Ciip_flag() Ciip=%d pos=(%d,%d) size=%dx%d\n", cu.ciip ? 1 : 0, cu.lumaPos().x, cu.lumaPos().y, cu.lumaSize().width, cu.lumaSize().height);
1881
0
}
1882
1883
1884
//================================================================================
1885
//  clause 7.3.8.8
1886
//--------------------------------------------------------------------------------
1887
//    void  transform_tree      ( cs, area, cuCtx, chromaCbfs )
1888
//    bool  split_transform_flag( split, depth )
1889
//    bool  cbf_comp            ( cbf, area, depth )
1890
//================================================================================
1891
1892
void CABACWriter::transform_tree( const CodingStructure& cs, Partitioner& partitioner, CUCtx& cuCtx, const PartSplit ispType, const int subTuIdx )
1893
154k
{
1894
154k
  const UnitArea&       area = partitioner.currArea();
1895
154k
  int             subTuCounter = subTuIdx;
1896
154k
  const TransformUnit&  tu = *cs.getTU(area.blocks[partitioner.chType].pos(), partitioner.chType, subTuIdx);
1897
154k
  const CodingUnit&     cu = *tu.cu;
1898
154k
  const unsigned        trDepth = partitioner.currTrDepth;
1899
154k
  const bool            split = (tu.depth > trDepth);
1900
154k
  if( split )
1901
41
  {
1902
41
    PartSplit partSplit;
1903
1904
41
    if( partitioner.canSplit( TU_MAX_TR_SPLIT, cs ) )
1905
0
    {
1906
#if ENABLE_TRACING
1907
      const CompArea& tuArea = partitioner.currArea().blocks[partitioner.chType];
1908
      DTRACE( g_trace_ctx, D_SYNTAX, "transform_tree() maxTrSplit chType=%d pos=(%d,%d) size=%dx%d\n", partitioner.chType, tuArea.x, tuArea.y, tuArea.width, tuArea.height );
1909
1910
#endif
1911
0
      partitioner.splitCurrArea( TU_MAX_TR_SPLIT, cs );
1912
0
    }
1913
41
    else if( cu.ispMode )
1914
41
    {
1915
41
      partitioner.splitCurrArea( ispType, cs );
1916
41
    }
1917
0
    else if( cu.sbtInfo && partitioner.canSplit( partSplit = CU::getSbtTuSplit( cu.sbtInfo ), cs ) )
1918
0
    {
1919
0
      partitioner.splitCurrArea( partSplit, cs );
1920
0
    }
1921
0
    else
1922
0
      THROW( "Implicit TU split not available" );
1923
1924
41
    do
1925
164
    {
1926
164
      transform_tree( cs, partitioner, cuCtx,                ispType, subTuCounter );
1927
164
      subTuCounter += subTuCounter != -1 ? 1 : 0;
1928
164
    } while( partitioner.nextPart( cs ) );
1929
1930
41
    partitioner.exitCurrSplit();
1931
41
  }
1932
154k
  else
1933
154k
  {
1934
    // split_transform_flag
1935
154k
    CHECK( partitioner.canSplit( TU_MAX_TR_SPLIT, cs ) || (cu.sbtInfo && partitioner.canSplit( CU::getSbtTuSplit( cu.sbtInfo ), cs)),  "transform split implied" );
1936
154k
    DTRACE( g_trace_ctx, D_SYNTAX, "transform_unit() pos=(%d,%d) size=%dx%d depth=%d trDepth=%d\n", tu.blocks[tu.chType].x, tu.blocks[tu.chType].y, tu.blocks[tu.chType].width, tu.blocks[tu.chType].height, cu.depth, partitioner.currTrDepth );
1937
1938
154k
    transform_unit( tu, cuCtx, partitioner, subTuCounter);
1939
154k
  }
1940
154k
}
1941
1942
1943
void CABACWriter::cbf_comp( const CodingUnit& cu, bool cbf, const CompArea& area, unsigned depth, const bool prevCbf, const bool useISP )
1944
2.96M
{
1945
2.96M
  const CtxSet&   ctxSet  = Ctx::QtCbf[ area.compID ];
1946
2.96M
  unsigned  ctxId;
1947
2.96M
  if( cu.bdpcmM[toChannelType(area.compID)] )
1948
190k
  {
1949
190k
    ctxId = (area.compID != COMP_Cr) ? 1 : 2;
1950
190k
    m_BinEncoder.encodeBin(cbf, ctxSet(ctxId));
1951
190k
  }
1952
2.77M
  else
1953
2.77M
  {
1954
2.77M
    ctxId = DeriveCtx::CtxQtCbf(area.compID, prevCbf, useISP && isLuma(area.compID));
1955
2.77M
    m_BinEncoder.encodeBin( cbf, ctxSet( ctxId ) );
1956
2.77M
  }
1957
2.96M
  DTRACE( g_trace_ctx, D_SYNTAX, "cbf_comp() etype=%d pos=(%d,%d) ctx=%d cbf=%d\n", area.compID, area.x, area.y, ctxId, cbf );
1958
2.96M
}
1959
1960
1961
1962
//================================================================================
1963
//  clause 7.3.8.9
1964
//--------------------------------------------------------------------------------
1965
//    void  mvd_coding( cu, refList )
1966
//================================================================================
1967
void CABACWriter::mvd_coding( const Mv &rMvd, int8_t imv )
1968
21.4k
{
1969
21.4k
  int       horMvd = rMvd.hor;
1970
21.4k
  int       verMvd = rMvd.ver;
1971
21.4k
  if ( imv > 0 )
1972
0
  {
1973
0
    int shift = 1;
1974
0
    if (imv < IMV_HPEL)
1975
0
    {
1976
0
      shift = 2;
1977
0
      if (imv == IMV_4PEL)
1978
0
      {
1979
0
        shift = 4;
1980
0
      }
1981
0
    }
1982
1983
0
    CHECK((horMvd % (1<<shift)) != 0 && (verMvd % (4<<shift)) != 0, "IMV: MVD is not a multiple of 2^N ");
1984
0
    horMvd >>= shift;
1985
0
    verMvd >>= shift;
1986
0
  }
1987
21.4k
  unsigned  horAbs  = unsigned( horMvd < 0 ? -horMvd : horMvd );
1988
21.4k
  unsigned  verAbs  = unsigned( verMvd < 0 ? -verMvd : verMvd );
1989
1990
1991
  // abs_mvd_greater0_flag[ 0 | 1 ]
1992
21.4k
  m_BinEncoder.encodeBin( (horAbs > 0), Ctx::Mvd() );
1993
21.4k
  m_BinEncoder.encodeBin( (verAbs > 0), Ctx::Mvd() );
1994
1995
  // abs_mvd_greater1_flag[ 0 | 1 ]
1996
21.4k
  if( horAbs > 0 )
1997
13.3k
  {
1998
13.3k
    m_BinEncoder.encodeBin( (horAbs > 1), Ctx::Mvd(1) );
1999
13.3k
  }
2000
21.4k
  if( verAbs > 0 )
2001
8.13k
  {
2002
8.13k
    m_BinEncoder.encodeBin( (verAbs > 1), Ctx::Mvd(1) );
2003
8.13k
  }
2004
2005
  // abs_mvd_minus2[ 0 | 1 ] and mvd_sign_flag[ 0 | 1 ]
2006
21.4k
  if( horAbs > 0 )
2007
13.3k
  {
2008
13.3k
    if( horAbs > 1 )
2009
13.3k
    {
2010
13.3k
      m_BinEncoder.encodeRemAbsEP(horAbs - 2, 1, 0, MV_BITS - 1);
2011
13.3k
    }
2012
13.3k
    m_BinEncoder.encodeBinEP( (horMvd < 0) );
2013
13.3k
  }
2014
21.4k
  if( verAbs > 0 )
2015
8.13k
  {
2016
8.13k
    if( verAbs > 1 )
2017
8.06k
    {
2018
8.06k
      m_BinEncoder.encodeRemAbsEP(verAbs - 2, 1, 0, MV_BITS - 1);
2019
8.06k
    }
2020
8.13k
    m_BinEncoder.encodeBinEP( (verMvd < 0) );
2021
8.13k
  }
2022
21.4k
}
2023
2024
2025
//================================================================================
2026
//  clause 7.3.8.10
2027
//--------------------------------------------------------------------------------
2028
//    void  transform_unit      ( tu, cuCtx, chromaCbfs )
2029
//    void  cu_qp_delta         ( cu )
2030
//    void  cu_chroma_qp_offset ( cu )
2031
//================================================================================
2032
void CABACWriter::transform_unit( const TransformUnit& tu, CUCtx& cuCtx, Partitioner& partitioner, const int subTuCounter)
2033
154k
{
2034
154k
  const CodingUnit&       cu = *tu.cu;
2035
154k
  const UnitArea&         area = partitioner.currArea();
2036
154k
  const unsigned          trDepth = partitioner.currTrDepth;
2037
154k
  ChromaCbfs              chromaCbfs;
2038
154k
  CHECK(tu.depth != trDepth, " transform unit should be not be futher partitioned");
2039
2040
  // cbf_cb & cbf_cr
2041
154k
  if (area.chromaFormat != CHROMA_400)
2042
154k
  {
2043
154k
    const bool              chromaCbfISP = area.blocks[COMP_Cb].valid() && cu.ispMode;
2044
154k
    if (area.blocks[COMP_Cb].valid() && (!CU::isSepTree(cu) || partitioner.chType == CH_C) && (!cu.ispMode || chromaCbfISP))
2045
85.2k
    {
2046
85.2k
      unsigned cbfDepth = chromaCbfISP ? trDepth - 1 : trDepth;
2047
85.2k
      {
2048
85.2k
        chromaCbfs.Cb = TU::getCbfAtDepth(tu, COMP_Cb, trDepth);
2049
        //if (!(cu.sbtInfo && trDepth == 1))
2050
85.2k
        if (!(cu.sbtInfo && tu.noResidual))
2051
85.2k
          cbf_comp(*tu.cu, chromaCbfs.Cb, area.blocks[COMP_Cb], cbfDepth);
2052
85.2k
      }
2053
2054
85.2k
      {
2055
85.2k
        chromaCbfs.Cr = TU::getCbfAtDepth(tu, COMP_Cr, trDepth);
2056
        //if (!(cu.sbtInfo && trDepth == 1))
2057
85.2k
        if (!(cu.sbtInfo && tu.noResidual))
2058
85.2k
          cbf_comp(*tu.cu, chromaCbfs.Cr, area.blocks[COMP_Cr], cbfDepth, chromaCbfs.Cb);
2059
85.2k
      }
2060
85.2k
    }
2061
69.6k
    else if (CU::isSepTree(cu))
2062
69.6k
    {
2063
69.6k
      chromaCbfs = ChromaCbfs(false);
2064
69.6k
    }
2065
154k
  }
2066
0
  else if (CU::isSepTree(cu))
2067
0
  {
2068
0
    chromaCbfs = ChromaCbfs(false);
2069
0
  }
2070
2071
154k
  if (!isChroma(partitioner.chType))
2072
69.6k
  {
2073
69.6k
    if (!CU::isIntra(cu) && trDepth == 0 && !chromaCbfs.sigChroma(area.chromaFormat))
2074
131
    {
2075
131
      CHECK(!TU::getCbfAtDepth(tu, COMP_Y, trDepth), "Luma cbf must be true for inter units with no chroma coeffs");
2076
131
    }
2077
69.4k
    else if (cu.sbtInfo && tu.noResidual)
2078
0
    {
2079
0
      CHECK(TU::getCbfAtDepth(tu, COMP_Y, trDepth), "Luma cbf must be false for inter sbt no-residual tu");
2080
0
    }
2081
69.4k
    else if (cu.sbtInfo && !chromaCbfs.sigChroma(area.chromaFormat))
2082
0
    {
2083
0
      assert(!tu.noResidual);
2084
0
      CHECK(!TU::getCbfAtDepth(tu, COMP_Y, trDepth), "Luma cbf must be true for inter sbt residual tu");
2085
0
    }
2086
69.4k
    else
2087
69.4k
    {
2088
69.4k
      bool previousCbf = false;
2089
69.4k
      bool rootCbfSoFar = false;
2090
69.4k
      bool lumaCbfIsInferredACT = (cu.colorTransform && cu.predMode == MODE_INTRA && trDepth == 0 && !chromaCbfs.sigChroma(area.chromaFormat));
2091
69.4k
      CHECK(lumaCbfIsInferredACT && !TU::getCbfAtDepth(tu, COMP_Y, trDepth), "adaptive color transform cannot have all zero coefficients");
2092
69.4k
      bool lastCbfIsInferred    = lumaCbfIsInferredACT; // ISP and ACT are mutually exclusive
2093
69.4k
      if (cu.ispMode)
2094
164
      {
2095
164
        uint32_t nTus = cu.ispMode == HOR_INTRA_SUBPARTITIONS ? cu.lheight() >> Log2(tu.lheight()) : cu.lwidth() >> Log2(tu.lwidth());
2096
164
        if (subTuCounter == nTus - 1)
2097
41
        {
2098
41
          TransformUnit* tuPointer = cu.firstTU;
2099
164
          for (int tuIdx = 0; tuIdx < subTuCounter; tuIdx++)
2100
123
          {
2101
123
            rootCbfSoFar |= TU::getCbfAtDepth(*tuPointer, COMP_Y, trDepth);
2102
123
            tuPointer = tuPointer->next;
2103
123
          }
2104
41
          if (!rootCbfSoFar)
2105
0
          {
2106
0
            lastCbfIsInferred = true;
2107
0
          }
2108
41
        }
2109
164
        if (!lastCbfIsInferred)
2110
164
        {
2111
164
          previousCbf = TU::getPrevTuCbfAtDepth(tu, COMP_Y, partitioner.currTrDepth);
2112
164
        }
2113
164
      }
2114
69.4k
      if (!lastCbfIsInferred)
2115
69.4k
      {
2116
69.4k
        cbf_comp(*tu.cu, TU::getCbfAtDepth(tu, COMP_Y, trDepth), tu.Y(), trDepth, previousCbf, cu.ispMode);
2117
69.4k
      }
2118
69.4k
    }
2119
69.6k
  }
2120
154k
  bool        lumaOnly  = ( cu.chromaFormat == CHROMA_400 || !tu.blocks[COMP_Cb].valid() );
2121
154k
  bool        cbf[3]    = { TU::getCbf( tu, COMP_Y ), chromaCbfs.Cb, chromaCbfs.Cr };
2122
154k
  bool        cbfLuma   = ( cbf[ COMP_Y ] != 0 );
2123
154k
  bool        cbfChroma = false;
2124
2125
154k
  if( !lumaOnly )
2126
85.2k
  {
2127
85.2k
    if( tu.blocks[COMP_Cb].valid() )
2128
85.2k
    {
2129
85.2k
      cbf   [ COMP_Cb  ] = TU::getCbf( tu, COMP_Cb );
2130
85.2k
      cbf   [ COMP_Cr  ] = TU::getCbf( tu, COMP_Cr );
2131
85.2k
    }
2132
85.2k
    cbfChroma = ( cbf[ COMP_Cb ] || cbf[ COMP_Cr ] );
2133
85.2k
  }
2134
2135
154k
  if( ( cu.lwidth() > 64 || cu.lheight() > 64 || cbfLuma || cbfChroma ) &&
2136
26.9k
    (!CU::isSepTree(*tu.cu) || isLuma(tu.chType)) )
2137
4.81k
  {
2138
4.81k
    if( cu.cs->pps->useDQP && !cuCtx.isDQPCoded )
2139
2.34k
    {
2140
2.34k
      cu_qp_delta(cu, cuCtx.qp, cu.qp);
2141
2.34k
      cuCtx.qp = cu.qp;
2142
2.34k
      cuCtx.isDQPCoded = true;
2143
2.34k
    }
2144
4.81k
  }
2145
154k
  if (cu.cs->slice->chromaQpAdjEnabled && cbfChroma && !cuCtx.isChromaQpAdjCoded)
2146
0
  {
2147
0
    cu_chroma_qp_offset( cu );
2148
0
    cuCtx.isChromaQpAdjCoded = true;
2149
0
  }
2150
2151
154k
  if( !lumaOnly )
2152
85.2k
  {
2153
85.2k
    joint_cb_cr( tu, ( cbf[COMP_Cb] ? 2 : 0 ) + ( cbf[COMP_Cr] ? 1 : 0 ) );
2154
85.2k
  }
2155
2156
154k
  if( cbfLuma )
2157
4.81k
  {
2158
4.81k
    residual_coding( tu, COMP_Y, &cuCtx );
2159
4.81k
  }
2160
154k
  if( !lumaOnly )
2161
85.2k
  {
2162
255k
    for( ComponentID compID = COMP_Cb; compID <= COMP_Cr; compID = ComponentID( compID + 1 ) )
2163
170k
    {
2164
170k
      if( cbf[ compID ] )
2165
43.8k
      {
2166
43.8k
        residual_coding( tu, compID, &cuCtx );
2167
43.8k
      }
2168
170k
    }
2169
85.2k
  }
2170
154k
}
2171
2172
2173
void CABACWriter::cu_qp_delta( const CodingUnit& cu, int predQP, const int8_t qp )
2174
3.52k
{
2175
3.52k
  CHECK(!( predQP != std::numeric_limits<int>::max()), "Unspecified error");
2176
3.52k
  int       DQp         = qp - predQP;
2177
3.52k
  int       qpBdOffsetY = cu.cs->sps->qpBDOffset[ CH_L ];
2178
3.52k
  DQp                   = ( DQp + (MAX_QP + 1) + (MAX_QP + 1) / 2 + qpBdOffsetY + (qpBdOffsetY / 2)) % ((MAX_QP + 1) + qpBdOffsetY) - (MAX_QP + 1) / 2 - (qpBdOffsetY / 2);
2179
3.52k
  unsigned  absDQP      = unsigned( DQp < 0 ? -DQp : DQp );
2180
3.52k
  unsigned  unaryDQP    = std::min<unsigned>( absDQP, CU_DQP_TU_CMAX );
2181
2182
3.52k
  unary_max_symbol( unaryDQP, Ctx::DeltaQP(), Ctx::DeltaQP(1), CU_DQP_TU_CMAX );
2183
3.52k
  if( absDQP >= CU_DQP_TU_CMAX )
2184
0
  {
2185
0
    exp_golomb_eqprob( absDQP - CU_DQP_TU_CMAX, CU_DQP_EG_k );
2186
0
  }
2187
3.52k
  if( absDQP > 0 )
2188
0
  {
2189
0
    m_BinEncoder.encodeBinEP( DQp < 0 );
2190
0
  }
2191
2192
3.52k
  DTRACE_COND( ( isEncoding() ), g_trace_ctx, D_DQP, "x=%d, y=%d, d=%d, pred_qp=%d, DQp=%d, qp=%d\n", cu.blocks[cu.chType].lumaPos().x, cu.blocks[cu.chType].lumaPos().y, cu.qtDepth, predQP, DQp, qp );
2193
3.52k
}
2194
2195
2196
void CABACWriter::cu_chroma_qp_offset( const CodingUnit& cu )
2197
0
{
2198
  // cu_chroma_qp_offset_flag
2199
0
  unsigned qpAdj = cu.chromaQpAdj;
2200
0
  if( qpAdj == 0 )
2201
0
  {
2202
0
    m_BinEncoder.encodeBin( 0, Ctx::ChromaQpAdjFlag() );
2203
0
  }
2204
0
  else
2205
0
  {
2206
0
    m_BinEncoder.encodeBin( 1, Ctx::ChromaQpAdjFlag() );
2207
0
    int length = cu.cs->pps->chromaQpOffsetListLen;
2208
0
    if( length > 1 )
2209
0
    {
2210
0
      unary_max_symbol( qpAdj-1, Ctx::ChromaQpAdjIdc(), Ctx::ChromaQpAdjIdc(), length-1 );
2211
0
    }
2212
0
  }
2213
0
}
2214
2215
2216
//================================================================================
2217
//  clause 7.3.8.11
2218
//--------------------------------------------------------------------------------
2219
//    void        residual_coding         ( tu, compID )
2220
//    void        transform_skip_flag     ( tu, compID )
2221
//    void        last_sig_coeff          ( coeffCtx )
2222
//    void        residual_coding_subblock( coeffCtx )
2223
//================================================================================
2224
2225
void CABACWriter::joint_cb_cr( const TransformUnit& tu, const int cbfMask )
2226
1.33M
{
2227
1.33M
  if ( !tu.cu->slice->sps->jointCbCr )
2228
0
  {
2229
0
    return;
2230
0
  }
2231
2232
1.33M
  CHECK( tu.jointCbCr && tu.jointCbCr != cbfMask, "wrong value of jointCbCr (" << (int)tu.jointCbCr << " vs " << (int)cbfMask << ")" );
2233
1.33M
  if( ( CU::isIntra( *tu.cu ) && cbfMask ) || ( cbfMask == 3 ) )
2234
632k
  {
2235
632k
    m_BinEncoder.encodeBin( tu.jointCbCr ? 1 : 0, Ctx::JointCbCrFlag( cbfMask - 1 ) );
2236
632k
  }
2237
1.33M
}
2238
2239
2240
void CABACWriter::residual_coding( const TransformUnit& tu, ComponentID compID, CUCtx* cuCtx )
2241
1.29M
{
2242
1.29M
  const CodingUnit& cu = *tu.cu;
2243
1.29M
  DTRACE( g_trace_ctx, D_SYNTAX, "residual_coding() etype=%d pos=(%d,%d) size=%dx%d predMode=%d\n", tu.blocks[compID].compID, tu.blocks[compID].x, tu.blocks[compID].y, tu.blocks[compID].width, tu.blocks[compID].height, cu.predMode );
2244
2245
1.29M
  if( compID == COMP_Cr && tu.jointCbCr == 3 )
2246
369k
  {
2247
369k
    return;
2248
369k
  }
2249
2250
920k
  ts_flag            ( tu, compID );
2251
2252
920k
  if( tu.mtsIdx[compID] == MTS_SKIP && !tu.cs->slice->tsResidualCodingDisabled )
2253
64.4k
  {
2254
64.4k
    residual_codingTS( tu, compID );
2255
64.4k
    return;
2256
64.4k
  }
2257
2258
  // determine sign hiding
2259
855k
  bool signHiding  = cu.cs->slice->signDataHidingEnabled;
2260
2261
  // init coeff coding context
2262
855k
  CoeffCodingContext  cctx    ( tu, compID, signHiding, false, m_tplBuf );
2263
855k
  const TCoeffSig*    coeff   = tu.getCoeffs( compID ).buf;
2264
2265
  // determine and set last coeff position and sig group flags
2266
855k
  int                      scanPosLast = tu.lastPos[compID];
2267
855k
  std::bitset<MLS_GRP_NUM> sigGroupFlags;
2268
2269
1.73M
  for( int subSetId = 0; subSetId <= ( scanPosLast >> cctx.log2CGSize() ); subSetId++ )
2270
881k
  {
2271
881k
    const int scanPosStart = subSetId << cctx.log2CGSize();
2272
881k
    const int scanPosEnd   = scanPosStart + ( 1 << cctx.log2CGSize() ) - 1;
2273
2274
8.00M
    for( int scanPos = scanPosEnd; scanPos >= scanPosStart; scanPos-- )
2275
8.00M
    {
2276
8.00M
      unsigned blkPos = cctx.blockPos( scanPos );
2277
2278
8.00M
      if( coeff[blkPos] )
2279
873k
      {
2280
873k
        sigGroupFlags.set( subSetId );
2281
873k
        break;
2282
873k
      }
2283
8.00M
    }
2284
881k
  }
2285
855k
  CHECK( scanPosLast < 0, "Coefficient coding called for empty TU" );
2286
855k
  cctx.setScanPosLast(scanPosLast);
2287
2288
855k
  if( cuCtx && tu.mtsIdx[compID] != MTS_SKIP && tu.blocks[ compID ].height >= 4 && tu.blocks[ compID ].width >= 4 )
2289
752k
  {
2290
752k
    const int maxLfnstPos = ((tu.blocks[compID].height == 4 && tu.blocks[compID].width == 4) || (tu.blocks[compID].height == 8 && tu.blocks[compID].width == 8)) ? 7 : 15;
2291
752k
    cuCtx->violatesLfnstConstrained[ toChannelType(compID) ] |= cctx.scanPosLast() > maxLfnstPos;
2292
752k
  }
2293
855k
  if( cuCtx && tu.mtsIdx[compID] != MTS_SKIP && tu.blocks[ compID ].height >= 4 && tu.blocks[ compID ].width >= 4 )
2294
752k
  {
2295
752k
    const int lfnstLastScanPosTh = isLuma( compID ) ? LFNST_LAST_SIG_LUMA : LFNST_LAST_SIG_CHROMA;
2296
752k
    cuCtx->lfnstLastScanPos |= cctx.scanPosLast() >= lfnstLastScanPosTh;
2297
752k
  }
2298
855k
  if (cuCtx && isLuma(compID) && tu.mtsIdx[compID] != MTS_SKIP)
2299
27.0k
  {
2300
27.0k
    cuCtx->mtsLastScanPos |= cctx.scanPosLast() >= 1;
2301
27.0k
  }
2302
  
2303
  // code last coeff position
2304
855k
  last_sig_coeff( cctx, tu, compID );
2305
2306
  // code subblocks
2307
855k
  const int stateTab  = ( tu.cs->slice->depQuantEnabled ? 32040 : 0 );
2308
855k
  int       state     = 0;
2309
2310
855k
  int ctxBinSampleRatio = MAX_TU_LEVEL_CTX_CODED_BIN_CONSTRAINT;
2311
855k
  cctx.remRegBins = (tu.getTbAreaAfterCoefZeroOut(compID) * ctxBinSampleRatio) >> 4;
2312
2313
855k
  const bool zeroOutCheck  = isLuma( compID ) && tu.cs->sps->MTS && tu.cu->sbtInfo != 0 && tu.blocks[compID].height <= 32 && tu.blocks[compID].width <= 32;
2314
855k
  const bool zeroOutWidth  = tu.blocks[compID].width;
2315
855k
  const bool zeroOutHeight = tu.blocks[compID].height;
2316
2317
1.73M
  for( int subSetId = ( cctx.scanPosLast() >> cctx.log2CGSize() ); subSetId >= 0; subSetId--)
2318
881k
  {
2319
881k
    cctx.initSubblock( subSetId, sigGroupFlags[subSetId] );
2320
2321
881k
    if( zeroOutCheck )
2322
0
    {
2323
0
      if( ( zeroOutHeight && cctx.cgPosY() >= ( 16 >> cctx.log2CGHeight() ) ) || ( zeroOutWidth  && cctx.cgPosX() >= ( 16 >> cctx.log2CGWidth() ) ) )
2324
0
      {
2325
0
        continue;
2326
0
      }
2327
0
    }
2328
2329
881k
    residual_coding_subblock( cctx, coeff, stateTab, state );
2330
881k
    if ( cuCtx && isLuma(compID) && cctx.isSigGroup() && ( cctx.cgPosY() > 3 || cctx.cgPosX() > 3 ) )
2331
0
    {
2332
0
      cuCtx->violatesMtsCoeffConstraint = true;
2333
0
    }
2334
881k
  }
2335
855k
}
2336
2337
2338
void CABACWriter::ts_flag( const TransformUnit& tu, ComponentID compID )
2339
920k
{
2340
920k
  int tsFlag = tu.mtsIdx[compID] == MTS_SKIP ? 1 : 0;
2341
920k
  int ctxIdx = isLuma(compID) ? 0 : 1;
2342
  
2343
920k
  if( TU::isTSAllowed ( tu, compID ) )
2344
634k
  {
2345
634k
    m_BinEncoder.encodeBin( tsFlag, Ctx::TransformSkipFlag(ctxIdx));
2346
634k
  }
2347
920k
  DTRACE( g_trace_ctx, D_SYNTAX, "ts_flag() etype=%d pos=(%d,%d) mtsIdx=%d\n", COMP_Y, tu.cu->lx(), tu.cu->ly(), tsFlag );
2348
920k
}
2349
2350
2351
void CABACWriter::mts_idx( const CodingUnit& cu, CUCtx* cuCtx )
2352
179k
{
2353
179k
  TransformUnit &tu = *cu.firstTU;
2354
179k
  int        mtsIdx = tu.mtsIdx[COMP_Y];
2355
  
2356
179k
  if( CU::isMTSAllowed( cu, COMP_Y ) && cuCtx && !cuCtx->violatesMtsCoeffConstraint &&
2357
0
      cuCtx->mtsLastScanPos && cu.lfnstIdx == 0 && mtsIdx != MTS_SKIP)
2358
0
  {
2359
0
    int symbol = mtsIdx != MTS_DCT2_DCT2 ? 1 : 0;
2360
0
    int ctxIdx = 0;
2361
    
2362
0
    m_BinEncoder.encodeBin( symbol, Ctx::MTSIdx(ctxIdx));
2363
    
2364
0
    if( symbol )
2365
0
    {
2366
0
      ctxIdx = 1;
2367
0
      for( int i = 0; i < 3; i++, ctxIdx++ )
2368
0
      {
2369
0
        symbol = mtsIdx > i + MTS_DST7_DST7 ? 1 : 0;
2370
0
        m_BinEncoder.encodeBin( symbol, Ctx::MTSIdx(ctxIdx));
2371
        
2372
0
        if( !symbol )
2373
0
        {
2374
0
          break;
2375
0
        }
2376
0
      }
2377
0
    }
2378
0
  }
2379
179k
  DTRACE( g_trace_ctx, D_SYNTAX, "mts_idx() etype=%d pos=(%d,%d) mtsIdx=%d\n", COMP_Y, tu.cu->lx(), tu.cu->ly(), mtsIdx);
2380
179k
}
2381
2382
2383
void CABACWriter::isp_mode( const CodingUnit& cu )
2384
865k
{
2385
865k
  if( !CU::isIntra( cu ) || !isLuma( cu.chType ) || cu.multiRefIdx || !cu.cs->sps->ISP || cu.bdpcmM[CH_L] || !CU::canUseISP( cu, getFirstComponentOfChannel( cu.chType ) )  || cu.colorTransform)
2386
158k
  {
2387
158k
    CHECK( cu.ispMode != NOT_INTRA_SUBPARTITIONS, "cu.ispMode != 0" );
2388
158k
    return;
2389
158k
  }
2390
707k
  if ( cu.ispMode == NOT_INTRA_SUBPARTITIONS )
2391
697k
  {
2392
697k
    m_BinEncoder.encodeBin( 0, Ctx::ISPMode( 0 ) );
2393
697k
  }
2394
9.92k
  else
2395
9.92k
  {
2396
9.92k
    m_BinEncoder.encodeBin( 1, Ctx::ISPMode( 0 ) );
2397
9.92k
    m_BinEncoder.encodeBin( cu.ispMode - 1, Ctx::ISPMode( 1 ) );
2398
9.92k
  }
2399
707k
  DTRACE( g_trace_ctx, D_SYNTAX, "intra_subPartitions() etype=%d pos=(%d,%d) ispIdx=%d\n", cu.chType, cu.blocks[cu.chType].x, cu.blocks[cu.chType].y, (int)cu.ispMode );
2400
707k
}
2401
2402
2403
void CABACWriter::residual_lfnst_mode( const CodingUnit& cu, CUCtx& cuCtx )
2404
259k
{
2405
259k
  int chIdx = CS::isDualITree( *cu.cs ) && cu.chType == CH_C ? 1 : 0;
2406
259k
  if( ( cu.ispMode && !CU::canUseLfnstWithISP( cu, cu.chType ) ) ||
2407
259k
      (cu.cs->sps->LFNST && CU::isIntra(cu) && cu.mipFlag && !allowLfnstWithMip(cu.lumaSize())) ||
2408
257k
    ( CU::isSepTree(cu) && cu.chType == CH_C && std::min( cu.blocks[ 1 ].width, cu.blocks[ 1 ].height ) < 4 )
2409
255k
    || ( cu.blocks[ chIdx ].lumaSize().width > cu.cs->sps->getMaxTbSize() || cu.blocks[ chIdx ].lumaSize().height > cu.cs->sps->getMaxTbSize() )
2410
259k
    )
2411
4.67k
  {
2412
4.67k
    return;
2413
4.67k
  }
2414
2415
255k
  if( cu.cs->sps->LFNST && CU::isIntra( cu )  )
2416
255k
  {
2417
18.4E
    const bool lumaFlag                   = CU::isSepTree(cu) ? (   isLuma( cu.chType ) ? true : false ) : true;
2418
18.4E
    const bool chromaFlag                 = CU::isSepTree(cu) ? ( isChroma( cu.chType ) ? true : false ) : true;
2419
255k
          bool nonZeroCoeffNonTsCorner8x8 = ( lumaFlag && cuCtx.violatesLfnstConstrained[CH_L] ) || (chromaFlag && cuCtx.violatesLfnstConstrained[CH_C] );
2420
2421
255k
    bool isTrSkip = false;
2422
2423
255k
    for( const auto& currTU : cTUTraverser( cu.firstTU, cu.lastTU->next ) )
2424
260k
    {
2425
260k
      const uint32_t numValidComp = getNumberValidComponents(cu.chromaFormat);
2426
1.04M
      for (uint32_t compID = COMP_Y; compID < numValidComp; compID++)
2427
780k
      {
2428
780k
        if (currTU.blocks[compID].valid() && TU::getCbf(currTU, (ComponentID)compID) && currTU.mtsIdx[compID] == MTS_SKIP)
2429
58
        {
2430
58
          isTrSkip = true;
2431
58
          break;
2432
58
        }
2433
780k
      }
2434
260k
    }
2435
2436
255k
    if( (!cuCtx.lfnstLastScanPos && !cu.ispMode) || nonZeroCoeffNonTsCorner8x8 || isTrSkip )
2437
239k
    {
2438
239k
      return;
2439
239k
    }
2440
255k
  }
2441
130
  else
2442
130
  {
2443
130
    return;
2444
130
  }
2445
  
2446
15.2k
  unsigned cctx = 0;
2447
15.2k
  if ( CU::isSepTree(cu) ) cctx++;
2448
2449
15.2k
  const uint32_t idxLFNST = cu.lfnstIdx;
2450
15.2k
  assert( idxLFNST < 3 );
2451
15.2k
  m_BinEncoder.encodeBin( idxLFNST ? 1 : 0, Ctx::LFNSTIdx( cctx ) );
2452
2453
15.2k
  if( idxLFNST )
2454
14.8k
  {
2455
14.8k
    m_BinEncoder.encodeBin( (idxLFNST - 1) ? 1 : 0, Ctx::LFNSTIdx(2));
2456
14.8k
  }
2457
2458
15.2k
  DTRACE( g_trace_ctx, D_SYNTAX, "residual_lfnst_mode() etype=%d pos=(%d,%d) mode=%d\n", COMP_Y, cu.lx(), cu.ly(), ( int ) cu.lfnstIdx );
2459
15.2k
}
2460
2461
2462
void CABACWriter::last_sig_coeff( CoeffCodingContext& cctx, const TransformUnit& tu, ComponentID compID )
2463
855k
{
2464
855k
  unsigned blkPos = cctx.blockPos( cctx.scanPosLast() );
2465
855k
  unsigned posX, posY;
2466
855k
  {
2467
855k
    posY  = blkPos / cctx.width();
2468
855k
    posX  = blkPos - ( posY * cctx.width() );
2469
855k
  }
2470
2471
855k
  unsigned CtxLast;
2472
855k
  unsigned GroupIdxX = g_uiGroupIdx[ posX ];
2473
855k
  unsigned GroupIdxY = g_uiGroupIdx[ posY ];
2474
2475
855k
  unsigned maxLastPosX = cctx.maxLastPosX();
2476
855k
  unsigned maxLastPosY = cctx.maxLastPosY();
2477
2478
855k
  if( tu.cs->sps->MTS && tu.cu->sbtInfo != 0 && tu.blocks[ compID ].width <= 32 && tu.blocks[ compID ].height <= 32 && compID == COMP_Y )
2479
0
  {
2480
0
    maxLastPosX = ( tu.blocks[compID].width  == 32 ) ? g_uiGroupIdx[ 15 ] : maxLastPosX;
2481
0
    maxLastPosY = ( tu.blocks[compID].height == 32 ) ? g_uiGroupIdx[ 15 ] : maxLastPosY;
2482
0
  }
2483
2484
1.99M
  for( CtxLast = 0; CtxLast < GroupIdxX; CtxLast++ )
2485
1.13M
  {
2486
1.13M
    m_BinEncoder.encodeBin( 1, cctx.lastXCtxId( CtxLast ) );
2487
1.13M
  }
2488
855k
  if( GroupIdxX < maxLastPosX )
2489
819k
  {
2490
819k
    m_BinEncoder.encodeBin( 0, cctx.lastXCtxId( CtxLast ) );
2491
819k
  }
2492
2.04M
  for( CtxLast = 0; CtxLast < GroupIdxY; CtxLast++ )
2493
1.19M
  {
2494
1.19M
    m_BinEncoder.encodeBin( 1, cctx.lastYCtxId( CtxLast ) );
2495
1.19M
  }
2496
855k
  if( GroupIdxY < maxLastPosY )
2497
811k
  {
2498
811k
    m_BinEncoder.encodeBin( 0, cctx.lastYCtxId( CtxLast ) );
2499
811k
  }
2500
855k
  if( GroupIdxX > 3 )
2501
2.81k
  {
2502
2.81k
    posX -= g_uiMinInGroup[ GroupIdxX ];
2503
8.10k
    for (int i = ( ( GroupIdxX - 2 ) >> 1 ) - 1 ; i >= 0; i-- )
2504
5.29k
    {
2505
5.29k
      m_BinEncoder.encodeBinEP( ( posX >> i ) & 1 );
2506
5.29k
    }
2507
2.81k
  }
2508
855k
  if( GroupIdxY > 3 )
2509
2.20k
  {
2510
2.20k
    posY -= g_uiMinInGroup[ GroupIdxY ];
2511
5.93k
    for ( int i = ( ( GroupIdxY - 2 ) >> 1 ) - 1 ; i >= 0; i-- )
2512
3.72k
    {
2513
3.72k
      m_BinEncoder.encodeBinEP( ( posY >> i ) & 1 );
2514
3.72k
    }
2515
2.20k
  }
2516
855k
}
2517
2518
2519
void CABACWriter::residual_coding_subblock( CoeffCodingContext& cctx, const TCoeffSig* coeff, const int stateTransTable, int& state )
2520
881k
{
2521
  //===== init =====
2522
881k
  const int   minSubPos   = cctx.minSubPos();
2523
881k
  const bool  isLast      = cctx.isLast();
2524
881k
  int         firstSigPos = ( isLast ? cctx.scanPosLast() : cctx.maxSubPos() );
2525
881k
  int         nextSigPos  = firstSigPos;
2526
2527
  //===== encode significant_coeffgroup_flag =====
2528
881k
  if( !isLast && cctx.isNotFirst() )
2529
21.2k
  {
2530
21.2k
    if( cctx.isSigGroup() )
2531
13.0k
    {
2532
13.0k
      m_BinEncoder.encodeBin( 1, cctx.sigGroupCtxId() );
2533
13.0k
    }
2534
8.15k
    else
2535
8.15k
    {
2536
8.15k
      m_BinEncoder.encodeBin( 0, cctx.sigGroupCtxId() );
2537
8.15k
      return;
2538
8.15k
    }
2539
21.2k
  }
2540
2541
  //===== encode absolute values =====
2542
873k
  const int inferSigPos   = nextSigPos != cctx.scanPosLast() ? ( cctx.isNotFirst() ? minSubPos : -1 ) : nextSigPos;
2543
873k
  int       firstNZPos    = nextSigPos;
2544
873k
  int       lastNZPos     = -1;
2545
873k
  int       remAbsLevel   = -1;
2546
873k
  int       numNonZero    =  0;
2547
873k
  unsigned  signPattern   =  0;
2548
873k
  int       remRegBins    = cctx.remRegBins;
2549
873k
  int       firstPosMode2 = minSubPos - 1;
2550
2551
7.80M
  for( ; nextSigPos >= minSubPos && remRegBins >= 4; nextSigPos-- )
2552
6.93M
  {
2553
6.93M
    const int blkPos     = cctx.blockPos( nextSigPos );
2554
6.93M
    TCoeff    Coeff      = coeff[ blkPos ];
2555
6.93M
    unsigned  sigFlag    = ( Coeff != 0 );
2556
6.93M
    if( numNonZero || nextSigPos != inferSigPos )
2557
6.08M
    {
2558
6.08M
      const unsigned sigCtxId = cctx.sigCtxIdAbsWithAcc( nextSigPos, state );
2559
6.08M
      m_BinEncoder.encodeBin( sigFlag, sigCtxId );
2560
6.08M
      DTRACE( g_trace_ctx, D_SYNTAX_RESI, "sig_bin() bin=%d ctx=%d\n", sigFlag, sigCtxId );
2561
6.08M
      remRegBins--;
2562
6.08M
    }
2563
855k
    else if( nextSigPos != cctx.scanPosLast() )
2564
48
    {
2565
48
      cctx.sigCtxIdAbsWithAcc( nextSigPos, state ); // required for setting variables that are needed for gtx/par context selection
2566
48
    }
2567
2568
6.93M
    if( sigFlag )
2569
6.39M
    {
2570
6.39M
      uint8_t ctxOff = cctx.ctxOffsetAbs();
2571
6.39M
      numNonZero++;
2572
6.39M
      firstNZPos  = nextSigPos;
2573
6.39M
      lastNZPos   = std::max<int>( lastNZPos, nextSigPos );
2574
6.39M
      int absLevel= abs( Coeff );
2575
6.39M
      remAbsLevel = absLevel - 1;
2576
2577
6.39M
      if( nextSigPos != cctx.scanPosLast() ) signPattern <<= 1;
2578
6.39M
      if( Coeff < 0 )                        signPattern++;
2579
2580
6.39M
      unsigned gt1 = !!remAbsLevel;
2581
6.39M
      m_BinEncoder.encodeBin( gt1, cctx.greater1CtxIdAbs(ctxOff) );
2582
6.39M
      DTRACE( g_trace_ctx, D_SYNTAX_RESI, "gt1_flag() bin=%d ctx=%d\n", gt1, cctx.greater1CtxIdAbs(ctxOff) );
2583
6.39M
      remRegBins--;
2584
2585
6.39M
      if( gt1 )
2586
5.51M
      {
2587
5.51M
        remAbsLevel  -= 1;
2588
5.51M
        m_BinEncoder.encodeBin( remAbsLevel&1, cctx.parityCtxIdAbs( ctxOff ) );
2589
5.51M
        DTRACE( g_trace_ctx, D_SYNTAX_RESI, "par_flag() bin=%d ctx=%d\n", remAbsLevel&1, cctx.parityCtxIdAbs( ctxOff ) );
2590
5.51M
        remAbsLevel >>= 1;
2591
2592
5.51M
        remRegBins--;
2593
5.51M
        unsigned gt2 = !!remAbsLevel;
2594
5.51M
        m_BinEncoder.encodeBin(gt2, cctx.greater2CtxIdAbs(ctxOff));
2595
5.51M
        DTRACE(g_trace_ctx, D_SYNTAX_RESI, "gt2_flag() bin=%d ctx=%d\n", gt2, cctx.greater2CtxIdAbs(ctxOff));
2596
5.51M
        remRegBins--;
2597
5.51M
      }
2598
2599
6.39M
      cctx.absVal1stPass( nextSigPos, std::min<TCoeff>( 4 + ( absLevel & 1 ), absLevel ) );
2600
6.39M
    }
2601
2602
6.93M
    state = ( stateTransTable >> ((state<<2)+((Coeff&1)<<1)) ) & 3;
2603
6.93M
  }
2604
873k
  firstPosMode2 = nextSigPos;
2605
873k
  cctx.remRegBins = remRegBins;
2606
2607
2608
  //===== 2nd PASS: Go-rice codes =====
2609
7.80M
  for( int scanPos = firstSigPos; scanPos > firstPosMode2; scanPos-- )
2610
6.93M
  {
2611
6.93M
    unsigned absLevel = abs( coeff[cctx.blockPos( scanPos )] );
2612
2613
6.93M
    if( absLevel >= 4 )
2614
4.36M
    {
2615
4.36M
      int      sumAll   = cctx.templateAbsSum( scanPos, coeff, 4 );
2616
4.36M
      unsigned ricePar  = g_auiGoRiceParsCoeff[sumAll];
2617
4.36M
      unsigned rem      = ( absLevel - 4 ) >> 1;
2618
4.36M
      m_BinEncoder.encodeRemAbsEP( rem, ricePar, COEF_REMAIN_BIN_REDUCTION, cctx.maxLog2TrDRange() );
2619
4.36M
      DTRACE( g_trace_ctx, D_SYNTAX_RESI, "rem_val() bin=%d ctx=%d\n", rem, ricePar );
2620
4.36M
    }
2621
6.93M
  }
2622
2623
  //===== coeff bypass ====
2624
972k
  for( int scanPos = firstPosMode2; scanPos >= minSubPos; scanPos-- )
2625
99.4k
  {
2626
99.4k
    TCoeff    Coeff     = coeff[ cctx.blockPos( scanPos ) ];
2627
99.4k
    unsigned  absLevel  = abs( Coeff );
2628
99.4k
    int       sumAll    = cctx.templateAbsSum(scanPos, coeff, 0);
2629
99.4k
    int       rice      = g_auiGoRiceParsCoeff[sumAll];
2630
99.4k
    int       pos0      = g_auiGoRicePosCoeff0(state, rice);
2631
99.4k
    unsigned  rem       = ( absLevel == 0 ? pos0 : absLevel <= pos0 ? absLevel-1 : absLevel );
2632
99.4k
    m_BinEncoder.encodeRemAbsEP( rem, rice, COEF_REMAIN_BIN_REDUCTION, cctx.maxLog2TrDRange() );
2633
99.4k
    DTRACE( g_trace_ctx, D_SYNTAX_RESI, "rem_val() bin=%d ctx=%d\n", rem, rice );
2634
99.4k
    state = ( stateTransTable >> ((state<<2)+((absLevel&1)<<1)) ) & 3;
2635
99.4k
    if( absLevel )
2636
99.0k
    {
2637
99.0k
      numNonZero++;
2638
99.0k
      firstNZPos = scanPos;
2639
99.0k
      lastNZPos   = std::max<int>( lastNZPos, scanPos );
2640
99.0k
      signPattern <<= 1;
2641
99.0k
      if( Coeff < 0 ) signPattern++;
2642
99.0k
    }
2643
99.4k
  }
2644
2645
  //===== encode sign's =====
2646
873k
  unsigned numSigns = numNonZero;
2647
873k
  if( cctx.hideSign( firstNZPos, lastNZPos ) )
2648
0
  {
2649
0
    numSigns    --;
2650
0
    signPattern >>= 1;
2651
0
  }
2652
873k
  m_BinEncoder.encodeBinsEP( signPattern, numSigns );
2653
873k
}
2654
2655
2656
void CABACWriter::residual_codingTS( const TransformUnit& tu, ComponentID compID )
2657
64.4k
{
2658
64.4k
  DTRACE( g_trace_ctx, D_SYNTAX, "residual_codingTS() etype=%d pos=(%d,%d) size=%dx%d\n", tu.blocks[compID].compID, tu.blocks[compID].x, tu.blocks[compID].y, tu.blocks[compID].width, tu.blocks[compID].height );
2659
2660
  // init coeff coding context
2661
64.4k
  CoeffCodingContext  cctx    ( tu, compID, false, tu.cu->bdpcmM[toChannelType(compID)] );
2662
64.4k
  const TCoeffSig*    coeff   = tu.getCoeffs( compID ).buf;
2663
64.4k
  int maxCtxBins = (cctx.maxNumCoeff() * 7) >> 2;
2664
64.4k
  cctx.remRegBins = maxCtxBins;
2665
2666
  // determine and set last coeff position and sig group flags
2667
64.4k
  std::bitset<MLS_GRP_NUM> sigGroupFlags;
2668
5.94M
  for( int scanPos = 0; scanPos < cctx.maxNumCoeff(); scanPos++)
2669
5.87M
  {
2670
5.87M
    unsigned blkPos = cctx.blockPos( scanPos );
2671
5.87M
    if( coeff[blkPos] )
2672
633k
    {
2673
633k
      sigGroupFlags.set( scanPos >> cctx.log2CGSize() );
2674
633k
    }
2675
5.87M
  }
2676
2677
  // code subblocks
2678
431k
  for( int subSetId = 0; subSetId <= ( cctx.maxNumCoeff() - 1 ) >> cctx.log2CGSize(); subSetId++ )
2679
367k
  {
2680
367k
    cctx.initSubblock         ( subSetId, sigGroupFlags[subSetId] );
2681
367k
    residual_coding_subblockTS( cctx, coeff );
2682
367k
  }
2683
64.4k
}
2684
2685
2686
void CABACWriter::residual_coding_subblockTS( CoeffCodingContext& cctx, const TCoeffSig* coeff )
2687
367k
{
2688
  //===== init =====
2689
367k
  const int   minSubPos   = cctx.maxSubPos();
2690
367k
  int         firstSigPos = cctx.minSubPos();
2691
367k
  int         nextSigPos  = firstSigPos;
2692
2693
  //===== encode significant_coeffgroup_flag =====
2694
367k
  if( !cctx.isLastSubSet() || !cctx.only1stSigGroup() )
2695
357k
  {
2696
357k
    if( cctx.isSigGroup() )
2697
139k
    {
2698
139k
        m_BinEncoder.encodeBin( 1, cctx.sigGroupCtxId( true ) );
2699
139k
        DTRACE( g_trace_ctx, D_SYNTAX_RESI, "ts_sigGroup() bin=%d ctx=%d\n", 1, cctx.sigGroupCtxId() );
2700
139k
    }
2701
217k
    else
2702
217k
    {
2703
217k
        m_BinEncoder.encodeBin( 0, cctx.sigGroupCtxId( true ) );
2704
217k
        DTRACE( g_trace_ctx, D_SYNTAX_RESI, "ts_sigGroup() bin=%d ctx=%d\n", 0, cctx.sigGroupCtxId() );
2705
217k
      return;
2706
217k
    }
2707
357k
  }
2708
2709
  //===== encode absolute values =====
2710
149k
  const int inferSigPos   = minSubPos;
2711
149k
  int       remAbsLevel   = -1;
2712
149k
  int       numNonZero    =  0;
2713
2714
149k
  int rightPixel, belowPixel, modAbsCoeff;
2715
2716
149k
  int lastScanPosPass1 = -1;
2717
149k
  int lastScanPosPass2 = -1;
2718
2.33M
  for (; nextSigPos <= minSubPos && cctx.remRegBins >= 4; nextSigPos++)
2719
2.18M
  {
2720
2.18M
    TCoeff    Coeff      = coeff[ cctx.blockPos( nextSigPos ) ];
2721
2.18M
    unsigned  sigFlag    = ( Coeff != 0 );
2722
2.18M
    if( numNonZero || nextSigPos != inferSigPos )
2723
2.18M
    {
2724
2.18M
      const unsigned sigCtxId = cctx.sigCtxIdAbsTS( nextSigPos, coeff );
2725
2.18M
      m_BinEncoder.encodeBin( sigFlag, sigCtxId );
2726
2.18M
      DTRACE( g_trace_ctx, D_SYNTAX_RESI, "ts_sig_bin() bin=%d ctx=%d\n", sigFlag, sigCtxId );
2727
2.18M
      cctx.remRegBins--;
2728
2.18M
    }
2729
2730
2.18M
    if( sigFlag )
2731
586k
    {
2732
      //===== encode sign's =====
2733
586k
      int sign = Coeff < 0;
2734
586k
      const unsigned signCtxId = cctx.signCtxIdAbsTS(nextSigPos, coeff, cctx.bdpcm());
2735
586k
      m_BinEncoder.encodeBin(sign, signCtxId);
2736
586k
      cctx.remRegBins--;
2737
586k
      numNonZero++;
2738
586k
      cctx.neighTS(rightPixel, belowPixel, nextSigPos, coeff);
2739
586k
      modAbsCoeff = cctx.deriveModCoeff(rightPixel, belowPixel, abs(Coeff), cctx.bdpcm());
2740
586k
      remAbsLevel = modAbsCoeff - 1;
2741
2742
586k
      unsigned gt1 = !!remAbsLevel;
2743
586k
      const unsigned gt1CtxId = cctx.lrg1CtxIdAbsTS(nextSigPos, coeff, cctx.bdpcm());
2744
586k
      m_BinEncoder.encodeBin(gt1, gt1CtxId);
2745
586k
      DTRACE(g_trace_ctx, D_SYNTAX_RESI, "ts_gt1_flag() bin=%d ctx=%d\n", gt1, gt1CtxId);
2746
586k
      cctx.remRegBins--;
2747
2748
586k
      if( gt1 )
2749
577k
      {
2750
577k
        remAbsLevel  -= 1;
2751
577k
        m_BinEncoder.encodeBin( remAbsLevel&1, cctx.parityCtxIdAbsTS() );
2752
577k
        DTRACE( g_trace_ctx, D_SYNTAX_RESI, "ts_par_flag() bin=%d ctx=%d\n", remAbsLevel&1, cctx.parityCtxIdAbsTS() );
2753
577k
        cctx.remRegBins--;
2754
577k
      }
2755
586k
    }
2756
2.18M
    lastScanPosPass1 = nextSigPos;
2757
2.18M
  }
2758
2759
149k
  int cutoffVal = 2;
2760
149k
  int numGtBins = 4;
2761
2762
2.14M
  for (int scanPos = firstSigPos; scanPos <= minSubPos && cctx.remRegBins >= 4; scanPos++)
2763
1.99M
  {
2764
1.99M
    unsigned absLevel;
2765
1.99M
    cctx.neighTS(rightPixel, belowPixel, scanPos, coeff);
2766
1.99M
    absLevel = cctx.deriveModCoeff(rightPixel, belowPixel, abs(coeff[cctx.blockPos(scanPos)]), cctx.bdpcm());
2767
1.99M
    cutoffVal = 2;
2768
9.97M
    for (int i = 0; i < numGtBins; i++)
2769
7.97M
    {
2770
7.97M
      if (absLevel >= cutoffVal)
2771
1.38M
      {
2772
1.38M
        unsigned gt2 = (absLevel >= (cutoffVal + 2));
2773
1.38M
        m_BinEncoder.encodeBin(gt2, cctx.greaterXCtxIdAbsTS(cutoffVal >> 1));
2774
1.38M
        DTRACE(g_trace_ctx, D_SYNTAX_RESI, "ts_gt%d_flag() bin=%d ctx=%d sp=%d coeff=%d\n", i, gt2, cctx.greaterXCtxIdAbsTS(cutoffVal >> 1), scanPos, std::min<int>(absLevel, cutoffVal + 2));
2775
1.38M
        cctx.remRegBins--;
2776
1.38M
      }
2777
7.97M
      cutoffVal += 2;
2778
7.97M
    }
2779
1.99M
    lastScanPosPass2 = scanPos;
2780
1.99M
  }
2781
2782
  //===== coeff bypass ====
2783
2.54M
  for( int scanPos = firstSigPos; scanPos <= minSubPos; scanPos++ )
2784
2.39M
  {
2785
2.39M
    unsigned absLevel;
2786
2.39M
    cctx.neighTS(rightPixel, belowPixel, scanPos, coeff);
2787
2.39M
    cutoffVal = (scanPos <= lastScanPosPass2 ? 10 : (scanPos <= lastScanPosPass1 ? 2 : 0));
2788
2.39M
    absLevel = cctx.deriveModCoeff(rightPixel, belowPixel, abs(coeff[cctx.blockPos(scanPos)]), cctx.bdpcm()||!cutoffVal);
2789
2.39M
    if( absLevel >= cutoffVal )
2790
503k
    {
2791
      //int       rice = cctx.templateAbsSumTS( scanPos, coeff );
2792
503k
      int       rice = 1;
2793
503k
      unsigned  rem = scanPos <= lastScanPosPass1 ? (absLevel - cutoffVal) >> 1 : absLevel;
2794
503k
      m_BinEncoder.encodeRemAbsEP( rem, rice, COEF_REMAIN_BIN_REDUCTION, cctx.maxLog2TrDRange() );
2795
503k
      DTRACE( g_trace_ctx, D_SYNTAX_RESI, "ts_rem_val() bin=%d ctx=%d sp=%d\n", rem, rice, scanPos );
2796
2797
503k
      if (absLevel && scanPos > lastScanPosPass1)
2798
46.7k
      {
2799
46.7k
        int sign = coeff[cctx.blockPos(scanPos)] < 0;
2800
46.7k
        m_BinEncoder.encodeBinEP(sign);
2801
46.7k
      }
2802
503k
    }
2803
2.39M
  }
2804
149k
}
2805
2806
2807
//================================================================================
2808
//  helper functions
2809
//--------------------------------------------------------------------------------
2810
//    void  unary_max_symbol  ( symbol, ctxId0, ctxIdN, maxSymbol )
2811
//    void  unary_max_eqprob  ( symbol,                 maxSymbol )
2812
//    void  exp_golomb_eqprob ( symbol, count )
2813
//================================================================================
2814
2815
void CABACWriter::unary_max_symbol( unsigned symbol, unsigned ctxId0, unsigned ctxIdN, unsigned maxSymbol )
2816
3.52k
{
2817
3.52k
  CHECK( symbol > maxSymbol, "symbol > maxSymbol" );
2818
3.52k
  const unsigned totalBinsToWrite = std::min( symbol + 1, maxSymbol );
2819
7.04k
  for( unsigned binsWritten = 0; binsWritten < totalBinsToWrite; ++binsWritten )
2820
3.52k
  {
2821
3.52k
    const unsigned nextBin = symbol > binsWritten;
2822
3.52k
    m_BinEncoder.encodeBin( nextBin, binsWritten == 0 ? ctxId0 : ctxIdN );
2823
3.52k
  }
2824
3.52k
}
2825
2826
2827
void CABACWriter::unary_max_eqprob( unsigned symbol, unsigned maxSymbol )
2828
214k
{
2829
214k
  if( maxSymbol == 0 )
2830
0
  {
2831
0
    return;
2832
0
  }
2833
214k
  bool     codeLast = ( maxSymbol > symbol );
2834
214k
  unsigned bins     = 0;
2835
214k
  unsigned numBins  = 0;
2836
215k
  while( symbol-- )
2837
359
  {
2838
359
    bins   <<= 1;
2839
359
    bins   ++;
2840
359
    numBins++;
2841
359
  }
2842
214k
  if( codeLast )
2843
214k
  {
2844
214k
    bins  <<= 1;
2845
214k
    numBins++;
2846
214k
  }
2847
214k
  CHECK(!( numBins <= 32 ), "Unspecified error");
2848
214k
  m_BinEncoder.encodeBinsEP( bins, numBins );
2849
214k
}
2850
2851
2852
void CABACWriter::exp_golomb_eqprob( unsigned symbol, unsigned count )
2853
0
{
2854
0
  unsigned bins    = 0;
2855
0
  unsigned numBins = 0;
2856
0
  while( symbol >= (unsigned)(1<<count) )
2857
0
  {
2858
0
    bins <<= 1;
2859
0
    bins++;
2860
0
    numBins++;
2861
0
    symbol -= 1 << count;
2862
0
    count++;
2863
0
  }
2864
0
  bins <<= 1;
2865
0
  numBins++;
2866
0
  bins = (bins << count) | symbol;
2867
0
  numBins += count;
2868
0
  CHECK(!( numBins <= 32 ), "Unspecified error");
2869
0
  m_BinEncoder.encodeBinsEP( bins, numBins );
2870
0
}
2871
2872
2873
void CABACWriter::codeAlfCtuEnabled( CodingStructure& cs, ChannelType channel, AlfParam* alfParam, const int numCtus )
2874
14.2k
{
2875
14.2k
  if( isLuma( channel ) )
2876
2.33k
  {
2877
2.33k
    if (alfParam->alfEnabled[COMP_Y])
2878
2.33k
      codeAlfCtuEnabled( cs, COMP_Y, alfParam, numCtus );
2879
2.33k
  }
2880
11.9k
  else
2881
11.9k
  {
2882
11.9k
    if (alfParam->alfEnabled[COMP_Cb])
2883
11.9k
      codeAlfCtuEnabled( cs, COMP_Cb, alfParam, numCtus );
2884
11.9k
    if (alfParam->alfEnabled[COMP_Cr])
2885
11.9k
      codeAlfCtuEnabled( cs, COMP_Cr, alfParam, numCtus );
2886
11.9k
  }
2887
14.2k
}
2888
2889
2890
void CABACWriter::codeAlfCtuEnabled( CodingStructure& cs, ComponentID compID, AlfParam* alfParam, const int numCtus )
2891
26.1k
{
2892
126k
  for( int ctuIdx = 0; ctuIdx < numCtus; ctuIdx++ )
2893
100k
  {
2894
100k
    codeAlfCtuEnabledFlag( cs, ctuIdx, compID );
2895
100k
  }
2896
26.1k
}
2897
2898
2899
void CABACWriter::codeAlfCtuEnabledFlag( CodingStructure& cs, uint32_t ctuRsAddr, const int compIdx)
2900
361k
{
2901
361k
  CHECKD( !cs.sps->alfEnabled, "ALF is disabled in SPS" ); 
2902
2903
361k
  const PreCalcValues& pcv = *cs.pcv;
2904
361k
  int                 frame_width_in_ctus = pcv.widthInCtus;
2905
361k
  int                 ry = ctuRsAddr / frame_width_in_ctus;
2906
361k
  int                 rx = ctuRsAddr - ry * frame_width_in_ctus;
2907
361k
  const Position      pos( rx * cs.pcv->maxCUSize, ry * cs.pcv->maxCUSize );
2908
361k
  const uint32_t      curSliceIdx = cs.slice->independentSliceIdx;
2909
361k
  const uint32_t      curTileIdx  = cs.pps->getTileIdx( pos );
2910
361k
  bool                leftAvail   = cs.getCURestricted( pos.offset( -(int)pcv.maxCUSize, 0 ), pos, curSliceIdx, curTileIdx, CH_L, TREE_D ) ? true : false;
2911
361k
  bool                aboveAvail  = cs.getCURestricted( pos.offset( 0, -(int)pcv.maxCUSize ), pos, curSliceIdx, curTileIdx, CH_L, TREE_D ) ? true : false;
2912
2913
361k
  int leftCTUAddr = leftAvail ? ctuRsAddr - 1 : -1;
2914
361k
  int aboveCTUAddr = aboveAvail ? ctuRsAddr - frame_width_in_ctus : -1;
2915
2916
361k
  const uint8_t* ctbAlfFlag = cs.slice->pic->m_alfCtuEnabled[ compIdx ].data();
2917
361k
  int ctx = 0;
2918
361k
  ctx += leftCTUAddr > -1 ? ( ctbAlfFlag[leftCTUAddr] ? 1 : 0 ) : 0;
2919
361k
  ctx += aboveCTUAddr > -1 ? ( ctbAlfFlag[aboveCTUAddr] ? 1 : 0 ) : 0;
2920
361k
  m_BinEncoder.encodeBin( ctbAlfFlag[ctuRsAddr], Ctx::ctbAlfFlag( compIdx * 3 + ctx ) );
2921
361k
}
2922
2923
2924
void CABACWriter::codeCcAlfFilterControlIdc(uint8_t idcVal, CodingStructure &cs, const ComponentID compID,
2925
                                            const int curIdx, const uint8_t *filterControlIdc, Position lumaPos,
2926
                                            const int filterCount)
2927
0
{
2928
0
  CHECK(idcVal > filterCount, "Filter index is too large");
2929
2930
0
  const uint32_t curSliceIdx    = cs.slice->independentSliceIdx;
2931
0
  const uint32_t curTileIdx     = cs.pps->getTileIdx( lumaPos );
2932
0
  Position       leftLumaPos    = lumaPos.offset(-(int)cs.pcv->maxCUSize, 0);
2933
0
  Position       aboveLumaPos   = lumaPos.offset(0, -(int)cs.pcv->maxCUSize);
2934
0
  bool           leftAvail      = cs.getCURestricted( leftLumaPos,  lumaPos, curSliceIdx, curTileIdx, CH_L, TREE_D ) ? true : false;
2935
0
  bool           aboveAvail     = cs.getCURestricted( aboveLumaPos, lumaPos, curSliceIdx, curTileIdx, CH_L, TREE_D ) ? true : false;
2936
0
  int            ctxt           = 0;
2937
2938
0
  if (leftAvail)
2939
0
  {
2940
0
    ctxt += ( filterControlIdc[curIdx - 1]) ? 1 : 0;
2941
0
  }
2942
0
  if (aboveAvail)
2943
0
  {
2944
0
    ctxt += (filterControlIdc[curIdx - cs.pcv->widthInCtus]) ? 1 : 0;
2945
0
  }
2946
0
  ctxt += ( compID == COMP_Cr ) ? 3 : 0;
2947
2948
0
  m_BinEncoder.encodeBin( ( idcVal == 0 ) ? 0 : 1, Ctx::CcAlfFilterControlFlag( ctxt ) ); // ON/OFF flag is context coded
2949
0
  if ( idcVal > 0 )
2950
0
  {
2951
0
    int val = (idcVal - 1);
2952
0
    while ( val )
2953
0
    {
2954
0
      m_BinEncoder.encodeBinEP( 1 );
2955
0
      val--;
2956
0
    }
2957
0
    if ( idcVal < filterCount )
2958
0
    {
2959
0
      m_BinEncoder.encodeBinEP( 0 );
2960
0
    }
2961
0
  }
2962
0
  DTRACE( g_trace_ctx, D_SYNTAX, "ccAlfFilterControlIdc() compID=%d pos=(%d,%d) ctxt=%d, filterCount=%d, idcVal=%d\n", compID, lumaPos.x, lumaPos.y, ctxt, filterCount, idcVal );
2963
0
}
2964
2965
2966
void CABACWriter::mip_flag( const CodingUnit& cu )
2967
1.13M
{
2968
1.13M
  if( !cu.Y().valid() )
2969
0
  {
2970
0
    return;
2971
0
  }
2972
1.13M
  if( !cu.cs->sps->MIP )
2973
0
  {
2974
0
    return;
2975
0
  }
2976
2977
1.13M
  unsigned ctxId = DeriveCtx::CtxMipFlag( cu );
2978
1.13M
  m_BinEncoder.encodeBin( cu.mipFlag, Ctx::MipFlag( ctxId ) );
2979
1.13M
  DTRACE( g_trace_ctx, D_SYNTAX, "mip_flag() pos=(%d,%d) mode=%d\n", cu.lumaPos().x, cu.lumaPos().y, cu.mipFlag ? 1 : 0 );
2980
1.13M
}
2981
2982
2983
void CABACWriter::mip_pred_modes( const CodingUnit& cu )
2984
1.56k
{
2985
1.56k
  if( !cu.Y().valid() )
2986
0
  {
2987
0
    return;
2988
0
  }
2989
2990
1.56k
  mip_pred_mode( cu );
2991
1.56k
}
2992
2993
2994
void CABACWriter::mip_pred_mode( const CodingUnit& cu )
2995
267k
{
2996
267k
  m_BinEncoder.encodeBinEP( (cu.mipTransposedFlag ? 1 : 0) );
2997
2998
267k
  const int numModes = getNumModesMip( cu.Y() );
2999
267k
  CHECKD( cu.intraDir[CH_L] < 0 || cu.intraDir[CH_L] >= numModes, "Invalid MIP mode" );
3000
267k
  xWriteTruncBinCode( cu.intraDir[CH_L], numModes );
3001
3002
267k
  DTRACE( g_trace_ctx, D_SYNTAX, "mip_pred_mode() pos=(%d,%d) mode=%d transposed=%d\n", cu.lumaPos().x, cu.lumaPos().y, cu.intraDir[CH_L], cu.mipTransposedFlag ? 1 : 0 );
3003
267k
}
3004
3005
3006
void CABACWriter::codeAlfCtuFilterIndex(CodingStructure& cs, uint32_t ctuRsAddr)
3007
71.5k
{
3008
71.5k
  const uint8_t* ctbAlfFlag = cs.slice->pic->m_alfCtuEnabled[ COMP_Y ].data();
3009
71.5k
  if (!ctbAlfFlag[ctuRsAddr])
3010
0
  {
3011
0
    return;
3012
0
  }
3013
3014
71.5k
  const short* alfCtbFilterIndex = cs.slice->pic->m_alfCtbFilterIndex.data();
3015
71.5k
  const unsigned filterSetIdx = alfCtbFilterIndex[ctuRsAddr];
3016
71.5k
  unsigned numAps = cs.slice->numAps;
3017
71.5k
  unsigned numAvailableFiltSets = numAps + NUM_FIXED_FILTER_SETS;
3018
71.5k
  if (numAvailableFiltSets > NUM_FIXED_FILTER_SETS)
3019
14.3k
  {
3020
14.3k
    int useTemporalFilt = (filterSetIdx >= NUM_FIXED_FILTER_SETS) ? 1 : 0;
3021
14.3k
    m_BinEncoder.encodeBin(useTemporalFilt, Ctx::AlfUseTemporalFilt());
3022
14.3k
    if (useTemporalFilt)
3023
14.3k
    {
3024
14.3k
      CHECK((filterSetIdx - NUM_FIXED_FILTER_SETS) >= (numAvailableFiltSets - NUM_FIXED_FILTER_SETS), "temporal non-latest set");
3025
14.3k
      if (numAps > 1)
3026
0
      {
3027
0
        xWriteTruncBinCode(filterSetIdx - NUM_FIXED_FILTER_SETS, numAvailableFiltSets - NUM_FIXED_FILTER_SETS);
3028
0
      }
3029
14.3k
    }
3030
0
    else
3031
0
    {
3032
0
      CHECK(filterSetIdx >= NUM_FIXED_FILTER_SETS, "fixed set larger than temporal");
3033
0
      xWriteTruncBinCode(filterSetIdx, NUM_FIXED_FILTER_SETS);
3034
0
    }
3035
14.3k
  }
3036
57.2k
  else
3037
57.2k
  {
3038
57.2k
    CHECK(filterSetIdx >= NUM_FIXED_FILTER_SETS, "fixed set numavail < num_fixed");
3039
57.2k
    xWriteTruncBinCode(filterSetIdx, NUM_FIXED_FILTER_SETS);
3040
57.2k
  }
3041
71.5k
}
3042
3043
3044
void CABACWriter::codeAlfCtuAlternatives( CodingStructure& cs, ChannelType channel, AlfParam* alfParam, const int numCtus )
3045
14.2k
{
3046
14.2k
  if( isChroma( channel ) )
3047
11.9k
  {
3048
11.9k
    if (alfParam->alfEnabled[COMP_Cb])
3049
11.9k
      codeAlfCtuAlternatives( cs, COMP_Cb, alfParam, numCtus );
3050
11.9k
    if (alfParam->alfEnabled[COMP_Cr])
3051
11.9k
      codeAlfCtuAlternatives( cs, COMP_Cr, alfParam, numCtus );
3052
11.9k
  }
3053
14.2k
}
3054
3055
3056
void CABACWriter::codeAlfCtuAlternatives( CodingStructure& cs, ComponentID compID, AlfParam* alfParam, const int numCtus)
3057
23.8k
{
3058
23.8k
  if( compID == COMP_Y )
3059
0
    return;
3060
23.8k
  const uint8_t* ctbAlfFlag = cs.slice->pic->m_alfCtuEnabled[ compID ].data();
3061
3062
116k
  for( int ctuIdx = 0; ctuIdx < numCtus; ctuIdx++ )
3063
92.9k
  {
3064
92.9k
    if( ctbAlfFlag[ctuIdx] )
3065
92.9k
    {
3066
92.9k
      codeAlfCtuAlternative( cs, ctuIdx, compID, alfParam );
3067
92.9k
    }
3068
92.9k
  }
3069
23.8k
}
3070
3071
3072
void CABACWriter::codeAlfCtuAlternative( CodingStructure& cs, uint32_t ctuRsAddr, const int compIdx, const AlfParam* alfParam)
3073
472k
{
3074
472k
  if( compIdx == COMP_Y )
3075
0
    return;
3076
3077
472k
  {
3078
472k
    const uint8_t* ctbAlfFlag = cs.slice->pic->m_alfCtuEnabled[ compIdx ].data();
3079
3080
472k
    if( ctbAlfFlag[ctuRsAddr] )
3081
472k
    {
3082
472k
      const int numAlts = alfParam->numAlternativesChroma;
3083
472k
      const uint8_t* ctbAlfAlternative = cs.slice->pic->m_alfCtuAlternative[compIdx].data();
3084
472k
      unsigned numOnes = ctbAlfAlternative[ctuRsAddr];
3085
472k
      assert( ctbAlfAlternative[ctuRsAddr] < numAlts );
3086
1.34M
      for( int i = 0; i < numOnes; ++i )
3087
873k
        m_BinEncoder.encodeBin( 1, Ctx::ctbAlfAlternative( compIdx-1 ) );
3088
472k
      if( numOnes < numAlts-1 )
3089
356k
        m_BinEncoder.encodeBin( 0, Ctx::ctbAlfAlternative( compIdx-1 ) );
3090
472k
    }
3091
472k
  }
3092
472k
}
3093
3094
} // namespace vvenc
3095
3096
//! \}
3097