Coverage Report

Created: 2026-08-31 06:22

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/work/vvenc/source/Lib/CommonLib/Unit.cpp
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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.
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------------------------------------------------------------------------------------------- */
42
43
44
/** \file     Unit.cpp
45
 *  \brief    defines unit as a set of blocks and basic unit types (coding, prediction, transform)
46
 */
47
48
#include "Unit.h"
49
#include "Picture.h"
50
#include "UnitTools.h"
51
#include "UnitPartitioner.h"
52
53
//! \ingroup CommonLib
54
//! \{
55
56
namespace vvenc {
57
58
 // ---------------------------------------------------------------------------
59
 // block method definitions
60
 // ---------------------------------------------------------------------------
61
62
void CompArea::xRecalcLumaToChroma()
63
12.5M
{
64
12.5M
  const uint32_t csx = getComponentScaleX(compID, chromaFormat);
65
12.5M
  const uint32_t csy = getComponentScaleY(compID, chromaFormat);
66
67
12.5M
  x      >>= csx;
68
12.5M
  y      >>= csy;
69
12.5M
  width  >>= csx;
70
12.5M
  height >>= csy;
71
12.5M
}
72
73
Position CompArea::chromaPos() const
74
57.2k
{
75
57.2k
  if (isLuma(compID))
76
0
  {
77
0
    uint32_t scaleX = getComponentScaleX(compID, chromaFormat);
78
0
    uint32_t scaleY = getComponentScaleY(compID, chromaFormat);
79
80
0
    return Position(x >> scaleX, y >> scaleY);
81
0
  }
82
57.2k
  else
83
57.2k
  {
84
57.2k
    return *this;
85
57.2k
  }
86
57.2k
}
87
88
Size CompArea::lumaSize() const
89
2.91M
{
90
2.91M
  if( isChroma( compID ) )
91
2.32M
  {
92
2.32M
    uint32_t scaleX = getComponentScaleX( compID, chromaFormat );
93
2.32M
    uint32_t scaleY = getComponentScaleY( compID, chromaFormat );
94
95
2.32M
    return Size( width << scaleX, height << scaleY );
96
2.32M
  }
97
587k
  else
98
587k
  {
99
587k
    return *this;
100
587k
  }
101
2.91M
}
102
103
Size CompArea::chromaSize() const
104
114k
{
105
114k
  if( isLuma( compID ) )
106
0
  {
107
0
    uint32_t scaleX = getComponentScaleX( compID, chromaFormat );
108
0
    uint32_t scaleY = getComponentScaleY( compID, chromaFormat );
109
110
0
    return Size( width >> scaleX, height >> scaleY );
111
0
  }
112
114k
  else
113
114k
  {
114
114k
    return *this;
115
114k
  }
116
114k
}
117
118
Position CompArea::lumaPos() const
119
1.35M
{
120
1.35M
  if( isChroma( compID ) )
121
1.07M
  {
122
1.07M
    uint32_t scaleX = getComponentScaleX( compID, chromaFormat );
123
1.07M
    uint32_t scaleY = getComponentScaleY( compID, chromaFormat );
124
125
1.07M
    return Position( x << scaleX, y << scaleY );
126
1.07M
  }
127
279k
  else
128
279k
  {
129
279k
    return *this;
130
279k
  }
131
1.35M
}
132
133
Position CompArea::compPos( const ComponentID compID ) const
134
0
{
135
0
  return isLuma( compID ) ? lumaPos() : chromaPos();
136
0
}
137
138
Position CompArea::chanPos( const ChannelType chType ) const
139
0
{
140
0
  return isLuma( chType ) ? lumaPos() : chromaPos();
141
0
}
142
143
// ---------------------------------------------------------------------------
144
// unit method definitions
145
// ---------------------------------------------------------------------------
146
147
863k
UnitArea::UnitArea(const ChromaFormat _chromaFormat) : chromaFormat(_chromaFormat) { }
148
149
4.72M
UnitArea::UnitArea(const ChromaFormat _chromaFormat, const Area& _area) : chromaFormat(_chromaFormat), blocks(getNumberValidComponents(_chromaFormat))
150
4.72M
{
151
4.72M
  const uint32_t numCh = getNumberValidComponents(chromaFormat);
152
153
17.2M
  for (uint32_t i = 0; i < numCh; i++)
154
12.5M
  {
155
12.5M
    new (&blocks[i]) CompArea(ComponentID(i), chromaFormat, _area, true);
156
12.5M
  }
157
4.72M
}
158
159
0
UnitArea::UnitArea(const ChromaFormat _chromaFormat, const CompArea&  blkY) : chromaFormat(_chromaFormat), blocks { blkY } {}
160
161
0
UnitArea::UnitArea(const ChromaFormat _chromaFormat,       CompArea&& blkY) : chromaFormat(_chromaFormat), blocks { std::forward<CompArea>(blkY) } {}
162
163
0
UnitArea::UnitArea(const ChromaFormat _chromaFormat, const CompArea&  blkY, const CompArea& blkCb, const CompArea& blkCr)  : chromaFormat(_chromaFormat), blocks { blkY, blkCb, blkCr } {}
164
165
0
UnitArea::UnitArea(const ChromaFormat _chromaFormat,       CompArea&& blkY,      CompArea&& blkCb,      CompArea&& blkCr) : chromaFormat(_chromaFormat), blocks { std::forward<CompArea>(blkY), std::forward<CompArea>(blkCb), std::forward<CompArea>(blkCr) } {}
166
167
bool UnitArea::contains(const UnitArea& other) const
168
545k
{
169
545k
  bool ret = true;
170
545k
  bool any = false;
171
172
545k
  for( const auto &blk : other.blocks )
173
1.63M
  {
174
1.63M
    if( blk.valid() && blocks[blk.compID].valid() )
175
1.35M
    {
176
1.35M
      ret &= blocks[blk.compID].contains( blk );
177
1.35M
      any = true;
178
1.35M
    }
179
1.63M
  }
180
181
545k
  return any && ret;
182
545k
}
183
184
bool UnitArea::contains( const UnitArea& other, const ChannelType chType ) const
185
57.2k
{
186
57.2k
  bool ret = true;
187
57.2k
  bool any = false;
188
189
57.2k
  for( const auto &blk : other.blocks )
190
171k
  {
191
171k
    if( toChannelType( blk.compID ) == chType && blk.valid() && blocks[blk.compID].valid() )
192
114k
    {
193
114k
      ret &= blocks[blk.compID].contains( blk );
194
114k
      any = true;
195
114k
    }
196
171k
  }
197
198
57.2k
  return any && ret;
199
57.2k
}
200
201
void UnitArea::repositionTo(const UnitArea& unitArea)
202
695k
{
203
2.78M
  for(uint32_t i = 0; i < blocks.size(); i++)
204
2.08M
  {
205
2.08M
    blocks[i].repositionTo(unitArea.blocks[i]);
206
2.08M
  }
207
695k
}
208
209
const UnitArea UnitArea::singleComp(const ComponentID compID) const
210
0
{
211
0
  UnitArea ret(chromaFormat);
212
213
0
  for (const auto &blk : blocks)
214
0
  {
215
0
    if (blk.compID == compID)
216
0
    {
217
0
      ret.blocks.push_back(blk);
218
0
    }
219
0
    else
220
0
    {
221
0
      ret.blocks.push_back(CompArea());
222
0
    }
223
0
  }
224
225
0
  return ret;
226
0
}
227
228
const UnitArea UnitArea::singleChan(const ChannelType chType) const
229
621k
{
230
621k
  UnitArea ret(chromaFormat);
231
232
621k
  for (const auto &blk : blocks)
233
1.86M
  {
234
1.86M
    if (toChannelType(blk.compID) == chType)
235
855k
    {
236
855k
      ret.blocks.push_back(blk);
237
855k
    }
238
1.00M
    else
239
1.00M
    {
240
1.00M
      ret.blocks.push_back(CompArea());
241
1.00M
    }
242
1.86M
  }
243
244
621k
  return ret;
245
621k
}
246
247
// ---------------------------------------------------------------------------
248
// coding unit method definitions
249
// ---------------------------------------------------------------------------
250
251
25.2k
CodingUnit::CodingUnit(const UnitArea& unit)                                : UnitArea(unit),                 cs(nullptr), slice(nullptr), chType( CH_L ), next(nullptr), firstTU(nullptr), lastTU(nullptr) { initData(); initPuData(); }
252
0
CodingUnit::CodingUnit(const ChromaFormat _chromaFormat, const Area& _area) : UnitArea(_chromaFormat, _area), cs(nullptr), slice(nullptr), chType( CH_L ), next(nullptr), firstTU(nullptr), lastTU(nullptr) { initData(); initPuData(); }
253
254
CodingUnit& CodingUnit::operator=( const CodingUnit& other )
255
155k
{
256
155k
  slice             = other.slice;
257
155k
  predMode          = other.predMode;
258
155k
  qtDepth           = other.qtDepth;
259
155k
  depth             = other.depth;
260
155k
  btDepth           = other.btDepth;
261
155k
  mtDepth           = other.mtDepth;
262
155k
  splitSeries       = other.splitSeries;
263
155k
  skip              = other.skip;
264
155k
  mmvdSkip          = other.mmvdSkip;
265
155k
  affine            = other.affine;
266
155k
  affineType        = other.affineType;
267
155k
  colorTransform    = other.colorTransform;
268
155k
  geo               = other.geo;
269
155k
  geo               = other.geo;
270
155k
  bdpcmM[CH_L]      = other.bdpcmM[CH_L];
271
155k
  bdpcmM[CH_C]      = other.bdpcmM[CH_C];
272
155k
  qp                = other.qp;
273
155k
  chromaQpAdj       = other.chromaQpAdj;
274
155k
  rootCbf           = other.rootCbf;
275
155k
  sbtInfo           = other.sbtInfo;
276
155k
  mtsFlag           = other.mtsFlag;
277
155k
  lfnstIdx          = other.lfnstIdx;
278
155k
  tileIdx           = other.tileIdx;
279
155k
  imv               = other.imv;
280
155k
  imvNumCand        = other.imvNumCand;
281
155k
  BcwIdx            = other.BcwIdx;
282
283
155k
  smvdMode          = other.smvdMode;
284
155k
  ispMode           = other.ispMode;
285
155k
  mipFlag           = other.mipFlag;
286
287
155k
  treeType          = other.treeType;
288
155k
  modeType          = other.modeType;
289
155k
  modeTypeSeries    = other.modeTypeSeries;
290
291
155k
  const IntraPredictionData& ipd = other;
292
155k
  *this = ipd;
293
294
155k
  const InterPredictionData& tpd = other;
295
155k
  *this = tpd;
296
155k
  return *this;
297
155k
}
298
299
void CodingUnit::initData()
300
313k
{
301
313k
  predMode          = NUMBER_OF_PREDICTION_MODES;
302
313k
  qtDepth           = 0;
303
313k
  depth             = 0;
304
313k
  btDepth           = 0;
305
313k
  mtDepth           = 0;
306
313k
  splitSeries       = 0;
307
313k
  skip              = false;
308
313k
  mmvdSkip          = false;
309
313k
  affine            = false;
310
313k
  affineType        = 0;
311
313k
  colorTransform    = false;
312
313k
  geo               = false;
313
313k
  bdpcmM[CH_L]      = 0;
314
313k
  bdpcmM[CH_C]      = 0;
315
313k
  qp                = 0;
316
313k
  chromaQpAdj       = 0;
317
313k
  rootCbf           = true;
318
313k
  sbtInfo           = 0;
319
313k
  mtsFlag           = 0;
320
313k
  lfnstIdx          = 0;
321
313k
  tileIdx           = 0;
322
313k
  imv               = IMV_OFF;
323
313k
  imvNumCand        = 0;
324
313k
  BcwIdx            = BCW_DEFAULT;
325
313k
  smvdMode          = 0;
326
313k
  ispMode           = 0;
327
313k
  mipFlag           = false;
328
329
313k
  treeType          = TREE_D;
330
313k
  modeType          = MODE_TYPE_ALL;
331
313k
  modeTypeSeries    = 0;
332
313k
  mcControl         = 0;
333
313k
}
334
335
336
337
338
// ---------------------------------------------------------------------------
339
// prediction unit method definitions
340
// ---------------------------------------------------------------------------
341
342
void CodingUnit::initPuData()
343
183k
{
344
  // intra data - need this default initialization for PCM
345
183k
  intraDir[0]       = DC_IDX;
346
183k
  intraDir[1]       = PLANAR_IDX;
347
183k
  multiRefIdx       = 0;
348
183k
  mipTransposedFlag = false;
349
350
  // inter data
351
183k
  mergeFlag         = false;
352
183k
  ciip              = false;
353
183k
  mvRefine          = false;
354
183k
  mmvdMergeFlag     = false;
355
183k
  mergeIdx          = MAX_UCHAR;
356
183k
  geoSplitDir       = MAX_UCHAR;
357
183k
  geoMergeIdx       = { MAX_SCHAR, MAX_SCHAR };
358
359
183k
  mcControl         = 0;
360
361
183k
  interDir          = MAX_UCHAR;
362
183k
  mmvdMergeIdx.val  = MmvdIdx::INVALID;
363
183k
  mergeType         = MRG_TYPE_DEFAULT_N;
364
365
183k
  if( mvdL0SubPu )
366
73.9k
  {
367
73.9k
    int maxDmvrMvds = std::max<int>( 1, lwidth() >> DMVR_SUBCU_SIZE_LOG2 ) * std::max<int>( 1, lheight() >> DMVR_SUBCU_SIZE_LOG2 );
368
436k
    for (uint32_t i = 0; i < maxDmvrMvds; i++)
369
362k
    {
370
362k
      mvdL0SubPu[i].setZero();
371
362k
    }
372
73.9k
  }
373
374
550k
  for (uint32_t i = 0; i < NUM_REF_PIC_LIST_01; i++)
375
366k
  {
376
366k
    mvpIdx[i] = MAX_UCHAR;
377
366k
    mvpNum[i] = MAX_UCHAR;
378
366k
    refIdx[i] = -1;
379
1.46M
    for( uint32_t j = 0; j < 3; j++ )
380
1.10M
    {
381
1.10M
      mvd[i][j].setZero();
382
1.10M
      mv [i][j].setZero();
383
1.10M
    }
384
366k
  }
385
183k
}
386
387
CodingUnit& CodingUnit::operator=( const IntraPredictionData& other )
388
155k
{
389
466k
  for( uint32_t i = 0; i < MAX_NUM_CH; i++ )
390
310k
  {
391
310k
    intraDir[ i ] = other.intraDir[ i ];
392
310k
  }
393
155k
  mipTransposedFlag = other.mipTransposedFlag;
394
155k
  multiRefIdx       = other.multiRefIdx;
395
155k
  return *this;
396
155k
}
397
398
CodingUnit& CodingUnit::operator=( const InterPredictionData& other )
399
155k
{
400
155k
  mergeFlag         = other.mergeFlag;
401
155k
  mergeIdx          = other.mergeIdx;
402
155k
  geoSplitDir       = other.geoSplitDir;
403
155k
  geoMergeIdx       = other.geoMergeIdx;
404
155k
  mmvdMergeFlag     = other.mmvdMergeFlag;
405
155k
  mmvdMergeIdx      = other.mmvdMergeIdx;
406
155k
  interDir          = other.interDir;
407
155k
  mergeType         = other.mergeType;
408
155k
  mvRefine          = other.mvRefine;
409
410
155k
  if( other.mergeFlag && mvdL0SubPu )
411
0
  {
412
0
    const int maxDmvrMvds = std::max<int>( 1, lwidth() >> DMVR_SUBCU_SIZE_LOG2 ) * std::max<int>( 1, lheight() >> DMVR_SUBCU_SIZE_LOG2 );
413
414
0
    memcpy( mvdL0SubPu, other.mvdL0SubPu, sizeof( Mv ) * maxDmvrMvds );
415
0
  }
416
417
466k
  for (uint32_t i = 0; i < NUM_REF_PIC_LIST_01; i++)
418
310k
  {
419
310k
    mvpIdx[i]   = other.mvpIdx[i];
420
310k
    mvpNum[i]   = other.mvpNum[i];
421
310k
    refIdx[i]   = other.refIdx[i];
422
1.24M
    for( uint32_t j = 0; j < 3; j++ )
423
932k
    {
424
932k
      mvd[i][j] = other.mvd[i][j];
425
932k
      mv [i][j] = other.mv [i][j];
426
932k
    }
427
310k
  }
428
155k
  ciip = other.ciip;
429
155k
  return *this;
430
155k
}
431
432
CodingUnit& CodingUnit::operator=( const MotionInfo& mi )
433
0
{
434
0
  interDir = mi.interDir();
435
436
0
  for( uint32_t i = 0; i < NUM_REF_PIC_LIST_01; i++ )
437
0
  {
438
0
    refIdx[i] = mi.miRefIdx[i];
439
0
    mv [i][0] = mi.mv[i];
440
0
  }
441
442
0
  return *this;
443
0
}
444
445
const MotionInfo& CodingUnit::getMotionInfo() const
446
0
{
447
0
  return cs->getMotionInfo( lumaPos() );
448
0
}
449
450
const MotionInfo& CodingUnit::getMotionInfo( const Position& pos ) const
451
0
{
452
0
  CHECKD( !Y().contains( pos ), "Trying to access motion info outsied of PU" );
453
0
  return cs->getMotionInfo( pos );
454
0
}
455
456
MotionBuf CodingUnit::getMotionBuf()
457
22.5k
{
458
22.5k
  return cs->getMotionBuf( *this );
459
22.5k
}
460
461
CMotionBuf CodingUnit::getMotionBuf() const
462
0
{
463
0
  return cs->getMotionBuf( *this );
464
0
}
465
466
467
// ---------------------------------------------------------------------------
468
// transform unit method definitions
469
// ---------------------------------------------------------------------------
470
471
0
TransformUnit::TransformUnit(const UnitArea& unit) : UnitArea(unit), cu(nullptr), cs(nullptr), chType( CH_L ), next( nullptr )
472
0
{
473
0
  for( unsigned i = 0; i < MAX_NUM_TBLOCKS; i++ )
474
0
  {
475
0
    m_coeffs[i] = nullptr;
476
0
  }
477
478
0
  initData();
479
0
}
480
481
0
TransformUnit::TransformUnit(const ChromaFormat _chromaFormat, const Area& _area) : UnitArea(_chromaFormat, _area), cu(nullptr), cs(nullptr), chType( CH_L ), next( nullptr )
482
0
{
483
0
  for( unsigned i = 0; i < MAX_NUM_TBLOCKS; i++ )
484
0
  {
485
0
    m_coeffs[i] = nullptr;
486
0
  }
487
488
0
  initData();
489
0
}
490
491
void TransformUnit::initData()
492
974k
{
493
3.89M
  for( unsigned i = 0; i < MAX_NUM_TBLOCKS; i++ )
494
2.92M
  {
495
2.92M
    cbf[i]      = 0;
496
2.92M
    mtsIdx[i]   = MTS_DCT2_DCT2;
497
2.92M
    lastPos[i]  = 0;
498
2.92M
  }
499
974k
  depth       = 0;
500
974k
  noResidual  = false;
501
974k
  jointCbCr   = 0;
502
974k
  chromaAdj   = 0;
503
974k
}
504
505
void TransformUnit::init(TCoeffSig** coeffs)
506
519k
{
507
519k
  uint32_t numBlocks = getNumberValidComponents( chromaFormat );
508
509
2.07M
  for (uint32_t i = 0; i < numBlocks; i++)
510
1.55M
  {
511
1.55M
    m_coeffs[i] = coeffs[i];
512
1.55M
  }
513
519k
}
514
515
TransformUnit& TransformUnit::operator=( const TransformUnit& other )
516
39.5k
{
517
39.5k
  CHECK( chromaFormat != other.chromaFormat, "Incompatible formats" );
518
519
39.5k
  unsigned numBlocks = getNumberValidTBlocks(*cs->pcv);
520
158k
  for( unsigned i = 0; i < numBlocks; i++ )
521
118k
  {
522
118k
    CHECKD( blocks[i].area() != other.blocks[i].area(), "Transformation units cover different areas" );
523
524
118k
    cbf[i]      = other.cbf[i];
525
118k
    bool cpyRsi = other.cbf[i] || ( i && other.jointCbCr && numBlocks > 1 && ( TU::getCbf( other, COMP_Cb ) || TU::getCbf( other, COMP_Cr ) ) );
526
118k
    if( m_coeffs[i] && other.m_coeffs[i] && m_coeffs[i] != other.m_coeffs[i] && cpyRsi )
527
3.82k
    {
528
3.82k
      uint32_t area = blocks[i].area();
529
3.82k
      memcpy( m_coeffs[i], other.m_coeffs[i], sizeof( TCoeffSig ) * area );
530
3.82k
    }
531
118k
    mtsIdx[i]   = other.mtsIdx[i];
532
118k
    lastPos[i]  = other.lastPos[i];
533
118k
  }
534
39.5k
  depth         = other.depth;
535
39.5k
  noResidual    = other.noResidual;
536
39.5k
  jointCbCr     = other.jointCbCr;
537
39.5k
  return *this;
538
39.5k
}
539
540
void TransformUnit::copyComponentFrom( const TransformUnit& other, const ComponentID i )
541
3.54M
{
542
3.54M
  CHECK( chromaFormat != other.chromaFormat, "Incompatible formats" );
543
3.54M
  CHECKD( blocks[i].area() != other.blocks[i].area(), "Transformation units cover different areas" );
544
545
3.54M
  bool cpyRsi = other.cbf[i] || ( i && other.jointCbCr && blocks.size() > 1 && ( TU::getCbf( other, COMP_Cb ) || TU::getCbf( other, COMP_Cr ) ) );
546
3.54M
  if( m_coeffs[i] && other.m_coeffs[i] && m_coeffs[i] != other.m_coeffs[i] && cpyRsi )
547
1.34M
  {
548
1.34M
    uint32_t area = blocks[i].area();
549
1.34M
    memcpy( m_coeffs[i], other.m_coeffs[i], sizeof( TCoeffSig ) * area );
550
1.34M
  }
551
552
3.54M
  cbf[i]      = other.cbf[i];
553
554
3.54M
  depth       = other.depth;
555
3.54M
  mtsIdx[i]   = other.mtsIdx[i];
556
3.54M
  noResidual  = other.noResidual;
557
3.54M
  jointCbCr   = isChroma( i ) ? other.jointCbCr : jointCbCr;
558
3.54M
  lastPos[i]  = other.lastPos[i];
559
3.54M
}
560
561
void TransformUnit::checkTuNoResidual( unsigned idx )
562
22.5k
{
563
22.5k
  if( CU::getSbtIdx( cu->sbtInfo ) == SBT_OFF_DCT )
564
22.5k
  {
565
22.5k
    return;
566
22.5k
  }
567
568
0
  if( ( CU::getSbtPos( cu->sbtInfo ) == SBT_POS0 && idx == 1 ) || ( CU::getSbtPos( cu->sbtInfo ) == SBT_POS1 && idx == 0 ) )
569
0
  {
570
0
    noResidual = true;
571
0
  }
572
0
}
573
574
int TransformUnit::getTbAreaAfterCoefZeroOut(ComponentID compID) const
575
890k
{
576
890k
  int tbArea = blocks[compID].width * blocks[compID].height;
577
890k
  int tbZeroOutWidth = blocks[compID].width;
578
890k
  int tbZeroOutHeight = blocks[compID].height;
579
580
890k
  if (cs->sps->MTS && cu->sbtInfo != 0 && blocks[compID].width <= 32 && blocks[compID].height <= 32 && compID == COMP_Y)
581
0
  {
582
0
    tbZeroOutWidth = (blocks[compID].width == 32) ? 16 : tbZeroOutWidth;
583
0
    tbZeroOutHeight = (blocks[compID].height == 32) ? 16 : tbZeroOutHeight;
584
0
  }
585
890k
  tbZeroOutWidth = std::min<int>(JVET_C0024_ZERO_OUT_TH, tbZeroOutWidth);
586
890k
  tbZeroOutHeight = std::min<int>(JVET_C0024_ZERO_OUT_TH, tbZeroOutHeight);
587
890k
  tbArea = tbZeroOutWidth * tbZeroOutHeight;
588
890k
  return tbArea;
589
890k
}
590
591
} // namespace vvenc
592
593
//! \}
594