Newer
Older

Karsten Suehring
committed
/* The copyright in this software is being made available under the BSD
* License, included below. This software may be subject to other third party
* and contributor rights, including patent rights, and no such rights are
* granted under this license.
*
* Copyright (c) 2010-2019, ITU/ISO/IEC

Karsten Suehring
committed
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
36
37
38
39
40
41
42
43
44
45
46
47
48
49
50
51
52
53
54
55
56
57
58
59
60
61
62
63
64
65
66
67
68
69
70
71
72
73
74
75
76
77
78
79
80
81
82
83
* All rights reserved.
*
* Redistribution and use in source and binary forms, with or without
* modification, are permitted provided that the following conditions are met:
*
* * Redistributions of source code must retain the above copyright notice,
* this list of conditions and the following disclaimer.
* * Redistributions in binary form must reproduce the above copyright notice,
* this list of conditions and the following disclaimer in the documentation
* and/or other materials provided with the distribution.
* * Neither the name of the ITU/ISO/IEC nor the names of its contributors may
* be used to endorse or promote products derived from this software without
* specific prior written permission.
*
* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
* AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
* IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
* ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS
* BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
* CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
* SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
* INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
* CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
* ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
* THE POSSIBILITY OF SUCH DAMAGE.
*/
/** \file ContextModelling.cpp
\brief Classes providing probability descriptions and contexts
*/
#include "ContextModelling.h"
#include "UnitTools.h"
#include "CodingStructure.h"
#include "Picture.h"
#if HEVC_USE_SIGN_HIDING
CoeffCodingContext::CoeffCodingContext(const TransformUnit& tu, ComponentID component, bool signHide)
#else
CoeffCodingContext::CoeffCodingContext(const TransformUnit& tu, ComponentID component )
#endif
: m_compID (component)
, m_chType (toChannelType(m_compID))
, m_width (tu.block(m_compID).width)
, m_height (tu.block(m_compID).height)
, m_log2CGWidth ((m_width & 3) || (m_height & 3) ? 1 : 2)
, m_log2CGHeight ((m_width & 3) || (m_height & 3) ? 1 : 2)
, m_log2CGSize (m_log2CGWidth + m_log2CGHeight)
, m_widthInGroups (m_width >> m_log2CGWidth)
, m_heightInGroups (m_height >> m_log2CGHeight)
, m_log2BlockWidth (g_aucLog2[m_width])
, m_log2BlockHeight (g_aucLog2[m_height])
, m_log2BlockSize ((m_log2BlockWidth + m_log2BlockHeight)>>1)
, m_maxNumCoeff (m_width * m_height)
#if HEVC_USE_SIGN_HIDING
, m_signHiding (signHide)
#endif
, m_extendedPrecision (tu.cs->sps->getSpsRangeExtension().getExtendedPrecisionProcessingFlag())
, m_maxLog2TrDynamicRange (tu.cs->sps->getMaxLog2TrDynamicRange(m_chType))
#if HEVC_USE_MDCS
, m_scanType (CoeffScanType(TU::getCoefScanIdx( tu, m_compID)))
#else
, m_scanType (SCAN_DIAG)
#endif
, m_scan (g_scanOrder [SCAN_GROUPED_4x4][m_scanType][gp_sizeIdxInfo->idxFrom(m_width )][gp_sizeIdxInfo->idxFrom(m_height )])
, m_scanPosX (g_scanOrderPosXY[SCAN_GROUPED_4x4][m_scanType][gp_sizeIdxInfo->idxFrom(m_width )][gp_sizeIdxInfo->idxFrom(m_height )][0])
, m_scanPosY (g_scanOrderPosXY[SCAN_GROUPED_4x4][m_scanType][gp_sizeIdxInfo->idxFrom(m_width )][gp_sizeIdxInfo->idxFrom(m_height )][1])
, m_scanCG (g_scanOrder[SCAN_UNGROUPED ][m_scanType][gp_sizeIdxInfo->idxFrom(m_widthInGroups)][gp_sizeIdxInfo->idxFrom(m_heightInGroups)])
, m_CtxSetLastX (Ctx::LastX[m_chType])
, m_CtxSetLastY (Ctx::LastY[m_chType])
, m_maxLastPosX (g_uiGroupIdx[m_width - 1])
, m_maxLastPosY (g_uiGroupIdx[m_height - 1])
, m_lastOffsetX (0)
, m_lastOffsetY (0)
, m_lastShiftX (0)
, m_lastShiftY (0)
#if JVET_M0464_UNI_MTS
, m_TrafoBypass (tu.cs->sps->getSpsRangeExtension().getTransformSkipContextEnabledFlag() && (tu.cu->transQuantBypass || tu.mtsIdx==1))
#else

Karsten Suehring
committed
, m_TrafoBypass (tu.cs->sps->getSpsRangeExtension().getTransformSkipContextEnabledFlag() && (tu.cu->transQuantBypass || tu.transformSkip[m_compID]))

Karsten Suehring
committed
, m_scanPosLast (-1)
, m_subSetId (-1)
, m_subSetPos (-1)
, m_subSetPosX (-1)
, m_subSetPosY (-1)
, m_minSubPos (-1)
, m_maxSubPos (-1)
, m_sigGroupCtxId (-1)
, m_tmplCpSum1 (-1)
, m_tmplCpDiag (-1)
, m_sigFlagCtxSet { Ctx::SigFlag[m_chType], Ctx::SigFlag[m_chType+2], Ctx::SigFlag[m_chType+4] }
, m_parFlagCtxSet ( Ctx::ParFlag[m_chType] )
, m_gtxFlagCtxSet { Ctx::GtxFlag[m_chType], Ctx::GtxFlag[m_chType+2] }
, m_sigCoeffGroupFlag ()

Karsten Suehring
committed
, m_emtNumSigCoeff (0)

Karsten Suehring
committed
{
// LOGTODO
unsigned log2sizeX = m_log2BlockWidth;
unsigned log2sizeY = m_log2BlockHeight;
#if HEVC_USE_MDCS
if (m_scanType == SCAN_VER)
{
std::swap(log2sizeX, log2sizeY);
std::swap(const_cast<unsigned&>(m_maxLastPosX), const_cast<unsigned&>(m_maxLastPosY));
}
#endif
if (m_chType == CHANNEL_TYPE_CHROMA)
{
#if HEVC_USE_MDCS
const_cast<int&>(m_lastShiftX) = Clip3( 0, 2, int( ( m_scanType == SCAN_VER ? m_height : m_width ) >> 3) );
const_cast<int&>(m_lastShiftY) = Clip3( 0, 2, int( ( m_scanType == SCAN_VER ? m_width : m_height ) >> 3) );

Karsten Suehring
committed
#else
const_cast<int&>(m_lastShiftX) = Clip3( 0, 2, int( m_width >> 3) );
const_cast<int&>(m_lastShiftY) = Clip3( 0, 2, int( m_height >> 3) );

Karsten Suehring
committed
#endif
}
else
{
static const int prefix_ctx[8] = { 0, 0, 0, 3, 6, 10, 15, 21 };
const_cast<int&>(m_lastOffsetX) = prefix_ctx[ log2sizeX ];
const_cast<int&>(m_lastOffsetY) = prefix_ctx[ log2sizeY ];;

Karsten Suehring
committed
132
133
134
135
136
137
138
139
140
141
142
143
144
145
146
147
148
149
150
151
152
153
154
155
156
157
158
const_cast<int&>(m_lastShiftX) = (log2sizeX + 1) >> 2;
const_cast<int&>(m_lastShiftY) = (log2sizeY + 1) >> 2;
}
}
void CoeffCodingContext::initSubblock( int SubsetId, bool sigGroupFlag )
{
m_subSetId = SubsetId;
m_subSetPos = m_scanCG[ m_subSetId ];
m_subSetPosY = m_subSetPos / m_widthInGroups;
m_subSetPosX = m_subSetPos - ( m_subSetPosY * m_widthInGroups );
m_minSubPos = m_subSetId << m_log2CGSize;
m_maxSubPos = m_minSubPos + ( 1 << m_log2CGSize ) - 1;
if( sigGroupFlag )
{
m_sigCoeffGroupFlag.set ( m_subSetPos );
}
unsigned CGPosY = m_subSetPosY;
unsigned CGPosX = m_subSetPosX;
unsigned sigRight = unsigned( ( CGPosX + 1 ) < m_widthInGroups ? m_sigCoeffGroupFlag[ m_subSetPos + 1 ] : false );
unsigned sigLower = unsigned( ( CGPosY + 1 ) < m_heightInGroups ? m_sigCoeffGroupFlag[ m_subSetPos + m_widthInGroups ] : false );
m_sigGroupCtxId = Ctx::SigCoeffGroup[m_chType]( sigRight | sigLower );
}
159
160
161
162
163
164
165
166
167
168
169
170
171
172
173
174
175
176
177
178
179
180
181
182
183
184
185
186
187
188
189
190
191
192
193
194
195
196
197
198
199
200
201
202
203
204
205
206
207
208
209
210
211
212
213
214
215
216
217
218
219
220
221
222
223
224
225
226
227
228
229
230
231
232
233
234
235
236
237
238
239
240
241
242
243
244
245
246
247
248
249
250
251
252
253
254
255
256
257
258
259
260
261
262
263
264
265
266
267
268
#if JVET_M0421_SPLIT_SIG
void DeriveCtx::CtxSplit( const CodingStructure& cs, Partitioner& partitioner, unsigned& ctxSpl, unsigned& ctxQt, unsigned& ctxHv, unsigned& ctxHorBt, unsigned& ctxVerBt, bool* _canSplit /*= nullptr */ )
{
const Position pos = partitioner.currArea().blocks[partitioner.chType];
const unsigned curSliceIdx = cs.slice->getIndependentSliceIdx();
#if HEVC_TILES_WPP
const unsigned curTileIdx = cs.picture->tileMap->getTileIdxMap( partitioner.currArea().lumaPos() );
#endif
// get left depth
#if HEVC_TILES_WPP
const CodingUnit* cuLeft = cs.getCURestricted( pos.offset( -1, 0 ), curSliceIdx, curTileIdx, partitioner.chType );
#else
const CodingUnit* cuLeft = cs.getCURestricted( pos.offset( -1, 0 ), curSliceIdx, partitioner.chType );
#endif
// get above depth
#if HEVC_TILES_WPP
const CodingUnit* cuAbove = cs.getCURestricted( pos.offset( 0, -1 ), curSliceIdx, curTileIdx, partitioner.chType );
#else
const CodingUnit* cuAbove = cs.getCURestricted( pos.offset( 0, -1 ), curSliceIdx, partitioner.chType );
#endif
bool canSplit[6];
if( _canSplit == nullptr )
{
partitioner.canSplit( cs, canSplit[0], canSplit[1], canSplit[2], canSplit[3], canSplit[4], canSplit[5] );
}
else
{
memcpy( canSplit, _canSplit, 6 * sizeof( bool ) );
}
///////////////////////
// CTX do split (0-8)
///////////////////////
const unsigned widthCurr = partitioner.currArea().blocks[partitioner.chType].width;
const unsigned heightCurr = partitioner.currArea().blocks[partitioner.chType].height;
ctxSpl = 0;
if( cuLeft )
{
const unsigned heightLeft = cuLeft->blocks[partitioner.chType].height;
ctxSpl += ( heightLeft < heightCurr ? 1 : 0 );
}
if( cuAbove )
{
const unsigned widthAbove = cuAbove->blocks[partitioner.chType].width;
ctxSpl += ( widthAbove < widthCurr ? 1 : 0 );
}
unsigned numSplit = 0;
if( canSplit[1] ) numSplit += 2;
if( canSplit[2] ) numSplit += 1;
if( canSplit[3] ) numSplit += 1;
if( canSplit[4] ) numSplit += 1;
if( canSplit[5] ) numSplit += 1;
if( numSplit > 0 ) numSplit--;
ctxSpl += 3 * ( numSplit >> 1 );
//////////////////////////
// CTX is qt split (0-5)
//////////////////////////
ctxQt = ( cuLeft && cuLeft->qtDepth > partitioner.currQtDepth ) ? 1 : 0;
ctxQt += ( cuAbove && cuAbove->qtDepth > partitioner.currQtDepth ) ? 1 : 0;
ctxQt += partitioner.currQtDepth < 2 ? 0 : 3;
////////////////////////////
// CTX is ver split (0-4)
////////////////////////////
ctxHv = 0;
const unsigned numHor = ( canSplit[2] ? 1 : 0 ) + ( canSplit[4] ? 1 : 0 );
const unsigned numVer = ( canSplit[3] ? 1 : 0 ) + ( canSplit[5] ? 1 : 0 );
if( numVer == numHor )
{
const Area& area = partitioner.currArea().blocks[partitioner.chType];
const unsigned wAbove = cuAbove ? cuAbove->blocks[partitioner.chType].width : 1;
const unsigned hLeft = cuLeft ? cuLeft ->blocks[partitioner.chType].height : 1;
const unsigned depAbove = area.width / wAbove;
const unsigned depLeft = area.height / hLeft;
if( depAbove == depLeft || !cuLeft || !cuAbove ) ctxHv = 0;
else if( depAbove < depLeft ) ctxHv = 1;
else ctxHv = 2;
}
else if( numVer < numHor )
{
ctxHv = 3;
}
else
{
ctxHv = 4;
}
//////////////////////////
// CTX is h/v bt (0-3)
//////////////////////////
ctxHorBt = ( partitioner.currBtDepth >= 2 ? 1 : 0 );
ctxVerBt = ( partitioner.currBtDepth >= 2 ? 3 : 2 );
}
#else

Karsten Suehring
committed
269
270
271
272
273
274
275
276
277
278
279
280
281
282
283
284
285
286
287
288
289
290
291
292
293
294
295
296
297
298
299
300
unsigned DeriveCtx::CtxCUsplit( const CodingStructure& cs, Partitioner& partitioner )
{
auto adPartitioner = dynamic_cast<AdaptiveDepthPartitioner*>( &partitioner );
if( !adPartitioner )
{
return 0;
}
const Position pos = partitioner.currArea().blocks[partitioner.chType];
const unsigned curSliceIdx = cs.slice->getIndependentSliceIdx();
#if HEVC_TILES_WPP
const unsigned curTileIdx = cs.picture->tileMap->getTileIdxMap( partitioner.currArea().lumaPos() );
#endif
unsigned ctxId = 0;
// get left depth
#if HEVC_TILES_WPP
const CodingUnit* cuLeft = cs.getCURestricted( pos.offset( -1, 0 ), curSliceIdx, curTileIdx, partitioner.chType );
#else
const CodingUnit* cuLeft = cs.getCURestricted( pos.offset( -1, 0 ), curSliceIdx, partitioner.chType );
#endif
ctxId = ( cuLeft && cuLeft->qtDepth > partitioner.currQtDepth ) ? 1 : 0;
// get above depth
#if HEVC_TILES_WPP
const CodingUnit* cuAbove = cs.getCURestricted( pos.offset( 0, -1 ), curSliceIdx, curTileIdx, partitioner.chType );
#else
const CodingUnit* cuAbove = cs.getCURestricted( pos.offset( 0, -1 ), curSliceIdx, partitioner.chType );
#endif
ctxId += ( cuAbove && cuAbove->qtDepth > partitioner.currQtDepth ) ? 1 : 0;
ctxId += partitioner.currQtDepth < 2 ? 0 : 3;

Karsten Suehring
committed
return ctxId;
}

Karsten Suehring
committed
unsigned DeriveCtx::CtxQtCbf( const ComponentID compID, const unsigned trDepth, const bool prevCbCbf )
{
if( compID == COMPONENT_Cr )
{
return ( prevCbCbf ? 1 : 0 );
}
if( isChroma( compID ) )
{
return trDepth;
}
else
{
return ( trDepth == 0 ? 1 : 0 );
}
}
unsigned DeriveCtx::CtxInterDir( const PredictionUnit& pu )
{
if( pu.cs->sps->getSpsNext().getUseLargeCTU() )
{
return Clip3( 0, 3, 7 - ( ( g_aucLog2[pu.lumaSize().width] + g_aucLog2[pu.lumaSize().height] + 1 ) >> 1 ) ); // VG-ASYMM DONE

Karsten Suehring
committed
328
329
330
331
332
333
334
335
336
337
338
339
340
341
342
343
344
345
346
347
348
349
350
351
352
353
354
355
356
357
358
359
360
361
362
363
364
365
366
367
368
369
370
371
372
373
374
375
376
377
}
return pu.cu->qtDepth;
}
unsigned DeriveCtx::CtxAffineFlag( const CodingUnit& cu )
{
const CodingStructure *cs = cu.cs;
unsigned ctxId = 0;
const CodingUnit *cuLeft = cs->getCURestricted( cu.lumaPos().offset( -1, 0 ), cu, CH_L );
ctxId = ( cuLeft && cuLeft->affine ) ? 1 : 0;
const CodingUnit *cuAbove = cs->getCURestricted( cu.lumaPos().offset( 0, -1 ), cu, CH_L );
ctxId += ( cuAbove && cuAbove->affine ) ? 1 : 0;
return ctxId;
}
unsigned DeriveCtx::CtxSkipFlag( const CodingUnit& cu )
{
const CodingStructure *cs = cu.cs;
unsigned ctxId = 0;
// Get BCBP of left PU
const CodingUnit *cuLeft = cs->getCURestricted( cu.lumaPos().offset( -1, 0 ), cu, CH_L );
ctxId = ( cuLeft && cuLeft->skip ) ? 1 : 0;
// Get BCBP of above PU
const CodingUnit *cuAbove = cs->getCURestricted( cu.lumaPos().offset( 0, -1 ), cu, CH_L );
ctxId += ( cuAbove && cuAbove->skip ) ? 1 : 0;
return ctxId;
}
unsigned DeriveCtx::CtxIMVFlag( const CodingUnit& cu )
{
const CodingStructure *cs = cu.cs;
unsigned ctxId = 0;
// Get BCBP of left PU
const CodingUnit *cuLeft = cs->getCURestricted( cu.lumaPos().offset( -1, 0 ), cu, CH_L );
ctxId = ( cuLeft && cuLeft->imv ) ? 1 : 0;
// Get BCBP of above PU
const CodingUnit *cuAbove = cs->getCURestricted( cu.lumaPos().offset( 0, -1 ), cu, CH_L );
ctxId += ( cuAbove && cuAbove->imv ) ? 1 : 0;
return ctxId;
}

Karsten Suehring
committed
unsigned DeriveCtx::CtxBTsplit(const CodingStructure& cs, Partitioner& partitioner)
{
const Position pos = partitioner.currArea().blocks[partitioner.chType];
const unsigned curSliceIdx = cs.slice->getIndependentSliceIdx();
#if HEVC_TILES_WPP
const unsigned curTileIdx = cs.picture->tileMap->getTileIdxMap( pos );
#endif
unsigned ctx = 0;
#if HEVC_TILES_WPP
const CodingUnit *cuLeft = cs.getCURestricted( pos.offset( -1, 0 ), curSliceIdx, curTileIdx, partitioner.chType );
const CodingUnit *cuAbove = cs.getCURestricted( pos.offset( 0, -1 ), curSliceIdx, curTileIdx, partitioner.chType );
#else
const CodingUnit *cuLeft = cs.getCURestricted( pos.offset( -1, 0 ), curSliceIdx, partitioner.chType );
const CodingUnit *cuAbove = cs.getCURestricted( pos.offset( 0, -1 ), curSliceIdx, partitioner.chType );
#endif
{
unsigned widthCurr = partitioner.currArea().blocks[partitioner.chType].width;
unsigned heightCurr = partitioner.currArea().blocks[partitioner.chType].height;
unsigned heightLeft = cuLeft->blocks[partitioner.chType].height;
ctx += ( heightLeft < heightCurr ? 1 : 0 );
}
if( cuAbove )
{
unsigned widthAbove = cuAbove->blocks[partitioner.chType].width;
ctx += ( widthAbove < widthCurr ? 1 : 0 );
}
if( partitioner.chType == CHANNEL_TYPE_CHROMA )
{
ctx += 9;
}
else
{
int maxBTSize = cs.pcv->getMaxBtSize( *cs.slice, partitioner.chType );
int th1 = ( maxBTSize == 128 ) ? 128 : ( ( maxBTSize == 64 ) ? 64 : 64 );
int th2 = ( maxBTSize == 128 ) ? 1024 : ( ( maxBTSize == 64 ) ? 512 : 256 );
unsigned int sizeCurr = partitioner.currArea().lumaSize().area();
ctx += sizeCurr > th2 ? 0 : ( sizeCurr > th1 ? 3 : 6 );
}

Karsten Suehring
committed
}
return ctx;
}
unsigned DeriveCtx::CtxTriangleFlag( const CodingUnit& cu )
{
const CodingStructure *cs = cu.cs;
unsigned ctxId = 0;
const CodingUnit *cuLeft = cs->getCURestricted( cu.lumaPos().offset( -1, 0 ), cu, CH_L );
ctxId = ( cuLeft && cuLeft->triangle ) ? 1 : 0;
const CodingUnit *cuAbove = cs->getCURestricted( cu.lumaPos().offset( 0, -1 ), cu, CH_L );
ctxId += ( cuAbove && cuAbove->triangle ) ? 1 : 0;
return ctxId;
}
#if JVET_M0502_PRED_MODE_CTX
unsigned DeriveCtx::CtxPredModeFlag( const CodingUnit& cu )
{
const CodingUnit *cuLeft = cu.cs->getCURestricted(cu.lumaPos().offset(-1, 0), cu, CH_L);
const CodingUnit *cuAbove = cu.cs->getCURestricted(cu.lumaPos().offset(0, -1), cu, CH_L);
unsigned ctxId = ((cuAbove && cuAbove->predMode == MODE_INTRA) || (cuLeft && cuLeft->predMode == MODE_INTRA)) ? 1 : 0;
return ctxId;
}
#endif

Karsten Suehring
committed
void MergeCtx::setMergeInfo( PredictionUnit& pu, int candIdx )
{
CHECK( candIdx >= numValidMergeCand, "Merge candidate does not exist" );
pu.mergeFlag = true;
pu.mmvdMergeFlag = false;

Karsten Suehring
committed
pu.interDir = interDirNeighbours[candIdx];
pu.mergeIdx = candIdx;
pu.mergeType = mrgTypeNeighbours[candIdx];
pu.mv [REF_PIC_LIST_0] = mvFieldNeighbours[(candIdx << 1) + 0].mv;
pu.mv [REF_PIC_LIST_1] = mvFieldNeighbours[(candIdx << 1) + 1].mv;
pu.mvd [REF_PIC_LIST_0] = Mv();
pu.mvd [REF_PIC_LIST_1] = Mv();
pu.refIdx [REF_PIC_LIST_0] = mvFieldNeighbours[( candIdx << 1 ) + 0].refIdx;
pu.refIdx [REF_PIC_LIST_1] = mvFieldNeighbours[( candIdx << 1 ) + 1].refIdx;
pu.mvpIdx [REF_PIC_LIST_0] = NOT_VALID;
pu.mvpIdx [REF_PIC_LIST_1] = NOT_VALID;
pu.mvpNum [REF_PIC_LIST_0] = NOT_VALID;
pu.mvpNum [REF_PIC_LIST_1] = NOT_VALID;
if (interDirNeighbours[candIdx] == 1 && pu.cs->slice->getRefPic(REF_PIC_LIST_0, mvFieldNeighbours[candIdx << 1].refIdx)->getPOC() == pu.cs->slice->getPOC())
{
pu.cu->cpr = true;
pu.bv = pu.mv[REF_PIC_LIST_0];
pu.bv.changePrecision(MV_PRECISION_INTERNAL, MV_PRECISION_INT); // used for only integer resolution
pu.cu->GBiIdx = ( interDirNeighbours[candIdx] == 3 ) ? GBiIdx[candIdx] : GBI_DEFAULT;

Karsten Suehring
committed
}
void MergeCtx::setMmvdMergeCandiInfo(PredictionUnit& pu, int candIdx)
{
const Slice &slice = *pu.cs->slice;
const int mvShift = MV_FRACTIONAL_BITS_DIFF;
486
487
488
489
490
491
492
493
494
495
496
497
498
499
500
501
502
503
504
505
506
507
508
509
510
511
512
513
514
515
516
517
518
519
520
521
522
523
524
525
526
527
528
529
530
531
532
533
534
535
536
537
538
539
540
541
542
543
544
545
546
547
548
549
550
551
552
553
554
555
556
557
558
559
560
561
562
563
564
565
566
567
568
569
570
571
572
573
574
575
576
577
578
579
580
581
582
583
584
585
586
587
588
589
590
591
592
593
594
595
596
597
598
599
600
601
602
603
604
605
606
607
608
609
610
611
612
613
614
615
616
617
618
619
const int refMvdCands[8] = { 1 << mvShift , 2 << mvShift , 4 << mvShift , 8 << mvShift , 16 << mvShift , 32 << mvShift, 64 << mvShift , 128 << mvShift };
int fPosGroup = 0;
int fPosBaseIdx = 0;
int fPosStep = 0;
int tempIdx = 0;
int fPosPosition = 0;
Mv tempMv[2];
tempIdx = candIdx;
fPosGroup = tempIdx / (MMVD_BASE_MV_NUM * MMVD_MAX_REFINE_NUM);
tempIdx = tempIdx - fPosGroup * (MMVD_BASE_MV_NUM * MMVD_MAX_REFINE_NUM);
fPosBaseIdx = tempIdx / MMVD_MAX_REFINE_NUM;
tempIdx = tempIdx - fPosBaseIdx * (MMVD_MAX_REFINE_NUM);
fPosStep = tempIdx / 4;
fPosPosition = tempIdx - fPosStep * (4);
const int offset = refMvdCands[fPosStep];
const int refList0 = mmvdBaseMv[fPosBaseIdx][0].refIdx;
const int refList1 = mmvdBaseMv[fPosBaseIdx][1].refIdx;
if ((refList0 != -1) && (refList1 != -1))
{
const int poc0 = slice.getRefPOC(REF_PIC_LIST_0, refList0);
const int poc1 = slice.getRefPOC(REF_PIC_LIST_1, refList1);
const int currPoc = slice.getPOC();
int refSign = 1;
if ((poc0 - currPoc) * (currPoc - poc1) > 0)
{
refSign = -1;
}
if (fPosPosition == 0)
{
tempMv[0] = Mv(offset, 0);
tempMv[1] = Mv(offset * refSign, 0);
}
else if (fPosPosition == 1)
{
tempMv[0] = Mv(-offset, 0);
tempMv[1] = Mv(-offset * refSign, 0);
}
else if (fPosPosition == 2)
{
tempMv[0] = Mv(0, offset);
tempMv[1] = Mv(0, offset * refSign);
}
else
{
tempMv[0] = Mv(0, -offset);
tempMv[1] = Mv(0, -offset * refSign);
}
if (abs(poc1 - currPoc) > abs(poc0 - currPoc))
{
const int scale = PU::getDistScaleFactor(currPoc, poc0, currPoc, poc1);
if (scale != 4096)
{
tempMv[0] = tempMv[0].scaleMv(scale);
}
}
else if (abs(poc1 - currPoc) < abs(poc0 - currPoc))
{
const int scale = PU::getDistScaleFactor(currPoc, poc1, currPoc, poc0);
if (scale != 4096)
{
tempMv[1] = tempMv[1].scaleMv(scale);
}
}
pu.interDir = 3;
pu.mv[REF_PIC_LIST_0] = mmvdBaseMv[fPosBaseIdx][0].mv + tempMv[0];
pu.refIdx[REF_PIC_LIST_0] = refList0;
pu.mv[REF_PIC_LIST_1] = mmvdBaseMv[fPosBaseIdx][1].mv + tempMv[1];
pu.refIdx[REF_PIC_LIST_1] = refList1;
}
else if (refList0 != -1)
{
if (fPosPosition == 0)
{
tempMv[0] = Mv(offset, 0);
}
else if (fPosPosition == 1)
{
tempMv[0] = Mv(-offset, 0);
}
else if (fPosPosition == 2)
{
tempMv[0] = Mv(0, offset);
}
else
{
tempMv[0] = Mv(0, -offset);
}
pu.interDir = 1;
pu.mv[REF_PIC_LIST_0] = mmvdBaseMv[fPosBaseIdx][0].mv + tempMv[0];
pu.refIdx[REF_PIC_LIST_0] = refList0;
pu.mv[REF_PIC_LIST_1] = Mv(0, 0);
pu.refIdx[REF_PIC_LIST_1] = -1;
}
else if (refList1 != -1)
{
if (fPosPosition == 0)
{
tempMv[1] = Mv(offset, 0);
}
else if (fPosPosition == 1)
{
tempMv[1] = Mv(-offset, 0);
}
else if (fPosPosition == 2)
{
tempMv[1] = Mv(0, offset);
}
else
{
tempMv[1] = Mv(0, -offset);
}
pu.interDir = 2;
pu.mv[REF_PIC_LIST_0] = Mv(0, 0);
pu.refIdx[REF_PIC_LIST_0] = -1;
pu.mv[REF_PIC_LIST_1] = mmvdBaseMv[fPosBaseIdx][1].mv + tempMv[1];
pu.refIdx[REF_PIC_LIST_1] = refList1;
}
pu.mmvdMergeFlag = true;
pu.mmvdMergeIdx = candIdx;
pu.mergeFlag = true;
pu.mergeIdx = candIdx;
pu.mergeType = MRG_TYPE_DEFAULT_N;
pu.mvd[REF_PIC_LIST_0] = Mv();
pu.mvd[REF_PIC_LIST_1] = Mv();
pu.mvpIdx[REF_PIC_LIST_0] = NOT_VALID;
pu.mvpIdx[REF_PIC_LIST_1] = NOT_VALID;
pu.mvpNum[REF_PIC_LIST_0] = NOT_VALID;
pu.mvpNum[REF_PIC_LIST_1] = NOT_VALID;
pu.cu->GBiIdx = (interDirNeighbours[fPosBaseIdx] == 3) ? GBiIdx[fPosBaseIdx] : GBI_DEFAULT;