Newer
Older

Karsten Suehring
committed
dPSNR[ch] = uiSSDtemp ? 10.0 * log10(fRefValue / (double)uiSSDtemp) : 999.99;
MSEyuvframe[ch] = (double)uiSSDtemp / size;
}
uint32_t uibits = 0; // the number of bits for the pair is not calculated here - instead the overall total is used elsewhere.
//===== add PSNR =====
m_gcAnalyzeAll_in.addResult(dPSNR, (double) uibits, MSEyuvframe, MSEyuvframe,
#if MSSIM_UNIFORM_METRICS_LOG
msssim,

Karsten Suehring
committed
*PSNR_Y = dPSNR[COMPONENT_Y];
msg( INFO, "\n Interlaced frame %d: [Y %6.4lf dB U %6.4lf dB V %6.4lf dB]", pcPicOrgSecondField->getPOC()/2, dPSNR[COMPONENT_Y], dPSNR[COMPONENT_Cb], dPSNR[COMPONENT_Cr] );

Karsten Suehring
committed
if (printFrameMSE)
{
msg( DETAILS, " [Y MSE %6.4lf U MSE %6.4lf V MSE %6.4lf]", MSEyuvframe[COMPONENT_Y], MSEyuvframe[COMPONENT_Cb], MSEyuvframe[COMPONENT_Cr] );
}
#if MSSIM_UNIFORM_METRICS_LOG
if (printMSSSIM)
{
printf(" [MS-SSIM Y %1.6lf U %1.6lf V %1.6lf]", msssim[COMPONENT_Y], msssim[COMPONENT_Cb], msssim[COMPONENT_Cr] );
}
#endif

Karsten Suehring
committed
for(uint32_t fieldNum=0; fieldNum<2; fieldNum++)
{
cscd[fieldNum].destroy();
}
}
/** Function for deciding the nal_unit_type.
* \param pocCurr POC of the current picture
* \param lastIDR POC of the last IDR picture
* \param isField true to indicate field coding
* \returns the NAL unit type of the picture
* This function checks the configuration and returns the appropriate nal_unit_type for the picture.
*/
NalUnitType EncGOP::getNalUnitType(int pocCurr, int lastIDR, bool isField)
{
#if JVET_Z0118_GDR
if (m_pcCfg->getGdrEnabled() && m_pcCfg->getDecodingRefreshType() == 3 && (pocCurr >= m_pcCfg->getGdrPocStart()))
{
int m = pocCurr - m_pcCfg->getGdrPocStart();
int n = m_pcCfg->getGdrPeriod();
if (m % n == 0)
{
return NAL_UNIT_CODED_SLICE_GDR;
}
}
#endif

Karsten Suehring
committed
if (pocCurr == 0)
{
return NAL_UNIT_CODED_SLICE_IDR_N_LP;

Karsten Suehring
committed
}
if (m_pcCfg->getEfficientFieldIRAPEnabled() && isField && pocCurr == (m_pcCfg->getUseCompositeRef() ? 2: 1))

Karsten Suehring
committed
{
// to avoid the picture becoming an IRAP

Karsten Suehring
committed
}
if (m_pcCfg->getDecodingRefreshType() != 3 && (pocCurr - isField) % (m_pcCfg->getIntraPeriod() * (m_pcCfg->getUseCompositeRef() ? 2 : 1)) == 0)

Karsten Suehring
committed
{
if (m_pcCfg->getDecodingRefreshType() == 1)
{
return NAL_UNIT_CODED_SLICE_CRA;
}
else if (m_pcCfg->getDecodingRefreshType() == 2)
{
return NAL_UNIT_CODED_SLICE_IDR_W_RADL;
}
}
if(m_pocCRA>0)
{
if(pocCurr<m_pocCRA)
{
// All leading pictures are being marked as TFD pictures here since current encoder uses all
// reference pictures while encoding leading pictures. An encoder can ensure that a leading
// picture can be still decodable when random accessing to a CRA/CRANT/BLA/BLANT picture by
// controlling the reference pictures used for encoding that leading picture. Such a leading
// picture need not be marked as a TFD picture.

Karsten Suehring
committed
}
}
if (lastIDR>0)
{
if (pocCurr < lastIDR)
{

Karsten Suehring
committed
}
}
#if JVET_Z0118_GDR
if (m_pcCfg->getGdrEnabled() && pocCurr >= m_pcCfg->getGdrPocStart() && ((pocCurr - m_pcCfg->getGdrPocStart()) % m_pcCfg->getGdrPeriod() == 0))
{
return NAL_UNIT_CODED_SLICE_GDR;
}
else if (m_pcCfg->getGdrEnabled() && (pocCurr != 0) && (pocCurr < m_pcCfg->getGdrPocStart()))
{
return NAL_UNIT_CODED_SLICE_TRAIL;
}
else
{
return NAL_UNIT_CODED_SLICE_TRAIL;
}
#else

Karsten Suehring
committed
6113
6114
6115
6116
6117
6118
6119
6120
6121
6122
6123
6124
6125
6126
6127
6128
6129
6130
6131
6132
6133
6134
6135
6136
6137
6138
6139
6140
6141
6142
6143
6144
6145
6146
6147
6148
6149
6150
6151
6152
6153
6154
6155
6156
6157
6158
6159
6160
6161
6162
6163
6164
6165
6166
6167
6168
6169
6170
6171
6172
6173
6174
6175
6176
6177
6178
6179
6180
6181
6182
6183
6184
6185
6186
6187
6188
6189
6190
6191
6192
6193
6194
}
void EncGOP::xUpdateRasInit(Slice* slice)
{
slice->setPendingRasInit( false );
if ( slice->getPOC() > m_lastRasPoc )
{
m_lastRasPoc = MAX_INT;
slice->setPendingRasInit( true );
}
if ( slice->isIRAP() )
{
m_lastRasPoc = slice->getPOC();
}
}
double EncGOP::xCalculateRVM()
{
double dRVM = 0;
if( m_pcCfg->getGOPSize() == 1 && m_pcCfg->getIntraPeriod() != 1 && m_pcCfg->getFramesToBeEncoded() > RVM_VCEGAM10_M * 2 )
{
// calculate RVM only for lowdelay configurations
std::vector<double> vRL , vB;
size_t N = m_vRVM_RP.size();
vRL.resize( N );
vB.resize( N );
int i;
double dRavg = 0 , dBavg = 0;
vB[RVM_VCEGAM10_M] = 0;
for( i = RVM_VCEGAM10_M + 1 ; i < N - RVM_VCEGAM10_M + 1 ; i++ )
{
vRL[i] = 0;
for( int j = i - RVM_VCEGAM10_M ; j <= i + RVM_VCEGAM10_M - 1 ; j++ )
{
vRL[i] += m_vRVM_RP[j];
}
vRL[i] /= ( 2 * RVM_VCEGAM10_M );
vB[i] = vB[i-1] + m_vRVM_RP[i] - vRL[i];
dRavg += m_vRVM_RP[i];
dBavg += vB[i];
}
dRavg /= ( N - 2 * RVM_VCEGAM10_M );
dBavg /= ( N - 2 * RVM_VCEGAM10_M );
double dSigamB = 0;
for( i = RVM_VCEGAM10_M + 1 ; i < N - RVM_VCEGAM10_M + 1 ; i++ )
{
double tmp = vB[i] - dBavg;
dSigamB += tmp * tmp;
}
dSigamB = sqrt( dSigamB / ( N - 2 * RVM_VCEGAM10_M ) );
double f = sqrt( 12.0 * ( RVM_VCEGAM10_M - 1 ) / ( RVM_VCEGAM10_M + 1 ) );
dRVM = dSigamB / dRavg * f;
}
return( dRVM );
}
/** Attaches the input bitstream to the stream in the output NAL unit
Updates rNalu to contain concatenated bitstream. rpcBitstreamRedirect is cleared at the end of this function call.
* \param codedSliceData contains the coded slice data (bitstream) to be concatenated to rNalu
* \param rNalu target NAL unit
*/
void EncGOP::xAttachSliceDataToNalUnit (OutputNALUnit& rNalu, OutputBitstream* codedSliceData)
{
// Byte-align
rNalu.m_Bitstream.writeByteAlignment(); // Slice header byte-alignment
// Perform bitstream concatenation
if (codedSliceData->getNumberOfWrittenBits() > 0)
{
rNalu.m_Bitstream.addSubstream(codedSliceData);
}
codedSliceData->clear();
}
void EncGOP::arrangeCompositeReference(Slice* pcSlice, PicList& rcListPic, int pocCurr)
{
Picture* curPic = NULL;
PicList::iterator iterPic = rcListPic.begin();
const PreCalcValues *pcv = pcSlice->getPPS()->pcv;
m_bgPOC = pocCurr + 1;
if (m_picBg->getSpliceFull())
{
return;
}
while (iterPic != rcListPic.end())
{
curPic = *(iterPic++);
if (curPic->getPOC() == pocCurr)
{
break;
}
}
6214
6215
6216
6217
6218
6219
6220
6221
6222
6223
6224
6225
6226
6227
6228
6229
6230
6231
6232
6233
6234
6235
6236
6237
6238
6239
6240
6241
6242
6243
6244
6245
6246
6247
6248
6249
6250
6251
6252
6253
6254
6255
6256
6257
6258
6259
6260
6261
6262
6263
6264
6265
6266
6267
6268
6269
6270
6271
6272
6273
6274
6275
6276
6277
6278
6279
6280
6281
6282
6283
6284
6285
6286
6287
6288
6289
6290
6291
6292
6293
6294
6295
6296
6297
6298
6299
6300
6301
6302
6303
6304
6305
6306
6307
6308
6309
6310
6311
6312
6313
6314
6315
6316
6317
6318
6319
6320
6321
6322
6323
6324
6325
6326
6327
6328
6329
6330
6331
6332
6333
6334
6335
6336
6337
6338
6339
6340
6341
6342
6343
6344
6345
6346
6347
6348
6349
6350
6351
6352
6353
6354
6355
{
return;
}
int width = pcv->lumaWidth;
int height = pcv->lumaHeight;
int stride = curPic->getOrigBuf().get(COMPONENT_Y).stride;
int cStride = curPic->getOrigBuf().get(COMPONENT_Cb).stride;
Pel* curLumaAddr = curPic->getOrigBuf().get(COMPONENT_Y).buf;
Pel* curCbAddr = curPic->getOrigBuf().get(COMPONENT_Cb).buf;
Pel* curCrAddr = curPic->getOrigBuf().get(COMPONENT_Cr).buf;
Pel* bgOrgLumaAddr = m_picOrig->getOrigBuf().get(COMPONENT_Y).buf;
Pel* bgOrgCbAddr = m_picOrig->getOrigBuf().get(COMPONENT_Cb).buf;
Pel* bgOrgCrAddr = m_picOrig->getOrigBuf().get(COMPONENT_Cr).buf;
int cuMaxWidth = pcv->maxCUWidth;
int cuMaxHeight = pcv->maxCUHeight;
int maxReplace = (pcv->sizeInCtus) / 2;
maxReplace = maxReplace < 1 ? 1 : maxReplace;
typedef struct tagCostStr
{
double cost;
int ctuIdx;
}CostStr;
CostStr* minCtuCost = new CostStr[maxReplace];
for (int i = 0; i < maxReplace; i++)
{
minCtuCost[i].cost = 1e10;
minCtuCost[i].ctuIdx = -1;
}
int bitIncrementY = pcSlice->getSPS()->getBitDepth(CHANNEL_TYPE_LUMA) - 8;
int bitIncrementUV = pcSlice->getSPS()->getBitDepth(CHANNEL_TYPE_CHROMA) - 8;
for (int y = 0; y < height; y += cuMaxHeight)
{
for (int x = 0; x < width; x += cuMaxWidth)
{
double lcuDist = 0.0;
double lcuDistCb = 0.0;
double lcuDistCr = 0.0;
int realPixelCnt = 0;
double lcuCost = 1e10;
int largeDist = 0;
for (int tmpy = 0; tmpy < cuMaxHeight; tmpy++)
{
if (y + tmpy >= height)
{
break;
}
for (int tmpx = 0; tmpx < cuMaxWidth; tmpx++)
{
if (x + tmpx >= width)
{
break;
}
realPixelCnt++;
lcuDist += abs(curLumaAddr[(y + tmpy)*stride + x + tmpx] - bgOrgLumaAddr[(y + tmpy)*stride + x + tmpx]);
if (abs(curLumaAddr[(y + tmpy)*stride + x + tmpx] - bgOrgLumaAddr[(y + tmpy)*stride + x + tmpx]) >(20 << bitIncrementY))
{
largeDist++;
}
if (tmpy % 2 == 0 && tmpx % 2 == 0)
{
lcuDistCb += abs(curCbAddr[(y + tmpy) / 2 * cStride + (x + tmpx) / 2] - bgOrgCbAddr[(y + tmpy) / 2 * cStride + (x + tmpx) / 2]);
lcuDistCr += abs(curCrAddr[(y + tmpy) / 2 * cStride + (x + tmpx) / 2] - bgOrgCrAddr[(y + tmpy) / 2 * cStride + (x + tmpx) / 2]);
}
}
}
//Test the vertical or horizontal edge for background patches candidates
int yInLCU = y / cuMaxHeight;
int xInLCU = x / cuMaxWidth;
int iLCUIdx = yInLCU * pcv->widthInCtus + xInLCU;
if ((largeDist / (double)realPixelCnt < 0.01 &&lcuDist / realPixelCnt < (3.5 * (1 << bitIncrementY)) && lcuDistCb / realPixelCnt < (0.5 * (1 << bitIncrementUV)) && lcuDistCr / realPixelCnt < (0.5 * (1 << bitIncrementUV)) && m_picBg->getSpliceIdx(iLCUIdx) == 0))
{
lcuCost = lcuDist / realPixelCnt + lcuDistCb / realPixelCnt + lcuDistCr / realPixelCnt;
//obtain the maxReplace smallest cost
//1) find the largest cost in the maxReplace candidates
for (int i = 0; i < maxReplace - 1; i++)
{
if (minCtuCost[i].cost > minCtuCost[i + 1].cost)
{
swap(minCtuCost[i].cost, minCtuCost[i + 1].cost);
swap(minCtuCost[i].ctuIdx, minCtuCost[i + 1].ctuIdx);
}
}
// 2) compare the current cost with the largest cost
if (lcuCost < minCtuCost[maxReplace - 1].cost)
{
minCtuCost[maxReplace - 1].cost = lcuCost;
minCtuCost[maxReplace - 1].ctuIdx = iLCUIdx;
}
}
}
}
// modify QP for background CTU
{
for (int i = 0; i < maxReplace; i++)
{
if (minCtuCost[i].ctuIdx != -1)
{
m_picBg->setSpliceIdx(minCtuCost[i].ctuIdx, pocCurr);
}
}
}
delete[]minCtuCost;
}
void EncGOP::updateCompositeReference(Slice* pcSlice, PicList& rcListPic, int pocCurr)
{
Picture* curPic = NULL;
const PreCalcValues *pcv = pcSlice->getPPS()->pcv;
PicList::iterator iterPic = rcListPic.begin();
iterPic = rcListPic.begin();
while (iterPic != rcListPic.end())
{
curPic = *(iterPic++);
if (curPic->getPOC() == pocCurr)
{
break;
}
}
assert(curPic->getPOC() == pocCurr);
int width = pcv->lumaWidth;
int height = pcv->lumaHeight;
int stride = curPic->getRecoBuf().get(COMPONENT_Y).stride;
int cStride = curPic->getRecoBuf().get(COMPONENT_Cb).stride;
Pel* bgLumaAddr = m_picBg->getRecoBuf().get(COMPONENT_Y).buf;
Pel* bgCbAddr = m_picBg->getRecoBuf().get(COMPONENT_Cb).buf;
Pel* bgCrAddr = m_picBg->getRecoBuf().get(COMPONENT_Cr).buf;
Pel* curLumaAddr = curPic->getRecoBuf().get(COMPONENT_Y).buf;
Pel* curCbAddr = curPic->getRecoBuf().get(COMPONENT_Cb).buf;
Pel* curCrAddr = curPic->getRecoBuf().get(COMPONENT_Cr).buf;
int maxCuWidth = pcv->maxCUWidth;
int maxCuHeight = pcv->maxCUHeight;
// Update background reference
if (pcSlice->isIRAP())//(pocCurr == 0)
curPic->extendPicBorder( pcSlice->getPPS() );
6359
6360
6361
6362
6363
6364
6365
6366
6367
6368
6369
6370
6371
6372
6373
6374
6375
6376
6377
6378
6379
6380
6381
6382
6383
6384
6385
6386
6387
6388
6389
6390
6391
6392
6393
6394
6395
6396
curPic->setBorderExtension(true);
m_picBg->getRecoBuf().copyFrom(curPic->getRecoBuf());
m_picOrig->getOrigBuf().copyFrom(curPic->getOrigBuf());
}
else
{
//cout << "update B" << pocCurr << endl;
for (int y = 0; y < height; y += maxCuHeight)
{
for (int x = 0; x < width; x += maxCuWidth)
{
if (m_picBg->getSpliceIdx((y / maxCuHeight)*pcv->widthInCtus + x / maxCuWidth) == pocCurr)
{
for (int tmpy = 0; tmpy < maxCuHeight; tmpy++)
{
if (y + tmpy >= height)
{
break;
}
for (int tmpx = 0; tmpx < maxCuWidth; tmpx++)
{
if (x + tmpx >= width)
{
break;
}
bgLumaAddr[(y + tmpy)*stride + x + tmpx] = curLumaAddr[(y + tmpy)*stride + x + tmpx];
if (tmpy % 2 == 0 && tmpx % 2 == 0)
{
bgCbAddr[(y + tmpy) / 2 * cStride + (x + tmpx) / 2] = curCbAddr[(y + tmpy) / 2 * cStride + (x + tmpx) / 2];
bgCrAddr[(y + tmpy) / 2 * cStride + (x + tmpx) / 2] = curCrAddr[(y + tmpy) / 2 * cStride + (x + tmpx) / 2];
}
}
}
}
}
}
m_picBg->setBorderExtension(false);
m_picBg->extendPicBorder( pcSlice->getPPS() );
m_picBg->setBorderExtension(true);
curPic->extendPicBorder( pcSlice->getPPS() );
curPic->setBorderExtension(true);
m_picOrig->getOrigBuf().copyFrom(curPic->getOrigBuf());
m_picBg->setBorderExtension(false);
m_picBg->extendPicBorder( pcSlice->getPPS() );
m_picBg->setBorderExtension(true);
}
}

Karsten Suehring
committed
void EncGOP::applyDeblockingFilterMetric( Picture* pcPic, uint32_t uiNumSlices )
{
PelBuf cPelBuf = pcPic->getRecoBuf().get( COMPONENT_Y );
Pel* Rec = cPelBuf.buf;
const int stride = cPelBuf.stride;
const uint32_t picWidth = cPelBuf.width;
const uint32_t picHeight = cPelBuf.height;
Pel* tempRec = Rec;
const Slice* pcSlice = pcPic->slices[0];
const uint32_t log2maxTB = pcSlice->getSPS()->getLog2MaxTbSize();
const uint32_t maxTBsize = (1<<log2maxTB);

Karsten Suehring
committed
6422
6423
6424
6425
6426
6427
6428
6429
6430
6431
6432
6433
6434
6435
6436
6437
6438
6439
6440
6441
6442
6443
6444
6445
6446
6447
6448
6449
6450
6451
6452
6453
6454
6455
6456
6457
6458
6459
6460
6461
6462
6463
6464
6465
6466
6467
6468
6469
6470
6471
6472
6473
6474
6475
6476
6477
6478
6479
6480
6481
6482
6483
6484
6485
6486
6487
6488
6489
6490
6491
6492
6493
6494
6495
6496
6497
6498
6499
6500
6501
6502
6503
6504
6505
6506
6507
6508
6509
6510
6511
6512
6513
6514
6515
6516
6517
const uint32_t minBlockArtSize = 8;
const uint32_t noCol = (picWidth>>log2maxTB);
const uint32_t noRows = (picHeight>>log2maxTB);
CHECK(!(noCol > 1), "Unspecified error");
CHECK(!(noRows > 1), "Unspecified error");
std::vector<uint64_t> colSAD(noCol, uint64_t(0));
std::vector<uint64_t> rowSAD(noRows, uint64_t(0));
uint32_t colIdx = 0;
uint32_t rowIdx = 0;
Pel p0, p1, p2, q0, q1, q2;
int qp = pcSlice->getSliceQp();
const int bitDepthLuma=pcSlice->getSPS()->getBitDepth(CHANNEL_TYPE_LUMA);
int bitdepthScale = 1 << (bitDepthLuma-8);
int beta = LoopFilter::getBeta( qp ) * bitdepthScale;
const int thr2 = (beta>>2);
const int thr1 = 2*bitdepthScale;
uint32_t a = 0;
if (maxTBsize > minBlockArtSize)
{
// Analyze vertical artifact edges
for(int c = maxTBsize; c < picWidth; c += maxTBsize)
{
for(int r = 0; r < picHeight; r++)
{
p2 = Rec[c-3];
p1 = Rec[c-2];
p0 = Rec[c-1];
q0 = Rec[c];
q1 = Rec[c+1];
q2 = Rec[c+2];
a = ((abs(p2-(p1<<1)+p0)+abs(q0-(q1<<1)+q2))<<1);
if ( thr1 < a && a < thr2)
{
colSAD[colIdx] += abs(p0 - q0);
}
Rec += stride;
}
colIdx++;
Rec = tempRec;
}
// Analyze horizontal artifact edges
for(int r = maxTBsize; r < picHeight; r += maxTBsize)
{
for(int c = 0; c < picWidth; c++)
{
p2 = Rec[c + (r-3)*stride];
p1 = Rec[c + (r-2)*stride];
p0 = Rec[c + (r-1)*stride];
q0 = Rec[c + r*stride];
q1 = Rec[c + (r+1)*stride];
q2 = Rec[c + (r+2)*stride];
a = ((abs(p2-(p1<<1)+p0)+abs(q0-(q1<<1)+q2))<<1);
if (thr1 < a && a < thr2)
{
rowSAD[rowIdx] += abs(p0 - q0);
}
}
rowIdx++;
}
}
uint64_t colSADsum = 0;
uint64_t rowSADsum = 0;
for(int c = 0; c < noCol-1; c++)
{
colSADsum += colSAD[c];
}
for(int r = 0; r < noRows-1; r++)
{
rowSADsum += rowSAD[r];
}
colSADsum <<= 10;
rowSADsum <<= 10;
colSADsum /= (noCol-1);
colSADsum /= picHeight;
rowSADsum /= (noRows-1);
rowSADsum /= picWidth;
uint64_t avgSAD = ((colSADsum + rowSADsum)>>1);
avgSAD >>= (bitDepthLuma-8);
if ( avgSAD > 2048 )
{
avgSAD >>= 9;
int offset = Clip3(2,6,(int)avgSAD);
for (int i=0; i<uiNumSlices; i++)
{
Slice* pcLocalSlice = pcPic->slices[i];
pcLocalSlice->setDeblockingFilterOverrideFlag ( true);
pcLocalSlice->setDeblockingFilterDisable ( false);
pcLocalSlice->setDeblockingFilterBetaOffsetDiv2 ( offset );
pcLocalSlice->setDeblockingFilterTcOffsetDiv2 ( offset );
pcLocalSlice->setDeblockingFilterCbBetaOffsetDiv2 ( offset );
pcLocalSlice->setDeblockingFilterCbTcOffsetDiv2 ( offset );
pcLocalSlice->setDeblockingFilterCrBetaOffsetDiv2 ( offset );
pcLocalSlice->setDeblockingFilterCrTcOffsetDiv2 ( offset );

Karsten Suehring
committed
}
}
else
{
for (int i=0; i<uiNumSlices; i++)
{
Slice* pcLocalSlice = pcPic->slices[i];
const PPS* pcPPS = pcSlice->getPPS();
pcLocalSlice->setDeblockingFilterOverrideFlag ( false);
pcLocalSlice->setDeblockingFilterDisable ( pcPPS->getPPSDeblockingFilterDisabledFlag() );
#if DB_PARAM_TID
int betaIdx = Clip3(0, (int)pcPPS->getDeblockingFilterBetaOffsetDiv2().size() - 1, (int)pcLocalSlice->getTLayer() + (pcLocalSlice->isIntra() ? 0 : 1));
int tcIdx = Clip3(0, (int)pcPPS->getDeblockingFilterTcOffsetDiv2().size() - 1, (int)pcLocalSlice->getTLayer() + (pcLocalSlice->isIntra() ? 0 : 1));
pcLocalSlice->setDeblockingFilterBetaOffsetDiv2( pcPPS->getDeblockingFilterBetaOffsetDiv2()[betaIdx] );
pcLocalSlice->setDeblockingFilterTcOffsetDiv2 ( pcPPS->getDeblockingFilterTcOffsetDiv2()[tcIdx] );
pcLocalSlice->setDeblockingFilterCbBetaOffsetDiv2(pcPPS->getDeblockingFilterBetaOffsetDiv2()[betaIdx]);
pcLocalSlice->setDeblockingFilterCbTcOffsetDiv2(pcPPS->getDeblockingFilterTcOffsetDiv2()[tcIdx]);
pcLocalSlice->setDeblockingFilterCrBetaOffsetDiv2(pcPPS->getDeblockingFilterBetaOffsetDiv2()[betaIdx]);
pcLocalSlice->setDeblockingFilterCrTcOffsetDiv2(pcPPS->getDeblockingFilterTcOffsetDiv2()[tcIdx]);
#else

Karsten Suehring
committed
pcLocalSlice->setDeblockingFilterBetaOffsetDiv2( pcPPS->getDeblockingFilterBetaOffsetDiv2() );
pcLocalSlice->setDeblockingFilterTcOffsetDiv2 ( pcPPS->getDeblockingFilterTcOffsetDiv2() );
pcLocalSlice->setDeblockingFilterCbBetaOffsetDiv2 ( pcPPS->getDeblockingFilterCbBetaOffsetDiv2() );
pcLocalSlice->setDeblockingFilterCbTcOffsetDiv2 ( pcPPS->getDeblockingFilterCbTcOffsetDiv2() );
pcLocalSlice->setDeblockingFilterCrBetaOffsetDiv2 ( pcPPS->getDeblockingFilterCrBetaOffsetDiv2() );
pcLocalSlice->setDeblockingFilterCrTcOffsetDiv2 ( pcPPS->getDeblockingFilterCrTcOffsetDiv2() );

Karsten Suehring
committed
}
}
}
6554
6555
6556
6557
6558
6559
6560
6561
6562
6563
6564
6565
6566
6567
6568
6569
6570
6571
6572
6573
6574
6575
#if DB_PARAM_TID
void EncGOP::applyDeblockingFilterParameterSelection( Picture* pcPic, Slice* pcSlice, const uint32_t numSlices, const int gopID )
{
const PPS* pcPPS = pcPic->slices[0]->getPPS();
for (int i = 0; i<numSlices; i++)
{
Slice* pcSlice = pcPic->slices[i];
pcSlice->setDeblockingFilterOverrideFlag(false);
pcSlice->setDeblockingFilterDisable(pcPPS->getPPSDeblockingFilterDisabledFlag());
int betaIdx = Clip3(0, (int)pcPPS->getDeblockingFilterBetaOffsetDiv2().size() - 1, (int)pcSlice->getTLayer() + (pcSlice->isIntra() ? 0 : 1));
int tcIdx = Clip3(0, (int)pcPPS->getDeblockingFilterTcOffsetDiv2().size() - 1, (int)pcSlice->getTLayer() + (pcSlice->isIntra() ? 0 : 1));
pcSlice->setDeblockingFilterBetaOffsetDiv2(pcPPS->getDeblockingFilterBetaOffsetDiv2()[betaIdx]);
pcSlice->setDeblockingFilterTcOffsetDiv2(pcPPS->getDeblockingFilterTcOffsetDiv2()[tcIdx]);
pcSlice->setDeblockingFilterCbBetaOffsetDiv2(pcPPS->getDeblockingFilterBetaOffsetDiv2()[betaIdx]);
pcSlice->setDeblockingFilterCbTcOffsetDiv2(pcPPS->getDeblockingFilterTcOffsetDiv2()[tcIdx]);
pcSlice->setDeblockingFilterCrBetaOffsetDiv2(pcPPS->getDeblockingFilterBetaOffsetDiv2()[betaIdx]);
pcSlice->setDeblockingFilterCrTcOffsetDiv2(pcPPS->getDeblockingFilterTcOffsetDiv2()[tcIdx]);
}
}
#endif

Karsten Suehring
committed
#if W0038_DB_OPT
void EncGOP::applyDeblockingFilterParameterSelection( Picture* pcPic, const uint32_t numSlices, const int gopID )
{
enum DBFltParam
{
DBFLT_PARAM_AVAILABLE = 0,
DBFLT_DISABLE_FLAG,
DBFLT_BETA_OFFSETD2,
DBFLT_TC_OFFSETD2,
//NUM_DBFLT_PARAMS
};
const int MAX_BETA_OFFSET = 3;
const int MIN_BETA_OFFSET = -3;
const int MAX_TC_OFFSET = 3;
const int MIN_TC_OFFSET = -3;
PelUnitBuf reco = pcPic->getRecoBuf();
const int currQualityLayer = (!pcPic->slices[0]->isIRAP()) ? m_pcCfg->getGOPEntry(gopID).m_temporalId+1 : 0;

Karsten Suehring
committed
6595
6596
6597
6598
6599
6600
6601
6602
6603
6604
6605
6606
6607
6608
6609
6610
6611
6612
6613
6614
6615
6616
6617
6618
6619
6620
6621
6622
6623
6624
6625
6626
6627
6628
6629
6630
6631
6632
CHECK(!(currQualityLayer <MAX_ENCODER_DEBLOCKING_QUALITY_LAYERS), "Unspecified error");
CodingStructure& cs = *pcPic->cs;
if(!m_pcDeblockingTempPicYuv)
{
m_pcDeblockingTempPicYuv = new PelStorage;
m_pcDeblockingTempPicYuv->create( cs.area );
memset(m_DBParam, 0, sizeof(m_DBParam));
}
//preserve current reconstruction
m_pcDeblockingTempPicYuv->copyFrom ( reco );
const bool bNoFiltering = m_DBParam[currQualityLayer][DBFLT_PARAM_AVAILABLE] && m_DBParam[currQualityLayer][DBFLT_DISABLE_FLAG]==false /*&& pcPic->getTLayer()==0*/;
const int maxBetaOffsetDiv2 = bNoFiltering? Clip3(MIN_BETA_OFFSET, MAX_BETA_OFFSET, m_DBParam[currQualityLayer][DBFLT_BETA_OFFSETD2]+1) : MAX_BETA_OFFSET;
const int minBetaOffsetDiv2 = bNoFiltering? Clip3(MIN_BETA_OFFSET, MAX_BETA_OFFSET, m_DBParam[currQualityLayer][DBFLT_BETA_OFFSETD2]-1) : MIN_BETA_OFFSET;
const int maxTcOffsetDiv2 = bNoFiltering? Clip3(MIN_TC_OFFSET, MAX_TC_OFFSET, m_DBParam[currQualityLayer][DBFLT_TC_OFFSETD2]+2) : MAX_TC_OFFSET;
const int minTcOffsetDiv2 = bNoFiltering? Clip3(MIN_TC_OFFSET, MAX_TC_OFFSET, m_DBParam[currQualityLayer][DBFLT_TC_OFFSETD2]-2) : MIN_TC_OFFSET;
uint64_t distBetaPrevious = std::numeric_limits<uint64_t>::max();
uint64_t distMin = std::numeric_limits<uint64_t>::max();
bool bDBFilterDisabledBest = true;
int betaOffsetDiv2Best = 0;
int tcOffsetDiv2Best = 0;
for(int betaOffsetDiv2=maxBetaOffsetDiv2; betaOffsetDiv2>=minBetaOffsetDiv2; betaOffsetDiv2--)
{
uint64_t distTcMin = std::numeric_limits<uint64_t>::max();
for(int tcOffsetDiv2=maxTcOffsetDiv2; tcOffsetDiv2 >= minTcOffsetDiv2; tcOffsetDiv2--)
{
for (int i=0; i<numSlices; i++)
{
Slice* pcSlice = pcPic->slices[i];
pcSlice->setDeblockingFilterOverrideFlag ( true);
pcSlice->setDeblockingFilterDisable ( false);
pcSlice->setDeblockingFilterBetaOffsetDiv2( betaOffsetDiv2 );
pcSlice->setDeblockingFilterTcOffsetDiv2 ( tcOffsetDiv2 );
pcSlice->setDeblockingFilterCbBetaOffsetDiv2( betaOffsetDiv2 );
pcSlice->setDeblockingFilterCbTcOffsetDiv2 ( tcOffsetDiv2 );
pcSlice->setDeblockingFilterCrBetaOffsetDiv2( betaOffsetDiv2 );
pcSlice->setDeblockingFilterCrTcOffsetDiv2 ( tcOffsetDiv2 );

Karsten Suehring
committed
6637
6638
6639
6640
6641
6642
6643
6644
6645
6646
6647
6648
6649
6650
6651
6652
6653
6654
6655
6656
6657
6658
6659
6660
6661
6662
6663
6664
6665
6666
6667
6668
6669
6670
6671
6672
6673
6674
6675
6676
}
// restore reconstruction
reco.copyFrom( *m_pcDeblockingTempPicYuv );
const uint64_t dist = preLoopFilterPicAndCalcDist( pcPic );
if(dist < distMin)
{
distMin = dist;
bDBFilterDisabledBest = false;
betaOffsetDiv2Best = betaOffsetDiv2;
tcOffsetDiv2Best = tcOffsetDiv2;
}
if(dist < distTcMin)
{
distTcMin = dist;
}
else if(tcOffsetDiv2 <-2)
{
break;
}
}
if(betaOffsetDiv2<-1 && distTcMin >= distBetaPrevious)
{
break;
}
distBetaPrevious = distTcMin;
}
//update:
m_DBParam[currQualityLayer][DBFLT_PARAM_AVAILABLE] = 1;
m_DBParam[currQualityLayer][DBFLT_DISABLE_FLAG] = bDBFilterDisabledBest;
m_DBParam[currQualityLayer][DBFLT_BETA_OFFSETD2] = betaOffsetDiv2Best;
m_DBParam[currQualityLayer][DBFLT_TC_OFFSETD2] = tcOffsetDiv2Best;
// restore reconstruction
reco.copyFrom( *m_pcDeblockingTempPicYuv );
const PPS* pcPPS = pcPic->slices[0]->getPPS();
#if DB_PARAM_TID
int betaIdx = Clip3(0, (int)pcPPS->getDeblockingFilterBetaOffsetDiv2().size() - 1, (int)pcPic->slices[0]->getTLayer() + (pcPic->slices[0]->isIntra() ? 0 : 1));
int tcIdx = Clip3(0, (int)pcPPS->getDeblockingFilterTcOffsetDiv2().size() - 1, (int)pcPic->slices[0]->getTLayer()) + (pcPic->slices[0]->isIntra() ? 0 : 1);
#endif

Karsten Suehring
committed
if(bDBFilterDisabledBest)
{
for (int i=0; i<numSlices; i++)
{
Slice* pcSlice = pcPic->slices[i];
pcSlice->setDeblockingFilterOverrideFlag( true);
pcSlice->setDeblockingFilterDisable ( true);
}
}
#if DB_PARAM_TID
else if (betaOffsetDiv2Best == pcPPS->getDeblockingFilterBetaOffsetDiv2()[betaIdx] && tcOffsetDiv2Best == pcPPS->getDeblockingFilterTcOffsetDiv2()[tcIdx])
#else

Karsten Suehring
committed
else if(betaOffsetDiv2Best == pcPPS->getDeblockingFilterBetaOffsetDiv2() && tcOffsetDiv2Best == pcPPS->getDeblockingFilterTcOffsetDiv2())

Karsten Suehring
committed
{
for (int i=0; i<numSlices; i++)
{
Slice* pcSlice = pcPic->slices[i];
pcSlice->setDeblockingFilterOverrideFlag ( false);
pcSlice->setDeblockingFilterDisable ( pcPPS->getPPSDeblockingFilterDisabledFlag() );
#if DB_PARAM_TID
pcSlice->setDeblockingFilterBetaOffsetDiv2(pcPPS->getDeblockingFilterBetaOffsetDiv2()[betaIdx]);
pcSlice->setDeblockingFilterTcOffsetDiv2(pcPPS->getDeblockingFilterTcOffsetDiv2()[tcIdx]);
pcSlice->setDeblockingFilterCbBetaOffsetDiv2(pcPPS->getDeblockingFilterBetaOffsetDiv2()[betaIdx]);
pcSlice->setDeblockingFilterCbTcOffsetDiv2(pcPPS->getDeblockingFilterTcOffsetDiv2()[tcIdx]);
pcSlice->setDeblockingFilterCrBetaOffsetDiv2(pcPPS->getDeblockingFilterBetaOffsetDiv2()[betaIdx]);
pcSlice->setDeblockingFilterCrTcOffsetDiv2(pcPPS->getDeblockingFilterTcOffsetDiv2()[tcIdx]);
#else

Karsten Suehring
committed
pcSlice->setDeblockingFilterBetaOffsetDiv2 ( pcPPS->getDeblockingFilterBetaOffsetDiv2() );
pcSlice->setDeblockingFilterTcOffsetDiv2 ( pcPPS->getDeblockingFilterTcOffsetDiv2() );
pcSlice->setDeblockingFilterCbBetaOffsetDiv2(pcPPS->getDeblockingFilterBetaOffsetDiv2());
pcSlice->setDeblockingFilterCbTcOffsetDiv2(pcPPS->getDeblockingFilterTcOffsetDiv2());
pcSlice->setDeblockingFilterCrBetaOffsetDiv2(pcPPS->getDeblockingFilterBetaOffsetDiv2());
pcSlice->setDeblockingFilterCrTcOffsetDiv2(pcPPS->getDeblockingFilterTcOffsetDiv2());
#endif

Karsten Suehring
committed
}
}
else
{
for (int i=0; i<numSlices; i++)
{
Slice* pcSlice = pcPic->slices[i];
pcSlice->setDeblockingFilterOverrideFlag ( true);
pcSlice->setDeblockingFilterDisable ( false );
pcSlice->setDeblockingFilterBetaOffsetDiv2 ( betaOffsetDiv2Best);
pcSlice->setDeblockingFilterTcOffsetDiv2 ( tcOffsetDiv2Best);
pcSlice->setDeblockingFilterCbBetaOffsetDiv2 ( betaOffsetDiv2Best);
pcSlice->setDeblockingFilterCbTcOffsetDiv2 ( tcOffsetDiv2Best);
pcSlice->setDeblockingFilterCrBetaOffsetDiv2 ( betaOffsetDiv2Best);
pcSlice->setDeblockingFilterCrTcOffsetDiv2 ( tcOffsetDiv2Best);

Karsten Suehring
committed
}
}
}
#endif

Karsten Suehring
committed
bool EncGOP::xCheckMaxTidILRefPics(Picture* refPic, bool currentPicIsIRAP)
{
const int maxTidILRefPicsPlus1 = m_pcCfg->getVPSParameters().m_maxTidILRefPicsPlus1;
// -1 means not set
if (maxTidILRefPicsPlus1 < 0)
{
return true;
}
// 0 allows only IRAP pictures to use inter-layer prediction
if (maxTidILRefPicsPlus1 == 0)
{
return currentPicIsIRAP;
}
// all other cases filter by temporalID
return ( refPic->temporalId < maxTidILRefPicsPlus1 );
}
void EncGOP::xCreateExplicitReferencePictureSetFromReference( Slice* slice, PicList& rcListPic, const ReferencePictureList *rpl0, const ReferencePictureList *rpl1 )
{
Picture* rpcPic;
int pocCycle = 0;
Picture* pic = slice->getPic();
const VPS* vps = slice->getPic()->cs->vps;
int layerIdx = vps == nullptr ? 0 : vps->getGeneralLayerIdx( pic->layerId );
bool isIntraLayerPredAllowed = vps->getIndependentLayerFlag(layerIdx) || (vps->getPredDirection(slice->getTLayer()) != 1);
bool isInterLayerPredAllowed = !vps->getIndependentLayerFlag(layerIdx) && (vps->getPredDirection(slice->getTLayer()) != 2);
ReferencePictureList* pLocalRPL0 = slice->getLocalRPL0();
*pLocalRPL0 = ReferencePictureList( slice->getSPS()->getInterLayerPresentFlag() );
uint32_t numOfSTRPL0 = 0;
uint32_t numOfLTRPL0 = 0;
uint32_t numOfILRPL0 = 0;
uint32_t numOfRefPic = rpl0->getNumberOfShorttermPictures() + rpl0->getNumberOfLongtermPictures();
uint32_t refPicIdxL0 = 0;
if (isIntraLayerPredAllowed)
for (int ii = 0; ii < numOfRefPic; ii++)
// loop through all pictures in the reference picture buffer
PicList::iterator iterPic = rcListPic.begin();
bool isAvailable = false;
pocCycle = 1 << (slice->getSPS()->getBitsForPOC());
while (iterPic != rcListPic.end())
rpcPic = *(iterPic++);
if (rpcPic->layerId == pic->layerId)
#if JVET_S0045_SIGN
if (!rpl0->isRefPicLongterm(ii) && rpcPic->referenced
&& rpcPic->getPOC() == slice->getPOC() + rpl0->getRefPicIdentifier(ii)
&& !slice->isPocRestrictedByDRAP(rpcPic->getPOC(), rpcPic->precedingDRAP))
#else
if (!rpl0->isRefPicLongterm(ii) && rpcPic->referenced && rpcPic->getPOC() == slice->getPOC() - rpl0->getRefPicIdentifier(ii) && !slice->isPocRestrictedByDRAP(rpcPic->getPOC(), rpcPic->precedingDRAP))
{
isAvailable = true;
break;
}
else if (rpl0->isRefPicLongterm(ii) && rpcPic->referenced && (rpcPic->getPOC() & (pocCycle - 1)) == rpl0->getRefPicIdentifier(ii) && !slice->isPocRestrictedByDRAP(rpcPic->getPOC(), rpcPic->precedingDRAP))
{
isAvailable = true;
break;
}
if (isAvailable)
{
pLocalRPL0->setRefPicIdentifier(refPicIdxL0, rpl0->getRefPicIdentifier(ii), rpl0->isRefPicLongterm(ii), false, NOT_VALID);
refPicIdxL0++;
numOfSTRPL0 = numOfSTRPL0 + ((rpl0->isRefPicLongterm(ii)) ? 0 : 1);
numOfLTRPL0 += (rpl0->isRefPicLongterm(ii) && !rpl0->isInterLayerRefPic(ii)) ? 1 : 0;
isAvailable = false;
}
}
}
// inter-layer reference pictures are added to the end of the reference picture list
if (layerIdx && vps && !vps->getAllIndependentLayersFlag() && isInterLayerPredAllowed)
{
numOfRefPic = rpl0->getNumberOfInterLayerPictures() ? rpl0->getNumberOfInterLayerPictures() : m_pcEncLib->getNumRefLayers( layerIdx );
for( int ii = 0; ii < numOfRefPic; ii++ )
{
// loop through all pictures in the reference picture buffer
PicList::iterator iterPic = rcListPic.begin();
Vadim Seregin
committed
while( iterPic != rcListPic.end() && ii < numOfRefPic )
{
rpcPic = *( iterPic++ );
int refLayerIdx = vps->getGeneralLayerIdx( rpcPic->layerId );

Karsten Suehring
committed
if (rpcPic->referenced && rpcPic->getPOC() == pic->getPOC() && vps->getDirectRefLayerFlag(layerIdx, refLayerIdx)
&& xCheckMaxTidILRefPics(rpcPic, slice->isIRAP()) )
pLocalRPL0->setRefPicIdentifier( refPicIdxL0, 0, true, true, vps->getInterLayerRefIdc( layerIdx, refLayerIdx ) );
refPicIdxL0++;
numOfILRPL0++;
Vadim Seregin
committed
ii++;
6841
6842
6843
6844
6845
6846
6847
6848
6849
6850
6851
6852
6853
6854
6855
6856
6857
6858
6859
6860
6861
6862
6863
}
}
}
}
if( slice->getEnableDRAPSEI() )
{
pLocalRPL0->setNumberOfShorttermPictures( numOfSTRPL0 );
pLocalRPL0->setNumberOfLongtermPictures( numOfLTRPL0 );
pLocalRPL0->setNumberOfInterLayerPictures( numOfILRPL0 );
if( !slice->isIRAP() && !slice->isPOCInRefPicList( pLocalRPL0, slice->getAssociatedIRAPPOC() ) )
{
if( slice->getUseLTforDRAP() && !slice->isPOCInRefPicList( rpl1, slice->getAssociatedIRAPPOC() ) )
{
// Adding associated IRAP as longterm picture
pLocalRPL0->setRefPicIdentifier( refPicIdxL0, slice->getAssociatedIRAPPOC(), true, false, 0 );
refPicIdxL0++;
numOfLTRPL0++;
}
else
{
// Adding associated IRAP as shortterm picture
#if JVET_S0045_SIGN
pLocalRPL0->setRefPicIdentifier(refPicIdxL0, slice->getAssociatedIRAPPOC() - slice->getPOC(), false, false, 0);
#else
pLocalRPL0->setRefPicIdentifier( refPicIdxL0, slice->getPOC() - slice->getAssociatedIRAPPOC(), false, false, 0 );
refPicIdxL0++;
numOfSTRPL0++;
}
}
}
ReferencePictureList* pLocalRPL1 = slice->getLocalRPL1();
*pLocalRPL1 = ReferencePictureList( slice->getSPS()->getInterLayerPresentFlag() );
uint32_t numOfSTRPL1 = 0;
uint32_t numOfLTRPL1 = 0;
uint32_t numOfILRPL1 = 0;
numOfRefPic = rpl1->getNumberOfShorttermPictures() + rpl1->getNumberOfLongtermPictures();
uint32_t refPicIdxL1 = 0;
if (isIntraLayerPredAllowed)
for (int ii = 0; ii < numOfRefPic; ii++)
// loop through all pictures in the reference picture buffer
PicList::iterator iterPic = rcListPic.begin();
bool isAvailable = false;
pocCycle = 1 << (slice->getSPS()->getBitsForPOC());
while (iterPic != rcListPic.end())
rpcPic = *(iterPic++);
if (rpcPic->layerId == pic->layerId)
#if JVET_S0045_SIGN
if (!rpl1->isRefPicLongterm(ii) && rpcPic->referenced
&& rpcPic->getPOC() == slice->getPOC() + rpl1->getRefPicIdentifier(ii)
&& !slice->isPocRestrictedByDRAP(rpcPic->getPOC(), rpcPic->precedingDRAP))
#else
if (!rpl1->isRefPicLongterm(ii) && rpcPic->referenced && rpcPic->getPOC() == slice->getPOC() - rpl1->getRefPicIdentifier(ii) && !slice->isPocRestrictedByDRAP(rpcPic->getPOC(), rpcPic->precedingDRAP))
{
isAvailable = true;
break;
}
else if (rpl1->isRefPicLongterm(ii) && rpcPic->referenced && (rpcPic->getPOC() & (pocCycle - 1)) == rpl1->getRefPicIdentifier(ii) && !slice->isPocRestrictedByDRAP(rpcPic->getPOC(), rpcPic->precedingDRAP))
{
isAvailable = true;
break;
}
if (isAvailable)
{
pLocalRPL1->setRefPicIdentifier(refPicIdxL1, rpl1->getRefPicIdentifier(ii), rpl1->isRefPicLongterm(ii), false, NOT_VALID);
refPicIdxL1++;
numOfSTRPL1 = numOfSTRPL1 + ((rpl1->isRefPicLongterm(ii)) ? 0 : 1);
numOfLTRPL1 += (rpl1->isRefPicLongterm(ii) && !rpl1->isInterLayerRefPic(ii)) ? 1 : 0;
isAvailable = false;
}
// inter-layer reference pictures are added to the end of the reference picture list
if (layerIdx && vps && !vps->getAllIndependentLayersFlag() && isInterLayerPredAllowed)
{
numOfRefPic = rpl1->getNumberOfInterLayerPictures() ? rpl1->getNumberOfInterLayerPictures() : m_pcEncLib->getNumRefLayers( layerIdx );
for( int ii = 0; ii < numOfRefPic; ii++ )
{
// loop through all pictures in the reference picture buffer
PicList::iterator iterPic = rcListPic.begin();
Vadim Seregin
committed
while( iterPic != rcListPic.end() && ii < numOfRefPic )
{
rpcPic = *( iterPic++ );
int refLayerIdx = vps->getGeneralLayerIdx( rpcPic->layerId );

Karsten Suehring
committed
if (rpcPic->referenced && rpcPic->getPOC() == pic->getPOC() && vps->getDirectRefLayerFlag(layerIdx, refLayerIdx)
&& xCheckMaxTidILRefPics( rpcPic, slice->isIRAP() ) )
{
pLocalRPL1->setRefPicIdentifier( refPicIdxL1, 0, true, true, vps->getInterLayerRefIdc( layerIdx, refLayerIdx ) );
refPicIdxL1++;
numOfILRPL1++;
Vadim Seregin
committed
ii++;
6949
6950
6951
6952
6953
6954
6955
6956
6957
6958
6959
6960
6961
6962
6963
6964
6965
6966
6967
6968
6969
6970
6971
6972
6973
6974
6975
6976
6977
6978
6979
6980
6981
6982
6983
6984
6985
6986
6987
6988
6989
6990
6991
6992
6993
6994
6995
6996
6997
}
}
}
}
//Copy from L1 if we have less than active ref pic
int numOfNeedToFill = rpl0->getNumberOfActivePictures() - (numOfLTRPL0 + numOfSTRPL0);
bool isDisallowMixedRefPic = ( slice->getSPS()->getAllActiveRplEntriesHasSameSignFlag() ) ? true : false;
int originalL0StrpNum = numOfSTRPL0;
int originalL0LtrpNum = numOfLTRPL0;
int originalL0IlrpNum = numOfILRPL0;
for( int ii = 0; numOfNeedToFill > 0 && ii < ( pLocalRPL1->getNumberOfLongtermPictures() + pLocalRPL1->getNumberOfShorttermPictures() + pLocalRPL1->getNumberOfInterLayerPictures() ); ii++ )
{
if( ii <= ( numOfLTRPL1 + numOfSTRPL1 + numOfILRPL1 - 1 ) )
{
//Make sure this copy is not already in L0
bool canIncludeThis = true;
for( int jj = 0; jj < refPicIdxL0; jj++ )
{
if( ( pLocalRPL1->getRefPicIdentifier( ii ) == pLocalRPL0->getRefPicIdentifier( jj ) ) && ( pLocalRPL1->isRefPicLongterm( ii ) == pLocalRPL0->isRefPicLongterm( jj ) ) && pLocalRPL1->getInterLayerRefPicIdx( ii ) == pLocalRPL0->getInterLayerRefPicIdx( jj ) )
{
canIncludeThis = false;
}
bool sameSign = ( pLocalRPL1->getRefPicIdentifier( ii ) > 0 ) == ( pLocalRPL0->getRefPicIdentifier( 0 ) > 0 );
if( isDisallowMixedRefPic && canIncludeThis && !pLocalRPL1->isRefPicLongterm( ii ) && !sameSign )
{
canIncludeThis = false;
}
}
if( canIncludeThis )
{
pLocalRPL0->setRefPicIdentifier( refPicIdxL0, pLocalRPL1->getRefPicIdentifier( ii ), pLocalRPL1->isRefPicLongterm( ii ), pLocalRPL1->isInterLayerRefPic( ii ), pLocalRPL1->getInterLayerRefPicIdx( ii ) );
refPicIdxL0++;
numOfSTRPL0 = numOfSTRPL0 + ( ( pLocalRPL1->isRefPicLongterm( ii ) ) ? 0 : 1 );
numOfLTRPL0 += ( pLocalRPL1->isRefPicLongterm( ii ) && !pLocalRPL1->isInterLayerRefPic( ii ) ) ? 1 : 0;
numOfILRPL0 += pLocalRPL1->isInterLayerRefPic( ii ) ? 1 : 0;
numOfNeedToFill--;
}
}
}
pLocalRPL0->setNumberOfLongtermPictures( numOfLTRPL0 );
pLocalRPL0->setNumberOfShorttermPictures( numOfSTRPL0 );
pLocalRPL0->setNumberOfInterLayerPictures( numOfILRPL0 );
int numPics = numOfLTRPL0 + numOfSTRPL0;
pLocalRPL0->setNumberOfActivePictures( ( numPics < rpl0->getNumberOfActivePictures() ? numPics : rpl0->getNumberOfActivePictures() ) + numOfILRPL0 );
Zhipin Deng
committed
pLocalRPL0->setLtrpInSliceHeaderFlag( 1 );
slice->setRPL0idx( -1 );
slice->setRPL0( pLocalRPL0 );