source: 3DVCSoftware/branches/HTM-13.1-dev2-Sony/source/Lib/TLibDecoder/TDecTop.cpp @ 1342

Last change on this file since 1342 was 1157, checked in by sony, 10 years ago

Added macro SONY_MV_V_CONST_C0078
for disparity vector constraint control under MV-HEVC setting

ohji.nakagami@…

  • Property svn:eol-style set to native
File size: 55.6 KB
Line 
1/* The copyright in this software is being made available under the BSD
2 * License, included below. This software may be subject to other third party
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4 * granted under this license. 
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6* Copyright (c) 2010-2014, ITU/ISO/IEC
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32 */
33
34/** \file     TDecTop.cpp
35    \brief    decoder class
36*/
37
38#include "NALread.h"
39#include "TDecTop.h"
40
41#if H_MV
42ParameterSetManagerDecoder TDecTop::m_parameterSetManagerDecoder;
43#endif
44//! \ingroup TLibDecoder
45//! \{
46
47#if H_3D
48CamParsCollector::CamParsCollector()
49: m_bInitialized( false )
50{
51  m_aaiCodedOffset         = new Int* [ MAX_NUM_LAYERS ];
52  m_aaiCodedScale          = new Int* [ MAX_NUM_LAYERS ];
53  for( UInt uiId = 0; uiId < MAX_NUM_LAYERS; uiId++ )
54  {
55    m_aaiCodedOffset      [ uiId ] = new Int [ MAX_NUM_LAYERS ];
56    m_aaiCodedScale       [ uiId ] = new Int [ MAX_NUM_LAYERS ];
57  }
58
59  xCreateLUTs( (UInt)MAX_NUM_LAYERS, (UInt)MAX_NUM_LAYERS, m_adBaseViewShiftLUT, m_aiBaseViewShiftLUT );
60  m_iLog2Precision   = LOG2_DISP_PREC_LUT;
61  m_uiBitDepthForLUT = 8; // fixed
62  m_receivedIdc = NULL; 
63  m_vps         = NULL; 
64}
65
66CamParsCollector::~CamParsCollector()
67{
68  for( UInt uiId = 0; uiId < MAX_NUM_LAYERS; uiId++ )
69  {
70    delete [] m_aaiCodedOffset      [ uiId ];
71    delete [] m_aaiCodedScale       [ uiId ];
72  }
73  delete [] m_aaiCodedOffset;
74  delete [] m_aaiCodedScale;
75
76  xDeleteArray( m_adBaseViewShiftLUT, MAX_NUM_LAYERS, MAX_NUM_LAYERS, 2 );
77  xDeleteArray( m_aiBaseViewShiftLUT, MAX_NUM_LAYERS, MAX_NUM_LAYERS, 2 );
78  xDeleteArray( m_receivedIdc, m_uiMaxViewIndex + 1 );
79}
80
81
82Void
83CamParsCollector::init( FILE* pCodedScaleOffsetFile, TComVPS* vps)
84{
85  assert( !isInitialized() ); // Only one initialization currently supported
86  m_bInitialized            = true;
87  m_vps                     = vps; 
88  m_bCamParsVaryOverTime    = false; 
89  m_pCodedScaleOffsetFile   = pCodedScaleOffsetFile;
90  m_lastPoc                 = -1;   
91  m_firstReceivedPoc        = -2; 
92
93  m_uiMaxViewIndex            = -1; 
94  for (Int i = 0; i <= vps->getMaxLayersMinus1(); i++)
95  {
96    Int curViewIdx = m_vps->getViewIndex( m_vps->getLayerIdInNuh( i )); 
97    m_bCamParsVaryOverTime = m_bCamParsVaryOverTime || vps->hasCamParInSliceHeader( curViewIdx );
98    m_uiMaxViewIndex = std::max( m_uiMaxViewIndex, curViewIdx  ) ; 
99  }
100
101  assert( m_receivedIdc == NULL ); 
102  m_receivedIdc = new Int*[ m_uiMaxViewIndex + 1]; 
103  for (Int i = 0; i <= m_uiMaxViewIndex; i++)
104  {
105    m_receivedIdc[i] = new Int[ m_uiMaxViewIndex + 1 ]; 
106  }
107
108  xResetReceivedIdc( true ); 
109
110  for (Int viewIndex = 0; viewIndex <= m_uiMaxViewIndex ; viewIndex++ )
111  {
112    if (m_vps->getCamParPresent( viewIndex ) )
113    {   
114      if( !m_vps->hasCamParInSliceHeader( viewIndex ) ) 
115      {
116        for (Int baseViewIndex = 0; baseViewIndex < viewIndex ; baseViewIndex++ )
117        { 
118          m_receivedIdc   [ baseViewIndex ][ viewIndex ] = -1; 
119          m_aaiCodedScale [ baseViewIndex ][ viewIndex ] = m_vps->getCodedScale    (viewIndex) [ baseViewIndex ];
120          m_aaiCodedOffset[ baseViewIndex ][ viewIndex ] = m_vps->getCodedOffset   (viewIndex) [ baseViewIndex ];
121
122          m_receivedIdc   [ viewIndex ][ baseViewIndex ] = -1; 
123          m_aaiCodedScale [ viewIndex ][ baseViewIndex ] = m_vps->getInvCodedScale (viewIndex) [ baseViewIndex ];
124          m_aaiCodedOffset[ viewIndex ][ baseViewIndex ] = m_vps->getInvCodedOffset(viewIndex) [ baseViewIndex ];
125          xInitLUTs( baseViewIndex, viewIndex, m_aaiCodedScale[ baseViewIndex ][ viewIndex ], m_aaiCodedOffset[ baseViewIndex ][ viewIndex ], m_adBaseViewShiftLUT, m_aiBaseViewShiftLUT );
126          xInitLUTs( viewIndex, baseViewIndex, m_aaiCodedScale[ viewIndex ][ baseViewIndex ], m_aaiCodedOffset[ viewIndex ][ baseViewIndex ], m_adBaseViewShiftLUT, m_aiBaseViewShiftLUT );
127        }
128      }
129    }
130  }
131}
132
133Void
134CamParsCollector::xResetReceivedIdc( Bool overWriteFlag )
135{
136  for (Int i = 0; i <= m_uiMaxViewIndex; i++)
137  { 
138    for (Int j = 0; j <= m_uiMaxViewIndex; j++)
139    {
140      if ( overWriteFlag ||  ( m_receivedIdc[i][j] != -1 ) )
141      {
142        m_receivedIdc[i][j] = 0; 
143      }     
144    }
145  }
146}
147
148
149Void
150CamParsCollector::xCreateLUTs( UInt uiNumberSourceViews, UInt uiNumberTargetViews, Double****& radLUT, Int****& raiLUT)
151{
152
153  uiNumberSourceViews = std::max( (UInt) 1, uiNumberSourceViews );
154  uiNumberTargetViews = std::max( (UInt) 1, uiNumberTargetViews );
155
156  radLUT         = new Double***[ uiNumberSourceViews ];
157  raiLUT         = new Int   ***[ uiNumberSourceViews ];
158
159  for( UInt uiSourceView = 0; uiSourceView < uiNumberSourceViews; uiSourceView++ )
160  {
161    radLUT        [ uiSourceView ] = new Double**[ uiNumberTargetViews ];
162    raiLUT        [ uiSourceView ] = new Int   **[ uiNumberTargetViews ];
163
164    for( UInt uiTargetView = 0; uiTargetView < uiNumberTargetViews; uiTargetView++ )
165    {
166      radLUT        [ uiSourceView ][ uiTargetView ]      = new Double*[ 2 ];
167      radLUT        [ uiSourceView ][ uiTargetView ][ 0 ] = new Double [ 257 ];
168      radLUT        [ uiSourceView ][ uiTargetView ][ 1 ] = new Double [ 257 ];
169
170      raiLUT        [ uiSourceView ][ uiTargetView ]      = new Int*   [ 2 ];
171      raiLUT        [ uiSourceView ][ uiTargetView ][ 0 ] = new Int    [ 257 ];
172      raiLUT        [ uiSourceView ][ uiTargetView ][ 1 ] = new Int    [ 257 ];
173    }
174  }
175}
176
177Void
178  CamParsCollector::xInitLUTs( UInt uiSourceView, UInt uiTargetView, Int iScale, Int iOffset, Double****& radLUT, Int****& raiLUT)
179{
180  Int     iLog2DivLuma   = m_uiBitDepthForLUT + m_vps->getCamParPrecision() + 1 - m_iLog2Precision;   AOF( iLog2DivLuma > 0 );
181  Int     iLog2DivChroma = iLog2DivLuma + 1;
182
183  iOffset <<= m_uiBitDepthForLUT;
184
185  Double dScale  = (Double) iScale  / (( Double ) ( 1 << iLog2DivLuma ));
186  Double dOffset = (Double) iOffset / (( Double ) ( 1 << iLog2DivLuma ));
187
188  // offsets including rounding offsets
189  Int64 iOffsetLuma   = iOffset + ( ( 1 << iLog2DivLuma   ) >> 1 );
190  Int64 iOffsetChroma = iOffset + ( ( 1 << iLog2DivChroma ) >> 1 );
191
192
193  for( UInt uiDepthValue = 0; uiDepthValue < 256; uiDepthValue++ )
194  {
195
196    // real-valued look-up tables
197    Double  dShiftLuma      = ( (Double)uiDepthValue * dScale + dOffset ) * Double( 1 << m_iLog2Precision );
198    Double  dShiftChroma    = dShiftLuma / 2;
199    radLUT[ uiSourceView ][ uiTargetView ][ 0 ][ uiDepthValue ] = dShiftLuma;
200    radLUT[ uiSourceView ][ uiTargetView ][ 1 ][ uiDepthValue ] = dShiftChroma;
201
202    // integer-valued look-up tables
203    Int64   iTempScale      = (Int64)uiDepthValue * iScale;
204    Int64   iShiftLuma      = ( iTempScale + iOffsetLuma   ) >> iLog2DivLuma;
205    Int64   iShiftChroma    = ( iTempScale + iOffsetChroma ) >> iLog2DivChroma;
206    raiLUT[ uiSourceView ][ uiTargetView ][ 0 ][ uiDepthValue ] = (Int)iShiftLuma;
207    raiLUT[ uiSourceView ][ uiTargetView ][ 1 ][ uiDepthValue ] = (Int)iShiftChroma;
208  }
209
210  radLUT[ uiSourceView ][ uiTargetView ][ 0 ][ 256 ] = radLUT[ uiSourceView ][ uiTargetView ][ 0 ][ 255 ];
211  radLUT[ uiSourceView ][ uiTargetView ][ 1 ][ 256 ] = radLUT[ uiSourceView ][ uiTargetView ][ 1 ][ 255 ];
212  raiLUT[ uiSourceView ][ uiTargetView ][ 0 ][ 256 ] = raiLUT[ uiSourceView ][ uiTargetView ][ 0 ][ 255 ];
213  raiLUT[ uiSourceView ][ uiTargetView ][ 1 ][ 256 ] = raiLUT[ uiSourceView ][ uiTargetView ][ 1 ][ 255 ];
214}
215
216Void
217CamParsCollector::uninit()
218{
219  m_bInitialized = false;
220}
221
222Void
223CamParsCollector::setSlice( TComSlice* pcSlice )
224{
225  if( pcSlice == 0 )
226  {
227    xOutput( m_lastPoc );
228    return;
229  }
230
231#if !H_3D_FCO
232  if ( pcSlice->getIsDepth())
233  {
234    return;
235  }
236#endif
237
238  Int curPoc = pcSlice->getPOC();
239  if( m_firstReceivedPoc == -2 )
240  {
241    m_firstReceivedPoc = curPoc; 
242  }
243
244  Bool newPocFlag = ( m_lastPoc != curPoc ); 
245
246  if ( newPocFlag )
247  {   
248    if( m_lastPoc != -1 )
249    {
250      xOutput( m_lastPoc );
251    }
252
253    xResetReceivedIdc( false ); 
254    m_lastPoc = pcSlice->getPOC();
255  }
256
257  UInt uiViewIndex          = pcSlice->getViewIndex(); 
258  if( m_vps->getCamParPresent( uiViewIndex ) )
259  {   
260    if( m_vps->hasCamParInSliceHeader( uiViewIndex ) ) // check consistency of slice parameters here
261    {   
262      for( UInt uiBaseViewIndex = 0; uiBaseViewIndex < uiViewIndex; uiBaseViewIndex++ )
263      {       
264        if ( m_receivedIdc[ uiViewIndex ][ uiBaseViewIndex ] != 0 )
265        {     
266          AOF( m_aaiCodedScale [ uiViewIndex ][ uiBaseViewIndex ] == pcSlice->getInvCodedScale () [ uiBaseViewIndex ] );
267          AOF( m_aaiCodedOffset[ uiViewIndex ][ uiBaseViewIndex ] == pcSlice->getInvCodedOffset() [ uiBaseViewIndex ] );
268        }
269        else
270        {         
271          m_receivedIdc   [ uiViewIndex ][ uiBaseViewIndex ]  = 1; 
272          m_aaiCodedScale [ uiViewIndex ][ uiBaseViewIndex ]  = pcSlice->getInvCodedScale () [ uiBaseViewIndex ];
273          m_aaiCodedOffset[ uiViewIndex ][ uiBaseViewIndex ]  = pcSlice->getInvCodedOffset() [ uiBaseViewIndex ];
274          xInitLUTs( uiViewIndex, uiBaseViewIndex, m_aaiCodedScale[ uiViewIndex ][ uiBaseViewIndex ], m_aaiCodedOffset[ uiViewIndex ][ uiBaseViewIndex ], m_adBaseViewShiftLUT, m_aiBaseViewShiftLUT);
275        }
276        if ( m_receivedIdc[ uiBaseViewIndex ][ uiViewIndex ] != 0 )
277        {     
278          AOF( m_aaiCodedScale [ uiBaseViewIndex ][ uiViewIndex ] == pcSlice->getCodedScale    () [ uiBaseViewIndex ] );
279          AOF( m_aaiCodedOffset[ uiBaseViewIndex ][ uiViewIndex ] == pcSlice->getCodedOffset   () [ uiBaseViewIndex ] );
280        }
281        else
282        {       
283          m_receivedIdc   [ uiBaseViewIndex ][ uiViewIndex ]  = 1; 
284          m_aaiCodedScale [ uiBaseViewIndex ][ uiViewIndex ]  = pcSlice->getCodedScale    () [ uiBaseViewIndex ];
285          m_aaiCodedOffset[ uiBaseViewIndex ][ uiViewIndex ]  = pcSlice->getCodedOffset   () [ uiBaseViewIndex ];
286          xInitLUTs( uiBaseViewIndex, uiViewIndex, m_aaiCodedScale[ uiBaseViewIndex ][ uiViewIndex ], m_aaiCodedOffset[ uiBaseViewIndex ][ uiViewIndex ], m_adBaseViewShiftLUT, m_aiBaseViewShiftLUT);
287        }
288      }
289    }
290  }
291}
292
293
294#if H_3D_IV_MERGE
295Void
296CamParsCollector::copyCamParamForSlice( TComSlice* pcSlice )
297{
298  if( m_bCamParsVaryOverTime )
299  {
300    pcSlice->setCamparaSlice( m_aaiCodedScale, m_aaiCodedOffset );
301  }
302}
303#endif
304
305
306Void
307CamParsCollector::xOutput( Int iPOC )
308{
309  if( m_pCodedScaleOffsetFile )
310  {
311    if( iPOC == m_firstReceivedPoc )
312    {
313      fprintf( m_pCodedScaleOffsetFile, "#  ViewIndex       ViewId\n" );
314      fprintf( m_pCodedScaleOffsetFile, "#----------- ------------\n" );
315      for( UInt uiViewIndex = 0; uiViewIndex <= m_uiMaxViewIndex; uiViewIndex++ )
316      {
317        fprintf( m_pCodedScaleOffsetFile, "%12d %12d\n", uiViewIndex, m_vps->getViewIdVal( uiViewIndex ) );
318      }
319      fprintf( m_pCodedScaleOffsetFile, "\n\n");
320      fprintf( m_pCodedScaleOffsetFile, "# StartFrame     EndFrame   TargetView     BaseView   CodedScale  CodedOffset    Precision\n" );
321      fprintf( m_pCodedScaleOffsetFile, "#----------- ------------ ------------ ------------ ------------ ------------ ------------\n" );
322    }
323    if( iPOC == m_firstReceivedPoc || m_bCamParsVaryOverTime  )
324    {
325      Int iS = iPOC;
326      Int iE = ( m_bCamParsVaryOverTime ? iPOC : ~( 1 << 31 ) );
327      for( UInt uiViewIndex = 0; uiViewIndex <= m_uiMaxViewIndex; uiViewIndex++ )
328      {
329        for( UInt uiBaseIndex = 0; uiBaseIndex <= m_uiMaxViewIndex; uiBaseIndex++ )
330        {
331          if( uiViewIndex != uiBaseIndex )
332          {
333            if ( m_receivedIdc[uiBaseIndex][uiViewIndex] != 0 )
334            {           
335              fprintf( m_pCodedScaleOffsetFile, "%12d %12d %12d %12d %12d %12d %12d\n",
336                iS, iE, uiViewIndex, uiBaseIndex, m_aaiCodedScale[ uiBaseIndex ][ uiViewIndex ], m_aaiCodedOffset[ uiBaseIndex ][ uiViewIndex ], m_vps->getCamParPrecision() );
337            }           
338          }
339        }
340      }
341    }
342  }
343}
344#endif
345TDecTop::TDecTop()
346{
347  m_pcPic = 0;
348  m_iMaxRefPicNum = 0;
349#if ENC_DEC_TRACE
350#if H_MV
351  if ( g_hTrace == NULL )
352  {
353#endif
354  g_hTrace = fopen( "TraceDec.txt", "wb" );
355  g_bJustDoIt = g_bEncDecTraceDisable;
356  g_nSymbolCounter = 0;
357#if H_MV
358  }
359#endif
360#endif
361  m_associatedIRAPType = NAL_UNIT_INVALID;
362  m_pocCRA = 0;
363  m_pocRandomAccess = MAX_INT; 
364  m_prevPOC                = MAX_INT;
365  m_bFirstSliceInPicture    = true;
366  m_bFirstSliceInSequence   = true;
367  m_prevSliceSkipped = false;
368  m_skippedPOC = 0;
369#if SETTING_NO_OUT_PIC_PRIOR
370  m_bFirstSliceInBitstream  = true;
371  m_lastPOCNoOutputPriorPics = -1;
372  m_craNoRaslOutputFlag = false;
373  m_isNoOutputPriorPics = false;
374#endif
375#if H_MV
376  m_isLastNALWasEos = false;
377  m_layerId = 0;
378  m_viewId = 0;
379#if H_3D
380  m_viewIndex = 0; 
381  m_isDepth = false;
382  m_pcCamParsCollector = 0;
383#endif
384#if H_MV
385  m_targetOptLayerSetIdx = -1; 
386#endif
387#endif
388}
389
390TDecTop::~TDecTop()
391{
392#if ENC_DEC_TRACE
393  fclose( g_hTrace );
394#endif
395}
396
397Void TDecTop::create()
398{
399  m_cGopDecoder.create();
400  m_apcSlicePilot = new TComSlice;
401  m_uiSliceIdx = 0;
402}
403
404Void TDecTop::destroy()
405{
406  m_cGopDecoder.destroy();
407 
408  delete m_apcSlicePilot;
409  m_apcSlicePilot = NULL;
410 
411  m_cSliceDecoder.destroy();
412}
413
414Void TDecTop::init()
415{
416  // initialize ROM
417#if !H_MV
418  initROM();
419#endif
420  m_cGopDecoder.init( &m_cEntropyDecoder, &m_cSbacDecoder, &m_cBinCABAC, &m_cCavlcDecoder, &m_cSliceDecoder, &m_cLoopFilter, &m_cSAO );
421  m_cSliceDecoder.init( &m_cEntropyDecoder, &m_cCuDecoder );
422  m_cEntropyDecoder.init(&m_cPrediction);
423}
424
425Void TDecTop::deletePicBuffer ( )
426{
427  TComList<TComPic*>::iterator  iterPic   = m_cListPic.begin();
428  Int iSize = Int( m_cListPic.size() );
429 
430  for (Int i = 0; i < iSize; i++ )
431  {
432    TComPic* pcPic = *(iterPic++);
433#if H_MV
434    if( pcPic )
435    {
436#endif
437    pcPic->destroy();
438   
439    delete pcPic;
440    pcPic = NULL;
441#if H_MV
442    }
443#endif
444  }
445 
446  m_cSAO.destroy();
447 
448  m_cLoopFilter.        destroy();
449 
450#if !H_MV
451  // destroy ROM
452  destroyROM();
453#endif
454}
455
456Void TDecTop::xGetNewPicBuffer ( TComSlice* pcSlice, TComPic*& rpcPic )
457{
458  Int  numReorderPics[MAX_TLAYER];
459  Window &conformanceWindow = pcSlice->getSPS()->getConformanceWindow();
460  Window defaultDisplayWindow = pcSlice->getSPS()->getVuiParametersPresentFlag() ? pcSlice->getSPS()->getVuiParameters()->getDefaultDisplayWindow() : Window();
461
462#if H_MV
463    assert( conformanceWindow   .getScaledFlag() ); 
464    assert( defaultDisplayWindow.getScaledFlag() );
465#endif
466  for( Int temporalLayer=0; temporalLayer < MAX_TLAYER; temporalLayer++) 
467  {
468#if H_MV
469    numReorderPics[temporalLayer] = ( getLayerId() == 0 ) ? pcSlice->getSPS()->getNumReorderPics(temporalLayer) : pcSlice->getVPS()->getNumReorderPics(temporalLayer);
470#else
471    numReorderPics[temporalLayer] = pcSlice->getSPS()->getNumReorderPics(temporalLayer);
472#endif
473  }
474#if H_MV
475  if ( getLayerId() == 0 )
476  { 
477    m_iMaxRefPicNum = pcSlice->getSPS()->getMaxDecPicBuffering(pcSlice->getTLayer());
478  }
479  else
480  {
481    m_iMaxRefPicNum = pcSlice->getVPS()->getMaxDecPicBuffering(pcSlice->getTLayer());
482#if H_MV_HLS7_GEN
483    TComVPS* vps         = pcSlice->getVPS();
484    TComDpbSize* dpbSize = vps->getDpbSize(); 
485    Int lsIdx            = vps->olsIdxToLsIdx( getTargetOutputLayerSetIdx()); // Is this correct, seems to be missing in spec?
486    Int layerIdx         = vps->getIdxInLayerSet     ( lsIdx, getLayerId() ); 
487    Int subDpbIdx        = dpbSize->getSubDpbAssigned( lsIdx, layerIdx ); 
488    m_iMaxRefPicNum      = dpbSize->getMaxVpsDecPicBufferingMinus1(getTargetOutputLayerSetIdx(), subDpbIdx , vps->getSubLayersVpsMaxMinus1( vps->getLayerIdInVps( getLayerId() ) ) + 1 ) + 1 ; 
489#endif   
490  }
491#else
492  m_iMaxRefPicNum = pcSlice->getSPS()->getMaxDecPicBuffering(pcSlice->getTLayer());     // m_uiMaxDecPicBuffering has the space for the picture currently being decoded
493#endif
494  if (m_cListPic.size() < (UInt)m_iMaxRefPicNum)
495  {
496    rpcPic = new TComPic();
497   
498    rpcPic->create ( pcSlice->getSPS()->getPicWidthInLumaSamples(), pcSlice->getSPS()->getPicHeightInLumaSamples(), g_uiMaxCUWidth, g_uiMaxCUHeight, g_uiMaxCUDepth, 
499                     conformanceWindow, defaultDisplayWindow, numReorderPics, true);
500    m_cListPic.pushBack( rpcPic );
501   
502    return;
503  }
504 
505  Bool bBufferIsAvailable = false;
506  TComList<TComPic*>::iterator  iterPic   = m_cListPic.begin();
507  while (iterPic != m_cListPic.end())
508  {
509    rpcPic = *(iterPic++);
510    if ( rpcPic->getReconMark() == false && rpcPic->getOutputMark() == false)
511    {
512      rpcPic->setOutputMark(false);
513#if H_MV
514      rpcPic->setPicOutputFlag(false); 
515#endif
516      bBufferIsAvailable = true;
517      break;
518    }
519
520    if ( rpcPic->getSlice( 0 )->isReferenced() == false  && rpcPic->getOutputMark() == false)
521    {
522      rpcPic->setOutputMark(false);
523#if H_MV
524      rpcPic->setPicOutputFlag(false); 
525#endif
526      rpcPic->setReconMark( false );
527      rpcPic->getPicYuvRec()->setBorderExtension( false );
528      bBufferIsAvailable = true;
529      break;
530    }
531  }
532 
533  if ( !bBufferIsAvailable )
534  {
535    //There is no room for this picture, either because of faulty encoder or dropped NAL. Extend the buffer.
536    m_iMaxRefPicNum++;
537    rpcPic = new TComPic();
538    m_cListPic.pushBack( rpcPic );
539  }
540  rpcPic->destroy();
541  rpcPic->create ( pcSlice->getSPS()->getPicWidthInLumaSamples(), pcSlice->getSPS()->getPicHeightInLumaSamples(), g_uiMaxCUWidth, g_uiMaxCUHeight, g_uiMaxCUDepth,
542                   conformanceWindow, defaultDisplayWindow, numReorderPics, true);
543}
544
545#if H_MV
546Void TDecTop::endPicDecoding(Int& poc, TComList<TComPic*>*& rpcListPic, std::vector<Int>& targetDecLayerIdSet )
547#else
548Void TDecTop::executeLoopFilters(Int& poc, TComList<TComPic*>*& rpcListPic)
549#endif
550{
551  if (!m_pcPic)
552  {
553    /* nothing to deblock */
554    return;
555  }
556 
557  TComPic*&   pcPic         = m_pcPic;
558
559  // Execute Deblock + Cleanup
560
561  m_cGopDecoder.filterPicture(pcPic);
562
563  TComSlice::sortPicList( m_cListPic ); // sorting for application output
564  poc                 = pcPic->getSlice(m_uiSliceIdx-1)->getPOC();
565  rpcListPic          = &m_cListPic; 
566  m_cCuDecoder.destroy();       
567#if H_MV
568  TComSlice::markIvRefPicsAsShortTerm( m_refPicSetInterLayer0, m_refPicSetInterLayer1 ); 
569  TComSlice::markCurrPic( pcPic ); 
570#endif
571  m_bFirstSliceInPicture  = true;
572
573  return;
574}
575
576#if SETTING_NO_OUT_PIC_PRIOR
577Void TDecTop::checkNoOutputPriorPics (TComList<TComPic*>*& rpcListPic)
578{
579  if (!rpcListPic || !m_isNoOutputPriorPics) return;
580
581  TComList<TComPic*>::iterator  iterPic   = rpcListPic->begin();
582
583  while (iterPic != rpcListPic->end())
584  {
585    TComPic*& pcPicTmp = *(iterPic++);
586    if (m_lastPOCNoOutputPriorPics != pcPicTmp->getPOC())
587    {
588      pcPicTmp->setOutputMark(false);
589#if H_MV
590      pcPicTmp->setPicOutputFlag(false); 
591#endif
592    }
593  }
594}
595#endif
596
597Void TDecTop::xCreateLostPicture(Int iLostPoc) 
598{
599  printf("\ninserting lost poc : %d\n",iLostPoc);
600  TComSlice cFillSlice;
601  cFillSlice.setSPS( m_parameterSetManagerDecoder.getFirstSPS() );
602  cFillSlice.setPPS( m_parameterSetManagerDecoder.getFirstPPS() );
603  cFillSlice.initSlice();
604  TComPic *cFillPic;
605  xGetNewPicBuffer(&cFillSlice,cFillPic);
606  cFillPic->getSlice(0)->setSPS( m_parameterSetManagerDecoder.getFirstSPS() );
607  cFillPic->getSlice(0)->setPPS( m_parameterSetManagerDecoder.getFirstPPS() );
608  cFillPic->getSlice(0)->initSlice();
609 
610  TComList<TComPic*>::iterator iterPic = m_cListPic.begin();
611  Int closestPoc = 1000000;
612  while ( iterPic != m_cListPic.end())
613  {
614    TComPic * rpcPic = *(iterPic++);
615    if(abs(rpcPic->getPicSym()->getSlice(0)->getPOC() -iLostPoc)<closestPoc&&abs(rpcPic->getPicSym()->getSlice(0)->getPOC() -iLostPoc)!=0&&rpcPic->getPicSym()->getSlice(0)->getPOC()!=m_apcSlicePilot->getPOC())
616    {
617      closestPoc=abs(rpcPic->getPicSym()->getSlice(0)->getPOC() -iLostPoc);
618    }
619  }
620  iterPic = m_cListPic.begin();
621  while ( iterPic != m_cListPic.end())
622  {
623    TComPic *rpcPic = *(iterPic++);
624    if(abs(rpcPic->getPicSym()->getSlice(0)->getPOC() -iLostPoc)==closestPoc&&rpcPic->getPicSym()->getSlice(0)->getPOC()!=m_apcSlicePilot->getPOC())
625    {
626      printf("copying picture %d to %d (%d)\n",rpcPic->getPicSym()->getSlice(0)->getPOC() ,iLostPoc,m_apcSlicePilot->getPOC());
627      rpcPic->getPicYuvRec()->copyToPic(cFillPic->getPicYuvRec());
628      break;
629    }
630  }
631  cFillPic->setCurrSliceIdx(0);
632  for(Int i=0; i<cFillPic->getNumCUsInFrame(); i++) 
633  {
634    cFillPic->getCU(i)->initCU(cFillPic,i);
635  }
636  cFillPic->getSlice(0)->setReferenced(true);
637  cFillPic->getSlice(0)->setPOC(iLostPoc);
638  cFillPic->setReconMark(true);
639  cFillPic->setOutputMark(true);
640  if(m_pocRandomAccess == MAX_INT)
641  {
642    m_pocRandomAccess = iLostPoc;
643  }
644}
645
646
647Void TDecTop::xActivateParameterSets()
648{
649  m_parameterSetManagerDecoder.applyPrefetchedPS();
650 
651  TComPPS *pps = m_parameterSetManagerDecoder.getPPS(m_apcSlicePilot->getPPSId());
652  assert (pps != 0);
653
654  TComSPS *sps = m_parameterSetManagerDecoder.getSPS(pps->getSPSId());
655  assert (sps != 0);
656
657#if H_MV
658  TComVPS* vps = m_parameterSetManagerDecoder.getVPS(sps->getVPSId());
659  assert (vps != 0); 
660  if (!m_parameterSetManagerDecoder.activatePPS(m_apcSlicePilot->getPPSId(),m_apcSlicePilot->isIRAP(), m_layerId ) )
661#else
662  if (false == m_parameterSetManagerDecoder.activatePPS(m_apcSlicePilot->getPPSId(),m_apcSlicePilot->isIRAP()))
663#endif
664  {
665    printf ("Parameter set activation failed!");
666    assert (0);
667  }
668
669#if H_MV
670  sps->inferSpsMaxDecPicBufferingMinus1( vps, m_targetOptLayerSetIdx, getLayerId(), false ); 
671  // When the value of vps_num_rep_formats_minus1 in the active VPS is equal to 0
672  if ( vps->getVpsNumRepFormatsMinus1() == 0 )
673  {
674    //, it is a requirement of bitstream conformance that the value of update_rep_format_flag shall be equal to 0.
675    assert( sps->getUpdateRepFormatFlag() == false ); 
676  }
677  sps->checkRpsMaxNumPics( vps, getLayerId() ); 
678
679  if( sps->getLayerId() != 0 )
680  {
681    sps->inferSpsMaxSubLayersMinus1( true, vps ); 
682  }
683
684  // It is a requirement of bitstream conformance that, when the SPS is referred to by
685  // any current picture that belongs to an independent non-base layer, the value of
686  // MultiLayerExtSpsFlag derived from the SPS shall be equal to 0.
687
688  if ( m_layerId > 0 && vps->getNumRefLayers( m_layerId ) == 0 )
689  { 
690    assert( sps->getMultiLayerExtSpsFlag() == 0 ); 
691  }
692
693  if( sps->getMultiLayerExtSpsFlag() )
694  {
695    sps->setTemporalIdNestingFlag( (sps->getMaxTLayers() > 1) ? vps->getTemporalNestingFlag() : true );
696  }
697#endif
698
699  if( pps->getDependentSliceSegmentsEnabledFlag() )
700  {
701    Int NumCtx = pps->getEntropyCodingSyncEnabledFlag()?2:1;
702
703    if (m_cSliceDecoder.getCtxMemSize() != NumCtx)
704    {
705      m_cSliceDecoder.initCtxMem(NumCtx);
706      for ( UInt st = 0; st < NumCtx; st++ )
707      {
708        TDecSbac* ctx = NULL;
709        ctx = new TDecSbac;
710        ctx->init( &m_cBinCABAC );
711        m_cSliceDecoder.setCtxMem( ctx, st );
712      }
713    }
714  }
715
716  m_apcSlicePilot->setPPS(pps);
717  m_apcSlicePilot->setSPS(sps);
718#if H_MV
719  m_apcSlicePilot->setVPS(vps); 
720  // The nuh_layer_id value of the NAL unit containing the PPS that is activated for a layer layerA with nuh_layer_id equal to nuhLayerIdA shall be equal to 0, or nuhLayerIdA, or the nuh_layer_id of a direct or indirect reference layer of layerA.
721  assert( pps->getLayerId() == m_layerId || pps->getLayerId( ) == 0 || vps->getDependencyFlag( m_layerId, pps->getLayerId() ) );   
722  // The nuh_layer_id value of the NAL unit containing the SPS that is activated for a layer layerA with nuh_layer_id equal to nuhLayerIdA shall be equal to 0, or nuhLayerIdA, or the nuh_layer_id of a direct or indirect reference layer of layerA.
723  assert( sps->getLayerId() == m_layerId || sps->getLayerId( ) == 0 || vps->getDependencyFlag( m_layerId, sps->getLayerId() ) );
724  sps->inferRepFormat  ( vps , m_layerId ); 
725  sps->inferScalingList( m_parameterSetManagerDecoder.getActiveSPS( sps->getSpsScalingListRefLayerId() ) ); 
726
727#endif
728#if H_3D
729  m_apcSlicePilot->init3dToolParameters();
730#endif
731  pps->setSPS(sps);
732  pps->setNumSubstreams(pps->getEntropyCodingSyncEnabledFlag() ? ((sps->getPicHeightInLumaSamples() + sps->getMaxCUHeight() - 1) / sps->getMaxCUHeight()) * (pps->getNumTileColumnsMinus1() + 1) : 1);
733  pps->setMinCuDQPSize( sps->getMaxCUWidth() >> ( pps->getMaxCuDQPDepth()) );
734
735  g_bitDepthY     = sps->getBitDepthY();
736  g_bitDepthC     = sps->getBitDepthC();
737  g_uiMaxCUWidth  = sps->getMaxCUWidth();
738  g_uiMaxCUHeight = sps->getMaxCUHeight();
739  g_uiMaxCUDepth  = sps->getMaxCUDepth();
740  g_uiAddCUDepth  = max (0, sps->getLog2MinCodingBlockSize() - (Int)sps->getQuadtreeTULog2MinSize() );
741
742  for (Int i = 0; i < sps->getLog2DiffMaxMinCodingBlockSize(); i++)
743  {
744    sps->setAMPAcc( i, sps->getUseAMP() );
745  }
746
747  for (Int i = sps->getLog2DiffMaxMinCodingBlockSize(); i < sps->getMaxCUDepth(); i++)
748  {
749    sps->setAMPAcc( i, 0 );
750  }
751
752  m_cSAO.destroy();
753  m_cSAO.create( sps->getPicWidthInLumaSamples(), sps->getPicHeightInLumaSamples(), sps->getMaxCUWidth(), sps->getMaxCUHeight(), sps->getMaxCUDepth() );
754  m_cLoopFilter.create( sps->getMaxCUDepth() );
755}
756
757#if H_MV
758Bool TDecTop::xDecodeSlice(InputNALUnit &nalu, Int &iSkipFrame, Int iPOCLastDisplay, Bool newLayerFlag, Bool& sliceSkippedFlag  )
759{
760  assert( nalu.m_layerId == m_layerId ); 
761#else
762Bool TDecTop::xDecodeSlice(InputNALUnit &nalu, Int &iSkipFrame, Int iPOCLastDisplay )
763{
764#endif
765  TComPic*&   pcPic         = m_pcPic;
766  m_apcSlicePilot->initSlice();
767
768  if (m_bFirstSliceInPicture)
769  {
770    m_uiSliceIdx     = 0;
771  }
772  else
773  {
774    m_apcSlicePilot->copySliceInfo( pcPic->getPicSym()->getSlice(m_uiSliceIdx-1) );
775  }
776  m_apcSlicePilot->setSliceIdx(m_uiSliceIdx);
777
778  m_apcSlicePilot->setNalUnitType(nalu.m_nalUnitType);
779  Bool nonReferenceFlag = (m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_TRAIL_N ||
780                           m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_TSA_N   ||
781                           m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_STSA_N  ||
782                           m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_RADL_N  ||
783                           m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_RASL_N);
784  m_apcSlicePilot->setTemporalLayerNonReferenceFlag(nonReferenceFlag);
785 
786  m_apcSlicePilot->setReferenced(true); // Putting this as true ensures that picture is referenced the first time it is in an RPS
787  m_apcSlicePilot->setTLayerInfo(nalu.m_temporalId);
788
789#if H_MV
790  m_apcSlicePilot->setRefPicSetInterLayer( & m_refPicSetInterLayer0, &m_refPicSetInterLayer1 ); 
791  m_apcSlicePilot->setLayerId( nalu.m_layerId );
792  m_cEntropyDecoder.decodeSliceHeader (m_apcSlicePilot, &m_parameterSetManagerDecoder, m_targetOptLayerSetIdx );
793#else
794  m_cEntropyDecoder.decodeSliceHeader (m_apcSlicePilot, &m_parameterSetManagerDecoder);
795#endif
796  // set POC for dependent slices in skipped pictures
797  if(m_apcSlicePilot->getDependentSliceSegmentFlag() && m_prevSliceSkipped) 
798  {
799    m_apcSlicePilot->setPOC(m_skippedPOC);
800  }
801
802  m_apcSlicePilot->setAssociatedIRAPPOC(m_pocCRA);
803  m_apcSlicePilot->setAssociatedIRAPType(m_associatedIRAPType);
804
805#if H_MV 
806  TComVPS* vps     = m_apcSlicePilot->getVPS();
807  Int layerId  = nalu.m_layerId;   
808  setViewId   ( vps->getViewId   ( layerId )      ); 
809#if H_3D
810  setViewIndex( vps->getViewIndex( layerId )      ); 
811  setIsDepth  ( vps->getDepthId  ( layerId ) == 1 ); 
812  m_ivPicLists->setVPS( vps ); 
813#endif
814#endif
815
816#if SETTING_NO_OUT_PIC_PRIOR
817  //For inference of NoOutputOfPriorPicsFlag
818  if (m_apcSlicePilot->getRapPicFlag())
819  {
820    if ((m_apcSlicePilot->getNalUnitType() >= NAL_UNIT_CODED_SLICE_BLA_W_LP && m_apcSlicePilot->getNalUnitType() <= NAL_UNIT_CODED_SLICE_IDR_N_LP) || 
821        (m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_CRA && m_bFirstSliceInSequence) ||
822        (m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_CRA && m_apcSlicePilot->getHandleCraAsBlaFlag()))
823    {
824      m_apcSlicePilot->setNoRaslOutputFlag(true);
825    }
826    //the inference for NoOutputPriorPicsFlag
827    if (!m_bFirstSliceInBitstream && m_apcSlicePilot->getRapPicFlag() && m_apcSlicePilot->getNoRaslOutputFlag())
828    {
829      if (m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_CRA)
830      {
831        m_apcSlicePilot->setNoOutputPriorPicsFlag(true);
832      }
833    }
834    else
835    {
836      m_apcSlicePilot->setNoOutputPriorPicsFlag(false);
837    }
838
839    if(m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_CRA)
840    {
841      m_craNoRaslOutputFlag = m_apcSlicePilot->getNoRaslOutputFlag();
842    }
843  }
844  if (m_apcSlicePilot->getRapPicFlag() && m_apcSlicePilot->getNoOutputPriorPicsFlag())
845  {
846    m_lastPOCNoOutputPriorPics = m_apcSlicePilot->getPOC();
847    m_isNoOutputPriorPics = true;
848  }
849  else
850  {
851    m_isNoOutputPriorPics = false;
852  }
853
854  //For inference of PicOutputFlag
855  if (m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_RASL_N || m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_RASL_R)
856  {
857    if ( m_craNoRaslOutputFlag )
858    {
859      m_apcSlicePilot->setPicOutputFlag(false);
860    }
861  }
862#endif
863
864#if FIX_POC_CRA_NORASL_OUTPUT
865  if (m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_CRA && m_craNoRaslOutputFlag) //Reset POC MSB when CRA has NoRaslOutputFlag equal to 1
866  {
867    Int iMaxPOClsb = 1 << m_apcSlicePilot->getSPS()->getBitsForPOC();
868    m_apcSlicePilot->setPOC( m_apcSlicePilot->getPOC() & (iMaxPOClsb - 1) );
869  }
870#endif
871#if H_MV
872    xCeckNoClrasOutput();
873#endif
874    // Skip pictures due to random access
875    if (isRandomAccessSkipPicture(iSkipFrame, iPOCLastDisplay))
876    {
877    m_prevSliceSkipped = true;
878    m_skippedPOC = m_apcSlicePilot->getPOC();
879#if H_MV
880    sliceSkippedFlag = true; 
881#endif
882      return false;
883    }
884    // Skip TFD pictures associated with BLA/BLANT pictures
885    if (isSkipPictureForBLA(iPOCLastDisplay))
886    {
887    m_prevSliceSkipped = true;
888    m_skippedPOC = m_apcSlicePilot->getPOC();
889#if H_MV
890    sliceSkippedFlag = true; 
891#endif
892      return false;
893    }
894
895  // clear previous slice skipped flag
896  m_prevSliceSkipped = false;
897
898  //we should only get a different poc for a new picture (with CTU address==0)
899  if (m_apcSlicePilot->isNextSlice() && m_apcSlicePilot->getPOC()!=m_prevPOC && !m_bFirstSliceInSequence && (m_apcSlicePilot->getSliceCurStartCUAddr()!=0))
900  {
901    printf ("Warning, the first slice of a picture might have been lost!\n");
902  }
903  // exit when a new picture is found
904  if (m_apcSlicePilot->isNextSlice() && (m_apcSlicePilot->getSliceCurStartCUAddr() == 0 && !m_bFirstSliceInPicture) && !m_bFirstSliceInSequence )
905  {
906    if (m_prevPOC >= m_pocRandomAccess)
907    {
908      m_prevPOC = m_apcSlicePilot->getPOC();
909      return true;
910    }
911    m_prevPOC = m_apcSlicePilot->getPOC();
912  }
913#if H_MV
914  if ( newLayerFlag )
915  {
916    return false; 
917  }
918#if ENC_DEC_TRACE
919#if H_MV_ENC_DEC_TRAC
920  // parse remainder of SH
921   g_disableHLSTrace = false; 
922#endif
923#endif
924#endif
925  // actual decoding starts here
926#if H_MV
927   // This part needs further testing !
928   if ( m_apcSlicePilot->getPocResetFlag() )
929   {   
930     xResetPocInPicBuffer();
931   }
932
933   if ( m_apcSlicePilot->getTLayer() == 0 && m_apcSlicePilot->getEnableTMVPFlag() == 0 )
934  {
935    //update all pics in the DPB such that they cannot be used for TMPV ref
936    TComList<TComPic*>::iterator  iterRefPic = m_cListPic.begin(); 
937    while( iterRefPic != m_cListPic.end() )
938    {
939      TComPic *refPic = *iterRefPic;
940      if( ( refPic->getLayerId() == m_apcSlicePilot->getLayerId() ) && refPic->getReconMark() )
941      {
942        for(Int i = refPic->getNumAllocatedSlice()-1; i >= 0; i--)
943        {
944
945          TComSlice *refSlice = refPic->getSlice(i);
946          refSlice->setAvailableForTMVPRefFlag( false );
947        }
948      }
949      iterRefPic++;
950    }
951  }
952  m_apcSlicePilot->setAvailableForTMVPRefFlag( true );
953#endif
954
955  xActivateParameterSets();
956
957#if SONY_MV_V_CONST_C0078
958  //Check Multiview Main profile constraint in G.11.1.1
959  //  When ViewOrderIdx[ i ] derived according to any active VPS is equal to 1
960  //  for the layer with nuh_layer_id equal to i in subBitstream,
961  //  inter_view_mv_vert_constraint_flag shall be equal to 1
962  //  in the sps_multilayer_extension( ) syntax structure in each active SPS for that layer.
963  if( m_apcSlicePilot->getSPS()->getPTL()->getGeneralPTL()->getProfileIdc()==Profile::MULTIVIEWMAIN
964      &&
965      m_apcSlicePilot->getVPS()->getViewOrderIdx(m_apcSlicePilot->getVPS()->getLayerIdInNuh(getLayerId()))==1 
966     )
967  {
968    assert( m_apcSlicePilot->getSPS()->getInterViewMvVertConstraintFlag()==1 );
969  }
970#endif
971
972  if (m_apcSlicePilot->isNextSlice()) 
973  {
974    m_prevPOC = m_apcSlicePilot->getPOC();
975  }
976  m_bFirstSliceInSequence = false;
977#if SETTING_NO_OUT_PIC_PRIOR 
978  m_bFirstSliceInBitstream  = false;
979#endif
980  //detect lost reference picture and insert copy of earlier frame.
981  Int lostPoc;
982  while((lostPoc=m_apcSlicePilot->checkThatAllRefPicsAreAvailable(m_cListPic, m_apcSlicePilot->getRPS(), true, m_pocRandomAccess)) > 0)
983  {
984    xCreateLostPicture(lostPoc-1);
985  }
986  if (m_bFirstSliceInPicture)
987  {
988    // Buffer initialize for prediction.
989    m_cPrediction.initTempBuff();
990    m_apcSlicePilot->applyReferencePictureSet(m_cListPic, m_apcSlicePilot->getRPS());
991#if H_MV
992    m_apcSlicePilot->createInterLayerReferencePictureSet( m_ivPicLists, m_refPicSetInterLayer0, m_refPicSetInterLayer1 ); 
993#endif
994    //  Get a new picture buffer
995    xGetNewPicBuffer (m_apcSlicePilot, pcPic);
996
997    Bool isField = false;
998    Bool isTff = false;
999   
1000    if(!m_SEIs.empty())
1001    {
1002      // Check if any new Picture Timing SEI has arrived
1003      SEIMessages pictureTimingSEIs = extractSeisByType (m_SEIs, SEI::PICTURE_TIMING);
1004      if (pictureTimingSEIs.size()>0)
1005      {
1006        SEIPictureTiming* pictureTiming = (SEIPictureTiming*) *(pictureTimingSEIs.begin());
1007        isField = (pictureTiming->m_picStruct == 1) || (pictureTiming->m_picStruct == 2);
1008        isTff =  (pictureTiming->m_picStruct == 1);
1009      }
1010    }
1011   
1012    //Set Field/Frame coding mode
1013    m_pcPic->setField(isField);
1014    m_pcPic->setTopField(isTff);
1015   
1016    // transfer any SEI messages that have been received to the picture
1017    pcPic->setSEIs(m_SEIs);
1018    m_SEIs.clear();
1019
1020    // Recursive structure
1021    m_cCuDecoder.create ( g_uiMaxCUDepth, g_uiMaxCUWidth, g_uiMaxCUHeight );
1022    m_cCuDecoder.init   ( &m_cEntropyDecoder, &m_cTrQuant, &m_cPrediction );
1023    m_cTrQuant.init     ( g_uiMaxCUWidth, g_uiMaxCUHeight, m_apcSlicePilot->getSPS()->getMaxTrSize());
1024
1025    m_cSliceDecoder.create();
1026  }
1027  else
1028  {
1029    // Check if any new SEI has arrived
1030    if(!m_SEIs.empty())
1031    {
1032      // Currently only decoding Unit SEI message occurring between VCL NALUs copied
1033      SEIMessages &picSEI = pcPic->getSEIs();
1034      SEIMessages decodingUnitInfos = extractSeisByType (m_SEIs, SEI::DECODING_UNIT_INFO);
1035      picSEI.insert(picSEI.end(), decodingUnitInfos.begin(), decodingUnitInfos.end());
1036      deleteSEIs(m_SEIs);
1037    }
1038  }
1039 
1040  //  Set picture slice pointer
1041  TComSlice*  pcSlice = m_apcSlicePilot;
1042  Bool bNextSlice     = pcSlice->isNextSlice();
1043
1044  UInt i;
1045  pcPic->getPicSym()->initTiles(pcSlice->getPPS());
1046
1047  //generate the Coding Order Map and Inverse Coding Order Map
1048  UInt uiEncCUAddr;
1049  for(i=0, uiEncCUAddr=0; i<pcPic->getPicSym()->getNumberOfCUsInFrame(); i++, uiEncCUAddr = pcPic->getPicSym()->xCalculateNxtCUAddr(uiEncCUAddr))
1050  {
1051    pcPic->getPicSym()->setCUOrderMap(i, uiEncCUAddr);
1052    pcPic->getPicSym()->setInverseCUOrderMap(uiEncCUAddr, i);
1053  }
1054  pcPic->getPicSym()->setCUOrderMap(pcPic->getPicSym()->getNumberOfCUsInFrame(), pcPic->getPicSym()->getNumberOfCUsInFrame());
1055  pcPic->getPicSym()->setInverseCUOrderMap(pcPic->getPicSym()->getNumberOfCUsInFrame(), pcPic->getPicSym()->getNumberOfCUsInFrame());
1056
1057  //convert the start and end CU addresses of the slice and dependent slice into encoding order
1058  pcSlice->setSliceSegmentCurStartCUAddr( pcPic->getPicSym()->getPicSCUEncOrder(pcSlice->getSliceSegmentCurStartCUAddr()) );
1059  pcSlice->setSliceSegmentCurEndCUAddr( pcPic->getPicSym()->getPicSCUEncOrder(pcSlice->getSliceSegmentCurEndCUAddr()) );
1060  if(pcSlice->isNextSlice())
1061  {
1062    pcSlice->setSliceCurStartCUAddr(pcPic->getPicSym()->getPicSCUEncOrder(pcSlice->getSliceCurStartCUAddr()));
1063    pcSlice->setSliceCurEndCUAddr(pcPic->getPicSym()->getPicSCUEncOrder(pcSlice->getSliceCurEndCUAddr()));
1064  }
1065
1066  if (m_bFirstSliceInPicture) 
1067  {
1068    if(pcPic->getNumAllocatedSlice() != 1)
1069    {
1070      pcPic->clearSliceBuffer();
1071    }
1072  }
1073  else
1074  {
1075    pcPic->allocateNewSlice();
1076  }
1077  assert(pcPic->getNumAllocatedSlice() == (m_uiSliceIdx + 1));
1078  m_apcSlicePilot = pcPic->getPicSym()->getSlice(m_uiSliceIdx); 
1079  pcPic->getPicSym()->setSlice(pcSlice, m_uiSliceIdx);
1080
1081  pcPic->setTLayer(nalu.m_temporalId);
1082
1083#if H_MV
1084  pcPic->setLayerId( nalu.m_layerId );
1085  pcPic->setViewId ( getViewId() );
1086#if H_3D
1087  pcPic->setViewIndex( getViewIndex() );
1088  pcPic->setIsDepth  ( getIsDepth  () );
1089#endif
1090#endif
1091  if (bNextSlice)
1092  {
1093    pcSlice->checkCRA(pcSlice->getRPS(), m_pocCRA, m_associatedIRAPType, m_cListPic );
1094    // Set reference list
1095#if H_MV   
1096    std::vector< TComPic* > tempRefPicLists[2];
1097    std::vector< Bool     > usedAsLongTerm [2];
1098    Int       numPocTotalCurr;
1099
1100    pcSlice->getTempRefPicLists( m_cListPic, m_refPicSetInterLayer0, m_refPicSetInterLayer1, tempRefPicLists, usedAsLongTerm, numPocTotalCurr);
1101    pcSlice->setRefPicList     ( tempRefPicLists, usedAsLongTerm, numPocTotalCurr, true ); 
1102#if H_3D
1103    pcSlice->setDefaultRefView();
1104#endif
1105#if H_3D_ARP
1106    pcSlice->setARPStepNum(m_ivPicLists);
1107    if( pcSlice->getARPStepNum() > 1 )
1108    {
1109      // GT: This seems to be broken, not all nuh_layer_ids are necessarily present
1110      for(Int iLayerId = 0; iLayerId < nalu.m_layerId; iLayerId ++ )
1111      {
1112        Int  iViewIdx =   pcSlice->getVPS()->getViewIndex(iLayerId);
1113        Bool bIsDepth = ( pcSlice->getVPS()->getDepthId  ( iLayerId ) == 1 );
1114        if( iViewIdx<getViewIndex() && !bIsDepth )
1115        {
1116          pcSlice->setBaseViewRefPicList( m_ivPicLists->getPicList( iLayerId ), iViewIdx );
1117        }
1118      }
1119    }
1120#endif
1121#else
1122    pcSlice->setRefPicList( m_cListPic, true );
1123#endif
1124
1125#if H_3D
1126    pcSlice->setIvPicLists( m_ivPicLists );         
1127#if H_3D_IV_MERGE
1128#if H_3D_FCO
1129    //assert( !getIsDepth() );
1130#else
1131    assert( !getIsDepth() || ( pcSlice->getTexturePic() != 0 ) );
1132#endif
1133#endif   
1134#endif
1135#if H_MV
1136    if( m_layerId > 0 && !pcSlice->isIntra() && pcSlice->getEnableTMVPFlag() )
1137    {
1138      TComPic* refPic = pcSlice->getRefPic(RefPicList(1 - pcSlice->getColFromL0Flag()), pcSlice->getColRefIdx());
1139
1140      assert ( refPic );
1141      assert ( refPic->getPicSym()->getSlice(0)->getAvailableForTMVPRefFlag() == true );
1142    }
1143#endif
1144
1145    // For generalized B
1146    // note: maybe not existed case (always L0 is copied to L1 if L1 is empty)
1147    if (pcSlice->isInterB() && pcSlice->getNumRefIdx(REF_PIC_LIST_1) == 0)
1148    {
1149      Int iNumRefIdx = pcSlice->getNumRefIdx(REF_PIC_LIST_0);
1150      pcSlice->setNumRefIdx        ( REF_PIC_LIST_1, iNumRefIdx );
1151
1152      for (Int iRefIdx = 0; iRefIdx < iNumRefIdx; iRefIdx++)
1153      {
1154        pcSlice->setRefPic(pcSlice->getRefPic(REF_PIC_LIST_0, iRefIdx), REF_PIC_LIST_1, iRefIdx);
1155      }
1156    }
1157    if (!pcSlice->isIntra())
1158    {
1159      Bool bLowDelay = true;
1160      Int  iCurrPOC  = pcSlice->getPOC();
1161      Int iRefIdx = 0;
1162
1163      for (iRefIdx = 0; iRefIdx < pcSlice->getNumRefIdx(REF_PIC_LIST_0) && bLowDelay; iRefIdx++)
1164      {
1165        if ( pcSlice->getRefPic(REF_PIC_LIST_0, iRefIdx)->getPOC() > iCurrPOC )
1166        {
1167          bLowDelay = false;
1168        }
1169      }
1170      if (pcSlice->isInterB())
1171      {
1172        for (iRefIdx = 0; iRefIdx < pcSlice->getNumRefIdx(REF_PIC_LIST_1) && bLowDelay; iRefIdx++)
1173        {
1174          if ( pcSlice->getRefPic(REF_PIC_LIST_1, iRefIdx)->getPOC() > iCurrPOC )
1175          {
1176            bLowDelay = false;
1177          }
1178        }       
1179      }
1180
1181      pcSlice->setCheckLDC(bLowDelay);           
1182    }
1183
1184    //---------------
1185    pcSlice->setRefPOCList();
1186#if  H_3D_TMVP
1187    if(pcSlice->getLayerId())
1188      pcSlice->generateAlterRefforTMVP();
1189#endif
1190  }
1191
1192  pcPic->setCurrSliceIdx(m_uiSliceIdx);
1193  if(pcSlice->getSPS()->getScalingListFlag())
1194  {
1195    pcSlice->setScalingList ( pcSlice->getSPS()->getScalingList()  );
1196    if(pcSlice->getPPS()->getScalingListPresentFlag())
1197    {
1198      pcSlice->setScalingList ( pcSlice->getPPS()->getScalingList()  );
1199    }
1200    if(!pcSlice->getPPS()->getScalingListPresentFlag() && !pcSlice->getSPS()->getScalingListPresentFlag())
1201    {
1202      pcSlice->setDefaultScalingList();
1203    }
1204    m_cTrQuant.setScalingListDec(pcSlice->getScalingList());
1205    m_cTrQuant.setUseScalingList(true);
1206  }
1207  else
1208  {
1209    m_cTrQuant.setFlatScalingList();
1210    m_cTrQuant.setUseScalingList(false);
1211  }
1212
1213#if H_3D_IV_MERGE
1214#if H_3D_FCO
1215  if( !pcSlice->getIsDepth() && m_pcCamParsCollector )
1216#else
1217  if( pcSlice->getIsDepth() && m_pcCamParsCollector )
1218#endif
1219  {
1220    m_pcCamParsCollector->copyCamParamForSlice( pcSlice );
1221  }
1222#endif
1223
1224  //  Decode a picture
1225  m_cGopDecoder.decompressSlice(nalu.m_Bitstream, pcPic);
1226#if H_3D
1227  if( m_pcCamParsCollector )
1228  {
1229    m_pcCamParsCollector->setSlice( pcSlice );
1230  }
1231#endif
1232  m_bFirstSliceInPicture = false;
1233  m_uiSliceIdx++;
1234
1235  return false;
1236}
1237
1238Void TDecTop::xDecodeVPS()
1239{
1240  TComVPS* vps = new TComVPS();
1241 
1242  m_cEntropyDecoder.decodeVPS( vps );
1243  m_parameterSetManagerDecoder.storePrefetchedVPS(vps); 
1244}
1245
1246Void TDecTop::xDecodeSPS()
1247{
1248  TComSPS* sps = new TComSPS();
1249#if H_MV
1250  sps->setLayerId( getLayerId() ); 
1251#endif
1252#if H_3D
1253  // Preliminary fix. assuming that all sps refer to the same VPS.
1254  // Parsing dependency should be resolved!
1255  TComVPS* vps = m_parameterSetManagerDecoder.getPrefetchedVPS( 0 ); 
1256  assert( vps != 0 );
1257  m_cEntropyDecoder.decodeSPS( sps );
1258#else
1259  m_cEntropyDecoder.decodeSPS( sps );
1260#endif
1261  m_parameterSetManagerDecoder.storePrefetchedSPS(sps);
1262}
1263
1264Void TDecTop::xDecodePPS()
1265{
1266  TComPPS* pps = new TComPPS();
1267#if H_MV
1268  pps->setLayerId( getLayerId() ); 
1269#endif
1270#if H_3D
1271  // Assuming that all PPS indirectly refer to the same VPS via different SPS
1272  // There is no parsing dependency in decoding DLT in PPS.
1273  // The VPS information passed to decodePPS() is used to arrange the decoded DLT tables to their corresponding layers.
1274  // This is equivalent to the process of
1275  //   Step 1) decoding DLT tables based on the number of depth layers, and
1276  //   Step 2) mapping DLT tables to the depth layers
1277  // as described in the 3D-HEVC WD.
1278  TComVPS* vps = m_parameterSetManagerDecoder.getPrefetchedVPS( 0 );
1279  m_cEntropyDecoder.decodePPS( pps, vps );
1280#else
1281  m_cEntropyDecoder.decodePPS( pps );
1282#endif
1283  m_parameterSetManagerDecoder.storePrefetchedPPS( pps );
1284}
1285
1286Void TDecTop::xDecodeSEI( TComInputBitstream* bs, const NalUnitType nalUnitType )
1287{
1288  if(nalUnitType == NAL_UNIT_SUFFIX_SEI)
1289  {
1290#if H_MV
1291    m_seiReader.parseSEImessage( bs, m_pcPic->getSEIs(), nalUnitType, m_parameterSetManagerDecoder.getActiveSPS( m_layerId ) );
1292#else
1293    m_seiReader.parseSEImessage( bs, m_pcPic->getSEIs(), nalUnitType, m_parameterSetManagerDecoder.getActiveSPS() );
1294#endif
1295  }
1296  else
1297  {
1298#if H_MV
1299    m_seiReader.parseSEImessage( bs, m_SEIs, nalUnitType, m_parameterSetManagerDecoder.getActiveSPS( m_layerId ) );
1300#else
1301    m_seiReader.parseSEImessage( bs, m_SEIs, nalUnitType, m_parameterSetManagerDecoder.getActiveSPS() );
1302#endif
1303    SEIMessages activeParamSets = getSeisByType(m_SEIs, SEI::ACTIVE_PARAMETER_SETS);
1304    if (activeParamSets.size()>0)
1305    {
1306      SEIActiveParameterSets *seiAps = (SEIActiveParameterSets*)(*activeParamSets.begin());
1307      m_parameterSetManagerDecoder.applyPrefetchedPS();
1308      assert(seiAps->activeSeqParameterSetId.size()>0);
1309#if H_MV
1310      if (! m_parameterSetManagerDecoder.activateSPSWithSEI(seiAps->activeSeqParameterSetId[0], m_layerId ))
1311#else
1312      if (! m_parameterSetManagerDecoder.activateSPSWithSEI(seiAps->activeSeqParameterSetId[0] ))
1313#endif
1314      {
1315        printf ("Warning SPS activation with Active parameter set SEI failed");
1316      }
1317    }
1318  }
1319}
1320
1321#if H_MV
1322Bool TDecTop::decode(InputNALUnit& nalu, Int& iSkipFrame, Int& iPOCLastDisplay, Bool newLayerFlag, Bool& sliceSkippedFlag )
1323#else
1324Bool TDecTop::decode(InputNALUnit& nalu, Int& iSkipFrame, Int& iPOCLastDisplay)
1325#endif
1326{
1327  // Initialize entropy decoder
1328  m_cEntropyDecoder.setEntropyDecoder (&m_cCavlcDecoder);
1329  m_cEntropyDecoder.setBitstream      (nalu.m_Bitstream);
1330
1331  switch (nalu.m_nalUnitType)
1332  {
1333    case NAL_UNIT_VPS:
1334      xDecodeVPS();
1335#if H_MV
1336      m_isLastNALWasEos = false;
1337#endif
1338      return false;
1339     
1340    case NAL_UNIT_SPS:
1341      xDecodeSPS();
1342      return false;
1343
1344    case NAL_UNIT_PPS:
1345      xDecodePPS();
1346      return false;
1347     
1348    case NAL_UNIT_PREFIX_SEI:
1349    case NAL_UNIT_SUFFIX_SEI:
1350#if H_MV
1351      if ( nalu.m_nalUnitType == NAL_UNIT_SUFFIX_SEI )
1352      {
1353        assert( m_isLastNALWasEos == false );
1354      }
1355#endif
1356      xDecodeSEI( nalu.m_Bitstream, nalu.m_nalUnitType );
1357      return false;
1358
1359    case NAL_UNIT_CODED_SLICE_TRAIL_R:
1360    case NAL_UNIT_CODED_SLICE_TRAIL_N:
1361    case NAL_UNIT_CODED_SLICE_TSA_R:
1362    case NAL_UNIT_CODED_SLICE_TSA_N:
1363    case NAL_UNIT_CODED_SLICE_STSA_R:
1364    case NAL_UNIT_CODED_SLICE_STSA_N:
1365    case NAL_UNIT_CODED_SLICE_BLA_W_LP:
1366    case NAL_UNIT_CODED_SLICE_BLA_W_RADL:
1367    case NAL_UNIT_CODED_SLICE_BLA_N_LP:
1368    case NAL_UNIT_CODED_SLICE_IDR_W_RADL:
1369    case NAL_UNIT_CODED_SLICE_IDR_N_LP:
1370    case NAL_UNIT_CODED_SLICE_CRA:
1371    case NAL_UNIT_CODED_SLICE_RADL_N:
1372    case NAL_UNIT_CODED_SLICE_RADL_R:
1373    case NAL_UNIT_CODED_SLICE_RASL_N:
1374    case NAL_UNIT_CODED_SLICE_RASL_R:
1375#if H_MV
1376      if (nalu.m_nalUnitType == NAL_UNIT_CODED_SLICE_TRAIL_R || nalu.m_nalUnitType == NAL_UNIT_CODED_SLICE_TRAIL_N ||
1377          nalu.m_nalUnitType == NAL_UNIT_CODED_SLICE_TSA_R || nalu.m_nalUnitType == NAL_UNIT_CODED_SLICE_TSA_N ||
1378          nalu.m_nalUnitType == NAL_UNIT_CODED_SLICE_STSA_R || nalu.m_nalUnitType == NAL_UNIT_CODED_SLICE_STSA_N ||
1379          nalu.m_nalUnitType == NAL_UNIT_CODED_SLICE_RADL_R || nalu.m_nalUnitType == NAL_UNIT_CODED_SLICE_RADL_N ||
1380          nalu.m_nalUnitType == NAL_UNIT_CODED_SLICE_RASL_R || nalu.m_nalUnitType == NAL_UNIT_CODED_SLICE_RASL_N )
1381      {
1382        assert( m_isLastNALWasEos == false );
1383      }
1384      else
1385      {
1386        m_isLastNALWasEos = false;
1387      }
1388
1389      return xDecodeSlice(nalu, iSkipFrame, iPOCLastDisplay, newLayerFlag, sliceSkippedFlag );
1390#else
1391      return xDecodeSlice(nalu, iSkipFrame, iPOCLastDisplay);
1392#endif
1393      break;
1394    case NAL_UNIT_EOS:
1395#if H_MV
1396      assert( m_isLastNALWasEos == false );
1397      //Check layer id of the nalu. if it is not 0, give a warning message and just return without doing anything.
1398      if (nalu.m_layerId > 0)
1399      {
1400        printf( "\nThis bitstream has EOS with non-zero layer id.\n" );
1401        return false;
1402      }
1403      m_isLastNALWasEos = true;
1404#endif
1405      m_associatedIRAPType = NAL_UNIT_INVALID;
1406      m_pocCRA = 0;
1407      m_pocRandomAccess = MAX_INT;
1408      m_prevPOC = MAX_INT;
1409      m_bFirstSliceInPicture = true;
1410      m_bFirstSliceInSequence = true;
1411      m_prevSliceSkipped = false;
1412      m_skippedPOC = 0;
1413      return false;
1414     
1415    case NAL_UNIT_ACCESS_UNIT_DELIMITER:
1416      // TODO: process AU delimiter
1417      return false;
1418     
1419    case NAL_UNIT_EOB:
1420      return false;
1421     
1422    case NAL_UNIT_FILLER_DATA:
1423#if H_MV
1424      assert( m_isLastNALWasEos == false );
1425#endif
1426      return false;
1427     
1428    case NAL_UNIT_RESERVED_VCL_N10:
1429    case NAL_UNIT_RESERVED_VCL_R11:
1430    case NAL_UNIT_RESERVED_VCL_N12:
1431    case NAL_UNIT_RESERVED_VCL_R13:
1432    case NAL_UNIT_RESERVED_VCL_N14:
1433    case NAL_UNIT_RESERVED_VCL_R15:
1434     
1435    case NAL_UNIT_RESERVED_IRAP_VCL22:
1436    case NAL_UNIT_RESERVED_IRAP_VCL23:
1437     
1438    case NAL_UNIT_RESERVED_VCL24:
1439    case NAL_UNIT_RESERVED_VCL25:
1440    case NAL_UNIT_RESERVED_VCL26:
1441    case NAL_UNIT_RESERVED_VCL27:
1442    case NAL_UNIT_RESERVED_VCL28:
1443    case NAL_UNIT_RESERVED_VCL29:
1444    case NAL_UNIT_RESERVED_VCL30:
1445    case NAL_UNIT_RESERVED_VCL31:
1446     
1447    case NAL_UNIT_RESERVED_NVCL41:
1448    case NAL_UNIT_RESERVED_NVCL42:
1449    case NAL_UNIT_RESERVED_NVCL43:
1450    case NAL_UNIT_RESERVED_NVCL44:
1451    case NAL_UNIT_RESERVED_NVCL45:
1452    case NAL_UNIT_RESERVED_NVCL46:
1453    case NAL_UNIT_RESERVED_NVCL47:
1454    case NAL_UNIT_UNSPECIFIED_48:
1455    case NAL_UNIT_UNSPECIFIED_49:
1456    case NAL_UNIT_UNSPECIFIED_50:
1457    case NAL_UNIT_UNSPECIFIED_51:
1458    case NAL_UNIT_UNSPECIFIED_52:
1459    case NAL_UNIT_UNSPECIFIED_53:
1460    case NAL_UNIT_UNSPECIFIED_54:
1461    case NAL_UNIT_UNSPECIFIED_55:
1462    case NAL_UNIT_UNSPECIFIED_56:
1463    case NAL_UNIT_UNSPECIFIED_57:
1464    case NAL_UNIT_UNSPECIFIED_58:
1465    case NAL_UNIT_UNSPECIFIED_59:
1466    case NAL_UNIT_UNSPECIFIED_60:
1467    case NAL_UNIT_UNSPECIFIED_61:
1468    case NAL_UNIT_UNSPECIFIED_62:
1469    case NAL_UNIT_UNSPECIFIED_63:
1470    default:
1471      assert (0);
1472  }
1473
1474  return false;
1475}
1476
1477/** Function for checking if picture should be skipped because of association with a previous BLA picture
1478 * \param iPOCLastDisplay POC of last picture displayed
1479 * \returns true if the picture should be skipped
1480 * This function skips all TFD pictures that follow a BLA picture
1481 * in decoding order and precede it in output order.
1482 */
1483Bool TDecTop::isSkipPictureForBLA(Int& iPOCLastDisplay)
1484{
1485  if ((m_associatedIRAPType == NAL_UNIT_CODED_SLICE_BLA_N_LP || m_associatedIRAPType == NAL_UNIT_CODED_SLICE_BLA_W_LP || m_associatedIRAPType == NAL_UNIT_CODED_SLICE_BLA_W_RADL) && 
1486       m_apcSlicePilot->getPOC() < m_pocCRA && (m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_RASL_R || m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_RASL_N))
1487  {
1488    iPOCLastDisplay++;
1489    return true;
1490  }
1491  return false;
1492}
1493
1494/** Function for checking if picture should be skipped because of random access
1495 * \param iSkipFrame skip frame counter
1496 * \param iPOCLastDisplay POC of last picture displayed
1497 * \returns true if the picture shold be skipped in the random access.
1498 * This function checks the skipping of pictures in the case of -s option random access.
1499 * All pictures prior to the random access point indicated by the counter iSkipFrame are skipped.
1500 * It also checks the type of Nal unit type at the random access point.
1501 * If the random access point is CRA/CRANT/BLA/BLANT, TFD pictures with POC less than the POC of the random access point are skipped.
1502 * If the random access point is IDR all pictures after the random access point are decoded.
1503 * If the random access point is none of the above, a warning is issues, and decoding of pictures with POC
1504 * equal to or greater than the random access point POC is attempted. For non IDR/CRA/BLA random
1505 * access point there is no guarantee that the decoder will not crash.
1506 */
1507Bool TDecTop::isRandomAccessSkipPicture(Int& iSkipFrame,  Int& iPOCLastDisplay)
1508{
1509  if (iSkipFrame) 
1510  {
1511    iSkipFrame--;   // decrement the counter
1512    return true;
1513  }
1514#if H_MV
1515  else if ( !m_layerInitilizedFlag[ m_layerId ] ) // start of random access point, m_pocRandomAccess has not been set yet.
1516#else
1517  else if (m_pocRandomAccess == MAX_INT) // start of random access point, m_pocRandomAccess has not been set yet.
1518#endif
1519  {
1520    if (   m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_CRA
1521        || m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_BLA_W_LP
1522        || m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_BLA_N_LP
1523        || m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_BLA_W_RADL )
1524    {
1525
1526#if H_MV
1527      if ( xAllRefLayersInitilized() )
1528      {
1529        m_layerInitilizedFlag[ m_layerId ] = true; 
1530        m_pocRandomAccess = m_apcSlicePilot->getPOC();
1531      }
1532      else
1533      {
1534        return true; 
1535      }
1536#else
1537      // set the POC random access since we need to skip the reordered pictures in the case of CRA/CRANT/BLA/BLANT.
1538      m_pocRandomAccess = m_apcSlicePilot->getPOC();
1539#endif
1540    }
1541    else if ( m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_IDR_W_RADL || m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_IDR_N_LP )
1542    {
1543#if H_MV
1544      if ( xAllRefLayersInitilized() )
1545      {
1546        m_layerInitilizedFlag[ m_layerId ] = true; 
1547        m_pocRandomAccess = -MAX_INT; // no need to skip the reordered pictures in IDR, they are decodable.
1548      }
1549      else 
1550      {
1551        return true; 
1552      }
1553#else
1554      m_pocRandomAccess = -MAX_INT; // no need to skip the reordered pictures in IDR, they are decodable.
1555#endif
1556    }
1557    else 
1558    {
1559#if H_MV
1560      static Bool warningMessage[MAX_NUM_LAYERS];
1561      static Bool warningInitFlag = false;
1562     
1563      if (!warningInitFlag)
1564      {
1565        for ( Int i = 0; i < MAX_NUM_LAYERS; i++)
1566        {
1567          warningMessage[i] = true; 
1568        }
1569        warningInitFlag = true; 
1570      }
1571
1572      if ( warningMessage[getLayerId()] )
1573      {
1574        printf("\nLayer%3d   No valid random access point. VCL NAL units of this layer are discarded until next layer initialization picture. ", getLayerId() ); 
1575        warningMessage[m_layerId] = false; 
1576      }
1577#else
1578      static Bool warningMessage = false;
1579      if(!warningMessage)
1580      {
1581        printf("\nWarning: this is not a valid random access point and the data is discarded until the first CRA picture");
1582        warningMessage = true;
1583      }
1584#endif
1585      return true;
1586    }
1587  }
1588  // skip the reordered pictures, if necessary
1589  else if (m_apcSlicePilot->getPOC() < m_pocRandomAccess && (m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_RASL_R || m_apcSlicePilot->getNalUnitType() == NAL_UNIT_CODED_SLICE_RASL_N))
1590  {
1591    iPOCLastDisplay++;
1592    return true;
1593  }
1594#if H_MV
1595  return !m_layerInitilizedFlag[ getLayerId() ]; 
1596#else
1597  // if we reach here, then the picture is not skipped.
1598  return false; 
1599#endif
1600}
1601
1602#if H_MV
1603TComPic* TDecTop::getPic( Int poc )
1604{
1605  xGetPic( m_layerId, poc ); 
1606  TComList<TComPic*>* listPic = getListPic();
1607  TComPic* pcPic = NULL;
1608  for(TComList<TComPic*>::iterator it=listPic->begin(); it!=listPic->end(); it++)
1609  {
1610    if( (*it)->getPOC() == poc )
1611    {
1612      pcPic = *it ;
1613      break ;
1614    }
1615  }
1616  return pcPic;
1617}
1618
1619TComPic* TDecTop::xGetPic( Int layerId, Int poc )
1620{ 
1621  return m_ivPicLists->getPic( layerId, poc ) ;
1622}
1623
1624Void TDecTop::xResetPocInPicBuffer()
1625{
1626  TComList<TComPic*>::iterator  iterPic   = m_cListPic.begin();
1627  while (iterPic != m_cListPic.end())
1628  {
1629    TComPic* pic = *(iterPic++);
1630    if ( pic->getReconMark() )
1631    {
1632      for( Int i = 0; i < pic->getNumAllocatedSlice(); i++)
1633      {
1634        TComSlice* slice = pic->getSlice( i ); 
1635        slice->setPOC ( slice->getPOC() - m_apcSlicePilot->getPocBeforeReset() );           
1636      }         
1637    }     
1638  }
1639}
1640
1641#if H_MV
1642Void TDecTop::xCeckNoClrasOutput()
1643{
1644  // This part needs further testing!
1645  if ( getLayerId() == 0 )
1646  {   
1647    NalUnitType nut = m_apcSlicePilot->getNalUnitType(); 
1648
1649    Bool isBLA =  ( nut == NAL_UNIT_CODED_SLICE_BLA_W_LP  )  || ( nut == NAL_UNIT_CODED_SLICE_BLA_N_LP ) || ( nut == NAL_UNIT_CODED_SLICE_BLA_W_RADL ); 
1650    Bool isIDR  = ( nut == NAL_UNIT_CODED_SLICE_IDR_W_RADL ) || ( nut == NAL_UNIT_CODED_SLICE_IDR_N_LP ); 
1651    Bool noClrasOutputFlag  = isBLA || ( isIDR  &&  m_apcSlicePilot->getCrossLayerBlaFlag() ); 
1652
1653    if ( noClrasOutputFlag ) 
1654    {
1655      for (Int i = 0; i < MAX_NUM_LAYER_IDS; i++)
1656      {
1657        m_layerInitilizedFlag[i] = false; 
1658      } 
1659    }
1660  }
1661}
1662
1663Bool TDecTop::xAllRefLayersInitilized()
1664{
1665  Bool allRefLayersInitilizedFlag = true; 
1666  TComVPS* vps = m_parameterSetManagerDecoder.getPrefetchedVPS( 0 ); 
1667  for (Int i = 0; i < vps->getNumDirectRefLayers( getLayerId()  ); i++ )
1668  {
1669    Int refLayerId = vps->getIdDirectRefLayer( m_layerId, i ); 
1670    allRefLayersInitilizedFlag = allRefLayersInitilizedFlag && m_layerInitilizedFlag[ refLayerId ]; 
1671  }
1672
1673  return allRefLayersInitilizedFlag;
1674}
1675#endif
1676#endif
1677//! \}
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