source: SHVCSoftware/branches/SHM-4.1-dev/source/App/TAppEncoder/TAppEncTop.cpp @ 530

Last change on this file since 530 was 529, checked in by seregin, 12 years ago

remove IL_SL_SIGNALLING_N0371 macro and related code

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1/* The copyright in this software is being made available under the BSD
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33
34/** \file     TAppEncTop.cpp
35    \brief    Encoder application class
36*/
37
38#include <list>
39#include <fstream>
40#include <stdlib.h>
41#include <stdio.h>
42#include <fcntl.h>
43#include <assert.h>
44
45#include "TAppEncTop.h"
46#include "TLibEncoder/AnnexBwrite.h"
47
48using namespace std;
49
50//! \ingroup TAppEncoder
51//! \{
52
53// ====================================================================================================================
54// Constructor / destructor / initialization / destroy
55// ====================================================================================================================
56
57TAppEncTop::TAppEncTop()
58{
59  m_iFrameRcvd = 0;
60  m_totalBytes = 0;
61  m_essentialBytes = 0;
62#if SVC_EXTENSION
63  for(UInt layer=0; layer < MAX_LAYERS; layer++)
64  {
65    m_apcTEncTop[layer] = &m_acTEncTop[layer];
66  }
67#endif
68}
69
70TAppEncTop::~TAppEncTop()
71{
72}
73
74#if SVC_EXTENSION
75Void TAppEncTop::xInitLibCfg()
76{
77  TComVPS* vps = m_acTEncTop[0].getVPS();
78
79  vps->setMaxTLayers                       ( m_maxTempLayer );
80  if (m_maxTempLayer == 1)
81  {
82    vps->setTemporalNestingFlag(true);
83  }
84#if !VPS_RENAME
85  vps.setMaxLayers                        ( 1 );
86#endif
87  for(Int i = 0; i < MAX_TLAYER; i++)
88  {
89    vps->setNumReorderPics                 ( m_numReorderPics[i], i );
90    vps->setMaxDecPicBuffering             ( m_maxDecPicBuffering[i], i );
91  }
92
93#if REPN_FORMAT_IN_VPS
94  vps->setRepFormatIdxPresentFlag( true );   // Could be disabled to optimize in some cases.
95  Int maxRepFormatIdx = -1;
96  Int formatIdx = -1;
97  for(UInt layer=0; layer < m_numLayers; layer++)
98  {
99    // Auto generation of the format index
100    if( m_acLayerCfg[layer].getRepFormatIdx() == -1 )
101    {     
102      Bool found = false;
103      for( UInt idx = 0; idx < layer; idx++ )
104      {
105        if( m_acLayerCfg[layer].getSourceWidth() == m_acLayerCfg[idx].getSourceWidth() && m_acLayerCfg[layer].getSourceHeight() == m_acLayerCfg[idx].getSourceHeight()
106#if AUXILIARY_PICTURES
107          && m_acLayerCfg[layer].getChromaFormatIDC() == m_acLayerCfg[idx].getChromaFormatIDC()
108#endif
109#if O0194_DIFFERENT_BITDEPTH_EL_BL
110          && m_acLayerCfg[layer].m_internalBitDepthY == m_acLayerCfg[idx].m_internalBitDepthY && m_acLayerCfg[layer].m_internalBitDepthC == m_acLayerCfg[idx].m_internalBitDepthC
111#endif
112          )
113        {
114          found = true;
115          break;
116        }
117      }
118      if( !found )
119      {
120        formatIdx++;
121      }
122
123      m_acLayerCfg[layer].setRepFormatIdx( formatIdx );
124    }
125
126    assert( m_acLayerCfg[layer].getRepFormatIdx() != -1 && "RepFormatIdx not assigned for a layer" );
127    vps->setVpsRepFormatIdx( layer, m_acLayerCfg[layer].getRepFormatIdx() );
128    maxRepFormatIdx = std::max( m_acLayerCfg[layer].getRepFormatIdx(), maxRepFormatIdx );
129  }
130  assert( vps->getVpsRepFormatIdx( 0 ) == 0 );  // Base layer should point to the first one.
131  Int* mapIdxToLayer = new Int[maxRepFormatIdx + 1];
132  // Check that all the indices from 0 to maxRepFormatIdx are used in the VPS
133  for(Int i = 0; i <= maxRepFormatIdx; i++)
134  {
135    mapIdxToLayer[i] = -1;
136    UInt layer;
137    for(layer=0; layer < m_numLayers; layer++)
138    {
139      if( vps->getVpsRepFormatIdx(layer) == i )
140      {
141        mapIdxToLayer[i] = layer;
142        break;
143      }
144    }
145    assert( layer != m_numLayers );   // One of the VPS Rep format indices not set
146  }
147  vps->setVpsNumRepFormats( maxRepFormatIdx + 1 );
148  for(UInt idx=0; idx < vps->getVpsNumRepFormats(); idx++)
149  {
150    RepFormat *repFormat = vps->getVpsRepFormat( idx );
151#if REPN_FORMAT_CONTROL_FLAG
152    repFormat->setChromaAndBitDepthVpsPresentFlag( true ); 
153    if (idx==0)
154    {
155      assert(repFormat->getChromaAndBitDepthVpsPresentFlag() == true); 
156    }
157#endif
158    repFormat->setPicWidthVpsInLumaSamples  ( m_acLayerCfg[mapIdxToLayer[idx]].getSourceWidth()   );
159    repFormat->setPicHeightVpsInLumaSamples ( m_acLayerCfg[mapIdxToLayer[idx]].getSourceHeight()  );
160#if AUXILIARY_PICTURES
161    repFormat->setChromaFormatVpsIdc        ( m_acLayerCfg[mapIdxToLayer[idx]].getChromaFormatIDC() );
162#else
163    repFormat->setChromaFormatVpsIdc        ( 1                                             );  // Need modification to change for each layer - corresponds to 420
164#endif
165    repFormat->setSeparateColourPlaneVpsFlag( 0                                             );  // Need modification to change for each layer
166#if O0194_DIFFERENT_BITDEPTH_EL_BL
167    repFormat->setBitDepthVpsLuma           ( getInternalBitDepthY(mapIdxToLayer[idx])      );  // Need modification to change for each layer
168    repFormat->setBitDepthVpsChroma         ( getInternalBitDepthC(mapIdxToLayer[idx])      );  // Need modification to change for each layer
169#else
170    repFormat->setBitDepthVpsLuma           ( getInternalBitDepthY()                        );  // Need modification to change for each layer
171    repFormat->setBitDepthVpsChroma         ( getInternalBitDepthC()                        );  // Need modification to change for each layer
172#endif
173#if HIGHER_LAYER_IRAP_SKIP_FLAG
174    m_acTEncTop[mapIdxToLayer[idx]].setSkipPictureAtArcSwitch( m_skipPictureAtArcSwitch );
175#endif
176  }
177  delete [] mapIdxToLayer;
178#endif
179  for(UInt layer=0; layer<m_numLayers; layer++)
180  {
181#if O0194_DIFFERENT_BITDEPTH_EL_BL
182    //1
183    g_bitDepthY = m_acLayerCfg[layer].m_internalBitDepthY;
184    g_bitDepthC = m_acLayerCfg[layer].m_internalBitDepthC;
185
186    g_uiPCMBitDepthLuma = m_bPCMInputBitDepthFlag ? m_acLayerCfg[layer].m_inputBitDepthY : m_acLayerCfg[layer].m_internalBitDepthY;
187    g_uiPCMBitDepthChroma = m_bPCMInputBitDepthFlag ? m_acLayerCfg[layer].m_inputBitDepthC : m_acLayerCfg[layer].m_internalBitDepthC;
188
189    // Set this to be used in Upsampling filter in function "TComUpsampleFilter::upsampleBasePic"
190    g_bitDepthYLayer[layer] = g_bitDepthY;
191    g_bitDepthCLayer[layer] = g_bitDepthC;
192#endif
193    //m_acTEncTop[layer].setVPS(&vps);
194    m_acTEncTop[layer].setFrameRate                    ( m_acLayerCfg[layer].getFrameRate() );
195    m_acTEncTop[layer].setFrameSkip                    ( m_FrameSkip );
196    m_acTEncTop[layer].setSourceWidth                  ( m_acLayerCfg[layer].getSourceWidth() );
197    m_acTEncTop[layer].setSourceHeight                 ( m_acLayerCfg[layer].getSourceHeight() );
198    m_acTEncTop[layer].setConformanceMode              ( m_acLayerCfg[layer].getConformanceMode() );
199    m_acTEncTop[layer].setConformanceWindow            ( m_acLayerCfg[layer].m_confLeft, m_acLayerCfg[layer].m_confRight, m_acLayerCfg[layer].m_confTop, m_acLayerCfg[layer].m_confBottom );
200    m_acTEncTop[layer].setFramesToBeEncoded            ( m_framesToBeEncoded );
201
202    m_acTEncTop[layer].setProfile(m_profile);
203    m_acTEncTop[layer].setLevel(m_levelTier, m_level);
204    m_acTEncTop[layer].setProgressiveSourceFlag(m_progressiveSourceFlag);
205    m_acTEncTop[layer].setInterlacedSourceFlag(m_interlacedSourceFlag);
206    m_acTEncTop[layer].setNonPackedConstraintFlag(m_nonPackedConstraintFlag);
207    m_acTEncTop[layer].setFrameOnlyConstraintFlag(m_frameOnlyConstraintFlag);
208
209#if REF_IDX_MFM
210#if AVC_BASE
211#if M0457_PREDICTION_INDICATIONS
212    m_acTEncTop[layer].setMFMEnabledFlag(layer == 0 ? false : ( m_avcBaseLayerFlag ? AVC_SYNTAX : true ) && m_acLayerCfg[layer].getNumMotionPredRefLayers());
213#else
214    m_acTEncTop[layer].setMFMEnabledFlag(layer == 0 ? false : ( m_avcBaseLayerFlag ? AVC_SYNTAX : true ));
215#endif
216#else
217#if M0457_PREDICTION_INDICATIONS
218    m_acTEncTop[layer].setMFMEnabledFlag(layer == 0 ? false : ( m_acLayerCfg[layer].getNumMotionPredRefLayers() > 0 ) );
219#else
220    m_acTEncTop[layer].setMFMEnabledFlag(layer == 0 ? false : true);
221#endif
222#endif
223#if M0457_IL_SAMPLE_PRED_ONLY_FLAG
224    m_acTEncTop[layer].setIlSampleOnlyPred( layer == 0 ? 0 : m_ilSampleOnlyPred[layer] );
225#endif
226#endif
227    // set layer ID
228    m_acTEncTop[layer].setLayerId ( layer );
229    m_acTEncTop[layer].setNumLayer ( m_numLayers );
230    m_acTEncTop[layer].setLayerEnc(m_apcTEncTop);
231
232    //====== Coding Structure ========
233    m_acTEncTop[layer].setIntraPeriod                  ( m_acLayerCfg[layer].m_iIntraPeriod );
234    m_acTEncTop[layer].setDecodingRefreshType          ( m_iDecodingRefreshType );
235    m_acTEncTop[layer].setGOPSize                      ( m_iGOPSize );
236    m_acTEncTop[layer].setGopList                      ( m_GOPList );
237
238    m_acTEncTop[layer].setExtraRPSs                    ( m_extraRPSs );
239    for(Int i = 0; i < MAX_TLAYER; i++)
240    {
241      m_acTEncTop[layer].setNumReorderPics             ( m_numReorderPics[i], i );
242      m_acTEncTop[layer].setMaxDecPicBuffering         ( m_maxDecPicBuffering[i], i );
243    }
244    for( UInt uiLoop = 0; uiLoop < MAX_TLAYER; ++uiLoop )
245    {
246      m_acTEncTop[layer].setLambdaModifier( uiLoop, m_adLambdaModifier[ uiLoop ] );
247    }
248    m_acTEncTop[layer].setQP                           ( m_acLayerCfg[layer].getIntQP() );
249
250    m_acTEncTop[layer].setPad                          ( m_acLayerCfg[layer].getPad() );
251
252    m_acTEncTop[layer].setMaxTempLayer                 ( m_maxTempLayer );
253    m_acTEncTop[layer].setUseAMP( m_enableAMP );
254#if N0120_MAX_TID_REF_CFG
255    if (layer<m_numLayers-1)
256    {
257       m_acTEncTop[layer].setMaxTidIlRefPicsPlus1 ( m_acLayerCfg[layer].getMaxTidIlRefPicsPlus1());
258    }
259#endif
260#if VPS_EXTN_DIRECT_REF_LAYERS
261    if(layer)
262    {
263#if M0457_PREDICTION_INDICATIONS
264      for(Int i = 0; i < MAX_VPS_LAYER_ID_PLUS1; i++)
265      {
266        m_acTEncTop[layer].setSamplePredEnabledFlag(i, false);
267        m_acTEncTop[layer].setMotionPredEnabledFlag(i, false);
268      }
269      if(m_acLayerCfg[layer].getNumSamplePredRefLayers() == -1)
270      {
271        // Not included in the configuration file; assume that each layer depends on previous layer
272        m_acTEncTop[layer].setNumSamplePredRefLayers   (1);      // One sample pred ref. layer
273        m_acTEncTop[layer].setSamplePredRefLayerId     (0, layer - 1);   // Previous layer
274        m_acTEncTop[layer].setSamplePredEnabledFlag    (layer - 1, true);
275      }
276      else
277      {
278        m_acTEncTop[layer].setNumSamplePredRefLayers   ( m_acLayerCfg[layer].getNumSamplePredRefLayers() );
279        for(Int i = 0; i < m_acTEncTop[layer].getNumSamplePredRefLayers(); i++)
280        {
281          m_acTEncTop[layer].setSamplePredRefLayerId   ( i, m_acLayerCfg[layer].getSamplePredRefLayerId(i));
282          m_acTEncTop[layer].setSamplePredEnabledFlag  (m_acLayerCfg[layer].getSamplePredRefLayerId(i), true);
283        }
284      }
285      if(m_acLayerCfg[layer].getNumMotionPredRefLayers() == -1)
286      {
287        // Not included in the configuration file; assume that each layer depends on previous layer
288        m_acTEncTop[layer].setNumMotionPredRefLayers   (1);      // One motion pred ref. layer
289        m_acTEncTop[layer].setMotionPredRefLayerId     (0, layer - 1);   // Previous layer
290        m_acTEncTop[layer].setMotionPredEnabledFlag    (layer - 1, true);
291      }
292      else
293      {
294        m_acTEncTop[layer].setNumMotionPredRefLayers   ( m_acLayerCfg[layer].getNumMotionPredRefLayers() );
295        for(Int i = 0; i < m_acTEncTop[layer].getNumMotionPredRefLayers(); i++)
296        {
297          m_acTEncTop[layer].setMotionPredRefLayerId   ( i, m_acLayerCfg[layer].getMotionPredRefLayerId(i));
298          m_acTEncTop[layer].setMotionPredEnabledFlag  (m_acLayerCfg[layer].getMotionPredRefLayerId(i), true);
299        }
300      }
301      Int numDirectRefLayers = 0;
302      for (Int i = 0; i < layer; i++)
303      {
304        if (m_acTEncTop[layer].getSamplePredEnabledFlag(i) || m_acTEncTop[layer].getMotionPredEnabledFlag(i))
305        {
306          m_acTEncTop[layer].setRefLayerId(numDirectRefLayers, i);
307          numDirectRefLayers++;
308        }
309      }
310      m_acTEncTop[layer].setNumDirectRefLayers(numDirectRefLayers);
311#else
312      if(m_acLayerCfg[layer].getNumDirectRefLayers() == -1)
313      {
314        // Not included in the configuration file; assume that each layer depends on previous layer
315        m_acTEncTop[layer].setNumDirectRefLayers       (1);      // One ref. layer
316        m_acTEncTop[layer].setRefLayerId               (0, layer - 1);   // Previous layer
317      }
318      else
319      {
320        m_acTEncTop[layer].setNumDirectRefLayers       ( m_acLayerCfg[layer].getNumDirectRefLayers() );
321        for(Int i = 0; i < m_acTEncTop[layer].getNumDirectRefLayers(); i++)
322        {
323          m_acTEncTop[layer].setRefLayerId             ( i, m_acLayerCfg[layer].getRefLayerId(i));
324        }
325      }
326#endif
327      if(m_acLayerCfg[layer].getNumActiveRefLayers() == -1)
328      {
329#if M0457_PREDICTION_INDICATIONS
330        m_acTEncTop[layer].setNumActiveRefLayers( m_acTEncTop[layer].getNumDirectRefLayers() );
331#else
332        m_acTEncTop[layer].setNumActiveRefLayers( m_acLayerCfg[layer].getNumDirectRefLayers() );
333#endif
334        for( Int i = 0; i < m_acTEncTop[layer].getNumActiveRefLayers(); i++ )
335        {
336          m_acTEncTop[layer].setPredLayerId(i, i);
337        }
338      }
339      else
340      {
341        m_acTEncTop[layer].setNumActiveRefLayers       ( m_acLayerCfg[layer].getNumActiveRefLayers() );
342        for(Int i = 0; i < m_acTEncTop[layer].getNumActiveRefLayers(); i++)
343        {
344          m_acTEncTop[layer].setPredLayerId             ( i, m_acLayerCfg[layer].getPredLayerId(i));
345        }
346      }
347    }
348#endif
349    //===== Slice ========
350
351    //====== Loop/Deblock Filter ========
352    m_acTEncTop[layer].setLoopFilterDisable            ( m_bLoopFilterDisable       );
353    m_acTEncTop[layer].setLoopFilterOffsetInPPS        ( m_loopFilterOffsetInPPS );
354    m_acTEncTop[layer].setLoopFilterBetaOffset         ( m_loopFilterBetaOffsetDiv2  );
355    m_acTEncTop[layer].setLoopFilterTcOffset           ( m_loopFilterTcOffsetDiv2    );
356    m_acTEncTop[layer].setDeblockingFilterControlPresent( m_DeblockingFilterControlPresent);
357    m_acTEncTop[layer].setDeblockingFilterMetric       ( m_DeblockingFilterMetric );
358
359    //====== Motion search ========
360    m_acTEncTop[layer].setFastSearch                   ( m_iFastSearch  );
361    m_acTEncTop[layer].setSearchRange                  ( m_iSearchRange );
362    m_acTEncTop[layer].setBipredSearchRange            ( m_bipredSearchRange );
363
364    //====== Quality control ========
365    m_acTEncTop[layer].setMaxDeltaQP                   ( m_iMaxDeltaQP  );
366    m_acTEncTop[layer].setMaxCuDQPDepth                ( m_iMaxCuDQPDepth  );
367
368    m_acTEncTop[layer].setChromaCbQpOffset             ( m_cbQpOffset     );
369    m_acTEncTop[layer].setChromaCrQpOffset             ( m_crQpOffset  );
370
371#if ADAPTIVE_QP_SELECTION
372    m_acTEncTop[layer].setUseAdaptQpSelect             ( m_bUseAdaptQpSelect   );
373#endif
374
375    Int lowestQP;
376    lowestQP =  - 6*(g_bitDepthY - 8); // XXX: check
377
378    if ((m_iMaxDeltaQP == 0 ) && (m_acLayerCfg[layer].getIntQP() == lowestQP) && (m_useLossless == true))
379    {
380      m_bUseAdaptiveQP = false;
381    }
382    m_acTEncTop[layer].setUseAdaptiveQP                ( m_bUseAdaptiveQP  );
383    m_acTEncTop[layer].setQPAdaptationRange            ( m_iQPAdaptationRange );
384
385    //====== Tool list ========
386    m_acTEncTop[layer].setUseSBACRD                    ( m_bUseSBACRD   );
387    m_acTEncTop[layer].setDeltaQpRD                    ( m_uiDeltaQpRD  );
388    m_acTEncTop[layer].setUseASR                       ( m_bUseASR      );
389    m_acTEncTop[layer].setUseHADME                     ( m_bUseHADME    );
390    m_acTEncTop[layer].setUseLossless                  ( m_useLossless );
391    m_acTEncTop[layer].setdQPs                         ( m_acLayerCfg[layer].getdQPs() );
392    m_acTEncTop[layer].setUseRDOQ                      ( m_useRDOQ     );
393    m_acTEncTop[layer].setUseRDOQTS                    ( m_useRDOQTS   );
394    m_acTEncTop[layer].setRDpenalty                    ( m_rdPenalty );
395#if LAYER_CTB
396    m_acTEncTop[layer].setQuadtreeTULog2MaxSize        ( m_acLayerCfg[layer].m_uiQuadtreeTULog2MaxSize );
397    m_acTEncTop[layer].setQuadtreeTULog2MinSize        ( m_acLayerCfg[layer].m_uiQuadtreeTULog2MinSize );
398    m_acTEncTop[layer].setQuadtreeTUMaxDepthInter      ( m_acLayerCfg[layer].m_uiQuadtreeTUMaxDepthInter );
399    m_acTEncTop[layer].setQuadtreeTUMaxDepthIntra      ( m_acLayerCfg[layer].m_uiQuadtreeTUMaxDepthIntra );
400#else
401    m_acTEncTop[layer].setQuadtreeTULog2MaxSize        ( m_uiQuadtreeTULog2MaxSize );
402    m_acTEncTop[layer].setQuadtreeTULog2MinSize        ( m_uiQuadtreeTULog2MinSize );
403    m_acTEncTop[layer].setQuadtreeTUMaxDepthInter      ( m_uiQuadtreeTUMaxDepthInter );
404    m_acTEncTop[layer].setQuadtreeTUMaxDepthIntra      ( m_uiQuadtreeTUMaxDepthIntra );
405#endif
406    m_acTEncTop[layer].setUseFastEnc                   ( m_bUseFastEnc  );
407    m_acTEncTop[layer].setUseEarlyCU                   ( m_bUseEarlyCU  );
408    m_acTEncTop[layer].setUseFastDecisionForMerge      ( m_useFastDecisionForMerge  );
409    m_acTEncTop[layer].setUseCbfFastMode               ( m_bUseCbfFastMode  );
410    m_acTEncTop[layer].setUseEarlySkipDetection        ( m_useEarlySkipDetection );
411#if FAST_INTRA_SHVC
412    m_acTEncTop[layer].setUseFastIntraScalable         ( m_useFastIntraScalable );
413#endif
414
415    m_acTEncTop[layer].setUseTransformSkip             ( m_useTransformSkip      );
416    m_acTEncTop[layer].setUseTransformSkipFast         ( m_useTransformSkipFast  );
417    m_acTEncTop[layer].setUseConstrainedIntraPred      ( m_bUseConstrainedIntraPred );
418    m_acTEncTop[layer].setPCMLog2MinSize               ( m_uiPCMLog2MinSize);
419    m_acTEncTop[layer].setUsePCM                       ( m_usePCM );
420    m_acTEncTop[layer].setPCMLog2MaxSize               ( m_pcmLog2MaxSize);
421    m_acTEncTop[layer].setMaxNumMergeCand              ( m_maxNumMergeCand );
422
423
424    //====== Weighted Prediction ========
425    m_acTEncTop[layer].setUseWP                   ( m_useWeightedPred      );
426    m_acTEncTop[layer].setWPBiPred                ( m_useWeightedBiPred   );
427#if O0194_WEIGHTED_PREDICTION_CGS
428    if (layer!=0)
429    {
430      // Enable weighted prediction for enhancement layer
431      m_acTEncTop[layer].setUseWP                 ( true   );
432      m_acTEncTop[layer].setWPBiPred              ( true   );
433    }
434#endif
435    //====== Parallel Merge Estimation ========
436    m_acTEncTop[layer].setLog2ParallelMergeLevelMinus2 ( m_log2ParallelMergeLevel - 2 );
437
438    //====== Slice ========
439    m_acTEncTop[layer].setSliceMode               ( m_sliceMode                );
440    m_acTEncTop[layer].setSliceArgument           ( m_sliceArgument            );
441
442    //====== Dependent Slice ========
443    m_acTEncTop[layer].setSliceSegmentMode        ( m_sliceSegmentMode         );
444    m_acTEncTop[layer].setSliceSegmentArgument    ( m_sliceSegmentArgument     );
445#if LAYER_CTB
446    Int iNumPartInCU = 1<<(m_acLayerCfg[layer].m_uiMaxCUDepth<<1);
447#else
448    Int iNumPartInCU = 1<<(m_uiMaxCUDepth<<1);
449#endif
450    if(m_sliceSegmentMode==FIXED_NUMBER_OF_LCU)
451    {
452      m_acTEncTop[layer].setSliceSegmentArgument ( m_sliceSegmentArgument * iNumPartInCU );
453    }
454    if(m_sliceMode==FIXED_NUMBER_OF_LCU)
455    {
456      m_acTEncTop[layer].setSliceArgument ( m_sliceArgument * iNumPartInCU );
457    }
458    if(m_sliceMode==FIXED_NUMBER_OF_TILES)
459    {
460      m_acTEncTop[layer].setSliceArgument ( m_sliceArgument );
461    }
462
463    if(m_sliceMode == 0 )
464    {
465      m_bLFCrossSliceBoundaryFlag = true;
466    }
467    m_acTEncTop[layer].setLFCrossSliceBoundaryFlag( m_bLFCrossSliceBoundaryFlag );
468    m_acTEncTop[layer].setUseSAO ( m_bUseSAO );
469    m_acTEncTop[layer].setMaxNumOffsetsPerPic (m_maxNumOffsetsPerPic);
470
471    m_acTEncTop[layer].setSaoLcuBoundary (m_saoLcuBoundary);
472    m_acTEncTop[layer].setSaoLcuBasedOptimization (m_saoLcuBasedOptimization);
473    m_acTEncTop[layer].setPCMInputBitDepthFlag  ( m_bPCMInputBitDepthFlag);
474    m_acTEncTop[layer].setPCMFilterDisableFlag  ( m_bPCMFilterDisableFlag);
475
476    m_acTEncTop[layer].setDecodedPictureHashSEIEnabled(m_decodedPictureHashSEIEnabled);
477    m_acTEncTop[layer].setRecoveryPointSEIEnabled( m_recoveryPointSEIEnabled );
478    m_acTEncTop[layer].setBufferingPeriodSEIEnabled( m_bufferingPeriodSEIEnabled );
479    m_acTEncTop[layer].setPictureTimingSEIEnabled( m_pictureTimingSEIEnabled );
480    m_acTEncTop[layer].setToneMappingInfoSEIEnabled                 ( m_toneMappingInfoSEIEnabled );
481    m_acTEncTop[layer].setTMISEIToneMapId                           ( m_toneMapId );
482    m_acTEncTop[layer].setTMISEIToneMapCancelFlag                   ( m_toneMapCancelFlag );
483    m_acTEncTop[layer].setTMISEIToneMapPersistenceFlag              ( m_toneMapPersistenceFlag );
484    m_acTEncTop[layer].setTMISEICodedDataBitDepth                   ( m_toneMapCodedDataBitDepth );
485    m_acTEncTop[layer].setTMISEITargetBitDepth                      ( m_toneMapTargetBitDepth );
486    m_acTEncTop[layer].setTMISEIModelID                             ( m_toneMapModelId );
487    m_acTEncTop[layer].setTMISEIMinValue                            ( m_toneMapMinValue );
488    m_acTEncTop[layer].setTMISEIMaxValue                            ( m_toneMapMaxValue );
489    m_acTEncTop[layer].setTMISEISigmoidMidpoint                     ( m_sigmoidMidpoint );
490    m_acTEncTop[layer].setTMISEISigmoidWidth                        ( m_sigmoidWidth );
491    m_acTEncTop[layer].setTMISEIStartOfCodedInterva                 ( m_startOfCodedInterval );
492    m_acTEncTop[layer].setTMISEINumPivots                           ( m_numPivots );
493    m_acTEncTop[layer].setTMISEICodedPivotValue                     ( m_codedPivotValue );
494    m_acTEncTop[layer].setTMISEITargetPivotValue                    ( m_targetPivotValue );
495    m_acTEncTop[layer].setTMISEICameraIsoSpeedIdc                   ( m_cameraIsoSpeedIdc );
496    m_acTEncTop[layer].setTMISEICameraIsoSpeedValue                 ( m_cameraIsoSpeedValue );
497    m_acTEncTop[layer].setTMISEIExposureCompensationValueSignFlag   ( m_exposureCompensationValueSignFlag );
498    m_acTEncTop[layer].setTMISEIExposureCompensationValueNumerator  ( m_exposureCompensationValueNumerator );
499    m_acTEncTop[layer].setTMISEIExposureCompensationValueDenomIdc   ( m_exposureCompensationValueDenomIdc );
500    m_acTEncTop[layer].setTMISEIRefScreenLuminanceWhite             ( m_refScreenLuminanceWhite );
501    m_acTEncTop[layer].setTMISEIExtendedRangeWhiteLevel             ( m_extendedRangeWhiteLevel );
502    m_acTEncTop[layer].setTMISEINominalBlackLevelLumaCodeValue      ( m_nominalBlackLevelLumaCodeValue );
503    m_acTEncTop[layer].setTMISEINominalWhiteLevelLumaCodeValue      ( m_nominalWhiteLevelLumaCodeValue );
504    m_acTEncTop[layer].setTMISEIExtendedWhiteLevelLumaCodeValue     ( m_extendedWhiteLevelLumaCodeValue );
505    m_acTEncTop[layer].setFramePackingArrangementSEIEnabled( m_framePackingSEIEnabled );
506    m_acTEncTop[layer].setFramePackingArrangementSEIType( m_framePackingSEIType );
507    m_acTEncTop[layer].setFramePackingArrangementSEIId( m_framePackingSEIId );
508    m_acTEncTop[layer].setFramePackingArrangementSEIQuincunx( m_framePackingSEIQuincunx );
509    m_acTEncTop[layer].setFramePackingArrangementSEIInterpretation( m_framePackingSEIInterpretation );
510    m_acTEncTop[layer].setDisplayOrientationSEIAngle( m_displayOrientationSEIAngle );
511    m_acTEncTop[layer].setTemporalLevel0IndexSEIEnabled( m_temporalLevel0IndexSEIEnabled );
512    m_acTEncTop[layer].setGradualDecodingRefreshInfoEnabled( m_gradualDecodingRefreshInfoEnabled );
513    m_acTEncTop[layer].setDecodingUnitInfoSEIEnabled( m_decodingUnitInfoSEIEnabled );
514#if M0043_LAYERS_PRESENT_SEI
515    m_acTEncTop[layer].setLayersPresentSEIEnabled( m_layersPresentSEIEnabled );
516#endif
517    m_acTEncTop[layer].setSOPDescriptionSEIEnabled( m_SOPDescriptionSEIEnabled );
518    m_acTEncTop[layer].setScalableNestingSEIEnabled( m_scalableNestingSEIEnabled );
519#if N0383_IL_CONSTRAINED_TILE_SETS_SEI
520    m_acTEncTop[layer].setInterLayerConstrainedTileSetsSEIEnabled( m_interLayerConstrainedTileSetsSEIEnabled );
521    m_acTEncTop[layer].setIlNumSetsInMessage( m_ilNumSetsInMessage );
522    m_acTEncTop[layer].setSkippedTileSetPresentFlag( m_skippedTileSetPresentFlag );
523    m_acTEncTop[layer].setTopLeftTileIndex( m_topLeftTileIndex );
524    m_acTEncTop[layer].setBottomRightTileIndex( m_bottomRightTileIndex );
525    m_acTEncTop[layer].setIlcIdc( m_ilcIdc );
526#endif
527    m_acTEncTop[layer].setUniformSpacingIdr          ( m_iUniformSpacingIdr );
528    m_acTEncTop[layer].setNumColumnsMinus1           ( m_iNumColumnsMinus1 );
529    m_acTEncTop[layer].setNumRowsMinus1              ( m_iNumRowsMinus1 );
530    if(m_iUniformSpacingIdr==0)
531    {
532      m_acTEncTop[layer].setColumnWidth              ( m_pColumnWidth );
533      m_acTEncTop[layer].setRowHeight                ( m_pRowHeight );
534    }
535    m_acTEncTop[layer].xCheckGSParameters();
536    Int uiTilesCount          = (m_iNumRowsMinus1+1) * (m_iNumColumnsMinus1+1);
537    if(uiTilesCount == 1)
538    {
539      m_bLFCrossTileBoundaryFlag = true;
540    }
541    m_acTEncTop[layer].setLFCrossTileBoundaryFlag( m_bLFCrossTileBoundaryFlag );
542    m_acTEncTop[layer].setWaveFrontSynchro           ( m_iWaveFrontSynchro );
543    m_acTEncTop[layer].setWaveFrontSubstreams        ( m_acLayerCfg[layer].m_iWaveFrontSubstreams );
544    m_acTEncTop[layer].setTMVPModeId ( m_TMVPModeId );
545    m_acTEncTop[layer].setUseScalingListId           ( m_useScalingListId  );
546    m_acTEncTop[layer].setScalingListFile            ( m_scalingListFile   );
547    m_acTEncTop[layer].setSignHideFlag(m_signHideFlag);
548#if RATE_CONTROL_LAMBDA_DOMAIN
549#if RC_SHVC_HARMONIZATION
550    m_acTEncTop[layer].setUseRateCtrl     (m_acLayerCfg[layer].getRCEnableRateControl());
551    m_acTEncTop[layer].setTargetBitrate   (m_acLayerCfg[layer].getRCTargetBitrate());
552    m_acTEncTop[layer].setKeepHierBit     (m_acLayerCfg[layer].getRCKeepHierarchicalBit());
553    m_acTEncTop[layer].setLCULevelRC      (m_acLayerCfg[layer].getRCLCULevelRC());
554    m_acTEncTop[layer].setUseLCUSeparateModel (m_acLayerCfg[layer].getRCUseLCUSeparateModel());
555    m_acTEncTop[layer].setInitialQP           (m_acLayerCfg[layer].getRCInitialQP());
556    m_acTEncTop[layer].setForceIntraQP        (m_acLayerCfg[layer].getRCForceIntraQP());
557#else
558    m_acTEncTop[layer].setUseRateCtrl         ( m_RCEnableRateControl );
559    m_acTEncTop[layer].setTargetBitrate       ( m_RCTargetBitrate );
560    m_acTEncTop[layer].setKeepHierBit         ( m_RCKeepHierarchicalBit );
561    m_acTEncTop[layer].setLCULevelRC          ( m_RCLCULevelRC );
562    m_acTEncTop[layer].setUseLCUSeparateModel ( m_RCUseLCUSeparateModel );
563    m_acTEncTop[layer].setInitialQP           ( m_RCInitialQP );
564    m_acTEncTop[layer].setForceIntraQP        ( m_RCForceIntraQP );
565#endif
566#else
567    m_acTEncTop[layer].setUseRateCtrl     ( m_enableRateCtrl);
568    m_acTEncTop[layer].setTargetBitrate   ( m_targetBitrate);
569    m_acTEncTop[layer].setNumLCUInUnit    ( m_numLCUInUnit);
570#endif
571    m_acTEncTop[layer].setTransquantBypassEnableFlag(m_TransquantBypassEnableFlag);
572    m_acTEncTop[layer].setCUTransquantBypassFlagValue(m_CUTransquantBypassFlagValue);
573    m_acTEncTop[layer].setUseRecalculateQPAccordingToLambda( m_recalculateQPAccordingToLambda );
574    m_acTEncTop[layer].setUseStrongIntraSmoothing( m_useStrongIntraSmoothing );
575    m_acTEncTop[layer].setActiveParameterSetsSEIEnabled ( m_activeParameterSetsSEIEnabled );
576    m_acTEncTop[layer].setVuiParametersPresentFlag( m_vuiParametersPresentFlag );
577    m_acTEncTop[layer].setAspectRatioIdc( m_aspectRatioIdc );
578    m_acTEncTop[layer].setSarWidth( m_sarWidth );
579    m_acTEncTop[layer].setSarHeight( m_sarHeight );
580    m_acTEncTop[layer].setOverscanInfoPresentFlag( m_overscanInfoPresentFlag );
581    m_acTEncTop[layer].setOverscanAppropriateFlag( m_overscanAppropriateFlag );
582    m_acTEncTop[layer].setVideoSignalTypePresentFlag( m_videoSignalTypePresentFlag );
583    m_acTEncTop[layer].setVideoFormat( m_videoFormat );
584    m_acTEncTop[layer].setVideoFullRangeFlag( m_videoFullRangeFlag );
585    m_acTEncTop[layer].setColourDescriptionPresentFlag( m_colourDescriptionPresentFlag );
586    m_acTEncTop[layer].setColourPrimaries( m_colourPrimaries );
587    m_acTEncTop[layer].setTransferCharacteristics( m_transferCharacteristics );
588    m_acTEncTop[layer].setMatrixCoefficients( m_matrixCoefficients );
589    m_acTEncTop[layer].setChromaLocInfoPresentFlag( m_chromaLocInfoPresentFlag );
590    m_acTEncTop[layer].setChromaSampleLocTypeTopField( m_chromaSampleLocTypeTopField );
591    m_acTEncTop[layer].setChromaSampleLocTypeBottomField( m_chromaSampleLocTypeBottomField );
592    m_acTEncTop[layer].setNeutralChromaIndicationFlag( m_neutralChromaIndicationFlag );
593    m_acTEncTop[layer].setDefaultDisplayWindow( m_defDispWinLeftOffset, m_defDispWinRightOffset, m_defDispWinTopOffset, m_defDispWinBottomOffset );
594    m_acTEncTop[layer].setFrameFieldInfoPresentFlag( m_frameFieldInfoPresentFlag );
595    m_acTEncTop[layer].setPocProportionalToTimingFlag( m_pocProportionalToTimingFlag );
596    m_acTEncTop[layer].setNumTicksPocDiffOneMinus1   ( m_numTicksPocDiffOneMinus1    );
597    m_acTEncTop[layer].setBitstreamRestrictionFlag( m_bitstreamRestrictionFlag );
598    m_acTEncTop[layer].setTilesFixedStructureFlag( m_tilesFixedStructureFlag );
599    m_acTEncTop[layer].setMotionVectorsOverPicBoundariesFlag( m_motionVectorsOverPicBoundariesFlag );
600    m_acTEncTop[layer].setMinSpatialSegmentationIdc( m_minSpatialSegmentationIdc );
601    m_acTEncTop[layer].setMaxBytesPerPicDenom( m_maxBytesPerPicDenom );
602    m_acTEncTop[layer].setMaxBitsPerMinCuDenom( m_maxBitsPerMinCuDenom );
603    m_acTEncTop[layer].setLog2MaxMvLengthHorizontal( m_log2MaxMvLengthHorizontal );
604    m_acTEncTop[layer].setLog2MaxMvLengthVertical( m_log2MaxMvLengthVertical );
605    m_acTEncTop[layer].setElRapSliceTypeB(layer == 0? 0 : m_elRapSliceBEnabled);
606    if( layer > 0 )
607    {
608      m_acTEncTop[layer].setNumScaledRefLayerOffsets( m_acLayerCfg[layer].m_numScaledRefLayerOffsets );
609      for(Int i = 0; i < m_acLayerCfg[layer].m_numScaledRefLayerOffsets; i++)
610      {
611#if O0098_SCALED_REF_LAYER_ID
612        m_acTEncTop[layer].setScaledRefLayerId(i, m_acLayerCfg[layer].m_scaledRefLayerId[i]);
613#endif
614        m_acTEncTop[layer].getScaledRefLayerWindow(i).setWindow( 2*m_acLayerCfg[layer].m_scaledRefLayerLeftOffset[i], 2*m_acLayerCfg[layer].m_scaledRefLayerRightOffset[i],
615                                                  2*m_acLayerCfg[layer].m_scaledRefLayerTopOffset[i], 2*m_acLayerCfg[layer].m_scaledRefLayerBottomOffset[i]);
616      }
617    }
618#if M0040_ADAPTIVE_RESOLUTION_CHANGE
619    m_acTEncTop[layer].setAdaptiveResolutionChange( m_adaptiveResolutionChange );
620#endif
621#if AUXILIARY_PICTURES
622    m_acTEncTop[layer].setChromaFormatIDC( m_acLayerCfg[layer].m_chromaFormatIDC );
623#endif
624#if O0153_ALT_OUTPUT_LAYER_FLAG
625    m_acTEncTop[layer].setAltOuputLayerFlag( m_altOutputLayerFlag );
626#endif
627  }
628}
629#else //SVC_EXTENSION
630Void TAppEncTop::xInitLibCfg()
631{
632  TComVPS vps;
633
634  vps.setMaxTLayers                       ( m_maxTempLayer );
635  if (m_maxTempLayer == 1)
636  {
637    vps.setTemporalNestingFlag(true);
638  }
639  vps.setMaxLayers                        ( 1 );
640  for(Int i = 0; i < MAX_TLAYER; i++)
641  {
642    vps.setNumReorderPics                 ( m_numReorderPics[i], i );
643    vps.setMaxDecPicBuffering             ( m_maxDecPicBuffering[i], i );
644  }
645  m_cTEncTop.setVPS(&vps);
646
647  m_cTEncTop.setProfile(m_profile);
648  m_cTEncTop.setLevel(m_levelTier, m_level);
649  m_cTEncTop.setProgressiveSourceFlag(m_progressiveSourceFlag);
650  m_cTEncTop.setInterlacedSourceFlag(m_interlacedSourceFlag);
651  m_cTEncTop.setNonPackedConstraintFlag(m_nonPackedConstraintFlag);
652  m_cTEncTop.setFrameOnlyConstraintFlag(m_frameOnlyConstraintFlag);
653
654  m_cTEncTop.setFrameRate                    ( m_iFrameRate );
655  m_cTEncTop.setFrameSkip                    ( m_FrameSkip );
656  m_cTEncTop.setSourceWidth                  ( m_iSourceWidth );
657  m_cTEncTop.setSourceHeight                 ( m_iSourceHeight );
658  m_cTEncTop.setConformanceWindow            ( m_confLeft, m_confRight, m_confTop, m_confBottom );
659  m_cTEncTop.setFramesToBeEncoded            ( m_framesToBeEncoded );
660
661  //====== Coding Structure ========
662  m_cTEncTop.setIntraPeriod                  ( m_iIntraPeriod );
663  m_cTEncTop.setDecodingRefreshType          ( m_iDecodingRefreshType );
664  m_cTEncTop.setGOPSize                      ( m_iGOPSize );
665  m_cTEncTop.setGopList                      ( m_GOPList );
666  m_cTEncTop.setExtraRPSs                    ( m_extraRPSs );
667  for(Int i = 0; i < MAX_TLAYER; i++)
668  {
669    m_cTEncTop.setNumReorderPics             ( m_numReorderPics[i], i );
670    m_cTEncTop.setMaxDecPicBuffering         ( m_maxDecPicBuffering[i], i );
671  }
672  for( UInt uiLoop = 0; uiLoop < MAX_TLAYER; ++uiLoop )
673  {
674    m_cTEncTop.setLambdaModifier( uiLoop, m_adLambdaModifier[ uiLoop ] );
675  }
676  m_cTEncTop.setQP                           ( m_iQP );
677
678  m_cTEncTop.setPad                          ( m_aiPad );
679
680  m_cTEncTop.setMaxTempLayer                 ( m_maxTempLayer );
681  m_cTEncTop.setUseAMP( m_enableAMP );
682
683  //===== Slice ========
684
685  //====== Loop/Deblock Filter ========
686  m_cTEncTop.setLoopFilterDisable            ( m_bLoopFilterDisable       );
687  m_cTEncTop.setLoopFilterOffsetInPPS        ( m_loopFilterOffsetInPPS );
688  m_cTEncTop.setLoopFilterBetaOffset         ( m_loopFilterBetaOffsetDiv2  );
689  m_cTEncTop.setLoopFilterTcOffset           ( m_loopFilterTcOffsetDiv2    );
690  m_cTEncTop.setDeblockingFilterControlPresent( m_DeblockingFilterControlPresent);
691  m_cTEncTop.setDeblockingFilterMetric       ( m_DeblockingFilterMetric );
692
693  //====== Motion search ========
694  m_cTEncTop.setFastSearch                   ( m_iFastSearch  );
695  m_cTEncTop.setSearchRange                  ( m_iSearchRange );
696  m_cTEncTop.setBipredSearchRange            ( m_bipredSearchRange );
697
698  //====== Quality control ========
699  m_cTEncTop.setMaxDeltaQP                   ( m_iMaxDeltaQP  );
700  m_cTEncTop.setMaxCuDQPDepth                ( m_iMaxCuDQPDepth  );
701
702  m_cTEncTop.setChromaCbQpOffset               ( m_cbQpOffset     );
703  m_cTEncTop.setChromaCrQpOffset            ( m_crQpOffset  );
704
705#if ADAPTIVE_QP_SELECTION
706  m_cTEncTop.setUseAdaptQpSelect             ( m_bUseAdaptQpSelect   );
707#endif
708
709  Int lowestQP;
710  lowestQP =  - 6*(g_bitDepthY - 8); // XXX: check
711
712  if ((m_iMaxDeltaQP == 0 ) && (m_iQP == lowestQP) && (m_useLossless == true))
713  {
714    m_bUseAdaptiveQP = false;
715  }
716  m_cTEncTop.setUseAdaptiveQP                ( m_bUseAdaptiveQP  );
717  m_cTEncTop.setQPAdaptationRange            ( m_iQPAdaptationRange );
718
719  //====== Tool list ========
720  m_cTEncTop.setUseSBACRD                    ( m_bUseSBACRD   );
721  m_cTEncTop.setDeltaQpRD                    ( m_uiDeltaQpRD  );
722  m_cTEncTop.setUseASR                       ( m_bUseASR      );
723  m_cTEncTop.setUseHADME                     ( m_bUseHADME    );
724  m_cTEncTop.setUseLossless                  ( m_useLossless );
725  m_cTEncTop.setdQPs                         ( m_aidQP        );
726  m_cTEncTop.setUseRDOQ                      ( m_useRDOQ     );
727  m_cTEncTop.setUseRDOQTS                    ( m_useRDOQTS   );
728  m_cTEncTop.setRDpenalty                 ( m_rdPenalty );
729  m_cTEncTop.setQuadtreeTULog2MaxSize        ( m_uiQuadtreeTULog2MaxSize );
730  m_cTEncTop.setQuadtreeTULog2MinSize        ( m_uiQuadtreeTULog2MinSize );
731  m_cTEncTop.setQuadtreeTUMaxDepthInter      ( m_uiQuadtreeTUMaxDepthInter );
732  m_cTEncTop.setQuadtreeTUMaxDepthIntra      ( m_uiQuadtreeTUMaxDepthIntra );
733  m_cTEncTop.setUseFastEnc                   ( m_bUseFastEnc  );
734  m_cTEncTop.setUseEarlyCU                   ( m_bUseEarlyCU  );
735  m_cTEncTop.setUseFastDecisionForMerge      ( m_useFastDecisionForMerge  );
736  m_cTEncTop.setUseCbfFastMode            ( m_bUseCbfFastMode  );
737  m_cTEncTop.setUseEarlySkipDetection            ( m_useEarlySkipDetection );
738#if FAST_INTRA_SHVC
739  m_cTEncTop.setUseFastIntraScalable            ( m_useFastIntraScalable );
740#endif
741
742  m_cTEncTop.setUseTransformSkip             ( m_useTransformSkip      );
743  m_cTEncTop.setUseTransformSkipFast         ( m_useTransformSkipFast  );
744  m_cTEncTop.setUseConstrainedIntraPred      ( m_bUseConstrainedIntraPred );
745  m_cTEncTop.setPCMLog2MinSize          ( m_uiPCMLog2MinSize);
746  m_cTEncTop.setUsePCM                       ( m_usePCM );
747  m_cTEncTop.setPCMLog2MaxSize               ( m_pcmLog2MaxSize);
748  m_cTEncTop.setMaxNumMergeCand              ( m_maxNumMergeCand );
749
750
751  //====== Weighted Prediction ========
752  m_cTEncTop.setUseWP                   ( m_useWeightedPred      );
753  m_cTEncTop.setWPBiPred                ( m_useWeightedBiPred   );
754  //====== Parallel Merge Estimation ========
755  m_cTEncTop.setLog2ParallelMergeLevelMinus2 ( m_log2ParallelMergeLevel - 2 );
756
757  //====== Slice ========
758  m_cTEncTop.setSliceMode               ( m_sliceMode                );
759  m_cTEncTop.setSliceArgument           ( m_sliceArgument            );
760
761  //====== Dependent Slice ========
762  m_cTEncTop.setSliceSegmentMode        ( m_sliceSegmentMode         );
763  m_cTEncTop.setSliceSegmentArgument    ( m_sliceSegmentArgument     );
764  Int iNumPartInCU = 1<<(m_uiMaxCUDepth<<1);
765  if(m_sliceSegmentMode==FIXED_NUMBER_OF_LCU)
766  {
767    m_cTEncTop.setSliceSegmentArgument ( m_sliceSegmentArgument * iNumPartInCU );
768  }
769  if(m_sliceMode==FIXED_NUMBER_OF_LCU)
770  {
771    m_cTEncTop.setSliceArgument ( m_sliceArgument * iNumPartInCU );
772  }
773  if(m_sliceMode==FIXED_NUMBER_OF_TILES)
774  {
775    m_cTEncTop.setSliceArgument ( m_sliceArgument );
776  }
777
778  if(m_sliceMode == 0 )
779  {
780    m_bLFCrossSliceBoundaryFlag = true;
781  }
782  m_cTEncTop.setLFCrossSliceBoundaryFlag( m_bLFCrossSliceBoundaryFlag );
783  m_cTEncTop.setUseSAO ( m_bUseSAO );
784  m_cTEncTop.setMaxNumOffsetsPerPic (m_maxNumOffsetsPerPic);
785
786  m_cTEncTop.setSaoLcuBoundary (m_saoLcuBoundary);
787  m_cTEncTop.setSaoLcuBasedOptimization (m_saoLcuBasedOptimization);
788  m_cTEncTop.setPCMInputBitDepthFlag  ( m_bPCMInputBitDepthFlag);
789  m_cTEncTop.setPCMFilterDisableFlag  ( m_bPCMFilterDisableFlag);
790
791  m_cTEncTop.setDecodedPictureHashSEIEnabled(m_decodedPictureHashSEIEnabled);
792  m_cTEncTop.setRecoveryPointSEIEnabled( m_recoveryPointSEIEnabled );
793  m_cTEncTop.setBufferingPeriodSEIEnabled( m_bufferingPeriodSEIEnabled );
794  m_cTEncTop.setPictureTimingSEIEnabled( m_pictureTimingSEIEnabled );
795  m_cTEncTop.setToneMappingInfoSEIEnabled                 ( m_toneMappingInfoSEIEnabled );
796  m_cTEncTop.setTMISEIToneMapId                           ( m_toneMapId );
797  m_cTEncTop.setTMISEIToneMapCancelFlag                   ( m_toneMapCancelFlag );
798  m_cTEncTop.setTMISEIToneMapPersistenceFlag              ( m_toneMapPersistenceFlag );
799  m_cTEncTop.setTMISEICodedDataBitDepth                   ( m_toneMapCodedDataBitDepth );
800  m_cTEncTop.setTMISEITargetBitDepth                      ( m_toneMapTargetBitDepth );
801  m_cTEncTop.setTMISEIModelID                             ( m_toneMapModelId );
802  m_cTEncTop.setTMISEIMinValue                            ( m_toneMapMinValue );
803  m_cTEncTop.setTMISEIMaxValue                            ( m_toneMapMaxValue );
804  m_cTEncTop.setTMISEISigmoidMidpoint                     ( m_sigmoidMidpoint );
805  m_cTEncTop.setTMISEISigmoidWidth                        ( m_sigmoidWidth );
806  m_cTEncTop.setTMISEIStartOfCodedInterva                 ( m_startOfCodedInterval );
807  m_cTEncTop.setTMISEINumPivots                           ( m_numPivots );
808  m_cTEncTop.setTMISEICodedPivotValue                     ( m_codedPivotValue );
809  m_cTEncTop.setTMISEITargetPivotValue                    ( m_targetPivotValue );
810  m_cTEncTop.setTMISEICameraIsoSpeedIdc                   ( m_cameraIsoSpeedIdc );
811  m_cTEncTop.setTMISEICameraIsoSpeedValue                 ( m_cameraIsoSpeedValue );
812  m_cTEncTop.setTMISEIExposureCompensationValueSignFlag   ( m_exposureCompensationValueSignFlag );
813  m_cTEncTop.setTMISEIExposureCompensationValueNumerator  ( m_exposureCompensationValueNumerator );
814  m_cTEncTop.setTMISEIExposureCompensationValueDenomIdc   ( m_exposureCompensationValueDenomIdc );
815  m_cTEncTop.setTMISEIRefScreenLuminanceWhite             ( m_refScreenLuminanceWhite );
816  m_cTEncTop.setTMISEIExtendedRangeWhiteLevel             ( m_extendedRangeWhiteLevel );
817  m_cTEncTop.setTMISEINominalBlackLevelLumaCodeValue      ( m_nominalBlackLevelLumaCodeValue );
818  m_cTEncTop.setTMISEINominalWhiteLevelLumaCodeValue      ( m_nominalWhiteLevelLumaCodeValue );
819  m_cTEncTop.setTMISEIExtendedWhiteLevelLumaCodeValue     ( m_extendedWhiteLevelLumaCodeValue );
820  m_cTEncTop.setFramePackingArrangementSEIEnabled( m_framePackingSEIEnabled );
821  m_cTEncTop.setFramePackingArrangementSEIType( m_framePackingSEIType );
822  m_cTEncTop.setFramePackingArrangementSEIId( m_framePackingSEIId );
823  m_cTEncTop.setFramePackingArrangementSEIQuincunx( m_framePackingSEIQuincunx );
824  m_cTEncTop.setFramePackingArrangementSEIInterpretation( m_framePackingSEIInterpretation );
825  m_cTEncTop.setDisplayOrientationSEIAngle( m_displayOrientationSEIAngle );
826  m_cTEncTop.setTemporalLevel0IndexSEIEnabled( m_temporalLevel0IndexSEIEnabled );
827  m_cTEncTop.setGradualDecodingRefreshInfoEnabled( m_gradualDecodingRefreshInfoEnabled );
828  m_cTEncTop.setDecodingUnitInfoSEIEnabled( m_decodingUnitInfoSEIEnabled );
829#if M0043_LAYERS_PRESENT_SEI
830  m_cTEncTop.setLayersPresentSEIEnabled( m_layersPresentSEIEnabled );
831#endif
832  m_cTEncTop.setSOPDescriptionSEIEnabled( m_SOPDescriptionSEIEnabled );
833  m_cTEncTop.setScalableNestingSEIEnabled( m_scalableNestingSEIEnabled );
834  m_cTEncTop.setUniformSpacingIdr          ( m_iUniformSpacingIdr );
835  m_cTEncTop.setNumColumnsMinus1           ( m_iNumColumnsMinus1 );
836  m_cTEncTop.setNumRowsMinus1              ( m_iNumRowsMinus1 );
837  if(m_iUniformSpacingIdr==0)
838  {
839    m_cTEncTop.setColumnWidth              ( m_pColumnWidth );
840    m_cTEncTop.setRowHeight                ( m_pRowHeight );
841  }
842  m_cTEncTop.xCheckGSParameters();
843  Int uiTilesCount          = (m_iNumRowsMinus1+1) * (m_iNumColumnsMinus1+1);
844  if(uiTilesCount == 1)
845  {
846    m_bLFCrossTileBoundaryFlag = true;
847  }
848  m_cTEncTop.setLFCrossTileBoundaryFlag( m_bLFCrossTileBoundaryFlag );
849  m_cTEncTop.setWaveFrontSynchro           ( m_iWaveFrontSynchro );
850  m_cTEncTop.setWaveFrontSubstreams        ( m_iWaveFrontSubstreams );
851  m_cTEncTop.setTMVPModeId ( m_TMVPModeId );
852  m_cTEncTop.setUseScalingListId           ( m_useScalingListId  );
853  m_cTEncTop.setScalingListFile            ( m_scalingListFile   );
854  m_cTEncTop.setSignHideFlag(m_signHideFlag);
855#if RATE_CONTROL_LAMBDA_DOMAIN
856  m_cTEncTop.setUseRateCtrl         ( m_RCEnableRateControl );
857  m_cTEncTop.setTargetBitrate       ( m_RCTargetBitrate );
858  m_cTEncTop.setKeepHierBit         ( m_RCKeepHierarchicalBit );
859  m_cTEncTop.setLCULevelRC          ( m_RCLCULevelRC );
860  m_cTEncTop.setUseLCUSeparateModel ( m_RCUseLCUSeparateModel );
861  m_cTEncTop.setInitialQP           ( m_RCInitialQP );
862  m_cTEncTop.setForceIntraQP        ( m_RCForceIntraQP );
863#else
864  m_cTEncTop.setUseRateCtrl     ( m_enableRateCtrl);
865  m_cTEncTop.setTargetBitrate   ( m_targetBitrate);
866  m_cTEncTop.setNumLCUInUnit    ( m_numLCUInUnit);
867#endif
868  m_cTEncTop.setTransquantBypassEnableFlag(m_TransquantBypassEnableFlag);
869  m_cTEncTop.setCUTransquantBypassFlagValue(m_CUTransquantBypassFlagValue);
870  m_cTEncTop.setUseRecalculateQPAccordingToLambda( m_recalculateQPAccordingToLambda );
871  m_cTEncTop.setUseStrongIntraSmoothing( m_useStrongIntraSmoothing );
872  m_cTEncTop.setActiveParameterSetsSEIEnabled ( m_activeParameterSetsSEIEnabled );
873  m_cTEncTop.setVuiParametersPresentFlag( m_vuiParametersPresentFlag );
874  m_cTEncTop.setAspectRatioIdc( m_aspectRatioIdc );
875  m_cTEncTop.setSarWidth( m_sarWidth );
876  m_cTEncTop.setSarHeight( m_sarHeight );
877  m_cTEncTop.setOverscanInfoPresentFlag( m_overscanInfoPresentFlag );
878  m_cTEncTop.setOverscanAppropriateFlag( m_overscanAppropriateFlag );
879  m_cTEncTop.setVideoSignalTypePresentFlag( m_videoSignalTypePresentFlag );
880  m_cTEncTop.setVideoFormat( m_videoFormat );
881  m_cTEncTop.setVideoFullRangeFlag( m_videoFullRangeFlag );
882  m_cTEncTop.setColourDescriptionPresentFlag( m_colourDescriptionPresentFlag );
883  m_cTEncTop.setColourPrimaries( m_colourPrimaries );
884  m_cTEncTop.setTransferCharacteristics( m_transferCharacteristics );
885  m_cTEncTop.setMatrixCoefficients( m_matrixCoefficients );
886  m_cTEncTop.setChromaLocInfoPresentFlag( m_chromaLocInfoPresentFlag );
887  m_cTEncTop.setChromaSampleLocTypeTopField( m_chromaSampleLocTypeTopField );
888  m_cTEncTop.setChromaSampleLocTypeBottomField( m_chromaSampleLocTypeBottomField );
889  m_cTEncTop.setNeutralChromaIndicationFlag( m_neutralChromaIndicationFlag );
890  m_cTEncTop.setDefaultDisplayWindow( m_defDispWinLeftOffset, m_defDispWinRightOffset, m_defDispWinTopOffset, m_defDispWinBottomOffset );
891  m_cTEncTop.setFrameFieldInfoPresentFlag( m_frameFieldInfoPresentFlag );
892  m_cTEncTop.setPocProportionalToTimingFlag( m_pocProportionalToTimingFlag );
893  m_cTEncTop.setNumTicksPocDiffOneMinus1   ( m_numTicksPocDiffOneMinus1    );
894  m_cTEncTop.setBitstreamRestrictionFlag( m_bitstreamRestrictionFlag );
895  m_cTEncTop.setTilesFixedStructureFlag( m_tilesFixedStructureFlag );
896  m_cTEncTop.setMotionVectorsOverPicBoundariesFlag( m_motionVectorsOverPicBoundariesFlag );
897  m_cTEncTop.setMinSpatialSegmentationIdc( m_minSpatialSegmentationIdc );
898  m_cTEncTop.setMaxBytesPerPicDenom( m_maxBytesPerPicDenom );
899  m_cTEncTop.setMaxBitsPerMinCuDenom( m_maxBitsPerMinCuDenom );
900  m_cTEncTop.setLog2MaxMvLengthHorizontal( m_log2MaxMvLengthHorizontal );
901  m_cTEncTop.setLog2MaxMvLengthVertical( m_log2MaxMvLengthVertical );
902}
903#endif //SVC_EXTENSION
904
905Void TAppEncTop::xCreateLib()
906{
907  // Video I/O
908#if SVC_EXTENSION
909  // initialize global variables
910  initROM();
911
912  for(UInt layer=0; layer<m_numLayers; layer++)
913  {
914#if O0194_DIFFERENT_BITDEPTH_EL_BL
915    //2
916    g_bitDepthY = m_acLayerCfg[layer].m_internalBitDepthY;
917    g_bitDepthC = m_acLayerCfg[layer].m_internalBitDepthC;
918
919    g_uiPCMBitDepthLuma = m_bPCMInputBitDepthFlag ? m_acLayerCfg[layer].m_inputBitDepthY : m_acLayerCfg[layer].m_internalBitDepthY;
920    g_uiPCMBitDepthChroma = m_bPCMInputBitDepthFlag ? m_acLayerCfg[layer].m_inputBitDepthC : m_acLayerCfg[layer].m_internalBitDepthC;
921#endif
922#if LAYER_CTB
923    g_uiMaxCUWidth  = g_auiLayerMaxCUWidth[layer];
924    g_uiMaxCUHeight = g_auiLayerMaxCUHeight[layer];
925    g_uiMaxCUDepth  = g_auiLayerMaxCUDepth[layer];
926    g_uiAddCUDepth  = g_auiLayerAddCUDepth[layer];
927#endif
928#if O0194_DIFFERENT_BITDEPTH_EL_BL
929    m_acTVideoIOYuvInputFile[layer].open( (Char *)m_acLayerCfg[layer].getInputFile().c_str(),  false, m_acLayerCfg[layer].m_inputBitDepthY, m_acLayerCfg[layer].m_inputBitDepthC, m_acLayerCfg[layer].m_internalBitDepthY, m_acLayerCfg[layer].m_internalBitDepthC );  // read  mode
930#else
931    m_acTVideoIOYuvInputFile[layer].open( (Char *)m_acLayerCfg[layer].getInputFile().c_str(),  false, m_inputBitDepthY, m_inputBitDepthC, m_internalBitDepthY, m_internalBitDepthC );  // read  mode
932#endif
933    m_acTVideoIOYuvInputFile[layer].skipFrames(m_FrameSkip, m_acLayerCfg[layer].getSourceWidth() - m_acLayerCfg[layer].getPad()[0], m_acLayerCfg[layer].getSourceHeight() - m_acLayerCfg[layer].getPad()[1]);
934
935    if (!m_acLayerCfg[layer].getReconFile().empty())
936    {
937#if O0194_DIFFERENT_BITDEPTH_EL_BL
938      m_acTVideoIOYuvReconFile[layer].open((Char *)m_acLayerCfg[layer].getReconFile().c_str(), true, m_acLayerCfg[layer].m_outputBitDepthY, m_acLayerCfg[layer].m_outputBitDepthC, m_acLayerCfg[layer].m_internalBitDepthY, m_acLayerCfg[layer].m_internalBitDepthC );  // write mode
939#else
940      m_acTVideoIOYuvReconFile[layer].open((Char *)m_acLayerCfg[layer].getReconFile().c_str(), true, m_outputBitDepthY, m_outputBitDepthC, m_internalBitDepthY, m_internalBitDepthC );  // write mode
941#endif
942    }
943
944    m_acTEncTop[layer].create();
945  }
946#else //SVC_EXTENSION
947  m_cTVideoIOYuvInputFile.open( m_pchInputFile,     false, m_inputBitDepthY, m_inputBitDepthC, m_internalBitDepthY, m_internalBitDepthC );  // read  mode
948  m_cTVideoIOYuvInputFile.skipFrames(m_FrameSkip, m_iSourceWidth - m_aiPad[0], m_iSourceHeight - m_aiPad[1]);
949
950  if (m_pchReconFile)
951    m_cTVideoIOYuvReconFile.open(m_pchReconFile, true, m_outputBitDepthY, m_outputBitDepthC, m_internalBitDepthY, m_internalBitDepthC);  // write mode
952
953  // Neo Decoder
954  m_cTEncTop.create();
955#endif //SVC_EXTENSION
956}
957
958Void TAppEncTop::xDestroyLib()
959{
960  // Video I/O
961#if SVC_EXTENSION
962  // destroy ROM
963  destroyROM();
964
965  for(UInt layer=0; layer<m_numLayers; layer++)
966  {
967#if LAYER_CTB
968    g_uiMaxCUWidth  = g_auiLayerMaxCUWidth[layer];
969    g_uiMaxCUHeight = g_auiLayerMaxCUHeight[layer];
970    g_uiMaxCUDepth  = g_auiLayerMaxCUDepth[layer];
971    g_uiAddCUDepth  = g_auiLayerAddCUDepth[layer];
972#endif
973
974    m_acTVideoIOYuvInputFile[layer].close();
975    m_acTVideoIOYuvReconFile[layer].close();
976
977    m_acTEncTop[layer].destroy();
978  }
979#else //SVC_EXTENSION
980  m_cTVideoIOYuvInputFile.close();
981  m_cTVideoIOYuvReconFile.close();
982
983  // Neo Decoder
984  m_cTEncTop.destroy();
985#endif //SVC_EXTENSION
986}
987
988Void TAppEncTop::xInitLib(Bool isFieldCoding)
989{
990#if SVC_EXTENSION
991  for(UInt layer=0; layer<m_numLayers; layer++)
992  {
993#if O0194_DIFFERENT_BITDEPTH_EL_BL
994    //3
995    g_bitDepthY = m_acLayerCfg[layer].m_internalBitDepthY;
996    g_bitDepthC = m_acLayerCfg[layer].m_internalBitDepthC;
997
998    g_uiPCMBitDepthLuma = m_bPCMInputBitDepthFlag ? m_acLayerCfg[layer].m_inputBitDepthY : m_acLayerCfg[layer].m_internalBitDepthY;
999    g_uiPCMBitDepthChroma = m_bPCMInputBitDepthFlag ? m_acLayerCfg[layer].m_inputBitDepthC : m_acLayerCfg[layer].m_internalBitDepthC;
1000#endif
1001#if LAYER_CTB
1002    g_uiMaxCUWidth  = g_auiLayerMaxCUWidth[layer];
1003    g_uiMaxCUHeight = g_auiLayerMaxCUHeight[layer];
1004    g_uiMaxCUDepth  = g_auiLayerMaxCUDepth[layer];
1005    g_uiAddCUDepth  = g_auiLayerAddCUDepth[layer];
1006
1007    memcpy( g_auiZscanToRaster, g_auiLayerZscanToRaster[layer], sizeof( g_auiZscanToRaster ) );
1008    memcpy( g_auiRasterToZscan, g_auiLayerRasterToZscan[layer], sizeof( g_auiRasterToZscan ) );
1009    memcpy( g_auiRasterToPelX,  g_auiLayerRasterToPelX[layer],  sizeof( g_auiRasterToPelX ) );
1010    memcpy( g_auiRasterToPelY,  g_auiLayerRasterToPelY[layer],  sizeof( g_auiRasterToPelY ) );
1011#endif
1012    m_acTEncTop[layer].init(isFieldCoding);
1013  }
1014#if VPS_RENAME
1015  m_acTEncTop[0].getVPS()->setMaxLayers( m_numLayers );
1016#endif
1017#if VPS_EXTN_OP_LAYER_SETS
1018  TComVPS* vps = m_acTEncTop[0].getVPS();
1019  vps->setMaxLayerId(m_numLayers - 1);    // Set max-layer ID
1020
1021  vps->setNumLayerSets(m_numLayers);
1022  for(Int setId = 1; setId < vps->getNumLayerSets(); setId++)
1023  {
1024    for(Int layerId = 0; layerId <= vps->getMaxLayerId(); layerId++)
1025    {
1026#if O0194_DIFFERENT_BITDEPTH_EL_BL
1027      //4
1028      g_bitDepthY = m_acLayerCfg[layerId].m_internalBitDepthY;
1029      g_bitDepthC = m_acLayerCfg[layerId].m_internalBitDepthC;
1030
1031      g_uiPCMBitDepthLuma = m_bPCMInputBitDepthFlag ? m_acLayerCfg[layerId].m_inputBitDepthY : m_acLayerCfg[layerId].m_internalBitDepthY;
1032      g_uiPCMBitDepthChroma = m_bPCMInputBitDepthFlag ? m_acLayerCfg[layerId].m_inputBitDepthC : m_acLayerCfg[layerId].m_internalBitDepthC;
1033#endif
1034      vps->setLayerIdIncludedFlag(true, setId, layerId);
1035    }
1036  }
1037#if VPS_EXTN_MASK_AND_DIM_INFO
1038  UInt i = 0, dimIdLen = 0;
1039#if AVC_BASE
1040  vps->setAvcBaseLayerFlag(m_avcBaseLayerFlag);
1041#else
1042  vps->setAvcBaseLayerFlag(false);
1043#endif
1044  vps->setSplittingFlag(false);
1045  for(i = 0; i < MAX_VPS_NUM_SCALABILITY_TYPES; i++)
1046  {
1047    vps->setScalabilityMask(i, false);
1048  }
1049  if(m_numLayers > 1)
1050  {
1051    Int scalabilityTypes = 0;
1052    for(i = 0; i < MAX_VPS_NUM_SCALABILITY_TYPES; i++)
1053    {
1054      vps->setScalabilityMask(i, m_scalabilityMask[i]);
1055      scalabilityTypes += m_scalabilityMask[i];
1056    }
1057#if AUXILIARY_PICTURES
1058    assert( scalabilityTypes <= 2 );
1059#else
1060    assert( scalabilityTypes == 1 );
1061#endif
1062    vps->setNumScalabilityTypes(scalabilityTypes);
1063  }
1064  else
1065  {
1066    vps->setNumScalabilityTypes(0);
1067  }
1068  while((1 << dimIdLen) < m_numLayers)
1069  {
1070    dimIdLen++;
1071  }
1072  vps->setDimensionIdLen(0, dimIdLen);
1073  vps->setNuhLayerIdPresentFlag(false);
1074  vps->setLayerIdInNuh(0, 0);
1075  vps->setLayerIdInVps(0, 0);
1076  for(i = 1; i < vps->getMaxLayers(); i++)
1077  {
1078    vps->setLayerIdInNuh(i, i);
1079    vps->setLayerIdInVps(vps->getLayerIdInNuh(i), i);
1080    vps->setDimensionId(i, 0, i);
1081  }
1082#if AUXILIARY_PICTURES
1083  if (m_scalabilityMask[3])
1084  {
1085    UInt maxAuxId = 0;
1086    UInt auxDimIdLen = 1;
1087    for(i = 1; i < vps->getMaxLayers(); i++)
1088    {
1089      if (m_acLayerCfg[i].getAuxId() > maxAuxId)
1090      {
1091        maxAuxId = m_acLayerCfg[i].getAuxId();
1092      }
1093    }
1094    while((1 << auxDimIdLen) < (maxAuxId + 1))
1095    {
1096      auxDimIdLen++;
1097    }
1098    vps->setDimensionIdLen(1, auxDimIdLen);
1099    for(i = 1; i < vps->getMaxLayers(); i++)
1100    {
1101      vps->setDimensionId(i, 1, m_acLayerCfg[i].getAuxId());
1102    }
1103  }
1104#endif
1105#endif
1106#if VPS_TSLAYERS
1107    vps->setMaxTSLayersPresentFlag(true);
1108    for( i = 0; i < MAX_VPS_LAYER_ID_PLUS1 - 1; i++ )
1109    {
1110        vps->setMaxTSLayersMinus1(i, vps->getMaxTLayers()-1);
1111    }
1112#endif
1113#if N0120_MAX_TID_REF_PRESENT_FLAG
1114#if N0120_MAX_TID_REF_CFG
1115  vps->setMaxTidRefPresentFlag(m_maxTidRefPresentFlag);
1116#else
1117  vps->setMaxTidRefPresentFlag(true);
1118#endif
1119  if (vps->getMaxTidRefPresentFlag())
1120  {
1121    for( i = 0; i < MAX_VPS_LAYER_ID_PLUS1 - 1; i++ )
1122    {
1123#if N0120_MAX_TID_REF_CFG
1124#if O0225_MAX_TID_FOR_REF_LAYERS
1125      for( Int j = i+1; j <= MAX_VPS_LAYER_ID_PLUS1 - 1; j++)
1126      {
1127        vps->setMaxTidIlRefPicsPlus1(i, j, m_acTEncTop[i].getMaxTidIlRefPicsPlus1());
1128      }
1129#else
1130      vps->setMaxTidIlRefPicsPlus1(i, m_acTEncTop[i].getMaxTidIlRefPicsPlus1());
1131#endif
1132#else
1133#if O0225_MAX_TID_FOR_REF_LAYERS
1134      for( Int j = i+1; j <= MAX_VPS_LAYER_ID_PLUS1 - 1; j++)
1135      {
1136        vps->setMaxTidIlRefPicsPlus1(i, j, vps->getMaxTLayers()+1);
1137      }
1138#else
1139      vps->setMaxTidIlRefPicsPlus1(i, vps->getMaxTLayers()+1);
1140#endif
1141#endif
1142    }
1143  }
1144  else
1145  {
1146    for( i = 0; i < MAX_VPS_LAYER_ID_PLUS1 - 1; i++ )
1147    {
1148#if O0225_MAX_TID_FOR_REF_LAYERS
1149      for( Int j = i+1; j <= MAX_VPS_LAYER_ID_PLUS1 - 1; j++)
1150      {
1151        vps->setMaxTidIlRefPicsPlus1(i, j, 7);
1152      }
1153#else
1154      vps->setMaxTidIlRefPicsPlus1(i, 7);
1155#endif
1156    }
1157  }
1158#endif
1159#if ILP_SSH_SIG
1160#if ILP_SSH_SIG_FIX
1161    vps->setIlpSshSignalingEnabledFlag(false);
1162#else
1163    vps->setIlpSshSignalingEnabledFlag(true);
1164#endif
1165#endif
1166#if VPS_EXTN_PROFILE_INFO
1167  vps->getPTLForExtnPtr()->resize(vps->getNumLayerSets());
1168  for(Int setId = 1; setId < vps->getNumLayerSets(); setId++)
1169  {
1170    vps->setProfilePresentFlag(setId, true);
1171    // Note - may need to be changed for other layer structures.
1172    *(vps->getPTLForExtn(setId)) = *(m_acTEncTop[setId].getSPS()->getPTL());
1173  }
1174#endif
1175  // Target output layer
1176  vps->setNumOutputLayerSets(vps->getNumLayerSets());
1177  vps->setNumProfileTierLevel(vps->getNumLayerSets());
1178  vps->setDefaultOneTargetOutputLayerFlag(true);
1179  for(i = 1; i < vps->getNumLayerSets(); i++)
1180  {
1181    vps->setProfileLevelTierIdx(i, i);
1182    vps->setOutputLayerSetIdx(i, i);
1183  }
1184
1185  for(Int lsIdx = 1; lsIdx < vps->getNumLayerSets(); lsIdx++)
1186  {
1187    // Include the highest layer as output layer
1188    for(UInt layer=0; layer <= vps->getMaxLayerId() ; layer++)
1189    {
1190      if(vps->getLayerIdIncludedFlag(lsIdx, layer))
1191      {
1192        vps->setOutputLayerFlag(lsIdx, layer, layer == (vps->getMaxLayerId()));
1193      }
1194    }
1195  }
1196#endif
1197 #if VPS_DPB_SIZE_TABLE
1198  // The Layer ID List variables can be derived here. 
1199#if DERIVE_LAYER_ID_LIST_VARIABLES
1200  vps->deriveLayerIdListVariables();
1201#endif
1202  vps->deriveNumberOfSubDpbs();
1203  // Initialize dpb_size_table() for all ouput layer sets in the VPS extension
1204  for(i = 1; i < vps->getNumOutputLayerSets(); i++)
1205  {
1206    Int layerSetId = vps->getOutputLayerSetIdx(i);
1207
1208    // For each output layer set, set the DPB size for each layer and the reorder/latency value the maximum for all layers
1209    Bool checkFlagOuter = false;      // Used to calculate sub_layer_flag_info_present_flag
1210    Bool checkFlagInner[MAX_TLAYER];  // Used to calculate sub_layer_dpb_info_present_flag
1211
1212    for(Int j = 0; j < vps->getMaxTLayers(); j++)
1213    {
1214
1215      Int maxNumReorderPics = -1;
1216      for(Int k = 0; k < vps->getNumSubDpbs(i); k++)
1217      {
1218        Int layerId = vps->getLayerSetLayerIdList(layerSetId, k); // k-th layer in the output layer set
1219        vps->setMaxVpsDecPicBufferingMinus1( i, k, j,  m_acTEncTop[layerId].getMaxDecPicBuffering(j) - 1 );
1220        maxNumReorderPics       = std::max( maxNumReorderPics, m_acTEncTop[layerId].getNumReorderPics(j));
1221      }
1222      vps->setMaxVpsNumReorderPics(i, j, maxNumReorderPics);
1223     
1224      if( j == 0 )  // checkFlagInner[0] is always 1
1225      {
1226        checkFlagInner[j] = true;     // Always signal sub-layer DPB information for the first sub-layer
1227      }
1228      else
1229      {
1230        checkFlagInner[j] = false;    // Initialize to be false. If the values of the current sub-layers matches with the earlier sub-layer,
1231                                      // then will be continue to be false - i.e. the j-th sub-layer DPB info is not signaled
1232        checkFlagInner[j] |= ( maxNumReorderPics != vps->getMaxVpsNumReorderPics(i, j - 1) );
1233        for(Int k = 0; k < vps->getNumSubDpbs(i) && !checkFlagInner[j]; k++)  // If checkFlagInner[j] is true, break and signal the values
1234        {
1235          checkFlagInner[j] |= ( vps->getMaxVpsDecPicBufferingMinus1(i, k, j - 1) != vps->getMaxVpsDecPicBufferingMinus1(i, k, j) );
1236        }
1237      }
1238      // If checkFlagInner[j] = true, then some value needs to be signalled for the j-th sub-layer
1239      vps->setSubLayerDpbInfoPresentFlag( i, j, checkFlagInner[j] );
1240    }
1241    for(Int j = 1; j < vps->getMaxTLayers(); j++) // Check if DPB info of any of non-zero sub-layers is signaled. If so set flag to one
1242    {
1243      if( vps->getSubLayerDpbInfoPresentFlag(i, j) )
1244      {
1245        checkFlagOuter = true;
1246        break;
1247      }
1248    }
1249    vps->setSubLayerFlagInfoPresentFlag( i, checkFlagOuter );
1250  }
1251#endif
1252#if VPS_EXTN_DIRECT_REF_LAYERS
1253  // Direct reference layers
1254  UInt maxDirectRefLayers = 0;
1255#if O0096_DEFAULT_DEPENDENCY_TYPE
1256  Bool isDefaultDirectDependencyTypeSet = false;
1257#endif
1258  for(UInt layerCtr = 1;layerCtr <= vps->getMaxLayers() - 1; layerCtr++)
1259  {
1260    vps->setNumDirectRefLayers( layerCtr, m_acTEncTop[layerCtr].getNumDirectRefLayers() );
1261    maxDirectRefLayers = max<UInt>( maxDirectRefLayers, vps->getNumDirectRefLayers( layerCtr ) );
1262
1263    for(i = 0; i < vps->getNumDirectRefLayers(layerCtr); i++)
1264    {
1265      vps->setRefLayerId( layerCtr, i, m_acTEncTop[layerCtr].getRefLayerId(i) );
1266    }
1267    // Set direct dependency flag
1268    // Initialize flag to 0
1269    for(Int refLayerCtr = 0; refLayerCtr < layerCtr; refLayerCtr++)
1270    {
1271      vps->setDirectDependencyFlag( layerCtr, refLayerCtr, false );
1272    }
1273    for(i = 0; i < vps->getNumDirectRefLayers(layerCtr); i++)
1274    {
1275      vps->setDirectDependencyFlag( layerCtr, vps->getLayerIdInVps(m_acTEncTop[layerCtr].getRefLayerId(i)), true);
1276    }
1277#if M0457_PREDICTION_INDICATIONS
1278    vps->setDirectDepTypeLen(2); // sample and motion types are encoded
1279    for(Int refLayerCtr = 0; refLayerCtr < layerCtr; refLayerCtr++)
1280    {
1281      if (vps->getDirectDependencyFlag( layerCtr, refLayerCtr))
1282      {
1283        assert(m_acTEncTop[layerCtr].getSamplePredEnabledFlag(refLayerCtr) || m_acTEncTop[layerCtr].getMotionPredEnabledFlag(refLayerCtr));
1284        vps->setDirectDependencyType( layerCtr, refLayerCtr, ((m_acTEncTop[layerCtr].getSamplePredEnabledFlag(refLayerCtr) ? 1 : 0) |
1285                                                              (m_acTEncTop[layerCtr].getMotionPredEnabledFlag(refLayerCtr) ? 2 : 0)) - 1);
1286#if O0096_DEFAULT_DEPENDENCY_TYPE
1287        if (!isDefaultDirectDependencyTypeSet)
1288        {
1289          vps->setDefaultDirectDependecyTypeFlag(1);
1290          vps->setDefaultDirectDependecyType(vps->getDirectDependencyType(layerCtr, refLayerCtr));
1291          isDefaultDirectDependencyTypeSet = true;
1292        }
1293        else if (vps->getDirectDependencyType(layerCtr, refLayerCtr) != vps->getDefaultDirectDependencyType())
1294        {
1295          vps->setDefaultDirectDependecyTypeFlag(0);
1296        }
1297#endif
1298      }
1299      else
1300      {
1301        vps->setDirectDependencyType( layerCtr, refLayerCtr, 0 );
1302      }
1303    }
1304#endif
1305  }
1306
1307#if O0092_0094_DEPENDENCY_CONSTRAINT
1308  for(UInt layerCtr = 1;layerCtr <= vps->getMaxLayers() - 1; layerCtr++)
1309  {
1310    vps->setNumRefLayers(vps->getLayerIdInNuh(layerCtr));   // identify the number of direct and indirect reference layers of current layer and set recursiveRefLayersFlags
1311  }
1312  if(vps->getMaxLayers() > MAX_REF_LAYERS)
1313  {
1314    for(UInt layerCtr = 1;layerCtr <= vps->getMaxLayers() - 1; layerCtr++)
1315    {
1316      assert( vps->getNumRefLayers(vps->getLayerIdInNuh(layerCtr)) <= MAX_REF_LAYERS);
1317    }
1318  }
1319#endif
1320#endif
1321#if JCTVC_M0458_INTERLAYER_RPS_SIG
1322    vps->setMaxOneActiveRefLayerFlag(maxDirectRefLayers > 1 ? false : true);
1323#endif
1324#if O0062_POC_LSB_NOT_PRESENT_FLAG
1325    for(i = 1; i< vps->getMaxLayers(); i++)
1326    {
1327      if( vps->getNumDirectRefLayers( vps->getLayerIdInNuh(i) ) == 0  )
1328      {
1329        vps->setPocLsbNotPresentFlag(i, false);
1330      }
1331    }
1332#endif
1333#if N0147_IRAP_ALIGN_FLAG
1334    vps->setCrossLayerIrapAlignFlag( m_crossLayerIrapAlignFlag );
1335    for(UInt layerCtr = 1;layerCtr <= vps->getMaxLayers() - 1; layerCtr++)
1336    {
1337      for(Int refLayerCtr = 0; refLayerCtr < layerCtr; refLayerCtr++)
1338      {
1339        if (vps->getDirectDependencyFlag( layerCtr, refLayerCtr))
1340        {
1341          if(m_acTEncTop[layerCtr].getIntraPeriod() !=  m_acTEncTop[refLayerCtr].getIntraPeriod())
1342          {
1343            vps->setCrossLayerIrapAlignFlag(false);
1344            break;
1345          }
1346        }
1347      }
1348    }
1349
1350    if( vps->getAvcBaseLayerFlag() )
1351    {
1352      vps->setCrossLayerIrapAlignFlag(false);
1353    }
1354#endif
1355#if M0040_ADAPTIVE_RESOLUTION_CHANGE
1356  vps->setSingleLayerForNonIrapFlag(m_adaptiveResolutionChange > 0 ? true : false);
1357#endif
1358#if HIGHER_LAYER_IRAP_SKIP_FLAG
1359  vps->setHigherLayerIrapSkipFlag(m_skipPictureAtArcSwitch);
1360#endif
1361#if !VPS_EXTN_OFFSET_CALC
1362#if VPS_EXTN_OFFSET
1363  // to be updated according to the current semantics
1364  vps->setExtensionOffset( 0xffff );
1365#endif
1366#endif
1367
1368#if O0215_PHASE_ALIGNMENT
1369  vps->setPhaseAlignFlag( m_phaseAlignFlag );
1370#endif
1371
1372#if O0153_ALT_OUTPUT_LAYER_FLAG
1373  vps->setAltOuputLayerFlag( m_altOutputLayerFlag );
1374#endif
1375
1376#else //SVC_EXTENSION
1377  m_cTEncTop.init(isFieldCoding);
1378#endif //SVC_EXTENSION
1379}
1380
1381// ====================================================================================================================
1382// Public member functions
1383// ====================================================================================================================
1384
1385/**
1386 - create internal class
1387 - initialize internal variable
1388 - until the end of input YUV file, call encoding function in TEncTop class
1389 - delete allocated buffers
1390 - destroy internal class
1391 .
1392 */
1393#if SVC_EXTENSION
1394Void TAppEncTop::encode()
1395{
1396  fstream bitstreamFile(m_pBitstreamFile, fstream::binary | fstream::out);
1397  if (!bitstreamFile)
1398  {
1399    fprintf(stderr, "\nfailed to open bitstream file `%s' for writing\n", m_pBitstreamFile);
1400    exit(EXIT_FAILURE);
1401  }
1402
1403  TComPicYuv*       pcPicYuvOrg [MAX_LAYERS];
1404  TComPicYuv*       pcPicYuvRec = NULL;
1405
1406  // initialize internal class & member variables
1407  xInitLibCfg();
1408  xCreateLib();
1409  xInitLib(m_isField);
1410
1411  // main encoder loop
1412  Int   iNumEncoded = 0, iTotalNumEncoded = 0;
1413  Bool  bEos = false;
1414
1415  list<AccessUnit> outputAccessUnits; ///< list of access units to write out.  is populated by the encoding process
1416
1417  for(UInt layer=0; layer<m_numLayers; layer++)
1418  {
1419#if O0194_DIFFERENT_BITDEPTH_EL_BL
1420    //5
1421    g_bitDepthY = m_acLayerCfg[layer].m_internalBitDepthY;
1422    g_bitDepthC = m_acLayerCfg[layer].m_internalBitDepthC;
1423
1424    g_uiPCMBitDepthLuma = m_bPCMInputBitDepthFlag ? m_acLayerCfg[layer].m_inputBitDepthY : m_acLayerCfg[layer].m_internalBitDepthY;
1425    g_uiPCMBitDepthChroma = m_bPCMInputBitDepthFlag ? m_acLayerCfg[layer].m_inputBitDepthC : m_acLayerCfg[layer].m_internalBitDepthC;
1426#endif
1427    // allocate original YUV buffer
1428    pcPicYuvOrg[layer] = new TComPicYuv;
1429    if( m_isField )
1430    {
1431#if SVC_UPSAMPLING
1432#if LAYER_CTB
1433#if AUXILIARY_PICTURES
1434      pcPicYuvOrg[layer]->create( m_acLayerCfg[layer].getSourceWidth(), m_acLayerCfg[layer].getSourceHeightOrg(), m_acLayerCfg[layer].getChromaFormatIDC(), m_acLayerCfg[layer].m_uiMaxCUWidth, m_acLayerCfg[layer].m_uiMaxCUHeight, m_acLayerCfg[layer].m_uiMaxCUDepth, NULL );
1435#else
1436      pcPicYuvOrg[layer]->create( m_acLayerCfg[layer].getSourceWidth(), m_acLayerCfg[layer].getSourceHeightOrg(), m_acLayerCfg[layer].m_uiMaxCUWidth, m_acLayerCfg[layer].m_uiMaxCUHeight, m_acLayerCfg[layer].m_uiMaxCUDepth, NULL );
1437#endif
1438#else
1439#if AUXILIARY_PICTURES
1440      pcPicYuvOrg[layer]->create( m_acLayerCfg[layer].getSourceWidth(), m_acLayerCfg[layer].getSourceHeightOrg(), m_acLayerCfg[layer].getChromaFormatIDC(), m_uiMaxCUWidth, m_uiMaxCUHeight, m_uiMaxCUDepth, NULL );
1441#else
1442      pcPicYuvOrg[layer]->create( m_acLayerCfg[layer].getSourceWidth(), m_acLayerCfg[layer].getSourceHeightOrg(), m_uiMaxCUWidth, m_uiMaxCUHeight, m_uiMaxCUDepth, NULL );
1443#endif
1444#endif
1445#else
1446      pcPicYuvOrg->create( m_acLayerCfg[layer].getSourceWidth(), m_acLayerCfg[layer].getSourceHeightOrg(), m_uiMaxCUWidth, m_uiMaxCUHeight, m_uiMaxCUDepth );
1447#endif
1448    }
1449    else
1450    {
1451#if SVC_UPSAMPLING
1452#if LAYER_CTB
1453#if AUXILIARY_PICTURES
1454      pcPicYuvOrg[layer]->create( m_acLayerCfg[layer].getSourceWidth(), m_acLayerCfg[layer].getSourceHeight(), m_acLayerCfg[layer].getChromaFormatIDC(), m_acLayerCfg[layer].m_uiMaxCUWidth, m_acLayerCfg[layer].m_uiMaxCUHeight, m_acLayerCfg[layer].m_uiMaxCUDepth, NULL );
1455#else
1456      pcPicYuvOrg[layer]->create( m_acLayerCfg[layer].getSourceWidth(), m_acLayerCfg[layer].getSourceHeight(), m_acLayerCfg[layer].m_uiMaxCUWidth, m_acLayerCfg[layer].m_uiMaxCUHeight, m_acLayerCfg[layer].m_uiMaxCUDepth, NULL );
1457#endif
1458#else
1459#if AUXILIARY_PICTURES
1460      pcPicYuvOrg[layer]->create( m_acLayerCfg[layer].getSourceWidth(), m_acLayerCfg[layer].getSourceHeight(), m_acLayerCfg[layer].getChromaFormatIDC(), m_uiMaxCUWidth, m_uiMaxCUHeight, m_uiMaxCUDepth, NULL );
1461#else
1462      pcPicYuvOrg[layer]->create( m_acLayerCfg[layer].getSourceWidth(), m_acLayerCfg[layer].getSourceHeight(), m_uiMaxCUWidth, m_uiMaxCUHeight, m_uiMaxCUDepth, NULL );
1463#endif
1464#endif
1465#else
1466      pcPicYuvOrg->create( m_acLayerCfg[layer].getSourceWidth(), m_acLayerCfg[layer].getSourceHeight(), m_uiMaxCUWidth, m_uiMaxCUHeight, m_uiMaxCUDepth );
1467#endif
1468    }
1469  }
1470
1471#if AVC_SYNTAX
1472  fstream streamSyntaxFile;
1473  if( m_acTEncTop[0].getVPS()->getAvcBaseLayerFlag() )
1474  {
1475    if( !m_BLSyntaxFile )
1476    {
1477      printf( "Wrong base layer syntax input file\n" );
1478      exit(EXIT_FAILURE);
1479    }
1480    streamSyntaxFile.open( m_BLSyntaxFile, fstream::in | fstream::binary );
1481    if( !streamSyntaxFile.good() )
1482    {
1483      printf( "Base layer syntax input reading error\n" );
1484      exit(EXIT_FAILURE);
1485    }
1486    m_acTEncTop[0].setBLSyntaxFile( &streamSyntaxFile );
1487  }
1488#endif
1489
1490  Bool bFirstFrame = true;
1491  while ( !bEos )
1492  {
1493    // Read enough frames
1494    Bool bFramesReadyToCode = false;
1495    while(!bFramesReadyToCode)
1496    {
1497      for(UInt layer=0; layer<m_numLayers; layer++)
1498      {
1499#if O0194_DIFFERENT_BITDEPTH_EL_BL
1500        //6
1501        g_bitDepthY = m_acLayerCfg[layer].m_internalBitDepthY;
1502        g_bitDepthC = m_acLayerCfg[layer].m_internalBitDepthC;
1503
1504        g_uiPCMBitDepthLuma = m_bPCMInputBitDepthFlag ? m_acLayerCfg[layer].m_inputBitDepthY : m_acLayerCfg[layer].m_internalBitDepthY;
1505        g_uiPCMBitDepthChroma = m_bPCMInputBitDepthFlag ? m_acLayerCfg[layer].m_inputBitDepthC : m_acLayerCfg[layer].m_internalBitDepthC;
1506#endif
1507#if LAYER_CTB
1508        g_uiMaxCUWidth  = g_auiLayerMaxCUWidth[layer];
1509        g_uiMaxCUHeight = g_auiLayerMaxCUHeight[layer];
1510        g_uiMaxCUDepth  = g_auiLayerMaxCUDepth[layer];
1511        g_uiAddCUDepth  = g_auiLayerAddCUDepth[layer];
1512#endif
1513
1514        // get buffers
1515        xGetBuffer(pcPicYuvRec, layer);
1516
1517        // read input YUV file
1518        m_acTVideoIOYuvInputFile[layer].read( pcPicYuvOrg[layer], m_acLayerCfg[layer].getPad() );
1519
1520#if AUXILIARY_PICTURES
1521        if (m_acLayerCfg[layer].getChromaFormatIDC() == CHROMA_400)
1522        {
1523          pcPicYuvOrg[layer]->convertToMonochrome();
1524        }
1525#endif
1526
1527        if(layer == m_numLayers-1)
1528        {
1529          // increase number of received frames
1530          m_iFrameRcvd++;
1531          // check end of file
1532          bEos = (m_isField && (m_iFrameRcvd == (m_framesToBeEncoded >> 1) )) || ( !m_isField && (m_iFrameRcvd == m_framesToBeEncoded) );
1533        }
1534
1535        if ( m_isField )
1536        {
1537          m_acTEncTop[layer].encodePrep( pcPicYuvOrg[layer], m_isTopFieldFirst );
1538        }
1539        else
1540        {
1541          m_acTEncTop[layer].encodePrep( pcPicYuvOrg[layer] );
1542        }
1543      }
1544
1545      bFramesReadyToCode = !(!bFirstFrame && ( m_acTEncTop[m_numLayers-1].getNumPicRcvd() != m_iGOPSize && m_iGOPSize ) && !bEos );
1546    }
1547    Bool flush = 0;
1548    // if end of file (which is only detected on a read failure) flush the encoder of any queued pictures
1549    if (m_acTVideoIOYuvInputFile[m_numLayers-1].isEof())
1550    {
1551      flush = true;
1552      bEos = true;
1553      m_iFrameRcvd--;
1554      m_acTEncTop[m_numLayers-1].setFramesToBeEncoded(m_iFrameRcvd);
1555    }
1556
1557#if RC_SHVC_HARMONIZATION
1558    for(UInt layer=0; layer<m_numLayers; layer++)
1559    {
1560      if ( m_acTEncTop[layer].getUseRateCtrl() )
1561      {
1562        (m_acTEncTop[layer].getRateCtrl())->initRCGOP(m_acTEncTop[layer].getNumPicRcvd());
1563      }
1564    }
1565#endif
1566
1567#if M0040_ADAPTIVE_RESOLUTION_CHANGE
1568    if (m_adaptiveResolutionChange)
1569    {
1570      for(UInt layer = 0; layer < m_numLayers; layer++)
1571      {
1572        TComList<TComPicYuv*>::iterator iterPicYuvRec;
1573        for (iterPicYuvRec = m_acListPicYuvRec[layer].begin(); iterPicYuvRec != m_acListPicYuvRec[layer].end(); iterPicYuvRec++)
1574        {
1575          TComPicYuv* recPic = *(iterPicYuvRec);
1576          recPic->setReconstructed(false);
1577        }
1578      }
1579    }
1580#endif
1581
1582    // loop through frames in one GOP
1583    for ( UInt iPicIdInGOP=0; iPicIdInGOP < (bFirstFrame? 1:m_iGOPSize); iPicIdInGOP++ )
1584    {
1585      // layer by layer for each frame
1586      for(UInt layer=0; layer<m_numLayers; layer++)
1587      {
1588#if O0194_DIFFERENT_BITDEPTH_EL_BL
1589        //7
1590        g_bitDepthY = m_acLayerCfg[layer].m_internalBitDepthY;
1591        g_bitDepthC = m_acLayerCfg[layer].m_internalBitDepthC;
1592
1593        g_uiPCMBitDepthLuma = m_bPCMInputBitDepthFlag ? m_acLayerCfg[layer].m_inputBitDepthY : m_acLayerCfg[layer].m_internalBitDepthY;
1594        g_uiPCMBitDepthChroma = m_bPCMInputBitDepthFlag ? m_acLayerCfg[layer].m_inputBitDepthC : m_acLayerCfg[layer].m_internalBitDepthC;
1595#endif
1596#if LAYER_CTB
1597        g_uiMaxCUWidth  = g_auiLayerMaxCUWidth[layer];
1598        g_uiMaxCUHeight = g_auiLayerMaxCUHeight[layer];
1599        g_uiMaxCUDepth  = g_auiLayerMaxCUDepth[layer];
1600        g_uiAddCUDepth  = g_auiLayerAddCUDepth[layer];
1601
1602        memcpy( g_auiZscanToRaster, g_auiLayerZscanToRaster[layer], sizeof( g_auiZscanToRaster ) );
1603        memcpy( g_auiRasterToZscan, g_auiLayerRasterToZscan[layer], sizeof( g_auiRasterToZscan ) );
1604        memcpy( g_auiRasterToPelX,  g_auiLayerRasterToPelX[layer],  sizeof( g_auiRasterToPelX ) );
1605        memcpy( g_auiRasterToPelY,  g_auiLayerRasterToPelY[layer],  sizeof( g_auiRasterToPelY ) );
1606#endif
1607        // call encoding function for one frame
1608        if ( m_isField )
1609        {
1610          m_acTEncTop[layer].encode( flush ? 0 : pcPicYuvOrg[layer], m_acListPicYuvRec[layer], outputAccessUnits, iPicIdInGOP, m_isTopFieldFirst );
1611        }
1612        else
1613        {
1614          m_acTEncTop[layer].encode( flush ? 0 : pcPicYuvOrg[layer], m_acListPicYuvRec[layer], outputAccessUnits, iPicIdInGOP );
1615        }
1616      }
1617    }
1618
1619#if RC_SHVC_HARMONIZATION
1620    for(UInt layer=0; layer<m_numLayers; layer++)
1621    {
1622      if ( m_acTEncTop[layer].getUseRateCtrl() )
1623      {
1624        (m_acTEncTop[layer].getRateCtrl())->destroyRCGOP();
1625      }
1626    }
1627#endif
1628
1629    iTotalNumEncoded = 0;
1630    for(UInt layer=0; layer<m_numLayers; layer++)
1631    {
1632#if O0194_DIFFERENT_BITDEPTH_EL_BL
1633      //8
1634      g_bitDepthY = m_acLayerCfg[layer].m_internalBitDepthY;
1635      g_bitDepthC = m_acLayerCfg[layer].m_internalBitDepthC;
1636
1637      g_uiPCMBitDepthLuma = m_bPCMInputBitDepthFlag ? m_acLayerCfg[layer].m_inputBitDepthY : m_acLayerCfg[layer].m_internalBitDepthY;
1638      g_uiPCMBitDepthChroma = m_bPCMInputBitDepthFlag ? m_acLayerCfg[layer].m_inputBitDepthC : m_acLayerCfg[layer].m_internalBitDepthC;
1639#endif
1640      // write bistream to file if necessary
1641      iNumEncoded = m_acTEncTop[layer].getNumPicRcvd();
1642      if ( iNumEncoded > 0 )
1643      {
1644        xWriteRecon(layer, iNumEncoded);
1645        iTotalNumEncoded += iNumEncoded;
1646      }
1647      m_acTEncTop[layer].setNumPicRcvd( 0 );
1648    }
1649
1650    // write bitstream out
1651    if(iTotalNumEncoded)
1652    {
1653      xWriteStream(bitstreamFile, iTotalNumEncoded, outputAccessUnits);
1654      outputAccessUnits.clear();
1655    }
1656
1657    // print out summary
1658    if (bEos)
1659    {
1660      printOutSummary(m_isTopFieldFirst);
1661    }
1662
1663    bFirstFrame = false;
1664  }
1665  // delete original YUV buffer
1666  for(UInt layer=0; layer<m_numLayers; layer++)
1667  {
1668    pcPicYuvOrg[layer]->destroy();
1669    delete pcPicYuvOrg[layer];
1670    pcPicYuvOrg[layer] = NULL;
1671
1672    // delete used buffers in encoder class
1673    m_acTEncTop[layer].deletePicBuffer();
1674  }
1675
1676#if AVC_SYNTAX
1677  if( streamSyntaxFile.is_open() )
1678  {
1679    streamSyntaxFile.close();
1680  }
1681#endif
1682
1683  // delete buffers & classes
1684  xDeleteBuffer();
1685  xDestroyLib();
1686
1687  printRateSummary();
1688
1689  return;
1690}
1691
1692Void TAppEncTop::printOutSummary(Bool isField)
1693{
1694  UInt layer;
1695
1696  // set frame rate
1697  for(layer = 0; layer < m_numLayers; layer++)
1698  {
1699    if(isField)
1700    {
1701      m_gcAnalyzeAll[layer].setFrmRate( m_acLayerCfg[layer].getFrameRate() * 2);
1702      m_gcAnalyzeI[layer].setFrmRate( m_acLayerCfg[layer].getFrameRate() * 2 );
1703      m_gcAnalyzeP[layer].setFrmRate( m_acLayerCfg[layer].getFrameRate() * 2 );
1704      m_gcAnalyzeB[layer].setFrmRate( m_acLayerCfg[layer].getFrameRate() * 2 );
1705    }
1706    else
1707    {
1708      m_gcAnalyzeAll[layer].setFrmRate( m_acLayerCfg[layer].getFrameRate());
1709      m_gcAnalyzeI[layer].setFrmRate( m_acLayerCfg[layer].getFrameRate() );
1710      m_gcAnalyzeP[layer].setFrmRate( m_acLayerCfg[layer].getFrameRate() );
1711      m_gcAnalyzeB[layer].setFrmRate( m_acLayerCfg[layer].getFrameRate() );
1712    }
1713  }
1714
1715  //-- all
1716  printf( "\n\nSUMMARY --------------------------------------------------------\n" );
1717  printf( "\tTotal Frames |  "   "Bitrate    "  "Y-PSNR    "  "U-PSNR    "  "V-PSNR \n" );
1718  for(layer = 0; layer < m_numLayers; layer++)
1719  {
1720    m_gcAnalyzeAll[layer].printOut('a', layer);
1721  }
1722
1723  printf( "\n\nI Slices--------------------------------------------------------\n" );
1724  printf( "\tTotal Frames |  "   "Bitrate    "  "Y-PSNR    "  "U-PSNR    "  "V-PSNR \n" );
1725  for(layer = 0; layer < m_numLayers; layer++)
1726  {
1727    m_gcAnalyzeI[layer].printOut('i', layer);
1728  }
1729
1730  printf( "\n\nP Slices--------------------------------------------------------\n" );
1731  printf( "\tTotal Frames |  "   "Bitrate    "  "Y-PSNR    "  "U-PSNR    "  "V-PSNR \n" );
1732  for(layer = 0; layer < m_numLayers; layer++)
1733  {
1734    m_gcAnalyzeP[layer].printOut('p', layer);
1735  }
1736
1737  printf( "\n\nB Slices--------------------------------------------------------\n" );
1738  printf( "\tTotal Frames |  "   "Bitrate    "  "Y-PSNR    "  "U-PSNR    "  "V-PSNR \n" );
1739  for(layer = 0; layer < m_numLayers; layer++)
1740  {
1741    m_gcAnalyzeB[layer].printOut('b', layer);
1742  }
1743
1744  if(isField)
1745  {
1746    for(layer = 0; layer < m_numLayers; layer++)
1747    {
1748      //-- interlaced summary
1749      m_gcAnalyzeAll_in.setFrmRate( m_acLayerCfg[layer].getFrameRate());
1750      printf( "\n\nSUMMARY INTERLACED ---------------------------------------------\n" );
1751      m_gcAnalyzeAll_in.printOutInterlaced('a',  m_gcAnalyzeAll[layer].getBits());
1752
1753#if _SUMMARY_OUT_
1754      m_gcAnalyzeAll_in.printSummaryOutInterlaced();
1755#endif
1756    }
1757  }
1758}
1759
1760#else
1761Void TAppEncTop::encode()
1762{
1763  fstream bitstreamFile(m_pchBitstreamFile, fstream::binary | fstream::out);
1764  if (!bitstreamFile)
1765  {
1766    fprintf(stderr, "\nfailed to open bitstream file `%s' for writing\n", m_pchBitstreamFile);
1767    exit(EXIT_FAILURE);
1768  }
1769
1770  TComPicYuv*       pcPicYuvOrg = new TComPicYuv;
1771  TComPicYuv*       pcPicYuvRec = NULL;
1772
1773  // initialize internal class & member variables
1774  xInitLibCfg();
1775  xCreateLib();
1776  xInitLib(m_isField);
1777
1778  // main encoder loop
1779  Int   iNumEncoded = 0;
1780  Bool  bEos = false;
1781
1782  list<AccessUnit> outputAccessUnits; ///< list of access units to write out.  is populated by the encoding process
1783
1784  // allocate original YUV buffer
1785  if( m_isField )
1786  {
1787    pcPicYuvOrg->create( m_iSourceWidth, m_iSourceHeightOrg, m_uiMaxCUWidth, m_uiMaxCUHeight, m_uiMaxCUDepth );
1788  }
1789  else
1790  {
1791    pcPicYuvOrg->create( m_iSourceWidth, m_iSourceHeight, m_uiMaxCUWidth, m_uiMaxCUHeight, m_uiMaxCUDepth );
1792  }
1793
1794  while ( !bEos )
1795  {
1796    // get buffers
1797    xGetBuffer(pcPicYuvRec);
1798
1799    // read input YUV file
1800    m_cTVideoIOYuvInputFile.read( pcPicYuvOrg, m_aiPad );
1801
1802    // increase number of received frames
1803    m_iFrameRcvd++;
1804
1805    bEos = (m_isField && (m_iFrameRcvd == (m_framesToBeEncoded >> 1) )) || ( !m_isField && (m_iFrameRcvd == m_framesToBeEncoded) );
1806    Bool flush = 0;
1807    // if end of file (which is only detected on a read failure) flush the encoder of any queued pictures
1808    if (m_cTVideoIOYuvInputFile.isEof())
1809    {
1810      flush = true;
1811      bEos = true;
1812      m_iFrameRcvd--;
1813      m_cTEncTop.setFramesToBeEncoded(m_iFrameRcvd);
1814    }
1815
1816    // call encoding function for one frame
1817    if ( m_isField )
1818    {
1819      m_cTEncTop.encode( bEos, flush ? 0 : pcPicYuvOrg, m_cListPicYuvRec, outputAccessUnits, iNumEncoded, m_isTopFieldFirst);
1820    }
1821    else
1822    {
1823    m_cTEncTop.encode( bEos, flush ? 0 : pcPicYuvOrg, m_cListPicYuvRec, outputAccessUnits, iNumEncoded );
1824    }
1825
1826    // write bistream to file if necessary
1827    if ( iNumEncoded > 0 )
1828    {
1829      xWriteOutput(bitstreamFile, iNumEncoded, outputAccessUnits);
1830      outputAccessUnits.clear();
1831    }
1832  }
1833
1834  m_cTEncTop.printSummary(m_isField);
1835
1836  // delete original YUV buffer
1837  pcPicYuvOrg->destroy();
1838  delete pcPicYuvOrg;
1839  pcPicYuvOrg = NULL;
1840
1841  // delete used buffers in encoder class
1842  m_cTEncTop.deletePicBuffer();
1843
1844  // delete buffers & classes
1845  xDeleteBuffer();
1846  xDestroyLib();
1847
1848  printRateSummary();
1849
1850  return;
1851}
1852#endif
1853
1854// ====================================================================================================================
1855// Protected member functions
1856// ====================================================================================================================
1857
1858/**
1859 - application has picture buffer list with size of GOP
1860 - picture buffer list acts as ring buffer
1861 - end of the list has the latest picture
1862 .
1863 */
1864#if SVC_EXTENSION
1865Void TAppEncTop::xGetBuffer( TComPicYuv*& rpcPicYuvRec, UInt layer)
1866{
1867  assert( m_iGOPSize > 0 );
1868
1869  // org. buffer
1870  if ( m_acListPicYuvRec[layer].size() == (UInt)m_iGOPSize )
1871  {
1872    rpcPicYuvRec = m_acListPicYuvRec[layer].popFront();
1873
1874  }
1875  else
1876  {
1877    rpcPicYuvRec = new TComPicYuv;
1878
1879#if SVC_UPSAMPLING
1880#if LAYER_CTB
1881#if AUXILIARY_PICTURES
1882    rpcPicYuvRec->create( m_acLayerCfg[layer].getSourceWidth(), m_acLayerCfg[layer].getSourceHeight(), m_acLayerCfg[layer].getChromaFormatIDC(), m_acLayerCfg[layer].m_uiMaxCUWidth, m_acLayerCfg[layer].m_uiMaxCUHeight, m_acLayerCfg[layer].m_uiMaxCUDepth, NULL );
1883#else
1884    rpcPicYuvRec->create( m_acLayerCfg[layer].getSourceWidth(), m_acLayerCfg[layer].getSourceHeight(), m_acLayerCfg[layer].m_uiMaxCUWidth, m_acLayerCfg[layer].m_uiMaxCUHeight, m_acLayerCfg[layer].m_uiMaxCUDepth, NULL );
1885#endif
1886#else
1887#if AUXILIARY_PICTURES
1888    rpcPicYuvRec->create( m_acLayerCfg[layer].getSourceWidth(), m_acLayerCfg[layer].getSourceHeight(), m_acLayerCfg[layer].getChromaFormatIDC(), m_uiMaxCUWidth, m_uiMaxCUHeight, m_uiMaxCUDepth, NULL );
1889#else
1890    rpcPicYuvRec->create( m_acLayerCfg[layer].getSourceWidth(), m_acLayerCfg[layer].getSourceHeight(), m_uiMaxCUWidth, m_uiMaxCUHeight, m_uiMaxCUDepth, NULL );
1891#endif
1892#endif
1893#else
1894    rpcPicYuvRec->create( m_acLayerCfg[layer].getSourceWidth(), m_acLayerCfg[layer].getSourceHeight(), m_uiMaxCUWidth, m_uiMaxCUHeight, m_uiMaxCUDepth );
1895#endif
1896
1897  }
1898  m_acListPicYuvRec[layer].pushBack( rpcPicYuvRec );
1899}
1900
1901Void TAppEncTop::xDeleteBuffer( )
1902{
1903  for(UInt layer=0; layer<m_numLayers; layer++)
1904  {
1905    TComList<TComPicYuv*>::iterator iterPicYuvRec  = m_acListPicYuvRec[layer].begin();
1906
1907    Int iSize = Int( m_acListPicYuvRec[layer].size() );
1908
1909    for ( Int i = 0; i < iSize; i++ )
1910    {
1911      TComPicYuv*  pcPicYuvRec  = *(iterPicYuvRec++);
1912      pcPicYuvRec->destroy();
1913      delete pcPicYuvRec; pcPicYuvRec = NULL;
1914    }
1915  }
1916}
1917
1918Void TAppEncTop::xWriteRecon(UInt layer, Int iNumEncoded)
1919{
1920  if (m_isField)
1921  {
1922    //Reinterlace fields
1923    Int i;
1924    TComList<TComPicYuv*>::iterator iterPicYuvRec = m_acListPicYuvRec[layer].end();
1925
1926    for ( i = 0; i < iNumEncoded; i++ )
1927    {
1928      --iterPicYuvRec;
1929    }
1930
1931    for ( i = 0; i < iNumEncoded/2; i++ )
1932    {
1933      TComPicYuv*  pcPicYuvRecTop  = *(iterPicYuvRec++);
1934      TComPicYuv*  pcPicYuvRecBottom  = *(iterPicYuvRec++);
1935
1936#if M0040_ADAPTIVE_RESOLUTION_CHANGE
1937      if (!m_acLayerCfg[layer].getReconFile().empty() && pcPicYuvRecTop->isReconstructed() && pcPicYuvRecBottom->isReconstructed())
1938#else
1939      if (!m_acLayerCfg[layer].getReconFile().empty())
1940#endif
1941      {
1942        m_acTVideoIOYuvReconFile[layer].write( pcPicYuvRecTop, pcPicYuvRecBottom, m_acLayerCfg[layer].getConfLeft(), m_acLayerCfg[layer].getConfRight(), m_acLayerCfg[layer].getConfTop(), m_acLayerCfg[layer].getConfBottom(), m_isTopFieldFirst );
1943      }
1944    }
1945  }
1946  else
1947  {
1948    Int i;
1949
1950    TComList<TComPicYuv*>::iterator iterPicYuvRec = m_acListPicYuvRec[layer].end();
1951
1952    for ( i = 0; i < iNumEncoded; i++ )
1953    {
1954      --iterPicYuvRec;
1955    }
1956
1957    for ( i = 0; i < iNumEncoded; i++ )
1958    {
1959      TComPicYuv*  pcPicYuvRec  = *(iterPicYuvRec++);
1960#if M0040_ADAPTIVE_RESOLUTION_CHANGE
1961      if (!m_acLayerCfg[layer].getReconFile().empty() && pcPicYuvRec->isReconstructed())
1962#else
1963      if (!m_acLayerCfg[layer].getReconFile().empty())
1964#endif
1965      {
1966        m_acTVideoIOYuvReconFile[layer].write( pcPicYuvRec, m_acLayerCfg[layer].getConfLeft(), m_acLayerCfg[layer].getConfRight(),
1967          m_acLayerCfg[layer].getConfTop(), m_acLayerCfg[layer].getConfBottom() );
1968      }
1969    }
1970  }
1971}
1972
1973Void TAppEncTop::xWriteStream(std::ostream& bitstreamFile, Int iNumEncoded, const std::list<AccessUnit>& accessUnits)
1974{
1975  if (m_isField)
1976  {
1977    //Reinterlace fields
1978    Int i;
1979    list<AccessUnit>::const_iterator iterBitstream = accessUnits.begin();
1980
1981#if M0040_ADAPTIVE_RESOLUTION_CHANGE
1982    for ( i = 0; i < iNumEncoded/2 && iterBitstream != accessUnits.end(); i++ )
1983#else
1984    for ( i = 0; i < iNumEncoded/2; i++ )
1985#endif
1986    {
1987      const AccessUnit& auTop = *(iterBitstream++);
1988      const vector<UInt>& statsTop = writeAnnexB(bitstreamFile, auTop);
1989      rateStatsAccum(auTop, statsTop);
1990
1991      const AccessUnit& auBottom = *(iterBitstream++);
1992      const vector<UInt>& statsBottom = writeAnnexB(bitstreamFile, auBottom);
1993      rateStatsAccum(auBottom, statsBottom);
1994    }
1995  }
1996  else
1997  {
1998    Int i;
1999
2000    list<AccessUnit>::const_iterator iterBitstream = accessUnits.begin();
2001
2002#if M0040_ADAPTIVE_RESOLUTION_CHANGE
2003    for ( i = 0; i < iNumEncoded && iterBitstream != accessUnits.end(); i++ )
2004#else
2005    for ( i = 0; i < iNumEncoded; i++ )
2006#endif
2007    {
2008      const AccessUnit& au = *(iterBitstream++);
2009      const vector<UInt>& stats = writeAnnexB(bitstreamFile, au);
2010      rateStatsAccum(au, stats);
2011    }
2012  }
2013}
2014
2015#else // SVC_EXTENSION
2016Void TAppEncTop::xGetBuffer( TComPicYuv*& rpcPicYuvRec)
2017{
2018  assert( m_iGOPSize > 0 );
2019
2020  // org. buffer
2021  if ( m_cListPicYuvRec.size() == (UInt)m_iGOPSize )
2022  {
2023    rpcPicYuvRec = m_cListPicYuvRec.popFront();
2024
2025  }
2026  else
2027  {
2028    rpcPicYuvRec = new TComPicYuv;
2029
2030    rpcPicYuvRec->create( m_iSourceWidth, m_iSourceHeight, m_uiMaxCUWidth, m_uiMaxCUHeight, m_uiMaxCUDepth );
2031
2032  }
2033  m_cListPicYuvRec.pushBack( rpcPicYuvRec );
2034}
2035
2036Void TAppEncTop::xDeleteBuffer( )
2037{
2038  TComList<TComPicYuv*>::iterator iterPicYuvRec  = m_cListPicYuvRec.begin();
2039
2040  Int iSize = Int( m_cListPicYuvRec.size() );
2041
2042  for ( Int i = 0; i < iSize; i++ )
2043  {
2044    TComPicYuv*  pcPicYuvRec  = *(iterPicYuvRec++);
2045    pcPicYuvRec->destroy();
2046    delete pcPicYuvRec; pcPicYuvRec = NULL;
2047  }
2048
2049}
2050
2051/** \param iNumEncoded  number of encoded frames
2052 */
2053Void TAppEncTop::xWriteOutput(std::ostream& bitstreamFile, Int iNumEncoded, const std::list<AccessUnit>& accessUnits)
2054{
2055  if (m_isField)
2056  {
2057    //Reinterlace fields
2058    Int i;
2059    TComList<TComPicYuv*>::iterator iterPicYuvRec = m_cListPicYuvRec.end();
2060    list<AccessUnit>::const_iterator iterBitstream = accessUnits.begin();
2061
2062    for ( i = 0; i < iNumEncoded; i++ )
2063    {
2064      --iterPicYuvRec;
2065    }
2066
2067    for ( i = 0; i < iNumEncoded/2; i++ )
2068    {
2069      TComPicYuv*  pcPicYuvRecTop  = *(iterPicYuvRec++);
2070      TComPicYuv*  pcPicYuvRecBottom  = *(iterPicYuvRec++);
2071
2072      if (m_pchReconFile)
2073      {
2074        m_cTVideoIOYuvReconFile.write( pcPicYuvRecTop, pcPicYuvRecBottom, m_confLeft, m_confRight, m_confTop, m_confBottom, m_isTopFieldFirst );
2075      }
2076
2077      const AccessUnit& auTop = *(iterBitstream++);
2078      const vector<UInt>& statsTop = writeAnnexB(bitstreamFile, auTop);
2079      rateStatsAccum(auTop, statsTop);
2080
2081      const AccessUnit& auBottom = *(iterBitstream++);
2082      const vector<UInt>& statsBottom = writeAnnexB(bitstreamFile, auBottom);
2083      rateStatsAccum(auBottom, statsBottom);
2084    }
2085  }
2086  else
2087  {
2088    Int i;
2089
2090    TComList<TComPicYuv*>::iterator iterPicYuvRec = m_cListPicYuvRec.end();
2091    list<AccessUnit>::const_iterator iterBitstream = accessUnits.begin();
2092
2093    for ( i = 0; i < iNumEncoded; i++ )
2094    {
2095      --iterPicYuvRec;
2096    }
2097
2098    for ( i = 0; i < iNumEncoded; i++ )
2099    {
2100      TComPicYuv*  pcPicYuvRec  = *(iterPicYuvRec++);
2101      if (m_pchReconFile)
2102      {
2103#if SYNTAX_OUTPUT
2104        m_cTVideoIOYuvReconFile.write( pcPicYuvRec, m_confLeft, m_confRight, m_confTop, m_confBottom );
2105#endif
2106      }
2107
2108      const AccessUnit& au = *(iterBitstream++);
2109      const vector<UInt>& stats = writeAnnexB(bitstreamFile, au);
2110      rateStatsAccum(au, stats);
2111    }
2112  }
2113}
2114#endif
2115
2116/**
2117 *
2118 */
2119void TAppEncTop::rateStatsAccum(const AccessUnit& au, const std::vector<UInt>& annexBsizes)
2120{
2121  AccessUnit::const_iterator it_au = au.begin();
2122  vector<UInt>::const_iterator it_stats = annexBsizes.begin();
2123
2124  for (; it_au != au.end(); it_au++, it_stats++)
2125  {
2126    switch ((*it_au)->m_nalUnitType)
2127    {
2128    case NAL_UNIT_CODED_SLICE_TRAIL_R:
2129    case NAL_UNIT_CODED_SLICE_TRAIL_N:
2130    case NAL_UNIT_CODED_SLICE_TLA_R:
2131    case NAL_UNIT_CODED_SLICE_TSA_N:
2132    case NAL_UNIT_CODED_SLICE_STSA_R:
2133    case NAL_UNIT_CODED_SLICE_STSA_N:
2134    case NAL_UNIT_CODED_SLICE_BLA_W_LP:
2135    case NAL_UNIT_CODED_SLICE_BLA_W_RADL:
2136    case NAL_UNIT_CODED_SLICE_BLA_N_LP:
2137    case NAL_UNIT_CODED_SLICE_IDR_W_RADL:
2138    case NAL_UNIT_CODED_SLICE_IDR_N_LP:
2139    case NAL_UNIT_CODED_SLICE_CRA:
2140    case NAL_UNIT_CODED_SLICE_RADL_N:
2141    case NAL_UNIT_CODED_SLICE_RADL_R:
2142    case NAL_UNIT_CODED_SLICE_RASL_N:
2143    case NAL_UNIT_CODED_SLICE_RASL_R:
2144    case NAL_UNIT_VPS:
2145    case NAL_UNIT_SPS:
2146    case NAL_UNIT_PPS:
2147      m_essentialBytes += *it_stats;
2148      break;
2149    default:
2150      break;
2151    }
2152
2153    m_totalBytes += *it_stats;
2154  }
2155}
2156
2157void TAppEncTop::printRateSummary()
2158{
2159#if SVC_EXTENSION
2160  Double time = (Double) m_iFrameRcvd / m_acLayerCfg[m_numLayers-1].getFrameRate();
2161#else
2162  Double time = (Double) m_iFrameRcvd / m_iFrameRate;
2163#endif
2164  printf("Bytes written to file: %u (%.3f kbps)\n", m_totalBytes, 0.008 * m_totalBytes / time);
2165#if VERBOSE_RATE
2166  printf("Bytes for SPS/PPS/Slice (Incl. Annex B): %u (%.3f kbps)\n", m_essentialBytes, 0.008 * m_essentialBytes / time);
2167#endif
2168}
2169
2170//! \}
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