source: 3DVCSoftware/branches/HTM-DEV-0.3-dev2/source/Lib/TLibDecoder/TDecGop.cpp @ 478

Last change on this file since 478 was 478, checked in by tech, 11 years ago

Minor clean ups.

  • Property svn:eol-style set to native
File size: 12.5 KB
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1/* The copyright in this software is being made available under the BSD
2 * License, included below. This software may be subject to other third party
3 * and contributor rights, including patent rights, and no such rights are
4 * granted under this license. 
5 *
6 * Copyright (c) 2010-2013, ITU/ISO/IEC
7 * All rights reserved.
8 *
9 * Redistribution and use in source and binary forms, with or without
10 * modification, are permitted provided that the following conditions are met:
11 *
12 *  * Redistributions of source code must retain the above copyright notice,
13 *    this list of conditions and the following disclaimer.
14 *  * Redistributions in binary form must reproduce the above copyright notice,
15 *    this list of conditions and the following disclaimer in the documentation
16 *    and/or other materials provided with the distribution.
17 *  * Neither the name of the ITU/ISO/IEC nor the names of its contributors may
18 *    be used to endorse or promote products derived from this software without
19 *    specific prior written permission.
20 *
21 * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS"
22 * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
23 * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
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28 * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
29 * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
30 * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF
31 * THE POSSIBILITY OF SUCH DAMAGE.
32 */
33
34/** \file     TDecGop.cpp
35    \brief    GOP decoder class
36*/
37
38#include "TDecGop.h"
39#include "TDecCAVLC.h"
40#include "TDecSbac.h"
41#include "TDecBinCoder.h"
42#include "TDecBinCoderCABAC.h"
43#include "libmd5/MD5.h"
44#include "TLibCommon/SEI.h"
45
46#include <time.h>
47
48extern Bool g_md5_mismatch; ///< top level flag to signal when there is a decode problem
49
50//! \ingroup TLibDecoder
51//! \{
52static void calcAndPrintHashStatus(TComPicYuv& pic, const SEIDecodedPictureHash* pictureHashSEI);
53// ====================================================================================================================
54// Constructor / destructor / initialization / destroy
55// ====================================================================================================================
56
57TDecGop::TDecGop()
58{
59  m_dDecTime = 0;
60  m_pcSbacDecoders = NULL;
61  m_pcBinCABACs = NULL;
62}
63
64TDecGop::~TDecGop()
65{
66 
67}
68
69Void TDecGop::create()
70{
71 
72}
73
74
75Void TDecGop::destroy()
76{
77}
78
79Void TDecGop::init( TDecEntropy*            pcEntropyDecoder, 
80                   TDecSbac*               pcSbacDecoder, 
81                   TDecBinCABAC*           pcBinCABAC,
82                   TDecCavlc*              pcCavlcDecoder, 
83                   TDecSlice*              pcSliceDecoder, 
84                   TComLoopFilter*         pcLoopFilter,
85                   TComSampleAdaptiveOffset* pcSAO
86#if H_3D_IV_MERGE
87                    ,TComDepthMapGenerator*  pcDepthMapGenerator
88#endif
89                   )
90{
91  m_pcEntropyDecoder      = pcEntropyDecoder;
92  m_pcSbacDecoder         = pcSbacDecoder;
93  m_pcBinCABAC            = pcBinCABAC;
94  m_pcCavlcDecoder        = pcCavlcDecoder;
95  m_pcSliceDecoder        = pcSliceDecoder;
96  m_pcLoopFilter          = pcLoopFilter;
97  m_pcSAO  = pcSAO;
98#if H_3D_IV_MERGE
99  m_pcDepthMapGenerator   = pcDepthMapGenerator;
100#endif
101}
102
103
104// ====================================================================================================================
105// Private member functions
106// ====================================================================================================================
107// ====================================================================================================================
108// Public member functions
109// ====================================================================================================================
110
111Void TDecGop::decompressSlice(TComInputBitstream* pcBitstream, TComPic*& rpcPic)
112{
113  TComSlice*  pcSlice = rpcPic->getSlice(rpcPic->getCurrSliceIdx());
114  // Table of extracted substreams.
115  // These must be deallocated AND their internal fifos, too.
116  TComInputBitstream **ppcSubstreams = NULL;
117
118  //-- For time output for each slice
119  long iBeforeTime = clock();
120 
121  UInt uiStartCUAddr   = pcSlice->getSliceSegmentCurStartCUAddr();
122
123  UInt uiSliceStartCuAddr = pcSlice->getSliceCurStartCUAddr();
124  if(uiSliceStartCuAddr == uiStartCUAddr)
125  {
126    m_sliceStartCUAddress.push_back(uiSliceStartCuAddr);
127  }
128
129  m_pcSbacDecoder->init( (TDecBinIf*)m_pcBinCABAC );
130  m_pcEntropyDecoder->setEntropyDecoder (m_pcSbacDecoder);
131
132  UInt uiNumSubstreams = pcSlice->getPPS()->getEntropyCodingSyncEnabledFlag() ? pcSlice->getNumEntryPointOffsets()+1 : pcSlice->getPPS()->getNumSubstreams();
133
134  // init each couple {EntropyDecoder, Substream}
135  UInt *puiSubstreamSizes = pcSlice->getSubstreamSizes();
136  ppcSubstreams    = new TComInputBitstream*[uiNumSubstreams];
137  m_pcSbacDecoders = new TDecSbac[uiNumSubstreams];
138  m_pcBinCABACs    = new TDecBinCABAC[uiNumSubstreams];
139  for ( UInt ui = 0 ; ui < uiNumSubstreams ; ui++ )
140  {
141    m_pcSbacDecoders[ui].init(&m_pcBinCABACs[ui]);
142    ppcSubstreams[ui] = pcBitstream->extractSubstream(ui+1 < uiNumSubstreams ? puiSubstreamSizes[ui] : pcBitstream->getNumBitsLeft());
143  }
144
145  for ( UInt ui = 0 ; ui+1 < uiNumSubstreams; ui++ )
146  {
147    m_pcEntropyDecoder->setEntropyDecoder ( &m_pcSbacDecoders[uiNumSubstreams - 1 - ui] );
148    m_pcEntropyDecoder->setBitstream      (  ppcSubstreams   [uiNumSubstreams - 1 - ui] );
149    m_pcEntropyDecoder->resetEntropy      (pcSlice);
150  }
151
152  m_pcEntropyDecoder->setEntropyDecoder ( m_pcSbacDecoder  );
153  m_pcEntropyDecoder->setBitstream      ( ppcSubstreams[0] );
154  m_pcEntropyDecoder->resetEntropy      (pcSlice);
155
156  if(uiSliceStartCuAddr == uiStartCUAddr)
157  {
158    m_LFCrossSliceBoundaryFlag.push_back( pcSlice->getLFCrossSliceBoundaryFlag());
159  }
160#if H_3D_IV_MERGE
161  if( uiStartCUAddr == 0 )
162  {
163    m_pcDepthMapGenerator->initViewComponent( rpcPic );
164  }
165#endif
166#if H_3D_NBDV
167  if(pcSlice->getViewIndex() && !pcSlice->getIsDepth()) //Notes from QC: this condition shall be changed once the configuration is completed, e.g. in pcSlice->getSPS()->getMultiviewMvPredMode() || ARP in prev. HTM. Remove this comment once it is done.
168  {
169    Int iColPoc = pcSlice->getRefPOC(RefPicList(1-pcSlice->getColFromL0Flag()), pcSlice->getColRefIdx());
170    rpcPic->setNumDdvCandPics(rpcPic->getDisCandRefPictures(iColPoc));
171  }
172#endif
173  m_pcSbacDecoders[0].load(m_pcSbacDecoder);
174  m_pcSliceDecoder->decompressSlice( ppcSubstreams, rpcPic, m_pcSbacDecoder, m_pcSbacDecoders);
175  m_pcEntropyDecoder->setBitstream(  ppcSubstreams[uiNumSubstreams-1] );
176  // deallocate all created substreams, including internal buffers.
177  for (UInt ui = 0; ui < uiNumSubstreams; ui++)
178  {
179    ppcSubstreams[ui]->deleteFifo();
180    delete ppcSubstreams[ui];
181  }
182  delete[] ppcSubstreams;
183  delete[] m_pcSbacDecoders; m_pcSbacDecoders = NULL;
184  delete[] m_pcBinCABACs; m_pcBinCABACs = NULL;
185
186  m_dDecTime += (Double)(clock()-iBeforeTime) / CLOCKS_PER_SEC;
187}
188
189Void TDecGop::filterPicture(TComPic*& rpcPic)
190{
191  TComSlice*  pcSlice = rpcPic->getSlice(rpcPic->getCurrSliceIdx());
192
193  //-- For time output for each slice
194  long iBeforeTime = clock();
195
196  // deblocking filter
197  Bool bLFCrossTileBoundary = pcSlice->getPPS()->getLoopFilterAcrossTilesEnabledFlag();
198  m_pcLoopFilter->setCfg(bLFCrossTileBoundary);
199  m_pcLoopFilter->loopFilterPic( rpcPic );
200
201  if(pcSlice->getSPS()->getUseSAO())
202  {
203    m_sliceStartCUAddress.push_back(rpcPic->getNumCUsInFrame()* rpcPic->getNumPartInCU());
204    rpcPic->createNonDBFilterInfo(m_sliceStartCUAddress, 0, &m_LFCrossSliceBoundaryFlag, rpcPic->getPicSym()->getNumTiles(), bLFCrossTileBoundary);
205  }
206
207  if( pcSlice->getSPS()->getUseSAO() )
208  {
209    {
210      SAOParam *saoParam = rpcPic->getPicSym()->getSaoParam();
211      saoParam->bSaoFlag[0] = pcSlice->getSaoEnabledFlag();
212      saoParam->bSaoFlag[1] = pcSlice->getSaoEnabledFlagChroma();
213      m_pcSAO->setSaoLcuBasedOptimization(1);
214      m_pcSAO->createPicSaoInfo(rpcPic);
215      m_pcSAO->SAOProcess(saoParam);
216      m_pcSAO->PCMLFDisableProcess(rpcPic);
217      m_pcSAO->destroyPicSaoInfo();
218    }
219  }
220
221  if(pcSlice->getSPS()->getUseSAO())
222  {
223    rpcPic->destroyNonDBFilterInfo();
224  }
225
226#if !H_3D
227  rpcPic->compressMotion(); 
228#endif
229  Char c = (pcSlice->isIntra() ? 'I' : pcSlice->isInterP() ? 'P' : 'B');
230  if (!pcSlice->isReferenced()) c += 32;
231
232  //-- For time output for each slice
233#if H_MV
234  printf("\nLayer %2d   POC %4d TId: %1d ( %c-SLICE, QP%3d ) ", pcSlice->getLayerId(),
235                                                              pcSlice->getPOC(),
236                                                              pcSlice->getTLayer(),
237                                                              c,
238                                                              pcSlice->getSliceQp() );
239#else
240  printf("\nPOC %4d TId: %1d ( %c-SLICE, QP%3d ) ", pcSlice->getPOC(),
241                                                    pcSlice->getTLayer(),
242                                                    c,
243                                                    pcSlice->getSliceQp() );
244#endif
245
246  m_dDecTime += (Double)(clock()-iBeforeTime) / CLOCKS_PER_SEC;
247  printf ("[DT %6.3f] ", m_dDecTime );
248  m_dDecTime  = 0;
249
250  for (Int iRefList = 0; iRefList < 2; iRefList++)
251  {
252    printf ("[L%d ", iRefList);
253    for (Int iRefIndex = 0; iRefIndex < pcSlice->getNumRefIdx(RefPicList(iRefList)); iRefIndex++)
254    {
255#if H_MV
256      if( pcSlice->getLayerId() != pcSlice->getRefLayerId( RefPicList(iRefList), iRefIndex ) )
257      {
258        printf( "V%d ", pcSlice->getRefLayerId( RefPicList(iRefList), iRefIndex ) );
259      }
260      else
261      {
262#endif
263      printf ("%d ", pcSlice->getRefPOC(RefPicList(iRefList), iRefIndex));
264#if H_MV
265      }
266#endif
267    }
268    printf ("] ");
269  }
270  if (m_decodedPictureHashSEIEnabled)
271  {
272    SEIMessages pictureHashes = getSeisByType(rpcPic->getSEIs(), SEI::DECODED_PICTURE_HASH );
273    const SEIDecodedPictureHash *hash = ( pictureHashes.size() > 0 ) ? (SEIDecodedPictureHash*) *(pictureHashes.begin()) : NULL;
274    if (pictureHashes.size() > 1)
275    {
276      printf ("Warning: Got multiple decoded picture hash SEI messages. Using first.");
277    }
278    calcAndPrintHashStatus(*rpcPic->getPicYuvRec(), hash);
279  }
280
281  rpcPic->setOutputMark(true);
282  rpcPic->setReconMark(true);
283  m_sliceStartCUAddress.clear();
284  m_LFCrossSliceBoundaryFlag.clear();
285}
286
287/**
288 * Calculate and print hash for pic, compare to picture_digest SEI if
289 * present in seis.  seis may be NULL.  Hash is printed to stdout, in
290 * a manner suitable for the status line. Theformat is:
291 *  [Hash_type:xxxxxxxxxxxxxxxxxxxxxxxxxxxxxxxx,(yyy)]
292 * Where, x..x is the hash
293 *        yyy has the following meanings:
294 *            OK          - calculated hash matches the SEI message
295 *            ***ERROR*** - calculated hash does not match the SEI message
296 *            unk         - no SEI message was available for comparison
297 */
298static void calcAndPrintHashStatus(TComPicYuv& pic, const SEIDecodedPictureHash* pictureHashSEI)
299{
300  /* calculate MD5sum for entire reconstructed picture */
301  UChar recon_digest[3][16];
302  Int numChar=0;
303  const Char* hashType = "\0";
304
305  if (pictureHashSEI)
306  {
307    switch (pictureHashSEI->method)
308    {
309    case SEIDecodedPictureHash::MD5:
310      {
311        hashType = "MD5";
312        calcMD5(pic, recon_digest);
313        numChar = 16;
314        break;
315      }
316    case SEIDecodedPictureHash::CRC:
317      {
318        hashType = "CRC";
319        calcCRC(pic, recon_digest);
320        numChar = 2;
321        break;
322      }
323    case SEIDecodedPictureHash::CHECKSUM:
324      {
325        hashType = "Checksum";
326        calcChecksum(pic, recon_digest);
327        numChar = 4;
328        break;
329      }
330    default:
331      {
332        assert (!"unknown hash type");
333      }
334    }
335  }
336
337  /* compare digest against received version */
338  const Char* ok = "(unk)";
339  Bool mismatch = false;
340
341  if (pictureHashSEI)
342  {
343    ok = "(OK)";
344    for(Int yuvIdx = 0; yuvIdx < 3; yuvIdx++)
345    {
346      for (UInt i = 0; i < numChar; i++)
347      {
348        if (recon_digest[yuvIdx][i] != pictureHashSEI->digest[yuvIdx][i])
349        {
350          ok = "(***ERROR***)";
351          mismatch = true;
352        }
353      }
354    }
355  }
356
357  printf("[%s:%s,%s] ", hashType, digestToString(recon_digest, numChar), ok);
358
359  if (mismatch)
360  {
361    g_md5_mismatch = true;
362    printf("[rx%s:%s] ", hashType, digestToString(pictureHashSEI->digest, numChar));
363  }
364}
365//! \}
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