source: SHVCSoftware/branches/SHM-dev/source/Lib/TLibDecoder/TDecSlice.cpp @ 1353

Last change on this file since 1353 was 1287, checked in by seregin, 9 years ago

port rev 4322 (g_bitDepth)

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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) 2010-2015, 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 *
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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
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18 *    be used to endorse or promote products derived from this software without
19 *    specific prior written permission.
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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     TDecSlice.cpp
35    \brief    slice decoder class
36*/
37
38#include "TDecSlice.h"
39
40//! \ingroup TLibDecoder
41//! \{
42
43//////////////////////////////////////////////////////////////////////
44// Construction/Destruction
45//////////////////////////////////////////////////////////////////////
46
47TDecSlice::TDecSlice()
48{
49}
50
51TDecSlice::~TDecSlice()
52{
53}
54
55Void TDecSlice::create()
56{
57}
58
59Void TDecSlice::destroy()
60{
61}
62
63Void TDecSlice::init(TDecEntropy* pcEntropyDecoder, TDecCu* pcCuDecoder)
64{
65  m_pcEntropyDecoder  = pcEntropyDecoder;
66  m_pcCuDecoder       = pcCuDecoder;
67}
68
69Void TDecSlice::decompressSlice(TComInputBitstream** ppcSubstreams, TComPic* pcPic, TDecSbac* pcSbacDecoder)
70{
71  TComSlice* pcSlice                 = pcPic->getSlice(pcPic->getCurrSliceIdx());
72
73  const Int  startCtuTsAddr          = pcSlice->getSliceSegmentCurStartCtuTsAddr();
74  const Int  startCtuRsAddr          = pcPic->getPicSym()->getCtuTsToRsAddrMap(startCtuTsAddr);
75  const UInt numCtusInFrame          = pcPic->getNumberOfCtusInFrame();
76
77  const UInt frameWidthInCtus        = pcPic->getPicSym()->getFrameWidthInCtus();
78  const Bool depSliceSegmentsEnabled = pcSlice->getPPS()->getDependentSliceSegmentsEnabledFlag();
79  const Bool wavefrontsEnabled       = pcSlice->getPPS()->getEntropyCodingSyncEnabledFlag();
80
81  m_pcEntropyDecoder->setEntropyDecoder ( pcSbacDecoder  );
82  m_pcEntropyDecoder->setBitstream      ( ppcSubstreams[0] );
83  m_pcEntropyDecoder->resetEntropy      (pcSlice);
84
85  // decoder doesn't need prediction & residual frame buffer
86  pcPic->setPicYuvPred( 0 );
87  pcPic->setPicYuvResi( 0 );
88
89#if ENC_DEC_TRACE
90  g_bJustDoIt = g_bEncDecTraceEnable;
91#endif
92  DTRACE_CABAC_VL( g_nSymbolCounter++ );
93  DTRACE_CABAC_T( "\tPOC: " );
94  DTRACE_CABAC_V( pcPic->getPOC() );
95  DTRACE_CABAC_T( "\n" );
96
97#if ENC_DEC_TRACE
98  g_bJustDoIt = g_bEncDecTraceDisable;
99#endif
100
101  // The first CTU of the slice is the first coded substream, but the global substream number, as calculated by getSubstreamForCtuAddr may be higher.
102  // This calculates the common offset for all substreams in this slice.
103  const UInt subStreamOffset=pcPic->getSubstreamForCtuAddr(startCtuRsAddr, true, pcSlice);
104
105
106  if (depSliceSegmentsEnabled)
107  {
108    // modify initial contexts with previous slice segment if this is a dependent slice.
109    const UInt startTileIdx=pcPic->getPicSym()->getTileIdxMap(startCtuRsAddr);
110    const TComTile *pCurrentTile=pcPic->getPicSym()->getTComTile(startTileIdx);
111    const UInt firstCtuRsAddrOfTile = pCurrentTile->getFirstCtuRsAddr();
112
113    if( pcSlice->getDependentSliceSegmentFlag() && startCtuRsAddr != firstCtuRsAddrOfTile)
114    {
115      if ( pCurrentTile->getTileWidthInCtus() >= 2 || !wavefrontsEnabled)
116      {
117        pcSbacDecoder->loadContexts(&m_lastSliceSegmentEndContextState);
118      }
119    }
120  }
121
122  // for every CTU in the slice segment...
123
124  Bool isLastCtuOfSliceSegment = false;
125  for( UInt ctuTsAddr = startCtuTsAddr; !isLastCtuOfSliceSegment && ctuTsAddr < numCtusInFrame; ctuTsAddr++)
126  {
127    const UInt ctuRsAddr = pcPic->getPicSym()->getCtuTsToRsAddrMap(ctuTsAddr);
128    const TComTile &currentTile = *(pcPic->getPicSym()->getTComTile(pcPic->getPicSym()->getTileIdxMap(ctuRsAddr)));
129    const UInt firstCtuRsAddrOfTile = currentTile.getFirstCtuRsAddr();
130    const UInt tileXPosInCtus = firstCtuRsAddrOfTile % frameWidthInCtus;
131    const UInt tileYPosInCtus = firstCtuRsAddrOfTile / frameWidthInCtus;
132    const UInt ctuXPosInCtus  = ctuRsAddr % frameWidthInCtus;
133    const UInt ctuYPosInCtus  = ctuRsAddr / frameWidthInCtus;
134    const UInt uiSubStrm=pcPic->getSubstreamForCtuAddr(ctuRsAddr, true, pcSlice)-subStreamOffset;
135    TComDataCU* pCtu = pcPic->getCtu( ctuRsAddr );
136    pCtu->initCtu( pcPic, ctuRsAddr );
137
138    m_pcEntropyDecoder->setBitstream( ppcSubstreams[uiSubStrm] );
139
140    // set up CABAC contexts' state for this CTU
141    if (ctuRsAddr == firstCtuRsAddrOfTile)
142    {
143      if (ctuTsAddr != startCtuTsAddr) // if it is the first CTU, then the entropy coder has already been reset
144      {
145        m_pcEntropyDecoder->resetEntropy(pcSlice);
146      }
147    }
148    else if (ctuXPosInCtus == tileXPosInCtus && wavefrontsEnabled)
149    {
150      // Synchronize cabac probabilities with upper-right CTU if it's available and at the start of a line.
151      if (ctuTsAddr != startCtuTsAddr) // if it is the first CTU, then the entropy coder has already been reset
152      {
153        m_pcEntropyDecoder->resetEntropy(pcSlice);
154      }
155      TComDataCU *pCtuUp = pCtu->getCtuAbove();
156      if ( pCtuUp && ((ctuRsAddr%frameWidthInCtus+1) < frameWidthInCtus)  )
157      {
158        TComDataCU *pCtuTR = pcPic->getCtu( ctuRsAddr - frameWidthInCtus + 1 );
159        if ( pCtu->CUIsFromSameSliceAndTile(pCtuTR) )
160        {
161          // Top-right is available, so use it.
162          pcSbacDecoder->loadContexts( &m_entropyCodingSyncContextState );
163        }
164      }
165    }
166
167#if ENC_DEC_TRACE
168    g_bJustDoIt = g_bEncDecTraceEnable;
169#endif
170
171    if ( pcSlice->getSPS()->getUseSAO() )
172    {
173      SAOBlkParam& saoblkParam = (pcPic->getPicSym()->getSAOBlkParam())[ctuRsAddr];
174      Bool bIsSAOSliceEnabled = false;
175      Bool sliceEnabled[MAX_NUM_COMPONENT];
176      for(Int comp=0; comp < MAX_NUM_COMPONENT; comp++)
177      {
178        ComponentID compId=ComponentID(comp);
179        sliceEnabled[compId] = pcSlice->getSaoEnabledFlag(toChannelType(compId)) && (comp < pcPic->getNumberValidComponents());
180        if (sliceEnabled[compId])
181        {
182          bIsSAOSliceEnabled=true;
183        }
184        saoblkParam[compId].modeIdc = SAO_MODE_OFF;
185      }
186      if (bIsSAOSliceEnabled)
187      {
188        Bool leftMergeAvail = false;
189        Bool aboveMergeAvail= false;
190
191        //merge left condition
192        Int rx = (ctuRsAddr % frameWidthInCtus);
193        if(rx > 0)
194        {
195          leftMergeAvail = pcPic->getSAOMergeAvailability(ctuRsAddr, ctuRsAddr-1);
196        }
197        //merge up condition
198        Int ry = (ctuRsAddr / frameWidthInCtus);
199        if(ry > 0)
200        {
201          aboveMergeAvail = pcPic->getSAOMergeAvailability(ctuRsAddr, ctuRsAddr-frameWidthInCtus);
202        }
203#if SVC_EXTENSION
204        pcSbacDecoder->parseSAOBlkParam( saoblkParam, sliceEnabled, leftMergeAvail, aboveMergeAvail, pcSlice->getBitDepths());
205#else
206        pcSbacDecoder->parseSAOBlkParam( saoblkParam, sliceEnabled, leftMergeAvail, aboveMergeAvail, pcSlice->getSPS()->getBitDepths());
207#endif
208      }
209    }
210
211    m_pcCuDecoder->decodeCtu     ( pCtu, isLastCtuOfSliceSegment );
212    m_pcCuDecoder->decompressCtu ( pCtu );
213
214#if ENC_DEC_TRACE
215    g_bJustDoIt = g_bEncDecTraceDisable;
216#endif
217
218    //Store probabilities of second CTU in line into buffer
219    if ( ctuXPosInCtus == tileXPosInCtus+1 && wavefrontsEnabled)
220    {
221      m_entropyCodingSyncContextState.loadContexts( pcSbacDecoder );
222    }
223
224    if (isLastCtuOfSliceSegment)
225    {
226#if DECODER_CHECK_SUBSTREAM_AND_SLICE_TRAILING_BYTES
227      pcSbacDecoder->parseRemainingBytes(false);
228#endif
229      if(!pcSlice->getDependentSliceSegmentFlag())
230      {
231        pcSlice->setSliceCurEndCtuTsAddr( ctuTsAddr+1 );
232      }
233      pcSlice->setSliceSegmentCurEndCtuTsAddr( ctuTsAddr+1 );
234    }
235    else if (  ctuXPosInCtus + 1 == tileXPosInCtus + currentTile.getTileWidthInCtus() &&
236             ( ctuYPosInCtus + 1 == tileYPosInCtus + currentTile.getTileHeightInCtus() || wavefrontsEnabled)
237            )
238    {
239      // The sub-stream/stream should be terminated after this CTU.
240      // (end of slice-segment, end of tile, end of wavefront-CTU-row)
241      UInt binVal;
242      pcSbacDecoder->parseTerminatingBit( binVal );
243      assert( binVal );
244#if DECODER_CHECK_SUBSTREAM_AND_SLICE_TRAILING_BYTES
245      pcSbacDecoder->parseRemainingBytes(true);
246#endif
247    }
248
249  }
250
251  assert(isLastCtuOfSliceSegment == true);
252
253
254  if( depSliceSegmentsEnabled )
255  {
256    m_lastSliceSegmentEndContextState.loadContexts( pcSbacDecoder );//ctx end of dep.slice
257  }
258
259}
260
261//! \}
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