source: 3DVCSoftware/branches/HTM-14.1-update-dev0/source/Lib/TLibEncoder/TEncEntropy.h @ 1203

Last change on this file since 1203 was 1200, checked in by tech, 10 years ago

Update to HM-16.5.
Starting point for further re-activation of 3D-tools.

Includes:

active:

  • MV-HEVC
  • 3D-HLS (apart from DLT)
  • VSO

inactive:

  • remaining 3D-HEVC tools.
  • Property svn:eol-style set to native
File size: 11.2 KB
RevLine 
[5]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
[1200]4 * granted under this license.
[5]5 *
[1200]6 * Copyright (c) 2010-2015, ITU/ISO/IEC
[5]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.
[56]17 *  * Neither the name of the ITU/ISO/IEC nor the names of its contributors may
[5]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
24 * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS
25 * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
26 * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
27 * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
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 */
[2]33
34/** \file     TEncEntropy.h
35    \brief    entropy encoder class (header)
36*/
37
38#ifndef __TENCENTROPY__
39#define __TENCENTROPY__
40
[56]41#include "TLibCommon/TComSlice.h"
42#include "TLibCommon/TComDataCU.h"
43#include "TLibCommon/TComBitStream.h"
44#include "TLibCommon/ContextModel.h"
45#include "TLibCommon/TComPic.h"
46#include "TLibCommon/TComTrQuant.h"
47#include "TLibCommon/TComSampleAdaptiveOffset.h"
[1200]48#include "TLibCommon/TComChromaFormat.h"
[56]49
[2]50class TEncSbac;
51class TEncCavlc;
52class SEI;
53
54// ====================================================================================================================
55// Class definition
56// ====================================================================================================================
57
58/// entropy encoder pure class
59class TEncEntropyIf
60{
61public:
[1200]62  virtual Void  resetEntropy          (const TComSlice *pSlice)                = 0;
63  virtual SliceType determineCabacInitIdx (const TComSlice *pSlice)                = 0;
[2]64  virtual Void  setBitstream          ( TComBitIf* p )  = 0;
65  virtual Void  resetBits             ()                = 0;
66  virtual UInt  getNumberOfWrittenBits()                = 0;
[56]67
[1200]68  virtual Void  codeVPS                 ( const TComVPS* pcVPS )                                      = 0;
69  virtual Void  codeSPS                 ( const TComSPS* pcSPS )                                      = 0;
70  virtual Void  codePPS                 ( const TComPPS* pcPPS )                                      = 0;
[2]71  virtual Void  codeSliceHeader         ( TComSlice* pcSlice )                                  = 0;
[56]72
73  virtual Void  codeTilesWPPEntryPoint  ( TComSlice* pSlice )     = 0;
[2]74  virtual Void  codeTerminatingBit      ( UInt uilsLast )                                       = 0;
75  virtual Void  codeSliceFinish         ()                                                      = 0;
[1200]76  virtual Void  codeMVPIdx ( TComDataCU* pcCU, UInt uiAbsPartIdx, RefPicList eRefList ) = 0;
77
[2]78public:
[608]79  virtual Void codeCUTransquantBypassFlag( TComDataCU* pcCU, UInt uiAbsPartIdx ) = 0;
[2]80  virtual Void codeSkipFlag      ( TComDataCU* pcCU, UInt uiAbsPartIdx ) = 0;
[1196]81#if H_3D
[1179]82  virtual Void codeDIS          ( TComDataCU* pcCU, UInt uiAbsPartIdx ) = 0;
[1039]83#endif
[2]84  virtual Void codeMergeFlag     ( TComDataCU* pcCU, UInt uiAbsPartIdx ) = 0;
85  virtual Void codeMergeIndex    ( TComDataCU* pcCU, UInt uiAbsPartIdx ) = 0;
[608]86#if H_3D_ARP
87  virtual Void codeARPW          ( TComDataCU* pcCU, UInt uiAbsPartIdx ) = 0;
[5]88#endif
[608]89#if H_3D_IC
90  virtual Void codeICFlag        ( TComDataCU* pcCU, UInt uiAbsPartIdx ) = 0;
[443]91#endif
[655]92#if H_3D_INTER_SDC
[833]93  virtual Void codeDeltaDC       ( TComDataCU* pcCU, UInt uiAbsPartIdx ) = 0;
94  virtual Void codeSDCFlag       ( TComDataCU* pcCU, UInt uiAbsPartIdx ) = 0;
[608]95#endif
[833]96#if H_3D_DBBP
97  virtual Void codeDBBPFlag      ( TComDataCU* pcCU, UInt uiAbsPartIdx ) = 0;
98#endif
[2]99  virtual Void codeSplitFlag     ( TComDataCU* pcCU, UInt uiAbsPartIdx, UInt uiDepth ) = 0;
[1200]100
[2]101  virtual Void codePartSize      ( TComDataCU* pcCU, UInt uiAbsPartIdx, UInt uiDepth ) = 0;
102  virtual Void codePredMode      ( TComDataCU* pcCU, UInt uiAbsPartIdx ) = 0;
[1200]103
[608]104  virtual Void codeIPCMInfo      ( TComDataCU* pcCU, UInt uiAbsPartIdx ) = 0;
[56]105
[2]106  virtual Void codeTransformSubdivFlag( UInt uiSymbol, UInt uiCtx ) = 0;
[1200]107  virtual Void codeQtCbf         ( TComTU &rTu, const ComponentID compID, const Bool lowestLevel ) = 0;
[2]108  virtual Void codeQtRootCbf     ( TComDataCU* pcCU, UInt uiAbsPartIdx ) = 0;
[1200]109  virtual Void codeQtCbfZero     ( TComTU &rTu, const ChannelType chType ) = 0;
110  virtual Void codeQtRootCbfZero ( ) = 0;
[608]111  virtual Void codeIntraDirLumaAng( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool isMultiplePU ) = 0;
[1200]112
[2]113  virtual Void codeIntraDirChroma( TComDataCU* pcCU, UInt uiAbsPartIdx ) = 0;
114  virtual Void codeInterDir      ( TComDataCU* pcCU, UInt uiAbsPartIdx ) = 0;
115  virtual Void codeRefFrmIdx     ( TComDataCU* pcCU, UInt uiAbsPartIdx, RefPicList eRefList )      = 0;
116  virtual Void codeMvd           ( TComDataCU* pcCU, UInt uiAbsPartIdx, RefPicList eRefList )      = 0;
[1200]117
118  virtual Void codeCrossComponentPrediction( TComTU &rTu, ComponentID compID ) = 0;
119
[2]120  virtual Void codeDeltaQP       ( TComDataCU* pcCU, UInt uiAbsPartIdx ) = 0;
[1200]121  virtual Void codeChromaQpAdjustment( TComDataCU* pcCU, UInt uiAbsPartIdx ) = 0;
122  virtual Void codeCoeffNxN      ( TComTU &rTu, TCoeff* pcCoef, const ComponentID compID ) = 0;
123  virtual Void codeTransformSkipFlags ( TComTU &rTu, ComponentID component ) = 0;
124  virtual Void codeSAOBlkParam   (SAOBlkParam& saoBlkParam, const BitDepths &bitDepths, Bool* sliceEnabled, Bool leftMergeAvail, Bool aboveMergeAvail, Bool onlyEstMergeInfo = false)    =0;
125  virtual Void estBit               (estBitsSbacStruct* pcEstBitsSbac, Int width, Int height, ChannelType chType) = 0;
[56]126
[1200]127  virtual Void codeExplicitRdpcmMode ( TComTU &rTu, const ComponentID compID ) = 0;
[56]128
[2]129  virtual ~TEncEntropyIf() {}
130};
131
132/// entropy encoder class
133class TEncEntropy
134{
135public:
[1200]136  Void    setEntropyCoder           ( TEncEntropyIf* e );
[2]137  Void    setBitstream              ( TComBitIf* p )          { m_pcEntropyCoderIf->setBitstream(p);  }
138  Void    resetBits                 ()                        { m_pcEntropyCoderIf->resetBits();      }
[1179]139  UInt    getNumberOfWrittenBits    ()
[1200]140                        {
[1179]141#if ENC_DEC_TRACE && H_MV_ENC_DEC_TRAC
142    Bool oldJustDoIt = g_bJustDoIt;
143    g_bJustDoIt = true; 
144    writeToTraceFile( "NumberOfWrittenBits", m_pcEntropyCoderIf->getNumberOfWrittenBits(), g_encNumberOfWrittenBits );
145    g_bJustDoIt = oldJustDoIt; 
146#endif
[1200]147 return m_pcEntropyCoderIf->getNumberOfWrittenBits(); }
148  Void    resetEntropy              (const TComSlice *pSlice) { m_pcEntropyCoderIf->resetEntropy(pSlice);  }
149  SliceType determineCabacInitIdx   (const TComSlice *pSlice) { return m_pcEntropyCoderIf->determineCabacInitIdx(pSlice); }
150
[2]151  Void    encodeSliceHeader         ( TComSlice* pcSlice );
[56]152  Void    encodeTilesWPPEntryPoint( TComSlice* pSlice );
[2]153  Void    encodeTerminatingBit      ( UInt uiIsLast );
154  Void    encodeSliceFinish         ();
155  TEncEntropyIf*      m_pcEntropyCoderIf;
[1200]156
[2]157public:
[1200]158  Void encodeVPS               ( const TComVPS* pcVPS);
[2]159  // SPS
[1200]160  Void encodeSPS               ( const TComSPS* pcSPS );
161  Void encodePPS               ( const TComPPS* pcPPS );
[2]162  Void encodeSplitFlag         ( TComDataCU* pcCU, UInt uiAbsPartIdx, UInt uiDepth, Bool bRD = false );
[608]163  Void encodeCUTransquantBypassFlag( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool bRD = false );
[2]164  Void encodeSkipFlag          ( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool bRD = false );
[1196]165#if H_3D
[1179]166  Void encodeDIS               ( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool bRD=false );
[1039]167#endif
[1200]168  Void encodePUWise       ( TComDataCU* pcCU, UInt uiAbsPartIdx );
[2]169  Void encodeInterDirPU   ( TComDataCU* pcSubCU, UInt uiAbsPartIdx  );
170  Void encodeRefFrmIdxPU  ( TComDataCU* pcSubCU, UInt uiAbsPartIdx, RefPicList eRefList );
171  Void encodeMvdPU        ( TComDataCU* pcSubCU, UInt uiAbsPartIdx, RefPicList eRefList );
172  Void encodeMVPIdxPU     ( TComDataCU* pcSubCU, UInt uiAbsPartIdx, RefPicList eRefList );
[608]173  Void encodeMergeFlag    ( TComDataCU* pcCU, UInt uiAbsPartIdx );
174  Void encodeMergeIndex   ( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool bRD = false );
175#if H_3D_ARP
176  Void encodeARPW         ( TComDataCU* pcCU, UInt uiAbspartIdx );
[443]177#endif
[608]178#if H_3D_IC
179  Void encodeICFlag       ( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool bRD = false );
180#endif
[655]181#if H_3D_INTER_SDC
[833]182  Void encodeDeltaDC      ( TComDataCU* pcCU, UInt absPartIdx );
183  Void encodeSDCFlag      ( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool bRD = false );
[608]184#endif
[833]185#if H_3D_DBBP
186  Void encodeDBBPFlag     ( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool bRD = false );
187#endif
[2]188  Void encodePredMode          ( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool bRD = false );
189  Void encodePartSize          ( TComDataCU* pcCU, UInt uiAbsPartIdx, UInt uiDepth, Bool bRD = false );
[56]190  Void encodeIPCMInfo          ( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool bRD = false );
[1200]191  Void encodePredInfo          ( TComDataCU* pcCU, UInt uiAbsPartIdx );
[608]192  Void encodeIntraDirModeLuma  ( TComDataCU* pcCU, UInt absPartIdx, Bool isMultiplePU = false );
[1200]193
194  Void encodeIntraDirModeChroma( TComDataCU* pcCU, UInt uiAbsPartIdx );
195
[2]196  Void encodeTransformSubdivFlag( UInt uiSymbol, UInt uiCtx );
[1200]197  Void encodeQtCbf             ( TComTU &rTu, const ComponentID compID, const Bool lowestLevel );
198
199  Void encodeQtCbfZero         ( TComTU &rTu, const ChannelType chType );
200  Void encodeQtRootCbfZero     ( );
[2]201  Void encodeQtRootCbf         ( TComDataCU* pcCU, UInt uiAbsPartIdx );
202  Void encodeQP                ( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool bRD = false );
[1200]203  Void encodeChromaQpAdjustment ( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool bRD = false );
[608]204
[1200]205  Void encodeCrossComponentPrediction( TComTU &rTu, ComponentID compID );
[56]206
[2]207private:
[1200]208  Void xEncodeTransform        ( Bool& bCodeDQP, Bool& codeChromaQpAdj, TComTU &rTu );
209
[1179]210public:
[1200]211  Void encodeCoeff             ( TComDataCU* pcCU, UInt uiAbsPartIdx, UInt uiDepth, Bool& bCodeDQP, Bool& codeChromaQpAdj );
212
213  Void encodeCoeffNxN         ( TComTU &rTu, TCoeff* pcCoef, const ComponentID compID );
214
215  Void estimateBit             ( estBitsSbacStruct* pcEstBitsSbac, Int width, Int height, ChannelType chType );
216
217  Void encodeSAOBlkParam(SAOBlkParam& saoBlkParam, const BitDepths &bitDepths, Bool* sliceEnabled, Bool leftMergeAvail, Bool aboveMergeAvail){m_pcEntropyCoderIf->codeSAOBlkParam(saoBlkParam, bitDepths, sliceEnabled, leftMergeAvail, aboveMergeAvail, false);}
218
[56]219  static Int countNonZeroCoeffs( TCoeff* pcCoef, UInt uiSize );
220
[2]221};// END CLASS DEFINITION TEncEntropy
222
[56]223//! \}
[2]224
225#endif // __TENCENTROPY__
226
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