source: 3DVCSoftware/branches/HTM-11.2-dev3-MediaTek/source/Lib/TLibEncoder/TEncCu.h @ 983

Last change on this file since 983 was 983, checked in by mediatek-htm, 10 years ago

Integration of Single Depth Mode proposed in JCT3V-I0095.
The MACRO is "MTK_SINGLE_DEPTH_MODE_I0095".

By Yi-Wen Chen (yiwen.chen@…)

  • Property svn:eol-style set to native
File size: 8.0 KB
Line 
1/* The copyright in this software is being made available under the BSD
2 * License, included below. This software may be subject to other third party
3 * and contributor rights, including patent rights, and no such rights are
4 * granted under this license. 
5 *
6* Copyright (c) 2010-2014, ITU/ISO/IEC
7 * All rights reserved.
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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
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32 */
33
34/** \file     TEncCu.h
35    \brief    Coding Unit (CU) encoder class (header)
36*/
37
38#ifndef __TENCCU__
39#define __TENCCU__
40
41// Include files
42#include "TLibCommon/CommonDef.h"
43#include "TLibCommon/TComYuv.h"
44#include "TLibCommon/TComPrediction.h"
45#include "TLibCommon/TComTrQuant.h"
46#include "TLibCommon/TComBitCounter.h"
47#include "TLibCommon/TComDataCU.h"
48
49#include "TEncEntropy.h"
50#include "TEncSearch.h"
51#include "TEncRateCtrl.h"
52//! \ingroup TLibEncoder
53//! \{
54
55class TEncTop;
56class TEncSbac;
57class TEncCavlc;
58class TEncSlice;
59
60// ====================================================================================================================
61// Class definition
62// ====================================================================================================================
63
64/// CU encoder class
65class TEncCu
66{
67private:
68 
69  TComDataCU**            m_ppcBestCU;      ///< Best CUs in each depth
70  TComDataCU**            m_ppcTempCU;      ///< Temporary CUs in each depth
71#if H_3D_ARP
72  TComDataCU**            m_ppcWeightedTempCU;
73#endif
74  UChar                   m_uhTotalDepth;
75 
76  TComYuv**               m_ppcPredYuvBest; ///< Best Prediction Yuv for each depth
77  TComYuv**               m_ppcResiYuvBest; ///< Best Residual Yuv for each depth
78  TComYuv**               m_ppcRecoYuvBest; ///< Best Reconstruction Yuv for each depth
79  TComYuv**               m_ppcPredYuvTemp; ///< Temporary Prediction Yuv for each depth
80  TComYuv**               m_ppcResiYuvTemp; ///< Temporary Residual Yuv for each depth
81  TComYuv**               m_ppcRecoYuvTemp; ///< Temporary Reconstruction Yuv for each depth
82  TComYuv**               m_ppcOrigYuv;     ///< Original Yuv for each depth
83 
84#if H_3D_DBBP
85  TComYuv**               m_ppcOrigYuvDBBP;
86#endif
87 
88  //  Data : encoder control
89  Bool                    m_bEncodeDQP;
90 
91  //  Access channel
92  TEncCfg*                m_pcEncCfg;
93  TEncSearch*             m_pcPredSearch;
94  TComTrQuant*            m_pcTrQuant;
95  TComBitCounter*         m_pcBitCounter;
96  TComRdCost*             m_pcRdCost;
97 
98  TEncEntropy*            m_pcEntropyCoder;
99  TEncCavlc*              m_pcCavlcCoder;
100  TEncSbac*               m_pcSbacCoder;
101  TEncBinCABAC*           m_pcBinCABAC;
102 
103  // SBAC RD
104  TEncSbac***             m_pppcRDSbacCoder;
105  TEncSbac*               m_pcRDGoOnSbacCoder;
106  TEncRateCtrl*           m_pcRateCtrl;
107#if KWU_RC_MADPRED_E0227
108  UInt                    m_LCUPredictionSAD;
109  Int                     m_addSADDepth;
110  Int                     m_temporalSAD;
111  Int                     m_spatialSAD;
112#endif
113public:
114  /// copy parameters from encoder class
115  Void  init                ( TEncTop* pcEncTop );
116 
117  /// create internal buffers
118  Void  create              ( UChar uhTotalDepth, UInt iMaxWidth, UInt iMaxHeight );
119 
120  /// destroy internal buffers
121  Void  destroy             ();
122 
123  /// CU analysis function
124  Void  compressCU          ( TComDataCU*&  rpcCU );
125 
126  /// CU encoding function
127  Void  encodeCU            ( TComDataCU*    pcCU );
128 
129  Void setBitCounter        ( TComBitCounter* pcBitCounter ) { m_pcBitCounter = pcBitCounter; }
130#if KWU_RC_MADPRED_E0227
131  UInt getLCUPredictionSAD() { return m_LCUPredictionSAD; }
132#endif
133  Int   updateLCUDataISlice ( TComDataCU* pcCU, Int LCUIdx, Int width, Int height );
134protected:
135  Void  finishCU            ( TComDataCU*  pcCU, UInt uiAbsPartIdx,           UInt uiDepth        );
136#if AMP_ENC_SPEEDUP
137  Void  xCompressCU         ( TComDataCU*& rpcBestCU, TComDataCU*& rpcTempCU, UInt uiDepth, PartSize eParentPartSize = SIZE_NONE );
138#else
139  Void  xCompressCU         ( TComDataCU*& rpcBestCU, TComDataCU*& rpcTempCU, UInt uiDepth        );
140#endif
141  Void  xEncodeCU           ( TComDataCU*  pcCU, UInt uiAbsPartIdx,           UInt uiDepth        );
142 
143  Int   xComputeQP          ( TComDataCU* pcCU, UInt uiDepth );
144  Void  xCheckBestMode      ( TComDataCU*& rpcBestCU, TComDataCU*& rpcTempCU, UInt uiDepth        );
145 
146  Void  xCheckRDCostMerge2Nx2N( TComDataCU*& rpcBestCU, TComDataCU*& rpcTempCU, Bool *earlyDetectionSkipMode);
147
148#if AMP_MRG
149#if  H_3D_FAST_TEXTURE_ENCODING
150  Void  xCheckRDCostInter   ( TComDataCU*& rpcBestCU, TComDataCU*& rpcTempCU, PartSize ePartSize,  Bool bFMD, Bool bUseMRG = false  ) ;
151#else
152  Void  xCheckRDCostInter   ( TComDataCU*& rpcBestCU, TComDataCU*& rpcTempCU, PartSize ePartSize, Bool bUseMRG = false  );
153#endif
154#else
155  Void  xCheckRDCostInter   ( TComDataCU*& rpcBestCU, TComDataCU*& rpcTempCU, PartSize ePartSize  );
156#endif
157#if H_3D_DBBP
158  Void  xInvalidateOriginalSegments( TComYuv* pOrigYuv, TComYuv* pOrigYuvTemp, Bool* pMask, UInt uiValidSegment );
159  Void  xCheckRDCostInterDBBP( TComDataCU*& rpcBestCU, TComDataCU*& rpcTempCU, Bool bUseMRG = false );
160#endif
161#if MTK_SINGLE_DEPTH_MODE_I0095
162  Void  xCheckRDCostSingleDepth   ( TComDataCU*& rpcBestCU, TComDataCU*& rpcTempCU, PartSize ePartSize  );
163#endif
164  Void  xCheckRDCostIntra   ( TComDataCU*& rpcBestCU, TComDataCU*& rpcTempCU, PartSize ePartSize  );
165  Void  xCheckDQP           ( TComDataCU*  pcCU );
166 
167  Void  xCheckIntraPCM      ( TComDataCU*& rpcBestCU, TComDataCU*& rpcTempCU                      );
168  Void  xCopyAMVPInfo       ( AMVPInfo* pSrc, AMVPInfo* pDst );
169  Void  xCopyYuv2Pic        (TComPic* rpcPic, UInt uiCUAddr, UInt uiAbsPartIdx, UInt uiDepth, UInt uiSrcDepth, TComDataCU* pcCU, UInt uiLPelX, UInt uiTPelY );
170  Void  xCopyYuv2Tmp        ( UInt uhPartUnitIdx, UInt uiDepth );
171
172  Bool getdQPFlag           ()                        { return m_bEncodeDQP;        }
173  Void setdQPFlag           ( Bool b )                { m_bEncodeDQP = b;           }
174
175#if ADAPTIVE_QP_SELECTION
176  // Adaptive reconstruction level (ARL) statistics collection functions
177  Void xLcuCollectARLStats(TComDataCU* rpcCU);
178  Int  xTuCollectARLStats(TCoeff* rpcCoeff, Int* rpcArlCoeff, Int NumCoeffInCU, Double* cSum, UInt* numSamples );
179#endif
180
181#if AMP_ENC_SPEEDUP
182#if AMP_MRG
183  Void deriveTestModeAMP (TComDataCU *&rpcBestCU, PartSize eParentPartSize, Bool &bTestAMP_Hor, Bool &bTestAMP_Ver, Bool &bTestMergeAMP_Hor, Bool &bTestMergeAMP_Ver);
184#else
185  Void deriveTestModeAMP (TComDataCU *&rpcBestCU, PartSize eParentPartSize, Bool &bTestAMP_Hor, Bool &bTestAMP_Ver);
186#endif
187#endif
188
189  Void  xFillPCMBuffer     ( TComDataCU*& pCU, TComYuv* pOrgYuv ); 
190};
191
192//! \}
193
194#endif // __TENCMB__
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