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[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
[1313]4 * granted under this license.
[5]5 *
[1401]6 * Copyright (c) 2010-2016, 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:
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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
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.
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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
31 * THE POSSIBILITY OF SUCH DAMAGE.
32 */
[2]33
34/** \file     TAppEncCfg.h
35    \brief    Handle encoder configuration parameters (header)
36*/
37
38#ifndef __TAPPENCCFG__
39#define __TAPPENCCFG__
40
[56]41#include "TLibCommon/CommonDef.h"
[2]42
[56]43#include "TLibEncoder/TEncCfg.h"
[608]44#include <sstream>
[1084]45#include <vector>
[1313]46#if NH_3D
[56]47#include "TAppCommon/TAppComCamPara.h"
48#include "TLibRenderer/TRenModel.h"
49#include "TLibRenderer/TRenModSetupStrParser.h"
[608]50#endif
[56]51//! \ingroup TAppEncoder
52//! \{
53
[2]54// ====================================================================================================================
55// Class definition
56// ====================================================================================================================
57
58/// encoder configuration class
59class TAppEncCfg
60{
61protected:
62  // file I/O
[1313]63#if NH_MV
[1386]64  std::vector<TChar*>     m_pchInputFileList;                  ///< source file names
[608]65#else
[1386]66  std::string m_inputFileName;                                ///< source file name
[608]67#endif
[1386]68  std::string m_bitstreamFileName;                            ///< output bitstream file
[1313]69#if NH_MV
[2]70  std::vector<char*>     m_pchReconFileList;                  ///< output reconstruction file names
[608]71  Int                    m_numberOfLayers;                    ///< number of Layers to Encode
[622]72  Int                    m_iNumberOfViews;                    ///< number of Layers that are views
73#else
[1386]74  std::string m_reconFileName;                                ///< output reconstruction file
[608]75#endif
[1313]76  #if NH_MV
[608]77// VPS specification
[1313]78  IntAry2d m_dimIds;                   ///< dimension ids ( pointers to m_viewId and m_depthFlag
[1356]79  IntAry1d               m_viewId;                            ///< view id
80  IntAry1d               m_viewOrderIndex;                    ///< view order index 
81  IntAry1d               m_auxId;                             ///< auxiliary id
[1396]82#if NH_3D_VSO || NH_3D
[1356]83  IntAry1d               m_depthFlag;                         ///< depth flag
[608]84#endif
[1356]85  IntAry1d               m_targetEncLayerIdList;              ///< layer Ids in Nuh to be encoded
86  IntAry1d               m_layerIdInNuh;                      ///< layer Id in Nuh for each layer
[608]87  Bool                   m_splittingFlag;                     ///< Splitting Flag
88  Int                    m_scalabilityMask;                   ///< Mask indicating scalabilities, 1: texture; 3: texture + depth                                                               
[1356]89  IntAry1d               m_dimensionIdLen;                    ///< Length of scalability dimension s
[608]90 
91// layer sets   
92  Int                    m_vpsNumLayerSets;                   ///< Number of layer sets
[1386]93  IntAry2d m_layerIdxInVpsInSets;           ///< LayerIds in vps of layer set
[1066]94  Int                    m_numAddLayerSets;                    ///< Number of additional layer sets
[1313]95  IntAry2d m_highestLayerIdxPlus1;      ///< HighestLayerIdxPlus1 for each additional layer set and each independent layer (value with index 0 will be ignored)
[1066]96  Int                    m_defaultOutputLayerIdc;             ///< Specifies output layers of layer sets, 0: output all layers, 1: output highest layers, 2: specified by LayerIdsInDefOuputLayerSet
[1356]97  IntAry1d               m_outputLayerSetIdx;                 ///< Indices of layer sets used as additional output layer sets 
[1313]98  IntAry2d m_layerIdsInAddOutputLayerSet; ///< LayerIds in vps of additional output layers
99  IntAry2d m_layerIdsInDefOutputLayerSet; ///< Indices in vps of output layers in layer sets
100  IntAry2d               m_profileTierLevelIdx;      ///< Indices of of profile, per layer in layer set
[1356]101  BoolAry1d              m_altOutputLayerFlag;                ///< Alt output layer flag
[964]102
[608]103  // Dependencies
[1313]104  IntAry2d m_directRefLayers;          ///< LayerIds of direct reference layers
105  IntAry2d m_dependencyTypes;          ///< Dependency types of direct reference layers
[608]106
[622]107  // VPS VUI
108  Bool m_vpsVuiPresentFlag;
[738]109  Bool m_crossLayerPicTypeAlignedFlag;
110  Bool m_crossLayerIrapAlignedFlag;
[872]111  Bool m_allLayersIdrAlignedFlag;
[622]112  Bool m_bitRatePresentVpsFlag;
113  Bool m_picRatePresentVpsFlag;
[1386]114  BoolAry2d m_bitRatePresentFlag;
115  BoolAry2d m_picRatePresentFlag;
116  IntAry2d  m_avgBitRate;
117  IntAry2d  m_maxBitRate;
118  IntAry2d  m_constantPicRateIdc;
119  IntAry2d  m_avgPicRate;
120  Bool      m_tilesNotInUseFlag; 
121  BoolAry1d m_tilesInUseFlag;
122  BoolAry1d m_loopFilterNotAcrossTilesFlag; 
123  Bool      m_wppNotInUseFlag;
124  BoolAry1d m_wppInUseFlag;
[738]125
[1386]126  BoolAry2d m_tileBoundariesAlignedFlag; 
127  Bool      m_ilpRestrictedRefLayersFlag;
128  IntAry2d  m_minSpatialSegmentOffsetPlus1;
129  BoolAry2d m_ctuBasedOffsetEnabledFlag;
130  IntAry2d  m_minHorizontalCtuOffsetPlus1;
131  Bool      m_singleLayerForNonIrapFlag;
132  Bool      m_higherLayerIrapSkipFlag;
[1313]133#if NH_3D
134  Bool      m_abUseIC;
135  Bool      m_bUseLowLatencyICEnc;
[608]136#endif
137#endif
[1386]138  // Lambda modifiers
[56]139  Double    m_adLambdaModifier[ MAX_TLAYER ];                 ///< Lambda modifier array for each temporal layer
[1386]140  std::vector<Double> m_adIntraLambdaModifier;                ///< Lambda modifier for Intra pictures, one for each temporal layer. If size>temporalLayer, then use [temporalLayer], else if size>0, use [size()-1], else use m_adLambdaModifier.
141  Double    m_dIntraQpFactor;                                 ///< Intra Q Factor. If negative, use a default equation: 0.57*(1.0 - Clip3( 0.0, 0.5, 0.05*(Double)(isField ? (GopSize-1)/2 : GopSize-1) ))
142
[2]143  // source specification
144  Int       m_iFrameRate;                                     ///< source frame-rates (Hz)
[1313]145  UInt      m_FrameSkip;                                   ///< number of skipped frames from the beginning
[2]146  Int       m_iSourceWidth;                                   ///< source width in pixel
[655]147  Int       m_iSourceHeight;                                  ///< source height in pixel (when interlaced = field height)
[1313]148
[655]149  Int       m_iSourceHeightOrg;                               ///< original source height in pixel (when interlaced = frame height)
[1313]150
151  Bool      m_isField;                                        ///< enable field coding
152  Bool      m_isTopFieldFirst;
153  Bool      m_bEfficientFieldIRAPEnabled;                     ///< enable an efficient field IRAP structure.
154  Bool      m_bHarmonizeGopFirstFieldCoupleEnabled;
155
[1084]156  Int       m_conformanceWindowMode;
157  Int       m_confWinLeft;
158  Int       m_confWinRight;
159  Int       m_confWinTop;
160  Int       m_confWinBottom;
[608]161  Int       m_framesToBeEncoded;                              ///< number of encoded frames
[2]162  Int       m_aiPad[2];                                       ///< number of padded pixels for width and height
[1386]163  Bool      m_AccessUnitDelimiter;                            ///< add Access Unit Delimiter NAL units
[1313]164  InputColourSpaceConversion m_inputColourSpaceConvert;       ///< colour space conversion to apply to input video
165  Bool      m_snrInternalColourSpace;                       ///< if true, then no colour space conversion is applied for snr calculation, otherwise inverse of input is applied.
166  Bool      m_outputInternalColourSpace;                    ///< if true, then no colour space conversion is applied for reconstructed video, otherwise inverse of input is applied.
167  ChromaFormat m_InputChromaFormatIDC;
168
169  Bool      m_printMSEBasedSequencePSNR;
170  Bool      m_printFrameMSE;
171  Bool      m_printSequenceMSE;
172  Bool      m_cabacZeroWordPaddingEnabled;
173  Bool      m_bClipInputVideoToRec709Range;
174  Bool      m_bClipOutputVideoToRec709Range;
175
[608]176  // profile/level
[1313]177#if NH_MV
178  std::vector< Profile::Name > m_profiles;
[1066]179  std::vector< Level::Tier   > m_levelTier;
180  std::vector< Level::Name   > m_level;
181  std::vector< Bool          > m_inblFlag; 
182#else
[608]183  Profile::Name m_profile;
184  Level::Tier   m_levelTier;
185  Level::Name   m_level;
[1066]186#endif
[1313]187  UInt          m_bitDepthConstraint;
188  ChromaFormat  m_chromaFormatConstraint;
189  Bool          m_intraConstraintFlag;
190  Bool          m_onePictureOnlyConstraintFlag;
191  Bool          m_lowerBitRateConstraintFlag;
[608]192  Bool m_progressiveSourceFlag;
193  Bool m_interlacedSourceFlag;
194  Bool m_nonPackedConstraintFlag;
195  Bool m_frameOnlyConstraintFlag;
[1313]196
[2]197  // coding structure
[1313]198#if NH_MV
[1356]199  IntAry1d  m_iIntraPeriod;                            ///< period of I-slice (random access period)
[738]200#else
[56]201  Int       m_iIntraPeriod;                                   ///< period of I-slice (random access period)
[738]202#endif
[2]203  Int       m_iDecodingRefreshType;                           ///< random access type
204  Int       m_iGOPSize;                                       ///< GOP size of hierarchical structure
[1313]205#if NH_MV
[608]206  Int       m_extraRPSsMvc[MAX_NUM_LAYERS];                       ///< extra RPSs added to handle CRA for each layer
207  std::vector< GOPEntry* >  m_GOPListMvc;                            ///< the coding structure entries from the config file for each layer
208  Int       m_numReorderPicsMvc[MAX_NUM_LAYERS][MAX_TLAYER];      ///< total number of reorder pictures for each layer
209  Int       m_maxDecPicBufferingMvc[MAX_NUM_LAYERS][MAX_TLAYER];  ///< total number of reference pictures needed for decoding for each layer
210#else
211  Int       m_extraRPSs;                                      ///< extra RPSs added to handle CRA
212  GOPEntry  m_GOPList[MAX_GOP];                               ///< the coding structure entries from the config file
213  Int       m_numReorderPics[MAX_TLAYER];                     ///< total number of reorder pictures
214  Int       m_maxDecPicBuffering[MAX_TLAYER];                 ///< total number of pictures in the decoded picture buffer
215  #endif
[1313]216  Bool      m_crossComponentPredictionEnabledFlag;                          ///< flag enabling the use of cross-component prediction
217  Bool      m_reconBasedCrossCPredictionEstimate;             ///< causes the alpha calculation in encoder search to be based on the decoded residual rather than the pre-transform encoder-side residual
218#if NH_MV
219  UInt      m_log2SaoOffsetScale[MAX_NUM_LAYERS][MAX_NUM_CHANNEL_TYPE];        ///< number of bits for the upward bit shift operation on the decoded SAO offsets
220#else
221  UInt      m_log2SaoOffsetScale[MAX_NUM_CHANNEL_TYPE];       ///< number of bits for the upward bit shift operation on the decoded SAO offsets
222#endif
[608]223  Bool      m_useTransformSkip;                               ///< flag for enabling intra transform skipping
224  Bool      m_useTransformSkipFast;                           ///< flag for enabling fast intra transform skipping
[1313]225  UInt      m_log2MaxTransformSkipBlockSize;                  ///< transform-skip maximum size (minimum of 2)
226  Bool      m_transformSkipRotationEnabledFlag;               ///< control flag for transform-skip/transquant-bypass residual rotation
227  Bool      m_transformSkipContextEnabledFlag;                ///< control flag for transform-skip/transquant-bypass single significance map context
228  Bool      m_rdpcmEnabledFlag[NUMBER_OF_RDPCM_SIGNALLING_MODES];///< control flags for residual DPCM
[56]229  Bool      m_enableAMP;
[1313]230  Bool      m_persistentRiceAdaptationEnabledFlag;            ///< control flag for Golomb-Rice parameter adaptation over each slice
231  Bool      m_cabacBypassAlignmentEnabledFlag;
232
[2]233  // coding quality
[1313]234#if NH_MV
[608]235  std::vector<Double>  m_fQP;                                 ///< QP value of key-picture (floating point) for each layer
236  std::vector<Int>     m_iQP;                                 ///< QP value of key-picture (integer) for each layer
237#else
238  Double    m_fQP;                                            ///< QP value of key-picture (floating point)
239  Int       m_iQP;                                            ///< QP value of key-picture (integer)
[210]240#endif
[1386]241  std::string m_dQPFileName;                                  ///< QP offset for each slice (initialized from external file)
[1313]242#if NH_MV
[608]243  std::vector<Int*> m_aidQP;                                    ///< array of slice QP values for each layer
244#else
[2]245  Int*      m_aidQP;                                          ///< array of slice QP values
[608]246#endif
[2]247  Int       m_iMaxDeltaQP;                                    ///< max. |delta QP|
248  UInt      m_uiDeltaQpRD;                                    ///< dQP range for multi-pass slice QP optimization
[56]249  Int       m_iMaxCuDQPDepth;                                 ///< Max. depth for a minimum CuDQPSize (0:default)
[1313]250  Int       m_diffCuChromaQpOffsetDepth;                      ///< If negative, then do not apply chroma qp offsets.
251  Bool      m_bFastDeltaQP;                                   ///< Fast Delta QP (false:default)
[5]252
[1313]253  Int       m_cbQpOffset;                                     ///< Chroma Cb QP Offset (0:default)
[608]254  Int       m_crQpOffset;                                     ///< Chroma Cr QP Offset (0:default)
[56]255
256#if ADAPTIVE_QP_SELECTION
257  Bool      m_bUseAdaptQpSelect;
258#endif
[1313]259  TComSEIMasteringDisplay m_masteringDisplay;
[1386]260#if NH_MV
[1356]261  std::vector<char*>     m_seiCfgFileNames;               ///< SEI message files.
262  SEIMessages            m_seiMessages;                       ///< Buffer for SEI messages.
263#endif
[56]264
265  Bool      m_bUseAdaptiveQP;                                 ///< Flag for enabling QP adaptation based on a psycho-visual model
266  Int       m_iQPAdaptationRange;                             ///< dQP range by QP adaptation
[1313]267
268#if NH_MV
[608]269  Int       m_maxTempLayerMvc[MAX_NUM_LAYER_IDS];             ///< Max temporal layer for each layer
270#else
271  Int       m_maxTempLayer;                                  ///< Max temporal layer
272#endif
[56]273
[2]274  // coding unit (CU) definition
[1313]275  // TODO: Remove MaxCUWidth/MaxCUHeight and replace with MaxCUSize.
[2]276  UInt      m_uiMaxCUWidth;                                   ///< max. CU width in pixel
277  UInt      m_uiMaxCUHeight;                                  ///< max. CU height in pixel
[1313]278  UInt      m_uiMaxCUDepth;                                   ///< max. CU depth (as specified by command line)
279  UInt      m_uiMaxTotalCUDepth;                              ///< max. total CU depth - includes depth of transform-block structure
280  UInt      m_uiLog2DiffMaxMinCodingBlockSize;                ///< difference between largest and smallest CU depth
281
[2]282  // transfom unit (TU) definition
283  UInt      m_uiQuadtreeTULog2MaxSize;
284  UInt      m_uiQuadtreeTULog2MinSize;
[1313]285
[2]286  UInt      m_uiQuadtreeTUMaxDepthInter;
287  UInt      m_uiQuadtreeTUMaxDepthIntra;
[1313]288
[2]289  // coding tools (bit-depth)
[1313]290  Int       m_inputBitDepth   [MAX_NUM_CHANNEL_TYPE];         ///< bit-depth of input file
291  Int       m_outputBitDepth  [MAX_NUM_CHANNEL_TYPE];         ///< bit-depth of output file
292  Int       m_MSBExtendedBitDepth[MAX_NUM_CHANNEL_TYPE];      ///< bit-depth of input samples after MSB extension
293  Int       m_internalBitDepth[MAX_NUM_CHANNEL_TYPE];         ///< bit-depth codec operates at (input/output files will be converted)
294  Bool      m_extendedPrecisionProcessingFlag;
295  Bool      m_highPrecisionOffsetsEnabledFlag;
[5]296
[1313]297  //coding tools (chroma format)
298  ChromaFormat m_chromaFormatIDC;
299
[56]300  // coding tools (PCM bit-depth)
301  Bool      m_bPCMInputBitDepthFlag;                          ///< 0: PCM bit-depth is internal bit-depth. 1: PCM bit-depth is input bit-depth.
302
[872]303  // coding tool (SAO)
[1313]304#if NH_MV
[608]305  std::vector<Bool> m_bUseSAO; 
[296]306#else
[1313]307  Bool      m_bUseSAO;
[189]308#endif
[1313]309  Bool      m_bTestSAODisableAtPictureLevel;
310  Double    m_saoEncodingRate;                                ///< When >0 SAO early picture termination is enabled for luma and chroma
311  Double    m_saoEncodingRateChroma;                          ///< The SAO early picture termination rate to use for chroma (when m_SaoEncodingRate is >0). If <=0, use results for luma.
[56]312  Int       m_maxNumOffsetsPerPic;                            ///< SAO maximun number of offset per picture
[1313]313  Bool      m_saoCtuBoundary;                                 ///< SAO parameter estimation using non-deblocked pixels for CTU bottom and right boundary areas
[608]314  // coding tools (loop filter)
[1313]315#if NH_MV
[608]316  std::vector<Bool> m_bLoopFilterDisable;                     ///< flag for using deblocking filter for each layer
[443]317#else
[608]318  Bool      m_bLoopFilterDisable;                             ///< flag for using deblocking filter
[443]319#endif
[608]320  Bool      m_loopFilterOffsetInPPS;                         ///< offset for deblocking filter in 0 = slice header, 1 = PPS
[56]321  Int       m_loopFilterBetaOffsetDiv2;                     ///< beta offset for deblocking filter
322  Int       m_loopFilterTcOffsetDiv2;                       ///< tc offset for deblocking filter
[608]323  Bool      m_DeblockingFilterMetric;                         ///< blockiness metric in encoder
[1313]324
[56]325  // coding tools (PCM)
326  Bool      m_usePCM;                                         ///< flag for using IPCM
327  UInt      m_pcmLog2MaxSize;                                 ///< log2 of maximum PCM block size
328  UInt      m_uiPCMLog2MinSize;                               ///< log2 of minimum PCM block size
329  Bool      m_bPCMFilterDisableFlag;                          ///< PCM filter disable flag
[1313]330  Bool      m_enableIntraReferenceSmoothing;                  ///< flag for enabling(default)/disabling intra reference smoothing/filtering
[5]331
[2]332  // coding tools (encoder-only parameters)
333  Bool      m_bUseASR;                                        ///< flag for using adaptive motion search range
334  Bool      m_bUseHADME;                                      ///< flag for using HAD in sub-pel ME
[608]335  Bool      m_useRDOQ;                                       ///< flag for using RD optimized quantization
336  Bool      m_useRDOQTS;                                     ///< flag for using RD optimized quantization for transform skip
[1313]337#if T0196_SELECTIVE_RDOQ
338  Bool      m_useSelectiveRDOQ;                               ///< flag for using selective RDOQ
339#endif
340  Int       m_rdPenalty;                                      ///< RD-penalty for 32x32 TU for intra in non-intra slices (0: no RD-penalty, 1: RD-penalty, 2: maximum RD-penalty)
341  Bool      m_bDisableIntraPUsInInterSlices;                  ///< Flag for disabling intra predicted PUs in inter slices.
[1386]342  MESearchMethod m_motionEstimationSearchMethod;
343  Bool      m_bRestrictMESampling;                            ///< Restrict sampling for the Selective ME
[2]344  Int       m_iSearchRange;                                   ///< ME search range
345  Int       m_bipredSearchRange;                              ///< ME search range for bipred refinement
[1386]346  Int       m_minSearchWindow;                                ///< ME minimum search window size for the Adaptive Window ME
[1313]347  Bool      m_bClipForBiPredMeEnabled;                        ///< Enables clipping for Bi-Pred ME.
348  Bool      m_bFastMEAssumingSmootherMVEnabled;               ///< Enables fast ME assuming a smoother MV.
349#if NH_MV
[1179]350  Bool      m_bUseDisparitySearchRangeRestriction;            ///< restrict vertical search range for inter-view prediction
351  Int       m_iVerticalDisparitySearchRange;                  ///< ME vertical search range for inter-view prediction
352#endif
[1386]353  FastInterSearchMode m_fastInterSearchMode;                  ///< Parameter that controls fast encoder settings
[56]354  Bool      m_bUseEarlyCU;                                    ///< flag for using Early CU setting
[1313]355  Bool      m_useFastDecisionForMerge;                        ///< flag for using Fast Decision Merge RD-Cost
[608]356  Bool      m_bUseCbfFastMode;                              ///< flag for using Cbf Fast PU Mode Decision
357  Bool      m_useEarlySkipDetection;                         ///< flag for using Early SKIP Detection
[1386]358  SliceConstraint m_sliceMode;
[608]359  Int       m_sliceArgument;                                 ///< argument according to selected slice mode
[1386]360  SliceConstraint m_sliceSegmentMode;
[608]361  Int       m_sliceSegmentArgument;                          ///< argument according to selected slice segment mode
[2]362
[608]363  Bool      m_bLFCrossSliceBoundaryFlag;  ///< 1: filter across slice boundaries 0: do not filter across slice boundaries
364  Bool      m_bLFCrossTileBoundaryFlag;   ///< 1: filter across tile boundaries  0: do not filter across tile boundaries
[1084]365  Bool      m_tileUniformSpacingFlag;
366  Int       m_numTileColumnsMinus1;
367  Int       m_numTileRowsMinus1;
368  std::vector<Int> m_tileColumnWidth;
369  std::vector<Int> m_tileRowHeight;
[1386]370  Bool      m_entropyCodingSyncEnabledFlag;
[56]371
372  Bool      m_bUseConstrainedIntraPred;                       ///< flag for using constrained intra prediction
[1313]373  Bool      m_bFastUDIUseMPMEnabled;
374  Bool      m_bFastMEForGenBLowDelayEnabled;
375  Bool      m_bUseBLambdaForNonKeyLowDelayPictures;
376
[1386]377  HashType  m_decodedPictureHashSEIType;                      ///< Checksum mode for decoded picture hash SEI message
378  Bool      m_recoveryPointSEIEnabled;
379  Bool      m_bufferingPeriodSEIEnabled;
380  Bool      m_pictureTimingSEIEnabled;
[608]381  Bool      m_toneMappingInfoSEIEnabled;
[1386]382  Bool      m_chromaResamplingFilterSEIenabled;
383  Int       m_chromaResamplingHorFilterIdc;
384  Int       m_chromaResamplingVerFilterIdc;
[608]385  Int       m_toneMapId;
386  Bool      m_toneMapCancelFlag;
387  Bool      m_toneMapPersistenceFlag;
388  Int       m_toneMapCodedDataBitDepth;
389  Int       m_toneMapTargetBitDepth;
[1313]390  Int       m_toneMapModelId;
[608]391  Int       m_toneMapMinValue;
392  Int       m_toneMapMaxValue;
393  Int       m_sigmoidMidpoint;
394  Int       m_sigmoidWidth;
395  Int       m_numPivots;
396  Int       m_cameraIsoSpeedIdc;
397  Int       m_cameraIsoSpeedValue;
[964]398  Int       m_exposureIndexIdc;
399  Int       m_exposureIndexValue;
[1313]400  Bool      m_exposureCompensationValueSignFlag;
[608]401  Int       m_exposureCompensationValueNumerator;
402  Int       m_exposureCompensationValueDenomIdc;
403  Int       m_refScreenLuminanceWhite;
404  Int       m_extendedRangeWhiteLevel;
405  Int       m_nominalBlackLevelLumaCodeValue;
406  Int       m_nominalWhiteLevelLumaCodeValue;
407  Int       m_extendedWhiteLevelLumaCodeValue;
408  Int*      m_startOfCodedInterval;
409  Int*      m_codedPivotValue;
410  Int*      m_targetPivotValue;
[1386]411  Bool      m_framePackingSEIEnabled;
[608]412  Int       m_framePackingSEIType;
413  Int       m_framePackingSEIId;
414  Int       m_framePackingSEIQuincunx;
415  Int       m_framePackingSEIInterpretation;
[1386]416  Bool      m_segmentedRectFramePackingSEIEnabled;
[1313]417  Bool      m_segmentedRectFramePackingSEICancel;
418  Int       m_segmentedRectFramePackingSEIType;
419  Bool      m_segmentedRectFramePackingSEIPersistence;
[608]420  Int       m_displayOrientationSEIAngle;
[1386]421  Bool      m_temporalLevel0IndexSEIEnabled;
422  Bool      m_gradualDecodingRefreshInfoEnabled;
[1313]423  Int       m_noDisplaySEITLayer;
[1386]424  Bool      m_decodingUnitInfoSEIEnabled;
425  Bool      m_SOPDescriptionSEIEnabled;
426  Bool      m_scalableNestingSEIEnabled;
[1313]427  Bool      m_tmctsSEIEnabled;
428  Bool      m_timeCodeSEIEnabled;
429  Int       m_timeCodeSEINumTs;
430  TComSEITimeSet m_timeSetArray[MAX_TIMECODE_SEI_SETS];
431  Bool      m_kneeSEIEnabled;
432  Int       m_kneeSEIId;
433  Bool      m_kneeSEICancelFlag;
434  Bool      m_kneeSEIPersistenceFlag;
435  Int       m_kneeSEIInputDrange;
436  Int       m_kneeSEIInputDispLuminance;
437  Int       m_kneeSEIOutputDrange;
438  Int       m_kneeSEIOutputDispLuminance;
439  Int       m_kneeSEINumKneePointsMinus1;
440  Int*      m_kneeSEIInputKneePoint;
441  Int*      m_kneeSEIOutputKneePoint;
[56]442  // weighted prediction
[608]443  Bool      m_useWeightedPred;                    ///< Use of weighted prediction in P slices
444  Bool      m_useWeightedBiPred;                  ///< Use of bi-directional weighted prediction in B slices
[1386]445  WeightedPredictionMethod m_weightedPredictionMethod;
[1313]446
[608]447  UInt      m_log2ParallelMergeLevel;                         ///< Parallel merge estimation region
448  UInt      m_maxNumMergeCand;                                ///< Max number of merge candidates
[56]449
[608]450  Int       m_TMVPModeId;
[1313]451  Bool      m_signHideFlag;
[608]452  Bool      m_RCEnableRateControl;                ///< enable rate control or not
453  Int       m_RCTargetBitrate;                    ///< target bitrate when rate control is enabled
454  Int       m_RCKeepHierarchicalBit;              ///< 0: equal bit allocation; 1: fixed ratio bit allocation; 2: adaptive ratio bit allocation
[1313]455  Bool      m_RCLCULevelRC;                       ///< true: LCU level rate control; false: picture level rate control NOTE: code-tidy - rename to m_RCCtuLevelRC
456  Bool      m_RCUseLCUSeparateModel;              ///< use separate R-lambda model at LCU level                        NOTE: code-tidy - rename to m_RCUseCtuSeparateModel
[608]457  Int       m_RCInitialQP;                        ///< inital QP for rate control
458  Bool      m_RCForceIntraQP;                     ///< force all intra picture to use initial QP or not
[1386]459
460#if U0132_TARGET_BITS_SATURATION
461  Bool      m_RCCpbSaturationEnabled;             ///< enable target bits saturation to avoid CPB overflow and underflow
462  UInt      m_RCCpbSize;                          ///< CPB size
463  Double    m_RCInitialCpbFullness;               ///< initial CPB fullness
464#endif
465
[655]466#if KWU_RC_VIEWRC_E0227
467  vector<Int>     m_viewTargetBits;
468  Bool      m_viewWiseRateCtrl;                              ///< Flag for using view-wise rate control
469#endif
470#if KWU_RC_MADPRED_E0227
471  UInt       m_depthMADPred;
472#endif
[1313]473
[1386]474  ScalingListMode m_useScalingListId;                         ///< using quantization matrix
475  std::string m_scalingListFileName;                          ///< quantization matrix file name
[56]476
[608]477  Bool      m_TransquantBypassEnableFlag;                     ///< transquant_bypass_enable_flag setting in PPS.
[872]478  Bool      m_CUTransquantBypassFlagForce;                    ///< if transquant_bypass_enable_flag, then, if true, all CU transquant bypass flags will be set to true.
[1313]479  CostMode  m_costMode;                                       ///< Cost mode to use
[608]480
481  Bool      m_recalculateQPAccordingToLambda;                 ///< recalculate QP value according to the lambda value
482  Bool      m_useStrongIntraSmoothing;                        ///< enable strong intra smoothing for 32x32 blocks where the reference samples are flat
483  Int       m_activeParameterSetsSEIEnabled;
484
485  Bool      m_vuiParametersPresentFlag;                       ///< enable generation of VUI parameters
486  Bool      m_aspectRatioInfoPresentFlag;                     ///< Signals whether aspect_ratio_idc is present
487  Int       m_aspectRatioIdc;                                 ///< aspect_ratio_idc
488  Int       m_sarWidth;                                       ///< horizontal size of the sample aspect ratio
489  Int       m_sarHeight;                                      ///< vertical size of the sample aspect ratio
490  Bool      m_overscanInfoPresentFlag;                        ///< Signals whether overscan_appropriate_flag is present
491  Bool      m_overscanAppropriateFlag;                        ///< Indicates whether conformant decoded pictures are suitable for display using overscan
492  Bool      m_videoSignalTypePresentFlag;                     ///< Signals whether video_format, video_full_range_flag, and colour_description_present_flag are present
493  Int       m_videoFormat;                                    ///< Indicates representation of pictures
494  Bool      m_videoFullRangeFlag;                             ///< Indicates the black level and range of luma and chroma signals
495  Bool      m_colourDescriptionPresentFlag;                   ///< Signals whether colour_primaries, transfer_characteristics and matrix_coefficients are present
496  Int       m_colourPrimaries;                                ///< Indicates chromaticity coordinates of the source primaries
497  Int       m_transferCharacteristics;                        ///< Indicates the opto-electronic transfer characteristics of the source
498  Int       m_matrixCoefficients;                             ///< Describes the matrix coefficients used in deriving luma and chroma from RGB primaries
499  Bool      m_chromaLocInfoPresentFlag;                       ///< Signals whether chroma_sample_loc_type_top_field and chroma_sample_loc_type_bottom_field are present
500  Int       m_chromaSampleLocTypeTopField;                    ///< Specifies the location of chroma samples for top field
501  Int       m_chromaSampleLocTypeBottomField;                 ///< Specifies the location of chroma samples for bottom field
502  Bool      m_neutralChromaIndicationFlag;                    ///< Indicates that the value of all decoded chroma samples is equal to 1<<(BitDepthCr-1)
503  Bool      m_defaultDisplayWindowFlag;                       ///< Indicates the presence of the default window parameters
504  Int       m_defDispWinLeftOffset;                           ///< Specifies the left offset from the conformance window of the default window
505  Int       m_defDispWinRightOffset;                          ///< Specifies the right offset from the conformance window of the default window
506  Int       m_defDispWinTopOffset;                            ///< Specifies the top offset from the conformance window of the default window
507  Int       m_defDispWinBottomOffset;                         ///< Specifies the bottom offset from the conformance window of the default window
508  Bool      m_frameFieldInfoPresentFlag;                      ///< Indicates that pic_struct values are present in picture timing SEI messages
509  Bool      m_pocProportionalToTimingFlag;                    ///< Indicates that the POC value is proportional to the output time w.r.t. first picture in CVS
510  Int       m_numTicksPocDiffOneMinus1;                       ///< Number of ticks minus 1 that for a POC difference of one
511  Bool      m_bitstreamRestrictionFlag;                       ///< Signals whether bitstream restriction parameters are present
512  Bool      m_tilesFixedStructureFlag;                        ///< Indicates that each active picture parameter set has the same values of the syntax elements related to tiles
513  Bool      m_motionVectorsOverPicBoundariesFlag;             ///< Indicates that no samples outside the picture boundaries are used for inter prediction
514  Int       m_minSpatialSegmentationIdc;                      ///< Indicates the maximum size of the spatial segments in the pictures in the coded video sequence
515  Int       m_maxBytesPerPicDenom;                            ///< Indicates a number of bytes not exceeded by the sum of the sizes of the VCL NAL units associated with any coded picture
516  Int       m_maxBitsPerMinCuDenom;                           ///< Indicates an upper bound for the number of bits of coding_unit() data
517  Int       m_log2MaxMvLengthHorizontal;                      ///< Indicate the maximum absolute value of a decoded horizontal MV component in quarter-pel luma units
518  Int       m_log2MaxMvLengthVertical;                        ///< Indicate the maximum absolute value of a decoded vertical MV component in quarter-pel luma units
[1386]519  std::string m_colourRemapSEIFileRoot;
520
[1313]521  std::string m_summaryOutFilename;                           ///< filename to use for producing summary output file.
522  std::string m_summaryPicFilenameBase;                       ///< Base filename to use for producing summary picture output files. The actual filenames used will have I.txt, P.txt and B.txt appended.
523  UInt        m_summaryVerboseness;                           ///< Specifies the level of the verboseness of the text output.
524#if NH_MV
[1066]525  Bool              m_outputVpsInfo;
[1386]526  TChar*            m_pchBaseViewCameraNumbers;
[872]527#endif
[1386]528
[1313]529#if NH_3D
530  // Output Format
531  Bool      m_depth420OutputFlag;                             ///< Output depth layers in 4:2:0 format
[1386]532#endif
533    // Camera parameters
[1396]534#if NH_3D || NH_3D_VSO
[1386]535  TChar*    m_pchCameraParameterFile;                         ///< camera parameter file
[5]536  TAppComCamPara m_cCameraData;
[2]537  Int       m_iCodedCamParPrecision;                          ///< precision for coding of camera parameters
[1396]538#endif
539#if NH_3D_VSO
[1386]540  TChar*    m_pchVSOConfig;
[1313]541  Bool      m_bUseVSO;                                        ///< flag for using View Synthesis Optimization
542  Bool      m_bVSOLSTable;                                    ///< Depth QP dependent Lagrange parameter optimization (m23714)
543  Bool      m_bVSOEarlySkip;                                  ///< Early skip of VSO computation (JCT3V-A0093 modification 4)
544                                                             
545  //// Used for development by GT, might be removed later     
546  Double    m_dLambdaScaleVSO;                                ///< Scaling factor for Lambda in VSO mode
547  Bool      m_bForceLambdaScaleVSO;                           ///< Use Lambda Scale for depth even if VSO is turned off
548  Bool      m_bAllowNegDist;                                  ///< Allow negative distortion in VSO
549  UInt      m_uiVSOMode;                                      ///< Number of VSO Mode, 1 = , 2 = simple, org vs. ren, 3 = simple, ren vs. ren, 4 = full 
550                                                             
551  // SAIT_VSO_EST_A0033                                       
552  Bool      m_bUseEstimatedVSD;                               ///< Flag for using model based VSD estimation instead of VSO for some encoder decisions (JCT3V-A0033 modification 3) 
553                                                             
554  // LGE_WVSO_A0119                                           
555  Bool      m_bUseWVSO;                                       ///< flag for using View Synthesis Optimization 
[116]556  Int       m_iVSOWeight;
[115]557  Int       m_iVSDWeight;
[116]558  Int       m_iDWeight;
[608]559
560  // Ren Model String
561  TRenModSetupStrParser       m_cRenModStrParser;
[115]562#endif
[1386]563#if NH_3D
[1313]564  Bool       m_useDLT;                                        ///< flag for using DLT
[1386]565#endif
566#if NH_3D_QTL
[1313]567  Bool       m_bUseQTL;                                        ///< flag for using depth QuadTree Limitation
[1386]568#endif
569#if NH_3D
[1313]570  BoolAry1d  m_ivMvPredFlag;
571  BoolAry1d  m_ivMvScalingFlag;
572  Int        m_log2SubPbSizeMinus3;
573  Bool       m_ivResPredFlag;
574  Bool       m_depthRefinementFlag;
575  Bool       m_viewSynthesisPredFlag;
576  Bool       m_depthBasedBlkPartFlag;
577  Bool       m_mpiFlag;
578  Int        m_log2MpiSubPbSizeMinus3;
579  Bool       m_intraContourFlag;
580  Bool       m_intraWedgeFlag;
581  Bool       m_intraSdcFlag;
582  Bool       m_qtPredFlag;
583  Bool       m_interSdcFlag;
584  Bool       m_depthIntraSkipFlag; 
[1124]585#endif
[2]586  // internal member functions
587  Void  xCheckParameter ();                                   ///< check validity of configuration values
588  Void  xPrintParameter ();                                   ///< print configuration values
589  Void  xPrintUsage     ();                                   ///< print usage
[1313]590#if NH_MV
[1066]591
592  template<typename T>
593  Void xReadStrToEnum(string in, std::vector<T> &val)
594  {
595    val.clear(); 
596
597    char* cElement = NULL;
598    char* cString = new char[in.size()+1];
599    strcpy(cString, in.c_str());
600
601    cElement = strtok( cString, " " );
602    while ( cElement != NULL )
603    {
604      T profile;       
605      std::istringstream ss( cElement ); 
606      ss >> profile; 
607      val.push_back( profile ); 
608      cElement = strtok( NULL, " " );
609    }
610    delete[] cString;
611  }
612
613
[608]614  template <typename T>
615  Void xResizeVector(  std::vector<T> & rpcVector )
616  {
617    for( Int layer = 0; rpcVector.size() < m_numberOfLayers; layer++ )
618    {
619      assert( rpcVector.size() > 0 );
620      rpcVector.push_back( rpcVector[layer] );     
621    }
[2]622
[608]623    for( ; rpcVector.size() > m_numberOfLayers; )
624    {     
625      rpcVector.pop_back( );     
626    }
627  }
[2]628
[608]629  template <typename T>
[1313]630  Void xResizeVector(  std::vector<T> & rpcVector, UInt n )
631  {
632    for( Int layer = 0; rpcVector.size() < n; layer++ )
633    {
634      assert( rpcVector.size() > 0 );
635      rpcVector.push_back( rpcVector[layer] );     
636    }
637
638    for( ; rpcVector.size() > n; )
639    {     
640      rpcVector.pop_back( );     
641    }
642  }
643
644
645  template <typename T>
[608]646  Void xPrintParaVector( std::string description, std::vector<T> & rpcVector )
647  {
648    Int iSpace = max(1, ENC_CFG_CONSOUT_SPACE - (Int) description.length() ); 
649   
[1196]650    for ( Int i = 0; i < iSpace; i++ )
651    {
[608]652      description.append( " " ); 
[1196]653    }
[608]654     
655    description.append( ":" ); 
656    printf( "%s", description.c_str() ); 
[2]657
[1196]658    for(Int i=0;i<rpcVector.size();i++)
659    {
[608]660      xPrintVectorElem( rpcVector[i] );
[1196]661    }
[2]662
[608]663    printf("\n");
664  }
665 
666  Void xPrintVectorElem( UInt   elem ) { printf(" %d"   , elem            );};
667  Void xPrintVectorElem( Int    elem ) { printf(" %d"   , elem            );};
668 
669  Void xPrintVectorElem( Double elem ) { printf(" %5.2f", elem            );}; 
670  Void xPrintVectorElem( Bool   elem ) { printf(" %d"   , ( elem ? 1 : 0 ));};
[1356]671  Void xParseSeiCfg();
[1386]672
[608]673  Int   getGOPSize() { return m_iGOPSize; }
674#endif
[2]675public:
676  TAppEncCfg();
677  virtual ~TAppEncCfg();
[1313]678
[2]679public:
680  Void  create    ();                                         ///< create option handling class
681  Void  destroy   ();                                         ///< destroy option handling class
[1386]682  Bool  parseCfg  ( Int argc, TChar* argv[] );                ///< parse configuration file to fill member variables
[1313]683
[2]684};// END CLASS DEFINITION TAppEncCfg
685
[56]686//! \}
687
[2]688#endif // __TAPPENCCFG__
689
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