source: 3DVCSoftware/branches/HTM-11.2-dev3-MediaTek/source/App/TAppEncoder/TAppEncCfg.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: 31.3 KB
Line 
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33
34/** \file     TAppEncCfg.h
35    \brief    Handle encoder configuration parameters (header)
36*/
37
38#ifndef __TAPPENCCFG__
39#define __TAPPENCCFG__
40
41#include "TLibCommon/CommonDef.h"
42
43#include "TLibEncoder/TEncCfg.h"
44#include <sstream>
45#if H_3D
46#include "TAppCommon/TAppComCamPara.h"
47#include "TLibRenderer/TRenModel.h"
48#include "TLibRenderer/TRenModSetupStrParser.h"
49#endif
50//! \ingroup TAppEncoder
51//! \{
52
53// ====================================================================================================================
54// Class definition
55// ====================================================================================================================
56
57/// encoder configuration class
58class TAppEncCfg
59{
60protected:
61  // file I/O
62#if H_MV
63  std::vector<char*>     m_pchInputFileList;                  ///< source file names
64#else
65  Char*     m_pchInputFile;                                   ///< source file name
66#endif
67  Char*     m_pchBitstreamFile;                               ///< output bitstream file
68#if H_MV
69  std::vector<char*>     m_pchReconFileList;                  ///< output reconstruction file names
70  Int                    m_numberOfLayers;                    ///< number of Layers to Encode
71  Int                    m_iNumberOfViews;                    ///< number of Layers that are views
72#else
73  Char*     m_pchReconFile;                                   ///< output reconstruction file
74#endif
75  #if H_MV
76// VPS specification
77  std::vector< std::vector<Int> > m_dimIds;                   ///< dimension ids ( pointers to m_viewId and m_depthFlag
78  std::vector<Int>       m_viewId;                            ///< view id
79  std::vector<Int>       m_viewOrderIndex;                    ///< view order index 
80#if H_3D
81  std::vector<Int>       m_depthFlag;                         ///< depth flag
82#endif
83  std::vector<Int>       m_layerIdInNuh;                      ///< layer Id in Nuh for each layer
84  Bool                   m_splittingFlag;                     ///< Splitting Flag
85  Int                    m_scalabilityMask;                   ///< Mask indicating scalabilities, 1: texture; 3: texture + depth                                                               
86  std::vector<Int>       m_dimensionIdLen;                    ///< Length of scalability dimension s
87 
88// layer sets   
89  Int                    m_vpsNumLayerSets;                   ///< Number of layer sets
90  std::vector< std::vector<Int> > m_layerIdsInSets;           ///< LayerIds in vps of layer set
91  Int                    m_defaultOutputLayerIdc;       ///< Specifies output layers of layer sets, 0: output all layers, 1: output highest layers, 2: specified by LayerIdsInDefOuputLayerSet
92  std::vector<Int>       m_outputLayerSetIdx;                 ///< Indices of layer sets used as additional output layer sets 
93  std::vector< std::vector<Int> > m_layerIdsInAddOutputLayerSet; ///< LayerIds in vps of additional output layers
94  std::vector< std::vector<Int> > m_layerIdsInDefOutputLayerSet; ///< Indices in vps of output layers in layer sets
95  std::vector<Int>       m_profileLevelTierIdx;               ///< Indices of of profile level tier
96  std::vector<Bool>      m_altOutputLayerFlag;                ///< Alt output layer flag
97
98  // Dependencies
99  std::vector< std::vector<Int> > m_directRefLayers;          ///< LayerIds of direct reference layers
100  std::vector< std::vector<Int> > m_dependencyTypes;          ///< Dependency types of direct reference layers
101
102  // VPS VUI
103  Bool m_vpsVuiPresentFlag;
104  Bool m_crossLayerPicTypeAlignedFlag;
105  Bool m_crossLayerIrapAlignedFlag;
106  Bool m_allLayersIdrAlignedFlag;
107  Bool m_bitRatePresentVpsFlag;
108  Bool m_picRatePresentVpsFlag;
109  std::vector< std::vector<Bool > > m_bitRatePresentFlag;
110  std::vector< std::vector<Bool > > m_picRatePresentFlag;
111  std::vector< std::vector<Int  > > m_avgBitRate;
112  std::vector< std::vector<Int  > > m_maxBitRate;
113  std::vector< std::vector<Int  > > m_constantPicRateIdc;
114  std::vector< std::vector<Int  > > m_avgPicRate;
115  Bool                              m_tilesNotInUseFlag; 
116  std::vector< Bool >               m_tilesInUseFlag;
117  std::vector< Bool >               m_loopFilterNotAcrossTilesFlag; 
118  Bool                              m_wppNotInUseFlag;
119  std::vector< Bool >               m_wppInUseFlag;
120
121  std::vector< std::vector<Bool > > m_tileBoundariesAlignedFlag; 
122  Bool m_ilpRestrictedRefLayersFlag;
123  std::vector< std::vector<Int  > > m_minSpatialSegmentOffsetPlus1;
124  std::vector< std::vector<Bool > > m_ctuBasedOffsetEnabledFlag;
125  std::vector< std::vector<Int  > > m_minHorizontalCtuOffsetPlus1;
126
127#if H_3D_IV_MERGE
128  vector<Bool>           m_ivMvPredFlag;                      ///< Interview motion vector prediction
129#if H_3D_SPIVMP
130  Int                    m_iSubPULog2Size;                   
131  Int                    m_iSubPUMPILog2Size;                   
132#endif
133#endif
134#if H_3D_ARP                                                  /// < flag and number of weighting factors in ARP
135  UInt                   m_uiUseAdvResPred;
136  UInt                   m_uiARPStepNum;
137#endif
138#if H_3D_IC
139  Bool   m_abUseIC;
140  Bool   m_bUseLowLatencyICEnc;
141#endif
142#if H_3D_NBDV_REF
143  Bool m_depthRefinementFlag; 
144#endif
145#if H_3D_VSP
146  Bool m_viewSynthesisPredFlag;
147#endif
148#if H_3D
149  Bool m_ivMvScalingFlag; 
150#endif
151#endif
152  Double    m_adLambdaModifier[ MAX_TLAYER ];                 ///< Lambda modifier array for each temporal layer
153  // source specification
154  Int       m_iFrameRate;                                     ///< source frame-rates (Hz)
155  UInt      m_FrameSkip;                                      ///< number of skipped frames from the beginning
156  Int       m_iSourceWidth;                                   ///< source width in pixel
157  Int       m_iSourceHeight;                                  ///< source height in pixel (when interlaced = field height)
158 
159  Int       m_iSourceHeightOrg;                               ///< original source height in pixel (when interlaced = frame height)
160 
161  bool      m_isField;                                        ///< enable field coding
162  bool      m_isTopFieldFirst;
163 
164  Int       m_conformanceMode;
165  Int       m_confLeft;
166  Int       m_confRight;
167  Int       m_confTop;
168  Int       m_confBottom;
169  Int       m_framesToBeEncoded;                              ///< number of encoded frames
170  Int       m_aiPad[2];                                       ///< number of padded pixels for width and height
171 
172  // profile/level
173  Profile::Name m_profile;
174  Level::Tier   m_levelTier;
175  Level::Name   m_level;
176  Bool m_progressiveSourceFlag;
177  Bool m_interlacedSourceFlag;
178  Bool m_nonPackedConstraintFlag;
179  Bool m_frameOnlyConstraintFlag;
180 
181  // coding structure
182#if H_MV
183  std::vector<Int> m_iIntraPeriod;                            ///< period of I-slice (random access period)
184#else
185  Int       m_iIntraPeriod;                                   ///< period of I-slice (random access period)
186#endif
187  Int       m_iDecodingRefreshType;                           ///< random access type
188  Int       m_iGOPSize;                                       ///< GOP size of hierarchical structure
189#if H_MV
190  Int       m_extraRPSsMvc[MAX_NUM_LAYERS];                       ///< extra RPSs added to handle CRA for each layer
191  std::vector< GOPEntry* >  m_GOPListMvc;                            ///< the coding structure entries from the config file for each layer
192  Int       m_numReorderPicsMvc[MAX_NUM_LAYERS][MAX_TLAYER];      ///< total number of reorder pictures for each layer
193  Int       m_maxDecPicBufferingMvc[MAX_NUM_LAYERS][MAX_TLAYER];  ///< total number of reference pictures needed for decoding for each layer
194#else
195  Int       m_extraRPSs;                                      ///< extra RPSs added to handle CRA
196  GOPEntry  m_GOPList[MAX_GOP];                               ///< the coding structure entries from the config file
197  Int       m_numReorderPics[MAX_TLAYER];                     ///< total number of reorder pictures
198  Int       m_maxDecPicBuffering[MAX_TLAYER];                 ///< total number of pictures in the decoded picture buffer
199  #endif
200  Bool      m_useTransformSkip;                               ///< flag for enabling intra transform skipping
201  Bool      m_useTransformSkipFast;                           ///< flag for enabling fast intra transform skipping
202  Bool      m_enableAMP;
203  // coding quality
204#if H_MV
205  std::vector<Double>  m_fQP;                                 ///< QP value of key-picture (floating point) for each layer
206  std::vector<Int>     m_iQP;                                 ///< QP value of key-picture (integer) for each layer
207#else
208  Double    m_fQP;                                            ///< QP value of key-picture (floating point)
209  Int       m_iQP;                                            ///< QP value of key-picture (integer)
210#endif
211  Char*     m_pchdQPFile;                                     ///< QP offset for each slice (initialized from external file)
212#if H_MV
213  std::vector<Int*> m_aidQP;                                    ///< array of slice QP values for each layer
214#else
215  Int*      m_aidQP;                                          ///< array of slice QP values
216#endif
217  Int       m_iMaxDeltaQP;                                    ///< max. |delta QP|
218  UInt      m_uiDeltaQpRD;                                    ///< dQP range for multi-pass slice QP optimization
219  Int       m_iMaxCuDQPDepth;                                 ///< Max. depth for a minimum CuDQPSize (0:default)
220
221  Int       m_cbQpOffset;                                     ///< Chroma Cb QP Offset (0:default)
222  Int       m_crQpOffset;                                     ///< Chroma Cr QP Offset (0:default)
223
224#if ADAPTIVE_QP_SELECTION
225  Bool      m_bUseAdaptQpSelect;
226#endif
227
228  Bool      m_bUseAdaptiveQP;                                 ///< Flag for enabling QP adaptation based on a psycho-visual model
229  Int       m_iQPAdaptationRange;                             ///< dQP range by QP adaptation
230 
231#if H_MV
232  Int       m_maxTempLayerMvc[MAX_NUM_LAYER_IDS];             ///< Max temporal layer for each layer
233#else
234  Int       m_maxTempLayer;                                  ///< Max temporal layer
235#endif
236
237  // coding unit (CU) definition
238  UInt      m_uiMaxCUWidth;                                   ///< max. CU width in pixel
239  UInt      m_uiMaxCUHeight;                                  ///< max. CU height in pixel
240  UInt      m_uiMaxCUDepth;                                   ///< max. CU depth
241 
242  // transfom unit (TU) definition
243  UInt      m_uiQuadtreeTULog2MaxSize;
244  UInt      m_uiQuadtreeTULog2MinSize;
245 
246  UInt      m_uiQuadtreeTUMaxDepthInter;
247  UInt      m_uiQuadtreeTUMaxDepthIntra;
248 
249  // coding tools (bit-depth)
250  Int       m_inputBitDepthY;                               ///< bit-depth of input file (luma component)
251  Int       m_inputBitDepthC;                               ///< bit-depth of input file (chroma component)
252  Int       m_outputBitDepthY;                              ///< bit-depth of output file (luma component)
253  Int       m_outputBitDepthC;                              ///< bit-depth of output file (chroma component)
254  Int       m_internalBitDepthY;                            ///< bit-depth codec operates at in luma (input/output files will be converted)
255  Int       m_internalBitDepthC;                            ///< bit-depth codec operates at in chroma (input/output files will be converted)
256
257  // coding tools (PCM bit-depth)
258  Bool      m_bPCMInputBitDepthFlag;                          ///< 0: PCM bit-depth is internal bit-depth. 1: PCM bit-depth is input bit-depth.
259
260  // coding tool (SAO)
261#if H_MV
262  std::vector<Bool> m_bUseSAO; 
263#else
264  Bool      m_bUseSAO; 
265#endif
266  Int       m_maxNumOffsetsPerPic;                            ///< SAO maximun number of offset per picture
267  Bool      m_saoLcuBoundary;                                 ///< SAO parameter estimation using non-deblocked pixels for LCU bottom and right boundary areas
268  // coding tools (loop filter)
269#if H_MV
270  std::vector<Bool> m_bLoopFilterDisable;                     ///< flag for using deblocking filter for each layer
271#else
272  Bool      m_bLoopFilterDisable;                             ///< flag for using deblocking filter
273#endif
274  Bool      m_loopFilterOffsetInPPS;                         ///< offset for deblocking filter in 0 = slice header, 1 = PPS
275  Int       m_loopFilterBetaOffsetDiv2;                     ///< beta offset for deblocking filter
276  Int       m_loopFilterTcOffsetDiv2;                       ///< tc offset for deblocking filter
277  Bool      m_DeblockingFilterControlPresent;                 ///< deblocking filter control present flag in PPS
278  Bool      m_DeblockingFilterMetric;                         ///< blockiness metric in encoder
279 
280  // coding tools (PCM)
281  Bool      m_usePCM;                                         ///< flag for using IPCM
282  UInt      m_pcmLog2MaxSize;                                 ///< log2 of maximum PCM block size
283  UInt      m_uiPCMLog2MinSize;                               ///< log2 of minimum PCM block size
284  Bool      m_bPCMFilterDisableFlag;                          ///< PCM filter disable flag
285
286  // coding tools (encoder-only parameters)
287  Bool      m_bUseASR;                                        ///< flag for using adaptive motion search range
288  Bool      m_bUseHADME;                                      ///< flag for using HAD in sub-pel ME
289  Bool      m_useRDOQ;                                       ///< flag for using RD optimized quantization
290  Bool      m_useRDOQTS;                                     ///< flag for using RD optimized quantization for transform skip
291  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)
292  Int       m_iFastSearch;                                    ///< ME mode, 0 = full, 1 = diamond, 2 = PMVFAST
293  Int       m_iSearchRange;                                   ///< ME search range
294  Int       m_bipredSearchRange;                              ///< ME search range for bipred refinement
295  Bool      m_bUseFastEnc;                                    ///< flag for using fast encoder setting
296  Bool      m_bUseEarlyCU;                                    ///< flag for using Early CU setting
297  Bool      m_useFastDecisionForMerge;                        ///< flag for using Fast Decision Merge RD-Cost
298  Bool      m_bUseCbfFastMode;                              ///< flag for using Cbf Fast PU Mode Decision
299  Bool      m_useEarlySkipDetection;                         ///< flag for using Early SKIP Detection
300  Int       m_sliceMode;                                     ///< 0: no slice limits, 1 : max number of CTBs per slice, 2: max number of bytes per slice,
301                                                             ///< 3: max number of tiles per slice
302  Int       m_sliceArgument;                                 ///< argument according to selected slice mode
303  Int       m_sliceSegmentMode;                              ///< 0: no slice segment limits, 1 : max number of CTBs per slice segment, 2: max number of bytes per slice segment,
304                                                             ///< 3: max number of tiles per slice segment
305  Int       m_sliceSegmentArgument;                          ///< argument according to selected slice segment mode
306
307  Bool      m_bLFCrossSliceBoundaryFlag;  ///< 1: filter across slice boundaries 0: do not filter across slice boundaries
308  Bool      m_bLFCrossTileBoundaryFlag;   ///< 1: filter across tile boundaries  0: do not filter across tile boundaries
309  Int       m_iUniformSpacingIdr;
310  Int       m_iNumColumnsMinus1;
311  Char*     m_pchColumnWidth;
312  Int       m_iNumRowsMinus1;
313  Char*     m_pchRowHeight;
314  UInt*     m_pColumnWidth;
315  UInt*     m_pRowHeight;
316  Int       m_iWaveFrontSynchro; //< 0: no WPP. >= 1: WPP is enabled, the "Top right" from which inheritance occurs is this LCU offset in the line above the current.
317  Int       m_iWaveFrontSubstreams; //< If iWaveFrontSynchro, this is the number of substreams per frame (dependent tiles) or per tile (independent tiles).
318
319  Bool      m_bUseConstrainedIntraPred;                       ///< flag for using constrained intra prediction
320 
321  Int       m_decodedPictureHashSEIEnabled;                    ///< Checksum(3)/CRC(2)/MD5(1)/disable(0) acting on decoded picture hash SEI message
322  Int       m_recoveryPointSEIEnabled;
323  Int       m_bufferingPeriodSEIEnabled;
324  Int       m_pictureTimingSEIEnabled;
325  Bool      m_toneMappingInfoSEIEnabled;
326  Int       m_toneMapId;
327  Bool      m_toneMapCancelFlag;
328  Bool      m_toneMapPersistenceFlag;
329  Int       m_toneMapCodedDataBitDepth;
330  Int       m_toneMapTargetBitDepth;
331  Int       m_toneMapModelId; 
332  Int       m_toneMapMinValue;
333  Int       m_toneMapMaxValue;
334  Int       m_sigmoidMidpoint;
335  Int       m_sigmoidWidth;
336  Int       m_numPivots;
337  Int       m_cameraIsoSpeedIdc;
338  Int       m_cameraIsoSpeedValue;
339  Int       m_exposureIndexIdc;
340  Int       m_exposureIndexValue;
341  Int       m_exposureCompensationValueSignFlag;
342  Int       m_exposureCompensationValueNumerator;
343  Int       m_exposureCompensationValueDenomIdc;
344  Int       m_refScreenLuminanceWhite;
345  Int       m_extendedRangeWhiteLevel;
346  Int       m_nominalBlackLevelLumaCodeValue;
347  Int       m_nominalWhiteLevelLumaCodeValue;
348  Int       m_extendedWhiteLevelLumaCodeValue;
349  Int*      m_startOfCodedInterval;
350  Int*      m_codedPivotValue;
351  Int*      m_targetPivotValue;
352  Int       m_framePackingSEIEnabled;
353  Int       m_framePackingSEIType;
354  Int       m_framePackingSEIId;
355  Int       m_framePackingSEIQuincunx;
356  Int       m_framePackingSEIInterpretation;
357  Int       m_displayOrientationSEIAngle;
358  Int       m_temporalLevel0IndexSEIEnabled;
359  Int       m_gradualDecodingRefreshInfoEnabled;
360  Int       m_decodingUnitInfoSEIEnabled;
361  Int       m_SOPDescriptionSEIEnabled;
362  Int       m_scalableNestingSEIEnabled;
363  // weighted prediction
364  Bool      m_useWeightedPred;                    ///< Use of weighted prediction in P slices
365  Bool      m_useWeightedBiPred;                  ///< Use of bi-directional weighted prediction in B slices
366 
367  UInt      m_log2ParallelMergeLevel;                         ///< Parallel merge estimation region
368  UInt      m_maxNumMergeCand;                                ///< Max number of merge candidates
369
370  Int       m_TMVPModeId;
371  Int       m_signHideFlag;
372  Bool      m_RCEnableRateControl;                ///< enable rate control or not
373  Int       m_RCTargetBitrate;                    ///< target bitrate when rate control is enabled
374  Int       m_RCKeepHierarchicalBit;              ///< 0: equal bit allocation; 1: fixed ratio bit allocation; 2: adaptive ratio bit allocation
375  Bool      m_RCLCULevelRC;                       ///< true: LCU level rate control; false: picture level rate control
376  Bool      m_RCUseLCUSeparateModel;              ///< use separate R-lambda model at LCU level
377  Int       m_RCInitialQP;                        ///< inital QP for rate control
378  Bool      m_RCForceIntraQP;                     ///< force all intra picture to use initial QP or not
379
380#if KWU_RC_VIEWRC_E0227
381  vector<Int>     m_viewTargetBits;
382  Bool      m_viewWiseRateCtrl;                              ///< Flag for using view-wise rate control
383#endif
384#if KWU_RC_MADPRED_E0227
385  UInt       m_depthMADPred;
386#endif
387  Int       m_useScalingListId;                               ///< using quantization matrix
388  Char*     m_scalingListFile;                                ///< quantization matrix file name
389
390  Bool      m_TransquantBypassEnableFlag;                     ///< transquant_bypass_enable_flag setting in PPS.
391  Bool      m_CUTransquantBypassFlagForce;                    ///< if transquant_bypass_enable_flag, then, if true, all CU transquant bypass flags will be set to true.
392
393  Bool      m_recalculateQPAccordingToLambda;                 ///< recalculate QP value according to the lambda value
394  Bool      m_useStrongIntraSmoothing;                        ///< enable strong intra smoothing for 32x32 blocks where the reference samples are flat
395  Int       m_activeParameterSetsSEIEnabled;
396
397  Bool      m_vuiParametersPresentFlag;                       ///< enable generation of VUI parameters
398  Bool      m_aspectRatioInfoPresentFlag;                     ///< Signals whether aspect_ratio_idc is present
399  Int       m_aspectRatioIdc;                                 ///< aspect_ratio_idc
400  Int       m_sarWidth;                                       ///< horizontal size of the sample aspect ratio
401  Int       m_sarHeight;                                      ///< vertical size of the sample aspect ratio
402  Bool      m_overscanInfoPresentFlag;                        ///< Signals whether overscan_appropriate_flag is present
403  Bool      m_overscanAppropriateFlag;                        ///< Indicates whether conformant decoded pictures are suitable for display using overscan
404  Bool      m_videoSignalTypePresentFlag;                     ///< Signals whether video_format, video_full_range_flag, and colour_description_present_flag are present
405  Int       m_videoFormat;                                    ///< Indicates representation of pictures
406  Bool      m_videoFullRangeFlag;                             ///< Indicates the black level and range of luma and chroma signals
407  Bool      m_colourDescriptionPresentFlag;                   ///< Signals whether colour_primaries, transfer_characteristics and matrix_coefficients are present
408  Int       m_colourPrimaries;                                ///< Indicates chromaticity coordinates of the source primaries
409  Int       m_transferCharacteristics;                        ///< Indicates the opto-electronic transfer characteristics of the source
410  Int       m_matrixCoefficients;                             ///< Describes the matrix coefficients used in deriving luma and chroma from RGB primaries
411  Bool      m_chromaLocInfoPresentFlag;                       ///< Signals whether chroma_sample_loc_type_top_field and chroma_sample_loc_type_bottom_field are present
412  Int       m_chromaSampleLocTypeTopField;                    ///< Specifies the location of chroma samples for top field
413  Int       m_chromaSampleLocTypeBottomField;                 ///< Specifies the location of chroma samples for bottom field
414  Bool      m_neutralChromaIndicationFlag;                    ///< Indicates that the value of all decoded chroma samples is equal to 1<<(BitDepthCr-1)
415  Bool      m_defaultDisplayWindowFlag;                       ///< Indicates the presence of the default window parameters
416  Int       m_defDispWinLeftOffset;                           ///< Specifies the left offset from the conformance window of the default window
417  Int       m_defDispWinRightOffset;                          ///< Specifies the right offset from the conformance window of the default window
418  Int       m_defDispWinTopOffset;                            ///< Specifies the top offset from the conformance window of the default window
419  Int       m_defDispWinBottomOffset;                         ///< Specifies the bottom offset from the conformance window of the default window
420  Bool      m_frameFieldInfoPresentFlag;                      ///< Indicates that pic_struct values are present in picture timing SEI messages
421  Bool      m_pocProportionalToTimingFlag;                    ///< Indicates that the POC value is proportional to the output time w.r.t. first picture in CVS
422  Int       m_numTicksPocDiffOneMinus1;                       ///< Number of ticks minus 1 that for a POC difference of one
423  Bool      m_bitstreamRestrictionFlag;                       ///< Signals whether bitstream restriction parameters are present
424  Bool      m_tilesFixedStructureFlag;                        ///< Indicates that each active picture parameter set has the same values of the syntax elements related to tiles
425  Bool      m_motionVectorsOverPicBoundariesFlag;             ///< Indicates that no samples outside the picture boundaries are used for inter prediction
426  Int       m_minSpatialSegmentationIdc;                      ///< Indicates the maximum size of the spatial segments in the pictures in the coded video sequence
427  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
428  Int       m_maxBitsPerMinCuDenom;                           ///< Indicates an upper bound for the number of bits of coding_unit() data
429  Int       m_log2MaxMvLengthHorizontal;                      ///< Indicate the maximum absolute value of a decoded horizontal MV component in quarter-pel luma units
430  Int       m_log2MaxMvLengthVertical;                        ///< Indicate the maximum absolute value of a decoded vertical MV component in quarter-pel luma units
431#if H_MV
432  Bool              m_subBistreamPropSEIEnabled;
433  Int               m_sbPropNumAdditionalSubStreams;
434  std::vector<Int>  m_sbPropSubBitstreamMode;
435  std::vector<Int>  m_sbPropOutputLayerSetIdxToVps;
436  std::vector<Int>  m_sbPropHighestSublayerId;
437  std::vector<Int>  m_sbPropAvgBitRate;
438  std::vector<Int>  m_sbPropMaxBitRate;
439#endif
440#if H_3D
441  // Camera parameters
442  Char*     m_pchCameraParameterFile;                         ///< camera parameter file
443  Char*     m_pchBaseViewCameraNumbers;
444  TAppComCamPara m_cCameraData;
445  Int       m_iCodedCamParPrecision;                          ///< precision for coding of camera parameters
446#if H_3D_VSO
447  Char*     m_pchVSOConfig;
448  Bool      m_bUseVSO;                                    ///< flag for using View Synthesis Optimization
449  Bool      m_bVSOLSTable;                                ///< Depth QP dependent Lagrange parameter optimization (m23714)
450  Bool      m_bVSOEarlySkip;                              ///< Early skip of VSO computation (JCT3V-A0093 modification 4)
451
452  //// Used for development by GT, might be removed later
453  Double    m_dLambdaScaleVSO;                            ///< Scaling factor for Lambda in VSO mode
454  Bool      m_bForceLambdaScaleVSO;                       ///< Use Lambda Scale for depth even if VSO is turned off
455  Bool      m_bAllowNegDist;                              ///< Allow negative distortion in VSO
456  UInt      m_uiVSOMode;                                  ///< Number of VSO Mode, 1 = , 2 = simple, org vs. ren, 3 = simple, ren vs. ren, 4 = full 
457
458  // SAIT_VSO_EST_A0033
459  Bool      m_bUseEstimatedVSD;                           ///< Flag for using model based VSD estimation instead of VSO for some encoder decisions (JCT3V-A0033 modification 3) 
460
461  // LGE_WVSO_A0119
462  Bool      m_bUseWVSO;                                    ///< flag for using View Synthesis Optimization 
463  Int       m_iVSOWeight;
464  Int       m_iVSDWeight;
465  Int       m_iDWeight;
466
467  // Ren Model String
468  TRenModSetupStrParser       m_cRenModStrParser;
469#endif
470#if H_3D_DIM
471  Bool      m_useDMM;                                        ///< flag for using DMM
472  Bool      m_useSDC;                                        ///< flag for using SDC
473  Bool      m_useDLT;                                        ///< flag for using DLT
474#endif
475#if MTK_SINGLE_DEPTH_MODE_I0095
476  Bool     m_useSingleDepthMode;                          ///< flag for using single depth mode
477#endif
478#if H_3D_QTLPC
479  Bool      m_bUseQTL;                                        ///< flag for using depth QuadTree Limitation
480  Bool      m_bUsePC;                                         ///< flag for using Predictive Coding with QTL
481#endif
482#if H_3D_INTER_SDC
483  Bool m_bDepthInterSDCFlag;                                ///< flag for inter SDC of depth map coding
484#endif
485#if H_3D_DBBP
486  Bool      m_bUseDBBP;                                     ///< flag for depth-based block partitioning
487#endif
488#if H_3D_IV_MERGE
489  Bool m_bMPIFlag;                                           ///< flag for MPI of depth map coding
490#endif
491#endif
492  // internal member functions
493  Void  xSetGlobal      ();                                   ///< set global variables
494  Void  xCheckParameter ();                                   ///< check validity of configuration values
495  Void  xPrintParameter ();                                   ///< print configuration values
496  Void  xPrintUsage     ();                                   ///< print usage
497#if H_MV
498  template <typename T>
499  Void xResizeVector(  std::vector<T> & rpcVector )
500  {
501    for( Int layer = 0; rpcVector.size() < m_numberOfLayers; layer++ )
502    {
503      assert( rpcVector.size() > 0 );
504      rpcVector.push_back( rpcVector[layer] );     
505    }
506
507    for( ; rpcVector.size() > m_numberOfLayers; )
508    {     
509      rpcVector.pop_back( );     
510    }
511  }
512
513  template <typename T>
514  Void xPrintParaVector( std::string description, std::vector<T> & rpcVector )
515  {
516    Int iSpace = max(1, ENC_CFG_CONSOUT_SPACE - (Int) description.length() ); 
517   
518    for ( Int i = 0; i < iSpace; i++ ) 
519      description.append( " " ); 
520     
521    description.append( ":" ); 
522    printf( "%s", description.c_str() ); 
523
524    for(Int i=0;i<rpcVector.size();i++)               
525      xPrintVectorElem( rpcVector[i] );
526
527    printf("\n");
528  }
529 
530  Void xPrintVectorElem( UInt   elem ) { printf(" %d"   , elem            );};
531  Void xPrintVectorElem( Int    elem ) { printf(" %d"   , elem            );};
532 
533  Void xPrintVectorElem( Double elem ) { printf(" %5.2f", elem            );}; 
534  Void xPrintVectorElem( Bool   elem ) { printf(" %d"   , ( elem ? 1 : 0 ));};
535#endif
536#if H_MV
537  Int   getGOPSize() { return m_iGOPSize; }
538#endif
539public:
540  TAppEncCfg();
541  virtual ~TAppEncCfg();
542 
543public:
544  Void  create    ();                                         ///< create option handling class
545  Void  destroy   ();                                         ///< destroy option handling class
546  Bool  parseCfg  ( Int argc, Char* argv[] );                 ///< parse configuration file to fill member variables
547 
548};// END CLASS DEFINITION TAppEncCfg
549
550//! \}
551
552#endif // __TAPPENCCFG__
553
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