[2] | 1 | #======== File I/O ===================== |
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[56] | 2 | InputFile_0 : org_0.yuv # video input file for view 0 |
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| 3 | InputFile_1 : org_1.yuv # video input file for view 1 |
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| 4 | InputFile_2 : org_2.yuv # video input file for view 2 |
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[2] | 5 | |
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[56] | 6 | DepthInputFile_0 : org_depth_0.yuv # depth input file for view 0 |
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| 7 | DepthInputFile_1 : org_depth_1.yuv # depth input file for view 1 |
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| 8 | DepthInputFile_2 : org_depth_2.yuv # depth input file for view 2 |
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[2] | 9 | |
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[56] | 10 | ReconFile_0 : rec_0.yuv # video output file for view 0 |
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| 11 | ReconFile_1 : rec_1.yuv # video output file for view 1 |
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| 12 | ReconFile_2 : rec_2.yuv # video output file for view 2 |
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[2] | 13 | |
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[56] | 14 | DepthReconFile_0 : rec_depth_0.yuv # depth output file for view 0 |
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| 15 | DepthReconFile_1 : rec_depth_1.yuv # depth output file for view 1 |
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| 16 | DepthReconFile_2 : rec_depth_2.yuv # depth output file for view 2 |
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[2] | 17 | |
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[56] | 18 | BitstreamFile : stream.bit # bitstream file |
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[2] | 19 | |
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[56] | 20 | |
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[2] | 21 | #====== General Coding Parameters ====== |
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| 22 | NumberOfViews : 3 # Number of views to be coded |
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| 23 | CodeDepthMaps : 1 # Encode depth maps |
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[56] | 24 | FramesToBeEncoded : 17 # Number of frames to be coded |
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| 25 | SourceWidth : 1024 # Input frame width |
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| 26 | SourceHeight : 768 # Input frame height |
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| 27 | FrameRate : 30 # Frame Rate per second |
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[2] | 28 | FrameSkip : 0 # Number of frames to be skipped in input |
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| 29 | InputBitDepth : 8 # Input bit-depth |
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| 30 | OutputBitDepth : 8 # Output bit-depth |
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[56] | 31 | InternalBitDepth : 8 # Internal bit-depth |
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[2] | 32 | |
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| 33 | #====== Camera Parameters ====== |
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[56] | 34 | CameraParameterFile : ../seq/Balloons/cam_balloons.cfg # Camera parameter file |
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| 35 | BaseViewCameraNumbers : 3 1 5 # Cameras in coding order [only NumberOfViews values are used] |
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[5] | 36 | CodedCamParsPrecision : 5 # precision for camera parameter coding (max. disparity error = 2^(-x)) [default: 2] |
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[2] | 37 | |
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| 38 | #======== Unit definition ================ |
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| 39 | MaxCUWidth : 64 # Maximum coding unit width in pixel |
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| 40 | MaxCUHeight : 64 # Maximum coding unit height in pixel |
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| 41 | MaxPartitionDepth : 4 # Maximum coding unit depth |
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[56] | 42 | QuadtreeTULog2MaxSize : 5 # Log2 of maximum transform size for quadtree-based TU coding (2...6) |
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| 43 | QuadtreeTULog2MinSize : 2 # Log2 of minimum transform size for quadtree-based TU coding (2...6) |
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[2] | 44 | QuadtreeTUMaxDepthInter : 3 |
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| 45 | QuadtreeTUMaxDepthIntra : 3 |
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| 46 | |
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| 47 | #======== Coding Structure ============= |
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[56] | 48 | IntraPeriod : 24 # Period of I-Frame ( -1 = only first) |
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| 49 | DecodingRefreshType : 1 # Random Accesss 0:none, 1:CDR, 2:IDR |
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[5] | 50 | GOPSize : 8 # GOP Size (number of B slice = GOPSize-1) |
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[56] | 51 | # V0 Type POC QPoffset QPfactor temporal_id #ref_pics_active ref_pic #ref_pics reference pictures predict deltaRIdx-1 deltaRPS #ref_idcs reference idcs #IV_ref_pics IV reference pics IV ref list pos |
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| 52 | Frame1: B 8 1 0.442 0 4 1 4 -8 -10 -12 -16 0 0 |
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| 53 | Frame2: B 4 2 0.3536 0 2 1 3 -4 -6 4 1 0 4 5 1 1 0 0 1 0 |
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| 54 | Frame3: B 2 3 0.3536 0 2 1 4 -2 -4 2 6 1 0 2 4 1 1 1 1 0 |
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| 55 | Frame4: B 1 4 0.68 0 2 0 4 -1 1 3 7 1 0 1 5 1 0 1 1 1 0 |
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| 56 | Frame5: B 3 4 0.68 0 2 0 4 -1 -3 1 5 1 0 -2 5 1 1 1 1 0 0 |
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| 57 | Frame6: B 6 3 0.3536 0 2 1 4 -2 -4 -6 2 1 0 -3 5 1 1 1 1 0 0 |
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| 58 | Frame7: B 5 4 0.68 0 2 0 4 -1 -5 1 3 1 0 1 5 1 0 1 1 1 0 |
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| 59 | Frame8: B 7 4 0.68 0 2 0 4 -1 -3 -7 1 1 0 -2 5 1 1 1 1 0 0 |
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| 60 | # V1 Type POC QPoffset QPfactor temporal_id #ref_pics_active ref_pic #ref_pics reference pictures predict deltaRIdx-1 deltaRPS #ref_idcs reference idcs #IV_ref_pics IV reference pics IV ref_list_0_pos IV_ref_list_1_pos |
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| 61 | FrameI_v1: P 0 3 0.442 0 1 1 0 0 1 -1 1 0 |
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| 62 | Frame1_v1: B 8 4 0.442 0 4 1 4 -8 -10 -12 -16 0 1 -1 2 0 |
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| 63 | Frame2_v1: B 4 5 0.3536 0 3 1 3 -4 -6 4 1 0 4 5 1 1 0 0 1 1 -1 2 0 |
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| 64 | Frame3_v1: B 2 6 0.3536 0 3 1 4 -2 -4 2 6 1 0 2 4 1 1 1 1 1 -1 2 0 |
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| 65 | Frame4_v1: B 1 7 0.68 0 3 0 4 -1 1 3 7 1 0 1 5 1 0 1 1 1 1 -1 2 0 |
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| 66 | Frame5_v1: B 3 7 0.68 0 3 0 4 -1 -3 1 5 1 0 -2 5 1 1 1 1 0 1 -1 3 0 |
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| 67 | Frame6_v1: B 6 6 0.3536 0 3 1 4 -2 -4 -6 2 1 0 -3 5 1 1 1 1 0 1 -1 3 0 |
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| 68 | Frame7_v1: B 5 7 0.68 0 3 0 4 -1 -5 1 3 1 0 1 5 1 0 1 1 1 1 -1 3 0 |
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| 69 | Frame8_v1: B 7 7 0.68 0 3 0 4 -1 -3 -7 1 1 0 -2 5 1 1 1 1 0 1 -1 3 0 |
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| 70 | # V2 Type POC QPoffset QPfactor temporal_id #ref_pics_active ref_pic #ref_pics reference pictures predict deltaRIdx-1 deltaRPS #ref_idcs reference idcs #IV_ref_pics IV reference pics IV_ref_list_0_pos IV_ref_list_1_pos |
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| 71 | FrameI_v2: P 0 3 0.442 0 1 1 0 0 1 -2 1 0 |
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| 72 | Frame1_v2: B 8 4 0.442 0 4 1 4 -8 -10 -12 -16 0 1 -2 2 0 |
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| 73 | Frame2_v2: B 4 5 0.3536 0 3 1 3 -4 -6 4 1 0 4 5 1 1 0 0 1 1 -2 2 0 |
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| 74 | Frame3_v2: B 2 6 0.3536 0 3 1 4 -2 -4 2 6 1 0 2 4 1 1 1 1 1 -2 2 0 |
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| 75 | Frame4_v2: B 1 7 0.68 0 3 0 4 -1 1 3 7 1 0 1 5 1 0 1 1 1 1 -2 2 0 |
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| 76 | Frame5_v2: B 3 7 0.68 0 3 0 4 -1 -3 1 5 1 0 -2 5 1 1 1 1 0 1 -2 3 0 |
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| 77 | Frame6_v2: B 6 6 0.3536 0 3 1 4 -2 -4 -6 2 1 0 -3 5 1 1 1 1 0 1 -2 3 0 |
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| 78 | Frame7_v2: B 5 7 0.68 0 3 0 4 -1 -5 1 3 1 0 1 5 1 0 1 1 1 1 -2 3 0 |
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| 79 | Frame8_v2: B 7 7 0.68 0 3 0 4 -1 -3 -7 1 1 0 -2 5 1 1 1 1 0 1 -2 3 0 |
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[2] | 80 | |
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[56] | 81 | ListCombination : 1 # Use combined list for uni-prediction in B-slices |
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| 82 | DisableInter4x4 : 1 # Disable Inter4x4 (1: Disable Inter4x4, 0: Enable Inter4x4) |
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| 83 | |
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[2] | 84 | #=========== Motion Search ============= |
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| 85 | FastSearch : 1 # 0:Full search 1:EPZS |
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| 86 | SearchRange : 96 # (0: Search range is a Full frame) |
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[56] | 87 | BipredSearchRange : 4 # Search range for bi-prediction refinement |
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[2] | 88 | HadamardME : 1 # Use of hadamard measure for fractional ME |
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| 89 | FEN : 1 # Fast encoder decision |
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[56] | 90 | FDM : 1 # Fast Decision for Merge RD cost |
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[2] | 91 | |
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| 92 | #============= VSO ============= |
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[5] | 93 | VSO : 1 # View Synthesis Optimization |
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| 94 | VSOConfig : [cx0 B(cc1) I(s0.5)][cx1 B(oo0) B(oo2) I(s0.5 s1.5)][cx2 B(cc1) I(s1.5)] #VSO Configuration (3-View) coding order 1 0 2 oder 1 2 0 |
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| 95 | #VSOConfig : [cx0 B(cc1) I(s0.5)][cx1 B(oo0) I(s0.5)] #VSO Configuration (2-View) coding order 1 0 |
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| 96 | |
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[2] | 97 | #======== Quantization ============= |
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[56] | 98 | QP : 25 30 # Quantization parameter(0-51), second QP for Depth |
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[2] | 99 | MaxDeltaQP : 0 # CU-based multi-QP optimization |
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[56] | 100 | MaxCuDQPDepth : 0 # Max depth of a minimum CuDQP for sub-LCU-level delta QP |
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[2] | 101 | DeltaQpRD : 0 # Slice-based multi-QP optimization |
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[5] | 102 | RDOQ : 1 1 # RDOQ |
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[56] | 103 | ChromaQpOffset : 0 # ChromaQPOffset |
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| 104 | ChromaQpOffset2nd : 0 # ChromaQPOffset2nd |
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[2] | 105 | |
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| 106 | #=========== Entropy Coding ============ |
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| 107 | |
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| 108 | #=========== Deblock Filter ============ |
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[56] | 109 | DeblockingFilterControlPresent: 0 # Dbl control params present (0=not present, 1=present) |
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| 110 | LoopFilterOffsetInAPS : 0 # Dbl params in APS or SliceHeader (0=SliceHeader, 1=APS) |
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| 111 | LoopFilterDisable : 0 1 # Disable deblocking filter in slice header (0=Filter, 1=No Filter) |
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| 112 | LoopFilterBetaOffset_div2 : 0 # Range: -13 ~ 13 |
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| 113 | LoopFilterTcOffset_div2 : 0 # Range: -13 ~ 13 |
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[2] | 114 | |
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| 115 | #=========== Coding Tools ================= |
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[56] | 116 | SAO : 1 0 # Sample adaptive offset (0: OFF, 1: ON) |
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| 117 | ALF : 0 # Adaptive loop filter (0: OFF, 1: ON) |
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[2] | 118 | ALFEncodePassReduction : 0 # Reduce ALF encoding passes (0:Original 16-pass, 1: 1-pass, 2: 2-pass encoding) |
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[56] | 119 | LMChroma : 0 # Chroma from luma intra prediction mode (0: OFF, 1: ON) |
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| 120 | NSQT : 0 # Non-square transforms (0: OFF, 1: ON) |
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| 121 | AMP : 0 # Asymmetric motion partitions (0: OFF, 1: ON) |
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| 122 | ALFMaxNumFilter : 16 # ALF Max Number Filters per picture |
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| 123 | ALFParamInSlice : 0 # ALF params in SliceHeader or APS (0=APS, 1=SliceHeader) |
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| 124 | ALFPicBasedEncode : 1 # ALF LCU-based or picture-based encoding (0: LCU-based, 1: Picture-based) |
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| 125 | SAOInterleaving : 0 # SAO interleaving flag (0: SAO parameter in APS, 1: SAO parameter in slice data) |
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[2] | 126 | |
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[56] | 127 | #========== Depth Coding Tools ========== |
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| 128 | DMM : 1 # use depth intra modes (wedgelets) |
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| 129 | MVI : 1 |
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| 130 | |
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| 131 | #====== multiview mv/res prediction ====== |
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| 132 | PredDepthMapGen : 1 # generation of predicted depth maps (0:off, 1:using coded MVs, 2:using coded depth, 3:coded MVS for non-random-access, coded depth for random access) |
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| 133 | MultiviewMvPred : 7 # usage for predicted depth maps (sum of the following: 1:inter-view, 2:inter, 4:merge) |
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| 134 | MultiviewMvRegMode : 1 # regularization (using original depth maps) for inter-view motion estimation |
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| 135 | MultiviewMvRegLambdaScale : 1.0 # lambda scale factor for inter-view motion vector regularization |
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| 136 | MultiviewResPred : 1 # multiview residual prediction |
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| 137 | |
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[2] | 138 | #============ Slices ================ |
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[56] | 139 | SliceGranularity : 0 # Slice granularity relative the LCU size |
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[2] | 140 | SliceMode : 0 # 0: Disable all slice options. |
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| 141 | # 1: Enforce maximum number of LCU in an slice, |
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| 142 | # 2: Enforce maximum number of bytes in an 'slice' |
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[56] | 143 | # 3: Enforce maximum number of tiles in a slice |
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[2] | 144 | SliceArgument : 1500 # Argument for 'SliceMode'. |
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[56] | 145 | # If SliceMode==1 it represents max. SliceGranularity-sized blocks per slice. |
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[2] | 146 | # If SliceMode==2 it represents max. bytes per slice. |
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[56] | 147 | # If SliceMode==3 it represents max. tiles per slice. |
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[2] | 148 | |
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| 149 | LFCrossSliceBoundaryFlag : 1 # In-loop filtering, including ALF and DB, is across or not across slice boundary. |
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| 150 | # 0:not across, 1: across |
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| 151 | |
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| 152 | EntropySliceMode : 0 # 0: Disable all entropy slice options. |
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| 153 | # 1: Enforce maximum number of LCU in an entropy slice, |
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| 154 | # 2: Enforce maximum number of bins/bits in an 'entropy slice' |
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| 155 | EntropySliceArgument : 180000 # Argument for 'EntropySliceMode'. |
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[56] | 156 | # If EntropySliceMode==1 it represents max. SliceGranularity-sized blocks per slice. |
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[2] | 157 | # If EntropySliceMode==2 it represents max. bins per entropy slice. |
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| 158 | |
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[56] | 159 | #============ PCM ================ |
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| 160 | PCMEnabledFlag : 0 # 0: No PCM mode |
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| 161 | PCMLog2MaxSize : 5 # Log2 of maximum PCM block size. |
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| 162 | PCMLog2MinSize : 3 # Log2 of minimum PCM block size. |
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| 163 | PCMInputBitDepthFlag : 1 # 0: PCM bit-depth is internal bit-depth. 1: PCM bit-depth is input bit-depth. |
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| 164 | PCMFilterDisableFlag : 0 # 0: Enable loop filtering on I_PCM samples. 1: Disable loop filtering on I_PCM samples. |
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[2] | 165 | |
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[56] | 166 | #============ Tiles ================ |
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| 167 | TileInfoPresentFlag : 1 # 0: tiles parameters are NOT present in the PPS |
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| 168 | # 1: tiles parameters are present in the PPS |
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| 169 | UniformSpacingIdc : 0 # 0: the column boundaries are indicated by ColumnWidth array, the row boundaries are indicated by RowHeight array |
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| 170 | # 1: the column and row boundaries are distributed uniformly |
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| 171 | NumTileColumnsMinus1 : 0 # Number of columns in a picture minus 1 |
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| 172 | ColumnWidthArray : 2 3 # Array containing ColumnWidth values in units of LCU (from left to right in picture) |
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| 173 | NumTileRowsMinus1 : 0 # Number of rows in a picture minus 1 |
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| 174 | RowHeightArray : 2 # Array containing RowHeight values in units of LCU (from top to bottom in picture) |
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[2] | 175 | |
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[56] | 176 | TileLocationInSliceHeaderFlag : 0 # If TileBoundaryIndependenceIdc==0 flag is ignored. |
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| 177 | # 1: Enable writing tile location information to slice header. |
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| 178 | # 0: Disable writing tile location information to slice header. |
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| 179 | TileMarkerFlag : 1 # If TileBoundaryIndependenceIdc==0 flag is ignored. |
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| 180 | # 1: Enable writing tile markers. |
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| 181 | # 0: Disable writing tile markers. |
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| 182 | MaxTileMarkerEntryPoints : 4 # Maximum number of uniformly-spaced tile entry points (using tile markers). |
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| 183 | # Default=4. If number of tiles < MaxTileMarkerEntryPoints then all tiles have entry points. |
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| 184 | TileControlPresentFlag : 1 # 0: tiles behavior control parameters are NOT present in the PPS |
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| 185 | # 1: tiles behavior control parameters are present in the PPS |
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| 186 | LFCrossTileBoundaryFlag : 1 # In-loop filtering is across or not across tile boundary. |
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| 187 | # 0:not across, 1: across |
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[5] | 188 | |
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[56] | 189 | #============ WaveFront ================ |
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| 190 | WaveFrontSynchro : 0 # 0: No WaveFront synchronisation (WaveFrontSubstreams must be 1 in this case). |
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| 191 | # >0: WaveFront synchronises with the LCU above and to the right by this many LCUs. |
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| 192 | WaveFrontFlush : 0 # 0: No CABAC resets are performed. |
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| 193 | # 1: A CABAC reset is performed at the end of each LCU line. |
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| 194 | WaveFrontSubstreams : 1 # >0: This many substreams per slice (or per tile if TileBoundaryIndependenceIdc=1) will be produced. |
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| 195 | |
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| 196 | #=========== Quantization Matrix ================= |
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| 197 | ScalingList : 0 # ScalingList 0 : off, 1 : default, 2 : file read |
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| 198 | ScalingListFile : scaling_list.txt # Scaling List file name. If file is not exist, use Default Matrix. |
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| 199 | |
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| 200 | #============ Lossless ================ |
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| 201 | LosslessCuEnabled : 0 # 1: Set "qpprime_y_zero_transquant_bypass_flag=1" and enable the lossless mode as well as the RD-based mode selection process. |
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| 202 | |
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| 203 | ### DO NOT ADD ANYTHING BELOW THIS LINE ### |
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| 204 | ### DO NOT DELETE THE EMPTY LINE BELOW ### |
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| 205 | |
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