1 | #======== Legend for comments ===================== |
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2 | # (m) specification per layer/dimension/layerset possible |
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3 | # (c) cyclic repetition of values, if not given for all layers/dimensions/layersets. (e.g. 5 layers and 1 2 3 -> 1 2 3 1 2 ) |
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4 | |
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5 | #======== File I/O ===================== |
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6 | |
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7 | InputFile_0 : newspapercc_4.yuv |
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8 | InputFile_1 : newspapercc_4_depth.yuv |
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9 | InputFile_2 : newspapercc_2.yuv |
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10 | InputFile_3 : newspapercc_2_depth.yuv |
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11 | InputFile_4 : newspapercc_6.yuv |
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12 | InputFile_5 : newspapercc_6_depth.yuv |
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13 | InputFile_6 : |
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14 | InputFile_7 : |
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15 | InputFile_8 : |
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16 | InputFile_9 : |
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17 | InputFile_10 : |
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18 | InputFile_11 : |
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19 | |
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20 | |
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21 | BitstreamFile : stream.bit |
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22 | |
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23 | ReconFile_0 : rec_4.yuv |
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24 | ReconFile_1 : rec_4_depth.yuv |
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25 | ReconFile_2 : rec_2.yuv |
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26 | ReconFile_3 : rec_2_depth.yuv |
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27 | ReconFile_4 : rec_6.yuv |
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28 | ReconFile_5 : rec_6_depth.yuv |
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29 | ReconFile_6 : |
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30 | ReconFile_7 : |
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31 | ReconFile_8 : |
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32 | ReconFile_9 : |
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33 | ReconFile_10 : |
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34 | ReconFile_11 : |
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35 | |
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36 | |
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37 | FramesToBeEncoded : 3 # Number of frames to be coded |
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38 | FrameRate : 30 # Frame Rate per second |
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39 | SourceWidth : 1024 # Input frame width |
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40 | SourceHeight : 768 # Input frame height |
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41 | NumberOfLayers : 6 |
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42 | TargetEncLayerIdList : # Layer Id in Nuh to be encoded, (empty:-> all layers will be encode) |
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43 | |
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44 | #======== VPS ============================ |
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45 | ScalabilityMask : 3 # Scalability Mask ( 2: View Scalability, 3: View + Depth Scalability ) |
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46 | DimensionIdLen : 1 2 # Number of bits to store Ids, per scalability dimension, (m) |
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47 | ViewOrderIndex : 0 0 1 1 2 2 # ViewOrderIndex, per layer (m) |
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48 | DepthFlag : 0 1 0 1 0 1 # DepthFlag (m) |
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49 | LayerIdInNuh : 0 # Layer Id in NAL unit header, (0: no explicit signalling, otherwise per layer ) (m) |
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50 | SplittingFlag : 0 # Splitting Flag |
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51 | ViewId : 1 0 2 # ViewId, per ViewOrderIndex (m) |
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52 | OutputVpsInfo : 0 # Output VPS information |
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53 | #======== VPS/ Layer sets ================ |
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54 | VpsNumLayerSets : 5 # Number of layer sets |
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55 | LayerIdsInSet_0 : 0 # Indices in VPS of layers in layer set 0 |
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56 | LayerIdsInSet_1 : 0 1 # Indices in VPS of layers in layer set 1 |
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57 | LayerIdsInSet_2 : 0 1 2 3 # Indices in VPS of layers in layer set 2 |
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58 | LayerIdsInSet_3 : 0 1 4 5 # Indices in VPS of layers in layer set 3 |
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59 | LayerIdsInSet_4 : 0 1 2 3 4 5 # Indices in VPS of layers in layer set 4 |
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60 | LayerIdsInSet_5 : |
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61 | LayerIdsInSet_6 : |
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62 | LayerIdsInSet_7 : |
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63 | LayerIdsInSet_8 : |
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64 | LayerIdsInSet_9 : |
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65 | LayerIdsInSet_10 : |
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66 | |
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67 | NumAddLayerSets : 0 # Specifies the number of additional layer sets |
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68 | HighestLayerIdxPlus1_0 : -1 # Highest layer idx plus 1 for the 0-th additional layer set, per independent layer (m) (first value will be ignored) |
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69 | HighestLayerIdxPlus1_1 : -1 # Highest layer idx plus 1 for the 1-th additional layer set, per independent layer (m) (first value will be ignored) |
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70 | HighestLayerIdxPlus1_2 : -1 # Highest layer idx plus 1 for the 2-th additional layer set, per independent layer (m) (first value will be ignored) |
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71 | HighestLayerIdxPlus1_3 : -1 # Highest layer idx plus 1 for the 4-th additional layer set, per independent layer (m) (first value will be ignored) |
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72 | HighestLayerIdxPlus1_4 : -1 # Highest layer idx plus 1 for the 5-th additional layer set, per independent layer (m) (first value will be ignored) |
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73 | HighestLayerIdxPlus1_5 : -1 # Highest layer idx plus 1 for the 6-th additional layer set, per independent layer (m) (first value will be ignored) |
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74 | HighestLayerIdxPlus1_6 : -1 # Highest layer idx plus 1 for the 7-th additional layer set, per independent layer (m) (first value will be ignored) |
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75 | |
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76 | #======== VPS / Output layer sets ================ |
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77 | DefaultTargetOutputLayerIdc : 0 # Specifies output layers of layer sets, 0: output all layers, 1: output highest layer, 2: specified by LayerIdsInDefOutputLayerSet |
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78 | |
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79 | LayerIdsInDefOutputLayerSet_0 : # Indices in VPS of output layers in layer set 0 (when DefaultTargetOutputLayerIdc is equal to 2) |
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80 | LayerIdsInDefOutputLayerSet_1 : # Indices in VPS of output layers in layer set 1 (when DefaultTargetOutputLayerIdc is equal to 2) |
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81 | LayerIdsInDefOutputLayerSet_2 : # Indices in VPS of output layers in layer set 2 (when DefaultTargetOutputLayerIdc is equal to 2) |
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82 | LayerIdsInDefOutputLayerSet_3 : # Indices in VPS of output layers in layer set 3 (when DefaultTargetOutputLayerIdc is equal to 2) |
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83 | LayerIdsInDefOutputLayerSet_4 : # Indices in VPS of output layers in layer set 4 (when DefaultTargetOutputLayerIdc is equal to 2) |
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84 | LayerIdsInDefOutputLayerSet_5 : # Indices in VPS of output layers in layer set 5 (when DefaultTargetOutputLayerIdc is equal to 2) |
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85 | LayerIdsInDefOutputLayerSet_6 : # Indices in VPS of output layers in layer set 6 (when DefaultTargetOutputLayerIdc is equal to 2) |
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86 | LayerIdsInDefOutputLayerSet_7 : # Indices in VPS of output layers in layer set 7 (when DefaultTargetOutputLayerIdc is equal to 2) |
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87 | LayerIdsInDefOutputLayerSet_8 : # Indices in VPS of output layers in layer set 8 (when DefaultTargetOutputLayerIdc is equal to 2) |
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88 | LayerIdsInDefOutputLayerSet_9 : # Indices in VPS of output layers in layer set 9 (when DefaultTargetOutputLayerIdc is equal to 2) |
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89 | |
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90 | |
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91 | OutputLayerSetIdx : 2 3 # Indices of layer sets used to derive additional output layer sets |
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92 | LayerIdsInAddOutputLayerSet_0 : 2 3 # Indices in VPS of output layers in additional output layer set 0 |
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93 | LayerIdsInAddOutputLayerSet_1 : 4 5 # Indices in VPS of output layers in additional output layer set 1 |
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94 | LayerIdsInAddOutputLayerSet_2 : # Indices in VPS of output layers in additional output layer set 2 |
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95 | LayerIdsInAddOutputLayerSet_3 : # Indices in VPS of output layers in additional output layer set 3 |
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96 | LayerIdsInAddOutputLayerSet_4 : # Indices in VPS of output layers in additional output layer set 4 |
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97 | LayerIdsInAddOutputLayerSet_5 : # Indices in VPS of output layers in additional output layer set 5 |
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98 | LayerIdsInAddOutputLayerSet_6 : # Indices in VPS of output layers in additional output layer set 6 |
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99 | LayerIdsInAddOutputLayerSet_7 : # Indices in VPS of output layers in additional output layer set 7 |
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100 | LayerIdsInAddOutputLayerSet_8 : # Indices in VPS of output layers in additional output layer set 8 |
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101 | LayerIdsInAddOutputLayerSet_9 : # Indices in VPS of output layers in additional output layer set 9 |
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102 | LayerIdsInAddOutputLayerSet_10: # Indices in VPS of output layers in additional output layer set 10 |
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103 | |
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104 | |
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105 | #======== VPS / PTLI ================ |
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106 | Profile : main main 3d-main # Profile indication in VpsProfileTierLevel, per VpsProfileTierLevel syntax structure (m) |
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107 | Level : none none none # Level indication in VpsProfileTierLevel, per VpsProfileTierLevel syntax structure (m) |
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108 | Tier : main main main # Tier indication in VpsProfileTierLevel, per VpsProfileTierLevel syntax structure (m) |
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109 | InblFlag : 0 0 0 # Inbl indication in VpsProfileTierLevel, per VpsProfileTierLevel syntax structure (m) |
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110 | |
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111 | ProfileTierLevelIdx_0 : 1 # VpsProfileTierLevel indices of layers in output layer set 0 (m) (should be -1, when layer is not necessary) |
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112 | ProfileTierLevelIdx_1 : 1 2 # VpsProfileTierLevel indices of layers in output layer set 1 (m) (should be -1, when layer is not necessary) |
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113 | ProfileTierLevelIdx_2 : 1 2 2 2 # VpsProfileTierLevel indices of layers in output layer set 2 (m) (should be -1, when layer is not necessary) |
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114 | ProfileTierLevelIdx_3 : 1 2 2 2 # VpsProfileTierLevel indices of layers in output layer set 3 (m) (should be -1, when layer is not necessary) |
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115 | ProfileTierLevelIdx_4 : 1 2 2 2 2 2 # VpsProfileTierLevel indices of layers in output layer set 4 (m) (should be -1, when layer is not necessary) |
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116 | ProfileTierLevelIdx_5 : 1 2 2 2 # VpsProfileTierLevel indices of layers in output layer set 5 (m) (should be -1, when layer is not necessary) |
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117 | ProfileTierLevelIdx_6 : 1 2 2 2 # VpsProfileTierLevel indices of layers in output layer set 6 (m) (should be -1, when layer is not necessary) |
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118 | ProfileTierLevelIdx_7 : # VpsProfileTierLevel indices of layers in output layer set 7 (m) (should be -1, when layer is not necessary) |
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119 | ProfileTierLevelIdx_8 : # VpsProfileTierLevel indices of layers in output layer set 8 (m) (should be -1, when layer is not necessary) |
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120 | ProfileTierLevelIdx_9 : # VpsProfileTierLevel indices of layers in output layer set 9 (m) (should be -1, when layer is not necessary) |
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121 | ProfileTierLevelIdx_10 : # VpsProfileTierLevel indices of layers in output layer set 10 (m) (should be -1, when layer is not necessary) |
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122 | ProfileTierLevelIdx_11 : # VpsProfileTierLevel indices of layers in output layer set 11 (m) (should be -1, when layer is not necessary) |
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123 | ProfileTierLevelIdx_12 : # VpsProfileTierLevel indices of layers in output layer set 12 (m) (should be -1, when layer is not necessary) |
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124 | ProfileTierLevelIdx_13 : # VpsProfileTierLevel indices of layers in output layer set 13 (m) (should be -1, when layer is not necessary) |
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125 | |
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126 | #======== VPS / Dependencies ================ |
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127 | DirectRefLayers_1 : 0 # Indices in VPS of direct reference layers |
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128 | DirectRefLayers_2 : 0 1 # Indices in VPS of direct reference layers |
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129 | DirectRefLayers_3 : 1 2 # Indices in VPS of direct reference layers |
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130 | DirectRefLayers_4 : 0 1 # Indices in VPS of direct reference layers |
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131 | DirectRefLayers_5 : 1 4 # Indices in VPS of direct reference layers |
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132 | |
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133 | DependencyTypes_1 : 6 # Dependency types of direct reference layers, 0: Sample 1: Motion 2: Sample+Motion 6: Sample+Motion+Quadtree |
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134 | DependencyTypes_2 : 2 0 # Dependency types of direct reference layers, 0: Sample 1: Motion 2: Sample+Motion 6: Sample+Motion+Quadtree |
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135 | DependencyTypes_3 : 2 6 # Dependency types of direct reference layers, 0: Sample 1: Motion 2: Sample+Motion 6: Sample+Motion+Quadtree |
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136 | DependencyTypes_4 : 2 0 # Dependency types of direct reference layers, 0: Sample 1: Motion 2: Sample+Motion 6: Sample+Motion+Quadtree |
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137 | DependencyTypes_5 : 2 6 # Dependency types of direct reference layers, 0: Sample 1: Motion 2: Sample+Motion 6: Sample+Motion+Quadtree |
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138 | |
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139 | #========== Camera parameters ========== |
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140 | BaseViewCameraNumbers : 3 1 5 # camera numbers of coded views ( in coding order per view ) |
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141 | CameraParameterFile : cam_pars.txt # camera parameter file |
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142 | CodedCamParsPrecision : 5 # precision used for coding of camera parameters (in units of 2^(-x) luma samples) |
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143 | |
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144 | #======== Unit definition ================ |
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145 | MaxCUWidth : 64 # Maximum coding unit width in pixel |
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146 | MaxCUHeight : 64 # Maximum coding unit height in pixel |
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147 | MaxPartitionDepth : 4 # Maximum coding unit depth |
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148 | QuadtreeTULog2MaxSize : 5 # Log2 of maximum transform size for |
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149 | # quadtree-based TU coding (2...6) |
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150 | QuadtreeTULog2MinSize : 2 # Log2 of minimum transform size for |
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151 | # quadtree-based TU coding (2...6) |
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152 | QuadtreeTUMaxDepthInter : 3 |
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153 | QuadtreeTUMaxDepthIntra : 3 |
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154 | |
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155 | #======== Coding Structure ============= |
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156 | IntraPeriod : 24 # Period of I-Frame ( -1 = only first) |
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157 | DecodingRefreshType : 1 # Random Accesss 0:none, 1:CRA, 2:IDR, 3:Recovery Point SEI |
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158 | GOPSize : 8 # GOP Size (number of B slice = GOPSize-1) |
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159 | |
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160 | # QPfactor betaOffsetDiv2 #ref_pics_active reference pictures deltaRPS reference idcs ilPredLayerIdc refLayerPicPosIl_L1 |
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161 | # Type POC QPoffset tcOffsetDiv2 temporal_id #ref_pics predict #ref_idcs #ActiveRefLayerPics refLayerPicPosIl_L0 interCompPred |
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162 | Frame1: B 8 1 0.442 0 0 0 4 4 -8 -10 -12 -16 0 0 0 |
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163 | Frame2: B 4 2 0.3536 0 0 0 2 3 -4 -6 4 1 4 5 1 1 0 0 1 0 0 |
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164 | Frame3: B 2 3 0.3536 0 0 0 2 4 -2 -4 2 6 1 2 4 1 1 1 1 0 0 |
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165 | Frame4: B 1 4 0.68 0 0 0 2 4 -1 1 3 7 1 1 5 1 0 1 1 1 0 0 |
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166 | Frame5: B 3 4 0.68 0 0 0 2 4 -1 -3 1 5 1 -2 5 1 1 1 1 0 0 0 |
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167 | Frame6: B 6 3 0.3536 0 0 0 2 4 -2 -4 -6 2 1 -3 5 1 1 1 1 0 0 0 |
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168 | Frame7: B 5 4 0.68 0 0 0 2 4 -1 -5 1 3 1 1 5 1 0 1 1 1 0 0 |
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169 | Frame8: B 7 4 0.68 0 0 0 2 4 -1 -3 -7 1 1 -2 5 1 1 1 1 0 0 0 |
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170 | |
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171 | FrameI_l1: I 0 0 0.442 0 0 0 0 0 0 0 1 |
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172 | Frame1_l1: B 8 1 0.442 0 0 0 4 4 -8 -10 -12 -16 0 0 1 |
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173 | Frame2_l1: B 4 2 0.3536 0 0 0 2 3 -4 -6 4 1 4 5 1 1 0 0 1 0 1 |
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174 | Frame3_l1: B 2 3 0.3536 0 0 0 2 4 -2 -4 2 6 1 2 4 1 1 1 1 0 1 |
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175 | Frame4_l1: B 1 4 0.68 0 0 0 2 4 -1 1 3 7 1 1 5 1 0 1 1 1 0 1 |
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176 | Frame5_l1: B 3 4 0.68 0 0 0 2 4 -1 -3 1 5 1 -2 5 1 1 1 1 0 0 1 |
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177 | Frame6_l1: B 6 3 0.3536 0 0 0 2 4 -2 -4 -6 2 1 -3 5 1 1 1 1 0 0 1 |
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178 | Frame7_l1: B 5 4 0.68 0 0 0 2 4 -1 -5 1 3 1 1 5 1 0 1 1 1 0 1 |
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179 | Frame8_l1: B 7 4 0.68 0 0 0 2 4 -1 -3 -7 1 1 -2 5 1 1 1 1 0 0 1 |
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180 | |
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181 | FrameI_l2: P 0 3 0.442 0 0 0 1 0 0 1 0 0 -1 1 |
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182 | Frame1_l2: B 8 4 0.442 0 0 0 4 4 -8 -10 -12 -16 0 1 0 1 -1 1 |
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183 | Frame2_l2: B 4 5 0.3536 0 0 0 3 3 -4 -6 4 1 4 5 1 1 0 0 1 1 0 1 -1 1 |
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184 | Frame3_l2: B 2 6 0.3536 0 0 0 3 4 -2 -4 2 6 1 2 4 1 1 1 1 1 0 1 -1 1 |
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185 | Frame4_l2: B 1 7 0.68 0 0 0 3 4 -1 1 3 7 1 1 5 1 0 1 1 1 1 0 1 -1 1 |
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186 | Frame5_l2: B 3 7 0.68 0 0 0 3 4 -1 -3 1 5 1 -2 5 1 1 1 1 0 1 0 2 -1 1 |
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187 | Frame6_l2: B 6 6 0.3536 0 0 0 3 4 -2 -4 -6 2 1 -3 5 1 1 1 1 0 1 0 2 -1 1 |
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188 | Frame7_l2: B 5 7 0.68 0 0 0 3 4 -1 -5 1 3 1 1 5 1 0 1 1 1 1 0 2 -1 1 |
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189 | Frame8_l2: B 7 7 0.68 0 0 0 3 4 -1 -3 -7 1 1 -2 5 1 1 1 1 0 1 0 2 -1 1 |
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190 | |
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191 | FrameI_l3: P 0 3 0.442 0 0 0 1 0 0 1 0 0 -1 1 |
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192 | Frame1_l3: B 8 4 0.442 0 0 0 4 4 -8 -10 -12 -16 0 1 0 1 -1 1 |
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193 | Frame2_l3: B 4 5 0.3536 0 0 0 3 3 -4 -6 4 1 4 5 1 1 0 0 1 1 0 1 -1 1 |
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194 | Frame3_l3: B 2 6 0.3536 0 0 0 3 4 -2 -4 2 6 1 2 4 1 1 1 1 1 0 1 -1 1 |
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195 | Frame4_l3: B 1 7 0.68 0 0 0 3 4 -1 1 3 7 1 1 5 1 0 1 1 1 1 0 1 -1 1 |
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196 | Frame5_l3: B 3 7 0.68 0 0 0 3 4 -1 -3 1 5 1 -2 5 1 1 1 1 0 1 0 2 -1 1 |
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197 | Frame6_l3: B 6 6 0.3536 0 0 0 3 4 -2 -4 -6 2 1 -3 5 1 1 1 1 0 1 0 2 -1 1 |
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198 | Frame7_l3: B 5 7 0.68 0 0 0 3 4 -1 -5 1 3 1 1 5 1 0 1 1 1 1 0 2 -1 1 |
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199 | Frame8_l3: B 7 7 0.68 0 0 0 3 4 -1 -3 -7 1 1 -2 5 1 1 1 1 0 1 0 2 -1 1 |
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200 | |
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201 | FrameI_l4: P 0 3 0.442 0 0 0 1 0 0 1 0 0 -1 1 |
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202 | Frame1_l4: B 8 4 0.442 0 0 0 4 4 -8 -10 -12 -16 0 1 0 1 -1 1 |
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203 | Frame2_l4: B 4 5 0.3536 0 0 0 3 3 -4 -6 4 1 4 5 1 1 0 0 1 1 0 1 -1 1 |
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204 | Frame3_l4: B 2 6 0.3536 0 0 0 3 4 -2 -4 2 6 1 2 4 1 1 1 1 1 0 1 -1 1 |
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205 | Frame4_l4: B 1 7 0.68 0 0 0 3 4 -1 1 3 7 1 1 5 1 0 1 1 1 1 0 1 -1 1 |
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206 | Frame5_l4: B 3 7 0.68 0 0 0 3 4 -1 -3 1 5 1 -2 5 1 1 1 1 0 1 0 2 -1 1 |
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207 | Frame6_l4: B 6 6 0.3536 0 0 0 3 4 -2 -4 -6 2 1 -3 5 1 1 1 1 0 1 0 2 -1 1 |
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208 | Frame7_l4: B 5 7 0.68 0 0 0 3 4 -1 -5 1 3 1 1 5 1 0 1 1 1 1 0 2 -1 1 |
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209 | Frame8_l4: B 7 7 0.68 0 0 0 3 4 -1 -3 -7 1 1 -2 5 1 1 1 1 0 1 0 2 -1 1 |
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210 | |
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211 | FrameI_l5: P 0 3 0.442 0 0 0 1 0 0 1 0 0 -1 1 |
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212 | Frame1_l5: B 8 4 0.442 0 0 0 4 4 -8 -10 -12 -16 0 1 0 1 -1 1 |
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213 | Frame2_l5: B 4 5 0.3536 0 0 0 3 3 -4 -6 4 1 4 5 1 1 0 0 1 1 0 1 -1 1 |
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214 | Frame3_l5: B 2 6 0.3536 0 0 0 3 4 -2 -4 2 6 1 2 4 1 1 1 1 1 0 1 -1 1 |
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215 | Frame4_l5: B 1 7 0.68 0 0 0 3 4 -1 1 3 7 1 1 5 1 0 1 1 1 1 0 1 -1 1 |
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216 | Frame5_l5: B 3 7 0.68 0 0 0 3 4 -1 -3 1 5 1 -2 5 1 1 1 1 0 1 0 2 -1 1 |
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217 | Frame6_l5: B 6 6 0.3536 0 0 0 3 4 -2 -4 -6 2 1 -3 5 1 1 1 1 0 1 0 2 -1 1 |
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218 | Frame7_l5: B 5 7 0.68 0 0 0 3 4 -1 -5 1 3 1 1 5 1 0 1 1 1 1 0 2 -1 1 |
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219 | Frame8_l5: B 7 7 0.68 0 0 0 3 4 -1 -3 -7 1 1 -2 5 1 1 1 1 0 1 0 2 -1 1 |
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220 | |
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221 | #=========== Motion Search ============= |
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222 | FastSearch : 1 # 0:Full search 1:TZ search |
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223 | SearchRange : 64 # (0: Search range is a Full frame) |
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224 | BipredSearchRange : 4 # Search range for bi-prediction refinement |
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225 | HadamardME : 1 # Use of hadamard measure for fractional ME |
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226 | FEN : 1 # Fast encoder decision |
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227 | FDM : 1 # Fast Decision for Merge RD cost |
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228 | |
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229 | #======== Quantization ============= |
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230 | QP : 25 30 25 30 25 30 # QP ( mc ) |
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231 | MaxDeltaQP : 0 # CU-based multi-QP optimization |
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232 | MaxCuDQPDepth : 0 # Max depth of a minimum CuDQP for sub-LCU-level delta QP |
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233 | DeltaQpRD : 0 # Slice-based multi-QP optimization |
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234 | RDOQ : 1 # RDOQ |
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235 | RDOQTS : 1 # RDOQ for transform skip |
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236 | |
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237 | #=========== Deblock Filter ============ |
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238 | |
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239 | LoopFilterOffsetInPPS : 1 # Dbl params: 0=varying params in SliceHeader, param = base_param + GOP_offset_param; 1 (default) =constant params in PPS, param = base_param) |
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240 | LoopFilterDisable : 0 1 # Disable deblocking filter (0=Filter, 1=No Filter) (mc) |
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241 | LoopFilterBetaOffset_div2 : 0 # base_param: -6 ~ 6 |
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242 | LoopFilterTcOffset_div2 : 0 # base_param: -6 ~ 6 |
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243 | DeblockingFilterMetric : 0 # blockiness metric (automatically configures deblocking parameters in bitstream). Applies slice-level loop filter offsets (LoopFilterOffsetInPPS and LoopFilterDisable must be 0) |
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244 | |
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245 | #=========== Misc. ============ |
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246 | InternalBitDepth : 8 # codec operating bit-depth |
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247 | |
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248 | #=========== Coding Tools ================= |
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249 | SAO : 1 0 # Sample adaptive offset (0: OFF, 1: ON) (mc) |
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250 | AMP : 1 # Asymmetric motion partitions (0: OFF, 1: ON) |
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251 | TransformSkip : 1 # Transform skipping (0: OFF, 1: ON) |
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252 | TransformSkipFast : 1 # Fast Transform skipping (0: OFF, 1: ON) |
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253 | SAOLcuBoundary : 0 # SAOLcuBoundary using non-deblocked pixels (0: OFF, 1: ON) |
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254 | |
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255 | #============ Slices ================ |
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256 | SliceMode : 0 # 0: Disable all slice options. |
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257 | # 1: Enforce maximum number of LCU in an slice, |
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258 | # 2: Enforce maximum number of bytes in an 'slice' |
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259 | # 3: Enforce maximum number of tiles in a slice |
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260 | SliceArgument : 1500 # Argument for 'SliceMode'. |
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261 | # If SliceMode==1 it represents max. SliceGranularity-sized blocks per slice. |
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262 | # If SliceMode==2 it represents max. bytes per slice. |
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263 | # If SliceMode==3 it represents max. tiles per slice. |
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264 | |
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265 | LFCrossSliceBoundaryFlag : 1 # In-loop filtering, including ALF and DB, is across or not across slice boundary. |
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266 | # 0:not across, 1: across |
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267 | |
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268 | #============ PCM ================ |
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269 | PCMEnabledFlag : 0 # 0: No PCM mode |
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270 | PCMLog2MaxSize : 5 # Log2 of maximum PCM block size. |
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271 | PCMLog2MinSize : 3 # Log2 of minimum PCM block size. |
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272 | PCMInputBitDepthFlag : 1 # 0: PCM bit-depth is internal bit-depth. 1: PCM bit-depth is input bit-depth. |
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273 | PCMFilterDisableFlag : 0 # 0: Enable loop filtering on I_PCM samples. 1: Disable loop filtering on I_PCM samples. |
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274 | |
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275 | #============ Tiles ================ |
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276 | TileUniformSpacing : 0 # 0: the column boundaries are indicated by TileColumnWidth array, the row boundaries are indicated by TileRowHeight array |
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277 | # 1: the column and row boundaries are distributed uniformly |
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278 | NumTileColumnsMinus1 : 0 # Number of tile columns in a picture minus 1 |
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279 | TileColumnWidthArray : 2 3 # Array containing tile column width values in units of CTU (from left to right in picture) |
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280 | NumTileRowsMinus1 : 0 # Number of tile rows in a picture minus 1 |
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281 | TileRowHeightArray : 2 # Array containing tile row height values in units of CTU (from top to bottom in picture) |
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282 | LFCrossTileBoundaryFlag : 1 # In-loop filtering is across or not across tile boundary. |
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283 | # 0:not across, 1: across |
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284 | |
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285 | #============ WaveFront ================ |
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286 | WaveFrontSynchro : 0 # 0: No WaveFront synchronisation (WaveFrontSubstreams must be 1 in this case). |
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287 | # >0: WaveFront synchronises with the LCU above and to the right by this many LCUs. |
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288 | |
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289 | #=========== Quantization Matrix ================= |
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290 | ScalingList : 0 # ScalingList 0 : off, 1 : default, 2 : file read |
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291 | ScalingListFile : scaling_list.txt # Scaling List file name. If file is not exist, use Default Matrix. |
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292 | |
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293 | #============ Lossless ================ |
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294 | TransquantBypassEnableFlag: 0 # Value of PPS flag. |
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295 | CUTransquantBypassFlagForce: 0 # Constant lossless-value signaling per CU, if TransquantBypassEnableFlag is 1. |
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296 | |
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297 | #============ Rate Control ====================== |
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298 | RateControl : 0 # Rate control: enable rate control |
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299 | TargetBitrate : 1000000 # Rate control: target bitrate, in bps |
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300 | KeepHierarchicalBit : 1 # Rate control: keep hierarchical bit allocation in rate control algorithm |
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301 | LCULevelRateControl : 1 # Rate control: 1: LCU level RC; 0: picture level RC |
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302 | RCLCUSeparateModel : 1 # Rate control: use LCU level separate R-lambda model |
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303 | InitialQP : 0 # Rate control: initial QP |
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304 | RCForceIntraQP : 0 # Rate control: force intra QP to be equal to initial QP |
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305 | |
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306 | #DepthMADPred : 0 # 0: Disable Depth based MAD prediction for extended view 1: Enable Depth based MAD prediction for extended view |
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307 | #TargetBitAssign : 0 # Manual assignment of target bit-rate |
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308 | #ViewWiseTargetBits : 950000 315000 358000 # View-wise target bit-rate setting |
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309 | |
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310 | #============ Rate Control URQ ====================== |
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311 | #RateCtrl : 0 # 0: Disable rate control 1: Enable rate control with total target |
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312 | #DepthMADPred : 0 # 0: Disable Depth based MAD prediction for extended view 1: Enable Depth based MAD prediction for extended view |
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313 | #TargetBitAssign : 0 # Manual assignment of target bit-rate |
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314 | #ViewWiseTargetBits : 952 315 360 # View-wise target bit-rate setting |
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315 | #TargetBitrate : 1500 # input target bitrate when RateCtrl is enable |
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316 | #NumLCUInUnit : 1 # Number of LCU in an Unit. Fraction is not allowed |
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317 | #========== multiview coding tools ========== |
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318 | IvMvPredFlag : 1 1 # Inter-view motion prediction |
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319 | IvResPredFlag : 1 # Advanced inter-view residual prediction (0:off, 1:on) |
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320 | IlluCompEnable : 1 # Enable Illumination compensation ( 0: off, 1: on ) (v/d) |
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321 | IlluCompLowLatencyEnc : 0 # Enable low-latency Illumination compensation encoding( 0: off, 1: on ) |
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322 | ViewSynthesisPredFlag : 1 # View synthesis prediction |
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323 | DepthRefinementFlag : 1 # Disparity refined by depth DoNBDV |
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324 | IvMvScalingFlag : 1 # Interview motion vector scaling |
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325 | Log2SubPbSizeMinus3 : 0 # Log2 of sub-PU size for IvMvPred (2...6) |
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326 | Log2MpiSubPbSizeMinus3 : 0 # Log2 of sub-PU size minus 3 for MPI (0 ... 3) and smaller than or equal to log2(maxCUSize)-3 |
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327 | DepthBasedBlkPartFlag : 1 # Depth-based Block Partitioning |
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328 | |
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329 | #========== depth coding tools ========== |
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330 | VSO : 1 # use of view synthesis optimization for depth coding |
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331 | IntraWedgeFlag : 1 |
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332 | IntraContourFlag : 1 # use of intra-view prediction mode |
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333 | IntraSdcFlag : 1 |
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334 | DLT : 1 |
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335 | QTL : 1 |
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336 | QtPredFlag : 1 |
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337 | InterSdcFlag : 1 # use of inter sdc |
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338 | MpiFlag : 1 |
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339 | DepthIntraSkip : 1 |
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340 | |
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341 | #========== view synthesis optimization (VSO) ========== |
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342 | VSOConfig : [cx0 B(cc1) I(s0.25 s0.5 s0.75)][cx1 B(oo0) B(oo2) I(s0.25 s0.5 s0.75 s1.25 s1.5 s1.75)][cx2 B(cc1) I(s1.25 s1.5 s1.75)] # VSO configuration string |
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343 | #VSOConfig : [ox0 B(cc1) I(s0.25 s0.5 s0.75)][cx1 B(oo0) B(oo2) I(s0.25 s0.5 s0.75 s1.25 s1.5 s1.75)][ox2 B(cc1) I(s1.25 s1.5 s1.75)] # VSO configuration string for FCO = 1 |
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344 | WVSO : 1 # use of WVSO (Depth distortion metric with a weighted depth fidelity term) |
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345 | VSOWeight : 10 # weight of VSO ( in SAD case, cf. squared in SSE case ) |
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346 | VSDWeight : 1 # weight of VSD ( in SAD case, cf. squared in SSE case ) |
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347 | DWeight : 1 # weight of depth distortion itself ( in SAD case, cf. squared in SSE case ) |
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348 | UseEstimatedVSD : 1 # Model based VSD estimation instead of rendering based for some encoder decisions |
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349 | |
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350 | |
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351 | WarnUnknowParameter : 1 |
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352 | |
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353 | ### DO NOT ADD ANYTHING BELOW THIS LINE ### |
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354 | ### DO NOT DELETE THE EMPTY LINE BELOW ### |
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