1 | /* The copyright in this software is being made available under the BSD |
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2 | * License, included below. This software may be subject to other third party |
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3 | * and contributor rights, including patent rights, and no such rights are |
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4 | * granted under this license. |
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5 | * |
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6 | * Copyright (c) 2010-2014, ITU/ISO/IEC |
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7 | * All rights reserved. |
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8 | * |
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9 | * Redistribution and use in source and binary forms, with or without |
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10 | * modification, are permitted provided that the following conditions are met: |
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11 | * |
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12 | * * Redistributions of source code must retain the above copyright notice, |
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13 | * this list of conditions and the following disclaimer. |
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14 | * * Redistributions in binary form must reproduce the above copyright notice, |
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15 | * this list of conditions and the following disclaimer in the documentation |
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16 | * and/or other materials provided with the distribution. |
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17 | * * Neither the name of the ITU/ISO/IEC nor the names of its contributors may |
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18 | * be used to endorse or promote products derived from this software without |
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19 | * specific prior written permission. |
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20 | * |
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21 | * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS "AS IS" |
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22 | * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE |
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23 | * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE |
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24 | * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS |
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25 | * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR |
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26 | * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF |
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27 | * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS |
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28 | * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN |
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29 | * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) |
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30 | * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF |
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31 | * THE POSSIBILITY OF SUCH DAMAGE. |
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32 | */ |
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33 | |
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34 | /** \file TEncEntropy.cpp |
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35 | \brief entropy encoder class |
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36 | */ |
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37 | |
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38 | #include "TEncEntropy.h" |
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39 | #include "TLibCommon/TypeDef.h" |
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40 | #include "TLibCommon/TComSampleAdaptiveOffset.h" |
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41 | #include "TLibCommon/TComTU.h" |
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42 | |
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43 | #if ENVIRONMENT_VARIABLE_DEBUG_AND_TEST |
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44 | #include "../TLibCommon/Debug.h" |
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45 | static const Bool bDebugPredEnabled = DebugOptionList::DebugPred.getInt()!=0; |
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46 | #endif |
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47 | |
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48 | //! \ingroup TLibEncoder |
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49 | //! \{ |
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50 | |
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51 | Void TEncEntropy::setEntropyCoder ( TEncEntropyIf* e, TComSlice* pcSlice ) |
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52 | { |
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53 | m_pcEntropyCoderIf = e; |
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54 | m_pcEntropyCoderIf->setSlice ( pcSlice ); |
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55 | } |
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56 | |
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57 | Void TEncEntropy::encodeSliceHeader ( TComSlice* pcSlice ) |
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58 | { |
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59 | m_pcEntropyCoderIf->codeSliceHeader( pcSlice ); |
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60 | return; |
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61 | } |
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62 | |
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63 | Void TEncEntropy::encodeTilesWPPEntryPoint( TComSlice* pSlice ) |
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64 | { |
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65 | m_pcEntropyCoderIf->codeTilesWPPEntryPoint( pSlice ); |
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66 | } |
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67 | |
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68 | Void TEncEntropy::encodeTerminatingBit ( UInt uiIsLast ) |
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69 | { |
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70 | m_pcEntropyCoderIf->codeTerminatingBit( uiIsLast ); |
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71 | |
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72 | return; |
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73 | } |
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74 | |
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75 | Void TEncEntropy::encodeSliceFinish() |
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76 | { |
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77 | m_pcEntropyCoderIf->codeSliceFinish(); |
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78 | } |
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79 | |
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80 | #if Q0048_CGS_3D_ASYMLUT |
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81 | Void TEncEntropy::encodePPS( TComPPS* pcPPS, TEnc3DAsymLUT * pc3DAsymLUT ) |
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82 | { |
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83 | m_pcEntropyCoderIf->codePPS( pcPPS, pc3DAsymLUT ); |
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84 | return; |
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85 | } |
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86 | #else |
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87 | Void TEncEntropy::encodePPS( TComPPS* pcPPS ) |
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88 | { |
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89 | m_pcEntropyCoderIf->codePPS( pcPPS ); |
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90 | return; |
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91 | } |
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92 | #endif |
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93 | |
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94 | Void TEncEntropy::encodeSPS( TComSPS* pcSPS ) |
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95 | { |
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96 | m_pcEntropyCoderIf->codeSPS( pcSPS ); |
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97 | return; |
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98 | } |
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99 | |
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100 | Void TEncEntropy::encodeCUTransquantBypassFlag( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool bRD ) |
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101 | { |
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102 | if( bRD ) |
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103 | { |
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104 | uiAbsPartIdx = 0; |
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105 | } |
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106 | m_pcEntropyCoderIf->codeCUTransquantBypassFlag( pcCU, uiAbsPartIdx ); |
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107 | } |
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108 | |
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109 | Void TEncEntropy::encodeVPS( TComVPS* pcVPS ) |
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110 | { |
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111 | m_pcEntropyCoderIf->codeVPS( pcVPS ); |
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112 | return; |
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113 | } |
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114 | |
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115 | Void TEncEntropy::encodeSkipFlag( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool bRD ) |
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116 | { |
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117 | if ( pcCU->getSlice()->isIntra() ) |
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118 | { |
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119 | return; |
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120 | } |
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121 | if( bRD ) |
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122 | { |
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123 | uiAbsPartIdx = 0; |
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124 | } |
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125 | m_pcEntropyCoderIf->codeSkipFlag( pcCU, uiAbsPartIdx ); |
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126 | } |
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127 | |
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128 | /** encode merge flag |
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129 | * \param pcCU |
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130 | * \param uiAbsPartIdx |
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131 | * \returns Void |
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132 | */ |
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133 | Void TEncEntropy::encodeMergeFlag( TComDataCU* pcCU, UInt uiAbsPartIdx ) |
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134 | { |
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135 | // at least one merge candidate exists |
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136 | m_pcEntropyCoderIf->codeMergeFlag( pcCU, uiAbsPartIdx ); |
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137 | } |
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138 | |
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139 | /** encode merge index |
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140 | * \param pcCU |
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141 | * \param uiAbsPartIdx |
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142 | * \param bRD |
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143 | * \returns Void |
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144 | */ |
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145 | Void TEncEntropy::encodeMergeIndex( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool bRD ) |
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146 | { |
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147 | if( bRD ) |
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148 | { |
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149 | uiAbsPartIdx = 0; |
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150 | assert( pcCU->getPartitionSize(uiAbsPartIdx) == SIZE_2Nx2N ); |
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151 | } |
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152 | m_pcEntropyCoderIf->codeMergeIndex( pcCU, uiAbsPartIdx ); |
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153 | } |
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154 | |
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155 | |
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156 | /** encode prediction mode |
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157 | * \param pcCU |
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158 | * \param uiAbsPartIdx |
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159 | * \param bRD |
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160 | * \returns Void |
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161 | */ |
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162 | Void TEncEntropy::encodePredMode( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool bRD ) |
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163 | { |
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164 | if( bRD ) |
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165 | { |
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166 | uiAbsPartIdx = 0; |
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167 | } |
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168 | |
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169 | if ( pcCU->getSlice()->isIntra() ) |
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170 | { |
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171 | return; |
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172 | } |
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173 | |
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174 | m_pcEntropyCoderIf->codePredMode( pcCU, uiAbsPartIdx ); |
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175 | } |
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176 | |
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177 | // Split mode |
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178 | Void TEncEntropy::encodeSplitFlag( TComDataCU* pcCU, UInt uiAbsPartIdx, UInt uiDepth, Bool bRD ) |
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179 | { |
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180 | if( bRD ) |
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181 | { |
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182 | uiAbsPartIdx = 0; |
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183 | } |
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184 | |
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185 | m_pcEntropyCoderIf->codeSplitFlag( pcCU, uiAbsPartIdx, uiDepth ); |
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186 | } |
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187 | |
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188 | /** encode partition size |
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189 | * \param pcCU |
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190 | * \param uiAbsPartIdx |
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191 | * \param uiDepth |
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192 | * \param bRD |
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193 | * \returns Void |
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194 | */ |
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195 | Void TEncEntropy::encodePartSize( TComDataCU* pcCU, UInt uiAbsPartIdx, UInt uiDepth, Bool bRD ) |
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196 | { |
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197 | if( bRD ) |
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198 | { |
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199 | uiAbsPartIdx = 0; |
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200 | } |
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201 | |
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202 | m_pcEntropyCoderIf->codePartSize( pcCU, uiAbsPartIdx, uiDepth ); |
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203 | } |
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204 | |
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205 | |
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206 | /** Encode I_PCM information. |
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207 | * \param pcCU pointer to CU |
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208 | * \param uiAbsPartIdx CU index |
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209 | * \param bRD flag indicating estimation or encoding |
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210 | * \returns Void |
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211 | */ |
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212 | Void TEncEntropy::encodeIPCMInfo( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool bRD ) |
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213 | { |
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214 | if(!pcCU->getSlice()->getSPS()->getUsePCM() |
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215 | || pcCU->getWidth(uiAbsPartIdx) > (1<<pcCU->getSlice()->getSPS()->getPCMLog2MaxSize()) |
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216 | || pcCU->getWidth(uiAbsPartIdx) < (1<<pcCU->getSlice()->getSPS()->getPCMLog2MinSize())) |
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217 | { |
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218 | return; |
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219 | } |
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220 | |
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221 | if( bRD ) |
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222 | { |
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223 | uiAbsPartIdx = 0; |
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224 | } |
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225 | |
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226 | m_pcEntropyCoderIf->codeIPCMInfo ( pcCU, uiAbsPartIdx ); |
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227 | |
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228 | } |
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229 | |
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230 | Void TEncEntropy::xEncodeTransform( Bool& bCodeDQP, Bool& codeChromaQpAdj, TComTU &rTu ) |
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231 | { |
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232 | //pcCU, absPartIdxCU, uiAbsPartIdx, uiDepth+1, uiTrIdx+1, quadrant, |
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233 | TComDataCU *pcCU=rTu.getCU(); |
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234 | const UInt uiAbsPartIdx=rTu.GetAbsPartIdxTU(); |
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235 | const UInt numValidComponent = pcCU->getPic()->getNumberValidComponents(); |
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236 | const Bool bChroma = isChromaEnabled(pcCU->getPic()->getChromaFormat()); |
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237 | const UInt uiTrIdx = rTu.GetTransformDepthRel(); |
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238 | const UInt uiDepth = rTu.GetTransformDepthTotal(); |
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239 | #if ENVIRONMENT_VARIABLE_DEBUG_AND_TEST |
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240 | const Bool bDebugRQT=g_bFinalEncode && DebugOptionList::DebugRQT.getInt()!=0; |
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241 | if (bDebugRQT) |
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242 | printf("x..codeTransform: offsetLuma=%d offsetChroma=%d absPartIdx=%d, uiDepth=%d\n width=%d, height=%d, uiTrIdx=%d, uiInnerQuadIdx=%d\n", |
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243 | rTu.getCoefficientOffset(COMPONENT_Y), rTu.getCoefficientOffset(COMPONENT_Cb), uiAbsPartIdx, uiDepth, rTu.getRect(COMPONENT_Y).width, rTu.getRect(COMPONENT_Y).height, rTu.GetTransformDepthRel(), rTu.GetSectionNumber()); |
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244 | #endif |
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245 | const UInt uiSubdiv = pcCU->getTransformIdx( uiAbsPartIdx ) > uiTrIdx;// + pcCU->getDepth( uiAbsPartIdx ) > uiDepth; |
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246 | const UInt uiLog2TrafoSize = rTu.GetLog2LumaTrSize(); |
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247 | |
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248 | |
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249 | UInt cbf[MAX_NUM_COMPONENT] = {0,0,0}; |
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250 | Bool bHaveACodedBlock = false; |
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251 | Bool bHaveACodedChromaBlock = false; |
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252 | |
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253 | for(UInt ch=0; ch<numValidComponent; ch++) |
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254 | { |
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255 | const ComponentID compID = ComponentID(ch); |
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256 | |
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257 | cbf[compID] = pcCU->getCbf( uiAbsPartIdx, compID , uiTrIdx ); |
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258 | |
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259 | if (cbf[ch] != 0) |
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260 | { |
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261 | bHaveACodedBlock = true; |
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262 | if (isChroma(compID)) bHaveACodedChromaBlock = true; |
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263 | } |
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264 | } |
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265 | |
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266 | if( pcCU->isIntra(uiAbsPartIdx) && pcCU->getPartitionSize(uiAbsPartIdx) == SIZE_NxN && uiDepth == pcCU->getDepth(uiAbsPartIdx) ) |
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267 | { |
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268 | assert( uiSubdiv ); |
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269 | } |
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270 | else if( pcCU->isInter(uiAbsPartIdx) && (pcCU->getPartitionSize(uiAbsPartIdx) != SIZE_2Nx2N) && uiDepth == pcCU->getDepth(uiAbsPartIdx) && (pcCU->getSlice()->getSPS()->getQuadtreeTUMaxDepthInter() == 1) ) |
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271 | { |
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272 | if ( uiLog2TrafoSize > pcCU->getQuadtreeTULog2MinSizeInCU(uiAbsPartIdx) ) |
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273 | { |
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274 | assert( uiSubdiv ); |
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275 | } |
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276 | else |
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277 | { |
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278 | assert(!uiSubdiv ); |
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279 | } |
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280 | } |
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281 | else if( uiLog2TrafoSize > pcCU->getSlice()->getSPS()->getQuadtreeTULog2MaxSize() ) |
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282 | { |
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283 | assert( uiSubdiv ); |
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284 | } |
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285 | else if( uiLog2TrafoSize == pcCU->getSlice()->getSPS()->getQuadtreeTULog2MinSize() ) |
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286 | { |
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287 | assert( !uiSubdiv ); |
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288 | } |
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289 | else if( uiLog2TrafoSize == pcCU->getQuadtreeTULog2MinSizeInCU(uiAbsPartIdx) ) |
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290 | { |
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291 | assert( !uiSubdiv ); |
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292 | } |
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293 | else |
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294 | { |
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295 | assert( uiLog2TrafoSize > pcCU->getQuadtreeTULog2MinSizeInCU(uiAbsPartIdx) ); |
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296 | m_pcEntropyCoderIf->codeTransformSubdivFlag( uiSubdiv, 5 - uiLog2TrafoSize ); |
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297 | } |
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298 | |
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299 | const UInt uiTrDepthCurr = uiDepth - pcCU->getDepth( uiAbsPartIdx ); |
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300 | const Bool bFirstCbfOfCU = uiTrDepthCurr == 0; |
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301 | |
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302 | for(UInt ch=COMPONENT_Cb; ch<numValidComponent; ch++) |
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303 | { |
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304 | const ComponentID compID=ComponentID(ch); |
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305 | if( bFirstCbfOfCU || rTu.ProcessingAllQuadrants(compID) ) |
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306 | { |
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307 | if( bFirstCbfOfCU || pcCU->getCbf( uiAbsPartIdx, compID, uiTrDepthCurr - 1 ) ) |
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308 | { |
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309 | m_pcEntropyCoderIf->codeQtCbf( rTu, compID, (uiSubdiv == 0) ); |
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310 | } |
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311 | } |
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312 | else |
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313 | { |
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314 | assert( pcCU->getCbf( uiAbsPartIdx, compID, uiTrDepthCurr ) == pcCU->getCbf( uiAbsPartIdx, compID, uiTrDepthCurr - 1 ) ); |
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315 | } |
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316 | } |
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317 | |
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318 | if( uiSubdiv ) |
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319 | { |
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320 | TComTURecurse tuRecurseChild(rTu, true); |
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321 | do |
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322 | { |
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323 | xEncodeTransform( bCodeDQP, codeChromaQpAdj, tuRecurseChild ); |
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324 | } |
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325 | while (tuRecurseChild.nextSection(rTu)); |
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326 | } |
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327 | else |
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328 | { |
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329 | { |
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330 | DTRACE_CABAC_VL( g_nSymbolCounter++ ); |
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331 | DTRACE_CABAC_T( "\tTrIdx: abspart=" ); |
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332 | DTRACE_CABAC_V( uiAbsPartIdx ); |
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333 | DTRACE_CABAC_T( "\tdepth=" ); |
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334 | DTRACE_CABAC_V( uiDepth ); |
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335 | DTRACE_CABAC_T( "\ttrdepth=" ); |
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336 | DTRACE_CABAC_V( pcCU->getTransformIdx( uiAbsPartIdx ) ); |
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337 | DTRACE_CABAC_T( "\n" ); |
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338 | } |
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339 | |
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340 | if( !pcCU->isIntra(uiAbsPartIdx) && uiDepth == pcCU->getDepth( uiAbsPartIdx ) && (!bChroma || (!pcCU->getCbf( uiAbsPartIdx, COMPONENT_Cb, 0 ) && !pcCU->getCbf( uiAbsPartIdx, COMPONENT_Cr, 0 ) ) ) ) |
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341 | { |
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342 | assert( pcCU->getCbf( uiAbsPartIdx, COMPONENT_Y, 0 ) ); |
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343 | // printf( "saved one bin! " ); |
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344 | } |
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345 | else |
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346 | { |
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347 | m_pcEntropyCoderIf->codeQtCbf( rTu, COMPONENT_Y, true ); //luma CBF is always at the lowest level |
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348 | } |
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349 | |
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350 | if ( bHaveACodedBlock ) |
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351 | { |
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352 | // dQP: only for CTU once |
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353 | if ( pcCU->getSlice()->getPPS()->getUseDQP() ) |
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354 | { |
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355 | if ( bCodeDQP ) |
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356 | { |
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357 | encodeQP( pcCU, rTu.GetAbsPartIdxCU() ); |
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358 | bCodeDQP = false; |
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359 | } |
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360 | } |
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361 | |
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362 | if ( pcCU->getSlice()->getUseChromaQpAdj() ) |
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363 | { |
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364 | if ( bHaveACodedChromaBlock && codeChromaQpAdj && !pcCU->getCUTransquantBypass(rTu.GetAbsPartIdxCU()) ) |
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365 | { |
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366 | encodeChromaQpAdjustment( pcCU, rTu.GetAbsPartIdxCU() ); |
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367 | codeChromaQpAdj = false; |
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368 | } |
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369 | } |
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370 | |
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371 | const UInt numValidComp=pcCU->getPic()->getNumberValidComponents(); |
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372 | |
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373 | for(UInt ch=COMPONENT_Y; ch<numValidComp; ch++) |
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374 | { |
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375 | const ComponentID compID=ComponentID(ch); |
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376 | |
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377 | if (rTu.ProcessComponentSection(compID)) |
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378 | { |
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379 | #if ENVIRONMENT_VARIABLE_DEBUG_AND_TEST |
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380 | if (bDebugRQT) printf("Call NxN for chan %d width=%d height=%d cbf=%d\n", compID, rTu.getRect(compID).width, rTu.getRect(compID).height, 1); |
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381 | #endif |
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382 | |
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383 | if (rTu.getRect(compID).width != rTu.getRect(compID).height) |
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384 | { |
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385 | //code two sub-TUs |
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386 | TComTURecurse subTUIterator(rTu, false, TComTU::VERTICAL_SPLIT, true, compID); |
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387 | |
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388 | do |
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389 | { |
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390 | const UChar subTUCBF = pcCU->getCbf(subTUIterator.GetAbsPartIdxTU(compID), compID, (uiTrIdx + 1)); |
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391 | |
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392 | if (subTUCBF != 0) |
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393 | { |
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394 | #if ENVIRONMENT_VARIABLE_DEBUG_AND_TEST |
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395 | if (bDebugRQT) printf("Call NxN for chan %d width=%d height=%d cbf=%d\n", compID, subTUIterator.getRect(compID).width, subTUIterator.getRect(compID).height, 1); |
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396 | #endif |
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397 | m_pcEntropyCoderIf->codeCoeffNxN( subTUIterator, (pcCU->getCoeff(compID) + subTUIterator.getCoefficientOffset(compID)), compID ); |
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398 | } |
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399 | } |
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400 | while (subTUIterator.nextSection(rTu)); |
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401 | } |
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402 | else |
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403 | { |
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404 | if (isChroma(compID) && (cbf[COMPONENT_Y] != 0)) |
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405 | { |
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406 | m_pcEntropyCoderIf->codeCrossComponentPrediction( rTu, compID ); |
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407 | } |
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408 | |
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409 | if (cbf[compID] != 0) |
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410 | { |
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411 | m_pcEntropyCoderIf->codeCoeffNxN( rTu, (pcCU->getCoeff(compID) + rTu.getCoefficientOffset(compID)), compID ); |
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412 | } |
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413 | } |
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414 | } |
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415 | } |
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416 | } |
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417 | } |
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418 | } |
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419 | |
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420 | |
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421 | // Intra direction for Luma |
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422 | Void TEncEntropy::encodeIntraDirModeLuma ( TComDataCU* pcCU, UInt absPartIdx, Bool isMultiplePU ) |
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423 | { |
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424 | m_pcEntropyCoderIf->codeIntraDirLumaAng( pcCU, absPartIdx , isMultiplePU); |
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425 | } |
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426 | |
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427 | |
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428 | // Intra direction for Chroma |
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429 | Void TEncEntropy::encodeIntraDirModeChroma( TComDataCU* pcCU, UInt uiAbsPartIdx ) |
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430 | { |
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431 | m_pcEntropyCoderIf->codeIntraDirChroma( pcCU, uiAbsPartIdx ); |
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432 | |
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433 | #if ENVIRONMENT_VARIABLE_DEBUG_AND_TEST |
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434 | if (bDebugPredEnabled && g_bFinalEncode) |
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435 | { |
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436 | UInt cdir=pcCU->getIntraDir(CHANNEL_TYPE_CHROMA, uiAbsPartIdx); |
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437 | if (cdir==36) cdir=pcCU->getIntraDir(CHANNEL_TYPE_LUMA, uiAbsPartIdx); |
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438 | printf("coding chroma Intra dir: %d, uiAbsPartIdx: %d, luma dir: %d\n", cdir, uiAbsPartIdx, pcCU->getIntraDir(CHANNEL_TYPE_LUMA, uiAbsPartIdx)); |
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439 | } |
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440 | #endif |
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441 | } |
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442 | |
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443 | |
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444 | Void TEncEntropy::encodePredInfo( TComDataCU* pcCU, UInt uiAbsPartIdx ) |
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445 | { |
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446 | if( pcCU->isIntra( uiAbsPartIdx ) ) // If it is Intra mode, encode intra prediction mode. |
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447 | { |
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448 | encodeIntraDirModeLuma ( pcCU, uiAbsPartIdx,true ); |
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449 | if (pcCU->getPic()->getChromaFormat()!=CHROMA_400) |
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450 | { |
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451 | encodeIntraDirModeChroma( pcCU, uiAbsPartIdx ); |
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452 | |
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453 | if (enable4ChromaPUsInIntraNxNCU(pcCU->getPic()->getChromaFormat()) && pcCU->getPartitionSize( uiAbsPartIdx )==SIZE_NxN) |
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454 | { |
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455 | UInt uiPartOffset = ( pcCU->getPic()->getNumPartitionsInCtu() >> ( pcCU->getDepth(uiAbsPartIdx) << 1 ) ) >> 2; |
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456 | encodeIntraDirModeChroma( pcCU, uiAbsPartIdx + uiPartOffset ); |
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457 | encodeIntraDirModeChroma( pcCU, uiAbsPartIdx + uiPartOffset*2 ); |
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458 | encodeIntraDirModeChroma( pcCU, uiAbsPartIdx + uiPartOffset*3 ); |
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459 | } |
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460 | } |
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461 | } |
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462 | else // if it is Inter mode, encode motion vector and reference index |
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463 | { |
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464 | encodePUWise( pcCU, uiAbsPartIdx ); |
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465 | } |
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466 | } |
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467 | |
---|
468 | Void TEncEntropy::encodeCrossComponentPrediction( TComTU &rTu, ComponentID compID ) |
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469 | { |
---|
470 | m_pcEntropyCoderIf->codeCrossComponentPrediction( rTu, compID ); |
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471 | } |
---|
472 | |
---|
473 | /** encode motion information for every PU block |
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474 | * \param pcCU |
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475 | * \param uiAbsPartIdx |
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476 | * \param bRD |
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477 | * \returns Void |
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478 | */ |
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479 | Void TEncEntropy::encodePUWise( TComDataCU* pcCU, UInt uiAbsPartIdx ) |
---|
480 | { |
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481 | #if ENVIRONMENT_VARIABLE_DEBUG_AND_TEST |
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482 | const Bool bDebugPred = bDebugPredEnabled && g_bFinalEncode; |
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483 | #endif |
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484 | |
---|
485 | PartSize ePartSize = pcCU->getPartitionSize( uiAbsPartIdx ); |
---|
486 | UInt uiNumPU = ( ePartSize == SIZE_2Nx2N ? 1 : ( ePartSize == SIZE_NxN ? 4 : 2 ) ); |
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487 | UInt uiDepth = pcCU->getDepth( uiAbsPartIdx ); |
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488 | UInt uiPUOffset = ( g_auiPUOffset[UInt( ePartSize )] << ( ( pcCU->getSlice()->getSPS()->getMaxCUDepth() - uiDepth ) << 1 ) ) >> 4; |
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489 | |
---|
490 | for ( UInt uiPartIdx = 0, uiSubPartIdx = uiAbsPartIdx; uiPartIdx < uiNumPU; uiPartIdx++, uiSubPartIdx += uiPUOffset ) |
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491 | { |
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492 | encodeMergeFlag( pcCU, uiSubPartIdx ); |
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493 | if ( pcCU->getMergeFlag( uiSubPartIdx ) ) |
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494 | { |
---|
495 | encodeMergeIndex( pcCU, uiSubPartIdx ); |
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496 | #if ENVIRONMENT_VARIABLE_DEBUG_AND_TEST |
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497 | if (bDebugPred) |
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498 | { |
---|
499 | std::cout << "Coded merge flag, CU absPartIdx: " << uiAbsPartIdx << " PU(" << uiPartIdx << ") absPartIdx: " << uiSubPartIdx; |
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500 | std::cout << " merge index: " << (UInt)pcCU->getMergeIndex(uiSubPartIdx) << std::endl; |
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501 | } |
---|
502 | #endif |
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503 | } |
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504 | else |
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505 | { |
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506 | encodeInterDirPU( pcCU, uiSubPartIdx ); |
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507 | for ( UInt uiRefListIdx = 0; uiRefListIdx < 2; uiRefListIdx++ ) |
---|
508 | { |
---|
509 | if ( pcCU->getSlice()->getNumRefIdx( RefPicList( uiRefListIdx ) ) > 0 ) |
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510 | { |
---|
511 | encodeRefFrmIdxPU ( pcCU, uiSubPartIdx, RefPicList( uiRefListIdx ) ); |
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512 | encodeMvdPU ( pcCU, uiSubPartIdx, RefPicList( uiRefListIdx ) ); |
---|
513 | encodeMVPIdxPU ( pcCU, uiSubPartIdx, RefPicList( uiRefListIdx ) ); |
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514 | #if ENVIRONMENT_VARIABLE_DEBUG_AND_TEST |
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515 | if (bDebugPred) |
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516 | { |
---|
517 | std::cout << "refListIdx: " << uiRefListIdx << std::endl; |
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518 | std::cout << "MVD horizontal: " << pcCU->getCUMvField(RefPicList(uiRefListIdx))->getMvd( uiAbsPartIdx ).getHor() << std::endl; |
---|
519 | std::cout << "MVD vertical: " << pcCU->getCUMvField(RefPicList(uiRefListIdx))->getMvd( uiAbsPartIdx ).getVer() << std::endl; |
---|
520 | std::cout << "MVPIdxPU: " << pcCU->getMVPIdx(RefPicList( uiRefListIdx ), uiSubPartIdx) << std::endl; |
---|
521 | std::cout << "InterDir: " << (UInt)pcCU->getInterDir(uiSubPartIdx) << std::endl; |
---|
522 | } |
---|
523 | #endif |
---|
524 | } |
---|
525 | } |
---|
526 | } |
---|
527 | } |
---|
528 | |
---|
529 | return; |
---|
530 | } |
---|
531 | |
---|
532 | Void TEncEntropy::encodeInterDirPU( TComDataCU* pcCU, UInt uiAbsPartIdx ) |
---|
533 | { |
---|
534 | if ( !pcCU->getSlice()->isInterB() ) |
---|
535 | { |
---|
536 | return; |
---|
537 | } |
---|
538 | |
---|
539 | m_pcEntropyCoderIf->codeInterDir( pcCU, uiAbsPartIdx ); |
---|
540 | |
---|
541 | return; |
---|
542 | } |
---|
543 | |
---|
544 | /** encode reference frame index for a PU block |
---|
545 | * \param pcCU |
---|
546 | * \param uiAbsPartIdx |
---|
547 | * \param eRefList |
---|
548 | * \returns Void |
---|
549 | */ |
---|
550 | Void TEncEntropy::encodeRefFrmIdxPU( TComDataCU* pcCU, UInt uiAbsPartIdx, RefPicList eRefList ) |
---|
551 | { |
---|
552 | assert( pcCU->isInter( uiAbsPartIdx ) ); |
---|
553 | |
---|
554 | if ( ( pcCU->getSlice()->getNumRefIdx( eRefList ) == 1 ) ) |
---|
555 | { |
---|
556 | return; |
---|
557 | } |
---|
558 | |
---|
559 | if ( pcCU->getInterDir( uiAbsPartIdx ) & ( 1 << eRefList ) ) |
---|
560 | { |
---|
561 | m_pcEntropyCoderIf->codeRefFrmIdx( pcCU, uiAbsPartIdx, eRefList ); |
---|
562 | } |
---|
563 | |
---|
564 | return; |
---|
565 | } |
---|
566 | |
---|
567 | /** encode motion vector difference for a PU block |
---|
568 | * \param pcCU |
---|
569 | * \param uiAbsPartIdx |
---|
570 | * \param eRefList |
---|
571 | * \returns Void |
---|
572 | */ |
---|
573 | Void TEncEntropy::encodeMvdPU( TComDataCU* pcCU, UInt uiAbsPartIdx, RefPicList eRefList ) |
---|
574 | { |
---|
575 | assert( pcCU->isInter( uiAbsPartIdx ) ); |
---|
576 | |
---|
577 | if ( pcCU->getInterDir( uiAbsPartIdx ) & ( 1 << eRefList ) ) |
---|
578 | { |
---|
579 | m_pcEntropyCoderIf->codeMvd( pcCU, uiAbsPartIdx, eRefList ); |
---|
580 | } |
---|
581 | return; |
---|
582 | } |
---|
583 | |
---|
584 | Void TEncEntropy::encodeMVPIdxPU( TComDataCU* pcCU, UInt uiAbsPartIdx, RefPicList eRefList ) |
---|
585 | { |
---|
586 | if ( (pcCU->getInterDir( uiAbsPartIdx ) & ( 1 << eRefList )) ) |
---|
587 | { |
---|
588 | m_pcEntropyCoderIf->codeMVPIdx( pcCU, uiAbsPartIdx, eRefList ); |
---|
589 | } |
---|
590 | |
---|
591 | return; |
---|
592 | } |
---|
593 | |
---|
594 | Void TEncEntropy::encodeQtCbf( TComTU &rTu, const ComponentID compID, const Bool lowestLevel ) |
---|
595 | { |
---|
596 | m_pcEntropyCoderIf->codeQtCbf( rTu, compID, lowestLevel ); |
---|
597 | } |
---|
598 | |
---|
599 | Void TEncEntropy::encodeTransformSubdivFlag( UInt uiSymbol, UInt uiCtx ) |
---|
600 | { |
---|
601 | m_pcEntropyCoderIf->codeTransformSubdivFlag( uiSymbol, uiCtx ); |
---|
602 | } |
---|
603 | |
---|
604 | Void TEncEntropy::encodeQtRootCbf( TComDataCU* pcCU, UInt uiAbsPartIdx ) |
---|
605 | { |
---|
606 | m_pcEntropyCoderIf->codeQtRootCbf( pcCU, uiAbsPartIdx ); |
---|
607 | } |
---|
608 | |
---|
609 | Void TEncEntropy::encodeQtCbfZero( TComTU &rTu, const ChannelType chType ) |
---|
610 | { |
---|
611 | m_pcEntropyCoderIf->codeQtCbfZero( rTu, chType ); |
---|
612 | } |
---|
613 | |
---|
614 | Void TEncEntropy::encodeQtRootCbfZero( TComDataCU* pcCU ) |
---|
615 | { |
---|
616 | m_pcEntropyCoderIf->codeQtRootCbfZero( pcCU ); |
---|
617 | } |
---|
618 | |
---|
619 | // dQP |
---|
620 | Void TEncEntropy::encodeQP( TComDataCU* pcCU, UInt uiAbsPartIdx, Bool bRD ) |
---|
621 | { |
---|
622 | if( bRD ) |
---|
623 | { |
---|
624 | uiAbsPartIdx = 0; |
---|
625 | } |
---|
626 | |
---|
627 | if ( pcCU->getSlice()->getPPS()->getUseDQP() ) |
---|
628 | { |
---|
629 | m_pcEntropyCoderIf->codeDeltaQP( pcCU, uiAbsPartIdx ); |
---|
630 | } |
---|
631 | } |
---|
632 | |
---|
633 | /** encode chroma qp adjustment |
---|
634 | * \returns Void |
---|
635 | */ |
---|
636 | Void TEncEntropy::encodeChromaQpAdjustment( TComDataCU* cu, UInt absPartIdx, Bool inRd ) |
---|
637 | { |
---|
638 | if( inRd ) |
---|
639 | { |
---|
640 | absPartIdx = 0; |
---|
641 | } |
---|
642 | |
---|
643 | m_pcEntropyCoderIf->codeChromaQpAdjustment( cu, absPartIdx ); |
---|
644 | } |
---|
645 | |
---|
646 | // texture |
---|
647 | |
---|
648 | /** encode coefficients |
---|
649 | * \param pcCU |
---|
650 | * \param uiAbsPartIdx |
---|
651 | * \param uiDepth |
---|
652 | * \param uiWidth |
---|
653 | * \param uiHeight |
---|
654 | */ |
---|
655 | Void TEncEntropy::encodeCoeff( TComDataCU* pcCU, UInt uiAbsPartIdx, UInt uiDepth, Bool& bCodeDQP, Bool& codeChromaQpAdj ) |
---|
656 | { |
---|
657 | #if ENVIRONMENT_VARIABLE_DEBUG_AND_TEST |
---|
658 | const Bool bDebugRQT=g_bFinalEncode && DebugOptionList::DebugRQT.getInt()!=0; |
---|
659 | #endif |
---|
660 | |
---|
661 | if( pcCU->isIntra(uiAbsPartIdx) ) |
---|
662 | { |
---|
663 | if (false) |
---|
664 | { |
---|
665 | DTRACE_CABAC_VL( g_nSymbolCounter++ ) |
---|
666 | DTRACE_CABAC_T( "\tdecodeTransformIdx()\tCUDepth=" ) |
---|
667 | DTRACE_CABAC_V( uiDepth ) |
---|
668 | DTRACE_CABAC_T( "\n" ) |
---|
669 | } |
---|
670 | } |
---|
671 | else |
---|
672 | { |
---|
673 | if( !(pcCU->getMergeFlag( uiAbsPartIdx ) && pcCU->getPartitionSize(uiAbsPartIdx) == SIZE_2Nx2N ) ) |
---|
674 | { |
---|
675 | m_pcEntropyCoderIf->codeQtRootCbf( pcCU, uiAbsPartIdx ); |
---|
676 | } |
---|
677 | if ( !pcCU->getQtRootCbf( uiAbsPartIdx ) ) |
---|
678 | { |
---|
679 | return; |
---|
680 | } |
---|
681 | } |
---|
682 | |
---|
683 | TComTURecurse tuRecurse(pcCU, uiAbsPartIdx, uiDepth); |
---|
684 | #if ENVIRONMENT_VARIABLE_DEBUG_AND_TEST |
---|
685 | if (bDebugRQT) printf("..codeCoeff: uiAbsPartIdx=%d, PU format=%d, 2Nx2N=%d, NxN=%d\n", uiAbsPartIdx, pcCU->getPartitionSize(uiAbsPartIdx), SIZE_2Nx2N, SIZE_NxN); |
---|
686 | #endif |
---|
687 | |
---|
688 | xEncodeTransform( bCodeDQP, codeChromaQpAdj, tuRecurse ); |
---|
689 | } |
---|
690 | |
---|
691 | Void TEncEntropy::encodeCoeffNxN( TComTU &rTu, TCoeff* pcCoef, const ComponentID compID) |
---|
692 | { |
---|
693 | TComDataCU *pcCU = rTu.getCU(); |
---|
694 | |
---|
695 | if (pcCU->getCbf(rTu.GetAbsPartIdxTU(), compID, rTu.GetTransformDepthRel()) != 0) |
---|
696 | { |
---|
697 | if (rTu.getRect(compID).width != rTu.getRect(compID).height) |
---|
698 | { |
---|
699 | //code two sub-TUs |
---|
700 | TComTURecurse subTUIterator(rTu, false, TComTU::VERTICAL_SPLIT, true, compID); |
---|
701 | |
---|
702 | const UInt subTUSize = subTUIterator.getRect(compID).width * subTUIterator.getRect(compID).height; |
---|
703 | |
---|
704 | do |
---|
705 | { |
---|
706 | const UChar subTUCBF = pcCU->getCbf(subTUIterator.GetAbsPartIdxTU(compID), compID, (subTUIterator.GetTransformDepthRel() + 1)); |
---|
707 | |
---|
708 | if (subTUCBF != 0) |
---|
709 | { |
---|
710 | m_pcEntropyCoderIf->codeCoeffNxN( subTUIterator, (pcCoef + (subTUIterator.GetSectionNumber() * subTUSize)), compID); |
---|
711 | } |
---|
712 | } |
---|
713 | while (subTUIterator.nextSection(rTu)); |
---|
714 | } |
---|
715 | else |
---|
716 | { |
---|
717 | m_pcEntropyCoderIf->codeCoeffNxN(rTu, pcCoef, compID); |
---|
718 | } |
---|
719 | } |
---|
720 | } |
---|
721 | |
---|
722 | Void TEncEntropy::estimateBit (estBitsSbacStruct* pcEstBitsSbac, Int width, Int height, const ChannelType chType) |
---|
723 | { |
---|
724 | const UInt heightAtEntropyCoding = (width != height) ? (height >> 1) : height; |
---|
725 | |
---|
726 | m_pcEntropyCoderIf->estBit ( pcEstBitsSbac, width, heightAtEntropyCoding, chType ); |
---|
727 | } |
---|
728 | |
---|
729 | Int TEncEntropy::countNonZeroCoeffs( TCoeff* pcCoef, UInt uiSize ) |
---|
730 | { |
---|
731 | Int count = 0; |
---|
732 | |
---|
733 | for ( Int i = 0; i < uiSize; i++ ) |
---|
734 | { |
---|
735 | count += pcCoef[i] != 0; |
---|
736 | } |
---|
737 | |
---|
738 | return count; |
---|
739 | } |
---|
740 | |
---|
741 | /** encode quantization matrix |
---|
742 | * \param scalingList quantization matrix information |
---|
743 | */ |
---|
744 | Void TEncEntropy::encodeScalingList( TComScalingList* scalingList ) |
---|
745 | { |
---|
746 | m_pcEntropyCoderIf->codeScalingList( scalingList ); |
---|
747 | } |
---|
748 | |
---|
749 | #if POC_RESET_IDC_SIGNALLING |
---|
750 | Void TEncEntropy::encodeSliceHeaderExtn( TComSlice* pSlice, Int shBitsWrittenTillNow ) |
---|
751 | { |
---|
752 | m_pcEntropyCoderIf->codeSliceHeaderExtn( pSlice, shBitsWrittenTillNow ); |
---|
753 | } |
---|
754 | #endif |
---|
755 | |
---|
756 | //! \} |
---|