VVC/JEM代码学习9:解码框架解析

       只简单写了几个最重要的几个函数,调用层次关系为1-->2-->3-->4-->5-->6-->7-->8-->9-->10-->11,其中最重要的解码函数是xDecompressCU,在此函数完成图像的解码。

1.mian()

  {

   cTAppDecTop.decode();

  }

2.Void TAppDecTop::decode()

  {

   m_cTDecTop.decode();

  }

3.Bool TDecTop::decode()

  {

    xDecodeSlice();

  }

4.Bool TDecTop::xDecodeSlice()

  {

   m_cGopDecoder.decompressSlice();

  }

5.Void TDecGop::decompressSlice

  {

   m_pcSliceDecoder->decompressSlice();

  }

6.Void TDecSlice::decompressSlice()

  {

   for( UInt ctuTsAddr = startCtuTsAddr; !isLastCtuOfSliceSegment && ctuTsAddr < numCtusInFrame; ctuTsAddr++)
   { //循环48次,和编码的时候一样,decode和decompress的顺序和compress和encode的顺序相反;

    m_pcCuDecoder->decodeCtu ();

    m_pcCuDecoder->decompressCtu ();

   }

 }

7.Void TDecCu::decompressCtu()

 {

   xDecompressCU();

   if (pCtu->getSlice()->isIntra())

   {

     xDecompressCU();

    }

 }

8.Void TDecCu::xDecompressCU()

 {

         for ( UInt uiPartIdx = 0; uiPartIdx < 4; uiPartIdx++ )//四叉树递归

          {

             xDecompressCU();

         }

       if (pCtu->getBTSplitModeForBTDepth(uiAbsPartIdx, uiBTDepth)==1)
       {
         for ( UInt uiPartUnitIdx = 0; uiPartUnitIdx < 2; uiPartUnitIdx++ )//二叉树水平递归
           {


             xDecompressCU();

           }

        }

      else if (pCtu->getBTSplitModeForBTDepth(uiAbsPartIdx, uiBTDepth)==2)//二叉树垂直递归
      {
       for ( UInt uiPartUnitIdx = 0; uiPartUnitIdx < 2; uiPartUnitIdx++ )
        {
         xDecompressCU( pCtu, uiAbsPartIdx, uiDepth, uiWidth>>1, uiHeight );
        }
      }

      switch( m_pppcCU[uiWidthIdx][uiHeightIdx]->getPredictionMode(0) )//根据对应的预测模式重建;
      {  
       case MODE_INTER:
          xDeriveCUMV( pCtu , uiAbsPartIdx , uiDepth );
          xReconInter( m_pppcCU[uiWidthIdx][uiHeightIdx], uiDepth );
       case MODE_INTRA:
          xReconIntraQT( m_pppcCU[uiWidthIdx][uiHeightIdx], uiDepth );

      }

}

9.TDecCu::xReconIntraQT()

  {

    do

    {

     xIntraRecQT();

     }while();

  }

10.TDecCu::xIntraRecQT()

    {

      xIntraRecBlk();

    }

11.TDecCu::xIntraRecBlk()

   {

     initIntraPatternChType(); //初始化可用的pattern;

     predIntraAng(); //计算预测值;

     m_pcTrQuant->invTransformNxN(); //反变换和反量化;

     pReco [ uiX ] = ClipA(pPred[ uiX ] + pResi[ uiX ], compID); //重建;

   }


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