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00028 #include "bit_depth_template.c"
00029 #include "libavutil/common.h"
00030 
00031 #ifndef AVCODEC_H264IDCT_INTERNAL_H
00032 #define AVCODEC_H264IDCT_INTERNAL_H
00033 
00034 static const uint8_t scan8[16*3]={
00035  4+ 1*8, 5+ 1*8, 4+ 2*8, 5+ 2*8,
00036  6+ 1*8, 7+ 1*8, 6+ 2*8, 7+ 2*8,
00037  4+ 3*8, 5+ 3*8, 4+ 4*8, 5+ 4*8,
00038  6+ 3*8, 7+ 3*8, 6+ 4*8, 7+ 4*8,
00039  4+ 6*8, 5+ 6*8, 4+ 7*8, 5+ 7*8,
00040  6+ 6*8, 7+ 6*8, 6+ 7*8, 7+ 7*8,
00041  4+ 8*8, 5+ 8*8, 4+ 9*8, 5+ 9*8,
00042  6+ 8*8, 7+ 8*8, 6+ 9*8, 7+ 9*8,
00043  4+11*8, 5+11*8, 4+12*8, 5+12*8,
00044  6+11*8, 7+11*8, 6+12*8, 7+12*8,
00045  4+13*8, 5+13*8, 4+14*8, 5+14*8,
00046  6+13*8, 7+13*8, 6+14*8, 7+14*8
00047 };
00048 #endif
00049 
00050 void FUNCC(ff_h264_idct_add)(uint8_t *_dst, DCTELEM *_block, int stride)
00051 {
00052     int i;
00053     pixel *dst = (pixel*)_dst;
00054     dctcoef *block = (dctcoef*)_block;
00055     stride >>= sizeof(pixel)-1;
00056 
00057     block[0] += 1 << 5;
00058 
00059     for(i=0; i<4; i++){
00060         const int z0=  block[i + 4*0]     +  block[i + 4*2];
00061         const int z1=  block[i + 4*0]     -  block[i + 4*2];
00062         const int z2= (block[i + 4*1]>>1) -  block[i + 4*3];
00063         const int z3=  block[i + 4*1]     + (block[i + 4*3]>>1);
00064 
00065         block[i + 4*0]= z0 + z3;
00066         block[i + 4*1]= z1 + z2;
00067         block[i + 4*2]= z1 - z2;
00068         block[i + 4*3]= z0 - z3;
00069     }
00070 
00071     for(i=0; i<4; i++){
00072         const int z0=  block[0 + 4*i]     +  block[2 + 4*i];
00073         const int z1=  block[0 + 4*i]     -  block[2 + 4*i];
00074         const int z2= (block[1 + 4*i]>>1) -  block[3 + 4*i];
00075         const int z3=  block[1 + 4*i]     + (block[3 + 4*i]>>1);
00076 
00077         dst[i + 0*stride]= av_clip_pixel(dst[i + 0*stride] + ((z0 + z3) >> 6));
00078         dst[i + 1*stride]= av_clip_pixel(dst[i + 1*stride] + ((z1 + z2) >> 6));
00079         dst[i + 2*stride]= av_clip_pixel(dst[i + 2*stride] + ((z1 - z2) >> 6));
00080         dst[i + 3*stride]= av_clip_pixel(dst[i + 3*stride] + ((z0 - z3) >> 6));
00081     }
00082 }
00083 
00084 void FUNCC(ff_h264_idct8_add)(uint8_t *_dst, DCTELEM *_block, int stride){
00085     int i;
00086     pixel *dst = (pixel*)_dst;
00087     dctcoef *block = (dctcoef*)_block;
00088     stride >>= sizeof(pixel)-1;
00089 
00090     block[0] += 32;
00091 
00092     for( i = 0; i < 8; i++ )
00093     {
00094         const int a0 =  block[i+0*8] + block[i+4*8];
00095         const int a2 =  block[i+0*8] - block[i+4*8];
00096         const int a4 = (block[i+2*8]>>1) - block[i+6*8];
00097         const int a6 = (block[i+6*8]>>1) + block[i+2*8];
00098 
00099         const int b0 = a0 + a6;
00100         const int b2 = a2 + a4;
00101         const int b4 = a2 - a4;
00102         const int b6 = a0 - a6;
00103 
00104         const int a1 = -block[i+3*8] + block[i+5*8] - block[i+7*8] - (block[i+7*8]>>1);
00105         const int a3 =  block[i+1*8] + block[i+7*8] - block[i+3*8] - (block[i+3*8]>>1);
00106         const int a5 = -block[i+1*8] + block[i+7*8] + block[i+5*8] + (block[i+5*8]>>1);
00107         const int a7 =  block[i+3*8] + block[i+5*8] + block[i+1*8] + (block[i+1*8]>>1);
00108 
00109         const int b1 = (a7>>2) + a1;
00110         const int b3 =  a3 + (a5>>2);
00111         const int b5 = (a3>>2) - a5;
00112         const int b7 =  a7 - (a1>>2);
00113 
00114         block[i+0*8] = b0 + b7;
00115         block[i+7*8] = b0 - b7;
00116         block[i+1*8] = b2 + b5;
00117         block[i+6*8] = b2 - b5;
00118         block[i+2*8] = b4 + b3;
00119         block[i+5*8] = b4 - b3;
00120         block[i+3*8] = b6 + b1;
00121         block[i+4*8] = b6 - b1;
00122     }
00123     for( i = 0; i < 8; i++ )
00124     {
00125         const int a0 =  block[0+i*8] + block[4+i*8];
00126         const int a2 =  block[0+i*8] - block[4+i*8];
00127         const int a4 = (block[2+i*8]>>1) - block[6+i*8];
00128         const int a6 = (block[6+i*8]>>1) + block[2+i*8];
00129 
00130         const int b0 = a0 + a6;
00131         const int b2 = a2 + a4;
00132         const int b4 = a2 - a4;
00133         const int b6 = a0 - a6;
00134 
00135         const int a1 = -block[3+i*8] + block[5+i*8] - block[7+i*8] - (block[7+i*8]>>1);
00136         const int a3 =  block[1+i*8] + block[7+i*8] - block[3+i*8] - (block[3+i*8]>>1);
00137         const int a5 = -block[1+i*8] + block[7+i*8] + block[5+i*8] + (block[5+i*8]>>1);
00138         const int a7 =  block[3+i*8] + block[5+i*8] + block[1+i*8] + (block[1+i*8]>>1);
00139 
00140         const int b1 = (a7>>2) + a1;
00141         const int b3 =  a3 + (a5>>2);
00142         const int b5 = (a3>>2) - a5;
00143         const int b7 =  a7 - (a1>>2);
00144 
00145         dst[i + 0*stride] = av_clip_pixel( dst[i + 0*stride] + ((b0 + b7) >> 6) );
00146         dst[i + 1*stride] = av_clip_pixel( dst[i + 1*stride] + ((b2 + b5) >> 6) );
00147         dst[i + 2*stride] = av_clip_pixel( dst[i + 2*stride] + ((b4 + b3) >> 6) );
00148         dst[i + 3*stride] = av_clip_pixel( dst[i + 3*stride] + ((b6 + b1) >> 6) );
00149         dst[i + 4*stride] = av_clip_pixel( dst[i + 4*stride] + ((b6 - b1) >> 6) );
00150         dst[i + 5*stride] = av_clip_pixel( dst[i + 5*stride] + ((b4 - b3) >> 6) );
00151         dst[i + 6*stride] = av_clip_pixel( dst[i + 6*stride] + ((b2 - b5) >> 6) );
00152         dst[i + 7*stride] = av_clip_pixel( dst[i + 7*stride] + ((b0 - b7) >> 6) );
00153     }
00154 }
00155 
00156 
00157 void FUNCC(ff_h264_idct_dc_add)(uint8_t *p_dst, DCTELEM *block, int stride){
00158     int i, j;
00159     int dc = (((dctcoef*)block)[0] + 32) >> 6;
00160     pixel *dst = (pixel*)p_dst;
00161     stride >>= sizeof(pixel)-1;
00162     for( j = 0; j < 4; j++ )
00163     {
00164         for( i = 0; i < 4; i++ )
00165             dst[i] = av_clip_pixel( dst[i] + dc );
00166         dst += stride;
00167     }
00168 }
00169 
00170 void FUNCC(ff_h264_idct8_dc_add)(uint8_t *p_dst, DCTELEM *block, int stride){
00171     int i, j;
00172     int dc = (((dctcoef*)block)[0] + 32) >> 6;
00173     pixel *dst = (pixel*)p_dst;
00174     stride >>= sizeof(pixel)-1;
00175     for( j = 0; j < 8; j++ )
00176     {
00177         for( i = 0; i < 8; i++ )
00178             dst[i] = av_clip_pixel( dst[i] + dc );
00179         dst += stride;
00180     }
00181 }
00182 
00183 void FUNCC(ff_h264_idct_add16)(uint8_t *dst, const int *block_offset, DCTELEM *block, int stride, const uint8_t nnzc[15*8]){
00184     int i;
00185     for(i=0; i<16; i++){
00186         int nnz = nnzc[ scan8[i] ];
00187         if(nnz){
00188             if(nnz==1 && ((dctcoef*)block)[i*16]) FUNCC(ff_h264_idct_dc_add)(dst + block_offset[i], block + i*16*sizeof(pixel), stride);
00189             else                                  FUNCC(ff_h264_idct_add   )(dst + block_offset[i], block + i*16*sizeof(pixel), stride);
00190         }
00191     }
00192 }
00193 
00194 void FUNCC(ff_h264_idct_add16intra)(uint8_t *dst, const int *block_offset, DCTELEM *block, int stride, const uint8_t nnzc[15*8]){
00195     int i;
00196     for(i=0; i<16; i++){
00197         if(nnzc[ scan8[i] ])             FUNCC(ff_h264_idct_add   )(dst + block_offset[i], block + i*16*sizeof(pixel), stride);
00198         else if(((dctcoef*)block)[i*16]) FUNCC(ff_h264_idct_dc_add)(dst + block_offset[i], block + i*16*sizeof(pixel), stride);
00199     }
00200 }
00201 
00202 void FUNCC(ff_h264_idct8_add4)(uint8_t *dst, const int *block_offset, DCTELEM *block, int stride, const uint8_t nnzc[15*8]){
00203     int i;
00204     for(i=0; i<16; i+=4){
00205         int nnz = nnzc[ scan8[i] ];
00206         if(nnz){
00207             if(nnz==1 && ((dctcoef*)block)[i*16]) FUNCC(ff_h264_idct8_dc_add)(dst + block_offset[i], block + i*16*sizeof(pixel), stride);
00208             else                                  FUNCC(ff_h264_idct8_add   )(dst + block_offset[i], block + i*16*sizeof(pixel), stride);
00209         }
00210     }
00211 }
00212 
00213 void FUNCC(ff_h264_idct_add8)(uint8_t **dest, const int *block_offset, DCTELEM *block, int stride, const uint8_t nnzc[15*8]){
00214     int i, j;
00215     for(j=1; j<3; j++){
00216         for(i=j*16; i<j*16+4; i++){
00217             if(nnzc[ scan8[i] ])
00218                 FUNCC(ff_h264_idct_add   )(dest[j-1] + block_offset[i], block + i*16*sizeof(pixel), stride);
00219             else if(((dctcoef*)block)[i*16])
00220                 FUNCC(ff_h264_idct_dc_add)(dest[j-1] + block_offset[i], block + i*16*sizeof(pixel), stride);
00221         }
00222     }
00223 }
00224 
00225 void FUNCC(ff_h264_idct_add8_422)(uint8_t **dest, const int *block_offset, DCTELEM *block, int stride, const uint8_t nnzc[15*8]){
00226     int i, j;
00227 
00228     for(j=1; j<3; j++){
00229         for(i=j*16; i<j*16+4; i++){
00230             if(nnzc[ scan8[i] ])
00231                 FUNCC(ff_h264_idct_add   )(dest[j-1] + block_offset[i], block + i*16*sizeof(pixel), stride);
00232             else if(((dctcoef*)block)[i*16])
00233                 FUNCC(ff_h264_idct_dc_add)(dest[j-1] + block_offset[i], block + i*16*sizeof(pixel), stride);
00234         }
00235     }
00236 
00237     for(j=1; j<3; j++){
00238         for(i=j*16+4; i<j*16+8; i++){
00239             if(nnzc[ scan8[i+4] ])
00240                 FUNCC(ff_h264_idct_add   )(dest[j-1] + block_offset[i+4], block + i*16*sizeof(pixel), stride);
00241             else if(((dctcoef*)block)[i*16])
00242                 FUNCC(ff_h264_idct_dc_add)(dest[j-1] + block_offset[i+4], block + i*16*sizeof(pixel), stride);
00243         }
00244     }
00245 }
00246 
00251 void FUNCC(ff_h264_luma_dc_dequant_idct)(DCTELEM *p_output, DCTELEM *p_input, int qmul){
00252 #define stride 16
00253     int i;
00254     int temp[16];
00255     static const uint8_t x_offset[4]={0, 2*stride, 8*stride, 10*stride};
00256     dctcoef *input = (dctcoef*)p_input;
00257     dctcoef *output = (dctcoef*)p_output;
00258 
00259     for(i=0; i<4; i++){
00260         const int z0= input[4*i+0] + input[4*i+1];
00261         const int z1= input[4*i+0] - input[4*i+1];
00262         const int z2= input[4*i+2] - input[4*i+3];
00263         const int z3= input[4*i+2] + input[4*i+3];
00264 
00265         temp[4*i+0]= z0+z3;
00266         temp[4*i+1]= z0-z3;
00267         temp[4*i+2]= z1-z2;
00268         temp[4*i+3]= z1+z2;
00269     }
00270 
00271     for(i=0; i<4; i++){
00272         const int offset= x_offset[i];
00273         const int z0= temp[4*0+i] + temp[4*2+i];
00274         const int z1= temp[4*0+i] - temp[4*2+i];
00275         const int z2= temp[4*1+i] - temp[4*3+i];
00276         const int z3= temp[4*1+i] + temp[4*3+i];
00277 
00278         output[stride* 0+offset]= ((((z0 + z3)*qmul + 128 ) >> 8));
00279         output[stride* 1+offset]= ((((z1 + z2)*qmul + 128 ) >> 8));
00280         output[stride* 4+offset]= ((((z1 - z2)*qmul + 128 ) >> 8));
00281         output[stride* 5+offset]= ((((z0 - z3)*qmul + 128 ) >> 8));
00282     }
00283 #undef stride
00284 }
00285 
00286 void FUNCC(ff_h264_chroma422_dc_dequant_idct)(DCTELEM *_block, int qmul){
00287     const int stride= 16*2;
00288     const int xStride= 16;
00289     int i;
00290     int temp[8];
00291     static const uint8_t x_offset[2]={0, 16};
00292     dctcoef *block = (dctcoef*)_block;
00293 
00294     for(i=0; i<4; i++){
00295         temp[2*i+0] = block[stride*i + xStride*0] + block[stride*i + xStride*1];
00296         temp[2*i+1] = block[stride*i + xStride*0] - block[stride*i + xStride*1];
00297     }
00298 
00299     for(i=0; i<2; i++){
00300         const int offset= x_offset[i];
00301         const int z0= temp[2*0+i] + temp[2*2+i];
00302         const int z1= temp[2*0+i] - temp[2*2+i];
00303         const int z2= temp[2*1+i] - temp[2*3+i];
00304         const int z3= temp[2*1+i] + temp[2*3+i];
00305 
00306         block[stride*0+offset]= ((z0 + z3)*qmul + 128) >> 8;
00307         block[stride*1+offset]= ((z1 + z2)*qmul + 128) >> 8;
00308         block[stride*2+offset]= ((z1 - z2)*qmul + 128) >> 8;
00309         block[stride*3+offset]= ((z0 - z3)*qmul + 128) >> 8;
00310     }
00311 }
00312 
00313 void FUNCC(ff_h264_chroma_dc_dequant_idct)(DCTELEM *_block, int qmul){
00314     const int stride= 16*2;
00315     const int xStride= 16;
00316     int a,b,c,d,e;
00317     dctcoef *block = (dctcoef*)_block;
00318 
00319     a= block[stride*0 + xStride*0];
00320     b= block[stride*0 + xStride*1];
00321     c= block[stride*1 + xStride*0];
00322     d= block[stride*1 + xStride*1];
00323 
00324     e= a-b;
00325     a= a+b;
00326     b= c-d;
00327     c= c+d;
00328 
00329     block[stride*0 + xStride*0]= ((a+c)*qmul) >> 7;
00330     block[stride*0 + xStride*1]= ((e+b)*qmul) >> 7;
00331     block[stride*1 + xStride*0]= ((a-c)*qmul) >> 7;
00332     block[stride*1 + xStride*1]= ((e-b)*qmul) >> 7;
00333 }