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  1. /*
  2. * H.264 IDCT
  3. * Copyright (c) 2004-2011 Michael Niedermayer <michaelni@gmx.at>
  4. *
  5. * This file is part of Libav.
  6. *
  7. * Libav is free software; you can redistribute it and/or
  8. * modify it under the terms of the GNU Lesser General Public
  9. * License as published by the Free Software Foundation; either
  10. * version 2.1 of the License, or (at your option) any later version.
  11. *
  12. * Libav is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  15. * Lesser General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU Lesser General Public
  18. * License along with Libav; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  20. */
  21. /**
  22. * @file
  23. * H.264 IDCT.
  24. * @author Michael Niedermayer <michaelni@gmx.at>
  25. */
  26. #include "bit_depth_template.c"
  27. #include "libavutil/common.h"
  28. #include "h264.h"
  29. void FUNCC(ff_h264_idct_add)(uint8_t *_dst, int16_t *_block, int stride)
  30. {
  31. int i;
  32. pixel *dst = (pixel*)_dst;
  33. dctcoef *block = (dctcoef*)_block;
  34. stride /= sizeof(pixel);
  35. block[0] += 1 << 5;
  36. for(i=0; i<4; i++){
  37. const int z0= block[i + 4*0] + block[i + 4*2];
  38. const int z1= block[i + 4*0] - block[i + 4*2];
  39. const int z2= (block[i + 4*1]>>1) - block[i + 4*3];
  40. const int z3= block[i + 4*1] + (block[i + 4*3]>>1);
  41. block[i + 4*0]= z0 + z3;
  42. block[i + 4*1]= z1 + z2;
  43. block[i + 4*2]= z1 - z2;
  44. block[i + 4*3]= z0 - z3;
  45. }
  46. for(i=0; i<4; i++){
  47. const int z0= block[0 + 4*i] + block[2 + 4*i];
  48. const int z1= block[0 + 4*i] - block[2 + 4*i];
  49. const int z2= (block[1 + 4*i]>>1) - block[3 + 4*i];
  50. const int z3= block[1 + 4*i] + (block[3 + 4*i]>>1);
  51. dst[i + 0*stride]= av_clip_pixel(dst[i + 0*stride] + ((z0 + z3) >> 6));
  52. dst[i + 1*stride]= av_clip_pixel(dst[i + 1*stride] + ((z1 + z2) >> 6));
  53. dst[i + 2*stride]= av_clip_pixel(dst[i + 2*stride] + ((z1 - z2) >> 6));
  54. dst[i + 3*stride]= av_clip_pixel(dst[i + 3*stride] + ((z0 - z3) >> 6));
  55. }
  56. }
  57. void FUNCC(ff_h264_idct8_add)(uint8_t *_dst, int16_t *_block, int stride){
  58. int i;
  59. pixel *dst = (pixel*)_dst;
  60. dctcoef *block = (dctcoef*)_block;
  61. stride /= sizeof(pixel);
  62. block[0] += 32;
  63. for( i = 0; i < 8; i++ )
  64. {
  65. const int a0 = block[i+0*8] + block[i+4*8];
  66. const int a2 = block[i+0*8] - block[i+4*8];
  67. const int a4 = (block[i+2*8]>>1) - block[i+6*8];
  68. const int a6 = (block[i+6*8]>>1) + block[i+2*8];
  69. const int b0 = a0 + a6;
  70. const int b2 = a2 + a4;
  71. const int b4 = a2 - a4;
  72. const int b6 = a0 - a6;
  73. const int a1 = -block[i+3*8] + block[i+5*8] - block[i+7*8] - (block[i+7*8]>>1);
  74. const int a3 = block[i+1*8] + block[i+7*8] - block[i+3*8] - (block[i+3*8]>>1);
  75. const int a5 = -block[i+1*8] + block[i+7*8] + block[i+5*8] + (block[i+5*8]>>1);
  76. const int a7 = block[i+3*8] + block[i+5*8] + block[i+1*8] + (block[i+1*8]>>1);
  77. const int b1 = (a7>>2) + a1;
  78. const int b3 = a3 + (a5>>2);
  79. const int b5 = (a3>>2) - a5;
  80. const int b7 = a7 - (a1>>2);
  81. block[i+0*8] = b0 + b7;
  82. block[i+7*8] = b0 - b7;
  83. block[i+1*8] = b2 + b5;
  84. block[i+6*8] = b2 - b5;
  85. block[i+2*8] = b4 + b3;
  86. block[i+5*8] = b4 - b3;
  87. block[i+3*8] = b6 + b1;
  88. block[i+4*8] = b6 - b1;
  89. }
  90. for( i = 0; i < 8; i++ )
  91. {
  92. const int a0 = block[0+i*8] + block[4+i*8];
  93. const int a2 = block[0+i*8] - block[4+i*8];
  94. const int a4 = (block[2+i*8]>>1) - block[6+i*8];
  95. const int a6 = (block[6+i*8]>>1) + block[2+i*8];
  96. const int b0 = a0 + a6;
  97. const int b2 = a2 + a4;
  98. const int b4 = a2 - a4;
  99. const int b6 = a0 - a6;
  100. const int a1 = -block[3+i*8] + block[5+i*8] - block[7+i*8] - (block[7+i*8]>>1);
  101. const int a3 = block[1+i*8] + block[7+i*8] - block[3+i*8] - (block[3+i*8]>>1);
  102. const int a5 = -block[1+i*8] + block[7+i*8] + block[5+i*8] + (block[5+i*8]>>1);
  103. const int a7 = block[3+i*8] + block[5+i*8] + block[1+i*8] + (block[1+i*8]>>1);
  104. const int b1 = (a7>>2) + a1;
  105. const int b3 = a3 + (a5>>2);
  106. const int b5 = (a3>>2) - a5;
  107. const int b7 = a7 - (a1>>2);
  108. dst[i + 0*stride] = av_clip_pixel( dst[i + 0*stride] + ((b0 + b7) >> 6) );
  109. dst[i + 1*stride] = av_clip_pixel( dst[i + 1*stride] + ((b2 + b5) >> 6) );
  110. dst[i + 2*stride] = av_clip_pixel( dst[i + 2*stride] + ((b4 + b3) >> 6) );
  111. dst[i + 3*stride] = av_clip_pixel( dst[i + 3*stride] + ((b6 + b1) >> 6) );
  112. dst[i + 4*stride] = av_clip_pixel( dst[i + 4*stride] + ((b6 - b1) >> 6) );
  113. dst[i + 5*stride] = av_clip_pixel( dst[i + 5*stride] + ((b4 - b3) >> 6) );
  114. dst[i + 6*stride] = av_clip_pixel( dst[i + 6*stride] + ((b2 - b5) >> 6) );
  115. dst[i + 7*stride] = av_clip_pixel( dst[i + 7*stride] + ((b0 - b7) >> 6) );
  116. }
  117. }
  118. // assumes all AC coefs are 0
  119. void FUNCC(ff_h264_idct_dc_add)(uint8_t *_dst, int16_t *block, int stride){
  120. int i, j;
  121. int dc = (((dctcoef*)block)[0] + 32) >> 6;
  122. pixel *dst = (pixel*)_dst;
  123. stride /= sizeof(pixel);
  124. for( j = 0; j < 4; j++ )
  125. {
  126. for( i = 0; i < 4; i++ )
  127. dst[i] = av_clip_pixel( dst[i] + dc );
  128. dst += stride;
  129. }
  130. }
  131. void FUNCC(ff_h264_idct8_dc_add)(uint8_t *_dst, int16_t *block, int stride){
  132. int i, j;
  133. int dc = (((dctcoef*)block)[0] + 32) >> 6;
  134. pixel *dst = (pixel*)_dst;
  135. stride /= sizeof(pixel);
  136. for( j = 0; j < 8; j++ )
  137. {
  138. for( i = 0; i < 8; i++ )
  139. dst[i] = av_clip_pixel( dst[i] + dc );
  140. dst += stride;
  141. }
  142. }
  143. void FUNCC(ff_h264_idct_add16)(uint8_t *dst, const int *block_offset, int16_t *block, int stride, const uint8_t nnzc[15*8]){
  144. int i;
  145. for(i=0; i<16; i++){
  146. int nnz = nnzc[ scan8[i] ];
  147. if(nnz){
  148. if(nnz==1 && ((dctcoef*)block)[i*16]) FUNCC(ff_h264_idct_dc_add)(dst + block_offset[i], block + i*16*sizeof(pixel), stride);
  149. else FUNCC(ff_h264_idct_add )(dst + block_offset[i], block + i*16*sizeof(pixel), stride);
  150. }
  151. }
  152. }
  153. void FUNCC(ff_h264_idct_add16intra)(uint8_t *dst, const int *block_offset, int16_t *block, int stride, const uint8_t nnzc[15*8]){
  154. int i;
  155. for(i=0; i<16; i++){
  156. if(nnzc[ scan8[i] ]) FUNCC(ff_h264_idct_add )(dst + block_offset[i], block + i*16*sizeof(pixel), stride);
  157. else if(((dctcoef*)block)[i*16]) FUNCC(ff_h264_idct_dc_add)(dst + block_offset[i], block + i*16*sizeof(pixel), stride);
  158. }
  159. }
  160. void FUNCC(ff_h264_idct8_add4)(uint8_t *dst, const int *block_offset, int16_t *block, int stride, const uint8_t nnzc[15*8]){
  161. int i;
  162. for(i=0; i<16; i+=4){
  163. int nnz = nnzc[ scan8[i] ];
  164. if(nnz){
  165. if(nnz==1 && ((dctcoef*)block)[i*16]) FUNCC(ff_h264_idct8_dc_add)(dst + block_offset[i], block + i*16*sizeof(pixel), stride);
  166. else FUNCC(ff_h264_idct8_add )(dst + block_offset[i], block + i*16*sizeof(pixel), stride);
  167. }
  168. }
  169. }
  170. void FUNCC(ff_h264_idct_add8)(uint8_t **dest, const int *block_offset, int16_t *block, int stride, const uint8_t nnzc[15*8]){
  171. int i, j;
  172. for(j=1; j<3; j++){
  173. for(i=j*16; i<j*16+4; i++){
  174. if(nnzc[ scan8[i] ])
  175. FUNCC(ff_h264_idct_add )(dest[j-1] + block_offset[i], block + i*16*sizeof(pixel), stride);
  176. else if(((dctcoef*)block)[i*16])
  177. FUNCC(ff_h264_idct_dc_add)(dest[j-1] + block_offset[i], block + i*16*sizeof(pixel), stride);
  178. }
  179. }
  180. }
  181. void FUNCC(ff_h264_idct_add8_422)(uint8_t **dest, const int *block_offset, int16_t *block, int stride, const uint8_t nnzc[15*8]){
  182. int i, j;
  183. for(j=1; j<3; j++){
  184. for(i=j*16; i<j*16+4; i++){
  185. if(nnzc[ scan8[i] ])
  186. FUNCC(ff_h264_idct_add )(dest[j-1] + block_offset[i], block + i*16*sizeof(pixel), stride);
  187. else if(((dctcoef*)block)[i*16])
  188. FUNCC(ff_h264_idct_dc_add)(dest[j-1] + block_offset[i], block + i*16*sizeof(pixel), stride);
  189. }
  190. }
  191. for(j=1; j<3; j++){
  192. for(i=j*16+4; i<j*16+8; i++){
  193. if(nnzc[ scan8[i+4] ])
  194. FUNCC(ff_h264_idct_add )(dest[j-1] + block_offset[i+4], block + i*16*sizeof(pixel), stride);
  195. else if(((dctcoef*)block)[i*16])
  196. FUNCC(ff_h264_idct_dc_add)(dest[j-1] + block_offset[i+4], block + i*16*sizeof(pixel), stride);
  197. }
  198. }
  199. }
  200. /**
  201. * IDCT transforms the 16 dc values and dequantizes them.
  202. * @param qmul quantization parameter
  203. */
  204. void FUNCC(ff_h264_luma_dc_dequant_idct)(int16_t *_output, int16_t *_input, int qmul){
  205. #define stride 16
  206. int i;
  207. int temp[16];
  208. static const uint8_t x_offset[4]={0, 2*stride, 8*stride, 10*stride};
  209. dctcoef *input = (dctcoef*)_input;
  210. dctcoef *output = (dctcoef*)_output;
  211. for(i=0; i<4; i++){
  212. const int z0= input[4*i+0] + input[4*i+1];
  213. const int z1= input[4*i+0] - input[4*i+1];
  214. const int z2= input[4*i+2] - input[4*i+3];
  215. const int z3= input[4*i+2] + input[4*i+3];
  216. temp[4*i+0]= z0+z3;
  217. temp[4*i+1]= z0-z3;
  218. temp[4*i+2]= z1-z2;
  219. temp[4*i+3]= z1+z2;
  220. }
  221. for(i=0; i<4; i++){
  222. const int offset= x_offset[i];
  223. const int z0= temp[4*0+i] + temp[4*2+i];
  224. const int z1= temp[4*0+i] - temp[4*2+i];
  225. const int z2= temp[4*1+i] - temp[4*3+i];
  226. const int z3= temp[4*1+i] + temp[4*3+i];
  227. output[stride* 0+offset]= ((((z0 + z3)*qmul + 128 ) >> 8));
  228. output[stride* 1+offset]= ((((z1 + z2)*qmul + 128 ) >> 8));
  229. output[stride* 4+offset]= ((((z1 - z2)*qmul + 128 ) >> 8));
  230. output[stride* 5+offset]= ((((z0 - z3)*qmul + 128 ) >> 8));
  231. }
  232. #undef stride
  233. }
  234. void FUNCC(ff_h264_chroma422_dc_dequant_idct)(int16_t *_block, int qmul){
  235. const int stride= 16*2;
  236. const int xStride= 16;
  237. int i;
  238. int temp[8];
  239. static const uint8_t x_offset[2]={0, 16};
  240. dctcoef *block = (dctcoef*)_block;
  241. for(i=0; i<4; i++){
  242. temp[2*i+0] = block[stride*i + xStride*0] + block[stride*i + xStride*1];
  243. temp[2*i+1] = block[stride*i + xStride*0] - block[stride*i + xStride*1];
  244. }
  245. for(i=0; i<2; i++){
  246. const int offset= x_offset[i];
  247. const int z0= temp[2*0+i] + temp[2*2+i];
  248. const int z1= temp[2*0+i] - temp[2*2+i];
  249. const int z2= temp[2*1+i] - temp[2*3+i];
  250. const int z3= temp[2*1+i] + temp[2*3+i];
  251. block[stride*0+offset]= ((z0 + z3)*qmul + 128) >> 8;
  252. block[stride*1+offset]= ((z1 + z2)*qmul + 128) >> 8;
  253. block[stride*2+offset]= ((z1 - z2)*qmul + 128) >> 8;
  254. block[stride*3+offset]= ((z0 - z3)*qmul + 128) >> 8;
  255. }
  256. }
  257. void FUNCC(ff_h264_chroma_dc_dequant_idct)(int16_t *_block, int qmul){
  258. const int stride= 16*2;
  259. const int xStride= 16;
  260. int a,b,c,d,e;
  261. dctcoef *block = (dctcoef*)_block;
  262. a= block[stride*0 + xStride*0];
  263. b= block[stride*0 + xStride*1];
  264. c= block[stride*1 + xStride*0];
  265. d= block[stride*1 + xStride*1];
  266. e= a-b;
  267. a= a+b;
  268. b= c-d;
  269. c= c+d;
  270. block[stride*0 + xStride*0]= ((a+c)*qmul) >> 7;
  271. block[stride*0 + xStride*1]= ((e+b)*qmul) >> 7;
  272. block[stride*1 + xStride*0]= ((a-c)*qmul) >> 7;
  273. block[stride*1 + xStride*1]= ((e-b)*qmul) >> 7;
  274. }