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  1. /*
  2. * H.26L/H.264/AVC/JVT/14496-10/... encoder/decoder
  3. * Copyright (c) 2003 Michael Niedermayer <michaelni@gmx.at>
  4. *
  5. * This file is part of FFmpeg.
  6. *
  7. * FFmpeg 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. * FFmpeg 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 FFmpeg; 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 / AVC / MPEG4 part10 prediction functions.
  24. * @author Michael Niedermayer <michaelni@gmx.at>
  25. */
  26. #include "libavutil/avassert.h"
  27. #include "h264pred.h"
  28. #define BIT_DEPTH 8
  29. #include "h264pred_template.c"
  30. #undef BIT_DEPTH
  31. #define BIT_DEPTH 9
  32. #include "h264pred_template.c"
  33. #undef BIT_DEPTH
  34. #define BIT_DEPTH 10
  35. #include "h264pred_template.c"
  36. #undef BIT_DEPTH
  37. #define BIT_DEPTH 12
  38. #include "h264pred_template.c"
  39. #undef BIT_DEPTH
  40. #define BIT_DEPTH 14
  41. #include "h264pred_template.c"
  42. #undef BIT_DEPTH
  43. static void pred4x4_vertical_vp8_c(uint8_t *src, const uint8_t *topright,
  44. ptrdiff_t stride)
  45. {
  46. const unsigned lt = src[-1-1*stride];
  47. LOAD_TOP_EDGE
  48. LOAD_TOP_RIGHT_EDGE
  49. uint32_t v = PACK_4U8((lt + 2*t0 + t1 + 2) >> 2,
  50. (t0 + 2*t1 + t2 + 2) >> 2,
  51. (t1 + 2*t2 + t3 + 2) >> 2,
  52. (t2 + 2*t3 + t4 + 2) >> 2);
  53. AV_WN32A(src+0*stride, v);
  54. AV_WN32A(src+1*stride, v);
  55. AV_WN32A(src+2*stride, v);
  56. AV_WN32A(src+3*stride, v);
  57. }
  58. static void pred4x4_horizontal_vp8_c(uint8_t *src, const uint8_t *topright,
  59. ptrdiff_t stride)
  60. {
  61. const unsigned lt = src[-1-1*stride];
  62. LOAD_LEFT_EDGE
  63. AV_WN32A(src+0*stride, ((lt + 2*l0 + l1 + 2) >> 2)*0x01010101);
  64. AV_WN32A(src+1*stride, ((l0 + 2*l1 + l2 + 2) >> 2)*0x01010101);
  65. AV_WN32A(src+2*stride, ((l1 + 2*l2 + l3 + 2) >> 2)*0x01010101);
  66. AV_WN32A(src+3*stride, ((l2 + 2*l3 + l3 + 2) >> 2)*0x01010101);
  67. }
  68. static void pred4x4_down_left_svq3_c(uint8_t *src, const uint8_t *topright,
  69. ptrdiff_t stride)
  70. {
  71. LOAD_TOP_EDGE
  72. LOAD_LEFT_EDGE
  73. src[0+0*stride]=(l1 + t1)>>1;
  74. src[1+0*stride]=
  75. src[0+1*stride]=(l2 + t2)>>1;
  76. src[2+0*stride]=
  77. src[1+1*stride]=
  78. src[0+2*stride]=
  79. src[3+0*stride]=
  80. src[2+1*stride]=
  81. src[1+2*stride]=
  82. src[0+3*stride]=
  83. src[3+1*stride]=
  84. src[2+2*stride]=
  85. src[1+3*stride]=
  86. src[3+2*stride]=
  87. src[2+3*stride]=
  88. src[3+3*stride]=(l3 + t3)>>1;
  89. }
  90. static void pred4x4_down_left_rv40_c(uint8_t *src, const uint8_t *topright,
  91. ptrdiff_t stride)
  92. {
  93. LOAD_TOP_EDGE
  94. LOAD_TOP_RIGHT_EDGE
  95. LOAD_LEFT_EDGE
  96. LOAD_DOWN_LEFT_EDGE
  97. src[0+0*stride]=(t0 + t2 + 2*t1 + 2 + l0 + l2 + 2*l1 + 2)>>3;
  98. src[1+0*stride]=
  99. src[0+1*stride]=(t1 + t3 + 2*t2 + 2 + l1 + l3 + 2*l2 + 2)>>3;
  100. src[2+0*stride]=
  101. src[1+1*stride]=
  102. src[0+2*stride]=(t2 + t4 + 2*t3 + 2 + l2 + l4 + 2*l3 + 2)>>3;
  103. src[3+0*stride]=
  104. src[2+1*stride]=
  105. src[1+2*stride]=
  106. src[0+3*stride]=(t3 + t5 + 2*t4 + 2 + l3 + l5 + 2*l4 + 2)>>3;
  107. src[3+1*stride]=
  108. src[2+2*stride]=
  109. src[1+3*stride]=(t4 + t6 + 2*t5 + 2 + l4 + l6 + 2*l5 + 2)>>3;
  110. src[3+2*stride]=
  111. src[2+3*stride]=(t5 + t7 + 2*t6 + 2 + l5 + l7 + 2*l6 + 2)>>3;
  112. src[3+3*stride]=(t6 + t7 + 1 + l6 + l7 + 1)>>2;
  113. }
  114. static void pred4x4_down_left_rv40_nodown_c(uint8_t *src,
  115. const uint8_t *topright,
  116. ptrdiff_t stride)
  117. {
  118. LOAD_TOP_EDGE
  119. LOAD_TOP_RIGHT_EDGE
  120. LOAD_LEFT_EDGE
  121. src[0+0*stride]=(t0 + t2 + 2*t1 + 2 + l0 + l2 + 2*l1 + 2)>>3;
  122. src[1+0*stride]=
  123. src[0+1*stride]=(t1 + t3 + 2*t2 + 2 + l1 + l3 + 2*l2 + 2)>>3;
  124. src[2+0*stride]=
  125. src[1+1*stride]=
  126. src[0+2*stride]=(t2 + t4 + 2*t3 + 2 + l2 + 3*l3 + 2)>>3;
  127. src[3+0*stride]=
  128. src[2+1*stride]=
  129. src[1+2*stride]=
  130. src[0+3*stride]=(t3 + t5 + 2*t4 + 2 + l3*4 + 2)>>3;
  131. src[3+1*stride]=
  132. src[2+2*stride]=
  133. src[1+3*stride]=(t4 + t6 + 2*t5 + 2 + l3*4 + 2)>>3;
  134. src[3+2*stride]=
  135. src[2+3*stride]=(t5 + t7 + 2*t6 + 2 + l3*4 + 2)>>3;
  136. src[3+3*stride]=(t6 + t7 + 1 + 2*l3 + 1)>>2;
  137. }
  138. static void pred4x4_vertical_left_rv40(uint8_t *src, const uint8_t *topright,
  139. ptrdiff_t stride,
  140. const int l0, const int l1, const int l2,
  141. const int l3, const int l4)
  142. {
  143. LOAD_TOP_EDGE
  144. LOAD_TOP_RIGHT_EDGE
  145. src[0+0*stride]=(2*t0 + 2*t1 + l1 + 2*l2 + l3 + 4)>>3;
  146. src[1+0*stride]=
  147. src[0+2*stride]=(t1 + t2 + 1)>>1;
  148. src[2+0*stride]=
  149. src[1+2*stride]=(t2 + t3 + 1)>>1;
  150. src[3+0*stride]=
  151. src[2+2*stride]=(t3 + t4+ 1)>>1;
  152. src[3+2*stride]=(t4 + t5+ 1)>>1;
  153. src[0+1*stride]=(t0 + 2*t1 + t2 + l2 + 2*l3 + l4 + 4)>>3;
  154. src[1+1*stride]=
  155. src[0+3*stride]=(t1 + 2*t2 + t3 + 2)>>2;
  156. src[2+1*stride]=
  157. src[1+3*stride]=(t2 + 2*t3 + t4 + 2)>>2;
  158. src[3+1*stride]=
  159. src[2+3*stride]=(t3 + 2*t4 + t5 + 2)>>2;
  160. src[3+3*stride]=(t4 + 2*t5 + t6 + 2)>>2;
  161. }
  162. static void pred4x4_vertical_left_rv40_c(uint8_t *src, const uint8_t *topright,
  163. ptrdiff_t stride)
  164. {
  165. LOAD_LEFT_EDGE
  166. LOAD_DOWN_LEFT_EDGE
  167. pred4x4_vertical_left_rv40(src, topright, stride, l0, l1, l2, l3, l4);
  168. }
  169. static void pred4x4_vertical_left_rv40_nodown_c(uint8_t *src,
  170. const uint8_t *topright,
  171. ptrdiff_t stride)
  172. {
  173. LOAD_LEFT_EDGE
  174. pred4x4_vertical_left_rv40(src, topright, stride, l0, l1, l2, l3, l3);
  175. }
  176. static void pred4x4_vertical_left_vp8_c(uint8_t *src, const uint8_t *topright,
  177. ptrdiff_t stride)
  178. {
  179. LOAD_TOP_EDGE
  180. LOAD_TOP_RIGHT_EDGE
  181. src[0+0*stride]=(t0 + t1 + 1)>>1;
  182. src[1+0*stride]=
  183. src[0+2*stride]=(t1 + t2 + 1)>>1;
  184. src[2+0*stride]=
  185. src[1+2*stride]=(t2 + t3 + 1)>>1;
  186. src[3+0*stride]=
  187. src[2+2*stride]=(t3 + t4 + 1)>>1;
  188. src[0+1*stride]=(t0 + 2*t1 + t2 + 2)>>2;
  189. src[1+1*stride]=
  190. src[0+3*stride]=(t1 + 2*t2 + t3 + 2)>>2;
  191. src[2+1*stride]=
  192. src[1+3*stride]=(t2 + 2*t3 + t4 + 2)>>2;
  193. src[3+1*stride]=
  194. src[2+3*stride]=(t3 + 2*t4 + t5 + 2)>>2;
  195. src[3+2*stride]=(t4 + 2*t5 + t6 + 2)>>2;
  196. src[3+3*stride]=(t5 + 2*t6 + t7 + 2)>>2;
  197. }
  198. static void pred4x4_horizontal_up_rv40_c(uint8_t *src, const uint8_t *topright,
  199. ptrdiff_t stride)
  200. {
  201. LOAD_LEFT_EDGE
  202. LOAD_DOWN_LEFT_EDGE
  203. LOAD_TOP_EDGE
  204. LOAD_TOP_RIGHT_EDGE
  205. src[0+0*stride]=(t1 + 2*t2 + t3 + 2*l0 + 2*l1 + 4)>>3;
  206. src[1+0*stride]=(t2 + 2*t3 + t4 + l0 + 2*l1 + l2 + 4)>>3;
  207. src[2+0*stride]=
  208. src[0+1*stride]=(t3 + 2*t4 + t5 + 2*l1 + 2*l2 + 4)>>3;
  209. src[3+0*stride]=
  210. src[1+1*stride]=(t4 + 2*t5 + t6 + l1 + 2*l2 + l3 + 4)>>3;
  211. src[2+1*stride]=
  212. src[0+2*stride]=(t5 + 2*t6 + t7 + 2*l2 + 2*l3 + 4)>>3;
  213. src[3+1*stride]=
  214. src[1+2*stride]=(t6 + 3*t7 + l2 + 3*l3 + 4)>>3;
  215. src[3+2*stride]=
  216. src[1+3*stride]=(l3 + 2*l4 + l5 + 2)>>2;
  217. src[0+3*stride]=
  218. src[2+2*stride]=(t6 + t7 + l3 + l4 + 2)>>2;
  219. src[2+3*stride]=(l4 + l5 + 1)>>1;
  220. src[3+3*stride]=(l4 + 2*l5 + l6 + 2)>>2;
  221. }
  222. static void pred4x4_horizontal_up_rv40_nodown_c(uint8_t *src,
  223. const uint8_t *topright,
  224. ptrdiff_t stride)
  225. {
  226. LOAD_LEFT_EDGE
  227. LOAD_TOP_EDGE
  228. LOAD_TOP_RIGHT_EDGE
  229. src[0+0*stride]=(t1 + 2*t2 + t3 + 2*l0 + 2*l1 + 4)>>3;
  230. src[1+0*stride]=(t2 + 2*t3 + t4 + l0 + 2*l1 + l2 + 4)>>3;
  231. src[2+0*stride]=
  232. src[0+1*stride]=(t3 + 2*t4 + t5 + 2*l1 + 2*l2 + 4)>>3;
  233. src[3+0*stride]=
  234. src[1+1*stride]=(t4 + 2*t5 + t6 + l1 + 2*l2 + l3 + 4)>>3;
  235. src[2+1*stride]=
  236. src[0+2*stride]=(t5 + 2*t6 + t7 + 2*l2 + 2*l3 + 4)>>3;
  237. src[3+1*stride]=
  238. src[1+2*stride]=(t6 + 3*t7 + l2 + 3*l3 + 4)>>3;
  239. src[3+2*stride]=
  240. src[1+3*stride]=l3;
  241. src[0+3*stride]=
  242. src[2+2*stride]=(t6 + t7 + 2*l3 + 2)>>2;
  243. src[2+3*stride]=
  244. src[3+3*stride]=l3;
  245. }
  246. static void pred4x4_tm_vp8_c(uint8_t *src, const uint8_t *topright,
  247. ptrdiff_t stride)
  248. {
  249. uint8_t *cm = ff_cropTbl + MAX_NEG_CROP - src[-1-stride];
  250. uint8_t *top = src-stride;
  251. int y;
  252. for (y = 0; y < 4; y++) {
  253. uint8_t *cm_in = cm + src[-1];
  254. src[0] = cm_in[top[0]];
  255. src[1] = cm_in[top[1]];
  256. src[2] = cm_in[top[2]];
  257. src[3] = cm_in[top[3]];
  258. src += stride;
  259. }
  260. }
  261. static void pred16x16_plane_svq3_c(uint8_t *src, ptrdiff_t stride)
  262. {
  263. pred16x16_plane_compat_8_c(src, stride, 1, 0);
  264. }
  265. static void pred16x16_plane_rv40_c(uint8_t *src, ptrdiff_t stride)
  266. {
  267. pred16x16_plane_compat_8_c(src, stride, 0, 1);
  268. }
  269. static void pred16x16_tm_vp8_c(uint8_t *src, ptrdiff_t stride)
  270. {
  271. uint8_t *cm = ff_cropTbl + MAX_NEG_CROP - src[-1-stride];
  272. uint8_t *top = src-stride;
  273. int y;
  274. for (y = 0; y < 16; y++) {
  275. uint8_t *cm_in = cm + src[-1];
  276. src[0] = cm_in[top[0]];
  277. src[1] = cm_in[top[1]];
  278. src[2] = cm_in[top[2]];
  279. src[3] = cm_in[top[3]];
  280. src[4] = cm_in[top[4]];
  281. src[5] = cm_in[top[5]];
  282. src[6] = cm_in[top[6]];
  283. src[7] = cm_in[top[7]];
  284. src[8] = cm_in[top[8]];
  285. src[9] = cm_in[top[9]];
  286. src[10] = cm_in[top[10]];
  287. src[11] = cm_in[top[11]];
  288. src[12] = cm_in[top[12]];
  289. src[13] = cm_in[top[13]];
  290. src[14] = cm_in[top[14]];
  291. src[15] = cm_in[top[15]];
  292. src += stride;
  293. }
  294. }
  295. static void pred8x8_left_dc_rv40_c(uint8_t *src, ptrdiff_t stride)
  296. {
  297. int i;
  298. unsigned dc0;
  299. dc0=0;
  300. for(i=0;i<8; i++)
  301. dc0+= src[-1+i*stride];
  302. dc0= 0x01010101*((dc0 + 4)>>3);
  303. for(i=0; i<8; i++){
  304. ((uint32_t*)(src+i*stride))[0]=
  305. ((uint32_t*)(src+i*stride))[1]= dc0;
  306. }
  307. }
  308. static void pred8x8_top_dc_rv40_c(uint8_t *src, ptrdiff_t stride)
  309. {
  310. int i;
  311. unsigned dc0;
  312. dc0=0;
  313. for(i=0;i<8; i++)
  314. dc0+= src[i-stride];
  315. dc0= 0x01010101*((dc0 + 4)>>3);
  316. for(i=0; i<8; i++){
  317. ((uint32_t*)(src+i*stride))[0]=
  318. ((uint32_t*)(src+i*stride))[1]= dc0;
  319. }
  320. }
  321. static void pred8x8_dc_rv40_c(uint8_t *src, ptrdiff_t stride)
  322. {
  323. int i;
  324. unsigned dc0 = 0;
  325. for(i=0;i<4; i++){
  326. dc0+= src[-1+i*stride] + src[i-stride];
  327. dc0+= src[4+i-stride];
  328. dc0+= src[-1+(i+4)*stride];
  329. }
  330. dc0= 0x01010101*((dc0 + 8)>>4);
  331. for(i=0; i<4; i++){
  332. ((uint32_t*)(src+i*stride))[0]= dc0;
  333. ((uint32_t*)(src+i*stride))[1]= dc0;
  334. }
  335. for(i=4; i<8; i++){
  336. ((uint32_t*)(src+i*stride))[0]= dc0;
  337. ((uint32_t*)(src+i*stride))[1]= dc0;
  338. }
  339. }
  340. static void pred8x8_tm_vp8_c(uint8_t *src, ptrdiff_t stride)
  341. {
  342. uint8_t *cm = ff_cropTbl + MAX_NEG_CROP - src[-1-stride];
  343. uint8_t *top = src-stride;
  344. int y;
  345. for (y = 0; y < 8; y++) {
  346. uint8_t *cm_in = cm + src[-1];
  347. src[0] = cm_in[top[0]];
  348. src[1] = cm_in[top[1]];
  349. src[2] = cm_in[top[2]];
  350. src[3] = cm_in[top[3]];
  351. src[4] = cm_in[top[4]];
  352. src[5] = cm_in[top[5]];
  353. src[6] = cm_in[top[6]];
  354. src[7] = cm_in[top[7]];
  355. src += stride;
  356. }
  357. }
  358. /**
  359. * Set the intra prediction function pointers.
  360. */
  361. void ff_h264_pred_init(H264PredContext *h, int codec_id, const int bit_depth,
  362. const int chroma_format_idc)
  363. {
  364. // MpegEncContext * const s = &h->s;
  365. #undef FUNC
  366. #undef FUNCC
  367. #define FUNC(a, depth) a ## _ ## depth
  368. #define FUNCC(a, depth) a ## _ ## depth ## _c
  369. #define FUNCD(a) a ## _c
  370. #define H264_PRED(depth) \
  371. if(codec_id != AV_CODEC_ID_RV40){\
  372. if(codec_id == AV_CODEC_ID_VP8) {\
  373. h->pred4x4[VERT_PRED ]= FUNCD(pred4x4_vertical_vp8);\
  374. h->pred4x4[HOR_PRED ]= FUNCD(pred4x4_horizontal_vp8);\
  375. } else {\
  376. h->pred4x4[VERT_PRED ]= FUNCC(pred4x4_vertical , depth);\
  377. h->pred4x4[HOR_PRED ]= FUNCC(pred4x4_horizontal , depth);\
  378. }\
  379. h->pred4x4[DC_PRED ]= FUNCC(pred4x4_dc , depth);\
  380. if(codec_id == AV_CODEC_ID_SVQ3)\
  381. h->pred4x4[DIAG_DOWN_LEFT_PRED ]= FUNCD(pred4x4_down_left_svq3);\
  382. else\
  383. h->pred4x4[DIAG_DOWN_LEFT_PRED ]= FUNCC(pred4x4_down_left , depth);\
  384. h->pred4x4[DIAG_DOWN_RIGHT_PRED]= FUNCC(pred4x4_down_right , depth);\
  385. h->pred4x4[VERT_RIGHT_PRED ]= FUNCC(pred4x4_vertical_right , depth);\
  386. h->pred4x4[HOR_DOWN_PRED ]= FUNCC(pred4x4_horizontal_down , depth);\
  387. if (codec_id == AV_CODEC_ID_VP8) {\
  388. h->pred4x4[VERT_LEFT_PRED ]= FUNCD(pred4x4_vertical_left_vp8);\
  389. } else\
  390. h->pred4x4[VERT_LEFT_PRED ]= FUNCC(pred4x4_vertical_left , depth);\
  391. h->pred4x4[HOR_UP_PRED ]= FUNCC(pred4x4_horizontal_up , depth);\
  392. if(codec_id != AV_CODEC_ID_VP8) {\
  393. h->pred4x4[LEFT_DC_PRED ]= FUNCC(pred4x4_left_dc , depth);\
  394. h->pred4x4[TOP_DC_PRED ]= FUNCC(pred4x4_top_dc , depth);\
  395. h->pred4x4[DC_128_PRED ]= FUNCC(pred4x4_128_dc , depth);\
  396. } else {\
  397. h->pred4x4[TM_VP8_PRED ]= FUNCD(pred4x4_tm_vp8);\
  398. h->pred4x4[DC_127_PRED ]= FUNCC(pred4x4_127_dc , depth);\
  399. h->pred4x4[DC_129_PRED ]= FUNCC(pred4x4_129_dc , depth);\
  400. h->pred4x4[VERT_VP8_PRED ]= FUNCC(pred4x4_vertical , depth);\
  401. h->pred4x4[HOR_VP8_PRED ]= FUNCC(pred4x4_horizontal , depth);\
  402. }\
  403. }else{\
  404. h->pred4x4[VERT_PRED ]= FUNCC(pred4x4_vertical , depth);\
  405. h->pred4x4[HOR_PRED ]= FUNCC(pred4x4_horizontal , depth);\
  406. h->pred4x4[DC_PRED ]= FUNCC(pred4x4_dc , depth);\
  407. h->pred4x4[DIAG_DOWN_LEFT_PRED ]= FUNCD(pred4x4_down_left_rv40);\
  408. h->pred4x4[DIAG_DOWN_RIGHT_PRED]= FUNCC(pred4x4_down_right , depth);\
  409. h->pred4x4[VERT_RIGHT_PRED ]= FUNCC(pred4x4_vertical_right , depth);\
  410. h->pred4x4[HOR_DOWN_PRED ]= FUNCC(pred4x4_horizontal_down , depth);\
  411. h->pred4x4[VERT_LEFT_PRED ]= FUNCD(pred4x4_vertical_left_rv40);\
  412. h->pred4x4[HOR_UP_PRED ]= FUNCD(pred4x4_horizontal_up_rv40);\
  413. h->pred4x4[LEFT_DC_PRED ]= FUNCC(pred4x4_left_dc , depth);\
  414. h->pred4x4[TOP_DC_PRED ]= FUNCC(pred4x4_top_dc , depth);\
  415. h->pred4x4[DC_128_PRED ]= FUNCC(pred4x4_128_dc , depth);\
  416. h->pred4x4[DIAG_DOWN_LEFT_PRED_RV40_NODOWN]= FUNCD(pred4x4_down_left_rv40_nodown);\
  417. h->pred4x4[HOR_UP_PRED_RV40_NODOWN]= FUNCD(pred4x4_horizontal_up_rv40_nodown);\
  418. h->pred4x4[VERT_LEFT_PRED_RV40_NODOWN]= FUNCD(pred4x4_vertical_left_rv40_nodown);\
  419. }\
  420. \
  421. h->pred8x8l[VERT_PRED ]= FUNCC(pred8x8l_vertical , depth);\
  422. h->pred8x8l[HOR_PRED ]= FUNCC(pred8x8l_horizontal , depth);\
  423. h->pred8x8l[DC_PRED ]= FUNCC(pred8x8l_dc , depth);\
  424. h->pred8x8l[DIAG_DOWN_LEFT_PRED ]= FUNCC(pred8x8l_down_left , depth);\
  425. h->pred8x8l[DIAG_DOWN_RIGHT_PRED]= FUNCC(pred8x8l_down_right , depth);\
  426. h->pred8x8l[VERT_RIGHT_PRED ]= FUNCC(pred8x8l_vertical_right , depth);\
  427. h->pred8x8l[HOR_DOWN_PRED ]= FUNCC(pred8x8l_horizontal_down , depth);\
  428. h->pred8x8l[VERT_LEFT_PRED ]= FUNCC(pred8x8l_vertical_left , depth);\
  429. h->pred8x8l[HOR_UP_PRED ]= FUNCC(pred8x8l_horizontal_up , depth);\
  430. h->pred8x8l[LEFT_DC_PRED ]= FUNCC(pred8x8l_left_dc , depth);\
  431. h->pred8x8l[TOP_DC_PRED ]= FUNCC(pred8x8l_top_dc , depth);\
  432. h->pred8x8l[DC_128_PRED ]= FUNCC(pred8x8l_128_dc , depth);\
  433. \
  434. if (chroma_format_idc == 1) {\
  435. h->pred8x8[VERT_PRED8x8 ]= FUNCC(pred8x8_vertical , depth);\
  436. h->pred8x8[HOR_PRED8x8 ]= FUNCC(pred8x8_horizontal , depth);\
  437. } else {\
  438. h->pred8x8[VERT_PRED8x8 ]= FUNCC(pred8x16_vertical , depth);\
  439. h->pred8x8[HOR_PRED8x8 ]= FUNCC(pred8x16_horizontal , depth);\
  440. }\
  441. if (codec_id != AV_CODEC_ID_VP8) {\
  442. if (chroma_format_idc == 1) {\
  443. h->pred8x8[PLANE_PRED8x8]= FUNCC(pred8x8_plane , depth);\
  444. } else {\
  445. h->pred8x8[PLANE_PRED8x8]= FUNCC(pred8x16_plane , depth);\
  446. }\
  447. } else\
  448. h->pred8x8[PLANE_PRED8x8]= FUNCD(pred8x8_tm_vp8);\
  449. if(codec_id != AV_CODEC_ID_RV40 && codec_id != AV_CODEC_ID_VP8){\
  450. if (chroma_format_idc == 1) {\
  451. h->pred8x8[DC_PRED8x8 ]= FUNCC(pred8x8_dc , depth);\
  452. h->pred8x8[LEFT_DC_PRED8x8]= FUNCC(pred8x8_left_dc , depth);\
  453. h->pred8x8[TOP_DC_PRED8x8 ]= FUNCC(pred8x8_top_dc , depth);\
  454. h->pred8x8[ALZHEIMER_DC_L0T_PRED8x8 ]= FUNC(pred8x8_mad_cow_dc_l0t, depth);\
  455. h->pred8x8[ALZHEIMER_DC_0LT_PRED8x8 ]= FUNC(pred8x8_mad_cow_dc_0lt, depth);\
  456. h->pred8x8[ALZHEIMER_DC_L00_PRED8x8 ]= FUNC(pred8x8_mad_cow_dc_l00, depth);\
  457. h->pred8x8[ALZHEIMER_DC_0L0_PRED8x8 ]= FUNC(pred8x8_mad_cow_dc_0l0, depth);\
  458. } else {\
  459. h->pred8x8[DC_PRED8x8 ]= FUNCC(pred8x16_dc , depth);\
  460. h->pred8x8[LEFT_DC_PRED8x8]= FUNCC(pred8x16_left_dc , depth);\
  461. h->pred8x8[TOP_DC_PRED8x8 ]= FUNCC(pred8x16_top_dc , depth);\
  462. h->pred8x8[ALZHEIMER_DC_L0T_PRED8x8 ]= FUNC(pred8x16_mad_cow_dc_l0t, depth);\
  463. h->pred8x8[ALZHEIMER_DC_0LT_PRED8x8 ]= FUNC(pred8x16_mad_cow_dc_0lt, depth);\
  464. h->pred8x8[ALZHEIMER_DC_L00_PRED8x8 ]= FUNC(pred8x16_mad_cow_dc_l00, depth);\
  465. h->pred8x8[ALZHEIMER_DC_0L0_PRED8x8 ]= FUNC(pred8x16_mad_cow_dc_0l0, depth);\
  466. }\
  467. }else{\
  468. h->pred8x8[DC_PRED8x8 ]= FUNCD(pred8x8_dc_rv40);\
  469. h->pred8x8[LEFT_DC_PRED8x8]= FUNCD(pred8x8_left_dc_rv40);\
  470. h->pred8x8[TOP_DC_PRED8x8 ]= FUNCD(pred8x8_top_dc_rv40);\
  471. if (codec_id == AV_CODEC_ID_VP8) {\
  472. h->pred8x8[DC_127_PRED8x8]= FUNCC(pred8x8_127_dc , depth);\
  473. h->pred8x8[DC_129_PRED8x8]= FUNCC(pred8x8_129_dc , depth);\
  474. }\
  475. }\
  476. if (chroma_format_idc == 1) {\
  477. h->pred8x8[DC_128_PRED8x8 ]= FUNCC(pred8x8_128_dc , depth);\
  478. } else {\
  479. h->pred8x8[DC_128_PRED8x8 ]= FUNCC(pred8x16_128_dc , depth);\
  480. }\
  481. \
  482. h->pred16x16[DC_PRED8x8 ]= FUNCC(pred16x16_dc , depth);\
  483. h->pred16x16[VERT_PRED8x8 ]= FUNCC(pred16x16_vertical , depth);\
  484. h->pred16x16[HOR_PRED8x8 ]= FUNCC(pred16x16_horizontal , depth);\
  485. switch(codec_id){\
  486. case AV_CODEC_ID_SVQ3:\
  487. h->pred16x16[PLANE_PRED8x8 ]= FUNCD(pred16x16_plane_svq3);\
  488. break;\
  489. case AV_CODEC_ID_RV40:\
  490. h->pred16x16[PLANE_PRED8x8 ]= FUNCD(pred16x16_plane_rv40);\
  491. break;\
  492. case AV_CODEC_ID_VP8:\
  493. h->pred16x16[PLANE_PRED8x8 ]= FUNCD(pred16x16_tm_vp8);\
  494. h->pred16x16[DC_127_PRED8x8]= FUNCC(pred16x16_127_dc , depth);\
  495. h->pred16x16[DC_129_PRED8x8]= FUNCC(pred16x16_129_dc , depth);\
  496. break;\
  497. default:\
  498. h->pred16x16[PLANE_PRED8x8 ]= FUNCC(pred16x16_plane , depth);\
  499. break;\
  500. }\
  501. h->pred16x16[LEFT_DC_PRED8x8]= FUNCC(pred16x16_left_dc , depth);\
  502. h->pred16x16[TOP_DC_PRED8x8 ]= FUNCC(pred16x16_top_dc , depth);\
  503. h->pred16x16[DC_128_PRED8x8 ]= FUNCC(pred16x16_128_dc , depth);\
  504. \
  505. /* special lossless h/v prediction for h264 */ \
  506. h->pred4x4_add [VERT_PRED ]= FUNCC(pred4x4_vertical_add , depth);\
  507. h->pred4x4_add [ HOR_PRED ]= FUNCC(pred4x4_horizontal_add , depth);\
  508. h->pred8x8l_add [VERT_PRED ]= FUNCC(pred8x8l_vertical_add , depth);\
  509. h->pred8x8l_add [ HOR_PRED ]= FUNCC(pred8x8l_horizontal_add , depth);\
  510. if (chroma_format_idc == 1) {\
  511. h->pred8x8_add [VERT_PRED8x8]= FUNCC(pred8x8_vertical_add , depth);\
  512. h->pred8x8_add [ HOR_PRED8x8]= FUNCC(pred8x8_horizontal_add , depth);\
  513. } else {\
  514. h->pred8x8_add [VERT_PRED8x8]= FUNCC(pred8x16_vertical_add , depth);\
  515. h->pred8x8_add [ HOR_PRED8x8]= FUNCC(pred8x16_horizontal_add , depth);\
  516. }\
  517. h->pred16x16_add[VERT_PRED8x8]= FUNCC(pred16x16_vertical_add , depth);\
  518. h->pred16x16_add[ HOR_PRED8x8]= FUNCC(pred16x16_horizontal_add , depth);\
  519. switch (bit_depth) {
  520. case 9:
  521. H264_PRED(9)
  522. break;
  523. case 10:
  524. H264_PRED(10)
  525. break;
  526. case 12:
  527. H264_PRED(12)
  528. break;
  529. case 14:
  530. H264_PRED(14)
  531. break;
  532. default:
  533. av_assert0(bit_depth<=8);
  534. H264_PRED(8)
  535. break;
  536. }
  537. if (ARCH_ARM) ff_h264_pred_init_arm(h, codec_id, bit_depth, chroma_format_idc);
  538. if (ARCH_X86) ff_h264_pred_init_x86(h, codec_id, bit_depth, chroma_format_idc);
  539. }