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  1. /*
  2. * RV40 decoder motion compensation functions
  3. * Copyright (c) 2008 Konstantin Shishkov
  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. * RV40 decoder motion compensation functions
  24. */
  25. #include "libavutil/common.h"
  26. #include "libavutil/intreadwrite.h"
  27. #include "avcodec.h"
  28. #include "h264qpel.h"
  29. #include "mathops.h"
  30. #include "pixels.h"
  31. #include "rnd_avg.h"
  32. #include "rv34dsp.h"
  33. #include "libavutil/avassert.h"
  34. #define RV40_LOWPASS(OPNAME, OP) \
  35. static av_unused void OPNAME ## rv40_qpel8_h_lowpass(uint8_t *dst, uint8_t *src, int dstStride, int srcStride,\
  36. const int h, const int C1, const int C2, const int SHIFT){\
  37. const uint8_t *cm = ff_crop_tab + MAX_NEG_CROP;\
  38. int i;\
  39. for(i = 0; i < h; i++)\
  40. {\
  41. OP(dst[0], (src[-2] + src[ 3] - 5*(src[-1]+src[2]) + src[0]*C1 + src[1]*C2 + (1<<(SHIFT-1))) >> SHIFT);\
  42. OP(dst[1], (src[-1] + src[ 4] - 5*(src[ 0]+src[3]) + src[1]*C1 + src[2]*C2 + (1<<(SHIFT-1))) >> SHIFT);\
  43. OP(dst[2], (src[ 0] + src[ 5] - 5*(src[ 1]+src[4]) + src[2]*C1 + src[3]*C2 + (1<<(SHIFT-1))) >> SHIFT);\
  44. OP(dst[3], (src[ 1] + src[ 6] - 5*(src[ 2]+src[5]) + src[3]*C1 + src[4]*C2 + (1<<(SHIFT-1))) >> SHIFT);\
  45. OP(dst[4], (src[ 2] + src[ 7] - 5*(src[ 3]+src[6]) + src[4]*C1 + src[5]*C2 + (1<<(SHIFT-1))) >> SHIFT);\
  46. OP(dst[5], (src[ 3] + src[ 8] - 5*(src[ 4]+src[7]) + src[5]*C1 + src[6]*C2 + (1<<(SHIFT-1))) >> SHIFT);\
  47. OP(dst[6], (src[ 4] + src[ 9] - 5*(src[ 5]+src[8]) + src[6]*C1 + src[7]*C2 + (1<<(SHIFT-1))) >> SHIFT);\
  48. OP(dst[7], (src[ 5] + src[10] - 5*(src[ 6]+src[9]) + src[7]*C1 + src[8]*C2 + (1<<(SHIFT-1))) >> SHIFT);\
  49. dst += dstStride;\
  50. src += srcStride;\
  51. }\
  52. }\
  53. \
  54. static void OPNAME ## rv40_qpel8_v_lowpass(uint8_t *dst, uint8_t *src, int dstStride, int srcStride,\
  55. const int w, const int C1, const int C2, const int SHIFT){\
  56. const uint8_t *cm = ff_crop_tab + MAX_NEG_CROP;\
  57. int i;\
  58. for(i = 0; i < w; i++)\
  59. {\
  60. const int srcB = src[-2*srcStride];\
  61. const int srcA = src[-1*srcStride];\
  62. const int src0 = src[0 *srcStride];\
  63. const int src1 = src[1 *srcStride];\
  64. const int src2 = src[2 *srcStride];\
  65. const int src3 = src[3 *srcStride];\
  66. const int src4 = src[4 *srcStride];\
  67. const int src5 = src[5 *srcStride];\
  68. const int src6 = src[6 *srcStride];\
  69. const int src7 = src[7 *srcStride];\
  70. const int src8 = src[8 *srcStride];\
  71. const int src9 = src[9 *srcStride];\
  72. const int src10 = src[10*srcStride];\
  73. OP(dst[0*dstStride], (srcB + src3 - 5*(srcA+src2) + src0*C1 + src1*C2 + (1<<(SHIFT-1))) >> SHIFT);\
  74. OP(dst[1*dstStride], (srcA + src4 - 5*(src0+src3) + src1*C1 + src2*C2 + (1<<(SHIFT-1))) >> SHIFT);\
  75. OP(dst[2*dstStride], (src0 + src5 - 5*(src1+src4) + src2*C1 + src3*C2 + (1<<(SHIFT-1))) >> SHIFT);\
  76. OP(dst[3*dstStride], (src1 + src6 - 5*(src2+src5) + src3*C1 + src4*C2 + (1<<(SHIFT-1))) >> SHIFT);\
  77. OP(dst[4*dstStride], (src2 + src7 - 5*(src3+src6) + src4*C1 + src5*C2 + (1<<(SHIFT-1))) >> SHIFT);\
  78. OP(dst[5*dstStride], (src3 + src8 - 5*(src4+src7) + src5*C1 + src6*C2 + (1<<(SHIFT-1))) >> SHIFT);\
  79. OP(dst[6*dstStride], (src4 + src9 - 5*(src5+src8) + src6*C1 + src7*C2 + (1<<(SHIFT-1))) >> SHIFT);\
  80. OP(dst[7*dstStride], (src5 + src10 - 5*(src6+src9) + src7*C1 + src8*C2 + (1<<(SHIFT-1))) >> SHIFT);\
  81. dst++;\
  82. src++;\
  83. }\
  84. }\
  85. \
  86. static void OPNAME ## rv40_qpel16_v_lowpass(uint8_t *dst, uint8_t *src, int dstStride, int srcStride,\
  87. const int w, const int C1, const int C2, const int SHIFT){\
  88. OPNAME ## rv40_qpel8_v_lowpass(dst , src , dstStride, srcStride, 8, C1, C2, SHIFT);\
  89. OPNAME ## rv40_qpel8_v_lowpass(dst+8, src+8, dstStride, srcStride, 8, C1, C2, SHIFT);\
  90. src += 8*srcStride;\
  91. dst += 8*dstStride;\
  92. OPNAME ## rv40_qpel8_v_lowpass(dst , src , dstStride, srcStride, w-8, C1, C2, SHIFT);\
  93. OPNAME ## rv40_qpel8_v_lowpass(dst+8, src+8, dstStride, srcStride, w-8, C1, C2, SHIFT);\
  94. }\
  95. \
  96. static void OPNAME ## rv40_qpel16_h_lowpass(uint8_t *dst, uint8_t *src, int dstStride, int srcStride,\
  97. const int h, const int C1, const int C2, const int SHIFT){\
  98. OPNAME ## rv40_qpel8_h_lowpass(dst , src , dstStride, srcStride, 8, C1, C2, SHIFT);\
  99. OPNAME ## rv40_qpel8_h_lowpass(dst+8, src+8, dstStride, srcStride, 8, C1, C2, SHIFT);\
  100. src += 8*srcStride;\
  101. dst += 8*dstStride;\
  102. OPNAME ## rv40_qpel8_h_lowpass(dst , src , dstStride, srcStride, h-8, C1, C2, SHIFT);\
  103. OPNAME ## rv40_qpel8_h_lowpass(dst+8, src+8, dstStride, srcStride, h-8, C1, C2, SHIFT);\
  104. }\
  105. \
  106. #define RV40_MC(OPNAME, SIZE) \
  107. static void OPNAME ## rv40_qpel ## SIZE ## _mc10_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)\
  108. {\
  109. OPNAME ## rv40_qpel ## SIZE ## _h_lowpass(dst, src, stride, stride, SIZE, 52, 20, 6);\
  110. }\
  111. \
  112. static void OPNAME ## rv40_qpel ## SIZE ## _mc30_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)\
  113. {\
  114. OPNAME ## rv40_qpel ## SIZE ## _h_lowpass(dst, src, stride, stride, SIZE, 20, 52, 6);\
  115. }\
  116. \
  117. static void OPNAME ## rv40_qpel ## SIZE ## _mc01_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)\
  118. {\
  119. OPNAME ## rv40_qpel ## SIZE ## _v_lowpass(dst, src, stride, stride, SIZE, 52, 20, 6);\
  120. }\
  121. \
  122. static void OPNAME ## rv40_qpel ## SIZE ## _mc11_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)\
  123. {\
  124. uint8_t full[SIZE*(SIZE+5)];\
  125. uint8_t * const full_mid = full + SIZE*2;\
  126. put_rv40_qpel ## SIZE ## _h_lowpass(full, src - 2*stride, SIZE, stride, SIZE+5, 52, 20, 6);\
  127. OPNAME ## rv40_qpel ## SIZE ## _v_lowpass(dst, full_mid, stride, SIZE, SIZE, 52, 20, 6);\
  128. }\
  129. \
  130. static void OPNAME ## rv40_qpel ## SIZE ## _mc21_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)\
  131. {\
  132. uint8_t full[SIZE*(SIZE+5)];\
  133. uint8_t * const full_mid = full + SIZE*2;\
  134. put_rv40_qpel ## SIZE ## _h_lowpass(full, src - 2*stride, SIZE, stride, SIZE+5, 20, 20, 5);\
  135. OPNAME ## rv40_qpel ## SIZE ## _v_lowpass(dst, full_mid, stride, SIZE, SIZE, 52, 20, 6);\
  136. }\
  137. \
  138. static void OPNAME ## rv40_qpel ## SIZE ## _mc31_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)\
  139. {\
  140. uint8_t full[SIZE*(SIZE+5)];\
  141. uint8_t * const full_mid = full + SIZE*2;\
  142. put_rv40_qpel ## SIZE ## _h_lowpass(full, src - 2*stride, SIZE, stride, SIZE+5, 20, 52, 6);\
  143. OPNAME ## rv40_qpel ## SIZE ## _v_lowpass(dst, full_mid, stride, SIZE, SIZE, 52, 20, 6);\
  144. }\
  145. \
  146. static void OPNAME ## rv40_qpel ## SIZE ## _mc12_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)\
  147. {\
  148. uint8_t full[SIZE*(SIZE+5)];\
  149. uint8_t * const full_mid = full + SIZE*2;\
  150. put_rv40_qpel ## SIZE ## _h_lowpass(full, src - 2*stride, SIZE, stride, SIZE+5, 52, 20, 6);\
  151. OPNAME ## rv40_qpel ## SIZE ## _v_lowpass(dst, full_mid, stride, SIZE, SIZE, 20, 20, 5);\
  152. }\
  153. \
  154. static void OPNAME ## rv40_qpel ## SIZE ## _mc22_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)\
  155. {\
  156. uint8_t full[SIZE*(SIZE+5)];\
  157. uint8_t * const full_mid = full + SIZE*2;\
  158. put_rv40_qpel ## SIZE ## _h_lowpass(full, src - 2*stride, SIZE, stride, SIZE+5, 20, 20, 5);\
  159. OPNAME ## rv40_qpel ## SIZE ## _v_lowpass(dst, full_mid, stride, SIZE, SIZE, 20, 20, 5);\
  160. }\
  161. \
  162. static void OPNAME ## rv40_qpel ## SIZE ## _mc32_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)\
  163. {\
  164. uint8_t full[SIZE*(SIZE+5)];\
  165. uint8_t * const full_mid = full + SIZE*2;\
  166. put_rv40_qpel ## SIZE ## _h_lowpass(full, src - 2*stride, SIZE, stride, SIZE+5, 20, 52, 6);\
  167. OPNAME ## rv40_qpel ## SIZE ## _v_lowpass(dst, full_mid, stride, SIZE, SIZE, 20, 20, 5);\
  168. }\
  169. \
  170. static void OPNAME ## rv40_qpel ## SIZE ## _mc03_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)\
  171. {\
  172. OPNAME ## rv40_qpel ## SIZE ## _v_lowpass(dst, src, stride, stride, SIZE, 20, 52, 6);\
  173. }\
  174. \
  175. static void OPNAME ## rv40_qpel ## SIZE ## _mc13_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)\
  176. {\
  177. uint8_t full[SIZE*(SIZE+5)];\
  178. uint8_t * const full_mid = full + SIZE*2;\
  179. put_rv40_qpel ## SIZE ## _h_lowpass(full, src - 2*stride, SIZE, stride, SIZE+5, 52, 20, 6);\
  180. OPNAME ## rv40_qpel ## SIZE ## _v_lowpass(dst, full_mid, stride, SIZE, SIZE, 20, 52, 6);\
  181. }\
  182. \
  183. static void OPNAME ## rv40_qpel ## SIZE ## _mc23_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)\
  184. {\
  185. uint8_t full[SIZE*(SIZE+5)];\
  186. uint8_t * const full_mid = full + SIZE*2;\
  187. put_rv40_qpel ## SIZE ## _h_lowpass(full, src - 2*stride, SIZE, stride, SIZE+5, 20, 20, 5);\
  188. OPNAME ## rv40_qpel ## SIZE ## _v_lowpass(dst, full_mid, stride, SIZE, SIZE, 20, 52, 6);\
  189. }\
  190. \
  191. #define op_avg(a, b) a = (((a)+cm[b]+1)>>1)
  192. #define op_put(a, b) a = cm[b]
  193. RV40_LOWPASS(put_ , op_put)
  194. RV40_LOWPASS(avg_ , op_avg)
  195. #undef op_avg
  196. #undef op_put
  197. RV40_MC(put_, 8)
  198. RV40_MC(put_, 16)
  199. RV40_MC(avg_, 8)
  200. RV40_MC(avg_, 16)
  201. #define PIXOP2(OPNAME, OP) \
  202. static inline void OPNAME ## _pixels8_xy2_8_c(uint8_t *block, \
  203. const uint8_t *pixels, \
  204. ptrdiff_t line_size, \
  205. int h) \
  206. { \
  207. /* FIXME HIGH BIT DEPTH */ \
  208. int j; \
  209. \
  210. for (j = 0; j < 2; j++) { \
  211. int i; \
  212. const uint32_t a = AV_RN32(pixels); \
  213. const uint32_t b = AV_RN32(pixels + 1); \
  214. uint32_t l0 = (a & 0x03030303UL) + \
  215. (b & 0x03030303UL) + \
  216. 0x02020202UL; \
  217. uint32_t h0 = ((a & 0xFCFCFCFCUL) >> 2) + \
  218. ((b & 0xFCFCFCFCUL) >> 2); \
  219. uint32_t l1, h1; \
  220. \
  221. pixels += line_size; \
  222. for (i = 0; i < h; i += 2) { \
  223. uint32_t a = AV_RN32(pixels); \
  224. uint32_t b = AV_RN32(pixels + 1); \
  225. l1 = (a & 0x03030303UL) + \
  226. (b & 0x03030303UL); \
  227. h1 = ((a & 0xFCFCFCFCUL) >> 2) + \
  228. ((b & 0xFCFCFCFCUL) >> 2); \
  229. OP(*((uint32_t *) block), \
  230. h0 + h1 + (((l0 + l1) >> 2) & 0x0F0F0F0FUL)); \
  231. pixels += line_size; \
  232. block += line_size; \
  233. a = AV_RN32(pixels); \
  234. b = AV_RN32(pixels + 1); \
  235. l0 = (a & 0x03030303UL) + \
  236. (b & 0x03030303UL) + \
  237. 0x02020202UL; \
  238. h0 = ((a & 0xFCFCFCFCUL) >> 2) + \
  239. ((b & 0xFCFCFCFCUL) >> 2); \
  240. OP(*((uint32_t *) block), \
  241. h0 + h1 + (((l0 + l1) >> 2) & 0x0F0F0F0FUL)); \
  242. pixels += line_size; \
  243. block += line_size; \
  244. } \
  245. pixels += 4 - line_size * (h + 1); \
  246. block += 4 - line_size * h; \
  247. } \
  248. } \
  249. \
  250. CALL_2X_PIXELS(OPNAME ## _pixels16_xy2_8_c, \
  251. OPNAME ## _pixels8_xy2_8_c, \
  252. 8) \
  253. #define op_avg(a, b) a = rnd_avg32(a, b)
  254. #define op_put(a, b) a = b
  255. PIXOP2(avg, op_avg)
  256. PIXOP2(put, op_put)
  257. #undef op_avg
  258. #undef op_put
  259. static void put_rv40_qpel16_mc33_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)
  260. {
  261. put_pixels16_xy2_8_c(dst, src, stride, 16);
  262. }
  263. static void avg_rv40_qpel16_mc33_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)
  264. {
  265. avg_pixels16_xy2_8_c(dst, src, stride, 16);
  266. }
  267. static void put_rv40_qpel8_mc33_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)
  268. {
  269. put_pixels8_xy2_8_c(dst, src, stride, 8);
  270. }
  271. static void avg_rv40_qpel8_mc33_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)
  272. {
  273. avg_pixels8_xy2_8_c(dst, src, stride, 8);
  274. }
  275. static const int rv40_bias[4][4] = {
  276. { 0, 16, 32, 16 },
  277. { 32, 28, 32, 28 },
  278. { 0, 32, 16, 32 },
  279. { 32, 28, 32, 28 }
  280. };
  281. #define RV40_CHROMA_MC(OPNAME, OP)\
  282. static void OPNAME ## rv40_chroma_mc4_c(uint8_t *dst/*align 8*/, uint8_t *src/*align 1*/, int stride, int h, int x, int y){\
  283. const int A = (8-x) * (8-y);\
  284. const int B = ( x) * (8-y);\
  285. const int C = (8-x) * ( y);\
  286. const int D = ( x) * ( y);\
  287. int i;\
  288. int bias = rv40_bias[y>>1][x>>1];\
  289. \
  290. av_assert2(x<8 && y<8 && x>=0 && y>=0);\
  291. \
  292. if(D){\
  293. for(i = 0; i < h; i++){\
  294. OP(dst[0], (A*src[0] + B*src[1] + C*src[stride+0] + D*src[stride+1] + bias));\
  295. OP(dst[1], (A*src[1] + B*src[2] + C*src[stride+1] + D*src[stride+2] + bias));\
  296. OP(dst[2], (A*src[2] + B*src[3] + C*src[stride+2] + D*src[stride+3] + bias));\
  297. OP(dst[3], (A*src[3] + B*src[4] + C*src[stride+3] + D*src[stride+4] + bias));\
  298. dst += stride;\
  299. src += stride;\
  300. }\
  301. }else{\
  302. const int E = B + C;\
  303. const int step = C ? stride : 1;\
  304. for(i = 0; i < h; i++){\
  305. OP(dst[0], (A*src[0] + E*src[step+0] + bias));\
  306. OP(dst[1], (A*src[1] + E*src[step+1] + bias));\
  307. OP(dst[2], (A*src[2] + E*src[step+2] + bias));\
  308. OP(dst[3], (A*src[3] + E*src[step+3] + bias));\
  309. dst += stride;\
  310. src += stride;\
  311. }\
  312. }\
  313. }\
  314. \
  315. static void OPNAME ## rv40_chroma_mc8_c(uint8_t *dst/*align 8*/, uint8_t *src/*align 1*/, int stride, int h, int x, int y){\
  316. const int A = (8-x) * (8-y);\
  317. const int B = ( x) * (8-y);\
  318. const int C = (8-x) * ( y);\
  319. const int D = ( x) * ( y);\
  320. int i;\
  321. int bias = rv40_bias[y>>1][x>>1];\
  322. \
  323. av_assert2(x<8 && y<8 && x>=0 && y>=0);\
  324. \
  325. if(D){\
  326. for(i = 0; i < h; i++){\
  327. OP(dst[0], (A*src[0] + B*src[1] + C*src[stride+0] + D*src[stride+1] + bias));\
  328. OP(dst[1], (A*src[1] + B*src[2] + C*src[stride+1] + D*src[stride+2] + bias));\
  329. OP(dst[2], (A*src[2] + B*src[3] + C*src[stride+2] + D*src[stride+3] + bias));\
  330. OP(dst[3], (A*src[3] + B*src[4] + C*src[stride+3] + D*src[stride+4] + bias));\
  331. OP(dst[4], (A*src[4] + B*src[5] + C*src[stride+4] + D*src[stride+5] + bias));\
  332. OP(dst[5], (A*src[5] + B*src[6] + C*src[stride+5] + D*src[stride+6] + bias));\
  333. OP(dst[6], (A*src[6] + B*src[7] + C*src[stride+6] + D*src[stride+7] + bias));\
  334. OP(dst[7], (A*src[7] + B*src[8] + C*src[stride+7] + D*src[stride+8] + bias));\
  335. dst += stride;\
  336. src += stride;\
  337. }\
  338. }else{\
  339. const int E = B + C;\
  340. const int step = C ? stride : 1;\
  341. for(i = 0; i < h; i++){\
  342. OP(dst[0], (A*src[0] + E*src[step+0] + bias));\
  343. OP(dst[1], (A*src[1] + E*src[step+1] + bias));\
  344. OP(dst[2], (A*src[2] + E*src[step+2] + bias));\
  345. OP(dst[3], (A*src[3] + E*src[step+3] + bias));\
  346. OP(dst[4], (A*src[4] + E*src[step+4] + bias));\
  347. OP(dst[5], (A*src[5] + E*src[step+5] + bias));\
  348. OP(dst[6], (A*src[6] + E*src[step+6] + bias));\
  349. OP(dst[7], (A*src[7] + E*src[step+7] + bias));\
  350. dst += stride;\
  351. src += stride;\
  352. }\
  353. }\
  354. }
  355. #define op_avg(a, b) a = (((a)+((b)>>6)+1)>>1)
  356. #define op_put(a, b) a = ((b)>>6)
  357. RV40_CHROMA_MC(put_, op_put)
  358. RV40_CHROMA_MC(avg_, op_avg)
  359. #define RV40_WEIGHT_FUNC(size) \
  360. static void rv40_weight_func_rnd_ ## size (uint8_t *dst, uint8_t *src1, uint8_t *src2, int w1, int w2, ptrdiff_t stride)\
  361. {\
  362. int i, j;\
  363. \
  364. for (j = 0; j < size; j++) {\
  365. for (i = 0; i < size; i++)\
  366. dst[i] = (((w2 * src1[i]) >> 9) + ((w1 * src2[i]) >> 9) + 0x10) >> 5;\
  367. src1 += stride;\
  368. src2 += stride;\
  369. dst += stride;\
  370. }\
  371. }\
  372. static void rv40_weight_func_nornd_ ## size (uint8_t *dst, uint8_t *src1, uint8_t *src2, int w1, int w2, ptrdiff_t stride)\
  373. {\
  374. int i, j;\
  375. \
  376. for (j = 0; j < size; j++) {\
  377. for (i = 0; i < size; i++)\
  378. dst[i] = (w2 * src1[i] + w1 * src2[i] + 0x10) >> 5;\
  379. src1 += stride;\
  380. src2 += stride;\
  381. dst += stride;\
  382. }\
  383. }
  384. RV40_WEIGHT_FUNC(16)
  385. RV40_WEIGHT_FUNC(8)
  386. /**
  387. * dither values for deblocking filter - left/top values
  388. */
  389. static const uint8_t rv40_dither_l[16] = {
  390. 0x40, 0x50, 0x20, 0x60, 0x30, 0x50, 0x40, 0x30,
  391. 0x50, 0x40, 0x50, 0x30, 0x60, 0x20, 0x50, 0x40
  392. };
  393. /**
  394. * dither values for deblocking filter - right/bottom values
  395. */
  396. static const uint8_t rv40_dither_r[16] = {
  397. 0x40, 0x30, 0x60, 0x20, 0x50, 0x30, 0x30, 0x40,
  398. 0x40, 0x40, 0x50, 0x30, 0x20, 0x60, 0x30, 0x40
  399. };
  400. #define CLIP_SYMM(a, b) av_clip(a, -(b), b)
  401. /**
  402. * weaker deblocking very similar to the one described in 4.4.2 of JVT-A003r1
  403. */
  404. static av_always_inline void rv40_weak_loop_filter(uint8_t *src,
  405. const int step,
  406. const ptrdiff_t stride,
  407. const int filter_p1,
  408. const int filter_q1,
  409. const int alpha,
  410. const int beta,
  411. const int lim_p0q0,
  412. const int lim_q1,
  413. const int lim_p1)
  414. {
  415. const uint8_t *cm = ff_crop_tab + MAX_NEG_CROP;
  416. int i, t, u, diff;
  417. for (i = 0; i < 4; i++, src += stride) {
  418. int diff_p1p0 = src[-2*step] - src[-1*step];
  419. int diff_q1q0 = src[ 1*step] - src[ 0*step];
  420. int diff_p1p2 = src[-2*step] - src[-3*step];
  421. int diff_q1q2 = src[ 1*step] - src[ 2*step];
  422. t = src[0*step] - src[-1*step];
  423. if (!t)
  424. continue;
  425. u = (alpha * FFABS(t)) >> 7;
  426. if (u > 3 - (filter_p1 && filter_q1))
  427. continue;
  428. t <<= 2;
  429. if (filter_p1 && filter_q1)
  430. t += src[-2*step] - src[1*step];
  431. diff = CLIP_SYMM((t + 4) >> 3, lim_p0q0);
  432. src[-1*step] = cm[src[-1*step] + diff];
  433. src[ 0*step] = cm[src[ 0*step] - diff];
  434. if (filter_p1 && FFABS(diff_p1p2) <= beta) {
  435. t = (diff_p1p0 + diff_p1p2 - diff) >> 1;
  436. src[-2*step] = cm[src[-2*step] - CLIP_SYMM(t, lim_p1)];
  437. }
  438. if (filter_q1 && FFABS(diff_q1q2) <= beta) {
  439. t = (diff_q1q0 + diff_q1q2 + diff) >> 1;
  440. src[ 1*step] = cm[src[ 1*step] - CLIP_SYMM(t, lim_q1)];
  441. }
  442. }
  443. }
  444. static void rv40_h_weak_loop_filter(uint8_t *src, const ptrdiff_t stride,
  445. const int filter_p1, const int filter_q1,
  446. const int alpha, const int beta,
  447. const int lim_p0q0, const int lim_q1,
  448. const int lim_p1)
  449. {
  450. rv40_weak_loop_filter(src, stride, 1, filter_p1, filter_q1,
  451. alpha, beta, lim_p0q0, lim_q1, lim_p1);
  452. }
  453. static void rv40_v_weak_loop_filter(uint8_t *src, const ptrdiff_t stride,
  454. const int filter_p1, const int filter_q1,
  455. const int alpha, const int beta,
  456. const int lim_p0q0, const int lim_q1,
  457. const int lim_p1)
  458. {
  459. rv40_weak_loop_filter(src, 1, stride, filter_p1, filter_q1,
  460. alpha, beta, lim_p0q0, lim_q1, lim_p1);
  461. }
  462. static av_always_inline void rv40_strong_loop_filter(uint8_t *src,
  463. const int step,
  464. const ptrdiff_t stride,
  465. const int alpha,
  466. const int lims,
  467. const int dmode,
  468. const int chroma)
  469. {
  470. int i;
  471. for(i = 0; i < 4; i++, src += stride){
  472. int sflag, p0, q0, p1, q1;
  473. int t = src[0*step] - src[-1*step];
  474. if (!t)
  475. continue;
  476. sflag = (alpha * FFABS(t)) >> 7;
  477. if (sflag > 1)
  478. continue;
  479. p0 = (25*src[-3*step] + 26*src[-2*step] + 26*src[-1*step] +
  480. 26*src[ 0*step] + 25*src[ 1*step] +
  481. rv40_dither_l[dmode + i]) >> 7;
  482. q0 = (25*src[-2*step] + 26*src[-1*step] + 26*src[ 0*step] +
  483. 26*src[ 1*step] + 25*src[ 2*step] +
  484. rv40_dither_r[dmode + i]) >> 7;
  485. if (sflag) {
  486. p0 = av_clip(p0, src[-1*step] - lims, src[-1*step] + lims);
  487. q0 = av_clip(q0, src[ 0*step] - lims, src[ 0*step] + lims);
  488. }
  489. p1 = (25*src[-4*step] + 26*src[-3*step] + 26*src[-2*step] + 26*p0 +
  490. 25*src[ 0*step] + rv40_dither_l[dmode + i]) >> 7;
  491. q1 = (25*src[-1*step] + 26*q0 + 26*src[ 1*step] + 26*src[ 2*step] +
  492. 25*src[ 3*step] + rv40_dither_r[dmode + i]) >> 7;
  493. if (sflag) {
  494. p1 = av_clip(p1, src[-2*step] - lims, src[-2*step] + lims);
  495. q1 = av_clip(q1, src[ 1*step] - lims, src[ 1*step] + lims);
  496. }
  497. src[-2*step] = p1;
  498. src[-1*step] = p0;
  499. src[ 0*step] = q0;
  500. src[ 1*step] = q1;
  501. if(!chroma){
  502. src[-3*step] = (25*src[-1*step] + 26*src[-2*step] +
  503. 51*src[-3*step] + 26*src[-4*step] + 64) >> 7;
  504. src[ 2*step] = (25*src[ 0*step] + 26*src[ 1*step] +
  505. 51*src[ 2*step] + 26*src[ 3*step] + 64) >> 7;
  506. }
  507. }
  508. }
  509. static void rv40_h_strong_loop_filter(uint8_t *src, const ptrdiff_t stride,
  510. const int alpha, const int lims,
  511. const int dmode, const int chroma)
  512. {
  513. rv40_strong_loop_filter(src, stride, 1, alpha, lims, dmode, chroma);
  514. }
  515. static void rv40_v_strong_loop_filter(uint8_t *src, const ptrdiff_t stride,
  516. const int alpha, const int lims,
  517. const int dmode, const int chroma)
  518. {
  519. rv40_strong_loop_filter(src, 1, stride, alpha, lims, dmode, chroma);
  520. }
  521. static av_always_inline int rv40_loop_filter_strength(uint8_t *src,
  522. int step, ptrdiff_t stride,
  523. int beta, int beta2,
  524. int edge,
  525. int *p1, int *q1)
  526. {
  527. int sum_p1p0 = 0, sum_q1q0 = 0, sum_p1p2 = 0, sum_q1q2 = 0;
  528. int strong0 = 0, strong1 = 0;
  529. uint8_t *ptr;
  530. int i;
  531. for (i = 0, ptr = src; i < 4; i++, ptr += stride) {
  532. sum_p1p0 += ptr[-2*step] - ptr[-1*step];
  533. sum_q1q0 += ptr[ 1*step] - ptr[ 0*step];
  534. }
  535. *p1 = FFABS(sum_p1p0) < (beta << 2);
  536. *q1 = FFABS(sum_q1q0) < (beta << 2);
  537. if(!*p1 && !*q1)
  538. return 0;
  539. if (!edge)
  540. return 0;
  541. for (i = 0, ptr = src; i < 4; i++, ptr += stride) {
  542. sum_p1p2 += ptr[-2*step] - ptr[-3*step];
  543. sum_q1q2 += ptr[ 1*step] - ptr[ 2*step];
  544. }
  545. strong0 = *p1 && (FFABS(sum_p1p2) < beta2);
  546. strong1 = *q1 && (FFABS(sum_q1q2) < beta2);
  547. return strong0 && strong1;
  548. }
  549. static int rv40_h_loop_filter_strength(uint8_t *src, ptrdiff_t stride,
  550. int beta, int beta2, int edge,
  551. int *p1, int *q1)
  552. {
  553. return rv40_loop_filter_strength(src, stride, 1, beta, beta2, edge, p1, q1);
  554. }
  555. static int rv40_v_loop_filter_strength(uint8_t *src, ptrdiff_t stride,
  556. int beta, int beta2, int edge,
  557. int *p1, int *q1)
  558. {
  559. return rv40_loop_filter_strength(src, 1, stride, beta, beta2, edge, p1, q1);
  560. }
  561. av_cold void ff_rv40dsp_init(RV34DSPContext *c)
  562. {
  563. H264QpelContext qpel;
  564. ff_rv34dsp_init(c);
  565. ff_h264qpel_init(&qpel, 8);
  566. c->put_pixels_tab[0][ 0] = qpel.put_h264_qpel_pixels_tab[0][0];
  567. c->put_pixels_tab[0][ 1] = put_rv40_qpel16_mc10_c;
  568. c->put_pixels_tab[0][ 2] = qpel.put_h264_qpel_pixels_tab[0][2];
  569. c->put_pixels_tab[0][ 3] = put_rv40_qpel16_mc30_c;
  570. c->put_pixels_tab[0][ 4] = put_rv40_qpel16_mc01_c;
  571. c->put_pixels_tab[0][ 5] = put_rv40_qpel16_mc11_c;
  572. c->put_pixels_tab[0][ 6] = put_rv40_qpel16_mc21_c;
  573. c->put_pixels_tab[0][ 7] = put_rv40_qpel16_mc31_c;
  574. c->put_pixels_tab[0][ 8] = qpel.put_h264_qpel_pixels_tab[0][8];
  575. c->put_pixels_tab[0][ 9] = put_rv40_qpel16_mc12_c;
  576. c->put_pixels_tab[0][10] = put_rv40_qpel16_mc22_c;
  577. c->put_pixels_tab[0][11] = put_rv40_qpel16_mc32_c;
  578. c->put_pixels_tab[0][12] = put_rv40_qpel16_mc03_c;
  579. c->put_pixels_tab[0][13] = put_rv40_qpel16_mc13_c;
  580. c->put_pixels_tab[0][14] = put_rv40_qpel16_mc23_c;
  581. c->put_pixels_tab[0][15] = put_rv40_qpel16_mc33_c;
  582. c->avg_pixels_tab[0][ 0] = qpel.avg_h264_qpel_pixels_tab[0][0];
  583. c->avg_pixels_tab[0][ 1] = avg_rv40_qpel16_mc10_c;
  584. c->avg_pixels_tab[0][ 2] = qpel.avg_h264_qpel_pixels_tab[0][2];
  585. c->avg_pixels_tab[0][ 3] = avg_rv40_qpel16_mc30_c;
  586. c->avg_pixels_tab[0][ 4] = avg_rv40_qpel16_mc01_c;
  587. c->avg_pixels_tab[0][ 5] = avg_rv40_qpel16_mc11_c;
  588. c->avg_pixels_tab[0][ 6] = avg_rv40_qpel16_mc21_c;
  589. c->avg_pixels_tab[0][ 7] = avg_rv40_qpel16_mc31_c;
  590. c->avg_pixels_tab[0][ 8] = qpel.avg_h264_qpel_pixels_tab[0][8];
  591. c->avg_pixels_tab[0][ 9] = avg_rv40_qpel16_mc12_c;
  592. c->avg_pixels_tab[0][10] = avg_rv40_qpel16_mc22_c;
  593. c->avg_pixels_tab[0][11] = avg_rv40_qpel16_mc32_c;
  594. c->avg_pixels_tab[0][12] = avg_rv40_qpel16_mc03_c;
  595. c->avg_pixels_tab[0][13] = avg_rv40_qpel16_mc13_c;
  596. c->avg_pixels_tab[0][14] = avg_rv40_qpel16_mc23_c;
  597. c->avg_pixels_tab[0][15] = avg_rv40_qpel16_mc33_c;
  598. c->put_pixels_tab[1][ 0] = qpel.put_h264_qpel_pixels_tab[1][0];
  599. c->put_pixels_tab[1][ 1] = put_rv40_qpel8_mc10_c;
  600. c->put_pixels_tab[1][ 2] = qpel.put_h264_qpel_pixels_tab[1][2];
  601. c->put_pixels_tab[1][ 3] = put_rv40_qpel8_mc30_c;
  602. c->put_pixels_tab[1][ 4] = put_rv40_qpel8_mc01_c;
  603. c->put_pixels_tab[1][ 5] = put_rv40_qpel8_mc11_c;
  604. c->put_pixels_tab[1][ 6] = put_rv40_qpel8_mc21_c;
  605. c->put_pixels_tab[1][ 7] = put_rv40_qpel8_mc31_c;
  606. c->put_pixels_tab[1][ 8] = qpel.put_h264_qpel_pixels_tab[1][8];
  607. c->put_pixels_tab[1][ 9] = put_rv40_qpel8_mc12_c;
  608. c->put_pixels_tab[1][10] = put_rv40_qpel8_mc22_c;
  609. c->put_pixels_tab[1][11] = put_rv40_qpel8_mc32_c;
  610. c->put_pixels_tab[1][12] = put_rv40_qpel8_mc03_c;
  611. c->put_pixels_tab[1][13] = put_rv40_qpel8_mc13_c;
  612. c->put_pixels_tab[1][14] = put_rv40_qpel8_mc23_c;
  613. c->put_pixels_tab[1][15] = put_rv40_qpel8_mc33_c;
  614. c->avg_pixels_tab[1][ 0] = qpel.avg_h264_qpel_pixels_tab[1][0];
  615. c->avg_pixels_tab[1][ 1] = avg_rv40_qpel8_mc10_c;
  616. c->avg_pixels_tab[1][ 2] = qpel.avg_h264_qpel_pixels_tab[1][2];
  617. c->avg_pixels_tab[1][ 3] = avg_rv40_qpel8_mc30_c;
  618. c->avg_pixels_tab[1][ 4] = avg_rv40_qpel8_mc01_c;
  619. c->avg_pixels_tab[1][ 5] = avg_rv40_qpel8_mc11_c;
  620. c->avg_pixels_tab[1][ 6] = avg_rv40_qpel8_mc21_c;
  621. c->avg_pixels_tab[1][ 7] = avg_rv40_qpel8_mc31_c;
  622. c->avg_pixels_tab[1][ 8] = qpel.avg_h264_qpel_pixels_tab[1][8];
  623. c->avg_pixels_tab[1][ 9] = avg_rv40_qpel8_mc12_c;
  624. c->avg_pixels_tab[1][10] = avg_rv40_qpel8_mc22_c;
  625. c->avg_pixels_tab[1][11] = avg_rv40_qpel8_mc32_c;
  626. c->avg_pixels_tab[1][12] = avg_rv40_qpel8_mc03_c;
  627. c->avg_pixels_tab[1][13] = avg_rv40_qpel8_mc13_c;
  628. c->avg_pixels_tab[1][14] = avg_rv40_qpel8_mc23_c;
  629. c->avg_pixels_tab[1][15] = avg_rv40_qpel8_mc33_c;
  630. c->put_chroma_pixels_tab[0] = put_rv40_chroma_mc8_c;
  631. c->put_chroma_pixels_tab[1] = put_rv40_chroma_mc4_c;
  632. c->avg_chroma_pixels_tab[0] = avg_rv40_chroma_mc8_c;
  633. c->avg_chroma_pixels_tab[1] = avg_rv40_chroma_mc4_c;
  634. c->rv40_weight_pixels_tab[0][0] = rv40_weight_func_rnd_16;
  635. c->rv40_weight_pixels_tab[0][1] = rv40_weight_func_rnd_8;
  636. c->rv40_weight_pixels_tab[1][0] = rv40_weight_func_nornd_16;
  637. c->rv40_weight_pixels_tab[1][1] = rv40_weight_func_nornd_8;
  638. c->rv40_weak_loop_filter[0] = rv40_h_weak_loop_filter;
  639. c->rv40_weak_loop_filter[1] = rv40_v_weak_loop_filter;
  640. c->rv40_strong_loop_filter[0] = rv40_h_strong_loop_filter;
  641. c->rv40_strong_loop_filter[1] = rv40_v_strong_loop_filter;
  642. c->rv40_loop_filter_strength[0] = rv40_h_loop_filter_strength;
  643. c->rv40_loop_filter_strength[1] = rv40_v_loop_filter_strength;
  644. if (ARCH_AARCH64)
  645. ff_rv40dsp_init_aarch64(c);
  646. if (ARCH_ARM)
  647. ff_rv40dsp_init_arm(c);
  648. if (ARCH_X86)
  649. ff_rv40dsp_init_x86(c);
  650. }