You can not select more than 25 topics Topics must start with a letter or number, can include dashes ('-') and can be up to 35 characters long.

693 lines
41KB

  1. /*
  2. * This file is part of Libav.
  3. *
  4. * Libav is free software; you can redistribute it and/or
  5. * modify it under the terms of the GNU Lesser General Public
  6. * License as published by the Free Software Foundation; either
  7. * version 2.1 of the License, or (at your option) any later version.
  8. *
  9. * Libav is distributed in the hope that it will be useful,
  10. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  11. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  12. * Lesser General Public License for more details.
  13. *
  14. * You should have received a copy of the GNU Lesser General Public
  15. * License along with Libav; if not, write to the Free Software
  16. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  17. */
  18. #include "config.h"
  19. #include "libavutil/attributes.h"
  20. #include "libavutil/cpu.h"
  21. #include "libavutil/internal.h"
  22. #include "libavutil/x86/asm.h"
  23. #include "libavutil/x86/cpu.h"
  24. #include "libavcodec/avcodec.h"
  25. #include "libavcodec/dsputil.h"
  26. #include "libavcodec/simple_idct.h"
  27. #include "libavcodec/version.h"
  28. #include "dsputil_x86.h"
  29. #include "idct_xvid.h"
  30. void ff_put_pixels8_l2_mmxext(uint8_t *dst, uint8_t *src1, uint8_t *src2,
  31. int dstStride, int src1Stride, int h);
  32. void ff_put_no_rnd_pixels8_l2_mmxext(uint8_t *dst, uint8_t *src1,
  33. uint8_t *src2, int dstStride,
  34. int src1Stride, int h);
  35. void ff_avg_pixels8_l2_mmxext(uint8_t *dst, uint8_t *src1, uint8_t *src2,
  36. int dstStride, int src1Stride, int h);
  37. void ff_put_pixels16_l2_mmxext(uint8_t *dst, uint8_t *src1, uint8_t *src2,
  38. int dstStride, int src1Stride, int h);
  39. void ff_avg_pixels16_l2_mmxext(uint8_t *dst, uint8_t *src1, uint8_t *src2,
  40. int dstStride, int src1Stride, int h);
  41. void ff_put_no_rnd_pixels16_l2_mmxext(uint8_t *dst, uint8_t *src1, uint8_t *src2,
  42. int dstStride, int src1Stride, int h);
  43. void ff_put_mpeg4_qpel16_h_lowpass_mmxext(uint8_t *dst, uint8_t *src,
  44. int dstStride, int srcStride, int h);
  45. void ff_avg_mpeg4_qpel16_h_lowpass_mmxext(uint8_t *dst, uint8_t *src,
  46. int dstStride, int srcStride, int h);
  47. void ff_put_no_rnd_mpeg4_qpel16_h_lowpass_mmxext(uint8_t *dst, uint8_t *src,
  48. int dstStride, int srcStride,
  49. int h);
  50. void ff_put_mpeg4_qpel8_h_lowpass_mmxext(uint8_t *dst, uint8_t *src,
  51. int dstStride, int srcStride, int h);
  52. void ff_avg_mpeg4_qpel8_h_lowpass_mmxext(uint8_t *dst, uint8_t *src,
  53. int dstStride, int srcStride, int h);
  54. void ff_put_no_rnd_mpeg4_qpel8_h_lowpass_mmxext(uint8_t *dst, uint8_t *src,
  55. int dstStride, int srcStride,
  56. int h);
  57. void ff_put_mpeg4_qpel16_v_lowpass_mmxext(uint8_t *dst, uint8_t *src,
  58. int dstStride, int srcStride);
  59. void ff_avg_mpeg4_qpel16_v_lowpass_mmxext(uint8_t *dst, uint8_t *src,
  60. int dstStride, int srcStride);
  61. void ff_put_no_rnd_mpeg4_qpel16_v_lowpass_mmxext(uint8_t *dst, uint8_t *src,
  62. int dstStride, int srcStride);
  63. void ff_put_mpeg4_qpel8_v_lowpass_mmxext(uint8_t *dst, uint8_t *src,
  64. int dstStride, int srcStride);
  65. void ff_avg_mpeg4_qpel8_v_lowpass_mmxext(uint8_t *dst, uint8_t *src,
  66. int dstStride, int srcStride);
  67. void ff_put_no_rnd_mpeg4_qpel8_v_lowpass_mmxext(uint8_t *dst, uint8_t *src,
  68. int dstStride, int srcStride);
  69. #define ff_put_no_rnd_pixels16_mmxext ff_put_pixels16_mmxext
  70. #define ff_put_no_rnd_pixels8_mmxext ff_put_pixels8_mmxext
  71. int32_t ff_scalarproduct_int16_mmxext(const int16_t *v1, const int16_t *v2,
  72. int order);
  73. int32_t ff_scalarproduct_int16_sse2(const int16_t *v1, const int16_t *v2,
  74. int order);
  75. int32_t ff_scalarproduct_and_madd_int16_mmxext(int16_t *v1, const int16_t *v2,
  76. const int16_t *v3,
  77. int order, int mul);
  78. int32_t ff_scalarproduct_and_madd_int16_sse2(int16_t *v1, const int16_t *v2,
  79. const int16_t *v3,
  80. int order, int mul);
  81. int32_t ff_scalarproduct_and_madd_int16_ssse3(int16_t *v1, const int16_t *v2,
  82. const int16_t *v3,
  83. int order, int mul);
  84. void ff_bswap32_buf_ssse3(uint32_t *dst, const uint32_t *src, int w);
  85. void ff_bswap32_buf_sse2(uint32_t *dst, const uint32_t *src, int w);
  86. void ff_add_hfyu_median_prediction_mmxext(uint8_t *dst, const uint8_t *top,
  87. const uint8_t *diff, int w,
  88. int *left, int *left_top);
  89. int ff_add_hfyu_left_prediction_ssse3(uint8_t *dst, const uint8_t *src,
  90. int w, int left);
  91. int ff_add_hfyu_left_prediction_sse4(uint8_t *dst, const uint8_t *src,
  92. int w, int left);
  93. void ff_vector_clip_int32_mmx(int32_t *dst, const int32_t *src,
  94. int32_t min, int32_t max, unsigned int len);
  95. void ff_vector_clip_int32_sse2(int32_t *dst, const int32_t *src,
  96. int32_t min, int32_t max, unsigned int len);
  97. void ff_vector_clip_int32_int_sse2(int32_t *dst, const int32_t *src,
  98. int32_t min, int32_t max, unsigned int len);
  99. void ff_vector_clip_int32_sse4(int32_t *dst, const int32_t *src,
  100. int32_t min, int32_t max, unsigned int len);
  101. #if HAVE_YASM
  102. PIXELS16(static, ff_avg, , , _mmxext)
  103. PIXELS16(static, ff_put, , , _mmxext)
  104. #define QPEL_OP(OPNAME, RND, MMX) \
  105. static void OPNAME ## qpel8_mc00_ ## MMX(uint8_t *dst, uint8_t *src, \
  106. ptrdiff_t stride) \
  107. { \
  108. ff_ ## OPNAME ## pixels8_ ## MMX(dst, src, stride, 8); \
  109. } \
  110. \
  111. static void OPNAME ## qpel8_mc10_ ## MMX(uint8_t *dst, uint8_t *src, \
  112. ptrdiff_t stride) \
  113. { \
  114. uint64_t temp[8]; \
  115. uint8_t *const half = (uint8_t *) temp; \
  116. ff_put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(half, src, 8, \
  117. stride, 8); \
  118. ff_ ## OPNAME ## pixels8_l2_ ## MMX(dst, src, half, \
  119. stride, stride, 8); \
  120. } \
  121. \
  122. static void OPNAME ## qpel8_mc20_ ## MMX(uint8_t *dst, uint8_t *src, \
  123. ptrdiff_t stride) \
  124. { \
  125. ff_ ## OPNAME ## mpeg4_qpel8_h_lowpass_ ## MMX(dst, src, stride, \
  126. stride, 8); \
  127. } \
  128. \
  129. static void OPNAME ## qpel8_mc30_ ## MMX(uint8_t *dst, uint8_t *src, \
  130. ptrdiff_t stride) \
  131. { \
  132. uint64_t temp[8]; \
  133. uint8_t *const half = (uint8_t *) temp; \
  134. ff_put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(half, src, 8, \
  135. stride, 8); \
  136. ff_ ## OPNAME ## pixels8_l2_ ## MMX(dst, src + 1, half, stride, \
  137. stride, 8); \
  138. } \
  139. \
  140. static void OPNAME ## qpel8_mc01_ ## MMX(uint8_t *dst, uint8_t *src, \
  141. ptrdiff_t stride) \
  142. { \
  143. uint64_t temp[8]; \
  144. uint8_t *const half = (uint8_t *) temp; \
  145. ff_put ## RND ## mpeg4_qpel8_v_lowpass_ ## MMX(half, src, \
  146. 8, stride); \
  147. ff_ ## OPNAME ## pixels8_l2_ ## MMX(dst, src, half, \
  148. stride, stride, 8); \
  149. } \
  150. \
  151. static void OPNAME ## qpel8_mc02_ ## MMX(uint8_t *dst, uint8_t *src, \
  152. ptrdiff_t stride) \
  153. { \
  154. ff_ ## OPNAME ## mpeg4_qpel8_v_lowpass_ ## MMX(dst, src, \
  155. stride, stride); \
  156. } \
  157. \
  158. static void OPNAME ## qpel8_mc03_ ## MMX(uint8_t *dst, uint8_t *src, \
  159. ptrdiff_t stride) \
  160. { \
  161. uint64_t temp[8]; \
  162. uint8_t *const half = (uint8_t *) temp; \
  163. ff_put ## RND ## mpeg4_qpel8_v_lowpass_ ## MMX(half, src, \
  164. 8, stride); \
  165. ff_ ## OPNAME ## pixels8_l2_ ## MMX(dst, src + stride, half, stride,\
  166. stride, 8); \
  167. } \
  168. \
  169. static void OPNAME ## qpel8_mc11_ ## MMX(uint8_t *dst, uint8_t *src, \
  170. ptrdiff_t stride) \
  171. { \
  172. uint64_t half[8 + 9]; \
  173. uint8_t *const halfH = (uint8_t *) half + 64; \
  174. uint8_t *const halfHV = (uint8_t *) half; \
  175. ff_put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, \
  176. stride, 9); \
  177. ff_put ## RND ## pixels8_l2_ ## MMX(halfH, src, halfH, 8, \
  178. stride, 9); \
  179. ff_put ## RND ## mpeg4_qpel8_v_lowpass_ ## MMX(halfHV, halfH, 8, 8);\
  180. ff_ ## OPNAME ## pixels8_l2_ ## MMX(dst, halfH, halfHV, \
  181. stride, 8, 8); \
  182. } \
  183. \
  184. static void OPNAME ## qpel8_mc31_ ## MMX(uint8_t *dst, uint8_t *src, \
  185. ptrdiff_t stride) \
  186. { \
  187. uint64_t half[8 + 9]; \
  188. uint8_t *const halfH = (uint8_t *) half + 64; \
  189. uint8_t *const halfHV = (uint8_t *) half; \
  190. ff_put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, \
  191. stride, 9); \
  192. ff_put ## RND ## pixels8_l2_ ## MMX(halfH, src + 1, halfH, 8, \
  193. stride, 9); \
  194. ff_put ## RND ## mpeg4_qpel8_v_lowpass_ ## MMX(halfHV, halfH, 8, 8);\
  195. ff_ ## OPNAME ## pixels8_l2_ ## MMX(dst, halfH, halfHV, \
  196. stride, 8, 8); \
  197. } \
  198. \
  199. static void OPNAME ## qpel8_mc13_ ## MMX(uint8_t *dst, uint8_t *src, \
  200. ptrdiff_t stride) \
  201. { \
  202. uint64_t half[8 + 9]; \
  203. uint8_t *const halfH = (uint8_t *) half + 64; \
  204. uint8_t *const halfHV = (uint8_t *) half; \
  205. ff_put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, \
  206. stride, 9); \
  207. ff_put ## RND ## pixels8_l2_ ## MMX(halfH, src, halfH, 8, \
  208. stride, 9); \
  209. ff_put ## RND ## mpeg4_qpel8_v_lowpass_ ## MMX(halfHV, halfH, 8, 8);\
  210. ff_ ## OPNAME ## pixels8_l2_ ## MMX(dst, halfH + 8, halfHV, \
  211. stride, 8, 8); \
  212. } \
  213. \
  214. static void OPNAME ## qpel8_mc33_ ## MMX(uint8_t *dst, uint8_t *src, \
  215. ptrdiff_t stride) \
  216. { \
  217. uint64_t half[8 + 9]; \
  218. uint8_t *const halfH = (uint8_t *) half + 64; \
  219. uint8_t *const halfHV = (uint8_t *) half; \
  220. ff_put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, \
  221. stride, 9); \
  222. ff_put ## RND ## pixels8_l2_ ## MMX(halfH, src + 1, halfH, 8, \
  223. stride, 9); \
  224. ff_put ## RND ## mpeg4_qpel8_v_lowpass_ ## MMX(halfHV, halfH, 8, 8);\
  225. ff_ ## OPNAME ## pixels8_l2_ ## MMX(dst, halfH + 8, halfHV, \
  226. stride, 8, 8); \
  227. } \
  228. \
  229. static void OPNAME ## qpel8_mc21_ ## MMX(uint8_t *dst, uint8_t *src, \
  230. ptrdiff_t stride) \
  231. { \
  232. uint64_t half[8 + 9]; \
  233. uint8_t *const halfH = (uint8_t *) half + 64; \
  234. uint8_t *const halfHV = (uint8_t *) half; \
  235. ff_put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, \
  236. stride, 9); \
  237. ff_put ## RND ## mpeg4_qpel8_v_lowpass_ ## MMX(halfHV, halfH, 8, 8);\
  238. ff_ ## OPNAME ## pixels8_l2_ ## MMX(dst, halfH, halfHV, \
  239. stride, 8, 8); \
  240. } \
  241. \
  242. static void OPNAME ## qpel8_mc23_ ## MMX(uint8_t *dst, uint8_t *src, \
  243. ptrdiff_t stride) \
  244. { \
  245. uint64_t half[8 + 9]; \
  246. uint8_t *const halfH = (uint8_t *) half + 64; \
  247. uint8_t *const halfHV = (uint8_t *) half; \
  248. ff_put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, \
  249. stride, 9); \
  250. ff_put ## RND ## mpeg4_qpel8_v_lowpass_ ## MMX(halfHV, halfH, 8, 8);\
  251. ff_ ## OPNAME ## pixels8_l2_ ## MMX(dst, halfH + 8, halfHV, \
  252. stride, 8, 8); \
  253. } \
  254. \
  255. static void OPNAME ## qpel8_mc12_ ## MMX(uint8_t *dst, uint8_t *src, \
  256. ptrdiff_t stride) \
  257. { \
  258. uint64_t half[8 + 9]; \
  259. uint8_t *const halfH = (uint8_t *) half; \
  260. ff_put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, \
  261. stride, 9); \
  262. ff_put ## RND ## pixels8_l2_ ## MMX(halfH, src, halfH, \
  263. 8, stride, 9); \
  264. ff_ ## OPNAME ## mpeg4_qpel8_v_lowpass_ ## MMX(dst, halfH, \
  265. stride, 8); \
  266. } \
  267. \
  268. static void OPNAME ## qpel8_mc32_ ## MMX(uint8_t *dst, uint8_t *src, \
  269. ptrdiff_t stride) \
  270. { \
  271. uint64_t half[8 + 9]; \
  272. uint8_t *const halfH = (uint8_t *) half; \
  273. ff_put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, \
  274. stride, 9); \
  275. ff_put ## RND ## pixels8_l2_ ## MMX(halfH, src + 1, halfH, 8, \
  276. stride, 9); \
  277. ff_ ## OPNAME ## mpeg4_qpel8_v_lowpass_ ## MMX(dst, halfH, \
  278. stride, 8); \
  279. } \
  280. \
  281. static void OPNAME ## qpel8_mc22_ ## MMX(uint8_t *dst, uint8_t *src, \
  282. ptrdiff_t stride) \
  283. { \
  284. uint64_t half[9]; \
  285. uint8_t *const halfH = (uint8_t *) half; \
  286. ff_put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, \
  287. stride, 9); \
  288. ff_ ## OPNAME ## mpeg4_qpel8_v_lowpass_ ## MMX(dst, halfH, \
  289. stride, 8); \
  290. } \
  291. \
  292. static void OPNAME ## qpel16_mc00_ ## MMX(uint8_t *dst, uint8_t *src, \
  293. ptrdiff_t stride) \
  294. { \
  295. ff_ ## OPNAME ## pixels16_ ## MMX(dst, src, stride, 16); \
  296. } \
  297. \
  298. static void OPNAME ## qpel16_mc10_ ## MMX(uint8_t *dst, uint8_t *src, \
  299. ptrdiff_t stride) \
  300. { \
  301. uint64_t temp[32]; \
  302. uint8_t *const half = (uint8_t *) temp; \
  303. ff_put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(half, src, 16, \
  304. stride, 16); \
  305. ff_ ## OPNAME ## pixels16_l2_ ## MMX(dst, src, half, stride, \
  306. stride, 16); \
  307. } \
  308. \
  309. static void OPNAME ## qpel16_mc20_ ## MMX(uint8_t *dst, uint8_t *src, \
  310. ptrdiff_t stride) \
  311. { \
  312. ff_ ## OPNAME ## mpeg4_qpel16_h_lowpass_ ## MMX(dst, src, \
  313. stride, stride, 16);\
  314. } \
  315. \
  316. static void OPNAME ## qpel16_mc30_ ## MMX(uint8_t *dst, uint8_t *src, \
  317. ptrdiff_t stride) \
  318. { \
  319. uint64_t temp[32]; \
  320. uint8_t *const half = (uint8_t*) temp; \
  321. ff_put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(half, src, 16, \
  322. stride, 16); \
  323. ff_ ## OPNAME ## pixels16_l2_ ## MMX(dst, src + 1, half, \
  324. stride, stride, 16); \
  325. } \
  326. \
  327. static void OPNAME ## qpel16_mc01_ ## MMX(uint8_t *dst, uint8_t *src, \
  328. ptrdiff_t stride) \
  329. { \
  330. uint64_t temp[32]; \
  331. uint8_t *const half = (uint8_t *) temp; \
  332. ff_put ## RND ## mpeg4_qpel16_v_lowpass_ ## MMX(half, src, 16, \
  333. stride); \
  334. ff_ ## OPNAME ## pixels16_l2_ ## MMX(dst, src, half, stride, \
  335. stride, 16); \
  336. } \
  337. \
  338. static void OPNAME ## qpel16_mc02_ ## MMX(uint8_t *dst, uint8_t *src, \
  339. ptrdiff_t stride) \
  340. { \
  341. ff_ ## OPNAME ## mpeg4_qpel16_v_lowpass_ ## MMX(dst, src, \
  342. stride, stride); \
  343. } \
  344. \
  345. static void OPNAME ## qpel16_mc03_ ## MMX(uint8_t *dst, uint8_t *src, \
  346. ptrdiff_t stride) \
  347. { \
  348. uint64_t temp[32]; \
  349. uint8_t *const half = (uint8_t *) temp; \
  350. ff_put ## RND ## mpeg4_qpel16_v_lowpass_ ## MMX(half, src, 16, \
  351. stride); \
  352. ff_ ## OPNAME ## pixels16_l2_ ## MMX(dst, src+stride, half, \
  353. stride, stride, 16); \
  354. } \
  355. \
  356. static void OPNAME ## qpel16_mc11_ ## MMX(uint8_t *dst, uint8_t *src, \
  357. ptrdiff_t stride) \
  358. { \
  359. uint64_t half[16 * 2 + 17 * 2]; \
  360. uint8_t *const halfH = (uint8_t *) half + 256; \
  361. uint8_t *const halfHV = (uint8_t *) half; \
  362. ff_put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, \
  363. stride, 17); \
  364. ff_put ## RND ## pixels16_l2_ ## MMX(halfH, src, halfH, 16, \
  365. stride, 17); \
  366. ff_put ## RND ## mpeg4_qpel16_v_lowpass_ ## MMX(halfHV, halfH, \
  367. 16, 16); \
  368. ff_ ## OPNAME ## pixels16_l2_ ## MMX(dst, halfH, halfHV, \
  369. stride, 16, 16); \
  370. } \
  371. \
  372. static void OPNAME ## qpel16_mc31_ ## MMX(uint8_t *dst, uint8_t *src, \
  373. ptrdiff_t stride) \
  374. { \
  375. uint64_t half[16 * 2 + 17 * 2]; \
  376. uint8_t *const halfH = (uint8_t *) half + 256; \
  377. uint8_t *const halfHV = (uint8_t *) half; \
  378. ff_put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, \
  379. stride, 17); \
  380. ff_put ## RND ## pixels16_l2_ ## MMX(halfH, src + 1, halfH, 16, \
  381. stride, 17); \
  382. ff_put ## RND ## mpeg4_qpel16_v_lowpass_ ## MMX(halfHV, halfH, \
  383. 16, 16); \
  384. ff_ ## OPNAME ## pixels16_l2_ ## MMX(dst, halfH, halfHV, \
  385. stride, 16, 16); \
  386. } \
  387. \
  388. static void OPNAME ## qpel16_mc13_ ## MMX(uint8_t *dst, uint8_t *src, \
  389. ptrdiff_t stride) \
  390. { \
  391. uint64_t half[16 * 2 + 17 * 2]; \
  392. uint8_t *const halfH = (uint8_t *) half + 256; \
  393. uint8_t *const halfHV = (uint8_t *) half; \
  394. ff_put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, \
  395. stride, 17); \
  396. ff_put ## RND ## pixels16_l2_ ## MMX(halfH, src, halfH, 16, \
  397. stride, 17); \
  398. ff_put ## RND ## mpeg4_qpel16_v_lowpass_ ## MMX(halfHV, halfH, \
  399. 16, 16); \
  400. ff_ ## OPNAME ## pixels16_l2_ ## MMX(dst, halfH + 16, halfHV, \
  401. stride, 16, 16); \
  402. } \
  403. \
  404. static void OPNAME ## qpel16_mc33_ ## MMX(uint8_t *dst, uint8_t *src, \
  405. ptrdiff_t stride) \
  406. { \
  407. uint64_t half[16 * 2 + 17 * 2]; \
  408. uint8_t *const halfH = (uint8_t *) half + 256; \
  409. uint8_t *const halfHV = (uint8_t *) half; \
  410. ff_put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, \
  411. stride, 17); \
  412. ff_put ## RND ## pixels16_l2_ ## MMX(halfH, src + 1, halfH, 16, \
  413. stride, 17); \
  414. ff_put ## RND ## mpeg4_qpel16_v_lowpass_ ## MMX(halfHV, halfH, \
  415. 16, 16); \
  416. ff_ ## OPNAME ## pixels16_l2_ ## MMX(dst, halfH + 16, halfHV, \
  417. stride, 16, 16); \
  418. } \
  419. \
  420. static void OPNAME ## qpel16_mc21_ ## MMX(uint8_t *dst, uint8_t *src, \
  421. ptrdiff_t stride) \
  422. { \
  423. uint64_t half[16 * 2 + 17 * 2]; \
  424. uint8_t *const halfH = (uint8_t *) half + 256; \
  425. uint8_t *const halfHV = (uint8_t *) half; \
  426. ff_put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, \
  427. stride, 17); \
  428. ff_put ## RND ## mpeg4_qpel16_v_lowpass_ ## MMX(halfHV, halfH, \
  429. 16, 16); \
  430. ff_ ## OPNAME ## pixels16_l2_ ## MMX(dst, halfH, halfHV, \
  431. stride, 16, 16); \
  432. } \
  433. \
  434. static void OPNAME ## qpel16_mc23_ ## MMX(uint8_t *dst, uint8_t *src, \
  435. ptrdiff_t stride) \
  436. { \
  437. uint64_t half[16 * 2 + 17 * 2]; \
  438. uint8_t *const halfH = (uint8_t *) half + 256; \
  439. uint8_t *const halfHV = (uint8_t *) half; \
  440. ff_put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, \
  441. stride, 17); \
  442. ff_put ## RND ## mpeg4_qpel16_v_lowpass_ ## MMX(halfHV, halfH, \
  443. 16, 16); \
  444. ff_ ## OPNAME ## pixels16_l2_ ## MMX(dst, halfH + 16, halfHV, \
  445. stride, 16, 16); \
  446. } \
  447. \
  448. static void OPNAME ## qpel16_mc12_ ## MMX(uint8_t *dst, uint8_t *src, \
  449. ptrdiff_t stride) \
  450. { \
  451. uint64_t half[17 * 2]; \
  452. uint8_t *const halfH = (uint8_t *) half; \
  453. ff_put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, \
  454. stride, 17); \
  455. ff_put ## RND ## pixels16_l2_ ## MMX(halfH, src, halfH, 16, \
  456. stride, 17); \
  457. ff_ ## OPNAME ## mpeg4_qpel16_v_lowpass_ ## MMX(dst, halfH, \
  458. stride, 16); \
  459. } \
  460. \
  461. static void OPNAME ## qpel16_mc32_ ## MMX(uint8_t *dst, uint8_t *src, \
  462. ptrdiff_t stride) \
  463. { \
  464. uint64_t half[17 * 2]; \
  465. uint8_t *const halfH = (uint8_t *) half; \
  466. ff_put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, \
  467. stride, 17); \
  468. ff_put ## RND ## pixels16_l2_ ## MMX(halfH, src + 1, halfH, 16, \
  469. stride, 17); \
  470. ff_ ## OPNAME ## mpeg4_qpel16_v_lowpass_ ## MMX(dst, halfH, \
  471. stride, 16); \
  472. } \
  473. \
  474. static void OPNAME ## qpel16_mc22_ ## MMX(uint8_t *dst, uint8_t *src, \
  475. ptrdiff_t stride) \
  476. { \
  477. uint64_t half[17 * 2]; \
  478. uint8_t *const halfH = (uint8_t *) half; \
  479. ff_put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, \
  480. stride, 17); \
  481. ff_ ## OPNAME ## mpeg4_qpel16_v_lowpass_ ## MMX(dst, halfH, \
  482. stride, 16); \
  483. }
  484. QPEL_OP(put_, _, mmxext)
  485. QPEL_OP(avg_, _, mmxext)
  486. QPEL_OP(put_no_rnd_, _no_rnd_, mmxext)
  487. #endif /* HAVE_YASM */
  488. #define SET_QPEL_FUNCS(PFX, IDX, SIZE, CPU, PREFIX) \
  489. do { \
  490. c->PFX ## _pixels_tab[IDX][ 0] = PREFIX ## PFX ## SIZE ## _mc00_ ## CPU; \
  491. c->PFX ## _pixels_tab[IDX][ 1] = PREFIX ## PFX ## SIZE ## _mc10_ ## CPU; \
  492. c->PFX ## _pixels_tab[IDX][ 2] = PREFIX ## PFX ## SIZE ## _mc20_ ## CPU; \
  493. c->PFX ## _pixels_tab[IDX][ 3] = PREFIX ## PFX ## SIZE ## _mc30_ ## CPU; \
  494. c->PFX ## _pixels_tab[IDX][ 4] = PREFIX ## PFX ## SIZE ## _mc01_ ## CPU; \
  495. c->PFX ## _pixels_tab[IDX][ 5] = PREFIX ## PFX ## SIZE ## _mc11_ ## CPU; \
  496. c->PFX ## _pixels_tab[IDX][ 6] = PREFIX ## PFX ## SIZE ## _mc21_ ## CPU; \
  497. c->PFX ## _pixels_tab[IDX][ 7] = PREFIX ## PFX ## SIZE ## _mc31_ ## CPU; \
  498. c->PFX ## _pixels_tab[IDX][ 8] = PREFIX ## PFX ## SIZE ## _mc02_ ## CPU; \
  499. c->PFX ## _pixels_tab[IDX][ 9] = PREFIX ## PFX ## SIZE ## _mc12_ ## CPU; \
  500. c->PFX ## _pixels_tab[IDX][10] = PREFIX ## PFX ## SIZE ## _mc22_ ## CPU; \
  501. c->PFX ## _pixels_tab[IDX][11] = PREFIX ## PFX ## SIZE ## _mc32_ ## CPU; \
  502. c->PFX ## _pixels_tab[IDX][12] = PREFIX ## PFX ## SIZE ## _mc03_ ## CPU; \
  503. c->PFX ## _pixels_tab[IDX][13] = PREFIX ## PFX ## SIZE ## _mc13_ ## CPU; \
  504. c->PFX ## _pixels_tab[IDX][14] = PREFIX ## PFX ## SIZE ## _mc23_ ## CPU; \
  505. c->PFX ## _pixels_tab[IDX][15] = PREFIX ## PFX ## SIZE ## _mc33_ ## CPU; \
  506. } while (0)
  507. static av_cold void dsputil_init_mmx(DSPContext *c, AVCodecContext *avctx,
  508. int cpu_flags)
  509. {
  510. #if HAVE_MMX_INLINE
  511. const int high_bit_depth = avctx->bits_per_raw_sample > 8;
  512. c->put_pixels_clamped = ff_put_pixels_clamped_mmx;
  513. c->put_signed_pixels_clamped = ff_put_signed_pixels_clamped_mmx;
  514. c->add_pixels_clamped = ff_add_pixels_clamped_mmx;
  515. if (!high_bit_depth) {
  516. c->clear_block = ff_clear_block_mmx;
  517. c->clear_blocks = ff_clear_blocks_mmx;
  518. c->draw_edges = ff_draw_edges_mmx;
  519. switch (avctx->idct_algo) {
  520. case FF_IDCT_AUTO:
  521. case FF_IDCT_SIMPLEMMX:
  522. c->idct_put = ff_simple_idct_put_mmx;
  523. c->idct_add = ff_simple_idct_add_mmx;
  524. c->idct = ff_simple_idct_mmx;
  525. c->idct_permutation_type = FF_SIMPLE_IDCT_PERM;
  526. break;
  527. case FF_IDCT_XVIDMMX:
  528. c->idct_put = ff_idct_xvid_mmx_put;
  529. c->idct_add = ff_idct_xvid_mmx_add;
  530. c->idct = ff_idct_xvid_mmx;
  531. break;
  532. }
  533. }
  534. c->gmc = ff_gmc_mmx;
  535. c->add_bytes = ff_add_bytes_mmx;
  536. #endif /* HAVE_MMX_INLINE */
  537. #if HAVE_MMX_EXTERNAL
  538. c->vector_clip_int32 = ff_vector_clip_int32_mmx;
  539. #endif /* HAVE_MMX_EXTERNAL */
  540. }
  541. static av_cold void dsputil_init_mmxext(DSPContext *c, AVCodecContext *avctx,
  542. int cpu_flags)
  543. {
  544. #if HAVE_MMXEXT_INLINE
  545. const int high_bit_depth = avctx->bits_per_raw_sample > 8;
  546. if (!high_bit_depth && avctx->idct_algo == FF_IDCT_XVIDMMX) {
  547. c->idct_put = ff_idct_xvid_mmxext_put;
  548. c->idct_add = ff_idct_xvid_mmxext_add;
  549. c->idct = ff_idct_xvid_mmxext;
  550. }
  551. #endif /* HAVE_MMXEXT_INLINE */
  552. #if HAVE_MMXEXT_EXTERNAL
  553. SET_QPEL_FUNCS(avg_qpel, 0, 16, mmxext, );
  554. SET_QPEL_FUNCS(avg_qpel, 1, 8, mmxext, );
  555. SET_QPEL_FUNCS(put_qpel, 0, 16, mmxext, );
  556. SET_QPEL_FUNCS(put_qpel, 1, 8, mmxext, );
  557. SET_QPEL_FUNCS(put_no_rnd_qpel, 0, 16, mmxext, );
  558. SET_QPEL_FUNCS(put_no_rnd_qpel, 1, 8, mmxext, );
  559. /* slower than cmov version on AMD */
  560. if (!(cpu_flags & AV_CPU_FLAG_3DNOW))
  561. c->add_hfyu_median_prediction = ff_add_hfyu_median_prediction_mmxext;
  562. c->scalarproduct_int16 = ff_scalarproduct_int16_mmxext;
  563. c->scalarproduct_and_madd_int16 = ff_scalarproduct_and_madd_int16_mmxext;
  564. #endif /* HAVE_MMXEXT_EXTERNAL */
  565. }
  566. static av_cold void dsputil_init_sse(DSPContext *c, AVCodecContext *avctx,
  567. int cpu_flags)
  568. {
  569. #if HAVE_SSE_INLINE
  570. const int high_bit_depth = avctx->bits_per_raw_sample > 8;
  571. c->vector_clipf = ff_vector_clipf_sse;
  572. #if FF_API_XVMC
  573. FF_DISABLE_DEPRECATION_WARNINGS
  574. /* XvMCCreateBlocks() may not allocate 16-byte aligned blocks */
  575. if (CONFIG_MPEG_XVMC_DECODER && avctx->xvmc_acceleration > 1)
  576. return;
  577. FF_ENABLE_DEPRECATION_WARNINGS
  578. #endif /* FF_API_XVMC */
  579. if (!high_bit_depth) {
  580. c->clear_block = ff_clear_block_sse;
  581. c->clear_blocks = ff_clear_blocks_sse;
  582. }
  583. #endif /* HAVE_SSE_INLINE */
  584. }
  585. static av_cold void dsputil_init_sse2(DSPContext *c, AVCodecContext *avctx,
  586. int cpu_flags)
  587. {
  588. #if HAVE_SSE2_INLINE
  589. const int high_bit_depth = avctx->bits_per_raw_sample > 8;
  590. if (!high_bit_depth && avctx->idct_algo == FF_IDCT_XVIDMMX) {
  591. c->idct_put = ff_idct_xvid_sse2_put;
  592. c->idct_add = ff_idct_xvid_sse2_add;
  593. c->idct = ff_idct_xvid_sse2;
  594. c->idct_permutation_type = FF_SSE2_IDCT_PERM;
  595. }
  596. #endif /* HAVE_SSE2_INLINE */
  597. #if HAVE_SSE2_EXTERNAL
  598. c->scalarproduct_int16 = ff_scalarproduct_int16_sse2;
  599. c->scalarproduct_and_madd_int16 = ff_scalarproduct_and_madd_int16_sse2;
  600. if (cpu_flags & AV_CPU_FLAG_ATOM) {
  601. c->vector_clip_int32 = ff_vector_clip_int32_int_sse2;
  602. } else {
  603. c->vector_clip_int32 = ff_vector_clip_int32_sse2;
  604. }
  605. c->bswap_buf = ff_bswap32_buf_sse2;
  606. #endif /* HAVE_SSE2_EXTERNAL */
  607. }
  608. static av_cold void dsputil_init_ssse3(DSPContext *c, AVCodecContext *avctx,
  609. int cpu_flags)
  610. {
  611. #if HAVE_SSSE3_EXTERNAL
  612. c->add_hfyu_left_prediction = ff_add_hfyu_left_prediction_ssse3;
  613. if (cpu_flags & AV_CPU_FLAG_SSE4) // not really SSE4, just slow on Conroe
  614. c->add_hfyu_left_prediction = ff_add_hfyu_left_prediction_sse4;
  615. if (!(cpu_flags & (AV_CPU_FLAG_SSE42 | AV_CPU_FLAG_3DNOW))) // cachesplit
  616. c->scalarproduct_and_madd_int16 = ff_scalarproduct_and_madd_int16_ssse3;
  617. c->bswap_buf = ff_bswap32_buf_ssse3;
  618. #endif /* HAVE_SSSE3_EXTERNAL */
  619. }
  620. static av_cold void dsputil_init_sse4(DSPContext *c, AVCodecContext *avctx,
  621. int cpu_flags)
  622. {
  623. #if HAVE_SSE4_EXTERNAL
  624. c->vector_clip_int32 = ff_vector_clip_int32_sse4;
  625. #endif /* HAVE_SSE4_EXTERNAL */
  626. }
  627. av_cold void ff_dsputil_init_x86(DSPContext *c, AVCodecContext *avctx)
  628. {
  629. int cpu_flags = av_get_cpu_flags();
  630. #if HAVE_7REGS && HAVE_INLINE_ASM
  631. if (cpu_flags & AV_CPU_FLAG_CMOV)
  632. c->add_hfyu_median_prediction = ff_add_hfyu_median_prediction_cmov;
  633. #endif
  634. if (X86_MMX(cpu_flags))
  635. dsputil_init_mmx(c, avctx, cpu_flags);
  636. if (X86_MMXEXT(cpu_flags))
  637. dsputil_init_mmxext(c, avctx, cpu_flags);
  638. if (X86_SSE(cpu_flags))
  639. dsputil_init_sse(c, avctx, cpu_flags);
  640. if (X86_SSE2(cpu_flags))
  641. dsputil_init_sse2(c, avctx, cpu_flags);
  642. if (EXTERNAL_SSSE3(cpu_flags))
  643. dsputil_init_ssse3(c, avctx, cpu_flags);
  644. if (EXTERNAL_SSE4(cpu_flags))
  645. dsputil_init_sse4(c, avctx, cpu_flags);
  646. if (CONFIG_ENCODERS)
  647. ff_dsputilenc_init_mmx(c, avctx);
  648. }