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.

2946 lines
123KB

  1. /*
  2. * MMX optimized DSP utils
  3. * Copyright (c) 2000, 2001 Fabrice Bellard
  4. * Copyright (c) 2002-2004 Michael Niedermayer <michaelni@gmx.at>
  5. *
  6. * This file is part of Libav.
  7. *
  8. * Libav is free software; you can redistribute it and/or
  9. * modify it under the terms of the GNU Lesser General Public
  10. * License as published by the Free Software Foundation; either
  11. * version 2.1 of the License, or (at your option) any later version.
  12. *
  13. * Libav is distributed in the hope that it will be useful,
  14. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  15. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  16. * Lesser General Public License for more details.
  17. *
  18. * You should have received a copy of the GNU Lesser General Public
  19. * License along with Libav; if not, write to the Free Software
  20. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  21. *
  22. * MMX optimization by Nick Kurshev <nickols_k@mail.ru>
  23. */
  24. #include "libavutil/cpu.h"
  25. #include "libavutil/x86_cpu.h"
  26. #include "libavcodec/dsputil.h"
  27. #include "libavcodec/h264dsp.h"
  28. #include "libavcodec/mpegvideo.h"
  29. #include "libavcodec/simple_idct.h"
  30. #include "libavcodec/ac3dec.h"
  31. #include "dsputil_mmx.h"
  32. #include "idct_xvid.h"
  33. //#undef NDEBUG
  34. //#include <assert.h>
  35. /* pixel operations */
  36. DECLARE_ALIGNED(8, const uint64_t, ff_bone) = 0x0101010101010101ULL;
  37. DECLARE_ALIGNED(8, const uint64_t, ff_wtwo) = 0x0002000200020002ULL;
  38. DECLARE_ALIGNED(16, const uint64_t, ff_pdw_80000000)[2] =
  39. {0x8000000080000000ULL, 0x8000000080000000ULL};
  40. DECLARE_ALIGNED(16, const xmm_reg, ff_pw_1 ) = {0x0001000100010001ULL, 0x0001000100010001ULL};
  41. DECLARE_ALIGNED(16, const xmm_reg, ff_pw_2 ) = {0x0002000200020002ULL, 0x0002000200020002ULL};
  42. DECLARE_ALIGNED(16, const xmm_reg, ff_pw_3 ) = {0x0003000300030003ULL, 0x0003000300030003ULL};
  43. DECLARE_ALIGNED(16, const xmm_reg, ff_pw_4 ) = {0x0004000400040004ULL, 0x0004000400040004ULL};
  44. DECLARE_ALIGNED(16, const xmm_reg, ff_pw_5 ) = {0x0005000500050005ULL, 0x0005000500050005ULL};
  45. DECLARE_ALIGNED(16, const xmm_reg, ff_pw_8 ) = {0x0008000800080008ULL, 0x0008000800080008ULL};
  46. DECLARE_ALIGNED(16, const xmm_reg, ff_pw_9 ) = {0x0009000900090009ULL, 0x0009000900090009ULL};
  47. DECLARE_ALIGNED(8, const uint64_t, ff_pw_15 ) = 0x000F000F000F000FULL;
  48. DECLARE_ALIGNED(16, const xmm_reg, ff_pw_16 ) = {0x0010001000100010ULL, 0x0010001000100010ULL};
  49. DECLARE_ALIGNED(16, const xmm_reg, ff_pw_17 ) = {0x0011001100110011ULL, 0x0011001100110011ULL};
  50. DECLARE_ALIGNED(16, const xmm_reg, ff_pw_18 ) = {0x0012001200120012ULL, 0x0012001200120012ULL};
  51. DECLARE_ALIGNED(8, const uint64_t, ff_pw_20 ) = 0x0014001400140014ULL;
  52. DECLARE_ALIGNED(16, const xmm_reg, ff_pw_27 ) = {0x001B001B001B001BULL, 0x001B001B001B001BULL};
  53. DECLARE_ALIGNED(16, const xmm_reg, ff_pw_28 ) = {0x001C001C001C001CULL, 0x001C001C001C001CULL};
  54. DECLARE_ALIGNED(16, const xmm_reg, ff_pw_32 ) = {0x0020002000200020ULL, 0x0020002000200020ULL};
  55. DECLARE_ALIGNED(8, const uint64_t, ff_pw_42 ) = 0x002A002A002A002AULL;
  56. DECLARE_ALIGNED(8, const uint64_t, ff_pw_53 ) = 0x0035003500350035ULL;
  57. DECLARE_ALIGNED(16, const xmm_reg, ff_pw_63 ) = {0x003F003F003F003FULL, 0x003F003F003F003FULL};
  58. DECLARE_ALIGNED(16, const xmm_reg, ff_pw_64 ) = {0x0040004000400040ULL, 0x0040004000400040ULL};
  59. DECLARE_ALIGNED(8, const uint64_t, ff_pw_96 ) = 0x0060006000600060ULL;
  60. DECLARE_ALIGNED(8, const uint64_t, ff_pw_128) = 0x0080008000800080ULL;
  61. DECLARE_ALIGNED(8, const uint64_t, ff_pw_255) = 0x00ff00ff00ff00ffULL;
  62. DECLARE_ALIGNED(16, const xmm_reg, ff_pw_512) = {0x0200020002000200ULL, 0x0200020002000200ULL};
  63. DECLARE_ALIGNED(16, const xmm_reg, ff_pw_1019)= {0x03FB03FB03FB03FBULL, 0x03FB03FB03FB03FBULL};
  64. DECLARE_ALIGNED(16, const xmm_reg, ff_pb_0 ) = {0x0000000000000000ULL, 0x0000000000000000ULL};
  65. DECLARE_ALIGNED(16, const xmm_reg, ff_pb_1 ) = {0x0101010101010101ULL, 0x0101010101010101ULL};
  66. DECLARE_ALIGNED(16, const xmm_reg, ff_pb_3 ) = {0x0303030303030303ULL, 0x0303030303030303ULL};
  67. DECLARE_ALIGNED(16, const xmm_reg, ff_pb_4 ) = {0x0404040404040404ULL, 0x0404040404040404ULL};
  68. DECLARE_ALIGNED(8, const uint64_t, ff_pb_7 ) = 0x0707070707070707ULL;
  69. DECLARE_ALIGNED(8, const uint64_t, ff_pb_1F ) = 0x1F1F1F1F1F1F1F1FULL;
  70. DECLARE_ALIGNED(8, const uint64_t, ff_pb_3F ) = 0x3F3F3F3F3F3F3F3FULL;
  71. DECLARE_ALIGNED(16, const xmm_reg, ff_pb_80 ) = {0x8080808080808080ULL, 0x8080808080808080ULL};
  72. DECLARE_ALIGNED(8, const uint64_t, ff_pb_81 ) = 0x8181818181818181ULL;
  73. DECLARE_ALIGNED(16, const xmm_reg, ff_pb_A1 ) = {0xA1A1A1A1A1A1A1A1ULL, 0xA1A1A1A1A1A1A1A1ULL};
  74. DECLARE_ALIGNED(16, const xmm_reg, ff_pb_F8 ) = {0xF8F8F8F8F8F8F8F8ULL, 0xF8F8F8F8F8F8F8F8ULL};
  75. DECLARE_ALIGNED(8, const uint64_t, ff_pb_FC ) = 0xFCFCFCFCFCFCFCFCULL;
  76. DECLARE_ALIGNED(16, const xmm_reg, ff_pb_FE ) = {0xFEFEFEFEFEFEFEFEULL, 0xFEFEFEFEFEFEFEFEULL};
  77. DECLARE_ALIGNED(16, const double, ff_pd_1)[2] = { 1.0, 1.0 };
  78. DECLARE_ALIGNED(16, const double, ff_pd_2)[2] = { 2.0, 2.0 };
  79. #define JUMPALIGN() __asm__ volatile (".p2align 3"::)
  80. #define MOVQ_ZERO(regd) __asm__ volatile ("pxor %%" #regd ", %%" #regd ::)
  81. #define MOVQ_BFE(regd) \
  82. __asm__ volatile ( \
  83. "pcmpeqd %%" #regd ", %%" #regd " \n\t"\
  84. "paddb %%" #regd ", %%" #regd " \n\t" ::)
  85. #ifndef PIC
  86. #define MOVQ_BONE(regd) __asm__ volatile ("movq %0, %%" #regd " \n\t" ::"m"(ff_bone))
  87. #define MOVQ_WTWO(regd) __asm__ volatile ("movq %0, %%" #regd " \n\t" ::"m"(ff_wtwo))
  88. #else
  89. // for shared library it's better to use this way for accessing constants
  90. // pcmpeqd -> -1
  91. #define MOVQ_BONE(regd) \
  92. __asm__ volatile ( \
  93. "pcmpeqd %%" #regd ", %%" #regd " \n\t" \
  94. "psrlw $15, %%" #regd " \n\t" \
  95. "packuswb %%" #regd ", %%" #regd " \n\t" ::)
  96. #define MOVQ_WTWO(regd) \
  97. __asm__ volatile ( \
  98. "pcmpeqd %%" #regd ", %%" #regd " \n\t" \
  99. "psrlw $15, %%" #regd " \n\t" \
  100. "psllw $1, %%" #regd " \n\t"::)
  101. #endif
  102. // using regr as temporary and for the output result
  103. // first argument is unmodifed and second is trashed
  104. // regfe is supposed to contain 0xfefefefefefefefe
  105. #define PAVGB_MMX_NO_RND(rega, regb, regr, regfe) \
  106. "movq " #rega ", " #regr " \n\t"\
  107. "pand " #regb ", " #regr " \n\t"\
  108. "pxor " #rega ", " #regb " \n\t"\
  109. "pand " #regfe "," #regb " \n\t"\
  110. "psrlq $1, " #regb " \n\t"\
  111. "paddb " #regb ", " #regr " \n\t"
  112. #define PAVGB_MMX(rega, regb, regr, regfe) \
  113. "movq " #rega ", " #regr " \n\t"\
  114. "por " #regb ", " #regr " \n\t"\
  115. "pxor " #rega ", " #regb " \n\t"\
  116. "pand " #regfe "," #regb " \n\t"\
  117. "psrlq $1, " #regb " \n\t"\
  118. "psubb " #regb ", " #regr " \n\t"
  119. // mm6 is supposed to contain 0xfefefefefefefefe
  120. #define PAVGBP_MMX_NO_RND(rega, regb, regr, regc, regd, regp) \
  121. "movq " #rega ", " #regr " \n\t"\
  122. "movq " #regc ", " #regp " \n\t"\
  123. "pand " #regb ", " #regr " \n\t"\
  124. "pand " #regd ", " #regp " \n\t"\
  125. "pxor " #rega ", " #regb " \n\t"\
  126. "pxor " #regc ", " #regd " \n\t"\
  127. "pand %%mm6, " #regb " \n\t"\
  128. "pand %%mm6, " #regd " \n\t"\
  129. "psrlq $1, " #regb " \n\t"\
  130. "psrlq $1, " #regd " \n\t"\
  131. "paddb " #regb ", " #regr " \n\t"\
  132. "paddb " #regd ", " #regp " \n\t"
  133. #define PAVGBP_MMX(rega, regb, regr, regc, regd, regp) \
  134. "movq " #rega ", " #regr " \n\t"\
  135. "movq " #regc ", " #regp " \n\t"\
  136. "por " #regb ", " #regr " \n\t"\
  137. "por " #regd ", " #regp " \n\t"\
  138. "pxor " #rega ", " #regb " \n\t"\
  139. "pxor " #regc ", " #regd " \n\t"\
  140. "pand %%mm6, " #regb " \n\t"\
  141. "pand %%mm6, " #regd " \n\t"\
  142. "psrlq $1, " #regd " \n\t"\
  143. "psrlq $1, " #regb " \n\t"\
  144. "psubb " #regb ", " #regr " \n\t"\
  145. "psubb " #regd ", " #regp " \n\t"
  146. /***********************************/
  147. /* MMX no rounding */
  148. #define DEF(x, y) x ## _no_rnd_ ## y ##_mmx
  149. #define SET_RND MOVQ_WONE
  150. #define PAVGBP(a, b, c, d, e, f) PAVGBP_MMX_NO_RND(a, b, c, d, e, f)
  151. #define PAVGB(a, b, c, e) PAVGB_MMX_NO_RND(a, b, c, e)
  152. #define OP_AVG(a, b, c, e) PAVGB_MMX(a, b, c, e)
  153. #include "dsputil_mmx_rnd_template.c"
  154. #undef DEF
  155. #undef SET_RND
  156. #undef PAVGBP
  157. #undef PAVGB
  158. /***********************************/
  159. /* MMX rounding */
  160. #define DEF(x, y) x ## _ ## y ##_mmx
  161. #define SET_RND MOVQ_WTWO
  162. #define PAVGBP(a, b, c, d, e, f) PAVGBP_MMX(a, b, c, d, e, f)
  163. #define PAVGB(a, b, c, e) PAVGB_MMX(a, b, c, e)
  164. #include "dsputil_mmx_rnd_template.c"
  165. #undef DEF
  166. #undef SET_RND
  167. #undef PAVGBP
  168. #undef PAVGB
  169. #undef OP_AVG
  170. /***********************************/
  171. /* 3Dnow specific */
  172. #define DEF(x) x ## _3dnow
  173. #define PAVGB "pavgusb"
  174. #define OP_AVG PAVGB
  175. #include "dsputil_mmx_avg_template.c"
  176. #undef DEF
  177. #undef PAVGB
  178. #undef OP_AVG
  179. /***********************************/
  180. /* MMX2 specific */
  181. #define DEF(x) x ## _mmx2
  182. /* Introduced only in MMX2 set */
  183. #define PAVGB "pavgb"
  184. #define OP_AVG PAVGB
  185. #include "dsputil_mmx_avg_template.c"
  186. #undef DEF
  187. #undef PAVGB
  188. #undef OP_AVG
  189. #define put_no_rnd_pixels16_mmx put_pixels16_mmx
  190. #define put_no_rnd_pixels8_mmx put_pixels8_mmx
  191. #define put_pixels16_mmx2 put_pixels16_mmx
  192. #define put_pixels8_mmx2 put_pixels8_mmx
  193. #define put_pixels4_mmx2 put_pixels4_mmx
  194. #define put_no_rnd_pixels16_mmx2 put_no_rnd_pixels16_mmx
  195. #define put_no_rnd_pixels8_mmx2 put_no_rnd_pixels8_mmx
  196. #define put_pixels16_3dnow put_pixels16_mmx
  197. #define put_pixels8_3dnow put_pixels8_mmx
  198. #define put_pixels4_3dnow put_pixels4_mmx
  199. #define put_no_rnd_pixels16_3dnow put_no_rnd_pixels16_mmx
  200. #define put_no_rnd_pixels8_3dnow put_no_rnd_pixels8_mmx
  201. /***********************************/
  202. /* standard MMX */
  203. void ff_put_pixels_clamped_mmx(const DCTELEM *block, uint8_t *pixels, int line_size)
  204. {
  205. const DCTELEM *p;
  206. uint8_t *pix;
  207. /* read the pixels */
  208. p = block;
  209. pix = pixels;
  210. /* unrolled loop */
  211. __asm__ volatile(
  212. "movq %3, %%mm0 \n\t"
  213. "movq 8%3, %%mm1 \n\t"
  214. "movq 16%3, %%mm2 \n\t"
  215. "movq 24%3, %%mm3 \n\t"
  216. "movq 32%3, %%mm4 \n\t"
  217. "movq 40%3, %%mm5 \n\t"
  218. "movq 48%3, %%mm6 \n\t"
  219. "movq 56%3, %%mm7 \n\t"
  220. "packuswb %%mm1, %%mm0 \n\t"
  221. "packuswb %%mm3, %%mm2 \n\t"
  222. "packuswb %%mm5, %%mm4 \n\t"
  223. "packuswb %%mm7, %%mm6 \n\t"
  224. "movq %%mm0, (%0) \n\t"
  225. "movq %%mm2, (%0, %1) \n\t"
  226. "movq %%mm4, (%0, %1, 2) \n\t"
  227. "movq %%mm6, (%0, %2) \n\t"
  228. ::"r" (pix), "r" ((x86_reg)line_size), "r" ((x86_reg)line_size*3), "m"(*p)
  229. :"memory");
  230. pix += line_size*4;
  231. p += 32;
  232. // if here would be an exact copy of the code above
  233. // compiler would generate some very strange code
  234. // thus using "r"
  235. __asm__ volatile(
  236. "movq (%3), %%mm0 \n\t"
  237. "movq 8(%3), %%mm1 \n\t"
  238. "movq 16(%3), %%mm2 \n\t"
  239. "movq 24(%3), %%mm3 \n\t"
  240. "movq 32(%3), %%mm4 \n\t"
  241. "movq 40(%3), %%mm5 \n\t"
  242. "movq 48(%3), %%mm6 \n\t"
  243. "movq 56(%3), %%mm7 \n\t"
  244. "packuswb %%mm1, %%mm0 \n\t"
  245. "packuswb %%mm3, %%mm2 \n\t"
  246. "packuswb %%mm5, %%mm4 \n\t"
  247. "packuswb %%mm7, %%mm6 \n\t"
  248. "movq %%mm0, (%0) \n\t"
  249. "movq %%mm2, (%0, %1) \n\t"
  250. "movq %%mm4, (%0, %1, 2) \n\t"
  251. "movq %%mm6, (%0, %2) \n\t"
  252. ::"r" (pix), "r" ((x86_reg)line_size), "r" ((x86_reg)line_size*3), "r"(p)
  253. :"memory");
  254. }
  255. #define put_signed_pixels_clamped_mmx_half(off) \
  256. "movq "#off"(%2), %%mm1 \n\t"\
  257. "movq 16+"#off"(%2), %%mm2 \n\t"\
  258. "movq 32+"#off"(%2), %%mm3 \n\t"\
  259. "movq 48+"#off"(%2), %%mm4 \n\t"\
  260. "packsswb 8+"#off"(%2), %%mm1 \n\t"\
  261. "packsswb 24+"#off"(%2), %%mm2 \n\t"\
  262. "packsswb 40+"#off"(%2), %%mm3 \n\t"\
  263. "packsswb 56+"#off"(%2), %%mm4 \n\t"\
  264. "paddb %%mm0, %%mm1 \n\t"\
  265. "paddb %%mm0, %%mm2 \n\t"\
  266. "paddb %%mm0, %%mm3 \n\t"\
  267. "paddb %%mm0, %%mm4 \n\t"\
  268. "movq %%mm1, (%0) \n\t"\
  269. "movq %%mm2, (%0, %3) \n\t"\
  270. "movq %%mm3, (%0, %3, 2) \n\t"\
  271. "movq %%mm4, (%0, %1) \n\t"
  272. void ff_put_signed_pixels_clamped_mmx(const DCTELEM *block, uint8_t *pixels, int line_size)
  273. {
  274. x86_reg line_skip = line_size;
  275. x86_reg line_skip3;
  276. __asm__ volatile (
  277. "movq "MANGLE(ff_pb_80)", %%mm0 \n\t"
  278. "lea (%3, %3, 2), %1 \n\t"
  279. put_signed_pixels_clamped_mmx_half(0)
  280. "lea (%0, %3, 4), %0 \n\t"
  281. put_signed_pixels_clamped_mmx_half(64)
  282. :"+&r" (pixels), "=&r" (line_skip3)
  283. :"r" (block), "r"(line_skip)
  284. :"memory");
  285. }
  286. void ff_add_pixels_clamped_mmx(const DCTELEM *block, uint8_t *pixels, int line_size)
  287. {
  288. const DCTELEM *p;
  289. uint8_t *pix;
  290. int i;
  291. /* read the pixels */
  292. p = block;
  293. pix = pixels;
  294. MOVQ_ZERO(mm7);
  295. i = 4;
  296. do {
  297. __asm__ volatile(
  298. "movq (%2), %%mm0 \n\t"
  299. "movq 8(%2), %%mm1 \n\t"
  300. "movq 16(%2), %%mm2 \n\t"
  301. "movq 24(%2), %%mm3 \n\t"
  302. "movq %0, %%mm4 \n\t"
  303. "movq %1, %%mm6 \n\t"
  304. "movq %%mm4, %%mm5 \n\t"
  305. "punpcklbw %%mm7, %%mm4 \n\t"
  306. "punpckhbw %%mm7, %%mm5 \n\t"
  307. "paddsw %%mm4, %%mm0 \n\t"
  308. "paddsw %%mm5, %%mm1 \n\t"
  309. "movq %%mm6, %%mm5 \n\t"
  310. "punpcklbw %%mm7, %%mm6 \n\t"
  311. "punpckhbw %%mm7, %%mm5 \n\t"
  312. "paddsw %%mm6, %%mm2 \n\t"
  313. "paddsw %%mm5, %%mm3 \n\t"
  314. "packuswb %%mm1, %%mm0 \n\t"
  315. "packuswb %%mm3, %%mm2 \n\t"
  316. "movq %%mm0, %0 \n\t"
  317. "movq %%mm2, %1 \n\t"
  318. :"+m"(*pix), "+m"(*(pix+line_size))
  319. :"r"(p)
  320. :"memory");
  321. pix += line_size*2;
  322. p += 16;
  323. } while (--i);
  324. }
  325. static void put_pixels4_mmx(uint8_t *block, const uint8_t *pixels, int line_size, int h)
  326. {
  327. __asm__ volatile(
  328. "lea (%3, %3), %%"REG_a" \n\t"
  329. ".p2align 3 \n\t"
  330. "1: \n\t"
  331. "movd (%1), %%mm0 \n\t"
  332. "movd (%1, %3), %%mm1 \n\t"
  333. "movd %%mm0, (%2) \n\t"
  334. "movd %%mm1, (%2, %3) \n\t"
  335. "add %%"REG_a", %1 \n\t"
  336. "add %%"REG_a", %2 \n\t"
  337. "movd (%1), %%mm0 \n\t"
  338. "movd (%1, %3), %%mm1 \n\t"
  339. "movd %%mm0, (%2) \n\t"
  340. "movd %%mm1, (%2, %3) \n\t"
  341. "add %%"REG_a", %1 \n\t"
  342. "add %%"REG_a", %2 \n\t"
  343. "subl $4, %0 \n\t"
  344. "jnz 1b \n\t"
  345. : "+g"(h), "+r" (pixels), "+r" (block)
  346. : "r"((x86_reg)line_size)
  347. : "%"REG_a, "memory"
  348. );
  349. }
  350. static void put_pixels8_mmx(uint8_t *block, const uint8_t *pixels, int line_size, int h)
  351. {
  352. __asm__ volatile(
  353. "lea (%3, %3), %%"REG_a" \n\t"
  354. ".p2align 3 \n\t"
  355. "1: \n\t"
  356. "movq (%1), %%mm0 \n\t"
  357. "movq (%1, %3), %%mm1 \n\t"
  358. "movq %%mm0, (%2) \n\t"
  359. "movq %%mm1, (%2, %3) \n\t"
  360. "add %%"REG_a", %1 \n\t"
  361. "add %%"REG_a", %2 \n\t"
  362. "movq (%1), %%mm0 \n\t"
  363. "movq (%1, %3), %%mm1 \n\t"
  364. "movq %%mm0, (%2) \n\t"
  365. "movq %%mm1, (%2, %3) \n\t"
  366. "add %%"REG_a", %1 \n\t"
  367. "add %%"REG_a", %2 \n\t"
  368. "subl $4, %0 \n\t"
  369. "jnz 1b \n\t"
  370. : "+g"(h), "+r" (pixels), "+r" (block)
  371. : "r"((x86_reg)line_size)
  372. : "%"REG_a, "memory"
  373. );
  374. }
  375. static void put_pixels16_mmx(uint8_t *block, const uint8_t *pixels, int line_size, int h)
  376. {
  377. __asm__ volatile(
  378. "lea (%3, %3), %%"REG_a" \n\t"
  379. ".p2align 3 \n\t"
  380. "1: \n\t"
  381. "movq (%1), %%mm0 \n\t"
  382. "movq 8(%1), %%mm4 \n\t"
  383. "movq (%1, %3), %%mm1 \n\t"
  384. "movq 8(%1, %3), %%mm5 \n\t"
  385. "movq %%mm0, (%2) \n\t"
  386. "movq %%mm4, 8(%2) \n\t"
  387. "movq %%mm1, (%2, %3) \n\t"
  388. "movq %%mm5, 8(%2, %3) \n\t"
  389. "add %%"REG_a", %1 \n\t"
  390. "add %%"REG_a", %2 \n\t"
  391. "movq (%1), %%mm0 \n\t"
  392. "movq 8(%1), %%mm4 \n\t"
  393. "movq (%1, %3), %%mm1 \n\t"
  394. "movq 8(%1, %3), %%mm5 \n\t"
  395. "movq %%mm0, (%2) \n\t"
  396. "movq %%mm4, 8(%2) \n\t"
  397. "movq %%mm1, (%2, %3) \n\t"
  398. "movq %%mm5, 8(%2, %3) \n\t"
  399. "add %%"REG_a", %1 \n\t"
  400. "add %%"REG_a", %2 \n\t"
  401. "subl $4, %0 \n\t"
  402. "jnz 1b \n\t"
  403. : "+g"(h), "+r" (pixels), "+r" (block)
  404. : "r"((x86_reg)line_size)
  405. : "%"REG_a, "memory"
  406. );
  407. }
  408. static void put_pixels16_sse2(uint8_t *block, const uint8_t *pixels, int line_size, int h)
  409. {
  410. __asm__ volatile(
  411. "1: \n\t"
  412. "movdqu (%1), %%xmm0 \n\t"
  413. "movdqu (%1,%3), %%xmm1 \n\t"
  414. "movdqu (%1,%3,2), %%xmm2 \n\t"
  415. "movdqu (%1,%4), %%xmm3 \n\t"
  416. "lea (%1,%3,4), %1 \n\t"
  417. "movdqa %%xmm0, (%2) \n\t"
  418. "movdqa %%xmm1, (%2,%3) \n\t"
  419. "movdqa %%xmm2, (%2,%3,2) \n\t"
  420. "movdqa %%xmm3, (%2,%4) \n\t"
  421. "subl $4, %0 \n\t"
  422. "lea (%2,%3,4), %2 \n\t"
  423. "jnz 1b \n\t"
  424. : "+g"(h), "+r" (pixels), "+r" (block)
  425. : "r"((x86_reg)line_size), "r"((x86_reg)3L*line_size)
  426. : "memory"
  427. );
  428. }
  429. static void avg_pixels16_sse2(uint8_t *block, const uint8_t *pixels, int line_size, int h)
  430. {
  431. __asm__ volatile(
  432. "1: \n\t"
  433. "movdqu (%1), %%xmm0 \n\t"
  434. "movdqu (%1,%3), %%xmm1 \n\t"
  435. "movdqu (%1,%3,2), %%xmm2 \n\t"
  436. "movdqu (%1,%4), %%xmm3 \n\t"
  437. "lea (%1,%3,4), %1 \n\t"
  438. "pavgb (%2), %%xmm0 \n\t"
  439. "pavgb (%2,%3), %%xmm1 \n\t"
  440. "pavgb (%2,%3,2), %%xmm2 \n\t"
  441. "pavgb (%2,%4), %%xmm3 \n\t"
  442. "movdqa %%xmm0, (%2) \n\t"
  443. "movdqa %%xmm1, (%2,%3) \n\t"
  444. "movdqa %%xmm2, (%2,%3,2) \n\t"
  445. "movdqa %%xmm3, (%2,%4) \n\t"
  446. "subl $4, %0 \n\t"
  447. "lea (%2,%3,4), %2 \n\t"
  448. "jnz 1b \n\t"
  449. : "+g"(h), "+r" (pixels), "+r" (block)
  450. : "r"((x86_reg)line_size), "r"((x86_reg)3L*line_size)
  451. : "memory"
  452. );
  453. }
  454. #define CLEAR_BLOCKS(name,n) \
  455. static void name(DCTELEM *blocks)\
  456. {\
  457. __asm__ volatile(\
  458. "pxor %%mm7, %%mm7 \n\t"\
  459. "mov %1, %%"REG_a" \n\t"\
  460. "1: \n\t"\
  461. "movq %%mm7, (%0, %%"REG_a") \n\t"\
  462. "movq %%mm7, 8(%0, %%"REG_a") \n\t"\
  463. "movq %%mm7, 16(%0, %%"REG_a") \n\t"\
  464. "movq %%mm7, 24(%0, %%"REG_a") \n\t"\
  465. "add $32, %%"REG_a" \n\t"\
  466. " js 1b \n\t"\
  467. : : "r" (((uint8_t *)blocks)+128*n),\
  468. "i" (-128*n)\
  469. : "%"REG_a\
  470. );\
  471. }
  472. CLEAR_BLOCKS(clear_blocks_mmx, 6)
  473. CLEAR_BLOCKS(clear_block_mmx, 1)
  474. static void clear_block_sse(DCTELEM *block)
  475. {
  476. __asm__ volatile(
  477. "xorps %%xmm0, %%xmm0 \n"
  478. "movaps %%xmm0, (%0) \n"
  479. "movaps %%xmm0, 16(%0) \n"
  480. "movaps %%xmm0, 32(%0) \n"
  481. "movaps %%xmm0, 48(%0) \n"
  482. "movaps %%xmm0, 64(%0) \n"
  483. "movaps %%xmm0, 80(%0) \n"
  484. "movaps %%xmm0, 96(%0) \n"
  485. "movaps %%xmm0, 112(%0) \n"
  486. :: "r"(block)
  487. : "memory"
  488. );
  489. }
  490. static void clear_blocks_sse(DCTELEM *blocks)
  491. {\
  492. __asm__ volatile(
  493. "xorps %%xmm0, %%xmm0 \n"
  494. "mov %1, %%"REG_a" \n"
  495. "1: \n"
  496. "movaps %%xmm0, (%0, %%"REG_a") \n"
  497. "movaps %%xmm0, 16(%0, %%"REG_a") \n"
  498. "movaps %%xmm0, 32(%0, %%"REG_a") \n"
  499. "movaps %%xmm0, 48(%0, %%"REG_a") \n"
  500. "movaps %%xmm0, 64(%0, %%"REG_a") \n"
  501. "movaps %%xmm0, 80(%0, %%"REG_a") \n"
  502. "movaps %%xmm0, 96(%0, %%"REG_a") \n"
  503. "movaps %%xmm0, 112(%0, %%"REG_a") \n"
  504. "add $128, %%"REG_a" \n"
  505. " js 1b \n"
  506. : : "r" (((uint8_t *)blocks)+128*6),
  507. "i" (-128*6)
  508. : "%"REG_a
  509. );
  510. }
  511. static void add_bytes_mmx(uint8_t *dst, uint8_t *src, int w){
  512. x86_reg i=0;
  513. __asm__ volatile(
  514. "jmp 2f \n\t"
  515. "1: \n\t"
  516. "movq (%1, %0), %%mm0 \n\t"
  517. "movq (%2, %0), %%mm1 \n\t"
  518. "paddb %%mm0, %%mm1 \n\t"
  519. "movq %%mm1, (%2, %0) \n\t"
  520. "movq 8(%1, %0), %%mm0 \n\t"
  521. "movq 8(%2, %0), %%mm1 \n\t"
  522. "paddb %%mm0, %%mm1 \n\t"
  523. "movq %%mm1, 8(%2, %0) \n\t"
  524. "add $16, %0 \n\t"
  525. "2: \n\t"
  526. "cmp %3, %0 \n\t"
  527. " js 1b \n\t"
  528. : "+r" (i)
  529. : "r"(src), "r"(dst), "r"((x86_reg)w-15)
  530. );
  531. for(; i<w; i++)
  532. dst[i+0] += src[i+0];
  533. }
  534. static void add_bytes_l2_mmx(uint8_t *dst, uint8_t *src1, uint8_t *src2, int w){
  535. x86_reg i=0;
  536. __asm__ volatile(
  537. "jmp 2f \n\t"
  538. "1: \n\t"
  539. "movq (%2, %0), %%mm0 \n\t"
  540. "movq 8(%2, %0), %%mm1 \n\t"
  541. "paddb (%3, %0), %%mm0 \n\t"
  542. "paddb 8(%3, %0), %%mm1 \n\t"
  543. "movq %%mm0, (%1, %0) \n\t"
  544. "movq %%mm1, 8(%1, %0) \n\t"
  545. "add $16, %0 \n\t"
  546. "2: \n\t"
  547. "cmp %4, %0 \n\t"
  548. " js 1b \n\t"
  549. : "+r" (i)
  550. : "r"(dst), "r"(src1), "r"(src2), "r"((x86_reg)w-15)
  551. );
  552. for(; i<w; i++)
  553. dst[i] = src1[i] + src2[i];
  554. }
  555. #if HAVE_7REGS
  556. static void add_hfyu_median_prediction_cmov(uint8_t *dst, const uint8_t *top, const uint8_t *diff, int w, int *left, int *left_top) {
  557. x86_reg w2 = -w;
  558. x86_reg x;
  559. int l = *left & 0xff;
  560. int tl = *left_top & 0xff;
  561. int t;
  562. __asm__ volatile(
  563. "mov %7, %3 \n"
  564. "1: \n"
  565. "movzbl (%3,%4), %2 \n"
  566. "mov %2, %k3 \n"
  567. "sub %b1, %b3 \n"
  568. "add %b0, %b3 \n"
  569. "mov %2, %1 \n"
  570. "cmp %0, %2 \n"
  571. "cmovg %0, %2 \n"
  572. "cmovg %1, %0 \n"
  573. "cmp %k3, %0 \n"
  574. "cmovg %k3, %0 \n"
  575. "mov %7, %3 \n"
  576. "cmp %2, %0 \n"
  577. "cmovl %2, %0 \n"
  578. "add (%6,%4), %b0 \n"
  579. "mov %b0, (%5,%4) \n"
  580. "inc %4 \n"
  581. "jl 1b \n"
  582. :"+&q"(l), "+&q"(tl), "=&r"(t), "=&q"(x), "+&r"(w2)
  583. :"r"(dst+w), "r"(diff+w), "rm"(top+w)
  584. );
  585. *left = l;
  586. *left_top = tl;
  587. }
  588. #endif
  589. #define H263_LOOP_FILTER \
  590. "pxor %%mm7, %%mm7 \n\t"\
  591. "movq %0, %%mm0 \n\t"\
  592. "movq %0, %%mm1 \n\t"\
  593. "movq %3, %%mm2 \n\t"\
  594. "movq %3, %%mm3 \n\t"\
  595. "punpcklbw %%mm7, %%mm0 \n\t"\
  596. "punpckhbw %%mm7, %%mm1 \n\t"\
  597. "punpcklbw %%mm7, %%mm2 \n\t"\
  598. "punpckhbw %%mm7, %%mm3 \n\t"\
  599. "psubw %%mm2, %%mm0 \n\t"\
  600. "psubw %%mm3, %%mm1 \n\t"\
  601. "movq %1, %%mm2 \n\t"\
  602. "movq %1, %%mm3 \n\t"\
  603. "movq %2, %%mm4 \n\t"\
  604. "movq %2, %%mm5 \n\t"\
  605. "punpcklbw %%mm7, %%mm2 \n\t"\
  606. "punpckhbw %%mm7, %%mm3 \n\t"\
  607. "punpcklbw %%mm7, %%mm4 \n\t"\
  608. "punpckhbw %%mm7, %%mm5 \n\t"\
  609. "psubw %%mm2, %%mm4 \n\t"\
  610. "psubw %%mm3, %%mm5 \n\t"\
  611. "psllw $2, %%mm4 \n\t"\
  612. "psllw $2, %%mm5 \n\t"\
  613. "paddw %%mm0, %%mm4 \n\t"\
  614. "paddw %%mm1, %%mm5 \n\t"\
  615. "pxor %%mm6, %%mm6 \n\t"\
  616. "pcmpgtw %%mm4, %%mm6 \n\t"\
  617. "pcmpgtw %%mm5, %%mm7 \n\t"\
  618. "pxor %%mm6, %%mm4 \n\t"\
  619. "pxor %%mm7, %%mm5 \n\t"\
  620. "psubw %%mm6, %%mm4 \n\t"\
  621. "psubw %%mm7, %%mm5 \n\t"\
  622. "psrlw $3, %%mm4 \n\t"\
  623. "psrlw $3, %%mm5 \n\t"\
  624. "packuswb %%mm5, %%mm4 \n\t"\
  625. "packsswb %%mm7, %%mm6 \n\t"\
  626. "pxor %%mm7, %%mm7 \n\t"\
  627. "movd %4, %%mm2 \n\t"\
  628. "punpcklbw %%mm2, %%mm2 \n\t"\
  629. "punpcklbw %%mm2, %%mm2 \n\t"\
  630. "punpcklbw %%mm2, %%mm2 \n\t"\
  631. "psubusb %%mm4, %%mm2 \n\t"\
  632. "movq %%mm2, %%mm3 \n\t"\
  633. "psubusb %%mm4, %%mm3 \n\t"\
  634. "psubb %%mm3, %%mm2 \n\t"\
  635. "movq %1, %%mm3 \n\t"\
  636. "movq %2, %%mm4 \n\t"\
  637. "pxor %%mm6, %%mm3 \n\t"\
  638. "pxor %%mm6, %%mm4 \n\t"\
  639. "paddusb %%mm2, %%mm3 \n\t"\
  640. "psubusb %%mm2, %%mm4 \n\t"\
  641. "pxor %%mm6, %%mm3 \n\t"\
  642. "pxor %%mm6, %%mm4 \n\t"\
  643. "paddusb %%mm2, %%mm2 \n\t"\
  644. "packsswb %%mm1, %%mm0 \n\t"\
  645. "pcmpgtb %%mm0, %%mm7 \n\t"\
  646. "pxor %%mm7, %%mm0 \n\t"\
  647. "psubb %%mm7, %%mm0 \n\t"\
  648. "movq %%mm0, %%mm1 \n\t"\
  649. "psubusb %%mm2, %%mm0 \n\t"\
  650. "psubb %%mm0, %%mm1 \n\t"\
  651. "pand %5, %%mm1 \n\t"\
  652. "psrlw $2, %%mm1 \n\t"\
  653. "pxor %%mm7, %%mm1 \n\t"\
  654. "psubb %%mm7, %%mm1 \n\t"\
  655. "movq %0, %%mm5 \n\t"\
  656. "movq %3, %%mm6 \n\t"\
  657. "psubb %%mm1, %%mm5 \n\t"\
  658. "paddb %%mm1, %%mm6 \n\t"
  659. static void h263_v_loop_filter_mmx(uint8_t *src, int stride, int qscale){
  660. if(CONFIG_H263_DECODER || CONFIG_H263_ENCODER) {
  661. const int strength= ff_h263_loop_filter_strength[qscale];
  662. __asm__ volatile(
  663. H263_LOOP_FILTER
  664. "movq %%mm3, %1 \n\t"
  665. "movq %%mm4, %2 \n\t"
  666. "movq %%mm5, %0 \n\t"
  667. "movq %%mm6, %3 \n\t"
  668. : "+m" (*(uint64_t*)(src - 2*stride)),
  669. "+m" (*(uint64_t*)(src - 1*stride)),
  670. "+m" (*(uint64_t*)(src + 0*stride)),
  671. "+m" (*(uint64_t*)(src + 1*stride))
  672. : "g" (2*strength), "m"(ff_pb_FC)
  673. );
  674. }
  675. }
  676. static void h263_h_loop_filter_mmx(uint8_t *src, int stride, int qscale){
  677. if(CONFIG_H263_DECODER || CONFIG_H263_ENCODER) {
  678. const int strength= ff_h263_loop_filter_strength[qscale];
  679. DECLARE_ALIGNED(8, uint64_t, temp)[4];
  680. uint8_t *btemp= (uint8_t*)temp;
  681. src -= 2;
  682. transpose4x4(btemp , src , 8, stride);
  683. transpose4x4(btemp+4, src + 4*stride, 8, stride);
  684. __asm__ volatile(
  685. H263_LOOP_FILTER // 5 3 4 6
  686. : "+m" (temp[0]),
  687. "+m" (temp[1]),
  688. "+m" (temp[2]),
  689. "+m" (temp[3])
  690. : "g" (2*strength), "m"(ff_pb_FC)
  691. );
  692. __asm__ volatile(
  693. "movq %%mm5, %%mm1 \n\t"
  694. "movq %%mm4, %%mm0 \n\t"
  695. "punpcklbw %%mm3, %%mm5 \n\t"
  696. "punpcklbw %%mm6, %%mm4 \n\t"
  697. "punpckhbw %%mm3, %%mm1 \n\t"
  698. "punpckhbw %%mm6, %%mm0 \n\t"
  699. "movq %%mm5, %%mm3 \n\t"
  700. "movq %%mm1, %%mm6 \n\t"
  701. "punpcklwd %%mm4, %%mm5 \n\t"
  702. "punpcklwd %%mm0, %%mm1 \n\t"
  703. "punpckhwd %%mm4, %%mm3 \n\t"
  704. "punpckhwd %%mm0, %%mm6 \n\t"
  705. "movd %%mm5, (%0) \n\t"
  706. "punpckhdq %%mm5, %%mm5 \n\t"
  707. "movd %%mm5, (%0,%2) \n\t"
  708. "movd %%mm3, (%0,%2,2) \n\t"
  709. "punpckhdq %%mm3, %%mm3 \n\t"
  710. "movd %%mm3, (%0,%3) \n\t"
  711. "movd %%mm1, (%1) \n\t"
  712. "punpckhdq %%mm1, %%mm1 \n\t"
  713. "movd %%mm1, (%1,%2) \n\t"
  714. "movd %%mm6, (%1,%2,2) \n\t"
  715. "punpckhdq %%mm6, %%mm6 \n\t"
  716. "movd %%mm6, (%1,%3) \n\t"
  717. :: "r" (src),
  718. "r" (src + 4*stride),
  719. "r" ((x86_reg) stride ),
  720. "r" ((x86_reg)(3*stride))
  721. );
  722. }
  723. }
  724. /* draw the edges of width 'w' of an image of size width, height
  725. this mmx version can only handle w==8 || w==16 */
  726. static void draw_edges_mmx(uint8_t *buf, int wrap, int width, int height, int w, int h, int sides)
  727. {
  728. uint8_t *ptr, *last_line;
  729. int i;
  730. last_line = buf + (height - 1) * wrap;
  731. /* left and right */
  732. ptr = buf;
  733. if(w==8)
  734. {
  735. __asm__ volatile(
  736. "1: \n\t"
  737. "movd (%0), %%mm0 \n\t"
  738. "punpcklbw %%mm0, %%mm0 \n\t"
  739. "punpcklwd %%mm0, %%mm0 \n\t"
  740. "punpckldq %%mm0, %%mm0 \n\t"
  741. "movq %%mm0, -8(%0) \n\t"
  742. "movq -8(%0, %2), %%mm1 \n\t"
  743. "punpckhbw %%mm1, %%mm1 \n\t"
  744. "punpckhwd %%mm1, %%mm1 \n\t"
  745. "punpckhdq %%mm1, %%mm1 \n\t"
  746. "movq %%mm1, (%0, %2) \n\t"
  747. "add %1, %0 \n\t"
  748. "cmp %3, %0 \n\t"
  749. " jb 1b \n\t"
  750. : "+r" (ptr)
  751. : "r" ((x86_reg)wrap), "r" ((x86_reg)width), "r" (ptr + wrap*height)
  752. );
  753. }
  754. else
  755. {
  756. __asm__ volatile(
  757. "1: \n\t"
  758. "movd (%0), %%mm0 \n\t"
  759. "punpcklbw %%mm0, %%mm0 \n\t"
  760. "punpcklwd %%mm0, %%mm0 \n\t"
  761. "punpckldq %%mm0, %%mm0 \n\t"
  762. "movq %%mm0, -8(%0) \n\t"
  763. "movq %%mm0, -16(%0) \n\t"
  764. "movq -8(%0, %2), %%mm1 \n\t"
  765. "punpckhbw %%mm1, %%mm1 \n\t"
  766. "punpckhwd %%mm1, %%mm1 \n\t"
  767. "punpckhdq %%mm1, %%mm1 \n\t"
  768. "movq %%mm1, (%0, %2) \n\t"
  769. "movq %%mm1, 8(%0, %2) \n\t"
  770. "add %1, %0 \n\t"
  771. "cmp %3, %0 \n\t"
  772. " jb 1b \n\t"
  773. : "+r" (ptr)
  774. : "r" ((x86_reg)wrap), "r" ((x86_reg)width), "r" (ptr + wrap*height)
  775. );
  776. }
  777. /* top and bottom (and hopefully also the corners) */
  778. if (sides&EDGE_TOP) {
  779. for(i = 0; i < h; i += 4) {
  780. ptr= buf - (i + 1) * wrap - w;
  781. __asm__ volatile(
  782. "1: \n\t"
  783. "movq (%1, %0), %%mm0 \n\t"
  784. "movq %%mm0, (%0) \n\t"
  785. "movq %%mm0, (%0, %2) \n\t"
  786. "movq %%mm0, (%0, %2, 2) \n\t"
  787. "movq %%mm0, (%0, %3) \n\t"
  788. "add $8, %0 \n\t"
  789. "cmp %4, %0 \n\t"
  790. " jb 1b \n\t"
  791. : "+r" (ptr)
  792. : "r" ((x86_reg)buf - (x86_reg)ptr - w), "r" ((x86_reg)-wrap), "r" ((x86_reg)-wrap*3), "r" (ptr+width+2*w)
  793. );
  794. }
  795. }
  796. if (sides&EDGE_BOTTOM) {
  797. for(i = 0; i < w; i += 4) {
  798. ptr= last_line + (i + 1) * wrap - w;
  799. __asm__ volatile(
  800. "1: \n\t"
  801. "movq (%1, %0), %%mm0 \n\t"
  802. "movq %%mm0, (%0) \n\t"
  803. "movq %%mm0, (%0, %2) \n\t"
  804. "movq %%mm0, (%0, %2, 2) \n\t"
  805. "movq %%mm0, (%0, %3) \n\t"
  806. "add $8, %0 \n\t"
  807. "cmp %4, %0 \n\t"
  808. " jb 1b \n\t"
  809. : "+r" (ptr)
  810. : "r" ((x86_reg)last_line - (x86_reg)ptr - w), "r" ((x86_reg)wrap), "r" ((x86_reg)wrap*3), "r" (ptr+width+2*w)
  811. );
  812. }
  813. }
  814. }
  815. #define PAETH(cpu, abs3)\
  816. static void add_png_paeth_prediction_##cpu(uint8_t *dst, uint8_t *src, uint8_t *top, int w, int bpp)\
  817. {\
  818. x86_reg i = -bpp;\
  819. x86_reg end = w-3;\
  820. __asm__ volatile(\
  821. "pxor %%mm7, %%mm7 \n"\
  822. "movd (%1,%0), %%mm0 \n"\
  823. "movd (%2,%0), %%mm1 \n"\
  824. "punpcklbw %%mm7, %%mm0 \n"\
  825. "punpcklbw %%mm7, %%mm1 \n"\
  826. "add %4, %0 \n"\
  827. "1: \n"\
  828. "movq %%mm1, %%mm2 \n"\
  829. "movd (%2,%0), %%mm1 \n"\
  830. "movq %%mm2, %%mm3 \n"\
  831. "punpcklbw %%mm7, %%mm1 \n"\
  832. "movq %%mm2, %%mm4 \n"\
  833. "psubw %%mm1, %%mm3 \n"\
  834. "psubw %%mm0, %%mm4 \n"\
  835. "movq %%mm3, %%mm5 \n"\
  836. "paddw %%mm4, %%mm5 \n"\
  837. abs3\
  838. "movq %%mm4, %%mm6 \n"\
  839. "pminsw %%mm5, %%mm6 \n"\
  840. "pcmpgtw %%mm6, %%mm3 \n"\
  841. "pcmpgtw %%mm5, %%mm4 \n"\
  842. "movq %%mm4, %%mm6 \n"\
  843. "pand %%mm3, %%mm4 \n"\
  844. "pandn %%mm3, %%mm6 \n"\
  845. "pandn %%mm0, %%mm3 \n"\
  846. "movd (%3,%0), %%mm0 \n"\
  847. "pand %%mm1, %%mm6 \n"\
  848. "pand %%mm4, %%mm2 \n"\
  849. "punpcklbw %%mm7, %%mm0 \n"\
  850. "movq %6, %%mm5 \n"\
  851. "paddw %%mm6, %%mm0 \n"\
  852. "paddw %%mm2, %%mm3 \n"\
  853. "paddw %%mm3, %%mm0 \n"\
  854. "pand %%mm5, %%mm0 \n"\
  855. "movq %%mm0, %%mm3 \n"\
  856. "packuswb %%mm3, %%mm3 \n"\
  857. "movd %%mm3, (%1,%0) \n"\
  858. "add %4, %0 \n"\
  859. "cmp %5, %0 \n"\
  860. "jle 1b \n"\
  861. :"+r"(i)\
  862. :"r"(dst), "r"(top), "r"(src), "r"((x86_reg)bpp), "g"(end),\
  863. "m"(ff_pw_255)\
  864. :"memory"\
  865. );\
  866. }
  867. #define ABS3_MMX2\
  868. "psubw %%mm5, %%mm7 \n"\
  869. "pmaxsw %%mm7, %%mm5 \n"\
  870. "pxor %%mm6, %%mm6 \n"\
  871. "pxor %%mm7, %%mm7 \n"\
  872. "psubw %%mm3, %%mm6 \n"\
  873. "psubw %%mm4, %%mm7 \n"\
  874. "pmaxsw %%mm6, %%mm3 \n"\
  875. "pmaxsw %%mm7, %%mm4 \n"\
  876. "pxor %%mm7, %%mm7 \n"
  877. #define ABS3_SSSE3\
  878. "pabsw %%mm3, %%mm3 \n"\
  879. "pabsw %%mm4, %%mm4 \n"\
  880. "pabsw %%mm5, %%mm5 \n"
  881. PAETH(mmx2, ABS3_MMX2)
  882. #if HAVE_SSSE3
  883. PAETH(ssse3, ABS3_SSSE3)
  884. #endif
  885. #define QPEL_V_LOW(m3,m4,m5,m6, pw_20, pw_3, rnd, in0, in1, in2, in7, out, OP)\
  886. "paddw " #m4 ", " #m3 " \n\t" /* x1 */\
  887. "movq "MANGLE(ff_pw_20)", %%mm4 \n\t" /* 20 */\
  888. "pmullw " #m3 ", %%mm4 \n\t" /* 20x1 */\
  889. "movq "#in7", " #m3 " \n\t" /* d */\
  890. "movq "#in0", %%mm5 \n\t" /* D */\
  891. "paddw " #m3 ", %%mm5 \n\t" /* x4 */\
  892. "psubw %%mm5, %%mm4 \n\t" /* 20x1 - x4 */\
  893. "movq "#in1", %%mm5 \n\t" /* C */\
  894. "movq "#in2", %%mm6 \n\t" /* B */\
  895. "paddw " #m6 ", %%mm5 \n\t" /* x3 */\
  896. "paddw " #m5 ", %%mm6 \n\t" /* x2 */\
  897. "paddw %%mm6, %%mm6 \n\t" /* 2x2 */\
  898. "psubw %%mm6, %%mm5 \n\t" /* -2x2 + x3 */\
  899. "pmullw "MANGLE(ff_pw_3)", %%mm5 \n\t" /* -6x2 + 3x3 */\
  900. "paddw " #rnd ", %%mm4 \n\t" /* x2 */\
  901. "paddw %%mm4, %%mm5 \n\t" /* 20x1 - 6x2 + 3x3 - x4 */\
  902. "psraw $5, %%mm5 \n\t"\
  903. "packuswb %%mm5, %%mm5 \n\t"\
  904. OP(%%mm5, out, %%mm7, d)
  905. #define QPEL_BASE(OPNAME, ROUNDER, RND, OP_MMX2, OP_3DNOW)\
  906. static void OPNAME ## mpeg4_qpel16_h_lowpass_mmx2(uint8_t *dst, uint8_t *src, int dstStride, int srcStride, int h){\
  907. uint64_t temp;\
  908. \
  909. __asm__ volatile(\
  910. "pxor %%mm7, %%mm7 \n\t"\
  911. "1: \n\t"\
  912. "movq (%0), %%mm0 \n\t" /* ABCDEFGH */\
  913. "movq %%mm0, %%mm1 \n\t" /* ABCDEFGH */\
  914. "movq %%mm0, %%mm2 \n\t" /* ABCDEFGH */\
  915. "punpcklbw %%mm7, %%mm0 \n\t" /* 0A0B0C0D */\
  916. "punpckhbw %%mm7, %%mm1 \n\t" /* 0E0F0G0H */\
  917. "pshufw $0x90, %%mm0, %%mm5 \n\t" /* 0A0A0B0C */\
  918. "pshufw $0x41, %%mm0, %%mm6 \n\t" /* 0B0A0A0B */\
  919. "movq %%mm2, %%mm3 \n\t" /* ABCDEFGH */\
  920. "movq %%mm2, %%mm4 \n\t" /* ABCDEFGH */\
  921. "psllq $8, %%mm2 \n\t" /* 0ABCDEFG */\
  922. "psllq $16, %%mm3 \n\t" /* 00ABCDEF */\
  923. "psllq $24, %%mm4 \n\t" /* 000ABCDE */\
  924. "punpckhbw %%mm7, %%mm2 \n\t" /* 0D0E0F0G */\
  925. "punpckhbw %%mm7, %%mm3 \n\t" /* 0C0D0E0F */\
  926. "punpckhbw %%mm7, %%mm4 \n\t" /* 0B0C0D0E */\
  927. "paddw %%mm3, %%mm5 \n\t" /* b */\
  928. "paddw %%mm2, %%mm6 \n\t" /* c */\
  929. "paddw %%mm5, %%mm5 \n\t" /* 2b */\
  930. "psubw %%mm5, %%mm6 \n\t" /* c - 2b */\
  931. "pshufw $0x06, %%mm0, %%mm5 \n\t" /* 0C0B0A0A */\
  932. "pmullw "MANGLE(ff_pw_3)", %%mm6 \n\t" /* 3c - 6b */\
  933. "paddw %%mm4, %%mm0 \n\t" /* a */\
  934. "paddw %%mm1, %%mm5 \n\t" /* d */\
  935. "pmullw "MANGLE(ff_pw_20)", %%mm0 \n\t" /* 20a */\
  936. "psubw %%mm5, %%mm0 \n\t" /* 20a - d */\
  937. "paddw %6, %%mm6 \n\t"\
  938. "paddw %%mm6, %%mm0 \n\t" /* 20a - 6b + 3c - d */\
  939. "psraw $5, %%mm0 \n\t"\
  940. "movq %%mm0, %5 \n\t"\
  941. /* mm1=EFGH, mm2=DEFG, mm3=CDEF, mm4=BCDE, mm7=0 */\
  942. \
  943. "movq 5(%0), %%mm0 \n\t" /* FGHIJKLM */\
  944. "movq %%mm0, %%mm5 \n\t" /* FGHIJKLM */\
  945. "movq %%mm0, %%mm6 \n\t" /* FGHIJKLM */\
  946. "psrlq $8, %%mm0 \n\t" /* GHIJKLM0 */\
  947. "psrlq $16, %%mm5 \n\t" /* HIJKLM00 */\
  948. "punpcklbw %%mm7, %%mm0 \n\t" /* 0G0H0I0J */\
  949. "punpcklbw %%mm7, %%mm5 \n\t" /* 0H0I0J0K */\
  950. "paddw %%mm0, %%mm2 \n\t" /* b */\
  951. "paddw %%mm5, %%mm3 \n\t" /* c */\
  952. "paddw %%mm2, %%mm2 \n\t" /* 2b */\
  953. "psubw %%mm2, %%mm3 \n\t" /* c - 2b */\
  954. "movq %%mm6, %%mm2 \n\t" /* FGHIJKLM */\
  955. "psrlq $24, %%mm6 \n\t" /* IJKLM000 */\
  956. "punpcklbw %%mm7, %%mm2 \n\t" /* 0F0G0H0I */\
  957. "punpcklbw %%mm7, %%mm6 \n\t" /* 0I0J0K0L */\
  958. "pmullw "MANGLE(ff_pw_3)", %%mm3 \n\t" /* 3c - 6b */\
  959. "paddw %%mm2, %%mm1 \n\t" /* a */\
  960. "paddw %%mm6, %%mm4 \n\t" /* d */\
  961. "pmullw "MANGLE(ff_pw_20)", %%mm1 \n\t" /* 20a */\
  962. "psubw %%mm4, %%mm3 \n\t" /* - 6b +3c - d */\
  963. "paddw %6, %%mm1 \n\t"\
  964. "paddw %%mm1, %%mm3 \n\t" /* 20a - 6b +3c - d */\
  965. "psraw $5, %%mm3 \n\t"\
  966. "movq %5, %%mm1 \n\t"\
  967. "packuswb %%mm3, %%mm1 \n\t"\
  968. OP_MMX2(%%mm1, (%1),%%mm4, q)\
  969. /* mm0= GHIJ, mm2=FGHI, mm5=HIJK, mm6=IJKL, mm7=0 */\
  970. \
  971. "movq 9(%0), %%mm1 \n\t" /* JKLMNOPQ */\
  972. "movq %%mm1, %%mm4 \n\t" /* JKLMNOPQ */\
  973. "movq %%mm1, %%mm3 \n\t" /* JKLMNOPQ */\
  974. "psrlq $8, %%mm1 \n\t" /* KLMNOPQ0 */\
  975. "psrlq $16, %%mm4 \n\t" /* LMNOPQ00 */\
  976. "punpcklbw %%mm7, %%mm1 \n\t" /* 0K0L0M0N */\
  977. "punpcklbw %%mm7, %%mm4 \n\t" /* 0L0M0N0O */\
  978. "paddw %%mm1, %%mm5 \n\t" /* b */\
  979. "paddw %%mm4, %%mm0 \n\t" /* c */\
  980. "paddw %%mm5, %%mm5 \n\t" /* 2b */\
  981. "psubw %%mm5, %%mm0 \n\t" /* c - 2b */\
  982. "movq %%mm3, %%mm5 \n\t" /* JKLMNOPQ */\
  983. "psrlq $24, %%mm3 \n\t" /* MNOPQ000 */\
  984. "pmullw "MANGLE(ff_pw_3)", %%mm0 \n\t" /* 3c - 6b */\
  985. "punpcklbw %%mm7, %%mm3 \n\t" /* 0M0N0O0P */\
  986. "paddw %%mm3, %%mm2 \n\t" /* d */\
  987. "psubw %%mm2, %%mm0 \n\t" /* -6b + 3c - d */\
  988. "movq %%mm5, %%mm2 \n\t" /* JKLMNOPQ */\
  989. "punpcklbw %%mm7, %%mm2 \n\t" /* 0J0K0L0M */\
  990. "punpckhbw %%mm7, %%mm5 \n\t" /* 0N0O0P0Q */\
  991. "paddw %%mm2, %%mm6 \n\t" /* a */\
  992. "pmullw "MANGLE(ff_pw_20)", %%mm6 \n\t" /* 20a */\
  993. "paddw %6, %%mm0 \n\t"\
  994. "paddw %%mm6, %%mm0 \n\t" /* 20a - 6b + 3c - d */\
  995. "psraw $5, %%mm0 \n\t"\
  996. /* mm1=KLMN, mm2=JKLM, mm3=MNOP, mm4=LMNO, mm5=NOPQ mm7=0 */\
  997. \
  998. "paddw %%mm5, %%mm3 \n\t" /* a */\
  999. "pshufw $0xF9, %%mm5, %%mm6 \n\t" /* 0O0P0Q0Q */\
  1000. "paddw %%mm4, %%mm6 \n\t" /* b */\
  1001. "pshufw $0xBE, %%mm5, %%mm4 \n\t" /* 0P0Q0Q0P */\
  1002. "pshufw $0x6F, %%mm5, %%mm5 \n\t" /* 0Q0Q0P0O */\
  1003. "paddw %%mm1, %%mm4 \n\t" /* c */\
  1004. "paddw %%mm2, %%mm5 \n\t" /* d */\
  1005. "paddw %%mm6, %%mm6 \n\t" /* 2b */\
  1006. "psubw %%mm6, %%mm4 \n\t" /* c - 2b */\
  1007. "pmullw "MANGLE(ff_pw_20)", %%mm3 \n\t" /* 20a */\
  1008. "pmullw "MANGLE(ff_pw_3)", %%mm4 \n\t" /* 3c - 6b */\
  1009. "psubw %%mm5, %%mm3 \n\t" /* -6b + 3c - d */\
  1010. "paddw %6, %%mm4 \n\t"\
  1011. "paddw %%mm3, %%mm4 \n\t" /* 20a - 6b + 3c - d */\
  1012. "psraw $5, %%mm4 \n\t"\
  1013. "packuswb %%mm4, %%mm0 \n\t"\
  1014. OP_MMX2(%%mm0, 8(%1), %%mm4, q)\
  1015. \
  1016. "add %3, %0 \n\t"\
  1017. "add %4, %1 \n\t"\
  1018. "decl %2 \n\t"\
  1019. " jnz 1b \n\t"\
  1020. : "+a"(src), "+c"(dst), "+D"(h)\
  1021. : "d"((x86_reg)srcStride), "S"((x86_reg)dstStride), /*"m"(ff_pw_20), "m"(ff_pw_3),*/ "m"(temp), "m"(ROUNDER)\
  1022. : "memory"\
  1023. );\
  1024. }\
  1025. \
  1026. static void OPNAME ## mpeg4_qpel16_h_lowpass_3dnow(uint8_t *dst, uint8_t *src, int dstStride, int srcStride, int h){\
  1027. int i;\
  1028. int16_t temp[16];\
  1029. /* quick HACK, XXX FIXME MUST be optimized */\
  1030. for(i=0; i<h; i++)\
  1031. {\
  1032. temp[ 0]= (src[ 0]+src[ 1])*20 - (src[ 0]+src[ 2])*6 + (src[ 1]+src[ 3])*3 - (src[ 2]+src[ 4]);\
  1033. temp[ 1]= (src[ 1]+src[ 2])*20 - (src[ 0]+src[ 3])*6 + (src[ 0]+src[ 4])*3 - (src[ 1]+src[ 5]);\
  1034. temp[ 2]= (src[ 2]+src[ 3])*20 - (src[ 1]+src[ 4])*6 + (src[ 0]+src[ 5])*3 - (src[ 0]+src[ 6]);\
  1035. temp[ 3]= (src[ 3]+src[ 4])*20 - (src[ 2]+src[ 5])*6 + (src[ 1]+src[ 6])*3 - (src[ 0]+src[ 7]);\
  1036. temp[ 4]= (src[ 4]+src[ 5])*20 - (src[ 3]+src[ 6])*6 + (src[ 2]+src[ 7])*3 - (src[ 1]+src[ 8]);\
  1037. temp[ 5]= (src[ 5]+src[ 6])*20 - (src[ 4]+src[ 7])*6 + (src[ 3]+src[ 8])*3 - (src[ 2]+src[ 9]);\
  1038. temp[ 6]= (src[ 6]+src[ 7])*20 - (src[ 5]+src[ 8])*6 + (src[ 4]+src[ 9])*3 - (src[ 3]+src[10]);\
  1039. temp[ 7]= (src[ 7]+src[ 8])*20 - (src[ 6]+src[ 9])*6 + (src[ 5]+src[10])*3 - (src[ 4]+src[11]);\
  1040. temp[ 8]= (src[ 8]+src[ 9])*20 - (src[ 7]+src[10])*6 + (src[ 6]+src[11])*3 - (src[ 5]+src[12]);\
  1041. temp[ 9]= (src[ 9]+src[10])*20 - (src[ 8]+src[11])*6 + (src[ 7]+src[12])*3 - (src[ 6]+src[13]);\
  1042. temp[10]= (src[10]+src[11])*20 - (src[ 9]+src[12])*6 + (src[ 8]+src[13])*3 - (src[ 7]+src[14]);\
  1043. temp[11]= (src[11]+src[12])*20 - (src[10]+src[13])*6 + (src[ 9]+src[14])*3 - (src[ 8]+src[15]);\
  1044. temp[12]= (src[12]+src[13])*20 - (src[11]+src[14])*6 + (src[10]+src[15])*3 - (src[ 9]+src[16]);\
  1045. temp[13]= (src[13]+src[14])*20 - (src[12]+src[15])*6 + (src[11]+src[16])*3 - (src[10]+src[16]);\
  1046. temp[14]= (src[14]+src[15])*20 - (src[13]+src[16])*6 + (src[12]+src[16])*3 - (src[11]+src[15]);\
  1047. temp[15]= (src[15]+src[16])*20 - (src[14]+src[16])*6 + (src[13]+src[15])*3 - (src[12]+src[14]);\
  1048. __asm__ volatile(\
  1049. "movq (%0), %%mm0 \n\t"\
  1050. "movq 8(%0), %%mm1 \n\t"\
  1051. "paddw %2, %%mm0 \n\t"\
  1052. "paddw %2, %%mm1 \n\t"\
  1053. "psraw $5, %%mm0 \n\t"\
  1054. "psraw $5, %%mm1 \n\t"\
  1055. "packuswb %%mm1, %%mm0 \n\t"\
  1056. OP_3DNOW(%%mm0, (%1), %%mm1, q)\
  1057. "movq 16(%0), %%mm0 \n\t"\
  1058. "movq 24(%0), %%mm1 \n\t"\
  1059. "paddw %2, %%mm0 \n\t"\
  1060. "paddw %2, %%mm1 \n\t"\
  1061. "psraw $5, %%mm0 \n\t"\
  1062. "psraw $5, %%mm1 \n\t"\
  1063. "packuswb %%mm1, %%mm0 \n\t"\
  1064. OP_3DNOW(%%mm0, 8(%1), %%mm1, q)\
  1065. :: "r"(temp), "r"(dst), "m"(ROUNDER)\
  1066. : "memory"\
  1067. );\
  1068. dst+=dstStride;\
  1069. src+=srcStride;\
  1070. }\
  1071. }\
  1072. \
  1073. static void OPNAME ## mpeg4_qpel8_h_lowpass_mmx2(uint8_t *dst, uint8_t *src, int dstStride, int srcStride, int h){\
  1074. __asm__ volatile(\
  1075. "pxor %%mm7, %%mm7 \n\t"\
  1076. "1: \n\t"\
  1077. "movq (%0), %%mm0 \n\t" /* ABCDEFGH */\
  1078. "movq %%mm0, %%mm1 \n\t" /* ABCDEFGH */\
  1079. "movq %%mm0, %%mm2 \n\t" /* ABCDEFGH */\
  1080. "punpcklbw %%mm7, %%mm0 \n\t" /* 0A0B0C0D */\
  1081. "punpckhbw %%mm7, %%mm1 \n\t" /* 0E0F0G0H */\
  1082. "pshufw $0x90, %%mm0, %%mm5 \n\t" /* 0A0A0B0C */\
  1083. "pshufw $0x41, %%mm0, %%mm6 \n\t" /* 0B0A0A0B */\
  1084. "movq %%mm2, %%mm3 \n\t" /* ABCDEFGH */\
  1085. "movq %%mm2, %%mm4 \n\t" /* ABCDEFGH */\
  1086. "psllq $8, %%mm2 \n\t" /* 0ABCDEFG */\
  1087. "psllq $16, %%mm3 \n\t" /* 00ABCDEF */\
  1088. "psllq $24, %%mm4 \n\t" /* 000ABCDE */\
  1089. "punpckhbw %%mm7, %%mm2 \n\t" /* 0D0E0F0G */\
  1090. "punpckhbw %%mm7, %%mm3 \n\t" /* 0C0D0E0F */\
  1091. "punpckhbw %%mm7, %%mm4 \n\t" /* 0B0C0D0E */\
  1092. "paddw %%mm3, %%mm5 \n\t" /* b */\
  1093. "paddw %%mm2, %%mm6 \n\t" /* c */\
  1094. "paddw %%mm5, %%mm5 \n\t" /* 2b */\
  1095. "psubw %%mm5, %%mm6 \n\t" /* c - 2b */\
  1096. "pshufw $0x06, %%mm0, %%mm5 \n\t" /* 0C0B0A0A */\
  1097. "pmullw "MANGLE(ff_pw_3)", %%mm6 \n\t" /* 3c - 6b */\
  1098. "paddw %%mm4, %%mm0 \n\t" /* a */\
  1099. "paddw %%mm1, %%mm5 \n\t" /* d */\
  1100. "pmullw "MANGLE(ff_pw_20)", %%mm0 \n\t" /* 20a */\
  1101. "psubw %%mm5, %%mm0 \n\t" /* 20a - d */\
  1102. "paddw %5, %%mm6 \n\t"\
  1103. "paddw %%mm6, %%mm0 \n\t" /* 20a - 6b + 3c - d */\
  1104. "psraw $5, %%mm0 \n\t"\
  1105. /* mm1=EFGH, mm2=DEFG, mm3=CDEF, mm4=BCDE, mm7=0 */\
  1106. \
  1107. "movd 5(%0), %%mm5 \n\t" /* FGHI */\
  1108. "punpcklbw %%mm7, %%mm5 \n\t" /* 0F0G0H0I */\
  1109. "pshufw $0xF9, %%mm5, %%mm6 \n\t" /* 0G0H0I0I */\
  1110. "paddw %%mm5, %%mm1 \n\t" /* a */\
  1111. "paddw %%mm6, %%mm2 \n\t" /* b */\
  1112. "pshufw $0xBE, %%mm5, %%mm6 \n\t" /* 0H0I0I0H */\
  1113. "pshufw $0x6F, %%mm5, %%mm5 \n\t" /* 0I0I0H0G */\
  1114. "paddw %%mm6, %%mm3 \n\t" /* c */\
  1115. "paddw %%mm5, %%mm4 \n\t" /* d */\
  1116. "paddw %%mm2, %%mm2 \n\t" /* 2b */\
  1117. "psubw %%mm2, %%mm3 \n\t" /* c - 2b */\
  1118. "pmullw "MANGLE(ff_pw_20)", %%mm1 \n\t" /* 20a */\
  1119. "pmullw "MANGLE(ff_pw_3)", %%mm3 \n\t" /* 3c - 6b */\
  1120. "psubw %%mm4, %%mm3 \n\t" /* -6b + 3c - d */\
  1121. "paddw %5, %%mm1 \n\t"\
  1122. "paddw %%mm1, %%mm3 \n\t" /* 20a - 6b + 3c - d */\
  1123. "psraw $5, %%mm3 \n\t"\
  1124. "packuswb %%mm3, %%mm0 \n\t"\
  1125. OP_MMX2(%%mm0, (%1), %%mm4, q)\
  1126. \
  1127. "add %3, %0 \n\t"\
  1128. "add %4, %1 \n\t"\
  1129. "decl %2 \n\t"\
  1130. " jnz 1b \n\t"\
  1131. : "+a"(src), "+c"(dst), "+d"(h)\
  1132. : "S"((x86_reg)srcStride), "D"((x86_reg)dstStride), /*"m"(ff_pw_20), "m"(ff_pw_3),*/ "m"(ROUNDER)\
  1133. : "memory"\
  1134. );\
  1135. }\
  1136. \
  1137. static void OPNAME ## mpeg4_qpel8_h_lowpass_3dnow(uint8_t *dst, uint8_t *src, int dstStride, int srcStride, int h){\
  1138. int i;\
  1139. int16_t temp[8];\
  1140. /* quick HACK, XXX FIXME MUST be optimized */\
  1141. for(i=0; i<h; i++)\
  1142. {\
  1143. temp[ 0]= (src[ 0]+src[ 1])*20 - (src[ 0]+src[ 2])*6 + (src[ 1]+src[ 3])*3 - (src[ 2]+src[ 4]);\
  1144. temp[ 1]= (src[ 1]+src[ 2])*20 - (src[ 0]+src[ 3])*6 + (src[ 0]+src[ 4])*3 - (src[ 1]+src[ 5]);\
  1145. temp[ 2]= (src[ 2]+src[ 3])*20 - (src[ 1]+src[ 4])*6 + (src[ 0]+src[ 5])*3 - (src[ 0]+src[ 6]);\
  1146. temp[ 3]= (src[ 3]+src[ 4])*20 - (src[ 2]+src[ 5])*6 + (src[ 1]+src[ 6])*3 - (src[ 0]+src[ 7]);\
  1147. temp[ 4]= (src[ 4]+src[ 5])*20 - (src[ 3]+src[ 6])*6 + (src[ 2]+src[ 7])*3 - (src[ 1]+src[ 8]);\
  1148. temp[ 5]= (src[ 5]+src[ 6])*20 - (src[ 4]+src[ 7])*6 + (src[ 3]+src[ 8])*3 - (src[ 2]+src[ 8]);\
  1149. temp[ 6]= (src[ 6]+src[ 7])*20 - (src[ 5]+src[ 8])*6 + (src[ 4]+src[ 8])*3 - (src[ 3]+src[ 7]);\
  1150. temp[ 7]= (src[ 7]+src[ 8])*20 - (src[ 6]+src[ 8])*6 + (src[ 5]+src[ 7])*3 - (src[ 4]+src[ 6]);\
  1151. __asm__ volatile(\
  1152. "movq (%0), %%mm0 \n\t"\
  1153. "movq 8(%0), %%mm1 \n\t"\
  1154. "paddw %2, %%mm0 \n\t"\
  1155. "paddw %2, %%mm1 \n\t"\
  1156. "psraw $5, %%mm0 \n\t"\
  1157. "psraw $5, %%mm1 \n\t"\
  1158. "packuswb %%mm1, %%mm0 \n\t"\
  1159. OP_3DNOW(%%mm0, (%1), %%mm1, q)\
  1160. :: "r"(temp), "r"(dst), "m"(ROUNDER)\
  1161. :"memory"\
  1162. );\
  1163. dst+=dstStride;\
  1164. src+=srcStride;\
  1165. }\
  1166. }
  1167. #define QPEL_OP(OPNAME, ROUNDER, RND, OP, MMX)\
  1168. \
  1169. static void OPNAME ## mpeg4_qpel16_v_lowpass_ ## MMX(uint8_t *dst, uint8_t *src, int dstStride, int srcStride){\
  1170. uint64_t temp[17*4];\
  1171. uint64_t *temp_ptr= temp;\
  1172. int count= 17;\
  1173. \
  1174. /*FIXME unroll */\
  1175. __asm__ volatile(\
  1176. "pxor %%mm7, %%mm7 \n\t"\
  1177. "1: \n\t"\
  1178. "movq (%0), %%mm0 \n\t"\
  1179. "movq (%0), %%mm1 \n\t"\
  1180. "movq 8(%0), %%mm2 \n\t"\
  1181. "movq 8(%0), %%mm3 \n\t"\
  1182. "punpcklbw %%mm7, %%mm0 \n\t"\
  1183. "punpckhbw %%mm7, %%mm1 \n\t"\
  1184. "punpcklbw %%mm7, %%mm2 \n\t"\
  1185. "punpckhbw %%mm7, %%mm3 \n\t"\
  1186. "movq %%mm0, (%1) \n\t"\
  1187. "movq %%mm1, 17*8(%1) \n\t"\
  1188. "movq %%mm2, 2*17*8(%1) \n\t"\
  1189. "movq %%mm3, 3*17*8(%1) \n\t"\
  1190. "add $8, %1 \n\t"\
  1191. "add %3, %0 \n\t"\
  1192. "decl %2 \n\t"\
  1193. " jnz 1b \n\t"\
  1194. : "+r" (src), "+r" (temp_ptr), "+r"(count)\
  1195. : "r" ((x86_reg)srcStride)\
  1196. : "memory"\
  1197. );\
  1198. \
  1199. temp_ptr= temp;\
  1200. count=4;\
  1201. \
  1202. /*FIXME reorder for speed */\
  1203. __asm__ volatile(\
  1204. /*"pxor %%mm7, %%mm7 \n\t"*/\
  1205. "1: \n\t"\
  1206. "movq (%0), %%mm0 \n\t"\
  1207. "movq 8(%0), %%mm1 \n\t"\
  1208. "movq 16(%0), %%mm2 \n\t"\
  1209. "movq 24(%0), %%mm3 \n\t"\
  1210. QPEL_V_LOW(%%mm0, %%mm1, %%mm2, %%mm3, %5, %6, %5, 16(%0), 8(%0), (%0), 32(%0), (%1), OP)\
  1211. QPEL_V_LOW(%%mm1, %%mm2, %%mm3, %%mm0, %5, %6, %5, 8(%0), (%0), (%0), 40(%0), (%1, %3), OP)\
  1212. "add %4, %1 \n\t"\
  1213. QPEL_V_LOW(%%mm2, %%mm3, %%mm0, %%mm1, %5, %6, %5, (%0), (%0), 8(%0), 48(%0), (%1), OP)\
  1214. \
  1215. QPEL_V_LOW(%%mm3, %%mm0, %%mm1, %%mm2, %5, %6, %5, (%0), 8(%0), 16(%0), 56(%0), (%1, %3), OP)\
  1216. "add %4, %1 \n\t"\
  1217. QPEL_V_LOW(%%mm0, %%mm1, %%mm2, %%mm3, %5, %6, %5, 8(%0), 16(%0), 24(%0), 64(%0), (%1), OP)\
  1218. QPEL_V_LOW(%%mm1, %%mm2, %%mm3, %%mm0, %5, %6, %5, 16(%0), 24(%0), 32(%0), 72(%0), (%1, %3), OP)\
  1219. "add %4, %1 \n\t"\
  1220. QPEL_V_LOW(%%mm2, %%mm3, %%mm0, %%mm1, %5, %6, %5, 24(%0), 32(%0), 40(%0), 80(%0), (%1), OP)\
  1221. QPEL_V_LOW(%%mm3, %%mm0, %%mm1, %%mm2, %5, %6, %5, 32(%0), 40(%0), 48(%0), 88(%0), (%1, %3), OP)\
  1222. "add %4, %1 \n\t"\
  1223. QPEL_V_LOW(%%mm0, %%mm1, %%mm2, %%mm3, %5, %6, %5, 40(%0), 48(%0), 56(%0), 96(%0), (%1), OP)\
  1224. QPEL_V_LOW(%%mm1, %%mm2, %%mm3, %%mm0, %5, %6, %5, 48(%0), 56(%0), 64(%0),104(%0), (%1, %3), OP)\
  1225. "add %4, %1 \n\t"\
  1226. QPEL_V_LOW(%%mm2, %%mm3, %%mm0, %%mm1, %5, %6, %5, 56(%0), 64(%0), 72(%0),112(%0), (%1), OP)\
  1227. QPEL_V_LOW(%%mm3, %%mm0, %%mm1, %%mm2, %5, %6, %5, 64(%0), 72(%0), 80(%0),120(%0), (%1, %3), OP)\
  1228. "add %4, %1 \n\t"\
  1229. QPEL_V_LOW(%%mm0, %%mm1, %%mm2, %%mm3, %5, %6, %5, 72(%0), 80(%0), 88(%0),128(%0), (%1), OP)\
  1230. \
  1231. QPEL_V_LOW(%%mm1, %%mm2, %%mm3, %%mm0, %5, %6, %5, 80(%0), 88(%0), 96(%0),128(%0), (%1, %3), OP)\
  1232. "add %4, %1 \n\t" \
  1233. QPEL_V_LOW(%%mm2, %%mm3, %%mm0, %%mm1, %5, %6, %5, 88(%0), 96(%0),104(%0),120(%0), (%1), OP)\
  1234. QPEL_V_LOW(%%mm3, %%mm0, %%mm1, %%mm2, %5, %6, %5, 96(%0),104(%0),112(%0),112(%0), (%1, %3), OP)\
  1235. \
  1236. "add $136, %0 \n\t"\
  1237. "add %6, %1 \n\t"\
  1238. "decl %2 \n\t"\
  1239. " jnz 1b \n\t"\
  1240. \
  1241. : "+r"(temp_ptr), "+r"(dst), "+g"(count)\
  1242. : "r"((x86_reg)dstStride), "r"(2*(x86_reg)dstStride), /*"m"(ff_pw_20), "m"(ff_pw_3),*/ "m"(ROUNDER), "g"(4-14*(x86_reg)dstStride)\
  1243. :"memory"\
  1244. );\
  1245. }\
  1246. \
  1247. static void OPNAME ## mpeg4_qpel8_v_lowpass_ ## MMX(uint8_t *dst, uint8_t *src, int dstStride, int srcStride){\
  1248. uint64_t temp[9*2];\
  1249. uint64_t *temp_ptr= temp;\
  1250. int count= 9;\
  1251. \
  1252. /*FIXME unroll */\
  1253. __asm__ volatile(\
  1254. "pxor %%mm7, %%mm7 \n\t"\
  1255. "1: \n\t"\
  1256. "movq (%0), %%mm0 \n\t"\
  1257. "movq (%0), %%mm1 \n\t"\
  1258. "punpcklbw %%mm7, %%mm0 \n\t"\
  1259. "punpckhbw %%mm7, %%mm1 \n\t"\
  1260. "movq %%mm0, (%1) \n\t"\
  1261. "movq %%mm1, 9*8(%1) \n\t"\
  1262. "add $8, %1 \n\t"\
  1263. "add %3, %0 \n\t"\
  1264. "decl %2 \n\t"\
  1265. " jnz 1b \n\t"\
  1266. : "+r" (src), "+r" (temp_ptr), "+r"(count)\
  1267. : "r" ((x86_reg)srcStride)\
  1268. : "memory"\
  1269. );\
  1270. \
  1271. temp_ptr= temp;\
  1272. count=2;\
  1273. \
  1274. /*FIXME reorder for speed */\
  1275. __asm__ volatile(\
  1276. /*"pxor %%mm7, %%mm7 \n\t"*/\
  1277. "1: \n\t"\
  1278. "movq (%0), %%mm0 \n\t"\
  1279. "movq 8(%0), %%mm1 \n\t"\
  1280. "movq 16(%0), %%mm2 \n\t"\
  1281. "movq 24(%0), %%mm3 \n\t"\
  1282. QPEL_V_LOW(%%mm0, %%mm1, %%mm2, %%mm3, %5, %6, %5, 16(%0), 8(%0), (%0), 32(%0), (%1), OP)\
  1283. QPEL_V_LOW(%%mm1, %%mm2, %%mm3, %%mm0, %5, %6, %5, 8(%0), (%0), (%0), 40(%0), (%1, %3), OP)\
  1284. "add %4, %1 \n\t"\
  1285. QPEL_V_LOW(%%mm2, %%mm3, %%mm0, %%mm1, %5, %6, %5, (%0), (%0), 8(%0), 48(%0), (%1), OP)\
  1286. \
  1287. QPEL_V_LOW(%%mm3, %%mm0, %%mm1, %%mm2, %5, %6, %5, (%0), 8(%0), 16(%0), 56(%0), (%1, %3), OP)\
  1288. "add %4, %1 \n\t"\
  1289. QPEL_V_LOW(%%mm0, %%mm1, %%mm2, %%mm3, %5, %6, %5, 8(%0), 16(%0), 24(%0), 64(%0), (%1), OP)\
  1290. \
  1291. QPEL_V_LOW(%%mm1, %%mm2, %%mm3, %%mm0, %5, %6, %5, 16(%0), 24(%0), 32(%0), 64(%0), (%1, %3), OP)\
  1292. "add %4, %1 \n\t"\
  1293. QPEL_V_LOW(%%mm2, %%mm3, %%mm0, %%mm1, %5, %6, %5, 24(%0), 32(%0), 40(%0), 56(%0), (%1), OP)\
  1294. QPEL_V_LOW(%%mm3, %%mm0, %%mm1, %%mm2, %5, %6, %5, 32(%0), 40(%0), 48(%0), 48(%0), (%1, %3), OP)\
  1295. \
  1296. "add $72, %0 \n\t"\
  1297. "add %6, %1 \n\t"\
  1298. "decl %2 \n\t"\
  1299. " jnz 1b \n\t"\
  1300. \
  1301. : "+r"(temp_ptr), "+r"(dst), "+g"(count)\
  1302. : "r"((x86_reg)dstStride), "r"(2*(x86_reg)dstStride), /*"m"(ff_pw_20), "m"(ff_pw_3),*/ "m"(ROUNDER), "g"(4-6*(x86_reg)dstStride)\
  1303. : "memory"\
  1304. );\
  1305. }\
  1306. \
  1307. static void OPNAME ## qpel8_mc00_ ## MMX (uint8_t *dst, uint8_t *src, int stride){\
  1308. OPNAME ## pixels8_ ## MMX(dst, src, stride, 8);\
  1309. }\
  1310. \
  1311. static void OPNAME ## qpel8_mc10_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1312. uint64_t temp[8];\
  1313. uint8_t * const half= (uint8_t*)temp;\
  1314. put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(half, src, 8, stride, 8);\
  1315. OPNAME ## pixels8_l2_ ## MMX(dst, src, half, stride, stride, 8);\
  1316. }\
  1317. \
  1318. static void OPNAME ## qpel8_mc20_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1319. OPNAME ## mpeg4_qpel8_h_lowpass_ ## MMX(dst, src, stride, stride, 8);\
  1320. }\
  1321. \
  1322. static void OPNAME ## qpel8_mc30_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1323. uint64_t temp[8];\
  1324. uint8_t * const half= (uint8_t*)temp;\
  1325. put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(half, src, 8, stride, 8);\
  1326. OPNAME ## pixels8_l2_ ## MMX(dst, src+1, half, stride, stride, 8);\
  1327. }\
  1328. \
  1329. static void OPNAME ## qpel8_mc01_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1330. uint64_t temp[8];\
  1331. uint8_t * const half= (uint8_t*)temp;\
  1332. put ## RND ## mpeg4_qpel8_v_lowpass_ ## MMX(half, src, 8, stride);\
  1333. OPNAME ## pixels8_l2_ ## MMX(dst, src, half, stride, stride, 8);\
  1334. }\
  1335. \
  1336. static void OPNAME ## qpel8_mc02_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1337. OPNAME ## mpeg4_qpel8_v_lowpass_ ## MMX(dst, src, stride, stride);\
  1338. }\
  1339. \
  1340. static void OPNAME ## qpel8_mc03_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1341. uint64_t temp[8];\
  1342. uint8_t * const half= (uint8_t*)temp;\
  1343. put ## RND ## mpeg4_qpel8_v_lowpass_ ## MMX(half, src, 8, stride);\
  1344. OPNAME ## pixels8_l2_ ## MMX(dst, src+stride, half, stride, stride, 8);\
  1345. }\
  1346. static void OPNAME ## qpel8_mc11_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1347. uint64_t half[8 + 9];\
  1348. uint8_t * const halfH= ((uint8_t*)half) + 64;\
  1349. uint8_t * const halfHV= ((uint8_t*)half);\
  1350. put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, stride, 9);\
  1351. put ## RND ## pixels8_l2_ ## MMX(halfH, src, halfH, 8, stride, 9);\
  1352. put ## RND ## mpeg4_qpel8_v_lowpass_ ## MMX(halfHV, halfH, 8, 8);\
  1353. OPNAME ## pixels8_l2_ ## MMX(dst, halfH, halfHV, stride, 8, 8);\
  1354. }\
  1355. static void OPNAME ## qpel8_mc31_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1356. uint64_t half[8 + 9];\
  1357. uint8_t * const halfH= ((uint8_t*)half) + 64;\
  1358. uint8_t * const halfHV= ((uint8_t*)half);\
  1359. put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, stride, 9);\
  1360. put ## RND ## pixels8_l2_ ## MMX(halfH, src+1, halfH, 8, stride, 9);\
  1361. put ## RND ## mpeg4_qpel8_v_lowpass_ ## MMX(halfHV, halfH, 8, 8);\
  1362. OPNAME ## pixels8_l2_ ## MMX(dst, halfH, halfHV, stride, 8, 8);\
  1363. }\
  1364. static void OPNAME ## qpel8_mc13_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1365. uint64_t half[8 + 9];\
  1366. uint8_t * const halfH= ((uint8_t*)half) + 64;\
  1367. uint8_t * const halfHV= ((uint8_t*)half);\
  1368. put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, stride, 9);\
  1369. put ## RND ## pixels8_l2_ ## MMX(halfH, src, halfH, 8, stride, 9);\
  1370. put ## RND ## mpeg4_qpel8_v_lowpass_ ## MMX(halfHV, halfH, 8, 8);\
  1371. OPNAME ## pixels8_l2_ ## MMX(dst, halfH+8, halfHV, stride, 8, 8);\
  1372. }\
  1373. static void OPNAME ## qpel8_mc33_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1374. uint64_t half[8 + 9];\
  1375. uint8_t * const halfH= ((uint8_t*)half) + 64;\
  1376. uint8_t * const halfHV= ((uint8_t*)half);\
  1377. put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, stride, 9);\
  1378. put ## RND ## pixels8_l2_ ## MMX(halfH, src+1, halfH, 8, stride, 9);\
  1379. put ## RND ## mpeg4_qpel8_v_lowpass_ ## MMX(halfHV, halfH, 8, 8);\
  1380. OPNAME ## pixels8_l2_ ## MMX(dst, halfH+8, halfHV, stride, 8, 8);\
  1381. }\
  1382. static void OPNAME ## qpel8_mc21_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1383. uint64_t half[8 + 9];\
  1384. uint8_t * const halfH= ((uint8_t*)half) + 64;\
  1385. uint8_t * const halfHV= ((uint8_t*)half);\
  1386. put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, stride, 9);\
  1387. put ## RND ## mpeg4_qpel8_v_lowpass_ ## MMX(halfHV, halfH, 8, 8);\
  1388. OPNAME ## pixels8_l2_ ## MMX(dst, halfH, halfHV, stride, 8, 8);\
  1389. }\
  1390. static void OPNAME ## qpel8_mc23_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1391. uint64_t half[8 + 9];\
  1392. uint8_t * const halfH= ((uint8_t*)half) + 64;\
  1393. uint8_t * const halfHV= ((uint8_t*)half);\
  1394. put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, stride, 9);\
  1395. put ## RND ## mpeg4_qpel8_v_lowpass_ ## MMX(halfHV, halfH, 8, 8);\
  1396. OPNAME ## pixels8_l2_ ## MMX(dst, halfH+8, halfHV, stride, 8, 8);\
  1397. }\
  1398. static void OPNAME ## qpel8_mc12_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1399. uint64_t half[8 + 9];\
  1400. uint8_t * const halfH= ((uint8_t*)half);\
  1401. put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, stride, 9);\
  1402. put ## RND ## pixels8_l2_ ## MMX(halfH, src, halfH, 8, stride, 9);\
  1403. OPNAME ## mpeg4_qpel8_v_lowpass_ ## MMX(dst, halfH, stride, 8);\
  1404. }\
  1405. static void OPNAME ## qpel8_mc32_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1406. uint64_t half[8 + 9];\
  1407. uint8_t * const halfH= ((uint8_t*)half);\
  1408. put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, stride, 9);\
  1409. put ## RND ## pixels8_l2_ ## MMX(halfH, src+1, halfH, 8, stride, 9);\
  1410. OPNAME ## mpeg4_qpel8_v_lowpass_ ## MMX(dst, halfH, stride, 8);\
  1411. }\
  1412. static void OPNAME ## qpel8_mc22_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1413. uint64_t half[9];\
  1414. uint8_t * const halfH= ((uint8_t*)half);\
  1415. put ## RND ## mpeg4_qpel8_h_lowpass_ ## MMX(halfH, src, 8, stride, 9);\
  1416. OPNAME ## mpeg4_qpel8_v_lowpass_ ## MMX(dst, halfH, stride, 8);\
  1417. }\
  1418. static void OPNAME ## qpel16_mc00_ ## MMX (uint8_t *dst, uint8_t *src, int stride){\
  1419. OPNAME ## pixels16_ ## MMX(dst, src, stride, 16);\
  1420. }\
  1421. \
  1422. static void OPNAME ## qpel16_mc10_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1423. uint64_t temp[32];\
  1424. uint8_t * const half= (uint8_t*)temp;\
  1425. put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(half, src, 16, stride, 16);\
  1426. OPNAME ## pixels16_l2_ ## MMX(dst, src, half, stride, stride, 16);\
  1427. }\
  1428. \
  1429. static void OPNAME ## qpel16_mc20_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1430. OPNAME ## mpeg4_qpel16_h_lowpass_ ## MMX(dst, src, stride, stride, 16);\
  1431. }\
  1432. \
  1433. static void OPNAME ## qpel16_mc30_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1434. uint64_t temp[32];\
  1435. uint8_t * const half= (uint8_t*)temp;\
  1436. put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(half, src, 16, stride, 16);\
  1437. OPNAME ## pixels16_l2_ ## MMX(dst, src+1, half, stride, stride, 16);\
  1438. }\
  1439. \
  1440. static void OPNAME ## qpel16_mc01_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1441. uint64_t temp[32];\
  1442. uint8_t * const half= (uint8_t*)temp;\
  1443. put ## RND ## mpeg4_qpel16_v_lowpass_ ## MMX(half, src, 16, stride);\
  1444. OPNAME ## pixels16_l2_ ## MMX(dst, src, half, stride, stride, 16);\
  1445. }\
  1446. \
  1447. static void OPNAME ## qpel16_mc02_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1448. OPNAME ## mpeg4_qpel16_v_lowpass_ ## MMX(dst, src, stride, stride);\
  1449. }\
  1450. \
  1451. static void OPNAME ## qpel16_mc03_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1452. uint64_t temp[32];\
  1453. uint8_t * const half= (uint8_t*)temp;\
  1454. put ## RND ## mpeg4_qpel16_v_lowpass_ ## MMX(half, src, 16, stride);\
  1455. OPNAME ## pixels16_l2_ ## MMX(dst, src+stride, half, stride, stride, 16);\
  1456. }\
  1457. static void OPNAME ## qpel16_mc11_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1458. uint64_t half[16*2 + 17*2];\
  1459. uint8_t * const halfH= ((uint8_t*)half) + 256;\
  1460. uint8_t * const halfHV= ((uint8_t*)half);\
  1461. put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, stride, 17);\
  1462. put ## RND ## pixels16_l2_ ## MMX(halfH, src, halfH, 16, stride, 17);\
  1463. put ## RND ## mpeg4_qpel16_v_lowpass_ ## MMX(halfHV, halfH, 16, 16);\
  1464. OPNAME ## pixels16_l2_ ## MMX(dst, halfH, halfHV, stride, 16, 16);\
  1465. }\
  1466. static void OPNAME ## qpel16_mc31_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1467. uint64_t half[16*2 + 17*2];\
  1468. uint8_t * const halfH= ((uint8_t*)half) + 256;\
  1469. uint8_t * const halfHV= ((uint8_t*)half);\
  1470. put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, stride, 17);\
  1471. put ## RND ## pixels16_l2_ ## MMX(halfH, src+1, halfH, 16, stride, 17);\
  1472. put ## RND ## mpeg4_qpel16_v_lowpass_ ## MMX(halfHV, halfH, 16, 16);\
  1473. OPNAME ## pixels16_l2_ ## MMX(dst, halfH, halfHV, stride, 16, 16);\
  1474. }\
  1475. static void OPNAME ## qpel16_mc13_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1476. uint64_t half[16*2 + 17*2];\
  1477. uint8_t * const halfH= ((uint8_t*)half) + 256;\
  1478. uint8_t * const halfHV= ((uint8_t*)half);\
  1479. put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, stride, 17);\
  1480. put ## RND ## pixels16_l2_ ## MMX(halfH, src, halfH, 16, stride, 17);\
  1481. put ## RND ## mpeg4_qpel16_v_lowpass_ ## MMX(halfHV, halfH, 16, 16);\
  1482. OPNAME ## pixels16_l2_ ## MMX(dst, halfH+16, halfHV, stride, 16, 16);\
  1483. }\
  1484. static void OPNAME ## qpel16_mc33_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1485. uint64_t half[16*2 + 17*2];\
  1486. uint8_t * const halfH= ((uint8_t*)half) + 256;\
  1487. uint8_t * const halfHV= ((uint8_t*)half);\
  1488. put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, stride, 17);\
  1489. put ## RND ## pixels16_l2_ ## MMX(halfH, src+1, halfH, 16, stride, 17);\
  1490. put ## RND ## mpeg4_qpel16_v_lowpass_ ## MMX(halfHV, halfH, 16, 16);\
  1491. OPNAME ## pixels16_l2_ ## MMX(dst, halfH+16, halfHV, stride, 16, 16);\
  1492. }\
  1493. static void OPNAME ## qpel16_mc21_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1494. uint64_t half[16*2 + 17*2];\
  1495. uint8_t * const halfH= ((uint8_t*)half) + 256;\
  1496. uint8_t * const halfHV= ((uint8_t*)half);\
  1497. put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, stride, 17);\
  1498. put ## RND ## mpeg4_qpel16_v_lowpass_ ## MMX(halfHV, halfH, 16, 16);\
  1499. OPNAME ## pixels16_l2_ ## MMX(dst, halfH, halfHV, stride, 16, 16);\
  1500. }\
  1501. static void OPNAME ## qpel16_mc23_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1502. uint64_t half[16*2 + 17*2];\
  1503. uint8_t * const halfH= ((uint8_t*)half) + 256;\
  1504. uint8_t * const halfHV= ((uint8_t*)half);\
  1505. put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, stride, 17);\
  1506. put ## RND ## mpeg4_qpel16_v_lowpass_ ## MMX(halfHV, halfH, 16, 16);\
  1507. OPNAME ## pixels16_l2_ ## MMX(dst, halfH+16, halfHV, stride, 16, 16);\
  1508. }\
  1509. static void OPNAME ## qpel16_mc12_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1510. uint64_t half[17*2];\
  1511. uint8_t * const halfH= ((uint8_t*)half);\
  1512. put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, stride, 17);\
  1513. put ## RND ## pixels16_l2_ ## MMX(halfH, src, halfH, 16, stride, 17);\
  1514. OPNAME ## mpeg4_qpel16_v_lowpass_ ## MMX(dst, halfH, stride, 16);\
  1515. }\
  1516. static void OPNAME ## qpel16_mc32_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1517. uint64_t half[17*2];\
  1518. uint8_t * const halfH= ((uint8_t*)half);\
  1519. put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, stride, 17);\
  1520. put ## RND ## pixels16_l2_ ## MMX(halfH, src+1, halfH, 16, stride, 17);\
  1521. OPNAME ## mpeg4_qpel16_v_lowpass_ ## MMX(dst, halfH, stride, 16);\
  1522. }\
  1523. static void OPNAME ## qpel16_mc22_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1524. uint64_t half[17*2];\
  1525. uint8_t * const halfH= ((uint8_t*)half);\
  1526. put ## RND ## mpeg4_qpel16_h_lowpass_ ## MMX(halfH, src, 16, stride, 17);\
  1527. OPNAME ## mpeg4_qpel16_v_lowpass_ ## MMX(dst, halfH, stride, 16);\
  1528. }
  1529. #define PUT_OP(a,b,temp, size) "mov" #size " " #a ", " #b " \n\t"
  1530. #define AVG_3DNOW_OP(a,b,temp, size) \
  1531. "mov" #size " " #b ", " #temp " \n\t"\
  1532. "pavgusb " #temp ", " #a " \n\t"\
  1533. "mov" #size " " #a ", " #b " \n\t"
  1534. #define AVG_MMX2_OP(a,b,temp, size) \
  1535. "mov" #size " " #b ", " #temp " \n\t"\
  1536. "pavgb " #temp ", " #a " \n\t"\
  1537. "mov" #size " " #a ", " #b " \n\t"
  1538. QPEL_BASE(put_ , ff_pw_16, _ , PUT_OP, PUT_OP)
  1539. QPEL_BASE(avg_ , ff_pw_16, _ , AVG_MMX2_OP, AVG_3DNOW_OP)
  1540. QPEL_BASE(put_no_rnd_, ff_pw_15, _no_rnd_, PUT_OP, PUT_OP)
  1541. QPEL_OP(put_ , ff_pw_16, _ , PUT_OP, 3dnow)
  1542. QPEL_OP(avg_ , ff_pw_16, _ , AVG_3DNOW_OP, 3dnow)
  1543. QPEL_OP(put_no_rnd_, ff_pw_15, _no_rnd_, PUT_OP, 3dnow)
  1544. QPEL_OP(put_ , ff_pw_16, _ , PUT_OP, mmx2)
  1545. QPEL_OP(avg_ , ff_pw_16, _ , AVG_MMX2_OP, mmx2)
  1546. QPEL_OP(put_no_rnd_, ff_pw_15, _no_rnd_, PUT_OP, mmx2)
  1547. /***********************************/
  1548. /* bilinear qpel: not compliant to any spec, only for -lavdopts fast */
  1549. #define QPEL_2TAP_XY(OPNAME, SIZE, MMX, XY, HPEL)\
  1550. static void OPNAME ## 2tap_qpel ## SIZE ## _mc ## XY ## _ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1551. OPNAME ## pixels ## SIZE ## HPEL(dst, src, stride, SIZE);\
  1552. }
  1553. #define QPEL_2TAP_L3(OPNAME, SIZE, MMX, XY, S0, S1, S2)\
  1554. static void OPNAME ## 2tap_qpel ## SIZE ## _mc ## XY ## _ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1555. OPNAME ## 2tap_qpel ## SIZE ## _l3_ ## MMX(dst, src+S0, stride, SIZE, S1, S2);\
  1556. }
  1557. #define QPEL_2TAP(OPNAME, SIZE, MMX)\
  1558. QPEL_2TAP_XY(OPNAME, SIZE, MMX, 20, _x2_ ## MMX)\
  1559. QPEL_2TAP_XY(OPNAME, SIZE, MMX, 02, _y2_ ## MMX)\
  1560. QPEL_2TAP_XY(OPNAME, SIZE, MMX, 22, _xy2_mmx)\
  1561. static const qpel_mc_func OPNAME ## 2tap_qpel ## SIZE ## _mc00_ ## MMX =\
  1562. OPNAME ## qpel ## SIZE ## _mc00_ ## MMX;\
  1563. static const qpel_mc_func OPNAME ## 2tap_qpel ## SIZE ## _mc21_ ## MMX =\
  1564. OPNAME ## 2tap_qpel ## SIZE ## _mc20_ ## MMX;\
  1565. static const qpel_mc_func OPNAME ## 2tap_qpel ## SIZE ## _mc12_ ## MMX =\
  1566. OPNAME ## 2tap_qpel ## SIZE ## _mc02_ ## MMX;\
  1567. static void OPNAME ## 2tap_qpel ## SIZE ## _mc32_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1568. OPNAME ## pixels ## SIZE ## _y2_ ## MMX(dst, src+1, stride, SIZE);\
  1569. }\
  1570. static void OPNAME ## 2tap_qpel ## SIZE ## _mc23_ ## MMX(uint8_t *dst, uint8_t *src, int stride){\
  1571. OPNAME ## pixels ## SIZE ## _x2_ ## MMX(dst, src+stride, stride, SIZE);\
  1572. }\
  1573. QPEL_2TAP_L3(OPNAME, SIZE, MMX, 10, 0, 1, 0)\
  1574. QPEL_2TAP_L3(OPNAME, SIZE, MMX, 30, 1, -1, 0)\
  1575. QPEL_2TAP_L3(OPNAME, SIZE, MMX, 01, 0, stride, 0)\
  1576. QPEL_2TAP_L3(OPNAME, SIZE, MMX, 03, stride, -stride, 0)\
  1577. QPEL_2TAP_L3(OPNAME, SIZE, MMX, 11, 0, stride, 1)\
  1578. QPEL_2TAP_L3(OPNAME, SIZE, MMX, 31, 1, stride, -1)\
  1579. QPEL_2TAP_L3(OPNAME, SIZE, MMX, 13, stride, -stride, 1)\
  1580. QPEL_2TAP_L3(OPNAME, SIZE, MMX, 33, stride+1, -stride, -1)\
  1581. QPEL_2TAP(put_, 16, mmx2)
  1582. QPEL_2TAP(avg_, 16, mmx2)
  1583. QPEL_2TAP(put_, 8, mmx2)
  1584. QPEL_2TAP(avg_, 8, mmx2)
  1585. QPEL_2TAP(put_, 16, 3dnow)
  1586. QPEL_2TAP(avg_, 16, 3dnow)
  1587. QPEL_2TAP(put_, 8, 3dnow)
  1588. QPEL_2TAP(avg_, 8, 3dnow)
  1589. #if HAVE_YASM
  1590. typedef void emu_edge_core_func (uint8_t *buf, const uint8_t *src,
  1591. x86_reg linesize, x86_reg start_y,
  1592. x86_reg end_y, x86_reg block_h,
  1593. x86_reg start_x, x86_reg end_x,
  1594. x86_reg block_w);
  1595. extern emu_edge_core_func ff_emu_edge_core_mmx;
  1596. extern emu_edge_core_func ff_emu_edge_core_sse;
  1597. static av_always_inline
  1598. void emulated_edge_mc(uint8_t *buf, const uint8_t *src, int linesize,
  1599. int block_w, int block_h,
  1600. int src_x, int src_y, int w, int h,
  1601. emu_edge_core_func *core_fn)
  1602. {
  1603. int start_y, start_x, end_y, end_x, src_y_add=0;
  1604. if(src_y>= h){
  1605. src_y_add = h-1-src_y;
  1606. src_y=h-1;
  1607. }else if(src_y<=-block_h){
  1608. src_y_add = 1-block_h-src_y;
  1609. src_y=1-block_h;
  1610. }
  1611. if(src_x>= w){
  1612. src+= (w-1-src_x);
  1613. src_x=w-1;
  1614. }else if(src_x<=-block_w){
  1615. src+= (1-block_w-src_x);
  1616. src_x=1-block_w;
  1617. }
  1618. start_y= FFMAX(0, -src_y);
  1619. start_x= FFMAX(0, -src_x);
  1620. end_y= FFMIN(block_h, h-src_y);
  1621. end_x= FFMIN(block_w, w-src_x);
  1622. assert(start_x < end_x && block_w > 0);
  1623. assert(start_y < end_y && block_h > 0);
  1624. // fill in the to-be-copied part plus all above/below
  1625. src += (src_y_add+start_y)*linesize + start_x;
  1626. buf += start_x;
  1627. core_fn(buf, src, linesize, start_y, end_y, block_h, start_x, end_x, block_w);
  1628. }
  1629. #if ARCH_X86_32
  1630. static av_noinline
  1631. void emulated_edge_mc_mmx(uint8_t *buf, const uint8_t *src, int linesize,
  1632. int block_w, int block_h,
  1633. int src_x, int src_y, int w, int h)
  1634. {
  1635. emulated_edge_mc(buf, src, linesize, block_w, block_h, src_x, src_y,
  1636. w, h, &ff_emu_edge_core_mmx);
  1637. }
  1638. #endif
  1639. static av_noinline
  1640. void emulated_edge_mc_sse(uint8_t *buf, const uint8_t *src, int linesize,
  1641. int block_w, int block_h,
  1642. int src_x, int src_y, int w, int h)
  1643. {
  1644. emulated_edge_mc(buf, src, linesize, block_w, block_h, src_x, src_y,
  1645. w, h, &ff_emu_edge_core_sse);
  1646. }
  1647. #endif /* HAVE_YASM */
  1648. typedef void emulated_edge_mc_func (uint8_t *dst, const uint8_t *src,
  1649. int linesize, int block_w, int block_h,
  1650. int src_x, int src_y, int w, int h);
  1651. static av_always_inline
  1652. void gmc(uint8_t *dst, uint8_t *src, int stride, int h, int ox, int oy,
  1653. int dxx, int dxy, int dyx, int dyy, int shift, int r, int width, int height,
  1654. emulated_edge_mc_func *emu_edge_fn)
  1655. {
  1656. const int w = 8;
  1657. const int ix = ox>>(16+shift);
  1658. const int iy = oy>>(16+shift);
  1659. const int oxs = ox>>4;
  1660. const int oys = oy>>4;
  1661. const int dxxs = dxx>>4;
  1662. const int dxys = dxy>>4;
  1663. const int dyxs = dyx>>4;
  1664. const int dyys = dyy>>4;
  1665. const uint16_t r4[4] = {r,r,r,r};
  1666. const uint16_t dxy4[4] = {dxys,dxys,dxys,dxys};
  1667. const uint16_t dyy4[4] = {dyys,dyys,dyys,dyys};
  1668. const uint64_t shift2 = 2*shift;
  1669. uint8_t edge_buf[(h+1)*stride];
  1670. int x, y;
  1671. const int dxw = (dxx-(1<<(16+shift)))*(w-1);
  1672. const int dyh = (dyy-(1<<(16+shift)))*(h-1);
  1673. const int dxh = dxy*(h-1);
  1674. const int dyw = dyx*(w-1);
  1675. if( // non-constant fullpel offset (3% of blocks)
  1676. ((ox^(ox+dxw)) | (ox^(ox+dxh)) | (ox^(ox+dxw+dxh)) |
  1677. (oy^(oy+dyw)) | (oy^(oy+dyh)) | (oy^(oy+dyw+dyh))) >> (16+shift)
  1678. // uses more than 16 bits of subpel mv (only at huge resolution)
  1679. || (dxx|dxy|dyx|dyy)&15 )
  1680. {
  1681. //FIXME could still use mmx for some of the rows
  1682. ff_gmc_c(dst, src, stride, h, ox, oy, dxx, dxy, dyx, dyy, shift, r, width, height);
  1683. return;
  1684. }
  1685. src += ix + iy*stride;
  1686. if( (unsigned)ix >= width-w ||
  1687. (unsigned)iy >= height-h )
  1688. {
  1689. emu_edge_fn(edge_buf, src, stride, w+1, h+1, ix, iy, width, height);
  1690. src = edge_buf;
  1691. }
  1692. __asm__ volatile(
  1693. "movd %0, %%mm6 \n\t"
  1694. "pxor %%mm7, %%mm7 \n\t"
  1695. "punpcklwd %%mm6, %%mm6 \n\t"
  1696. "punpcklwd %%mm6, %%mm6 \n\t"
  1697. :: "r"(1<<shift)
  1698. );
  1699. for(x=0; x<w; x+=4){
  1700. uint16_t dx4[4] = { oxs - dxys + dxxs*(x+0),
  1701. oxs - dxys + dxxs*(x+1),
  1702. oxs - dxys + dxxs*(x+2),
  1703. oxs - dxys + dxxs*(x+3) };
  1704. uint16_t dy4[4] = { oys - dyys + dyxs*(x+0),
  1705. oys - dyys + dyxs*(x+1),
  1706. oys - dyys + dyxs*(x+2),
  1707. oys - dyys + dyxs*(x+3) };
  1708. for(y=0; y<h; y++){
  1709. __asm__ volatile(
  1710. "movq %0, %%mm4 \n\t"
  1711. "movq %1, %%mm5 \n\t"
  1712. "paddw %2, %%mm4 \n\t"
  1713. "paddw %3, %%mm5 \n\t"
  1714. "movq %%mm4, %0 \n\t"
  1715. "movq %%mm5, %1 \n\t"
  1716. "psrlw $12, %%mm4 \n\t"
  1717. "psrlw $12, %%mm5 \n\t"
  1718. : "+m"(*dx4), "+m"(*dy4)
  1719. : "m"(*dxy4), "m"(*dyy4)
  1720. );
  1721. __asm__ volatile(
  1722. "movq %%mm6, %%mm2 \n\t"
  1723. "movq %%mm6, %%mm1 \n\t"
  1724. "psubw %%mm4, %%mm2 \n\t"
  1725. "psubw %%mm5, %%mm1 \n\t"
  1726. "movq %%mm2, %%mm0 \n\t"
  1727. "movq %%mm4, %%mm3 \n\t"
  1728. "pmullw %%mm1, %%mm0 \n\t" // (s-dx)*(s-dy)
  1729. "pmullw %%mm5, %%mm3 \n\t" // dx*dy
  1730. "pmullw %%mm5, %%mm2 \n\t" // (s-dx)*dy
  1731. "pmullw %%mm4, %%mm1 \n\t" // dx*(s-dy)
  1732. "movd %4, %%mm5 \n\t"
  1733. "movd %3, %%mm4 \n\t"
  1734. "punpcklbw %%mm7, %%mm5 \n\t"
  1735. "punpcklbw %%mm7, %%mm4 \n\t"
  1736. "pmullw %%mm5, %%mm3 \n\t" // src[1,1] * dx*dy
  1737. "pmullw %%mm4, %%mm2 \n\t" // src[0,1] * (s-dx)*dy
  1738. "movd %2, %%mm5 \n\t"
  1739. "movd %1, %%mm4 \n\t"
  1740. "punpcklbw %%mm7, %%mm5 \n\t"
  1741. "punpcklbw %%mm7, %%mm4 \n\t"
  1742. "pmullw %%mm5, %%mm1 \n\t" // src[1,0] * dx*(s-dy)
  1743. "pmullw %%mm4, %%mm0 \n\t" // src[0,0] * (s-dx)*(s-dy)
  1744. "paddw %5, %%mm1 \n\t"
  1745. "paddw %%mm3, %%mm2 \n\t"
  1746. "paddw %%mm1, %%mm0 \n\t"
  1747. "paddw %%mm2, %%mm0 \n\t"
  1748. "psrlw %6, %%mm0 \n\t"
  1749. "packuswb %%mm0, %%mm0 \n\t"
  1750. "movd %%mm0, %0 \n\t"
  1751. : "=m"(dst[x+y*stride])
  1752. : "m"(src[0]), "m"(src[1]),
  1753. "m"(src[stride]), "m"(src[stride+1]),
  1754. "m"(*r4), "m"(shift2)
  1755. );
  1756. src += stride;
  1757. }
  1758. src += 4-h*stride;
  1759. }
  1760. }
  1761. #if HAVE_YASM
  1762. #if ARCH_X86_32
  1763. static void gmc_mmx(uint8_t *dst, uint8_t *src, int stride, int h, int ox, int oy,
  1764. int dxx, int dxy, int dyx, int dyy, int shift, int r, int width, int height)
  1765. {
  1766. gmc(dst, src, stride, h, ox, oy, dxx, dxy, dyx, dyy, shift, r,
  1767. width, height, &emulated_edge_mc_mmx);
  1768. }
  1769. #endif
  1770. static void gmc_sse(uint8_t *dst, uint8_t *src, int stride, int h, int ox, int oy,
  1771. int dxx, int dxy, int dyx, int dyy, int shift, int r, int width, int height)
  1772. {
  1773. gmc(dst, src, stride, h, ox, oy, dxx, dxy, dyx, dyy, shift, r,
  1774. width, height, &emulated_edge_mc_sse);
  1775. }
  1776. #else
  1777. static void gmc_mmx(uint8_t *dst, uint8_t *src, int stride, int h, int ox, int oy,
  1778. int dxx, int dxy, int dyx, int dyy, int shift, int r, int width, int height)
  1779. {
  1780. gmc(dst, src, stride, h, ox, oy, dxx, dxy, dyx, dyy, shift, r,
  1781. width, height, &ff_emulated_edge_mc_8);
  1782. }
  1783. #endif
  1784. #define PREFETCH(name, op) \
  1785. static void name(void *mem, int stride, int h){\
  1786. const uint8_t *p= mem;\
  1787. do{\
  1788. __asm__ volatile(#op" %0" :: "m"(*p));\
  1789. p+= stride;\
  1790. }while(--h);\
  1791. }
  1792. PREFETCH(prefetch_mmx2, prefetcht0)
  1793. PREFETCH(prefetch_3dnow, prefetch)
  1794. #undef PREFETCH
  1795. #include "h264_qpel_mmx.c"
  1796. void ff_put_h264_chroma_mc8_mmx_rnd (uint8_t *dst, uint8_t *src,
  1797. int stride, int h, int x, int y);
  1798. void ff_avg_h264_chroma_mc8_mmx2_rnd (uint8_t *dst, uint8_t *src,
  1799. int stride, int h, int x, int y);
  1800. void ff_avg_h264_chroma_mc8_3dnow_rnd (uint8_t *dst, uint8_t *src,
  1801. int stride, int h, int x, int y);
  1802. void ff_put_h264_chroma_mc4_mmx (uint8_t *dst, uint8_t *src,
  1803. int stride, int h, int x, int y);
  1804. void ff_avg_h264_chroma_mc4_mmx2 (uint8_t *dst, uint8_t *src,
  1805. int stride, int h, int x, int y);
  1806. void ff_avg_h264_chroma_mc4_3dnow (uint8_t *dst, uint8_t *src,
  1807. int stride, int h, int x, int y);
  1808. void ff_put_h264_chroma_mc2_mmx2 (uint8_t *dst, uint8_t *src,
  1809. int stride, int h, int x, int y);
  1810. void ff_avg_h264_chroma_mc2_mmx2 (uint8_t *dst, uint8_t *src,
  1811. int stride, int h, int x, int y);
  1812. void ff_put_h264_chroma_mc8_ssse3_rnd (uint8_t *dst, uint8_t *src,
  1813. int stride, int h, int x, int y);
  1814. void ff_put_h264_chroma_mc4_ssse3 (uint8_t *dst, uint8_t *src,
  1815. int stride, int h, int x, int y);
  1816. void ff_avg_h264_chroma_mc8_ssse3_rnd (uint8_t *dst, uint8_t *src,
  1817. int stride, int h, int x, int y);
  1818. void ff_avg_h264_chroma_mc4_ssse3 (uint8_t *dst, uint8_t *src,
  1819. int stride, int h, int x, int y);
  1820. #define CHROMA_MC(OP, NUM, DEPTH, OPT) \
  1821. void ff_ ## OP ## _h264_chroma_mc ## NUM ## _ ## DEPTH ## _ ## OPT \
  1822. (uint8_t *dst, uint8_t *src,\
  1823. int stride, int h, int x, int y);
  1824. CHROMA_MC(put, 2, 10, mmxext)
  1825. CHROMA_MC(avg, 2, 10, mmxext)
  1826. CHROMA_MC(put, 4, 10, mmxext)
  1827. CHROMA_MC(avg, 4, 10, mmxext)
  1828. CHROMA_MC(put, 8, 10, sse2)
  1829. CHROMA_MC(avg, 8, 10, sse2)
  1830. CHROMA_MC(put, 8, 10, avx)
  1831. CHROMA_MC(avg, 8, 10, avx)
  1832. /* CAVS specific */
  1833. void ff_put_cavs_qpel8_mc00_mmx2(uint8_t *dst, uint8_t *src, int stride) {
  1834. put_pixels8_mmx(dst, src, stride, 8);
  1835. }
  1836. void ff_avg_cavs_qpel8_mc00_mmx2(uint8_t *dst, uint8_t *src, int stride) {
  1837. avg_pixels8_mmx(dst, src, stride, 8);
  1838. }
  1839. void ff_put_cavs_qpel16_mc00_mmx2(uint8_t *dst, uint8_t *src, int stride) {
  1840. put_pixels16_mmx(dst, src, stride, 16);
  1841. }
  1842. void ff_avg_cavs_qpel16_mc00_mmx2(uint8_t *dst, uint8_t *src, int stride) {
  1843. avg_pixels16_mmx(dst, src, stride, 16);
  1844. }
  1845. /* VC1 specific */
  1846. void ff_put_vc1_mspel_mc00_mmx(uint8_t *dst, const uint8_t *src, int stride, int rnd) {
  1847. put_pixels8_mmx(dst, src, stride, 8);
  1848. }
  1849. void ff_avg_vc1_mspel_mc00_mmx2(uint8_t *dst, const uint8_t *src, int stride, int rnd) {
  1850. avg_pixels8_mmx2(dst, src, stride, 8);
  1851. }
  1852. /* XXX: those functions should be suppressed ASAP when all IDCTs are
  1853. converted */
  1854. #if CONFIG_GPL
  1855. static void ff_libmpeg2mmx_idct_put(uint8_t *dest, int line_size, DCTELEM *block)
  1856. {
  1857. ff_mmx_idct (block);
  1858. ff_put_pixels_clamped_mmx(block, dest, line_size);
  1859. }
  1860. static void ff_libmpeg2mmx_idct_add(uint8_t *dest, int line_size, DCTELEM *block)
  1861. {
  1862. ff_mmx_idct (block);
  1863. ff_add_pixels_clamped_mmx(block, dest, line_size);
  1864. }
  1865. static void ff_libmpeg2mmx2_idct_put(uint8_t *dest, int line_size, DCTELEM *block)
  1866. {
  1867. ff_mmxext_idct (block);
  1868. ff_put_pixels_clamped_mmx(block, dest, line_size);
  1869. }
  1870. static void ff_libmpeg2mmx2_idct_add(uint8_t *dest, int line_size, DCTELEM *block)
  1871. {
  1872. ff_mmxext_idct (block);
  1873. ff_add_pixels_clamped_mmx(block, dest, line_size);
  1874. }
  1875. #endif
  1876. static void ff_idct_xvid_mmx_put(uint8_t *dest, int line_size, DCTELEM *block)
  1877. {
  1878. ff_idct_xvid_mmx (block);
  1879. ff_put_pixels_clamped_mmx(block, dest, line_size);
  1880. }
  1881. static void ff_idct_xvid_mmx_add(uint8_t *dest, int line_size, DCTELEM *block)
  1882. {
  1883. ff_idct_xvid_mmx (block);
  1884. ff_add_pixels_clamped_mmx(block, dest, line_size);
  1885. }
  1886. static void ff_idct_xvid_mmx2_put(uint8_t *dest, int line_size, DCTELEM *block)
  1887. {
  1888. ff_idct_xvid_mmx2 (block);
  1889. ff_put_pixels_clamped_mmx(block, dest, line_size);
  1890. }
  1891. static void ff_idct_xvid_mmx2_add(uint8_t *dest, int line_size, DCTELEM *block)
  1892. {
  1893. ff_idct_xvid_mmx2 (block);
  1894. ff_add_pixels_clamped_mmx(block, dest, line_size);
  1895. }
  1896. static void vorbis_inverse_coupling_3dnow(float *mag, float *ang, int blocksize)
  1897. {
  1898. int i;
  1899. __asm__ volatile("pxor %%mm7, %%mm7":);
  1900. for(i=0; i<blocksize; i+=2) {
  1901. __asm__ volatile(
  1902. "movq %0, %%mm0 \n\t"
  1903. "movq %1, %%mm1 \n\t"
  1904. "movq %%mm0, %%mm2 \n\t"
  1905. "movq %%mm1, %%mm3 \n\t"
  1906. "pfcmpge %%mm7, %%mm2 \n\t" // m <= 0.0
  1907. "pfcmpge %%mm7, %%mm3 \n\t" // a <= 0.0
  1908. "pslld $31, %%mm2 \n\t" // keep only the sign bit
  1909. "pxor %%mm2, %%mm1 \n\t"
  1910. "movq %%mm3, %%mm4 \n\t"
  1911. "pand %%mm1, %%mm3 \n\t"
  1912. "pandn %%mm1, %%mm4 \n\t"
  1913. "pfadd %%mm0, %%mm3 \n\t" // a = m + ((a<0) & (a ^ sign(m)))
  1914. "pfsub %%mm4, %%mm0 \n\t" // m = m + ((a>0) & (a ^ sign(m)))
  1915. "movq %%mm3, %1 \n\t"
  1916. "movq %%mm0, %0 \n\t"
  1917. :"+m"(mag[i]), "+m"(ang[i])
  1918. ::"memory"
  1919. );
  1920. }
  1921. __asm__ volatile("femms");
  1922. }
  1923. static void vorbis_inverse_coupling_sse(float *mag, float *ang, int blocksize)
  1924. {
  1925. int i;
  1926. __asm__ volatile(
  1927. "movaps %0, %%xmm5 \n\t"
  1928. ::"m"(ff_pdw_80000000[0])
  1929. );
  1930. for(i=0; i<blocksize; i+=4) {
  1931. __asm__ volatile(
  1932. "movaps %0, %%xmm0 \n\t"
  1933. "movaps %1, %%xmm1 \n\t"
  1934. "xorps %%xmm2, %%xmm2 \n\t"
  1935. "xorps %%xmm3, %%xmm3 \n\t"
  1936. "cmpleps %%xmm0, %%xmm2 \n\t" // m <= 0.0
  1937. "cmpleps %%xmm1, %%xmm3 \n\t" // a <= 0.0
  1938. "andps %%xmm5, %%xmm2 \n\t" // keep only the sign bit
  1939. "xorps %%xmm2, %%xmm1 \n\t"
  1940. "movaps %%xmm3, %%xmm4 \n\t"
  1941. "andps %%xmm1, %%xmm3 \n\t"
  1942. "andnps %%xmm1, %%xmm4 \n\t"
  1943. "addps %%xmm0, %%xmm3 \n\t" // a = m + ((a<0) & (a ^ sign(m)))
  1944. "subps %%xmm4, %%xmm0 \n\t" // m = m + ((a>0) & (a ^ sign(m)))
  1945. "movaps %%xmm3, %1 \n\t"
  1946. "movaps %%xmm0, %0 \n\t"
  1947. :"+m"(mag[i]), "+m"(ang[i])
  1948. ::"memory"
  1949. );
  1950. }
  1951. }
  1952. #define IF1(x) x
  1953. #define IF0(x)
  1954. #define MIX5(mono,stereo)\
  1955. __asm__ volatile(\
  1956. "movss 0(%2), %%xmm5 \n"\
  1957. "movss 8(%2), %%xmm6 \n"\
  1958. "movss 24(%2), %%xmm7 \n"\
  1959. "shufps $0, %%xmm5, %%xmm5 \n"\
  1960. "shufps $0, %%xmm6, %%xmm6 \n"\
  1961. "shufps $0, %%xmm7, %%xmm7 \n"\
  1962. "1: \n"\
  1963. "movaps (%0,%1), %%xmm0 \n"\
  1964. "movaps 0x400(%0,%1), %%xmm1 \n"\
  1965. "movaps 0x800(%0,%1), %%xmm2 \n"\
  1966. "movaps 0xc00(%0,%1), %%xmm3 \n"\
  1967. "movaps 0x1000(%0,%1), %%xmm4 \n"\
  1968. "mulps %%xmm5, %%xmm0 \n"\
  1969. "mulps %%xmm6, %%xmm1 \n"\
  1970. "mulps %%xmm5, %%xmm2 \n"\
  1971. "mulps %%xmm7, %%xmm3 \n"\
  1972. "mulps %%xmm7, %%xmm4 \n"\
  1973. stereo("addps %%xmm1, %%xmm0 \n")\
  1974. "addps %%xmm1, %%xmm2 \n"\
  1975. "addps %%xmm3, %%xmm0 \n"\
  1976. "addps %%xmm4, %%xmm2 \n"\
  1977. mono("addps %%xmm2, %%xmm0 \n")\
  1978. "movaps %%xmm0, (%0,%1) \n"\
  1979. stereo("movaps %%xmm2, 0x400(%0,%1) \n")\
  1980. "add $16, %0 \n"\
  1981. "jl 1b \n"\
  1982. :"+&r"(i)\
  1983. :"r"(samples[0]+len), "r"(matrix)\
  1984. :XMM_CLOBBERS("%xmm0", "%xmm1", "%xmm2", "%xmm3", \
  1985. "%xmm4", "%xmm5", "%xmm6", "%xmm7",)\
  1986. "memory"\
  1987. );
  1988. #define MIX_MISC(stereo)\
  1989. __asm__ volatile(\
  1990. "1: \n"\
  1991. "movaps (%3,%0), %%xmm0 \n"\
  1992. stereo("movaps %%xmm0, %%xmm1 \n")\
  1993. "mulps %%xmm4, %%xmm0 \n"\
  1994. stereo("mulps %%xmm5, %%xmm1 \n")\
  1995. "lea 1024(%3,%0), %1 \n"\
  1996. "mov %5, %2 \n"\
  1997. "2: \n"\
  1998. "movaps (%1), %%xmm2 \n"\
  1999. stereo("movaps %%xmm2, %%xmm3 \n")\
  2000. "mulps (%4,%2), %%xmm2 \n"\
  2001. stereo("mulps 16(%4,%2), %%xmm3 \n")\
  2002. "addps %%xmm2, %%xmm0 \n"\
  2003. stereo("addps %%xmm3, %%xmm1 \n")\
  2004. "add $1024, %1 \n"\
  2005. "add $32, %2 \n"\
  2006. "jl 2b \n"\
  2007. "movaps %%xmm0, (%3,%0) \n"\
  2008. stereo("movaps %%xmm1, 1024(%3,%0) \n")\
  2009. "add $16, %0 \n"\
  2010. "jl 1b \n"\
  2011. :"+&r"(i), "=&r"(j), "=&r"(k)\
  2012. :"r"(samples[0]+len), "r"(matrix_simd+in_ch), "g"((intptr_t)-32*(in_ch-1))\
  2013. :"memory"\
  2014. );
  2015. static void ac3_downmix_sse(float (*samples)[256], float (*matrix)[2], int out_ch, int in_ch, int len)
  2016. {
  2017. int (*matrix_cmp)[2] = (int(*)[2])matrix;
  2018. intptr_t i,j,k;
  2019. i = -len*sizeof(float);
  2020. if(in_ch == 5 && out_ch == 2 && !(matrix_cmp[0][1]|matrix_cmp[2][0]|matrix_cmp[3][1]|matrix_cmp[4][0]|(matrix_cmp[1][0]^matrix_cmp[1][1])|(matrix_cmp[0][0]^matrix_cmp[2][1]))) {
  2021. MIX5(IF0,IF1);
  2022. } else if(in_ch == 5 && out_ch == 1 && matrix_cmp[0][0]==matrix_cmp[2][0] && matrix_cmp[3][0]==matrix_cmp[4][0]) {
  2023. MIX5(IF1,IF0);
  2024. } else {
  2025. DECLARE_ALIGNED(16, float, matrix_simd)[AC3_MAX_CHANNELS][2][4];
  2026. j = 2*in_ch*sizeof(float);
  2027. __asm__ volatile(
  2028. "1: \n"
  2029. "sub $8, %0 \n"
  2030. "movss (%2,%0), %%xmm4 \n"
  2031. "movss 4(%2,%0), %%xmm5 \n"
  2032. "shufps $0, %%xmm4, %%xmm4 \n"
  2033. "shufps $0, %%xmm5, %%xmm5 \n"
  2034. "movaps %%xmm4, (%1,%0,4) \n"
  2035. "movaps %%xmm5, 16(%1,%0,4) \n"
  2036. "jg 1b \n"
  2037. :"+&r"(j)
  2038. :"r"(matrix_simd), "r"(matrix)
  2039. :"memory"
  2040. );
  2041. if(out_ch == 2) {
  2042. MIX_MISC(IF1);
  2043. } else {
  2044. MIX_MISC(IF0);
  2045. }
  2046. }
  2047. }
  2048. static void vector_fmul_3dnow(float *dst, const float *src0, const float *src1, int len){
  2049. x86_reg i = (len-4)*4;
  2050. __asm__ volatile(
  2051. "1: \n\t"
  2052. "movq (%2,%0), %%mm0 \n\t"
  2053. "movq 8(%2,%0), %%mm1 \n\t"
  2054. "pfmul (%3,%0), %%mm0 \n\t"
  2055. "pfmul 8(%3,%0), %%mm1 \n\t"
  2056. "movq %%mm0, (%1,%0) \n\t"
  2057. "movq %%mm1, 8(%1,%0) \n\t"
  2058. "sub $16, %0 \n\t"
  2059. "jge 1b \n\t"
  2060. "femms \n\t"
  2061. :"+r"(i)
  2062. :"r"(dst), "r"(src0), "r"(src1)
  2063. :"memory"
  2064. );
  2065. }
  2066. static void vector_fmul_sse(float *dst, const float *src0, const float *src1, int len){
  2067. x86_reg i = (len-8)*4;
  2068. __asm__ volatile(
  2069. "1: \n\t"
  2070. "movaps (%2,%0), %%xmm0 \n\t"
  2071. "movaps 16(%2,%0), %%xmm1 \n\t"
  2072. "mulps (%3,%0), %%xmm0 \n\t"
  2073. "mulps 16(%3,%0), %%xmm1 \n\t"
  2074. "movaps %%xmm0, (%1,%0) \n\t"
  2075. "movaps %%xmm1, 16(%1,%0) \n\t"
  2076. "sub $32, %0 \n\t"
  2077. "jge 1b \n\t"
  2078. :"+r"(i)
  2079. :"r"(dst), "r"(src0), "r"(src1)
  2080. :"memory"
  2081. );
  2082. }
  2083. static void vector_fmul_reverse_3dnow2(float *dst, const float *src0, const float *src1, int len){
  2084. x86_reg i = len*4-16;
  2085. __asm__ volatile(
  2086. "1: \n\t"
  2087. "pswapd 8(%1), %%mm0 \n\t"
  2088. "pswapd (%1), %%mm1 \n\t"
  2089. "pfmul (%3,%0), %%mm0 \n\t"
  2090. "pfmul 8(%3,%0), %%mm1 \n\t"
  2091. "movq %%mm0, (%2,%0) \n\t"
  2092. "movq %%mm1, 8(%2,%0) \n\t"
  2093. "add $16, %1 \n\t"
  2094. "sub $16, %0 \n\t"
  2095. "jge 1b \n\t"
  2096. :"+r"(i), "+r"(src1)
  2097. :"r"(dst), "r"(src0)
  2098. );
  2099. __asm__ volatile("femms");
  2100. }
  2101. static void vector_fmul_reverse_sse(float *dst, const float *src0, const float *src1, int len){
  2102. x86_reg i = len*4-32;
  2103. __asm__ volatile(
  2104. "1: \n\t"
  2105. "movaps 16(%1), %%xmm0 \n\t"
  2106. "movaps (%1), %%xmm1 \n\t"
  2107. "shufps $0x1b, %%xmm0, %%xmm0 \n\t"
  2108. "shufps $0x1b, %%xmm1, %%xmm1 \n\t"
  2109. "mulps (%3,%0), %%xmm0 \n\t"
  2110. "mulps 16(%3,%0), %%xmm1 \n\t"
  2111. "movaps %%xmm0, (%2,%0) \n\t"
  2112. "movaps %%xmm1, 16(%2,%0) \n\t"
  2113. "add $32, %1 \n\t"
  2114. "sub $32, %0 \n\t"
  2115. "jge 1b \n\t"
  2116. :"+r"(i), "+r"(src1)
  2117. :"r"(dst), "r"(src0)
  2118. );
  2119. }
  2120. static void vector_fmul_add_3dnow(float *dst, const float *src0, const float *src1,
  2121. const float *src2, int len){
  2122. x86_reg i = (len-4)*4;
  2123. __asm__ volatile(
  2124. "1: \n\t"
  2125. "movq (%2,%0), %%mm0 \n\t"
  2126. "movq 8(%2,%0), %%mm1 \n\t"
  2127. "pfmul (%3,%0), %%mm0 \n\t"
  2128. "pfmul 8(%3,%0), %%mm1 \n\t"
  2129. "pfadd (%4,%0), %%mm0 \n\t"
  2130. "pfadd 8(%4,%0), %%mm1 \n\t"
  2131. "movq %%mm0, (%1,%0) \n\t"
  2132. "movq %%mm1, 8(%1,%0) \n\t"
  2133. "sub $16, %0 \n\t"
  2134. "jge 1b \n\t"
  2135. :"+r"(i)
  2136. :"r"(dst), "r"(src0), "r"(src1), "r"(src2)
  2137. :"memory"
  2138. );
  2139. __asm__ volatile("femms");
  2140. }
  2141. static void vector_fmul_add_sse(float *dst, const float *src0, const float *src1,
  2142. const float *src2, int len){
  2143. x86_reg i = (len-8)*4;
  2144. __asm__ volatile(
  2145. "1: \n\t"
  2146. "movaps (%2,%0), %%xmm0 \n\t"
  2147. "movaps 16(%2,%0), %%xmm1 \n\t"
  2148. "mulps (%3,%0), %%xmm0 \n\t"
  2149. "mulps 16(%3,%0), %%xmm1 \n\t"
  2150. "addps (%4,%0), %%xmm0 \n\t"
  2151. "addps 16(%4,%0), %%xmm1 \n\t"
  2152. "movaps %%xmm0, (%1,%0) \n\t"
  2153. "movaps %%xmm1, 16(%1,%0) \n\t"
  2154. "sub $32, %0 \n\t"
  2155. "jge 1b \n\t"
  2156. :"+r"(i)
  2157. :"r"(dst), "r"(src0), "r"(src1), "r"(src2)
  2158. :"memory"
  2159. );
  2160. }
  2161. #if HAVE_6REGS
  2162. static void vector_fmul_window_3dnow2(float *dst, const float *src0, const float *src1,
  2163. const float *win, int len){
  2164. x86_reg i = -len*4;
  2165. x86_reg j = len*4-8;
  2166. __asm__ volatile(
  2167. "1: \n"
  2168. "pswapd (%5,%1), %%mm1 \n"
  2169. "movq (%5,%0), %%mm0 \n"
  2170. "pswapd (%4,%1), %%mm5 \n"
  2171. "movq (%3,%0), %%mm4 \n"
  2172. "movq %%mm0, %%mm2 \n"
  2173. "movq %%mm1, %%mm3 \n"
  2174. "pfmul %%mm4, %%mm2 \n" // src0[len+i]*win[len+i]
  2175. "pfmul %%mm5, %%mm3 \n" // src1[ j]*win[len+j]
  2176. "pfmul %%mm4, %%mm1 \n" // src0[len+i]*win[len+j]
  2177. "pfmul %%mm5, %%mm0 \n" // src1[ j]*win[len+i]
  2178. "pfadd %%mm3, %%mm2 \n"
  2179. "pfsub %%mm0, %%mm1 \n"
  2180. "pswapd %%mm2, %%mm2 \n"
  2181. "movq %%mm1, (%2,%0) \n"
  2182. "movq %%mm2, (%2,%1) \n"
  2183. "sub $8, %1 \n"
  2184. "add $8, %0 \n"
  2185. "jl 1b \n"
  2186. "femms \n"
  2187. :"+r"(i), "+r"(j)
  2188. :"r"(dst+len), "r"(src0+len), "r"(src1), "r"(win+len)
  2189. );
  2190. }
  2191. static void vector_fmul_window_sse(float *dst, const float *src0, const float *src1,
  2192. const float *win, int len){
  2193. x86_reg i = -len*4;
  2194. x86_reg j = len*4-16;
  2195. __asm__ volatile(
  2196. "1: \n"
  2197. "movaps (%5,%1), %%xmm1 \n"
  2198. "movaps (%5,%0), %%xmm0 \n"
  2199. "movaps (%4,%1), %%xmm5 \n"
  2200. "movaps (%3,%0), %%xmm4 \n"
  2201. "shufps $0x1b, %%xmm1, %%xmm1 \n"
  2202. "shufps $0x1b, %%xmm5, %%xmm5 \n"
  2203. "movaps %%xmm0, %%xmm2 \n"
  2204. "movaps %%xmm1, %%xmm3 \n"
  2205. "mulps %%xmm4, %%xmm2 \n" // src0[len+i]*win[len+i]
  2206. "mulps %%xmm5, %%xmm3 \n" // src1[ j]*win[len+j]
  2207. "mulps %%xmm4, %%xmm1 \n" // src0[len+i]*win[len+j]
  2208. "mulps %%xmm5, %%xmm0 \n" // src1[ j]*win[len+i]
  2209. "addps %%xmm3, %%xmm2 \n"
  2210. "subps %%xmm0, %%xmm1 \n"
  2211. "shufps $0x1b, %%xmm2, %%xmm2 \n"
  2212. "movaps %%xmm1, (%2,%0) \n"
  2213. "movaps %%xmm2, (%2,%1) \n"
  2214. "sub $16, %1 \n"
  2215. "add $16, %0 \n"
  2216. "jl 1b \n"
  2217. :"+r"(i), "+r"(j)
  2218. :"r"(dst+len), "r"(src0+len), "r"(src1), "r"(win+len)
  2219. );
  2220. }
  2221. #endif /* HAVE_6REGS */
  2222. static void vector_clipf_sse(float *dst, const float *src, float min, float max,
  2223. int len)
  2224. {
  2225. x86_reg i = (len-16)*4;
  2226. __asm__ volatile(
  2227. "movss %3, %%xmm4 \n"
  2228. "movss %4, %%xmm5 \n"
  2229. "shufps $0, %%xmm4, %%xmm4 \n"
  2230. "shufps $0, %%xmm5, %%xmm5 \n"
  2231. "1: \n\t"
  2232. "movaps (%2,%0), %%xmm0 \n\t" // 3/1 on intel
  2233. "movaps 16(%2,%0), %%xmm1 \n\t"
  2234. "movaps 32(%2,%0), %%xmm2 \n\t"
  2235. "movaps 48(%2,%0), %%xmm3 \n\t"
  2236. "maxps %%xmm4, %%xmm0 \n\t"
  2237. "maxps %%xmm4, %%xmm1 \n\t"
  2238. "maxps %%xmm4, %%xmm2 \n\t"
  2239. "maxps %%xmm4, %%xmm3 \n\t"
  2240. "minps %%xmm5, %%xmm0 \n\t"
  2241. "minps %%xmm5, %%xmm1 \n\t"
  2242. "minps %%xmm5, %%xmm2 \n\t"
  2243. "minps %%xmm5, %%xmm3 \n\t"
  2244. "movaps %%xmm0, (%1,%0) \n\t"
  2245. "movaps %%xmm1, 16(%1,%0) \n\t"
  2246. "movaps %%xmm2, 32(%1,%0) \n\t"
  2247. "movaps %%xmm3, 48(%1,%0) \n\t"
  2248. "sub $64, %0 \n\t"
  2249. "jge 1b \n\t"
  2250. :"+&r"(i)
  2251. :"r"(dst), "r"(src), "m"(min), "m"(max)
  2252. :"memory"
  2253. );
  2254. }
  2255. void ff_vp3_idct_mmx(int16_t *input_data);
  2256. void ff_vp3_idct_put_mmx(uint8_t *dest, int line_size, DCTELEM *block);
  2257. void ff_vp3_idct_add_mmx(uint8_t *dest, int line_size, DCTELEM *block);
  2258. void ff_vp3_idct_dc_add_mmx2(uint8_t *dest, int line_size, const DCTELEM *block);
  2259. void ff_vp3_v_loop_filter_mmx2(uint8_t *src, int stride, int *bounding_values);
  2260. void ff_vp3_h_loop_filter_mmx2(uint8_t *src, int stride, int *bounding_values);
  2261. void ff_vp3_idct_sse2(int16_t *input_data);
  2262. void ff_vp3_idct_put_sse2(uint8_t *dest, int line_size, DCTELEM *block);
  2263. void ff_vp3_idct_add_sse2(uint8_t *dest, int line_size, DCTELEM *block);
  2264. int32_t ff_scalarproduct_int16_mmx2(const int16_t *v1, const int16_t *v2, int order, int shift);
  2265. int32_t ff_scalarproduct_int16_sse2(const int16_t *v1, const int16_t *v2, int order, int shift);
  2266. int32_t ff_scalarproduct_and_madd_int16_mmx2(int16_t *v1, const int16_t *v2, const int16_t *v3, int order, int mul);
  2267. int32_t ff_scalarproduct_and_madd_int16_sse2(int16_t *v1, const int16_t *v2, const int16_t *v3, int order, int mul);
  2268. int32_t ff_scalarproduct_and_madd_int16_ssse3(int16_t *v1, const int16_t *v2, const int16_t *v3, int order, int mul);
  2269. void ff_apply_window_int16_mmxext (int16_t *output, const int16_t *input,
  2270. const int16_t *window, unsigned int len);
  2271. void ff_apply_window_int16_mmxext_ba (int16_t *output, const int16_t *input,
  2272. const int16_t *window, unsigned int len);
  2273. void ff_apply_window_int16_sse2 (int16_t *output, const int16_t *input,
  2274. const int16_t *window, unsigned int len);
  2275. void ff_apply_window_int16_sse2_ba (int16_t *output, const int16_t *input,
  2276. const int16_t *window, unsigned int len);
  2277. void ff_apply_window_int16_ssse3 (int16_t *output, const int16_t *input,
  2278. const int16_t *window, unsigned int len);
  2279. void ff_apply_window_int16_ssse3_atom(int16_t *output, const int16_t *input,
  2280. const int16_t *window, unsigned int len);
  2281. void ff_add_hfyu_median_prediction_mmx2(uint8_t *dst, const uint8_t *top, const uint8_t *diff, int w, int *left, int *left_top);
  2282. int ff_add_hfyu_left_prediction_ssse3(uint8_t *dst, const uint8_t *src, int w, int left);
  2283. int ff_add_hfyu_left_prediction_sse4(uint8_t *dst, const uint8_t *src, int w, int left);
  2284. float ff_scalarproduct_float_sse(const float *v1, const float *v2, int order);
  2285. void ff_vector_clip_int32_mmx (int32_t *dst, const int32_t *src, int32_t min,
  2286. int32_t max, unsigned int len);
  2287. void ff_vector_clip_int32_sse2 (int32_t *dst, const int32_t *src, int32_t min,
  2288. int32_t max, unsigned int len);
  2289. void ff_vector_clip_int32_int_sse2(int32_t *dst, const int32_t *src, int32_t min,
  2290. int32_t max, unsigned int len);
  2291. void ff_vector_clip_int32_sse4 (int32_t *dst, const int32_t *src, int32_t min,
  2292. int32_t max, unsigned int len);
  2293. extern void ff_butterflies_float_interleave_sse(float *dst, const float *src0,
  2294. const float *src1, int len);
  2295. extern void ff_butterflies_float_interleave_avx(float *dst, const float *src0,
  2296. const float *src1, int len);
  2297. void dsputil_init_mmx(DSPContext* c, AVCodecContext *avctx)
  2298. {
  2299. int mm_flags = av_get_cpu_flags();
  2300. const int high_bit_depth = avctx->bits_per_raw_sample > 8;
  2301. const int bit_depth = avctx->bits_per_raw_sample;
  2302. if (avctx->dsp_mask) {
  2303. if (avctx->dsp_mask & AV_CPU_FLAG_FORCE)
  2304. mm_flags |= (avctx->dsp_mask & 0xffff);
  2305. else
  2306. mm_flags &= ~(avctx->dsp_mask & 0xffff);
  2307. }
  2308. #if 0
  2309. av_log(avctx, AV_LOG_INFO, "libavcodec: CPU flags:");
  2310. if (mm_flags & AV_CPU_FLAG_MMX)
  2311. av_log(avctx, AV_LOG_INFO, " mmx");
  2312. if (mm_flags & AV_CPU_FLAG_MMX2)
  2313. av_log(avctx, AV_LOG_INFO, " mmx2");
  2314. if (mm_flags & AV_CPU_FLAG_3DNOW)
  2315. av_log(avctx, AV_LOG_INFO, " 3dnow");
  2316. if (mm_flags & AV_CPU_FLAG_SSE)
  2317. av_log(avctx, AV_LOG_INFO, " sse");
  2318. if (mm_flags & AV_CPU_FLAG_SSE2)
  2319. av_log(avctx, AV_LOG_INFO, " sse2");
  2320. av_log(avctx, AV_LOG_INFO, "\n");
  2321. #endif
  2322. if (mm_flags & AV_CPU_FLAG_MMX) {
  2323. const int idct_algo= avctx->idct_algo;
  2324. if (avctx->lowres == 0 && avctx->bits_per_raw_sample <= 8) {
  2325. if(idct_algo==FF_IDCT_AUTO || idct_algo==FF_IDCT_SIMPLEMMX){
  2326. c->idct_put= ff_simple_idct_put_mmx;
  2327. c->idct_add= ff_simple_idct_add_mmx;
  2328. c->idct = ff_simple_idct_mmx;
  2329. c->idct_permutation_type= FF_SIMPLE_IDCT_PERM;
  2330. #if CONFIG_GPL
  2331. }else if(idct_algo==FF_IDCT_LIBMPEG2MMX){
  2332. if(mm_flags & AV_CPU_FLAG_MMX2){
  2333. c->idct_put= ff_libmpeg2mmx2_idct_put;
  2334. c->idct_add= ff_libmpeg2mmx2_idct_add;
  2335. c->idct = ff_mmxext_idct;
  2336. }else{
  2337. c->idct_put= ff_libmpeg2mmx_idct_put;
  2338. c->idct_add= ff_libmpeg2mmx_idct_add;
  2339. c->idct = ff_mmx_idct;
  2340. }
  2341. c->idct_permutation_type= FF_LIBMPEG2_IDCT_PERM;
  2342. #endif
  2343. }else if((CONFIG_VP3_DECODER || CONFIG_VP5_DECODER || CONFIG_VP6_DECODER) &&
  2344. idct_algo==FF_IDCT_VP3 && HAVE_YASM){
  2345. if(mm_flags & AV_CPU_FLAG_SSE2){
  2346. c->idct_put= ff_vp3_idct_put_sse2;
  2347. c->idct_add= ff_vp3_idct_add_sse2;
  2348. c->idct = ff_vp3_idct_sse2;
  2349. c->idct_permutation_type= FF_TRANSPOSE_IDCT_PERM;
  2350. }else{
  2351. c->idct_put= ff_vp3_idct_put_mmx;
  2352. c->idct_add= ff_vp3_idct_add_mmx;
  2353. c->idct = ff_vp3_idct_mmx;
  2354. c->idct_permutation_type= FF_PARTTRANS_IDCT_PERM;
  2355. }
  2356. }else if(idct_algo==FF_IDCT_CAVS){
  2357. c->idct_permutation_type= FF_TRANSPOSE_IDCT_PERM;
  2358. }else if(idct_algo==FF_IDCT_XVIDMMX){
  2359. if(mm_flags & AV_CPU_FLAG_SSE2){
  2360. c->idct_put= ff_idct_xvid_sse2_put;
  2361. c->idct_add= ff_idct_xvid_sse2_add;
  2362. c->idct = ff_idct_xvid_sse2;
  2363. c->idct_permutation_type= FF_SSE2_IDCT_PERM;
  2364. }else if(mm_flags & AV_CPU_FLAG_MMX2){
  2365. c->idct_put= ff_idct_xvid_mmx2_put;
  2366. c->idct_add= ff_idct_xvid_mmx2_add;
  2367. c->idct = ff_idct_xvid_mmx2;
  2368. }else{
  2369. c->idct_put= ff_idct_xvid_mmx_put;
  2370. c->idct_add= ff_idct_xvid_mmx_add;
  2371. c->idct = ff_idct_xvid_mmx;
  2372. }
  2373. }
  2374. }
  2375. c->put_pixels_clamped = ff_put_pixels_clamped_mmx;
  2376. c->put_signed_pixels_clamped = ff_put_signed_pixels_clamped_mmx;
  2377. c->add_pixels_clamped = ff_add_pixels_clamped_mmx;
  2378. if (!high_bit_depth) {
  2379. c->clear_block = clear_block_mmx;
  2380. c->clear_blocks = clear_blocks_mmx;
  2381. if ((mm_flags & AV_CPU_FLAG_SSE) &&
  2382. !(CONFIG_MPEG_XVMC_DECODER && avctx->xvmc_acceleration > 1)){
  2383. /* XvMCCreateBlocks() may not allocate 16-byte aligned blocks */
  2384. c->clear_block = clear_block_sse;
  2385. c->clear_blocks = clear_blocks_sse;
  2386. }
  2387. }
  2388. #define SET_HPEL_FUNCS(PFX, IDX, SIZE, CPU) \
  2389. c->PFX ## _pixels_tab[IDX][0] = PFX ## _pixels ## SIZE ## _ ## CPU; \
  2390. c->PFX ## _pixels_tab[IDX][1] = PFX ## _pixels ## SIZE ## _x2_ ## CPU; \
  2391. c->PFX ## _pixels_tab[IDX][2] = PFX ## _pixels ## SIZE ## _y2_ ## CPU; \
  2392. c->PFX ## _pixels_tab[IDX][3] = PFX ## _pixels ## SIZE ## _xy2_ ## CPU
  2393. if (!high_bit_depth) {
  2394. SET_HPEL_FUNCS(put, 0, 16, mmx);
  2395. SET_HPEL_FUNCS(put_no_rnd, 0, 16, mmx);
  2396. SET_HPEL_FUNCS(avg, 0, 16, mmx);
  2397. SET_HPEL_FUNCS(avg_no_rnd, 0, 16, mmx);
  2398. SET_HPEL_FUNCS(put, 1, 8, mmx);
  2399. SET_HPEL_FUNCS(put_no_rnd, 1, 8, mmx);
  2400. SET_HPEL_FUNCS(avg, 1, 8, mmx);
  2401. SET_HPEL_FUNCS(avg_no_rnd, 1, 8, mmx);
  2402. }
  2403. #if ARCH_X86_32 || !HAVE_YASM
  2404. c->gmc= gmc_mmx;
  2405. #endif
  2406. #if ARCH_X86_32 && HAVE_YASM
  2407. if (!high_bit_depth)
  2408. c->emulated_edge_mc = emulated_edge_mc_mmx;
  2409. #endif
  2410. c->add_bytes= add_bytes_mmx;
  2411. c->add_bytes_l2= add_bytes_l2_mmx;
  2412. if (!high_bit_depth)
  2413. c->draw_edges = draw_edges_mmx;
  2414. if (CONFIG_H263_DECODER || CONFIG_H263_ENCODER) {
  2415. c->h263_v_loop_filter= h263_v_loop_filter_mmx;
  2416. c->h263_h_loop_filter= h263_h_loop_filter_mmx;
  2417. }
  2418. #if HAVE_YASM
  2419. if (!high_bit_depth && CONFIG_H264CHROMA) {
  2420. c->put_h264_chroma_pixels_tab[0]= ff_put_h264_chroma_mc8_mmx_rnd;
  2421. c->put_h264_chroma_pixels_tab[1]= ff_put_h264_chroma_mc4_mmx;
  2422. }
  2423. c->vector_clip_int32 = ff_vector_clip_int32_mmx;
  2424. #endif
  2425. if (mm_flags & AV_CPU_FLAG_MMX2) {
  2426. c->prefetch = prefetch_mmx2;
  2427. if (!high_bit_depth) {
  2428. c->put_pixels_tab[0][1] = put_pixels16_x2_mmx2;
  2429. c->put_pixels_tab[0][2] = put_pixels16_y2_mmx2;
  2430. c->avg_pixels_tab[0][0] = avg_pixels16_mmx2;
  2431. c->avg_pixels_tab[0][1] = avg_pixels16_x2_mmx2;
  2432. c->avg_pixels_tab[0][2] = avg_pixels16_y2_mmx2;
  2433. c->put_pixels_tab[1][1] = put_pixels8_x2_mmx2;
  2434. c->put_pixels_tab[1][2] = put_pixels8_y2_mmx2;
  2435. c->avg_pixels_tab[1][0] = avg_pixels8_mmx2;
  2436. c->avg_pixels_tab[1][1] = avg_pixels8_x2_mmx2;
  2437. c->avg_pixels_tab[1][2] = avg_pixels8_y2_mmx2;
  2438. }
  2439. if(!(avctx->flags & CODEC_FLAG_BITEXACT)){
  2440. if (!high_bit_depth) {
  2441. c->put_no_rnd_pixels_tab[0][1] = put_no_rnd_pixels16_x2_mmx2;
  2442. c->put_no_rnd_pixels_tab[0][2] = put_no_rnd_pixels16_y2_mmx2;
  2443. c->put_no_rnd_pixels_tab[1][1] = put_no_rnd_pixels8_x2_mmx2;
  2444. c->put_no_rnd_pixels_tab[1][2] = put_no_rnd_pixels8_y2_mmx2;
  2445. c->avg_pixels_tab[0][3] = avg_pixels16_xy2_mmx2;
  2446. c->avg_pixels_tab[1][3] = avg_pixels8_xy2_mmx2;
  2447. }
  2448. if (CONFIG_VP3_DECODER && HAVE_YASM) {
  2449. c->vp3_v_loop_filter= ff_vp3_v_loop_filter_mmx2;
  2450. c->vp3_h_loop_filter= ff_vp3_h_loop_filter_mmx2;
  2451. }
  2452. }
  2453. if (CONFIG_VP3_DECODER && HAVE_YASM) {
  2454. c->vp3_idct_dc_add = ff_vp3_idct_dc_add_mmx2;
  2455. }
  2456. if (CONFIG_VP3_DECODER
  2457. && (avctx->codec_id == CODEC_ID_VP3 || avctx->codec_id == CODEC_ID_THEORA)) {
  2458. c->put_no_rnd_pixels_tab[1][1] = put_no_rnd_pixels8_x2_exact_mmx2;
  2459. c->put_no_rnd_pixels_tab[1][2] = put_no_rnd_pixels8_y2_exact_mmx2;
  2460. }
  2461. #define SET_QPEL_FUNCS(PFX, IDX, SIZE, CPU, PREFIX) \
  2462. c->PFX ## _pixels_tab[IDX][ 0] = PREFIX ## PFX ## SIZE ## _mc00_ ## CPU; \
  2463. c->PFX ## _pixels_tab[IDX][ 1] = PREFIX ## PFX ## SIZE ## _mc10_ ## CPU; \
  2464. c->PFX ## _pixels_tab[IDX][ 2] = PREFIX ## PFX ## SIZE ## _mc20_ ## CPU; \
  2465. c->PFX ## _pixels_tab[IDX][ 3] = PREFIX ## PFX ## SIZE ## _mc30_ ## CPU; \
  2466. c->PFX ## _pixels_tab[IDX][ 4] = PREFIX ## PFX ## SIZE ## _mc01_ ## CPU; \
  2467. c->PFX ## _pixels_tab[IDX][ 5] = PREFIX ## PFX ## SIZE ## _mc11_ ## CPU; \
  2468. c->PFX ## _pixels_tab[IDX][ 6] = PREFIX ## PFX ## SIZE ## _mc21_ ## CPU; \
  2469. c->PFX ## _pixels_tab[IDX][ 7] = PREFIX ## PFX ## SIZE ## _mc31_ ## CPU; \
  2470. c->PFX ## _pixels_tab[IDX][ 8] = PREFIX ## PFX ## SIZE ## _mc02_ ## CPU; \
  2471. c->PFX ## _pixels_tab[IDX][ 9] = PREFIX ## PFX ## SIZE ## _mc12_ ## CPU; \
  2472. c->PFX ## _pixels_tab[IDX][10] = PREFIX ## PFX ## SIZE ## _mc22_ ## CPU; \
  2473. c->PFX ## _pixels_tab[IDX][11] = PREFIX ## PFX ## SIZE ## _mc32_ ## CPU; \
  2474. c->PFX ## _pixels_tab[IDX][12] = PREFIX ## PFX ## SIZE ## _mc03_ ## CPU; \
  2475. c->PFX ## _pixels_tab[IDX][13] = PREFIX ## PFX ## SIZE ## _mc13_ ## CPU; \
  2476. c->PFX ## _pixels_tab[IDX][14] = PREFIX ## PFX ## SIZE ## _mc23_ ## CPU; \
  2477. c->PFX ## _pixels_tab[IDX][15] = PREFIX ## PFX ## SIZE ## _mc33_ ## CPU
  2478. SET_QPEL_FUNCS(put_qpel, 0, 16, mmx2, );
  2479. SET_QPEL_FUNCS(put_qpel, 1, 8, mmx2, );
  2480. SET_QPEL_FUNCS(put_no_rnd_qpel, 0, 16, mmx2, );
  2481. SET_QPEL_FUNCS(put_no_rnd_qpel, 1, 8, mmx2, );
  2482. SET_QPEL_FUNCS(avg_qpel, 0, 16, mmx2, );
  2483. SET_QPEL_FUNCS(avg_qpel, 1, 8, mmx2, );
  2484. if (!high_bit_depth) {
  2485. SET_QPEL_FUNCS(put_h264_qpel, 0, 16, mmx2, );
  2486. SET_QPEL_FUNCS(put_h264_qpel, 1, 8, mmx2, );
  2487. SET_QPEL_FUNCS(put_h264_qpel, 2, 4, mmx2, );
  2488. SET_QPEL_FUNCS(avg_h264_qpel, 0, 16, mmx2, );
  2489. SET_QPEL_FUNCS(avg_h264_qpel, 1, 8, mmx2, );
  2490. SET_QPEL_FUNCS(avg_h264_qpel, 2, 4, mmx2, );
  2491. }
  2492. else if (bit_depth == 10) {
  2493. #if HAVE_YASM
  2494. #if !ARCH_X86_64
  2495. SET_QPEL_FUNCS(avg_h264_qpel, 0, 16, 10_mmxext, ff_);
  2496. SET_QPEL_FUNCS(put_h264_qpel, 0, 16, 10_mmxext, ff_);
  2497. SET_QPEL_FUNCS(put_h264_qpel, 1, 8, 10_mmxext, ff_);
  2498. SET_QPEL_FUNCS(avg_h264_qpel, 1, 8, 10_mmxext, ff_);
  2499. #endif
  2500. SET_QPEL_FUNCS(put_h264_qpel, 2, 4, 10_mmxext, ff_);
  2501. SET_QPEL_FUNCS(avg_h264_qpel, 2, 4, 10_mmxext, ff_);
  2502. #endif
  2503. }
  2504. SET_QPEL_FUNCS(put_2tap_qpel, 0, 16, mmx2, );
  2505. SET_QPEL_FUNCS(put_2tap_qpel, 1, 8, mmx2, );
  2506. SET_QPEL_FUNCS(avg_2tap_qpel, 0, 16, mmx2, );
  2507. SET_QPEL_FUNCS(avg_2tap_qpel, 1, 8, mmx2, );
  2508. #if HAVE_YASM
  2509. if (!high_bit_depth && CONFIG_H264CHROMA) {
  2510. c->avg_h264_chroma_pixels_tab[0]= ff_avg_h264_chroma_mc8_mmx2_rnd;
  2511. c->avg_h264_chroma_pixels_tab[1]= ff_avg_h264_chroma_mc4_mmx2;
  2512. c->avg_h264_chroma_pixels_tab[2]= ff_avg_h264_chroma_mc2_mmx2;
  2513. c->put_h264_chroma_pixels_tab[2]= ff_put_h264_chroma_mc2_mmx2;
  2514. }
  2515. if (bit_depth == 10 && CONFIG_H264CHROMA) {
  2516. c->put_h264_chroma_pixels_tab[2]= ff_put_h264_chroma_mc2_10_mmxext;
  2517. c->avg_h264_chroma_pixels_tab[2]= ff_avg_h264_chroma_mc2_10_mmxext;
  2518. c->put_h264_chroma_pixels_tab[1]= ff_put_h264_chroma_mc4_10_mmxext;
  2519. c->avg_h264_chroma_pixels_tab[1]= ff_avg_h264_chroma_mc4_10_mmxext;
  2520. }
  2521. c->add_hfyu_median_prediction = ff_add_hfyu_median_prediction_mmx2;
  2522. #endif
  2523. #if HAVE_7REGS
  2524. if (HAVE_AMD3DNOW && (mm_flags & AV_CPU_FLAG_3DNOW))
  2525. c->add_hfyu_median_prediction = add_hfyu_median_prediction_cmov;
  2526. #endif
  2527. c->add_png_paeth_prediction= add_png_paeth_prediction_mmx2;
  2528. } else if (HAVE_AMD3DNOW && (mm_flags & AV_CPU_FLAG_3DNOW)) {
  2529. c->prefetch = prefetch_3dnow;
  2530. if (!high_bit_depth) {
  2531. c->put_pixels_tab[0][1] = put_pixels16_x2_3dnow;
  2532. c->put_pixels_tab[0][2] = put_pixels16_y2_3dnow;
  2533. c->avg_pixels_tab[0][0] = avg_pixels16_3dnow;
  2534. c->avg_pixels_tab[0][1] = avg_pixels16_x2_3dnow;
  2535. c->avg_pixels_tab[0][2] = avg_pixels16_y2_3dnow;
  2536. c->put_pixels_tab[1][1] = put_pixels8_x2_3dnow;
  2537. c->put_pixels_tab[1][2] = put_pixels8_y2_3dnow;
  2538. c->avg_pixels_tab[1][0] = avg_pixels8_3dnow;
  2539. c->avg_pixels_tab[1][1] = avg_pixels8_x2_3dnow;
  2540. c->avg_pixels_tab[1][2] = avg_pixels8_y2_3dnow;
  2541. if(!(avctx->flags & CODEC_FLAG_BITEXACT)){
  2542. c->put_no_rnd_pixels_tab[0][1] = put_no_rnd_pixels16_x2_3dnow;
  2543. c->put_no_rnd_pixels_tab[0][2] = put_no_rnd_pixels16_y2_3dnow;
  2544. c->put_no_rnd_pixels_tab[1][1] = put_no_rnd_pixels8_x2_3dnow;
  2545. c->put_no_rnd_pixels_tab[1][2] = put_no_rnd_pixels8_y2_3dnow;
  2546. c->avg_pixels_tab[0][3] = avg_pixels16_xy2_3dnow;
  2547. c->avg_pixels_tab[1][3] = avg_pixels8_xy2_3dnow;
  2548. }
  2549. }
  2550. if (CONFIG_VP3_DECODER
  2551. && (avctx->codec_id == CODEC_ID_VP3 || avctx->codec_id == CODEC_ID_THEORA)) {
  2552. c->put_no_rnd_pixels_tab[1][1] = put_no_rnd_pixels8_x2_exact_3dnow;
  2553. c->put_no_rnd_pixels_tab[1][2] = put_no_rnd_pixels8_y2_exact_3dnow;
  2554. }
  2555. SET_QPEL_FUNCS(put_qpel, 0, 16, 3dnow, );
  2556. SET_QPEL_FUNCS(put_qpel, 1, 8, 3dnow, );
  2557. SET_QPEL_FUNCS(put_no_rnd_qpel, 0, 16, 3dnow, );
  2558. SET_QPEL_FUNCS(put_no_rnd_qpel, 1, 8, 3dnow, );
  2559. SET_QPEL_FUNCS(avg_qpel, 0, 16, 3dnow, );
  2560. SET_QPEL_FUNCS(avg_qpel, 1, 8, 3dnow, );
  2561. if (!high_bit_depth) {
  2562. SET_QPEL_FUNCS(put_h264_qpel, 0, 16, 3dnow, );
  2563. SET_QPEL_FUNCS(put_h264_qpel, 1, 8, 3dnow, );
  2564. SET_QPEL_FUNCS(put_h264_qpel, 2, 4, 3dnow, );
  2565. SET_QPEL_FUNCS(avg_h264_qpel, 0, 16, 3dnow, );
  2566. SET_QPEL_FUNCS(avg_h264_qpel, 1, 8, 3dnow, );
  2567. SET_QPEL_FUNCS(avg_h264_qpel, 2, 4, 3dnow, );
  2568. }
  2569. SET_QPEL_FUNCS(put_2tap_qpel, 0, 16, 3dnow, );
  2570. SET_QPEL_FUNCS(put_2tap_qpel, 1, 8, 3dnow, );
  2571. SET_QPEL_FUNCS(avg_2tap_qpel, 0, 16, 3dnow, );
  2572. SET_QPEL_FUNCS(avg_2tap_qpel, 1, 8, 3dnow, );
  2573. #if HAVE_YASM
  2574. if (!high_bit_depth && CONFIG_H264CHROMA) {
  2575. c->avg_h264_chroma_pixels_tab[0]= ff_avg_h264_chroma_mc8_3dnow_rnd;
  2576. c->avg_h264_chroma_pixels_tab[1]= ff_avg_h264_chroma_mc4_3dnow;
  2577. }
  2578. #endif
  2579. }
  2580. #define H264_QPEL_FUNCS(x, y, CPU)\
  2581. c->put_h264_qpel_pixels_tab[0][x+y*4] = put_h264_qpel16_mc##x##y##_##CPU;\
  2582. c->put_h264_qpel_pixels_tab[1][x+y*4] = put_h264_qpel8_mc##x##y##_##CPU;\
  2583. c->avg_h264_qpel_pixels_tab[0][x+y*4] = avg_h264_qpel16_mc##x##y##_##CPU;\
  2584. c->avg_h264_qpel_pixels_tab[1][x+y*4] = avg_h264_qpel8_mc##x##y##_##CPU;
  2585. if((mm_flags & AV_CPU_FLAG_SSE2) && !(mm_flags & AV_CPU_FLAG_3DNOW)){
  2586. // these functions are slower than mmx on AMD, but faster on Intel
  2587. if (!high_bit_depth) {
  2588. c->put_pixels_tab[0][0] = put_pixels16_sse2;
  2589. c->put_no_rnd_pixels_tab[0][0] = put_pixels16_sse2;
  2590. c->avg_pixels_tab[0][0] = avg_pixels16_sse2;
  2591. H264_QPEL_FUNCS(0, 0, sse2);
  2592. }
  2593. }
  2594. if(mm_flags & AV_CPU_FLAG_SSE2){
  2595. if (!high_bit_depth) {
  2596. H264_QPEL_FUNCS(0, 1, sse2);
  2597. H264_QPEL_FUNCS(0, 2, sse2);
  2598. H264_QPEL_FUNCS(0, 3, sse2);
  2599. H264_QPEL_FUNCS(1, 1, sse2);
  2600. H264_QPEL_FUNCS(1, 2, sse2);
  2601. H264_QPEL_FUNCS(1, 3, sse2);
  2602. H264_QPEL_FUNCS(2, 1, sse2);
  2603. H264_QPEL_FUNCS(2, 2, sse2);
  2604. H264_QPEL_FUNCS(2, 3, sse2);
  2605. H264_QPEL_FUNCS(3, 1, sse2);
  2606. H264_QPEL_FUNCS(3, 2, sse2);
  2607. H264_QPEL_FUNCS(3, 3, sse2);
  2608. }
  2609. #if HAVE_YASM
  2610. #define H264_QPEL_FUNCS_10(x, y, CPU)\
  2611. c->put_h264_qpel_pixels_tab[0][x+y*4] = ff_put_h264_qpel16_mc##x##y##_10_##CPU;\
  2612. c->put_h264_qpel_pixels_tab[1][x+y*4] = ff_put_h264_qpel8_mc##x##y##_10_##CPU;\
  2613. c->avg_h264_qpel_pixels_tab[0][x+y*4] = ff_avg_h264_qpel16_mc##x##y##_10_##CPU;\
  2614. c->avg_h264_qpel_pixels_tab[1][x+y*4] = ff_avg_h264_qpel8_mc##x##y##_10_##CPU;
  2615. if (bit_depth == 10) {
  2616. SET_QPEL_FUNCS(put_h264_qpel, 0, 16, 10_sse2, ff_);
  2617. SET_QPEL_FUNCS(put_h264_qpel, 1, 8, 10_sse2, ff_);
  2618. SET_QPEL_FUNCS(avg_h264_qpel, 0, 16, 10_sse2, ff_);
  2619. SET_QPEL_FUNCS(avg_h264_qpel, 1, 8, 10_sse2, ff_);
  2620. H264_QPEL_FUNCS_10(1, 0, sse2_cache64)
  2621. H264_QPEL_FUNCS_10(2, 0, sse2_cache64)
  2622. H264_QPEL_FUNCS_10(3, 0, sse2_cache64)
  2623. if (CONFIG_H264CHROMA) {
  2624. c->put_h264_chroma_pixels_tab[0] = ff_put_h264_chroma_mc8_10_sse2;
  2625. c->avg_h264_chroma_pixels_tab[0] = ff_avg_h264_chroma_mc8_10_sse2;
  2626. }
  2627. }
  2628. #endif
  2629. }
  2630. #if HAVE_SSSE3
  2631. if(mm_flags & AV_CPU_FLAG_SSSE3){
  2632. if (!high_bit_depth) {
  2633. H264_QPEL_FUNCS(1, 0, ssse3);
  2634. H264_QPEL_FUNCS(1, 1, ssse3);
  2635. H264_QPEL_FUNCS(1, 2, ssse3);
  2636. H264_QPEL_FUNCS(1, 3, ssse3);
  2637. H264_QPEL_FUNCS(2, 0, ssse3);
  2638. H264_QPEL_FUNCS(2, 1, ssse3);
  2639. H264_QPEL_FUNCS(2, 2, ssse3);
  2640. H264_QPEL_FUNCS(2, 3, ssse3);
  2641. H264_QPEL_FUNCS(3, 0, ssse3);
  2642. H264_QPEL_FUNCS(3, 1, ssse3);
  2643. H264_QPEL_FUNCS(3, 2, ssse3);
  2644. H264_QPEL_FUNCS(3, 3, ssse3);
  2645. }
  2646. #if HAVE_YASM
  2647. else if (bit_depth == 10) {
  2648. H264_QPEL_FUNCS_10(1, 0, ssse3_cache64)
  2649. H264_QPEL_FUNCS_10(2, 0, ssse3_cache64)
  2650. H264_QPEL_FUNCS_10(3, 0, ssse3_cache64)
  2651. }
  2652. #endif
  2653. c->add_png_paeth_prediction= add_png_paeth_prediction_ssse3;
  2654. #if HAVE_YASM
  2655. if (!high_bit_depth && CONFIG_H264CHROMA) {
  2656. c->put_h264_chroma_pixels_tab[0]= ff_put_h264_chroma_mc8_ssse3_rnd;
  2657. c->avg_h264_chroma_pixels_tab[0]= ff_avg_h264_chroma_mc8_ssse3_rnd;
  2658. c->put_h264_chroma_pixels_tab[1]= ff_put_h264_chroma_mc4_ssse3;
  2659. c->avg_h264_chroma_pixels_tab[1]= ff_avg_h264_chroma_mc4_ssse3;
  2660. }
  2661. c->add_hfyu_left_prediction = ff_add_hfyu_left_prediction_ssse3;
  2662. if (mm_flags & AV_CPU_FLAG_SSE4) // not really sse4, just slow on Conroe
  2663. c->add_hfyu_left_prediction = ff_add_hfyu_left_prediction_sse4;
  2664. #endif
  2665. }
  2666. #endif
  2667. if (HAVE_AMD3DNOW && (mm_flags & AV_CPU_FLAG_3DNOW)) {
  2668. c->vorbis_inverse_coupling = vorbis_inverse_coupling_3dnow;
  2669. c->vector_fmul = vector_fmul_3dnow;
  2670. }
  2671. if (HAVE_AMD3DNOWEXT && (mm_flags & AV_CPU_FLAG_3DNOWEXT)) {
  2672. c->vector_fmul_reverse = vector_fmul_reverse_3dnow2;
  2673. #if HAVE_6REGS
  2674. c->vector_fmul_window = vector_fmul_window_3dnow2;
  2675. #endif
  2676. }
  2677. if(mm_flags & AV_CPU_FLAG_MMX2){
  2678. #if HAVE_YASM
  2679. c->scalarproduct_int16 = ff_scalarproduct_int16_mmx2;
  2680. c->scalarproduct_and_madd_int16 = ff_scalarproduct_and_madd_int16_mmx2;
  2681. if (avctx->flags & CODEC_FLAG_BITEXACT) {
  2682. c->apply_window_int16 = ff_apply_window_int16_mmxext_ba;
  2683. } else {
  2684. c->apply_window_int16 = ff_apply_window_int16_mmxext;
  2685. }
  2686. #endif
  2687. }
  2688. if(mm_flags & AV_CPU_FLAG_SSE){
  2689. c->vorbis_inverse_coupling = vorbis_inverse_coupling_sse;
  2690. c->ac3_downmix = ac3_downmix_sse;
  2691. c->vector_fmul = vector_fmul_sse;
  2692. c->vector_fmul_reverse = vector_fmul_reverse_sse;
  2693. c->vector_fmul_add = vector_fmul_add_sse;
  2694. #if HAVE_6REGS
  2695. c->vector_fmul_window = vector_fmul_window_sse;
  2696. #endif
  2697. c->vector_clipf = vector_clipf_sse;
  2698. #if HAVE_YASM
  2699. c->scalarproduct_float = ff_scalarproduct_float_sse;
  2700. c->butterflies_float_interleave = ff_butterflies_float_interleave_sse;
  2701. if (!high_bit_depth)
  2702. c->emulated_edge_mc = emulated_edge_mc_sse;
  2703. c->gmc = gmc_sse;
  2704. #endif
  2705. }
  2706. if (HAVE_AMD3DNOW && (mm_flags & AV_CPU_FLAG_3DNOW))
  2707. c->vector_fmul_add = vector_fmul_add_3dnow; // faster than sse
  2708. if(mm_flags & AV_CPU_FLAG_SSE2){
  2709. #if HAVE_YASM
  2710. c->scalarproduct_int16 = ff_scalarproduct_int16_sse2;
  2711. c->scalarproduct_and_madd_int16 = ff_scalarproduct_and_madd_int16_sse2;
  2712. if (mm_flags & AV_CPU_FLAG_ATOM) {
  2713. c->vector_clip_int32 = ff_vector_clip_int32_int_sse2;
  2714. } else {
  2715. c->vector_clip_int32 = ff_vector_clip_int32_sse2;
  2716. }
  2717. if (avctx->flags & CODEC_FLAG_BITEXACT) {
  2718. c->apply_window_int16 = ff_apply_window_int16_sse2_ba;
  2719. } else {
  2720. if (!(mm_flags & AV_CPU_FLAG_SSE2SLOW)) {
  2721. c->apply_window_int16 = ff_apply_window_int16_sse2;
  2722. }
  2723. }
  2724. #endif
  2725. }
  2726. if (mm_flags & AV_CPU_FLAG_SSSE3) {
  2727. #if HAVE_YASM
  2728. if (mm_flags & AV_CPU_FLAG_ATOM) {
  2729. c->apply_window_int16 = ff_apply_window_int16_ssse3_atom;
  2730. } else {
  2731. c->apply_window_int16 = ff_apply_window_int16_ssse3;
  2732. }
  2733. if (!(mm_flags & (AV_CPU_FLAG_SSE42|AV_CPU_FLAG_3DNOW))) { // cachesplit
  2734. c->scalarproduct_and_madd_int16 = ff_scalarproduct_and_madd_int16_ssse3;
  2735. }
  2736. #endif
  2737. }
  2738. if (mm_flags & AV_CPU_FLAG_SSE4 && HAVE_SSE) {
  2739. #if HAVE_YASM
  2740. c->vector_clip_int32 = ff_vector_clip_int32_sse4;
  2741. #endif
  2742. }
  2743. #if HAVE_AVX && HAVE_YASM
  2744. if (mm_flags & AV_CPU_FLAG_AVX) {
  2745. if (bit_depth == 10) {
  2746. //AVX implies !cache64.
  2747. //TODO: Port cache(32|64) detection from x264.
  2748. H264_QPEL_FUNCS_10(1, 0, sse2)
  2749. H264_QPEL_FUNCS_10(2, 0, sse2)
  2750. H264_QPEL_FUNCS_10(3, 0, sse2)
  2751. if (CONFIG_H264CHROMA) {
  2752. c->put_h264_chroma_pixels_tab[0] = ff_put_h264_chroma_mc8_10_avx;
  2753. c->avg_h264_chroma_pixels_tab[0] = ff_avg_h264_chroma_mc8_10_avx;
  2754. }
  2755. }
  2756. c->butterflies_float_interleave = ff_butterflies_float_interleave_avx;
  2757. }
  2758. #endif
  2759. }
  2760. if (CONFIG_ENCODERS)
  2761. dsputilenc_init_mmx(c, avctx);
  2762. }