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  1. /*
  2. * Copyright (C) 2001-2003 Michael Niedermayer <michaelni@gmx.at>
  3. *
  4. * This file is part of FFmpeg.
  5. *
  6. * FFmpeg is free software; you can redistribute it and/or modify
  7. * it under the terms of the GNU General Public License as published by
  8. * the Free Software Foundation; either version 2 of the License, or
  9. * (at your option) any later version.
  10. *
  11. * FFmpeg is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  14. * GNU General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU General Public License
  17. * along with FFmpeg; if not, write to the Free Software
  18. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  19. *
  20. * The C code (not assembly, MMX, ...) of this file can be used
  21. * under the LGPL license.
  22. */
  23. #undef REAL_MOVNTQ
  24. #undef MOVNTQ
  25. #undef PAVGB
  26. #undef PREFETCH
  27. #undef PREFETCHW
  28. #if COMPILE_TEMPLATE_AMD3DNOW
  29. #define PREFETCH "prefetch"
  30. #define PREFETCHW "prefetchw"
  31. #elif COMPILE_TEMPLATE_MMX2
  32. #define PREFETCH "prefetchnta"
  33. #define PREFETCHW "prefetcht0"
  34. #else
  35. #define PREFETCH " # nop"
  36. #define PREFETCHW " # nop"
  37. #endif
  38. #if COMPILE_TEMPLATE_MMX2
  39. #define PAVGB(a,b) "pavgb " #a ", " #b " \n\t"
  40. #elif COMPILE_TEMPLATE_AMD3DNOW
  41. #define PAVGB(a,b) "pavgusb " #a ", " #b " \n\t"
  42. #endif
  43. #if COMPILE_TEMPLATE_MMX2
  44. #define REAL_MOVNTQ(a,b) "movntq " #a ", " #b " \n\t"
  45. #else
  46. #define REAL_MOVNTQ(a,b) "movq " #a ", " #b " \n\t"
  47. #endif
  48. #define MOVNTQ(a,b) REAL_MOVNTQ(a,b)
  49. #if COMPILE_TEMPLATE_ALTIVEC
  50. #include "ppc/swscale_altivec_template.c"
  51. #endif
  52. #define YSCALEYUV2YV12X(x, offset, dest, width) \
  53. __asm__ volatile(\
  54. "xor %%"REG_a", %%"REG_a" \n\t"\
  55. "movq "VROUNDER_OFFSET"(%0), %%mm3 \n\t"\
  56. "movq %%mm3, %%mm4 \n\t"\
  57. "lea " offset "(%0), %%"REG_d" \n\t"\
  58. "mov (%%"REG_d"), %%"REG_S" \n\t"\
  59. ASMALIGN(4) /* FIXME Unroll? */\
  60. "1: \n\t"\
  61. "movq 8(%%"REG_d"), %%mm0 \n\t" /* filterCoeff */\
  62. "movq " x "(%%"REG_S", %%"REG_a", 2), %%mm2 \n\t" /* srcData */\
  63. "movq 8+" x "(%%"REG_S", %%"REG_a", 2), %%mm5 \n\t" /* srcData */\
  64. "add $16, %%"REG_d" \n\t"\
  65. "mov (%%"REG_d"), %%"REG_S" \n\t"\
  66. "test %%"REG_S", %%"REG_S" \n\t"\
  67. "pmulhw %%mm0, %%mm2 \n\t"\
  68. "pmulhw %%mm0, %%mm5 \n\t"\
  69. "paddw %%mm2, %%mm3 \n\t"\
  70. "paddw %%mm5, %%mm4 \n\t"\
  71. " jnz 1b \n\t"\
  72. "psraw $3, %%mm3 \n\t"\
  73. "psraw $3, %%mm4 \n\t"\
  74. "packuswb %%mm4, %%mm3 \n\t"\
  75. MOVNTQ(%%mm3, (%1, %%REGa))\
  76. "add $8, %%"REG_a" \n\t"\
  77. "cmp %2, %%"REG_a" \n\t"\
  78. "movq "VROUNDER_OFFSET"(%0), %%mm3 \n\t"\
  79. "movq %%mm3, %%mm4 \n\t"\
  80. "lea " offset "(%0), %%"REG_d" \n\t"\
  81. "mov (%%"REG_d"), %%"REG_S" \n\t"\
  82. "jb 1b \n\t"\
  83. :: "r" (&c->redDither),\
  84. "r" (dest), "g" (width)\
  85. : "%"REG_a, "%"REG_d, "%"REG_S\
  86. );
  87. #define YSCALEYUV2YV12X_ACCURATE(x, offset, dest, width) \
  88. __asm__ volatile(\
  89. "lea " offset "(%0), %%"REG_d" \n\t"\
  90. "xor %%"REG_a", %%"REG_a" \n\t"\
  91. "pxor %%mm4, %%mm4 \n\t"\
  92. "pxor %%mm5, %%mm5 \n\t"\
  93. "pxor %%mm6, %%mm6 \n\t"\
  94. "pxor %%mm7, %%mm7 \n\t"\
  95. "mov (%%"REG_d"), %%"REG_S" \n\t"\
  96. ASMALIGN(4) \
  97. "1: \n\t"\
  98. "movq " x "(%%"REG_S", %%"REG_a", 2), %%mm0 \n\t" /* srcData */\
  99. "movq 8+" x "(%%"REG_S", %%"REG_a", 2), %%mm2 \n\t" /* srcData */\
  100. "mov "STR(APCK_PTR2)"(%%"REG_d"), %%"REG_S" \n\t"\
  101. "movq " x "(%%"REG_S", %%"REG_a", 2), %%mm1 \n\t" /* srcData */\
  102. "movq %%mm0, %%mm3 \n\t"\
  103. "punpcklwd %%mm1, %%mm0 \n\t"\
  104. "punpckhwd %%mm1, %%mm3 \n\t"\
  105. "movq "STR(APCK_COEF)"(%%"REG_d"), %%mm1 \n\t" /* filterCoeff */\
  106. "pmaddwd %%mm1, %%mm0 \n\t"\
  107. "pmaddwd %%mm1, %%mm3 \n\t"\
  108. "paddd %%mm0, %%mm4 \n\t"\
  109. "paddd %%mm3, %%mm5 \n\t"\
  110. "movq 8+" x "(%%"REG_S", %%"REG_a", 2), %%mm3 \n\t" /* srcData */\
  111. "mov "STR(APCK_SIZE)"(%%"REG_d"), %%"REG_S" \n\t"\
  112. "add $"STR(APCK_SIZE)", %%"REG_d" \n\t"\
  113. "test %%"REG_S", %%"REG_S" \n\t"\
  114. "movq %%mm2, %%mm0 \n\t"\
  115. "punpcklwd %%mm3, %%mm2 \n\t"\
  116. "punpckhwd %%mm3, %%mm0 \n\t"\
  117. "pmaddwd %%mm1, %%mm2 \n\t"\
  118. "pmaddwd %%mm1, %%mm0 \n\t"\
  119. "paddd %%mm2, %%mm6 \n\t"\
  120. "paddd %%mm0, %%mm7 \n\t"\
  121. " jnz 1b \n\t"\
  122. "psrad $16, %%mm4 \n\t"\
  123. "psrad $16, %%mm5 \n\t"\
  124. "psrad $16, %%mm6 \n\t"\
  125. "psrad $16, %%mm7 \n\t"\
  126. "movq "VROUNDER_OFFSET"(%0), %%mm0 \n\t"\
  127. "packssdw %%mm5, %%mm4 \n\t"\
  128. "packssdw %%mm7, %%mm6 \n\t"\
  129. "paddw %%mm0, %%mm4 \n\t"\
  130. "paddw %%mm0, %%mm6 \n\t"\
  131. "psraw $3, %%mm4 \n\t"\
  132. "psraw $3, %%mm6 \n\t"\
  133. "packuswb %%mm6, %%mm4 \n\t"\
  134. MOVNTQ(%%mm4, (%1, %%REGa))\
  135. "add $8, %%"REG_a" \n\t"\
  136. "cmp %2, %%"REG_a" \n\t"\
  137. "lea " offset "(%0), %%"REG_d" \n\t"\
  138. "pxor %%mm4, %%mm4 \n\t"\
  139. "pxor %%mm5, %%mm5 \n\t"\
  140. "pxor %%mm6, %%mm6 \n\t"\
  141. "pxor %%mm7, %%mm7 \n\t"\
  142. "mov (%%"REG_d"), %%"REG_S" \n\t"\
  143. "jb 1b \n\t"\
  144. :: "r" (&c->redDither),\
  145. "r" (dest), "g" (width)\
  146. : "%"REG_a, "%"REG_d, "%"REG_S\
  147. );
  148. #define YSCALEYUV2YV121 \
  149. "mov %2, %%"REG_a" \n\t"\
  150. ASMALIGN(4) /* FIXME Unroll? */\
  151. "1: \n\t"\
  152. "movq (%0, %%"REG_a", 2), %%mm0 \n\t"\
  153. "movq 8(%0, %%"REG_a", 2), %%mm1 \n\t"\
  154. "psraw $7, %%mm0 \n\t"\
  155. "psraw $7, %%mm1 \n\t"\
  156. "packuswb %%mm1, %%mm0 \n\t"\
  157. MOVNTQ(%%mm0, (%1, %%REGa))\
  158. "add $8, %%"REG_a" \n\t"\
  159. "jnc 1b \n\t"
  160. #define YSCALEYUV2YV121_ACCURATE \
  161. "mov %2, %%"REG_a" \n\t"\
  162. "pcmpeqw %%mm7, %%mm7 \n\t"\
  163. "psrlw $15, %%mm7 \n\t"\
  164. "psllw $6, %%mm7 \n\t"\
  165. ASMALIGN(4) /* FIXME Unroll? */\
  166. "1: \n\t"\
  167. "movq (%0, %%"REG_a", 2), %%mm0 \n\t"\
  168. "movq 8(%0, %%"REG_a", 2), %%mm1 \n\t"\
  169. "paddsw %%mm7, %%mm0 \n\t"\
  170. "paddsw %%mm7, %%mm1 \n\t"\
  171. "psraw $7, %%mm0 \n\t"\
  172. "psraw $7, %%mm1 \n\t"\
  173. "packuswb %%mm1, %%mm0 \n\t"\
  174. MOVNTQ(%%mm0, (%1, %%REGa))\
  175. "add $8, %%"REG_a" \n\t"\
  176. "jnc 1b \n\t"
  177. /*
  178. :: "m" (-lumFilterSize), "m" (-chrFilterSize),
  179. "m" (lumMmxFilter+lumFilterSize*4), "m" (chrMmxFilter+chrFilterSize*4),
  180. "r" (dest), "m" (dstW),
  181. "m" (lumSrc+lumFilterSize), "m" (chrSrc+chrFilterSize)
  182. : "%eax", "%ebx", "%ecx", "%edx", "%esi"
  183. */
  184. #define YSCALEYUV2PACKEDX_UV \
  185. __asm__ volatile(\
  186. "xor %%"REG_a", %%"REG_a" \n\t"\
  187. ASMALIGN(4)\
  188. "nop \n\t"\
  189. "1: \n\t"\
  190. "lea "CHR_MMX_FILTER_OFFSET"(%0), %%"REG_d" \n\t"\
  191. "mov (%%"REG_d"), %%"REG_S" \n\t"\
  192. "movq "VROUNDER_OFFSET"(%0), %%mm3 \n\t"\
  193. "movq %%mm3, %%mm4 \n\t"\
  194. ASMALIGN(4)\
  195. "2: \n\t"\
  196. "movq 8(%%"REG_d"), %%mm0 \n\t" /* filterCoeff */\
  197. "movq (%%"REG_S", %%"REG_a"), %%mm2 \n\t" /* UsrcData */\
  198. "movq "AV_STRINGIFY(VOF)"(%%"REG_S", %%"REG_a"), %%mm5 \n\t" /* VsrcData */\
  199. "add $16, %%"REG_d" \n\t"\
  200. "mov (%%"REG_d"), %%"REG_S" \n\t"\
  201. "pmulhw %%mm0, %%mm2 \n\t"\
  202. "pmulhw %%mm0, %%mm5 \n\t"\
  203. "paddw %%mm2, %%mm3 \n\t"\
  204. "paddw %%mm5, %%mm4 \n\t"\
  205. "test %%"REG_S", %%"REG_S" \n\t"\
  206. " jnz 2b \n\t"\
  207. #define YSCALEYUV2PACKEDX_YA(offset,coeff,src1,src2,dst1,dst2) \
  208. "lea "offset"(%0), %%"REG_d" \n\t"\
  209. "mov (%%"REG_d"), %%"REG_S" \n\t"\
  210. "movq "VROUNDER_OFFSET"(%0), "#dst1" \n\t"\
  211. "movq "#dst1", "#dst2" \n\t"\
  212. ASMALIGN(4)\
  213. "2: \n\t"\
  214. "movq 8(%%"REG_d"), "#coeff" \n\t" /* filterCoeff */\
  215. "movq (%%"REG_S", %%"REG_a", 2), "#src1" \n\t" /* Y1srcData */\
  216. "movq 8(%%"REG_S", %%"REG_a", 2), "#src2" \n\t" /* Y2srcData */\
  217. "add $16, %%"REG_d" \n\t"\
  218. "mov (%%"REG_d"), %%"REG_S" \n\t"\
  219. "pmulhw "#coeff", "#src1" \n\t"\
  220. "pmulhw "#coeff", "#src2" \n\t"\
  221. "paddw "#src1", "#dst1" \n\t"\
  222. "paddw "#src2", "#dst2" \n\t"\
  223. "test %%"REG_S", %%"REG_S" \n\t"\
  224. " jnz 2b \n\t"\
  225. #define YSCALEYUV2PACKEDX \
  226. YSCALEYUV2PACKEDX_UV \
  227. YSCALEYUV2PACKEDX_YA(LUM_MMX_FILTER_OFFSET,%%mm0,%%mm2,%%mm5,%%mm1,%%mm7) \
  228. #define YSCALEYUV2PACKEDX_END \
  229. :: "r" (&c->redDither), \
  230. "m" (dummy), "m" (dummy), "m" (dummy),\
  231. "r" (dest), "m" (dstW) \
  232. : "%"REG_a, "%"REG_d, "%"REG_S \
  233. );
  234. #define YSCALEYUV2PACKEDX_ACCURATE_UV \
  235. __asm__ volatile(\
  236. "xor %%"REG_a", %%"REG_a" \n\t"\
  237. ASMALIGN(4)\
  238. "nop \n\t"\
  239. "1: \n\t"\
  240. "lea "CHR_MMX_FILTER_OFFSET"(%0), %%"REG_d" \n\t"\
  241. "mov (%%"REG_d"), %%"REG_S" \n\t"\
  242. "pxor %%mm4, %%mm4 \n\t"\
  243. "pxor %%mm5, %%mm5 \n\t"\
  244. "pxor %%mm6, %%mm6 \n\t"\
  245. "pxor %%mm7, %%mm7 \n\t"\
  246. ASMALIGN(4)\
  247. "2: \n\t"\
  248. "movq (%%"REG_S", %%"REG_a"), %%mm0 \n\t" /* UsrcData */\
  249. "movq "AV_STRINGIFY(VOF)"(%%"REG_S", %%"REG_a"), %%mm2 \n\t" /* VsrcData */\
  250. "mov "STR(APCK_PTR2)"(%%"REG_d"), %%"REG_S" \n\t"\
  251. "movq (%%"REG_S", %%"REG_a"), %%mm1 \n\t" /* UsrcData */\
  252. "movq %%mm0, %%mm3 \n\t"\
  253. "punpcklwd %%mm1, %%mm0 \n\t"\
  254. "punpckhwd %%mm1, %%mm3 \n\t"\
  255. "movq "STR(APCK_COEF)"(%%"REG_d"),%%mm1 \n\t" /* filterCoeff */\
  256. "pmaddwd %%mm1, %%mm0 \n\t"\
  257. "pmaddwd %%mm1, %%mm3 \n\t"\
  258. "paddd %%mm0, %%mm4 \n\t"\
  259. "paddd %%mm3, %%mm5 \n\t"\
  260. "movq "AV_STRINGIFY(VOF)"(%%"REG_S", %%"REG_a"), %%mm3 \n\t" /* VsrcData */\
  261. "mov "STR(APCK_SIZE)"(%%"REG_d"), %%"REG_S" \n\t"\
  262. "add $"STR(APCK_SIZE)", %%"REG_d" \n\t"\
  263. "test %%"REG_S", %%"REG_S" \n\t"\
  264. "movq %%mm2, %%mm0 \n\t"\
  265. "punpcklwd %%mm3, %%mm2 \n\t"\
  266. "punpckhwd %%mm3, %%mm0 \n\t"\
  267. "pmaddwd %%mm1, %%mm2 \n\t"\
  268. "pmaddwd %%mm1, %%mm0 \n\t"\
  269. "paddd %%mm2, %%mm6 \n\t"\
  270. "paddd %%mm0, %%mm7 \n\t"\
  271. " jnz 2b \n\t"\
  272. "psrad $16, %%mm4 \n\t"\
  273. "psrad $16, %%mm5 \n\t"\
  274. "psrad $16, %%mm6 \n\t"\
  275. "psrad $16, %%mm7 \n\t"\
  276. "movq "VROUNDER_OFFSET"(%0), %%mm0 \n\t"\
  277. "packssdw %%mm5, %%mm4 \n\t"\
  278. "packssdw %%mm7, %%mm6 \n\t"\
  279. "paddw %%mm0, %%mm4 \n\t"\
  280. "paddw %%mm0, %%mm6 \n\t"\
  281. "movq %%mm4, "U_TEMP"(%0) \n\t"\
  282. "movq %%mm6, "V_TEMP"(%0) \n\t"\
  283. #define YSCALEYUV2PACKEDX_ACCURATE_YA(offset) \
  284. "lea "offset"(%0), %%"REG_d" \n\t"\
  285. "mov (%%"REG_d"), %%"REG_S" \n\t"\
  286. "pxor %%mm1, %%mm1 \n\t"\
  287. "pxor %%mm5, %%mm5 \n\t"\
  288. "pxor %%mm7, %%mm7 \n\t"\
  289. "pxor %%mm6, %%mm6 \n\t"\
  290. ASMALIGN(4)\
  291. "2: \n\t"\
  292. "movq (%%"REG_S", %%"REG_a", 2), %%mm0 \n\t" /* Y1srcData */\
  293. "movq 8(%%"REG_S", %%"REG_a", 2), %%mm2 \n\t" /* Y2srcData */\
  294. "mov "STR(APCK_PTR2)"(%%"REG_d"), %%"REG_S" \n\t"\
  295. "movq (%%"REG_S", %%"REG_a", 2), %%mm4 \n\t" /* Y1srcData */\
  296. "movq %%mm0, %%mm3 \n\t"\
  297. "punpcklwd %%mm4, %%mm0 \n\t"\
  298. "punpckhwd %%mm4, %%mm3 \n\t"\
  299. "movq "STR(APCK_COEF)"(%%"REG_d"), %%mm4 \n\t" /* filterCoeff */\
  300. "pmaddwd %%mm4, %%mm0 \n\t"\
  301. "pmaddwd %%mm4, %%mm3 \n\t"\
  302. "paddd %%mm0, %%mm1 \n\t"\
  303. "paddd %%mm3, %%mm5 \n\t"\
  304. "movq 8(%%"REG_S", %%"REG_a", 2), %%mm3 \n\t" /* Y2srcData */\
  305. "mov "STR(APCK_SIZE)"(%%"REG_d"), %%"REG_S" \n\t"\
  306. "add $"STR(APCK_SIZE)", %%"REG_d" \n\t"\
  307. "test %%"REG_S", %%"REG_S" \n\t"\
  308. "movq %%mm2, %%mm0 \n\t"\
  309. "punpcklwd %%mm3, %%mm2 \n\t"\
  310. "punpckhwd %%mm3, %%mm0 \n\t"\
  311. "pmaddwd %%mm4, %%mm2 \n\t"\
  312. "pmaddwd %%mm4, %%mm0 \n\t"\
  313. "paddd %%mm2, %%mm7 \n\t"\
  314. "paddd %%mm0, %%mm6 \n\t"\
  315. " jnz 2b \n\t"\
  316. "psrad $16, %%mm1 \n\t"\
  317. "psrad $16, %%mm5 \n\t"\
  318. "psrad $16, %%mm7 \n\t"\
  319. "psrad $16, %%mm6 \n\t"\
  320. "movq "VROUNDER_OFFSET"(%0), %%mm0 \n\t"\
  321. "packssdw %%mm5, %%mm1 \n\t"\
  322. "packssdw %%mm6, %%mm7 \n\t"\
  323. "paddw %%mm0, %%mm1 \n\t"\
  324. "paddw %%mm0, %%mm7 \n\t"\
  325. "movq "U_TEMP"(%0), %%mm3 \n\t"\
  326. "movq "V_TEMP"(%0), %%mm4 \n\t"\
  327. #define YSCALEYUV2PACKEDX_ACCURATE \
  328. YSCALEYUV2PACKEDX_ACCURATE_UV \
  329. YSCALEYUV2PACKEDX_ACCURATE_YA(LUM_MMX_FILTER_OFFSET)
  330. #define YSCALEYUV2RGBX \
  331. "psubw "U_OFFSET"(%0), %%mm3 \n\t" /* (U-128)8*/\
  332. "psubw "V_OFFSET"(%0), %%mm4 \n\t" /* (V-128)8*/\
  333. "movq %%mm3, %%mm2 \n\t" /* (U-128)8*/\
  334. "movq %%mm4, %%mm5 \n\t" /* (V-128)8*/\
  335. "pmulhw "UG_COEFF"(%0), %%mm3 \n\t"\
  336. "pmulhw "VG_COEFF"(%0), %%mm4 \n\t"\
  337. /* mm2=(U-128)8, mm3=ug, mm4=vg mm5=(V-128)8 */\
  338. "pmulhw "UB_COEFF"(%0), %%mm2 \n\t"\
  339. "pmulhw "VR_COEFF"(%0), %%mm5 \n\t"\
  340. "psubw "Y_OFFSET"(%0), %%mm1 \n\t" /* 8(Y-16)*/\
  341. "psubw "Y_OFFSET"(%0), %%mm7 \n\t" /* 8(Y-16)*/\
  342. "pmulhw "Y_COEFF"(%0), %%mm1 \n\t"\
  343. "pmulhw "Y_COEFF"(%0), %%mm7 \n\t"\
  344. /* mm1= Y1, mm2=ub, mm3=ug, mm4=vg mm5=vr, mm7=Y2 */\
  345. "paddw %%mm3, %%mm4 \n\t"\
  346. "movq %%mm2, %%mm0 \n\t"\
  347. "movq %%mm5, %%mm6 \n\t"\
  348. "movq %%mm4, %%mm3 \n\t"\
  349. "punpcklwd %%mm2, %%mm2 \n\t"\
  350. "punpcklwd %%mm5, %%mm5 \n\t"\
  351. "punpcklwd %%mm4, %%mm4 \n\t"\
  352. "paddw %%mm1, %%mm2 \n\t"\
  353. "paddw %%mm1, %%mm5 \n\t"\
  354. "paddw %%mm1, %%mm4 \n\t"\
  355. "punpckhwd %%mm0, %%mm0 \n\t"\
  356. "punpckhwd %%mm6, %%mm6 \n\t"\
  357. "punpckhwd %%mm3, %%mm3 \n\t"\
  358. "paddw %%mm7, %%mm0 \n\t"\
  359. "paddw %%mm7, %%mm6 \n\t"\
  360. "paddw %%mm7, %%mm3 \n\t"\
  361. /* mm0=B1, mm2=B2, mm3=G2, mm4=G1, mm5=R1, mm6=R2 */\
  362. "packuswb %%mm0, %%mm2 \n\t"\
  363. "packuswb %%mm6, %%mm5 \n\t"\
  364. "packuswb %%mm3, %%mm4 \n\t"\
  365. #define REAL_YSCALEYUV2PACKED(index, c) \
  366. "movq "CHR_MMX_FILTER_OFFSET"+8("#c"), %%mm0 \n\t"\
  367. "movq "LUM_MMX_FILTER_OFFSET"+8("#c"), %%mm1 \n\t"\
  368. "psraw $3, %%mm0 \n\t"\
  369. "psraw $3, %%mm1 \n\t"\
  370. "movq %%mm0, "CHR_MMX_FILTER_OFFSET"+8("#c") \n\t"\
  371. "movq %%mm1, "LUM_MMX_FILTER_OFFSET"+8("#c") \n\t"\
  372. "xor "#index", "#index" \n\t"\
  373. ASMALIGN(4)\
  374. "1: \n\t"\
  375. "movq (%2, "#index"), %%mm2 \n\t" /* uvbuf0[eax]*/\
  376. "movq (%3, "#index"), %%mm3 \n\t" /* uvbuf1[eax]*/\
  377. "movq "AV_STRINGIFY(VOF)"(%2, "#index"), %%mm5 \n\t" /* uvbuf0[eax+2048]*/\
  378. "movq "AV_STRINGIFY(VOF)"(%3, "#index"), %%mm4 \n\t" /* uvbuf1[eax+2048]*/\
  379. "psubw %%mm3, %%mm2 \n\t" /* uvbuf0[eax] - uvbuf1[eax]*/\
  380. "psubw %%mm4, %%mm5 \n\t" /* uvbuf0[eax+2048] - uvbuf1[eax+2048]*/\
  381. "movq "CHR_MMX_FILTER_OFFSET"+8("#c"), %%mm0 \n\t"\
  382. "pmulhw %%mm0, %%mm2 \n\t" /* (uvbuf0[eax] - uvbuf1[eax])uvalpha1>>16*/\
  383. "pmulhw %%mm0, %%mm5 \n\t" /* (uvbuf0[eax+2048] - uvbuf1[eax+2048])uvalpha1>>16*/\
  384. "psraw $7, %%mm3 \n\t" /* uvbuf0[eax] - uvbuf1[eax] >>4*/\
  385. "psraw $7, %%mm4 \n\t" /* uvbuf0[eax+2048] - uvbuf1[eax+2048] >>4*/\
  386. "paddw %%mm2, %%mm3 \n\t" /* uvbuf0[eax]uvalpha1 - uvbuf1[eax](1-uvalpha1)*/\
  387. "paddw %%mm5, %%mm4 \n\t" /* uvbuf0[eax+2048]uvalpha1 - uvbuf1[eax+2048](1-uvalpha1)*/\
  388. "movq (%0, "#index", 2), %%mm0 \n\t" /*buf0[eax]*/\
  389. "movq (%1, "#index", 2), %%mm1 \n\t" /*buf1[eax]*/\
  390. "movq 8(%0, "#index", 2), %%mm6 \n\t" /*buf0[eax]*/\
  391. "movq 8(%1, "#index", 2), %%mm7 \n\t" /*buf1[eax]*/\
  392. "psubw %%mm1, %%mm0 \n\t" /* buf0[eax] - buf1[eax]*/\
  393. "psubw %%mm7, %%mm6 \n\t" /* buf0[eax] - buf1[eax]*/\
  394. "pmulhw "LUM_MMX_FILTER_OFFSET"+8("#c"), %%mm0 \n\t" /* (buf0[eax] - buf1[eax])yalpha1>>16*/\
  395. "pmulhw "LUM_MMX_FILTER_OFFSET"+8("#c"), %%mm6 \n\t" /* (buf0[eax] - buf1[eax])yalpha1>>16*/\
  396. "psraw $7, %%mm1 \n\t" /* buf0[eax] - buf1[eax] >>4*/\
  397. "psraw $7, %%mm7 \n\t" /* buf0[eax] - buf1[eax] >>4*/\
  398. "paddw %%mm0, %%mm1 \n\t" /* buf0[eax]yalpha1 + buf1[eax](1-yalpha1) >>16*/\
  399. "paddw %%mm6, %%mm7 \n\t" /* buf0[eax]yalpha1 + buf1[eax](1-yalpha1) >>16*/\
  400. #define YSCALEYUV2PACKED(index, c) REAL_YSCALEYUV2PACKED(index, c)
  401. #define REAL_YSCALEYUV2RGB_UV(index, c) \
  402. "xor "#index", "#index" \n\t"\
  403. ASMALIGN(4)\
  404. "1: \n\t"\
  405. "movq (%2, "#index"), %%mm2 \n\t" /* uvbuf0[eax]*/\
  406. "movq (%3, "#index"), %%mm3 \n\t" /* uvbuf1[eax]*/\
  407. "movq "AV_STRINGIFY(VOF)"(%2, "#index"), %%mm5 \n\t" /* uvbuf0[eax+2048]*/\
  408. "movq "AV_STRINGIFY(VOF)"(%3, "#index"), %%mm4 \n\t" /* uvbuf1[eax+2048]*/\
  409. "psubw %%mm3, %%mm2 \n\t" /* uvbuf0[eax] - uvbuf1[eax]*/\
  410. "psubw %%mm4, %%mm5 \n\t" /* uvbuf0[eax+2048] - uvbuf1[eax+2048]*/\
  411. "movq "CHR_MMX_FILTER_OFFSET"+8("#c"), %%mm0 \n\t"\
  412. "pmulhw %%mm0, %%mm2 \n\t" /* (uvbuf0[eax] - uvbuf1[eax])uvalpha1>>16*/\
  413. "pmulhw %%mm0, %%mm5 \n\t" /* (uvbuf0[eax+2048] - uvbuf1[eax+2048])uvalpha1>>16*/\
  414. "psraw $4, %%mm3 \n\t" /* uvbuf0[eax] - uvbuf1[eax] >>4*/\
  415. "psraw $4, %%mm4 \n\t" /* uvbuf0[eax+2048] - uvbuf1[eax+2048] >>4*/\
  416. "paddw %%mm2, %%mm3 \n\t" /* uvbuf0[eax]uvalpha1 - uvbuf1[eax](1-uvalpha1)*/\
  417. "paddw %%mm5, %%mm4 \n\t" /* uvbuf0[eax+2048]uvalpha1 - uvbuf1[eax+2048](1-uvalpha1)*/\
  418. "psubw "U_OFFSET"("#c"), %%mm3 \n\t" /* (U-128)8*/\
  419. "psubw "V_OFFSET"("#c"), %%mm4 \n\t" /* (V-128)8*/\
  420. "movq %%mm3, %%mm2 \n\t" /* (U-128)8*/\
  421. "movq %%mm4, %%mm5 \n\t" /* (V-128)8*/\
  422. "pmulhw "UG_COEFF"("#c"), %%mm3 \n\t"\
  423. "pmulhw "VG_COEFF"("#c"), %%mm4 \n\t"\
  424. /* mm2=(U-128)8, mm3=ug, mm4=vg mm5=(V-128)8 */\
  425. #define REAL_YSCALEYUV2RGB_YA(index, c, b1, b2) \
  426. "movq ("#b1", "#index", 2), %%mm0 \n\t" /*buf0[eax]*/\
  427. "movq ("#b2", "#index", 2), %%mm1 \n\t" /*buf1[eax]*/\
  428. "movq 8("#b1", "#index", 2), %%mm6 \n\t" /*buf0[eax]*/\
  429. "movq 8("#b2", "#index", 2), %%mm7 \n\t" /*buf1[eax]*/\
  430. "psubw %%mm1, %%mm0 \n\t" /* buf0[eax] - buf1[eax]*/\
  431. "psubw %%mm7, %%mm6 \n\t" /* buf0[eax] - buf1[eax]*/\
  432. "pmulhw "LUM_MMX_FILTER_OFFSET"+8("#c"), %%mm0 \n\t" /* (buf0[eax] - buf1[eax])yalpha1>>16*/\
  433. "pmulhw "LUM_MMX_FILTER_OFFSET"+8("#c"), %%mm6 \n\t" /* (buf0[eax] - buf1[eax])yalpha1>>16*/\
  434. "psraw $4, %%mm1 \n\t" /* buf0[eax] - buf1[eax] >>4*/\
  435. "psraw $4, %%mm7 \n\t" /* buf0[eax] - buf1[eax] >>4*/\
  436. "paddw %%mm0, %%mm1 \n\t" /* buf0[eax]yalpha1 + buf1[eax](1-yalpha1) >>16*/\
  437. "paddw %%mm6, %%mm7 \n\t" /* buf0[eax]yalpha1 + buf1[eax](1-yalpha1) >>16*/\
  438. #define REAL_YSCALEYUV2RGB_COEFF(c) \
  439. "pmulhw "UB_COEFF"("#c"), %%mm2 \n\t"\
  440. "pmulhw "VR_COEFF"("#c"), %%mm5 \n\t"\
  441. "psubw "Y_OFFSET"("#c"), %%mm1 \n\t" /* 8(Y-16)*/\
  442. "psubw "Y_OFFSET"("#c"), %%mm7 \n\t" /* 8(Y-16)*/\
  443. "pmulhw "Y_COEFF"("#c"), %%mm1 \n\t"\
  444. "pmulhw "Y_COEFF"("#c"), %%mm7 \n\t"\
  445. /* mm1= Y1, mm2=ub, mm3=ug, mm4=vg mm5=vr, mm7=Y2 */\
  446. "paddw %%mm3, %%mm4 \n\t"\
  447. "movq %%mm2, %%mm0 \n\t"\
  448. "movq %%mm5, %%mm6 \n\t"\
  449. "movq %%mm4, %%mm3 \n\t"\
  450. "punpcklwd %%mm2, %%mm2 \n\t"\
  451. "punpcklwd %%mm5, %%mm5 \n\t"\
  452. "punpcklwd %%mm4, %%mm4 \n\t"\
  453. "paddw %%mm1, %%mm2 \n\t"\
  454. "paddw %%mm1, %%mm5 \n\t"\
  455. "paddw %%mm1, %%mm4 \n\t"\
  456. "punpckhwd %%mm0, %%mm0 \n\t"\
  457. "punpckhwd %%mm6, %%mm6 \n\t"\
  458. "punpckhwd %%mm3, %%mm3 \n\t"\
  459. "paddw %%mm7, %%mm0 \n\t"\
  460. "paddw %%mm7, %%mm6 \n\t"\
  461. "paddw %%mm7, %%mm3 \n\t"\
  462. /* mm0=B1, mm2=B2, mm3=G2, mm4=G1, mm5=R1, mm6=R2 */\
  463. "packuswb %%mm0, %%mm2 \n\t"\
  464. "packuswb %%mm6, %%mm5 \n\t"\
  465. "packuswb %%mm3, %%mm4 \n\t"\
  466. #define YSCALEYUV2RGB_YA(index, c, b1, b2) REAL_YSCALEYUV2RGB_YA(index, c, b1, b2)
  467. #define YSCALEYUV2RGB(index, c) \
  468. REAL_YSCALEYUV2RGB_UV(index, c) \
  469. REAL_YSCALEYUV2RGB_YA(index, c, %0, %1) \
  470. REAL_YSCALEYUV2RGB_COEFF(c)
  471. #define REAL_YSCALEYUV2PACKED1(index, c) \
  472. "xor "#index", "#index" \n\t"\
  473. ASMALIGN(4)\
  474. "1: \n\t"\
  475. "movq (%2, "#index"), %%mm3 \n\t" /* uvbuf0[eax]*/\
  476. "movq "AV_STRINGIFY(VOF)"(%2, "#index"), %%mm4 \n\t" /* uvbuf0[eax+2048]*/\
  477. "psraw $7, %%mm3 \n\t" \
  478. "psraw $7, %%mm4 \n\t" \
  479. "movq (%0, "#index", 2), %%mm1 \n\t" /*buf0[eax]*/\
  480. "movq 8(%0, "#index", 2), %%mm7 \n\t" /*buf0[eax]*/\
  481. "psraw $7, %%mm1 \n\t" \
  482. "psraw $7, %%mm7 \n\t" \
  483. #define YSCALEYUV2PACKED1(index, c) REAL_YSCALEYUV2PACKED1(index, c)
  484. #define REAL_YSCALEYUV2RGB1(index, c) \
  485. "xor "#index", "#index" \n\t"\
  486. ASMALIGN(4)\
  487. "1: \n\t"\
  488. "movq (%2, "#index"), %%mm3 \n\t" /* uvbuf0[eax]*/\
  489. "movq "AV_STRINGIFY(VOF)"(%2, "#index"), %%mm4 \n\t" /* uvbuf0[eax+2048]*/\
  490. "psraw $4, %%mm3 \n\t" /* uvbuf0[eax] - uvbuf1[eax] >>4*/\
  491. "psraw $4, %%mm4 \n\t" /* uvbuf0[eax+2048] - uvbuf1[eax+2048] >>4*/\
  492. "psubw "U_OFFSET"("#c"), %%mm3 \n\t" /* (U-128)8*/\
  493. "psubw "V_OFFSET"("#c"), %%mm4 \n\t" /* (V-128)8*/\
  494. "movq %%mm3, %%mm2 \n\t" /* (U-128)8*/\
  495. "movq %%mm4, %%mm5 \n\t" /* (V-128)8*/\
  496. "pmulhw "UG_COEFF"("#c"), %%mm3 \n\t"\
  497. "pmulhw "VG_COEFF"("#c"), %%mm4 \n\t"\
  498. /* mm2=(U-128)8, mm3=ug, mm4=vg mm5=(V-128)8 */\
  499. "movq (%0, "#index", 2), %%mm1 \n\t" /*buf0[eax]*/\
  500. "movq 8(%0, "#index", 2), %%mm7 \n\t" /*buf0[eax]*/\
  501. "psraw $4, %%mm1 \n\t" /* buf0[eax] - buf1[eax] >>4*/\
  502. "psraw $4, %%mm7 \n\t" /* buf0[eax] - buf1[eax] >>4*/\
  503. "pmulhw "UB_COEFF"("#c"), %%mm2 \n\t"\
  504. "pmulhw "VR_COEFF"("#c"), %%mm5 \n\t"\
  505. "psubw "Y_OFFSET"("#c"), %%mm1 \n\t" /* 8(Y-16)*/\
  506. "psubw "Y_OFFSET"("#c"), %%mm7 \n\t" /* 8(Y-16)*/\
  507. "pmulhw "Y_COEFF"("#c"), %%mm1 \n\t"\
  508. "pmulhw "Y_COEFF"("#c"), %%mm7 \n\t"\
  509. /* mm1= Y1, mm2=ub, mm3=ug, mm4=vg mm5=vr, mm7=Y2 */\
  510. "paddw %%mm3, %%mm4 \n\t"\
  511. "movq %%mm2, %%mm0 \n\t"\
  512. "movq %%mm5, %%mm6 \n\t"\
  513. "movq %%mm4, %%mm3 \n\t"\
  514. "punpcklwd %%mm2, %%mm2 \n\t"\
  515. "punpcklwd %%mm5, %%mm5 \n\t"\
  516. "punpcklwd %%mm4, %%mm4 \n\t"\
  517. "paddw %%mm1, %%mm2 \n\t"\
  518. "paddw %%mm1, %%mm5 \n\t"\
  519. "paddw %%mm1, %%mm4 \n\t"\
  520. "punpckhwd %%mm0, %%mm0 \n\t"\
  521. "punpckhwd %%mm6, %%mm6 \n\t"\
  522. "punpckhwd %%mm3, %%mm3 \n\t"\
  523. "paddw %%mm7, %%mm0 \n\t"\
  524. "paddw %%mm7, %%mm6 \n\t"\
  525. "paddw %%mm7, %%mm3 \n\t"\
  526. /* mm0=B1, mm2=B2, mm3=G2, mm4=G1, mm5=R1, mm6=R2 */\
  527. "packuswb %%mm0, %%mm2 \n\t"\
  528. "packuswb %%mm6, %%mm5 \n\t"\
  529. "packuswb %%mm3, %%mm4 \n\t"\
  530. #define YSCALEYUV2RGB1(index, c) REAL_YSCALEYUV2RGB1(index, c)
  531. #define REAL_YSCALEYUV2PACKED1b(index, c) \
  532. "xor "#index", "#index" \n\t"\
  533. ASMALIGN(4)\
  534. "1: \n\t"\
  535. "movq (%2, "#index"), %%mm2 \n\t" /* uvbuf0[eax]*/\
  536. "movq (%3, "#index"), %%mm3 \n\t" /* uvbuf1[eax]*/\
  537. "movq "AV_STRINGIFY(VOF)"(%2, "#index"), %%mm5 \n\t" /* uvbuf0[eax+2048]*/\
  538. "movq "AV_STRINGIFY(VOF)"(%3, "#index"), %%mm4 \n\t" /* uvbuf1[eax+2048]*/\
  539. "paddw %%mm2, %%mm3 \n\t" /* uvbuf0[eax] + uvbuf1[eax]*/\
  540. "paddw %%mm5, %%mm4 \n\t" /* uvbuf0[eax+2048] + uvbuf1[eax+2048]*/\
  541. "psrlw $8, %%mm3 \n\t" \
  542. "psrlw $8, %%mm4 \n\t" \
  543. "movq (%0, "#index", 2), %%mm1 \n\t" /*buf0[eax]*/\
  544. "movq 8(%0, "#index", 2), %%mm7 \n\t" /*buf0[eax]*/\
  545. "psraw $7, %%mm1 \n\t" \
  546. "psraw $7, %%mm7 \n\t"
  547. #define YSCALEYUV2PACKED1b(index, c) REAL_YSCALEYUV2PACKED1b(index, c)
  548. // do vertical chrominance interpolation
  549. #define REAL_YSCALEYUV2RGB1b(index, c) \
  550. "xor "#index", "#index" \n\t"\
  551. ASMALIGN(4)\
  552. "1: \n\t"\
  553. "movq (%2, "#index"), %%mm2 \n\t" /* uvbuf0[eax]*/\
  554. "movq (%3, "#index"), %%mm3 \n\t" /* uvbuf1[eax]*/\
  555. "movq "AV_STRINGIFY(VOF)"(%2, "#index"), %%mm5 \n\t" /* uvbuf0[eax+2048]*/\
  556. "movq "AV_STRINGIFY(VOF)"(%3, "#index"), %%mm4 \n\t" /* uvbuf1[eax+2048]*/\
  557. "paddw %%mm2, %%mm3 \n\t" /* uvbuf0[eax] + uvbuf1[eax]*/\
  558. "paddw %%mm5, %%mm4 \n\t" /* uvbuf0[eax+2048] + uvbuf1[eax+2048]*/\
  559. "psrlw $5, %%mm3 \n\t" /*FIXME might overflow*/\
  560. "psrlw $5, %%mm4 \n\t" /*FIXME might overflow*/\
  561. "psubw "U_OFFSET"("#c"), %%mm3 \n\t" /* (U-128)8*/\
  562. "psubw "V_OFFSET"("#c"), %%mm4 \n\t" /* (V-128)8*/\
  563. "movq %%mm3, %%mm2 \n\t" /* (U-128)8*/\
  564. "movq %%mm4, %%mm5 \n\t" /* (V-128)8*/\
  565. "pmulhw "UG_COEFF"("#c"), %%mm3 \n\t"\
  566. "pmulhw "VG_COEFF"("#c"), %%mm4 \n\t"\
  567. /* mm2=(U-128)8, mm3=ug, mm4=vg mm5=(V-128)8 */\
  568. "movq (%0, "#index", 2), %%mm1 \n\t" /*buf0[eax]*/\
  569. "movq 8(%0, "#index", 2), %%mm7 \n\t" /*buf0[eax]*/\
  570. "psraw $4, %%mm1 \n\t" /* buf0[eax] - buf1[eax] >>4*/\
  571. "psraw $4, %%mm7 \n\t" /* buf0[eax] - buf1[eax] >>4*/\
  572. "pmulhw "UB_COEFF"("#c"), %%mm2 \n\t"\
  573. "pmulhw "VR_COEFF"("#c"), %%mm5 \n\t"\
  574. "psubw "Y_OFFSET"("#c"), %%mm1 \n\t" /* 8(Y-16)*/\
  575. "psubw "Y_OFFSET"("#c"), %%mm7 \n\t" /* 8(Y-16)*/\
  576. "pmulhw "Y_COEFF"("#c"), %%mm1 \n\t"\
  577. "pmulhw "Y_COEFF"("#c"), %%mm7 \n\t"\
  578. /* mm1= Y1, mm2=ub, mm3=ug, mm4=vg mm5=vr, mm7=Y2 */\
  579. "paddw %%mm3, %%mm4 \n\t"\
  580. "movq %%mm2, %%mm0 \n\t"\
  581. "movq %%mm5, %%mm6 \n\t"\
  582. "movq %%mm4, %%mm3 \n\t"\
  583. "punpcklwd %%mm2, %%mm2 \n\t"\
  584. "punpcklwd %%mm5, %%mm5 \n\t"\
  585. "punpcklwd %%mm4, %%mm4 \n\t"\
  586. "paddw %%mm1, %%mm2 \n\t"\
  587. "paddw %%mm1, %%mm5 \n\t"\
  588. "paddw %%mm1, %%mm4 \n\t"\
  589. "punpckhwd %%mm0, %%mm0 \n\t"\
  590. "punpckhwd %%mm6, %%mm6 \n\t"\
  591. "punpckhwd %%mm3, %%mm3 \n\t"\
  592. "paddw %%mm7, %%mm0 \n\t"\
  593. "paddw %%mm7, %%mm6 \n\t"\
  594. "paddw %%mm7, %%mm3 \n\t"\
  595. /* mm0=B1, mm2=B2, mm3=G2, mm4=G1, mm5=R1, mm6=R2 */\
  596. "packuswb %%mm0, %%mm2 \n\t"\
  597. "packuswb %%mm6, %%mm5 \n\t"\
  598. "packuswb %%mm3, %%mm4 \n\t"\
  599. #define YSCALEYUV2RGB1b(index, c) REAL_YSCALEYUV2RGB1b(index, c)
  600. #define REAL_YSCALEYUV2RGB1_ALPHA(index) \
  601. "movq (%1, "#index", 2), %%mm7 \n\t" /* abuf0[index ] */\
  602. "movq 8(%1, "#index", 2), %%mm1 \n\t" /* abuf0[index+4] */\
  603. "psraw $7, %%mm7 \n\t" /* abuf0[index ] >>7 */\
  604. "psraw $7, %%mm1 \n\t" /* abuf0[index+4] >>7 */\
  605. "packuswb %%mm1, %%mm7 \n\t"
  606. #define YSCALEYUV2RGB1_ALPHA(index) REAL_YSCALEYUV2RGB1_ALPHA(index)
  607. #define REAL_WRITEBGR32(dst, dstw, index, b, g, r, a, q0, q2, q3, t) \
  608. "movq "#b", "#q2" \n\t" /* B */\
  609. "movq "#r", "#t" \n\t" /* R */\
  610. "punpcklbw "#g", "#b" \n\t" /* GBGBGBGB 0 */\
  611. "punpcklbw "#a", "#r" \n\t" /* ARARARAR 0 */\
  612. "punpckhbw "#g", "#q2" \n\t" /* GBGBGBGB 2 */\
  613. "punpckhbw "#a", "#t" \n\t" /* ARARARAR 2 */\
  614. "movq "#b", "#q0" \n\t" /* GBGBGBGB 0 */\
  615. "movq "#q2", "#q3" \n\t" /* GBGBGBGB 2 */\
  616. "punpcklwd "#r", "#q0" \n\t" /* ARGBARGB 0 */\
  617. "punpckhwd "#r", "#b" \n\t" /* ARGBARGB 1 */\
  618. "punpcklwd "#t", "#q2" \n\t" /* ARGBARGB 2 */\
  619. "punpckhwd "#t", "#q3" \n\t" /* ARGBARGB 3 */\
  620. \
  621. MOVNTQ( q0, (dst, index, 4))\
  622. MOVNTQ( b, 8(dst, index, 4))\
  623. MOVNTQ( q2, 16(dst, index, 4))\
  624. MOVNTQ( q3, 24(dst, index, 4))\
  625. \
  626. "add $8, "#index" \n\t"\
  627. "cmp "#dstw", "#index" \n\t"\
  628. " jb 1b \n\t"
  629. #define WRITEBGR32(dst, dstw, index, b, g, r, a, q0, q2, q3, t) REAL_WRITEBGR32(dst, dstw, index, b, g, r, a, q0, q2, q3, t)
  630. #define REAL_WRITERGB16(dst, dstw, index) \
  631. "pand "MANGLE(bF8)", %%mm2 \n\t" /* B */\
  632. "pand "MANGLE(bFC)", %%mm4 \n\t" /* G */\
  633. "pand "MANGLE(bF8)", %%mm5 \n\t" /* R */\
  634. "psrlq $3, %%mm2 \n\t"\
  635. \
  636. "movq %%mm2, %%mm1 \n\t"\
  637. "movq %%mm4, %%mm3 \n\t"\
  638. \
  639. "punpcklbw %%mm7, %%mm3 \n\t"\
  640. "punpcklbw %%mm5, %%mm2 \n\t"\
  641. "punpckhbw %%mm7, %%mm4 \n\t"\
  642. "punpckhbw %%mm5, %%mm1 \n\t"\
  643. \
  644. "psllq $3, %%mm3 \n\t"\
  645. "psllq $3, %%mm4 \n\t"\
  646. \
  647. "por %%mm3, %%mm2 \n\t"\
  648. "por %%mm4, %%mm1 \n\t"\
  649. \
  650. MOVNTQ(%%mm2, (dst, index, 2))\
  651. MOVNTQ(%%mm1, 8(dst, index, 2))\
  652. \
  653. "add $8, "#index" \n\t"\
  654. "cmp "#dstw", "#index" \n\t"\
  655. " jb 1b \n\t"
  656. #define WRITERGB16(dst, dstw, index) REAL_WRITERGB16(dst, dstw, index)
  657. #define REAL_WRITERGB15(dst, dstw, index) \
  658. "pand "MANGLE(bF8)", %%mm2 \n\t" /* B */\
  659. "pand "MANGLE(bF8)", %%mm4 \n\t" /* G */\
  660. "pand "MANGLE(bF8)", %%mm5 \n\t" /* R */\
  661. "psrlq $3, %%mm2 \n\t"\
  662. "psrlq $1, %%mm5 \n\t"\
  663. \
  664. "movq %%mm2, %%mm1 \n\t"\
  665. "movq %%mm4, %%mm3 \n\t"\
  666. \
  667. "punpcklbw %%mm7, %%mm3 \n\t"\
  668. "punpcklbw %%mm5, %%mm2 \n\t"\
  669. "punpckhbw %%mm7, %%mm4 \n\t"\
  670. "punpckhbw %%mm5, %%mm1 \n\t"\
  671. \
  672. "psllq $2, %%mm3 \n\t"\
  673. "psllq $2, %%mm4 \n\t"\
  674. \
  675. "por %%mm3, %%mm2 \n\t"\
  676. "por %%mm4, %%mm1 \n\t"\
  677. \
  678. MOVNTQ(%%mm2, (dst, index, 2))\
  679. MOVNTQ(%%mm1, 8(dst, index, 2))\
  680. \
  681. "add $8, "#index" \n\t"\
  682. "cmp "#dstw", "#index" \n\t"\
  683. " jb 1b \n\t"
  684. #define WRITERGB15(dst, dstw, index) REAL_WRITERGB15(dst, dstw, index)
  685. #define WRITEBGR24OLD(dst, dstw, index) \
  686. /* mm2=B, %%mm4=G, %%mm5=R, %%mm7=0 */\
  687. "movq %%mm2, %%mm1 \n\t" /* B */\
  688. "movq %%mm5, %%mm6 \n\t" /* R */\
  689. "punpcklbw %%mm4, %%mm2 \n\t" /* GBGBGBGB 0 */\
  690. "punpcklbw %%mm7, %%mm5 \n\t" /* 0R0R0R0R 0 */\
  691. "punpckhbw %%mm4, %%mm1 \n\t" /* GBGBGBGB 2 */\
  692. "punpckhbw %%mm7, %%mm6 \n\t" /* 0R0R0R0R 2 */\
  693. "movq %%mm2, %%mm0 \n\t" /* GBGBGBGB 0 */\
  694. "movq %%mm1, %%mm3 \n\t" /* GBGBGBGB 2 */\
  695. "punpcklwd %%mm5, %%mm0 \n\t" /* 0RGB0RGB 0 */\
  696. "punpckhwd %%mm5, %%mm2 \n\t" /* 0RGB0RGB 1 */\
  697. "punpcklwd %%mm6, %%mm1 \n\t" /* 0RGB0RGB 2 */\
  698. "punpckhwd %%mm6, %%mm3 \n\t" /* 0RGB0RGB 3 */\
  699. \
  700. "movq %%mm0, %%mm4 \n\t" /* 0RGB0RGB 0 */\
  701. "psrlq $8, %%mm0 \n\t" /* 00RGB0RG 0 */\
  702. "pand "MANGLE(bm00000111)", %%mm4 \n\t" /* 00000RGB 0 */\
  703. "pand "MANGLE(bm11111000)", %%mm0 \n\t" /* 00RGB000 0.5 */\
  704. "por %%mm4, %%mm0 \n\t" /* 00RGBRGB 0 */\
  705. "movq %%mm2, %%mm4 \n\t" /* 0RGB0RGB 1 */\
  706. "psllq $48, %%mm2 \n\t" /* GB000000 1 */\
  707. "por %%mm2, %%mm0 \n\t" /* GBRGBRGB 0 */\
  708. \
  709. "movq %%mm4, %%mm2 \n\t" /* 0RGB0RGB 1 */\
  710. "psrld $16, %%mm4 \n\t" /* 000R000R 1 */\
  711. "psrlq $24, %%mm2 \n\t" /* 0000RGB0 1.5 */\
  712. "por %%mm4, %%mm2 \n\t" /* 000RRGBR 1 */\
  713. "pand "MANGLE(bm00001111)", %%mm2 \n\t" /* 0000RGBR 1 */\
  714. "movq %%mm1, %%mm4 \n\t" /* 0RGB0RGB 2 */\
  715. "psrlq $8, %%mm1 \n\t" /* 00RGB0RG 2 */\
  716. "pand "MANGLE(bm00000111)", %%mm4 \n\t" /* 00000RGB 2 */\
  717. "pand "MANGLE(bm11111000)", %%mm1 \n\t" /* 00RGB000 2.5 */\
  718. "por %%mm4, %%mm1 \n\t" /* 00RGBRGB 2 */\
  719. "movq %%mm1, %%mm4 \n\t" /* 00RGBRGB 2 */\
  720. "psllq $32, %%mm1 \n\t" /* BRGB0000 2 */\
  721. "por %%mm1, %%mm2 \n\t" /* BRGBRGBR 1 */\
  722. \
  723. "psrlq $32, %%mm4 \n\t" /* 000000RG 2.5 */\
  724. "movq %%mm3, %%mm5 \n\t" /* 0RGB0RGB 3 */\
  725. "psrlq $8, %%mm3 \n\t" /* 00RGB0RG 3 */\
  726. "pand "MANGLE(bm00000111)", %%mm5 \n\t" /* 00000RGB 3 */\
  727. "pand "MANGLE(bm11111000)", %%mm3 \n\t" /* 00RGB000 3.5 */\
  728. "por %%mm5, %%mm3 \n\t" /* 00RGBRGB 3 */\
  729. "psllq $16, %%mm3 \n\t" /* RGBRGB00 3 */\
  730. "por %%mm4, %%mm3 \n\t" /* RGBRGBRG 2.5 */\
  731. \
  732. MOVNTQ(%%mm0, (dst))\
  733. MOVNTQ(%%mm2, 8(dst))\
  734. MOVNTQ(%%mm3, 16(dst))\
  735. "add $24, "#dst" \n\t"\
  736. \
  737. "add $8, "#index" \n\t"\
  738. "cmp "#dstw", "#index" \n\t"\
  739. " jb 1b \n\t"
  740. #define WRITEBGR24MMX(dst, dstw, index) \
  741. /* mm2=B, %%mm4=G, %%mm5=R, %%mm7=0 */\
  742. "movq %%mm2, %%mm1 \n\t" /* B */\
  743. "movq %%mm5, %%mm6 \n\t" /* R */\
  744. "punpcklbw %%mm4, %%mm2 \n\t" /* GBGBGBGB 0 */\
  745. "punpcklbw %%mm7, %%mm5 \n\t" /* 0R0R0R0R 0 */\
  746. "punpckhbw %%mm4, %%mm1 \n\t" /* GBGBGBGB 2 */\
  747. "punpckhbw %%mm7, %%mm6 \n\t" /* 0R0R0R0R 2 */\
  748. "movq %%mm2, %%mm0 \n\t" /* GBGBGBGB 0 */\
  749. "movq %%mm1, %%mm3 \n\t" /* GBGBGBGB 2 */\
  750. "punpcklwd %%mm5, %%mm0 \n\t" /* 0RGB0RGB 0 */\
  751. "punpckhwd %%mm5, %%mm2 \n\t" /* 0RGB0RGB 1 */\
  752. "punpcklwd %%mm6, %%mm1 \n\t" /* 0RGB0RGB 2 */\
  753. "punpckhwd %%mm6, %%mm3 \n\t" /* 0RGB0RGB 3 */\
  754. \
  755. "movq %%mm0, %%mm4 \n\t" /* 0RGB0RGB 0 */\
  756. "movq %%mm2, %%mm6 \n\t" /* 0RGB0RGB 1 */\
  757. "movq %%mm1, %%mm5 \n\t" /* 0RGB0RGB 2 */\
  758. "movq %%mm3, %%mm7 \n\t" /* 0RGB0RGB 3 */\
  759. \
  760. "psllq $40, %%mm0 \n\t" /* RGB00000 0 */\
  761. "psllq $40, %%mm2 \n\t" /* RGB00000 1 */\
  762. "psllq $40, %%mm1 \n\t" /* RGB00000 2 */\
  763. "psllq $40, %%mm3 \n\t" /* RGB00000 3 */\
  764. \
  765. "punpckhdq %%mm4, %%mm0 \n\t" /* 0RGBRGB0 0 */\
  766. "punpckhdq %%mm6, %%mm2 \n\t" /* 0RGBRGB0 1 */\
  767. "punpckhdq %%mm5, %%mm1 \n\t" /* 0RGBRGB0 2 */\
  768. "punpckhdq %%mm7, %%mm3 \n\t" /* 0RGBRGB0 3 */\
  769. \
  770. "psrlq $8, %%mm0 \n\t" /* 00RGBRGB 0 */\
  771. "movq %%mm2, %%mm6 \n\t" /* 0RGBRGB0 1 */\
  772. "psllq $40, %%mm2 \n\t" /* GB000000 1 */\
  773. "por %%mm2, %%mm0 \n\t" /* GBRGBRGB 0 */\
  774. MOVNTQ(%%mm0, (dst))\
  775. \
  776. "psrlq $24, %%mm6 \n\t" /* 0000RGBR 1 */\
  777. "movq %%mm1, %%mm5 \n\t" /* 0RGBRGB0 2 */\
  778. "psllq $24, %%mm1 \n\t" /* BRGB0000 2 */\
  779. "por %%mm1, %%mm6 \n\t" /* BRGBRGBR 1 */\
  780. MOVNTQ(%%mm6, 8(dst))\
  781. \
  782. "psrlq $40, %%mm5 \n\t" /* 000000RG 2 */\
  783. "psllq $8, %%mm3 \n\t" /* RGBRGB00 3 */\
  784. "por %%mm3, %%mm5 \n\t" /* RGBRGBRG 2 */\
  785. MOVNTQ(%%mm5, 16(dst))\
  786. \
  787. "add $24, "#dst" \n\t"\
  788. \
  789. "add $8, "#index" \n\t"\
  790. "cmp "#dstw", "#index" \n\t"\
  791. " jb 1b \n\t"
  792. #define WRITEBGR24MMX2(dst, dstw, index) \
  793. /* mm2=B, %%mm4=G, %%mm5=R, %%mm7=0 */\
  794. "movq "MANGLE(ff_M24A)", %%mm0 \n\t"\
  795. "movq "MANGLE(ff_M24C)", %%mm7 \n\t"\
  796. "pshufw $0x50, %%mm2, %%mm1 \n\t" /* B3 B2 B3 B2 B1 B0 B1 B0 */\
  797. "pshufw $0x50, %%mm4, %%mm3 \n\t" /* G3 G2 G3 G2 G1 G0 G1 G0 */\
  798. "pshufw $0x00, %%mm5, %%mm6 \n\t" /* R1 R0 R1 R0 R1 R0 R1 R0 */\
  799. \
  800. "pand %%mm0, %%mm1 \n\t" /* B2 B1 B0 */\
  801. "pand %%mm0, %%mm3 \n\t" /* G2 G1 G0 */\
  802. "pand %%mm7, %%mm6 \n\t" /* R1 R0 */\
  803. \
  804. "psllq $8, %%mm3 \n\t" /* G2 G1 G0 */\
  805. "por %%mm1, %%mm6 \n\t"\
  806. "por %%mm3, %%mm6 \n\t"\
  807. MOVNTQ(%%mm6, (dst))\
  808. \
  809. "psrlq $8, %%mm4 \n\t" /* 00 G7 G6 G5 G4 G3 G2 G1 */\
  810. "pshufw $0xA5, %%mm2, %%mm1 \n\t" /* B5 B4 B5 B4 B3 B2 B3 B2 */\
  811. "pshufw $0x55, %%mm4, %%mm3 \n\t" /* G4 G3 G4 G3 G4 G3 G4 G3 */\
  812. "pshufw $0xA5, %%mm5, %%mm6 \n\t" /* R5 R4 R5 R4 R3 R2 R3 R2 */\
  813. \
  814. "pand "MANGLE(ff_M24B)", %%mm1 \n\t" /* B5 B4 B3 */\
  815. "pand %%mm7, %%mm3 \n\t" /* G4 G3 */\
  816. "pand %%mm0, %%mm6 \n\t" /* R4 R3 R2 */\
  817. \
  818. "por %%mm1, %%mm3 \n\t" /* B5 G4 B4 G3 B3 */\
  819. "por %%mm3, %%mm6 \n\t"\
  820. MOVNTQ(%%mm6, 8(dst))\
  821. \
  822. "pshufw $0xFF, %%mm2, %%mm1 \n\t" /* B7 B6 B7 B6 B7 B6 B6 B7 */\
  823. "pshufw $0xFA, %%mm4, %%mm3 \n\t" /* 00 G7 00 G7 G6 G5 G6 G5 */\
  824. "pshufw $0xFA, %%mm5, %%mm6 \n\t" /* R7 R6 R7 R6 R5 R4 R5 R4 */\
  825. \
  826. "pand %%mm7, %%mm1 \n\t" /* B7 B6 */\
  827. "pand %%mm0, %%mm3 \n\t" /* G7 G6 G5 */\
  828. "pand "MANGLE(ff_M24B)", %%mm6 \n\t" /* R7 R6 R5 */\
  829. \
  830. "por %%mm1, %%mm3 \n\t"\
  831. "por %%mm3, %%mm6 \n\t"\
  832. MOVNTQ(%%mm6, 16(dst))\
  833. \
  834. "add $24, "#dst" \n\t"\
  835. \
  836. "add $8, "#index" \n\t"\
  837. "cmp "#dstw", "#index" \n\t"\
  838. " jb 1b \n\t"
  839. #if COMPILE_TEMPLATE_MMX2
  840. #undef WRITEBGR24
  841. #define WRITEBGR24(dst, dstw, index) WRITEBGR24MMX2(dst, dstw, index)
  842. #else
  843. #undef WRITEBGR24
  844. #define WRITEBGR24(dst, dstw, index) WRITEBGR24MMX(dst, dstw, index)
  845. #endif
  846. #define REAL_WRITEYUY2(dst, dstw, index) \
  847. "packuswb %%mm3, %%mm3 \n\t"\
  848. "packuswb %%mm4, %%mm4 \n\t"\
  849. "packuswb %%mm7, %%mm1 \n\t"\
  850. "punpcklbw %%mm4, %%mm3 \n\t"\
  851. "movq %%mm1, %%mm7 \n\t"\
  852. "punpcklbw %%mm3, %%mm1 \n\t"\
  853. "punpckhbw %%mm3, %%mm7 \n\t"\
  854. \
  855. MOVNTQ(%%mm1, (dst, index, 2))\
  856. MOVNTQ(%%mm7, 8(dst, index, 2))\
  857. \
  858. "add $8, "#index" \n\t"\
  859. "cmp "#dstw", "#index" \n\t"\
  860. " jb 1b \n\t"
  861. #define WRITEYUY2(dst, dstw, index) REAL_WRITEYUY2(dst, dstw, index)
  862. static inline void RENAME(yuv2yuvX)(SwsContext *c, const int16_t *lumFilter, const int16_t **lumSrc, int lumFilterSize,
  863. const int16_t *chrFilter, const int16_t **chrSrc, int chrFilterSize, const int16_t **alpSrc,
  864. uint8_t *dest, uint8_t *uDest, uint8_t *vDest, uint8_t *aDest, long dstW, long chrDstW)
  865. {
  866. #if COMPILE_TEMPLATE_MMX
  867. if(!(c->flags & SWS_BITEXACT)) {
  868. if (c->flags & SWS_ACCURATE_RND) {
  869. if (uDest) {
  870. YSCALEYUV2YV12X_ACCURATE( "0", CHR_MMX_FILTER_OFFSET, uDest, chrDstW)
  871. YSCALEYUV2YV12X_ACCURATE(AV_STRINGIFY(VOF), CHR_MMX_FILTER_OFFSET, vDest, chrDstW)
  872. }
  873. if (CONFIG_SWSCALE_ALPHA && aDest) {
  874. YSCALEYUV2YV12X_ACCURATE( "0", ALP_MMX_FILTER_OFFSET, aDest, dstW)
  875. }
  876. YSCALEYUV2YV12X_ACCURATE("0", LUM_MMX_FILTER_OFFSET, dest, dstW)
  877. } else {
  878. if (uDest) {
  879. YSCALEYUV2YV12X( "0", CHR_MMX_FILTER_OFFSET, uDest, chrDstW)
  880. YSCALEYUV2YV12X(AV_STRINGIFY(VOF), CHR_MMX_FILTER_OFFSET, vDest, chrDstW)
  881. }
  882. if (CONFIG_SWSCALE_ALPHA && aDest) {
  883. YSCALEYUV2YV12X( "0", ALP_MMX_FILTER_OFFSET, aDest, dstW)
  884. }
  885. YSCALEYUV2YV12X("0", LUM_MMX_FILTER_OFFSET, dest, dstW)
  886. }
  887. return;
  888. }
  889. #endif
  890. #if COMPILE_TEMPLATE_ALTIVEC
  891. yuv2yuvX_altivec_real(lumFilter, lumSrc, lumFilterSize,
  892. chrFilter, chrSrc, chrFilterSize,
  893. dest, uDest, vDest, dstW, chrDstW);
  894. #else //COMPILE_TEMPLATE_ALTIVEC
  895. yuv2yuvXinC(lumFilter, lumSrc, lumFilterSize,
  896. chrFilter, chrSrc, chrFilterSize,
  897. alpSrc, dest, uDest, vDest, aDest, dstW, chrDstW);
  898. #endif //!COMPILE_TEMPLATE_ALTIVEC
  899. }
  900. static inline void RENAME(yuv2nv12X)(SwsContext *c, const int16_t *lumFilter, const int16_t **lumSrc, int lumFilterSize,
  901. const int16_t *chrFilter, const int16_t **chrSrc, int chrFilterSize,
  902. uint8_t *dest, uint8_t *uDest, int dstW, int chrDstW, int dstFormat)
  903. {
  904. yuv2nv12XinC(lumFilter, lumSrc, lumFilterSize,
  905. chrFilter, chrSrc, chrFilterSize,
  906. dest, uDest, dstW, chrDstW, dstFormat);
  907. }
  908. static inline void RENAME(yuv2yuv1)(SwsContext *c, const int16_t *lumSrc, const int16_t *chrSrc, const int16_t *alpSrc,
  909. uint8_t *dest, uint8_t *uDest, uint8_t *vDest, uint8_t *aDest, long dstW, long chrDstW)
  910. {
  911. int i;
  912. #if COMPILE_TEMPLATE_MMX
  913. if(!(c->flags & SWS_BITEXACT)) {
  914. long p= 4;
  915. uint8_t *src[4]= {alpSrc + dstW, lumSrc + dstW, chrSrc + chrDstW, chrSrc + VOFW + chrDstW};
  916. uint8_t *dst[4]= {aDest, dest, uDest, vDest};
  917. x86_reg counter[4]= {dstW, dstW, chrDstW, chrDstW};
  918. if (c->flags & SWS_ACCURATE_RND) {
  919. while(p--) {
  920. if (dst[p]) {
  921. __asm__ volatile(
  922. YSCALEYUV2YV121_ACCURATE
  923. :: "r" (src[p]), "r" (dst[p] + counter[p]),
  924. "g" (-counter[p])
  925. : "%"REG_a
  926. );
  927. }
  928. }
  929. } else {
  930. while(p--) {
  931. if (dst[p]) {
  932. __asm__ volatile(
  933. YSCALEYUV2YV121
  934. :: "r" (src[p]), "r" (dst[p] + counter[p]),
  935. "g" (-counter[p])
  936. : "%"REG_a
  937. );
  938. }
  939. }
  940. }
  941. return;
  942. }
  943. #endif
  944. for (i=0; i<dstW; i++) {
  945. int val= (lumSrc[i]+64)>>7;
  946. if (val&256) {
  947. if (val<0) val=0;
  948. else val=255;
  949. }
  950. dest[i]= val;
  951. }
  952. if (uDest)
  953. for (i=0; i<chrDstW; i++) {
  954. int u=(chrSrc[i ]+64)>>7;
  955. int v=(chrSrc[i + VOFW]+64)>>7;
  956. if ((u|v)&256) {
  957. if (u<0) u=0;
  958. else if (u>255) u=255;
  959. if (v<0) v=0;
  960. else if (v>255) v=255;
  961. }
  962. uDest[i]= u;
  963. vDest[i]= v;
  964. }
  965. if (CONFIG_SWSCALE_ALPHA && aDest)
  966. for (i=0; i<dstW; i++) {
  967. int val= (alpSrc[i]+64)>>7;
  968. aDest[i]= av_clip_uint8(val);
  969. }
  970. }
  971. /**
  972. * vertical scale YV12 to RGB
  973. */
  974. static inline void RENAME(yuv2packedX)(SwsContext *c, const int16_t *lumFilter, const int16_t **lumSrc, int lumFilterSize,
  975. const int16_t *chrFilter, const int16_t **chrSrc, int chrFilterSize,
  976. const int16_t **alpSrc, uint8_t *dest, long dstW, long dstY)
  977. {
  978. #if COMPILE_TEMPLATE_MMX
  979. x86_reg dummy=0;
  980. if(!(c->flags & SWS_BITEXACT)) {
  981. if (c->flags & SWS_ACCURATE_RND) {
  982. switch(c->dstFormat) {
  983. case PIX_FMT_RGB32:
  984. if (CONFIG_SWSCALE_ALPHA && c->alpPixBuf) {
  985. YSCALEYUV2PACKEDX_ACCURATE
  986. YSCALEYUV2RGBX
  987. "movq %%mm2, "U_TEMP"(%0) \n\t"
  988. "movq %%mm4, "V_TEMP"(%0) \n\t"
  989. "movq %%mm5, "Y_TEMP"(%0) \n\t"
  990. YSCALEYUV2PACKEDX_ACCURATE_YA(ALP_MMX_FILTER_OFFSET)
  991. "movq "Y_TEMP"(%0), %%mm5 \n\t"
  992. "psraw $3, %%mm1 \n\t"
  993. "psraw $3, %%mm7 \n\t"
  994. "packuswb %%mm7, %%mm1 \n\t"
  995. WRITEBGR32(%4, %5, %%REGa, %%mm3, %%mm4, %%mm5, %%mm1, %%mm0, %%mm7, %%mm2, %%mm6)
  996. YSCALEYUV2PACKEDX_END
  997. } else {
  998. YSCALEYUV2PACKEDX_ACCURATE
  999. YSCALEYUV2RGBX
  1000. "pcmpeqd %%mm7, %%mm7 \n\t"
  1001. WRITEBGR32(%4, %5, %%REGa, %%mm2, %%mm4, %%mm5, %%mm7, %%mm0, %%mm1, %%mm3, %%mm6)
  1002. YSCALEYUV2PACKEDX_END
  1003. }
  1004. return;
  1005. case PIX_FMT_BGR24:
  1006. YSCALEYUV2PACKEDX_ACCURATE
  1007. YSCALEYUV2RGBX
  1008. "pxor %%mm7, %%mm7 \n\t"
  1009. "lea (%%"REG_a", %%"REG_a", 2), %%"REG_c"\n\t" //FIXME optimize
  1010. "add %4, %%"REG_c" \n\t"
  1011. WRITEBGR24(%%REGc, %5, %%REGa)
  1012. :: "r" (&c->redDither),
  1013. "m" (dummy), "m" (dummy), "m" (dummy),
  1014. "r" (dest), "m" (dstW)
  1015. : "%"REG_a, "%"REG_c, "%"REG_d, "%"REG_S
  1016. );
  1017. return;
  1018. case PIX_FMT_RGB555:
  1019. YSCALEYUV2PACKEDX_ACCURATE
  1020. YSCALEYUV2RGBX
  1021. "pxor %%mm7, %%mm7 \n\t"
  1022. /* mm2=B, %%mm4=G, %%mm5=R, %%mm7=0 */
  1023. #ifdef DITHER1XBPP
  1024. "paddusb "BLUE_DITHER"(%0), %%mm2\n\t"
  1025. "paddusb "GREEN_DITHER"(%0), %%mm4\n\t"
  1026. "paddusb "RED_DITHER"(%0), %%mm5\n\t"
  1027. #endif
  1028. WRITERGB15(%4, %5, %%REGa)
  1029. YSCALEYUV2PACKEDX_END
  1030. return;
  1031. case PIX_FMT_RGB565:
  1032. YSCALEYUV2PACKEDX_ACCURATE
  1033. YSCALEYUV2RGBX
  1034. "pxor %%mm7, %%mm7 \n\t"
  1035. /* mm2=B, %%mm4=G, %%mm5=R, %%mm7=0 */
  1036. #ifdef DITHER1XBPP
  1037. "paddusb "BLUE_DITHER"(%0), %%mm2\n\t"
  1038. "paddusb "GREEN_DITHER"(%0), %%mm4\n\t"
  1039. "paddusb "RED_DITHER"(%0), %%mm5\n\t"
  1040. #endif
  1041. WRITERGB16(%4, %5, %%REGa)
  1042. YSCALEYUV2PACKEDX_END
  1043. return;
  1044. case PIX_FMT_YUYV422:
  1045. YSCALEYUV2PACKEDX_ACCURATE
  1046. /* mm2=B, %%mm4=G, %%mm5=R, %%mm7=0 */
  1047. "psraw $3, %%mm3 \n\t"
  1048. "psraw $3, %%mm4 \n\t"
  1049. "psraw $3, %%mm1 \n\t"
  1050. "psraw $3, %%mm7 \n\t"
  1051. WRITEYUY2(%4, %5, %%REGa)
  1052. YSCALEYUV2PACKEDX_END
  1053. return;
  1054. }
  1055. } else {
  1056. switch(c->dstFormat) {
  1057. case PIX_FMT_RGB32:
  1058. if (CONFIG_SWSCALE_ALPHA && c->alpPixBuf) {
  1059. YSCALEYUV2PACKEDX
  1060. YSCALEYUV2RGBX
  1061. YSCALEYUV2PACKEDX_YA(ALP_MMX_FILTER_OFFSET, %%mm0, %%mm3, %%mm6, %%mm1, %%mm7)
  1062. "psraw $3, %%mm1 \n\t"
  1063. "psraw $3, %%mm7 \n\t"
  1064. "packuswb %%mm7, %%mm1 \n\t"
  1065. WRITEBGR32(%4, %5, %%REGa, %%mm2, %%mm4, %%mm5, %%mm1, %%mm0, %%mm7, %%mm3, %%mm6)
  1066. YSCALEYUV2PACKEDX_END
  1067. } else {
  1068. YSCALEYUV2PACKEDX
  1069. YSCALEYUV2RGBX
  1070. "pcmpeqd %%mm7, %%mm7 \n\t"
  1071. WRITEBGR32(%4, %5, %%REGa, %%mm2, %%mm4, %%mm5, %%mm7, %%mm0, %%mm1, %%mm3, %%mm6)
  1072. YSCALEYUV2PACKEDX_END
  1073. }
  1074. return;
  1075. case PIX_FMT_BGR24:
  1076. YSCALEYUV2PACKEDX
  1077. YSCALEYUV2RGBX
  1078. "pxor %%mm7, %%mm7 \n\t"
  1079. "lea (%%"REG_a", %%"REG_a", 2), %%"REG_c" \n\t" //FIXME optimize
  1080. "add %4, %%"REG_c" \n\t"
  1081. WRITEBGR24(%%REGc, %5, %%REGa)
  1082. :: "r" (&c->redDither),
  1083. "m" (dummy), "m" (dummy), "m" (dummy),
  1084. "r" (dest), "m" (dstW)
  1085. : "%"REG_a, "%"REG_c, "%"REG_d, "%"REG_S
  1086. );
  1087. return;
  1088. case PIX_FMT_RGB555:
  1089. YSCALEYUV2PACKEDX
  1090. YSCALEYUV2RGBX
  1091. "pxor %%mm7, %%mm7 \n\t"
  1092. /* mm2=B, %%mm4=G, %%mm5=R, %%mm7=0 */
  1093. #ifdef DITHER1XBPP
  1094. "paddusb "BLUE_DITHER"(%0), %%mm2 \n\t"
  1095. "paddusb "GREEN_DITHER"(%0), %%mm4 \n\t"
  1096. "paddusb "RED_DITHER"(%0), %%mm5 \n\t"
  1097. #endif
  1098. WRITERGB15(%4, %5, %%REGa)
  1099. YSCALEYUV2PACKEDX_END
  1100. return;
  1101. case PIX_FMT_RGB565:
  1102. YSCALEYUV2PACKEDX
  1103. YSCALEYUV2RGBX
  1104. "pxor %%mm7, %%mm7 \n\t"
  1105. /* mm2=B, %%mm4=G, %%mm5=R, %%mm7=0 */
  1106. #ifdef DITHER1XBPP
  1107. "paddusb "BLUE_DITHER"(%0), %%mm2 \n\t"
  1108. "paddusb "GREEN_DITHER"(%0), %%mm4 \n\t"
  1109. "paddusb "RED_DITHER"(%0), %%mm5 \n\t"
  1110. #endif
  1111. WRITERGB16(%4, %5, %%REGa)
  1112. YSCALEYUV2PACKEDX_END
  1113. return;
  1114. case PIX_FMT_YUYV422:
  1115. YSCALEYUV2PACKEDX
  1116. /* mm2=B, %%mm4=G, %%mm5=R, %%mm7=0 */
  1117. "psraw $3, %%mm3 \n\t"
  1118. "psraw $3, %%mm4 \n\t"
  1119. "psraw $3, %%mm1 \n\t"
  1120. "psraw $3, %%mm7 \n\t"
  1121. WRITEYUY2(%4, %5, %%REGa)
  1122. YSCALEYUV2PACKEDX_END
  1123. return;
  1124. }
  1125. }
  1126. }
  1127. #endif /* COMPILE_TEMPLATE_MMX */
  1128. #if COMPILE_TEMPLATE_ALTIVEC
  1129. /* The following list of supported dstFormat values should
  1130. match what's found in the body of ff_yuv2packedX_altivec() */
  1131. if (!(c->flags & SWS_BITEXACT) && !c->alpPixBuf &&
  1132. (c->dstFormat==PIX_FMT_ABGR || c->dstFormat==PIX_FMT_BGRA ||
  1133. c->dstFormat==PIX_FMT_BGR24 || c->dstFormat==PIX_FMT_RGB24 ||
  1134. c->dstFormat==PIX_FMT_RGBA || c->dstFormat==PIX_FMT_ARGB))
  1135. ff_yuv2packedX_altivec(c, lumFilter, lumSrc, lumFilterSize,
  1136. chrFilter, chrSrc, chrFilterSize,
  1137. dest, dstW, dstY);
  1138. else
  1139. #endif
  1140. yuv2packedXinC(c, lumFilter, lumSrc, lumFilterSize,
  1141. chrFilter, chrSrc, chrFilterSize,
  1142. alpSrc, dest, dstW, dstY);
  1143. }
  1144. /**
  1145. * vertical bilinear scale YV12 to RGB
  1146. */
  1147. static inline void RENAME(yuv2packed2)(SwsContext *c, const uint16_t *buf0, const uint16_t *buf1, const uint16_t *uvbuf0, const uint16_t *uvbuf1,
  1148. const uint16_t *abuf0, const uint16_t *abuf1, uint8_t *dest, int dstW, int yalpha, int uvalpha, int y)
  1149. {
  1150. int yalpha1=4095- yalpha;
  1151. int uvalpha1=4095-uvalpha;
  1152. int i;
  1153. #if COMPILE_TEMPLATE_MMX
  1154. if(!(c->flags & SWS_BITEXACT)) {
  1155. switch(c->dstFormat) {
  1156. //Note 8280 == DSTW_OFFSET but the preprocessor can't handle that there :(
  1157. case PIX_FMT_RGB32:
  1158. if (CONFIG_SWSCALE_ALPHA && c->alpPixBuf) {
  1159. #if ARCH_X86_64
  1160. __asm__ volatile(
  1161. YSCALEYUV2RGB(%%REGBP, %5)
  1162. YSCALEYUV2RGB_YA(%%REGBP, %5, %6, %7)
  1163. "psraw $3, %%mm1 \n\t" /* abuf0[eax] - abuf1[eax] >>7*/
  1164. "psraw $3, %%mm7 \n\t" /* abuf0[eax] - abuf1[eax] >>7*/
  1165. "packuswb %%mm7, %%mm1 \n\t"
  1166. WRITEBGR32(%4, 8280(%5), %%REGBP, %%mm2, %%mm4, %%mm5, %%mm1, %%mm0, %%mm7, %%mm3, %%mm6)
  1167. :: "c" (buf0), "d" (buf1), "S" (uvbuf0), "D" (uvbuf1), "r" (dest),
  1168. "a" (&c->redDither)
  1169. ,"r" (abuf0), "r" (abuf1)
  1170. : "%"REG_BP
  1171. );
  1172. #else
  1173. *(uint16_t **)(&c->u_temp)=abuf0;
  1174. *(uint16_t **)(&c->v_temp)=abuf1;
  1175. __asm__ volatile(
  1176. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1177. "mov %4, %%"REG_b" \n\t"
  1178. "push %%"REG_BP" \n\t"
  1179. YSCALEYUV2RGB(%%REGBP, %5)
  1180. "push %0 \n\t"
  1181. "push %1 \n\t"
  1182. "mov "U_TEMP"(%5), %0 \n\t"
  1183. "mov "V_TEMP"(%5), %1 \n\t"
  1184. YSCALEYUV2RGB_YA(%%REGBP, %5, %0, %1)
  1185. "psraw $3, %%mm1 \n\t" /* abuf0[eax] - abuf1[eax] >>7*/
  1186. "psraw $3, %%mm7 \n\t" /* abuf0[eax] - abuf1[eax] >>7*/
  1187. "packuswb %%mm7, %%mm1 \n\t"
  1188. "pop %1 \n\t"
  1189. "pop %0 \n\t"
  1190. WRITEBGR32(%%REGb, 8280(%5), %%REGBP, %%mm2, %%mm4, %%mm5, %%mm1, %%mm0, %%mm7, %%mm3, %%mm6)
  1191. "pop %%"REG_BP" \n\t"
  1192. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1193. :: "c" (buf0), "d" (buf1), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1194. "a" (&c->redDither)
  1195. );
  1196. #endif
  1197. } else {
  1198. __asm__ volatile(
  1199. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1200. "mov %4, %%"REG_b" \n\t"
  1201. "push %%"REG_BP" \n\t"
  1202. YSCALEYUV2RGB(%%REGBP, %5)
  1203. "pcmpeqd %%mm7, %%mm7 \n\t"
  1204. WRITEBGR32(%%REGb, 8280(%5), %%REGBP, %%mm2, %%mm4, %%mm5, %%mm7, %%mm0, %%mm1, %%mm3, %%mm6)
  1205. "pop %%"REG_BP" \n\t"
  1206. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1207. :: "c" (buf0), "d" (buf1), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1208. "a" (&c->redDither)
  1209. );
  1210. }
  1211. return;
  1212. case PIX_FMT_BGR24:
  1213. __asm__ volatile(
  1214. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1215. "mov %4, %%"REG_b" \n\t"
  1216. "push %%"REG_BP" \n\t"
  1217. YSCALEYUV2RGB(%%REGBP, %5)
  1218. "pxor %%mm7, %%mm7 \n\t"
  1219. WRITEBGR24(%%REGb, 8280(%5), %%REGBP)
  1220. "pop %%"REG_BP" \n\t"
  1221. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1222. :: "c" (buf0), "d" (buf1), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1223. "a" (&c->redDither)
  1224. );
  1225. return;
  1226. case PIX_FMT_RGB555:
  1227. __asm__ volatile(
  1228. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1229. "mov %4, %%"REG_b" \n\t"
  1230. "push %%"REG_BP" \n\t"
  1231. YSCALEYUV2RGB(%%REGBP, %5)
  1232. "pxor %%mm7, %%mm7 \n\t"
  1233. /* mm2=B, %%mm4=G, %%mm5=R, %%mm7=0 */
  1234. #ifdef DITHER1XBPP
  1235. "paddusb "BLUE_DITHER"(%5), %%mm2 \n\t"
  1236. "paddusb "GREEN_DITHER"(%5), %%mm4 \n\t"
  1237. "paddusb "RED_DITHER"(%5), %%mm5 \n\t"
  1238. #endif
  1239. WRITERGB15(%%REGb, 8280(%5), %%REGBP)
  1240. "pop %%"REG_BP" \n\t"
  1241. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1242. :: "c" (buf0), "d" (buf1), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1243. "a" (&c->redDither)
  1244. );
  1245. return;
  1246. case PIX_FMT_RGB565:
  1247. __asm__ volatile(
  1248. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1249. "mov %4, %%"REG_b" \n\t"
  1250. "push %%"REG_BP" \n\t"
  1251. YSCALEYUV2RGB(%%REGBP, %5)
  1252. "pxor %%mm7, %%mm7 \n\t"
  1253. /* mm2=B, %%mm4=G, %%mm5=R, %%mm7=0 */
  1254. #ifdef DITHER1XBPP
  1255. "paddusb "BLUE_DITHER"(%5), %%mm2 \n\t"
  1256. "paddusb "GREEN_DITHER"(%5), %%mm4 \n\t"
  1257. "paddusb "RED_DITHER"(%5), %%mm5 \n\t"
  1258. #endif
  1259. WRITERGB16(%%REGb, 8280(%5), %%REGBP)
  1260. "pop %%"REG_BP" \n\t"
  1261. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1262. :: "c" (buf0), "d" (buf1), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1263. "a" (&c->redDither)
  1264. );
  1265. return;
  1266. case PIX_FMT_YUYV422:
  1267. __asm__ volatile(
  1268. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1269. "mov %4, %%"REG_b" \n\t"
  1270. "push %%"REG_BP" \n\t"
  1271. YSCALEYUV2PACKED(%%REGBP, %5)
  1272. WRITEYUY2(%%REGb, 8280(%5), %%REGBP)
  1273. "pop %%"REG_BP" \n\t"
  1274. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1275. :: "c" (buf0), "d" (buf1), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1276. "a" (&c->redDither)
  1277. );
  1278. return;
  1279. default: break;
  1280. }
  1281. }
  1282. #endif //COMPILE_TEMPLATE_MMX
  1283. YSCALE_YUV_2_ANYRGB_C(YSCALE_YUV_2_RGB2_C, YSCALE_YUV_2_PACKED2_C(void,0), YSCALE_YUV_2_GRAY16_2_C, YSCALE_YUV_2_MONO2_C)
  1284. }
  1285. /**
  1286. * YV12 to RGB without scaling or interpolating
  1287. */
  1288. static inline void RENAME(yuv2packed1)(SwsContext *c, const uint16_t *buf0, const uint16_t *uvbuf0, const uint16_t *uvbuf1,
  1289. const uint16_t *abuf0, uint8_t *dest, int dstW, int uvalpha, int dstFormat, int flags, int y)
  1290. {
  1291. const int yalpha1=0;
  1292. int i;
  1293. const uint16_t *buf1= buf0; //FIXME needed for RGB1/BGR1
  1294. const int yalpha= 4096; //FIXME ...
  1295. if (flags&SWS_FULL_CHR_H_INT) {
  1296. c->yuv2packed2(c, buf0, buf0, uvbuf0, uvbuf1, abuf0, abuf0, dest, dstW, 0, uvalpha, y);
  1297. return;
  1298. }
  1299. #if COMPILE_TEMPLATE_MMX
  1300. if(!(flags & SWS_BITEXACT)) {
  1301. if (uvalpha < 2048) { // note this is not correct (shifts chrominance by 0.5 pixels) but it is a bit faster
  1302. switch(dstFormat) {
  1303. case PIX_FMT_RGB32:
  1304. if (CONFIG_SWSCALE_ALPHA && c->alpPixBuf) {
  1305. __asm__ volatile(
  1306. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1307. "mov %4, %%"REG_b" \n\t"
  1308. "push %%"REG_BP" \n\t"
  1309. YSCALEYUV2RGB1(%%REGBP, %5)
  1310. YSCALEYUV2RGB1_ALPHA(%%REGBP)
  1311. WRITEBGR32(%%REGb, 8280(%5), %%REGBP, %%mm2, %%mm4, %%mm5, %%mm7, %%mm0, %%mm1, %%mm3, %%mm6)
  1312. "pop %%"REG_BP" \n\t"
  1313. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1314. :: "c" (buf0), "d" (abuf0), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1315. "a" (&c->redDither)
  1316. );
  1317. } else {
  1318. __asm__ volatile(
  1319. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1320. "mov %4, %%"REG_b" \n\t"
  1321. "push %%"REG_BP" \n\t"
  1322. YSCALEYUV2RGB1(%%REGBP, %5)
  1323. "pcmpeqd %%mm7, %%mm7 \n\t"
  1324. WRITEBGR32(%%REGb, 8280(%5), %%REGBP, %%mm2, %%mm4, %%mm5, %%mm7, %%mm0, %%mm1, %%mm3, %%mm6)
  1325. "pop %%"REG_BP" \n\t"
  1326. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1327. :: "c" (buf0), "d" (buf1), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1328. "a" (&c->redDither)
  1329. );
  1330. }
  1331. return;
  1332. case PIX_FMT_BGR24:
  1333. __asm__ volatile(
  1334. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1335. "mov %4, %%"REG_b" \n\t"
  1336. "push %%"REG_BP" \n\t"
  1337. YSCALEYUV2RGB1(%%REGBP, %5)
  1338. "pxor %%mm7, %%mm7 \n\t"
  1339. WRITEBGR24(%%REGb, 8280(%5), %%REGBP)
  1340. "pop %%"REG_BP" \n\t"
  1341. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1342. :: "c" (buf0), "d" (buf1), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1343. "a" (&c->redDither)
  1344. );
  1345. return;
  1346. case PIX_FMT_RGB555:
  1347. __asm__ volatile(
  1348. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1349. "mov %4, %%"REG_b" \n\t"
  1350. "push %%"REG_BP" \n\t"
  1351. YSCALEYUV2RGB1(%%REGBP, %5)
  1352. "pxor %%mm7, %%mm7 \n\t"
  1353. /* mm2=B, %%mm4=G, %%mm5=R, %%mm7=0 */
  1354. #ifdef DITHER1XBPP
  1355. "paddusb "BLUE_DITHER"(%5), %%mm2 \n\t"
  1356. "paddusb "GREEN_DITHER"(%5), %%mm4 \n\t"
  1357. "paddusb "RED_DITHER"(%5), %%mm5 \n\t"
  1358. #endif
  1359. WRITERGB15(%%REGb, 8280(%5), %%REGBP)
  1360. "pop %%"REG_BP" \n\t"
  1361. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1362. :: "c" (buf0), "d" (buf1), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1363. "a" (&c->redDither)
  1364. );
  1365. return;
  1366. case PIX_FMT_RGB565:
  1367. __asm__ volatile(
  1368. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1369. "mov %4, %%"REG_b" \n\t"
  1370. "push %%"REG_BP" \n\t"
  1371. YSCALEYUV2RGB1(%%REGBP, %5)
  1372. "pxor %%mm7, %%mm7 \n\t"
  1373. /* mm2=B, %%mm4=G, %%mm5=R, %%mm7=0 */
  1374. #ifdef DITHER1XBPP
  1375. "paddusb "BLUE_DITHER"(%5), %%mm2 \n\t"
  1376. "paddusb "GREEN_DITHER"(%5), %%mm4 \n\t"
  1377. "paddusb "RED_DITHER"(%5), %%mm5 \n\t"
  1378. #endif
  1379. WRITERGB16(%%REGb, 8280(%5), %%REGBP)
  1380. "pop %%"REG_BP" \n\t"
  1381. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1382. :: "c" (buf0), "d" (buf1), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1383. "a" (&c->redDither)
  1384. );
  1385. return;
  1386. case PIX_FMT_YUYV422:
  1387. __asm__ volatile(
  1388. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1389. "mov %4, %%"REG_b" \n\t"
  1390. "push %%"REG_BP" \n\t"
  1391. YSCALEYUV2PACKED1(%%REGBP, %5)
  1392. WRITEYUY2(%%REGb, 8280(%5), %%REGBP)
  1393. "pop %%"REG_BP" \n\t"
  1394. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1395. :: "c" (buf0), "d" (buf1), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1396. "a" (&c->redDither)
  1397. );
  1398. return;
  1399. }
  1400. } else {
  1401. switch(dstFormat) {
  1402. case PIX_FMT_RGB32:
  1403. if (CONFIG_SWSCALE_ALPHA && c->alpPixBuf) {
  1404. __asm__ volatile(
  1405. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1406. "mov %4, %%"REG_b" \n\t"
  1407. "push %%"REG_BP" \n\t"
  1408. YSCALEYUV2RGB1b(%%REGBP, %5)
  1409. YSCALEYUV2RGB1_ALPHA(%%REGBP)
  1410. WRITEBGR32(%%REGb, 8280(%5), %%REGBP, %%mm2, %%mm4, %%mm5, %%mm7, %%mm0, %%mm1, %%mm3, %%mm6)
  1411. "pop %%"REG_BP" \n\t"
  1412. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1413. :: "c" (buf0), "d" (abuf0), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1414. "a" (&c->redDither)
  1415. );
  1416. } else {
  1417. __asm__ volatile(
  1418. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1419. "mov %4, %%"REG_b" \n\t"
  1420. "push %%"REG_BP" \n\t"
  1421. YSCALEYUV2RGB1b(%%REGBP, %5)
  1422. "pcmpeqd %%mm7, %%mm7 \n\t"
  1423. WRITEBGR32(%%REGb, 8280(%5), %%REGBP, %%mm2, %%mm4, %%mm5, %%mm7, %%mm0, %%mm1, %%mm3, %%mm6)
  1424. "pop %%"REG_BP" \n\t"
  1425. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1426. :: "c" (buf0), "d" (buf1), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1427. "a" (&c->redDither)
  1428. );
  1429. }
  1430. return;
  1431. case PIX_FMT_BGR24:
  1432. __asm__ volatile(
  1433. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1434. "mov %4, %%"REG_b" \n\t"
  1435. "push %%"REG_BP" \n\t"
  1436. YSCALEYUV2RGB1b(%%REGBP, %5)
  1437. "pxor %%mm7, %%mm7 \n\t"
  1438. WRITEBGR24(%%REGb, 8280(%5), %%REGBP)
  1439. "pop %%"REG_BP" \n\t"
  1440. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1441. :: "c" (buf0), "d" (buf1), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1442. "a" (&c->redDither)
  1443. );
  1444. return;
  1445. case PIX_FMT_RGB555:
  1446. __asm__ volatile(
  1447. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1448. "mov %4, %%"REG_b" \n\t"
  1449. "push %%"REG_BP" \n\t"
  1450. YSCALEYUV2RGB1b(%%REGBP, %5)
  1451. "pxor %%mm7, %%mm7 \n\t"
  1452. /* mm2=B, %%mm4=G, %%mm5=R, %%mm7=0 */
  1453. #ifdef DITHER1XBPP
  1454. "paddusb "BLUE_DITHER"(%5), %%mm2 \n\t"
  1455. "paddusb "GREEN_DITHER"(%5), %%mm4 \n\t"
  1456. "paddusb "RED_DITHER"(%5), %%mm5 \n\t"
  1457. #endif
  1458. WRITERGB15(%%REGb, 8280(%5), %%REGBP)
  1459. "pop %%"REG_BP" \n\t"
  1460. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1461. :: "c" (buf0), "d" (buf1), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1462. "a" (&c->redDither)
  1463. );
  1464. return;
  1465. case PIX_FMT_RGB565:
  1466. __asm__ volatile(
  1467. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1468. "mov %4, %%"REG_b" \n\t"
  1469. "push %%"REG_BP" \n\t"
  1470. YSCALEYUV2RGB1b(%%REGBP, %5)
  1471. "pxor %%mm7, %%mm7 \n\t"
  1472. /* mm2=B, %%mm4=G, %%mm5=R, %%mm7=0 */
  1473. #ifdef DITHER1XBPP
  1474. "paddusb "BLUE_DITHER"(%5), %%mm2 \n\t"
  1475. "paddusb "GREEN_DITHER"(%5), %%mm4 \n\t"
  1476. "paddusb "RED_DITHER"(%5), %%mm5 \n\t"
  1477. #endif
  1478. WRITERGB16(%%REGb, 8280(%5), %%REGBP)
  1479. "pop %%"REG_BP" \n\t"
  1480. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1481. :: "c" (buf0), "d" (buf1), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1482. "a" (&c->redDither)
  1483. );
  1484. return;
  1485. case PIX_FMT_YUYV422:
  1486. __asm__ volatile(
  1487. "mov %%"REG_b", "ESP_OFFSET"(%5) \n\t"
  1488. "mov %4, %%"REG_b" \n\t"
  1489. "push %%"REG_BP" \n\t"
  1490. YSCALEYUV2PACKED1b(%%REGBP, %5)
  1491. WRITEYUY2(%%REGb, 8280(%5), %%REGBP)
  1492. "pop %%"REG_BP" \n\t"
  1493. "mov "ESP_OFFSET"(%5), %%"REG_b" \n\t"
  1494. :: "c" (buf0), "d" (buf1), "S" (uvbuf0), "D" (uvbuf1), "m" (dest),
  1495. "a" (&c->redDither)
  1496. );
  1497. return;
  1498. }
  1499. }
  1500. }
  1501. #endif /* COMPILE_TEMPLATE_MMX */
  1502. if (uvalpha < 2048) {
  1503. YSCALE_YUV_2_ANYRGB_C(YSCALE_YUV_2_RGB1_C, YSCALE_YUV_2_PACKED1_C(void,0), YSCALE_YUV_2_GRAY16_1_C, YSCALE_YUV_2_MONO2_C)
  1504. } else {
  1505. YSCALE_YUV_2_ANYRGB_C(YSCALE_YUV_2_RGB1B_C, YSCALE_YUV_2_PACKED1B_C(void,0), YSCALE_YUV_2_GRAY16_1_C, YSCALE_YUV_2_MONO2_C)
  1506. }
  1507. }
  1508. //FIXME yuy2* can read up to 7 samples too much
  1509. static inline void RENAME(yuy2ToY)(uint8_t *dst, const uint8_t *src, long width, uint32_t *unused)
  1510. {
  1511. #if COMPILE_TEMPLATE_MMX
  1512. __asm__ volatile(
  1513. "movq "MANGLE(bm01010101)", %%mm2 \n\t"
  1514. "mov %0, %%"REG_a" \n\t"
  1515. "1: \n\t"
  1516. "movq (%1, %%"REG_a",2), %%mm0 \n\t"
  1517. "movq 8(%1, %%"REG_a",2), %%mm1 \n\t"
  1518. "pand %%mm2, %%mm0 \n\t"
  1519. "pand %%mm2, %%mm1 \n\t"
  1520. "packuswb %%mm1, %%mm0 \n\t"
  1521. "movq %%mm0, (%2, %%"REG_a") \n\t"
  1522. "add $8, %%"REG_a" \n\t"
  1523. " js 1b \n\t"
  1524. : : "g" ((x86_reg)-width), "r" (src+width*2), "r" (dst+width)
  1525. : "%"REG_a
  1526. );
  1527. #else
  1528. int i;
  1529. for (i=0; i<width; i++)
  1530. dst[i]= src[2*i];
  1531. #endif
  1532. }
  1533. static inline void RENAME(yuy2ToUV)(uint8_t *dstU, uint8_t *dstV, const uint8_t *src1, const uint8_t *src2, long width, uint32_t *unused)
  1534. {
  1535. #if COMPILE_TEMPLATE_MMX
  1536. __asm__ volatile(
  1537. "movq "MANGLE(bm01010101)", %%mm4 \n\t"
  1538. "mov %0, %%"REG_a" \n\t"
  1539. "1: \n\t"
  1540. "movq (%1, %%"REG_a",4), %%mm0 \n\t"
  1541. "movq 8(%1, %%"REG_a",4), %%mm1 \n\t"
  1542. "psrlw $8, %%mm0 \n\t"
  1543. "psrlw $8, %%mm1 \n\t"
  1544. "packuswb %%mm1, %%mm0 \n\t"
  1545. "movq %%mm0, %%mm1 \n\t"
  1546. "psrlw $8, %%mm0 \n\t"
  1547. "pand %%mm4, %%mm1 \n\t"
  1548. "packuswb %%mm0, %%mm0 \n\t"
  1549. "packuswb %%mm1, %%mm1 \n\t"
  1550. "movd %%mm0, (%3, %%"REG_a") \n\t"
  1551. "movd %%mm1, (%2, %%"REG_a") \n\t"
  1552. "add $4, %%"REG_a" \n\t"
  1553. " js 1b \n\t"
  1554. : : "g" ((x86_reg)-width), "r" (src1+width*4), "r" (dstU+width), "r" (dstV+width)
  1555. : "%"REG_a
  1556. );
  1557. #else
  1558. int i;
  1559. for (i=0; i<width; i++) {
  1560. dstU[i]= src1[4*i + 1];
  1561. dstV[i]= src1[4*i + 3];
  1562. }
  1563. #endif
  1564. assert(src1 == src2);
  1565. }
  1566. static inline void RENAME(LEToUV)(uint8_t *dstU, uint8_t *dstV, const uint8_t *src1, const uint8_t *src2, long width, uint32_t *unused)
  1567. {
  1568. #if COMPILE_TEMPLATE_MMX
  1569. __asm__ volatile(
  1570. "mov %0, %%"REG_a" \n\t"
  1571. "1: \n\t"
  1572. "movq (%1, %%"REG_a",2), %%mm0 \n\t"
  1573. "movq 8(%1, %%"REG_a",2), %%mm1 \n\t"
  1574. "movq (%2, %%"REG_a",2), %%mm2 \n\t"
  1575. "movq 8(%2, %%"REG_a",2), %%mm3 \n\t"
  1576. "psrlw $8, %%mm0 \n\t"
  1577. "psrlw $8, %%mm1 \n\t"
  1578. "psrlw $8, %%mm2 \n\t"
  1579. "psrlw $8, %%mm3 \n\t"
  1580. "packuswb %%mm1, %%mm0 \n\t"
  1581. "packuswb %%mm3, %%mm2 \n\t"
  1582. "movq %%mm0, (%3, %%"REG_a") \n\t"
  1583. "movq %%mm2, (%4, %%"REG_a") \n\t"
  1584. "add $8, %%"REG_a" \n\t"
  1585. " js 1b \n\t"
  1586. : : "g" ((x86_reg)-width), "r" (src1+width*2), "r" (src2+width*2), "r" (dstU+width), "r" (dstV+width)
  1587. : "%"REG_a
  1588. );
  1589. #else
  1590. int i;
  1591. for (i=0; i<width; i++) {
  1592. dstU[i]= src1[2*i + 1];
  1593. dstV[i]= src2[2*i + 1];
  1594. }
  1595. #endif
  1596. }
  1597. /* This is almost identical to the previous, end exists only because
  1598. * yuy2ToY/UV)(dst, src+1, ...) would have 100% unaligned accesses. */
  1599. static inline void RENAME(uyvyToY)(uint8_t *dst, const uint8_t *src, long width, uint32_t *unused)
  1600. {
  1601. #if COMPILE_TEMPLATE_MMX
  1602. __asm__ volatile(
  1603. "mov %0, %%"REG_a" \n\t"
  1604. "1: \n\t"
  1605. "movq (%1, %%"REG_a",2), %%mm0 \n\t"
  1606. "movq 8(%1, %%"REG_a",2), %%mm1 \n\t"
  1607. "psrlw $8, %%mm0 \n\t"
  1608. "psrlw $8, %%mm1 \n\t"
  1609. "packuswb %%mm1, %%mm0 \n\t"
  1610. "movq %%mm0, (%2, %%"REG_a") \n\t"
  1611. "add $8, %%"REG_a" \n\t"
  1612. " js 1b \n\t"
  1613. : : "g" ((x86_reg)-width), "r" (src+width*2), "r" (dst+width)
  1614. : "%"REG_a
  1615. );
  1616. #else
  1617. int i;
  1618. for (i=0; i<width; i++)
  1619. dst[i]= src[2*i+1];
  1620. #endif
  1621. }
  1622. static inline void RENAME(uyvyToUV)(uint8_t *dstU, uint8_t *dstV, const uint8_t *src1, const uint8_t *src2, long width, uint32_t *unused)
  1623. {
  1624. #if COMPILE_TEMPLATE_MMX
  1625. __asm__ volatile(
  1626. "movq "MANGLE(bm01010101)", %%mm4 \n\t"
  1627. "mov %0, %%"REG_a" \n\t"
  1628. "1: \n\t"
  1629. "movq (%1, %%"REG_a",4), %%mm0 \n\t"
  1630. "movq 8(%1, %%"REG_a",4), %%mm1 \n\t"
  1631. "pand %%mm4, %%mm0 \n\t"
  1632. "pand %%mm4, %%mm1 \n\t"
  1633. "packuswb %%mm1, %%mm0 \n\t"
  1634. "movq %%mm0, %%mm1 \n\t"
  1635. "psrlw $8, %%mm0 \n\t"
  1636. "pand %%mm4, %%mm1 \n\t"
  1637. "packuswb %%mm0, %%mm0 \n\t"
  1638. "packuswb %%mm1, %%mm1 \n\t"
  1639. "movd %%mm0, (%3, %%"REG_a") \n\t"
  1640. "movd %%mm1, (%2, %%"REG_a") \n\t"
  1641. "add $4, %%"REG_a" \n\t"
  1642. " js 1b \n\t"
  1643. : : "g" ((x86_reg)-width), "r" (src1+width*4), "r" (dstU+width), "r" (dstV+width)
  1644. : "%"REG_a
  1645. );
  1646. #else
  1647. int i;
  1648. for (i=0; i<width; i++) {
  1649. dstU[i]= src1[4*i + 0];
  1650. dstV[i]= src1[4*i + 2];
  1651. }
  1652. #endif
  1653. assert(src1 == src2);
  1654. }
  1655. static inline void RENAME(BEToUV)(uint8_t *dstU, uint8_t *dstV, const uint8_t *src1, const uint8_t *src2, long width, uint32_t *unused)
  1656. {
  1657. #if COMPILE_TEMPLATE_MMX
  1658. __asm__ volatile(
  1659. "movq "MANGLE(bm01010101)", %%mm4 \n\t"
  1660. "mov %0, %%"REG_a" \n\t"
  1661. "1: \n\t"
  1662. "movq (%1, %%"REG_a",2), %%mm0 \n\t"
  1663. "movq 8(%1, %%"REG_a",2), %%mm1 \n\t"
  1664. "movq (%2, %%"REG_a",2), %%mm2 \n\t"
  1665. "movq 8(%2, %%"REG_a",2), %%mm3 \n\t"
  1666. "pand %%mm4, %%mm0 \n\t"
  1667. "pand %%mm4, %%mm1 \n\t"
  1668. "pand %%mm4, %%mm2 \n\t"
  1669. "pand %%mm4, %%mm3 \n\t"
  1670. "packuswb %%mm1, %%mm0 \n\t"
  1671. "packuswb %%mm3, %%mm2 \n\t"
  1672. "movq %%mm0, (%3, %%"REG_a") \n\t"
  1673. "movq %%mm2, (%4, %%"REG_a") \n\t"
  1674. "add $8, %%"REG_a" \n\t"
  1675. " js 1b \n\t"
  1676. : : "g" ((x86_reg)-width), "r" (src1+width*2), "r" (src2+width*2), "r" (dstU+width), "r" (dstV+width)
  1677. : "%"REG_a
  1678. );
  1679. #else
  1680. int i;
  1681. for (i=0; i<width; i++) {
  1682. dstU[i]= src1[2*i];
  1683. dstV[i]= src2[2*i];
  1684. }
  1685. #endif
  1686. }
  1687. #if COMPILE_TEMPLATE_MMX
  1688. static inline void RENAME(bgr24ToY_mmx)(uint8_t *dst, const uint8_t *src, long width, int srcFormat)
  1689. {
  1690. if(srcFormat == PIX_FMT_BGR24) {
  1691. __asm__ volatile(
  1692. "movq "MANGLE(ff_bgr24toY1Coeff)", %%mm5 \n\t"
  1693. "movq "MANGLE(ff_bgr24toY2Coeff)", %%mm6 \n\t"
  1694. :
  1695. );
  1696. } else {
  1697. __asm__ volatile(
  1698. "movq "MANGLE(ff_rgb24toY1Coeff)", %%mm5 \n\t"
  1699. "movq "MANGLE(ff_rgb24toY2Coeff)", %%mm6 \n\t"
  1700. :
  1701. );
  1702. }
  1703. __asm__ volatile(
  1704. "movq "MANGLE(ff_bgr24toYOffset)", %%mm4 \n\t"
  1705. "mov %2, %%"REG_a" \n\t"
  1706. "pxor %%mm7, %%mm7 \n\t"
  1707. "1: \n\t"
  1708. PREFETCH" 64(%0) \n\t"
  1709. "movd (%0), %%mm0 \n\t"
  1710. "movd 2(%0), %%mm1 \n\t"
  1711. "movd 6(%0), %%mm2 \n\t"
  1712. "movd 8(%0), %%mm3 \n\t"
  1713. "add $12, %0 \n\t"
  1714. "punpcklbw %%mm7, %%mm0 \n\t"
  1715. "punpcklbw %%mm7, %%mm1 \n\t"
  1716. "punpcklbw %%mm7, %%mm2 \n\t"
  1717. "punpcklbw %%mm7, %%mm3 \n\t"
  1718. "pmaddwd %%mm5, %%mm0 \n\t"
  1719. "pmaddwd %%mm6, %%mm1 \n\t"
  1720. "pmaddwd %%mm5, %%mm2 \n\t"
  1721. "pmaddwd %%mm6, %%mm3 \n\t"
  1722. "paddd %%mm1, %%mm0 \n\t"
  1723. "paddd %%mm3, %%mm2 \n\t"
  1724. "paddd %%mm4, %%mm0 \n\t"
  1725. "paddd %%mm4, %%mm2 \n\t"
  1726. "psrad $15, %%mm0 \n\t"
  1727. "psrad $15, %%mm2 \n\t"
  1728. "packssdw %%mm2, %%mm0 \n\t"
  1729. "packuswb %%mm0, %%mm0 \n\t"
  1730. "movd %%mm0, (%1, %%"REG_a") \n\t"
  1731. "add $4, %%"REG_a" \n\t"
  1732. " js 1b \n\t"
  1733. : "+r" (src)
  1734. : "r" (dst+width), "g" ((x86_reg)-width)
  1735. : "%"REG_a
  1736. );
  1737. }
  1738. static inline void RENAME(bgr24ToUV_mmx)(uint8_t *dstU, uint8_t *dstV, const uint8_t *src, long width, int srcFormat)
  1739. {
  1740. __asm__ volatile(
  1741. "movq 24+%4, %%mm6 \n\t"
  1742. "mov %3, %%"REG_a" \n\t"
  1743. "pxor %%mm7, %%mm7 \n\t"
  1744. "1: \n\t"
  1745. PREFETCH" 64(%0) \n\t"
  1746. "movd (%0), %%mm0 \n\t"
  1747. "movd 2(%0), %%mm1 \n\t"
  1748. "punpcklbw %%mm7, %%mm0 \n\t"
  1749. "punpcklbw %%mm7, %%mm1 \n\t"
  1750. "movq %%mm0, %%mm2 \n\t"
  1751. "movq %%mm1, %%mm3 \n\t"
  1752. "pmaddwd %4, %%mm0 \n\t"
  1753. "pmaddwd 8+%4, %%mm1 \n\t"
  1754. "pmaddwd 16+%4, %%mm2 \n\t"
  1755. "pmaddwd %%mm6, %%mm3 \n\t"
  1756. "paddd %%mm1, %%mm0 \n\t"
  1757. "paddd %%mm3, %%mm2 \n\t"
  1758. "movd 6(%0), %%mm1 \n\t"
  1759. "movd 8(%0), %%mm3 \n\t"
  1760. "add $12, %0 \n\t"
  1761. "punpcklbw %%mm7, %%mm1 \n\t"
  1762. "punpcklbw %%mm7, %%mm3 \n\t"
  1763. "movq %%mm1, %%mm4 \n\t"
  1764. "movq %%mm3, %%mm5 \n\t"
  1765. "pmaddwd %4, %%mm1 \n\t"
  1766. "pmaddwd 8+%4, %%mm3 \n\t"
  1767. "pmaddwd 16+%4, %%mm4 \n\t"
  1768. "pmaddwd %%mm6, %%mm5 \n\t"
  1769. "paddd %%mm3, %%mm1 \n\t"
  1770. "paddd %%mm5, %%mm4 \n\t"
  1771. "movq "MANGLE(ff_bgr24toUVOffset)", %%mm3 \n\t"
  1772. "paddd %%mm3, %%mm0 \n\t"
  1773. "paddd %%mm3, %%mm2 \n\t"
  1774. "paddd %%mm3, %%mm1 \n\t"
  1775. "paddd %%mm3, %%mm4 \n\t"
  1776. "psrad $15, %%mm0 \n\t"
  1777. "psrad $15, %%mm2 \n\t"
  1778. "psrad $15, %%mm1 \n\t"
  1779. "psrad $15, %%mm4 \n\t"
  1780. "packssdw %%mm1, %%mm0 \n\t"
  1781. "packssdw %%mm4, %%mm2 \n\t"
  1782. "packuswb %%mm0, %%mm0 \n\t"
  1783. "packuswb %%mm2, %%mm2 \n\t"
  1784. "movd %%mm0, (%1, %%"REG_a") \n\t"
  1785. "movd %%mm2, (%2, %%"REG_a") \n\t"
  1786. "add $4, %%"REG_a" \n\t"
  1787. " js 1b \n\t"
  1788. : "+r" (src)
  1789. : "r" (dstU+width), "r" (dstV+width), "g" ((x86_reg)-width), "m"(ff_bgr24toUV[srcFormat == PIX_FMT_RGB24][0])
  1790. : "%"REG_a
  1791. );
  1792. }
  1793. #endif
  1794. static inline void RENAME(bgr24ToY)(uint8_t *dst, const uint8_t *src, long width, uint32_t *unused)
  1795. {
  1796. #if COMPILE_TEMPLATE_MMX
  1797. RENAME(bgr24ToY_mmx)(dst, src, width, PIX_FMT_BGR24);
  1798. #else
  1799. int i;
  1800. for (i=0; i<width; i++) {
  1801. int b= src[i*3+0];
  1802. int g= src[i*3+1];
  1803. int r= src[i*3+2];
  1804. dst[i]= ((RY*r + GY*g + BY*b + (33<<(RGB2YUV_SHIFT-1)))>>RGB2YUV_SHIFT);
  1805. }
  1806. #endif /* COMPILE_TEMPLATE_MMX */
  1807. }
  1808. static inline void RENAME(bgr24ToUV)(uint8_t *dstU, uint8_t *dstV, const uint8_t *src1, const uint8_t *src2, long width, uint32_t *unused)
  1809. {
  1810. #if COMPILE_TEMPLATE_MMX
  1811. RENAME(bgr24ToUV_mmx)(dstU, dstV, src1, width, PIX_FMT_BGR24);
  1812. #else
  1813. int i;
  1814. for (i=0; i<width; i++) {
  1815. int b= src1[3*i + 0];
  1816. int g= src1[3*i + 1];
  1817. int r= src1[3*i + 2];
  1818. dstU[i]= (RU*r + GU*g + BU*b + (257<<(RGB2YUV_SHIFT-1)))>>RGB2YUV_SHIFT;
  1819. dstV[i]= (RV*r + GV*g + BV*b + (257<<(RGB2YUV_SHIFT-1)))>>RGB2YUV_SHIFT;
  1820. }
  1821. #endif /* COMPILE_TEMPLATE_MMX */
  1822. assert(src1 == src2);
  1823. }
  1824. static inline void RENAME(bgr24ToUV_half)(uint8_t *dstU, uint8_t *dstV, const uint8_t *src1, const uint8_t *src2, long width, uint32_t *unused)
  1825. {
  1826. int i;
  1827. for (i=0; i<width; i++) {
  1828. int b= src1[6*i + 0] + src1[6*i + 3];
  1829. int g= src1[6*i + 1] + src1[6*i + 4];
  1830. int r= src1[6*i + 2] + src1[6*i + 5];
  1831. dstU[i]= (RU*r + GU*g + BU*b + (257<<RGB2YUV_SHIFT))>>(RGB2YUV_SHIFT+1);
  1832. dstV[i]= (RV*r + GV*g + BV*b + (257<<RGB2YUV_SHIFT))>>(RGB2YUV_SHIFT+1);
  1833. }
  1834. assert(src1 == src2);
  1835. }
  1836. static inline void RENAME(rgb24ToY)(uint8_t *dst, const uint8_t *src, long width, uint32_t *unused)
  1837. {
  1838. #if COMPILE_TEMPLATE_MMX
  1839. RENAME(bgr24ToY_mmx)(dst, src, width, PIX_FMT_RGB24);
  1840. #else
  1841. int i;
  1842. for (i=0; i<width; i++) {
  1843. int r= src[i*3+0];
  1844. int g= src[i*3+1];
  1845. int b= src[i*3+2];
  1846. dst[i]= ((RY*r + GY*g + BY*b + (33<<(RGB2YUV_SHIFT-1)))>>RGB2YUV_SHIFT);
  1847. }
  1848. #endif
  1849. }
  1850. static inline void RENAME(rgb24ToUV)(uint8_t *dstU, uint8_t *dstV, const uint8_t *src1, const uint8_t *src2, long width, uint32_t *unused)
  1851. {
  1852. #if COMPILE_TEMPLATE_MMX
  1853. assert(src1==src2);
  1854. RENAME(bgr24ToUV_mmx)(dstU, dstV, src1, width, PIX_FMT_RGB24);
  1855. #else
  1856. int i;
  1857. assert(src1==src2);
  1858. for (i=0; i<width; i++) {
  1859. int r= src1[3*i + 0];
  1860. int g= src1[3*i + 1];
  1861. int b= src1[3*i + 2];
  1862. dstU[i]= (RU*r + GU*g + BU*b + (257<<(RGB2YUV_SHIFT-1)))>>RGB2YUV_SHIFT;
  1863. dstV[i]= (RV*r + GV*g + BV*b + (257<<(RGB2YUV_SHIFT-1)))>>RGB2YUV_SHIFT;
  1864. }
  1865. #endif
  1866. }
  1867. static inline void RENAME(rgb24ToUV_half)(uint8_t *dstU, uint8_t *dstV, const uint8_t *src1, const uint8_t *src2, long width, uint32_t *unused)
  1868. {
  1869. int i;
  1870. assert(src1==src2);
  1871. for (i=0; i<width; i++) {
  1872. int r= src1[6*i + 0] + src1[6*i + 3];
  1873. int g= src1[6*i + 1] + src1[6*i + 4];
  1874. int b= src1[6*i + 2] + src1[6*i + 5];
  1875. dstU[i]= (RU*r + GU*g + BU*b + (257<<RGB2YUV_SHIFT))>>(RGB2YUV_SHIFT+1);
  1876. dstV[i]= (RV*r + GV*g + BV*b + (257<<RGB2YUV_SHIFT))>>(RGB2YUV_SHIFT+1);
  1877. }
  1878. }
  1879. // bilinear / bicubic scaling
  1880. static inline void RENAME(hScale)(int16_t *dst, int dstW, const uint8_t *src, int srcW, int xInc,
  1881. const int16_t *filter, const int16_t *filterPos, long filterSize)
  1882. {
  1883. #if COMPILE_TEMPLATE_MMX
  1884. assert(filterSize % 4 == 0 && filterSize>0);
  1885. if (filterSize==4) { // Always true for upscaling, sometimes for down, too.
  1886. x86_reg counter= -2*dstW;
  1887. filter-= counter*2;
  1888. filterPos-= counter/2;
  1889. dst-= counter/2;
  1890. __asm__ volatile(
  1891. #if defined(PIC)
  1892. "push %%"REG_b" \n\t"
  1893. #endif
  1894. "pxor %%mm7, %%mm7 \n\t"
  1895. "push %%"REG_BP" \n\t" // we use 7 regs here ...
  1896. "mov %%"REG_a", %%"REG_BP" \n\t"
  1897. ASMALIGN(4)
  1898. "1: \n\t"
  1899. "movzwl (%2, %%"REG_BP"), %%eax \n\t"
  1900. "movzwl 2(%2, %%"REG_BP"), %%ebx \n\t"
  1901. "movq (%1, %%"REG_BP", 4), %%mm1 \n\t"
  1902. "movq 8(%1, %%"REG_BP", 4), %%mm3 \n\t"
  1903. "movd (%3, %%"REG_a"), %%mm0 \n\t"
  1904. "movd (%3, %%"REG_b"), %%mm2 \n\t"
  1905. "punpcklbw %%mm7, %%mm0 \n\t"
  1906. "punpcklbw %%mm7, %%mm2 \n\t"
  1907. "pmaddwd %%mm1, %%mm0 \n\t"
  1908. "pmaddwd %%mm2, %%mm3 \n\t"
  1909. "movq %%mm0, %%mm4 \n\t"
  1910. "punpckldq %%mm3, %%mm0 \n\t"
  1911. "punpckhdq %%mm3, %%mm4 \n\t"
  1912. "paddd %%mm4, %%mm0 \n\t"
  1913. "psrad $7, %%mm0 \n\t"
  1914. "packssdw %%mm0, %%mm0 \n\t"
  1915. "movd %%mm0, (%4, %%"REG_BP") \n\t"
  1916. "add $4, %%"REG_BP" \n\t"
  1917. " jnc 1b \n\t"
  1918. "pop %%"REG_BP" \n\t"
  1919. #if defined(PIC)
  1920. "pop %%"REG_b" \n\t"
  1921. #endif
  1922. : "+a" (counter)
  1923. : "c" (filter), "d" (filterPos), "S" (src), "D" (dst)
  1924. #if !defined(PIC)
  1925. : "%"REG_b
  1926. #endif
  1927. );
  1928. } else if (filterSize==8) {
  1929. x86_reg counter= -2*dstW;
  1930. filter-= counter*4;
  1931. filterPos-= counter/2;
  1932. dst-= counter/2;
  1933. __asm__ volatile(
  1934. #if defined(PIC)
  1935. "push %%"REG_b" \n\t"
  1936. #endif
  1937. "pxor %%mm7, %%mm7 \n\t"
  1938. "push %%"REG_BP" \n\t" // we use 7 regs here ...
  1939. "mov %%"REG_a", %%"REG_BP" \n\t"
  1940. ASMALIGN(4)
  1941. "1: \n\t"
  1942. "movzwl (%2, %%"REG_BP"), %%eax \n\t"
  1943. "movzwl 2(%2, %%"REG_BP"), %%ebx \n\t"
  1944. "movq (%1, %%"REG_BP", 8), %%mm1 \n\t"
  1945. "movq 16(%1, %%"REG_BP", 8), %%mm3 \n\t"
  1946. "movd (%3, %%"REG_a"), %%mm0 \n\t"
  1947. "movd (%3, %%"REG_b"), %%mm2 \n\t"
  1948. "punpcklbw %%mm7, %%mm0 \n\t"
  1949. "punpcklbw %%mm7, %%mm2 \n\t"
  1950. "pmaddwd %%mm1, %%mm0 \n\t"
  1951. "pmaddwd %%mm2, %%mm3 \n\t"
  1952. "movq 8(%1, %%"REG_BP", 8), %%mm1 \n\t"
  1953. "movq 24(%1, %%"REG_BP", 8), %%mm5 \n\t"
  1954. "movd 4(%3, %%"REG_a"), %%mm4 \n\t"
  1955. "movd 4(%3, %%"REG_b"), %%mm2 \n\t"
  1956. "punpcklbw %%mm7, %%mm4 \n\t"
  1957. "punpcklbw %%mm7, %%mm2 \n\t"
  1958. "pmaddwd %%mm1, %%mm4 \n\t"
  1959. "pmaddwd %%mm2, %%mm5 \n\t"
  1960. "paddd %%mm4, %%mm0 \n\t"
  1961. "paddd %%mm5, %%mm3 \n\t"
  1962. "movq %%mm0, %%mm4 \n\t"
  1963. "punpckldq %%mm3, %%mm0 \n\t"
  1964. "punpckhdq %%mm3, %%mm4 \n\t"
  1965. "paddd %%mm4, %%mm0 \n\t"
  1966. "psrad $7, %%mm0 \n\t"
  1967. "packssdw %%mm0, %%mm0 \n\t"
  1968. "movd %%mm0, (%4, %%"REG_BP") \n\t"
  1969. "add $4, %%"REG_BP" \n\t"
  1970. " jnc 1b \n\t"
  1971. "pop %%"REG_BP" \n\t"
  1972. #if defined(PIC)
  1973. "pop %%"REG_b" \n\t"
  1974. #endif
  1975. : "+a" (counter)
  1976. : "c" (filter), "d" (filterPos), "S" (src), "D" (dst)
  1977. #if !defined(PIC)
  1978. : "%"REG_b
  1979. #endif
  1980. );
  1981. } else {
  1982. uint8_t *offset = src+filterSize;
  1983. x86_reg counter= -2*dstW;
  1984. //filter-= counter*filterSize/2;
  1985. filterPos-= counter/2;
  1986. dst-= counter/2;
  1987. __asm__ volatile(
  1988. "pxor %%mm7, %%mm7 \n\t"
  1989. ASMALIGN(4)
  1990. "1: \n\t"
  1991. "mov %2, %%"REG_c" \n\t"
  1992. "movzwl (%%"REG_c", %0), %%eax \n\t"
  1993. "movzwl 2(%%"REG_c", %0), %%edx \n\t"
  1994. "mov %5, %%"REG_c" \n\t"
  1995. "pxor %%mm4, %%mm4 \n\t"
  1996. "pxor %%mm5, %%mm5 \n\t"
  1997. "2: \n\t"
  1998. "movq (%1), %%mm1 \n\t"
  1999. "movq (%1, %6), %%mm3 \n\t"
  2000. "movd (%%"REG_c", %%"REG_a"), %%mm0 \n\t"
  2001. "movd (%%"REG_c", %%"REG_d"), %%mm2 \n\t"
  2002. "punpcklbw %%mm7, %%mm0 \n\t"
  2003. "punpcklbw %%mm7, %%mm2 \n\t"
  2004. "pmaddwd %%mm1, %%mm0 \n\t"
  2005. "pmaddwd %%mm2, %%mm3 \n\t"
  2006. "paddd %%mm3, %%mm5 \n\t"
  2007. "paddd %%mm0, %%mm4 \n\t"
  2008. "add $8, %1 \n\t"
  2009. "add $4, %%"REG_c" \n\t"
  2010. "cmp %4, %%"REG_c" \n\t"
  2011. " jb 2b \n\t"
  2012. "add %6, %1 \n\t"
  2013. "movq %%mm4, %%mm0 \n\t"
  2014. "punpckldq %%mm5, %%mm4 \n\t"
  2015. "punpckhdq %%mm5, %%mm0 \n\t"
  2016. "paddd %%mm0, %%mm4 \n\t"
  2017. "psrad $7, %%mm4 \n\t"
  2018. "packssdw %%mm4, %%mm4 \n\t"
  2019. "mov %3, %%"REG_a" \n\t"
  2020. "movd %%mm4, (%%"REG_a", %0) \n\t"
  2021. "add $4, %0 \n\t"
  2022. " jnc 1b \n\t"
  2023. : "+r" (counter), "+r" (filter)
  2024. : "m" (filterPos), "m" (dst), "m"(offset),
  2025. "m" (src), "r" ((x86_reg)filterSize*2)
  2026. : "%"REG_a, "%"REG_c, "%"REG_d
  2027. );
  2028. }
  2029. #else
  2030. #if COMPILE_TEMPLATE_ALTIVEC
  2031. hScale_altivec_real(dst, dstW, src, srcW, xInc, filter, filterPos, filterSize);
  2032. #else
  2033. int i;
  2034. for (i=0; i<dstW; i++) {
  2035. int j;
  2036. int srcPos= filterPos[i];
  2037. int val=0;
  2038. //printf("filterPos: %d\n", filterPos[i]);
  2039. for (j=0; j<filterSize; j++) {
  2040. //printf("filter: %d, src: %d\n", filter[i], src[srcPos + j]);
  2041. val += ((int)src[srcPos + j])*filter[filterSize*i + j];
  2042. }
  2043. //filter += hFilterSize;
  2044. dst[i] = FFMIN(val>>7, (1<<15)-1); // the cubic equation does overflow ...
  2045. //dst[i] = val>>7;
  2046. }
  2047. #endif /* COMPILE_ALTIVEC */
  2048. #endif /* COMPILE_MMX */
  2049. }
  2050. #define FAST_BILINEAR_X86 \
  2051. "subl %%edi, %%esi \n\t" /* src[xx+1] - src[xx] */ \
  2052. "imull %%ecx, %%esi \n\t" /* (src[xx+1] - src[xx])*xalpha */ \
  2053. "shll $16, %%edi \n\t" \
  2054. "addl %%edi, %%esi \n\t" /* src[xx+1]*xalpha + src[xx]*(1-xalpha) */ \
  2055. "mov %1, %%"REG_D"\n\t" \
  2056. "shrl $9, %%esi \n\t" \
  2057. static inline void RENAME(hyscale_fast)(SwsContext *c, int16_t *dst,
  2058. int dstWidth, const uint8_t *src, int srcW,
  2059. int xInc)
  2060. {
  2061. int i;
  2062. unsigned int xpos=0;
  2063. for (i=0;i<dstWidth;i++) {
  2064. register unsigned int xx=xpos>>16;
  2065. register unsigned int xalpha=(xpos&0xFFFF)>>9;
  2066. dst[i]= (src[xx]<<7) + (src[xx+1] - src[xx])*xalpha;
  2067. xpos+=xInc;
  2068. }
  2069. }
  2070. // *** horizontal scale Y line to temp buffer
  2071. static inline void RENAME(hyscale)(SwsContext *c, uint16_t *dst, long dstWidth, const uint8_t *src, int srcW, int xInc,
  2072. int flags, const int16_t *hLumFilter,
  2073. const int16_t *hLumFilterPos, int hLumFilterSize,
  2074. int srcFormat, uint8_t *formatConvBuffer,
  2075. uint32_t *pal, int isAlpha)
  2076. {
  2077. int32_t av_unused *mmx2FilterPos = c->lumMmx2FilterPos;
  2078. int16_t av_unused *mmx2Filter = c->lumMmx2Filter;
  2079. int av_unused canMMX2BeUsed = c->canMMX2BeUsed;
  2080. void av_unused *mmx2FilterCode= c->lumMmx2FilterCode;
  2081. void (*internal_func)(uint8_t *, const uint8_t *, long, uint32_t *) = isAlpha ? c->hascale_internal : c->hyscale_internal;
  2082. if (isAlpha) {
  2083. if (srcFormat == PIX_FMT_RGB32 || srcFormat == PIX_FMT_BGR32 )
  2084. src += 3;
  2085. } else {
  2086. if (srcFormat == PIX_FMT_RGB32_1 || srcFormat == PIX_FMT_BGR32_1)
  2087. src += ALT32_CORR;
  2088. }
  2089. if (srcFormat == PIX_FMT_RGB48LE)
  2090. src++;
  2091. if (internal_func) {
  2092. internal_func(formatConvBuffer, src, srcW, pal);
  2093. src= formatConvBuffer;
  2094. }
  2095. #if COMPILE_TEMPLATE_MMX
  2096. // Use the new MMX scaler if the MMX2 one can't be used (it is faster than the x86 ASM one).
  2097. if (!(flags&SWS_FAST_BILINEAR) || (!canMMX2BeUsed))
  2098. #else
  2099. if (!(flags&SWS_FAST_BILINEAR))
  2100. #endif
  2101. {
  2102. c->hScale(dst, dstWidth, src, srcW, xInc, hLumFilter, hLumFilterPos, hLumFilterSize);
  2103. } else { // fast bilinear upscale / crap downscale
  2104. #if ARCH_X86 && CONFIG_GPL
  2105. #if COMPILE_TEMPLATE_MMX2
  2106. int i;
  2107. #if defined(PIC)
  2108. DECLARE_ALIGNED(8, uint64_t, ebxsave);
  2109. #endif
  2110. if (canMMX2BeUsed) {
  2111. __asm__ volatile(
  2112. #if defined(PIC)
  2113. "mov %%"REG_b", %5 \n\t"
  2114. #endif
  2115. "pxor %%mm7, %%mm7 \n\t"
  2116. "mov %0, %%"REG_c" \n\t"
  2117. "mov %1, %%"REG_D" \n\t"
  2118. "mov %2, %%"REG_d" \n\t"
  2119. "mov %3, %%"REG_b" \n\t"
  2120. "xor %%"REG_a", %%"REG_a" \n\t" // i
  2121. PREFETCH" (%%"REG_c") \n\t"
  2122. PREFETCH" 32(%%"REG_c") \n\t"
  2123. PREFETCH" 64(%%"REG_c") \n\t"
  2124. #if ARCH_X86_64
  2125. #define CALL_MMX2_FILTER_CODE \
  2126. "movl (%%"REG_b"), %%esi \n\t"\
  2127. "call *%4 \n\t"\
  2128. "movl (%%"REG_b", %%"REG_a"), %%esi \n\t"\
  2129. "add %%"REG_S", %%"REG_c" \n\t"\
  2130. "add %%"REG_a", %%"REG_D" \n\t"\
  2131. "xor %%"REG_a", %%"REG_a" \n\t"\
  2132. #else
  2133. #define CALL_MMX2_FILTER_CODE \
  2134. "movl (%%"REG_b"), %%esi \n\t"\
  2135. "call *%4 \n\t"\
  2136. "addl (%%"REG_b", %%"REG_a"), %%"REG_c" \n\t"\
  2137. "add %%"REG_a", %%"REG_D" \n\t"\
  2138. "xor %%"REG_a", %%"REG_a" \n\t"\
  2139. #endif /* ARCH_X86_64 */
  2140. CALL_MMX2_FILTER_CODE
  2141. CALL_MMX2_FILTER_CODE
  2142. CALL_MMX2_FILTER_CODE
  2143. CALL_MMX2_FILTER_CODE
  2144. CALL_MMX2_FILTER_CODE
  2145. CALL_MMX2_FILTER_CODE
  2146. CALL_MMX2_FILTER_CODE
  2147. CALL_MMX2_FILTER_CODE
  2148. #if defined(PIC)
  2149. "mov %5, %%"REG_b" \n\t"
  2150. #endif
  2151. :: "m" (src), "m" (dst), "m" (mmx2Filter), "m" (mmx2FilterPos),
  2152. "m" (mmx2FilterCode)
  2153. #if defined(PIC)
  2154. ,"m" (ebxsave)
  2155. #endif
  2156. : "%"REG_a, "%"REG_c, "%"REG_d, "%"REG_S, "%"REG_D
  2157. #if !defined(PIC)
  2158. ,"%"REG_b
  2159. #endif
  2160. );
  2161. for (i=dstWidth-1; (i*xInc)>>16 >=srcW-1; i--) dst[i] = src[srcW-1]*128;
  2162. } else {
  2163. #endif /* COMPILE_TEMPLATE_MMX2 */
  2164. x86_reg xInc_shr16 = xInc >> 16;
  2165. uint16_t xInc_mask = xInc & 0xffff;
  2166. //NO MMX just normal asm ...
  2167. __asm__ volatile(
  2168. "xor %%"REG_a", %%"REG_a" \n\t" // i
  2169. "xor %%"REG_d", %%"REG_d" \n\t" // xx
  2170. "xorl %%ecx, %%ecx \n\t" // xalpha
  2171. ASMALIGN(4)
  2172. "1: \n\t"
  2173. "movzbl (%0, %%"REG_d"), %%edi \n\t" //src[xx]
  2174. "movzbl 1(%0, %%"REG_d"), %%esi \n\t" //src[xx+1]
  2175. FAST_BILINEAR_X86
  2176. "movw %%si, (%%"REG_D", %%"REG_a", 2) \n\t"
  2177. "addw %4, %%cx \n\t" //xalpha += xInc&0xFFFF
  2178. "adc %3, %%"REG_d" \n\t" //xx+= xInc>>16 + carry
  2179. "movzbl (%0, %%"REG_d"), %%edi \n\t" //src[xx]
  2180. "movzbl 1(%0, %%"REG_d"), %%esi \n\t" //src[xx+1]
  2181. FAST_BILINEAR_X86
  2182. "movw %%si, 2(%%"REG_D", %%"REG_a", 2) \n\t"
  2183. "addw %4, %%cx \n\t" //xalpha += xInc&0xFFFF
  2184. "adc %3, %%"REG_d" \n\t" //xx+= xInc>>16 + carry
  2185. "add $2, %%"REG_a" \n\t"
  2186. "cmp %2, %%"REG_a" \n\t"
  2187. " jb 1b \n\t"
  2188. :: "r" (src), "m" (dst), "m" (dstWidth), "m" (xInc_shr16), "m" (xInc_mask)
  2189. : "%"REG_a, "%"REG_d, "%ecx", "%"REG_D, "%esi"
  2190. );
  2191. #if COMPILE_TEMPLATE_MMX2
  2192. } //if MMX2 can't be used
  2193. #endif
  2194. #else
  2195. c->hyscale_fast(c, dst, dstWidth, src, srcW, xInc);
  2196. #endif /* ARCH_X86 */
  2197. }
  2198. if(!isAlpha && c->srcRange != c->dstRange && !(isRGB(c->dstFormat) || isBGR(c->dstFormat))) {
  2199. int i;
  2200. //FIXME all pal and rgb srcFormats could do this convertion as well
  2201. //FIXME all scalers more complex than bilinear could do half of this transform
  2202. if(c->srcRange) {
  2203. for (i=0; i<dstWidth; i++)
  2204. dst[i]= (dst[i]*14071 + 33561947)>>14;
  2205. } else {
  2206. for (i=0; i<dstWidth; i++)
  2207. dst[i]= (FFMIN(dst[i],30189)*19077 - 39057361)>>14;
  2208. }
  2209. }
  2210. }
  2211. static inline void RENAME(hcscale_fast)(SwsContext *c, int16_t *dst,
  2212. int dstWidth, const uint8_t *src1,
  2213. const uint8_t *src2, int srcW, int xInc)
  2214. {
  2215. int i;
  2216. unsigned int xpos=0;
  2217. for (i=0;i<dstWidth;i++) {
  2218. register unsigned int xx=xpos>>16;
  2219. register unsigned int xalpha=(xpos&0xFFFF)>>9;
  2220. dst[i]=(src1[xx]*(xalpha^127)+src1[xx+1]*xalpha);
  2221. dst[i+VOFW]=(src2[xx]*(xalpha^127)+src2[xx+1]*xalpha);
  2222. /* slower
  2223. dst[i]= (src1[xx]<<7) + (src1[xx+1] - src1[xx])*xalpha;
  2224. dst[i+VOFW]=(src2[xx]<<7) + (src2[xx+1] - src2[xx])*xalpha;
  2225. */
  2226. xpos+=xInc;
  2227. }
  2228. }
  2229. inline static void RENAME(hcscale)(SwsContext *c, uint16_t *dst, long dstWidth, const uint8_t *src1, const uint8_t *src2,
  2230. int srcW, int xInc, int flags, const int16_t *hChrFilter,
  2231. const int16_t *hChrFilterPos, int hChrFilterSize,
  2232. int srcFormat, uint8_t *formatConvBuffer,
  2233. uint32_t *pal)
  2234. {
  2235. int32_t av_unused *mmx2FilterPos = c->chrMmx2FilterPos;
  2236. int16_t av_unused *mmx2Filter = c->chrMmx2Filter;
  2237. int av_unused canMMX2BeUsed = c->canMMX2BeUsed;
  2238. void av_unused *mmx2FilterCode= c->chrMmx2FilterCode;
  2239. if (isGray(srcFormat) || srcFormat==PIX_FMT_MONOBLACK || srcFormat==PIX_FMT_MONOWHITE)
  2240. return;
  2241. if (srcFormat==PIX_FMT_RGB32_1 || srcFormat==PIX_FMT_BGR32_1) {
  2242. src1 += ALT32_CORR;
  2243. src2 += ALT32_CORR;
  2244. }
  2245. if (srcFormat==PIX_FMT_RGB48LE) {
  2246. src1++;
  2247. src2++;
  2248. }
  2249. if (c->hcscale_internal) {
  2250. c->hcscale_internal(formatConvBuffer, formatConvBuffer+VOFW, src1, src2, srcW, pal);
  2251. src1= formatConvBuffer;
  2252. src2= formatConvBuffer+VOFW;
  2253. }
  2254. #if COMPILE_TEMPLATE_MMX
  2255. // Use the new MMX scaler if the MMX2 one can't be used (it is faster than the x86 ASM one).
  2256. if (!(flags&SWS_FAST_BILINEAR) || (!canMMX2BeUsed))
  2257. #else
  2258. if (!(flags&SWS_FAST_BILINEAR))
  2259. #endif
  2260. {
  2261. c->hScale(dst , dstWidth, src1, srcW, xInc, hChrFilter, hChrFilterPos, hChrFilterSize);
  2262. c->hScale(dst+VOFW, dstWidth, src2, srcW, xInc, hChrFilter, hChrFilterPos, hChrFilterSize);
  2263. } else { // fast bilinear upscale / crap downscale
  2264. #if ARCH_X86 && CONFIG_GPL
  2265. #if COMPILE_TEMPLATE_MMX2
  2266. int i;
  2267. #if defined(PIC)
  2268. DECLARE_ALIGNED(8, uint64_t, ebxsave);
  2269. #endif
  2270. if (canMMX2BeUsed) {
  2271. __asm__ volatile(
  2272. #if defined(PIC)
  2273. "mov %%"REG_b", %6 \n\t"
  2274. #endif
  2275. "pxor %%mm7, %%mm7 \n\t"
  2276. "mov %0, %%"REG_c" \n\t"
  2277. "mov %1, %%"REG_D" \n\t"
  2278. "mov %2, %%"REG_d" \n\t"
  2279. "mov %3, %%"REG_b" \n\t"
  2280. "xor %%"REG_a", %%"REG_a" \n\t" // i
  2281. PREFETCH" (%%"REG_c") \n\t"
  2282. PREFETCH" 32(%%"REG_c") \n\t"
  2283. PREFETCH" 64(%%"REG_c") \n\t"
  2284. CALL_MMX2_FILTER_CODE
  2285. CALL_MMX2_FILTER_CODE
  2286. CALL_MMX2_FILTER_CODE
  2287. CALL_MMX2_FILTER_CODE
  2288. "xor %%"REG_a", %%"REG_a" \n\t" // i
  2289. "mov %5, %%"REG_c" \n\t" // src
  2290. "mov %1, %%"REG_D" \n\t" // buf1
  2291. "add $"AV_STRINGIFY(VOF)", %%"REG_D" \n\t"
  2292. PREFETCH" (%%"REG_c") \n\t"
  2293. PREFETCH" 32(%%"REG_c") \n\t"
  2294. PREFETCH" 64(%%"REG_c") \n\t"
  2295. CALL_MMX2_FILTER_CODE
  2296. CALL_MMX2_FILTER_CODE
  2297. CALL_MMX2_FILTER_CODE
  2298. CALL_MMX2_FILTER_CODE
  2299. #if defined(PIC)
  2300. "mov %6, %%"REG_b" \n\t"
  2301. #endif
  2302. :: "m" (src1), "m" (dst), "m" (mmx2Filter), "m" (mmx2FilterPos),
  2303. "m" (mmx2FilterCode), "m" (src2)
  2304. #if defined(PIC)
  2305. ,"m" (ebxsave)
  2306. #endif
  2307. : "%"REG_a, "%"REG_c, "%"REG_d, "%"REG_S, "%"REG_D
  2308. #if !defined(PIC)
  2309. ,"%"REG_b
  2310. #endif
  2311. );
  2312. for (i=dstWidth-1; (i*xInc)>>16 >=srcW-1; i--) {
  2313. //printf("%d %d %d\n", dstWidth, i, srcW);
  2314. dst[i] = src1[srcW-1]*128;
  2315. dst[i+VOFW] = src2[srcW-1]*128;
  2316. }
  2317. } else {
  2318. #endif /* COMPILE_TEMPLATE_MMX2 */
  2319. x86_reg xInc_shr16 = (x86_reg) (xInc >> 16);
  2320. uint16_t xInc_mask = xInc & 0xffff;
  2321. __asm__ volatile(
  2322. "xor %%"REG_a", %%"REG_a" \n\t" // i
  2323. "xor %%"REG_d", %%"REG_d" \n\t" // xx
  2324. "xorl %%ecx, %%ecx \n\t" // xalpha
  2325. ASMALIGN(4)
  2326. "1: \n\t"
  2327. "mov %0, %%"REG_S" \n\t"
  2328. "movzbl (%%"REG_S", %%"REG_d"), %%edi \n\t" //src[xx]
  2329. "movzbl 1(%%"REG_S", %%"REG_d"), %%esi \n\t" //src[xx+1]
  2330. FAST_BILINEAR_X86
  2331. "movw %%si, (%%"REG_D", %%"REG_a", 2) \n\t"
  2332. "movzbl (%5, %%"REG_d"), %%edi \n\t" //src[xx]
  2333. "movzbl 1(%5, %%"REG_d"), %%esi \n\t" //src[xx+1]
  2334. FAST_BILINEAR_X86
  2335. "movw %%si, "AV_STRINGIFY(VOF)"(%%"REG_D", %%"REG_a", 2) \n\t"
  2336. "addw %4, %%cx \n\t" //xalpha += xInc&0xFFFF
  2337. "adc %3, %%"REG_d" \n\t" //xx+= xInc>>16 + carry
  2338. "add $1, %%"REG_a" \n\t"
  2339. "cmp %2, %%"REG_a" \n\t"
  2340. " jb 1b \n\t"
  2341. /* GCC 3.3 makes MPlayer crash on IA-32 machines when using "g" operand here,
  2342. which is needed to support GCC 4.0. */
  2343. #if ARCH_X86_64 && ((__GNUC__ > 3) || (__GNUC__ == 3 && __GNUC_MINOR__ >= 4))
  2344. :: "m" (src1), "m" (dst), "g" (dstWidth), "m" (xInc_shr16), "m" (xInc_mask),
  2345. #else
  2346. :: "m" (src1), "m" (dst), "m" (dstWidth), "m" (xInc_shr16), "m" (xInc_mask),
  2347. #endif
  2348. "r" (src2)
  2349. : "%"REG_a, "%"REG_d, "%ecx", "%"REG_D, "%esi"
  2350. );
  2351. #if COMPILE_TEMPLATE_MMX2
  2352. } //if MMX2 can't be used
  2353. #endif
  2354. #else
  2355. c->hcscale_fast(c, dst, dstWidth, src1, src2, srcW, xInc);
  2356. #endif /* ARCH_X86 */
  2357. }
  2358. if(c->srcRange != c->dstRange && !(isRGB(c->dstFormat) || isBGR(c->dstFormat))) {
  2359. int i;
  2360. //FIXME all pal and rgb srcFormats could do this convertion as well
  2361. //FIXME all scalers more complex than bilinear could do half of this transform
  2362. if(c->srcRange) {
  2363. for (i=0; i<dstWidth; i++) {
  2364. dst[i ]= (dst[i ]*1799 + 4081085)>>11; //1469
  2365. dst[i+VOFW]= (dst[i+VOFW]*1799 + 4081085)>>11; //1469
  2366. }
  2367. } else {
  2368. for (i=0; i<dstWidth; i++) {
  2369. dst[i ]= (FFMIN(dst[i ],30775)*4663 - 9289992)>>12; //-264
  2370. dst[i+VOFW]= (FFMIN(dst[i+VOFW],30775)*4663 - 9289992)>>12; //-264
  2371. }
  2372. }
  2373. }
  2374. }
  2375. static int RENAME(swScale)(SwsContext *c, uint8_t* src[], int srcStride[], int srcSliceY,
  2376. int srcSliceH, uint8_t* dst[], int dstStride[])
  2377. {
  2378. /* load a few things into local vars to make the code more readable? and faster */
  2379. const int srcW= c->srcW;
  2380. const int dstW= c->dstW;
  2381. const int dstH= c->dstH;
  2382. const int chrDstW= c->chrDstW;
  2383. const int chrSrcW= c->chrSrcW;
  2384. const int lumXInc= c->lumXInc;
  2385. const int chrXInc= c->chrXInc;
  2386. const int dstFormat= c->dstFormat;
  2387. const int srcFormat= c->srcFormat;
  2388. const int flags= c->flags;
  2389. int16_t *vLumFilterPos= c->vLumFilterPos;
  2390. int16_t *vChrFilterPos= c->vChrFilterPos;
  2391. int16_t *hLumFilterPos= c->hLumFilterPos;
  2392. int16_t *hChrFilterPos= c->hChrFilterPos;
  2393. int16_t *vLumFilter= c->vLumFilter;
  2394. int16_t *vChrFilter= c->vChrFilter;
  2395. int16_t *hLumFilter= c->hLumFilter;
  2396. int16_t *hChrFilter= c->hChrFilter;
  2397. int32_t *lumMmxFilter= c->lumMmxFilter;
  2398. int32_t *chrMmxFilter= c->chrMmxFilter;
  2399. int32_t *alpMmxFilter= c->alpMmxFilter;
  2400. const int vLumFilterSize= c->vLumFilterSize;
  2401. const int vChrFilterSize= c->vChrFilterSize;
  2402. const int hLumFilterSize= c->hLumFilterSize;
  2403. const int hChrFilterSize= c->hChrFilterSize;
  2404. int16_t **lumPixBuf= c->lumPixBuf;
  2405. int16_t **chrPixBuf= c->chrPixBuf;
  2406. int16_t **alpPixBuf= c->alpPixBuf;
  2407. const int vLumBufSize= c->vLumBufSize;
  2408. const int vChrBufSize= c->vChrBufSize;
  2409. uint8_t *formatConvBuffer= c->formatConvBuffer;
  2410. const int chrSrcSliceY= srcSliceY >> c->chrSrcVSubSample;
  2411. const int chrSrcSliceH= -((-srcSliceH) >> c->chrSrcVSubSample);
  2412. int lastDstY;
  2413. uint32_t *pal=c->pal_yuv;
  2414. /* vars which will change and which we need to store back in the context */
  2415. int dstY= c->dstY;
  2416. int lumBufIndex= c->lumBufIndex;
  2417. int chrBufIndex= c->chrBufIndex;
  2418. int lastInLumBuf= c->lastInLumBuf;
  2419. int lastInChrBuf= c->lastInChrBuf;
  2420. if (isPacked(c->srcFormat)) {
  2421. src[0]=
  2422. src[1]=
  2423. src[2]=
  2424. src[3]= src[0];
  2425. srcStride[0]=
  2426. srcStride[1]=
  2427. srcStride[2]=
  2428. srcStride[3]= srcStride[0];
  2429. }
  2430. srcStride[1]<<= c->vChrDrop;
  2431. srcStride[2]<<= c->vChrDrop;
  2432. //printf("swscale %X %X %X -> %X %X %X\n", (int)src[0], (int)src[1], (int)src[2],
  2433. // (int)dst[0], (int)dst[1], (int)dst[2]);
  2434. //printf("sws Strides:%d %d %d -> %d %d %d\n", srcStride[0],srcStride[1],srcStride[2],
  2435. //dstStride[0],dstStride[1],dstStride[2]);
  2436. if (dstStride[0]%8 !=0 || dstStride[1]%8 !=0 || dstStride[2]%8 !=0 || dstStride[3]%8 != 0) {
  2437. static int warnedAlready=0; //FIXME move this into the context perhaps
  2438. if (flags & SWS_PRINT_INFO && !warnedAlready) {
  2439. av_log(c, AV_LOG_WARNING, "Warning: dstStride is not aligned!\n"
  2440. " ->cannot do aligned memory accesses anymore\n");
  2441. warnedAlready=1;
  2442. }
  2443. }
  2444. /* Note the user might start scaling the picture in the middle so this
  2445. will not get executed. This is not really intended but works
  2446. currently, so people might do it. */
  2447. if (srcSliceY ==0) {
  2448. lumBufIndex=0;
  2449. chrBufIndex=0;
  2450. dstY=0;
  2451. lastInLumBuf= -1;
  2452. lastInChrBuf= -1;
  2453. }
  2454. lastDstY= dstY;
  2455. for (;dstY < dstH; dstY++) {
  2456. unsigned char *dest =dst[0]+dstStride[0]*dstY;
  2457. const int chrDstY= dstY>>c->chrDstVSubSample;
  2458. unsigned char *uDest=dst[1]+dstStride[1]*chrDstY;
  2459. unsigned char *vDest=dst[2]+dstStride[2]*chrDstY;
  2460. unsigned char *aDest=(CONFIG_SWSCALE_ALPHA && alpPixBuf) ? dst[3]+dstStride[3]*dstY : NULL;
  2461. const int firstLumSrcY= vLumFilterPos[dstY]; //First line needed as input
  2462. const int firstChrSrcY= vChrFilterPos[chrDstY]; //First line needed as input
  2463. int lastLumSrcY= firstLumSrcY + vLumFilterSize -1; // Last line needed as input
  2464. int lastChrSrcY= firstChrSrcY + vChrFilterSize -1; // Last line needed as input
  2465. int enough_lines;
  2466. //printf("dstY:%d dstH:%d firstLumSrcY:%d lastInLumBuf:%d vLumBufSize: %d vChrBufSize: %d slice: %d %d vLumFilterSize: %d firstChrSrcY: %d vChrFilterSize: %d c->chrSrcVSubSample: %d\n",
  2467. // dstY, dstH, firstLumSrcY, lastInLumBuf, vLumBufSize, vChrBufSize, srcSliceY, srcSliceH, vLumFilterSize, firstChrSrcY, vChrFilterSize, c->chrSrcVSubSample);
  2468. //handle holes (FAST_BILINEAR & weird filters)
  2469. if (firstLumSrcY > lastInLumBuf) lastInLumBuf= firstLumSrcY-1;
  2470. if (firstChrSrcY > lastInChrBuf) lastInChrBuf= firstChrSrcY-1;
  2471. //printf("%d %d %d\n", firstChrSrcY, lastInChrBuf, vChrBufSize);
  2472. assert(firstLumSrcY >= lastInLumBuf - vLumBufSize + 1);
  2473. assert(firstChrSrcY >= lastInChrBuf - vChrBufSize + 1);
  2474. // Do we have enough lines in this slice to output the dstY line
  2475. enough_lines = lastLumSrcY < srcSliceY + srcSliceH && lastChrSrcY < -((-srcSliceY - srcSliceH)>>c->chrSrcVSubSample);
  2476. if (!enough_lines) {
  2477. lastLumSrcY = srcSliceY + srcSliceH - 1;
  2478. lastChrSrcY = chrSrcSliceY + chrSrcSliceH - 1;
  2479. }
  2480. /* printf("%d %d Last:%d %d LastInBuf:%d %d Index:%d %d Y:%d FSize: %d %d BSize: %d %d\n",
  2481. firstChrSrcY,firstLumSrcY,lastChrSrcY,lastLumSrcY,
  2482. lastInChrBuf,lastInLumBuf,chrBufIndex,lumBufIndex,dstY,vChrFilterSize,vLumFilterSize,
  2483. vChrBufSize, vLumBufSize);*/
  2484. //Do horizontal scaling
  2485. while(lastInLumBuf < lastLumSrcY) {
  2486. uint8_t *src1= src[0]+(lastInLumBuf + 1 - srcSliceY)*srcStride[0];
  2487. uint8_t *src2= src[3]+(lastInLumBuf + 1 - srcSliceY)*srcStride[3];
  2488. lumBufIndex++;
  2489. //printf("%d %d %d %d\n", lumBufIndex, vLumBufSize, lastInLumBuf, lastLumSrcY);
  2490. assert(lumBufIndex < 2*vLumBufSize);
  2491. assert(lastInLumBuf + 1 - srcSliceY < srcSliceH);
  2492. assert(lastInLumBuf + 1 - srcSliceY >= 0);
  2493. //printf("%d %d\n", lumBufIndex, vLumBufSize);
  2494. RENAME(hyscale)(c, lumPixBuf[ lumBufIndex ], dstW, src1, srcW, lumXInc,
  2495. flags, hLumFilter, hLumFilterPos, hLumFilterSize,
  2496. c->srcFormat, formatConvBuffer,
  2497. pal, 0);
  2498. if (CONFIG_SWSCALE_ALPHA && alpPixBuf)
  2499. RENAME(hyscale)(c, alpPixBuf[ lumBufIndex ], dstW, src2, srcW, lumXInc,
  2500. flags, hLumFilter, hLumFilterPos, hLumFilterSize,
  2501. c->srcFormat, formatConvBuffer,
  2502. pal, 1);
  2503. lastInLumBuf++;
  2504. }
  2505. while(lastInChrBuf < lastChrSrcY) {
  2506. uint8_t *src1= src[1]+(lastInChrBuf + 1 - chrSrcSliceY)*srcStride[1];
  2507. uint8_t *src2= src[2]+(lastInChrBuf + 1 - chrSrcSliceY)*srcStride[2];
  2508. chrBufIndex++;
  2509. assert(chrBufIndex < 2*vChrBufSize);
  2510. assert(lastInChrBuf + 1 - chrSrcSliceY < (chrSrcSliceH));
  2511. assert(lastInChrBuf + 1 - chrSrcSliceY >= 0);
  2512. //FIXME replace parameters through context struct (some at least)
  2513. if (!(isGray(srcFormat) || isGray(dstFormat)))
  2514. RENAME(hcscale)(c, chrPixBuf[ chrBufIndex ], chrDstW, src1, src2, chrSrcW, chrXInc,
  2515. flags, hChrFilter, hChrFilterPos, hChrFilterSize,
  2516. c->srcFormat, formatConvBuffer,
  2517. pal);
  2518. lastInChrBuf++;
  2519. }
  2520. //wrap buf index around to stay inside the ring buffer
  2521. if (lumBufIndex >= vLumBufSize) lumBufIndex-= vLumBufSize;
  2522. if (chrBufIndex >= vChrBufSize) chrBufIndex-= vChrBufSize;
  2523. if (!enough_lines)
  2524. break; //we can't output a dstY line so let's try with the next slice
  2525. #if COMPILE_TEMPLATE_MMX
  2526. c->blueDither= ff_dither8[dstY&1];
  2527. if (c->dstFormat == PIX_FMT_RGB555 || c->dstFormat == PIX_FMT_BGR555)
  2528. c->greenDither= ff_dither8[dstY&1];
  2529. else
  2530. c->greenDither= ff_dither4[dstY&1];
  2531. c->redDither= ff_dither8[(dstY+1)&1];
  2532. #endif
  2533. if (dstY < dstH-2) {
  2534. const int16_t **lumSrcPtr= (const int16_t **) lumPixBuf + lumBufIndex + firstLumSrcY - lastInLumBuf + vLumBufSize;
  2535. const int16_t **chrSrcPtr= (const int16_t **) chrPixBuf + chrBufIndex + firstChrSrcY - lastInChrBuf + vChrBufSize;
  2536. const int16_t **alpSrcPtr= (CONFIG_SWSCALE_ALPHA && alpPixBuf) ? (const int16_t **) alpPixBuf + lumBufIndex + firstLumSrcY - lastInLumBuf + vLumBufSize : NULL;
  2537. #if COMPILE_TEMPLATE_MMX
  2538. int i;
  2539. if (flags & SWS_ACCURATE_RND) {
  2540. int s= APCK_SIZE / 8;
  2541. for (i=0; i<vLumFilterSize; i+=2) {
  2542. *(void**)&lumMmxFilter[s*i ]= lumSrcPtr[i ];
  2543. *(void**)&lumMmxFilter[s*i+APCK_PTR2/4 ]= lumSrcPtr[i+(vLumFilterSize>1)];
  2544. lumMmxFilter[s*i+APCK_COEF/4 ]=
  2545. lumMmxFilter[s*i+APCK_COEF/4+1]= vLumFilter[dstY*vLumFilterSize + i ]
  2546. + (vLumFilterSize>1 ? vLumFilter[dstY*vLumFilterSize + i + 1]<<16 : 0);
  2547. if (CONFIG_SWSCALE_ALPHA && alpPixBuf) {
  2548. *(void**)&alpMmxFilter[s*i ]= alpSrcPtr[i ];
  2549. *(void**)&alpMmxFilter[s*i+APCK_PTR2/4 ]= alpSrcPtr[i+(vLumFilterSize>1)];
  2550. alpMmxFilter[s*i+APCK_COEF/4 ]=
  2551. alpMmxFilter[s*i+APCK_COEF/4+1]= lumMmxFilter[s*i+APCK_COEF/4 ];
  2552. }
  2553. }
  2554. for (i=0; i<vChrFilterSize; i+=2) {
  2555. *(void**)&chrMmxFilter[s*i ]= chrSrcPtr[i ];
  2556. *(void**)&chrMmxFilter[s*i+APCK_PTR2/4 ]= chrSrcPtr[i+(vChrFilterSize>1)];
  2557. chrMmxFilter[s*i+APCK_COEF/4 ]=
  2558. chrMmxFilter[s*i+APCK_COEF/4+1]= vChrFilter[chrDstY*vChrFilterSize + i ]
  2559. + (vChrFilterSize>1 ? vChrFilter[chrDstY*vChrFilterSize + i + 1]<<16 : 0);
  2560. }
  2561. } else {
  2562. for (i=0; i<vLumFilterSize; i++) {
  2563. lumMmxFilter[4*i+0]= (int32_t)lumSrcPtr[i];
  2564. lumMmxFilter[4*i+1]= (uint64_t)lumSrcPtr[i] >> 32;
  2565. lumMmxFilter[4*i+2]=
  2566. lumMmxFilter[4*i+3]=
  2567. ((uint16_t)vLumFilter[dstY*vLumFilterSize + i])*0x10001;
  2568. if (CONFIG_SWSCALE_ALPHA && alpPixBuf) {
  2569. alpMmxFilter[4*i+0]= (int32_t)alpSrcPtr[i];
  2570. alpMmxFilter[4*i+1]= (uint64_t)alpSrcPtr[i] >> 32;
  2571. alpMmxFilter[4*i+2]=
  2572. alpMmxFilter[4*i+3]= lumMmxFilter[4*i+2];
  2573. }
  2574. }
  2575. for (i=0; i<vChrFilterSize; i++) {
  2576. chrMmxFilter[4*i+0]= (int32_t)chrSrcPtr[i];
  2577. chrMmxFilter[4*i+1]= (uint64_t)chrSrcPtr[i] >> 32;
  2578. chrMmxFilter[4*i+2]=
  2579. chrMmxFilter[4*i+3]=
  2580. ((uint16_t)vChrFilter[chrDstY*vChrFilterSize + i])*0x10001;
  2581. }
  2582. }
  2583. #endif
  2584. if (dstFormat == PIX_FMT_NV12 || dstFormat == PIX_FMT_NV21) {
  2585. const int chrSkipMask= (1<<c->chrDstVSubSample)-1;
  2586. if (dstY&chrSkipMask) uDest= NULL; //FIXME split functions in lumi / chromi
  2587. c->yuv2nv12X(c,
  2588. vLumFilter+dstY*vLumFilterSize , lumSrcPtr, vLumFilterSize,
  2589. vChrFilter+chrDstY*vChrFilterSize, chrSrcPtr, vChrFilterSize,
  2590. dest, uDest, dstW, chrDstW, dstFormat);
  2591. } else if (isPlanarYUV(dstFormat) || dstFormat==PIX_FMT_GRAY8) { //YV12 like
  2592. const int chrSkipMask= (1<<c->chrDstVSubSample)-1;
  2593. if ((dstY&chrSkipMask) || isGray(dstFormat)) uDest=vDest= NULL; //FIXME split functions in lumi / chromi
  2594. if (is16BPS(dstFormat)) {
  2595. yuv2yuvX16inC(
  2596. vLumFilter+dstY*vLumFilterSize , lumSrcPtr, vLumFilterSize,
  2597. vChrFilter+chrDstY*vChrFilterSize, chrSrcPtr, vChrFilterSize,
  2598. alpSrcPtr, (uint16_t *) dest, (uint16_t *) uDest, (uint16_t *) vDest, (uint16_t *) aDest, dstW, chrDstW,
  2599. dstFormat);
  2600. } else if (vLumFilterSize == 1 && vChrFilterSize == 1) { // unscaled YV12
  2601. int16_t *lumBuf = lumPixBuf[0];
  2602. int16_t *chrBuf= chrPixBuf[0];
  2603. int16_t *alpBuf= (CONFIG_SWSCALE_ALPHA && alpPixBuf) ? alpPixBuf[0] : NULL;
  2604. c->yuv2yuv1(c, lumBuf, chrBuf, alpBuf, dest, uDest, vDest, aDest, dstW, chrDstW);
  2605. } else { //General YV12
  2606. c->yuv2yuvX(c,
  2607. vLumFilter+dstY*vLumFilterSize , lumSrcPtr, vLumFilterSize,
  2608. vChrFilter+chrDstY*vChrFilterSize, chrSrcPtr, vChrFilterSize,
  2609. alpSrcPtr, dest, uDest, vDest, aDest, dstW, chrDstW);
  2610. }
  2611. } else {
  2612. assert(lumSrcPtr + vLumFilterSize - 1 < lumPixBuf + vLumBufSize*2);
  2613. assert(chrSrcPtr + vChrFilterSize - 1 < chrPixBuf + vChrBufSize*2);
  2614. if (vLumFilterSize == 1 && vChrFilterSize == 2) { //unscaled RGB
  2615. int chrAlpha= vChrFilter[2*dstY+1];
  2616. if(flags & SWS_FULL_CHR_H_INT) {
  2617. yuv2rgbXinC_full(c, //FIXME write a packed1_full function
  2618. vLumFilter+dstY*vLumFilterSize, lumSrcPtr, vLumFilterSize,
  2619. vChrFilter+dstY*vChrFilterSize, chrSrcPtr, vChrFilterSize,
  2620. alpSrcPtr, dest, dstW, dstY);
  2621. } else {
  2622. c->yuv2packed1(c, *lumSrcPtr, *chrSrcPtr, *(chrSrcPtr+1),
  2623. alpPixBuf ? *alpSrcPtr : NULL,
  2624. dest, dstW, chrAlpha, dstFormat, flags, dstY);
  2625. }
  2626. } else if (vLumFilterSize == 2 && vChrFilterSize == 2) { //bilinear upscale RGB
  2627. int lumAlpha= vLumFilter[2*dstY+1];
  2628. int chrAlpha= vChrFilter[2*dstY+1];
  2629. lumMmxFilter[2]=
  2630. lumMmxFilter[3]= vLumFilter[2*dstY ]*0x10001;
  2631. chrMmxFilter[2]=
  2632. chrMmxFilter[3]= vChrFilter[2*chrDstY]*0x10001;
  2633. if(flags & SWS_FULL_CHR_H_INT) {
  2634. yuv2rgbXinC_full(c, //FIXME write a packed2_full function
  2635. vLumFilter+dstY*vLumFilterSize, lumSrcPtr, vLumFilterSize,
  2636. vChrFilter+dstY*vChrFilterSize, chrSrcPtr, vChrFilterSize,
  2637. alpSrcPtr, dest, dstW, dstY);
  2638. } else {
  2639. c->yuv2packed2(c, *lumSrcPtr, *(lumSrcPtr+1), *chrSrcPtr, *(chrSrcPtr+1),
  2640. alpPixBuf ? *alpSrcPtr : NULL, alpPixBuf ? *(alpSrcPtr+1) : NULL,
  2641. dest, dstW, lumAlpha, chrAlpha, dstY);
  2642. }
  2643. } else { //general RGB
  2644. if(flags & SWS_FULL_CHR_H_INT) {
  2645. yuv2rgbXinC_full(c,
  2646. vLumFilter+dstY*vLumFilterSize, lumSrcPtr, vLumFilterSize,
  2647. vChrFilter+dstY*vChrFilterSize, chrSrcPtr, vChrFilterSize,
  2648. alpSrcPtr, dest, dstW, dstY);
  2649. } else {
  2650. c->yuv2packedX(c,
  2651. vLumFilter+dstY*vLumFilterSize, lumSrcPtr, vLumFilterSize,
  2652. vChrFilter+dstY*vChrFilterSize, chrSrcPtr, vChrFilterSize,
  2653. alpSrcPtr, dest, dstW, dstY);
  2654. }
  2655. }
  2656. }
  2657. } else { // hmm looks like we can't use MMX here without overwriting this array's tail
  2658. const int16_t **lumSrcPtr= (const int16_t **)lumPixBuf + lumBufIndex + firstLumSrcY - lastInLumBuf + vLumBufSize;
  2659. const int16_t **chrSrcPtr= (const int16_t **)chrPixBuf + chrBufIndex + firstChrSrcY - lastInChrBuf + vChrBufSize;
  2660. const int16_t **alpSrcPtr= (CONFIG_SWSCALE_ALPHA && alpPixBuf) ? (const int16_t **)alpPixBuf + lumBufIndex + firstLumSrcY - lastInLumBuf + vLumBufSize : NULL;
  2661. if (dstFormat == PIX_FMT_NV12 || dstFormat == PIX_FMT_NV21) {
  2662. const int chrSkipMask= (1<<c->chrDstVSubSample)-1;
  2663. if (dstY&chrSkipMask) uDest= NULL; //FIXME split functions in lumi / chromi
  2664. yuv2nv12XinC(
  2665. vLumFilter+dstY*vLumFilterSize , lumSrcPtr, vLumFilterSize,
  2666. vChrFilter+chrDstY*vChrFilterSize, chrSrcPtr, vChrFilterSize,
  2667. dest, uDest, dstW, chrDstW, dstFormat);
  2668. } else if (isPlanarYUV(dstFormat) || dstFormat==PIX_FMT_GRAY8) { //YV12
  2669. const int chrSkipMask= (1<<c->chrDstVSubSample)-1;
  2670. if ((dstY&chrSkipMask) || isGray(dstFormat)) uDest=vDest= NULL; //FIXME split functions in lumi / chromi
  2671. if (is16BPS(dstFormat)) {
  2672. yuv2yuvX16inC(
  2673. vLumFilter+dstY*vLumFilterSize , lumSrcPtr, vLumFilterSize,
  2674. vChrFilter+chrDstY*vChrFilterSize, chrSrcPtr, vChrFilterSize,
  2675. alpSrcPtr, (uint16_t *) dest, (uint16_t *) uDest, (uint16_t *) vDest, (uint16_t *) aDest, dstW, chrDstW,
  2676. dstFormat);
  2677. } else {
  2678. yuv2yuvXinC(
  2679. vLumFilter+dstY*vLumFilterSize , lumSrcPtr, vLumFilterSize,
  2680. vChrFilter+chrDstY*vChrFilterSize, chrSrcPtr, vChrFilterSize,
  2681. alpSrcPtr, dest, uDest, vDest, aDest, dstW, chrDstW);
  2682. }
  2683. } else {
  2684. assert(lumSrcPtr + vLumFilterSize - 1 < lumPixBuf + vLumBufSize*2);
  2685. assert(chrSrcPtr + vChrFilterSize - 1 < chrPixBuf + vChrBufSize*2);
  2686. if(flags & SWS_FULL_CHR_H_INT) {
  2687. yuv2rgbXinC_full(c,
  2688. vLumFilter+dstY*vLumFilterSize, lumSrcPtr, vLumFilterSize,
  2689. vChrFilter+dstY*vChrFilterSize, chrSrcPtr, vChrFilterSize,
  2690. alpSrcPtr, dest, dstW, dstY);
  2691. } else {
  2692. yuv2packedXinC(c,
  2693. vLumFilter+dstY*vLumFilterSize, lumSrcPtr, vLumFilterSize,
  2694. vChrFilter+dstY*vChrFilterSize, chrSrcPtr, vChrFilterSize,
  2695. alpSrcPtr, dest, dstW, dstY);
  2696. }
  2697. }
  2698. }
  2699. }
  2700. if ((dstFormat == PIX_FMT_YUVA420P) && !alpPixBuf)
  2701. fillPlane(dst[3], dstStride[3], dstW, dstY-lastDstY, lastDstY, 255);
  2702. #if COMPILE_TEMPLATE_MMX
  2703. if (flags & SWS_CPU_CAPS_MMX2 ) __asm__ volatile("sfence":::"memory");
  2704. /* On K6 femms is faster than emms. On K7 femms is directly mapped to emms. */
  2705. if (flags & SWS_CPU_CAPS_3DNOW) __asm__ volatile("femms" :::"memory");
  2706. else __asm__ volatile("emms" :::"memory");
  2707. #endif
  2708. /* store changed local vars back in the context */
  2709. c->dstY= dstY;
  2710. c->lumBufIndex= lumBufIndex;
  2711. c->chrBufIndex= chrBufIndex;
  2712. c->lastInLumBuf= lastInLumBuf;
  2713. c->lastInChrBuf= lastInChrBuf;
  2714. return dstY - lastDstY;
  2715. }
  2716. static void RENAME(sws_init_swScale)(SwsContext *c)
  2717. {
  2718. enum PixelFormat srcFormat = c->srcFormat;
  2719. c->yuv2nv12X = RENAME(yuv2nv12X );
  2720. c->yuv2yuv1 = RENAME(yuv2yuv1 );
  2721. c->yuv2yuvX = RENAME(yuv2yuvX );
  2722. c->yuv2packed1 = RENAME(yuv2packed1 );
  2723. c->yuv2packed2 = RENAME(yuv2packed2 );
  2724. c->yuv2packedX = RENAME(yuv2packedX );
  2725. c->hScale = RENAME(hScale );
  2726. c->hyscale_fast = RENAME(hyscale_fast);
  2727. c->hcscale_fast = RENAME(hcscale_fast);
  2728. c->hcscale_internal = NULL;
  2729. switch(srcFormat) {
  2730. case PIX_FMT_YUYV422 : c->hcscale_internal = RENAME(yuy2ToUV); break;
  2731. case PIX_FMT_UYVY422 : c->hcscale_internal = RENAME(uyvyToUV); break;
  2732. case PIX_FMT_RGB8 :
  2733. case PIX_FMT_BGR8 :
  2734. case PIX_FMT_PAL8 :
  2735. case PIX_FMT_BGR4_BYTE:
  2736. case PIX_FMT_RGB4_BYTE: c->hcscale_internal = palToUV; break;
  2737. case PIX_FMT_YUV420PBE:
  2738. case PIX_FMT_YUV422PBE:
  2739. case PIX_FMT_YUV444PBE: c->hcscale_internal = RENAME(BEToUV); break;
  2740. case PIX_FMT_YUV420PLE:
  2741. case PIX_FMT_YUV422PLE:
  2742. case PIX_FMT_YUV444PLE: c->hcscale_internal = RENAME(LEToUV); break;
  2743. }
  2744. if (c->chrSrcHSubSample) {
  2745. switch(srcFormat) {
  2746. case PIX_FMT_RGB48BE:
  2747. case PIX_FMT_RGB48LE: c->hcscale_internal = rgb48ToUV_half; break;
  2748. case PIX_FMT_RGB32 :
  2749. case PIX_FMT_RGB32_1: c->hcscale_internal = bgr32ToUV_half; break;
  2750. case PIX_FMT_BGR24 : c->hcscale_internal = RENAME(bgr24ToUV_half); break;
  2751. case PIX_FMT_BGR565 : c->hcscale_internal = bgr16ToUV_half; break;
  2752. case PIX_FMT_BGR555 : c->hcscale_internal = bgr15ToUV_half; break;
  2753. case PIX_FMT_BGR32 :
  2754. case PIX_FMT_BGR32_1: c->hcscale_internal = rgb32ToUV_half; break;
  2755. case PIX_FMT_RGB24 : c->hcscale_internal = RENAME(rgb24ToUV_half); break;
  2756. case PIX_FMT_RGB565 : c->hcscale_internal = rgb16ToUV_half; break;
  2757. case PIX_FMT_RGB555 : c->hcscale_internal = rgb15ToUV_half; break;
  2758. }
  2759. } else {
  2760. switch(srcFormat) {
  2761. case PIX_FMT_RGB48BE:
  2762. case PIX_FMT_RGB48LE: c->hcscale_internal = rgb48ToUV; break;
  2763. case PIX_FMT_RGB32 :
  2764. case PIX_FMT_RGB32_1: c->hcscale_internal = bgr32ToUV; break;
  2765. case PIX_FMT_BGR24 : c->hcscale_internal = RENAME(bgr24ToUV); break;
  2766. case PIX_FMT_BGR565 : c->hcscale_internal = bgr16ToUV; break;
  2767. case PIX_FMT_BGR555 : c->hcscale_internal = bgr15ToUV; break;
  2768. case PIX_FMT_BGR32 :
  2769. case PIX_FMT_BGR32_1: c->hcscale_internal = rgb32ToUV; break;
  2770. case PIX_FMT_RGB24 : c->hcscale_internal = RENAME(rgb24ToUV); break;
  2771. case PIX_FMT_RGB565 : c->hcscale_internal = rgb16ToUV; break;
  2772. case PIX_FMT_RGB555 : c->hcscale_internal = rgb15ToUV; break;
  2773. }
  2774. }
  2775. c->hyscale_internal = NULL;
  2776. c->hascale_internal = NULL;
  2777. switch (srcFormat) {
  2778. case PIX_FMT_YUYV422 :
  2779. case PIX_FMT_YUV420PBE:
  2780. case PIX_FMT_YUV422PBE:
  2781. case PIX_FMT_YUV444PBE:
  2782. case PIX_FMT_GRAY16BE : c->hyscale_internal = RENAME(yuy2ToY); break;
  2783. case PIX_FMT_UYVY422 :
  2784. case PIX_FMT_YUV420PLE:
  2785. case PIX_FMT_YUV422PLE:
  2786. case PIX_FMT_YUV444PLE:
  2787. case PIX_FMT_GRAY16LE : c->hyscale_internal = RENAME(uyvyToY); break;
  2788. case PIX_FMT_BGR24 : c->hyscale_internal = RENAME(bgr24ToY); break;
  2789. case PIX_FMT_BGR565 : c->hyscale_internal = bgr16ToY; break;
  2790. case PIX_FMT_BGR555 : c->hyscale_internal = bgr15ToY; break;
  2791. case PIX_FMT_RGB24 : c->hyscale_internal = RENAME(rgb24ToY); break;
  2792. case PIX_FMT_RGB565 : c->hyscale_internal = rgb16ToY; break;
  2793. case PIX_FMT_RGB555 : c->hyscale_internal = rgb15ToY; break;
  2794. case PIX_FMT_RGB8 :
  2795. case PIX_FMT_BGR8 :
  2796. case PIX_FMT_PAL8 :
  2797. case PIX_FMT_BGR4_BYTE:
  2798. case PIX_FMT_RGB4_BYTE: c->hyscale_internal = palToY; break;
  2799. case PIX_FMT_MONOBLACK: c->hyscale_internal = monoblack2Y; break;
  2800. case PIX_FMT_MONOWHITE: c->hyscale_internal = monowhite2Y; break;
  2801. case PIX_FMT_RGB32 :
  2802. case PIX_FMT_RGB32_1: c->hyscale_internal = bgr32ToY; break;
  2803. case PIX_FMT_BGR32 :
  2804. case PIX_FMT_BGR32_1: c->hyscale_internal = rgb32ToY; break;
  2805. case PIX_FMT_RGB48BE:
  2806. case PIX_FMT_RGB48LE: c->hyscale_internal = rgb48ToY; break;
  2807. }
  2808. if (c->alpPixBuf) {
  2809. switch (srcFormat) {
  2810. case PIX_FMT_RGB32 :
  2811. case PIX_FMT_RGB32_1:
  2812. case PIX_FMT_BGR32 :
  2813. case PIX_FMT_BGR32_1: c->hascale_internal = abgrToA; break;
  2814. }
  2815. }
  2816. }