postprocess_template.c 157 KB

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  1. /*
  2. * Copyright (C) 2001-2002 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. /**
  21. * @file
  22. * mmx/mmx2/3dnow postprocess code.
  23. */
  24. #include "libavutil/x86_cpu.h"
  25. #undef REAL_PAVGB
  26. #undef PAVGB
  27. #undef PMINUB
  28. #undef PMAXUB
  29. #if HAVE_MMX2
  30. #define REAL_PAVGB(a,b) "pavgb " #a ", " #b " \n\t"
  31. #elif HAVE_AMD3DNOW
  32. #define REAL_PAVGB(a,b) "pavgusb " #a ", " #b " \n\t"
  33. #endif
  34. #define PAVGB(a,b) REAL_PAVGB(a,b)
  35. #if HAVE_MMX2
  36. #define PMINUB(a,b,t) "pminub " #a ", " #b " \n\t"
  37. #elif HAVE_MMX
  38. #define PMINUB(b,a,t) \
  39. "movq " #a ", " #t " \n\t"\
  40. "psubusb " #b ", " #t " \n\t"\
  41. "psubb " #t ", " #a " \n\t"
  42. #endif
  43. #if HAVE_MMX2
  44. #define PMAXUB(a,b) "pmaxub " #a ", " #b " \n\t"
  45. #elif HAVE_MMX
  46. #define PMAXUB(a,b) \
  47. "psubusb " #a ", " #b " \n\t"\
  48. "paddb " #a ", " #b " \n\t"
  49. #endif
  50. //FIXME? |255-0| = 1 (should not be a problem ...)
  51. #if HAVE_MMX
  52. /**
  53. * Check if the middle 8x8 Block in the given 8x16 block is flat
  54. */
  55. static inline int RENAME(vertClassify)(uint8_t src[], int stride, PPContext *c){
  56. int numEq= 0, dcOk;
  57. src+= stride*4; // src points to begin of the 8x8 Block
  58. __asm__ volatile(
  59. "movq %0, %%mm7 \n\t"
  60. "movq %1, %%mm6 \n\t"
  61. : : "m" (c->mmxDcOffset[c->nonBQP]), "m" (c->mmxDcThreshold[c->nonBQP])
  62. );
  63. __asm__ volatile(
  64. "lea (%2, %3), %%"REG_a" \n\t"
  65. // 0 1 2 3 4 5 6 7 8 9
  66. // %1 eax eax+%2 eax+2%2 %1+4%2 ecx ecx+%2 ecx+2%2 %1+8%2 ecx+4%2
  67. "movq (%2), %%mm0 \n\t"
  68. "movq (%%"REG_a"), %%mm1 \n\t"
  69. "movq %%mm0, %%mm3 \n\t"
  70. "movq %%mm0, %%mm4 \n\t"
  71. PMAXUB(%%mm1, %%mm4)
  72. PMINUB(%%mm1, %%mm3, %%mm5)
  73. "psubb %%mm1, %%mm0 \n\t" // mm0 = differnece
  74. "paddb %%mm7, %%mm0 \n\t"
  75. "pcmpgtb %%mm6, %%mm0 \n\t"
  76. "movq (%%"REG_a",%3), %%mm2 \n\t"
  77. PMAXUB(%%mm2, %%mm4)
  78. PMINUB(%%mm2, %%mm3, %%mm5)
  79. "psubb %%mm2, %%mm1 \n\t"
  80. "paddb %%mm7, %%mm1 \n\t"
  81. "pcmpgtb %%mm6, %%mm1 \n\t"
  82. "paddb %%mm1, %%mm0 \n\t"
  83. "movq (%%"REG_a", %3, 2), %%mm1 \n\t"
  84. PMAXUB(%%mm1, %%mm4)
  85. PMINUB(%%mm1, %%mm3, %%mm5)
  86. "psubb %%mm1, %%mm2 \n\t"
  87. "paddb %%mm7, %%mm2 \n\t"
  88. "pcmpgtb %%mm6, %%mm2 \n\t"
  89. "paddb %%mm2, %%mm0 \n\t"
  90. "lea (%%"REG_a", %3, 4), %%"REG_a" \n\t"
  91. "movq (%2, %3, 4), %%mm2 \n\t"
  92. PMAXUB(%%mm2, %%mm4)
  93. PMINUB(%%mm2, %%mm3, %%mm5)
  94. "psubb %%mm2, %%mm1 \n\t"
  95. "paddb %%mm7, %%mm1 \n\t"
  96. "pcmpgtb %%mm6, %%mm1 \n\t"
  97. "paddb %%mm1, %%mm0 \n\t"
  98. "movq (%%"REG_a"), %%mm1 \n\t"
  99. PMAXUB(%%mm1, %%mm4)
  100. PMINUB(%%mm1, %%mm3, %%mm5)
  101. "psubb %%mm1, %%mm2 \n\t"
  102. "paddb %%mm7, %%mm2 \n\t"
  103. "pcmpgtb %%mm6, %%mm2 \n\t"
  104. "paddb %%mm2, %%mm0 \n\t"
  105. "movq (%%"REG_a", %3), %%mm2 \n\t"
  106. PMAXUB(%%mm2, %%mm4)
  107. PMINUB(%%mm2, %%mm3, %%mm5)
  108. "psubb %%mm2, %%mm1 \n\t"
  109. "paddb %%mm7, %%mm1 \n\t"
  110. "pcmpgtb %%mm6, %%mm1 \n\t"
  111. "paddb %%mm1, %%mm0 \n\t"
  112. "movq (%%"REG_a", %3, 2), %%mm1 \n\t"
  113. PMAXUB(%%mm1, %%mm4)
  114. PMINUB(%%mm1, %%mm3, %%mm5)
  115. "psubb %%mm1, %%mm2 \n\t"
  116. "paddb %%mm7, %%mm2 \n\t"
  117. "pcmpgtb %%mm6, %%mm2 \n\t"
  118. "paddb %%mm2, %%mm0 \n\t"
  119. "psubusb %%mm3, %%mm4 \n\t"
  120. " \n\t"
  121. #if HAVE_MMX2
  122. "pxor %%mm7, %%mm7 \n\t"
  123. "psadbw %%mm7, %%mm0 \n\t"
  124. #else
  125. "movq %%mm0, %%mm1 \n\t"
  126. "psrlw $8, %%mm0 \n\t"
  127. "paddb %%mm1, %%mm0 \n\t"
  128. "movq %%mm0, %%mm1 \n\t"
  129. "psrlq $16, %%mm0 \n\t"
  130. "paddb %%mm1, %%mm0 \n\t"
  131. "movq %%mm0, %%mm1 \n\t"
  132. "psrlq $32, %%mm0 \n\t"
  133. "paddb %%mm1, %%mm0 \n\t"
  134. #endif
  135. "movq %4, %%mm7 \n\t" // QP,..., QP
  136. "paddusb %%mm7, %%mm7 \n\t" // 2QP ... 2QP
  137. "psubusb %%mm7, %%mm4 \n\t" // Diff <= 2QP -> 0
  138. "packssdw %%mm4, %%mm4 \n\t"
  139. "movd %%mm0, %0 \n\t"
  140. "movd %%mm4, %1 \n\t"
  141. : "=r" (numEq), "=r" (dcOk)
  142. : "r" (src), "r" ((x86_reg)stride), "m" (c->pQPb)
  143. : "%"REG_a
  144. );
  145. numEq= (-numEq) &0xFF;
  146. if(numEq > c->ppMode.flatnessThreshold){
  147. if(dcOk) return 0;
  148. else return 1;
  149. }else{
  150. return 2;
  151. }
  152. }
  153. #endif //HAVE_MMX
  154. /**
  155. * Do a vertical low pass filter on the 8x16 block (only write to the 8x8 block in the middle)
  156. * using the 9-Tap Filter (1,1,2,2,4,2,2,1,1)/16
  157. */
  158. #if !HAVE_ALTIVEC
  159. static inline void RENAME(doVertLowPass)(uint8_t *src, int stride, PPContext *c)
  160. {
  161. #if HAVE_MMX2 || HAVE_AMD3DNOW
  162. src+= stride*3;
  163. __asm__ volatile( //"movv %0 %1 %2\n\t"
  164. "movq %2, %%mm0 \n\t" // QP,..., QP
  165. "pxor %%mm4, %%mm4 \n\t"
  166. "movq (%0), %%mm6 \n\t"
  167. "movq (%0, %1), %%mm5 \n\t"
  168. "movq %%mm5, %%mm1 \n\t"
  169. "movq %%mm6, %%mm2 \n\t"
  170. "psubusb %%mm6, %%mm5 \n\t"
  171. "psubusb %%mm1, %%mm2 \n\t"
  172. "por %%mm5, %%mm2 \n\t" // ABS Diff of lines
  173. "psubusb %%mm0, %%mm2 \n\t" // diff <= QP -> 0
  174. "pcmpeqb %%mm4, %%mm2 \n\t" // diff <= QP -> FF
  175. "pand %%mm2, %%mm6 \n\t"
  176. "pandn %%mm1, %%mm2 \n\t"
  177. "por %%mm2, %%mm6 \n\t"// First Line to Filter
  178. "movq (%0, %1, 8), %%mm5 \n\t"
  179. "lea (%0, %1, 4), %%"REG_a" \n\t"
  180. "lea (%0, %1, 8), %%"REG_c" \n\t"
  181. "sub %1, %%"REG_c" \n\t"
  182. "add %1, %0 \n\t" // %0 points to line 1 not 0
  183. "movq (%0, %1, 8), %%mm7 \n\t"
  184. "movq %%mm5, %%mm1 \n\t"
  185. "movq %%mm7, %%mm2 \n\t"
  186. "psubusb %%mm7, %%mm5 \n\t"
  187. "psubusb %%mm1, %%mm2 \n\t"
  188. "por %%mm5, %%mm2 \n\t" // ABS Diff of lines
  189. "psubusb %%mm0, %%mm2 \n\t" // diff <= QP -> 0
  190. "pcmpeqb %%mm4, %%mm2 \n\t" // diff <= QP -> FF
  191. "pand %%mm2, %%mm7 \n\t"
  192. "pandn %%mm1, %%mm2 \n\t"
  193. "por %%mm2, %%mm7 \n\t" // First Line to Filter
  194. // 1 2 3 4 5 6 7 8
  195. // %0 %0+%1 %0+2%1 eax %0+4%1 eax+2%1 ecx eax+4%1
  196. // 6 4 2 2 1 1
  197. // 6 4 4 2
  198. // 6 8 2
  199. "movq (%0, %1), %%mm0 \n\t" // 1
  200. "movq %%mm0, %%mm1 \n\t" // 1
  201. PAVGB(%%mm6, %%mm0) //1 1 /2
  202. PAVGB(%%mm6, %%mm0) //3 1 /4
  203. "movq (%0, %1, 4), %%mm2 \n\t" // 1
  204. "movq %%mm2, %%mm5 \n\t" // 1
  205. PAVGB((%%REGa), %%mm2) // 11 /2
  206. PAVGB((%0, %1, 2), %%mm2) // 211 /4
  207. "movq %%mm2, %%mm3 \n\t" // 211 /4
  208. "movq (%0), %%mm4 \n\t" // 1
  209. PAVGB(%%mm4, %%mm3) // 4 211 /8
  210. PAVGB(%%mm0, %%mm3) //642211 /16
  211. "movq %%mm3, (%0) \n\t" // X
  212. // mm1=2 mm2=3(211) mm4=1 mm5=5 mm6=0 mm7=9
  213. "movq %%mm1, %%mm0 \n\t" // 1
  214. PAVGB(%%mm6, %%mm0) //1 1 /2
  215. "movq %%mm4, %%mm3 \n\t" // 1
  216. PAVGB((%0,%1,2), %%mm3) // 1 1 /2
  217. PAVGB((%%REGa,%1,2), %%mm5) // 11 /2
  218. PAVGB((%%REGa), %%mm5) // 211 /4
  219. PAVGB(%%mm5, %%mm3) // 2 2211 /8
  220. PAVGB(%%mm0, %%mm3) //4242211 /16
  221. "movq %%mm3, (%0,%1) \n\t" // X
  222. // mm1=2 mm2=3(211) mm4=1 mm5=4(211) mm6=0 mm7=9
  223. PAVGB(%%mm4, %%mm6) //11 /2
  224. "movq (%%"REG_c"), %%mm0 \n\t" // 1
  225. PAVGB((%%REGa, %1, 2), %%mm0) // 11/2
  226. "movq %%mm0, %%mm3 \n\t" // 11/2
  227. PAVGB(%%mm1, %%mm0) // 2 11/4
  228. PAVGB(%%mm6, %%mm0) //222 11/8
  229. PAVGB(%%mm2, %%mm0) //22242211/16
  230. "movq (%0, %1, 2), %%mm2 \n\t" // 1
  231. "movq %%mm0, (%0, %1, 2) \n\t" // X
  232. // mm1=2 mm2=3 mm3=6(11) mm4=1 mm5=4(211) mm6=0(11) mm7=9
  233. "movq (%%"REG_a", %1, 4), %%mm0 \n\t" // 1
  234. PAVGB((%%REGc), %%mm0) // 11 /2
  235. PAVGB(%%mm0, %%mm6) //11 11 /4
  236. PAVGB(%%mm1, %%mm4) // 11 /2
  237. PAVGB(%%mm2, %%mm1) // 11 /2
  238. PAVGB(%%mm1, %%mm6) //1122 11 /8
  239. PAVGB(%%mm5, %%mm6) //112242211 /16
  240. "movq (%%"REG_a"), %%mm5 \n\t" // 1
  241. "movq %%mm6, (%%"REG_a") \n\t" // X
  242. // mm0=7(11) mm1=2(11) mm2=3 mm3=6(11) mm4=1(11) mm5=4 mm7=9
  243. "movq (%%"REG_a", %1, 4), %%mm6 \n\t" // 1
  244. PAVGB(%%mm7, %%mm6) // 11 /2
  245. PAVGB(%%mm4, %%mm6) // 11 11 /4
  246. PAVGB(%%mm3, %%mm6) // 11 2211 /8
  247. PAVGB(%%mm5, %%mm2) // 11 /2
  248. "movq (%0, %1, 4), %%mm4 \n\t" // 1
  249. PAVGB(%%mm4, %%mm2) // 112 /4
  250. PAVGB(%%mm2, %%mm6) // 112242211 /16
  251. "movq %%mm6, (%0, %1, 4) \n\t" // X
  252. // mm0=7(11) mm1=2(11) mm2=3(112) mm3=6(11) mm4=5 mm5=4 mm7=9
  253. PAVGB(%%mm7, %%mm1) // 11 2 /4
  254. PAVGB(%%mm4, %%mm5) // 11 /2
  255. PAVGB(%%mm5, %%mm0) // 11 11 /4
  256. "movq (%%"REG_a", %1, 2), %%mm6 \n\t" // 1
  257. PAVGB(%%mm6, %%mm1) // 11 4 2 /8
  258. PAVGB(%%mm0, %%mm1) // 11224222 /16
  259. "movq %%mm1, (%%"REG_a", %1, 2) \n\t" // X
  260. // mm2=3(112) mm3=6(11) mm4=5 mm5=4(11) mm6=6 mm7=9
  261. PAVGB((%%REGc), %%mm2) // 112 4 /8
  262. "movq (%%"REG_a", %1, 4), %%mm0 \n\t" // 1
  263. PAVGB(%%mm0, %%mm6) // 1 1 /2
  264. PAVGB(%%mm7, %%mm6) // 1 12 /4
  265. PAVGB(%%mm2, %%mm6) // 1122424 /4
  266. "movq %%mm6, (%%"REG_c") \n\t" // X
  267. // mm0=8 mm3=6(11) mm4=5 mm5=4(11) mm7=9
  268. PAVGB(%%mm7, %%mm5) // 11 2 /4
  269. PAVGB(%%mm7, %%mm5) // 11 6 /8
  270. PAVGB(%%mm3, %%mm0) // 112 /4
  271. PAVGB(%%mm0, %%mm5) // 112246 /16
  272. "movq %%mm5, (%%"REG_a", %1, 4) \n\t" // X
  273. "sub %1, %0 \n\t"
  274. :
  275. : "r" (src), "r" ((x86_reg)stride), "m" (c->pQPb)
  276. : "%"REG_a, "%"REG_c
  277. );
  278. #else //HAVE_MMX2 || HAVE_AMD3DNOW
  279. const int l1= stride;
  280. const int l2= stride + l1;
  281. const int l3= stride + l2;
  282. const int l4= stride + l3;
  283. const int l5= stride + l4;
  284. const int l6= stride + l5;
  285. const int l7= stride + l6;
  286. const int l8= stride + l7;
  287. const int l9= stride + l8;
  288. int x;
  289. src+= stride*3;
  290. for(x=0; x<BLOCK_SIZE; x++){
  291. const int first= FFABS(src[0] - src[l1]) < c->QP ? src[0] : src[l1];
  292. const int last= FFABS(src[l8] - src[l9]) < c->QP ? src[l9] : src[l8];
  293. int sums[10];
  294. sums[0] = 4*first + src[l1] + src[l2] + src[l3] + 4;
  295. sums[1] = sums[0] - first + src[l4];
  296. sums[2] = sums[1] - first + src[l5];
  297. sums[3] = sums[2] - first + src[l6];
  298. sums[4] = sums[3] - first + src[l7];
  299. sums[5] = sums[4] - src[l1] + src[l8];
  300. sums[6] = sums[5] - src[l2] + last;
  301. sums[7] = sums[6] - src[l3] + last;
  302. sums[8] = sums[7] - src[l4] + last;
  303. sums[9] = sums[8] - src[l5] + last;
  304. src[l1]= (sums[0] + sums[2] + 2*src[l1])>>4;
  305. src[l2]= (sums[1] + sums[3] + 2*src[l2])>>4;
  306. src[l3]= (sums[2] + sums[4] + 2*src[l3])>>4;
  307. src[l4]= (sums[3] + sums[5] + 2*src[l4])>>4;
  308. src[l5]= (sums[4] + sums[6] + 2*src[l5])>>4;
  309. src[l6]= (sums[5] + sums[7] + 2*src[l6])>>4;
  310. src[l7]= (sums[6] + sums[8] + 2*src[l7])>>4;
  311. src[l8]= (sums[7] + sums[9] + 2*src[l8])>>4;
  312. src++;
  313. }
  314. #endif //HAVE_MMX2 || HAVE_AMD3DNOW
  315. }
  316. #endif //HAVE_ALTIVEC
  317. /**
  318. * Experimental Filter 1
  319. * will not damage linear gradients
  320. * Flat blocks should look like they were passed through the (1,1,2,2,4,2,2,1,1) 9-Tap filter
  321. * can only smooth blocks at the expected locations (it cannot smooth them if they did move)
  322. * MMX2 version does correct clipping C version does not
  323. */
  324. static inline void RENAME(vertX1Filter)(uint8_t *src, int stride, PPContext *co)
  325. {
  326. #if HAVE_MMX2 || HAVE_AMD3DNOW
  327. src+= stride*3;
  328. __asm__ volatile(
  329. "pxor %%mm7, %%mm7 \n\t" // 0
  330. "lea (%0, %1), %%"REG_a" \n\t"
  331. "lea (%%"REG_a", %1, 4), %%"REG_c" \n\t"
  332. // 0 1 2 3 4 5 6 7 8 9
  333. // %0 eax eax+%1 eax+2%1 %0+4%1 ecx ecx+%1 ecx+2%1 %0+8%1 ecx+4%1
  334. "movq (%%"REG_a", %1, 2), %%mm0 \n\t" // line 3
  335. "movq (%0, %1, 4), %%mm1 \n\t" // line 4
  336. "movq %%mm1, %%mm2 \n\t" // line 4
  337. "psubusb %%mm0, %%mm1 \n\t"
  338. "psubusb %%mm2, %%mm0 \n\t"
  339. "por %%mm1, %%mm0 \n\t" // |l2 - l3|
  340. "movq (%%"REG_c"), %%mm3 \n\t" // line 5
  341. "movq (%%"REG_c", %1), %%mm4 \n\t" // line 6
  342. "movq %%mm3, %%mm5 \n\t" // line 5
  343. "psubusb %%mm4, %%mm3 \n\t"
  344. "psubusb %%mm5, %%mm4 \n\t"
  345. "por %%mm4, %%mm3 \n\t" // |l5 - l6|
  346. PAVGB(%%mm3, %%mm0) // (|l2 - l3| + |l5 - l6|)/2
  347. "movq %%mm2, %%mm1 \n\t" // line 4
  348. "psubusb %%mm5, %%mm2 \n\t"
  349. "movq %%mm2, %%mm4 \n\t"
  350. "pcmpeqb %%mm7, %%mm2 \n\t" // (l4 - l5) <= 0 ? -1 : 0
  351. "psubusb %%mm1, %%mm5 \n\t"
  352. "por %%mm5, %%mm4 \n\t" // |l4 - l5|
  353. "psubusb %%mm0, %%mm4 \n\t" //d = MAX(0, |l4-l5| - (|l2-l3| + |l5-l6|)/2)
  354. "movq %%mm4, %%mm3 \n\t" // d
  355. "movq %2, %%mm0 \n\t"
  356. "paddusb %%mm0, %%mm0 \n\t"
  357. "psubusb %%mm0, %%mm4 \n\t"
  358. "pcmpeqb %%mm7, %%mm4 \n\t" // d <= QP ? -1 : 0
  359. "psubusb "MANGLE(b01)", %%mm3 \n\t"
  360. "pand %%mm4, %%mm3 \n\t" // d <= QP ? d : 0
  361. PAVGB(%%mm7, %%mm3) // d/2
  362. "movq %%mm3, %%mm1 \n\t" // d/2
  363. PAVGB(%%mm7, %%mm3) // d/4
  364. PAVGB(%%mm1, %%mm3) // 3*d/8
  365. "movq (%0, %1, 4), %%mm0 \n\t" // line 4
  366. "pxor %%mm2, %%mm0 \n\t" //(l4 - l5) <= 0 ? -l4-1 : l4
  367. "psubusb %%mm3, %%mm0 \n\t"
  368. "pxor %%mm2, %%mm0 \n\t"
  369. "movq %%mm0, (%0, %1, 4) \n\t" // line 4
  370. "movq (%%"REG_c"), %%mm0 \n\t" // line 5
  371. "pxor %%mm2, %%mm0 \n\t" //(l4 - l5) <= 0 ? -l5-1 : l5
  372. "paddusb %%mm3, %%mm0 \n\t"
  373. "pxor %%mm2, %%mm0 \n\t"
  374. "movq %%mm0, (%%"REG_c") \n\t" // line 5
  375. PAVGB(%%mm7, %%mm1) // d/4
  376. "movq (%%"REG_a", %1, 2), %%mm0 \n\t" // line 3
  377. "pxor %%mm2, %%mm0 \n\t" //(l4 - l5) <= 0 ? -l4-1 : l4
  378. "psubusb %%mm1, %%mm0 \n\t"
  379. "pxor %%mm2, %%mm0 \n\t"
  380. "movq %%mm0, (%%"REG_a", %1, 2) \n\t" // line 3
  381. "movq (%%"REG_c", %1), %%mm0 \n\t" // line 6
  382. "pxor %%mm2, %%mm0 \n\t" //(l4 - l5) <= 0 ? -l5-1 : l5
  383. "paddusb %%mm1, %%mm0 \n\t"
  384. "pxor %%mm2, %%mm0 \n\t"
  385. "movq %%mm0, (%%"REG_c", %1) \n\t" // line 6
  386. PAVGB(%%mm7, %%mm1) // d/8
  387. "movq (%%"REG_a", %1), %%mm0 \n\t" // line 2
  388. "pxor %%mm2, %%mm0 \n\t" //(l4 - l5) <= 0 ? -l2-1 : l2
  389. "psubusb %%mm1, %%mm0 \n\t"
  390. "pxor %%mm2, %%mm0 \n\t"
  391. "movq %%mm0, (%%"REG_a", %1) \n\t" // line 2
  392. "movq (%%"REG_c", %1, 2), %%mm0 \n\t" // line 7
  393. "pxor %%mm2, %%mm0 \n\t" //(l4 - l5) <= 0 ? -l7-1 : l7
  394. "paddusb %%mm1, %%mm0 \n\t"
  395. "pxor %%mm2, %%mm0 \n\t"
  396. "movq %%mm0, (%%"REG_c", %1, 2) \n\t" // line 7
  397. :
  398. : "r" (src), "r" ((x86_reg)stride), "m" (co->pQPb)
  399. : "%"REG_a, "%"REG_c
  400. );
  401. #else //HAVE_MMX2 || HAVE_AMD3DNOW
  402. const int l1= stride;
  403. const int l2= stride + l1;
  404. const int l3= stride + l2;
  405. const int l4= stride + l3;
  406. const int l5= stride + l4;
  407. const int l6= stride + l5;
  408. const int l7= stride + l6;
  409. // const int l8= stride + l7;
  410. // const int l9= stride + l8;
  411. int x;
  412. src+= stride*3;
  413. for(x=0; x<BLOCK_SIZE; x++){
  414. int a= src[l3] - src[l4];
  415. int b= src[l4] - src[l5];
  416. int c= src[l5] - src[l6];
  417. int d= FFABS(b) - ((FFABS(a) + FFABS(c))>>1);
  418. d= FFMAX(d, 0);
  419. if(d < co->QP*2){
  420. int v = d * FFSIGN(-b);
  421. src[l2] +=v>>3;
  422. src[l3] +=v>>2;
  423. src[l4] +=(3*v)>>3;
  424. src[l5] -=(3*v)>>3;
  425. src[l6] -=v>>2;
  426. src[l7] -=v>>3;
  427. }
  428. src++;
  429. }
  430. #endif //HAVE_MMX2 || HAVE_AMD3DNOW
  431. }
  432. #if !HAVE_ALTIVEC
  433. static inline void RENAME(doVertDefFilter)(uint8_t src[], int stride, PPContext *c)
  434. {
  435. #if HAVE_MMX2 || HAVE_AMD3DNOW
  436. /*
  437. uint8_t tmp[16];
  438. const int l1= stride;
  439. const int l2= stride + l1;
  440. const int l3= stride + l2;
  441. const int l4= (int)tmp - (int)src - stride*3;
  442. const int l5= (int)tmp - (int)src - stride*3 + 8;
  443. const int l6= stride*3 + l3;
  444. const int l7= stride + l6;
  445. const int l8= stride + l7;
  446. memcpy(tmp, src+stride*7, 8);
  447. memcpy(tmp+8, src+stride*8, 8);
  448. */
  449. src+= stride*4;
  450. __asm__ volatile(
  451. #if 0 //slightly more accurate and slightly slower
  452. "pxor %%mm7, %%mm7 \n\t" // 0
  453. "lea (%0, %1), %%"REG_a" \n\t"
  454. "lea (%%"REG_a", %1, 4), %%"REG_c" \n\t"
  455. // 0 1 2 3 4 5 6 7
  456. // %0 %0+%1 %0+2%1 eax+2%1 %0+4%1 eax+4%1 ecx+%1 ecx+2%1
  457. // %0 eax eax+%1 eax+2%1 %0+4%1 ecx ecx+%1 ecx+2%1
  458. "movq (%0, %1, 2), %%mm0 \n\t" // l2
  459. "movq (%0), %%mm1 \n\t" // l0
  460. "movq %%mm0, %%mm2 \n\t" // l2
  461. PAVGB(%%mm7, %%mm0) // ~l2/2
  462. PAVGB(%%mm1, %%mm0) // ~(l2 + 2l0)/4
  463. PAVGB(%%mm2, %%mm0) // ~(5l2 + 2l0)/8
  464. "movq (%%"REG_a"), %%mm1 \n\t" // l1
  465. "movq (%%"REG_a", %1, 2), %%mm3 \n\t" // l3
  466. "movq %%mm1, %%mm4 \n\t" // l1
  467. PAVGB(%%mm7, %%mm1) // ~l1/2
  468. PAVGB(%%mm3, %%mm1) // ~(l1 + 2l3)/4
  469. PAVGB(%%mm4, %%mm1) // ~(5l1 + 2l3)/8
  470. "movq %%mm0, %%mm4 \n\t" // ~(5l2 + 2l0)/8
  471. "psubusb %%mm1, %%mm0 \n\t"
  472. "psubusb %%mm4, %%mm1 \n\t"
  473. "por %%mm0, %%mm1 \n\t" // ~|2l0 - 5l1 + 5l2 - 2l3|/8
  474. // mm1= |lenergy|, mm2= l2, mm3= l3, mm7=0
  475. "movq (%0, %1, 4), %%mm0 \n\t" // l4
  476. "movq %%mm0, %%mm4 \n\t" // l4
  477. PAVGB(%%mm7, %%mm0) // ~l4/2
  478. PAVGB(%%mm2, %%mm0) // ~(l4 + 2l2)/4
  479. PAVGB(%%mm4, %%mm0) // ~(5l4 + 2l2)/8
  480. "movq (%%"REG_c"), %%mm2 \n\t" // l5
  481. "movq %%mm3, %%mm5 \n\t" // l3
  482. PAVGB(%%mm7, %%mm3) // ~l3/2
  483. PAVGB(%%mm2, %%mm3) // ~(l3 + 2l5)/4
  484. PAVGB(%%mm5, %%mm3) // ~(5l3 + 2l5)/8
  485. "movq %%mm0, %%mm6 \n\t" // ~(5l4 + 2l2)/8
  486. "psubusb %%mm3, %%mm0 \n\t"
  487. "psubusb %%mm6, %%mm3 \n\t"
  488. "por %%mm0, %%mm3 \n\t" // ~|2l2 - 5l3 + 5l4 - 2l5|/8
  489. "pcmpeqb %%mm7, %%mm0 \n\t" // SIGN(2l2 - 5l3 + 5l4 - 2l5)
  490. // mm0= SIGN(menergy), mm1= |lenergy|, mm2= l5, mm3= |menergy|, mm4=l4, mm5= l3, mm7=0
  491. "movq (%%"REG_c", %1), %%mm6 \n\t" // l6
  492. "movq %%mm6, %%mm5 \n\t" // l6
  493. PAVGB(%%mm7, %%mm6) // ~l6/2
  494. PAVGB(%%mm4, %%mm6) // ~(l6 + 2l4)/4
  495. PAVGB(%%mm5, %%mm6) // ~(5l6 + 2l4)/8
  496. "movq (%%"REG_c", %1, 2), %%mm5 \n\t" // l7
  497. "movq %%mm2, %%mm4 \n\t" // l5
  498. PAVGB(%%mm7, %%mm2) // ~l5/2
  499. PAVGB(%%mm5, %%mm2) // ~(l5 + 2l7)/4
  500. PAVGB(%%mm4, %%mm2) // ~(5l5 + 2l7)/8
  501. "movq %%mm6, %%mm4 \n\t" // ~(5l6 + 2l4)/8
  502. "psubusb %%mm2, %%mm6 \n\t"
  503. "psubusb %%mm4, %%mm2 \n\t"
  504. "por %%mm6, %%mm2 \n\t" // ~|2l4 - 5l5 + 5l6 - 2l7|/8
  505. // mm0= SIGN(menergy), mm1= |lenergy|/8, mm2= |renergy|/8, mm3= |menergy|/8, mm7=0
  506. PMINUB(%%mm2, %%mm1, %%mm4) // MIN(|lenergy|,|renergy|)/8
  507. "movq %2, %%mm4 \n\t" // QP //FIXME QP+1 ?
  508. "paddusb "MANGLE(b01)", %%mm4 \n\t"
  509. "pcmpgtb %%mm3, %%mm4 \n\t" // |menergy|/8 < QP
  510. "psubusb %%mm1, %%mm3 \n\t" // d=|menergy|/8-MIN(|lenergy|,|renergy|)/8
  511. "pand %%mm4, %%mm3 \n\t"
  512. "movq %%mm3, %%mm1 \n\t"
  513. // "psubusb "MANGLE(b01)", %%mm3 \n\t"
  514. PAVGB(%%mm7, %%mm3)
  515. PAVGB(%%mm7, %%mm3)
  516. "paddusb %%mm1, %%mm3 \n\t"
  517. // "paddusb "MANGLE(b01)", %%mm3 \n\t"
  518. "movq (%%"REG_a", %1, 2), %%mm6 \n\t" //l3
  519. "movq (%0, %1, 4), %%mm5 \n\t" //l4
  520. "movq (%0, %1, 4), %%mm4 \n\t" //l4
  521. "psubusb %%mm6, %%mm5 \n\t"
  522. "psubusb %%mm4, %%mm6 \n\t"
  523. "por %%mm6, %%mm5 \n\t" // |l3-l4|
  524. "pcmpeqb %%mm7, %%mm6 \n\t" // SIGN(l3-l4)
  525. "pxor %%mm6, %%mm0 \n\t"
  526. "pand %%mm0, %%mm3 \n\t"
  527. PMINUB(%%mm5, %%mm3, %%mm0)
  528. "psubusb "MANGLE(b01)", %%mm3 \n\t"
  529. PAVGB(%%mm7, %%mm3)
  530. "movq (%%"REG_a", %1, 2), %%mm0 \n\t"
  531. "movq (%0, %1, 4), %%mm2 \n\t"
  532. "pxor %%mm6, %%mm0 \n\t"
  533. "pxor %%mm6, %%mm2 \n\t"
  534. "psubb %%mm3, %%mm0 \n\t"
  535. "paddb %%mm3, %%mm2 \n\t"
  536. "pxor %%mm6, %%mm0 \n\t"
  537. "pxor %%mm6, %%mm2 \n\t"
  538. "movq %%mm0, (%%"REG_a", %1, 2) \n\t"
  539. "movq %%mm2, (%0, %1, 4) \n\t"
  540. #endif //0
  541. "lea (%0, %1), %%"REG_a" \n\t"
  542. "pcmpeqb %%mm6, %%mm6 \n\t" // -1
  543. // 0 1 2 3 4 5 6 7
  544. // %0 %0+%1 %0+2%1 eax+2%1 %0+4%1 eax+4%1 ecx+%1 ecx+2%1
  545. // %0 eax eax+%1 eax+2%1 %0+4%1 ecx ecx+%1 ecx+2%1
  546. "movq (%%"REG_a", %1, 2), %%mm1 \n\t" // l3
  547. "movq (%0, %1, 4), %%mm0 \n\t" // l4
  548. "pxor %%mm6, %%mm1 \n\t" // -l3-1
  549. PAVGB(%%mm1, %%mm0) // -q+128 = (l4-l3+256)/2
  550. // mm1=-l3-1, mm0=128-q
  551. "movq (%%"REG_a", %1, 4), %%mm2 \n\t" // l5
  552. "movq (%%"REG_a", %1), %%mm3 \n\t" // l2
  553. "pxor %%mm6, %%mm2 \n\t" // -l5-1
  554. "movq %%mm2, %%mm5 \n\t" // -l5-1
  555. "movq "MANGLE(b80)", %%mm4 \n\t" // 128
  556. "lea (%%"REG_a", %1, 4), %%"REG_c" \n\t"
  557. PAVGB(%%mm3, %%mm2) // (l2-l5+256)/2
  558. PAVGB(%%mm0, %%mm4) // ~(l4-l3)/4 + 128
  559. PAVGB(%%mm2, %%mm4) // ~(l2-l5)/4 +(l4-l3)/8 + 128
  560. PAVGB(%%mm0, %%mm4) // ~(l2-l5)/8 +5(l4-l3)/16 + 128
  561. // mm1=-l3-1, mm0=128-q, mm3=l2, mm4=menergy/16 + 128, mm5= -l5-1
  562. "movq (%%"REG_a"), %%mm2 \n\t" // l1
  563. "pxor %%mm6, %%mm2 \n\t" // -l1-1
  564. PAVGB(%%mm3, %%mm2) // (l2-l1+256)/2
  565. PAVGB((%0), %%mm1) // (l0-l3+256)/2
  566. "movq "MANGLE(b80)", %%mm3 \n\t" // 128
  567. PAVGB(%%mm2, %%mm3) // ~(l2-l1)/4 + 128
  568. PAVGB(%%mm1, %%mm3) // ~(l0-l3)/4 +(l2-l1)/8 + 128
  569. PAVGB(%%mm2, %%mm3) // ~(l0-l3)/8 +5(l2-l1)/16 + 128
  570. // mm0=128-q, mm3=lenergy/16 + 128, mm4= menergy/16 + 128, mm5= -l5-1
  571. PAVGB((%%REGc, %1), %%mm5) // (l6-l5+256)/2
  572. "movq (%%"REG_c", %1, 2), %%mm1 \n\t" // l7
  573. "pxor %%mm6, %%mm1 \n\t" // -l7-1
  574. PAVGB((%0, %1, 4), %%mm1) // (l4-l7+256)/2
  575. "movq "MANGLE(b80)", %%mm2 \n\t" // 128
  576. PAVGB(%%mm5, %%mm2) // ~(l6-l5)/4 + 128
  577. PAVGB(%%mm1, %%mm2) // ~(l4-l7)/4 +(l6-l5)/8 + 128
  578. PAVGB(%%mm5, %%mm2) // ~(l4-l7)/8 +5(l6-l5)/16 + 128
  579. // mm0=128-q, mm2=renergy/16 + 128, mm3=lenergy/16 + 128, mm4= menergy/16 + 128
  580. "movq "MANGLE(b00)", %%mm1 \n\t" // 0
  581. "movq "MANGLE(b00)", %%mm5 \n\t" // 0
  582. "psubb %%mm2, %%mm1 \n\t" // 128 - renergy/16
  583. "psubb %%mm3, %%mm5 \n\t" // 128 - lenergy/16
  584. PMAXUB(%%mm1, %%mm2) // 128 + |renergy/16|
  585. PMAXUB(%%mm5, %%mm3) // 128 + |lenergy/16|
  586. PMINUB(%%mm2, %%mm3, %%mm1) // 128 + MIN(|lenergy|,|renergy|)/16
  587. // mm0=128-q, mm3=128 + MIN(|lenergy|,|renergy|)/16, mm4= menergy/16 + 128
  588. "movq "MANGLE(b00)", %%mm7 \n\t" // 0
  589. "movq %2, %%mm2 \n\t" // QP
  590. PAVGB(%%mm6, %%mm2) // 128 + QP/2
  591. "psubb %%mm6, %%mm2 \n\t"
  592. "movq %%mm4, %%mm1 \n\t"
  593. "pcmpgtb %%mm7, %%mm1 \n\t" // SIGN(menergy)
  594. "pxor %%mm1, %%mm4 \n\t"
  595. "psubb %%mm1, %%mm4 \n\t" // 128 + |menergy|/16
  596. "pcmpgtb %%mm4, %%mm2 \n\t" // |menergy|/16 < QP/2
  597. "psubusb %%mm3, %%mm4 \n\t" //d=|menergy|/16 - MIN(|lenergy|,|renergy|)/16
  598. // mm0=128-q, mm1= SIGN(menergy), mm2= |menergy|/16 < QP/2, mm4= d/16
  599. "movq %%mm4, %%mm3 \n\t" // d
  600. "psubusb "MANGLE(b01)", %%mm4 \n\t"
  601. PAVGB(%%mm7, %%mm4) // d/32
  602. PAVGB(%%mm7, %%mm4) // (d + 32)/64
  603. "paddb %%mm3, %%mm4 \n\t" // 5d/64
  604. "pand %%mm2, %%mm4 \n\t"
  605. "movq "MANGLE(b80)", %%mm5 \n\t" // 128
  606. "psubb %%mm0, %%mm5 \n\t" // q
  607. "paddsb %%mm6, %%mm5 \n\t" // fix bad rounding
  608. "pcmpgtb %%mm5, %%mm7 \n\t" // SIGN(q)
  609. "pxor %%mm7, %%mm5 \n\t"
  610. PMINUB(%%mm5, %%mm4, %%mm3) // MIN(|q|, 5d/64)
  611. "pxor %%mm1, %%mm7 \n\t" // SIGN(d*q)
  612. "pand %%mm7, %%mm4 \n\t"
  613. "movq (%%"REG_a", %1, 2), %%mm0 \n\t"
  614. "movq (%0, %1, 4), %%mm2 \n\t"
  615. "pxor %%mm1, %%mm0 \n\t"
  616. "pxor %%mm1, %%mm2 \n\t"
  617. "paddb %%mm4, %%mm0 \n\t"
  618. "psubb %%mm4, %%mm2 \n\t"
  619. "pxor %%mm1, %%mm0 \n\t"
  620. "pxor %%mm1, %%mm2 \n\t"
  621. "movq %%mm0, (%%"REG_a", %1, 2) \n\t"
  622. "movq %%mm2, (%0, %1, 4) \n\t"
  623. :
  624. : "r" (src), "r" ((x86_reg)stride), "m" (c->pQPb)
  625. : "%"REG_a, "%"REG_c
  626. );
  627. /*
  628. {
  629. int x;
  630. src-= stride;
  631. for(x=0; x<BLOCK_SIZE; x++){
  632. const int middleEnergy= 5*(src[l5] - src[l4]) + 2*(src[l3] - src[l6]);
  633. if(FFABS(middleEnergy)< 8*QP){
  634. const int q=(src[l4] - src[l5])/2;
  635. const int leftEnergy= 5*(src[l3] - src[l2]) + 2*(src[l1] - src[l4]);
  636. const int rightEnergy= 5*(src[l7] - src[l6]) + 2*(src[l5] - src[l8]);
  637. int d= FFABS(middleEnergy) - FFMIN( FFABS(leftEnergy), FFABS(rightEnergy) );
  638. d= FFMAX(d, 0);
  639. d= (5*d + 32) >> 6;
  640. d*= FFSIGN(-middleEnergy);
  641. if(q>0){
  642. d= d<0 ? 0 : d;
  643. d= d>q ? q : d;
  644. }else{
  645. d= d>0 ? 0 : d;
  646. d= d<q ? q : d;
  647. }
  648. src[l4]-= d;
  649. src[l5]+= d;
  650. }
  651. src++;
  652. }
  653. src-=8;
  654. for(x=0; x<8; x++){
  655. int y;
  656. for(y=4; y<6; y++){
  657. int d= src[x+y*stride] - tmp[x+(y-4)*8];
  658. int ad= FFABS(d);
  659. static int max=0;
  660. static int sum=0;
  661. static int num=0;
  662. static int bias=0;
  663. if(max<ad) max=ad;
  664. sum+= ad>3 ? 1 : 0;
  665. if(ad>3){
  666. src[0] = src[7] = src[stride*7] = src[(stride+1)*7]=255;
  667. }
  668. if(y==4) bias+=d;
  669. num++;
  670. if(num%1000000 == 0){
  671. av_log(c, AV_LOG_INFO, " %d %d %d %d\n", num, sum, max, bias);
  672. }
  673. }
  674. }
  675. }
  676. */
  677. #elif HAVE_MMX
  678. DECLARE_ALIGNED(8, uint64_t, tmp)[4]; // make space for 4 8-byte vars
  679. src+= stride*4;
  680. __asm__ volatile(
  681. "pxor %%mm7, %%mm7 \n\t"
  682. // 0 1 2 3 4 5 6 7
  683. // %0 %0+%1 %0+2%1 eax+2%1 %0+4%1 eax+4%1 edx+%1 edx+2%1
  684. // %0 eax eax+%1 eax+2%1 %0+4%1 edx edx+%1 edx+2%1
  685. "movq (%0), %%mm0 \n\t"
  686. "movq %%mm0, %%mm1 \n\t"
  687. "punpcklbw %%mm7, %%mm0 \n\t" // low part of line 0
  688. "punpckhbw %%mm7, %%mm1 \n\t" // high part of line 0
  689. "movq (%0, %1), %%mm2 \n\t"
  690. "lea (%0, %1, 2), %%"REG_a" \n\t"
  691. "movq %%mm2, %%mm3 \n\t"
  692. "punpcklbw %%mm7, %%mm2 \n\t" // low part of line 1
  693. "punpckhbw %%mm7, %%mm3 \n\t" // high part of line 1
  694. "movq (%%"REG_a"), %%mm4 \n\t"
  695. "movq %%mm4, %%mm5 \n\t"
  696. "punpcklbw %%mm7, %%mm4 \n\t" // low part of line 2
  697. "punpckhbw %%mm7, %%mm5 \n\t" // high part of line 2
  698. "paddw %%mm0, %%mm0 \n\t" // 2L0
  699. "paddw %%mm1, %%mm1 \n\t" // 2H0
  700. "psubw %%mm4, %%mm2 \n\t" // L1 - L2
  701. "psubw %%mm5, %%mm3 \n\t" // H1 - H2
  702. "psubw %%mm2, %%mm0 \n\t" // 2L0 - L1 + L2
  703. "psubw %%mm3, %%mm1 \n\t" // 2H0 - H1 + H2
  704. "psllw $2, %%mm2 \n\t" // 4L1 - 4L2
  705. "psllw $2, %%mm3 \n\t" // 4H1 - 4H2
  706. "psubw %%mm2, %%mm0 \n\t" // 2L0 - 5L1 + 5L2
  707. "psubw %%mm3, %%mm1 \n\t" // 2H0 - 5H1 + 5H2
  708. "movq (%%"REG_a", %1), %%mm2 \n\t"
  709. "movq %%mm2, %%mm3 \n\t"
  710. "punpcklbw %%mm7, %%mm2 \n\t" // L3
  711. "punpckhbw %%mm7, %%mm3 \n\t" // H3
  712. "psubw %%mm2, %%mm0 \n\t" // 2L0 - 5L1 + 5L2 - L3
  713. "psubw %%mm3, %%mm1 \n\t" // 2H0 - 5H1 + 5H2 - H3
  714. "psubw %%mm2, %%mm0 \n\t" // 2L0 - 5L1 + 5L2 - 2L3
  715. "psubw %%mm3, %%mm1 \n\t" // 2H0 - 5H1 + 5H2 - 2H3
  716. "movq %%mm0, (%3) \n\t" // 2L0 - 5L1 + 5L2 - 2L3
  717. "movq %%mm1, 8(%3) \n\t" // 2H0 - 5H1 + 5H2 - 2H3
  718. "movq (%%"REG_a", %1, 2), %%mm0 \n\t"
  719. "movq %%mm0, %%mm1 \n\t"
  720. "punpcklbw %%mm7, %%mm0 \n\t" // L4
  721. "punpckhbw %%mm7, %%mm1 \n\t" // H4
  722. "psubw %%mm0, %%mm2 \n\t" // L3 - L4
  723. "psubw %%mm1, %%mm3 \n\t" // H3 - H4
  724. "movq %%mm2, 16(%3) \n\t" // L3 - L4
  725. "movq %%mm3, 24(%3) \n\t" // H3 - H4
  726. "paddw %%mm4, %%mm4 \n\t" // 2L2
  727. "paddw %%mm5, %%mm5 \n\t" // 2H2
  728. "psubw %%mm2, %%mm4 \n\t" // 2L2 - L3 + L4
  729. "psubw %%mm3, %%mm5 \n\t" // 2H2 - H3 + H4
  730. "lea (%%"REG_a", %1), %0 \n\t"
  731. "psllw $2, %%mm2 \n\t" // 4L3 - 4L4
  732. "psllw $2, %%mm3 \n\t" // 4H3 - 4H4
  733. "psubw %%mm2, %%mm4 \n\t" // 2L2 - 5L3 + 5L4
  734. "psubw %%mm3, %%mm5 \n\t" // 2H2 - 5H3 + 5H4
  735. //50 opcodes so far
  736. "movq (%0, %1, 2), %%mm2 \n\t"
  737. "movq %%mm2, %%mm3 \n\t"
  738. "punpcklbw %%mm7, %%mm2 \n\t" // L5
  739. "punpckhbw %%mm7, %%mm3 \n\t" // H5
  740. "psubw %%mm2, %%mm4 \n\t" // 2L2 - 5L3 + 5L4 - L5
  741. "psubw %%mm3, %%mm5 \n\t" // 2H2 - 5H3 + 5H4 - H5
  742. "psubw %%mm2, %%mm4 \n\t" // 2L2 - 5L3 + 5L4 - 2L5
  743. "psubw %%mm3, %%mm5 \n\t" // 2H2 - 5H3 + 5H4 - 2H5
  744. "movq (%%"REG_a", %1, 4), %%mm6 \n\t"
  745. "punpcklbw %%mm7, %%mm6 \n\t" // L6
  746. "psubw %%mm6, %%mm2 \n\t" // L5 - L6
  747. "movq (%%"REG_a", %1, 4), %%mm6 \n\t"
  748. "punpckhbw %%mm7, %%mm6 \n\t" // H6
  749. "psubw %%mm6, %%mm3 \n\t" // H5 - H6
  750. "paddw %%mm0, %%mm0 \n\t" // 2L4
  751. "paddw %%mm1, %%mm1 \n\t" // 2H4
  752. "psubw %%mm2, %%mm0 \n\t" // 2L4 - L5 + L6
  753. "psubw %%mm3, %%mm1 \n\t" // 2H4 - H5 + H6
  754. "psllw $2, %%mm2 \n\t" // 4L5 - 4L6
  755. "psllw $2, %%mm3 \n\t" // 4H5 - 4H6
  756. "psubw %%mm2, %%mm0 \n\t" // 2L4 - 5L5 + 5L6
  757. "psubw %%mm3, %%mm1 \n\t" // 2H4 - 5H5 + 5H6
  758. "movq (%0, %1, 4), %%mm2 \n\t"
  759. "movq %%mm2, %%mm3 \n\t"
  760. "punpcklbw %%mm7, %%mm2 \n\t" // L7
  761. "punpckhbw %%mm7, %%mm3 \n\t" // H7
  762. "paddw %%mm2, %%mm2 \n\t" // 2L7
  763. "paddw %%mm3, %%mm3 \n\t" // 2H7
  764. "psubw %%mm2, %%mm0 \n\t" // 2L4 - 5L5 + 5L6 - 2L7
  765. "psubw %%mm3, %%mm1 \n\t" // 2H4 - 5H5 + 5H6 - 2H7
  766. "movq (%3), %%mm2 \n\t" // 2L0 - 5L1 + 5L2 - 2L3
  767. "movq 8(%3), %%mm3 \n\t" // 2H0 - 5H1 + 5H2 - 2H3
  768. #if HAVE_MMX2
  769. "movq %%mm7, %%mm6 \n\t" // 0
  770. "psubw %%mm0, %%mm6 \n\t"
  771. "pmaxsw %%mm6, %%mm0 \n\t" // |2L4 - 5L5 + 5L6 - 2L7|
  772. "movq %%mm7, %%mm6 \n\t" // 0
  773. "psubw %%mm1, %%mm6 \n\t"
  774. "pmaxsw %%mm6, %%mm1 \n\t" // |2H4 - 5H5 + 5H6 - 2H7|
  775. "movq %%mm7, %%mm6 \n\t" // 0
  776. "psubw %%mm2, %%mm6 \n\t"
  777. "pmaxsw %%mm6, %%mm2 \n\t" // |2L0 - 5L1 + 5L2 - 2L3|
  778. "movq %%mm7, %%mm6 \n\t" // 0
  779. "psubw %%mm3, %%mm6 \n\t"
  780. "pmaxsw %%mm6, %%mm3 \n\t" // |2H0 - 5H1 + 5H2 - 2H3|
  781. #else
  782. "movq %%mm7, %%mm6 \n\t" // 0
  783. "pcmpgtw %%mm0, %%mm6 \n\t"
  784. "pxor %%mm6, %%mm0 \n\t"
  785. "psubw %%mm6, %%mm0 \n\t" // |2L4 - 5L5 + 5L6 - 2L7|
  786. "movq %%mm7, %%mm6 \n\t" // 0
  787. "pcmpgtw %%mm1, %%mm6 \n\t"
  788. "pxor %%mm6, %%mm1 \n\t"
  789. "psubw %%mm6, %%mm1 \n\t" // |2H4 - 5H5 + 5H6 - 2H7|
  790. "movq %%mm7, %%mm6 \n\t" // 0
  791. "pcmpgtw %%mm2, %%mm6 \n\t"
  792. "pxor %%mm6, %%mm2 \n\t"
  793. "psubw %%mm6, %%mm2 \n\t" // |2L0 - 5L1 + 5L2 - 2L3|
  794. "movq %%mm7, %%mm6 \n\t" // 0
  795. "pcmpgtw %%mm3, %%mm6 \n\t"
  796. "pxor %%mm6, %%mm3 \n\t"
  797. "psubw %%mm6, %%mm3 \n\t" // |2H0 - 5H1 + 5H2 - 2H3|
  798. #endif
  799. #if HAVE_MMX2
  800. "pminsw %%mm2, %%mm0 \n\t"
  801. "pminsw %%mm3, %%mm1 \n\t"
  802. #else
  803. "movq %%mm0, %%mm6 \n\t"
  804. "psubusw %%mm2, %%mm6 \n\t"
  805. "psubw %%mm6, %%mm0 \n\t"
  806. "movq %%mm1, %%mm6 \n\t"
  807. "psubusw %%mm3, %%mm6 \n\t"
  808. "psubw %%mm6, %%mm1 \n\t"
  809. #endif
  810. "movd %2, %%mm2 \n\t" // QP
  811. "punpcklbw %%mm7, %%mm2 \n\t"
  812. "movq %%mm7, %%mm6 \n\t" // 0
  813. "pcmpgtw %%mm4, %%mm6 \n\t" // sign(2L2 - 5L3 + 5L4 - 2L5)
  814. "pxor %%mm6, %%mm4 \n\t"
  815. "psubw %%mm6, %%mm4 \n\t" // |2L2 - 5L3 + 5L4 - 2L5|
  816. "pcmpgtw %%mm5, %%mm7 \n\t" // sign(2H2 - 5H3 + 5H4 - 2H5)
  817. "pxor %%mm7, %%mm5 \n\t"
  818. "psubw %%mm7, %%mm5 \n\t" // |2H2 - 5H3 + 5H4 - 2H5|
  819. // 100 opcodes
  820. "psllw $3, %%mm2 \n\t" // 8QP
  821. "movq %%mm2, %%mm3 \n\t" // 8QP
  822. "pcmpgtw %%mm4, %%mm2 \n\t"
  823. "pcmpgtw %%mm5, %%mm3 \n\t"
  824. "pand %%mm2, %%mm4 \n\t"
  825. "pand %%mm3, %%mm5 \n\t"
  826. "psubusw %%mm0, %%mm4 \n\t" // hd
  827. "psubusw %%mm1, %%mm5 \n\t" // ld
  828. "movq "MANGLE(w05)", %%mm2 \n\t" // 5
  829. "pmullw %%mm2, %%mm4 \n\t"
  830. "pmullw %%mm2, %%mm5 \n\t"
  831. "movq "MANGLE(w20)", %%mm2 \n\t" // 32
  832. "paddw %%mm2, %%mm4 \n\t"
  833. "paddw %%mm2, %%mm5 \n\t"
  834. "psrlw $6, %%mm4 \n\t"
  835. "psrlw $6, %%mm5 \n\t"
  836. "movq 16(%3), %%mm0 \n\t" // L3 - L4
  837. "movq 24(%3), %%mm1 \n\t" // H3 - H4
  838. "pxor %%mm2, %%mm2 \n\t"
  839. "pxor %%mm3, %%mm3 \n\t"
  840. "pcmpgtw %%mm0, %%mm2 \n\t" // sign (L3-L4)
  841. "pcmpgtw %%mm1, %%mm3 \n\t" // sign (H3-H4)
  842. "pxor %%mm2, %%mm0 \n\t"
  843. "pxor %%mm3, %%mm1 \n\t"
  844. "psubw %%mm2, %%mm0 \n\t" // |L3-L4|
  845. "psubw %%mm3, %%mm1 \n\t" // |H3-H4|
  846. "psrlw $1, %%mm0 \n\t" // |L3 - L4|/2
  847. "psrlw $1, %%mm1 \n\t" // |H3 - H4|/2
  848. "pxor %%mm6, %%mm2 \n\t"
  849. "pxor %%mm7, %%mm3 \n\t"
  850. "pand %%mm2, %%mm4 \n\t"
  851. "pand %%mm3, %%mm5 \n\t"
  852. #if HAVE_MMX2
  853. "pminsw %%mm0, %%mm4 \n\t"
  854. "pminsw %%mm1, %%mm5 \n\t"
  855. #else
  856. "movq %%mm4, %%mm2 \n\t"
  857. "psubusw %%mm0, %%mm2 \n\t"
  858. "psubw %%mm2, %%mm4 \n\t"
  859. "movq %%mm5, %%mm2 \n\t"
  860. "psubusw %%mm1, %%mm2 \n\t"
  861. "psubw %%mm2, %%mm5 \n\t"
  862. #endif
  863. "pxor %%mm6, %%mm4 \n\t"
  864. "pxor %%mm7, %%mm5 \n\t"
  865. "psubw %%mm6, %%mm4 \n\t"
  866. "psubw %%mm7, %%mm5 \n\t"
  867. "packsswb %%mm5, %%mm4 \n\t"
  868. "movq (%0), %%mm0 \n\t"
  869. "paddb %%mm4, %%mm0 \n\t"
  870. "movq %%mm0, (%0) \n\t"
  871. "movq (%0, %1), %%mm0 \n\t"
  872. "psubb %%mm4, %%mm0 \n\t"
  873. "movq %%mm0, (%0, %1) \n\t"
  874. : "+r" (src)
  875. : "r" ((x86_reg)stride), "m" (c->pQPb), "r"(tmp)
  876. : "%"REG_a
  877. );
  878. #else //HAVE_MMX2 || HAVE_AMD3DNOW
  879. const int l1= stride;
  880. const int l2= stride + l1;
  881. const int l3= stride + l2;
  882. const int l4= stride + l3;
  883. const int l5= stride + l4;
  884. const int l6= stride + l5;
  885. const int l7= stride + l6;
  886. const int l8= stride + l7;
  887. // const int l9= stride + l8;
  888. int x;
  889. src+= stride*3;
  890. for(x=0; x<BLOCK_SIZE; x++){
  891. const int middleEnergy= 5*(src[l5] - src[l4]) + 2*(src[l3] - src[l6]);
  892. if(FFABS(middleEnergy) < 8*c->QP){
  893. const int q=(src[l4] - src[l5])/2;
  894. const int leftEnergy= 5*(src[l3] - src[l2]) + 2*(src[l1] - src[l4]);
  895. const int rightEnergy= 5*(src[l7] - src[l6]) + 2*(src[l5] - src[l8]);
  896. int d= FFABS(middleEnergy) - FFMIN( FFABS(leftEnergy), FFABS(rightEnergy) );
  897. d= FFMAX(d, 0);
  898. d= (5*d + 32) >> 6;
  899. d*= FFSIGN(-middleEnergy);
  900. if(q>0){
  901. d= d<0 ? 0 : d;
  902. d= d>q ? q : d;
  903. }else{
  904. d= d>0 ? 0 : d;
  905. d= d<q ? q : d;
  906. }
  907. src[l4]-= d;
  908. src[l5]+= d;
  909. }
  910. src++;
  911. }
  912. #endif //HAVE_MMX2 || HAVE_AMD3DNOW
  913. }
  914. #endif //HAVE_ALTIVEC
  915. #if !HAVE_ALTIVEC
  916. static inline void RENAME(dering)(uint8_t src[], int stride, PPContext *c)
  917. {
  918. #if HAVE_MMX2 || HAVE_AMD3DNOW
  919. DECLARE_ALIGNED(8, uint64_t, tmp)[3];
  920. __asm__ volatile(
  921. "pxor %%mm6, %%mm6 \n\t"
  922. "pcmpeqb %%mm7, %%mm7 \n\t"
  923. "movq %2, %%mm0 \n\t"
  924. "punpcklbw %%mm6, %%mm0 \n\t"
  925. "psrlw $1, %%mm0 \n\t"
  926. "psubw %%mm7, %%mm0 \n\t"
  927. "packuswb %%mm0, %%mm0 \n\t"
  928. "movq %%mm0, %3 \n\t"
  929. "lea (%0, %1), %%"REG_a" \n\t"
  930. "lea (%%"REG_a", %1, 4), %%"REG_d" \n\t"
  931. // 0 1 2 3 4 5 6 7 8 9
  932. // %0 eax eax+%1 eax+2%1 %0+4%1 edx edx+%1 edx+2%1 %0+8%1 edx+4%1
  933. #undef REAL_FIND_MIN_MAX
  934. #undef FIND_MIN_MAX
  935. #if HAVE_MMX2
  936. #define REAL_FIND_MIN_MAX(addr)\
  937. "movq " #addr ", %%mm0 \n\t"\
  938. "pminub %%mm0, %%mm7 \n\t"\
  939. "pmaxub %%mm0, %%mm6 \n\t"
  940. #else
  941. #define REAL_FIND_MIN_MAX(addr)\
  942. "movq " #addr ", %%mm0 \n\t"\
  943. "movq %%mm7, %%mm1 \n\t"\
  944. "psubusb %%mm0, %%mm6 \n\t"\
  945. "paddb %%mm0, %%mm6 \n\t"\
  946. "psubusb %%mm0, %%mm1 \n\t"\
  947. "psubb %%mm1, %%mm7 \n\t"
  948. #endif
  949. #define FIND_MIN_MAX(addr) REAL_FIND_MIN_MAX(addr)
  950. FIND_MIN_MAX((%%REGa))
  951. FIND_MIN_MAX((%%REGa, %1))
  952. FIND_MIN_MAX((%%REGa, %1, 2))
  953. FIND_MIN_MAX((%0, %1, 4))
  954. FIND_MIN_MAX((%%REGd))
  955. FIND_MIN_MAX((%%REGd, %1))
  956. FIND_MIN_MAX((%%REGd, %1, 2))
  957. FIND_MIN_MAX((%0, %1, 8))
  958. "movq %%mm7, %%mm4 \n\t"
  959. "psrlq $8, %%mm7 \n\t"
  960. #if HAVE_MMX2
  961. "pminub %%mm4, %%mm7 \n\t" // min of pixels
  962. "pshufw $0xF9, %%mm7, %%mm4 \n\t"
  963. "pminub %%mm4, %%mm7 \n\t" // min of pixels
  964. "pshufw $0xFE, %%mm7, %%mm4 \n\t"
  965. "pminub %%mm4, %%mm7 \n\t"
  966. #else
  967. "movq %%mm7, %%mm1 \n\t"
  968. "psubusb %%mm4, %%mm1 \n\t"
  969. "psubb %%mm1, %%mm7 \n\t"
  970. "movq %%mm7, %%mm4 \n\t"
  971. "psrlq $16, %%mm7 \n\t"
  972. "movq %%mm7, %%mm1 \n\t"
  973. "psubusb %%mm4, %%mm1 \n\t"
  974. "psubb %%mm1, %%mm7 \n\t"
  975. "movq %%mm7, %%mm4 \n\t"
  976. "psrlq $32, %%mm7 \n\t"
  977. "movq %%mm7, %%mm1 \n\t"
  978. "psubusb %%mm4, %%mm1 \n\t"
  979. "psubb %%mm1, %%mm7 \n\t"
  980. #endif
  981. "movq %%mm6, %%mm4 \n\t"
  982. "psrlq $8, %%mm6 \n\t"
  983. #if HAVE_MMX2
  984. "pmaxub %%mm4, %%mm6 \n\t" // max of pixels
  985. "pshufw $0xF9, %%mm6, %%mm4 \n\t"
  986. "pmaxub %%mm4, %%mm6 \n\t"
  987. "pshufw $0xFE, %%mm6, %%mm4 \n\t"
  988. "pmaxub %%mm4, %%mm6 \n\t"
  989. #else
  990. "psubusb %%mm4, %%mm6 \n\t"
  991. "paddb %%mm4, %%mm6 \n\t"
  992. "movq %%mm6, %%mm4 \n\t"
  993. "psrlq $16, %%mm6 \n\t"
  994. "psubusb %%mm4, %%mm6 \n\t"
  995. "paddb %%mm4, %%mm6 \n\t"
  996. "movq %%mm6, %%mm4 \n\t"
  997. "psrlq $32, %%mm6 \n\t"
  998. "psubusb %%mm4, %%mm6 \n\t"
  999. "paddb %%mm4, %%mm6 \n\t"
  1000. #endif
  1001. "movq %%mm6, %%mm0 \n\t" // max
  1002. "psubb %%mm7, %%mm6 \n\t" // max - min
  1003. "push %4 \n\t"
  1004. "movd %%mm6, %k4 \n\t"
  1005. "cmpb "MANGLE(deringThreshold)", %b4 \n\t"
  1006. "pop %4 \n\t"
  1007. " jb 1f \n\t"
  1008. PAVGB(%%mm0, %%mm7) // a=(max + min)/2
  1009. "punpcklbw %%mm7, %%mm7 \n\t"
  1010. "punpcklbw %%mm7, %%mm7 \n\t"
  1011. "punpcklbw %%mm7, %%mm7 \n\t"
  1012. "movq %%mm7, (%4) \n\t"
  1013. "movq (%0), %%mm0 \n\t" // L10
  1014. "movq %%mm0, %%mm1 \n\t" // L10
  1015. "movq %%mm0, %%mm2 \n\t" // L10
  1016. "psllq $8, %%mm1 \n\t"
  1017. "psrlq $8, %%mm2 \n\t"
  1018. "movd -4(%0), %%mm3 \n\t"
  1019. "movd 8(%0), %%mm4 \n\t"
  1020. "psrlq $24, %%mm3 \n\t"
  1021. "psllq $56, %%mm4 \n\t"
  1022. "por %%mm3, %%mm1 \n\t" // L00
  1023. "por %%mm4, %%mm2 \n\t" // L20
  1024. "movq %%mm1, %%mm3 \n\t" // L00
  1025. PAVGB(%%mm2, %%mm1) // (L20 + L00)/2
  1026. PAVGB(%%mm0, %%mm1) // (L20 + L00 + 2L10)/4
  1027. "psubusb %%mm7, %%mm0 \n\t"
  1028. "psubusb %%mm7, %%mm2 \n\t"
  1029. "psubusb %%mm7, %%mm3 \n\t"
  1030. "pcmpeqb "MANGLE(b00)", %%mm0 \n\t" // L10 > a ? 0 : -1
  1031. "pcmpeqb "MANGLE(b00)", %%mm2 \n\t" // L20 > a ? 0 : -1
  1032. "pcmpeqb "MANGLE(b00)", %%mm3 \n\t" // L00 > a ? 0 : -1
  1033. "paddb %%mm2, %%mm0 \n\t"
  1034. "paddb %%mm3, %%mm0 \n\t"
  1035. "movq (%%"REG_a"), %%mm2 \n\t" // L11
  1036. "movq %%mm2, %%mm3 \n\t" // L11
  1037. "movq %%mm2, %%mm4 \n\t" // L11
  1038. "psllq $8, %%mm3 \n\t"
  1039. "psrlq $8, %%mm4 \n\t"
  1040. "movd -4(%%"REG_a"), %%mm5 \n\t"
  1041. "movd 8(%%"REG_a"), %%mm6 \n\t"
  1042. "psrlq $24, %%mm5 \n\t"
  1043. "psllq $56, %%mm6 \n\t"
  1044. "por %%mm5, %%mm3 \n\t" // L01
  1045. "por %%mm6, %%mm4 \n\t" // L21
  1046. "movq %%mm3, %%mm5 \n\t" // L01
  1047. PAVGB(%%mm4, %%mm3) // (L21 + L01)/2
  1048. PAVGB(%%mm2, %%mm3) // (L21 + L01 + 2L11)/4
  1049. "psubusb %%mm7, %%mm2 \n\t"
  1050. "psubusb %%mm7, %%mm4 \n\t"
  1051. "psubusb %%mm7, %%mm5 \n\t"
  1052. "pcmpeqb "MANGLE(b00)", %%mm2 \n\t" // L11 > a ? 0 : -1
  1053. "pcmpeqb "MANGLE(b00)", %%mm4 \n\t" // L21 > a ? 0 : -1
  1054. "pcmpeqb "MANGLE(b00)", %%mm5 \n\t" // L01 > a ? 0 : -1
  1055. "paddb %%mm4, %%mm2 \n\t"
  1056. "paddb %%mm5, %%mm2 \n\t"
  1057. // 0, 2, 3, 1
  1058. #define REAL_DERING_CORE(dst,src,ppsx,psx,sx,pplx,plx,lx,t0,t1) \
  1059. "movq " #src ", " #sx " \n\t" /* src[0] */\
  1060. "movq " #sx ", " #lx " \n\t" /* src[0] */\
  1061. "movq " #sx ", " #t0 " \n\t" /* src[0] */\
  1062. "psllq $8, " #lx " \n\t"\
  1063. "psrlq $8, " #t0 " \n\t"\
  1064. "movd -4" #src ", " #t1 " \n\t"\
  1065. "psrlq $24, " #t1 " \n\t"\
  1066. "por " #t1 ", " #lx " \n\t" /* src[-1] */\
  1067. "movd 8" #src ", " #t1 " \n\t"\
  1068. "psllq $56, " #t1 " \n\t"\
  1069. "por " #t1 ", " #t0 " \n\t" /* src[+1] */\
  1070. "movq " #lx ", " #t1 " \n\t" /* src[-1] */\
  1071. PAVGB(t0, lx) /* (src[-1] + src[+1])/2 */\
  1072. PAVGB(sx, lx) /* (src[-1] + 2src[0] + src[+1])/4 */\
  1073. PAVGB(lx, pplx) \
  1074. "movq " #lx ", 8(%4) \n\t"\
  1075. "movq (%4), " #lx " \n\t"\
  1076. "psubusb " #lx ", " #t1 " \n\t"\
  1077. "psubusb " #lx ", " #t0 " \n\t"\
  1078. "psubusb " #lx ", " #sx " \n\t"\
  1079. "movq "MANGLE(b00)", " #lx " \n\t"\
  1080. "pcmpeqb " #lx ", " #t1 " \n\t" /* src[-1] > a ? 0 : -1*/\
  1081. "pcmpeqb " #lx ", " #t0 " \n\t" /* src[+1] > a ? 0 : -1*/\
  1082. "pcmpeqb " #lx ", " #sx " \n\t" /* src[0] > a ? 0 : -1*/\
  1083. "paddb " #t1 ", " #t0 " \n\t"\
  1084. "paddb " #t0 ", " #sx " \n\t"\
  1085. \
  1086. PAVGB(plx, pplx) /* filtered */\
  1087. "movq " #dst ", " #t0 " \n\t" /* dst */\
  1088. "movq " #t0 ", " #t1 " \n\t" /* dst */\
  1089. "psubusb %3, " #t0 " \n\t"\
  1090. "paddusb %3, " #t1 " \n\t"\
  1091. PMAXUB(t0, pplx)\
  1092. PMINUB(t1, pplx, t0)\
  1093. "paddb " #sx ", " #ppsx " \n\t"\
  1094. "paddb " #psx ", " #ppsx " \n\t"\
  1095. "#paddb "MANGLE(b02)", " #ppsx " \n\t"\
  1096. "pand "MANGLE(b08)", " #ppsx " \n\t"\
  1097. "pcmpeqb " #lx ", " #ppsx " \n\t"\
  1098. "pand " #ppsx ", " #pplx " \n\t"\
  1099. "pandn " #dst ", " #ppsx " \n\t"\
  1100. "por " #pplx ", " #ppsx " \n\t"\
  1101. "movq " #ppsx ", " #dst " \n\t"\
  1102. "movq 8(%4), " #lx " \n\t"
  1103. #define DERING_CORE(dst,src,ppsx,psx,sx,pplx,plx,lx,t0,t1) \
  1104. REAL_DERING_CORE(dst,src,ppsx,psx,sx,pplx,plx,lx,t0,t1)
  1105. /*
  1106. 0000000
  1107. 1111111
  1108. 1111110
  1109. 1111101
  1110. 1111100
  1111. 1111011
  1112. 1111010
  1113. 1111001
  1114. 1111000
  1115. 1110111
  1116. */
  1117. //DERING_CORE(dst ,src ,ppsx ,psx ,sx ,pplx ,plx ,lx ,t0 ,t1)
  1118. DERING_CORE((%%REGa) ,(%%REGa, %1) ,%%mm0,%%mm2,%%mm4,%%mm1,%%mm3,%%mm5,%%mm6,%%mm7)
  1119. DERING_CORE((%%REGa, %1) ,(%%REGa, %1, 2),%%mm2,%%mm4,%%mm0,%%mm3,%%mm5,%%mm1,%%mm6,%%mm7)
  1120. DERING_CORE((%%REGa, %1, 2),(%0, %1, 4) ,%%mm4,%%mm0,%%mm2,%%mm5,%%mm1,%%mm3,%%mm6,%%mm7)
  1121. DERING_CORE((%0, %1, 4) ,(%%REGd) ,%%mm0,%%mm2,%%mm4,%%mm1,%%mm3,%%mm5,%%mm6,%%mm7)
  1122. DERING_CORE((%%REGd) ,(%%REGd, %1) ,%%mm2,%%mm4,%%mm0,%%mm3,%%mm5,%%mm1,%%mm6,%%mm7)
  1123. DERING_CORE((%%REGd, %1) ,(%%REGd, %1, 2),%%mm4,%%mm0,%%mm2,%%mm5,%%mm1,%%mm3,%%mm6,%%mm7)
  1124. DERING_CORE((%%REGd, %1, 2),(%0, %1, 8) ,%%mm0,%%mm2,%%mm4,%%mm1,%%mm3,%%mm5,%%mm6,%%mm7)
  1125. DERING_CORE((%0, %1, 8) ,(%%REGd, %1, 4),%%mm2,%%mm4,%%mm0,%%mm3,%%mm5,%%mm1,%%mm6,%%mm7)
  1126. "1: \n\t"
  1127. : : "r" (src), "r" ((x86_reg)stride), "m" (c->pQPb), "m"(c->pQPb2), "q"(tmp)
  1128. : "%"REG_a, "%"REG_d
  1129. );
  1130. #else //HAVE_MMX2 || HAVE_AMD3DNOW
  1131. int y;
  1132. int min=255;
  1133. int max=0;
  1134. int avg;
  1135. uint8_t *p;
  1136. int s[10];
  1137. const int QP2= c->QP/2 + 1;
  1138. for(y=1; y<9; y++){
  1139. int x;
  1140. p= src + stride*y;
  1141. for(x=1; x<9; x++){
  1142. p++;
  1143. if(*p > max) max= *p;
  1144. if(*p < min) min= *p;
  1145. }
  1146. }
  1147. avg= (min + max + 1)>>1;
  1148. if(max - min <deringThreshold) return;
  1149. for(y=0; y<10; y++){
  1150. int t = 0;
  1151. if(src[stride*y + 0] > avg) t+= 1;
  1152. if(src[stride*y + 1] > avg) t+= 2;
  1153. if(src[stride*y + 2] > avg) t+= 4;
  1154. if(src[stride*y + 3] > avg) t+= 8;
  1155. if(src[stride*y + 4] > avg) t+= 16;
  1156. if(src[stride*y + 5] > avg) t+= 32;
  1157. if(src[stride*y + 6] > avg) t+= 64;
  1158. if(src[stride*y + 7] > avg) t+= 128;
  1159. if(src[stride*y + 8] > avg) t+= 256;
  1160. if(src[stride*y + 9] > avg) t+= 512;
  1161. t |= (~t)<<16;
  1162. t &= (t<<1) & (t>>1);
  1163. s[y] = t;
  1164. }
  1165. for(y=1; y<9; y++){
  1166. int t = s[y-1] & s[y] & s[y+1];
  1167. t|= t>>16;
  1168. s[y-1]= t;
  1169. }
  1170. for(y=1; y<9; y++){
  1171. int x;
  1172. int t = s[y-1];
  1173. p= src + stride*y;
  1174. for(x=1; x<9; x++){
  1175. p++;
  1176. if(t & (1<<x)){
  1177. int f= (*(p-stride-1)) + 2*(*(p-stride)) + (*(p-stride+1))
  1178. +2*(*(p -1)) + 4*(*p ) + 2*(*(p +1))
  1179. +(*(p+stride-1)) + 2*(*(p+stride)) + (*(p+stride+1));
  1180. f= (f + 8)>>4;
  1181. #ifdef DEBUG_DERING_THRESHOLD
  1182. __asm__ volatile("emms\n\t":);
  1183. {
  1184. static long long numPixels=0;
  1185. if(x!=1 && x!=8 && y!=1 && y!=8) numPixels++;
  1186. // if((max-min)<20 || (max-min)*QP<200)
  1187. // if((max-min)*QP < 500)
  1188. // if(max-min<QP/2)
  1189. if(max-min < 20){
  1190. static int numSkipped=0;
  1191. static int errorSum=0;
  1192. static int worstQP=0;
  1193. static int worstRange=0;
  1194. static int worstDiff=0;
  1195. int diff= (f - *p);
  1196. int absDiff= FFABS(diff);
  1197. int error= diff*diff;
  1198. if(x==1 || x==8 || y==1 || y==8) continue;
  1199. numSkipped++;
  1200. if(absDiff > worstDiff){
  1201. worstDiff= absDiff;
  1202. worstQP= QP;
  1203. worstRange= max-min;
  1204. }
  1205. errorSum+= error;
  1206. if(1024LL*1024LL*1024LL % numSkipped == 0){
  1207. av_log(c, AV_LOG_INFO, "sum:%1.3f, skip:%d, wQP:%d, "
  1208. "wRange:%d, wDiff:%d, relSkip:%1.3f\n",
  1209. (float)errorSum/numSkipped, numSkipped, worstQP, worstRange,
  1210. worstDiff, (float)numSkipped/numPixels);
  1211. }
  1212. }
  1213. }
  1214. #endif
  1215. if (*p + QP2 < f) *p= *p + QP2;
  1216. else if(*p - QP2 > f) *p= *p - QP2;
  1217. else *p=f;
  1218. }
  1219. }
  1220. }
  1221. #ifdef DEBUG_DERING_THRESHOLD
  1222. if(max-min < 20){
  1223. for(y=1; y<9; y++){
  1224. int x;
  1225. int t = 0;
  1226. p= src + stride*y;
  1227. for(x=1; x<9; x++){
  1228. p++;
  1229. *p = FFMIN(*p + 20, 255);
  1230. }
  1231. }
  1232. // src[0] = src[7]=src[stride*7]=src[stride*7 + 7]=255;
  1233. }
  1234. #endif
  1235. #endif //HAVE_MMX2 || HAVE_AMD3DNOW
  1236. }
  1237. #endif //HAVE_ALTIVEC
  1238. /**
  1239. * Deinterlace the given block by linearly interpolating every second line.
  1240. * will be called for every 8x8 block and can read & write from line 4-15
  1241. * lines 0-3 have been passed through the deblock / dering filters already, but can be read, too.
  1242. * lines 4-12 will be read into the deblocking filter and should be deinterlaced
  1243. */
  1244. static inline void RENAME(deInterlaceInterpolateLinear)(uint8_t src[], int stride)
  1245. {
  1246. #if HAVE_MMX2 || HAVE_AMD3DNOW
  1247. src+= 4*stride;
  1248. __asm__ volatile(
  1249. "lea (%0, %1), %%"REG_a" \n\t"
  1250. "lea (%%"REG_a", %1, 4), %%"REG_c" \n\t"
  1251. // 0 1 2 3 4 5 6 7 8 9
  1252. // %0 eax eax+%1 eax+2%1 %0+4%1 ecx ecx+%1 ecx+2%1 %0+8%1 ecx+4%1
  1253. "movq (%0), %%mm0 \n\t"
  1254. "movq (%%"REG_a", %1), %%mm1 \n\t"
  1255. PAVGB(%%mm1, %%mm0)
  1256. "movq %%mm0, (%%"REG_a") \n\t"
  1257. "movq (%0, %1, 4), %%mm0 \n\t"
  1258. PAVGB(%%mm0, %%mm1)
  1259. "movq %%mm1, (%%"REG_a", %1, 2) \n\t"
  1260. "movq (%%"REG_c", %1), %%mm1 \n\t"
  1261. PAVGB(%%mm1, %%mm0)
  1262. "movq %%mm0, (%%"REG_c") \n\t"
  1263. "movq (%0, %1, 8), %%mm0 \n\t"
  1264. PAVGB(%%mm0, %%mm1)
  1265. "movq %%mm1, (%%"REG_c", %1, 2) \n\t"
  1266. : : "r" (src), "r" ((x86_reg)stride)
  1267. : "%"REG_a, "%"REG_c
  1268. );
  1269. #else
  1270. int a, b, x;
  1271. src+= 4*stride;
  1272. for(x=0; x<2; x++){
  1273. a= *(uint32_t*)&src[stride*0];
  1274. b= *(uint32_t*)&src[stride*2];
  1275. *(uint32_t*)&src[stride*1]= (a|b) - (((a^b)&0xFEFEFEFEUL)>>1);
  1276. a= *(uint32_t*)&src[stride*4];
  1277. *(uint32_t*)&src[stride*3]= (a|b) - (((a^b)&0xFEFEFEFEUL)>>1);
  1278. b= *(uint32_t*)&src[stride*6];
  1279. *(uint32_t*)&src[stride*5]= (a|b) - (((a^b)&0xFEFEFEFEUL)>>1);
  1280. a= *(uint32_t*)&src[stride*8];
  1281. *(uint32_t*)&src[stride*7]= (a|b) - (((a^b)&0xFEFEFEFEUL)>>1);
  1282. src += 4;
  1283. }
  1284. #endif
  1285. }
  1286. /**
  1287. * Deinterlace the given block by cubic interpolating every second line.
  1288. * will be called for every 8x8 block and can read & write from line 4-15
  1289. * lines 0-3 have been passed through the deblock / dering filters already, but can be read, too.
  1290. * lines 4-12 will be read into the deblocking filter and should be deinterlaced
  1291. * this filter will read lines 3-15 and write 7-13
  1292. */
  1293. static inline void RENAME(deInterlaceInterpolateCubic)(uint8_t src[], int stride)
  1294. {
  1295. #if HAVE_MMX2 || HAVE_AMD3DNOW
  1296. src+= stride*3;
  1297. __asm__ volatile(
  1298. "lea (%0, %1), %%"REG_a" \n\t"
  1299. "lea (%%"REG_a", %1, 4), %%"REG_d" \n\t"
  1300. "lea (%%"REG_d", %1, 4), %%"REG_c" \n\t"
  1301. "add %1, %%"REG_c" \n\t"
  1302. "pxor %%mm7, %%mm7 \n\t"
  1303. // 0 1 2 3 4 5 6 7 8 9 10
  1304. // %0 eax eax+%1 eax+2%1 %0+4%1 edx edx+%1 edx+2%1 %0+8%1 edx+4%1 ecx
  1305. #define REAL_DEINT_CUBIC(a,b,c,d,e)\
  1306. "movq " #a ", %%mm0 \n\t"\
  1307. "movq " #b ", %%mm1 \n\t"\
  1308. "movq " #d ", %%mm2 \n\t"\
  1309. "movq " #e ", %%mm3 \n\t"\
  1310. PAVGB(%%mm2, %%mm1) /* (b+d) /2 */\
  1311. PAVGB(%%mm3, %%mm0) /* a(a+e) /2 */\
  1312. "movq %%mm0, %%mm2 \n\t"\
  1313. "punpcklbw %%mm7, %%mm0 \n\t"\
  1314. "punpckhbw %%mm7, %%mm2 \n\t"\
  1315. "movq %%mm1, %%mm3 \n\t"\
  1316. "punpcklbw %%mm7, %%mm1 \n\t"\
  1317. "punpckhbw %%mm7, %%mm3 \n\t"\
  1318. "psubw %%mm1, %%mm0 \n\t" /* L(a+e - (b+d))/2 */\
  1319. "psubw %%mm3, %%mm2 \n\t" /* H(a+e - (b+d))/2 */\
  1320. "psraw $3, %%mm0 \n\t" /* L(a+e - (b+d))/16 */\
  1321. "psraw $3, %%mm2 \n\t" /* H(a+e - (b+d))/16 */\
  1322. "psubw %%mm0, %%mm1 \n\t" /* L(9b + 9d - a - e)/16 */\
  1323. "psubw %%mm2, %%mm3 \n\t" /* H(9b + 9d - a - e)/16 */\
  1324. "packuswb %%mm3, %%mm1 \n\t"\
  1325. "movq %%mm1, " #c " \n\t"
  1326. #define DEINT_CUBIC(a,b,c,d,e) REAL_DEINT_CUBIC(a,b,c,d,e)
  1327. DEINT_CUBIC((%0) , (%%REGa, %1), (%%REGa, %1, 2), (%0, %1, 4) , (%%REGd, %1))
  1328. DEINT_CUBIC((%%REGa, %1), (%0, %1, 4) , (%%REGd) , (%%REGd, %1), (%0, %1, 8))
  1329. DEINT_CUBIC((%0, %1, 4) , (%%REGd, %1), (%%REGd, %1, 2), (%0, %1, 8) , (%%REGc))
  1330. DEINT_CUBIC((%%REGd, %1), (%0, %1, 8) , (%%REGd, %1, 4), (%%REGc) , (%%REGc, %1, 2))
  1331. : : "r" (src), "r" ((x86_reg)stride)
  1332. : "%"REG_a, "%"REG_d, "%"REG_c
  1333. );
  1334. #else //HAVE_MMX2 || HAVE_AMD3DNOW
  1335. int x;
  1336. src+= stride*3;
  1337. for(x=0; x<8; x++){
  1338. src[stride*3] = CLIP((-src[0] + 9*src[stride*2] + 9*src[stride*4] - src[stride*6])>>4);
  1339. src[stride*5] = CLIP((-src[stride*2] + 9*src[stride*4] + 9*src[stride*6] - src[stride*8])>>4);
  1340. src[stride*7] = CLIP((-src[stride*4] + 9*src[stride*6] + 9*src[stride*8] - src[stride*10])>>4);
  1341. src[stride*9] = CLIP((-src[stride*6] + 9*src[stride*8] + 9*src[stride*10] - src[stride*12])>>4);
  1342. src++;
  1343. }
  1344. #endif //HAVE_MMX2 || HAVE_AMD3DNOW
  1345. }
  1346. /**
  1347. * Deinterlace the given block by filtering every second line with a (-1 4 2 4 -1) filter.
  1348. * will be called for every 8x8 block and can read & write from line 4-15
  1349. * lines 0-3 have been passed through the deblock / dering filters already, but can be read, too.
  1350. * lines 4-12 will be read into the deblocking filter and should be deinterlaced
  1351. * this filter will read lines 4-13 and write 5-11
  1352. */
  1353. static inline void RENAME(deInterlaceFF)(uint8_t src[], int stride, uint8_t *tmp)
  1354. {
  1355. #if HAVE_MMX2 || HAVE_AMD3DNOW
  1356. src+= stride*4;
  1357. __asm__ volatile(
  1358. "lea (%0, %1), %%"REG_a" \n\t"
  1359. "lea (%%"REG_a", %1, 4), %%"REG_d" \n\t"
  1360. "pxor %%mm7, %%mm7 \n\t"
  1361. "movq (%2), %%mm0 \n\t"
  1362. // 0 1 2 3 4 5 6 7 8 9 10
  1363. // %0 eax eax+%1 eax+2%1 %0+4%1 edx edx+%1 edx+2%1 %0+8%1 edx+4%1 ecx
  1364. #define REAL_DEINT_FF(a,b,c,d)\
  1365. "movq " #a ", %%mm1 \n\t"\
  1366. "movq " #b ", %%mm2 \n\t"\
  1367. "movq " #c ", %%mm3 \n\t"\
  1368. "movq " #d ", %%mm4 \n\t"\
  1369. PAVGB(%%mm3, %%mm1) \
  1370. PAVGB(%%mm4, %%mm0) \
  1371. "movq %%mm0, %%mm3 \n\t"\
  1372. "punpcklbw %%mm7, %%mm0 \n\t"\
  1373. "punpckhbw %%mm7, %%mm3 \n\t"\
  1374. "movq %%mm1, %%mm4 \n\t"\
  1375. "punpcklbw %%mm7, %%mm1 \n\t"\
  1376. "punpckhbw %%mm7, %%mm4 \n\t"\
  1377. "psllw $2, %%mm1 \n\t"\
  1378. "psllw $2, %%mm4 \n\t"\
  1379. "psubw %%mm0, %%mm1 \n\t"\
  1380. "psubw %%mm3, %%mm4 \n\t"\
  1381. "movq %%mm2, %%mm5 \n\t"\
  1382. "movq %%mm2, %%mm0 \n\t"\
  1383. "punpcklbw %%mm7, %%mm2 \n\t"\
  1384. "punpckhbw %%mm7, %%mm5 \n\t"\
  1385. "paddw %%mm2, %%mm1 \n\t"\
  1386. "paddw %%mm5, %%mm4 \n\t"\
  1387. "psraw $2, %%mm1 \n\t"\
  1388. "psraw $2, %%mm4 \n\t"\
  1389. "packuswb %%mm4, %%mm1 \n\t"\
  1390. "movq %%mm1, " #b " \n\t"\
  1391. #define DEINT_FF(a,b,c,d) REAL_DEINT_FF(a,b,c,d)
  1392. DEINT_FF((%0) , (%%REGa) , (%%REGa, %1), (%%REGa, %1, 2))
  1393. DEINT_FF((%%REGa, %1), (%%REGa, %1, 2), (%0, %1, 4) , (%%REGd) )
  1394. DEINT_FF((%0, %1, 4) , (%%REGd) , (%%REGd, %1), (%%REGd, %1, 2))
  1395. DEINT_FF((%%REGd, %1), (%%REGd, %1, 2), (%0, %1, 8) , (%%REGd, %1, 4))
  1396. "movq %%mm0, (%2) \n\t"
  1397. : : "r" (src), "r" ((x86_reg)stride), "r"(tmp)
  1398. : "%"REG_a, "%"REG_d
  1399. );
  1400. #else //HAVE_MMX2 || HAVE_AMD3DNOW
  1401. int x;
  1402. src+= stride*4;
  1403. for(x=0; x<8; x++){
  1404. int t1= tmp[x];
  1405. int t2= src[stride*1];
  1406. src[stride*1]= CLIP((-t1 + 4*src[stride*0] + 2*t2 + 4*src[stride*2] - src[stride*3] + 4)>>3);
  1407. t1= src[stride*4];
  1408. src[stride*3]= CLIP((-t2 + 4*src[stride*2] + 2*t1 + 4*src[stride*4] - src[stride*5] + 4)>>3);
  1409. t2= src[stride*6];
  1410. src[stride*5]= CLIP((-t1 + 4*src[stride*4] + 2*t2 + 4*src[stride*6] - src[stride*7] + 4)>>3);
  1411. t1= src[stride*8];
  1412. src[stride*7]= CLIP((-t2 + 4*src[stride*6] + 2*t1 + 4*src[stride*8] - src[stride*9] + 4)>>3);
  1413. tmp[x]= t1;
  1414. src++;
  1415. }
  1416. #endif //HAVE_MMX2 || HAVE_AMD3DNOW
  1417. }
  1418. /**
  1419. * Deinterlace the given block by filtering every line with a (-1 2 6 2 -1) filter.
  1420. * will be called for every 8x8 block and can read & write from line 4-15
  1421. * lines 0-3 have been passed through the deblock / dering filters already, but can be read, too.
  1422. * lines 4-12 will be read into the deblocking filter and should be deinterlaced
  1423. * this filter will read lines 4-13 and write 4-11
  1424. */
  1425. static inline void RENAME(deInterlaceL5)(uint8_t src[], int stride, uint8_t *tmp, uint8_t *tmp2)
  1426. {
  1427. #if HAVE_MMX2 || HAVE_AMD3DNOW
  1428. src+= stride*4;
  1429. __asm__ volatile(
  1430. "lea (%0, %1), %%"REG_a" \n\t"
  1431. "lea (%%"REG_a", %1, 4), %%"REG_d" \n\t"
  1432. "pxor %%mm7, %%mm7 \n\t"
  1433. "movq (%2), %%mm0 \n\t"
  1434. "movq (%3), %%mm1 \n\t"
  1435. // 0 1 2 3 4 5 6 7 8 9 10
  1436. // %0 eax eax+%1 eax+2%1 %0+4%1 edx edx+%1 edx+2%1 %0+8%1 edx+4%1 ecx
  1437. #define REAL_DEINT_L5(t1,t2,a,b,c)\
  1438. "movq " #a ", %%mm2 \n\t"\
  1439. "movq " #b ", %%mm3 \n\t"\
  1440. "movq " #c ", %%mm4 \n\t"\
  1441. PAVGB(t2, %%mm3) \
  1442. PAVGB(t1, %%mm4) \
  1443. "movq %%mm2, %%mm5 \n\t"\
  1444. "movq %%mm2, " #t1 " \n\t"\
  1445. "punpcklbw %%mm7, %%mm2 \n\t"\
  1446. "punpckhbw %%mm7, %%mm5 \n\t"\
  1447. "movq %%mm2, %%mm6 \n\t"\
  1448. "paddw %%mm2, %%mm2 \n\t"\
  1449. "paddw %%mm6, %%mm2 \n\t"\
  1450. "movq %%mm5, %%mm6 \n\t"\
  1451. "paddw %%mm5, %%mm5 \n\t"\
  1452. "paddw %%mm6, %%mm5 \n\t"\
  1453. "movq %%mm3, %%mm6 \n\t"\
  1454. "punpcklbw %%mm7, %%mm3 \n\t"\
  1455. "punpckhbw %%mm7, %%mm6 \n\t"\
  1456. "paddw %%mm3, %%mm3 \n\t"\
  1457. "paddw %%mm6, %%mm6 \n\t"\
  1458. "paddw %%mm3, %%mm2 \n\t"\
  1459. "paddw %%mm6, %%mm5 \n\t"\
  1460. "movq %%mm4, %%mm6 \n\t"\
  1461. "punpcklbw %%mm7, %%mm4 \n\t"\
  1462. "punpckhbw %%mm7, %%mm6 \n\t"\
  1463. "psubw %%mm4, %%mm2 \n\t"\
  1464. "psubw %%mm6, %%mm5 \n\t"\
  1465. "psraw $2, %%mm2 \n\t"\
  1466. "psraw $2, %%mm5 \n\t"\
  1467. "packuswb %%mm5, %%mm2 \n\t"\
  1468. "movq %%mm2, " #a " \n\t"\
  1469. #define DEINT_L5(t1,t2,a,b,c) REAL_DEINT_L5(t1,t2,a,b,c)
  1470. DEINT_L5(%%mm0, %%mm1, (%0) , (%%REGa) , (%%REGa, %1) )
  1471. DEINT_L5(%%mm1, %%mm0, (%%REGa) , (%%REGa, %1) , (%%REGa, %1, 2))
  1472. DEINT_L5(%%mm0, %%mm1, (%%REGa, %1) , (%%REGa, %1, 2), (%0, %1, 4) )
  1473. DEINT_L5(%%mm1, %%mm0, (%%REGa, %1, 2), (%0, %1, 4) , (%%REGd) )
  1474. DEINT_L5(%%mm0, %%mm1, (%0, %1, 4) , (%%REGd) , (%%REGd, %1) )
  1475. DEINT_L5(%%mm1, %%mm0, (%%REGd) , (%%REGd, %1) , (%%REGd, %1, 2))
  1476. DEINT_L5(%%mm0, %%mm1, (%%REGd, %1) , (%%REGd, %1, 2), (%0, %1, 8) )
  1477. DEINT_L5(%%mm1, %%mm0, (%%REGd, %1, 2), (%0, %1, 8) , (%%REGd, %1, 4))
  1478. "movq %%mm0, (%2) \n\t"
  1479. "movq %%mm1, (%3) \n\t"
  1480. : : "r" (src), "r" ((x86_reg)stride), "r"(tmp), "r"(tmp2)
  1481. : "%"REG_a, "%"REG_d
  1482. );
  1483. #else //HAVE_MMX2 || HAVE_AMD3DNOW
  1484. int x;
  1485. src+= stride*4;
  1486. for(x=0; x<8; x++){
  1487. int t1= tmp[x];
  1488. int t2= tmp2[x];
  1489. int t3= src[0];
  1490. src[stride*0]= CLIP((-(t1 + src[stride*2]) + 2*(t2 + src[stride*1]) + 6*t3 + 4)>>3);
  1491. t1= src[stride*1];
  1492. src[stride*1]= CLIP((-(t2 + src[stride*3]) + 2*(t3 + src[stride*2]) + 6*t1 + 4)>>3);
  1493. t2= src[stride*2];
  1494. src[stride*2]= CLIP((-(t3 + src[stride*4]) + 2*(t1 + src[stride*3]) + 6*t2 + 4)>>3);
  1495. t3= src[stride*3];
  1496. src[stride*3]= CLIP((-(t1 + src[stride*5]) + 2*(t2 + src[stride*4]) + 6*t3 + 4)>>3);
  1497. t1= src[stride*4];
  1498. src[stride*4]= CLIP((-(t2 + src[stride*6]) + 2*(t3 + src[stride*5]) + 6*t1 + 4)>>3);
  1499. t2= src[stride*5];
  1500. src[stride*5]= CLIP((-(t3 + src[stride*7]) + 2*(t1 + src[stride*6]) + 6*t2 + 4)>>3);
  1501. t3= src[stride*6];
  1502. src[stride*6]= CLIP((-(t1 + src[stride*8]) + 2*(t2 + src[stride*7]) + 6*t3 + 4)>>3);
  1503. t1= src[stride*7];
  1504. src[stride*7]= CLIP((-(t2 + src[stride*9]) + 2*(t3 + src[stride*8]) + 6*t1 + 4)>>3);
  1505. tmp[x]= t3;
  1506. tmp2[x]= t1;
  1507. src++;
  1508. }
  1509. #endif //HAVE_MMX2 || HAVE_AMD3DNOW
  1510. }
  1511. /**
  1512. * Deinterlace the given block by filtering all lines with a (1 2 1) filter.
  1513. * will be called for every 8x8 block and can read & write from line 4-15
  1514. * lines 0-3 have been passed through the deblock / dering filters already, but can be read, too.
  1515. * lines 4-12 will be read into the deblocking filter and should be deinterlaced
  1516. * this filter will read lines 4-13 and write 4-11
  1517. */
  1518. static inline void RENAME(deInterlaceBlendLinear)(uint8_t src[], int stride, uint8_t *tmp)
  1519. {
  1520. #if HAVE_MMX2 || HAVE_AMD3DNOW
  1521. src+= 4*stride;
  1522. __asm__ volatile(
  1523. "lea (%0, %1), %%"REG_a" \n\t"
  1524. "lea (%%"REG_a", %1, 4), %%"REG_d" \n\t"
  1525. // 0 1 2 3 4 5 6 7 8 9
  1526. // %0 eax eax+%1 eax+2%1 %0+4%1 edx edx+%1 edx+2%1 %0+8%1 edx+4%1
  1527. "movq (%2), %%mm0 \n\t" // L0
  1528. "movq (%%"REG_a"), %%mm1 \n\t" // L2
  1529. PAVGB(%%mm1, %%mm0) // L0+L2
  1530. "movq (%0), %%mm2 \n\t" // L1
  1531. PAVGB(%%mm2, %%mm0)
  1532. "movq %%mm0, (%0) \n\t"
  1533. "movq (%%"REG_a", %1), %%mm0 \n\t" // L3
  1534. PAVGB(%%mm0, %%mm2) // L1+L3
  1535. PAVGB(%%mm1, %%mm2) // 2L2 + L1 + L3
  1536. "movq %%mm2, (%%"REG_a") \n\t"
  1537. "movq (%%"REG_a", %1, 2), %%mm2 \n\t" // L4
  1538. PAVGB(%%mm2, %%mm1) // L2+L4
  1539. PAVGB(%%mm0, %%mm1) // 2L3 + L2 + L4
  1540. "movq %%mm1, (%%"REG_a", %1) \n\t"
  1541. "movq (%0, %1, 4), %%mm1 \n\t" // L5
  1542. PAVGB(%%mm1, %%mm0) // L3+L5
  1543. PAVGB(%%mm2, %%mm0) // 2L4 + L3 + L5
  1544. "movq %%mm0, (%%"REG_a", %1, 2) \n\t"
  1545. "movq (%%"REG_d"), %%mm0 \n\t" // L6
  1546. PAVGB(%%mm0, %%mm2) // L4+L6
  1547. PAVGB(%%mm1, %%mm2) // 2L5 + L4 + L6
  1548. "movq %%mm2, (%0, %1, 4) \n\t"
  1549. "movq (%%"REG_d", %1), %%mm2 \n\t" // L7
  1550. PAVGB(%%mm2, %%mm1) // L5+L7
  1551. PAVGB(%%mm0, %%mm1) // 2L6 + L5 + L7
  1552. "movq %%mm1, (%%"REG_d") \n\t"
  1553. "movq (%%"REG_d", %1, 2), %%mm1 \n\t" // L8
  1554. PAVGB(%%mm1, %%mm0) // L6+L8
  1555. PAVGB(%%mm2, %%mm0) // 2L7 + L6 + L8
  1556. "movq %%mm0, (%%"REG_d", %1) \n\t"
  1557. "movq (%0, %1, 8), %%mm0 \n\t" // L9
  1558. PAVGB(%%mm0, %%mm2) // L7+L9
  1559. PAVGB(%%mm1, %%mm2) // 2L8 + L7 + L9
  1560. "movq %%mm2, (%%"REG_d", %1, 2) \n\t"
  1561. "movq %%mm1, (%2) \n\t"
  1562. : : "r" (src), "r" ((x86_reg)stride), "r" (tmp)
  1563. : "%"REG_a, "%"REG_d
  1564. );
  1565. #else //HAVE_MMX2 || HAVE_AMD3DNOW
  1566. int a, b, c, x;
  1567. src+= 4*stride;
  1568. for(x=0; x<2; x++){
  1569. a= *(uint32_t*)&tmp[stride*0];
  1570. b= *(uint32_t*)&src[stride*0];
  1571. c= *(uint32_t*)&src[stride*1];
  1572. a= (a&c) + (((a^c)&0xFEFEFEFEUL)>>1);
  1573. *(uint32_t*)&src[stride*0]= (a|b) - (((a^b)&0xFEFEFEFEUL)>>1);
  1574. a= *(uint32_t*)&src[stride*2];
  1575. b= (a&b) + (((a^b)&0xFEFEFEFEUL)>>1);
  1576. *(uint32_t*)&src[stride*1]= (c|b) - (((c^b)&0xFEFEFEFEUL)>>1);
  1577. b= *(uint32_t*)&src[stride*3];
  1578. c= (b&c) + (((b^c)&0xFEFEFEFEUL)>>1);
  1579. *(uint32_t*)&src[stride*2]= (c|a) - (((c^a)&0xFEFEFEFEUL)>>1);
  1580. c= *(uint32_t*)&src[stride*4];
  1581. a= (a&c) + (((a^c)&0xFEFEFEFEUL)>>1);
  1582. *(uint32_t*)&src[stride*3]= (a|b) - (((a^b)&0xFEFEFEFEUL)>>1);
  1583. a= *(uint32_t*)&src[stride*5];
  1584. b= (a&b) + (((a^b)&0xFEFEFEFEUL)>>1);
  1585. *(uint32_t*)&src[stride*4]= (c|b) - (((c^b)&0xFEFEFEFEUL)>>1);
  1586. b= *(uint32_t*)&src[stride*6];
  1587. c= (b&c) + (((b^c)&0xFEFEFEFEUL)>>1);
  1588. *(uint32_t*)&src[stride*5]= (c|a) - (((c^a)&0xFEFEFEFEUL)>>1);
  1589. c= *(uint32_t*)&src[stride*7];
  1590. a= (a&c) + (((a^c)&0xFEFEFEFEUL)>>1);
  1591. *(uint32_t*)&src[stride*6]= (a|b) - (((a^b)&0xFEFEFEFEUL)>>1);
  1592. a= *(uint32_t*)&src[stride*8];
  1593. b= (a&b) + (((a^b)&0xFEFEFEFEUL)>>1);
  1594. *(uint32_t*)&src[stride*7]= (c|b) - (((c^b)&0xFEFEFEFEUL)>>1);
  1595. *(uint32_t*)&tmp[stride*0]= c;
  1596. src += 4;
  1597. tmp += 4;
  1598. }
  1599. #endif //HAVE_MMX2 || HAVE_AMD3DNOW
  1600. }
  1601. /**
  1602. * Deinterlace the given block by applying a median filter to every second line.
  1603. * will be called for every 8x8 block and can read & write from line 4-15,
  1604. * lines 0-3 have been passed through the deblock / dering filters already, but can be read, too.
  1605. * lines 4-12 will be read into the deblocking filter and should be deinterlaced
  1606. */
  1607. static inline void RENAME(deInterlaceMedian)(uint8_t src[], int stride)
  1608. {
  1609. #if HAVE_MMX
  1610. src+= 4*stride;
  1611. #if HAVE_MMX2
  1612. __asm__ volatile(
  1613. "lea (%0, %1), %%"REG_a" \n\t"
  1614. "lea (%%"REG_a", %1, 4), %%"REG_d" \n\t"
  1615. // 0 1 2 3 4 5 6 7 8 9
  1616. // %0 eax eax+%1 eax+2%1 %0+4%1 edx edx+%1 edx+2%1 %0+8%1 edx+4%1
  1617. "movq (%0), %%mm0 \n\t" //
  1618. "movq (%%"REG_a", %1), %%mm2 \n\t" //
  1619. "movq (%%"REG_a"), %%mm1 \n\t" //
  1620. "movq %%mm0, %%mm3 \n\t"
  1621. "pmaxub %%mm1, %%mm0 \n\t" //
  1622. "pminub %%mm3, %%mm1 \n\t" //
  1623. "pmaxub %%mm2, %%mm1 \n\t" //
  1624. "pminub %%mm1, %%mm0 \n\t"
  1625. "movq %%mm0, (%%"REG_a") \n\t"
  1626. "movq (%0, %1, 4), %%mm0 \n\t" //
  1627. "movq (%%"REG_a", %1, 2), %%mm1 \n\t" //
  1628. "movq %%mm2, %%mm3 \n\t"
  1629. "pmaxub %%mm1, %%mm2 \n\t" //
  1630. "pminub %%mm3, %%mm1 \n\t" //
  1631. "pmaxub %%mm0, %%mm1 \n\t" //
  1632. "pminub %%mm1, %%mm2 \n\t"
  1633. "movq %%mm2, (%%"REG_a", %1, 2) \n\t"
  1634. "movq (%%"REG_d"), %%mm2 \n\t" //
  1635. "movq (%%"REG_d", %1), %%mm1 \n\t" //
  1636. "movq %%mm2, %%mm3 \n\t"
  1637. "pmaxub %%mm0, %%mm2 \n\t" //
  1638. "pminub %%mm3, %%mm0 \n\t" //
  1639. "pmaxub %%mm1, %%mm0 \n\t" //
  1640. "pminub %%mm0, %%mm2 \n\t"
  1641. "movq %%mm2, (%%"REG_d") \n\t"
  1642. "movq (%%"REG_d", %1, 2), %%mm2 \n\t" //
  1643. "movq (%0, %1, 8), %%mm0 \n\t" //
  1644. "movq %%mm2, %%mm3 \n\t"
  1645. "pmaxub %%mm0, %%mm2 \n\t" //
  1646. "pminub %%mm3, %%mm0 \n\t" //
  1647. "pmaxub %%mm1, %%mm0 \n\t" //
  1648. "pminub %%mm0, %%mm2 \n\t"
  1649. "movq %%mm2, (%%"REG_d", %1, 2) \n\t"
  1650. : : "r" (src), "r" ((x86_reg)stride)
  1651. : "%"REG_a, "%"REG_d
  1652. );
  1653. #else // MMX without MMX2
  1654. __asm__ volatile(
  1655. "lea (%0, %1), %%"REG_a" \n\t"
  1656. "lea (%%"REG_a", %1, 4), %%"REG_d" \n\t"
  1657. // 0 1 2 3 4 5 6 7 8 9
  1658. // %0 eax eax+%1 eax+2%1 %0+4%1 edx edx+%1 edx+2%1 %0+8%1 edx+4%1
  1659. "pxor %%mm7, %%mm7 \n\t"
  1660. #define REAL_MEDIAN(a,b,c)\
  1661. "movq " #a ", %%mm0 \n\t"\
  1662. "movq " #b ", %%mm2 \n\t"\
  1663. "movq " #c ", %%mm1 \n\t"\
  1664. "movq %%mm0, %%mm3 \n\t"\
  1665. "movq %%mm1, %%mm4 \n\t"\
  1666. "movq %%mm2, %%mm5 \n\t"\
  1667. "psubusb %%mm1, %%mm3 \n\t"\
  1668. "psubusb %%mm2, %%mm4 \n\t"\
  1669. "psubusb %%mm0, %%mm5 \n\t"\
  1670. "pcmpeqb %%mm7, %%mm3 \n\t"\
  1671. "pcmpeqb %%mm7, %%mm4 \n\t"\
  1672. "pcmpeqb %%mm7, %%mm5 \n\t"\
  1673. "movq %%mm3, %%mm6 \n\t"\
  1674. "pxor %%mm4, %%mm3 \n\t"\
  1675. "pxor %%mm5, %%mm4 \n\t"\
  1676. "pxor %%mm6, %%mm5 \n\t"\
  1677. "por %%mm3, %%mm1 \n\t"\
  1678. "por %%mm4, %%mm2 \n\t"\
  1679. "por %%mm5, %%mm0 \n\t"\
  1680. "pand %%mm2, %%mm0 \n\t"\
  1681. "pand %%mm1, %%mm0 \n\t"\
  1682. "movq %%mm0, " #b " \n\t"
  1683. #define MEDIAN(a,b,c) REAL_MEDIAN(a,b,c)
  1684. MEDIAN((%0) , (%%REGa) , (%%REGa, %1))
  1685. MEDIAN((%%REGa, %1), (%%REGa, %1, 2), (%0, %1, 4))
  1686. MEDIAN((%0, %1, 4) , (%%REGd) , (%%REGd, %1))
  1687. MEDIAN((%%REGd, %1), (%%REGd, %1, 2), (%0, %1, 8))
  1688. : : "r" (src), "r" ((x86_reg)stride)
  1689. : "%"REG_a, "%"REG_d
  1690. );
  1691. #endif //HAVE_MMX2
  1692. #else //HAVE_MMX
  1693. int x, y;
  1694. src+= 4*stride;
  1695. // FIXME - there should be a way to do a few columns in parallel like w/mmx
  1696. for(x=0; x<8; x++){
  1697. uint8_t *colsrc = src;
  1698. for (y=0; y<4; y++){
  1699. int a, b, c, d, e, f;
  1700. a = colsrc[0 ];
  1701. b = colsrc[stride ];
  1702. c = colsrc[stride*2];
  1703. d = (a-b)>>31;
  1704. e = (b-c)>>31;
  1705. f = (c-a)>>31;
  1706. colsrc[stride ] = (a|(d^f)) & (b|(d^e)) & (c|(e^f));
  1707. colsrc += stride*2;
  1708. }
  1709. src++;
  1710. }
  1711. #endif //HAVE_MMX
  1712. }
  1713. #if HAVE_MMX
  1714. /**
  1715. * transposes and shift the given 8x8 Block into dst1 and dst2
  1716. */
  1717. static inline void RENAME(transpose1)(uint8_t *dst1, uint8_t *dst2, uint8_t *src, int srcStride)
  1718. {
  1719. __asm__(
  1720. "lea (%0, %1), %%"REG_a" \n\t"
  1721. // 0 1 2 3 4 5 6 7 8 9
  1722. // %0 eax eax+%1 eax+2%1 %0+4%1 edx edx+%1 edx+2%1 %0+8%1 edx+4%1
  1723. "movq (%0), %%mm0 \n\t" // 12345678
  1724. "movq (%%"REG_a"), %%mm1 \n\t" // abcdefgh
  1725. "movq %%mm0, %%mm2 \n\t" // 12345678
  1726. "punpcklbw %%mm1, %%mm0 \n\t" // 1a2b3c4d
  1727. "punpckhbw %%mm1, %%mm2 \n\t" // 5e6f7g8h
  1728. "movq (%%"REG_a", %1), %%mm1 \n\t"
  1729. "movq (%%"REG_a", %1, 2), %%mm3 \n\t"
  1730. "movq %%mm1, %%mm4 \n\t"
  1731. "punpcklbw %%mm3, %%mm1 \n\t"
  1732. "punpckhbw %%mm3, %%mm4 \n\t"
  1733. "movq %%mm0, %%mm3 \n\t"
  1734. "punpcklwd %%mm1, %%mm0 \n\t"
  1735. "punpckhwd %%mm1, %%mm3 \n\t"
  1736. "movq %%mm2, %%mm1 \n\t"
  1737. "punpcklwd %%mm4, %%mm2 \n\t"
  1738. "punpckhwd %%mm4, %%mm1 \n\t"
  1739. "movd %%mm0, 128(%2) \n\t"
  1740. "psrlq $32, %%mm0 \n\t"
  1741. "movd %%mm0, 144(%2) \n\t"
  1742. "movd %%mm3, 160(%2) \n\t"
  1743. "psrlq $32, %%mm3 \n\t"
  1744. "movd %%mm3, 176(%2) \n\t"
  1745. "movd %%mm3, 48(%3) \n\t"
  1746. "movd %%mm2, 192(%2) \n\t"
  1747. "movd %%mm2, 64(%3) \n\t"
  1748. "psrlq $32, %%mm2 \n\t"
  1749. "movd %%mm2, 80(%3) \n\t"
  1750. "movd %%mm1, 96(%3) \n\t"
  1751. "psrlq $32, %%mm1 \n\t"
  1752. "movd %%mm1, 112(%3) \n\t"
  1753. "lea (%%"REG_a", %1, 4), %%"REG_a" \n\t"
  1754. "movq (%0, %1, 4), %%mm0 \n\t" // 12345678
  1755. "movq (%%"REG_a"), %%mm1 \n\t" // abcdefgh
  1756. "movq %%mm0, %%mm2 \n\t" // 12345678
  1757. "punpcklbw %%mm1, %%mm0 \n\t" // 1a2b3c4d
  1758. "punpckhbw %%mm1, %%mm2 \n\t" // 5e6f7g8h
  1759. "movq (%%"REG_a", %1), %%mm1 \n\t"
  1760. "movq (%%"REG_a", %1, 2), %%mm3 \n\t"
  1761. "movq %%mm1, %%mm4 \n\t"
  1762. "punpcklbw %%mm3, %%mm1 \n\t"
  1763. "punpckhbw %%mm3, %%mm4 \n\t"
  1764. "movq %%mm0, %%mm3 \n\t"
  1765. "punpcklwd %%mm1, %%mm0 \n\t"
  1766. "punpckhwd %%mm1, %%mm3 \n\t"
  1767. "movq %%mm2, %%mm1 \n\t"
  1768. "punpcklwd %%mm4, %%mm2 \n\t"
  1769. "punpckhwd %%mm4, %%mm1 \n\t"
  1770. "movd %%mm0, 132(%2) \n\t"
  1771. "psrlq $32, %%mm0 \n\t"
  1772. "movd %%mm0, 148(%2) \n\t"
  1773. "movd %%mm3, 164(%2) \n\t"
  1774. "psrlq $32, %%mm3 \n\t"
  1775. "movd %%mm3, 180(%2) \n\t"
  1776. "movd %%mm3, 52(%3) \n\t"
  1777. "movd %%mm2, 196(%2) \n\t"
  1778. "movd %%mm2, 68(%3) \n\t"
  1779. "psrlq $32, %%mm2 \n\t"
  1780. "movd %%mm2, 84(%3) \n\t"
  1781. "movd %%mm1, 100(%3) \n\t"
  1782. "psrlq $32, %%mm1 \n\t"
  1783. "movd %%mm1, 116(%3) \n\t"
  1784. :: "r" (src), "r" ((x86_reg)srcStride), "r" (dst1), "r" (dst2)
  1785. : "%"REG_a
  1786. );
  1787. }
  1788. /**
  1789. * transposes the given 8x8 block
  1790. */
  1791. static inline void RENAME(transpose2)(uint8_t *dst, int dstStride, uint8_t *src)
  1792. {
  1793. __asm__(
  1794. "lea (%0, %1), %%"REG_a" \n\t"
  1795. "lea (%%"REG_a",%1,4), %%"REG_d" \n\t"
  1796. // 0 1 2 3 4 5 6 7 8 9
  1797. // %0 eax eax+%1 eax+2%1 %0+4%1 edx edx+%1 edx+2%1 %0+8%1 edx+4%1
  1798. "movq (%2), %%mm0 \n\t" // 12345678
  1799. "movq 16(%2), %%mm1 \n\t" // abcdefgh
  1800. "movq %%mm0, %%mm2 \n\t" // 12345678
  1801. "punpcklbw %%mm1, %%mm0 \n\t" // 1a2b3c4d
  1802. "punpckhbw %%mm1, %%mm2 \n\t" // 5e6f7g8h
  1803. "movq 32(%2), %%mm1 \n\t"
  1804. "movq 48(%2), %%mm3 \n\t"
  1805. "movq %%mm1, %%mm4 \n\t"
  1806. "punpcklbw %%mm3, %%mm1 \n\t"
  1807. "punpckhbw %%mm3, %%mm4 \n\t"
  1808. "movq %%mm0, %%mm3 \n\t"
  1809. "punpcklwd %%mm1, %%mm0 \n\t"
  1810. "punpckhwd %%mm1, %%mm3 \n\t"
  1811. "movq %%mm2, %%mm1 \n\t"
  1812. "punpcklwd %%mm4, %%mm2 \n\t"
  1813. "punpckhwd %%mm4, %%mm1 \n\t"
  1814. "movd %%mm0, (%0) \n\t"
  1815. "psrlq $32, %%mm0 \n\t"
  1816. "movd %%mm0, (%%"REG_a") \n\t"
  1817. "movd %%mm3, (%%"REG_a", %1) \n\t"
  1818. "psrlq $32, %%mm3 \n\t"
  1819. "movd %%mm3, (%%"REG_a", %1, 2) \n\t"
  1820. "movd %%mm2, (%0, %1, 4) \n\t"
  1821. "psrlq $32, %%mm2 \n\t"
  1822. "movd %%mm2, (%%"REG_d") \n\t"
  1823. "movd %%mm1, (%%"REG_d", %1) \n\t"
  1824. "psrlq $32, %%mm1 \n\t"
  1825. "movd %%mm1, (%%"REG_d", %1, 2) \n\t"
  1826. "movq 64(%2), %%mm0 \n\t" // 12345678
  1827. "movq 80(%2), %%mm1 \n\t" // abcdefgh
  1828. "movq %%mm0, %%mm2 \n\t" // 12345678
  1829. "punpcklbw %%mm1, %%mm0 \n\t" // 1a2b3c4d
  1830. "punpckhbw %%mm1, %%mm2 \n\t" // 5e6f7g8h
  1831. "movq 96(%2), %%mm1 \n\t"
  1832. "movq 112(%2), %%mm3 \n\t"
  1833. "movq %%mm1, %%mm4 \n\t"
  1834. "punpcklbw %%mm3, %%mm1 \n\t"
  1835. "punpckhbw %%mm3, %%mm4 \n\t"
  1836. "movq %%mm0, %%mm3 \n\t"
  1837. "punpcklwd %%mm1, %%mm0 \n\t"
  1838. "punpckhwd %%mm1, %%mm3 \n\t"
  1839. "movq %%mm2, %%mm1 \n\t"
  1840. "punpcklwd %%mm4, %%mm2 \n\t"
  1841. "punpckhwd %%mm4, %%mm1 \n\t"
  1842. "movd %%mm0, 4(%0) \n\t"
  1843. "psrlq $32, %%mm0 \n\t"
  1844. "movd %%mm0, 4(%%"REG_a") \n\t"
  1845. "movd %%mm3, 4(%%"REG_a", %1) \n\t"
  1846. "psrlq $32, %%mm3 \n\t"
  1847. "movd %%mm3, 4(%%"REG_a", %1, 2) \n\t"
  1848. "movd %%mm2, 4(%0, %1, 4) \n\t"
  1849. "psrlq $32, %%mm2 \n\t"
  1850. "movd %%mm2, 4(%%"REG_d") \n\t"
  1851. "movd %%mm1, 4(%%"REG_d", %1) \n\t"
  1852. "psrlq $32, %%mm1 \n\t"
  1853. "movd %%mm1, 4(%%"REG_d", %1, 2) \n\t"
  1854. :: "r" (dst), "r" ((x86_reg)dstStride), "r" (src)
  1855. : "%"REG_a, "%"REG_d
  1856. );
  1857. }
  1858. #endif //HAVE_MMX
  1859. //static long test=0;
  1860. #if !HAVE_ALTIVEC
  1861. static inline void RENAME(tempNoiseReducer)(uint8_t *src, int stride,
  1862. uint8_t *tempBlurred, uint32_t *tempBlurredPast, int *maxNoise)
  1863. {
  1864. // to save a register (FIXME do this outside of the loops)
  1865. tempBlurredPast[127]= maxNoise[0];
  1866. tempBlurredPast[128]= maxNoise[1];
  1867. tempBlurredPast[129]= maxNoise[2];
  1868. #define FAST_L2_DIFF
  1869. //#define L1_DIFF //u should change the thresholds too if u try that one
  1870. #if HAVE_MMX2 || HAVE_AMD3DNOW
  1871. __asm__ volatile(
  1872. "lea (%2, %2, 2), %%"REG_a" \n\t" // 3*stride
  1873. "lea (%2, %2, 4), %%"REG_d" \n\t" // 5*stride
  1874. "lea (%%"REG_d", %2, 2), %%"REG_c" \n\t" // 7*stride
  1875. // 0 1 2 3 4 5 6 7 8 9
  1876. // %x %x+%2 %x+2%2 %x+eax %x+4%2 %x+edx %x+2eax %x+ecx %x+8%2
  1877. //FIXME reorder?
  1878. #ifdef L1_DIFF //needs mmx2
  1879. "movq (%0), %%mm0 \n\t" // L0
  1880. "psadbw (%1), %%mm0 \n\t" // |L0-R0|
  1881. "movq (%0, %2), %%mm1 \n\t" // L1
  1882. "psadbw (%1, %2), %%mm1 \n\t" // |L1-R1|
  1883. "movq (%0, %2, 2), %%mm2 \n\t" // L2
  1884. "psadbw (%1, %2, 2), %%mm2 \n\t" // |L2-R2|
  1885. "movq (%0, %%"REG_a"), %%mm3 \n\t" // L3
  1886. "psadbw (%1, %%"REG_a"), %%mm3 \n\t" // |L3-R3|
  1887. "movq (%0, %2, 4), %%mm4 \n\t" // L4
  1888. "paddw %%mm1, %%mm0 \n\t"
  1889. "psadbw (%1, %2, 4), %%mm4 \n\t" // |L4-R4|
  1890. "movq (%0, %%"REG_d"), %%mm5 \n\t" // L5
  1891. "paddw %%mm2, %%mm0 \n\t"
  1892. "psadbw (%1, %%"REG_d"), %%mm5 \n\t" // |L5-R5|
  1893. "movq (%0, %%"REG_a", 2), %%mm6 \n\t" // L6
  1894. "paddw %%mm3, %%mm0 \n\t"
  1895. "psadbw (%1, %%"REG_a", 2), %%mm6 \n\t" // |L6-R6|
  1896. "movq (%0, %%"REG_c"), %%mm7 \n\t" // L7
  1897. "paddw %%mm4, %%mm0 \n\t"
  1898. "psadbw (%1, %%"REG_c"), %%mm7 \n\t" // |L7-R7|
  1899. "paddw %%mm5, %%mm6 \n\t"
  1900. "paddw %%mm7, %%mm6 \n\t"
  1901. "paddw %%mm6, %%mm0 \n\t"
  1902. #else //L1_DIFF
  1903. #if defined (FAST_L2_DIFF)
  1904. "pcmpeqb %%mm7, %%mm7 \n\t"
  1905. "movq "MANGLE(b80)", %%mm6 \n\t"
  1906. "pxor %%mm0, %%mm0 \n\t"
  1907. #define REAL_L2_DIFF_CORE(a, b)\
  1908. "movq " #a ", %%mm5 \n\t"\
  1909. "movq " #b ", %%mm2 \n\t"\
  1910. "pxor %%mm7, %%mm2 \n\t"\
  1911. PAVGB(%%mm2, %%mm5)\
  1912. "paddb %%mm6, %%mm5 \n\t"\
  1913. "movq %%mm5, %%mm2 \n\t"\
  1914. "psllw $8, %%mm5 \n\t"\
  1915. "pmaddwd %%mm5, %%mm5 \n\t"\
  1916. "pmaddwd %%mm2, %%mm2 \n\t"\
  1917. "paddd %%mm2, %%mm5 \n\t"\
  1918. "psrld $14, %%mm5 \n\t"\
  1919. "paddd %%mm5, %%mm0 \n\t"
  1920. #else //defined (FAST_L2_DIFF)
  1921. "pxor %%mm7, %%mm7 \n\t"
  1922. "pxor %%mm0, %%mm0 \n\t"
  1923. #define REAL_L2_DIFF_CORE(a, b)\
  1924. "movq " #a ", %%mm5 \n\t"\
  1925. "movq " #b ", %%mm2 \n\t"\
  1926. "movq %%mm5, %%mm1 \n\t"\
  1927. "movq %%mm2, %%mm3 \n\t"\
  1928. "punpcklbw %%mm7, %%mm5 \n\t"\
  1929. "punpckhbw %%mm7, %%mm1 \n\t"\
  1930. "punpcklbw %%mm7, %%mm2 \n\t"\
  1931. "punpckhbw %%mm7, %%mm3 \n\t"\
  1932. "psubw %%mm2, %%mm5 \n\t"\
  1933. "psubw %%mm3, %%mm1 \n\t"\
  1934. "pmaddwd %%mm5, %%mm5 \n\t"\
  1935. "pmaddwd %%mm1, %%mm1 \n\t"\
  1936. "paddd %%mm1, %%mm5 \n\t"\
  1937. "paddd %%mm5, %%mm0 \n\t"
  1938. #endif //defined (FAST_L2_DIFF)
  1939. #define L2_DIFF_CORE(a, b) REAL_L2_DIFF_CORE(a, b)
  1940. L2_DIFF_CORE((%0) , (%1))
  1941. L2_DIFF_CORE((%0, %2) , (%1, %2))
  1942. L2_DIFF_CORE((%0, %2, 2) , (%1, %2, 2))
  1943. L2_DIFF_CORE((%0, %%REGa) , (%1, %%REGa))
  1944. L2_DIFF_CORE((%0, %2, 4) , (%1, %2, 4))
  1945. L2_DIFF_CORE((%0, %%REGd) , (%1, %%REGd))
  1946. L2_DIFF_CORE((%0, %%REGa,2), (%1, %%REGa,2))
  1947. L2_DIFF_CORE((%0, %%REGc) , (%1, %%REGc))
  1948. #endif //L1_DIFF
  1949. "movq %%mm0, %%mm4 \n\t"
  1950. "psrlq $32, %%mm0 \n\t"
  1951. "paddd %%mm0, %%mm4 \n\t"
  1952. "movd %%mm4, %%ecx \n\t"
  1953. "shll $2, %%ecx \n\t"
  1954. "mov %3, %%"REG_d" \n\t"
  1955. "addl -4(%%"REG_d"), %%ecx \n\t"
  1956. "addl 4(%%"REG_d"), %%ecx \n\t"
  1957. "addl -1024(%%"REG_d"), %%ecx \n\t"
  1958. "addl $4, %%ecx \n\t"
  1959. "addl 1024(%%"REG_d"), %%ecx \n\t"
  1960. "shrl $3, %%ecx \n\t"
  1961. "movl %%ecx, (%%"REG_d") \n\t"
  1962. // "mov %3, %%"REG_c" \n\t"
  1963. // "mov %%"REG_c", test \n\t"
  1964. // "jmp 4f \n\t"
  1965. "cmpl 512(%%"REG_d"), %%ecx \n\t"
  1966. " jb 2f \n\t"
  1967. "cmpl 516(%%"REG_d"), %%ecx \n\t"
  1968. " jb 1f \n\t"
  1969. "lea (%%"REG_a", %2, 2), %%"REG_d" \n\t" // 5*stride
  1970. "lea (%%"REG_d", %2, 2), %%"REG_c" \n\t" // 7*stride
  1971. "movq (%0), %%mm0 \n\t" // L0
  1972. "movq (%0, %2), %%mm1 \n\t" // L1
  1973. "movq (%0, %2, 2), %%mm2 \n\t" // L2
  1974. "movq (%0, %%"REG_a"), %%mm3 \n\t" // L3
  1975. "movq (%0, %2, 4), %%mm4 \n\t" // L4
  1976. "movq (%0, %%"REG_d"), %%mm5 \n\t" // L5
  1977. "movq (%0, %%"REG_a", 2), %%mm6 \n\t" // L6
  1978. "movq (%0, %%"REG_c"), %%mm7 \n\t" // L7
  1979. "movq %%mm0, (%1) \n\t" // L0
  1980. "movq %%mm1, (%1, %2) \n\t" // L1
  1981. "movq %%mm2, (%1, %2, 2) \n\t" // L2
  1982. "movq %%mm3, (%1, %%"REG_a") \n\t" // L3
  1983. "movq %%mm4, (%1, %2, 4) \n\t" // L4
  1984. "movq %%mm5, (%1, %%"REG_d") \n\t" // L5
  1985. "movq %%mm6, (%1, %%"REG_a", 2) \n\t" // L6
  1986. "movq %%mm7, (%1, %%"REG_c") \n\t" // L7
  1987. "jmp 4f \n\t"
  1988. "1: \n\t"
  1989. "lea (%%"REG_a", %2, 2), %%"REG_d" \n\t" // 5*stride
  1990. "lea (%%"REG_d", %2, 2), %%"REG_c" \n\t" // 7*stride
  1991. "movq (%0), %%mm0 \n\t" // L0
  1992. PAVGB((%1), %%mm0) // L0
  1993. "movq (%0, %2), %%mm1 \n\t" // L1
  1994. PAVGB((%1, %2), %%mm1) // L1
  1995. "movq (%0, %2, 2), %%mm2 \n\t" // L2
  1996. PAVGB((%1, %2, 2), %%mm2) // L2
  1997. "movq (%0, %%"REG_a"), %%mm3 \n\t" // L3
  1998. PAVGB((%1, %%REGa), %%mm3) // L3
  1999. "movq (%0, %2, 4), %%mm4 \n\t" // L4
  2000. PAVGB((%1, %2, 4), %%mm4) // L4
  2001. "movq (%0, %%"REG_d"), %%mm5 \n\t" // L5
  2002. PAVGB((%1, %%REGd), %%mm5) // L5
  2003. "movq (%0, %%"REG_a", 2), %%mm6 \n\t" // L6
  2004. PAVGB((%1, %%REGa, 2), %%mm6) // L6
  2005. "movq (%0, %%"REG_c"), %%mm7 \n\t" // L7
  2006. PAVGB((%1, %%REGc), %%mm7) // L7
  2007. "movq %%mm0, (%1) \n\t" // R0
  2008. "movq %%mm1, (%1, %2) \n\t" // R1
  2009. "movq %%mm2, (%1, %2, 2) \n\t" // R2
  2010. "movq %%mm3, (%1, %%"REG_a") \n\t" // R3
  2011. "movq %%mm4, (%1, %2, 4) \n\t" // R4
  2012. "movq %%mm5, (%1, %%"REG_d") \n\t" // R5
  2013. "movq %%mm6, (%1, %%"REG_a", 2) \n\t" // R6
  2014. "movq %%mm7, (%1, %%"REG_c") \n\t" // R7
  2015. "movq %%mm0, (%0) \n\t" // L0
  2016. "movq %%mm1, (%0, %2) \n\t" // L1
  2017. "movq %%mm2, (%0, %2, 2) \n\t" // L2
  2018. "movq %%mm3, (%0, %%"REG_a") \n\t" // L3
  2019. "movq %%mm4, (%0, %2, 4) \n\t" // L4
  2020. "movq %%mm5, (%0, %%"REG_d") \n\t" // L5
  2021. "movq %%mm6, (%0, %%"REG_a", 2) \n\t" // L6
  2022. "movq %%mm7, (%0, %%"REG_c") \n\t" // L7
  2023. "jmp 4f \n\t"
  2024. "2: \n\t"
  2025. "cmpl 508(%%"REG_d"), %%ecx \n\t"
  2026. " jb 3f \n\t"
  2027. "lea (%%"REG_a", %2, 2), %%"REG_d" \n\t" // 5*stride
  2028. "lea (%%"REG_d", %2, 2), %%"REG_c" \n\t" // 7*stride
  2029. "movq (%0), %%mm0 \n\t" // L0
  2030. "movq (%0, %2), %%mm1 \n\t" // L1
  2031. "movq (%0, %2, 2), %%mm2 \n\t" // L2
  2032. "movq (%0, %%"REG_a"), %%mm3 \n\t" // L3
  2033. "movq (%1), %%mm4 \n\t" // R0
  2034. "movq (%1, %2), %%mm5 \n\t" // R1
  2035. "movq (%1, %2, 2), %%mm6 \n\t" // R2
  2036. "movq (%1, %%"REG_a"), %%mm7 \n\t" // R3
  2037. PAVGB(%%mm4, %%mm0)
  2038. PAVGB(%%mm5, %%mm1)
  2039. PAVGB(%%mm6, %%mm2)
  2040. PAVGB(%%mm7, %%mm3)
  2041. PAVGB(%%mm4, %%mm0)
  2042. PAVGB(%%mm5, %%mm1)
  2043. PAVGB(%%mm6, %%mm2)
  2044. PAVGB(%%mm7, %%mm3)
  2045. "movq %%mm0, (%1) \n\t" // R0
  2046. "movq %%mm1, (%1, %2) \n\t" // R1
  2047. "movq %%mm2, (%1, %2, 2) \n\t" // R2
  2048. "movq %%mm3, (%1, %%"REG_a") \n\t" // R3
  2049. "movq %%mm0, (%0) \n\t" // L0
  2050. "movq %%mm1, (%0, %2) \n\t" // L1
  2051. "movq %%mm2, (%0, %2, 2) \n\t" // L2
  2052. "movq %%mm3, (%0, %%"REG_a") \n\t" // L3
  2053. "movq (%0, %2, 4), %%mm0 \n\t" // L4
  2054. "movq (%0, %%"REG_d"), %%mm1 \n\t" // L5
  2055. "movq (%0, %%"REG_a", 2), %%mm2 \n\t" // L6
  2056. "movq (%0, %%"REG_c"), %%mm3 \n\t" // L7
  2057. "movq (%1, %2, 4), %%mm4 \n\t" // R4
  2058. "movq (%1, %%"REG_d"), %%mm5 \n\t" // R5
  2059. "movq (%1, %%"REG_a", 2), %%mm6 \n\t" // R6
  2060. "movq (%1, %%"REG_c"), %%mm7 \n\t" // R7
  2061. PAVGB(%%mm4, %%mm0)
  2062. PAVGB(%%mm5, %%mm1)
  2063. PAVGB(%%mm6, %%mm2)
  2064. PAVGB(%%mm7, %%mm3)
  2065. PAVGB(%%mm4, %%mm0)
  2066. PAVGB(%%mm5, %%mm1)
  2067. PAVGB(%%mm6, %%mm2)
  2068. PAVGB(%%mm7, %%mm3)
  2069. "movq %%mm0, (%1, %2, 4) \n\t" // R4
  2070. "movq %%mm1, (%1, %%"REG_d") \n\t" // R5
  2071. "movq %%mm2, (%1, %%"REG_a", 2) \n\t" // R6
  2072. "movq %%mm3, (%1, %%"REG_c") \n\t" // R7
  2073. "movq %%mm0, (%0, %2, 4) \n\t" // L4
  2074. "movq %%mm1, (%0, %%"REG_d") \n\t" // L5
  2075. "movq %%mm2, (%0, %%"REG_a", 2) \n\t" // L6
  2076. "movq %%mm3, (%0, %%"REG_c") \n\t" // L7
  2077. "jmp 4f \n\t"
  2078. "3: \n\t"
  2079. "lea (%%"REG_a", %2, 2), %%"REG_d" \n\t" // 5*stride
  2080. "lea (%%"REG_d", %2, 2), %%"REG_c" \n\t" // 7*stride
  2081. "movq (%0), %%mm0 \n\t" // L0
  2082. "movq (%0, %2), %%mm1 \n\t" // L1
  2083. "movq (%0, %2, 2), %%mm2 \n\t" // L2
  2084. "movq (%0, %%"REG_a"), %%mm3 \n\t" // L3
  2085. "movq (%1), %%mm4 \n\t" // R0
  2086. "movq (%1, %2), %%mm5 \n\t" // R1
  2087. "movq (%1, %2, 2), %%mm6 \n\t" // R2
  2088. "movq (%1, %%"REG_a"), %%mm7 \n\t" // R3
  2089. PAVGB(%%mm4, %%mm0)
  2090. PAVGB(%%mm5, %%mm1)
  2091. PAVGB(%%mm6, %%mm2)
  2092. PAVGB(%%mm7, %%mm3)
  2093. PAVGB(%%mm4, %%mm0)
  2094. PAVGB(%%mm5, %%mm1)
  2095. PAVGB(%%mm6, %%mm2)
  2096. PAVGB(%%mm7, %%mm3)
  2097. PAVGB(%%mm4, %%mm0)
  2098. PAVGB(%%mm5, %%mm1)
  2099. PAVGB(%%mm6, %%mm2)
  2100. PAVGB(%%mm7, %%mm3)
  2101. "movq %%mm0, (%1) \n\t" // R0
  2102. "movq %%mm1, (%1, %2) \n\t" // R1
  2103. "movq %%mm2, (%1, %2, 2) \n\t" // R2
  2104. "movq %%mm3, (%1, %%"REG_a") \n\t" // R3
  2105. "movq %%mm0, (%0) \n\t" // L0
  2106. "movq %%mm1, (%0, %2) \n\t" // L1
  2107. "movq %%mm2, (%0, %2, 2) \n\t" // L2
  2108. "movq %%mm3, (%0, %%"REG_a") \n\t" // L3
  2109. "movq (%0, %2, 4), %%mm0 \n\t" // L4
  2110. "movq (%0, %%"REG_d"), %%mm1 \n\t" // L5
  2111. "movq (%0, %%"REG_a", 2), %%mm2 \n\t" // L6
  2112. "movq (%0, %%"REG_c"), %%mm3 \n\t" // L7
  2113. "movq (%1, %2, 4), %%mm4 \n\t" // R4
  2114. "movq (%1, %%"REG_d"), %%mm5 \n\t" // R5
  2115. "movq (%1, %%"REG_a", 2), %%mm6 \n\t" // R6
  2116. "movq (%1, %%"REG_c"), %%mm7 \n\t" // R7
  2117. PAVGB(%%mm4, %%mm0)
  2118. PAVGB(%%mm5, %%mm1)
  2119. PAVGB(%%mm6, %%mm2)
  2120. PAVGB(%%mm7, %%mm3)
  2121. PAVGB(%%mm4, %%mm0)
  2122. PAVGB(%%mm5, %%mm1)
  2123. PAVGB(%%mm6, %%mm2)
  2124. PAVGB(%%mm7, %%mm3)
  2125. PAVGB(%%mm4, %%mm0)
  2126. PAVGB(%%mm5, %%mm1)
  2127. PAVGB(%%mm6, %%mm2)
  2128. PAVGB(%%mm7, %%mm3)
  2129. "movq %%mm0, (%1, %2, 4) \n\t" // R4
  2130. "movq %%mm1, (%1, %%"REG_d") \n\t" // R5
  2131. "movq %%mm2, (%1, %%"REG_a", 2) \n\t" // R6
  2132. "movq %%mm3, (%1, %%"REG_c") \n\t" // R7
  2133. "movq %%mm0, (%0, %2, 4) \n\t" // L4
  2134. "movq %%mm1, (%0, %%"REG_d") \n\t" // L5
  2135. "movq %%mm2, (%0, %%"REG_a", 2) \n\t" // L6
  2136. "movq %%mm3, (%0, %%"REG_c") \n\t" // L7
  2137. "4: \n\t"
  2138. :: "r" (src), "r" (tempBlurred), "r"((x86_reg)stride), "m" (tempBlurredPast)
  2139. : "%"REG_a, "%"REG_d, "%"REG_c, "memory"
  2140. );
  2141. #else //HAVE_MMX2 || HAVE_AMD3DNOW
  2142. {
  2143. int y;
  2144. int d=0;
  2145. // int sysd=0;
  2146. int i;
  2147. for(y=0; y<8; y++){
  2148. int x;
  2149. for(x=0; x<8; x++){
  2150. int ref= tempBlurred[ x + y*stride ];
  2151. int cur= src[ x + y*stride ];
  2152. int d1=ref - cur;
  2153. // if(x==0 || x==7) d1+= d1>>1;
  2154. // if(y==0 || y==7) d1+= d1>>1;
  2155. // d+= FFABS(d1);
  2156. d+= d1*d1;
  2157. // sysd+= d1;
  2158. }
  2159. }
  2160. i=d;
  2161. d= (
  2162. 4*d
  2163. +(*(tempBlurredPast-256))
  2164. +(*(tempBlurredPast-1))+ (*(tempBlurredPast+1))
  2165. +(*(tempBlurredPast+256))
  2166. +4)>>3;
  2167. *tempBlurredPast=i;
  2168. // ((*tempBlurredPast)*3 + d + 2)>>2;
  2169. /*
  2170. Switch between
  2171. 1 0 0 0 0 0 0 (0)
  2172. 64 32 16 8 4 2 1 (1)
  2173. 64 48 36 27 20 15 11 (33) (approx)
  2174. 64 56 49 43 37 33 29 (200) (approx)
  2175. */
  2176. if(d > maxNoise[1]){
  2177. if(d < maxNoise[2]){
  2178. for(y=0; y<8; y++){
  2179. int x;
  2180. for(x=0; x<8; x++){
  2181. int ref= tempBlurred[ x + y*stride ];
  2182. int cur= src[ x + y*stride ];
  2183. tempBlurred[ x + y*stride ]=
  2184. src[ x + y*stride ]=
  2185. (ref + cur + 1)>>1;
  2186. }
  2187. }
  2188. }else{
  2189. for(y=0; y<8; y++){
  2190. int x;
  2191. for(x=0; x<8; x++){
  2192. tempBlurred[ x + y*stride ]= src[ x + y*stride ];
  2193. }
  2194. }
  2195. }
  2196. }else{
  2197. if(d < maxNoise[0]){
  2198. for(y=0; y<8; y++){
  2199. int x;
  2200. for(x=0; x<8; x++){
  2201. int ref= tempBlurred[ x + y*stride ];
  2202. int cur= src[ x + y*stride ];
  2203. tempBlurred[ x + y*stride ]=
  2204. src[ x + y*stride ]=
  2205. (ref*7 + cur + 4)>>3;
  2206. }
  2207. }
  2208. }else{
  2209. for(y=0; y<8; y++){
  2210. int x;
  2211. for(x=0; x<8; x++){
  2212. int ref= tempBlurred[ x + y*stride ];
  2213. int cur= src[ x + y*stride ];
  2214. tempBlurred[ x + y*stride ]=
  2215. src[ x + y*stride ]=
  2216. (ref*3 + cur + 2)>>2;
  2217. }
  2218. }
  2219. }
  2220. }
  2221. }
  2222. #endif //HAVE_MMX2 || HAVE_AMD3DNOW
  2223. }
  2224. #endif //HAVE_ALTIVEC
  2225. #if HAVE_MMX
  2226. /**
  2227. * accurate deblock filter
  2228. */
  2229. static av_always_inline void RENAME(do_a_deblock)(uint8_t *src, int step, int stride, PPContext *c){
  2230. int64_t dc_mask, eq_mask, both_masks;
  2231. int64_t sums[10*8*2];
  2232. src+= step*3; // src points to begin of the 8x8 Block
  2233. //START_TIMER
  2234. __asm__ volatile(
  2235. "movq %0, %%mm7 \n\t"
  2236. "movq %1, %%mm6 \n\t"
  2237. : : "m" (c->mmxDcOffset[c->nonBQP]), "m" (c->mmxDcThreshold[c->nonBQP])
  2238. );
  2239. __asm__ volatile(
  2240. "lea (%2, %3), %%"REG_a" \n\t"
  2241. // 0 1 2 3 4 5 6 7 8 9
  2242. // %1 eax eax+%2 eax+2%2 %1+4%2 ecx ecx+%2 ecx+2%2 %1+8%2 ecx+4%2
  2243. "movq (%2), %%mm0 \n\t"
  2244. "movq (%%"REG_a"), %%mm1 \n\t"
  2245. "movq %%mm1, %%mm3 \n\t"
  2246. "movq %%mm1, %%mm4 \n\t"
  2247. "psubb %%mm1, %%mm0 \n\t" // mm0 = differnece
  2248. "paddb %%mm7, %%mm0 \n\t"
  2249. "pcmpgtb %%mm6, %%mm0 \n\t"
  2250. "movq (%%"REG_a",%3), %%mm2 \n\t"
  2251. PMAXUB(%%mm2, %%mm4)
  2252. PMINUB(%%mm2, %%mm3, %%mm5)
  2253. "psubb %%mm2, %%mm1 \n\t"
  2254. "paddb %%mm7, %%mm1 \n\t"
  2255. "pcmpgtb %%mm6, %%mm1 \n\t"
  2256. "paddb %%mm1, %%mm0 \n\t"
  2257. "movq (%%"REG_a", %3, 2), %%mm1 \n\t"
  2258. PMAXUB(%%mm1, %%mm4)
  2259. PMINUB(%%mm1, %%mm3, %%mm5)
  2260. "psubb %%mm1, %%mm2 \n\t"
  2261. "paddb %%mm7, %%mm2 \n\t"
  2262. "pcmpgtb %%mm6, %%mm2 \n\t"
  2263. "paddb %%mm2, %%mm0 \n\t"
  2264. "lea (%%"REG_a", %3, 4), %%"REG_a" \n\t"
  2265. "movq (%2, %3, 4), %%mm2 \n\t"
  2266. PMAXUB(%%mm2, %%mm4)
  2267. PMINUB(%%mm2, %%mm3, %%mm5)
  2268. "psubb %%mm2, %%mm1 \n\t"
  2269. "paddb %%mm7, %%mm1 \n\t"
  2270. "pcmpgtb %%mm6, %%mm1 \n\t"
  2271. "paddb %%mm1, %%mm0 \n\t"
  2272. "movq (%%"REG_a"), %%mm1 \n\t"
  2273. PMAXUB(%%mm1, %%mm4)
  2274. PMINUB(%%mm1, %%mm3, %%mm5)
  2275. "psubb %%mm1, %%mm2 \n\t"
  2276. "paddb %%mm7, %%mm2 \n\t"
  2277. "pcmpgtb %%mm6, %%mm2 \n\t"
  2278. "paddb %%mm2, %%mm0 \n\t"
  2279. "movq (%%"REG_a", %3), %%mm2 \n\t"
  2280. PMAXUB(%%mm2, %%mm4)
  2281. PMINUB(%%mm2, %%mm3, %%mm5)
  2282. "psubb %%mm2, %%mm1 \n\t"
  2283. "paddb %%mm7, %%mm1 \n\t"
  2284. "pcmpgtb %%mm6, %%mm1 \n\t"
  2285. "paddb %%mm1, %%mm0 \n\t"
  2286. "movq (%%"REG_a", %3, 2), %%mm1 \n\t"
  2287. PMAXUB(%%mm1, %%mm4)
  2288. PMINUB(%%mm1, %%mm3, %%mm5)
  2289. "psubb %%mm1, %%mm2 \n\t"
  2290. "paddb %%mm7, %%mm2 \n\t"
  2291. "pcmpgtb %%mm6, %%mm2 \n\t"
  2292. "paddb %%mm2, %%mm0 \n\t"
  2293. "movq (%2, %3, 8), %%mm2 \n\t"
  2294. PMAXUB(%%mm2, %%mm4)
  2295. PMINUB(%%mm2, %%mm3, %%mm5)
  2296. "psubb %%mm2, %%mm1 \n\t"
  2297. "paddb %%mm7, %%mm1 \n\t"
  2298. "pcmpgtb %%mm6, %%mm1 \n\t"
  2299. "paddb %%mm1, %%mm0 \n\t"
  2300. "movq (%%"REG_a", %3, 4), %%mm1 \n\t"
  2301. "psubb %%mm1, %%mm2 \n\t"
  2302. "paddb %%mm7, %%mm2 \n\t"
  2303. "pcmpgtb %%mm6, %%mm2 \n\t"
  2304. "paddb %%mm2, %%mm0 \n\t"
  2305. "psubusb %%mm3, %%mm4 \n\t"
  2306. "pxor %%mm6, %%mm6 \n\t"
  2307. "movq %4, %%mm7 \n\t" // QP,..., QP
  2308. "paddusb %%mm7, %%mm7 \n\t" // 2QP ... 2QP
  2309. "psubusb %%mm4, %%mm7 \n\t" // Diff >=2QP -> 0
  2310. "pcmpeqb %%mm6, %%mm7 \n\t" // Diff < 2QP -> 0
  2311. "pcmpeqb %%mm6, %%mm7 \n\t" // Diff < 2QP -> 0
  2312. "movq %%mm7, %1 \n\t"
  2313. "movq %5, %%mm7 \n\t"
  2314. "punpcklbw %%mm7, %%mm7 \n\t"
  2315. "punpcklbw %%mm7, %%mm7 \n\t"
  2316. "punpcklbw %%mm7, %%mm7 \n\t"
  2317. "psubb %%mm0, %%mm6 \n\t"
  2318. "pcmpgtb %%mm7, %%mm6 \n\t"
  2319. "movq %%mm6, %0 \n\t"
  2320. : "=m" (eq_mask), "=m" (dc_mask)
  2321. : "r" (src), "r" ((x86_reg)step), "m" (c->pQPb), "m"(c->ppMode.flatnessThreshold)
  2322. : "%"REG_a
  2323. );
  2324. both_masks = dc_mask & eq_mask;
  2325. if(both_masks){
  2326. x86_reg offset= -8*step;
  2327. int64_t *temp_sums= sums;
  2328. __asm__ volatile(
  2329. "movq %2, %%mm0 \n\t" // QP,..., QP
  2330. "pxor %%mm4, %%mm4 \n\t"
  2331. "movq (%0), %%mm6 \n\t"
  2332. "movq (%0, %1), %%mm5 \n\t"
  2333. "movq %%mm5, %%mm1 \n\t"
  2334. "movq %%mm6, %%mm2 \n\t"
  2335. "psubusb %%mm6, %%mm5 \n\t"
  2336. "psubusb %%mm1, %%mm2 \n\t"
  2337. "por %%mm5, %%mm2 \n\t" // ABS Diff of lines
  2338. "psubusb %%mm2, %%mm0 \n\t" // diff >= QP -> 0
  2339. "pcmpeqb %%mm4, %%mm0 \n\t" // diff >= QP -> FF
  2340. "pxor %%mm6, %%mm1 \n\t"
  2341. "pand %%mm0, %%mm1 \n\t"
  2342. "pxor %%mm1, %%mm6 \n\t"
  2343. // 0:QP 6:First
  2344. "movq (%0, %1, 8), %%mm5 \n\t"
  2345. "add %1, %0 \n\t" // %0 points to line 1 not 0
  2346. "movq (%0, %1, 8), %%mm7 \n\t"
  2347. "movq %%mm5, %%mm1 \n\t"
  2348. "movq %%mm7, %%mm2 \n\t"
  2349. "psubusb %%mm7, %%mm5 \n\t"
  2350. "psubusb %%mm1, %%mm2 \n\t"
  2351. "por %%mm5, %%mm2 \n\t" // ABS Diff of lines
  2352. "movq %2, %%mm0 \n\t" // QP,..., QP
  2353. "psubusb %%mm2, %%mm0 \n\t" // diff >= QP -> 0
  2354. "pcmpeqb %%mm4, %%mm0 \n\t" // diff >= QP -> FF
  2355. "pxor %%mm7, %%mm1 \n\t"
  2356. "pand %%mm0, %%mm1 \n\t"
  2357. "pxor %%mm1, %%mm7 \n\t"
  2358. "movq %%mm6, %%mm5 \n\t"
  2359. "punpckhbw %%mm4, %%mm6 \n\t"
  2360. "punpcklbw %%mm4, %%mm5 \n\t"
  2361. // 4:0 5/6:First 7:Last
  2362. "movq %%mm5, %%mm0 \n\t"
  2363. "movq %%mm6, %%mm1 \n\t"
  2364. "psllw $2, %%mm0 \n\t"
  2365. "psllw $2, %%mm1 \n\t"
  2366. "paddw "MANGLE(w04)", %%mm0 \n\t"
  2367. "paddw "MANGLE(w04)", %%mm1 \n\t"
  2368. #define NEXT\
  2369. "movq (%0), %%mm2 \n\t"\
  2370. "movq (%0), %%mm3 \n\t"\
  2371. "add %1, %0 \n\t"\
  2372. "punpcklbw %%mm4, %%mm2 \n\t"\
  2373. "punpckhbw %%mm4, %%mm3 \n\t"\
  2374. "paddw %%mm2, %%mm0 \n\t"\
  2375. "paddw %%mm3, %%mm1 \n\t"
  2376. #define PREV\
  2377. "movq (%0), %%mm2 \n\t"\
  2378. "movq (%0), %%mm3 \n\t"\
  2379. "add %1, %0 \n\t"\
  2380. "punpcklbw %%mm4, %%mm2 \n\t"\
  2381. "punpckhbw %%mm4, %%mm3 \n\t"\
  2382. "psubw %%mm2, %%mm0 \n\t"\
  2383. "psubw %%mm3, %%mm1 \n\t"
  2384. NEXT //0
  2385. NEXT //1
  2386. NEXT //2
  2387. "movq %%mm0, (%3) \n\t"
  2388. "movq %%mm1, 8(%3) \n\t"
  2389. NEXT //3
  2390. "psubw %%mm5, %%mm0 \n\t"
  2391. "psubw %%mm6, %%mm1 \n\t"
  2392. "movq %%mm0, 16(%3) \n\t"
  2393. "movq %%mm1, 24(%3) \n\t"
  2394. NEXT //4
  2395. "psubw %%mm5, %%mm0 \n\t"
  2396. "psubw %%mm6, %%mm1 \n\t"
  2397. "movq %%mm0, 32(%3) \n\t"
  2398. "movq %%mm1, 40(%3) \n\t"
  2399. NEXT //5
  2400. "psubw %%mm5, %%mm0 \n\t"
  2401. "psubw %%mm6, %%mm1 \n\t"
  2402. "movq %%mm0, 48(%3) \n\t"
  2403. "movq %%mm1, 56(%3) \n\t"
  2404. NEXT //6
  2405. "psubw %%mm5, %%mm0 \n\t"
  2406. "psubw %%mm6, %%mm1 \n\t"
  2407. "movq %%mm0, 64(%3) \n\t"
  2408. "movq %%mm1, 72(%3) \n\t"
  2409. "movq %%mm7, %%mm6 \n\t"
  2410. "punpckhbw %%mm4, %%mm7 \n\t"
  2411. "punpcklbw %%mm4, %%mm6 \n\t"
  2412. NEXT //7
  2413. "mov %4, %0 \n\t"
  2414. "add %1, %0 \n\t"
  2415. PREV //0
  2416. "movq %%mm0, 80(%3) \n\t"
  2417. "movq %%mm1, 88(%3) \n\t"
  2418. PREV //1
  2419. "paddw %%mm6, %%mm0 \n\t"
  2420. "paddw %%mm7, %%mm1 \n\t"
  2421. "movq %%mm0, 96(%3) \n\t"
  2422. "movq %%mm1, 104(%3) \n\t"
  2423. PREV //2
  2424. "paddw %%mm6, %%mm0 \n\t"
  2425. "paddw %%mm7, %%mm1 \n\t"
  2426. "movq %%mm0, 112(%3) \n\t"
  2427. "movq %%mm1, 120(%3) \n\t"
  2428. PREV //3
  2429. "paddw %%mm6, %%mm0 \n\t"
  2430. "paddw %%mm7, %%mm1 \n\t"
  2431. "movq %%mm0, 128(%3) \n\t"
  2432. "movq %%mm1, 136(%3) \n\t"
  2433. PREV //4
  2434. "paddw %%mm6, %%mm0 \n\t"
  2435. "paddw %%mm7, %%mm1 \n\t"
  2436. "movq %%mm0, 144(%3) \n\t"
  2437. "movq %%mm1, 152(%3) \n\t"
  2438. "mov %4, %0 \n\t" //FIXME
  2439. : "+&r"(src)
  2440. : "r" ((x86_reg)step), "m" (c->pQPb), "r"(sums), "g"(src)
  2441. );
  2442. src+= step; // src points to begin of the 8x8 Block
  2443. __asm__ volatile(
  2444. "movq %4, %%mm6 \n\t"
  2445. "pcmpeqb %%mm5, %%mm5 \n\t"
  2446. "pxor %%mm6, %%mm5 \n\t"
  2447. "pxor %%mm7, %%mm7 \n\t"
  2448. "1: \n\t"
  2449. "movq (%1), %%mm0 \n\t"
  2450. "movq 8(%1), %%mm1 \n\t"
  2451. "paddw 32(%1), %%mm0 \n\t"
  2452. "paddw 40(%1), %%mm1 \n\t"
  2453. "movq (%0, %3), %%mm2 \n\t"
  2454. "movq %%mm2, %%mm3 \n\t"
  2455. "movq %%mm2, %%mm4 \n\t"
  2456. "punpcklbw %%mm7, %%mm2 \n\t"
  2457. "punpckhbw %%mm7, %%mm3 \n\t"
  2458. "paddw %%mm2, %%mm0 \n\t"
  2459. "paddw %%mm3, %%mm1 \n\t"
  2460. "paddw %%mm2, %%mm0 \n\t"
  2461. "paddw %%mm3, %%mm1 \n\t"
  2462. "psrlw $4, %%mm0 \n\t"
  2463. "psrlw $4, %%mm1 \n\t"
  2464. "packuswb %%mm1, %%mm0 \n\t"
  2465. "pand %%mm6, %%mm0 \n\t"
  2466. "pand %%mm5, %%mm4 \n\t"
  2467. "por %%mm4, %%mm0 \n\t"
  2468. "movq %%mm0, (%0, %3) \n\t"
  2469. "add $16, %1 \n\t"
  2470. "add %2, %0 \n\t"
  2471. " js 1b \n\t"
  2472. : "+r"(offset), "+r"(temp_sums)
  2473. : "r" ((x86_reg)step), "r"(src - offset), "m"(both_masks)
  2474. );
  2475. }else
  2476. src+= step; // src points to begin of the 8x8 Block
  2477. if(eq_mask != -1LL){
  2478. uint8_t *temp_src= src;
  2479. DECLARE_ALIGNED(8, uint64_t, tmp)[4]; // make space for 4 8-byte vars
  2480. __asm__ volatile(
  2481. "pxor %%mm7, %%mm7 \n\t"
  2482. // 0 1 2 3 4 5 6 7 8 9
  2483. // %0 eax eax+%1 eax+2%1 %0+4%1 ecx ecx+%1 ecx+2%1 %1+8%1 ecx+4%1
  2484. "movq (%0), %%mm0 \n\t"
  2485. "movq %%mm0, %%mm1 \n\t"
  2486. "punpcklbw %%mm7, %%mm0 \n\t" // low part of line 0
  2487. "punpckhbw %%mm7, %%mm1 \n\t" // high part of line 0
  2488. "movq (%0, %1), %%mm2 \n\t"
  2489. "lea (%0, %1, 2), %%"REG_a" \n\t"
  2490. "movq %%mm2, %%mm3 \n\t"
  2491. "punpcklbw %%mm7, %%mm2 \n\t" // low part of line 1
  2492. "punpckhbw %%mm7, %%mm3 \n\t" // high part of line 1
  2493. "movq (%%"REG_a"), %%mm4 \n\t"
  2494. "movq %%mm4, %%mm5 \n\t"
  2495. "punpcklbw %%mm7, %%mm4 \n\t" // low part of line 2
  2496. "punpckhbw %%mm7, %%mm5 \n\t" // high part of line 2
  2497. "paddw %%mm0, %%mm0 \n\t" // 2L0
  2498. "paddw %%mm1, %%mm1 \n\t" // 2H0
  2499. "psubw %%mm4, %%mm2 \n\t" // L1 - L2
  2500. "psubw %%mm5, %%mm3 \n\t" // H1 - H2
  2501. "psubw %%mm2, %%mm0 \n\t" // 2L0 - L1 + L2
  2502. "psubw %%mm3, %%mm1 \n\t" // 2H0 - H1 + H2
  2503. "psllw $2, %%mm2 \n\t" // 4L1 - 4L2
  2504. "psllw $2, %%mm3 \n\t" // 4H1 - 4H2
  2505. "psubw %%mm2, %%mm0 \n\t" // 2L0 - 5L1 + 5L2
  2506. "psubw %%mm3, %%mm1 \n\t" // 2H0 - 5H1 + 5H2
  2507. "movq (%%"REG_a", %1), %%mm2 \n\t"
  2508. "movq %%mm2, %%mm3 \n\t"
  2509. "punpcklbw %%mm7, %%mm2 \n\t" // L3
  2510. "punpckhbw %%mm7, %%mm3 \n\t" // H3
  2511. "psubw %%mm2, %%mm0 \n\t" // 2L0 - 5L1 + 5L2 - L3
  2512. "psubw %%mm3, %%mm1 \n\t" // 2H0 - 5H1 + 5H2 - H3
  2513. "psubw %%mm2, %%mm0 \n\t" // 2L0 - 5L1 + 5L2 - 2L3
  2514. "psubw %%mm3, %%mm1 \n\t" // 2H0 - 5H1 + 5H2 - 2H3
  2515. "movq %%mm0, (%4) \n\t" // 2L0 - 5L1 + 5L2 - 2L3
  2516. "movq %%mm1, 8(%4) \n\t" // 2H0 - 5H1 + 5H2 - 2H3
  2517. "movq (%%"REG_a", %1, 2), %%mm0 \n\t"
  2518. "movq %%mm0, %%mm1 \n\t"
  2519. "punpcklbw %%mm7, %%mm0 \n\t" // L4
  2520. "punpckhbw %%mm7, %%mm1 \n\t" // H4
  2521. "psubw %%mm0, %%mm2 \n\t" // L3 - L4
  2522. "psubw %%mm1, %%mm3 \n\t" // H3 - H4
  2523. "movq %%mm2, 16(%4) \n\t" // L3 - L4
  2524. "movq %%mm3, 24(%4) \n\t" // H3 - H4
  2525. "paddw %%mm4, %%mm4 \n\t" // 2L2
  2526. "paddw %%mm5, %%mm5 \n\t" // 2H2
  2527. "psubw %%mm2, %%mm4 \n\t" // 2L2 - L3 + L4
  2528. "psubw %%mm3, %%mm5 \n\t" // 2H2 - H3 + H4
  2529. "lea (%%"REG_a", %1), %0 \n\t"
  2530. "psllw $2, %%mm2 \n\t" // 4L3 - 4L4
  2531. "psllw $2, %%mm3 \n\t" // 4H3 - 4H4
  2532. "psubw %%mm2, %%mm4 \n\t" // 2L2 - 5L3 + 5L4
  2533. "psubw %%mm3, %%mm5 \n\t" // 2H2 - 5H3 + 5H4
  2534. //50 opcodes so far
  2535. "movq (%0, %1, 2), %%mm2 \n\t"
  2536. "movq %%mm2, %%mm3 \n\t"
  2537. "punpcklbw %%mm7, %%mm2 \n\t" // L5
  2538. "punpckhbw %%mm7, %%mm3 \n\t" // H5
  2539. "psubw %%mm2, %%mm4 \n\t" // 2L2 - 5L3 + 5L4 - L5
  2540. "psubw %%mm3, %%mm5 \n\t" // 2H2 - 5H3 + 5H4 - H5
  2541. "psubw %%mm2, %%mm4 \n\t" // 2L2 - 5L3 + 5L4 - 2L5
  2542. "psubw %%mm3, %%mm5 \n\t" // 2H2 - 5H3 + 5H4 - 2H5
  2543. "movq (%%"REG_a", %1, 4), %%mm6 \n\t"
  2544. "punpcklbw %%mm7, %%mm6 \n\t" // L6
  2545. "psubw %%mm6, %%mm2 \n\t" // L5 - L6
  2546. "movq (%%"REG_a", %1, 4), %%mm6 \n\t"
  2547. "punpckhbw %%mm7, %%mm6 \n\t" // H6
  2548. "psubw %%mm6, %%mm3 \n\t" // H5 - H6
  2549. "paddw %%mm0, %%mm0 \n\t" // 2L4
  2550. "paddw %%mm1, %%mm1 \n\t" // 2H4
  2551. "psubw %%mm2, %%mm0 \n\t" // 2L4 - L5 + L6
  2552. "psubw %%mm3, %%mm1 \n\t" // 2H4 - H5 + H6
  2553. "psllw $2, %%mm2 \n\t" // 4L5 - 4L6
  2554. "psllw $2, %%mm3 \n\t" // 4H5 - 4H6
  2555. "psubw %%mm2, %%mm0 \n\t" // 2L4 - 5L5 + 5L6
  2556. "psubw %%mm3, %%mm1 \n\t" // 2H4 - 5H5 + 5H6
  2557. "movq (%0, %1, 4), %%mm2 \n\t"
  2558. "movq %%mm2, %%mm3 \n\t"
  2559. "punpcklbw %%mm7, %%mm2 \n\t" // L7
  2560. "punpckhbw %%mm7, %%mm3 \n\t" // H7
  2561. "paddw %%mm2, %%mm2 \n\t" // 2L7
  2562. "paddw %%mm3, %%mm3 \n\t" // 2H7
  2563. "psubw %%mm2, %%mm0 \n\t" // 2L4 - 5L5 + 5L6 - 2L7
  2564. "psubw %%mm3, %%mm1 \n\t" // 2H4 - 5H5 + 5H6 - 2H7
  2565. "movq (%4), %%mm2 \n\t" // 2L0 - 5L1 + 5L2 - 2L3
  2566. "movq 8(%4), %%mm3 \n\t" // 2H0 - 5H1 + 5H2 - 2H3
  2567. #if HAVE_MMX2
  2568. "movq %%mm7, %%mm6 \n\t" // 0
  2569. "psubw %%mm0, %%mm6 \n\t"
  2570. "pmaxsw %%mm6, %%mm0 \n\t" // |2L4 - 5L5 + 5L6 - 2L7|
  2571. "movq %%mm7, %%mm6 \n\t" // 0
  2572. "psubw %%mm1, %%mm6 \n\t"
  2573. "pmaxsw %%mm6, %%mm1 \n\t" // |2H4 - 5H5 + 5H6 - 2H7|
  2574. "movq %%mm7, %%mm6 \n\t" // 0
  2575. "psubw %%mm2, %%mm6 \n\t"
  2576. "pmaxsw %%mm6, %%mm2 \n\t" // |2L0 - 5L1 + 5L2 - 2L3|
  2577. "movq %%mm7, %%mm6 \n\t" // 0
  2578. "psubw %%mm3, %%mm6 \n\t"
  2579. "pmaxsw %%mm6, %%mm3 \n\t" // |2H0 - 5H1 + 5H2 - 2H3|
  2580. #else
  2581. "movq %%mm7, %%mm6 \n\t" // 0
  2582. "pcmpgtw %%mm0, %%mm6 \n\t"
  2583. "pxor %%mm6, %%mm0 \n\t"
  2584. "psubw %%mm6, %%mm0 \n\t" // |2L4 - 5L5 + 5L6 - 2L7|
  2585. "movq %%mm7, %%mm6 \n\t" // 0
  2586. "pcmpgtw %%mm1, %%mm6 \n\t"
  2587. "pxor %%mm6, %%mm1 \n\t"
  2588. "psubw %%mm6, %%mm1 \n\t" // |2H4 - 5H5 + 5H6 - 2H7|
  2589. "movq %%mm7, %%mm6 \n\t" // 0
  2590. "pcmpgtw %%mm2, %%mm6 \n\t"
  2591. "pxor %%mm6, %%mm2 \n\t"
  2592. "psubw %%mm6, %%mm2 \n\t" // |2L0 - 5L1 + 5L2 - 2L3|
  2593. "movq %%mm7, %%mm6 \n\t" // 0
  2594. "pcmpgtw %%mm3, %%mm6 \n\t"
  2595. "pxor %%mm6, %%mm3 \n\t"
  2596. "psubw %%mm6, %%mm3 \n\t" // |2H0 - 5H1 + 5H2 - 2H3|
  2597. #endif
  2598. #if HAVE_MMX2
  2599. "pminsw %%mm2, %%mm0 \n\t"
  2600. "pminsw %%mm3, %%mm1 \n\t"
  2601. #else
  2602. "movq %%mm0, %%mm6 \n\t"
  2603. "psubusw %%mm2, %%mm6 \n\t"
  2604. "psubw %%mm6, %%mm0 \n\t"
  2605. "movq %%mm1, %%mm6 \n\t"
  2606. "psubusw %%mm3, %%mm6 \n\t"
  2607. "psubw %%mm6, %%mm1 \n\t"
  2608. #endif
  2609. "movd %2, %%mm2 \n\t" // QP
  2610. "punpcklbw %%mm7, %%mm2 \n\t"
  2611. "movq %%mm7, %%mm6 \n\t" // 0
  2612. "pcmpgtw %%mm4, %%mm6 \n\t" // sign(2L2 - 5L3 + 5L4 - 2L5)
  2613. "pxor %%mm6, %%mm4 \n\t"
  2614. "psubw %%mm6, %%mm4 \n\t" // |2L2 - 5L3 + 5L4 - 2L5|
  2615. "pcmpgtw %%mm5, %%mm7 \n\t" // sign(2H2 - 5H3 + 5H4 - 2H5)
  2616. "pxor %%mm7, %%mm5 \n\t"
  2617. "psubw %%mm7, %%mm5 \n\t" // |2H2 - 5H3 + 5H4 - 2H5|
  2618. // 100 opcodes
  2619. "psllw $3, %%mm2 \n\t" // 8QP
  2620. "movq %%mm2, %%mm3 \n\t" // 8QP
  2621. "pcmpgtw %%mm4, %%mm2 \n\t"
  2622. "pcmpgtw %%mm5, %%mm3 \n\t"
  2623. "pand %%mm2, %%mm4 \n\t"
  2624. "pand %%mm3, %%mm5 \n\t"
  2625. "psubusw %%mm0, %%mm4 \n\t" // hd
  2626. "psubusw %%mm1, %%mm5 \n\t" // ld
  2627. "movq "MANGLE(w05)", %%mm2 \n\t" // 5
  2628. "pmullw %%mm2, %%mm4 \n\t"
  2629. "pmullw %%mm2, %%mm5 \n\t"
  2630. "movq "MANGLE(w20)", %%mm2 \n\t" // 32
  2631. "paddw %%mm2, %%mm4 \n\t"
  2632. "paddw %%mm2, %%mm5 \n\t"
  2633. "psrlw $6, %%mm4 \n\t"
  2634. "psrlw $6, %%mm5 \n\t"
  2635. "movq 16(%4), %%mm0 \n\t" // L3 - L4
  2636. "movq 24(%4), %%mm1 \n\t" // H3 - H4
  2637. "pxor %%mm2, %%mm2 \n\t"
  2638. "pxor %%mm3, %%mm3 \n\t"
  2639. "pcmpgtw %%mm0, %%mm2 \n\t" // sign (L3-L4)
  2640. "pcmpgtw %%mm1, %%mm3 \n\t" // sign (H3-H4)
  2641. "pxor %%mm2, %%mm0 \n\t"
  2642. "pxor %%mm3, %%mm1 \n\t"
  2643. "psubw %%mm2, %%mm0 \n\t" // |L3-L4|
  2644. "psubw %%mm3, %%mm1 \n\t" // |H3-H4|
  2645. "psrlw $1, %%mm0 \n\t" // |L3 - L4|/2
  2646. "psrlw $1, %%mm1 \n\t" // |H3 - H4|/2
  2647. "pxor %%mm6, %%mm2 \n\t"
  2648. "pxor %%mm7, %%mm3 \n\t"
  2649. "pand %%mm2, %%mm4 \n\t"
  2650. "pand %%mm3, %%mm5 \n\t"
  2651. #if HAVE_MMX2
  2652. "pminsw %%mm0, %%mm4 \n\t"
  2653. "pminsw %%mm1, %%mm5 \n\t"
  2654. #else
  2655. "movq %%mm4, %%mm2 \n\t"
  2656. "psubusw %%mm0, %%mm2 \n\t"
  2657. "psubw %%mm2, %%mm4 \n\t"
  2658. "movq %%mm5, %%mm2 \n\t"
  2659. "psubusw %%mm1, %%mm2 \n\t"
  2660. "psubw %%mm2, %%mm5 \n\t"
  2661. #endif
  2662. "pxor %%mm6, %%mm4 \n\t"
  2663. "pxor %%mm7, %%mm5 \n\t"
  2664. "psubw %%mm6, %%mm4 \n\t"
  2665. "psubw %%mm7, %%mm5 \n\t"
  2666. "packsswb %%mm5, %%mm4 \n\t"
  2667. "movq %3, %%mm1 \n\t"
  2668. "pandn %%mm4, %%mm1 \n\t"
  2669. "movq (%0), %%mm0 \n\t"
  2670. "paddb %%mm1, %%mm0 \n\t"
  2671. "movq %%mm0, (%0) \n\t"
  2672. "movq (%0, %1), %%mm0 \n\t"
  2673. "psubb %%mm1, %%mm0 \n\t"
  2674. "movq %%mm0, (%0, %1) \n\t"
  2675. : "+r" (temp_src)
  2676. : "r" ((x86_reg)step), "m" (c->pQPb), "m"(eq_mask), "r"(tmp)
  2677. : "%"REG_a
  2678. );
  2679. }
  2680. /*if(step==16){
  2681. STOP_TIMER("step16")
  2682. }else{
  2683. STOP_TIMER("stepX")
  2684. }*/
  2685. }
  2686. #endif //HAVE_MMX
  2687. static void RENAME(postProcess)(const uint8_t src[], int srcStride, uint8_t dst[], int dstStride, int width, int height,
  2688. const QP_STORE_T QPs[], int QPStride, int isColor, PPContext *c);
  2689. /**
  2690. * Copy a block from src to dst and fixes the blacklevel.
  2691. * levelFix == 0 -> do not touch the brighness & contrast
  2692. */
  2693. #undef REAL_SCALED_CPY
  2694. #undef SCALED_CPY
  2695. static inline void RENAME(blockCopy)(uint8_t dst[], int dstStride, const uint8_t src[], int srcStride,
  2696. int levelFix, int64_t *packedOffsetAndScale)
  2697. {
  2698. #if !HAVE_MMX
  2699. int i;
  2700. #endif
  2701. if(levelFix){
  2702. #if HAVE_MMX
  2703. __asm__ volatile(
  2704. "movq (%%"REG_a"), %%mm2 \n\t" // packedYOffset
  2705. "movq 8(%%"REG_a"), %%mm3 \n\t" // packedYScale
  2706. "lea (%2,%4), %%"REG_a" \n\t"
  2707. "lea (%3,%5), %%"REG_d" \n\t"
  2708. "pxor %%mm4, %%mm4 \n\t"
  2709. #if HAVE_MMX2
  2710. #define REAL_SCALED_CPY(src1, src2, dst1, dst2) \
  2711. "movq " #src1 ", %%mm0 \n\t"\
  2712. "movq " #src1 ", %%mm5 \n\t"\
  2713. "movq " #src2 ", %%mm1 \n\t"\
  2714. "movq " #src2 ", %%mm6 \n\t"\
  2715. "punpcklbw %%mm0, %%mm0 \n\t"\
  2716. "punpckhbw %%mm5, %%mm5 \n\t"\
  2717. "punpcklbw %%mm1, %%mm1 \n\t"\
  2718. "punpckhbw %%mm6, %%mm6 \n\t"\
  2719. "pmulhuw %%mm3, %%mm0 \n\t"\
  2720. "pmulhuw %%mm3, %%mm5 \n\t"\
  2721. "pmulhuw %%mm3, %%mm1 \n\t"\
  2722. "pmulhuw %%mm3, %%mm6 \n\t"\
  2723. "psubw %%mm2, %%mm0 \n\t"\
  2724. "psubw %%mm2, %%mm5 \n\t"\
  2725. "psubw %%mm2, %%mm1 \n\t"\
  2726. "psubw %%mm2, %%mm6 \n\t"\
  2727. "packuswb %%mm5, %%mm0 \n\t"\
  2728. "packuswb %%mm6, %%mm1 \n\t"\
  2729. "movq %%mm0, " #dst1 " \n\t"\
  2730. "movq %%mm1, " #dst2 " \n\t"\
  2731. #else //HAVE_MMX2
  2732. #define REAL_SCALED_CPY(src1, src2, dst1, dst2) \
  2733. "movq " #src1 ", %%mm0 \n\t"\
  2734. "movq " #src1 ", %%mm5 \n\t"\
  2735. "punpcklbw %%mm4, %%mm0 \n\t"\
  2736. "punpckhbw %%mm4, %%mm5 \n\t"\
  2737. "psubw %%mm2, %%mm0 \n\t"\
  2738. "psubw %%mm2, %%mm5 \n\t"\
  2739. "movq " #src2 ", %%mm1 \n\t"\
  2740. "psllw $6, %%mm0 \n\t"\
  2741. "psllw $6, %%mm5 \n\t"\
  2742. "pmulhw %%mm3, %%mm0 \n\t"\
  2743. "movq " #src2 ", %%mm6 \n\t"\
  2744. "pmulhw %%mm3, %%mm5 \n\t"\
  2745. "punpcklbw %%mm4, %%mm1 \n\t"\
  2746. "punpckhbw %%mm4, %%mm6 \n\t"\
  2747. "psubw %%mm2, %%mm1 \n\t"\
  2748. "psubw %%mm2, %%mm6 \n\t"\
  2749. "psllw $6, %%mm1 \n\t"\
  2750. "psllw $6, %%mm6 \n\t"\
  2751. "pmulhw %%mm3, %%mm1 \n\t"\
  2752. "pmulhw %%mm3, %%mm6 \n\t"\
  2753. "packuswb %%mm5, %%mm0 \n\t"\
  2754. "packuswb %%mm6, %%mm1 \n\t"\
  2755. "movq %%mm0, " #dst1 " \n\t"\
  2756. "movq %%mm1, " #dst2 " \n\t"\
  2757. #endif //HAVE_MMX2
  2758. #define SCALED_CPY(src1, src2, dst1, dst2)\
  2759. REAL_SCALED_CPY(src1, src2, dst1, dst2)
  2760. SCALED_CPY((%2) , (%2, %4) , (%3) , (%3, %5))
  2761. SCALED_CPY((%2, %4, 2), (%%REGa, %4, 2), (%3, %5, 2), (%%REGd, %5, 2))
  2762. SCALED_CPY((%2, %4, 4), (%%REGa, %4, 4), (%3, %5, 4), (%%REGd, %5, 4))
  2763. "lea (%%"REG_a",%4,4), %%"REG_a" \n\t"
  2764. "lea (%%"REG_d",%5,4), %%"REG_d" \n\t"
  2765. SCALED_CPY((%%REGa, %4), (%%REGa, %4, 2), (%%REGd, %5), (%%REGd, %5, 2))
  2766. : "=&a" (packedOffsetAndScale)
  2767. : "0" (packedOffsetAndScale),
  2768. "r"(src),
  2769. "r"(dst),
  2770. "r" ((x86_reg)srcStride),
  2771. "r" ((x86_reg)dstStride)
  2772. : "%"REG_d
  2773. );
  2774. #else //HAVE_MMX
  2775. for(i=0; i<8; i++)
  2776. memcpy( &(dst[dstStride*i]),
  2777. &(src[srcStride*i]), BLOCK_SIZE);
  2778. #endif //HAVE_MMX
  2779. }else{
  2780. #if HAVE_MMX
  2781. __asm__ volatile(
  2782. "lea (%0,%2), %%"REG_a" \n\t"
  2783. "lea (%1,%3), %%"REG_d" \n\t"
  2784. #define REAL_SIMPLE_CPY(src1, src2, dst1, dst2) \
  2785. "movq " #src1 ", %%mm0 \n\t"\
  2786. "movq " #src2 ", %%mm1 \n\t"\
  2787. "movq %%mm0, " #dst1 " \n\t"\
  2788. "movq %%mm1, " #dst2 " \n\t"\
  2789. #define SIMPLE_CPY(src1, src2, dst1, dst2)\
  2790. REAL_SIMPLE_CPY(src1, src2, dst1, dst2)
  2791. SIMPLE_CPY((%0) , (%0, %2) , (%1) , (%1, %3))
  2792. SIMPLE_CPY((%0, %2, 2), (%%REGa, %2, 2), (%1, %3, 2), (%%REGd, %3, 2))
  2793. SIMPLE_CPY((%0, %2, 4), (%%REGa, %2, 4), (%1, %3, 4), (%%REGd, %3, 4))
  2794. "lea (%%"REG_a",%2,4), %%"REG_a" \n\t"
  2795. "lea (%%"REG_d",%3,4), %%"REG_d" \n\t"
  2796. SIMPLE_CPY((%%REGa, %2), (%%REGa, %2, 2), (%%REGd, %3), (%%REGd, %3, 2))
  2797. : : "r" (src),
  2798. "r" (dst),
  2799. "r" ((x86_reg)srcStride),
  2800. "r" ((x86_reg)dstStride)
  2801. : "%"REG_a, "%"REG_d
  2802. );
  2803. #else //HAVE_MMX
  2804. for(i=0; i<8; i++)
  2805. memcpy( &(dst[dstStride*i]),
  2806. &(src[srcStride*i]), BLOCK_SIZE);
  2807. #endif //HAVE_MMX
  2808. }
  2809. }
  2810. /**
  2811. * Duplicate the given 8 src pixels ? times upward
  2812. */
  2813. static inline void RENAME(duplicate)(uint8_t src[], int stride)
  2814. {
  2815. #if HAVE_MMX
  2816. __asm__ volatile(
  2817. "movq (%0), %%mm0 \n\t"
  2818. "add %1, %0 \n\t"
  2819. "movq %%mm0, (%0) \n\t"
  2820. "movq %%mm0, (%0, %1) \n\t"
  2821. "movq %%mm0, (%0, %1, 2) \n\t"
  2822. : "+r" (src)
  2823. : "r" ((x86_reg)-stride)
  2824. );
  2825. #else
  2826. int i;
  2827. uint8_t *p=src;
  2828. for(i=0; i<3; i++){
  2829. p-= stride;
  2830. memcpy(p, src, 8);
  2831. }
  2832. #endif
  2833. }
  2834. /**
  2835. * Filter array of bytes (Y or U or V values)
  2836. */
  2837. static void RENAME(postProcess)(const uint8_t src[], int srcStride, uint8_t dst[], int dstStride, int width, int height,
  2838. const QP_STORE_T QPs[], int QPStride, int isColor, PPContext *c2)
  2839. {
  2840. DECLARE_ALIGNED(8, PPContext, c)= *c2; //copy to stack for faster access
  2841. int x,y;
  2842. #ifdef COMPILE_TIME_MODE
  2843. const int mode= COMPILE_TIME_MODE;
  2844. #else
  2845. const int mode= isColor ? c.ppMode.chromMode : c.ppMode.lumMode;
  2846. #endif
  2847. int black=0, white=255; // blackest black and whitest white in the picture
  2848. int QPCorrecture= 256*256;
  2849. int copyAhead;
  2850. #if HAVE_MMX
  2851. int i;
  2852. #endif
  2853. const int qpHShift= isColor ? 4-c.hChromaSubSample : 4;
  2854. const int qpVShift= isColor ? 4-c.vChromaSubSample : 4;
  2855. //FIXME remove
  2856. uint64_t * const yHistogram= c.yHistogram;
  2857. uint8_t * const tempSrc= srcStride > 0 ? c.tempSrc : c.tempSrc - 23*srcStride;
  2858. uint8_t * const tempDst= dstStride > 0 ? c.tempDst : c.tempDst - 23*dstStride;
  2859. //const int mbWidth= isColor ? (width+7)>>3 : (width+15)>>4;
  2860. #if HAVE_MMX
  2861. for(i=0; i<57; i++){
  2862. int offset= ((i*c.ppMode.baseDcDiff)>>8) + 1;
  2863. int threshold= offset*2 + 1;
  2864. c.mmxDcOffset[i]= 0x7F - offset;
  2865. c.mmxDcThreshold[i]= 0x7F - threshold;
  2866. c.mmxDcOffset[i]*= 0x0101010101010101LL;
  2867. c.mmxDcThreshold[i]*= 0x0101010101010101LL;
  2868. }
  2869. #endif
  2870. if(mode & CUBIC_IPOL_DEINT_FILTER) copyAhead=16;
  2871. else if( (mode & LINEAR_BLEND_DEINT_FILTER)
  2872. || (mode & FFMPEG_DEINT_FILTER)
  2873. || (mode & LOWPASS5_DEINT_FILTER)) copyAhead=14;
  2874. else if( (mode & V_DEBLOCK)
  2875. || (mode & LINEAR_IPOL_DEINT_FILTER)
  2876. || (mode & MEDIAN_DEINT_FILTER)
  2877. || (mode & V_A_DEBLOCK)) copyAhead=13;
  2878. else if(mode & V_X1_FILTER) copyAhead=11;
  2879. // else if(mode & V_RK1_FILTER) copyAhead=10;
  2880. else if(mode & DERING) copyAhead=9;
  2881. else copyAhead=8;
  2882. copyAhead-= 8;
  2883. if(!isColor){
  2884. uint64_t sum= 0;
  2885. int i;
  2886. uint64_t maxClipped;
  2887. uint64_t clipped;
  2888. double scale;
  2889. c.frameNum++;
  2890. // first frame is fscked so we ignore it
  2891. if(c.frameNum == 1) yHistogram[0]= width*height/64*15/256;
  2892. for(i=0; i<256; i++){
  2893. sum+= yHistogram[i];
  2894. }
  2895. /* We always get a completely black picture first. */
  2896. maxClipped= (uint64_t)(sum * c.ppMode.maxClippedThreshold);
  2897. clipped= sum;
  2898. for(black=255; black>0; black--){
  2899. if(clipped < maxClipped) break;
  2900. clipped-= yHistogram[black];
  2901. }
  2902. clipped= sum;
  2903. for(white=0; white<256; white++){
  2904. if(clipped < maxClipped) break;
  2905. clipped-= yHistogram[white];
  2906. }
  2907. scale= (double)(c.ppMode.maxAllowedY - c.ppMode.minAllowedY) / (double)(white-black);
  2908. #if HAVE_MMX2
  2909. c.packedYScale= (uint16_t)(scale*256.0 + 0.5);
  2910. c.packedYOffset= (((black*c.packedYScale)>>8) - c.ppMode.minAllowedY) & 0xFFFF;
  2911. #else
  2912. c.packedYScale= (uint16_t)(scale*1024.0 + 0.5);
  2913. c.packedYOffset= (black - c.ppMode.minAllowedY) & 0xFFFF;
  2914. #endif
  2915. c.packedYOffset|= c.packedYOffset<<32;
  2916. c.packedYOffset|= c.packedYOffset<<16;
  2917. c.packedYScale|= c.packedYScale<<32;
  2918. c.packedYScale|= c.packedYScale<<16;
  2919. if(mode & LEVEL_FIX) QPCorrecture= (int)(scale*256*256 + 0.5);
  2920. else QPCorrecture= 256*256;
  2921. }else{
  2922. c.packedYScale= 0x0100010001000100LL;
  2923. c.packedYOffset= 0;
  2924. QPCorrecture= 256*256;
  2925. }
  2926. /* copy & deinterlace first row of blocks */
  2927. y=-BLOCK_SIZE;
  2928. {
  2929. const uint8_t *srcBlock= &(src[y*srcStride]);
  2930. uint8_t *dstBlock= tempDst + dstStride;
  2931. // From this point on it is guaranteed that we can read and write 16 lines downward
  2932. // finish 1 block before the next otherwise we might have a problem
  2933. // with the L1 Cache of the P4 ... or only a few blocks at a time or soemthing
  2934. for(x=0; x<width; x+=BLOCK_SIZE){
  2935. #if HAVE_MMX2
  2936. /*
  2937. prefetchnta(srcBlock + (((x>>2)&6) + 5)*srcStride + 32);
  2938. prefetchnta(srcBlock + (((x>>2)&6) + 6)*srcStride + 32);
  2939. prefetcht0(dstBlock + (((x>>2)&6) + 5)*dstStride + 32);
  2940. prefetcht0(dstBlock + (((x>>2)&6) + 6)*dstStride + 32);
  2941. */
  2942. __asm__(
  2943. "mov %4, %%"REG_a" \n\t"
  2944. "shr $2, %%"REG_a" \n\t"
  2945. "and $6, %%"REG_a" \n\t"
  2946. "add %5, %%"REG_a" \n\t"
  2947. "mov %%"REG_a", %%"REG_d" \n\t"
  2948. "imul %1, %%"REG_a" \n\t"
  2949. "imul %3, %%"REG_d" \n\t"
  2950. "prefetchnta 32(%%"REG_a", %0) \n\t"
  2951. "prefetcht0 32(%%"REG_d", %2) \n\t"
  2952. "add %1, %%"REG_a" \n\t"
  2953. "add %3, %%"REG_d" \n\t"
  2954. "prefetchnta 32(%%"REG_a", %0) \n\t"
  2955. "prefetcht0 32(%%"REG_d", %2) \n\t"
  2956. :: "r" (srcBlock), "r" ((x86_reg)srcStride), "r" (dstBlock), "r" ((x86_reg)dstStride),
  2957. "g" ((x86_reg)x), "g" ((x86_reg)copyAhead)
  2958. : "%"REG_a, "%"REG_d
  2959. );
  2960. #elif HAVE_AMD3DNOW
  2961. //FIXME check if this is faster on an 3dnow chip or if it is faster without the prefetch or ...
  2962. /* prefetch(srcBlock + (((x>>3)&3) + 5)*srcStride + 32);
  2963. prefetch(srcBlock + (((x>>3)&3) + 9)*srcStride + 32);
  2964. prefetchw(dstBlock + (((x>>3)&3) + 5)*dstStride + 32);
  2965. prefetchw(dstBlock + (((x>>3)&3) + 9)*dstStride + 32);
  2966. */
  2967. #endif
  2968. RENAME(blockCopy)(dstBlock + dstStride*8, dstStride,
  2969. srcBlock + srcStride*8, srcStride, mode & LEVEL_FIX, &c.packedYOffset);
  2970. RENAME(duplicate)(dstBlock + dstStride*8, dstStride);
  2971. if(mode & LINEAR_IPOL_DEINT_FILTER)
  2972. RENAME(deInterlaceInterpolateLinear)(dstBlock, dstStride);
  2973. else if(mode & LINEAR_BLEND_DEINT_FILTER)
  2974. RENAME(deInterlaceBlendLinear)(dstBlock, dstStride, c.deintTemp + x);
  2975. else if(mode & MEDIAN_DEINT_FILTER)
  2976. RENAME(deInterlaceMedian)(dstBlock, dstStride);
  2977. else if(mode & CUBIC_IPOL_DEINT_FILTER)
  2978. RENAME(deInterlaceInterpolateCubic)(dstBlock, dstStride);
  2979. else if(mode & FFMPEG_DEINT_FILTER)
  2980. RENAME(deInterlaceFF)(dstBlock, dstStride, c.deintTemp + x);
  2981. else if(mode & LOWPASS5_DEINT_FILTER)
  2982. RENAME(deInterlaceL5)(dstBlock, dstStride, c.deintTemp + x, c.deintTemp + width + x);
  2983. /* else if(mode & CUBIC_BLEND_DEINT_FILTER)
  2984. RENAME(deInterlaceBlendCubic)(dstBlock, dstStride);
  2985. */
  2986. dstBlock+=8;
  2987. srcBlock+=8;
  2988. }
  2989. if(width==FFABS(dstStride))
  2990. linecpy(dst, tempDst + 9*dstStride, copyAhead, dstStride);
  2991. else{
  2992. int i;
  2993. for(i=0; i<copyAhead; i++){
  2994. memcpy(dst + i*dstStride, tempDst + (9+i)*dstStride, width);
  2995. }
  2996. }
  2997. }
  2998. for(y=0; y<height; y+=BLOCK_SIZE){
  2999. //1% speedup if these are here instead of the inner loop
  3000. const uint8_t *srcBlock= &(src[y*srcStride]);
  3001. uint8_t *dstBlock= &(dst[y*dstStride]);
  3002. #if HAVE_MMX
  3003. uint8_t *tempBlock1= c.tempBlocks;
  3004. uint8_t *tempBlock2= c.tempBlocks + 8;
  3005. #endif
  3006. const int8_t *QPptr= &QPs[(y>>qpVShift)*QPStride];
  3007. int8_t *nonBQPptr= &c.nonBQPTable[(y>>qpVShift)*FFABS(QPStride)];
  3008. int QP=0;
  3009. /* can we mess with a 8x16 block from srcBlock/dstBlock downwards and 1 line upwards
  3010. if not than use a temporary buffer */
  3011. if(y+15 >= height){
  3012. int i;
  3013. /* copy from line (copyAhead) to (copyAhead+7) of src, these will be copied with
  3014. blockcopy to dst later */
  3015. linecpy(tempSrc + srcStride*copyAhead, srcBlock + srcStride*copyAhead,
  3016. FFMAX(height-y-copyAhead, 0), srcStride);
  3017. /* duplicate last line of src to fill the void upto line (copyAhead+7) */
  3018. for(i=FFMAX(height-y, 8); i<copyAhead+8; i++)
  3019. memcpy(tempSrc + srcStride*i, src + srcStride*(height-1), FFABS(srcStride));
  3020. /* copy up to (copyAhead+1) lines of dst (line -1 to (copyAhead-1))*/
  3021. linecpy(tempDst, dstBlock - dstStride, FFMIN(height-y+1, copyAhead+1), dstStride);
  3022. /* duplicate last line of dst to fill the void upto line (copyAhead) */
  3023. for(i=height-y+1; i<=copyAhead; i++)
  3024. memcpy(tempDst + dstStride*i, dst + dstStride*(height-1), FFABS(dstStride));
  3025. dstBlock= tempDst + dstStride;
  3026. srcBlock= tempSrc;
  3027. }
  3028. // From this point on it is guaranteed that we can read and write 16 lines downward
  3029. // finish 1 block before the next otherwise we might have a problem
  3030. // with the L1 Cache of the P4 ... or only a few blocks at a time or soemthing
  3031. for(x=0; x<width; x+=BLOCK_SIZE){
  3032. const int stride= dstStride;
  3033. #if HAVE_MMX
  3034. uint8_t *tmpXchg;
  3035. #endif
  3036. if(isColor){
  3037. QP= QPptr[x>>qpHShift];
  3038. c.nonBQP= nonBQPptr[x>>qpHShift];
  3039. }else{
  3040. QP= QPptr[x>>4];
  3041. QP= (QP* QPCorrecture + 256*128)>>16;
  3042. c.nonBQP= nonBQPptr[x>>4];
  3043. c.nonBQP= (c.nonBQP* QPCorrecture + 256*128)>>16;
  3044. yHistogram[ srcBlock[srcStride*12 + 4] ]++;
  3045. }
  3046. c.QP= QP;
  3047. #if HAVE_MMX
  3048. __asm__ volatile(
  3049. "movd %1, %%mm7 \n\t"
  3050. "packuswb %%mm7, %%mm7 \n\t" // 0, 0, 0, QP, 0, 0, 0, QP
  3051. "packuswb %%mm7, %%mm7 \n\t" // 0,QP, 0, QP, 0,QP, 0, QP
  3052. "packuswb %%mm7, %%mm7 \n\t" // QP,..., QP
  3053. "movq %%mm7, %0 \n\t"
  3054. : "=m" (c.pQPb)
  3055. : "r" (QP)
  3056. );
  3057. #endif
  3058. #if HAVE_MMX2
  3059. /*
  3060. prefetchnta(srcBlock + (((x>>2)&6) + 5)*srcStride + 32);
  3061. prefetchnta(srcBlock + (((x>>2)&6) + 6)*srcStride + 32);
  3062. prefetcht0(dstBlock + (((x>>2)&6) + 5)*dstStride + 32);
  3063. prefetcht0(dstBlock + (((x>>2)&6) + 6)*dstStride + 32);
  3064. */
  3065. __asm__(
  3066. "mov %4, %%"REG_a" \n\t"
  3067. "shr $2, %%"REG_a" \n\t"
  3068. "and $6, %%"REG_a" \n\t"
  3069. "add %5, %%"REG_a" \n\t"
  3070. "mov %%"REG_a", %%"REG_d" \n\t"
  3071. "imul %1, %%"REG_a" \n\t"
  3072. "imul %3, %%"REG_d" \n\t"
  3073. "prefetchnta 32(%%"REG_a", %0) \n\t"
  3074. "prefetcht0 32(%%"REG_d", %2) \n\t"
  3075. "add %1, %%"REG_a" \n\t"
  3076. "add %3, %%"REG_d" \n\t"
  3077. "prefetchnta 32(%%"REG_a", %0) \n\t"
  3078. "prefetcht0 32(%%"REG_d", %2) \n\t"
  3079. :: "r" (srcBlock), "r" ((x86_reg)srcStride), "r" (dstBlock), "r" ((x86_reg)dstStride),
  3080. "g" ((x86_reg)x), "g" ((x86_reg)copyAhead)
  3081. : "%"REG_a, "%"REG_d
  3082. );
  3083. #elif HAVE_AMD3DNOW
  3084. //FIXME check if this is faster on an 3dnow chip or if it is faster without the prefetch or ...
  3085. /* prefetch(srcBlock + (((x>>3)&3) + 5)*srcStride + 32);
  3086. prefetch(srcBlock + (((x>>3)&3) + 9)*srcStride + 32);
  3087. prefetchw(dstBlock + (((x>>3)&3) + 5)*dstStride + 32);
  3088. prefetchw(dstBlock + (((x>>3)&3) + 9)*dstStride + 32);
  3089. */
  3090. #endif
  3091. RENAME(blockCopy)(dstBlock + dstStride*copyAhead, dstStride,
  3092. srcBlock + srcStride*copyAhead, srcStride, mode & LEVEL_FIX, &c.packedYOffset);
  3093. if(mode & LINEAR_IPOL_DEINT_FILTER)
  3094. RENAME(deInterlaceInterpolateLinear)(dstBlock, dstStride);
  3095. else if(mode & LINEAR_BLEND_DEINT_FILTER)
  3096. RENAME(deInterlaceBlendLinear)(dstBlock, dstStride, c.deintTemp + x);
  3097. else if(mode & MEDIAN_DEINT_FILTER)
  3098. RENAME(deInterlaceMedian)(dstBlock, dstStride);
  3099. else if(mode & CUBIC_IPOL_DEINT_FILTER)
  3100. RENAME(deInterlaceInterpolateCubic)(dstBlock, dstStride);
  3101. else if(mode & FFMPEG_DEINT_FILTER)
  3102. RENAME(deInterlaceFF)(dstBlock, dstStride, c.deintTemp + x);
  3103. else if(mode & LOWPASS5_DEINT_FILTER)
  3104. RENAME(deInterlaceL5)(dstBlock, dstStride, c.deintTemp + x, c.deintTemp + width + x);
  3105. /* else if(mode & CUBIC_BLEND_DEINT_FILTER)
  3106. RENAME(deInterlaceBlendCubic)(dstBlock, dstStride);
  3107. */
  3108. /* only deblock if we have 2 blocks */
  3109. if(y + 8 < height){
  3110. if(mode & V_X1_FILTER)
  3111. RENAME(vertX1Filter)(dstBlock, stride, &c);
  3112. else if(mode & V_DEBLOCK){
  3113. const int t= RENAME(vertClassify)(dstBlock, stride, &c);
  3114. if(t==1)
  3115. RENAME(doVertLowPass)(dstBlock, stride, &c);
  3116. else if(t==2)
  3117. RENAME(doVertDefFilter)(dstBlock, stride, &c);
  3118. }else if(mode & V_A_DEBLOCK){
  3119. RENAME(do_a_deblock)(dstBlock, stride, 1, &c);
  3120. }
  3121. }
  3122. #if HAVE_MMX
  3123. RENAME(transpose1)(tempBlock1, tempBlock2, dstBlock, dstStride);
  3124. #endif
  3125. /* check if we have a previous block to deblock it with dstBlock */
  3126. if(x - 8 >= 0){
  3127. #if HAVE_MMX
  3128. if(mode & H_X1_FILTER)
  3129. RENAME(vertX1Filter)(tempBlock1, 16, &c);
  3130. else if(mode & H_DEBLOCK){
  3131. //START_TIMER
  3132. const int t= RENAME(vertClassify)(tempBlock1, 16, &c);
  3133. //STOP_TIMER("dc & minmax")
  3134. if(t==1)
  3135. RENAME(doVertLowPass)(tempBlock1, 16, &c);
  3136. else if(t==2)
  3137. RENAME(doVertDefFilter)(tempBlock1, 16, &c);
  3138. }else if(mode & H_A_DEBLOCK){
  3139. RENAME(do_a_deblock)(tempBlock1, 16, 1, &c);
  3140. }
  3141. RENAME(transpose2)(dstBlock-4, dstStride, tempBlock1 + 4*16);
  3142. #else
  3143. if(mode & H_X1_FILTER)
  3144. horizX1Filter(dstBlock-4, stride, QP);
  3145. else if(mode & H_DEBLOCK){
  3146. #if HAVE_ALTIVEC
  3147. DECLARE_ALIGNED(16, unsigned char, tempBlock)[272];
  3148. transpose_16x8_char_toPackedAlign_altivec(tempBlock, dstBlock - (4 + 1), stride);
  3149. const int t=vertClassify_altivec(tempBlock-48, 16, &c);
  3150. if(t==1) {
  3151. doVertLowPass_altivec(tempBlock-48, 16, &c);
  3152. transpose_8x16_char_fromPackedAlign_altivec(dstBlock - (4 + 1), tempBlock, stride);
  3153. }
  3154. else if(t==2) {
  3155. doVertDefFilter_altivec(tempBlock-48, 16, &c);
  3156. transpose_8x16_char_fromPackedAlign_altivec(dstBlock - (4 + 1), tempBlock, stride);
  3157. }
  3158. #else
  3159. const int t= RENAME(horizClassify)(dstBlock-4, stride, &c);
  3160. if(t==1)
  3161. RENAME(doHorizLowPass)(dstBlock-4, stride, &c);
  3162. else if(t==2)
  3163. RENAME(doHorizDefFilter)(dstBlock-4, stride, &c);
  3164. #endif
  3165. }else if(mode & H_A_DEBLOCK){
  3166. RENAME(do_a_deblock)(dstBlock-8, 1, stride, &c);
  3167. }
  3168. #endif //HAVE_MMX
  3169. if(mode & DERING){
  3170. //FIXME filter first line
  3171. if(y>0) RENAME(dering)(dstBlock - stride - 8, stride, &c);
  3172. }
  3173. if(mode & TEMP_NOISE_FILTER)
  3174. {
  3175. RENAME(tempNoiseReducer)(dstBlock-8, stride,
  3176. c.tempBlurred[isColor] + y*dstStride + x,
  3177. c.tempBlurredPast[isColor] + (y>>3)*256 + (x>>3),
  3178. c.ppMode.maxTmpNoise);
  3179. }
  3180. }
  3181. dstBlock+=8;
  3182. srcBlock+=8;
  3183. #if HAVE_MMX
  3184. tmpXchg= tempBlock1;
  3185. tempBlock1= tempBlock2;
  3186. tempBlock2 = tmpXchg;
  3187. #endif
  3188. }
  3189. if(mode & DERING){
  3190. if(y > 0) RENAME(dering)(dstBlock - dstStride - 8, dstStride, &c);
  3191. }
  3192. if((mode & TEMP_NOISE_FILTER)){
  3193. RENAME(tempNoiseReducer)(dstBlock-8, dstStride,
  3194. c.tempBlurred[isColor] + y*dstStride + x,
  3195. c.tempBlurredPast[isColor] + (y>>3)*256 + (x>>3),
  3196. c.ppMode.maxTmpNoise);
  3197. }
  3198. /* did we use a tmp buffer for the last lines*/
  3199. if(y+15 >= height){
  3200. uint8_t *dstBlock= &(dst[y*dstStride]);
  3201. if(width==FFABS(dstStride))
  3202. linecpy(dstBlock, tempDst + dstStride, height-y, dstStride);
  3203. else{
  3204. int i;
  3205. for(i=0; i<height-y; i++){
  3206. memcpy(dstBlock + i*dstStride, tempDst + (i+1)*dstStride, width);
  3207. }
  3208. }
  3209. }
  3210. /*
  3211. for(x=0; x<width; x+=32){
  3212. volatile int i;
  3213. i+= dstBlock[x + 7*dstStride] + dstBlock[x + 8*dstStride]
  3214. + dstBlock[x + 9*dstStride] + dstBlock[x +10*dstStride]
  3215. + dstBlock[x +11*dstStride] + dstBlock[x +12*dstStride];
  3216. + dstBlock[x +13*dstStride]
  3217. + dstBlock[x +14*dstStride] + dstBlock[x +15*dstStride];
  3218. }*/
  3219. }
  3220. #if HAVE_AMD3DNOW
  3221. __asm__ volatile("femms");
  3222. #elif HAVE_MMX
  3223. __asm__ volatile("emms");
  3224. #endif
  3225. #ifdef DEBUG_BRIGHTNESS
  3226. if(!isColor){
  3227. int max=1;
  3228. int i;
  3229. for(i=0; i<256; i++)
  3230. if(yHistogram[i] > max) max=yHistogram[i];
  3231. for(i=1; i<256; i++){
  3232. int x;
  3233. int start=yHistogram[i-1]/(max/256+1);
  3234. int end=yHistogram[i]/(max/256+1);
  3235. int inc= end > start ? 1 : -1;
  3236. for(x=start; x!=end+inc; x+=inc)
  3237. dst[ i*dstStride + x]+=128;
  3238. }
  3239. for(i=0; i<100; i+=2){
  3240. dst[ (white)*dstStride + i]+=128;
  3241. dst[ (black)*dstStride + i]+=128;
  3242. }
  3243. }
  3244. #endif
  3245. *c2= c; //copy local context back
  3246. }