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  1. /*
  2. * DSP utils
  3. * Copyright (c) 2000, 2001 Gerard Lantau.
  4. *
  5. * This program is free software; you can redistribute it and/or modify
  6. * it under the terms of the GNU General Public License as published by
  7. * the Free Software Foundation; either version 2 of the License, or
  8. * (at your option) any later version.
  9. *
  10. * This program is distributed in the hope that it will be useful,
  11. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  12. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  13. * GNU General Public License for more details.
  14. *
  15. * You should have received a copy of the GNU General Public License
  16. * along with this program; if not, write to the Free Software
  17. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  18. *
  19. * gmc & q-pel support by Michael Niedermayer <michaelni@gmx.at>
  20. */
  21. #include <stdlib.h>
  22. #include <stdio.h>
  23. #include <math.h>
  24. #include "avcodec.h"
  25. #include "dsputil.h"
  26. #include "simple_idct.h"
  27. void (*ff_idct)(DCTELEM *block);
  28. void (*get_pixels)(DCTELEM *block, const UINT8 *pixels, int line_size);
  29. void (*put_pixels_clamped)(const DCTELEM *block, UINT8 *pixels, int line_size);
  30. void (*add_pixels_clamped)(const DCTELEM *block, UINT8 *pixels, int line_size);
  31. void (*gmc1)(UINT8 *dst, UINT8 *src, int srcStride, int h, int x16, int y16, int rounder);
  32. void (*clear_blocks)(DCTELEM *blocks);
  33. op_pixels_abs_func pix_abs16x16;
  34. op_pixels_abs_func pix_abs16x16_x2;
  35. op_pixels_abs_func pix_abs16x16_y2;
  36. op_pixels_abs_func pix_abs16x16_xy2;
  37. op_pixels_abs_func pix_abs8x8;
  38. op_pixels_abs_func pix_abs8x8_x2;
  39. op_pixels_abs_func pix_abs8x8_y2;
  40. op_pixels_abs_func pix_abs8x8_xy2;
  41. UINT8 cropTbl[256 + 2 * MAX_NEG_CROP];
  42. UINT32 squareTbl[512];
  43. extern UINT16 default_intra_matrix[64];
  44. extern UINT16 default_non_intra_matrix[64];
  45. UINT8 zigzag_direct[64] = {
  46. 0, 1, 8, 16, 9, 2, 3, 10,
  47. 17, 24, 32, 25, 18, 11, 4, 5,
  48. 12, 19, 26, 33, 40, 48, 41, 34,
  49. 27, 20, 13, 6, 7, 14, 21, 28,
  50. 35, 42, 49, 56, 57, 50, 43, 36,
  51. 29, 22, 15, 23, 30, 37, 44, 51,
  52. 58, 59, 52, 45, 38, 31, 39, 46,
  53. 53, 60, 61, 54, 47, 55, 62, 63
  54. };
  55. /* not permutated inverse zigzag_direct + 1 for MMX quantizer */
  56. UINT16 __align8 inv_zigzag_direct16[64];
  57. /* not permutated zigzag_direct for MMX quantizer */
  58. UINT8 zigzag_direct_noperm[64];
  59. UINT8 ff_alternate_horizontal_scan[64] = {
  60. 0, 1, 2, 3, 8, 9, 16, 17,
  61. 10, 11, 4, 5, 6, 7, 15, 14,
  62. 13, 12, 19, 18, 24, 25, 32, 33,
  63. 26, 27, 20, 21, 22, 23, 28, 29,
  64. 30, 31, 34, 35, 40, 41, 48, 49,
  65. 42, 43, 36, 37, 38, 39, 44, 45,
  66. 46, 47, 50, 51, 56, 57, 58, 59,
  67. 52, 53, 54, 55, 60, 61, 62, 63,
  68. };
  69. UINT8 ff_alternate_vertical_scan[64] = {
  70. 0, 8, 16, 24, 1, 9, 2, 10,
  71. 17, 25, 32, 40, 48, 56, 57, 49,
  72. 41, 33, 26, 18, 3, 11, 4, 12,
  73. 19, 27, 34, 42, 50, 58, 35, 43,
  74. 51, 59, 20, 28, 5, 13, 6, 14,
  75. 21, 29, 36, 44, 52, 60, 37, 45,
  76. 53, 61, 22, 30, 7, 15, 23, 31,
  77. 38, 46, 54, 62, 39, 47, 55, 63,
  78. };
  79. /* Input permutation for the simple_idct_mmx */
  80. static UINT8 simple_mmx_permutation[64]={
  81. 0x00, 0x08, 0x04, 0x09, 0x01, 0x0C, 0x05, 0x0D,
  82. 0x10, 0x18, 0x14, 0x19, 0x11, 0x1C, 0x15, 0x1D,
  83. 0x20, 0x28, 0x24, 0x29, 0x21, 0x2C, 0x25, 0x2D,
  84. 0x12, 0x1A, 0x16, 0x1B, 0x13, 0x1E, 0x17, 0x1F,
  85. 0x02, 0x0A, 0x06, 0x0B, 0x03, 0x0E, 0x07, 0x0F,
  86. 0x30, 0x38, 0x34, 0x39, 0x31, 0x3C, 0x35, 0x3D,
  87. 0x22, 0x2A, 0x26, 0x2B, 0x23, 0x2E, 0x27, 0x2F,
  88. 0x32, 0x3A, 0x36, 0x3B, 0x33, 0x3E, 0x37, 0x3F,
  89. };
  90. /* a*inverse[b]>>32 == a/b for all 0<=a<=65536 && 2<=b<=255 */
  91. UINT32 inverse[256]={
  92. 0, 4294967295U,2147483648U,1431655766, 1073741824, 858993460, 715827883, 613566757,
  93. 536870912, 477218589, 429496730, 390451573, 357913942, 330382100, 306783379, 286331154,
  94. 268435456, 252645136, 238609295, 226050911, 214748365, 204522253, 195225787, 186737709,
  95. 178956971, 171798692, 165191050, 159072863, 153391690, 148102321, 143165577, 138547333,
  96. 134217728, 130150525, 126322568, 122713352, 119304648, 116080198, 113025456, 110127367,
  97. 107374183, 104755300, 102261127, 99882961, 97612894, 95443718, 93368855, 91382283,
  98. 89478486, 87652394, 85899346, 84215046, 82595525, 81037119, 79536432, 78090315,
  99. 76695845, 75350304, 74051161, 72796056, 71582789, 70409300, 69273667, 68174085,
  100. 67108864, 66076420, 65075263, 64103990, 63161284, 62245903, 61356676, 60492498,
  101. 59652324, 58835169, 58040099, 57266231, 56512728, 55778797, 55063684, 54366675,
  102. 53687092, 53024288, 52377650, 51746594, 51130564, 50529028, 49941481, 49367441,
  103. 48806447, 48258060, 47721859, 47197443, 46684428, 46182445, 45691142, 45210183,
  104. 44739243, 44278014, 43826197, 43383509, 42949673, 42524429, 42107523, 41698712,
  105. 41297763, 40904451, 40518560, 40139882, 39768216, 39403370, 39045158, 38693400,
  106. 38347923, 38008561, 37675152, 37347542, 37025581, 36709123, 36398028, 36092163,
  107. 35791395, 35495598, 35204650, 34918434, 34636834, 34359739, 34087043, 33818641,
  108. 33554432, 33294321, 33038210, 32786010, 32537632, 32292988, 32051995, 31814573,
  109. 31580642, 31350127, 31122952, 30899046, 30678338, 30460761, 30246249, 30034737,
  110. 29826162, 29620465, 29417585, 29217465, 29020050, 28825284, 28633116, 28443493,
  111. 28256364, 28071682, 27889399, 27709467, 27531842, 27356480, 27183338, 27012373,
  112. 26843546, 26676816, 26512144, 26349493, 26188825, 26030105, 25873297, 25718368,
  113. 25565282, 25414008, 25264514, 25116768, 24970741, 24826401, 24683721, 24542671,
  114. 24403224, 24265352, 24129030, 23994231, 23860930, 23729102, 23598722, 23469767,
  115. 23342214, 23216040, 23091223, 22967740, 22845571, 22724695, 22605092, 22486740,
  116. 22369622, 22253717, 22139007, 22025474, 21913099, 21801865, 21691755, 21582751,
  117. 21474837, 21367997, 21262215, 21157475, 21053762, 20951060, 20849356, 20748635,
  118. 20648882, 20550083, 20452226, 20355296, 20259280, 20164166, 20069941, 19976593,
  119. 19884108, 19792477, 19701685, 19611723, 19522579, 19434242, 19346700, 19259944,
  120. 19173962, 19088744, 19004281, 18920561, 18837576, 18755316, 18673771, 18592933,
  121. 18512791, 18433337, 18354562, 18276457, 18199014, 18122225, 18046082, 17970575,
  122. 17895698, 17821442, 17747799, 17674763, 17602325, 17530479, 17459217, 17388532,
  123. 17318417, 17248865, 17179870, 17111424, 17043522, 16976156, 16909321, 16843010,
  124. };
  125. /* used to skip zeros at the end */
  126. UINT8 zigzag_end[64];
  127. UINT8 permutation[64];
  128. //UINT8 invPermutation[64];
  129. static void build_zigzag_end()
  130. {
  131. int lastIndex;
  132. int lastIndexAfterPerm=0;
  133. for(lastIndex=0; lastIndex<64; lastIndex++)
  134. {
  135. if(zigzag_direct[lastIndex] > lastIndexAfterPerm)
  136. lastIndexAfterPerm= zigzag_direct[lastIndex];
  137. zigzag_end[lastIndex]= lastIndexAfterPerm + 1;
  138. }
  139. }
  140. void get_pixels_c(DCTELEM *block, const UINT8 *pixels, int line_size)
  141. {
  142. DCTELEM *p;
  143. const UINT8 *pix;
  144. int i;
  145. /* read the pixels */
  146. p = block;
  147. pix = pixels;
  148. for(i=0;i<8;i++) {
  149. p[0] = pix[0];
  150. p[1] = pix[1];
  151. p[2] = pix[2];
  152. p[3] = pix[3];
  153. p[4] = pix[4];
  154. p[5] = pix[5];
  155. p[6] = pix[6];
  156. p[7] = pix[7];
  157. pix += line_size;
  158. p += 8;
  159. }
  160. }
  161. void put_pixels_clamped_c(const DCTELEM *block, UINT8 *pixels, int line_size)
  162. {
  163. const DCTELEM *p;
  164. UINT8 *pix;
  165. int i;
  166. UINT8 *cm = cropTbl + MAX_NEG_CROP;
  167. /* read the pixels */
  168. p = block;
  169. pix = pixels;
  170. for(i=0;i<8;i++) {
  171. pix[0] = cm[p[0]];
  172. pix[1] = cm[p[1]];
  173. pix[2] = cm[p[2]];
  174. pix[3] = cm[p[3]];
  175. pix[4] = cm[p[4]];
  176. pix[5] = cm[p[5]];
  177. pix[6] = cm[p[6]];
  178. pix[7] = cm[p[7]];
  179. pix += line_size;
  180. p += 8;
  181. }
  182. }
  183. void add_pixels_clamped_c(const DCTELEM *block, UINT8 *pixels, int line_size)
  184. {
  185. const DCTELEM *p;
  186. UINT8 *pix;
  187. int i;
  188. UINT8 *cm = cropTbl + MAX_NEG_CROP;
  189. /* read the pixels */
  190. p = block;
  191. pix = pixels;
  192. for(i=0;i<8;i++) {
  193. pix[0] = cm[pix[0] + p[0]];
  194. pix[1] = cm[pix[1] + p[1]];
  195. pix[2] = cm[pix[2] + p[2]];
  196. pix[3] = cm[pix[3] + p[3]];
  197. pix[4] = cm[pix[4] + p[4]];
  198. pix[5] = cm[pix[5] + p[5]];
  199. pix[6] = cm[pix[6] + p[6]];
  200. pix[7] = cm[pix[7] + p[7]];
  201. pix += line_size;
  202. p += 8;
  203. }
  204. }
  205. #define PIXOP(BTYPE, OPNAME, OP, INCR) \
  206. \
  207. static void OPNAME ## _pixels(BTYPE *block, const UINT8 *pixels, int line_size, int h) \
  208. { \
  209. BTYPE *p; \
  210. const UINT8 *pix; \
  211. \
  212. p = block; \
  213. pix = pixels; \
  214. do { \
  215. OP(p[0], pix[0]); \
  216. OP(p[1], pix[1]); \
  217. OP(p[2], pix[2]); \
  218. OP(p[3], pix[3]); \
  219. OP(p[4], pix[4]); \
  220. OP(p[5], pix[5]); \
  221. OP(p[6], pix[6]); \
  222. OP(p[7], pix[7]); \
  223. pix += line_size; \
  224. p += INCR; \
  225. } while (--h);; \
  226. } \
  227. \
  228. static void OPNAME ## _pixels_x2(BTYPE *block, const UINT8 *pixels, int line_size, int h) \
  229. { \
  230. BTYPE *p; \
  231. const UINT8 *pix; \
  232. \
  233. p = block; \
  234. pix = pixels; \
  235. do { \
  236. OP(p[0], avg2(pix[0], pix[1])); \
  237. OP(p[1], avg2(pix[1], pix[2])); \
  238. OP(p[2], avg2(pix[2], pix[3])); \
  239. OP(p[3], avg2(pix[3], pix[4])); \
  240. OP(p[4], avg2(pix[4], pix[5])); \
  241. OP(p[5], avg2(pix[5], pix[6])); \
  242. OP(p[6], avg2(pix[6], pix[7])); \
  243. OP(p[7], avg2(pix[7], pix[8])); \
  244. pix += line_size; \
  245. p += INCR; \
  246. } while (--h); \
  247. } \
  248. \
  249. static void OPNAME ## _pixels_y2(BTYPE *block, const UINT8 *pixels, int line_size, int h) \
  250. { \
  251. BTYPE *p; \
  252. const UINT8 *pix; \
  253. const UINT8 *pix1; \
  254. \
  255. p = block; \
  256. pix = pixels; \
  257. pix1 = pixels + line_size; \
  258. do { \
  259. OP(p[0], avg2(pix[0], pix1[0])); \
  260. OP(p[1], avg2(pix[1], pix1[1])); \
  261. OP(p[2], avg2(pix[2], pix1[2])); \
  262. OP(p[3], avg2(pix[3], pix1[3])); \
  263. OP(p[4], avg2(pix[4], pix1[4])); \
  264. OP(p[5], avg2(pix[5], pix1[5])); \
  265. OP(p[6], avg2(pix[6], pix1[6])); \
  266. OP(p[7], avg2(pix[7], pix1[7])); \
  267. pix += line_size; \
  268. pix1 += line_size; \
  269. p += INCR; \
  270. } while(--h); \
  271. } \
  272. \
  273. static void OPNAME ## _pixels_xy2(BTYPE *block, const UINT8 *pixels, int line_size, int h) \
  274. { \
  275. BTYPE *p; \
  276. const UINT8 *pix; \
  277. const UINT8 *pix1; \
  278. \
  279. p = block; \
  280. pix = pixels; \
  281. pix1 = pixels + line_size; \
  282. do { \
  283. OP(p[0], avg4(pix[0], pix[1], pix1[0], pix1[1])); \
  284. OP(p[1], avg4(pix[1], pix[2], pix1[1], pix1[2])); \
  285. OP(p[2], avg4(pix[2], pix[3], pix1[2], pix1[3])); \
  286. OP(p[3], avg4(pix[3], pix[4], pix1[3], pix1[4])); \
  287. OP(p[4], avg4(pix[4], pix[5], pix1[4], pix1[5])); \
  288. OP(p[5], avg4(pix[5], pix[6], pix1[5], pix1[6])); \
  289. OP(p[6], avg4(pix[6], pix[7], pix1[6], pix1[7])); \
  290. OP(p[7], avg4(pix[7], pix[8], pix1[7], pix1[8])); \
  291. pix += line_size; \
  292. pix1 += line_size; \
  293. p += INCR; \
  294. } while(--h); \
  295. } \
  296. \
  297. void (*OPNAME ## _pixels_tab[4])(BTYPE *block, const UINT8 *pixels, int line_size, int h) = { \
  298. OPNAME ## _pixels, \
  299. OPNAME ## _pixels_x2, \
  300. OPNAME ## _pixels_y2, \
  301. OPNAME ## _pixels_xy2, \
  302. };
  303. /* rounding primitives */
  304. #define avg2(a,b) ((a+b+1)>>1)
  305. #define avg4(a,b,c,d) ((a+b+c+d+2)>>2)
  306. #define op_put(a, b) a = b
  307. #define op_avg(a, b) a = avg2(a, b)
  308. #define op_sub(a, b) a -= b
  309. PIXOP(UINT8, put, op_put, line_size)
  310. PIXOP(UINT8, avg, op_avg, line_size)
  311. PIXOP(DCTELEM, sub, op_sub, 8)
  312. /* not rounding primitives */
  313. #undef avg2
  314. #undef avg4
  315. #define avg2(a,b) ((a+b)>>1)
  316. #define avg4(a,b,c,d) ((a+b+c+d+1)>>2)
  317. PIXOP(UINT8, put_no_rnd, op_put, line_size)
  318. PIXOP(UINT8, avg_no_rnd, op_avg, line_size)
  319. /* motion estimation */
  320. #undef avg2
  321. #undef avg4
  322. #define avg2(a,b) ((a+b+1)>>1)
  323. #define avg4(a,b,c,d) ((a+b+c+d+2)>>2)
  324. static void gmc1_c(UINT8 *dst, UINT8 *src, int srcStride, int h, int x16, int y16, int rounder)
  325. {
  326. const int A=(16-x16)*(16-y16);
  327. const int B=( x16)*(16-y16);
  328. const int C=(16-x16)*( y16);
  329. const int D=( x16)*( y16);
  330. int i;
  331. rounder= 128 - rounder;
  332. for(i=0; i<h; i++)
  333. {
  334. dst[0]= (A*src[0] + B*src[1] + C*src[srcStride+0] + D*src[srcStride+1] + rounder)>>8;
  335. dst[1]= (A*src[1] + B*src[2] + C*src[srcStride+1] + D*src[srcStride+2] + rounder)>>8;
  336. dst[2]= (A*src[2] + B*src[3] + C*src[srcStride+2] + D*src[srcStride+3] + rounder)>>8;
  337. dst[3]= (A*src[3] + B*src[4] + C*src[srcStride+3] + D*src[srcStride+4] + rounder)>>8;
  338. dst[4]= (A*src[4] + B*src[5] + C*src[srcStride+4] + D*src[srcStride+5] + rounder)>>8;
  339. dst[5]= (A*src[5] + B*src[6] + C*src[srcStride+5] + D*src[srcStride+6] + rounder)>>8;
  340. dst[6]= (A*src[6] + B*src[7] + C*src[srcStride+6] + D*src[srcStride+7] + rounder)>>8;
  341. dst[7]= (A*src[7] + B*src[8] + C*src[srcStride+7] + D*src[srcStride+8] + rounder)>>8;
  342. dst+= srcStride;
  343. src+= srcStride;
  344. }
  345. }
  346. static void qpel_h_lowpass(UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int h, int r)
  347. {
  348. UINT8 *cm = cropTbl + MAX_NEG_CROP;
  349. int i;
  350. for(i=0; i<h; i++)
  351. {
  352. dst[0]= cm[(((src[0]+src[1])*20 - (src[0]+src[2])*6 + (src[1]+src[3])*3 - (src[2]+src[4]) + r)>>5)];
  353. dst[1]= cm[(((src[1]+src[2])*20 - (src[0]+src[3])*6 + (src[0]+src[4])*3 - (src[1]+src[5]) + r)>>5)];
  354. dst[2]= cm[(((src[2]+src[3])*20 - (src[1]+src[4])*6 + (src[0]+src[5])*3 - (src[0]+src[6]) + r)>>5)];
  355. dst[3]= cm[(((src[3]+src[4])*20 - (src[2]+src[5])*6 + (src[1]+src[6])*3 - (src[0]+src[7]) + r)>>5)];
  356. dst[4]= cm[(((src[4]+src[5])*20 - (src[3]+src[6])*6 + (src[2]+src[7])*3 - (src[1]+src[8]) + r)>>5)];
  357. dst[5]= cm[(((src[5]+src[6])*20 - (src[4]+src[7])*6 + (src[3]+src[8])*3 - (src[2]+src[8]) + r)>>5)];
  358. dst[6]= cm[(((src[6]+src[7])*20 - (src[5]+src[8])*6 + (src[4]+src[8])*3 - (src[3]+src[7]) + r)>>5)];
  359. dst[7]= cm[(((src[7]+src[8])*20 - (src[6]+src[8])*6 + (src[5]+src[7])*3 - (src[4]+src[6]) + r)>>5)];
  360. dst+=dstStride;
  361. src+=srcStride;
  362. }
  363. }
  364. static void qpel_v_lowpass(UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int w, int r)
  365. {
  366. UINT8 *cm = cropTbl + MAX_NEG_CROP;
  367. int i;
  368. for(i=0; i<w; i++)
  369. {
  370. const int src0= src[0*srcStride];
  371. const int src1= src[1*srcStride];
  372. const int src2= src[2*srcStride];
  373. const int src3= src[3*srcStride];
  374. const int src4= src[4*srcStride];
  375. const int src5= src[5*srcStride];
  376. const int src6= src[6*srcStride];
  377. const int src7= src[7*srcStride];
  378. const int src8= src[8*srcStride];
  379. dst[0*dstStride]= cm[(((src0+src1)*20 - (src0+src2)*6 + (src1+src3)*3 - (src2+src4) + r)>>5)];
  380. dst[1*dstStride]= cm[(((src1+src2)*20 - (src0+src3)*6 + (src0+src4)*3 - (src1+src5) + r)>>5)];
  381. dst[2*dstStride]= cm[(((src2+src3)*20 - (src1+src4)*6 + (src0+src5)*3 - (src0+src6) + r)>>5)];
  382. dst[3*dstStride]= cm[(((src3+src4)*20 - (src2+src5)*6 + (src1+src6)*3 - (src0+src7) + r)>>5)];
  383. dst[4*dstStride]= cm[(((src4+src5)*20 - (src3+src6)*6 + (src2+src7)*3 - (src1+src8) + r)>>5)];
  384. dst[5*dstStride]= cm[(((src5+src6)*20 - (src4+src7)*6 + (src3+src8)*3 - (src2+src8) + r)>>5)];
  385. dst[6*dstStride]= cm[(((src6+src7)*20 - (src5+src8)*6 + (src4+src8)*3 - (src3+src7) + r)>>5)];
  386. dst[7*dstStride]= cm[(((src7+src8)*20 - (src6+src8)*6 + (src5+src7)*3 - (src4+src6) + r)>>5)];
  387. dst++;
  388. src++;
  389. }
  390. }
  391. static inline void put_block(UINT8 *dst, UINT8 *src, int dstStride, int srcStride)
  392. {
  393. int i;
  394. for(i=0; i<8; i++)
  395. {
  396. dst[0]= src[0];
  397. dst[1]= src[1];
  398. dst[2]= src[2];
  399. dst[3]= src[3];
  400. dst[4]= src[4];
  401. dst[5]= src[5];
  402. dst[6]= src[6];
  403. dst[7]= src[7];
  404. dst+=dstStride;
  405. src+=srcStride;
  406. }
  407. }
  408. static inline void avg2_block(UINT8 *dst, UINT8 *src1, UINT8 *src2, int dstStride, int srcStride, int r)
  409. {
  410. int i;
  411. for(i=0; i<8; i++)
  412. {
  413. dst[0]= (src1[0] + src2[0] + r)>>1;
  414. dst[1]= (src1[1] + src2[1] + r)>>1;
  415. dst[2]= (src1[2] + src2[2] + r)>>1;
  416. dst[3]= (src1[3] + src2[3] + r)>>1;
  417. dst[4]= (src1[4] + src2[4] + r)>>1;
  418. dst[5]= (src1[5] + src2[5] + r)>>1;
  419. dst[6]= (src1[6] + src2[6] + r)>>1;
  420. dst[7]= (src1[7] + src2[7] + r)>>1;
  421. dst+=dstStride;
  422. src1+=srcStride;
  423. src2+=8;
  424. }
  425. }
  426. static inline void avg4_block(UINT8 *dst, UINT8 *src1, UINT8 *src2, UINT8 *src3, UINT8 *src4, int dstStride, int srcStride, int r)
  427. {
  428. int i;
  429. for(i=0; i<8; i++)
  430. {
  431. dst[0]= (src1[0] + src2[0] + src3[0] + src4[0] + r)>>2;
  432. dst[1]= (src1[1] + src2[1] + src3[1] + src4[1] + r)>>2;
  433. dst[2]= (src1[2] + src2[2] + src3[2] + src4[2] + r)>>2;
  434. dst[3]= (src1[3] + src2[3] + src3[3] + src4[3] + r)>>2;
  435. dst[4]= (src1[4] + src2[4] + src3[4] + src4[4] + r)>>2;
  436. dst[5]= (src1[5] + src2[5] + src3[5] + src4[5] + r)>>2;
  437. dst[6]= (src1[6] + src2[6] + src3[6] + src4[6] + r)>>2;
  438. dst[7]= (src1[7] + src2[7] + src3[7] + src4[7] + r)>>2;
  439. dst+=dstStride;
  440. src1+=srcStride;
  441. src2+=8;
  442. src3+=8;
  443. src4+=8;
  444. }
  445. }
  446. #define QPEL_MC(r, name) \
  447. static void qpel_mc00_c ## name (UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int mx, int my)\
  448. {\
  449. put_block(dst, src, dstStride, srcStride);\
  450. }\
  451. \
  452. static void qpel_mc10_c ## name (UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int mx, int my)\
  453. {\
  454. UINT8 half[64];\
  455. qpel_h_lowpass(half, src, 8, srcStride, 8, 16-r);\
  456. avg2_block(dst, src, half, dstStride, srcStride, 1-r);\
  457. }\
  458. \
  459. static void qpel_mc20_c ## name (UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int mx, int my)\
  460. {\
  461. qpel_h_lowpass(dst, src, dstStride, srcStride, 8, 16-r);\
  462. }\
  463. \
  464. static void qpel_mc30_c ## name (UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int mx, int my)\
  465. {\
  466. UINT8 half[64];\
  467. qpel_h_lowpass(half, src, 8, srcStride, 8, 16-r);\
  468. avg2_block(dst, src+1, half, dstStride, srcStride, 1-r);\
  469. }\
  470. \
  471. static void qpel_mc01_c ## name (UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int mx, int my)\
  472. {\
  473. UINT8 half[64];\
  474. qpel_v_lowpass(half, src, 8, srcStride, 8, 16-r);\
  475. avg2_block(dst, src, half, dstStride, srcStride, 1-r);\
  476. }\
  477. \
  478. static void qpel_mc02_c ## name (UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int mx, int my)\
  479. {\
  480. qpel_v_lowpass(dst, src, dstStride, srcStride, 8, 16-r);\
  481. }\
  482. \
  483. static void qpel_mc03_c ## name (UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int mx, int my)\
  484. {\
  485. UINT8 half[64];\
  486. qpel_v_lowpass(half, src, 8, srcStride, 8, 16-r);\
  487. avg2_block(dst, src+srcStride, half, dstStride, srcStride, 1-r);\
  488. }\
  489. static void qpel_mc11_c ## name (UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int mx, int my)\
  490. {\
  491. UINT8 halfH[72];\
  492. UINT8 halfV[64];\
  493. UINT8 halfHV[64];\
  494. qpel_h_lowpass(halfH, src, 8, srcStride, 9, 16-r);\
  495. qpel_v_lowpass(halfV, src, 8, srcStride, 8, 16-r);\
  496. qpel_v_lowpass(halfHV, halfH, 8, 8, 8, 16-r);\
  497. avg4_block(dst, src, halfH, halfV, halfHV, dstStride, srcStride, 2-r);\
  498. }\
  499. static void qpel_mc31_c ## name (UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int mx, int my)\
  500. {\
  501. UINT8 halfH[72];\
  502. UINT8 halfV[64];\
  503. UINT8 halfHV[64];\
  504. qpel_h_lowpass(halfH, src, 8, srcStride, 9, 16-r);\
  505. qpel_v_lowpass(halfV, src+1, 8, srcStride, 8, 16-r);\
  506. qpel_v_lowpass(halfHV, halfH, 8, 8, 8, 16-r);\
  507. avg4_block(dst, src+1, halfH, halfV, halfHV, dstStride, srcStride, 2-r);\
  508. }\
  509. static void qpel_mc13_c ## name (UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int mx, int my)\
  510. {\
  511. UINT8 halfH[72];\
  512. UINT8 halfV[64];\
  513. UINT8 halfHV[64];\
  514. qpel_h_lowpass(halfH, src, 8, srcStride, 9, 16-r);\
  515. qpel_v_lowpass(halfV, src, 8, srcStride, 8, 16-r);\
  516. qpel_v_lowpass(halfHV, halfH, 8, 8, 8, 16-r);\
  517. avg4_block(dst, src+srcStride, halfH+8, halfV, halfHV, dstStride, srcStride, 2-r);\
  518. }\
  519. static void qpel_mc33_c ## name (UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int mx, int my)\
  520. {\
  521. UINT8 halfH[72];\
  522. UINT8 halfV[64];\
  523. UINT8 halfHV[64];\
  524. qpel_h_lowpass(halfH, src, 8, srcStride, 9, 16-r);\
  525. qpel_v_lowpass(halfV, src+1, 8, srcStride, 8, 16-r);\
  526. qpel_v_lowpass(halfHV, halfH, 8, 8, 8, 16-r);\
  527. avg4_block(dst, src+srcStride+1, halfH+8, halfV, halfHV, dstStride, srcStride, 2-r);\
  528. }\
  529. static void qpel_mc21_c ## name (UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int mx, int my)\
  530. {\
  531. UINT8 halfH[72];\
  532. UINT8 halfHV[64];\
  533. qpel_h_lowpass(halfH, src, 8, srcStride, 9, 16-r);\
  534. qpel_v_lowpass(halfHV, halfH, 8, 8, 8, 16-r);\
  535. avg2_block(dst, halfH, halfHV, dstStride, 8, 1-r);\
  536. }\
  537. static void qpel_mc23_c ## name (UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int mx, int my)\
  538. {\
  539. UINT8 halfH[72];\
  540. UINT8 halfHV[64];\
  541. qpel_h_lowpass(halfH, src, 8, srcStride, 9, 16-r);\
  542. qpel_v_lowpass(halfHV, halfH, 8, 8, 8, 16-r);\
  543. avg2_block(dst, halfH+8, halfHV, dstStride, 8, 1-r);\
  544. }\
  545. static void qpel_mc12_c ## name (UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int mx, int my)\
  546. {\
  547. UINT8 halfH[72];\
  548. UINT8 halfV[64];\
  549. UINT8 halfHV[64];\
  550. qpel_h_lowpass(halfH, src, 8, srcStride, 9, 16-r);\
  551. qpel_v_lowpass(halfV, src, 8, srcStride, 8, 16-r);\
  552. qpel_v_lowpass(halfHV, halfH, 8, 8, 8, 16-r);\
  553. avg2_block(dst, halfV, halfHV, dstStride, 8, 1-r);\
  554. }\
  555. static void qpel_mc32_c ## name (UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int mx, int my)\
  556. {\
  557. UINT8 halfH[72];\
  558. UINT8 halfV[64];\
  559. UINT8 halfHV[64];\
  560. qpel_h_lowpass(halfH, src, 8, srcStride, 9, 16-r);\
  561. qpel_v_lowpass(halfV, src+1, 8, srcStride, 8, 16-r);\
  562. qpel_v_lowpass(halfHV, halfH, 8, 8, 8, 16-r);\
  563. avg2_block(dst, halfV, halfHV, dstStride, 8, 1-r);\
  564. }\
  565. static void qpel_mc22_c ## name (UINT8 *dst, UINT8 *src, int dstStride, int srcStride, int mx, int my)\
  566. {\
  567. UINT8 halfH[72];\
  568. qpel_h_lowpass(halfH, src, 8, srcStride, 9, 16-r);\
  569. qpel_v_lowpass(dst, halfH, dstStride, 8, 8, 16-r);\
  570. }\
  571. qpel_mc_func qpel_mc ## name ## _tab[16]={ \
  572. qpel_mc00_c ## name, \
  573. qpel_mc10_c ## name, \
  574. qpel_mc20_c ## name, \
  575. qpel_mc30_c ## name, \
  576. qpel_mc01_c ## name, \
  577. qpel_mc11_c ## name, \
  578. qpel_mc21_c ## name, \
  579. qpel_mc31_c ## name, \
  580. qpel_mc02_c ## name, \
  581. qpel_mc12_c ## name, \
  582. qpel_mc22_c ## name, \
  583. qpel_mc32_c ## name, \
  584. qpel_mc03_c ## name, \
  585. qpel_mc13_c ## name, \
  586. qpel_mc23_c ## name, \
  587. qpel_mc33_c ## name, \
  588. };
  589. QPEL_MC(0, _rnd)
  590. QPEL_MC(1, _no_rnd)
  591. int pix_abs16x16_c(UINT8 *pix1, UINT8 *pix2, int line_size)
  592. {
  593. int s, i;
  594. s = 0;
  595. for(i=0;i<16;i++) {
  596. s += abs(pix1[0] - pix2[0]);
  597. s += abs(pix1[1] - pix2[1]);
  598. s += abs(pix1[2] - pix2[2]);
  599. s += abs(pix1[3] - pix2[3]);
  600. s += abs(pix1[4] - pix2[4]);
  601. s += abs(pix1[5] - pix2[5]);
  602. s += abs(pix1[6] - pix2[6]);
  603. s += abs(pix1[7] - pix2[7]);
  604. s += abs(pix1[8] - pix2[8]);
  605. s += abs(pix1[9] - pix2[9]);
  606. s += abs(pix1[10] - pix2[10]);
  607. s += abs(pix1[11] - pix2[11]);
  608. s += abs(pix1[12] - pix2[12]);
  609. s += abs(pix1[13] - pix2[13]);
  610. s += abs(pix1[14] - pix2[14]);
  611. s += abs(pix1[15] - pix2[15]);
  612. pix1 += line_size;
  613. pix2 += line_size;
  614. }
  615. return s;
  616. }
  617. int pix_abs16x16_x2_c(UINT8 *pix1, UINT8 *pix2, int line_size)
  618. {
  619. int s, i;
  620. s = 0;
  621. for(i=0;i<16;i++) {
  622. s += abs(pix1[0] - avg2(pix2[0], pix2[1]));
  623. s += abs(pix1[1] - avg2(pix2[1], pix2[2]));
  624. s += abs(pix1[2] - avg2(pix2[2], pix2[3]));
  625. s += abs(pix1[3] - avg2(pix2[3], pix2[4]));
  626. s += abs(pix1[4] - avg2(pix2[4], pix2[5]));
  627. s += abs(pix1[5] - avg2(pix2[5], pix2[6]));
  628. s += abs(pix1[6] - avg2(pix2[6], pix2[7]));
  629. s += abs(pix1[7] - avg2(pix2[7], pix2[8]));
  630. s += abs(pix1[8] - avg2(pix2[8], pix2[9]));
  631. s += abs(pix1[9] - avg2(pix2[9], pix2[10]));
  632. s += abs(pix1[10] - avg2(pix2[10], pix2[11]));
  633. s += abs(pix1[11] - avg2(pix2[11], pix2[12]));
  634. s += abs(pix1[12] - avg2(pix2[12], pix2[13]));
  635. s += abs(pix1[13] - avg2(pix2[13], pix2[14]));
  636. s += abs(pix1[14] - avg2(pix2[14], pix2[15]));
  637. s += abs(pix1[15] - avg2(pix2[15], pix2[16]));
  638. pix1 += line_size;
  639. pix2 += line_size;
  640. }
  641. return s;
  642. }
  643. int pix_abs16x16_y2_c(UINT8 *pix1, UINT8 *pix2, int line_size)
  644. {
  645. int s, i;
  646. UINT8 *pix3 = pix2 + line_size;
  647. s = 0;
  648. for(i=0;i<16;i++) {
  649. s += abs(pix1[0] - avg2(pix2[0], pix3[0]));
  650. s += abs(pix1[1] - avg2(pix2[1], pix3[1]));
  651. s += abs(pix1[2] - avg2(pix2[2], pix3[2]));
  652. s += abs(pix1[3] - avg2(pix2[3], pix3[3]));
  653. s += abs(pix1[4] - avg2(pix2[4], pix3[4]));
  654. s += abs(pix1[5] - avg2(pix2[5], pix3[5]));
  655. s += abs(pix1[6] - avg2(pix2[6], pix3[6]));
  656. s += abs(pix1[7] - avg2(pix2[7], pix3[7]));
  657. s += abs(pix1[8] - avg2(pix2[8], pix3[8]));
  658. s += abs(pix1[9] - avg2(pix2[9], pix3[9]));
  659. s += abs(pix1[10] - avg2(pix2[10], pix3[10]));
  660. s += abs(pix1[11] - avg2(pix2[11], pix3[11]));
  661. s += abs(pix1[12] - avg2(pix2[12], pix3[12]));
  662. s += abs(pix1[13] - avg2(pix2[13], pix3[13]));
  663. s += abs(pix1[14] - avg2(pix2[14], pix3[14]));
  664. s += abs(pix1[15] - avg2(pix2[15], pix3[15]));
  665. pix1 += line_size;
  666. pix2 += line_size;
  667. pix3 += line_size;
  668. }
  669. return s;
  670. }
  671. int pix_abs16x16_xy2_c(UINT8 *pix1, UINT8 *pix2, int line_size)
  672. {
  673. int s, i;
  674. UINT8 *pix3 = pix2 + line_size;
  675. s = 0;
  676. for(i=0;i<16;i++) {
  677. s += abs(pix1[0] - avg4(pix2[0], pix2[1], pix3[0], pix3[1]));
  678. s += abs(pix1[1] - avg4(pix2[1], pix2[2], pix3[1], pix3[2]));
  679. s += abs(pix1[2] - avg4(pix2[2], pix2[3], pix3[2], pix3[3]));
  680. s += abs(pix1[3] - avg4(pix2[3], pix2[4], pix3[3], pix3[4]));
  681. s += abs(pix1[4] - avg4(pix2[4], pix2[5], pix3[4], pix3[5]));
  682. s += abs(pix1[5] - avg4(pix2[5], pix2[6], pix3[5], pix3[6]));
  683. s += abs(pix1[6] - avg4(pix2[6], pix2[7], pix3[6], pix3[7]));
  684. s += abs(pix1[7] - avg4(pix2[7], pix2[8], pix3[7], pix3[8]));
  685. s += abs(pix1[8] - avg4(pix2[8], pix2[9], pix3[8], pix3[9]));
  686. s += abs(pix1[9] - avg4(pix2[9], pix2[10], pix3[9], pix3[10]));
  687. s += abs(pix1[10] - avg4(pix2[10], pix2[11], pix3[10], pix3[11]));
  688. s += abs(pix1[11] - avg4(pix2[11], pix2[12], pix3[11], pix3[12]));
  689. s += abs(pix1[12] - avg4(pix2[12], pix2[13], pix3[12], pix3[13]));
  690. s += abs(pix1[13] - avg4(pix2[13], pix2[14], pix3[13], pix3[14]));
  691. s += abs(pix1[14] - avg4(pix2[14], pix2[15], pix3[14], pix3[15]));
  692. s += abs(pix1[15] - avg4(pix2[15], pix2[16], pix3[15], pix3[16]));
  693. pix1 += line_size;
  694. pix2 += line_size;
  695. pix3 += line_size;
  696. }
  697. return s;
  698. }
  699. int pix_abs8x8_c(UINT8 *pix1, UINT8 *pix2, int line_size)
  700. {
  701. int s, i;
  702. s = 0;
  703. for(i=0;i<8;i++) {
  704. s += abs(pix1[0] - pix2[0]);
  705. s += abs(pix1[1] - pix2[1]);
  706. s += abs(pix1[2] - pix2[2]);
  707. s += abs(pix1[3] - pix2[3]);
  708. s += abs(pix1[4] - pix2[4]);
  709. s += abs(pix1[5] - pix2[5]);
  710. s += abs(pix1[6] - pix2[6]);
  711. s += abs(pix1[7] - pix2[7]);
  712. pix1 += line_size;
  713. pix2 += line_size;
  714. }
  715. return s;
  716. }
  717. int pix_abs8x8_x2_c(UINT8 *pix1, UINT8 *pix2, int line_size)
  718. {
  719. int s, i;
  720. s = 0;
  721. for(i=0;i<8;i++) {
  722. s += abs(pix1[0] - avg2(pix2[0], pix2[1]));
  723. s += abs(pix1[1] - avg2(pix2[1], pix2[2]));
  724. s += abs(pix1[2] - avg2(pix2[2], pix2[3]));
  725. s += abs(pix1[3] - avg2(pix2[3], pix2[4]));
  726. s += abs(pix1[4] - avg2(pix2[4], pix2[5]));
  727. s += abs(pix1[5] - avg2(pix2[5], pix2[6]));
  728. s += abs(pix1[6] - avg2(pix2[6], pix2[7]));
  729. s += abs(pix1[7] - avg2(pix2[7], pix2[8]));
  730. pix1 += line_size;
  731. pix2 += line_size;
  732. }
  733. return s;
  734. }
  735. int pix_abs8x8_y2_c(UINT8 *pix1, UINT8 *pix2, int line_size)
  736. {
  737. int s, i;
  738. UINT8 *pix3 = pix2 + line_size;
  739. s = 0;
  740. for(i=0;i<8;i++) {
  741. s += abs(pix1[0] - avg2(pix2[0], pix3[0]));
  742. s += abs(pix1[1] - avg2(pix2[1], pix3[1]));
  743. s += abs(pix1[2] - avg2(pix2[2], pix3[2]));
  744. s += abs(pix1[3] - avg2(pix2[3], pix3[3]));
  745. s += abs(pix1[4] - avg2(pix2[4], pix3[4]));
  746. s += abs(pix1[5] - avg2(pix2[5], pix3[5]));
  747. s += abs(pix1[6] - avg2(pix2[6], pix3[6]));
  748. s += abs(pix1[7] - avg2(pix2[7], pix3[7]));
  749. pix1 += line_size;
  750. pix2 += line_size;
  751. pix3 += line_size;
  752. }
  753. return s;
  754. }
  755. int pix_abs8x8_xy2_c(UINT8 *pix1, UINT8 *pix2, int line_size)
  756. {
  757. int s, i;
  758. UINT8 *pix3 = pix2 + line_size;
  759. s = 0;
  760. for(i=0;i<8;i++) {
  761. s += abs(pix1[0] - avg4(pix2[0], pix2[1], pix3[0], pix3[1]));
  762. s += abs(pix1[1] - avg4(pix2[1], pix2[2], pix3[1], pix3[2]));
  763. s += abs(pix1[2] - avg4(pix2[2], pix2[3], pix3[2], pix3[3]));
  764. s += abs(pix1[3] - avg4(pix2[3], pix2[4], pix3[3], pix3[4]));
  765. s += abs(pix1[4] - avg4(pix2[4], pix2[5], pix3[4], pix3[5]));
  766. s += abs(pix1[5] - avg4(pix2[5], pix2[6], pix3[5], pix3[6]));
  767. s += abs(pix1[6] - avg4(pix2[6], pix2[7], pix3[6], pix3[7]));
  768. s += abs(pix1[7] - avg4(pix2[7], pix2[8], pix3[7], pix3[8]));
  769. pix1 += line_size;
  770. pix2 += line_size;
  771. pix3 += line_size;
  772. }
  773. return s;
  774. }
  775. /* permute block according so that it corresponds to the MMX idct
  776. order */
  777. #ifdef SIMPLE_IDCT
  778. /* general permutation, but perhaps slightly slower */
  779. void block_permute(INT16 *block)
  780. {
  781. int i;
  782. INT16 temp[64];
  783. for(i=0; i<64; i++) temp[ block_permute_op(i) ] = block[i];
  784. for(i=0; i<64; i++) block[i] = temp[i];
  785. }
  786. #else
  787. void block_permute(INT16 *block)
  788. {
  789. int tmp1, tmp2, tmp3, tmp4, tmp5, tmp6;
  790. int i;
  791. for(i=0;i<8;i++) {
  792. tmp1 = block[1];
  793. tmp2 = block[2];
  794. tmp3 = block[3];
  795. tmp4 = block[4];
  796. tmp5 = block[5];
  797. tmp6 = block[6];
  798. block[1] = tmp2;
  799. block[2] = tmp4;
  800. block[3] = tmp6;
  801. block[4] = tmp1;
  802. block[5] = tmp3;
  803. block[6] = tmp5;
  804. block += 8;
  805. }
  806. }
  807. #endif
  808. void clear_blocks_c(DCTELEM *blocks)
  809. {
  810. memset(blocks, 0, sizeof(DCTELEM)*6*64);
  811. }
  812. void dsputil_init(void)
  813. {
  814. int i, j;
  815. int use_permuted_idct;
  816. for(i=0;i<256;i++) cropTbl[i + MAX_NEG_CROP] = i;
  817. for(i=0;i<MAX_NEG_CROP;i++) {
  818. cropTbl[i] = 0;
  819. cropTbl[i + MAX_NEG_CROP + 256] = 255;
  820. }
  821. for(i=0;i<512;i++) {
  822. squareTbl[i] = (i - 256) * (i - 256);
  823. }
  824. #ifdef SIMPLE_IDCT
  825. ff_idct = simple_idct;
  826. #else
  827. ff_idct = j_rev_dct;
  828. #endif
  829. get_pixels = get_pixels_c;
  830. put_pixels_clamped = put_pixels_clamped_c;
  831. add_pixels_clamped = add_pixels_clamped_c;
  832. gmc1= gmc1_c;
  833. clear_blocks= clear_blocks_c;
  834. pix_abs16x16 = pix_abs16x16_c;
  835. pix_abs16x16_x2 = pix_abs16x16_x2_c;
  836. pix_abs16x16_y2 = pix_abs16x16_y2_c;
  837. pix_abs16x16_xy2 = pix_abs16x16_xy2_c;
  838. pix_abs8x8 = pix_abs8x8_c;
  839. pix_abs8x8_x2 = pix_abs8x8_x2_c;
  840. pix_abs8x8_y2 = pix_abs8x8_y2_c;
  841. pix_abs8x8_xy2 = pix_abs8x8_xy2_c;
  842. av_fdct = jpeg_fdct_ifast;
  843. use_permuted_idct = 1;
  844. #ifdef HAVE_MMX
  845. dsputil_init_mmx();
  846. #endif
  847. #ifdef ARCH_ARMV4L
  848. dsputil_init_armv4l();
  849. #endif
  850. #ifdef HAVE_MLIB
  851. dsputil_init_mlib();
  852. use_permuted_idct = 0;
  853. #endif
  854. #ifdef ARCH_ALPHA
  855. dsputil_init_alpha();
  856. use_permuted_idct = 0;
  857. #endif
  858. #ifdef SIMPLE_IDCT
  859. if(ff_idct == simple_idct) use_permuted_idct=0;
  860. #endif
  861. if(use_permuted_idct)
  862. #ifdef SIMPLE_IDCT
  863. for(i=0; i<64; i++) permutation[i]= simple_mmx_permutation[i];
  864. #else
  865. for(i=0; i<64; i++) permutation[i]= (i & 0x38) | ((i & 6) >> 1) | ((i & 1) << 2);
  866. #endif
  867. else
  868. for(i=0; i<64; i++) permutation[i]=i;
  869. for(i=0; i<64; i++) inv_zigzag_direct16[zigzag_direct[i]]= i+1;
  870. for(i=0; i<64; i++) zigzag_direct_noperm[i]= zigzag_direct[i];
  871. if (use_permuted_idct) {
  872. /* permute for IDCT */
  873. for(i=0;i<64;i++) {
  874. j = zigzag_direct[i];
  875. zigzag_direct[i] = block_permute_op(j);
  876. j = ff_alternate_horizontal_scan[i];
  877. ff_alternate_horizontal_scan[i] = block_permute_op(j);
  878. j = ff_alternate_vertical_scan[i];
  879. ff_alternate_vertical_scan[i] = block_permute_op(j);
  880. }
  881. block_permute(default_intra_matrix);
  882. block_permute(default_non_intra_matrix);
  883. }
  884. build_zigzag_end();
  885. }
  886. void get_psnr(UINT8 *orig_image[3], UINT8 *coded_image[3],
  887. int orig_linesize[3], int coded_linesize,
  888. AVCodecContext *avctx)
  889. {
  890. int quad, diff, x, y;
  891. UINT8 *orig, *coded;
  892. UINT32 *sq = squareTbl + 256;
  893. quad = 0;
  894. diff = 0;
  895. /* Luminance */
  896. orig = orig_image[0];
  897. coded = coded_image[0];
  898. for (y=0;y<avctx->height;y++) {
  899. for (x=0;x<avctx->width;x++) {
  900. diff = *(orig + x) - *(coded + x);
  901. quad += sq[diff];
  902. }
  903. orig += orig_linesize[0];
  904. coded += coded_linesize;
  905. }
  906. avctx->psnr_y = (float) quad / (float) (avctx->width * avctx->height);
  907. if (avctx->psnr_y) {
  908. avctx->psnr_y = (float) (255 * 255) / avctx->psnr_y;
  909. avctx->psnr_y = 10 * (float) log10 (avctx->psnr_y);
  910. } else
  911. avctx->psnr_y = 99.99;
  912. }