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  1. /*
  2. * DSP utils
  3. * Copyright (c) 2000, 2001 Fabrice Bellard
  4. * Copyright (c) 2002-2004 Michael Niedermayer <michaelni@gmx.at>
  5. *
  6. * gmc & q-pel & 32/64 bit based MC by Michael Niedermayer <michaelni@gmx.at>
  7. *
  8. * This file is part of Libav.
  9. *
  10. * Libav is free software; you can redistribute it and/or
  11. * modify it under the terms of the GNU Lesser General Public
  12. * License as published by the Free Software Foundation; either
  13. * version 2.1 of the License, or (at your option) any later version.
  14. *
  15. * Libav is distributed in the hope that it will be useful,
  16. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  17. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  18. * Lesser General Public License for more details.
  19. *
  20. * You should have received a copy of the GNU Lesser General Public
  21. * License along with Libav; if not, write to the Free Software
  22. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  23. */
  24. /**
  25. * @file
  26. * DSP utils
  27. */
  28. #include "libavutil/attributes.h"
  29. #include "libavutil/imgutils.h"
  30. #include "avcodec.h"
  31. #include "copy_block.h"
  32. #include "dct.h"
  33. #include "dsputil.h"
  34. #include "simple_idct.h"
  35. #include "faandct.h"
  36. #include "faanidct.h"
  37. #include "imgconvert.h"
  38. #include "mathops.h"
  39. #include "mpegvideo.h"
  40. #include "config.h"
  41. uint32_t ff_square_tab[512] = { 0, };
  42. #define BIT_DEPTH 16
  43. #include "dsputilenc_template.c"
  44. #undef BIT_DEPTH
  45. #define BIT_DEPTH 8
  46. #include "hpel_template.c"
  47. #include "tpel_template.c"
  48. #include "dsputil_template.c"
  49. #include "dsputilenc_template.c"
  50. // 0x7f7f7f7f or 0x7f7f7f7f7f7f7f7f or whatever, depending on the cpu's native arithmetic size
  51. #define pb_7f (~0UL / 255 * 0x7f)
  52. #define pb_80 (~0UL / 255 * 0x80)
  53. const uint8_t ff_alternate_horizontal_scan[64] = {
  54. 0, 1, 2, 3, 8, 9, 16, 17,
  55. 10, 11, 4, 5, 6, 7, 15, 14,
  56. 13, 12, 19, 18, 24, 25, 32, 33,
  57. 26, 27, 20, 21, 22, 23, 28, 29,
  58. 30, 31, 34, 35, 40, 41, 48, 49,
  59. 42, 43, 36, 37, 38, 39, 44, 45,
  60. 46, 47, 50, 51, 56, 57, 58, 59,
  61. 52, 53, 54, 55, 60, 61, 62, 63,
  62. };
  63. const uint8_t ff_alternate_vertical_scan[64] = {
  64. 0, 8, 16, 24, 1, 9, 2, 10,
  65. 17, 25, 32, 40, 48, 56, 57, 49,
  66. 41, 33, 26, 18, 3, 11, 4, 12,
  67. 19, 27, 34, 42, 50, 58, 35, 43,
  68. 51, 59, 20, 28, 5, 13, 6, 14,
  69. 21, 29, 36, 44, 52, 60, 37, 45,
  70. 53, 61, 22, 30, 7, 15, 23, 31,
  71. 38, 46, 54, 62, 39, 47, 55, 63,
  72. };
  73. /* Input permutation for the simple_idct_mmx */
  74. static const uint8_t simple_mmx_permutation[64] = {
  75. 0x00, 0x08, 0x04, 0x09, 0x01, 0x0C, 0x05, 0x0D,
  76. 0x10, 0x18, 0x14, 0x19, 0x11, 0x1C, 0x15, 0x1D,
  77. 0x20, 0x28, 0x24, 0x29, 0x21, 0x2C, 0x25, 0x2D,
  78. 0x12, 0x1A, 0x16, 0x1B, 0x13, 0x1E, 0x17, 0x1F,
  79. 0x02, 0x0A, 0x06, 0x0B, 0x03, 0x0E, 0x07, 0x0F,
  80. 0x30, 0x38, 0x34, 0x39, 0x31, 0x3C, 0x35, 0x3D,
  81. 0x22, 0x2A, 0x26, 0x2B, 0x23, 0x2E, 0x27, 0x2F,
  82. 0x32, 0x3A, 0x36, 0x3B, 0x33, 0x3E, 0x37, 0x3F,
  83. };
  84. static const uint8_t idct_sse2_row_perm[8] = { 0, 4, 1, 5, 2, 6, 3, 7 };
  85. av_cold void ff_init_scantable(uint8_t *permutation, ScanTable *st,
  86. const uint8_t *src_scantable)
  87. {
  88. int i, end;
  89. st->scantable = src_scantable;
  90. for (i = 0; i < 64; i++) {
  91. int j = src_scantable[i];
  92. st->permutated[i] = permutation[j];
  93. }
  94. end = -1;
  95. for (i = 0; i < 64; i++) {
  96. int j = st->permutated[i];
  97. if (j > end)
  98. end = j;
  99. st->raster_end[i] = end;
  100. }
  101. }
  102. av_cold void ff_init_scantable_permutation(uint8_t *idct_permutation,
  103. int idct_permutation_type)
  104. {
  105. int i;
  106. switch (idct_permutation_type) {
  107. case FF_NO_IDCT_PERM:
  108. for (i = 0; i < 64; i++)
  109. idct_permutation[i] = i;
  110. break;
  111. case FF_LIBMPEG2_IDCT_PERM:
  112. for (i = 0; i < 64; i++)
  113. idct_permutation[i] = (i & 0x38) | ((i & 6) >> 1) | ((i & 1) << 2);
  114. break;
  115. case FF_SIMPLE_IDCT_PERM:
  116. for (i = 0; i < 64; i++)
  117. idct_permutation[i] = simple_mmx_permutation[i];
  118. break;
  119. case FF_TRANSPOSE_IDCT_PERM:
  120. for (i = 0; i < 64; i++)
  121. idct_permutation[i] = ((i & 7) << 3) | (i >> 3);
  122. break;
  123. case FF_PARTTRANS_IDCT_PERM:
  124. for (i = 0; i < 64; i++)
  125. idct_permutation[i] = (i & 0x24) | ((i & 3) << 3) | ((i >> 3) & 3);
  126. break;
  127. case FF_SSE2_IDCT_PERM:
  128. for (i = 0; i < 64; i++)
  129. idct_permutation[i] = (i & 0x38) | idct_sse2_row_perm[i & 7];
  130. break;
  131. default:
  132. av_log(NULL, AV_LOG_ERROR,
  133. "Internal error, IDCT permutation not set\n");
  134. }
  135. }
  136. static int pix_sum_c(uint8_t *pix, int line_size)
  137. {
  138. int s = 0, i, j;
  139. for (i = 0; i < 16; i++) {
  140. for (j = 0; j < 16; j += 8) {
  141. s += pix[0];
  142. s += pix[1];
  143. s += pix[2];
  144. s += pix[3];
  145. s += pix[4];
  146. s += pix[5];
  147. s += pix[6];
  148. s += pix[7];
  149. pix += 8;
  150. }
  151. pix += line_size - 16;
  152. }
  153. return s;
  154. }
  155. static int pix_norm1_c(uint8_t *pix, int line_size)
  156. {
  157. int s = 0, i, j;
  158. uint32_t *sq = ff_square_tab + 256;
  159. for (i = 0; i < 16; i++) {
  160. for (j = 0; j < 16; j += 8) {
  161. #if 0
  162. s += sq[pix[0]];
  163. s += sq[pix[1]];
  164. s += sq[pix[2]];
  165. s += sq[pix[3]];
  166. s += sq[pix[4]];
  167. s += sq[pix[5]];
  168. s += sq[pix[6]];
  169. s += sq[pix[7]];
  170. #else
  171. #if HAVE_FAST_64BIT
  172. register uint64_t x = *(uint64_t *) pix;
  173. s += sq[x & 0xff];
  174. s += sq[(x >> 8) & 0xff];
  175. s += sq[(x >> 16) & 0xff];
  176. s += sq[(x >> 24) & 0xff];
  177. s += sq[(x >> 32) & 0xff];
  178. s += sq[(x >> 40) & 0xff];
  179. s += sq[(x >> 48) & 0xff];
  180. s += sq[(x >> 56) & 0xff];
  181. #else
  182. register uint32_t x = *(uint32_t *) pix;
  183. s += sq[x & 0xff];
  184. s += sq[(x >> 8) & 0xff];
  185. s += sq[(x >> 16) & 0xff];
  186. s += sq[(x >> 24) & 0xff];
  187. x = *(uint32_t *) (pix + 4);
  188. s += sq[x & 0xff];
  189. s += sq[(x >> 8) & 0xff];
  190. s += sq[(x >> 16) & 0xff];
  191. s += sq[(x >> 24) & 0xff];
  192. #endif
  193. #endif
  194. pix += 8;
  195. }
  196. pix += line_size - 16;
  197. }
  198. return s;
  199. }
  200. static void bswap_buf(uint32_t *dst, const uint32_t *src, int w)
  201. {
  202. int i;
  203. for (i = 0; i + 8 <= w; i += 8) {
  204. dst[i + 0] = av_bswap32(src[i + 0]);
  205. dst[i + 1] = av_bswap32(src[i + 1]);
  206. dst[i + 2] = av_bswap32(src[i + 2]);
  207. dst[i + 3] = av_bswap32(src[i + 3]);
  208. dst[i + 4] = av_bswap32(src[i + 4]);
  209. dst[i + 5] = av_bswap32(src[i + 5]);
  210. dst[i + 6] = av_bswap32(src[i + 6]);
  211. dst[i + 7] = av_bswap32(src[i + 7]);
  212. }
  213. for (; i < w; i++)
  214. dst[i + 0] = av_bswap32(src[i + 0]);
  215. }
  216. static void bswap16_buf(uint16_t *dst, const uint16_t *src, int len)
  217. {
  218. while (len--)
  219. *dst++ = av_bswap16(*src++);
  220. }
  221. static int sse4_c(MpegEncContext *v, uint8_t *pix1, uint8_t *pix2,
  222. int line_size, int h)
  223. {
  224. int s = 0, i;
  225. uint32_t *sq = ff_square_tab + 256;
  226. for (i = 0; i < h; i++) {
  227. s += sq[pix1[0] - pix2[0]];
  228. s += sq[pix1[1] - pix2[1]];
  229. s += sq[pix1[2] - pix2[2]];
  230. s += sq[pix1[3] - pix2[3]];
  231. pix1 += line_size;
  232. pix2 += line_size;
  233. }
  234. return s;
  235. }
  236. static int sse8_c(MpegEncContext *v, uint8_t *pix1, uint8_t *pix2,
  237. int line_size, int h)
  238. {
  239. int s = 0, i;
  240. uint32_t *sq = ff_square_tab + 256;
  241. for (i = 0; i < h; i++) {
  242. s += sq[pix1[0] - pix2[0]];
  243. s += sq[pix1[1] - pix2[1]];
  244. s += sq[pix1[2] - pix2[2]];
  245. s += sq[pix1[3] - pix2[3]];
  246. s += sq[pix1[4] - pix2[4]];
  247. s += sq[pix1[5] - pix2[5]];
  248. s += sq[pix1[6] - pix2[6]];
  249. s += sq[pix1[7] - pix2[7]];
  250. pix1 += line_size;
  251. pix2 += line_size;
  252. }
  253. return s;
  254. }
  255. static int sse16_c(MpegEncContext *v, uint8_t *pix1, uint8_t *pix2,
  256. int line_size, int h)
  257. {
  258. int s = 0, i;
  259. uint32_t *sq = ff_square_tab + 256;
  260. for (i = 0; i < h; i++) {
  261. s += sq[pix1[0] - pix2[0]];
  262. s += sq[pix1[1] - pix2[1]];
  263. s += sq[pix1[2] - pix2[2]];
  264. s += sq[pix1[3] - pix2[3]];
  265. s += sq[pix1[4] - pix2[4]];
  266. s += sq[pix1[5] - pix2[5]];
  267. s += sq[pix1[6] - pix2[6]];
  268. s += sq[pix1[7] - pix2[7]];
  269. s += sq[pix1[8] - pix2[8]];
  270. s += sq[pix1[9] - pix2[9]];
  271. s += sq[pix1[10] - pix2[10]];
  272. s += sq[pix1[11] - pix2[11]];
  273. s += sq[pix1[12] - pix2[12]];
  274. s += sq[pix1[13] - pix2[13]];
  275. s += sq[pix1[14] - pix2[14]];
  276. s += sq[pix1[15] - pix2[15]];
  277. pix1 += line_size;
  278. pix2 += line_size;
  279. }
  280. return s;
  281. }
  282. static void diff_pixels_c(int16_t *restrict block, const uint8_t *s1,
  283. const uint8_t *s2, int stride)
  284. {
  285. int i;
  286. /* read the pixels */
  287. for (i = 0; i < 8; i++) {
  288. block[0] = s1[0] - s2[0];
  289. block[1] = s1[1] - s2[1];
  290. block[2] = s1[2] - s2[2];
  291. block[3] = s1[3] - s2[3];
  292. block[4] = s1[4] - s2[4];
  293. block[5] = s1[5] - s2[5];
  294. block[6] = s1[6] - s2[6];
  295. block[7] = s1[7] - s2[7];
  296. s1 += stride;
  297. s2 += stride;
  298. block += 8;
  299. }
  300. }
  301. static void put_pixels_clamped_c(const int16_t *block, uint8_t *restrict pixels,
  302. int line_size)
  303. {
  304. int i;
  305. /* read the pixels */
  306. for (i = 0; i < 8; i++) {
  307. pixels[0] = av_clip_uint8(block[0]);
  308. pixels[1] = av_clip_uint8(block[1]);
  309. pixels[2] = av_clip_uint8(block[2]);
  310. pixels[3] = av_clip_uint8(block[3]);
  311. pixels[4] = av_clip_uint8(block[4]);
  312. pixels[5] = av_clip_uint8(block[5]);
  313. pixels[6] = av_clip_uint8(block[6]);
  314. pixels[7] = av_clip_uint8(block[7]);
  315. pixels += line_size;
  316. block += 8;
  317. }
  318. }
  319. static void put_signed_pixels_clamped_c(const int16_t *block,
  320. uint8_t *restrict pixels,
  321. int line_size)
  322. {
  323. int i, j;
  324. for (i = 0; i < 8; i++) {
  325. for (j = 0; j < 8; j++) {
  326. if (*block < -128)
  327. *pixels = 0;
  328. else if (*block > 127)
  329. *pixels = 255;
  330. else
  331. *pixels = (uint8_t) (*block + 128);
  332. block++;
  333. pixels++;
  334. }
  335. pixels += (line_size - 8);
  336. }
  337. }
  338. static void add_pixels8_c(uint8_t *restrict pixels, int16_t *block,
  339. int line_size)
  340. {
  341. int i;
  342. for (i = 0; i < 8; i++) {
  343. pixels[0] += block[0];
  344. pixels[1] += block[1];
  345. pixels[2] += block[2];
  346. pixels[3] += block[3];
  347. pixels[4] += block[4];
  348. pixels[5] += block[5];
  349. pixels[6] += block[6];
  350. pixels[7] += block[7];
  351. pixels += line_size;
  352. block += 8;
  353. }
  354. }
  355. static void add_pixels_clamped_c(const int16_t *block, uint8_t *restrict pixels,
  356. int line_size)
  357. {
  358. int i;
  359. /* read the pixels */
  360. for (i = 0; i < 8; i++) {
  361. pixels[0] = av_clip_uint8(pixels[0] + block[0]);
  362. pixels[1] = av_clip_uint8(pixels[1] + block[1]);
  363. pixels[2] = av_clip_uint8(pixels[2] + block[2]);
  364. pixels[3] = av_clip_uint8(pixels[3] + block[3]);
  365. pixels[4] = av_clip_uint8(pixels[4] + block[4]);
  366. pixels[5] = av_clip_uint8(pixels[5] + block[5]);
  367. pixels[6] = av_clip_uint8(pixels[6] + block[6]);
  368. pixels[7] = av_clip_uint8(pixels[7] + block[7]);
  369. pixels += line_size;
  370. block += 8;
  371. }
  372. }
  373. static int sum_abs_dctelem_c(int16_t *block)
  374. {
  375. int sum = 0, i;
  376. for (i = 0; i < 64; i++)
  377. sum += FFABS(block[i]);
  378. return sum;
  379. }
  380. static void fill_block16_c(uint8_t *block, uint8_t value, int line_size, int h)
  381. {
  382. int i;
  383. for (i = 0; i < h; i++) {
  384. memset(block, value, 16);
  385. block += line_size;
  386. }
  387. }
  388. static void fill_block8_c(uint8_t *block, uint8_t value, int line_size, int h)
  389. {
  390. int i;
  391. for (i = 0; i < h; i++) {
  392. memset(block, value, 8);
  393. block += line_size;
  394. }
  395. }
  396. #define avg2(a, b) ((a + b + 1) >> 1)
  397. #define avg4(a, b, c, d) ((a + b + c + d + 2) >> 2)
  398. static void gmc1_c(uint8_t *dst, uint8_t *src, int stride, int h,
  399. int x16, int y16, int rounder)
  400. {
  401. const int A = (16 - x16) * (16 - y16);
  402. const int B = (x16) * (16 - y16);
  403. const int C = (16 - x16) * (y16);
  404. const int D = (x16) * (y16);
  405. int i;
  406. for (i = 0; i < h; i++) {
  407. dst[0] = (A * src[0] + B * src[1] + C * src[stride + 0] + D * src[stride + 1] + rounder) >> 8;
  408. dst[1] = (A * src[1] + B * src[2] + C * src[stride + 1] + D * src[stride + 2] + rounder) >> 8;
  409. dst[2] = (A * src[2] + B * src[3] + C * src[stride + 2] + D * src[stride + 3] + rounder) >> 8;
  410. dst[3] = (A * src[3] + B * src[4] + C * src[stride + 3] + D * src[stride + 4] + rounder) >> 8;
  411. dst[4] = (A * src[4] + B * src[5] + C * src[stride + 4] + D * src[stride + 5] + rounder) >> 8;
  412. dst[5] = (A * src[5] + B * src[6] + C * src[stride + 5] + D * src[stride + 6] + rounder) >> 8;
  413. dst[6] = (A * src[6] + B * src[7] + C * src[stride + 6] + D * src[stride + 7] + rounder) >> 8;
  414. dst[7] = (A * src[7] + B * src[8] + C * src[stride + 7] + D * src[stride + 8] + rounder) >> 8;
  415. dst += stride;
  416. src += stride;
  417. }
  418. }
  419. void ff_gmc_c(uint8_t *dst, uint8_t *src, int stride, int h, int ox, int oy,
  420. int dxx, int dxy, int dyx, int dyy, int shift, int r,
  421. int width, int height)
  422. {
  423. int y, vx, vy;
  424. const int s = 1 << shift;
  425. width--;
  426. height--;
  427. for (y = 0; y < h; y++) {
  428. int x;
  429. vx = ox;
  430. vy = oy;
  431. for (x = 0; x < 8; x++) { // FIXME: optimize
  432. int index;
  433. int src_x = vx >> 16;
  434. int src_y = vy >> 16;
  435. int frac_x = src_x & (s - 1);
  436. int frac_y = src_y & (s - 1);
  437. src_x >>= shift;
  438. src_y >>= shift;
  439. if ((unsigned) src_x < width) {
  440. if ((unsigned) src_y < height) {
  441. index = src_x + src_y * stride;
  442. dst[y * stride + x] =
  443. ((src[index] * (s - frac_x) +
  444. src[index + 1] * frac_x) * (s - frac_y) +
  445. (src[index + stride] * (s - frac_x) +
  446. src[index + stride + 1] * frac_x) * frac_y +
  447. r) >> (shift * 2);
  448. } else {
  449. index = src_x + av_clip(src_y, 0, height) * stride;
  450. dst[y * stride + x] =
  451. ((src[index] * (s - frac_x) +
  452. src[index + 1] * frac_x) * s +
  453. r) >> (shift * 2);
  454. }
  455. } else {
  456. if ((unsigned) src_y < height) {
  457. index = av_clip(src_x, 0, width) + src_y * stride;
  458. dst[y * stride + x] =
  459. ((src[index] * (s - frac_y) +
  460. src[index + stride] * frac_y) * s +
  461. r) >> (shift * 2);
  462. } else {
  463. index = av_clip(src_x, 0, width) +
  464. av_clip(src_y, 0, height) * stride;
  465. dst[y * stride + x] = src[index];
  466. }
  467. }
  468. vx += dxx;
  469. vy += dyx;
  470. }
  471. ox += dxy;
  472. oy += dyy;
  473. }
  474. }
  475. #define QPEL_MC(r, OPNAME, RND, OP) \
  476. static void OPNAME ## mpeg4_qpel8_h_lowpass(uint8_t *dst, uint8_t *src, \
  477. int dstStride, int srcStride, \
  478. int h) \
  479. { \
  480. const uint8_t *cm = ff_crop_tab + MAX_NEG_CROP; \
  481. int i; \
  482. \
  483. for (i = 0; i < h; i++) { \
  484. OP(dst[0], (src[0] + src[1]) * 20 - (src[0] + src[2]) * 6 + (src[1] + src[3]) * 3 - (src[2] + src[4])); \
  485. OP(dst[1], (src[1] + src[2]) * 20 - (src[0] + src[3]) * 6 + (src[0] + src[4]) * 3 - (src[1] + src[5])); \
  486. OP(dst[2], (src[2] + src[3]) * 20 - (src[1] + src[4]) * 6 + (src[0] + src[5]) * 3 - (src[0] + src[6])); \
  487. OP(dst[3], (src[3] + src[4]) * 20 - (src[2] + src[5]) * 6 + (src[1] + src[6]) * 3 - (src[0] + src[7])); \
  488. OP(dst[4], (src[4] + src[5]) * 20 - (src[3] + src[6]) * 6 + (src[2] + src[7]) * 3 - (src[1] + src[8])); \
  489. OP(dst[5], (src[5] + src[6]) * 20 - (src[4] + src[7]) * 6 + (src[3] + src[8]) * 3 - (src[2] + src[8])); \
  490. OP(dst[6], (src[6] + src[7]) * 20 - (src[5] + src[8]) * 6 + (src[4] + src[8]) * 3 - (src[3] + src[7])); \
  491. OP(dst[7], (src[7] + src[8]) * 20 - (src[6] + src[8]) * 6 + (src[5] + src[7]) * 3 - (src[4] + src[6])); \
  492. dst += dstStride; \
  493. src += srcStride; \
  494. } \
  495. } \
  496. \
  497. static void OPNAME ## mpeg4_qpel8_v_lowpass(uint8_t *dst, uint8_t *src, \
  498. int dstStride, int srcStride) \
  499. { \
  500. const uint8_t *cm = ff_crop_tab + MAX_NEG_CROP; \
  501. const int w = 8; \
  502. int i; \
  503. \
  504. for (i = 0; i < w; i++) { \
  505. const int src0 = src[0 * srcStride]; \
  506. const int src1 = src[1 * srcStride]; \
  507. const int src2 = src[2 * srcStride]; \
  508. const int src3 = src[3 * srcStride]; \
  509. const int src4 = src[4 * srcStride]; \
  510. const int src5 = src[5 * srcStride]; \
  511. const int src6 = src[6 * srcStride]; \
  512. const int src7 = src[7 * srcStride]; \
  513. const int src8 = src[8 * srcStride]; \
  514. OP(dst[0 * dstStride], (src0 + src1) * 20 - (src0 + src2) * 6 + (src1 + src3) * 3 - (src2 + src4)); \
  515. OP(dst[1 * dstStride], (src1 + src2) * 20 - (src0 + src3) * 6 + (src0 + src4) * 3 - (src1 + src5)); \
  516. OP(dst[2 * dstStride], (src2 + src3) * 20 - (src1 + src4) * 6 + (src0 + src5) * 3 - (src0 + src6)); \
  517. OP(dst[3 * dstStride], (src3 + src4) * 20 - (src2 + src5) * 6 + (src1 + src6) * 3 - (src0 + src7)); \
  518. OP(dst[4 * dstStride], (src4 + src5) * 20 - (src3 + src6) * 6 + (src2 + src7) * 3 - (src1 + src8)); \
  519. OP(dst[5 * dstStride], (src5 + src6) * 20 - (src4 + src7) * 6 + (src3 + src8) * 3 - (src2 + src8)); \
  520. OP(dst[6 * dstStride], (src6 + src7) * 20 - (src5 + src8) * 6 + (src4 + src8) * 3 - (src3 + src7)); \
  521. OP(dst[7 * dstStride], (src7 + src8) * 20 - (src6 + src8) * 6 + (src5 + src7) * 3 - (src4 + src6)); \
  522. dst++; \
  523. src++; \
  524. } \
  525. } \
  526. \
  527. static void OPNAME ## mpeg4_qpel16_h_lowpass(uint8_t *dst, uint8_t *src, \
  528. int dstStride, int srcStride, \
  529. int h) \
  530. { \
  531. const uint8_t *cm = ff_crop_tab + MAX_NEG_CROP; \
  532. int i; \
  533. \
  534. for (i = 0; i < h; i++) { \
  535. OP(dst[0], (src[0] + src[1]) * 20 - (src[0] + src[2]) * 6 + (src[1] + src[3]) * 3 - (src[2] + src[4])); \
  536. OP(dst[1], (src[1] + src[2]) * 20 - (src[0] + src[3]) * 6 + (src[0] + src[4]) * 3 - (src[1] + src[5])); \
  537. OP(dst[2], (src[2] + src[3]) * 20 - (src[1] + src[4]) * 6 + (src[0] + src[5]) * 3 - (src[0] + src[6])); \
  538. OP(dst[3], (src[3] + src[4]) * 20 - (src[2] + src[5]) * 6 + (src[1] + src[6]) * 3 - (src[0] + src[7])); \
  539. OP(dst[4], (src[4] + src[5]) * 20 - (src[3] + src[6]) * 6 + (src[2] + src[7]) * 3 - (src[1] + src[8])); \
  540. OP(dst[5], (src[5] + src[6]) * 20 - (src[4] + src[7]) * 6 + (src[3] + src[8]) * 3 - (src[2] + src[9])); \
  541. OP(dst[6], (src[6] + src[7]) * 20 - (src[5] + src[8]) * 6 + (src[4] + src[9]) * 3 - (src[3] + src[10])); \
  542. OP(dst[7], (src[7] + src[8]) * 20 - (src[6] + src[9]) * 6 + (src[5] + src[10]) * 3 - (src[4] + src[11])); \
  543. OP(dst[8], (src[8] + src[9]) * 20 - (src[7] + src[10]) * 6 + (src[6] + src[11]) * 3 - (src[5] + src[12])); \
  544. OP(dst[9], (src[9] + src[10]) * 20 - (src[8] + src[11]) * 6 + (src[7] + src[12]) * 3 - (src[6] + src[13])); \
  545. OP(dst[10], (src[10] + src[11]) * 20 - (src[9] + src[12]) * 6 + (src[8] + src[13]) * 3 - (src[7] + src[14])); \
  546. OP(dst[11], (src[11] + src[12]) * 20 - (src[10] + src[13]) * 6 + (src[9] + src[14]) * 3 - (src[8] + src[15])); \
  547. OP(dst[12], (src[12] + src[13]) * 20 - (src[11] + src[14]) * 6 + (src[10] + src[15]) * 3 - (src[9] + src[16])); \
  548. OP(dst[13], (src[13] + src[14]) * 20 - (src[12] + src[15]) * 6 + (src[11] + src[16]) * 3 - (src[10] + src[16])); \
  549. OP(dst[14], (src[14] + src[15]) * 20 - (src[13] + src[16]) * 6 + (src[12] + src[16]) * 3 - (src[11] + src[15])); \
  550. OP(dst[15], (src[15] + src[16]) * 20 - (src[14] + src[16]) * 6 + (src[13] + src[15]) * 3 - (src[12] + src[14])); \
  551. dst += dstStride; \
  552. src += srcStride; \
  553. } \
  554. } \
  555. \
  556. static void OPNAME ## mpeg4_qpel16_v_lowpass(uint8_t *dst, uint8_t *src, \
  557. int dstStride, int srcStride) \
  558. { \
  559. const uint8_t *cm = ff_crop_tab + MAX_NEG_CROP; \
  560. const int w = 16; \
  561. int i; \
  562. \
  563. for (i = 0; i < w; i++) { \
  564. const int src0 = src[0 * srcStride]; \
  565. const int src1 = src[1 * srcStride]; \
  566. const int src2 = src[2 * srcStride]; \
  567. const int src3 = src[3 * srcStride]; \
  568. const int src4 = src[4 * srcStride]; \
  569. const int src5 = src[5 * srcStride]; \
  570. const int src6 = src[6 * srcStride]; \
  571. const int src7 = src[7 * srcStride]; \
  572. const int src8 = src[8 * srcStride]; \
  573. const int src9 = src[9 * srcStride]; \
  574. const int src10 = src[10 * srcStride]; \
  575. const int src11 = src[11 * srcStride]; \
  576. const int src12 = src[12 * srcStride]; \
  577. const int src13 = src[13 * srcStride]; \
  578. const int src14 = src[14 * srcStride]; \
  579. const int src15 = src[15 * srcStride]; \
  580. const int src16 = src[16 * srcStride]; \
  581. OP(dst[0 * dstStride], (src0 + src1) * 20 - (src0 + src2) * 6 + (src1 + src3) * 3 - (src2 + src4)); \
  582. OP(dst[1 * dstStride], (src1 + src2) * 20 - (src0 + src3) * 6 + (src0 + src4) * 3 - (src1 + src5)); \
  583. OP(dst[2 * dstStride], (src2 + src3) * 20 - (src1 + src4) * 6 + (src0 + src5) * 3 - (src0 + src6)); \
  584. OP(dst[3 * dstStride], (src3 + src4) * 20 - (src2 + src5) * 6 + (src1 + src6) * 3 - (src0 + src7)); \
  585. OP(dst[4 * dstStride], (src4 + src5) * 20 - (src3 + src6) * 6 + (src2 + src7) * 3 - (src1 + src8)); \
  586. OP(dst[5 * dstStride], (src5 + src6) * 20 - (src4 + src7) * 6 + (src3 + src8) * 3 - (src2 + src9)); \
  587. OP(dst[6 * dstStride], (src6 + src7) * 20 - (src5 + src8) * 6 + (src4 + src9) * 3 - (src3 + src10)); \
  588. OP(dst[7 * dstStride], (src7 + src8) * 20 - (src6 + src9) * 6 + (src5 + src10) * 3 - (src4 + src11)); \
  589. OP(dst[8 * dstStride], (src8 + src9) * 20 - (src7 + src10) * 6 + (src6 + src11) * 3 - (src5 + src12)); \
  590. OP(dst[9 * dstStride], (src9 + src10) * 20 - (src8 + src11) * 6 + (src7 + src12) * 3 - (src6 + src13)); \
  591. OP(dst[10 * dstStride], (src10 + src11) * 20 - (src9 + src12) * 6 + (src8 + src13) * 3 - (src7 + src14)); \
  592. OP(dst[11 * dstStride], (src11 + src12) * 20 - (src10 + src13) * 6 + (src9 + src14) * 3 - (src8 + src15)); \
  593. OP(dst[12 * dstStride], (src12 + src13) * 20 - (src11 + src14) * 6 + (src10 + src15) * 3 - (src9 + src16)); \
  594. OP(dst[13 * dstStride], (src13 + src14) * 20 - (src12 + src15) * 6 + (src11 + src16) * 3 - (src10 + src16)); \
  595. OP(dst[14 * dstStride], (src14 + src15) * 20 - (src13 + src16) * 6 + (src12 + src16) * 3 - (src11 + src15)); \
  596. OP(dst[15 * dstStride], (src15 + src16) * 20 - (src14 + src16) * 6 + (src13 + src15) * 3 - (src12 + src14)); \
  597. dst++; \
  598. src++; \
  599. } \
  600. } \
  601. \
  602. static void OPNAME ## qpel8_mc10_c(uint8_t *dst, uint8_t *src, \
  603. ptrdiff_t stride) \
  604. { \
  605. uint8_t half[64]; \
  606. \
  607. put ## RND ## mpeg4_qpel8_h_lowpass(half, src, 8, stride, 8); \
  608. OPNAME ## pixels8_l2_8(dst, src, half, stride, stride, 8, 8); \
  609. } \
  610. \
  611. static void OPNAME ## qpel8_mc20_c(uint8_t *dst, uint8_t *src, \
  612. ptrdiff_t stride) \
  613. { \
  614. OPNAME ## mpeg4_qpel8_h_lowpass(dst, src, stride, stride, 8); \
  615. } \
  616. \
  617. static void OPNAME ## qpel8_mc30_c(uint8_t *dst, uint8_t *src, \
  618. ptrdiff_t stride) \
  619. { \
  620. uint8_t half[64]; \
  621. \
  622. put ## RND ## mpeg4_qpel8_h_lowpass(half, src, 8, stride, 8); \
  623. OPNAME ## pixels8_l2_8(dst, src + 1, half, stride, stride, 8, 8); \
  624. } \
  625. \
  626. static void OPNAME ## qpel8_mc01_c(uint8_t *dst, uint8_t *src, \
  627. ptrdiff_t stride) \
  628. { \
  629. uint8_t full[16 * 9]; \
  630. uint8_t half[64]; \
  631. \
  632. copy_block9(full, src, 16, stride, 9); \
  633. put ## RND ## mpeg4_qpel8_v_lowpass(half, full, 8, 16); \
  634. OPNAME ## pixels8_l2_8(dst, full, half, stride, 16, 8, 8); \
  635. } \
  636. \
  637. static void OPNAME ## qpel8_mc02_c(uint8_t *dst, uint8_t *src, \
  638. ptrdiff_t stride) \
  639. { \
  640. uint8_t full[16 * 9]; \
  641. \
  642. copy_block9(full, src, 16, stride, 9); \
  643. OPNAME ## mpeg4_qpel8_v_lowpass(dst, full, stride, 16); \
  644. } \
  645. \
  646. static void OPNAME ## qpel8_mc03_c(uint8_t *dst, uint8_t *src, \
  647. ptrdiff_t stride) \
  648. { \
  649. uint8_t full[16 * 9]; \
  650. uint8_t half[64]; \
  651. \
  652. copy_block9(full, src, 16, stride, 9); \
  653. put ## RND ## mpeg4_qpel8_v_lowpass(half, full, 8, 16); \
  654. OPNAME ## pixels8_l2_8(dst, full + 16, half, stride, 16, 8, 8); \
  655. } \
  656. \
  657. void ff_ ## OPNAME ## qpel8_mc11_old_c(uint8_t *dst, uint8_t *src, \
  658. ptrdiff_t stride) \
  659. { \
  660. uint8_t full[16 * 9]; \
  661. uint8_t halfH[72]; \
  662. uint8_t halfV[64]; \
  663. uint8_t halfHV[64]; \
  664. \
  665. copy_block9(full, src, 16, stride, 9); \
  666. put ## RND ## mpeg4_qpel8_h_lowpass(halfH, full, 8, 16, 9); \
  667. put ## RND ## mpeg4_qpel8_v_lowpass(halfV, full, 8, 16); \
  668. put ## RND ## mpeg4_qpel8_v_lowpass(halfHV, halfH, 8, 8); \
  669. OPNAME ## pixels8_l4_8(dst, full, halfH, halfV, halfHV, \
  670. stride, 16, 8, 8, 8, 8); \
  671. } \
  672. \
  673. static void OPNAME ## qpel8_mc11_c(uint8_t *dst, uint8_t *src, \
  674. ptrdiff_t stride) \
  675. { \
  676. uint8_t full[16 * 9]; \
  677. uint8_t halfH[72]; \
  678. uint8_t halfHV[64]; \
  679. \
  680. copy_block9(full, src, 16, stride, 9); \
  681. put ## RND ## mpeg4_qpel8_h_lowpass(halfH, full, 8, 16, 9); \
  682. put ## RND ## pixels8_l2_8(halfH, halfH, full, 8, 8, 16, 9); \
  683. put ## RND ## mpeg4_qpel8_v_lowpass(halfHV, halfH, 8, 8); \
  684. OPNAME ## pixels8_l2_8(dst, halfH, halfHV, stride, 8, 8, 8); \
  685. } \
  686. \
  687. void ff_ ## OPNAME ## qpel8_mc31_old_c(uint8_t *dst, uint8_t *src, \
  688. ptrdiff_t stride) \
  689. { \
  690. uint8_t full[16 * 9]; \
  691. uint8_t halfH[72]; \
  692. uint8_t halfV[64]; \
  693. uint8_t halfHV[64]; \
  694. \
  695. copy_block9(full, src, 16, stride, 9); \
  696. put ## RND ## mpeg4_qpel8_h_lowpass(halfH, full, 8, 16, 9); \
  697. put ## RND ## mpeg4_qpel8_v_lowpass(halfV, full + 1, 8, 16); \
  698. put ## RND ## mpeg4_qpel8_v_lowpass(halfHV, halfH, 8, 8); \
  699. OPNAME ## pixels8_l4_8(dst, full + 1, halfH, halfV, halfHV, \
  700. stride, 16, 8, 8, 8, 8); \
  701. } \
  702. \
  703. static void OPNAME ## qpel8_mc31_c(uint8_t *dst, uint8_t *src, \
  704. ptrdiff_t stride) \
  705. { \
  706. uint8_t full[16 * 9]; \
  707. uint8_t halfH[72]; \
  708. uint8_t halfHV[64]; \
  709. \
  710. copy_block9(full, src, 16, stride, 9); \
  711. put ## RND ## mpeg4_qpel8_h_lowpass(halfH, full, 8, 16, 9); \
  712. put ## RND ## pixels8_l2_8(halfH, halfH, full + 1, 8, 8, 16, 9); \
  713. put ## RND ## mpeg4_qpel8_v_lowpass(halfHV, halfH, 8, 8); \
  714. OPNAME ## pixels8_l2_8(dst, halfH, halfHV, stride, 8, 8, 8); \
  715. } \
  716. \
  717. void ff_ ## OPNAME ## qpel8_mc13_old_c(uint8_t *dst, uint8_t *src, \
  718. ptrdiff_t stride) \
  719. { \
  720. uint8_t full[16 * 9]; \
  721. uint8_t halfH[72]; \
  722. uint8_t halfV[64]; \
  723. uint8_t halfHV[64]; \
  724. \
  725. copy_block9(full, src, 16, stride, 9); \
  726. put ## RND ## mpeg4_qpel8_h_lowpass(halfH, full, 8, 16, 9); \
  727. put ## RND ## mpeg4_qpel8_v_lowpass(halfV, full, 8, 16); \
  728. put ## RND ## mpeg4_qpel8_v_lowpass(halfHV, halfH, 8, 8); \
  729. OPNAME ## pixels8_l4_8(dst, full + 16, halfH + 8, halfV, halfHV, \
  730. stride, 16, 8, 8, 8, 8); \
  731. } \
  732. \
  733. static void OPNAME ## qpel8_mc13_c(uint8_t *dst, uint8_t *src, \
  734. ptrdiff_t stride) \
  735. { \
  736. uint8_t full[16 * 9]; \
  737. uint8_t halfH[72]; \
  738. uint8_t halfHV[64]; \
  739. \
  740. copy_block9(full, src, 16, stride, 9); \
  741. put ## RND ## mpeg4_qpel8_h_lowpass(halfH, full, 8, 16, 9); \
  742. put ## RND ## pixels8_l2_8(halfH, halfH, full, 8, 8, 16, 9); \
  743. put ## RND ## mpeg4_qpel8_v_lowpass(halfHV, halfH, 8, 8); \
  744. OPNAME ## pixels8_l2_8(dst, halfH + 8, halfHV, stride, 8, 8, 8); \
  745. } \
  746. \
  747. void ff_ ## OPNAME ## qpel8_mc33_old_c(uint8_t *dst, uint8_t *src, \
  748. ptrdiff_t stride) \
  749. { \
  750. uint8_t full[16 * 9]; \
  751. uint8_t halfH[72]; \
  752. uint8_t halfV[64]; \
  753. uint8_t halfHV[64]; \
  754. \
  755. copy_block9(full, src, 16, stride, 9); \
  756. put ## RND ## mpeg4_qpel8_h_lowpass(halfH, full, 8, 16, 9); \
  757. put ## RND ## mpeg4_qpel8_v_lowpass(halfV, full + 1, 8, 16); \
  758. put ## RND ## mpeg4_qpel8_v_lowpass(halfHV, halfH, 8, 8); \
  759. OPNAME ## pixels8_l4_8(dst, full + 17, halfH + 8, halfV, halfHV, \
  760. stride, 16, 8, 8, 8, 8); \
  761. } \
  762. \
  763. static void OPNAME ## qpel8_mc33_c(uint8_t *dst, uint8_t *src, \
  764. ptrdiff_t stride) \
  765. { \
  766. uint8_t full[16 * 9]; \
  767. uint8_t halfH[72]; \
  768. uint8_t halfHV[64]; \
  769. \
  770. copy_block9(full, src, 16, stride, 9); \
  771. put ## RND ## mpeg4_qpel8_h_lowpass(halfH, full, 8, 16, 9); \
  772. put ## RND ## pixels8_l2_8(halfH, halfH, full + 1, 8, 8, 16, 9); \
  773. put ## RND ## mpeg4_qpel8_v_lowpass(halfHV, halfH, 8, 8); \
  774. OPNAME ## pixels8_l2_8(dst, halfH + 8, halfHV, stride, 8, 8, 8); \
  775. } \
  776. \
  777. static void OPNAME ## qpel8_mc21_c(uint8_t *dst, uint8_t *src, \
  778. ptrdiff_t stride) \
  779. { \
  780. uint8_t halfH[72]; \
  781. uint8_t halfHV[64]; \
  782. \
  783. put ## RND ## mpeg4_qpel8_h_lowpass(halfH, src, 8, stride, 9); \
  784. put ## RND ## mpeg4_qpel8_v_lowpass(halfHV, halfH, 8, 8); \
  785. OPNAME ## pixels8_l2_8(dst, halfH, halfHV, stride, 8, 8, 8); \
  786. } \
  787. \
  788. static void OPNAME ## qpel8_mc23_c(uint8_t *dst, uint8_t *src, \
  789. ptrdiff_t stride) \
  790. { \
  791. uint8_t halfH[72]; \
  792. uint8_t halfHV[64]; \
  793. \
  794. put ## RND ## mpeg4_qpel8_h_lowpass(halfH, src, 8, stride, 9); \
  795. put ## RND ## mpeg4_qpel8_v_lowpass(halfHV, halfH, 8, 8); \
  796. OPNAME ## pixels8_l2_8(dst, halfH + 8, halfHV, stride, 8, 8, 8); \
  797. } \
  798. \
  799. void ff_ ## OPNAME ## qpel8_mc12_old_c(uint8_t *dst, uint8_t *src, \
  800. ptrdiff_t stride) \
  801. { \
  802. uint8_t full[16 * 9]; \
  803. uint8_t halfH[72]; \
  804. uint8_t halfV[64]; \
  805. uint8_t halfHV[64]; \
  806. \
  807. copy_block9(full, src, 16, stride, 9); \
  808. put ## RND ## mpeg4_qpel8_h_lowpass(halfH, full, 8, 16, 9); \
  809. put ## RND ## mpeg4_qpel8_v_lowpass(halfV, full, 8, 16); \
  810. put ## RND ## mpeg4_qpel8_v_lowpass(halfHV, halfH, 8, 8); \
  811. OPNAME ## pixels8_l2_8(dst, halfV, halfHV, stride, 8, 8, 8); \
  812. } \
  813. \
  814. static void OPNAME ## qpel8_mc12_c(uint8_t *dst, uint8_t *src, \
  815. ptrdiff_t stride) \
  816. { \
  817. uint8_t full[16 * 9]; \
  818. uint8_t halfH[72]; \
  819. \
  820. copy_block9(full, src, 16, stride, 9); \
  821. put ## RND ## mpeg4_qpel8_h_lowpass(halfH, full, 8, 16, 9); \
  822. put ## RND ## pixels8_l2_8(halfH, halfH, full, 8, 8, 16, 9); \
  823. OPNAME ## mpeg4_qpel8_v_lowpass(dst, halfH, stride, 8); \
  824. } \
  825. \
  826. void ff_ ## OPNAME ## qpel8_mc32_old_c(uint8_t *dst, uint8_t *src, \
  827. ptrdiff_t stride) \
  828. { \
  829. uint8_t full[16 * 9]; \
  830. uint8_t halfH[72]; \
  831. uint8_t halfV[64]; \
  832. uint8_t halfHV[64]; \
  833. \
  834. copy_block9(full, src, 16, stride, 9); \
  835. put ## RND ## mpeg4_qpel8_h_lowpass(halfH, full, 8, 16, 9); \
  836. put ## RND ## mpeg4_qpel8_v_lowpass(halfV, full + 1, 8, 16); \
  837. put ## RND ## mpeg4_qpel8_v_lowpass(halfHV, halfH, 8, 8); \
  838. OPNAME ## pixels8_l2_8(dst, halfV, halfHV, stride, 8, 8, 8); \
  839. } \
  840. \
  841. static void OPNAME ## qpel8_mc32_c(uint8_t *dst, uint8_t *src, \
  842. ptrdiff_t stride) \
  843. { \
  844. uint8_t full[16 * 9]; \
  845. uint8_t halfH[72]; \
  846. \
  847. copy_block9(full, src, 16, stride, 9); \
  848. put ## RND ## mpeg4_qpel8_h_lowpass(halfH, full, 8, 16, 9); \
  849. put ## RND ## pixels8_l2_8(halfH, halfH, full + 1, 8, 8, 16, 9); \
  850. OPNAME ## mpeg4_qpel8_v_lowpass(dst, halfH, stride, 8); \
  851. } \
  852. \
  853. static void OPNAME ## qpel8_mc22_c(uint8_t *dst, uint8_t *src, \
  854. ptrdiff_t stride) \
  855. { \
  856. uint8_t halfH[72]; \
  857. \
  858. put ## RND ## mpeg4_qpel8_h_lowpass(halfH, src, 8, stride, 9); \
  859. OPNAME ## mpeg4_qpel8_v_lowpass(dst, halfH, stride, 8); \
  860. } \
  861. \
  862. static void OPNAME ## qpel16_mc10_c(uint8_t *dst, uint8_t *src, \
  863. ptrdiff_t stride) \
  864. { \
  865. uint8_t half[256]; \
  866. \
  867. put ## RND ## mpeg4_qpel16_h_lowpass(half, src, 16, stride, 16); \
  868. OPNAME ## pixels16_l2_8(dst, src, half, stride, stride, 16, 16); \
  869. } \
  870. \
  871. static void OPNAME ## qpel16_mc20_c(uint8_t *dst, uint8_t *src, \
  872. ptrdiff_t stride) \
  873. { \
  874. OPNAME ## mpeg4_qpel16_h_lowpass(dst, src, stride, stride, 16); \
  875. } \
  876. \
  877. static void OPNAME ## qpel16_mc30_c(uint8_t *dst, uint8_t *src, \
  878. ptrdiff_t stride) \
  879. { \
  880. uint8_t half[256]; \
  881. \
  882. put ## RND ## mpeg4_qpel16_h_lowpass(half, src, 16, stride, 16); \
  883. OPNAME ## pixels16_l2_8(dst, src + 1, half, stride, stride, 16, 16); \
  884. } \
  885. \
  886. static void OPNAME ## qpel16_mc01_c(uint8_t *dst, uint8_t *src, \
  887. ptrdiff_t stride) \
  888. { \
  889. uint8_t full[24 * 17]; \
  890. uint8_t half[256]; \
  891. \
  892. copy_block17(full, src, 24, stride, 17); \
  893. put ## RND ## mpeg4_qpel16_v_lowpass(half, full, 16, 24); \
  894. OPNAME ## pixels16_l2_8(dst, full, half, stride, 24, 16, 16); \
  895. } \
  896. \
  897. static void OPNAME ## qpel16_mc02_c(uint8_t *dst, uint8_t *src, \
  898. ptrdiff_t stride) \
  899. { \
  900. uint8_t full[24 * 17]; \
  901. \
  902. copy_block17(full, src, 24, stride, 17); \
  903. OPNAME ## mpeg4_qpel16_v_lowpass(dst, full, stride, 24); \
  904. } \
  905. \
  906. static void OPNAME ## qpel16_mc03_c(uint8_t *dst, uint8_t *src, \
  907. ptrdiff_t stride) \
  908. { \
  909. uint8_t full[24 * 17]; \
  910. uint8_t half[256]; \
  911. \
  912. copy_block17(full, src, 24, stride, 17); \
  913. put ## RND ## mpeg4_qpel16_v_lowpass(half, full, 16, 24); \
  914. OPNAME ## pixels16_l2_8(dst, full + 24, half, stride, 24, 16, 16); \
  915. } \
  916. \
  917. void ff_ ## OPNAME ## qpel16_mc11_old_c(uint8_t *dst, uint8_t *src, \
  918. ptrdiff_t stride) \
  919. { \
  920. uint8_t full[24 * 17]; \
  921. uint8_t halfH[272]; \
  922. uint8_t halfV[256]; \
  923. uint8_t halfHV[256]; \
  924. \
  925. copy_block17(full, src, 24, stride, 17); \
  926. put ## RND ## mpeg4_qpel16_h_lowpass(halfH, full, 16, 24, 17); \
  927. put ## RND ## mpeg4_qpel16_v_lowpass(halfV, full, 16, 24); \
  928. put ## RND ## mpeg4_qpel16_v_lowpass(halfHV, halfH, 16, 16); \
  929. OPNAME ## pixels16_l4_8(dst, full, halfH, halfV, halfHV, \
  930. stride, 24, 16, 16, 16, 16); \
  931. } \
  932. \
  933. static void OPNAME ## qpel16_mc11_c(uint8_t *dst, uint8_t *src, \
  934. ptrdiff_t stride) \
  935. { \
  936. uint8_t full[24 * 17]; \
  937. uint8_t halfH[272]; \
  938. uint8_t halfHV[256]; \
  939. \
  940. copy_block17(full, src, 24, stride, 17); \
  941. put ## RND ## mpeg4_qpel16_h_lowpass(halfH, full, 16, 24, 17); \
  942. put ## RND ## pixels16_l2_8(halfH, halfH, full, 16, 16, 24, 17); \
  943. put ## RND ## mpeg4_qpel16_v_lowpass(halfHV, halfH, 16, 16); \
  944. OPNAME ## pixels16_l2_8(dst, halfH, halfHV, stride, 16, 16, 16); \
  945. } \
  946. \
  947. void ff_ ## OPNAME ## qpel16_mc31_old_c(uint8_t *dst, uint8_t *src, \
  948. ptrdiff_t stride) \
  949. { \
  950. uint8_t full[24 * 17]; \
  951. uint8_t halfH[272]; \
  952. uint8_t halfV[256]; \
  953. uint8_t halfHV[256]; \
  954. \
  955. copy_block17(full, src, 24, stride, 17); \
  956. put ## RND ## mpeg4_qpel16_h_lowpass(halfH, full, 16, 24, 17); \
  957. put ## RND ## mpeg4_qpel16_v_lowpass(halfV, full + 1, 16, 24); \
  958. put ## RND ## mpeg4_qpel16_v_lowpass(halfHV, halfH, 16, 16); \
  959. OPNAME ## pixels16_l4_8(dst, full + 1, halfH, halfV, halfHV, \
  960. stride, 24, 16, 16, 16, 16); \
  961. } \
  962. \
  963. static void OPNAME ## qpel16_mc31_c(uint8_t *dst, uint8_t *src, \
  964. ptrdiff_t stride) \
  965. { \
  966. uint8_t full[24 * 17]; \
  967. uint8_t halfH[272]; \
  968. uint8_t halfHV[256]; \
  969. \
  970. copy_block17(full, src, 24, stride, 17); \
  971. put ## RND ## mpeg4_qpel16_h_lowpass(halfH, full, 16, 24, 17); \
  972. put ## RND ## pixels16_l2_8(halfH, halfH, full + 1, 16, 16, 24, 17); \
  973. put ## RND ## mpeg4_qpel16_v_lowpass(halfHV, halfH, 16, 16); \
  974. OPNAME ## pixels16_l2_8(dst, halfH, halfHV, stride, 16, 16, 16); \
  975. } \
  976. \
  977. void ff_ ## OPNAME ## qpel16_mc13_old_c(uint8_t *dst, uint8_t *src, \
  978. ptrdiff_t stride) \
  979. { \
  980. uint8_t full[24 * 17]; \
  981. uint8_t halfH[272]; \
  982. uint8_t halfV[256]; \
  983. uint8_t halfHV[256]; \
  984. \
  985. copy_block17(full, src, 24, stride, 17); \
  986. put ## RND ## mpeg4_qpel16_h_lowpass(halfH, full, 16, 24, 17); \
  987. put ## RND ## mpeg4_qpel16_v_lowpass(halfV, full, 16, 24); \
  988. put ## RND ## mpeg4_qpel16_v_lowpass(halfHV, halfH, 16, 16); \
  989. OPNAME ## pixels16_l4_8(dst, full + 24, halfH + 16, halfV, halfHV, \
  990. stride, 24, 16, 16, 16, 16); \
  991. } \
  992. \
  993. static void OPNAME ## qpel16_mc13_c(uint8_t *dst, uint8_t *src, \
  994. ptrdiff_t stride) \
  995. { \
  996. uint8_t full[24 * 17]; \
  997. uint8_t halfH[272]; \
  998. uint8_t halfHV[256]; \
  999. \
  1000. copy_block17(full, src, 24, stride, 17); \
  1001. put ## RND ## mpeg4_qpel16_h_lowpass(halfH, full, 16, 24, 17); \
  1002. put ## RND ## pixels16_l2_8(halfH, halfH, full, 16, 16, 24, 17); \
  1003. put ## RND ## mpeg4_qpel16_v_lowpass(halfHV, halfH, 16, 16); \
  1004. OPNAME ## pixels16_l2_8(dst, halfH + 16, halfHV, stride, 16, 16, 16); \
  1005. } \
  1006. \
  1007. void ff_ ## OPNAME ## qpel16_mc33_old_c(uint8_t *dst, uint8_t *src, \
  1008. ptrdiff_t stride) \
  1009. { \
  1010. uint8_t full[24 * 17]; \
  1011. uint8_t halfH[272]; \
  1012. uint8_t halfV[256]; \
  1013. uint8_t halfHV[256]; \
  1014. \
  1015. copy_block17(full, src, 24, stride, 17); \
  1016. put ## RND ## mpeg4_qpel16_h_lowpass(halfH, full, 16, 24, 17); \
  1017. put ## RND ## mpeg4_qpel16_v_lowpass(halfV, full + 1, 16, 24); \
  1018. put ## RND ## mpeg4_qpel16_v_lowpass(halfHV, halfH, 16, 16); \
  1019. OPNAME ## pixels16_l4_8(dst, full + 25, halfH + 16, halfV, halfHV, \
  1020. stride, 24, 16, 16, 16, 16); \
  1021. } \
  1022. \
  1023. static void OPNAME ## qpel16_mc33_c(uint8_t *dst, uint8_t *src, \
  1024. ptrdiff_t stride) \
  1025. { \
  1026. uint8_t full[24 * 17]; \
  1027. uint8_t halfH[272]; \
  1028. uint8_t halfHV[256]; \
  1029. \
  1030. copy_block17(full, src, 24, stride, 17); \
  1031. put ## RND ## mpeg4_qpel16_h_lowpass(halfH, full, 16, 24, 17); \
  1032. put ## RND ## pixels16_l2_8(halfH, halfH, full + 1, 16, 16, 24, 17); \
  1033. put ## RND ## mpeg4_qpel16_v_lowpass(halfHV, halfH, 16, 16); \
  1034. OPNAME ## pixels16_l2_8(dst, halfH + 16, halfHV, stride, 16, 16, 16); \
  1035. } \
  1036. \
  1037. static void OPNAME ## qpel16_mc21_c(uint8_t *dst, uint8_t *src, \
  1038. ptrdiff_t stride) \
  1039. { \
  1040. uint8_t halfH[272]; \
  1041. uint8_t halfHV[256]; \
  1042. \
  1043. put ## RND ## mpeg4_qpel16_h_lowpass(halfH, src, 16, stride, 17); \
  1044. put ## RND ## mpeg4_qpel16_v_lowpass(halfHV, halfH, 16, 16); \
  1045. OPNAME ## pixels16_l2_8(dst, halfH, halfHV, stride, 16, 16, 16); \
  1046. } \
  1047. \
  1048. static void OPNAME ## qpel16_mc23_c(uint8_t *dst, uint8_t *src, \
  1049. ptrdiff_t stride) \
  1050. { \
  1051. uint8_t halfH[272]; \
  1052. uint8_t halfHV[256]; \
  1053. \
  1054. put ## RND ## mpeg4_qpel16_h_lowpass(halfH, src, 16, stride, 17); \
  1055. put ## RND ## mpeg4_qpel16_v_lowpass(halfHV, halfH, 16, 16); \
  1056. OPNAME ## pixels16_l2_8(dst, halfH + 16, halfHV, stride, 16, 16, 16); \
  1057. } \
  1058. \
  1059. void ff_ ## OPNAME ## qpel16_mc12_old_c(uint8_t *dst, uint8_t *src, \
  1060. ptrdiff_t stride) \
  1061. { \
  1062. uint8_t full[24 * 17]; \
  1063. uint8_t halfH[272]; \
  1064. uint8_t halfV[256]; \
  1065. uint8_t halfHV[256]; \
  1066. \
  1067. copy_block17(full, src, 24, stride, 17); \
  1068. put ## RND ## mpeg4_qpel16_h_lowpass(halfH, full, 16, 24, 17); \
  1069. put ## RND ## mpeg4_qpel16_v_lowpass(halfV, full, 16, 24); \
  1070. put ## RND ## mpeg4_qpel16_v_lowpass(halfHV, halfH, 16, 16); \
  1071. OPNAME ## pixels16_l2_8(dst, halfV, halfHV, stride, 16, 16, 16); \
  1072. } \
  1073. \
  1074. static void OPNAME ## qpel16_mc12_c(uint8_t *dst, uint8_t *src, \
  1075. ptrdiff_t stride) \
  1076. { \
  1077. uint8_t full[24 * 17]; \
  1078. uint8_t halfH[272]; \
  1079. \
  1080. copy_block17(full, src, 24, stride, 17); \
  1081. put ## RND ## mpeg4_qpel16_h_lowpass(halfH, full, 16, 24, 17); \
  1082. put ## RND ## pixels16_l2_8(halfH, halfH, full, 16, 16, 24, 17); \
  1083. OPNAME ## mpeg4_qpel16_v_lowpass(dst, halfH, stride, 16); \
  1084. } \
  1085. \
  1086. void ff_ ## OPNAME ## qpel16_mc32_old_c(uint8_t *dst, uint8_t *src, \
  1087. ptrdiff_t stride) \
  1088. { \
  1089. uint8_t full[24 * 17]; \
  1090. uint8_t halfH[272]; \
  1091. uint8_t halfV[256]; \
  1092. uint8_t halfHV[256]; \
  1093. \
  1094. copy_block17(full, src, 24, stride, 17); \
  1095. put ## RND ## mpeg4_qpel16_h_lowpass(halfH, full, 16, 24, 17); \
  1096. put ## RND ## mpeg4_qpel16_v_lowpass(halfV, full + 1, 16, 24); \
  1097. put ## RND ## mpeg4_qpel16_v_lowpass(halfHV, halfH, 16, 16); \
  1098. OPNAME ## pixels16_l2_8(dst, halfV, halfHV, stride, 16, 16, 16); \
  1099. } \
  1100. \
  1101. static void OPNAME ## qpel16_mc32_c(uint8_t *dst, uint8_t *src, \
  1102. ptrdiff_t stride) \
  1103. { \
  1104. uint8_t full[24 * 17]; \
  1105. uint8_t halfH[272]; \
  1106. \
  1107. copy_block17(full, src, 24, stride, 17); \
  1108. put ## RND ## mpeg4_qpel16_h_lowpass(halfH, full, 16, 24, 17); \
  1109. put ## RND ## pixels16_l2_8(halfH, halfH, full + 1, 16, 16, 24, 17); \
  1110. OPNAME ## mpeg4_qpel16_v_lowpass(dst, halfH, stride, 16); \
  1111. } \
  1112. \
  1113. static void OPNAME ## qpel16_mc22_c(uint8_t *dst, uint8_t *src, \
  1114. ptrdiff_t stride) \
  1115. { \
  1116. uint8_t halfH[272]; \
  1117. \
  1118. put ## RND ## mpeg4_qpel16_h_lowpass(halfH, src, 16, stride, 17); \
  1119. OPNAME ## mpeg4_qpel16_v_lowpass(dst, halfH, stride, 16); \
  1120. }
  1121. #define op_avg(a, b) a = (((a) + cm[((b) + 16) >> 5] + 1) >> 1)
  1122. #define op_avg_no_rnd(a, b) a = (((a) + cm[((b) + 15) >> 5]) >> 1)
  1123. #define op_put(a, b) a = cm[((b) + 16) >> 5]
  1124. #define op_put_no_rnd(a, b) a = cm[((b) + 15) >> 5]
  1125. QPEL_MC(0, put_, _, op_put)
  1126. QPEL_MC(1, put_no_rnd_, _no_rnd_, op_put_no_rnd)
  1127. QPEL_MC(0, avg_, _, op_avg)
  1128. #undef op_avg
  1129. #undef op_put
  1130. #undef op_put_no_rnd
  1131. void ff_put_pixels8x8_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)
  1132. {
  1133. put_pixels8_8_c(dst, src, stride, 8);
  1134. }
  1135. void ff_avg_pixels8x8_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)
  1136. {
  1137. avg_pixels8_8_c(dst, src, stride, 8);
  1138. }
  1139. void ff_put_pixels16x16_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)
  1140. {
  1141. put_pixels16_8_c(dst, src, stride, 16);
  1142. }
  1143. void ff_avg_pixels16x16_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)
  1144. {
  1145. avg_pixels16_8_c(dst, src, stride, 16);
  1146. }
  1147. #define put_qpel8_mc00_c ff_put_pixels8x8_c
  1148. #define avg_qpel8_mc00_c ff_avg_pixels8x8_c
  1149. #define put_qpel16_mc00_c ff_put_pixels16x16_c
  1150. #define avg_qpel16_mc00_c ff_avg_pixels16x16_c
  1151. #define put_no_rnd_qpel8_mc00_c ff_put_pixels8x8_c
  1152. #define put_no_rnd_qpel16_mc00_c ff_put_pixels16x16_c
  1153. static void wmv2_mspel8_h_lowpass(uint8_t *dst, uint8_t *src,
  1154. int dstStride, int srcStride, int h)
  1155. {
  1156. const uint8_t *cm = ff_crop_tab + MAX_NEG_CROP;
  1157. int i;
  1158. for (i = 0; i < h; i++) {
  1159. dst[0] = cm[(9 * (src[0] + src[1]) - (src[-1] + src[2]) + 8) >> 4];
  1160. dst[1] = cm[(9 * (src[1] + src[2]) - (src[0] + src[3]) + 8) >> 4];
  1161. dst[2] = cm[(9 * (src[2] + src[3]) - (src[1] + src[4]) + 8) >> 4];
  1162. dst[3] = cm[(9 * (src[3] + src[4]) - (src[2] + src[5]) + 8) >> 4];
  1163. dst[4] = cm[(9 * (src[4] + src[5]) - (src[3] + src[6]) + 8) >> 4];
  1164. dst[5] = cm[(9 * (src[5] + src[6]) - (src[4] + src[7]) + 8) >> 4];
  1165. dst[6] = cm[(9 * (src[6] + src[7]) - (src[5] + src[8]) + 8) >> 4];
  1166. dst[7] = cm[(9 * (src[7] + src[8]) - (src[6] + src[9]) + 8) >> 4];
  1167. dst += dstStride;
  1168. src += srcStride;
  1169. }
  1170. }
  1171. static void wmv2_mspel8_v_lowpass(uint8_t *dst, uint8_t *src,
  1172. int dstStride, int srcStride, int w)
  1173. {
  1174. const uint8_t *cm = ff_crop_tab + MAX_NEG_CROP;
  1175. int i;
  1176. for (i = 0; i < w; i++) {
  1177. const int src_1 = src[-srcStride];
  1178. const int src0 = src[0];
  1179. const int src1 = src[srcStride];
  1180. const int src2 = src[2 * srcStride];
  1181. const int src3 = src[3 * srcStride];
  1182. const int src4 = src[4 * srcStride];
  1183. const int src5 = src[5 * srcStride];
  1184. const int src6 = src[6 * srcStride];
  1185. const int src7 = src[7 * srcStride];
  1186. const int src8 = src[8 * srcStride];
  1187. const int src9 = src[9 * srcStride];
  1188. dst[0 * dstStride] = cm[(9 * (src0 + src1) - (src_1 + src2) + 8) >> 4];
  1189. dst[1 * dstStride] = cm[(9 * (src1 + src2) - (src0 + src3) + 8) >> 4];
  1190. dst[2 * dstStride] = cm[(9 * (src2 + src3) - (src1 + src4) + 8) >> 4];
  1191. dst[3 * dstStride] = cm[(9 * (src3 + src4) - (src2 + src5) + 8) >> 4];
  1192. dst[4 * dstStride] = cm[(9 * (src4 + src5) - (src3 + src6) + 8) >> 4];
  1193. dst[5 * dstStride] = cm[(9 * (src5 + src6) - (src4 + src7) + 8) >> 4];
  1194. dst[6 * dstStride] = cm[(9 * (src6 + src7) - (src5 + src8) + 8) >> 4];
  1195. dst[7 * dstStride] = cm[(9 * (src7 + src8) - (src6 + src9) + 8) >> 4];
  1196. src++;
  1197. dst++;
  1198. }
  1199. }
  1200. static void put_mspel8_mc10_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)
  1201. {
  1202. uint8_t half[64];
  1203. wmv2_mspel8_h_lowpass(half, src, 8, stride, 8);
  1204. put_pixels8_l2_8(dst, src, half, stride, stride, 8, 8);
  1205. }
  1206. static void put_mspel8_mc20_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)
  1207. {
  1208. wmv2_mspel8_h_lowpass(dst, src, stride, stride, 8);
  1209. }
  1210. static void put_mspel8_mc30_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)
  1211. {
  1212. uint8_t half[64];
  1213. wmv2_mspel8_h_lowpass(half, src, 8, stride, 8);
  1214. put_pixels8_l2_8(dst, src + 1, half, stride, stride, 8, 8);
  1215. }
  1216. static void put_mspel8_mc02_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)
  1217. {
  1218. wmv2_mspel8_v_lowpass(dst, src, stride, stride, 8);
  1219. }
  1220. static void put_mspel8_mc12_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)
  1221. {
  1222. uint8_t halfH[88];
  1223. uint8_t halfV[64];
  1224. uint8_t halfHV[64];
  1225. wmv2_mspel8_h_lowpass(halfH, src - stride, 8, stride, 11);
  1226. wmv2_mspel8_v_lowpass(halfV, src, 8, stride, 8);
  1227. wmv2_mspel8_v_lowpass(halfHV, halfH + 8, 8, 8, 8);
  1228. put_pixels8_l2_8(dst, halfV, halfHV, stride, 8, 8, 8);
  1229. }
  1230. static void put_mspel8_mc32_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)
  1231. {
  1232. uint8_t halfH[88];
  1233. uint8_t halfV[64];
  1234. uint8_t halfHV[64];
  1235. wmv2_mspel8_h_lowpass(halfH, src - stride, 8, stride, 11);
  1236. wmv2_mspel8_v_lowpass(halfV, src + 1, 8, stride, 8);
  1237. wmv2_mspel8_v_lowpass(halfHV, halfH + 8, 8, 8, 8);
  1238. put_pixels8_l2_8(dst, halfV, halfHV, stride, 8, 8, 8);
  1239. }
  1240. static void put_mspel8_mc22_c(uint8_t *dst, uint8_t *src, ptrdiff_t stride)
  1241. {
  1242. uint8_t halfH[88];
  1243. wmv2_mspel8_h_lowpass(halfH, src - stride, 8, stride, 11);
  1244. wmv2_mspel8_v_lowpass(dst, halfH + 8, stride, 8, 8);
  1245. }
  1246. static inline int pix_abs16_c(MpegEncContext *v, uint8_t *pix1, uint8_t *pix2,
  1247. int line_size, int h)
  1248. {
  1249. int s = 0, i;
  1250. for (i = 0; i < h; i++) {
  1251. s += abs(pix1[0] - pix2[0]);
  1252. s += abs(pix1[1] - pix2[1]);
  1253. s += abs(pix1[2] - pix2[2]);
  1254. s += abs(pix1[3] - pix2[3]);
  1255. s += abs(pix1[4] - pix2[4]);
  1256. s += abs(pix1[5] - pix2[5]);
  1257. s += abs(pix1[6] - pix2[6]);
  1258. s += abs(pix1[7] - pix2[7]);
  1259. s += abs(pix1[8] - pix2[8]);
  1260. s += abs(pix1[9] - pix2[9]);
  1261. s += abs(pix1[10] - pix2[10]);
  1262. s += abs(pix1[11] - pix2[11]);
  1263. s += abs(pix1[12] - pix2[12]);
  1264. s += abs(pix1[13] - pix2[13]);
  1265. s += abs(pix1[14] - pix2[14]);
  1266. s += abs(pix1[15] - pix2[15]);
  1267. pix1 += line_size;
  1268. pix2 += line_size;
  1269. }
  1270. return s;
  1271. }
  1272. static int pix_abs16_x2_c(MpegEncContext *v, uint8_t *pix1, uint8_t *pix2,
  1273. int line_size, int h)
  1274. {
  1275. int s = 0, i;
  1276. for (i = 0; i < h; i++) {
  1277. s += abs(pix1[0] - avg2(pix2[0], pix2[1]));
  1278. s += abs(pix1[1] - avg2(pix2[1], pix2[2]));
  1279. s += abs(pix1[2] - avg2(pix2[2], pix2[3]));
  1280. s += abs(pix1[3] - avg2(pix2[3], pix2[4]));
  1281. s += abs(pix1[4] - avg2(pix2[4], pix2[5]));
  1282. s += abs(pix1[5] - avg2(pix2[5], pix2[6]));
  1283. s += abs(pix1[6] - avg2(pix2[6], pix2[7]));
  1284. s += abs(pix1[7] - avg2(pix2[7], pix2[8]));
  1285. s += abs(pix1[8] - avg2(pix2[8], pix2[9]));
  1286. s += abs(pix1[9] - avg2(pix2[9], pix2[10]));
  1287. s += abs(pix1[10] - avg2(pix2[10], pix2[11]));
  1288. s += abs(pix1[11] - avg2(pix2[11], pix2[12]));
  1289. s += abs(pix1[12] - avg2(pix2[12], pix2[13]));
  1290. s += abs(pix1[13] - avg2(pix2[13], pix2[14]));
  1291. s += abs(pix1[14] - avg2(pix2[14], pix2[15]));
  1292. s += abs(pix1[15] - avg2(pix2[15], pix2[16]));
  1293. pix1 += line_size;
  1294. pix2 += line_size;
  1295. }
  1296. return s;
  1297. }
  1298. static int pix_abs16_y2_c(MpegEncContext *v, uint8_t *pix1, uint8_t *pix2,
  1299. int line_size, int h)
  1300. {
  1301. int s = 0, i;
  1302. uint8_t *pix3 = pix2 + line_size;
  1303. for (i = 0; i < h; i++) {
  1304. s += abs(pix1[0] - avg2(pix2[0], pix3[0]));
  1305. s += abs(pix1[1] - avg2(pix2[1], pix3[1]));
  1306. s += abs(pix1[2] - avg2(pix2[2], pix3[2]));
  1307. s += abs(pix1[3] - avg2(pix2[3], pix3[3]));
  1308. s += abs(pix1[4] - avg2(pix2[4], pix3[4]));
  1309. s += abs(pix1[5] - avg2(pix2[5], pix3[5]));
  1310. s += abs(pix1[6] - avg2(pix2[6], pix3[6]));
  1311. s += abs(pix1[7] - avg2(pix2[7], pix3[7]));
  1312. s += abs(pix1[8] - avg2(pix2[8], pix3[8]));
  1313. s += abs(pix1[9] - avg2(pix2[9], pix3[9]));
  1314. s += abs(pix1[10] - avg2(pix2[10], pix3[10]));
  1315. s += abs(pix1[11] - avg2(pix2[11], pix3[11]));
  1316. s += abs(pix1[12] - avg2(pix2[12], pix3[12]));
  1317. s += abs(pix1[13] - avg2(pix2[13], pix3[13]));
  1318. s += abs(pix1[14] - avg2(pix2[14], pix3[14]));
  1319. s += abs(pix1[15] - avg2(pix2[15], pix3[15]));
  1320. pix1 += line_size;
  1321. pix2 += line_size;
  1322. pix3 += line_size;
  1323. }
  1324. return s;
  1325. }
  1326. static int pix_abs16_xy2_c(MpegEncContext *v, uint8_t *pix1, uint8_t *pix2,
  1327. int line_size, int h)
  1328. {
  1329. int s = 0, i;
  1330. uint8_t *pix3 = pix2 + line_size;
  1331. for (i = 0; i < h; i++) {
  1332. s += abs(pix1[0] - avg4(pix2[0], pix2[1], pix3[0], pix3[1]));
  1333. s += abs(pix1[1] - avg4(pix2[1], pix2[2], pix3[1], pix3[2]));
  1334. s += abs(pix1[2] - avg4(pix2[2], pix2[3], pix3[2], pix3[3]));
  1335. s += abs(pix1[3] - avg4(pix2[3], pix2[4], pix3[3], pix3[4]));
  1336. s += abs(pix1[4] - avg4(pix2[4], pix2[5], pix3[4], pix3[5]));
  1337. s += abs(pix1[5] - avg4(pix2[5], pix2[6], pix3[5], pix3[6]));
  1338. s += abs(pix1[6] - avg4(pix2[6], pix2[7], pix3[6], pix3[7]));
  1339. s += abs(pix1[7] - avg4(pix2[7], pix2[8], pix3[7], pix3[8]));
  1340. s += abs(pix1[8] - avg4(pix2[8], pix2[9], pix3[8], pix3[9]));
  1341. s += abs(pix1[9] - avg4(pix2[9], pix2[10], pix3[9], pix3[10]));
  1342. s += abs(pix1[10] - avg4(pix2[10], pix2[11], pix3[10], pix3[11]));
  1343. s += abs(pix1[11] - avg4(pix2[11], pix2[12], pix3[11], pix3[12]));
  1344. s += abs(pix1[12] - avg4(pix2[12], pix2[13], pix3[12], pix3[13]));
  1345. s += abs(pix1[13] - avg4(pix2[13], pix2[14], pix3[13], pix3[14]));
  1346. s += abs(pix1[14] - avg4(pix2[14], pix2[15], pix3[14], pix3[15]));
  1347. s += abs(pix1[15] - avg4(pix2[15], pix2[16], pix3[15], pix3[16]));
  1348. pix1 += line_size;
  1349. pix2 += line_size;
  1350. pix3 += line_size;
  1351. }
  1352. return s;
  1353. }
  1354. static inline int pix_abs8_c(MpegEncContext *v, uint8_t *pix1, uint8_t *pix2,
  1355. int line_size, int h)
  1356. {
  1357. int s = 0, i;
  1358. for (i = 0; i < h; i++) {
  1359. s += abs(pix1[0] - pix2[0]);
  1360. s += abs(pix1[1] - pix2[1]);
  1361. s += abs(pix1[2] - pix2[2]);
  1362. s += abs(pix1[3] - pix2[3]);
  1363. s += abs(pix1[4] - pix2[4]);
  1364. s += abs(pix1[5] - pix2[5]);
  1365. s += abs(pix1[6] - pix2[6]);
  1366. s += abs(pix1[7] - pix2[7]);
  1367. pix1 += line_size;
  1368. pix2 += line_size;
  1369. }
  1370. return s;
  1371. }
  1372. static int pix_abs8_x2_c(MpegEncContext *v, uint8_t *pix1, uint8_t *pix2,
  1373. int line_size, int h)
  1374. {
  1375. int s = 0, i;
  1376. for (i = 0; i < h; i++) {
  1377. s += abs(pix1[0] - avg2(pix2[0], pix2[1]));
  1378. s += abs(pix1[1] - avg2(pix2[1], pix2[2]));
  1379. s += abs(pix1[2] - avg2(pix2[2], pix2[3]));
  1380. s += abs(pix1[3] - avg2(pix2[3], pix2[4]));
  1381. s += abs(pix1[4] - avg2(pix2[4], pix2[5]));
  1382. s += abs(pix1[5] - avg2(pix2[5], pix2[6]));
  1383. s += abs(pix1[6] - avg2(pix2[6], pix2[7]));
  1384. s += abs(pix1[7] - avg2(pix2[7], pix2[8]));
  1385. pix1 += line_size;
  1386. pix2 += line_size;
  1387. }
  1388. return s;
  1389. }
  1390. static int pix_abs8_y2_c(MpegEncContext *v, uint8_t *pix1, uint8_t *pix2,
  1391. int line_size, int h)
  1392. {
  1393. int s = 0, i;
  1394. uint8_t *pix3 = pix2 + line_size;
  1395. for (i = 0; i < h; i++) {
  1396. s += abs(pix1[0] - avg2(pix2[0], pix3[0]));
  1397. s += abs(pix1[1] - avg2(pix2[1], pix3[1]));
  1398. s += abs(pix1[2] - avg2(pix2[2], pix3[2]));
  1399. s += abs(pix1[3] - avg2(pix2[3], pix3[3]));
  1400. s += abs(pix1[4] - avg2(pix2[4], pix3[4]));
  1401. s += abs(pix1[5] - avg2(pix2[5], pix3[5]));
  1402. s += abs(pix1[6] - avg2(pix2[6], pix3[6]));
  1403. s += abs(pix1[7] - avg2(pix2[7], pix3[7]));
  1404. pix1 += line_size;
  1405. pix2 += line_size;
  1406. pix3 += line_size;
  1407. }
  1408. return s;
  1409. }
  1410. static int pix_abs8_xy2_c(MpegEncContext *v, uint8_t *pix1, uint8_t *pix2,
  1411. int line_size, int h)
  1412. {
  1413. int s = 0, i;
  1414. uint8_t *pix3 = pix2 + line_size;
  1415. for (i = 0; i < h; i++) {
  1416. s += abs(pix1[0] - avg4(pix2[0], pix2[1], pix3[0], pix3[1]));
  1417. s += abs(pix1[1] - avg4(pix2[1], pix2[2], pix3[1], pix3[2]));
  1418. s += abs(pix1[2] - avg4(pix2[2], pix2[3], pix3[2], pix3[3]));
  1419. s += abs(pix1[3] - avg4(pix2[3], pix2[4], pix3[3], pix3[4]));
  1420. s += abs(pix1[4] - avg4(pix2[4], pix2[5], pix3[4], pix3[5]));
  1421. s += abs(pix1[5] - avg4(pix2[5], pix2[6], pix3[5], pix3[6]));
  1422. s += abs(pix1[6] - avg4(pix2[6], pix2[7], pix3[6], pix3[7]));
  1423. s += abs(pix1[7] - avg4(pix2[7], pix2[8], pix3[7], pix3[8]));
  1424. pix1 += line_size;
  1425. pix2 += line_size;
  1426. pix3 += line_size;
  1427. }
  1428. return s;
  1429. }
  1430. static int nsse16_c(MpegEncContext *c, uint8_t *s1, uint8_t *s2, int stride, int h)
  1431. {
  1432. int score1 = 0, score2 = 0, x, y;
  1433. for (y = 0; y < h; y++) {
  1434. for (x = 0; x < 16; x++)
  1435. score1 += (s1[x] - s2[x]) * (s1[x] - s2[x]);
  1436. if (y + 1 < h) {
  1437. for (x = 0; x < 15; x++)
  1438. score2 += FFABS(s1[x] - s1[x + stride] -
  1439. s1[x + 1] + s1[x + stride + 1]) -
  1440. FFABS(s2[x] - s2[x + stride] -
  1441. s2[x + 1] + s2[x + stride + 1]);
  1442. }
  1443. s1 += stride;
  1444. s2 += stride;
  1445. }
  1446. if (c)
  1447. return score1 + FFABS(score2) * c->avctx->nsse_weight;
  1448. else
  1449. return score1 + FFABS(score2) * 8;
  1450. }
  1451. static int nsse8_c(MpegEncContext *c, uint8_t *s1, uint8_t *s2, int stride, int h)
  1452. {
  1453. int score1 = 0, score2 = 0, x, y;
  1454. for (y = 0; y < h; y++) {
  1455. for (x = 0; x < 8; x++)
  1456. score1 += (s1[x] - s2[x]) * (s1[x] - s2[x]);
  1457. if (y + 1 < h) {
  1458. for (x = 0; x < 7; x++)
  1459. score2 += FFABS(s1[x] - s1[x + stride] -
  1460. s1[x + 1] + s1[x + stride + 1]) -
  1461. FFABS(s2[x] - s2[x + stride] -
  1462. s2[x + 1] + s2[x + stride + 1]);
  1463. }
  1464. s1 += stride;
  1465. s2 += stride;
  1466. }
  1467. if (c)
  1468. return score1 + FFABS(score2) * c->avctx->nsse_weight;
  1469. else
  1470. return score1 + FFABS(score2) * 8;
  1471. }
  1472. static int try_8x8basis_c(int16_t rem[64], int16_t weight[64],
  1473. int16_t basis[64], int scale)
  1474. {
  1475. int i;
  1476. unsigned int sum = 0;
  1477. for (i = 0; i < 8 * 8; i++) {
  1478. int b = rem[i] + ((basis[i] * scale +
  1479. (1 << (BASIS_SHIFT - RECON_SHIFT - 1))) >>
  1480. (BASIS_SHIFT - RECON_SHIFT));
  1481. int w = weight[i];
  1482. b >>= RECON_SHIFT;
  1483. assert(-512 < b && b < 512);
  1484. sum += (w * b) * (w * b) >> 4;
  1485. }
  1486. return sum >> 2;
  1487. }
  1488. static void add_8x8basis_c(int16_t rem[64], int16_t basis[64], int scale)
  1489. {
  1490. int i;
  1491. for (i = 0; i < 8 * 8; i++)
  1492. rem[i] += (basis[i] * scale +
  1493. (1 << (BASIS_SHIFT - RECON_SHIFT - 1))) >>
  1494. (BASIS_SHIFT - RECON_SHIFT);
  1495. }
  1496. static int zero_cmp(MpegEncContext *s, uint8_t *a, uint8_t *b,
  1497. int stride, int h)
  1498. {
  1499. return 0;
  1500. }
  1501. void ff_set_cmp(DSPContext *c, me_cmp_func *cmp, int type)
  1502. {
  1503. int i;
  1504. memset(cmp, 0, sizeof(void *) * 6);
  1505. for (i = 0; i < 6; i++) {
  1506. switch (type & 0xFF) {
  1507. case FF_CMP_SAD:
  1508. cmp[i] = c->sad[i];
  1509. break;
  1510. case FF_CMP_SATD:
  1511. cmp[i] = c->hadamard8_diff[i];
  1512. break;
  1513. case FF_CMP_SSE:
  1514. cmp[i] = c->sse[i];
  1515. break;
  1516. case FF_CMP_DCT:
  1517. cmp[i] = c->dct_sad[i];
  1518. break;
  1519. case FF_CMP_DCT264:
  1520. cmp[i] = c->dct264_sad[i];
  1521. break;
  1522. case FF_CMP_DCTMAX:
  1523. cmp[i] = c->dct_max[i];
  1524. break;
  1525. case FF_CMP_PSNR:
  1526. cmp[i] = c->quant_psnr[i];
  1527. break;
  1528. case FF_CMP_BIT:
  1529. cmp[i] = c->bit[i];
  1530. break;
  1531. case FF_CMP_RD:
  1532. cmp[i] = c->rd[i];
  1533. break;
  1534. case FF_CMP_VSAD:
  1535. cmp[i] = c->vsad[i];
  1536. break;
  1537. case FF_CMP_VSSE:
  1538. cmp[i] = c->vsse[i];
  1539. break;
  1540. case FF_CMP_ZERO:
  1541. cmp[i] = zero_cmp;
  1542. break;
  1543. case FF_CMP_NSSE:
  1544. cmp[i] = c->nsse[i];
  1545. break;
  1546. default:
  1547. av_log(NULL, AV_LOG_ERROR,
  1548. "internal error in cmp function selection\n");
  1549. }
  1550. }
  1551. }
  1552. static void add_bytes_c(uint8_t *dst, uint8_t *src, int w)
  1553. {
  1554. long i;
  1555. for (i = 0; i <= w - (int) sizeof(long); i += sizeof(long)) {
  1556. long a = *(long *) (src + i);
  1557. long b = *(long *) (dst + i);
  1558. *(long *) (dst + i) = ((a & pb_7f) + (b & pb_7f)) ^ ((a ^ b) & pb_80);
  1559. }
  1560. for (; i < w; i++)
  1561. dst[i + 0] += src[i + 0];
  1562. }
  1563. static void diff_bytes_c(uint8_t *dst, uint8_t *src1, uint8_t *src2, int w)
  1564. {
  1565. long i;
  1566. #if !HAVE_FAST_UNALIGNED
  1567. if ((long) src2 & (sizeof(long) - 1)) {
  1568. for (i = 0; i + 7 < w; i += 8) {
  1569. dst[i + 0] = src1[i + 0] - src2[i + 0];
  1570. dst[i + 1] = src1[i + 1] - src2[i + 1];
  1571. dst[i + 2] = src1[i + 2] - src2[i + 2];
  1572. dst[i + 3] = src1[i + 3] - src2[i + 3];
  1573. dst[i + 4] = src1[i + 4] - src2[i + 4];
  1574. dst[i + 5] = src1[i + 5] - src2[i + 5];
  1575. dst[i + 6] = src1[i + 6] - src2[i + 6];
  1576. dst[i + 7] = src1[i + 7] - src2[i + 7];
  1577. }
  1578. } else
  1579. #endif
  1580. for (i = 0; i <= w - (int) sizeof(long); i += sizeof(long)) {
  1581. long a = *(long *) (src1 + i);
  1582. long b = *(long *) (src2 + i);
  1583. *(long *) (dst + i) = ((a | pb_80) - (b & pb_7f)) ^
  1584. ((a ^ b ^ pb_80) & pb_80);
  1585. }
  1586. for (; i < w; i++)
  1587. dst[i + 0] = src1[i + 0] - src2[i + 0];
  1588. }
  1589. static void add_hfyu_median_prediction_c(uint8_t *dst, const uint8_t *src1,
  1590. const uint8_t *diff, int w,
  1591. int *left, int *left_top)
  1592. {
  1593. int i;
  1594. uint8_t l, lt;
  1595. l = *left;
  1596. lt = *left_top;
  1597. for (i = 0; i < w; i++) {
  1598. l = mid_pred(l, src1[i], (l + src1[i] - lt) & 0xFF) + diff[i];
  1599. lt = src1[i];
  1600. dst[i] = l;
  1601. }
  1602. *left = l;
  1603. *left_top = lt;
  1604. }
  1605. static void sub_hfyu_median_prediction_c(uint8_t *dst, const uint8_t *src1,
  1606. const uint8_t *src2, int w,
  1607. int *left, int *left_top)
  1608. {
  1609. int i;
  1610. uint8_t l, lt;
  1611. l = *left;
  1612. lt = *left_top;
  1613. for (i = 0; i < w; i++) {
  1614. const int pred = mid_pred(l, src1[i], (l + src1[i] - lt) & 0xFF);
  1615. lt = src1[i];
  1616. l = src2[i];
  1617. dst[i] = l - pred;
  1618. }
  1619. *left = l;
  1620. *left_top = lt;
  1621. }
  1622. static int add_hfyu_left_prediction_c(uint8_t *dst, const uint8_t *src,
  1623. int w, int acc)
  1624. {
  1625. int i;
  1626. for (i = 0; i < w - 1; i++) {
  1627. acc += src[i];
  1628. dst[i] = acc;
  1629. i++;
  1630. acc += src[i];
  1631. dst[i] = acc;
  1632. }
  1633. for (; i < w; i++) {
  1634. acc += src[i];
  1635. dst[i] = acc;
  1636. }
  1637. return acc;
  1638. }
  1639. #if HAVE_BIGENDIAN
  1640. #define B 3
  1641. #define G 2
  1642. #define R 1
  1643. #define A 0
  1644. #else
  1645. #define B 0
  1646. #define G 1
  1647. #define R 2
  1648. #define A 3
  1649. #endif
  1650. static void add_hfyu_left_prediction_bgr32_c(uint8_t *dst, const uint8_t *src,
  1651. int w, int *red, int *green,
  1652. int *blue, int *alpha)
  1653. {
  1654. int i, r = *red, g = *green, b = *blue, a = *alpha;
  1655. for (i = 0; i < w; i++) {
  1656. b += src[4 * i + B];
  1657. g += src[4 * i + G];
  1658. r += src[4 * i + R];
  1659. a += src[4 * i + A];
  1660. dst[4 * i + B] = b;
  1661. dst[4 * i + G] = g;
  1662. dst[4 * i + R] = r;
  1663. dst[4 * i + A] = a;
  1664. }
  1665. *red = r;
  1666. *green = g;
  1667. *blue = b;
  1668. *alpha = a;
  1669. }
  1670. #undef B
  1671. #undef G
  1672. #undef R
  1673. #undef A
  1674. #define BUTTERFLY2(o1, o2, i1, i2) \
  1675. o1 = (i1) + (i2); \
  1676. o2 = (i1) - (i2);
  1677. #define BUTTERFLY1(x, y) \
  1678. { \
  1679. int a, b; \
  1680. a = x; \
  1681. b = y; \
  1682. x = a + b; \
  1683. y = a - b; \
  1684. }
  1685. #define BUTTERFLYA(x, y) (FFABS((x) + (y)) + FFABS((x) - (y)))
  1686. static int hadamard8_diff8x8_c(MpegEncContext *s, uint8_t *dst,
  1687. uint8_t *src, int stride, int h)
  1688. {
  1689. int i, temp[64], sum = 0;
  1690. assert(h == 8);
  1691. for (i = 0; i < 8; i++) {
  1692. // FIXME: try pointer walks
  1693. BUTTERFLY2(temp[8 * i + 0], temp[8 * i + 1],
  1694. src[stride * i + 0] - dst[stride * i + 0],
  1695. src[stride * i + 1] - dst[stride * i + 1]);
  1696. BUTTERFLY2(temp[8 * i + 2], temp[8 * i + 3],
  1697. src[stride * i + 2] - dst[stride * i + 2],
  1698. src[stride * i + 3] - dst[stride * i + 3]);
  1699. BUTTERFLY2(temp[8 * i + 4], temp[8 * i + 5],
  1700. src[stride * i + 4] - dst[stride * i + 4],
  1701. src[stride * i + 5] - dst[stride * i + 5]);
  1702. BUTTERFLY2(temp[8 * i + 6], temp[8 * i + 7],
  1703. src[stride * i + 6] - dst[stride * i + 6],
  1704. src[stride * i + 7] - dst[stride * i + 7]);
  1705. BUTTERFLY1(temp[8 * i + 0], temp[8 * i + 2]);
  1706. BUTTERFLY1(temp[8 * i + 1], temp[8 * i + 3]);
  1707. BUTTERFLY1(temp[8 * i + 4], temp[8 * i + 6]);
  1708. BUTTERFLY1(temp[8 * i + 5], temp[8 * i + 7]);
  1709. BUTTERFLY1(temp[8 * i + 0], temp[8 * i + 4]);
  1710. BUTTERFLY1(temp[8 * i + 1], temp[8 * i + 5]);
  1711. BUTTERFLY1(temp[8 * i + 2], temp[8 * i + 6]);
  1712. BUTTERFLY1(temp[8 * i + 3], temp[8 * i + 7]);
  1713. }
  1714. for (i = 0; i < 8; i++) {
  1715. BUTTERFLY1(temp[8 * 0 + i], temp[8 * 1 + i]);
  1716. BUTTERFLY1(temp[8 * 2 + i], temp[8 * 3 + i]);
  1717. BUTTERFLY1(temp[8 * 4 + i], temp[8 * 5 + i]);
  1718. BUTTERFLY1(temp[8 * 6 + i], temp[8 * 7 + i]);
  1719. BUTTERFLY1(temp[8 * 0 + i], temp[8 * 2 + i]);
  1720. BUTTERFLY1(temp[8 * 1 + i], temp[8 * 3 + i]);
  1721. BUTTERFLY1(temp[8 * 4 + i], temp[8 * 6 + i]);
  1722. BUTTERFLY1(temp[8 * 5 + i], temp[8 * 7 + i]);
  1723. sum += BUTTERFLYA(temp[8 * 0 + i], temp[8 * 4 + i]) +
  1724. BUTTERFLYA(temp[8 * 1 + i], temp[8 * 5 + i]) +
  1725. BUTTERFLYA(temp[8 * 2 + i], temp[8 * 6 + i]) +
  1726. BUTTERFLYA(temp[8 * 3 + i], temp[8 * 7 + i]);
  1727. }
  1728. return sum;
  1729. }
  1730. static int hadamard8_intra8x8_c(MpegEncContext *s, uint8_t *src,
  1731. uint8_t *dummy, int stride, int h)
  1732. {
  1733. int i, temp[64], sum = 0;
  1734. assert(h == 8);
  1735. for (i = 0; i < 8; i++) {
  1736. // FIXME: try pointer walks
  1737. BUTTERFLY2(temp[8 * i + 0], temp[8 * i + 1],
  1738. src[stride * i + 0], src[stride * i + 1]);
  1739. BUTTERFLY2(temp[8 * i + 2], temp[8 * i + 3],
  1740. src[stride * i + 2], src[stride * i + 3]);
  1741. BUTTERFLY2(temp[8 * i + 4], temp[8 * i + 5],
  1742. src[stride * i + 4], src[stride * i + 5]);
  1743. BUTTERFLY2(temp[8 * i + 6], temp[8 * i + 7],
  1744. src[stride * i + 6], src[stride * i + 7]);
  1745. BUTTERFLY1(temp[8 * i + 0], temp[8 * i + 2]);
  1746. BUTTERFLY1(temp[8 * i + 1], temp[8 * i + 3]);
  1747. BUTTERFLY1(temp[8 * i + 4], temp[8 * i + 6]);
  1748. BUTTERFLY1(temp[8 * i + 5], temp[8 * i + 7]);
  1749. BUTTERFLY1(temp[8 * i + 0], temp[8 * i + 4]);
  1750. BUTTERFLY1(temp[8 * i + 1], temp[8 * i + 5]);
  1751. BUTTERFLY1(temp[8 * i + 2], temp[8 * i + 6]);
  1752. BUTTERFLY1(temp[8 * i + 3], temp[8 * i + 7]);
  1753. }
  1754. for (i = 0; i < 8; i++) {
  1755. BUTTERFLY1(temp[8 * 0 + i], temp[8 * 1 + i]);
  1756. BUTTERFLY1(temp[8 * 2 + i], temp[8 * 3 + i]);
  1757. BUTTERFLY1(temp[8 * 4 + i], temp[8 * 5 + i]);
  1758. BUTTERFLY1(temp[8 * 6 + i], temp[8 * 7 + i]);
  1759. BUTTERFLY1(temp[8 * 0 + i], temp[8 * 2 + i]);
  1760. BUTTERFLY1(temp[8 * 1 + i], temp[8 * 3 + i]);
  1761. BUTTERFLY1(temp[8 * 4 + i], temp[8 * 6 + i]);
  1762. BUTTERFLY1(temp[8 * 5 + i], temp[8 * 7 + i]);
  1763. sum +=
  1764. BUTTERFLYA(temp[8 * 0 + i], temp[8 * 4 + i])
  1765. + BUTTERFLYA(temp[8 * 1 + i], temp[8 * 5 + i])
  1766. + BUTTERFLYA(temp[8 * 2 + i], temp[8 * 6 + i])
  1767. + BUTTERFLYA(temp[8 * 3 + i], temp[8 * 7 + i]);
  1768. }
  1769. sum -= FFABS(temp[8 * 0] + temp[8 * 4]); // -mean
  1770. return sum;
  1771. }
  1772. static int dct_sad8x8_c(MpegEncContext *s, uint8_t *src1,
  1773. uint8_t *src2, int stride, int h)
  1774. {
  1775. LOCAL_ALIGNED_16(int16_t, temp, [64]);
  1776. assert(h == 8);
  1777. s->dsp.diff_pixels(temp, src1, src2, stride);
  1778. s->dsp.fdct(temp);
  1779. return s->dsp.sum_abs_dctelem(temp);
  1780. }
  1781. #if CONFIG_GPL
  1782. #define DCT8_1D \
  1783. { \
  1784. const int s07 = SRC(0) + SRC(7); \
  1785. const int s16 = SRC(1) + SRC(6); \
  1786. const int s25 = SRC(2) + SRC(5); \
  1787. const int s34 = SRC(3) + SRC(4); \
  1788. const int a0 = s07 + s34; \
  1789. const int a1 = s16 + s25; \
  1790. const int a2 = s07 - s34; \
  1791. const int a3 = s16 - s25; \
  1792. const int d07 = SRC(0) - SRC(7); \
  1793. const int d16 = SRC(1) - SRC(6); \
  1794. const int d25 = SRC(2) - SRC(5); \
  1795. const int d34 = SRC(3) - SRC(4); \
  1796. const int a4 = d16 + d25 + (d07 + (d07 >> 1)); \
  1797. const int a5 = d07 - d34 - (d25 + (d25 >> 1)); \
  1798. const int a6 = d07 + d34 - (d16 + (d16 >> 1)); \
  1799. const int a7 = d16 - d25 + (d34 + (d34 >> 1)); \
  1800. DST(0, a0 + a1); \
  1801. DST(1, a4 + (a7 >> 2)); \
  1802. DST(2, a2 + (a3 >> 1)); \
  1803. DST(3, a5 + (a6 >> 2)); \
  1804. DST(4, a0 - a1); \
  1805. DST(5, a6 - (a5 >> 2)); \
  1806. DST(6, (a2 >> 1) - a3); \
  1807. DST(7, (a4 >> 2) - a7); \
  1808. }
  1809. static int dct264_sad8x8_c(MpegEncContext *s, uint8_t *src1,
  1810. uint8_t *src2, int stride, int h)
  1811. {
  1812. int16_t dct[8][8];
  1813. int i, sum = 0;
  1814. s->dsp.diff_pixels(dct[0], src1, src2, stride);
  1815. #define SRC(x) dct[i][x]
  1816. #define DST(x, v) dct[i][x] = v
  1817. for (i = 0; i < 8; i++)
  1818. DCT8_1D
  1819. #undef SRC
  1820. #undef DST
  1821. #define SRC(x) dct[x][i]
  1822. #define DST(x, v) sum += FFABS(v)
  1823. for (i = 0; i < 8; i++)
  1824. DCT8_1D
  1825. #undef SRC
  1826. #undef DST
  1827. return sum;
  1828. }
  1829. #endif
  1830. static int dct_max8x8_c(MpegEncContext *s, uint8_t *src1,
  1831. uint8_t *src2, int stride, int h)
  1832. {
  1833. LOCAL_ALIGNED_16(int16_t, temp, [64]);
  1834. int sum = 0, i;
  1835. assert(h == 8);
  1836. s->dsp.diff_pixels(temp, src1, src2, stride);
  1837. s->dsp.fdct(temp);
  1838. for (i = 0; i < 64; i++)
  1839. sum = FFMAX(sum, FFABS(temp[i]));
  1840. return sum;
  1841. }
  1842. static int quant_psnr8x8_c(MpegEncContext *s, uint8_t *src1,
  1843. uint8_t *src2, int stride, int h)
  1844. {
  1845. LOCAL_ALIGNED_16(int16_t, temp, [64 * 2]);
  1846. int16_t *const bak = temp + 64;
  1847. int sum = 0, i;
  1848. assert(h == 8);
  1849. s->mb_intra = 0;
  1850. s->dsp.diff_pixels(temp, src1, src2, stride);
  1851. memcpy(bak, temp, 64 * sizeof(int16_t));
  1852. s->block_last_index[0 /* FIXME */] =
  1853. s->fast_dct_quantize(s, temp, 0 /* FIXME */, s->qscale, &i);
  1854. s->dct_unquantize_inter(s, temp, 0, s->qscale);
  1855. ff_simple_idct_8(temp); // FIXME
  1856. for (i = 0; i < 64; i++)
  1857. sum += (temp[i] - bak[i]) * (temp[i] - bak[i]);
  1858. return sum;
  1859. }
  1860. static int rd8x8_c(MpegEncContext *s, uint8_t *src1, uint8_t *src2,
  1861. int stride, int h)
  1862. {
  1863. const uint8_t *scantable = s->intra_scantable.permutated;
  1864. LOCAL_ALIGNED_16(int16_t, temp, [64]);
  1865. LOCAL_ALIGNED_16(uint8_t, lsrc1, [64]);
  1866. LOCAL_ALIGNED_16(uint8_t, lsrc2, [64]);
  1867. int i, last, run, bits, level, distortion, start_i;
  1868. const int esc_length = s->ac_esc_length;
  1869. uint8_t *length, *last_length;
  1870. assert(h == 8);
  1871. copy_block8(lsrc1, src1, 8, stride, 8);
  1872. copy_block8(lsrc2, src2, 8, stride, 8);
  1873. s->dsp.diff_pixels(temp, lsrc1, lsrc2, 8);
  1874. s->block_last_index[0 /* FIXME */] =
  1875. last =
  1876. s->fast_dct_quantize(s, temp, 0 /* FIXME */, s->qscale, &i);
  1877. bits = 0;
  1878. if (s->mb_intra) {
  1879. start_i = 1;
  1880. length = s->intra_ac_vlc_length;
  1881. last_length = s->intra_ac_vlc_last_length;
  1882. bits += s->luma_dc_vlc_length[temp[0] + 256]; // FIXME: chroma
  1883. } else {
  1884. start_i = 0;
  1885. length = s->inter_ac_vlc_length;
  1886. last_length = s->inter_ac_vlc_last_length;
  1887. }
  1888. if (last >= start_i) {
  1889. run = 0;
  1890. for (i = start_i; i < last; i++) {
  1891. int j = scantable[i];
  1892. level = temp[j];
  1893. if (level) {
  1894. level += 64;
  1895. if ((level & (~127)) == 0)
  1896. bits += length[UNI_AC_ENC_INDEX(run, level)];
  1897. else
  1898. bits += esc_length;
  1899. run = 0;
  1900. } else
  1901. run++;
  1902. }
  1903. i = scantable[last];
  1904. level = temp[i] + 64;
  1905. assert(level - 64);
  1906. if ((level & (~127)) == 0) {
  1907. bits += last_length[UNI_AC_ENC_INDEX(run, level)];
  1908. } else
  1909. bits += esc_length;
  1910. }
  1911. if (last >= 0) {
  1912. if (s->mb_intra)
  1913. s->dct_unquantize_intra(s, temp, 0, s->qscale);
  1914. else
  1915. s->dct_unquantize_inter(s, temp, 0, s->qscale);
  1916. }
  1917. s->dsp.idct_add(lsrc2, 8, temp);
  1918. distortion = s->dsp.sse[1](NULL, lsrc2, lsrc1, 8, 8);
  1919. return distortion + ((bits * s->qscale * s->qscale * 109 + 64) >> 7);
  1920. }
  1921. static int bit8x8_c(MpegEncContext *s, uint8_t *src1, uint8_t *src2,
  1922. int stride, int h)
  1923. {
  1924. const uint8_t *scantable = s->intra_scantable.permutated;
  1925. LOCAL_ALIGNED_16(int16_t, temp, [64]);
  1926. int i, last, run, bits, level, start_i;
  1927. const int esc_length = s->ac_esc_length;
  1928. uint8_t *length, *last_length;
  1929. assert(h == 8);
  1930. s->dsp.diff_pixels(temp, src1, src2, stride);
  1931. s->block_last_index[0 /* FIXME */] =
  1932. last =
  1933. s->fast_dct_quantize(s, temp, 0 /* FIXME */, s->qscale, &i);
  1934. bits = 0;
  1935. if (s->mb_intra) {
  1936. start_i = 1;
  1937. length = s->intra_ac_vlc_length;
  1938. last_length = s->intra_ac_vlc_last_length;
  1939. bits += s->luma_dc_vlc_length[temp[0] + 256]; // FIXME: chroma
  1940. } else {
  1941. start_i = 0;
  1942. length = s->inter_ac_vlc_length;
  1943. last_length = s->inter_ac_vlc_last_length;
  1944. }
  1945. if (last >= start_i) {
  1946. run = 0;
  1947. for (i = start_i; i < last; i++) {
  1948. int j = scantable[i];
  1949. level = temp[j];
  1950. if (level) {
  1951. level += 64;
  1952. if ((level & (~127)) == 0)
  1953. bits += length[UNI_AC_ENC_INDEX(run, level)];
  1954. else
  1955. bits += esc_length;
  1956. run = 0;
  1957. } else
  1958. run++;
  1959. }
  1960. i = scantable[last];
  1961. level = temp[i] + 64;
  1962. assert(level - 64);
  1963. if ((level & (~127)) == 0)
  1964. bits += last_length[UNI_AC_ENC_INDEX(run, level)];
  1965. else
  1966. bits += esc_length;
  1967. }
  1968. return bits;
  1969. }
  1970. #define VSAD_INTRA(size) \
  1971. static int vsad_intra ## size ## _c(MpegEncContext *c, \
  1972. uint8_t *s, uint8_t *dummy, \
  1973. int stride, int h) \
  1974. { \
  1975. int score = 0, x, y; \
  1976. \
  1977. for (y = 1; y < h; y++) { \
  1978. for (x = 0; x < size; x += 4) { \
  1979. score += FFABS(s[x] - s[x + stride]) + \
  1980. FFABS(s[x + 1] - s[x + stride + 1]) + \
  1981. FFABS(s[x + 2] - s[x + 2 + stride]) + \
  1982. FFABS(s[x + 3] - s[x + 3 + stride]); \
  1983. } \
  1984. s += stride; \
  1985. } \
  1986. \
  1987. return score; \
  1988. }
  1989. VSAD_INTRA(8)
  1990. VSAD_INTRA(16)
  1991. static int vsad16_c(MpegEncContext *c, uint8_t *s1, uint8_t *s2,
  1992. int stride, int h)
  1993. {
  1994. int score = 0, x, y;
  1995. for (y = 1; y < h; y++) {
  1996. for (x = 0; x < 16; x++)
  1997. score += FFABS(s1[x] - s2[x] - s1[x + stride] + s2[x + stride]);
  1998. s1 += stride;
  1999. s2 += stride;
  2000. }
  2001. return score;
  2002. }
  2003. #define SQ(a) ((a) * (a))
  2004. #define VSSE_INTRA(size) \
  2005. static int vsse_intra ## size ## _c(MpegEncContext *c, \
  2006. uint8_t *s, uint8_t *dummy, \
  2007. int stride, int h) \
  2008. { \
  2009. int score = 0, x, y; \
  2010. \
  2011. for (y = 1; y < h; y++) { \
  2012. for (x = 0; x < size; x += 4) { \
  2013. score += SQ(s[x] - s[x + stride]) + \
  2014. SQ(s[x + 1] - s[x + stride + 1]) + \
  2015. SQ(s[x + 2] - s[x + stride + 2]) + \
  2016. SQ(s[x + 3] - s[x + stride + 3]); \
  2017. } \
  2018. s += stride; \
  2019. } \
  2020. \
  2021. return score; \
  2022. }
  2023. VSSE_INTRA(8)
  2024. VSSE_INTRA(16)
  2025. static int vsse16_c(MpegEncContext *c, uint8_t *s1, uint8_t *s2,
  2026. int stride, int h)
  2027. {
  2028. int score = 0, x, y;
  2029. for (y = 1; y < h; y++) {
  2030. for (x = 0; x < 16; x++)
  2031. score += SQ(s1[x] - s2[x] - s1[x + stride] + s2[x + stride]);
  2032. s1 += stride;
  2033. s2 += stride;
  2034. }
  2035. return score;
  2036. }
  2037. static int ssd_int8_vs_int16_c(const int8_t *pix1, const int16_t *pix2,
  2038. int size)
  2039. {
  2040. int score = 0, i;
  2041. for (i = 0; i < size; i++)
  2042. score += (pix1[i] - pix2[i]) * (pix1[i] - pix2[i]);
  2043. return score;
  2044. }
  2045. #define WRAPPER8_16_SQ(name8, name16) \
  2046. static int name16(MpegEncContext *s, uint8_t *dst, uint8_t *src, \
  2047. int stride, int h) \
  2048. { \
  2049. int score = 0; \
  2050. \
  2051. score += name8(s, dst, src, stride, 8); \
  2052. score += name8(s, dst + 8, src + 8, stride, 8); \
  2053. if (h == 16) { \
  2054. dst += 8 * stride; \
  2055. src += 8 * stride; \
  2056. score += name8(s, dst, src, stride, 8); \
  2057. score += name8(s, dst + 8, src + 8, stride, 8); \
  2058. } \
  2059. return score; \
  2060. }
  2061. WRAPPER8_16_SQ(hadamard8_diff8x8_c, hadamard8_diff16_c)
  2062. WRAPPER8_16_SQ(hadamard8_intra8x8_c, hadamard8_intra16_c)
  2063. WRAPPER8_16_SQ(dct_sad8x8_c, dct_sad16_c)
  2064. #if CONFIG_GPL
  2065. WRAPPER8_16_SQ(dct264_sad8x8_c, dct264_sad16_c)
  2066. #endif
  2067. WRAPPER8_16_SQ(dct_max8x8_c, dct_max16_c)
  2068. WRAPPER8_16_SQ(quant_psnr8x8_c, quant_psnr16_c)
  2069. WRAPPER8_16_SQ(rd8x8_c, rd16_c)
  2070. WRAPPER8_16_SQ(bit8x8_c, bit16_c)
  2071. static inline uint32_t clipf_c_one(uint32_t a, uint32_t mini,
  2072. uint32_t maxi, uint32_t maxisign)
  2073. {
  2074. if (a > mini)
  2075. return mini;
  2076. else if ((a ^ (1U << 31)) > maxisign)
  2077. return maxi;
  2078. else
  2079. return a;
  2080. }
  2081. static void vector_clipf_c_opposite_sign(float *dst, const float *src,
  2082. float *min, float *max, int len)
  2083. {
  2084. int i;
  2085. uint32_t mini = *(uint32_t *) min;
  2086. uint32_t maxi = *(uint32_t *) max;
  2087. uint32_t maxisign = maxi ^ (1U << 31);
  2088. uint32_t *dsti = (uint32_t *) dst;
  2089. const uint32_t *srci = (const uint32_t *) src;
  2090. for (i = 0; i < len; i += 8) {
  2091. dsti[i + 0] = clipf_c_one(srci[i + 0], mini, maxi, maxisign);
  2092. dsti[i + 1] = clipf_c_one(srci[i + 1], mini, maxi, maxisign);
  2093. dsti[i + 2] = clipf_c_one(srci[i + 2], mini, maxi, maxisign);
  2094. dsti[i + 3] = clipf_c_one(srci[i + 3], mini, maxi, maxisign);
  2095. dsti[i + 4] = clipf_c_one(srci[i + 4], mini, maxi, maxisign);
  2096. dsti[i + 5] = clipf_c_one(srci[i + 5], mini, maxi, maxisign);
  2097. dsti[i + 6] = clipf_c_one(srci[i + 6], mini, maxi, maxisign);
  2098. dsti[i + 7] = clipf_c_one(srci[i + 7], mini, maxi, maxisign);
  2099. }
  2100. }
  2101. static void vector_clipf_c(float *dst, const float *src,
  2102. float min, float max, int len)
  2103. {
  2104. int i;
  2105. if (min < 0 && max > 0) {
  2106. vector_clipf_c_opposite_sign(dst, src, &min, &max, len);
  2107. } else {
  2108. for (i = 0; i < len; i += 8) {
  2109. dst[i] = av_clipf(src[i], min, max);
  2110. dst[i + 1] = av_clipf(src[i + 1], min, max);
  2111. dst[i + 2] = av_clipf(src[i + 2], min, max);
  2112. dst[i + 3] = av_clipf(src[i + 3], min, max);
  2113. dst[i + 4] = av_clipf(src[i + 4], min, max);
  2114. dst[i + 5] = av_clipf(src[i + 5], min, max);
  2115. dst[i + 6] = av_clipf(src[i + 6], min, max);
  2116. dst[i + 7] = av_clipf(src[i + 7], min, max);
  2117. }
  2118. }
  2119. }
  2120. static int32_t scalarproduct_int16_c(const int16_t *v1, const int16_t *v2,
  2121. int order)
  2122. {
  2123. int res = 0;
  2124. while (order--)
  2125. res += *v1++ **v2++;
  2126. return res;
  2127. }
  2128. static int32_t scalarproduct_and_madd_int16_c(int16_t *v1, const int16_t *v2,
  2129. const int16_t *v3,
  2130. int order, int mul)
  2131. {
  2132. int res = 0;
  2133. while (order--) {
  2134. res += *v1 * *v2++;
  2135. *v1++ += mul * *v3++;
  2136. }
  2137. return res;
  2138. }
  2139. static void vector_clip_int32_c(int32_t *dst, const int32_t *src, int32_t min,
  2140. int32_t max, unsigned int len)
  2141. {
  2142. do {
  2143. *dst++ = av_clip(*src++, min, max);
  2144. *dst++ = av_clip(*src++, min, max);
  2145. *dst++ = av_clip(*src++, min, max);
  2146. *dst++ = av_clip(*src++, min, max);
  2147. *dst++ = av_clip(*src++, min, max);
  2148. *dst++ = av_clip(*src++, min, max);
  2149. *dst++ = av_clip(*src++, min, max);
  2150. *dst++ = av_clip(*src++, min, max);
  2151. len -= 8;
  2152. } while (len > 0);
  2153. }
  2154. static void jref_idct_put(uint8_t *dest, int line_size, int16_t *block)
  2155. {
  2156. ff_j_rev_dct(block);
  2157. put_pixels_clamped_c(block, dest, line_size);
  2158. }
  2159. static void jref_idct_add(uint8_t *dest, int line_size, int16_t *block)
  2160. {
  2161. ff_j_rev_dct(block);
  2162. add_pixels_clamped_c(block, dest, line_size);
  2163. }
  2164. /* draw the edges of width 'w' of an image of size width, height */
  2165. // FIXME: Check that this is OK for MPEG-4 interlaced.
  2166. static void draw_edges_8_c(uint8_t *buf, int wrap, int width, int height,
  2167. int w, int h, int sides)
  2168. {
  2169. uint8_t *ptr = buf, *last_line;
  2170. int i;
  2171. /* left and right */
  2172. for (i = 0; i < height; i++) {
  2173. memset(ptr - w, ptr[0], w);
  2174. memset(ptr + width, ptr[width - 1], w);
  2175. ptr += wrap;
  2176. }
  2177. /* top and bottom + corners */
  2178. buf -= w;
  2179. last_line = buf + (height - 1) * wrap;
  2180. if (sides & EDGE_TOP)
  2181. for (i = 0; i < h; i++)
  2182. // top
  2183. memcpy(buf - (i + 1) * wrap, buf, width + w + w);
  2184. if (sides & EDGE_BOTTOM)
  2185. for (i = 0; i < h; i++)
  2186. // bottom
  2187. memcpy(last_line + (i + 1) * wrap, last_line, width + w + w);
  2188. }
  2189. static void clear_block_8_c(int16_t *block)
  2190. {
  2191. memset(block, 0, sizeof(int16_t) * 64);
  2192. }
  2193. static void clear_blocks_8_c(int16_t *blocks)
  2194. {
  2195. memset(blocks, 0, sizeof(int16_t) * 6 * 64);
  2196. }
  2197. /* init static data */
  2198. av_cold void ff_dsputil_static_init(void)
  2199. {
  2200. int i;
  2201. for (i = 0; i < 512; i++)
  2202. ff_square_tab[i] = (i - 256) * (i - 256);
  2203. }
  2204. av_cold void ff_dsputil_init(DSPContext *c, AVCodecContext *avctx)
  2205. {
  2206. const unsigned high_bit_depth = avctx->bits_per_raw_sample > 8;
  2207. #if CONFIG_ENCODERS
  2208. if (avctx->bits_per_raw_sample == 10) {
  2209. c->fdct = ff_jpeg_fdct_islow_10;
  2210. c->fdct248 = ff_fdct248_islow_10;
  2211. } else {
  2212. if (avctx->dct_algo == FF_DCT_FASTINT) {
  2213. c->fdct = ff_fdct_ifast;
  2214. c->fdct248 = ff_fdct_ifast248;
  2215. } else if (avctx->dct_algo == FF_DCT_FAAN) {
  2216. c->fdct = ff_faandct;
  2217. c->fdct248 = ff_faandct248;
  2218. } else {
  2219. c->fdct = ff_jpeg_fdct_islow_8; // slow/accurate/default
  2220. c->fdct248 = ff_fdct248_islow_8;
  2221. }
  2222. }
  2223. #endif /* CONFIG_ENCODERS */
  2224. if (avctx->bits_per_raw_sample == 10) {
  2225. c->idct_put = ff_simple_idct_put_10;
  2226. c->idct_add = ff_simple_idct_add_10;
  2227. c->idct = ff_simple_idct_10;
  2228. c->idct_permutation_type = FF_NO_IDCT_PERM;
  2229. } else {
  2230. if (avctx->idct_algo == FF_IDCT_INT) {
  2231. c->idct_put = jref_idct_put;
  2232. c->idct_add = jref_idct_add;
  2233. c->idct = ff_j_rev_dct;
  2234. c->idct_permutation_type = FF_LIBMPEG2_IDCT_PERM;
  2235. } else if (avctx->idct_algo == FF_IDCT_FAAN) {
  2236. c->idct_put = ff_faanidct_put;
  2237. c->idct_add = ff_faanidct_add;
  2238. c->idct = ff_faanidct;
  2239. c->idct_permutation_type = FF_NO_IDCT_PERM;
  2240. } else { // accurate/default
  2241. c->idct_put = ff_simple_idct_put_8;
  2242. c->idct_add = ff_simple_idct_add_8;
  2243. c->idct = ff_simple_idct_8;
  2244. c->idct_permutation_type = FF_NO_IDCT_PERM;
  2245. }
  2246. }
  2247. c->diff_pixels = diff_pixels_c;
  2248. c->put_pixels_clamped = put_pixels_clamped_c;
  2249. c->put_signed_pixels_clamped = put_signed_pixels_clamped_c;
  2250. c->add_pixels_clamped = add_pixels_clamped_c;
  2251. c->sum_abs_dctelem = sum_abs_dctelem_c;
  2252. c->gmc1 = gmc1_c;
  2253. c->gmc = ff_gmc_c;
  2254. c->pix_sum = pix_sum_c;
  2255. c->pix_norm1 = pix_norm1_c;
  2256. c->fill_block_tab[0] = fill_block16_c;
  2257. c->fill_block_tab[1] = fill_block8_c;
  2258. /* TODO [0] 16 [1] 8 */
  2259. c->pix_abs[0][0] = pix_abs16_c;
  2260. c->pix_abs[0][1] = pix_abs16_x2_c;
  2261. c->pix_abs[0][2] = pix_abs16_y2_c;
  2262. c->pix_abs[0][3] = pix_abs16_xy2_c;
  2263. c->pix_abs[1][0] = pix_abs8_c;
  2264. c->pix_abs[1][1] = pix_abs8_x2_c;
  2265. c->pix_abs[1][2] = pix_abs8_y2_c;
  2266. c->pix_abs[1][3] = pix_abs8_xy2_c;
  2267. #define dspfunc(PFX, IDX, NUM) \
  2268. c->PFX ## _pixels_tab[IDX][0] = PFX ## NUM ## _mc00_c; \
  2269. c->PFX ## _pixels_tab[IDX][1] = PFX ## NUM ## _mc10_c; \
  2270. c->PFX ## _pixels_tab[IDX][2] = PFX ## NUM ## _mc20_c; \
  2271. c->PFX ## _pixels_tab[IDX][3] = PFX ## NUM ## _mc30_c; \
  2272. c->PFX ## _pixels_tab[IDX][4] = PFX ## NUM ## _mc01_c; \
  2273. c->PFX ## _pixels_tab[IDX][5] = PFX ## NUM ## _mc11_c; \
  2274. c->PFX ## _pixels_tab[IDX][6] = PFX ## NUM ## _mc21_c; \
  2275. c->PFX ## _pixels_tab[IDX][7] = PFX ## NUM ## _mc31_c; \
  2276. c->PFX ## _pixels_tab[IDX][8] = PFX ## NUM ## _mc02_c; \
  2277. c->PFX ## _pixels_tab[IDX][9] = PFX ## NUM ## _mc12_c; \
  2278. c->PFX ## _pixels_tab[IDX][10] = PFX ## NUM ## _mc22_c; \
  2279. c->PFX ## _pixels_tab[IDX][11] = PFX ## NUM ## _mc32_c; \
  2280. c->PFX ## _pixels_tab[IDX][12] = PFX ## NUM ## _mc03_c; \
  2281. c->PFX ## _pixels_tab[IDX][13] = PFX ## NUM ## _mc13_c; \
  2282. c->PFX ## _pixels_tab[IDX][14] = PFX ## NUM ## _mc23_c; \
  2283. c->PFX ## _pixels_tab[IDX][15] = PFX ## NUM ## _mc33_c
  2284. dspfunc(put_qpel, 0, 16);
  2285. dspfunc(put_qpel, 1, 8);
  2286. dspfunc(put_no_rnd_qpel, 0, 16);
  2287. dspfunc(put_no_rnd_qpel, 1, 8);
  2288. dspfunc(avg_qpel, 0, 16);
  2289. dspfunc(avg_qpel, 1, 8);
  2290. #undef dspfunc
  2291. c->put_mspel_pixels_tab[0] = ff_put_pixels8x8_c;
  2292. c->put_mspel_pixels_tab[1] = put_mspel8_mc10_c;
  2293. c->put_mspel_pixels_tab[2] = put_mspel8_mc20_c;
  2294. c->put_mspel_pixels_tab[3] = put_mspel8_mc30_c;
  2295. c->put_mspel_pixels_tab[4] = put_mspel8_mc02_c;
  2296. c->put_mspel_pixels_tab[5] = put_mspel8_mc12_c;
  2297. c->put_mspel_pixels_tab[6] = put_mspel8_mc22_c;
  2298. c->put_mspel_pixels_tab[7] = put_mspel8_mc32_c;
  2299. #define SET_CMP_FUNC(name) \
  2300. c->name[0] = name ## 16_c; \
  2301. c->name[1] = name ## 8x8_c;
  2302. SET_CMP_FUNC(hadamard8_diff)
  2303. c->hadamard8_diff[4] = hadamard8_intra16_c;
  2304. c->hadamard8_diff[5] = hadamard8_intra8x8_c;
  2305. SET_CMP_FUNC(dct_sad)
  2306. SET_CMP_FUNC(dct_max)
  2307. #if CONFIG_GPL
  2308. SET_CMP_FUNC(dct264_sad)
  2309. #endif
  2310. c->sad[0] = pix_abs16_c;
  2311. c->sad[1] = pix_abs8_c;
  2312. c->sse[0] = sse16_c;
  2313. c->sse[1] = sse8_c;
  2314. c->sse[2] = sse4_c;
  2315. SET_CMP_FUNC(quant_psnr)
  2316. SET_CMP_FUNC(rd)
  2317. SET_CMP_FUNC(bit)
  2318. c->vsad[0] = vsad16_c;
  2319. c->vsad[4] = vsad_intra16_c;
  2320. c->vsad[5] = vsad_intra8_c;
  2321. c->vsse[0] = vsse16_c;
  2322. c->vsse[4] = vsse_intra16_c;
  2323. c->vsse[5] = vsse_intra8_c;
  2324. c->nsse[0] = nsse16_c;
  2325. c->nsse[1] = nsse8_c;
  2326. c->ssd_int8_vs_int16 = ssd_int8_vs_int16_c;
  2327. c->add_bytes = add_bytes_c;
  2328. c->add_hfyu_median_prediction = add_hfyu_median_prediction_c;
  2329. c->add_hfyu_left_prediction = add_hfyu_left_prediction_c;
  2330. c->add_hfyu_left_prediction_bgr32 = add_hfyu_left_prediction_bgr32_c;
  2331. c->diff_bytes = diff_bytes_c;
  2332. c->sub_hfyu_median_prediction = sub_hfyu_median_prediction_c;
  2333. c->bswap_buf = bswap_buf;
  2334. c->bswap16_buf = bswap16_buf;
  2335. c->try_8x8basis = try_8x8basis_c;
  2336. c->add_8x8basis = add_8x8basis_c;
  2337. c->scalarproduct_and_madd_int16 = scalarproduct_and_madd_int16_c;
  2338. c->scalarproduct_int16 = scalarproduct_int16_c;
  2339. c->vector_clip_int32 = vector_clip_int32_c;
  2340. c->vector_clipf = vector_clipf_c;
  2341. c->shrink[0] = av_image_copy_plane;
  2342. c->shrink[1] = ff_shrink22;
  2343. c->shrink[2] = ff_shrink44;
  2344. c->shrink[3] = ff_shrink88;
  2345. c->add_pixels8 = add_pixels8_c;
  2346. c->draw_edges = draw_edges_8_c;
  2347. c->clear_block = clear_block_8_c;
  2348. c->clear_blocks = clear_blocks_8_c;
  2349. switch (avctx->bits_per_raw_sample) {
  2350. case 9:
  2351. case 10:
  2352. c->get_pixels = get_pixels_16_c;
  2353. break;
  2354. default:
  2355. c->get_pixels = get_pixels_8_c;
  2356. break;
  2357. }
  2358. if (ARCH_ARM)
  2359. ff_dsputil_init_arm(c, avctx, high_bit_depth);
  2360. if (ARCH_BFIN)
  2361. ff_dsputil_init_bfin(c, avctx, high_bit_depth);
  2362. if (ARCH_PPC)
  2363. ff_dsputil_init_ppc(c, avctx, high_bit_depth);
  2364. if (ARCH_X86)
  2365. ff_dsputil_init_x86(c, avctx, high_bit_depth);
  2366. ff_init_scantable_permutation(c->idct_permutation,
  2367. c->idct_permutation_type);
  2368. }