yuv2rgb.c 34 KB

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  1. /*
  2. * software YUV to RGB converter
  3. *
  4. * Copyright (C) 2009 Konstantin Shishkov
  5. *
  6. * 1,4,8bpp support and context / deglobalize stuff
  7. * by Michael Niedermayer (michaelni@gmx.at)
  8. *
  9. * This file is part of FFmpeg.
  10. *
  11. * FFmpeg is free software; you can redistribute it and/or
  12. * modify it under the terms of the GNU Lesser General Public
  13. * License as published by the Free Software Foundation; either
  14. * version 2.1 of the License, or (at your option) any later version.
  15. *
  16. * FFmpeg is distributed in the hope that it will be useful,
  17. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  18. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  19. * Lesser General Public License for more details.
  20. *
  21. * You should have received a copy of the GNU Lesser General Public
  22. * License along with FFmpeg; if not, write to the Free Software
  23. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  24. */
  25. #include <stdio.h>
  26. #include <stdlib.h>
  27. #include <inttypes.h>
  28. #include "libavutil/cpu.h"
  29. #include "libavutil/bswap.h"
  30. #include "config.h"
  31. #include "rgb2rgb.h"
  32. #include "swscale.h"
  33. #include "swscale_internal.h"
  34. #include "libavutil/pixdesc.h"
  35. /* Color space conversion coefficients for YCbCr -> RGB mapping.
  36. *
  37. * Entries are {crv, cbu, cgu, cgv}
  38. *
  39. * crv = (255 / 224) * 65536 * (1 - cr) / 0.5
  40. * cbu = (255 / 224) * 65536 * (1 - cb) / 0.5
  41. * cgu = (255 / 224) * 65536 * (cb / cg) * (1 - cb) / 0.5
  42. * cgv = (255 / 224) * 65536 * (cr / cg) * (1 - cr) / 0.5
  43. *
  44. * where Y = cr * R + cg * G + cb * B and cr + cg + cb = 1.
  45. */
  46. const int32_t ff_yuv2rgb_coeffs[11][4] = {
  47. { 117489, 138438, 13975, 34925 }, /* no sequence_display_extension */
  48. { 117489, 138438, 13975, 34925 }, /* ITU-R Rec. 709 (1990) */
  49. { 104597, 132201, 25675, 53279 }, /* unspecified */
  50. { 104597, 132201, 25675, 53279 }, /* reserved */
  51. { 104448, 132798, 24759, 53109 }, /* FCC */
  52. { 104597, 132201, 25675, 53279 }, /* ITU-R Rec. 624-4 System B, G */
  53. { 104597, 132201, 25675, 53279 }, /* SMPTE 170M */
  54. { 117579, 136230, 16907, 35559 }, /* SMPTE 240M (1987) */
  55. { 0 }, /* YCgCo */
  56. { 110013, 140363, 12277, 42626 }, /* Bt-2020-NCL */
  57. { 110013, 140363, 12277, 42626 }, /* Bt-2020-CL */
  58. };
  59. const int *sws_getCoefficients(int colorspace)
  60. {
  61. if (colorspace > 10 || colorspace < 0 || colorspace == 8)
  62. colorspace = SWS_CS_DEFAULT;
  63. return ff_yuv2rgb_coeffs[colorspace];
  64. }
  65. #define LOADCHROMA(i) \
  66. U = pu[i]; \
  67. V = pv[i]; \
  68. r = (void *)c->table_rV[V+YUVRGB_TABLE_HEADROOM]; \
  69. g = (void *)(c->table_gU[U+YUVRGB_TABLE_HEADROOM] + c->table_gV[V+YUVRGB_TABLE_HEADROOM]); \
  70. b = (void *)c->table_bU[U+YUVRGB_TABLE_HEADROOM];
  71. #define PUTRGB(dst, src, i) \
  72. Y = src[2 * i]; \
  73. dst[2 * i] = r[Y] + g[Y] + b[Y]; \
  74. Y = src[2 * i + 1]; \
  75. dst[2 * i + 1] = r[Y] + g[Y] + b[Y];
  76. #define PUTRGB24(dst, src, i) \
  77. Y = src[2 * i]; \
  78. dst[6 * i + 0] = r[Y]; \
  79. dst[6 * i + 1] = g[Y]; \
  80. dst[6 * i + 2] = b[Y]; \
  81. Y = src[2 * i + 1]; \
  82. dst[6 * i + 3] = r[Y]; \
  83. dst[6 * i + 4] = g[Y]; \
  84. dst[6 * i + 5] = b[Y];
  85. #define PUTBGR24(dst, src, i) \
  86. Y = src[2 * i]; \
  87. dst[6 * i + 0] = b[Y]; \
  88. dst[6 * i + 1] = g[Y]; \
  89. dst[6 * i + 2] = r[Y]; \
  90. Y = src[2 * i + 1]; \
  91. dst[6 * i + 3] = b[Y]; \
  92. dst[6 * i + 4] = g[Y]; \
  93. dst[6 * i + 5] = r[Y];
  94. #define PUTRGBA(dst, ysrc, asrc, i, s) \
  95. Y = ysrc[2 * i]; \
  96. dst[2 * i] = r[Y] + g[Y] + b[Y] + (asrc[2 * i] << s); \
  97. Y = ysrc[2 * i + 1]; \
  98. dst[2 * i + 1] = r[Y] + g[Y] + b[Y] + (asrc[2 * i + 1] << s);
  99. #define PUTRGB48(dst, src, i) \
  100. Y = src[ 2 * i]; \
  101. dst[12 * i + 0] = dst[12 * i + 1] = r[Y]; \
  102. dst[12 * i + 2] = dst[12 * i + 3] = g[Y]; \
  103. dst[12 * i + 4] = dst[12 * i + 5] = b[Y]; \
  104. Y = src[ 2 * i + 1]; \
  105. dst[12 * i + 6] = dst[12 * i + 7] = r[Y]; \
  106. dst[12 * i + 8] = dst[12 * i + 9] = g[Y]; \
  107. dst[12 * i + 10] = dst[12 * i + 11] = b[Y];
  108. #define PUTBGR48(dst, src, i) \
  109. Y = src[2 * i]; \
  110. dst[12 * i + 0] = dst[12 * i + 1] = b[Y]; \
  111. dst[12 * i + 2] = dst[12 * i + 3] = g[Y]; \
  112. dst[12 * i + 4] = dst[12 * i + 5] = r[Y]; \
  113. Y = src[2 * i + 1]; \
  114. dst[12 * i + 6] = dst[12 * i + 7] = b[Y]; \
  115. dst[12 * i + 8] = dst[12 * i + 9] = g[Y]; \
  116. dst[12 * i + 10] = dst[12 * i + 11] = r[Y];
  117. #define YUV2RGBFUNC(func_name, dst_type, alpha) \
  118. static int func_name(SwsContext *c, const uint8_t *src[], \
  119. int srcStride[], int srcSliceY, int srcSliceH, \
  120. uint8_t *dst[], int dstStride[]) \
  121. { \
  122. int y; \
  123. \
  124. if (!alpha && c->srcFormat == AV_PIX_FMT_YUV422P) { \
  125. srcStride[1] *= 2; \
  126. srcStride[2] *= 2; \
  127. } \
  128. for (y = 0; y < srcSliceH; y += 2) { \
  129. int yd = y + srcSliceY; \
  130. dst_type *dst_1 = \
  131. (dst_type *)(dst[0] + (yd) * dstStride[0]); \
  132. dst_type *dst_2 = \
  133. (dst_type *)(dst[0] + (yd + 1) * dstStride[0]); \
  134. dst_type av_unused *r, *g, *b; \
  135. const uint8_t *py_1 = src[0] + y * srcStride[0]; \
  136. const uint8_t *py_2 = py_1 + srcStride[0]; \
  137. const uint8_t *pu = src[1] + (y >> 1) * srcStride[1]; \
  138. const uint8_t *pv = src[2] + (y >> 1) * srcStride[2]; \
  139. const uint8_t av_unused *pa_1, *pa_2; \
  140. unsigned int h_size = c->dstW >> 3; \
  141. if (alpha) { \
  142. pa_1 = src[3] + y * srcStride[3]; \
  143. pa_2 = pa_1 + srcStride[3]; \
  144. } \
  145. while (h_size--) { \
  146. int av_unused U, V, Y; \
  147. #define ENDYUV2RGBLINE(dst_delta, ss) \
  148. pu += 4 >> ss; \
  149. pv += 4 >> ss; \
  150. py_1 += 8 >> ss; \
  151. py_2 += 8 >> ss; \
  152. dst_1 += dst_delta >> ss; \
  153. dst_2 += dst_delta >> ss; \
  154. } \
  155. if (c->dstW & (4 >> ss)) { \
  156. int av_unused Y, U, V; \
  157. #define ENDYUV2RGBFUNC() \
  158. } \
  159. } \
  160. return srcSliceH; \
  161. }
  162. #define CLOSEYUV2RGBFUNC(dst_delta) \
  163. ENDYUV2RGBLINE(dst_delta, 0) \
  164. ENDYUV2RGBFUNC()
  165. YUV2RGBFUNC(yuv2rgb_c_48, uint8_t, 0)
  166. LOADCHROMA(0);
  167. PUTRGB48(dst_1, py_1, 0);
  168. PUTRGB48(dst_2, py_2, 0);
  169. LOADCHROMA(1);
  170. PUTRGB48(dst_2, py_2, 1);
  171. PUTRGB48(dst_1, py_1, 1);
  172. LOADCHROMA(2);
  173. PUTRGB48(dst_1, py_1, 2);
  174. PUTRGB48(dst_2, py_2, 2);
  175. LOADCHROMA(3);
  176. PUTRGB48(dst_2, py_2, 3);
  177. PUTRGB48(dst_1, py_1, 3);
  178. ENDYUV2RGBLINE(48, 0)
  179. LOADCHROMA(0);
  180. PUTRGB48(dst_1, py_1, 0);
  181. PUTRGB48(dst_2, py_2, 0);
  182. LOADCHROMA(1);
  183. PUTRGB48(dst_2, py_2, 1);
  184. PUTRGB48(dst_1, py_1, 1);
  185. ENDYUV2RGBLINE(48, 1)
  186. LOADCHROMA(0);
  187. PUTRGB48(dst_1, py_1, 0);
  188. PUTRGB48(dst_2, py_2, 0);
  189. ENDYUV2RGBFUNC()
  190. YUV2RGBFUNC(yuv2rgb_c_bgr48, uint8_t, 0)
  191. LOADCHROMA(0);
  192. PUTBGR48(dst_1, py_1, 0);
  193. PUTBGR48(dst_2, py_2, 0);
  194. LOADCHROMA(1);
  195. PUTBGR48(dst_2, py_2, 1);
  196. PUTBGR48(dst_1, py_1, 1);
  197. LOADCHROMA(2);
  198. PUTBGR48(dst_1, py_1, 2);
  199. PUTBGR48(dst_2, py_2, 2);
  200. LOADCHROMA(3);
  201. PUTBGR48(dst_2, py_2, 3);
  202. PUTBGR48(dst_1, py_1, 3);
  203. ENDYUV2RGBLINE(48, 0)
  204. LOADCHROMA(0);
  205. PUTBGR48(dst_1, py_1, 0);
  206. PUTBGR48(dst_2, py_2, 0);
  207. LOADCHROMA(1);
  208. PUTBGR48(dst_2, py_2, 1);
  209. PUTBGR48(dst_1, py_1, 1);
  210. ENDYUV2RGBLINE(48, 1)
  211. LOADCHROMA(0);
  212. PUTBGR48(dst_1, py_1, 0);
  213. PUTBGR48(dst_2, py_2, 0);
  214. ENDYUV2RGBFUNC()
  215. YUV2RGBFUNC(yuv2rgb_c_32, uint32_t, 0)
  216. LOADCHROMA(0);
  217. PUTRGB(dst_1, py_1, 0);
  218. PUTRGB(dst_2, py_2, 0);
  219. LOADCHROMA(1);
  220. PUTRGB(dst_2, py_2, 1);
  221. PUTRGB(dst_1, py_1, 1);
  222. LOADCHROMA(2);
  223. PUTRGB(dst_1, py_1, 2);
  224. PUTRGB(dst_2, py_2, 2);
  225. LOADCHROMA(3);
  226. PUTRGB(dst_2, py_2, 3);
  227. PUTRGB(dst_1, py_1, 3);
  228. ENDYUV2RGBLINE(8, 0)
  229. LOADCHROMA(0);
  230. PUTRGB(dst_1, py_1, 0);
  231. PUTRGB(dst_2, py_2, 0);
  232. LOADCHROMA(1);
  233. PUTRGB(dst_2, py_2, 1);
  234. PUTRGB(dst_1, py_1, 1);
  235. ENDYUV2RGBLINE(8, 1)
  236. LOADCHROMA(0);
  237. PUTRGB(dst_1, py_1, 0);
  238. PUTRGB(dst_2, py_2, 0);
  239. ENDYUV2RGBFUNC()
  240. YUV2RGBFUNC(yuva2rgba_c, uint32_t, 1)
  241. LOADCHROMA(0);
  242. PUTRGBA(dst_1, py_1, pa_1, 0, 24);
  243. PUTRGBA(dst_2, py_2, pa_2, 0, 24);
  244. LOADCHROMA(1);
  245. PUTRGBA(dst_2, py_2, pa_2, 1, 24);
  246. PUTRGBA(dst_1, py_1, pa_1, 1, 24);
  247. LOADCHROMA(2);
  248. PUTRGBA(dst_1, py_1, pa_1, 2, 24);
  249. PUTRGBA(dst_2, py_2, pa_2, 2, 24);
  250. LOADCHROMA(3);
  251. PUTRGBA(dst_2, py_2, pa_2, 3, 24);
  252. PUTRGBA(dst_1, py_1, pa_1, 3, 24);
  253. pa_1 += 8;
  254. pa_2 += 8;
  255. ENDYUV2RGBLINE(8, 0)
  256. LOADCHROMA(0);
  257. PUTRGBA(dst_1, py_1, pa_1, 0, 24);
  258. PUTRGBA(dst_2, py_2, pa_2, 0, 24);
  259. LOADCHROMA(1);
  260. PUTRGBA(dst_2, py_2, pa_2, 1, 24);
  261. PUTRGBA(dst_1, py_1, pa_1, 1, 24);
  262. pa_1 += 4;
  263. pa_2 += 4;
  264. ENDYUV2RGBLINE(8, 1)
  265. LOADCHROMA(0);
  266. PUTRGBA(dst_1, py_1, pa_1, 0, 24);
  267. PUTRGBA(dst_2, py_2, pa_2, 0, 24);
  268. ENDYUV2RGBFUNC()
  269. YUV2RGBFUNC(yuva2argb_c, uint32_t, 1)
  270. LOADCHROMA(0);
  271. PUTRGBA(dst_1, py_1, pa_1, 0, 0);
  272. PUTRGBA(dst_2, py_2, pa_2, 0, 0);
  273. LOADCHROMA(1);
  274. PUTRGBA(dst_2, py_2, pa_2, 1, 0);
  275. PUTRGBA(dst_1, py_1, pa_1, 1, 0);
  276. LOADCHROMA(2);
  277. PUTRGBA(dst_1, py_1, pa_1, 2, 0);
  278. PUTRGBA(dst_2, py_2, pa_2, 2, 0);
  279. LOADCHROMA(3);
  280. PUTRGBA(dst_2, py_2, pa_2, 3, 0);
  281. PUTRGBA(dst_1, py_1, pa_1, 3, 0);
  282. pa_1 += 8;
  283. pa_2 += 8;
  284. ENDYUV2RGBLINE(8, 0)
  285. LOADCHROMA(0);
  286. PUTRGBA(dst_1, py_1, pa_1, 0, 0);
  287. PUTRGBA(dst_2, py_2, pa_2, 0, 0);
  288. LOADCHROMA(1);
  289. PUTRGBA(dst_2, py_2, pa_2, 1, 0);
  290. PUTRGBA(dst_1, py_1, pa_1, 1, 0);
  291. pa_1 += 4;
  292. pa_2 += 4;
  293. ENDYUV2RGBLINE(8, 1)
  294. LOADCHROMA(0);
  295. PUTRGBA(dst_1, py_1, pa_1, 0, 0);
  296. PUTRGBA(dst_2, py_2, pa_2, 0, 0);
  297. ENDYUV2RGBFUNC()
  298. YUV2RGBFUNC(yuv2rgb_c_24_rgb, uint8_t, 0)
  299. LOADCHROMA(0);
  300. PUTRGB24(dst_1, py_1, 0);
  301. PUTRGB24(dst_2, py_2, 0);
  302. LOADCHROMA(1);
  303. PUTRGB24(dst_2, py_2, 1);
  304. PUTRGB24(dst_1, py_1, 1);
  305. LOADCHROMA(2);
  306. PUTRGB24(dst_1, py_1, 2);
  307. PUTRGB24(dst_2, py_2, 2);
  308. LOADCHROMA(3);
  309. PUTRGB24(dst_2, py_2, 3);
  310. PUTRGB24(dst_1, py_1, 3);
  311. ENDYUV2RGBLINE(24, 0)
  312. LOADCHROMA(0);
  313. PUTRGB24(dst_1, py_1, 0);
  314. PUTRGB24(dst_2, py_2, 0);
  315. LOADCHROMA(1);
  316. PUTRGB24(dst_2, py_2, 1);
  317. PUTRGB24(dst_1, py_1, 1);
  318. ENDYUV2RGBLINE(24, 1)
  319. LOADCHROMA(0);
  320. PUTRGB24(dst_1, py_1, 0);
  321. PUTRGB24(dst_2, py_2, 0);
  322. ENDYUV2RGBFUNC()
  323. // only trivial mods from yuv2rgb_c_24_rgb
  324. YUV2RGBFUNC(yuv2rgb_c_24_bgr, uint8_t, 0)
  325. LOADCHROMA(0);
  326. PUTBGR24(dst_1, py_1, 0);
  327. PUTBGR24(dst_2, py_2, 0);
  328. LOADCHROMA(1);
  329. PUTBGR24(dst_2, py_2, 1);
  330. PUTBGR24(dst_1, py_1, 1);
  331. LOADCHROMA(2);
  332. PUTBGR24(dst_1, py_1, 2);
  333. PUTBGR24(dst_2, py_2, 2);
  334. LOADCHROMA(3);
  335. PUTBGR24(dst_2, py_2, 3);
  336. PUTBGR24(dst_1, py_1, 3);
  337. ENDYUV2RGBLINE(24, 0)
  338. LOADCHROMA(0);
  339. PUTBGR24(dst_1, py_1, 0);
  340. PUTBGR24(dst_2, py_2, 0);
  341. LOADCHROMA(1);
  342. PUTBGR24(dst_2, py_2, 1);
  343. PUTBGR24(dst_1, py_1, 1);
  344. ENDYUV2RGBLINE(24, 1)
  345. LOADCHROMA(0);
  346. PUTBGR24(dst_1, py_1, 0);
  347. PUTBGR24(dst_2, py_2, 0);
  348. ENDYUV2RGBFUNC()
  349. YUV2RGBFUNC(yuv2rgb_c_16_ordered_dither, uint16_t, 0)
  350. const uint8_t *d16 = ff_dither_2x2_8[y & 1];
  351. const uint8_t *e16 = ff_dither_2x2_4[y & 1];
  352. const uint8_t *f16 = ff_dither_2x2_8[(y & 1)^1];
  353. #define PUTRGB16(dst, src, i, o) \
  354. Y = src[2 * i]; \
  355. dst[2 * i] = r[Y + d16[0 + o]] + \
  356. g[Y + e16[0 + o]] + \
  357. b[Y + f16[0 + o]]; \
  358. Y = src[2 * i + 1]; \
  359. dst[2 * i + 1] = r[Y + d16[1 + o]] + \
  360. g[Y + e16[1 + o]] + \
  361. b[Y + f16[1 + o]];
  362. LOADCHROMA(0);
  363. PUTRGB16(dst_1, py_1, 0, 0);
  364. PUTRGB16(dst_2, py_2, 0, 0 + 8);
  365. LOADCHROMA(1);
  366. PUTRGB16(dst_2, py_2, 1, 2 + 8);
  367. PUTRGB16(dst_1, py_1, 1, 2);
  368. LOADCHROMA(2);
  369. PUTRGB16(dst_1, py_1, 2, 4);
  370. PUTRGB16(dst_2, py_2, 2, 4 + 8);
  371. LOADCHROMA(3);
  372. PUTRGB16(dst_2, py_2, 3, 6 + 8);
  373. PUTRGB16(dst_1, py_1, 3, 6);
  374. CLOSEYUV2RGBFUNC(8)
  375. YUV2RGBFUNC(yuv2rgb_c_15_ordered_dither, uint16_t, 0)
  376. const uint8_t *d16 = ff_dither_2x2_8[y & 1];
  377. const uint8_t *e16 = ff_dither_2x2_8[(y & 1)^1];
  378. #define PUTRGB15(dst, src, i, o) \
  379. Y = src[2 * i]; \
  380. dst[2 * i] = r[Y + d16[0 + o]] + \
  381. g[Y + d16[1 + o]] + \
  382. b[Y + e16[0 + o]]; \
  383. Y = src[2 * i + 1]; \
  384. dst[2 * i + 1] = r[Y + d16[1 + o]] + \
  385. g[Y + d16[0 + o]] + \
  386. b[Y + e16[1 + o]];
  387. LOADCHROMA(0);
  388. PUTRGB15(dst_1, py_1, 0, 0);
  389. PUTRGB15(dst_2, py_2, 0, 0 + 8);
  390. LOADCHROMA(1);
  391. PUTRGB15(dst_2, py_2, 1, 2 + 8);
  392. PUTRGB15(dst_1, py_1, 1, 2);
  393. LOADCHROMA(2);
  394. PUTRGB15(dst_1, py_1, 2, 4);
  395. PUTRGB15(dst_2, py_2, 2, 4 + 8);
  396. LOADCHROMA(3);
  397. PUTRGB15(dst_2, py_2, 3, 6 + 8);
  398. PUTRGB15(dst_1, py_1, 3, 6);
  399. CLOSEYUV2RGBFUNC(8)
  400. // r, g, b, dst_1, dst_2
  401. YUV2RGBFUNC(yuv2rgb_c_12_ordered_dither, uint16_t, 0)
  402. const uint8_t *d16 = ff_dither_4x4_16[y & 3];
  403. #define PUTRGB12(dst, src, i, o) \
  404. Y = src[2 * i]; \
  405. dst[2 * i] = r[Y + d16[0 + o]] + \
  406. g[Y + d16[0 + o]] + \
  407. b[Y + d16[0 + o]]; \
  408. Y = src[2 * i + 1]; \
  409. dst[2 * i + 1] = r[Y + d16[1 + o]] + \
  410. g[Y + d16[1 + o]] + \
  411. b[Y + d16[1 + o]];
  412. LOADCHROMA(0);
  413. PUTRGB12(dst_1, py_1, 0, 0);
  414. PUTRGB12(dst_2, py_2, 0, 0 + 8);
  415. LOADCHROMA(1);
  416. PUTRGB12(dst_2, py_2, 1, 2 + 8);
  417. PUTRGB12(dst_1, py_1, 1, 2);
  418. LOADCHROMA(2);
  419. PUTRGB12(dst_1, py_1, 2, 4);
  420. PUTRGB12(dst_2, py_2, 2, 4 + 8);
  421. LOADCHROMA(3);
  422. PUTRGB12(dst_2, py_2, 3, 6 + 8);
  423. PUTRGB12(dst_1, py_1, 3, 6);
  424. CLOSEYUV2RGBFUNC(8)
  425. // r, g, b, dst_1, dst_2
  426. YUV2RGBFUNC(yuv2rgb_c_8_ordered_dither, uint8_t, 0)
  427. const uint8_t *d32 = ff_dither_8x8_32[yd & 7];
  428. const uint8_t *d64 = ff_dither_8x8_73[yd & 7];
  429. #define PUTRGB8(dst, src, i, o) \
  430. Y = src[2 * i]; \
  431. dst[2 * i] = r[Y + d32[0 + o]] + \
  432. g[Y + d32[0 + o]] + \
  433. b[Y + d64[0 + o]]; \
  434. Y = src[2 * i + 1]; \
  435. dst[2 * i + 1] = r[Y + d32[1 + o]] + \
  436. g[Y + d32[1 + o]] + \
  437. b[Y + d64[1 + o]];
  438. LOADCHROMA(0);
  439. PUTRGB8(dst_1, py_1, 0, 0);
  440. PUTRGB8(dst_2, py_2, 0, 0 + 8);
  441. LOADCHROMA(1);
  442. PUTRGB8(dst_2, py_2, 1, 2 + 8);
  443. PUTRGB8(dst_1, py_1, 1, 2);
  444. LOADCHROMA(2);
  445. PUTRGB8(dst_1, py_1, 2, 4);
  446. PUTRGB8(dst_2, py_2, 2, 4 + 8);
  447. LOADCHROMA(3);
  448. PUTRGB8(dst_2, py_2, 3, 6 + 8);
  449. PUTRGB8(dst_1, py_1, 3, 6);
  450. ENDYUV2RGBLINE(8, 0)
  451. const uint8_t *d32 = ff_dither_8x8_32[yd & 7];
  452. const uint8_t *d64 = ff_dither_8x8_73[yd & 7];
  453. LOADCHROMA(0);
  454. PUTRGB8(dst_1, py_1, 0, 0);
  455. PUTRGB8(dst_2, py_2, 0, 0 + 8);
  456. LOADCHROMA(1);
  457. PUTRGB8(dst_2, py_2, 1, 2 + 8);
  458. PUTRGB8(dst_1, py_1, 1, 2);
  459. ENDYUV2RGBLINE(8, 1)
  460. const uint8_t *d32 = ff_dither_8x8_32[yd & 7];
  461. const uint8_t *d64 = ff_dither_8x8_73[yd & 7];
  462. LOADCHROMA(0);
  463. PUTRGB8(dst_1, py_1, 0, 0);
  464. PUTRGB8(dst_2, py_2, 0, 0 + 8);
  465. ENDYUV2RGBFUNC()
  466. YUV2RGBFUNC(yuv2rgb_c_4_ordered_dither, uint8_t, 0)
  467. const uint8_t * d64 = ff_dither_8x8_73[yd & 7];
  468. const uint8_t *d128 = ff_dither_8x8_220[yd & 7];
  469. int acc;
  470. #define PUTRGB4D(dst, src, i, o) \
  471. Y = src[2 * i]; \
  472. acc = r[Y + d128[0 + o]] + \
  473. g[Y + d64[0 + o]] + \
  474. b[Y + d128[0 + o]]; \
  475. Y = src[2 * i + 1]; \
  476. acc |= (r[Y + d128[1 + o]] + \
  477. g[Y + d64[1 + o]] + \
  478. b[Y + d128[1 + o]]) << 4; \
  479. dst[i] = acc;
  480. LOADCHROMA(0);
  481. PUTRGB4D(dst_1, py_1, 0, 0);
  482. PUTRGB4D(dst_2, py_2, 0, 0 + 8);
  483. LOADCHROMA(1);
  484. PUTRGB4D(dst_2, py_2, 1, 2 + 8);
  485. PUTRGB4D(dst_1, py_1, 1, 2);
  486. LOADCHROMA(2);
  487. PUTRGB4D(dst_1, py_1, 2, 4);
  488. PUTRGB4D(dst_2, py_2, 2, 4 + 8);
  489. LOADCHROMA(3);
  490. PUTRGB4D(dst_2, py_2, 3, 6 + 8);
  491. PUTRGB4D(dst_1, py_1, 3, 6);
  492. ENDYUV2RGBLINE(4, 0)
  493. const uint8_t * d64 = ff_dither_8x8_73[yd & 7];
  494. const uint8_t *d128 = ff_dither_8x8_220[yd & 7];
  495. int acc;
  496. LOADCHROMA(0);
  497. PUTRGB4D(dst_1, py_1, 0, 0);
  498. PUTRGB4D(dst_2, py_2, 0, 0 + 8);
  499. LOADCHROMA(1);
  500. PUTRGB4D(dst_2, py_2, 1, 2 + 8);
  501. PUTRGB4D(dst_1, py_1, 1, 2);
  502. ENDYUV2RGBLINE(4, 1)
  503. const uint8_t * d64 = ff_dither_8x8_73[yd & 7];
  504. const uint8_t *d128 = ff_dither_8x8_220[yd & 7];
  505. int acc;
  506. LOADCHROMA(0);
  507. PUTRGB4D(dst_1, py_1, 0, 0);
  508. PUTRGB4D(dst_2, py_2, 0, 0 + 8);
  509. ENDYUV2RGBFUNC()
  510. YUV2RGBFUNC(yuv2rgb_c_4b_ordered_dither, uint8_t, 0)
  511. const uint8_t *d64 = ff_dither_8x8_73[yd & 7];
  512. const uint8_t *d128 = ff_dither_8x8_220[yd & 7];
  513. #define PUTRGB4DB(dst, src, i, o) \
  514. Y = src[2 * i]; \
  515. dst[2 * i] = r[Y + d128[0 + o]] + \
  516. g[Y + d64[0 + o]] + \
  517. b[Y + d128[0 + o]]; \
  518. Y = src[2 * i + 1]; \
  519. dst[2 * i + 1] = r[Y + d128[1 + o]] + \
  520. g[Y + d64[1 + o]] + \
  521. b[Y + d128[1 + o]];
  522. LOADCHROMA(0);
  523. PUTRGB4DB(dst_1, py_1, 0, 0);
  524. PUTRGB4DB(dst_2, py_2, 0, 0 + 8);
  525. LOADCHROMA(1);
  526. PUTRGB4DB(dst_2, py_2, 1, 2 + 8);
  527. PUTRGB4DB(dst_1, py_1, 1, 2);
  528. LOADCHROMA(2);
  529. PUTRGB4DB(dst_1, py_1, 2, 4);
  530. PUTRGB4DB(dst_2, py_2, 2, 4 + 8);
  531. LOADCHROMA(3);
  532. PUTRGB4DB(dst_2, py_2, 3, 6 + 8);
  533. PUTRGB4DB(dst_1, py_1, 3, 6);
  534. ENDYUV2RGBLINE(8, 0)
  535. const uint8_t *d64 = ff_dither_8x8_73[yd & 7];
  536. const uint8_t *d128 = ff_dither_8x8_220[yd & 7];
  537. LOADCHROMA(0);
  538. PUTRGB4DB(dst_1, py_1, 0, 0);
  539. PUTRGB4DB(dst_2, py_2, 0, 0 + 8);
  540. LOADCHROMA(1);
  541. PUTRGB4DB(dst_2, py_2, 1, 2 + 8);
  542. PUTRGB4DB(dst_1, py_1, 1, 2);
  543. ENDYUV2RGBLINE(8, 1)
  544. const uint8_t *d64 = ff_dither_8x8_73[yd & 7];
  545. const uint8_t *d128 = ff_dither_8x8_220[yd & 7];
  546. LOADCHROMA(0);
  547. PUTRGB4DB(dst_1, py_1, 0, 0);
  548. PUTRGB4DB(dst_2, py_2, 0, 0 + 8);
  549. ENDYUV2RGBFUNC()
  550. YUV2RGBFUNC(yuv2rgb_c_1_ordered_dither, uint8_t, 0)
  551. const uint8_t *d128 = ff_dither_8x8_220[yd & 7];
  552. char out_1 = 0, out_2 = 0;
  553. g = c->table_gU[128 + YUVRGB_TABLE_HEADROOM] + c->table_gV[128 + YUVRGB_TABLE_HEADROOM];
  554. #define PUTRGB1(out, src, i, o) \
  555. Y = src[2 * i]; \
  556. out += out + g[Y + d128[0 + o]]; \
  557. Y = src[2 * i + 1]; \
  558. out += out + g[Y + d128[1 + o]];
  559. PUTRGB1(out_1, py_1, 0, 0);
  560. PUTRGB1(out_2, py_2, 0, 0 + 8);
  561. PUTRGB1(out_2, py_2, 1, 2 + 8);
  562. PUTRGB1(out_1, py_1, 1, 2);
  563. PUTRGB1(out_1, py_1, 2, 4);
  564. PUTRGB1(out_2, py_2, 2, 4 + 8);
  565. PUTRGB1(out_2, py_2, 3, 6 + 8);
  566. PUTRGB1(out_1, py_1, 3, 6);
  567. dst_1[0] = out_1;
  568. dst_2[0] = out_2;
  569. CLOSEYUV2RGBFUNC(1)
  570. SwsFunc ff_yuv2rgb_get_func_ptr(SwsContext *c)
  571. {
  572. SwsFunc t = NULL;
  573. if (ARCH_PPC)
  574. t = ff_yuv2rgb_init_ppc(c);
  575. if (ARCH_X86)
  576. t = ff_yuv2rgb_init_x86(c);
  577. if (t)
  578. return t;
  579. av_log(c, AV_LOG_WARNING,
  580. "No accelerated colorspace conversion found from %s to %s.\n",
  581. av_get_pix_fmt_name(c->srcFormat), av_get_pix_fmt_name(c->dstFormat));
  582. switch (c->dstFormat) {
  583. case AV_PIX_FMT_BGR48BE:
  584. case AV_PIX_FMT_BGR48LE:
  585. return yuv2rgb_c_bgr48;
  586. case AV_PIX_FMT_RGB48BE:
  587. case AV_PIX_FMT_RGB48LE:
  588. return yuv2rgb_c_48;
  589. case AV_PIX_FMT_ARGB:
  590. case AV_PIX_FMT_ABGR:
  591. if (CONFIG_SWSCALE_ALPHA && isALPHA(c->srcFormat))
  592. return yuva2argb_c;
  593. case AV_PIX_FMT_RGBA:
  594. case AV_PIX_FMT_BGRA:
  595. return (CONFIG_SWSCALE_ALPHA && isALPHA(c->srcFormat)) ? yuva2rgba_c : yuv2rgb_c_32;
  596. case AV_PIX_FMT_RGB24:
  597. return yuv2rgb_c_24_rgb;
  598. case AV_PIX_FMT_BGR24:
  599. return yuv2rgb_c_24_bgr;
  600. case AV_PIX_FMT_RGB565:
  601. case AV_PIX_FMT_BGR565:
  602. return yuv2rgb_c_16_ordered_dither;
  603. case AV_PIX_FMT_RGB555:
  604. case AV_PIX_FMT_BGR555:
  605. return yuv2rgb_c_15_ordered_dither;
  606. case AV_PIX_FMT_RGB444:
  607. case AV_PIX_FMT_BGR444:
  608. return yuv2rgb_c_12_ordered_dither;
  609. case AV_PIX_FMT_RGB8:
  610. case AV_PIX_FMT_BGR8:
  611. return yuv2rgb_c_8_ordered_dither;
  612. case AV_PIX_FMT_RGB4:
  613. case AV_PIX_FMT_BGR4:
  614. return yuv2rgb_c_4_ordered_dither;
  615. case AV_PIX_FMT_RGB4_BYTE:
  616. case AV_PIX_FMT_BGR4_BYTE:
  617. return yuv2rgb_c_4b_ordered_dither;
  618. case AV_PIX_FMT_MONOBLACK:
  619. return yuv2rgb_c_1_ordered_dither;
  620. }
  621. return NULL;
  622. }
  623. static void fill_table(uint8_t* table[256 + 2*YUVRGB_TABLE_HEADROOM], const int elemsize,
  624. const int64_t inc, void *y_tab)
  625. {
  626. int i;
  627. uint8_t *y_table = y_tab;
  628. y_table -= elemsize * (inc >> 9);
  629. for (i = 0; i < 256 + 2*YUVRGB_TABLE_HEADROOM; i++) {
  630. int64_t cb = av_clip_uint8(i-YUVRGB_TABLE_HEADROOM)*inc;
  631. table[i] = y_table + elemsize * (cb >> 16);
  632. }
  633. }
  634. static void fill_gv_table(int table[256 + 2*YUVRGB_TABLE_HEADROOM], const int elemsize, const int64_t inc)
  635. {
  636. int i;
  637. int off = -(inc >> 9);
  638. for (i = 0; i < 256 + 2*YUVRGB_TABLE_HEADROOM; i++) {
  639. int64_t cb = av_clip_uint8(i-YUVRGB_TABLE_HEADROOM)*inc;
  640. table[i] = elemsize * (off + (cb >> 16));
  641. }
  642. }
  643. static uint16_t roundToInt16(int64_t f)
  644. {
  645. int r = (f + (1 << 15)) >> 16;
  646. if (r < -0x7FFF)
  647. return 0x8000;
  648. else if (r > 0x7FFF)
  649. return 0x7FFF;
  650. else
  651. return r;
  652. }
  653. av_cold int ff_yuv2rgb_c_init_tables(SwsContext *c, const int inv_table[4],
  654. int fullRange, int brightness,
  655. int contrast, int saturation)
  656. {
  657. const int isRgb = c->dstFormat == AV_PIX_FMT_RGB32 ||
  658. c->dstFormat == AV_PIX_FMT_RGB32_1 ||
  659. c->dstFormat == AV_PIX_FMT_BGR24 ||
  660. c->dstFormat == AV_PIX_FMT_RGB565BE ||
  661. c->dstFormat == AV_PIX_FMT_RGB565LE ||
  662. c->dstFormat == AV_PIX_FMT_RGB555BE ||
  663. c->dstFormat == AV_PIX_FMT_RGB555LE ||
  664. c->dstFormat == AV_PIX_FMT_RGB444BE ||
  665. c->dstFormat == AV_PIX_FMT_RGB444LE ||
  666. c->dstFormat == AV_PIX_FMT_RGB8 ||
  667. c->dstFormat == AV_PIX_FMT_RGB4 ||
  668. c->dstFormat == AV_PIX_FMT_RGB4_BYTE ||
  669. c->dstFormat == AV_PIX_FMT_MONOBLACK;
  670. const int isNotNe = c->dstFormat == AV_PIX_FMT_NE(RGB565LE, RGB565BE) ||
  671. c->dstFormat == AV_PIX_FMT_NE(RGB555LE, RGB555BE) ||
  672. c->dstFormat == AV_PIX_FMT_NE(RGB444LE, RGB444BE) ||
  673. c->dstFormat == AV_PIX_FMT_NE(BGR565LE, BGR565BE) ||
  674. c->dstFormat == AV_PIX_FMT_NE(BGR555LE, BGR555BE) ||
  675. c->dstFormat == AV_PIX_FMT_NE(BGR444LE, BGR444BE);
  676. const int bpp = c->dstFormatBpp;
  677. uint8_t *y_table;
  678. uint16_t *y_table16;
  679. uint32_t *y_table32;
  680. int i, base, rbase, gbase, bbase, av_uninit(abase), needAlpha;
  681. const int yoffs = (fullRange ? 384 : 326) + YUVRGB_TABLE_LUMA_HEADROOM;
  682. const int table_plane_size = 1024 + 2*YUVRGB_TABLE_LUMA_HEADROOM;
  683. int64_t crv = inv_table[0];
  684. int64_t cbu = inv_table[1];
  685. int64_t cgu = -inv_table[2];
  686. int64_t cgv = -inv_table[3];
  687. int64_t cy = 1 << 16;
  688. int64_t oy = 0;
  689. int64_t yb = 0;
  690. if (!fullRange) {
  691. cy = (cy * 255) / 219;
  692. oy = 16 << 16;
  693. } else {
  694. crv = (crv * 224) / 255;
  695. cbu = (cbu * 224) / 255;
  696. cgu = (cgu * 224) / 255;
  697. cgv = (cgv * 224) / 255;
  698. }
  699. cy = (cy * contrast) >> 16;
  700. crv = (crv * contrast * saturation) >> 32;
  701. cbu = (cbu * contrast * saturation) >> 32;
  702. cgu = (cgu * contrast * saturation) >> 32;
  703. cgv = (cgv * contrast * saturation) >> 32;
  704. oy -= 256 * brightness;
  705. c->uOffset = 0x0400040004000400LL;
  706. c->vOffset = 0x0400040004000400LL;
  707. c->yCoeff = roundToInt16(cy * (1 << 13)) * 0x0001000100010001ULL;
  708. c->vrCoeff = roundToInt16(crv * (1 << 13)) * 0x0001000100010001ULL;
  709. c->ubCoeff = roundToInt16(cbu * (1 << 13)) * 0x0001000100010001ULL;
  710. c->vgCoeff = roundToInt16(cgv * (1 << 13)) * 0x0001000100010001ULL;
  711. c->ugCoeff = roundToInt16(cgu * (1 << 13)) * 0x0001000100010001ULL;
  712. c->yOffset = roundToInt16(oy * (1 << 3)) * 0x0001000100010001ULL;
  713. c->yuv2rgb_y_coeff = (int16_t)roundToInt16(cy * (1 << 13));
  714. c->yuv2rgb_y_offset = (int16_t)roundToInt16(oy * (1 << 9));
  715. c->yuv2rgb_v2r_coeff = (int16_t)roundToInt16(crv * (1 << 13));
  716. c->yuv2rgb_v2g_coeff = (int16_t)roundToInt16(cgv * (1 << 13));
  717. c->yuv2rgb_u2g_coeff = (int16_t)roundToInt16(cgu * (1 << 13));
  718. c->yuv2rgb_u2b_coeff = (int16_t)roundToInt16(cbu * (1 << 13));
  719. //scale coefficients by cy
  720. crv = ((crv * (1 << 16)) + 0x8000) / FFMAX(cy, 1);
  721. cbu = ((cbu * (1 << 16)) + 0x8000) / FFMAX(cy, 1);
  722. cgu = ((cgu * (1 << 16)) + 0x8000) / FFMAX(cy, 1);
  723. cgv = ((cgv * (1 << 16)) + 0x8000) / FFMAX(cy, 1);
  724. av_freep(&c->yuvTable);
  725. #define ALLOC_YUV_TABLE(x) \
  726. c->yuvTable = av_malloc(x); \
  727. if (!c->yuvTable) \
  728. return AVERROR(ENOMEM);
  729. switch (bpp) {
  730. case 1:
  731. ALLOC_YUV_TABLE(table_plane_size);
  732. y_table = c->yuvTable;
  733. yb = -(384 << 16) - YUVRGB_TABLE_LUMA_HEADROOM*cy - oy;
  734. for (i = 0; i < table_plane_size - 110; i++) {
  735. y_table[i + 110] = av_clip_uint8((yb + 0x8000) >> 16) >> 7;
  736. yb += cy;
  737. }
  738. fill_table(c->table_gU, 1, cgu, y_table + yoffs);
  739. fill_gv_table(c->table_gV, 1, cgv);
  740. break;
  741. case 4:
  742. case 4 | 128:
  743. rbase = isRgb ? 3 : 0;
  744. gbase = 1;
  745. bbase = isRgb ? 0 : 3;
  746. ALLOC_YUV_TABLE(table_plane_size * 3);
  747. y_table = c->yuvTable;
  748. yb = -(384 << 16) - YUVRGB_TABLE_LUMA_HEADROOM*cy - oy;
  749. for (i = 0; i < table_plane_size - 110; i++) {
  750. int yval = av_clip_uint8((yb + 0x8000) >> 16);
  751. y_table[i + 110] = (yval >> 7) << rbase;
  752. y_table[i + 37 + table_plane_size] = ((yval + 43) / 85) << gbase;
  753. y_table[i + 110 + 2*table_plane_size] = (yval >> 7) << bbase;
  754. yb += cy;
  755. }
  756. fill_table(c->table_rV, 1, crv, y_table + yoffs);
  757. fill_table(c->table_gU, 1, cgu, y_table + yoffs + table_plane_size);
  758. fill_table(c->table_bU, 1, cbu, y_table + yoffs + 2*table_plane_size);
  759. fill_gv_table(c->table_gV, 1, cgv);
  760. break;
  761. case 8:
  762. rbase = isRgb ? 5 : 0;
  763. gbase = isRgb ? 2 : 3;
  764. bbase = isRgb ? 0 : 6;
  765. ALLOC_YUV_TABLE(table_plane_size * 3);
  766. y_table = c->yuvTable;
  767. yb = -(384 << 16) - YUVRGB_TABLE_LUMA_HEADROOM*cy - oy;
  768. for (i = 0; i < table_plane_size - 38; i++) {
  769. int yval = av_clip_uint8((yb + 0x8000) >> 16);
  770. y_table[i + 16] = ((yval + 18) / 36) << rbase;
  771. y_table[i + 16 + table_plane_size] = ((yval + 18) / 36) << gbase;
  772. y_table[i + 37 + 2*table_plane_size] = ((yval + 43) / 85) << bbase;
  773. yb += cy;
  774. }
  775. fill_table(c->table_rV, 1, crv, y_table + yoffs);
  776. fill_table(c->table_gU, 1, cgu, y_table + yoffs + table_plane_size);
  777. fill_table(c->table_bU, 1, cbu, y_table + yoffs + 2*table_plane_size);
  778. fill_gv_table(c->table_gV, 1, cgv);
  779. break;
  780. case 12:
  781. rbase = isRgb ? 8 : 0;
  782. gbase = 4;
  783. bbase = isRgb ? 0 : 8;
  784. ALLOC_YUV_TABLE(table_plane_size * 3 * 2);
  785. y_table16 = c->yuvTable;
  786. yb = -(384 << 16) - YUVRGB_TABLE_LUMA_HEADROOM*cy - oy;
  787. for (i = 0; i < table_plane_size; i++) {
  788. uint8_t yval = av_clip_uint8((yb + 0x8000) >> 16);
  789. y_table16[i] = (yval >> 4) << rbase;
  790. y_table16[i + table_plane_size] = (yval >> 4) << gbase;
  791. y_table16[i + 2*table_plane_size] = (yval >> 4) << bbase;
  792. yb += cy;
  793. }
  794. if (isNotNe)
  795. for (i = 0; i < table_plane_size * 3; i++)
  796. y_table16[i] = av_bswap16(y_table16[i]);
  797. fill_table(c->table_rV, 2, crv, y_table16 + yoffs);
  798. fill_table(c->table_gU, 2, cgu, y_table16 + yoffs + table_plane_size);
  799. fill_table(c->table_bU, 2, cbu, y_table16 + yoffs + 2*table_plane_size);
  800. fill_gv_table(c->table_gV, 2, cgv);
  801. break;
  802. case 15:
  803. case 16:
  804. rbase = isRgb ? bpp - 5 : 0;
  805. gbase = 5;
  806. bbase = isRgb ? 0 : (bpp - 5);
  807. ALLOC_YUV_TABLE(table_plane_size * 3 * 2);
  808. y_table16 = c->yuvTable;
  809. yb = -(384 << 16) - YUVRGB_TABLE_LUMA_HEADROOM*cy - oy;
  810. for (i = 0; i < table_plane_size; i++) {
  811. uint8_t yval = av_clip_uint8((yb + 0x8000) >> 16);
  812. y_table16[i] = (yval >> 3) << rbase;
  813. y_table16[i + table_plane_size] = (yval >> (18 - bpp)) << gbase;
  814. y_table16[i + 2*table_plane_size] = (yval >> 3) << bbase;
  815. yb += cy;
  816. }
  817. if (isNotNe)
  818. for (i = 0; i < table_plane_size * 3; i++)
  819. y_table16[i] = av_bswap16(y_table16[i]);
  820. fill_table(c->table_rV, 2, crv, y_table16 + yoffs);
  821. fill_table(c->table_gU, 2, cgu, y_table16 + yoffs + table_plane_size);
  822. fill_table(c->table_bU, 2, cbu, y_table16 + yoffs + 2*table_plane_size);
  823. fill_gv_table(c->table_gV, 2, cgv);
  824. break;
  825. case 24:
  826. case 48:
  827. ALLOC_YUV_TABLE(table_plane_size);
  828. y_table = c->yuvTable;
  829. yb = -(384 << 16) - YUVRGB_TABLE_LUMA_HEADROOM*cy - oy;
  830. for (i = 0; i < table_plane_size; i++) {
  831. y_table[i] = av_clip_uint8((yb + 0x8000) >> 16);
  832. yb += cy;
  833. }
  834. fill_table(c->table_rV, 1, crv, y_table + yoffs);
  835. fill_table(c->table_gU, 1, cgu, y_table + yoffs);
  836. fill_table(c->table_bU, 1, cbu, y_table + yoffs);
  837. fill_gv_table(c->table_gV, 1, cgv);
  838. break;
  839. case 32:
  840. case 64:
  841. base = (c->dstFormat == AV_PIX_FMT_RGB32_1 ||
  842. c->dstFormat == AV_PIX_FMT_BGR32_1) ? 8 : 0;
  843. rbase = base + (isRgb ? 16 : 0);
  844. gbase = base + 8;
  845. bbase = base + (isRgb ? 0 : 16);
  846. needAlpha = CONFIG_SWSCALE_ALPHA && isALPHA(c->srcFormat);
  847. if (!needAlpha)
  848. abase = (base + 24) & 31;
  849. ALLOC_YUV_TABLE(table_plane_size * 3 * 4);
  850. y_table32 = c->yuvTable;
  851. yb = -(384 << 16) - YUVRGB_TABLE_LUMA_HEADROOM*cy - oy;
  852. for (i = 0; i < table_plane_size; i++) {
  853. unsigned yval = av_clip_uint8((yb + 0x8000) >> 16);
  854. y_table32[i] = (yval << rbase) +
  855. (needAlpha ? 0 : (255u << abase));
  856. y_table32[i + table_plane_size] = yval << gbase;
  857. y_table32[i + 2*table_plane_size] = yval << bbase;
  858. yb += cy;
  859. }
  860. fill_table(c->table_rV, 4, crv, y_table32 + yoffs);
  861. fill_table(c->table_gU, 4, cgu, y_table32 + yoffs + table_plane_size);
  862. fill_table(c->table_bU, 4, cbu, y_table32 + yoffs + 2*table_plane_size);
  863. fill_gv_table(c->table_gV, 4, cgv);
  864. break;
  865. default:
  866. if(!isPlanar(c->dstFormat) || bpp <= 24)
  867. av_log(c, AV_LOG_ERROR, "%ibpp not supported by yuv2rgb\n", bpp);
  868. return -1;
  869. }
  870. return 0;
  871. }