swscale_unscaled.c 80 KB

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  1. /*
  2. * Copyright (C) 2001-2011 Michael Niedermayer <michaelni@gmx.at>
  3. *
  4. * This file is part of FFmpeg.
  5. *
  6. * FFmpeg is free software; you can redistribute it and/or
  7. * modify it under the terms of the GNU Lesser General Public
  8. * License as published by the Free Software Foundation; either
  9. * version 2.1 of the License, or (at your option) any later version.
  10. *
  11. * FFmpeg is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  14. * Lesser General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU Lesser General Public
  17. * License along with FFmpeg; if not, write to the Free Software
  18. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  19. */
  20. #include <inttypes.h>
  21. #include <string.h>
  22. #include <math.h>
  23. #include <stdio.h>
  24. #include "config.h"
  25. #include "swscale.h"
  26. #include "swscale_internal.h"
  27. #include "rgb2rgb.h"
  28. #include "libavutil/intreadwrite.h"
  29. #include "libavutil/cpu.h"
  30. #include "libavutil/avutil.h"
  31. #include "libavutil/mathematics.h"
  32. #include "libavutil/bswap.h"
  33. #include "libavutil/pixdesc.h"
  34. #include "libavutil/avassert.h"
  35. #include "libavutil/avconfig.h"
  36. DECLARE_ALIGNED(8, static const uint8_t, dithers)[8][8][8]={
  37. {
  38. { 0, 1, 0, 1, 0, 1, 0, 1,},
  39. { 1, 0, 1, 0, 1, 0, 1, 0,},
  40. { 0, 1, 0, 1, 0, 1, 0, 1,},
  41. { 1, 0, 1, 0, 1, 0, 1, 0,},
  42. { 0, 1, 0, 1, 0, 1, 0, 1,},
  43. { 1, 0, 1, 0, 1, 0, 1, 0,},
  44. { 0, 1, 0, 1, 0, 1, 0, 1,},
  45. { 1, 0, 1, 0, 1, 0, 1, 0,},
  46. },{
  47. { 1, 2, 1, 2, 1, 2, 1, 2,},
  48. { 3, 0, 3, 0, 3, 0, 3, 0,},
  49. { 1, 2, 1, 2, 1, 2, 1, 2,},
  50. { 3, 0, 3, 0, 3, 0, 3, 0,},
  51. { 1, 2, 1, 2, 1, 2, 1, 2,},
  52. { 3, 0, 3, 0, 3, 0, 3, 0,},
  53. { 1, 2, 1, 2, 1, 2, 1, 2,},
  54. { 3, 0, 3, 0, 3, 0, 3, 0,},
  55. },{
  56. { 2, 4, 3, 5, 2, 4, 3, 5,},
  57. { 6, 0, 7, 1, 6, 0, 7, 1,},
  58. { 3, 5, 2, 4, 3, 5, 2, 4,},
  59. { 7, 1, 6, 0, 7, 1, 6, 0,},
  60. { 2, 4, 3, 5, 2, 4, 3, 5,},
  61. { 6, 0, 7, 1, 6, 0, 7, 1,},
  62. { 3, 5, 2, 4, 3, 5, 2, 4,},
  63. { 7, 1, 6, 0, 7, 1, 6, 0,},
  64. },{
  65. { 4, 8, 7, 11, 4, 8, 7, 11,},
  66. { 12, 0, 15, 3, 12, 0, 15, 3,},
  67. { 6, 10, 5, 9, 6, 10, 5, 9,},
  68. { 14, 2, 13, 1, 14, 2, 13, 1,},
  69. { 4, 8, 7, 11, 4, 8, 7, 11,},
  70. { 12, 0, 15, 3, 12, 0, 15, 3,},
  71. { 6, 10, 5, 9, 6, 10, 5, 9,},
  72. { 14, 2, 13, 1, 14, 2, 13, 1,},
  73. },{
  74. { 9, 17, 15, 23, 8, 16, 14, 22,},
  75. { 25, 1, 31, 7, 24, 0, 30, 6,},
  76. { 13, 21, 11, 19, 12, 20, 10, 18,},
  77. { 29, 5, 27, 3, 28, 4, 26, 2,},
  78. { 8, 16, 14, 22, 9, 17, 15, 23,},
  79. { 24, 0, 30, 6, 25, 1, 31, 7,},
  80. { 12, 20, 10, 18, 13, 21, 11, 19,},
  81. { 28, 4, 26, 2, 29, 5, 27, 3,},
  82. },{
  83. { 18, 34, 30, 46, 17, 33, 29, 45,},
  84. { 50, 2, 62, 14, 49, 1, 61, 13,},
  85. { 26, 42, 22, 38, 25, 41, 21, 37,},
  86. { 58, 10, 54, 6, 57, 9, 53, 5,},
  87. { 16, 32, 28, 44, 19, 35, 31, 47,},
  88. { 48, 0, 60, 12, 51, 3, 63, 15,},
  89. { 24, 40, 20, 36, 27, 43, 23, 39,},
  90. { 56, 8, 52, 4, 59, 11, 55, 7,},
  91. },{
  92. { 18, 34, 30, 46, 17, 33, 29, 45,},
  93. { 50, 2, 62, 14, 49, 1, 61, 13,},
  94. { 26, 42, 22, 38, 25, 41, 21, 37,},
  95. { 58, 10, 54, 6, 57, 9, 53, 5,},
  96. { 16, 32, 28, 44, 19, 35, 31, 47,},
  97. { 48, 0, 60, 12, 51, 3, 63, 15,},
  98. { 24, 40, 20, 36, 27, 43, 23, 39,},
  99. { 56, 8, 52, 4, 59, 11, 55, 7,},
  100. },{
  101. { 36, 68, 60, 92, 34, 66, 58, 90,},
  102. { 100, 4,124, 28, 98, 2,122, 26,},
  103. { 52, 84, 44, 76, 50, 82, 42, 74,},
  104. { 116, 20,108, 12,114, 18,106, 10,},
  105. { 32, 64, 56, 88, 38, 70, 62, 94,},
  106. { 96, 0,120, 24,102, 6,126, 30,},
  107. { 48, 80, 40, 72, 54, 86, 46, 78,},
  108. { 112, 16,104, 8,118, 22,110, 14,},
  109. }};
  110. static void fillPlane(uint8_t *plane, int stride, int width, int height, int y,
  111. uint8_t val)
  112. {
  113. int i;
  114. uint8_t *ptr = plane + stride * y;
  115. for (i = 0; i < height; i++) {
  116. memset(ptr, val, width);
  117. ptr += stride;
  118. }
  119. }
  120. static void copyPlane(const uint8_t *src, int srcStride,
  121. int srcSliceY, int srcSliceH, int width,
  122. uint8_t *dst, int dstStride)
  123. {
  124. dst += dstStride * srcSliceY;
  125. if (dstStride == srcStride && srcStride > 0) {
  126. memcpy(dst, src, srcSliceH * dstStride);
  127. } else {
  128. int i;
  129. for (i = 0; i < srcSliceH; i++) {
  130. memcpy(dst, src, width);
  131. src += srcStride;
  132. dst += dstStride;
  133. }
  134. }
  135. }
  136. static int planarToNv12Wrapper(SwsContext *c, const uint8_t *src[],
  137. int srcStride[], int srcSliceY,
  138. int srcSliceH, uint8_t *dstParam[],
  139. int dstStride[])
  140. {
  141. uint8_t *dst = dstParam[1] + dstStride[1] * srcSliceY / 2;
  142. copyPlane(src[0], srcStride[0], srcSliceY, srcSliceH, c->srcW,
  143. dstParam[0], dstStride[0]);
  144. if (c->dstFormat == AV_PIX_FMT_NV12)
  145. interleaveBytes(src[1], src[2], dst, c->srcW / 2, srcSliceH / 2,
  146. srcStride[1], srcStride[2], dstStride[1]);
  147. else
  148. interleaveBytes(src[2], src[1], dst, c->srcW / 2, srcSliceH / 2,
  149. srcStride[2], srcStride[1], dstStride[1]);
  150. return srcSliceH;
  151. }
  152. static int nv12ToPlanarWrapper(SwsContext *c, const uint8_t *src[],
  153. int srcStride[], int srcSliceY,
  154. int srcSliceH, uint8_t *dstParam[],
  155. int dstStride[])
  156. {
  157. uint8_t *dst1 = dstParam[1] + dstStride[1] * srcSliceY / 2;
  158. uint8_t *dst2 = dstParam[2] + dstStride[2] * srcSliceY / 2;
  159. copyPlane(src[0], srcStride[0], srcSliceY, srcSliceH, c->srcW,
  160. dstParam[0], dstStride[0]);
  161. if (c->srcFormat == AV_PIX_FMT_NV12)
  162. deinterleaveBytes(src[1], dst1, dst2,c->srcW / 2, srcSliceH / 2,
  163. srcStride[1], dstStride[1], dstStride[2]);
  164. else
  165. deinterleaveBytes(src[1], dst2, dst1, c->srcW / 2, srcSliceH / 2,
  166. srcStride[1], dstStride[2], dstStride[1]);
  167. return srcSliceH;
  168. }
  169. static int planarToP01xWrapper(SwsContext *c, const uint8_t *src8[],
  170. int srcStride[], int srcSliceY,
  171. int srcSliceH, uint8_t *dstParam8[],
  172. int dstStride[])
  173. {
  174. const AVPixFmtDescriptor *src_format = av_pix_fmt_desc_get(c->srcFormat);
  175. const AVPixFmtDescriptor *dst_format = av_pix_fmt_desc_get(c->dstFormat);
  176. const uint16_t **src = (const uint16_t**)src8;
  177. uint16_t *dstY = (uint16_t*)(dstParam8[0] + dstStride[0] * srcSliceY);
  178. uint16_t *dstUV = (uint16_t*)(dstParam8[1] + dstStride[1] * srcSliceY / 2);
  179. int x, y;
  180. /* Calculate net shift required for values. */
  181. const int shift[3] = {
  182. dst_format->comp[0].depth + dst_format->comp[0].shift -
  183. src_format->comp[0].depth - src_format->comp[0].shift,
  184. dst_format->comp[1].depth + dst_format->comp[1].shift -
  185. src_format->comp[1].depth - src_format->comp[1].shift,
  186. dst_format->comp[2].depth + dst_format->comp[2].shift -
  187. src_format->comp[2].depth - src_format->comp[2].shift,
  188. };
  189. av_assert0(!(srcStride[0] % 2 || srcStride[1] % 2 || srcStride[2] % 2 ||
  190. dstStride[0] % 2 || dstStride[1] % 2));
  191. for (y = 0; y < srcSliceH; y++) {
  192. uint16_t *tdstY = dstY;
  193. const uint16_t *tsrc0 = src[0];
  194. for (x = c->srcW; x > 0; x--) {
  195. *tdstY++ = *tsrc0++ << shift[0];
  196. }
  197. src[0] += srcStride[0] / 2;
  198. dstY += dstStride[0] / 2;
  199. if (!(y & 1)) {
  200. uint16_t *tdstUV = dstUV;
  201. const uint16_t *tsrc1 = src[1];
  202. const uint16_t *tsrc2 = src[2];
  203. for (x = c->srcW / 2; x > 0; x--) {
  204. *tdstUV++ = *tsrc1++ << shift[1];
  205. *tdstUV++ = *tsrc2++ << shift[2];
  206. }
  207. src[1] += srcStride[1] / 2;
  208. src[2] += srcStride[2] / 2;
  209. dstUV += dstStride[1] / 2;
  210. }
  211. }
  212. return srcSliceH;
  213. }
  214. #if AV_HAVE_BIGENDIAN
  215. #define output_pixel(p, v) do { \
  216. uint16_t *pp = (p); \
  217. AV_WL16(pp, (v)); \
  218. } while(0)
  219. #else
  220. #define output_pixel(p, v) (*p) = (v)
  221. #endif
  222. static int planar8ToP01xleWrapper(SwsContext *c, const uint8_t *src[],
  223. int srcStride[], int srcSliceY,
  224. int srcSliceH, uint8_t *dstParam8[],
  225. int dstStride[])
  226. {
  227. uint16_t *dstY = (uint16_t*)(dstParam8[0] + dstStride[0] * srcSliceY);
  228. uint16_t *dstUV = (uint16_t*)(dstParam8[1] + dstStride[1] * srcSliceY / 2);
  229. int x, y, t;
  230. av_assert0(!(dstStride[0] % 2 || dstStride[1] % 2));
  231. for (y = 0; y < srcSliceH; y++) {
  232. uint16_t *tdstY = dstY;
  233. const uint8_t *tsrc0 = src[0];
  234. for (x = c->srcW; x > 0; x--) {
  235. t = *tsrc0++;
  236. output_pixel(tdstY++, t | (t << 8));
  237. }
  238. src[0] += srcStride[0];
  239. dstY += dstStride[0] / 2;
  240. if (!(y & 1)) {
  241. uint16_t *tdstUV = dstUV;
  242. const uint8_t *tsrc1 = src[1];
  243. const uint8_t *tsrc2 = src[2];
  244. for (x = c->srcW / 2; x > 0; x--) {
  245. t = *tsrc1++;
  246. output_pixel(tdstUV++, t | (t << 8));
  247. t = *tsrc2++;
  248. output_pixel(tdstUV++, t | (t << 8));
  249. }
  250. src[1] += srcStride[1];
  251. src[2] += srcStride[2];
  252. dstUV += dstStride[1] / 2;
  253. }
  254. }
  255. return srcSliceH;
  256. }
  257. #undef output_pixel
  258. static int planarToYuy2Wrapper(SwsContext *c, const uint8_t *src[],
  259. int srcStride[], int srcSliceY, int srcSliceH,
  260. uint8_t *dstParam[], int dstStride[])
  261. {
  262. uint8_t *dst = dstParam[0] + dstStride[0] * srcSliceY;
  263. yv12toyuy2(src[0], src[1], src[2], dst, c->srcW, srcSliceH, srcStride[0],
  264. srcStride[1], dstStride[0]);
  265. return srcSliceH;
  266. }
  267. static int planarToUyvyWrapper(SwsContext *c, const uint8_t *src[],
  268. int srcStride[], int srcSliceY, int srcSliceH,
  269. uint8_t *dstParam[], int dstStride[])
  270. {
  271. uint8_t *dst = dstParam[0] + dstStride[0] * srcSliceY;
  272. yv12touyvy(src[0], src[1], src[2], dst, c->srcW, srcSliceH, srcStride[0],
  273. srcStride[1], dstStride[0]);
  274. return srcSliceH;
  275. }
  276. static int yuv422pToYuy2Wrapper(SwsContext *c, const uint8_t *src[],
  277. int srcStride[], int srcSliceY, int srcSliceH,
  278. uint8_t *dstParam[], int dstStride[])
  279. {
  280. uint8_t *dst = dstParam[0] + dstStride[0] * srcSliceY;
  281. yuv422ptoyuy2(src[0], src[1], src[2], dst, c->srcW, srcSliceH, srcStride[0],
  282. srcStride[1], dstStride[0]);
  283. return srcSliceH;
  284. }
  285. static int yuv422pToUyvyWrapper(SwsContext *c, const uint8_t *src[],
  286. int srcStride[], int srcSliceY, int srcSliceH,
  287. uint8_t *dstParam[], int dstStride[])
  288. {
  289. uint8_t *dst = dstParam[0] + dstStride[0] * srcSliceY;
  290. yuv422ptouyvy(src[0], src[1], src[2], dst, c->srcW, srcSliceH, srcStride[0],
  291. srcStride[1], dstStride[0]);
  292. return srcSliceH;
  293. }
  294. static int yuyvToYuv420Wrapper(SwsContext *c, const uint8_t *src[],
  295. int srcStride[], int srcSliceY, int srcSliceH,
  296. uint8_t *dstParam[], int dstStride[])
  297. {
  298. uint8_t *ydst = dstParam[0] + dstStride[0] * srcSliceY;
  299. uint8_t *udst = dstParam[1] + dstStride[1] * srcSliceY / 2;
  300. uint8_t *vdst = dstParam[2] + dstStride[2] * srcSliceY / 2;
  301. yuyvtoyuv420(ydst, udst, vdst, src[0], c->srcW, srcSliceH, dstStride[0],
  302. dstStride[1], srcStride[0]);
  303. if (dstParam[3])
  304. fillPlane(dstParam[3], dstStride[3], c->srcW, srcSliceH, srcSliceY, 255);
  305. return srcSliceH;
  306. }
  307. static int yuyvToYuv422Wrapper(SwsContext *c, const uint8_t *src[],
  308. int srcStride[], int srcSliceY, int srcSliceH,
  309. uint8_t *dstParam[], int dstStride[])
  310. {
  311. uint8_t *ydst = dstParam[0] + dstStride[0] * srcSliceY;
  312. uint8_t *udst = dstParam[1] + dstStride[1] * srcSliceY;
  313. uint8_t *vdst = dstParam[2] + dstStride[2] * srcSliceY;
  314. yuyvtoyuv422(ydst, udst, vdst, src[0], c->srcW, srcSliceH, dstStride[0],
  315. dstStride[1], srcStride[0]);
  316. return srcSliceH;
  317. }
  318. static int uyvyToYuv420Wrapper(SwsContext *c, const uint8_t *src[],
  319. int srcStride[], int srcSliceY, int srcSliceH,
  320. uint8_t *dstParam[], int dstStride[])
  321. {
  322. uint8_t *ydst = dstParam[0] + dstStride[0] * srcSliceY;
  323. uint8_t *udst = dstParam[1] + dstStride[1] * srcSliceY / 2;
  324. uint8_t *vdst = dstParam[2] + dstStride[2] * srcSliceY / 2;
  325. uyvytoyuv420(ydst, udst, vdst, src[0], c->srcW, srcSliceH, dstStride[0],
  326. dstStride[1], srcStride[0]);
  327. if (dstParam[3])
  328. fillPlane(dstParam[3], dstStride[3], c->srcW, srcSliceH, srcSliceY, 255);
  329. return srcSliceH;
  330. }
  331. static int uyvyToYuv422Wrapper(SwsContext *c, const uint8_t *src[],
  332. int srcStride[], int srcSliceY, int srcSliceH,
  333. uint8_t *dstParam[], int dstStride[])
  334. {
  335. uint8_t *ydst = dstParam[0] + dstStride[0] * srcSliceY;
  336. uint8_t *udst = dstParam[1] + dstStride[1] * srcSliceY;
  337. uint8_t *vdst = dstParam[2] + dstStride[2] * srcSliceY;
  338. uyvytoyuv422(ydst, udst, vdst, src[0], c->srcW, srcSliceH, dstStride[0],
  339. dstStride[1], srcStride[0]);
  340. return srcSliceH;
  341. }
  342. static void gray8aToPacked32(const uint8_t *src, uint8_t *dst, int num_pixels,
  343. const uint8_t *palette)
  344. {
  345. int i;
  346. for (i = 0; i < num_pixels; i++)
  347. ((uint32_t *) dst)[i] = ((const uint32_t *) palette)[src[i << 1]] | (src[(i << 1) + 1] << 24);
  348. }
  349. static void gray8aToPacked32_1(const uint8_t *src, uint8_t *dst, int num_pixels,
  350. const uint8_t *palette)
  351. {
  352. int i;
  353. for (i = 0; i < num_pixels; i++)
  354. ((uint32_t *) dst)[i] = ((const uint32_t *) palette)[src[i << 1]] | src[(i << 1) + 1];
  355. }
  356. static void gray8aToPacked24(const uint8_t *src, uint8_t *dst, int num_pixels,
  357. const uint8_t *palette)
  358. {
  359. int i;
  360. for (i = 0; i < num_pixels; i++) {
  361. //FIXME slow?
  362. dst[0] = palette[src[i << 1] * 4 + 0];
  363. dst[1] = palette[src[i << 1] * 4 + 1];
  364. dst[2] = palette[src[i << 1] * 4 + 2];
  365. dst += 3;
  366. }
  367. }
  368. static int packed_16bpc_bswap(SwsContext *c, const uint8_t *src[],
  369. int srcStride[], int srcSliceY, int srcSliceH,
  370. uint8_t *dst[], int dstStride[])
  371. {
  372. int i, j, p;
  373. for (p = 0; p < 4; p++) {
  374. int srcstr = srcStride[p] / 2;
  375. int dststr = dstStride[p] / 2;
  376. uint16_t *dstPtr = (uint16_t *) dst[p];
  377. const uint16_t *srcPtr = (const uint16_t *) src[p];
  378. int min_stride = FFMIN(FFABS(srcstr), FFABS(dststr));
  379. if(!dstPtr || !srcPtr)
  380. continue;
  381. dstPtr += (srcSliceY >> c->chrDstVSubSample) * dststr;
  382. for (i = 0; i < (srcSliceH >> c->chrDstVSubSample); i++) {
  383. for (j = 0; j < min_stride; j++) {
  384. dstPtr[j] = av_bswap16(srcPtr[j]);
  385. }
  386. srcPtr += srcstr;
  387. dstPtr += dststr;
  388. }
  389. }
  390. return srcSliceH;
  391. }
  392. static int palToRgbWrapper(SwsContext *c, const uint8_t *src[], int srcStride[],
  393. int srcSliceY, int srcSliceH, uint8_t *dst[],
  394. int dstStride[])
  395. {
  396. const enum AVPixelFormat srcFormat = c->srcFormat;
  397. const enum AVPixelFormat dstFormat = c->dstFormat;
  398. void (*conv)(const uint8_t *src, uint8_t *dst, int num_pixels,
  399. const uint8_t *palette) = NULL;
  400. int i;
  401. uint8_t *dstPtr = dst[0] + dstStride[0] * srcSliceY;
  402. const uint8_t *srcPtr = src[0];
  403. if (srcFormat == AV_PIX_FMT_YA8) {
  404. switch (dstFormat) {
  405. case AV_PIX_FMT_RGB32 : conv = gray8aToPacked32; break;
  406. case AV_PIX_FMT_BGR32 : conv = gray8aToPacked32; break;
  407. case AV_PIX_FMT_BGR32_1: conv = gray8aToPacked32_1; break;
  408. case AV_PIX_FMT_RGB32_1: conv = gray8aToPacked32_1; break;
  409. case AV_PIX_FMT_RGB24 : conv = gray8aToPacked24; break;
  410. case AV_PIX_FMT_BGR24 : conv = gray8aToPacked24; break;
  411. }
  412. } else if (usePal(srcFormat)) {
  413. switch (dstFormat) {
  414. case AV_PIX_FMT_RGB32 : conv = sws_convertPalette8ToPacked32; break;
  415. case AV_PIX_FMT_BGR32 : conv = sws_convertPalette8ToPacked32; break;
  416. case AV_PIX_FMT_BGR32_1: conv = sws_convertPalette8ToPacked32; break;
  417. case AV_PIX_FMT_RGB32_1: conv = sws_convertPalette8ToPacked32; break;
  418. case AV_PIX_FMT_RGB24 : conv = sws_convertPalette8ToPacked24; break;
  419. case AV_PIX_FMT_BGR24 : conv = sws_convertPalette8ToPacked24; break;
  420. }
  421. }
  422. if (!conv)
  423. av_log(c, AV_LOG_ERROR, "internal error %s -> %s converter\n",
  424. av_get_pix_fmt_name(srcFormat), av_get_pix_fmt_name(dstFormat));
  425. else {
  426. for (i = 0; i < srcSliceH; i++) {
  427. conv(srcPtr, dstPtr, c->srcW, (uint8_t *) c->pal_rgb);
  428. srcPtr += srcStride[0];
  429. dstPtr += dstStride[0];
  430. }
  431. }
  432. return srcSliceH;
  433. }
  434. static void packed16togbra16(const uint8_t *src, int srcStride,
  435. uint16_t *dst[], int dstStride[], int srcSliceH,
  436. int src_alpha, int swap, int shift, int width)
  437. {
  438. int x, h, i;
  439. int dst_alpha = dst[3] != NULL;
  440. for (h = 0; h < srcSliceH; h++) {
  441. uint16_t *src_line = (uint16_t *)(src + srcStride * h);
  442. switch (swap) {
  443. case 3:
  444. if (src_alpha && dst_alpha) {
  445. for (x = 0; x < width; x++) {
  446. dst[0][x] = av_bswap16(av_bswap16(*src_line++) >> shift);
  447. dst[1][x] = av_bswap16(av_bswap16(*src_line++) >> shift);
  448. dst[2][x] = av_bswap16(av_bswap16(*src_line++) >> shift);
  449. dst[3][x] = av_bswap16(av_bswap16(*src_line++) >> shift);
  450. }
  451. } else if (dst_alpha) {
  452. for (x = 0; x < width; x++) {
  453. dst[0][x] = av_bswap16(av_bswap16(*src_line++) >> shift);
  454. dst[1][x] = av_bswap16(av_bswap16(*src_line++) >> shift);
  455. dst[2][x] = av_bswap16(av_bswap16(*src_line++) >> shift);
  456. dst[3][x] = 0xFFFF;
  457. }
  458. } else if (src_alpha) {
  459. for (x = 0; x < width; x++) {
  460. dst[0][x] = av_bswap16(av_bswap16(*src_line++) >> shift);
  461. dst[1][x] = av_bswap16(av_bswap16(*src_line++) >> shift);
  462. dst[2][x] = av_bswap16(av_bswap16(*src_line++) >> shift);
  463. src_line++;
  464. }
  465. } else {
  466. for (x = 0; x < width; x++) {
  467. dst[0][x] = av_bswap16(av_bswap16(*src_line++) >> shift);
  468. dst[1][x] = av_bswap16(av_bswap16(*src_line++) >> shift);
  469. dst[2][x] = av_bswap16(av_bswap16(*src_line++) >> shift);
  470. }
  471. }
  472. break;
  473. case 2:
  474. if (src_alpha && dst_alpha) {
  475. for (x = 0; x < width; x++) {
  476. dst[0][x] = av_bswap16(*src_line++ >> shift);
  477. dst[1][x] = av_bswap16(*src_line++ >> shift);
  478. dst[2][x] = av_bswap16(*src_line++ >> shift);
  479. dst[3][x] = av_bswap16(*src_line++ >> shift);
  480. }
  481. } else if (dst_alpha) {
  482. for (x = 0; x < width; x++) {
  483. dst[0][x] = av_bswap16(*src_line++ >> shift);
  484. dst[1][x] = av_bswap16(*src_line++ >> shift);
  485. dst[2][x] = av_bswap16(*src_line++ >> shift);
  486. dst[3][x] = 0xFFFF;
  487. }
  488. } else if (src_alpha) {
  489. for (x = 0; x < width; x++) {
  490. dst[0][x] = av_bswap16(*src_line++ >> shift);
  491. dst[1][x] = av_bswap16(*src_line++ >> shift);
  492. dst[2][x] = av_bswap16(*src_line++ >> shift);
  493. src_line++;
  494. }
  495. } else {
  496. for (x = 0; x < width; x++) {
  497. dst[0][x] = av_bswap16(*src_line++ >> shift);
  498. dst[1][x] = av_bswap16(*src_line++ >> shift);
  499. dst[2][x] = av_bswap16(*src_line++ >> shift);
  500. }
  501. }
  502. break;
  503. case 1:
  504. if (src_alpha && dst_alpha) {
  505. for (x = 0; x < width; x++) {
  506. dst[0][x] = av_bswap16(*src_line++) >> shift;
  507. dst[1][x] = av_bswap16(*src_line++) >> shift;
  508. dst[2][x] = av_bswap16(*src_line++) >> shift;
  509. dst[3][x] = av_bswap16(*src_line++) >> shift;
  510. }
  511. } else if (dst_alpha) {
  512. for (x = 0; x < width; x++) {
  513. dst[0][x] = av_bswap16(*src_line++) >> shift;
  514. dst[1][x] = av_bswap16(*src_line++) >> shift;
  515. dst[2][x] = av_bswap16(*src_line++) >> shift;
  516. dst[3][x] = 0xFFFF;
  517. }
  518. } else if (src_alpha) {
  519. for (x = 0; x < width; x++) {
  520. dst[0][x] = av_bswap16(*src_line++) >> shift;
  521. dst[1][x] = av_bswap16(*src_line++) >> shift;
  522. dst[2][x] = av_bswap16(*src_line++) >> shift;
  523. src_line++;
  524. }
  525. } else {
  526. for (x = 0; x < width; x++) {
  527. dst[0][x] = av_bswap16(*src_line++) >> shift;
  528. dst[1][x] = av_bswap16(*src_line++) >> shift;
  529. dst[2][x] = av_bswap16(*src_line++) >> shift;
  530. }
  531. }
  532. break;
  533. default:
  534. if (src_alpha && dst_alpha) {
  535. for (x = 0; x < width; x++) {
  536. dst[0][x] = *src_line++ >> shift;
  537. dst[1][x] = *src_line++ >> shift;
  538. dst[2][x] = *src_line++ >> shift;
  539. dst[3][x] = *src_line++ >> shift;
  540. }
  541. } else if (dst_alpha) {
  542. for (x = 0; x < width; x++) {
  543. dst[0][x] = *src_line++ >> shift;
  544. dst[1][x] = *src_line++ >> shift;
  545. dst[2][x] = *src_line++ >> shift;
  546. dst[3][x] = 0xFFFF;
  547. }
  548. } else if (src_alpha) {
  549. for (x = 0; x < width; x++) {
  550. dst[0][x] = *src_line++ >> shift;
  551. dst[1][x] = *src_line++ >> shift;
  552. dst[2][x] = *src_line++ >> shift;
  553. src_line++;
  554. }
  555. } else {
  556. for (x = 0; x < width; x++) {
  557. dst[0][x] = *src_line++ >> shift;
  558. dst[1][x] = *src_line++ >> shift;
  559. dst[2][x] = *src_line++ >> shift;
  560. }
  561. }
  562. }
  563. for (i = 0; i < 4; i++)
  564. dst[i] += dstStride[i] >> 1;
  565. }
  566. }
  567. static int Rgb16ToPlanarRgb16Wrapper(SwsContext *c, const uint8_t *src[],
  568. int srcStride[], int srcSliceY, int srcSliceH,
  569. uint8_t *dst[], int dstStride[])
  570. {
  571. uint16_t *dst2013[] = { (uint16_t *)dst[2], (uint16_t *)dst[0], (uint16_t *)dst[1], (uint16_t *)dst[3] };
  572. uint16_t *dst1023[] = { (uint16_t *)dst[1], (uint16_t *)dst[0], (uint16_t *)dst[2], (uint16_t *)dst[3] };
  573. int stride2013[] = { dstStride[2], dstStride[0], dstStride[1], dstStride[3] };
  574. int stride1023[] = { dstStride[1], dstStride[0], dstStride[2], dstStride[3] };
  575. const AVPixFmtDescriptor *src_format = av_pix_fmt_desc_get(c->srcFormat);
  576. const AVPixFmtDescriptor *dst_format = av_pix_fmt_desc_get(c->dstFormat);
  577. int bpc = dst_format->comp[0].depth;
  578. int alpha = src_format->flags & AV_PIX_FMT_FLAG_ALPHA;
  579. int swap = 0;
  580. int i;
  581. if ( HAVE_BIGENDIAN && !(src_format->flags & AV_PIX_FMT_FLAG_BE) ||
  582. !HAVE_BIGENDIAN && src_format->flags & AV_PIX_FMT_FLAG_BE)
  583. swap++;
  584. if ( HAVE_BIGENDIAN && !(dst_format->flags & AV_PIX_FMT_FLAG_BE) ||
  585. !HAVE_BIGENDIAN && dst_format->flags & AV_PIX_FMT_FLAG_BE)
  586. swap += 2;
  587. if ((dst_format->flags & (AV_PIX_FMT_FLAG_PLANAR | AV_PIX_FMT_FLAG_RGB)) !=
  588. (AV_PIX_FMT_FLAG_PLANAR | AV_PIX_FMT_FLAG_RGB) || bpc < 9) {
  589. av_log(c, AV_LOG_ERROR, "unsupported conversion to planar RGB %s -> %s\n",
  590. src_format->name, dst_format->name);
  591. return srcSliceH;
  592. }
  593. for(i=0; i<4; i++) {
  594. dst2013[i] += stride2013[i] * srcSliceY / 2;
  595. dst1023[i] += stride1023[i] * srcSliceY / 2;
  596. }
  597. switch (c->srcFormat) {
  598. case AV_PIX_FMT_RGB48LE:
  599. case AV_PIX_FMT_RGB48BE:
  600. case AV_PIX_FMT_RGBA64LE:
  601. case AV_PIX_FMT_RGBA64BE:
  602. packed16togbra16(src[0], srcStride[0],
  603. dst2013, stride2013, srcSliceH, alpha, swap,
  604. 16 - bpc, c->srcW);
  605. break;
  606. case AV_PIX_FMT_BGR48LE:
  607. case AV_PIX_FMT_BGR48BE:
  608. case AV_PIX_FMT_BGRA64LE:
  609. case AV_PIX_FMT_BGRA64BE:
  610. packed16togbra16(src[0], srcStride[0],
  611. dst1023, stride1023, srcSliceH, alpha, swap,
  612. 16 - bpc, c->srcW);
  613. break;
  614. default:
  615. av_log(c, AV_LOG_ERROR,
  616. "unsupported conversion to planar RGB %s -> %s\n",
  617. src_format->name, dst_format->name);
  618. }
  619. return srcSliceH;
  620. }
  621. static void gbr16ptopacked16(const uint16_t *src[], int srcStride[],
  622. uint8_t *dst, int dstStride, int srcSliceH,
  623. int alpha, int swap, int bpp, int width)
  624. {
  625. int x, h, i;
  626. int src_alpha = src[3] != NULL;
  627. int scale_high = 16 - bpp, scale_low = (bpp - 8) * 2;
  628. for (h = 0; h < srcSliceH; h++) {
  629. uint16_t *dest = (uint16_t *)(dst + dstStride * h);
  630. uint16_t component;
  631. switch(swap) {
  632. case 3:
  633. if (alpha && !src_alpha) {
  634. for (x = 0; x < width; x++) {
  635. component = av_bswap16(src[0][x]);
  636. *dest++ = av_bswap16(component << scale_high | component >> scale_low);
  637. component = av_bswap16(src[1][x]);
  638. *dest++ = av_bswap16(component << scale_high | component >> scale_low);
  639. component = av_bswap16(src[2][x]);
  640. *dest++ = av_bswap16(component << scale_high | component >> scale_low);
  641. *dest++ = 0xffff;
  642. }
  643. } else if (alpha && src_alpha) {
  644. for (x = 0; x < width; x++) {
  645. component = av_bswap16(src[0][x]);
  646. *dest++ = av_bswap16(component << scale_high | component >> scale_low);
  647. component = av_bswap16(src[1][x]);
  648. *dest++ = av_bswap16(component << scale_high | component >> scale_low);
  649. component = av_bswap16(src[2][x]);
  650. *dest++ = av_bswap16(component << scale_high | component >> scale_low);
  651. component = av_bswap16(src[3][x]);
  652. *dest++ = av_bswap16(component << scale_high | component >> scale_low);
  653. }
  654. } else {
  655. for (x = 0; x < width; x++) {
  656. component = av_bswap16(src[0][x]);
  657. *dest++ = av_bswap16(component << scale_high | component >> scale_low);
  658. component = av_bswap16(src[1][x]);
  659. *dest++ = av_bswap16(component << scale_high | component >> scale_low);
  660. component = av_bswap16(src[2][x]);
  661. *dest++ = av_bswap16(component << scale_high | component >> scale_low);
  662. }
  663. }
  664. break;
  665. case 2:
  666. if (alpha && !src_alpha) {
  667. for (x = 0; x < width; x++) {
  668. *dest++ = av_bswap16(src[0][x] << scale_high | src[0][x] >> scale_low);
  669. *dest++ = av_bswap16(src[1][x] << scale_high | src[1][x] >> scale_low);
  670. *dest++ = av_bswap16(src[2][x] << scale_high | src[2][x] >> scale_low);
  671. *dest++ = 0xffff;
  672. }
  673. } else if (alpha && src_alpha) {
  674. for (x = 0; x < width; x++) {
  675. *dest++ = av_bswap16(src[0][x] << scale_high | src[0][x] >> scale_low);
  676. *dest++ = av_bswap16(src[1][x] << scale_high | src[1][x] >> scale_low);
  677. *dest++ = av_bswap16(src[2][x] << scale_high | src[2][x] >> scale_low);
  678. *dest++ = av_bswap16(src[3][x] << scale_high | src[3][x] >> scale_low);
  679. }
  680. } else {
  681. for (x = 0; x < width; x++) {
  682. *dest++ = av_bswap16(src[0][x] << scale_high | src[0][x] >> scale_low);
  683. *dest++ = av_bswap16(src[1][x] << scale_high | src[1][x] >> scale_low);
  684. *dest++ = av_bswap16(src[2][x] << scale_high | src[2][x] >> scale_low);
  685. }
  686. }
  687. break;
  688. case 1:
  689. if (alpha && !src_alpha) {
  690. for (x = 0; x < width; x++) {
  691. *dest++ = av_bswap16(src[0][x]) << scale_high | av_bswap16(src[0][x]) >> scale_low;
  692. *dest++ = av_bswap16(src[1][x]) << scale_high | av_bswap16(src[1][x]) >> scale_low;
  693. *dest++ = av_bswap16(src[2][x]) << scale_high | av_bswap16(src[2][x]) >> scale_low;
  694. *dest++ = 0xffff;
  695. }
  696. } else if (alpha && src_alpha) {
  697. for (x = 0; x < width; x++) {
  698. *dest++ = av_bswap16(src[0][x]) << scale_high | av_bswap16(src[0][x]) >> scale_low;
  699. *dest++ = av_bswap16(src[1][x]) << scale_high | av_bswap16(src[1][x]) >> scale_low;
  700. *dest++ = av_bswap16(src[2][x]) << scale_high | av_bswap16(src[2][x]) >> scale_low;
  701. *dest++ = av_bswap16(src[3][x]) << scale_high | av_bswap16(src[3][x]) >> scale_low;
  702. }
  703. } else {
  704. for (x = 0; x < width; x++) {
  705. *dest++ = av_bswap16(src[0][x]) << scale_high | av_bswap16(src[0][x]) >> scale_low;
  706. *dest++ = av_bswap16(src[1][x]) << scale_high | av_bswap16(src[1][x]) >> scale_low;
  707. *dest++ = av_bswap16(src[2][x]) << scale_high | av_bswap16(src[2][x]) >> scale_low;
  708. }
  709. }
  710. break;
  711. default:
  712. if (alpha && !src_alpha) {
  713. for (x = 0; x < width; x++) {
  714. *dest++ = src[0][x] << scale_high | src[0][x] >> scale_low;
  715. *dest++ = src[1][x] << scale_high | src[1][x] >> scale_low;
  716. *dest++ = src[2][x] << scale_high | src[2][x] >> scale_low;
  717. *dest++ = 0xffff;
  718. }
  719. } else if (alpha && src_alpha) {
  720. for (x = 0; x < width; x++) {
  721. *dest++ = src[0][x] << scale_high | src[0][x] >> scale_low;
  722. *dest++ = src[1][x] << scale_high | src[1][x] >> scale_low;
  723. *dest++ = src[2][x] << scale_high | src[2][x] >> scale_low;
  724. *dest++ = src[3][x] << scale_high | src[3][x] >> scale_low;
  725. }
  726. } else {
  727. for (x = 0; x < width; x++) {
  728. *dest++ = src[0][x] << scale_high | src[0][x] >> scale_low;
  729. *dest++ = src[1][x] << scale_high | src[1][x] >> scale_low;
  730. *dest++ = src[2][x] << scale_high | src[2][x] >> scale_low;
  731. }
  732. }
  733. }
  734. for (i = 0; i < 3 + src_alpha; i++)
  735. src[i] += srcStride[i] >> 1;
  736. }
  737. }
  738. static int planarRgb16ToRgb16Wrapper(SwsContext *c, const uint8_t *src[],
  739. int srcStride[], int srcSliceY, int srcSliceH,
  740. uint8_t *dst[], int dstStride[])
  741. {
  742. const uint16_t *src102[] = { (uint16_t *)src[1], (uint16_t *)src[0], (uint16_t *)src[2], (uint16_t *)src[3] };
  743. const uint16_t *src201[] = { (uint16_t *)src[2], (uint16_t *)src[0], (uint16_t *)src[1], (uint16_t *)src[3] };
  744. int stride102[] = { srcStride[1], srcStride[0], srcStride[2], srcStride[3] };
  745. int stride201[] = { srcStride[2], srcStride[0], srcStride[1], srcStride[3] };
  746. const AVPixFmtDescriptor *src_format = av_pix_fmt_desc_get(c->srcFormat);
  747. const AVPixFmtDescriptor *dst_format = av_pix_fmt_desc_get(c->dstFormat);
  748. int bits_per_sample = src_format->comp[0].depth;
  749. int swap = 0;
  750. if ( HAVE_BIGENDIAN && !(src_format->flags & AV_PIX_FMT_FLAG_BE) ||
  751. !HAVE_BIGENDIAN && src_format->flags & AV_PIX_FMT_FLAG_BE)
  752. swap++;
  753. if ( HAVE_BIGENDIAN && !(dst_format->flags & AV_PIX_FMT_FLAG_BE) ||
  754. !HAVE_BIGENDIAN && dst_format->flags & AV_PIX_FMT_FLAG_BE)
  755. swap += 2;
  756. if ((src_format->flags & (AV_PIX_FMT_FLAG_PLANAR | AV_PIX_FMT_FLAG_RGB)) !=
  757. (AV_PIX_FMT_FLAG_PLANAR | AV_PIX_FMT_FLAG_RGB) ||
  758. bits_per_sample <= 8) {
  759. av_log(c, AV_LOG_ERROR, "unsupported planar RGB conversion %s -> %s\n",
  760. src_format->name, dst_format->name);
  761. return srcSliceH;
  762. }
  763. switch (c->dstFormat) {
  764. case AV_PIX_FMT_BGR48LE:
  765. case AV_PIX_FMT_BGR48BE:
  766. gbr16ptopacked16(src102, stride102,
  767. dst[0] + srcSliceY * dstStride[0], dstStride[0],
  768. srcSliceH, 0, swap, bits_per_sample, c->srcW);
  769. break;
  770. case AV_PIX_FMT_RGB48LE:
  771. case AV_PIX_FMT_RGB48BE:
  772. gbr16ptopacked16(src201, stride201,
  773. dst[0] + srcSliceY * dstStride[0], dstStride[0],
  774. srcSliceH, 0, swap, bits_per_sample, c->srcW);
  775. break;
  776. case AV_PIX_FMT_RGBA64LE:
  777. case AV_PIX_FMT_RGBA64BE:
  778. gbr16ptopacked16(src201, stride201,
  779. dst[0] + srcSliceY * dstStride[0], dstStride[0],
  780. srcSliceH, 1, swap, bits_per_sample, c->srcW);
  781. break;
  782. case AV_PIX_FMT_BGRA64LE:
  783. case AV_PIX_FMT_BGRA64BE:
  784. gbr16ptopacked16(src102, stride102,
  785. dst[0] + srcSliceY * dstStride[0], dstStride[0],
  786. srcSliceH, 1, swap, bits_per_sample, c->srcW);
  787. break;
  788. default:
  789. av_log(c, AV_LOG_ERROR,
  790. "unsupported planar RGB conversion %s -> %s\n",
  791. src_format->name, dst_format->name);
  792. }
  793. return srcSliceH;
  794. }
  795. static void gbr24ptopacked24(const uint8_t *src[], int srcStride[],
  796. uint8_t *dst, int dstStride, int srcSliceH,
  797. int width)
  798. {
  799. int x, h, i;
  800. for (h = 0; h < srcSliceH; h++) {
  801. uint8_t *dest = dst + dstStride * h;
  802. for (x = 0; x < width; x++) {
  803. *dest++ = src[0][x];
  804. *dest++ = src[1][x];
  805. *dest++ = src[2][x];
  806. }
  807. for (i = 0; i < 3; i++)
  808. src[i] += srcStride[i];
  809. }
  810. }
  811. static void gbr24ptopacked32(const uint8_t *src[], int srcStride[],
  812. uint8_t *dst, int dstStride, int srcSliceH,
  813. int alpha_first, int width)
  814. {
  815. int x, h, i;
  816. for (h = 0; h < srcSliceH; h++) {
  817. uint8_t *dest = dst + dstStride * h;
  818. if (alpha_first) {
  819. for (x = 0; x < width; x++) {
  820. *dest++ = 0xff;
  821. *dest++ = src[0][x];
  822. *dest++ = src[1][x];
  823. *dest++ = src[2][x];
  824. }
  825. } else {
  826. for (x = 0; x < width; x++) {
  827. *dest++ = src[0][x];
  828. *dest++ = src[1][x];
  829. *dest++ = src[2][x];
  830. *dest++ = 0xff;
  831. }
  832. }
  833. for (i = 0; i < 3; i++)
  834. src[i] += srcStride[i];
  835. }
  836. }
  837. static int planarRgbToRgbWrapper(SwsContext *c, const uint8_t *src[],
  838. int srcStride[], int srcSliceY, int srcSliceH,
  839. uint8_t *dst[], int dstStride[])
  840. {
  841. int alpha_first = 0;
  842. const uint8_t *src102[] = { src[1], src[0], src[2] };
  843. const uint8_t *src201[] = { src[2], src[0], src[1] };
  844. int stride102[] = { srcStride[1], srcStride[0], srcStride[2] };
  845. int stride201[] = { srcStride[2], srcStride[0], srcStride[1] };
  846. if (c->srcFormat != AV_PIX_FMT_GBRP) {
  847. av_log(c, AV_LOG_ERROR, "unsupported planar RGB conversion %s -> %s\n",
  848. av_get_pix_fmt_name(c->srcFormat),
  849. av_get_pix_fmt_name(c->dstFormat));
  850. return srcSliceH;
  851. }
  852. switch (c->dstFormat) {
  853. case AV_PIX_FMT_BGR24:
  854. gbr24ptopacked24(src102, stride102,
  855. dst[0] + srcSliceY * dstStride[0], dstStride[0],
  856. srcSliceH, c->srcW);
  857. break;
  858. case AV_PIX_FMT_RGB24:
  859. gbr24ptopacked24(src201, stride201,
  860. dst[0] + srcSliceY * dstStride[0], dstStride[0],
  861. srcSliceH, c->srcW);
  862. break;
  863. case AV_PIX_FMT_ARGB:
  864. alpha_first = 1;
  865. case AV_PIX_FMT_RGBA:
  866. gbr24ptopacked32(src201, stride201,
  867. dst[0] + srcSliceY * dstStride[0], dstStride[0],
  868. srcSliceH, alpha_first, c->srcW);
  869. break;
  870. case AV_PIX_FMT_ABGR:
  871. alpha_first = 1;
  872. case AV_PIX_FMT_BGRA:
  873. gbr24ptopacked32(src102, stride102,
  874. dst[0] + srcSliceY * dstStride[0], dstStride[0],
  875. srcSliceH, alpha_first, c->srcW);
  876. break;
  877. default:
  878. av_log(c, AV_LOG_ERROR,
  879. "unsupported planar RGB conversion %s -> %s\n",
  880. av_get_pix_fmt_name(c->srcFormat),
  881. av_get_pix_fmt_name(c->dstFormat));
  882. }
  883. return srcSliceH;
  884. }
  885. static int planarRgbToplanarRgbWrapper(SwsContext *c,
  886. const uint8_t *src[], int srcStride[],
  887. int srcSliceY, int srcSliceH,
  888. uint8_t *dst[], int dstStride[])
  889. {
  890. copyPlane(src[0], srcStride[0], srcSliceY, srcSliceH, c->srcW,
  891. dst[0], dstStride[0]);
  892. copyPlane(src[1], srcStride[1], srcSliceY, srcSliceH, c->srcW,
  893. dst[1], dstStride[1]);
  894. copyPlane(src[2], srcStride[2], srcSliceY, srcSliceH, c->srcW,
  895. dst[2], dstStride[2]);
  896. if (dst[3])
  897. fillPlane(dst[3], dstStride[3], c->srcW, srcSliceH, srcSliceY, 255);
  898. return srcSliceH;
  899. }
  900. static void packedtogbr24p(const uint8_t *src, int srcStride,
  901. uint8_t *dst[], int dstStride[], int srcSliceH,
  902. int alpha_first, int inc_size, int width)
  903. {
  904. uint8_t *dest[3];
  905. int x, h;
  906. dest[0] = dst[0];
  907. dest[1] = dst[1];
  908. dest[2] = dst[2];
  909. if (alpha_first)
  910. src++;
  911. for (h = 0; h < srcSliceH; h++) {
  912. for (x = 0; x < width; x++) {
  913. dest[0][x] = src[0];
  914. dest[1][x] = src[1];
  915. dest[2][x] = src[2];
  916. src += inc_size;
  917. }
  918. src += srcStride - width * inc_size;
  919. dest[0] += dstStride[0];
  920. dest[1] += dstStride[1];
  921. dest[2] += dstStride[2];
  922. }
  923. }
  924. static int rgbToPlanarRgbWrapper(SwsContext *c, const uint8_t *src[],
  925. int srcStride[], int srcSliceY, int srcSliceH,
  926. uint8_t *dst[], int dstStride[])
  927. {
  928. int alpha_first = 0;
  929. int stride102[] = { dstStride[1], dstStride[0], dstStride[2] };
  930. int stride201[] = { dstStride[2], dstStride[0], dstStride[1] };
  931. uint8_t *dst102[] = { dst[1] + srcSliceY * dstStride[1],
  932. dst[0] + srcSliceY * dstStride[0],
  933. dst[2] + srcSliceY * dstStride[2] };
  934. uint8_t *dst201[] = { dst[2] + srcSliceY * dstStride[2],
  935. dst[0] + srcSliceY * dstStride[0],
  936. dst[1] + srcSliceY * dstStride[1] };
  937. switch (c->srcFormat) {
  938. case AV_PIX_FMT_RGB24:
  939. packedtogbr24p((const uint8_t *) src[0], srcStride[0], dst201,
  940. stride201, srcSliceH, alpha_first, 3, c->srcW);
  941. break;
  942. case AV_PIX_FMT_BGR24:
  943. packedtogbr24p((const uint8_t *) src[0], srcStride[0], dst102,
  944. stride102, srcSliceH, alpha_first, 3, c->srcW);
  945. break;
  946. case AV_PIX_FMT_ARGB:
  947. alpha_first = 1;
  948. case AV_PIX_FMT_RGBA:
  949. packedtogbr24p((const uint8_t *) src[0], srcStride[0], dst201,
  950. stride201, srcSliceH, alpha_first, 4, c->srcW);
  951. break;
  952. case AV_PIX_FMT_ABGR:
  953. alpha_first = 1;
  954. case AV_PIX_FMT_BGRA:
  955. packedtogbr24p((const uint8_t *) src[0], srcStride[0], dst102,
  956. stride102, srcSliceH, alpha_first, 4, c->srcW);
  957. break;
  958. default:
  959. av_log(c, AV_LOG_ERROR,
  960. "unsupported planar RGB conversion %s -> %s\n",
  961. av_get_pix_fmt_name(c->srcFormat),
  962. av_get_pix_fmt_name(c->dstFormat));
  963. }
  964. return srcSliceH;
  965. }
  966. #define BAYER_GBRG
  967. #define BAYER_8
  968. #define BAYER_RENAME(x) bayer_gbrg8_to_##x
  969. #include "bayer_template.c"
  970. #define BAYER_GBRG
  971. #define BAYER_16LE
  972. #define BAYER_RENAME(x) bayer_gbrg16le_to_##x
  973. #include "bayer_template.c"
  974. #define BAYER_GBRG
  975. #define BAYER_16BE
  976. #define BAYER_RENAME(x) bayer_gbrg16be_to_##x
  977. #include "bayer_template.c"
  978. #define BAYER_GRBG
  979. #define BAYER_8
  980. #define BAYER_RENAME(x) bayer_grbg8_to_##x
  981. #include "bayer_template.c"
  982. #define BAYER_GRBG
  983. #define BAYER_16LE
  984. #define BAYER_RENAME(x) bayer_grbg16le_to_##x
  985. #include "bayer_template.c"
  986. #define BAYER_GRBG
  987. #define BAYER_16BE
  988. #define BAYER_RENAME(x) bayer_grbg16be_to_##x
  989. #include "bayer_template.c"
  990. #define BAYER_BGGR
  991. #define BAYER_8
  992. #define BAYER_RENAME(x) bayer_bggr8_to_##x
  993. #include "bayer_template.c"
  994. #define BAYER_BGGR
  995. #define BAYER_16LE
  996. #define BAYER_RENAME(x) bayer_bggr16le_to_##x
  997. #include "bayer_template.c"
  998. #define BAYER_BGGR
  999. #define BAYER_16BE
  1000. #define BAYER_RENAME(x) bayer_bggr16be_to_##x
  1001. #include "bayer_template.c"
  1002. #define BAYER_RGGB
  1003. #define BAYER_8
  1004. #define BAYER_RENAME(x) bayer_rggb8_to_##x
  1005. #include "bayer_template.c"
  1006. #define BAYER_RGGB
  1007. #define BAYER_16LE
  1008. #define BAYER_RENAME(x) bayer_rggb16le_to_##x
  1009. #include "bayer_template.c"
  1010. #define BAYER_RGGB
  1011. #define BAYER_16BE
  1012. #define BAYER_RENAME(x) bayer_rggb16be_to_##x
  1013. #include "bayer_template.c"
  1014. static int bayer_to_rgb24_wrapper(SwsContext *c, const uint8_t* src[], int srcStride[], int srcSliceY,
  1015. int srcSliceH, uint8_t* dst[], int dstStride[])
  1016. {
  1017. uint8_t *dstPtr= dst[0] + srcSliceY * dstStride[0];
  1018. const uint8_t *srcPtr= src[0];
  1019. int i;
  1020. void (*copy) (const uint8_t *src, int src_stride, uint8_t *dst, int dst_stride, int width);
  1021. void (*interpolate)(const uint8_t *src, int src_stride, uint8_t *dst, int dst_stride, int width);
  1022. switch(c->srcFormat) {
  1023. #define CASE(pixfmt, prefix) \
  1024. case pixfmt: copy = bayer_##prefix##_to_rgb24_copy; \
  1025. interpolate = bayer_##prefix##_to_rgb24_interpolate; \
  1026. break;
  1027. CASE(AV_PIX_FMT_BAYER_BGGR8, bggr8)
  1028. CASE(AV_PIX_FMT_BAYER_BGGR16LE, bggr16le)
  1029. CASE(AV_PIX_FMT_BAYER_BGGR16BE, bggr16be)
  1030. CASE(AV_PIX_FMT_BAYER_RGGB8, rggb8)
  1031. CASE(AV_PIX_FMT_BAYER_RGGB16LE, rggb16le)
  1032. CASE(AV_PIX_FMT_BAYER_RGGB16BE, rggb16be)
  1033. CASE(AV_PIX_FMT_BAYER_GBRG8, gbrg8)
  1034. CASE(AV_PIX_FMT_BAYER_GBRG16LE, gbrg16le)
  1035. CASE(AV_PIX_FMT_BAYER_GBRG16BE, gbrg16be)
  1036. CASE(AV_PIX_FMT_BAYER_GRBG8, grbg8)
  1037. CASE(AV_PIX_FMT_BAYER_GRBG16LE, grbg16le)
  1038. CASE(AV_PIX_FMT_BAYER_GRBG16BE, grbg16be)
  1039. #undef CASE
  1040. default: return 0;
  1041. }
  1042. av_assert0(srcSliceH > 1);
  1043. copy(srcPtr, srcStride[0], dstPtr, dstStride[0], c->srcW);
  1044. srcPtr += 2 * srcStride[0];
  1045. dstPtr += 2 * dstStride[0];
  1046. for (i = 2; i < srcSliceH - 2; i += 2) {
  1047. interpolate(srcPtr, srcStride[0], dstPtr, dstStride[0], c->srcW);
  1048. srcPtr += 2 * srcStride[0];
  1049. dstPtr += 2 * dstStride[0];
  1050. }
  1051. if (i + 1 == srcSliceH) {
  1052. copy(srcPtr, -srcStride[0], dstPtr, -dstStride[0], c->srcW);
  1053. } else if (i < srcSliceH)
  1054. copy(srcPtr, srcStride[0], dstPtr, dstStride[0], c->srcW);
  1055. return srcSliceH;
  1056. }
  1057. static int bayer_to_yv12_wrapper(SwsContext *c, const uint8_t* src[], int srcStride[], int srcSliceY,
  1058. int srcSliceH, uint8_t* dst[], int dstStride[])
  1059. {
  1060. const uint8_t *srcPtr= src[0];
  1061. uint8_t *dstY= dst[0] + srcSliceY * dstStride[0];
  1062. uint8_t *dstU= dst[1] + srcSliceY * dstStride[1] / 2;
  1063. uint8_t *dstV= dst[2] + srcSliceY * dstStride[2] / 2;
  1064. int i;
  1065. void (*copy) (const uint8_t *src, int src_stride, uint8_t *dstY, uint8_t *dstU, uint8_t *dstV, int luma_stride, int width, int32_t *rgb2yuv);
  1066. void (*interpolate)(const uint8_t *src, int src_stride, uint8_t *dstY, uint8_t *dstU, uint8_t *dstV, int luma_stride, int width, int32_t *rgb2yuv);
  1067. switch(c->srcFormat) {
  1068. #define CASE(pixfmt, prefix) \
  1069. case pixfmt: copy = bayer_##prefix##_to_yv12_copy; \
  1070. interpolate = bayer_##prefix##_to_yv12_interpolate; \
  1071. break;
  1072. CASE(AV_PIX_FMT_BAYER_BGGR8, bggr8)
  1073. CASE(AV_PIX_FMT_BAYER_BGGR16LE, bggr16le)
  1074. CASE(AV_PIX_FMT_BAYER_BGGR16BE, bggr16be)
  1075. CASE(AV_PIX_FMT_BAYER_RGGB8, rggb8)
  1076. CASE(AV_PIX_FMT_BAYER_RGGB16LE, rggb16le)
  1077. CASE(AV_PIX_FMT_BAYER_RGGB16BE, rggb16be)
  1078. CASE(AV_PIX_FMT_BAYER_GBRG8, gbrg8)
  1079. CASE(AV_PIX_FMT_BAYER_GBRG16LE, gbrg16le)
  1080. CASE(AV_PIX_FMT_BAYER_GBRG16BE, gbrg16be)
  1081. CASE(AV_PIX_FMT_BAYER_GRBG8, grbg8)
  1082. CASE(AV_PIX_FMT_BAYER_GRBG16LE, grbg16le)
  1083. CASE(AV_PIX_FMT_BAYER_GRBG16BE, grbg16be)
  1084. #undef CASE
  1085. default: return 0;
  1086. }
  1087. av_assert0(srcSliceH > 1);
  1088. copy(srcPtr, srcStride[0], dstY, dstU, dstV, dstStride[0], c->srcW, c->input_rgb2yuv_table);
  1089. srcPtr += 2 * srcStride[0];
  1090. dstY += 2 * dstStride[0];
  1091. dstU += dstStride[1];
  1092. dstV += dstStride[1];
  1093. for (i = 2; i < srcSliceH - 2; i += 2) {
  1094. interpolate(srcPtr, srcStride[0], dstY, dstU, dstV, dstStride[0], c->srcW, c->input_rgb2yuv_table);
  1095. srcPtr += 2 * srcStride[0];
  1096. dstY += 2 * dstStride[0];
  1097. dstU += dstStride[1];
  1098. dstV += dstStride[1];
  1099. }
  1100. if (i + 1 == srcSliceH) {
  1101. copy(srcPtr, -srcStride[0], dstY, dstU, dstV, -dstStride[0], c->srcW, c->input_rgb2yuv_table);
  1102. } else if (i < srcSliceH)
  1103. copy(srcPtr, srcStride[0], dstY, dstU, dstV, dstStride[0], c->srcW, c->input_rgb2yuv_table);
  1104. return srcSliceH;
  1105. }
  1106. #define isRGBA32(x) ( \
  1107. (x) == AV_PIX_FMT_ARGB \
  1108. || (x) == AV_PIX_FMT_RGBA \
  1109. || (x) == AV_PIX_FMT_BGRA \
  1110. || (x) == AV_PIX_FMT_ABGR \
  1111. )
  1112. #define isRGBA64(x) ( \
  1113. (x) == AV_PIX_FMT_RGBA64LE \
  1114. || (x) == AV_PIX_FMT_RGBA64BE \
  1115. || (x) == AV_PIX_FMT_BGRA64LE \
  1116. || (x) == AV_PIX_FMT_BGRA64BE \
  1117. )
  1118. #define isRGB48(x) ( \
  1119. (x) == AV_PIX_FMT_RGB48LE \
  1120. || (x) == AV_PIX_FMT_RGB48BE \
  1121. || (x) == AV_PIX_FMT_BGR48LE \
  1122. || (x) == AV_PIX_FMT_BGR48BE \
  1123. )
  1124. /* {RGB,BGR}{15,16,24,32,32_1} -> {RGB,BGR}{15,16,24,32} */
  1125. typedef void (* rgbConvFn) (const uint8_t *, uint8_t *, int);
  1126. static rgbConvFn findRgbConvFn(SwsContext *c)
  1127. {
  1128. const enum AVPixelFormat srcFormat = c->srcFormat;
  1129. const enum AVPixelFormat dstFormat = c->dstFormat;
  1130. const int srcId = c->srcFormatBpp;
  1131. const int dstId = c->dstFormatBpp;
  1132. rgbConvFn conv = NULL;
  1133. #define IS_NOT_NE(bpp, desc) \
  1134. (((bpp + 7) >> 3) == 2 && \
  1135. (!(desc->flags & AV_PIX_FMT_FLAG_BE) != !HAVE_BIGENDIAN))
  1136. #define CONV_IS(src, dst) (srcFormat == AV_PIX_FMT_##src && dstFormat == AV_PIX_FMT_##dst)
  1137. if (isRGBA32(srcFormat) && isRGBA32(dstFormat)) {
  1138. if ( CONV_IS(ABGR, RGBA)
  1139. || CONV_IS(ARGB, BGRA)
  1140. || CONV_IS(BGRA, ARGB)
  1141. || CONV_IS(RGBA, ABGR)) conv = shuffle_bytes_3210;
  1142. else if (CONV_IS(ABGR, ARGB)
  1143. || CONV_IS(ARGB, ABGR)) conv = shuffle_bytes_0321;
  1144. else if (CONV_IS(ABGR, BGRA)
  1145. || CONV_IS(ARGB, RGBA)) conv = shuffle_bytes_1230;
  1146. else if (CONV_IS(BGRA, RGBA)
  1147. || CONV_IS(RGBA, BGRA)) conv = shuffle_bytes_2103;
  1148. else if (CONV_IS(BGRA, ABGR)
  1149. || CONV_IS(RGBA, ARGB)) conv = shuffle_bytes_3012;
  1150. } else if (isRGB48(srcFormat) && isRGB48(dstFormat)) {
  1151. if (CONV_IS(RGB48LE, BGR48LE)
  1152. || CONV_IS(BGR48LE, RGB48LE)
  1153. || CONV_IS(RGB48BE, BGR48BE)
  1154. || CONV_IS(BGR48BE, RGB48BE)) conv = rgb48tobgr48_nobswap;
  1155. else if (CONV_IS(RGB48LE, BGR48BE)
  1156. || CONV_IS(BGR48LE, RGB48BE)
  1157. || CONV_IS(RGB48BE, BGR48LE)
  1158. || CONV_IS(BGR48BE, RGB48LE)) conv = rgb48tobgr48_bswap;
  1159. } else if (isRGB48(srcFormat) && isRGBA64(dstFormat)) {
  1160. if (CONV_IS(RGB48LE, BGRA64LE)
  1161. || CONV_IS(BGR48LE, RGBA64LE)
  1162. || CONV_IS(RGB48BE, BGRA64BE)
  1163. || CONV_IS(BGR48BE, RGBA64BE)) conv = rgb48tobgr64_nobswap;
  1164. else if (CONV_IS(RGB48LE, BGRA64BE)
  1165. || CONV_IS(BGR48LE, RGBA64BE)
  1166. || CONV_IS(RGB48BE, BGRA64LE)
  1167. || CONV_IS(BGR48BE, RGBA64LE)) conv = rgb48tobgr64_bswap;
  1168. if (CONV_IS(RGB48LE, RGBA64LE)
  1169. || CONV_IS(BGR48LE, BGRA64LE)
  1170. || CONV_IS(RGB48BE, RGBA64BE)
  1171. || CONV_IS(BGR48BE, BGRA64BE)) conv = rgb48to64_nobswap;
  1172. else if (CONV_IS(RGB48LE, RGBA64BE)
  1173. || CONV_IS(BGR48LE, BGRA64BE)
  1174. || CONV_IS(RGB48BE, RGBA64LE)
  1175. || CONV_IS(BGR48BE, BGRA64LE)) conv = rgb48to64_bswap;
  1176. } else if (isRGBA64(srcFormat) && isRGB48(dstFormat)) {
  1177. if (CONV_IS(RGBA64LE, BGR48LE)
  1178. || CONV_IS(BGRA64LE, RGB48LE)
  1179. || CONV_IS(RGBA64BE, BGR48BE)
  1180. || CONV_IS(BGRA64BE, RGB48BE)) conv = rgb64tobgr48_nobswap;
  1181. else if (CONV_IS(RGBA64LE, BGR48BE)
  1182. || CONV_IS(BGRA64LE, RGB48BE)
  1183. || CONV_IS(RGBA64BE, BGR48LE)
  1184. || CONV_IS(BGRA64BE, RGB48LE)) conv = rgb64tobgr48_bswap;
  1185. else if (CONV_IS(RGBA64LE, RGB48LE)
  1186. || CONV_IS(BGRA64LE, BGR48LE)
  1187. || CONV_IS(RGBA64BE, RGB48BE)
  1188. || CONV_IS(BGRA64BE, BGR48BE)) conv = rgb64to48_nobswap;
  1189. else if (CONV_IS(RGBA64LE, RGB48BE)
  1190. || CONV_IS(BGRA64LE, BGR48BE)
  1191. || CONV_IS(RGBA64BE, RGB48LE)
  1192. || CONV_IS(BGRA64BE, BGR48LE)) conv = rgb64to48_bswap;
  1193. } else
  1194. /* BGR -> BGR */
  1195. if ((isBGRinInt(srcFormat) && isBGRinInt(dstFormat)) ||
  1196. (isRGBinInt(srcFormat) && isRGBinInt(dstFormat))) {
  1197. switch (srcId | (dstId << 16)) {
  1198. case 0x000F000C: conv = rgb12to15; break;
  1199. case 0x000F0010: conv = rgb16to15; break;
  1200. case 0x000F0018: conv = rgb24to15; break;
  1201. case 0x000F0020: conv = rgb32to15; break;
  1202. case 0x0010000F: conv = rgb15to16; break;
  1203. case 0x00100018: conv = rgb24to16; break;
  1204. case 0x00100020: conv = rgb32to16; break;
  1205. case 0x0018000F: conv = rgb15to24; break;
  1206. case 0x00180010: conv = rgb16to24; break;
  1207. case 0x00180020: conv = rgb32to24; break;
  1208. case 0x0020000F: conv = rgb15to32; break;
  1209. case 0x00200010: conv = rgb16to32; break;
  1210. case 0x00200018: conv = rgb24to32; break;
  1211. }
  1212. } else if ((isBGRinInt(srcFormat) && isRGBinInt(dstFormat)) ||
  1213. (isRGBinInt(srcFormat) && isBGRinInt(dstFormat))) {
  1214. switch (srcId | (dstId << 16)) {
  1215. case 0x000C000C: conv = rgb12tobgr12; break;
  1216. case 0x000F000F: conv = rgb15tobgr15; break;
  1217. case 0x000F0010: conv = rgb16tobgr15; break;
  1218. case 0x000F0018: conv = rgb24tobgr15; break;
  1219. case 0x000F0020: conv = rgb32tobgr15; break;
  1220. case 0x0010000F: conv = rgb15tobgr16; break;
  1221. case 0x00100010: conv = rgb16tobgr16; break;
  1222. case 0x00100018: conv = rgb24tobgr16; break;
  1223. case 0x00100020: conv = rgb32tobgr16; break;
  1224. case 0x0018000F: conv = rgb15tobgr24; break;
  1225. case 0x00180010: conv = rgb16tobgr24; break;
  1226. case 0x00180018: conv = rgb24tobgr24; break;
  1227. case 0x00180020: conv = rgb32tobgr24; break;
  1228. case 0x0020000F: conv = rgb15tobgr32; break;
  1229. case 0x00200010: conv = rgb16tobgr32; break;
  1230. case 0x00200018: conv = rgb24tobgr32; break;
  1231. }
  1232. }
  1233. if ((dstFormat == AV_PIX_FMT_RGB32_1 || dstFormat == AV_PIX_FMT_BGR32_1) && !isRGBA32(srcFormat) && ALT32_CORR<0)
  1234. return NULL;
  1235. // Maintain symmetry between endianness
  1236. if (c->flags & SWS_BITEXACT)
  1237. if ((dstFormat == AV_PIX_FMT_RGB32 || dstFormat == AV_PIX_FMT_BGR32 ) && !isRGBA32(srcFormat) && ALT32_CORR>0)
  1238. return NULL;
  1239. return conv;
  1240. }
  1241. /* {RGB,BGR}{15,16,24,32,32_1} -> {RGB,BGR}{15,16,24,32} */
  1242. static int rgbToRgbWrapper(SwsContext *c, const uint8_t *src[], int srcStride[],
  1243. int srcSliceY, int srcSliceH, uint8_t *dst[],
  1244. int dstStride[])
  1245. {
  1246. const enum AVPixelFormat srcFormat = c->srcFormat;
  1247. const enum AVPixelFormat dstFormat = c->dstFormat;
  1248. const AVPixFmtDescriptor *desc_src = av_pix_fmt_desc_get(c->srcFormat);
  1249. const AVPixFmtDescriptor *desc_dst = av_pix_fmt_desc_get(c->dstFormat);
  1250. const int srcBpp = (c->srcFormatBpp + 7) >> 3;
  1251. const int dstBpp = (c->dstFormatBpp + 7) >> 3;
  1252. rgbConvFn conv = findRgbConvFn(c);
  1253. if (!conv) {
  1254. av_log(c, AV_LOG_ERROR, "internal error %s -> %s converter\n",
  1255. av_get_pix_fmt_name(srcFormat), av_get_pix_fmt_name(dstFormat));
  1256. } else {
  1257. const uint8_t *srcPtr = src[0];
  1258. uint8_t *dstPtr = dst[0];
  1259. int src_bswap = IS_NOT_NE(c->srcFormatBpp, desc_src);
  1260. int dst_bswap = IS_NOT_NE(c->dstFormatBpp, desc_dst);
  1261. if ((srcFormat == AV_PIX_FMT_RGB32_1 || srcFormat == AV_PIX_FMT_BGR32_1) &&
  1262. !isRGBA32(dstFormat))
  1263. srcPtr += ALT32_CORR;
  1264. if ((dstFormat == AV_PIX_FMT_RGB32_1 || dstFormat == AV_PIX_FMT_BGR32_1) &&
  1265. !isRGBA32(srcFormat)) {
  1266. int i;
  1267. av_assert0(ALT32_CORR == 1);
  1268. for (i = 0; i < srcSliceH; i++)
  1269. dstPtr[dstStride[0] * (srcSliceY + i)] = 255;
  1270. dstPtr += ALT32_CORR;
  1271. }
  1272. if (dstStride[0] * srcBpp == srcStride[0] * dstBpp && srcStride[0] > 0 &&
  1273. !(srcStride[0] % srcBpp) && !dst_bswap && !src_bswap)
  1274. conv(srcPtr, dstPtr + dstStride[0] * srcSliceY,
  1275. (srcSliceH - 1) * srcStride[0] + c->srcW * srcBpp);
  1276. else {
  1277. int i, j;
  1278. dstPtr += dstStride[0] * srcSliceY;
  1279. for (i = 0; i < srcSliceH; i++) {
  1280. if(src_bswap) {
  1281. for(j=0; j<c->srcW; j++)
  1282. ((uint16_t*)c->formatConvBuffer)[j] = av_bswap16(((uint16_t*)srcPtr)[j]);
  1283. conv(c->formatConvBuffer, dstPtr, c->srcW * srcBpp);
  1284. }else
  1285. conv(srcPtr, dstPtr, c->srcW * srcBpp);
  1286. if(dst_bswap)
  1287. for(j=0; j<c->srcW; j++)
  1288. ((uint16_t*)dstPtr)[j] = av_bswap16(((uint16_t*)dstPtr)[j]);
  1289. srcPtr += srcStride[0];
  1290. dstPtr += dstStride[0];
  1291. }
  1292. }
  1293. }
  1294. return srcSliceH;
  1295. }
  1296. static int bgr24ToYv12Wrapper(SwsContext *c, const uint8_t *src[],
  1297. int srcStride[], int srcSliceY, int srcSliceH,
  1298. uint8_t *dst[], int dstStride[])
  1299. {
  1300. ff_rgb24toyv12(
  1301. src[0],
  1302. dst[0] + srcSliceY * dstStride[0],
  1303. dst[1] + (srcSliceY >> 1) * dstStride[1],
  1304. dst[2] + (srcSliceY >> 1) * dstStride[2],
  1305. c->srcW, srcSliceH,
  1306. dstStride[0], dstStride[1], srcStride[0],
  1307. c->input_rgb2yuv_table);
  1308. if (dst[3])
  1309. fillPlane(dst[3], dstStride[3], c->srcW, srcSliceH, srcSliceY, 255);
  1310. return srcSliceH;
  1311. }
  1312. static int yvu9ToYv12Wrapper(SwsContext *c, const uint8_t *src[],
  1313. int srcStride[], int srcSliceY, int srcSliceH,
  1314. uint8_t *dst[], int dstStride[])
  1315. {
  1316. copyPlane(src[0], srcStride[0], srcSliceY, srcSliceH, c->srcW,
  1317. dst[0], dstStride[0]);
  1318. planar2x(src[1], dst[1] + dstStride[1] * (srcSliceY >> 1), c->chrSrcW,
  1319. srcSliceH >> 2, srcStride[1], dstStride[1]);
  1320. planar2x(src[2], dst[2] + dstStride[2] * (srcSliceY >> 1), c->chrSrcW,
  1321. srcSliceH >> 2, srcStride[2], dstStride[2]);
  1322. if (dst[3])
  1323. fillPlane(dst[3], dstStride[3], c->srcW, srcSliceH, srcSliceY, 255);
  1324. return srcSliceH;
  1325. }
  1326. /* unscaled copy like stuff (assumes nearly identical formats) */
  1327. static int packedCopyWrapper(SwsContext *c, const uint8_t *src[],
  1328. int srcStride[], int srcSliceY, int srcSliceH,
  1329. uint8_t *dst[], int dstStride[])
  1330. {
  1331. if (dstStride[0] == srcStride[0] && srcStride[0] > 0)
  1332. memcpy(dst[0] + dstStride[0] * srcSliceY, src[0], srcSliceH * dstStride[0]);
  1333. else {
  1334. int i;
  1335. const uint8_t *srcPtr = src[0];
  1336. uint8_t *dstPtr = dst[0] + dstStride[0] * srcSliceY;
  1337. int length = 0;
  1338. /* universal length finder */
  1339. while (length + c->srcW <= FFABS(dstStride[0]) &&
  1340. length + c->srcW <= FFABS(srcStride[0]))
  1341. length += c->srcW;
  1342. av_assert1(length != 0);
  1343. for (i = 0; i < srcSliceH; i++) {
  1344. memcpy(dstPtr, srcPtr, length);
  1345. srcPtr += srcStride[0];
  1346. dstPtr += dstStride[0];
  1347. }
  1348. }
  1349. return srcSliceH;
  1350. }
  1351. #define DITHER_COPY(dst, dstStride, src, srcStride, bswap, dbswap)\
  1352. unsigned shift= src_depth-dst_depth, tmp;\
  1353. if (c->dither == SWS_DITHER_NONE) {\
  1354. for (i = 0; i < height; i++) {\
  1355. for (j = 0; j < length-7; j+=8) {\
  1356. dst[j+0] = dbswap(bswap(src[j+0])>>shift);\
  1357. dst[j+1] = dbswap(bswap(src[j+1])>>shift);\
  1358. dst[j+2] = dbswap(bswap(src[j+2])>>shift);\
  1359. dst[j+3] = dbswap(bswap(src[j+3])>>shift);\
  1360. dst[j+4] = dbswap(bswap(src[j+4])>>shift);\
  1361. dst[j+5] = dbswap(bswap(src[j+5])>>shift);\
  1362. dst[j+6] = dbswap(bswap(src[j+6])>>shift);\
  1363. dst[j+7] = dbswap(bswap(src[j+7])>>shift);\
  1364. }\
  1365. for (; j < length; j++) {\
  1366. dst[j] = dbswap(bswap(src[j])>>shift);\
  1367. }\
  1368. dst += dstStride;\
  1369. src += srcStride;\
  1370. }\
  1371. } else if (shiftonly) {\
  1372. for (i = 0; i < height; i++) {\
  1373. const uint8_t *dither= dithers[shift-1][i&7];\
  1374. for (j = 0; j < length-7; j+=8) {\
  1375. tmp = (bswap(src[j+0]) + dither[0])>>shift; dst[j+0] = dbswap(tmp - (tmp>>dst_depth));\
  1376. tmp = (bswap(src[j+1]) + dither[1])>>shift; dst[j+1] = dbswap(tmp - (tmp>>dst_depth));\
  1377. tmp = (bswap(src[j+2]) + dither[2])>>shift; dst[j+2] = dbswap(tmp - (tmp>>dst_depth));\
  1378. tmp = (bswap(src[j+3]) + dither[3])>>shift; dst[j+3] = dbswap(tmp - (tmp>>dst_depth));\
  1379. tmp = (bswap(src[j+4]) + dither[4])>>shift; dst[j+4] = dbswap(tmp - (tmp>>dst_depth));\
  1380. tmp = (bswap(src[j+5]) + dither[5])>>shift; dst[j+5] = dbswap(tmp - (tmp>>dst_depth));\
  1381. tmp = (bswap(src[j+6]) + dither[6])>>shift; dst[j+6] = dbswap(tmp - (tmp>>dst_depth));\
  1382. tmp = (bswap(src[j+7]) + dither[7])>>shift; dst[j+7] = dbswap(tmp - (tmp>>dst_depth));\
  1383. }\
  1384. for (; j < length; j++) {\
  1385. tmp = (bswap(src[j]) + dither[j&7])>>shift; dst[j] = dbswap(tmp - (tmp>>dst_depth));\
  1386. }\
  1387. dst += dstStride;\
  1388. src += srcStride;\
  1389. }\
  1390. } else {\
  1391. for (i = 0; i < height; i++) {\
  1392. const uint8_t *dither= dithers[shift-1][i&7];\
  1393. for (j = 0; j < length-7; j+=8) {\
  1394. tmp = bswap(src[j+0]); dst[j+0] = dbswap((tmp - (tmp>>dst_depth) + dither[0])>>shift);\
  1395. tmp = bswap(src[j+1]); dst[j+1] = dbswap((tmp - (tmp>>dst_depth) + dither[1])>>shift);\
  1396. tmp = bswap(src[j+2]); dst[j+2] = dbswap((tmp - (tmp>>dst_depth) + dither[2])>>shift);\
  1397. tmp = bswap(src[j+3]); dst[j+3] = dbswap((tmp - (tmp>>dst_depth) + dither[3])>>shift);\
  1398. tmp = bswap(src[j+4]); dst[j+4] = dbswap((tmp - (tmp>>dst_depth) + dither[4])>>shift);\
  1399. tmp = bswap(src[j+5]); dst[j+5] = dbswap((tmp - (tmp>>dst_depth) + dither[5])>>shift);\
  1400. tmp = bswap(src[j+6]); dst[j+6] = dbswap((tmp - (tmp>>dst_depth) + dither[6])>>shift);\
  1401. tmp = bswap(src[j+7]); dst[j+7] = dbswap((tmp - (tmp>>dst_depth) + dither[7])>>shift);\
  1402. }\
  1403. for (; j < length; j++) {\
  1404. tmp = bswap(src[j]); dst[j] = dbswap((tmp - (tmp>>dst_depth) + dither[j&7])>>shift);\
  1405. }\
  1406. dst += dstStride;\
  1407. src += srcStride;\
  1408. }\
  1409. }
  1410. static int planarCopyWrapper(SwsContext *c, const uint8_t *src[],
  1411. int srcStride[], int srcSliceY, int srcSliceH,
  1412. uint8_t *dst[], int dstStride[])
  1413. {
  1414. const AVPixFmtDescriptor *desc_src = av_pix_fmt_desc_get(c->srcFormat);
  1415. const AVPixFmtDescriptor *desc_dst = av_pix_fmt_desc_get(c->dstFormat);
  1416. int plane, i, j;
  1417. for (plane = 0; plane < 4; plane++) {
  1418. int length = (plane == 0 || plane == 3) ? c->srcW : AV_CEIL_RSHIFT(c->srcW, c->chrDstHSubSample);
  1419. int y = (plane == 0 || plane == 3) ? srcSliceY: AV_CEIL_RSHIFT(srcSliceY, c->chrDstVSubSample);
  1420. int height = (plane == 0 || plane == 3) ? srcSliceH: AV_CEIL_RSHIFT(srcSliceH, c->chrDstVSubSample);
  1421. const uint8_t *srcPtr = src[plane];
  1422. uint8_t *dstPtr = dst[plane] + dstStride[plane] * y;
  1423. int shiftonly = plane == 1 || plane == 2 || (!c->srcRange && plane == 0);
  1424. if (!dst[plane])
  1425. continue;
  1426. // ignore palette for GRAY8
  1427. if (plane == 1 && !dst[2]) continue;
  1428. if (!src[plane] || (plane == 1 && !src[2])) {
  1429. if (is16BPS(c->dstFormat) || isNBPS(c->dstFormat)) {
  1430. fillPlane16(dst[plane], dstStride[plane], length, height, y,
  1431. plane == 3, desc_dst->comp[plane].depth,
  1432. isBE(c->dstFormat));
  1433. } else {
  1434. fillPlane(dst[plane], dstStride[plane], length, height, y,
  1435. (plane == 3) ? 255 : 128);
  1436. }
  1437. } else {
  1438. if(isNBPS(c->srcFormat) || isNBPS(c->dstFormat)
  1439. || (is16BPS(c->srcFormat) != is16BPS(c->dstFormat))
  1440. ) {
  1441. const int src_depth = desc_src->comp[plane].depth;
  1442. const int dst_depth = desc_dst->comp[plane].depth;
  1443. const uint16_t *srcPtr2 = (const uint16_t *) srcPtr;
  1444. uint16_t *dstPtr2 = (uint16_t*)dstPtr;
  1445. if (dst_depth == 8) {
  1446. if(isBE(c->srcFormat) == HAVE_BIGENDIAN){
  1447. DITHER_COPY(dstPtr, dstStride[plane], srcPtr2, srcStride[plane]/2, , )
  1448. } else {
  1449. DITHER_COPY(dstPtr, dstStride[plane], srcPtr2, srcStride[plane]/2, av_bswap16, )
  1450. }
  1451. } else if (src_depth == 8) {
  1452. for (i = 0; i < height; i++) {
  1453. #define COPY816(w)\
  1454. if (shiftonly) {\
  1455. for (j = 0; j < length; j++)\
  1456. w(&dstPtr2[j], srcPtr[j]<<(dst_depth-8));\
  1457. } else {\
  1458. for (j = 0; j < length; j++)\
  1459. w(&dstPtr2[j], (srcPtr[j]<<(dst_depth-8)) |\
  1460. (srcPtr[j]>>(2*8-dst_depth)));\
  1461. }
  1462. if(isBE(c->dstFormat)){
  1463. COPY816(AV_WB16)
  1464. } else {
  1465. COPY816(AV_WL16)
  1466. }
  1467. dstPtr2 += dstStride[plane]/2;
  1468. srcPtr += srcStride[plane];
  1469. }
  1470. } else if (src_depth <= dst_depth) {
  1471. for (i = 0; i < height; i++) {
  1472. j = 0;
  1473. if(isBE(c->srcFormat) == HAVE_BIGENDIAN &&
  1474. isBE(c->dstFormat) == HAVE_BIGENDIAN &&
  1475. shiftonly) {
  1476. unsigned shift = dst_depth - src_depth;
  1477. #if HAVE_FAST_64BIT
  1478. #define FAST_COPY_UP(shift) \
  1479. for (; j < length - 3; j += 4) { \
  1480. uint64_t v = AV_RN64A(srcPtr2 + j); \
  1481. AV_WN64A(dstPtr2 + j, v << shift); \
  1482. }
  1483. #else
  1484. #define FAST_COPY_UP(shift) \
  1485. for (; j < length - 1; j += 2) { \
  1486. uint32_t v = AV_RN32A(srcPtr2 + j); \
  1487. AV_WN32A(dstPtr2 + j, v << shift); \
  1488. }
  1489. #endif
  1490. switch (shift)
  1491. {
  1492. case 6: FAST_COPY_UP(6); break;
  1493. case 7: FAST_COPY_UP(7); break;
  1494. }
  1495. }
  1496. #define COPY_UP(r,w) \
  1497. if(shiftonly){\
  1498. for (; j < length; j++){ \
  1499. unsigned int v= r(&srcPtr2[j]);\
  1500. w(&dstPtr2[j], v<<(dst_depth-src_depth));\
  1501. }\
  1502. }else{\
  1503. for (; j < length; j++){ \
  1504. unsigned int v= r(&srcPtr2[j]);\
  1505. w(&dstPtr2[j], (v<<(dst_depth-src_depth)) | \
  1506. (v>>(2*src_depth-dst_depth)));\
  1507. }\
  1508. }
  1509. if(isBE(c->srcFormat)){
  1510. if(isBE(c->dstFormat)){
  1511. COPY_UP(AV_RB16, AV_WB16)
  1512. } else {
  1513. COPY_UP(AV_RB16, AV_WL16)
  1514. }
  1515. } else {
  1516. if(isBE(c->dstFormat)){
  1517. COPY_UP(AV_RL16, AV_WB16)
  1518. } else {
  1519. COPY_UP(AV_RL16, AV_WL16)
  1520. }
  1521. }
  1522. dstPtr2 += dstStride[plane]/2;
  1523. srcPtr2 += srcStride[plane]/2;
  1524. }
  1525. } else {
  1526. if(isBE(c->srcFormat) == HAVE_BIGENDIAN){
  1527. if(isBE(c->dstFormat) == HAVE_BIGENDIAN){
  1528. DITHER_COPY(dstPtr2, dstStride[plane]/2, srcPtr2, srcStride[plane]/2, , )
  1529. } else {
  1530. DITHER_COPY(dstPtr2, dstStride[plane]/2, srcPtr2, srcStride[plane]/2, , av_bswap16)
  1531. }
  1532. }else{
  1533. if(isBE(c->dstFormat) == HAVE_BIGENDIAN){
  1534. DITHER_COPY(dstPtr2, dstStride[plane]/2, srcPtr2, srcStride[plane]/2, av_bswap16, )
  1535. } else {
  1536. DITHER_COPY(dstPtr2, dstStride[plane]/2, srcPtr2, srcStride[plane]/2, av_bswap16, av_bswap16)
  1537. }
  1538. }
  1539. }
  1540. } else if (is16BPS(c->srcFormat) && is16BPS(c->dstFormat) &&
  1541. isBE(c->srcFormat) != isBE(c->dstFormat)) {
  1542. for (i = 0; i < height; i++) {
  1543. for (j = 0; j < length; j++)
  1544. ((uint16_t *) dstPtr)[j] = av_bswap16(((const uint16_t *) srcPtr)[j]);
  1545. srcPtr += srcStride[plane];
  1546. dstPtr += dstStride[plane];
  1547. }
  1548. } else if (dstStride[plane] == srcStride[plane] &&
  1549. srcStride[plane] > 0 && srcStride[plane] == length) {
  1550. memcpy(dst[plane] + dstStride[plane] * y, src[plane],
  1551. height * dstStride[plane]);
  1552. } else {
  1553. if (is16BPS(c->srcFormat) && is16BPS(c->dstFormat))
  1554. length *= 2;
  1555. else if (desc_src->comp[0].depth == 1)
  1556. length >>= 3; // monowhite/black
  1557. for (i = 0; i < height; i++) {
  1558. memcpy(dstPtr, srcPtr, length);
  1559. srcPtr += srcStride[plane];
  1560. dstPtr += dstStride[plane];
  1561. }
  1562. }
  1563. }
  1564. }
  1565. return srcSliceH;
  1566. }
  1567. #define IS_DIFFERENT_ENDIANESS(src_fmt, dst_fmt, pix_fmt) \
  1568. ((src_fmt == pix_fmt ## BE && dst_fmt == pix_fmt ## LE) || \
  1569. (src_fmt == pix_fmt ## LE && dst_fmt == pix_fmt ## BE))
  1570. void ff_get_unscaled_swscale(SwsContext *c)
  1571. {
  1572. const enum AVPixelFormat srcFormat = c->srcFormat;
  1573. const enum AVPixelFormat dstFormat = c->dstFormat;
  1574. const int flags = c->flags;
  1575. const int dstH = c->dstH;
  1576. int needsDither;
  1577. needsDither = isAnyRGB(dstFormat) &&
  1578. c->dstFormatBpp < 24 &&
  1579. (c->dstFormatBpp < c->srcFormatBpp || (!isAnyRGB(srcFormat)));
  1580. /* yv12_to_nv12 */
  1581. if ((srcFormat == AV_PIX_FMT_YUV420P || srcFormat == AV_PIX_FMT_YUVA420P) &&
  1582. (dstFormat == AV_PIX_FMT_NV12 || dstFormat == AV_PIX_FMT_NV21)) {
  1583. c->swscale = planarToNv12Wrapper;
  1584. }
  1585. /* nv12_to_yv12 */
  1586. if (dstFormat == AV_PIX_FMT_YUV420P &&
  1587. (srcFormat == AV_PIX_FMT_NV12 || srcFormat == AV_PIX_FMT_NV21)) {
  1588. c->swscale = nv12ToPlanarWrapper;
  1589. }
  1590. /* yuv2bgr */
  1591. if ((srcFormat == AV_PIX_FMT_YUV420P || srcFormat == AV_PIX_FMT_YUV422P ||
  1592. srcFormat == AV_PIX_FMT_YUVA420P) && isAnyRGB(dstFormat) &&
  1593. !(flags & SWS_ACCURATE_RND) && (c->dither == SWS_DITHER_BAYER || c->dither == SWS_DITHER_AUTO) && !(dstH & 1)) {
  1594. c->swscale = ff_yuv2rgb_get_func_ptr(c);
  1595. }
  1596. /* yuv420p1x_to_p01x */
  1597. if ((srcFormat == AV_PIX_FMT_YUV420P10 || srcFormat == AV_PIX_FMT_YUVA420P10 ||
  1598. srcFormat == AV_PIX_FMT_YUV420P12 ||
  1599. srcFormat == AV_PIX_FMT_YUV420P14 ||
  1600. srcFormat == AV_PIX_FMT_YUV420P16 || srcFormat == AV_PIX_FMT_YUVA420P16) &&
  1601. (dstFormat == AV_PIX_FMT_P010 || dstFormat == AV_PIX_FMT_P016)) {
  1602. c->swscale = planarToP01xWrapper;
  1603. }
  1604. /* yuv420p_to_p01xle */
  1605. if ((srcFormat == AV_PIX_FMT_YUV420P || srcFormat == AV_PIX_FMT_YUVA420P) &&
  1606. (dstFormat == AV_PIX_FMT_P010LE || dstFormat == AV_PIX_FMT_P016LE)) {
  1607. c->swscale = planar8ToP01xleWrapper;
  1608. }
  1609. if (srcFormat == AV_PIX_FMT_YUV410P && !(dstH & 3) &&
  1610. (dstFormat == AV_PIX_FMT_YUV420P || dstFormat == AV_PIX_FMT_YUVA420P) &&
  1611. !(flags & SWS_BITEXACT)) {
  1612. c->swscale = yvu9ToYv12Wrapper;
  1613. }
  1614. /* bgr24toYV12 */
  1615. if (srcFormat == AV_PIX_FMT_BGR24 &&
  1616. (dstFormat == AV_PIX_FMT_YUV420P || dstFormat == AV_PIX_FMT_YUVA420P) &&
  1617. !(flags & SWS_ACCURATE_RND))
  1618. c->swscale = bgr24ToYv12Wrapper;
  1619. /* RGB/BGR -> RGB/BGR (no dither needed forms) */
  1620. if (isAnyRGB(srcFormat) && isAnyRGB(dstFormat) && findRgbConvFn(c)
  1621. && (!needsDither || (c->flags&(SWS_FAST_BILINEAR|SWS_POINT))))
  1622. c->swscale = rgbToRgbWrapper;
  1623. /* RGB to planar RGB */
  1624. if ((srcFormat == AV_PIX_FMT_GBRP && dstFormat == AV_PIX_FMT_GBRAP) ||
  1625. (srcFormat == AV_PIX_FMT_GBRAP && dstFormat == AV_PIX_FMT_GBRP))
  1626. c->swscale = planarRgbToplanarRgbWrapper;
  1627. #define isByteRGB(f) ( \
  1628. f == AV_PIX_FMT_RGB32 || \
  1629. f == AV_PIX_FMT_RGB32_1 || \
  1630. f == AV_PIX_FMT_RGB24 || \
  1631. f == AV_PIX_FMT_BGR32 || \
  1632. f == AV_PIX_FMT_BGR32_1 || \
  1633. f == AV_PIX_FMT_BGR24)
  1634. if (srcFormat == AV_PIX_FMT_GBRP && isPlanar(srcFormat) && isByteRGB(dstFormat))
  1635. c->swscale = planarRgbToRgbWrapper;
  1636. if ((srcFormat == AV_PIX_FMT_RGB48LE || srcFormat == AV_PIX_FMT_RGB48BE ||
  1637. srcFormat == AV_PIX_FMT_BGR48LE || srcFormat == AV_PIX_FMT_BGR48BE ||
  1638. srcFormat == AV_PIX_FMT_RGBA64LE || srcFormat == AV_PIX_FMT_RGBA64BE ||
  1639. srcFormat == AV_PIX_FMT_BGRA64LE || srcFormat == AV_PIX_FMT_BGRA64BE) &&
  1640. (dstFormat == AV_PIX_FMT_GBRP9LE || dstFormat == AV_PIX_FMT_GBRP9BE ||
  1641. dstFormat == AV_PIX_FMT_GBRP10LE || dstFormat == AV_PIX_FMT_GBRP10BE ||
  1642. dstFormat == AV_PIX_FMT_GBRP12LE || dstFormat == AV_PIX_FMT_GBRP12BE ||
  1643. dstFormat == AV_PIX_FMT_GBRP14LE || dstFormat == AV_PIX_FMT_GBRP14BE ||
  1644. dstFormat == AV_PIX_FMT_GBRP16LE || dstFormat == AV_PIX_FMT_GBRP16BE ||
  1645. dstFormat == AV_PIX_FMT_GBRAP12LE || dstFormat == AV_PIX_FMT_GBRAP12BE ||
  1646. dstFormat == AV_PIX_FMT_GBRAP16LE || dstFormat == AV_PIX_FMT_GBRAP16BE ))
  1647. c->swscale = Rgb16ToPlanarRgb16Wrapper;
  1648. if ((srcFormat == AV_PIX_FMT_GBRP9LE || srcFormat == AV_PIX_FMT_GBRP9BE ||
  1649. srcFormat == AV_PIX_FMT_GBRP16LE || srcFormat == AV_PIX_FMT_GBRP16BE ||
  1650. srcFormat == AV_PIX_FMT_GBRP10LE || srcFormat == AV_PIX_FMT_GBRP10BE ||
  1651. srcFormat == AV_PIX_FMT_GBRP12LE || srcFormat == AV_PIX_FMT_GBRP12BE ||
  1652. srcFormat == AV_PIX_FMT_GBRP14LE || srcFormat == AV_PIX_FMT_GBRP14BE ||
  1653. srcFormat == AV_PIX_FMT_GBRAP12LE || srcFormat == AV_PIX_FMT_GBRAP12BE ||
  1654. srcFormat == AV_PIX_FMT_GBRAP16LE || srcFormat == AV_PIX_FMT_GBRAP16BE) &&
  1655. (dstFormat == AV_PIX_FMT_RGB48LE || dstFormat == AV_PIX_FMT_RGB48BE ||
  1656. dstFormat == AV_PIX_FMT_BGR48LE || dstFormat == AV_PIX_FMT_BGR48BE ||
  1657. dstFormat == AV_PIX_FMT_RGBA64LE || dstFormat == AV_PIX_FMT_RGBA64BE ||
  1658. dstFormat == AV_PIX_FMT_BGRA64LE || dstFormat == AV_PIX_FMT_BGRA64BE))
  1659. c->swscale = planarRgb16ToRgb16Wrapper;
  1660. if (av_pix_fmt_desc_get(srcFormat)->comp[0].depth == 8 &&
  1661. isPackedRGB(srcFormat) && dstFormat == AV_PIX_FMT_GBRP)
  1662. c->swscale = rgbToPlanarRgbWrapper;
  1663. if (isBayer(srcFormat)) {
  1664. if (dstFormat == AV_PIX_FMT_RGB24)
  1665. c->swscale = bayer_to_rgb24_wrapper;
  1666. else if (dstFormat == AV_PIX_FMT_YUV420P)
  1667. c->swscale = bayer_to_yv12_wrapper;
  1668. else if (!isBayer(dstFormat)) {
  1669. av_log(c, AV_LOG_ERROR, "unsupported bayer conversion\n");
  1670. av_assert0(0);
  1671. }
  1672. }
  1673. /* bswap 16 bits per pixel/component packed formats */
  1674. if (IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_BAYER_BGGR16) ||
  1675. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_BAYER_RGGB16) ||
  1676. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_BAYER_GBRG16) ||
  1677. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_BAYER_GRBG16) ||
  1678. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_BGR444) ||
  1679. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_BGR48) ||
  1680. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_BGRA64) ||
  1681. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_BGR555) ||
  1682. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_BGR565) ||
  1683. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_BGRA64) ||
  1684. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_GRAY9) ||
  1685. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_GRAY10) ||
  1686. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_GRAY12) ||
  1687. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_GRAY16) ||
  1688. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YA16) ||
  1689. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_AYUV64) ||
  1690. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_GBRP9) ||
  1691. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_GBRP10) ||
  1692. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_GBRP12) ||
  1693. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_GBRP14) ||
  1694. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_GBRP16) ||
  1695. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_GBRAP12) ||
  1696. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_GBRAP16) ||
  1697. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_RGB444) ||
  1698. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_RGB48) ||
  1699. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_RGBA64) ||
  1700. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_RGB555) ||
  1701. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_RGB565) ||
  1702. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_RGBA64) ||
  1703. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_XYZ12) ||
  1704. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YUV420P9) ||
  1705. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YUV420P10) ||
  1706. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YUV420P12) ||
  1707. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YUV420P14) ||
  1708. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YUV420P16) ||
  1709. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YUV422P9) ||
  1710. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YUV422P10) ||
  1711. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YUV422P12) ||
  1712. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YUV422P14) ||
  1713. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YUV422P16) ||
  1714. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YUV440P10) ||
  1715. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YUV440P12) ||
  1716. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YUV444P9) ||
  1717. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YUV444P10) ||
  1718. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YUV444P12) ||
  1719. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YUV444P14) ||
  1720. IS_DIFFERENT_ENDIANESS(srcFormat, dstFormat, AV_PIX_FMT_YUV444P16))
  1721. c->swscale = packed_16bpc_bswap;
  1722. if (usePal(srcFormat) && isByteRGB(dstFormat))
  1723. c->swscale = palToRgbWrapper;
  1724. if (srcFormat == AV_PIX_FMT_YUV422P) {
  1725. if (dstFormat == AV_PIX_FMT_YUYV422)
  1726. c->swscale = yuv422pToYuy2Wrapper;
  1727. else if (dstFormat == AV_PIX_FMT_UYVY422)
  1728. c->swscale = yuv422pToUyvyWrapper;
  1729. }
  1730. /* LQ converters if -sws 0 or -sws 4*/
  1731. if (c->flags&(SWS_FAST_BILINEAR|SWS_POINT)) {
  1732. /* yv12_to_yuy2 */
  1733. if (srcFormat == AV_PIX_FMT_YUV420P || srcFormat == AV_PIX_FMT_YUVA420P) {
  1734. if (dstFormat == AV_PIX_FMT_YUYV422)
  1735. c->swscale = planarToYuy2Wrapper;
  1736. else if (dstFormat == AV_PIX_FMT_UYVY422)
  1737. c->swscale = planarToUyvyWrapper;
  1738. }
  1739. }
  1740. if (srcFormat == AV_PIX_FMT_YUYV422 &&
  1741. (dstFormat == AV_PIX_FMT_YUV420P || dstFormat == AV_PIX_FMT_YUVA420P))
  1742. c->swscale = yuyvToYuv420Wrapper;
  1743. if (srcFormat == AV_PIX_FMT_UYVY422 &&
  1744. (dstFormat == AV_PIX_FMT_YUV420P || dstFormat == AV_PIX_FMT_YUVA420P))
  1745. c->swscale = uyvyToYuv420Wrapper;
  1746. if (srcFormat == AV_PIX_FMT_YUYV422 && dstFormat == AV_PIX_FMT_YUV422P)
  1747. c->swscale = yuyvToYuv422Wrapper;
  1748. if (srcFormat == AV_PIX_FMT_UYVY422 && dstFormat == AV_PIX_FMT_YUV422P)
  1749. c->swscale = uyvyToYuv422Wrapper;
  1750. #define isPlanarGray(x) (isGray(x) && (x) != AV_PIX_FMT_YA8 && (x) != AV_PIX_FMT_YA16LE && (x) != AV_PIX_FMT_YA16BE)
  1751. /* simple copy */
  1752. if ( srcFormat == dstFormat ||
  1753. (srcFormat == AV_PIX_FMT_YUVA420P && dstFormat == AV_PIX_FMT_YUV420P) ||
  1754. (srcFormat == AV_PIX_FMT_YUV420P && dstFormat == AV_PIX_FMT_YUVA420P) ||
  1755. (isPlanarYUV(srcFormat) && isPlanarGray(dstFormat)) ||
  1756. (isPlanarYUV(dstFormat) && isPlanarGray(srcFormat)) ||
  1757. (isPlanarGray(dstFormat) && isPlanarGray(srcFormat)) ||
  1758. (isPlanarYUV(srcFormat) && isPlanarYUV(dstFormat) &&
  1759. c->chrDstHSubSample == c->chrSrcHSubSample &&
  1760. c->chrDstVSubSample == c->chrSrcVSubSample &&
  1761. !isSemiPlanarYUV(srcFormat) && !isSemiPlanarYUV(dstFormat)))
  1762. {
  1763. if (isPacked(c->srcFormat))
  1764. c->swscale = packedCopyWrapper;
  1765. else /* Planar YUV or gray */
  1766. c->swscale = planarCopyWrapper;
  1767. }
  1768. if (ARCH_PPC)
  1769. ff_get_unscaled_swscale_ppc(c);
  1770. if (ARCH_ARM)
  1771. ff_get_unscaled_swscale_arm(c);
  1772. if (ARCH_AARCH64)
  1773. ff_get_unscaled_swscale_aarch64(c);
  1774. }
  1775. /* Convert the palette to the same packed 32-bit format as the palette */
  1776. void sws_convertPalette8ToPacked32(const uint8_t *src, uint8_t *dst,
  1777. int num_pixels, const uint8_t *palette)
  1778. {
  1779. int i;
  1780. for (i = 0; i < num_pixels; i++)
  1781. ((uint32_t *) dst)[i] = ((const uint32_t *) palette)[src[i]];
  1782. }
  1783. /* Palette format: ABCD -> dst format: ABC */
  1784. void sws_convertPalette8ToPacked24(const uint8_t *src, uint8_t *dst,
  1785. int num_pixels, const uint8_t *palette)
  1786. {
  1787. int i;
  1788. for (i = 0; i < num_pixels; i++) {
  1789. //FIXME slow?
  1790. dst[0] = palette[src[i] * 4 + 0];
  1791. dst[1] = palette[src[i] * 4 + 1];
  1792. dst[2] = palette[src[i] * 4 + 2];
  1793. dst += 3;
  1794. }
  1795. }