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  1. /*
  2. * Misc image conversion routines
  3. * Copyright (c) 2001, 2002, 2003 Fabrice Bellard
  4. *
  5. * This file is part of Libav.
  6. *
  7. * Libav is free software; you can redistribute it and/or
  8. * modify it under the terms of the GNU Lesser General Public
  9. * License as published by the Free Software Foundation; either
  10. * version 2.1 of the License, or (at your option) any later version.
  11. *
  12. * Libav is distributed in the hope that it will be useful,
  13. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  14. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  15. * Lesser General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU Lesser General Public
  18. * License along with Libav; if not, write to the Free Software
  19. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  20. */
  21. /**
  22. * @file
  23. * misc image conversion routines
  24. */
  25. /* TODO:
  26. * - write 'ffimg' program to test all the image related stuff
  27. * - move all api to slice based system
  28. * - integrate deinterlacing, postprocessing and scaling in the conversion process
  29. */
  30. #include "avcodec.h"
  31. #include "dsputil.h"
  32. #include "internal.h"
  33. #include "imgconvert.h"
  34. #include "libavutil/colorspace.h"
  35. #include "libavutil/pixdesc.h"
  36. #include "libavutil/imgutils.h"
  37. #if HAVE_MMX && HAVE_YASM
  38. #include "x86/dsputil_mmx.h"
  39. #endif
  40. #define xglue(x, y) x ## y
  41. #define glue(x, y) xglue(x, y)
  42. #define FF_COLOR_RGB 0 /**< RGB color space */
  43. #define FF_COLOR_GRAY 1 /**< gray color space */
  44. #define FF_COLOR_YUV 2 /**< YUV color space. 16 <= Y <= 235, 16 <= U, V <= 240 */
  45. #define FF_COLOR_YUV_JPEG 3 /**< YUV color space. 0 <= Y <= 255, 0 <= U, V <= 255 */
  46. #define FF_PIXEL_PLANAR 0 /**< each channel has one component in AVPicture */
  47. #define FF_PIXEL_PACKED 1 /**< only one components containing all the channels */
  48. #define FF_PIXEL_PALETTE 2 /**< one components containing indexes for a palette */
  49. #if HAVE_MMX && HAVE_YASM
  50. #define deinterlace_line_inplace ff_deinterlace_line_inplace_mmx
  51. #define deinterlace_line ff_deinterlace_line_mmx
  52. #else
  53. #define deinterlace_line_inplace deinterlace_line_inplace_c
  54. #define deinterlace_line deinterlace_line_c
  55. #endif
  56. typedef struct PixFmtInfo {
  57. uint8_t nb_channels; /**< number of channels (including alpha) */
  58. uint8_t color_type; /**< color type (see FF_COLOR_xxx constants) */
  59. uint8_t pixel_type; /**< pixel storage type (see FF_PIXEL_xxx constants) */
  60. uint8_t is_alpha : 1; /**< true if alpha can be specified */
  61. uint8_t depth; /**< bit depth of the color components */
  62. } PixFmtInfo;
  63. /* this table gives more information about formats */
  64. static const PixFmtInfo pix_fmt_info[PIX_FMT_NB] = {
  65. /* YUV formats */
  66. [PIX_FMT_YUV420P] = {
  67. .nb_channels = 3,
  68. .color_type = FF_COLOR_YUV,
  69. .pixel_type = FF_PIXEL_PLANAR,
  70. .depth = 8,
  71. },
  72. [PIX_FMT_YUV422P] = {
  73. .nb_channels = 3,
  74. .color_type = FF_COLOR_YUV,
  75. .pixel_type = FF_PIXEL_PLANAR,
  76. .depth = 8,
  77. },
  78. [PIX_FMT_YUV444P] = {
  79. .nb_channels = 3,
  80. .color_type = FF_COLOR_YUV,
  81. .pixel_type = FF_PIXEL_PLANAR,
  82. .depth = 8,
  83. },
  84. [PIX_FMT_YUYV422] = {
  85. .nb_channels = 1,
  86. .color_type = FF_COLOR_YUV,
  87. .pixel_type = FF_PIXEL_PACKED,
  88. .depth = 8,
  89. },
  90. [PIX_FMT_UYVY422] = {
  91. .nb_channels = 1,
  92. .color_type = FF_COLOR_YUV,
  93. .pixel_type = FF_PIXEL_PACKED,
  94. .depth = 8,
  95. },
  96. [PIX_FMT_YUV410P] = {
  97. .nb_channels = 3,
  98. .color_type = FF_COLOR_YUV,
  99. .pixel_type = FF_PIXEL_PLANAR,
  100. .depth = 8,
  101. },
  102. [PIX_FMT_YUV411P] = {
  103. .nb_channels = 3,
  104. .color_type = FF_COLOR_YUV,
  105. .pixel_type = FF_PIXEL_PLANAR,
  106. .depth = 8,
  107. },
  108. [PIX_FMT_YUV440P] = {
  109. .nb_channels = 3,
  110. .color_type = FF_COLOR_YUV,
  111. .pixel_type = FF_PIXEL_PLANAR,
  112. .depth = 8,
  113. },
  114. [PIX_FMT_YUV420P16LE] = {
  115. .nb_channels = 3,
  116. .color_type = FF_COLOR_YUV,
  117. .pixel_type = FF_PIXEL_PLANAR,
  118. .depth = 16,
  119. },
  120. [PIX_FMT_YUV422P16LE] = {
  121. .nb_channels = 3,
  122. .color_type = FF_COLOR_YUV,
  123. .pixel_type = FF_PIXEL_PLANAR,
  124. .depth = 16,
  125. },
  126. [PIX_FMT_YUV444P16LE] = {
  127. .nb_channels = 3,
  128. .color_type = FF_COLOR_YUV,
  129. .pixel_type = FF_PIXEL_PLANAR,
  130. .depth = 16,
  131. },
  132. [PIX_FMT_YUV420P16BE] = {
  133. .nb_channels = 3,
  134. .color_type = FF_COLOR_YUV,
  135. .pixel_type = FF_PIXEL_PLANAR,
  136. .depth = 16,
  137. },
  138. [PIX_FMT_YUV422P16BE] = {
  139. .nb_channels = 3,
  140. .color_type = FF_COLOR_YUV,
  141. .pixel_type = FF_PIXEL_PLANAR,
  142. .depth = 16,
  143. },
  144. [PIX_FMT_YUV444P16BE] = {
  145. .nb_channels = 3,
  146. .color_type = FF_COLOR_YUV,
  147. .pixel_type = FF_PIXEL_PLANAR,
  148. .depth = 16,
  149. },
  150. /* YUV formats with alpha plane */
  151. [PIX_FMT_YUVA420P] = {
  152. .nb_channels = 4,
  153. .color_type = FF_COLOR_YUV,
  154. .pixel_type = FF_PIXEL_PLANAR,
  155. .depth = 8,
  156. },
  157. /* JPEG YUV */
  158. [PIX_FMT_YUVJ420P] = {
  159. .nb_channels = 3,
  160. .color_type = FF_COLOR_YUV_JPEG,
  161. .pixel_type = FF_PIXEL_PLANAR,
  162. .depth = 8,
  163. },
  164. [PIX_FMT_YUVJ422P] = {
  165. .nb_channels = 3,
  166. .color_type = FF_COLOR_YUV_JPEG,
  167. .pixel_type = FF_PIXEL_PLANAR,
  168. .depth = 8,
  169. },
  170. [PIX_FMT_YUVJ444P] = {
  171. .nb_channels = 3,
  172. .color_type = FF_COLOR_YUV_JPEG,
  173. .pixel_type = FF_PIXEL_PLANAR,
  174. .depth = 8,
  175. },
  176. [PIX_FMT_YUVJ440P] = {
  177. .nb_channels = 3,
  178. .color_type = FF_COLOR_YUV_JPEG,
  179. .pixel_type = FF_PIXEL_PLANAR,
  180. .depth = 8,
  181. },
  182. /* RGB formats */
  183. [PIX_FMT_RGB24] = {
  184. .nb_channels = 3,
  185. .color_type = FF_COLOR_RGB,
  186. .pixel_type = FF_PIXEL_PACKED,
  187. .depth = 8,
  188. },
  189. [PIX_FMT_BGR24] = {
  190. .nb_channels = 3,
  191. .color_type = FF_COLOR_RGB,
  192. .pixel_type = FF_PIXEL_PACKED,
  193. .depth = 8,
  194. },
  195. [PIX_FMT_ARGB] = {
  196. .nb_channels = 4, .is_alpha = 1,
  197. .color_type = FF_COLOR_RGB,
  198. .pixel_type = FF_PIXEL_PACKED,
  199. .depth = 8,
  200. },
  201. [PIX_FMT_RGB48BE] = {
  202. .nb_channels = 3,
  203. .color_type = FF_COLOR_RGB,
  204. .pixel_type = FF_PIXEL_PACKED,
  205. .depth = 16,
  206. },
  207. [PIX_FMT_RGB48LE] = {
  208. .nb_channels = 3,
  209. .color_type = FF_COLOR_RGB,
  210. .pixel_type = FF_PIXEL_PACKED,
  211. .depth = 16,
  212. },
  213. [PIX_FMT_RGB565BE] = {
  214. .nb_channels = 3,
  215. .color_type = FF_COLOR_RGB,
  216. .pixel_type = FF_PIXEL_PACKED,
  217. .depth = 5,
  218. },
  219. [PIX_FMT_RGB565LE] = {
  220. .nb_channels = 3,
  221. .color_type = FF_COLOR_RGB,
  222. .pixel_type = FF_PIXEL_PACKED,
  223. .depth = 5,
  224. },
  225. [PIX_FMT_RGB555BE] = {
  226. .nb_channels = 3,
  227. .color_type = FF_COLOR_RGB,
  228. .pixel_type = FF_PIXEL_PACKED,
  229. .depth = 5,
  230. },
  231. [PIX_FMT_RGB555LE] = {
  232. .nb_channels = 3,
  233. .color_type = FF_COLOR_RGB,
  234. .pixel_type = FF_PIXEL_PACKED,
  235. .depth = 5,
  236. },
  237. [PIX_FMT_RGB444BE] = {
  238. .nb_channels = 3,
  239. .color_type = FF_COLOR_RGB,
  240. .pixel_type = FF_PIXEL_PACKED,
  241. .depth = 4,
  242. },
  243. [PIX_FMT_RGB444LE] = {
  244. .nb_channels = 3,
  245. .color_type = FF_COLOR_RGB,
  246. .pixel_type = FF_PIXEL_PACKED,
  247. .depth = 4,
  248. },
  249. /* gray / mono formats */
  250. [PIX_FMT_GRAY16BE] = {
  251. .nb_channels = 1,
  252. .color_type = FF_COLOR_GRAY,
  253. .pixel_type = FF_PIXEL_PLANAR,
  254. .depth = 16,
  255. },
  256. [PIX_FMT_GRAY16LE] = {
  257. .nb_channels = 1,
  258. .color_type = FF_COLOR_GRAY,
  259. .pixel_type = FF_PIXEL_PLANAR,
  260. .depth = 16,
  261. },
  262. [PIX_FMT_GRAY8] = {
  263. .nb_channels = 1,
  264. .color_type = FF_COLOR_GRAY,
  265. .pixel_type = FF_PIXEL_PLANAR,
  266. .depth = 8,
  267. },
  268. [PIX_FMT_MONOWHITE] = {
  269. .nb_channels = 1,
  270. .color_type = FF_COLOR_GRAY,
  271. .pixel_type = FF_PIXEL_PLANAR,
  272. .depth = 1,
  273. },
  274. [PIX_FMT_MONOBLACK] = {
  275. .nb_channels = 1,
  276. .color_type = FF_COLOR_GRAY,
  277. .pixel_type = FF_PIXEL_PLANAR,
  278. .depth = 1,
  279. },
  280. /* paletted formats */
  281. [PIX_FMT_PAL8] = {
  282. .nb_channels = 4, .is_alpha = 1,
  283. .color_type = FF_COLOR_RGB,
  284. .pixel_type = FF_PIXEL_PALETTE,
  285. .depth = 8,
  286. },
  287. [PIX_FMT_UYYVYY411] = {
  288. .nb_channels = 1,
  289. .color_type = FF_COLOR_YUV,
  290. .pixel_type = FF_PIXEL_PACKED,
  291. .depth = 8,
  292. },
  293. [PIX_FMT_ABGR] = {
  294. .nb_channels = 4, .is_alpha = 1,
  295. .color_type = FF_COLOR_RGB,
  296. .pixel_type = FF_PIXEL_PACKED,
  297. .depth = 8,
  298. },
  299. [PIX_FMT_BGR565BE] = {
  300. .nb_channels = 3,
  301. .color_type = FF_COLOR_RGB,
  302. .pixel_type = FF_PIXEL_PACKED,
  303. .depth = 5,
  304. },
  305. [PIX_FMT_BGR565LE] = {
  306. .nb_channels = 3,
  307. .color_type = FF_COLOR_RGB,
  308. .pixel_type = FF_PIXEL_PACKED,
  309. .depth = 5,
  310. },
  311. [PIX_FMT_BGR555BE] = {
  312. .nb_channels = 3,
  313. .color_type = FF_COLOR_RGB,
  314. .pixel_type = FF_PIXEL_PACKED,
  315. .depth = 5,
  316. },
  317. [PIX_FMT_BGR555LE] = {
  318. .nb_channels = 3,
  319. .color_type = FF_COLOR_RGB,
  320. .pixel_type = FF_PIXEL_PACKED,
  321. .depth = 5,
  322. },
  323. [PIX_FMT_BGR444BE] = {
  324. .nb_channels = 3,
  325. .color_type = FF_COLOR_RGB,
  326. .pixel_type = FF_PIXEL_PACKED,
  327. .depth = 4,
  328. },
  329. [PIX_FMT_BGR444LE] = {
  330. .nb_channels = 3,
  331. .color_type = FF_COLOR_RGB,
  332. .pixel_type = FF_PIXEL_PACKED,
  333. .depth = 4,
  334. },
  335. [PIX_FMT_RGB8] = {
  336. .nb_channels = 1,
  337. .color_type = FF_COLOR_RGB,
  338. .pixel_type = FF_PIXEL_PACKED,
  339. .depth = 8,
  340. },
  341. [PIX_FMT_RGB4] = {
  342. .nb_channels = 1,
  343. .color_type = FF_COLOR_RGB,
  344. .pixel_type = FF_PIXEL_PACKED,
  345. .depth = 4,
  346. },
  347. [PIX_FMT_RGB4_BYTE] = {
  348. .nb_channels = 1,
  349. .color_type = FF_COLOR_RGB,
  350. .pixel_type = FF_PIXEL_PACKED,
  351. .depth = 8,
  352. },
  353. [PIX_FMT_BGR8] = {
  354. .nb_channels = 1,
  355. .color_type = FF_COLOR_RGB,
  356. .pixel_type = FF_PIXEL_PACKED,
  357. .depth = 8,
  358. },
  359. [PIX_FMT_BGR4] = {
  360. .nb_channels = 1,
  361. .color_type = FF_COLOR_RGB,
  362. .pixel_type = FF_PIXEL_PACKED,
  363. .depth = 4,
  364. },
  365. [PIX_FMT_BGR4_BYTE] = {
  366. .nb_channels = 1,
  367. .color_type = FF_COLOR_RGB,
  368. .pixel_type = FF_PIXEL_PACKED,
  369. .depth = 8,
  370. },
  371. [PIX_FMT_NV12] = {
  372. .nb_channels = 2,
  373. .color_type = FF_COLOR_YUV,
  374. .pixel_type = FF_PIXEL_PLANAR,
  375. .depth = 8,
  376. },
  377. [PIX_FMT_NV21] = {
  378. .nb_channels = 2,
  379. .color_type = FF_COLOR_YUV,
  380. .pixel_type = FF_PIXEL_PLANAR,
  381. .depth = 8,
  382. },
  383. [PIX_FMT_BGRA] = {
  384. .nb_channels = 4, .is_alpha = 1,
  385. .color_type = FF_COLOR_RGB,
  386. .pixel_type = FF_PIXEL_PACKED,
  387. .depth = 8,
  388. },
  389. [PIX_FMT_RGBA] = {
  390. .nb_channels = 4, .is_alpha = 1,
  391. .color_type = FF_COLOR_RGB,
  392. .pixel_type = FF_PIXEL_PACKED,
  393. .depth = 8,
  394. },
  395. };
  396. void avcodec_get_chroma_sub_sample(enum PixelFormat pix_fmt, int *h_shift, int *v_shift)
  397. {
  398. *h_shift = av_pix_fmt_descriptors[pix_fmt].log2_chroma_w;
  399. *v_shift = av_pix_fmt_descriptors[pix_fmt].log2_chroma_h;
  400. }
  401. const char *avcodec_get_pix_fmt_name(enum PixelFormat pix_fmt)
  402. {
  403. if ((unsigned)pix_fmt >= PIX_FMT_NB)
  404. return NULL;
  405. else
  406. return av_pix_fmt_descriptors[pix_fmt].name;
  407. }
  408. int ff_is_hwaccel_pix_fmt(enum PixelFormat pix_fmt)
  409. {
  410. return av_pix_fmt_descriptors[pix_fmt].flags & PIX_FMT_HWACCEL;
  411. }
  412. int avpicture_fill(AVPicture *picture, uint8_t *ptr,
  413. enum PixelFormat pix_fmt, int width, int height)
  414. {
  415. int ret;
  416. if ((ret = av_image_check_size(width, height, 0, NULL)) < 0)
  417. return ret;
  418. if ((ret = av_image_fill_linesizes(picture->linesize, pix_fmt, width)) < 0)
  419. return ret;
  420. return av_image_fill_pointers(picture->data, pix_fmt, height, ptr, picture->linesize);
  421. }
  422. int avpicture_layout(const AVPicture* src, enum PixelFormat pix_fmt, int width, int height,
  423. unsigned char *dest, int dest_size)
  424. {
  425. int i, j, nb_planes = 0, linesizes[4];
  426. const AVPixFmtDescriptor *desc = &av_pix_fmt_descriptors[pix_fmt];
  427. int size = avpicture_get_size(pix_fmt, width, height);
  428. if (size > dest_size || size < 0)
  429. return AVERROR(EINVAL);
  430. for (i = 0; i < desc->nb_components; i++)
  431. nb_planes = FFMAX(desc->comp[i].plane, nb_planes);
  432. nb_planes++;
  433. av_image_fill_linesizes(linesizes, pix_fmt, width);
  434. for (i = 0; i < nb_planes; i++) {
  435. int h, shift = (i == 1 || i == 2) ? desc->log2_chroma_h : 0;
  436. const unsigned char *s = src->data[i];
  437. h = (height + (1 << shift) - 1) >> shift;
  438. for (j = 0; j < h; j++) {
  439. memcpy(dest, s, linesizes[i]);
  440. dest += linesizes[i];
  441. s += src->linesize[i];
  442. }
  443. }
  444. if (desc->flags & PIX_FMT_PAL)
  445. memcpy((unsigned char *)(((size_t)dest + 3) & ~3), src->data[1], 256 * 4);
  446. return size;
  447. }
  448. int avpicture_get_size(enum PixelFormat pix_fmt, int width, int height)
  449. {
  450. AVPicture dummy_pict;
  451. if(av_image_check_size(width, height, 0, NULL))
  452. return -1;
  453. switch (pix_fmt) {
  454. case PIX_FMT_RGB8:
  455. case PIX_FMT_BGR8:
  456. case PIX_FMT_RGB4_BYTE:
  457. case PIX_FMT_BGR4_BYTE:
  458. case PIX_FMT_GRAY8:
  459. // do not include palette for these pseudo-paletted formats
  460. return width * height;
  461. }
  462. return avpicture_fill(&dummy_pict, NULL, pix_fmt, width, height);
  463. }
  464. int avcodec_get_pix_fmt_loss(enum PixelFormat dst_pix_fmt, enum PixelFormat src_pix_fmt,
  465. int has_alpha)
  466. {
  467. const PixFmtInfo *pf, *ps;
  468. const AVPixFmtDescriptor *src_desc = &av_pix_fmt_descriptors[src_pix_fmt];
  469. const AVPixFmtDescriptor *dst_desc = &av_pix_fmt_descriptors[dst_pix_fmt];
  470. int loss;
  471. ps = &pix_fmt_info[src_pix_fmt];
  472. /* compute loss */
  473. loss = 0;
  474. pf = &pix_fmt_info[dst_pix_fmt];
  475. if (pf->depth < ps->depth ||
  476. ((dst_pix_fmt == PIX_FMT_RGB555BE || dst_pix_fmt == PIX_FMT_RGB555LE ||
  477. dst_pix_fmt == PIX_FMT_BGR555BE || dst_pix_fmt == PIX_FMT_BGR555LE) &&
  478. (src_pix_fmt == PIX_FMT_RGB565BE || src_pix_fmt == PIX_FMT_RGB565LE ||
  479. src_pix_fmt == PIX_FMT_BGR565BE || src_pix_fmt == PIX_FMT_BGR565LE)))
  480. loss |= FF_LOSS_DEPTH;
  481. if (dst_desc->log2_chroma_w > src_desc->log2_chroma_w ||
  482. dst_desc->log2_chroma_h > src_desc->log2_chroma_h)
  483. loss |= FF_LOSS_RESOLUTION;
  484. switch(pf->color_type) {
  485. case FF_COLOR_RGB:
  486. if (ps->color_type != FF_COLOR_RGB &&
  487. ps->color_type != FF_COLOR_GRAY)
  488. loss |= FF_LOSS_COLORSPACE;
  489. break;
  490. case FF_COLOR_GRAY:
  491. if (ps->color_type != FF_COLOR_GRAY)
  492. loss |= FF_LOSS_COLORSPACE;
  493. break;
  494. case FF_COLOR_YUV:
  495. if (ps->color_type != FF_COLOR_YUV)
  496. loss |= FF_LOSS_COLORSPACE;
  497. break;
  498. case FF_COLOR_YUV_JPEG:
  499. if (ps->color_type != FF_COLOR_YUV_JPEG &&
  500. ps->color_type != FF_COLOR_YUV &&
  501. ps->color_type != FF_COLOR_GRAY)
  502. loss |= FF_LOSS_COLORSPACE;
  503. break;
  504. default:
  505. /* fail safe test */
  506. if (ps->color_type != pf->color_type)
  507. loss |= FF_LOSS_COLORSPACE;
  508. break;
  509. }
  510. if (pf->color_type == FF_COLOR_GRAY &&
  511. ps->color_type != FF_COLOR_GRAY)
  512. loss |= FF_LOSS_CHROMA;
  513. if (!pf->is_alpha && (ps->is_alpha && has_alpha))
  514. loss |= FF_LOSS_ALPHA;
  515. if (pf->pixel_type == FF_PIXEL_PALETTE &&
  516. (ps->pixel_type != FF_PIXEL_PALETTE && ps->color_type != FF_COLOR_GRAY))
  517. loss |= FF_LOSS_COLORQUANT;
  518. return loss;
  519. }
  520. static int avg_bits_per_pixel(enum PixelFormat pix_fmt)
  521. {
  522. int bits;
  523. const PixFmtInfo *pf;
  524. const AVPixFmtDescriptor *desc = &av_pix_fmt_descriptors[pix_fmt];
  525. pf = &pix_fmt_info[pix_fmt];
  526. switch(pf->pixel_type) {
  527. case FF_PIXEL_PACKED:
  528. switch(pix_fmt) {
  529. case PIX_FMT_YUYV422:
  530. case PIX_FMT_UYVY422:
  531. case PIX_FMT_RGB565BE:
  532. case PIX_FMT_RGB565LE:
  533. case PIX_FMT_RGB555BE:
  534. case PIX_FMT_RGB555LE:
  535. case PIX_FMT_RGB444BE:
  536. case PIX_FMT_RGB444LE:
  537. case PIX_FMT_BGR565BE:
  538. case PIX_FMT_BGR565LE:
  539. case PIX_FMT_BGR555BE:
  540. case PIX_FMT_BGR555LE:
  541. case PIX_FMT_BGR444BE:
  542. case PIX_FMT_BGR444LE:
  543. bits = 16;
  544. break;
  545. case PIX_FMT_UYYVYY411:
  546. bits = 12;
  547. break;
  548. default:
  549. bits = pf->depth * pf->nb_channels;
  550. break;
  551. }
  552. break;
  553. case FF_PIXEL_PLANAR:
  554. if (desc->log2_chroma_w == 0 && desc->log2_chroma_h == 0) {
  555. bits = pf->depth * pf->nb_channels;
  556. } else {
  557. bits = pf->depth + ((2 * pf->depth) >>
  558. (desc->log2_chroma_w + desc->log2_chroma_h));
  559. }
  560. break;
  561. case FF_PIXEL_PALETTE:
  562. bits = 8;
  563. break;
  564. default:
  565. bits = -1;
  566. break;
  567. }
  568. return bits;
  569. }
  570. static enum PixelFormat avcodec_find_best_pix_fmt1(int64_t pix_fmt_mask,
  571. enum PixelFormat src_pix_fmt,
  572. int has_alpha,
  573. int loss_mask)
  574. {
  575. int dist, i, loss, min_dist;
  576. enum PixelFormat dst_pix_fmt;
  577. /* find exact color match with smallest size */
  578. dst_pix_fmt = PIX_FMT_NONE;
  579. min_dist = 0x7fffffff;
  580. for(i = 0;i < PIX_FMT_NB; i++) {
  581. if (pix_fmt_mask & (1ULL << i)) {
  582. loss = avcodec_get_pix_fmt_loss(i, src_pix_fmt, has_alpha) & loss_mask;
  583. if (loss == 0) {
  584. dist = avg_bits_per_pixel(i);
  585. if (dist < min_dist) {
  586. min_dist = dist;
  587. dst_pix_fmt = i;
  588. }
  589. }
  590. }
  591. }
  592. return dst_pix_fmt;
  593. }
  594. enum PixelFormat avcodec_find_best_pix_fmt(int64_t pix_fmt_mask, enum PixelFormat src_pix_fmt,
  595. int has_alpha, int *loss_ptr)
  596. {
  597. enum PixelFormat dst_pix_fmt;
  598. int loss_mask, i;
  599. static const int loss_mask_order[] = {
  600. ~0, /* no loss first */
  601. ~FF_LOSS_ALPHA,
  602. ~FF_LOSS_RESOLUTION,
  603. ~(FF_LOSS_COLORSPACE | FF_LOSS_RESOLUTION),
  604. ~FF_LOSS_COLORQUANT,
  605. ~FF_LOSS_DEPTH,
  606. 0,
  607. };
  608. /* try with successive loss */
  609. i = 0;
  610. for(;;) {
  611. loss_mask = loss_mask_order[i++];
  612. dst_pix_fmt = avcodec_find_best_pix_fmt1(pix_fmt_mask, src_pix_fmt,
  613. has_alpha, loss_mask);
  614. if (dst_pix_fmt >= 0)
  615. goto found;
  616. if (loss_mask == 0)
  617. break;
  618. }
  619. return PIX_FMT_NONE;
  620. found:
  621. if (loss_ptr)
  622. *loss_ptr = avcodec_get_pix_fmt_loss(dst_pix_fmt, src_pix_fmt, has_alpha);
  623. return dst_pix_fmt;
  624. }
  625. void av_picture_copy(AVPicture *dst, const AVPicture *src,
  626. enum PixelFormat pix_fmt, int width, int height)
  627. {
  628. av_image_copy(dst->data, dst->linesize, src->data,
  629. src->linesize, pix_fmt, width, height);
  630. }
  631. /* 2x2 -> 1x1 */
  632. void ff_shrink22(uint8_t *dst, int dst_wrap,
  633. const uint8_t *src, int src_wrap,
  634. int width, int height)
  635. {
  636. int w;
  637. const uint8_t *s1, *s2;
  638. uint8_t *d;
  639. for(;height > 0; height--) {
  640. s1 = src;
  641. s2 = s1 + src_wrap;
  642. d = dst;
  643. for(w = width;w >= 4; w-=4) {
  644. d[0] = (s1[0] + s1[1] + s2[0] + s2[1] + 2) >> 2;
  645. d[1] = (s1[2] + s1[3] + s2[2] + s2[3] + 2) >> 2;
  646. d[2] = (s1[4] + s1[5] + s2[4] + s2[5] + 2) >> 2;
  647. d[3] = (s1[6] + s1[7] + s2[6] + s2[7] + 2) >> 2;
  648. s1 += 8;
  649. s2 += 8;
  650. d += 4;
  651. }
  652. for(;w > 0; w--) {
  653. d[0] = (s1[0] + s1[1] + s2[0] + s2[1] + 2) >> 2;
  654. s1 += 2;
  655. s2 += 2;
  656. d++;
  657. }
  658. src += 2 * src_wrap;
  659. dst += dst_wrap;
  660. }
  661. }
  662. /* 4x4 -> 1x1 */
  663. void ff_shrink44(uint8_t *dst, int dst_wrap,
  664. const uint8_t *src, int src_wrap,
  665. int width, int height)
  666. {
  667. int w;
  668. const uint8_t *s1, *s2, *s3, *s4;
  669. uint8_t *d;
  670. for(;height > 0; height--) {
  671. s1 = src;
  672. s2 = s1 + src_wrap;
  673. s3 = s2 + src_wrap;
  674. s4 = s3 + src_wrap;
  675. d = dst;
  676. for(w = width;w > 0; w--) {
  677. d[0] = (s1[0] + s1[1] + s1[2] + s1[3] +
  678. s2[0] + s2[1] + s2[2] + s2[3] +
  679. s3[0] + s3[1] + s3[2] + s3[3] +
  680. s4[0] + s4[1] + s4[2] + s4[3] + 8) >> 4;
  681. s1 += 4;
  682. s2 += 4;
  683. s3 += 4;
  684. s4 += 4;
  685. d++;
  686. }
  687. src += 4 * src_wrap;
  688. dst += dst_wrap;
  689. }
  690. }
  691. /* 8x8 -> 1x1 */
  692. void ff_shrink88(uint8_t *dst, int dst_wrap,
  693. const uint8_t *src, int src_wrap,
  694. int width, int height)
  695. {
  696. int w, i;
  697. for(;height > 0; height--) {
  698. for(w = width;w > 0; w--) {
  699. int tmp=0;
  700. for(i=0; i<8; i++){
  701. tmp += src[0] + src[1] + src[2] + src[3] + src[4] + src[5] + src[6] + src[7];
  702. src += src_wrap;
  703. }
  704. *(dst++) = (tmp + 32)>>6;
  705. src += 8 - 8*src_wrap;
  706. }
  707. src += 8*src_wrap - 8*width;
  708. dst += dst_wrap - width;
  709. }
  710. }
  711. int avpicture_alloc(AVPicture *picture,
  712. enum PixelFormat pix_fmt, int width, int height)
  713. {
  714. int ret;
  715. if ((ret = av_image_alloc(picture->data, picture->linesize, width, height, pix_fmt, 1)) < 0) {
  716. memset(picture, 0, sizeof(AVPicture));
  717. return ret;
  718. }
  719. return 0;
  720. }
  721. void avpicture_free(AVPicture *picture)
  722. {
  723. av_free(picture->data[0]);
  724. }
  725. /* return true if yuv planar */
  726. static inline int is_yuv_planar(const PixFmtInfo *ps)
  727. {
  728. return (ps->color_type == FF_COLOR_YUV ||
  729. ps->color_type == FF_COLOR_YUV_JPEG) &&
  730. ps->pixel_type == FF_PIXEL_PLANAR;
  731. }
  732. int av_picture_crop(AVPicture *dst, const AVPicture *src,
  733. enum PixelFormat pix_fmt, int top_band, int left_band)
  734. {
  735. int y_shift;
  736. int x_shift;
  737. if (pix_fmt < 0 || pix_fmt >= PIX_FMT_NB || !is_yuv_planar(&pix_fmt_info[pix_fmt]))
  738. return -1;
  739. y_shift = av_pix_fmt_descriptors[pix_fmt].log2_chroma_h;
  740. x_shift = av_pix_fmt_descriptors[pix_fmt].log2_chroma_w;
  741. dst->data[0] = src->data[0] + (top_band * src->linesize[0]) + left_band;
  742. dst->data[1] = src->data[1] + ((top_band >> y_shift) * src->linesize[1]) + (left_band >> x_shift);
  743. dst->data[2] = src->data[2] + ((top_band >> y_shift) * src->linesize[2]) + (left_band >> x_shift);
  744. dst->linesize[0] = src->linesize[0];
  745. dst->linesize[1] = src->linesize[1];
  746. dst->linesize[2] = src->linesize[2];
  747. return 0;
  748. }
  749. int av_picture_pad(AVPicture *dst, const AVPicture *src, int height, int width,
  750. enum PixelFormat pix_fmt, int padtop, int padbottom, int padleft, int padright,
  751. int *color)
  752. {
  753. uint8_t *optr;
  754. int y_shift;
  755. int x_shift;
  756. int yheight;
  757. int i, y;
  758. if (pix_fmt < 0 || pix_fmt >= PIX_FMT_NB ||
  759. !is_yuv_planar(&pix_fmt_info[pix_fmt])) return -1;
  760. for (i = 0; i < 3; i++) {
  761. x_shift = i ? av_pix_fmt_descriptors[pix_fmt].log2_chroma_w : 0;
  762. y_shift = i ? av_pix_fmt_descriptors[pix_fmt].log2_chroma_h : 0;
  763. if (padtop || padleft) {
  764. memset(dst->data[i], color[i],
  765. dst->linesize[i] * (padtop >> y_shift) + (padleft >> x_shift));
  766. }
  767. if (padleft || padright) {
  768. optr = dst->data[i] + dst->linesize[i] * (padtop >> y_shift) +
  769. (dst->linesize[i] - (padright >> x_shift));
  770. yheight = (height - 1 - (padtop + padbottom)) >> y_shift;
  771. for (y = 0; y < yheight; y++) {
  772. memset(optr, color[i], (padleft + padright) >> x_shift);
  773. optr += dst->linesize[i];
  774. }
  775. }
  776. if (src) { /* first line */
  777. uint8_t *iptr = src->data[i];
  778. optr = dst->data[i] + dst->linesize[i] * (padtop >> y_shift) +
  779. (padleft >> x_shift);
  780. memcpy(optr, iptr, (width - padleft - padright) >> x_shift);
  781. iptr += src->linesize[i];
  782. optr = dst->data[i] + dst->linesize[i] * (padtop >> y_shift) +
  783. (dst->linesize[i] - (padright >> x_shift));
  784. yheight = (height - 1 - (padtop + padbottom)) >> y_shift;
  785. for (y = 0; y < yheight; y++) {
  786. memset(optr, color[i], (padleft + padright) >> x_shift);
  787. memcpy(optr + ((padleft + padright) >> x_shift), iptr,
  788. (width - padleft - padright) >> x_shift);
  789. iptr += src->linesize[i];
  790. optr += dst->linesize[i];
  791. }
  792. }
  793. if (padbottom || padright) {
  794. optr = dst->data[i] + dst->linesize[i] *
  795. ((height - padbottom) >> y_shift) - (padright >> x_shift);
  796. memset(optr, color[i],dst->linesize[i] *
  797. (padbottom >> y_shift) + (padright >> x_shift));
  798. }
  799. }
  800. return 0;
  801. }
  802. /* NOTE: we scan all the pixels to have an exact information */
  803. static int get_alpha_info_pal8(const AVPicture *src, int width, int height)
  804. {
  805. const unsigned char *p;
  806. int src_wrap, ret, x, y;
  807. unsigned int a;
  808. uint32_t *palette = (uint32_t *)src->data[1];
  809. p = src->data[0];
  810. src_wrap = src->linesize[0] - width;
  811. ret = 0;
  812. for(y=0;y<height;y++) {
  813. for(x=0;x<width;x++) {
  814. a = palette[p[0]] >> 24;
  815. if (a == 0x00) {
  816. ret |= FF_ALPHA_TRANSP;
  817. } else if (a != 0xff) {
  818. ret |= FF_ALPHA_SEMI_TRANSP;
  819. }
  820. p++;
  821. }
  822. p += src_wrap;
  823. }
  824. return ret;
  825. }
  826. int img_get_alpha_info(const AVPicture *src,
  827. enum PixelFormat pix_fmt, int width, int height)
  828. {
  829. const PixFmtInfo *pf = &pix_fmt_info[pix_fmt];
  830. int ret;
  831. /* no alpha can be represented in format */
  832. if (!pf->is_alpha)
  833. return 0;
  834. switch(pix_fmt) {
  835. case PIX_FMT_PAL8:
  836. ret = get_alpha_info_pal8(src, width, height);
  837. break;
  838. default:
  839. /* we do not know, so everything is indicated */
  840. ret = FF_ALPHA_TRANSP | FF_ALPHA_SEMI_TRANSP;
  841. break;
  842. }
  843. return ret;
  844. }
  845. #if !(HAVE_MMX && HAVE_YASM)
  846. /* filter parameters: [-1 4 2 4 -1] // 8 */
  847. static void deinterlace_line_c(uint8_t *dst,
  848. const uint8_t *lum_m4, const uint8_t *lum_m3,
  849. const uint8_t *lum_m2, const uint8_t *lum_m1,
  850. const uint8_t *lum,
  851. int size)
  852. {
  853. uint8_t *cm = ff_cropTbl + MAX_NEG_CROP;
  854. int sum;
  855. for(;size > 0;size--) {
  856. sum = -lum_m4[0];
  857. sum += lum_m3[0] << 2;
  858. sum += lum_m2[0] << 1;
  859. sum += lum_m1[0] << 2;
  860. sum += -lum[0];
  861. dst[0] = cm[(sum + 4) >> 3];
  862. lum_m4++;
  863. lum_m3++;
  864. lum_m2++;
  865. lum_m1++;
  866. lum++;
  867. dst++;
  868. }
  869. }
  870. static void deinterlace_line_inplace_c(uint8_t *lum_m4, uint8_t *lum_m3,
  871. uint8_t *lum_m2, uint8_t *lum_m1,
  872. uint8_t *lum, int size)
  873. {
  874. uint8_t *cm = ff_cropTbl + MAX_NEG_CROP;
  875. int sum;
  876. for(;size > 0;size--) {
  877. sum = -lum_m4[0];
  878. sum += lum_m3[0] << 2;
  879. sum += lum_m2[0] << 1;
  880. lum_m4[0]=lum_m2[0];
  881. sum += lum_m1[0] << 2;
  882. sum += -lum[0];
  883. lum_m2[0] = cm[(sum + 4) >> 3];
  884. lum_m4++;
  885. lum_m3++;
  886. lum_m2++;
  887. lum_m1++;
  888. lum++;
  889. }
  890. }
  891. #endif
  892. /* deinterlacing : 2 temporal taps, 3 spatial taps linear filter. The
  893. top field is copied as is, but the bottom field is deinterlaced
  894. against the top field. */
  895. static void deinterlace_bottom_field(uint8_t *dst, int dst_wrap,
  896. const uint8_t *src1, int src_wrap,
  897. int width, int height)
  898. {
  899. const uint8_t *src_m2, *src_m1, *src_0, *src_p1, *src_p2;
  900. int y;
  901. src_m2 = src1;
  902. src_m1 = src1;
  903. src_0=&src_m1[src_wrap];
  904. src_p1=&src_0[src_wrap];
  905. src_p2=&src_p1[src_wrap];
  906. for(y=0;y<(height-2);y+=2) {
  907. memcpy(dst,src_m1,width);
  908. dst += dst_wrap;
  909. deinterlace_line(dst,src_m2,src_m1,src_0,src_p1,src_p2,width);
  910. src_m2 = src_0;
  911. src_m1 = src_p1;
  912. src_0 = src_p2;
  913. src_p1 += 2*src_wrap;
  914. src_p2 += 2*src_wrap;
  915. dst += dst_wrap;
  916. }
  917. memcpy(dst,src_m1,width);
  918. dst += dst_wrap;
  919. /* do last line */
  920. deinterlace_line(dst,src_m2,src_m1,src_0,src_0,src_0,width);
  921. }
  922. static void deinterlace_bottom_field_inplace(uint8_t *src1, int src_wrap,
  923. int width, int height)
  924. {
  925. uint8_t *src_m1, *src_0, *src_p1, *src_p2;
  926. int y;
  927. uint8_t *buf;
  928. buf = (uint8_t*)av_malloc(width);
  929. src_m1 = src1;
  930. memcpy(buf,src_m1,width);
  931. src_0=&src_m1[src_wrap];
  932. src_p1=&src_0[src_wrap];
  933. src_p2=&src_p1[src_wrap];
  934. for(y=0;y<(height-2);y+=2) {
  935. deinterlace_line_inplace(buf,src_m1,src_0,src_p1,src_p2,width);
  936. src_m1 = src_p1;
  937. src_0 = src_p2;
  938. src_p1 += 2*src_wrap;
  939. src_p2 += 2*src_wrap;
  940. }
  941. /* do last line */
  942. deinterlace_line_inplace(buf,src_m1,src_0,src_0,src_0,width);
  943. av_free(buf);
  944. }
  945. int avpicture_deinterlace(AVPicture *dst, const AVPicture *src,
  946. enum PixelFormat pix_fmt, int width, int height)
  947. {
  948. int i;
  949. if (pix_fmt != PIX_FMT_YUV420P &&
  950. pix_fmt != PIX_FMT_YUVJ420P &&
  951. pix_fmt != PIX_FMT_YUV422P &&
  952. pix_fmt != PIX_FMT_YUVJ422P &&
  953. pix_fmt != PIX_FMT_YUV444P &&
  954. pix_fmt != PIX_FMT_YUV411P &&
  955. pix_fmt != PIX_FMT_GRAY8)
  956. return -1;
  957. if ((width & 3) != 0 || (height & 3) != 0)
  958. return -1;
  959. for(i=0;i<3;i++) {
  960. if (i == 1) {
  961. switch(pix_fmt) {
  962. case PIX_FMT_YUVJ420P:
  963. case PIX_FMT_YUV420P:
  964. width >>= 1;
  965. height >>= 1;
  966. break;
  967. case PIX_FMT_YUV422P:
  968. case PIX_FMT_YUVJ422P:
  969. width >>= 1;
  970. break;
  971. case PIX_FMT_YUV411P:
  972. width >>= 2;
  973. break;
  974. default:
  975. break;
  976. }
  977. if (pix_fmt == PIX_FMT_GRAY8) {
  978. break;
  979. }
  980. }
  981. if (src == dst) {
  982. deinterlace_bottom_field_inplace(dst->data[i], dst->linesize[i],
  983. width, height);
  984. } else {
  985. deinterlace_bottom_field(dst->data[i],dst->linesize[i],
  986. src->data[i], src->linesize[i],
  987. width, height);
  988. }
  989. }
  990. emms_c();
  991. return 0;
  992. }