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  1. /*
  2. * MJPEG decoder
  3. * Copyright (c) 2000, 2001 Fabrice Bellard
  4. * Copyright (c) 2003 Alex Beregszaszi
  5. * Copyright (c) 2003-2004 Michael Niedermayer
  6. *
  7. * Support for external huffman table, various fixes (AVID workaround),
  8. * aspecting, new decode_frame mechanism and apple mjpeg-b support
  9. * by Alex Beregszaszi
  10. *
  11. * This file is part of FFmpeg.
  12. *
  13. * FFmpeg is free software; you can redistribute it and/or
  14. * modify it under the terms of the GNU Lesser General Public
  15. * License as published by the Free Software Foundation; either
  16. * version 2.1 of the License, or (at your option) any later version.
  17. *
  18. * FFmpeg is distributed in the hope that it will be useful,
  19. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  20. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  21. * Lesser General Public License for more details.
  22. *
  23. * You should have received a copy of the GNU Lesser General Public
  24. * License along with FFmpeg; if not, write to the Free Software
  25. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  26. */
  27. /**
  28. * @file
  29. * MJPEG decoder.
  30. */
  31. #include "libavutil/imgutils.h"
  32. #include "libavutil/avassert.h"
  33. #include "libavutil/opt.h"
  34. #include "avcodec.h"
  35. #include "copy_block.h"
  36. #include "internal.h"
  37. #include "mjpeg.h"
  38. #include "mjpegdec.h"
  39. #include "jpeglsdec.h"
  40. #include "tiff.h"
  41. #include "exif.h"
  42. #include "bytestream.h"
  43. static int build_vlc(VLC *vlc, const uint8_t *bits_table,
  44. const uint8_t *val_table, int nb_codes,
  45. int use_static, int is_ac)
  46. {
  47. uint8_t huff_size[256] = { 0 };
  48. uint16_t huff_code[256];
  49. uint16_t huff_sym[256];
  50. int i;
  51. av_assert0(nb_codes <= 256);
  52. ff_mjpeg_build_huffman_codes(huff_size, huff_code, bits_table, val_table);
  53. for (i = 0; i < 256; i++)
  54. huff_sym[i] = i + 16 * is_ac;
  55. if (is_ac)
  56. huff_sym[0] = 16 * 256;
  57. return ff_init_vlc_sparse(vlc, 9, nb_codes, huff_size, 1, 1,
  58. huff_code, 2, 2, huff_sym, 2, 2, use_static);
  59. }
  60. static void build_basic_mjpeg_vlc(MJpegDecodeContext *s)
  61. {
  62. build_vlc(&s->vlcs[0][0], avpriv_mjpeg_bits_dc_luminance,
  63. avpriv_mjpeg_val_dc, 12, 0, 0);
  64. build_vlc(&s->vlcs[0][1], avpriv_mjpeg_bits_dc_chrominance,
  65. avpriv_mjpeg_val_dc, 12, 0, 0);
  66. build_vlc(&s->vlcs[1][0], avpriv_mjpeg_bits_ac_luminance,
  67. avpriv_mjpeg_val_ac_luminance, 251, 0, 1);
  68. build_vlc(&s->vlcs[1][1], avpriv_mjpeg_bits_ac_chrominance,
  69. avpriv_mjpeg_val_ac_chrominance, 251, 0, 1);
  70. build_vlc(&s->vlcs[2][0], avpriv_mjpeg_bits_ac_luminance,
  71. avpriv_mjpeg_val_ac_luminance, 251, 0, 0);
  72. build_vlc(&s->vlcs[2][1], avpriv_mjpeg_bits_ac_chrominance,
  73. avpriv_mjpeg_val_ac_chrominance, 251, 0, 0);
  74. }
  75. av_cold int ff_mjpeg_decode_init(AVCodecContext *avctx)
  76. {
  77. MJpegDecodeContext *s = avctx->priv_data;
  78. if (!s->picture_ptr)
  79. s->picture_ptr = &s->picture;
  80. avcodec_get_frame_defaults(&s->picture);
  81. s->avctx = avctx;
  82. ff_hpeldsp_init(&s->hdsp, avctx->flags);
  83. ff_dsputil_init(&s->dsp, avctx);
  84. ff_init_scantable(s->dsp.idct_permutation, &s->scantable, ff_zigzag_direct);
  85. s->buffer_size = 0;
  86. s->buffer = NULL;
  87. s->start_code = -1;
  88. s->first_picture = 1;
  89. s->got_picture = 0;
  90. s->org_height = avctx->coded_height;
  91. avctx->chroma_sample_location = AVCHROMA_LOC_CENTER;
  92. build_basic_mjpeg_vlc(s);
  93. if (s->extern_huff) {
  94. av_log(avctx, AV_LOG_INFO, "using external huffman table\n");
  95. init_get_bits(&s->gb, avctx->extradata, avctx->extradata_size * 8);
  96. if (ff_mjpeg_decode_dht(s)) {
  97. av_log(avctx, AV_LOG_ERROR,
  98. "error using external huffman table, switching back to internal\n");
  99. build_basic_mjpeg_vlc(s);
  100. }
  101. }
  102. if (avctx->field_order == AV_FIELD_BB) { /* quicktime icefloe 019 */
  103. s->interlace_polarity = 1; /* bottom field first */
  104. av_log(avctx, AV_LOG_DEBUG, "bottom field first\n");
  105. }
  106. if (avctx->codec->id == AV_CODEC_ID_AMV)
  107. s->flipped = 1;
  108. return 0;
  109. }
  110. /* quantize tables */
  111. int ff_mjpeg_decode_dqt(MJpegDecodeContext *s)
  112. {
  113. int len, index, i, j;
  114. len = get_bits(&s->gb, 16) - 2;
  115. while (len >= 65) {
  116. int pr = get_bits(&s->gb, 4);
  117. if (pr > 1) {
  118. av_log(s->avctx, AV_LOG_ERROR, "dqt: invalid precision\n");
  119. return AVERROR_INVALIDDATA;
  120. }
  121. index = get_bits(&s->gb, 4);
  122. if (index >= 4)
  123. return -1;
  124. av_log(s->avctx, AV_LOG_DEBUG, "index=%d\n", index);
  125. /* read quant table */
  126. for (i = 0; i < 64; i++) {
  127. j = s->scantable.permutated[i];
  128. s->quant_matrixes[index][j] = get_bits(&s->gb, pr ? 16 : 8);
  129. }
  130. // XXX FIXME finetune, and perhaps add dc too
  131. s->qscale[index] = FFMAX(s->quant_matrixes[index][s->scantable.permutated[1]],
  132. s->quant_matrixes[index][s->scantable.permutated[8]]) >> 1;
  133. av_log(s->avctx, AV_LOG_DEBUG, "qscale[%d]: %d\n",
  134. index, s->qscale[index]);
  135. len -= 65;
  136. }
  137. return 0;
  138. }
  139. /* decode huffman tables and build VLC decoders */
  140. int ff_mjpeg_decode_dht(MJpegDecodeContext *s)
  141. {
  142. int len, index, i, class, n, v, code_max;
  143. uint8_t bits_table[17];
  144. uint8_t val_table[256];
  145. int ret = 0;
  146. len = get_bits(&s->gb, 16) - 2;
  147. while (len > 0) {
  148. if (len < 17)
  149. return AVERROR_INVALIDDATA;
  150. class = get_bits(&s->gb, 4);
  151. if (class >= 2)
  152. return AVERROR_INVALIDDATA;
  153. index = get_bits(&s->gb, 4);
  154. if (index >= 4)
  155. return AVERROR_INVALIDDATA;
  156. n = 0;
  157. for (i = 1; i <= 16; i++) {
  158. bits_table[i] = get_bits(&s->gb, 8);
  159. n += bits_table[i];
  160. }
  161. len -= 17;
  162. if (len < n || n > 256)
  163. return AVERROR_INVALIDDATA;
  164. code_max = 0;
  165. for (i = 0; i < n; i++) {
  166. v = get_bits(&s->gb, 8);
  167. if (v > code_max)
  168. code_max = v;
  169. val_table[i] = v;
  170. }
  171. len -= n;
  172. /* build VLC and flush previous vlc if present */
  173. ff_free_vlc(&s->vlcs[class][index]);
  174. av_log(s->avctx, AV_LOG_DEBUG, "class=%d index=%d nb_codes=%d\n",
  175. class, index, code_max + 1);
  176. if ((ret = build_vlc(&s->vlcs[class][index], bits_table, val_table,
  177. code_max + 1, 0, class > 0)) < 0)
  178. return ret;
  179. if (class > 0) {
  180. ff_free_vlc(&s->vlcs[2][index]);
  181. if ((ret = build_vlc(&s->vlcs[2][index], bits_table, val_table,
  182. code_max + 1, 0, 0)) < 0)
  183. return ret;
  184. }
  185. }
  186. return 0;
  187. }
  188. int ff_mjpeg_decode_sof(MJpegDecodeContext *s)
  189. {
  190. int len, nb_components, i, width, height, pix_fmt_id;
  191. int h_count[MAX_COMPONENTS];
  192. int v_count[MAX_COMPONENTS];
  193. s->cur_scan = 0;
  194. s->upscale_h = s->upscale_v = 0;
  195. /* XXX: verify len field validity */
  196. len = get_bits(&s->gb, 16);
  197. s->avctx->bits_per_raw_sample =
  198. s->bits = get_bits(&s->gb, 8);
  199. if (s->pegasus_rct)
  200. s->bits = 9;
  201. if (s->bits == 9 && !s->pegasus_rct)
  202. s->rct = 1; // FIXME ugly
  203. if (s->bits != 8 && !s->lossless) {
  204. av_log(s->avctx, AV_LOG_ERROR, "only 8 bits/component accepted\n");
  205. return -1;
  206. }
  207. if(s->lossless && s->avctx->lowres){
  208. av_log(s->avctx, AV_LOG_ERROR, "lowres is not possible with lossless jpeg\n");
  209. return -1;
  210. }
  211. height = get_bits(&s->gb, 16);
  212. width = get_bits(&s->gb, 16);
  213. // HACK for odd_height.mov
  214. if (s->interlaced && s->width == width && s->height == height + 1)
  215. height= s->height;
  216. av_log(s->avctx, AV_LOG_DEBUG, "sof0: picture: %dx%d\n", width, height);
  217. if (av_image_check_size(width, height, 0, s->avctx))
  218. return AVERROR_INVALIDDATA;
  219. nb_components = get_bits(&s->gb, 8);
  220. if (nb_components <= 0 ||
  221. nb_components > MAX_COMPONENTS)
  222. return -1;
  223. if (s->interlaced && (s->bottom_field == !s->interlace_polarity)) {
  224. if (nb_components != s->nb_components) {
  225. av_log(s->avctx, AV_LOG_ERROR,
  226. "nb_components changing in interlaced picture\n");
  227. return AVERROR_INVALIDDATA;
  228. }
  229. }
  230. if (s->ls && !(s->bits <= 8 || nb_components == 1)) {
  231. avpriv_report_missing_feature(s->avctx,
  232. "JPEG-LS that is not <= 8 "
  233. "bits/component or 16-bit gray");
  234. return AVERROR_PATCHWELCOME;
  235. }
  236. s->nb_components = nb_components;
  237. s->h_max = 1;
  238. s->v_max = 1;
  239. memset(h_count, 0, sizeof(h_count));
  240. memset(v_count, 0, sizeof(v_count));
  241. for (i = 0; i < nb_components; i++) {
  242. /* component id */
  243. s->component_id[i] = get_bits(&s->gb, 8) - 1;
  244. h_count[i] = get_bits(&s->gb, 4);
  245. v_count[i] = get_bits(&s->gb, 4);
  246. /* compute hmax and vmax (only used in interleaved case) */
  247. if (h_count[i] > s->h_max)
  248. s->h_max = h_count[i];
  249. if (v_count[i] > s->v_max)
  250. s->v_max = v_count[i];
  251. s->quant_index[i] = get_bits(&s->gb, 8);
  252. if (s->quant_index[i] >= 4) {
  253. av_log(s->avctx, AV_LOG_ERROR, "quant_index is invalid\n");
  254. return AVERROR_INVALIDDATA;
  255. }
  256. if (!h_count[i] || !v_count[i]) {
  257. av_log(s->avctx, AV_LOG_ERROR,
  258. "Invalid sampling factor in component %d %d:%d\n",
  259. i, h_count[i], v_count[i]);
  260. return AVERROR_INVALIDDATA;
  261. }
  262. av_log(s->avctx, AV_LOG_DEBUG, "component %d %d:%d id: %d quant:%d\n",
  263. i, h_count[i], v_count[i],
  264. s->component_id[i], s->quant_index[i]);
  265. }
  266. if (s->ls && (s->h_max > 1 || s->v_max > 1)) {
  267. avpriv_report_missing_feature(s->avctx, "Subsampling in JPEG-LS");
  268. return AVERROR_PATCHWELCOME;
  269. }
  270. /* if different size, realloc/alloc picture */
  271. if ( width != s->width || height != s->height
  272. || memcmp(s->h_count, h_count, sizeof(h_count))
  273. || memcmp(s->v_count, v_count, sizeof(v_count))) {
  274. s->width = width;
  275. s->height = height;
  276. memcpy(s->h_count, h_count, sizeof(h_count));
  277. memcpy(s->v_count, v_count, sizeof(v_count));
  278. s->interlaced = 0;
  279. s->got_picture = 0;
  280. /* test interlaced mode */
  281. if (s->first_picture &&
  282. s->org_height != 0 &&
  283. s->height < ((s->org_height * 3) / 4)) {
  284. s->interlaced = 1;
  285. s->bottom_field = s->interlace_polarity;
  286. s->picture_ptr->interlaced_frame = 1;
  287. s->picture_ptr->top_field_first = !s->interlace_polarity;
  288. height *= 2;
  289. }
  290. avcodec_set_dimensions(s->avctx, width, height);
  291. s->first_picture = 0;
  292. }
  293. if (s->interlaced && (s->bottom_field == !s->interlace_polarity)) {
  294. if (s->progressive) {
  295. avpriv_request_sample(s->avctx, "progressively coded interlaced picture");
  296. return AVERROR_INVALIDDATA;
  297. }
  298. } else{
  299. if (s->v_max == 1 && s->h_max == 1 && s->lossless==1 && (nb_components==3 || nb_components==4))
  300. s->rgb = 1;
  301. else if (!s->lossless)
  302. s->rgb = 0;
  303. /* XXX: not complete test ! */
  304. pix_fmt_id = (s->h_count[0] << 28) | (s->v_count[0] << 24) |
  305. (s->h_count[1] << 20) | (s->v_count[1] << 16) |
  306. (s->h_count[2] << 12) | (s->v_count[2] << 8) |
  307. (s->h_count[3] << 4) | s->v_count[3];
  308. av_log(s->avctx, AV_LOG_DEBUG, "pix fmt id %x\n", pix_fmt_id);
  309. /* NOTE we do not allocate pictures large enough for the possible
  310. * padding of h/v_count being 4 */
  311. if (!(pix_fmt_id & 0xD0D0D0D0))
  312. pix_fmt_id -= (pix_fmt_id & 0xF0F0F0F0) >> 1;
  313. if (!(pix_fmt_id & 0x0D0D0D0D))
  314. pix_fmt_id -= (pix_fmt_id & 0x0F0F0F0F) >> 1;
  315. switch (pix_fmt_id) {
  316. case 0x11111100:
  317. if (s->rgb)
  318. s->avctx->pix_fmt = AV_PIX_FMT_BGR24;
  319. else {
  320. if (s->component_id[0] == 'Q' && s->component_id[1] == 'F' && s->component_id[2] == 'A') {
  321. s->avctx->pix_fmt = AV_PIX_FMT_GBR24P;
  322. } else {
  323. s->avctx->pix_fmt = s->cs_itu601 ? AV_PIX_FMT_YUV444P : AV_PIX_FMT_YUVJ444P;
  324. s->avctx->color_range = s->cs_itu601 ? AVCOL_RANGE_MPEG : AVCOL_RANGE_JPEG;
  325. }
  326. }
  327. av_assert0(s->nb_components == 3);
  328. break;
  329. case 0x11111111:
  330. if (s->rgb)
  331. s->avctx->pix_fmt = AV_PIX_FMT_ABGR;
  332. else {
  333. s->avctx->pix_fmt = /*s->cs_itu601 ?*/ AV_PIX_FMT_YUVA444P/* : AV_PIX_FMT_YUVJA444P*/;
  334. s->avctx->color_range = s->cs_itu601 ? AVCOL_RANGE_MPEG : AVCOL_RANGE_JPEG;
  335. }
  336. av_assert0(s->nb_components == 4);
  337. break;
  338. case 0x12121100:
  339. case 0x22122100:
  340. s->avctx->pix_fmt = s->cs_itu601 ? AV_PIX_FMT_YUV444P : AV_PIX_FMT_YUVJ444P;
  341. s->avctx->color_range = s->cs_itu601 ? AVCOL_RANGE_MPEG : AVCOL_RANGE_JPEG;
  342. s->upscale_v = 2;
  343. s->upscale_h = (pix_fmt_id == 0x22122100);
  344. s->chroma_height = s->height;
  345. break;
  346. case 0x21211100:
  347. case 0x22211200:
  348. s->avctx->pix_fmt = s->cs_itu601 ? AV_PIX_FMT_YUV444P : AV_PIX_FMT_YUVJ444P;
  349. s->avctx->color_range = s->cs_itu601 ? AVCOL_RANGE_MPEG : AVCOL_RANGE_JPEG;
  350. s->upscale_v = (pix_fmt_id == 0x22211200);
  351. s->upscale_h = 2;
  352. s->chroma_height = s->height;
  353. break;
  354. case 0x22221100:
  355. s->avctx->pix_fmt = s->cs_itu601 ? AV_PIX_FMT_YUV444P : AV_PIX_FMT_YUVJ444P;
  356. s->avctx->color_range = s->cs_itu601 ? AVCOL_RANGE_MPEG : AVCOL_RANGE_JPEG;
  357. s->upscale_v = 2;
  358. s->upscale_h = 2;
  359. s->chroma_height = s->height / 2;
  360. break;
  361. case 0x11000000:
  362. case 0x13000000:
  363. case 0x14000000:
  364. case 0x31000000:
  365. case 0x33000000:
  366. case 0x34000000:
  367. case 0x41000000:
  368. case 0x43000000:
  369. case 0x44000000:
  370. if(s->bits <= 8)
  371. s->avctx->pix_fmt = AV_PIX_FMT_GRAY8;
  372. else
  373. s->avctx->pix_fmt = AV_PIX_FMT_GRAY16;
  374. break;
  375. case 0x12111100:
  376. case 0x22211100:
  377. case 0x22112100:
  378. s->avctx->pix_fmt = s->cs_itu601 ? AV_PIX_FMT_YUV440P : AV_PIX_FMT_YUVJ440P;
  379. s->avctx->color_range = s->cs_itu601 ? AVCOL_RANGE_MPEG : AVCOL_RANGE_JPEG;
  380. s->upscale_h = (pix_fmt_id == 0x22211100) * 2 + (pix_fmt_id == 0x22112100);
  381. s->chroma_height = s->height / 2;
  382. break;
  383. case 0x21111100:
  384. s->avctx->pix_fmt = s->cs_itu601 ? AV_PIX_FMT_YUV422P : AV_PIX_FMT_YUVJ422P;
  385. s->avctx->color_range = s->cs_itu601 ? AVCOL_RANGE_MPEG : AVCOL_RANGE_JPEG;
  386. break;
  387. case 0x22121100:
  388. case 0x22111200:
  389. s->avctx->pix_fmt = s->cs_itu601 ? AV_PIX_FMT_YUV422P : AV_PIX_FMT_YUVJ422P;
  390. s->avctx->color_range = s->cs_itu601 ? AVCOL_RANGE_MPEG : AVCOL_RANGE_JPEG;
  391. s->upscale_v = (pix_fmt_id == 0x22121100) + 1;
  392. break;
  393. case 0x22111100:
  394. s->avctx->pix_fmt = s->cs_itu601 ? AV_PIX_FMT_YUV420P : AV_PIX_FMT_YUVJ420P;
  395. s->avctx->color_range = s->cs_itu601 ? AVCOL_RANGE_MPEG : AVCOL_RANGE_JPEG;
  396. break;
  397. case 0x41111100:
  398. s->avctx->pix_fmt = s->cs_itu601 ? AV_PIX_FMT_YUV411P : AV_PIX_FMT_YUVJ411P;
  399. s->avctx->color_range = s->cs_itu601 ? AVCOL_RANGE_MPEG : AVCOL_RANGE_JPEG;
  400. break;
  401. default:
  402. av_log(s->avctx, AV_LOG_ERROR, "Unhandled pixel format 0x%x\n", pix_fmt_id);
  403. return AVERROR_PATCHWELCOME;
  404. }
  405. if ((s->upscale_h || s->upscale_v) && s->avctx->lowres) {
  406. av_log(s->avctx, AV_LOG_ERROR, "lowres not supported for weird subsampling\n");
  407. return AVERROR_PATCHWELCOME;
  408. }
  409. if (s->ls) {
  410. s->upscale_h = s->upscale_v = 0;
  411. if (s->nb_components > 1)
  412. s->avctx->pix_fmt = AV_PIX_FMT_RGB24;
  413. else if (s->bits <= 8)
  414. s->avctx->pix_fmt = AV_PIX_FMT_GRAY8;
  415. else
  416. s->avctx->pix_fmt = AV_PIX_FMT_GRAY16;
  417. }
  418. av_frame_unref(s->picture_ptr);
  419. if (ff_get_buffer(s->avctx, s->picture_ptr, AV_GET_BUFFER_FLAG_REF) < 0)
  420. return -1;
  421. s->picture_ptr->pict_type = AV_PICTURE_TYPE_I;
  422. s->picture_ptr->key_frame = 1;
  423. s->got_picture = 1;
  424. for (i = 0; i < 3; i++)
  425. s->linesize[i] = s->picture_ptr->linesize[i] << s->interlaced;
  426. av_dlog(s->avctx, "%d %d %d %d %d %d\n",
  427. s->width, s->height, s->linesize[0], s->linesize[1],
  428. s->interlaced, s->avctx->height);
  429. if (len != (8 + (3 * nb_components)))
  430. av_log(s->avctx, AV_LOG_DEBUG, "decode_sof0: error, len(%d) mismatch\n", len);
  431. }
  432. if (s->rgb && !s->lossless && !s->ls) {
  433. av_log(s->avctx, AV_LOG_ERROR, "Unsupported coding and pixel format combination\n");
  434. return AVERROR_PATCHWELCOME;
  435. }
  436. /* totally blank picture as progressive JPEG will only add details to it */
  437. if (s->progressive) {
  438. int bw = (width + s->h_max * 8 - 1) / (s->h_max * 8);
  439. int bh = (height + s->v_max * 8 - 1) / (s->v_max * 8);
  440. for (i = 0; i < s->nb_components; i++) {
  441. int size = bw * bh * s->h_count[i] * s->v_count[i];
  442. av_freep(&s->blocks[i]);
  443. av_freep(&s->last_nnz[i]);
  444. s->blocks[i] = av_malloc(size * sizeof(**s->blocks));
  445. s->last_nnz[i] = av_mallocz(size * sizeof(**s->last_nnz));
  446. s->block_stride[i] = bw * s->h_count[i];
  447. }
  448. memset(s->coefs_finished, 0, sizeof(s->coefs_finished));
  449. }
  450. return 0;
  451. }
  452. static inline int mjpeg_decode_dc(MJpegDecodeContext *s, int dc_index)
  453. {
  454. int code;
  455. code = get_vlc2(&s->gb, s->vlcs[0][dc_index].table, 9, 2);
  456. if (code < 0 || code > 16) {
  457. av_log(s->avctx, AV_LOG_WARNING,
  458. "mjpeg_decode_dc: bad vlc: %d:%d (%p)\n",
  459. 0, dc_index, &s->vlcs[0][dc_index]);
  460. return 0xffff;
  461. }
  462. if (code)
  463. return get_xbits(&s->gb, code);
  464. else
  465. return 0;
  466. }
  467. /* decode block and dequantize */
  468. static int decode_block(MJpegDecodeContext *s, int16_t *block, int component,
  469. int dc_index, int ac_index, int16_t *quant_matrix)
  470. {
  471. int code, i, j, level, val;
  472. /* DC coef */
  473. val = mjpeg_decode_dc(s, dc_index);
  474. if (val == 0xffff) {
  475. av_log(s->avctx, AV_LOG_ERROR, "error dc\n");
  476. return AVERROR_INVALIDDATA;
  477. }
  478. val = val * quant_matrix[0] + s->last_dc[component];
  479. s->last_dc[component] = val;
  480. block[0] = val;
  481. /* AC coefs */
  482. i = 0;
  483. {OPEN_READER(re, &s->gb);
  484. do {
  485. UPDATE_CACHE(re, &s->gb);
  486. GET_VLC(code, re, &s->gb, s->vlcs[1][ac_index].table, 9, 2);
  487. i += ((unsigned)code) >> 4;
  488. code &= 0xf;
  489. if (code) {
  490. if (code > MIN_CACHE_BITS - 16)
  491. UPDATE_CACHE(re, &s->gb);
  492. {
  493. int cache = GET_CACHE(re, &s->gb);
  494. int sign = (~cache) >> 31;
  495. level = (NEG_USR32(sign ^ cache,code) ^ sign) - sign;
  496. }
  497. LAST_SKIP_BITS(re, &s->gb, code);
  498. if (i > 63) {
  499. av_log(s->avctx, AV_LOG_ERROR, "error count: %d\n", i);
  500. return AVERROR_INVALIDDATA;
  501. }
  502. j = s->scantable.permutated[i];
  503. block[j] = level * quant_matrix[j];
  504. }
  505. } while (i < 63);
  506. CLOSE_READER(re, &s->gb);}
  507. return 0;
  508. }
  509. static int decode_dc_progressive(MJpegDecodeContext *s, int16_t *block,
  510. int component, int dc_index,
  511. int16_t *quant_matrix, int Al)
  512. {
  513. int val;
  514. s->dsp.clear_block(block);
  515. val = mjpeg_decode_dc(s, dc_index);
  516. if (val == 0xffff) {
  517. av_log(s->avctx, AV_LOG_ERROR, "error dc\n");
  518. return AVERROR_INVALIDDATA;
  519. }
  520. val = (val * quant_matrix[0] << Al) + s->last_dc[component];
  521. s->last_dc[component] = val;
  522. block[0] = val;
  523. return 0;
  524. }
  525. /* decode block and dequantize - progressive JPEG version */
  526. static int decode_block_progressive(MJpegDecodeContext *s, int16_t *block,
  527. uint8_t *last_nnz, int ac_index,
  528. int16_t *quant_matrix,
  529. int ss, int se, int Al, int *EOBRUN)
  530. {
  531. int code, i, j, level, val, run;
  532. if (*EOBRUN) {
  533. (*EOBRUN)--;
  534. return 0;
  535. }
  536. {
  537. OPEN_READER(re, &s->gb);
  538. for (i = ss; ; i++) {
  539. UPDATE_CACHE(re, &s->gb);
  540. GET_VLC(code, re, &s->gb, s->vlcs[2][ac_index].table, 9, 2);
  541. run = ((unsigned) code) >> 4;
  542. code &= 0xF;
  543. if (code) {
  544. i += run;
  545. if (code > MIN_CACHE_BITS - 16)
  546. UPDATE_CACHE(re, &s->gb);
  547. {
  548. int cache = GET_CACHE(re, &s->gb);
  549. int sign = (~cache) >> 31;
  550. level = (NEG_USR32(sign ^ cache,code) ^ sign) - sign;
  551. }
  552. LAST_SKIP_BITS(re, &s->gb, code);
  553. if (i >= se) {
  554. if (i == se) {
  555. j = s->scantable.permutated[se];
  556. block[j] = level * quant_matrix[j] << Al;
  557. break;
  558. }
  559. av_log(s->avctx, AV_LOG_ERROR, "error count: %d\n", i);
  560. return AVERROR_INVALIDDATA;
  561. }
  562. j = s->scantable.permutated[i];
  563. block[j] = level * quant_matrix[j] << Al;
  564. } else {
  565. if (run == 0xF) {// ZRL - skip 15 coefficients
  566. i += 15;
  567. if (i >= se) {
  568. av_log(s->avctx, AV_LOG_ERROR, "ZRL overflow: %d\n", i);
  569. return AVERROR_INVALIDDATA;
  570. }
  571. } else {
  572. val = (1 << run);
  573. if (run) {
  574. UPDATE_CACHE(re, &s->gb);
  575. val += NEG_USR32(GET_CACHE(re, &s->gb), run);
  576. LAST_SKIP_BITS(re, &s->gb, run);
  577. }
  578. *EOBRUN = val - 1;
  579. break;
  580. }
  581. }
  582. }
  583. CLOSE_READER(re, &s->gb);
  584. }
  585. if (i > *last_nnz)
  586. *last_nnz = i;
  587. return 0;
  588. }
  589. #define REFINE_BIT(j) { \
  590. UPDATE_CACHE(re, &s->gb); \
  591. sign = block[j] >> 15; \
  592. block[j] += SHOW_UBITS(re, &s->gb, 1) * \
  593. ((quant_matrix[j] ^ sign) - sign) << Al; \
  594. LAST_SKIP_BITS(re, &s->gb, 1); \
  595. }
  596. #define ZERO_RUN \
  597. for (; ; i++) { \
  598. if (i > last) { \
  599. i += run; \
  600. if (i > se) { \
  601. av_log(s->avctx, AV_LOG_ERROR, "error count: %d\n", i); \
  602. return -1; \
  603. } \
  604. break; \
  605. } \
  606. j = s->scantable.permutated[i]; \
  607. if (block[j]) \
  608. REFINE_BIT(j) \
  609. else if (run-- == 0) \
  610. break; \
  611. }
  612. /* decode block and dequantize - progressive JPEG refinement pass */
  613. static int decode_block_refinement(MJpegDecodeContext *s, int16_t *block,
  614. uint8_t *last_nnz,
  615. int ac_index, int16_t *quant_matrix,
  616. int ss, int se, int Al, int *EOBRUN)
  617. {
  618. int code, i = ss, j, sign, val, run;
  619. int last = FFMIN(se, *last_nnz);
  620. OPEN_READER(re, &s->gb);
  621. if (*EOBRUN) {
  622. (*EOBRUN)--;
  623. } else {
  624. for (; ; i++) {
  625. UPDATE_CACHE(re, &s->gb);
  626. GET_VLC(code, re, &s->gb, s->vlcs[2][ac_index].table, 9, 2);
  627. if (code & 0xF) {
  628. run = ((unsigned) code) >> 4;
  629. UPDATE_CACHE(re, &s->gb);
  630. val = SHOW_UBITS(re, &s->gb, 1);
  631. LAST_SKIP_BITS(re, &s->gb, 1);
  632. ZERO_RUN;
  633. j = s->scantable.permutated[i];
  634. val--;
  635. block[j] = ((quant_matrix[j]^val) - val) << Al;
  636. if (i == se) {
  637. if (i > *last_nnz)
  638. *last_nnz = i;
  639. CLOSE_READER(re, &s->gb);
  640. return 0;
  641. }
  642. } else {
  643. run = ((unsigned) code) >> 4;
  644. if (run == 0xF) {
  645. ZERO_RUN;
  646. } else {
  647. val = run;
  648. run = (1 << run);
  649. if (val) {
  650. UPDATE_CACHE(re, &s->gb);
  651. run += SHOW_UBITS(re, &s->gb, val);
  652. LAST_SKIP_BITS(re, &s->gb, val);
  653. }
  654. *EOBRUN = run - 1;
  655. break;
  656. }
  657. }
  658. }
  659. if (i > *last_nnz)
  660. *last_nnz = i;
  661. }
  662. for (; i <= last; i++) {
  663. j = s->scantable.permutated[i];
  664. if (block[j])
  665. REFINE_BIT(j)
  666. }
  667. CLOSE_READER(re, &s->gb);
  668. return 0;
  669. }
  670. #undef REFINE_BIT
  671. #undef ZERO_RUN
  672. static int handle_rstn(MJpegDecodeContext *s, int nb_components)
  673. {
  674. int i;
  675. int reset = 0;
  676. if (s->restart_interval) {
  677. s->restart_count--;
  678. if(s->restart_count == 0 && s->avctx->codec_id == AV_CODEC_ID_THP){
  679. align_get_bits(&s->gb);
  680. for (i = 0; i < nb_components; i++) /* reset dc */
  681. s->last_dc[i] = 1024;
  682. }
  683. i = 8 + ((-get_bits_count(&s->gb)) & 7);
  684. /* skip RSTn */
  685. if (s->restart_count == 0) {
  686. if( show_bits(&s->gb, i) == (1 << i) - 1
  687. || show_bits(&s->gb, i) == 0xFF) {
  688. int pos = get_bits_count(&s->gb);
  689. align_get_bits(&s->gb);
  690. while (get_bits_left(&s->gb) >= 8 && show_bits(&s->gb, 8) == 0xFF)
  691. skip_bits(&s->gb, 8);
  692. if (get_bits_left(&s->gb) >= 8 && (get_bits(&s->gb, 8) & 0xF8) == 0xD0) {
  693. for (i = 0; i < nb_components; i++) /* reset dc */
  694. s->last_dc[i] = 1024;
  695. reset = 1;
  696. } else
  697. skip_bits_long(&s->gb, pos - get_bits_count(&s->gb));
  698. }
  699. }
  700. }
  701. return reset;
  702. }
  703. static int ljpeg_decode_rgb_scan(MJpegDecodeContext *s, int nb_components, int predictor, int point_transform)
  704. {
  705. int i, mb_x, mb_y;
  706. uint16_t (*buffer)[4];
  707. int left[4], top[4], topleft[4];
  708. const int linesize = s->linesize[0];
  709. const int mask = (1 << s->bits) - 1;
  710. int resync_mb_y = 0;
  711. int resync_mb_x = 0;
  712. if (s->nb_components != 3 && s->nb_components != 4)
  713. return AVERROR_INVALIDDATA;
  714. if (s->v_max != 1 || s->h_max != 1 || !s->lossless)
  715. return AVERROR_INVALIDDATA;
  716. s->restart_count = s->restart_interval;
  717. av_fast_malloc(&s->ljpeg_buffer, &s->ljpeg_buffer_size,
  718. (unsigned)s->mb_width * 4 * sizeof(s->ljpeg_buffer[0][0]));
  719. buffer = s->ljpeg_buffer;
  720. for (i = 0; i < 4; i++)
  721. buffer[0][i] = 1 << (s->bits - 1);
  722. for (mb_y = 0; mb_y < s->mb_height; mb_y++) {
  723. uint8_t *ptr = s->picture.data[0] + (linesize * mb_y);
  724. if (s->interlaced && s->bottom_field)
  725. ptr += linesize >> 1;
  726. for (i = 0; i < 4; i++)
  727. top[i] = left[i] = topleft[i] = buffer[0][i];
  728. for (mb_x = 0; mb_x < s->mb_width; mb_x++) {
  729. int modified_predictor = predictor;
  730. if (s->restart_interval && !s->restart_count){
  731. s->restart_count = s->restart_interval;
  732. resync_mb_x = mb_x;
  733. resync_mb_y = mb_y;
  734. for(i=0; i<4; i++)
  735. top[i] = left[i]= topleft[i]= 1 << (s->bits - 1);
  736. }
  737. if (mb_y == resync_mb_y || mb_y == resync_mb_y+1 && mb_x < resync_mb_x || !mb_x)
  738. modified_predictor = 1;
  739. for (i=0;i<nb_components;i++) {
  740. int pred, dc;
  741. topleft[i] = top[i];
  742. top[i] = buffer[mb_x][i];
  743. PREDICT(pred, topleft[i], top[i], left[i], modified_predictor);
  744. dc = mjpeg_decode_dc(s, s->dc_index[i]);
  745. if(dc == 0xFFFF)
  746. return -1;
  747. left[i] = buffer[mb_x][i] =
  748. mask & (pred + (dc << point_transform));
  749. }
  750. if (s->restart_interval && !--s->restart_count) {
  751. align_get_bits(&s->gb);
  752. skip_bits(&s->gb, 16); /* skip RSTn */
  753. }
  754. }
  755. if (s->nb_components == 4) {
  756. for(i=0; i<nb_components; i++) {
  757. int c= s->comp_index[i];
  758. for(mb_x = 0; mb_x < s->mb_width; mb_x++) {
  759. ptr[4*mb_x+3-c] = buffer[mb_x][i];
  760. }
  761. }
  762. } else if (s->rct) {
  763. for (mb_x = 0; mb_x < s->mb_width; mb_x++) {
  764. ptr[3*mb_x + 1] = buffer[mb_x][0] - ((buffer[mb_x][1] + buffer[mb_x][2] - 0x200) >> 2);
  765. ptr[3*mb_x + 0] = buffer[mb_x][1] + ptr[3*mb_x + 1];
  766. ptr[3*mb_x + 2] = buffer[mb_x][2] + ptr[3*mb_x + 1];
  767. }
  768. } else if (s->pegasus_rct) {
  769. for (mb_x = 0; mb_x < s->mb_width; mb_x++) {
  770. ptr[3*mb_x + 1] = buffer[mb_x][0] - ((buffer[mb_x][1] + buffer[mb_x][2]) >> 2);
  771. ptr[3*mb_x + 0] = buffer[mb_x][1] + ptr[3*mb_x + 1];
  772. ptr[3*mb_x + 2] = buffer[mb_x][2] + ptr[3*mb_x + 1];
  773. }
  774. } else {
  775. for(i=0; i<nb_components; i++) {
  776. int c= s->comp_index[i];
  777. for(mb_x = 0; mb_x < s->mb_width; mb_x++) {
  778. ptr[3*mb_x+2-c] = buffer[mb_x][i];
  779. }
  780. }
  781. }
  782. }
  783. return 0;
  784. }
  785. static int ljpeg_decode_yuv_scan(MJpegDecodeContext *s, int predictor,
  786. int point_transform, int nb_components)
  787. {
  788. int i, mb_x, mb_y;
  789. int bits= (s->bits+7)&~7;
  790. int resync_mb_y = 0;
  791. int resync_mb_x = 0;
  792. point_transform += bits - s->bits;
  793. av_assert0(nb_components>=1 && nb_components<=4);
  794. for (mb_y = 0; mb_y < s->mb_height; mb_y++) {
  795. for (mb_x = 0; mb_x < s->mb_width; mb_x++) {
  796. if (s->restart_interval && !s->restart_count){
  797. s->restart_count = s->restart_interval;
  798. resync_mb_x = mb_x;
  799. resync_mb_y = mb_y;
  800. }
  801. if(!mb_x || mb_y == resync_mb_y || mb_y == resync_mb_y+1 && mb_x < resync_mb_x || s->interlaced){
  802. int toprow = mb_y == resync_mb_y || mb_y == resync_mb_y+1 && mb_x < resync_mb_x;
  803. int leftcol = !mb_x || mb_y == resync_mb_y && mb_x == resync_mb_x;
  804. for (i = 0; i < nb_components; i++) {
  805. uint8_t *ptr;
  806. uint16_t *ptr16;
  807. int n, h, v, x, y, c, j, linesize;
  808. n = s->nb_blocks[i];
  809. c = s->comp_index[i];
  810. h = s->h_scount[i];
  811. v = s->v_scount[i];
  812. x = 0;
  813. y = 0;
  814. linesize= s->linesize[c];
  815. if(bits>8) linesize /= 2;
  816. for(j=0; j<n; j++) {
  817. int pred, dc;
  818. dc = mjpeg_decode_dc(s, s->dc_index[i]);
  819. if(dc == 0xFFFF)
  820. return -1;
  821. if(bits<=8){
  822. ptr = s->picture.data[c] + (linesize * (v * mb_y + y)) + (h * mb_x + x); //FIXME optimize this crap
  823. if(y==0 && toprow){
  824. if(x==0 && leftcol){
  825. pred= 1 << (bits - 1);
  826. }else{
  827. pred= ptr[-1];
  828. }
  829. }else{
  830. if(x==0 && leftcol){
  831. pred= ptr[-linesize];
  832. }else{
  833. PREDICT(pred, ptr[-linesize-1], ptr[-linesize], ptr[-1], predictor);
  834. }
  835. }
  836. if (s->interlaced && s->bottom_field)
  837. ptr += linesize >> 1;
  838. pred &= (-1)<<(8-s->bits);
  839. *ptr= pred + (dc << point_transform);
  840. }else{
  841. ptr16 = (uint16_t*)(s->picture.data[c] + 2*(linesize * (v * mb_y + y)) + 2*(h * mb_x + x)); //FIXME optimize this crap
  842. if(y==0 && toprow){
  843. if(x==0 && leftcol){
  844. pred= 1 << (bits - 1);
  845. }else{
  846. pred= ptr16[-1];
  847. }
  848. }else{
  849. if(x==0 && leftcol){
  850. pred= ptr16[-linesize];
  851. }else{
  852. PREDICT(pred, ptr16[-linesize-1], ptr16[-linesize], ptr16[-1], predictor);
  853. }
  854. }
  855. if (s->interlaced && s->bottom_field)
  856. ptr16 += linesize >> 1;
  857. pred &= (-1)<<(16-s->bits);
  858. *ptr16= pred + (dc << point_transform);
  859. }
  860. if (++x == h) {
  861. x = 0;
  862. y++;
  863. }
  864. }
  865. }
  866. } else {
  867. for (i = 0; i < nb_components; i++) {
  868. uint8_t *ptr;
  869. uint16_t *ptr16;
  870. int n, h, v, x, y, c, j, linesize, dc;
  871. n = s->nb_blocks[i];
  872. c = s->comp_index[i];
  873. h = s->h_scount[i];
  874. v = s->v_scount[i];
  875. x = 0;
  876. y = 0;
  877. linesize = s->linesize[c];
  878. if(bits>8) linesize /= 2;
  879. for (j = 0; j < n; j++) {
  880. int pred;
  881. dc = mjpeg_decode_dc(s, s->dc_index[i]);
  882. if(dc == 0xFFFF)
  883. return -1;
  884. if(bits<=8){
  885. ptr = s->picture.data[c] +
  886. (linesize * (v * mb_y + y)) +
  887. (h * mb_x + x); //FIXME optimize this crap
  888. PREDICT(pred, ptr[-linesize-1], ptr[-linesize], ptr[-1], predictor);
  889. pred &= (-1)<<(8-s->bits);
  890. *ptr = pred + (dc << point_transform);
  891. }else{
  892. ptr16 = (uint16_t*)(s->picture.data[c] + 2*(linesize * (v * mb_y + y)) + 2*(h * mb_x + x)); //FIXME optimize this crap
  893. PREDICT(pred, ptr16[-linesize-1], ptr16[-linesize], ptr16[-1], predictor);
  894. pred &= (-1)<<(16-s->bits);
  895. *ptr16= pred + (dc << point_transform);
  896. }
  897. if (++x == h) {
  898. x = 0;
  899. y++;
  900. }
  901. }
  902. }
  903. }
  904. if (s->restart_interval && !--s->restart_count) {
  905. align_get_bits(&s->gb);
  906. skip_bits(&s->gb, 16); /* skip RSTn */
  907. }
  908. }
  909. }
  910. return 0;
  911. }
  912. static av_always_inline void mjpeg_copy_block(MJpegDecodeContext *s,
  913. uint8_t *dst, const uint8_t *src,
  914. int linesize, int lowres)
  915. {
  916. switch (lowres) {
  917. case 0: s->hdsp.put_pixels_tab[1][0](dst, src, linesize, 8);
  918. break;
  919. case 1: copy_block4(dst, src, linesize, linesize, 4);
  920. break;
  921. case 2: copy_block2(dst, src, linesize, linesize, 2);
  922. break;
  923. case 3: *dst = *src;
  924. break;
  925. }
  926. }
  927. static int mjpeg_decode_scan(MJpegDecodeContext *s, int nb_components, int Ah,
  928. int Al, const uint8_t *mb_bitmask,
  929. const AVFrame *reference)
  930. {
  931. int i, mb_x, mb_y;
  932. uint8_t *data[MAX_COMPONENTS];
  933. const uint8_t *reference_data[MAX_COMPONENTS];
  934. int linesize[MAX_COMPONENTS];
  935. GetBitContext mb_bitmask_gb;
  936. if (mb_bitmask)
  937. init_get_bits(&mb_bitmask_gb, mb_bitmask, s->mb_width * s->mb_height);
  938. if (s->flipped && s->avctx->lowres) {
  939. av_log(s->avctx, AV_LOG_ERROR, "Can not flip image with lowres\n");
  940. s->flipped = 0;
  941. }
  942. s->restart_count = 0;
  943. for (i = 0; i < nb_components; i++) {
  944. int c = s->comp_index[i];
  945. data[c] = s->picture_ptr->data[c];
  946. reference_data[c] = reference ? reference->data[c] : NULL;
  947. linesize[c] = s->linesize[c];
  948. s->coefs_finished[c] |= 1;
  949. if (s->flipped && !(s->avctx->flags & CODEC_FLAG_EMU_EDGE)) {
  950. // picture should be flipped upside-down for this codec
  951. int offset = (linesize[c] * (s->v_scount[i] *
  952. (8 * s->mb_height - ((s->height / s->v_max) & 7)) - 1));
  953. data[c] += offset;
  954. reference_data[c] += offset;
  955. linesize[c] *= -1;
  956. }
  957. }
  958. for (mb_y = 0; mb_y < s->mb_height; mb_y++) {
  959. for (mb_x = 0; mb_x < s->mb_width; mb_x++) {
  960. const int copy_mb = mb_bitmask && !get_bits1(&mb_bitmask_gb);
  961. if (s->restart_interval && !s->restart_count)
  962. s->restart_count = s->restart_interval;
  963. if (get_bits_left(&s->gb) < 0) {
  964. av_log(s->avctx, AV_LOG_ERROR, "overread %d\n",
  965. -get_bits_left(&s->gb));
  966. return AVERROR_INVALIDDATA;
  967. }
  968. for (i = 0; i < nb_components; i++) {
  969. uint8_t *ptr;
  970. int n, h, v, x, y, c, j;
  971. int block_offset;
  972. n = s->nb_blocks[i];
  973. c = s->comp_index[i];
  974. h = s->h_scount[i];
  975. v = s->v_scount[i];
  976. x = 0;
  977. y = 0;
  978. for (j = 0; j < n; j++) {
  979. block_offset = (((linesize[c] * (v * mb_y + y) * 8) +
  980. (h * mb_x + x) * 8) >> s->avctx->lowres);
  981. if (s->interlaced && s->bottom_field)
  982. block_offset += linesize[c] >> 1;
  983. ptr = data[c] + block_offset;
  984. if (!s->progressive) {
  985. if (copy_mb)
  986. mjpeg_copy_block(s, ptr, reference_data[c] + block_offset,
  987. linesize[c], s->avctx->lowres);
  988. else {
  989. s->dsp.clear_block(s->block);
  990. if (decode_block(s, s->block, i,
  991. s->dc_index[i], s->ac_index[i],
  992. s->quant_matrixes[s->quant_sindex[i]]) < 0) {
  993. av_log(s->avctx, AV_LOG_ERROR,
  994. "error y=%d x=%d\n", mb_y, mb_x);
  995. return AVERROR_INVALIDDATA;
  996. }
  997. s->dsp.idct_put(ptr, linesize[c], s->block);
  998. }
  999. } else {
  1000. int block_idx = s->block_stride[c] * (v * mb_y + y) +
  1001. (h * mb_x + x);
  1002. int16_t *block = s->blocks[c][block_idx];
  1003. if (Ah)
  1004. block[0] += get_bits1(&s->gb) *
  1005. s->quant_matrixes[s->quant_sindex[i]][0] << Al;
  1006. else if (decode_dc_progressive(s, block, i, s->dc_index[i],
  1007. s->quant_matrixes[s->quant_sindex[i]],
  1008. Al) < 0) {
  1009. av_log(s->avctx, AV_LOG_ERROR,
  1010. "error y=%d x=%d\n", mb_y, mb_x);
  1011. return AVERROR_INVALIDDATA;
  1012. }
  1013. }
  1014. av_dlog(s->avctx, "mb: %d %d processed\n", mb_y, mb_x);
  1015. av_dlog(s->avctx, "%d %d %d %d %d %d %d %d \n",
  1016. mb_x, mb_y, x, y, c, s->bottom_field,
  1017. (v * mb_y + y) * 8, (h * mb_x + x) * 8);
  1018. if (++x == h) {
  1019. x = 0;
  1020. y++;
  1021. }
  1022. }
  1023. }
  1024. handle_rstn(s, nb_components);
  1025. }
  1026. }
  1027. return 0;
  1028. }
  1029. static int mjpeg_decode_scan_progressive_ac(MJpegDecodeContext *s, int ss,
  1030. int se, int Ah, int Al)
  1031. {
  1032. int mb_x, mb_y;
  1033. int EOBRUN = 0;
  1034. int c = s->comp_index[0];
  1035. uint8_t *data = s->picture.data[c];
  1036. int linesize = s->linesize[c];
  1037. int last_scan = 0;
  1038. int16_t *quant_matrix = s->quant_matrixes[s->quant_sindex[0]];
  1039. av_assert0(ss>=0 && Ah>=0 && Al>=0);
  1040. if (se < ss || se > 63) {
  1041. av_log(s->avctx, AV_LOG_ERROR, "SS/SE %d/%d is invalid\n", ss, se);
  1042. return AVERROR_INVALIDDATA;
  1043. }
  1044. if (!Al) {
  1045. s->coefs_finished[c] |= (1LL << (se + 1)) - (1LL << ss);
  1046. last_scan = !~s->coefs_finished[c];
  1047. }
  1048. if (s->interlaced && s->bottom_field)
  1049. data += linesize >> 1;
  1050. s->restart_count = 0;
  1051. for (mb_y = 0; mb_y < s->mb_height; mb_y++) {
  1052. uint8_t *ptr = data + (mb_y * linesize * 8 >> s->avctx->lowres);
  1053. int block_idx = mb_y * s->block_stride[c];
  1054. int16_t (*block)[64] = &s->blocks[c][block_idx];
  1055. uint8_t *last_nnz = &s->last_nnz[c][block_idx];
  1056. for (mb_x = 0; mb_x < s->mb_width; mb_x++, block++, last_nnz++) {
  1057. int ret;
  1058. if (s->restart_interval && !s->restart_count)
  1059. s->restart_count = s->restart_interval;
  1060. if (Ah)
  1061. ret = decode_block_refinement(s, *block, last_nnz, s->ac_index[0],
  1062. quant_matrix, ss, se, Al, &EOBRUN);
  1063. else
  1064. ret = decode_block_progressive(s, *block, last_nnz, s->ac_index[0],
  1065. quant_matrix, ss, se, Al, &EOBRUN);
  1066. if (ret < 0) {
  1067. av_log(s->avctx, AV_LOG_ERROR,
  1068. "error y=%d x=%d\n", mb_y, mb_x);
  1069. return AVERROR_INVALIDDATA;
  1070. }
  1071. if (last_scan) {
  1072. s->dsp.idct_put(ptr, linesize, *block);
  1073. ptr += 8 >> s->avctx->lowres;
  1074. }
  1075. if (handle_rstn(s, 0))
  1076. EOBRUN = 0;
  1077. }
  1078. }
  1079. return 0;
  1080. }
  1081. int ff_mjpeg_decode_sos(MJpegDecodeContext *s, const uint8_t *mb_bitmask,
  1082. const AVFrame *reference)
  1083. {
  1084. int len, nb_components, i, h, v, predictor, point_transform;
  1085. int index, id, ret;
  1086. const int block_size = s->lossless ? 1 : 8;
  1087. int ilv, prev_shift;
  1088. if (!s->got_picture) {
  1089. av_log(s->avctx, AV_LOG_WARNING,
  1090. "Can not process SOS before SOF, skipping\n");
  1091. return -1;
  1092. }
  1093. av_assert0(s->picture_ptr->data[0]);
  1094. /* XXX: verify len field validity */
  1095. len = get_bits(&s->gb, 16);
  1096. nb_components = get_bits(&s->gb, 8);
  1097. if (nb_components == 0 || nb_components > MAX_COMPONENTS) {
  1098. av_log(s->avctx, AV_LOG_ERROR,
  1099. "decode_sos: nb_components (%d) unsupported\n", nb_components);
  1100. return AVERROR_PATCHWELCOME;
  1101. }
  1102. if (len != 6 + 2 * nb_components) {
  1103. av_log(s->avctx, AV_LOG_ERROR, "decode_sos: invalid len (%d)\n", len);
  1104. return AVERROR_INVALIDDATA;
  1105. }
  1106. for (i = 0; i < nb_components; i++) {
  1107. id = get_bits(&s->gb, 8) - 1;
  1108. av_log(s->avctx, AV_LOG_DEBUG, "component: %d\n", id);
  1109. /* find component index */
  1110. for (index = 0; index < s->nb_components; index++)
  1111. if (id == s->component_id[index])
  1112. break;
  1113. if (index == s->nb_components) {
  1114. av_log(s->avctx, AV_LOG_ERROR,
  1115. "decode_sos: index(%d) out of components\n", index);
  1116. return AVERROR_INVALIDDATA;
  1117. }
  1118. /* Metasoft MJPEG codec has Cb and Cr swapped */
  1119. if (s->avctx->codec_tag == MKTAG('M', 'T', 'S', 'J')
  1120. && nb_components == 3 && s->nb_components == 3 && i)
  1121. index = 3 - i;
  1122. s->quant_sindex[i] = s->quant_index[index];
  1123. s->nb_blocks[i] = s->h_count[index] * s->v_count[index];
  1124. s->h_scount[i] = s->h_count[index];
  1125. s->v_scount[i] = s->v_count[index];
  1126. if(nb_components == 3 && s->nb_components == 3 && s->avctx->pix_fmt == AV_PIX_FMT_GBR24P)
  1127. index = (i+2)%3;
  1128. if(nb_components == 1 && s->nb_components == 3 && s->avctx->pix_fmt == AV_PIX_FMT_GBR24P)
  1129. index = (index+2)%3;
  1130. s->comp_index[i] = index;
  1131. s->dc_index[i] = get_bits(&s->gb, 4);
  1132. s->ac_index[i] = get_bits(&s->gb, 4);
  1133. if (s->dc_index[i] < 0 || s->ac_index[i] < 0 ||
  1134. s->dc_index[i] >= 4 || s->ac_index[i] >= 4)
  1135. goto out_of_range;
  1136. if (!s->vlcs[0][s->dc_index[i]].table || !(s->progressive ? s->vlcs[2][s->ac_index[0]].table : s->vlcs[1][s->ac_index[i]].table))
  1137. goto out_of_range;
  1138. }
  1139. predictor = get_bits(&s->gb, 8); /* JPEG Ss / lossless JPEG predictor /JPEG-LS NEAR */
  1140. ilv = get_bits(&s->gb, 8); /* JPEG Se / JPEG-LS ILV */
  1141. if(s->avctx->codec_tag != AV_RL32("CJPG")){
  1142. prev_shift = get_bits(&s->gb, 4); /* Ah */
  1143. point_transform = get_bits(&s->gb, 4); /* Al */
  1144. }else
  1145. prev_shift = point_transform = 0;
  1146. if (nb_components > 1) {
  1147. /* interleaved stream */
  1148. s->mb_width = (s->width + s->h_max * block_size - 1) / (s->h_max * block_size);
  1149. s->mb_height = (s->height + s->v_max * block_size - 1) / (s->v_max * block_size);
  1150. } else if (!s->ls) { /* skip this for JPEG-LS */
  1151. h = s->h_max / s->h_scount[0];
  1152. v = s->v_max / s->v_scount[0];
  1153. s->mb_width = (s->width + h * block_size - 1) / (h * block_size);
  1154. s->mb_height = (s->height + v * block_size - 1) / (v * block_size);
  1155. s->nb_blocks[0] = 1;
  1156. s->h_scount[0] = 1;
  1157. s->v_scount[0] = 1;
  1158. }
  1159. if (s->avctx->debug & FF_DEBUG_PICT_INFO)
  1160. av_log(s->avctx, AV_LOG_DEBUG, "%s %s p:%d >>:%d ilv:%d bits:%d skip:%d %s comp:%d\n",
  1161. s->lossless ? "lossless" : "sequential DCT", s->rgb ? "RGB" : "",
  1162. predictor, point_transform, ilv, s->bits, s->mjpb_skiptosod,
  1163. s->pegasus_rct ? "PRCT" : (s->rct ? "RCT" : ""), nb_components);
  1164. /* mjpeg-b can have padding bytes between sos and image data, skip them */
  1165. for (i = s->mjpb_skiptosod; i > 0; i--)
  1166. skip_bits(&s->gb, 8);
  1167. next_field:
  1168. for (i = 0; i < nb_components; i++)
  1169. s->last_dc[i] = 1024;
  1170. if (s->lossless) {
  1171. av_assert0(s->picture_ptr == &s->picture);
  1172. if (CONFIG_JPEGLS_DECODER && s->ls) {
  1173. // for () {
  1174. // reset_ls_coding_parameters(s, 0);
  1175. if ((ret = ff_jpegls_decode_picture(s, predictor,
  1176. point_transform, ilv)) < 0)
  1177. return ret;
  1178. } else {
  1179. if (s->rgb) {
  1180. if ((ret = ljpeg_decode_rgb_scan(s, nb_components, predictor, point_transform)) < 0)
  1181. return ret;
  1182. } else {
  1183. if ((ret = ljpeg_decode_yuv_scan(s, predictor,
  1184. point_transform,
  1185. nb_components)) < 0)
  1186. return ret;
  1187. }
  1188. }
  1189. } else {
  1190. if (s->progressive && predictor) {
  1191. av_assert0(s->picture_ptr == &s->picture);
  1192. if ((ret = mjpeg_decode_scan_progressive_ac(s, predictor,
  1193. ilv, prev_shift,
  1194. point_transform)) < 0)
  1195. return ret;
  1196. } else {
  1197. if ((ret = mjpeg_decode_scan(s, nb_components,
  1198. prev_shift, point_transform,
  1199. mb_bitmask, reference)) < 0)
  1200. return ret;
  1201. }
  1202. }
  1203. if (s->interlaced &&
  1204. get_bits_left(&s->gb) > 32 &&
  1205. show_bits(&s->gb, 8) == 0xFF) {
  1206. GetBitContext bak = s->gb;
  1207. align_get_bits(&bak);
  1208. if (show_bits(&bak, 16) == 0xFFD1) {
  1209. av_log(s->avctx, AV_LOG_DEBUG, "AVRn interlaced picture marker found\n");
  1210. s->gb = bak;
  1211. skip_bits(&s->gb, 16);
  1212. s->bottom_field ^= 1;
  1213. goto next_field;
  1214. }
  1215. }
  1216. emms_c();
  1217. return 0;
  1218. out_of_range:
  1219. av_log(s->avctx, AV_LOG_ERROR, "decode_sos: ac/dc index out of range\n");
  1220. return AVERROR_INVALIDDATA;
  1221. }
  1222. static int mjpeg_decode_dri(MJpegDecodeContext *s)
  1223. {
  1224. if (get_bits(&s->gb, 16) != 4)
  1225. return AVERROR_INVALIDDATA;
  1226. s->restart_interval = get_bits(&s->gb, 16);
  1227. s->restart_count = 0;
  1228. av_log(s->avctx, AV_LOG_DEBUG, "restart interval: %d\n",
  1229. s->restart_interval);
  1230. return 0;
  1231. }
  1232. static int mjpeg_decode_app(MJpegDecodeContext *s)
  1233. {
  1234. int len, id, i;
  1235. len = get_bits(&s->gb, 16);
  1236. if (len < 5)
  1237. return AVERROR_INVALIDDATA;
  1238. if (8 * len > get_bits_left(&s->gb))
  1239. return AVERROR_INVALIDDATA;
  1240. id = get_bits_long(&s->gb, 32);
  1241. len -= 6;
  1242. if (s->avctx->debug & FF_DEBUG_STARTCODE)
  1243. av_log(s->avctx, AV_LOG_DEBUG, "APPx %8X len=%d\n", id, len);
  1244. /* Buggy AVID, it puts EOI only at every 10th frame. */
  1245. /* Also, this fourcc is used by non-avid files too, it holds some
  1246. information, but it's always present in AVID-created files. */
  1247. if (id == AV_RB32("AVI1")) {
  1248. /* structure:
  1249. 4bytes AVI1
  1250. 1bytes polarity
  1251. 1bytes always zero
  1252. 4bytes field_size
  1253. 4bytes field_size_less_padding
  1254. */
  1255. s->buggy_avid = 1;
  1256. i = get_bits(&s->gb, 8); len--;
  1257. av_log(s->avctx, AV_LOG_DEBUG, "polarity %d\n", i);
  1258. #if 0
  1259. skip_bits(&s->gb, 8);
  1260. skip_bits(&s->gb, 32);
  1261. skip_bits(&s->gb, 32);
  1262. len -= 10;
  1263. #endif
  1264. goto out;
  1265. }
  1266. // len -= 2;
  1267. if (id == AV_RB32("JFIF")) {
  1268. int t_w, t_h, v1, v2;
  1269. skip_bits(&s->gb, 8); /* the trailing zero-byte */
  1270. v1 = get_bits(&s->gb, 8);
  1271. v2 = get_bits(&s->gb, 8);
  1272. skip_bits(&s->gb, 8);
  1273. s->avctx->sample_aspect_ratio.num = get_bits(&s->gb, 16);
  1274. s->avctx->sample_aspect_ratio.den = get_bits(&s->gb, 16);
  1275. if (s->avctx->debug & FF_DEBUG_PICT_INFO)
  1276. av_log(s->avctx, AV_LOG_INFO,
  1277. "mjpeg: JFIF header found (version: %x.%x) SAR=%d/%d\n",
  1278. v1, v2,
  1279. s->avctx->sample_aspect_ratio.num,
  1280. s->avctx->sample_aspect_ratio.den);
  1281. t_w = get_bits(&s->gb, 8);
  1282. t_h = get_bits(&s->gb, 8);
  1283. if (t_w && t_h) {
  1284. /* skip thumbnail */
  1285. if (len -10 - (t_w * t_h * 3) > 0)
  1286. len -= t_w * t_h * 3;
  1287. }
  1288. len -= 10;
  1289. goto out;
  1290. }
  1291. if (id == AV_RB32("Adob") && (get_bits(&s->gb, 8) == 'e')) {
  1292. if (s->avctx->debug & FF_DEBUG_PICT_INFO)
  1293. av_log(s->avctx, AV_LOG_INFO, "mjpeg: Adobe header found\n");
  1294. skip_bits(&s->gb, 16); /* version */
  1295. skip_bits(&s->gb, 16); /* flags0 */
  1296. skip_bits(&s->gb, 16); /* flags1 */
  1297. skip_bits(&s->gb, 8); /* transform */
  1298. len -= 7;
  1299. goto out;
  1300. }
  1301. if (id == AV_RB32("LJIF")) {
  1302. if (s->avctx->debug & FF_DEBUG_PICT_INFO)
  1303. av_log(s->avctx, AV_LOG_INFO,
  1304. "Pegasus lossless jpeg header found\n");
  1305. skip_bits(&s->gb, 16); /* version ? */
  1306. skip_bits(&s->gb, 16); /* unknown always 0? */
  1307. skip_bits(&s->gb, 16); /* unknown always 0? */
  1308. skip_bits(&s->gb, 16); /* unknown always 0? */
  1309. switch (get_bits(&s->gb, 8)) {
  1310. case 1:
  1311. s->rgb = 1;
  1312. s->pegasus_rct = 0;
  1313. break;
  1314. case 2:
  1315. s->rgb = 1;
  1316. s->pegasus_rct = 1;
  1317. break;
  1318. default:
  1319. av_log(s->avctx, AV_LOG_ERROR, "unknown colorspace\n");
  1320. }
  1321. len -= 9;
  1322. goto out;
  1323. }
  1324. if (id == AV_RL32("colr") && len > 0) {
  1325. s->colr = get_bits(&s->gb, 8);
  1326. if (s->avctx->debug & FF_DEBUG_PICT_INFO)
  1327. av_log(s->avctx, AV_LOG_INFO, "COLR %d\n", s->colr);
  1328. len --;
  1329. goto out;
  1330. }
  1331. if (id == AV_RL32("xfrm") && len > 0) {
  1332. s->xfrm = get_bits(&s->gb, 8);
  1333. if (s->avctx->debug & FF_DEBUG_PICT_INFO)
  1334. av_log(s->avctx, AV_LOG_INFO, "XFRM %d\n", s->xfrm);
  1335. len --;
  1336. goto out;
  1337. }
  1338. /* EXIF metadata */
  1339. if (s->start_code == APP1 && id == AV_RB32("Exif")) {
  1340. GetByteContext gbytes;
  1341. int ret, le, ifd_offset, bytes_read;
  1342. const uint8_t *aligned;
  1343. skip_bits(&s->gb, 16); // skip padding
  1344. len -= 2;
  1345. // init byte wise reading
  1346. aligned = align_get_bits(&s->gb);
  1347. bytestream2_init(&gbytes, aligned, len);
  1348. // read TIFF header
  1349. ret = ff_tdecode_header(&gbytes, &le, &ifd_offset);
  1350. if (ret) {
  1351. av_log(s->avctx, AV_LOG_ERROR, "mjpeg: invalid TIFF header in EXIF data\n");
  1352. return ret;
  1353. }
  1354. bytestream2_seek(&gbytes, ifd_offset, SEEK_SET);
  1355. // read 0th IFD and store the metadata
  1356. // (return values > 0 indicate the presence of subimage metadata)
  1357. ret = ff_exif_decode_ifd(s->avctx, &gbytes, le, 0, &s->exif_metadata);
  1358. if (ret < 0) {
  1359. av_log(s->avctx, AV_LOG_ERROR, "mjpeg: error decoding EXIF data\n");
  1360. return ret;
  1361. }
  1362. bytes_read = bytestream2_tell(&gbytes);
  1363. skip_bits(&s->gb, bytes_read << 3);
  1364. len -= bytes_read;
  1365. goto out;
  1366. }
  1367. /* Apple MJPEG-A */
  1368. if ((s->start_code == APP1) && (len > (0x28 - 8))) {
  1369. id = get_bits_long(&s->gb, 32);
  1370. len -= 4;
  1371. /* Apple MJPEG-A */
  1372. if (id == AV_RB32("mjpg")) {
  1373. #if 0
  1374. skip_bits(&s->gb, 32); /* field size */
  1375. skip_bits(&s->gb, 32); /* pad field size */
  1376. skip_bits(&s->gb, 32); /* next off */
  1377. skip_bits(&s->gb, 32); /* quant off */
  1378. skip_bits(&s->gb, 32); /* huff off */
  1379. skip_bits(&s->gb, 32); /* image off */
  1380. skip_bits(&s->gb, 32); /* scan off */
  1381. skip_bits(&s->gb, 32); /* data off */
  1382. #endif
  1383. if (s->avctx->debug & FF_DEBUG_PICT_INFO)
  1384. av_log(s->avctx, AV_LOG_INFO, "mjpeg: Apple MJPEG-A header found\n");
  1385. }
  1386. }
  1387. out:
  1388. /* slow but needed for extreme adobe jpegs */
  1389. if (len < 0)
  1390. av_log(s->avctx, AV_LOG_ERROR,
  1391. "mjpeg: error, decode_app parser read over the end\n");
  1392. while (--len > 0)
  1393. skip_bits(&s->gb, 8);
  1394. return 0;
  1395. }
  1396. static int mjpeg_decode_com(MJpegDecodeContext *s)
  1397. {
  1398. int len = get_bits(&s->gb, 16);
  1399. if (len >= 2 && 8 * len - 16 <= get_bits_left(&s->gb)) {
  1400. char *cbuf = av_malloc(len - 1);
  1401. if (cbuf) {
  1402. int i;
  1403. for (i = 0; i < len - 2; i++)
  1404. cbuf[i] = get_bits(&s->gb, 8);
  1405. if (i > 0 && cbuf[i - 1] == '\n')
  1406. cbuf[i - 1] = 0;
  1407. else
  1408. cbuf[i] = 0;
  1409. if (s->avctx->debug & FF_DEBUG_PICT_INFO)
  1410. av_log(s->avctx, AV_LOG_INFO, "comment: '%s'\n", cbuf);
  1411. /* buggy avid, it puts EOI only at every 10th frame */
  1412. if (!strncmp(cbuf, "AVID", 4)) {
  1413. s->buggy_avid = 1;
  1414. if (len > 14 && cbuf[12] == 1) /* 1 - NTSC, 2 - PAL */
  1415. s->interlace_polarity = 1;
  1416. } else if (!strcmp(cbuf, "CS=ITU601"))
  1417. s->cs_itu601 = 1;
  1418. else if ((!strncmp(cbuf, "Intel(R) JPEG Library, version 1", 32)) ||
  1419. (!strncmp(cbuf, "Metasoft MJPEG Codec", 20)))
  1420. s->flipped = 1;
  1421. av_free(cbuf);
  1422. }
  1423. }
  1424. return 0;
  1425. }
  1426. /* return the 8 bit start code value and update the search
  1427. state. Return -1 if no start code found */
  1428. static int find_marker(const uint8_t **pbuf_ptr, const uint8_t *buf_end)
  1429. {
  1430. const uint8_t *buf_ptr;
  1431. unsigned int v, v2;
  1432. int val;
  1433. int skipped = 0;
  1434. buf_ptr = *pbuf_ptr;
  1435. while (buf_end - buf_ptr > 1) {
  1436. v = *buf_ptr++;
  1437. v2 = *buf_ptr;
  1438. if ((v == 0xff) && (v2 >= 0xc0) && (v2 <= 0xfe) && buf_ptr < buf_end) {
  1439. val = *buf_ptr++;
  1440. goto found;
  1441. }
  1442. skipped++;
  1443. }
  1444. buf_ptr = buf_end;
  1445. val = -1;
  1446. found:
  1447. av_dlog(NULL, "find_marker skipped %d bytes\n", skipped);
  1448. *pbuf_ptr = buf_ptr;
  1449. return val;
  1450. }
  1451. int ff_mjpeg_find_marker(MJpegDecodeContext *s,
  1452. const uint8_t **buf_ptr, const uint8_t *buf_end,
  1453. const uint8_t **unescaped_buf_ptr,
  1454. int *unescaped_buf_size)
  1455. {
  1456. int start_code;
  1457. start_code = find_marker(buf_ptr, buf_end);
  1458. av_fast_padded_malloc(&s->buffer, &s->buffer_size, buf_end - *buf_ptr);
  1459. if (!s->buffer)
  1460. return AVERROR(ENOMEM);
  1461. /* unescape buffer of SOS, use special treatment for JPEG-LS */
  1462. if (start_code == SOS && !s->ls) {
  1463. const uint8_t *src = *buf_ptr;
  1464. uint8_t *dst = s->buffer;
  1465. while (src < buf_end) {
  1466. uint8_t x = *(src++);
  1467. *(dst++) = x;
  1468. if (s->avctx->codec_id != AV_CODEC_ID_THP) {
  1469. if (x == 0xff) {
  1470. while (src < buf_end && x == 0xff)
  1471. x = *(src++);
  1472. if (x >= 0xd0 && x <= 0xd7)
  1473. *(dst++) = x;
  1474. else if (x)
  1475. break;
  1476. }
  1477. }
  1478. }
  1479. *unescaped_buf_ptr = s->buffer;
  1480. *unescaped_buf_size = dst - s->buffer;
  1481. memset(s->buffer + *unescaped_buf_size, 0,
  1482. FF_INPUT_BUFFER_PADDING_SIZE);
  1483. av_log(s->avctx, AV_LOG_DEBUG, "escaping removed %td bytes\n",
  1484. (buf_end - *buf_ptr) - (dst - s->buffer));
  1485. } else if (start_code == SOS && s->ls) {
  1486. const uint8_t *src = *buf_ptr;
  1487. uint8_t *dst = s->buffer;
  1488. int bit_count = 0;
  1489. int t = 0, b = 0;
  1490. PutBitContext pb;
  1491. s->cur_scan++;
  1492. /* find marker */
  1493. while (src + t < buf_end) {
  1494. uint8_t x = src[t++];
  1495. if (x == 0xff) {
  1496. while ((src + t < buf_end) && x == 0xff)
  1497. x = src[t++];
  1498. if (x & 0x80) {
  1499. t -= FFMIN(2, t);
  1500. break;
  1501. }
  1502. }
  1503. }
  1504. bit_count = t * 8;
  1505. init_put_bits(&pb, dst, t);
  1506. /* unescape bitstream */
  1507. while (b < t) {
  1508. uint8_t x = src[b++];
  1509. put_bits(&pb, 8, x);
  1510. if (x == 0xFF) {
  1511. x = src[b++];
  1512. put_bits(&pb, 7, x);
  1513. bit_count--;
  1514. }
  1515. }
  1516. flush_put_bits(&pb);
  1517. *unescaped_buf_ptr = dst;
  1518. *unescaped_buf_size = (bit_count + 7) >> 3;
  1519. memset(s->buffer + *unescaped_buf_size, 0,
  1520. FF_INPUT_BUFFER_PADDING_SIZE);
  1521. } else {
  1522. *unescaped_buf_ptr = *buf_ptr;
  1523. *unescaped_buf_size = buf_end - *buf_ptr;
  1524. }
  1525. return start_code;
  1526. }
  1527. int ff_mjpeg_decode_frame(AVCodecContext *avctx, void *data, int *got_frame,
  1528. AVPacket *avpkt)
  1529. {
  1530. const uint8_t *buf = avpkt->data;
  1531. int buf_size = avpkt->size;
  1532. MJpegDecodeContext *s = avctx->priv_data;
  1533. const uint8_t *buf_end, *buf_ptr;
  1534. const uint8_t *unescaped_buf_ptr;
  1535. int hshift, vshift;
  1536. int unescaped_buf_size;
  1537. int start_code;
  1538. int i, index;
  1539. int ret = 0;
  1540. av_dict_free(&s->exif_metadata);
  1541. buf_ptr = buf;
  1542. buf_end = buf + buf_size;
  1543. while (buf_ptr < buf_end) {
  1544. /* find start next marker */
  1545. start_code = ff_mjpeg_find_marker(s, &buf_ptr, buf_end,
  1546. &unescaped_buf_ptr,
  1547. &unescaped_buf_size);
  1548. /* EOF */
  1549. if (start_code < 0) {
  1550. goto the_end;
  1551. } else if (unescaped_buf_size > INT_MAX / 8) {
  1552. av_log(avctx, AV_LOG_ERROR,
  1553. "MJPEG packet 0x%x too big (%d/%d), corrupt data?\n",
  1554. start_code, unescaped_buf_size, buf_size);
  1555. return AVERROR_INVALIDDATA;
  1556. }
  1557. av_log(avctx, AV_LOG_DEBUG, "marker=%x avail_size_in_buf=%td\n",
  1558. start_code, buf_end - buf_ptr);
  1559. ret = init_get_bits8(&s->gb, unescaped_buf_ptr, unescaped_buf_size);
  1560. if (ret < 0) {
  1561. av_log(avctx, AV_LOG_ERROR, "invalid buffer\n");
  1562. goto fail;
  1563. }
  1564. s->start_code = start_code;
  1565. if (s->avctx->debug & FF_DEBUG_STARTCODE)
  1566. av_log(avctx, AV_LOG_DEBUG, "startcode: %X\n", start_code);
  1567. /* process markers */
  1568. if (start_code >= 0xd0 && start_code <= 0xd7)
  1569. av_log(avctx, AV_LOG_DEBUG,
  1570. "restart marker: %d\n", start_code & 0x0f);
  1571. /* APP fields */
  1572. else if (start_code >= APP0 && start_code <= APP15)
  1573. mjpeg_decode_app(s);
  1574. /* Comment */
  1575. else if (start_code == COM)
  1576. mjpeg_decode_com(s);
  1577. ret = -1;
  1578. if (!CONFIG_JPEGLS_DECODER &&
  1579. (start_code == SOF48 || start_code == LSE)) {
  1580. av_log(avctx, AV_LOG_ERROR, "JPEG-LS support not enabled.\n");
  1581. return AVERROR(ENOSYS);
  1582. }
  1583. switch (start_code) {
  1584. case SOI:
  1585. s->restart_interval = 0;
  1586. s->restart_count = 0;
  1587. /* nothing to do on SOI */
  1588. break;
  1589. case DQT:
  1590. ff_mjpeg_decode_dqt(s);
  1591. break;
  1592. case DHT:
  1593. if ((ret = ff_mjpeg_decode_dht(s)) < 0) {
  1594. av_log(avctx, AV_LOG_ERROR, "huffman table decode error\n");
  1595. goto fail;
  1596. }
  1597. break;
  1598. case SOF0:
  1599. case SOF1:
  1600. s->lossless = 0;
  1601. s->ls = 0;
  1602. s->progressive = 0;
  1603. if ((ret = ff_mjpeg_decode_sof(s)) < 0)
  1604. goto fail;
  1605. break;
  1606. case SOF2:
  1607. s->lossless = 0;
  1608. s->ls = 0;
  1609. s->progressive = 1;
  1610. if ((ret = ff_mjpeg_decode_sof(s)) < 0)
  1611. goto fail;
  1612. break;
  1613. case SOF3:
  1614. s->lossless = 1;
  1615. s->ls = 0;
  1616. s->progressive = 0;
  1617. if ((ret = ff_mjpeg_decode_sof(s)) < 0)
  1618. goto fail;
  1619. break;
  1620. case SOF48:
  1621. s->lossless = 1;
  1622. s->ls = 1;
  1623. s->progressive = 0;
  1624. if ((ret = ff_mjpeg_decode_sof(s)) < 0)
  1625. goto fail;
  1626. break;
  1627. case LSE:
  1628. if (!CONFIG_JPEGLS_DECODER ||
  1629. (ret = ff_jpegls_decode_lse(s)) < 0)
  1630. goto fail;
  1631. break;
  1632. case EOI:
  1633. eoi_parser:
  1634. s->cur_scan = 0;
  1635. if (!s->got_picture) {
  1636. av_log(avctx, AV_LOG_WARNING,
  1637. "Found EOI before any SOF, ignoring\n");
  1638. break;
  1639. }
  1640. if (s->interlaced) {
  1641. s->bottom_field ^= 1;
  1642. /* if not bottom field, do not output image yet */
  1643. if (s->bottom_field == !s->interlace_polarity)
  1644. break;
  1645. }
  1646. if ((ret = av_frame_ref(data, s->picture_ptr)) < 0)
  1647. return ret;
  1648. *got_frame = 1;
  1649. s->got_picture = 0;
  1650. if (!s->lossless) {
  1651. int qp = FFMAX3(s->qscale[0],
  1652. s->qscale[1],
  1653. s->qscale[2]);
  1654. int qpw = (s->width + 15) / 16;
  1655. AVBufferRef *qp_table_buf = av_buffer_alloc(qpw);
  1656. if (qp_table_buf) {
  1657. memset(qp_table_buf->data, qp, qpw);
  1658. av_frame_set_qp_table(data, qp_table_buf, 0, FF_QSCALE_TYPE_MPEG1);
  1659. }
  1660. if(avctx->debug & FF_DEBUG_QP)
  1661. av_log(avctx, AV_LOG_DEBUG, "QP: %d\n", qp);
  1662. }
  1663. goto the_end;
  1664. case SOS:
  1665. if ((ret = ff_mjpeg_decode_sos(s, NULL, NULL)) < 0 &&
  1666. (avctx->err_recognition & AV_EF_EXPLODE))
  1667. goto fail;
  1668. break;
  1669. case DRI:
  1670. mjpeg_decode_dri(s);
  1671. break;
  1672. case SOF5:
  1673. case SOF6:
  1674. case SOF7:
  1675. case SOF9:
  1676. case SOF10:
  1677. case SOF11:
  1678. case SOF13:
  1679. case SOF14:
  1680. case SOF15:
  1681. case JPG:
  1682. av_log(avctx, AV_LOG_ERROR,
  1683. "mjpeg: unsupported coding type (%x)\n", start_code);
  1684. break;
  1685. }
  1686. /* eof process start code */
  1687. buf_ptr += (get_bits_count(&s->gb) + 7) / 8;
  1688. av_log(avctx, AV_LOG_DEBUG,
  1689. "marker parser used %d bytes (%d bits)\n",
  1690. (get_bits_count(&s->gb) + 7) / 8, get_bits_count(&s->gb));
  1691. }
  1692. if (s->got_picture) {
  1693. av_log(avctx, AV_LOG_WARNING, "EOI missing, emulating\n");
  1694. goto eoi_parser;
  1695. }
  1696. av_log(avctx, AV_LOG_FATAL, "No JPEG data found in image\n");
  1697. return AVERROR_INVALIDDATA;
  1698. fail:
  1699. s->got_picture = 0;
  1700. return ret;
  1701. the_end:
  1702. if (s->upscale_h) {
  1703. uint8_t *line = s->picture_ptr->data[s->upscale_h];
  1704. av_assert0(avctx->pix_fmt == AV_PIX_FMT_YUVJ444P ||
  1705. avctx->pix_fmt == AV_PIX_FMT_YUV444P ||
  1706. avctx->pix_fmt == AV_PIX_FMT_YUVJ440P ||
  1707. avctx->pix_fmt == AV_PIX_FMT_YUV440P);
  1708. for (i = 0; i < s->chroma_height; i++) {
  1709. for (index = s->width - 1; index; index--)
  1710. line[index] = (line[index / 2] + line[(index + 1) / 2]) >> 1;
  1711. line += s->linesize[s->upscale_h];
  1712. }
  1713. }
  1714. if (s->upscale_v) {
  1715. uint8_t *dst = &((uint8_t *)s->picture_ptr->data[s->upscale_v])[(s->height - 1) * s->linesize[s->upscale_v]];
  1716. int w;
  1717. avcodec_get_chroma_sub_sample(s->avctx->pix_fmt, &hshift, &vshift);
  1718. w = s->width >> hshift;
  1719. av_assert0(avctx->pix_fmt == AV_PIX_FMT_YUVJ444P ||
  1720. avctx->pix_fmt == AV_PIX_FMT_YUV444P ||
  1721. avctx->pix_fmt == AV_PIX_FMT_YUVJ422P ||
  1722. avctx->pix_fmt == AV_PIX_FMT_YUV422P);
  1723. for (i = s->height - 1; i; i--) {
  1724. uint8_t *src1 = &((uint8_t *)s->picture_ptr->data[s->upscale_v])[i / 2 * s->linesize[s->upscale_v]];
  1725. uint8_t *src2 = &((uint8_t *)s->picture_ptr->data[s->upscale_v])[(i + 1) / 2 * s->linesize[s->upscale_v]];
  1726. if (src1 == src2) {
  1727. memcpy(dst, src1, w);
  1728. } else {
  1729. for (index = 0; index < w; index++)
  1730. dst[index] = (src1[index] + src2[index]) >> 1;
  1731. }
  1732. dst -= s->linesize[s->upscale_v];
  1733. }
  1734. }
  1735. if (s->flipped && (s->avctx->flags & CODEC_FLAG_EMU_EDGE)) {
  1736. int j;
  1737. avcodec_get_chroma_sub_sample(s->avctx->pix_fmt, &hshift, &vshift);
  1738. for (index=0; index<4; index++) {
  1739. uint8_t *dst = s->picture_ptr->data[index];
  1740. int w = s->width;
  1741. int h = s->height;
  1742. if(index && index<3){
  1743. w = FF_CEIL_RSHIFT(w, hshift);
  1744. h = FF_CEIL_RSHIFT(h, vshift);
  1745. }
  1746. if(dst){
  1747. uint8_t *dst2 = dst + s->linesize[index]*(h-1);
  1748. for (i=0; i<h/2; i++) {
  1749. for (j=0; j<w; j++)
  1750. FFSWAP(int, dst[j], dst2[j]);
  1751. dst += s->linesize[index];
  1752. dst2 -= s->linesize[index];
  1753. }
  1754. }
  1755. }
  1756. }
  1757. av_dict_copy(avpriv_frame_get_metadatap(data), s->exif_metadata, 0);
  1758. av_dict_free(&s->exif_metadata);
  1759. av_log(avctx, AV_LOG_DEBUG, "decode frame unused %td bytes\n",
  1760. buf_end - buf_ptr);
  1761. // return buf_end - buf_ptr;
  1762. return buf_ptr - buf;
  1763. }
  1764. av_cold int ff_mjpeg_decode_end(AVCodecContext *avctx)
  1765. {
  1766. MJpegDecodeContext *s = avctx->priv_data;
  1767. int i, j;
  1768. if (s->interlaced && s->bottom_field == !s->interlace_polarity && s->got_picture && !avctx->frame_number) {
  1769. av_log(avctx, AV_LOG_INFO, "Single field\n");
  1770. }
  1771. if (s->picture_ptr)
  1772. av_frame_unref(s->picture_ptr);
  1773. av_free(s->buffer);
  1774. av_freep(&s->ljpeg_buffer);
  1775. s->ljpeg_buffer_size = 0;
  1776. for (i = 0; i < 3; i++) {
  1777. for (j = 0; j < 4; j++)
  1778. ff_free_vlc(&s->vlcs[i][j]);
  1779. }
  1780. for (i = 0; i < MAX_COMPONENTS; i++) {
  1781. av_freep(&s->blocks[i]);
  1782. av_freep(&s->last_nnz[i]);
  1783. }
  1784. av_dict_free(&s->exif_metadata);
  1785. return 0;
  1786. }
  1787. static void decode_flush(AVCodecContext *avctx)
  1788. {
  1789. MJpegDecodeContext *s = avctx->priv_data;
  1790. s->got_picture = 0;
  1791. }
  1792. #if CONFIG_MJPEG_DECODER
  1793. #define OFFSET(x) offsetof(MJpegDecodeContext, x)
  1794. #define VD AV_OPT_FLAG_VIDEO_PARAM | AV_OPT_FLAG_DECODING_PARAM
  1795. static const AVOption options[] = {
  1796. { "extern_huff", "Use external huffman table.",
  1797. OFFSET(extern_huff), AV_OPT_TYPE_INT, { .i64 = 0 }, 0, 1, VD },
  1798. { NULL },
  1799. };
  1800. static const AVClass mjpegdec_class = {
  1801. .class_name = "MJPEG decoder",
  1802. .item_name = av_default_item_name,
  1803. .option = options,
  1804. .version = LIBAVUTIL_VERSION_INT,
  1805. };
  1806. AVCodec ff_mjpeg_decoder = {
  1807. .name = "mjpeg",
  1808. .type = AVMEDIA_TYPE_VIDEO,
  1809. .id = AV_CODEC_ID_MJPEG,
  1810. .priv_data_size = sizeof(MJpegDecodeContext),
  1811. .init = ff_mjpeg_decode_init,
  1812. .close = ff_mjpeg_decode_end,
  1813. .decode = ff_mjpeg_decode_frame,
  1814. .flush = decode_flush,
  1815. .capabilities = CODEC_CAP_DR1,
  1816. .max_lowres = 3,
  1817. .long_name = NULL_IF_CONFIG_SMALL("MJPEG (Motion JPEG)"),
  1818. .priv_class = &mjpegdec_class,
  1819. };
  1820. #endif
  1821. #if CONFIG_THP_DECODER
  1822. AVCodec ff_thp_decoder = {
  1823. .name = "thp",
  1824. .type = AVMEDIA_TYPE_VIDEO,
  1825. .id = AV_CODEC_ID_THP,
  1826. .priv_data_size = sizeof(MJpegDecodeContext),
  1827. .init = ff_mjpeg_decode_init,
  1828. .close = ff_mjpeg_decode_end,
  1829. .decode = ff_mjpeg_decode_frame,
  1830. .flush = decode_flush,
  1831. .capabilities = CODEC_CAP_DR1,
  1832. .max_lowres = 3,
  1833. .long_name = NULL_IF_CONFIG_SMALL("Nintendo Gamecube THP video"),
  1834. };
  1835. #endif