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  1. /*
  2. * Copyright (c) 2006 Konstantin Shishkov
  3. *
  4. * This file is part of FFmpeg.
  5. *
  6. * FFmpeg is free software; you can redistribute it and/or
  7. * modify it under the terms of the GNU Lesser General Public
  8. * License as published by the Free Software Foundation; either
  9. * version 2.1 of the License, or (at your option) any later version.
  10. *
  11. * FFmpeg is distributed in the hope that it will be useful,
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the GNU
  14. * Lesser General Public License for more details.
  15. *
  16. * You should have received a copy of the GNU Lesser General Public
  17. * License along with FFmpeg; if not, write to the Free Software
  18. * Foundation, Inc., 51 Franklin Street, Fifth Floor, Boston, MA 02110-1301 USA
  19. */
  20. /**
  21. * @file
  22. * TIFF image decoder
  23. * @author Konstantin Shishkov
  24. */
  25. #include "config.h"
  26. #if CONFIG_ZLIB
  27. #include <zlib.h>
  28. #endif
  29. #include "libavutil/attributes.h"
  30. #include "libavutil/avstring.h"
  31. #include "libavutil/intreadwrite.h"
  32. #include "libavutil/imgutils.h"
  33. #include "avcodec.h"
  34. #include "bytestream.h"
  35. #include "faxcompr.h"
  36. #include "internal.h"
  37. #include "lzw.h"
  38. #include "mathops.h"
  39. #include "tiff.h"
  40. #include "tiff_data.h"
  41. #include "thread.h"
  42. typedef struct TiffContext {
  43. AVCodecContext *avctx;
  44. GetByteContext gb;
  45. int width, height;
  46. unsigned int bpp, bppcount;
  47. uint32_t palette[256];
  48. int palette_is_set;
  49. int le;
  50. enum TiffCompr compr;
  51. enum TiffPhotometric photometric;
  52. int planar;
  53. int subsampling[2];
  54. int fax_opts;
  55. int predictor;
  56. int fill_order;
  57. uint32_t res[4];
  58. int strips, rps, sstype;
  59. int sot;
  60. int stripsizesoff, stripsize, stripoff, strippos;
  61. LZWState *lzw;
  62. uint8_t *deinvert_buf;
  63. int deinvert_buf_size;
  64. uint8_t *yuv_line;
  65. unsigned int yuv_line_size;
  66. int geotag_count;
  67. TiffGeoTag *geotags;
  68. } TiffContext;
  69. static void free_geotags(TiffContext *const s)
  70. {
  71. int i;
  72. for (i = 0; i < s->geotag_count; i++) {
  73. if (s->geotags[i].val)
  74. av_freep(&s->geotags[i].val);
  75. }
  76. av_freep(&s->geotags);
  77. s->geotag_count = 0;
  78. }
  79. #define RET_GEOKEY(TYPE, array, element)\
  80. if (key >= TIFF_##TYPE##_KEY_ID_OFFSET &&\
  81. key - TIFF_##TYPE##_KEY_ID_OFFSET < FF_ARRAY_ELEMS(ff_tiff_##array##_name_type_map))\
  82. return ff_tiff_##array##_name_type_map[key - TIFF_##TYPE##_KEY_ID_OFFSET].element;
  83. static const char *get_geokey_name(int key)
  84. {
  85. RET_GEOKEY(VERT, vert, name);
  86. RET_GEOKEY(PROJ, proj, name);
  87. RET_GEOKEY(GEOG, geog, name);
  88. RET_GEOKEY(CONF, conf, name);
  89. return NULL;
  90. }
  91. static int get_geokey_type(int key)
  92. {
  93. RET_GEOKEY(VERT, vert, type);
  94. RET_GEOKEY(PROJ, proj, type);
  95. RET_GEOKEY(GEOG, geog, type);
  96. RET_GEOKEY(CONF, conf, type);
  97. return AVERROR_INVALIDDATA;
  98. }
  99. static int cmp_id_key(const void *id, const void *k)
  100. {
  101. return *(const int*)id - ((const TiffGeoTagKeyName*)k)->key;
  102. }
  103. static const char *search_keyval(const TiffGeoTagKeyName *keys, int n, int id)
  104. {
  105. TiffGeoTagKeyName *r = bsearch(&id, keys, n, sizeof(keys[0]), cmp_id_key);
  106. if(r)
  107. return r->name;
  108. return NULL;
  109. }
  110. static char *get_geokey_val(int key, int val)
  111. {
  112. char *ap;
  113. if (val == TIFF_GEO_KEY_UNDEFINED)
  114. return av_strdup("undefined");
  115. if (val == TIFF_GEO_KEY_USER_DEFINED)
  116. return av_strdup("User-Defined");
  117. #define RET_GEOKEY_VAL(TYPE, array)\
  118. if (val >= TIFF_##TYPE##_OFFSET &&\
  119. val - TIFF_##TYPE##_OFFSET < FF_ARRAY_ELEMS(ff_tiff_##array##_codes))\
  120. return av_strdup(ff_tiff_##array##_codes[val - TIFF_##TYPE##_OFFSET]);
  121. switch (key) {
  122. case TIFF_GT_MODEL_TYPE_GEOKEY:
  123. RET_GEOKEY_VAL(GT_MODEL_TYPE, gt_model_type);
  124. break;
  125. case TIFF_GT_RASTER_TYPE_GEOKEY:
  126. RET_GEOKEY_VAL(GT_RASTER_TYPE, gt_raster_type);
  127. break;
  128. case TIFF_GEOG_LINEAR_UNITS_GEOKEY:
  129. case TIFF_PROJ_LINEAR_UNITS_GEOKEY:
  130. case TIFF_VERTICAL_UNITS_GEOKEY:
  131. RET_GEOKEY_VAL(LINEAR_UNIT, linear_unit);
  132. break;
  133. case TIFF_GEOG_ANGULAR_UNITS_GEOKEY:
  134. case TIFF_GEOG_AZIMUTH_UNITS_GEOKEY:
  135. RET_GEOKEY_VAL(ANGULAR_UNIT, angular_unit);
  136. break;
  137. case TIFF_GEOGRAPHIC_TYPE_GEOKEY:
  138. RET_GEOKEY_VAL(GCS_TYPE, gcs_type);
  139. RET_GEOKEY_VAL(GCSE_TYPE, gcse_type);
  140. break;
  141. case TIFF_GEOG_GEODETIC_DATUM_GEOKEY:
  142. RET_GEOKEY_VAL(GEODETIC_DATUM, geodetic_datum);
  143. RET_GEOKEY_VAL(GEODETIC_DATUM_E, geodetic_datum_e);
  144. break;
  145. case TIFF_GEOG_ELLIPSOID_GEOKEY:
  146. RET_GEOKEY_VAL(ELLIPSOID, ellipsoid);
  147. break;
  148. case TIFF_GEOG_PRIME_MERIDIAN_GEOKEY:
  149. RET_GEOKEY_VAL(PRIME_MERIDIAN, prime_meridian);
  150. break;
  151. case TIFF_PROJECTED_CS_TYPE_GEOKEY:
  152. ap = av_strdup(search_keyval(ff_tiff_proj_cs_type_codes, FF_ARRAY_ELEMS(ff_tiff_proj_cs_type_codes), val));
  153. if(ap) return ap;
  154. break;
  155. case TIFF_PROJECTION_GEOKEY:
  156. ap = av_strdup(search_keyval(ff_tiff_projection_codes, FF_ARRAY_ELEMS(ff_tiff_projection_codes), val));
  157. if(ap) return ap;
  158. break;
  159. case TIFF_PROJ_COORD_TRANS_GEOKEY:
  160. RET_GEOKEY_VAL(COORD_TRANS, coord_trans);
  161. break;
  162. case TIFF_VERTICAL_CS_TYPE_GEOKEY:
  163. RET_GEOKEY_VAL(VERT_CS, vert_cs);
  164. RET_GEOKEY_VAL(ORTHO_VERT_CS, ortho_vert_cs);
  165. break;
  166. }
  167. ap = av_malloc(14);
  168. if (ap)
  169. snprintf(ap, 14, "Unknown-%d", val);
  170. return ap;
  171. }
  172. static char *doubles2str(double *dp, int count, const char *sep)
  173. {
  174. int i;
  175. char *ap, *ap0;
  176. uint64_t component_len;
  177. if (!sep) sep = ", ";
  178. component_len = 24LL + strlen(sep);
  179. if (count >= (INT_MAX - 1)/component_len)
  180. return NULL;
  181. ap = av_malloc(component_len * count + 1);
  182. if (!ap)
  183. return NULL;
  184. ap0 = ap;
  185. ap[0] = '\0';
  186. for (i = 0; i < count; i++) {
  187. unsigned l = snprintf(ap, component_len, "%.15g%s", dp[i], sep);
  188. if(l >= component_len) {
  189. av_free(ap0);
  190. return NULL;
  191. }
  192. ap += l;
  193. }
  194. ap0[strlen(ap0) - strlen(sep)] = '\0';
  195. return ap0;
  196. }
  197. static int add_metadata(int count, int type,
  198. const char *name, const char *sep, TiffContext *s, AVFrame *frame)
  199. {
  200. switch(type) {
  201. case TIFF_DOUBLE: return ff_tadd_doubles_metadata(count, name, sep, &s->gb, s->le, avpriv_frame_get_metadatap(frame));
  202. case TIFF_SHORT : return ff_tadd_shorts_metadata(count, name, sep, &s->gb, s->le, 0, avpriv_frame_get_metadatap(frame));
  203. case TIFF_STRING: return ff_tadd_string_metadata(count, name, &s->gb, s->le, avpriv_frame_get_metadatap(frame));
  204. default : return AVERROR_INVALIDDATA;
  205. };
  206. }
  207. static void av_always_inline horizontal_fill(unsigned int bpp, uint8_t* dst,
  208. int usePtr, const uint8_t *src,
  209. uint8_t c, int width, int offset)
  210. {
  211. switch (bpp) {
  212. case 1:
  213. while (--width >= 0) {
  214. dst[(width+offset)*8+7] = (usePtr ? src[width] : c) & 0x1;
  215. dst[(width+offset)*8+6] = (usePtr ? src[width] : c) >> 1 & 0x1;
  216. dst[(width+offset)*8+5] = (usePtr ? src[width] : c) >> 2 & 0x1;
  217. dst[(width+offset)*8+4] = (usePtr ? src[width] : c) >> 3 & 0x1;
  218. dst[(width+offset)*8+3] = (usePtr ? src[width] : c) >> 4 & 0x1;
  219. dst[(width+offset)*8+2] = (usePtr ? src[width] : c) >> 5 & 0x1;
  220. dst[(width+offset)*8+1] = (usePtr ? src[width] : c) >> 6 & 0x1;
  221. dst[(width+offset)*8+0] = (usePtr ? src[width] : c) >> 7;
  222. }
  223. break;
  224. case 2:
  225. while (--width >= 0) {
  226. dst[(width+offset)*4+3] = (usePtr ? src[width] : c) & 0x3;
  227. dst[(width+offset)*4+2] = (usePtr ? src[width] : c) >> 2 & 0x3;
  228. dst[(width+offset)*4+1] = (usePtr ? src[width] : c) >> 4 & 0x3;
  229. dst[(width+offset)*4+0] = (usePtr ? src[width] : c) >> 6;
  230. }
  231. break;
  232. case 4:
  233. while (--width >= 0) {
  234. dst[(width+offset)*2+1] = (usePtr ? src[width] : c) & 0xF;
  235. dst[(width+offset)*2+0] = (usePtr ? src[width] : c) >> 4;
  236. }
  237. break;
  238. default:
  239. if (usePtr) {
  240. memcpy(dst + offset, src, width);
  241. } else {
  242. memset(dst + offset, c, width);
  243. }
  244. }
  245. }
  246. static int deinvert_buffer(TiffContext *s, const uint8_t *src, int size)
  247. {
  248. int i;
  249. av_fast_padded_malloc(&s->deinvert_buf, &s->deinvert_buf_size, size);
  250. if (!s->deinvert_buf)
  251. return AVERROR(ENOMEM);
  252. for (i = 0; i < size; i++)
  253. s->deinvert_buf[i] = ff_reverse[src[i]];
  254. return 0;
  255. }
  256. #if CONFIG_ZLIB
  257. static int tiff_uncompress(uint8_t *dst, unsigned long *len, const uint8_t *src,
  258. int size)
  259. {
  260. z_stream zstream = { 0 };
  261. int zret;
  262. zstream.next_in = (uint8_t *)src;
  263. zstream.avail_in = size;
  264. zstream.next_out = dst;
  265. zstream.avail_out = *len;
  266. zret = inflateInit(&zstream);
  267. if (zret != Z_OK) {
  268. av_log(NULL, AV_LOG_ERROR, "Inflate init error: %d\n", zret);
  269. return zret;
  270. }
  271. zret = inflate(&zstream, Z_SYNC_FLUSH);
  272. inflateEnd(&zstream);
  273. *len = zstream.total_out;
  274. return zret == Z_STREAM_END ? Z_OK : zret;
  275. }
  276. static int tiff_unpack_zlib(TiffContext *s, uint8_t *dst, int stride,
  277. const uint8_t *src, int size,
  278. int width, int lines)
  279. {
  280. uint8_t *zbuf;
  281. unsigned long outlen;
  282. int ret, line;
  283. outlen = width * lines;
  284. zbuf = av_malloc(outlen);
  285. if (!zbuf)
  286. return AVERROR(ENOMEM);
  287. if (s->fill_order) {
  288. if ((ret = deinvert_buffer(s, src, size)) < 0) {
  289. av_free(zbuf);
  290. return ret;
  291. }
  292. src = s->deinvert_buf;
  293. }
  294. ret = tiff_uncompress(zbuf, &outlen, src, size);
  295. if (ret != Z_OK) {
  296. av_log(s->avctx, AV_LOG_ERROR,
  297. "Uncompressing failed (%lu of %lu) with error %d\n", outlen,
  298. (unsigned long)width * lines, ret);
  299. av_free(zbuf);
  300. return AVERROR_UNKNOWN;
  301. }
  302. src = zbuf;
  303. for (line = 0; line < lines; line++) {
  304. if (s->bpp < 8 && s->avctx->pix_fmt == AV_PIX_FMT_PAL8) {
  305. horizontal_fill(s->bpp, dst, 1, src, 0, width, 0);
  306. } else {
  307. memcpy(dst, src, width);
  308. }
  309. dst += stride;
  310. src += width;
  311. }
  312. av_free(zbuf);
  313. return 0;
  314. }
  315. #endif
  316. static int tiff_unpack_fax(TiffContext *s, uint8_t *dst, int stride,
  317. const uint8_t *src, int size, int width, int lines)
  318. {
  319. int i, ret = 0;
  320. int line;
  321. uint8_t *src2 = av_malloc((unsigned)size +
  322. FF_INPUT_BUFFER_PADDING_SIZE);
  323. if (!src2) {
  324. av_log(s->avctx, AV_LOG_ERROR,
  325. "Error allocating temporary buffer\n");
  326. return AVERROR(ENOMEM);
  327. }
  328. if (s->fax_opts & 2) {
  329. avpriv_request_sample(s->avctx, "Uncompressed fax mode");
  330. av_free(src2);
  331. return AVERROR_PATCHWELCOME;
  332. }
  333. if (!s->fill_order) {
  334. memcpy(src2, src, size);
  335. } else {
  336. for (i = 0; i < size; i++)
  337. src2[i] = ff_reverse[src[i]];
  338. }
  339. memset(src2 + size, 0, FF_INPUT_BUFFER_PADDING_SIZE);
  340. ret = ff_ccitt_unpack(s->avctx, src2, size, dst, lines, stride,
  341. s->compr, s->fax_opts);
  342. if (s->bpp < 8 && s->avctx->pix_fmt == AV_PIX_FMT_PAL8)
  343. for (line = 0; line < lines; line++) {
  344. horizontal_fill(s->bpp, dst, 1, dst, 0, width, 0);
  345. dst += stride;
  346. }
  347. av_free(src2);
  348. return ret;
  349. }
  350. static void unpack_yuv(TiffContext *s, AVFrame *p,
  351. const uint8_t *src, int lnum)
  352. {
  353. int i, j, k;
  354. int w = (s->width - 1) / s->subsampling[0] + 1;
  355. uint8_t *pu = &p->data[1][lnum / s->subsampling[1] * p->linesize[1]];
  356. uint8_t *pv = &p->data[2][lnum / s->subsampling[1] * p->linesize[2]];
  357. if (s->width % s->subsampling[0] || s->height % s->subsampling[1]) {
  358. for (i = 0; i < w; i++) {
  359. for (j = 0; j < s->subsampling[1]; j++)
  360. for (k = 0; k < s->subsampling[0]; k++)
  361. p->data[0][FFMIN(lnum + j, s->height-1) * p->linesize[0] +
  362. FFMIN(i * s->subsampling[0] + k, s->width-1)] = *src++;
  363. *pu++ = *src++;
  364. *pv++ = *src++;
  365. }
  366. }else{
  367. for (i = 0; i < w; i++) {
  368. for (j = 0; j < s->subsampling[1]; j++)
  369. for (k = 0; k < s->subsampling[0]; k++)
  370. p->data[0][(lnum + j) * p->linesize[0] +
  371. i * s->subsampling[0] + k] = *src++;
  372. *pu++ = *src++;
  373. *pv++ = *src++;
  374. }
  375. }
  376. }
  377. static int tiff_unpack_strip(TiffContext *s, AVFrame *p, uint8_t *dst, int stride,
  378. const uint8_t *src, int size, int strip_start, int lines)
  379. {
  380. PutByteContext pb;
  381. int c, line, pixels, code, ret;
  382. const uint8_t *ssrc = src;
  383. int width = ((s->width * s->bpp) + 7) >> 3;
  384. const AVPixFmtDescriptor *desc = av_pix_fmt_desc_get(p->format);
  385. int is_yuv = !(desc->flags & AV_PIX_FMT_FLAG_RGB) && desc->nb_components >= 2;
  386. if (s->planar)
  387. width /= s->bppcount;
  388. if (size <= 0)
  389. return AVERROR_INVALIDDATA;
  390. if (is_yuv) {
  391. int bytes_per_row = (((s->width - 1) / s->subsampling[0] + 1) * s->bpp *
  392. s->subsampling[0] * s->subsampling[1] + 7) >> 3;
  393. av_fast_padded_malloc(&s->yuv_line, &s->yuv_line_size, bytes_per_row);
  394. if (s->yuv_line == NULL) {
  395. av_log(s->avctx, AV_LOG_ERROR, "Not enough memory\n");
  396. return AVERROR(ENOMEM);
  397. }
  398. dst = s->yuv_line;
  399. stride = 0;
  400. width = s->width * s->subsampling[1] + 2*(s->width / s->subsampling[0]);
  401. av_assert0(width <= bytes_per_row);
  402. av_assert0(s->bpp == 24);
  403. }
  404. if (s->compr == TIFF_DEFLATE || s->compr == TIFF_ADOBE_DEFLATE) {
  405. if (is_yuv) {
  406. av_log(s->avctx, AV_LOG_ERROR, "YUV deflate is unsupported");
  407. return AVERROR_PATCHWELCOME;
  408. }
  409. #if CONFIG_ZLIB
  410. return tiff_unpack_zlib(s, dst, stride, src, size, width, lines);
  411. #else
  412. av_log(s->avctx, AV_LOG_ERROR,
  413. "zlib support not enabled, "
  414. "deflate compression not supported\n");
  415. return AVERROR(ENOSYS);
  416. #endif
  417. }
  418. if (s->compr == TIFF_LZW) {
  419. if (s->fill_order) {
  420. if ((ret = deinvert_buffer(s, src, size)) < 0)
  421. return ret;
  422. ssrc = src = s->deinvert_buf;
  423. }
  424. if (size > 1 && !src[0] && (src[1]&1)) {
  425. av_log(s->avctx, AV_LOG_ERROR, "Old style LZW is unsupported\n");
  426. }
  427. if ((ret = ff_lzw_decode_init(s->lzw, 8, src, size, FF_LZW_TIFF)) < 0) {
  428. av_log(s->avctx, AV_LOG_ERROR, "Error initializing LZW decoder\n");
  429. return ret;
  430. }
  431. for (line = 0; line < lines; line++) {
  432. pixels = ff_lzw_decode(s->lzw, dst, width);
  433. if (pixels < width) {
  434. av_log(s->avctx, AV_LOG_ERROR, "Decoded only %i bytes of %i\n",
  435. pixels, width);
  436. return AVERROR_INVALIDDATA;
  437. }
  438. if (s->bpp < 8 && s->avctx->pix_fmt == AV_PIX_FMT_PAL8)
  439. horizontal_fill(s->bpp, dst, 1, dst, 0, width, 0);
  440. if (is_yuv) {
  441. unpack_yuv(s, p, dst, strip_start + line);
  442. line += s->subsampling[1] - 1;
  443. }
  444. dst += stride;
  445. }
  446. return 0;
  447. }
  448. if (s->compr == TIFF_CCITT_RLE ||
  449. s->compr == TIFF_G3 ||
  450. s->compr == TIFF_G4) {
  451. if (is_yuv)
  452. return AVERROR_INVALIDDATA;
  453. return tiff_unpack_fax(s, dst, stride, src, size, width, lines);
  454. }
  455. bytestream2_init(&s->gb, src, size);
  456. bytestream2_init_writer(&pb, dst, is_yuv ? s->yuv_line_size : (stride * lines));
  457. for (line = 0; line < lines; line++) {
  458. if (src - ssrc > size) {
  459. av_log(s->avctx, AV_LOG_ERROR, "Source data overread\n");
  460. return AVERROR_INVALIDDATA;
  461. }
  462. if (bytestream2_get_bytes_left(&s->gb) == 0 || bytestream2_get_eof(&pb))
  463. break;
  464. bytestream2_seek_p(&pb, stride * line, SEEK_SET);
  465. switch (s->compr) {
  466. case TIFF_RAW:
  467. if (ssrc + size - src < width)
  468. return AVERROR_INVALIDDATA;
  469. if (!s->fill_order) {
  470. horizontal_fill(s->bpp * (s->avctx->pix_fmt == AV_PIX_FMT_PAL8),
  471. dst, 1, src, 0, width, 0);
  472. } else {
  473. int i;
  474. for (i = 0; i < width; i++)
  475. dst[i] = ff_reverse[src[i]];
  476. }
  477. src += width;
  478. break;
  479. case TIFF_PACKBITS:
  480. for (pixels = 0; pixels < width;) {
  481. if (ssrc + size - src < 2) {
  482. av_log(s->avctx, AV_LOG_ERROR, "Read went out of bounds\n");
  483. return AVERROR_INVALIDDATA;
  484. }
  485. code = s->fill_order ? (int8_t) ff_reverse[*src++]: (int8_t) *src++;
  486. if (code >= 0) {
  487. code++;
  488. if (pixels + code > width ||
  489. ssrc + size - src < code) {
  490. av_log(s->avctx, AV_LOG_ERROR,
  491. "Copy went out of bounds\n");
  492. return AVERROR_INVALIDDATA;
  493. }
  494. horizontal_fill(s->bpp * (s->avctx->pix_fmt == AV_PIX_FMT_PAL8),
  495. dst, 1, src, 0, code, pixels);
  496. src += code;
  497. pixels += code;
  498. } else if (code != -128) { // -127..-1
  499. code = (-code) + 1;
  500. if (pixels + code > width) {
  501. av_log(s->avctx, AV_LOG_ERROR,
  502. "Run went out of bounds\n");
  503. return AVERROR_INVALIDDATA;
  504. }
  505. c = *src++;
  506. horizontal_fill(s->bpp * (s->avctx->pix_fmt == AV_PIX_FMT_PAL8),
  507. dst, 0, NULL, c, code, pixels);
  508. pixels += code;
  509. }
  510. }
  511. if (s->fill_order) {
  512. int i;
  513. for (i = 0; i < width; i++)
  514. dst[i] = ff_reverse[dst[i]];
  515. }
  516. break;
  517. }
  518. if (is_yuv) {
  519. unpack_yuv(s, p, dst, strip_start + line);
  520. line += s->subsampling[1] - 1;
  521. }
  522. dst += stride;
  523. }
  524. return 0;
  525. }
  526. static int init_image(TiffContext *s, ThreadFrame *frame)
  527. {
  528. int ret;
  529. switch (s->planar * 1000 + s->bpp * 10 + s->bppcount) {
  530. case 11:
  531. if (!s->palette_is_set) {
  532. s->avctx->pix_fmt = AV_PIX_FMT_MONOBLACK;
  533. break;
  534. }
  535. case 21:
  536. case 41:
  537. case 81:
  538. s->avctx->pix_fmt = s->palette_is_set ? AV_PIX_FMT_PAL8 : AV_PIX_FMT_GRAY8;
  539. break;
  540. case 243:
  541. if (s->photometric == TIFF_PHOTOMETRIC_YCBCR) {
  542. if (s->subsampling[0] == 1 && s->subsampling[1] == 1) {
  543. s->avctx->pix_fmt = AV_PIX_FMT_YUV444P;
  544. } else if (s->subsampling[0] == 2 && s->subsampling[1] == 1) {
  545. s->avctx->pix_fmt = AV_PIX_FMT_YUV422P;
  546. } else if (s->subsampling[0] == 4 && s->subsampling[1] == 1) {
  547. s->avctx->pix_fmt = AV_PIX_FMT_YUV411P;
  548. } else if (s->subsampling[0] == 1 && s->subsampling[1] == 2) {
  549. s->avctx->pix_fmt = AV_PIX_FMT_YUV440P;
  550. } else if (s->subsampling[0] == 2 && s->subsampling[1] == 2) {
  551. s->avctx->pix_fmt = AV_PIX_FMT_YUV420P;
  552. } else if (s->subsampling[0] == 4 && s->subsampling[1] == 4) {
  553. s->avctx->pix_fmt = AV_PIX_FMT_YUV410P;
  554. } else {
  555. av_log(s->avctx, AV_LOG_ERROR, "Unsupported YCbCr subsampling\n");
  556. return AVERROR_PATCHWELCOME;
  557. }
  558. } else
  559. s->avctx->pix_fmt = AV_PIX_FMT_RGB24;
  560. break;
  561. case 161:
  562. s->avctx->pix_fmt = s->le ? AV_PIX_FMT_GRAY16LE : AV_PIX_FMT_GRAY16BE;
  563. break;
  564. case 162:
  565. s->avctx->pix_fmt = AV_PIX_FMT_YA8;
  566. break;
  567. case 322:
  568. s->avctx->pix_fmt = s->le ? AV_PIX_FMT_YA16LE : AV_PIX_FMT_YA16BE;
  569. break;
  570. case 324:
  571. s->avctx->pix_fmt = AV_PIX_FMT_RGBA;
  572. break;
  573. case 483:
  574. s->avctx->pix_fmt = s->le ? AV_PIX_FMT_RGB48LE : AV_PIX_FMT_RGB48BE;
  575. break;
  576. case 644:
  577. s->avctx->pix_fmt = s->le ? AV_PIX_FMT_RGBA64LE : AV_PIX_FMT_RGBA64BE;
  578. break;
  579. case 1243:
  580. s->avctx->pix_fmt = AV_PIX_FMT_GBRP;
  581. break;
  582. case 1324:
  583. s->avctx->pix_fmt = AV_PIX_FMT_GBRAP;
  584. break;
  585. case 1483:
  586. s->avctx->pix_fmt = s->le ? AV_PIX_FMT_GBRP16LE : AV_PIX_FMT_GBRP16BE;
  587. break;
  588. case 1644:
  589. s->avctx->pix_fmt = s->le ? AV_PIX_FMT_GBRAP16LE : AV_PIX_FMT_GBRAP16BE;
  590. break;
  591. default:
  592. av_log(s->avctx, AV_LOG_ERROR,
  593. "This format is not supported (bpp=%d, bppcount=%d)\n",
  594. s->bpp, s->bppcount);
  595. return AVERROR_INVALIDDATA;
  596. }
  597. if (s->width != s->avctx->width || s->height != s->avctx->height) {
  598. ret = ff_set_dimensions(s->avctx, s->width, s->height);
  599. if (ret < 0)
  600. return ret;
  601. }
  602. if ((ret = ff_thread_get_buffer(s->avctx, frame, 0)) < 0)
  603. return ret;
  604. if (s->avctx->pix_fmt == AV_PIX_FMT_PAL8) {
  605. memcpy(frame->f->data[1], s->palette, sizeof(s->palette));
  606. }
  607. return 0;
  608. }
  609. static void set_sar(TiffContext *s, unsigned tag, unsigned num, unsigned den)
  610. {
  611. int offset = tag == TIFF_YRES ? 2 : 0;
  612. s->res[offset++] = num;
  613. s->res[offset] = den;
  614. if (s->res[0] && s->res[1] && s->res[2] && s->res[3])
  615. av_reduce(&s->avctx->sample_aspect_ratio.num, &s->avctx->sample_aspect_ratio.den,
  616. s->res[2] * (uint64_t)s->res[1], s->res[0] * (uint64_t)s->res[3], INT32_MAX);
  617. }
  618. static int tiff_decode_tag(TiffContext *s, AVFrame *frame)
  619. {
  620. unsigned tag, type, count, off, value = 0, value2 = 0;
  621. int i, start;
  622. int pos;
  623. int ret;
  624. double *dp;
  625. ret = ff_tread_tag(&s->gb, s->le, &tag, &type, &count, &start);
  626. if (ret < 0) {
  627. goto end;
  628. }
  629. off = bytestream2_tell(&s->gb);
  630. if (count == 1) {
  631. switch (type) {
  632. case TIFF_BYTE:
  633. case TIFF_SHORT:
  634. case TIFF_LONG:
  635. value = ff_tget(&s->gb, type, s->le);
  636. break;
  637. case TIFF_RATIONAL:
  638. value = ff_tget(&s->gb, TIFF_LONG, s->le);
  639. value2 = ff_tget(&s->gb, TIFF_LONG, s->le);
  640. break;
  641. case TIFF_STRING:
  642. if (count <= 4) {
  643. break;
  644. }
  645. default:
  646. value = UINT_MAX;
  647. }
  648. }
  649. switch (tag) {
  650. case TIFF_WIDTH:
  651. s->width = value;
  652. break;
  653. case TIFF_HEIGHT:
  654. s->height = value;
  655. break;
  656. case TIFF_BPP:
  657. s->bppcount = count;
  658. if (count > 4) {
  659. av_log(s->avctx, AV_LOG_ERROR,
  660. "This format is not supported (bpp=%d, %d components)\n",
  661. s->bpp, count);
  662. return AVERROR_INVALIDDATA;
  663. }
  664. if (count == 1)
  665. s->bpp = value;
  666. else {
  667. switch (type) {
  668. case TIFF_BYTE:
  669. case TIFF_SHORT:
  670. case TIFF_LONG:
  671. s->bpp = 0;
  672. if (bytestream2_get_bytes_left(&s->gb) < type_sizes[type] * count)
  673. return AVERROR_INVALIDDATA;
  674. for (i = 0; i < count; i++)
  675. s->bpp += ff_tget(&s->gb, type, s->le);
  676. break;
  677. default:
  678. s->bpp = -1;
  679. }
  680. }
  681. break;
  682. case TIFF_SAMPLES_PER_PIXEL:
  683. if (count != 1) {
  684. av_log(s->avctx, AV_LOG_ERROR,
  685. "Samples per pixel requires a single value, many provided\n");
  686. return AVERROR_INVALIDDATA;
  687. }
  688. if (value > 4U) {
  689. av_log(s->avctx, AV_LOG_ERROR,
  690. "Samples per pixel %d is too large\n", value);
  691. return AVERROR_INVALIDDATA;
  692. }
  693. if (s->bppcount == 1)
  694. s->bpp *= value;
  695. s->bppcount = value;
  696. break;
  697. case TIFF_COMPR:
  698. s->compr = value;
  699. s->predictor = 0;
  700. switch (s->compr) {
  701. case TIFF_RAW:
  702. case TIFF_PACKBITS:
  703. case TIFF_LZW:
  704. case TIFF_CCITT_RLE:
  705. break;
  706. case TIFF_G3:
  707. case TIFF_G4:
  708. s->fax_opts = 0;
  709. break;
  710. case TIFF_DEFLATE:
  711. case TIFF_ADOBE_DEFLATE:
  712. #if CONFIG_ZLIB
  713. break;
  714. #else
  715. av_log(s->avctx, AV_LOG_ERROR, "Deflate: ZLib not compiled in\n");
  716. return AVERROR(ENOSYS);
  717. #endif
  718. case TIFF_JPEG:
  719. case TIFF_NEWJPEG:
  720. avpriv_report_missing_feature(s->avctx, "JPEG compression");
  721. return AVERROR_PATCHWELCOME;
  722. case TIFF_LZMA:
  723. avpriv_report_missing_feature(s->avctx, "LZMA compression");
  724. return AVERROR_PATCHWELCOME;
  725. default:
  726. av_log(s->avctx, AV_LOG_ERROR, "Unknown compression method %i\n",
  727. s->compr);
  728. return AVERROR_INVALIDDATA;
  729. }
  730. break;
  731. case TIFF_ROWSPERSTRIP:
  732. if (!value || (type == TIFF_LONG && value == UINT_MAX))
  733. value = s->height;
  734. s->rps = FFMIN(value, s->height);
  735. break;
  736. case TIFF_STRIP_OFFS:
  737. if (count == 1) {
  738. s->strippos = 0;
  739. s->stripoff = value;
  740. } else
  741. s->strippos = off;
  742. s->strips = count;
  743. if (s->strips == 1)
  744. s->rps = s->height;
  745. s->sot = type;
  746. break;
  747. case TIFF_STRIP_SIZE:
  748. if (count == 1) {
  749. s->stripsizesoff = 0;
  750. s->stripsize = value;
  751. s->strips = 1;
  752. } else {
  753. s->stripsizesoff = off;
  754. }
  755. s->strips = count;
  756. s->sstype = type;
  757. break;
  758. case TIFF_XRES:
  759. case TIFF_YRES:
  760. set_sar(s, tag, value, value2);
  761. break;
  762. case TIFF_TILE_BYTE_COUNTS:
  763. case TIFF_TILE_LENGTH:
  764. case TIFF_TILE_OFFSETS:
  765. case TIFF_TILE_WIDTH:
  766. av_log(s->avctx, AV_LOG_ERROR, "Tiled images are not supported\n");
  767. return AVERROR_PATCHWELCOME;
  768. break;
  769. case TIFF_PREDICTOR:
  770. s->predictor = value;
  771. break;
  772. case TIFF_PHOTOMETRIC:
  773. switch (value) {
  774. case TIFF_PHOTOMETRIC_WHITE_IS_ZERO:
  775. case TIFF_PHOTOMETRIC_BLACK_IS_ZERO:
  776. case TIFF_PHOTOMETRIC_RGB:
  777. case TIFF_PHOTOMETRIC_PALETTE:
  778. case TIFF_PHOTOMETRIC_YCBCR:
  779. s->photometric = value;
  780. break;
  781. case TIFF_PHOTOMETRIC_ALPHA_MASK:
  782. case TIFF_PHOTOMETRIC_SEPARATED:
  783. case TIFF_PHOTOMETRIC_CIE_LAB:
  784. case TIFF_PHOTOMETRIC_ICC_LAB:
  785. case TIFF_PHOTOMETRIC_ITU_LAB:
  786. case TIFF_PHOTOMETRIC_CFA:
  787. case TIFF_PHOTOMETRIC_LOG_L:
  788. case TIFF_PHOTOMETRIC_LOG_LUV:
  789. case TIFF_PHOTOMETRIC_LINEAR_RAW:
  790. avpriv_report_missing_feature(s->avctx,
  791. "PhotometricInterpretation 0x%04X",
  792. value);
  793. return AVERROR_PATCHWELCOME;
  794. default:
  795. av_log(s->avctx, AV_LOG_ERROR, "PhotometricInterpretation %u is "
  796. "unknown\n", value);
  797. return AVERROR_INVALIDDATA;
  798. }
  799. break;
  800. case TIFF_FILL_ORDER:
  801. if (value < 1 || value > 2) {
  802. av_log(s->avctx, AV_LOG_ERROR,
  803. "Unknown FillOrder value %d, trying default one\n", value);
  804. value = 1;
  805. }
  806. s->fill_order = value - 1;
  807. break;
  808. case TIFF_PAL: {
  809. GetByteContext pal_gb[3];
  810. off = type_sizes[type];
  811. if (count / 3 > 256 ||
  812. bytestream2_get_bytes_left(&s->gb) < count / 3 * off * 3)
  813. return AVERROR_INVALIDDATA;
  814. pal_gb[0] = pal_gb[1] = pal_gb[2] = s->gb;
  815. bytestream2_skip(&pal_gb[1], count / 3 * off);
  816. bytestream2_skip(&pal_gb[2], count / 3 * off * 2);
  817. off = (type_sizes[type] - 1) << 3;
  818. for (i = 0; i < count / 3; i++) {
  819. uint32_t p = 0xFF000000;
  820. p |= (ff_tget(&pal_gb[0], type, s->le) >> off) << 16;
  821. p |= (ff_tget(&pal_gb[1], type, s->le) >> off) << 8;
  822. p |= ff_tget(&pal_gb[2], type, s->le) >> off;
  823. s->palette[i] = p;
  824. }
  825. s->palette_is_set = 1;
  826. break;
  827. }
  828. case TIFF_PLANAR:
  829. s->planar = value == 2;
  830. break;
  831. case TIFF_YCBCR_SUBSAMPLING:
  832. if (count != 2) {
  833. av_log(s->avctx, AV_LOG_ERROR, "subsample count invalid\n");
  834. return AVERROR_INVALIDDATA;
  835. }
  836. for (i = 0; i < count; i++)
  837. s->subsampling[i] = ff_tget(&s->gb, type, s->le);
  838. break;
  839. case TIFF_T4OPTIONS:
  840. if (s->compr == TIFF_G3)
  841. s->fax_opts = value;
  842. break;
  843. case TIFF_T6OPTIONS:
  844. if (s->compr == TIFF_G4)
  845. s->fax_opts = value;
  846. break;
  847. #define ADD_METADATA(count, name, sep)\
  848. if ((ret = add_metadata(count, type, name, sep, s, frame)) < 0) {\
  849. av_log(s->avctx, AV_LOG_ERROR, "Error allocating temporary buffer\n");\
  850. goto end;\
  851. }
  852. case TIFF_MODEL_PIXEL_SCALE:
  853. ADD_METADATA(count, "ModelPixelScaleTag", NULL);
  854. break;
  855. case TIFF_MODEL_TRANSFORMATION:
  856. ADD_METADATA(count, "ModelTransformationTag", NULL);
  857. break;
  858. case TIFF_MODEL_TIEPOINT:
  859. ADD_METADATA(count, "ModelTiepointTag", NULL);
  860. break;
  861. case TIFF_GEO_KEY_DIRECTORY:
  862. ADD_METADATA(1, "GeoTIFF_Version", NULL);
  863. ADD_METADATA(2, "GeoTIFF_Key_Revision", ".");
  864. s->geotag_count = ff_tget_short(&s->gb, s->le);
  865. if (s->geotag_count > count / 4 - 1) {
  866. s->geotag_count = count / 4 - 1;
  867. av_log(s->avctx, AV_LOG_WARNING, "GeoTIFF key directory buffer shorter than specified\n");
  868. }
  869. if (bytestream2_get_bytes_left(&s->gb) < s->geotag_count * sizeof(int16_t) * 4) {
  870. s->geotag_count = 0;
  871. return -1;
  872. }
  873. s->geotags = av_mallocz_array(s->geotag_count, sizeof(TiffGeoTag));
  874. if (!s->geotags) {
  875. av_log(s->avctx, AV_LOG_ERROR, "Error allocating temporary buffer\n");
  876. s->geotag_count = 0;
  877. goto end;
  878. }
  879. for (i = 0; i < s->geotag_count; i++) {
  880. s->geotags[i].key = ff_tget_short(&s->gb, s->le);
  881. s->geotags[i].type = ff_tget_short(&s->gb, s->le);
  882. s->geotags[i].count = ff_tget_short(&s->gb, s->le);
  883. if (!s->geotags[i].type)
  884. s->geotags[i].val = get_geokey_val(s->geotags[i].key, ff_tget_short(&s->gb, s->le));
  885. else
  886. s->geotags[i].offset = ff_tget_short(&s->gb, s->le);
  887. }
  888. break;
  889. case TIFF_GEO_DOUBLE_PARAMS:
  890. if (count >= INT_MAX / sizeof(int64_t))
  891. return AVERROR_INVALIDDATA;
  892. if (bytestream2_get_bytes_left(&s->gb) < count * sizeof(int64_t))
  893. return AVERROR_INVALIDDATA;
  894. dp = av_malloc_array(count, sizeof(double));
  895. if (!dp) {
  896. av_log(s->avctx, AV_LOG_ERROR, "Error allocating temporary buffer\n");
  897. goto end;
  898. }
  899. for (i = 0; i < count; i++)
  900. dp[i] = ff_tget_double(&s->gb, s->le);
  901. for (i = 0; i < s->geotag_count; i++) {
  902. if (s->geotags[i].type == TIFF_GEO_DOUBLE_PARAMS) {
  903. if (s->geotags[i].count == 0
  904. || s->geotags[i].offset + s->geotags[i].count > count) {
  905. av_log(s->avctx, AV_LOG_WARNING, "Invalid GeoTIFF key %d\n", s->geotags[i].key);
  906. } else {
  907. char *ap = doubles2str(&dp[s->geotags[i].offset], s->geotags[i].count, ", ");
  908. if (!ap) {
  909. av_log(s->avctx, AV_LOG_ERROR, "Error allocating temporary buffer\n");
  910. av_freep(&dp);
  911. return AVERROR(ENOMEM);
  912. }
  913. s->geotags[i].val = ap;
  914. }
  915. }
  916. }
  917. av_freep(&dp);
  918. break;
  919. case TIFF_GEO_ASCII_PARAMS:
  920. pos = bytestream2_tell(&s->gb);
  921. for (i = 0; i < s->geotag_count; i++) {
  922. if (s->geotags[i].type == TIFF_GEO_ASCII_PARAMS) {
  923. if (s->geotags[i].count == 0
  924. || s->geotags[i].offset + s->geotags[i].count > count) {
  925. av_log(s->avctx, AV_LOG_WARNING, "Invalid GeoTIFF key %d\n", s->geotags[i].key);
  926. } else {
  927. char *ap;
  928. bytestream2_seek(&s->gb, pos + s->geotags[i].offset, SEEK_SET);
  929. if (bytestream2_get_bytes_left(&s->gb) < s->geotags[i].count)
  930. return AVERROR_INVALIDDATA;
  931. ap = av_malloc(s->geotags[i].count);
  932. if (!ap) {
  933. av_log(s->avctx, AV_LOG_ERROR, "Error allocating temporary buffer\n");
  934. return AVERROR(ENOMEM);
  935. }
  936. bytestream2_get_bufferu(&s->gb, ap, s->geotags[i].count);
  937. ap[s->geotags[i].count - 1] = '\0'; //replace the "|" delimiter with a 0 byte
  938. s->geotags[i].val = ap;
  939. }
  940. }
  941. }
  942. break;
  943. case TIFF_ARTIST:
  944. ADD_METADATA(count, "artist", NULL);
  945. break;
  946. case TIFF_COPYRIGHT:
  947. ADD_METADATA(count, "copyright", NULL);
  948. break;
  949. case TIFF_DATE:
  950. ADD_METADATA(count, "date", NULL);
  951. break;
  952. case TIFF_DOCUMENT_NAME:
  953. ADD_METADATA(count, "document_name", NULL);
  954. break;
  955. case TIFF_HOST_COMPUTER:
  956. ADD_METADATA(count, "computer", NULL);
  957. break;
  958. case TIFF_IMAGE_DESCRIPTION:
  959. ADD_METADATA(count, "description", NULL);
  960. break;
  961. case TIFF_MAKE:
  962. ADD_METADATA(count, "make", NULL);
  963. break;
  964. case TIFF_MODEL:
  965. ADD_METADATA(count, "model", NULL);
  966. break;
  967. case TIFF_PAGE_NAME:
  968. ADD_METADATA(count, "page_name", NULL);
  969. break;
  970. case TIFF_PAGE_NUMBER:
  971. ADD_METADATA(count, "page_number", " / ");
  972. break;
  973. case TIFF_SOFTWARE_NAME:
  974. ADD_METADATA(count, "software", NULL);
  975. break;
  976. default:
  977. if (s->avctx->err_recognition & AV_EF_EXPLODE) {
  978. av_log(s->avctx, AV_LOG_ERROR,
  979. "Unknown or unsupported tag %d/0X%0X\n",
  980. tag, tag);
  981. return AVERROR_INVALIDDATA;
  982. }
  983. }
  984. end:
  985. bytestream2_seek(&s->gb, start, SEEK_SET);
  986. return 0;
  987. }
  988. static int decode_frame(AVCodecContext *avctx,
  989. void *data, int *got_frame, AVPacket *avpkt)
  990. {
  991. TiffContext *const s = avctx->priv_data;
  992. AVFrame *const p = data;
  993. ThreadFrame frame = { .f = data };
  994. unsigned off;
  995. int le, ret, plane, planes;
  996. int i, j, entries, stride;
  997. unsigned soff, ssize;
  998. uint8_t *dst;
  999. GetByteContext stripsizes;
  1000. GetByteContext stripdata;
  1001. bytestream2_init(&s->gb, avpkt->data, avpkt->size);
  1002. // parse image header
  1003. if ((ret = ff_tdecode_header(&s->gb, &le, &off))) {
  1004. av_log(avctx, AV_LOG_ERROR, "Invalid TIFF header\n");
  1005. return ret;
  1006. } else if (off >= UINT_MAX - 14 || avpkt->size < off + 14) {
  1007. av_log(avctx, AV_LOG_ERROR, "IFD offset is greater than image size\n");
  1008. return AVERROR_INVALIDDATA;
  1009. }
  1010. s->le = le;
  1011. // TIFF_BPP is not a required tag and defaults to 1
  1012. s->bppcount = s->bpp = 1;
  1013. s->photometric = TIFF_PHOTOMETRIC_NONE;
  1014. s->compr = TIFF_RAW;
  1015. s->fill_order = 0;
  1016. free_geotags(s);
  1017. // Reset these offsets so we can tell if they were set this frame
  1018. s->stripsizesoff = s->strippos = 0;
  1019. /* parse image file directory */
  1020. bytestream2_seek(&s->gb, off, SEEK_SET);
  1021. entries = ff_tget_short(&s->gb, le);
  1022. if (bytestream2_get_bytes_left(&s->gb) < entries * 12)
  1023. return AVERROR_INVALIDDATA;
  1024. for (i = 0; i < entries; i++) {
  1025. if ((ret = tiff_decode_tag(s, p)) < 0)
  1026. return ret;
  1027. }
  1028. for (i = 0; i<s->geotag_count; i++) {
  1029. const char *keyname = get_geokey_name(s->geotags[i].key);
  1030. if (!keyname) {
  1031. av_log(avctx, AV_LOG_WARNING, "Unknown or unsupported GeoTIFF key %d\n", s->geotags[i].key);
  1032. continue;
  1033. }
  1034. if (get_geokey_type(s->geotags[i].key) != s->geotags[i].type) {
  1035. av_log(avctx, AV_LOG_WARNING, "Type of GeoTIFF key %d is wrong\n", s->geotags[i].key);
  1036. continue;
  1037. }
  1038. ret = av_dict_set(avpriv_frame_get_metadatap(p), keyname, s->geotags[i].val, 0);
  1039. if (ret<0) {
  1040. av_log(avctx, AV_LOG_ERROR, "Writing metadata with key '%s' failed\n", keyname);
  1041. return ret;
  1042. }
  1043. }
  1044. if (!s->strippos && !s->stripoff) {
  1045. av_log(avctx, AV_LOG_ERROR, "Image data is missing\n");
  1046. return AVERROR_INVALIDDATA;
  1047. }
  1048. /* now we have the data and may start decoding */
  1049. if ((ret = init_image(s, &frame)) < 0)
  1050. return ret;
  1051. if (s->strips == 1 && !s->stripsize) {
  1052. av_log(avctx, AV_LOG_WARNING, "Image data size missing\n");
  1053. s->stripsize = avpkt->size - s->stripoff;
  1054. }
  1055. if (s->stripsizesoff) {
  1056. if (s->stripsizesoff >= (unsigned)avpkt->size)
  1057. return AVERROR_INVALIDDATA;
  1058. bytestream2_init(&stripsizes, avpkt->data + s->stripsizesoff,
  1059. avpkt->size - s->stripsizesoff);
  1060. }
  1061. if (s->strippos) {
  1062. if (s->strippos >= (unsigned)avpkt->size)
  1063. return AVERROR_INVALIDDATA;
  1064. bytestream2_init(&stripdata, avpkt->data + s->strippos,
  1065. avpkt->size - s->strippos);
  1066. }
  1067. if (s->rps <= 0) {
  1068. av_log(avctx, AV_LOG_ERROR, "rps %d invalid\n", s->rps);
  1069. return AVERROR_INVALIDDATA;
  1070. }
  1071. planes = s->planar ? s->bppcount : 1;
  1072. for (plane = 0; plane < planes; plane++) {
  1073. stride = p->linesize[plane];
  1074. dst = p->data[plane];
  1075. for (i = 0; i < s->height; i += s->rps) {
  1076. if (s->stripsizesoff)
  1077. ssize = ff_tget(&stripsizes, s->sstype, le);
  1078. else
  1079. ssize = s->stripsize;
  1080. if (s->strippos)
  1081. soff = ff_tget(&stripdata, s->sot, le);
  1082. else
  1083. soff = s->stripoff;
  1084. if (soff > avpkt->size || ssize > avpkt->size - soff) {
  1085. av_log(avctx, AV_LOG_ERROR, "Invalid strip size/offset\n");
  1086. return AVERROR_INVALIDDATA;
  1087. }
  1088. if ((ret = tiff_unpack_strip(s, p, dst, stride, avpkt->data + soff, ssize, i,
  1089. FFMIN(s->rps, s->height - i))) < 0) {
  1090. if (avctx->err_recognition & AV_EF_EXPLODE)
  1091. return ret;
  1092. break;
  1093. }
  1094. dst += s->rps * stride;
  1095. }
  1096. if (s->predictor == 2) {
  1097. if (s->photometric == TIFF_PHOTOMETRIC_YCBCR) {
  1098. av_log(s->avctx, AV_LOG_ERROR, "predictor == 2 with YUV is unsupported");
  1099. return AVERROR_PATCHWELCOME;
  1100. }
  1101. dst = p->data[plane];
  1102. soff = s->bpp >> 3;
  1103. if (s->planar)
  1104. soff = FFMAX(soff / s->bppcount, 1);
  1105. ssize = s->width * soff;
  1106. if (s->avctx->pix_fmt == AV_PIX_FMT_RGB48LE ||
  1107. s->avctx->pix_fmt == AV_PIX_FMT_RGBA64LE ||
  1108. s->avctx->pix_fmt == AV_PIX_FMT_GBRP16LE ||
  1109. s->avctx->pix_fmt == AV_PIX_FMT_GBRAP16LE) {
  1110. for (i = 0; i < s->height; i++) {
  1111. for (j = soff; j < ssize; j += 2)
  1112. AV_WL16(dst + j, AV_RL16(dst + j) + AV_RL16(dst + j - soff));
  1113. dst += stride;
  1114. }
  1115. } else if (s->avctx->pix_fmt == AV_PIX_FMT_RGB48BE ||
  1116. s->avctx->pix_fmt == AV_PIX_FMT_RGBA64BE ||
  1117. s->avctx->pix_fmt == AV_PIX_FMT_GBRP16BE ||
  1118. s->avctx->pix_fmt == AV_PIX_FMT_GBRAP16BE) {
  1119. for (i = 0; i < s->height; i++) {
  1120. for (j = soff; j < ssize; j += 2)
  1121. AV_WB16(dst + j, AV_RB16(dst + j) + AV_RB16(dst + j - soff));
  1122. dst += stride;
  1123. }
  1124. } else {
  1125. for (i = 0; i < s->height; i++) {
  1126. for (j = soff; j < ssize; j++)
  1127. dst[j] += dst[j - soff];
  1128. dst += stride;
  1129. }
  1130. }
  1131. }
  1132. if (s->photometric == TIFF_PHOTOMETRIC_WHITE_IS_ZERO) {
  1133. dst = p->data[plane];
  1134. for (i = 0; i < s->height; i++) {
  1135. for (j = 0; j < p->linesize[plane]; j++)
  1136. dst[j] = (s->avctx->pix_fmt == AV_PIX_FMT_PAL8 ? (1<<s->bpp) - 1 : 255) - dst[j];
  1137. dst += stride;
  1138. }
  1139. }
  1140. }
  1141. if (s->planar && s->bppcount > 2) {
  1142. FFSWAP(uint8_t*, p->data[0], p->data[2]);
  1143. FFSWAP(int, p->linesize[0], p->linesize[2]);
  1144. FFSWAP(uint8_t*, p->data[0], p->data[1]);
  1145. FFSWAP(int, p->linesize[0], p->linesize[1]);
  1146. }
  1147. *got_frame = 1;
  1148. return avpkt->size;
  1149. }
  1150. static av_cold int tiff_init(AVCodecContext *avctx)
  1151. {
  1152. TiffContext *s = avctx->priv_data;
  1153. s->width = 0;
  1154. s->height = 0;
  1155. s->subsampling[0] =
  1156. s->subsampling[1] = 1;
  1157. s->avctx = avctx;
  1158. ff_lzw_decode_open(&s->lzw);
  1159. ff_ccitt_unpack_init();
  1160. return 0;
  1161. }
  1162. static av_cold int tiff_end(AVCodecContext *avctx)
  1163. {
  1164. TiffContext *const s = avctx->priv_data;
  1165. free_geotags(s);
  1166. ff_lzw_decode_close(&s->lzw);
  1167. av_freep(&s->deinvert_buf);
  1168. return 0;
  1169. }
  1170. AVCodec ff_tiff_decoder = {
  1171. .name = "tiff",
  1172. .long_name = NULL_IF_CONFIG_SMALL("TIFF image"),
  1173. .type = AVMEDIA_TYPE_VIDEO,
  1174. .id = AV_CODEC_ID_TIFF,
  1175. .priv_data_size = sizeof(TiffContext),
  1176. .init = tiff_init,
  1177. .close = tiff_end,
  1178. .decode = decode_frame,
  1179. .init_thread_copy = ONLY_IF_THREADS_ENABLED(tiff_init),
  1180. .capabilities = CODEC_CAP_DR1 | CODEC_CAP_FRAME_THREADS,
  1181. };