tcd.h 19 KB

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  1. /*
  2. * The copyright in this software is being made available under the 2-clauses
  3. * BSD License, included below. This software may be subject to other third
  4. * party and contributor rights, including patent rights, and no such rights
  5. * are granted under this license.
  6. *
  7. * Copyright (c) 2002-2014, Universite catholique de Louvain (UCL), Belgium
  8. * Copyright (c) 2002-2014, Professor Benoit Macq
  9. * Copyright (c) 2001-2003, David Janssens
  10. * Copyright (c) 2002-2003, Yannick Verschueren
  11. * Copyright (c) 2003-2007, Francois-Olivier Devaux
  12. * Copyright (c) 2003-2014, Antonin Descampe
  13. * Copyright (c) 2005, Herve Drolon, FreeImage Team
  14. * Copyright (c) 2008, 2011-2012, Centre National d'Etudes Spatiales (CNES), FR
  15. * Copyright (c) 2012, CS Systemes d'Information, France
  16. * Copyright (c) 2017, IntoPIX SA <support@intopix.com>
  17. * All rights reserved.
  18. *
  19. * Redistribution and use in source and binary forms, with or without
  20. * modification, are permitted provided that the following conditions
  21. * are met:
  22. * 1. Redistributions of source code must retain the above copyright
  23. * notice, this list of conditions and the following disclaimer.
  24. * 2. Redistributions in binary form must reproduce the above copyright
  25. * notice, this list of conditions and the following disclaimer in the
  26. * documentation and/or other materials provided with the distribution.
  27. *
  28. * THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS `AS IS'
  29. * AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
  30. * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
  31. * ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT OWNER OR CONTRIBUTORS BE
  32. * LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
  33. * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
  34. * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
  35. * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
  36. * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
  37. * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
  38. * POSSIBILITY OF SUCH DAMAGE.
  39. */
  40. #ifndef OPJ_TCD_H
  41. #define OPJ_TCD_H
  42. /**
  43. @file tcd.h
  44. @brief Implementation of a tile coder/decoder (TCD)
  45. The functions in TCD.C encode or decode each tile independently from
  46. each other. The functions in TCD.C are used by other functions in J2K.C.
  47. */
  48. /** @defgroup TCD TCD - Implementation of a tile coder/decoder */
  49. /*@{*/
  50. /**
  51. FIXME DOC
  52. */
  53. typedef struct opj_tcd_pass {
  54. OPJ_UINT32 rate;
  55. OPJ_FLOAT64 distortiondec;
  56. OPJ_UINT32 len;
  57. OPJ_BITFIELD term : 1;
  58. } opj_tcd_pass_t;
  59. /**
  60. FIXME DOC
  61. */
  62. typedef struct opj_tcd_layer {
  63. OPJ_UINT32 numpasses; /* Number of passes in the layer */
  64. OPJ_UINT32 len; /* len of information */
  65. OPJ_FLOAT64 disto; /* add for index (Cfr. Marcela) */
  66. OPJ_BYTE *data; /* data */
  67. } opj_tcd_layer_t;
  68. /**
  69. FIXME DOC
  70. */
  71. typedef struct opj_tcd_cblk_enc {
  72. OPJ_BYTE* data; /* Data */
  73. opj_tcd_layer_t* layers; /* layer information */
  74. opj_tcd_pass_t* passes; /* information about the passes */
  75. OPJ_INT32 x0, y0, x1,
  76. y1; /* dimension of the code-blocks : left upper corner (x0, y0) right low corner (x1,y1) */
  77. OPJ_UINT32 numbps;
  78. OPJ_UINT32 numlenbits;
  79. OPJ_UINT32 data_size; /* Size of allocated data buffer */
  80. OPJ_UINT32
  81. numpasses; /* number of pass already done for the code-blocks */
  82. OPJ_UINT32 numpassesinlayers; /* number of passes in the layer */
  83. OPJ_UINT32 totalpasses; /* total number of passes */
  84. } opj_tcd_cblk_enc_t;
  85. /** Chunk of codestream data that is part of a code block */
  86. typedef struct opj_tcd_seg_data_chunk {
  87. /* Point to tilepart buffer. We don't make a copy !
  88. So the tilepart buffer must be kept alive
  89. as long as we need to decode the codeblocks */
  90. OPJ_BYTE * data;
  91. OPJ_UINT32 len; /* Usable length of data */
  92. } opj_tcd_seg_data_chunk_t;
  93. /** Segment of a code-block.
  94. * A segment represent a number of consecutive coding passes, without termination
  95. * of MQC or RAW between them. */
  96. typedef struct opj_tcd_seg {
  97. OPJ_UINT32 len; /* Size of data related to this segment */
  98. /* Number of passes decoded. Including those that we skip */
  99. OPJ_UINT32 numpasses;
  100. /* Number of passes actually to be decoded. To be used for code-block decoding */
  101. OPJ_UINT32 real_num_passes;
  102. /* Maximum number of passes for this segment */
  103. OPJ_UINT32 maxpasses;
  104. /* Number of new passes for current packed. Transitory value */
  105. OPJ_UINT32 numnewpasses;
  106. /* Codestream length for this segment for current packed. Transitory value */
  107. OPJ_UINT32 newlen;
  108. } opj_tcd_seg_t;
  109. /** Code-block for decoding */
  110. typedef struct opj_tcd_cblk_dec {
  111. opj_tcd_seg_t* segs; /* segments information */
  112. opj_tcd_seg_data_chunk_t* chunks; /* Array of chunks */
  113. /* position of the code-blocks : left upper corner (x0, y0) right low corner (x1,y1) */
  114. OPJ_INT32 x0, y0, x1, y1;
  115. /* Mb is The maximum number of bit-planes available for the representation of
  116. coefficients in any sub-band, b, as defined in Equation (E-2). See
  117. Section B.10.5 of the standard */
  118. OPJ_UINT32 Mb; /* currently used only to check if HT decoding is correct */
  119. /* numbps is Mb - P as defined in Section B.10.5 of the standard */
  120. OPJ_UINT32 numbps;
  121. /* number of bits for len, for the current packet. Transitory value */
  122. OPJ_UINT32 numlenbits;
  123. /* number of pass added to the code-blocks, for the current packet. Transitory value */
  124. OPJ_UINT32 numnewpasses;
  125. /* number of segments, including those of packet we skip */
  126. OPJ_UINT32 numsegs;
  127. /* number of segments, to be used for code block decoding */
  128. OPJ_UINT32 real_num_segs;
  129. OPJ_UINT32 m_current_max_segs; /* allocated number of segs[] items */
  130. OPJ_UINT32 numchunks; /* Number of valid chunks items */
  131. OPJ_UINT32 numchunksalloc; /* Number of chunks item allocated */
  132. /* Decoded code-block. Only used for subtile decoding. Otherwise tilec->data is directly updated */
  133. OPJ_INT32* decoded_data;
  134. OPJ_BOOL corrupted; /* whether the code block data is corrupted */
  135. } opj_tcd_cblk_dec_t;
  136. /** Precinct structure */
  137. typedef struct opj_tcd_precinct {
  138. /* dimension of the precinct : left upper corner (x0, y0) right low corner (x1,y1) */
  139. OPJ_INT32 x0, y0, x1, y1;
  140. OPJ_UINT32 cw, ch; /* number of code-blocks, in width and height */
  141. union { /* code-blocks information */
  142. opj_tcd_cblk_enc_t* enc;
  143. opj_tcd_cblk_dec_t* dec;
  144. void* blocks;
  145. } cblks;
  146. OPJ_UINT32 block_size; /* size taken by cblks (in bytes) */
  147. opj_tgt_tree_t *incltree; /* inclusion tree */
  148. opj_tgt_tree_t *imsbtree; /* IMSB tree */
  149. } opj_tcd_precinct_t;
  150. /** Sub-band structure */
  151. typedef struct opj_tcd_band {
  152. /* dimension of the subband : left upper corner (x0, y0) right low corner (x1,y1) */
  153. OPJ_INT32 x0, y0, x1, y1;
  154. /* band number: for lowest resolution level (0=LL), otherwise (1=HL, 2=LH, 3=HH) */
  155. OPJ_UINT32 bandno;
  156. /* precinct information */
  157. opj_tcd_precinct_t *precincts;
  158. /* size of data taken by precincts */
  159. OPJ_UINT32 precincts_data_size;
  160. OPJ_INT32 numbps;
  161. OPJ_FLOAT32 stepsize;
  162. } opj_tcd_band_t;
  163. /** Tile-component resolution structure */
  164. typedef struct opj_tcd_resolution {
  165. /* dimension of the resolution level : left upper corner (x0, y0) right low corner (x1,y1) */
  166. OPJ_INT32 x0, y0, x1, y1;
  167. /* number of precincts, in width and height, for this resolution level */
  168. OPJ_UINT32 pw, ph;
  169. /* number of sub-bands for the resolution level (1 for lowest resolution level, 3 otherwise) */
  170. OPJ_UINT32 numbands;
  171. /* subband information */
  172. opj_tcd_band_t bands[3];
  173. /* dimension of the resolution limited to window of interest. Only valid if tcd->whole_tile_decoding is set */
  174. OPJ_UINT32 win_x0;
  175. OPJ_UINT32 win_y0;
  176. OPJ_UINT32 win_x1;
  177. OPJ_UINT32 win_y1;
  178. } opj_tcd_resolution_t;
  179. /** Tile-component structure */
  180. typedef struct opj_tcd_tilecomp {
  181. /* dimension of component : left upper corner (x0, y0) right low corner (x1,y1) */
  182. OPJ_INT32 x0, y0, x1, y1;
  183. /* component number */
  184. OPJ_UINT32 compno;
  185. /* number of resolutions level */
  186. OPJ_UINT32 numresolutions;
  187. /* number of resolutions level to decode (at max)*/
  188. OPJ_UINT32 minimum_num_resolutions;
  189. /* resolutions information */
  190. opj_tcd_resolution_t *resolutions;
  191. /* size of data for resolutions (in bytes) */
  192. OPJ_UINT32 resolutions_size;
  193. /* data of the component. For decoding, only valid if tcd->whole_tile_decoding is set (so exclusive of data_win member) */
  194. OPJ_INT32 *data;
  195. /* if true, then need to free after usage, otherwise do not free */
  196. OPJ_BOOL ownsData;
  197. /* we may either need to allocate this amount of data, or re-use image data and ignore this value */
  198. size_t data_size_needed;
  199. /* size of the data of the component */
  200. size_t data_size;
  201. /** data of the component limited to window of interest. Only valid for decoding and if tcd->whole_tile_decoding is NOT set (so exclusive of data member) */
  202. OPJ_INT32 *data_win;
  203. /* dimension of the component limited to window of interest. Only valid for decoding and if tcd->whole_tile_decoding is NOT set */
  204. OPJ_UINT32 win_x0;
  205. OPJ_UINT32 win_y0;
  206. OPJ_UINT32 win_x1;
  207. OPJ_UINT32 win_y1;
  208. /* number of pixels */
  209. OPJ_SIZE_T numpix;
  210. } opj_tcd_tilecomp_t;
  211. /**
  212. FIXME DOC
  213. */
  214. typedef struct opj_tcd_tile {
  215. /* dimension of the tile : left upper corner (x0, y0) right low corner (x1,y1) */
  216. OPJ_INT32 x0, y0, x1, y1;
  217. OPJ_UINT32 numcomps; /* number of components in tile */
  218. opj_tcd_tilecomp_t *comps; /* Components information */
  219. OPJ_SIZE_T numpix; /* number of pixels */
  220. OPJ_FLOAT64 distotile; /* distortion of the tile */
  221. OPJ_FLOAT64 distolayer[100]; /* distortion per layer */
  222. OPJ_UINT32 packno; /* packet number */
  223. } opj_tcd_tile_t;
  224. /**
  225. FIXME DOC
  226. */
  227. typedef struct opj_tcd_image {
  228. opj_tcd_tile_t *tiles; /* Tiles information */
  229. }
  230. opj_tcd_image_t;
  231. /**
  232. Tile coder/decoder
  233. */
  234. typedef struct opj_tcd {
  235. /** Position of the tilepart flag in Progression order*/
  236. OPJ_INT32 tp_pos;
  237. /** Tile part number*/
  238. OPJ_UINT32 tp_num;
  239. /** Current tile part number*/
  240. OPJ_UINT32 cur_tp_num;
  241. /** Total number of tileparts of the current tile*/
  242. OPJ_UINT32 cur_totnum_tp;
  243. /** Current Packet iterator number */
  244. OPJ_UINT32 cur_pino;
  245. /** info on each image tile */
  246. opj_tcd_image_t *tcd_image;
  247. /** image header */
  248. opj_image_t *image;
  249. /** coding parameters */
  250. opj_cp_t *cp;
  251. /** coding/decoding parameters common to all tiles */
  252. opj_tcp_t *tcp;
  253. /** current encoded/decoded tile */
  254. OPJ_UINT32 tcd_tileno;
  255. /** tell if the tcd is a decoder. */
  256. OPJ_BITFIELD m_is_decoder : 1;
  257. /** Thread pool */
  258. opj_thread_pool_t* thread_pool;
  259. /** Coordinates of the window of interest, in grid reference space */
  260. OPJ_UINT32 win_x0;
  261. OPJ_UINT32 win_y0;
  262. OPJ_UINT32 win_x1;
  263. OPJ_UINT32 win_y1;
  264. /** Only valid for decoding. Whether the whole tile is decoded, or just the region in win_x0/win_y0/win_x1/win_y1 */
  265. OPJ_BOOL whole_tile_decoding;
  266. /* Array of size image->numcomps indicating if a component must be decoded. NULL if all components must be decoded */
  267. OPJ_BOOL* used_component;
  268. } opj_tcd_t;
  269. /**
  270. * Structure to hold information needed to generate some markers.
  271. * Used by encoder.
  272. */
  273. typedef struct opj_tcd_marker_info {
  274. /** In: Whether information to generate PLT markers in needed */
  275. OPJ_BOOL need_PLT;
  276. /** OUT: Number of elements in p_packet_size[] array */
  277. OPJ_UINT32 packet_count;
  278. /** OUT: Array of size packet_count, such that p_packet_size[i] is
  279. * the size in bytes of the ith packet */
  280. OPJ_UINT32* p_packet_size;
  281. } opj_tcd_marker_info_t;
  282. /** @name Exported functions */
  283. /*@{*/
  284. /* ----------------------------------------------------------------------- */
  285. /**
  286. Dump the content of a tcd structure
  287. */
  288. /*void tcd_dump(FILE *fd, opj_tcd_t *tcd, opj_tcd_image_t *img);*/ /* TODO MSD should use the new v2 structures */
  289. /**
  290. Create a new TCD handle
  291. @param p_is_decoder FIXME DOC
  292. @return Returns a new TCD handle if successful returns NULL otherwise
  293. */
  294. opj_tcd_t* opj_tcd_create(OPJ_BOOL p_is_decoder);
  295. /**
  296. Destroy a previously created TCD handle
  297. @param tcd TCD handle to destroy
  298. */
  299. void opj_tcd_destroy(opj_tcd_t *tcd);
  300. /**
  301. * Create a new opj_tcd_marker_info_t* structure
  302. * @param need_PLT Whether information is needed to generate PLT markers.
  303. */
  304. opj_tcd_marker_info_t* opj_tcd_marker_info_create(OPJ_BOOL need_PLT);
  305. /**
  306. Destroy a previously created opj_tcd_marker_info_t* structure
  307. @param p_tcd_marker_info Structure to destroy
  308. */
  309. void opj_tcd_marker_info_destroy(opj_tcd_marker_info_t *p_tcd_marker_info);
  310. /**
  311. * Initialize the tile coder and may reuse some memory.
  312. * @param p_tcd TCD handle.
  313. * @param p_image raw image.
  314. * @param p_cp coding parameters.
  315. * @param p_tp thread pool
  316. *
  317. * @return true if the encoding values could be set (false otherwise).
  318. */
  319. OPJ_BOOL opj_tcd_init(opj_tcd_t *p_tcd,
  320. opj_image_t * p_image,
  321. opj_cp_t * p_cp,
  322. opj_thread_pool_t* p_tp);
  323. /**
  324. * Allocates memory for decoding a specific tile.
  325. *
  326. * @param p_tcd the tile decoder.
  327. * @param p_tile_no the index of the tile received in sequence. This not necessarily lead to the
  328. * tile at index p_tile_no.
  329. * @param p_manager the event manager.
  330. *
  331. * @return true if the remaining data is sufficient.
  332. */
  333. OPJ_BOOL opj_tcd_init_decode_tile(opj_tcd_t *p_tcd, OPJ_UINT32 p_tile_no,
  334. opj_event_mgr_t* p_manager);
  335. /**
  336. * Gets the maximum tile size that will be taken by the tile once decoded.
  337. */
  338. OPJ_UINT32 opj_tcd_get_decoded_tile_size(opj_tcd_t *p_tcd,
  339. OPJ_BOOL take_into_account_partial_decoding);
  340. /**
  341. * Encodes a tile from the raw image into the given buffer.
  342. * @param p_tcd Tile Coder handle
  343. * @param p_tile_no Index of the tile to encode.
  344. * @param p_dest Destination buffer
  345. * @param p_data_written pointer to an int that is incremented by the number of bytes really written on p_dest
  346. * @param p_len Maximum length of the destination buffer
  347. * @param p_cstr_info Codestream information structure
  348. * @param p_marker_info Marker information structure
  349. * @param p_manager the user event manager
  350. * @return true if the coding is successful.
  351. */
  352. OPJ_BOOL opj_tcd_encode_tile(opj_tcd_t *p_tcd,
  353. OPJ_UINT32 p_tile_no,
  354. OPJ_BYTE *p_dest,
  355. OPJ_UINT32 * p_data_written,
  356. OPJ_UINT32 p_len,
  357. struct opj_codestream_info *p_cstr_info,
  358. opj_tcd_marker_info_t* p_marker_info,
  359. opj_event_mgr_t *p_manager);
  360. /**
  361. Decode a tile from a buffer into a raw image
  362. @param tcd TCD handle
  363. @param win_x0 Upper left x of region to decode (in grid coordinates)
  364. @param win_y0 Upper left y of region to decode (in grid coordinates)
  365. @param win_x1 Lower right x of region to decode (in grid coordinates)
  366. @param win_y1 Lower right y of region to decode (in grid coordinates)
  367. @param numcomps_to_decode Size of the comps_indices array, or 0 if decoding all components.
  368. @param comps_indices Array of numcomps values representing the indices
  369. of the components to decode (relative to the
  370. codestream, starting at 0). Or NULL if decoding all components.
  371. @param src Source buffer
  372. @param len Length of source buffer
  373. @param tileno Number that identifies one of the tiles to be decoded
  374. @param cstr_info FIXME DOC
  375. @param manager the event manager.
  376. */
  377. OPJ_BOOL opj_tcd_decode_tile(opj_tcd_t *tcd,
  378. OPJ_UINT32 win_x0,
  379. OPJ_UINT32 win_y0,
  380. OPJ_UINT32 win_x1,
  381. OPJ_UINT32 win_y1,
  382. OPJ_UINT32 numcomps_to_decode,
  383. const OPJ_UINT32 *comps_indices,
  384. OPJ_BYTE *src,
  385. OPJ_UINT32 len,
  386. OPJ_UINT32 tileno,
  387. opj_codestream_index_t *cstr_info,
  388. opj_event_mgr_t *manager);
  389. /**
  390. * Copies tile data from the system onto the given memory block.
  391. */
  392. OPJ_BOOL opj_tcd_update_tile_data(opj_tcd_t *p_tcd,
  393. OPJ_BYTE * p_dest,
  394. OPJ_UINT32 p_dest_length);
  395. /**
  396. * Get the size in bytes of the input buffer provided before encoded.
  397. * This must be the size provided to the p_src_length argument of
  398. * opj_tcd_copy_tile_data()
  399. */
  400. OPJ_SIZE_T opj_tcd_get_encoder_input_buffer_size(opj_tcd_t *p_tcd);
  401. /**
  402. * Initialize the tile coder and may reuse some memory.
  403. *
  404. * @param p_tcd TCD handle.
  405. * @param p_tile_no current tile index to encode.
  406. * @param p_manager the event manager.
  407. *
  408. * @return true if the encoding values could be set (false otherwise).
  409. */
  410. OPJ_BOOL opj_tcd_init_encode_tile(opj_tcd_t *p_tcd,
  411. OPJ_UINT32 p_tile_no, opj_event_mgr_t* p_manager);
  412. /**
  413. * Copies tile data from the given memory block onto the system.
  414. *
  415. * p_src_length must be equal to opj_tcd_get_encoder_input_buffer_size()
  416. */
  417. OPJ_BOOL opj_tcd_copy_tile_data(opj_tcd_t *p_tcd,
  418. OPJ_BYTE * p_src,
  419. OPJ_SIZE_T p_src_length);
  420. /**
  421. * Allocates tile component data
  422. *
  423. *
  424. */
  425. OPJ_BOOL opj_alloc_tile_component_data(opj_tcd_tilecomp_t *l_tilec);
  426. /** Returns whether a sub-band is empty (i.e. whether it has a null area)
  427. * @param band Sub-band handle.
  428. * @return OPJ_TRUE whether the sub-band is empty.
  429. */
  430. OPJ_BOOL opj_tcd_is_band_empty(opj_tcd_band_t* band);
  431. /** Reinitialize a segment */
  432. void opj_tcd_reinit_segment(opj_tcd_seg_t* seg);
  433. /** Returns whether a sub-band region contributes to the area of interest
  434. * tcd->win_x0,tcd->win_y0,tcd->win_x1,tcd->win_y1.
  435. *
  436. * @param tcd TCD handle.
  437. * @param compno Component number
  438. * @param resno Resolution number
  439. * @param bandno Band number (*not* band index, ie 0, 1, 2 or 3)
  440. * @param x0 Upper left x in subband coordinates
  441. * @param y0 Upper left y in subband coordinates
  442. * @param x1 Lower right x in subband coordinates
  443. * @param y1 Lower right y in subband coordinates
  444. * @return OPJ_TRUE whether the sub-band region contributes to the area of
  445. * interest.
  446. */
  447. OPJ_BOOL opj_tcd_is_subband_area_of_interest(opj_tcd_t *tcd,
  448. OPJ_UINT32 compno,
  449. OPJ_UINT32 resno,
  450. OPJ_UINT32 bandno,
  451. OPJ_UINT32 x0,
  452. OPJ_UINT32 y0,
  453. OPJ_UINT32 x1,
  454. OPJ_UINT32 y1);
  455. /* ----------------------------------------------------------------------- */
  456. /*@}*/
  457. /*@}*/
  458. #endif /* OPJ_TCD_H */