Source code of Windows XP (NT5)
You can not select more than 25 topics Topics must start with a letter or number, can include dashes ('-') and can be up to 35 characters long.

403 lines
15 KiB

  1. /*
  2. * jpegint.h
  3. *
  4. * Copyright (C) 1991-1996, Thomas G. Lane.
  5. * This file is part of the Independent JPEG Group's software.
  6. * For conditions of distribution and use, see the accompanying README file.
  7. *
  8. * This file provides common declarations for the various JPEG modules.
  9. * These declarations are considered internal to the JPEG library; most
  10. * applications using the library shouldn't need to include this file.
  11. */
  12. /* Declarations for both compression & decompression */
  13. #ifdef NIFTY
  14. typedef struct
  15. {
  16. short g, b;
  17. } coef_c1;
  18. typedef struct
  19. {
  20. short r, g;
  21. } coef_c2;
  22. #endif
  23. typedef enum { /* Operating modes for buffer controllers */
  24. JBUF_PASS_THRU, /* Plain stripwise operation */
  25. /* Remaining modes require a full-image buffer to have been created */
  26. JBUF_SAVE_SOURCE, /* Run source subobject only, save output */
  27. JBUF_CRANK_DEST, /* Run dest subobject only, using saved data */
  28. JBUF_SAVE_AND_PASS /* Run both subobjects, save output */
  29. } J_BUF_MODE;
  30. /* Values of global_state field (jdapi.c has some dependencies on ordering!) */
  31. #define CSTATE_START 100 /* after create_compress */
  32. #define CSTATE_SCANNING 101 /* start_compress done, write_scanlines OK */
  33. #define CSTATE_RAW_OK 102 /* start_compress done, write_raw_data OK */
  34. #define CSTATE_WRCOEFS 103 /* jpeg_write_coefficients done */
  35. #define DSTATE_START 200 /* after create_decompress */
  36. #define DSTATE_INHEADER 201 /* reading header markers, no SOS yet */
  37. #define DSTATE_READY 202 /* found SOS, ready for start_decompress */
  38. #define DSTATE_PRELOAD 203 /* reading multiscan file in start_decompress*/
  39. #define DSTATE_PRESCAN 204 /* performing dummy pass for 2-pass quant */
  40. #define DSTATE_SCANNING 205 /* start_decompress done, read_scanlines OK */
  41. #define DSTATE_RAW_OK 206 /* start_decompress done, read_raw_data OK */
  42. #define DSTATE_BUFIMAGE 207 /* expecting jpeg_start_output */
  43. #define DSTATE_BUFPOST 208 /* looking for SOS/EOI in jpeg_finish_output */
  44. #define DSTATE_RDCOEFS 209 /* reading file in jpeg_read_coefficients */
  45. #define DSTATE_STOPPING 210 /* looking for EOI in jpeg_finish_decompress */
  46. /* Declarations for compression modules */
  47. /* Master control module */
  48. struct jpeg_comp_master {
  49. JMETHOD(void, prepare_for_pass, (j_compress_ptr cinfo));
  50. JMETHOD(void, pass_startup, (j_compress_ptr cinfo));
  51. JMETHOD(void, finish_pass, (j_compress_ptr cinfo));
  52. /* State variables made visible to other modules */
  53. boolean call_pass_startup; /* True if pass_startup must be called */
  54. boolean is_last_pass; /* True during last pass */
  55. };
  56. /* Main buffer control (downsampled-data buffer) */
  57. struct jpeg_c_main_controller {
  58. JMETHOD(void, start_pass, (j_compress_ptr cinfo, J_BUF_MODE pass_mode));
  59. JMETHOD(void, process_data, (j_compress_ptr cinfo,
  60. JSAMPARRAY input_buf, JDIMENSION *in_row_ctr,
  61. JDIMENSION in_rows_avail));
  62. };
  63. /* Compression preprocessing (downsampling input buffer control) */
  64. struct jpeg_c_prep_controller {
  65. JMETHOD(void, start_pass, (j_compress_ptr cinfo, J_BUF_MODE pass_mode));
  66. JMETHOD(void, pre_process_data, (j_compress_ptr cinfo,
  67. JSAMPARRAY input_buf,
  68. JDIMENSION *in_row_ctr,
  69. JDIMENSION in_rows_avail,
  70. JSAMPIMAGE output_buf,
  71. JDIMENSION *out_row_group_ctr,
  72. JDIMENSION out_row_groups_avail));
  73. };
  74. /* Coefficient buffer control */
  75. struct jpeg_c_coef_controller {
  76. JMETHOD(void, start_pass, (j_compress_ptr cinfo, J_BUF_MODE pass_mode));
  77. JMETHOD(boolean, compress_data, (j_compress_ptr cinfo,
  78. JSAMPIMAGE input_buf));
  79. };
  80. /* Colorspace conversion */
  81. struct jpeg_color_converter {
  82. JMETHOD(void, start_pass, (j_compress_ptr cinfo));
  83. JMETHOD(void, color_convert, (j_compress_ptr cinfo,
  84. JSAMPARRAY input_buf, JSAMPIMAGE output_buf,
  85. JDIMENSION output_row, int num_rows));
  86. };
  87. /* Downsampling */
  88. struct jpeg_downsampler {
  89. JMETHOD(void, start_pass, (j_compress_ptr cinfo));
  90. JMETHOD(void, downsample, (j_compress_ptr cinfo,
  91. JSAMPIMAGE input_buf, JDIMENSION in_row_index,
  92. JSAMPIMAGE output_buf,
  93. JDIMENSION out_row_group_index));
  94. boolean need_context_rows; /* TRUE if need rows above & below */
  95. };
  96. /* Forward DCT (also controls coefficient quantization) */
  97. struct jpeg_forward_dct {
  98. JMETHOD(void, start_pass, (j_compress_ptr cinfo));
  99. /* perhaps this should be an array??? */
  100. JMETHOD(void, forward_DCT, (j_compress_ptr cinfo,
  101. jpeg_component_info * compptr,
  102. JSAMPARRAY sample_data, JBLOCKROW coef_blocks,
  103. JDIMENSION start_row, JDIMENSION start_col,
  104. JDIMENSION num_blocks));
  105. };
  106. /* Entropy encoding */
  107. struct jpeg_entropy_encoder {
  108. JMETHOD(void, start_pass, (j_compress_ptr cinfo, boolean gather_statistics));
  109. JMETHOD(boolean, encode_mcu, (j_compress_ptr cinfo, JBLOCKROW *MCU_data));
  110. JMETHOD(void, finish_pass, (j_compress_ptr cinfo));
  111. };
  112. /* Marker writing */
  113. struct jpeg_marker_writer {
  114. /* write_any_marker is exported for use by applications */
  115. /* Probably only COM and APPn markers should be written */
  116. JMETHOD(void, write_any_marker, (j_compress_ptr cinfo, int marker,
  117. const JOCTET *dataptr, unsigned int datalen));
  118. JMETHOD(void, write_file_header, (j_compress_ptr cinfo));
  119. JMETHOD(void, write_frame_header, (j_compress_ptr cinfo));
  120. JMETHOD(void, write_scan_header, (j_compress_ptr cinfo));
  121. JMETHOD(void, write_file_trailer, (j_compress_ptr cinfo));
  122. JMETHOD(void, write_tables_only, (j_compress_ptr cinfo));
  123. };
  124. /* Declarations for decompression modules */
  125. /* Master control module */
  126. struct jpeg_decomp_master {
  127. JMETHOD(void, prepare_for_output_pass, (j_decompress_ptr cinfo));
  128. JMETHOD(void, finish_output_pass, (j_decompress_ptr cinfo));
  129. /* State variables made visible to other modules */
  130. boolean is_dummy_pass; /* True during 1st pass for 2-pass quant */
  131. };
  132. /* Input control module */
  133. struct jpeg_input_controller {
  134. JMETHOD(int, consume_input, (j_decompress_ptr cinfo));
  135. JMETHOD(void, reset_input_controller, (j_decompress_ptr cinfo));
  136. JMETHOD(void, start_input_pass, (j_decompress_ptr cinfo));
  137. JMETHOD(void, finish_input_pass, (j_decompress_ptr cinfo));
  138. /* State variables made visible to other modules */
  139. boolean has_multiple_scans; /* True if file has multiple scans */
  140. boolean eoi_reached; /* True when EOI has been consumed */
  141. };
  142. /* Main buffer control (downsampled-data buffer) */
  143. struct jpeg_d_main_controller {
  144. JMETHOD(void, start_pass, (j_decompress_ptr cinfo, J_BUF_MODE pass_mode));
  145. JMETHOD(void, process_data, (j_decompress_ptr cinfo,
  146. JSAMPARRAY output_buf, JDIMENSION *out_row_ctr,
  147. JDIMENSION out_rows_avail));
  148. };
  149. /* Coefficient buffer control */
  150. struct jpeg_d_coef_controller {
  151. JMETHOD(void, start_input_pass, (j_decompress_ptr cinfo));
  152. JMETHOD(int, consume_data, (j_decompress_ptr cinfo));
  153. JMETHOD(void, start_output_pass, (j_decompress_ptr cinfo));
  154. JMETHOD(int, decompress_data, (j_decompress_ptr cinfo,
  155. JSAMPIMAGE output_buf));
  156. /* Pointer to array of coefficient virtual arrays, or NULL if none */
  157. jvirt_barray_ptr *coef_arrays;
  158. };
  159. /* Decompression postprocessing (color quantization buffer control) */
  160. struct jpeg_d_post_controller {
  161. JMETHOD(void, start_pass, (j_decompress_ptr cinfo, J_BUF_MODE pass_mode));
  162. JMETHOD(void, post_process_data, (j_decompress_ptr cinfo,
  163. JSAMPIMAGE input_buf,
  164. JDIMENSION *in_row_group_ctr,
  165. JDIMENSION in_row_groups_avail,
  166. JSAMPARRAY output_buf,
  167. JDIMENSION *out_row_ctr,
  168. JDIMENSION out_rows_avail));
  169. };
  170. /* Marker reading & parsing */
  171. struct jpeg_marker_reader {
  172. JMETHOD(void, reset_marker_reader, (j_decompress_ptr cinfo));
  173. /* Read markers until SOS or EOI.
  174. * Returns same codes as are defined for jpeg_consume_input:
  175. * JPEG_SUSPENDED, JPEG_REACHED_SOS, or JPEG_REACHED_EOI.
  176. */
  177. JMETHOD(int, read_markers, (j_decompress_ptr cinfo));
  178. /* Read a restart marker --- exported for use by entropy decoder only */
  179. jpeg_marker_parser_method read_restart_marker;
  180. /* Application-overridable marker processing methods */
  181. jpeg_marker_parser_method process_COM;
  182. jpeg_marker_parser_method process_APPn[16];
  183. /* State of marker reader --- nominally internal, but applications
  184. * supplying COM or APPn handlers might like to know the state.
  185. */
  186. boolean saw_SOI; /* found SOI? */
  187. boolean saw_SOF; /* found SOF? */
  188. int next_restart_num; /* next restart number expected (0-7) */
  189. unsigned int discarded_bytes; /* # of bytes skipped looking for a marker */
  190. };
  191. /* Entropy decoding */
  192. struct jpeg_entropy_decoder {
  193. JMETHOD(void, start_pass, (j_decompress_ptr cinfo));
  194. JMETHOD(boolean, decode_mcu, (j_decompress_ptr cinfo,
  195. JBLOCKROW *MCU_data));
  196. };
  197. /* Inverse DCT (also performs dequantization) */
  198. typedef JMETHOD(void, inverse_DCT_method_ptr,
  199. (j_decompress_ptr cinfo, jpeg_component_info * compptr,
  200. JCOEFPTR coef_block,
  201. JSAMPARRAY output_buf, JDIMENSION output_col));
  202. struct jpeg_inverse_dct {
  203. JMETHOD(void, start_pass, (j_decompress_ptr cinfo));
  204. /* It is useful to allow each component to have a separate IDCT method. */
  205. inverse_DCT_method_ptr inverse_DCT[MAX_COMPONENTS];
  206. };
  207. /* Upsampling (note that upsampler must also call color converter) */
  208. struct jpeg_upsampler {
  209. JMETHOD(void, start_pass, (j_decompress_ptr cinfo));
  210. JMETHOD(void, upsample, (j_decompress_ptr cinfo,
  211. JSAMPIMAGE input_buf,
  212. JDIMENSION *in_row_group_ctr,
  213. JDIMENSION in_row_groups_avail,
  214. JSAMPARRAY output_buf,
  215. JDIMENSION *out_row_ctr,
  216. JDIMENSION out_rows_avail));
  217. boolean need_context_rows; /* TRUE if need rows above & below */
  218. };
  219. /* Colorspace conversion */
  220. struct jpeg_color_deconverter {
  221. JMETHOD(void, start_pass, (j_decompress_ptr cinfo));
  222. JMETHOD(void, color_convert, (j_decompress_ptr cinfo,
  223. JSAMPIMAGE input_buf, JDIMENSION input_row,
  224. JSAMPARRAY output_buf, int num_rows));
  225. };
  226. /* Color quantization or color precision reduction */
  227. struct jpeg_color_quantizer {
  228. JMETHOD(void, start_pass, (j_decompress_ptr cinfo, boolean is_pre_scan));
  229. JMETHOD(void, color_quantize, (j_decompress_ptr cinfo,
  230. JSAMPARRAY input_buf, JSAMPARRAY output_buf,
  231. int num_rows));
  232. JMETHOD(void, finish_pass, (j_decompress_ptr cinfo));
  233. JMETHOD(void, new_color_map, (j_decompress_ptr cinfo));
  234. };
  235. /* Miscellaneous useful macros */
  236. #undef MAX
  237. #define MAX(a,b) ((a) > (b) ? (a) : (b))
  238. #undef MIN
  239. #define MIN(a,b) ((a) < (b) ? (a) : (b))
  240. /* We assume that right shift corresponds to signed division by 2 with
  241. * rounding towards minus infinity. This is correct for typical "arithmetic
  242. * shift" instructions that shift in copies of the sign bit. But some
  243. * C compilers implement >> with an unsigned shift. For these machines you
  244. * must define RIGHT_SHIFT_IS_UNSIGNED.
  245. * RIGHT_SHIFT provides a proper signed right shift of an INT32 quantity.
  246. * It is only applied with constant shift counts. SHIFT_TEMPS must be
  247. * included in the variables of any routine using RIGHT_SHIFT.
  248. */
  249. #ifdef RIGHT_SHIFT_IS_UNSIGNED
  250. #define SHIFT_TEMPS INT32 shift_temp;
  251. #define RIGHT_SHIFT(x,shft) \
  252. ((shift_temp = (x)) < 0 ? \
  253. (shift_temp >> (shft)) | ((~((INT32) 0)) << (32-(shft))) : \
  254. (shift_temp >> (shft)))
  255. #else
  256. #define SHIFT_TEMPS
  257. #define RIGHT_SHIFT(x,shft) ((x) >> (shft))
  258. #endif
  259. /* Short forms of external names for systems with brain-damaged linkers. */
  260. #ifdef NEED_SHORT_EXTERNAL_NAMES
  261. #define jinit_compress_master jICompress
  262. #define jinit_c_master_control jICMaster
  263. #define jinit_c_main_controller jICMainC
  264. #define jinit_c_prep_controller jICPrepC
  265. #define jinit_c_coef_controller jICCoefC
  266. #define jinit_color_converter jICColor
  267. #define jinit_downsampler jIDownsampler
  268. #define jinit_forward_dct jIFDCT
  269. #define jinit_huff_encoder jIHEncoder
  270. #define jinit_phuff_encoder jIPHEncoder
  271. #define jinit_marker_writer jIMWriter
  272. #define jinit_master_decompress jIDMaster
  273. #define jinit_d_main_controller jIDMainC
  274. #define jinit_d_coef_controller jIDCoefC
  275. #define jinit_d_post_controller jIDPostC
  276. #define jinit_input_controller jIInCtlr
  277. #define jinit_marker_reader jIMReader
  278. #define jinit_huff_decoder jIHDecoder
  279. #define jinit_phuff_decoder jIPHDecoder
  280. #define jinit_inverse_dct jIIDCT
  281. #define jinit_upsampler jIUpsampler
  282. #define jinit_color_deconverter jIDColor
  283. #define jinit_1pass_quantizer jI1Quant
  284. #define jinit_2pass_quantizer jI2Quant
  285. #define jinit_merged_upsampler jIMUpsampler
  286. #define jinit_memory_mgr jIMemMgr
  287. #define jdiv_round_up jDivRound
  288. #define jround_up jRound
  289. #define jcopy_sample_rows jCopySamples
  290. #define jcopy_block_row jCopyBlocks
  291. #define jzero_far jZeroFar
  292. #define jpeg_zigzag_order jZIGTable
  293. #define jpeg_natural_order jZAGTable
  294. #endif /* NEED_SHORT_EXTERNAL_NAMES */
  295. /* Compression module initialization routines */
  296. EXTERN(void) jinit_compress_master JPP((j_compress_ptr cinfo));
  297. EXTERN(void) jinit_c_master_control JPP((j_compress_ptr cinfo,
  298. boolean transcode_only));
  299. EXTERN(void) jinit_c_main_controller JPP((j_compress_ptr cinfo,
  300. boolean need_full_buffer));
  301. EXTERN(void) jinit_c_prep_controller JPP((j_compress_ptr cinfo,
  302. boolean need_full_buffer));
  303. EXTERN(void) jinit_c_coef_controller JPP((j_compress_ptr cinfo,
  304. boolean need_full_buffer));
  305. EXTERN(void) jinit_color_converter JPP((j_compress_ptr cinfo));
  306. EXTERN(void) jinit_downsampler JPP((j_compress_ptr cinfo));
  307. EXTERN(void) jinit_forward_dct JPP((j_compress_ptr cinfo));
  308. EXTERN(void) jinit_huff_encoder JPP((j_compress_ptr cinfo));
  309. EXTERN(void) jinit_phuff_encoder JPP((j_compress_ptr cinfo));
  310. EXTERN(void) jinit_marker_writer JPP((j_compress_ptr cinfo));
  311. /* Decompression module initialization routines */
  312. EXTERN(void) jinit_master_decompress JPP((j_decompress_ptr cinfo));
  313. EXTERN(void) jinit_d_main_controller JPP((j_decompress_ptr cinfo,
  314. boolean need_full_buffer));
  315. EXTERN(void) jinit_d_coef_controller JPP((j_decompress_ptr cinfo,
  316. boolean need_full_buffer));
  317. EXTERN(void) jinit_d_post_controller JPP((j_decompress_ptr cinfo,
  318. boolean need_full_buffer));
  319. EXTERN(void) jinit_input_controller JPP((j_decompress_ptr cinfo));
  320. EXTERN(void) jinit_marker_reader JPP((j_decompress_ptr cinfo));
  321. EXTERN(void) jinit_huff_decoder JPP((j_decompress_ptr cinfo));
  322. EXTERN(void) jinit_phuff_decoder JPP((j_decompress_ptr cinfo));
  323. EXTERN(void) jinit_inverse_dct JPP((j_decompress_ptr cinfo));
  324. EXTERN(void) jinit_upsampler JPP((j_decompress_ptr cinfo));
  325. EXTERN(void) jinit_color_deconverter JPP((j_decompress_ptr cinfo));
  326. EXTERN(void) jinit_1pass_quantizer JPP((j_decompress_ptr cinfo));
  327. EXTERN(void) jinit_2pass_quantizer JPP((j_decompress_ptr cinfo));
  328. EXTERN(void) jinit_merged_upsampler JPP((j_decompress_ptr cinfo));
  329. /* Memory manager initialization */
  330. EXTERN(void) jinit_memory_mgr JPP((j_common_ptr cinfo));
  331. /* Utility routines in jutils.c */
  332. EXTERN(long) jdiv_round_up JPP((long a, long b));
  333. EXTERN(long) jround_up JPP((long a, long b));
  334. EXTERN(void) jcopy_sample_rows JPP((JSAMPARRAY input_array, int source_row,
  335. JSAMPARRAY output_array, int dest_row,
  336. int num_rows, JDIMENSION num_cols));
  337. EXTERN(void) jcopy_block_row JPP((JBLOCKROW input_row, JBLOCKROW output_row,
  338. JDIMENSION num_blocks));
  339. EXTERN(void) jzero_far JPP((void FAR * target, size_t bytestozero));
  340. /* Constant tables in jutils.c */
  341. extern const int jpeg_zigzag_order[]; /* natural coef order to zigzag order */
  342. extern const int jpeg_natural_order[]; /* zigzag coef order to natural order */
  343. /* Suppress undefined-structure complaints if necessary. */
  344. #ifdef INCOMPLETE_TYPES_BROKEN
  345. #ifndef AM_MEMORY_MANAGER /* only jmemmgr.c defines these */
  346. struct jvirt_sarray_control { long dummy; };
  347. struct jvirt_barray_control { long dummy; };
  348. #endif
  349. #endif /* INCOMPLETE_TYPES_BROKEN */