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Thomas G. Lanebc79e061995-08-02 00:00:00 +00001/*
2 * jctrans.c
3 *
Thomas G. Lane5ead57a1998-03-27 00:00:00 +00004 * Copyright (C) 1995-1998, Thomas G. Lane.
Guido Vollbeding989630f2010-01-10 00:00:00 +00005 * Modified 2000-2009 by Guido Vollbeding.
Thomas G. Lanebc79e061995-08-02 00:00:00 +00006 * This file is part of the Independent JPEG Group's software.
7 * For conditions of distribution and use, see the accompanying README file.
8 *
9 * This file contains library routines for transcoding compression,
10 * that is, writing raw DCT coefficient arrays to an output JPEG file.
11 * The routines in jcapimin.c will also be needed by a transcoder.
12 */
13
14#define JPEG_INTERNALS
15#include "jinclude.h"
16#include "jpeglib.h"
17
18
19/* Forward declarations */
Thomas G. Lane489583f1996-02-07 00:00:00 +000020LOCAL(void) transencode_master_selection
Thomas G. Lanebc79e061995-08-02 00:00:00 +000021 JPP((j_compress_ptr cinfo, jvirt_barray_ptr * coef_arrays));
Thomas G. Lane489583f1996-02-07 00:00:00 +000022LOCAL(void) transencode_coef_controller
Thomas G. Lanebc79e061995-08-02 00:00:00 +000023 JPP((j_compress_ptr cinfo, jvirt_barray_ptr * coef_arrays));
24
25
26/*
27 * Compression initialization for writing raw-coefficient data.
28 * Before calling this, all parameters and a data destination must be set up.
29 * Call jpeg_finish_compress() to actually write the data.
30 *
31 * The number of passed virtual arrays must match cinfo->num_components.
32 * Note that the virtual arrays need not be filled or even realized at
33 * the time write_coefficients is called; indeed, if the virtual arrays
34 * were requested from this compression object's memory manager, they
35 * typically will be realized during this routine and filled afterwards.
36 */
37
Thomas G. Lane489583f1996-02-07 00:00:00 +000038GLOBAL(void)
Thomas G. Lanebc79e061995-08-02 00:00:00 +000039jpeg_write_coefficients (j_compress_ptr cinfo, jvirt_barray_ptr * coef_arrays)
40{
41 if (cinfo->global_state != CSTATE_START)
42 ERREXIT1(cinfo, JERR_BAD_STATE, cinfo->global_state);
43 /* Mark all tables to be written */
44 jpeg_suppress_tables(cinfo, FALSE);
45 /* (Re)initialize error mgr and destination modules */
46 (*cinfo->err->reset_error_mgr) ((j_common_ptr) cinfo);
47 (*cinfo->dest->init_destination) (cinfo);
48 /* Perform master selection of active modules */
49 transencode_master_selection(cinfo, coef_arrays);
50 /* Wait for jpeg_finish_compress() call */
51 cinfo->next_scanline = 0; /* so jpeg_write_marker works */
52 cinfo->global_state = CSTATE_WRCOEFS;
53}
54
55
56/*
57 * Initialize the compression object with default parameters,
58 * then copy from the source object all parameters needed for lossless
59 * transcoding. Parameters that can be varied without loss (such as
60 * scan script and Huffman optimization) are left in their default states.
61 */
62
Thomas G. Lane489583f1996-02-07 00:00:00 +000063GLOBAL(void)
Thomas G. Lanebc79e061995-08-02 00:00:00 +000064jpeg_copy_critical_parameters (j_decompress_ptr srcinfo,
65 j_compress_ptr dstinfo)
66{
67 JQUANT_TBL ** qtblptr;
68 jpeg_component_info *incomp, *outcomp;
69 JQUANT_TBL *c_quant, *slot_quant;
70 int tblno, ci, coefi;
71
72 /* Safety check to ensure start_compress not called yet. */
73 if (dstinfo->global_state != CSTATE_START)
74 ERREXIT1(dstinfo, JERR_BAD_STATE, dstinfo->global_state);
75 /* Copy fundamental image dimensions */
76 dstinfo->image_width = srcinfo->image_width;
77 dstinfo->image_height = srcinfo->image_height;
78 dstinfo->input_components = srcinfo->num_components;
79 dstinfo->in_color_space = srcinfo->jpeg_color_space;
DRC36a6eec2010-10-08 08:05:44 +000080#if JPEG_LIB_VERSION >= 70
Guido Vollbeding989630f2010-01-10 00:00:00 +000081 dstinfo->jpeg_width = srcinfo->output_width;
82 dstinfo->jpeg_height = srcinfo->output_height;
83 dstinfo->min_DCT_h_scaled_size = srcinfo->min_DCT_h_scaled_size;
84 dstinfo->min_DCT_v_scaled_size = srcinfo->min_DCT_v_scaled_size;
DRC36a6eec2010-10-08 08:05:44 +000085#endif
Thomas G. Lanebc79e061995-08-02 00:00:00 +000086 /* Initialize all parameters to default values */
87 jpeg_set_defaults(dstinfo);
88 /* jpeg_set_defaults may choose wrong colorspace, eg YCbCr if input is RGB.
89 * Fix it to get the right header markers for the image colorspace.
90 */
91 jpeg_set_colorspace(dstinfo, srcinfo->jpeg_color_space);
92 dstinfo->data_precision = srcinfo->data_precision;
93 dstinfo->CCIR601_sampling = srcinfo->CCIR601_sampling;
94 /* Copy the source's quantization tables. */
95 for (tblno = 0; tblno < NUM_QUANT_TBLS; tblno++) {
96 if (srcinfo->quant_tbl_ptrs[tblno] != NULL) {
97 qtblptr = & dstinfo->quant_tbl_ptrs[tblno];
98 if (*qtblptr == NULL)
99 *qtblptr = jpeg_alloc_quant_table((j_common_ptr) dstinfo);
100 MEMCOPY((*qtblptr)->quantval,
101 srcinfo->quant_tbl_ptrs[tblno]->quantval,
102 SIZEOF((*qtblptr)->quantval));
103 (*qtblptr)->sent_table = FALSE;
104 }
105 }
106 /* Copy the source's per-component info.
107 * Note we assume jpeg_set_defaults has allocated the dest comp_info array.
108 */
109 dstinfo->num_components = srcinfo->num_components;
110 if (dstinfo->num_components < 1 || dstinfo->num_components > MAX_COMPONENTS)
111 ERREXIT2(dstinfo, JERR_COMPONENT_COUNT, dstinfo->num_components,
112 MAX_COMPONENTS);
113 for (ci = 0, incomp = srcinfo->comp_info, outcomp = dstinfo->comp_info;
114 ci < dstinfo->num_components; ci++, incomp++, outcomp++) {
115 outcomp->component_id = incomp->component_id;
116 outcomp->h_samp_factor = incomp->h_samp_factor;
117 outcomp->v_samp_factor = incomp->v_samp_factor;
118 outcomp->quant_tbl_no = incomp->quant_tbl_no;
119 /* Make sure saved quantization table for component matches the qtable
120 * slot. If not, the input file re-used this qtable slot.
121 * IJG encoder currently cannot duplicate this.
122 */
123 tblno = outcomp->quant_tbl_no;
124 if (tblno < 0 || tblno >= NUM_QUANT_TBLS ||
125 srcinfo->quant_tbl_ptrs[tblno] == NULL)
126 ERREXIT1(dstinfo, JERR_NO_QUANT_TABLE, tblno);
127 slot_quant = srcinfo->quant_tbl_ptrs[tblno];
128 c_quant = incomp->quant_table;
129 if (c_quant != NULL) {
130 for (coefi = 0; coefi < DCTSIZE2; coefi++) {
131 if (c_quant->quantval[coefi] != slot_quant->quantval[coefi])
132 ERREXIT1(dstinfo, JERR_MISMATCHED_QUANT_TABLE, tblno);
133 }
134 }
135 /* Note: we do not copy the source's Huffman table assignments;
136 * instead we rely on jpeg_set_colorspace to have made a suitable choice.
137 */
138 }
Thomas G. Lane5ead57a1998-03-27 00:00:00 +0000139 /* Also copy JFIF version and resolution information, if available.
140 * Strictly speaking this isn't "critical" info, but it's nearly
141 * always appropriate to copy it if available. In particular,
142 * if the application chooses to copy JFIF 1.02 extension markers from
143 * the source file, we need to copy the version to make sure we don't
144 * emit a file that has 1.02 extensions but a claimed version of 1.01.
145 * We will *not*, however, copy version info from mislabeled "2.01" files.
146 */
147 if (srcinfo->saw_JFIF_marker) {
148 if (srcinfo->JFIF_major_version == 1) {
149 dstinfo->JFIF_major_version = srcinfo->JFIF_major_version;
150 dstinfo->JFIF_minor_version = srcinfo->JFIF_minor_version;
151 }
152 dstinfo->density_unit = srcinfo->density_unit;
153 dstinfo->X_density = srcinfo->X_density;
154 dstinfo->Y_density = srcinfo->Y_density;
155 }
Thomas G. Lanebc79e061995-08-02 00:00:00 +0000156}
157
158
159/*
160 * Master selection of compression modules for transcoding.
161 * This substitutes for jcinit.c's initialization of the full compressor.
162 */
163
Thomas G. Lane489583f1996-02-07 00:00:00 +0000164LOCAL(void)
Thomas G. Lanebc79e061995-08-02 00:00:00 +0000165transencode_master_selection (j_compress_ptr cinfo,
166 jvirt_barray_ptr * coef_arrays)
167{
168 /* Although we don't actually use input_components for transcoding,
169 * jcmaster.c's initial_setup will complain if input_components is 0.
170 */
171 cinfo->input_components = 1;
172 /* Initialize master control (includes parameter checking/processing) */
173 jinit_c_master_control(cinfo, TRUE /* transcode only */);
174
175 /* Entropy encoding: either Huffman or arithmetic coding. */
176 if (cinfo->arith_code) {
177 ERREXIT(cinfo, JERR_ARITH_NOTIMPL);
178 } else {
179 if (cinfo->progressive_mode) {
180#ifdef C_PROGRESSIVE_SUPPORTED
181 jinit_phuff_encoder(cinfo);
182#else
183 ERREXIT(cinfo, JERR_NOT_COMPILED);
184#endif
185 } else
186 jinit_huff_encoder(cinfo);
187 }
188
189 /* We need a special coefficient buffer controller. */
190 transencode_coef_controller(cinfo, coef_arrays);
191
192 jinit_marker_writer(cinfo);
193
194 /* We can now tell the memory manager to allocate virtual arrays. */
195 (*cinfo->mem->realize_virt_arrays) ((j_common_ptr) cinfo);
196
Thomas G. Lane5ead57a1998-03-27 00:00:00 +0000197 /* Write the datastream header (SOI, JFIF) immediately.
Thomas G. Lanebc79e061995-08-02 00:00:00 +0000198 * Frame and scan headers are postponed till later.
199 * This lets application insert special markers after the SOI.
200 */
201 (*cinfo->marker->write_file_header) (cinfo);
202}
203
204
205/*
206 * The rest of this file is a special implementation of the coefficient
207 * buffer controller. This is similar to jccoefct.c, but it handles only
208 * output from presupplied virtual arrays. Furthermore, we generate any
209 * dummy padding blocks on-the-fly rather than expecting them to be present
210 * in the arrays.
211 */
212
213/* Private buffer controller object */
214
215typedef struct {
216 struct jpeg_c_coef_controller pub; /* public fields */
217
218 JDIMENSION iMCU_row_num; /* iMCU row # within image */
219 JDIMENSION mcu_ctr; /* counts MCUs processed in current row */
220 int MCU_vert_offset; /* counts MCU rows within iMCU row */
221 int MCU_rows_per_iMCU_row; /* number of such rows needed */
222
223 /* Virtual block array for each component. */
224 jvirt_barray_ptr * whole_image;
225
226 /* Workspace for constructing dummy blocks at right/bottom edges. */
227 JBLOCKROW dummy_buffer[C_MAX_BLOCKS_IN_MCU];
228} my_coef_controller;
229
230typedef my_coef_controller * my_coef_ptr;
231
232
Thomas G. Lane489583f1996-02-07 00:00:00 +0000233LOCAL(void)
Thomas G. Lanebc79e061995-08-02 00:00:00 +0000234start_iMCU_row (j_compress_ptr cinfo)
235/* Reset within-iMCU-row counters for a new row */
236{
237 my_coef_ptr coef = (my_coef_ptr) cinfo->coef;
238
239 /* In an interleaved scan, an MCU row is the same as an iMCU row.
240 * In a noninterleaved scan, an iMCU row has v_samp_factor MCU rows.
241 * But at the bottom of the image, process only what's left.
242 */
243 if (cinfo->comps_in_scan > 1) {
244 coef->MCU_rows_per_iMCU_row = 1;
245 } else {
246 if (coef->iMCU_row_num < (cinfo->total_iMCU_rows-1))
247 coef->MCU_rows_per_iMCU_row = cinfo->cur_comp_info[0]->v_samp_factor;
248 else
249 coef->MCU_rows_per_iMCU_row = cinfo->cur_comp_info[0]->last_row_height;
250 }
251
252 coef->mcu_ctr = 0;
253 coef->MCU_vert_offset = 0;
254}
255
256
257/*
258 * Initialize for a processing pass.
259 */
260
Thomas G. Lane489583f1996-02-07 00:00:00 +0000261METHODDEF(void)
Thomas G. Lanebc79e061995-08-02 00:00:00 +0000262start_pass_coef (j_compress_ptr cinfo, J_BUF_MODE pass_mode)
263{
264 my_coef_ptr coef = (my_coef_ptr) cinfo->coef;
265
266 if (pass_mode != JBUF_CRANK_DEST)
267 ERREXIT(cinfo, JERR_BAD_BUFFER_MODE);
268
269 coef->iMCU_row_num = 0;
270 start_iMCU_row(cinfo);
271}
272
273
274/*
275 * Process some data.
276 * We process the equivalent of one fully interleaved MCU row ("iMCU" row)
277 * per call, ie, v_samp_factor block rows for each component in the scan.
278 * The data is obtained from the virtual arrays and fed to the entropy coder.
279 * Returns TRUE if the iMCU row is completed, FALSE if suspended.
280 *
281 * NB: input_buf is ignored; it is likely to be a NULL pointer.
282 */
283
Thomas G. Lane489583f1996-02-07 00:00:00 +0000284METHODDEF(boolean)
Thomas G. Lanebc79e061995-08-02 00:00:00 +0000285compress_output (j_compress_ptr cinfo, JSAMPIMAGE input_buf)
286{
287 my_coef_ptr coef = (my_coef_ptr) cinfo->coef;
288 JDIMENSION MCU_col_num; /* index of current MCU within row */
289 JDIMENSION last_MCU_col = cinfo->MCUs_per_row - 1;
290 JDIMENSION last_iMCU_row = cinfo->total_iMCU_rows - 1;
291 int blkn, ci, xindex, yindex, yoffset, blockcnt;
292 JDIMENSION start_col;
293 JBLOCKARRAY buffer[MAX_COMPS_IN_SCAN];
294 JBLOCKROW MCU_buffer[C_MAX_BLOCKS_IN_MCU];
295 JBLOCKROW buffer_ptr;
296 jpeg_component_info *compptr;
297
298 /* Align the virtual buffers for the components used in this scan. */
299 for (ci = 0; ci < cinfo->comps_in_scan; ci++) {
300 compptr = cinfo->cur_comp_info[ci];
301 buffer[ci] = (*cinfo->mem->access_virt_barray)
302 ((j_common_ptr) cinfo, coef->whole_image[compptr->component_index],
303 coef->iMCU_row_num * compptr->v_samp_factor,
304 (JDIMENSION) compptr->v_samp_factor, FALSE);
305 }
306
307 /* Loop to process one whole iMCU row */
308 for (yoffset = coef->MCU_vert_offset; yoffset < coef->MCU_rows_per_iMCU_row;
309 yoffset++) {
310 for (MCU_col_num = coef->mcu_ctr; MCU_col_num < cinfo->MCUs_per_row;
311 MCU_col_num++) {
312 /* Construct list of pointers to DCT blocks belonging to this MCU */
313 blkn = 0; /* index of current DCT block within MCU */
314 for (ci = 0; ci < cinfo->comps_in_scan; ci++) {
315 compptr = cinfo->cur_comp_info[ci];
316 start_col = MCU_col_num * compptr->MCU_width;
317 blockcnt = (MCU_col_num < last_MCU_col) ? compptr->MCU_width
318 : compptr->last_col_width;
319 for (yindex = 0; yindex < compptr->MCU_height; yindex++) {
320 if (coef->iMCU_row_num < last_iMCU_row ||
321 yindex+yoffset < compptr->last_row_height) {
322 /* Fill in pointers to real blocks in this row */
323 buffer_ptr = buffer[ci][yindex+yoffset] + start_col;
324 for (xindex = 0; xindex < blockcnt; xindex++)
325 MCU_buffer[blkn++] = buffer_ptr++;
326 } else {
327 /* At bottom of image, need a whole row of dummy blocks */
328 xindex = 0;
329 }
330 /* Fill in any dummy blocks needed in this row.
331 * Dummy blocks are filled in the same way as in jccoefct.c:
332 * all zeroes in the AC entries, DC entries equal to previous
333 * block's DC value. The init routine has already zeroed the
334 * AC entries, so we need only set the DC entries correctly.
335 */
336 for (; xindex < compptr->MCU_width; xindex++) {
337 MCU_buffer[blkn] = coef->dummy_buffer[blkn];
338 MCU_buffer[blkn][0][0] = MCU_buffer[blkn-1][0][0];
339 blkn++;
340 }
341 }
342 }
343 /* Try to write the MCU. */
344 if (! (*cinfo->entropy->encode_mcu) (cinfo, MCU_buffer)) {
345 /* Suspension forced; update state counters and exit */
346 coef->MCU_vert_offset = yoffset;
347 coef->mcu_ctr = MCU_col_num;
348 return FALSE;
349 }
350 }
351 /* Completed an MCU row, but perhaps not an iMCU row */
352 coef->mcu_ctr = 0;
353 }
354 /* Completed the iMCU row, advance counters for next one */
355 coef->iMCU_row_num++;
356 start_iMCU_row(cinfo);
357 return TRUE;
358}
359
360
361/*
362 * Initialize coefficient buffer controller.
363 *
364 * Each passed coefficient array must be the right size for that
365 * coefficient: width_in_blocks wide and height_in_blocks high,
366 * with unitheight at least v_samp_factor.
367 */
368
Thomas G. Lane489583f1996-02-07 00:00:00 +0000369LOCAL(void)
Thomas G. Lanebc79e061995-08-02 00:00:00 +0000370transencode_coef_controller (j_compress_ptr cinfo,
371 jvirt_barray_ptr * coef_arrays)
372{
373 my_coef_ptr coef;
374 JBLOCKROW buffer;
375 int i;
376
377 coef = (my_coef_ptr)
378 (*cinfo->mem->alloc_small) ((j_common_ptr) cinfo, JPOOL_IMAGE,
379 SIZEOF(my_coef_controller));
380 cinfo->coef = (struct jpeg_c_coef_controller *) coef;
381 coef->pub.start_pass = start_pass_coef;
382 coef->pub.compress_data = compress_output;
383
384 /* Save pointer to virtual arrays */
385 coef->whole_image = coef_arrays;
386
387 /* Allocate and pre-zero space for dummy DCT blocks. */
388 buffer = (JBLOCKROW)
389 (*cinfo->mem->alloc_large) ((j_common_ptr) cinfo, JPOOL_IMAGE,
390 C_MAX_BLOCKS_IN_MCU * SIZEOF(JBLOCK));
391 jzero_far((void FAR *) buffer, C_MAX_BLOCKS_IN_MCU * SIZEOF(JBLOCK));
392 for (i = 0; i < C_MAX_BLOCKS_IN_MCU; i++) {
393 coef->dummy_buffer[i] = buffer + i;
394 }
395}