Coverage Report

Created: 2025-11-16 06:24

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/gdk-pixbuf/subprojects/libjpeg-turbo-2.1.2/jdapistd.c
Line
Count
Source
1
/*
2
 * jdapistd.c
3
 *
4
 * This file was part of the Independent JPEG Group's software:
5
 * Copyright (C) 1994-1996, Thomas G. Lane.
6
 * libjpeg-turbo Modifications:
7
 * Copyright (C) 2010, 2015-2020, D. R. Commander.
8
 * Copyright (C) 2015, Google, Inc.
9
 * For conditions of distribution and use, see the accompanying README.ijg
10
 * file.
11
 *
12
 * This file contains application interface code for the decompression half
13
 * of the JPEG library.  These are the "standard" API routines that are
14
 * used in the normal full-decompression case.  They are not used by a
15
 * transcoding-only application.  Note that if an application links in
16
 * jpeg_start_decompress, it will end up linking in the entire decompressor.
17
 * We thus must separate this file from jdapimin.c to avoid linking the
18
 * whole decompression library into a transcoder.
19
 */
20
21
#include "jinclude.h"
22
#include "jdmainct.h"
23
#include "jdcoefct.h"
24
#include "jdmaster.h"
25
#include "jdmerge.h"
26
#include "jdsample.h"
27
#include "jmemsys.h"
28
29
/* Forward declarations */
30
LOCAL(boolean) output_pass_setup(j_decompress_ptr cinfo);
31
32
33
/*
34
 * Decompression initialization.
35
 * jpeg_read_header must be completed before calling this.
36
 *
37
 * If a multipass operating mode was selected, this will do all but the
38
 * last pass, and thus may take a great deal of time.
39
 *
40
 * Returns FALSE if suspended.  The return value need be inspected only if
41
 * a suspending data source is used.
42
 */
43
44
GLOBAL(boolean)
45
jpeg_start_decompress(j_decompress_ptr cinfo)
46
0
{
47
0
  if (cinfo->global_state == DSTATE_READY) {
48
    /* First call: initialize master control, select active modules */
49
0
    jinit_master_decompress(cinfo);
50
0
    if (cinfo->buffered_image) {
51
      /* No more work here; expecting jpeg_start_output next */
52
0
      cinfo->global_state = DSTATE_BUFIMAGE;
53
0
      return TRUE;
54
0
    }
55
0
    cinfo->global_state = DSTATE_PRELOAD;
56
0
  }
57
0
  if (cinfo->global_state == DSTATE_PRELOAD) {
58
    /* If file has multiple scans, absorb them all into the coef buffer */
59
0
    if (cinfo->inputctl->has_multiple_scans) {
60
0
#ifdef D_MULTISCAN_FILES_SUPPORTED
61
0
      for (;;) {
62
0
        int retcode;
63
        /* Call progress monitor hook if present */
64
0
        if (cinfo->progress != NULL)
65
0
          (*cinfo->progress->progress_monitor) ((j_common_ptr)cinfo);
66
        /* Absorb some more input */
67
0
        retcode = (*cinfo->inputctl->consume_input) (cinfo);
68
0
        if (retcode == JPEG_SUSPENDED)
69
0
          return FALSE;
70
0
        if (retcode == JPEG_REACHED_EOI)
71
0
          break;
72
        /* Advance progress counter if appropriate */
73
0
        if (cinfo->progress != NULL &&
74
0
            (retcode == JPEG_ROW_COMPLETED || retcode == JPEG_REACHED_SOS)) {
75
0
          if (++cinfo->progress->pass_counter >= cinfo->progress->pass_limit) {
76
            /* jdmaster underestimated number of scans; ratchet up one scan */
77
0
            cinfo->progress->pass_limit += (long)cinfo->total_iMCU_rows;
78
0
          }
79
0
        }
80
0
      }
81
#else
82
      ERREXIT(cinfo, JERR_NOT_COMPILED);
83
#endif /* D_MULTISCAN_FILES_SUPPORTED */
84
0
    }
85
0
    cinfo->output_scan_number = cinfo->input_scan_number;
86
0
  } else if (cinfo->global_state != DSTATE_PRESCAN)
87
0
    ERREXIT1(cinfo, JERR_BAD_STATE, cinfo->global_state);
88
  /* Perform any dummy output passes, and set up for the final pass */
89
0
  return output_pass_setup(cinfo);
90
0
}
91
92
93
/*
94
 * Set up for an output pass, and perform any dummy pass(es) needed.
95
 * Common subroutine for jpeg_start_decompress and jpeg_start_output.
96
 * Entry: global_state = DSTATE_PRESCAN only if previously suspended.
97
 * Exit: If done, returns TRUE and sets global_state for proper output mode.
98
 *       If suspended, returns FALSE and sets global_state = DSTATE_PRESCAN.
99
 */
100
101
LOCAL(boolean)
102
output_pass_setup(j_decompress_ptr cinfo)
103
0
{
104
0
  if (cinfo->global_state != DSTATE_PRESCAN) {
105
    /* First call: do pass setup */
106
0
    (*cinfo->master->prepare_for_output_pass) (cinfo);
107
0
    cinfo->output_scanline = 0;
108
0
    cinfo->global_state = DSTATE_PRESCAN;
109
0
  }
110
  /* Loop over any required dummy passes */
111
0
  while (cinfo->master->is_dummy_pass) {
112
0
#ifdef QUANT_2PASS_SUPPORTED
113
    /* Crank through the dummy pass */
114
0
    while (cinfo->output_scanline < cinfo->output_height) {
115
0
      JDIMENSION last_scanline;
116
      /* Call progress monitor hook if present */
117
0
      if (cinfo->progress != NULL) {
118
0
        cinfo->progress->pass_counter = (long)cinfo->output_scanline;
119
0
        cinfo->progress->pass_limit = (long)cinfo->output_height;
120
0
        (*cinfo->progress->progress_monitor) ((j_common_ptr)cinfo);
121
0
      }
122
      /* Process some data */
123
0
      last_scanline = cinfo->output_scanline;
124
0
      (*cinfo->main->process_data) (cinfo, (JSAMPARRAY)NULL,
125
0
                                    &cinfo->output_scanline, (JDIMENSION)0);
126
0
      if (cinfo->output_scanline == last_scanline)
127
0
        return FALSE;           /* No progress made, must suspend */
128
0
    }
129
    /* Finish up dummy pass, and set up for another one */
130
0
    (*cinfo->master->finish_output_pass) (cinfo);
131
0
    (*cinfo->master->prepare_for_output_pass) (cinfo);
132
0
    cinfo->output_scanline = 0;
133
#else
134
    ERREXIT(cinfo, JERR_NOT_COMPILED);
135
#endif /* QUANT_2PASS_SUPPORTED */
136
0
  }
137
  /* Ready for application to drive output pass through
138
   * jpeg_read_scanlines or jpeg_read_raw_data.
139
   */
140
0
  cinfo->global_state = cinfo->raw_data_out ? DSTATE_RAW_OK : DSTATE_SCANNING;
141
0
  return TRUE;
142
0
}
143
144
145
/*
146
 * Enable partial scanline decompression
147
 *
148
 * Must be called after jpeg_start_decompress() and before any calls to
149
 * jpeg_read_scanlines() or jpeg_skip_scanlines().
150
 *
151
 * Refer to libjpeg.txt for more information.
152
 */
153
154
GLOBAL(void)
155
jpeg_crop_scanline(j_decompress_ptr cinfo, JDIMENSION *xoffset,
156
                   JDIMENSION *width)
157
0
{
158
0
  int ci, align, orig_downsampled_width;
159
0
  JDIMENSION input_xoffset;
160
0
  boolean reinit_upsampler = FALSE;
161
0
  jpeg_component_info *compptr;
162
163
0
  if (cinfo->global_state != DSTATE_SCANNING || cinfo->output_scanline != 0)
164
0
    ERREXIT1(cinfo, JERR_BAD_STATE, cinfo->global_state);
165
166
0
  if (!xoffset || !width)
167
0
    ERREXIT(cinfo, JERR_BAD_CROP_SPEC);
168
169
  /* xoffset and width must fall within the output image dimensions. */
170
0
  if (*width == 0 || *xoffset + *width > cinfo->output_width)
171
0
    ERREXIT(cinfo, JERR_WIDTH_OVERFLOW);
172
173
  /* No need to do anything if the caller wants the entire width. */
174
0
  if (*width == cinfo->output_width)
175
0
    return;
176
177
  /* Ensuring the proper alignment of xoffset is tricky.  At minimum, it
178
   * must align with an MCU boundary, because:
179
   *
180
   *   (1) The IDCT is performed in blocks, and it is not feasible to modify
181
   *       the algorithm so that it can transform partial blocks.
182
   *   (2) Because of the SIMD extensions, any input buffer passed to the
183
   *       upsampling and color conversion routines must be aligned to the
184
   *       SIMD word size (for instance, 128-bit in the case of SSE2.)  The
185
   *       easiest way to accomplish this without copying data is to ensure
186
   *       that upsampling and color conversion begin at the start of the
187
   *       first MCU column that will be inverse transformed.
188
   *
189
   * In practice, we actually impose a stricter alignment requirement.  We
190
   * require that xoffset be a multiple of the maximum MCU column width of all
191
   * of the components (the "iMCU column width.")  This is to simplify the
192
   * single-pass decompression case, allowing us to use the same MCU column
193
   * width for all of the components.
194
   */
195
0
  if (cinfo->comps_in_scan == 1 && cinfo->num_components == 1)
196
0
    align = cinfo->_min_DCT_scaled_size;
197
0
  else
198
0
    align = cinfo->_min_DCT_scaled_size * cinfo->max_h_samp_factor;
199
200
  /* Adjust xoffset to the nearest iMCU boundary <= the requested value */
201
0
  input_xoffset = *xoffset;
202
0
  *xoffset = (input_xoffset / align) * align;
203
204
  /* Adjust the width so that the right edge of the output image is as
205
   * requested (only the left edge is altered.)  It is important that calling
206
   * programs check this value after this function returns, so that they can
207
   * allocate an output buffer with the appropriate size.
208
   */
209
0
  *width = *width + input_xoffset - *xoffset;
210
0
  cinfo->output_width = *width;
211
212
  /* Set the first and last iMCU columns that we must decompress.  These values
213
   * will be used in single-scan decompressions.
214
   */
215
0
  cinfo->master->first_iMCU_col = (JDIMENSION)(long)(*xoffset) / (long)align;
216
0
  cinfo->master->last_iMCU_col =
217
0
    (JDIMENSION)jdiv_round_up((long)(*xoffset + cinfo->output_width),
218
0
                              (long)align) - 1;
219
220
0
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
221
0
       ci++, compptr++) {
222
0
    int hsf = (cinfo->comps_in_scan == 1 && cinfo->num_components == 1) ?
223
0
              1 : compptr->h_samp_factor;
224
225
    /* Set downsampled_width to the new output width. */
226
0
    orig_downsampled_width = compptr->downsampled_width;
227
0
    compptr->downsampled_width =
228
0
      (JDIMENSION)jdiv_round_up((long)(cinfo->output_width *
229
0
                                       compptr->h_samp_factor),
230
0
                                (long)cinfo->max_h_samp_factor);
231
0
    if (compptr->downsampled_width < 2 && orig_downsampled_width >= 2)
232
0
      reinit_upsampler = TRUE;
233
234
    /* Set the first and last iMCU columns that we must decompress.  These
235
     * values will be used in multi-scan decompressions.
236
     */
237
0
    cinfo->master->first_MCU_col[ci] =
238
0
      (JDIMENSION)(long)(*xoffset * hsf) / (long)align;
239
0
    cinfo->master->last_MCU_col[ci] =
240
0
      (JDIMENSION)jdiv_round_up((long)((*xoffset + cinfo->output_width) * hsf),
241
0
                                (long)align) - 1;
242
0
  }
243
244
0
  if (reinit_upsampler) {
245
0
    cinfo->master->jinit_upsampler_no_alloc = TRUE;
246
0
    jinit_upsampler(cinfo);
247
0
    cinfo->master->jinit_upsampler_no_alloc = FALSE;
248
0
  }
249
0
}
250
251
252
/*
253
 * Read some scanlines of data from the JPEG decompressor.
254
 *
255
 * The return value will be the number of lines actually read.
256
 * This may be less than the number requested in several cases,
257
 * including bottom of image, data source suspension, and operating
258
 * modes that emit multiple scanlines at a time.
259
 *
260
 * Note: we warn about excess calls to jpeg_read_scanlines() since
261
 * this likely signals an application programmer error.  However,
262
 * an oversize buffer (max_lines > scanlines remaining) is not an error.
263
 */
264
265
GLOBAL(JDIMENSION)
266
jpeg_read_scanlines(j_decompress_ptr cinfo, JSAMPARRAY scanlines,
267
                    JDIMENSION max_lines)
268
0
{
269
0
  JDIMENSION row_ctr;
270
271
0
  if (cinfo->global_state != DSTATE_SCANNING)
272
0
    ERREXIT1(cinfo, JERR_BAD_STATE, cinfo->global_state);
273
0
  if (cinfo->output_scanline >= cinfo->output_height) {
274
0
    WARNMS(cinfo, JWRN_TOO_MUCH_DATA);
275
0
    return 0;
276
0
  }
277
278
  /* Call progress monitor hook if present */
279
0
  if (cinfo->progress != NULL) {
280
0
    cinfo->progress->pass_counter = (long)cinfo->output_scanline;
281
0
    cinfo->progress->pass_limit = (long)cinfo->output_height;
282
0
    (*cinfo->progress->progress_monitor) ((j_common_ptr)cinfo);
283
0
  }
284
285
  /* Process some data */
286
0
  row_ctr = 0;
287
0
  (*cinfo->main->process_data) (cinfo, scanlines, &row_ctr, max_lines);
288
0
  cinfo->output_scanline += row_ctr;
289
0
  return row_ctr;
290
0
}
291
292
293
/* Dummy color convert function used by jpeg_skip_scanlines() */
294
LOCAL(void)
295
noop_convert(j_decompress_ptr cinfo, JSAMPIMAGE input_buf,
296
             JDIMENSION input_row, JSAMPARRAY output_buf, int num_rows)
297
0
{
298
0
}
299
300
301
/* Dummy quantize function used by jpeg_skip_scanlines() */
302
LOCAL(void)
303
noop_quantize(j_decompress_ptr cinfo, JSAMPARRAY input_buf,
304
              JSAMPARRAY output_buf, int num_rows)
305
0
{
306
0
}
307
308
309
/*
310
 * In some cases, it is best to call jpeg_read_scanlines() and discard the
311
 * output, rather than skipping the scanlines, because this allows us to
312
 * maintain the internal state of the context-based upsampler.  In these cases,
313
 * we set up and tear down a dummy color converter in order to avoid valgrind
314
 * errors and to achieve the best possible performance.
315
 */
316
317
LOCAL(void)
318
read_and_discard_scanlines(j_decompress_ptr cinfo, JDIMENSION num_lines)
319
0
{
320
0
  JDIMENSION n;
321
0
  my_master_ptr master = (my_master_ptr)cinfo->master;
322
0
  JSAMPLE dummy_sample[1] = { 0 };
323
0
  JSAMPROW dummy_row = dummy_sample;
324
0
  JSAMPARRAY scanlines = NULL;
325
0
  void (*color_convert) (j_decompress_ptr cinfo, JSAMPIMAGE input_buf,
326
0
                         JDIMENSION input_row, JSAMPARRAY output_buf,
327
0
                         int num_rows) = NULL;
328
0
  void (*color_quantize) (j_decompress_ptr cinfo, JSAMPARRAY input_buf,
329
0
                          JSAMPARRAY output_buf, int num_rows) = NULL;
330
331
0
  if (cinfo->cconvert && cinfo->cconvert->color_convert) {
332
0
    color_convert = cinfo->cconvert->color_convert;
333
0
    cinfo->cconvert->color_convert = noop_convert;
334
    /* This just prevents UBSan from complaining about adding 0 to a NULL
335
     * pointer.  The pointer isn't actually used.
336
     */
337
0
    scanlines = &dummy_row;
338
0
  }
339
340
0
  if (cinfo->cquantize && cinfo->cquantize->color_quantize) {
341
0
    color_quantize = cinfo->cquantize->color_quantize;
342
0
    cinfo->cquantize->color_quantize = noop_quantize;
343
0
  }
344
345
0
  if (master->using_merged_upsample && cinfo->max_v_samp_factor == 2) {
346
0
    my_merged_upsample_ptr upsample = (my_merged_upsample_ptr)cinfo->upsample;
347
0
    scanlines = &upsample->spare_row;
348
0
  }
349
350
0
  for (n = 0; n < num_lines; n++)
351
0
    jpeg_read_scanlines(cinfo, scanlines, 1);
352
353
0
  if (color_convert)
354
0
    cinfo->cconvert->color_convert = color_convert;
355
356
0
  if (color_quantize)
357
0
    cinfo->cquantize->color_quantize = color_quantize;
358
0
}
359
360
361
/*
362
 * Called by jpeg_skip_scanlines().  This partially skips a decompress block by
363
 * incrementing the rowgroup counter.
364
 */
365
366
LOCAL(void)
367
increment_simple_rowgroup_ctr(j_decompress_ptr cinfo, JDIMENSION rows)
368
0
{
369
0
  JDIMENSION rows_left;
370
0
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
371
0
  my_master_ptr master = (my_master_ptr)cinfo->master;
372
373
0
  if (master->using_merged_upsample && cinfo->max_v_samp_factor == 2) {
374
0
    read_and_discard_scanlines(cinfo, rows);
375
0
    return;
376
0
  }
377
378
  /* Increment the counter to the next row group after the skipped rows. */
379
0
  main_ptr->rowgroup_ctr += rows / cinfo->max_v_samp_factor;
380
381
  /* Partially skipping a row group would involve modifying the internal state
382
   * of the upsampler, so read the remaining rows into a dummy buffer instead.
383
   */
384
0
  rows_left = rows % cinfo->max_v_samp_factor;
385
0
  cinfo->output_scanline += rows - rows_left;
386
387
0
  read_and_discard_scanlines(cinfo, rows_left);
388
0
}
389
390
/*
391
 * Skips some scanlines of data from the JPEG decompressor.
392
 *
393
 * The return value will be the number of lines actually skipped.  If skipping
394
 * num_lines would move beyond the end of the image, then the actual number of
395
 * lines remaining in the image is returned.  Otherwise, the return value will
396
 * be equal to num_lines.
397
 *
398
 * Refer to libjpeg.txt for more information.
399
 */
400
401
GLOBAL(JDIMENSION)
402
jpeg_skip_scanlines(j_decompress_ptr cinfo, JDIMENSION num_lines)
403
0
{
404
0
  my_main_ptr main_ptr = (my_main_ptr)cinfo->main;
405
0
  my_coef_ptr coef = (my_coef_ptr)cinfo->coef;
406
0
  my_master_ptr master = (my_master_ptr)cinfo->master;
407
0
  my_upsample_ptr upsample = (my_upsample_ptr)cinfo->upsample;
408
0
  JDIMENSION i, x;
409
0
  int y;
410
0
  JDIMENSION lines_per_iMCU_row, lines_left_in_iMCU_row, lines_after_iMCU_row;
411
0
  JDIMENSION lines_to_skip, lines_to_read;
412
413
  /* Two-pass color quantization is not supported. */
414
0
  if (cinfo->quantize_colors && cinfo->two_pass_quantize)
415
0
    ERREXIT(cinfo, JERR_NOTIMPL);
416
417
0
  if (cinfo->global_state != DSTATE_SCANNING)
418
0
    ERREXIT1(cinfo, JERR_BAD_STATE, cinfo->global_state);
419
420
  /* Do not skip past the bottom of the image. */
421
0
  if (cinfo->output_scanline + num_lines >= cinfo->output_height) {
422
0
    num_lines = cinfo->output_height - cinfo->output_scanline;
423
0
    cinfo->output_scanline = cinfo->output_height;
424
0
    (*cinfo->inputctl->finish_input_pass) (cinfo);
425
0
    cinfo->inputctl->eoi_reached = TRUE;
426
0
    return num_lines;
427
0
  }
428
429
0
  if (num_lines == 0)
430
0
    return 0;
431
432
0
  lines_per_iMCU_row = cinfo->_min_DCT_scaled_size * cinfo->max_v_samp_factor;
433
0
  lines_left_in_iMCU_row =
434
0
    (lines_per_iMCU_row - (cinfo->output_scanline % lines_per_iMCU_row)) %
435
0
    lines_per_iMCU_row;
436
0
  lines_after_iMCU_row = num_lines - lines_left_in_iMCU_row;
437
438
  /* Skip the lines remaining in the current iMCU row.  When upsampling
439
   * requires context rows, we need the previous and next rows in order to read
440
   * the current row.  This adds some complexity.
441
   */
442
0
  if (cinfo->upsample->need_context_rows) {
443
    /* If the skipped lines would not move us past the current iMCU row, we
444
     * read the lines and ignore them.  There might be a faster way of doing
445
     * this, but we are facing increasing complexity for diminishing returns.
446
     * The increasing complexity would be a by-product of meddling with the
447
     * state machine used to skip context rows.  Near the end of an iMCU row,
448
     * the next iMCU row may have already been entropy-decoded.  In this unique
449
     * case, we will read the next iMCU row if we cannot skip past it as well.
450
     */
451
0
    if ((num_lines < lines_left_in_iMCU_row + 1) ||
452
0
        (lines_left_in_iMCU_row <= 1 && main_ptr->buffer_full &&
453
0
         lines_after_iMCU_row < lines_per_iMCU_row + 1)) {
454
0
      read_and_discard_scanlines(cinfo, num_lines);
455
0
      return num_lines;
456
0
    }
457
458
    /* If the next iMCU row has already been entropy-decoded, make sure that
459
     * we do not skip too far.
460
     */
461
0
    if (lines_left_in_iMCU_row <= 1 && main_ptr->buffer_full) {
462
0
      cinfo->output_scanline += lines_left_in_iMCU_row + lines_per_iMCU_row;
463
0
      lines_after_iMCU_row -= lines_per_iMCU_row;
464
0
    } else {
465
0
      cinfo->output_scanline += lines_left_in_iMCU_row;
466
0
    }
467
468
    /* If we have just completed the first block, adjust the buffer pointers */
469
0
    if (main_ptr->iMCU_row_ctr == 0 ||
470
0
        (main_ptr->iMCU_row_ctr == 1 && lines_left_in_iMCU_row > 2))
471
0
      set_wraparound_pointers(cinfo);
472
0
    main_ptr->buffer_full = FALSE;
473
0
    main_ptr->rowgroup_ctr = 0;
474
0
    main_ptr->context_state = CTX_PREPARE_FOR_IMCU;
475
0
    if (!master->using_merged_upsample) {
476
0
      upsample->next_row_out = cinfo->max_v_samp_factor;
477
0
      upsample->rows_to_go = cinfo->output_height - cinfo->output_scanline;
478
0
    }
479
0
  }
480
481
  /* Skipping is much simpler when context rows are not required. */
482
0
  else {
483
0
    if (num_lines < lines_left_in_iMCU_row) {
484
0
      increment_simple_rowgroup_ctr(cinfo, num_lines);
485
0
      return num_lines;
486
0
    } else {
487
0
      cinfo->output_scanline += lines_left_in_iMCU_row;
488
0
      main_ptr->buffer_full = FALSE;
489
0
      main_ptr->rowgroup_ctr = 0;
490
0
      if (!master->using_merged_upsample) {
491
0
        upsample->next_row_out = cinfo->max_v_samp_factor;
492
0
        upsample->rows_to_go = cinfo->output_height - cinfo->output_scanline;
493
0
      }
494
0
    }
495
0
  }
496
497
  /* Calculate how many full iMCU rows we can skip. */
498
0
  if (cinfo->upsample->need_context_rows)
499
0
    lines_to_skip = ((lines_after_iMCU_row - 1) / lines_per_iMCU_row) *
500
0
                    lines_per_iMCU_row;
501
0
  else
502
0
    lines_to_skip = (lines_after_iMCU_row / lines_per_iMCU_row) *
503
0
                    lines_per_iMCU_row;
504
  /* Calculate the number of lines that remain to be skipped after skipping all
505
   * of the full iMCU rows that we can.  We will not read these lines unless we
506
   * have to.
507
   */
508
0
  lines_to_read = lines_after_iMCU_row - lines_to_skip;
509
510
  /* For images requiring multiple scans (progressive, non-interleaved, etc.),
511
   * all of the entropy decoding occurs in jpeg_start_decompress(), assuming
512
   * that the input data source is non-suspending.  This makes skipping easy.
513
   */
514
0
  if (cinfo->inputctl->has_multiple_scans) {
515
0
    if (cinfo->upsample->need_context_rows) {
516
0
      cinfo->output_scanline += lines_to_skip;
517
0
      cinfo->output_iMCU_row += lines_to_skip / lines_per_iMCU_row;
518
0
      main_ptr->iMCU_row_ctr += lines_to_skip / lines_per_iMCU_row;
519
      /* It is complex to properly move to the middle of a context block, so
520
       * read the remaining lines instead of skipping them.
521
       */
522
0
      read_and_discard_scanlines(cinfo, lines_to_read);
523
0
    } else {
524
0
      cinfo->output_scanline += lines_to_skip;
525
0
      cinfo->output_iMCU_row += lines_to_skip / lines_per_iMCU_row;
526
0
      increment_simple_rowgroup_ctr(cinfo, lines_to_read);
527
0
    }
528
0
    if (!master->using_merged_upsample)
529
0
      upsample->rows_to_go = cinfo->output_height - cinfo->output_scanline;
530
0
    return num_lines;
531
0
  }
532
533
  /* Skip the iMCU rows that we can safely skip. */
534
0
  for (i = 0; i < lines_to_skip; i += lines_per_iMCU_row) {
535
0
    for (y = 0; y < coef->MCU_rows_per_iMCU_row; y++) {
536
0
      for (x = 0; x < cinfo->MCUs_per_row; x++) {
537
        /* Calling decode_mcu() with a NULL pointer causes it to discard the
538
         * decoded coefficients.  This is ~5% faster for large subsets, but
539
         * it's tough to tell a difference for smaller images.
540
         */
541
0
        if (!cinfo->entropy->insufficient_data)
542
0
          cinfo->master->last_good_iMCU_row = cinfo->input_iMCU_row;
543
0
        (*cinfo->entropy->decode_mcu) (cinfo, NULL);
544
0
      }
545
0
    }
546
0
    cinfo->input_iMCU_row++;
547
0
    cinfo->output_iMCU_row++;
548
0
    if (cinfo->input_iMCU_row < cinfo->total_iMCU_rows)
549
0
      start_iMCU_row(cinfo);
550
0
    else
551
0
      (*cinfo->inputctl->finish_input_pass) (cinfo);
552
0
  }
553
0
  cinfo->output_scanline += lines_to_skip;
554
555
0
  if (cinfo->upsample->need_context_rows) {
556
    /* Context-based upsampling keeps track of iMCU rows. */
557
0
    main_ptr->iMCU_row_ctr += lines_to_skip / lines_per_iMCU_row;
558
559
    /* It is complex to properly move to the middle of a context block, so
560
     * read the remaining lines instead of skipping them.
561
     */
562
0
    read_and_discard_scanlines(cinfo, lines_to_read);
563
0
  } else {
564
0
    increment_simple_rowgroup_ctr(cinfo, lines_to_read);
565
0
  }
566
567
  /* Since skipping lines involves skipping the upsampling step, the value of
568
   * "rows_to_go" will become invalid unless we set it here.  NOTE: This is a
569
   * bit odd, since "rows_to_go" seems to be redundantly keeping track of
570
   * output_scanline.
571
   */
572
0
  if (!master->using_merged_upsample)
573
0
    upsample->rows_to_go = cinfo->output_height - cinfo->output_scanline;
574
575
  /* Always skip the requested number of lines. */
576
0
  return num_lines;
577
0
}
578
579
/*
580
 * Alternate entry point to read raw data.
581
 * Processes exactly one iMCU row per call, unless suspended.
582
 */
583
584
GLOBAL(JDIMENSION)
585
jpeg_read_raw_data(j_decompress_ptr cinfo, JSAMPIMAGE data,
586
                   JDIMENSION max_lines)
587
0
{
588
0
  JDIMENSION lines_per_iMCU_row;
589
590
0
  if (cinfo->global_state != DSTATE_RAW_OK)
591
0
    ERREXIT1(cinfo, JERR_BAD_STATE, cinfo->global_state);
592
0
  if (cinfo->output_scanline >= cinfo->output_height) {
593
0
    WARNMS(cinfo, JWRN_TOO_MUCH_DATA);
594
0
    return 0;
595
0
  }
596
597
  /* Call progress monitor hook if present */
598
0
  if (cinfo->progress != NULL) {
599
0
    cinfo->progress->pass_counter = (long)cinfo->output_scanline;
600
0
    cinfo->progress->pass_limit = (long)cinfo->output_height;
601
0
    (*cinfo->progress->progress_monitor) ((j_common_ptr)cinfo);
602
0
  }
603
604
  /* Verify that at least one iMCU row can be returned. */
605
0
  lines_per_iMCU_row = cinfo->max_v_samp_factor * cinfo->_min_DCT_scaled_size;
606
0
  if (max_lines < lines_per_iMCU_row)
607
0
    ERREXIT(cinfo, JERR_BUFFER_SIZE);
608
609
  /* Decompress directly into user's buffer. */
610
0
  if (!(*cinfo->coef->decompress_data) (cinfo, data))
611
0
    return 0;                   /* suspension forced, can do nothing more */
612
613
  /* OK, we processed one iMCU row. */
614
0
  cinfo->output_scanline += lines_per_iMCU_row;
615
0
  return lines_per_iMCU_row;
616
0
}
617
618
619
/* Additional entry points for buffered-image mode. */
620
621
#ifdef D_MULTISCAN_FILES_SUPPORTED
622
623
/*
624
 * Initialize for an output pass in buffered-image mode.
625
 */
626
627
GLOBAL(boolean)
628
jpeg_start_output(j_decompress_ptr cinfo, int scan_number)
629
0
{
630
0
  if (cinfo->global_state != DSTATE_BUFIMAGE &&
631
0
      cinfo->global_state != DSTATE_PRESCAN)
632
0
    ERREXIT1(cinfo, JERR_BAD_STATE, cinfo->global_state);
633
  /* Limit scan number to valid range */
634
0
  if (scan_number <= 0)
635
0
    scan_number = 1;
636
0
  if (cinfo->inputctl->eoi_reached && scan_number > cinfo->input_scan_number)
637
0
    scan_number = cinfo->input_scan_number;
638
0
  cinfo->output_scan_number = scan_number;
639
  /* Perform any dummy output passes, and set up for the real pass */
640
0
  return output_pass_setup(cinfo);
641
0
}
642
643
644
/*
645
 * Finish up after an output pass in buffered-image mode.
646
 *
647
 * Returns FALSE if suspended.  The return value need be inspected only if
648
 * a suspending data source is used.
649
 */
650
651
GLOBAL(boolean)
652
jpeg_finish_output(j_decompress_ptr cinfo)
653
0
{
654
0
  if ((cinfo->global_state == DSTATE_SCANNING ||
655
0
       cinfo->global_state == DSTATE_RAW_OK) && cinfo->buffered_image) {
656
    /* Terminate this pass. */
657
    /* We do not require the whole pass to have been completed. */
658
0
    (*cinfo->master->finish_output_pass) (cinfo);
659
0
    cinfo->global_state = DSTATE_BUFPOST;
660
0
  } else if (cinfo->global_state != DSTATE_BUFPOST) {
661
    /* BUFPOST = repeat call after a suspension, anything else is error */
662
0
    ERREXIT1(cinfo, JERR_BAD_STATE, cinfo->global_state);
663
0
  }
664
  /* Read markers looking for SOS or EOI */
665
0
  while (cinfo->input_scan_number <= cinfo->output_scan_number &&
666
0
         !cinfo->inputctl->eoi_reached) {
667
0
    if ((*cinfo->inputctl->consume_input) (cinfo) == JPEG_SUSPENDED)
668
0
      return FALSE;             /* Suspend, come back later */
669
0
  }
670
0
  cinfo->global_state = DSTATE_BUFIMAGE;
671
0
  return TRUE;
672
0
}
673
674
#endif /* D_MULTISCAN_FILES_SUPPORTED */