Coverage Report

Created: 2023-06-07 06:03

/src/libjpeg-turbo.2.0.x/jdmaster.c
Line
Count
Source (jump to first uncovered line)
1
/*
2
 * jdmaster.c
3
 *
4
 * This file was part of the Independent JPEG Group's software:
5
 * Copyright (C) 1991-1997, Thomas G. Lane.
6
 * Modified 2002-2009 by Guido Vollbeding.
7
 * libjpeg-turbo Modifications:
8
 * Copyright (C) 2009-2011, 2016, 2023, D. R. Commander.
9
 * Copyright (C) 2013, Linaro Limited.
10
 * Copyright (C) 2015, Google, Inc.
11
 * For conditions of distribution and use, see the accompanying README.ijg
12
 * file.
13
 *
14
 * This file contains master control logic for the JPEG decompressor.
15
 * These routines are concerned with selecting the modules to be executed
16
 * and with determining the number of passes and the work to be done in each
17
 * pass.
18
 */
19
20
#define JPEG_INTERNALS
21
#include "jinclude.h"
22
#include "jpeglib.h"
23
#include "jpegcomp.h"
24
#include "jdmaster.h"
25
#include "jsimd.h"
26
27
28
/*
29
 * Determine whether merged upsample/color conversion should be used.
30
 * CRUCIAL: this must match the actual capabilities of jdmerge.c!
31
 */
32
33
LOCAL(boolean)
34
use_merged_upsample(j_decompress_ptr cinfo)
35
22.4k
{
36
22.4k
#ifdef UPSAMPLE_MERGING_SUPPORTED
37
  /* Merging is the equivalent of plain box-filter upsampling */
38
22.4k
  if (cinfo->do_fancy_upsampling || cinfo->CCIR601_sampling)
39
7.31k
    return FALSE;
40
  /* jdmerge.c only supports YCC=>RGB and YCC=>RGB565 color conversion */
41
15.1k
  if (cinfo->jpeg_color_space != JCS_YCbCr || cinfo->num_components != 3 ||
42
15.1k
      (cinfo->out_color_space != JCS_RGB &&
43
6.41k
       cinfo->out_color_space != JCS_RGB565 &&
44
6.41k
       cinfo->out_color_space != JCS_EXT_RGB &&
45
6.41k
       cinfo->out_color_space != JCS_EXT_RGBX &&
46
6.41k
       cinfo->out_color_space != JCS_EXT_BGR &&
47
6.41k
       cinfo->out_color_space != JCS_EXT_BGRX &&
48
6.41k
       cinfo->out_color_space != JCS_EXT_XBGR &&
49
6.41k
       cinfo->out_color_space != JCS_EXT_XRGB &&
50
6.41k
       cinfo->out_color_space != JCS_EXT_RGBA &&
51
6.41k
       cinfo->out_color_space != JCS_EXT_BGRA &&
52
6.41k
       cinfo->out_color_space != JCS_EXT_ABGR &&
53
6.41k
       cinfo->out_color_space != JCS_EXT_ARGB))
54
8.98k
    return FALSE;
55
6.18k
  if ((cinfo->out_color_space == JCS_RGB565 &&
56
6.18k
       cinfo->out_color_components != 3) ||
57
6.18k
      (cinfo->out_color_space != JCS_RGB565 &&
58
6.18k
       cinfo->out_color_components != rgb_pixelsize[cinfo->out_color_space]))
59
0
    return FALSE;
60
  /* and it only handles 2h1v or 2h2v sampling ratios */
61
6.18k
  if (cinfo->comp_info[0].h_samp_factor != 2 ||
62
6.18k
      cinfo->comp_info[1].h_samp_factor != 1 ||
63
6.18k
      cinfo->comp_info[2].h_samp_factor != 1 ||
64
6.18k
      cinfo->comp_info[0].v_samp_factor >  2 ||
65
6.18k
      cinfo->comp_info[1].v_samp_factor != 1 ||
66
6.18k
      cinfo->comp_info[2].v_samp_factor != 1)
67
3.22k
    return FALSE;
68
  /* furthermore, it doesn't work if we've scaled the IDCTs differently */
69
2.95k
  if (cinfo->comp_info[0]._DCT_scaled_size != cinfo->_min_DCT_scaled_size ||
70
2.95k
      cinfo->comp_info[1]._DCT_scaled_size != cinfo->_min_DCT_scaled_size ||
71
2.95k
      cinfo->comp_info[2]._DCT_scaled_size != cinfo->_min_DCT_scaled_size)
72
0
    return FALSE;
73
2.95k
#ifdef WITH_SIMD
74
  /* If YCbCr-to-RGB color conversion is SIMD-accelerated but merged upsampling
75
     isn't, then disabling merged upsampling is likely to be faster when
76
     decompressing YCbCr JPEG images. */
77
2.95k
  if (!jsimd_can_h2v2_merged_upsample() && !jsimd_can_h2v1_merged_upsample() &&
78
2.95k
      jsimd_can_ycc_rgb() && cinfo->jpeg_color_space == JCS_YCbCr &&
79
2.95k
      (cinfo->out_color_space == JCS_RGB ||
80
0
       (cinfo->out_color_space >= JCS_EXT_RGB &&
81
0
        cinfo->out_color_space <= JCS_EXT_ARGB)))
82
0
    return FALSE;
83
2.95k
#endif
84
  /* ??? also need to test for upsample-time rescaling, when & if supported */
85
2.95k
  return TRUE;                  /* by golly, it'll work... */
86
#else
87
  return FALSE;
88
#endif
89
2.95k
}
90
91
92
/*
93
 * Compute output image dimensions and related values.
94
 * NOTE: this is exported for possible use by application.
95
 * Hence it mustn't do anything that can't be done twice.
96
 */
97
98
#if JPEG_LIB_VERSION >= 80
99
GLOBAL(void)
100
#else
101
LOCAL(void)
102
#endif
103
jpeg_core_output_dimensions(j_decompress_ptr cinfo)
104
/* Do computations that are needed before master selection phase.
105
 * This function is used for transcoding and full decompression.
106
 */
107
26.6k
{
108
26.6k
#ifdef IDCT_SCALING_SUPPORTED
109
26.6k
  int ci;
110
26.6k
  jpeg_component_info *compptr;
111
112
  /* Compute actual output image dimensions and DCT scaling choices. */
113
26.6k
  if (cinfo->scale_num * DCTSIZE <= cinfo->scale_denom) {
114
    /* Provide 1/block_size scaling */
115
0
    cinfo->output_width = (JDIMENSION)
116
0
      jdiv_round_up((long)cinfo->image_width, (long)DCTSIZE);
117
0
    cinfo->output_height = (JDIMENSION)
118
0
      jdiv_round_up((long)cinfo->image_height, (long)DCTSIZE);
119
0
    cinfo->_min_DCT_h_scaled_size = 1;
120
0
    cinfo->_min_DCT_v_scaled_size = 1;
121
26.6k
  } else if (cinfo->scale_num * DCTSIZE <= cinfo->scale_denom * 2) {
122
    /* Provide 2/block_size scaling */
123
1.02k
    cinfo->output_width = (JDIMENSION)
124
1.02k
      jdiv_round_up((long)cinfo->image_width * 2L, (long)DCTSIZE);
125
1.02k
    cinfo->output_height = (JDIMENSION)
126
1.02k
      jdiv_round_up((long)cinfo->image_height * 2L, (long)DCTSIZE);
127
1.02k
    cinfo->_min_DCT_h_scaled_size = 2;
128
1.02k
    cinfo->_min_DCT_v_scaled_size = 2;
129
25.5k
  } else if (cinfo->scale_num * DCTSIZE <= cinfo->scale_denom * 3) {
130
    /* Provide 3/block_size scaling */
131
24
    cinfo->output_width = (JDIMENSION)
132
24
      jdiv_round_up((long)cinfo->image_width * 3L, (long)DCTSIZE);
133
24
    cinfo->output_height = (JDIMENSION)
134
24
      jdiv_round_up((long)cinfo->image_height * 3L, (long)DCTSIZE);
135
24
    cinfo->_min_DCT_h_scaled_size = 3;
136
24
    cinfo->_min_DCT_v_scaled_size = 3;
137
25.5k
  } else if (cinfo->scale_num * DCTSIZE <= cinfo->scale_denom * 4) {
138
    /* Provide 4/block_size scaling */
139
904
    cinfo->output_width = (JDIMENSION)
140
904
      jdiv_round_up((long)cinfo->image_width * 4L, (long)DCTSIZE);
141
904
    cinfo->output_height = (JDIMENSION)
142
904
      jdiv_round_up((long)cinfo->image_height * 4L, (long)DCTSIZE);
143
904
    cinfo->_min_DCT_h_scaled_size = 4;
144
904
    cinfo->_min_DCT_v_scaled_size = 4;
145
24.6k
  } else if (cinfo->scale_num * DCTSIZE <= cinfo->scale_denom * 5) {
146
    /* Provide 5/block_size scaling */
147
26
    cinfo->output_width = (JDIMENSION)
148
26
      jdiv_round_up((long)cinfo->image_width * 5L, (long)DCTSIZE);
149
26
    cinfo->output_height = (JDIMENSION)
150
26
      jdiv_round_up((long)cinfo->image_height * 5L, (long)DCTSIZE);
151
26
    cinfo->_min_DCT_h_scaled_size = 5;
152
26
    cinfo->_min_DCT_v_scaled_size = 5;
153
24.6k
  } else if (cinfo->scale_num * DCTSIZE <= cinfo->scale_denom * 6) {
154
    /* Provide 6/block_size scaling */
155
0
    cinfo->output_width = (JDIMENSION)
156
0
      jdiv_round_up((long)cinfo->image_width * 6L, (long)DCTSIZE);
157
0
    cinfo->output_height = (JDIMENSION)
158
0
      jdiv_round_up((long)cinfo->image_height * 6L, (long)DCTSIZE);
159
0
    cinfo->_min_DCT_h_scaled_size = 6;
160
0
    cinfo->_min_DCT_v_scaled_size = 6;
161
24.6k
  } else if (cinfo->scale_num * DCTSIZE <= cinfo->scale_denom * 7) {
162
    /* Provide 7/block_size scaling */
163
0
    cinfo->output_width = (JDIMENSION)
164
0
      jdiv_round_up((long)cinfo->image_width * 7L, (long)DCTSIZE);
165
0
    cinfo->output_height = (JDIMENSION)
166
0
      jdiv_round_up((long)cinfo->image_height * 7L, (long)DCTSIZE);
167
0
    cinfo->_min_DCT_h_scaled_size = 7;
168
0
    cinfo->_min_DCT_v_scaled_size = 7;
169
24.6k
  } else if (cinfo->scale_num * DCTSIZE <= cinfo->scale_denom * 8) {
170
    /* Provide 8/block_size scaling */
171
24.6k
    cinfo->output_width = (JDIMENSION)
172
24.6k
      jdiv_round_up((long)cinfo->image_width * 8L, (long)DCTSIZE);
173
24.6k
    cinfo->output_height = (JDIMENSION)
174
24.6k
      jdiv_round_up((long)cinfo->image_height * 8L, (long)DCTSIZE);
175
24.6k
    cinfo->_min_DCT_h_scaled_size = 8;
176
24.6k
    cinfo->_min_DCT_v_scaled_size = 8;
177
24.6k
  } else if (cinfo->scale_num * DCTSIZE <= cinfo->scale_denom * 9) {
178
    /* Provide 9/block_size scaling */
179
0
    cinfo->output_width = (JDIMENSION)
180
0
      jdiv_round_up((long)cinfo->image_width * 9L, (long)DCTSIZE);
181
0
    cinfo->output_height = (JDIMENSION)
182
0
      jdiv_round_up((long)cinfo->image_height * 9L, (long)DCTSIZE);
183
0
    cinfo->_min_DCT_h_scaled_size = 9;
184
0
    cinfo->_min_DCT_v_scaled_size = 9;
185
0
  } else if (cinfo->scale_num * DCTSIZE <= cinfo->scale_denom * 10) {
186
    /* Provide 10/block_size scaling */
187
0
    cinfo->output_width = (JDIMENSION)
188
0
      jdiv_round_up((long)cinfo->image_width * 10L, (long)DCTSIZE);
189
0
    cinfo->output_height = (JDIMENSION)
190
0
      jdiv_round_up((long)cinfo->image_height * 10L, (long)DCTSIZE);
191
0
    cinfo->_min_DCT_h_scaled_size = 10;
192
0
    cinfo->_min_DCT_v_scaled_size = 10;
193
0
  } else if (cinfo->scale_num * DCTSIZE <= cinfo->scale_denom * 11) {
194
    /* Provide 11/block_size scaling */
195
0
    cinfo->output_width = (JDIMENSION)
196
0
      jdiv_round_up((long)cinfo->image_width * 11L, (long)DCTSIZE);
197
0
    cinfo->output_height = (JDIMENSION)
198
0
      jdiv_round_up((long)cinfo->image_height * 11L, (long)DCTSIZE);
199
0
    cinfo->_min_DCT_h_scaled_size = 11;
200
0
    cinfo->_min_DCT_v_scaled_size = 11;
201
0
  } else if (cinfo->scale_num * DCTSIZE <= cinfo->scale_denom * 12) {
202
    /* Provide 12/block_size scaling */
203
0
    cinfo->output_width = (JDIMENSION)
204
0
      jdiv_round_up((long)cinfo->image_width * 12L, (long)DCTSIZE);
205
0
    cinfo->output_height = (JDIMENSION)
206
0
      jdiv_round_up((long)cinfo->image_height * 12L, (long)DCTSIZE);
207
0
    cinfo->_min_DCT_h_scaled_size = 12;
208
0
    cinfo->_min_DCT_v_scaled_size = 12;
209
0
  } else if (cinfo->scale_num * DCTSIZE <= cinfo->scale_denom * 13) {
210
    /* Provide 13/block_size scaling */
211
0
    cinfo->output_width = (JDIMENSION)
212
0
      jdiv_round_up((long)cinfo->image_width * 13L, (long)DCTSIZE);
213
0
    cinfo->output_height = (JDIMENSION)
214
0
      jdiv_round_up((long)cinfo->image_height * 13L, (long)DCTSIZE);
215
0
    cinfo->_min_DCT_h_scaled_size = 13;
216
0
    cinfo->_min_DCT_v_scaled_size = 13;
217
0
  } else if (cinfo->scale_num * DCTSIZE <= cinfo->scale_denom * 14) {
218
    /* Provide 14/block_size scaling */
219
0
    cinfo->output_width = (JDIMENSION)
220
0
      jdiv_round_up((long)cinfo->image_width * 14L, (long)DCTSIZE);
221
0
    cinfo->output_height = (JDIMENSION)
222
0
      jdiv_round_up((long)cinfo->image_height * 14L, (long)DCTSIZE);
223
0
    cinfo->_min_DCT_h_scaled_size = 14;
224
0
    cinfo->_min_DCT_v_scaled_size = 14;
225
0
  } else if (cinfo->scale_num * DCTSIZE <= cinfo->scale_denom * 15) {
226
    /* Provide 15/block_size scaling */
227
0
    cinfo->output_width = (JDIMENSION)
228
0
      jdiv_round_up((long)cinfo->image_width * 15L, (long)DCTSIZE);
229
0
    cinfo->output_height = (JDIMENSION)
230
0
      jdiv_round_up((long)cinfo->image_height * 15L, (long)DCTSIZE);
231
0
    cinfo->_min_DCT_h_scaled_size = 15;
232
0
    cinfo->_min_DCT_v_scaled_size = 15;
233
0
  } else {
234
    /* Provide 16/block_size scaling */
235
0
    cinfo->output_width = (JDIMENSION)
236
0
      jdiv_round_up((long)cinfo->image_width * 16L, (long)DCTSIZE);
237
0
    cinfo->output_height = (JDIMENSION)
238
0
      jdiv_round_up((long)cinfo->image_height * 16L, (long)DCTSIZE);
239
0
    cinfo->_min_DCT_h_scaled_size = 16;
240
0
    cinfo->_min_DCT_v_scaled_size = 16;
241
0
  }
242
243
  /* Recompute dimensions of components */
244
79.3k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
245
52.7k
       ci++, compptr++) {
246
52.7k
    compptr->_DCT_h_scaled_size = cinfo->_min_DCT_h_scaled_size;
247
52.7k
    compptr->_DCT_v_scaled_size = cinfo->_min_DCT_v_scaled_size;
248
52.7k
  }
249
250
#else /* !IDCT_SCALING_SUPPORTED */
251
252
  /* Hardwire it to "no scaling" */
253
  cinfo->output_width = cinfo->image_width;
254
  cinfo->output_height = cinfo->image_height;
255
  /* jdinput.c has already initialized DCT_scaled_size,
256
   * and has computed unscaled downsampled_width and downsampled_height.
257
   */
258
259
#endif /* IDCT_SCALING_SUPPORTED */
260
26.6k
}
261
262
263
/*
264
 * Compute output image dimensions and related values.
265
 * NOTE: this is exported for possible use by application.
266
 * Hence it mustn't do anything that can't be done twice.
267
 * Also note that it may be called before the master module is initialized!
268
 */
269
270
GLOBAL(void)
271
jpeg_calc_output_dimensions(j_decompress_ptr cinfo)
272
/* Do computations that are needed before master selection phase */
273
26.6k
{
274
26.6k
#ifdef IDCT_SCALING_SUPPORTED
275
26.6k
  int ci;
276
26.6k
  jpeg_component_info *compptr;
277
26.6k
#endif
278
279
  /* Prevent application from calling me at wrong times */
280
26.6k
  if (cinfo->global_state != DSTATE_READY)
281
0
    ERREXIT1(cinfo, JERR_BAD_STATE, cinfo->global_state);
282
283
  /* Compute core output image dimensions and DCT scaling choices. */
284
26.6k
  jpeg_core_output_dimensions(cinfo);
285
286
26.6k
#ifdef IDCT_SCALING_SUPPORTED
287
288
  /* In selecting the actual DCT scaling for each component, we try to
289
   * scale up the chroma components via IDCT scaling rather than upsampling.
290
   * This saves time if the upsampler gets to use 1:1 scaling.
291
   * Note this code adapts subsampling ratios which are powers of 2.
292
   */
293
79.3k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
294
52.7k
       ci++, compptr++) {
295
52.7k
    int ssize = cinfo->_min_DCT_scaled_size;
296
53.6k
    while (ssize < DCTSIZE &&
297
53.6k
           ((cinfo->max_h_samp_factor * cinfo->_min_DCT_scaled_size) %
298
5.19k
            (compptr->h_samp_factor * ssize * 2) == 0) &&
299
53.6k
           ((cinfo->max_v_samp_factor * cinfo->_min_DCT_scaled_size) %
300
1.65k
            (compptr->v_samp_factor * ssize * 2) == 0)) {
301
922
      ssize = ssize * 2;
302
922
    }
303
#if JPEG_LIB_VERSION >= 70
304
    compptr->DCT_h_scaled_size = compptr->DCT_v_scaled_size = ssize;
305
#else
306
52.7k
    compptr->DCT_scaled_size = ssize;
307
52.7k
#endif
308
52.7k
  }
309
310
  /* Recompute downsampled dimensions of components;
311
   * application needs to know these if using raw downsampled data.
312
   */
313
79.3k
  for (ci = 0, compptr = cinfo->comp_info; ci < cinfo->num_components;
314
52.7k
       ci++, compptr++) {
315
    /* Size in samples, after IDCT scaling */
316
52.7k
    compptr->downsampled_width = (JDIMENSION)
317
52.7k
      jdiv_round_up((long)cinfo->image_width *
318
52.7k
                    (long)(compptr->h_samp_factor * compptr->_DCT_scaled_size),
319
52.7k
                    (long)(cinfo->max_h_samp_factor * DCTSIZE));
320
52.7k
    compptr->downsampled_height = (JDIMENSION)
321
52.7k
      jdiv_round_up((long)cinfo->image_height *
322
52.7k
                    (long)(compptr->v_samp_factor * compptr->_DCT_scaled_size),
323
52.7k
                    (long)(cinfo->max_v_samp_factor * DCTSIZE));
324
52.7k
  }
325
326
#else /* !IDCT_SCALING_SUPPORTED */
327
328
  /* Hardwire it to "no scaling" */
329
  cinfo->output_width = cinfo->image_width;
330
  cinfo->output_height = cinfo->image_height;
331
  /* jdinput.c has already initialized DCT_scaled_size to DCTSIZE,
332
   * and has computed unscaled downsampled_width and downsampled_height.
333
   */
334
335
#endif /* IDCT_SCALING_SUPPORTED */
336
337
  /* Report number of components in selected colorspace. */
338
  /* Probably this should be in the color conversion module... */
339
26.6k
  switch (cinfo->out_color_space) {
340
9.40k
  case JCS_GRAYSCALE:
341
9.40k
    cinfo->out_color_components = 1;
342
9.40k
    break;
343
6.57k
  case JCS_RGB:
344
14.2k
  case JCS_EXT_RGB:
345
14.2k
  case JCS_EXT_RGBX:
346
14.8k
  case JCS_EXT_BGR:
347
15.7k
  case JCS_EXT_BGRX:
348
15.7k
  case JCS_EXT_XBGR:
349
16.2k
  case JCS_EXT_XRGB:
350
16.2k
  case JCS_EXT_RGBA:
351
16.2k
  case JCS_EXT_BGRA:
352
16.2k
  case JCS_EXT_ABGR:
353
16.2k
  case JCS_EXT_ARGB:
354
16.2k
    cinfo->out_color_components = rgb_pixelsize[cinfo->out_color_space];
355
16.2k
    break;
356
0
  case JCS_YCbCr:
357
0
  case JCS_RGB565:
358
0
    cinfo->out_color_components = 3;
359
0
    break;
360
919
  case JCS_CMYK:
361
919
  case JCS_YCCK:
362
919
    cinfo->out_color_components = 4;
363
919
    break;
364
0
  default:                      /* else must be same colorspace as in file */
365
0
    cinfo->out_color_components = cinfo->num_components;
366
0
    break;
367
26.6k
  }
368
26.6k
  cinfo->output_components = (cinfo->quantize_colors ? 1 :
369
26.6k
                              cinfo->out_color_components);
370
371
  /* See if upsampler will want to emit more than one row at a time */
372
26.6k
  if (use_merged_upsample(cinfo))
373
2.96k
    cinfo->rec_outbuf_height = cinfo->max_v_samp_factor;
374
23.6k
  else
375
23.6k
    cinfo->rec_outbuf_height = 1;
376
26.6k
}
377
378
379
/*
380
 * Several decompression processes need to range-limit values to the range
381
 * 0..MAXJSAMPLE; the input value may fall somewhat outside this range
382
 * due to noise introduced by quantization, roundoff error, etc.  These
383
 * processes are inner loops and need to be as fast as possible.  On most
384
 * machines, particularly CPUs with pipelines or instruction prefetch,
385
 * a (subscript-check-less) C table lookup
386
 *              x = sample_range_limit[x];
387
 * is faster than explicit tests
388
 *              if (x < 0)  x = 0;
389
 *              else if (x > MAXJSAMPLE)  x = MAXJSAMPLE;
390
 * These processes all use a common table prepared by the routine below.
391
 *
392
 * For most steps we can mathematically guarantee that the initial value
393
 * of x is within MAXJSAMPLE+1 of the legal range, so a table running from
394
 * -(MAXJSAMPLE+1) to 2*MAXJSAMPLE+1 is sufficient.  But for the initial
395
 * limiting step (just after the IDCT), a wildly out-of-range value is
396
 * possible if the input data is corrupt.  To avoid any chance of indexing
397
 * off the end of memory and getting a bad-pointer trap, we perform the
398
 * post-IDCT limiting thus:
399
 *              x = range_limit[x & MASK];
400
 * where MASK is 2 bits wider than legal sample data, ie 10 bits for 8-bit
401
 * samples.  Under normal circumstances this is more than enough range and
402
 * a correct output will be generated; with bogus input data the mask will
403
 * cause wraparound, and we will safely generate a bogus-but-in-range output.
404
 * For the post-IDCT step, we want to convert the data from signed to unsigned
405
 * representation by adding CENTERJSAMPLE at the same time that we limit it.
406
 * So the post-IDCT limiting table ends up looking like this:
407
 *   CENTERJSAMPLE,CENTERJSAMPLE+1,...,MAXJSAMPLE,
408
 *   MAXJSAMPLE (repeat 2*(MAXJSAMPLE+1)-CENTERJSAMPLE times),
409
 *   0          (repeat 2*(MAXJSAMPLE+1)-CENTERJSAMPLE times),
410
 *   0,1,...,CENTERJSAMPLE-1
411
 * Negative inputs select values from the upper half of the table after
412
 * masking.
413
 *
414
 * We can save some space by overlapping the start of the post-IDCT table
415
 * with the simpler range limiting table.  The post-IDCT table begins at
416
 * sample_range_limit + CENTERJSAMPLE.
417
 */
418
419
LOCAL(void)
420
prepare_range_limit_table(j_decompress_ptr cinfo)
421
/* Allocate and fill in the sample_range_limit table */
422
19.3k
{
423
19.3k
  JSAMPLE *table;
424
19.3k
  int i;
425
426
19.3k
  table = (JSAMPLE *)
427
19.3k
    (*cinfo->mem->alloc_small) ((j_common_ptr)cinfo, JPOOL_IMAGE,
428
19.3k
                (5 * (MAXJSAMPLE + 1) + CENTERJSAMPLE) * sizeof(JSAMPLE));
429
19.3k
  table += (MAXJSAMPLE + 1);    /* allow negative subscripts of simple table */
430
19.3k
  cinfo->sample_range_limit = table;
431
  /* First segment of "simple" table: limit[x] = 0 for x < 0 */
432
19.3k
  MEMZERO(table - (MAXJSAMPLE + 1), (MAXJSAMPLE + 1) * sizeof(JSAMPLE));
433
  /* Main part of "simple" table: limit[x] = x */
434
4.97M
  for (i = 0; i <= MAXJSAMPLE; i++)
435
4.95M
    table[i] = (JSAMPLE)i;
436
19.3k
  table += CENTERJSAMPLE;       /* Point to where post-IDCT table starts */
437
  /* End of simple table, rest of first half of post-IDCT table */
438
7.44M
  for (i = CENTERJSAMPLE; i < 2 * (MAXJSAMPLE + 1); i++)
439
7.43M
    table[i] = MAXJSAMPLE;
440
  /* Second half of post-IDCT table */
441
19.3k
  MEMZERO(table + (2 * (MAXJSAMPLE + 1)),
442
19.3k
          (2 * (MAXJSAMPLE + 1) - CENTERJSAMPLE) * sizeof(JSAMPLE));
443
19.3k
  MEMCOPY(table + (4 * (MAXJSAMPLE + 1) - CENTERJSAMPLE),
444
19.3k
          cinfo->sample_range_limit, CENTERJSAMPLE * sizeof(JSAMPLE));
445
19.3k
}
446
447
448
/*
449
 * Master selection of decompression modules.
450
 * This is done once at jpeg_start_decompress time.  We determine
451
 * which modules will be used and give them appropriate initialization calls.
452
 * We also initialize the decompressor input side to begin consuming data.
453
 *
454
 * Since jpeg_read_header has finished, we know what is in the SOF
455
 * and (first) SOS markers.  We also have all the application parameter
456
 * settings.
457
 */
458
459
LOCAL(void)
460
master_selection(j_decompress_ptr cinfo)
461
19.3k
{
462
19.3k
  my_master_ptr master = (my_master_ptr)cinfo->master;
463
19.3k
  boolean use_c_buffer;
464
19.3k
  long samplesperrow;
465
19.3k
  JDIMENSION jd_samplesperrow;
466
467
  /* Initialize dimensions and other stuff */
468
19.3k
  jpeg_calc_output_dimensions(cinfo);
469
19.3k
  prepare_range_limit_table(cinfo);
470
471
  /* Width of an output scanline must be representable as JDIMENSION. */
472
19.3k
  samplesperrow = (long)cinfo->output_width *
473
19.3k
                  (long)cinfo->out_color_components;
474
19.3k
  jd_samplesperrow = (JDIMENSION)samplesperrow;
475
19.3k
  if ((long)jd_samplesperrow != samplesperrow)
476
0
    ERREXIT(cinfo, JERR_WIDTH_OVERFLOW);
477
478
  /* Initialize my private state */
479
19.3k
  master->pass_number = 0;
480
19.3k
  master->using_merged_upsample = use_merged_upsample(cinfo);
481
482
  /* Color quantizer selection */
483
19.3k
  master->quantizer_1pass = NULL;
484
19.3k
  master->quantizer_2pass = NULL;
485
  /* No mode changes if not using buffered-image mode. */
486
19.3k
  if (!cinfo->quantize_colors || !cinfo->buffered_image) {
487
19.3k
    cinfo->enable_1pass_quant = FALSE;
488
19.3k
    cinfo->enable_external_quant = FALSE;
489
19.3k
    cinfo->enable_2pass_quant = FALSE;
490
19.3k
  }
491
19.3k
  if (cinfo->quantize_colors) {
492
0
    if (cinfo->raw_data_out)
493
0
      ERREXIT(cinfo, JERR_NOTIMPL);
494
    /* 2-pass quantizer only works in 3-component color space. */
495
0
    if (cinfo->out_color_components != 3 ||
496
0
        cinfo->out_color_space == JCS_RGB565) {
497
0
      cinfo->enable_1pass_quant = TRUE;
498
0
      cinfo->enable_external_quant = FALSE;
499
0
      cinfo->enable_2pass_quant = FALSE;
500
0
      cinfo->colormap = NULL;
501
0
    } else if (cinfo->colormap != NULL) {
502
0
      cinfo->enable_external_quant = TRUE;
503
0
    } else if (cinfo->two_pass_quantize) {
504
0
      cinfo->enable_2pass_quant = TRUE;
505
0
    } else {
506
0
      cinfo->enable_1pass_quant = TRUE;
507
0
    }
508
509
0
    if (cinfo->enable_1pass_quant) {
510
0
#ifdef QUANT_1PASS_SUPPORTED
511
0
      jinit_1pass_quantizer(cinfo);
512
0
      master->quantizer_1pass = cinfo->cquantize;
513
#else
514
      ERREXIT(cinfo, JERR_NOT_COMPILED);
515
#endif
516
0
    }
517
518
    /* We use the 2-pass code to map to external colormaps. */
519
0
    if (cinfo->enable_2pass_quant || cinfo->enable_external_quant) {
520
0
#ifdef QUANT_2PASS_SUPPORTED
521
0
      jinit_2pass_quantizer(cinfo);
522
0
      master->quantizer_2pass = cinfo->cquantize;
523
#else
524
      ERREXIT(cinfo, JERR_NOT_COMPILED);
525
#endif
526
0
    }
527
    /* If both quantizers are initialized, the 2-pass one is left active;
528
     * this is necessary for starting with quantization to an external map.
529
     */
530
0
  }
531
532
  /* Post-processing: in particular, color conversion first */
533
19.3k
  if (!cinfo->raw_data_out) {
534
12.0k
    if (master->using_merged_upsample) {
535
636
#ifdef UPSAMPLE_MERGING_SUPPORTED
536
636
      jinit_merged_upsampler(cinfo); /* does color conversion too */
537
#else
538
      ERREXIT(cinfo, JERR_NOT_COMPILED);
539
#endif
540
11.4k
    } else {
541
11.4k
      jinit_color_deconverter(cinfo);
542
11.4k
      jinit_upsampler(cinfo);
543
11.4k
    }
544
12.0k
    jinit_d_post_controller(cinfo, cinfo->enable_2pass_quant);
545
12.0k
  }
546
  /* Inverse DCT */
547
19.3k
  jinit_inverse_dct(cinfo);
548
  /* Entropy decoding: either Huffman or arithmetic coding. */
549
19.3k
  if (cinfo->arith_code) {
550
9.23k
#ifdef D_ARITH_CODING_SUPPORTED
551
9.23k
    jinit_arith_decoder(cinfo);
552
#else
553
    ERREXIT(cinfo, JERR_ARITH_NOTIMPL);
554
#endif
555
10.1k
  } else {
556
10.1k
    if (cinfo->progressive_mode) {
557
3.61k
#ifdef D_PROGRESSIVE_SUPPORTED
558
3.61k
      jinit_phuff_decoder(cinfo);
559
#else
560
      ERREXIT(cinfo, JERR_NOT_COMPILED);
561
#endif
562
3.61k
    } else
563
6.50k
      jinit_huff_decoder(cinfo);
564
10.1k
  }
565
566
  /* Initialize principal buffer controllers. */
567
19.3k
  use_c_buffer = cinfo->inputctl->has_multiple_scans || cinfo->buffered_image;
568
19.3k
  jinit_d_coef_controller(cinfo, use_c_buffer);
569
570
19.3k
  if (!cinfo->raw_data_out)
571
11.0k
    jinit_d_main_controller(cinfo, FALSE /* never need full buffer here */);
572
573
  /* We can now tell the memory manager to allocate virtual arrays. */
574
19.3k
  (*cinfo->mem->realize_virt_arrays) ((j_common_ptr)cinfo);
575
576
  /* Initialize input side of decompressor to consume first scan. */
577
19.3k
  (*cinfo->inputctl->start_input_pass) (cinfo);
578
579
  /* Set the first and last iMCU columns to decompress from single-scan images.
580
   * By default, decompress all of the iMCU columns.
581
   */
582
19.3k
  cinfo->master->first_iMCU_col = 0;
583
19.3k
  cinfo->master->last_iMCU_col = cinfo->MCUs_per_row - 1;
584
585
19.3k
#ifdef D_MULTISCAN_FILES_SUPPORTED
586
  /* If jpeg_start_decompress will read the whole file, initialize
587
   * progress monitoring appropriately.  The input step is counted
588
   * as one pass.
589
   */
590
19.3k
  if (cinfo->progress != NULL && !cinfo->buffered_image &&
591
19.3k
      cinfo->inputctl->has_multiple_scans) {
592
11.1k
    int nscans;
593
    /* Estimate number of scans to set pass_limit. */
594
11.1k
    if (cinfo->progressive_mode) {
595
      /* Arbitrarily estimate 2 interleaved DC scans + 3 AC scans/component. */
596
8.61k
      nscans = 2 + 3 * cinfo->num_components;
597
8.61k
    } else {
598
      /* For a nonprogressive multiscan file, estimate 1 scan per component. */
599
2.56k
      nscans = cinfo->num_components;
600
2.56k
    }
601
11.1k
    cinfo->progress->pass_counter = 0L;
602
11.1k
    cinfo->progress->pass_limit = (long)cinfo->total_iMCU_rows * nscans;
603
11.1k
    cinfo->progress->completed_passes = 0;
604
11.1k
    cinfo->progress->total_passes = (cinfo->enable_2pass_quant ? 3 : 2);
605
    /* Count the input pass as done */
606
11.1k
    master->pass_number++;
607
11.1k
  }
608
19.3k
#endif /* D_MULTISCAN_FILES_SUPPORTED */
609
19.3k
}
610
611
612
/*
613
 * Per-pass setup.
614
 * This is called at the beginning of each output pass.  We determine which
615
 * modules will be active during this pass and give them appropriate
616
 * start_pass calls.  We also set is_dummy_pass to indicate whether this
617
 * is a "real" output pass or a dummy pass for color quantization.
618
 * (In the latter case, jdapistd.c will crank the pass to completion.)
619
 */
620
621
METHODDEF(void)
622
prepare_for_output_pass(j_decompress_ptr cinfo)
623
23.3k
{
624
23.3k
  my_master_ptr master = (my_master_ptr)cinfo->master;
625
626
23.3k
  if (master->pub.is_dummy_pass) {
627
0
#ifdef QUANT_2PASS_SUPPORTED
628
    /* Final pass of 2-pass quantization */
629
0
    master->pub.is_dummy_pass = FALSE;
630
0
    (*cinfo->cquantize->start_pass) (cinfo, FALSE);
631
0
    (*cinfo->post->start_pass) (cinfo, JBUF_CRANK_DEST);
632
0
    (*cinfo->main->start_pass) (cinfo, JBUF_CRANK_DEST);
633
#else
634
    ERREXIT(cinfo, JERR_NOT_COMPILED);
635
#endif /* QUANT_2PASS_SUPPORTED */
636
23.3k
  } else {
637
23.3k
    if (cinfo->quantize_colors && cinfo->colormap == NULL) {
638
      /* Select new quantization method */
639
0
      if (cinfo->two_pass_quantize && cinfo->enable_2pass_quant) {
640
0
        cinfo->cquantize = master->quantizer_2pass;
641
0
        master->pub.is_dummy_pass = TRUE;
642
0
      } else if (cinfo->enable_1pass_quant) {
643
0
        cinfo->cquantize = master->quantizer_1pass;
644
0
      } else {
645
0
        ERREXIT(cinfo, JERR_MODE_CHANGE);
646
0
      }
647
0
    }
648
23.3k
    (*cinfo->idct->start_pass) (cinfo);
649
23.3k
    (*cinfo->coef->start_output_pass) (cinfo);
650
23.3k
    if (!cinfo->raw_data_out) {
651
14.3k
      if (!master->using_merged_upsample)
652
13.9k
        (*cinfo->cconvert->start_pass) (cinfo);
653
14.3k
      (*cinfo->upsample->start_pass) (cinfo);
654
14.3k
      if (cinfo->quantize_colors)
655
0
        (*cinfo->cquantize->start_pass) (cinfo, master->pub.is_dummy_pass);
656
14.3k
      (*cinfo->post->start_pass) (cinfo,
657
14.3k
            (master->pub.is_dummy_pass ? JBUF_SAVE_AND_PASS : JBUF_PASS_THRU));
658
14.3k
      (*cinfo->main->start_pass) (cinfo, JBUF_PASS_THRU);
659
14.3k
    }
660
23.3k
  }
661
662
  /* Set up progress monitor's pass info if present */
663
23.3k
  if (cinfo->progress != NULL) {
664
23.3k
    cinfo->progress->completed_passes = master->pass_number;
665
23.3k
    cinfo->progress->total_passes = master->pass_number +
666
23.3k
                                    (master->pub.is_dummy_pass ? 2 : 1);
667
    /* In buffered-image mode, we assume one more output pass if EOI not
668
     * yet reached, but no more passes if EOI has been reached.
669
     */
670
23.3k
    if (cinfo->buffered_image && !cinfo->inputctl->eoi_reached) {
671
0
      cinfo->progress->total_passes += (cinfo->enable_2pass_quant ? 2 : 1);
672
0
    }
673
23.3k
  }
674
23.3k
}
675
676
677
/*
678
 * Finish up at end of an output pass.
679
 */
680
681
METHODDEF(void)
682
finish_output_pass(j_decompress_ptr cinfo)
683
21.4k
{
684
21.4k
  my_master_ptr master = (my_master_ptr)cinfo->master;
685
686
21.4k
  if (cinfo->quantize_colors)
687
0
    (*cinfo->cquantize->finish_pass) (cinfo);
688
21.4k
  master->pass_number++;
689
21.4k
}
690
691
692
#ifdef D_MULTISCAN_FILES_SUPPORTED
693
694
/*
695
 * Switch to a new external colormap between output passes.
696
 */
697
698
GLOBAL(void)
699
jpeg_new_colormap(j_decompress_ptr cinfo)
700
0
{
701
0
  my_master_ptr master = (my_master_ptr)cinfo->master;
702
703
  /* Prevent application from calling me at wrong times */
704
0
  if (cinfo->global_state != DSTATE_BUFIMAGE)
705
0
    ERREXIT1(cinfo, JERR_BAD_STATE, cinfo->global_state);
706
707
0
  if (cinfo->quantize_colors && cinfo->enable_external_quant &&
708
0
      cinfo->colormap != NULL) {
709
    /* Select 2-pass quantizer for external colormap use */
710
0
    cinfo->cquantize = master->quantizer_2pass;
711
    /* Notify quantizer of colormap change */
712
0
    (*cinfo->cquantize->new_color_map) (cinfo);
713
0
    master->pub.is_dummy_pass = FALSE; /* just in case */
714
0
  } else
715
0
    ERREXIT(cinfo, JERR_MODE_CHANGE);
716
0
}
717
718
#endif /* D_MULTISCAN_FILES_SUPPORTED */
719
720
721
/*
722
 * Initialize master decompression control and select active modules.
723
 * This is performed at the start of jpeg_start_decompress.
724
 */
725
726
GLOBAL(void)
727
jinit_master_decompress(j_decompress_ptr cinfo)
728
32.5k
{
729
32.5k
  my_master_ptr master = (my_master_ptr)cinfo->master;
730
731
32.5k
  master->pub.prepare_for_output_pass = prepare_for_output_pass;
732
32.5k
  master->pub.finish_output_pass = finish_output_pass;
733
734
32.5k
  master->pub.is_dummy_pass = FALSE;
735
32.5k
  master->pub.jinit_upsampler_no_alloc = FALSE;
736
737
32.5k
  master_selection(cinfo);
738
32.5k
}