Coverage Report

Created: 2025-11-14 07:32

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/libpng/pngget.c
Line
Count
Source
1
/* pngget.c - retrieval of values from info struct
2
 *
3
 * Copyright (c) 2018-2025 Cosmin Truta
4
 * Copyright (c) 1998-2002,2004,2006-2018 Glenn Randers-Pehrson
5
 * Copyright (c) 1996-1997 Andreas Dilger
6
 * Copyright (c) 1995-1996 Guy Eric Schalnat, Group 42, Inc.
7
 *
8
 * This code is released under the libpng license.
9
 * For conditions of distribution and use, see the disclaimer
10
 * and license in png.h
11
 *
12
 */
13
14
#include "pngpriv.h"
15
16
#if defined(PNG_READ_SUPPORTED) || defined(PNG_WRITE_SUPPORTED)
17
18
png_uint_32
19
png_get_valid(const png_struct *png_ptr, const png_info *info_ptr,
20
    png_uint_32 flag)
21
1.01M
{
22
1.01M
   if (png_ptr != NULL && info_ptr != NULL)
23
1.01M
   {
24
1.01M
#ifdef PNG_READ_tRNS_SUPPORTED
25
      /* png_handle_PLTE() may have canceled a valid tRNS chunk but left the
26
       * 'valid' flag for the detection of duplicate chunks. Do not report a
27
       * valid tRNS chunk in this case.
28
       */
29
1.01M
      if (flag == PNG_INFO_tRNS && png_ptr->num_trans == 0)
30
173k
         return 0;
31
842k
#endif
32
33
842k
      return info_ptr->valid & flag;
34
1.01M
   }
35
36
0
   return 0;
37
1.01M
}
38
39
size_t
40
png_get_rowbytes(const png_struct *png_ptr, const png_info *info_ptr)
41
50.3k
{
42
50.3k
   if (png_ptr != NULL && info_ptr != NULL)
43
50.3k
      return info_ptr->rowbytes;
44
45
0
   return 0;
46
50.3k
}
47
48
#ifdef PNG_INFO_IMAGE_SUPPORTED
49
png_byte **
50
png_get_rows(const png_struct *png_ptr, const png_info *info_ptr)
51
0
{
52
0
   if (png_ptr != NULL && info_ptr != NULL)
53
0
      return info_ptr->row_pointers;
54
55
0
   return 0;
56
0
}
57
#endif
58
59
#ifdef PNG_EASY_ACCESS_SUPPORTED
60
/* Easy access to info, added in libpng-0.99 */
61
png_uint_32
62
png_get_image_width(const png_struct *png_ptr, const png_info *info_ptr)
63
0
{
64
0
   if (png_ptr != NULL && info_ptr != NULL)
65
0
      return info_ptr->width;
66
67
0
   return 0;
68
0
}
69
70
png_uint_32
71
png_get_image_height(const png_struct *png_ptr, const png_info *info_ptr)
72
0
{
73
0
   if (png_ptr != NULL && info_ptr != NULL)
74
0
      return info_ptr->height;
75
76
0
   return 0;
77
0
}
78
79
png_byte
80
png_get_bit_depth(const png_struct *png_ptr, const png_info *info_ptr)
81
0
{
82
0
   if (png_ptr != NULL && info_ptr != NULL)
83
0
      return info_ptr->bit_depth;
84
85
0
   return 0;
86
0
}
87
88
png_byte
89
png_get_color_type(const png_struct *png_ptr, const png_info *info_ptr)
90
0
{
91
0
   if (png_ptr != NULL && info_ptr != NULL)
92
0
      return info_ptr->color_type;
93
94
0
   return 0;
95
0
}
96
97
png_byte
98
png_get_filter_type(const png_struct *png_ptr, const png_info *info_ptr)
99
0
{
100
0
   if (png_ptr != NULL && info_ptr != NULL)
101
0
      return info_ptr->filter_type;
102
103
0
   return 0;
104
0
}
105
106
png_byte
107
png_get_interlace_type(const png_struct *png_ptr, const png_info *info_ptr)
108
0
{
109
0
   if (png_ptr != NULL && info_ptr != NULL)
110
0
      return info_ptr->interlace_type;
111
112
0
   return 0;
113
0
}
114
115
png_byte
116
png_get_compression_type(const png_struct *png_ptr, const png_info *info_ptr)
117
0
{
118
0
   if (png_ptr != NULL && info_ptr != NULL)
119
0
      return info_ptr->compression_type;
120
121
0
   return 0;
122
0
}
123
124
png_uint_32
125
png_get_x_pixels_per_meter(const png_struct *png_ptr,
126
    const png_info *info_ptr)
127
0
{
128
0
#ifdef PNG_pHYs_SUPPORTED
129
0
   png_debug(1, "in png_get_x_pixels_per_meter");
130
131
0
   if (png_ptr != NULL && info_ptr != NULL &&
132
0
       (info_ptr->valid & PNG_INFO_pHYs) != 0)
133
0
   {
134
0
      if (info_ptr->phys_unit_type == PNG_RESOLUTION_METER)
135
0
         return info_ptr->x_pixels_per_unit;
136
0
   }
137
#else
138
   PNG_UNUSED(png_ptr)
139
   PNG_UNUSED(info_ptr)
140
#endif
141
142
0
   return 0;
143
0
}
144
145
png_uint_32
146
png_get_y_pixels_per_meter(const png_struct *png_ptr,
147
    const png_info *info_ptr)
148
0
{
149
0
#ifdef PNG_pHYs_SUPPORTED
150
0
   png_debug(1, "in png_get_y_pixels_per_meter");
151
152
0
   if (png_ptr != NULL && info_ptr != NULL &&
153
0
       (info_ptr->valid & PNG_INFO_pHYs) != 0)
154
0
   {
155
0
      if (info_ptr->phys_unit_type == PNG_RESOLUTION_METER)
156
0
         return info_ptr->y_pixels_per_unit;
157
0
   }
158
#else
159
   PNG_UNUSED(png_ptr)
160
   PNG_UNUSED(info_ptr)
161
#endif
162
163
0
   return 0;
164
0
}
165
166
png_uint_32
167
png_get_pixels_per_meter(const png_struct *png_ptr, const png_info *info_ptr)
168
0
{
169
0
#ifdef PNG_pHYs_SUPPORTED
170
0
   png_debug(1, "in png_get_pixels_per_meter");
171
172
0
   if (png_ptr != NULL && info_ptr != NULL &&
173
0
       (info_ptr->valid & PNG_INFO_pHYs) != 0)
174
0
   {
175
0
      if (info_ptr->phys_unit_type == PNG_RESOLUTION_METER &&
176
0
          info_ptr->x_pixels_per_unit == info_ptr->y_pixels_per_unit)
177
0
         return info_ptr->x_pixels_per_unit;
178
0
   }
179
#else
180
   PNG_UNUSED(png_ptr)
181
   PNG_UNUSED(info_ptr)
182
#endif
183
184
0
   return 0;
185
0
}
186
187
#ifdef PNG_FLOATING_POINT_SUPPORTED
188
float
189
png_get_pixel_aspect_ratio(const png_struct *png_ptr,
190
    const png_info *info_ptr)
191
0
{
192
0
#ifdef PNG_READ_pHYs_SUPPORTED
193
0
   png_debug(1, "in png_get_pixel_aspect_ratio");
194
195
0
   if (png_ptr != NULL && info_ptr != NULL &&
196
0
       (info_ptr->valid & PNG_INFO_pHYs) != 0)
197
0
   {
198
0
      if (info_ptr->x_pixels_per_unit != 0)
199
0
         return (float)info_ptr->y_pixels_per_unit
200
0
              / (float)info_ptr->x_pixels_per_unit;
201
0
   }
202
#else
203
   PNG_UNUSED(png_ptr)
204
   PNG_UNUSED(info_ptr)
205
#endif
206
207
0
   return (float)0.0;
208
0
}
209
#endif
210
211
#ifdef PNG_FIXED_POINT_SUPPORTED
212
png_fixed_point
213
png_get_pixel_aspect_ratio_fixed(const png_struct *png_ptr,
214
    const png_info *info_ptr)
215
0
{
216
0
#ifdef PNG_READ_pHYs_SUPPORTED
217
0
   png_debug(1, "in png_get_pixel_aspect_ratio_fixed");
218
219
0
   if (png_ptr != NULL && info_ptr != NULL &&
220
0
       (info_ptr->valid & PNG_INFO_pHYs) != 0 &&
221
0
       info_ptr->x_pixels_per_unit > 0 && info_ptr->y_pixels_per_unit > 0 &&
222
0
       info_ptr->x_pixels_per_unit <= PNG_UINT_31_MAX &&
223
0
       info_ptr->y_pixels_per_unit <= PNG_UINT_31_MAX)
224
0
   {
225
0
      png_fixed_point res;
226
227
      /* The following casts work because a PNG 4 byte integer only has a valid
228
       * range of 0..2^31-1; otherwise the cast might overflow.
229
       */
230
0
      if (png_muldiv(&res, (png_int_32)info_ptr->y_pixels_per_unit, PNG_FP_1,
231
0
          (png_int_32)info_ptr->x_pixels_per_unit) != 0)
232
0
         return res;
233
0
   }
234
#else
235
   PNG_UNUSED(png_ptr)
236
   PNG_UNUSED(info_ptr)
237
#endif
238
239
0
   return 0;
240
0
}
241
#endif
242
243
png_int_32
244
png_get_x_offset_microns(const png_struct *png_ptr, const png_info *info_ptr)
245
0
{
246
0
#ifdef PNG_oFFs_SUPPORTED
247
0
   png_debug(1, "in png_get_x_offset_microns");
248
249
0
   if (png_ptr != NULL && info_ptr != NULL &&
250
0
       (info_ptr->valid & PNG_INFO_oFFs) != 0)
251
0
   {
252
0
      if (info_ptr->offset_unit_type == PNG_OFFSET_MICROMETER)
253
0
         return info_ptr->x_offset;
254
0
   }
255
#else
256
   PNG_UNUSED(png_ptr)
257
   PNG_UNUSED(info_ptr)
258
#endif
259
260
0
   return 0;
261
0
}
262
263
png_int_32
264
png_get_y_offset_microns(const png_struct *png_ptr, const png_info *info_ptr)
265
0
{
266
0
#ifdef PNG_oFFs_SUPPORTED
267
0
   png_debug(1, "in png_get_y_offset_microns");
268
269
0
   if (png_ptr != NULL && info_ptr != NULL &&
270
0
       (info_ptr->valid & PNG_INFO_oFFs) != 0)
271
0
   {
272
0
      if (info_ptr->offset_unit_type == PNG_OFFSET_MICROMETER)
273
0
         return info_ptr->y_offset;
274
0
   }
275
#else
276
   PNG_UNUSED(png_ptr)
277
   PNG_UNUSED(info_ptr)
278
#endif
279
280
0
   return 0;
281
0
}
282
283
png_int_32
284
png_get_x_offset_pixels(const png_struct *png_ptr, const png_info *info_ptr)
285
48
{
286
48
#ifdef PNG_oFFs_SUPPORTED
287
48
   png_debug(1, "in png_get_x_offset_pixels");
288
289
48
   if (png_ptr != NULL && info_ptr != NULL &&
290
48
       (info_ptr->valid & PNG_INFO_oFFs) != 0)
291
48
   {
292
48
      if (info_ptr->offset_unit_type == PNG_OFFSET_PIXEL)
293
10
         return info_ptr->x_offset;
294
48
   }
295
#else
296
   PNG_UNUSED(png_ptr)
297
   PNG_UNUSED(info_ptr)
298
#endif
299
300
38
   return 0;
301
48
}
302
303
png_int_32
304
png_get_y_offset_pixels(const png_struct *png_ptr, const png_info *info_ptr)
305
48
{
306
48
#ifdef PNG_oFFs_SUPPORTED
307
48
   png_debug(1, "in png_get_y_offset_pixels");
308
309
48
   if (png_ptr != NULL && info_ptr != NULL &&
310
48
       (info_ptr->valid & PNG_INFO_oFFs) != 0)
311
48
   {
312
48
      if (info_ptr->offset_unit_type == PNG_OFFSET_PIXEL)
313
10
         return info_ptr->y_offset;
314
48
   }
315
#else
316
   PNG_UNUSED(png_ptr)
317
   PNG_UNUSED(info_ptr)
318
#endif
319
320
38
   return 0;
321
48
}
322
323
#ifdef PNG_INCH_CONVERSIONS_SUPPORTED
324
static png_uint_32
325
ppi_from_ppm(png_uint_32 ppm)
326
0
{
327
#if 0
328
   /* The conversion is *(2.54/100), in binary (32 digits):
329
    * .00000110100000001001110101001001
330
    */
331
   png_uint_32 t1001, t1101;
332
   ppm >>= 1;                  /* .1 */
333
   t1001 = ppm + (ppm >> 3);   /* .1001 */
334
   t1101 = t1001 + (ppm >> 1); /* .1101 */
335
   ppm >>= 20;                 /* .000000000000000000001 */
336
   t1101 += t1101 >> 15;       /* .1101000000000001101 */
337
   t1001 >>= 11;               /* .000000000001001 */
338
   t1001 += t1001 >> 12;       /* .000000000001001000000001001 */
339
   ppm += t1001;               /* .000000000001001000001001001 */
340
   ppm += t1101;               /* .110100000001001110101001001 */
341
   return (ppm + 16) >> 5;/* .00000110100000001001110101001001 */
342
#else
343
   /* The argument is a PNG unsigned integer, so it is not permitted
344
    * to be bigger than 2^31.
345
    */
346
0
   png_fixed_point result;
347
0
   if (ppm <= PNG_UINT_31_MAX && png_muldiv(&result, (png_int_32)ppm, 127,
348
0
       5000) != 0)
349
0
      return (png_uint_32)result;
350
351
   /* Overflow. */
352
0
   return 0;
353
0
#endif
354
0
}
355
356
png_uint_32
357
png_get_pixels_per_inch(const png_struct *png_ptr, const png_info *info_ptr)
358
0
{
359
0
   return ppi_from_ppm(png_get_pixels_per_meter(png_ptr, info_ptr));
360
0
}
361
362
png_uint_32
363
png_get_x_pixels_per_inch(const png_struct *png_ptr, const png_info *info_ptr)
364
0
{
365
0
   return ppi_from_ppm(png_get_x_pixels_per_meter(png_ptr, info_ptr));
366
0
}
367
368
png_uint_32
369
png_get_y_pixels_per_inch(const png_struct *png_ptr, const png_info *info_ptr)
370
0
{
371
0
   return ppi_from_ppm(png_get_y_pixels_per_meter(png_ptr, info_ptr));
372
0
}
373
374
#ifdef PNG_FIXED_POINT_SUPPORTED
375
static png_fixed_point
376
png_fixed_inches_from_microns(const png_struct *png_ptr, png_int_32 microns)
377
0
{
378
   /* Convert from meters * 1,000,000 to inches * 100,000, meters to
379
    * inches is simply *(100/2.54), so we want *(10/2.54) == 500/127.
380
    * Notice that this can overflow - a warning is output and 0 is
381
    * returned.
382
    */
383
0
   png_fixed_point result;
384
385
0
   if (png_muldiv(&result, microns, 500, 127) != 0)
386
0
      return result;
387
388
0
   png_warning(png_ptr, "fixed point overflow ignored");
389
0
   return 0;
390
0
}
391
392
png_fixed_point
393
png_get_x_offset_inches_fixed(const png_struct *png_ptr,
394
    const png_info *info_ptr)
395
0
{
396
0
   return png_fixed_inches_from_microns(png_ptr,
397
0
       png_get_x_offset_microns(png_ptr, info_ptr));
398
0
}
399
#endif /* FIXED_POINT */
400
401
#ifdef PNG_FIXED_POINT_SUPPORTED
402
png_fixed_point
403
png_get_y_offset_inches_fixed(const png_struct *png_ptr,
404
    const png_info *info_ptr)
405
0
{
406
0
   return png_fixed_inches_from_microns(png_ptr,
407
0
       png_get_y_offset_microns(png_ptr, info_ptr));
408
0
}
409
#endif
410
411
#ifdef PNG_FLOATING_POINT_SUPPORTED
412
float
413
png_get_x_offset_inches(const png_struct *png_ptr, const png_info *info_ptr)
414
0
{
415
   /* To avoid the overflow do the conversion directly in floating
416
    * point.
417
    */
418
0
   return (float)(png_get_x_offset_microns(png_ptr, info_ptr) * .00003937);
419
0
}
420
#endif
421
422
#ifdef PNG_FLOATING_POINT_SUPPORTED
423
float
424
png_get_y_offset_inches(const png_struct *png_ptr, const png_info *info_ptr)
425
0
{
426
   /* To avoid the overflow do the conversion directly in floating
427
    * point.
428
    */
429
0
   return (float)(png_get_y_offset_microns(png_ptr, info_ptr) * .00003937);
430
0
}
431
#endif
432
433
#ifdef PNG_pHYs_SUPPORTED
434
png_uint_32
435
png_get_pHYs_dpi(const png_struct *png_ptr, const png_info *info_ptr,
436
    png_uint_32 *res_x, png_uint_32 *res_y, int *unit_type)
437
0
{
438
0
   png_uint_32 retval = 0;
439
440
0
   png_debug1(1, "in %s retrieval function", "pHYs");
441
442
0
   if (png_ptr != NULL && info_ptr != NULL &&
443
0
       (info_ptr->valid & PNG_INFO_pHYs) != 0)
444
0
   {
445
0
      if (res_x != NULL)
446
0
      {
447
0
         *res_x = info_ptr->x_pixels_per_unit;
448
0
         retval |= PNG_INFO_pHYs;
449
0
      }
450
451
0
      if (res_y != NULL)
452
0
      {
453
0
         *res_y = info_ptr->y_pixels_per_unit;
454
0
         retval |= PNG_INFO_pHYs;
455
0
      }
456
457
0
      if (unit_type != NULL)
458
0
      {
459
0
         *unit_type = (int)info_ptr->phys_unit_type;
460
0
         retval |= PNG_INFO_pHYs;
461
462
0
         if (*unit_type == 1)
463
0
         {
464
0
            if (res_x != NULL) *res_x = (png_uint_32)(*res_x * .0254 + .50);
465
0
            if (res_y != NULL) *res_y = (png_uint_32)(*res_y * .0254 + .50);
466
0
         }
467
0
      }
468
0
   }
469
470
0
   return retval;
471
0
}
472
#endif /* pHYs */
473
#endif /* INCH_CONVERSIONS */
474
475
/* png_get_channels really belongs in here, too, but it's been around longer */
476
477
#endif /* EASY_ACCESS */
478
479
480
png_byte
481
png_get_channels(const png_struct *png_ptr, const png_info *info_ptr)
482
0
{
483
0
   if (png_ptr != NULL && info_ptr != NULL)
484
0
      return info_ptr->channels;
485
486
0
   return 0;
487
0
}
488
489
#ifdef PNG_READ_SUPPORTED
490
const png_byte *
491
png_get_signature(const png_struct *png_ptr, const png_info *info_ptr)
492
0
{
493
0
   if (png_ptr != NULL && info_ptr != NULL)
494
0
      return info_ptr->signature;
495
496
0
   return NULL;
497
0
}
498
#endif
499
500
#ifdef PNG_bKGD_SUPPORTED
501
png_uint_32
502
png_get_bKGD(const png_struct *png_ptr, png_info *info_ptr,
503
    png_color_16 **background)
504
50.3k
{
505
50.3k
   png_debug1(1, "in %s retrieval function", "bKGD");
506
507
50.3k
   if (png_ptr != NULL && info_ptr != NULL &&
508
50.3k
       (info_ptr->valid & PNG_INFO_bKGD) != 0 &&
509
198
       background != NULL)
510
198
   {
511
198
      *background = &(info_ptr->background);
512
198
      return PNG_INFO_bKGD;
513
198
   }
514
515
50.1k
   return 0;
516
50.3k
}
517
#endif
518
519
#ifdef PNG_cHRM_SUPPORTED
520
/* The XYZ APIs were added in 1.5.5 to take advantage of the code added at the
521
 * same time to correct the rgb grayscale coefficient defaults obtained from the
522
 * cHRM chunk in 1.5.4
523
 */
524
#  ifdef PNG_FLOATING_POINT_SUPPORTED
525
png_uint_32
526
png_get_cHRM(const png_struct *png_ptr, const png_info *info_ptr,
527
    double *whitex, double *whitey, double *redx, double *redy,
528
    double *greenx, double *greeny, double *bluex, double *bluey)
529
115
{
530
115
   png_debug1(1, "in %s retrieval function", "cHRM");
531
532
   /* PNGv3: this just returns the values store from the cHRM, if any. */
533
115
   if (png_ptr != NULL && info_ptr != NULL &&
534
115
       (info_ptr->valid & PNG_INFO_cHRM) != 0)
535
115
   {
536
115
      if (whitex != NULL)
537
115
         *whitex = png_float(png_ptr, info_ptr->cHRM.whitex, "cHRM wx");
538
115
      if (whitey != NULL)
539
115
         *whitey = png_float(png_ptr, info_ptr->cHRM.whitey, "cHRM wy");
540
115
      if (redx   != NULL)
541
115
         *redx   = png_float(png_ptr, info_ptr->cHRM.redx,   "cHRM rx");
542
115
      if (redy   != NULL)
543
115
         *redy   = png_float(png_ptr, info_ptr->cHRM.redy,   "cHRM ry");
544
115
      if (greenx != NULL)
545
115
         *greenx = png_float(png_ptr, info_ptr->cHRM.greenx, "cHRM gx");
546
115
      if (greeny != NULL)
547
115
         *greeny = png_float(png_ptr, info_ptr->cHRM.greeny, "cHRM gy");
548
115
      if (bluex  != NULL)
549
115
         *bluex  = png_float(png_ptr, info_ptr->cHRM.bluex,  "cHRM bx");
550
115
      if (bluey  != NULL)
551
115
         *bluey  = png_float(png_ptr, info_ptr->cHRM.bluey,  "cHRM by");
552
115
      return PNG_INFO_cHRM;
553
115
   }
554
555
0
   return 0;
556
115
}
557
558
png_uint_32
559
png_get_cHRM_XYZ(const png_struct *png_ptr, const png_info *info_ptr,
560
    double *red_X, double *red_Y, double *red_Z, double *green_X,
561
    double *green_Y, double *green_Z, double *blue_X, double *blue_Y,
562
    double *blue_Z)
563
0
{
564
0
   png_XYZ XYZ;
565
0
   png_debug1(1, "in %s retrieval function", "cHRM_XYZ(float)");
566
567
0
   if (png_ptr != NULL && info_ptr != NULL &&
568
0
       (info_ptr->valid & PNG_INFO_cHRM) != 0 &&
569
0
       png_XYZ_from_xy(&XYZ, &info_ptr->cHRM) == 0)
570
0
   {
571
0
      if (red_X != NULL)
572
0
         *red_X = png_float(png_ptr, XYZ.red_X, "cHRM red X");
573
0
      if (red_Y != NULL)
574
0
         *red_Y = png_float(png_ptr, XYZ.red_Y, "cHRM red Y");
575
0
      if (red_Z != NULL)
576
0
         *red_Z = png_float(png_ptr, XYZ.red_Z, "cHRM red Z");
577
0
      if (green_X != NULL)
578
0
         *green_X = png_float(png_ptr, XYZ.green_X, "cHRM green X");
579
0
      if (green_Y != NULL)
580
0
         *green_Y = png_float(png_ptr, XYZ.green_Y, "cHRM green Y");
581
0
      if (green_Z != NULL)
582
0
         *green_Z = png_float(png_ptr, XYZ.green_Z, "cHRM green Z");
583
0
      if (blue_X != NULL)
584
0
         *blue_X = png_float(png_ptr, XYZ.blue_X, "cHRM blue X");
585
0
      if (blue_Y != NULL)
586
0
         *blue_Y = png_float(png_ptr, XYZ.blue_Y, "cHRM blue Y");
587
0
      if (blue_Z != NULL)
588
0
         *blue_Z = png_float(png_ptr, XYZ.blue_Z, "cHRM blue Z");
589
0
      return PNG_INFO_cHRM;
590
0
   }
591
592
0
   return 0;
593
0
}
594
#  endif
595
596
#  ifdef PNG_FIXED_POINT_SUPPORTED
597
png_uint_32
598
png_get_cHRM_XYZ_fixed(const png_struct *png_ptr, const png_info *info_ptr,
599
    png_fixed_point *int_red_X, png_fixed_point *int_red_Y,
600
    png_fixed_point *int_red_Z, png_fixed_point *int_green_X,
601
    png_fixed_point *int_green_Y, png_fixed_point *int_green_Z,
602
    png_fixed_point *int_blue_X, png_fixed_point *int_blue_Y,
603
    png_fixed_point *int_blue_Z)
604
0
{
605
0
   png_XYZ XYZ;
606
0
   png_debug1(1, "in %s retrieval function", "cHRM_XYZ");
607
608
0
   if (png_ptr != NULL && info_ptr != NULL &&
609
0
       (info_ptr->valid & PNG_INFO_cHRM) != 0U &&
610
0
       png_XYZ_from_xy(&XYZ, &info_ptr->cHRM) == 0)
611
0
   {
612
0
      if (int_red_X != NULL) *int_red_X = XYZ.red_X;
613
0
      if (int_red_Y != NULL) *int_red_Y = XYZ.red_Y;
614
0
      if (int_red_Z != NULL) *int_red_Z = XYZ.red_Z;
615
0
      if (int_green_X != NULL) *int_green_X = XYZ.green_X;
616
0
      if (int_green_Y != NULL) *int_green_Y = XYZ.green_Y;
617
0
      if (int_green_Z != NULL) *int_green_Z = XYZ.green_Z;
618
0
      if (int_blue_X != NULL) *int_blue_X = XYZ.blue_X;
619
0
      if (int_blue_Y != NULL) *int_blue_Y = XYZ.blue_Y;
620
0
      if (int_blue_Z != NULL) *int_blue_Z = XYZ.blue_Z;
621
0
      return PNG_INFO_cHRM;
622
0
   }
623
624
0
   return 0;
625
0
}
626
627
png_uint_32
628
png_get_cHRM_fixed(const png_struct *png_ptr, const png_info *info_ptr,
629
    png_fixed_point *whitex, png_fixed_point *whitey, png_fixed_point *redx,
630
    png_fixed_point *redy, png_fixed_point *greenx, png_fixed_point *greeny,
631
    png_fixed_point *bluex, png_fixed_point *bluey)
632
0
{
633
0
   png_debug1(1, "in %s retrieval function", "cHRM");
634
635
   /* PNGv3: this just returns the values store from the cHRM, if any. */
636
0
   if (png_ptr != NULL && info_ptr != NULL &&
637
0
       (info_ptr->valid & PNG_INFO_cHRM) != 0)
638
0
   {
639
0
      if (whitex != NULL) *whitex = info_ptr->cHRM.whitex;
640
0
      if (whitey != NULL) *whitey = info_ptr->cHRM.whitey;
641
0
      if (redx   != NULL) *redx   = info_ptr->cHRM.redx;
642
0
      if (redy   != NULL) *redy   = info_ptr->cHRM.redy;
643
0
      if (greenx != NULL) *greenx = info_ptr->cHRM.greenx;
644
0
      if (greeny != NULL) *greeny = info_ptr->cHRM.greeny;
645
0
      if (bluex  != NULL) *bluex  = info_ptr->cHRM.bluex;
646
0
      if (bluey  != NULL) *bluey  = info_ptr->cHRM.bluey;
647
0
      return PNG_INFO_cHRM;
648
0
   }
649
650
0
   return 0;
651
0
}
652
#  endif
653
#endif
654
655
#ifdef PNG_gAMA_SUPPORTED
656
#  ifdef PNG_FIXED_POINT_SUPPORTED
657
png_uint_32
658
png_get_gAMA_fixed(const png_struct *png_ptr, const png_info *info_ptr,
659
    png_fixed_point *file_gamma)
660
0
{
661
0
   png_debug1(1, "in %s retrieval function", "gAMA");
662
663
   /* PNGv3 compatibility: only report gAMA if it is really present. */
664
0
   if (png_ptr != NULL && info_ptr != NULL &&
665
0
       (info_ptr->valid & PNG_INFO_gAMA) != 0)
666
0
   {
667
0
      if (file_gamma != NULL) *file_gamma = info_ptr->gamma;
668
0
      return PNG_INFO_gAMA;
669
0
   }
670
671
0
   return 0;
672
0
}
673
#  endif
674
675
#  ifdef PNG_FLOATING_POINT_SUPPORTED
676
png_uint_32
677
png_get_gAMA(const png_struct *png_ptr, const png_info *info_ptr,
678
    double *file_gamma)
679
100k
{
680
100k
   png_debug1(1, "in %s retrieval function", "gAMA(float)");
681
682
   /* PNGv3 compatibility: only report gAMA if it is really present. */
683
100k
   if (png_ptr != NULL && info_ptr != NULL &&
684
100k
       (info_ptr->valid & PNG_INFO_gAMA) != 0)
685
1.46k
   {
686
1.46k
      if (file_gamma != NULL)
687
1.46k
         *file_gamma = png_float(png_ptr, info_ptr->gamma, "gAMA");
688
689
1.46k
      return PNG_INFO_gAMA;
690
1.46k
   }
691
692
99.3k
   return 0;
693
100k
}
694
#  endif
695
#endif
696
697
#ifdef PNG_sRGB_SUPPORTED
698
png_uint_32
699
png_get_sRGB(const png_struct *png_ptr, const png_info *info_ptr,
700
    int *file_srgb_intent)
701
182
{
702
182
   png_debug1(1, "in %s retrieval function", "sRGB");
703
704
182
   if (png_ptr != NULL && info_ptr != NULL &&
705
182
      (info_ptr->valid & PNG_INFO_sRGB) != 0)
706
182
   {
707
182
      if (file_srgb_intent != NULL)
708
182
         *file_srgb_intent = info_ptr->rendering_intent;
709
182
      return PNG_INFO_sRGB;
710
182
   }
711
712
0
   return 0;
713
182
}
714
#endif
715
716
#ifdef PNG_iCCP_SUPPORTED
717
png_uint_32
718
png_get_iCCP(const png_struct *png_ptr, png_info *info_ptr,
719
    char **name, int *compression_type,
720
    png_byte **profile, png_uint_32 *proflen)
721
4.07k
{
722
4.07k
   png_debug1(1, "in %s retrieval function", "iCCP");
723
724
4.07k
   if (png_ptr != NULL && info_ptr != NULL &&
725
4.07k
       (info_ptr->valid & PNG_INFO_iCCP) != 0 &&
726
4.07k
       name != NULL && profile != NULL && proflen != NULL)
727
4.07k
   {
728
4.07k
      *name = info_ptr->iccp_name;
729
4.07k
      *profile = info_ptr->iccp_profile;
730
4.07k
      *proflen = png_get_uint_32(info_ptr->iccp_profile);
731
      /* This is somewhat irrelevant since the profile data returned has
732
       * actually been uncompressed.
733
       */
734
4.07k
      if (compression_type != NULL)
735
4.07k
         *compression_type = PNG_COMPRESSION_TYPE_BASE;
736
4.07k
      return PNG_INFO_iCCP;
737
4.07k
   }
738
739
0
   return 0;
740
4.07k
}
741
#endif
742
743
#ifdef PNG_sPLT_SUPPORTED
744
int
745
png_get_sPLT(const png_struct *png_ptr, png_info *info_ptr,
746
    png_sPLT_t **spalettes)
747
0
{
748
0
   png_debug1(1, "in %s retrieval function", "sPLT");
749
750
0
   if (png_ptr != NULL && info_ptr != NULL && spalettes != NULL)
751
0
   {
752
0
      *spalettes = info_ptr->splt_palettes;
753
0
      return info_ptr->splt_palettes_num;
754
0
   }
755
756
0
   return 0;
757
0
}
758
#endif
759
760
#ifdef PNG_cICP_SUPPORTED
761
png_uint_32
762
png_get_cICP(const png_struct *png_ptr,
763
             const png_info *info_ptr, png_byte *colour_primaries,
764
             png_byte *transfer_function, png_byte *matrix_coefficients,
765
             png_byte *video_full_range_flag)
766
0
{
767
0
    png_debug1(1, "in %s retrieval function", "cICP");
768
769
0
    if (png_ptr != NULL && info_ptr != NULL &&
770
0
        (info_ptr->valid & PNG_INFO_cICP) != 0 &&
771
0
        colour_primaries != NULL && transfer_function != NULL &&
772
0
        matrix_coefficients != NULL && video_full_range_flag != NULL)
773
0
    {
774
0
        *colour_primaries = info_ptr->cicp_colour_primaries;
775
0
        *transfer_function = info_ptr->cicp_transfer_function;
776
0
        *matrix_coefficients = info_ptr->cicp_matrix_coefficients;
777
0
        *video_full_range_flag = info_ptr->cicp_video_full_range_flag;
778
0
        return (PNG_INFO_cICP);
779
0
    }
780
781
0
    return 0;
782
0
}
783
#endif
784
785
#ifdef PNG_cLLI_SUPPORTED
786
#  ifdef PNG_FIXED_POINT_SUPPORTED
787
png_uint_32
788
png_get_cLLI_fixed(const png_struct *png_ptr, const png_info *info_ptr,
789
    png_uint_32 *maxCLL,
790
    png_uint_32 *maxFALL)
791
0
{
792
0
   png_debug1(1, "in %s retrieval function", "cLLI");
793
794
0
   if (png_ptr != NULL && info_ptr != NULL &&
795
0
       (info_ptr->valid & PNG_INFO_cLLI) != 0)
796
0
   {
797
0
      if (maxCLL != NULL) *maxCLL = info_ptr->maxCLL;
798
0
      if (maxFALL != NULL) *maxFALL = info_ptr->maxFALL;
799
0
      return PNG_INFO_cLLI;
800
0
   }
801
802
0
   return 0;
803
0
}
804
#  endif
805
806
#  ifdef PNG_FLOATING_POINT_SUPPORTED
807
png_uint_32
808
png_get_cLLI(const png_struct *png_ptr, const png_info *info_ptr,
809
      double *maxCLL, double *maxFALL)
810
0
{
811
0
   png_debug1(1, "in %s retrieval function", "cLLI(float)");
812
813
0
   if (png_ptr != NULL && info_ptr != NULL &&
814
0
       (info_ptr->valid & PNG_INFO_cLLI) != 0)
815
0
   {
816
0
      if (maxCLL != NULL) *maxCLL = info_ptr->maxCLL * .0001;
817
0
      if (maxFALL != NULL) *maxFALL = info_ptr->maxFALL * .0001;
818
0
      return PNG_INFO_cLLI;
819
0
   }
820
821
0
   return 0;
822
0
}
823
#  endif
824
#endif /* cLLI */
825
826
#ifdef PNG_mDCV_SUPPORTED
827
#  ifdef PNG_FIXED_POINT_SUPPORTED
828
png_uint_32
829
png_get_mDCV_fixed(const png_struct *png_ptr, const png_info *info_ptr,
830
    png_fixed_point *white_x, png_fixed_point *white_y,
831
    png_fixed_point *red_x, png_fixed_point *red_y,
832
    png_fixed_point *green_x, png_fixed_point *green_y,
833
    png_fixed_point *blue_x, png_fixed_point *blue_y,
834
    png_uint_32 *mastering_maxDL, png_uint_32 *mastering_minDL)
835
0
{
836
0
   png_debug1(1, "in %s retrieval function", "mDCV");
837
838
0
   if (png_ptr != NULL && info_ptr != NULL &&
839
0
       (info_ptr->valid & PNG_INFO_mDCV) != 0)
840
0
   {
841
0
      if (white_x != NULL) *white_x = info_ptr->mastering_white_x * 2;
842
0
      if (white_y != NULL) *white_y = info_ptr->mastering_white_y * 2;
843
0
      if (red_x != NULL) *red_x = info_ptr->mastering_red_x * 2;
844
0
      if (red_y != NULL) *red_y = info_ptr->mastering_red_y * 2;
845
0
      if (green_x != NULL) *green_x = info_ptr->mastering_green_x * 2;
846
0
      if (green_y != NULL) *green_y = info_ptr->mastering_green_y * 2;
847
0
      if (blue_x != NULL) *blue_x = info_ptr->mastering_blue_x * 2;
848
0
      if (blue_y != NULL) *blue_y = info_ptr->mastering_blue_y * 2;
849
0
      if (mastering_maxDL != NULL) *mastering_maxDL = info_ptr->mastering_maxDL;
850
0
      if (mastering_minDL != NULL) *mastering_minDL = info_ptr->mastering_minDL;
851
0
      return PNG_INFO_mDCV;
852
0
   }
853
854
0
   return 0;
855
0
}
856
#  endif
857
858
#  ifdef PNG_FLOATING_POINT_SUPPORTED
859
png_uint_32
860
png_get_mDCV(const png_struct *png_ptr, const png_info *info_ptr,
861
    double *white_x, double *white_y, double *red_x, double *red_y,
862
    double *green_x, double *green_y, double *blue_x, double *blue_y,
863
    double *mastering_maxDL, double *mastering_minDL)
864
0
{
865
0
   png_debug1(1, "in %s retrieval function", "mDCV(float)");
866
867
0
   if (png_ptr != NULL && info_ptr != NULL &&
868
0
       (info_ptr->valid & PNG_INFO_mDCV) != 0)
869
0
   {
870
0
      if (white_x != NULL) *white_x = info_ptr->mastering_white_x * .00002;
871
0
      if (white_y != NULL) *white_y = info_ptr->mastering_white_y * .00002;
872
0
      if (red_x != NULL) *red_x = info_ptr->mastering_red_x * .00002;
873
0
      if (red_y != NULL) *red_y = info_ptr->mastering_red_y * .00002;
874
0
      if (green_x != NULL) *green_x = info_ptr->mastering_green_x * .00002;
875
0
      if (green_y != NULL) *green_y = info_ptr->mastering_green_y * .00002;
876
0
      if (blue_x != NULL) *blue_x = info_ptr->mastering_blue_x * .00002;
877
0
      if (blue_y != NULL) *blue_y = info_ptr->mastering_blue_y * .00002;
878
0
      if (mastering_maxDL != NULL)
879
0
         *mastering_maxDL = info_ptr->mastering_maxDL * .0001;
880
0
      if (mastering_minDL != NULL)
881
0
         *mastering_minDL = info_ptr->mastering_minDL * .0001;
882
0
      return PNG_INFO_mDCV;
883
0
   }
884
885
0
   return 0;
886
0
}
887
#  endif /* FLOATING_POINT */
888
#endif /* mDCV */
889
890
#ifdef PNG_eXIf_SUPPORTED
891
png_uint_32
892
png_get_eXIf_1(const png_struct *png_ptr, const png_info *info_ptr,
893
    png_uint_32 *num_exif, png_byte **exif)
894
87.0k
{
895
87.0k
   png_debug1(1, "in %s retrieval function", "eXIf");
896
897
87.0k
   if (png_ptr != NULL && info_ptr != NULL &&
898
87.0k
       (info_ptr->valid & PNG_INFO_eXIf) != 0 && exif != NULL)
899
11
   {
900
11
      *num_exif = info_ptr->num_exif;
901
11
      *exif = info_ptr->exif;
902
11
      return PNG_INFO_eXIf;
903
11
   }
904
905
87.0k
   return 0;
906
87.0k
}
907
#endif
908
909
#ifdef PNG_hIST_SUPPORTED
910
png_uint_32
911
png_get_hIST(const png_struct *png_ptr, png_info *info_ptr,
912
    png_uint_16 **hist)
913
0
{
914
0
   png_debug1(1, "in %s retrieval function", "hIST");
915
916
0
   if (png_ptr != NULL && info_ptr != NULL &&
917
0
       (info_ptr->valid & PNG_INFO_hIST) != 0 && hist != NULL)
918
0
   {
919
0
      *hist = info_ptr->hist;
920
0
      return PNG_INFO_hIST;
921
0
   }
922
923
0
   return 0;
924
0
}
925
#endif
926
927
png_uint_32
928
png_get_IHDR(const png_struct *png_ptr, const png_info *info_ptr,
929
    png_uint_32 *width, png_uint_32 *height, int *bit_depth,
930
    int *color_type, int *interlace_type, int *compression_type,
931
    int *filter_type)
932
50.3k
{
933
50.3k
   png_debug1(1, "in %s retrieval function", "IHDR");
934
935
50.3k
   if (png_ptr == NULL || info_ptr == NULL)
936
0
      return 0;
937
938
50.3k
   if (width != NULL)
939
50.3k
       *width = info_ptr->width;
940
941
50.3k
   if (height != NULL)
942
50.3k
       *height = info_ptr->height;
943
944
50.3k
   if (bit_depth != NULL)
945
50.3k
       *bit_depth = info_ptr->bit_depth;
946
947
50.3k
   if (color_type != NULL)
948
50.3k
       *color_type = info_ptr->color_type;
949
950
50.3k
   if (compression_type != NULL)
951
50.3k
      *compression_type = info_ptr->compression_type;
952
953
50.3k
   if (filter_type != NULL)
954
50.3k
      *filter_type = info_ptr->filter_type;
955
956
50.3k
   if (interlace_type != NULL)
957
50.3k
      *interlace_type = info_ptr->interlace_type;
958
959
   /* This is redundant if we can be sure that the info_ptr values were all
960
    * assigned in png_set_IHDR().  We do the check anyhow in case an
961
    * application has ignored our advice not to mess with the members
962
    * of info_ptr directly.
963
    */
964
50.3k
   png_check_IHDR(png_ptr, info_ptr->width, info_ptr->height,
965
50.3k
       info_ptr->bit_depth, info_ptr->color_type, info_ptr->interlace_type,
966
50.3k
       info_ptr->compression_type, info_ptr->filter_type);
967
968
50.3k
   return 1;
969
50.3k
}
970
971
#ifdef PNG_oFFs_SUPPORTED
972
png_uint_32
973
png_get_oFFs(const png_struct *png_ptr, const png_info *info_ptr,
974
    png_int_32 *offset_x, png_int_32 *offset_y, int *unit_type)
975
0
{
976
0
   png_debug1(1, "in %s retrieval function", "oFFs");
977
978
0
   if (png_ptr != NULL && info_ptr != NULL &&
979
0
       (info_ptr->valid & PNG_INFO_oFFs) != 0 &&
980
0
       offset_x != NULL && offset_y != NULL && unit_type != NULL)
981
0
   {
982
0
      *offset_x = info_ptr->x_offset;
983
0
      *offset_y = info_ptr->y_offset;
984
0
      *unit_type = (int)info_ptr->offset_unit_type;
985
0
      return PNG_INFO_oFFs;
986
0
   }
987
988
0
   return 0;
989
0
}
990
#endif
991
992
#ifdef PNG_pCAL_SUPPORTED
993
png_uint_32
994
png_get_pCAL(const png_struct *png_ptr, png_info *info_ptr,
995
    char **purpose, png_int_32 *X0, png_int_32 *X1, int *type, int *nparams,
996
    char **units, char ***params)
997
0
{
998
0
   png_debug1(1, "in %s retrieval function", "pCAL");
999
1000
0
   if (png_ptr != NULL && info_ptr != NULL &&
1001
0
       (info_ptr->valid & PNG_INFO_pCAL) != 0 &&
1002
0
       purpose != NULL && X0 != NULL && X1 != NULL && type != NULL &&
1003
0
       nparams != NULL && units != NULL && params != NULL)
1004
0
   {
1005
0
      *purpose = info_ptr->pcal_purpose;
1006
0
      *X0 = info_ptr->pcal_X0;
1007
0
      *X1 = info_ptr->pcal_X1;
1008
0
      *type = (int)info_ptr->pcal_type;
1009
0
      *nparams = (int)info_ptr->pcal_nparams;
1010
0
      *units = info_ptr->pcal_units;
1011
0
      *params = info_ptr->pcal_params;
1012
0
      return PNG_INFO_pCAL;
1013
0
   }
1014
1015
0
   return 0;
1016
0
}
1017
#endif
1018
1019
#ifdef PNG_sCAL_SUPPORTED
1020
#  ifdef PNG_FIXED_POINT_SUPPORTED
1021
#    if defined(PNG_FLOATING_ARITHMETIC_SUPPORTED) || \
1022
         defined(PNG_FLOATING_POINT_SUPPORTED)
1023
png_uint_32
1024
png_get_sCAL_fixed(const png_struct *png_ptr, const png_info *info_ptr,
1025
    int *unit, png_fixed_point *width, png_fixed_point *height)
1026
0
{
1027
0
   png_debug1(1, "in %s retrieval function", "sCAL");
1028
1029
0
   if (png_ptr != NULL && info_ptr != NULL &&
1030
0
       (info_ptr->valid & PNG_INFO_sCAL) != 0)
1031
0
   {
1032
0
      *unit = info_ptr->scal_unit;
1033
      /*TODO: make this work without FP support; the API is currently eliminated
1034
       * if neither floating point APIs nor internal floating point arithmetic
1035
       * are enabled.
1036
       */
1037
0
      *width = png_fixed(png_ptr, atof(info_ptr->scal_s_width), "sCAL width");
1038
0
      *height = png_fixed(png_ptr, atof(info_ptr->scal_s_height),
1039
0
          "sCAL height");
1040
0
      return PNG_INFO_sCAL;
1041
0
   }
1042
1043
0
   return 0;
1044
0
}
1045
#    endif /* FLOATING_ARITHMETIC */
1046
#  endif /* FIXED_POINT */
1047
#  ifdef PNG_FLOATING_POINT_SUPPORTED
1048
png_uint_32
1049
png_get_sCAL(const png_struct *png_ptr, const png_info *info_ptr,
1050
    int *unit, double *width, double *height)
1051
0
{
1052
0
   png_debug1(1, "in %s retrieval function", "sCAL(float)");
1053
1054
0
   if (png_ptr != NULL && info_ptr != NULL &&
1055
0
       (info_ptr->valid & PNG_INFO_sCAL) != 0)
1056
0
   {
1057
0
      *unit = info_ptr->scal_unit;
1058
0
      *width = atof(info_ptr->scal_s_width);
1059
0
      *height = atof(info_ptr->scal_s_height);
1060
0
      return PNG_INFO_sCAL;
1061
0
   }
1062
1063
0
   return 0;
1064
0
}
1065
#  endif /* FLOATING POINT */
1066
png_uint_32
1067
png_get_sCAL_s(const png_struct *png_ptr, const png_info *info_ptr,
1068
    int *unit, char **width, char **height)
1069
0
{
1070
0
   png_debug1(1, "in %s retrieval function", "sCAL(str)");
1071
1072
0
   if (png_ptr != NULL && info_ptr != NULL &&
1073
0
       (info_ptr->valid & PNG_INFO_sCAL) != 0)
1074
0
   {
1075
0
      *unit = info_ptr->scal_unit;
1076
0
      *width = info_ptr->scal_s_width;
1077
0
      *height = info_ptr->scal_s_height;
1078
0
      return PNG_INFO_sCAL;
1079
0
   }
1080
1081
0
   return 0;
1082
0
}
1083
#endif /* sCAL */
1084
1085
#ifdef PNG_pHYs_SUPPORTED
1086
png_uint_32
1087
png_get_pHYs(const png_struct *png_ptr, const png_info *info_ptr,
1088
    png_uint_32 *res_x, png_uint_32 *res_y, int *unit_type)
1089
321
{
1090
321
   png_uint_32 retval = 0;
1091
1092
321
   png_debug1(1, "in %s retrieval function", "pHYs");
1093
1094
321
   if (png_ptr != NULL && info_ptr != NULL &&
1095
321
       (info_ptr->valid & PNG_INFO_pHYs) != 0)
1096
321
   {
1097
321
      if (res_x != NULL)
1098
321
      {
1099
321
         *res_x = info_ptr->x_pixels_per_unit;
1100
321
         retval |= PNG_INFO_pHYs;
1101
321
      }
1102
1103
321
      if (res_y != NULL)
1104
321
      {
1105
321
         *res_y = info_ptr->y_pixels_per_unit;
1106
321
         retval |= PNG_INFO_pHYs;
1107
321
      }
1108
1109
321
      if (unit_type != NULL)
1110
321
      {
1111
321
         *unit_type = (int)info_ptr->phys_unit_type;
1112
321
         retval |= PNG_INFO_pHYs;
1113
321
      }
1114
321
   }
1115
1116
321
   return retval;
1117
321
}
1118
#endif /* pHYs */
1119
1120
png_uint_32
1121
png_get_PLTE(const png_struct *png_ptr, png_info *info_ptr,
1122
    png_color **palette, int *num_palette)
1123
4.71k
{
1124
4.71k
   png_debug1(1, "in %s retrieval function", "PLTE");
1125
1126
4.71k
   if (png_ptr != NULL && info_ptr != NULL &&
1127
4.71k
       (info_ptr->valid & PNG_INFO_PLTE) != 0 && palette != NULL)
1128
4.71k
   {
1129
4.71k
      *palette = info_ptr->palette;
1130
4.71k
      *num_palette = info_ptr->num_palette;
1131
4.71k
      png_debug1(3, "num_palette = %d", *num_palette);
1132
4.71k
      return PNG_INFO_PLTE;
1133
4.71k
   }
1134
1135
0
   return 0;
1136
4.71k
}
1137
1138
#ifdef PNG_sBIT_SUPPORTED
1139
png_uint_32
1140
png_get_sBIT(const png_struct *png_ptr, png_info *info_ptr,
1141
    png_color_8 **sig_bit)
1142
0
{
1143
0
   png_debug1(1, "in %s retrieval function", "sBIT");
1144
1145
0
   if (png_ptr != NULL && info_ptr != NULL &&
1146
0
       (info_ptr->valid & PNG_INFO_sBIT) != 0 && sig_bit != NULL)
1147
0
   {
1148
0
      *sig_bit = &(info_ptr->sig_bit);
1149
0
      return PNG_INFO_sBIT;
1150
0
   }
1151
1152
0
   return 0;
1153
0
}
1154
#endif
1155
1156
#ifdef PNG_TEXT_SUPPORTED
1157
int
1158
png_get_text(const png_struct *png_ptr, png_info *info_ptr,
1159
    png_text **text_ptr, int *num_text)
1160
73.3k
{
1161
73.3k
   if (png_ptr != NULL && info_ptr != NULL && info_ptr->num_text > 0)
1162
1.30k
   {
1163
1.30k
      png_debug1(1, "in text retrieval function, chunk typeid = 0x%lx",
1164
1.30k
         (unsigned long)png_ptr->chunk_name);
1165
1166
1.30k
      if (text_ptr != NULL)
1167
1.30k
         *text_ptr = info_ptr->text;
1168
1169
1.30k
      if (num_text != NULL)
1170
1.30k
         *num_text = info_ptr->num_text;
1171
1172
1.30k
      return info_ptr->num_text;
1173
1.30k
   }
1174
1175
72.0k
   if (num_text != NULL)
1176
72.0k
      *num_text = 0;
1177
1178
72.0k
   return 0;
1179
73.3k
}
1180
#endif
1181
1182
#ifdef PNG_tIME_SUPPORTED
1183
png_uint_32
1184
png_get_tIME(const png_struct *png_ptr, png_info *info_ptr,
1185
    png_time **mod_time)
1186
87.0k
{
1187
87.0k
   png_debug1(1, "in %s retrieval function", "tIME");
1188
1189
87.0k
   if (png_ptr != NULL && info_ptr != NULL &&
1190
87.0k
       (info_ptr->valid & PNG_INFO_tIME) != 0 && mod_time != NULL)
1191
51
   {
1192
51
      *mod_time = &(info_ptr->mod_time);
1193
51
      return PNG_INFO_tIME;
1194
51
   }
1195
1196
87.0k
   return 0;
1197
87.0k
}
1198
#endif
1199
1200
#ifdef PNG_tRNS_SUPPORTED
1201
png_uint_32
1202
png_get_tRNS(const png_struct *png_ptr, png_info *info_ptr,
1203
    png_byte **trans_alpha, int *num_trans, png_color_16 **trans_color)
1204
50.3k
{
1205
50.3k
   png_uint_32 retval = 0;
1206
1207
50.3k
   png_debug1(1, "in %s retrieval function", "tRNS");
1208
1209
50.3k
   if (png_ptr != NULL && info_ptr != NULL &&
1210
50.3k
       (info_ptr->valid & PNG_INFO_tRNS) != 0)
1211
1.36k
   {
1212
1.36k
      if (info_ptr->color_type == PNG_COLOR_TYPE_PALETTE)
1213
261
      {
1214
261
         if (trans_alpha != NULL)
1215
261
         {
1216
261
            *trans_alpha = info_ptr->trans_alpha;
1217
261
            retval |= PNG_INFO_tRNS;
1218
261
         }
1219
1220
261
         if (trans_color != NULL)
1221
261
            *trans_color = &(info_ptr->trans_color);
1222
261
      }
1223
1224
1.10k
      else /* if (info_ptr->color_type != PNG_COLOR_TYPE_PALETTE) */
1225
1.10k
      {
1226
1.10k
         if (trans_color != NULL)
1227
1.10k
         {
1228
1.10k
            *trans_color = &(info_ptr->trans_color);
1229
1.10k
            retval |= PNG_INFO_tRNS;
1230
1.10k
         }
1231
1232
1.10k
         if (trans_alpha != NULL)
1233
1.10k
            *trans_alpha = NULL;
1234
1.10k
      }
1235
1236
1.36k
      if (num_trans != NULL)
1237
1.36k
      {
1238
1.36k
         *num_trans = info_ptr->num_trans;
1239
1.36k
         retval |= PNG_INFO_tRNS;
1240
1.36k
      }
1241
1.36k
   }
1242
1243
50.3k
   return retval;
1244
50.3k
}
1245
#endif
1246
1247
#ifdef PNG_STORE_UNKNOWN_CHUNKS_SUPPORTED
1248
int
1249
png_get_unknown_chunks(const png_struct *png_ptr, png_info *info_ptr,
1250
    png_unknown_chunk **unknowns)
1251
0
{
1252
0
   if (png_ptr != NULL && info_ptr != NULL && unknowns != NULL)
1253
0
   {
1254
0
      *unknowns = info_ptr->unknown_chunks;
1255
0
      return info_ptr->unknown_chunks_num;
1256
0
   }
1257
1258
0
   return 0;
1259
0
}
1260
#endif
1261
1262
#ifdef PNG_READ_RGB_TO_GRAY_SUPPORTED
1263
png_byte
1264
png_get_rgb_to_gray_status(const png_struct *png_ptr)
1265
0
{
1266
0
   return (png_byte)(png_ptr ? png_ptr->rgb_to_gray_status : 0);
1267
0
}
1268
#endif
1269
1270
#ifdef PNG_USER_CHUNKS_SUPPORTED
1271
void *
1272
png_get_user_chunk_ptr(const png_struct *png_ptr)
1273
241k
{
1274
241k
   return (png_ptr ? png_ptr->user_chunk_ptr : NULL);
1275
241k
}
1276
#endif
1277
1278
size_t
1279
png_get_compression_buffer_size(const png_struct *png_ptr)
1280
0
{
1281
0
   if (png_ptr == NULL)
1282
0
      return 0;
1283
1284
0
#ifdef PNG_WRITE_SUPPORTED
1285
0
   if ((png_ptr->mode & PNG_IS_READ_STRUCT) != 0)
1286
0
#endif
1287
0
   {
1288
0
#ifdef PNG_SEQUENTIAL_READ_SUPPORTED
1289
0
      return png_ptr->IDAT_read_size;
1290
#else
1291
      return PNG_IDAT_READ_SIZE;
1292
#endif
1293
0
   }
1294
1295
0
#ifdef PNG_WRITE_SUPPORTED
1296
0
   else
1297
0
      return png_ptr->zbuffer_size;
1298
0
#endif
1299
0
}
1300
1301
#ifdef PNG_SET_USER_LIMITS_SUPPORTED
1302
/* These functions were added to libpng 1.2.6 and were enabled
1303
 * by default in libpng-1.4.0 */
1304
png_uint_32
1305
png_get_user_width_max(const png_struct *png_ptr)
1306
0
{
1307
0
   return (png_ptr ? png_ptr->user_width_max : 0);
1308
0
}
1309
1310
png_uint_32
1311
png_get_user_height_max(const png_struct *png_ptr)
1312
0
{
1313
0
   return (png_ptr ? png_ptr->user_height_max : 0);
1314
0
}
1315
1316
/* This function was added to libpng 1.4.0 */
1317
png_uint_32
1318
png_get_chunk_cache_max(const png_struct *png_ptr)
1319
0
{
1320
0
   return (png_ptr ? png_ptr->user_chunk_cache_max : 0);
1321
0
}
1322
1323
/* This function was added to libpng 1.4.1 */
1324
png_alloc_size_t
1325
png_get_chunk_malloc_max(const png_struct *png_ptr)
1326
0
{
1327
0
   return (png_ptr ? png_ptr->user_chunk_malloc_max : 0);
1328
0
}
1329
#endif /* SET_USER_LIMITS */
1330
1331
/* These functions were added to libpng 1.4.0 */
1332
#ifdef PNG_IO_STATE_SUPPORTED
1333
png_uint_32
1334
png_get_io_state(const png_struct *png_ptr)
1335
0
{
1336
0
   return png_ptr->io_state;
1337
0
}
1338
1339
png_uint_32
1340
png_get_io_chunk_type(const png_struct *png_ptr)
1341
0
{
1342
0
   return png_ptr->chunk_name;
1343
0
}
1344
#endif /* IO_STATE */
1345
1346
#ifdef PNG_CHECK_FOR_INVALID_INDEX_SUPPORTED
1347
#  ifdef PNG_GET_PALETTE_MAX_SUPPORTED
1348
int
1349
png_get_palette_max(const png_struct *png_ptr, const png_info *info_ptr)
1350
0
{
1351
0
   if (png_ptr != NULL && info_ptr != NULL)
1352
0
      return png_ptr->num_palette_max;
1353
1354
0
   return -1;
1355
0
}
1356
#  endif
1357
#endif
1358
1359
#ifdef PNG_APNG_SUPPORTED
1360
png_uint_32 PNGAPI
1361
png_get_acTL(png_struct *png_ptr, png_info *info_ptr,
1362
             png_uint_32 *num_frames, png_uint_32 *num_plays)
1363
0
{
1364
0
   png_debug1(1, "in %s retrieval function", "acTL");
1365
1366
0
   if (png_ptr != NULL && info_ptr != NULL &&
1367
0
       (info_ptr->valid & PNG_INFO_acTL) &&
1368
0
       num_frames != NULL && num_plays != NULL)
1369
0
   {
1370
0
      *num_frames = info_ptr->num_frames;
1371
0
      *num_plays = info_ptr->num_plays;
1372
0
      return 1;
1373
0
   }
1374
1375
0
   return 0;
1376
0
}
1377
1378
png_uint_32 PNGAPI
1379
png_get_num_frames(png_struct *png_ptr, png_info *info_ptr)
1380
0
{
1381
0
   png_debug(1, "in png_get_num_frames");
1382
1383
0
   if (png_ptr != NULL && info_ptr != NULL)
1384
0
      return info_ptr->num_frames;
1385
0
   return 0;
1386
0
}
1387
1388
png_uint_32 PNGAPI
1389
png_get_num_plays(png_struct *png_ptr, png_info *info_ptr)
1390
0
{
1391
0
   png_debug(1, "in png_get_num_plays");
1392
1393
0
   if (png_ptr != NULL && info_ptr != NULL)
1394
0
      return info_ptr->num_plays;
1395
0
   return 0;
1396
0
}
1397
1398
png_uint_32 PNGAPI
1399
png_get_next_frame_fcTL(png_struct *png_ptr, png_info *info_ptr,
1400
                        png_uint_32 *width, png_uint_32 *height,
1401
                        png_uint_32 *x_offset, png_uint_32 *y_offset,
1402
                        png_uint_16 *delay_num, png_uint_16 *delay_den,
1403
                        png_byte *dispose_op, png_byte *blend_op)
1404
0
{
1405
0
   png_debug1(1, "in %s retrieval function", "fcTL");
1406
1407
0
   if (png_ptr != NULL && info_ptr != NULL &&
1408
0
       (info_ptr->valid & PNG_INFO_fcTL) &&
1409
0
       width != NULL && height != NULL &&
1410
0
       x_offset != NULL && y_offset != NULL &&
1411
0
       delay_num != NULL && delay_den != NULL &&
1412
0
       dispose_op != NULL && blend_op != NULL)
1413
0
   {
1414
0
      *width = info_ptr->next_frame_width;
1415
0
      *height = info_ptr->next_frame_height;
1416
0
      *x_offset = info_ptr->next_frame_x_offset;
1417
0
      *y_offset = info_ptr->next_frame_y_offset;
1418
0
      *delay_num = info_ptr->next_frame_delay_num;
1419
0
      *delay_den = info_ptr->next_frame_delay_den;
1420
0
      *dispose_op = info_ptr->next_frame_dispose_op;
1421
0
      *blend_op = info_ptr->next_frame_blend_op;
1422
0
      return 1;
1423
0
   }
1424
1425
0
   return 0;
1426
0
}
1427
1428
png_uint_32 PNGAPI
1429
png_get_next_frame_width(png_struct *png_ptr, png_info *info_ptr)
1430
0
{
1431
0
   png_debug(1, "in png_get_next_frame_width");
1432
1433
0
   if (png_ptr != NULL && info_ptr != NULL)
1434
0
      return info_ptr->next_frame_width;
1435
0
   return 0;
1436
0
}
1437
1438
png_uint_32 PNGAPI
1439
png_get_next_frame_height(png_struct *png_ptr, png_info *info_ptr)
1440
0
{
1441
0
   png_debug(1, "in png_get_next_frame_height");
1442
1443
0
   if (png_ptr != NULL && info_ptr != NULL)
1444
0
      return info_ptr->next_frame_height;
1445
0
   return 0;
1446
0
}
1447
1448
png_uint_32 PNGAPI
1449
png_get_next_frame_x_offset(png_struct *png_ptr, png_info *info_ptr)
1450
0
{
1451
0
   png_debug(1, "in png_get_next_frame_x_offset");
1452
1453
0
   if (png_ptr != NULL && info_ptr != NULL)
1454
0
      return info_ptr->next_frame_x_offset;
1455
0
   return 0;
1456
0
}
1457
1458
png_uint_32 PNGAPI
1459
png_get_next_frame_y_offset(png_struct *png_ptr, png_info *info_ptr)
1460
0
{
1461
0
   png_debug(1, "in png_get_next_frame_y_offset");
1462
1463
0
   if (png_ptr != NULL && info_ptr != NULL)
1464
0
      return info_ptr->next_frame_y_offset;
1465
0
   return 0;
1466
0
}
1467
1468
png_uint_16 PNGAPI
1469
png_get_next_frame_delay_num(png_struct *png_ptr, png_info *info_ptr)
1470
0
{
1471
0
   png_debug(1, "in png_get_next_frame_delay_num");
1472
1473
0
   if (png_ptr != NULL && info_ptr != NULL)
1474
0
      return info_ptr->next_frame_delay_num;
1475
0
   return 0;
1476
0
}
1477
1478
png_uint_16 PNGAPI
1479
png_get_next_frame_delay_den(png_struct *png_ptr, png_info *info_ptr)
1480
0
{
1481
0
   png_debug(1, "in png_get_next_frame_delay_den");
1482
1483
0
   if (png_ptr != NULL && info_ptr != NULL)
1484
0
      return info_ptr->next_frame_delay_den;
1485
0
   return 0;
1486
0
}
1487
1488
png_byte PNGAPI
1489
png_get_next_frame_dispose_op(png_struct *png_ptr, png_info *info_ptr)
1490
0
{
1491
0
   png_debug(1, "in png_get_next_frame_dispose_op");
1492
1493
0
   if (png_ptr != NULL && info_ptr != NULL)
1494
0
      return info_ptr->next_frame_dispose_op;
1495
0
   return 0;
1496
0
}
1497
1498
png_byte PNGAPI
1499
png_get_next_frame_blend_op(png_struct *png_ptr, png_info *info_ptr)
1500
0
{
1501
0
   png_debug(1, "in png_get_next_frame_blend_op");
1502
1503
0
   if (png_ptr != NULL && info_ptr != NULL)
1504
0
      return info_ptr->next_frame_blend_op;
1505
0
   return 0;
1506
0
}
1507
1508
png_byte PNGAPI
1509
png_get_first_frame_is_hidden(png_struct *png_ptr, png_info *info_ptr)
1510
0
{
1511
0
   png_debug(1, "in png_first_frame_is_hidden");
1512
1513
0
   if (png_ptr != NULL)
1514
0
      return (png_byte)(png_ptr->apng_flags & PNG_FIRST_FRAME_HIDDEN);
1515
1516
0
   PNG_UNUSED(info_ptr)
1517
1518
0
   return 0;
1519
0
}
1520
#endif /* PNG_APNG_SUPPORTED */
1521
#endif /* READ || WRITE */