Coverage Report

Created: 2023-12-08 06:53

/src/freeimage-svn/FreeImage/trunk/Source/LibPNG/pngwrite.c
Line
Count
Source (jump to first uncovered line)
1
2
/* pngwrite.c - general routines to write a PNG file
3
 *
4
 * Copyright (c) 2018-2022 Cosmin Truta
5
 * Copyright (c) 1998-2002,2004,2006-2018 Glenn Randers-Pehrson
6
 * Copyright (c) 1996-1997 Andreas Dilger
7
 * Copyright (c) 1995-1996 Guy Eric Schalnat, Group 42, Inc.
8
 *
9
 * This code is released under the libpng license.
10
 * For conditions of distribution and use, see the disclaimer
11
 * and license in png.h
12
 */
13
14
#include "pngpriv.h"
15
#ifdef PNG_SIMPLIFIED_WRITE_STDIO_SUPPORTED
16
#  include <errno.h>
17
#endif /* SIMPLIFIED_WRITE_STDIO */
18
19
#ifdef PNG_WRITE_SUPPORTED
20
21
#ifdef PNG_WRITE_UNKNOWN_CHUNKS_SUPPORTED
22
/* Write out all the unknown chunks for the current given location */
23
static void
24
write_unknown_chunks(png_structrp png_ptr, png_const_inforp info_ptr,
25
    unsigned int where)
26
0
{
27
0
   if (info_ptr->unknown_chunks_num != 0)
28
0
   {
29
0
      png_const_unknown_chunkp up;
30
31
0
      png_debug(5, "writing extra chunks");
32
33
0
      for (up = info_ptr->unknown_chunks;
34
0
           up < info_ptr->unknown_chunks + info_ptr->unknown_chunks_num;
35
0
           ++up)
36
0
         if ((up->location & where) != 0)
37
0
      {
38
         /* If per-chunk unknown chunk handling is enabled use it, otherwise
39
          * just write the chunks the application has set.
40
          */
41
0
#ifdef PNG_SET_UNKNOWN_CHUNKS_SUPPORTED
42
0
         int keep = png_handle_as_unknown(png_ptr, up->name);
43
44
         /* NOTE: this code is radically different from the read side in the
45
          * matter of handling an ancillary unknown chunk.  In the read side
46
          * the default behavior is to discard it, in the code below the default
47
          * behavior is to write it.  Critical chunks are, however, only
48
          * written if explicitly listed or if the default is set to write all
49
          * unknown chunks.
50
          *
51
          * The default handling is also slightly weird - it is not possible to
52
          * stop the writing of all unsafe-to-copy chunks!
53
          *
54
          * TODO: REVIEW: this would seem to be a bug.
55
          */
56
0
         if (keep != PNG_HANDLE_CHUNK_NEVER &&
57
0
             ((up->name[3] & 0x20) /* safe-to-copy overrides everything */ ||
58
0
              keep == PNG_HANDLE_CHUNK_ALWAYS ||
59
0
              (keep == PNG_HANDLE_CHUNK_AS_DEFAULT &&
60
0
               png_ptr->unknown_default == PNG_HANDLE_CHUNK_ALWAYS)))
61
0
#endif
62
0
         {
63
            /* TODO: review, what is wrong with a zero length unknown chunk? */
64
0
            if (up->size == 0)
65
0
               png_warning(png_ptr, "Writing zero-length unknown chunk");
66
67
0
            png_write_chunk(png_ptr, up->name, up->data, up->size);
68
0
         }
69
0
      }
70
0
   }
71
0
}
72
#endif /* WRITE_UNKNOWN_CHUNKS */
73
74
/* Writes all the PNG information.  This is the suggested way to use the
75
 * library.  If you have a new chunk to add, make a function to write it,
76
 * and put it in the correct location here.  If you want the chunk written
77
 * after the image data, put it in png_write_end().  I strongly encourage
78
 * you to supply a PNG_INFO_<chunk> flag, and check info_ptr->valid before
79
 * writing the chunk, as that will keep the code from breaking if you want
80
 * to just write a plain PNG file.  If you have long comments, I suggest
81
 * writing them in png_write_end(), and compressing them.
82
 */
83
void PNGAPI
84
png_write_info_before_PLTE(png_structrp png_ptr, png_const_inforp info_ptr)
85
0
{
86
0
   png_debug(1, "in png_write_info_before_PLTE");
87
88
0
   if (png_ptr == NULL || info_ptr == NULL)
89
0
      return;
90
91
0
   if ((png_ptr->mode & PNG_WROTE_INFO_BEFORE_PLTE) == 0)
92
0
   {
93
      /* Write PNG signature */
94
0
      png_write_sig(png_ptr);
95
96
0
#ifdef PNG_MNG_FEATURES_SUPPORTED
97
0
      if ((png_ptr->mode & PNG_HAVE_PNG_SIGNATURE) != 0 && \
98
0
          png_ptr->mng_features_permitted != 0)
99
0
      {
100
0
         png_warning(png_ptr,
101
0
             "MNG features are not allowed in a PNG datastream");
102
0
         png_ptr->mng_features_permitted = 0;
103
0
      }
104
0
#endif
105
106
      /* Write IHDR information. */
107
0
      png_write_IHDR(png_ptr, info_ptr->width, info_ptr->height,
108
0
          info_ptr->bit_depth, info_ptr->color_type, info_ptr->compression_type,
109
0
          info_ptr->filter_type,
110
0
#ifdef PNG_WRITE_INTERLACING_SUPPORTED
111
0
          info_ptr->interlace_type
112
#else
113
          0
114
#endif
115
0
         );
116
117
      /* The rest of these check to see if the valid field has the appropriate
118
       * flag set, and if it does, writes the chunk.
119
       *
120
       * 1.6.0: COLORSPACE support controls the writing of these chunks too, and
121
       * the chunks will be written if the WRITE routine is there and
122
       * information * is available in the COLORSPACE. (See
123
       * png_colorspace_sync_info in png.c for where the valid flags get set.)
124
       *
125
       * Under certain circumstances the colorspace can be invalidated without
126
       * syncing the info_struct 'valid' flags; this happens if libpng detects
127
       * an error and calls png_error while the color space is being set, yet
128
       * the application continues writing the PNG.  So check the 'invalid'
129
       * flag here too.
130
       */
131
0
#ifdef PNG_GAMMA_SUPPORTED
132
0
#  ifdef PNG_WRITE_gAMA_SUPPORTED
133
0
      if ((info_ptr->colorspace.flags & PNG_COLORSPACE_INVALID) == 0 &&
134
0
          (info_ptr->colorspace.flags & PNG_COLORSPACE_FROM_gAMA) != 0 &&
135
0
          (info_ptr->valid & PNG_INFO_gAMA) != 0)
136
0
         png_write_gAMA_fixed(png_ptr, info_ptr->colorspace.gamma);
137
0
#  endif
138
0
#endif
139
140
0
#ifdef PNG_COLORSPACE_SUPPORTED
141
      /* Write only one of sRGB or an ICC profile.  If a profile was supplied
142
       * and it matches one of the known sRGB ones issue a warning.
143
       */
144
0
#  ifdef PNG_WRITE_iCCP_SUPPORTED
145
0
         if ((info_ptr->colorspace.flags & PNG_COLORSPACE_INVALID) == 0 &&
146
0
             (info_ptr->valid & PNG_INFO_iCCP) != 0)
147
0
         {
148
0
#    ifdef PNG_WRITE_sRGB_SUPPORTED
149
0
               if ((info_ptr->valid & PNG_INFO_sRGB) != 0)
150
0
                  png_app_warning(png_ptr,
151
0
                      "profile matches sRGB but writing iCCP instead");
152
0
#     endif
153
154
0
            png_write_iCCP(png_ptr, info_ptr->iccp_name,
155
0
                info_ptr->iccp_profile);
156
0
         }
157
0
#     ifdef PNG_WRITE_sRGB_SUPPORTED
158
0
         else
159
0
#     endif
160
0
#  endif
161
162
0
#  ifdef PNG_WRITE_sRGB_SUPPORTED
163
0
         if ((info_ptr->colorspace.flags & PNG_COLORSPACE_INVALID) == 0 &&
164
0
             (info_ptr->valid & PNG_INFO_sRGB) != 0)
165
0
            png_write_sRGB(png_ptr, info_ptr->colorspace.rendering_intent);
166
0
#  endif /* WRITE_sRGB */
167
0
#endif /* COLORSPACE */
168
169
0
#ifdef PNG_WRITE_sBIT_SUPPORTED
170
0
         if ((info_ptr->valid & PNG_INFO_sBIT) != 0)
171
0
            png_write_sBIT(png_ptr, &(info_ptr->sig_bit), info_ptr->color_type);
172
0
#endif
173
174
0
#ifdef PNG_COLORSPACE_SUPPORTED
175
0
#  ifdef PNG_WRITE_cHRM_SUPPORTED
176
0
         if ((info_ptr->colorspace.flags & PNG_COLORSPACE_INVALID) == 0 &&
177
0
             (info_ptr->colorspace.flags & PNG_COLORSPACE_FROM_cHRM) != 0 &&
178
0
             (info_ptr->valid & PNG_INFO_cHRM) != 0)
179
0
            png_write_cHRM_fixed(png_ptr, &info_ptr->colorspace.end_points_xy);
180
0
#  endif
181
0
#endif
182
183
0
#ifdef PNG_WRITE_UNKNOWN_CHUNKS_SUPPORTED
184
0
         write_unknown_chunks(png_ptr, info_ptr, PNG_HAVE_IHDR);
185
0
#endif
186
187
0
      png_ptr->mode |= PNG_WROTE_INFO_BEFORE_PLTE;
188
0
   }
189
0
}
190
191
void PNGAPI
192
png_write_info(png_structrp png_ptr, png_const_inforp info_ptr)
193
0
{
194
0
#if defined(PNG_WRITE_TEXT_SUPPORTED) || defined(PNG_WRITE_sPLT_SUPPORTED)
195
0
   int i;
196
0
#endif
197
198
0
   png_debug(1, "in png_write_info");
199
200
0
   if (png_ptr == NULL || info_ptr == NULL)
201
0
      return;
202
203
0
   png_write_info_before_PLTE(png_ptr, info_ptr);
204
205
0
   if ((info_ptr->valid & PNG_INFO_PLTE) != 0)
206
0
      png_write_PLTE(png_ptr, info_ptr->palette,
207
0
          (png_uint_32)info_ptr->num_palette);
208
209
0
   else if (info_ptr->color_type == PNG_COLOR_TYPE_PALETTE)
210
0
      png_error(png_ptr, "Valid palette required for paletted images");
211
212
0
#ifdef PNG_WRITE_tRNS_SUPPORTED
213
0
   if ((info_ptr->valid & PNG_INFO_tRNS) !=0)
214
0
   {
215
0
#ifdef PNG_WRITE_INVERT_ALPHA_SUPPORTED
216
      /* Invert the alpha channel (in tRNS) */
217
0
      if ((png_ptr->transformations & PNG_INVERT_ALPHA) != 0 &&
218
0
          info_ptr->color_type == PNG_COLOR_TYPE_PALETTE)
219
0
      {
220
0
         int j, jend;
221
222
0
         jend = info_ptr->num_trans;
223
0
         if (jend > PNG_MAX_PALETTE_LENGTH)
224
0
            jend = PNG_MAX_PALETTE_LENGTH;
225
226
0
         for (j = 0; j<jend; ++j)
227
0
            info_ptr->trans_alpha[j] =
228
0
               (png_byte)(255 - info_ptr->trans_alpha[j]);
229
0
      }
230
0
#endif
231
0
      png_write_tRNS(png_ptr, info_ptr->trans_alpha, &(info_ptr->trans_color),
232
0
          info_ptr->num_trans, info_ptr->color_type);
233
0
   }
234
0
#endif
235
0
#ifdef PNG_WRITE_bKGD_SUPPORTED
236
0
   if ((info_ptr->valid & PNG_INFO_bKGD) != 0)
237
0
      png_write_bKGD(png_ptr, &(info_ptr->background), info_ptr->color_type);
238
0
#endif
239
240
#ifdef PNG_WRITE_eXIf_SUPPORTED
241
   if ((info_ptr->valid & PNG_INFO_eXIf) != 0)
242
      png_write_eXIf(png_ptr, info_ptr->exif, info_ptr->num_exif);
243
#endif
244
245
0
#ifdef PNG_WRITE_hIST_SUPPORTED
246
0
   if ((info_ptr->valid & PNG_INFO_hIST) != 0)
247
0
      png_write_hIST(png_ptr, info_ptr->hist, info_ptr->num_palette);
248
0
#endif
249
250
0
#ifdef PNG_WRITE_oFFs_SUPPORTED
251
0
   if ((info_ptr->valid & PNG_INFO_oFFs) != 0)
252
0
      png_write_oFFs(png_ptr, info_ptr->x_offset, info_ptr->y_offset,
253
0
          info_ptr->offset_unit_type);
254
0
#endif
255
256
0
#ifdef PNG_WRITE_pCAL_SUPPORTED
257
0
   if ((info_ptr->valid & PNG_INFO_pCAL) != 0)
258
0
      png_write_pCAL(png_ptr, info_ptr->pcal_purpose, info_ptr->pcal_X0,
259
0
          info_ptr->pcal_X1, info_ptr->pcal_type, info_ptr->pcal_nparams,
260
0
          info_ptr->pcal_units, info_ptr->pcal_params);
261
0
#endif
262
263
0
#ifdef PNG_WRITE_sCAL_SUPPORTED
264
0
   if ((info_ptr->valid & PNG_INFO_sCAL) != 0)
265
0
      png_write_sCAL_s(png_ptr, (int)info_ptr->scal_unit,
266
0
          info_ptr->scal_s_width, info_ptr->scal_s_height);
267
0
#endif /* sCAL */
268
269
0
#ifdef PNG_WRITE_pHYs_SUPPORTED
270
0
   if ((info_ptr->valid & PNG_INFO_pHYs) != 0)
271
0
      png_write_pHYs(png_ptr, info_ptr->x_pixels_per_unit,
272
0
          info_ptr->y_pixels_per_unit, info_ptr->phys_unit_type);
273
0
#endif /* pHYs */
274
275
0
#ifdef PNG_WRITE_tIME_SUPPORTED
276
0
   if ((info_ptr->valid & PNG_INFO_tIME) != 0)
277
0
   {
278
0
      png_write_tIME(png_ptr, &(info_ptr->mod_time));
279
0
      png_ptr->mode |= PNG_WROTE_tIME;
280
0
   }
281
0
#endif /* tIME */
282
283
0
#ifdef PNG_WRITE_sPLT_SUPPORTED
284
0
   if ((info_ptr->valid & PNG_INFO_sPLT) != 0)
285
0
      for (i = 0; i < (int)info_ptr->splt_palettes_num; i++)
286
0
         png_write_sPLT(png_ptr, info_ptr->splt_palettes + i);
287
0
#endif /* sPLT */
288
289
0
#ifdef PNG_WRITE_TEXT_SUPPORTED
290
   /* Check to see if we need to write text chunks */
291
0
   for (i = 0; i < info_ptr->num_text; i++)
292
0
   {
293
0
      png_debug2(2, "Writing header text chunk %d, type %d", i,
294
0
          info_ptr->text[i].compression);
295
      /* An internationalized chunk? */
296
0
      if (info_ptr->text[i].compression > 0)
297
0
      {
298
0
#ifdef PNG_WRITE_iTXt_SUPPORTED
299
         /* Write international chunk */
300
0
         png_write_iTXt(png_ptr,
301
0
             info_ptr->text[i].compression,
302
0
             info_ptr->text[i].key,
303
0
             info_ptr->text[i].lang,
304
0
             info_ptr->text[i].lang_key,
305
0
             info_ptr->text[i].text);
306
         /* Mark this chunk as written */
307
0
         if (info_ptr->text[i].compression == PNG_TEXT_COMPRESSION_NONE)
308
0
            info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_NONE_WR;
309
0
         else
310
0
            info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_zTXt_WR;
311
#else
312
         png_warning(png_ptr, "Unable to write international text");
313
#endif
314
0
      }
315
316
      /* If we want a compressed text chunk */
317
0
      else if (info_ptr->text[i].compression == PNG_TEXT_COMPRESSION_zTXt)
318
0
      {
319
0
#ifdef PNG_WRITE_zTXt_SUPPORTED
320
         /* Write compressed chunk */
321
0
         png_write_zTXt(png_ptr, info_ptr->text[i].key,
322
0
             info_ptr->text[i].text, info_ptr->text[i].compression);
323
         /* Mark this chunk as written */
324
0
         info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_zTXt_WR;
325
#else
326
         png_warning(png_ptr, "Unable to write compressed text");
327
#endif
328
0
      }
329
330
0
      else if (info_ptr->text[i].compression == PNG_TEXT_COMPRESSION_NONE)
331
0
      {
332
0
#ifdef PNG_WRITE_tEXt_SUPPORTED
333
         /* Write uncompressed chunk */
334
0
         png_write_tEXt(png_ptr, info_ptr->text[i].key,
335
0
             info_ptr->text[i].text,
336
0
             0);
337
         /* Mark this chunk as written */
338
0
         info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_NONE_WR;
339
#else
340
         /* Can't get here */
341
         png_warning(png_ptr, "Unable to write uncompressed text");
342
#endif
343
0
      }
344
0
   }
345
0
#endif /* tEXt */
346
347
0
#ifdef PNG_WRITE_UNKNOWN_CHUNKS_SUPPORTED
348
0
   write_unknown_chunks(png_ptr, info_ptr, PNG_HAVE_PLTE);
349
0
#endif
350
0
}
351
352
/* Writes the end of the PNG file.  If you don't want to write comments or
353
 * time information, you can pass NULL for info.  If you already wrote these
354
 * in png_write_info(), do not write them again here.  If you have long
355
 * comments, I suggest writing them here, and compressing them.
356
 */
357
void PNGAPI
358
png_write_end(png_structrp png_ptr, png_inforp info_ptr)
359
0
{
360
0
   png_debug(1, "in png_write_end");
361
362
0
   if (png_ptr == NULL)
363
0
      return;
364
365
0
   if ((png_ptr->mode & PNG_HAVE_IDAT) == 0)
366
0
      png_error(png_ptr, "No IDATs written into file");
367
368
0
#ifdef PNG_WRITE_CHECK_FOR_INVALID_INDEX_SUPPORTED
369
0
   if (png_ptr->num_palette_max > png_ptr->num_palette)
370
0
      png_benign_error(png_ptr, "Wrote palette index exceeding num_palette");
371
0
#endif
372
373
   /* See if user wants us to write information chunks */
374
0
   if (info_ptr != NULL)
375
0
   {
376
0
#ifdef PNG_WRITE_TEXT_SUPPORTED
377
0
      int i; /* local index variable */
378
0
#endif
379
0
#ifdef PNG_WRITE_tIME_SUPPORTED
380
      /* Check to see if user has supplied a time chunk */
381
0
      if ((info_ptr->valid & PNG_INFO_tIME) != 0 &&
382
0
          (png_ptr->mode & PNG_WROTE_tIME) == 0)
383
0
         png_write_tIME(png_ptr, &(info_ptr->mod_time));
384
385
0
#endif
386
0
#ifdef PNG_WRITE_TEXT_SUPPORTED
387
      /* Loop through comment chunks */
388
0
      for (i = 0; i < info_ptr->num_text; i++)
389
0
      {
390
0
         png_debug2(2, "Writing trailer text chunk %d, type %d", i,
391
0
             info_ptr->text[i].compression);
392
         /* An internationalized chunk? */
393
0
         if (info_ptr->text[i].compression > 0)
394
0
         {
395
0
#ifdef PNG_WRITE_iTXt_SUPPORTED
396
            /* Write international chunk */
397
0
            png_write_iTXt(png_ptr,
398
0
                info_ptr->text[i].compression,
399
0
                info_ptr->text[i].key,
400
0
                info_ptr->text[i].lang,
401
0
                info_ptr->text[i].lang_key,
402
0
                info_ptr->text[i].text);
403
            /* Mark this chunk as written */
404
0
            if (info_ptr->text[i].compression == PNG_TEXT_COMPRESSION_NONE)
405
0
               info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_NONE_WR;
406
0
            else
407
0
               info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_zTXt_WR;
408
#else
409
            png_warning(png_ptr, "Unable to write international text");
410
#endif
411
0
         }
412
413
0
         else if (info_ptr->text[i].compression >= PNG_TEXT_COMPRESSION_zTXt)
414
0
         {
415
0
#ifdef PNG_WRITE_zTXt_SUPPORTED
416
            /* Write compressed chunk */
417
0
            png_write_zTXt(png_ptr, info_ptr->text[i].key,
418
0
                info_ptr->text[i].text, info_ptr->text[i].compression);
419
            /* Mark this chunk as written */
420
0
            info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_zTXt_WR;
421
#else
422
            png_warning(png_ptr, "Unable to write compressed text");
423
#endif
424
0
         }
425
426
0
         else if (info_ptr->text[i].compression == PNG_TEXT_COMPRESSION_NONE)
427
0
         {
428
0
#ifdef PNG_WRITE_tEXt_SUPPORTED
429
            /* Write uncompressed chunk */
430
0
            png_write_tEXt(png_ptr, info_ptr->text[i].key,
431
0
                info_ptr->text[i].text, 0);
432
            /* Mark this chunk as written */
433
0
            info_ptr->text[i].compression = PNG_TEXT_COMPRESSION_NONE_WR;
434
#else
435
            png_warning(png_ptr, "Unable to write uncompressed text");
436
#endif
437
0
         }
438
0
      }
439
0
#endif
440
441
#ifdef PNG_WRITE_eXIf_SUPPORTED
442
   if ((info_ptr->valid & PNG_INFO_eXIf) != 0)
443
      png_write_eXIf(png_ptr, info_ptr->exif, info_ptr->num_exif);
444
#endif
445
446
0
#ifdef PNG_WRITE_UNKNOWN_CHUNKS_SUPPORTED
447
0
      write_unknown_chunks(png_ptr, info_ptr, PNG_AFTER_IDAT);
448
0
#endif
449
0
   }
450
451
0
   png_ptr->mode |= PNG_AFTER_IDAT;
452
453
   /* Write end of PNG file */
454
0
   png_write_IEND(png_ptr);
455
456
   /* This flush, added in libpng-1.0.8, removed from libpng-1.0.9beta03,
457
    * and restored again in libpng-1.2.30, may cause some applications that
458
    * do not set png_ptr->output_flush_fn to crash.  If your application
459
    * experiences a problem, please try building libpng with
460
    * PNG_WRITE_FLUSH_AFTER_IEND_SUPPORTED defined, and report the event to
461
    * png-mng-implement at lists.sf.net .
462
    */
463
0
#ifdef PNG_WRITE_FLUSH_SUPPORTED
464
#  ifdef PNG_WRITE_FLUSH_AFTER_IEND_SUPPORTED
465
   png_flush(png_ptr);
466
#  endif
467
0
#endif
468
0
}
469
470
#ifdef PNG_CONVERT_tIME_SUPPORTED
471
void PNGAPI
472
png_convert_from_struct_tm(png_timep ptime, const struct tm * ttime)
473
0
{
474
0
   png_debug(1, "in png_convert_from_struct_tm");
475
476
0
   ptime->year = (png_uint_16)(1900 + ttime->tm_year);
477
0
   ptime->month = (png_byte)(ttime->tm_mon + 1);
478
0
   ptime->day = (png_byte)ttime->tm_mday;
479
0
   ptime->hour = (png_byte)ttime->tm_hour;
480
0
   ptime->minute = (png_byte)ttime->tm_min;
481
0
   ptime->second = (png_byte)ttime->tm_sec;
482
0
}
483
484
void PNGAPI
485
png_convert_from_time_t(png_timep ptime, time_t ttime)
486
0
{
487
0
   struct tm *tbuf;
488
489
0
   png_debug(1, "in png_convert_from_time_t");
490
491
0
   tbuf = gmtime(&ttime);
492
0
   if (tbuf == NULL)
493
0
   {
494
      /* TODO: add a safe function which takes a png_ptr argument and raises
495
       * a png_error if the ttime argument is invalid and the call to gmtime
496
       * fails as a consequence.
497
       */
498
0
      memset(ptime, 0, sizeof(*ptime));
499
0
      return;
500
0
   }
501
502
0
   png_convert_from_struct_tm(ptime, tbuf);
503
0
}
504
#endif
505
506
/* Initialize png_ptr structure, and allocate any memory needed */
507
PNG_FUNCTION(png_structp,PNGAPI
508
png_create_write_struct,(png_const_charp user_png_ver, png_voidp error_ptr,
509
    png_error_ptr error_fn, png_error_ptr warn_fn),PNG_ALLOCATED)
510
0
{
511
#ifndef PNG_USER_MEM_SUPPORTED
512
   png_structrp png_ptr = png_create_png_struct(user_png_ver, error_ptr,
513
       error_fn, warn_fn, NULL, NULL, NULL);
514
#else
515
0
   return png_create_write_struct_2(user_png_ver, error_ptr, error_fn,
516
0
       warn_fn, NULL, NULL, NULL);
517
0
}
518
519
/* Alternate initialize png_ptr structure, and allocate any memory needed */
520
PNG_FUNCTION(png_structp,PNGAPI
521
png_create_write_struct_2,(png_const_charp user_png_ver, png_voidp error_ptr,
522
    png_error_ptr error_fn, png_error_ptr warn_fn, png_voidp mem_ptr,
523
    png_malloc_ptr malloc_fn, png_free_ptr free_fn),PNG_ALLOCATED)
524
0
{
525
0
   png_structrp png_ptr = png_create_png_struct(user_png_ver, error_ptr,
526
0
       error_fn, warn_fn, mem_ptr, malloc_fn, free_fn);
527
0
#endif /* USER_MEM */
528
0
   if (png_ptr != NULL)
529
0
   {
530
      /* Set the zlib control values to defaults; they can be overridden by the
531
       * application after the struct has been created.
532
       */
533
0
      png_ptr->zbuffer_size = PNG_ZBUF_SIZE;
534
535
      /* The 'zlib_strategy' setting is irrelevant because png_default_claim in
536
       * pngwutil.c defaults it according to whether or not filters will be
537
       * used, and ignores this setting.
538
       */
539
0
      png_ptr->zlib_strategy = PNG_Z_DEFAULT_STRATEGY;
540
0
      png_ptr->zlib_level = PNG_Z_DEFAULT_COMPRESSION;
541
0
      png_ptr->zlib_mem_level = 8;
542
0
      png_ptr->zlib_window_bits = 15;
543
0
      png_ptr->zlib_method = 8;
544
545
0
#ifdef PNG_WRITE_COMPRESSED_TEXT_SUPPORTED
546
0
      png_ptr->zlib_text_strategy = PNG_TEXT_Z_DEFAULT_STRATEGY;
547
0
      png_ptr->zlib_text_level = PNG_TEXT_Z_DEFAULT_COMPRESSION;
548
0
      png_ptr->zlib_text_mem_level = 8;
549
0
      png_ptr->zlib_text_window_bits = 15;
550
0
      png_ptr->zlib_text_method = 8;
551
0
#endif /* WRITE_COMPRESSED_TEXT */
552
553
      /* This is a highly dubious configuration option; by default it is off,
554
       * but it may be appropriate for private builds that are testing
555
       * extensions not conformant to the current specification, or of
556
       * applications that must not fail to write at all costs!
557
       */
558
#ifdef PNG_BENIGN_WRITE_ERRORS_SUPPORTED
559
      /* In stable builds only warn if an application error can be completely
560
       * handled.
561
       */
562
      png_ptr->flags |= PNG_FLAG_BENIGN_ERRORS_WARN;
563
#endif
564
565
      /* App warnings are warnings in release (or release candidate) builds but
566
       * are errors during development.
567
       */
568
0
#if PNG_RELEASE_BUILD
569
0
      png_ptr->flags |= PNG_FLAG_APP_WARNINGS_WARN;
570
0
#endif
571
572
      /* TODO: delay this, it can be done in png_init_io() (if the app doesn't
573
       * do it itself) avoiding setting the default function if it is not
574
       * required.
575
       */
576
0
      png_set_write_fn(png_ptr, NULL, NULL, NULL);
577
0
   }
578
579
0
   return png_ptr;
580
0
}
581
582
583
/* Write a few rows of image data.  If the image is interlaced,
584
 * either you will have to write the 7 sub images, or, if you
585
 * have called png_set_interlace_handling(), you will have to
586
 * "write" the image seven times.
587
 */
588
void PNGAPI
589
png_write_rows(png_structrp png_ptr, png_bytepp row,
590
    png_uint_32 num_rows)
591
0
{
592
0
   png_uint_32 i; /* row counter */
593
0
   png_bytepp rp; /* row pointer */
594
595
0
   png_debug(1, "in png_write_rows");
596
597
0
   if (png_ptr == NULL)
598
0
      return;
599
600
   /* Loop through the rows */
601
0
   for (i = 0, rp = row; i < num_rows; i++, rp++)
602
0
   {
603
0
      png_write_row(png_ptr, *rp);
604
0
   }
605
0
}
606
607
/* Write the image.  You only need to call this function once, even
608
 * if you are writing an interlaced image.
609
 */
610
void PNGAPI
611
png_write_image(png_structrp png_ptr, png_bytepp image)
612
0
{
613
0
   png_uint_32 i; /* row index */
614
0
   int pass, num_pass; /* pass variables */
615
0
   png_bytepp rp; /* points to current row */
616
617
0
   if (png_ptr == NULL)
618
0
      return;
619
620
0
   png_debug(1, "in png_write_image");
621
622
0
#ifdef PNG_WRITE_INTERLACING_SUPPORTED
623
   /* Initialize interlace handling.  If image is not interlaced,
624
    * this will set pass to 1
625
    */
626
0
   num_pass = png_set_interlace_handling(png_ptr);
627
#else
628
   num_pass = 1;
629
#endif
630
   /* Loop through passes */
631
0
   for (pass = 0; pass < num_pass; pass++)
632
0
   {
633
      /* Loop through image */
634
0
      for (i = 0, rp = image; i < png_ptr->height; i++, rp++)
635
0
      {
636
0
         png_write_row(png_ptr, *rp);
637
0
      }
638
0
   }
639
0
}
640
641
#ifdef PNG_MNG_FEATURES_SUPPORTED
642
/* Performs intrapixel differencing  */
643
static void
644
png_do_write_intrapixel(png_row_infop row_info, png_bytep row)
645
0
{
646
0
   png_debug(1, "in png_do_write_intrapixel");
647
648
0
   if ((row_info->color_type & PNG_COLOR_MASK_COLOR) != 0)
649
0
   {
650
0
      int bytes_per_pixel;
651
0
      png_uint_32 row_width = row_info->width;
652
0
      if (row_info->bit_depth == 8)
653
0
      {
654
0
         png_bytep rp;
655
0
         png_uint_32 i;
656
657
0
         if (row_info->color_type == PNG_COLOR_TYPE_RGB)
658
0
            bytes_per_pixel = 3;
659
660
0
         else if (row_info->color_type == PNG_COLOR_TYPE_RGB_ALPHA)
661
0
            bytes_per_pixel = 4;
662
663
0
         else
664
0
            return;
665
666
0
         for (i = 0, rp = row; i < row_width; i++, rp += bytes_per_pixel)
667
0
         {
668
0
            *(rp)     = (png_byte)(*rp       - *(rp + 1));
669
0
            *(rp + 2) = (png_byte)(*(rp + 2) - *(rp + 1));
670
0
         }
671
0
      }
672
673
0
#ifdef PNG_WRITE_16BIT_SUPPORTED
674
0
      else if (row_info->bit_depth == 16)
675
0
      {
676
0
         png_bytep rp;
677
0
         png_uint_32 i;
678
679
0
         if (row_info->color_type == PNG_COLOR_TYPE_RGB)
680
0
            bytes_per_pixel = 6;
681
682
0
         else if (row_info->color_type == PNG_COLOR_TYPE_RGB_ALPHA)
683
0
            bytes_per_pixel = 8;
684
685
0
         else
686
0
            return;
687
688
0
         for (i = 0, rp = row; i < row_width; i++, rp += bytes_per_pixel)
689
0
         {
690
0
            png_uint_32 s0   = (png_uint_32)(*(rp    ) << 8) | *(rp + 1);
691
0
            png_uint_32 s1   = (png_uint_32)(*(rp + 2) << 8) | *(rp + 3);
692
0
            png_uint_32 s2   = (png_uint_32)(*(rp + 4) << 8) | *(rp + 5);
693
0
            png_uint_32 red  = (png_uint_32)((s0 - s1) & 0xffffL);
694
0
            png_uint_32 blue = (png_uint_32)((s2 - s1) & 0xffffL);
695
0
            *(rp    ) = (png_byte)(red >> 8);
696
0
            *(rp + 1) = (png_byte)red;
697
0
            *(rp + 4) = (png_byte)(blue >> 8);
698
0
            *(rp + 5) = (png_byte)blue;
699
0
         }
700
0
      }
701
0
#endif /* WRITE_16BIT */
702
0
   }
703
0
}
704
#endif /* MNG_FEATURES */
705
706
/* Called by user to write a row of image data */
707
void PNGAPI
708
png_write_row(png_structrp png_ptr, png_const_bytep row)
709
0
{
710
   /* 1.5.6: moved from png_struct to be a local structure: */
711
0
   png_row_info row_info;
712
713
0
   if (png_ptr == NULL)
714
0
      return;
715
716
0
   png_debug2(1, "in png_write_row (row %u, pass %d)",
717
0
       png_ptr->row_number, png_ptr->pass);
718
719
   /* Initialize transformations and other stuff if first time */
720
0
   if (png_ptr->row_number == 0 && png_ptr->pass == 0)
721
0
   {
722
      /* Make sure we wrote the header info */
723
0
      if ((png_ptr->mode & PNG_WROTE_INFO_BEFORE_PLTE) == 0)
724
0
         png_error(png_ptr,
725
0
             "png_write_info was never called before png_write_row");
726
727
      /* Check for transforms that have been set but were defined out */
728
#if !defined(PNG_WRITE_INVERT_SUPPORTED) && defined(PNG_READ_INVERT_SUPPORTED)
729
      if ((png_ptr->transformations & PNG_INVERT_MONO) != 0)
730
         png_warning(png_ptr, "PNG_WRITE_INVERT_SUPPORTED is not defined");
731
#endif
732
733
#if !defined(PNG_WRITE_FILLER_SUPPORTED) && defined(PNG_READ_FILLER_SUPPORTED)
734
      if ((png_ptr->transformations & PNG_FILLER) != 0)
735
         png_warning(png_ptr, "PNG_WRITE_FILLER_SUPPORTED is not defined");
736
#endif
737
#if !defined(PNG_WRITE_PACKSWAP_SUPPORTED) && \
738
    defined(PNG_READ_PACKSWAP_SUPPORTED)
739
      if ((png_ptr->transformations & PNG_PACKSWAP) != 0)
740
         png_warning(png_ptr,
741
             "PNG_WRITE_PACKSWAP_SUPPORTED is not defined");
742
#endif
743
744
#if !defined(PNG_WRITE_PACK_SUPPORTED) && defined(PNG_READ_PACK_SUPPORTED)
745
      if ((png_ptr->transformations & PNG_PACK) != 0)
746
         png_warning(png_ptr, "PNG_WRITE_PACK_SUPPORTED is not defined");
747
#endif
748
749
#if !defined(PNG_WRITE_SHIFT_SUPPORTED) && defined(PNG_READ_SHIFT_SUPPORTED)
750
      if ((png_ptr->transformations & PNG_SHIFT) != 0)
751
         png_warning(png_ptr, "PNG_WRITE_SHIFT_SUPPORTED is not defined");
752
#endif
753
754
#if !defined(PNG_WRITE_BGR_SUPPORTED) && defined(PNG_READ_BGR_SUPPORTED)
755
      if ((png_ptr->transformations & PNG_BGR) != 0)
756
         png_warning(png_ptr, "PNG_WRITE_BGR_SUPPORTED is not defined");
757
#endif
758
759
#if !defined(PNG_WRITE_SWAP_SUPPORTED) && defined(PNG_READ_SWAP_SUPPORTED)
760
      if ((png_ptr->transformations & PNG_SWAP_BYTES) != 0)
761
         png_warning(png_ptr, "PNG_WRITE_SWAP_SUPPORTED is not defined");
762
#endif
763
764
0
      png_write_start_row(png_ptr);
765
0
   }
766
767
0
#ifdef PNG_WRITE_INTERLACING_SUPPORTED
768
   /* If interlaced and not interested in row, return */
769
0
   if (png_ptr->interlaced != 0 &&
770
0
       (png_ptr->transformations & PNG_INTERLACE) != 0)
771
0
   {
772
0
      switch (png_ptr->pass)
773
0
      {
774
0
         case 0:
775
0
            if ((png_ptr->row_number & 0x07) != 0)
776
0
            {
777
0
               png_write_finish_row(png_ptr);
778
0
               return;
779
0
            }
780
0
            break;
781
782
0
         case 1:
783
0
            if ((png_ptr->row_number & 0x07) != 0 || png_ptr->width < 5)
784
0
            {
785
0
               png_write_finish_row(png_ptr);
786
0
               return;
787
0
            }
788
0
            break;
789
790
0
         case 2:
791
0
            if ((png_ptr->row_number & 0x07) != 4)
792
0
            {
793
0
               png_write_finish_row(png_ptr);
794
0
               return;
795
0
            }
796
0
            break;
797
798
0
         case 3:
799
0
            if ((png_ptr->row_number & 0x03) != 0 || png_ptr->width < 3)
800
0
            {
801
0
               png_write_finish_row(png_ptr);
802
0
               return;
803
0
            }
804
0
            break;
805
806
0
         case 4:
807
0
            if ((png_ptr->row_number & 0x03) != 2)
808
0
            {
809
0
               png_write_finish_row(png_ptr);
810
0
               return;
811
0
            }
812
0
            break;
813
814
0
         case 5:
815
0
            if ((png_ptr->row_number & 0x01) != 0 || png_ptr->width < 2)
816
0
            {
817
0
               png_write_finish_row(png_ptr);
818
0
               return;
819
0
            }
820
0
            break;
821
822
0
         case 6:
823
0
            if ((png_ptr->row_number & 0x01) == 0)
824
0
            {
825
0
               png_write_finish_row(png_ptr);
826
0
               return;
827
0
            }
828
0
            break;
829
830
0
         default: /* error: ignore it */
831
0
            break;
832
0
      }
833
0
   }
834
0
#endif
835
836
   /* Set up row info for transformations */
837
0
   row_info.color_type = png_ptr->color_type;
838
0
   row_info.width = png_ptr->usr_width;
839
0
   row_info.channels = png_ptr->usr_channels;
840
0
   row_info.bit_depth = png_ptr->usr_bit_depth;
841
0
   row_info.pixel_depth = (png_byte)(row_info.bit_depth * row_info.channels);
842
0
   row_info.rowbytes = PNG_ROWBYTES(row_info.pixel_depth, row_info.width);
843
844
0
   png_debug1(3, "row_info->color_type = %d", row_info.color_type);
845
0
   png_debug1(3, "row_info->width = %u", row_info.width);
846
0
   png_debug1(3, "row_info->channels = %d", row_info.channels);
847
0
   png_debug1(3, "row_info->bit_depth = %d", row_info.bit_depth);
848
0
   png_debug1(3, "row_info->pixel_depth = %d", row_info.pixel_depth);
849
0
   png_debug1(3, "row_info->rowbytes = %lu", (unsigned long)row_info.rowbytes);
850
851
   /* Copy user's row into buffer, leaving room for filter byte. */
852
0
   memcpy(png_ptr->row_buf + 1, row, row_info.rowbytes);
853
854
0
#ifdef PNG_WRITE_INTERLACING_SUPPORTED
855
   /* Handle interlacing */
856
0
   if (png_ptr->interlaced && png_ptr->pass < 6 &&
857
0
       (png_ptr->transformations & PNG_INTERLACE) != 0)
858
0
   {
859
0
      png_do_write_interlace(&row_info, png_ptr->row_buf + 1, png_ptr->pass);
860
      /* This should always get caught above, but still ... */
861
0
      if (row_info.width == 0)
862
0
      {
863
0
         png_write_finish_row(png_ptr);
864
0
         return;
865
0
      }
866
0
   }
867
0
#endif
868
869
0
#ifdef PNG_WRITE_TRANSFORMS_SUPPORTED
870
   /* Handle other transformations */
871
0
   if (png_ptr->transformations != 0)
872
0
      png_do_write_transformations(png_ptr, &row_info);
873
0
#endif
874
875
   /* At this point the row_info pixel depth must match the 'transformed' depth,
876
    * which is also the output depth.
877
    */
878
0
   if (row_info.pixel_depth != png_ptr->pixel_depth ||
879
0
       row_info.pixel_depth != png_ptr->transformed_pixel_depth)
880
0
      png_error(png_ptr, "internal write transform logic error");
881
882
0
#ifdef PNG_MNG_FEATURES_SUPPORTED
883
   /* Write filter_method 64 (intrapixel differencing) only if
884
    * 1. Libpng was compiled with PNG_MNG_FEATURES_SUPPORTED and
885
    * 2. Libpng did not write a PNG signature (this filter_method is only
886
    *    used in PNG datastreams that are embedded in MNG datastreams) and
887
    * 3. The application called png_permit_mng_features with a mask that
888
    *    included PNG_FLAG_MNG_FILTER_64 and
889
    * 4. The filter_method is 64 and
890
    * 5. The color_type is RGB or RGBA
891
    */
892
0
   if ((png_ptr->mng_features_permitted & PNG_FLAG_MNG_FILTER_64) != 0 &&
893
0
       (png_ptr->filter_type == PNG_INTRAPIXEL_DIFFERENCING))
894
0
   {
895
      /* Intrapixel differencing */
896
0
      png_do_write_intrapixel(&row_info, png_ptr->row_buf + 1);
897
0
   }
898
0
#endif
899
900
/* Added at libpng-1.5.10 */
901
0
#ifdef PNG_WRITE_CHECK_FOR_INVALID_INDEX_SUPPORTED
902
   /* Check for out-of-range palette index */
903
0
   if (row_info.color_type == PNG_COLOR_TYPE_PALETTE &&
904
0
       png_ptr->num_palette_max >= 0)
905
0
      png_do_check_palette_indexes(png_ptr, &row_info);
906
0
#endif
907
908
   /* Find a filter if necessary, filter the row and write it out. */
909
0
   png_write_find_filter(png_ptr, &row_info);
910
911
0
   if (png_ptr->write_row_fn != NULL)
912
0
      (*(png_ptr->write_row_fn))(png_ptr, png_ptr->row_number, png_ptr->pass);
913
0
}
914
915
#ifdef PNG_WRITE_FLUSH_SUPPORTED
916
/* Set the automatic flush interval or 0 to turn flushing off */
917
void PNGAPI
918
png_set_flush(png_structrp png_ptr, int nrows)
919
0
{
920
0
   png_debug(1, "in png_set_flush");
921
922
0
   if (png_ptr == NULL)
923
0
      return;
924
925
0
   png_ptr->flush_dist = (nrows < 0 ? 0 : (png_uint_32)nrows);
926
0
}
927
928
/* Flush the current output buffers now */
929
void PNGAPI
930
png_write_flush(png_structrp png_ptr)
931
0
{
932
0
   png_debug(1, "in png_write_flush");
933
934
0
   if (png_ptr == NULL)
935
0
      return;
936
937
   /* We have already written out all of the data */
938
0
   if (png_ptr->row_number >= png_ptr->num_rows)
939
0
      return;
940
941
0
   png_compress_IDAT(png_ptr, NULL, 0, Z_SYNC_FLUSH);
942
0
   png_ptr->flush_rows = 0;
943
0
   png_flush(png_ptr);
944
0
}
945
#endif /* WRITE_FLUSH */
946
947
/* Free any memory used in png_ptr struct without freeing the struct itself. */
948
static void
949
png_write_destroy(png_structrp png_ptr)
950
0
{
951
0
   png_debug(1, "in png_write_destroy");
952
953
   /* Free any memory zlib uses */
954
0
   if ((png_ptr->flags & PNG_FLAG_ZSTREAM_INITIALIZED) != 0)
955
0
      deflateEnd(&png_ptr->zstream);
956
957
   /* Free our memory.  png_free checks NULL for us. */
958
0
   png_free_buffer_list(png_ptr, &png_ptr->zbuffer_list);
959
0
   png_free(png_ptr, png_ptr->row_buf);
960
0
   png_ptr->row_buf = NULL;
961
0
#ifdef PNG_WRITE_FILTER_SUPPORTED
962
0
   png_free(png_ptr, png_ptr->prev_row);
963
0
   png_free(png_ptr, png_ptr->try_row);
964
0
   png_free(png_ptr, png_ptr->tst_row);
965
0
   png_ptr->prev_row = NULL;
966
0
   png_ptr->try_row = NULL;
967
0
   png_ptr->tst_row = NULL;
968
0
#endif
969
970
0
#ifdef PNG_SET_UNKNOWN_CHUNKS_SUPPORTED
971
0
   png_free(png_ptr, png_ptr->chunk_list);
972
0
   png_ptr->chunk_list = NULL;
973
0
#endif
974
975
   /* The error handling and memory handling information is left intact at this
976
    * point: the jmp_buf may still have to be freed.  See png_destroy_png_struct
977
    * for how this happens.
978
    */
979
0
}
980
981
/* Free all memory used by the write.
982
 * In libpng 1.6.0 this API changed quietly to no longer accept a NULL value for
983
 * *png_ptr_ptr.  Prior to 1.6.0 it would accept such a value and it would free
984
 * the passed in info_structs but it would quietly fail to free any of the data
985
 * inside them.  In 1.6.0 it quietly does nothing (it has to be quiet because it
986
 * has no png_ptr.)
987
 */
988
void PNGAPI
989
png_destroy_write_struct(png_structpp png_ptr_ptr, png_infopp info_ptr_ptr)
990
0
{
991
0
   png_debug(1, "in png_destroy_write_struct");
992
993
0
   if (png_ptr_ptr != NULL)
994
0
   {
995
0
      png_structrp png_ptr = *png_ptr_ptr;
996
997
0
      if (png_ptr != NULL) /* added in libpng 1.6.0 */
998
0
      {
999
0
         png_destroy_info_struct(png_ptr, info_ptr_ptr);
1000
1001
0
         *png_ptr_ptr = NULL;
1002
0
         png_write_destroy(png_ptr);
1003
0
         png_destroy_png_struct(png_ptr);
1004
0
      }
1005
0
   }
1006
0
}
1007
1008
/* Allow the application to select one or more row filters to use. */
1009
void PNGAPI
1010
png_set_filter(png_structrp png_ptr, int method, int filters)
1011
0
{
1012
0
   png_debug(1, "in png_set_filter");
1013
1014
0
   if (png_ptr == NULL)
1015
0
      return;
1016
1017
0
#ifdef PNG_MNG_FEATURES_SUPPORTED
1018
0
   if ((png_ptr->mng_features_permitted & PNG_FLAG_MNG_FILTER_64) != 0 &&
1019
0
       (method == PNG_INTRAPIXEL_DIFFERENCING))
1020
0
      method = PNG_FILTER_TYPE_BASE;
1021
1022
0
#endif
1023
0
   if (method == PNG_FILTER_TYPE_BASE)
1024
0
   {
1025
0
      switch (filters & (PNG_ALL_FILTERS | 0x07))
1026
0
      {
1027
0
#ifdef PNG_WRITE_FILTER_SUPPORTED
1028
0
         case 5:
1029
0
         case 6:
1030
0
         case 7: png_app_error(png_ptr, "Unknown row filter for method 0");
1031
0
#endif /* WRITE_FILTER */
1032
            /* FALLTHROUGH */
1033
0
         case PNG_FILTER_VALUE_NONE:
1034
0
            png_ptr->do_filter = PNG_FILTER_NONE; break;
1035
1036
0
#ifdef PNG_WRITE_FILTER_SUPPORTED
1037
0
         case PNG_FILTER_VALUE_SUB:
1038
0
            png_ptr->do_filter = PNG_FILTER_SUB; break;
1039
1040
0
         case PNG_FILTER_VALUE_UP:
1041
0
            png_ptr->do_filter = PNG_FILTER_UP; break;
1042
1043
0
         case PNG_FILTER_VALUE_AVG:
1044
0
            png_ptr->do_filter = PNG_FILTER_AVG; break;
1045
1046
0
         case PNG_FILTER_VALUE_PAETH:
1047
0
            png_ptr->do_filter = PNG_FILTER_PAETH; break;
1048
1049
0
         default:
1050
0
            png_ptr->do_filter = (png_byte)filters; break;
1051
#else
1052
         default:
1053
            png_app_error(png_ptr, "Unknown row filter for method 0");
1054
#endif /* WRITE_FILTER */
1055
0
      }
1056
1057
0
#ifdef PNG_WRITE_FILTER_SUPPORTED
1058
      /* If we have allocated the row_buf, this means we have already started
1059
       * with the image and we should have allocated all of the filter buffers
1060
       * that have been selected.  If prev_row isn't already allocated, then
1061
       * it is too late to start using the filters that need it, since we
1062
       * will be missing the data in the previous row.  If an application
1063
       * wants to start and stop using particular filters during compression,
1064
       * it should start out with all of the filters, and then remove them
1065
       * or add them back after the start of compression.
1066
       *
1067
       * NOTE: this is a nasty constraint on the code, because it means that the
1068
       * prev_row buffer must be maintained even if there are currently no
1069
       * 'prev_row' requiring filters active.
1070
       */
1071
0
      if (png_ptr->row_buf != NULL)
1072
0
      {
1073
0
         int num_filters;
1074
0
         png_alloc_size_t buf_size;
1075
1076
         /* Repeat the checks in png_write_start_row; 1 pixel high or wide
1077
          * images cannot benefit from certain filters.  If this isn't done here
1078
          * the check below will fire on 1 pixel high images.
1079
          */
1080
0
         if (png_ptr->height == 1)
1081
0
            filters &= ~(PNG_FILTER_UP|PNG_FILTER_AVG|PNG_FILTER_PAETH);
1082
1083
0
         if (png_ptr->width == 1)
1084
0
            filters &= ~(PNG_FILTER_SUB|PNG_FILTER_AVG|PNG_FILTER_PAETH);
1085
1086
0
         if ((filters & (PNG_FILTER_UP|PNG_FILTER_AVG|PNG_FILTER_PAETH)) != 0
1087
0
            && png_ptr->prev_row == NULL)
1088
0
         {
1089
            /* This is the error case, however it is benign - the previous row
1090
             * is not available so the filter can't be used.  Just warn here.
1091
             */
1092
0
            png_app_warning(png_ptr,
1093
0
                "png_set_filter: UP/AVG/PAETH cannot be added after start");
1094
0
            filters &= ~(PNG_FILTER_UP|PNG_FILTER_AVG|PNG_FILTER_PAETH);
1095
0
         }
1096
1097
0
         num_filters = 0;
1098
1099
0
         if (filters & PNG_FILTER_SUB)
1100
0
            num_filters++;
1101
1102
0
         if (filters & PNG_FILTER_UP)
1103
0
            num_filters++;
1104
1105
0
         if (filters & PNG_FILTER_AVG)
1106
0
            num_filters++;
1107
1108
0
         if (filters & PNG_FILTER_PAETH)
1109
0
            num_filters++;
1110
1111
         /* Allocate needed row buffers if they have not already been
1112
          * allocated.
1113
          */
1114
0
         buf_size = PNG_ROWBYTES(png_ptr->usr_channels * png_ptr->usr_bit_depth,
1115
0
             png_ptr->width) + 1;
1116
1117
0
         if (png_ptr->try_row == NULL)
1118
0
            png_ptr->try_row = png_voidcast(png_bytep,
1119
0
                png_malloc(png_ptr, buf_size));
1120
1121
0
         if (num_filters > 1)
1122
0
         {
1123
0
            if (png_ptr->tst_row == NULL)
1124
0
               png_ptr->tst_row = png_voidcast(png_bytep,
1125
0
                   png_malloc(png_ptr, buf_size));
1126
0
         }
1127
0
      }
1128
0
      png_ptr->do_filter = (png_byte)filters;
1129
0
#endif
1130
0
   }
1131
0
   else
1132
0
      png_error(png_ptr, "Unknown custom filter method");
1133
0
}
1134
1135
#ifdef PNG_WRITE_WEIGHTED_FILTER_SUPPORTED /* DEPRECATED */
1136
/* Provide floating and fixed point APIs */
1137
#ifdef PNG_FLOATING_POINT_SUPPORTED
1138
void PNGAPI
1139
png_set_filter_heuristics(png_structrp png_ptr, int heuristic_method,
1140
    int num_weights, png_const_doublep filter_weights,
1141
    png_const_doublep filter_costs)
1142
0
{
1143
0
   PNG_UNUSED(png_ptr)
1144
0
   PNG_UNUSED(heuristic_method)
1145
0
   PNG_UNUSED(num_weights)
1146
0
   PNG_UNUSED(filter_weights)
1147
0
   PNG_UNUSED(filter_costs)
1148
0
}
1149
#endif /* FLOATING_POINT */
1150
1151
#ifdef PNG_FIXED_POINT_SUPPORTED
1152
void PNGAPI
1153
png_set_filter_heuristics_fixed(png_structrp png_ptr, int heuristic_method,
1154
    int num_weights, png_const_fixed_point_p filter_weights,
1155
    png_const_fixed_point_p filter_costs)
1156
0
{
1157
0
   PNG_UNUSED(png_ptr)
1158
0
   PNG_UNUSED(heuristic_method)
1159
0
   PNG_UNUSED(num_weights)
1160
0
   PNG_UNUSED(filter_weights)
1161
0
   PNG_UNUSED(filter_costs)
1162
0
}
1163
#endif /* FIXED_POINT */
1164
#endif /* WRITE_WEIGHTED_FILTER */
1165
1166
#ifdef PNG_WRITE_CUSTOMIZE_COMPRESSION_SUPPORTED
1167
void PNGAPI
1168
png_set_compression_level(png_structrp png_ptr, int level)
1169
0
{
1170
0
   png_debug(1, "in png_set_compression_level");
1171
1172
0
   if (png_ptr == NULL)
1173
0
      return;
1174
1175
0
   png_ptr->zlib_level = level;
1176
0
}
1177
1178
void PNGAPI
1179
png_set_compression_mem_level(png_structrp png_ptr, int mem_level)
1180
0
{
1181
0
   png_debug(1, "in png_set_compression_mem_level");
1182
1183
0
   if (png_ptr == NULL)
1184
0
      return;
1185
1186
0
   png_ptr->zlib_mem_level = mem_level;
1187
0
}
1188
1189
void PNGAPI
1190
png_set_compression_strategy(png_structrp png_ptr, int strategy)
1191
0
{
1192
0
   png_debug(1, "in png_set_compression_strategy");
1193
1194
0
   if (png_ptr == NULL)
1195
0
      return;
1196
1197
   /* The flag setting here prevents the libpng dynamic selection of strategy.
1198
    */
1199
0
   png_ptr->flags |= PNG_FLAG_ZLIB_CUSTOM_STRATEGY;
1200
0
   png_ptr->zlib_strategy = strategy;
1201
0
}
1202
1203
/* If PNG_WRITE_OPTIMIZE_CMF_SUPPORTED is defined, libpng will use a
1204
 * smaller value of window_bits if it can do so safely.
1205
 */
1206
void PNGAPI
1207
png_set_compression_window_bits(png_structrp png_ptr, int window_bits)
1208
0
{
1209
0
   if (png_ptr == NULL)
1210
0
      return;
1211
1212
   /* Prior to 1.6.0 this would warn but then set the window_bits value. This
1213
    * meant that negative window bits values could be selected that would cause
1214
    * libpng to write a non-standard PNG file with raw deflate or gzip
1215
    * compressed IDAT or ancillary chunks.  Such files can be read and there is
1216
    * no warning on read, so this seems like a very bad idea.
1217
    */
1218
0
   if (window_bits > 15)
1219
0
   {
1220
0
      png_warning(png_ptr, "Only compression windows <= 32k supported by PNG");
1221
0
      window_bits = 15;
1222
0
   }
1223
1224
0
   else if (window_bits < 8)
1225
0
   {
1226
0
      png_warning(png_ptr, "Only compression windows >= 256 supported by PNG");
1227
0
      window_bits = 8;
1228
0
   }
1229
1230
0
   png_ptr->zlib_window_bits = window_bits;
1231
0
}
1232
1233
void PNGAPI
1234
png_set_compression_method(png_structrp png_ptr, int method)
1235
0
{
1236
0
   png_debug(1, "in png_set_compression_method");
1237
1238
0
   if (png_ptr == NULL)
1239
0
      return;
1240
1241
   /* This would produce an invalid PNG file if it worked, but it doesn't and
1242
    * deflate will fault it, so it is harmless to just warn here.
1243
    */
1244
0
   if (method != 8)
1245
0
      png_warning(png_ptr, "Only compression method 8 is supported by PNG");
1246
1247
0
   png_ptr->zlib_method = method;
1248
0
}
1249
#endif /* WRITE_CUSTOMIZE_COMPRESSION */
1250
1251
/* The following were added to libpng-1.5.4 */
1252
#ifdef PNG_WRITE_CUSTOMIZE_ZTXT_COMPRESSION_SUPPORTED
1253
void PNGAPI
1254
png_set_text_compression_level(png_structrp png_ptr, int level)
1255
0
{
1256
0
   png_debug(1, "in png_set_text_compression_level");
1257
1258
0
   if (png_ptr == NULL)
1259
0
      return;
1260
1261
0
   png_ptr->zlib_text_level = level;
1262
0
}
1263
1264
void PNGAPI
1265
png_set_text_compression_mem_level(png_structrp png_ptr, int mem_level)
1266
0
{
1267
0
   png_debug(1, "in png_set_text_compression_mem_level");
1268
1269
0
   if (png_ptr == NULL)
1270
0
      return;
1271
1272
0
   png_ptr->zlib_text_mem_level = mem_level;
1273
0
}
1274
1275
void PNGAPI
1276
png_set_text_compression_strategy(png_structrp png_ptr, int strategy)
1277
0
{
1278
0
   png_debug(1, "in png_set_text_compression_strategy");
1279
1280
0
   if (png_ptr == NULL)
1281
0
      return;
1282
1283
0
   png_ptr->zlib_text_strategy = strategy;
1284
0
}
1285
1286
/* If PNG_WRITE_OPTIMIZE_CMF_SUPPORTED is defined, libpng will use a
1287
 * smaller value of window_bits if it can do so safely.
1288
 */
1289
void PNGAPI
1290
png_set_text_compression_window_bits(png_structrp png_ptr, int window_bits)
1291
0
{
1292
0
   if (png_ptr == NULL)
1293
0
      return;
1294
1295
0
   if (window_bits > 15)
1296
0
   {
1297
0
      png_warning(png_ptr, "Only compression windows <= 32k supported by PNG");
1298
0
      window_bits = 15;
1299
0
   }
1300
1301
0
   else if (window_bits < 8)
1302
0
   {
1303
0
      png_warning(png_ptr, "Only compression windows >= 256 supported by PNG");
1304
0
      window_bits = 8;
1305
0
   }
1306
1307
0
   png_ptr->zlib_text_window_bits = window_bits;
1308
0
}
1309
1310
void PNGAPI
1311
png_set_text_compression_method(png_structrp png_ptr, int method)
1312
0
{
1313
0
   png_debug(1, "in png_set_text_compression_method");
1314
1315
0
   if (png_ptr == NULL)
1316
0
      return;
1317
1318
0
   if (method != 8)
1319
0
      png_warning(png_ptr, "Only compression method 8 is supported by PNG");
1320
1321
0
   png_ptr->zlib_text_method = method;
1322
0
}
1323
#endif /* WRITE_CUSTOMIZE_ZTXT_COMPRESSION */
1324
/* end of API added to libpng-1.5.4 */
1325
1326
void PNGAPI
1327
png_set_write_status_fn(png_structrp png_ptr, png_write_status_ptr write_row_fn)
1328
0
{
1329
0
   if (png_ptr == NULL)
1330
0
      return;
1331
1332
0
   png_ptr->write_row_fn = write_row_fn;
1333
0
}
1334
1335
#ifdef PNG_WRITE_USER_TRANSFORM_SUPPORTED
1336
void PNGAPI
1337
png_set_write_user_transform_fn(png_structrp png_ptr, png_user_transform_ptr
1338
    write_user_transform_fn)
1339
0
{
1340
0
   png_debug(1, "in png_set_write_user_transform_fn");
1341
1342
0
   if (png_ptr == NULL)
1343
0
      return;
1344
1345
0
   png_ptr->transformations |= PNG_USER_TRANSFORM;
1346
0
   png_ptr->write_user_transform_fn = write_user_transform_fn;
1347
0
}
1348
#endif
1349
1350
1351
#ifdef PNG_INFO_IMAGE_SUPPORTED
1352
void PNGAPI
1353
png_write_png(png_structrp png_ptr, png_inforp info_ptr,
1354
    int transforms, voidp params)
1355
0
{
1356
0
   if (png_ptr == NULL || info_ptr == NULL)
1357
0
      return;
1358
1359
0
   if ((info_ptr->valid & PNG_INFO_IDAT) == 0)
1360
0
   {
1361
0
      png_app_error(png_ptr, "no rows for png_write_image to write");
1362
0
      return;
1363
0
   }
1364
1365
   /* Write the file header information. */
1366
0
   png_write_info(png_ptr, info_ptr);
1367
1368
   /* ------ these transformations don't touch the info structure ------- */
1369
1370
   /* Invert monochrome pixels */
1371
0
   if ((transforms & PNG_TRANSFORM_INVERT_MONO) != 0)
1372
0
#ifdef PNG_WRITE_INVERT_SUPPORTED
1373
0
      png_set_invert_mono(png_ptr);
1374
#else
1375
      png_app_error(png_ptr, "PNG_TRANSFORM_INVERT_MONO not supported");
1376
#endif
1377
1378
   /* Shift the pixels up to a legal bit depth and fill in
1379
    * as appropriate to correctly scale the image.
1380
    */
1381
0
   if ((transforms & PNG_TRANSFORM_SHIFT) != 0)
1382
0
#ifdef PNG_WRITE_SHIFT_SUPPORTED
1383
0
      if ((info_ptr->valid & PNG_INFO_sBIT) != 0)
1384
0
         png_set_shift(png_ptr, &info_ptr->sig_bit);
1385
#else
1386
      png_app_error(png_ptr, "PNG_TRANSFORM_SHIFT not supported");
1387
#endif
1388
1389
   /* Pack pixels into bytes */
1390
0
   if ((transforms & PNG_TRANSFORM_PACKING) != 0)
1391
0
#ifdef PNG_WRITE_PACK_SUPPORTED
1392
0
      png_set_packing(png_ptr);
1393
#else
1394
      png_app_error(png_ptr, "PNG_TRANSFORM_PACKING not supported");
1395
#endif
1396
1397
   /* Swap location of alpha bytes from ARGB to RGBA */
1398
0
   if ((transforms & PNG_TRANSFORM_SWAP_ALPHA) != 0)
1399
0
#ifdef PNG_WRITE_SWAP_ALPHA_SUPPORTED
1400
0
      png_set_swap_alpha(png_ptr);
1401
#else
1402
      png_app_error(png_ptr, "PNG_TRANSFORM_SWAP_ALPHA not supported");
1403
#endif
1404
1405
   /* Remove a filler (X) from XRGB/RGBX/AG/GA into to convert it into
1406
    * RGB, note that the code expects the input color type to be G or RGB; no
1407
    * alpha channel.
1408
    */
1409
0
   if ((transforms & (PNG_TRANSFORM_STRIP_FILLER_AFTER|
1410
0
       PNG_TRANSFORM_STRIP_FILLER_BEFORE)) != 0)
1411
0
   {
1412
0
#ifdef PNG_WRITE_FILLER_SUPPORTED
1413
0
      if ((transforms & PNG_TRANSFORM_STRIP_FILLER_AFTER) != 0)
1414
0
      {
1415
0
         if ((transforms & PNG_TRANSFORM_STRIP_FILLER_BEFORE) != 0)
1416
0
            png_app_error(png_ptr,
1417
0
                "PNG_TRANSFORM_STRIP_FILLER: BEFORE+AFTER not supported");
1418
1419
         /* Continue if ignored - this is the pre-1.6.10 behavior */
1420
0
         png_set_filler(png_ptr, 0, PNG_FILLER_AFTER);
1421
0
      }
1422
1423
0
      else if ((transforms & PNG_TRANSFORM_STRIP_FILLER_BEFORE) != 0)
1424
0
         png_set_filler(png_ptr, 0, PNG_FILLER_BEFORE);
1425
#else
1426
      png_app_error(png_ptr, "PNG_TRANSFORM_STRIP_FILLER not supported");
1427
#endif
1428
0
   }
1429
1430
   /* Flip BGR pixels to RGB */
1431
0
   if ((transforms & PNG_TRANSFORM_BGR) != 0)
1432
0
#ifdef PNG_WRITE_BGR_SUPPORTED
1433
0
      png_set_bgr(png_ptr);
1434
#else
1435
      png_app_error(png_ptr, "PNG_TRANSFORM_BGR not supported");
1436
#endif
1437
1438
   /* Swap bytes of 16-bit files to most significant byte first */
1439
0
   if ((transforms & PNG_TRANSFORM_SWAP_ENDIAN) != 0)
1440
0
#ifdef PNG_WRITE_SWAP_SUPPORTED
1441
0
      png_set_swap(png_ptr);
1442
#else
1443
      png_app_error(png_ptr, "PNG_TRANSFORM_SWAP_ENDIAN not supported");
1444
#endif
1445
1446
   /* Swap bits of 1-bit, 2-bit, 4-bit packed pixel formats */
1447
0
   if ((transforms & PNG_TRANSFORM_PACKSWAP) != 0)
1448
0
#ifdef PNG_WRITE_PACKSWAP_SUPPORTED
1449
0
      png_set_packswap(png_ptr);
1450
#else
1451
      png_app_error(png_ptr, "PNG_TRANSFORM_PACKSWAP not supported");
1452
#endif
1453
1454
   /* Invert the alpha channel from opacity to transparency */
1455
0
   if ((transforms & PNG_TRANSFORM_INVERT_ALPHA) != 0)
1456
0
#ifdef PNG_WRITE_INVERT_ALPHA_SUPPORTED
1457
0
      png_set_invert_alpha(png_ptr);
1458
#else
1459
      png_app_error(png_ptr, "PNG_TRANSFORM_INVERT_ALPHA not supported");
1460
#endif
1461
1462
   /* ----------------------- end of transformations ------------------- */
1463
1464
   /* Write the bits */
1465
0
   png_write_image(png_ptr, info_ptr->row_pointers);
1466
1467
   /* It is REQUIRED to call this to finish writing the rest of the file */
1468
0
   png_write_end(png_ptr, info_ptr);
1469
1470
0
   PNG_UNUSED(params)
1471
0
}
1472
#endif
1473
1474
1475
#ifdef PNG_SIMPLIFIED_WRITE_SUPPORTED
1476
/* Initialize the write structure - general purpose utility. */
1477
static int
1478
png_image_write_init(png_imagep image)
1479
0
{
1480
0
   png_structp png_ptr = png_create_write_struct(PNG_LIBPNG_VER_STRING, image,
1481
0
       png_safe_error, png_safe_warning);
1482
1483
0
   if (png_ptr != NULL)
1484
0
   {
1485
0
      png_infop info_ptr = png_create_info_struct(png_ptr);
1486
1487
0
      if (info_ptr != NULL)
1488
0
      {
1489
0
         png_controlp control = png_voidcast(png_controlp,
1490
0
             png_malloc_warn(png_ptr, (sizeof *control)));
1491
1492
0
         if (control != NULL)
1493
0
         {
1494
0
            memset(control, 0, (sizeof *control));
1495
1496
0
            control->png_ptr = png_ptr;
1497
0
            control->info_ptr = info_ptr;
1498
0
            control->for_write = 1;
1499
1500
0
            image->opaque = control;
1501
0
            return 1;
1502
0
         }
1503
1504
         /* Error clean up */
1505
0
         png_destroy_info_struct(png_ptr, &info_ptr);
1506
0
      }
1507
1508
0
      png_destroy_write_struct(&png_ptr, NULL);
1509
0
   }
1510
1511
0
   return png_image_error(image, "png_image_write_: out of memory");
1512
0
}
1513
1514
/* Arguments to png_image_write_main: */
1515
typedef struct
1516
{
1517
   /* Arguments: */
1518
   png_imagep      image;
1519
   png_const_voidp buffer;
1520
   png_int_32      row_stride;
1521
   png_const_voidp colormap;
1522
   int             convert_to_8bit;
1523
   /* Local variables: */
1524
   png_const_voidp first_row;
1525
   ptrdiff_t       row_bytes;
1526
   png_voidp       local_row;
1527
   /* Byte count for memory writing */
1528
   png_bytep        memory;
1529
   png_alloc_size_t memory_bytes; /* not used for STDIO */
1530
   png_alloc_size_t output_bytes; /* running total */
1531
} png_image_write_control;
1532
1533
/* Write png_uint_16 input to a 16-bit PNG; the png_ptr has already been set to
1534
 * do any necessary byte swapping.  The component order is defined by the
1535
 * png_image format value.
1536
 */
1537
static int
1538
png_write_image_16bit(png_voidp argument)
1539
0
{
1540
0
   png_image_write_control *display = png_voidcast(png_image_write_control*,
1541
0
       argument);
1542
0
   png_imagep image = display->image;
1543
0
   png_structrp png_ptr = image->opaque->png_ptr;
1544
1545
0
   png_const_uint_16p input_row = png_voidcast(png_const_uint_16p,
1546
0
       display->first_row);
1547
0
   png_uint_16p output_row = png_voidcast(png_uint_16p, display->local_row);
1548
0
   png_uint_16p row_end;
1549
0
   unsigned int channels = (image->format & PNG_FORMAT_FLAG_COLOR) != 0 ?
1550
0
       3 : 1;
1551
0
   int aindex = 0;
1552
0
   png_uint_32 y = image->height;
1553
1554
0
   if ((image->format & PNG_FORMAT_FLAG_ALPHA) != 0)
1555
0
   {
1556
0
#   ifdef PNG_SIMPLIFIED_WRITE_AFIRST_SUPPORTED
1557
0
      if ((image->format & PNG_FORMAT_FLAG_AFIRST) != 0)
1558
0
      {
1559
0
         aindex = -1;
1560
0
         ++input_row; /* To point to the first component */
1561
0
         ++output_row;
1562
0
      }
1563
0
         else
1564
0
            aindex = (int)channels;
1565
#     else
1566
         aindex = (int)channels;
1567
#     endif
1568
0
   }
1569
1570
0
   else
1571
0
      png_error(png_ptr, "png_write_image: internal call error");
1572
1573
   /* Work out the output row end and count over this, note that the increment
1574
    * above to 'row' means that row_end can actually be beyond the end of the
1575
    * row; this is correct.
1576
    */
1577
0
   row_end = output_row + image->width * (channels+1);
1578
1579
0
   for (; y > 0; --y)
1580
0
   {
1581
0
      png_const_uint_16p in_ptr = input_row;
1582
0
      png_uint_16p out_ptr = output_row;
1583
1584
0
      while (out_ptr < row_end)
1585
0
      {
1586
0
         png_uint_16 alpha = in_ptr[aindex];
1587
0
         png_uint_32 reciprocal = 0;
1588
0
         int c;
1589
1590
0
         out_ptr[aindex] = alpha;
1591
1592
         /* Calculate a reciprocal.  The correct calculation is simply
1593
          * component/alpha*65535 << 15. (I.e. 15 bits of precision); this
1594
          * allows correct rounding by adding .5 before the shift.  'reciprocal'
1595
          * is only initialized when required.
1596
          */
1597
0
         if (alpha > 0 && alpha < 65535)
1598
0
            reciprocal = ((0xffff<<15)+(alpha>>1))/alpha;
1599
1600
0
         c = (int)channels;
1601
0
         do /* always at least one channel */
1602
0
         {
1603
0
            png_uint_16 component = *in_ptr++;
1604
1605
            /* The following gives 65535 for an alpha of 0, which is fine,
1606
             * otherwise if 0/0 is represented as some other value there is more
1607
             * likely to be a discontinuity which will probably damage
1608
             * compression when moving from a fully transparent area to a
1609
             * nearly transparent one.  (The assumption here is that opaque
1610
             * areas tend not to be 0 intensity.)
1611
             */
1612
0
            if (component >= alpha)
1613
0
               component = 65535;
1614
1615
            /* component<alpha, so component/alpha is less than one and
1616
             * component*reciprocal is less than 2^31.
1617
             */
1618
0
            else if (component > 0 && alpha < 65535)
1619
0
            {
1620
0
               png_uint_32 calc = component * reciprocal;
1621
0
               calc += 16384; /* round to nearest */
1622
0
               component = (png_uint_16)(calc >> 15);
1623
0
            }
1624
1625
0
            *out_ptr++ = component;
1626
0
         }
1627
0
         while (--c > 0);
1628
1629
         /* Skip to next component (skip the intervening alpha channel) */
1630
0
         ++in_ptr;
1631
0
         ++out_ptr;
1632
0
      }
1633
1634
0
      png_write_row(png_ptr, png_voidcast(png_const_bytep, display->local_row));
1635
0
      input_row += (png_uint_16)display->row_bytes/(sizeof (png_uint_16));
1636
0
   }
1637
1638
0
   return 1;
1639
0
}
1640
1641
/* Given 16-bit input (1 to 4 channels) write 8-bit output.  If an alpha channel
1642
 * is present it must be removed from the components, the components are then
1643
 * written in sRGB encoding.  No components are added or removed.
1644
 *
1645
 * Calculate an alpha reciprocal to reverse pre-multiplication.  As above the
1646
 * calculation can be done to 15 bits of accuracy; however, the output needs to
1647
 * be scaled in the range 0..255*65535, so include that scaling here.
1648
 */
1649
0
#   define UNP_RECIPROCAL(alpha) ((((0xffff*0xff)<<7)+((alpha)>>1))/(alpha))
1650
1651
static png_byte
1652
png_unpremultiply(png_uint_32 component, png_uint_32 alpha,
1653
    png_uint_32 reciprocal/*from the above macro*/)
1654
0
{
1655
   /* The following gives 1.0 for an alpha of 0, which is fine, otherwise if 0/0
1656
    * is represented as some other value there is more likely to be a
1657
    * discontinuity which will probably damage compression when moving from a
1658
    * fully transparent area to a nearly transparent one.  (The assumption here
1659
    * is that opaque areas tend not to be 0 intensity.)
1660
    *
1661
    * There is a rounding problem here; if alpha is less than 128 it will end up
1662
    * as 0 when scaled to 8 bits.  To avoid introducing spurious colors into the
1663
    * output change for this too.
1664
    */
1665
0
   if (component >= alpha || alpha < 128)
1666
0
      return 255;
1667
1668
   /* component<alpha, so component/alpha is less than one and
1669
    * component*reciprocal is less than 2^31.
1670
    */
1671
0
   else if (component > 0)
1672
0
   {
1673
      /* The test is that alpha/257 (rounded) is less than 255, the first value
1674
       * that becomes 255 is 65407.
1675
       * NOTE: this must agree with the PNG_DIV257 macro (which must, therefore,
1676
       * be exact!)  [Could also test reciprocal != 0]
1677
       */
1678
0
      if (alpha < 65407)
1679
0
      {
1680
0
         component *= reciprocal;
1681
0
         component += 64; /* round to nearest */
1682
0
         component >>= 7;
1683
0
      }
1684
1685
0
      else
1686
0
         component *= 255;
1687
1688
      /* Convert the component to sRGB. */
1689
0
      return (png_byte)PNG_sRGB_FROM_LINEAR(component);
1690
0
   }
1691
1692
0
   else
1693
0
      return 0;
1694
0
}
1695
1696
static int
1697
png_write_image_8bit(png_voidp argument)
1698
0
{
1699
0
   png_image_write_control *display = png_voidcast(png_image_write_control*,
1700
0
       argument);
1701
0
   png_imagep image = display->image;
1702
0
   png_structrp png_ptr = image->opaque->png_ptr;
1703
1704
0
   png_const_uint_16p input_row = png_voidcast(png_const_uint_16p,
1705
0
       display->first_row);
1706
0
   png_bytep output_row = png_voidcast(png_bytep, display->local_row);
1707
0
   png_uint_32 y = image->height;
1708
0
   unsigned int channels = (image->format & PNG_FORMAT_FLAG_COLOR) != 0 ?
1709
0
       3 : 1;
1710
1711
0
   if ((image->format & PNG_FORMAT_FLAG_ALPHA) != 0)
1712
0
   {
1713
0
      png_bytep row_end;
1714
0
      int aindex;
1715
1716
0
#   ifdef PNG_SIMPLIFIED_WRITE_AFIRST_SUPPORTED
1717
0
      if ((image->format & PNG_FORMAT_FLAG_AFIRST) != 0)
1718
0
      {
1719
0
         aindex = -1;
1720
0
         ++input_row; /* To point to the first component */
1721
0
         ++output_row;
1722
0
      }
1723
1724
0
      else
1725
0
#   endif
1726
0
      aindex = (int)channels;
1727
1728
      /* Use row_end in place of a loop counter: */
1729
0
      row_end = output_row + image->width * (channels+1);
1730
1731
0
      for (; y > 0; --y)
1732
0
      {
1733
0
         png_const_uint_16p in_ptr = input_row;
1734
0
         png_bytep out_ptr = output_row;
1735
1736
0
         while (out_ptr < row_end)
1737
0
         {
1738
0
            png_uint_16 alpha = in_ptr[aindex];
1739
0
            png_byte alphabyte = (png_byte)PNG_DIV257(alpha);
1740
0
            png_uint_32 reciprocal = 0;
1741
0
            int c;
1742
1743
            /* Scale and write the alpha channel. */
1744
0
            out_ptr[aindex] = alphabyte;
1745
1746
0
            if (alphabyte > 0 && alphabyte < 255)
1747
0
               reciprocal = UNP_RECIPROCAL(alpha);
1748
1749
0
            c = (int)channels;
1750
0
            do /* always at least one channel */
1751
0
               *out_ptr++ = png_unpremultiply(*in_ptr++, alpha, reciprocal);
1752
0
            while (--c > 0);
1753
1754
            /* Skip to next component (skip the intervening alpha channel) */
1755
0
            ++in_ptr;
1756
0
            ++out_ptr;
1757
0
         } /* while out_ptr < row_end */
1758
1759
0
         png_write_row(png_ptr, png_voidcast(png_const_bytep,
1760
0
             display->local_row));
1761
0
         input_row += (png_uint_16)display->row_bytes/(sizeof (png_uint_16));
1762
0
      } /* while y */
1763
0
   }
1764
1765
0
   else
1766
0
   {
1767
      /* No alpha channel, so the row_end really is the end of the row and it
1768
       * is sufficient to loop over the components one by one.
1769
       */
1770
0
      png_bytep row_end = output_row + image->width * channels;
1771
1772
0
      for (; y > 0; --y)
1773
0
      {
1774
0
         png_const_uint_16p in_ptr = input_row;
1775
0
         png_bytep out_ptr = output_row;
1776
1777
0
         while (out_ptr < row_end)
1778
0
         {
1779
0
            png_uint_32 component = *in_ptr++;
1780
1781
0
            component *= 255;
1782
0
            *out_ptr++ = (png_byte)PNG_sRGB_FROM_LINEAR(component);
1783
0
         }
1784
1785
0
         png_write_row(png_ptr, output_row);
1786
0
         input_row += (png_uint_16)display->row_bytes/(sizeof (png_uint_16));
1787
0
      }
1788
0
   }
1789
1790
0
   return 1;
1791
0
}
1792
1793
static void
1794
png_image_set_PLTE(png_image_write_control *display)
1795
0
{
1796
0
   png_imagep image = display->image;
1797
0
   const void *cmap = display->colormap;
1798
0
   int entries = image->colormap_entries > 256 ? 256 :
1799
0
       (int)image->colormap_entries;
1800
1801
   /* NOTE: the caller must check for cmap != NULL and entries != 0 */
1802
0
   png_uint_32 format = image->format;
1803
0
   unsigned int channels = PNG_IMAGE_SAMPLE_CHANNELS(format);
1804
1805
0
#   if defined(PNG_FORMAT_BGR_SUPPORTED) &&\
1806
0
      defined(PNG_SIMPLIFIED_WRITE_AFIRST_SUPPORTED)
1807
0
      int afirst = (format & PNG_FORMAT_FLAG_AFIRST) != 0 &&
1808
0
          (format & PNG_FORMAT_FLAG_ALPHA) != 0;
1809
#   else
1810
#     define afirst 0
1811
#   endif
1812
1813
0
#   ifdef PNG_FORMAT_BGR_SUPPORTED
1814
0
      int bgr = (format & PNG_FORMAT_FLAG_BGR) != 0 ? 2 : 0;
1815
#   else
1816
#     define bgr 0
1817
#   endif
1818
1819
0
   int i, num_trans;
1820
0
   png_color palette[256];
1821
0
   png_byte tRNS[256];
1822
1823
0
   memset(tRNS, 255, (sizeof tRNS));
1824
0
   memset(palette, 0, (sizeof palette));
1825
1826
0
   for (i=num_trans=0; i<entries; ++i)
1827
0
   {
1828
      /* This gets automatically converted to sRGB with reversal of the
1829
       * pre-multiplication if the color-map has an alpha channel.
1830
       */
1831
0
      if ((format & PNG_FORMAT_FLAG_LINEAR) != 0)
1832
0
      {
1833
0
         png_const_uint_16p entry = png_voidcast(png_const_uint_16p, cmap);
1834
1835
0
         entry += (unsigned int)i * channels;
1836
1837
0
         if ((channels & 1) != 0) /* no alpha */
1838
0
         {
1839
0
            if (channels >= 3) /* RGB */
1840
0
            {
1841
0
               palette[i].blue = (png_byte)PNG_sRGB_FROM_LINEAR(255 *
1842
0
                   entry[(2 ^ bgr)]);
1843
0
               palette[i].green = (png_byte)PNG_sRGB_FROM_LINEAR(255 *
1844
0
                   entry[1]);
1845
0
               palette[i].red = (png_byte)PNG_sRGB_FROM_LINEAR(255 *
1846
0
                   entry[bgr]);
1847
0
            }
1848
1849
0
            else /* Gray */
1850
0
               palette[i].blue = palette[i].red = palette[i].green =
1851
0
                  (png_byte)PNG_sRGB_FROM_LINEAR(255 * *entry);
1852
0
         }
1853
1854
0
         else /* alpha */
1855
0
         {
1856
0
            png_uint_16 alpha = entry[afirst ? 0 : channels-1];
1857
0
            png_byte alphabyte = (png_byte)PNG_DIV257(alpha);
1858
0
            png_uint_32 reciprocal = 0;
1859
1860
            /* Calculate a reciprocal, as in the png_write_image_8bit code above
1861
             * this is designed to produce a value scaled to 255*65535 when
1862
             * divided by 128 (i.e. asr 7).
1863
             */
1864
0
            if (alphabyte > 0 && alphabyte < 255)
1865
0
               reciprocal = (((0xffff*0xff)<<7)+(alpha>>1))/alpha;
1866
1867
0
            tRNS[i] = alphabyte;
1868
0
            if (alphabyte < 255)
1869
0
               num_trans = i+1;
1870
1871
0
            if (channels >= 3) /* RGB */
1872
0
            {
1873
0
               palette[i].blue = png_unpremultiply(entry[afirst + (2 ^ bgr)],
1874
0
                   alpha, reciprocal);
1875
0
               palette[i].green = png_unpremultiply(entry[afirst + 1], alpha,
1876
0
                   reciprocal);
1877
0
               palette[i].red = png_unpremultiply(entry[afirst + bgr], alpha,
1878
0
                   reciprocal);
1879
0
            }
1880
1881
0
            else /* gray */
1882
0
               palette[i].blue = palette[i].red = palette[i].green =
1883
0
                   png_unpremultiply(entry[afirst], alpha, reciprocal);
1884
0
         }
1885
0
      }
1886
1887
0
      else /* Color-map has sRGB values */
1888
0
      {
1889
0
         png_const_bytep entry = png_voidcast(png_const_bytep, cmap);
1890
1891
0
         entry += (unsigned int)i * channels;
1892
1893
0
         switch (channels)
1894
0
         {
1895
0
            case 4:
1896
0
               tRNS[i] = entry[afirst ? 0 : 3];
1897
0
               if (tRNS[i] < 255)
1898
0
                  num_trans = i+1;
1899
               /* FALLTHROUGH */
1900
0
            case 3:
1901
0
               palette[i].blue = entry[afirst + (2 ^ bgr)];
1902
0
               palette[i].green = entry[afirst + 1];
1903
0
               palette[i].red = entry[afirst + bgr];
1904
0
               break;
1905
1906
0
            case 2:
1907
0
               tRNS[i] = entry[1 ^ afirst];
1908
0
               if (tRNS[i] < 255)
1909
0
                  num_trans = i+1;
1910
               /* FALLTHROUGH */
1911
0
            case 1:
1912
0
               palette[i].blue = palette[i].red = palette[i].green =
1913
0
                  entry[afirst];
1914
0
               break;
1915
1916
0
            default:
1917
0
               break;
1918
0
         }
1919
0
      }
1920
0
   }
1921
1922
#   ifdef afirst
1923
#     undef afirst
1924
#   endif
1925
#   ifdef bgr
1926
#     undef bgr
1927
#   endif
1928
1929
0
   png_set_PLTE(image->opaque->png_ptr, image->opaque->info_ptr, palette,
1930
0
       entries);
1931
1932
0
   if (num_trans > 0)
1933
0
      png_set_tRNS(image->opaque->png_ptr, image->opaque->info_ptr, tRNS,
1934
0
          num_trans, NULL);
1935
1936
0
   image->colormap_entries = (png_uint_32)entries;
1937
0
}
1938
1939
static int
1940
png_image_write_main(png_voidp argument)
1941
0
{
1942
0
   png_image_write_control *display = png_voidcast(png_image_write_control*,
1943
0
       argument);
1944
0
   png_imagep image = display->image;
1945
0
   png_structrp png_ptr = image->opaque->png_ptr;
1946
0
   png_inforp info_ptr = image->opaque->info_ptr;
1947
0
   png_uint_32 format = image->format;
1948
1949
   /* The following four ints are actually booleans */
1950
0
   int colormap = (format & PNG_FORMAT_FLAG_COLORMAP);
1951
0
   int linear = !colormap && (format & PNG_FORMAT_FLAG_LINEAR); /* input */
1952
0
   int alpha = !colormap && (format & PNG_FORMAT_FLAG_ALPHA);
1953
0
   int write_16bit = linear && (display->convert_to_8bit == 0);
1954
1955
0
#   ifdef PNG_BENIGN_ERRORS_SUPPORTED
1956
      /* Make sure we error out on any bad situation */
1957
0
      png_set_benign_errors(png_ptr, 0/*error*/);
1958
0
#   endif
1959
1960
   /* Default the 'row_stride' parameter if required, also check the row stride
1961
    * and total image size to ensure that they are within the system limits.
1962
    */
1963
0
   {
1964
0
      unsigned int channels = PNG_IMAGE_PIXEL_CHANNELS(image->format);
1965
1966
0
      if (image->width <= 0x7fffffffU/channels) /* no overflow */
1967
0
      {
1968
0
         png_uint_32 check;
1969
0
         png_uint_32 png_row_stride = image->width * channels;
1970
1971
0
         if (display->row_stride == 0)
1972
0
            display->row_stride = (png_int_32)/*SAFE*/png_row_stride;
1973
1974
0
         if (display->row_stride < 0)
1975
0
            check = (png_uint_32)(-display->row_stride);
1976
1977
0
         else
1978
0
            check = (png_uint_32)display->row_stride;
1979
1980
0
         if (check >= png_row_stride)
1981
0
         {
1982
            /* Now check for overflow of the image buffer calculation; this
1983
             * limits the whole image size to 32 bits for API compatibility with
1984
             * the current, 32-bit, PNG_IMAGE_BUFFER_SIZE macro.
1985
             */
1986
0
            if (image->height > 0xffffffffU/png_row_stride)
1987
0
               png_error(image->opaque->png_ptr, "memory image too large");
1988
0
         }
1989
1990
0
         else
1991
0
            png_error(image->opaque->png_ptr, "supplied row stride too small");
1992
0
      }
1993
1994
0
      else
1995
0
         png_error(image->opaque->png_ptr, "image row stride too large");
1996
0
   }
1997
1998
   /* Set the required transforms then write the rows in the correct order. */
1999
0
   if ((format & PNG_FORMAT_FLAG_COLORMAP) != 0)
2000
0
   {
2001
0
      if (display->colormap != NULL && image->colormap_entries > 0)
2002
0
      {
2003
0
         png_uint_32 entries = image->colormap_entries;
2004
2005
0
         png_set_IHDR(png_ptr, info_ptr, image->width, image->height,
2006
0
             entries > 16 ? 8 : (entries > 4 ? 4 : (entries > 2 ? 2 : 1)),
2007
0
             PNG_COLOR_TYPE_PALETTE, PNG_INTERLACE_NONE,
2008
0
             PNG_COMPRESSION_TYPE_BASE, PNG_FILTER_TYPE_BASE);
2009
2010
0
         png_image_set_PLTE(display);
2011
0
      }
2012
2013
0
      else
2014
0
         png_error(image->opaque->png_ptr,
2015
0
             "no color-map for color-mapped image");
2016
0
   }
2017
2018
0
   else
2019
0
      png_set_IHDR(png_ptr, info_ptr, image->width, image->height,
2020
0
          write_16bit ? 16 : 8,
2021
0
          ((format & PNG_FORMAT_FLAG_COLOR) ? PNG_COLOR_MASK_COLOR : 0) +
2022
0
          ((format & PNG_FORMAT_FLAG_ALPHA) ? PNG_COLOR_MASK_ALPHA : 0),
2023
0
          PNG_INTERLACE_NONE, PNG_COMPRESSION_TYPE_BASE, PNG_FILTER_TYPE_BASE);
2024
2025
   /* Counter-intuitively the data transformations must be called *after*
2026
    * png_write_info, not before as in the read code, but the 'set' functions
2027
    * must still be called before.  Just set the color space information, never
2028
    * write an interlaced image.
2029
    */
2030
2031
0
   if (write_16bit != 0)
2032
0
   {
2033
      /* The gamma here is 1.0 (linear) and the cHRM chunk matches sRGB. */
2034
0
      png_set_gAMA_fixed(png_ptr, info_ptr, PNG_GAMMA_LINEAR);
2035
2036
0
      if ((image->flags & PNG_IMAGE_FLAG_COLORSPACE_NOT_sRGB) == 0)
2037
0
         png_set_cHRM_fixed(png_ptr, info_ptr,
2038
             /* color      x       y */
2039
0
             /* white */ 31270, 32900,
2040
0
             /* red   */ 64000, 33000,
2041
0
             /* green */ 30000, 60000,
2042
0
             /* blue  */ 15000,  6000
2043
0
         );
2044
0
   }
2045
2046
0
   else if ((image->flags & PNG_IMAGE_FLAG_COLORSPACE_NOT_sRGB) == 0)
2047
0
      png_set_sRGB(png_ptr, info_ptr, PNG_sRGB_INTENT_PERCEPTUAL);
2048
2049
   /* Else writing an 8-bit file and the *colors* aren't sRGB, but the 8-bit
2050
    * space must still be gamma encoded.
2051
    */
2052
0
   else
2053
0
      png_set_gAMA_fixed(png_ptr, info_ptr, PNG_GAMMA_sRGB_INVERSE);
2054
2055
   /* Write the file header. */
2056
0
   png_write_info(png_ptr, info_ptr);
2057
2058
   /* Now set up the data transformations (*after* the header is written),
2059
    * remove the handled transformations from the 'format' flags for checking.
2060
    *
2061
    * First check for a little endian system if writing 16-bit files.
2062
    */
2063
0
   if (write_16bit != 0)
2064
0
   {
2065
0
      png_uint_16 le = 0x0001;
2066
2067
0
      if ((*(png_const_bytep) & le) != 0)
2068
0
         png_set_swap(png_ptr);
2069
0
   }
2070
2071
0
#   ifdef PNG_SIMPLIFIED_WRITE_BGR_SUPPORTED
2072
0
      if ((format & PNG_FORMAT_FLAG_BGR) != 0)
2073
0
      {
2074
0
         if (colormap == 0 && (format & PNG_FORMAT_FLAG_COLOR) != 0)
2075
0
            png_set_bgr(png_ptr);
2076
0
         format &= ~PNG_FORMAT_FLAG_BGR;
2077
0
      }
2078
0
#   endif
2079
2080
0
#   ifdef PNG_SIMPLIFIED_WRITE_AFIRST_SUPPORTED
2081
0
      if ((format & PNG_FORMAT_FLAG_AFIRST) != 0)
2082
0
      {
2083
0
         if (colormap == 0 && (format & PNG_FORMAT_FLAG_ALPHA) != 0)
2084
0
            png_set_swap_alpha(png_ptr);
2085
0
         format &= ~PNG_FORMAT_FLAG_AFIRST;
2086
0
      }
2087
0
#   endif
2088
2089
   /* If there are 16 or fewer color-map entries we wrote a lower bit depth
2090
    * above, but the application data is still byte packed.
2091
    */
2092
0
   if (colormap != 0 && image->colormap_entries <= 16)
2093
0
      png_set_packing(png_ptr);
2094
2095
   /* That should have handled all (both) the transforms. */
2096
0
   if ((format & ~(png_uint_32)(PNG_FORMAT_FLAG_COLOR | PNG_FORMAT_FLAG_LINEAR |
2097
0
         PNG_FORMAT_FLAG_ALPHA | PNG_FORMAT_FLAG_COLORMAP)) != 0)
2098
0
      png_error(png_ptr, "png_write_image: unsupported transformation");
2099
2100
0
   {
2101
0
      png_const_bytep row = png_voidcast(png_const_bytep, display->buffer);
2102
0
      ptrdiff_t row_bytes = display->row_stride;
2103
2104
0
      if (linear != 0)
2105
0
         row_bytes *= (sizeof (png_uint_16));
2106
2107
0
      if (row_bytes < 0)
2108
0
         row += (image->height-1) * (-row_bytes);
2109
2110
0
      display->first_row = row;
2111
0
      display->row_bytes = row_bytes;
2112
0
   }
2113
2114
   /* Apply 'fast' options if the flag is set. */
2115
0
   if ((image->flags & PNG_IMAGE_FLAG_FAST) != 0)
2116
0
   {
2117
0
      png_set_filter(png_ptr, PNG_FILTER_TYPE_BASE, PNG_NO_FILTERS);
2118
      /* NOTE: determined by experiment using pngstest, this reflects some
2119
       * balance between the time to write the image once and the time to read
2120
       * it about 50 times.  The speed-up in pngstest was about 10-20% of the
2121
       * total (user) time on a heavily loaded system.
2122
       */
2123
0
#   ifdef PNG_WRITE_CUSTOMIZE_COMPRESSION_SUPPORTED
2124
0
      png_set_compression_level(png_ptr, 3);
2125
0
#   endif
2126
0
   }
2127
2128
   /* Check for the cases that currently require a pre-transform on the row
2129
    * before it is written.  This only applies when the input is 16-bit and
2130
    * either there is an alpha channel or it is converted to 8-bit.
2131
    */
2132
0
   if ((linear != 0 && alpha != 0 ) ||
2133
0
       (colormap == 0 && display->convert_to_8bit != 0))
2134
0
   {
2135
0
      png_bytep row = png_voidcast(png_bytep, png_malloc(png_ptr,
2136
0
          png_get_rowbytes(png_ptr, info_ptr)));
2137
0
      int result;
2138
2139
0
      display->local_row = row;
2140
0
      if (write_16bit != 0)
2141
0
         result = png_safe_execute(image, png_write_image_16bit, display);
2142
0
      else
2143
0
         result = png_safe_execute(image, png_write_image_8bit, display);
2144
0
      display->local_row = NULL;
2145
2146
0
      png_free(png_ptr, row);
2147
2148
      /* Skip the 'write_end' on error: */
2149
0
      if (result == 0)
2150
0
         return 0;
2151
0
   }
2152
2153
   /* Otherwise this is the case where the input is in a format currently
2154
    * supported by the rest of the libpng write code; call it directly.
2155
    */
2156
0
   else
2157
0
   {
2158
0
      png_const_bytep row = png_voidcast(png_const_bytep, display->first_row);
2159
0
      ptrdiff_t row_bytes = display->row_bytes;
2160
0
      png_uint_32 y = image->height;
2161
2162
0
      for (; y > 0; --y)
2163
0
      {
2164
0
         png_write_row(png_ptr, row);
2165
0
         row += row_bytes;
2166
0
      }
2167
0
   }
2168
2169
0
   png_write_end(png_ptr, info_ptr);
2170
0
   return 1;
2171
0
}
2172
2173
2174
static void (PNGCBAPI
2175
image_memory_write)(png_structp png_ptr, png_bytep/*const*/ data, size_t size)
2176
0
{
2177
0
   png_image_write_control *display = png_voidcast(png_image_write_control*,
2178
0
       png_ptr->io_ptr/*backdoor: png_get_io_ptr(png_ptr)*/);
2179
0
   png_alloc_size_t ob = display->output_bytes;
2180
2181
   /* Check for overflow; this should never happen: */
2182
0
   if (size <= ((png_alloc_size_t)-1) - ob)
2183
0
   {
2184
      /* I don't think libpng ever does this, but just in case: */
2185
0
      if (size > 0)
2186
0
      {
2187
0
         if (display->memory_bytes >= ob+size) /* writing */
2188
0
            memcpy(display->memory+ob, data, size);
2189
2190
         /* Always update the size: */
2191
0
         display->output_bytes = ob+size;
2192
0
      }
2193
0
   }
2194
2195
0
   else
2196
0
      png_error(png_ptr, "png_image_write_to_memory: PNG too big");
2197
0
}
2198
2199
static void (PNGCBAPI
2200
image_memory_flush)(png_structp png_ptr)
2201
0
{
2202
0
   PNG_UNUSED(png_ptr)
2203
0
}
2204
2205
static int
2206
png_image_write_memory(png_voidp argument)
2207
0
{
2208
0
   png_image_write_control *display = png_voidcast(png_image_write_control*,
2209
0
       argument);
2210
2211
   /* The rest of the memory-specific init and write_main in an error protected
2212
    * environment.  This case needs to use callbacks for the write operations
2213
    * since libpng has no built in support for writing to memory.
2214
    */
2215
0
   png_set_write_fn(display->image->opaque->png_ptr, display/*io_ptr*/,
2216
0
       image_memory_write, image_memory_flush);
2217
2218
0
   return png_image_write_main(display);
2219
0
}
2220
2221
int PNGAPI
2222
png_image_write_to_memory(png_imagep image, void *memory,
2223
    png_alloc_size_t * PNG_RESTRICT memory_bytes, int convert_to_8bit,
2224
    const void *buffer, png_int_32 row_stride, const void *colormap)
2225
0
{
2226
   /* Write the image to the given buffer, or count the bytes if it is NULL */
2227
0
   if (image != NULL && image->version == PNG_IMAGE_VERSION)
2228
0
   {
2229
0
      if (memory_bytes != NULL && buffer != NULL)
2230
0
      {
2231
         /* This is to give the caller an easier error detection in the NULL
2232
          * case and guard against uninitialized variable problems:
2233
          */
2234
0
         if (memory == NULL)
2235
0
            *memory_bytes = 0;
2236
2237
0
         if (png_image_write_init(image) != 0)
2238
0
         {
2239
0
            png_image_write_control display;
2240
0
            int result;
2241
2242
0
            memset(&display, 0, (sizeof display));
2243
0
            display.image = image;
2244
0
            display.buffer = buffer;
2245
0
            display.row_stride = row_stride;
2246
0
            display.colormap = colormap;
2247
0
            display.convert_to_8bit = convert_to_8bit;
2248
0
            display.memory = png_voidcast(png_bytep, memory);
2249
0
            display.memory_bytes = *memory_bytes;
2250
0
            display.output_bytes = 0;
2251
2252
0
            result = png_safe_execute(image, png_image_write_memory, &display);
2253
0
            png_image_free(image);
2254
2255
            /* write_memory returns true even if we ran out of buffer. */
2256
0
            if (result)
2257
0
            {
2258
               /* On out-of-buffer this function returns '0' but still updates
2259
                * memory_bytes:
2260
                */
2261
0
               if (memory != NULL && display.output_bytes > *memory_bytes)
2262
0
                  result = 0;
2263
2264
0
               *memory_bytes = display.output_bytes;
2265
0
            }
2266
2267
0
            return result;
2268
0
         }
2269
2270
0
         else
2271
0
            return 0;
2272
0
      }
2273
2274
0
      else
2275
0
         return png_image_error(image,
2276
0
             "png_image_write_to_memory: invalid argument");
2277
0
   }
2278
2279
0
   else if (image != NULL)
2280
0
      return png_image_error(image,
2281
0
          "png_image_write_to_memory: incorrect PNG_IMAGE_VERSION");
2282
2283
0
   else
2284
0
      return 0;
2285
0
}
2286
2287
#ifdef PNG_SIMPLIFIED_WRITE_STDIO_SUPPORTED
2288
int PNGAPI
2289
png_image_write_to_stdio(png_imagep image, FILE *file, int convert_to_8bit,
2290
    const void *buffer, png_int_32 row_stride, const void *colormap)
2291
{
2292
   /* Write the image to the given (FILE*). */
2293
   if (image != NULL && image->version == PNG_IMAGE_VERSION)
2294
   {
2295
      if (file != NULL && buffer != NULL)
2296
      {
2297
         if (png_image_write_init(image) != 0)
2298
         {
2299
            png_image_write_control display;
2300
            int result;
2301
2302
            /* This is slightly evil, but png_init_io doesn't do anything other
2303
             * than this and we haven't changed the standard IO functions so
2304
             * this saves a 'safe' function.
2305
             */
2306
            image->opaque->png_ptr->io_ptr = file;
2307
2308
            memset(&display, 0, (sizeof display));
2309
            display.image = image;
2310
            display.buffer = buffer;
2311
            display.row_stride = row_stride;
2312
            display.colormap = colormap;
2313
            display.convert_to_8bit = convert_to_8bit;
2314
2315
            result = png_safe_execute(image, png_image_write_main, &display);
2316
            png_image_free(image);
2317
            return result;
2318
         }
2319
2320
         else
2321
            return 0;
2322
      }
2323
2324
      else
2325
         return png_image_error(image,
2326
             "png_image_write_to_stdio: invalid argument");
2327
   }
2328
2329
   else if (image != NULL)
2330
      return png_image_error(image,
2331
          "png_image_write_to_stdio: incorrect PNG_IMAGE_VERSION");
2332
2333
   else
2334
      return 0;
2335
}
2336
2337
int PNGAPI
2338
png_image_write_to_file(png_imagep image, const char *file_name,
2339
    int convert_to_8bit, const void *buffer, png_int_32 row_stride,
2340
    const void *colormap)
2341
{
2342
   /* Write the image to the named file. */
2343
   if (image != NULL && image->version == PNG_IMAGE_VERSION)
2344
   {
2345
      if (file_name != NULL && buffer != NULL)
2346
      {
2347
         FILE *fp = fopen(file_name, "wb");
2348
2349
         if (fp != NULL)
2350
         {
2351
            if (png_image_write_to_stdio(image, fp, convert_to_8bit, buffer,
2352
                row_stride, colormap) != 0)
2353
            {
2354
               int error; /* from fflush/fclose */
2355
2356
               /* Make sure the file is flushed correctly. */
2357
               if (fflush(fp) == 0 && ferror(fp) == 0)
2358
               {
2359
                  if (fclose(fp) == 0)
2360
                     return 1;
2361
2362
                  error = errno; /* from fclose */
2363
               }
2364
2365
               else
2366
               {
2367
                  error = errno; /* from fflush or ferror */
2368
                  (void)fclose(fp);
2369
               }
2370
2371
               (void)remove(file_name);
2372
               /* The image has already been cleaned up; this is just used to
2373
                * set the error (because the original write succeeded).
2374
                */
2375
               return png_image_error(image, strerror(error));
2376
            }
2377
2378
            else
2379
            {
2380
               /* Clean up: just the opened file. */
2381
               (void)fclose(fp);
2382
               (void)remove(file_name);
2383
               return 0;
2384
            }
2385
         }
2386
2387
         else
2388
            return png_image_error(image, strerror(errno));
2389
      }
2390
2391
      else
2392
         return png_image_error(image,
2393
             "png_image_write_to_file: invalid argument");
2394
   }
2395
2396
   else if (image != NULL)
2397
      return png_image_error(image,
2398
          "png_image_write_to_file: incorrect PNG_IMAGE_VERSION");
2399
2400
   else
2401
      return 0;
2402
}
2403
#endif /* SIMPLIFIED_WRITE_STDIO */
2404
#endif /* SIMPLIFIED_WRITE */
2405
#endif /* WRITE */