Coverage Report

Created: 2026-03-31 11:00

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/work/workdir/UnpackedTarball/libpng/pngwutil.c
Line
Count
Source
1
/* pngwutil.c - utilities to write a PNG file
2
 *
3
 * Copyright (c) 2018-2026 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
 * This file contains routines that are only called from within
13
 * libpng itself during the course of writing an image.
14
 */
15
16
#include "pngpriv.h"
17
18
#ifdef PNG_WRITE_SUPPORTED
19
20
#ifdef PNG_WRITE_INTERLACING_SUPPORTED
21
/* Arrays to facilitate interlacing - use pass (0 - 6) as index. */
22
23
/* Start of interlace block */
24
static const png_byte png_pass_start[7] = {0, 4, 0, 2, 0, 1, 0};
25
/* Offset to next interlace block */
26
static const png_byte png_pass_inc[7] = {8, 8, 4, 4, 2, 2, 1};
27
/* Start of interlace block in the y direction */
28
static const png_byte png_pass_ystart[7] = {0, 0, 4, 0, 2, 0, 1};
29
/* Offset to next interlace block in the y direction */
30
static const png_byte png_pass_yinc[7] = {8, 8, 8, 4, 4, 2, 2};
31
32
/* TODO: Move these arrays to a common utility module to avoid duplication. */
33
#endif
34
35
#ifdef PNG_WRITE_INT_FUNCTIONS_SUPPORTED
36
/* Place a 32-bit number into a buffer in PNG byte order.  We work
37
 * with unsigned numbers for convenience, although one supported
38
 * ancillary chunk uses signed (two's complement) numbers.
39
 */
40
void PNGAPI
41
png_save_uint_32(png_bytep buf, png_uint_32 i)
42
0
{
43
0
   buf[0] = (png_byte)((i >> 24) & 0xffU);
44
0
   buf[1] = (png_byte)((i >> 16) & 0xffU);
45
0
   buf[2] = (png_byte)((i >>  8) & 0xffU);
46
0
   buf[3] = (png_byte)( i        & 0xffU);
47
0
}
48
49
/* Place a 16-bit number into a buffer in PNG byte order.
50
 * The parameter is declared unsigned int, not png_uint_16,
51
 * just to avoid potential problems on pre-ANSI C compilers.
52
 */
53
void PNGAPI
54
png_save_uint_16(png_bytep buf, unsigned int i)
55
0
{
56
0
   buf[0] = (png_byte)((i >> 8) & 0xffU);
57
0
   buf[1] = (png_byte)( i       & 0xffU);
58
0
}
59
#endif
60
61
/* Simple function to write the signature.  If we have already written
62
 * the magic bytes of the signature, or more likely, the PNG stream is
63
 * being embedded into another stream and doesn't need its own signature,
64
 * we should call png_set_sig_bytes() to tell libpng how many of the
65
 * bytes have already been written.
66
 */
67
void PNGAPI
68
png_write_sig(png_structrp png_ptr)
69
0
{
70
0
   png_byte png_signature[8] = {137, 80, 78, 71, 13, 10, 26, 10};
71
72
0
#ifdef PNG_IO_STATE_SUPPORTED
73
   /* Inform the I/O callback that the signature is being written */
74
0
   png_ptr->io_state = PNG_IO_WRITING | PNG_IO_SIGNATURE;
75
0
#endif
76
77
   /* Write the rest of the 8 byte signature */
78
0
   png_write_data(png_ptr, &png_signature[png_ptr->sig_bytes],
79
0
       (size_t)(8 - png_ptr->sig_bytes));
80
81
0
   if (png_ptr->sig_bytes < 3)
82
0
      png_ptr->mode |= PNG_HAVE_PNG_SIGNATURE;
83
0
}
84
85
/* Write the start of a PNG chunk.  The type is the chunk type.
86
 * The total_length is the sum of the lengths of all the data you will be
87
 * passing in png_write_chunk_data().
88
 */
89
static void
90
png_write_chunk_header(png_structrp png_ptr, png_uint_32 chunk_name,
91
    png_uint_32 length)
92
0
{
93
0
   png_byte buf[8];
94
95
#if defined(PNG_DEBUG) && (PNG_DEBUG > 0)
96
   PNG_CSTRING_FROM_CHUNK(buf, chunk_name);
97
   png_debug2(0, "Writing %s chunk, length = %lu", buf, (unsigned long)length);
98
#endif
99
100
0
   if (png_ptr == NULL)
101
0
      return;
102
103
0
#ifdef PNG_IO_STATE_SUPPORTED
104
   /* Inform the I/O callback that the chunk header is being written.
105
    * PNG_IO_CHUNK_HDR requires a single I/O call.
106
    */
107
0
   png_ptr->io_state = PNG_IO_WRITING | PNG_IO_CHUNK_HDR;
108
0
#endif
109
110
   /* Write the length and the chunk name */
111
0
   png_save_uint_32(buf, length);
112
0
   png_save_uint_32(buf + 4, chunk_name);
113
0
   png_write_data(png_ptr, buf, 8);
114
115
   /* Put the chunk name into png_ptr->chunk_name */
116
0
   png_ptr->chunk_name = chunk_name;
117
118
   /* Reset the crc and run it over the chunk name */
119
0
   png_reset_crc(png_ptr);
120
121
0
   png_calculate_crc(png_ptr, buf + 4, 4);
122
123
0
#ifdef PNG_IO_STATE_SUPPORTED
124
   /* Inform the I/O callback that chunk data will (possibly) be written.
125
    * PNG_IO_CHUNK_DATA does NOT require a specific number of I/O calls.
126
    */
127
0
   png_ptr->io_state = PNG_IO_WRITING | PNG_IO_CHUNK_DATA;
128
0
#endif
129
0
}
130
131
void PNGAPI
132
png_write_chunk_start(png_structrp png_ptr, png_const_bytep chunk_string,
133
    png_uint_32 length)
134
0
{
135
0
   png_write_chunk_header(png_ptr, PNG_CHUNK_FROM_STRING(chunk_string), length);
136
0
}
137
138
/* Write the data of a PNG chunk started with png_write_chunk_header().
139
 * Note that multiple calls to this function are allowed, and that the
140
 * sum of the lengths from these calls *must* add up to the total_length
141
 * given to png_write_chunk_header().
142
 */
143
void PNGAPI
144
png_write_chunk_data(png_structrp png_ptr, png_const_bytep data, size_t length)
145
0
{
146
   /* Write the data, and run the CRC over it */
147
0
   if (png_ptr == NULL)
148
0
      return;
149
150
0
   if (data != NULL && length > 0)
151
0
   {
152
0
      png_write_data(png_ptr, data, length);
153
154
      /* Update the CRC after writing the data,
155
       * in case the user I/O routine alters it.
156
       */
157
0
      png_calculate_crc(png_ptr, data, length);
158
0
   }
159
0
}
160
161
/* Finish a chunk started with png_write_chunk_header(). */
162
void PNGAPI
163
png_write_chunk_end(png_structrp png_ptr)
164
0
{
165
0
   png_byte buf[4];
166
167
0
   if (png_ptr == NULL) return;
168
169
0
#ifdef PNG_IO_STATE_SUPPORTED
170
   /* Inform the I/O callback that the chunk CRC is being written.
171
    * PNG_IO_CHUNK_CRC requires a single I/O function call.
172
    */
173
0
   png_ptr->io_state = PNG_IO_WRITING | PNG_IO_CHUNK_CRC;
174
0
#endif
175
176
   /* Write the crc in a single operation */
177
0
   png_save_uint_32(buf, png_ptr->crc);
178
179
0
   png_write_data(png_ptr, buf, 4);
180
0
}
181
182
/* Write a PNG chunk all at once.  The type is an array of ASCII characters
183
 * representing the chunk name.  The array must be at least 4 bytes in
184
 * length, and does not need to be null terminated.  To be safe, pass the
185
 * pre-defined chunk names here, and if you need a new one, define it
186
 * where the others are defined.  The length is the length of the data.
187
 * All the data must be present.  If that is not possible, use the
188
 * png_write_chunk_start(), png_write_chunk_data(), and png_write_chunk_end()
189
 * functions instead.
190
 */
191
static void
192
png_write_complete_chunk(png_structrp png_ptr, png_uint_32 chunk_name,
193
    png_const_bytep data, size_t length)
194
0
{
195
0
   if (png_ptr == NULL)
196
0
      return;
197
198
   /* On 64-bit architectures 'length' may not fit in a png_uint_32. */
199
0
   if (length > PNG_UINT_31_MAX)
200
0
      png_error(png_ptr, "length exceeds PNG maximum");
201
202
0
   png_write_chunk_header(png_ptr, chunk_name, (png_uint_32)length);
203
0
   png_write_chunk_data(png_ptr, data, length);
204
0
   png_write_chunk_end(png_ptr);
205
0
}
206
207
/* This is the API that calls the internal function above. */
208
void PNGAPI
209
png_write_chunk(png_structrp png_ptr, png_const_bytep chunk_string,
210
    png_const_bytep data, size_t length)
211
0
{
212
0
   png_write_complete_chunk(png_ptr, PNG_CHUNK_FROM_STRING(chunk_string), data,
213
0
       length);
214
0
}
215
216
/* This is used below to find the size of an image to pass to png_deflate_claim,
217
 * so it only needs to be accurate if the size is less than 16384 bytes (the
218
 * point at which a lower LZ window size can be used.)
219
 */
220
static png_alloc_size_t
221
png_image_size(png_structrp png_ptr)
222
0
{
223
   /* Only return sizes up to the maximum of a png_uint_32; do this by limiting
224
    * the width and height used to 15 bits.
225
    */
226
0
   png_uint_32 h = png_ptr->height;
227
228
0
   if (png_ptr->rowbytes < 32768 && h < 32768)
229
0
   {
230
0
      if (png_ptr->interlaced != 0)
231
0
      {
232
         /* Interlacing makes the image larger because of the replication of
233
          * both the filter byte and the padding to a byte boundary.
234
          */
235
0
         png_uint_32 w = png_ptr->width;
236
0
         unsigned int pd = png_ptr->pixel_depth;
237
0
         png_alloc_size_t cb_base;
238
0
         int pass;
239
240
0
         for (cb_base=0, pass=0; pass<=6; ++pass)
241
0
         {
242
0
            png_uint_32 pw = PNG_PASS_COLS(w, pass);
243
244
0
            if (pw > 0)
245
0
               cb_base += (PNG_ROWBYTES(pd, pw)+1) * PNG_PASS_ROWS(h, pass);
246
0
         }
247
248
0
         return cb_base;
249
0
      }
250
251
0
      else
252
0
         return (png_ptr->rowbytes+1) * h;
253
0
   }
254
255
0
   else
256
0
      return 0xffffffffU;
257
0
}
258
259
#ifdef PNG_WRITE_OPTIMIZE_CMF_SUPPORTED
260
   /* This is the code to hack the first two bytes of the deflate stream (the
261
    * deflate header) to correct the windowBits value to match the actual data
262
    * size.  Note that the second argument is the *uncompressed* size but the
263
    * first argument is the *compressed* data (and it must be deflate
264
    * compressed.)
265
    */
266
static void
267
optimize_cmf(png_bytep data, png_alloc_size_t data_size)
268
0
{
269
   /* Optimize the CMF field in the zlib stream.  The resultant zlib stream is
270
    * still compliant to the stream specification.
271
    */
272
0
   if (data_size <= 16384) /* else windowBits must be 15 */
273
0
   {
274
0
      unsigned int z_cmf = data[0];  /* zlib compression method and flags */
275
276
0
      if ((z_cmf & 0x0f) == 8 && (z_cmf & 0xf0) <= 0x70)
277
0
      {
278
0
         unsigned int z_cinfo;
279
0
         unsigned int half_z_window_size;
280
281
0
         z_cinfo = z_cmf >> 4;
282
0
         half_z_window_size = 1U << (z_cinfo + 7);
283
284
0
         if (data_size <= half_z_window_size) /* else no change */
285
0
         {
286
0
            unsigned int tmp;
287
288
0
            do
289
0
            {
290
0
               half_z_window_size >>= 1;
291
0
               --z_cinfo;
292
0
            }
293
0
            while (z_cinfo > 0 && data_size <= half_z_window_size);
294
295
0
            z_cmf = (z_cmf & 0x0f) | (z_cinfo << 4);
296
297
0
            data[0] = (png_byte)z_cmf;
298
0
            tmp = data[1] & 0xe0;
299
0
            tmp += 0x1f - ((z_cmf << 8) + tmp) % 0x1f;
300
0
            data[1] = (png_byte)tmp;
301
0
         }
302
0
      }
303
0
   }
304
0
}
305
#endif /* WRITE_OPTIMIZE_CMF */
306
307
/* Initialize the compressor for the appropriate type of compression. */
308
static int
309
png_deflate_claim(png_structrp png_ptr, png_uint_32 owner,
310
    png_alloc_size_t data_size)
311
0
{
312
0
   if (png_ptr->zowner != 0)
313
0
   {
314
0
#if defined(PNG_WARNINGS_SUPPORTED) || defined(PNG_ERROR_TEXT_SUPPORTED)
315
0
      char msg[64];
316
317
0
      PNG_STRING_FROM_CHUNK(msg, owner);
318
0
      msg[4] = ':';
319
0
      msg[5] = ' ';
320
0
      PNG_STRING_FROM_CHUNK(msg+6, png_ptr->zowner);
321
      /* So the message that results is "<chunk> using zstream"; this is an
322
       * internal error, but is very useful for debugging.  i18n requirements
323
       * are minimal.
324
       */
325
0
      (void)png_safecat(msg, (sizeof msg), 10, " using zstream");
326
0
#endif
327
0
#if PNG_RELEASE_BUILD
328
0
         png_warning(png_ptr, msg);
329
330
         /* Attempt sane error recovery */
331
0
         if (png_ptr->zowner == png_IDAT) /* don't steal from IDAT */
332
0
         {
333
0
            png_ptr->zstream.msg = PNGZ_MSG_CAST("in use by IDAT");
334
0
            return Z_STREAM_ERROR;
335
0
         }
336
337
0
         png_ptr->zowner = 0;
338
#else
339
         png_error(png_ptr, msg);
340
#endif
341
0
   }
342
343
0
   {
344
0
      int level = png_ptr->zlib_level;
345
0
      int method = png_ptr->zlib_method;
346
0
      int windowBits = png_ptr->zlib_window_bits;
347
0
      int memLevel = png_ptr->zlib_mem_level;
348
0
      int strategy; /* set below */
349
0
      int ret; /* zlib return code */
350
351
0
      if (owner == png_IDAT)
352
0
      {
353
0
         if ((png_ptr->flags & PNG_FLAG_ZLIB_CUSTOM_STRATEGY) != 0)
354
0
            strategy = png_ptr->zlib_strategy;
355
356
0
         else if (png_ptr->do_filter != PNG_FILTER_NONE)
357
0
            strategy = PNG_Z_DEFAULT_STRATEGY;
358
359
0
         else
360
0
            strategy = PNG_Z_DEFAULT_NOFILTER_STRATEGY;
361
0
      }
362
363
0
      else
364
0
      {
365
0
#ifdef PNG_WRITE_CUSTOMIZE_ZTXT_COMPRESSION_SUPPORTED
366
0
            level = png_ptr->zlib_text_level;
367
0
            method = png_ptr->zlib_text_method;
368
0
            windowBits = png_ptr->zlib_text_window_bits;
369
0
            memLevel = png_ptr->zlib_text_mem_level;
370
0
            strategy = png_ptr->zlib_text_strategy;
371
#else
372
            /* If customization is not supported the values all come from the
373
             * IDAT values except for the strategy, which is fixed to the
374
             * default.  (This is the pre-1.6.0 behavior too, although it was
375
             * implemented in a very different way.)
376
             */
377
            strategy = Z_DEFAULT_STRATEGY;
378
#endif
379
0
      }
380
381
      /* Adjust 'windowBits' down if larger than 'data_size'; to stop this
382
       * happening just pass 32768 as the data_size parameter.  Notice that zlib
383
       * requires an extra 262 bytes in the window in addition to the data to be
384
       * able to see the whole of the data, so if data_size+262 takes us to the
385
       * next windowBits size we need to fix up the value later.  (Because even
386
       * though deflate needs the extra window, inflate does not!)
387
       */
388
0
      if (data_size <= 16384)
389
0
      {
390
         /* IMPLEMENTATION NOTE: this 'half_window_size' stuff is only here to
391
          * work round a Microsoft Visual C misbehavior which, contrary to C-90,
392
          * widens the result of the following shift to 64-bits if (and,
393
          * apparently, only if) it is used in a test.
394
          */
395
0
         unsigned int half_window_size = 1U << (windowBits-1);
396
397
0
         while (data_size + 262 <= half_window_size)
398
0
         {
399
0
            half_window_size >>= 1;
400
0
            --windowBits;
401
0
         }
402
0
      }
403
404
      /* Check against the previous initialized values, if any. */
405
0
      if ((png_ptr->flags & PNG_FLAG_ZSTREAM_INITIALIZED) != 0 &&
406
0
         (png_ptr->zlib_set_level != level ||
407
0
         png_ptr->zlib_set_method != method ||
408
0
         png_ptr->zlib_set_window_bits != windowBits ||
409
0
         png_ptr->zlib_set_mem_level != memLevel ||
410
0
         png_ptr->zlib_set_strategy != strategy))
411
0
      {
412
0
         if (deflateEnd(&png_ptr->zstream) != Z_OK)
413
0
            png_warning(png_ptr, "deflateEnd failed (ignored)");
414
415
0
         png_ptr->flags &= ~PNG_FLAG_ZSTREAM_INITIALIZED;
416
0
      }
417
418
      /* For safety clear out the input and output pointers (currently zlib
419
       * doesn't use them on Init, but it might in the future).
420
       */
421
0
      png_ptr->zstream.next_in = NULL;
422
0
      png_ptr->zstream.avail_in = 0;
423
0
      png_ptr->zstream.next_out = NULL;
424
0
      png_ptr->zstream.avail_out = 0;
425
426
      /* Now initialize if required, setting the new parameters, otherwise just
427
       * do a simple reset to the previous parameters.
428
       */
429
0
      if ((png_ptr->flags & PNG_FLAG_ZSTREAM_INITIALIZED) != 0)
430
0
         ret = deflateReset(&png_ptr->zstream);
431
432
0
      else
433
0
      {
434
0
         ret = deflateInit2(&png_ptr->zstream, level, method, windowBits,
435
0
             memLevel, strategy);
436
437
0
         if (ret == Z_OK)
438
0
            png_ptr->flags |= PNG_FLAG_ZSTREAM_INITIALIZED;
439
0
      }
440
441
      /* The return code is from either deflateReset or deflateInit2; they have
442
       * pretty much the same set of error codes.
443
       */
444
0
      if (ret == Z_OK)
445
0
         png_ptr->zowner = owner;
446
447
0
      else
448
0
         png_zstream_error(png_ptr, ret);
449
450
0
      return ret;
451
0
   }
452
0
}
453
454
/* Clean up (or trim) a linked list of compression buffers. */
455
void /* PRIVATE */
456
png_free_buffer_list(png_structrp png_ptr, png_compression_bufferp *listp)
457
0
{
458
0
   png_compression_bufferp list = *listp;
459
460
0
   if (list != NULL)
461
0
   {
462
0
      *listp = NULL;
463
464
0
      do
465
0
      {
466
0
         png_compression_bufferp next = list->next;
467
468
0
         png_free(png_ptr, list);
469
0
         list = next;
470
0
      }
471
0
      while (list != NULL);
472
0
   }
473
0
}
474
475
#ifdef PNG_WRITE_COMPRESSED_TEXT_SUPPORTED
476
/* This pair of functions encapsulates the operation of (a) compressing a
477
 * text string, and (b) issuing it later as a series of chunk data writes.
478
 * The compression_state structure is shared context for these functions
479
 * set up by the caller to allow access to the relevant local variables.
480
 *
481
 * compression_buffer (new in 1.6.0) is just a linked list of zbuffer_size
482
 * temporary buffers.  From 1.6.0 it is retained in png_struct so that it will
483
 * be correctly freed in the event of a write error (previous implementations
484
 * just leaked memory.)
485
 */
486
typedef struct
487
{
488
   png_const_bytep input;      /* The uncompressed input data */
489
   png_alloc_size_t input_len; /* Its length */
490
   png_uint_32 output_len;     /* Final compressed length */
491
   png_byte output[1024];      /* First block of output */
492
} compression_state;
493
494
static void
495
png_text_compress_init(compression_state *comp, png_const_bytep input,
496
    png_alloc_size_t input_len)
497
0
{
498
0
   comp->input = input;
499
0
   comp->input_len = input_len;
500
0
   comp->output_len = 0;
501
0
}
502
503
/* Compress the data in the compression state input */
504
static int
505
png_text_compress(png_structrp png_ptr, png_uint_32 chunk_name,
506
    compression_state *comp, png_uint_32 prefix_len)
507
0
{
508
0
   int ret;
509
510
   /* To find the length of the output it is necessary to first compress the
511
    * input. The result is buffered rather than using the two-pass algorithm
512
    * that is used on the inflate side; deflate is assumed to be slower and a
513
    * PNG writer is assumed to have more memory available than a PNG reader.
514
    *
515
    * IMPLEMENTATION NOTE: the zlib API deflateBound() can be used to find an
516
    * upper limit on the output size, but it is always bigger than the input
517
    * size so it is likely to be more efficient to use this linked-list
518
    * approach.
519
    */
520
0
   ret = png_deflate_claim(png_ptr, chunk_name, comp->input_len);
521
522
0
   if (ret != Z_OK)
523
0
      return ret;
524
525
   /* Set up the compression buffers, we need a loop here to avoid overflowing a
526
    * uInt.  Use ZLIB_IO_MAX to limit the input.  The output is always limited
527
    * by the output buffer size, so there is no need to check that.  Since this
528
    * is ANSI-C we know that an 'int', hence a uInt, is always at least 16 bits
529
    * in size.
530
    */
531
0
   {
532
0
      png_compression_bufferp *end = &png_ptr->zbuffer_list;
533
0
      png_alloc_size_t input_len = comp->input_len; /* may be zero! */
534
0
      png_uint_32 output_len;
535
536
      /* zlib updates these for us: */
537
0
      png_ptr->zstream.next_in = PNGZ_INPUT_CAST(comp->input);
538
0
      png_ptr->zstream.avail_in = 0; /* Set below */
539
0
      png_ptr->zstream.next_out = comp->output;
540
0
      png_ptr->zstream.avail_out = (sizeof comp->output);
541
542
0
      output_len = png_ptr->zstream.avail_out;
543
544
0
      do
545
0
      {
546
0
         uInt avail_in = ZLIB_IO_MAX;
547
548
0
         if (avail_in > input_len)
549
0
            avail_in = (uInt)input_len;
550
551
0
         input_len -= avail_in;
552
553
0
         png_ptr->zstream.avail_in = avail_in;
554
555
0
         if (png_ptr->zstream.avail_out == 0)
556
0
         {
557
0
            png_compression_buffer *next;
558
559
            /* Chunk data is limited to 2^31 bytes in length, so the prefix
560
             * length must be counted here.
561
             */
562
0
            if (output_len + prefix_len > PNG_UINT_31_MAX)
563
0
            {
564
0
               ret = Z_MEM_ERROR;
565
0
               break;
566
0
            }
567
568
            /* Need a new (malloc'ed) buffer, but there may be one present
569
             * already.
570
             */
571
0
            next = *end;
572
0
            if (next == NULL)
573
0
            {
574
0
               next = png_voidcast(png_compression_bufferp, png_malloc_base
575
0
                  (png_ptr, PNG_COMPRESSION_BUFFER_SIZE(png_ptr)));
576
577
0
               if (next == NULL)
578
0
               {
579
0
                  ret = Z_MEM_ERROR;
580
0
                  break;
581
0
               }
582
583
               /* Link in this buffer (so that it will be freed later) */
584
0
               next->next = NULL;
585
0
               *end = next;
586
0
            }
587
588
0
            png_ptr->zstream.next_out = next->output;
589
0
            png_ptr->zstream.avail_out = png_ptr->zbuffer_size;
590
0
            output_len += png_ptr->zstream.avail_out;
591
592
            /* Move 'end' to the next buffer pointer. */
593
0
            end = &next->next;
594
0
         }
595
596
         /* Compress the data */
597
0
         ret = deflate(&png_ptr->zstream,
598
0
             input_len > 0 ? Z_NO_FLUSH : Z_FINISH);
599
600
         /* Claw back input data that was not consumed (because avail_in is
601
          * reset above every time round the loop).
602
          */
603
0
         input_len += png_ptr->zstream.avail_in;
604
0
         png_ptr->zstream.avail_in = 0; /* safety */
605
0
      }
606
0
      while (ret == Z_OK);
607
608
      /* There may be some space left in the last output buffer. This needs to
609
       * be subtracted from output_len.
610
       */
611
0
      output_len -= png_ptr->zstream.avail_out;
612
0
      png_ptr->zstream.avail_out = 0; /* safety */
613
0
      comp->output_len = output_len;
614
615
      /* Now double check the output length, put in a custom message if it is
616
       * too long.  Otherwise ensure the z_stream::msg pointer is set to
617
       * something.
618
       */
619
0
      if (output_len + prefix_len >= PNG_UINT_31_MAX)
620
0
      {
621
0
         png_ptr->zstream.msg = PNGZ_MSG_CAST("compressed data too long");
622
0
         ret = Z_MEM_ERROR;
623
0
      }
624
625
0
      else
626
0
         png_zstream_error(png_ptr, ret);
627
628
      /* Reset zlib for another zTXt/iTXt or image data */
629
0
      png_ptr->zowner = 0;
630
631
      /* The only success case is Z_STREAM_END, input_len must be 0; if not this
632
       * is an internal error.
633
       */
634
0
      if (ret == Z_STREAM_END && input_len == 0)
635
0
      {
636
0
#ifdef PNG_WRITE_OPTIMIZE_CMF_SUPPORTED
637
         /* Fix up the deflate header, if required */
638
0
         optimize_cmf(comp->output, comp->input_len);
639
0
#endif
640
         /* But Z_OK is returned, not Z_STREAM_END; this allows the claim
641
          * function above to return Z_STREAM_END on an error (though it never
642
          * does in the current versions of zlib.)
643
          */
644
0
         return Z_OK;
645
0
      }
646
647
0
      else
648
0
         return ret;
649
0
   }
650
0
}
651
652
/* Ship the compressed text out via chunk writes */
653
static void
654
png_write_compressed_data_out(png_structrp png_ptr, compression_state *comp)
655
0
{
656
0
   png_uint_32 output_len = comp->output_len;
657
0
   png_const_bytep output = comp->output;
658
0
   png_uint_32 avail = (sizeof comp->output);
659
0
   png_compression_buffer *next = png_ptr->zbuffer_list;
660
661
0
   for (;;)
662
0
   {
663
0
      if (avail > output_len)
664
0
         avail = output_len;
665
666
0
      png_write_chunk_data(png_ptr, output, avail);
667
668
0
      output_len -= avail;
669
670
0
      if (output_len == 0 || next == NULL)
671
0
         break;
672
673
0
      avail = png_ptr->zbuffer_size;
674
0
      output = next->output;
675
0
      next = next->next;
676
0
   }
677
678
   /* This is an internal error; 'next' must have been NULL! */
679
0
   if (output_len > 0)
680
0
      png_error(png_ptr, "error writing ancillary chunked compressed data");
681
0
}
682
#endif /* WRITE_COMPRESSED_TEXT */
683
684
/* Write the IHDR chunk, and update the png_struct with the necessary
685
 * information.  Note that the rest of this code depends upon this
686
 * information being correct.
687
 */
688
void /* PRIVATE */
689
png_write_IHDR(png_structrp png_ptr, png_uint_32 width, png_uint_32 height,
690
    int bit_depth, int color_type, int compression_type, int filter_type,
691
    int interlace_type)
692
0
{
693
0
   png_byte buf[13]; /* Buffer to store the IHDR info */
694
0
   int is_invalid_depth;
695
696
0
   png_debug(1, "in png_write_IHDR");
697
698
   /* Check that we have valid input data from the application info */
699
0
   switch (color_type)
700
0
   {
701
0
      case PNG_COLOR_TYPE_GRAY:
702
0
         switch (bit_depth)
703
0
         {
704
0
            case 1:
705
0
            case 2:
706
0
            case 4:
707
0
            case 8:
708
0
#ifdef PNG_WRITE_16BIT_SUPPORTED
709
0
            case 16:
710
0
#endif
711
0
               png_ptr->channels = 1; break;
712
713
0
            default:
714
0
               png_error(png_ptr,
715
0
                   "Invalid bit depth for grayscale image");
716
0
         }
717
0
         break;
718
719
0
      case PNG_COLOR_TYPE_RGB:
720
0
         is_invalid_depth = (bit_depth != 8);
721
0
#ifdef PNG_WRITE_16BIT_SUPPORTED
722
0
         is_invalid_depth = (is_invalid_depth && bit_depth != 16);
723
0
#endif
724
0
         if (is_invalid_depth)
725
0
            png_error(png_ptr, "Invalid bit depth for RGB image");
726
727
0
         png_ptr->channels = 3;
728
0
         break;
729
730
0
      case PNG_COLOR_TYPE_PALETTE:
731
0
         switch (bit_depth)
732
0
         {
733
0
            case 1:
734
0
            case 2:
735
0
            case 4:
736
0
            case 8:
737
0
               png_ptr->channels = 1;
738
0
               break;
739
740
0
            default:
741
0
               png_error(png_ptr, "Invalid bit depth for paletted image");
742
0
         }
743
0
         break;
744
745
0
      case PNG_COLOR_TYPE_GRAY_ALPHA:
746
0
         is_invalid_depth = (bit_depth != 8);
747
0
#ifdef PNG_WRITE_16BIT_SUPPORTED
748
0
         is_invalid_depth = (is_invalid_depth && bit_depth != 16);
749
0
#endif
750
0
         if (is_invalid_depth)
751
0
            png_error(png_ptr, "Invalid bit depth for grayscale+alpha image");
752
753
0
         png_ptr->channels = 2;
754
0
         break;
755
756
0
      case PNG_COLOR_TYPE_RGB_ALPHA:
757
0
         is_invalid_depth = (bit_depth != 8);
758
0
#ifdef PNG_WRITE_16BIT_SUPPORTED
759
0
         is_invalid_depth = (is_invalid_depth && bit_depth != 16);
760
0
#endif
761
0
         if (is_invalid_depth)
762
0
            png_error(png_ptr, "Invalid bit depth for RGBA image");
763
764
0
         png_ptr->channels = 4;
765
0
         break;
766
767
0
      default:
768
0
         png_error(png_ptr, "Invalid image color type specified");
769
0
   }
770
771
0
   if (compression_type != PNG_COMPRESSION_TYPE_BASE)
772
0
   {
773
0
      png_warning(png_ptr, "Invalid compression type specified");
774
0
      compression_type = PNG_COMPRESSION_TYPE_BASE;
775
0
   }
776
777
   /* Write filter_method 64 (intrapixel differencing) only if
778
    * 1. Libpng was compiled with PNG_MNG_FEATURES_SUPPORTED and
779
    * 2. Libpng did not write a PNG signature (this filter_method is only
780
    *    used in PNG datastreams that are embedded in MNG datastreams) and
781
    * 3. The application called png_permit_mng_features with a mask that
782
    *    included PNG_FLAG_MNG_FILTER_64 and
783
    * 4. The filter_method is 64 and
784
    * 5. The color_type is RGB or RGBA
785
    */
786
0
   if (
787
0
#ifdef PNG_MNG_FEATURES_SUPPORTED
788
0
       !((png_ptr->mng_features_permitted & PNG_FLAG_MNG_FILTER_64) != 0 &&
789
0
       ((png_ptr->mode & PNG_HAVE_PNG_SIGNATURE) == 0) &&
790
0
       (color_type == PNG_COLOR_TYPE_RGB ||
791
0
        color_type == PNG_COLOR_TYPE_RGB_ALPHA) &&
792
0
       (filter_type == PNG_INTRAPIXEL_DIFFERENCING)) &&
793
0
#endif
794
0
       filter_type != PNG_FILTER_TYPE_BASE)
795
0
   {
796
0
      png_warning(png_ptr, "Invalid filter type specified");
797
0
      filter_type = PNG_FILTER_TYPE_BASE;
798
0
   }
799
800
0
#ifdef PNG_WRITE_INTERLACING_SUPPORTED
801
0
   if (interlace_type != PNG_INTERLACE_NONE &&
802
0
       interlace_type != PNG_INTERLACE_ADAM7)
803
0
   {
804
0
      png_warning(png_ptr, "Invalid interlace type specified");
805
0
      interlace_type = PNG_INTERLACE_ADAM7;
806
0
   }
807
#else
808
   interlace_type=PNG_INTERLACE_NONE;
809
#endif
810
811
   /* Save the relevant information */
812
0
   png_ptr->bit_depth = (png_byte)bit_depth;
813
0
   png_ptr->color_type = (png_byte)color_type;
814
0
   png_ptr->interlaced = (png_byte)interlace_type;
815
0
#ifdef PNG_MNG_FEATURES_SUPPORTED
816
0
   png_ptr->filter_type = (png_byte)filter_type;
817
0
#endif
818
0
   png_ptr->compression_type = (png_byte)compression_type;
819
0
   png_ptr->width = width;
820
0
   png_ptr->height = height;
821
822
0
   png_ptr->pixel_depth = (png_byte)(bit_depth * png_ptr->channels);
823
0
   png_ptr->rowbytes = PNG_ROWBYTES(png_ptr->pixel_depth, width);
824
   /* Set the usr info, so any transformations can modify it */
825
0
   png_ptr->usr_width = png_ptr->width;
826
0
   png_ptr->usr_bit_depth = png_ptr->bit_depth;
827
0
   png_ptr->usr_channels = png_ptr->channels;
828
829
   /* Pack the header information into the buffer */
830
0
   png_save_uint_32(buf, width);
831
0
   png_save_uint_32(buf + 4, height);
832
0
   buf[8] = (png_byte)bit_depth;
833
0
   buf[9] = (png_byte)color_type;
834
0
   buf[10] = (png_byte)compression_type;
835
0
   buf[11] = (png_byte)filter_type;
836
0
   buf[12] = (png_byte)interlace_type;
837
838
   /* Write the chunk */
839
0
   png_write_complete_chunk(png_ptr, png_IHDR, buf, 13);
840
841
0
   if ((png_ptr->do_filter) == PNG_NO_FILTERS)
842
0
   {
843
0
      if (png_ptr->color_type == PNG_COLOR_TYPE_PALETTE ||
844
0
          png_ptr->bit_depth < 8)
845
0
         png_ptr->do_filter = PNG_FILTER_NONE;
846
847
0
      else
848
0
         png_ptr->do_filter = PNG_ALL_FILTERS;
849
0
   }
850
851
0
   png_ptr->mode = PNG_HAVE_IHDR; /* not READY_FOR_ZTXT */
852
0
}
853
854
/* Write the palette.  We are careful not to trust png_color to be in the
855
 * correct order for PNG, so people can redefine it to any convenient
856
 * structure.
857
 */
858
void /* PRIVATE */
859
png_write_PLTE(png_structrp png_ptr, png_const_colorp palette,
860
    png_uint_32 num_pal)
861
0
{
862
0
   png_uint_32 max_palette_length, i;
863
0
   png_const_colorp pal_ptr;
864
0
   png_byte buf[3];
865
866
0
   png_debug(1, "in png_write_PLTE");
867
868
0
   max_palette_length = (png_ptr->color_type == PNG_COLOR_TYPE_PALETTE) ?
869
0
      (1 << png_ptr->bit_depth) : PNG_MAX_PALETTE_LENGTH;
870
871
0
   if ((
872
0
#ifdef PNG_MNG_FEATURES_SUPPORTED
873
0
       (png_ptr->mng_features_permitted & PNG_FLAG_MNG_EMPTY_PLTE) == 0 &&
874
0
#endif
875
0
       num_pal == 0) || num_pal > max_palette_length)
876
0
   {
877
0
      if (png_ptr->color_type == PNG_COLOR_TYPE_PALETTE)
878
0
      {
879
0
         png_error(png_ptr, "Invalid number of colors in palette");
880
0
      }
881
882
0
      else
883
0
      {
884
0
         png_warning(png_ptr, "Invalid number of colors in palette");
885
0
         return;
886
0
      }
887
0
   }
888
889
0
   if ((png_ptr->color_type & PNG_COLOR_MASK_COLOR) == 0)
890
0
   {
891
0
      png_warning(png_ptr,
892
0
          "Ignoring request to write a PLTE chunk in grayscale PNG");
893
894
0
      return;
895
0
   }
896
897
0
   png_ptr->num_palette = (png_uint_16)num_pal;
898
0
   png_debug1(3, "num_palette = %d", png_ptr->num_palette);
899
900
0
   png_write_chunk_header(png_ptr, png_PLTE, (png_uint_32)(num_pal * 3));
901
902
0
   for (i = 0, pal_ptr = palette; i < num_pal; i++, pal_ptr++)
903
0
   {
904
0
      buf[0] = pal_ptr->red;
905
0
      buf[1] = pal_ptr->green;
906
0
      buf[2] = pal_ptr->blue;
907
0
      png_write_chunk_data(png_ptr, buf, 3);
908
0
   }
909
910
0
   png_write_chunk_end(png_ptr);
911
0
   png_ptr->mode |= PNG_HAVE_PLTE;
912
0
}
913
914
/* This is similar to png_text_compress, above, except that it does not require
915
 * all of the data at once and, instead of buffering the compressed result,
916
 * writes it as IDAT chunks.  Unlike png_text_compress it *can* png_error out
917
 * because it calls the write interface.  As a result it does its own error
918
 * reporting and does not return an error code.  In the event of error it will
919
 * just call png_error.  The input data length may exceed 32-bits.  The 'flush'
920
 * parameter is exactly the same as that to deflate, with the following
921
 * meanings:
922
 *
923
 * Z_NO_FLUSH: normal incremental output of compressed data
924
 * Z_SYNC_FLUSH: do a SYNC_FLUSH, used by png_write_flush
925
 * Z_FINISH: this is the end of the input, do a Z_FINISH and clean up
926
 *
927
 * The routine manages the acquire and release of the png_ptr->zstream by
928
 * checking and (at the end) clearing png_ptr->zowner; it does some sanity
929
 * checks on the 'mode' flags while doing this.
930
 */
931
void /* PRIVATE */
932
png_compress_IDAT(png_structrp png_ptr, png_const_bytep input,
933
    png_alloc_size_t input_len, int flush)
934
0
{
935
0
   if (png_ptr->zowner != png_IDAT)
936
0
   {
937
      /* First time.   Ensure we have a temporary buffer for compression and
938
       * trim the buffer list if it has more than one entry to free memory.
939
       * If 'WRITE_COMPRESSED_TEXT' is not set the list will never have been
940
       * created at this point, but the check here is quick and safe.
941
       */
942
0
      if (png_ptr->zbuffer_list == NULL)
943
0
      {
944
0
         png_ptr->zbuffer_list = png_voidcast(png_compression_bufferp,
945
0
             png_malloc(png_ptr, PNG_COMPRESSION_BUFFER_SIZE(png_ptr)));
946
0
         png_ptr->zbuffer_list->next = NULL;
947
0
      }
948
949
0
      else
950
0
         png_free_buffer_list(png_ptr, &png_ptr->zbuffer_list->next);
951
952
      /* It is a terminal error if we can't claim the zstream. */
953
0
      if (png_deflate_claim(png_ptr, png_IDAT, png_image_size(png_ptr)) != Z_OK)
954
0
         png_error(png_ptr, png_ptr->zstream.msg);
955
956
      /* The output state is maintained in png_ptr->zstream, so it must be
957
       * initialized here after the claim.
958
       */
959
0
      png_ptr->zstream.next_out = png_ptr->zbuffer_list->output;
960
0
      png_ptr->zstream.avail_out = png_ptr->zbuffer_size;
961
0
   }
962
963
   /* Now loop reading and writing until all the input is consumed or an error
964
    * terminates the operation.  The _out values are maintained across calls to
965
    * this function, but the input must be reset each time.
966
    */
967
0
   png_ptr->zstream.next_in = PNGZ_INPUT_CAST(input);
968
0
   png_ptr->zstream.avail_in = 0; /* set below */
969
0
   for (;;)
970
0
   {
971
0
      int ret;
972
973
      /* INPUT: from the row data */
974
0
      uInt avail = ZLIB_IO_MAX;
975
976
0
      if (avail > input_len)
977
0
         avail = (uInt)input_len; /* safe because of the check */
978
979
0
      png_ptr->zstream.avail_in = avail;
980
0
      input_len -= avail;
981
982
0
      ret = deflate(&png_ptr->zstream, input_len > 0 ? Z_NO_FLUSH : flush);
983
984
      /* Include as-yet unconsumed input */
985
0
      input_len += png_ptr->zstream.avail_in;
986
0
      png_ptr->zstream.avail_in = 0;
987
988
      /* OUTPUT: write complete IDAT chunks when avail_out drops to zero. Note
989
       * that these two zstream fields are preserved across the calls, therefore
990
       * there is no need to set these up on entry to the loop.
991
       */
992
0
      if (png_ptr->zstream.avail_out == 0)
993
0
      {
994
0
         png_bytep data = png_ptr->zbuffer_list->output;
995
0
         uInt size = png_ptr->zbuffer_size;
996
997
         /* Write an IDAT containing the data then reset the buffer.  The
998
          * first IDAT may need deflate header optimization.
999
          */
1000
0
#ifdef PNG_WRITE_OPTIMIZE_CMF_SUPPORTED
1001
0
            if ((png_ptr->mode & PNG_HAVE_IDAT) == 0 &&
1002
0
                png_ptr->compression_type == PNG_COMPRESSION_TYPE_BASE)
1003
0
               optimize_cmf(data, png_image_size(png_ptr));
1004
0
#endif
1005
1006
0
         if (size > 0)
1007
0
            png_write_complete_chunk(png_ptr, png_IDAT, data, size);
1008
0
         png_ptr->mode |= PNG_HAVE_IDAT;
1009
1010
0
         png_ptr->zstream.next_out = data;
1011
0
         png_ptr->zstream.avail_out = size;
1012
1013
         /* For SYNC_FLUSH or FINISH it is essential to keep calling zlib with
1014
          * the same flush parameter until it has finished output, for NO_FLUSH
1015
          * it doesn't matter.
1016
          */
1017
0
         if (ret == Z_OK && flush != Z_NO_FLUSH)
1018
0
            continue;
1019
0
      }
1020
1021
      /* The order of these checks doesn't matter much; it just affects which
1022
       * possible error might be detected if multiple things go wrong at once.
1023
       */
1024
0
      if (ret == Z_OK) /* most likely return code! */
1025
0
      {
1026
         /* If all the input has been consumed then just return.  If Z_FINISH
1027
          * was used as the flush parameter something has gone wrong if we get
1028
          * here.
1029
          */
1030
0
         if (input_len == 0)
1031
0
         {
1032
0
            if (flush == Z_FINISH)
1033
0
               png_error(png_ptr, "Z_OK on Z_FINISH with output space");
1034
1035
0
            return;
1036
0
         }
1037
0
      }
1038
1039
0
      else if (ret == Z_STREAM_END && flush == Z_FINISH)
1040
0
      {
1041
         /* This is the end of the IDAT data; any pending output must be
1042
          * flushed.  For small PNG files we may still be at the beginning.
1043
          */
1044
0
         png_bytep data = png_ptr->zbuffer_list->output;
1045
0
         uInt size = png_ptr->zbuffer_size - png_ptr->zstream.avail_out;
1046
1047
0
#ifdef PNG_WRITE_OPTIMIZE_CMF_SUPPORTED
1048
0
         if ((png_ptr->mode & PNG_HAVE_IDAT) == 0 &&
1049
0
             png_ptr->compression_type == PNG_COMPRESSION_TYPE_BASE)
1050
0
            optimize_cmf(data, png_image_size(png_ptr));
1051
0
#endif
1052
1053
0
         if (size > 0)
1054
0
            png_write_complete_chunk(png_ptr, png_IDAT, data, size);
1055
0
         png_ptr->zstream.avail_out = 0;
1056
0
         png_ptr->zstream.next_out = NULL;
1057
0
         png_ptr->mode |= PNG_HAVE_IDAT | PNG_AFTER_IDAT;
1058
1059
0
         png_ptr->zowner = 0; /* Release the stream */
1060
0
         return;
1061
0
      }
1062
1063
0
      else
1064
0
      {
1065
         /* This is an error condition. */
1066
0
         png_zstream_error(png_ptr, ret);
1067
0
         png_error(png_ptr, png_ptr->zstream.msg);
1068
0
      }
1069
0
   }
1070
0
}
1071
1072
/* Write an IEND chunk */
1073
void /* PRIVATE */
1074
png_write_IEND(png_structrp png_ptr)
1075
0
{
1076
0
   png_debug(1, "in png_write_IEND");
1077
1078
0
   png_write_complete_chunk(png_ptr, png_IEND, NULL, 0);
1079
0
   png_ptr->mode |= PNG_HAVE_IEND;
1080
0
}
1081
1082
#ifdef PNG_WRITE_gAMA_SUPPORTED
1083
/* Write a gAMA chunk */
1084
void /* PRIVATE */
1085
png_write_gAMA_fixed(png_structrp png_ptr, png_fixed_point file_gamma)
1086
0
{
1087
0
   png_byte buf[4];
1088
1089
0
   png_debug(1, "in png_write_gAMA");
1090
1091
   /* file_gamma is saved in 1/100,000ths */
1092
0
   png_save_uint_32(buf, (png_uint_32)file_gamma);
1093
0
   png_write_complete_chunk(png_ptr, png_gAMA, buf, 4);
1094
0
}
1095
#endif
1096
1097
#ifdef PNG_WRITE_sRGB_SUPPORTED
1098
/* Write a sRGB chunk */
1099
void /* PRIVATE */
1100
png_write_sRGB(png_structrp png_ptr, int srgb_intent)
1101
0
{
1102
0
   png_byte buf[1];
1103
1104
0
   png_debug(1, "in png_write_sRGB");
1105
1106
0
   if (srgb_intent >= PNG_sRGB_INTENT_LAST)
1107
0
      png_warning(png_ptr,
1108
0
          "Invalid sRGB rendering intent specified");
1109
1110
0
   buf[0]=(png_byte)srgb_intent;
1111
0
   png_write_complete_chunk(png_ptr, png_sRGB, buf, 1);
1112
0
}
1113
#endif
1114
1115
#ifdef PNG_WRITE_iCCP_SUPPORTED
1116
/* Write an iCCP chunk */
1117
void /* PRIVATE */
1118
png_write_iCCP(png_structrp png_ptr, png_const_charp name,
1119
    png_const_bytep profile, png_uint_32 profile_len)
1120
0
{
1121
0
   png_uint_32 name_len;
1122
0
   png_byte new_name[81]; /* 1 byte for the compression byte */
1123
0
   compression_state comp;
1124
0
   png_uint_32 temp;
1125
1126
0
   png_debug(1, "in png_write_iCCP");
1127
1128
   /* These are all internal problems: the profile should have been checked
1129
    * before when it was stored.
1130
    */
1131
0
   if (profile == NULL)
1132
0
      png_error(png_ptr, "No profile for iCCP chunk"); /* internal error */
1133
1134
0
   if (profile_len < 132)
1135
0
      png_error(png_ptr, "ICC profile too short");
1136
1137
0
   if (png_get_uint_32(profile) != profile_len)
1138
0
      png_error(png_ptr, "Incorrect data in iCCP");
1139
1140
0
   temp = (png_uint_32) (*(profile+8));
1141
0
   if (temp > 3 && (profile_len & 0x03))
1142
0
      png_error(png_ptr, "ICC profile length invalid (not a multiple of 4)");
1143
1144
0
   {
1145
0
      png_uint_32 embedded_profile_len = png_get_uint_32(profile);
1146
1147
0
      if (profile_len != embedded_profile_len)
1148
0
         png_error(png_ptr, "Profile length does not match profile");
1149
0
   }
1150
1151
0
   name_len = png_check_keyword(png_ptr, name, new_name);
1152
1153
0
   if (name_len == 0)
1154
0
      png_error(png_ptr, "iCCP: invalid keyword");
1155
1156
0
   new_name[++name_len] = PNG_COMPRESSION_TYPE_BASE;
1157
1158
   /* Make sure we include the NULL after the name and the compression type */
1159
0
   ++name_len;
1160
1161
0
   png_text_compress_init(&comp, profile, profile_len);
1162
1163
   /* Allow for keyword terminator and compression byte */
1164
0
   if (png_text_compress(png_ptr, png_iCCP, &comp, name_len) != Z_OK)
1165
0
      png_error(png_ptr, png_ptr->zstream.msg);
1166
1167
0
   png_write_chunk_header(png_ptr, png_iCCP, name_len + comp.output_len);
1168
1169
0
   png_write_chunk_data(png_ptr, new_name, name_len);
1170
1171
0
   png_write_compressed_data_out(png_ptr, &comp);
1172
1173
0
   png_write_chunk_end(png_ptr);
1174
0
}
1175
#endif
1176
1177
#ifdef PNG_WRITE_sPLT_SUPPORTED
1178
/* Write a sPLT chunk */
1179
void /* PRIVATE */
1180
png_write_sPLT(png_structrp png_ptr, png_const_sPLT_tp spalette)
1181
0
{
1182
0
   png_uint_32 name_len;
1183
0
   png_byte new_name[80];
1184
0
   png_byte entrybuf[10];
1185
0
   size_t entry_size = (spalette->depth == 8 ? 6 : 10);
1186
0
   size_t palette_size = entry_size * (size_t)spalette->nentries;
1187
0
   png_sPLT_entryp ep;
1188
1189
0
   png_debug(1, "in png_write_sPLT");
1190
1191
0
   name_len = png_check_keyword(png_ptr, spalette->name, new_name);
1192
1193
0
   if (name_len == 0)
1194
0
      png_error(png_ptr, "sPLT: invalid keyword");
1195
1196
   /* Make sure we include the NULL after the name */
1197
0
   png_write_chunk_header(png_ptr, png_sPLT,
1198
0
       (png_uint_32)(name_len + 2 + palette_size));
1199
1200
0
   png_write_chunk_data(png_ptr, (png_bytep)new_name, (size_t)(name_len + 1));
1201
1202
0
   png_write_chunk_data(png_ptr, &spalette->depth, 1);
1203
1204
   /* Loop through each palette entry, writing appropriately */
1205
0
   for (ep = spalette->entries; ep<spalette->entries + spalette->nentries; ep++)
1206
0
   {
1207
0
      if (spalette->depth == 8)
1208
0
      {
1209
0
         entrybuf[0] = (png_byte)ep->red;
1210
0
         entrybuf[1] = (png_byte)ep->green;
1211
0
         entrybuf[2] = (png_byte)ep->blue;
1212
0
         entrybuf[3] = (png_byte)ep->alpha;
1213
0
         png_save_uint_16(entrybuf + 4, ep->frequency);
1214
0
      }
1215
1216
0
      else
1217
0
      {
1218
0
         png_save_uint_16(entrybuf + 0, ep->red);
1219
0
         png_save_uint_16(entrybuf + 2, ep->green);
1220
0
         png_save_uint_16(entrybuf + 4, ep->blue);
1221
0
         png_save_uint_16(entrybuf + 6, ep->alpha);
1222
0
         png_save_uint_16(entrybuf + 8, ep->frequency);
1223
0
      }
1224
1225
0
      png_write_chunk_data(png_ptr, entrybuf, entry_size);
1226
0
   }
1227
1228
0
   png_write_chunk_end(png_ptr);
1229
0
}
1230
#endif
1231
1232
#ifdef PNG_WRITE_sBIT_SUPPORTED
1233
/* Write the sBIT chunk */
1234
void /* PRIVATE */
1235
png_write_sBIT(png_structrp png_ptr, png_const_color_8p sbit, int color_type)
1236
0
{
1237
0
   png_byte buf[4];
1238
0
   size_t size;
1239
1240
0
   png_debug(1, "in png_write_sBIT");
1241
1242
   /* Make sure we don't depend upon the order of PNG_COLOR_8 */
1243
0
   if ((color_type & PNG_COLOR_MASK_COLOR) != 0)
1244
0
   {
1245
0
      png_byte maxbits;
1246
1247
0
      maxbits = (png_byte)(color_type==PNG_COLOR_TYPE_PALETTE ? 8 :
1248
0
          png_ptr->usr_bit_depth);
1249
1250
0
      if (sbit->red == 0 || sbit->red > maxbits ||
1251
0
          sbit->green == 0 || sbit->green > maxbits ||
1252
0
          sbit->blue == 0 || sbit->blue > maxbits)
1253
0
      {
1254
0
         png_warning(png_ptr, "Invalid sBIT depth specified");
1255
0
         return;
1256
0
      }
1257
1258
0
      buf[0] = sbit->red;
1259
0
      buf[1] = sbit->green;
1260
0
      buf[2] = sbit->blue;
1261
0
      size = 3;
1262
0
   }
1263
1264
0
   else
1265
0
   {
1266
0
      if (sbit->gray == 0 || sbit->gray > png_ptr->usr_bit_depth)
1267
0
      {
1268
0
         png_warning(png_ptr, "Invalid sBIT depth specified");
1269
0
         return;
1270
0
      }
1271
1272
0
      buf[0] = sbit->gray;
1273
0
      size = 1;
1274
0
   }
1275
1276
0
   if ((color_type & PNG_COLOR_MASK_ALPHA) != 0)
1277
0
   {
1278
0
      if (sbit->alpha == 0 || sbit->alpha > png_ptr->usr_bit_depth)
1279
0
      {
1280
0
         png_warning(png_ptr, "Invalid sBIT depth specified");
1281
0
         return;
1282
0
      }
1283
1284
0
      buf[size++] = sbit->alpha;
1285
0
   }
1286
1287
0
   png_write_complete_chunk(png_ptr, png_sBIT, buf, size);
1288
0
}
1289
#endif
1290
1291
#ifdef PNG_WRITE_cHRM_SUPPORTED
1292
/* Write the cHRM chunk */
1293
void /* PRIVATE */
1294
png_write_cHRM_fixed(png_structrp png_ptr, const png_xy *xy)
1295
0
{
1296
0
   png_byte buf[32];
1297
1298
0
   png_debug(1, "in png_write_cHRM");
1299
1300
   /* Each value is saved in 1/100,000ths */
1301
0
   png_save_int_32(buf,      xy->whitex);
1302
0
   png_save_int_32(buf +  4, xy->whitey);
1303
1304
0
   png_save_int_32(buf +  8, xy->redx);
1305
0
   png_save_int_32(buf + 12, xy->redy);
1306
1307
0
   png_save_int_32(buf + 16, xy->greenx);
1308
0
   png_save_int_32(buf + 20, xy->greeny);
1309
1310
0
   png_save_int_32(buf + 24, xy->bluex);
1311
0
   png_save_int_32(buf + 28, xy->bluey);
1312
1313
0
   png_write_complete_chunk(png_ptr, png_cHRM, buf, 32);
1314
0
}
1315
#endif
1316
1317
#ifdef PNG_WRITE_tRNS_SUPPORTED
1318
/* Write the tRNS chunk */
1319
void /* PRIVATE */
1320
png_write_tRNS(png_structrp png_ptr, png_const_bytep trans_alpha,
1321
    png_const_color_16p tran, int num_trans, int color_type)
1322
0
{
1323
0
   png_byte buf[6];
1324
1325
0
   png_debug(1, "in png_write_tRNS");
1326
1327
0
   if (color_type == PNG_COLOR_TYPE_PALETTE)
1328
0
   {
1329
0
      if (num_trans <= 0 || num_trans > (int)png_ptr->num_palette)
1330
0
      {
1331
0
         png_app_warning(png_ptr,
1332
0
             "Invalid number of transparent colors specified");
1333
0
         return;
1334
0
      }
1335
1336
      /* Write the chunk out as it is */
1337
0
      png_write_complete_chunk(png_ptr, png_tRNS, trans_alpha,
1338
0
          (size_t)num_trans);
1339
0
   }
1340
1341
0
   else if (color_type == PNG_COLOR_TYPE_GRAY)
1342
0
   {
1343
      /* One 16-bit value */
1344
0
      if (tran->gray >= (1 << png_ptr->bit_depth))
1345
0
      {
1346
0
         png_app_warning(png_ptr,
1347
0
             "Ignoring attempt to write tRNS chunk out-of-range for bit_depth");
1348
1349
0
         return;
1350
0
      }
1351
1352
0
      png_save_uint_16(buf, tran->gray);
1353
0
      png_write_complete_chunk(png_ptr, png_tRNS, buf, 2);
1354
0
   }
1355
1356
0
   else if (color_type == PNG_COLOR_TYPE_RGB)
1357
0
   {
1358
      /* Three 16-bit values */
1359
0
      png_save_uint_16(buf, tran->red);
1360
0
      png_save_uint_16(buf + 2, tran->green);
1361
0
      png_save_uint_16(buf + 4, tran->blue);
1362
0
#ifdef PNG_WRITE_16BIT_SUPPORTED
1363
0
      if (png_ptr->bit_depth == 8 && (buf[0] | buf[2] | buf[4]) != 0)
1364
#else
1365
      if ((buf[0] | buf[2] | buf[4]) != 0)
1366
#endif
1367
0
      {
1368
0
         png_app_warning(png_ptr,
1369
0
             "Ignoring attempt to write 16-bit tRNS chunk when bit_depth is 8");
1370
0
         return;
1371
0
      }
1372
1373
0
      png_write_complete_chunk(png_ptr, png_tRNS, buf, 6);
1374
0
   }
1375
1376
0
   else
1377
0
   {
1378
0
      png_app_warning(png_ptr, "Can't write tRNS with an alpha channel");
1379
0
   }
1380
0
}
1381
#endif
1382
1383
#ifdef PNG_WRITE_bKGD_SUPPORTED
1384
/* Write the background chunk */
1385
void /* PRIVATE */
1386
png_write_bKGD(png_structrp png_ptr, png_const_color_16p back, int color_type)
1387
0
{
1388
0
   png_byte buf[6];
1389
1390
0
   png_debug(1, "in png_write_bKGD");
1391
1392
0
   if (color_type == PNG_COLOR_TYPE_PALETTE)
1393
0
   {
1394
0
      if (
1395
0
#ifdef PNG_MNG_FEATURES_SUPPORTED
1396
0
          (png_ptr->num_palette != 0 ||
1397
0
          (png_ptr->mng_features_permitted & PNG_FLAG_MNG_EMPTY_PLTE) == 0) &&
1398
0
#endif
1399
0
         back->index >= png_ptr->num_palette)
1400
0
      {
1401
0
         png_warning(png_ptr, "Invalid background palette index");
1402
0
         return;
1403
0
      }
1404
1405
0
      buf[0] = back->index;
1406
0
      png_write_complete_chunk(png_ptr, png_bKGD, buf, 1);
1407
0
   }
1408
1409
0
   else if ((color_type & PNG_COLOR_MASK_COLOR) != 0)
1410
0
   {
1411
0
      png_save_uint_16(buf, back->red);
1412
0
      png_save_uint_16(buf + 2, back->green);
1413
0
      png_save_uint_16(buf + 4, back->blue);
1414
0
#ifdef PNG_WRITE_16BIT_SUPPORTED
1415
0
      if (png_ptr->bit_depth == 8 && (buf[0] | buf[2] | buf[4]) != 0)
1416
#else
1417
      if ((buf[0] | buf[2] | buf[4]) != 0)
1418
#endif
1419
0
      {
1420
0
         png_warning(png_ptr,
1421
0
             "Ignoring attempt to write 16-bit bKGD chunk "
1422
0
             "when bit_depth is 8");
1423
1424
0
         return;
1425
0
      }
1426
1427
0
      png_write_complete_chunk(png_ptr, png_bKGD, buf, 6);
1428
0
   }
1429
1430
0
   else
1431
0
   {
1432
0
      if (back->gray >= (1 << png_ptr->bit_depth))
1433
0
      {
1434
0
         png_warning(png_ptr,
1435
0
             "Ignoring attempt to write bKGD chunk out-of-range for bit_depth");
1436
1437
0
         return;
1438
0
      }
1439
1440
0
      png_save_uint_16(buf, back->gray);
1441
0
      png_write_complete_chunk(png_ptr, png_bKGD, buf, 2);
1442
0
   }
1443
0
}
1444
#endif
1445
1446
#ifdef PNG_WRITE_cICP_SUPPORTED
1447
/* Write the cICP data */
1448
void /* PRIVATE */
1449
png_write_cICP(png_structrp png_ptr,
1450
               png_byte colour_primaries, png_byte transfer_function,
1451
               png_byte matrix_coefficients, png_byte video_full_range_flag)
1452
{
1453
   png_byte buf[4];
1454
1455
   png_debug(1, "in png_write_cICP");
1456
1457
   png_write_chunk_header(png_ptr, png_cICP, 4);
1458
1459
   buf[0] = colour_primaries;
1460
   buf[1] = transfer_function;
1461
   buf[2] = matrix_coefficients;
1462
   buf[3] = video_full_range_flag;
1463
   png_write_chunk_data(png_ptr, buf, 4);
1464
1465
   png_write_chunk_end(png_ptr);
1466
}
1467
#endif
1468
1469
#ifdef PNG_WRITE_cLLI_SUPPORTED
1470
void /* PRIVATE */
1471
png_write_cLLI_fixed(png_structrp png_ptr, png_uint_32 maxCLL,
1472
   png_uint_32 maxFALL)
1473
{
1474
   png_byte buf[8];
1475
1476
   png_debug(1, "in png_write_cLLI_fixed");
1477
1478
   png_save_uint_32(buf, maxCLL);
1479
   png_save_uint_32(buf + 4, maxFALL);
1480
1481
   png_write_complete_chunk(png_ptr, png_cLLI, buf, 8);
1482
}
1483
#endif
1484
1485
#ifdef PNG_WRITE_mDCV_SUPPORTED
1486
void /* PRIVATE */
1487
png_write_mDCV_fixed(png_structrp png_ptr,
1488
   png_uint_16 red_x, png_uint_16 red_y,
1489
   png_uint_16 green_x, png_uint_16 green_y,
1490
   png_uint_16 blue_x, png_uint_16 blue_y,
1491
   png_uint_16 white_x, png_uint_16 white_y,
1492
   png_uint_32 maxDL, png_uint_32 minDL)
1493
{
1494
   png_byte buf[24];
1495
1496
   png_debug(1, "in png_write_mDCV_fixed");
1497
1498
   png_save_uint_16(buf +  0, red_x);
1499
   png_save_uint_16(buf +  2, red_y);
1500
   png_save_uint_16(buf +  4, green_x);
1501
   png_save_uint_16(buf +  6, green_y);
1502
   png_save_uint_16(buf +  8, blue_x);
1503
   png_save_uint_16(buf + 10, blue_y);
1504
   png_save_uint_16(buf + 12, white_x);
1505
   png_save_uint_16(buf + 14, white_y);
1506
   png_save_uint_32(buf + 16, maxDL);
1507
   png_save_uint_32(buf + 20, minDL);
1508
1509
   png_write_complete_chunk(png_ptr, png_mDCV, buf, 24);
1510
}
1511
#endif
1512
1513
#ifdef PNG_WRITE_eXIf_SUPPORTED
1514
/* Write the Exif data */
1515
void /* PRIVATE */
1516
png_write_eXIf(png_structrp png_ptr, png_bytep exif, int num_exif)
1517
{
1518
   int i;
1519
   png_byte buf[1];
1520
1521
   png_debug(1, "in png_write_eXIf");
1522
1523
   png_write_chunk_header(png_ptr, png_eXIf, (png_uint_32)(num_exif));
1524
1525
   for (i = 0; i < num_exif; i++)
1526
   {
1527
      buf[0] = exif[i];
1528
      png_write_chunk_data(png_ptr, buf, 1);
1529
   }
1530
1531
   png_write_chunk_end(png_ptr);
1532
}
1533
#endif
1534
1535
#ifdef PNG_WRITE_hIST_SUPPORTED
1536
/* Write the histogram */
1537
void /* PRIVATE */
1538
png_write_hIST(png_structrp png_ptr, png_const_uint_16p hist, int num_hist)
1539
0
{
1540
0
   int i;
1541
0
   png_byte buf[3];
1542
1543
0
   png_debug(1, "in png_write_hIST");
1544
1545
0
   if (num_hist > (int)png_ptr->num_palette)
1546
0
   {
1547
0
      png_debug2(3, "num_hist = %d, num_palette = %d", num_hist,
1548
0
          png_ptr->num_palette);
1549
1550
0
      png_warning(png_ptr, "Invalid number of histogram entries specified");
1551
0
      return;
1552
0
   }
1553
1554
0
   png_write_chunk_header(png_ptr, png_hIST, (png_uint_32)(num_hist * 2));
1555
1556
0
   for (i = 0; i < num_hist; i++)
1557
0
   {
1558
0
      png_save_uint_16(buf, hist[i]);
1559
0
      png_write_chunk_data(png_ptr, buf, 2);
1560
0
   }
1561
1562
0
   png_write_chunk_end(png_ptr);
1563
0
}
1564
#endif
1565
1566
#ifdef PNG_WRITE_tEXt_SUPPORTED
1567
/* Write a tEXt chunk */
1568
void /* PRIVATE */
1569
png_write_tEXt(png_structrp png_ptr, png_const_charp key, png_const_charp text,
1570
    size_t text_len)
1571
0
{
1572
0
   png_uint_32 key_len;
1573
0
   png_byte new_key[80];
1574
1575
0
   png_debug(1, "in png_write_tEXt");
1576
1577
0
   key_len = png_check_keyword(png_ptr, key, new_key);
1578
1579
0
   if (key_len == 0)
1580
0
      png_error(png_ptr, "tEXt: invalid keyword");
1581
1582
0
   if (text == NULL || *text == '\0')
1583
0
      text_len = 0;
1584
1585
0
   else
1586
0
      text_len = strlen(text);
1587
1588
0
   if (text_len > PNG_UINT_31_MAX - (key_len+1))
1589
0
      png_error(png_ptr, "tEXt: text too long");
1590
1591
   /* Make sure we include the 0 after the key */
1592
0
   png_write_chunk_header(png_ptr, png_tEXt,
1593
0
       (png_uint_32)/*checked above*/(key_len + text_len + 1));
1594
   /*
1595
    * We leave it to the application to meet PNG-1.0 requirements on the
1596
    * contents of the text.  PNG-1.0 through PNG-1.2 discourage the use of
1597
    * any non-Latin-1 characters except for NEWLINE.  ISO PNG will forbid them.
1598
    * The NUL character is forbidden by PNG-1.0 through PNG-1.2 and ISO PNG.
1599
    */
1600
0
   png_write_chunk_data(png_ptr, new_key, key_len + 1);
1601
1602
0
   if (text_len != 0)
1603
0
      png_write_chunk_data(png_ptr, (png_const_bytep)text, text_len);
1604
1605
0
   png_write_chunk_end(png_ptr);
1606
0
}
1607
#endif
1608
1609
#ifdef PNG_WRITE_zTXt_SUPPORTED
1610
/* Write a compressed text chunk */
1611
void /* PRIVATE */
1612
png_write_zTXt(png_structrp png_ptr, png_const_charp key, png_const_charp text,
1613
    int compression)
1614
0
{
1615
0
   png_uint_32 key_len;
1616
0
   png_byte new_key[81];
1617
0
   compression_state comp;
1618
1619
0
   png_debug(1, "in png_write_zTXt");
1620
1621
0
   if (compression == PNG_TEXT_COMPRESSION_NONE)
1622
0
   {
1623
0
      png_write_tEXt(png_ptr, key, text, 0);
1624
0
      return;
1625
0
   }
1626
1627
0
   if (compression != PNG_TEXT_COMPRESSION_zTXt)
1628
0
      png_error(png_ptr, "zTXt: invalid compression type");
1629
1630
0
   key_len = png_check_keyword(png_ptr, key, new_key);
1631
1632
0
   if (key_len == 0)
1633
0
      png_error(png_ptr, "zTXt: invalid keyword");
1634
1635
   /* Add the compression method and 1 for the keyword separator. */
1636
0
   new_key[++key_len] = PNG_COMPRESSION_TYPE_BASE;
1637
0
   ++key_len;
1638
1639
   /* Compute the compressed data; do it now for the length */
1640
0
   png_text_compress_init(&comp, (png_const_bytep)text,
1641
0
       text == NULL ? 0 : strlen(text));
1642
1643
0
   if (png_text_compress(png_ptr, png_zTXt, &comp, key_len) != Z_OK)
1644
0
      png_error(png_ptr, png_ptr->zstream.msg);
1645
1646
   /* Write start of chunk */
1647
0
   png_write_chunk_header(png_ptr, png_zTXt, key_len + comp.output_len);
1648
1649
   /* Write key */
1650
0
   png_write_chunk_data(png_ptr, new_key, key_len);
1651
1652
   /* Write the compressed data */
1653
0
   png_write_compressed_data_out(png_ptr, &comp);
1654
1655
   /* Close the chunk */
1656
0
   png_write_chunk_end(png_ptr);
1657
0
}
1658
#endif
1659
1660
#ifdef PNG_WRITE_iTXt_SUPPORTED
1661
/* Write an iTXt chunk */
1662
void /* PRIVATE */
1663
png_write_iTXt(png_structrp png_ptr, int compression, png_const_charp key,
1664
    png_const_charp lang, png_const_charp lang_key, png_const_charp text)
1665
0
{
1666
0
   png_uint_32 key_len, prefix_len;
1667
0
   size_t lang_len, lang_key_len;
1668
0
   png_byte new_key[82];
1669
0
   compression_state comp;
1670
1671
0
   png_debug(1, "in png_write_iTXt");
1672
1673
0
   key_len = png_check_keyword(png_ptr, key, new_key);
1674
1675
0
   if (key_len == 0)
1676
0
      png_error(png_ptr, "iTXt: invalid keyword");
1677
1678
   /* Set the compression flag */
1679
0
   switch (compression)
1680
0
   {
1681
0
      case PNG_ITXT_COMPRESSION_NONE:
1682
0
      case PNG_TEXT_COMPRESSION_NONE:
1683
0
         compression = new_key[++key_len] = 0; /* no compression */
1684
0
         break;
1685
1686
0
      case PNG_TEXT_COMPRESSION_zTXt:
1687
0
      case PNG_ITXT_COMPRESSION_zTXt:
1688
0
         compression = new_key[++key_len] = 1; /* compressed */
1689
0
         break;
1690
1691
0
      default:
1692
0
         png_error(png_ptr, "iTXt: invalid compression");
1693
0
   }
1694
1695
0
   new_key[++key_len] = PNG_COMPRESSION_TYPE_BASE;
1696
0
   ++key_len; /* for the keyword separator */
1697
1698
   /* We leave it to the application to meet PNG-1.0 requirements on the
1699
    * contents of the text.  PNG-1.0 through PNG-1.2 discourage the use of
1700
    * any non-Latin-1 characters except for NEWLINE.  ISO PNG, however,
1701
    * specifies that the text is UTF-8 and this really doesn't require any
1702
    * checking.
1703
    *
1704
    * The NUL character is forbidden by PNG-1.0 through PNG-1.2 and ISO PNG.
1705
    *
1706
    * TODO: validate the language tag correctly (see the spec.)
1707
    */
1708
0
   if (lang == NULL) lang = ""; /* empty language is valid */
1709
0
   lang_len = strlen(lang)+1;
1710
0
   if (lang_key == NULL) lang_key = ""; /* may be empty */
1711
0
   lang_key_len = strlen(lang_key)+1;
1712
0
   if (text == NULL) text = ""; /* may be empty */
1713
1714
0
   prefix_len = key_len;
1715
0
   if (lang_len > PNG_UINT_31_MAX-prefix_len)
1716
0
      prefix_len = PNG_UINT_31_MAX;
1717
0
   else
1718
0
      prefix_len = (png_uint_32)(prefix_len + lang_len);
1719
1720
0
   if (lang_key_len > PNG_UINT_31_MAX-prefix_len)
1721
0
      prefix_len = PNG_UINT_31_MAX;
1722
0
   else
1723
0
      prefix_len = (png_uint_32)(prefix_len + lang_key_len);
1724
1725
0
   png_text_compress_init(&comp, (png_const_bytep)text, strlen(text));
1726
1727
0
   if (compression != 0)
1728
0
   {
1729
0
      if (png_text_compress(png_ptr, png_iTXt, &comp, prefix_len) != Z_OK)
1730
0
         png_error(png_ptr, png_ptr->zstream.msg);
1731
0
   }
1732
1733
0
   else
1734
0
   {
1735
0
      if (comp.input_len > PNG_UINT_31_MAX-prefix_len)
1736
0
         png_error(png_ptr, "iTXt: uncompressed text too long");
1737
1738
      /* So the string will fit in a chunk: */
1739
0
      comp.output_len = (png_uint_32)/*SAFE*/comp.input_len;
1740
0
   }
1741
1742
0
   png_write_chunk_header(png_ptr, png_iTXt, comp.output_len + prefix_len);
1743
1744
0
   png_write_chunk_data(png_ptr, new_key, key_len);
1745
1746
0
   png_write_chunk_data(png_ptr, (png_const_bytep)lang, lang_len);
1747
1748
0
   png_write_chunk_data(png_ptr, (png_const_bytep)lang_key, lang_key_len);
1749
1750
0
   if (compression != 0)
1751
0
      png_write_compressed_data_out(png_ptr, &comp);
1752
1753
0
   else
1754
0
      png_write_chunk_data(png_ptr, (png_const_bytep)text, comp.output_len);
1755
1756
0
   png_write_chunk_end(png_ptr);
1757
0
}
1758
#endif
1759
1760
#ifdef PNG_WRITE_oFFs_SUPPORTED
1761
/* Write the oFFs chunk */
1762
void /* PRIVATE */
1763
png_write_oFFs(png_structrp png_ptr, png_int_32 x_offset, png_int_32 y_offset,
1764
    int unit_type)
1765
0
{
1766
0
   png_byte buf[9];
1767
1768
0
   png_debug(1, "in png_write_oFFs");
1769
1770
0
   if (unit_type >= PNG_OFFSET_LAST)
1771
0
      png_warning(png_ptr, "Unrecognized unit type for oFFs chunk");
1772
1773
0
   png_save_int_32(buf, x_offset);
1774
0
   png_save_int_32(buf + 4, y_offset);
1775
0
   buf[8] = (png_byte)unit_type;
1776
1777
0
   png_write_complete_chunk(png_ptr, png_oFFs, buf, 9);
1778
0
}
1779
#endif
1780
#ifdef PNG_WRITE_pCAL_SUPPORTED
1781
/* Write the pCAL chunk (described in the PNG extensions document) */
1782
void /* PRIVATE */
1783
png_write_pCAL(png_structrp png_ptr, png_charp purpose, png_int_32 X0,
1784
    png_int_32 X1, int type, int nparams, png_const_charp units,
1785
    png_charpp params)
1786
0
{
1787
0
   png_uint_32 purpose_len;
1788
0
   size_t units_len, total_len;
1789
0
   size_t *params_len;
1790
0
   png_byte buf[10];
1791
0
   png_byte new_purpose[80];
1792
0
   int i;
1793
1794
0
   png_debug1(1, "in png_write_pCAL (%d parameters)", nparams);
1795
1796
0
   if (type >= PNG_EQUATION_LAST)
1797
0
      png_error(png_ptr, "Unrecognized equation type for pCAL chunk");
1798
1799
0
   purpose_len = png_check_keyword(png_ptr, purpose, new_purpose);
1800
1801
0
   if (purpose_len == 0)
1802
0
      png_error(png_ptr, "pCAL: invalid keyword");
1803
1804
0
   ++purpose_len; /* terminator */
1805
1806
0
   png_debug1(3, "pCAL purpose length = %d", (int)purpose_len);
1807
0
   units_len = strlen(units) + (nparams == 0 ? 0 : 1);
1808
0
   png_debug1(3, "pCAL units length = %d", (int)units_len);
1809
0
   total_len = purpose_len + units_len + 10;
1810
1811
0
   params_len = (size_t *)png_malloc(png_ptr,
1812
0
       (png_alloc_size_t)((png_alloc_size_t)nparams * (sizeof (size_t))));
1813
1814
   /* Find the length of each parameter, making sure we don't count the
1815
    * null terminator for the last parameter.
1816
    */
1817
0
   for (i = 0; i < nparams; i++)
1818
0
   {
1819
0
      params_len[i] = strlen(params[i]) + (i == nparams - 1 ? 0 : 1);
1820
0
      png_debug2(3, "pCAL parameter %d length = %lu", i,
1821
0
          (unsigned long)params_len[i]);
1822
0
      total_len += params_len[i];
1823
0
   }
1824
1825
0
   png_debug1(3, "pCAL total length = %d", (int)total_len);
1826
0
   png_write_chunk_header(png_ptr, png_pCAL, (png_uint_32)total_len);
1827
0
   png_write_chunk_data(png_ptr, new_purpose, purpose_len);
1828
0
   png_save_int_32(buf, X0);
1829
0
   png_save_int_32(buf + 4, X1);
1830
0
   buf[8] = (png_byte)type;
1831
0
   buf[9] = (png_byte)nparams;
1832
0
   png_write_chunk_data(png_ptr, buf, 10);
1833
0
   png_write_chunk_data(png_ptr, (png_const_bytep)units, (size_t)units_len);
1834
1835
0
   for (i = 0; i < nparams; i++)
1836
0
   {
1837
0
      png_write_chunk_data(png_ptr, (png_const_bytep)params[i], params_len[i]);
1838
0
   }
1839
1840
0
   png_free(png_ptr, params_len);
1841
0
   png_write_chunk_end(png_ptr);
1842
0
}
1843
#endif
1844
1845
#ifdef PNG_WRITE_sCAL_SUPPORTED
1846
/* Write the sCAL chunk */
1847
void /* PRIVATE */
1848
png_write_sCAL_s(png_structrp png_ptr, int unit, png_const_charp width,
1849
    png_const_charp height)
1850
0
{
1851
0
   png_byte buf[64];
1852
0
   size_t wlen, hlen, total_len;
1853
1854
0
   png_debug(1, "in png_write_sCAL_s");
1855
1856
0
   wlen = strlen(width);
1857
0
   hlen = strlen(height);
1858
0
   total_len = wlen + hlen + 2;
1859
1860
0
   if (total_len > 64)
1861
0
   {
1862
0
      png_warning(png_ptr, "Can't write sCAL (buffer too small)");
1863
0
      return;
1864
0
   }
1865
1866
0
   buf[0] = (png_byte)unit;
1867
0
   memcpy(buf + 1, width, wlen + 1);      /* Append the '\0' here */
1868
0
   memcpy(buf + wlen + 2, height, hlen);  /* Do NOT append the '\0' here */
1869
1870
0
   png_debug1(3, "sCAL total length = %u", (unsigned int)total_len);
1871
0
   png_write_complete_chunk(png_ptr, png_sCAL, buf, total_len);
1872
0
}
1873
#endif
1874
1875
#ifdef PNG_WRITE_pHYs_SUPPORTED
1876
/* Write the pHYs chunk */
1877
void /* PRIVATE */
1878
png_write_pHYs(png_structrp png_ptr, png_uint_32 x_pixels_per_unit,
1879
    png_uint_32 y_pixels_per_unit,
1880
    int unit_type)
1881
0
{
1882
0
   png_byte buf[9];
1883
1884
0
   png_debug(1, "in png_write_pHYs");
1885
1886
0
   if (unit_type >= PNG_RESOLUTION_LAST)
1887
0
      png_warning(png_ptr, "Unrecognized unit type for pHYs chunk");
1888
1889
0
   png_save_uint_32(buf, x_pixels_per_unit);
1890
0
   png_save_uint_32(buf + 4, y_pixels_per_unit);
1891
0
   buf[8] = (png_byte)unit_type;
1892
1893
0
   png_write_complete_chunk(png_ptr, png_pHYs, buf, 9);
1894
0
}
1895
#endif
1896
1897
#ifdef PNG_WRITE_tIME_SUPPORTED
1898
/* Write the tIME chunk.  Use either png_convert_from_struct_tm()
1899
 * or png_convert_from_time_t(), or fill in the structure yourself.
1900
 */
1901
void /* PRIVATE */
1902
png_write_tIME(png_structrp png_ptr, png_const_timep mod_time)
1903
0
{
1904
0
   png_byte buf[7];
1905
1906
0
   png_debug(1, "in png_write_tIME");
1907
1908
0
   if (mod_time->month  > 12 || mod_time->month  < 1 ||
1909
0
       mod_time->day    > 31 || mod_time->day    < 1 ||
1910
0
       mod_time->hour   > 23 || mod_time->second > 60)
1911
0
   {
1912
0
      png_warning(png_ptr, "Invalid time specified for tIME chunk");
1913
0
      return;
1914
0
   }
1915
1916
0
   png_save_uint_16(buf, mod_time->year);
1917
0
   buf[2] = mod_time->month;
1918
0
   buf[3] = mod_time->day;
1919
0
   buf[4] = mod_time->hour;
1920
0
   buf[5] = mod_time->minute;
1921
0
   buf[6] = mod_time->second;
1922
1923
0
   png_write_complete_chunk(png_ptr, png_tIME, buf, 7);
1924
0
}
1925
#endif
1926
1927
/* Initializes the row writing capability of libpng */
1928
void /* PRIVATE */
1929
png_write_start_row(png_structrp png_ptr)
1930
0
{
1931
0
   png_alloc_size_t buf_size;
1932
0
   int usr_pixel_depth;
1933
1934
0
#ifdef PNG_WRITE_FILTER_SUPPORTED
1935
0
   png_byte filters;
1936
0
#endif
1937
1938
0
   png_debug(1, "in png_write_start_row");
1939
1940
0
   usr_pixel_depth = png_ptr->usr_channels * png_ptr->usr_bit_depth;
1941
0
   buf_size = PNG_ROWBYTES(usr_pixel_depth, png_ptr->width) + 1;
1942
1943
   /* 1.5.6: added to allow checking in the row write code. */
1944
0
   png_ptr->transformed_pixel_depth = png_ptr->pixel_depth;
1945
0
   png_ptr->maximum_pixel_depth = (png_byte)usr_pixel_depth;
1946
1947
   /* Set up row buffer */
1948
0
   png_ptr->row_buf = png_voidcast(png_bytep, png_malloc(png_ptr, buf_size));
1949
1950
0
   png_ptr->row_buf[0] = PNG_FILTER_VALUE_NONE;
1951
1952
0
#ifdef PNG_WRITE_FILTER_SUPPORTED
1953
0
   filters = png_ptr->do_filter;
1954
1955
0
   if (png_ptr->height == 1)
1956
0
      filters &= 0xff & ~(PNG_FILTER_UP|PNG_FILTER_AVG|PNG_FILTER_PAETH);
1957
1958
0
   if (png_ptr->width == 1)
1959
0
      filters &= 0xff & ~(PNG_FILTER_SUB|PNG_FILTER_AVG|PNG_FILTER_PAETH);
1960
1961
0
   if (filters == 0)
1962
0
      filters = PNG_FILTER_NONE;
1963
1964
0
   png_ptr->do_filter = filters;
1965
1966
0
   if (((filters & (PNG_FILTER_SUB | PNG_FILTER_UP | PNG_FILTER_AVG |
1967
0
       PNG_FILTER_PAETH)) != 0) && png_ptr->try_row == NULL)
1968
0
   {
1969
0
      int num_filters = 0;
1970
1971
0
      png_ptr->try_row = png_voidcast(png_bytep, png_malloc(png_ptr, buf_size));
1972
1973
0
      if (filters & PNG_FILTER_SUB)
1974
0
         num_filters++;
1975
1976
0
      if (filters & PNG_FILTER_UP)
1977
0
         num_filters++;
1978
1979
0
      if (filters & PNG_FILTER_AVG)
1980
0
         num_filters++;
1981
1982
0
      if (filters & PNG_FILTER_PAETH)
1983
0
         num_filters++;
1984
1985
0
      if (num_filters > 1)
1986
0
         png_ptr->tst_row = png_voidcast(png_bytep, png_malloc(png_ptr,
1987
0
             buf_size));
1988
0
   }
1989
1990
   /* We only need to keep the previous row if we are using one of the following
1991
    * filters.
1992
    */
1993
0
   if ((filters & (PNG_FILTER_AVG | PNG_FILTER_UP | PNG_FILTER_PAETH)) != 0)
1994
0
      png_ptr->prev_row = png_voidcast(png_bytep,
1995
0
          png_calloc(png_ptr, buf_size));
1996
0
#endif /* WRITE_FILTER */
1997
1998
0
#ifdef PNG_WRITE_INTERLACING_SUPPORTED
1999
   /* If interlaced, we need to set up width and height of pass */
2000
0
   if (png_ptr->interlaced != 0)
2001
0
   {
2002
0
      if ((png_ptr->transformations & PNG_INTERLACE) == 0)
2003
0
      {
2004
0
         png_ptr->num_rows = (png_ptr->height + png_pass_yinc[0] - 1 -
2005
0
             png_pass_ystart[0]) / png_pass_yinc[0];
2006
2007
0
         png_ptr->usr_width = (png_ptr->width + png_pass_inc[0] - 1 -
2008
0
             png_pass_start[0]) / png_pass_inc[0];
2009
0
      }
2010
2011
0
      else
2012
0
      {
2013
0
         png_ptr->num_rows = png_ptr->height;
2014
0
         png_ptr->usr_width = png_ptr->width;
2015
0
      }
2016
0
   }
2017
2018
0
   else
2019
0
#endif
2020
0
   {
2021
0
      png_ptr->num_rows = png_ptr->height;
2022
0
      png_ptr->usr_width = png_ptr->width;
2023
0
   }
2024
0
}
2025
2026
/* Internal use only.  Called when finished processing a row of data. */
2027
void /* PRIVATE */
2028
png_write_finish_row(png_structrp png_ptr)
2029
0
{
2030
0
   png_debug(1, "in png_write_finish_row");
2031
2032
   /* Next row */
2033
0
   png_ptr->row_number++;
2034
2035
   /* See if we are done */
2036
0
   if (png_ptr->row_number < png_ptr->num_rows)
2037
0
      return;
2038
2039
0
#ifdef PNG_WRITE_INTERLACING_SUPPORTED
2040
   /* If interlaced, go to next pass */
2041
0
   if (png_ptr->interlaced != 0)
2042
0
   {
2043
0
      png_ptr->row_number = 0;
2044
0
      if ((png_ptr->transformations & PNG_INTERLACE) != 0)
2045
0
      {
2046
0
         png_ptr->pass++;
2047
0
      }
2048
2049
0
      else
2050
0
      {
2051
         /* Loop until we find a non-zero width or height pass */
2052
0
         do
2053
0
         {
2054
0
            png_ptr->pass++;
2055
2056
0
            if (png_ptr->pass >= 7)
2057
0
               break;
2058
2059
0
            png_ptr->usr_width = (png_ptr->width +
2060
0
                png_pass_inc[png_ptr->pass] - 1 -
2061
0
                png_pass_start[png_ptr->pass]) /
2062
0
                png_pass_inc[png_ptr->pass];
2063
2064
0
            png_ptr->num_rows = (png_ptr->height +
2065
0
                png_pass_yinc[png_ptr->pass] - 1 -
2066
0
                png_pass_ystart[png_ptr->pass]) /
2067
0
                png_pass_yinc[png_ptr->pass];
2068
2069
0
            if ((png_ptr->transformations & PNG_INTERLACE) != 0)
2070
0
               break;
2071
2072
0
         } while (png_ptr->usr_width == 0 || png_ptr->num_rows == 0);
2073
2074
0
      }
2075
2076
      /* Reset the row above the image for the next pass */
2077
0
      if (png_ptr->pass < 7)
2078
0
      {
2079
0
         if (png_ptr->prev_row != NULL)
2080
0
            memset(png_ptr->prev_row, 0,
2081
0
                PNG_ROWBYTES(png_ptr->usr_channels *
2082
0
                png_ptr->usr_bit_depth, png_ptr->width) + 1);
2083
2084
0
         return;
2085
0
      }
2086
0
   }
2087
0
#endif
2088
2089
   /* If we get here, we've just written the last row, so we need
2090
      to flush the compressor */
2091
0
   png_compress_IDAT(png_ptr, NULL, 0, Z_FINISH);
2092
0
}
2093
2094
#ifdef PNG_WRITE_INTERLACING_SUPPORTED
2095
/* Pick out the correct pixels for the interlace pass.
2096
 * The basic idea here is to go through the row with a source
2097
 * pointer and a destination pointer (sp and dp), and copy the
2098
 * correct pixels for the pass.  As the row gets compacted,
2099
 * sp will always be >= dp, so we should never overwrite anything.
2100
 * See the default: case for the easiest code to understand.
2101
 */
2102
void /* PRIVATE */
2103
png_do_write_interlace(png_row_infop row_info, png_bytep row, int pass)
2104
0
{
2105
0
   png_debug(1, "in png_do_write_interlace");
2106
2107
   /* We don't have to do anything on the last pass (6) */
2108
0
   if (pass < 6)
2109
0
   {
2110
      /* Each pixel depth is handled separately */
2111
0
      switch (row_info->pixel_depth)
2112
0
      {
2113
0
         case 1:
2114
0
         {
2115
0
            png_bytep sp;
2116
0
            png_bytep dp;
2117
0
            unsigned int shift;
2118
0
            int d;
2119
0
            int value;
2120
0
            png_uint_32 i;
2121
0
            png_uint_32 row_width = row_info->width;
2122
2123
0
            dp = row;
2124
0
            d = 0;
2125
0
            shift = 7;
2126
2127
0
            for (i = png_pass_start[pass]; i < row_width;
2128
0
               i += png_pass_inc[pass])
2129
0
            {
2130
0
               sp = row + (size_t)(i >> 3);
2131
0
               value = (int)(*sp >> (7 - (int)(i & 0x07))) & 0x01;
2132
0
               d |= (value << shift);
2133
2134
0
               if (shift == 0)
2135
0
               {
2136
0
                  shift = 7;
2137
0
                  *dp++ = (png_byte)d;
2138
0
                  d = 0;
2139
0
               }
2140
2141
0
               else
2142
0
                  shift--;
2143
2144
0
            }
2145
0
            if (shift != 7)
2146
0
               *dp = (png_byte)d;
2147
2148
0
            break;
2149
0
         }
2150
2151
0
         case 2:
2152
0
         {
2153
0
            png_bytep sp;
2154
0
            png_bytep dp;
2155
0
            unsigned int shift;
2156
0
            int d;
2157
0
            int value;
2158
0
            png_uint_32 i;
2159
0
            png_uint_32 row_width = row_info->width;
2160
2161
0
            dp = row;
2162
0
            shift = 6;
2163
0
            d = 0;
2164
2165
0
            for (i = png_pass_start[pass]; i < row_width;
2166
0
               i += png_pass_inc[pass])
2167
0
            {
2168
0
               sp = row + (size_t)(i >> 2);
2169
0
               value = (*sp >> ((3 - (int)(i & 0x03)) << 1)) & 0x03;
2170
0
               d |= (value << shift);
2171
2172
0
               if (shift == 0)
2173
0
               {
2174
0
                  shift = 6;
2175
0
                  *dp++ = (png_byte)d;
2176
0
                  d = 0;
2177
0
               }
2178
2179
0
               else
2180
0
                  shift -= 2;
2181
0
            }
2182
0
            if (shift != 6)
2183
0
               *dp = (png_byte)d;
2184
2185
0
            break;
2186
0
         }
2187
2188
0
         case 4:
2189
0
         {
2190
0
            png_bytep sp;
2191
0
            png_bytep dp;
2192
0
            unsigned int shift;
2193
0
            int d;
2194
0
            int value;
2195
0
            png_uint_32 i;
2196
0
            png_uint_32 row_width = row_info->width;
2197
2198
0
            dp = row;
2199
0
            shift = 4;
2200
0
            d = 0;
2201
0
            for (i = png_pass_start[pass]; i < row_width;
2202
0
                i += png_pass_inc[pass])
2203
0
            {
2204
0
               sp = row + (size_t)(i >> 1);
2205
0
               value = (*sp >> ((1 - (int)(i & 0x01)) << 2)) & 0x0f;
2206
0
               d |= (value << shift);
2207
2208
0
               if (shift == 0)
2209
0
               {
2210
0
                  shift = 4;
2211
0
                  *dp++ = (png_byte)d;
2212
0
                  d = 0;
2213
0
               }
2214
2215
0
               else
2216
0
                  shift -= 4;
2217
0
            }
2218
0
            if (shift != 4)
2219
0
               *dp = (png_byte)d;
2220
2221
0
            break;
2222
0
         }
2223
2224
0
         default:
2225
0
         {
2226
0
            png_bytep sp;
2227
0
            png_bytep dp;
2228
0
            png_uint_32 i;
2229
0
            png_uint_32 row_width = row_info->width;
2230
0
            size_t pixel_bytes;
2231
2232
            /* Start at the beginning */
2233
0
            dp = row;
2234
2235
            /* Find out how many bytes each pixel takes up */
2236
0
            pixel_bytes = (row_info->pixel_depth >> 3);
2237
2238
            /* Loop through the row, only looking at the pixels that matter */
2239
0
            for (i = png_pass_start[pass]; i < row_width;
2240
0
               i += png_pass_inc[pass])
2241
0
            {
2242
               /* Find out where the original pixel is */
2243
0
               sp = row + (size_t)i * pixel_bytes;
2244
2245
               /* Move the pixel */
2246
0
               if (dp != sp)
2247
0
                  memcpy(dp, sp, pixel_bytes);
2248
2249
               /* Next pixel */
2250
0
               dp += pixel_bytes;
2251
0
            }
2252
0
            break;
2253
0
         }
2254
0
      }
2255
      /* Set new row width */
2256
0
      row_info->width = (row_info->width +
2257
0
          png_pass_inc[pass] - 1 -
2258
0
          png_pass_start[pass]) /
2259
0
          png_pass_inc[pass];
2260
2261
0
      row_info->rowbytes = PNG_ROWBYTES(row_info->pixel_depth,
2262
0
          row_info->width);
2263
0
   }
2264
0
}
2265
#endif
2266
2267
2268
/* This filters the row, chooses which filter to use, if it has not already
2269
 * been specified by the application, and then writes the row out with the
2270
 * chosen filter.
2271
 */
2272
static void /* PRIVATE */
2273
png_write_filtered_row(png_structrp png_ptr, png_bytep filtered_row,
2274
    size_t row_bytes);
2275
2276
#ifdef PNG_WRITE_FILTER_SUPPORTED
2277
static size_t /* PRIVATE */
2278
png_setup_sub_row(png_structrp png_ptr, png_uint_32 bpp,
2279
    size_t row_bytes, size_t lmins)
2280
0
{
2281
0
   png_bytep rp, dp, lp;
2282
0
   size_t i;
2283
0
   size_t sum = 0;
2284
0
   unsigned int v;
2285
2286
0
   png_ptr->try_row[0] = PNG_FILTER_VALUE_SUB;
2287
2288
0
   for (i = 0, rp = png_ptr->row_buf + 1, dp = png_ptr->try_row + 1; i < bpp;
2289
0
        i++, rp++, dp++)
2290
0
   {
2291
0
      v = *dp = *rp;
2292
#ifdef PNG_USE_ABS
2293
      sum += 128 - abs((int)v - 128);
2294
#else
2295
0
      sum += (v < 128) ? v : 256 - v;
2296
0
#endif
2297
0
   }
2298
2299
0
   for (lp = png_ptr->row_buf + 1; i < row_bytes;
2300
0
      i++, rp++, lp++, dp++)
2301
0
   {
2302
0
      v = *dp = (png_byte)(((int)*rp - (int)*lp) & 0xff);
2303
#ifdef PNG_USE_ABS
2304
      sum += 128 - abs((int)v - 128);
2305
#else
2306
0
      sum += (v < 128) ? v : 256 - v;
2307
0
#endif
2308
2309
0
      if (sum > lmins)  /* We are already worse, don't continue. */
2310
0
        break;
2311
0
   }
2312
2313
0
   return sum;
2314
0
}
2315
2316
static void /* PRIVATE */
2317
png_setup_sub_row_only(png_structrp png_ptr, png_uint_32 bpp,
2318
    size_t row_bytes)
2319
0
{
2320
0
   png_bytep rp, dp, lp;
2321
0
   size_t i;
2322
2323
0
   png_ptr->try_row[0] = PNG_FILTER_VALUE_SUB;
2324
2325
0
   for (i = 0, rp = png_ptr->row_buf + 1, dp = png_ptr->try_row + 1; i < bpp;
2326
0
        i++, rp++, dp++)
2327
0
   {
2328
0
      *dp = *rp;
2329
0
   }
2330
2331
0
   for (lp = png_ptr->row_buf + 1; i < row_bytes;
2332
0
      i++, rp++, lp++, dp++)
2333
0
   {
2334
0
      *dp = (png_byte)(((int)*rp - (int)*lp) & 0xff);
2335
0
   }
2336
0
}
2337
2338
static size_t /* PRIVATE */
2339
png_setup_up_row(png_structrp png_ptr, size_t row_bytes, size_t lmins)
2340
0
{
2341
0
   png_bytep rp, dp, pp;
2342
0
   size_t i;
2343
0
   size_t sum = 0;
2344
0
   unsigned int v;
2345
2346
0
   png_ptr->try_row[0] = PNG_FILTER_VALUE_UP;
2347
2348
0
   for (i = 0, rp = png_ptr->row_buf + 1, dp = png_ptr->try_row + 1,
2349
0
       pp = png_ptr->prev_row + 1; i < row_bytes;
2350
0
       i++, rp++, pp++, dp++)
2351
0
   {
2352
0
      v = *dp = (png_byte)(((int)*rp - (int)*pp) & 0xff);
2353
#ifdef PNG_USE_ABS
2354
      sum += 128 - abs((int)v - 128);
2355
#else
2356
0
      sum += (v < 128) ? v : 256 - v;
2357
0
#endif
2358
2359
0
      if (sum > lmins)  /* We are already worse, don't continue. */
2360
0
        break;
2361
0
   }
2362
2363
0
   return sum;
2364
0
}
2365
static void /* PRIVATE */
2366
png_setup_up_row_only(png_structrp png_ptr, size_t row_bytes)
2367
0
{
2368
0
   png_bytep rp, dp, pp;
2369
0
   size_t i;
2370
2371
0
   png_ptr->try_row[0] = PNG_FILTER_VALUE_UP;
2372
2373
0
   for (i = 0, rp = png_ptr->row_buf + 1, dp = png_ptr->try_row + 1,
2374
0
       pp = png_ptr->prev_row + 1; i < row_bytes;
2375
0
       i++, rp++, pp++, dp++)
2376
0
   {
2377
0
      *dp = (png_byte)(((int)*rp - (int)*pp) & 0xff);
2378
0
   }
2379
0
}
2380
2381
static size_t /* PRIVATE */
2382
png_setup_avg_row(png_structrp png_ptr, png_uint_32 bpp,
2383
    size_t row_bytes, size_t lmins)
2384
0
{
2385
0
   png_bytep rp, dp, pp, lp;
2386
0
   png_uint_32 i;
2387
0
   size_t sum = 0;
2388
0
   unsigned int v;
2389
2390
0
   png_ptr->try_row[0] = PNG_FILTER_VALUE_AVG;
2391
2392
0
   for (i = 0, rp = png_ptr->row_buf + 1, dp = png_ptr->try_row + 1,
2393
0
       pp = png_ptr->prev_row + 1; i < bpp; i++)
2394
0
   {
2395
0
      v = *dp++ = (png_byte)(((int)*rp++ - ((int)*pp++ / 2)) & 0xff);
2396
2397
#ifdef PNG_USE_ABS
2398
      sum += 128 - abs((int)v - 128);
2399
#else
2400
0
      sum += (v < 128) ? v : 256 - v;
2401
0
#endif
2402
0
   }
2403
2404
0
   for (lp = png_ptr->row_buf + 1; i < row_bytes; i++)
2405
0
   {
2406
0
      v = *dp++ = (png_byte)(((int)*rp++ - (((int)*pp++ + (int)*lp++) / 2))
2407
0
          & 0xff);
2408
2409
#ifdef PNG_USE_ABS
2410
      sum += 128 - abs((int)v - 128);
2411
#else
2412
0
      sum += (v < 128) ? v : 256 - v;
2413
0
#endif
2414
2415
0
      if (sum > lmins)  /* We are already worse, don't continue. */
2416
0
        break;
2417
0
   }
2418
2419
0
   return sum;
2420
0
}
2421
static void /* PRIVATE */
2422
png_setup_avg_row_only(png_structrp png_ptr, png_uint_32 bpp,
2423
    size_t row_bytes)
2424
0
{
2425
0
   png_bytep rp, dp, pp, lp;
2426
0
   png_uint_32 i;
2427
2428
0
   png_ptr->try_row[0] = PNG_FILTER_VALUE_AVG;
2429
2430
0
   for (i = 0, rp = png_ptr->row_buf + 1, dp = png_ptr->try_row + 1,
2431
0
       pp = png_ptr->prev_row + 1; i < bpp; i++)
2432
0
   {
2433
0
      *dp++ = (png_byte)(((int)*rp++ - ((int)*pp++ / 2)) & 0xff);
2434
0
   }
2435
2436
0
   for (lp = png_ptr->row_buf + 1; i < row_bytes; i++)
2437
0
   {
2438
0
      *dp++ = (png_byte)(((int)*rp++ - (((int)*pp++ + (int)*lp++) / 2))
2439
0
          & 0xff);
2440
0
   }
2441
0
}
2442
2443
static size_t /* PRIVATE */
2444
png_setup_paeth_row(png_structrp png_ptr, png_uint_32 bpp,
2445
    size_t row_bytes, size_t lmins)
2446
0
{
2447
0
   png_bytep rp, dp, pp, cp, lp;
2448
0
   size_t i;
2449
0
   size_t sum = 0;
2450
0
   unsigned int v;
2451
2452
0
   png_ptr->try_row[0] = PNG_FILTER_VALUE_PAETH;
2453
2454
0
   for (i = 0, rp = png_ptr->row_buf + 1, dp = png_ptr->try_row + 1,
2455
0
       pp = png_ptr->prev_row + 1; i < bpp; i++)
2456
0
   {
2457
0
      v = *dp++ = (png_byte)(((int)*rp++ - (int)*pp++) & 0xff);
2458
2459
#ifdef PNG_USE_ABS
2460
      sum += 128 - abs((int)v - 128);
2461
#else
2462
0
      sum += (v < 128) ? v : 256 - v;
2463
0
#endif
2464
0
   }
2465
2466
0
   for (lp = png_ptr->row_buf + 1, cp = png_ptr->prev_row + 1; i < row_bytes;
2467
0
        i++)
2468
0
   {
2469
0
      int a, b, c, pa, pb, pc, p;
2470
2471
0
      b = *pp++;
2472
0
      c = *cp++;
2473
0
      a = *lp++;
2474
2475
0
      p = b - c;
2476
0
      pc = a - c;
2477
2478
#ifdef PNG_USE_ABS
2479
      pa = abs(p);
2480
      pb = abs(pc);
2481
      pc = abs(p + pc);
2482
#else
2483
0
      pa = p < 0 ? -p : p;
2484
0
      pb = pc < 0 ? -pc : pc;
2485
0
      pc = (p + pc) < 0 ? -(p + pc) : p + pc;
2486
0
#endif
2487
2488
0
      p = (pa <= pb && pa <=pc) ? a : (pb <= pc) ? b : c;
2489
2490
0
      v = *dp++ = (png_byte)(((int)*rp++ - p) & 0xff);
2491
2492
#ifdef PNG_USE_ABS
2493
      sum += 128 - abs((int)v - 128);
2494
#else
2495
0
      sum += (v < 128) ? v : 256 - v;
2496
0
#endif
2497
2498
0
      if (sum > lmins)  /* We are already worse, don't continue. */
2499
0
        break;
2500
0
   }
2501
2502
0
   return sum;
2503
0
}
2504
static void /* PRIVATE */
2505
png_setup_paeth_row_only(png_structrp png_ptr, png_uint_32 bpp,
2506
    size_t row_bytes)
2507
0
{
2508
0
   png_bytep rp, dp, pp, cp, lp;
2509
0
   size_t i;
2510
2511
0
   png_ptr->try_row[0] = PNG_FILTER_VALUE_PAETH;
2512
2513
0
   for (i = 0, rp = png_ptr->row_buf + 1, dp = png_ptr->try_row + 1,
2514
0
       pp = png_ptr->prev_row + 1; i < bpp; i++)
2515
0
   {
2516
0
      *dp++ = (png_byte)(((int)*rp++ - (int)*pp++) & 0xff);
2517
0
   }
2518
2519
0
   for (lp = png_ptr->row_buf + 1, cp = png_ptr->prev_row + 1; i < row_bytes;
2520
0
        i++)
2521
0
   {
2522
0
      int a, b, c, pa, pb, pc, p;
2523
2524
0
      b = *pp++;
2525
0
      c = *cp++;
2526
0
      a = *lp++;
2527
2528
0
      p = b - c;
2529
0
      pc = a - c;
2530
2531
#ifdef PNG_USE_ABS
2532
      pa = abs(p);
2533
      pb = abs(pc);
2534
      pc = abs(p + pc);
2535
#else
2536
0
      pa = p < 0 ? -p : p;
2537
0
      pb = pc < 0 ? -pc : pc;
2538
0
      pc = (p + pc) < 0 ? -(p + pc) : p + pc;
2539
0
#endif
2540
2541
0
      p = (pa <= pb && pa <=pc) ? a : (pb <= pc) ? b : c;
2542
2543
0
      *dp++ = (png_byte)(((int)*rp++ - p) & 0xff);
2544
0
   }
2545
0
}
2546
#endif /* WRITE_FILTER */
2547
2548
void /* PRIVATE */
2549
png_write_find_filter(png_structrp png_ptr, png_row_infop row_info)
2550
0
{
2551
#ifndef PNG_WRITE_FILTER_SUPPORTED
2552
   png_write_filtered_row(png_ptr, png_ptr->row_buf, row_info->rowbytes+1);
2553
#else
2554
0
   unsigned int filter_to_do = png_ptr->do_filter;
2555
0
   png_bytep row_buf;
2556
0
   png_bytep best_row;
2557
0
   png_uint_32 bpp;
2558
0
   size_t mins;
2559
0
   size_t row_bytes = row_info->rowbytes;
2560
2561
0
   png_debug(1, "in png_write_find_filter");
2562
2563
   /* Find out how many bytes offset each pixel is */
2564
0
   bpp = (row_info->pixel_depth + 7) >> 3;
2565
2566
0
   row_buf = png_ptr->row_buf;
2567
0
   mins = PNG_SIZE_MAX - 256/* so we can detect potential overflow of the
2568
0
                               running sum */;
2569
2570
   /* The prediction method we use is to find which method provides the
2571
    * smallest value when summing the absolute values of the distances
2572
    * from zero, using anything >= 128 as negative numbers.  This is known
2573
    * as the "minimum sum of absolute differences" heuristic.  Other
2574
    * heuristics are the "weighted minimum sum of absolute differences"
2575
    * (experimental and can in theory improve compression), and the "zlib
2576
    * predictive" method (not implemented yet), which does test compressions
2577
    * of lines using different filter methods, and then chooses the
2578
    * (series of) filter(s) that give minimum compressed data size (VERY
2579
    * computationally expensive).
2580
    *
2581
    * GRR 980525:  consider also
2582
    *
2583
    *   (1) minimum sum of absolute differences from running average (i.e.,
2584
    *       keep running sum of non-absolute differences & count of bytes)
2585
    *       [track dispersion, too?  restart average if dispersion too large?]
2586
    *
2587
    *  (1b) minimum sum of absolute differences from sliding average, probably
2588
    *       with window size <= deflate window (usually 32K)
2589
    *
2590
    *   (2) minimum sum of squared differences from zero or running average
2591
    *       (i.e., ~ root-mean-square approach)
2592
    */
2593
2594
2595
   /* We don't need to test the 'no filter' case if this is the only filter
2596
    * that has been chosen, as it doesn't actually do anything to the data.
2597
    */
2598
0
   best_row = png_ptr->row_buf;
2599
2600
0
   if (PNG_SIZE_MAX/128 <= row_bytes)
2601
0
   {
2602
      /* Overflow can occur in the calculation, just select the lowest set
2603
       * filter.
2604
       */
2605
0
      filter_to_do &= 0U-filter_to_do;
2606
0
   }
2607
0
   else if ((filter_to_do & PNG_FILTER_NONE) != 0 &&
2608
0
         filter_to_do != PNG_FILTER_NONE)
2609
0
   {
2610
      /* Overflow not possible and multiple filters in the list, including the
2611
       * 'none' filter.
2612
       */
2613
0
      png_bytep rp;
2614
0
      size_t sum = 0;
2615
0
      size_t i;
2616
0
      unsigned int v;
2617
2618
0
      {
2619
0
         for (i = 0, rp = row_buf + 1; i < row_bytes; i++, rp++)
2620
0
         {
2621
0
            v = *rp;
2622
#ifdef PNG_USE_ABS
2623
            sum += 128 - abs((int)v - 128);
2624
#else
2625
0
            sum += (v < 128) ? v : 256 - v;
2626
0
#endif
2627
0
         }
2628
0
      }
2629
2630
0
      mins = sum;
2631
0
   }
2632
2633
   /* Sub filter */
2634
0
   if (filter_to_do == PNG_FILTER_SUB)
2635
   /* It's the only filter so no testing is needed */
2636
0
   {
2637
0
      png_setup_sub_row_only(png_ptr, bpp, row_bytes);
2638
0
      best_row = png_ptr->try_row;
2639
0
   }
2640
2641
0
   else if ((filter_to_do & PNG_FILTER_SUB) != 0)
2642
0
   {
2643
0
      size_t sum;
2644
0
      size_t lmins = mins;
2645
2646
0
      sum = png_setup_sub_row(png_ptr, bpp, row_bytes, lmins);
2647
2648
0
      if (sum < mins)
2649
0
      {
2650
0
         mins = sum;
2651
0
         best_row = png_ptr->try_row;
2652
0
         if (png_ptr->tst_row != NULL)
2653
0
         {
2654
0
            png_ptr->try_row = png_ptr->tst_row;
2655
0
            png_ptr->tst_row = best_row;
2656
0
         }
2657
0
      }
2658
0
   }
2659
2660
   /* Up filter */
2661
0
   if (filter_to_do == PNG_FILTER_UP)
2662
0
   {
2663
0
      png_setup_up_row_only(png_ptr, row_bytes);
2664
0
      best_row = png_ptr->try_row;
2665
0
   }
2666
2667
0
   else if ((filter_to_do & PNG_FILTER_UP) != 0)
2668
0
   {
2669
0
      size_t sum;
2670
0
      size_t lmins = mins;
2671
2672
0
      sum = png_setup_up_row(png_ptr, row_bytes, lmins);
2673
2674
0
      if (sum < mins)
2675
0
      {
2676
0
         mins = sum;
2677
0
         best_row = png_ptr->try_row;
2678
0
         if (png_ptr->tst_row != NULL)
2679
0
         {
2680
0
            png_ptr->try_row = png_ptr->tst_row;
2681
0
            png_ptr->tst_row = best_row;
2682
0
         }
2683
0
      }
2684
0
   }
2685
2686
   /* Avg filter */
2687
0
   if (filter_to_do == PNG_FILTER_AVG)
2688
0
   {
2689
0
      png_setup_avg_row_only(png_ptr, bpp, row_bytes);
2690
0
      best_row = png_ptr->try_row;
2691
0
   }
2692
2693
0
   else if ((filter_to_do & PNG_FILTER_AVG) != 0)
2694
0
   {
2695
0
      size_t sum;
2696
0
      size_t lmins = mins;
2697
2698
0
      sum= png_setup_avg_row(png_ptr, bpp, row_bytes, lmins);
2699
2700
0
      if (sum < mins)
2701
0
      {
2702
0
         mins = sum;
2703
0
         best_row = png_ptr->try_row;
2704
0
         if (png_ptr->tst_row != NULL)
2705
0
         {
2706
0
            png_ptr->try_row = png_ptr->tst_row;
2707
0
            png_ptr->tst_row = best_row;
2708
0
         }
2709
0
      }
2710
0
   }
2711
2712
   /* Paeth filter */
2713
0
   if (filter_to_do == PNG_FILTER_PAETH)
2714
0
   {
2715
0
      png_setup_paeth_row_only(png_ptr, bpp, row_bytes);
2716
0
      best_row = png_ptr->try_row;
2717
0
   }
2718
2719
0
   else if ((filter_to_do & PNG_FILTER_PAETH) != 0)
2720
0
   {
2721
0
      size_t sum;
2722
0
      size_t lmins = mins;
2723
2724
0
      sum = png_setup_paeth_row(png_ptr, bpp, row_bytes, lmins);
2725
2726
0
      if (sum < mins)
2727
0
      {
2728
0
         best_row = png_ptr->try_row;
2729
0
         if (png_ptr->tst_row != NULL)
2730
0
         {
2731
0
            png_ptr->try_row = png_ptr->tst_row;
2732
0
            png_ptr->tst_row = best_row;
2733
0
         }
2734
0
      }
2735
0
   }
2736
2737
   /* Do the actual writing of the filtered row data from the chosen filter. */
2738
0
   png_write_filtered_row(png_ptr, best_row, row_info->rowbytes+1);
2739
2740
0
#endif /* WRITE_FILTER */
2741
0
}
2742
2743
2744
/* Do the actual writing of a previously filtered row. */
2745
static void
2746
png_write_filtered_row(png_structrp png_ptr, png_bytep filtered_row,
2747
    size_t full_row_length/*includes filter byte*/)
2748
0
{
2749
0
   png_debug(1, "in png_write_filtered_row");
2750
2751
0
   png_debug1(2, "filter = %d", filtered_row[0]);
2752
2753
0
   png_compress_IDAT(png_ptr, filtered_row, full_row_length, Z_NO_FLUSH);
2754
2755
0
#ifdef PNG_WRITE_FILTER_SUPPORTED
2756
   /* Swap the current and previous rows */
2757
0
   if (png_ptr->prev_row != NULL)
2758
0
   {
2759
0
      png_bytep tptr;
2760
2761
0
      tptr = png_ptr->prev_row;
2762
0
      png_ptr->prev_row = png_ptr->row_buf;
2763
0
      png_ptr->row_buf = tptr;
2764
0
   }
2765
0
#endif /* WRITE_FILTER */
2766
2767
   /* Finish row - updates counters and flushes zlib if last row */
2768
0
   png_write_finish_row(png_ptr);
2769
2770
0
#ifdef PNG_WRITE_FLUSH_SUPPORTED
2771
0
   png_ptr->flush_rows++;
2772
2773
0
   if (png_ptr->flush_dist > 0 &&
2774
0
       png_ptr->flush_rows >= png_ptr->flush_dist)
2775
0
   {
2776
0
      png_write_flush(png_ptr);
2777
0
   }
2778
0
#endif /* WRITE_FLUSH */
2779
0
}
2780
#endif /* WRITE */