add more reserved space to CUESHEET implementation
[platform/upstream/flac.git] / src / libFLAC / metadata_iterators.c
1 /* libFLAC - Free Lossless Audio Codec library
2  * Copyright (C) 2001,2002  Josh Coalson
3  *
4  * This library is free software; you can redistribute it and/or
5  * modify it under the terms of the GNU Library General Public
6  * License as published by the Free Software Foundation; either
7  * version 2 of the License, or (at your option) any later version.
8  *
9  * This library is distributed in the hope that it will be useful,
10  * but WITHOUT ANY WARRANTY; without even the implied warranty of
11  * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
12  * Library General Public License for more details.
13  *
14  * You should have received a copy of the GNU Library General Public
15  * License along with this library; if not, write to the
16  * Free Software Foundation, Inc., 59 Temple Place - Suite 330,
17  * Boston, MA  02111-1307, USA.
18  */
19
20 #if !defined _MSC_VER && !defined __MINGW32__
21 /*@@@ don't know how to resolve errno without using LIBC.LIB; must use MSVCRT.LIB only for plugins */
22 #include <errno.h>
23 #endif
24 #include <stdio.h>
25 #include <stdlib.h>
26 #include <string.h>
27
28 #if defined _MSC_VER || defined __MINGW32__
29 #include <sys/utime.h> /* for utime() */
30 #include <io.h> /* for chmod() */
31 #else
32 #include <sys/types.h> /* some flavors of BSD (like OS X) require this to get time_t */
33 #include <utime.h> /* for utime() */
34 #include <unistd.h> /* for chown(), unlink() */
35 #endif
36 #include <sys/stat.h> /* for stat(), maybe chmod() */
37
38 #include "private/metadata.h"
39
40 #include "FLAC/assert.h"
41 #include "FLAC/file_decoder.h"
42
43 #ifdef max
44 #undef max
45 #endif
46 #define max(a,b) ((a)>(b)?(a):(b))
47 #ifdef min
48 #undef min
49 #endif
50 #define min(a,b) ((a)<(b)?(a):(b))
51
52
53 /****************************************************************************
54  *
55  * Local function declarations
56  *
57  ***************************************************************************/
58
59 static void pack_uint32_(FLAC__uint32 val, FLAC__byte *b, unsigned bytes);
60 static void pack_uint32_little_endian_(FLAC__uint32 val, FLAC__byte *b, unsigned bytes);
61 static void pack_uint64_(FLAC__uint64 val, FLAC__byte *b, unsigned bytes);
62 static FLAC__uint32 unpack_uint32_(FLAC__byte *b, unsigned bytes);
63 static FLAC__uint32 unpack_uint32_little_endian_(FLAC__byte *b, unsigned bytes);
64 static FLAC__uint64 unpack_uint64_(FLAC__byte *b, unsigned bytes);
65
66 static FLAC__bool read_metadata_block_header_(FLAC__Metadata_SimpleIterator *iterator);
67 static FLAC__bool read_metadata_block_data_(FLAC__Metadata_SimpleIterator *iterator, FLAC__StreamMetadata *block);
68 static FLAC__Metadata_SimpleIteratorStatus read_metadata_block_data_streaminfo_(FILE *file, FLAC__StreamMetadata_StreamInfo *block);
69 static FLAC__Metadata_SimpleIteratorStatus read_metadata_block_data_padding_(FILE *file, FLAC__StreamMetadata_Padding *block, unsigned block_length);
70 static FLAC__Metadata_SimpleIteratorStatus read_metadata_block_data_application_(FILE *file, FLAC__StreamMetadata_Application *block, unsigned block_length);
71 static FLAC__Metadata_SimpleIteratorStatus read_metadata_block_data_seektable_(FILE *file, FLAC__StreamMetadata_SeekTable *block, unsigned block_length);
72 static FLAC__Metadata_SimpleIteratorStatus read_metadata_block_data_vorbis_comment_entry_(FILE *file, FLAC__StreamMetadata_VorbisComment_Entry *entry);
73 static FLAC__Metadata_SimpleIteratorStatus read_metadata_block_data_vorbis_comment_(FILE *file, FLAC__StreamMetadata_VorbisComment *block);
74 static FLAC__Metadata_SimpleIteratorStatus read_metadata_block_data_cuesheet_track_(FILE *file, FLAC__StreamMetadata_CueSheet_Track *track);
75 static FLAC__Metadata_SimpleIteratorStatus read_metadata_block_data_cuesheet_(FILE *file, FLAC__StreamMetadata_CueSheet *block);
76
77 static FLAC__bool write_metadata_block_header_(FILE *file, FLAC__Metadata_SimpleIteratorStatus *status, const FLAC__StreamMetadata *block);
78 static FLAC__bool write_metadata_block_data_(FILE *file, FLAC__Metadata_SimpleIteratorStatus *status, const FLAC__StreamMetadata *block);
79 static FLAC__Metadata_SimpleIteratorStatus write_metadata_block_data_streaminfo_(FILE *file, const FLAC__StreamMetadata_StreamInfo *block);
80 static FLAC__Metadata_SimpleIteratorStatus write_metadata_block_data_padding_(FILE *file, const FLAC__StreamMetadata_Padding *block, unsigned block_length);
81 static FLAC__Metadata_SimpleIteratorStatus write_metadata_block_data_application_(FILE *file, const FLAC__StreamMetadata_Application *block, unsigned block_length);
82 static FLAC__Metadata_SimpleIteratorStatus write_metadata_block_data_seektable_(FILE *file, const FLAC__StreamMetadata_SeekTable *block);
83 static FLAC__Metadata_SimpleIteratorStatus write_metadata_block_data_vorbis_comment_(FILE *file, const FLAC__StreamMetadata_VorbisComment *block);
84 static FLAC__Metadata_SimpleIteratorStatus write_metadata_block_data_cuesheet_(FILE *file, const FLAC__StreamMetadata_CueSheet *block);
85 static FLAC__bool write_metadata_block_stationary_(FLAC__Metadata_SimpleIterator *iterator, const FLAC__StreamMetadata *block);
86 static FLAC__bool write_metadata_block_stationary_with_padding_(FLAC__Metadata_SimpleIterator *iterator, FLAC__StreamMetadata *block, unsigned padding_length, FLAC__bool padding_is_last);
87 static FLAC__bool rewrite_whole_file_(FLAC__Metadata_SimpleIterator *iterator, FLAC__StreamMetadata *block, FLAC__bool append);
88
89 static FLAC__bool chain_rewrite_chain_(FLAC__Metadata_Chain *chain);
90 static FLAC__bool chain_rewrite_file_(FLAC__Metadata_Chain *chain, const char *tempfile_path_prefix);
91
92 static void simple_iterator_push_(FLAC__Metadata_SimpleIterator *iterator);
93 static FLAC__bool simple_iterator_pop_(FLAC__Metadata_SimpleIterator *iterator);
94
95 /* return 0 if OK, 1 if read error, 2 if not a FLAC file */
96 static unsigned seek_to_first_metadata_block_(FILE *f);
97
98 static FLAC__bool simple_iterator_copy_file_prefix_(FLAC__Metadata_SimpleIterator *iterator, FILE **tempfile, char **tempfilename, FLAC__bool append);
99 static FLAC__bool simple_iterator_copy_file_postfix_(FLAC__Metadata_SimpleIterator *iterator, FILE **tempfile, char **tempfilename, int fixup_is_last_code, long fixup_is_last_flag_offset, FLAC__bool backup);
100
101 static FLAC__bool copy_n_bytes_from_file_(FILE *file, FILE *tempfile, unsigned bytes/*@@@ 4G limit*/, FLAC__Metadata_SimpleIteratorStatus *status);
102 static FLAC__bool copy_remaining_bytes_from_file_(FILE *file, FILE *tempfile, FLAC__Metadata_SimpleIteratorStatus *status);
103
104 static FLAC__bool open_tempfile_(const char *filename, const char *tempfile_path_prefix, FILE **tempfile, char **tempfilename, FLAC__Metadata_SimpleIteratorStatus *status);
105 static FLAC__bool transport_tempfile_(const char *filename, FILE **tempfile, char **tempfilename, FLAC__Metadata_SimpleIteratorStatus *status);
106 static void cleanup_tempfile_(FILE **tempfile, char **tempfilename);
107
108 static FLAC__bool get_file_stats_(const char *filename, struct stat *stats);
109 static void set_file_stats_(const char *filename, struct stat *stats);
110
111 static FLAC__Metadata_ChainStatus get_equivalent_status_(FLAC__Metadata_SimpleIteratorStatus status);
112
113
114 /****************************************************************************
115  *
116  * Level 0 implementation
117  *
118  ***************************************************************************/
119
120 static FLAC__StreamDecoderWriteStatus write_callback_(const FLAC__FileDecoder *decoder, const FLAC__Frame *frame, const FLAC__int32 * const buffer[], void *client_data);
121 static void metadata_callback_(const FLAC__FileDecoder *decoder, const FLAC__StreamMetadata *metadata, void *client_data);
122 static void error_callback_(const FLAC__FileDecoder *decoder, FLAC__StreamDecoderErrorStatus status, void *client_data);
123
124 typedef struct {
125         FLAC__bool got_error;
126         FLAC__bool got_streaminfo;
127         FLAC__StreamMetadata *streaminfo;
128 } level0_client_data;
129
130 FLAC_API FLAC__bool FLAC__metadata_get_streaminfo(const char *filename, FLAC__StreamMetadata *streaminfo)
131 {
132         level0_client_data cd;
133         FLAC__FileDecoder *decoder;
134
135         FLAC__ASSERT(0 != filename);
136         FLAC__ASSERT(0 != streaminfo);
137
138         decoder = FLAC__file_decoder_new();
139
140         if(0 == decoder)
141                 return false;
142
143         cd.got_error = false;
144         cd.got_streaminfo = false;
145         cd.streaminfo = streaminfo;
146
147         FLAC__file_decoder_set_md5_checking(decoder, false);
148         FLAC__file_decoder_set_filename(decoder, filename);
149         FLAC__file_decoder_set_metadata_ignore_all(decoder);
150         FLAC__file_decoder_set_metadata_respond(decoder, FLAC__METADATA_TYPE_STREAMINFO);
151         FLAC__file_decoder_set_write_callback(decoder, write_callback_);
152         FLAC__file_decoder_set_metadata_callback(decoder, metadata_callback_);
153         FLAC__file_decoder_set_error_callback(decoder, error_callback_);
154         FLAC__file_decoder_set_client_data(decoder, &cd);
155
156         if(FLAC__file_decoder_init(decoder) != FLAC__FILE_DECODER_OK || cd.got_error) {
157                 FLAC__file_decoder_finish(decoder);
158                 FLAC__file_decoder_delete(decoder);
159                 return false;
160         }
161
162         /* the first thing decoded must be the STREAMINFO block: */
163         if(!FLAC__file_decoder_process_until_end_of_metadata(decoder) || cd.got_error) {
164                 FLAC__file_decoder_finish(decoder);
165                 FLAC__file_decoder_delete(decoder);
166                 return false;
167         }
168
169         FLAC__file_decoder_finish(decoder);
170         FLAC__file_decoder_delete(decoder);
171
172         return !cd.got_error && cd.got_streaminfo;
173 }
174
175 FLAC__StreamDecoderWriteStatus write_callback_(const FLAC__FileDecoder *decoder, const FLAC__Frame *frame, const FLAC__int32 * const buffer[], void *client_data)
176 {
177         (void)decoder, (void)frame, (void)buffer, (void)client_data;
178
179         return FLAC__STREAM_DECODER_WRITE_STATUS_CONTINUE;
180 }
181
182 void metadata_callback_(const FLAC__FileDecoder *decoder, const FLAC__StreamMetadata *metadata, void *client_data)
183 {
184         level0_client_data *cd = (level0_client_data *)client_data;
185         (void)decoder;
186
187         if(metadata->type == FLAC__METADATA_TYPE_STREAMINFO && 0 != cd->streaminfo) {
188                 *(cd->streaminfo) = *metadata;
189                 cd->got_streaminfo = true;
190         }
191 }
192
193 void error_callback_(const FLAC__FileDecoder *decoder, FLAC__StreamDecoderErrorStatus status, void *client_data)
194 {
195         level0_client_data *cd = (level0_client_data *)client_data;
196         (void)decoder;
197
198         if(status != FLAC__STREAM_DECODER_ERROR_STATUS_LOST_SYNC)
199                 cd->got_error = true;
200 }
201
202
203 /****************************************************************************
204  *
205  * Level 1 implementation
206  *
207  ***************************************************************************/
208
209 #define SIMPLE_ITERATOR_MAX_PUSH_DEPTH (1+4)
210 /* 1 for initial offset, +4 for our own personal use */
211
212 struct FLAC__Metadata_SimpleIterator {
213         FILE *file;
214         char *filename, *tempfile_path_prefix;
215         struct stat stats;
216         FLAC__bool has_stats;
217         FLAC__bool is_writable;
218         FLAC__Metadata_SimpleIteratorStatus status;
219         /*@@@ 2G limits here because of the offset type: */
220         long offset[SIMPLE_ITERATOR_MAX_PUSH_DEPTH];
221         long first_offset; /* this is the offset to the STREAMINFO block */
222         unsigned depth;
223         /* this is the metadata block header of the current block we are pointing to: */
224         FLAC__bool is_last;
225         FLAC__MetadataType type;
226         unsigned length;
227 };
228
229 FLAC_API const char * const FLAC__Metadata_SimpleIteratorStatusString[] = {
230         "FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK",
231         "FLAC__METADATA_SIMPLE_ITERATOR_STATUS_ILLEGAL_INPUT",
232         "FLAC__METADATA_SIMPLE_ITERATOR_STATUS_ERROR_OPENING_FILE",
233         "FLAC__METADATA_SIMPLE_ITERATOR_STATUS_NOT_A_FLAC_FILE",
234         "FLAC__METADATA_SIMPLE_ITERATOR_STATUS_NOT_WRITABLE",
235         "FLAC__METADATA_SIMPLE_ITERATOR_STATUS_BAD_METADATA",
236         "FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR",
237         "FLAC__METADATA_SIMPLE_ITERATOR_STATUS_SEEK_ERROR",
238         "FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR",
239         "FLAC__METADATA_SIMPLE_ITERATOR_STATUS_RENAME_ERROR",
240         "FLAC__METADATA_SIMPLE_ITERATOR_STATUS_UNLINK_ERROR",
241         "FLAC__METADATA_SIMPLE_ITERATOR_STATUS_MEMORY_ALLOCATION_ERROR",
242         "FLAC__METADATA_SIMPLE_ITERATOR_STATUS_INTERNAL_ERROR"
243 };
244
245
246 FLAC_API FLAC__Metadata_SimpleIterator *FLAC__metadata_simple_iterator_new()
247 {
248         FLAC__Metadata_SimpleIterator *iterator = (FLAC__Metadata_SimpleIterator*)calloc(1, sizeof(FLAC__Metadata_SimpleIterator));
249
250         if(0 != iterator) {
251                 iterator->file = 0;
252                 iterator->filename = 0;
253                 iterator->tempfile_path_prefix = 0;
254                 iterator->has_stats = false;
255                 iterator->is_writable = false;
256                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK;
257                 iterator->first_offset = iterator->offset[0] = -1;
258                 iterator->depth = 0;
259         }
260
261         return iterator;
262 }
263
264 static void simple_iterator_free_guts_(FLAC__Metadata_SimpleIterator *iterator)
265 {
266         FLAC__ASSERT(0 != iterator);
267
268         if(0 != iterator->file) {
269                 fclose(iterator->file);
270                 iterator->file = 0;
271                 if(iterator->has_stats)
272                         set_file_stats_(iterator->filename, &iterator->stats);
273         }
274         if(0 != iterator->filename) {
275                 free(iterator->filename);
276                 iterator->filename = 0;
277         }
278         if(0 != iterator->tempfile_path_prefix) {
279                 free(iterator->tempfile_path_prefix);
280                 iterator->tempfile_path_prefix = 0;
281         }
282 }
283
284 FLAC_API void FLAC__metadata_simple_iterator_delete(FLAC__Metadata_SimpleIterator *iterator)
285 {
286         FLAC__ASSERT(0 != iterator);
287
288         simple_iterator_free_guts_(iterator);
289         free(iterator);
290 }
291
292 FLAC_API FLAC__Metadata_SimpleIteratorStatus FLAC__metadata_simple_iterator_status(FLAC__Metadata_SimpleIterator *iterator)
293 {
294         FLAC__Metadata_SimpleIteratorStatus status;
295
296         FLAC__ASSERT(0 != iterator);
297
298         status = iterator->status;
299         iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK;
300         return status;
301 }
302
303 static FLAC__bool simple_iterator_prime_input_(FLAC__Metadata_SimpleIterator *iterator, FLAC__bool read_only)
304 {
305         unsigned ret;
306
307         FLAC__ASSERT(0 != iterator);
308
309         if(read_only || 0 == (iterator->file = fopen(iterator->filename, "r+b"))) {
310                 iterator->is_writable = false;
311 #if !defined _MSC_VER && !defined __MINGW32__
312 /*@@@ don't know how to resolve errno without using LIBC.LIB; must use MSVCRT.LIB only for plugins */
313                 if(read_only || errno == EACCES) {
314 #endif
315                         if(0 == (iterator->file = fopen(iterator->filename, "rb"))) {
316                                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_ERROR_OPENING_FILE;
317                                 return false;
318                         }
319 #if !defined _MSC_VER && !defined __MINGW32__
320                 }
321                 else {
322                         iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_ERROR_OPENING_FILE;
323                         return false;
324                 }
325 #endif
326         }
327         else {
328                 iterator->is_writable = true;
329         }
330
331         ret = seek_to_first_metadata_block_(iterator->file);
332         switch(ret) {
333                 case 0:
334                         iterator->depth = 0;
335                         iterator->first_offset = iterator->offset[iterator->depth] = ftell(iterator->file);
336                         return read_metadata_block_header_(iterator);
337                 case 1:
338                         iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
339                         return false;
340                 case 2:
341                         iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_NOT_A_FLAC_FILE;
342                         return false;
343                 default:
344                         FLAC__ASSERT(0);
345                         return false;
346         }
347 }
348
349 #if 0
350 @@@ If we decide to finish implementing this, put this comment back in metadata.h
351 /*
352  * The 'tempfile_path_prefix' allows you to specify a directory where
353  * tempfiles should go.  Remember that if your metadata edits cause the
354  * FLAC file to grow, the entire file will have to be rewritten.  If
355  * 'tempfile_path_prefix' is NULL, the temp file will be written in the
356  * same directory as the original FLAC file.  This makes replacing the
357  * original with the tempfile fast but requires extra space in the same
358  * partition for the tempfile.  If space is a problem, you can pass a
359  * directory name belonging to a different partition in
360  * 'tempfile_path_prefix'.  Note that you should use the forward slash
361  * '/' as the directory separator.  A trailing slash is not needed; it
362  * will be added automatically.
363  */
364 FLAC__bool FLAC__metadata_simple_iterator_init(FLAC__Metadata_SimpleIterator *iterator, const char *filename, FLAC__bool preserve_file_stats, const char *tempfile_path_prefix);
365 #endif
366
367 FLAC_API FLAC__bool FLAC__metadata_simple_iterator_init(FLAC__Metadata_SimpleIterator *iterator, const char *filename, FLAC__bool read_only, FLAC__bool preserve_file_stats)
368 {
369         const char *tempfile_path_prefix = 0; /*@@@ search for comments near 'rename(...)' for what it will take to finish implementing this */
370
371         FLAC__ASSERT(0 != iterator);
372         FLAC__ASSERT(0 != filename);
373
374         simple_iterator_free_guts_(iterator);
375
376         if(!read_only && preserve_file_stats)
377                 iterator->has_stats = get_file_stats_(filename, &iterator->stats);
378
379         if(0 == (iterator->filename = strdup(filename))) {
380                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_MEMORY_ALLOCATION_ERROR;
381                 return false;
382         }
383         if(0 != tempfile_path_prefix && 0 == (iterator->tempfile_path_prefix = strdup(tempfile_path_prefix))) {
384                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_MEMORY_ALLOCATION_ERROR;
385                 return false;
386         }
387
388         return simple_iterator_prime_input_(iterator, read_only);
389 }
390
391 FLAC_API FLAC__bool FLAC__metadata_simple_iterator_is_writable(const FLAC__Metadata_SimpleIterator *iterator)
392 {
393         FLAC__ASSERT(0 != iterator);
394         FLAC__ASSERT(0 != iterator->file);
395
396         return iterator->is_writable;
397 }
398
399 FLAC_API FLAC__bool FLAC__metadata_simple_iterator_next(FLAC__Metadata_SimpleIterator *iterator)
400 {
401         FLAC__ASSERT(0 != iterator);
402         FLAC__ASSERT(0 != iterator->file);
403
404         if(iterator->is_last)
405                 return false;
406
407         if(0 != fseek(iterator->file, iterator->length, SEEK_CUR)) {
408                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_SEEK_ERROR;
409                 return false;
410         }
411
412         iterator->offset[iterator->depth] = ftell(iterator->file);
413
414         return read_metadata_block_header_(iterator);
415 }
416
417 FLAC_API FLAC__bool FLAC__metadata_simple_iterator_prev(FLAC__Metadata_SimpleIterator *iterator)
418 {
419         long this_offset;
420
421         FLAC__ASSERT(0 != iterator);
422         FLAC__ASSERT(0 != iterator->file);
423
424         if(iterator->offset[iterator->depth] == iterator->first_offset)
425                 return false;
426
427         if(0 != fseek(iterator->file, iterator->first_offset, SEEK_SET)) {
428                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_SEEK_ERROR;
429                 return false;
430         }
431         this_offset = iterator->first_offset;
432         if(!read_metadata_block_header_(iterator))
433                 return false;
434
435         /* we ignore any error from ftell() and catch it in fseek() */
436         while(ftell(iterator->file) + (long)iterator->length < iterator->offset[iterator->depth]) {
437                 if(0 != fseek(iterator->file, iterator->length, SEEK_CUR)) {
438                         iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_SEEK_ERROR;
439                         return false;
440                 }
441                 this_offset = ftell(iterator->file);
442                 if(!read_metadata_block_header_(iterator))
443                         return false;
444         }
445
446         iterator->offset[iterator->depth] = this_offset;
447
448         return true;
449 }
450
451 FLAC_API FLAC__MetadataType FLAC__metadata_simple_iterator_get_block_type(const FLAC__Metadata_SimpleIterator *iterator)
452 {
453         FLAC__ASSERT(0 != iterator);
454         FLAC__ASSERT(0 != iterator->file);
455
456         return iterator->type;
457 }
458
459 FLAC_API FLAC__StreamMetadata *FLAC__metadata_simple_iterator_get_block(FLAC__Metadata_SimpleIterator *iterator)
460 {
461         FLAC__StreamMetadata *block = FLAC__metadata_object_new(iterator->type);
462
463         FLAC__ASSERT(0 != iterator);
464         FLAC__ASSERT(0 != iterator->file);
465
466         if(0 != block) {
467                 block->is_last = iterator->is_last;
468                 block->length = iterator->length;
469
470                 if(!read_metadata_block_data_(iterator, block)) {
471                         FLAC__metadata_object_delete(block);
472                         return 0;
473                 }
474
475                 /* back up to the beginning of the block data to stay consistent */
476                 if(0 != fseek(iterator->file, iterator->offset[iterator->depth] + FLAC__STREAM_METADATA_HEADER_LENGTH, SEEK_SET)) {
477                         iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_SEEK_ERROR;
478                         FLAC__metadata_object_delete(block);
479                         return 0;
480                 }
481         }
482         else
483                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_MEMORY_ALLOCATION_ERROR;
484
485         return block;
486 }
487
488 FLAC_API FLAC__bool FLAC__metadata_simple_iterator_set_block(FLAC__Metadata_SimpleIterator *iterator, FLAC__StreamMetadata *block, FLAC__bool use_padding)
489 {
490         FLAC__ASSERT_DECLARATION(long debug_target_offset = iterator->offset[iterator->depth];)
491         FLAC__bool ret;
492
493         FLAC__ASSERT(0 != iterator);
494         FLAC__ASSERT(0 != iterator->file);
495         FLAC__ASSERT(0 != block);
496
497         if(!iterator->is_writable) {
498                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_NOT_WRITABLE;
499                 return false;
500         }
501
502         if(iterator->type == FLAC__METADATA_TYPE_STREAMINFO || block->type == FLAC__METADATA_TYPE_STREAMINFO) {
503                 if(iterator->type != block->type) {
504                         iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_ILLEGAL_INPUT;
505                         return false;
506                 }
507         }
508
509         block->is_last = iterator->is_last;
510
511         if(iterator->length == block->length)
512                 return write_metadata_block_stationary_(iterator, block);
513         else if(iterator->length > block->length) {
514                 if(use_padding && iterator->length >= FLAC__STREAM_METADATA_HEADER_LENGTH + block->length) {
515                         ret =  write_metadata_block_stationary_with_padding_(iterator, block, iterator->length - FLAC__STREAM_METADATA_HEADER_LENGTH - block->length, block->is_last);
516                         FLAC__ASSERT(iterator->offset[iterator->depth] == debug_target_offset);
517                         FLAC__ASSERT(ftell(iterator->file) == debug_target_offset + (long)FLAC__STREAM_METADATA_HEADER_LENGTH);
518                         return ret;
519                 }
520                 else {
521                         ret = rewrite_whole_file_(iterator, block, /*append=*/false);
522                         FLAC__ASSERT(iterator->offset[iterator->depth] == debug_target_offset);
523                         FLAC__ASSERT(ftell(iterator->file) == debug_target_offset + (long)FLAC__STREAM_METADATA_HEADER_LENGTH);
524                         return ret;
525                 }
526         }
527         else /* iterator->length < block->length */ {
528                 unsigned padding_leftover = 0;
529                 FLAC__bool padding_is_last = false;
530                 if(use_padding) {
531                         /* first see if we can even use padding */
532                         if(iterator->is_last) {
533                                 use_padding = false;
534                         }
535                         else {
536                                 const unsigned extra_padding_bytes_required = block->length - iterator->length;
537                                 simple_iterator_push_(iterator);
538                                 if(!FLAC__metadata_simple_iterator_next(iterator)) {
539                                         (void)simple_iterator_pop_(iterator);
540                                         return false;
541                                 }
542                                 if(iterator->type != FLAC__METADATA_TYPE_PADDING) {
543                                         use_padding = false;
544                                 }
545                                 else {
546                                         if(FLAC__STREAM_METADATA_HEADER_LENGTH + iterator->length == extra_padding_bytes_required) {
547                                                 padding_leftover = 0;
548                                                 block->is_last = iterator->is_last;
549                                         }
550                                         else if(iterator->length < extra_padding_bytes_required)
551                                                 use_padding = false;
552                                         else {
553                                                 padding_leftover = FLAC__STREAM_METADATA_HEADER_LENGTH + iterator->length - extra_padding_bytes_required;
554                                                 padding_is_last = iterator->is_last;
555                                                 block->is_last = false;
556                                         }
557                                 }
558                                 if(!simple_iterator_pop_(iterator))
559                                         return false;
560                         }
561                 }
562                 if(use_padding) {
563                         if(padding_leftover == 0) {
564                                 ret = write_metadata_block_stationary_(iterator, block);
565                                 FLAC__ASSERT(iterator->offset[iterator->depth] == debug_target_offset);
566                                 FLAC__ASSERT(ftell(iterator->file) == debug_target_offset + (long)FLAC__STREAM_METADATA_HEADER_LENGTH);
567                                 return ret;
568                         }
569                         else {
570                                 FLAC__ASSERT(padding_leftover >= FLAC__STREAM_METADATA_HEADER_LENGTH);
571                                 ret = write_metadata_block_stationary_with_padding_(iterator, block, padding_leftover - FLAC__STREAM_METADATA_HEADER_LENGTH, padding_is_last);
572                                 FLAC__ASSERT(iterator->offset[iterator->depth] == debug_target_offset);
573                                 FLAC__ASSERT(ftell(iterator->file) == debug_target_offset + (long)FLAC__STREAM_METADATA_HEADER_LENGTH);
574                                 return ret;
575                         }
576                 }
577                 else {
578                         ret = rewrite_whole_file_(iterator, block, /*append=*/false);
579                         FLAC__ASSERT(iterator->offset[iterator->depth] == debug_target_offset);
580                         FLAC__ASSERT(ftell(iterator->file) == debug_target_offset + (long)FLAC__STREAM_METADATA_HEADER_LENGTH);
581                         return ret;
582                 }
583         }
584 }
585
586 FLAC_API FLAC__bool FLAC__metadata_simple_iterator_insert_block_after(FLAC__Metadata_SimpleIterator *iterator, FLAC__StreamMetadata *block, FLAC__bool use_padding)
587 {
588         unsigned padding_leftover = 0;
589         FLAC__bool padding_is_last = false;
590
591         FLAC__ASSERT_DECLARATION(long debug_target_offset = iterator->offset[iterator->depth] + FLAC__STREAM_METADATA_HEADER_LENGTH + iterator->length;)
592         FLAC__bool ret;
593
594         FLAC__ASSERT(0 != iterator);
595         FLAC__ASSERT(0 != iterator->file);
596         FLAC__ASSERT(0 != block);
597
598         if(!iterator->is_writable)
599                 return false;
600
601         if(block->type == FLAC__METADATA_TYPE_STREAMINFO) {
602                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_ILLEGAL_INPUT;
603                 return false;
604         }
605
606         block->is_last = iterator->is_last;
607
608         if(use_padding) {
609                 /* first see if we can even use padding */
610                 if(iterator->is_last) {
611                         use_padding = false;
612                 }
613                 else {
614                         simple_iterator_push_(iterator);
615                         if(!FLAC__metadata_simple_iterator_next(iterator)) {
616                                 (void)simple_iterator_pop_(iterator);
617                                 return false;
618                         }
619                         if(iterator->type != FLAC__METADATA_TYPE_PADDING) {
620                                 use_padding = false;
621                         }
622                         else {
623                                 if(iterator->length == block->length) {
624                                         padding_leftover = 0;
625                                         block->is_last = iterator->is_last;
626                                 }
627                                 else if(iterator->length < FLAC__STREAM_METADATA_HEADER_LENGTH + block->length)
628                                         use_padding = false;
629                                 else {
630                                         padding_leftover = iterator->length - block->length;
631                                         padding_is_last = iterator->is_last;
632                                         block->is_last = false;
633                                 }
634                         }
635                         if(!simple_iterator_pop_(iterator))
636                                 return false;
637                 }
638         }
639         if(use_padding) {
640                 /* move to the next block, which is suitable padding */
641                 if(!FLAC__metadata_simple_iterator_next(iterator))
642                         return false;
643                 if(padding_leftover == 0) {
644                         ret = write_metadata_block_stationary_(iterator, block);
645                         FLAC__ASSERT(iterator->offset[iterator->depth] == debug_target_offset);
646                         FLAC__ASSERT(ftell(iterator->file) == debug_target_offset + (long)FLAC__STREAM_METADATA_HEADER_LENGTH);
647                         return ret;
648                 }
649                 else {
650                         FLAC__ASSERT(padding_leftover >= FLAC__STREAM_METADATA_HEADER_LENGTH);
651                         ret = write_metadata_block_stationary_with_padding_(iterator, block, padding_leftover - FLAC__STREAM_METADATA_HEADER_LENGTH, padding_is_last);
652                         FLAC__ASSERT(iterator->offset[iterator->depth] == debug_target_offset);
653                         FLAC__ASSERT(ftell(iterator->file) == debug_target_offset + (long)FLAC__STREAM_METADATA_HEADER_LENGTH);
654                         return ret;
655                 }
656         }
657         else {
658                 ret = rewrite_whole_file_(iterator, block, /*append=*/true);
659                 FLAC__ASSERT(iterator->offset[iterator->depth] == debug_target_offset);
660                 FLAC__ASSERT(ftell(iterator->file) == debug_target_offset + (long)FLAC__STREAM_METADATA_HEADER_LENGTH);
661                 return ret;
662         }
663 }
664
665 FLAC_API FLAC__bool FLAC__metadata_simple_iterator_delete_block(FLAC__Metadata_SimpleIterator *iterator, FLAC__bool use_padding)
666 {
667         FLAC__ASSERT_DECLARATION(long debug_target_offset = iterator->offset[iterator->depth];)
668         FLAC__bool ret;
669
670         if(iterator->type == FLAC__METADATA_TYPE_STREAMINFO) {
671                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_ILLEGAL_INPUT;
672                 return false;
673         }
674
675         if(use_padding) {
676                 FLAC__StreamMetadata *padding = FLAC__metadata_object_new(FLAC__METADATA_TYPE_PADDING);
677                 if(0 == padding) {
678                         iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_MEMORY_ALLOCATION_ERROR;
679                         return false;
680                 }
681                 padding->length = iterator->length;
682                 if(!FLAC__metadata_simple_iterator_set_block(iterator, padding, false)) {
683                         FLAC__metadata_object_delete(padding);
684                         return false;
685                 }
686                 FLAC__metadata_object_delete(padding);
687                 if(!FLAC__metadata_simple_iterator_prev(iterator))
688                         return false;
689                 FLAC__ASSERT(iterator->offset[iterator->depth] + (long)FLAC__STREAM_METADATA_HEADER_LENGTH + (long)iterator->length == debug_target_offset);
690                 FLAC__ASSERT(ftell(iterator->file) + (long)iterator->length == debug_target_offset);
691                 return true;
692         }
693         else {
694                 ret = rewrite_whole_file_(iterator, 0, /*append=*/false);
695                 FLAC__ASSERT(iterator->offset[iterator->depth] + (long)FLAC__STREAM_METADATA_HEADER_LENGTH + (long)iterator->length == debug_target_offset);
696                 FLAC__ASSERT(ftell(iterator->file) + (long)iterator->length == debug_target_offset);
697                 return ret;
698         }
699 }
700
701
702
703 /****************************************************************************
704  *
705  * Level 2 implementation
706  *
707  ***************************************************************************/
708
709
710 typedef struct FLAC__Metadata_Node {
711         FLAC__StreamMetadata *data;
712         struct FLAC__Metadata_Node *prev, *next;
713 } FLAC__Metadata_Node;
714
715 struct FLAC__Metadata_Chain {
716         char *filename;
717         FLAC__Metadata_Node *head;
718         FLAC__Metadata_Node *tail;
719         unsigned nodes;
720         FLAC__Metadata_ChainStatus status;
721         long first_offset, last_offset; /*@@@ 2G limit */
722         /*
723          * This is the length of the chain initially read from the FLAC file.
724          * it is used to compare against the current length to decide whether
725          * or not the whole file has to be rewritten.
726          */
727         unsigned initial_length; /*@@@ 4G limit */
728 };
729
730 struct FLAC__Metadata_Iterator {
731         FLAC__Metadata_Chain *chain;
732         FLAC__Metadata_Node *current;
733 };
734
735 FLAC_API const char * const FLAC__Metadata_ChainStatusString[] = {
736         "FLAC__METADATA_CHAIN_STATUS_OK",
737         "FLAC__METADATA_CHAIN_STATUS_ILLEGAL_INPUT",
738         "FLAC__METADATA_CHAIN_STATUS_ERROR_OPENING_FILE",
739         "FLAC__METADATA_CHAIN_STATUS_NOT_A_FLAC_FILE",
740         "FLAC__METADATA_CHAIN_STATUS_NOT_WRITABLE",
741         "FLAC__METADATA_CHAIN_STATUS_BAD_METADATA",
742         "FLAC__METADATA_CHAIN_STATUS_READ_ERROR",
743         "FLAC__METADATA_CHAIN_STATUS_SEEK_ERROR",
744         "FLAC__METADATA_CHAIN_STATUS_WRITE_ERROR",
745         "FLAC__METADATA_CHAIN_STATUS_RENAME_ERROR",
746         "FLAC__METADATA_CHAIN_STATUS_UNLINK_ERROR",
747         "FLAC__METADATA_CHAIN_STATUS_MEMORY_ALLOCATION_ERROR",
748         "FLAC__METADATA_CHAIN_STATUS_INTERNAL_ERROR"
749 };
750
751
752 static FLAC__Metadata_Node *node_new_()
753 {
754         return (FLAC__Metadata_Node*)calloc(1, sizeof(FLAC__Metadata_Node));
755 }
756
757 static void node_delete_(FLAC__Metadata_Node *node)
758 {
759         FLAC__ASSERT(0 != node);
760         if(0 != node->data)
761                 FLAC__metadata_object_delete(node->data);
762         free(node);
763 }
764
765 static void chain_append_node_(FLAC__Metadata_Chain *chain, FLAC__Metadata_Node *node)
766 {
767         FLAC__ASSERT(0 != chain);
768         FLAC__ASSERT(0 != node);
769         FLAC__ASSERT(0 != node->data);
770
771         node->next = node->prev = 0;
772         node->data->is_last = true;
773         if(0 != chain->tail)
774                 chain->tail->data->is_last = false;
775
776         if(0 == chain->head)
777                 chain->head = node;
778         else {
779                 FLAC__ASSERT(0 != chain->tail);
780                 chain->tail->next = node;
781                 node->prev = chain->tail;
782         }
783         chain->tail = node;
784         chain->nodes++;
785 }
786
787 static void chain_remove_node_(FLAC__Metadata_Chain *chain, FLAC__Metadata_Node *node)
788 {
789         FLAC__ASSERT(0 != chain);
790         FLAC__ASSERT(0 != node);
791
792         if(node == chain->head)
793                 chain->head = node->next;
794         else
795                 node->prev->next = node->next;
796
797         if(node == chain->tail)
798                 chain->tail = node->prev;
799         else
800                 node->next->prev = node->prev;
801
802         if(0 != chain->tail)
803                 chain->tail->data->is_last = true;
804
805         chain->nodes--;
806 }
807
808 static void chain_delete_node_(FLAC__Metadata_Chain *chain, FLAC__Metadata_Node *node)
809 {
810         chain_remove_node_(chain, node);
811         node_delete_(node);
812 }
813
814 static unsigned chain_calculate_length_(FLAC__Metadata_Chain *chain)
815 {
816         const FLAC__Metadata_Node *node;
817         unsigned length = 0;
818         for(node = chain->head; node; node = node->next)
819                 length += (FLAC__STREAM_METADATA_HEADER_LENGTH + node->data->length);
820         return length;
821 }
822
823 static void iterator_insert_node_(FLAC__Metadata_Iterator *iterator, FLAC__Metadata_Node *node)
824 {
825         FLAC__ASSERT(0 != node);
826         FLAC__ASSERT(0 != node->data);
827         FLAC__ASSERT(0 != iterator);
828         FLAC__ASSERT(0 != iterator->current);
829         FLAC__ASSERT(0 != iterator->chain);
830         FLAC__ASSERT(0 != iterator->chain->head);
831         FLAC__ASSERT(0 != iterator->chain->tail);
832
833         node->data->is_last = false;
834
835         node->prev = iterator->current->prev;
836         node->next = iterator->current;
837
838         if(0 == node->prev)
839                 iterator->chain->head = node;
840         else
841                 node->prev->next = node;
842
843         iterator->current->prev = node;
844
845         iterator->chain->nodes++;
846 }
847
848 static void iterator_insert_node_after_(FLAC__Metadata_Iterator *iterator, FLAC__Metadata_Node *node)
849 {
850         FLAC__ASSERT(0 != node);
851         FLAC__ASSERT(0 != node->data);
852         FLAC__ASSERT(0 != iterator);
853         FLAC__ASSERT(0 != iterator->current);
854         FLAC__ASSERT(0 != iterator->chain);
855         FLAC__ASSERT(0 != iterator->chain->head);
856         FLAC__ASSERT(0 != iterator->chain->tail);
857
858         iterator->current->data->is_last = false;
859
860         node->prev = iterator->current;
861         node->next = iterator->current->next;
862
863         if(0 == node->next)
864                 iterator->chain->tail = node;
865         else
866                 node->next->prev = node;
867
868         node->prev->next = node;
869
870         iterator->chain->tail->data->is_last = true;
871
872         iterator->chain->nodes++;
873 }
874
875 /* return true iff node and node->next are both padding */
876 static FLAC__bool chain_merge_adjacent_padding_(FLAC__Metadata_Chain *chain, FLAC__Metadata_Node *node)
877 {
878         if(node->data->type == FLAC__METADATA_TYPE_PADDING && 0 != node->next && node->next->data->type == FLAC__METADATA_TYPE_PADDING) {
879                 const unsigned growth = FLAC__STREAM_METADATA_HEADER_LENGTH + node->next->data->length;
880                 node->data->length += growth;
881
882                 chain_delete_node_(chain, node->next);
883                 return true;
884         }
885         else
886                 return false;
887 }
888
889 FLAC_API FLAC__Metadata_Chain *FLAC__metadata_chain_new()
890 {
891         FLAC__Metadata_Chain *chain = (FLAC__Metadata_Chain*)calloc(1, sizeof(FLAC__Metadata_Chain));
892
893         if(0 != chain) {
894                 chain->filename = 0;
895                 chain->head = chain->tail = 0;
896                 chain->nodes = 0;
897                 chain->status = FLAC__METADATA_CHAIN_STATUS_OK;
898                 chain->initial_length = 0;
899         }
900
901         return chain;
902 }
903
904 FLAC_API void FLAC__metadata_chain_delete(FLAC__Metadata_Chain *chain)
905 {
906         FLAC__Metadata_Node *node, *next;
907
908         FLAC__ASSERT(0 != chain);
909
910         for(node = chain->head; node; ) {
911                 next = node->next;
912                 node_delete_(node);
913                 node = next;
914         }
915
916         if(0 != chain->filename)
917                 free(chain->filename);
918
919         free(chain);
920 }
921
922 FLAC_API FLAC__Metadata_ChainStatus FLAC__metadata_chain_status(FLAC__Metadata_Chain *chain)
923 {
924         FLAC__Metadata_ChainStatus status;
925
926         FLAC__ASSERT(0 != chain);
927
928         status = chain->status;
929         chain->status = FLAC__METADATA_CHAIN_STATUS_OK;
930         return status;
931 }
932
933 FLAC_API FLAC__bool FLAC__metadata_chain_read(FLAC__Metadata_Chain *chain, const char *filename)
934 {
935         FLAC__Metadata_SimpleIterator *iterator;
936         FLAC__Metadata_Node *node;
937
938         FLAC__ASSERT(0 != chain);
939         FLAC__ASSERT(0 != filename);
940
941         if(0 == (chain->filename = strdup(filename))) {
942                 chain->status = FLAC__METADATA_CHAIN_STATUS_MEMORY_ALLOCATION_ERROR;
943                 return false;
944         }
945
946         if(0 == (iterator = FLAC__metadata_simple_iterator_new())) {
947                 chain->status = FLAC__METADATA_CHAIN_STATUS_MEMORY_ALLOCATION_ERROR;
948                 return false;
949         }
950
951         if(!FLAC__metadata_simple_iterator_init(iterator, filename, /*read_only=*/true, /*preserve_file_stats=*/false)) {
952                 chain->status = get_equivalent_status_(iterator->status);
953                 return false;
954         }
955
956         chain->first_offset = iterator->offset[iterator->depth];
957
958         do {
959                 node = node_new_();
960                 if(0 == node) {
961                         chain->status = FLAC__METADATA_CHAIN_STATUS_MEMORY_ALLOCATION_ERROR;
962                         return false;
963                 }
964                 node->data = FLAC__metadata_simple_iterator_get_block(iterator);
965                 if(0 == node->data) {
966                         node_delete_(node);
967                         chain->status = get_equivalent_status_(iterator->status);
968                         return false;
969                 }
970                 chain_append_node_(chain, node);
971         } while(FLAC__metadata_simple_iterator_next(iterator));
972
973         if(!iterator->is_last || iterator->status != FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK) {
974                 chain->status = get_equivalent_status_(iterator->status);
975                 return false;
976         }
977
978         chain->last_offset = ftell(iterator->file) + iterator->length;
979         FLAC__metadata_simple_iterator_delete(iterator);
980
981         chain->initial_length = chain_calculate_length_(chain);
982         return true;
983 }
984
985 FLAC_API FLAC__bool FLAC__metadata_chain_write(FLAC__Metadata_Chain *chain, FLAC__bool use_padding, FLAC__bool preserve_file_stats)
986 {
987         struct stat stats;
988         const char *tempfile_path_prefix = 0;
989         unsigned current_length;
990
991         FLAC__ASSERT(0 != chain);
992
993         current_length = chain_calculate_length_(chain);
994
995         if(use_padding) {
996                 if(current_length < chain->initial_length && chain->tail->data->type == FLAC__METADATA_TYPE_PADDING) {
997                         const unsigned delta = chain->initial_length - current_length;
998                         chain->tail->data->length += delta;
999                         current_length += delta;
1000                         FLAC__ASSERT(current_length == chain->initial_length);
1001                 }
1002                 else if(current_length + FLAC__STREAM_METADATA_HEADER_LENGTH <= chain->initial_length) {
1003                         FLAC__StreamMetadata *padding;
1004                         FLAC__Metadata_Node *node;
1005                         if(0 == (padding = FLAC__metadata_object_new(FLAC__METADATA_TYPE_PADDING))) {
1006                                 chain->status = FLAC__METADATA_CHAIN_STATUS_MEMORY_ALLOCATION_ERROR;
1007                                 return false;
1008                         }
1009                         padding->length = chain->initial_length - (FLAC__STREAM_METADATA_HEADER_LENGTH + current_length);
1010                         if(0 == (node = node_new_())) {
1011                                 FLAC__metadata_object_delete(padding);
1012                                 chain->status = FLAC__METADATA_CHAIN_STATUS_MEMORY_ALLOCATION_ERROR;
1013                                 return false;
1014                         }
1015                         node->data = padding;
1016                         chain_append_node_(chain, node);
1017                         current_length = chain_calculate_length_(chain);
1018                         FLAC__ASSERT(current_length == chain->initial_length);
1019                 }
1020                 else if(current_length > chain->initial_length) {
1021                         const unsigned delta = current_length - chain->initial_length;
1022                         if(chain->tail->data->type == FLAC__METADATA_TYPE_PADDING) {
1023                                 if(chain->tail->data->length + FLAC__STREAM_METADATA_HEADER_LENGTH == delta) {
1024                                         chain_delete_node_(chain, chain->tail);
1025                                         current_length = chain_calculate_length_(chain);
1026                                         FLAC__ASSERT(current_length == chain->initial_length);
1027                                 }
1028                                 else if(chain->tail->data->length >= delta) {
1029                                         chain->tail->data->length -= delta;
1030                                         current_length -= delta;
1031                                         FLAC__ASSERT(current_length == chain->initial_length);
1032                                 }
1033                         }
1034                 }
1035         }
1036
1037         if(preserve_file_stats)
1038                 get_file_stats_(chain->filename, &stats);
1039
1040         if(current_length == chain->initial_length) {
1041                 if(!chain_rewrite_chain_(chain))
1042                         return false;
1043         }
1044         else {
1045                 if(!chain_rewrite_file_(chain, tempfile_path_prefix))
1046                         return false;
1047         }
1048
1049         if(preserve_file_stats)
1050                 set_file_stats_(chain->filename, &stats);
1051
1052         /* recompute lengths and offsets if necessary */
1053         if(chain->initial_length != current_length) {
1054                 const FLAC__Metadata_Node *node;
1055                 chain->initial_length = current_length;
1056                 chain->last_offset = chain->first_offset;
1057                 for(node = chain->head; node; node = node->next)
1058                         chain->last_offset += (FLAC__STREAM_METADATA_HEADER_LENGTH + node->data->length);
1059         }
1060
1061         return true;
1062 }
1063
1064 FLAC_API void FLAC__metadata_chain_merge_padding(FLAC__Metadata_Chain *chain)
1065 {
1066         FLAC__Metadata_Node *node;
1067
1068         FLAC__ASSERT(0 != chain);
1069
1070         for(node = chain->head; node; ) {
1071                 if(!chain_merge_adjacent_padding_(chain, node))
1072                         node = node->next;
1073         }
1074 }
1075
1076 FLAC_API void FLAC__metadata_chain_sort_padding(FLAC__Metadata_Chain *chain)
1077 {
1078         FLAC__Metadata_Node *node, *save;
1079         unsigned i;
1080
1081         FLAC__ASSERT(0 != chain);
1082
1083         /*
1084          * Don't try and be too smart... this simple algo is good enough for
1085          * the small number of nodes that we deal with.
1086          */
1087         for(i = 0, node = chain->head; i < chain->nodes; i++) {
1088                 if(node->data->type == FLAC__METADATA_TYPE_PADDING) {
1089                         save = node->next;
1090                         chain_remove_node_(chain, node);
1091                         chain_append_node_(chain, node);
1092                         node = save;
1093                 }
1094                 else {
1095                         node = node->next;
1096                 }
1097         }
1098
1099         FLAC__metadata_chain_merge_padding(chain);
1100 }
1101
1102
1103 FLAC_API FLAC__Metadata_Iterator *FLAC__metadata_iterator_new()
1104 {
1105         FLAC__Metadata_Iterator *iterator = (FLAC__Metadata_Iterator*)calloc(1, sizeof(FLAC__Metadata_Iterator));
1106
1107         /* calloc() implies:
1108                 iterator->current = 0;
1109                 iterator->chain = 0;
1110         */
1111
1112         return iterator;
1113 }
1114
1115 FLAC_API void FLAC__metadata_iterator_delete(FLAC__Metadata_Iterator *iterator)
1116 {
1117         FLAC__ASSERT(0 != iterator);
1118
1119         free(iterator);
1120 }
1121
1122 FLAC_API void FLAC__metadata_iterator_init(FLAC__Metadata_Iterator *iterator, FLAC__Metadata_Chain *chain)
1123 {
1124         FLAC__ASSERT(0 != iterator);
1125         FLAC__ASSERT(0 != chain);
1126         FLAC__ASSERT(0 != chain->head);
1127
1128         iterator->chain = chain;
1129         iterator->current = chain->head;
1130 }
1131
1132 FLAC_API FLAC__bool FLAC__metadata_iterator_next(FLAC__Metadata_Iterator *iterator)
1133 {
1134         FLAC__ASSERT(0 != iterator);
1135
1136         if(0 == iterator->current || 0 == iterator->current->next)
1137                 return false;
1138
1139         iterator->current = iterator->current->next;
1140         return true;
1141 }
1142
1143 FLAC_API FLAC__bool FLAC__metadata_iterator_prev(FLAC__Metadata_Iterator *iterator)
1144 {
1145         FLAC__ASSERT(0 != iterator);
1146
1147         if(0 == iterator->current || 0 == iterator->current->prev)
1148                 return false;
1149
1150         iterator->current = iterator->current->prev;
1151         return true;
1152 }
1153
1154 FLAC_API FLAC__MetadataType FLAC__metadata_iterator_get_block_type(const FLAC__Metadata_Iterator *iterator)
1155 {
1156         FLAC__ASSERT(0 != iterator);
1157         FLAC__ASSERT(0 != iterator->current);
1158         FLAC__ASSERT(0 != iterator->current->data);
1159
1160         return iterator->current->data->type;
1161 }
1162
1163 FLAC_API FLAC__StreamMetadata *FLAC__metadata_iterator_get_block(FLAC__Metadata_Iterator *iterator)
1164 {
1165         FLAC__ASSERT(0 != iterator);
1166         FLAC__ASSERT(0 != iterator->current);
1167
1168         return iterator->current->data;
1169 }
1170
1171 FLAC_API FLAC__bool FLAC__metadata_iterator_set_block(FLAC__Metadata_Iterator *iterator, FLAC__StreamMetadata *block)
1172 {
1173         FLAC__ASSERT(0 != iterator);
1174         FLAC__ASSERT(0 != block);
1175         return FLAC__metadata_iterator_delete_block(iterator, false) && FLAC__metadata_iterator_insert_block_after(iterator, block);
1176 }
1177
1178 FLAC_API FLAC__bool FLAC__metadata_iterator_delete_block(FLAC__Metadata_Iterator *iterator, FLAC__bool replace_with_padding)
1179 {
1180         FLAC__Metadata_Node *save;
1181
1182         FLAC__ASSERT(0 != iterator);
1183         FLAC__ASSERT(0 != iterator->current);
1184
1185         if(0 == iterator->current->prev) {
1186                 FLAC__ASSERT(iterator->current->data->type == FLAC__METADATA_TYPE_STREAMINFO);
1187                 return false;
1188         }
1189
1190         save = iterator->current->prev;
1191
1192         if(replace_with_padding) {
1193                 FLAC__metadata_object_delete_data(iterator->current->data);
1194                 iterator->current->data->type = FLAC__METADATA_TYPE_PADDING;
1195         }
1196         else {
1197                 chain_delete_node_(iterator->chain, iterator->current);
1198         }
1199
1200         iterator->current = save;
1201         return true;
1202 }
1203
1204 FLAC_API FLAC__bool FLAC__metadata_iterator_insert_block_before(FLAC__Metadata_Iterator *iterator, FLAC__StreamMetadata *block)
1205 {
1206         FLAC__Metadata_Node *node;
1207
1208         FLAC__ASSERT(0 != iterator);
1209         FLAC__ASSERT(0 != iterator->current);
1210         FLAC__ASSERT(0 != block);
1211
1212         if(block->type == FLAC__METADATA_TYPE_STREAMINFO)
1213                 return false;
1214
1215         if(0 == iterator->current->prev) {
1216                 FLAC__ASSERT(iterator->current->data->type == FLAC__METADATA_TYPE_STREAMINFO);
1217                 return false;
1218         }
1219
1220         if(0 == (node = node_new_()))
1221                 return false;
1222
1223         node->data = block;
1224         iterator_insert_node_(iterator, node);
1225         iterator->current = node;
1226         return true;
1227 }
1228
1229 FLAC_API FLAC__bool FLAC__metadata_iterator_insert_block_after(FLAC__Metadata_Iterator *iterator, FLAC__StreamMetadata *block)
1230 {
1231         FLAC__Metadata_Node *node;
1232
1233         FLAC__ASSERT(0 != iterator);
1234         FLAC__ASSERT(0 != iterator->current);
1235         FLAC__ASSERT(0 != block);
1236
1237         if(block->type == FLAC__METADATA_TYPE_STREAMINFO)
1238                 return false;
1239
1240         if(0 == (node = node_new_()))
1241                 return false;
1242
1243         node->data = block;
1244         iterator_insert_node_after_(iterator, node);
1245         iterator->current = node;
1246         return true;
1247 }
1248
1249
1250 /****************************************************************************
1251  *
1252  * Local function definitions
1253  *
1254  ***************************************************************************/
1255
1256 void pack_uint32_(FLAC__uint32 val, FLAC__byte *b, unsigned bytes)
1257 {
1258         unsigned i;
1259
1260         b += bytes;
1261
1262         for(i = 0; i < bytes; i++) {
1263                 *(--b) = (FLAC__byte)(val & 0xff);
1264                 val >>= 8;
1265         }
1266 }
1267
1268 void pack_uint32_little_endian_(FLAC__uint32 val, FLAC__byte *b, unsigned bytes)
1269 {
1270         unsigned i;
1271
1272         for(i = 0; i < bytes; i++) {
1273                 *(b++) = (FLAC__byte)(val & 0xff);
1274                 val >>= 8;
1275         }
1276 }
1277
1278 void pack_uint64_(FLAC__uint64 val, FLAC__byte *b, unsigned bytes)
1279 {
1280         unsigned i;
1281
1282         b += bytes;
1283
1284         for(i = 0; i < bytes; i++) {
1285                 *(--b) = (FLAC__byte)(val & 0xff);
1286                 val >>= 8;
1287         }
1288 }
1289
1290 FLAC__uint32 unpack_uint32_(FLAC__byte *b, unsigned bytes)
1291 {
1292         FLAC__uint32 ret = 0;
1293         unsigned i;
1294
1295         for(i = 0; i < bytes; i++)
1296                 ret = (ret << 8) | (FLAC__uint32)(*b++);
1297
1298         return ret;
1299 }
1300
1301 FLAC__uint32 unpack_uint32_little_endian_(FLAC__byte *b, unsigned bytes)
1302 {
1303         FLAC__uint32 ret = 0;
1304         unsigned i;
1305
1306         b += bytes;
1307
1308         for(i = 0; i < bytes; i++)
1309                 ret = (ret << 8) | (FLAC__uint32)(*--b);
1310
1311         return ret;
1312 }
1313
1314 FLAC__uint64 unpack_uint64_(FLAC__byte *b, unsigned bytes)
1315 {
1316         FLAC__uint64 ret = 0;
1317         unsigned i;
1318
1319         for(i = 0; i < bytes; i++)
1320                 ret = (ret << 8) | (FLAC__uint64)(*b++);
1321
1322         return ret;
1323 }
1324
1325 FLAC__bool read_metadata_block_header_(FLAC__Metadata_SimpleIterator *iterator)
1326 {
1327         FLAC__byte raw_header[FLAC__STREAM_METADATA_HEADER_LENGTH];
1328
1329         FLAC__ASSERT(0 != iterator);
1330         FLAC__ASSERT(0 != iterator->file);
1331
1332         if(fread(raw_header, 1, FLAC__STREAM_METADATA_HEADER_LENGTH, iterator->file) != FLAC__STREAM_METADATA_HEADER_LENGTH) {
1333                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1334                 return false;
1335         }
1336
1337         iterator->is_last = raw_header[0] & 0x80? true : false;
1338         iterator->type = (FLAC__MetadataType)(raw_header[0] & 0x7f);
1339         iterator->length = unpack_uint32_(raw_header + 1, 3);
1340
1341         /* do some checking */
1342         if(iterator->type >= FLAC__METADATA_TYPE_UNDEFINED) {
1343                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_BAD_METADATA;
1344                 return false;
1345         }
1346
1347         return true;
1348 }
1349
1350 FLAC__bool read_metadata_block_data_(FLAC__Metadata_SimpleIterator *iterator, FLAC__StreamMetadata *block)
1351 {
1352         FLAC__ASSERT(0 != iterator);
1353         FLAC__ASSERT(0 != iterator->file);
1354
1355         switch(block->type) {
1356                 case FLAC__METADATA_TYPE_STREAMINFO:
1357                         iterator->status = read_metadata_block_data_streaminfo_(iterator->file, &block->data.stream_info);
1358                         break;
1359                 case FLAC__METADATA_TYPE_PADDING:
1360                         iterator->status = read_metadata_block_data_padding_(iterator->file, &block->data.padding, block->length);
1361                         break;
1362                 case FLAC__METADATA_TYPE_APPLICATION:
1363                         iterator->status = read_metadata_block_data_application_(iterator->file, &block->data.application, block->length);
1364                         break;
1365                 case FLAC__METADATA_TYPE_SEEKTABLE:
1366                         iterator->status = read_metadata_block_data_seektable_(iterator->file, &block->data.seek_table, block->length);
1367                         break;
1368                 case FLAC__METADATA_TYPE_VORBIS_COMMENT:
1369                         iterator->status = read_metadata_block_data_vorbis_comment_(iterator->file, &block->data.vorbis_comment);
1370                         break;
1371                 case FLAC__METADATA_TYPE_CUESHEET:
1372                         iterator->status = read_metadata_block_data_cuesheet_(iterator->file, &block->data.cue_sheet);
1373                         break;
1374                 default:
1375                         FLAC__ASSERT(0);
1376                         iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_INTERNAL_ERROR;
1377         }
1378
1379         return (iterator->status == FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK);
1380 }
1381
1382 FLAC__Metadata_SimpleIteratorStatus read_metadata_block_data_streaminfo_(FILE *file, FLAC__StreamMetadata_StreamInfo *block)
1383 {
1384         FLAC__byte buffer[FLAC__STREAM_METADATA_STREAMINFO_LENGTH], *b;
1385
1386         FLAC__ASSERT(0 != file);
1387
1388         if(fread(buffer, 1, FLAC__STREAM_METADATA_STREAMINFO_LENGTH, file) != FLAC__STREAM_METADATA_STREAMINFO_LENGTH)
1389                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1390
1391         b = buffer;
1392
1393         /* @@@ we are using hardcoded numbers for simplicity but we should
1394          * probably eventually write a bit-level unpacker and use the
1395          * _STREAMINFO_ constants.
1396          */
1397         block->min_blocksize = unpack_uint32_(b, 2); b += 2;
1398         block->max_blocksize = unpack_uint32_(b, 2); b += 2;
1399         block->min_framesize = unpack_uint32_(b, 3); b += 3;
1400         block->max_framesize = unpack_uint32_(b, 3); b += 3;
1401         block->sample_rate = (unpack_uint32_(b, 2) << 4) | ((unsigned)(b[2] & 0xf0) >> 4);
1402         block->channels = (unsigned)((b[2] & 0x0e) >> 1) + 1;
1403         block->bits_per_sample = ((((unsigned)(b[2] & 0x01)) << 4) | (((unsigned)(b[3] & 0xf0)) >> 4)) + 1;
1404         block->total_samples = (((FLAC__uint64)(b[3] & 0x0f)) << 32) | unpack_uint64_(b+4, 4);
1405         memcpy(block->md5sum, b+8, 16);
1406
1407         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK;
1408 }
1409
1410
1411 FLAC__Metadata_SimpleIteratorStatus read_metadata_block_data_padding_(FILE *file, FLAC__StreamMetadata_Padding *block, unsigned block_length)
1412 {
1413         FLAC__ASSERT(0 != file);
1414
1415         (void)block; /* nothing to do; we don't care about reading the padding bytes */
1416
1417         if(0 != fseek(file, block_length, SEEK_CUR))
1418                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_SEEK_ERROR;
1419
1420         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK;
1421 }
1422
1423 FLAC__Metadata_SimpleIteratorStatus read_metadata_block_data_application_(FILE *file, FLAC__StreamMetadata_Application *block, unsigned block_length)
1424 {
1425         const unsigned id_bytes = FLAC__STREAM_METADATA_APPLICATION_ID_LEN / 8;
1426
1427         FLAC__ASSERT(0 != file);
1428
1429         if(fread(block->id, 1, id_bytes, file) != id_bytes)
1430                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1431
1432         block_length -= id_bytes;
1433
1434         if(block_length == 0) {
1435                 block->data = 0;
1436         }
1437         else {
1438                 if(0 == (block->data = (FLAC__byte*)malloc(block_length)))
1439                         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_MEMORY_ALLOCATION_ERROR;
1440
1441                 if(fread(block->data, 1, block_length, file) != block_length)
1442                         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1443         }
1444
1445         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK;
1446 }
1447
1448 FLAC__Metadata_SimpleIteratorStatus read_metadata_block_data_seektable_(FILE *file, FLAC__StreamMetadata_SeekTable *block, unsigned block_length)
1449 {
1450         unsigned i;
1451         FLAC__byte buffer[FLAC__STREAM_METADATA_SEEKPOINT_LENGTH];
1452
1453         FLAC__ASSERT(0 != file);
1454         FLAC__ASSERT(block_length % FLAC__STREAM_METADATA_SEEKPOINT_LENGTH == 0);
1455
1456         block->num_points = block_length / FLAC__STREAM_METADATA_SEEKPOINT_LENGTH;
1457
1458         if(block->num_points == 0)
1459                 block->points = 0;
1460         else if(0 == (block->points = (FLAC__StreamMetadata_SeekPoint*)malloc(block->num_points * sizeof(FLAC__StreamMetadata_SeekPoint))))
1461                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_MEMORY_ALLOCATION_ERROR;
1462
1463         for(i = 0; i < block->num_points; i++) {
1464                 if(fread(buffer, 1, FLAC__STREAM_METADATA_SEEKPOINT_LENGTH, file) != FLAC__STREAM_METADATA_SEEKPOINT_LENGTH)
1465                         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1466                 /*@@@ some MAGIC NUMBERs here */
1467                 block->points[i].sample_number = unpack_uint64_(buffer, 8);
1468                 block->points[i].stream_offset = unpack_uint64_(buffer+8, 8);
1469                 block->points[i].frame_samples = unpack_uint32_(buffer+16, 2);
1470         }
1471
1472         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK;
1473 }
1474
1475 FLAC__Metadata_SimpleIteratorStatus read_metadata_block_data_vorbis_comment_entry_(FILE *file, FLAC__StreamMetadata_VorbisComment_Entry *entry)
1476 {
1477         const unsigned entry_length_len = FLAC__STREAM_METADATA_VORBIS_COMMENT_ENTRY_LENGTH_LEN / 8;
1478         FLAC__byte buffer[4]; /* magic number is asserted below */
1479
1480         FLAC__ASSERT(FLAC__STREAM_METADATA_VORBIS_COMMENT_ENTRY_LENGTH_LEN / 8 == 4);
1481         FLAC__ASSERT(0 != file);
1482
1483         if(fread(buffer, 1, entry_length_len, file) != entry_length_len)
1484                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1485         entry->length = unpack_uint32_little_endian_(buffer, entry_length_len);
1486
1487         if(0 != entry->entry)
1488                 free(entry->entry);
1489
1490         if(entry->length == 0) {
1491                 entry->entry = 0;
1492         }
1493         else {
1494                 if(0 == (entry->entry = (FLAC__byte*)malloc(entry->length)))
1495                         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_MEMORY_ALLOCATION_ERROR;
1496
1497                 if(fread(entry->entry, 1, entry->length, file) != entry->length)
1498                         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1499         }
1500
1501         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK;
1502 }
1503
1504 FLAC__Metadata_SimpleIteratorStatus read_metadata_block_data_vorbis_comment_(FILE *file, FLAC__StreamMetadata_VorbisComment *block)
1505 {
1506         unsigned i;
1507         FLAC__Metadata_SimpleIteratorStatus status;
1508         const unsigned num_comments_len = FLAC__STREAM_METADATA_VORBIS_COMMENT_NUM_COMMENTS_LEN / 8;
1509         FLAC__byte buffer[4]; /* magic number is asserted below */
1510
1511         FLAC__ASSERT(FLAC__STREAM_METADATA_VORBIS_COMMENT_NUM_COMMENTS_LEN / 8 == 4);
1512         FLAC__ASSERT(0 != file);
1513
1514         if(FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK != (status = read_metadata_block_data_vorbis_comment_entry_(file, &(block->vendor_string))))
1515                 return status;
1516
1517         if(fread(buffer, 1, num_comments_len, file) != num_comments_len)
1518                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1519         block->num_comments = unpack_uint32_little_endian_(buffer, num_comments_len);
1520
1521         if(block->num_comments == 0) {
1522                 block->comments = 0;
1523         }
1524         else if(0 == (block->comments = (FLAC__StreamMetadata_VorbisComment_Entry*)calloc(block->num_comments, sizeof(FLAC__StreamMetadata_VorbisComment_Entry))))
1525                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_MEMORY_ALLOCATION_ERROR;
1526
1527         for(i = 0; i < block->num_comments; i++) {
1528                 if(FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK != (status = read_metadata_block_data_vorbis_comment_entry_(file, block->comments + i)))
1529                         return status;
1530         }
1531
1532         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK;
1533 }
1534
1535 FLAC__Metadata_SimpleIteratorStatus read_metadata_block_data_cuesheet_track_(FILE *file, FLAC__StreamMetadata_CueSheet_Track *track)
1536 {
1537         unsigned i, len;
1538         FLAC__byte buffer[32]; /* asserted below that this is big enough */
1539
1540         FLAC__ASSERT(sizeof(buffer) >= sizeof(FLAC__uint64));
1541         FLAC__ASSERT(sizeof(buffer) >= FLAC__STREAM_METADATA_CUESHEET_INDEX_RESERVED_LEN/8);
1542         FLAC__ASSERT(sizeof(buffer) >= (FLAC__STREAM_METADATA_CUESHEET_TRACK_TYPE_LEN + FLAC__STREAM_METADATA_CUESHEET_TRACK_PRE_EMPHASIS_LEN + FLAC__STREAM_METADATA_CUESHEET_TRACK_RESERVED_LEN) / 8);
1543
1544         FLAC__ASSERT(0 != file);
1545
1546         FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_TRACK_OFFSET_LEN % 8 == 0);
1547         len = FLAC__STREAM_METADATA_CUESHEET_TRACK_OFFSET_LEN / 8;
1548         if(fread(buffer, 1, len, file) != len)
1549                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1550         track->offset = unpack_uint64_(buffer, len);
1551
1552         FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_TRACK_NUMBER_LEN % 8 == 0);
1553         len = FLAC__STREAM_METADATA_CUESHEET_TRACK_NUMBER_LEN / 8;
1554         if(fread(buffer, 1, len, file) != len)
1555                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1556         track->number = (FLAC__byte)unpack_uint32_(buffer, len);
1557
1558         FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_TRACK_ISRC_LEN % 8 == 0);
1559         len = FLAC__STREAM_METADATA_CUESHEET_TRACK_ISRC_LEN / 8;
1560         if(fread(track->isrc, 1, len, file) != len)
1561                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1562
1563         FLAC__ASSERT((FLAC__STREAM_METADATA_CUESHEET_TRACK_TYPE_LEN + FLAC__STREAM_METADATA_CUESHEET_TRACK_PRE_EMPHASIS_LEN + FLAC__STREAM_METADATA_CUESHEET_TRACK_RESERVED_LEN) % 8 == 0);
1564         len = (FLAC__STREAM_METADATA_CUESHEET_TRACK_TYPE_LEN + FLAC__STREAM_METADATA_CUESHEET_TRACK_PRE_EMPHASIS_LEN + FLAC__STREAM_METADATA_CUESHEET_TRACK_RESERVED_LEN) / 8;
1565         if(fread(buffer, 1, len, file) != len)
1566                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1567         FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_TRACK_TYPE_LEN == 1);
1568         FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_TRACK_PRE_EMPHASIS_LEN == 1);
1569         track->type = buffer[0] >> 7;
1570         track->pre_emphasis = (buffer[0] >> 6) & 1;
1571
1572         FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_TRACK_NUM_INDICES_LEN % 8 == 0);
1573         len = FLAC__STREAM_METADATA_CUESHEET_TRACK_NUM_INDICES_LEN / 8;
1574         if(fread(buffer, 1, len, file) != len)
1575                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1576         track->num_indices = (FLAC__byte)unpack_uint32_(buffer, len);
1577
1578         if(track->num_indices == 0) {
1579                 track->indices = 0;
1580         }
1581         else if(0 == (track->indices = (FLAC__StreamMetadata_CueSheet_Index*)calloc(track->num_indices, sizeof(FLAC__StreamMetadata_CueSheet_Index))))
1582                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_MEMORY_ALLOCATION_ERROR;
1583
1584         for(i = 0; i < track->num_indices; i++) {
1585                 FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_INDEX_OFFSET_LEN % 8 == 0);
1586                 len = FLAC__STREAM_METADATA_CUESHEET_INDEX_OFFSET_LEN / 8;
1587                 if(fread(buffer, 1, len, file) != len)
1588                         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1589                 track->indices[i].offset = unpack_uint64_(buffer, len);
1590
1591                 FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_INDEX_NUMBER_LEN % 8 == 0);
1592                 len = FLAC__STREAM_METADATA_CUESHEET_INDEX_NUMBER_LEN / 8;
1593                 if(fread(buffer, 1, len, file) != len)
1594                         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1595                 track->indices[i].number = (FLAC__byte)unpack_uint32_(buffer, len);
1596
1597                 FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_INDEX_RESERVED_LEN % 8 == 0);
1598                 len = FLAC__STREAM_METADATA_CUESHEET_INDEX_RESERVED_LEN / 8;
1599                 if(fread(buffer, 1, len, file) != len)
1600                         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1601         }
1602
1603         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK;
1604 }
1605
1606 FLAC__Metadata_SimpleIteratorStatus read_metadata_block_data_cuesheet_(FILE *file, FLAC__StreamMetadata_CueSheet *block)
1607 {
1608         unsigned i, len;
1609         FLAC__Metadata_SimpleIteratorStatus status;
1610         FLAC__byte buffer[max(sizeof(FLAC__uint64), FLAC__STREAM_METADATA_CUESHEET_RESERVED_LEN/8)]; /* the largest object we'll read in one shot */
1611
1612         FLAC__ASSERT(0 != file);
1613
1614         FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_MEDIA_CATALOG_NUMBER_LEN % 8 == 0);
1615         len = FLAC__STREAM_METADATA_CUESHEET_MEDIA_CATALOG_NUMBER_LEN / 8;
1616         if(fread(block->media_catalog_number, 1, len, file) != len)
1617                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1618
1619         FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_LEAD_IN_LEN % 8 == 0);
1620         len = FLAC__STREAM_METADATA_CUESHEET_LEAD_IN_LEN / 8;
1621         if(fread(buffer, 1, len, file) != len)
1622                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1623         block->lead_in = unpack_uint64_(buffer, len);
1624
1625         FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_RESERVED_LEN % 8 == 0);
1626         len = FLAC__STREAM_METADATA_CUESHEET_RESERVED_LEN / 8;
1627         if(fread(buffer, 1, len, file) != len)
1628                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1629
1630         FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_NUM_TRACKS_LEN % 8 == 0);
1631         len = FLAC__STREAM_METADATA_CUESHEET_NUM_TRACKS_LEN / 8;
1632         if(fread(buffer, 1, len, file) != len)
1633                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
1634         block->num_tracks = unpack_uint32_(buffer, len);
1635
1636         if(block->num_tracks == 0) {
1637                 block->tracks = 0;
1638         }
1639         else if(0 == (block->tracks = (FLAC__StreamMetadata_CueSheet_Track*)calloc(block->num_tracks, sizeof(FLAC__StreamMetadata_CueSheet_Track))))
1640                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_MEMORY_ALLOCATION_ERROR;
1641
1642         for(i = 0; i < block->num_tracks; i++) {
1643                 if(FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK != (status = read_metadata_block_data_cuesheet_track_(file, block->tracks + i)))
1644                         return status;
1645         }
1646
1647         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK;
1648 }
1649
1650 FLAC__bool write_metadata_block_header_(FILE *file, FLAC__Metadata_SimpleIteratorStatus *status, const FLAC__StreamMetadata *block)
1651 {
1652         FLAC__byte buffer[FLAC__STREAM_METADATA_HEADER_LENGTH];
1653
1654         FLAC__ASSERT(0 != file);
1655         FLAC__ASSERT(0 != status);
1656         FLAC__ASSERT(block->length < (1u << FLAC__STREAM_METADATA_LENGTH_LEN));
1657
1658         buffer[0] = (block->is_last? 0x80 : 0) | (FLAC__byte)block->type;
1659         pack_uint32_(block->length, buffer + 1, 3);
1660
1661         if(fwrite(buffer, 1, FLAC__STREAM_METADATA_HEADER_LENGTH, file) != FLAC__STREAM_METADATA_HEADER_LENGTH) {
1662                 *status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1663                 return false;
1664         }
1665
1666         return true;
1667 }
1668
1669 FLAC__bool write_metadata_block_data_(FILE *file, FLAC__Metadata_SimpleIteratorStatus *status, const FLAC__StreamMetadata *block)
1670 {
1671         FLAC__ASSERT(0 != file);
1672         FLAC__ASSERT(0 != status);
1673
1674         switch(block->type) {
1675                 case FLAC__METADATA_TYPE_STREAMINFO:
1676                         *status = write_metadata_block_data_streaminfo_(file, &block->data.stream_info);
1677                         break;
1678                 case FLAC__METADATA_TYPE_PADDING:
1679                         *status = write_metadata_block_data_padding_(file, &block->data.padding, block->length);
1680                         break;
1681                 case FLAC__METADATA_TYPE_APPLICATION:
1682                         *status = write_metadata_block_data_application_(file, &block->data.application, block->length);
1683                         break;
1684                 case FLAC__METADATA_TYPE_SEEKTABLE:
1685                         *status = write_metadata_block_data_seektable_(file, &block->data.seek_table);
1686                         break;
1687                 case FLAC__METADATA_TYPE_VORBIS_COMMENT:
1688                         *status = write_metadata_block_data_vorbis_comment_(file, &block->data.vorbis_comment);
1689                         break;
1690                 case FLAC__METADATA_TYPE_CUESHEET:
1691                         *status = write_metadata_block_data_cuesheet_(file, &block->data.cue_sheet);
1692                         break;
1693                 default:
1694                         FLAC__ASSERT(0);
1695                         *status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_INTERNAL_ERROR;
1696         }
1697         return (*status == FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK);
1698 }
1699
1700 FLAC__Metadata_SimpleIteratorStatus write_metadata_block_data_streaminfo_(FILE *file, const FLAC__StreamMetadata_StreamInfo *block)
1701 {
1702         FLAC__byte buffer[FLAC__STREAM_METADATA_STREAMINFO_LENGTH];
1703         const unsigned channels1 = block->channels - 1;
1704         const unsigned bps1 = block->bits_per_sample - 1;
1705
1706         FLAC__ASSERT(0 != file);
1707
1708         /* @@@ we are using hardcoded numbers for simplicity but we should
1709          * probably eventually write a bit-level packer and use the
1710          * _STREAMINFO_ constants.
1711          */
1712         pack_uint32_(block->min_blocksize, buffer, 2);
1713         pack_uint32_(block->max_blocksize, buffer+2, 2);
1714         pack_uint32_(block->min_framesize, buffer+4, 3);
1715         pack_uint32_(block->max_framesize, buffer+7, 3);
1716         buffer[10] = (block->sample_rate >> 12) & 0xff;
1717         buffer[11] = (block->sample_rate >> 4) & 0xff;
1718         buffer[12] = ((block->sample_rate & 0x0f) << 4) | (channels1 << 1) | (bps1 >> 4);
1719         buffer[13] = (FLAC__byte)(((bps1 & 0x0f) << 4) | ((block->total_samples >> 32) & 0x0f));
1720         pack_uint32_((FLAC__uint32)block->total_samples, buffer+14, 4);
1721         memcpy(buffer+18, block->md5sum, 16);
1722
1723         if(fwrite(buffer, 1, FLAC__STREAM_METADATA_STREAMINFO_LENGTH, file) != FLAC__STREAM_METADATA_STREAMINFO_LENGTH)
1724                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1725
1726         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK;
1727 }
1728
1729 FLAC__Metadata_SimpleIteratorStatus write_metadata_block_data_padding_(FILE *file, const FLAC__StreamMetadata_Padding *block, unsigned block_length)
1730 {
1731         unsigned i, n = block_length;
1732         FLAC__byte buffer[1024];
1733
1734         FLAC__ASSERT(0 != file);
1735
1736         (void)block;
1737
1738         memset(buffer, 0, 1024);
1739
1740         for(i = 0; i < n/1024; i++)
1741                 if(fwrite(buffer, 1, 1024, file) != 1024)
1742                         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1743
1744         n %= 1024;
1745
1746         if(fwrite(buffer, 1, n, file) != n)
1747                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1748
1749         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK;
1750 }
1751
1752 FLAC__Metadata_SimpleIteratorStatus write_metadata_block_data_application_(FILE *file, const FLAC__StreamMetadata_Application *block, unsigned block_length)
1753 {
1754         const unsigned id_bytes = FLAC__STREAM_METADATA_APPLICATION_ID_LEN / 8;
1755
1756         FLAC__ASSERT(0 != file);
1757
1758         if(fwrite(block->id, 1, id_bytes, file) != id_bytes)
1759                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1760
1761         block_length -= id_bytes;
1762
1763         if(fwrite(block->data, 1, block_length, file) != block_length)
1764                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1765
1766         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK;
1767 }
1768
1769 FLAC__Metadata_SimpleIteratorStatus write_metadata_block_data_seektable_(FILE *file, const FLAC__StreamMetadata_SeekTable *block)
1770 {
1771         unsigned i;
1772         FLAC__byte buffer[FLAC__STREAM_METADATA_SEEKPOINT_LENGTH];
1773
1774         FLAC__ASSERT(0 != file);
1775
1776         for(i = 0; i < block->num_points; i++) {
1777                 /*@@@ some MAGIC NUMBERs here */
1778                 pack_uint64_(block->points[i].sample_number, buffer, 8);
1779                 pack_uint64_(block->points[i].stream_offset, buffer+8, 8);
1780                 pack_uint32_(block->points[i].frame_samples, buffer+16, 2);
1781                 if(fwrite(buffer, 1, FLAC__STREAM_METADATA_SEEKPOINT_LENGTH, file) != FLAC__STREAM_METADATA_SEEKPOINT_LENGTH)
1782                         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1783         }
1784
1785         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK;
1786 }
1787
1788 FLAC__Metadata_SimpleIteratorStatus write_metadata_block_data_vorbis_comment_(FILE *file, const FLAC__StreamMetadata_VorbisComment *block)
1789 {
1790         unsigned i;
1791         const unsigned entry_length_len = FLAC__STREAM_METADATA_VORBIS_COMMENT_ENTRY_LENGTH_LEN / 8;
1792         const unsigned num_comments_len = FLAC__STREAM_METADATA_VORBIS_COMMENT_NUM_COMMENTS_LEN / 8;
1793         FLAC__byte buffer[4]; /* magic number is asserted below */
1794
1795         FLAC__ASSERT(max(FLAC__STREAM_METADATA_VORBIS_COMMENT_ENTRY_LENGTH_LEN, FLAC__STREAM_METADATA_VORBIS_COMMENT_NUM_COMMENTS_LEN) / 8 == 4);
1796         FLAC__ASSERT(0 != file);
1797
1798         pack_uint32_little_endian_(block->vendor_string.length, buffer, entry_length_len);
1799         if(fwrite(buffer, 1, entry_length_len, file) != entry_length_len)
1800                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1801         if(fwrite(block->vendor_string.entry, 1, block->vendor_string.length, file) != block->vendor_string.length)
1802                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1803
1804         pack_uint32_little_endian_(block->num_comments, buffer, num_comments_len);
1805         if(fwrite(buffer, 1, num_comments_len, file) != num_comments_len)
1806                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1807
1808         for(i = 0; i < block->num_comments; i++) {
1809                 pack_uint32_little_endian_(block->comments[i].length, buffer, entry_length_len);
1810                 if(fwrite(buffer, 1, entry_length_len, file) != entry_length_len)
1811                         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1812                 if(fwrite(block->comments[i].entry, 1, block->comments[i].length, file) != block->comments[i].length)
1813                         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1814         }
1815
1816         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK;
1817 }
1818
1819 FLAC__Metadata_SimpleIteratorStatus write_metadata_block_data_cuesheet_(FILE *file, const FLAC__StreamMetadata_CueSheet *block)
1820 {
1821         unsigned i, j, len;
1822         FLAC__byte buffer[1024]; /* asserted below that this is big enough */
1823
1824         FLAC__ASSERT(sizeof(buffer) >= sizeof(FLAC__uint64));
1825         FLAC__ASSERT(sizeof(buffer) >= FLAC__STREAM_METADATA_CUESHEET_RESERVED_LEN/8);
1826         FLAC__ASSERT(sizeof(buffer) >= (FLAC__STREAM_METADATA_CUESHEET_TRACK_TYPE_LEN + FLAC__STREAM_METADATA_CUESHEET_TRACK_PRE_EMPHASIS_LEN + FLAC__STREAM_METADATA_CUESHEET_TRACK_RESERVED_LEN)/8);
1827         FLAC__ASSERT(sizeof(buffer) >= FLAC__STREAM_METADATA_CUESHEET_INDEX_RESERVED_LEN/8);
1828
1829         FLAC__ASSERT(0 != file);
1830
1831         FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_MEDIA_CATALOG_NUMBER_LEN % 8 == 0);
1832         len = FLAC__STREAM_METADATA_CUESHEET_MEDIA_CATALOG_NUMBER_LEN / 8;
1833         if(fwrite(block->media_catalog_number, 1, len, file) != len)
1834                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1835
1836         FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_LEAD_IN_LEN % 8 == 0);
1837         len = FLAC__STREAM_METADATA_CUESHEET_LEAD_IN_LEN / 8;
1838         pack_uint64_(block->lead_in, buffer, len);
1839         if(fwrite(buffer, 1, len, file) != len)
1840                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1841
1842         FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_RESERVED_LEN % 8 == 0);
1843         len = FLAC__STREAM_METADATA_CUESHEET_RESERVED_LEN / 8;
1844         memset(buffer, 0, len);
1845         if(fwrite(buffer, 1, len, file) != len)
1846                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1847
1848         FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_NUM_TRACKS_LEN % 8 == 0);
1849         len = FLAC__STREAM_METADATA_CUESHEET_NUM_TRACKS_LEN / 8;
1850         pack_uint32_(block->num_tracks, buffer, len);
1851         if(fwrite(buffer, 1, len, file) != len)
1852                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1853
1854         for(i = 0; i < block->num_tracks; i++) {
1855                 FLAC__StreamMetadata_CueSheet_Track *track = block->tracks + i;
1856
1857                 FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_TRACK_OFFSET_LEN % 8 == 0);
1858                 len = FLAC__STREAM_METADATA_CUESHEET_TRACK_OFFSET_LEN / 8;
1859                 pack_uint64_(track->offset, buffer, len);
1860                 if(fwrite(buffer, 1, len, file) != len)
1861                         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1862
1863                 FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_TRACK_NUMBER_LEN % 8 == 0);
1864                 len = FLAC__STREAM_METADATA_CUESHEET_TRACK_NUMBER_LEN / 8;
1865                 pack_uint32_(track->number, buffer, len);
1866                 if(fwrite(buffer, 1, len, file) != len)
1867                         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1868
1869                 FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_TRACK_ISRC_LEN % 8 == 0);
1870                 len = FLAC__STREAM_METADATA_CUESHEET_TRACK_ISRC_LEN / 8;
1871                 if(fwrite(track->isrc, 1, len, file) != len)
1872                         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1873
1874                 FLAC__ASSERT((FLAC__STREAM_METADATA_CUESHEET_TRACK_TYPE_LEN + FLAC__STREAM_METADATA_CUESHEET_TRACK_PRE_EMPHASIS_LEN + FLAC__STREAM_METADATA_CUESHEET_TRACK_RESERVED_LEN) % 8 == 0);
1875                 len = (FLAC__STREAM_METADATA_CUESHEET_TRACK_TYPE_LEN + FLAC__STREAM_METADATA_CUESHEET_TRACK_PRE_EMPHASIS_LEN + FLAC__STREAM_METADATA_CUESHEET_TRACK_RESERVED_LEN) / 8;
1876                 memset(buffer, 0, len);
1877                 buffer[0] = (track->type << 7) | (track->pre_emphasis << 6);
1878                 if(fwrite(buffer, 1, len, file) != len)
1879                         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1880
1881                 FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_TRACK_NUM_INDICES_LEN % 8 == 0);
1882                 len = FLAC__STREAM_METADATA_CUESHEET_TRACK_NUM_INDICES_LEN / 8;
1883                 pack_uint32_(track->num_indices, buffer, len);
1884                 if(fwrite(buffer, 1, len, file) != len)
1885                         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1886
1887                 for(j = 0; j < track->num_indices; j++) {
1888                         FLAC__StreamMetadata_CueSheet_Index *index = track->indices + j;
1889
1890                         FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_INDEX_OFFSET_LEN % 8 == 0);
1891                         len = FLAC__STREAM_METADATA_CUESHEET_INDEX_OFFSET_LEN / 8;
1892                         pack_uint64_(index->offset, buffer, len);
1893                         if(fwrite(buffer, 1, len, file) != len)
1894                                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1895
1896                         FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_INDEX_NUMBER_LEN % 8 == 0);
1897                         len = FLAC__STREAM_METADATA_CUESHEET_INDEX_NUMBER_LEN / 8;
1898                         pack_uint32_(index->number, buffer, len);
1899                         if(fwrite(buffer, 1, len, file) != len)
1900                                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1901
1902                         FLAC__ASSERT(FLAC__STREAM_METADATA_CUESHEET_INDEX_RESERVED_LEN % 8 == 0);
1903                         len = FLAC__STREAM_METADATA_CUESHEET_INDEX_RESERVED_LEN / 8;
1904                         memset(buffer, 0, len);
1905                         if(fwrite(buffer, 1, len, file) != len)
1906                                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
1907                 }
1908         }
1909
1910         return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK;
1911 }
1912
1913 FLAC__bool write_metadata_block_stationary_(FLAC__Metadata_SimpleIterator *iterator, const FLAC__StreamMetadata *block)
1914 {
1915         if(0 != fseek(iterator->file, iterator->offset[iterator->depth], SEEK_SET)) {
1916                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_SEEK_ERROR;
1917                 return false;
1918         }
1919
1920         if(!write_metadata_block_header_(iterator->file, &iterator->status, block))
1921                 return false;
1922
1923         if(!write_metadata_block_data_(iterator->file, &iterator->status, block))
1924                 return false;
1925
1926         if(0 != fseek(iterator->file, iterator->offset[iterator->depth], SEEK_SET)) {
1927                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_SEEK_ERROR;
1928                 return false;
1929         }
1930
1931         return read_metadata_block_header_(iterator);
1932 }
1933
1934 FLAC__bool write_metadata_block_stationary_with_padding_(FLAC__Metadata_SimpleIterator *iterator, FLAC__StreamMetadata *block, unsigned padding_length, FLAC__bool padding_is_last)
1935 {
1936         FLAC__StreamMetadata *padding;
1937
1938         if(0 != fseek(iterator->file, iterator->offset[iterator->depth], SEEK_SET)) {
1939                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_SEEK_ERROR;
1940                 return false;
1941         }
1942
1943         block->is_last = false;
1944
1945         if(!write_metadata_block_header_(iterator->file, &iterator->status, block))
1946                 return false;
1947
1948         if(!write_metadata_block_data_(iterator->file, &iterator->status, block))
1949                 return false;
1950
1951         if(0 == (padding = FLAC__metadata_object_new(FLAC__METADATA_TYPE_PADDING)))
1952                 return FLAC__METADATA_SIMPLE_ITERATOR_STATUS_MEMORY_ALLOCATION_ERROR;
1953
1954         padding->is_last = padding_is_last;
1955         padding->length = padding_length;
1956
1957         if(!write_metadata_block_header_(iterator->file, &iterator->status, padding)) {
1958                 FLAC__metadata_object_delete(padding);
1959                 return false;
1960         }
1961
1962         if(!write_metadata_block_data_(iterator->file, &iterator->status, padding)) {
1963                 FLAC__metadata_object_delete(padding);
1964                 return false;
1965         }
1966
1967         FLAC__metadata_object_delete(padding);
1968
1969         if(0 != fseek(iterator->file, iterator->offset[iterator->depth], SEEK_SET)) {
1970                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_SEEK_ERROR;
1971                 return false;
1972         }
1973
1974         return read_metadata_block_header_(iterator);
1975 }
1976
1977 FLAC__bool rewrite_whole_file_(FLAC__Metadata_SimpleIterator *iterator, FLAC__StreamMetadata *block, FLAC__bool append)
1978 {
1979         FILE *tempfile;
1980         char *tempfilename;
1981         int fixup_is_last_code = 0; /* 0 => no need to change any is_last flags */
1982         long fixup_is_last_flag_offset = -1;
1983
1984         FLAC__ASSERT(0 != block || append == false);
1985
1986         if(iterator->is_last) {
1987                 if(append) {
1988                         fixup_is_last_code = 1; /* 1 => clear the is_last flag at the following offset */
1989                         fixup_is_last_flag_offset = iterator->offset[iterator->depth];
1990                 }
1991                 else if(0 == block) {
1992                         simple_iterator_push_(iterator);
1993                         if(!FLAC__metadata_simple_iterator_prev(iterator)) {
1994                                 (void)simple_iterator_pop_(iterator);
1995                                 return false;
1996                         }
1997                         fixup_is_last_code = -1; /* -1 => set the is_last the flag at the following offset */
1998                         fixup_is_last_flag_offset = iterator->offset[iterator->depth];
1999                         if(!simple_iterator_pop_(iterator))
2000                                 return false;
2001                 }
2002         }
2003
2004         if(!simple_iterator_copy_file_prefix_(iterator, &tempfile, &tempfilename, append))
2005                 return false;
2006
2007         if(0 != block) {
2008                 if(!write_metadata_block_header_(tempfile, &iterator->status, block)) {
2009                         cleanup_tempfile_(&tempfile, &tempfilename);
2010                         return false;
2011                 }
2012
2013                 if(!write_metadata_block_data_(tempfile, &iterator->status, block)) {
2014                         cleanup_tempfile_(&tempfile, &tempfilename);
2015                         return false;
2016                 }
2017         }
2018
2019         if(!simple_iterator_copy_file_postfix_(iterator, &tempfile, &tempfilename, fixup_is_last_code, fixup_is_last_flag_offset, block==0))
2020                 return false;
2021
2022         if(append)
2023                 return FLAC__metadata_simple_iterator_next(iterator);
2024
2025         return true;
2026 }
2027
2028 FLAC__bool chain_rewrite_chain_(FLAC__Metadata_Chain *chain)
2029 {
2030         FILE *f;
2031         FLAC__Metadata_Node *node;
2032         FLAC__Metadata_SimpleIteratorStatus status;
2033
2034         FLAC__ASSERT(0 != chain);
2035         FLAC__ASSERT(0 != chain->filename);
2036         FLAC__ASSERT(0 != chain->head);
2037
2038         if(0 == (f = fopen(chain->filename, "r+b"))) {
2039                 chain->status = FLAC__METADATA_CHAIN_STATUS_ERROR_OPENING_FILE;
2040                 return false;
2041         }
2042         if(0 != fseek(f, chain->first_offset, SEEK_SET)) {
2043                 chain->status = FLAC__METADATA_CHAIN_STATUS_SEEK_ERROR;
2044                 return false;
2045         }
2046
2047         for(node = chain->head; node; node = node->next) {
2048                 if(!write_metadata_block_header_(f, &status, node->data)) {
2049                         chain->status = get_equivalent_status_(status);
2050                         return false;
2051                 }
2052                 if(!write_metadata_block_data_(f, &status, node->data)) {
2053                         chain->status = get_equivalent_status_(status);
2054                         return false;
2055                 }
2056         }
2057
2058         /*FLAC__ASSERT(fflush(), ftell() == chain->last_offset);*/
2059
2060         (void)fclose(f);
2061
2062         return true;
2063 }
2064
2065 FLAC__bool chain_rewrite_file_(FLAC__Metadata_Chain *chain, const char *tempfile_path_prefix)
2066 {
2067         FILE *f, *tempfile;
2068         char *tempfilename;
2069         FLAC__Metadata_SimpleIteratorStatus status;
2070         const FLAC__Metadata_Node *node;
2071
2072         FLAC__ASSERT(0 != chain);
2073         FLAC__ASSERT(0 != chain->filename);
2074         FLAC__ASSERT(0 != chain->head);
2075
2076         /* copy the file prefix (data up to first metadata block */
2077         if(0 == (f = fopen(chain->filename, "rb"))) {
2078                 chain->status = FLAC__METADATA_CHAIN_STATUS_ERROR_OPENING_FILE;
2079                 return false;
2080         }
2081         if(!open_tempfile_(chain->filename, tempfile_path_prefix, &tempfile, &tempfilename, &status)) {
2082                 chain->status = get_equivalent_status_(status);
2083                 cleanup_tempfile_(&tempfile, &tempfilename);
2084                 return false;
2085         }
2086         if(!copy_n_bytes_from_file_(f, tempfile, chain->first_offset, &status)) {
2087                 chain->status = get_equivalent_status_(status);
2088                 cleanup_tempfile_(&tempfile, &tempfilename);
2089                 return false;
2090         }
2091
2092         /* write the metadata */
2093         for(node = chain->head; node; node = node->next) {
2094                 if(!write_metadata_block_header_(tempfile, &status, node->data)) {
2095                         chain->status = get_equivalent_status_(status);
2096                         return false;
2097                 }
2098                 if(!write_metadata_block_data_(tempfile, &status, node->data)) {
2099                         chain->status = get_equivalent_status_(status);
2100                         return false;
2101                 }
2102         }
2103         /*FLAC__ASSERT(fflush(), ftell() == chain->last_offset);*/
2104
2105         /* copy the file postfix (everything after the metadata) */
2106         if(0 != fseek(f, chain->last_offset, SEEK_SET)) {
2107                 cleanup_tempfile_(&tempfile, &tempfilename);
2108                 chain->status = FLAC__METADATA_CHAIN_STATUS_SEEK_ERROR;
2109                 return false;
2110         }
2111         if(!copy_remaining_bytes_from_file_(f, tempfile, &status)) {
2112                 cleanup_tempfile_(&tempfile, &tempfilename);
2113                 chain->status = get_equivalent_status_(status);
2114                 return false;
2115         }
2116
2117         /* move the tempfile on top of the original */
2118         (void)fclose(f);
2119         if(!transport_tempfile_(chain->filename, &tempfile, &tempfilename, &status))
2120                 return false;
2121
2122         return true;
2123 }
2124
2125 void simple_iterator_push_(FLAC__Metadata_SimpleIterator *iterator)
2126 {
2127         FLAC__ASSERT(iterator->depth+1 < SIMPLE_ITERATOR_MAX_PUSH_DEPTH);
2128         iterator->offset[iterator->depth+1] = iterator->offset[iterator->depth];
2129         iterator->depth++;
2130 }
2131
2132 FLAC__bool simple_iterator_pop_(FLAC__Metadata_SimpleIterator *iterator)
2133 {
2134         FLAC__ASSERT(iterator->depth > 0);
2135         iterator->depth--;
2136         if(0 != fseek(iterator->file, iterator->offset[iterator->depth], SEEK_SET)) {
2137                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_SEEK_ERROR;
2138                 return false;
2139         }
2140
2141         return read_metadata_block_header_(iterator);
2142 }
2143
2144 unsigned seek_to_first_metadata_block_(FILE *f)
2145 {
2146         FLAC__byte buffer[4];
2147         size_t n;
2148         unsigned i;
2149
2150         FLAC__ASSERT(0 != f);
2151         FLAC__ASSERT(FLAC__STREAM_SYNC_LENGTH == 4);
2152
2153         /* skip any id3v2 tag */
2154 #if !defined _MSC_VER && !defined __MINGW32__
2155 /*@@@ don't know how to resolve errno without using LIBC.LIB; must use MSVCRT.LIB only for plugins */
2156         errno = 0;
2157 #endif
2158         n = fread(buffer, 1, 4, f);
2159 #if !defined _MSC_VER && !defined __MINGW32__
2160 /*@@@ don't know how to resolve errno without using LIBC.LIB; must use MSVCRT.LIB only for plugins */
2161         if(errno)
2162                 return 1;
2163         else
2164 #endif
2165         if(n != 4)
2166                 return 2;
2167         else if(0 == memcmp(buffer, "ID3", 3)) {
2168                 unsigned tag_length = 0;
2169
2170                 /* skip to the tag length */
2171                 if(fseek(f, 2, SEEK_CUR) < 0)
2172                         return 1;
2173
2174                 /* read the length */
2175                 for(i = 0; i < 4; i++) {
2176                         if(fread(buffer, 1, 1, f) < 1 || buffer[0] & 0x80)
2177                                 return 1;
2178                         tag_length <<= 7;
2179                         tag_length |= (buffer[0] & 0x7f);
2180                 }
2181
2182                 /* skip the rest of the tag */
2183                 if(fseek(f, tag_length, SEEK_CUR) < 0)
2184                         return 1;
2185
2186                 /* read the stream sync code */
2187 #if !defined _MSC_VER && !defined __MINGW32__
2188 /*@@@ don't know how to resolve errno without using LIBC.LIB; must use MSVCRT.LIB only for plugins */
2189                 errno = 0;
2190 #endif
2191                 n = fread(buffer, 1, 4, f);
2192 #if !defined _MSC_VER && !defined __MINGW32__
2193 /*@@@ don't know how to resolve errno without using LIBC.LIB; must use MSVCRT.LIB only for plugins */
2194                 if(errno)
2195                         return 1;
2196                 else
2197 #endif
2198                 if(n != 4)
2199                         return 2;
2200         }
2201
2202         /* check for the fLaC signature */
2203         if(0 == memcmp(FLAC__STREAM_SYNC_STRING, buffer, FLAC__STREAM_SYNC_LENGTH))
2204                 return 0;
2205         else
2206                 return 2;
2207 }
2208
2209 FLAC__bool simple_iterator_copy_file_prefix_(FLAC__Metadata_SimpleIterator *iterator, FILE **tempfile, char **tempfilename, FLAC__bool append)
2210 {
2211         const long offset_end = append? iterator->offset[iterator->depth] + (long)FLAC__STREAM_METADATA_HEADER_LENGTH + (long)iterator->length : iterator->offset[iterator->depth];
2212
2213         if(0 != fseek(iterator->file, 0, SEEK_SET)) {
2214                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_SEEK_ERROR;
2215                 return false;
2216         }
2217         if(!open_tempfile_(iterator->filename, iterator->tempfile_path_prefix, tempfile, tempfilename, &iterator->status)) {
2218                 cleanup_tempfile_(tempfile, tempfilename);
2219                 return false;
2220         }
2221         if(!copy_n_bytes_from_file_(iterator->file, *tempfile, offset_end, &iterator->status)) {
2222                 cleanup_tempfile_(tempfile, tempfilename);
2223                 return false;
2224         }
2225
2226         return true;
2227 }
2228
2229 FLAC__bool simple_iterator_copy_file_postfix_(FLAC__Metadata_SimpleIterator *iterator, FILE **tempfile, char **tempfilename, int fixup_is_last_code, long fixup_is_last_flag_offset, FLAC__bool backup)
2230 {
2231         long save_offset = iterator->offset[iterator->depth]; /*@@@ 2G limit */
2232         FLAC__ASSERT(0 != *tempfile);
2233
2234         if(0 != fseek(iterator->file, save_offset + FLAC__STREAM_METADATA_HEADER_LENGTH + iterator->length, SEEK_SET)) {
2235                 cleanup_tempfile_(tempfile, tempfilename);
2236                 iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_SEEK_ERROR;
2237                 return false;
2238         }
2239         if(!copy_remaining_bytes_from_file_(iterator->file, *tempfile, &iterator->status)) {
2240                 cleanup_tempfile_(tempfile, tempfilename);
2241                 return false;
2242         }
2243
2244         if(fixup_is_last_code != 0) {
2245                 /*
2246                  * if code == 1, it means a block was appended to the end so
2247                  *   we have to clear the is_last flag of the previous block
2248                  * if code == -1, it means the last block was deleted so
2249                  *   we have to set the is_last flag of the previous block
2250                  */
2251                 /*@@@ MAGIC NUMBERs here; we know the is_last flag is the high bit of the byte at this location */
2252                 FLAC__byte x;
2253                 if(0 != fseek(*tempfile, fixup_is_last_flag_offset, SEEK_SET)) {
2254                         cleanup_tempfile_(tempfile, tempfilename);
2255                         iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_SEEK_ERROR;
2256                         return false;
2257                 }
2258                 if(fread(&x, 1, 1, *tempfile) != 1) {
2259                         cleanup_tempfile_(tempfile, tempfilename);
2260                         iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
2261                         return false;
2262                 }
2263                 if(fixup_is_last_code > 0) {
2264                         FLAC__ASSERT(x & 0x80);
2265                         x &= 0x7f;
2266                 }
2267                 else {
2268                         FLAC__ASSERT(!(x & 0x80));
2269                         x |= 0x80;
2270                 }
2271                 if(0 != fseek(*tempfile, fixup_is_last_flag_offset, SEEK_SET)) {
2272                         cleanup_tempfile_(tempfile, tempfilename);
2273                         iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_SEEK_ERROR;
2274                         return false;
2275                 }
2276                 if(fwrite(&x, 1, 1, *tempfile) != 1) {
2277                         cleanup_tempfile_(tempfile, tempfilename);
2278                         iterator->status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
2279                         return false;
2280                 }
2281         }
2282
2283         (void)fclose(iterator->file);
2284
2285         if(!transport_tempfile_(iterator->filename, tempfile, tempfilename, &iterator->status))
2286                 return false;
2287
2288         if(iterator->has_stats)
2289                 set_file_stats_(iterator->filename, &iterator->stats);
2290
2291         if(!simple_iterator_prime_input_(iterator, !iterator->is_writable))
2292                 return false;
2293         if(backup) {
2294                 while(iterator->offset[iterator->depth] + (long)FLAC__STREAM_METADATA_HEADER_LENGTH + (long)iterator->length < save_offset)
2295                         if(!FLAC__metadata_simple_iterator_next(iterator))
2296                                 return false;
2297                 return true;
2298         }
2299         else {
2300                 /* move the iterator to it's original block faster by faking a push, then doing a pop_ */
2301                 FLAC__ASSERT(iterator->depth == 0);
2302                 iterator->offset[0] = save_offset;
2303                 iterator->depth++;
2304                 return simple_iterator_pop_(iterator);
2305         }
2306 }
2307
2308 FLAC__bool copy_n_bytes_from_file_(FILE *file, FILE *tempfile, unsigned bytes/*@@@ 4G limit*/, FLAC__Metadata_SimpleIteratorStatus *status)
2309 {
2310         FLAC__byte buffer[8192];
2311         unsigned n;
2312
2313         while(bytes > 0) {
2314                 n = min(sizeof(buffer), bytes);
2315                 if(fread(buffer, 1, n, file) != n) {
2316                         *status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
2317                         return false;
2318                 }
2319                 if(fwrite(buffer, 1, n, tempfile) != n) {
2320                         *status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
2321                         return false;
2322                 }
2323                 bytes -= n;
2324         }
2325
2326         return true;
2327 }
2328
2329 FLAC__bool copy_remaining_bytes_from_file_(FILE *file, FILE *tempfile, FLAC__Metadata_SimpleIteratorStatus *status)
2330 {
2331         FLAC__byte buffer[8192];
2332         size_t n;
2333
2334         while(!feof(file)) {
2335                 n = fread(buffer, 1, sizeof(buffer), file);
2336                 if(n == 0 && !feof(file)) {
2337                         *status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR;
2338                         return false;
2339                 }
2340                 if(n > 0 && fwrite(buffer, 1, n, tempfile) != n) {
2341                         *status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR;
2342                         return false;
2343                 }
2344         }
2345
2346         return true;
2347 }
2348
2349 FLAC__bool open_tempfile_(const char *filename, const char *tempfile_path_prefix, FILE **tempfile, char **tempfilename, FLAC__Metadata_SimpleIteratorStatus *status)
2350 {
2351         static const char *tempfile_suffix = ".metadata_edit";
2352         if(0 == tempfile_path_prefix) {
2353                 if(0 == (*tempfilename = (char*)malloc(strlen(filename) + strlen(tempfile_suffix) + 1))) {
2354                         *status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_MEMORY_ALLOCATION_ERROR;
2355                         return false;
2356                 }
2357                 strcpy(*tempfilename, filename);
2358                 strcat(*tempfilename, tempfile_suffix);
2359         }
2360         else {
2361                 const char *p = strrchr(filename, '/');
2362                 if(0 == p)
2363                         p = filename;
2364                 else
2365                         p++;
2366
2367                 if(0 == (*tempfilename = (char*)malloc(strlen(tempfile_path_prefix) + 1 + strlen(p) + strlen(tempfile_suffix) + 1))) {
2368                         *status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_MEMORY_ALLOCATION_ERROR;
2369                         return false;
2370                 }
2371                 strcpy(*tempfilename, tempfile_path_prefix);
2372                 strcat(*tempfilename, "/");
2373                 strcat(*tempfilename, p);
2374                 strcat(*tempfilename, tempfile_suffix);
2375         }
2376
2377         if(0 == (*tempfile = fopen(*tempfilename, "w+b"))) {
2378                 *status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_ERROR_OPENING_FILE;
2379                 return false;
2380         }
2381
2382         return true;
2383 }
2384
2385 FLAC__bool transport_tempfile_(const char *filename, FILE **tempfile, char **tempfilename, FLAC__Metadata_SimpleIteratorStatus *status)
2386 {
2387         FLAC__ASSERT(0 != filename);
2388         FLAC__ASSERT(0 != tempfile);
2389         FLAC__ASSERT(0 != *tempfile);
2390         FLAC__ASSERT(0 != tempfilename);
2391         FLAC__ASSERT(0 != *tempfilename);
2392         FLAC__ASSERT(0 != status);
2393
2394         (void)fclose(*tempfile);
2395         *tempfile = 0;
2396
2397 #if defined _MSC_VER || defined __MINGW32__
2398         if(unlink(filename) < 0) {
2399                 cleanup_tempfile_(tempfile, tempfilename);
2400                 *status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_UNLINK_ERROR;
2401                 return false;
2402         }
2403 #endif
2404
2405         /*@@@ to fully support the tempfile_path_prefix we need to update this piece to actually copy across filesystems instead of just rename(): */
2406         if(0 != rename(*tempfilename, filename)) {
2407                 cleanup_tempfile_(tempfile, tempfilename);
2408                 *status = FLAC__METADATA_SIMPLE_ITERATOR_STATUS_RENAME_ERROR;
2409                 return false;
2410         }
2411
2412         cleanup_tempfile_(tempfile, tempfilename);
2413
2414         return true;
2415 }
2416
2417 void cleanup_tempfile_(FILE **tempfile, char **tempfilename)
2418 {
2419         if(0 != *tempfile) {
2420                 (void)fclose(*tempfile);
2421                 *tempfile = 0;
2422         }
2423
2424         if(0 != *tempfilename) {
2425                 (void)unlink(*tempfilename);
2426                 free(*tempfilename);
2427                 *tempfilename = 0;
2428         }
2429 }
2430
2431 FLAC__bool get_file_stats_(const char *filename, struct stat *stats)
2432 {
2433         FLAC__ASSERT(0 != filename);
2434         FLAC__ASSERT(0 != stats);
2435         return (0 == stat(filename, stats));
2436 }
2437
2438 void set_file_stats_(const char *filename, struct stat *stats)
2439 {
2440         struct utimbuf srctime;
2441
2442         FLAC__ASSERT(0 != filename);
2443         FLAC__ASSERT(0 != stats);
2444
2445         srctime.actime = stats->st_atime;
2446         srctime.modtime = stats->st_mtime;
2447         (void)chmod(filename, stats->st_mode);
2448         (void)utime(filename, &srctime);
2449 #if !defined _MSC_VER && !defined __MINGW32__
2450         (void)chown(filename, stats->st_uid, -1);
2451         (void)chown(filename, -1, stats->st_gid);
2452 #endif
2453 }
2454
2455 FLAC__Metadata_ChainStatus get_equivalent_status_(FLAC__Metadata_SimpleIteratorStatus status)
2456 {
2457         switch(status) {
2458                 case FLAC__METADATA_SIMPLE_ITERATOR_STATUS_OK:
2459                         return FLAC__METADATA_CHAIN_STATUS_OK;
2460                 case FLAC__METADATA_SIMPLE_ITERATOR_STATUS_ILLEGAL_INPUT:
2461                         return FLAC__METADATA_CHAIN_STATUS_ILLEGAL_INPUT;
2462                 case FLAC__METADATA_SIMPLE_ITERATOR_STATUS_ERROR_OPENING_FILE:
2463                         return FLAC__METADATA_CHAIN_STATUS_ERROR_OPENING_FILE;
2464                 case FLAC__METADATA_SIMPLE_ITERATOR_STATUS_NOT_A_FLAC_FILE:
2465                         return FLAC__METADATA_CHAIN_STATUS_NOT_A_FLAC_FILE;
2466                 case FLAC__METADATA_SIMPLE_ITERATOR_STATUS_NOT_WRITABLE:
2467                         return FLAC__METADATA_CHAIN_STATUS_NOT_WRITABLE;
2468                 case FLAC__METADATA_SIMPLE_ITERATOR_STATUS_BAD_METADATA:
2469                         return FLAC__METADATA_CHAIN_STATUS_BAD_METADATA;
2470                 case FLAC__METADATA_SIMPLE_ITERATOR_STATUS_READ_ERROR:
2471                         return FLAC__METADATA_CHAIN_STATUS_READ_ERROR;
2472                 case FLAC__METADATA_SIMPLE_ITERATOR_STATUS_SEEK_ERROR:
2473                         return FLAC__METADATA_CHAIN_STATUS_SEEK_ERROR;
2474                 case FLAC__METADATA_SIMPLE_ITERATOR_STATUS_WRITE_ERROR:
2475                         return FLAC__METADATA_CHAIN_STATUS_WRITE_ERROR;
2476                 case FLAC__METADATA_SIMPLE_ITERATOR_STATUS_RENAME_ERROR:
2477                         return FLAC__METADATA_CHAIN_STATUS_RENAME_ERROR;
2478                 case FLAC__METADATA_SIMPLE_ITERATOR_STATUS_UNLINK_ERROR:
2479                         return FLAC__METADATA_CHAIN_STATUS_UNLINK_ERROR;
2480                 case FLAC__METADATA_SIMPLE_ITERATOR_STATUS_MEMORY_ALLOCATION_ERROR:
2481                         return FLAC__METADATA_CHAIN_STATUS_MEMORY_ALLOCATION_ERROR;
2482                 case FLAC__METADATA_SIMPLE_ITERATOR_STATUS_INTERNAL_ERROR:
2483                 default:
2484                         return FLAC__METADATA_CHAIN_STATUS_INTERNAL_ERROR;
2485         }
2486 }