Coverage Report

Created: 2026-07-25 10:20

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/binutils-gdb/bfd/format.c
Line
Count
Source
1
/* Generic BFD support for file formats.
2
   Copyright (C) 1990-2026 Free Software Foundation, Inc.
3
   Written by Cygnus Support.
4
5
   This file is part of BFD, the Binary File Descriptor library.
6
7
   This program is free software; you can redistribute it and/or modify
8
   it under the terms of the GNU General Public License as published by
9
   the Free Software Foundation; either version 3 of the License, or
10
   (at your option) any later version.
11
12
   This program is distributed in the hope that it will be useful,
13
   but WITHOUT ANY WARRANTY; without even the implied warranty of
14
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15
   GNU General Public License for more details.
16
17
   You should have received a copy of the GNU General Public License
18
   along with this program; if not, write to the Free Software
19
   Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
20
   MA 02110-1301, USA.  */
21
22
23
/*
24
SECTION
25
  File formats
26
27
  A format is a BFD concept of high level file contents type. The
28
  formats supported by BFD are:
29
30
  o <<bfd_object>>
31
32
  The BFD may contain data, symbols, relocations and debug info.
33
34
  o <<bfd_archive>>
35
36
  The BFD contains other BFDs and an optional index.
37
38
  o <<bfd_core>>
39
40
  The BFD contains the result of an executable core dump.
41
42
SUBSECTION
43
  File format functions
44
*/
45
46
#include "sysdep.h"
47
#include "bfd.h"
48
#include "libbfd.h"
49
#include "plugin.h"
50
#include "elf-bfd.h"
51
52
/* IMPORT from targets.c.  */
53
extern const size_t _bfd_target_vector_entries;
54
55
/*
56
FUNCTION
57
  bfd_check_format
58
59
SYNOPSIS
60
  bool bfd_check_format (bfd *abfd, bfd_format format);
61
62
DESCRIPTION
63
  Verify if the file attached to the BFD @var{abfd} is compatible
64
  with the format @var{format} (i.e., one of <<bfd_object>>,
65
  <<bfd_archive>> or <<bfd_core>>).
66
67
  If the BFD has been set to a specific target before the
68
  call, only the named target and format combination is
69
  checked. If the target has not been set, or has been set to
70
  <<default>>, then all the known target backends is
71
  interrogated to determine a match.  If the default target
72
  matches, it is used.  If not, exactly one target must recognize
73
  the file, or an error results.
74
75
  The function returns <<TRUE>> on success, otherwise <<FALSE>>
76
  with one of the following error codes:
77
78
  o <<bfd_error_invalid_operation>> -
79
  if <<format>> is not one of <<bfd_object>>, <<bfd_archive>> or
80
  <<bfd_core>>.
81
82
  o <<bfd_error_system_call>> -
83
  if an error occured during a read - even some file mismatches
84
  can cause bfd_error_system_calls.
85
86
  o <<file_not_recognised>> -
87
  none of the backends recognised the file format.
88
89
  o <<bfd_error_file_ambiguously_recognized>> -
90
  more than one backend recognised the file format.
91
92
  When calling bfd_check_format (or bfd_check_format_matches),
93
  any underlying file descriptor will be kept open for the
94
  duration of the call.  This is done to avoid races when
95
  another thread calls bfd_cache_close_all.  In this scenario,
96
  the thread calling bfd_check_format must call bfd_cache_close
97
  itself.
98
*/
99
100
bool
101
bfd_check_format (bfd *abfd, bfd_format format)
102
11.5M
{
103
11.5M
  return bfd_check_format_matches (abfd, format, NULL);
104
11.5M
}
105
106
struct bfd_preserve
107
{
108
  void *marker;
109
  void *tdata;
110
  flagword flags;
111
  const struct bfd_iovec *iovec;
112
  void *iostream;
113
  const struct bfd_arch_info *arch_info;
114
  const struct bfd_build_id *build_id;
115
  bfd_cleanup cleanup;
116
  struct bfd_section *sections;
117
  struct bfd_section *section_last;
118
  unsigned int section_count;
119
  unsigned int section_id;
120
  unsigned int symcount;
121
  bool read_only;
122
  bfd_vma start_address;
123
  struct bfd_hash_table section_htab;
124
};
125
126
/* When testing an object for compatibility with a particular target
127
   back-end, the back-end object_p function needs to set up certain
128
   fields in the bfd on successfully recognizing the object.  This
129
   typically happens in a piecemeal fashion, with failures possible at
130
   many points.  On failure, the bfd is supposed to be restored to its
131
   initial state, which is virtually impossible.  However, restoring a
132
   subset of the bfd state works in practice.  This function stores
133
   the subset.  */
134
135
static bool
136
bfd_preserve_save (bfd *abfd, struct bfd_preserve *preserve,
137
       bfd_cleanup cleanup)
138
11.8M
{
139
11.8M
  preserve->tdata = abfd->tdata.any;
140
11.8M
  preserve->arch_info = abfd->arch_info;
141
11.8M
  preserve->flags = abfd->flags;
142
11.8M
  preserve->iovec = abfd->iovec;
143
11.8M
  preserve->iostream = abfd->iostream;
144
11.8M
  preserve->sections = abfd->sections;
145
11.8M
  preserve->section_last = abfd->section_last;
146
11.8M
  preserve->section_count = abfd->section_count;
147
11.8M
  preserve->section_id = _bfd_section_id;
148
11.8M
  preserve->symcount = abfd->symcount;
149
11.8M
  preserve->read_only = abfd->read_only;
150
11.8M
  preserve->start_address = abfd->start_address;
151
11.8M
  preserve->section_htab = abfd->section_htab;
152
11.8M
  preserve->marker = bfd_alloc (abfd, 1);
153
11.8M
  preserve->build_id = abfd->build_id;
154
11.8M
  preserve->cleanup = cleanup;
155
11.8M
  if (preserve->marker == NULL)
156
0
    return false;
157
158
11.8M
  return bfd_hash_table_init (&abfd->section_htab, bfd_section_hash_newfunc,
159
11.8M
            sizeof (struct section_hash_entry));
160
11.8M
}
161
162
/* A back-end object_p function may flip a bfd from file backed to
163
   in-memory, eg. pe_ILF_object_p.  In that case to restore the
164
   original IO state we need to reopen the file.  Conversely, if we
165
   are restoring a previously matched pe ILF format and have been
166
   checking further target matches using file IO then we need to close
167
   the file and detach the bfd from the cache lru list.  */
168
169
static void
170
io_reinit (bfd *abfd, struct bfd_preserve *preserve)
171
102M
{
172
102M
  if (abfd->iovec != preserve->iovec)
173
690
    {
174
      /* Handle file backed to in-memory transition.  bfd_cache_close
175
   won't do anything unless abfd->iovec is the cache_iovec.
176
   Don't be tempted to call iovec->bclose here.  We don't want
177
   to call memory_bclose, which would free the bim.  The bim
178
   must be kept if bfd_check_format_matches is going to decide
179
   later that the PE format needing it is in fact the correct
180
   target match.  */
181
690
      bfd_cache_close (abfd);
182
690
      abfd->iovec = preserve->iovec;
183
690
      abfd->iostream = preserve->iostream;
184
185
      /* Handle in-memory to file backed transition.  */
186
690
      if ((abfd->flags & BFD_CLOSED_BY_CACHE) != 0
187
620
    && (abfd->flags & BFD_IN_MEMORY) != 0
188
359
    && (preserve->flags & BFD_CLOSED_BY_CACHE) == 0
189
359
    && (preserve->flags & BFD_IN_MEMORY) == 0)
190
359
  bfd_open_file (abfd);
191
690
    }
192
102M
  abfd->flags = preserve->flags;
193
102M
}
194
195
/* Clear out a subset of BFD state.  */
196
197
static void
198
bfd_reinit (bfd *abfd, unsigned int section_id,
199
      struct bfd_preserve *preserve, bfd_cleanup cleanup)
200
91.2M
{
201
91.2M
  _bfd_section_id = section_id;
202
91.2M
  if (cleanup)
203
11.3M
    cleanup (abfd);
204
91.2M
  abfd->tdata.any = NULL;
205
91.2M
  abfd->arch_info = &bfd_default_arch_struct;
206
91.2M
  io_reinit (abfd, preserve);
207
91.2M
  abfd->symcount = 0;
208
91.2M
  abfd->read_only = 0;
209
91.2M
  abfd->start_address = 0;
210
91.2M
  abfd->build_id = NULL;
211
91.2M
  bfd_section_list_clear (abfd);
212
91.2M
}
213
214
/* Restores bfd state saved by bfd_preserve_save.  */
215
216
static bfd_cleanup
217
bfd_preserve_restore (bfd *abfd, struct bfd_preserve *preserve)
218
11.6M
{
219
11.6M
  bfd_hash_table_free (&abfd->section_htab);
220
221
11.6M
  abfd->tdata.any = preserve->tdata;
222
11.6M
  abfd->arch_info = preserve->arch_info;
223
11.6M
  io_reinit (abfd, preserve);
224
11.6M
  abfd->section_htab = preserve->section_htab;
225
11.6M
  abfd->sections = preserve->sections;
226
11.6M
  abfd->section_last = preserve->section_last;
227
11.6M
  abfd->section_count = preserve->section_count;
228
11.6M
  _bfd_section_id = preserve->section_id;
229
11.6M
  abfd->symcount = preserve->symcount;
230
11.6M
  abfd->read_only = preserve->read_only;
231
11.6M
  abfd->start_address = preserve->start_address;
232
11.6M
  abfd->build_id = preserve->build_id;
233
234
  /* bfd_release frees all memory more recently bfd_alloc'd than
235
     its arg, as well as its arg.  */
236
11.6M
  bfd_release (abfd, preserve->marker);
237
11.6M
  preserve->marker = NULL;
238
11.6M
  return preserve->cleanup;
239
11.6M
}
240
241
/* Called when the bfd state saved by bfd_preserve_save is no longer
242
   needed.  */
243
244
static void
245
bfd_preserve_finish (bfd *abfd ATTRIBUTE_UNUSED, struct bfd_preserve *preserve)
246
216k
{
247
216k
  if (preserve->cleanup)
248
0
    {
249
      /* Run the cleanup, assuming that all it will need is the
250
   tdata at the time the cleanup was returned.  */
251
0
      void *tdata = abfd->tdata.any;
252
0
      abfd->tdata.any = preserve->tdata;
253
0
      preserve->cleanup (abfd);
254
0
      abfd->tdata.any = tdata;
255
0
    }
256
  /* It would be nice to be able to free more memory here, eg. old
257
     tdata, but that's not possible since these blocks are sitting
258
     inside bfd_alloc'd memory.  The section hash is on a separate
259
     objalloc.  */
260
216k
  bfd_hash_table_free (&preserve->section_htab);
261
216k
  preserve->marker = NULL;
262
216k
}
263
264
static void
265
print_warnmsg (struct per_xvec_message **list)
266
11.5M
{
267
11.7M
  for (struct per_xvec_message *warn = *list; warn; warn = warn->next)
268
224k
    _bfd_error_handler ("%s", warn->message);
269
11.5M
}
270
271
static void
272
clear_warnmsg (struct per_xvec_message **list)
273
11.7M
{
274
11.7M
  struct per_xvec_message *warn = *list;
275
12.1M
  while (warn)
276
379k
    {
277
379k
      struct per_xvec_message *next = warn->next;
278
379k
      free (warn);
279
379k
      warn = next;
280
379k
    }
281
11.7M
  *list = NULL;
282
11.7M
}
283
284
/* Free all the storage in LIST.  Note that the first element of LIST
285
   is special and is assumed to be stack-allocated.  TARG is used for
286
   re-issuing warning messages.  If TARG is PER_XVEC_NO_TARGET, then
287
   it acts like a sort of wildcard -- messages are reissued if all
288
   targets with messages have identical messages.  One copy of the
289
   messages are then reissued.  If TARG is anything else, then only
290
   messages associated with TARG are emitted.  */
291
292
static void
293
print_and_clear_messages (struct per_xvec_messages *list,
294
        const bfd_target *targ)
295
11.7M
{
296
11.7M
  struct per_xvec_messages *iter;
297
298
11.7M
  if (targ == PER_XVEC_NO_TARGET)
299
11.5M
    {
300
11.5M
      iter = list->next;
301
11.5M
      while (iter != NULL)
302
31.1k
  {
303
31.1k
    struct per_xvec_message *msg1 = list->messages;
304
31.1k
    struct per_xvec_message *msg2 = iter->messages;
305
31.1k
    do
306
48.2k
      {
307
48.2k
        if (strcmp (msg1->message, msg2->message))
308
2.16k
    break;
309
46.0k
        msg1 = msg1->next;
310
46.0k
        msg2 = msg2->next;
311
46.0k
      } while (msg1 && msg2);
312
31.1k
    if (msg1 || msg2)
313
2.55k
      break;
314
28.5k
    iter = iter->next;
315
28.5k
  }
316
11.5M
      if (iter == NULL)
317
11.4M
  targ = list->targ;
318
11.5M
    }
319
320
11.7M
  iter = list;
321
23.5M
  while (iter != NULL)
322
11.7M
    {
323
11.7M
      struct per_xvec_messages *next = iter->next;
324
325
11.7M
      if (iter->targ == targ)
326
11.5M
  print_warnmsg (&iter->messages);
327
11.7M
      clear_warnmsg (&iter->messages);
328
11.7M
      if (iter != list)
329
72.3k
  free (iter);
330
11.7M
      iter = next;
331
11.7M
    }
332
333
  /* Don't retain a pointer to free'd memory.  */
334
11.7M
  list->next = NULL;
335
11.7M
}
336
337
/* Discard all messages associated with TARG in LIST.  Unlike
338
   print_and_clear_messages, PER_XVEC_NO_TARGET is not valid for TARG.  */
339
340
static void
341
clear_messages (struct per_xvec_messages *list,
342
    const bfd_target *targ)
343
91.0M
{
344
91.0M
  struct per_xvec_messages *iter;
345
346
191M
  for (iter = list; iter != NULL; iter = iter->next)
347
99.9M
    {
348
99.9M
      if (iter->targ == targ)
349
33
  clear_warnmsg (&iter->messages);
350
99.9M
    }
351
91.0M
}
352
353
/* This a copy of lto_section defined in GCC (lto-streamer.h).  */
354
355
struct lto_section
356
{
357
  int16_t major_version;
358
  int16_t minor_version;
359
  unsigned char slim_object;
360
361
  /* Flags is a private field that is not defined publicly.  */
362
  uint16_t flags;
363
};
364
365
/* Set lto_type in ABFD.  */
366
367
static void
368
bfd_set_lto_type (bfd *abfd)
369
216k
{
370
216k
  if (abfd->format == bfd_object
371
153k
      && abfd->lto_type == lto_non_object
372
153k
      && (abfd->flags
373
153k
    & (DYNAMIC
374
153k
       | (bfd_get_flavour (abfd) == bfd_target_elf_flavour
375
153k
    ? EXEC_P : 0))) == 0)
376
145k
    {
377
145k
      asection *sec = abfd->sections;
378
145k
      enum bfd_lto_object_type type = lto_non_ir_object;
379
145k
      if (sec == NULL)
380
13.2k
  {
381
    /* If there are no sections, check for slim LLVM IR object whose
382
       first 4 bytes are: 'B', 'C', 0xc0, 0xde.  */
383
13.2k
    bfd_byte llvm_ir_magic[4];
384
13.2k
    if (bfd_seek (abfd, 0, SEEK_SET) == 0
385
13.2k
        && bfd_read (llvm_ir_magic, 4, abfd) == 4
386
13.2k
        && llvm_ir_magic[0] == 'B'
387
12
        && llvm_ir_magic[1] == 'C'
388
0
        && llvm_ir_magic[2] == 0xc0
389
0
        && llvm_ir_magic[3] == 0xde)
390
0
      type = lto_slim_ir_object;
391
13.2k
  }
392
132k
      else
393
132k
  {
394
132k
    struct lto_section lsection = { 0, 0, 0, 0 };
395
    /* GCC uses .gnu.lto_.lto.<some_hash> as a LTO bytecode
396
       information section.  */
397
2.30M
    for (; sec != NULL; sec = sec->next)
398
2.17M
      if (strcmp (sec->name, GNU_OBJECT_ONLY_SECTION_NAME) == 0)
399
40
        {
400
40
    type = lto_mixed_object;
401
40
    abfd->object_only_section = sec;
402
40
    break;
403
40
        }
404
2.17M
      else if (strcmp (sec->name, ".llvm.lto") == 0)
405
73
        {
406
73
    type = lto_fat_ir_object;
407
73
    break;
408
73
        }
409
2.17M
      else if (lsection.major_version == 0
410
2.17M
         && startswith (sec->name, ".gnu.lto_.lto.")
411
746
         && bfd_get_section_contents (abfd, sec, &lsection, 0,
412
746
              sizeof (struct lto_section)))
413
429
        {
414
429
    if (lsection.slim_object)
415
231
      type = lto_slim_ir_object;
416
198
    else
417
198
      type = lto_fat_ir_object;
418
429
    }
419
132k
  }
420
421
145k
      abfd->lto_type = type;
422
145k
    }
423
216k
}
424
425
/*
426
FUNCTION
427
  bfd_check_format_matches
428
429
SYNOPSIS
430
  bool bfd_check_format_matches
431
    (bfd *abfd, bfd_format format, char ***matching);
432
433
DESCRIPTION
434
  Like <<bfd_check_format>>, except when it returns FALSE with
435
  <<bfd_errno>> set to <<bfd_error_file_ambiguously_recognized>>.
436
  In that case, if @var{matching} is not NULL, it will be filled
437
  in with a NULL-terminated list of the names of the formats
438
  that matched, allocated with <<malloc>>.
439
  Then the user may choose a format and try again.
440
441
  When done with the list that @var{matching} points to, the caller
442
  should free it.
443
*/
444
445
bool
446
bfd_check_format_matches (bfd *abfd, bfd_format format, char ***matching)
447
11.7M
{
448
11.7M
  extern const bfd_target binary_vec;
449
11.7M
  const bfd_target * const *target;
450
11.7M
  const bfd_target **matching_vector;
451
11.7M
  const bfd_target *save_targ, *right_targ, *ar_right_targ, *match_targ;
452
11.7M
  const bfd_target *fail_targ;
453
11.7M
  int match_count, best_count, best_match;
454
11.7M
  int ar_match_index;
455
11.7M
  unsigned int initial_section_id;
456
11.7M
  struct bfd_preserve preserve, preserve_match;
457
11.7M
  bfd_cleanup cleanup = NULL;
458
11.7M
  struct per_xvec_messages messages = { abfd, PER_XVEC_NO_TARGET, NULL, NULL };
459
11.7M
  struct per_xvec_messages *orig_messages;
460
11.7M
  bool old_in_format_matches;
461
462
11.7M
  if (matching != NULL)
463
151k
    *matching = NULL;
464
465
11.7M
  if (!bfd_read_p (abfd)
466
11.7M
      || (unsigned int) abfd->format >= (unsigned int) bfd_type_end)
467
4.96k
    {
468
4.96k
      bfd_set_error (bfd_error_invalid_operation);
469
4.96k
      return false;
470
4.96k
    }
471
472
11.7M
  if (abfd->format != bfd_unknown)
473
219
    return abfd->format == format;
474
475
11.7M
  matching_vector = bfd_malloc (sizeof (*matching_vector)
476
11.7M
        * 2 * _bfd_target_vector_entries);
477
11.7M
  if (!matching_vector)
478
0
    return false;
479
480
  /* Avoid clashes with bfd_cache_close_all running in another
481
     thread.  */
482
11.7M
  if (!bfd_cache_set_uncloseable (abfd, true, &old_in_format_matches))
483
0
    {
484
0
      free (matching_vector);
485
0
      return false;
486
0
    }
487
488
  /* Locking is required here in order to manage _bfd_section_id.  */
489
11.7M
  if (!bfd_lock ())
490
0
    {
491
0
      bfd_cache_set_uncloseable (abfd, old_in_format_matches, NULL);
492
0
      free (matching_vector);
493
0
      return false;
494
0
    }
495
11.7M
  initial_section_id = _bfd_section_id;
496
497
  /* Presume the answer is yes.  */
498
11.7M
  abfd->format = format;
499
11.7M
  save_targ = abfd->xvec;
500
501
  /* Don't report errors on recursive calls checking the first element
502
     of an archive.  */
503
11.7M
  orig_messages = _bfd_set_error_handler_caching (&messages);
504
505
11.7M
  preserve_match.marker = NULL;
506
11.7M
  if (!bfd_preserve_save (abfd, &preserve, NULL))
507
0
    goto err_ret;
508
509
  /* First try matching the plugin target if appropriate.  Next try
510
     the current target.  The current target may have been set due to
511
     a user option, or due to the linker trying optimistically to load
512
     input files for the same target as the output.  Either will
513
     have target_defaulted false.  Failing that, bfd_find_target will
514
     have chosen a default target, and target_defaulted will be true.  */
515
11.7M
  fail_targ = NULL;
516
11.7M
  if (bfd_plugin_enabled ()
517
11.7M
      && abfd->format == bfd_object
518
11.5M
      && abfd->target_defaulted
519
165k
      && !abfd->is_linker_input
520
165k
      && abfd->plugin_format != bfd_plugin_no)
521
132k
    {
522
132k
      if (bfd_seek (abfd, 0, SEEK_SET) != 0)
523
0
  goto err_ret;
524
525
132k
      BFD_ASSERT (save_targ != bfd_plugin_vec ());
526
132k
      abfd->xvec = bfd_plugin_vec ();
527
132k
      bfd_set_error (bfd_error_no_error);
528
132k
      cleanup = BFD_SEND_FMT (abfd, _bfd_check_format, (abfd));
529
132k
      if (cleanup)
530
0
  goto ok_ret;
531
532
132k
      bfd_reinit (abfd, initial_section_id, &preserve, cleanup);
533
132k
      bfd_release (abfd, preserve.marker);
534
132k
      preserve.marker = bfd_alloc (abfd, 1);
535
132k
      abfd->xvec = save_targ;
536
132k
    }
537
538
  /* bfd_plugin_no excluding the plugin target is an optimisation.
539
     The test can be removed if desired.  */
540
11.7M
  if (!(abfd->plugin_format == bfd_plugin_no
541
78.3k
  && bfd_plugin_target_p (save_targ)))
542
11.7M
    {
543
11.7M
      if (bfd_seek (abfd, 0, SEEK_SET) != 0)
544
0
  goto err_ret;
545
546
11.7M
      bfd_set_error (bfd_error_no_error);
547
11.7M
      cleanup = BFD_SEND_FMT (abfd, _bfd_check_format, (abfd));
548
11.7M
      if (cleanup)
549
118k
  {
550
118k
    if (abfd->format != bfd_archive
551
        /* An archive with object files matching the archive
552
     target is OK.  Other archives should be further
553
     tested.  */
554
51.4k
        || bfd_get_error () != bfd_error_wrong_object_format)
555
69.0k
      goto ok_ret;
556
118k
  }
557
11.6M
      else
558
11.6M
  {
559
11.6M
    if (!abfd->target_defaulted && !abfd->is_linker_input)
560
11.2M
      goto err_unrecog;
561
307k
    fail_targ = save_targ;
562
307k
  }
563
11.7M
    }
564
565
  /* Check all targets in the hope that one will be recognized.  */
566
357k
  right_targ = NULL;
567
357k
  ar_right_targ = NULL;
568
357k
  match_targ = NULL;
569
357k
  best_match = 256;
570
357k
  best_count = 0;
571
357k
  match_count = 0;
572
357k
  ar_match_index = _bfd_target_vector_entries;
573
574
92.4M
  for (target = bfd_target_vector; *target != NULL; target++)
575
92.1M
    {
576
92.1M
      void **high_water;
577
578
      /* The binary target matches anything, so don't return it when
579
   searching.  Also, don't check the current target twice when
580
   it has failed already.
581
   Don't match the plugin target during linking if we have
582
   another alternative since we want to properly set the input
583
   format before allowing a plugin to claim the file.
584
   Also as an optimisation don't match the plugin target when
585
   abfd->plugin_format is set to bfd_plugin_no.  (This occurs
586
   when LTO sections have been stripped or when we have a
587
   recursive call here from the plugin object_p via
588
   bfd_plugin_get_symbols_in_object_only.)  */
589
92.1M
      if (*target == &binary_vec
590
91.7M
    || *target == fail_targ
591
91.1M
    || (((abfd->is_linker_input && match_count != 0)
592
91.1M
         || abfd->plugin_format == bfd_plugin_no)
593
19.4M
        && bfd_plugin_target_p (*target)))
594
1.04M
  continue;
595
596
      /* If we already tried a match, the bfd is modified and may
597
   have sections attached, which will confuse the next
598
   _bfd_check_format call.  */
599
91.0M
      bfd_reinit (abfd, initial_section_id, &preserve, cleanup);
600
      /* Free bfd_alloc memory too.  If we have matched and preserved
601
   a target then the high water mark is that much higher.  */
602
91.0M
      if (preserve_match.marker)
603
31.3M
  high_water = &preserve_match.marker;
604
59.7M
      else
605
59.7M
  high_water = &preserve.marker;
606
91.0M
      bfd_release (abfd, *high_water);
607
91.0M
      *high_water = bfd_alloc (abfd, 1);
608
609
      /* Change BFD's target temporarily.  */
610
91.0M
      abfd->xvec = *target;
611
612
      /* It is possible that targets appear multiple times in
613
   bfd_target_vector.  If this is the case, then we want to avoid
614
   accumulating duplicate messages for a target in MESSAGES, so
615
   discard any previous messages associated with this target.  */
616
91.0M
      clear_messages (&messages, abfd->xvec);
617
618
91.0M
      if (bfd_seek (abfd, 0, SEEK_SET) != 0)
619
0
  goto err_ret;
620
621
91.0M
      bfd_set_error (bfd_error_no_error);
622
91.0M
      cleanup = BFD_SEND_FMT (abfd, _bfd_check_format, (abfd));
623
91.0M
      if (cleanup)
624
11.4M
  {
625
11.4M
    if (abfd->format != bfd_archive
626
11.2M
        || bfd_get_error () != bfd_error_wrong_object_format)
627
232k
      {
628
        /* If this is the default target, accept it, even if
629
     other targets might match.  People who want those
630
     other targets have to set the GNUTARGET variable.  */
631
232k
        if (abfd->xvec == bfd_default_vector[0])
632
3
    goto ok_ret;
633
634
232k
        matching_vector[match_count] = abfd->xvec;
635
232k
        match_count++;
636
637
232k
        int match_priority = abfd->xvec->match_priority;
638
232k
        if (match_priority == 1
639
45.0k
      && bfd_get_flavour (abfd) == bfd_target_elf_flavour)
640
41.6k
    {
641
      /* If the object e_ident matches the hint elf_osabi,
642
         bump priority up.  */
643
41.6k
      Elf_Internal_Ehdr *i_ehdrp = elf_elfheader (abfd);
644
41.6k
      elf_backend_data *bed = get_elf_backend_data (abfd);
645
41.6k
      if (bed->elf_osabi != ELFOSABI_NONE
646
2.05k
          && i_ehdrp->e_ident[EI_OSABI] == bed->elf_osabi)
647
3
        match_priority = 0;
648
41.6k
    }
649
232k
        if (match_priority < best_match)
650
165k
    {
651
165k
      best_match = match_priority;
652
165k
      best_count = 0;
653
165k
    }
654
232k
        if (match_priority <= best_match)
655
219k
    {
656
      /* This format checks out as ok!  */
657
219k
      right_targ = abfd->xvec;
658
219k
      best_count++;
659
219k
    }
660
232k
      }
661
11.2M
    else
662
11.2M
      {
663
        /* An archive with no armap or objects of the wrong
664
     type.  We want this target to match if we get no
665
     better matches.  */
666
11.2M
        if (ar_right_targ != bfd_default_vector[0])
667
93.6k
    ar_right_targ = *target;
668
11.2M
        matching_vector[ar_match_index] = *target;
669
11.2M
        ar_match_index++;
670
11.2M
      }
671
672
11.4M
    if (preserve_match.marker == NULL)
673
166k
      {
674
166k
        match_targ = abfd->xvec;
675
166k
        if (!bfd_preserve_save (abfd, &preserve_match, cleanup))
676
0
    goto err_ret;
677
166k
        cleanup = NULL;
678
166k
      }
679
11.4M
  }
680
91.0M
    }
681
682
357k
  if (best_count == 1)
683
107k
    match_count = 1;
684
685
357k
  if (match_count == 0)
686
216k
    {
687
      /* Try partial matches.  */
688
216k
      right_targ = ar_right_targ;
689
690
216k
      if (right_targ == bfd_default_vector[0])
691
24.3k
  {
692
24.3k
    match_count = 1;
693
24.3k
  }
694
192k
      else
695
192k
  {
696
192k
    match_count = ar_match_index - _bfd_target_vector_entries;
697
698
192k
    if (match_count > 1)
699
1.86k
      memcpy (matching_vector,
700
1.86k
        matching_vector + _bfd_target_vector_entries,
701
1.86k
        sizeof (*matching_vector) * match_count);
702
192k
  }
703
216k
    }
704
705
  /* We have more than one equally good match.  If any of the best
706
     matches is a target in config.bfd targ_defvec or targ_selvecs,
707
     choose it.  */
708
357k
  if (match_count > 1)
709
34.9k
    {
710
34.9k
      const bfd_target * const *assoc = bfd_associated_vector;
711
712
328k
      while ((right_targ = *assoc++) != NULL)
713
302k
  {
714
302k
    int i = match_count;
715
716
1.42M
    while (--i >= 0)
717
1.13M
      if (matching_vector[i] == right_targ
718
14.7k
    && right_targ->match_priority <= best_match)
719
8.91k
        break;
720
721
302k
    if (i >= 0)
722
8.91k
      {
723
8.91k
        match_count = 1;
724
8.91k
        break;
725
8.91k
      }
726
302k
  }
727
34.9k
    }
728
729
  /* We still have more than one equally good match, and at least some
730
     of the targets support match priority.  Choose the first of the
731
     best matches.  */
732
357k
  if (match_count > 1 && best_count != match_count)
733
7.37k
    {
734
7.37k
      int i;
735
736
12.4k
      for (i = 0; i < match_count; i++)
737
12.4k
  {
738
12.4k
    right_targ = matching_vector[i];
739
12.4k
    if (right_targ->match_priority <= best_match)
740
7.37k
      break;
741
12.4k
  }
742
7.37k
      match_count = 1;
743
7.37k
    }
744
745
  /* There is way too much undoing of half-known state here.  We
746
     really shouldn't iterate on live bfd's.  Note that saving the
747
     whole bfd and restoring it would be even worse; the first thing
748
     you notice is that the cached bfd file position gets out of sync.  */
749
357k
  if (preserve_match.marker != NULL)
750
166k
    cleanup = bfd_preserve_restore (abfd, &preserve_match);
751
752
357k
  if (match_count == 1)
753
147k
    {
754
147k
      abfd->xvec = right_targ;
755
      /* If we come out of the loop knowing that the last target that
756
   matched is the one we want, then ABFD should still be in a usable
757
   state (except possibly for XVEC).  This is not just an
758
   optimisation.  In the case of plugins a match against the
759
   plugin target can result in the bfd being changed such that
760
   it no longer matches the plugin target, nor will it match
761
   RIGHT_TARG again.  */
762
147k
      if (match_targ != right_targ)
763
49.2k
  {
764
49.2k
    bfd_reinit (abfd, initial_section_id, &preserve, cleanup);
765
49.2k
    bfd_release (abfd, preserve.marker);
766
49.2k
    if (bfd_seek (abfd, 0, SEEK_SET) != 0)
767
0
      goto err_ret;
768
49.2k
    cleanup = BFD_SEND_FMT (abfd, _bfd_check_format, (abfd));
769
49.2k
    BFD_ASSERT (cleanup != NULL);
770
49.2k
  }
771
772
216k
    ok_ret:
773
      /* If the file was opened for update, then `output_has_begun'
774
   some time ago when the file was created.  Do not recompute
775
   sections sizes or alignments in _bfd_set_section_contents.
776
   We can not set this flag until after checking the format,
777
   because it will interfere with creation of BFD sections.  */
778
216k
      if (abfd->direction == both_direction)
779
18.7k
  abfd->output_has_begun = true;
780
781
216k
      free (matching_vector);
782
216k
      if (preserve_match.marker != NULL)
783
0
  bfd_preserve_finish (abfd, &preserve_match);
784
216k
      bfd_preserve_finish (abfd, &preserve);
785
216k
      _bfd_restore_error_handler_caching (orig_messages);
786
787
216k
      print_and_clear_messages (&messages, abfd->xvec);
788
789
216k
      bfd_set_lto_type (abfd);
790
791
      /* File position has moved, BTW.  */
792
216k
      bool ret = bfd_cache_set_uncloseable (abfd, old_in_format_matches, NULL);
793
216k
      if (!bfd_unlock ())
794
0
  return false;
795
216k
      return ret;
796
216k
    }
797
798
209k
  if (match_count == 0)
799
190k
    {
800
11.4M
    err_unrecog:
801
11.4M
      bfd_set_error (bfd_error_file_not_recognized);
802
11.4M
    err_ret:
803
11.4M
      if (cleanup)
804
0
  cleanup (abfd);
805
11.4M
      abfd->xvec = save_targ;
806
11.4M
      abfd->format = bfd_unknown;
807
11.4M
      free (matching_vector);
808
11.4M
      goto out;
809
11.4M
    }
810
811
  /* Restore original target type and format.  */
812
18.6k
  abfd->xvec = save_targ;
813
18.6k
  abfd->format = bfd_unknown;
814
18.6k
  bfd_set_error (bfd_error_file_ambiguously_recognized);
815
816
18.6k
  if (matching)
817
6.15k
    {
818
6.15k
      *matching = (char **) matching_vector;
819
6.15k
      matching_vector[match_count] = NULL;
820
      /* Return target names.  This is a little nasty.  Maybe we
821
   should do another bfd_malloc?  */
822
24.3k
      while (--match_count >= 0)
823
18.1k
  {
824
18.1k
    const char *name = matching_vector[match_count]->name;
825
18.1k
    *(const char **) &matching_vector[match_count] = name;
826
18.1k
  }
827
6.15k
    }
828
12.4k
  else
829
12.4k
    free (matching_vector);
830
18.6k
  if (cleanup)
831
18.6k
    cleanup (abfd);
832
11.5M
 out:
833
11.5M
  if (preserve_match.marker != NULL)
834
0
    bfd_preserve_finish (abfd, &preserve_match);
835
11.5M
  if (preserve.marker != NULL)
836
11.5M
    bfd_preserve_restore (abfd, &preserve);
837
11.5M
  _bfd_restore_error_handler_caching (orig_messages);
838
11.5M
  print_and_clear_messages (&messages, PER_XVEC_NO_TARGET);
839
11.5M
  bfd_cache_set_uncloseable (abfd, old_in_format_matches, NULL);
840
11.5M
  bfd_unlock ();
841
11.5M
  return false;
842
18.6k
}
843
844
/*
845
FUNCTION
846
  bfd_set_format
847
848
SYNOPSIS
849
  bool bfd_set_format (bfd *abfd, bfd_format format);
850
851
DESCRIPTION
852
  This function sets the file format of the BFD @var{abfd} to the
853
  format @var{format}. If the target set in the BFD does not
854
  support the format requested, the format is invalid, or the BFD
855
  is not open for writing, then an error occurs.
856
*/
857
858
bool
859
bfd_set_format (bfd *abfd, bfd_format format)
860
43.0k
{
861
43.0k
  if (bfd_read_p (abfd)
862
43.0k
      || (unsigned int) abfd->format >= (unsigned int) bfd_type_end)
863
0
    {
864
0
      bfd_set_error (bfd_error_invalid_operation);
865
0
      return false;
866
0
    }
867
868
43.0k
  if (abfd->format != bfd_unknown)
869
16.7k
    return abfd->format == format;
870
871
  /* Presume the answer is yes.  */
872
26.3k
  abfd->format = format;
873
874
26.3k
  if (!BFD_SEND_FMT (abfd, _bfd_set_format, (abfd)))
875
4.17k
    {
876
4.17k
      abfd->format = bfd_unknown;
877
4.17k
      return false;
878
4.17k
    }
879
880
22.1k
  return true;
881
26.3k
}
882
883
/*
884
FUNCTION
885
  bfd_format_string
886
887
SYNOPSIS
888
  const char *bfd_format_string (bfd_format format);
889
890
DESCRIPTION
891
  Return a pointer to a const string
892
  <<invalid>>, <<object>>, <<archive>>, <<core>>, or <<unknown>>,
893
  depending upon the value of @var{format}.
894
*/
895
896
const char *
897
bfd_format_string (bfd_format format)
898
0
{
899
0
  if (((int) format < (int) bfd_unknown)
900
0
      || ((int) format >= (int) bfd_type_end))
901
0
    return "invalid";
902
903
0
  switch (format)
904
0
    {
905
0
    case bfd_object:
906
0
      return "object";   /* Linker/assembler/compiler output.  */
907
0
    case bfd_archive:
908
0
      return "archive";   /* Object archive file.  */
909
0
    case bfd_core:
910
0
      return "core";   /* Core dump.  */
911
0
    default:
912
0
      return "unknown";
913
0
    }
914
0
}