Coverage Report

Created: 2026-07-12 09:22

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/binutils-gdb/bfd/cache.c
Line
Count
Source
1
/* BFD library -- caching of file descriptors.
2
3
   Copyright (C) 1990-2026 Free Software Foundation, Inc.
4
5
   Hacked by Steve Chamberlain of Cygnus Support (steve@cygnus.com).
6
7
   This file is part of BFD, the Binary File Descriptor library.
8
9
   This program is free software; you can redistribute it and/or modify
10
   it under the terms of the GNU General Public License as published by
11
   the Free Software Foundation; either version 3 of the License, or
12
   (at your option) any later version.
13
14
   This program is distributed in the hope that it will be useful,
15
   but WITHOUT ANY WARRANTY; without even the implied warranty of
16
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
17
   GNU General Public License for more details.
18
19
   You should have received a copy of the GNU General Public License
20
   along with this program; if not, write to the Free Software
21
   Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
22
   MA 02110-1301, USA.  */
23
24
/*
25
SECTION
26
  File caching
27
28
  The file caching mechanism is embedded within BFD and allows
29
  the application to open as many BFDs as it wants without
30
  regard to the underlying operating system's file descriptor
31
  limit (often as low as 20 open files).  The module in
32
  <<cache.c>> maintains a least recently used list of
33
  <<bfd_cache_max_open>> files, and exports the name
34
  <<bfd_cache_lookup>>, which runs around and makes sure that
35
  the required BFD is open. If not, then it chooses a file to
36
  close, closes it and opens the one wanted, returning its file
37
  handle.
38
39
SUBSECTION
40
  Caching functions
41
*/
42
43
#include "sysdep.h"
44
#include "bfd.h"
45
#include "libbfd.h"
46
#include "libiberty.h"
47
48
static FILE *_bfd_open_file_unlocked (bfd *abfd);
49
50
/* In some cases we can optimize cache operation when reopening files.
51
   For instance, a flush is entirely unnecessary if the file is already
52
   closed, so a flush would use CACHE_NO_OPEN.  Similarly, a seek using
53
   SEEK_SET or SEEK_END need not first seek to the current position.
54
   For stat we ignore seek errors, just in case the file has changed
55
   while we weren't looking.  If it has, then it's possible that the
56
   file is shorter and we don't want a seek error to prevent us doing
57
   the stat.  */
58
enum cache_flag {
59
  CACHE_NORMAL = 0,
60
  CACHE_NO_OPEN = 1,
61
  CACHE_NO_SEEK = 2,
62
  CACHE_NO_SEEK_ERROR = 4
63
};
64
65
/* The maximum number of files which the cache will keep open at
66
   one time.  When needed call bfd_cache_max_open to initialize.  */
67
68
static unsigned max_open_files = 0;
69
70
/* Set max_open_files, if not already set, to 12.5% of the allowed open
71
   file descriptors, but at least 10, and return the value.  */
72
static unsigned
73
bfd_cache_max_open (void)
74
242k
{
75
242k
  if (max_open_files == 0)
76
17
    {
77
17
      int max;
78
#if defined(__sun) && !defined(__sparcv9) && !defined(__x86_64__)
79
      /* PR ld/19260: 32-bit Solaris has very inelegant handling of the 255
80
   file descriptor limit.  The problem is that setrlimit(2) can raise
81
   RLIMIT_NOFILE to a value that is not supported by libc, resulting
82
   in "Too many open files" errors.  This can happen here even though
83
   max_open_files is set to rlim.rlim_cur / 8.  For example, if
84
   a parent process has set rlim.rlim_cur to 65536, then max_open_files
85
   will be computed as 8192.
86
87
   This check essentially reverts to the behavior from binutils 2.23.1
88
   for 32-bit Solaris only.  (It is hoped that the 32-bit libc
89
   limitation will be removed soon).  64-bit Solaris libc does not have
90
   this limitation.  */
91
      max = 16;
92
#else
93
17
#ifdef HAVE_GETRLIMIT
94
17
      struct rlimit rlim;
95
96
17
      if (getrlimit (RLIMIT_NOFILE, &rlim) == 0
97
17
    && rlim.rlim_cur != (rlim_t) RLIM_INFINITY)
98
17
  max = rlim.rlim_cur / 8;
99
0
      else
100
0
#endif
101
0
#ifdef _SC_OPEN_MAX
102
0
  max = sysconf (_SC_OPEN_MAX) / 8;
103
#else
104
  max = 10;
105
#endif
106
17
#endif /* not 32-bit Solaris */
107
108
17
      max_open_files = max < 10 ? 10 : max;
109
17
    }
110
111
242k
  return max_open_files;
112
242k
}
113
114
/* The number of BFD files we have open.  */
115
116
static unsigned open_files;
117
118
/* Zero, or a pointer to the topmost BFD on the chain.  This is
119
   used by the <<bfd_cache_lookup>> macro in @file{libbfd.h} to
120
   determine when it can avoid a function call.  */
121
122
static bfd *bfd_last_cache = NULL;
123
124
/* Insert a BFD into the cache.  */
125
126
static void
127
insert (bfd *abfd)
128
536k
{
129
536k
  if (bfd_last_cache == NULL)
130
301k
    {
131
301k
      abfd->lru_next = abfd;
132
301k
      abfd->lru_prev = abfd;
133
301k
    }
134
234k
  else
135
234k
    {
136
234k
      abfd->lru_next = bfd_last_cache;
137
234k
      abfd->lru_prev = bfd_last_cache->lru_prev;
138
234k
      abfd->lru_prev->lru_next = abfd;
139
234k
      abfd->lru_next->lru_prev = abfd;
140
234k
    }
141
536k
  bfd_last_cache = abfd;
142
536k
}
143
144
/* Remove a BFD from the cache.  */
145
146
static void
147
snip (bfd *abfd)
148
536k
{
149
536k
  abfd->lru_prev->lru_next = abfd->lru_next;
150
536k
  abfd->lru_next->lru_prev = abfd->lru_prev;
151
536k
  if (abfd == bfd_last_cache)
152
494k
    {
153
494k
      bfd_last_cache = abfd->lru_next;
154
494k
      if (abfd == bfd_last_cache)
155
301k
  bfd_last_cache = NULL;
156
494k
    }
157
536k
}
158
159
/* Close a BFD and remove it from the cache.  */
160
161
static bool
162
bfd_cache_delete (bfd *abfd)
163
214k
{
164
214k
  bool ret;
165
166
214k
  if (fclose ((FILE *) abfd->iostream) == 0)
167
214k
    ret = true;
168
0
  else
169
0
    {
170
0
      ret = false;
171
0
      bfd_set_error (bfd_error_system_call);
172
0
    }
173
174
214k
  snip (abfd);
175
176
214k
  abfd->iostream = NULL;
177
214k
  BFD_ASSERT (open_files > 0);
178
214k
  --open_files;
179
214k
  abfd->flags |= BFD_CLOSED_BY_CACHE;
180
214k
  abfd->last_io = bfd_io_force;
181
182
214k
  return ret;
183
214k
}
184
185
/* We need to open a new file, and the cache is full.  Find the least
186
   recently used cacheable BFD and close it.  */
187
188
static bool
189
close_one (void)
190
2.96k
{
191
2.96k
  register bfd *to_kill;
192
193
2.96k
  if (bfd_last_cache == NULL)
194
0
    to_kill = NULL;
195
2.96k
  else
196
2.96k
    {
197
2.96k
      for (to_kill = bfd_last_cache->lru_prev;
198
2.96k
     ! to_kill->cacheable;
199
2.96k
     to_kill = to_kill->lru_prev)
200
0
  {
201
0
    if (to_kill == bfd_last_cache)
202
0
      {
203
0
        to_kill = NULL;
204
0
        break;
205
0
      }
206
0
  }
207
2.96k
    }
208
209
2.96k
  if (to_kill == NULL)
210
0
    {
211
      /* There are no open cacheable BFD's.  */
212
0
      return true;
213
0
    }
214
215
2.96k
  to_kill->where = _bfd_real_ftell ((FILE *) to_kill->iostream);
216
217
2.96k
  return bfd_cache_delete (to_kill);
218
2.96k
}
219
220
/* Check to see if the required BFD is the same as the last one
221
   looked up. If so, then it can use the stream in the BFD with
222
   impunity, since it can't have changed since the last lookup;
223
   otherwise, it has to perform the complicated lookup function.  */
224
225
#define bfd_cache_lookup(x, flag) \
226
260M
  ((x) == bfd_last_cache      \
227
260M
   ? (FILE *) (bfd_last_cache->iostream)  \
228
260M
   : bfd_cache_lookup_worker (x, flag))
229
230
/* A helper function that returns true if ABFD can possibly be cached
231
   -- that is, whether bfd_cache_lookup_worker will accept it.  */
232
233
static bool
234
possibly_cached (bfd *abfd)
235
246M
{
236
246M
  if ((abfd->flags & BFD_IN_MEMORY) != 0)
237
0
    return false;
238
246M
  if (abfd->my_archive != NULL
239
9.82M
      && !bfd_is_thin_archive (abfd->my_archive))
240
9.71M
    return false;
241
236M
  return true;
242
246M
}
243
244
/* Called when the macro <<bfd_cache_lookup>> fails to find a
245
   quick answer.  Find a file descriptor for @var{abfd}.  If
246
   necessary, it open it.  If there are already more than
247
   <<bfd_cache_max_open>> files open, it tries to close one first, to
248
   avoid running out of file descriptors.  It will return NULL
249
   if it is unable to (re)open the @var{abfd}.  */
250
251
static FILE *
252
bfd_cache_lookup_worker (bfd *abfd, enum cache_flag flag)
253
235M
{
254
235M
  if (!possibly_cached (abfd))
255
0
    abort ();
256
257
  /* If the BFD is being processed by bfd_check_format_matches, it
258
     must already be open and won't be on the list.  */
259
235M
  if (abfd->in_format_matches)
260
235M
    {
261
235M
      if (abfd->iostream == NULL)
262
0
  abort ();
263
235M
      return (FILE *) abfd->iostream;
264
235M
    }
265
266
27.6k
  if (abfd->iostream != NULL)
267
25.0k
    {
268
      /* Move the file to the start of the cache.  */
269
25.0k
      if (abfd != bfd_last_cache)
270
25.0k
  {
271
25.0k
    snip (abfd);
272
25.0k
    insert (abfd);
273
25.0k
  }
274
25.0k
      return (FILE *) abfd->iostream;
275
25.0k
    }
276
277
2.60k
  if (flag & CACHE_NO_OPEN)
278
0
    return NULL;
279
280
2.60k
  if (_bfd_open_file_unlocked (abfd) == NULL)
281
0
    ;
282
2.60k
  else if (!(flag & CACHE_NO_SEEK)
283
1.31k
     && _bfd_real_fseek ((FILE *) abfd->iostream,
284
1.31k
             abfd->where, SEEK_SET) != 0
285
0
     && !(flag & CACHE_NO_SEEK_ERROR))
286
0
    bfd_set_error (bfd_error_system_call);
287
2.60k
  else
288
2.60k
    return (FILE *) abfd->iostream;
289
290
  /* xgettext:c-format */
291
0
  _bfd_error_handler (_("reopening %pB: %s"),
292
0
          abfd, bfd_errmsg (bfd_get_error ()));
293
0
  return NULL;
294
2.60k
}
295
296
static file_ptr
297
cache_btell (struct bfd *abfd)
298
13.1M
{
299
13.1M
  if (!bfd_lock ())
300
0
    return -1;
301
13.1M
  FILE *f = bfd_cache_lookup (abfd, CACHE_NO_OPEN);
302
13.1M
  if (f == NULL)
303
0
    {
304
0
      if (!bfd_unlock ())
305
0
  return -1;
306
0
      return abfd->where;
307
0
    }
308
13.1M
  file_ptr result = _bfd_real_ftell (f);
309
13.1M
  if (!bfd_unlock ())
310
0
    return -1;
311
13.1M
  return result;
312
13.1M
}
313
314
static int
315
cache_bseek (struct bfd *abfd, file_ptr offset, int whence)
316
97.4M
{
317
97.4M
  if (!bfd_lock ())
318
0
    return -1;
319
97.4M
  FILE *f = bfd_cache_lookup (abfd, whence != SEEK_CUR ? CACHE_NO_SEEK : CACHE_NORMAL);
320
97.4M
  if (f == NULL)
321
0
    {
322
0
      bfd_unlock ();
323
0
      return -1;
324
0
    }
325
97.4M
  int result = _bfd_real_fseek (f, offset, whence);
326
97.4M
  if (!bfd_unlock ())
327
0
    return -1;
328
97.4M
  return result;
329
97.4M
}
330
331
/* Note that archive entries don't have streams; they share their parent's.
332
   This allows someone to play with the iostream behind BFD's back.
333
334
   Also, note that the origin pointer points to the beginning of a file's
335
   contents (0 for non-archive elements).  For archive entries this is the
336
   first octet in the file, NOT the beginning of the archive header.  */
337
338
static file_ptr
339
cache_bread_1 (FILE *f, void *buf, file_ptr nbytes)
340
132M
{
341
132M
  file_ptr nread;
342
343
#if defined (__VAX) && defined (VMS)
344
  /* Apparently fread on Vax VMS does not keep the record length
345
     information.  */
346
  nread = read (fileno (f), buf, nbytes);
347
  /* Set bfd_error if we did not read as much data as we expected.  If
348
     the read failed due to an error set the bfd_error_system_call,
349
     else set bfd_error_file_truncated.  */
350
  if (nread == (file_ptr)-1)
351
    {
352
      bfd_set_error (bfd_error_system_call);
353
      return nread;
354
    }
355
#else
356
132M
  nread = fread (buf, 1, nbytes, f);
357
  /* Set bfd_error if we did not read as much data as we expected.  If
358
     the read failed due to an error set the bfd_error_system_call,
359
     else set bfd_error_file_truncated.  */
360
132M
  if (nread < nbytes && ferror (f))
361
93.9k
    {
362
93.9k
      bfd_set_error (bfd_error_system_call);
363
93.9k
      return nread;
364
93.9k
    }
365
132M
#endif
366
132M
  if (nread < nbytes)
367
    /* This may or may not be an error, but in case the calling code
368
       bails out because of it, set the right error code.  */
369
5.90M
    bfd_set_error (bfd_error_file_truncated);
370
132M
  return nread;
371
132M
}
372
373
static file_ptr
374
cache_bread (struct bfd *abfd, void *buf, file_ptr nbytes)
375
133M
{
376
133M
  if (!bfd_lock ())
377
0
    return -1;
378
133M
  file_ptr nread = 0;
379
133M
  FILE *f;
380
381
133M
  f = bfd_cache_lookup (abfd, CACHE_NORMAL);
382
133M
  if (f == NULL)
383
0
    {
384
0
      bfd_unlock ();
385
0
      return -1;
386
0
    }
387
388
  /* Some filesystems are unable to handle reads that are too large
389
     (for instance, NetApp shares with oplocks turned off).  To avoid
390
     hitting this limitation, we read the buffer in chunks of 8MB max.  */
391
260M
  while (nread < nbytes)
392
132M
    {
393
132M
      const file_ptr max_chunk_size = 0x800000;
394
132M
      file_ptr chunk_size = nbytes - nread;
395
132M
      file_ptr chunk_nread;
396
397
132M
      if (chunk_size > max_chunk_size)
398
114
  chunk_size = max_chunk_size;
399
400
132M
      chunk_nread = cache_bread_1 (f, (char *) buf + nread, chunk_size);
401
402
      /* Update the nread count.
403
404
   We just have to be careful of the case when cache_bread_1 returns
405
   a negative count:  If this is our first read, then set nread to
406
   that negative count in order to return that negative value to the
407
   caller.  Otherwise, don't add it to our total count, or we would
408
   end up returning a smaller number of bytes read than we actually
409
   did.  */
410
132M
      if (nread == 0 || chunk_nread > 0)
411
132M
  nread += chunk_nread;
412
413
132M
      if (chunk_nread < chunk_size)
414
5.99M
  break;
415
132M
    }
416
417
133M
  if (!bfd_unlock ())
418
0
    return -1;
419
133M
  return nread;
420
133M
}
421
422
static file_ptr
423
cache_bwrite (struct bfd *abfd, const void *from, file_ptr nbytes)
424
13.1M
{
425
13.1M
  if (!bfd_lock ())
426
0
    return -1;
427
13.1M
  file_ptr nwrite;
428
13.1M
  FILE *f = bfd_cache_lookup (abfd, CACHE_NORMAL);
429
430
13.1M
  if (f == NULL)
431
0
    {
432
0
      if (!bfd_unlock ())
433
0
  return -1;
434
0
      return 0;
435
0
    }
436
13.1M
  nwrite = fwrite (from, 1, nbytes, f);
437
13.1M
  if (nwrite < nbytes && ferror (f))
438
0
    {
439
0
      bfd_set_error (bfd_error_system_call);
440
0
      bfd_unlock ();
441
0
      return -1;
442
0
    }
443
13.1M
  if (!bfd_unlock ())
444
0
    return -1;
445
13.1M
  return nwrite;
446
13.1M
}
447
448
static int
449
cache_bclose (struct bfd *abfd)
450
9.91M
{
451
  /* No locking needed here, it's handled by the callee.  */
452
9.91M
  return bfd_cache_close (abfd) - 1;
453
9.91M
}
454
455
static int
456
cache_bflush (struct bfd *abfd)
457
217
{
458
217
  if (!bfd_lock ())
459
0
    return -1;
460
217
  int sts;
461
217
  FILE *f = bfd_cache_lookup (abfd, CACHE_NO_OPEN);
462
463
217
  if (f == NULL)
464
0
    {
465
0
      if (!bfd_unlock ())
466
0
  return -1;
467
0
      return 0;
468
0
    }
469
217
  sts = fflush (f);
470
217
  if (sts < 0)
471
0
    bfd_set_error (bfd_error_system_call);
472
217
  if (!bfd_unlock ())
473
0
    return -1;
474
217
  return sts;
475
217
}
476
477
static int
478
cache_bstat (struct bfd *abfd, struct stat *sb)
479
2.74M
{
480
2.74M
  if (!bfd_lock ())
481
0
    return -1;
482
2.74M
  int sts;
483
2.74M
  FILE *f = bfd_cache_lookup (abfd, CACHE_NO_SEEK_ERROR);
484
485
2.74M
  if (f == NULL)
486
0
    {
487
0
      bfd_unlock ();
488
0
      return -1;
489
0
    }
490
2.74M
  sts = fstat (fileno (f), sb);
491
2.74M
  if (sts < 0)
492
0
    bfd_set_error (bfd_error_system_call);
493
2.74M
  if (!bfd_unlock ())
494
0
    return -1;
495
2.74M
  return sts;
496
2.74M
}
497
498
static void *
499
cache_bmmap (struct bfd *abfd ATTRIBUTE_UNUSED,
500
       void *addr ATTRIBUTE_UNUSED,
501
       size_t len ATTRIBUTE_UNUSED,
502
       int prot ATTRIBUTE_UNUSED,
503
       int flags ATTRIBUTE_UNUSED,
504
       file_ptr offset ATTRIBUTE_UNUSED,
505
       void **map_addr ATTRIBUTE_UNUSED,
506
       size_t *map_len ATTRIBUTE_UNUSED)
507
7
{
508
7
  void *ret = MAP_FAILED;
509
510
7
  if (!bfd_lock ())
511
0
    return ret;
512
7
  if ((abfd->flags & BFD_IN_MEMORY) != 0)
513
0
    abort ();
514
7
#ifdef HAVE_MMAP
515
7
  else
516
7
    {
517
7
      uintptr_t pagesize_m1 = _bfd_pagesize_m1;
518
7
      FILE *f;
519
7
      file_ptr pg_offset;
520
7
      size_t pg_len;
521
522
7
      f = bfd_cache_lookup (abfd, CACHE_NO_SEEK_ERROR);
523
7
      if (f == NULL)
524
0
  {
525
0
    bfd_unlock ();
526
0
    return ret;
527
0
  }
528
529
      /* Align.  */
530
7
      pg_offset = offset & ~pagesize_m1;
531
7
      pg_len = (len + (offset - pg_offset) + pagesize_m1) & ~pagesize_m1;
532
533
7
      ret = mmap (addr, pg_len, prot, flags, fileno (f), pg_offset);
534
7
      if (ret == MAP_FAILED)
535
0
  bfd_set_error (bfd_error_system_call);
536
7
      else
537
7
  {
538
7
    *map_addr = ret;
539
7
    *map_len = pg_len;
540
7
    ret = (char *) ret + (offset & pagesize_m1);
541
7
  }
542
7
    }
543
7
#endif
544
545
7
  if (!bfd_unlock ())
546
0
    return MAP_FAILED;
547
7
  return ret;
548
7
}
549
550
static const struct bfd_iovec cache_iovec =
551
{
552
  &cache_bread, &cache_bwrite, &cache_btell, &cache_bseek,
553
  &cache_bclose, &cache_bflush, &cache_bstat, &cache_bmmap
554
};
555
556
static bool
557
_bfd_cache_init_unlocked (bfd *abfd)
558
214k
{
559
214k
  BFD_ASSERT (abfd->iostream != NULL);
560
214k
  if (open_files >= bfd_cache_max_open ())
561
0
    {
562
0
      if (! close_one ())
563
0
  return false;
564
0
    }
565
214k
  abfd->iovec = &cache_iovec;
566
214k
  insert (abfd);
567
214k
  abfd->flags &= ~BFD_CLOSED_BY_CACHE;
568
214k
  ++open_files;
569
214k
  return true;
570
214k
}
571
572
/*
573
INTERNAL_FUNCTION
574
  bfd_cache_init
575
576
SYNOPSIS
577
  bool bfd_cache_init (bfd *abfd);
578
579
DESCRIPTION
580
  Add a newly opened BFD to the cache.
581
*/
582
583
bool
584
bfd_cache_init (bfd *abfd)
585
187k
{
586
187k
  if (!bfd_lock ())
587
0
    return false;
588
187k
  bool result = _bfd_cache_init_unlocked (abfd);
589
187k
  if (!bfd_unlock ())
590
0
    return false;
591
187k
  return result;
592
187k
}
593
594
static bool
595
_bfd_cache_close_unlocked (bfd *abfd)
596
9.91M
{
597
  /* Don't remove this test.  bfd_reinit depends on it.  */
598
9.91M
  if (abfd->iovec != &cache_iovec)
599
376
    return true;
600
601
9.91M
  if (abfd->iostream == NULL)
602
    /* Previously closed.  */
603
9.70M
    return true;
604
605
  /* Note: no locking needed in this function, as it is handled by
606
     bfd_cache_delete.  */
607
211k
  return bfd_cache_delete (abfd);
608
9.91M
}
609
610
/*
611
FUNCTION
612
  bfd_cache_close
613
614
SYNOPSIS
615
  bool bfd_cache_close (bfd *abfd);
616
617
DESCRIPTION
618
  Remove the BFD @var{abfd} from the cache. If the attached file is open,
619
  then close it too.
620
621
  <<FALSE>> is returned if closing the file fails, <<TRUE>> is
622
  returned if all is well.
623
*/
624
625
bool
626
bfd_cache_close (bfd *abfd)
627
9.91M
{
628
9.91M
  if (!bfd_lock ())
629
0
    return false;
630
9.91M
  bool result = _bfd_cache_close_unlocked (abfd);
631
9.91M
  if (!bfd_unlock ())
632
0
    return false;
633
9.91M
  return result;
634
9.91M
}
635
636
/*
637
FUNCTION
638
  bfd_cache_close_all
639
640
SYNOPSIS
641
  bool bfd_cache_close_all (void);
642
643
DESCRIPTION
644
  Remove all BFDs from the cache. If the attached file is open,
645
  then close it too.  Note - despite its name this function will
646
  close a BFD even if it is not marked as being cacheable, ie
647
  even if bfd_get_cacheable() returns false.
648
649
  <<FALSE>> is returned if closing one of the file fails, <<TRUE>> is
650
  returned if all is well.
651
*/
652
653
bool
654
bfd_cache_close_all (void)
655
0
{
656
0
  bool ret = true;
657
658
0
  if (!bfd_lock ())
659
0
    return false;
660
0
  while (bfd_last_cache != NULL)
661
0
    {
662
0
      bfd *prev_bfd_last_cache = bfd_last_cache;
663
664
0
      ret &= _bfd_cache_close_unlocked (bfd_last_cache);
665
666
      /* Stop a potential infinite loop should bfd_cache_close()
667
   not update bfd_last_cache.  */
668
0
      if (bfd_last_cache == prev_bfd_last_cache)
669
0
  break;
670
0
    }
671
672
0
  if (!bfd_unlock ())
673
0
    return false;
674
0
  return ret;
675
0
}
676
677
/*
678
INTERNAL_FUNCTION
679
  bfd_cache_set_uncloseable
680
681
SYNOPSIS
682
  bool bfd_cache_set_uncloseable (bfd *abfd, bool value, bool *old);
683
684
DESCRIPTION
685
  Internal function to mark ABFD as either closeable or not.
686
  This is used by bfd_check_format_matches to avoid races
687
  where bfd_cache_close_all is called in another thread.
688
  VALUE is true to mark the BFD as temporarily uncloseable
689
  by the cache; false to mark it as closeable once again.
690
  OLD, if non-NULL, is set to the previous value of the flag.
691
  Returns false on error, true on success.
692
*/
693
694
bool
695
bfd_cache_set_uncloseable (bfd *abfd, bool value, bool *old)
696
20.0M
{
697
20.0M
  bool result = true;
698
699
20.0M
  if (!bfd_lock ())
700
0
    return false;
701
20.0M
  if (old != NULL)
702
10.0M
    *old = abfd->in_format_matches;
703
704
  /* Only perform any action when the state changes,and only when this
705
     BFD is actually using the cache.  */
706
20.0M
  if (value != abfd->in_format_matches
707
10.3M
      && abfd->iovec == &cache_iovec
708
10.3M
      && possibly_cached (abfd))
709
593k
    {
710
593k
      if (value)
711
296k
  {
712
    /* Marking as uncloseable for the first time.  Ensure the
713
       file is open, and remove from the cache list.  */
714
296k
    FILE *f = bfd_cache_lookup (abfd, CACHE_NORMAL);
715
296k
    if (f == NULL)
716
0
      result = false;
717
296k
    else
718
296k
      snip (abfd);
719
296k
  }
720
296k
      else
721
296k
  {
722
    /* Mark as closeable again.  */
723
296k
    insert (abfd);
724
296k
  }
725
726
593k
      abfd->in_format_matches = value;
727
593k
    }
728
729
20.0M
  if (!bfd_unlock ())
730
0
    return false;
731
20.0M
  return result;
732
20.0M
}
733
734
/*
735
FUNCTION
736
  bfd_cache_size
737
738
SYNOPSIS
739
  unsigned bfd_cache_size (void);
740
741
DESCRIPTION
742
  Return the number of open files in the cache.
743
*/
744
745
unsigned
746
bfd_cache_size (void)
747
0
{
748
0
  return open_files;
749
0
}
750
751
static FILE *
752
_bfd_open_file_unlocked (bfd *abfd)
753
27.9k
{
754
27.9k
  abfd->cacheable = true; /* Allow it to be closed later.  */
755
756
27.9k
  if (open_files >= bfd_cache_max_open ())
757
2.96k
    {
758
2.96k
      if (! close_one ())
759
0
  return NULL;
760
2.96k
    }
761
762
27.9k
  switch (abfd->direction)
763
27.9k
    {
764
2.91k
    case read_direction:
765
2.91k
    case no_direction:
766
2.91k
      abfd->iostream = _bfd_real_fopen (bfd_get_filename (abfd), FOPEN_RB);
767
2.91k
      break;
768
0
    case both_direction:
769
25.0k
    case write_direction:
770
25.0k
      if (abfd->opened_once)
771
24
  {
772
24
    abfd->iostream = _bfd_real_fopen (bfd_get_filename (abfd),
773
24
              FOPEN_RUB);
774
24
    if (abfd->iostream == NULL)
775
0
      abfd->iostream = _bfd_real_fopen (bfd_get_filename (abfd),
776
0
                FOPEN_WUB);
777
24
  }
778
24.9k
      else
779
24.9k
  {
780
    /* Create the file.
781
782
       Some operating systems won't let us overwrite a running
783
       binary.  For them, we want to unlink the file first.
784
785
       However, gcc 2.95 will create temporary files using
786
       O_EXCL and tight permissions to prevent other users from
787
       substituting other .o files during the compilation.  gcc
788
       will then tell the assembler to use the newly created
789
       file as an output file.  If we unlink the file here, we
790
       open a brief window when another user could still
791
       substitute a file.
792
793
       So we unlink the output file if and only if it has
794
       non-zero size.  */
795
24.9k
#ifndef __MSDOS__
796
    /* Don't do this for MSDOS: it doesn't care about overwriting
797
       a running binary, but if this file is already open by
798
       another BFD, we will be in deep trouble if we delete an
799
       open file.  In fact, objdump does just that if invoked with
800
       the --info option.  */
801
24.9k
    struct stat s;
802
803
24.9k
    if (stat (bfd_get_filename (abfd), &s) == 0 && s.st_size != 0)
804
887
      unlink_if_ordinary (bfd_get_filename (abfd));
805
24.9k
#endif
806
24.9k
    abfd->iostream = _bfd_real_fopen (bfd_get_filename (abfd),
807
24.9k
              FOPEN_WUB);
808
24.9k
    abfd->opened_once = true;
809
24.9k
  }
810
25.0k
      break;
811
27.9k
    }
812
813
27.9k
  if (abfd->iostream == NULL)
814
905
    bfd_set_error (bfd_error_system_call);
815
27.0k
  else
816
27.0k
    {
817
27.0k
      if (! _bfd_cache_init_unlocked (abfd))
818
0
  return NULL;
819
27.0k
    }
820
821
27.9k
  return (FILE *) abfd->iostream;
822
27.9k
}
823
824
/*
825
INTERNAL_FUNCTION
826
  bfd_open_file
827
828
SYNOPSIS
829
  FILE* bfd_open_file (bfd *abfd);
830
831
DESCRIPTION
832
  Call the OS to open a file for @var{abfd}.  Return the <<FILE *>>
833
  (possibly <<NULL>>) that results from this operation.  Set up the
834
  BFD so that future accesses know the file is open. If the <<FILE *>>
835
  returned is <<NULL>>, then it won't have been put in the
836
  cache, so it won't have to be removed from it.
837
*/
838
839
FILE *
840
bfd_open_file (bfd *abfd)
841
25.3k
{
842
25.3k
  if (!bfd_lock ())
843
0
    return NULL;
844
25.3k
  FILE *result = _bfd_open_file_unlocked (abfd);
845
25.3k
  if (!bfd_unlock ())
846
0
    return NULL;
847
25.3k
  return result;
848
25.3k
}