Coverage Report

Created: 2023-06-29 07:13

/src/binutils-gdb/bfd/bfdio.c
Line
Count
Source (jump to first uncovered line)
1
/* Low-level I/O routines for BFDs.
2
3
   Copyright (C) 1990-2023 Free Software Foundation, Inc.
4
5
   Written by Cygnus Support.
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.
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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
#include "sysdep.h"
25
#include <limits.h>
26
#include "bfd.h"
27
#include "libbfd.h"
28
#include "aout/ar.h"
29
#if defined (_WIN32)
30
#include <windows.h>
31
#include <locale.h>
32
#endif
33
34
#ifndef S_IXUSR
35
#define S_IXUSR 0100    /* Execute by owner.  */
36
#endif
37
#ifndef S_IXGRP
38
#define S_IXGRP 0010    /* Execute by group.  */
39
#endif
40
#ifndef S_IXOTH
41
#define S_IXOTH 0001    /* Execute by others.  */
42
#endif
43
44
#ifndef FD_CLOEXEC
45
#define FD_CLOEXEC 1
46
#endif
47
48
file_ptr
49
_bfd_real_ftell (FILE *file)
50
3.42M
{
51
3.42M
#if defined (HAVE_FTELLO64)
52
3.42M
  return ftello64 (file);
53
#elif defined (HAVE_FTELLO)
54
  return ftello (file);
55
#else
56
  return ftell (file);
57
#endif
58
3.42M
}
59
60
int
61
_bfd_real_fseek (FILE *file, file_ptr offset, int whence)
62
191M
{
63
191M
#if defined (HAVE_FSEEKO64)
64
191M
  return fseeko64 (file, offset, whence);
65
#elif defined (HAVE_FSEEKO)
66
  return fseeko (file, offset, whence);
67
#else
68
  return fseek (file, offset, whence);
69
#endif
70
191M
}
71
72
/* Mark FILE as close-on-exec.  Return FILE.  FILE may be NULL, in
73
   which case nothing is done.  */
74
static FILE *
75
close_on_exec (FILE *file)
76
15.6k
{
77
15.6k
#if defined (HAVE_FILENO) && defined (F_GETFD)
78
15.6k
  if (file)
79
15.3k
    {
80
15.3k
      int fd = fileno (file);
81
15.3k
      int old = fcntl (fd, F_GETFD, 0);
82
15.3k
      if (old >= 0)
83
15.3k
  fcntl (fd, F_SETFD, old | FD_CLOEXEC);
84
15.3k
    }
85
15.6k
#endif
86
15.6k
  return file;
87
15.6k
}
88
89
FILE *
90
_bfd_real_fopen (const char *filename, const char *modes)
91
15.6k
{
92
#ifdef VMS
93
  char *vms_attr;
94
95
  /* On VMS, fopen allows file attributes as optional arguments.
96
     We need to use them but we'd better to use the common prototype.
97
     In fopen-vms.h, they are separated from the mode with a comma.
98
     Split here.  */
99
  vms_attr = strchr (modes, ',');
100
  if (vms_attr != NULL)
101
    {
102
      /* Attributes found.  Split.  */
103
      size_t modes_len = strlen (modes) + 1;
104
      char attrs[modes_len + 1];
105
      char *at[3];
106
      int i;
107
108
      memcpy (attrs, modes, modes_len);
109
      at[0] = attrs;
110
      for (i = 0; i < 2; i++)
111
  {
112
    at[i + 1] = strchr (at[i], ',');
113
    BFD_ASSERT (at[i + 1] != NULL);
114
    *(at[i + 1]++) = 0; /* Replace ',' with a nul, and skip it.  */
115
  }
116
      return close_on_exec (fopen (filename, at[0], at[1], at[2]));
117
    }
118
119
#elif defined (_WIN32)
120
  /* PR 25713: Handle extra long path names possibly containing '..' and '.'.  */
121
   wchar_t **     lpFilePart = {NULL};
122
   const wchar_t  prefix[] = L"\\\\?\\";
123
   const size_t   partPathLen = strlen (filename) + 1;
124
#ifdef __MINGW32__
125
#if !HAVE_DECL____LC_CODEPAGE_FUNC
126
/* This prototype was added to locale.h in version 9.0 of MinGW-w64.  */
127
   _CRTIMP unsigned int __cdecl ___lc_codepage_func (void);
128
#endif
129
   const unsigned int cp = ___lc_codepage_func ();
130
#else
131
   const unsigned int cp = CP_UTF8;
132
#endif
133
134
   /* Converting the partial path from ascii to unicode.
135
      1) Get the length: Calling with lpWideCharStr set to null returns the length.
136
      2) Convert the string: Calling with cbMultiByte set to -1 includes the terminating null.  */
137
   size_t         partPathWSize = MultiByteToWideChar (cp, 0, filename, -1, NULL, 0);
138
   wchar_t *      partPath = calloc (partPathWSize, sizeof(wchar_t));
139
   size_t         ix;
140
141
   MultiByteToWideChar (cp, 0, filename, -1, partPath, partPathWSize);
142
143
   /* Convert any UNIX style path separators into the DOS i.e. backslash separator.  */
144
   for (ix = 0; ix < partPathLen; ix++)
145
     if (IS_UNIX_DIR_SEPARATOR(filename[ix]))
146
       partPath[ix] = '\\';
147
148
   /* Getting the full path from the provided partial path.
149
      1) Get the length.
150
      2) Resolve the path.  */
151
   long       fullPathWSize = GetFullPathNameW (partPath, 0, NULL, lpFilePart);
152
   wchar_t *  fullPath = calloc (fullPathWSize + sizeof(prefix) + 1, sizeof(wchar_t));
153
154
   wcscpy (fullPath, prefix);
155
156
   int        prefixLen = sizeof(prefix) / sizeof(wchar_t);
157
158
   /* Do not add a prefix to the null device.  */
159
   if (stricmp (filename, "nul") == 0)
160
    prefixLen = 1;
161
162
   wchar_t *  fullPathOffset = fullPath + prefixLen - 1;
163
164
   GetFullPathNameW (partPath, fullPathWSize, fullPathOffset, lpFilePart);
165
   free (partPath);
166
167
   /* It is non-standard for modes to exceed 16 characters.  */
168
   wchar_t    modesW[16];
169
170
   MultiByteToWideChar (cp, 0, modes, -1, modesW, sizeof(modesW));
171
172
   FILE *     file = _wfopen (fullPath, modesW);
173
   free (fullPath);
174
175
   return close_on_exec (file);
176
177
#elif defined (HAVE_FOPEN64)
178
15.6k
  return close_on_exec (fopen64 (filename, modes));
179
180
#else
181
  return close_on_exec (fopen (filename, modes));
182
#endif
183
15.6k
}
184
185
/*
186
INTERNAL_DEFINITION
187
  struct bfd_iovec
188
189
DESCRIPTION
190
191
  The <<struct bfd_iovec>> contains the internal file I/O class.
192
  Each <<BFD>> has an instance of this class and all file I/O is
193
  routed through it (it is assumed that the instance implements
194
  all methods listed below).
195
196
.struct bfd_iovec
197
.{
198
.  {* To avoid problems with macros, a "b" rather than "f"
199
.     prefix is prepended to each method name.  *}
200
.  {* Attempt to read/write NBYTES on ABFD's IOSTREAM storing/fetching
201
.     bytes starting at PTR.  Return the number of bytes actually
202
.     transfered (a read past end-of-file returns less than NBYTES),
203
.     or -1 (setting <<bfd_error>>) if an error occurs.  *}
204
.  file_ptr (*bread) (struct bfd *abfd, void *ptr, file_ptr nbytes);
205
.  file_ptr (*bwrite) (struct bfd *abfd, const void *ptr,
206
.          file_ptr nbytes);
207
.  {* Return the current IOSTREAM file offset, or -1 (setting <<bfd_error>>
208
.     if an error occurs.  *}
209
.  file_ptr (*btell) (struct bfd *abfd);
210
.  {* For the following, on successful completion a value of 0 is returned.
211
.     Otherwise, a value of -1 is returned (and <<bfd_error>> is set).  *}
212
.  int (*bseek) (struct bfd *abfd, file_ptr offset, int whence);
213
.  int (*bclose) (struct bfd *abfd);
214
.  int (*bflush) (struct bfd *abfd);
215
.  int (*bstat) (struct bfd *abfd, struct stat *sb);
216
.  {* Mmap a part of the files. ADDR, LEN, PROT, FLAGS and OFFSET are the usual
217
.     mmap parameter, except that LEN and OFFSET do not need to be page
218
.     aligned.  Returns (void *)-1 on failure, mmapped address on success.
219
.     Also write in MAP_ADDR the address of the page aligned buffer and in
220
.     MAP_LEN the size mapped (a page multiple).  Use unmap with MAP_ADDR and
221
.     MAP_LEN to unmap.  *}
222
.  void *(*bmmap) (struct bfd *abfd, void *addr, bfd_size_type len,
223
.      int prot, int flags, file_ptr offset,
224
.      void **map_addr, bfd_size_type *map_len);
225
.};
226
227
.extern const struct bfd_iovec _bfd_memory_iovec;
228
.
229
*/
230
231
232
/*
233
FUNCTION
234
  bfd_bread
235
236
SYNOPSIS
237
  bfd_size_type bfd_bread (void *, bfd_size_type, bfd *);
238
239
DESCRIPTION
240
  Attempt to read SIZE bytes from ABFD's iostream to PTR.
241
  Return the amount read.
242
*/
243
244
bfd_size_type
245
bfd_bread (void *ptr, bfd_size_type size, bfd *abfd)
246
183M
{
247
183M
  file_ptr nread;
248
183M
  bfd *element_bfd = abfd;
249
183M
  ufile_ptr offset = 0;
250
251
355M
  while (abfd->my_archive != NULL
252
355M
   && !bfd_is_thin_archive (abfd->my_archive))
253
172M
    {
254
172M
      offset += abfd->origin;
255
172M
      abfd = abfd->my_archive;
256
172M
    }
257
183M
  offset += abfd->origin;
258
259
  /* If this is a non-thin archive element, don't read past the end of
260
     this element.  */
261
183M
  if (element_bfd->arelt_data != NULL
262
183M
      && element_bfd->my_archive != NULL
263
183M
      && !bfd_is_thin_archive (element_bfd->my_archive))
264
172M
    {
265
172M
      bfd_size_type maxbytes = arelt_size (element_bfd);
266
267
172M
      if (abfd->where < offset || abfd->where - offset >= maxbytes)
268
1.79M
  {
269
1.79M
    bfd_set_error (bfd_error_invalid_operation);
270
1.79M
    return -1;
271
1.79M
  }
272
170M
      if (abfd->where - offset + size > maxbytes)
273
630k
  size = maxbytes - (abfd->where - offset);
274
170M
    }
275
276
181M
  if (abfd->iovec == NULL)
277
0
    {
278
0
      bfd_set_error (bfd_error_invalid_operation);
279
0
      return -1;
280
0
    }
281
282
181M
  nread = abfd->iovec->bread (abfd, ptr, size);
283
181M
  if (nread != -1)
284
181M
    abfd->where += nread;
285
286
181M
  return nread;
287
181M
}
288
289
/*
290
FUNCTION
291
  bfd_bwrite
292
293
SYNOPSIS
294
  bfd_size_type bfd_bwrite (const void *, bfd_size_type, bfd *);
295
296
DESCRIPTION
297
  Attempt to write SIZE bytes to ABFD's iostream from PTR.
298
  Return the amount written.
299
*/
300
301
bfd_size_type
302
bfd_bwrite (const void *ptr, bfd_size_type size, bfd *abfd)
303
514
{
304
514
  file_ptr nwrote;
305
306
1.02k
  while (abfd->my_archive != NULL
307
1.02k
   && !bfd_is_thin_archive (abfd->my_archive))
308
514
    abfd = abfd->my_archive;
309
310
514
  if (abfd->iovec == NULL)
311
0
    {
312
0
      bfd_set_error (bfd_error_invalid_operation);
313
0
      return -1;
314
0
    }
315
316
514
  nwrote = abfd->iovec->bwrite (abfd, ptr, size);
317
514
  if (nwrote != -1)
318
0
    abfd->where += nwrote;
319
514
  if ((bfd_size_type) nwrote != size)
320
514
    {
321
514
#ifdef ENOSPC
322
514
      errno = ENOSPC;
323
514
#endif
324
514
      bfd_set_error (bfd_error_system_call);
325
514
    }
326
514
  return nwrote;
327
514
}
328
329
/*
330
FUNCTION
331
  bfd_tell
332
333
SYNOPSIS
334
  file_ptr bfd_tell (bfd *);
335
336
DESCRIPTION
337
  Return ABFD's iostream file position.
338
*/
339
340
file_ptr
341
bfd_tell (bfd *abfd)
342
3.42M
{
343
3.42M
  ufile_ptr offset = 0;
344
3.42M
  file_ptr ptr;
345
346
5.64M
  while (abfd->my_archive != NULL
347
5.64M
   && !bfd_is_thin_archive (abfd->my_archive))
348
2.22M
    {
349
2.22M
      offset += abfd->origin;
350
2.22M
      abfd = abfd->my_archive;
351
2.22M
    }
352
3.42M
  offset += abfd->origin;
353
354
3.42M
  if (abfd->iovec == NULL)
355
0
    return 0;
356
357
3.42M
  ptr = abfd->iovec->btell (abfd);
358
3.42M
  abfd->where = ptr;
359
3.42M
  return ptr - offset;
360
3.42M
}
361
362
/*
363
FUNCTION
364
  bfd_flush
365
366
SYNOPSIS
367
  int bfd_flush (bfd *);
368
369
DESCRIPTION
370
  Flush ABFD's iostream pending IO.
371
*/
372
373
int
374
bfd_flush (bfd *abfd)
375
0
{
376
0
  while (abfd->my_archive != NULL
377
0
   && !bfd_is_thin_archive (abfd->my_archive))
378
0
    abfd = abfd->my_archive;
379
380
0
  if (abfd->iovec == NULL)
381
0
    return 0;
382
383
0
  return abfd->iovec->bflush (abfd);
384
0
}
385
386
/*
387
FUNCTION
388
  bfd_stat
389
390
SYNOPSIS
391
  int bfd_stat (bfd *, struct stat *);
392
393
DESCRIPTION
394
  Call fstat on ABFD's iostream.  Return 0 on success, and a
395
  negative value on failure.
396
*/
397
398
int
399
bfd_stat (bfd *abfd, struct stat *statbuf)
400
1.20M
{
401
1.20M
  int result;
402
403
2.39M
  while (abfd->my_archive != NULL
404
2.39M
   && !bfd_is_thin_archive (abfd->my_archive))
405
1.18M
    abfd = abfd->my_archive;
406
407
1.20M
  if (abfd->iovec == NULL)
408
0
    {
409
0
      bfd_set_error (bfd_error_invalid_operation);
410
0
      return -1;
411
0
    }
412
413
1.20M
  result = abfd->iovec->bstat (abfd, statbuf);
414
1.20M
  if (result < 0)
415
0
    bfd_set_error (bfd_error_system_call);
416
1.20M
  return result;
417
1.20M
}
418
419
/*
420
FUNCTION
421
  bfd_seek
422
423
SYNOPSIS
424
  int bfd_seek (bfd *, file_ptr, int);
425
426
DESCRIPTION
427
  Call fseek on ABFD's iostream.  Return 0 on success, and a
428
  negative value on failure.
429
*/
430
431
int
432
bfd_seek (bfd *abfd, file_ptr position, int direction)
433
191M
{
434
191M
  int result;
435
191M
  ufile_ptr offset = 0;
436
437
373M
  while (abfd->my_archive != NULL
438
373M
   && !bfd_is_thin_archive (abfd->my_archive))
439
182M
    {
440
182M
      offset += abfd->origin;
441
182M
      abfd = abfd->my_archive;
442
182M
    }
443
191M
  offset += abfd->origin;
444
445
191M
  if (abfd->iovec == NULL)
446
0
    {
447
0
      bfd_set_error (bfd_error_invalid_operation);
448
0
      return -1;
449
0
    }
450
451
  /* For the time being, a BFD may not seek to it's end.  The problem
452
     is that we don't easily have a way to recognize the end of an
453
     element in an archive.  */
454
191M
  BFD_ASSERT (direction == SEEK_SET || direction == SEEK_CUR);
455
456
191M
  if (direction != SEEK_CUR)
457
187M
    position += offset;
458
459
191M
  result = abfd->iovec->bseek (abfd, position, direction);
460
191M
  if (result != 0)
461
9.40k
    {
462
      /* An EINVAL error probably means that the file offset was
463
   absurd.  */
464
9.40k
      if (errno == EINVAL)
465
9.40k
  bfd_set_error (bfd_error_file_truncated);
466
0
      else
467
0
  bfd_set_error (bfd_error_system_call);
468
9.40k
    }
469
191M
  else
470
191M
    {
471
      /* Adjust `where' field.  */
472
191M
      if (direction == SEEK_CUR)
473
4.10M
  abfd->where += position;
474
187M
      else
475
187M
  abfd->where = position;
476
191M
    }
477
478
191M
  return result;
479
191M
}
480
481
/*
482
FUNCTION
483
  bfd_get_mtime
484
485
SYNOPSIS
486
  long bfd_get_mtime (bfd *abfd);
487
488
DESCRIPTION
489
  Return the file modification time (as read from the file system, or
490
  from the archive header for archive members).
491
492
*/
493
494
long
495
bfd_get_mtime (bfd *abfd)
496
0
{
497
0
  struct stat buf;
498
499
0
  if (abfd->mtime_set)
500
0
    return abfd->mtime;
501
502
0
  if (bfd_stat (abfd, &buf) != 0)
503
0
    return 0;
504
505
0
  abfd->mtime = buf.st_mtime;   /* Save value in case anyone wants it */
506
0
  return buf.st_mtime;
507
0
}
508
509
/*
510
FUNCTION
511
  bfd_get_size
512
513
SYNOPSIS
514
  ufile_ptr bfd_get_size (bfd *abfd);
515
516
DESCRIPTION
517
  Return the file size (as read from file system) for the file
518
  associated with BFD @var{abfd}.
519
520
  The initial motivation for, and use of, this routine is not
521
  so we can get the exact size of the object the BFD applies to, since
522
  that might not be generally possible (archive members for example).
523
  It would be ideal if someone could eventually modify
524
  it so that such results were guaranteed.
525
526
  Instead, we want to ask questions like "is this NNN byte sized
527
  object I'm about to try read from file offset YYY reasonable?"
528
  As as example of where we might do this, some object formats
529
  use string tables for which the first <<sizeof (long)>> bytes of the
530
  table contain the size of the table itself, including the size bytes.
531
  If an application tries to read what it thinks is one of these
532
  string tables, without some way to validate the size, and for
533
  some reason the size is wrong (byte swapping error, wrong location
534
  for the string table, etc.), the only clue is likely to be a read
535
  error when it tries to read the table, or a "virtual memory
536
  exhausted" error when it tries to allocate 15 bazillon bytes
537
  of space for the 15 bazillon byte table it is about to read.
538
  This function at least allows us to answer the question, "is the
539
  size reasonable?".
540
541
  A return value of zero indicates the file size is unknown.
542
*/
543
544
ufile_ptr
545
bfd_get_size (bfd *abfd)
546
25.1M
{
547
  /* A size of 0 means we haven't yet called bfd_stat.  A size of 1
548
     means we have a cached value of 0, ie. unknown.  */
549
25.1M
  if (abfd->size <= 1 || bfd_write_p (abfd))
550
20.3k
    {
551
20.3k
      struct stat buf;
552
553
20.3k
      if (abfd->size == 1 && !bfd_write_p (abfd))
554
0
  return 0;
555
556
20.3k
      if (bfd_stat (abfd, &buf) != 0
557
20.3k
    || buf.st_size == 0
558
20.3k
    || buf.st_size - (ufile_ptr) buf.st_size != 0)
559
0
  {
560
0
    abfd->size = 1;
561
0
    return 0;
562
0
  }
563
20.3k
      abfd->size = buf.st_size;
564
20.3k
    }
565
25.1M
  return abfd->size;
566
25.1M
}
567
568
/*
569
FUNCTION
570
  bfd_get_file_size
571
572
SYNOPSIS
573
  ufile_ptr bfd_get_file_size (bfd *abfd);
574
575
DESCRIPTION
576
  Return the file size (as read from file system) for the file
577
  associated with BFD @var{abfd}.  It supports both normal files
578
  and archive elements.
579
580
*/
581
582
ufile_ptr
583
bfd_get_file_size (bfd *abfd)
584
25.1M
{
585
25.1M
  ufile_ptr file_size, archive_size = (ufile_ptr) -1;
586
25.1M
  unsigned int compression_p2 = 0;
587
588
25.1M
  if (abfd->my_archive != NULL
589
25.1M
      && !bfd_is_thin_archive (abfd->my_archive))
590
23.5M
    {
591
23.5M
      struct areltdata *adata = (struct areltdata *) abfd->arelt_data;
592
23.5M
      if (adata != NULL)
593
23.5M
  {
594
23.5M
    archive_size = adata->parsed_size;
595
    /* If the archive is compressed, assume an element won't
596
       expand more than eight times file size.  */
597
23.5M
    if (adata->arch_header != NULL
598
23.5M
        && memcmp (((struct ar_hdr *) adata->arch_header)->ar_fmag,
599
23.5M
       "Z\012", 2) == 0)
600
756
      compression_p2 = 3;
601
23.5M
    abfd = abfd->my_archive;
602
23.5M
  }
603
23.5M
    }
604
605
25.1M
  file_size = bfd_get_size (abfd) << compression_p2;
606
25.1M
  if (archive_size < file_size)
607
1.37M
    return archive_size;
608
23.8M
  return file_size;
609
25.1M
}
610
611
/*
612
FUNCTION
613
  bfd_mmap
614
615
SYNOPSIS
616
  void *bfd_mmap (bfd *abfd, void *addr, bfd_size_type len,
617
      int prot, int flags, file_ptr offset,
618
      void **map_addr, bfd_size_type *map_len);
619
620
DESCRIPTION
621
  Return mmap()ed region of the file, if possible and implemented.
622
  LEN and OFFSET do not need to be page aligned.  The page aligned
623
  address and length are written to MAP_ADDR and MAP_LEN.
624
625
*/
626
627
void *
628
bfd_mmap (bfd *abfd, void *addr, bfd_size_type len,
629
    int prot, int flags, file_ptr offset,
630
    void **map_addr, bfd_size_type *map_len)
631
0
{
632
0
  while (abfd->my_archive != NULL
633
0
   && !bfd_is_thin_archive (abfd->my_archive))
634
0
    {
635
0
      offset += abfd->origin;
636
0
      abfd = abfd->my_archive;
637
0
    }
638
0
  offset += abfd->origin;
639
640
0
  if (abfd->iovec == NULL)
641
0
    {
642
0
      bfd_set_error (bfd_error_invalid_operation);
643
0
      return (void *) -1;
644
0
    }
645
646
0
  return abfd->iovec->bmmap (abfd, addr, len, prot, flags, offset,
647
0
           map_addr, map_len);
648
0
}
649
650
/* Memory file I/O operations.  */
651
652
static file_ptr
653
memory_bread (bfd *abfd, void *ptr, file_ptr size)
654
0
{
655
0
  struct bfd_in_memory *bim;
656
0
  bfd_size_type get;
657
658
0
  bim = (struct bfd_in_memory *) abfd->iostream;
659
0
  get = size;
660
0
  if (abfd->where + get > bim->size)
661
0
    {
662
0
      if (bim->size < (bfd_size_type) abfd->where)
663
0
  get = 0;
664
0
      else
665
0
  get = bim->size - abfd->where;
666
0
      bfd_set_error (bfd_error_file_truncated);
667
0
    }
668
0
  memcpy (ptr, bim->buffer + abfd->where, (size_t) get);
669
0
  return get;
670
0
}
671
672
static file_ptr
673
memory_bwrite (bfd *abfd, const void *ptr, file_ptr size)
674
0
{
675
0
  struct bfd_in_memory *bim = (struct bfd_in_memory *) abfd->iostream;
676
677
0
  if (abfd->where + size > bim->size)
678
0
    {
679
0
      bfd_size_type newsize, oldsize;
680
681
0
      oldsize = (bim->size + 127) & ~(bfd_size_type) 127;
682
0
      bim->size = abfd->where + size;
683
      /* Round up to cut down on memory fragmentation */
684
0
      newsize = (bim->size + 127) & ~(bfd_size_type) 127;
685
0
      if (newsize > oldsize)
686
0
  {
687
0
    bim->buffer = (bfd_byte *) bfd_realloc_or_free (bim->buffer, newsize);
688
0
    if (bim->buffer == NULL)
689
0
      {
690
0
        bim->size = 0;
691
0
        return 0;
692
0
      }
693
0
    if (newsize > bim->size)
694
0
      memset (bim->buffer + bim->size, 0, newsize - bim->size);
695
0
  }
696
0
    }
697
0
  memcpy (bim->buffer + abfd->where, ptr, (size_t) size);
698
0
  return size;
699
0
}
700
701
static file_ptr
702
memory_btell (bfd *abfd)
703
0
{
704
0
  return abfd->where;
705
0
}
706
707
static int
708
memory_bseek (bfd *abfd, file_ptr position, int direction)
709
0
{
710
0
  file_ptr nwhere;
711
0
  struct bfd_in_memory *bim;
712
713
0
  bim = (struct bfd_in_memory *) abfd->iostream;
714
715
0
  if (direction == SEEK_SET)
716
0
    nwhere = position;
717
0
  else
718
0
    nwhere = abfd->where + position;
719
720
0
  if (nwhere < 0)
721
0
    {
722
0
      abfd->where = 0;
723
0
      errno = EINVAL;
724
0
      return -1;
725
0
    }
726
727
0
  if ((bfd_size_type)nwhere > bim->size)
728
0
    {
729
0
      if (abfd->direction == write_direction
730
0
    || abfd->direction == both_direction)
731
0
  {
732
0
    bfd_size_type newsize, oldsize;
733
734
0
    oldsize = (bim->size + 127) & ~(bfd_size_type) 127;
735
0
    bim->size = nwhere;
736
    /* Round up to cut down on memory fragmentation */
737
0
    newsize = (bim->size + 127) & ~(bfd_size_type) 127;
738
0
    if (newsize > oldsize)
739
0
      {
740
0
        bim->buffer = (bfd_byte *) bfd_realloc_or_free (bim->buffer, newsize);
741
0
        if (bim->buffer == NULL)
742
0
    {
743
0
      errno = EINVAL;
744
0
      bim->size = 0;
745
0
      return -1;
746
0
    }
747
0
        memset (bim->buffer + oldsize, 0, newsize - oldsize);
748
0
      }
749
0
  }
750
0
      else
751
0
  {
752
0
    abfd->where = bim->size;
753
0
    errno = EINVAL;
754
0
    bfd_set_error (bfd_error_file_truncated);
755
0
    return -1;
756
0
  }
757
0
    }
758
0
  return 0;
759
0
}
760
761
static int
762
memory_bclose (struct bfd *abfd)
763
7.91k
{
764
7.91k
  struct bfd_in_memory *bim = (struct bfd_in_memory *) abfd->iostream;
765
766
7.91k
  free (bim->buffer);
767
7.91k
  free (bim);
768
7.91k
  abfd->iostream = NULL;
769
770
7.91k
  return 0;
771
7.91k
}
772
773
static int
774
memory_bflush (bfd *abfd ATTRIBUTE_UNUSED)
775
0
{
776
0
  return 0;
777
0
}
778
779
static int
780
memory_bstat (bfd *abfd, struct stat *statbuf)
781
0
{
782
0
  struct bfd_in_memory *bim = (struct bfd_in_memory *) abfd->iostream;
783
784
0
  memset (statbuf, 0, sizeof (*statbuf));
785
0
  statbuf->st_size = bim->size;
786
787
0
  return 0;
788
0
}
789
790
static void *
791
memory_bmmap (bfd *abfd ATTRIBUTE_UNUSED, void *addr ATTRIBUTE_UNUSED,
792
        bfd_size_type len ATTRIBUTE_UNUSED, int prot ATTRIBUTE_UNUSED,
793
        int flags ATTRIBUTE_UNUSED, file_ptr offset ATTRIBUTE_UNUSED,
794
        void **map_addr ATTRIBUTE_UNUSED,
795
        bfd_size_type *map_len ATTRIBUTE_UNUSED)
796
0
{
797
0
  return (void *)-1;
798
0
}
799
800
const struct bfd_iovec _bfd_memory_iovec =
801
{
802
  &memory_bread, &memory_bwrite, &memory_btell, &memory_bseek,
803
  &memory_bclose, &memory_bflush, &memory_bstat, &memory_bmmap
804
};