Coverage Report

Created: 2025-11-27 06:22

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/elfutils/libelf/elf_getdata.c
Line
Count
Source
1
/* Return the next data element from the section after possibly converting it.
2
   Copyright (C) 1998-2005, 2006, 2007, 2015, 2016 Red Hat, Inc.
3
   Copyright (C) 2022 Mark J. Wielaard <mark@klomp.org>
4
   This file is part of elfutils.
5
   Written by Ulrich Drepper <drepper@redhat.com>, 1998.
6
7
   This file is free software; you can redistribute it and/or modify
8
   it under the terms of either
9
10
     * the GNU Lesser General Public License as published by the Free
11
       Software Foundation; either version 3 of the License, or (at
12
       your option) any later version
13
14
   or
15
16
     * the GNU General Public License as published by the Free
17
       Software Foundation; either version 2 of the License, or (at
18
       your option) any later version
19
20
   or both in parallel, as here.
21
22
   elfutils is distributed in the hope that it will be useful, but
23
   WITHOUT ANY WARRANTY; without even the implied warranty of
24
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
25
   General Public License for more details.
26
27
   You should have received copies of the GNU General Public License and
28
   the GNU Lesser General Public License along with this program.  If
29
   not, see <http://www.gnu.org/licenses/>.  */
30
31
#ifdef HAVE_CONFIG_H
32
# include <config.h>
33
#endif
34
35
#include <errno.h>
36
#include <stddef.h>
37
#include <string.h>
38
39
#include "libelfP.h"
40
#include "common.h"
41
#include "elf-knowledge.h"
42
43
44
#define TYPEIDX(Sh_Type) \
45
123k
  (Sh_Type >= SHT_NULL && Sh_Type < SHT_NUM              \
46
123k
   ? Sh_Type                      \
47
123k
   : (Sh_Type >= SHT_GNU_HASH && Sh_Type <= SHT_HISUNW            \
48
89.5k
      ? SHT_NUM + Sh_Type - SHT_GNU_HASH              \
49
89.5k
      : 0))
50
51
/* Associate section types with libelf types.  */
52
static const Elf_Type shtype_map[TYPEIDX (SHT_HISUNW) + 1] =
53
  {
54
      [SHT_SYMTAB] = ELF_T_SYM,
55
      [SHT_RELA] = ELF_T_RELA,
56
      [SHT_HASH] = ELF_T_WORD,
57
      [SHT_DYNAMIC] = ELF_T_DYN,
58
      [SHT_REL] = ELF_T_REL,
59
      [SHT_DYNSYM] = ELF_T_SYM,
60
      [SHT_INIT_ARRAY] = ELF_T_ADDR,
61
      [SHT_FINI_ARRAY] = ELF_T_ADDR,
62
      [SHT_PREINIT_ARRAY] = ELF_T_ADDR,
63
      [SHT_GROUP] = ELF_T_WORD,
64
      [SHT_SYMTAB_SHNDX] = ELF_T_WORD,
65
      [SHT_NOTE] = ELF_T_NHDR, /* Need alignment to guess ELF_T_NHDR8.  */
66
      [TYPEIDX (SHT_GNU_verdef)] = ELF_T_VDEF,
67
      [TYPEIDX (SHT_GNU_verneed)] = ELF_T_VNEED,
68
      [TYPEIDX (SHT_GNU_versym)] = ELF_T_HALF,
69
      [TYPEIDX (SHT_SUNW_syminfo)] = ELF_T_SYMINFO,
70
      [TYPEIDX (SHT_SUNW_move)] = ELF_T_MOVE,
71
      [TYPEIDX (SHT_GNU_LIBLIST)] = ELF_T_LIB,
72
      [TYPEIDX (SHT_GNU_HASH)] = ELF_T_GNUHASH,
73
  };
74
75
/* Associate libelf types with their internal alignment requirements.  */
76
const uint_fast8_t __libelf_type_aligns[ELFCLASSNUM - 1][ELF_T_NUM] =
77
  {
78
# define TYPE_ALIGNS(Bits)                  \
79
      [ELF_T_ADDR] = __alignof__ (ElfW2(Bits,Addr)),            \
80
      [ELF_T_EHDR] = __alignof__ (ElfW2(Bits,Ehdr)),            \
81
      [ELF_T_HALF] = __alignof__ (ElfW2(Bits,Half)),            \
82
      [ELF_T_OFF] = __alignof__ (ElfW2(Bits,Off)),            \
83
      [ELF_T_PHDR] = __alignof__ (ElfW2(Bits,Phdr)),            \
84
      [ELF_T_SHDR] = __alignof__ (ElfW2(Bits,Shdr)),            \
85
      [ELF_T_SWORD] = __alignof__ (ElfW2(Bits,Sword)),            \
86
      [ELF_T_WORD] = __alignof__ (ElfW2(Bits,Word)),            \
87
      [ELF_T_XWORD] = __alignof__ (ElfW2(Bits,Xword)),            \
88
      [ELF_T_SXWORD] = __alignof__ (ElfW2(Bits,Sxword)),          \
89
      [ELF_T_SYM] = __alignof__ (ElfW2(Bits,Sym)),            \
90
      [ELF_T_SYMINFO] = __alignof__ (ElfW2(Bits,Syminfo)),          \
91
      [ELF_T_REL] = __alignof__ (ElfW2(Bits,Rel)),            \
92
      [ELF_T_RELA] = __alignof__ (ElfW2(Bits,Rela)),            \
93
      [ELF_T_DYN] = __alignof__ (ElfW2(Bits,Dyn)),            \
94
      [ELF_T_VDEF] = __alignof__ (ElfW2(Bits,Verdef)),            \
95
      [ELF_T_VDAUX] = __alignof__ (ElfW2(Bits,Verdaux)),          \
96
      [ELF_T_VNEED] = __alignof__ (ElfW2(Bits,Verneed)),          \
97
      [ELF_T_VNAUX] = __alignof__ (ElfW2(Bits,Vernaux)),          \
98
      [ELF_T_MOVE] = __alignof__ (ElfW2(Bits,Move)),            \
99
      [ELF_T_LIB] = __alignof__ (ElfW2(Bits,Lib)),            \
100
      [ELF_T_NHDR] = __alignof__ (ElfW2(Bits,Nhdr)),            \
101
      [ELF_T_AUXV] = __alignof__ (ElfW2(Bits,auxv_t)),            \
102
      [ELF_T_CHDR] = __alignof__ (ElfW2(Bits,Chdr)),            \
103
      [ELF_T_NHDR8] = 8 /* Special case for GNU Property note.  */
104
    [ELFCLASS32 - 1] =  {
105
  TYPE_ALIGNS (32),
106
  [ELF_T_GNUHASH] = __alignof__ (Elf32_Word),
107
    },
108
    [ELFCLASS64 - 1] = {
109
  TYPE_ALIGNS (64),
110
  [ELF_T_GNUHASH] = __alignof__ (Elf64_Xword),
111
    },
112
# undef TYPE_ALIGNS
113
  };
114
115
116
Elf_Type
117
internal_function
118
__libelf_data_type (GElf_Ehdr *ehdr, int sh_type, GElf_Xword align)
119
52.5k
{
120
  /* Some broken ELF ABI for 64-bit machines use the wrong hash table
121
     entry size.  See elf-knowledge.h for more information.  */
122
52.5k
  if (sh_type == SHT_HASH && ehdr->e_ident[EI_CLASS] == ELFCLASS64)
123
1.58k
    {
124
1.58k
      return (SH_ENTSIZE_HASH (ehdr) == 4 ? ELF_T_WORD : ELF_T_XWORD);
125
1.58k
    }
126
50.9k
  else
127
50.9k
    {
128
50.9k
      Elf_Type t = shtype_map[TYPEIDX (sh_type)];
129
      /* Special case for GNU Property notes.  */
130
50.9k
      if (t == ELF_T_NHDR && align == 8)
131
1.69k
  t = ELF_T_NHDR8;
132
50.9k
      return t;
133
50.9k
    }
134
52.5k
}
135
136
/* Convert the data in the current section.  */
137
static void
138
convert_data (Elf_Scn *scn, int eclass,
139
        int data, size_t size, Elf_Type type)
140
120k
{
141
120k
  const size_t align = __libelf_type_align (eclass, type);
142
143
  /* Do we need to convert the data and/or adjust for alignment?  */
144
120k
  if (data == MY_ELFDATA || type == ELF_T_BYTE)
145
61.3k
    {
146
61.3k
      if (((((size_t) (char *) scn->rawdata_base)) & (align - 1)) == 0)
147
  /* No need to copy, we can use the raw data.  */
148
61.3k
  scn->data_base = scn->rawdata_base;
149
0
      else
150
0
  {
151
0
    scn->data_base = malloc (size);
152
0
    if (scn->data_base == NULL)
153
0
      {
154
0
        __libelf_seterrno (ELF_E_NOMEM);
155
0
        return;
156
0
      }
157
158
    /* The copy will be appropriately aligned for direct access.  */
159
0
    memcpy (scn->data_base, scn->rawdata_base, size);
160
0
  }
161
61.3k
    }
162
59.1k
  else
163
59.1k
    {
164
59.1k
      xfct_t fp;
165
166
59.1k
      scn->data_base = malloc (size);
167
59.1k
      if (scn->data_base == NULL)
168
0
  {
169
0
    __libelf_seterrno (ELF_E_NOMEM);
170
0
    return;
171
0
  }
172
173
      /* Make sure the source is correctly aligned for the conversion
174
   function to directly access the data elements.  */
175
59.1k
      char *rawdata_source;
176
59.1k
      if (((((size_t) (char *) scn->rawdata_base)) & (align - 1)) == 0)
177
59.1k
  rawdata_source = scn->rawdata_base;
178
0
      else
179
0
  {
180
0
    rawdata_source = malloc (size);
181
0
    if (rawdata_source == NULL)
182
0
      {
183
0
        __libelf_seterrno (ELF_E_NOMEM);
184
0
        return;
185
0
      }
186
187
    /* The copy will be appropriately aligned for direct access.  */
188
0
    memcpy (rawdata_source, scn->rawdata_base, size);
189
0
  }
190
191
      /* Get the conversion function.  */
192
59.1k
      fp = __elf_xfctstom[eclass - 1][type];
193
194
59.1k
      fp (scn->data_base, rawdata_source, size, 0);
195
196
59.1k
      if (rawdata_source != scn->rawdata_base)
197
0
  free (rawdata_source);
198
59.1k
    }
199
200
120k
  scn->data_list.data.d.d_buf = scn->data_base;
201
120k
  scn->data_list.data.d.d_size = size;
202
120k
  scn->data_list.data.d.d_type = type;
203
120k
  scn->data_list.data.d.d_off = scn->rawdata.d.d_off;
204
120k
  scn->data_list.data.d.d_align = scn->rawdata.d.d_align;
205
120k
  scn->data_list.data.d.d_version = scn->rawdata.d.d_version;
206
207
120k
  scn->data_list.data.s = scn;
208
120k
}
209
210
211
/* Store the information for the raw data in the `rawdata' element.  */
212
int
213
internal_function
214
__libelf_set_rawdata_wrlock (Elf_Scn *scn)
215
747k
{
216
747k
  Elf64_Off offset;
217
747k
  Elf64_Xword size;
218
747k
  Elf64_Xword align;
219
747k
  Elf64_Xword flags;
220
747k
  int type;
221
747k
  Elf *elf = scn->elf;
222
223
747k
  if (elf->class == ELFCLASS32)
224
669k
    {
225
669k
      Elf32_Shdr *shdr
226
669k
  = scn->shdr.e32 ?: __elf32_getshdr_wrlock (scn);
227
228
669k
      if (shdr == NULL)
229
  /* Something went terribly wrong.  */
230
0
  return 1;
231
232
669k
      offset = shdr->sh_offset;
233
669k
      size = shdr->sh_size;
234
669k
      type = shdr->sh_type;
235
669k
      align = shdr->sh_addralign;
236
669k
      flags = shdr->sh_flags;
237
669k
    }
238
78.0k
  else
239
78.0k
    {
240
78.0k
      Elf64_Shdr *shdr
241
78.0k
  = scn->shdr.e64 ?: __elf64_getshdr_wrlock (scn);
242
243
78.0k
      if (shdr == NULL)
244
  /* Something went terribly wrong.  */
245
0
  return 1;
246
247
78.0k
      offset = shdr->sh_offset;
248
78.0k
      size = shdr->sh_size;
249
78.0k
      type = shdr->sh_type;
250
78.0k
      align = shdr->sh_addralign;
251
78.0k
      flags = shdr->sh_flags;
252
78.0k
    }
253
254
  /* If the section has no data (for whatever reason), leave the `d_buf'
255
     pointer NULL.  */
256
747k
  if (size != 0 && type != SHT_NOBITS)
257
686k
    {
258
      /* First a test whether the section is valid at all.  */
259
686k
      size_t entsize;
260
261
      /* Compressed data has a header, but then compressed data.
262
   Make sure to set the alignment of the header explicitly,
263
   don't trust the file alignment for the section, it is
264
   often wrong.  */
265
686k
      if ((flags & SHF_COMPRESSED) != 0)
266
608k
  {
267
608k
    entsize = 1;
268
608k
    align = __libelf_type_align (elf->class, ELF_T_CHDR);
269
608k
  }
270
77.3k
      else if (type == SHT_HASH)
271
5.01k
  {
272
5.01k
    GElf_Ehdr ehdr_mem;
273
5.01k
    GElf_Ehdr *ehdr = __gelf_getehdr_rdlock (elf, &ehdr_mem);
274
5.01k
    if (unlikely (ehdr == NULL))
275
0
      return 1;
276
5.01k
    entsize = SH_ENTSIZE_HASH (ehdr);
277
5.01k
  }
278
72.3k
      else
279
72.3k
  {
280
72.3k
    Elf_Type t = shtype_map[TYPEIDX (type)];
281
72.3k
    if (t == ELF_T_NHDR && align == 8)
282
1.76k
      t = ELF_T_NHDR8;
283
72.3k
    if (t == ELF_T_VDEF || t == ELF_T_NHDR || t == ELF_T_NHDR8
284
66.1k
        || (t == ELF_T_GNUHASH && elf->class == ELFCLASS64))
285
7.47k
      entsize = 1;
286
64.8k
    else
287
64.8k
      entsize = __libelf_type_sizes[elf->class - 1][t];
288
72.3k
  }
289
290
      /* We assume it is an array of bytes if it is none of the structured
291
   sections we know of.  */
292
686k
      if (entsize == 0)
293
0
  entsize = 1;
294
295
686k
      if (unlikely (size % entsize != 0))
296
2.71k
  {
297
2.71k
    __libelf_seterrno (ELF_E_INVALID_DATA);
298
2.71k
    return 1;
299
2.71k
  }
300
301
      /* We can use the mapped or loaded data if available.  */
302
683k
      if (elf->map_address != NULL)
303
0
  {
304
    /* First see whether the information in the section header is
305
       valid and it does not ask for too much.  Check for unsigned
306
       overflow.  */
307
0
    if (unlikely (offset > elf->maximum_size
308
0
        || elf->maximum_size - offset < size))
309
0
      {
310
        /* Something is wrong.  */
311
0
        __libelf_seterrno (ELF_E_INVALID_SECTION_HEADER);
312
0
        return 1;
313
0
      }
314
315
0
    scn->rawdata_base = scn->rawdata.d.d_buf
316
0
      = (char *) elf->map_address + elf->start_offset + offset;
317
0
  }
318
683k
      else if (likely (elf->fildes != -1))
319
683k
  {
320
    /* First see whether the information in the section header is
321
       valid and it does not ask for too much.  Check for unsigned
322
       overflow.  */
323
683k
    if (unlikely (offset > elf->maximum_size
324
683k
      || elf->maximum_size - offset < size))
325
580k
      {
326
        /* Something is wrong.  */
327
580k
        __libelf_seterrno (ELF_E_INVALID_SECTION_HEADER);
328
580k
        return 1;
329
580k
      }
330
331
    /* We have to read the data from the file.  Allocate the needed
332
       memory.  */
333
102k
    scn->rawdata_base = scn->rawdata.d.d_buf = malloc (size);
334
102k
    if (scn->rawdata.d.d_buf == NULL)
335
0
      {
336
0
        __libelf_seterrno (ELF_E_NOMEM);
337
0
        return 1;
338
0
      }
339
340
102k
    ssize_t n = pread_retry (elf->fildes, scn->rawdata.d.d_buf, size,
341
102k
           elf->start_offset + offset);
342
102k
    if (unlikely ((size_t) n != size))
343
0
      {
344
        /* Cannot read the data.  */
345
0
        free (scn->rawdata.d.d_buf);
346
0
        scn->rawdata_base = scn->rawdata.d.d_buf = NULL;
347
0
        __libelf_seterrno (ELF_E_READ_ERROR);
348
0
        return 1;
349
0
      }
350
102k
  }
351
0
      else
352
0
  {
353
    /* The file descriptor is already closed, we cannot get the data
354
       anymore.  */
355
0
    __libelf_seterrno (ELF_E_FD_DISABLED);
356
0
    return 1;
357
0
  }
358
683k
    }
359
360
164k
  scn->rawdata.d.d_size = size;
361
362
  /* Compressed data always has type ELF_T_CHDR regardless of the
363
     section type.  */
364
164k
  if ((flags & SHF_COMPRESSED) != 0)
365
113k
    scn->rawdata.d.d_type = ELF_T_CHDR;
366
51.2k
  else
367
51.2k
    {
368
51.2k
      GElf_Ehdr ehdr_mem;
369
51.2k
      GElf_Ehdr *ehdr = __gelf_getehdr_rdlock (elf, &ehdr_mem);
370
51.2k
      if (unlikely (ehdr == NULL))
371
0
  return 1;
372
51.2k
      scn->rawdata.d.d_type = __libelf_data_type (ehdr, type, align);
373
51.2k
    }
374
164k
  scn->rawdata.d.d_off = 0;
375
376
  /* Make sure the alignment makes sense.  d_align should be aligned both
377
     in the section (trivially true since d_off is zero) and in the file.
378
     Unfortunately we cannot be too strict because there are ELF files
379
     out there that fail this requirement.  We will try to fix those up
380
     in elf_update when writing out the image.  But for very large
381
     alignment values this can bloat the image considerably.  So here
382
     just check and clamp the alignment value to not be bigger than the
383
     actual offset of the data in the file.  Given that there is always
384
     at least an ehdr this will only trigger for alignment values > 64
385
     which should be uncommon.  */
386
164k
  align = align ?: 1;
387
164k
  if (type != SHT_NOBITS && align > offset)
388
107k
    {
389
      /* Align the offset to the next power of two. Uses algorithm from
390
         https://graphics.stanford.edu/~seander/bithacks.html#RoundUpPowerOf2 */
391
107k
      align = offset - 1;
392
107k
      align |= align >> 1;
393
107k
      align |= align >> 2;
394
107k
      align |= align >> 4;
395
107k
      align |= align >> 8;
396
107k
      align |= align >> 16;
397
107k
      align |= align >> 32;
398
107k
      align++;
399
107k
    }
400
164k
  scn->rawdata.d.d_align = align;
401
164k
  if (elf->class == ELFCLASS32
402
15.1k
      || (offsetof (struct Elf, state.elf32.ehdr)
403
15.1k
    == offsetof (struct Elf, state.elf64.ehdr)))
404
164k
    scn->rawdata.d.d_version =
405
164k
      elf->state.elf32.ehdr->e_ident[EI_VERSION];
406
0
  else
407
0
    scn->rawdata.d.d_version =
408
0
      elf->state.elf64.ehdr->e_ident[EI_VERSION];
409
410
164k
  scn->rawdata.s = scn;
411
412
164k
  scn->data_read = 1;
413
414
  /* We actually read data from the file.  At least we tried.  */
415
164k
  scn->flags |= ELF_F_FILEDATA;
416
417
164k
  return 0;
418
164k
}
419
420
int
421
internal_function
422
__libelf_set_rawdata (Elf_Scn *scn)
423
0
{
424
0
  int result;
425
426
0
  if (scn == NULL)
427
0
    return 1;
428
429
0
  rwlock_wrlock (scn->elf->lock);
430
0
  result = __libelf_set_rawdata_wrlock (scn);
431
0
  rwlock_unlock (scn->elf->lock);
432
433
0
  return result;
434
0
}
435
436
void
437
internal_function
438
__libelf_set_data_list_rdlock (Elf_Scn *scn, int wrlocked)
439
183k
{
440
183k
  if (scn->rawdata.d.d_buf != NULL && scn->rawdata.d.d_size > 0)
441
120k
    {
442
120k
      Elf *elf = scn->elf;
443
444
      /* Upgrade the lock to a write lock if necessary and check
445
   nobody else already did the work.  */
446
120k
      if (!wrlocked)
447
540
  {
448
540
    rwlock_unlock (elf->lock);
449
540
    rwlock_wrlock (elf->lock);
450
540
    if (scn->data_list_rear != NULL)
451
0
      return;
452
540
  }
453
454
      /* Convert according to the version and the type.   */
455
120k
      convert_data (scn, elf->class,
456
120k
        (elf->class == ELFCLASS32
457
10.8k
         || (offsetof (struct Elf, state.elf32.ehdr)
458
10.8k
       == offsetof (struct Elf, state.elf64.ehdr))
459
120k
         ? elf->state.elf32.ehdr->e_ident[EI_DATA]
460
120k
         : elf->state.elf64.ehdr->e_ident[EI_DATA]),
461
120k
        scn->rawdata.d.d_size, scn->rawdata.d.d_type);
462
120k
    }
463
62.8k
  else
464
62.8k
    {
465
      /* This is an empty or NOBITS section.  There is no buffer but
466
   the size information etc is important.  */
467
62.8k
      scn->data_list.data.d = scn->rawdata.d;
468
62.8k
      scn->data_list.data.s = scn;
469
62.8k
    }
470
471
183k
  scn->data_list_rear = &scn->data_list;
472
183k
}
473
474
Elf_Data *
475
internal_function
476
__elf_getdata_rdlock (Elf_Scn *scn, Elf_Data *data)
477
1.15M
{
478
1.15M
  Elf_Data *result = NULL;
479
1.15M
  Elf *elf;
480
1.15M
  int locked = 0;
481
482
1.15M
  if (scn == NULL)
483
0
    return NULL;
484
485
1.15M
  if (unlikely (scn->elf->kind != ELF_K_ELF))
486
0
    {
487
0
      __libelf_seterrno (ELF_E_INVALID_HANDLE);
488
0
      return NULL;
489
0
    }
490
491
  /* We will need this multiple times later on.  */
492
1.15M
  elf = scn->elf;
493
494
  /* If `data' is not NULL this means we are not addressing the initial
495
     data in the file.  But this also means this data is already read
496
     (since otherwise it is not possible to have a valid `data' pointer)
497
     and all the data structures are initialized as well.  In this case
498
     we can simply walk the list of data records.  */
499
1.15M
  if (data != NULL)
500
56.1k
    {
501
56.1k
      Elf_Data_List *runp;
502
503
      /* It is not possible that if DATA is not NULL the first entry is
504
   returned.  But this also means that there must be a first data
505
   entry.  */
506
56.1k
      if (scn->data_list_rear == NULL
507
    /* The section the reference data is for must match the section
508
       parameter.  */
509
56.1k
    || unlikely (((Elf_Data_Scn *) data)->s != scn))
510
0
  {
511
0
    __libelf_seterrno (ELF_E_DATA_MISMATCH);
512
0
    goto out;
513
0
  }
514
515
      /* We start searching with the first entry.  */
516
56.1k
      runp = &scn->data_list;
517
518
56.1k
      while (1)
519
56.1k
  {
520
    /* If `data' does not match any known record punt.  */
521
56.1k
    if (runp == NULL)
522
0
      {
523
0
        __libelf_seterrno (ELF_E_DATA_MISMATCH);
524
0
        goto out;
525
0
      }
526
527
56.1k
    if (&runp->data.d == data)
528
      /* Found the entry.  */
529
56.1k
      break;
530
531
0
    runp = runp->next;
532
0
  }
533
534
      /* Return the data for the next data record.  */
535
56.1k
      result = runp->next ? &runp->next->data.d : NULL;
536
56.1k
      goto out;
537
56.1k
    }
538
539
  /* If the data for this section was not yet initialized do it now.  */
540
1.09M
  if (scn->data_read == 0)
541
742k
    {
542
      /* We cannot acquire a write lock while we are holding a read
543
         lock.  Therefore give up the read lock and then get the write
544
         lock.  But this means that the data could meanwhile be
545
         modified, therefore start the tests again.  */
546
742k
      rwlock_unlock (elf->lock);
547
742k
      rwlock_wrlock (elf->lock);
548
742k
      locked = 1;
549
550
      /* Read the data from the file.  There is always a file (or
551
   memory region) associated with this descriptor since
552
   otherwise the `data_read' flag would be set.  */
553
742k
      if (scn->data_read == 0 && __libelf_set_rawdata_wrlock (scn) != 0)
554
  /* Something went wrong.  The error value is already set.  */
555
581k
  goto out;
556
742k
    }
557
558
  /* At this point we know the raw data is available.  But it might be
559
     empty in case the section has size zero (for whatever reason).
560
     Now create the converted data in case this is necessary.  */
561
512k
  if (scn->data_list_rear == NULL)
562
161k
    __libelf_set_data_list_rdlock (scn, locked);
563
564
  /* Return the first data element in the list.  */
565
512k
  result = &scn->data_list.data.d;
566
567
1.15M
 out:
568
1.15M
  return result;
569
512k
}
570
571
Elf_Data *
572
elf_getdata (Elf_Scn *scn, Elf_Data *data)
573
1.15M
{
574
1.15M
  Elf_Data *result;
575
576
1.15M
  if (scn == NULL)
577
0
    return NULL;
578
579
1.15M
  rwlock_rdlock (scn->elf->lock);
580
1.15M
  result = __elf_getdata_rdlock (scn, data);
581
1.15M
  rwlock_unlock (scn->elf->lock);
582
583
1.15M
  return result;
584
1.15M
}
585
586
Elf_Data *
587
internal_function
588
__elf_getdata_wrlock (Elf_Scn *scn, Elf_Data *data)
589
0
{
590
0
  Elf_Data *result;
591
592
0
  if (scn == NULL)
593
0
    return NULL;
594
595
0
  result = __elf_getdata_rdlock (scn, data);
596
597
0
  return result;
598
0
}
599
INTDEF(elf_getdata)