Coverage Report

Created: 2025-11-11 06:45

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/elfutils/libdw/dwarf_begin_elf.c
Line
Count
Source
1
/* Create descriptor from ELF descriptor for processing file.
2
   Copyright (C) 2002-2011, 2014, 2015, 2017, 2018 Red Hat, Inc.
3
   Copyright (C) 2023, Mark J. Wielaard <mark@klomp.org>
4
   This file is part of elfutils.
5
6
   This file is free software; you can redistribute it and/or modify
7
   it under the terms of either
8
9
     * the GNU Lesser General Public License as published by the Free
10
       Software Foundation; either version 3 of the License, or (at
11
       your option) any later version
12
13
   or
14
15
     * the GNU General Public License as published by the Free
16
       Software Foundation; either version 2 of the License, or (at
17
       your option) any later version
18
19
   or both in parallel, as here.
20
21
   elfutils is distributed in the hope that it will be useful, but
22
   WITHOUT ANY WARRANTY; without even the implied warranty of
23
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
24
   General Public License for more details.
25
26
   You should have received copies of the GNU General Public License and
27
   the GNU Lesser General Public License along with this program.  If
28
   not, see <http://www.gnu.org/licenses/>.  */
29
30
#ifdef HAVE_CONFIG_H
31
# include <config.h>
32
#endif
33
34
#include <system.h>
35
36
#include <assert.h>
37
#include <stdbool.h>
38
#include <stddef.h>
39
#include <stdlib.h>
40
#include <stdio.h>
41
#include <string.h>
42
#include <sys/types.h>
43
#include <sys/stat.h>
44
#include <fcntl.h>
45
46
#include "libelfP.h"
47
#include "libdwP.h"
48
49
50
/* Section names.  (Note .debug_str_offsets is the largest 19 chars.)  */
51
static const char dwarf_scnnames[IDX_last][19] =
52
{
53
  [IDX_debug_info] = ".debug_info",
54
  [IDX_debug_types] = ".debug_types",
55
  [IDX_debug_abbrev] = ".debug_abbrev",
56
  [IDX_debug_addr] = ".debug_addr",
57
  [IDX_debug_aranges] = ".debug_aranges",
58
  [IDX_debug_line] = ".debug_line",
59
  [IDX_debug_line_str] = ".debug_line_str",
60
  [IDX_debug_frame] = ".debug_frame",
61
  [IDX_debug_loc] = ".debug_loc",
62
  [IDX_debug_loclists] = ".debug_loclists",
63
  [IDX_debug_pubnames] = ".debug_pubnames",
64
  [IDX_debug_str] = ".debug_str",
65
  [IDX_debug_str_offsets] = ".debug_str_offsets",
66
  [IDX_debug_macinfo] = ".debug_macinfo",
67
  [IDX_debug_macro] = ".debug_macro",
68
  [IDX_debug_ranges] = ".debug_ranges",
69
  [IDX_debug_rnglists] = ".debug_rnglists",
70
  [IDX_debug_cu_index] = ".debug_cu_index",
71
  [IDX_debug_tu_index] = ".debug_tu_index",
72
  [IDX_gnu_debugaltlink] = ".gnu_debugaltlink"
73
};
74
1.15M
#define ndwarf_scnnames (sizeof (dwarf_scnnames) / sizeof (dwarf_scnnames[0]))
75
76
/* Map from section index to string section index.
77
   Non-string sections should have STR_SCN_IDX_last.  */
78
static const enum string_section_index scn_to_string_section_idx[IDX_last] =
79
{
80
  [IDX_debug_info] = STR_SCN_IDX_last,
81
  [IDX_debug_types] = STR_SCN_IDX_last,
82
  [IDX_debug_abbrev] = STR_SCN_IDX_last,
83
  [IDX_debug_addr] = STR_SCN_IDX_last,
84
  [IDX_debug_aranges] = STR_SCN_IDX_last,
85
  [IDX_debug_line] = STR_SCN_IDX_last,
86
  [IDX_debug_line_str] = STR_SCN_IDX_debug_line_str,
87
  [IDX_debug_frame] = STR_SCN_IDX_last,
88
  [IDX_debug_loc] = STR_SCN_IDX_last,
89
  [IDX_debug_loclists] = STR_SCN_IDX_last,
90
  [IDX_debug_pubnames] = STR_SCN_IDX_last,
91
  [IDX_debug_str] = STR_SCN_IDX_debug_str,
92
  [IDX_debug_str_offsets] = STR_SCN_IDX_last,
93
  [IDX_debug_macinfo] = STR_SCN_IDX_last,
94
  [IDX_debug_macro] = STR_SCN_IDX_last,
95
  [IDX_debug_ranges] = STR_SCN_IDX_last,
96
  [IDX_debug_rnglists] = STR_SCN_IDX_last,
97
  [IDX_debug_cu_index] = STR_SCN_IDX_last,
98
  [IDX_debug_tu_index] = STR_SCN_IDX_last,
99
  [IDX_gnu_debugaltlink] = STR_SCN_IDX_last
100
};
101
102
static enum dwarf_type
103
scn_dwarf_type (Dwarf *result, size_t shstrndx, Elf_Scn *scn)
104
1.37M
{
105
1.37M
  GElf_Shdr shdr_mem;
106
1.37M
  GElf_Shdr *shdr = gelf_getshdr (scn, &shdr_mem);
107
1.37M
  if (shdr == NULL)
108
0
    return TYPE_UNKNOWN;
109
110
1.37M
  const char *scnname = elf_strptr (result->elf, shstrndx,
111
1.37M
            shdr->sh_name);
112
1.37M
  if (scnname != NULL)
113
53.0k
    {
114
53.0k
      if (startswith (scnname, ".gnu.debuglto_.debug"))
115
594
  return TYPE_GNU_LTO;
116
52.4k
      else if (strcmp (scnname, ".debug_cu_index") == 0
117
52.0k
         || strcmp (scnname, ".debug_tu_index") == 0
118
51.4k
         || strcmp (scnname, ".zdebug_cu_index") == 0
119
50.3k
         || strcmp (scnname, ".zdebug_tu_index") == 0)
120
21.7k
  return TYPE_DWO;
121
30.7k
      else if (startswith (scnname, ".debug_") || startswith (scnname, ".zdebug_"))
122
9.32k
  {
123
9.32k
    size_t len = strlen (scnname);
124
9.32k
    if (strcmp (scnname + len - 4, ".dwo") == 0)
125
8.11k
      return TYPE_DWO;
126
1.20k
    else
127
1.20k
      return TYPE_PLAIN;
128
9.32k
  }
129
53.0k
    }
130
1.33M
  return TYPE_UNKNOWN;
131
1.37M
}
132
static Dwarf *
133
check_section (Dwarf *result, size_t shstrndx, Elf_Scn *scn, bool inscngrp)
134
476k
{
135
476k
  GElf_Shdr shdr_mem;
136
476k
  GElf_Shdr *shdr;
137
138
  /* Get the section header data.  */
139
476k
  shdr = gelf_getshdr (scn, &shdr_mem);
140
476k
  if (shdr == NULL)
141
    /* We may read /proc/PID/mem with only program headers mapped and section
142
       headers out of the mapped pages.  */
143
0
    goto err;
144
145
  /* Ignore any SHT_NOBITS sections.  Debugging sections should not
146
     have been stripped, but in case of a corrupt file we won't try
147
     to look at the missing data.  */
148
476k
  if (unlikely (shdr->sh_type == SHT_NOBITS))
149
2.69k
    return result;
150
151
  /* Make sure the section is part of a section group only iff we
152
     really need it.  If we are looking for the global (= non-section
153
     group debug info) we have to ignore all the info in section
154
     groups.  If we are looking into a section group we cannot look at
155
     a section which isn't part of the section group.  */
156
474k
  if (! inscngrp && (shdr->sh_flags & SHF_GROUP) != 0)
157
    /* Ignore the section.  */
158
348k
    return result;
159
160
161
  /* We recognize the DWARF section by their names.  This is not very
162
     safe and stable but the best we can do.  */
163
125k
  const char *scnname = elf_strptr (result->elf, shstrndx,
164
125k
            shdr->sh_name);
165
125k
  if (scnname == NULL)
166
1.49k
    {
167
      /* The section name must be valid.  Otherwise is the ELF file
168
   invalid.  */
169
1.59k
    err:
170
1.59k
      Dwarf_Sig8_Hash_free (&result->sig8_hash);
171
1.59k
      __libdw_seterrno (DWARF_E_INVALID_ELF);
172
1.59k
      free (result);
173
1.59k
      return NULL;
174
1.49k
    }
175
176
  /* Recognize the various sections.  Most names start with .debug_.
177
     They might be compressed (and start with .z).  Or end with .dwo
178
     for split dwarf sections.  Or start with .gnu.debuglto_ for
179
     LTO debug sections.  We should only use one consistent set at
180
     a time.  We prefer PLAIN over DWO over LTO.  */
181
124k
  size_t cnt;
182
124k
  bool gnu_compressed = false;
183
1.03M
  for (cnt = 0; cnt < ndwarf_scnnames; ++cnt)
184
995k
    {
185
      /* .debug_cu_index and .debug_tu_index don't have a .dwo suffix,
186
   but they are for DWO.  */
187
995k
      if (result->type != TYPE_DWO
188
928k
    && (cnt == IDX_debug_cu_index || cnt == IDX_debug_tu_index))
189
77.8k
  continue;
190
995k
      bool need_dot_dwo =
191
917k
  (result->type == TYPE_DWO
192
66.7k
   && cnt != IDX_debug_cu_index
193
63.8k
   && cnt != IDX_debug_tu_index);
194
917k
      size_t dbglen = strlen (dwarf_scnnames[cnt]);
195
917k
      size_t scnlen = strlen (scnname);
196
917k
      if (strncmp (scnname, dwarf_scnnames[cnt], dbglen) == 0
197
4.49k
    && ((!need_dot_dwo && dbglen == scnlen)
198
2.15k
        || (need_dot_dwo
199
1.49k
      && scnlen == dbglen + 4
200
1.22k
      && strstr (scnname, ".dwo") == scnname + dbglen)))
201
3.34k
  break;
202
913k
      else if (scnname[0] == '.' && scnname[1] == 'z'
203
192k
         && (strncmp (&scnname[2], &dwarf_scnnames[cnt][1],
204
192k
          dbglen - 1) == 0
205
82.7k
       && ((!need_dot_dwo && scnlen == dbglen + 1)
206
3.69k
           || (need_dot_dwo
207
1.82k
         && scnlen == dbglen + 5
208
1.52k
         && strstr (scnname,
209
1.52k
              ".dwo") == scnname + dbglen + 1))))
210
80.2k
  {
211
80.2k
    gnu_compressed = true;
212
80.2k
    break;
213
80.2k
  }
214
833k
      else if (scnlen > 14 /* .gnu.debuglto_ prefix. */
215
202k
         && startswith (scnname, ".gnu.debuglto_")
216
15.2k
         && strcmp (&scnname[14], dwarf_scnnames[cnt]) == 0)
217
855
  {
218
855
    if (result->type == TYPE_GNU_LTO)
219
437
      break;
220
855
  }
221
917k
    }
222
223
124k
  if (cnt >= ndwarf_scnnames)
224
    /* Not a debug section; ignore it. */
225
40.0k
    return result;
226
227
84.0k
  if (unlikely (result->sectiondata[cnt] != NULL))
228
    /* A section appears twice.  That's bad.  We ignore the section.  */
229
74.3k
    return result;
230
231
  /* We cannot know whether or not a GNU compressed section has already
232
     been uncompressed or not, so ignore any errors.  */
233
9.69k
  if (gnu_compressed)
234
6.11k
    elf_compress_gnu (scn, 0, 0);
235
236
9.69k
  if ((shdr->sh_flags & SHF_COMPRESSED) != 0)
237
3.85k
    {
238
3.85k
      if (elf_compress (scn, 0, 0) < 0)
239
3.24k
  {
240
    /* It would be nice if we could fail with a specific error.
241
       But we don't know if this was an essential section or not.
242
       So just continue for now. See also valid_p().  */
243
3.24k
    return result;
244
3.24k
  }
245
3.85k
    }
246
247
  /* Get the section data.  Should be raw bytes, no conversion needed.  */
248
6.44k
  Elf_Data *data = elf_rawdata (scn, NULL);
249
6.44k
  if (data == NULL)
250
96
    goto err;
251
252
6.35k
  if (data->d_buf == NULL || data->d_size == 0)
253
    /* No data actually available, ignore it. */
254
5.59k
    return result;
255
256
  /* We can now read the section data into results. */
257
758
  result->sectiondata[cnt] = data;
258
259
  /* If the section contains string data, we want to know a size of a prefix
260
     where any string will be null-terminated. */
261
758
  enum string_section_index string_section_idx = scn_to_string_section_idx[cnt];
262
758
  if (string_section_idx < STR_SCN_IDX_last)
263
114
    {
264
114
      size_t size = data->d_size;
265
      /* Reduce the size by the number of non-zero bytes at the end of the
266
   section.  */
267
989k
      while (size > 0 && *((const char *) data->d_buf + size - 1) != '\0')
268
989k
  --size;
269
114
      result->string_section_size[string_section_idx] = size;
270
114
    }
271
272
758
  return result;
273
6.35k
}
274
275
char *
276
__libdw_elfpath (int fd)
277
9.21k
{
278
  /* strlen ("/proc/self/fd/") = 14 + strlen (<MAXINT>) = 10 + 1 = 25.  */
279
9.21k
  char devfdpath[25];
280
9.21k
  sprintf (devfdpath, "/proc/self/fd/%u", fd);
281
9.21k
  return realpath (devfdpath, NULL);
282
9.21k
}
283
284
285
void
286
__libdw_set_debugdir (Dwarf *dbg)
287
243
{
288
243
  if (dbg->elfpath == NULL || dbg->elfpath[0] != '/')
289
134
    return;
290
109
  size_t dirlen = strrchr (dbg->elfpath, '/') - dbg->elfpath + 1;
291
109
  dbg->debugdir = malloc (dirlen + 1);
292
109
  if (dbg->debugdir == NULL)
293
0
    return;
294
109
  memcpy (dbg->debugdir, dbg->elfpath, dirlen);
295
109
  dbg->debugdir[dirlen] = '\0';
296
109
}
297
298
299
/* Check whether all the necessary DWARF information is available.  */
300
static Dwarf *
301
valid_p (Dwarf *result)
302
4.79k
{
303
  /* We looked at all the sections.  Now determine whether all the
304
     sections with debugging information we need are there.
305
306
     Require at least one section that can be read "standalone".  */
307
4.79k
  if (likely (result != NULL)
308
3.20k
      && unlikely (result->sectiondata[IDX_debug_info] == NULL
309
4.79k
       && result->sectiondata[IDX_debug_line] == NULL
310
4.79k
       && result->sectiondata[IDX_debug_frame] == NULL))
311
3.06k
    {
312
3.06k
      Dwarf_Sig8_Hash_free (&result->sig8_hash);
313
3.06k
      __libdw_seterrno (DWARF_E_NO_DWARF);
314
3.06k
      free (result);
315
3.06k
      result = NULL;
316
3.06k
    }
317
318
  /* We are setting up some "fake" CUs, which need an address size.
319
     Check the ELF class to come up with something reasonable.  */
320
4.79k
  int elf_addr_size = 8;
321
4.79k
  if (result != NULL)
322
134
    {
323
134
      GElf_Ehdr ehdr;
324
134
      if (gelf_getehdr (result->elf, &ehdr) == NULL)
325
0
  {
326
0
    Dwarf_Sig8_Hash_free (&result->sig8_hash);
327
0
    __libdw_seterrno (DWARF_E_INVALID_ELF);
328
0
    free (result);
329
0
    result = NULL;
330
0
  }
331
134
      else if (ehdr.e_ident[EI_CLASS] == ELFCLASS32)
332
33
  elf_addr_size = 4;
333
134
    }
334
335
  /* For dwarf_location_attr () we need a "fake" CU to indicate
336
     where the "fake" attribute data comes from.  This is a block
337
     inside the .debug_loc or .debug_loclists section.  */
338
4.79k
  if (result != NULL && result->sectiondata[IDX_debug_loc] != NULL)
339
0
    {
340
0
      result->fake_loc_cu = malloc (sizeof (Dwarf_CU));
341
0
      if (unlikely (result->fake_loc_cu == NULL))
342
0
  {
343
0
    Dwarf_Sig8_Hash_free (&result->sig8_hash);
344
0
    __libdw_seterrno (DWARF_E_NOMEM);
345
0
    free (result);
346
0
    result = NULL;
347
0
  }
348
0
      else
349
0
  {
350
0
    result->fake_loc_cu->sec_idx = IDX_debug_loc;
351
0
    result->fake_loc_cu->dbg = result;
352
0
    result->fake_loc_cu->startp
353
0
      = result->sectiondata[IDX_debug_loc]->d_buf;
354
0
    result->fake_loc_cu->endp
355
0
      = (result->sectiondata[IDX_debug_loc]->d_buf
356
0
         + result->sectiondata[IDX_debug_loc]->d_size);
357
0
    result->fake_loc_cu->address_size = elf_addr_size;
358
0
    result->fake_loc_cu->offset_size = 4;
359
0
    result->fake_loc_cu->version = 4;
360
0
    result->fake_loc_cu->split = NULL;
361
0
    eu_search_tree_init (&result->fake_loc_cu->locs_tree);
362
0
    rwlock_init (result->fake_loc_cu->split_lock);
363
0
    mutex_init (result->fake_loc_cu->abbrev_lock);
364
0
    mutex_init (result->fake_loc_cu->src_lock);
365
0
    mutex_init (result->fake_loc_cu->str_off_base_lock);
366
0
    mutex_init (result->fake_loc_cu->intern_lock);
367
0
  }
368
0
    }
369
370
4.79k
  if (result != NULL && result->sectiondata[IDX_debug_loclists] != NULL)
371
1
    {
372
1
      result->fake_loclists_cu = malloc (sizeof (Dwarf_CU));
373
1
      if (unlikely (result->fake_loclists_cu == NULL))
374
0
  {
375
0
    Dwarf_Sig8_Hash_free (&result->sig8_hash);
376
0
    __libdw_seterrno (DWARF_E_NOMEM);
377
0
    free (result->fake_loc_cu);
378
0
    free (result);
379
0
    result = NULL;
380
0
  }
381
1
      else
382
1
  {
383
1
    result->fake_loclists_cu->sec_idx = IDX_debug_loclists;
384
1
    result->fake_loclists_cu->dbg = result;
385
1
    result->fake_loclists_cu->startp
386
1
      = result->sectiondata[IDX_debug_loclists]->d_buf;
387
1
    result->fake_loclists_cu->endp
388
1
      = (result->sectiondata[IDX_debug_loclists]->d_buf
389
1
         + result->sectiondata[IDX_debug_loclists]->d_size);
390
1
    result->fake_loclists_cu->address_size = elf_addr_size;
391
1
    result->fake_loclists_cu->offset_size = 4;
392
1
    result->fake_loclists_cu->version = 5;
393
1
    result->fake_loclists_cu->split = NULL;
394
1
    eu_search_tree_init (&result->fake_loclists_cu->locs_tree);
395
1
    rwlock_init (result->fake_loclists_cu->split_lock);
396
1
    mutex_init (result->fake_loclists_cu->abbrev_lock);
397
1
    mutex_init (result->fake_loclists_cu->src_lock);
398
1
    mutex_init (result->fake_loclists_cu->str_off_base_lock);
399
1
    mutex_init (result->fake_loclists_cu->intern_lock);
400
1
  }
401
1
    }
402
403
  /* For DW_OP_constx/GNU_const_index and DW_OP_addrx/GNU_addr_index
404
     the dwarf_location_attr () will need a "fake" address CU to
405
     indicate where the attribute data comes from.  This is a just
406
     inside the .debug_addr section, if it exists.  */
407
4.79k
  if (result != NULL && result->sectiondata[IDX_debug_addr] != NULL)
408
5
    {
409
5
      result->fake_addr_cu = malloc (sizeof (Dwarf_CU));
410
5
      if (unlikely (result->fake_addr_cu == NULL))
411
0
  {
412
0
    Dwarf_Sig8_Hash_free (&result->sig8_hash);
413
0
    __libdw_seterrno (DWARF_E_NOMEM);
414
0
    free (result->fake_loc_cu);
415
0
    free (result->fake_loclists_cu);
416
0
    free (result);
417
0
    result = NULL;
418
0
  }
419
5
      else
420
5
  {
421
5
    result->fake_addr_cu->sec_idx = IDX_debug_addr;
422
5
    result->fake_addr_cu->dbg = result;
423
5
    result->fake_addr_cu->startp
424
5
      = result->sectiondata[IDX_debug_addr]->d_buf;
425
5
    result->fake_addr_cu->endp
426
5
      = (result->sectiondata[IDX_debug_addr]->d_buf
427
5
         + result->sectiondata[IDX_debug_addr]->d_size);
428
5
    result->fake_addr_cu->address_size = elf_addr_size;
429
5
    result->fake_addr_cu->offset_size = 4;
430
5
    result->fake_addr_cu->version = 5;
431
5
    result->fake_addr_cu->split = NULL;
432
5
    eu_search_tree_init (&result->fake_addr_cu->locs_tree);
433
5
    rwlock_init (result->fake_addr_cu->split_lock);
434
5
    mutex_init (result->fake_addr_cu->abbrev_lock);
435
5
    mutex_init (result->fake_addr_cu->src_lock);
436
5
    mutex_init (result->fake_addr_cu->str_off_base_lock);
437
5
    mutex_init (result->fake_addr_cu->intern_lock);
438
5
  }
439
5
    }
440
441
4.79k
  if (result != NULL)
442
134
    {
443
134
      result->elfpath = __libdw_elfpath (result->elf->fildes);
444
134
      __libdw_set_debugdir(result);
445
134
    }
446
447
4.79k
  return result;
448
4.79k
}
449
450
451
static Dwarf *
452
global_read (Dwarf *result, Elf *elf, size_t shstrndx)
453
4.79k
{
454
4.79k
  Elf_Scn *scn = NULL;
455
456
  /* First check the type (PLAIN, DWO, LTO) we are looking for.  We
457
     prefer PLAIN if available over DWO, over LTO.  */
458
1.37M
  while ((scn = elf_nextscn (elf, scn)) != NULL && result->type != TYPE_PLAIN)
459
1.37M
    {
460
1.37M
      enum dwarf_type type = scn_dwarf_type (result, shstrndx, scn);
461
1.37M
      if (type > result->type)
462
1.57k
  result->type = type;
463
1.37M
    }
464
465
4.79k
  scn = NULL;
466
481k
  while (result != NULL && (scn = elf_nextscn (elf, scn)) != NULL)
467
476k
    result = check_section (result, shstrndx, scn, false);
468
469
4.79k
  return valid_p (result);
470
4.79k
}
471
472
473
static Dwarf *
474
scngrp_read (Dwarf *result, Elf *elf, size_t shstrndx, Elf_Scn *scngrp)
475
0
{
476
0
  GElf_Shdr shdr_mem;
477
0
  GElf_Shdr *shdr = gelf_getshdr (scngrp, &shdr_mem);
478
0
  if (shdr == NULL)
479
0
    {
480
0
      Dwarf_Sig8_Hash_free (&result->sig8_hash);
481
0
      __libdw_seterrno (DWARF_E_INVALID_ELF);
482
0
      free (result);
483
0
      return NULL;
484
0
    }
485
486
0
  if ((shdr->sh_flags & SHF_COMPRESSED) != 0
487
0
      && elf_compress (scngrp, 0, 0) < 0)
488
0
    {
489
0
      Dwarf_Sig8_Hash_free (&result->sig8_hash);
490
0
      __libdw_seterrno (DWARF_E_COMPRESSED_ERROR);
491
0
      free (result);
492
0
      return NULL;
493
0
    }
494
495
  /* SCNGRP is the section descriptor for a section group which might
496
     contain debug sections.  */
497
0
  Elf_Data *data = elf_getdata (scngrp, NULL);
498
0
  if (data == NULL)
499
0
    {
500
      /* We cannot read the section content.  Fail!  */
501
0
      Dwarf_Sig8_Hash_free (&result->sig8_hash);
502
0
      free (result);
503
0
      return NULL;
504
0
    }
505
506
  /* The content of the section is a number of 32-bit words which
507
     represent section indices.  The first word is a flag word.  */
508
0
  Elf32_Word *scnidx = (Elf32_Word *) data->d_buf;
509
0
  size_t cnt;
510
511
  /* First check the type (PLAIN, DWO, LTO) we are looking for.  We
512
     prefer PLAIN if available over DWO, over LTO.  */
513
0
  for (cnt = 1; cnt * sizeof (Elf32_Word) <= data->d_size; ++cnt)
514
0
    {
515
0
      Elf_Scn *scn = elf_getscn (elf, scnidx[cnt]);
516
0
      if (scn == NULL)
517
0
  {
518
    /* A section group refers to a non-existing section.  Should
519
       never happen.  */
520
0
    Dwarf_Sig8_Hash_free (&result->sig8_hash);
521
0
    __libdw_seterrno (DWARF_E_INVALID_ELF);
522
0
    free (result);
523
0
    return NULL;
524
0
  }
525
526
0
      enum dwarf_type type = scn_dwarf_type (result, shstrndx, scn);
527
0
      if (type > result->type)
528
0
  result->type = type;
529
0
    }
530
531
0
  for (cnt = 1; cnt * sizeof (Elf32_Word) <= data->d_size && result != NULL; ++cnt)
532
0
    {
533
0
      Elf_Scn *scn = elf_getscn (elf, scnidx[cnt]);
534
0
      assert (scn != NULL); // checked above
535
0
      result = check_section (result, shstrndx, scn, true);
536
0
      if (result == NULL)
537
0
  break;
538
0
    }
539
540
0
  return valid_p (result);
541
0
}
542
543
544
Dwarf *
545
dwarf_begin_elf (Elf *elf, Dwarf_Cmd cmd, Elf_Scn *scngrp)
546
4.80k
{
547
4.80k
  GElf_Ehdr *ehdr;
548
4.80k
  GElf_Ehdr ehdr_mem;
549
550
  /* Get the ELF header of the file.  We need various pieces of
551
     information from it.  */
552
4.80k
  ehdr = gelf_getehdr (elf, &ehdr_mem);
553
4.80k
  if (ehdr == NULL)
554
0
    {
555
0
      if (elf_kind (elf) != ELF_K_ELF)
556
0
  __libdw_seterrno (DWARF_E_NOELF);
557
0
      else
558
0
  __libdw_seterrno (DWARF_E_GETEHDR_ERROR);
559
560
0
      return NULL;
561
0
    }
562
563
564
  /* Default memory allocation size.  */
565
4.80k
  size_t mem_default_size = sysconf (_SC_PAGESIZE) - 4 * sizeof (void *);
566
4.80k
  assert (sizeof (struct Dwarf) < mem_default_size);
567
568
  /* Allocate the data structure.  */
569
4.80k
  Dwarf *result = calloc (1, sizeof (Dwarf));
570
4.80k
  if (unlikely (result == NULL)
571
4.80k
      || unlikely (Dwarf_Sig8_Hash_init (&result->sig8_hash, 11) < 0))
572
0
    {
573
0
      free (result);
574
0
      __libdw_seterrno (DWARF_E_NOMEM);
575
0
      return NULL;
576
0
    }
577
578
  /* Fill in some values.  */
579
4.80k
  if ((BYTE_ORDER == LITTLE_ENDIAN && ehdr->e_ident[EI_DATA] == ELFDATA2MSB)
580
0
      || (BYTE_ORDER == BIG_ENDIAN && ehdr->e_ident[EI_DATA] == ELFDATA2LSB))
581
1.89k
    result->other_byte_order = true;
582
583
4.80k
  result->elf = elf;
584
4.80k
  result->alt_fd = -1;
585
4.80k
  result->dwp_fd = -1;
586
587
  /* Initialize the memory handling.  Initial blocks are allocated on first
588
     actual allocation.  */
589
4.80k
  result->mem_default_size = mem_default_size;
590
4.80k
  result->oom_handler = __libdw_oom;
591
4.80k
  if (pthread_rwlock_init(&result->mem_rwl, NULL) != 0)
592
0
    {
593
0
      free (result);
594
0
      __libdw_seterrno (DWARF_E_NOMEM); /* no memory.  */
595
0
      return NULL;
596
0
    }
597
4.80k
  mutex_init (result->dwarf_lock);
598
4.80k
  mutex_init (result->macro_lock);
599
4.80k
  eu_search_tree_init (&result->cu_tree);
600
4.80k
  eu_search_tree_init (&result->tu_tree);
601
4.80k
  eu_search_tree_init (&result->split_tree);
602
4.80k
  eu_search_tree_init (&result->macro_ops_tree);
603
4.80k
  eu_search_tree_init (&result->files_lines_tree);
604
605
4.80k
  result->mem_stacks = 0;
606
4.80k
  result->mem_tails = NULL;
607
608
4.80k
  if (cmd == DWARF_C_READ || cmd == DWARF_C_RDWR)
609
4.80k
    {
610
      /* All sections are recognized by name, so pass the section header
611
   string index along to easily get the section names.  */
612
4.80k
      size_t shstrndx;
613
4.80k
      if (elf_getshdrstrndx (elf, &shstrndx) != 0)
614
13
  {
615
13
    Dwarf_Sig8_Hash_free (&result->sig8_hash);
616
13
    __libdw_seterrno (DWARF_E_INVALID_ELF);
617
13
    free (result);
618
13
    return NULL;
619
13
  }
620
621
      /* If the caller provides a section group we get the DWARF
622
   sections only from this section group.  Otherwise we search
623
   for the first section with the required name.  Further
624
   sections with the name are ignored.  The DWARF specification
625
   does not really say this is allowed.  */
626
4.79k
      if (scngrp == NULL)
627
4.79k
  return global_read (result, elf, shstrndx);
628
0
      else
629
0
  return scngrp_read (result, elf, shstrndx, scngrp);
630
4.79k
    }
631
0
  else if (cmd == DWARF_C_WRITE)
632
0
    {
633
0
      Dwarf_Sig8_Hash_free (&result->sig8_hash);
634
0
      __libdw_seterrno (DWARF_E_UNIMPL);
635
0
      free (result);
636
0
      return NULL;
637
0
    }
638
639
0
  Dwarf_Sig8_Hash_free (&result->sig8_hash);
640
0
  __libdw_seterrno (DWARF_E_INVALID_CMD);
641
0
  free (result);
642
  return NULL;
643
4.80k
}
644
INTDEF(dwarf_begin_elf)