Coverage Report

Created: 2026-09-01 06:28

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/elfutils/libelf/version_xlate.h
Line
Count
Source
1
/* Conversion functions for versioning information.
2
   Copyright (C) 1998, 1999, 2000, 2002, 2003, 2015 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
#include <assert.h>
32
#include <gelf.h>
33
34
#include "libelfP.h"
35
36
37
static void
38
elf_cvt_Verdef (void *dest, const void *src, size_t len, int encode)
39
2.64k
{
40
  /* We have two different record types: ElfXX_Verndef and ElfXX_Verdaux.
41
     To recognize them we have to walk the data structure and convert
42
     them one after the other.  The ENCODE parameter specifies whether
43
     we are encoding or decoding.  When we are encoding we can immediately
44
     use the data in the buffer; if not, we have to decode the data before
45
     using it.  */
46
2.64k
  size_t def_offset = 0;
47
2.64k
  GElf_Verdef *ddest;
48
2.64k
  GElf_Verdef *dsrc;
49
50
  /* We rely on the types being all the same size.  */
51
2.64k
  assert (sizeof (GElf_Verdef) == sizeof (Elf32_Verdef));
52
2.64k
  assert (sizeof (GElf_Verdaux) == sizeof (Elf32_Verdaux));
53
2.64k
  assert (sizeof (GElf_Verdef) == sizeof (Elf64_Verdef));
54
2.64k
  assert (sizeof (GElf_Verdaux) == sizeof (Elf64_Verdaux));
55
56
2.64k
  if (len == 0)
57
0
    return;
58
59
  /* Below we rely on the next field offsets to be correct, start by
60
     copying over all data as is in case some data isn't translated.
61
     We don't want to leave (undefined) garbage in the dest buffer.  */
62
2.64k
  memmove (dest, src, len);
63
64
2.64k
  do
65
4.32k
    {
66
4.32k
      size_t aux_offset;
67
4.32k
      GElf_Verdaux *asrc;
68
69
      /* Test for correct offset.  */
70
4.32k
      if (def_offset > len
71
4.32k
    || len - def_offset < sizeof (GElf_Verdef)
72
4.23k
    || (def_offset & (__alignof__ (GElf_Verdef) - 1)) != 0)
73
349
  return;
74
75
      /* Work the tree from the first record.  */
76
3.97k
      ddest = (GElf_Verdef *) ((char *) dest + def_offset);
77
3.97k
      dsrc = (GElf_Verdef *) ((char *) src + def_offset);
78
79
      /* Decode first if necessary.  */
80
3.97k
      if (! encode)
81
3.97k
  {
82
3.97k
    ddest->vd_version = bswap_16 (dsrc->vd_version);
83
3.97k
    ddest->vd_flags = bswap_16 (dsrc->vd_flags);
84
3.97k
    ddest->vd_ndx = bswap_16 (dsrc->vd_ndx);
85
3.97k
    ddest->vd_cnt = bswap_16 (dsrc->vd_cnt);
86
3.97k
    ddest->vd_hash = bswap_32 (dsrc->vd_hash);
87
3.97k
    ddest->vd_aux = bswap_32 (dsrc->vd_aux);
88
3.97k
    ddest->vd_next = bswap_32 (dsrc->vd_next);
89
90
3.97k
    if (ddest->vd_aux > len - def_offset)
91
429
      return;
92
3.54k
    aux_offset = def_offset + ddest->vd_aux;
93
3.54k
  }
94
0
      else
95
0
  {
96
0
    if (dsrc->vd_aux > len - def_offset)
97
0
      return;
98
0
    aux_offset = def_offset + dsrc->vd_aux;
99
0
  }
100
101
      /* Handle all the auxiliary records belonging to this definition.  */
102
3.54k
      do
103
72.3k
  {
104
72.3k
    GElf_Verdaux *adest;
105
106
    /* Test for correct offset.  */
107
72.3k
    if (aux_offset > len
108
72.3k
        || len - aux_offset < sizeof (GElf_Verdaux)
109
72.2k
        || (aux_offset & (__alignof__ (GElf_Verdaux) - 1)) != 0)
110
400
      return;
111
112
71.9k
    adest = (GElf_Verdaux *) ((char *) dest + aux_offset);
113
71.9k
    asrc = (GElf_Verdaux *) ((char *) src + aux_offset);
114
115
71.9k
    if (encode)
116
0
      {
117
0
        if (asrc->vda_next > len - aux_offset)
118
0
    return;
119
0
        aux_offset += asrc->vda_next;
120
0
      }
121
122
71.9k
    adest->vda_name = bswap_32 (asrc->vda_name);
123
71.9k
    adest->vda_next = bswap_32 (asrc->vda_next);
124
125
71.9k
    if (! encode)
126
71.9k
      {
127
71.9k
        if (adest->vda_next > len - aux_offset)
128
495
    return;
129
71.4k
        aux_offset += adest->vda_next;
130
71.4k
      }
131
71.9k
  }
132
71.4k
      while (asrc->vda_next != 0);
133
134
      /* Encode now if necessary.  */
135
2.65k
      if (encode)
136
0
  {
137
0
    if (dsrc->vd_next > len - def_offset)
138
0
      return;
139
0
    def_offset += dsrc->vd_next;
140
141
0
    ddest->vd_version = bswap_16 (dsrc->vd_version);
142
0
    ddest->vd_flags = bswap_16 (dsrc->vd_flags);
143
0
    ddest->vd_ndx = bswap_16 (dsrc->vd_ndx);
144
0
    ddest->vd_cnt = bswap_16 (dsrc->vd_cnt);
145
0
    ddest->vd_hash = bswap_32 (dsrc->vd_hash);
146
0
    ddest->vd_aux = bswap_32 (dsrc->vd_aux);
147
0
    ddest->vd_next = bswap_32 (dsrc->vd_next);
148
0
  }
149
2.65k
      else
150
2.65k
  {
151
2.65k
    if (ddest->vd_next > len - def_offset)
152
394
      return;
153
2.26k
    def_offset += ddest->vd_next;
154
2.26k
  }
155
2.65k
    }
156
2.64k
  while (dsrc->vd_next != 0);
157
2.64k
}
158
159
160
static void
161
elf_cvt_Verneed (void *dest, const void *src, size_t len, int encode)
162
3.13k
{
163
  /* We have two different record types: ElfXX_Verndef and ElfXX_Verdaux.
164
     To recognize them we have to walk the data structure and convert
165
     them one after the other.  The ENCODE parameter specifies whether
166
     we are encoding or decoding.  When we are encoding we can immediately
167
     use the data in the buffer; if not, we have to decode the data before
168
     using it.  */
169
3.13k
  size_t need_offset = 0;
170
3.13k
  GElf_Verneed *ndest;
171
3.13k
  GElf_Verneed *nsrc;
172
173
  /* We rely on the types being all the same size.  */
174
3.13k
  assert (sizeof (GElf_Verneed) == sizeof (Elf32_Verneed));
175
3.13k
  assert (sizeof (GElf_Vernaux) == sizeof (Elf32_Vernaux));
176
3.13k
  assert (sizeof (GElf_Verneed) == sizeof (Elf64_Verneed));
177
3.13k
  assert (sizeof (GElf_Vernaux) == sizeof (Elf64_Vernaux));
178
179
3.13k
  if (len == 0)
180
0
    return;
181
182
  /* Below we rely on the next field offsets to be correct, start by
183
     copying over all data as is in case some data isn't translated.
184
     We don't want to leave (undefined) garbage in the dest buffer.  */
185
3.13k
  memmove (dest, src, len);
186
187
3.13k
  do
188
4.71k
    {
189
4.71k
      size_t aux_offset;
190
4.71k
      GElf_Vernaux *asrc;
191
192
      /* Test for correct offset.  */
193
4.71k
      if (need_offset > len
194
4.71k
    || len - need_offset < sizeof (GElf_Verneed)
195
4.46k
    || (need_offset & (__alignof__ (GElf_Verneed) - 1)) != 0)
196
495
  return;
197
198
      /* Work the tree from the first record.  */
199
4.21k
      ndest = (GElf_Verneed *) ((char *) dest + need_offset);
200
4.21k
      nsrc = (GElf_Verneed *) ((char *) src + need_offset);
201
202
      /* Decode first if necessary.  */
203
4.21k
      if (! encode)
204
4.21k
  {
205
4.21k
    ndest->vn_version = bswap_16 (nsrc->vn_version);
206
4.21k
    ndest->vn_cnt = bswap_16 (nsrc->vn_cnt);
207
4.21k
    ndest->vn_file = bswap_32 (nsrc->vn_file);
208
4.21k
    ndest->vn_aux = bswap_32 (nsrc->vn_aux);
209
4.21k
    ndest->vn_next = bswap_32 (nsrc->vn_next);
210
211
4.21k
    if (ndest->vn_aux > len - need_offset)
212
1.05k
      return;
213
3.15k
    aux_offset = need_offset + ndest->vn_aux;
214
3.15k
  }
215
0
      else
216
0
  {
217
0
    if (nsrc->vn_aux > len - need_offset)
218
0
      return;
219
0
    aux_offset = need_offset + nsrc->vn_aux;
220
0
  }
221
222
      /* Handle all the auxiliary records belonging to this requirement.  */
223
3.15k
      do
224
68.9k
  {
225
68.9k
    GElf_Vernaux *adest;
226
227
    /* Test for correct offset.  */
228
68.9k
    if (aux_offset > len
229
68.9k
        || len - aux_offset < sizeof (GElf_Vernaux)
230
68.7k
        || (aux_offset & (__alignof__ (GElf_Vernaux) - 1)) != 0)
231
535
      return;
232
233
68.4k
    adest = (GElf_Vernaux *) ((char *) dest + aux_offset);
234
68.4k
    asrc = (GElf_Vernaux *) ((char *) src + aux_offset);
235
236
68.4k
    if (encode)
237
0
      {
238
0
        if (asrc->vna_next > len - aux_offset)
239
0
    return;
240
0
        aux_offset += asrc->vna_next;
241
0
      }
242
243
68.4k
    adest->vna_hash = bswap_32 (asrc->vna_hash);
244
68.4k
    adest->vna_flags = bswap_16 (asrc->vna_flags);
245
68.4k
    adest->vna_other = bswap_16 (asrc->vna_other);
246
68.4k
    adest->vna_name = bswap_32 (asrc->vna_name);
247
68.4k
    adest->vna_next = bswap_32 (asrc->vna_next);
248
249
68.4k
    if (! encode)
250
68.4k
      {
251
68.4k
        if (adest->vna_next > len - aux_offset)
252
402
    return;
253
68.0k
        aux_offset += adest->vna_next;
254
68.0k
      }
255
68.4k
  }
256
68.0k
      while (asrc->vna_next != 0);
257
258
      /* Encode now if necessary.  */
259
2.22k
      if (encode)
260
0
  {
261
0
    if (nsrc->vn_next > len - need_offset)
262
0
      return;
263
0
    need_offset += nsrc->vn_next;
264
265
0
    ndest->vn_version = bswap_16 (nsrc->vn_version);
266
0
    ndest->vn_cnt = bswap_16 (nsrc->vn_cnt);
267
0
    ndest->vn_file = bswap_32 (nsrc->vn_file);
268
0
    ndest->vn_aux = bswap_32 (nsrc->vn_aux);
269
0
    ndest->vn_next = bswap_32 (nsrc->vn_next);
270
0
  }
271
2.22k
      else
272
2.22k
  {
273
2.22k
    if (ndest->vn_next > len - need_offset)
274
280
      return;
275
1.94k
    need_offset += ndest->vn_next;
276
1.94k
  }
277
2.22k
    }
278
3.13k
  while (nsrc->vn_next != 0);
279
3.13k
}