Coverage Report

Created: 2025-11-11 06:45

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/elfutils/libdwfl/segment.c
Line
Count
Source
1
/* Manage address space lookup table for libdwfl.
2
   Copyright (C) 2008, 2009, 2010, 2013, 2015 Red Hat, Inc.
3
   This file is part of elfutils.
4
5
   This file is free software; you can redistribute it and/or modify
6
   it under the terms of either
7
8
     * the GNU Lesser General Public License as published by the Free
9
       Software Foundation; either version 3 of the License, or (at
10
       your option) any later version
11
12
   or
13
14
     * the GNU General Public License as published by the Free
15
       Software Foundation; either version 2 of the License, or (at
16
       your option) any later version
17
18
   or both in parallel, as here.
19
20
   elfutils is distributed in the hope that it will be useful, but
21
   WITHOUT ANY WARRANTY; without even the implied warranty of
22
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
23
   General Public License for more details.
24
25
   You should have received copies of the GNU General Public License and
26
   the GNU Lesser General Public License along with this program.  If
27
   not, see <http://www.gnu.org/licenses/>.  */
28
29
#ifdef HAVE_CONFIG_H
30
# include <config.h>
31
#endif
32
33
#include "libdwflP.h"
34
35
GElf_Addr
36
internal_function
37
__libdwfl_segment_start (Dwfl *dwfl, GElf_Addr start)
38
47.5k
{
39
47.5k
  if (dwfl->segment_align > 1)
40
44.9k
    start &= -dwfl->segment_align;
41
47.5k
  return start;
42
47.5k
}
43
44
GElf_Addr
45
internal_function
46
__libdwfl_segment_end (Dwfl *dwfl, GElf_Addr end)
47
47.5k
{
48
47.5k
  if (dwfl->segment_align > 1)
49
44.9k
    end = (end + dwfl->segment_align - 1) & -dwfl->segment_align;
50
47.5k
  return end;
51
47.5k
}
52
53
static bool
54
insert (Dwfl *dwfl, size_t i, GElf_Addr start, GElf_Addr end, int segndx)
55
47.5k
{
56
47.5k
  bool need_start = (i == 0 || dwfl->lookup_addr[i - 1] != start);
57
47.5k
  bool need_end = (i + 1 >= dwfl->lookup_elts
58
25.3k
       || dwfl->lookup_addr[i + 1] != end);
59
47.5k
  size_t need = need_start + need_end;
60
47.5k
  if (need == 0)
61
2.15k
    return false;
62
63
45.3k
  if (dwfl->lookup_alloc - dwfl->lookup_elts < need)
64
10.7k
    {
65
10.7k
      size_t n = dwfl->lookup_alloc == 0 ? 16 : dwfl->lookup_alloc * 2;
66
10.7k
      GElf_Addr *naddr = realloc (dwfl->lookup_addr, sizeof naddr[0] * n);
67
10.7k
      if (unlikely (naddr == NULL))
68
0
  return true;
69
10.7k
      int *nsegndx = realloc (dwfl->lookup_segndx, sizeof nsegndx[0] * n);
70
10.7k
      if (unlikely (nsegndx == NULL))
71
0
  {
72
0
    if (naddr != dwfl->lookup_addr)
73
0
      free (naddr);
74
0
    return true;
75
0
  }
76
10.7k
      dwfl->lookup_alloc = n;
77
10.7k
      dwfl->lookup_addr = naddr;
78
10.7k
      dwfl->lookup_segndx = nsegndx;
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80
10.7k
      if (dwfl->lookup_module != NULL)
81
0
  {
82
    /* Make sure this array is big enough too.  */
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0
    Dwfl_Module **old = dwfl->lookup_module;
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0
    dwfl->lookup_module = realloc (dwfl->lookup_module,
85
0
           sizeof dwfl->lookup_module[0] * n);
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0
    if (unlikely (dwfl->lookup_module == NULL))
87
0
      {
88
0
        free (old);
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0
        return true;
90
0
      }
91
0
  }
92
10.7k
    }
93
94
45.3k
  if (unlikely (i < dwfl->lookup_elts))
95
29.2k
    {
96
29.2k
      const size_t move = dwfl->lookup_elts - i;
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29.2k
      memmove (&dwfl->lookup_addr[i + need], &dwfl->lookup_addr[i],
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29.2k
         move * sizeof dwfl->lookup_addr[0]);
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29.2k
      memmove (&dwfl->lookup_segndx[i + need], &dwfl->lookup_segndx[i],
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29.2k
         move * sizeof dwfl->lookup_segndx[0]);
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29.2k
      if (dwfl->lookup_module != NULL)
102
0
  memmove (&dwfl->lookup_module[i + need], &dwfl->lookup_module[i],
103
0
     move * sizeof dwfl->lookup_module[0]);
104
29.2k
    }
105
106
45.3k
  if (need_start)
107
39.3k
    {
108
39.3k
      dwfl->lookup_addr[i] = start;
109
39.3k
      dwfl->lookup_segndx[i] = segndx;
110
39.3k
      if (dwfl->lookup_module != NULL)
111
0
  dwfl->lookup_module[i] = NULL;
112
39.3k
      ++i;
113
39.3k
    }
114
6.02k
  else
115
6.02k
    dwfl->lookup_segndx[i - 1] = segndx;
116
117
45.3k
  if (need_end)
118
45.0k
    {
119
45.0k
      dwfl->lookup_addr[i] = end;
120
45.0k
      dwfl->lookup_segndx[i] = -1;
121
45.0k
      if (dwfl->lookup_module != NULL)
122
0
  dwfl->lookup_module[i] = NULL;
123
45.0k
    }
124
125
45.3k
  dwfl->lookup_elts += need;
126
127
45.3k
  return false;
128
45.3k
}
129
130
static int
131
lookup (Dwfl *dwfl, GElf_Addr address, int hint)
132
39.7k
{
133
39.7k
  if (hint >= 0
134
0
      && address >= dwfl->lookup_addr[hint]
135
0
      && ((size_t) hint + 1 == dwfl->lookup_elts
136
0
    || address < dwfl->lookup_addr[hint + 1]))
137
0
    return hint;
138
139
  /* Do binary search on the array indexed by module load address.  */
140
39.7k
  size_t l = 0, u = dwfl->lookup_elts;
141
179k
  while (l < u)
142
179k
    {
143
179k
      size_t idx = (l + u) / 2;
144
179k
      if (address < dwfl->lookup_addr[idx])
145
119k
  u = idx;
146
59.6k
      else
147
59.6k
  {
148
59.6k
    l = idx + 1;
149
59.6k
    if (l == dwfl->lookup_elts || address < dwfl->lookup_addr[l])
150
39.2k
      return idx;
151
59.6k
  }
152
179k
    }
153
154
510
  return -1;
155
39.7k
}
156
157
static bool
158
reify_segments (Dwfl *dwfl)
159
5.20k
{
160
5.20k
  int hint = -1;
161
5.20k
  int highest = -1;
162
5.20k
  bool fixup = false;
163
5.20k
  for (Dwfl_Module *mod = dwfl->modulelist; mod != NULL; mod = mod->next)
164
0
    if (! mod->gc)
165
0
      {
166
0
  const GElf_Addr start = __libdwfl_segment_start (dwfl, mod->low_addr);
167
0
  const GElf_Addr end = __libdwfl_segment_end (dwfl, mod->high_addr);
168
0
  bool resized = false;
169
170
0
  int idx = lookup (dwfl, start, hint);
171
0
  if (unlikely (idx < 0))
172
0
    {
173
      /* Module starts below any segment.  Insert a low one.  */
174
0
      if (unlikely (insert (dwfl, 0, start, end, -1)))
175
0
        return true;
176
0
      idx = 0;
177
0
      resized = true;
178
0
    }
179
0
  else if (dwfl->lookup_addr[idx] > start)
180
0
    {
181
      /* The module starts in the middle of this segment.  Split it.  */
182
0
      if (unlikely (insert (dwfl, idx + 1, start, end,
183
0
          dwfl->lookup_segndx[idx])))
184
0
        return true;
185
0
      ++idx;
186
0
      resized = true;
187
0
    }
188
0
  else if (dwfl->lookup_addr[idx] < start)
189
0
    {
190
      /* The module starts past the end of this segment.
191
         Add a new one.  */
192
0
      if (unlikely (insert (dwfl, idx + 1, start, end, -1)))
193
0
        return true;
194
0
      ++idx;
195
0
      resized = true;
196
0
    }
197
198
0
  if ((size_t) idx + 1 < dwfl->lookup_elts
199
0
      && end < dwfl->lookup_addr[idx + 1])
200
0
    {
201
      /* The module ends in the middle of this segment.  Split it.  */
202
0
      if (unlikely (insert (dwfl, idx + 1,
203
0
          end, dwfl->lookup_addr[idx + 1], -1)))
204
0
        return true;
205
0
      resized = true;
206
0
    }
207
208
0
  if (dwfl->lookup_module == NULL)
209
0
    {
210
0
      dwfl->lookup_module = calloc (dwfl->lookup_alloc,
211
0
            sizeof dwfl->lookup_module[0]);
212
0
      if (unlikely (dwfl->lookup_module == NULL))
213
0
        return true;
214
0
    }
215
216
  /* Cache a backpointer in the module.  */
217
0
  mod->segment = idx;
218
219
  /* Put MOD in the table for each segment that's inside it.  */
220
0
  do
221
0
    dwfl->lookup_module[idx++] = mod;
222
0
  while ((size_t) idx < dwfl->lookup_elts
223
0
         && dwfl->lookup_addr[idx] < end);
224
0
  assert (dwfl->lookup_module[mod->segment] == mod);
225
226
0
  if (resized && idx - 1 >= highest)
227
    /* Expanding the lookup tables invalidated backpointers
228
       we've already stored.  Reset those ones.  */
229
0
    fixup = true;
230
231
0
  highest = idx - 1;
232
0
  hint = (size_t) idx < dwfl->lookup_elts ? idx : -1;
233
0
      }
234
235
5.20k
  if (fixup)
236
    /* Reset backpointer indices invalidated by table insertions.  */
237
0
    for (size_t idx = 0; idx < dwfl->lookup_elts; ++idx)
238
0
      if (dwfl->lookup_module[idx] != NULL)
239
0
  dwfl->lookup_module[idx]->segment = idx;
240
241
5.20k
  return false;
242
5.20k
}
243
244
int
245
dwfl_addrsegment (Dwfl *dwfl, Dwarf_Addr address, Dwfl_Module **mod)
246
39.7k
{
247
39.7k
  if (unlikely (dwfl == NULL))
248
0
    return -1;
249
250
39.7k
  if (unlikely (dwfl->lookup_module == NULL)
251
39.7k
      && mod != NULL
252
5.20k
      && unlikely (reify_segments (dwfl)))
253
0
    {
254
0
      __libdwfl_seterrno (DWFL_E_NOMEM);
255
0
      return -1;
256
0
    }
257
258
39.7k
  int idx = lookup (dwfl, address, -1);
259
39.7k
  if (likely (mod != NULL))
260
5.20k
    {
261
5.20k
      if (unlikely (idx < 0) || unlikely (dwfl->lookup_module == NULL))
262
5.20k
  *mod = NULL;
263
0
      else
264
0
  {
265
0
    *mod = dwfl->lookup_module[idx];
266
267
    /* If this segment does not have a module, but the address is
268
       the upper boundary of the previous segment's module, use that.  */
269
0
    if (*mod == NULL && idx > 0 && dwfl->lookup_addr[idx] == address)
270
0
      {
271
0
        *mod = dwfl->lookup_module[idx - 1];
272
0
        if (*mod != NULL && (*mod)->high_addr != address)
273
0
    *mod = NULL;
274
0
      }
275
0
  }
276
5.20k
    }
277
278
39.7k
  if (likely (idx >= 0))
279
    /* Translate internal segment table index to user segment index.  */
280
39.2k
    idx = dwfl->lookup_segndx[idx];
281
282
39.7k
  return idx;
283
39.7k
}
284
INTDEF (dwfl_addrsegment)
285
286
int
287
dwfl_report_segment (Dwfl *dwfl, int ndx, const GElf_Phdr *phdr, GElf_Addr bias,
288
         const void *ident)
289
47.5k
{
290
  /* This was previously used for coalescing segments, but it was buggy since
291
     day one.  We don't use it anymore.  */
292
47.5k
  (void)ident;
293
294
47.5k
  if (dwfl == NULL)
295
0
    return -1;
296
297
47.5k
  if (ndx < 0)
298
0
    ndx = dwfl->next_segndx;
299
300
47.5k
  if (phdr->p_align > 1 && (dwfl->segment_align <= 1 ||
301
33.2k
          phdr->p_align < dwfl->segment_align))
302
10.8k
    dwfl->segment_align = phdr->p_align;
303
304
47.5k
  if (unlikely (dwfl->lookup_module != NULL))
305
0
    {
306
0
      free (dwfl->lookup_module);
307
0
      dwfl->lookup_module = NULL;
308
0
    }
309
310
47.5k
  GElf_Addr start = __libdwfl_segment_start (dwfl, bias + phdr->p_vaddr);
311
47.5k
  GElf_Addr end = __libdwfl_segment_end (dwfl,
312
47.5k
           bias + phdr->p_vaddr + phdr->p_memsz);
313
314
  /* Normally just appending keeps us sorted.  */
315
316
47.5k
  size_t i = dwfl->lookup_elts;
317
1.07M
  while (i > 0 && unlikely (start < dwfl->lookup_addr[i - 1]))
318
1.02M
    --i;
319
320
47.5k
  if (unlikely (insert (dwfl, i, start, end, ndx)))
321
0
    {
322
0
      __libdwfl_seterrno (DWFL_E_NOMEM);
323
0
      return -1;
324
0
    }
325
326
47.5k
  dwfl->next_segndx = ndx + 1;
327
328
47.5k
  return ndx;
329
47.5k
}
330
INTDEF (dwfl_report_segment)