Coverage Report

Created: 2025-08-29 06:09

/src/elfutils/libdwfl/segment.c
Line
Count
Source (jump to first uncovered line)
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/* Manage address space lookup table for libdwfl.
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   Copyright (C) 2008, 2009, 2010, 2013, 2015 Red Hat, Inc.
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   This file is part of elfutils.
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   This file is free software; you can redistribute it and/or modify
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   it under the terms of either
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     * the GNU Lesser General Public License as published by the Free
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       Software Foundation; either version 3 of the License, or (at
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       your option) any later version
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   or
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     * the GNU General Public License as published by the Free
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       Software Foundation; either version 2 of the License, or (at
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       your option) any later version
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   or both in parallel, as here.
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   elfutils is distributed in the hope that it will be useful, but
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   WITHOUT ANY WARRANTY; without even the implied warranty of
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   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the GNU
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   General Public License for more details.
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   You should have received copies of the GNU General Public License and
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   the GNU Lesser General Public License along with this program.  If
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   not, see <http://www.gnu.org/licenses/>.  */
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#ifdef HAVE_CONFIG_H
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# include <config.h>
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#endif
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#include "libdwflP.h"
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GElf_Addr
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internal_function
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__libdwfl_segment_start (Dwfl *dwfl, GElf_Addr start)
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43.0k
{
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43.0k
  if (dwfl->segment_align > 1)
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40.1k
    start &= -dwfl->segment_align;
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43.0k
  return start;
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43.0k
}
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GElf_Addr
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internal_function
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__libdwfl_segment_end (Dwfl *dwfl, GElf_Addr end)
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43.0k
{
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43.0k
  if (dwfl->segment_align > 1)
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40.1k
    end = (end + dwfl->segment_align - 1) & -dwfl->segment_align;
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43.0k
  return end;
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43.0k
}
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static bool
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insert (Dwfl *dwfl, size_t i, GElf_Addr start, GElf_Addr end, int segndx)
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43.0k
{
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43.0k
  bool need_start = (i == 0 || dwfl->lookup_addr[i - 1] != start);
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43.0k
  bool need_end = (i + 1 >= dwfl->lookup_elts
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43.0k
       || dwfl->lookup_addr[i + 1] != end);
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43.0k
  size_t need = need_start + need_end;
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43.0k
  if (need == 0)
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2.17k
    return false;
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40.8k
  if (dwfl->lookup_alloc - dwfl->lookup_elts < need)
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11.3k
    {
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11.3k
      size_t n = dwfl->lookup_alloc == 0 ? 16 : dwfl->lookup_alloc * 2;
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11.3k
      GElf_Addr *naddr = realloc (dwfl->lookup_addr, sizeof naddr[0] * n);
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11.3k
      if (unlikely (naddr == NULL))
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0
  return true;
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11.3k
      int *nsegndx = realloc (dwfl->lookup_segndx, sizeof nsegndx[0] * n);
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11.3k
      if (unlikely (nsegndx == NULL))
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0
  {
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0
    if (naddr != dwfl->lookup_addr)
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0
      free (naddr);
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0
    return true;
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0
  }
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11.3k
      dwfl->lookup_alloc = n;
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11.3k
      dwfl->lookup_addr = naddr;
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11.3k
      dwfl->lookup_segndx = nsegndx;
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11.3k
      if (dwfl->lookup_module != NULL)
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0
  {
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    /* 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,
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0
           sizeof dwfl->lookup_module[0] * n);
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0
    if (unlikely (dwfl->lookup_module == NULL))
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0
      {
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0
        free (old);
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0
        return true;
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0
      }
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0
  }
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11.3k
    }
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40.8k
  if (unlikely (i < dwfl->lookup_elts))
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22.7k
    {
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22.7k
      const size_t move = dwfl->lookup_elts - i;
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22.7k
      memmove (&dwfl->lookup_addr[i + need], &dwfl->lookup_addr[i],
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22.7k
         move * sizeof dwfl->lookup_addr[0]);
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22.7k
      memmove (&dwfl->lookup_segndx[i + need], &dwfl->lookup_segndx[i],
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22.7k
         move * sizeof dwfl->lookup_segndx[0]);
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22.7k
      if (dwfl->lookup_module != NULL)
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0
  memmove (&dwfl->lookup_module[i + need], &dwfl->lookup_module[i],
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0
     move * sizeof dwfl->lookup_module[0]);
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22.7k
    }
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40.8k
  if (need_start)
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33.9k
    {
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33.9k
      dwfl->lookup_addr[i] = start;
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33.9k
      dwfl->lookup_segndx[i] = segndx;
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33.9k
      if (dwfl->lookup_module != NULL)
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0
  dwfl->lookup_module[i] = NULL;
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33.9k
      ++i;
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33.9k
    }
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6.84k
  else
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6.84k
    dwfl->lookup_segndx[i - 1] = segndx;
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40.8k
  if (need_end)
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40.6k
    {
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40.6k
      dwfl->lookup_addr[i] = end;
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40.6k
      dwfl->lookup_segndx[i] = -1;
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40.6k
      if (dwfl->lookup_module != NULL)
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0
  dwfl->lookup_module[i] = NULL;
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40.6k
    }
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40.8k
  dwfl->lookup_elts += need;
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40.8k
  return false;
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40.8k
}
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static int
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lookup (Dwfl *dwfl, GElf_Addr address, int hint)
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53.9k
{
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53.9k
  if (hint >= 0
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53.9k
      && address >= dwfl->lookup_addr[hint]
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53.9k
      && ((size_t) hint + 1 == dwfl->lookup_elts
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0
    || address < dwfl->lookup_addr[hint + 1]))
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0
    return hint;
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  /* Do binary search on the array indexed by module load address.  */
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53.9k
  size_t l = 0, u = dwfl->lookup_elts;
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260k
  while (l < u)
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259k
    {
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259k
      size_t idx = (l + u) / 2;
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259k
      if (address < dwfl->lookup_addr[idx])
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179k
  u = idx;
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80.2k
      else
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80.2k
  {
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80.2k
    l = idx + 1;
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80.2k
    if (l == dwfl->lookup_elts || address < dwfl->lookup_addr[l])
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53.4k
      return idx;
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80.2k
  }
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259k
    }
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484
  return -1;
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53.9k
}
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static bool
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reify_segments (Dwfl *dwfl)
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10.1k
{
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10.1k
  int hint = -1;
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10.1k
  int highest = -1;
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10.1k
  bool fixup = false;
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10.1k
  for (Dwfl_Module *mod = dwfl->modulelist; mod != NULL; mod = mod->next)
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0
    if (! mod->gc)
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0
      {
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0
  const GElf_Addr start = __libdwfl_segment_start (dwfl, mod->low_addr);
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0
  const GElf_Addr end = __libdwfl_segment_end (dwfl, mod->high_addr);
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0
  bool resized = false;
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0
  int idx = lookup (dwfl, start, hint);
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0
  if (unlikely (idx < 0))
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0
    {
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      /* Module starts below any segment.  Insert a low one.  */
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0
      if (unlikely (insert (dwfl, 0, start, end, -1)))
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0
        return true;
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0
      idx = 0;
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0
      resized = true;
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0
    }
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0
  else if (dwfl->lookup_addr[idx] > start)
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0
    {
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      /* The module starts in the middle of this segment.  Split it.  */
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0
      if (unlikely (insert (dwfl, idx + 1, start, end,
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0
          dwfl->lookup_segndx[idx])))
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0
        return true;
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0
      ++idx;
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0
      resized = true;
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0
    }
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0
  else if (dwfl->lookup_addr[idx] < start)
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0
    {
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      /* The module starts past the end of this segment.
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         Add a new one.  */
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0
      if (unlikely (insert (dwfl, idx + 1, start, end, -1)))
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0
        return true;
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0
      ++idx;
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0
      resized = true;
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0
    }
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0
  if ((size_t) idx + 1 < dwfl->lookup_elts
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0
      && end < dwfl->lookup_addr[idx + 1])
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0
    {
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      /* The module ends in the middle of this segment.  Split it.  */
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0
      if (unlikely (insert (dwfl, idx + 1,
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0
          end, dwfl->lookup_addr[idx + 1], -1)))
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0
        return true;
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0
      resized = true;
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0
    }
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0
  if (dwfl->lookup_module == NULL)
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0
    {
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0
      dwfl->lookup_module = calloc (dwfl->lookup_alloc,
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0
            sizeof dwfl->lookup_module[0]);
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0
      if (unlikely (dwfl->lookup_module == NULL))
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0
        return true;
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0
    }
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  /* Cache a backpointer in the module.  */
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0
  mod->segment = idx;
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  /* Put MOD in the table for each segment that's inside it.  */
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0
  do
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0
    dwfl->lookup_module[idx++] = mod;
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0
  while ((size_t) idx < dwfl->lookup_elts
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0
         && dwfl->lookup_addr[idx] < end);
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0
  assert (dwfl->lookup_module[mod->segment] == mod);
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0
  if (resized && idx - 1 >= highest)
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    /* Expanding the lookup tables invalidated backpointers
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       we've already stored.  Reset those ones.  */
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0
    fixup = true;
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0
  highest = idx - 1;
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0
  hint = (size_t) idx < dwfl->lookup_elts ? idx : -1;
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0
      }
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10.1k
  if (fixup)
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    /* Reset backpointer indices invalidated by table insertions.  */
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0
    for (size_t idx = 0; idx < dwfl->lookup_elts; ++idx)
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0
      if (dwfl->lookup_module[idx] != NULL)
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0
  dwfl->lookup_module[idx]->segment = idx;
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10.1k
  return false;
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10.1k
}
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int
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dwfl_addrsegment (Dwfl *dwfl, Dwarf_Addr address, Dwfl_Module **mod)
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53.9k
{
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53.9k
  if (unlikely (dwfl == NULL))
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0
    return -1;
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53.9k
  if (unlikely (dwfl->lookup_module == NULL)
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53.9k
      && mod != NULL
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53.9k
      && unlikely (reify_segments (dwfl)))
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0
    {
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0
      __libdwfl_seterrno (DWFL_E_NOMEM);
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0
      return -1;
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0
    }
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53.9k
  int idx = lookup (dwfl, address, -1);
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53.9k
  if (likely (mod != NULL))
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10.1k
    {
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10.1k
      if (unlikely (idx < 0) || unlikely (dwfl->lookup_module == NULL))
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10.1k
  *mod = NULL;
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0
      else
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0
  {
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0
    *mod = dwfl->lookup_module[idx];
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    /* 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
      {
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0
        *mod = dwfl->lookup_module[idx - 1];
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0
        if (*mod != NULL && (*mod)->high_addr != address)
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0
    *mod = NULL;
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0
      }
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0
  }
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10.1k
    }
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53.9k
  if (likely (idx >= 0))
279
    /* Translate internal segment table index to user segment index.  */
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53.4k
    idx = dwfl->lookup_segndx[idx];
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53.9k
  return idx;
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53.9k
}
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INTDEF (dwfl_addrsegment)
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286
int
287
dwfl_report_segment (Dwfl *dwfl, int ndx, const GElf_Phdr *phdr, GElf_Addr bias,
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         const void *ident)
289
43.0k
{
290
  /* This was previously used for coalescing segments, but it was buggy since
291
     day one.  We don't use it anymore.  */
292
43.0k
  (void)ident;
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43.0k
  if (dwfl == NULL)
295
0
    return -1;
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297
43.0k
  if (ndx < 0)
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0
    ndx = dwfl->next_segndx;
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43.0k
  if (phdr->p_align > 1 && (dwfl->segment_align <= 1 ||
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36.3k
          phdr->p_align < dwfl->segment_align))
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11.2k
    dwfl->segment_align = phdr->p_align;
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43.0k
  if (unlikely (dwfl->lookup_module != NULL))
305
0
    {
306
0
      free (dwfl->lookup_module);
307
0
      dwfl->lookup_module = NULL;
308
0
    }
309
310
43.0k
  GElf_Addr start = __libdwfl_segment_start (dwfl, bias + phdr->p_vaddr);
311
43.0k
  GElf_Addr end = __libdwfl_segment_end (dwfl,
312
43.0k
           bias + phdr->p_vaddr + phdr->p_memsz);
313
314
  /* Normally just appending keeps us sorted.  */
315
316
43.0k
  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
43.0k
  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
43.0k
  dwfl->next_segndx = ndx + 1;
327
328
43.0k
  return ndx;
329
43.0k
}
330
INTDEF (dwfl_report_segment)