Coverage Report

Created: 2023-08-28 06:31

/src/binutils-gdb/bfd/reloc16.c
Line
Count
Source (jump to first uncovered line)
1
/* 8 and 16 bit COFF relocation functions, for BFD.
2
   Copyright (C) 1990-2023 Free Software Foundation, Inc.
3
   Written by Cygnus Support.
4
5
   This file is part of BFD, the Binary File Descriptor library.
6
7
   This program is free software; you can redistribute it and/or modify
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   it under the terms of the GNU General Public License as published by
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   the Free Software Foundation; either version 3 of the License, or
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   (at your option) any later version.
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   This program is distributed in the hope that it will be useful,
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   but WITHOUT ANY WARRANTY; without even the implied warranty of
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   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
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   GNU General Public License for more details.
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   You should have received a copy of the GNU General Public License
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   along with this program; if not, write to the Free Software
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   Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
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   MA 02110-1301, USA.  */
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22
23
/* Most of this hacked by Steve Chamberlain <sac@cygnus.com>.  */
24
25
/* These routines are used by coff-z8k to do relocation.
26
27
   FIXME: This code should be rewritten to support the new COFF
28
   linker.  Basically, they need to deal with COFF relocs rather than
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   BFD generic relocs.  They should store the relocs in some location
30
   where coff_link_input_bfd can find them (and coff_link_input_bfd
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   should be changed to use this location rather than rereading the
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   file) (unless info->keep_memory is FALSE, in which case they should
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   free up the relocs after dealing with them).  */
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#include "sysdep.h"
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#include "bfd.h"
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#include "libbfd.h"
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#include "bfdlink.h"
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#include "genlink.h"
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#include "coff/internal.h"
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#include "libcoff.h"
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43
bfd_vma
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bfd_coff_reloc16_get_value (arelent *reloc,
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          struct bfd_link_info *link_info,
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          asection *input_section)
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14
{
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14
  bfd_vma value;
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14
  asymbol *symbol = *(reloc->sym_ptr_ptr);
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  /* A symbol holds a pointer to a section, and an offset from the
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     base of the section.  To relocate, we find where the section will
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     live in the output and add that in.  */
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54
14
  if (bfd_is_und_section (symbol->section)
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14
      || bfd_is_com_section (symbol->section))
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2
    {
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2
      struct bfd_link_hash_entry *h;
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      /* The symbol is undefined in this BFD.  Look it up in the
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   global linker hash table.  FIXME: This should be changed when
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   we convert this stuff to use a specific final_link function
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   and change the interface to bfd_relax_section to not require
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   the generic symbols.  */
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2
      h = bfd_wrapped_link_hash_lookup (input_section->owner, link_info,
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2
          bfd_asymbol_name (symbol),
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2
          false, false, true);
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2
      if (h != (struct bfd_link_hash_entry *) NULL
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2
    && (h->type == bfd_link_hash_defined
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0
        || h->type == bfd_link_hash_defweak))
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0
  value = (h->u.def.value
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0
     + h->u.def.section->output_section->vma
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0
     + h->u.def.section->output_offset);
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2
      else if (h != (struct bfd_link_hash_entry *) NULL
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2
         && h->type == bfd_link_hash_common)
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0
  value = h->u.c.size;
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2
      else if (h != (struct bfd_link_hash_entry *) NULL
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2
         && h->type == bfd_link_hash_undefweak)
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  /* This is a GNU extension.  */
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0
  value = 0;
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2
      else
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2
  {
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2
    (*link_info->callbacks->undefined_symbol)
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2
      (link_info, bfd_asymbol_name (symbol),
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2
       input_section->owner, input_section, reloc->address, true);
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2
    value = 0;
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2
  }
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2
    }
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12
  else
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12
    {
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12
      value = symbol->value
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12
  + symbol->section->output_offset
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12
  + symbol->section->output_section->vma;
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12
    }
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  /* Add the value contained in the relocation.  */
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14
  value += reloc->addend;
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98
14
  return value;
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14
}
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void
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bfd_perform_slip (bfd *abfd,
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      unsigned int slip,
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      asection *input_section,
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      bfd_vma value)
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0
{
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0
  asymbol **s;
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109
0
  s = _bfd_generic_link_get_symbols (abfd);
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0
  BFD_ASSERT (s != (asymbol **) NULL);
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  /* Find all symbols past this point, and make them know
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     what's happened.  */
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0
  while (*s)
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0
    {
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0
      asymbol *p = *s;
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0
      if (p->section == input_section)
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0
  {
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    /* This was pointing into this section, so mangle it.  */
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0
    if (p->value > value)
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0
      {
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0
        p->value -= slip;
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0
        if (p->udata.p != NULL)
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0
    {
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0
      struct generic_link_hash_entry *h;
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127
0
      h = (struct generic_link_hash_entry *) p->udata.p;
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0
      BFD_ASSERT (h->root.type == bfd_link_hash_defined
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0
            || h->root.type == bfd_link_hash_defweak);
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0
      h->root.u.def.value -= slip;
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0
      BFD_ASSERT (h->root.u.def.value == p->value);
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0
    }
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0
      }
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0
  }
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0
      s++;
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0
    }
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0
}
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bool
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bfd_coff_reloc16_relax_section (bfd *abfd,
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        asection *input_section,
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        struct bfd_link_info *link_info,
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        bool *again)
144
0
{
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  /* Get enough memory to hold the stuff.  */
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0
  bfd *input_bfd = input_section->owner;
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0
  unsigned *shrinks;
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0
  unsigned shrink = 0;
149
0
  long reloc_size = bfd_get_reloc_upper_bound (input_bfd, input_section);
150
0
  arelent **reloc_vector = NULL;
151
0
  long reloc_count;
152
153
0
  if (bfd_link_relocatable (link_info))
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0
    (*link_info->callbacks->einfo)
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0
      (_("%P%F: --relax and -r may not be used together\n"));
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157
  /* We only do global relaxation once.  It is not safe to do it multiple
158
     times (see discussion of the "shrinks" array below).  */
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0
  *again = false;
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161
0
  if (reloc_size < 0)
162
0
    return false;
163
164
0
  reloc_vector = (arelent **) bfd_malloc ((bfd_size_type) reloc_size);
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0
  if (!reloc_vector && reloc_size > 0)
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0
    return false;
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  /* Get the relocs and think about them.  */
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0
  reloc_count =
170
0
    bfd_canonicalize_reloc (input_bfd, input_section, reloc_vector,
171
0
          _bfd_generic_link_get_symbols (input_bfd));
172
0
  if (reloc_count < 0)
173
0
    {
174
0
      free (reloc_vector);
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0
      return false;
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0
    }
177
178
  /* The reloc16.c and related relaxing code is very simple, the price
179
     for that simplicity is we can only call this function once for
180
     each section.
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182
     So, to get the best results within that limitation, we do multiple
183
     relaxing passes over each section here.  That involves keeping track
184
     of the "shrink" at each reloc in the section.  This allows us to
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     accurately determine the relative location of two relocs within
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     this section.
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     In theory, if we kept the "shrinks" array for each section for the
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     entire link, we could use the generic relaxing code in the linker
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     and get better results, particularly for jsr->bsr and 24->16 bit
191
     memory reference relaxations.  */
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193
0
  if (reloc_count > 0)
194
0
    {
195
0
      int another_pass = 0;
196
0
      bfd_size_type amt;
197
198
      /* Allocate and initialize the shrinks array for this section.
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   The last element is used as an accumulator of shrinks.  */
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0
      amt = reloc_count + 1;
201
0
      amt *= sizeof (unsigned);
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0
      shrinks = (unsigned *) bfd_zmalloc (amt);
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      /* Loop until nothing changes in this section.  */
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0
      do
206
0
  {
207
0
    arelent **parent;
208
0
    unsigned int i;
209
0
    long j;
210
211
0
    another_pass = 0;
212
213
0
    for (i = 0, parent = reloc_vector; *parent; parent++, i++)
214
0
      {
215
        /* Let the target/machine dependent code examine each reloc
216
     in this section and attempt to shrink it.  */
217
0
        shrink = bfd_coff_reloc16_estimate (abfd, input_section, *parent,
218
0
              shrinks[i], link_info);
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220
        /* If it shrunk, note it in the shrinks array and set up for
221
     another pass.  */
222
0
        if (shrink != shrinks[i])
223
0
    {
224
0
      another_pass = 1;
225
0
      for (j = i + 1; j <= reloc_count; j++)
226
0
        shrinks[j] += shrink - shrinks[i];
227
0
    }
228
0
      }
229
0
  }
230
0
      while (another_pass);
231
232
0
      shrink = shrinks[reloc_count];
233
0
      free ((char *) shrinks);
234
0
    }
235
236
0
  input_section->rawsize = input_section->size;
237
0
  input_section->size -= shrink;
238
0
  free ((char *) reloc_vector);
239
0
  return true;
240
0
}
241
242
bfd_byte *
243
bfd_coff_reloc16_get_relocated_section_contents
244
  (bfd *in_abfd,
245
   struct bfd_link_info *link_info,
246
   struct bfd_link_order *link_order,
247
   bfd_byte *data,
248
   bool relocatable,
249
   asymbol **symbols)
250
76
{
251
  /* Get enough memory to hold the stuff.  */
252
76
  bfd *input_bfd = link_order->u.indirect.section->owner;
253
76
  asection *input_section = link_order->u.indirect.section;
254
76
  long reloc_size;
255
76
  arelent **reloc_vector;
256
76
  long reloc_count;
257
258
76
  reloc_size = bfd_get_reloc_upper_bound (input_bfd, input_section);
259
76
  if (reloc_size < 0)
260
18
    return NULL;
261
262
  /* If producing relocatable output, don't bother to relax.  */
263
58
  if (relocatable)
264
0
    return bfd_generic_get_relocated_section_contents (in_abfd, link_info,
265
0
                   link_order,
266
0
                   data, relocatable,
267
0
                   symbols);
268
269
  /* Read in the section.  */
270
58
  bfd_byte *orig_data = data;
271
58
  if (!bfd_get_full_section_contents (input_bfd, input_section, &data))
272
6
    return NULL;
273
274
52
  if (data == NULL)
275
1
    return NULL;
276
277
51
  if (reloc_size == 0)
278
0
    return data;
279
280
51
  reloc_vector = (arelent **) bfd_malloc (reloc_size);
281
51
  if (reloc_vector == NULL)
282
0
    goto error_return;
283
284
51
  reloc_count = bfd_canonicalize_reloc (input_bfd,
285
51
          input_section,
286
51
          reloc_vector,
287
51
          symbols);
288
51
  if (reloc_count < 0)
289
30
    goto error_return;
290
291
21
  if (reloc_count > 0)
292
21
    {
293
21
      arelent **parent = reloc_vector;
294
21
      arelent *reloc;
295
21
      size_t dst_address = 0;
296
21
      size_t src_address = 0;
297
21
      size_t run;
298
21
      size_t idx;
299
300
      /* Find how long a run we can do.  */
301
36
      while (dst_address < link_order->size)
302
32
  {
303
32
    reloc = *parent;
304
32
    if (reloc)
305
28
      {
306
        /* Note that the relaxing didn't tie up the addresses in the
307
     relocation, so we use the original address to work out the
308
     run of non-relocated data.  */
309
28
        if (reloc->address > link_order->size
310
28
      || reloc->address < src_address)
311
13
    {
312
13
      link_info->callbacks->einfo
313
        /* xgettext:c-format */
314
13
        (_("%X%P: %pB(%pA): relocation \"%pR\" goes out of range\n"),
315
13
         input_bfd, input_section, reloc);
316
13
      goto error_return;
317
13
    }
318
15
        run = reloc->address - src_address;
319
15
        parent++;
320
15
      }
321
4
    else
322
4
      {
323
4
        run = link_order->size - dst_address;
324
4
      }
325
326
    /* Copy the bytes.  */
327
674
    for (idx = 0; idx < run; idx++)
328
655
      data[dst_address++] = data[src_address++];
329
330
    /* Now do the relocation.  */
331
19
    if (reloc
332
19
        && !bfd_coff_reloc16_extra_cases (input_bfd, link_info,
333
19
            link_order, reloc, data,
334
19
            &src_address, &dst_address))
335
4
      goto error_return;
336
19
  }
337
21
    }
338
4
  free (reloc_vector);
339
4
  return data;
340
341
47
 error_return:
342
47
  free (reloc_vector);
343
47
  if (orig_data == NULL)
344
0
    free (data);
345
47
  return NULL;
346
21
}