Coverage Report

Created: 2026-07-12 09:22

next uncovered line (L), next uncovered region (R), next uncovered branch (B)
/src/binutils-gdb/bfd/aoutx.h
Line
Count
Source
1
/* BFD semi-generic back-end for a.out binaries.
2
   Copyright (C) 1990-2026 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
8
   it under the terms of the GNU General Public License as published by
9
   the Free Software Foundation; either version 3 of the License, or
10
   (at your option) any later version.
11
12
   This program is distributed in the hope that it will be useful,
13
   but WITHOUT ANY WARRANTY; without even the implied warranty of
14
   MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE.  See the
15
   GNU General Public License for more details.
16
17
   You should have received a copy of the GNU General Public License
18
   along with this program; if not, write to the Free Software
19
   Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
20
   MA 02110-1301, USA.  */
21
22
/*
23
SECTION
24
  a.out backends
25
26
DESCRIPTION
27
28
  BFD supports a number of different flavours of a.out format,
29
  though the major differences are only the sizes of the
30
  structures on disk, and the shape of the relocation
31
  information.
32
33
  The support is split into a basic support file @file{aoutx.h}
34
  and other files which derive functions from the base. One
35
  derivation file is @file{aoutf1.h} (for a.out flavour 1), and
36
  adds to the basic a.out functions support for sun3, sun4, and
37
  386 a.out files, to create a target jump vector for a specific
38
  target.
39
40
  This information is further split out into more specific files
41
  for each machine, including @file{sunos.c} for sun3 and sun4,
42
  and @file{demo64.c} for a demonstration of a 64 bit a.out format.
43
44
  The base file @file{aoutx.h} defines general mechanisms for
45
  reading and writing records to and from disk and various
46
  other methods which BFD requires. It is included by
47
  @file{aout32.c} and @file{aout64.c} to form the names
48
  <<aout_32_swap_exec_header_in>>, <<aout_64_swap_exec_header_in>>, etc.
49
50
  As an example, this is what goes on to make the back end for a
51
  sun4, from @file{aout32.c}:
52
53
| #define ARCH_SIZE 32
54
| #include "aoutx.h"
55
56
  Which exports names:
57
58
| ...
59
| aout_32_canonicalize_reloc
60
| aout_32_find_nearest_line
61
| aout_32_get_lineno
62
| aout_32_get_reloc_upper_bound
63
| ...
64
65
  from @file{sunos.c}:
66
67
| #define TARGET_NAME "a.out-sunos-big"
68
| #define VECNAME    sparc_aout_sunos_be_vec
69
| #include "aoutf1.h"
70
71
  requires all the names from @file{aout32.c}, and produces the jump vector
72
73
| sparc_aout_sunos_be_vec
74
75
  The file @file{host-aout.c} is a special case.  It is for a large set
76
  of hosts that use ``more or less standard'' a.out files, and
77
  for which cross-debugging is not interesting.  It uses the
78
  standard 32-bit a.out support routines, but determines the
79
  file offsets and addresses of the text, data, and BSS
80
  sections, the machine architecture and machine type, and the
81
  entry point address, in a host-dependent manner.  Once these
82
  values have been determined, generic code is used to handle
83
  the  object file.
84
85
  When porting it to run on a new system, you must supply:
86
87
|        HOST_PAGE_SIZE
88
|        HOST_SEGMENT_SIZE
89
|        HOST_MACHINE_ARCH       (optional)
90
|        HOST_MACHINE_MACHINE    (optional)
91
|        HOST_TEXT_START_ADDR
92
|        HOST_STACK_END_ADDR
93
94
  in the file @file{../include/sys/h-@var{XXX}.h} (for your host).  These
95
  values, plus the structures and macros defined in @file{a.out.h} on
96
  your host system, will produce a BFD target that will access
97
  ordinary a.out files on your host. To configure a new machine
98
  to use @file{host-aout.c}, specify:
99
100
| TDEFAULTS = -DDEFAULT_VECTOR=host_aout_big_vec
101
| TDEPFILES= host-aout.o trad-core.o
102
103
  in the @file{config/@var{XXX}.mt} file, and modify @file{configure.ac}
104
  to use the
105
  @file{@var{XXX}.mt} file (by setting "<<bfd_target=XXX>>") when your
106
  configuration is selected.  */
107
108
/* Some assumptions:
109
   * Any BFD with D_PAGED set is ZMAGIC, and vice versa.
110
     Doesn't matter what the setting of WP_TEXT is on output, but it'll
111
     get set on input.
112
   * Any BFD with D_PAGED clear and WP_TEXT set is NMAGIC.
113
   * Any BFD with both flags clear is OMAGIC.
114
   (Just want to make these explicit, so the conditions tested in this
115
   file make sense if you're more familiar with a.out than with BFD.)  */
116
117
692
#define KEEPIT udata.i
118
119
#include "sysdep.h"
120
#include <limits.h>
121
#include "bfd.h"
122
#include "safe-ctype.h"
123
#include "bfdlink.h"
124
125
#include "libaout.h"
126
#include "libbfd.h"
127
#include "aout/aout64.h"
128
#include "aout/stab_gnu.h"
129
#include "aout/ar.h"
130
131
#ifdef BMAGIC
132
0
#define N_IS_BMAGIC(x) (N_MAGIC (x) == BMAGIC)
133
#else
134
#define N_IS_BMAGIC(x) (0)
135
#endif
136
137
#ifdef QMAGIC
138
13
#define N_SET_QMAGIC(x) N_SET_MAGIC (x, QMAGIC)
139
#else
140
#define N_SET_QMAGIC(x) do { /**/ } while (0)
141
#endif
142
143
/*
144
SUBSECTION
145
  Relocations
146
147
DESCRIPTION
148
  The file @file{aoutx.h} provides for both the @emph{standard}
149
  and @emph{extended} forms of a.out relocation records.
150
151
  The standard records contain only an address, a symbol index,
152
  and a type field.  The extended records also have a full
153
  integer for an addend.  */
154
155
#ifndef CTOR_TABLE_RELOC_HOWTO
156
#define CTOR_TABLE_RELOC_IDX 2
157
#define CTOR_TABLE_RELOC_HOWTO(BFD)         \
158
  ((obj_reloc_entry_size (BFD) == RELOC_EXT_SIZE      \
159
    ? howto_table_ext : howto_table_std)        \
160
   + CTOR_TABLE_RELOC_IDX)
161
#endif
162
163
#ifndef MY_swap_std_reloc_in
164
2.39k
#define MY_swap_std_reloc_in NAME (aout, swap_std_reloc_in)
165
#endif
166
167
#ifndef MY_swap_ext_reloc_in
168
0
#define MY_swap_ext_reloc_in NAME (aout, swap_ext_reloc_in)
169
#endif
170
171
#ifndef MY_swap_std_reloc_out
172
43
#define MY_swap_std_reloc_out NAME (aout, swap_std_reloc_out)
173
#endif
174
175
#ifndef MY_swap_ext_reloc_out
176
0
#define MY_swap_ext_reloc_out NAME (aout, swap_ext_reloc_out)
177
#endif
178
179
#ifndef MY_final_link_relocate
180
0
#define MY_final_link_relocate _bfd_final_link_relocate
181
#endif
182
183
#ifndef MY_relocate_contents
184
0
#define MY_relocate_contents _bfd_relocate_contents
185
#endif
186
187
0
#define howto_table_ext NAME (aout, ext_howto_table)
188
1.98k
#define howto_table_std NAME (aout, std_howto_table)
189
190
reloc_howto_type howto_table_ext[] =
191
{
192
  /*   Type       rs   size bsz  pcrel bitpos ovrf      sf name    part_inpl readmask setmask pcdone.  */
193
  HOWTO (RELOC_8, 0,  1,  8,  false, 0, complain_overflow_bitfield, 0, "8",     false, 0, 0x000000ff, false),
194
  HOWTO (RELOC_16,  0,  2,  16, false, 0, complain_overflow_bitfield, 0, "16",      false, 0, 0x0000ffff, false),
195
  HOWTO (RELOC_32,  0,  4,  32, false, 0, complain_overflow_bitfield, 0, "32",      false, 0, 0xffffffff, false),
196
  HOWTO (RELOC_DISP8, 0,  1,  8,  true,  0, complain_overflow_signed,   0, "DISP8",     false, 0, 0x000000ff, false),
197
  HOWTO (RELOC_DISP16,  0,  2,  16, true,  0, complain_overflow_signed,   0, "DISP16",      false, 0, 0x0000ffff, false),
198
  HOWTO (RELOC_DISP32,  0,  4,  32, true,  0, complain_overflow_signed,   0, "DISP32",      false, 0, 0xffffffff, false),
199
  HOWTO (RELOC_WDISP30, 2,  4,  30, true,  0, complain_overflow_signed,   0, "WDISP30",     false, 0, 0x3fffffff, false),
200
  HOWTO (RELOC_WDISP22, 2,  4,  22, true,  0, complain_overflow_signed,   0, "WDISP22",     false, 0, 0x003fffff, false),
201
  HOWTO (RELOC_HI22,   10,  4,  22, false, 0, complain_overflow_bitfield, 0, "HI22",      false, 0, 0x003fffff, false),
202
  HOWTO (RELOC_22,  0,  4,  22, false, 0, complain_overflow_bitfield, 0, "22",      false, 0, 0x003fffff, false),
203
  HOWTO (RELOC_13,  0,  4,  13, false, 0, complain_overflow_bitfield, 0, "13",      false, 0, 0x00001fff, false),
204
  HOWTO (RELOC_LO10,  0,  4,  10, false, 0, complain_overflow_dont,   0, "LO10",      false, 0, 0x000003ff, false),
205
  HOWTO (RELOC_SFA_BASE,0,  4,  32, false, 0, complain_overflow_bitfield, 0, "SFA_BASE",    false, 0, 0xffffffff, false),
206
  HOWTO (RELOC_SFA_OFF13,0, 4,  32, false, 0, complain_overflow_bitfield, 0, "SFA_OFF13",   false, 0, 0xffffffff, false),
207
  HOWTO (RELOC_BASE10,  0,  4,  10, false, 0, complain_overflow_dont,   0, "BASE10",      false, 0, 0x000003ff, false),
208
  HOWTO (RELOC_BASE13,  0,  4,  13, false, 0, complain_overflow_signed,   0, "BASE13",      false, 0, 0x00001fff, false),
209
  HOWTO (RELOC_BASE22, 10,  4,  22, false, 0, complain_overflow_bitfield, 0, "BASE22",      false, 0, 0x003fffff, false),
210
  HOWTO (RELOC_PC10,  0,  4,  10, true,  0, complain_overflow_dont,   0, "PC10",      false, 0, 0x000003ff, true),
211
  HOWTO (RELOC_PC22,   10,  4,  22, true,  0, complain_overflow_signed,   0, "PC22",      false, 0, 0x003fffff, true),
212
  HOWTO (RELOC_JMP_TBL, 2,  4,  30, true,  0, complain_overflow_signed,   0, "JMP_TBL",     false, 0, 0x3fffffff, false),
213
  HOWTO (RELOC_SEGOFF16,0,  4,  0,  false, 0, complain_overflow_bitfield, 0, "SEGOFF16",    false, 0, 0x00000000, false),
214
  HOWTO (RELOC_GLOB_DAT,0,  4,  0,  false, 0, complain_overflow_bitfield, 0, "GLOB_DAT",    false, 0, 0x00000000, false),
215
  HOWTO (RELOC_JMP_SLOT,0,  4,  0,  false, 0, complain_overflow_bitfield, 0, "JMP_SLOT",    false, 0, 0x00000000, false),
216
  HOWTO (RELOC_RELATIVE,0,  4,  0,  false, 0, complain_overflow_bitfield, 0, "RELATIVE",    false, 0, 0x00000000, false),
217
  HOWTO (0,   0,  0,  0,  false, 0, complain_overflow_dont,   0, "R_SPARC_NONE",false, 0, 0x00000000, true),
218
  HOWTO (0,   0,  0,  0,  false, 0, complain_overflow_dont,   0, "R_SPARC_NONE",false, 0, 0x00000000, true),
219
0
#define RELOC_SPARC_REV32 RELOC_WDISP19
220
  HOWTO (RELOC_SPARC_REV32, 0, 4, 32, false, 0, complain_overflow_dont,   0,"R_SPARC_REV32",false, 0, 0xffffffff, false),
221
};
222
223
/* Convert standard reloc records to "arelent" format (incl byte swap).  */
224
225
reloc_howto_type howto_table_std[] =
226
{
227
  /* type        rs size bsz  pcrel bitpos ovrf       sf name     part_inpl readmask  setmask    pcdone.  */
228
HOWTO ( 0,         0,  1, 8,  false, 0, complain_overflow_bitfield,0,"8",   true, 0x000000ff,0x000000ff, false),
229
HOWTO ( 1,         0,  2, 16, false, 0, complain_overflow_bitfield,0,"16",  true, 0x0000ffff,0x0000ffff, false),
230
HOWTO ( 2,         0,  4, 32, false, 0, complain_overflow_bitfield,0,"32",  true, 0xffffffff,0xffffffff, false),
231
HOWTO ( 3,         0,  8, 64, false, 0, complain_overflow_bitfield,0,"64",  true, 0xdeaddead,0xdeaddead, false),
232
HOWTO ( 4,         0,  1, 8,  true,  0, complain_overflow_signed,  0,"DISP8", true, 0x000000ff,0x000000ff, false),
233
HOWTO ( 5,         0,  2, 16, true,  0, complain_overflow_signed,  0,"DISP16",  true, 0x0000ffff,0x0000ffff, false),
234
HOWTO ( 6,         0,  4, 32, true,  0, complain_overflow_signed,  0,"DISP32",  true, 0xffffffff,0xffffffff, false),
235
HOWTO ( 7,         0,  8, 64, true,  0, complain_overflow_signed,  0,"DISP64",  true, 0xfeedface,0xfeedface, false),
236
HOWTO ( 8,         0,  4,  0, false, 0, complain_overflow_bitfield,0,"GOT_REL", false,         0,0x00000000, false),
237
HOWTO ( 9,         0,  2, 16, false, 0, complain_overflow_bitfield,0,"BASE16",  false,0xffffffff,0xffffffff, false),
238
HOWTO (10,         0,  4, 32, false, 0, complain_overflow_bitfield,0,"BASE32",  false,0xffffffff,0xffffffff, false),
239
EMPTY_HOWTO (-1),
240
EMPTY_HOWTO (-1),
241
EMPTY_HOWTO (-1),
242
EMPTY_HOWTO (-1),
243
EMPTY_HOWTO (-1),
244
  HOWTO (16,         0,  4,  0, false, 0, complain_overflow_bitfield,0,"JMP_TABLE", false,         0,0x00000000, false),
245
EMPTY_HOWTO (-1),
246
EMPTY_HOWTO (-1),
247
EMPTY_HOWTO (-1),
248
EMPTY_HOWTO (-1),
249
EMPTY_HOWTO (-1),
250
EMPTY_HOWTO (-1),
251
EMPTY_HOWTO (-1),
252
EMPTY_HOWTO (-1),
253
EMPTY_HOWTO (-1),
254
EMPTY_HOWTO (-1),
255
EMPTY_HOWTO (-1),
256
EMPTY_HOWTO (-1),
257
EMPTY_HOWTO (-1),
258
EMPTY_HOWTO (-1),
259
EMPTY_HOWTO (-1),
260
  HOWTO (32,         0,  4,  0, false, 0, complain_overflow_bitfield,0,"RELATIVE",  false,         0,0x00000000, false),
261
EMPTY_HOWTO (-1),
262
EMPTY_HOWTO (-1),
263
EMPTY_HOWTO (-1),
264
EMPTY_HOWTO (-1),
265
EMPTY_HOWTO (-1),
266
EMPTY_HOWTO (-1),
267
EMPTY_HOWTO (-1),
268
  HOWTO (40,         0,  4,  0, false, 0, complain_overflow_bitfield,0,"BASEREL", false,         0,0x00000000, false),
269
};
270
271
2.39k
#define TABLE_SIZE(TABLE) (sizeof (TABLE) / sizeof (TABLE[0]))
272
273
reloc_howto_type *
274
NAME (aout, reloc_type_lookup) (bfd *abfd, bfd_reloc_code_real_type code)
275
0
{
276
0
#define EXT(i, j) case i: return & howto_table_ext [j]
277
0
#define STD(i, j) case i: return & howto_table_std [j]
278
0
  int ext = obj_reloc_entry_size (abfd) == RELOC_EXT_SIZE;
279
280
0
  if (code == BFD_RELOC_CTOR)
281
0
    switch (bfd_arch_bits_per_address (abfd))
282
0
      {
283
0
      case 32:
284
0
  code = BFD_RELOC_32;
285
0
  break;
286
0
      case 64:
287
0
  code = BFD_RELOC_64;
288
0
  break;
289
0
      }
290
291
0
  if (ext)
292
0
    switch (code)
293
0
      {
294
0
  EXT (BFD_RELOC_8, 0);
295
0
  EXT (BFD_RELOC_16, 1);
296
0
  EXT (BFD_RELOC_32, 2);
297
0
  EXT (BFD_RELOC_HI22, 8);
298
0
  EXT (BFD_RELOC_LO10, 11);
299
0
  EXT (BFD_RELOC_32_PCREL_S2, 6);
300
0
  EXT (BFD_RELOC_SPARC_WDISP22, 7);
301
0
  EXT (BFD_RELOC_SPARC13, 10);
302
0
  EXT (BFD_RELOC_SPARC_GOT10, 14);
303
0
  EXT (BFD_RELOC_SPARC_BASE13, 15);
304
0
  EXT (BFD_RELOC_SPARC_GOT13, 15);
305
0
  EXT (BFD_RELOC_SPARC_GOT22, 16);
306
0
  EXT (BFD_RELOC_SPARC_PC10, 17);
307
0
  EXT (BFD_RELOC_SPARC_PC22, 18);
308
0
  EXT (BFD_RELOC_SPARC_WPLT30, 19);
309
0
  EXT (BFD_RELOC_SPARC_REV32, 26);
310
0
      default:
311
0
  return NULL;
312
0
      }
313
0
  else
314
    /* std relocs.  */
315
0
    switch (code)
316
0
      {
317
0
  STD (BFD_RELOC_8, 0);
318
0
  STD (BFD_RELOC_16, 1);
319
0
  STD (BFD_RELOC_32, 2);
320
0
  STD (BFD_RELOC_8_PCREL, 4);
321
0
  STD (BFD_RELOC_16_PCREL, 5);
322
0
  STD (BFD_RELOC_32_PCREL, 6);
323
0
  STD (BFD_RELOC_16_BASEREL, 9);
324
0
  STD (BFD_RELOC_32_BASEREL, 10);
325
0
      default:
326
0
  return NULL;
327
0
      }
328
0
}
Unexecuted instantiation: cris_aout_32_reloc_type_lookup
Unexecuted instantiation: ns32kaout_32_reloc_type_lookup
Unexecuted instantiation: aout_32_reloc_type_lookup
329
330
reloc_howto_type *
331
NAME (aout, reloc_name_lookup) (bfd *abfd, const char *r_name)
332
0
{
333
0
  unsigned int i, size;
334
0
  reloc_howto_type *howto_table;
335
336
0
  if (obj_reloc_entry_size (abfd) == RELOC_EXT_SIZE)
337
0
    {
338
0
      howto_table = howto_table_ext;
339
0
      size = sizeof (howto_table_ext) / sizeof (howto_table_ext[0]);
340
0
    }
341
0
  else
342
0
    {
343
0
      howto_table = howto_table_std;
344
0
      size = sizeof (howto_table_std) / sizeof (howto_table_std[0]);
345
0
    }
346
347
0
  for (i = 0; i < size; i++)
348
0
    if (howto_table[i].name != NULL
349
0
  && strcasecmp (howto_table[i].name, r_name) == 0)
350
0
      return &howto_table[i];
351
352
0
  return NULL;
353
0
}
Unexecuted instantiation: cris_aout_32_reloc_name_lookup
Unexecuted instantiation: ns32kaout_32_reloc_name_lookup
Unexecuted instantiation: aout_32_reloc_name_lookup
354
355
/*
356
SUBSECTION
357
  Internal entry points
358
359
DESCRIPTION
360
  @file{aoutx.h} exports several routines for accessing the
361
  contents of an a.out file, which are gathered and exported in
362
  turn by various format specific files (eg sunos.c).
363
*/
364
365
/*
366
FUNCTION
367
   aout_@var{size}_swap_exec_header_in
368
369
SYNOPSIS
370
  void aout_@var{size}_swap_exec_header_in,
371
     (bfd *abfd,
372
      struct external_exec *bytes,
373
      struct internal_exec *execp);
374
375
DESCRIPTION
376
  Swap the information in an executable header @var{raw_bytes} taken
377
  from a raw byte stream memory image into the internal exec header
378
  structure @var{execp}.
379
*/
380
381
#ifndef NAME_swap_exec_header_in
382
void
383
NAME (aout, swap_exec_header_in) (bfd *abfd,
384
          struct external_exec *bytes,
385
          struct internal_exec *execp)
386
11.5k
{
387
  /* The internal_exec structure has some fields that are unused in this
388
     configuration (IE for i960), so ensure that all such uninitialized
389
     fields are zero'd out.  There are places where two of these structs
390
     are memcmp'd, and thus the contents do matter.  */
391
11.5k
  memset ((void *) execp, 0, sizeof (struct internal_exec));
392
  /* Now fill in fields in the execp, from the bytes in the raw data.  */
393
11.5k
  execp->a_info   = H_GET_32 (abfd, bytes->e_info);
394
11.5k
  execp->a_text   = GET_WORD (abfd, bytes->e_text);
395
11.5k
  execp->a_data   = GET_WORD (abfd, bytes->e_data);
396
11.5k
  execp->a_bss    = GET_WORD (abfd, bytes->e_bss);
397
11.5k
  execp->a_syms   = GET_WORD (abfd, bytes->e_syms);
398
11.5k
  execp->a_entry  = GET_WORD (abfd, bytes->e_entry);
399
11.5k
  execp->a_trsize = GET_WORD (abfd, bytes->e_trsize);
400
11.5k
  execp->a_drsize = GET_WORD (abfd, bytes->e_drsize);
401
11.5k
}
cris_aout_32_swap_exec_header_in
Line
Count
Source
386
1.06k
{
387
  /* The internal_exec structure has some fields that are unused in this
388
     configuration (IE for i960), so ensure that all such uninitialized
389
     fields are zero'd out.  There are places where two of these structs
390
     are memcmp'd, and thus the contents do matter.  */
391
1.06k
  memset ((void *) execp, 0, sizeof (struct internal_exec));
392
  /* Now fill in fields in the execp, from the bytes in the raw data.  */
393
1.06k
  execp->a_info   = H_GET_32 (abfd, bytes->e_info);
394
1.06k
  execp->a_text   = GET_WORD (abfd, bytes->e_text);
395
1.06k
  execp->a_data   = GET_WORD (abfd, bytes->e_data);
396
1.06k
  execp->a_bss    = GET_WORD (abfd, bytes->e_bss);
397
1.06k
  execp->a_syms   = GET_WORD (abfd, bytes->e_syms);
398
1.06k
  execp->a_entry  = GET_WORD (abfd, bytes->e_entry);
399
1.06k
  execp->a_trsize = GET_WORD (abfd, bytes->e_trsize);
400
1.06k
  execp->a_drsize = GET_WORD (abfd, bytes->e_drsize);
401
1.06k
}
ns32kaout_32_swap_exec_header_in
Line
Count
Source
386
3.44k
{
387
  /* The internal_exec structure has some fields that are unused in this
388
     configuration (IE for i960), so ensure that all such uninitialized
389
     fields are zero'd out.  There are places where two of these structs
390
     are memcmp'd, and thus the contents do matter.  */
391
3.44k
  memset ((void *) execp, 0, sizeof (struct internal_exec));
392
  /* Now fill in fields in the execp, from the bytes in the raw data.  */
393
3.44k
  execp->a_info   = H_GET_32 (abfd, bytes->e_info);
394
3.44k
  execp->a_text   = GET_WORD (abfd, bytes->e_text);
395
3.44k
  execp->a_data   = GET_WORD (abfd, bytes->e_data);
396
3.44k
  execp->a_bss    = GET_WORD (abfd, bytes->e_bss);
397
3.44k
  execp->a_syms   = GET_WORD (abfd, bytes->e_syms);
398
3.44k
  execp->a_entry  = GET_WORD (abfd, bytes->e_entry);
399
3.44k
  execp->a_trsize = GET_WORD (abfd, bytes->e_trsize);
400
3.44k
  execp->a_drsize = GET_WORD (abfd, bytes->e_drsize);
401
3.44k
}
aout_32_swap_exec_header_in
Line
Count
Source
386
7.03k
{
387
  /* The internal_exec structure has some fields that are unused in this
388
     configuration (IE for i960), so ensure that all such uninitialized
389
     fields are zero'd out.  There are places where two of these structs
390
     are memcmp'd, and thus the contents do matter.  */
391
7.03k
  memset ((void *) execp, 0, sizeof (struct internal_exec));
392
  /* Now fill in fields in the execp, from the bytes in the raw data.  */
393
7.03k
  execp->a_info   = H_GET_32 (abfd, bytes->e_info);
394
7.03k
  execp->a_text   = GET_WORD (abfd, bytes->e_text);
395
7.03k
  execp->a_data   = GET_WORD (abfd, bytes->e_data);
396
7.03k
  execp->a_bss    = GET_WORD (abfd, bytes->e_bss);
397
7.03k
  execp->a_syms   = GET_WORD (abfd, bytes->e_syms);
398
7.03k
  execp->a_entry  = GET_WORD (abfd, bytes->e_entry);
399
7.03k
  execp->a_trsize = GET_WORD (abfd, bytes->e_trsize);
400
7.03k
  execp->a_drsize = GET_WORD (abfd, bytes->e_drsize);
401
7.03k
}
402
#define NAME_swap_exec_header_in NAME (aout, swap_exec_header_in)
403
#endif
404
405
/*
406
FUNCTION
407
  aout_@var{size}_swap_exec_header_out
408
409
SYNOPSIS
410
  bool aout_@var{size}_swap_exec_header_out
411
    (bfd *abfd,
412
     struct internal_exec *execp,
413
     struct external_exec *raw_bytes);
414
415
DESCRIPTION
416
  Swap the information in an internal exec header structure
417
  @var{execp} into the buffer @var{raw_bytes} ready for writing to disk.
418
*/
419
bool
420
NAME (aout, swap_exec_header_out) (bfd *abfd,
421
           struct internal_exec *execp,
422
           struct external_exec *bytes)
423
154
{
424
154
  const char *err = NULL;
425
154
  uint64_t val;
426
1.07k
#define MAXVAL(x) ((UINT64_C (1) << (8 * sizeof (x) - 1) << 1) - 1)
427
154
  if ((val = execp->a_text) > MAXVAL (bytes->e_text))
428
0
    err = "e_text";
429
154
  else if ((val = execp->a_data) > MAXVAL (bytes->e_data))
430
0
    err = "e_data";
431
154
  else if ((val = execp->a_bss) > MAXVAL (bytes->e_bss))
432
0
    err = "e_bss";
433
154
  else if ((val = execp->a_syms) > MAXVAL (bytes->e_syms))
434
0
    err = "e_syms";
435
154
  else if ((val = execp->a_entry) > MAXVAL (bytes->e_entry))
436
0
    err = "e_entry";
437
154
  else if ((val = execp->a_trsize) > MAXVAL (bytes->e_trsize))
438
0
    err = "e_trsize";
439
154
  else if ((val = execp->a_drsize) > MAXVAL (bytes->e_drsize))
440
0
    err = "e_drsize";
441
154
#undef MAXVAL
442
154
  if (err)
443
0
    {
444
0
      _bfd_error_handler (_("%pB: %#" PRIx64 " overflows header %s field"),
445
0
        abfd, val, err);
446
0
      bfd_set_error (bfd_error_file_too_big);
447
0
      return false;
448
0
    }
449
450
  /* Now fill in fields in the raw data, from the fields in the exec struct.  */
451
154
  H_PUT_32 (abfd, execp->a_info  , bytes->e_info);
452
154
  PUT_WORD (abfd, execp->a_text  , bytes->e_text);
453
154
  PUT_WORD (abfd, execp->a_data  , bytes->e_data);
454
154
  PUT_WORD (abfd, execp->a_bss   , bytes->e_bss);
455
154
  PUT_WORD (abfd, execp->a_syms  , bytes->e_syms);
456
154
  PUT_WORD (abfd, execp->a_entry , bytes->e_entry);
457
154
  PUT_WORD (abfd, execp->a_trsize, bytes->e_trsize);
458
154
  PUT_WORD (abfd, execp->a_drsize, bytes->e_drsize);
459
154
  return true;
460
154
}
Unexecuted instantiation: cris_aout_32_swap_exec_header_out
ns32kaout_32_swap_exec_header_out
Line
Count
Source
423
69
{
424
69
  const char *err = NULL;
425
69
  uint64_t val;
426
69
#define MAXVAL(x) ((UINT64_C (1) << (8 * sizeof (x) - 1) << 1) - 1)
427
69
  if ((val = execp->a_text) > MAXVAL (bytes->e_text))
428
0
    err = "e_text";
429
69
  else if ((val = execp->a_data) > MAXVAL (bytes->e_data))
430
0
    err = "e_data";
431
69
  else if ((val = execp->a_bss) > MAXVAL (bytes->e_bss))
432
0
    err = "e_bss";
433
69
  else if ((val = execp->a_syms) > MAXVAL (bytes->e_syms))
434
0
    err = "e_syms";
435
69
  else if ((val = execp->a_entry) > MAXVAL (bytes->e_entry))
436
0
    err = "e_entry";
437
69
  else if ((val = execp->a_trsize) > MAXVAL (bytes->e_trsize))
438
0
    err = "e_trsize";
439
69
  else if ((val = execp->a_drsize) > MAXVAL (bytes->e_drsize))
440
0
    err = "e_drsize";
441
69
#undef MAXVAL
442
69
  if (err)
443
0
    {
444
0
      _bfd_error_handler (_("%pB: %#" PRIx64 " overflows header %s field"),
445
0
        abfd, val, err);
446
0
      bfd_set_error (bfd_error_file_too_big);
447
0
      return false;
448
0
    }
449
450
  /* Now fill in fields in the raw data, from the fields in the exec struct.  */
451
69
  H_PUT_32 (abfd, execp->a_info  , bytes->e_info);
452
69
  PUT_WORD (abfd, execp->a_text  , bytes->e_text);
453
69
  PUT_WORD (abfd, execp->a_data  , bytes->e_data);
454
69
  PUT_WORD (abfd, execp->a_bss   , bytes->e_bss);
455
69
  PUT_WORD (abfd, execp->a_syms  , bytes->e_syms);
456
69
  PUT_WORD (abfd, execp->a_entry , bytes->e_entry);
457
69
  PUT_WORD (abfd, execp->a_trsize, bytes->e_trsize);
458
69
  PUT_WORD (abfd, execp->a_drsize, bytes->e_drsize);
459
  return true;
460
69
}
aout_32_swap_exec_header_out
Line
Count
Source
423
85
{
424
85
  const char *err = NULL;
425
85
  uint64_t val;
426
85
#define MAXVAL(x) ((UINT64_C (1) << (8 * sizeof (x) - 1) << 1) - 1)
427
85
  if ((val = execp->a_text) > MAXVAL (bytes->e_text))
428
0
    err = "e_text";
429
85
  else if ((val = execp->a_data) > MAXVAL (bytes->e_data))
430
0
    err = "e_data";
431
85
  else if ((val = execp->a_bss) > MAXVAL (bytes->e_bss))
432
0
    err = "e_bss";
433
85
  else if ((val = execp->a_syms) > MAXVAL (bytes->e_syms))
434
0
    err = "e_syms";
435
85
  else if ((val = execp->a_entry) > MAXVAL (bytes->e_entry))
436
0
    err = "e_entry";
437
85
  else if ((val = execp->a_trsize) > MAXVAL (bytes->e_trsize))
438
0
    err = "e_trsize";
439
85
  else if ((val = execp->a_drsize) > MAXVAL (bytes->e_drsize))
440
0
    err = "e_drsize";
441
85
#undef MAXVAL
442
85
  if (err)
443
0
    {
444
0
      _bfd_error_handler (_("%pB: %#" PRIx64 " overflows header %s field"),
445
0
        abfd, val, err);
446
0
      bfd_set_error (bfd_error_file_too_big);
447
0
      return false;
448
0
    }
449
450
  /* Now fill in fields in the raw data, from the fields in the exec struct.  */
451
85
  H_PUT_32 (abfd, execp->a_info  , bytes->e_info);
452
85
  PUT_WORD (abfd, execp->a_text  , bytes->e_text);
453
85
  PUT_WORD (abfd, execp->a_data  , bytes->e_data);
454
85
  PUT_WORD (abfd, execp->a_bss   , bytes->e_bss);
455
85
  PUT_WORD (abfd, execp->a_syms  , bytes->e_syms);
456
85
  PUT_WORD (abfd, execp->a_entry , bytes->e_entry);
457
85
  PUT_WORD (abfd, execp->a_trsize, bytes->e_trsize);
458
85
  PUT_WORD (abfd, execp->a_drsize, bytes->e_drsize);
459
  return true;
460
85
}
461
462
/* Make all the section for an a.out file.  */
463
464
bool
465
NAME (aout, make_sections) (bfd *abfd)
466
11.6k
{
467
11.6k
  if (obj_textsec (abfd) == NULL && bfd_make_section (abfd, ".text") == NULL)
468
0
    return false;
469
11.6k
  if (obj_datasec (abfd) == NULL && bfd_make_section (abfd, ".data") == NULL)
470
0
    return false;
471
11.6k
  if (obj_bsssec (abfd) == NULL && bfd_make_section (abfd, ".bss") == NULL)
472
0
    return false;
473
11.6k
  return true;
474
11.6k
}
cris_aout_32_make_sections
Line
Count
Source
466
1.06k
{
467
1.06k
  if (obj_textsec (abfd) == NULL && bfd_make_section (abfd, ".text") == NULL)
468
0
    return false;
469
1.06k
  if (obj_datasec (abfd) == NULL && bfd_make_section (abfd, ".data") == NULL)
470
0
    return false;
471
1.06k
  if (obj_bsssec (abfd) == NULL && bfd_make_section (abfd, ".bss") == NULL)
472
0
    return false;
473
1.06k
  return true;
474
1.06k
}
ns32kaout_32_make_sections
Line
Count
Source
466
3.51k
{
467
3.51k
  if (obj_textsec (abfd) == NULL && bfd_make_section (abfd, ".text") == NULL)
468
0
    return false;
469
3.51k
  if (obj_datasec (abfd) == NULL && bfd_make_section (abfd, ".data") == NULL)
470
0
    return false;
471
3.51k
  if (obj_bsssec (abfd) == NULL && bfd_make_section (abfd, ".bss") == NULL)
472
0
    return false;
473
3.51k
  return true;
474
3.51k
}
aout_32_make_sections
Line
Count
Source
466
7.12k
{
467
7.12k
  if (obj_textsec (abfd) == NULL && bfd_make_section (abfd, ".text") == NULL)
468
0
    return false;
469
7.12k
  if (obj_datasec (abfd) == NULL && bfd_make_section (abfd, ".data") == NULL)
470
0
    return false;
471
7.12k
  if (obj_bsssec (abfd) == NULL && bfd_make_section (abfd, ".bss") == NULL)
472
0
    return false;
473
7.12k
  return true;
474
7.12k
}
475
476
/*
477
FUNCTION
478
  aout_@var{size}_some_aout_object_p
479
480
SYNOPSIS
481
  bfd_cleanup aout_@var{size}_some_aout_object_p
482
   (bfd *abfd,
483
    struct internal_exec *execp,
484
    bfd_cleanup (*callback_to_real_object_p) (bfd *));
485
486
DESCRIPTION
487
  Some a.out variant thinks that the file open in @var{abfd}
488
  checking is an a.out file.  Do some more checking, and set up
489
  for access if it really is.  Call back to the calling
490
  environment's "finish up" function just before returning, to
491
  handle any last-minute setup.
492
*/
493
494
bfd_cleanup
495
NAME (aout, some_aout_object_p) (bfd *abfd,
496
         struct internal_exec *execp,
497
         bfd_cleanup (*callback_to_real_object_p) (bfd *))
498
11.5k
{
499
11.5k
  struct aout_data_struct *rawptr;
500
11.5k
  bfd_cleanup result;
501
502
11.5k
  rawptr = bfd_zalloc (abfd, sizeof (*rawptr));
503
11.5k
  if (rawptr == NULL)
504
0
    return NULL;
505
11.5k
  abfd->tdata.aout_data = rawptr;
506
507
11.5k
  abfd->tdata.aout_data->a.hdr = &rawptr->e;
508
  /* Copy in the internal_exec struct.  */
509
11.5k
  *(abfd->tdata.aout_data->a.hdr) = *execp;
510
11.5k
  execp = abfd->tdata.aout_data->a.hdr;
511
512
  /* Set the file flags.  */
513
11.5k
  abfd->flags = BFD_NO_FLAGS;
514
11.5k
  if (execp->a_drsize || execp->a_trsize)
515
10.2k
    abfd->flags |= HAS_RELOC;
516
  /* Setting of EXEC_P has been deferred to the bottom of this function.  */
517
11.5k
  if (execp->a_syms)
518
9.87k
    abfd->flags |= HAS_LINENO | HAS_DEBUG | HAS_SYMS | HAS_LOCALS;
519
11.5k
  if (N_DYNAMIC (execp))
520
6.27k
    abfd->flags |= DYNAMIC;
521
522
11.5k
  if (N_MAGIC (execp) == ZMAGIC)
523
1.82k
    {
524
1.82k
      abfd->flags |= D_PAGED | WP_TEXT;
525
1.82k
      adata (abfd).magic = z_magic;
526
1.82k
    }
527
9.72k
  else if (N_IS_QMAGIC (execp))
528
3.36k
    {
529
3.36k
      abfd->flags |= D_PAGED | WP_TEXT;
530
3.36k
      adata (abfd).magic = z_magic;
531
3.36k
      adata (abfd).subformat = q_magic_format;
532
3.36k
    }
533
6.35k
  else if (N_MAGIC (execp) == NMAGIC)
534
3.24k
    {
535
3.24k
      abfd->flags |= WP_TEXT;
536
3.24k
      adata (abfd).magic = n_magic;
537
3.24k
    }
538
3.11k
  else if (N_MAGIC (execp) == OMAGIC || N_IS_BMAGIC (execp))
539
3.11k
    adata (abfd).magic = o_magic;
540
0
  else
541
    /* Should have been checked with N_BADMAG before this routine
542
       was called.  */
543
0
    abort ();
544
545
11.5k
  abfd->start_address = execp->a_entry;
546
547
11.5k
  abfd->symcount = execp->a_syms / sizeof (struct external_nlist);
548
549
  /* The default relocation entry size is that of traditional V7 Unix.  */
550
11.5k
  obj_reloc_entry_size (abfd) = RELOC_STD_SIZE;
551
552
  /* The default symbol entry size is that of traditional Unix.  */
553
11.5k
  obj_symbol_entry_size (abfd) = EXTERNAL_NLIST_SIZE;
554
555
11.5k
  if (! NAME (aout, make_sections) (abfd))
556
0
    goto error_ret;
557
558
11.5k
  obj_datasec (abfd)->size = execp->a_data;
559
11.5k
  obj_bsssec (abfd)->size = execp->a_bss;
560
561
11.5k
  obj_textsec (abfd)->flags =
562
11.5k
    (execp->a_trsize != 0
563
11.5k
     ? (SEC_ALLOC | SEC_LOAD | SEC_CODE | SEC_HAS_CONTENTS | SEC_RELOC)
564
11.5k
     : (SEC_ALLOC | SEC_LOAD | SEC_CODE | SEC_HAS_CONTENTS));
565
11.5k
  obj_datasec (abfd)->flags =
566
11.5k
    (execp->a_drsize != 0
567
11.5k
     ? (SEC_ALLOC | SEC_LOAD | SEC_DATA | SEC_HAS_CONTENTS | SEC_RELOC)
568
11.5k
     : (SEC_ALLOC | SEC_LOAD | SEC_DATA | SEC_HAS_CONTENTS));
569
11.5k
  obj_bsssec (abfd)->flags = SEC_ALLOC;
570
571
#ifdef THIS_IS_ONLY_DOCUMENTATION
572
  /* The common code can't fill in these things because they depend
573
     on either the start address of the text segment, the rounding
574
     up of virtual addresses between segments, or the starting file
575
     position of the text segment -- all of which varies among different
576
     versions of a.out.  */
577
578
  /* Call back to the format-dependent code to fill in the rest of the
579
     fields and do any further cleanup.  Things that should be filled
580
     in by the callback:  */
581
  struct exec *execp = exec_hdr (abfd);
582
583
  obj_textsec (abfd)->size = N_TXTSIZE (execp);
584
  /* Data and bss are already filled in since they're so standard.  */
585
586
  /* The virtual memory addresses of the sections.  */
587
  obj_textsec (abfd)->vma = N_TXTADDR (execp);
588
  obj_datasec (abfd)->vma = N_DATADDR (execp);
589
  obj_bsssec  (abfd)->vma = N_BSSADDR (execp);
590
591
  /* The file offsets of the sections.  */
592
  obj_textsec (abfd)->filepos = N_TXTOFF (execp);
593
  obj_datasec (abfd)->filepos = N_DATOFF (execp);
594
595
  /* The file offsets of the relocation info.  */
596
  obj_textsec (abfd)->rel_filepos = N_TRELOFF (execp);
597
  obj_datasec (abfd)->rel_filepos = N_DRELOFF (execp);
598
599
  /* The file offsets of the string table and symbol table.  */
600
  obj_str_filepos (abfd) = N_STROFF (execp);
601
  obj_sym_filepos (abfd) = N_SYMOFF (execp);
602
603
  /* Determine the architecture and machine type of the object file.  */
604
  abfd->obj_arch = bfd_arch_obscure;
605
606
  adata (abfd)->page_size = TARGET_PAGE_SIZE;
607
  adata (abfd)->segment_size = SEGMENT_SIZE;
608
  adata (abfd)->exec_bytes_size = EXEC_BYTES_SIZE;
609
610
  return _bfd_no_cleanup;
611
612
  /* The architecture is encoded in various ways in various a.out variants,
613
     or is not encoded at all in some of them.  The relocation size depends
614
     on the architecture and the a.out variant.  Finally, the return value
615
     is the bfd_target vector in use.  If an error occurs, return zero and
616
     set bfd_error to the appropriate error code.
617
618
     Formats such as b.out, which have additional fields in the a.out
619
     header, should cope with them in this callback as well.  */
620
#endif  /* DOCUMENTATION */
621
622
11.5k
  result = (*callback_to_real_object_p) (abfd);
623
624
  /* Now that the segment addresses have been worked out, take a better
625
     guess at whether the file is executable.  If the entry point
626
     is within the text segment, assume it is.  (This makes files
627
     executable even if their entry point address is 0, as long as
628
     their text starts at zero.).
629
630
     This test had to be changed to deal with systems where the text segment
631
     runs at a different location than the default.  The problem is that the
632
     entry address can appear to be outside the text segment, thus causing an
633
     erroneous conclusion that the file isn't executable.
634
635
     To fix this, we now accept any non-zero entry point as an indication of
636
     executability.  This will work most of the time, since only the linker
637
     sets the entry point, and that is likely to be non-zero for most systems.  */
638
639
11.5k
  if (execp->a_entry != 0
640
2.80k
      || (execp->a_entry >= obj_textsec (abfd)->vma
641
2.07k
    && execp->a_entry < (obj_textsec (abfd)->vma
642
2.07k
             + obj_textsec (abfd)->size)
643
1.87k
    && execp->a_trsize == 0
644
851
    && execp->a_drsize == 0))
645
8.86k
    abfd->flags |= EXEC_P;
646
#ifdef STAT_FOR_EXEC
647
  else
648
808
    {
649
808
      struct stat stat_buf;
650
651
      /* The original heuristic doesn't work in some important cases.
652
  The a.out file has no information about the text start
653
  address.  For files (like kernels) linked to non-standard
654
  addresses (ld -Ttext nnn) the entry point may not be between
655
  the default text start (obj_textsec(abfd)->vma) and
656
  (obj_textsec(abfd)->vma) + text size.  This is not just a mach
657
  issue.  Many kernels are loaded at non standard addresses.  */
658
808
      if (abfd->iostream != NULL
659
469
    && (abfd->flags & BFD_IN_MEMORY) == 0
660
469
    && (fstat (fileno ((FILE *) (abfd->iostream)), &stat_buf) == 0)
661
469
    && ((stat_buf.st_mode & 0111) != 0))
662
3
  abfd->flags |= EXEC_P;
663
808
    }
664
#endif /* STAT_FOR_EXEC */
665
666
11.5k
  if (result)
667
11.5k
    return result;
668
669
0
 error_ret:
670
0
  bfd_release (abfd, rawptr);
671
0
  return NULL;
672
11.5k
}
cris_aout_32_some_aout_object_p
Line
Count
Source
498
1.06k
{
499
1.06k
  struct aout_data_struct *rawptr;
500
1.06k
  bfd_cleanup result;
501
502
1.06k
  rawptr = bfd_zalloc (abfd, sizeof (*rawptr));
503
1.06k
  if (rawptr == NULL)
504
0
    return NULL;
505
1.06k
  abfd->tdata.aout_data = rawptr;
506
507
1.06k
  abfd->tdata.aout_data->a.hdr = &rawptr->e;
508
  /* Copy in the internal_exec struct.  */
509
1.06k
  *(abfd->tdata.aout_data->a.hdr) = *execp;
510
1.06k
  execp = abfd->tdata.aout_data->a.hdr;
511
512
  /* Set the file flags.  */
513
1.06k
  abfd->flags = BFD_NO_FLAGS;
514
1.06k
  if (execp->a_drsize || execp->a_trsize)
515
893
    abfd->flags |= HAS_RELOC;
516
  /* Setting of EXEC_P has been deferred to the bottom of this function.  */
517
1.06k
  if (execp->a_syms)
518
896
    abfd->flags |= HAS_LINENO | HAS_DEBUG | HAS_SYMS | HAS_LOCALS;
519
1.06k
  if (N_DYNAMIC (execp))
520
655
    abfd->flags |= DYNAMIC;
521
522
1.06k
  if (N_MAGIC (execp) == ZMAGIC)
523
187
    {
524
187
      abfd->flags |= D_PAGED | WP_TEXT;
525
187
      adata (abfd).magic = z_magic;
526
187
    }
527
878
  else if (N_IS_QMAGIC (execp))
528
143
    {
529
143
      abfd->flags |= D_PAGED | WP_TEXT;
530
143
      adata (abfd).magic = z_magic;
531
143
      adata (abfd).subformat = q_magic_format;
532
143
    }
533
735
  else if (N_MAGIC (execp) == NMAGIC)
534
386
    {
535
386
      abfd->flags |= WP_TEXT;
536
386
      adata (abfd).magic = n_magic;
537
386
    }
538
349
  else if (N_MAGIC (execp) == OMAGIC || N_IS_BMAGIC (execp))
539
349
    adata (abfd).magic = o_magic;
540
0
  else
541
    /* Should have been checked with N_BADMAG before this routine
542
       was called.  */
543
0
    abort ();
544
545
1.06k
  abfd->start_address = execp->a_entry;
546
547
1.06k
  abfd->symcount = execp->a_syms / sizeof (struct external_nlist);
548
549
  /* The default relocation entry size is that of traditional V7 Unix.  */
550
1.06k
  obj_reloc_entry_size (abfd) = RELOC_STD_SIZE;
551
552
  /* The default symbol entry size is that of traditional Unix.  */
553
1.06k
  obj_symbol_entry_size (abfd) = EXTERNAL_NLIST_SIZE;
554
555
1.06k
  if (! NAME (aout, make_sections) (abfd))
556
0
    goto error_ret;
557
558
1.06k
  obj_datasec (abfd)->size = execp->a_data;
559
1.06k
  obj_bsssec (abfd)->size = execp->a_bss;
560
561
1.06k
  obj_textsec (abfd)->flags =
562
1.06k
    (execp->a_trsize != 0
563
1.06k
     ? (SEC_ALLOC | SEC_LOAD | SEC_CODE | SEC_HAS_CONTENTS | SEC_RELOC)
564
1.06k
     : (SEC_ALLOC | SEC_LOAD | SEC_CODE | SEC_HAS_CONTENTS));
565
1.06k
  obj_datasec (abfd)->flags =
566
1.06k
    (execp->a_drsize != 0
567
1.06k
     ? (SEC_ALLOC | SEC_LOAD | SEC_DATA | SEC_HAS_CONTENTS | SEC_RELOC)
568
1.06k
     : (SEC_ALLOC | SEC_LOAD | SEC_DATA | SEC_HAS_CONTENTS));
569
1.06k
  obj_bsssec (abfd)->flags = SEC_ALLOC;
570
571
#ifdef THIS_IS_ONLY_DOCUMENTATION
572
  /* The common code can't fill in these things because they depend
573
     on either the start address of the text segment, the rounding
574
     up of virtual addresses between segments, or the starting file
575
     position of the text segment -- all of which varies among different
576
     versions of a.out.  */
577
578
  /* Call back to the format-dependent code to fill in the rest of the
579
     fields and do any further cleanup.  Things that should be filled
580
     in by the callback:  */
581
  struct exec *execp = exec_hdr (abfd);
582
583
  obj_textsec (abfd)->size = N_TXTSIZE (execp);
584
  /* Data and bss are already filled in since they're so standard.  */
585
586
  /* The virtual memory addresses of the sections.  */
587
  obj_textsec (abfd)->vma = N_TXTADDR (execp);
588
  obj_datasec (abfd)->vma = N_DATADDR (execp);
589
  obj_bsssec  (abfd)->vma = N_BSSADDR (execp);
590
591
  /* The file offsets of the sections.  */
592
  obj_textsec (abfd)->filepos = N_TXTOFF (execp);
593
  obj_datasec (abfd)->filepos = N_DATOFF (execp);
594
595
  /* The file offsets of the relocation info.  */
596
  obj_textsec (abfd)->rel_filepos = N_TRELOFF (execp);
597
  obj_datasec (abfd)->rel_filepos = N_DRELOFF (execp);
598
599
  /* The file offsets of the string table and symbol table.  */
600
  obj_str_filepos (abfd) = N_STROFF (execp);
601
  obj_sym_filepos (abfd) = N_SYMOFF (execp);
602
603
  /* Determine the architecture and machine type of the object file.  */
604
  abfd->obj_arch = bfd_arch_obscure;
605
606
  adata (abfd)->page_size = TARGET_PAGE_SIZE;
607
  adata (abfd)->segment_size = SEGMENT_SIZE;
608
  adata (abfd)->exec_bytes_size = EXEC_BYTES_SIZE;
609
610
  return _bfd_no_cleanup;
611
612
  /* The architecture is encoded in various ways in various a.out variants,
613
     or is not encoded at all in some of them.  The relocation size depends
614
     on the architecture and the a.out variant.  Finally, the return value
615
     is the bfd_target vector in use.  If an error occurs, return zero and
616
     set bfd_error to the appropriate error code.
617
618
     Formats such as b.out, which have additional fields in the a.out
619
     header, should cope with them in this callback as well.  */
620
#endif  /* DOCUMENTATION */
621
622
1.06k
  result = (*callback_to_real_object_p) (abfd);
623
624
  /* Now that the segment addresses have been worked out, take a better
625
     guess at whether the file is executable.  If the entry point
626
     is within the text segment, assume it is.  (This makes files
627
     executable even if their entry point address is 0, as long as
628
     their text starts at zero.).
629
630
     This test had to be changed to deal with systems where the text segment
631
     runs at a different location than the default.  The problem is that the
632
     entry address can appear to be outside the text segment, thus causing an
633
     erroneous conclusion that the file isn't executable.
634
635
     To fix this, we now accept any non-zero entry point as an indication of
636
     executability.  This will work most of the time, since only the linker
637
     sets the entry point, and that is likely to be non-zero for most systems.  */
638
639
1.06k
  if (execp->a_entry != 0
640
322
      || (execp->a_entry >= obj_textsec (abfd)->vma
641
322
    && execp->a_entry < (obj_textsec (abfd)->vma
642
322
             + obj_textsec (abfd)->size)
643
307
    && execp->a_trsize == 0
644
155
    && execp->a_drsize == 0))
645
755
    abfd->flags |= EXEC_P;
646
#ifdef STAT_FOR_EXEC
647
  else
648
    {
649
      struct stat stat_buf;
650
651
      /* The original heuristic doesn't work in some important cases.
652
  The a.out file has no information about the text start
653
  address.  For files (like kernels) linked to non-standard
654
  addresses (ld -Ttext nnn) the entry point may not be between
655
  the default text start (obj_textsec(abfd)->vma) and
656
  (obj_textsec(abfd)->vma) + text size.  This is not just a mach
657
  issue.  Many kernels are loaded at non standard addresses.  */
658
      if (abfd->iostream != NULL
659
    && (abfd->flags & BFD_IN_MEMORY) == 0
660
    && (fstat (fileno ((FILE *) (abfd->iostream)), &stat_buf) == 0)
661
    && ((stat_buf.st_mode & 0111) != 0))
662
  abfd->flags |= EXEC_P;
663
    }
664
#endif /* STAT_FOR_EXEC */
665
666
1.06k
  if (result)
667
1.06k
    return result;
668
669
0
 error_ret:
670
0
  bfd_release (abfd, rawptr);
671
  return NULL;
672
1.06k
}
ns32kaout_32_some_aout_object_p
Line
Count
Source
498
3.44k
{
499
3.44k
  struct aout_data_struct *rawptr;
500
3.44k
  bfd_cleanup result;
501
502
3.44k
  rawptr = bfd_zalloc (abfd, sizeof (*rawptr));
503
3.44k
  if (rawptr == NULL)
504
0
    return NULL;
505
3.44k
  abfd->tdata.aout_data = rawptr;
506
507
3.44k
  abfd->tdata.aout_data->a.hdr = &rawptr->e;
508
  /* Copy in the internal_exec struct.  */
509
3.44k
  *(abfd->tdata.aout_data->a.hdr) = *execp;
510
3.44k
  execp = abfd->tdata.aout_data->a.hdr;
511
512
  /* Set the file flags.  */
513
3.44k
  abfd->flags = BFD_NO_FLAGS;
514
3.44k
  if (execp->a_drsize || execp->a_trsize)
515
3.00k
    abfd->flags |= HAS_RELOC;
516
  /* Setting of EXEC_P has been deferred to the bottom of this function.  */
517
3.44k
  if (execp->a_syms)
518
2.96k
    abfd->flags |= HAS_LINENO | HAS_DEBUG | HAS_SYMS | HAS_LOCALS;
519
3.44k
  if (N_DYNAMIC (execp))
520
1.93k
    abfd->flags |= DYNAMIC;
521
522
3.44k
  if (N_MAGIC (execp) == ZMAGIC)
523
535
    {
524
535
      abfd->flags |= D_PAGED | WP_TEXT;
525
535
      adata (abfd).magic = z_magic;
526
535
    }
527
2.90k
  else if (N_IS_QMAGIC (execp))
528
1.07k
    {
529
1.07k
      abfd->flags |= D_PAGED | WP_TEXT;
530
1.07k
      adata (abfd).magic = z_magic;
531
1.07k
      adata (abfd).subformat = q_magic_format;
532
1.07k
    }
533
1.83k
  else if (N_MAGIC (execp) == NMAGIC)
534
910
    {
535
910
      abfd->flags |= WP_TEXT;
536
910
      adata (abfd).magic = n_magic;
537
910
    }
538
923
  else if (N_MAGIC (execp) == OMAGIC || N_IS_BMAGIC (execp))
539
923
    adata (abfd).magic = o_magic;
540
0
  else
541
    /* Should have been checked with N_BADMAG before this routine
542
       was called.  */
543
0
    abort ();
544
545
3.44k
  abfd->start_address = execp->a_entry;
546
547
3.44k
  abfd->symcount = execp->a_syms / sizeof (struct external_nlist);
548
549
  /* The default relocation entry size is that of traditional V7 Unix.  */
550
3.44k
  obj_reloc_entry_size (abfd) = RELOC_STD_SIZE;
551
552
  /* The default symbol entry size is that of traditional Unix.  */
553
3.44k
  obj_symbol_entry_size (abfd) = EXTERNAL_NLIST_SIZE;
554
555
3.44k
  if (! NAME (aout, make_sections) (abfd))
556
0
    goto error_ret;
557
558
3.44k
  obj_datasec (abfd)->size = execp->a_data;
559
3.44k
  obj_bsssec (abfd)->size = execp->a_bss;
560
561
3.44k
  obj_textsec (abfd)->flags =
562
3.44k
    (execp->a_trsize != 0
563
3.44k
     ? (SEC_ALLOC | SEC_LOAD | SEC_CODE | SEC_HAS_CONTENTS | SEC_RELOC)
564
3.44k
     : (SEC_ALLOC | SEC_LOAD | SEC_CODE | SEC_HAS_CONTENTS));
565
3.44k
  obj_datasec (abfd)->flags =
566
3.44k
    (execp->a_drsize != 0
567
3.44k
     ? (SEC_ALLOC | SEC_LOAD | SEC_DATA | SEC_HAS_CONTENTS | SEC_RELOC)
568
3.44k
     : (SEC_ALLOC | SEC_LOAD | SEC_DATA | SEC_HAS_CONTENTS));
569
3.44k
  obj_bsssec (abfd)->flags = SEC_ALLOC;
570
571
#ifdef THIS_IS_ONLY_DOCUMENTATION
572
  /* The common code can't fill in these things because they depend
573
     on either the start address of the text segment, the rounding
574
     up of virtual addresses between segments, or the starting file
575
     position of the text segment -- all of which varies among different
576
     versions of a.out.  */
577
578
  /* Call back to the format-dependent code to fill in the rest of the
579
     fields and do any further cleanup.  Things that should be filled
580
     in by the callback:  */
581
  struct exec *execp = exec_hdr (abfd);
582
583
  obj_textsec (abfd)->size = N_TXTSIZE (execp);
584
  /* Data and bss are already filled in since they're so standard.  */
585
586
  /* The virtual memory addresses of the sections.  */
587
  obj_textsec (abfd)->vma = N_TXTADDR (execp);
588
  obj_datasec (abfd)->vma = N_DATADDR (execp);
589
  obj_bsssec  (abfd)->vma = N_BSSADDR (execp);
590
591
  /* The file offsets of the sections.  */
592
  obj_textsec (abfd)->filepos = N_TXTOFF (execp);
593
  obj_datasec (abfd)->filepos = N_DATOFF (execp);
594
595
  /* The file offsets of the relocation info.  */
596
  obj_textsec (abfd)->rel_filepos = N_TRELOFF (execp);
597
  obj_datasec (abfd)->rel_filepos = N_DRELOFF (execp);
598
599
  /* The file offsets of the string table and symbol table.  */
600
  obj_str_filepos (abfd) = N_STROFF (execp);
601
  obj_sym_filepos (abfd) = N_SYMOFF (execp);
602
603
  /* Determine the architecture and machine type of the object file.  */
604
  abfd->obj_arch = bfd_arch_obscure;
605
606
  adata (abfd)->page_size = TARGET_PAGE_SIZE;
607
  adata (abfd)->segment_size = SEGMENT_SIZE;
608
  adata (abfd)->exec_bytes_size = EXEC_BYTES_SIZE;
609
610
  return _bfd_no_cleanup;
611
612
  /* The architecture is encoded in various ways in various a.out variants,
613
     or is not encoded at all in some of them.  The relocation size depends
614
     on the architecture and the a.out variant.  Finally, the return value
615
     is the bfd_target vector in use.  If an error occurs, return zero and
616
     set bfd_error to the appropriate error code.
617
618
     Formats such as b.out, which have additional fields in the a.out
619
     header, should cope with them in this callback as well.  */
620
#endif  /* DOCUMENTATION */
621
622
3.44k
  result = (*callback_to_real_object_p) (abfd);
623
624
  /* Now that the segment addresses have been worked out, take a better
625
     guess at whether the file is executable.  If the entry point
626
     is within the text segment, assume it is.  (This makes files
627
     executable even if their entry point address is 0, as long as
628
     their text starts at zero.).
629
630
     This test had to be changed to deal with systems where the text segment
631
     runs at a different location than the default.  The problem is that the
632
     entry address can appear to be outside the text segment, thus causing an
633
     erroneous conclusion that the file isn't executable.
634
635
     To fix this, we now accept any non-zero entry point as an indication of
636
     executability.  This will work most of the time, since only the linker
637
     sets the entry point, and that is likely to be non-zero for most systems.  */
638
639
3.44k
  if (execp->a_entry != 0
640
836
      || (execp->a_entry >= obj_textsec (abfd)->vma
641
437
    && execp->a_entry < (obj_textsec (abfd)->vma
642
437
             + obj_textsec (abfd)->size)
643
386
    && execp->a_trsize == 0
644
166
    && execp->a_drsize == 0))
645
2.63k
    abfd->flags |= EXEC_P;
646
808
#ifdef STAT_FOR_EXEC
647
808
  else
648
808
    {
649
808
      struct stat stat_buf;
650
651
      /* The original heuristic doesn't work in some important cases.
652
  The a.out file has no information about the text start
653
  address.  For files (like kernels) linked to non-standard
654
  addresses (ld -Ttext nnn) the entry point may not be between
655
  the default text start (obj_textsec(abfd)->vma) and
656
  (obj_textsec(abfd)->vma) + text size.  This is not just a mach
657
  issue.  Many kernels are loaded at non standard addresses.  */
658
808
      if (abfd->iostream != NULL
659
469
    && (abfd->flags & BFD_IN_MEMORY) == 0
660
469
    && (fstat (fileno ((FILE *) (abfd->iostream)), &stat_buf) == 0)
661
469
    && ((stat_buf.st_mode & 0111) != 0))
662
3
  abfd->flags |= EXEC_P;
663
808
    }
664
3.44k
#endif /* STAT_FOR_EXEC */
665
666
3.44k
  if (result)
667
3.44k
    return result;
668
669
0
 error_ret:
670
0
  bfd_release (abfd, rawptr);
671
  return NULL;
672
3.44k
}
aout_32_some_aout_object_p
Line
Count
Source
498
7.03k
{
499
7.03k
  struct aout_data_struct *rawptr;
500
7.03k
  bfd_cleanup result;
501
502
7.03k
  rawptr = bfd_zalloc (abfd, sizeof (*rawptr));
503
7.03k
  if (rawptr == NULL)
504
0
    return NULL;
505
7.03k
  abfd->tdata.aout_data = rawptr;
506
507
7.03k
  abfd->tdata.aout_data->a.hdr = &rawptr->e;
508
  /* Copy in the internal_exec struct.  */
509
7.03k
  *(abfd->tdata.aout_data->a.hdr) = *execp;
510
7.03k
  execp = abfd->tdata.aout_data->a.hdr;
511
512
  /* Set the file flags.  */
513
7.03k
  abfd->flags = BFD_NO_FLAGS;
514
7.03k
  if (execp->a_drsize || execp->a_trsize)
515
6.31k
    abfd->flags |= HAS_RELOC;
516
  /* Setting of EXEC_P has been deferred to the bottom of this function.  */
517
7.03k
  if (execp->a_syms)
518
6.01k
    abfd->flags |= HAS_LINENO | HAS_DEBUG | HAS_SYMS | HAS_LOCALS;
519
7.03k
  if (N_DYNAMIC (execp))
520
3.68k
    abfd->flags |= DYNAMIC;
521
522
7.03k
  if (N_MAGIC (execp) == ZMAGIC)
523
1.09k
    {
524
1.09k
      abfd->flags |= D_PAGED | WP_TEXT;
525
1.09k
      adata (abfd).magic = z_magic;
526
1.09k
    }
527
5.93k
  else if (N_IS_QMAGIC (execp))
528
2.14k
    {
529
2.14k
      abfd->flags |= D_PAGED | WP_TEXT;
530
2.14k
      adata (abfd).magic = z_magic;
531
2.14k
      adata (abfd).subformat = q_magic_format;
532
2.14k
    }
533
3.79k
  else if (N_MAGIC (execp) == NMAGIC)
534
1.94k
    {
535
1.94k
      abfd->flags |= WP_TEXT;
536
1.94k
      adata (abfd).magic = n_magic;
537
1.94k
    }
538
1.84k
  else if (N_MAGIC (execp) == OMAGIC || N_IS_BMAGIC (execp))
539
1.84k
    adata (abfd).magic = o_magic;
540
0
  else
541
    /* Should have been checked with N_BADMAG before this routine
542
       was called.  */
543
0
    abort ();
544
545
7.03k
  abfd->start_address = execp->a_entry;
546
547
7.03k
  abfd->symcount = execp->a_syms / sizeof (struct external_nlist);
548
549
  /* The default relocation entry size is that of traditional V7 Unix.  */
550
7.03k
  obj_reloc_entry_size (abfd) = RELOC_STD_SIZE;
551
552
  /* The default symbol entry size is that of traditional Unix.  */
553
7.03k
  obj_symbol_entry_size (abfd) = EXTERNAL_NLIST_SIZE;
554
555
7.03k
  if (! NAME (aout, make_sections) (abfd))
556
0
    goto error_ret;
557
558
7.03k
  obj_datasec (abfd)->size = execp->a_data;
559
7.03k
  obj_bsssec (abfd)->size = execp->a_bss;
560
561
7.03k
  obj_textsec (abfd)->flags =
562
7.03k
    (execp->a_trsize != 0
563
7.03k
     ? (SEC_ALLOC | SEC_LOAD | SEC_CODE | SEC_HAS_CONTENTS | SEC_RELOC)
564
7.03k
     : (SEC_ALLOC | SEC_LOAD | SEC_CODE | SEC_HAS_CONTENTS));
565
7.03k
  obj_datasec (abfd)->flags =
566
7.03k
    (execp->a_drsize != 0
567
7.03k
     ? (SEC_ALLOC | SEC_LOAD | SEC_DATA | SEC_HAS_CONTENTS | SEC_RELOC)
568
7.03k
     : (SEC_ALLOC | SEC_LOAD | SEC_DATA | SEC_HAS_CONTENTS));
569
7.03k
  obj_bsssec (abfd)->flags = SEC_ALLOC;
570
571
#ifdef THIS_IS_ONLY_DOCUMENTATION
572
  /* The common code can't fill in these things because they depend
573
     on either the start address of the text segment, the rounding
574
     up of virtual addresses between segments, or the starting file
575
     position of the text segment -- all of which varies among different
576
     versions of a.out.  */
577
578
  /* Call back to the format-dependent code to fill in the rest of the
579
     fields and do any further cleanup.  Things that should be filled
580
     in by the callback:  */
581
  struct exec *execp = exec_hdr (abfd);
582
583
  obj_textsec (abfd)->size = N_TXTSIZE (execp);
584
  /* Data and bss are already filled in since they're so standard.  */
585
586
  /* The virtual memory addresses of the sections.  */
587
  obj_textsec (abfd)->vma = N_TXTADDR (execp);
588
  obj_datasec (abfd)->vma = N_DATADDR (execp);
589
  obj_bsssec  (abfd)->vma = N_BSSADDR (execp);
590
591
  /* The file offsets of the sections.  */
592
  obj_textsec (abfd)->filepos = N_TXTOFF (execp);
593
  obj_datasec (abfd)->filepos = N_DATOFF (execp);
594
595
  /* The file offsets of the relocation info.  */
596
  obj_textsec (abfd)->rel_filepos = N_TRELOFF (execp);
597
  obj_datasec (abfd)->rel_filepos = N_DRELOFF (execp);
598
599
  /* The file offsets of the string table and symbol table.  */
600
  obj_str_filepos (abfd) = N_STROFF (execp);
601
  obj_sym_filepos (abfd) = N_SYMOFF (execp);
602
603
  /* Determine the architecture and machine type of the object file.  */
604
  abfd->obj_arch = bfd_arch_obscure;
605
606
  adata (abfd)->page_size = TARGET_PAGE_SIZE;
607
  adata (abfd)->segment_size = SEGMENT_SIZE;
608
  adata (abfd)->exec_bytes_size = EXEC_BYTES_SIZE;
609
610
  return _bfd_no_cleanup;
611
612
  /* The architecture is encoded in various ways in various a.out variants,
613
     or is not encoded at all in some of them.  The relocation size depends
614
     on the architecture and the a.out variant.  Finally, the return value
615
     is the bfd_target vector in use.  If an error occurs, return zero and
616
     set bfd_error to the appropriate error code.
617
618
     Formats such as b.out, which have additional fields in the a.out
619
     header, should cope with them in this callback as well.  */
620
#endif  /* DOCUMENTATION */
621
622
7.03k
  result = (*callback_to_real_object_p) (abfd);
623
624
  /* Now that the segment addresses have been worked out, take a better
625
     guess at whether the file is executable.  If the entry point
626
     is within the text segment, assume it is.  (This makes files
627
     executable even if their entry point address is 0, as long as
628
     their text starts at zero.).
629
630
     This test had to be changed to deal with systems where the text segment
631
     runs at a different location than the default.  The problem is that the
632
     entry address can appear to be outside the text segment, thus causing an
633
     erroneous conclusion that the file isn't executable.
634
635
     To fix this, we now accept any non-zero entry point as an indication of
636
     executability.  This will work most of the time, since only the linker
637
     sets the entry point, and that is likely to be non-zero for most systems.  */
638
639
7.03k
  if (execp->a_entry != 0
640
1.64k
      || (execp->a_entry >= obj_textsec (abfd)->vma
641
1.31k
    && execp->a_entry < (obj_textsec (abfd)->vma
642
1.31k
             + obj_textsec (abfd)->size)
643
1.18k
    && execp->a_trsize == 0
644
530
    && execp->a_drsize == 0))
645
5.47k
    abfd->flags |= EXEC_P;
646
#ifdef STAT_FOR_EXEC
647
  else
648
    {
649
      struct stat stat_buf;
650
651
      /* The original heuristic doesn't work in some important cases.
652
  The a.out file has no information about the text start
653
  address.  For files (like kernels) linked to non-standard
654
  addresses (ld -Ttext nnn) the entry point may not be between
655
  the default text start (obj_textsec(abfd)->vma) and
656
  (obj_textsec(abfd)->vma) + text size.  This is not just a mach
657
  issue.  Many kernels are loaded at non standard addresses.  */
658
      if (abfd->iostream != NULL
659
    && (abfd->flags & BFD_IN_MEMORY) == 0
660
    && (fstat (fileno ((FILE *) (abfd->iostream)), &stat_buf) == 0)
661
    && ((stat_buf.st_mode & 0111) != 0))
662
  abfd->flags |= EXEC_P;
663
    }
664
#endif /* STAT_FOR_EXEC */
665
666
7.03k
  if (result)
667
7.03k
    return result;
668
669
0
 error_ret:
670
0
  bfd_release (abfd, rawptr);
671
  return NULL;
672
7.03k
}
673
674
/*
675
FUNCTION
676
  aout_@var{size}_mkobject
677
678
SYNOPSIS
679
  bool aout_@var{size}_mkobject, (bfd *abfd);
680
681
DESCRIPTION
682
  Initialize BFD @var{abfd} for use with a.out files.
683
*/
684
685
bool
686
NAME (aout, mkobject) (bfd *abfd)
687
16.3k
{
688
16.3k
  struct aout_data_struct *rawptr;
689
16.3k
  size_t amt = sizeof (* rawptr);
690
691
16.3k
  bfd_set_error (bfd_error_system_call);
692
693
16.3k
  rawptr = (struct aout_data_struct *) bfd_zalloc (abfd, amt);
694
16.3k
  if (rawptr == NULL)
695
0
    return false;
696
697
16.3k
  abfd->tdata.aout_data = rawptr;
698
16.3k
  exec_hdr (abfd) = &(rawptr->e);
699
700
16.3k
  obj_textsec (abfd) = NULL;
701
16.3k
  obj_datasec (abfd) = NULL;
702
16.3k
  obj_bsssec (abfd) = NULL;
703
704
16.3k
  return true;
705
16.3k
}
Unexecuted instantiation: cris_aout_32_mkobject
ns32kaout_32_mkobject
Line
Count
Source
687
179
{
688
179
  struct aout_data_struct *rawptr;
689
179
  size_t amt = sizeof (* rawptr);
690
691
179
  bfd_set_error (bfd_error_system_call);
692
693
179
  rawptr = (struct aout_data_struct *) bfd_zalloc (abfd, amt);
694
179
  if (rawptr == NULL)
695
0
    return false;
696
697
179
  abfd->tdata.aout_data = rawptr;
698
179
  exec_hdr (abfd) = &(rawptr->e);
699
700
179
  obj_textsec (abfd) = NULL;
701
179
  obj_datasec (abfd) = NULL;
702
179
  obj_bsssec (abfd) = NULL;
703
704
  return true;
705
179
}
aout_32_mkobject
Line
Count
Source
687
16.2k
{
688
16.2k
  struct aout_data_struct *rawptr;
689
16.2k
  size_t amt = sizeof (* rawptr);
690
691
16.2k
  bfd_set_error (bfd_error_system_call);
692
693
16.2k
  rawptr = (struct aout_data_struct *) bfd_zalloc (abfd, amt);
694
16.2k
  if (rawptr == NULL)
695
0
    return false;
696
697
16.2k
  abfd->tdata.aout_data = rawptr;
698
16.2k
  exec_hdr (abfd) = &(rawptr->e);
699
700
16.2k
  obj_textsec (abfd) = NULL;
701
16.2k
  obj_datasec (abfd) = NULL;
702
16.2k
  obj_bsssec (abfd) = NULL;
703
704
  return true;
705
16.2k
}
706
707
/*
708
FUNCTION
709
  aout_@var{size}_machine_type
710
711
SYNOPSIS
712
  enum machine_type  aout_@var{size}_machine_type
713
   (enum bfd_architecture arch,
714
    unsigned long machine,
715
    bool *unknown);
716
717
DESCRIPTION
718
  Keep track of machine architecture and machine type for
719
  a.out's. Return the <<machine_type>> for a particular
720
  architecture and machine, or <<M_UNKNOWN>> if that exact architecture
721
  and machine can't be represented in a.out format.
722
723
  If the architecture is understood, machine type 0 (default)
724
  is always understood.
725
*/
726
727
enum machine_type
728
NAME (aout, machine_type) (enum bfd_architecture arch,
729
         unsigned long machine,
730
         bool *unknown)
731
1.43k
{
732
1.43k
  enum machine_type arch_flags;
733
734
1.43k
  arch_flags = M_UNKNOWN;
735
1.43k
  *unknown = true;
736
737
1.43k
  switch (arch)
738
1.43k
    {
739
0
    case bfd_arch_sparc:
740
0
      if (machine == 0
741
0
    || machine == bfd_mach_sparc
742
0
    || machine == bfd_mach_sparc_sparclite
743
0
    || machine == bfd_mach_sparc_sparclite_le
744
0
    || machine == bfd_mach_sparc_v8plus
745
0
    || machine == bfd_mach_sparc_v8plusa
746
0
    || machine == bfd_mach_sparc_v8plusb
747
0
    || machine == bfd_mach_sparc_v8plusc
748
0
    || machine == bfd_mach_sparc_v8plusd
749
0
    || machine == bfd_mach_sparc_v8pluse
750
0
    || machine == bfd_mach_sparc_v8plusv
751
0
    || machine == bfd_mach_sparc_v8plusm
752
0
    || machine == bfd_mach_sparc_v8plusm8
753
0
    || machine == bfd_mach_sparc_v9
754
0
    || machine == bfd_mach_sparc_v9a
755
0
    || machine == bfd_mach_sparc_v9b
756
0
    || machine == bfd_mach_sparc_v9c
757
0
    || machine == bfd_mach_sparc_v9d
758
0
    || machine == bfd_mach_sparc_v9e
759
0
    || machine == bfd_mach_sparc_v9v
760
0
    || machine == bfd_mach_sparc_v9m
761
0
    || machine == bfd_mach_sparc_v9m8)
762
0
  arch_flags = M_SPARC;
763
0
      else if (machine == bfd_mach_sparc_sparclet)
764
0
  arch_flags = M_SPARCLET;
765
0
      break;
766
767
0
    case bfd_arch_i386:
768
0
      if (machine == 0
769
0
    || machine == bfd_mach_i386_i386
770
0
    || machine == bfd_mach_i386_i386_intel_syntax)
771
0
  arch_flags = M_386;
772
0
      break;
773
774
0
    case bfd_arch_arm:
775
0
      if (machine == 0)
776
0
  arch_flags = M_ARM;
777
0
      break;
778
779
0
    case bfd_arch_mips:
780
0
      switch (machine)
781
0
  {
782
0
  case 0:
783
0
  case bfd_mach_mips3000:
784
0
  case bfd_mach_mips3900:
785
0
    arch_flags = M_MIPS1;
786
0
    break;
787
0
  case bfd_mach_mips6000:
788
0
    arch_flags = M_MIPS2;
789
0
    break;
790
0
  case bfd_mach_mips4000:
791
0
  case bfd_mach_mips4010:
792
0
  case bfd_mach_mips4100:
793
0
  case bfd_mach_mips4300:
794
0
  case bfd_mach_mips4400:
795
0
  case bfd_mach_mips4600:
796
0
  case bfd_mach_mips4650:
797
0
  case bfd_mach_mips8000:
798
0
  case bfd_mach_mips9000:
799
0
  case bfd_mach_mips10000:
800
0
  case bfd_mach_mips12000:
801
0
  case bfd_mach_mips14000:
802
0
  case bfd_mach_mips16000:
803
0
  case bfd_mach_mips16:
804
0
  case bfd_mach_mipsisa32:
805
0
  case bfd_mach_mipsisa32r2:
806
0
  case bfd_mach_mipsisa32r3:
807
0
  case bfd_mach_mipsisa32r5:
808
0
  case bfd_mach_mipsisa32r6:
809
0
  case bfd_mach_mips5:
810
0
  case bfd_mach_mipsisa64:
811
0
  case bfd_mach_mipsisa64r2:
812
0
  case bfd_mach_mipsisa64r3:
813
0
  case bfd_mach_mipsisa64r5:
814
0
  case bfd_mach_mipsisa64r6:
815
0
  case bfd_mach_mips_sb1:
816
0
  case bfd_mach_mips_xlr:
817
    /* FIXME: These should be MIPS3, MIPS4, MIPS16, MIPS32, etc.  */
818
0
    arch_flags = M_MIPS2;
819
0
    break;
820
0
  default:
821
0
    arch_flags = M_UNKNOWN;
822
0
    break;
823
0
  }
824
0
      break;
825
826
179
    case bfd_arch_ns32k:
827
179
      switch (machine)
828
179
  {
829
0
  case 0:   arch_flags = M_NS32532; break;
830
0
  case 32032: arch_flags = M_NS32032; break;
831
179
  case 32532: arch_flags = M_NS32532; break;
832
0
  default:  arch_flags = M_UNKNOWN; break;
833
179
  }
834
179
      break;
835
836
189
    case bfd_arch_vax:
837
189
      *unknown = false;
838
189
      break;
839
840
1.06k
    case bfd_arch_cris:
841
1.06k
      if (machine == 0 || machine == 255)
842
1.06k
  arch_flags = M_CRIS;
843
1.06k
      break;
844
845
0
    default:
846
0
      arch_flags = M_UNKNOWN;
847
1.43k
    }
848
849
1.43k
  if (arch_flags != M_UNKNOWN)
850
1.24k
    *unknown = false;
851
852
1.43k
  return arch_flags;
853
1.43k
}
cris_aout_32_machine_type
Line
Count
Source
731
1.06k
{
732
1.06k
  enum machine_type arch_flags;
733
734
1.06k
  arch_flags = M_UNKNOWN;
735
1.06k
  *unknown = true;
736
737
1.06k
  switch (arch)
738
1.06k
    {
739
0
    case bfd_arch_sparc:
740
0
      if (machine == 0
741
0
    || machine == bfd_mach_sparc
742
0
    || machine == bfd_mach_sparc_sparclite
743
0
    || machine == bfd_mach_sparc_sparclite_le
744
0
    || machine == bfd_mach_sparc_v8plus
745
0
    || machine == bfd_mach_sparc_v8plusa
746
0
    || machine == bfd_mach_sparc_v8plusb
747
0
    || machine == bfd_mach_sparc_v8plusc
748
0
    || machine == bfd_mach_sparc_v8plusd
749
0
    || machine == bfd_mach_sparc_v8pluse
750
0
    || machine == bfd_mach_sparc_v8plusv
751
0
    || machine == bfd_mach_sparc_v8plusm
752
0
    || machine == bfd_mach_sparc_v8plusm8
753
0
    || machine == bfd_mach_sparc_v9
754
0
    || machine == bfd_mach_sparc_v9a
755
0
    || machine == bfd_mach_sparc_v9b
756
0
    || machine == bfd_mach_sparc_v9c
757
0
    || machine == bfd_mach_sparc_v9d
758
0
    || machine == bfd_mach_sparc_v9e
759
0
    || machine == bfd_mach_sparc_v9v
760
0
    || machine == bfd_mach_sparc_v9m
761
0
    || machine == bfd_mach_sparc_v9m8)
762
0
  arch_flags = M_SPARC;
763
0
      else if (machine == bfd_mach_sparc_sparclet)
764
0
  arch_flags = M_SPARCLET;
765
0
      break;
766
767
0
    case bfd_arch_i386:
768
0
      if (machine == 0
769
0
    || machine == bfd_mach_i386_i386
770
0
    || machine == bfd_mach_i386_i386_intel_syntax)
771
0
  arch_flags = M_386;
772
0
      break;
773
774
0
    case bfd_arch_arm:
775
0
      if (machine == 0)
776
0
  arch_flags = M_ARM;
777
0
      break;
778
779
0
    case bfd_arch_mips:
780
0
      switch (machine)
781
0
  {
782
0
  case 0:
783
0
  case bfd_mach_mips3000:
784
0
  case bfd_mach_mips3900:
785
0
    arch_flags = M_MIPS1;
786
0
    break;
787
0
  case bfd_mach_mips6000:
788
0
    arch_flags = M_MIPS2;
789
0
    break;
790
0
  case bfd_mach_mips4000:
791
0
  case bfd_mach_mips4010:
792
0
  case bfd_mach_mips4100:
793
0
  case bfd_mach_mips4300:
794
0
  case bfd_mach_mips4400:
795
0
  case bfd_mach_mips4600:
796
0
  case bfd_mach_mips4650:
797
0
  case bfd_mach_mips8000:
798
0
  case bfd_mach_mips9000:
799
0
  case bfd_mach_mips10000:
800
0
  case bfd_mach_mips12000:
801
0
  case bfd_mach_mips14000:
802
0
  case bfd_mach_mips16000:
803
0
  case bfd_mach_mips16:
804
0
  case bfd_mach_mipsisa32:
805
0
  case bfd_mach_mipsisa32r2:
806
0
  case bfd_mach_mipsisa32r3:
807
0
  case bfd_mach_mipsisa32r5:
808
0
  case bfd_mach_mipsisa32r6:
809
0
  case bfd_mach_mips5:
810
0
  case bfd_mach_mipsisa64:
811
0
  case bfd_mach_mipsisa64r2:
812
0
  case bfd_mach_mipsisa64r3:
813
0
  case bfd_mach_mipsisa64r5:
814
0
  case bfd_mach_mipsisa64r6:
815
0
  case bfd_mach_mips_sb1:
816
0
  case bfd_mach_mips_xlr:
817
    /* FIXME: These should be MIPS3, MIPS4, MIPS16, MIPS32, etc.  */
818
0
    arch_flags = M_MIPS2;
819
0
    break;
820
0
  default:
821
0
    arch_flags = M_UNKNOWN;
822
0
    break;
823
0
  }
824
0
      break;
825
826
0
    case bfd_arch_ns32k:
827
0
      switch (machine)
828
0
  {
829
0
  case 0:   arch_flags = M_NS32532; break;
830
0
  case 32032: arch_flags = M_NS32032; break;
831
0
  case 32532: arch_flags = M_NS32532; break;
832
0
  default:  arch_flags = M_UNKNOWN; break;
833
0
  }
834
0
      break;
835
836
0
    case bfd_arch_vax:
837
0
      *unknown = false;
838
0
      break;
839
840
1.06k
    case bfd_arch_cris:
841
1.06k
      if (machine == 0 || machine == 255)
842
1.06k
  arch_flags = M_CRIS;
843
1.06k
      break;
844
845
0
    default:
846
0
      arch_flags = M_UNKNOWN;
847
1.06k
    }
848
849
1.06k
  if (arch_flags != M_UNKNOWN)
850
1.06k
    *unknown = false;
851
852
1.06k
  return arch_flags;
853
1.06k
}
ns32kaout_32_machine_type
Line
Count
Source
731
179
{
732
179
  enum machine_type arch_flags;
733
734
179
  arch_flags = M_UNKNOWN;
735
179
  *unknown = true;
736
737
179
  switch (arch)
738
179
    {
739
0
    case bfd_arch_sparc:
740
0
      if (machine == 0
741
0
    || machine == bfd_mach_sparc
742
0
    || machine == bfd_mach_sparc_sparclite
743
0
    || machine == bfd_mach_sparc_sparclite_le
744
0
    || machine == bfd_mach_sparc_v8plus
745
0
    || machine == bfd_mach_sparc_v8plusa
746
0
    || machine == bfd_mach_sparc_v8plusb
747
0
    || machine == bfd_mach_sparc_v8plusc
748
0
    || machine == bfd_mach_sparc_v8plusd
749
0
    || machine == bfd_mach_sparc_v8pluse
750
0
    || machine == bfd_mach_sparc_v8plusv
751
0
    || machine == bfd_mach_sparc_v8plusm
752
0
    || machine == bfd_mach_sparc_v8plusm8
753
0
    || machine == bfd_mach_sparc_v9
754
0
    || machine == bfd_mach_sparc_v9a
755
0
    || machine == bfd_mach_sparc_v9b
756
0
    || machine == bfd_mach_sparc_v9c
757
0
    || machine == bfd_mach_sparc_v9d
758
0
    || machine == bfd_mach_sparc_v9e
759
0
    || machine == bfd_mach_sparc_v9v
760
0
    || machine == bfd_mach_sparc_v9m
761
0
    || machine == bfd_mach_sparc_v9m8)
762
0
  arch_flags = M_SPARC;
763
0
      else if (machine == bfd_mach_sparc_sparclet)
764
0
  arch_flags = M_SPARCLET;
765
0
      break;
766
767
0
    case bfd_arch_i386:
768
0
      if (machine == 0
769
0
    || machine == bfd_mach_i386_i386
770
0
    || machine == bfd_mach_i386_i386_intel_syntax)
771
0
  arch_flags = M_386;
772
0
      break;
773
774
0
    case bfd_arch_arm:
775
0
      if (machine == 0)
776
0
  arch_flags = M_ARM;
777
0
      break;
778
779
0
    case bfd_arch_mips:
780
0
      switch (machine)
781
0
  {
782
0
  case 0:
783
0
  case bfd_mach_mips3000:
784
0
  case bfd_mach_mips3900:
785
0
    arch_flags = M_MIPS1;
786
0
    break;
787
0
  case bfd_mach_mips6000:
788
0
    arch_flags = M_MIPS2;
789
0
    break;
790
0
  case bfd_mach_mips4000:
791
0
  case bfd_mach_mips4010:
792
0
  case bfd_mach_mips4100:
793
0
  case bfd_mach_mips4300:
794
0
  case bfd_mach_mips4400:
795
0
  case bfd_mach_mips4600:
796
0
  case bfd_mach_mips4650:
797
0
  case bfd_mach_mips8000:
798
0
  case bfd_mach_mips9000:
799
0
  case bfd_mach_mips10000:
800
0
  case bfd_mach_mips12000:
801
0
  case bfd_mach_mips14000:
802
0
  case bfd_mach_mips16000:
803
0
  case bfd_mach_mips16:
804
0
  case bfd_mach_mipsisa32:
805
0
  case bfd_mach_mipsisa32r2:
806
0
  case bfd_mach_mipsisa32r3:
807
0
  case bfd_mach_mipsisa32r5:
808
0
  case bfd_mach_mipsisa32r6:
809
0
  case bfd_mach_mips5:
810
0
  case bfd_mach_mipsisa64:
811
0
  case bfd_mach_mipsisa64r2:
812
0
  case bfd_mach_mipsisa64r3:
813
0
  case bfd_mach_mipsisa64r5:
814
0
  case bfd_mach_mipsisa64r6:
815
0
  case bfd_mach_mips_sb1:
816
0
  case bfd_mach_mips_xlr:
817
    /* FIXME: These should be MIPS3, MIPS4, MIPS16, MIPS32, etc.  */
818
0
    arch_flags = M_MIPS2;
819
0
    break;
820
0
  default:
821
0
    arch_flags = M_UNKNOWN;
822
0
    break;
823
0
  }
824
0
      break;
825
826
179
    case bfd_arch_ns32k:
827
179
      switch (machine)
828
179
  {
829
0
  case 0:   arch_flags = M_NS32532; break;
830
0
  case 32032: arch_flags = M_NS32032; break;
831
179
  case 32532: arch_flags = M_NS32532; break;
832
0
  default:  arch_flags = M_UNKNOWN; break;
833
179
  }
834
179
      break;
835
836
179
    case bfd_arch_vax:
837
0
      *unknown = false;
838
0
      break;
839
840
0
    case bfd_arch_cris:
841
0
      if (machine == 0 || machine == 255)
842
0
  arch_flags = M_CRIS;
843
0
      break;
844
845
0
    default:
846
0
      arch_flags = M_UNKNOWN;
847
179
    }
848
849
179
  if (arch_flags != M_UNKNOWN)
850
179
    *unknown = false;
851
852
179
  return arch_flags;
853
179
}
aout_32_machine_type
Line
Count
Source
731
189
{
732
189
  enum machine_type arch_flags;
733
734
189
  arch_flags = M_UNKNOWN;
735
189
  *unknown = true;
736
737
189
  switch (arch)
738
189
    {
739
0
    case bfd_arch_sparc:
740
0
      if (machine == 0
741
0
    || machine == bfd_mach_sparc
742
0
    || machine == bfd_mach_sparc_sparclite
743
0
    || machine == bfd_mach_sparc_sparclite_le
744
0
    || machine == bfd_mach_sparc_v8plus
745
0
    || machine == bfd_mach_sparc_v8plusa
746
0
    || machine == bfd_mach_sparc_v8plusb
747
0
    || machine == bfd_mach_sparc_v8plusc
748
0
    || machine == bfd_mach_sparc_v8plusd
749
0
    || machine == bfd_mach_sparc_v8pluse
750
0
    || machine == bfd_mach_sparc_v8plusv
751
0
    || machine == bfd_mach_sparc_v8plusm
752
0
    || machine == bfd_mach_sparc_v8plusm8
753
0
    || machine == bfd_mach_sparc_v9
754
0
    || machine == bfd_mach_sparc_v9a
755
0
    || machine == bfd_mach_sparc_v9b
756
0
    || machine == bfd_mach_sparc_v9c
757
0
    || machine == bfd_mach_sparc_v9d
758
0
    || machine == bfd_mach_sparc_v9e
759
0
    || machine == bfd_mach_sparc_v9v
760
0
    || machine == bfd_mach_sparc_v9m
761
0
    || machine == bfd_mach_sparc_v9m8)
762
0
  arch_flags = M_SPARC;
763
0
      else if (machine == bfd_mach_sparc_sparclet)
764
0
  arch_flags = M_SPARCLET;
765
0
      break;
766
767
0
    case bfd_arch_i386:
768
0
      if (machine == 0
769
0
    || machine == bfd_mach_i386_i386
770
0
    || machine == bfd_mach_i386_i386_intel_syntax)
771
0
  arch_flags = M_386;
772
0
      break;
773
774
0
    case bfd_arch_arm:
775
0
      if (machine == 0)
776
0
  arch_flags = M_ARM;
777
0
      break;
778
779
0
    case bfd_arch_mips:
780
0
      switch (machine)
781
0
  {
782
0
  case 0:
783
0
  case bfd_mach_mips3000:
784
0
  case bfd_mach_mips3900:
785
0
    arch_flags = M_MIPS1;
786
0
    break;
787
0
  case bfd_mach_mips6000:
788
0
    arch_flags = M_MIPS2;
789
0
    break;
790
0
  case bfd_mach_mips4000:
791
0
  case bfd_mach_mips4010:
792
0
  case bfd_mach_mips4100:
793
0
  case bfd_mach_mips4300:
794
0
  case bfd_mach_mips4400:
795
0
  case bfd_mach_mips4600:
796
0
  case bfd_mach_mips4650:
797
0
  case bfd_mach_mips8000:
798
0
  case bfd_mach_mips9000:
799
0
  case bfd_mach_mips10000:
800
0
  case bfd_mach_mips12000:
801
0
  case bfd_mach_mips14000:
802
0
  case bfd_mach_mips16000:
803
0
  case bfd_mach_mips16:
804
0
  case bfd_mach_mipsisa32:
805
0
  case bfd_mach_mipsisa32r2:
806
0
  case bfd_mach_mipsisa32r3:
807
0
  case bfd_mach_mipsisa32r5:
808
0
  case bfd_mach_mipsisa32r6:
809
0
  case bfd_mach_mips5:
810
0
  case bfd_mach_mipsisa64:
811
0
  case bfd_mach_mipsisa64r2:
812
0
  case bfd_mach_mipsisa64r3:
813
0
  case bfd_mach_mipsisa64r5:
814
0
  case bfd_mach_mipsisa64r6:
815
0
  case bfd_mach_mips_sb1:
816
0
  case bfd_mach_mips_xlr:
817
    /* FIXME: These should be MIPS3, MIPS4, MIPS16, MIPS32, etc.  */
818
0
    arch_flags = M_MIPS2;
819
0
    break;
820
0
  default:
821
0
    arch_flags = M_UNKNOWN;
822
0
    break;
823
0
  }
824
0
      break;
825
826
0
    case bfd_arch_ns32k:
827
0
      switch (machine)
828
0
  {
829
0
  case 0:   arch_flags = M_NS32532; break;
830
0
  case 32032: arch_flags = M_NS32032; break;
831
0
  case 32532: arch_flags = M_NS32532; break;
832
0
  default:  arch_flags = M_UNKNOWN; break;
833
0
  }
834
0
      break;
835
836
189
    case bfd_arch_vax:
837
189
      *unknown = false;
838
189
      break;
839
840
0
    case bfd_arch_cris:
841
0
      if (machine == 0 || machine == 255)
842
0
  arch_flags = M_CRIS;
843
0
      break;
844
845
0
    default:
846
0
      arch_flags = M_UNKNOWN;
847
189
    }
848
849
189
  if (arch_flags != M_UNKNOWN)
850
0
    *unknown = false;
851
852
189
  return arch_flags;
853
189
}
854
855
/*
856
FUNCTION
857
  aout_@var{size}_set_arch_mach
858
859
SYNOPSIS
860
  bool aout_@var{size}_set_arch_mach,
861
   (bfd *,
862
    enum bfd_architecture arch,
863
    unsigned long machine);
864
865
DESCRIPTION
866
  Set the architecture and the machine of the BFD @var{abfd} to the
867
  values @var{arch} and @var{machine}.  Verify that @var{abfd}'s format
868
  can support the architecture required.
869
*/
870
871
bool
872
NAME (aout, set_arch_mach) (bfd *abfd,
873
          enum bfd_architecture arch,
874
          unsigned long machine)
875
1.43k
{
876
1.43k
  if (! bfd_default_set_arch_mach (abfd, arch, machine))
877
0
    return false;
878
879
1.43k
  if (arch != bfd_arch_unknown)
880
1.43k
    {
881
1.43k
      bool unknown;
882
883
1.43k
      NAME (aout, machine_type) (arch, machine, &unknown);
884
1.43k
      if (unknown)
885
0
  return false;
886
1.43k
    }
887
888
  /* Determine the size of a relocation entry.  */
889
1.43k
  switch (arch)
890
1.43k
    {
891
0
    case bfd_arch_sparc:
892
0
    case bfd_arch_mips:
893
0
      obj_reloc_entry_size (abfd) = RELOC_EXT_SIZE;
894
0
      break;
895
1.43k
    default:
896
1.43k
      obj_reloc_entry_size (abfd) = RELOC_STD_SIZE;
897
1.43k
      break;
898
1.43k
    }
899
900
1.43k
  return (*aout_backend_info (abfd)->set_sizes) (abfd);
901
1.43k
}
cris_aout_32_set_arch_mach
Line
Count
Source
875
1.06k
{
876
1.06k
  if (! bfd_default_set_arch_mach (abfd, arch, machine))
877
0
    return false;
878
879
1.06k
  if (arch != bfd_arch_unknown)
880
1.06k
    {
881
1.06k
      bool unknown;
882
883
1.06k
      NAME (aout, machine_type) (arch, machine, &unknown);
884
1.06k
      if (unknown)
885
0
  return false;
886
1.06k
    }
887
888
  /* Determine the size of a relocation entry.  */
889
1.06k
  switch (arch)
890
1.06k
    {
891
0
    case bfd_arch_sparc:
892
0
    case bfd_arch_mips:
893
0
      obj_reloc_entry_size (abfd) = RELOC_EXT_SIZE;
894
0
      break;
895
1.06k
    default:
896
1.06k
      obj_reloc_entry_size (abfd) = RELOC_STD_SIZE;
897
1.06k
      break;
898
1.06k
    }
899
900
1.06k
  return (*aout_backend_info (abfd)->set_sizes) (abfd);
901
1.06k
}
ns32kaout_32_set_arch_mach
Line
Count
Source
875
179
{
876
179
  if (! bfd_default_set_arch_mach (abfd, arch, machine))
877
0
    return false;
878
879
179
  if (arch != bfd_arch_unknown)
880
179
    {
881
179
      bool unknown;
882
883
179
      NAME (aout, machine_type) (arch, machine, &unknown);
884
179
      if (unknown)
885
0
  return false;
886
179
    }
887
888
  /* Determine the size of a relocation entry.  */
889
179
  switch (arch)
890
179
    {
891
0
    case bfd_arch_sparc:
892
0
    case bfd_arch_mips:
893
0
      obj_reloc_entry_size (abfd) = RELOC_EXT_SIZE;
894
0
      break;
895
179
    default:
896
179
      obj_reloc_entry_size (abfd) = RELOC_STD_SIZE;
897
179
      break;
898
179
    }
899
900
179
  return (*aout_backend_info (abfd)->set_sizes) (abfd);
901
179
}
aout_32_set_arch_mach
Line
Count
Source
875
189
{
876
189
  if (! bfd_default_set_arch_mach (abfd, arch, machine))
877
0
    return false;
878
879
189
  if (arch != bfd_arch_unknown)
880
189
    {
881
189
      bool unknown;
882
883
189
      NAME (aout, machine_type) (arch, machine, &unknown);
884
189
      if (unknown)
885
0
  return false;
886
189
    }
887
888
  /* Determine the size of a relocation entry.  */
889
189
  switch (arch)
890
189
    {
891
0
    case bfd_arch_sparc:
892
0
    case bfd_arch_mips:
893
0
      obj_reloc_entry_size (abfd) = RELOC_EXT_SIZE;
894
0
      break;
895
189
    default:
896
189
      obj_reloc_entry_size (abfd) = RELOC_STD_SIZE;
897
189
      break;
898
189
    }
899
900
189
  return (*aout_backend_info (abfd)->set_sizes) (abfd);
901
189
}
902
903
static void
904
adjust_o_magic (bfd *abfd, struct internal_exec *execp)
905
0
{
906
0
  file_ptr pos = adata (abfd).exec_bytes_size;
907
0
  bfd_vma vma = 0;
908
0
  int pad = 0;
909
0
  asection *text = obj_textsec (abfd);
910
0
  asection *data = obj_datasec (abfd);
911
0
  asection *bss = obj_bsssec (abfd);
912
913
  /* Text.  */
914
0
  text->filepos = pos;
915
0
  if (!text->user_set_vma)
916
0
    text->vma = vma;
917
0
  else
918
0
    vma = text->vma;
919
920
0
  pos += execp->a_text;
921
0
  vma += execp->a_text;
922
923
  /* Data.  */
924
0
  if (!data->user_set_vma)
925
0
    {
926
0
      pos += pad;
927
0
      vma += pad;
928
0
      data->vma = vma;
929
0
    }
930
0
  else
931
0
    vma = data->vma;
932
0
  execp->a_text += pad;
933
934
0
  data->filepos = pos;
935
0
  pos += data->size;
936
0
  vma += data->size;
937
938
  /* BSS.  */
939
0
  if (!bss->user_set_vma)
940
0
    {
941
0
      pos += pad;
942
0
      vma += pad;
943
0
      bss->vma = vma;
944
0
    }
945
0
  else
946
0
    {
947
      /* The VMA of the .bss section is set by the VMA of the
948
   .data section plus the size of the .data section.  We may
949
   need to add padding bytes to make this true.  */
950
0
      pad = bss->vma - vma;
951
0
      if (pad < 0)
952
0
  pad = 0;
953
0
      pos += pad;
954
0
    }
955
0
  execp->a_data = data->size + pad;
956
0
  bss->filepos = pos;
957
0
  execp->a_bss = bss->size;
958
959
0
  N_SET_MAGIC (execp, OMAGIC);
960
0
}
Unexecuted instantiation: aout-cris.c:adjust_o_magic
Unexecuted instantiation: aout-ns32k.c:adjust_o_magic
Unexecuted instantiation: aout32.c:adjust_o_magic
961
962
static void
963
adjust_z_magic (bfd *abfd, struct internal_exec *execp)
964
154
{
965
154
  bfd_size_type data_pad, text_pad;
966
154
  file_ptr text_end;
967
154
  const struct aout_backend_data *abdp;
968
  /* TRUE if text includes exec header.  */
969
154
  bool ztih;
970
154
  asection *text = obj_textsec (abfd);
971
154
  asection *data = obj_datasec (abfd);
972
154
  asection *bss = obj_bsssec (abfd);
973
974
154
  abdp = aout_backend_info (abfd);
975
976
  /* Text.  */
977
154
  ztih = (abdp != NULL
978
154
    && (abdp->text_includes_header
979
0
        || obj_aout_subformat (abfd) == q_magic_format));
980
154
  text->filepos = (ztih
981
154
       ? adata (abfd).exec_bytes_size
982
154
       : adata (abfd).zmagic_disk_block_size);
983
154
  if (!text->user_set_vma)
984
93
    {
985
      /* ?? Do we really need to check for relocs here?  */
986
93
      text->vma = ((abfd->flags & HAS_RELOC)
987
93
       ? 0
988
93
       : (ztih
989
38
          ? abdp->default_text_vma + adata (abfd).exec_bytes_size
990
38
          : abdp->default_text_vma));
991
93
      text_pad = 0;
992
93
    }
993
61
  else
994
61
    {
995
      /* The .text section is being loaded at an unusual address.  We
996
   may need to pad it such that the .data section starts at a page
997
   boundary.  */
998
61
      if (ztih)
999
61
  text_pad = ((text->filepos - text->vma)
1000
61
        & (adata (abfd).page_size - 1));
1001
0
      else
1002
0
  text_pad = (-text->vma
1003
0
        & (adata (abfd).page_size - 1));
1004
61
    }
1005
1006
  /* Find start of data.  */
1007
154
  if (ztih)
1008
154
    {
1009
154
      text_end = text->filepos + execp->a_text;
1010
154
      text_pad += BFD_ALIGN (text_end, adata (abfd).page_size) - text_end;
1011
154
    }
1012
0
  else
1013
0
    {
1014
      /* Note that if page_size == zmagic_disk_block_size, then
1015
   filepos == page_size, and this case is the same as the ztih
1016
   case.  */
1017
0
      text_end = execp->a_text;
1018
0
      text_pad += BFD_ALIGN (text_end, adata (abfd).page_size) - text_end;
1019
0
      text_end += text->filepos;
1020
0
    }
1021
154
  execp->a_text += text_pad;
1022
1023
  /* Data.  */
1024
154
  if (!data->user_set_vma)
1025
93
    {
1026
93
      bfd_vma vma;
1027
93
      vma = text->vma + execp->a_text;
1028
93
      data->vma = BFD_ALIGN (vma, adata (abfd).segment_size);
1029
93
    }
1030
154
  if (abdp && abdp->zmagic_mapped_contiguous)
1031
0
    {
1032
0
      text_pad = data->vma - (text->vma + execp->a_text);
1033
      /* Only pad the text section if the data
1034
   section is going to be placed after it.  */
1035
0
      if (text_pad > 0)
1036
0
  execp->a_text += text_pad;
1037
0
    }
1038
154
  data->filepos = text->filepos + execp->a_text;
1039
1040
  /* Fix up exec header while we're at it.  */
1041
154
  if (ztih && (!abdp || (abdp && !abdp->exec_header_not_counted)))
1042
154
    execp->a_text += adata (abfd).exec_bytes_size;
1043
154
  if (obj_aout_subformat (abfd) == q_magic_format)
1044
154
    N_SET_QMAGIC (execp);
1045
141
  else
1046
141
    N_SET_MAGIC (execp, ZMAGIC);
1047
1048
  /* Spec says data section should be rounded up to page boundary.  */
1049
154
  execp->a_data = align_power (data->size, bss->alignment_power);
1050
154
  execp->a_data = BFD_ALIGN (execp->a_data, adata (abfd).page_size);
1051
154
  data_pad = execp->a_data - data->size;
1052
1053
  /* BSS.  */
1054
154
  if (!bss->user_set_vma)
1055
93
    bss->vma = data->vma + execp->a_data;
1056
  /* If the BSS immediately follows the data section and extra space
1057
     in the page is left after the data section, fudge data
1058
     in the header so that the bss section looks smaller by that
1059
     amount.  We'll start the bss section there, and lie to the OS.
1060
     (Note that a linker script, as well as the above assignment,
1061
     could have explicitly set the BSS vma to immediately follow
1062
     the data section.)  */
1063
154
  if (align_power (bss->vma, bss->alignment_power) == data->vma + execp->a_data)
1064
148
    execp->a_bss = data_pad > bss->size ? 0 : bss->size - data_pad;
1065
6
  else
1066
6
    execp->a_bss = bss->size;
1067
154
}
Unexecuted instantiation: aout-cris.c:adjust_z_magic
aout-ns32k.c:adjust_z_magic
Line
Count
Source
964
69
{
965
69
  bfd_size_type data_pad, text_pad;
966
69
  file_ptr text_end;
967
69
  const struct aout_backend_data *abdp;
968
  /* TRUE if text includes exec header.  */
969
69
  bool ztih;
970
69
  asection *text = obj_textsec (abfd);
971
69
  asection *data = obj_datasec (abfd);
972
69
  asection *bss = obj_bsssec (abfd);
973
974
69
  abdp = aout_backend_info (abfd);
975
976
  /* Text.  */
977
69
  ztih = (abdp != NULL
978
69
    && (abdp->text_includes_header
979
0
        || obj_aout_subformat (abfd) == q_magic_format));
980
69
  text->filepos = (ztih
981
69
       ? adata (abfd).exec_bytes_size
982
69
       : adata (abfd).zmagic_disk_block_size);
983
69
  if (!text->user_set_vma)
984
44
    {
985
      /* ?? Do we really need to check for relocs here?  */
986
44
      text->vma = ((abfd->flags & HAS_RELOC)
987
44
       ? 0
988
44
       : (ztih
989
15
          ? abdp->default_text_vma + adata (abfd).exec_bytes_size
990
15
          : abdp->default_text_vma));
991
44
      text_pad = 0;
992
44
    }
993
25
  else
994
25
    {
995
      /* The .text section is being loaded at an unusual address.  We
996
   may need to pad it such that the .data section starts at a page
997
   boundary.  */
998
25
      if (ztih)
999
25
  text_pad = ((text->filepos - text->vma)
1000
25
        & (adata (abfd).page_size - 1));
1001
0
      else
1002
0
  text_pad = (-text->vma
1003
0
        & (adata (abfd).page_size - 1));
1004
25
    }
1005
1006
  /* Find start of data.  */
1007
69
  if (ztih)
1008
69
    {
1009
69
      text_end = text->filepos + execp->a_text;
1010
69
      text_pad += BFD_ALIGN (text_end, adata (abfd).page_size) - text_end;
1011
69
    }
1012
0
  else
1013
0
    {
1014
      /* Note that if page_size == zmagic_disk_block_size, then
1015
   filepos == page_size, and this case is the same as the ztih
1016
   case.  */
1017
0
      text_end = execp->a_text;
1018
0
      text_pad += BFD_ALIGN (text_end, adata (abfd).page_size) - text_end;
1019
0
      text_end += text->filepos;
1020
0
    }
1021
69
  execp->a_text += text_pad;
1022
1023
  /* Data.  */
1024
69
  if (!data->user_set_vma)
1025
44
    {
1026
44
      bfd_vma vma;
1027
44
      vma = text->vma + execp->a_text;
1028
44
      data->vma = BFD_ALIGN (vma, adata (abfd).segment_size);
1029
44
    }
1030
69
  if (abdp && abdp->zmagic_mapped_contiguous)
1031
0
    {
1032
0
      text_pad = data->vma - (text->vma + execp->a_text);
1033
      /* Only pad the text section if the data
1034
   section is going to be placed after it.  */
1035
0
      if (text_pad > 0)
1036
0
  execp->a_text += text_pad;
1037
0
    }
1038
69
  data->filepos = text->filepos + execp->a_text;
1039
1040
  /* Fix up exec header while we're at it.  */
1041
69
  if (ztih && (!abdp || (abdp && !abdp->exec_header_not_counted)))
1042
69
    execp->a_text += adata (abfd).exec_bytes_size;
1043
69
  if (obj_aout_subformat (abfd) == q_magic_format)
1044
69
    N_SET_QMAGIC (execp);
1045
62
  else
1046
62
    N_SET_MAGIC (execp, ZMAGIC);
1047
1048
  /* Spec says data section should be rounded up to page boundary.  */
1049
69
  execp->a_data = align_power (data->size, bss->alignment_power);
1050
69
  execp->a_data = BFD_ALIGN (execp->a_data, adata (abfd).page_size);
1051
69
  data_pad = execp->a_data - data->size;
1052
1053
  /* BSS.  */
1054
69
  if (!bss->user_set_vma)
1055
44
    bss->vma = data->vma + execp->a_data;
1056
  /* If the BSS immediately follows the data section and extra space
1057
     in the page is left after the data section, fudge data
1058
     in the header so that the bss section looks smaller by that
1059
     amount.  We'll start the bss section there, and lie to the OS.
1060
     (Note that a linker script, as well as the above assignment,
1061
     could have explicitly set the BSS vma to immediately follow
1062
     the data section.)  */
1063
69
  if (align_power (bss->vma, bss->alignment_power) == data->vma + execp->a_data)
1064
67
    execp->a_bss = data_pad > bss->size ? 0 : bss->size - data_pad;
1065
2
  else
1066
2
    execp->a_bss = bss->size;
1067
69
}
aout32.c:adjust_z_magic
Line
Count
Source
964
85
{
965
85
  bfd_size_type data_pad, text_pad;
966
85
  file_ptr text_end;
967
85
  const struct aout_backend_data *abdp;
968
  /* TRUE if text includes exec header.  */
969
85
  bool ztih;
970
85
  asection *text = obj_textsec (abfd);
971
85
  asection *data = obj_datasec (abfd);
972
85
  asection *bss = obj_bsssec (abfd);
973
974
85
  abdp = aout_backend_info (abfd);
975
976
  /* Text.  */
977
85
  ztih = (abdp != NULL
978
85
    && (abdp->text_includes_header
979
0
        || obj_aout_subformat (abfd) == q_magic_format));
980
85
  text->filepos = (ztih
981
85
       ? adata (abfd).exec_bytes_size
982
85
       : adata (abfd).zmagic_disk_block_size);
983
85
  if (!text->user_set_vma)
984
49
    {
985
      /* ?? Do we really need to check for relocs here?  */
986
49
      text->vma = ((abfd->flags & HAS_RELOC)
987
49
       ? 0
988
49
       : (ztih
989
23
          ? abdp->default_text_vma + adata (abfd).exec_bytes_size
990
23
          : abdp->default_text_vma));
991
49
      text_pad = 0;
992
49
    }
993
36
  else
994
36
    {
995
      /* The .text section is being loaded at an unusual address.  We
996
   may need to pad it such that the .data section starts at a page
997
   boundary.  */
998
36
      if (ztih)
999
36
  text_pad = ((text->filepos - text->vma)
1000
36
        & (adata (abfd).page_size - 1));
1001
0
      else
1002
0
  text_pad = (-text->vma
1003
0
        & (adata (abfd).page_size - 1));
1004
36
    }
1005
1006
  /* Find start of data.  */
1007
85
  if (ztih)
1008
85
    {
1009
85
      text_end = text->filepos + execp->a_text;
1010
85
      text_pad += BFD_ALIGN (text_end, adata (abfd).page_size) - text_end;
1011
85
    }
1012
0
  else
1013
0
    {
1014
      /* Note that if page_size == zmagic_disk_block_size, then
1015
   filepos == page_size, and this case is the same as the ztih
1016
   case.  */
1017
0
      text_end = execp->a_text;
1018
0
      text_pad += BFD_ALIGN (text_end, adata (abfd).page_size) - text_end;
1019
0
      text_end += text->filepos;
1020
0
    }
1021
85
  execp->a_text += text_pad;
1022
1023
  /* Data.  */
1024
85
  if (!data->user_set_vma)
1025
49
    {
1026
49
      bfd_vma vma;
1027
49
      vma = text->vma + execp->a_text;
1028
49
      data->vma = BFD_ALIGN (vma, adata (abfd).segment_size);
1029
49
    }
1030
85
  if (abdp && abdp->zmagic_mapped_contiguous)
1031
0
    {
1032
0
      text_pad = data->vma - (text->vma + execp->a_text);
1033
      /* Only pad the text section if the data
1034
   section is going to be placed after it.  */
1035
0
      if (text_pad > 0)
1036
0
  execp->a_text += text_pad;
1037
0
    }
1038
85
  data->filepos = text->filepos + execp->a_text;
1039
1040
  /* Fix up exec header while we're at it.  */
1041
85
  if (ztih && (!abdp || (abdp && !abdp->exec_header_not_counted)))
1042
85
    execp->a_text += adata (abfd).exec_bytes_size;
1043
85
  if (obj_aout_subformat (abfd) == q_magic_format)
1044
85
    N_SET_QMAGIC (execp);
1045
79
  else
1046
79
    N_SET_MAGIC (execp, ZMAGIC);
1047
1048
  /* Spec says data section should be rounded up to page boundary.  */
1049
85
  execp->a_data = align_power (data->size, bss->alignment_power);
1050
85
  execp->a_data = BFD_ALIGN (execp->a_data, adata (abfd).page_size);
1051
85
  data_pad = execp->a_data - data->size;
1052
1053
  /* BSS.  */
1054
85
  if (!bss->user_set_vma)
1055
49
    bss->vma = data->vma + execp->a_data;
1056
  /* If the BSS immediately follows the data section and extra space
1057
     in the page is left after the data section, fudge data
1058
     in the header so that the bss section looks smaller by that
1059
     amount.  We'll start the bss section there, and lie to the OS.
1060
     (Note that a linker script, as well as the above assignment,
1061
     could have explicitly set the BSS vma to immediately follow
1062
     the data section.)  */
1063
85
  if (align_power (bss->vma, bss->alignment_power) == data->vma + execp->a_data)
1064
81
    execp->a_bss = data_pad > bss->size ? 0 : bss->size - data_pad;
1065
4
  else
1066
4
    execp->a_bss = bss->size;
1067
85
}
1068
1069
static void
1070
adjust_n_magic (bfd *abfd, struct internal_exec *execp)
1071
0
{
1072
0
  file_ptr pos = adata (abfd).exec_bytes_size;
1073
0
  bfd_vma vma = 0;
1074
0
  int pad;
1075
0
  asection *text = obj_textsec (abfd);
1076
0
  asection *data = obj_datasec (abfd);
1077
0
  asection *bss = obj_bsssec (abfd);
1078
1079
  /* Text.  */
1080
0
  text->filepos = pos;
1081
0
  if (!text->user_set_vma)
1082
0
    text->vma = vma;
1083
0
  else
1084
0
    vma = text->vma;
1085
0
  pos += execp->a_text;
1086
0
  vma += execp->a_text;
1087
1088
  /* Data.  */
1089
0
  data->filepos = pos;
1090
0
  if (!data->user_set_vma)
1091
0
    data->vma = BFD_ALIGN (vma, adata (abfd).segment_size);
1092
0
  vma = data->vma;
1093
1094
  /* Since BSS follows data immediately, see if it needs alignment.  */
1095
0
  vma += data->size;
1096
0
  pad = align_power (vma, bss->alignment_power) - vma;
1097
0
  execp->a_data = data->size + pad;
1098
0
  pos += execp->a_data;
1099
1100
  /* BSS.  */
1101
0
  if (!bss->user_set_vma)
1102
0
    bss->vma = vma;
1103
0
  else
1104
0
    vma = bss->vma;
1105
1106
  /* Fix up exec header.  */
1107
0
  execp->a_bss = bss->size;
1108
0
  N_SET_MAGIC (execp, NMAGIC);
1109
0
}
Unexecuted instantiation: aout-cris.c:adjust_n_magic
Unexecuted instantiation: aout-ns32k.c:adjust_n_magic
Unexecuted instantiation: aout32.c:adjust_n_magic
1110
1111
bool
1112
NAME (aout, adjust_sizes_and_vmas) (bfd *abfd)
1113
154
{
1114
154
  struct internal_exec *execp = exec_hdr (abfd);
1115
1116
154
  if (! NAME (aout, make_sections) (abfd))
1117
0
    return false;
1118
1119
154
  if (adata (abfd).magic != undecided_magic)
1120
0
    return true;
1121
1122
154
  execp->a_text = align_power (obj_textsec (abfd)->size,
1123
154
             obj_textsec (abfd)->alignment_power);
1124
1125
  /* Rule (heuristic) for when to pad to a new page.  Note that there
1126
     are (at least) two ways demand-paged (ZMAGIC) files have been
1127
     handled.  Most Berkeley-based systems start the text segment at
1128
     (TARGET_PAGE_SIZE).  However, newer versions of SUNOS start the text
1129
     segment right after the exec header; the latter is counted in the
1130
     text segment size, and is paged in by the kernel with the rest of
1131
     the text.  */
1132
1133
  /* This perhaps isn't the right way to do this, but made it simpler for me
1134
     to understand enough to implement it.  Better would probably be to go
1135
     right from BFD flags to alignment/positioning characteristics.  But the
1136
     old code was sloppy enough about handling the flags, and had enough
1137
     other magic, that it was a little hard for me to understand.  I think
1138
     I understand it better now, but I haven't time to do the cleanup this
1139
     minute.  */
1140
1141
154
  if (abfd->flags & D_PAGED)
1142
    /* Whether or not WP_TEXT is set -- let D_PAGED override.  */
1143
154
    adata (abfd).magic = z_magic;
1144
0
  else if (abfd->flags & WP_TEXT)
1145
0
    adata (abfd).magic = n_magic;
1146
0
  else
1147
0
    adata (abfd).magic = o_magic;
1148
1149
#ifdef BFD_AOUT_DEBUG /* requires gcc2 */
1150
#if __GNUC__ >= 2
1151
  fprintf (stderr, "%s text=<%x,%x,%x> data=<%x,%x,%x> bss=<%x,%x,%x>\n",
1152
     ({ char *str;
1153
        switch (adata (abfd).magic)
1154
    {
1155
    case n_magic: str = "NMAGIC"; break;
1156
    case o_magic: str = "OMAGIC"; break;
1157
    case z_magic: str = "ZMAGIC"; break;
1158
    default: abort ();
1159
    }
1160
        str;
1161
      }),
1162
     obj_textsec (abfd)->vma, obj_textsec (abfd)->size,
1163
    obj_textsec (abfd)->alignment_power,
1164
     obj_datasec (abfd)->vma, obj_datasec (abfd)->size,
1165
    obj_datasec (abfd)->alignment_power,
1166
     obj_bsssec (abfd)->vma, obj_bsssec (abfd)->size,
1167
    obj_bsssec (abfd)->alignment_power);
1168
#endif
1169
#endif
1170
1171
154
  switch (adata (abfd).magic)
1172
154
    {
1173
0
    case o_magic:
1174
0
      adjust_o_magic (abfd, execp);
1175
0
      break;
1176
154
    case z_magic:
1177
154
      adjust_z_magic (abfd, execp);
1178
154
      break;
1179
0
    case n_magic:
1180
0
      adjust_n_magic (abfd, execp);
1181
0
      break;
1182
0
    default:
1183
0
      abort ();
1184
154
    }
1185
1186
#ifdef BFD_AOUT_DEBUG
1187
  fprintf (stderr, "       text=<%x,%x,%x> data=<%x,%x,%x> bss=<%x,%x>\n",
1188
     obj_textsec (abfd)->vma, execp->a_text,
1189
    obj_textsec (abfd)->filepos,
1190
     obj_datasec (abfd)->vma, execp->a_data,
1191
    obj_datasec (abfd)->filepos,
1192
     obj_bsssec (abfd)->vma, execp->a_bss);
1193
#endif
1194
1195
154
  return true;
1196
154
}
Unexecuted instantiation: cris_aout_32_adjust_sizes_and_vmas
ns32kaout_32_adjust_sizes_and_vmas
Line
Count
Source
1113
69
{
1114
69
  struct internal_exec *execp = exec_hdr (abfd);
1115
1116
69
  if (! NAME (aout, make_sections) (abfd))
1117
0
    return false;
1118
1119
69
  if (adata (abfd).magic != undecided_magic)
1120
0
    return true;
1121
1122
69
  execp->a_text = align_power (obj_textsec (abfd)->size,
1123
69
             obj_textsec (abfd)->alignment_power);
1124
1125
  /* Rule (heuristic) for when to pad to a new page.  Note that there
1126
     are (at least) two ways demand-paged (ZMAGIC) files have been
1127
     handled.  Most Berkeley-based systems start the text segment at
1128
     (TARGET_PAGE_SIZE).  However, newer versions of SUNOS start the text
1129
     segment right after the exec header; the latter is counted in the
1130
     text segment size, and is paged in by the kernel with the rest of
1131
     the text.  */
1132
1133
  /* This perhaps isn't the right way to do this, but made it simpler for me
1134
     to understand enough to implement it.  Better would probably be to go
1135
     right from BFD flags to alignment/positioning characteristics.  But the
1136
     old code was sloppy enough about handling the flags, and had enough
1137
     other magic, that it was a little hard for me to understand.  I think
1138
     I understand it better now, but I haven't time to do the cleanup this
1139
     minute.  */
1140
1141
69
  if (abfd->flags & D_PAGED)
1142
    /* Whether or not WP_TEXT is set -- let D_PAGED override.  */
1143
69
    adata (abfd).magic = z_magic;
1144
0
  else if (abfd->flags & WP_TEXT)
1145
0
    adata (abfd).magic = n_magic;
1146
0
  else
1147
0
    adata (abfd).magic = o_magic;
1148
1149
#ifdef BFD_AOUT_DEBUG /* requires gcc2 */
1150
#if __GNUC__ >= 2
1151
  fprintf (stderr, "%s text=<%x,%x,%x> data=<%x,%x,%x> bss=<%x,%x,%x>\n",
1152
     ({ char *str;
1153
        switch (adata (abfd).magic)
1154
    {
1155
    case n_magic: str = "NMAGIC"; break;
1156
    case o_magic: str = "OMAGIC"; break;
1157
    case z_magic: str = "ZMAGIC"; break;
1158
    default: abort ();
1159
    }
1160
        str;
1161
      }),
1162
     obj_textsec (abfd)->vma, obj_textsec (abfd)->size,
1163
    obj_textsec (abfd)->alignment_power,
1164
     obj_datasec (abfd)->vma, obj_datasec (abfd)->size,
1165
    obj_datasec (abfd)->alignment_power,
1166
     obj_bsssec (abfd)->vma, obj_bsssec (abfd)->size,
1167
    obj_bsssec (abfd)->alignment_power);
1168
#endif
1169
#endif
1170
1171
69
  switch (adata (abfd).magic)
1172
69
    {
1173
0
    case o_magic:
1174
0
      adjust_o_magic (abfd, execp);
1175
0
      break;
1176
69
    case z_magic:
1177
69
      adjust_z_magic (abfd, execp);
1178
69
      break;
1179
0
    case n_magic:
1180
0
      adjust_n_magic (abfd, execp);
1181
0
      break;
1182
0
    default:
1183
0
      abort ();
1184
69
    }
1185
1186
#ifdef BFD_AOUT_DEBUG
1187
  fprintf (stderr, "       text=<%x,%x,%x> data=<%x,%x,%x> bss=<%x,%x>\n",
1188
     obj_textsec (abfd)->vma, execp->a_text,
1189
    obj_textsec (abfd)->filepos,
1190
     obj_datasec (abfd)->vma, execp->a_data,
1191
    obj_datasec (abfd)->filepos,
1192
     obj_bsssec (abfd)->vma, execp->a_bss);
1193
#endif
1194
1195
69
  return true;
1196
69
}
aout_32_adjust_sizes_and_vmas
Line
Count
Source
1113
85
{
1114
85
  struct internal_exec *execp = exec_hdr (abfd);
1115
1116
85
  if (! NAME (aout, make_sections) (abfd))
1117
0
    return false;
1118
1119
85
  if (adata (abfd).magic != undecided_magic)
1120
0
    return true;
1121
1122
85
  execp->a_text = align_power (obj_textsec (abfd)->size,
1123
85
             obj_textsec (abfd)->alignment_power);
1124
1125
  /* Rule (heuristic) for when to pad to a new page.  Note that there
1126
     are (at least) two ways demand-paged (ZMAGIC) files have been
1127
     handled.  Most Berkeley-based systems start the text segment at
1128
     (TARGET_PAGE_SIZE).  However, newer versions of SUNOS start the text
1129
     segment right after the exec header; the latter is counted in the
1130
     text segment size, and is paged in by the kernel with the rest of
1131
     the text.  */
1132
1133
  /* This perhaps isn't the right way to do this, but made it simpler for me
1134
     to understand enough to implement it.  Better would probably be to go
1135
     right from BFD flags to alignment/positioning characteristics.  But the
1136
     old code was sloppy enough about handling the flags, and had enough
1137
     other magic, that it was a little hard for me to understand.  I think
1138
     I understand it better now, but I haven't time to do the cleanup this
1139
     minute.  */
1140
1141
85
  if (abfd->flags & D_PAGED)
1142
    /* Whether or not WP_TEXT is set -- let D_PAGED override.  */
1143
85
    adata (abfd).magic = z_magic;
1144
0
  else if (abfd->flags & WP_TEXT)
1145
0
    adata (abfd).magic = n_magic;
1146
0
  else
1147
0
    adata (abfd).magic = o_magic;
1148
1149
#ifdef BFD_AOUT_DEBUG /* requires gcc2 */
1150
#if __GNUC__ >= 2
1151
  fprintf (stderr, "%s text=<%x,%x,%x> data=<%x,%x,%x> bss=<%x,%x,%x>\n",
1152
     ({ char *str;
1153
        switch (adata (abfd).magic)
1154
    {
1155
    case n_magic: str = "NMAGIC"; break;
1156
    case o_magic: str = "OMAGIC"; break;
1157
    case z_magic: str = "ZMAGIC"; break;
1158
    default: abort ();
1159
    }
1160
        str;
1161
      }),
1162
     obj_textsec (abfd)->vma, obj_textsec (abfd)->size,
1163
    obj_textsec (abfd)->alignment_power,
1164
     obj_datasec (abfd)->vma, obj_datasec (abfd)->size,
1165
    obj_datasec (abfd)->alignment_power,
1166
     obj_bsssec (abfd)->vma, obj_bsssec (abfd)->size,
1167
    obj_bsssec (abfd)->alignment_power);
1168
#endif
1169
#endif
1170
1171
85
  switch (adata (abfd).magic)
1172
85
    {
1173
0
    case o_magic:
1174
0
      adjust_o_magic (abfd, execp);
1175
0
      break;
1176
85
    case z_magic:
1177
85
      adjust_z_magic (abfd, execp);
1178
85
      break;
1179
0
    case n_magic:
1180
0
      adjust_n_magic (abfd, execp);
1181
0
      break;
1182
0
    default:
1183
0
      abort ();
1184
85
    }
1185
1186
#ifdef BFD_AOUT_DEBUG
1187
  fprintf (stderr, "       text=<%x,%x,%x> data=<%x,%x,%x> bss=<%x,%x>\n",
1188
     obj_textsec (abfd)->vma, execp->a_text,
1189
    obj_textsec (abfd)->filepos,
1190
     obj_datasec (abfd)->vma, execp->a_data,
1191
    obj_datasec (abfd)->filepos,
1192
     obj_bsssec (abfd)->vma, execp->a_bss);
1193
#endif
1194
1195
85
  return true;
1196
85
}
1197
1198
/*
1199
FUNCTION
1200
  aout_@var{size}_new_section_hook
1201
1202
SYNOPSIS
1203
  bool aout_@var{size}_new_section_hook,
1204
     (bfd *abfd,
1205
      asection *newsect);
1206
1207
DESCRIPTION
1208
  Called by the BFD in response to a @code{bfd_make_section}
1209
  request.
1210
*/
1211
bool
1212
NAME (aout, new_section_hook) (bfd *abfd, asection *newsect)
1213
35.1k
{
1214
  /* Align to double at least.  */
1215
35.1k
  newsect->alignment_power = bfd_get_arch_info (abfd)->section_align_power;
1216
1217
35.1k
  if (bfd_get_format (abfd) == bfd_object)
1218
35.1k
    {
1219
35.1k
      if (obj_textsec (abfd) == NULL && !strcmp (newsect->name, ".text"))
1220
11.7k
  {
1221
11.7k
    obj_textsec (abfd)= newsect;
1222
11.7k
    newsect->target_index = N_TEXT;
1223
11.7k
  }
1224
23.4k
      else if (obj_datasec (abfd) == NULL && !strcmp (newsect->name, ".data"))
1225
11.7k
  {
1226
11.7k
    obj_datasec (abfd) = newsect;
1227
11.7k
    newsect->target_index = N_DATA;
1228
11.7k
  }
1229
11.7k
      else if (obj_bsssec (abfd) == NULL && !strcmp (newsect->name, ".bss"))
1230
11.7k
  {
1231
11.7k
    obj_bsssec (abfd) = newsect;
1232
11.7k
    newsect->target_index = N_BSS;
1233
11.7k
  }
1234
35.1k
    }
1235
1236
  /* We allow more than three sections internally.  */
1237
35.1k
  return _bfd_generic_new_section_hook (abfd, newsect);
1238
35.1k
}
cris_aout_32_new_section_hook
Line
Count
Source
1213
3.19k
{
1214
  /* Align to double at least.  */
1215
3.19k
  newsect->alignment_power = bfd_get_arch_info (abfd)->section_align_power;
1216
1217
3.19k
  if (bfd_get_format (abfd) == bfd_object)
1218
3.19k
    {
1219
3.19k
      if (obj_textsec (abfd) == NULL && !strcmp (newsect->name, ".text"))
1220
1.06k
  {
1221
1.06k
    obj_textsec (abfd)= newsect;
1222
1.06k
    newsect->target_index = N_TEXT;
1223
1.06k
  }
1224
2.13k
      else if (obj_datasec (abfd) == NULL && !strcmp (newsect->name, ".data"))
1225
1.06k
  {
1226
1.06k
    obj_datasec (abfd) = newsect;
1227
1.06k
    newsect->target_index = N_DATA;
1228
1.06k
  }
1229
1.06k
      else if (obj_bsssec (abfd) == NULL && !strcmp (newsect->name, ".bss"))
1230
1.06k
  {
1231
1.06k
    obj_bsssec (abfd) = newsect;
1232
1.06k
    newsect->target_index = N_BSS;
1233
1.06k
  }
1234
3.19k
    }
1235
1236
  /* We allow more than three sections internally.  */
1237
3.19k
  return _bfd_generic_new_section_hook (abfd, newsect);
1238
3.19k
}
ns32kaout_32_new_section_hook
Line
Count
Source
1213
10.5k
{
1214
  /* Align to double at least.  */
1215
10.5k
  newsect->alignment_power = bfd_get_arch_info (abfd)->section_align_power;
1216
1217
10.5k
  if (bfd_get_format (abfd) == bfd_object)
1218
10.5k
    {
1219
10.5k
      if (obj_textsec (abfd) == NULL && !strcmp (newsect->name, ".text"))
1220
3.52k
  {
1221
3.52k
    obj_textsec (abfd)= newsect;
1222
3.52k
    newsect->target_index = N_TEXT;
1223
3.52k
  }
1224
7.05k
      else if (obj_datasec (abfd) == NULL && !strcmp (newsect->name, ".data"))
1225
3.52k
  {
1226
3.52k
    obj_datasec (abfd) = newsect;
1227
3.52k
    newsect->target_index = N_DATA;
1228
3.52k
  }
1229
3.52k
      else if (obj_bsssec (abfd) == NULL && !strcmp (newsect->name, ".bss"))
1230
3.52k
  {
1231
3.52k
    obj_bsssec (abfd) = newsect;
1232
3.52k
    newsect->target_index = N_BSS;
1233
3.52k
  }
1234
10.5k
    }
1235
1236
  /* We allow more than three sections internally.  */
1237
10.5k
  return _bfd_generic_new_section_hook (abfd, newsect);
1238
10.5k
}
aout_32_new_section_hook
Line
Count
Source
1213
21.3k
{
1214
  /* Align to double at least.  */
1215
21.3k
  newsect->alignment_power = bfd_get_arch_info (abfd)->section_align_power;
1216
1217
21.3k
  if (bfd_get_format (abfd) == bfd_object)
1218
21.3k
    {
1219
21.3k
      if (obj_textsec (abfd) == NULL && !strcmp (newsect->name, ".text"))
1220
7.12k
  {
1221
7.12k
    obj_textsec (abfd)= newsect;
1222
7.12k
    newsect->target_index = N_TEXT;
1223
7.12k
  }
1224
14.2k
      else if (obj_datasec (abfd) == NULL && !strcmp (newsect->name, ".data"))
1225
7.12k
  {
1226
7.12k
    obj_datasec (abfd) = newsect;
1227
7.12k
    newsect->target_index = N_DATA;
1228
7.12k
  }
1229
7.12k
      else if (obj_bsssec (abfd) == NULL && !strcmp (newsect->name, ".bss"))
1230
7.12k
  {
1231
7.12k
    obj_bsssec (abfd) = newsect;
1232
7.12k
    newsect->target_index = N_BSS;
1233
7.12k
  }
1234
21.3k
    }
1235
1236
  /* We allow more than three sections internally.  */
1237
21.3k
  return _bfd_generic_new_section_hook (abfd, newsect);
1238
21.3k
}
1239
1240
bool
1241
NAME (aout, set_section_contents) (bfd *abfd,
1242
           sec_ptr section,
1243
           const void * location,
1244
           file_ptr offset,
1245
           bfd_size_type count)
1246
44
{
1247
44
  if (! abfd->output_has_begun)
1248
40
    {
1249
40
      if (! NAME (aout, adjust_sizes_and_vmas) (abfd))
1250
0
  return false;
1251
40
    }
1252
1253
44
  if (section == obj_bsssec (abfd))
1254
0
    {
1255
0
      bfd_set_error (bfd_error_no_contents);
1256
0
      return false;
1257
0
    }
1258
1259
44
  if (section != obj_textsec (abfd)
1260
4
      && section != obj_datasec (abfd))
1261
0
    {
1262
0
      if (aout_section_merge_with_text_p (abfd, section))
1263
0
  section->filepos = obj_textsec (abfd)->filepos +
1264
0
         (section->vma - obj_textsec (abfd)->vma);
1265
0
      else
1266
0
  {
1267
0
    _bfd_error_handler
1268
      /* xgettext:c-format */
1269
0
     (_("%pB: can not represent section `%pA' in a.out object file format"),
1270
0
       abfd, section);
1271
0
    bfd_set_error (bfd_error_nonrepresentable_section);
1272
0
    return false;
1273
0
  }
1274
0
    }
1275
1276
44
  if (count != 0)
1277
44
    {
1278
44
      if (bfd_seek (abfd, section->filepos + offset, SEEK_SET) != 0
1279
44
    || bfd_write (location, count, abfd) != count)
1280
0
  return false;
1281
44
    }
1282
1283
44
  return true;
1284
44
}
Unexecuted instantiation: cris_aout_32_set_section_contents
ns32kaout_32_set_section_contents
Line
Count
Source
1246
18
{
1247
18
  if (! abfd->output_has_begun)
1248
16
    {
1249
16
      if (! NAME (aout, adjust_sizes_and_vmas) (abfd))
1250
0
  return false;
1251
16
    }
1252
1253
18
  if (section == obj_bsssec (abfd))
1254
0
    {
1255
0
      bfd_set_error (bfd_error_no_contents);
1256
0
      return false;
1257
0
    }
1258
1259
18
  if (section != obj_textsec (abfd)
1260
2
      && section != obj_datasec (abfd))
1261
0
    {
1262
0
      if (aout_section_merge_with_text_p (abfd, section))
1263
0
  section->filepos = obj_textsec (abfd)->filepos +
1264
0
         (section->vma - obj_textsec (abfd)->vma);
1265
0
      else
1266
0
  {
1267
0
    _bfd_error_handler
1268
      /* xgettext:c-format */
1269
0
     (_("%pB: can not represent section `%pA' in a.out object file format"),
1270
0
       abfd, section);
1271
0
    bfd_set_error (bfd_error_nonrepresentable_section);
1272
0
    return false;
1273
0
  }
1274
0
    }
1275
1276
18
  if (count != 0)
1277
18
    {
1278
18
      if (bfd_seek (abfd, section->filepos + offset, SEEK_SET) != 0
1279
18
    || bfd_write (location, count, abfd) != count)
1280
0
  return false;
1281
18
    }
1282
1283
18
  return true;
1284
18
}
aout_32_set_section_contents
Line
Count
Source
1246
26
{
1247
26
  if (! abfd->output_has_begun)
1248
24
    {
1249
24
      if (! NAME (aout, adjust_sizes_and_vmas) (abfd))
1250
0
  return false;
1251
24
    }
1252
1253
26
  if (section == obj_bsssec (abfd))
1254
0
    {
1255
0
      bfd_set_error (bfd_error_no_contents);
1256
0
      return false;
1257
0
    }
1258
1259
26
  if (section != obj_textsec (abfd)
1260
2
      && section != obj_datasec (abfd))
1261
0
    {
1262
0
      if (aout_section_merge_with_text_p (abfd, section))
1263
0
  section->filepos = obj_textsec (abfd)->filepos +
1264
0
         (section->vma - obj_textsec (abfd)->vma);
1265
0
      else
1266
0
  {
1267
0
    _bfd_error_handler
1268
      /* xgettext:c-format */
1269
0
     (_("%pB: can not represent section `%pA' in a.out object file format"),
1270
0
       abfd, section);
1271
0
    bfd_set_error (bfd_error_nonrepresentable_section);
1272
0
    return false;
1273
0
  }
1274
0
    }
1275
1276
26
  if (count != 0)
1277
26
    {
1278
26
      if (bfd_seek (abfd, section->filepos + offset, SEEK_SET) != 0
1279
26
    || bfd_write (location, count, abfd) != count)
1280
0
  return false;
1281
26
    }
1282
1283
26
  return true;
1284
26
}
1285

1286
/* Read the external symbols from an a.out file.  */
1287
1288
static bool
1289
aout_get_external_symbols (bfd *abfd)
1290
1.44k
{
1291
1.44k
  if (bfd_get_flavour (abfd) != bfd_target_aout_flavour)
1292
0
    {
1293
0
      bfd_set_error (bfd_error_invalid_operation);
1294
0
      return false;
1295
0
    }
1296
1297
1.44k
  if (obj_aout_external_syms (abfd) == NULL)
1298
1.04k
    {
1299
1.04k
      bfd_size_type count;
1300
1.04k
      struct external_nlist *syms = NULL;
1301
1.04k
      bfd_size_type amt = exec_hdr (abfd)->a_syms;
1302
1303
1.04k
      count = amt / EXTERNAL_NLIST_SIZE;
1304
1.04k
      if (count == 0)
1305
94
  return true;
1306
1307
      /* We allocate using malloc to make the values easy to free
1308
   later on.  If we put them on the objalloc it might not be
1309
   possible to free them.  */
1310
952
      if (bfd_seek (abfd, obj_sym_filepos (abfd), SEEK_SET) != 0)
1311
0
  return false;
1312
952
      syms = _bfd_malloc_and_read (abfd, amt, amt);
1313
952
      if (syms == NULL)
1314
279
  return false;
1315
1316
673
      obj_aout_external_syms (abfd) = syms;
1317
673
      obj_aout_external_sym_count (abfd) = count;
1318
673
    }
1319
1320
1.06k
  if (obj_aout_external_strings (abfd) == NULL
1321
673
      && exec_hdr (abfd)->a_syms != 0)
1322
673
    {
1323
673
      unsigned char string_chars[BYTES_IN_WORD];
1324
673
      bfd_size_type stringsize;
1325
673
      char *strings;
1326
673
      bfd_size_type amt = BYTES_IN_WORD;
1327
1328
      /* Get the size of the strings.  */
1329
673
      if (bfd_seek (abfd, obj_str_filepos (abfd), SEEK_SET) != 0
1330
673
    || bfd_read (string_chars, amt, abfd) != amt)
1331
4
  return false;
1332
669
      stringsize = GET_WORD (abfd, string_chars);
1333
669
      if (stringsize == 0)
1334
221
  stringsize = 1;
1335
448
      else if (stringsize + 1 < BYTES_IN_WORD + 1
1336
444
         || (size_t) stringsize != stringsize)
1337
4
  {
1338
4
    bfd_set_error (bfd_error_bad_value);
1339
4
    return false;
1340
4
  }
1341
1342
665
      strings = (char *) bfd_malloc (stringsize + 1);
1343
665
      if (strings == NULL)
1344
0
  return false;
1345
1346
665
      if (stringsize >= BYTES_IN_WORD)
1347
444
  {
1348
444
    amt = stringsize - BYTES_IN_WORD;
1349
444
    if (bfd_read (strings + BYTES_IN_WORD, amt, abfd) != amt)
1350
55
      {
1351
55
        free (strings);
1352
55
        return false;
1353
55
      }
1354
444
  }
1355
1356
      /* Ensure that a zero index yields an empty string.  */
1357
610
      if (stringsize >= BYTES_IN_WORD)
1358
389
  memset (strings, 0, BYTES_IN_WORD);
1359
1360
      /* Ensure that the string buffer is NUL terminated.  */
1361
610
      strings[stringsize] = 0;
1362
1363
610
      obj_aout_external_strings (abfd) = strings;
1364
610
      obj_aout_external_string_size (abfd) = stringsize;
1365
610
    }
1366
1367
1.00k
  return true;
1368
1.06k
}
Unexecuted instantiation: aout-cris.c:aout_get_external_symbols
aout-ns32k.c:aout_get_external_symbols
Line
Count
Source
1290
711
{
1291
711
  if (bfd_get_flavour (abfd) != bfd_target_aout_flavour)
1292
0
    {
1293
0
      bfd_set_error (bfd_error_invalid_operation);
1294
0
      return false;
1295
0
    }
1296
1297
711
  if (obj_aout_external_syms (abfd) == NULL)
1298
521
    {
1299
521
      bfd_size_type count;
1300
521
      struct external_nlist *syms = NULL;
1301
521
      bfd_size_type amt = exec_hdr (abfd)->a_syms;
1302
1303
521
      count = amt / EXTERNAL_NLIST_SIZE;
1304
521
      if (count == 0)
1305
39
  return true;
1306
1307
      /* We allocate using malloc to make the values easy to free
1308
   later on.  If we put them on the objalloc it might not be
1309
   possible to free them.  */
1310
482
      if (bfd_seek (abfd, obj_sym_filepos (abfd), SEEK_SET) != 0)
1311
0
  return false;
1312
482
      syms = _bfd_malloc_and_read (abfd, amt, amt);
1313
482
      if (syms == NULL)
1314
158
  return false;
1315
1316
324
      obj_aout_external_syms (abfd) = syms;
1317
324
      obj_aout_external_sym_count (abfd) = count;
1318
324
    }
1319
1320
514
  if (obj_aout_external_strings (abfd) == NULL
1321
324
      && exec_hdr (abfd)->a_syms != 0)
1322
324
    {
1323
324
      unsigned char string_chars[BYTES_IN_WORD];
1324
324
      bfd_size_type stringsize;
1325
324
      char *strings;
1326
324
      bfd_size_type amt = BYTES_IN_WORD;
1327
1328
      /* Get the size of the strings.  */
1329
324
      if (bfd_seek (abfd, obj_str_filepos (abfd), SEEK_SET) != 0
1330
324
    || bfd_read (string_chars, amt, abfd) != amt)
1331
2
  return false;
1332
322
      stringsize = GET_WORD (abfd, string_chars);
1333
322
      if (stringsize == 0)
1334
115
  stringsize = 1;
1335
207
      else if (stringsize + 1 < BYTES_IN_WORD + 1
1336
205
         || (size_t) stringsize != stringsize)
1337
2
  {
1338
2
    bfd_set_error (bfd_error_bad_value);
1339
2
    return false;
1340
2
  }
1341
1342
320
      strings = (char *) bfd_malloc (stringsize + 1);
1343
320
      if (strings == NULL)
1344
0
  return false;
1345
1346
320
      if (stringsize >= BYTES_IN_WORD)
1347
205
  {
1348
205
    amt = stringsize - BYTES_IN_WORD;
1349
205
    if (bfd_read (strings + BYTES_IN_WORD, amt, abfd) != amt)
1350
27
      {
1351
27
        free (strings);
1352
27
        return false;
1353
27
      }
1354
205
  }
1355
1356
      /* Ensure that a zero index yields an empty string.  */
1357
293
      if (stringsize >= BYTES_IN_WORD)
1358
178
  memset (strings, 0, BYTES_IN_WORD);
1359
1360
      /* Ensure that the string buffer is NUL terminated.  */
1361
293
      strings[stringsize] = 0;
1362
1363
293
      obj_aout_external_strings (abfd) = strings;
1364
293
      obj_aout_external_string_size (abfd) = stringsize;
1365
293
    }
1366
1367
483
  return true;
1368
514
}
aout32.c:aout_get_external_symbols
Line
Count
Source
1290
729
{
1291
729
  if (bfd_get_flavour (abfd) != bfd_target_aout_flavour)
1292
0
    {
1293
0
      bfd_set_error (bfd_error_invalid_operation);
1294
0
      return false;
1295
0
    }
1296
1297
729
  if (obj_aout_external_syms (abfd) == NULL)
1298
525
    {
1299
525
      bfd_size_type count;
1300
525
      struct external_nlist *syms = NULL;
1301
525
      bfd_size_type amt = exec_hdr (abfd)->a_syms;
1302
1303
525
      count = amt / EXTERNAL_NLIST_SIZE;
1304
525
      if (count == 0)
1305
55
  return true;
1306
1307
      /* We allocate using malloc to make the values easy to free
1308
   later on.  If we put them on the objalloc it might not be
1309
   possible to free them.  */
1310
470
      if (bfd_seek (abfd, obj_sym_filepos (abfd), SEEK_SET) != 0)
1311
0
  return false;
1312
470
      syms = _bfd_malloc_and_read (abfd, amt, amt);
1313
470
      if (syms == NULL)
1314
121
  return false;
1315
1316
349
      obj_aout_external_syms (abfd) = syms;
1317
349
      obj_aout_external_sym_count (abfd) = count;
1318
349
    }
1319
1320
553
  if (obj_aout_external_strings (abfd) == NULL
1321
349
      && exec_hdr (abfd)->a_syms != 0)
1322
349
    {
1323
349
      unsigned char string_chars[BYTES_IN_WORD];
1324
349
      bfd_size_type stringsize;
1325
349
      char *strings;
1326
349
      bfd_size_type amt = BYTES_IN_WORD;
1327
1328
      /* Get the size of the strings.  */
1329
349
      if (bfd_seek (abfd, obj_str_filepos (abfd), SEEK_SET) != 0
1330
349
    || bfd_read (string_chars, amt, abfd) != amt)
1331
2
  return false;
1332
347
      stringsize = GET_WORD (abfd, string_chars);
1333
347
      if (stringsize == 0)
1334
106
  stringsize = 1;
1335
241
      else if (stringsize + 1 < BYTES_IN_WORD + 1
1336
239
         || (size_t) stringsize != stringsize)
1337
2
  {
1338
2
    bfd_set_error (bfd_error_bad_value);
1339
2
    return false;
1340
2
  }
1341
1342
345
      strings = (char *) bfd_malloc (stringsize + 1);
1343
345
      if (strings == NULL)
1344
0
  return false;
1345
1346
345
      if (stringsize >= BYTES_IN_WORD)
1347
239
  {
1348
239
    amt = stringsize - BYTES_IN_WORD;
1349
239
    if (bfd_read (strings + BYTES_IN_WORD, amt, abfd) != amt)
1350
28
      {
1351
28
        free (strings);
1352
28
        return false;
1353
28
      }
1354
239
  }
1355
1356
      /* Ensure that a zero index yields an empty string.  */
1357
317
      if (stringsize >= BYTES_IN_WORD)
1358
211
  memset (strings, 0, BYTES_IN_WORD);
1359
1360
      /* Ensure that the string buffer is NUL terminated.  */
1361
317
      strings[stringsize] = 0;
1362
1363
317
      obj_aout_external_strings (abfd) = strings;
1364
317
      obj_aout_external_string_size (abfd) = stringsize;
1365
317
    }
1366
1367
521
  return true;
1368
553
}
1369
1370
/* Translate an a.out symbol into a BFD symbol.  The desc, other, type
1371
   and symbol->value fields of CACHE_PTR will be set from the a.out
1372
   nlist structure.  This function is responsible for setting
1373
   symbol->flags and symbol->section, and adjusting symbol->value.  */
1374
1375
static bool
1376
translate_from_native_sym_flags (bfd *abfd, aout_symbol_type *cache_ptr)
1377
9.09k
{
1378
9.09k
  flagword visible;
1379
1380
9.09k
  if ((cache_ptr->type & N_STAB) != 0
1381
6.53k
      || cache_ptr->type == N_FN)
1382
2.57k
    {
1383
2.57k
      asection *sec;
1384
1385
      /* This is a debugging symbol.  */
1386
2.57k
      cache_ptr->symbol.flags = BSF_DEBUGGING;
1387
1388
      /* Work out the symbol section.  */
1389
2.57k
      switch (cache_ptr->type & N_TYPE)
1390
2.57k
  {
1391
1.06k
  case N_TEXT:
1392
1.06k
  case N_FN:
1393
1.06k
    sec = obj_textsec (abfd);
1394
1.06k
    break;
1395
365
  case N_DATA:
1396
365
    sec = obj_datasec (abfd);
1397
365
    break;
1398
266
  case N_BSS:
1399
266
    sec = obj_bsssec (abfd);
1400
266
    break;
1401
824
  default:
1402
871
  case N_ABS:
1403
871
    sec = bfd_abs_section_ptr;
1404
871
    break;
1405
2.57k
  }
1406
1407
2.57k
      cache_ptr->symbol.section = sec;
1408
2.57k
      cache_ptr->symbol.value -= sec->vma;
1409
1410
2.57k
      return true;
1411
2.57k
    }
1412
1413
  /* Get the default visibility.  This does not apply to all types, so
1414
     we just hold it in a local variable to use if wanted.  */
1415
6.52k
  if ((cache_ptr->type & N_EXT) == 0)
1416
4.68k
    visible = BSF_LOCAL;
1417
1.84k
  else
1418
1.84k
    visible = BSF_GLOBAL;
1419
1420
6.52k
  switch (cache_ptr->type)
1421
6.52k
    {
1422
3.19k
    default:
1423
3.24k
    case N_ABS: case N_ABS | N_EXT:
1424
3.24k
      cache_ptr->symbol.section = bfd_abs_section_ptr;
1425
3.24k
      cache_ptr->symbol.flags = visible;
1426
3.24k
      break;
1427
1428
335
    case N_UNDF | N_EXT:
1429
335
      if (cache_ptr->symbol.value != 0)
1430
230
  {
1431
    /* This is a common symbol.  */
1432
230
    cache_ptr->symbol.flags = BSF_GLOBAL;
1433
230
    cache_ptr->symbol.section = bfd_com_section_ptr;
1434
230
  }
1435
105
      else
1436
105
  {
1437
105
    cache_ptr->symbol.flags = 0;
1438
105
    cache_ptr->symbol.section = bfd_und_section_ptr;
1439
105
  }
1440
335
      break;
1441
1442
648
    case N_TEXT: case N_TEXT | N_EXT:
1443
648
      cache_ptr->symbol.section = obj_textsec (abfd);
1444
648
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1445
648
      cache_ptr->symbol.flags = visible;
1446
648
      break;
1447
1448
      /* N_SETV symbols used to represent set vectors placed in the
1449
   data section.  They are no longer generated.  Theoretically,
1450
   it was possible to extract the entries and combine them with
1451
   new ones, although I don't know if that was ever actually
1452
   done.  Unless that feature is restored, treat them as data
1453
   symbols.  */
1454
79
    case N_SETV: case N_SETV | N_EXT:
1455
211
    case N_DATA: case N_DATA | N_EXT:
1456
211
      cache_ptr->symbol.section = obj_datasec (abfd);
1457
211
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1458
211
      cache_ptr->symbol.flags = visible;
1459
211
      break;
1460
1461
227
    case N_BSS: case N_BSS | N_EXT:
1462
227
      cache_ptr->symbol.section = obj_bsssec (abfd);
1463
227
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1464
227
      cache_ptr->symbol.flags = visible;
1465
227
      break;
1466
1467
96
    case N_SETA: case N_SETA | N_EXT:
1468
449
    case N_SETT: case N_SETT | N_EXT:
1469
676
    case N_SETD: case N_SETD | N_EXT:
1470
837
    case N_SETB: case N_SETB | N_EXT:
1471
837
      {
1472
  /* This code is no longer needed.  It used to be used to make
1473
     the linker handle set symbols, but they are now handled in
1474
     the add_symbols routine instead.  */
1475
837
  switch (cache_ptr->type & N_TYPE)
1476
837
    {
1477
96
    case N_SETA:
1478
96
      cache_ptr->symbol.section = bfd_abs_section_ptr;
1479
96
      break;
1480
353
    case N_SETT:
1481
353
      cache_ptr->symbol.section = obj_textsec (abfd);
1482
353
      break;
1483
227
    case N_SETD:
1484
227
      cache_ptr->symbol.section = obj_datasec (abfd);
1485
227
      break;
1486
161
    case N_SETB:
1487
161
      cache_ptr->symbol.section = obj_bsssec (abfd);
1488
161
      break;
1489
837
    }
1490
1491
837
  cache_ptr->symbol.flags |= BSF_CONSTRUCTOR;
1492
837
      }
1493
0
      break;
1494
1495
18
    case N_WARNING:
1496
      /* This symbol is the text of a warning message.  The next
1497
   symbol is the symbol to associate the warning with.  If a
1498
   reference is made to that symbol, a warning is issued.  */
1499
18
      cache_ptr->symbol.flags = BSF_DEBUGGING | BSF_WARNING;
1500
18
      cache_ptr->symbol.section = bfd_abs_section_ptr;
1501
18
      break;
1502
1503
146
    case N_INDR: case N_INDR | N_EXT:
1504
      /* An indirect symbol.  This consists of two symbols in a row.
1505
   The first symbol is the name of the indirection.  The second
1506
   symbol is the name of the target.  A reference to the first
1507
   symbol becomes a reference to the second.  */
1508
146
      cache_ptr->symbol.flags = BSF_DEBUGGING | BSF_INDIRECT | visible;
1509
146
      cache_ptr->symbol.section = bfd_ind_section_ptr;
1510
146
      break;
1511
1512
380
    case N_WEAKU:
1513
380
      cache_ptr->symbol.section = bfd_und_section_ptr;
1514
380
      cache_ptr->symbol.flags = BSF_WEAK;
1515
380
      break;
1516
1517
24
    case N_WEAKA:
1518
24
      cache_ptr->symbol.section = bfd_abs_section_ptr;
1519
24
      cache_ptr->symbol.flags = BSF_WEAK;
1520
24
      break;
1521
1522
283
    case N_WEAKT:
1523
283
      cache_ptr->symbol.section = obj_textsec (abfd);
1524
283
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1525
283
      cache_ptr->symbol.flags = BSF_WEAK;
1526
283
      break;
1527
1528
138
    case N_WEAKD:
1529
138
      cache_ptr->symbol.section = obj_datasec (abfd);
1530
138
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1531
138
      cache_ptr->symbol.flags = BSF_WEAK;
1532
138
      break;
1533
1534
36
    case N_WEAKB:
1535
36
      cache_ptr->symbol.section = obj_bsssec (abfd);
1536
36
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1537
36
      cache_ptr->symbol.flags = BSF_WEAK;
1538
36
      break;
1539
6.52k
    }
1540
1541
6.52k
  return true;
1542
6.52k
}
Unexecuted instantiation: aout-cris.c:translate_from_native_sym_flags
aout-ns32k.c:translate_from_native_sym_flags
Line
Count
Source
1377
4.52k
{
1378
4.52k
  flagword visible;
1379
1380
4.52k
  if ((cache_ptr->type & N_STAB) != 0
1381
3.33k
      || cache_ptr->type == N_FN)
1382
1.19k
    {
1383
1.19k
      asection *sec;
1384
1385
      /* This is a debugging symbol.  */
1386
1.19k
      cache_ptr->symbol.flags = BSF_DEBUGGING;
1387
1388
      /* Work out the symbol section.  */
1389
1.19k
      switch (cache_ptr->type & N_TYPE)
1390
1.19k
  {
1391
401
  case N_TEXT:
1392
401
  case N_FN:
1393
401
    sec = obj_textsec (abfd);
1394
401
    break;
1395
169
  case N_DATA:
1396
169
    sec = obj_datasec (abfd);
1397
169
    break;
1398
127
  case N_BSS:
1399
127
    sec = obj_bsssec (abfd);
1400
127
    break;
1401
482
  default:
1402
496
  case N_ABS:
1403
496
    sec = bfd_abs_section_ptr;
1404
496
    break;
1405
1.19k
  }
1406
1407
1.19k
      cache_ptr->symbol.section = sec;
1408
1.19k
      cache_ptr->symbol.value -= sec->vma;
1409
1410
1.19k
      return true;
1411
1.19k
    }
1412
1413
  /* Get the default visibility.  This does not apply to all types, so
1414
     we just hold it in a local variable to use if wanted.  */
1415
3.33k
  if ((cache_ptr->type & N_EXT) == 0)
1416
2.63k
    visible = BSF_LOCAL;
1417
704
  else
1418
704
    visible = BSF_GLOBAL;
1419
1420
3.33k
  switch (cache_ptr->type)
1421
3.33k
    {
1422
1.87k
    default:
1423
1.90k
    case N_ABS: case N_ABS | N_EXT:
1424
1.90k
      cache_ptr->symbol.section = bfd_abs_section_ptr;
1425
1.90k
      cache_ptr->symbol.flags = visible;
1426
1.90k
      break;
1427
1428
179
    case N_UNDF | N_EXT:
1429
179
      if (cache_ptr->symbol.value != 0)
1430
106
  {
1431
    /* This is a common symbol.  */
1432
106
    cache_ptr->symbol.flags = BSF_GLOBAL;
1433
106
    cache_ptr->symbol.section = bfd_com_section_ptr;
1434
106
  }
1435
73
      else
1436
73
  {
1437
73
    cache_ptr->symbol.flags = 0;
1438
73
    cache_ptr->symbol.section = bfd_und_section_ptr;
1439
73
  }
1440
179
      break;
1441
1442
307
    case N_TEXT: case N_TEXT | N_EXT:
1443
307
      cache_ptr->symbol.section = obj_textsec (abfd);
1444
307
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1445
307
      cache_ptr->symbol.flags = visible;
1446
307
      break;
1447
1448
      /* N_SETV symbols used to represent set vectors placed in the
1449
   data section.  They are no longer generated.  Theoretically,
1450
   it was possible to extract the entries and combine them with
1451
   new ones, although I don't know if that was ever actually
1452
   done.  Unless that feature is restored, treat them as data
1453
   symbols.  */
1454
54
    case N_SETV: case N_SETV | N_EXT:
1455
111
    case N_DATA: case N_DATA | N_EXT:
1456
111
      cache_ptr->symbol.section = obj_datasec (abfd);
1457
111
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1458
111
      cache_ptr->symbol.flags = visible;
1459
111
      break;
1460
1461
107
    case N_BSS: case N_BSS | N_EXT:
1462
107
      cache_ptr->symbol.section = obj_bsssec (abfd);
1463
107
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1464
107
      cache_ptr->symbol.flags = visible;
1465
107
      break;
1466
1467
23
    case N_SETA: case N_SETA | N_EXT:
1468
184
    case N_SETT: case N_SETT | N_EXT:
1469
232
    case N_SETD: case N_SETD | N_EXT:
1470
338
    case N_SETB: case N_SETB | N_EXT:
1471
338
      {
1472
  /* This code is no longer needed.  It used to be used to make
1473
     the linker handle set symbols, but they are now handled in
1474
     the add_symbols routine instead.  */
1475
338
  switch (cache_ptr->type & N_TYPE)
1476
338
    {
1477
23
    case N_SETA:
1478
23
      cache_ptr->symbol.section = bfd_abs_section_ptr;
1479
23
      break;
1480
161
    case N_SETT:
1481
161
      cache_ptr->symbol.section = obj_textsec (abfd);
1482
161
      break;
1483
48
    case N_SETD:
1484
48
      cache_ptr->symbol.section = obj_datasec (abfd);
1485
48
      break;
1486
106
    case N_SETB:
1487
106
      cache_ptr->symbol.section = obj_bsssec (abfd);
1488
106
      break;
1489
338
    }
1490
1491
338
  cache_ptr->symbol.flags |= BSF_CONSTRUCTOR;
1492
338
      }
1493
0
      break;
1494
1495
9
    case N_WARNING:
1496
      /* This symbol is the text of a warning message.  The next
1497
   symbol is the symbol to associate the warning with.  If a
1498
   reference is made to that symbol, a warning is issued.  */
1499
9
      cache_ptr->symbol.flags = BSF_DEBUGGING | BSF_WARNING;
1500
9
      cache_ptr->symbol.section = bfd_abs_section_ptr;
1501
9
      break;
1502
1503
78
    case N_INDR: case N_INDR | N_EXT:
1504
      /* An indirect symbol.  This consists of two symbols in a row.
1505
   The first symbol is the name of the indirection.  The second
1506
   symbol is the name of the target.  A reference to the first
1507
   symbol becomes a reference to the second.  */
1508
78
      cache_ptr->symbol.flags = BSF_DEBUGGING | BSF_INDIRECT | visible;
1509
78
      cache_ptr->symbol.section = bfd_ind_section_ptr;
1510
78
      break;
1511
1512
50
    case N_WEAKU:
1513
50
      cache_ptr->symbol.section = bfd_und_section_ptr;
1514
50
      cache_ptr->symbol.flags = BSF_WEAK;
1515
50
      break;
1516
1517
17
    case N_WEAKA:
1518
17
      cache_ptr->symbol.section = bfd_abs_section_ptr;
1519
17
      cache_ptr->symbol.flags = BSF_WEAK;
1520
17
      break;
1521
1522
145
    case N_WEAKT:
1523
145
      cache_ptr->symbol.section = obj_textsec (abfd);
1524
145
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1525
145
      cache_ptr->symbol.flags = BSF_WEAK;
1526
145
      break;
1527
1528
74
    case N_WEAKD:
1529
74
      cache_ptr->symbol.section = obj_datasec (abfd);
1530
74
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1531
74
      cache_ptr->symbol.flags = BSF_WEAK;
1532
74
      break;
1533
1534
14
    case N_WEAKB:
1535
14
      cache_ptr->symbol.section = obj_bsssec (abfd);
1536
14
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1537
14
      cache_ptr->symbol.flags = BSF_WEAK;
1538
14
      break;
1539
3.33k
    }
1540
1541
3.33k
  return true;
1542
3.33k
}
aout32.c:translate_from_native_sym_flags
Line
Count
Source
1377
4.57k
{
1378
4.57k
  flagword visible;
1379
1380
4.57k
  if ((cache_ptr->type & N_STAB) != 0
1381
3.19k
      || cache_ptr->type == N_FN)
1382
1.37k
    {
1383
1.37k
      asection *sec;
1384
1385
      /* This is a debugging symbol.  */
1386
1.37k
      cache_ptr->symbol.flags = BSF_DEBUGGING;
1387
1388
      /* Work out the symbol section.  */
1389
1.37k
      switch (cache_ptr->type & N_TYPE)
1390
1.37k
  {
1391
668
  case N_TEXT:
1392
668
  case N_FN:
1393
668
    sec = obj_textsec (abfd);
1394
668
    break;
1395
196
  case N_DATA:
1396
196
    sec = obj_datasec (abfd);
1397
196
    break;
1398
139
  case N_BSS:
1399
139
    sec = obj_bsssec (abfd);
1400
139
    break;
1401
342
  default:
1402
375
  case N_ABS:
1403
375
    sec = bfd_abs_section_ptr;
1404
375
    break;
1405
1.37k
  }
1406
1407
1.37k
      cache_ptr->symbol.section = sec;
1408
1.37k
      cache_ptr->symbol.value -= sec->vma;
1409
1410
1.37k
      return true;
1411
1.37k
    }
1412
1413
  /* Get the default visibility.  This does not apply to all types, so
1414
     we just hold it in a local variable to use if wanted.  */
1415
3.19k
  if ((cache_ptr->type & N_EXT) == 0)
1416
2.04k
    visible = BSF_LOCAL;
1417
1.14k
  else
1418
1.14k
    visible = BSF_GLOBAL;
1419
1420
3.19k
  switch (cache_ptr->type)
1421
3.19k
    {
1422
1.31k
    default:
1423
1.33k
    case N_ABS: case N_ABS | N_EXT:
1424
1.33k
      cache_ptr->symbol.section = bfd_abs_section_ptr;
1425
1.33k
      cache_ptr->symbol.flags = visible;
1426
1.33k
      break;
1427
1428
156
    case N_UNDF | N_EXT:
1429
156
      if (cache_ptr->symbol.value != 0)
1430
124
  {
1431
    /* This is a common symbol.  */
1432
124
    cache_ptr->symbol.flags = BSF_GLOBAL;
1433
124
    cache_ptr->symbol.section = bfd_com_section_ptr;
1434
124
  }
1435
32
      else
1436
32
  {
1437
32
    cache_ptr->symbol.flags = 0;
1438
32
    cache_ptr->symbol.section = bfd_und_section_ptr;
1439
32
  }
1440
156
      break;
1441
1442
341
    case N_TEXT: case N_TEXT | N_EXT:
1443
341
      cache_ptr->symbol.section = obj_textsec (abfd);
1444
341
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1445
341
      cache_ptr->symbol.flags = visible;
1446
341
      break;
1447
1448
      /* N_SETV symbols used to represent set vectors placed in the
1449
   data section.  They are no longer generated.  Theoretically,
1450
   it was possible to extract the entries and combine them with
1451
   new ones, although I don't know if that was ever actually
1452
   done.  Unless that feature is restored, treat them as data
1453
   symbols.  */
1454
25
    case N_SETV: case N_SETV | N_EXT:
1455
100
    case N_DATA: case N_DATA | N_EXT:
1456
100
      cache_ptr->symbol.section = obj_datasec (abfd);
1457
100
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1458
100
      cache_ptr->symbol.flags = visible;
1459
100
      break;
1460
1461
120
    case N_BSS: case N_BSS | N_EXT:
1462
120
      cache_ptr->symbol.section = obj_bsssec (abfd);
1463
120
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1464
120
      cache_ptr->symbol.flags = visible;
1465
120
      break;
1466
1467
73
    case N_SETA: case N_SETA | N_EXT:
1468
265
    case N_SETT: case N_SETT | N_EXT:
1469
444
    case N_SETD: case N_SETD | N_EXT:
1470
499
    case N_SETB: case N_SETB | N_EXT:
1471
499
      {
1472
  /* This code is no longer needed.  It used to be used to make
1473
     the linker handle set symbols, but they are now handled in
1474
     the add_symbols routine instead.  */
1475
499
  switch (cache_ptr->type & N_TYPE)
1476
499
    {
1477
73
    case N_SETA:
1478
73
      cache_ptr->symbol.section = bfd_abs_section_ptr;
1479
73
      break;
1480
192
    case N_SETT:
1481
192
      cache_ptr->symbol.section = obj_textsec (abfd);
1482
192
      break;
1483
179
    case N_SETD:
1484
179
      cache_ptr->symbol.section = obj_datasec (abfd);
1485
179
      break;
1486
55
    case N_SETB:
1487
55
      cache_ptr->symbol.section = obj_bsssec (abfd);
1488
55
      break;
1489
499
    }
1490
1491
499
  cache_ptr->symbol.flags |= BSF_CONSTRUCTOR;
1492
499
      }
1493
0
      break;
1494
1495
9
    case N_WARNING:
1496
      /* This symbol is the text of a warning message.  The next
1497
   symbol is the symbol to associate the warning with.  If a
1498
   reference is made to that symbol, a warning is issued.  */
1499
9
      cache_ptr->symbol.flags = BSF_DEBUGGING | BSF_WARNING;
1500
9
      cache_ptr->symbol.section = bfd_abs_section_ptr;
1501
9
      break;
1502
1503
68
    case N_INDR: case N_INDR | N_EXT:
1504
      /* An indirect symbol.  This consists of two symbols in a row.
1505
   The first symbol is the name of the indirection.  The second
1506
   symbol is the name of the target.  A reference to the first
1507
   symbol becomes a reference to the second.  */
1508
68
      cache_ptr->symbol.flags = BSF_DEBUGGING | BSF_INDIRECT | visible;
1509
68
      cache_ptr->symbol.section = bfd_ind_section_ptr;
1510
68
      break;
1511
1512
330
    case N_WEAKU:
1513
330
      cache_ptr->symbol.section = bfd_und_section_ptr;
1514
330
      cache_ptr->symbol.flags = BSF_WEAK;
1515
330
      break;
1516
1517
7
    case N_WEAKA:
1518
7
      cache_ptr->symbol.section = bfd_abs_section_ptr;
1519
7
      cache_ptr->symbol.flags = BSF_WEAK;
1520
7
      break;
1521
1522
138
    case N_WEAKT:
1523
138
      cache_ptr->symbol.section = obj_textsec (abfd);
1524
138
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1525
138
      cache_ptr->symbol.flags = BSF_WEAK;
1526
138
      break;
1527
1528
64
    case N_WEAKD:
1529
64
      cache_ptr->symbol.section = obj_datasec (abfd);
1530
64
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1531
64
      cache_ptr->symbol.flags = BSF_WEAK;
1532
64
      break;
1533
1534
22
    case N_WEAKB:
1535
22
      cache_ptr->symbol.section = obj_bsssec (abfd);
1536
22
      cache_ptr->symbol.value -= cache_ptr->symbol.section->vma;
1537
22
      cache_ptr->symbol.flags = BSF_WEAK;
1538
22
      break;
1539
3.19k
    }
1540
1541
3.19k
  return true;
1542
3.19k
}
1543
1544
/* Set the fields of SYM_POINTER according to CACHE_PTR.  */
1545
1546
static bool
1547
translate_to_native_sym_flags (bfd *abfd,
1548
             asymbol *cache_ptr,
1549
             struct external_nlist *sym_pointer)
1550
689
{
1551
689
  bfd_vma value = cache_ptr->value;
1552
689
  asection *sec;
1553
689
  bfd_vma off;
1554
1555
  /* Mask out any existing type bits in case copying from one section
1556
     to another.  */
1557
689
  sym_pointer->e_type[0] &= ~N_TYPE;
1558
1559
689
  sec = bfd_asymbol_section (cache_ptr);
1560
689
  off = 0;
1561
1562
689
  if (sec == NULL)
1563
0
    {
1564
      /* This case occurs, e.g., for the *DEBUG* section of a COFF
1565
   file.  */
1566
0
      _bfd_error_handler
1567
  /* xgettext:c-format */
1568
0
  (_("%pB: can not represent section for symbol `%s' in a.out "
1569
0
     "object file format"),
1570
0
   abfd,
1571
0
   cache_ptr->name != NULL ? cache_ptr->name : _("*unknown*"));
1572
0
      bfd_set_error (bfd_error_nonrepresentable_section);
1573
0
      return false;
1574
0
    }
1575
1576
689
  if (sec->output_section != NULL)
1577
689
    {
1578
689
      off = sec->output_offset;
1579
689
      sec = sec->output_section;
1580
689
    }
1581
1582
689
  if (bfd_is_abs_section (sec))
1583
393
    sym_pointer->e_type[0] |= N_ABS;
1584
296
  else if (sec == obj_textsec (abfd))
1585
100
    sym_pointer->e_type[0] |= N_TEXT;
1586
196
  else if (sec == obj_datasec (abfd))
1587
71
    sym_pointer->e_type[0] |= N_DATA;
1588
125
  else if (sec == obj_bsssec (abfd))
1589
56
    sym_pointer->e_type[0] |= N_BSS;
1590
69
  else if (bfd_is_und_section (sec))
1591
31
    sym_pointer->e_type[0] = N_UNDF | N_EXT;
1592
38
  else if (bfd_is_ind_section (sec))
1593
17
    sym_pointer->e_type[0] = N_INDR;
1594
21
  else if (bfd_is_com_section (sec))
1595
21
    sym_pointer->e_type[0] = N_UNDF | N_EXT;
1596
0
  else
1597
0
    {
1598
0
      if (aout_section_merge_with_text_p (abfd, sec))
1599
0
  sym_pointer->e_type[0] |= N_TEXT;
1600
0
      else
1601
0
  {
1602
0
    _bfd_error_handler
1603
      /* xgettext:c-format */
1604
0
     (_("%pB: can not represent section `%pA' in a.out object file format"),
1605
0
       abfd, sec);
1606
0
    bfd_set_error (bfd_error_nonrepresentable_section);
1607
0
    return false;
1608
0
  }
1609
0
    }
1610
1611
  /* Turn the symbol from section relative to absolute again.  */
1612
689
  value += sec->vma + off;
1613
1614
689
  if ((cache_ptr->flags & BSF_WARNING) != 0)
1615
2
    sym_pointer->e_type[0] = N_WARNING;
1616
1617
689
  if ((cache_ptr->flags & BSF_DEBUGGING) != 0)
1618
148
    sym_pointer->e_type[0] = ((aout_symbol_type *) cache_ptr)->type;
1619
541
  else if ((cache_ptr->flags & BSF_GLOBAL) != 0)
1620
30
    sym_pointer->e_type[0] |= N_EXT;
1621
511
  else if ((cache_ptr->flags & BSF_LOCAL) != 0)
1622
366
    sym_pointer->e_type[0] &= ~N_EXT;
1623
1624
689
  if ((cache_ptr->flags & BSF_CONSTRUCTOR) != 0)
1625
72
    {
1626
72
      int type = ((aout_symbol_type *) cache_ptr)->type;
1627
1628
72
      switch (type)
1629
72
  {
1630
0
  case N_ABS: type = N_SETA; break;
1631
0
  case N_TEXT: type = N_SETT; break;
1632
0
  case N_DATA: type = N_SETD; break;
1633
0
  case N_BSS: type = N_SETB; break;
1634
72
  }
1635
72
      sym_pointer->e_type[0] = type;
1636
72
    }
1637
1638
689
  if ((cache_ptr->flags & BSF_WEAK) != 0)
1639
66
    {
1640
66
      int type;
1641
1642
66
      switch (sym_pointer->e_type[0] & N_TYPE)
1643
66
  {
1644
0
  default:
1645
4
  case N_ABS: type = N_WEAKA; break;
1646
11
  case N_TEXT: type = N_WEAKT; break;
1647
18
  case N_DATA: type = N_WEAKD; break;
1648
9
  case N_BSS: type = N_WEAKB; break;
1649
24
  case N_UNDF: type = N_WEAKU; break;
1650
66
  }
1651
66
      sym_pointer->e_type[0] = type;
1652
66
    }
1653
1654
689
  PUT_WORD (abfd, value, sym_pointer->e_value);
1655
1656
689
  return true;
1657
689
}
Unexecuted instantiation: aout-cris.c:translate_to_native_sym_flags
aout-ns32k.c:translate_to_native_sym_flags
Line
Count
Source
1550
296
{
1551
296
  bfd_vma value = cache_ptr->value;
1552
296
  asection *sec;
1553
296
  bfd_vma off;
1554
1555
  /* Mask out any existing type bits in case copying from one section
1556
     to another.  */
1557
296
  sym_pointer->e_type[0] &= ~N_TYPE;
1558
1559
296
  sec = bfd_asymbol_section (cache_ptr);
1560
296
  off = 0;
1561
1562
296
  if (sec == NULL)
1563
0
    {
1564
      /* This case occurs, e.g., for the *DEBUG* section of a COFF
1565
   file.  */
1566
0
      _bfd_error_handler
1567
  /* xgettext:c-format */
1568
0
  (_("%pB: can not represent section for symbol `%s' in a.out "
1569
0
     "object file format"),
1570
0
   abfd,
1571
0
   cache_ptr->name != NULL ? cache_ptr->name : _("*unknown*"));
1572
0
      bfd_set_error (bfd_error_nonrepresentable_section);
1573
0
      return false;
1574
0
    }
1575
1576
296
  if (sec->output_section != NULL)
1577
296
    {
1578
296
      off = sec->output_offset;
1579
296
      sec = sec->output_section;
1580
296
    }
1581
1582
296
  if (bfd_is_abs_section (sec))
1583
189
    sym_pointer->e_type[0] |= N_ABS;
1584
107
  else if (sec == obj_textsec (abfd))
1585
34
    sym_pointer->e_type[0] |= N_TEXT;
1586
73
  else if (sec == obj_datasec (abfd))
1587
24
    sym_pointer->e_type[0] |= N_DATA;
1588
49
  else if (sec == obj_bsssec (abfd))
1589
14
    sym_pointer->e_type[0] |= N_BSS;
1590
35
  else if (bfd_is_und_section (sec))
1591
12
    sym_pointer->e_type[0] = N_UNDF | N_EXT;
1592
23
  else if (bfd_is_ind_section (sec))
1593
10
    sym_pointer->e_type[0] = N_INDR;
1594
13
  else if (bfd_is_com_section (sec))
1595
13
    sym_pointer->e_type[0] = N_UNDF | N_EXT;
1596
0
  else
1597
0
    {
1598
0
      if (aout_section_merge_with_text_p (abfd, sec))
1599
0
  sym_pointer->e_type[0] |= N_TEXT;
1600
0
      else
1601
0
  {
1602
0
    _bfd_error_handler
1603
      /* xgettext:c-format */
1604
0
     (_("%pB: can not represent section `%pA' in a.out object file format"),
1605
0
       abfd, sec);
1606
0
    bfd_set_error (bfd_error_nonrepresentable_section);
1607
0
    return false;
1608
0
  }
1609
0
    }
1610
1611
  /* Turn the symbol from section relative to absolute again.  */
1612
296
  value += sec->vma + off;
1613
1614
296
  if ((cache_ptr->flags & BSF_WARNING) != 0)
1615
1
    sym_pointer->e_type[0] = N_WARNING;
1616
1617
296
  if ((cache_ptr->flags & BSF_DEBUGGING) != 0)
1618
63
    sym_pointer->e_type[0] = ((aout_symbol_type *) cache_ptr)->type;
1619
233
  else if ((cache_ptr->flags & BSF_GLOBAL) != 0)
1620
16
    sym_pointer->e_type[0] |= N_EXT;
1621
217
  else if ((cache_ptr->flags & BSF_LOCAL) != 0)
1622
168
    sym_pointer->e_type[0] &= ~N_EXT;
1623
1624
296
  if ((cache_ptr->flags & BSF_CONSTRUCTOR) != 0)
1625
23
    {
1626
23
      int type = ((aout_symbol_type *) cache_ptr)->type;
1627
1628
23
      switch (type)
1629
23
  {
1630
0
  case N_ABS: type = N_SETA; break;
1631
0
  case N_TEXT: type = N_SETT; break;
1632
0
  case N_DATA: type = N_SETD; break;
1633
0
  case N_BSS: type = N_SETB; break;
1634
23
  }
1635
23
      sym_pointer->e_type[0] = type;
1636
23
    }
1637
1638
296
  if ((cache_ptr->flags & BSF_WEAK) != 0)
1639
20
    {
1640
20
      int type;
1641
1642
20
      switch (sym_pointer->e_type[0] & N_TYPE)
1643
20
  {
1644
0
  default:
1645
3
  case N_ABS: type = N_WEAKA; break;
1646
3
  case N_TEXT: type = N_WEAKT; break;
1647
4
  case N_DATA: type = N_WEAKD; break;
1648
4
  case N_BSS: type = N_WEAKB; break;
1649
6
  case N_UNDF: type = N_WEAKU; break;
1650
20
  }
1651
20
      sym_pointer->e_type[0] = type;
1652
20
    }
1653
1654
296
  PUT_WORD (abfd, value, sym_pointer->e_value);
1655
1656
  return true;
1657
296
}
aout32.c:translate_to_native_sym_flags
Line
Count
Source
1550
393
{
1551
393
  bfd_vma value = cache_ptr->value;
1552
393
  asection *sec;
1553
393
  bfd_vma off;
1554
1555
  /* Mask out any existing type bits in case copying from one section
1556
     to another.  */
1557
393
  sym_pointer->e_type[0] &= ~N_TYPE;
1558
1559
393
  sec = bfd_asymbol_section (cache_ptr);
1560
393
  off = 0;
1561
1562
393
  if (sec == NULL)
1563
0
    {
1564
      /* This case occurs, e.g., for the *DEBUG* section of a COFF
1565
   file.  */
1566
0
      _bfd_error_handler
1567
  /* xgettext:c-format */
1568
0
  (_("%pB: can not represent section for symbol `%s' in a.out "
1569
0
     "object file format"),
1570
0
   abfd,
1571
0
   cache_ptr->name != NULL ? cache_ptr->name : _("*unknown*"));
1572
0
      bfd_set_error (bfd_error_nonrepresentable_section);
1573
0
      return false;
1574
0
    }
1575
1576
393
  if (sec->output_section != NULL)
1577
393
    {
1578
393
      off = sec->output_offset;
1579
393
      sec = sec->output_section;
1580
393
    }
1581
1582
393
  if (bfd_is_abs_section (sec))
1583
204
    sym_pointer->e_type[0] |= N_ABS;
1584
189
  else if (sec == obj_textsec (abfd))
1585
66
    sym_pointer->e_type[0] |= N_TEXT;
1586
123
  else if (sec == obj_datasec (abfd))
1587
47
    sym_pointer->e_type[0] |= N_DATA;
1588
76
  else if (sec == obj_bsssec (abfd))
1589
42
    sym_pointer->e_type[0] |= N_BSS;
1590
34
  else if (bfd_is_und_section (sec))
1591
19
    sym_pointer->e_type[0] = N_UNDF | N_EXT;
1592
15
  else if (bfd_is_ind_section (sec))
1593
7
    sym_pointer->e_type[0] = N_INDR;
1594
8
  else if (bfd_is_com_section (sec))
1595
8
    sym_pointer->e_type[0] = N_UNDF | N_EXT;
1596
0
  else
1597
0
    {
1598
0
      if (aout_section_merge_with_text_p (abfd, sec))
1599
0
  sym_pointer->e_type[0] |= N_TEXT;
1600
0
      else
1601
0
  {
1602
0
    _bfd_error_handler
1603
      /* xgettext:c-format */
1604
0
     (_("%pB: can not represent section `%pA' in a.out object file format"),
1605
0
       abfd, sec);
1606
0
    bfd_set_error (bfd_error_nonrepresentable_section);
1607
0
    return false;
1608
0
  }
1609
0
    }
1610
1611
  /* Turn the symbol from section relative to absolute again.  */
1612
393
  value += sec->vma + off;
1613
1614
393
  if ((cache_ptr->flags & BSF_WARNING) != 0)
1615
1
    sym_pointer->e_type[0] = N_WARNING;
1616
1617
393
  if ((cache_ptr->flags & BSF_DEBUGGING) != 0)
1618
85
    sym_pointer->e_type[0] = ((aout_symbol_type *) cache_ptr)->type;
1619
308
  else if ((cache_ptr->flags & BSF_GLOBAL) != 0)
1620
14
    sym_pointer->e_type[0] |= N_EXT;
1621
294
  else if ((cache_ptr->flags & BSF_LOCAL) != 0)
1622
198
    sym_pointer->e_type[0] &= ~N_EXT;
1623
1624
393
  if ((cache_ptr->flags & BSF_CONSTRUCTOR) != 0)
1625
49
    {
1626
49
      int type = ((aout_symbol_type *) cache_ptr)->type;
1627
1628
49
      switch (type)
1629
49
  {
1630
0
  case N_ABS: type = N_SETA; break;
1631
0
  case N_TEXT: type = N_SETT; break;
1632
0
  case N_DATA: type = N_SETD; break;
1633
0
  case N_BSS: type = N_SETB; break;
1634
49
  }
1635
49
      sym_pointer->e_type[0] = type;
1636
49
    }
1637
1638
393
  if ((cache_ptr->flags & BSF_WEAK) != 0)
1639
46
    {
1640
46
      int type;
1641
1642
46
      switch (sym_pointer->e_type[0] & N_TYPE)
1643
46
  {
1644
0
  default:
1645
1
  case N_ABS: type = N_WEAKA; break;
1646
8
  case N_TEXT: type = N_WEAKT; break;
1647
14
  case N_DATA: type = N_WEAKD; break;
1648
5
  case N_BSS: type = N_WEAKB; break;
1649
18
  case N_UNDF: type = N_WEAKU; break;
1650
46
  }
1651
46
      sym_pointer->e_type[0] = type;
1652
46
    }
1653
1654
393
  PUT_WORD (abfd, value, sym_pointer->e_value);
1655
1656
  return true;
1657
393
}
1658

1659
/* Native-level interface to symbols.  */
1660
1661
asymbol *
1662
NAME (aout, make_empty_symbol) (bfd *abfd)
1663
52.0k
{
1664
52.0k
  size_t amt = sizeof (aout_symbol_type);
1665
1666
52.0k
  aout_symbol_type *new_symbol = (aout_symbol_type *) bfd_zalloc (abfd, amt);
1667
52.0k
  if (!new_symbol)
1668
0
    return NULL;
1669
52.0k
  new_symbol->symbol.the_bfd = abfd;
1670
1671
52.0k
  return &new_symbol->symbol;
1672
52.0k
}
cris_aout_32_make_empty_symbol
Line
Count
Source
1663
3.19k
{
1664
3.19k
  size_t amt = sizeof (aout_symbol_type);
1665
1666
3.19k
  aout_symbol_type *new_symbol = (aout_symbol_type *) bfd_zalloc (abfd, amt);
1667
3.19k
  if (!new_symbol)
1668
0
    return NULL;
1669
3.19k
  new_symbol->symbol.the_bfd = abfd;
1670
1671
3.19k
  return &new_symbol->symbol;
1672
3.19k
}
ns32kaout_32_make_empty_symbol
Line
Count
Source
1663
11.1k
{
1664
11.1k
  size_t amt = sizeof (aout_symbol_type);
1665
1666
11.1k
  aout_symbol_type *new_symbol = (aout_symbol_type *) bfd_zalloc (abfd, amt);
1667
11.1k
  if (!new_symbol)
1668
0
    return NULL;
1669
11.1k
  new_symbol->symbol.the_bfd = abfd;
1670
1671
11.1k
  return &new_symbol->symbol;
1672
11.1k
}
aout_32_make_empty_symbol
Line
Count
Source
1663
37.6k
{
1664
37.6k
  size_t amt = sizeof (aout_symbol_type);
1665
1666
37.6k
  aout_symbol_type *new_symbol = (aout_symbol_type *) bfd_zalloc (abfd, amt);
1667
37.6k
  if (!new_symbol)
1668
0
    return NULL;
1669
37.6k
  new_symbol->symbol.the_bfd = abfd;
1670
1671
37.6k
  return &new_symbol->symbol;
1672
37.6k
}
1673
1674
/* Translate a set of external symbols into internal symbols.  */
1675
1676
bool
1677
NAME (aout, translate_symbol_table) (bfd *abfd,
1678
             aout_symbol_type *in,
1679
             struct external_nlist *ext,
1680
             bfd_size_type count,
1681
             char *str,
1682
             bfd_size_type strsize,
1683
             bool dynamic)
1684
610
{
1685
610
  struct external_nlist *ext_end;
1686
1687
610
  ext_end = ext + count;
1688
9.70k
  for (; ext < ext_end; ext++, in++)
1689
9.25k
    {
1690
9.25k
      bfd_vma x;
1691
1692
9.25k
      x = GET_WORD (abfd, ext->e_strx);
1693
9.25k
      in->symbol.the_bfd = abfd;
1694
1695
      /* For the normal symbols, the zero index points at the number
1696
   of bytes in the string table but is to be interpreted as the
1697
   null string.  For the dynamic symbols, the number of bytes in
1698
   the string table is stored in the __DYNAMIC structure and the
1699
   zero index points at an actual string.  */
1700
9.25k
      if (x == 0 && ! dynamic)
1701
5.65k
  in->symbol.name = "";
1702
3.59k
      else if (x < strsize)
1703
3.44k
  in->symbol.name = str + x;
1704
152
      else
1705
152
  {
1706
152
    _bfd_error_handler
1707
152
      (_("%pB: invalid string offset %" PRIu64 " >= %" PRIu64),
1708
152
       abfd, (uint64_t) x, (uint64_t) strsize);
1709
152
    bfd_set_error (bfd_error_bad_value);
1710
152
    return false;
1711
152
  }
1712
1713
9.09k
      in->symbol.value = GET_SWORD (abfd,  ext->e_value);
1714
9.09k
      in->desc = H_GET_16 (abfd, ext->e_desc);
1715
9.09k
      in->other = H_GET_8 (abfd, ext->e_other);
1716
9.09k
      in->type = H_GET_8 (abfd,  ext->e_type);
1717
9.09k
      in->symbol.udata.p = NULL;
1718
1719
9.09k
      if (! translate_from_native_sym_flags (abfd, in))
1720
0
  return false;
1721
1722
9.09k
      if (dynamic)
1723
0
  in->symbol.flags |= BSF_DYNAMIC;
1724
9.09k
    }
1725
1726
458
  return true;
1727
610
}
Unexecuted instantiation: cris_aout_32_translate_symbol_table
ns32kaout_32_translate_symbol_table
Line
Count
Source
1684
293
{
1685
293
  struct external_nlist *ext_end;
1686
1687
293
  ext_end = ext + count;
1688
4.82k
  for (; ext < ext_end; ext++, in++)
1689
4.59k
    {
1690
4.59k
      bfd_vma x;
1691
1692
4.59k
      x = GET_WORD (abfd, ext->e_strx);
1693
4.59k
      in->symbol.the_bfd = abfd;
1694
1695
      /* For the normal symbols, the zero index points at the number
1696
   of bytes in the string table but is to be interpreted as the
1697
   null string.  For the dynamic symbols, the number of bytes in
1698
   the string table is stored in the __DYNAMIC structure and the
1699
   zero index points at an actual string.  */
1700
4.59k
      if (x == 0 && ! dynamic)
1701
3.06k
  in->symbol.name = "";
1702
1.52k
      else if (x < strsize)
1703
1.45k
  in->symbol.name = str + x;
1704
70
      else
1705
70
  {
1706
70
    _bfd_error_handler
1707
70
      (_("%pB: invalid string offset %" PRIu64 " >= %" PRIu64),
1708
70
       abfd, (uint64_t) x, (uint64_t) strsize);
1709
70
    bfd_set_error (bfd_error_bad_value);
1710
70
    return false;
1711
70
  }
1712
1713
4.52k
      in->symbol.value = GET_SWORD (abfd,  ext->e_value);
1714
4.52k
      in->desc = H_GET_16 (abfd, ext->e_desc);
1715
4.52k
      in->other = H_GET_8 (abfd, ext->e_other);
1716
4.52k
      in->type = H_GET_8 (abfd,  ext->e_type);
1717
4.52k
      in->symbol.udata.p = NULL;
1718
1719
4.52k
      if (! translate_from_native_sym_flags (abfd, in))
1720
0
  return false;
1721
1722
4.52k
      if (dynamic)
1723
0
  in->symbol.flags |= BSF_DYNAMIC;
1724
4.52k
    }
1725
1726
223
  return true;
1727
293
}
aout_32_translate_symbol_table
Line
Count
Source
1684
317
{
1685
317
  struct external_nlist *ext_end;
1686
1687
317
  ext_end = ext + count;
1688
4.88k
  for (; ext < ext_end; ext++, in++)
1689
4.65k
    {
1690
4.65k
      bfd_vma x;
1691
1692
4.65k
      x = GET_WORD (abfd, ext->e_strx);
1693
4.65k
      in->symbol.the_bfd = abfd;
1694
1695
      /* For the normal symbols, the zero index points at the number
1696
   of bytes in the string table but is to be interpreted as the
1697
   null string.  For the dynamic symbols, the number of bytes in
1698
   the string table is stored in the __DYNAMIC structure and the
1699
   zero index points at an actual string.  */
1700
4.65k
      if (x == 0 && ! dynamic)
1701
2.58k
  in->symbol.name = "";
1702
2.06k
      else if (x < strsize)
1703
1.98k
  in->symbol.name = str + x;
1704
82
      else
1705
82
  {
1706
82
    _bfd_error_handler
1707
82
      (_("%pB: invalid string offset %" PRIu64 " >= %" PRIu64),
1708
82
       abfd, (uint64_t) x, (uint64_t) strsize);
1709
82
    bfd_set_error (bfd_error_bad_value);
1710
82
    return false;
1711
82
  }
1712
1713
4.57k
      in->symbol.value = GET_SWORD (abfd,  ext->e_value);
1714
4.57k
      in->desc = H_GET_16 (abfd, ext->e_desc);
1715
4.57k
      in->other = H_GET_8 (abfd, ext->e_other);
1716
4.57k
      in->type = H_GET_8 (abfd,  ext->e_type);
1717
4.57k
      in->symbol.udata.p = NULL;
1718
1719
4.57k
      if (! translate_from_native_sym_flags (abfd, in))
1720
0
  return false;
1721
1722
4.57k
      if (dynamic)
1723
0
  in->symbol.flags |= BSF_DYNAMIC;
1724
4.57k
    }
1725
1726
235
  return true;
1727
317
}
1728
1729
/* We read the symbols into a buffer, which is discarded when this
1730
   function exits.  We read the strings into a buffer large enough to
1731
   hold them all plus all the cached symbol entries.  */
1732
1733
bool
1734
NAME (aout, slurp_symbol_table) (bfd *abfd)
1735
1.86k
{
1736
1.86k
  struct external_nlist *old_external_syms;
1737
1.86k
  aout_symbol_type *cached;
1738
1.86k
  bfd_size_type cached_size;
1739
1740
1.86k
  BFD_ASSERT (bfd_get_flavour (abfd) == bfd_target_aout_flavour);
1741
1742
  /* If there's no work to be done, don't do any.  */
1743
1.86k
  if (obj_aout_symbols (abfd) != NULL)
1744
978
    return true;
1745
1746
885
  old_external_syms = obj_aout_external_syms (abfd);
1747
1748
885
  if (! aout_get_external_symbols (abfd))
1749
185
    return false;
1750
1751
700
  cached_size = obj_aout_external_sym_count (abfd);
1752
700
  if (cached_size == 0)
1753
90
    return true;    /* Nothing to do.  */
1754
1755
610
  cached_size *= sizeof (aout_symbol_type);
1756
610
  cached = (aout_symbol_type *) bfd_zmalloc (cached_size);
1757
610
  if (cached == NULL)
1758
0
    return false;
1759
1760
  /* Convert from external symbol information to internal.  */
1761
610
  if (! (NAME (aout, translate_symbol_table)
1762
610
   (abfd, cached,
1763
610
    obj_aout_external_syms (abfd),
1764
610
    obj_aout_external_sym_count (abfd),
1765
610
    obj_aout_external_strings (abfd),
1766
610
    obj_aout_external_string_size (abfd),
1767
610
    false)))
1768
152
    {
1769
152
      free (cached);
1770
152
      return false;
1771
152
    }
1772
1773
458
  abfd->symcount = obj_aout_external_sym_count (abfd);
1774
1775
458
  obj_aout_symbols (abfd) = cached;
1776
1777
  /* It is very likely that anybody who calls this function will not
1778
     want the external symbol information, so if it was allocated
1779
     because of our call to aout_get_external_symbols, we free it up
1780
     right away to save space.  */
1781
458
  if (old_external_syms == NULL
1782
140
      && obj_aout_external_syms (abfd) != NULL)
1783
140
    {
1784
140
      free (obj_aout_external_syms (abfd));
1785
140
      obj_aout_external_syms (abfd) = NULL;
1786
140
    }
1787
1788
458
  return true;
1789
610
}
Unexecuted instantiation: cris_aout_32_slurp_symbol_table
ns32kaout_32_slurp_symbol_table
Line
Count
Source
1735
910
{
1736
910
  struct external_nlist *old_external_syms;
1737
910
  aout_symbol_type *cached;
1738
910
  bfd_size_type cached_size;
1739
1740
910
  BFD_ASSERT (bfd_get_flavour (abfd) == bfd_target_aout_flavour);
1741
1742
  /* If there's no work to be done, don't do any.  */
1743
910
  if (obj_aout_symbols (abfd) != NULL)
1744
463
    return true;
1745
1746
447
  old_external_syms = obj_aout_external_syms (abfd);
1747
1748
447
  if (! aout_get_external_symbols (abfd))
1749
116
    return false;
1750
1751
331
  cached_size = obj_aout_external_sym_count (abfd);
1752
331
  if (cached_size == 0)
1753
38
    return true;    /* Nothing to do.  */
1754
1755
293
  cached_size *= sizeof (aout_symbol_type);
1756
293
  cached = (aout_symbol_type *) bfd_zmalloc (cached_size);
1757
293
  if (cached == NULL)
1758
0
    return false;
1759
1760
  /* Convert from external symbol information to internal.  */
1761
293
  if (! (NAME (aout, translate_symbol_table)
1762
293
   (abfd, cached,
1763
293
    obj_aout_external_syms (abfd),
1764
293
    obj_aout_external_sym_count (abfd),
1765
293
    obj_aout_external_strings (abfd),
1766
293
    obj_aout_external_string_size (abfd),
1767
293
    false)))
1768
70
    {
1769
70
      free (cached);
1770
70
      return false;
1771
70
    }
1772
1773
223
  abfd->symcount = obj_aout_external_sym_count (abfd);
1774
1775
223
  obj_aout_symbols (abfd) = cached;
1776
1777
  /* It is very likely that anybody who calls this function will not
1778
     want the external symbol information, so if it was allocated
1779
     because of our call to aout_get_external_symbols, we free it up
1780
     right away to save space.  */
1781
223
  if (old_external_syms == NULL
1782
67
      && obj_aout_external_syms (abfd) != NULL)
1783
67
    {
1784
67
      free (obj_aout_external_syms (abfd));
1785
67
      obj_aout_external_syms (abfd) = NULL;
1786
67
    }
1787
1788
  return true;
1789
293
}
aout_32_slurp_symbol_table
Line
Count
Source
1735
953
{
1736
953
  struct external_nlist *old_external_syms;
1737
953
  aout_symbol_type *cached;
1738
953
  bfd_size_type cached_size;
1739
1740
953
  BFD_ASSERT (bfd_get_flavour (abfd) == bfd_target_aout_flavour);
1741
1742
  /* If there's no work to be done, don't do any.  */
1743
953
  if (obj_aout_symbols (abfd) != NULL)
1744
515
    return true;
1745
1746
438
  old_external_syms = obj_aout_external_syms (abfd);
1747
1748
438
  if (! aout_get_external_symbols (abfd))
1749
69
    return false;
1750
1751
369
  cached_size = obj_aout_external_sym_count (abfd);
1752
369
  if (cached_size == 0)
1753
52
    return true;    /* Nothing to do.  */
1754
1755
317
  cached_size *= sizeof (aout_symbol_type);
1756
317
  cached = (aout_symbol_type *) bfd_zmalloc (cached_size);
1757
317
  if (cached == NULL)
1758
0
    return false;
1759
1760
  /* Convert from external symbol information to internal.  */
1761
317
  if (! (NAME (aout, translate_symbol_table)
1762
317
   (abfd, cached,
1763
317
    obj_aout_external_syms (abfd),
1764
317
    obj_aout_external_sym_count (abfd),
1765
317
    obj_aout_external_strings (abfd),
1766
317
    obj_aout_external_string_size (abfd),
1767
317
    false)))
1768
82
    {
1769
82
      free (cached);
1770
82
      return false;
1771
82
    }
1772
1773
235
  abfd->symcount = obj_aout_external_sym_count (abfd);
1774
1775
235
  obj_aout_symbols (abfd) = cached;
1776
1777
  /* It is very likely that anybody who calls this function will not
1778
     want the external symbol information, so if it was allocated
1779
     because of our call to aout_get_external_symbols, we free it up
1780
     right away to save space.  */
1781
235
  if (old_external_syms == NULL
1782
73
      && obj_aout_external_syms (abfd) != NULL)
1783
73
    {
1784
73
      free (obj_aout_external_syms (abfd));
1785
73
      obj_aout_external_syms (abfd) = NULL;
1786
73
    }
1787
1788
  return true;
1789
317
}
1790

1791
/* We use a hash table when writing out symbols so that we only write
1792
   out a particular string once.  This helps particularly when the
1793
   linker writes out stabs debugging entries, because each different
1794
   contributing object file tends to have many duplicate stabs
1795
   strings.
1796
1797
   This hash table code breaks dbx on SunOS 4.1.3, so we don't do it
1798
   if BFD_TRADITIONAL_FORMAT is set.  */
1799
1800
/* Get the index of a string in a strtab, adding it if it is not
1801
   already present.  */
1802
1803
static inline bfd_size_type
1804
add_to_stringtab (bfd *abfd,
1805
      struct bfd_strtab_hash *tab,
1806
      const char *str,
1807
      bool copy)
1808
689
{
1809
689
  bool hash;
1810
689
  bfd_size_type str_index;
1811
1812
  /* An index of 0 always means the empty string.  */
1813
689
  if (str == 0 || *str == '\0')
1814
565
    return 0;
1815
1816
  /* Don't hash if BFD_TRADITIONAL_FORMAT is set, because SunOS dbx
1817
     doesn't understand a hashed string table.  */
1818
124
  hash = true;
1819
124
  if ((abfd->flags & BFD_TRADITIONAL_FORMAT) != 0)
1820
0
    hash = false;
1821
1822
124
  str_index = _bfd_stringtab_add (tab, str, hash, copy);
1823
1824
124
  if (str_index != (bfd_size_type) -1)
1825
    /* Add BYTES_IN_WORD to the return value to account for the
1826
       space taken up by the string table size.  */
1827
124
    str_index += BYTES_IN_WORD;
1828
1829
124
  return str_index;
1830
689
}
Unexecuted instantiation: aout-cris.c:add_to_stringtab
aout-ns32k.c:add_to_stringtab
Line
Count
Source
1808
296
{
1809
296
  bool hash;
1810
296
  bfd_size_type str_index;
1811
1812
  /* An index of 0 always means the empty string.  */
1813
296
  if (str == 0 || *str == '\0')
1814
259
    return 0;
1815
1816
  /* Don't hash if BFD_TRADITIONAL_FORMAT is set, because SunOS dbx
1817
     doesn't understand a hashed string table.  */
1818
37
  hash = true;
1819
37
  if ((abfd->flags & BFD_TRADITIONAL_FORMAT) != 0)
1820
0
    hash = false;
1821
1822
37
  str_index = _bfd_stringtab_add (tab, str, hash, copy);
1823
1824
37
  if (str_index != (bfd_size_type) -1)
1825
    /* Add BYTES_IN_WORD to the return value to account for the
1826
       space taken up by the string table size.  */
1827
37
    str_index += BYTES_IN_WORD;
1828
1829
37
  return str_index;
1830
296
}
aout32.c:add_to_stringtab
Line
Count
Source
1808
393
{
1809
393
  bool hash;
1810
393
  bfd_size_type str_index;
1811
1812
  /* An index of 0 always means the empty string.  */
1813
393
  if (str == 0 || *str == '\0')
1814
306
    return 0;
1815
1816
  /* Don't hash if BFD_TRADITIONAL_FORMAT is set, because SunOS dbx
1817
     doesn't understand a hashed string table.  */
1818
87
  hash = true;
1819
87
  if ((abfd->flags & BFD_TRADITIONAL_FORMAT) != 0)
1820
0
    hash = false;
1821
1822
87
  str_index = _bfd_stringtab_add (tab, str, hash, copy);
1823
1824
87
  if (str_index != (bfd_size_type) -1)
1825
    /* Add BYTES_IN_WORD to the return value to account for the
1826
       space taken up by the string table size.  */
1827
87
    str_index += BYTES_IN_WORD;
1828
1829
87
  return str_index;
1830
393
}
1831
1832
/* Write out a strtab.  ABFD is already at the right location in the
1833
   file.  */
1834
1835
static bool
1836
emit_stringtab (bfd *abfd, struct bfd_strtab_hash *tab)
1837
56
{
1838
56
  bfd_byte buffer[BYTES_IN_WORD];
1839
56
  size_t amt = BYTES_IN_WORD;
1840
1841
  /* The string table starts with the size.  */
1842
56
  PUT_WORD (abfd, _bfd_stringtab_size (tab) + BYTES_IN_WORD, buffer);
1843
56
  if (bfd_write (buffer, amt, abfd) != amt)
1844
0
    return false;
1845
1846
56
  return _bfd_stringtab_emit (abfd, tab);
1847
56
}
Unexecuted instantiation: aout-cris.c:emit_stringtab
aout-ns32k.c:emit_stringtab
Line
Count
Source
1837
22
{
1838
22
  bfd_byte buffer[BYTES_IN_WORD];
1839
22
  size_t amt = BYTES_IN_WORD;
1840
1841
  /* The string table starts with the size.  */
1842
22
  PUT_WORD (abfd, _bfd_stringtab_size (tab) + BYTES_IN_WORD, buffer);
1843
22
  if (bfd_write (buffer, amt, abfd) != amt)
1844
0
    return false;
1845
1846
22
  return _bfd_stringtab_emit (abfd, tab);
1847
22
}
aout32.c:emit_stringtab
Line
Count
Source
1837
34
{
1838
34
  bfd_byte buffer[BYTES_IN_WORD];
1839
34
  size_t amt = BYTES_IN_WORD;
1840
1841
  /* The string table starts with the size.  */
1842
34
  PUT_WORD (abfd, _bfd_stringtab_size (tab) + BYTES_IN_WORD, buffer);
1843
34
  if (bfd_write (buffer, amt, abfd) != amt)
1844
0
    return false;
1845
1846
34
  return _bfd_stringtab_emit (abfd, tab);
1847
34
}
1848

1849
bool
1850
NAME (aout, write_syms) (bfd *abfd)
1851
56
{
1852
56
  unsigned int count ;
1853
56
  asymbol **generic = bfd_get_outsymbols (abfd);
1854
56
  struct bfd_strtab_hash *strtab;
1855
1856
56
  strtab = _bfd_stringtab_init ();
1857
56
  if (strtab == NULL)
1858
0
    return false;
1859
1860
745
  for (count = 0; count < bfd_get_symcount (abfd); count++)
1861
689
    {
1862
689
      asymbol *g = generic[count];
1863
689
      bfd_size_type indx;
1864
689
      struct external_nlist nsp;
1865
689
      size_t amt;
1866
1867
689
      indx = add_to_stringtab (abfd, strtab, g->name, false);
1868
689
      if (indx == (bfd_size_type) -1)
1869
0
  goto error_return;
1870
689
      PUT_WORD (abfd, indx, (bfd_byte *) nsp.e_strx);
1871
1872
689
      if (bfd_asymbol_flavour (g) == abfd->xvec->flavour)
1873
689
  {
1874
689
    H_PUT_16 (abfd, aout_symbol (g)->desc,  nsp.e_desc);
1875
689
    H_PUT_8  (abfd, aout_symbol (g)->other, nsp.e_other);
1876
689
    H_PUT_8  (abfd, aout_symbol (g)->type,  nsp.e_type);
1877
689
  }
1878
0
      else
1879
0
  {
1880
0
    H_PUT_16 (abfd, 0, nsp.e_desc);
1881
0
    H_PUT_8  (abfd, 0, nsp.e_other);
1882
0
    H_PUT_8  (abfd, 0, nsp.e_type);
1883
0
  }
1884
1885
689
      if (! translate_to_native_sym_flags (abfd, g, &nsp))
1886
0
  goto error_return;
1887
1888
689
      amt = EXTERNAL_NLIST_SIZE;
1889
689
      if (bfd_write (&nsp, amt, abfd) != amt)
1890
0
  goto error_return;
1891
1892
      /* NB: `KEEPIT' currently overlays `udata.p', so set this only
1893
   here, at the end.  */
1894
689
      g->KEEPIT = count;
1895
689
    }
1896
1897
56
  if (! emit_stringtab (abfd, strtab))
1898
0
    goto error_return;
1899
1900
56
  _bfd_stringtab_free (strtab);
1901
1902
56
  return true;
1903
1904
0
 error_return:
1905
0
  _bfd_stringtab_free (strtab);
1906
0
  return false;
1907
56
}
Unexecuted instantiation: cris_aout_32_write_syms
ns32kaout_32_write_syms
Line
Count
Source
1851
22
{
1852
22
  unsigned int count ;
1853
22
  asymbol **generic = bfd_get_outsymbols (abfd);
1854
22
  struct bfd_strtab_hash *strtab;
1855
1856
22
  strtab = _bfd_stringtab_init ();
1857
22
  if (strtab == NULL)
1858
0
    return false;
1859
1860
318
  for (count = 0; count < bfd_get_symcount (abfd); count++)
1861
296
    {
1862
296
      asymbol *g = generic[count];
1863
296
      bfd_size_type indx;
1864
296
      struct external_nlist nsp;
1865
296
      size_t amt;
1866
1867
296
      indx = add_to_stringtab (abfd, strtab, g->name, false);
1868
296
      if (indx == (bfd_size_type) -1)
1869
0
  goto error_return;
1870
296
      PUT_WORD (abfd, indx, (bfd_byte *) nsp.e_strx);
1871
1872
296
      if (bfd_asymbol_flavour (g) == abfd->xvec->flavour)
1873
296
  {
1874
296
    H_PUT_16 (abfd, aout_symbol (g)->desc,  nsp.e_desc);
1875
296
    H_PUT_8  (abfd, aout_symbol (g)->other, nsp.e_other);
1876
296
    H_PUT_8  (abfd, aout_symbol (g)->type,  nsp.e_type);
1877
296
  }
1878
0
      else
1879
0
  {
1880
0
    H_PUT_16 (abfd, 0, nsp.e_desc);
1881
0
    H_PUT_8  (abfd, 0, nsp.e_other);
1882
0
    H_PUT_8  (abfd, 0, nsp.e_type);
1883
0
  }
1884
1885
296
      if (! translate_to_native_sym_flags (abfd, g, &nsp))
1886
0
  goto error_return;
1887
1888
296
      amt = EXTERNAL_NLIST_SIZE;
1889
296
      if (bfd_write (&nsp, amt, abfd) != amt)
1890
0
  goto error_return;
1891
1892
      /* NB: `KEEPIT' currently overlays `udata.p', so set this only
1893
   here, at the end.  */
1894
296
      g->KEEPIT = count;
1895
296
    }
1896
1897
22
  if (! emit_stringtab (abfd, strtab))
1898
0
    goto error_return;
1899
1900
22
  _bfd_stringtab_free (strtab);
1901
1902
22
  return true;
1903
1904
0
 error_return:
1905
0
  _bfd_stringtab_free (strtab);
1906
  return false;
1907
22
}
aout_32_write_syms
Line
Count
Source
1851
34
{
1852
34
  unsigned int count ;
1853
34
  asymbol **generic = bfd_get_outsymbols (abfd);
1854
34
  struct bfd_strtab_hash *strtab;
1855
1856
34
  strtab = _bfd_stringtab_init ();
1857
34
  if (strtab == NULL)
1858
0
    return false;
1859
1860
427
  for (count = 0; count < bfd_get_symcount (abfd); count++)
1861
393
    {
1862
393
      asymbol *g = generic[count];
1863
393
      bfd_size_type indx;
1864
393
      struct external_nlist nsp;
1865
393
      size_t amt;
1866
1867
393
      indx = add_to_stringtab (abfd, strtab, g->name, false);
1868
393
      if (indx == (bfd_size_type) -1)
1869
0
  goto error_return;
1870
393
      PUT_WORD (abfd, indx, (bfd_byte *) nsp.e_strx);
1871
1872
393
      if (bfd_asymbol_flavour (g) == abfd->xvec->flavour)
1873
393
  {
1874
393
    H_PUT_16 (abfd, aout_symbol (g)->desc,  nsp.e_desc);
1875
393
    H_PUT_8  (abfd, aout_symbol (g)->other, nsp.e_other);
1876
393
    H_PUT_8  (abfd, aout_symbol (g)->type,  nsp.e_type);
1877
393
  }
1878
0
      else
1879
0
  {
1880
0
    H_PUT_16 (abfd, 0, nsp.e_desc);
1881
0
    H_PUT_8  (abfd, 0, nsp.e_other);
1882
0
    H_PUT_8  (abfd, 0, nsp.e_type);
1883
0
  }
1884
1885
393
      if (! translate_to_native_sym_flags (abfd, g, &nsp))
1886
0
  goto error_return;
1887
1888
393
      amt = EXTERNAL_NLIST_SIZE;
1889
393
      if (bfd_write (&nsp, amt, abfd) != amt)
1890
0
  goto error_return;
1891
1892
      /* NB: `KEEPIT' currently overlays `udata.p', so set this only
1893
   here, at the end.  */
1894
393
      g->KEEPIT = count;
1895
393
    }
1896
1897
34
  if (! emit_stringtab (abfd, strtab))
1898
0
    goto error_return;
1899
1900
34
  _bfd_stringtab_free (strtab);
1901
1902
34
  return true;
1903
1904
0
 error_return:
1905
0
  _bfd_stringtab_free (strtab);
1906
  return false;
1907
34
}
1908

1909
long
1910
NAME (aout, canonicalize_symtab) (bfd *abfd, asymbol **location)
1911
763
{
1912
763
  unsigned int counter = 0;
1913
763
  aout_symbol_type *symbase;
1914
1915
763
  if (!NAME (aout, slurp_symbol_table) (abfd))
1916
0
    return -1;
1917
1918
763
  for (symbase = obj_aout_symbols (abfd);
1919
12.9k
       counter++ < bfd_get_symcount (abfd);
1920
763
       )
1921
12.1k
    *(location++) = (asymbol *) (symbase++);
1922
763
  *location++ =0;
1923
763
  return bfd_get_symcount (abfd);
1924
763
}
Unexecuted instantiation: cris_aout_32_canonicalize_symtab
ns32kaout_32_canonicalize_symtab
Line
Count
Source
1911
362
{
1912
362
  unsigned int counter = 0;
1913
362
  aout_symbol_type *symbase;
1914
1915
362
  if (!NAME (aout, slurp_symbol_table) (abfd))
1916
0
    return -1;
1917
1918
362
  for (symbase = obj_aout_symbols (abfd);
1919
6.11k
       counter++ < bfd_get_symcount (abfd);
1920
362
       )
1921
5.75k
    *(location++) = (asymbol *) (symbase++);
1922
362
  *location++ =0;
1923
362
  return bfd_get_symcount (abfd);
1924
362
}
aout_32_canonicalize_symtab
Line
Count
Source
1911
401
{
1912
401
  unsigned int counter = 0;
1913
401
  aout_symbol_type *symbase;
1914
1915
401
  if (!NAME (aout, slurp_symbol_table) (abfd))
1916
0
    return -1;
1917
1918
401
  for (symbase = obj_aout_symbols (abfd);
1919
6.83k
       counter++ < bfd_get_symcount (abfd);
1920
401
       )
1921
6.43k
    *(location++) = (asymbol *) (symbase++);
1922
401
  *location++ =0;
1923
401
  return bfd_get_symcount (abfd);
1924
401
}
1925

1926
/* Standard reloc stuff.  */
1927
/* Output standard relocation information to a file in target byte order.  */
1928
1929
extern void  NAME (aout, swap_std_reloc_out)
1930
  (bfd *, arelent *, struct reloc_std_external *);
1931
1932
void
1933
NAME (aout, swap_std_reloc_out) (bfd *abfd,
1934
         arelent *g,
1935
         struct reloc_std_external *natptr)
1936
43
{
1937
43
  int r_index;
1938
43
  asymbol *sym = *(g->sym_ptr_ptr);
1939
43
  int r_extern;
1940
43
  unsigned int r_length, r_size;
1941
43
  int r_pcrel;
1942
43
  int r_baserel, r_jmptable, r_relative;
1943
43
  asection *output_section = sym->section->output_section;
1944
1945
43
  PUT_WORD (abfd, g->address, natptr->r_address);
1946
1947
43
  BFD_ASSERT (g->howto != NULL);
1948
1949
43
  r_size = bfd_get_reloc_size (g->howto);
1950
43
  r_length = bfd_log2 (r_size);
1951
43
  if (1u << r_length != r_size)
1952
0
    {
1953
0
      _bfd_error_handler (_("%pB: unsupported AOUT relocation size: %d"),
1954
0
        abfd, r_size);
1955
0
      bfd_set_error (bfd_error_bad_value);
1956
0
      return;
1957
0
    }
1958
1959
43
  r_pcrel  = (int) g->howto->pc_relative; /* Relative to PC?  */
1960
  /* XXX This relies on relocs coming from a.out files.  */
1961
43
  r_baserel = (g->howto->type & 8) != 0;
1962
43
  r_jmptable = (g->howto->type & 16) != 0;
1963
43
  r_relative = (g->howto->type & 32) != 0;
1964
1965
  /* Name was clobbered by aout_write_syms to be symbol index.  */
1966
1967
  /* If this relocation is relative to a symbol then set the
1968
     r_index to the symbols index, and the r_extern bit.
1969
1970
     Absolute symbols can come in in two ways, either as an offset
1971
     from the abs section, or as a symbol which has an abs value.
1972
     check for that here.  */
1973
1974
43
  if (bfd_is_com_section (output_section)
1975
43
      || bfd_is_abs_section (output_section)
1976
2
      || bfd_is_und_section (output_section)
1977
      /* PR gas/3041  a.out relocs against weak symbols
1978
   must be treated as if they were against externs.  */
1979
2
      || (sym->flags & BSF_WEAK))
1980
41
    {
1981
41
      if (bfd_abs_section_ptr->symbol == sym)
1982
38
  {
1983
    /* Whoops, looked like an abs symbol, but is
1984
       really an offset from the abs section.  */
1985
38
    r_index = N_ABS;
1986
38
    r_extern = 0;
1987
38
  }
1988
3
      else
1989
3
  {
1990
    /* Fill in symbol.  */
1991
3
    r_extern = 1;
1992
3
    r_index = (*(g->sym_ptr_ptr))->KEEPIT;
1993
3
  }
1994
41
    }
1995
2
  else
1996
2
    {
1997
      /* Just an ordinary section.  */
1998
2
      r_extern = 0;
1999
2
      r_index  = output_section->target_index;
2000
2
    }
2001
2002
  /* Now the fun stuff.  */
2003
43
  if (bfd_header_big_endian (abfd))
2004
0
    {
2005
0
      natptr->r_index[0] = r_index >> 16;
2006
0
      natptr->r_index[1] = r_index >> 8;
2007
0
      natptr->r_index[2] = r_index;
2008
0
      natptr->r_type[0] = ((r_extern ? RELOC_STD_BITS_EXTERN_BIG : 0)
2009
0
         | (r_pcrel ? RELOC_STD_BITS_PCREL_BIG : 0)
2010
0
         | (r_baserel ? RELOC_STD_BITS_BASEREL_BIG : 0)
2011
0
         | (r_jmptable ? RELOC_STD_BITS_JMPTABLE_BIG : 0)
2012
0
         | (r_relative ? RELOC_STD_BITS_RELATIVE_BIG : 0)
2013
0
         | (r_length << RELOC_STD_BITS_LENGTH_SH_BIG));
2014
0
    }
2015
43
  else
2016
43
    {
2017
43
      natptr->r_index[2] = r_index >> 16;
2018
43
      natptr->r_index[1] = r_index >> 8;
2019
43
      natptr->r_index[0] = r_index;
2020
43
      natptr->r_type[0] = ((r_extern ? RELOC_STD_BITS_EXTERN_LITTLE : 0)
2021
43
         | (r_pcrel ? RELOC_STD_BITS_PCREL_LITTLE : 0)
2022
43
         | (r_baserel ? RELOC_STD_BITS_BASEREL_LITTLE : 0)
2023
43
         | (r_jmptable ? RELOC_STD_BITS_JMPTABLE_LITTLE : 0)
2024
43
         | (r_relative ? RELOC_STD_BITS_RELATIVE_LITTLE : 0)
2025
43
         | (r_length << RELOC_STD_BITS_LENGTH_SH_LITTLE));
2026
43
    }
2027
43
}
Unexecuted instantiation: cris_aout_32_swap_std_reloc_out
Unexecuted instantiation: ns32kaout_32_swap_std_reloc_out
aout_32_swap_std_reloc_out
Line
Count
Source
1936
43
{
1937
43
  int r_index;
1938
43
  asymbol *sym = *(g->sym_ptr_ptr);
1939
43
  int r_extern;
1940
43
  unsigned int r_length, r_size;
1941
43
  int r_pcrel;
1942
43
  int r_baserel, r_jmptable, r_relative;
1943
43
  asection *output_section = sym->section->output_section;
1944
1945
43
  PUT_WORD (abfd, g->address, natptr->r_address);
1946
1947
43
  BFD_ASSERT (g->howto != NULL);
1948
1949
43
  r_size = bfd_get_reloc_size (g->howto);
1950
43
  r_length = bfd_log2 (r_size);
1951
43
  if (1u << r_length != r_size)
1952
0
    {
1953
0
      _bfd_error_handler (_("%pB: unsupported AOUT relocation size: %d"),
1954
0
        abfd, r_size);
1955
0
      bfd_set_error (bfd_error_bad_value);
1956
0
      return;
1957
0
    }
1958
1959
43
  r_pcrel  = (int) g->howto->pc_relative; /* Relative to PC?  */
1960
  /* XXX This relies on relocs coming from a.out files.  */
1961
43
  r_baserel = (g->howto->type & 8) != 0;
1962
43
  r_jmptable = (g->howto->type & 16) != 0;
1963
43
  r_relative = (g->howto->type & 32) != 0;
1964
1965
  /* Name was clobbered by aout_write_syms to be symbol index.  */
1966
1967
  /* If this relocation is relative to a symbol then set the
1968
     r_index to the symbols index, and the r_extern bit.
1969
1970
     Absolute symbols can come in in two ways, either as an offset
1971
     from the abs section, or as a symbol which has an abs value.
1972
     check for that here.  */
1973
1974
43
  if (bfd_is_com_section (output_section)
1975
43
      || bfd_is_abs_section (output_section)
1976
2
      || bfd_is_und_section (output_section)
1977
      /* PR gas/3041  a.out relocs against weak symbols
1978
   must be treated as if they were against externs.  */
1979
2
      || (sym->flags & BSF_WEAK))
1980
41
    {
1981
41
      if (bfd_abs_section_ptr->symbol == sym)
1982
38
  {
1983
    /* Whoops, looked like an abs symbol, but is
1984
       really an offset from the abs section.  */
1985
38
    r_index = N_ABS;
1986
38
    r_extern = 0;
1987
38
  }
1988
3
      else
1989
3
  {
1990
    /* Fill in symbol.  */
1991
3
    r_extern = 1;
1992
3
    r_index = (*(g->sym_ptr_ptr))->KEEPIT;
1993
3
  }
1994
41
    }
1995
2
  else
1996
2
    {
1997
      /* Just an ordinary section.  */
1998
2
      r_extern = 0;
1999
2
      r_index  = output_section->target_index;
2000
2
    }
2001
2002
  /* Now the fun stuff.  */
2003
43
  if (bfd_header_big_endian (abfd))
2004
0
    {
2005
0
      natptr->r_index[0] = r_index >> 16;
2006
0
      natptr->r_index[1] = r_index >> 8;
2007
0
      natptr->r_index[2] = r_index;
2008
0
      natptr->r_type[0] = ((r_extern ? RELOC_STD_BITS_EXTERN_BIG : 0)
2009
0
         | (r_pcrel ? RELOC_STD_BITS_PCREL_BIG : 0)
2010
0
         | (r_baserel ? RELOC_STD_BITS_BASEREL_BIG : 0)
2011
0
         | (r_jmptable ? RELOC_STD_BITS_JMPTABLE_BIG : 0)
2012
0
         | (r_relative ? RELOC_STD_BITS_RELATIVE_BIG : 0)
2013
0
         | (r_length << RELOC_STD_BITS_LENGTH_SH_BIG));
2014
0
    }
2015
43
  else
2016
43
    {
2017
43
      natptr->r_index[2] = r_index >> 16;
2018
43
      natptr->r_index[1] = r_index >> 8;
2019
43
      natptr->r_index[0] = r_index;
2020
43
      natptr->r_type[0] = ((r_extern ? RELOC_STD_BITS_EXTERN_LITTLE : 0)
2021
43
         | (r_pcrel ? RELOC_STD_BITS_PCREL_LITTLE : 0)
2022
43
         | (r_baserel ? RELOC_STD_BITS_BASEREL_LITTLE : 0)
2023
43
         | (r_jmptable ? RELOC_STD_BITS_JMPTABLE_LITTLE : 0)
2024
43
         | (r_relative ? RELOC_STD_BITS_RELATIVE_LITTLE : 0)
2025
43
         | (r_length << RELOC_STD_BITS_LENGTH_SH_LITTLE));
2026
43
    }
2027
43
}
2028
2029
/* Extended stuff.  */
2030
/* Output extended relocation information to a file in target byte order.  */
2031
2032
extern void NAME (aout, swap_ext_reloc_out)
2033
  (bfd *, arelent *, struct reloc_ext_external *);
2034
2035
void
2036
NAME (aout, swap_ext_reloc_out) (bfd *abfd,
2037
         arelent *g,
2038
         struct reloc_ext_external *natptr)
2039
0
{
2040
0
  int r_index;
2041
0
  int r_extern;
2042
0
  unsigned int r_type;
2043
0
  bfd_vma r_addend;
2044
0
  asymbol *sym = *(g->sym_ptr_ptr);
2045
0
  asection *output_section = sym->section->output_section;
2046
2047
0
  PUT_WORD (abfd, g->address, natptr->r_address);
2048
2049
0
  r_type = (unsigned int) g->howto->type;
2050
2051
0
  r_addend = g->addend;
2052
0
  if ((sym->flags & BSF_SECTION_SYM) != 0)
2053
0
    r_addend += (*(g->sym_ptr_ptr))->section->output_section->vma;
2054
2055
  /* If this relocation is relative to a symbol then set the
2056
     r_index to the symbols index, and the r_extern bit.
2057
2058
     Absolute symbols can come in in two ways, either as an offset
2059
     from the abs section, or as a symbol which has an abs value.
2060
     check for that here.  */
2061
0
  if (bfd_is_abs_section (bfd_asymbol_section (sym)))
2062
0
    {
2063
0
      r_extern = 0;
2064
0
      r_index = N_ABS;
2065
0
    }
2066
0
  else if ((sym->flags & BSF_SECTION_SYM) == 0)
2067
0
    {
2068
0
      if (bfd_is_und_section (bfd_asymbol_section (sym))
2069
0
    || (sym->flags & BSF_GLOBAL) != 0)
2070
0
  r_extern = 1;
2071
0
      else
2072
0
  r_extern = 0;
2073
0
      r_index = (*(g->sym_ptr_ptr))->KEEPIT;
2074
0
    }
2075
0
  else
2076
0
    {
2077
      /* Just an ordinary section.  */
2078
0
      r_extern = 0;
2079
0
      r_index = output_section->target_index;
2080
0
    }
2081
2082
  /* Now the fun stuff.  */
2083
0
  if (bfd_header_big_endian (abfd))
2084
0
    {
2085
0
      natptr->r_index[0] = r_index >> 16;
2086
0
      natptr->r_index[1] = r_index >> 8;
2087
0
      natptr->r_index[2] = r_index;
2088
0
      natptr->r_type[0] = ((r_extern ? RELOC_EXT_BITS_EXTERN_BIG : 0)
2089
0
         | (r_type << RELOC_EXT_BITS_TYPE_SH_BIG));
2090
0
    }
2091
0
  else
2092
0
    {
2093
0
      natptr->r_index[2] = r_index >> 16;
2094
0
      natptr->r_index[1] = r_index >> 8;
2095
0
      natptr->r_index[0] = r_index;
2096
0
      natptr->r_type[0] = ((r_extern ? RELOC_EXT_BITS_EXTERN_LITTLE : 0)
2097
0
         | (r_type << RELOC_EXT_BITS_TYPE_SH_LITTLE));
2098
0
    }
2099
2100
0
  PUT_WORD (abfd, r_addend, natptr->r_addend);
2101
0
}
Unexecuted instantiation: cris_aout_32_swap_ext_reloc_out
Unexecuted instantiation: ns32kaout_32_swap_ext_reloc_out
Unexecuted instantiation: aout_32_swap_ext_reloc_out
2102
2103
/* BFD deals internally with all things based from the section they're
2104
   in. so, something in 10 bytes into a text section  with a base of
2105
   50 would have a symbol (.text+10) and know .text vma was 50.
2106
2107
   Aout keeps all it's symbols based from zero, so the symbol would
2108
   contain 60. This macro subs the base of each section from the value
2109
   to give the true offset from the section.  */
2110
2111
#define MOVE_ADDRESS(ad)            \
2112
2.95k
  if (r_extern)               \
2113
2.95k
    {                 \
2114
566
      /* Undefined symbol.  */            \
2115
566
      if (symbols != NULL && r_index < bfd_get_symcount (abfd))   \
2116
566
  cache_ptr->sym_ptr_ptr = symbols + r_index;     \
2117
566
      else                \
2118
566
  cache_ptr->sym_ptr_ptr = &bfd_abs_section_ptr->symbol;   \
2119
566
      cache_ptr->addend = ad;           \
2120
566
    }                  \
2121
2.95k
   else                 \
2122
2.95k
    {                 \
2123
2.38k
      /* Defined, section relative.  Replace symbol with pointer to \
2124
2.38k
   symbol which points to section.  */        \
2125
2.38k
      switch (r_index)              \
2126
2.38k
  {               \
2127
25
  case N_TEXT:             \
2128
47
  case N_TEXT | N_EXT:           \
2129
47
    cache_ptr->sym_ptr_ptr = &obj_textsec (abfd)->symbol;    \
2130
47
    cache_ptr->addend = ad - su->textsec->vma;      \
2131
47
    break;             \
2132
32
  case N_DATA:             \
2133
39
  case N_DATA | N_EXT:           \
2134
39
    cache_ptr->sym_ptr_ptr = &obj_datasec (abfd)->symbol;    \
2135
39
    cache_ptr->addend = ad - su->datasec->vma;      \
2136
39
    break;             \
2137
33
  case N_BSS:             \
2138
70
  case N_BSS | N_EXT:           \
2139
70
    cache_ptr->sym_ptr_ptr = &obj_bsssec (abfd)->symbol;    \
2140
70
    cache_ptr->addend = ad - su->bsssec->vma;     \
2141
70
    break;             \
2142
1.77k
  default:              \
2143
2.22k
  case N_ABS:             \
2144
2.23k
  case N_ABS | N_EXT:           \
2145
2.23k
    cache_ptr->sym_ptr_ptr = &bfd_abs_section_ptr->symbol; \
2146
2.23k
    cache_ptr->addend = ad;         \
2147
2.23k
    break;             \
2148
2.38k
  }               \
2149
2.38k
    }
2150
2151
void
2152
NAME (aout, swap_ext_reloc_in) (bfd *abfd,
2153
        struct reloc_ext_external *bytes,
2154
        arelent *cache_ptr,
2155
        asymbol **symbols,
2156
        bfd_size_type symcount)
2157
0
{
2158
0
  unsigned int r_index;
2159
0
  int r_extern;
2160
0
  unsigned int r_type;
2161
0
  struct aoutdata *su = &(abfd->tdata.aout_data->a);
2162
2163
0
  cache_ptr->address = (GET_SWORD (abfd, bytes->r_address));
2164
2165
  /* Now the fun stuff.  */
2166
0
  if (bfd_header_big_endian (abfd))
2167
0
    {
2168
0
      r_index = (((unsigned int) bytes->r_index[0] << 16)
2169
0
     | ((unsigned int) bytes->r_index[1] << 8)
2170
0
     | bytes->r_index[2]);
2171
0
      r_extern = (0 != (bytes->r_type[0] & RELOC_EXT_BITS_EXTERN_BIG));
2172
0
      r_type = ((bytes->r_type[0] & RELOC_EXT_BITS_TYPE_BIG)
2173
0
    >> RELOC_EXT_BITS_TYPE_SH_BIG);
2174
0
    }
2175
0
  else
2176
0
    {
2177
0
      r_index =  (((unsigned int) bytes->r_index[2] << 16)
2178
0
      | ((unsigned int) bytes->r_index[1] << 8)
2179
0
      | bytes->r_index[0]);
2180
0
      r_extern = (0 != (bytes->r_type[0] & RELOC_EXT_BITS_EXTERN_LITTLE));
2181
0
      r_type = ((bytes->r_type[0] & RELOC_EXT_BITS_TYPE_LITTLE)
2182
0
    >> RELOC_EXT_BITS_TYPE_SH_LITTLE);
2183
0
    }
2184
2185
0
  if (r_type < TABLE_SIZE (howto_table_ext))
2186
0
    cache_ptr->howto = howto_table_ext + r_type;
2187
0
  else
2188
0
    cache_ptr->howto = NULL;
2189
2190
  /* Base relative relocs are always against the symbol table,
2191
     regardless of the setting of r_extern.  r_extern just reflects
2192
     whether the symbol the reloc is against is local or global.  */
2193
0
  if (r_type == (unsigned int) RELOC_BASE10
2194
0
      || r_type == (unsigned int) RELOC_BASE13
2195
0
      || r_type == (unsigned int) RELOC_BASE22)
2196
0
    r_extern = 1;
2197
2198
0
  if (r_extern && r_index > symcount)
2199
0
    {
2200
      /* We could arrange to return an error, but it might be useful
2201
   to see the file even if it is bad.  */
2202
0
      r_extern = 0;
2203
0
      r_index = N_ABS;
2204
0
    }
2205
2206
0
  MOVE_ADDRESS (GET_SWORD (abfd, bytes->r_addend));
2207
0
}
Unexecuted instantiation: cris_aout_32_swap_ext_reloc_in
Unexecuted instantiation: ns32kaout_32_swap_ext_reloc_in
Unexecuted instantiation: aout_32_swap_ext_reloc_in
2208
2209
void
2210
NAME (aout, swap_std_reloc_in) (bfd *abfd,
2211
        struct reloc_std_external *bytes,
2212
        arelent *cache_ptr,
2213
        asymbol **symbols,
2214
        bfd_size_type symcount)
2215
2.39k
{
2216
2.39k
  unsigned int r_index;
2217
2.39k
  int r_extern;
2218
2.39k
  unsigned int r_length;
2219
2.39k
  int r_pcrel;
2220
2.39k
  int r_baserel, r_jmptable, r_relative;
2221
2.39k
  struct aoutdata  *su = &(abfd->tdata.aout_data->a);
2222
2.39k
  unsigned int howto_idx;
2223
2224
2.39k
  cache_ptr->address = H_GET_32 (abfd, bytes->r_address);
2225
2226
  /* Now the fun stuff.  */
2227
2.39k
  if (bfd_header_big_endian (abfd))
2228
0
    {
2229
0
      r_index = (((unsigned int) bytes->r_index[0] << 16)
2230
0
     | ((unsigned int) bytes->r_index[1] << 8)
2231
0
     | bytes->r_index[2]);
2232
0
      r_extern  = (0 != (bytes->r_type[0] & RELOC_STD_BITS_EXTERN_BIG));
2233
0
      r_pcrel   = (0 != (bytes->r_type[0] & RELOC_STD_BITS_PCREL_BIG));
2234
0
      r_baserel = (0 != (bytes->r_type[0] & RELOC_STD_BITS_BASEREL_BIG));
2235
0
      r_jmptable= (0 != (bytes->r_type[0] & RELOC_STD_BITS_JMPTABLE_BIG));
2236
0
      r_relative= (0 != (bytes->r_type[0] & RELOC_STD_BITS_RELATIVE_BIG));
2237
0
      r_length  = ((bytes->r_type[0] & RELOC_STD_BITS_LENGTH_BIG)
2238
0
       >> RELOC_STD_BITS_LENGTH_SH_BIG);
2239
0
    }
2240
2.39k
  else
2241
2.39k
    {
2242
2.39k
      r_index = (((unsigned int) bytes->r_index[2] << 16)
2243
2.39k
     | ((unsigned int) bytes->r_index[1] << 8)
2244
2.39k
     | bytes->r_index[0]);
2245
2.39k
      r_extern  = (0 != (bytes->r_type[0] & RELOC_STD_BITS_EXTERN_LITTLE));
2246
2.39k
      r_pcrel   = (0 != (bytes->r_type[0] & RELOC_STD_BITS_PCREL_LITTLE));
2247
2.39k
      r_baserel = (0 != (bytes->r_type[0] & RELOC_STD_BITS_BASEREL_LITTLE));
2248
2.39k
      r_jmptable= (0 != (bytes->r_type[0] & RELOC_STD_BITS_JMPTABLE_LITTLE));
2249
2.39k
      r_relative= (0 != (bytes->r_type[0] & RELOC_STD_BITS_RELATIVE_LITTLE));
2250
2.39k
      r_length  = ((bytes->r_type[0] & RELOC_STD_BITS_LENGTH_LITTLE)
2251
2.39k
       >> RELOC_STD_BITS_LENGTH_SH_LITTLE);
2252
2.39k
    }
2253
2254
2.39k
  howto_idx = (r_length + 4 * r_pcrel + 8 * r_baserel
2255
2.39k
         + 16 * r_jmptable + 32 * r_relative);
2256
2.39k
  if (howto_idx < TABLE_SIZE (howto_table_std))
2257
1.98k
    {
2258
1.98k
      cache_ptr->howto = howto_table_std + howto_idx;
2259
1.98k
      if (cache_ptr->howto->type == (unsigned int) -1)
2260
322
  cache_ptr->howto = NULL;
2261
1.98k
    }
2262
406
  else
2263
406
    cache_ptr->howto = NULL;
2264
2265
  /* Base relative relocs are always against the symbol table,
2266
     regardless of the setting of r_extern.  r_extern just reflects
2267
     whether the symbol the reloc is against is local or global.  */
2268
2.39k
  if (r_baserel)
2269
442
    r_extern = 1;
2270
2271
2.39k
  if (r_extern && r_index >= symcount)
2272
437
    {
2273
      /* We could arrange to return an error, but it might be useful
2274
   to see the file even if it is bad.  FIXME: Of course this
2275
   means that objdump -r *doesn't* see the actual reloc, and
2276
   objcopy silently writes a different reloc.  */
2277
437
      r_extern = 0;
2278
437
      r_index = N_ABS;
2279
437
    }
2280
2281
2.39k
  MOVE_ADDRESS (0);
2282
2.39k
}
Unexecuted instantiation: cris_aout_32_swap_std_reloc_in
Unexecuted instantiation: ns32kaout_32_swap_std_reloc_in
aout_32_swap_std_reloc_in
Line
Count
Source
2215
2.39k
{
2216
2.39k
  unsigned int r_index;
2217
2.39k
  int r_extern;
2218
2.39k
  unsigned int r_length;
2219
2.39k
  int r_pcrel;
2220
2.39k
  int r_baserel, r_jmptable, r_relative;
2221
2.39k
  struct aoutdata  *su = &(abfd->tdata.aout_data->a);
2222
2.39k
  unsigned int howto_idx;
2223
2224
2.39k
  cache_ptr->address = H_GET_32 (abfd, bytes->r_address);
2225
2226
  /* Now the fun stuff.  */
2227
2.39k
  if (bfd_header_big_endian (abfd))
2228
0
    {
2229
0
      r_index = (((unsigned int) bytes->r_index[0] << 16)
2230
0
     | ((unsigned int) bytes->r_index[1] << 8)
2231
0
     | bytes->r_index[2]);
2232
0
      r_extern  = (0 != (bytes->r_type[0] & RELOC_STD_BITS_EXTERN_BIG));
2233
0
      r_pcrel   = (0 != (bytes->r_type[0] & RELOC_STD_BITS_PCREL_BIG));
2234
0
      r_baserel = (0 != (bytes->r_type[0] & RELOC_STD_BITS_BASEREL_BIG));
2235
0
      r_jmptable= (0 != (bytes->r_type[0] & RELOC_STD_BITS_JMPTABLE_BIG));
2236
0
      r_relative= (0 != (bytes->r_type[0] & RELOC_STD_BITS_RELATIVE_BIG));
2237
0
      r_length  = ((bytes->r_type[0] & RELOC_STD_BITS_LENGTH_BIG)
2238
0
       >> RELOC_STD_BITS_LENGTH_SH_BIG);
2239
0
    }
2240
2.39k
  else
2241
2.39k
    {
2242
2.39k
      r_index = (((unsigned int) bytes->r_index[2] << 16)
2243
2.39k
     | ((unsigned int) bytes->r_index[1] << 8)
2244
2.39k
     | bytes->r_index[0]);
2245
2.39k
      r_extern  = (0 != (bytes->r_type[0] & RELOC_STD_BITS_EXTERN_LITTLE));
2246
2.39k
      r_pcrel   = (0 != (bytes->r_type[0] & RELOC_STD_BITS_PCREL_LITTLE));
2247
2.39k
      r_baserel = (0 != (bytes->r_type[0] & RELOC_STD_BITS_BASEREL_LITTLE));
2248
2.39k
      r_jmptable= (0 != (bytes->r_type[0] & RELOC_STD_BITS_JMPTABLE_LITTLE));
2249
2.39k
      r_relative= (0 != (bytes->r_type[0] & RELOC_STD_BITS_RELATIVE_LITTLE));
2250
2.39k
      r_length  = ((bytes->r_type[0] & RELOC_STD_BITS_LENGTH_LITTLE)
2251
2.39k
       >> RELOC_STD_BITS_LENGTH_SH_LITTLE);
2252
2.39k
    }
2253
2254
2.39k
  howto_idx = (r_length + 4 * r_pcrel + 8 * r_baserel
2255
2.39k
         + 16 * r_jmptable + 32 * r_relative);
2256
2.39k
  if (howto_idx < TABLE_SIZE (howto_table_std))
2257
1.98k
    {
2258
1.98k
      cache_ptr->howto = howto_table_std + howto_idx;
2259
1.98k
      if (cache_ptr->howto->type == (unsigned int) -1)
2260
322
  cache_ptr->howto = NULL;
2261
1.98k
    }
2262
406
  else
2263
406
    cache_ptr->howto = NULL;
2264
2265
  /* Base relative relocs are always against the symbol table,
2266
     regardless of the setting of r_extern.  r_extern just reflects
2267
     whether the symbol the reloc is against is local or global.  */
2268
2.39k
  if (r_baserel)
2269
442
    r_extern = 1;
2270
2271
2.39k
  if (r_extern && r_index >= symcount)
2272
437
    {
2273
      /* We could arrange to return an error, but it might be useful
2274
   to see the file even if it is bad.  FIXME: Of course this
2275
   means that objdump -r *doesn't* see the actual reloc, and
2276
   objcopy silently writes a different reloc.  */
2277
437
      r_extern = 0;
2278
437
      r_index = N_ABS;
2279
437
    }
2280
2281
2.39k
  MOVE_ADDRESS (0);
2282
2.39k
}
2283
2284
/* Read and swap the relocs for a section.  */
2285
2286
bool
2287
NAME (aout, slurp_reloc_table) (bfd *abfd, sec_ptr asect, asymbol **symbols)
2288
216
{
2289
216
  bfd_size_type count;
2290
216
  bfd_size_type reloc_size;
2291
216
  void * relocs;
2292
216
  arelent *reloc_cache;
2293
216
  size_t each_size;
2294
216
  unsigned int counter = 0;
2295
216
  arelent *cache_ptr;
2296
216
  bfd_size_type amt;
2297
2298
216
  if (asect->relocation)
2299
0
    return true;
2300
2301
216
  if (asect->flags & SEC_CONSTRUCTOR)
2302
0
    return true;
2303
2304
216
  if (asect == obj_datasec (abfd))
2305
33
    reloc_size = exec_hdr (abfd)->a_drsize;
2306
183
  else if (asect == obj_textsec (abfd))
2307
183
    reloc_size = exec_hdr (abfd)->a_trsize;
2308
0
  else if (asect == obj_bsssec (abfd))
2309
0
    reloc_size = 0;
2310
0
  else
2311
0
    {
2312
0
      bfd_set_error (bfd_error_invalid_operation);
2313
0
      return false;
2314
0
    }
2315
2316
216
  each_size = obj_reloc_entry_size (abfd);
2317
216
  count = reloc_size / each_size;
2318
216
  if (count == 0)
2319
50
    return true;    /* Nothing to be done.  */
2320
2321
166
  if (bfd_seek (abfd, asect->rel_filepos, SEEK_SET) != 0)
2322
0
    return false;
2323
166
  relocs = _bfd_malloc_and_read (abfd, reloc_size, reloc_size);
2324
166
  if (relocs == NULL)
2325
4
    return false;
2326
2327
162
  amt = count * sizeof (arelent);
2328
162
  reloc_cache = (arelent *) bfd_zmalloc (amt);
2329
162
  if (reloc_cache == NULL)
2330
0
    {
2331
0
      free (relocs);
2332
0
      return false;
2333
0
    }
2334
2335
162
  cache_ptr = reloc_cache;
2336
162
  if (each_size == RELOC_EXT_SIZE)
2337
0
    {
2338
0
      struct reloc_ext_external *rptr = (struct reloc_ext_external *) relocs;
2339
2340
0
      for (; counter < count; counter++, rptr++, cache_ptr++)
2341
0
  MY_swap_ext_reloc_in (abfd, rptr, cache_ptr, symbols,
2342
0
            (bfd_size_type) bfd_get_symcount (abfd));
2343
0
    }
2344
162
  else
2345
162
    {
2346
162
      struct reloc_std_external *rptr = (struct reloc_std_external *) relocs;
2347
2348
3.11k
      for (; counter < count; counter++, rptr++, cache_ptr++)
2349
2.95k
  MY_swap_std_reloc_in (abfd, rptr, cache_ptr, symbols,
2350
2.95k
            (bfd_size_type) bfd_get_symcount (abfd));
2351
162
    }
2352
2353
162
  free (relocs);
2354
2355
162
  asect->relocation = reloc_cache;
2356
162
  asect->reloc_count = cache_ptr - reloc_cache;
2357
2358
162
  return true;
2359
162
}
Unexecuted instantiation: cris_aout_32_slurp_reloc_table
ns32kaout_32_slurp_reloc_table
Line
Count
Source
2288
72
{
2289
72
  bfd_size_type count;
2290
72
  bfd_size_type reloc_size;
2291
72
  void * relocs;
2292
72
  arelent *reloc_cache;
2293
72
  size_t each_size;
2294
72
  unsigned int counter = 0;
2295
72
  arelent *cache_ptr;
2296
72
  bfd_size_type amt;
2297
2298
72
  if (asect->relocation)
2299
0
    return true;
2300
2301
72
  if (asect->flags & SEC_CONSTRUCTOR)
2302
0
    return true;
2303
2304
72
  if (asect == obj_datasec (abfd))
2305
11
    reloc_size = exec_hdr (abfd)->a_drsize;
2306
61
  else if (asect == obj_textsec (abfd))
2307
61
    reloc_size = exec_hdr (abfd)->a_trsize;
2308
0
  else if (asect == obj_bsssec (abfd))
2309
0
    reloc_size = 0;
2310
0
  else
2311
0
    {
2312
0
      bfd_set_error (bfd_error_invalid_operation);
2313
0
      return false;
2314
0
    }
2315
2316
72
  each_size = obj_reloc_entry_size (abfd);
2317
72
  count = reloc_size / each_size;
2318
72
  if (count == 0)
2319
18
    return true;    /* Nothing to be done.  */
2320
2321
54
  if (bfd_seek (abfd, asect->rel_filepos, SEEK_SET) != 0)
2322
0
    return false;
2323
54
  relocs = _bfd_malloc_and_read (abfd, reloc_size, reloc_size);
2324
54
  if (relocs == NULL)
2325
3
    return false;
2326
2327
51
  amt = count * sizeof (arelent);
2328
51
  reloc_cache = (arelent *) bfd_zmalloc (amt);
2329
51
  if (reloc_cache == NULL)
2330
0
    {
2331
0
      free (relocs);
2332
0
      return false;
2333
0
    }
2334
2335
51
  cache_ptr = reloc_cache;
2336
51
  if (each_size == RELOC_EXT_SIZE)
2337
0
    {
2338
0
      struct reloc_ext_external *rptr = (struct reloc_ext_external *) relocs;
2339
2340
0
      for (; counter < count; counter++, rptr++, cache_ptr++)
2341
0
  MY_swap_ext_reloc_in (abfd, rptr, cache_ptr, symbols,
2342
0
            (bfd_size_type) bfd_get_symcount (abfd));
2343
0
    }
2344
51
  else
2345
51
    {
2346
51
      struct reloc_std_external *rptr = (struct reloc_std_external *) relocs;
2347
2348
609
      for (; counter < count; counter++, rptr++, cache_ptr++)
2349
558
  MY_swap_std_reloc_in (abfd, rptr, cache_ptr, symbols,
2350
558
            (bfd_size_type) bfd_get_symcount (abfd));
2351
51
    }
2352
2353
51
  free (relocs);
2354
2355
51
  asect->relocation = reloc_cache;
2356
51
  asect->reloc_count = cache_ptr - reloc_cache;
2357
2358
  return true;
2359
51
}
aout_32_slurp_reloc_table
Line
Count
Source
2288
144
{
2289
144
  bfd_size_type count;
2290
144
  bfd_size_type reloc_size;
2291
144
  void * relocs;
2292
144
  arelent *reloc_cache;
2293
144
  size_t each_size;
2294
144
  unsigned int counter = 0;
2295
144
  arelent *cache_ptr;
2296
144
  bfd_size_type amt;
2297
2298
144
  if (asect->relocation)
2299
0
    return true;
2300
2301
144
  if (asect->flags & SEC_CONSTRUCTOR)
2302
0
    return true;
2303
2304
144
  if (asect == obj_datasec (abfd))
2305
22
    reloc_size = exec_hdr (abfd)->a_drsize;
2306
122
  else if (asect == obj_textsec (abfd))
2307
122
    reloc_size = exec_hdr (abfd)->a_trsize;
2308
0
  else if (asect == obj_bsssec (abfd))
2309
0
    reloc_size = 0;
2310
0
  else
2311
0
    {
2312
0
      bfd_set_error (bfd_error_invalid_operation);
2313
0
      return false;
2314
0
    }
2315
2316
144
  each_size = obj_reloc_entry_size (abfd);
2317
144
  count = reloc_size / each_size;
2318
144
  if (count == 0)
2319
32
    return true;    /* Nothing to be done.  */
2320
2321
112
  if (bfd_seek (abfd, asect->rel_filepos, SEEK_SET) != 0)
2322
0
    return false;
2323
112
  relocs = _bfd_malloc_and_read (abfd, reloc_size, reloc_size);
2324
112
  if (relocs == NULL)
2325
1
    return false;
2326
2327
111
  amt = count * sizeof (arelent);
2328
111
  reloc_cache = (arelent *) bfd_zmalloc (amt);
2329
111
  if (reloc_cache == NULL)
2330
0
    {
2331
0
      free (relocs);
2332
0
      return false;
2333
0
    }
2334
2335
111
  cache_ptr = reloc_cache;
2336
111
  if (each_size == RELOC_EXT_SIZE)
2337
0
    {
2338
0
      struct reloc_ext_external *rptr = (struct reloc_ext_external *) relocs;
2339
2340
0
      for (; counter < count; counter++, rptr++, cache_ptr++)
2341
0
  MY_swap_ext_reloc_in (abfd, rptr, cache_ptr, symbols,
2342
0
            (bfd_size_type) bfd_get_symcount (abfd));
2343
0
    }
2344
111
  else
2345
111
    {
2346
111
      struct reloc_std_external *rptr = (struct reloc_std_external *) relocs;
2347
2348
2.50k
      for (; counter < count; counter++, rptr++, cache_ptr++)
2349
2.39k
  MY_swap_std_reloc_in (abfd, rptr, cache_ptr, symbols,
2350
2.39k
            (bfd_size_type) bfd_get_symcount (abfd));
2351
111
    }
2352
2353
111
  free (relocs);
2354
2355
111
  asect->relocation = reloc_cache;
2356
111
  asect->reloc_count = cache_ptr - reloc_cache;
2357
2358
  return true;
2359
111
}
2360
2361
/* Write out a relocation section into an object file.  */
2362
2363
bool
2364
NAME (aout, squirt_out_relocs) (bfd *abfd, asection *section)
2365
295
{
2366
295
  arelent **generic;
2367
295
  unsigned char *native, *natptr;
2368
295
  size_t each_size;
2369
2370
295
  unsigned int count = section->reloc_count;
2371
295
  bfd_size_type natsize;
2372
2373
295
  if (count == 0 || section->orelocation == NULL)
2374
277
    return true;
2375
2376
18
  each_size = obj_reloc_entry_size (abfd);
2377
18
  natsize = (bfd_size_type) each_size * count;
2378
18
  native = (unsigned char *) bfd_zalloc (abfd, natsize);
2379
18
  if (!native)
2380
0
    return false;
2381
2382
18
  generic = section->orelocation;
2383
2384
18
  if (each_size == RELOC_EXT_SIZE)
2385
0
    {
2386
0
      for (natptr = native;
2387
0
     count != 0;
2388
0
     --count, natptr += each_size, ++generic)
2389
0
  {
2390
    /* PR 20921: If the howto field has not been initialised then skip
2391
       this reloc.
2392
       PR 20929: Similarly for the symbol field.  */
2393
0
    if ((*generic)->howto == NULL
2394
0
        || (*generic)->sym_ptr_ptr == NULL)
2395
0
      {
2396
0
        bfd_set_error (bfd_error_invalid_operation);
2397
0
        _bfd_error_handler (_("%pB: attempt to write out "
2398
0
            "unknown reloc type"), abfd);
2399
0
        return false;
2400
0
      }
2401
0
    MY_swap_ext_reloc_out (abfd, *generic,
2402
0
         (struct reloc_ext_external *) natptr);
2403
0
  }
2404
0
    }
2405
18
  else
2406
18
    {
2407
18
      for (natptr = native;
2408
101
     count != 0;
2409
83
     --count, natptr += each_size, ++generic)
2410
98
  {
2411
98
    if ((*generic)->howto == NULL
2412
83
        || (*generic)->sym_ptr_ptr == NULL)
2413
15
      {
2414
15
        bfd_set_error (bfd_error_invalid_operation);
2415
15
        _bfd_error_handler (_("%pB: attempt to write out "
2416
15
            "unknown reloc type"), abfd);
2417
15
        return false;
2418
15
      }
2419
83
    MY_swap_std_reloc_out (abfd, *generic,
2420
83
         (struct reloc_std_external *) natptr);
2421
83
  }
2422
18
    }
2423
2424
3
  if (bfd_write (native, natsize, abfd) != natsize)
2425
0
    {
2426
0
      bfd_release (abfd, native);
2427
0
      return false;
2428
0
    }
2429
3
  bfd_release (abfd, native);
2430
2431
3
  return true;
2432
3
}
Unexecuted instantiation: cris_aout_32_squirt_out_relocs
ns32kaout_32_squirt_out_relocs
Line
Count
Source
2365
133
{
2366
133
  arelent **generic;
2367
133
  unsigned char *native, *natptr;
2368
133
  size_t each_size;
2369
2370
133
  unsigned int count = section->reloc_count;
2371
133
  bfd_size_type natsize;
2372
2373
133
  if (count == 0 || section->orelocation == NULL)
2374
125
    return true;
2375
2376
8
  each_size = obj_reloc_entry_size (abfd);
2377
8
  natsize = (bfd_size_type) each_size * count;
2378
8
  native = (unsigned char *) bfd_zalloc (abfd, natsize);
2379
8
  if (!native)
2380
0
    return false;
2381
2382
8
  generic = section->orelocation;
2383
2384
8
  if (each_size == RELOC_EXT_SIZE)
2385
0
    {
2386
0
      for (natptr = native;
2387
0
     count != 0;
2388
0
     --count, natptr += each_size, ++generic)
2389
0
  {
2390
    /* PR 20921: If the howto field has not been initialised then skip
2391
       this reloc.
2392
       PR 20929: Similarly for the symbol field.  */
2393
0
    if ((*generic)->howto == NULL
2394
0
        || (*generic)->sym_ptr_ptr == NULL)
2395
0
      {
2396
0
        bfd_set_error (bfd_error_invalid_operation);
2397
0
        _bfd_error_handler (_("%pB: attempt to write out "
2398
0
            "unknown reloc type"), abfd);
2399
0
        return false;
2400
0
      }
2401
0
    MY_swap_ext_reloc_out (abfd, *generic,
2402
0
         (struct reloc_ext_external *) natptr);
2403
0
  }
2404
0
    }
2405
8
  else
2406
8
    {
2407
8
      for (natptr = native;
2408
48
     count != 0;
2409
40
     --count, natptr += each_size, ++generic)
2410
46
  {
2411
46
    if ((*generic)->howto == NULL
2412
40
        || (*generic)->sym_ptr_ptr == NULL)
2413
6
      {
2414
6
        bfd_set_error (bfd_error_invalid_operation);
2415
6
        _bfd_error_handler (_("%pB: attempt to write out "
2416
6
            "unknown reloc type"), abfd);
2417
6
        return false;
2418
6
      }
2419
40
    MY_swap_std_reloc_out (abfd, *generic,
2420
40
         (struct reloc_std_external *) natptr);
2421
40
  }
2422
8
    }
2423
2424
2
  if (bfd_write (native, natsize, abfd) != natsize)
2425
0
    {
2426
0
      bfd_release (abfd, native);
2427
0
      return false;
2428
0
    }
2429
2
  bfd_release (abfd, native);
2430
2431
  return true;
2432
2
}
aout_32_squirt_out_relocs
Line
Count
Source
2365
162
{
2366
162
  arelent **generic;
2367
162
  unsigned char *native, *natptr;
2368
162
  size_t each_size;
2369
2370
162
  unsigned int count = section->reloc_count;
2371
162
  bfd_size_type natsize;
2372
2373
162
  if (count == 0 || section->orelocation == NULL)
2374
152
    return true;
2375
2376
10
  each_size = obj_reloc_entry_size (abfd);
2377
10
  natsize = (bfd_size_type) each_size * count;
2378
10
  native = (unsigned char *) bfd_zalloc (abfd, natsize);
2379
10
  if (!native)
2380
0
    return false;
2381
2382
10
  generic = section->orelocation;
2383
2384
10
  if (each_size == RELOC_EXT_SIZE)
2385
0
    {
2386
0
      for (natptr = native;
2387
0
     count != 0;
2388
0
     --count, natptr += each_size, ++generic)
2389
0
  {
2390
    /* PR 20921: If the howto field has not been initialised then skip
2391
       this reloc.
2392
       PR 20929: Similarly for the symbol field.  */
2393
0
    if ((*generic)->howto == NULL
2394
0
        || (*generic)->sym_ptr_ptr == NULL)
2395
0
      {
2396
0
        bfd_set_error (bfd_error_invalid_operation);
2397
0
        _bfd_error_handler (_("%pB: attempt to write out "
2398
0
            "unknown reloc type"), abfd);
2399
0
        return false;
2400
0
      }
2401
0
    MY_swap_ext_reloc_out (abfd, *generic,
2402
0
         (struct reloc_ext_external *) natptr);
2403
0
  }
2404
0
    }
2405
10
  else
2406
10
    {
2407
10
      for (natptr = native;
2408
53
     count != 0;
2409
43
     --count, natptr += each_size, ++generic)
2410
52
  {
2411
52
    if ((*generic)->howto == NULL
2412
43
        || (*generic)->sym_ptr_ptr == NULL)
2413
9
      {
2414
9
        bfd_set_error (bfd_error_invalid_operation);
2415
9
        _bfd_error_handler (_("%pB: attempt to write out "
2416
9
            "unknown reloc type"), abfd);
2417
9
        return false;
2418
9
      }
2419
43
    MY_swap_std_reloc_out (abfd, *generic,
2420
43
         (struct reloc_std_external *) natptr);
2421
43
  }
2422
10
    }
2423
2424
1
  if (bfd_write (native, natsize, abfd) != natsize)
2425
0
    {
2426
0
      bfd_release (abfd, native);
2427
0
      return false;
2428
0
    }
2429
1
  bfd_release (abfd, native);
2430
2431
  return true;
2432
1
}
2433
2434
/* This is stupid.  This function should be a boolean predicate.  */
2435
2436
long
2437
NAME (aout, canonicalize_reloc) (bfd *abfd,
2438
         sec_ptr section,
2439
         arelent **relptr,
2440
         asymbol **symbols)
2441
282
{
2442
282
  arelent *tblptr = section->relocation;
2443
282
  unsigned int count;
2444
2445
282
  if (section == obj_bsssec (abfd))
2446
66
    {
2447
66
      *relptr = NULL;
2448
66
      return 0;
2449
66
    }
2450
2451
216
  if (!(tblptr || NAME (aout, slurp_reloc_table) (abfd, section, symbols)))
2452
4
    return -1;
2453
2454
212
  if (section->flags & SEC_CONSTRUCTOR)
2455
0
    {
2456
0
      arelent_chain *chain = section->constructor_chain;
2457
0
      for (count = 0; count < section->reloc_count; count ++)
2458
0
  {
2459
0
    *relptr ++ = &chain->relent;
2460
0
    chain = chain->next;
2461
0
  }
2462
0
    }
2463
212
  else
2464
212
    {
2465
212
      tblptr = section->relocation;
2466
2467
3.16k
      for (count = 0; count++ < section->reloc_count; )
2468
2.95k
  {
2469
2.95k
    *relptr++ = tblptr++;
2470
2.95k
  }
2471
212
    }
2472
212
  *relptr = 0;
2473
2474
212
  return section->reloc_count;
2475
216
}
Unexecuted instantiation: cris_aout_32_canonicalize_reloc
ns32kaout_32_canonicalize_reloc
Line
Count
Source
2441
102
{
2442
102
  arelent *tblptr = section->relocation;
2443
102
  unsigned int count;
2444
2445
102
  if (section == obj_bsssec (abfd))
2446
30
    {
2447
30
      *relptr = NULL;
2448
30
      return 0;
2449
30
    }
2450
2451
72
  if (!(tblptr || NAME (aout, slurp_reloc_table) (abfd, section, symbols)))
2452
3
    return -1;
2453
2454
69
  if (section->flags & SEC_CONSTRUCTOR)
2455
0
    {
2456
0
      arelent_chain *chain = section->constructor_chain;
2457
0
      for (count = 0; count < section->reloc_count; count ++)
2458
0
  {
2459
0
    *relptr ++ = &chain->relent;
2460
0
    chain = chain->next;
2461
0
  }
2462
0
    }
2463
69
  else
2464
69
    {
2465
69
      tblptr = section->relocation;
2466
2467
627
      for (count = 0; count++ < section->reloc_count; )
2468
558
  {
2469
558
    *relptr++ = tblptr++;
2470
558
  }
2471
69
    }
2472
69
  *relptr = 0;
2473
2474
69
  return section->reloc_count;
2475
72
}
aout_32_canonicalize_reloc
Line
Count
Source
2441
180
{
2442
180
  arelent *tblptr = section->relocation;
2443
180
  unsigned int count;
2444
2445
180
  if (section == obj_bsssec (abfd))
2446
36
    {
2447
36
      *relptr = NULL;
2448
36
      return 0;
2449
36
    }
2450
2451
144
  if (!(tblptr || NAME (aout, slurp_reloc_table) (abfd, section, symbols)))
2452
1
    return -1;
2453
2454
143
  if (section->flags & SEC_CONSTRUCTOR)
2455
0
    {
2456
0
      arelent_chain *chain = section->constructor_chain;
2457
0
      for (count = 0; count < section->reloc_count; count ++)
2458
0
  {
2459
0
    *relptr ++ = &chain->relent;
2460
0
    chain = chain->next;
2461
0
  }
2462
0
    }
2463
143
  else
2464
143
    {
2465
143
      tblptr = section->relocation;
2466
2467
2.53k
      for (count = 0; count++ < section->reloc_count; )
2468
2.39k
  {
2469
2.39k
    *relptr++ = tblptr++;
2470
2.39k
  }
2471
143
    }
2472
143
  *relptr = 0;
2473
2474
143
  return section->reloc_count;
2475
144
}
2476
2477
long
2478
NAME (aout, get_reloc_upper_bound) (bfd *abfd, sec_ptr asect)
2479
374
{
2480
374
  size_t count, raw;
2481
2482
374
  if (asect->flags & SEC_CONSTRUCTOR)
2483
0
    count = asect->reloc_count;
2484
374
  else if (asect == obj_datasec (abfd))
2485
78
    count = exec_hdr (abfd)->a_drsize / obj_reloc_entry_size (abfd);
2486
296
  else if (asect == obj_textsec (abfd))
2487
230
    count = exec_hdr (abfd)->a_trsize / obj_reloc_entry_size (abfd);
2488
66
  else if (asect == obj_bsssec (abfd))
2489
66
    count = 0;
2490
0
  else
2491
0
    {
2492
0
      bfd_set_error (bfd_error_invalid_operation);
2493
0
      return -1;
2494
0
    }
2495
2496
374
  if (count >= LONG_MAX / sizeof (arelent *)
2497
374
      || _bfd_mul_overflow (count, obj_reloc_entry_size (abfd), &raw))
2498
0
    {
2499
0
      bfd_set_error (bfd_error_file_too_big);
2500
0
      return -1;
2501
0
    }
2502
374
  if (!bfd_write_p (abfd))
2503
374
    {
2504
374
      ufile_ptr filesize = bfd_get_file_size (abfd);
2505
374
      if (filesize != 0 && raw > filesize)
2506
92
  {
2507
92
    bfd_set_error (bfd_error_file_truncated);
2508
92
    return -1;
2509
92
  }
2510
374
    }
2511
282
  return (count + 1) * sizeof (arelent *);
2512
374
}
Unexecuted instantiation: cris_aout_32_get_reloc_upper_bound
ns32kaout_32_get_reloc_upper_bound
Line
Count
Source
2479
185
{
2480
185
  size_t count, raw;
2481
2482
185
  if (asect->flags & SEC_CONSTRUCTOR)
2483
0
    count = asect->reloc_count;
2484
185
  else if (asect == obj_datasec (abfd))
2485
52
    count = exec_hdr (abfd)->a_drsize / obj_reloc_entry_size (abfd);
2486
133
  else if (asect == obj_textsec (abfd))
2487
103
    count = exec_hdr (abfd)->a_trsize / obj_reloc_entry_size (abfd);
2488
30
  else if (asect == obj_bsssec (abfd))
2489
30
    count = 0;
2490
0
  else
2491
0
    {
2492
0
      bfd_set_error (bfd_error_invalid_operation);
2493
0
      return -1;
2494
0
    }
2495
2496
185
  if (count >= LONG_MAX / sizeof (arelent *)
2497
185
      || _bfd_mul_overflow (count, obj_reloc_entry_size (abfd), &raw))
2498
0
    {
2499
0
      bfd_set_error (bfd_error_file_too_big);
2500
0
      return -1;
2501
0
    }
2502
185
  if (!bfd_write_p (abfd))
2503
185
    {
2504
185
      ufile_ptr filesize = bfd_get_file_size (abfd);
2505
185
      if (filesize != 0 && raw > filesize)
2506
83
  {
2507
83
    bfd_set_error (bfd_error_file_truncated);
2508
83
    return -1;
2509
83
  }
2510
185
    }
2511
102
  return (count + 1) * sizeof (arelent *);
2512
185
}
aout_32_get_reloc_upper_bound
Line
Count
Source
2479
189
{
2480
189
  size_t count, raw;
2481
2482
189
  if (asect->flags & SEC_CONSTRUCTOR)
2483
0
    count = asect->reloc_count;
2484
189
  else if (asect == obj_datasec (abfd))
2485
26
    count = exec_hdr (abfd)->a_drsize / obj_reloc_entry_size (abfd);
2486
163
  else if (asect == obj_textsec (abfd))
2487
127
    count = exec_hdr (abfd)->a_trsize / obj_reloc_entry_size (abfd);
2488
36
  else if (asect == obj_bsssec (abfd))
2489
36
    count = 0;
2490
0
  else
2491
0
    {
2492
0
      bfd_set_error (bfd_error_invalid_operation);
2493
0
      return -1;
2494
0
    }
2495
2496
189
  if (count >= LONG_MAX / sizeof (arelent *)
2497
189
      || _bfd_mul_overflow (count, obj_reloc_entry_size (abfd), &raw))
2498
0
    {
2499
0
      bfd_set_error (bfd_error_file_too_big);
2500
0
      return -1;
2501
0
    }
2502
189
  if (!bfd_write_p (abfd))
2503
189
    {
2504
189
      ufile_ptr filesize = bfd_get_file_size (abfd);
2505
189
      if (filesize != 0 && raw > filesize)
2506
9
  {
2507
9
    bfd_set_error (bfd_error_file_truncated);
2508
9
    return -1;
2509
9
  }
2510
189
    }
2511
180
  return (count + 1) * sizeof (arelent *);
2512
189
}
2513

2514
long
2515
NAME (aout, get_symtab_upper_bound) (bfd *abfd)
2516
1.10k
{
2517
1.10k
  if (!NAME (aout, slurp_symbol_table) (abfd))
2518
337
    return -1;
2519
2520
763
  return (bfd_get_symcount (abfd)+1) * (sizeof (aout_symbol_type *));
2521
1.10k
}
Unexecuted instantiation: cris_aout_32_get_symtab_upper_bound
ns32kaout_32_get_symtab_upper_bound
Line
Count
Source
2516
548
{
2517
548
  if (!NAME (aout, slurp_symbol_table) (abfd))
2518
186
    return -1;
2519
2520
362
  return (bfd_get_symcount (abfd)+1) * (sizeof (aout_symbol_type *));
2521
548
}
aout_32_get_symtab_upper_bound
Line
Count
Source
2516
552
{
2517
552
  if (!NAME (aout, slurp_symbol_table) (abfd))
2518
151
    return -1;
2519
2520
401
  return (bfd_get_symcount (abfd)+1) * (sizeof (aout_symbol_type *));
2521
552
}
2522
2523
alent *
2524
NAME (aout, get_lineno) (bfd *ignore_abfd ATTRIBUTE_UNUSED,
2525
       asymbol *ignore_symbol ATTRIBUTE_UNUSED)
2526
0
{
2527
0
  return NULL;
2528
0
}
Unexecuted instantiation: cris_aout_32_get_lineno
Unexecuted instantiation: ns32kaout_32_get_lineno
Unexecuted instantiation: aout_32_get_lineno
2529
2530
void
2531
NAME (aout, get_symbol_info) (bfd *ignore_abfd ATTRIBUTE_UNUSED,
2532
            asymbol *symbol,
2533
            symbol_info *ret)
2534
3.97k
{
2535
3.97k
  bfd_symbol_info (symbol, ret);
2536
2537
3.97k
  if (ret->type == '?')
2538
606
    {
2539
606
      int type_code = aout_symbol (symbol)->type & 0xff;
2540
606
      const char *stab_name = bfd_get_stab_name (type_code);
2541
606
      static char buf[10];
2542
2543
606
      if (stab_name == NULL)
2544
397
  {
2545
397
    sprintf (buf, "(%d)", type_code);
2546
397
    stab_name = buf;
2547
397
  }
2548
606
      ret->type = '-';
2549
606
      ret->stab_type = type_code;
2550
606
      ret->stab_other = (unsigned) (aout_symbol (symbol)->other & 0xff);
2551
606
      ret->stab_desc = (unsigned) (aout_symbol (symbol)->desc & 0xffff);
2552
606
      ret->stab_name = stab_name;
2553
606
    }
2554
3.97k
}
Unexecuted instantiation: cris_aout_32_get_symbol_info
ns32kaout_32_get_symbol_info
Line
Count
Source
2534
1.83k
{
2535
1.83k
  bfd_symbol_info (symbol, ret);
2536
2537
1.83k
  if (ret->type == '?')
2538
202
    {
2539
202
      int type_code = aout_symbol (symbol)->type & 0xff;
2540
202
      const char *stab_name = bfd_get_stab_name (type_code);
2541
202
      static char buf[10];
2542
2543
202
      if (stab_name == NULL)
2544
99
  {
2545
99
    sprintf (buf, "(%d)", type_code);
2546
99
    stab_name = buf;
2547
99
  }
2548
202
      ret->type = '-';
2549
202
      ret->stab_type = type_code;
2550
202
      ret->stab_other = (unsigned) (aout_symbol (symbol)->other & 0xff);
2551
202
      ret->stab_desc = (unsigned) (aout_symbol (symbol)->desc & 0xffff);
2552
202
      ret->stab_name = stab_name;
2553
202
    }
2554
1.83k
}
aout_32_get_symbol_info
Line
Count
Source
2534
2.13k
{
2535
2.13k
  bfd_symbol_info (symbol, ret);
2536
2537
2.13k
  if (ret->type == '?')
2538
404
    {
2539
404
      int type_code = aout_symbol (symbol)->type & 0xff;
2540
404
      const char *stab_name = bfd_get_stab_name (type_code);
2541
404
      static char buf[10];
2542
2543
404
      if (stab_name == NULL)
2544
298
  {
2545
298
    sprintf (buf, "(%d)", type_code);
2546
298
    stab_name = buf;
2547
298
  }
2548
404
      ret->type = '-';
2549
404
      ret->stab_type = type_code;
2550
404
      ret->stab_other = (unsigned) (aout_symbol (symbol)->other & 0xff);
2551
404
      ret->stab_desc = (unsigned) (aout_symbol (symbol)->desc & 0xffff);
2552
404
      ret->stab_name = stab_name;
2553
404
    }
2554
2.13k
}
2555
2556
void
2557
NAME (aout, print_symbol) (bfd *abfd,
2558
         void * afile,
2559
         asymbol *symbol,
2560
         bfd_print_symbol_type how)
2561
0
{
2562
0
  FILE *file = (FILE *)afile;
2563
2564
0
  switch (how)
2565
0
    {
2566
0
    case bfd_print_symbol_name:
2567
0
      if (symbol->name)
2568
0
  fprintf (file,"%s", symbol->name);
2569
0
      break;
2570
0
    case bfd_print_symbol_more:
2571
0
      fprintf (file,"%4x %2x %2x",
2572
0
         (unsigned) (aout_symbol (symbol)->desc & 0xffff),
2573
0
         (unsigned) (aout_symbol (symbol)->other & 0xff),
2574
0
         (unsigned) (aout_symbol (symbol)->type));
2575
0
      break;
2576
0
    case bfd_print_symbol_all:
2577
0
      {
2578
0
  const char *section_name = symbol->section->name;
2579
2580
0
  bfd_print_symbol_vandf (abfd, (void *)file, symbol);
2581
2582
0
  fprintf (file," %-5s %04x %02x %02x",
2583
0
     section_name,
2584
0
     (unsigned) (aout_symbol (symbol)->desc & 0xffff),
2585
0
     (unsigned) (aout_symbol (symbol)->other & 0xff),
2586
0
     (unsigned) (aout_symbol (symbol)->type & 0xff));
2587
0
  if (symbol->name)
2588
0
    fprintf (file," %s", symbol->name);
2589
0
      }
2590
0
      break;
2591
0
    }
2592
0
}
Unexecuted instantiation: cris_aout_32_print_symbol
Unexecuted instantiation: ns32kaout_32_print_symbol
Unexecuted instantiation: aout_32_print_symbol
2593
2594
/* If we don't have to allocate more than 1MB to hold the generic
2595
   symbols, we use the generic minisymbol methord: it's faster, since
2596
   it only translates the symbols once, not multiple times.  */
2597
29.2k
#define MINISYM_THRESHOLD (1000000 / sizeof (asymbol))
2598
2599
/* Read minisymbols.  For minisymbols, we use the unmodified a.out
2600
   symbols.  The minisymbol_to_symbol function translates these into
2601
   BFD asymbol structures.  */
2602
2603
long
2604
NAME (aout, read_minisymbols) (bfd *abfd,
2605
             bool dynamic,
2606
             void * *minisymsp,
2607
             unsigned int *sizep)
2608
555
{
2609
555
  BFD_ASSERT (bfd_get_flavour (abfd) == bfd_target_aout_flavour);
2610
2611
555
  if (dynamic)
2612
    /* We could handle the dynamic symbols here as well, but it's
2613
       easier to hand them off.  */
2614
0
    return _bfd_generic_read_minisymbols (abfd, dynamic, minisymsp, sizep);
2615
2616
555
  if (! aout_get_external_symbols (abfd))
2617
157
    return -1;
2618
2619
398
  if (obj_aout_external_sym_count (abfd) < MINISYM_THRESHOLD)
2620
398
    return _bfd_generic_read_minisymbols (abfd, dynamic, minisymsp, sizep);
2621
2622
0
  *minisymsp = (void *) obj_aout_external_syms (abfd);
2623
2624
  /* By passing the external symbols back from this routine, we are
2625
     giving up control over the memory block.  Clear
2626
     obj_aout_external_syms, so that we do not try to free it
2627
     ourselves.  */
2628
0
  obj_aout_external_syms (abfd) = NULL;
2629
2630
0
  *sizep = EXTERNAL_NLIST_SIZE;
2631
0
  return obj_aout_external_sym_count (abfd);
2632
398
}
Unexecuted instantiation: cris_aout_32_read_minisymbols
ns32kaout_32_read_minisymbols
Line
Count
Source
2608
264
{
2609
264
  BFD_ASSERT (bfd_get_flavour (abfd) == bfd_target_aout_flavour);
2610
2611
264
  if (dynamic)
2612
    /* We could handle the dynamic symbols here as well, but it's
2613
       easier to hand them off.  */
2614
0
    return _bfd_generic_read_minisymbols (abfd, dynamic, minisymsp, sizep);
2615
2616
264
  if (! aout_get_external_symbols (abfd))
2617
73
    return -1;
2618
2619
191
  if (obj_aout_external_sym_count (abfd) < MINISYM_THRESHOLD)
2620
191
    return _bfd_generic_read_minisymbols (abfd, dynamic, minisymsp, sizep);
2621
2622
0
  *minisymsp = (void *) obj_aout_external_syms (abfd);
2623
2624
  /* By passing the external symbols back from this routine, we are
2625
     giving up control over the memory block.  Clear
2626
     obj_aout_external_syms, so that we do not try to free it
2627
     ourselves.  */
2628
0
  obj_aout_external_syms (abfd) = NULL;
2629
2630
0
  *sizep = EXTERNAL_NLIST_SIZE;
2631
0
  return obj_aout_external_sym_count (abfd);
2632
191
}
aout_32_read_minisymbols
Line
Count
Source
2608
291
{
2609
291
  BFD_ASSERT (bfd_get_flavour (abfd) == bfd_target_aout_flavour);
2610
2611
291
  if (dynamic)
2612
    /* We could handle the dynamic symbols here as well, but it's
2613
       easier to hand them off.  */
2614
0
    return _bfd_generic_read_minisymbols (abfd, dynamic, minisymsp, sizep);
2615
2616
291
  if (! aout_get_external_symbols (abfd))
2617
84
    return -1;
2618
2619
207
  if (obj_aout_external_sym_count (abfd) < MINISYM_THRESHOLD)
2620
207
    return _bfd_generic_read_minisymbols (abfd, dynamic, minisymsp, sizep);
2621
2622
0
  *minisymsp = (void *) obj_aout_external_syms (abfd);
2623
2624
  /* By passing the external symbols back from this routine, we are
2625
     giving up control over the memory block.  Clear
2626
     obj_aout_external_syms, so that we do not try to free it
2627
     ourselves.  */
2628
0
  obj_aout_external_syms (abfd) = NULL;
2629
2630
0
  *sizep = EXTERNAL_NLIST_SIZE;
2631
0
  return obj_aout_external_sym_count (abfd);
2632
207
}
2633
2634
/* Convert a minisymbol to a BFD asymbol.  A minisymbol is just an
2635
   unmodified a.out symbol.  The SYM argument is a structure returned
2636
   by bfd_make_empty_symbol, which we fill in here.  */
2637
2638
asymbol *
2639
NAME (aout, minisymbol_to_symbol) (bfd *abfd,
2640
           bool dynamic,
2641
           const void * minisym,
2642
           asymbol *sym)
2643
28.8k
{
2644
28.8k
  if (dynamic
2645
28.8k
      || obj_aout_external_sym_count (abfd) < MINISYM_THRESHOLD)
2646
28.8k
    return _bfd_generic_minisymbol_to_symbol (abfd, dynamic, minisym, sym);
2647
2648
0
  memset (sym, 0, sizeof (aout_symbol_type));
2649
2650
  /* We call translate_symbol_table to translate a single symbol.  */
2651
0
  if (! (NAME (aout, translate_symbol_table)
2652
0
   (abfd,
2653
0
    (aout_symbol_type *) sym,
2654
0
    (struct external_nlist *) minisym,
2655
0
    (bfd_size_type) 1,
2656
0
    obj_aout_external_strings (abfd),
2657
0
    obj_aout_external_string_size (abfd),
2658
0
    false)))
2659
0
    return NULL;
2660
2661
0
  return sym;
2662
0
}
Unexecuted instantiation: cris_aout_32_minisymbol_to_symbol
ns32kaout_32_minisymbol_to_symbol
Line
Count
Source
2643
13.8k
{
2644
13.8k
  if (dynamic
2645
13.8k
      || obj_aout_external_sym_count (abfd) < MINISYM_THRESHOLD)
2646
13.8k
    return _bfd_generic_minisymbol_to_symbol (abfd, dynamic, minisym, sym);
2647
2648
0
  memset (sym, 0, sizeof (aout_symbol_type));
2649
2650
  /* We call translate_symbol_table to translate a single symbol.  */
2651
0
  if (! (NAME (aout, translate_symbol_table)
2652
0
   (abfd,
2653
0
    (aout_symbol_type *) sym,
2654
0
    (struct external_nlist *) minisym,
2655
0
    (bfd_size_type) 1,
2656
0
    obj_aout_external_strings (abfd),
2657
0
    obj_aout_external_string_size (abfd),
2658
0
    false)))
2659
0
    return NULL;
2660
2661
0
  return sym;
2662
0
}
aout_32_minisymbol_to_symbol
Line
Count
Source
2643
15.0k
{
2644
15.0k
  if (dynamic
2645
15.0k
      || obj_aout_external_sym_count (abfd) < MINISYM_THRESHOLD)
2646
15.0k
    return _bfd_generic_minisymbol_to_symbol (abfd, dynamic, minisym, sym);
2647
2648
0
  memset (sym, 0, sizeof (aout_symbol_type));
2649
2650
  /* We call translate_symbol_table to translate a single symbol.  */
2651
0
  if (! (NAME (aout, translate_symbol_table)
2652
0
   (abfd,
2653
0
    (aout_symbol_type *) sym,
2654
0
    (struct external_nlist *) minisym,
2655
0
    (bfd_size_type) 1,
2656
0
    obj_aout_external_strings (abfd),
2657
0
    obj_aout_external_string_size (abfd),
2658
0
    false)))
2659
0
    return NULL;
2660
2661
0
  return sym;
2662
0
}
2663
2664
/* Provided a BFD, a section and an offset into the section, calculate
2665
   and return the name of the source file and the line nearest to the
2666
   wanted location.  */
2667
2668
bool
2669
NAME (aout, find_nearest_line) (bfd *abfd,
2670
        asymbol **symbols,
2671
        asection *section,
2672
        bfd_vma offset,
2673
        const char **filename_ptr,
2674
        const char **functionname_ptr,
2675
        unsigned int *line_ptr,
2676
        unsigned int *disriminator_ptr)
2677
1.05k
{
2678
  /* Run down the file looking for the filename, function and linenumber.  */
2679
1.05k
  asymbol **p;
2680
1.05k
  const char *directory_name = NULL;
2681
1.05k
  const char *main_file_name = NULL;
2682
1.05k
  const char *current_file_name = NULL;
2683
1.05k
  const char *line_file_name = NULL;      /* Value of current_file_name at line number.  */
2684
1.05k
  const char *line_directory_name = NULL; /* Value of directory_name at line number.  */
2685
1.05k
  bfd_vma low_line_vma = 0;
2686
1.05k
  bfd_vma low_func_vma = 0;
2687
1.05k
  asymbol *func = 0;
2688
1.05k
  bfd_size_type filelen, funclen;
2689
1.05k
  char *buf;
2690
2691
1.05k
  *filename_ptr = bfd_get_filename (abfd);
2692
1.05k
  *functionname_ptr = NULL;
2693
1.05k
  *line_ptr = 0;
2694
1.05k
  if (disriminator_ptr)
2695
89
    *disriminator_ptr = 0;
2696
2697
1.05k
  if (symbols != NULL)
2698
978
    {
2699
16.9k
      for (p = symbols; *p; p++)
2700
16.5k
  {
2701
16.5k
    aout_symbol_type  *q = (aout_symbol_type *) (*p);
2702
17.5k
  next:
2703
17.5k
    switch (q->type)
2704
17.5k
      {
2705
1.53k
      case N_TEXT:
2706
        /* If this looks like a file name symbol, and it comes after
2707
     the line number we have found so far, but before the
2708
     offset, then we have probably not found the right line
2709
     number.  */
2710
1.53k
        if (q->symbol.value <= offset
2711
1.16k
      && ((q->symbol.value > low_line_vma
2712
880
           && (line_file_name != NULL
2713
736
         || *line_ptr != 0))
2714
837
          || (q->symbol.value > low_func_vma
2715
713
        && func != NULL)))
2716
562
    {
2717
562
      const char *symname;
2718
2719
562
      symname = q->symbol.name;
2720
2721
562
      if (symname != NULL
2722
562
          && strlen (symname) > 2
2723
365
          && strcmp (symname + strlen (symname) - 2, ".o") == 0)
2724
46
        {
2725
46
          if (q->symbol.value > low_line_vma)
2726
36
      {
2727
36
        *line_ptr = 0;
2728
36
        line_file_name = NULL;
2729
36
      }
2730
46
          if (q->symbol.value > low_func_vma)
2731
43
      func = NULL;
2732
46
        }
2733
562
    }
2734
1.53k
        break;
2735
2736
1.43k
      case N_SO:
2737
        /* If this symbol is less than the offset, but greater than
2738
     the line number we have found so far, then we have not
2739
     found the right line number.  */
2740
1.43k
        if (q->symbol.value <= offset)
2741
918
    {
2742
918
      if (q->symbol.value > low_line_vma)
2743
597
        {
2744
597
          *line_ptr = 0;
2745
597
          line_file_name = NULL;
2746
597
        }
2747
918
      if (q->symbol.value > low_func_vma)
2748
758
        func = NULL;
2749
918
    }
2750
2751
1.43k
        main_file_name = current_file_name = q->symbol.name;
2752
        /* Look ahead to next symbol to check if that too is an N_SO.  */
2753
1.43k
        p++;
2754
1.43k
        if (*p == NULL)
2755
321
    goto done;
2756
1.11k
        q = (aout_symbol_type *) (*p);
2757
1.11k
        if (q->type != (int)N_SO)
2758
983
    goto next;
2759
2760
        /* Found a second N_SO  First is directory; second is filename.  */
2761
130
        directory_name = current_file_name;
2762
130
        main_file_name = current_file_name = q->symbol.name;
2763
130
        if (obj_textsec (abfd) != section)
2764
32
    goto done;
2765
98
        break;
2766
98
      case N_SOL:
2767
55
        current_file_name = q->symbol.name;
2768
55
        break;
2769
2770
386
      case N_SLINE:
2771
2772
793
      case N_DSLINE:
2773
1.29k
      case N_BSLINE:
2774
        /* We'll keep this if it resolves nearer than the one we have
2775
     already.  */
2776
1.29k
        if (q->symbol.value >= low_line_vma
2777
1.06k
      && q->symbol.value <= offset)
2778
709
    {
2779
709
      *line_ptr = q->desc;
2780
709
      low_line_vma = q->symbol.value;
2781
709
      line_file_name = current_file_name;
2782
709
      line_directory_name = directory_name;
2783
709
    }
2784
1.29k
        break;
2785
802
      case N_FUN:
2786
802
        {
2787
    /* We'll keep this if it is nearer than the one we have already.  */
2788
802
    if (q->symbol.value >= low_func_vma
2789
735
        && q->symbol.value <= offset)
2790
523
      {
2791
523
        low_func_vma = q->symbol.value;
2792
523
        func = (asymbol *)q;
2793
523
      }
2794
279
    else if (q->symbol.value > offset)
2795
212
      goto done;
2796
802
        }
2797
590
        break;
2798
17.5k
      }
2799
17.5k
  }
2800
978
    }
2801
2802
1.05k
 done:
2803
1.05k
  if (*line_ptr != 0)
2804
284
    {
2805
284
      main_file_name = line_file_name;
2806
284
      directory_name = line_directory_name;
2807
284
    }
2808
2809
1.05k
  if (main_file_name == NULL
2810
1.05k
      || IS_ABSOLUTE_PATH (main_file_name)
2811
586
      || directory_name == NULL)
2812
939
    filelen = 0;
2813
111
  else
2814
111
    filelen = strlen (directory_name) + strlen (main_file_name);
2815
2816
1.05k
  if (func == NULL)
2817
760
    funclen = 0;
2818
290
  else
2819
290
    funclen = strlen (bfd_asymbol_name (func));
2820
2821
1.05k
  free (adata (abfd).line_buf);
2822
2823
1.05k
  if (filelen + funclen == 0)
2824
841
    adata (abfd).line_buf = buf = NULL;
2825
209
  else
2826
209
    {
2827
209
      buf = (char *) bfd_malloc (filelen + funclen + 3);
2828
209
      adata (abfd).line_buf = buf;
2829
209
      if (buf == NULL)
2830
0
  return false;
2831
209
    }
2832
2833
1.05k
  if (main_file_name != NULL)
2834
609
    {
2835
609
      if (IS_ABSOLUTE_PATH (main_file_name) || directory_name == NULL)
2836
498
  *filename_ptr = main_file_name;
2837
111
      else
2838
111
  {
2839
111
    if (buf == NULL)
2840
      /* PR binutils/20891: In a corrupt input file both
2841
         main_file_name and directory_name can be empty...  */
2842
51
      * filename_ptr = NULL;
2843
60
    else
2844
60
      {
2845
60
        snprintf (buf, filelen + 1, "%s%s", directory_name,
2846
60
      main_file_name);
2847
60
        *filename_ptr = buf;
2848
60
        buf += filelen + 1;
2849
60
      }
2850
111
  }
2851
609
    }
2852
2853
1.05k
  if (func)
2854
290
    {
2855
290
      const char *function = func->name;
2856
290
      char *colon;
2857
2858
290
      if (buf == NULL)
2859
120
  {
2860
    /* PR binutils/20892: In a corrupt input file func can be empty.  */
2861
120
    * functionname_ptr = NULL;
2862
120
    return true;
2863
120
  }
2864
      /* The caller expects a symbol name.  We actually have a
2865
   function name, without the leading underscore.  Put the
2866
   underscore back in, so that the caller gets a symbol name.  */
2867
170
      if (bfd_get_symbol_leading_char (abfd) == '\0')
2868
0
  strcpy (buf, function);
2869
170
      else
2870
170
  {
2871
170
    buf[0] = bfd_get_symbol_leading_char (abfd);
2872
170
    strcpy (buf + 1, function);
2873
170
  }
2874
      /* Have to remove : stuff.  */
2875
170
      colon = strchr (buf, ':');
2876
170
      if (colon != NULL)
2877
24
  *colon = '\0';
2878
170
      *functionname_ptr = buf;
2879
170
    }
2880
2881
930
  return true;
2882
1.05k
}
Unexecuted instantiation: cris_aout_32_find_nearest_line
ns32kaout_32_find_nearest_line
Line
Count
Source
2677
467
{
2678
  /* Run down the file looking for the filename, function and linenumber.  */
2679
467
  asymbol **p;
2680
467
  const char *directory_name = NULL;
2681
467
  const char *main_file_name = NULL;
2682
467
  const char *current_file_name = NULL;
2683
467
  const char *line_file_name = NULL;      /* Value of current_file_name at line number.  */
2684
467
  const char *line_directory_name = NULL; /* Value of directory_name at line number.  */
2685
467
  bfd_vma low_line_vma = 0;
2686
467
  bfd_vma low_func_vma = 0;
2687
467
  asymbol *func = 0;
2688
467
  bfd_size_type filelen, funclen;
2689
467
  char *buf;
2690
2691
467
  *filename_ptr = bfd_get_filename (abfd);
2692
467
  *functionname_ptr = NULL;
2693
467
  *line_ptr = 0;
2694
467
  if (disriminator_ptr)
2695
59
    *disriminator_ptr = 0;
2696
2697
467
  if (symbols != NULL)
2698
425
    {
2699
7.80k
      for (p = symbols; *p; p++)
2700
7.52k
  {
2701
7.52k
    aout_symbol_type  *q = (aout_symbol_type *) (*p);
2702
7.69k
  next:
2703
7.69k
    switch (q->type)
2704
7.69k
      {
2705
675
      case N_TEXT:
2706
        /* If this looks like a file name symbol, and it comes after
2707
     the line number we have found so far, but before the
2708
     offset, then we have probably not found the right line
2709
     number.  */
2710
675
        if (q->symbol.value <= offset
2711
497
      && ((q->symbol.value > low_line_vma
2712
402
           && (line_file_name != NULL
2713
346
         || *line_ptr != 0))
2714
324
          || (q->symbol.value > low_func_vma
2715
290
        && func != NULL)))
2716
226
    {
2717
226
      const char *symname;
2718
2719
226
      symname = q->symbol.name;
2720
2721
226
      if (symname != NULL
2722
226
          && strlen (symname) > 2
2723
129
          && strcmp (symname + strlen (symname) - 2, ".o") == 0)
2724
11
        {
2725
11
          if (q->symbol.value > low_line_vma)
2726
11
      {
2727
11
        *line_ptr = 0;
2728
11
        line_file_name = NULL;
2729
11
      }
2730
11
          if (q->symbol.value > low_func_vma)
2731
11
      func = NULL;
2732
11
        }
2733
226
    }
2734
675
        break;
2735
2736
269
      case N_SO:
2737
        /* If this symbol is less than the offset, but greater than
2738
     the line number we have found so far, then we have not
2739
     found the right line number.  */
2740
269
        if (q->symbol.value <= offset)
2741
136
    {
2742
136
      if (q->symbol.value > low_line_vma)
2743
100
        {
2744
100
          *line_ptr = 0;
2745
100
          line_file_name = NULL;
2746
100
        }
2747
136
      if (q->symbol.value > low_func_vma)
2748
116
        func = NULL;
2749
136
    }
2750
2751
269
        main_file_name = current_file_name = q->symbol.name;
2752
        /* Look ahead to next symbol to check if that too is an N_SO.  */
2753
269
        p++;
2754
269
        if (*p == NULL)
2755
22
    goto done;
2756
247
        q = (aout_symbol_type *) (*p);
2757
247
        if (q->type != (int)N_SO)
2758
165
    goto next;
2759
2760
        /* Found a second N_SO  First is directory; second is filename.  */
2761
82
        directory_name = current_file_name;
2762
82
        main_file_name = current_file_name = q->symbol.name;
2763
82
        if (obj_textsec (abfd) != section)
2764
10
    goto done;
2765
72
        break;
2766
72
      case N_SOL:
2767
11
        current_file_name = q->symbol.name;
2768
11
        break;
2769
2770
140
      case N_SLINE:
2771
2772
445
      case N_DSLINE:
2773
594
      case N_BSLINE:
2774
        /* We'll keep this if it resolves nearer than the one we have
2775
     already.  */
2776
594
        if (q->symbol.value >= low_line_vma
2777
485
      && q->symbol.value <= offset)
2778
311
    {
2779
311
      *line_ptr = q->desc;
2780
311
      low_line_vma = q->symbol.value;
2781
311
      line_file_name = current_file_name;
2782
311
      line_directory_name = directory_name;
2783
311
    }
2784
594
        break;
2785
365
      case N_FUN:
2786
365
        {
2787
    /* We'll keep this if it is nearer than the one we have already.  */
2788
365
    if (q->symbol.value >= low_func_vma
2789
345
        && q->symbol.value <= offset)
2790
228
      {
2791
228
        low_func_vma = q->symbol.value;
2792
228
        func = (asymbol *)q;
2793
228
      }
2794
137
    else if (q->symbol.value > offset)
2795
117
      goto done;
2796
365
        }
2797
248
        break;
2798
7.69k
      }
2799
7.69k
  }
2800
425
    }
2801
2802
467
 done:
2803
467
  if (*line_ptr != 0)
2804
136
    {
2805
136
      main_file_name = line_file_name;
2806
136
      directory_name = line_directory_name;
2807
136
    }
2808
2809
467
  if (main_file_name == NULL
2810
467
      || IS_ABSOLUTE_PATH (main_file_name)
2811
145
      || directory_name == NULL)
2812
404
    filelen = 0;
2813
63
  else
2814
63
    filelen = strlen (directory_name) + strlen (main_file_name);
2815
2816
467
  if (func == NULL)
2817
305
    funclen = 0;
2818
162
  else
2819
162
    funclen = strlen (bfd_asymbol_name (func));
2820
2821
467
  free (adata (abfd).line_buf);
2822
2823
467
  if (filelen + funclen == 0)
2824
346
    adata (abfd).line_buf = buf = NULL;
2825
121
  else
2826
121
    {
2827
121
      buf = (char *) bfd_malloc (filelen + funclen + 3);
2828
121
      adata (abfd).line_buf = buf;
2829
121
      if (buf == NULL)
2830
0
  return false;
2831
121
    }
2832
2833
467
  if (main_file_name != NULL)
2834
149
    {
2835
149
      if (IS_ABSOLUTE_PATH (main_file_name) || directory_name == NULL)
2836
86
  *filename_ptr = main_file_name;
2837
63
      else
2838
63
  {
2839
63
    if (buf == NULL)
2840
      /* PR binutils/20891: In a corrupt input file both
2841
         main_file_name and directory_name can be empty...  */
2842
25
      * filename_ptr = NULL;
2843
38
    else
2844
38
      {
2845
38
        snprintf (buf, filelen + 1, "%s%s", directory_name,
2846
38
      main_file_name);
2847
38
        *filename_ptr = buf;
2848
38
        buf += filelen + 1;
2849
38
      }
2850
63
  }
2851
149
    }
2852
2853
467
  if (func)
2854
162
    {
2855
162
      const char *function = func->name;
2856
162
      char *colon;
2857
2858
162
      if (buf == NULL)
2859
68
  {
2860
    /* PR binutils/20892: In a corrupt input file func can be empty.  */
2861
68
    * functionname_ptr = NULL;
2862
68
    return true;
2863
68
  }
2864
      /* The caller expects a symbol name.  We actually have a
2865
   function name, without the leading underscore.  Put the
2866
   underscore back in, so that the caller gets a symbol name.  */
2867
94
      if (bfd_get_symbol_leading_char (abfd) == '\0')
2868
0
  strcpy (buf, function);
2869
94
      else
2870
94
  {
2871
94
    buf[0] = bfd_get_symbol_leading_char (abfd);
2872
94
    strcpy (buf + 1, function);
2873
94
  }
2874
      /* Have to remove : stuff.  */
2875
94
      colon = strchr (buf, ':');
2876
94
      if (colon != NULL)
2877
13
  *colon = '\0';
2878
94
      *functionname_ptr = buf;
2879
94
    }
2880
2881
399
  return true;
2882
467
}
aout_32_find_nearest_line
Line
Count
Source
2677
583
{
2678
  /* Run down the file looking for the filename, function and linenumber.  */
2679
583
  asymbol **p;
2680
583
  const char *directory_name = NULL;
2681
583
  const char *main_file_name = NULL;
2682
583
  const char *current_file_name = NULL;
2683
583
  const char *line_file_name = NULL;      /* Value of current_file_name at line number.  */
2684
583
  const char *line_directory_name = NULL; /* Value of directory_name at line number.  */
2685
583
  bfd_vma low_line_vma = 0;
2686
583
  bfd_vma low_func_vma = 0;
2687
583
  asymbol *func = 0;
2688
583
  bfd_size_type filelen, funclen;
2689
583
  char *buf;
2690
2691
583
  *filename_ptr = bfd_get_filename (abfd);
2692
583
  *functionname_ptr = NULL;
2693
583
  *line_ptr = 0;
2694
583
  if (disriminator_ptr)
2695
30
    *disriminator_ptr = 0;
2696
2697
583
  if (symbols != NULL)
2698
553
    {
2699
9.15k
      for (p = symbols; *p; p++)
2700
9.01k
  {
2701
9.01k
    aout_symbol_type  *q = (aout_symbol_type *) (*p);
2702
9.83k
  next:
2703
9.83k
    switch (q->type)
2704
9.83k
      {
2705
856
      case N_TEXT:
2706
        /* If this looks like a file name symbol, and it comes after
2707
     the line number we have found so far, but before the
2708
     offset, then we have probably not found the right line
2709
     number.  */
2710
856
        if (q->symbol.value <= offset
2711
668
      && ((q->symbol.value > low_line_vma
2712
478
           && (line_file_name != NULL
2713
390
         || *line_ptr != 0))
2714
513
          || (q->symbol.value > low_func_vma
2715
423
        && func != NULL)))
2716
336
    {
2717
336
      const char *symname;
2718
2719
336
      symname = q->symbol.name;
2720
2721
336
      if (symname != NULL
2722
336
          && strlen (symname) > 2
2723
236
          && strcmp (symname + strlen (symname) - 2, ".o") == 0)
2724
35
        {
2725
35
          if (q->symbol.value > low_line_vma)
2726
25
      {
2727
25
        *line_ptr = 0;
2728
25
        line_file_name = NULL;
2729
25
      }
2730
35
          if (q->symbol.value > low_func_vma)
2731
32
      func = NULL;
2732
35
        }
2733
336
    }
2734
856
        break;
2735
2736
1.16k
      case N_SO:
2737
        /* If this symbol is less than the offset, but greater than
2738
     the line number we have found so far, then we have not
2739
     found the right line number.  */
2740
1.16k
        if (q->symbol.value <= offset)
2741
782
    {
2742
782
      if (q->symbol.value > low_line_vma)
2743
497
        {
2744
497
          *line_ptr = 0;
2745
497
          line_file_name = NULL;
2746
497
        }
2747
782
      if (q->symbol.value > low_func_vma)
2748
642
        func = NULL;
2749
782
    }
2750
2751
1.16k
        main_file_name = current_file_name = q->symbol.name;
2752
        /* Look ahead to next symbol to check if that too is an N_SO.  */
2753
1.16k
        p++;
2754
1.16k
        if (*p == NULL)
2755
299
    goto done;
2756
866
        q = (aout_symbol_type *) (*p);
2757
866
        if (q->type != (int)N_SO)
2758
818
    goto next;
2759
2760
        /* Found a second N_SO  First is directory; second is filename.  */
2761
48
        directory_name = current_file_name;
2762
48
        main_file_name = current_file_name = q->symbol.name;
2763
48
        if (obj_textsec (abfd) != section)
2764
22
    goto done;
2765
26
        break;
2766
44
      case N_SOL:
2767
44
        current_file_name = q->symbol.name;
2768
44
        break;
2769
2770
246
      case N_SLINE:
2771
2772
348
      case N_DSLINE:
2773
704
      case N_BSLINE:
2774
        /* We'll keep this if it resolves nearer than the one we have
2775
     already.  */
2776
704
        if (q->symbol.value >= low_line_vma
2777
576
      && q->symbol.value <= offset)
2778
398
    {
2779
398
      *line_ptr = q->desc;
2780
398
      low_line_vma = q->symbol.value;
2781
398
      line_file_name = current_file_name;
2782
398
      line_directory_name = directory_name;
2783
398
    }
2784
704
        break;
2785
437
      case N_FUN:
2786
437
        {
2787
    /* We'll keep this if it is nearer than the one we have already.  */
2788
437
    if (q->symbol.value >= low_func_vma
2789
390
        && q->symbol.value <= offset)
2790
295
      {
2791
295
        low_func_vma = q->symbol.value;
2792
295
        func = (asymbol *)q;
2793
295
      }
2794
142
    else if (q->symbol.value > offset)
2795
95
      goto done;
2796
437
        }
2797
342
        break;
2798
9.83k
      }
2799
9.83k
  }
2800
553
    }
2801
2802
583
 done:
2803
583
  if (*line_ptr != 0)
2804
148
    {
2805
148
      main_file_name = line_file_name;
2806
148
      directory_name = line_directory_name;
2807
148
    }
2808
2809
583
  if (main_file_name == NULL
2810
583
      || IS_ABSOLUTE_PATH (main_file_name)
2811
441
      || directory_name == NULL)
2812
535
    filelen = 0;
2813
48
  else
2814
48
    filelen = strlen (directory_name) + strlen (main_file_name);
2815
2816
583
  if (func == NULL)
2817
455
    funclen = 0;
2818
128
  else
2819
128
    funclen = strlen (bfd_asymbol_name (func));
2820
2821
583
  free (adata (abfd).line_buf);
2822
2823
583
  if (filelen + funclen == 0)
2824
495
    adata (abfd).line_buf = buf = NULL;
2825
88
  else
2826
88
    {
2827
88
      buf = (char *) bfd_malloc (filelen + funclen + 3);
2828
88
      adata (abfd).line_buf = buf;
2829
88
      if (buf == NULL)
2830
0
  return false;
2831
88
    }
2832
2833
583
  if (main_file_name != NULL)
2834
460
    {
2835
460
      if (IS_ABSOLUTE_PATH (main_file_name) || directory_name == NULL)
2836
412
  *filename_ptr = main_file_name;
2837
48
      else
2838
48
  {
2839
48
    if (buf == NULL)
2840
      /* PR binutils/20891: In a corrupt input file both
2841
         main_file_name and directory_name can be empty...  */
2842
26
      * filename_ptr = NULL;
2843
22
    else
2844
22
      {
2845
22
        snprintf (buf, filelen + 1, "%s%s", directory_name,
2846
22
      main_file_name);
2847
22
        *filename_ptr = buf;
2848
22
        buf += filelen + 1;
2849
22
      }
2850
48
  }
2851
460
    }
2852
2853
583
  if (func)
2854
128
    {
2855
128
      const char *function = func->name;
2856
128
      char *colon;
2857
2858
128
      if (buf == NULL)
2859
52
  {
2860
    /* PR binutils/20892: In a corrupt input file func can be empty.  */
2861
52
    * functionname_ptr = NULL;
2862
52
    return true;
2863
52
  }
2864
      /* The caller expects a symbol name.  We actually have a
2865
   function name, without the leading underscore.  Put the
2866
   underscore back in, so that the caller gets a symbol name.  */
2867
76
      if (bfd_get_symbol_leading_char (abfd) == '\0')
2868
0
  strcpy (buf, function);
2869
76
      else
2870
76
  {
2871
76
    buf[0] = bfd_get_symbol_leading_char (abfd);
2872
76
    strcpy (buf + 1, function);
2873
76
  }
2874
      /* Have to remove : stuff.  */
2875
76
      colon = strchr (buf, ':');
2876
76
      if (colon != NULL)
2877
11
  *colon = '\0';
2878
76
      *functionname_ptr = buf;
2879
76
    }
2880
2881
531
  return true;
2882
583
}
2883
2884
int
2885
NAME (aout, sizeof_headers) (bfd *abfd,
2886
           struct bfd_link_info *info ATTRIBUTE_UNUSED)
2887
0
{
2888
0
  return adata (abfd).exec_bytes_size;
2889
0
}
Unexecuted instantiation: cris_aout_32_sizeof_headers
Unexecuted instantiation: ns32kaout_32_sizeof_headers
Unexecuted instantiation: aout_32_sizeof_headers
2890
2891
/* Throw away most malloc'd and alloc'd information for this BFD.  */
2892
2893
bool
2894
NAME (aout, bfd_free_cached_info) (bfd *abfd)
2895
337k
{
2896
337k
#define BFCI_FREE(x) do { free (x); x = NULL; } while (0)
2897
337k
  if (bfd_get_format (abfd) == bfd_object
2898
5.94k
      && abfd->tdata.aout_data != NULL)
2899
5.94k
    {
2900
5.94k
      BFCI_FREE (adata (abfd).line_buf);
2901
5.94k
      BFCI_FREE (obj_aout_symbols (abfd));
2902
5.94k
      BFCI_FREE (obj_aout_external_syms (abfd));
2903
5.94k
      BFCI_FREE (obj_aout_external_strings (abfd));
2904
5.94k
    }
2905
2906
354k
  for (asection *o = abfd->sections; o != NULL; o = o->next)
2907
17.2k
    BFCI_FREE (o->relocation);
2908
337k
#undef BFCI_FREE
2909
2910
337k
  return _bfd_generic_bfd_free_cached_info (abfd);
2911
337k
}
cris_aout_32_bfd_free_cached_info
Line
Count
Source
2895
41.9k
{
2896
41.9k
#define BFCI_FREE(x) do { free (x); x = NULL; } while (0)
2897
41.9k
  if (bfd_get_format (abfd) == bfd_object
2898
393
      && abfd->tdata.aout_data != NULL)
2899
393
    {
2900
393
      BFCI_FREE (adata (abfd).line_buf);
2901
393
      BFCI_FREE (obj_aout_symbols (abfd));
2902
393
      BFCI_FREE (obj_aout_external_syms (abfd));
2903
393
      BFCI_FREE (obj_aout_external_strings (abfd));
2904
393
    }
2905
2906
43.1k
  for (asection *o = abfd->sections; o != NULL; o = o->next)
2907
1.17k
    BFCI_FREE (o->relocation);
2908
41.9k
#undef BFCI_FREE
2909
2910
41.9k
  return _bfd_generic_bfd_free_cached_info (abfd);
2911
41.9k
}
ns32kaout_32_bfd_free_cached_info
Line
Count
Source
2895
84.7k
{
2896
84.7k
#define BFCI_FREE(x) do { free (x); x = NULL; } while (0)
2897
84.7k
  if (bfd_get_format (abfd) == bfd_object
2898
1.99k
      && abfd->tdata.aout_data != NULL)
2899
1.99k
    {
2900
1.99k
      BFCI_FREE (adata (abfd).line_buf);
2901
1.99k
      BFCI_FREE (obj_aout_symbols (abfd));
2902
1.99k
      BFCI_FREE (obj_aout_external_syms (abfd));
2903
1.99k
      BFCI_FREE (obj_aout_external_strings (abfd));
2904
1.99k
    }
2905
2906
90.4k
  for (asection *o = abfd->sections; o != NULL; o = o->next)
2907
5.70k
    BFCI_FREE (o->relocation);
2908
84.7k
#undef BFCI_FREE
2909
2910
84.7k
  return _bfd_generic_bfd_free_cached_info (abfd);
2911
84.7k
}
aout_32_bfd_free_cached_info
Line
Count
Source
2895
210k
{
2896
210k
#define BFCI_FREE(x) do { free (x); x = NULL; } while (0)
2897
210k
  if (bfd_get_format (abfd) == bfd_object
2898
3.55k
      && abfd->tdata.aout_data != NULL)
2899
3.55k
    {
2900
3.55k
      BFCI_FREE (adata (abfd).line_buf);
2901
3.55k
      BFCI_FREE (obj_aout_symbols (abfd));
2902
3.55k
      BFCI_FREE (obj_aout_external_syms (abfd));
2903
3.55k
      BFCI_FREE (obj_aout_external_strings (abfd));
2904
3.55k
    }
2905
2906
221k
  for (asection *o = abfd->sections; o != NULL; o = o->next)
2907
10.3k
    BFCI_FREE (o->relocation);
2908
210k
#undef BFCI_FREE
2909
2910
210k
  return _bfd_generic_bfd_free_cached_info (abfd);
2911
210k
}
2912

2913
/* a.out link code.  */
2914
2915
/* Routine to create an entry in an a.out link hash table.  */
2916
2917
struct bfd_hash_entry *
2918
NAME (aout, link_hash_newfunc) (struct bfd_hash_entry *entry,
2919
        struct bfd_hash_table *table,
2920
        const char *string)
2921
0
{
2922
0
  struct aout_link_hash_entry *ret = (struct aout_link_hash_entry *) entry;
2923
2924
  /* Allocate the structure if it has not already been allocated by a
2925
     subclass.  */
2926
0
  if (ret == NULL)
2927
0
    ret = (struct aout_link_hash_entry *) bfd_hash_allocate (table,
2928
0
                   sizeof (* ret));
2929
0
  if (ret == NULL)
2930
0
    return NULL;
2931
2932
  /* Call the allocation method of the superclass.  */
2933
0
  ret = ((struct aout_link_hash_entry *)
2934
0
   _bfd_link_hash_newfunc ((struct bfd_hash_entry *) ret,
2935
0
         table, string));
2936
0
  if (ret)
2937
0
    {
2938
      /* Set local fields.  */
2939
0
      ret->written = false;
2940
0
      ret->indx = -1;
2941
0
    }
2942
2943
0
  return (struct bfd_hash_entry *) ret;
2944
0
}
Unexecuted instantiation: cris_aout_32_link_hash_newfunc
Unexecuted instantiation: ns32kaout_32_link_hash_newfunc
Unexecuted instantiation: aout_32_link_hash_newfunc
2945
2946
/* Initialize an a.out link hash table.  */
2947
2948
bool
2949
NAME (aout, link_hash_table_init) (struct aout_link_hash_table *table,
2950
           bfd *abfd,
2951
           struct bfd_hash_entry *(*newfunc)
2952
           (struct bfd_hash_entry *, struct bfd_hash_table *,
2953
            const char *),
2954
           unsigned int entsize)
2955
0
{
2956
0
  return _bfd_link_hash_table_init (&table->root, abfd, newfunc, entsize);
2957
0
}
Unexecuted instantiation: cris_aout_32_link_hash_table_init
Unexecuted instantiation: ns32kaout_32_link_hash_table_init
Unexecuted instantiation: aout_32_link_hash_table_init
2958
2959
/* Create an a.out link hash table.  */
2960
2961
struct bfd_link_hash_table *
2962
NAME (aout, link_hash_table_create) (bfd *abfd)
2963
0
{
2964
0
  struct aout_link_hash_table *ret;
2965
0
  size_t amt = sizeof (* ret);
2966
2967
0
  ret = (struct aout_link_hash_table *) bfd_malloc (amt);
2968
0
  if (ret == NULL)
2969
0
    return NULL;
2970
2971
0
  if (!NAME (aout, link_hash_table_init) (ret, abfd,
2972
0
            NAME (aout, link_hash_newfunc),
2973
0
            sizeof (struct aout_link_hash_entry)))
2974
0
    {
2975
0
      free (ret);
2976
0
      return NULL;
2977
0
    }
2978
0
  return &ret->root;
2979
0
}
Unexecuted instantiation: cris_aout_32_link_hash_table_create
Unexecuted instantiation: ns32kaout_32_link_hash_table_create
Unexecuted instantiation: aout_32_link_hash_table_create
2980
2981
/* Add all symbols from an object file to the hash table.  */
2982
2983
static bool
2984
aout_link_add_symbols (bfd *abfd, struct bfd_link_info *info)
2985
0
{
2986
0
  struct external_nlist *syms;
2987
0
  bfd_size_type sym_count;
2988
0
  char *strings;
2989
0
  bool copy;
2990
0
  struct aout_link_hash_entry **sym_hash;
2991
0
  struct external_nlist *p;
2992
0
  struct external_nlist *pend;
2993
0
  bfd_size_type amt;
2994
2995
0
  syms = obj_aout_external_syms (abfd);
2996
0
  sym_count = obj_aout_external_sym_count (abfd);
2997
0
  strings = obj_aout_external_strings (abfd);
2998
0
  if (info->keep_memory)
2999
0
    copy = false;
3000
0
  else
3001
0
    copy = true;
3002
3003
0
  if (aout_backend_info (abfd)->add_dynamic_symbols != NULL)
3004
0
    {
3005
0
      if (! ((*aout_backend_info (abfd)->add_dynamic_symbols)
3006
0
       (abfd, info, &syms, &sym_count, &strings)))
3007
0
  return false;
3008
0
    }
3009
3010
0
  if (sym_count == 0)
3011
0
    return true;   /* Nothing to do.  */
3012
3013
  /* We keep a list of the linker hash table entries that correspond
3014
     to particular symbols.  We could just look them up in the hash
3015
     table, but keeping the list is more efficient.  Perhaps this
3016
     should be conditional on info->keep_memory.  */
3017
0
  amt = sym_count * sizeof (struct aout_link_hash_entry *);
3018
0
  sym_hash = (struct aout_link_hash_entry **) bfd_alloc (abfd, amt);
3019
0
  if (sym_hash == NULL)
3020
0
    return false;
3021
0
  obj_aout_sym_hashes (abfd) = sym_hash;
3022
3023
0
  p = syms;
3024
0
  pend = p + sym_count;
3025
0
  for (; p < pend; p++, sym_hash++)
3026
0
    {
3027
0
      int type;
3028
0
      const char *name;
3029
0
      bfd_vma value;
3030
0
      asection *section;
3031
0
      flagword flags;
3032
0
      const char *string;
3033
3034
0
      *sym_hash = NULL;
3035
3036
0
      type = H_GET_8 (abfd, p->e_type);
3037
3038
      /* Ignore debugging symbols.  */
3039
0
      if ((type & N_STAB) != 0)
3040
0
  continue;
3041
3042
      /* PR 19629: Corrupt binaries can contain illegal string offsets.  */
3043
0
      if (GET_WORD (abfd, p->e_strx) >= obj_aout_external_string_size (abfd))
3044
0
  return false;
3045
0
      name = strings + GET_WORD (abfd, p->e_strx);
3046
0
      value = GET_WORD (abfd, p->e_value);
3047
0
      flags = BSF_GLOBAL;
3048
0
      string = NULL;
3049
0
      switch (type)
3050
0
  {
3051
0
  default:
3052
0
    abort ();
3053
3054
0
  case N_UNDF:
3055
0
  case N_ABS:
3056
0
  case N_TEXT:
3057
0
  case N_DATA:
3058
0
  case N_BSS:
3059
0
  case N_FN_SEQ:
3060
0
  case N_COMM:
3061
0
  case N_SETV:
3062
0
  case N_FN:
3063
    /* Ignore symbols that are not externally visible.  */
3064
0
    continue;
3065
0
  case N_INDR:
3066
    /* Ignore local indirect symbol.  */
3067
0
    ++p;
3068
0
    ++sym_hash;
3069
0
    continue;
3070
3071
0
  case N_UNDF | N_EXT:
3072
0
    if (value == 0)
3073
0
      {
3074
0
        section = bfd_und_section_ptr;
3075
0
        flags = 0;
3076
0
      }
3077
0
    else
3078
0
      section = bfd_com_section_ptr;
3079
0
    break;
3080
0
  case N_ABS | N_EXT:
3081
0
    section = bfd_abs_section_ptr;
3082
0
    break;
3083
0
  case N_TEXT | N_EXT:
3084
0
    section = obj_textsec (abfd);
3085
0
    value -= bfd_section_vma (section);
3086
0
    break;
3087
0
  case N_DATA | N_EXT:
3088
0
  case N_SETV | N_EXT:
3089
    /* Treat N_SETV symbols as N_DATA symbol; see comment in
3090
       translate_from_native_sym_flags.  */
3091
0
    section = obj_datasec (abfd);
3092
0
    value -= bfd_section_vma (section);
3093
0
    break;
3094
0
  case N_BSS | N_EXT:
3095
0
    section = obj_bsssec (abfd);
3096
0
    value -= bfd_section_vma (section);
3097
0
    break;
3098
0
  case N_INDR | N_EXT:
3099
    /* An indirect symbol.  The next symbol is the symbol
3100
       which this one really is.  */
3101
    /* See PR 20925 for a reproducer.  */
3102
0
    if (p + 1 >= pend)
3103
0
      return false;
3104
0
    ++p;
3105
    /* PR 19629: Corrupt binaries can contain illegal string offsets.  */
3106
0
    if (GET_WORD (abfd, p->e_strx) >= obj_aout_external_string_size (abfd))
3107
0
      return false;
3108
0
    string = strings + GET_WORD (abfd, p->e_strx);
3109
0
    section = bfd_ind_section_ptr;
3110
0
    flags |= BSF_INDIRECT;
3111
0
    break;
3112
0
  case N_COMM | N_EXT:
3113
0
    section = bfd_com_section_ptr;
3114
0
    break;
3115
0
  case N_SETA: case N_SETA | N_EXT:
3116
0
    section = bfd_abs_section_ptr;
3117
0
    flags |= BSF_CONSTRUCTOR;
3118
0
    break;
3119
0
  case N_SETT: case N_SETT | N_EXT:
3120
0
    section = obj_textsec (abfd);
3121
0
    flags |= BSF_CONSTRUCTOR;
3122
0
    value -= bfd_section_vma (section);
3123
0
    break;
3124
0
  case N_SETD: case N_SETD | N_EXT:
3125
0
    section = obj_datasec (abfd);
3126
0
    flags |= BSF_CONSTRUCTOR;
3127
0
    value -= bfd_section_vma (section);
3128
0
    break;
3129
0
  case N_SETB: case N_SETB | N_EXT:
3130
0
    section = obj_bsssec (abfd);
3131
0
    flags |= BSF_CONSTRUCTOR;
3132
0
    value -= bfd_section_vma (section);
3133
0
    break;
3134
0
  case N_WARNING:
3135
    /* A warning symbol.  The next symbol is the one to warn
3136
       about.  If there is no next symbol, just look away.  */
3137
0
    if (p + 1 >= pend)
3138
0
      return true;
3139
0
    ++p;
3140
0
    string = name;
3141
    /* PR 19629: Corrupt binaries can contain illegal string offsets.  */
3142
0
    if (GET_WORD (abfd, p->e_strx) >= obj_aout_external_string_size (abfd))
3143
0
      return false;
3144
0
    name = strings + GET_WORD (abfd, p->e_strx);
3145
0
    section = bfd_und_section_ptr;
3146
0
    flags |= BSF_WARNING;
3147
0
    break;
3148
0
  case N_WEAKU:
3149
0
    section = bfd_und_section_ptr;
3150
0
    flags = BSF_WEAK;
3151
0
    break;
3152
0
  case N_WEAKA:
3153
0
    section = bfd_abs_section_ptr;
3154
0
    flags = BSF_WEAK;
3155
0
    break;
3156
0
  case N_WEAKT:
3157
0
    section = obj_textsec (abfd);
3158
0
    value -= bfd_section_vma (section);
3159
0
    flags = BSF_WEAK;
3160
0
    break;
3161
0
  case N_WEAKD:
3162
0
    section = obj_datasec (abfd);
3163
0
    value -= bfd_section_vma (section);
3164
0
    flags = BSF_WEAK;
3165
0
    break;
3166
0
  case N_WEAKB:
3167
0
    section = obj_bsssec (abfd);
3168
0
    value -= bfd_section_vma (section);
3169
0
    flags = BSF_WEAK;
3170
0
    break;
3171
0
  }
3172
3173
0
      if (! (_bfd_generic_link_add_one_symbol
3174
0
       (info, abfd, name, flags, section, value, string, copy, false,
3175
0
        (struct bfd_link_hash_entry **) sym_hash)))
3176
0
  return false;
3177
3178
      /* Restrict the maximum alignment of a common symbol based on
3179
   the architecture, since a.out has no way to represent
3180
   alignment requirements of a section in a .o file.  FIXME:
3181
   This isn't quite right: it should use the architecture of the
3182
   output file, not the input files.  */
3183
0
      if ((*sym_hash)->root.type == bfd_link_hash_common
3184
0
    && ((*sym_hash)->root.u.c.p->alignment_power >
3185
0
        bfd_get_arch_info (abfd)->section_align_power))
3186
0
  (*sym_hash)->root.u.c.p->alignment_power =
3187
0
    bfd_get_arch_info (abfd)->section_align_power;
3188
3189
      /* If this is a set symbol, and we are not building sets, then
3190
   it is possible for the hash entry to not have been set.  In
3191
   such a case, treat the symbol as not globally defined.  */
3192
0
      if ((*sym_hash)->root.type == bfd_link_hash_new)
3193
0
  {
3194
0
    BFD_ASSERT ((flags & BSF_CONSTRUCTOR) != 0);
3195
0
    *sym_hash = NULL;
3196
0
  }
3197
3198
0
      if (type == (N_INDR | N_EXT) || type == N_WARNING)
3199
0
  ++sym_hash;
3200
0
    }
3201
3202
0
  return true;
3203
0
}
Unexecuted instantiation: aout-cris.c:aout_link_add_symbols
Unexecuted instantiation: aout-ns32k.c:aout_link_add_symbols
Unexecuted instantiation: aout32.c:aout_link_add_symbols
3204
3205
/* Free up the internal symbols read from an a.out file.  */
3206
3207
static bool
3208
aout_link_free_symbols (bfd *abfd)
3209
0
{
3210
0
  if (obj_aout_external_syms (abfd) != NULL)
3211
0
    {
3212
0
      free ((void *) obj_aout_external_syms (abfd));
3213
0
      obj_aout_external_syms (abfd) = NULL;
3214
0
    }
3215
0
  if (obj_aout_external_strings (abfd) != NULL)
3216
0
    {
3217
0
      free ((void *) obj_aout_external_strings (abfd));
3218
0
      obj_aout_external_strings (abfd) = NULL;
3219
0
    }
3220
0
  return true;
3221
0
}
Unexecuted instantiation: aout-cris.c:aout_link_free_symbols
Unexecuted instantiation: aout-ns32k.c:aout_link_free_symbols
Unexecuted instantiation: aout32.c:aout_link_free_symbols
3222
3223
/* Add symbols from an a.out object file.  */
3224
3225
static bool
3226
aout_link_add_object_symbols (bfd *abfd, struct bfd_link_info *info)
3227
0
{
3228
0
  BFD_ASSERT (bfd_get_flavour (abfd) == bfd_target_aout_flavour);
3229
3230
0
  if (! aout_get_external_symbols (abfd))
3231
0
    return false;
3232
0
  if (! aout_link_add_symbols (abfd, info))
3233
0
    return false;
3234
0
  if (! info->keep_memory)
3235
0
    {
3236
0
      if (! aout_link_free_symbols (abfd))
3237
0
  return false;
3238
0
    }
3239
0
  return true;
3240
0
}
Unexecuted instantiation: aout-cris.c:aout_link_add_object_symbols
Unexecuted instantiation: aout-ns32k.c:aout_link_add_object_symbols
Unexecuted instantiation: aout32.c:aout_link_add_object_symbols
3241
3242
/* Look through the internal symbols to see if this object file should
3243
   be included in the link.  We should include this object file if it
3244
   defines any symbols which are currently undefined.  If this object
3245
   file defines a common symbol, then we may adjust the size of the
3246
   known symbol but we do not include the object file in the link
3247
   (unless there is some other reason to include it).  */
3248
3249
static bool
3250
aout_link_check_ar_symbols (bfd *abfd,
3251
          struct bfd_link_info *info,
3252
          bool *pneeded,
3253
          bfd **subsbfd)
3254
0
{
3255
0
  struct external_nlist *p;
3256
0
  struct external_nlist *pend;
3257
0
  char *strings;
3258
3259
0
  *pneeded = false;
3260
3261
  /* Look through all the symbols.  */
3262
0
  p = obj_aout_external_syms (abfd);
3263
0
  pend = p + obj_aout_external_sym_count (abfd);
3264
0
  strings = obj_aout_external_strings (abfd);
3265
0
  for (; p < pend; p++)
3266
0
    {
3267
0
      int type = H_GET_8 (abfd, p->e_type);
3268
0
      const char *name;
3269
0
      struct bfd_link_hash_entry *h;
3270
3271
      /* Ignore symbols that are not externally visible.  This is an
3272
   optimization only, as we check the type more thoroughly
3273
   below.  */
3274
0
      if (((type & N_EXT) == 0
3275
0
     || (type & N_STAB) != 0
3276
0
     || type == N_FN)
3277
0
    && type != N_WEAKA
3278
0
    && type != N_WEAKT
3279
0
    && type != N_WEAKD
3280
0
    && type != N_WEAKB)
3281
0
  {
3282
0
    if (type == N_WARNING
3283
0
        || type == N_INDR)
3284
0
      ++p;
3285
0
    continue;
3286
0
  }
3287
3288
0
      name = strings + GET_WORD (abfd, p->e_strx);
3289
0
      h = bfd_link_hash_lookup (info->hash, name, false, false, true);
3290
3291
      /* We are only interested in symbols that are currently
3292
   undefined or common.  */
3293
0
      if (h == NULL
3294
0
    || (h->type != bfd_link_hash_undefined
3295
0
        && h->type != bfd_link_hash_common))
3296
0
  {
3297
0
    if (type == (N_INDR | N_EXT))
3298
0
      ++p;
3299
0
    continue;
3300
0
  }
3301
3302
0
      if (type == (N_TEXT | N_EXT)
3303
0
    || type == (N_DATA | N_EXT)
3304
0
    || type == (N_BSS | N_EXT)
3305
0
    || type == (N_ABS | N_EXT)
3306
0
    || type == (N_INDR | N_EXT))
3307
0
  {
3308
    /* This object file defines this symbol.  We must link it
3309
       in.  This is true regardless of whether the current
3310
       definition of the symbol is undefined or common.
3311
3312
       If the current definition is common, we have a case in
3313
       which we have already seen an object file including:
3314
     int a;
3315
       and this object file from the archive includes:
3316
     int a = 5;
3317
       In such a case, whether to include this object is target
3318
       dependant for backward compatibility.
3319
3320
       FIXME: The SunOS 4.1.3 linker will pull in the archive
3321
       element if the symbol is defined in the .data section,
3322
       but not if it is defined in the .text section.  That
3323
       seems a bit crazy to me, and it has not been implemented
3324
       yet.  However, it might be correct.  */
3325
0
    if (h->type == bfd_link_hash_common)
3326
0
      {
3327
0
        int skip = 0;
3328
3329
0
        switch (info->common_skip_ar_symbols)
3330
0
    {
3331
0
    case bfd_link_common_skip_none:
3332
0
      break;
3333
0
    case bfd_link_common_skip_text:
3334
0
      skip = (type == (N_TEXT | N_EXT));
3335
0
      break;
3336
0
    case bfd_link_common_skip_data:
3337
0
      skip = (type == (N_DATA | N_EXT));
3338
0
      break;
3339
0
    case bfd_link_common_skip_all:
3340
0
      skip = 1;
3341
0
      break;
3342
0
    }
3343
3344
0
        if (skip)
3345
0
    continue;
3346
0
      }
3347
3348
0
    if (!(*info->callbacks
3349
0
    ->add_archive_element) (info, abfd, name, subsbfd))
3350
0
      return false;
3351
0
    *pneeded = true;
3352
0
    return true;
3353
0
  }
3354
3355
0
      if (type == (N_UNDF | N_EXT))
3356
0
  {
3357
0
    bfd_vma value;
3358
3359
0
    value = GET_WORD (abfd, p->e_value);
3360
0
    if (value != 0)
3361
0
      {
3362
        /* This symbol is common in the object from the archive
3363
     file.  */
3364
0
        if (h->type == bfd_link_hash_undefined)
3365
0
    {
3366
0
      bfd *symbfd;
3367
0
      unsigned int power;
3368
3369
0
      symbfd = h->u.undef.abfd;
3370
0
      if (symbfd == NULL)
3371
0
        {
3372
          /* This symbol was created as undefined from
3373
       outside BFD.  We assume that we should link
3374
       in the object file.  This is done for the -u
3375
       option in the linker.  */
3376
0
          if (!(*info->callbacks
3377
0
          ->add_archive_element) (info, abfd, name, subsbfd))
3378
0
      return false;
3379
0
          *pneeded = true;
3380
0
          return true;
3381
0
        }
3382
      /* Turn the current link symbol into a common
3383
         symbol.  It is already on the undefs list.  */
3384
0
      h->type = bfd_link_hash_common;
3385
0
      h->u.c.p = (struct bfd_link_hash_common_entry *)
3386
0
        bfd_hash_allocate (&info->hash->table,
3387
0
               sizeof (struct bfd_link_hash_common_entry));
3388
0
      if (h->u.c.p == NULL)
3389
0
        return false;
3390
3391
0
      h->u.c.size = value;
3392
3393
      /* FIXME: This isn't quite right.  The maximum
3394
         alignment of a common symbol should be set by the
3395
         architecture of the output file, not of the input
3396
         file.  */
3397
0
      power = bfd_log2 (value);
3398
0
      if (power > bfd_get_arch_info (abfd)->section_align_power)
3399
0
        power = bfd_get_arch_info (abfd)->section_align_power;
3400
0
      h->u.c.p->alignment_power = power;
3401
3402
0
      h->u.c.p->section = bfd_make_section_old_way (symbfd,
3403
0
                "COMMON");
3404
0
    }
3405
0
        else
3406
0
    {
3407
      /* Adjust the size of the common symbol if
3408
         necessary.  */
3409
0
      if (value > h->u.c.size)
3410
0
        h->u.c.size = value;
3411
0
    }
3412
0
      }
3413
0
  }
3414
3415
0
      if (type == N_WEAKA
3416
0
    || type == N_WEAKT
3417
0
    || type == N_WEAKD
3418
0
    || type == N_WEAKB)
3419
0
  {
3420
    /* This symbol is weak but defined.  We must pull it in if
3421
       the current link symbol is undefined, but we don't want
3422
       it if the current link symbol is common.  */
3423
0
    if (h->type == bfd_link_hash_undefined)
3424
0
      {
3425
0
        if (!(*info->callbacks
3426
0
        ->add_archive_element) (info, abfd, name, subsbfd))
3427
0
    return false;
3428
0
        *pneeded = true;
3429
0
        return true;
3430
0
      }
3431
0
  }
3432
0
    }
3433
3434
  /* We do not need this object file.  */
3435
0
  return true;
3436
0
}
Unexecuted instantiation: aout-cris.c:aout_link_check_ar_symbols
Unexecuted instantiation: aout-ns32k.c:aout_link_check_ar_symbols
Unexecuted instantiation: aout32.c:aout_link_check_ar_symbols
3437
/* Check a single archive element to see if we need to include it in
3438
   the link.  *PNEEDED is set according to whether this element is
3439
   needed in the link or not.  This is called from
3440
   _bfd_generic_link_add_archive_symbols.  */
3441
3442
static bool
3443
aout_link_check_archive_element (bfd *abfd,
3444
         struct bfd_link_info *info,
3445
         struct bfd_link_hash_entry *h ATTRIBUTE_UNUSED,
3446
         const char *name ATTRIBUTE_UNUSED,
3447
         bool *pneeded)
3448
0
{
3449
0
  bfd *oldbfd;
3450
0
  bool needed;
3451
3452
0
  BFD_ASSERT (bfd_get_flavour (abfd) == bfd_target_aout_flavour);
3453
3454
0
  if (!aout_get_external_symbols (abfd))
3455
0
    return false;
3456
3457
0
  oldbfd = abfd;
3458
0
  if (!aout_link_check_ar_symbols (abfd, info, pneeded, &abfd))
3459
0
    return false;
3460
3461
0
  needed = *pneeded;
3462
0
  if (needed)
3463
0
    {
3464
      /* Potentially, the add_archive_element hook may have set a
3465
   substitute BFD for us.  */
3466
0
      if (abfd != oldbfd)
3467
0
  {
3468
0
    if (!info->keep_memory
3469
0
        && !aout_link_free_symbols (oldbfd))
3470
0
      return false;
3471
0
    if (!aout_get_external_symbols (abfd))
3472
0
      return false;
3473
0
  }
3474
0
      if (!aout_link_add_symbols (abfd, info))
3475
0
  return false;
3476
0
    }
3477
3478
0
  if (!info->keep_memory || !needed)
3479
0
    {
3480
0
      if (!aout_link_free_symbols (abfd))
3481
0
  return false;
3482
0
    }
3483
3484
0
  return true;
3485
0
}
Unexecuted instantiation: aout-cris.c:aout_link_check_archive_element
Unexecuted instantiation: aout-ns32k.c:aout_link_check_archive_element
Unexecuted instantiation: aout32.c:aout_link_check_archive_element
3486
3487
/* Given an a.out BFD, add symbols to the global hash table as
3488
   appropriate.  */
3489
3490
bool
3491
NAME (aout, link_add_symbols) (bfd *abfd, struct bfd_link_info *info)
3492
0
{
3493
0
  switch (bfd_get_format (abfd))
3494
0
    {
3495
0
    case bfd_object:
3496
0
      return aout_link_add_object_symbols (abfd, info);
3497
0
    case bfd_archive:
3498
0
      return _bfd_generic_link_add_archive_symbols
3499
0
  (abfd, info, aout_link_check_archive_element);
3500
0
    default:
3501
0
      bfd_set_error (bfd_error_wrong_format);
3502
0
      return false;
3503
0
    }
3504
0
}
Unexecuted instantiation: cris_aout_32_link_add_symbols
Unexecuted instantiation: ns32kaout_32_link_add_symbols
Unexecuted instantiation: aout_32_link_add_symbols
3505

3506
/* A hash table used for header files with N_BINCL entries.  */
3507
3508
struct aout_link_includes_table
3509
{
3510
  struct bfd_hash_table root;
3511
};
3512
3513
/* A linked list of totals that we have found for a particular header
3514
   file.  */
3515
3516
struct aout_link_includes_totals
3517
{
3518
  struct aout_link_includes_totals *next;
3519
  bfd_vma total;
3520
};
3521
3522
/* An entry in the header file hash table.  */
3523
3524
struct aout_link_includes_entry
3525
{
3526
  struct bfd_hash_entry root;
3527
  /* List of totals we have found for this file.  */
3528
  struct aout_link_includes_totals *totals;
3529
};
3530
3531
/* Look up an entry in an the header file hash table.  */
3532
3533
#define aout_link_includes_lookup(table, string, create, copy)    \
3534
0
  ((struct aout_link_includes_entry *)          \
3535
0
   bfd_hash_lookup (&(table)->root, (string), (create), (copy)))
3536
3537
/* During the final link step we need to pass around a bunch of
3538
   information, so we do it in an instance of this structure.  */
3539
3540
struct aout_final_link_info
3541
{
3542
  /* General link information.  */
3543
  struct bfd_link_info *info;
3544
  /* Output bfd.  */
3545
  bfd *output_bfd;
3546
  /* Reloc file positions.  */
3547
  file_ptr treloff, dreloff;
3548
  /* File position of symbols.  */
3549
  file_ptr symoff;
3550
  /* String table.  */
3551
  struct bfd_strtab_hash *strtab;
3552
  /* Header file hash table.  */
3553
  struct aout_link_includes_table includes;
3554
  /* A buffer large enough to hold the contents of any section.  */
3555
  bfd_byte *contents;
3556
  /* A buffer large enough to hold the relocs of any section.  */
3557
  void * relocs;
3558
  /* A buffer large enough to hold the symbol map of any input BFD.  */
3559
  int *symbol_map;
3560
  /* A buffer large enough to hold output symbols of any input BFD.  */
3561
  struct external_nlist *output_syms;
3562
};
3563
3564
/* The function to create a new entry in the header file hash table.  */
3565
3566
static struct bfd_hash_entry *
3567
aout_link_includes_newfunc (struct bfd_hash_entry *entry,
3568
          struct bfd_hash_table *table,
3569
          const char *string)
3570
0
{
3571
0
  struct aout_link_includes_entry *ret =
3572
0
    (struct aout_link_includes_entry *) entry;
3573
3574
  /* Allocate the structure if it has not already been allocated by a
3575
     subclass.  */
3576
0
  if (ret == NULL)
3577
0
    ret = (struct aout_link_includes_entry *)
3578
0
  bfd_hash_allocate (table, sizeof (* ret));
3579
0
  if (ret == NULL)
3580
0
    return NULL;
3581
3582
  /* Call the allocation method of the superclass.  */
3583
0
  ret = ((struct aout_link_includes_entry *)
3584
0
   bfd_hash_newfunc ((struct bfd_hash_entry *) ret, table, string));
3585
0
  if (ret)
3586
0
    {
3587
      /* Set local fields.  */
3588
0
      ret->totals = NULL;
3589
0
    }
3590
3591
0
  return (struct bfd_hash_entry *) ret;
3592
0
}
Unexecuted instantiation: aout-cris.c:aout_link_includes_newfunc
Unexecuted instantiation: aout-ns32k.c:aout_link_includes_newfunc
Unexecuted instantiation: aout32.c:aout_link_includes_newfunc
3593
3594
/* Write out a symbol that was not associated with an a.out input
3595
   object.  */
3596
3597
static bool
3598
aout_link_write_other_symbol (struct bfd_hash_entry *bh, void *data)
3599
0
{
3600
0
  struct aout_link_hash_entry *h = (struct aout_link_hash_entry *) bh;
3601
0
  struct aout_final_link_info *flaginfo = (struct aout_final_link_info *) data;
3602
0
  bfd *output_bfd;
3603
0
  int type;
3604
0
  bfd_vma val;
3605
0
  struct external_nlist outsym;
3606
0
  bfd_size_type indx;
3607
0
  size_t amt;
3608
3609
0
  if (h->root.type == bfd_link_hash_warning)
3610
0
    {
3611
0
      h = (struct aout_link_hash_entry *) h->root.u.i.link;
3612
0
      if (h->root.type == bfd_link_hash_new)
3613
0
  return true;
3614
0
    }
3615
3616
0
  output_bfd = flaginfo->output_bfd;
3617
3618
0
  if (aout_backend_info (output_bfd)->write_dynamic_symbol != NULL)
3619
0
    {
3620
0
      if (! ((*aout_backend_info (output_bfd)->write_dynamic_symbol)
3621
0
       (output_bfd, flaginfo->info, h)))
3622
0
  {
3623
    /* FIXME: No way to handle errors.  */
3624
0
    abort ();
3625
0
  }
3626
0
    }
3627
3628
0
  if (h->written)
3629
0
    return true;
3630
3631
0
  h->written = true;
3632
3633
  /* An indx of -2 means the symbol must be written.  */
3634
0
  if (h->indx != -2
3635
0
      && (flaginfo->info->strip == strip_all
3636
0
    || (flaginfo->info->strip == strip_some
3637
0
        && bfd_hash_lookup (flaginfo->info->keep_hash, h->root.root.string,
3638
0
          false, false) == NULL)))
3639
0
    return true;
3640
3641
0
  switch (h->root.type)
3642
0
    {
3643
0
    default:
3644
0
    case bfd_link_hash_warning:
3645
0
      abort ();
3646
      /* Avoid variable not initialized warnings.  */
3647
0
      return true;
3648
0
    case bfd_link_hash_new:
3649
      /* This can happen for set symbols when sets are not being
3650
   built.  */
3651
0
      return true;
3652
0
    case bfd_link_hash_undefined:
3653
0
      type = N_UNDF | N_EXT;
3654
0
      val = 0;
3655
0
      break;
3656
0
    case bfd_link_hash_defined:
3657
0
    case bfd_link_hash_defweak:
3658
0
      {
3659
0
  asection *sec;
3660
3661
0
  sec = h->root.u.def.section->output_section;
3662
0
  BFD_ASSERT (bfd_is_abs_section (sec)
3663
0
        || sec->owner == output_bfd);
3664
0
  if (sec == obj_textsec (output_bfd))
3665
0
    type = h->root.type == bfd_link_hash_defined ? N_TEXT : N_WEAKT;
3666
0
  else if (sec == obj_datasec (output_bfd))
3667
0
    type = h->root.type == bfd_link_hash_defined ? N_DATA : N_WEAKD;
3668
0
  else if (sec == obj_bsssec (output_bfd))
3669
0
    type = h->root.type == bfd_link_hash_defined ? N_BSS : N_WEAKB;
3670
0
  else
3671
0
    type = h->root.type == bfd_link_hash_defined ? N_ABS : N_WEAKA;
3672
0
  type |= N_EXT;
3673
0
  val = (h->root.u.def.value
3674
0
         + sec->vma
3675
0
         + h->root.u.def.section->output_offset);
3676
0
      }
3677
0
      break;
3678
0
    case bfd_link_hash_common:
3679
0
      type = N_UNDF | N_EXT;
3680
0
      val = h->root.u.c.size;
3681
0
      break;
3682
0
    case bfd_link_hash_undefweak:
3683
0
      type = N_WEAKU;
3684
0
      val = 0;
3685
0
      break;
3686
0
    case bfd_link_hash_indirect:
3687
      /* We ignore these symbols, since the indirected symbol is
3688
   already in the hash table.  */
3689
0
      return true;
3690
0
    }
3691
3692
0
  H_PUT_8 (output_bfd, type, outsym.e_type);
3693
0
  H_PUT_8 (output_bfd, 0, outsym.e_other);
3694
0
  H_PUT_16 (output_bfd, 0, outsym.e_desc);
3695
0
  indx = add_to_stringtab (output_bfd, flaginfo->strtab, h->root.root.string,
3696
0
         false);
3697
0
  if (indx == - (bfd_size_type) 1)
3698
    /* FIXME: No way to handle errors.  */
3699
0
    abort ();
3700
3701
0
  PUT_WORD (output_bfd, indx, outsym.e_strx);
3702
0
  PUT_WORD (output_bfd, val, outsym.e_value);
3703
3704
0
  amt = EXTERNAL_NLIST_SIZE;
3705
0
  if (bfd_seek (output_bfd, flaginfo->symoff, SEEK_SET) != 0
3706
0
      || bfd_write (&outsym, amt, output_bfd) != amt)
3707
    /* FIXME: No way to handle errors.  */
3708
0
    abort ();
3709
3710
0
  flaginfo->symoff += EXTERNAL_NLIST_SIZE;
3711
0
  h->indx = obj_aout_external_sym_count (output_bfd);
3712
0
  ++obj_aout_external_sym_count (output_bfd);
3713
3714
0
  return true;
3715
0
}
Unexecuted instantiation: aout-cris.c:aout_link_write_other_symbol
Unexecuted instantiation: aout-ns32k.c:aout_link_write_other_symbol
Unexecuted instantiation: aout32.c:aout_link_write_other_symbol
3716
3717
/* Handle a link order which is supposed to generate a reloc.  */
3718
3719
static bool
3720
aout_link_reloc_link_order (struct aout_final_link_info *flaginfo,
3721
          asection *o,
3722
          struct bfd_link_order *p)
3723
0
{
3724
0
  struct bfd_link_order_reloc *pr;
3725
0
  int r_index;
3726
0
  int r_extern;
3727
0
  reloc_howto_type *howto;
3728
0
  file_ptr *reloff_ptr = NULL;
3729
0
  struct reloc_std_external srel;
3730
0
  struct reloc_ext_external erel;
3731
0
  void * rel_ptr;
3732
0
  size_t amt;
3733
3734
0
  pr = p->u.reloc.p;
3735
3736
0
  if (p->type == bfd_section_reloc_link_order)
3737
0
    {
3738
0
      r_extern = 0;
3739
0
      if (bfd_is_abs_section (pr->u.section))
3740
0
  r_index = N_ABS | N_EXT;
3741
0
      else
3742
0
  {
3743
0
    BFD_ASSERT (pr->u.section->owner == flaginfo->output_bfd);
3744
0
    r_index = pr->u.section->target_index;
3745
0
  }
3746
0
    }
3747
0
  else
3748
0
    {
3749
0
      struct aout_link_hash_entry *h;
3750
3751
0
      BFD_ASSERT (p->type == bfd_symbol_reloc_link_order);
3752
0
      r_extern = 1;
3753
0
      h = ((struct aout_link_hash_entry *)
3754
0
     bfd_wrapped_link_hash_lookup (flaginfo->output_bfd, flaginfo->info,
3755
0
           pr->u.name, false, false, true));
3756
0
      if (h != NULL
3757
0
    && h->indx >= 0)
3758
0
  r_index = h->indx;
3759
0
      else if (h != NULL)
3760
0
  {
3761
    /* We decided to strip this symbol, but it turns out that we
3762
       can't.  Note that we lose the other and desc information
3763
       here.  I don't think that will ever matter for a global
3764
       symbol.  */
3765
0
    h->indx = -2;
3766
0
    h->written = false;
3767
0
    if (!aout_link_write_other_symbol (&h->root.root, flaginfo))
3768
0
      return false;
3769
0
    r_index = h->indx;
3770
0
  }
3771
0
      else
3772
0
  {
3773
0
    (*flaginfo->info->callbacks->unattached_reloc)
3774
0
      (flaginfo->info, pr->u.name, NULL, NULL, (bfd_vma) 0);
3775
0
    r_index = 0;
3776
0
  }
3777
0
    }
3778
3779
0
  howto = bfd_reloc_type_lookup (flaginfo->output_bfd, pr->reloc);
3780
0
  if (howto == 0)
3781
0
    {
3782
0
      bfd_set_error (bfd_error_bad_value);
3783
0
      return false;
3784
0
    }
3785
3786
0
  if (o == obj_textsec (flaginfo->output_bfd))
3787
0
    reloff_ptr = &flaginfo->treloff;
3788
0
  else if (o == obj_datasec (flaginfo->output_bfd))
3789
0
    reloff_ptr = &flaginfo->dreloff;
3790
0
  else
3791
0
    abort ();
3792
3793
0
  if (obj_reloc_entry_size (flaginfo->output_bfd) == RELOC_STD_SIZE)
3794
0
    {
3795
#ifdef MY_put_reloc
3796
0
      MY_put_reloc (flaginfo->output_bfd, r_extern, r_index, p->offset, howto,
3797
        &srel);
3798
#else
3799
      {
3800
  int r_pcrel;
3801
  int r_baserel;
3802
  int r_jmptable;
3803
  int r_relative;
3804
  unsigned int r_length;
3805
3806
  r_pcrel = (int) howto->pc_relative;
3807
  r_baserel = (howto->type & 8) != 0;
3808
  r_jmptable = (howto->type & 16) != 0;
3809
  r_relative = (howto->type & 32) != 0;
3810
  r_length = bfd_log2 (bfd_get_reloc_size (howto));
3811
3812
0
  PUT_WORD (flaginfo->output_bfd, p->offset, srel.r_address);
3813
0
  if (bfd_header_big_endian (flaginfo->output_bfd))
3814
0
    {
3815
0
      srel.r_index[0] = r_index >> 16;
3816
0
      srel.r_index[1] = r_index >> 8;
3817
0
      srel.r_index[2] = r_index;
3818
0
      srel.r_type[0] =
3819
0
        ((r_extern ?     RELOC_STD_BITS_EXTERN_BIG : 0)
3820
0
         | (r_pcrel ?    RELOC_STD_BITS_PCREL_BIG : 0)
3821
0
         | (r_baserel ?  RELOC_STD_BITS_BASEREL_BIG : 0)
3822
0
         | (r_jmptable ? RELOC_STD_BITS_JMPTABLE_BIG : 0)
3823
0
         | (r_relative ? RELOC_STD_BITS_RELATIVE_BIG : 0)
3824
0
         | (r_length <<  RELOC_STD_BITS_LENGTH_SH_BIG));
3825
0
    }
3826
0
  else
3827
0
    {
3828
0
      srel.r_index[2] = r_index >> 16;
3829
0
      srel.r_index[1] = r_index >> 8;
3830
0
      srel.r_index[0] = r_index;
3831
0
      srel.r_type[0] =
3832
0
        ((r_extern ?     RELOC_STD_BITS_EXTERN_LITTLE : 0)
3833
0
         | (r_pcrel ?    RELOC_STD_BITS_PCREL_LITTLE : 0)
3834
0
         | (r_baserel ?  RELOC_STD_BITS_BASEREL_LITTLE : 0)
3835
0
         | (r_jmptable ? RELOC_STD_BITS_JMPTABLE_LITTLE : 0)
3836
0
         | (r_relative ? RELOC_STD_BITS_RELATIVE_LITTLE : 0)
3837
0
         | (r_length <<  RELOC_STD_BITS_LENGTH_SH_LITTLE));
3838
0
    }
3839
      }
3840
#endif
3841
0
      rel_ptr = (void *) &srel;
3842
3843
      /* We have to write the addend into the object file, since
3844
   standard a.out relocs are in place.  It would be more
3845
   reliable if we had the current contents of the file here,
3846
   rather than assuming zeroes, but we can't read the file since
3847
   it was opened using bfd_openw.  */
3848
0
      if (pr->addend != 0)
3849
0
  {
3850
0
    bfd_size_type size;
3851
0
    bfd_reloc_status_type r;
3852
0
    bfd_byte *buf;
3853
0
    bool ok;
3854
3855
0
    size = bfd_get_reloc_size (howto);
3856
0
    buf = (bfd_byte *) bfd_zmalloc (size);
3857
0
    if (buf == NULL && size != 0)
3858
0
      return false;
3859
0
    r = MY_relocate_contents (howto, flaginfo->output_bfd,
3860
0
            (bfd_vma) pr->addend, buf);
3861
0
    switch (r)
3862
0
      {
3863
0
      case bfd_reloc_ok:
3864
0
        break;
3865
0
      default:
3866
0
      case bfd_reloc_outofrange:
3867
0
        abort ();
3868
0
      case bfd_reloc_overflow:
3869
0
        (*flaginfo->info->callbacks->reloc_overflow)
3870
0
    (flaginfo->info, NULL,
3871
0
     (p->type == bfd_section_reloc_link_order
3872
0
      ? bfd_section_name (pr->u.section)
3873
0
      : pr->u.name),
3874
0
     howto->name, pr->addend, NULL, NULL, (bfd_vma) 0);
3875
0
        break;
3876
0
      }
3877
0
    ok = bfd_set_section_contents (flaginfo->output_bfd, o, (void *) buf,
3878
0
           (file_ptr) p->offset, size);
3879
0
    free (buf);
3880
0
    if (! ok)
3881
0
      return false;
3882
0
  }
3883
0
    }
3884
0
  else
3885
0
    {
3886
#ifdef MY_put_ext_reloc
3887
      MY_put_ext_reloc (flaginfo->output_bfd, r_extern, r_index, p->offset,
3888
      howto, &erel, pr->addend);
3889
#else
3890
0
      PUT_WORD (flaginfo->output_bfd, p->offset, erel.r_address);
3891
3892
0
      if (bfd_header_big_endian (flaginfo->output_bfd))
3893
0
  {
3894
0
    erel.r_index[0] = r_index >> 16;
3895
0
    erel.r_index[1] = r_index >> 8;
3896
0
    erel.r_index[2] = r_index;
3897
0
    erel.r_type[0] =
3898
0
      ((r_extern ? RELOC_EXT_BITS_EXTERN_BIG : 0)
3899
0
       | (howto->type << RELOC_EXT_BITS_TYPE_SH_BIG));
3900
0
  }
3901
0
      else
3902
0
  {
3903
0
    erel.r_index[2] = r_index >> 16;
3904
0
    erel.r_index[1] = r_index >> 8;
3905
0
    erel.r_index[0] = r_index;
3906
0
    erel.r_type[0] =
3907
0
      (r_extern ? RELOC_EXT_BITS_EXTERN_LITTLE : 0)
3908
0
        | (howto->type << RELOC_EXT_BITS_TYPE_SH_LITTLE);
3909
0
  }
3910
3911
0
      PUT_WORD (flaginfo->output_bfd, (bfd_vma) pr->addend, erel.r_addend);
3912
0
#endif /* MY_put_ext_reloc */
3913
3914
0
      rel_ptr = (void *) &erel;
3915
0
    }
3916
3917
0
  amt = obj_reloc_entry_size (flaginfo->output_bfd);
3918
0
  if (bfd_seek (flaginfo->output_bfd, *reloff_ptr, SEEK_SET) != 0
3919
0
      || bfd_write (rel_ptr, amt, flaginfo->output_bfd) != amt)
3920
0
    return false;
3921
3922
0
  *reloff_ptr += obj_reloc_entry_size (flaginfo->output_bfd);
3923
3924
  /* Assert that the relocs have not run into the symbols, and that n
3925
     the text relocs have not run into the data relocs.  */
3926
0
  BFD_ASSERT (*reloff_ptr <= obj_sym_filepos (flaginfo->output_bfd)
3927
0
        && (reloff_ptr != &flaginfo->treloff
3928
0
      || (*reloff_ptr
3929
0
          <= obj_datasec (flaginfo->output_bfd)->rel_filepos)));
3930
3931
0
  return true;
3932
0
}
Unexecuted instantiation: aout-cris.c:aout_link_reloc_link_order
Unexecuted instantiation: aout-ns32k.c:aout_link_reloc_link_order
Unexecuted instantiation: aout32.c:aout_link_reloc_link_order
3933
3934
/* Get the section corresponding to a reloc index.  */
3935
3936
static inline asection *
3937
aout_reloc_index_to_section (bfd *abfd, int indx)
3938
0
{
3939
0
  switch (indx & N_TYPE)
3940
0
    {
3941
0
    case N_TEXT:   return obj_textsec (abfd);
3942
0
    case N_DATA:   return obj_datasec (abfd);
3943
0
    case N_BSS:    return obj_bsssec (abfd);
3944
0
    case N_ABS:
3945
0
    case N_UNDF:   return bfd_abs_section_ptr;
3946
0
    default:       abort ();
3947
0
    }
3948
0
  return NULL;
3949
0
}
Unexecuted instantiation: aout-cris.c:aout_reloc_index_to_section
Unexecuted instantiation: aout-ns32k.c:aout_reloc_index_to_section
Unexecuted instantiation: aout32.c:aout_reloc_index_to_section
3950
3951
/* Relocate an a.out section using standard a.out relocs.  */
3952
3953
static bool
3954
aout_link_input_section_std (struct aout_final_link_info *flaginfo,
3955
           bfd *input_bfd,
3956
           asection *input_section,
3957
           struct reloc_std_external *relocs,
3958
           bfd_size_type rel_size,
3959
           bfd_byte *contents)
3960
0
{
3961
0
  bool (*check_dynamic_reloc)
3962
0
    (struct bfd_link_info *, bfd *, asection *,
3963
0
     struct aout_link_hash_entry *, void *, bfd_byte *, bool *, bfd_vma *);
3964
0
  bfd *output_bfd;
3965
0
  bool relocatable;
3966
0
  struct external_nlist *syms;
3967
0
  char *strings;
3968
0
  struct aout_link_hash_entry **sym_hashes;
3969
0
  int *symbol_map;
3970
0
  bfd_size_type reloc_count;
3971
0
  struct reloc_std_external *rel;
3972
0
  struct reloc_std_external *rel_end;
3973
3974
0
  output_bfd = flaginfo->output_bfd;
3975
0
  check_dynamic_reloc = aout_backend_info (output_bfd)->check_dynamic_reloc;
3976
3977
0
  BFD_ASSERT (obj_reloc_entry_size (input_bfd) == RELOC_STD_SIZE);
3978
0
  BFD_ASSERT (input_bfd->xvec->header_byteorder
3979
0
        == output_bfd->xvec->header_byteorder);
3980
3981
0
  relocatable = bfd_link_relocatable (flaginfo->info);
3982
0
  syms = obj_aout_external_syms (input_bfd);
3983
0
  strings = obj_aout_external_strings (input_bfd);
3984
0
  sym_hashes = obj_aout_sym_hashes (input_bfd);
3985
0
  symbol_map = flaginfo->symbol_map;
3986
3987
0
  reloc_count = rel_size / RELOC_STD_SIZE;
3988
0
  rel = relocs;
3989
0
  rel_end = rel + reloc_count;
3990
0
  for (; rel < rel_end; rel++)
3991
0
    {
3992
0
      bfd_vma r_addr;
3993
0
      unsigned int r_index;
3994
0
      int r_extern;
3995
0
      int r_pcrel;
3996
0
      int r_baserel = 0;
3997
0
      reloc_howto_type *howto;
3998
0
      struct aout_link_hash_entry *h = NULL;
3999
0
      bfd_vma relocation;
4000
0
      bfd_reloc_status_type r;
4001
4002
0
      r_addr = GET_SWORD (input_bfd, rel->r_address);
4003
4004
#ifdef MY_reloc_howto
4005
0
      howto = MY_reloc_howto (input_bfd, rel, r_index, r_extern, r_pcrel);
4006
#else
4007
      {
4008
  int r_jmptable;
4009
  int r_relative;
4010
  int r_length;
4011
  unsigned int howto_idx;
4012
4013
0
  if (bfd_header_big_endian (input_bfd))
4014
0
    {
4015
0
      r_index   =  (((unsigned int) rel->r_index[0] << 16)
4016
0
        | ((unsigned int) rel->r_index[1] << 8)
4017
0
        | rel->r_index[2]);
4018
0
      r_extern  = (0 != (rel->r_type[0] & RELOC_STD_BITS_EXTERN_BIG));
4019
0
      r_pcrel   = (0 != (rel->r_type[0] & RELOC_STD_BITS_PCREL_BIG));
4020
0
      r_baserel = (0 != (rel->r_type[0] & RELOC_STD_BITS_BASEREL_BIG));
4021
0
      r_jmptable= (0 != (rel->r_type[0] & RELOC_STD_BITS_JMPTABLE_BIG));
4022
0
      r_relative= (0 != (rel->r_type[0] & RELOC_STD_BITS_RELATIVE_BIG));
4023
0
      r_length  = ((rel->r_type[0] & RELOC_STD_BITS_LENGTH_BIG)
4024
0
       >> RELOC_STD_BITS_LENGTH_SH_BIG);
4025
0
    }
4026
0
  else
4027
0
    {
4028
0
      r_index   = (((unsigned int) rel->r_index[2] << 16)
4029
0
       | ((unsigned int) rel->r_index[1] << 8)
4030
0
       | rel->r_index[0]);
4031
0
      r_extern  = (0 != (rel->r_type[0] & RELOC_STD_BITS_EXTERN_LITTLE));
4032
0
      r_pcrel   = (0 != (rel->r_type[0] & RELOC_STD_BITS_PCREL_LITTLE));
4033
0
      r_baserel = (0 != (rel->r_type[0]
4034
0
             & RELOC_STD_BITS_BASEREL_LITTLE));
4035
0
      r_jmptable= (0 != (rel->r_type[0]
4036
0
             & RELOC_STD_BITS_JMPTABLE_LITTLE));
4037
0
      r_relative= (0 != (rel->r_type[0]
4038
0
             & RELOC_STD_BITS_RELATIVE_LITTLE));
4039
0
      r_length  = ((rel->r_type[0] & RELOC_STD_BITS_LENGTH_LITTLE)
4040
0
       >> RELOC_STD_BITS_LENGTH_SH_LITTLE);
4041
0
    }
4042
4043
  howto_idx = (r_length + 4 * r_pcrel + 8 * r_baserel
4044
         + 16 * r_jmptable + 32 * r_relative);
4045
0
  if (howto_idx < TABLE_SIZE (howto_table_std))
4046
0
    howto = howto_table_std + howto_idx;
4047
0
  else
4048
0
    howto = NULL;
4049
      }
4050
#endif
4051
4052
0
      if (howto == NULL)
4053
0
  {
4054
0
    _bfd_error_handler (_("%pB: unsupported relocation type"),
4055
0
            input_bfd);
4056
0
    bfd_set_error (bfd_error_bad_value);
4057
0
    return false;
4058
0
  }
4059
4060
0
      if (relocatable)
4061
0
  {
4062
    /* We are generating a relocatable output file, and must
4063
       modify the reloc accordingly.  */
4064
0
    if (r_extern)
4065
0
      {
4066
        /* If we know the symbol this relocation is against,
4067
     convert it into a relocation against a section.  This
4068
     is what the native linker does.  */
4069
0
        h = sym_hashes[r_index];
4070
0
        if (h != NULL
4071
0
      && (h->root.type == bfd_link_hash_defined
4072
0
          || h->root.type == bfd_link_hash_defweak))
4073
0
    {
4074
0
      asection *output_section;
4075
4076
      /* Change the r_extern value.  */
4077
0
      if (bfd_header_big_endian (output_bfd))
4078
0
        rel->r_type[0] &=~ RELOC_STD_BITS_EXTERN_BIG;
4079
0
      else
4080
0
        rel->r_type[0] &=~ RELOC_STD_BITS_EXTERN_LITTLE;
4081
4082
      /* Compute a new r_index.  */
4083
0
      output_section = h->root.u.def.section->output_section;
4084
0
      if (output_section == obj_textsec (output_bfd))
4085
0
        r_index = N_TEXT;
4086
0
      else if (output_section == obj_datasec (output_bfd))
4087
0
        r_index = N_DATA;
4088
0
      else if (output_section == obj_bsssec (output_bfd))
4089
0
        r_index = N_BSS;
4090
0
      else
4091
0
        r_index = N_ABS;
4092
4093
      /* Add the symbol value and the section VMA to the
4094
         addend stored in the contents.  */
4095
0
      relocation = (h->root.u.def.value
4096
0
        + output_section->vma
4097
0
        + h->root.u.def.section->output_offset);
4098
0
    }
4099
0
        else
4100
0
    {
4101
      /* We must change r_index according to the symbol
4102
         map.  */
4103
0
      r_index = symbol_map[r_index];
4104
4105
0
      if (r_index == -1u)
4106
0
        {
4107
0
          if (h != NULL)
4108
0
      {
4109
        /* We decided to strip this symbol, but it
4110
           turns out that we can't.  Note that we
4111
           lose the other and desc information here.
4112
           I don't think that will ever matter for a
4113
           global symbol.  */
4114
0
        if (h->indx < 0)
4115
0
          {
4116
0
            h->indx = -2;
4117
0
            h->written = false;
4118
0
            if (!aout_link_write_other_symbol (&h->root.root,
4119
0
                 flaginfo))
4120
0
        return false;
4121
0
          }
4122
0
        r_index = h->indx;
4123
0
      }
4124
0
          else
4125
0
      {
4126
0
        const char *name;
4127
4128
0
        name = strings + GET_WORD (input_bfd,
4129
0
                 syms[r_index].e_strx);
4130
0
        (*flaginfo->info->callbacks->unattached_reloc)
4131
0
          (flaginfo->info, name,
4132
0
           input_bfd, input_section, r_addr);
4133
0
        r_index = 0;
4134
0
      }
4135
0
        }
4136
4137
0
      relocation = 0;
4138
0
    }
4139
4140
        /* Write out the new r_index value.  */
4141
0
        if (bfd_header_big_endian (output_bfd))
4142
0
    {
4143
0
      rel->r_index[0] = r_index >> 16;
4144
0
      rel->r_index[1] = r_index >> 8;
4145
0
      rel->r_index[2] = r_index;
4146
0
    }
4147
0
        else
4148
0
    {
4149
0
      rel->r_index[2] = r_index >> 16;
4150
0
      rel->r_index[1] = r_index >> 8;
4151
0
      rel->r_index[0] = r_index;
4152
0
    }
4153
0
      }
4154
0
    else
4155
0
      {
4156
0
        asection *section;
4157
4158
        /* This is a relocation against a section.  We must
4159
     adjust by the amount that the section moved.  */
4160
0
        section = aout_reloc_index_to_section (input_bfd, r_index);
4161
0
        relocation = (section->output_section->vma
4162
0
          + section->output_offset
4163
0
          - section->vma);
4164
0
      }
4165
4166
    /* Change the address of the relocation.  */
4167
0
    PUT_WORD (output_bfd,
4168
0
        r_addr + input_section->output_offset,
4169
0
        rel->r_address);
4170
4171
    /* Adjust a PC relative relocation by removing the reference
4172
       to the original address in the section and including the
4173
       reference to the new address.  */
4174
0
    if (r_pcrel)
4175
0
      relocation -= (input_section->output_section->vma
4176
0
         + input_section->output_offset
4177
0
         - input_section->vma);
4178
4179
#ifdef MY_relocatable_reloc
4180
    MY_relocatable_reloc (howto, output_bfd, rel, relocation, r_addr);
4181
#endif
4182
4183
0
    if (relocation == 0)
4184
0
      r = bfd_reloc_ok;
4185
0
    else
4186
0
      r = MY_relocate_contents (howto,
4187
0
          input_bfd, relocation,
4188
0
          contents + r_addr);
4189
0
  }
4190
0
      else
4191
0
  {
4192
0
    bool hundef;
4193
4194
    /* We are generating an executable, and must do a full
4195
       relocation.  */
4196
0
    hundef = false;
4197
4198
0
    if (r_extern)
4199
0
      {
4200
0
        h = sym_hashes[r_index];
4201
4202
0
        if (h != NULL
4203
0
      && (h->root.type == bfd_link_hash_defined
4204
0
          || h->root.type == bfd_link_hash_defweak))
4205
0
    {
4206
0
      relocation = (h->root.u.def.value
4207
0
        + h->root.u.def.section->output_section->vma
4208
0
        + h->root.u.def.section->output_offset);
4209
0
    }
4210
0
        else if (h != NULL
4211
0
           && h->root.type == bfd_link_hash_undefweak)
4212
0
    relocation = 0;
4213
0
        else
4214
0
    {
4215
0
      hundef = true;
4216
0
      relocation = 0;
4217
0
    }
4218
0
      }
4219
0
    else
4220
0
      {
4221
0
        asection *section;
4222
4223
0
        section = aout_reloc_index_to_section (input_bfd, r_index);
4224
0
        relocation = (section->output_section->vma
4225
0
          + section->output_offset
4226
0
          - section->vma);
4227
0
        if (r_pcrel)
4228
0
    relocation += input_section->vma;
4229
0
      }
4230
4231
0
    if (check_dynamic_reloc != NULL)
4232
0
      {
4233
0
        bool skip;
4234
4235
0
        if (! ((*check_dynamic_reloc)
4236
0
         (flaginfo->info, input_bfd, input_section, h,
4237
0
          (void *) rel, contents, &skip, &relocation)))
4238
0
    return false;
4239
0
        if (skip)
4240
0
    continue;
4241
0
      }
4242
4243
    /* Now warn if a global symbol is undefined.  We could not
4244
       do this earlier, because check_dynamic_reloc might want
4245
       to skip this reloc.  */
4246
0
    if (hundef && ! bfd_link_pic (flaginfo->info) && ! r_baserel)
4247
0
      {
4248
0
        const char *name;
4249
4250
0
        if (h != NULL)
4251
0
    name = h->root.root.string;
4252
0
        else
4253
0
    name = strings + GET_WORD (input_bfd, syms[r_index].e_strx);
4254
0
        (*flaginfo->info->callbacks->undefined_symbol)
4255
0
    (flaginfo->info, name, input_bfd, input_section, r_addr, true);
4256
0
      }
4257
4258
0
    r = MY_final_link_relocate (howto,
4259
0
              input_bfd, input_section,
4260
0
              contents, r_addr, relocation,
4261
0
              (bfd_vma) 0);
4262
0
  }
4263
4264
0
      if (r != bfd_reloc_ok)
4265
0
  {
4266
0
    switch (r)
4267
0
      {
4268
0
      default:
4269
0
      case bfd_reloc_outofrange:
4270
0
        abort ();
4271
0
      case bfd_reloc_overflow:
4272
0
        {
4273
0
    const char *name;
4274
4275
0
    if (h != NULL)
4276
0
      name = NULL;
4277
0
    else if (r_extern)
4278
0
      name = strings + GET_WORD (input_bfd,
4279
0
               syms[r_index].e_strx);
4280
0
    else
4281
0
      {
4282
0
        asection *s;
4283
4284
0
        s = aout_reloc_index_to_section (input_bfd, r_index);
4285
0
        name = bfd_section_name (s);
4286
0
      }
4287
0
    (*flaginfo->info->callbacks->reloc_overflow)
4288
0
      (flaginfo->info, (h ? &h->root : NULL), name, howto->name,
4289
0
       (bfd_vma) 0, input_bfd, input_section, r_addr);
4290
0
        }
4291
0
        break;
4292
0
      }
4293
0
  }
4294
0
    }
4295
4296
0
  return true;
4297
0
}
Unexecuted instantiation: aout-cris.c:aout_link_input_section_std
Unexecuted instantiation: aout-ns32k.c:aout_link_input_section_std
Unexecuted instantiation: aout32.c:aout_link_input_section_std
4298
4299
/* Relocate an a.out section using extended a.out relocs.  */
4300
4301
static bool
4302
aout_link_input_section_ext (struct aout_final_link_info *flaginfo,
4303
           bfd *input_bfd,
4304
           asection *input_section,
4305
           struct reloc_ext_external *relocs,
4306
           bfd_size_type rel_size,
4307
           bfd_byte *contents)
4308
0
{
4309
0
  bool (*check_dynamic_reloc)
4310
0
    (struct bfd_link_info *, bfd *, asection *,
4311
0
     struct aout_link_hash_entry *, void *, bfd_byte *, bool *, bfd_vma *);
4312
0
  bfd *output_bfd;
4313
0
  bool relocatable;
4314
0
  struct external_nlist *syms;
4315
0
  char *strings;
4316
0
  struct aout_link_hash_entry **sym_hashes;
4317
0
  int *symbol_map;
4318
0
  bfd_size_type reloc_count;
4319
0
  struct reloc_ext_external *rel;
4320
0
  struct reloc_ext_external *rel_end;
4321
4322
0
  output_bfd = flaginfo->output_bfd;
4323
0
  check_dynamic_reloc = aout_backend_info (output_bfd)->check_dynamic_reloc;
4324
4325
0
  BFD_ASSERT (obj_reloc_entry_size (input_bfd) == RELOC_EXT_SIZE);
4326
0
  BFD_ASSERT (input_bfd->xvec->header_byteorder
4327
0
        == output_bfd->xvec->header_byteorder);
4328
4329
0
  relocatable = bfd_link_relocatable (flaginfo->info);
4330
0
  syms = obj_aout_external_syms (input_bfd);
4331
0
  strings = obj_aout_external_strings (input_bfd);
4332
0
  sym_hashes = obj_aout_sym_hashes (input_bfd);
4333
0
  symbol_map = flaginfo->symbol_map;
4334
4335
0
  reloc_count = rel_size / RELOC_EXT_SIZE;
4336
0
  rel = relocs;
4337
0
  rel_end = rel + reloc_count;
4338
0
  for (; rel < rel_end; rel++)
4339
0
    {
4340
0
      bfd_vma r_addr;
4341
0
      unsigned int r_index;
4342
0
      int r_extern;
4343
0
      unsigned int r_type;
4344
0
      bfd_vma r_addend;
4345
0
      struct aout_link_hash_entry *h = NULL;
4346
0
      asection *r_section = NULL;
4347
0
      bfd_vma relocation;
4348
4349
0
      r_addr = GET_SWORD (input_bfd, rel->r_address);
4350
4351
0
      if (bfd_header_big_endian (input_bfd))
4352
0
  {
4353
0
    r_index  = (((unsigned int) rel->r_index[0] << 16)
4354
0
          | ((unsigned int) rel->r_index[1] << 8)
4355
0
          | rel->r_index[2]);
4356
0
    r_extern = (0 != (rel->r_type[0] & RELOC_EXT_BITS_EXTERN_BIG));
4357
0
    r_type   = ((rel->r_type[0] & RELOC_EXT_BITS_TYPE_BIG)
4358
0
          >> RELOC_EXT_BITS_TYPE_SH_BIG);
4359
0
  }
4360
0
      else
4361
0
  {
4362
0
    r_index  = (((unsigned int) rel->r_index[2] << 16)
4363
0
          | ((unsigned int) rel->r_index[1] << 8)
4364
0
          | rel->r_index[0]);
4365
0
    r_extern = (0 != (rel->r_type[0] & RELOC_EXT_BITS_EXTERN_LITTLE));
4366
0
    r_type   = ((rel->r_type[0] & RELOC_EXT_BITS_TYPE_LITTLE)
4367
0
          >> RELOC_EXT_BITS_TYPE_SH_LITTLE);
4368
0
  }
4369
4370
0
      r_addend = GET_SWORD (input_bfd, rel->r_addend);
4371
4372
0
      if (r_type >= TABLE_SIZE (howto_table_ext))
4373
0
  {
4374
0
    _bfd_error_handler (_("%pB: unsupported relocation type %#x"),
4375
0
            input_bfd, r_type);
4376
0
    bfd_set_error (bfd_error_bad_value);
4377
0
    return false;
4378
0
  }
4379
4380
0
      if (relocatable)
4381
0
  {
4382
    /* We are generating a relocatable output file, and must
4383
       modify the reloc accordingly.  */
4384
0
    if (r_extern
4385
0
        || r_type == (unsigned int) RELOC_BASE10
4386
0
        || r_type == (unsigned int) RELOC_BASE13
4387
0
        || r_type == (unsigned int) RELOC_BASE22)
4388
0
      {
4389
        /* If we know the symbol this relocation is against,
4390
     convert it into a relocation against a section.  This
4391
     is what the native linker does.  */
4392
0
        if (r_type == (unsigned int) RELOC_BASE10
4393
0
      || r_type == (unsigned int) RELOC_BASE13
4394
0
      || r_type == (unsigned int) RELOC_BASE22)
4395
0
    h = NULL;
4396
0
        else
4397
0
    h = sym_hashes[r_index];
4398
0
        if (h != NULL
4399
0
      && (h->root.type == bfd_link_hash_defined
4400
0
          || h->root.type == bfd_link_hash_defweak))
4401
0
    {
4402
0
      asection *output_section;
4403
4404
      /* Change the r_extern value.  */
4405
0
      if (bfd_header_big_endian (output_bfd))
4406
0
        rel->r_type[0] &=~ RELOC_EXT_BITS_EXTERN_BIG;
4407
0
      else
4408
0
        rel->r_type[0] &=~ RELOC_EXT_BITS_EXTERN_LITTLE;
4409
4410
      /* Compute a new r_index.  */
4411
0
      output_section = h->root.u.def.section->output_section;
4412
0
      if (output_section == obj_textsec (output_bfd))
4413
0
        r_index = N_TEXT;
4414
0
      else if (output_section == obj_datasec (output_bfd))
4415
0
        r_index = N_DATA;
4416
0
      else if (output_section == obj_bsssec (output_bfd))
4417
0
        r_index = N_BSS;
4418
0
      else
4419
0
        r_index = N_ABS;
4420
4421
      /* Add the symbol value and the section VMA to the
4422
         addend.  */
4423
0
      relocation = (h->root.u.def.value
4424
0
        + output_section->vma
4425
0
        + h->root.u.def.section->output_offset);
4426
4427
      /* Now RELOCATION is the VMA of the final
4428
         destination.  If this is a PC relative reloc,
4429
         then ADDEND is the negative of the source VMA.
4430
         We want to set ADDEND to the difference between
4431
         the destination VMA and the source VMA, which
4432
         means we must adjust RELOCATION by the change in
4433
         the source VMA.  This is done below.  */
4434
0
    }
4435
0
        else
4436
0
    {
4437
      /* We must change r_index according to the symbol
4438
         map.  */
4439
0
      r_index = symbol_map[r_index];
4440
4441
0
      if (r_index == -1u)
4442
0
        {
4443
0
          if (h != NULL)
4444
0
      {
4445
        /* We decided to strip this symbol, but it
4446
           turns out that we can't.  Note that we
4447
           lose the other and desc information here.
4448
           I don't think that will ever matter for a
4449
           global symbol.  */
4450
0
        if (h->indx < 0)
4451
0
          {
4452
0
            h->indx = -2;
4453
0
            h->written = false;
4454
0
            if (!aout_link_write_other_symbol (&h->root.root,
4455
0
                 flaginfo))
4456
0
        return false;
4457
0
          }
4458
0
        r_index = h->indx;
4459
0
      }
4460
0
          else
4461
0
      {
4462
0
        const char *name;
4463
4464
0
        name = strings + GET_WORD (input_bfd,
4465
0
                 syms[r_index].e_strx);
4466
0
        (*flaginfo->info->callbacks->unattached_reloc)
4467
0
          (flaginfo->info, name,
4468
0
           input_bfd, input_section, r_addr);
4469
0
        r_index = 0;
4470
0
      }
4471
0
        }
4472
4473
0
      relocation = 0;
4474
4475
      /* If this is a PC relative reloc, then the addend
4476
         is the negative of the source VMA.  We must
4477
         adjust it by the change in the source VMA.  This
4478
         is done below.  */
4479
0
    }
4480
4481
        /* Write out the new r_index value.  */
4482
0
        if (bfd_header_big_endian (output_bfd))
4483
0
    {
4484
0
      rel->r_index[0] = r_index >> 16;
4485
0
      rel->r_index[1] = r_index >> 8;
4486
0
      rel->r_index[2] = r_index;
4487
0
    }
4488
0
        else
4489
0
    {
4490
0
      rel->r_index[2] = r_index >> 16;
4491
0
      rel->r_index[1] = r_index >> 8;
4492
0
      rel->r_index[0] = r_index;
4493
0
    }
4494
0
      }
4495
0
    else
4496
0
      {
4497
        /* This is a relocation against a section.  We must
4498
     adjust by the amount that the section moved.  */
4499
0
        r_section = aout_reloc_index_to_section (input_bfd, r_index);
4500
0
        relocation = (r_section->output_section->vma
4501
0
          + r_section->output_offset
4502
0
          - r_section->vma);
4503
4504
        /* If this is a PC relative reloc, then the addend is
4505
     the difference in VMA between the destination and the
4506
     source.  We have just adjusted for the change in VMA
4507
     of the destination, so we must also adjust by the
4508
     change in VMA of the source.  This is done below.  */
4509
0
      }
4510
4511
    /* As described above, we must always adjust a PC relative
4512
       reloc by the change in VMA of the source.  However, if
4513
       pcrel_offset is set, then the addend does not include the
4514
       location within the section, in which case we don't need
4515
       to adjust anything.  */
4516
0
    if (howto_table_ext[r_type].pc_relative
4517
0
        && ! howto_table_ext[r_type].pcrel_offset)
4518
0
      relocation -= (input_section->output_section->vma
4519
0
         + input_section->output_offset
4520
0
         - input_section->vma);
4521
4522
    /* Change the addend if necessary.  */
4523
0
    if (relocation != 0)
4524
0
      PUT_WORD (output_bfd, r_addend + relocation, rel->r_addend);
4525
4526
    /* Change the address of the relocation.  */
4527
0
    PUT_WORD (output_bfd,
4528
0
        r_addr + input_section->output_offset,
4529
0
        rel->r_address);
4530
0
  }
4531
0
      else
4532
0
  {
4533
0
    bool hundef;
4534
0
    bfd_reloc_status_type r;
4535
4536
    /* We are generating an executable, and must do a full
4537
       relocation.  */
4538
0
    hundef = false;
4539
4540
0
    if (r_extern)
4541
0
      {
4542
0
        h = sym_hashes[r_index];
4543
4544
0
        if (h != NULL
4545
0
      && (h->root.type == bfd_link_hash_defined
4546
0
          || h->root.type == bfd_link_hash_defweak))
4547
0
    {
4548
0
      relocation = (h->root.u.def.value
4549
0
        + h->root.u.def.section->output_section->vma
4550
0
        + h->root.u.def.section->output_offset);
4551
0
    }
4552
0
        else if (h != NULL
4553
0
           && h->root.type == bfd_link_hash_undefweak)
4554
0
    relocation = 0;
4555
0
        else
4556
0
    {
4557
0
      hundef = true;
4558
0
      relocation = 0;
4559
0
    }
4560
0
      }
4561
0
    else if (r_type == (unsigned int) RELOC_BASE10
4562
0
       || r_type == (unsigned int) RELOC_BASE13
4563
0
       || r_type == (unsigned int) RELOC_BASE22)
4564
0
      {
4565
0
        struct external_nlist *sym;
4566
0
        int type;
4567
4568
        /* For base relative relocs, r_index is always an index
4569
     into the symbol table, even if r_extern is 0.  */
4570
0
        sym = syms + r_index;
4571
0
        type = H_GET_8 (input_bfd, sym->e_type);
4572
0
        if ((type & N_TYPE) == N_TEXT
4573
0
      || type == N_WEAKT)
4574
0
    r_section = obj_textsec (input_bfd);
4575
0
        else if ((type & N_TYPE) == N_DATA
4576
0
           || type == N_WEAKD)
4577
0
    r_section = obj_datasec (input_bfd);
4578
0
        else if ((type & N_TYPE) == N_BSS
4579
0
           || type == N_WEAKB)
4580
0
    r_section = obj_bsssec (input_bfd);
4581
0
        else if ((type & N_TYPE) == N_ABS
4582
0
           || type == N_WEAKA)
4583
0
    r_section = bfd_abs_section_ptr;
4584
0
        else
4585
0
    abort ();
4586
0
        relocation = (r_section->output_section->vma
4587
0
          + r_section->output_offset
4588
0
          + (GET_WORD (input_bfd, sym->e_value)
4589
0
             - r_section->vma));
4590
0
      }
4591
0
    else
4592
0
      {
4593
0
        r_section = aout_reloc_index_to_section (input_bfd, r_index);
4594
4595
        /* If this is a PC relative reloc, then R_ADDEND is the
4596
     difference between the two vmas, or
4597
       old_dest_sec + old_dest_off - (old_src_sec + old_src_off)
4598
     where
4599
       old_dest_sec == section->vma
4600
     and
4601
       old_src_sec == input_section->vma
4602
     and
4603
       old_src_off == r_addr
4604
4605
     _bfd_final_link_relocate expects RELOCATION +
4606
     R_ADDEND to be the VMA of the destination minus
4607
     r_addr (the minus r_addr is because this relocation
4608
     is not pcrel_offset, which is a bit confusing and
4609
     should, perhaps, be changed), or
4610
       new_dest_sec
4611
     where
4612
       new_dest_sec == output_section->vma + output_offset
4613
     We arrange for this to happen by setting RELOCATION to
4614
       new_dest_sec + old_src_sec - old_dest_sec
4615
4616
     If this is not a PC relative reloc, then R_ADDEND is
4617
     simply the VMA of the destination, so we set
4618
     RELOCATION to the change in the destination VMA, or
4619
       new_dest_sec - old_dest_sec
4620
     */
4621
0
        relocation = (r_section->output_section->vma
4622
0
          + r_section->output_offset
4623
0
          - r_section->vma);
4624
0
        if (howto_table_ext[r_type].pc_relative)
4625
0
    relocation += input_section->vma;
4626
0
      }
4627
4628
0
    if (check_dynamic_reloc != NULL)
4629
0
      {
4630
0
        bool skip;
4631
4632
0
        if (! ((*check_dynamic_reloc)
4633
0
         (flaginfo->info, input_bfd, input_section, h,
4634
0
          (void *) rel, contents, &skip, &relocation)))
4635
0
    return false;
4636
0
        if (skip)
4637
0
    continue;
4638
0
      }
4639
4640
    /* Now warn if a global symbol is undefined.  We could not
4641
       do this earlier, because check_dynamic_reloc might want
4642
       to skip this reloc.  */
4643
0
    if (hundef
4644
0
        && ! bfd_link_pic (flaginfo->info)
4645
0
        && r_type != (unsigned int) RELOC_BASE10
4646
0
        && r_type != (unsigned int) RELOC_BASE13
4647
0
        && r_type != (unsigned int) RELOC_BASE22)
4648
0
      {
4649
0
        const char *name;
4650
4651
0
        if (h != NULL)
4652
0
    name = h->root.root.string;
4653
0
        else
4654
0
    name = strings + GET_WORD (input_bfd, syms[r_index].e_strx);
4655
0
        (*flaginfo->info->callbacks->undefined_symbol)
4656
0
    (flaginfo->info, name, input_bfd, input_section, r_addr, true);
4657
0
      }
4658
4659
0
    if (r_type != (unsigned int) RELOC_SPARC_REV32)
4660
0
      r = MY_final_link_relocate (howto_table_ext + r_type,
4661
0
          input_bfd, input_section,
4662
0
          contents, r_addr, relocation,
4663
0
          r_addend);
4664
0
    else
4665
0
      {
4666
0
        bfd_vma x;
4667
4668
0
        x = bfd_get_32 (input_bfd, contents + r_addr);
4669
0
        x = x + relocation + r_addend;
4670
0
        bfd_putl32 (/*input_bfd,*/ x, contents + r_addr);
4671
0
        r = bfd_reloc_ok;
4672
0
      }
4673
4674
0
    if (r != bfd_reloc_ok)
4675
0
      {
4676
0
        switch (r)
4677
0
    {
4678
0
    default:
4679
0
    case bfd_reloc_outofrange:
4680
0
      abort ();
4681
0
    case bfd_reloc_overflow:
4682
0
      {
4683
0
        const char *name;
4684
4685
0
        if (h != NULL)
4686
0
          name = NULL;
4687
0
        else if (r_extern
4688
0
           || r_type == (unsigned int) RELOC_BASE10
4689
0
           || r_type == (unsigned int) RELOC_BASE13
4690
0
           || r_type == (unsigned int) RELOC_BASE22)
4691
0
          name = strings + GET_WORD (input_bfd,
4692
0
             syms[r_index].e_strx);
4693
0
        else
4694
0
          {
4695
0
      asection *s;
4696
4697
0
      s = aout_reloc_index_to_section (input_bfd, r_index);
4698
0
      name = bfd_section_name (s);
4699
0
          }
4700
0
        (*flaginfo->info->callbacks->reloc_overflow)
4701
0
          (flaginfo->info, (h ? &h->root : NULL), name,
4702
0
           howto_table_ext[r_type].name,
4703
0
           r_addend, input_bfd, input_section, r_addr);
4704
0
      }
4705
0
      break;
4706
0
    }
4707
0
      }
4708
0
  }
4709
0
    }
4710
4711
0
  return true;
4712
0
}
Unexecuted instantiation: aout-cris.c:aout_link_input_section_ext
Unexecuted instantiation: aout-ns32k.c:aout_link_input_section_ext
Unexecuted instantiation: aout32.c:aout_link_input_section_ext
4713
4714
/* Link an a.out section into the output file.  */
4715
4716
static bool
4717
aout_link_input_section (struct aout_final_link_info *flaginfo,
4718
       bfd *input_bfd,
4719
       asection *input_section,
4720
       file_ptr *reloff_ptr,
4721
       bfd_size_type rel_size)
4722
0
{
4723
0
  bfd_size_type input_size;
4724
0
  void * relocs;
4725
4726
  /* Get the section contents.  */
4727
0
  input_size = input_section->size;
4728
0
  if (! bfd_get_section_contents (input_bfd, input_section,
4729
0
          (void *) flaginfo->contents,
4730
0
          (file_ptr) 0, input_size))
4731
0
    return false;
4732
4733
0
  relocs = flaginfo->relocs;
4734
0
  if (rel_size > 0)
4735
0
    {
4736
0
      if (bfd_seek (input_bfd, input_section->rel_filepos, SEEK_SET) != 0
4737
0
    || bfd_read (relocs, rel_size, input_bfd) != rel_size)
4738
0
  return false;
4739
0
    }
4740
4741
  /* Relocate the section contents.  */
4742
0
  if (obj_reloc_entry_size (input_bfd) == RELOC_STD_SIZE)
4743
0
    {
4744
0
      if (! aout_link_input_section_std (flaginfo, input_bfd, input_section,
4745
0
           (struct reloc_std_external *) relocs,
4746
0
           rel_size, flaginfo->contents))
4747
0
  return false;
4748
0
    }
4749
0
  else
4750
0
    {
4751
0
      if (! aout_link_input_section_ext (flaginfo, input_bfd, input_section,
4752
0
           (struct reloc_ext_external *) relocs,
4753
0
           rel_size, flaginfo->contents))
4754
0
  return false;
4755
0
    }
4756
4757
  /* Write out the section contents.  */
4758
0
  if (! bfd_set_section_contents (flaginfo->output_bfd,
4759
0
          input_section->output_section,
4760
0
          (void *) flaginfo->contents,
4761
0
          (file_ptr) input_section->output_offset,
4762
0
          input_size))
4763
0
    return false;
4764
4765
  /* If we are producing relocatable output, the relocs were
4766
     modified, and we now write them out.  */
4767
0
  if (bfd_link_relocatable (flaginfo->info) && rel_size > 0)
4768
0
    {
4769
0
      if (bfd_seek (flaginfo->output_bfd, *reloff_ptr, SEEK_SET) != 0)
4770
0
  return false;
4771
0
      if (bfd_write (relocs, rel_size, flaginfo->output_bfd) != rel_size)
4772
0
  return false;
4773
0
      *reloff_ptr += rel_size;
4774
4775
      /* Assert that the relocs have not run into the symbols, and
4776
   that if these are the text relocs they have not run into the
4777
   data relocs.  */
4778
0
      BFD_ASSERT (*reloff_ptr <= obj_sym_filepos (flaginfo->output_bfd)
4779
0
      && (reloff_ptr != &flaginfo->treloff
4780
0
          || (*reloff_ptr
4781
0
        <= obj_datasec (flaginfo->output_bfd)->rel_filepos)));
4782
0
    }
4783
4784
0
  return true;
4785
0
}
Unexecuted instantiation: aout-cris.c:aout_link_input_section
Unexecuted instantiation: aout-ns32k.c:aout_link_input_section
Unexecuted instantiation: aout32.c:aout_link_input_section
4786
4787
/* Adjust and write out the symbols for an a.out file.  Set the new
4788
   symbol indices into a symbol_map.  */
4789
4790
static bool
4791
aout_link_write_symbols (struct aout_final_link_info *flaginfo, bfd *input_bfd)
4792
0
{
4793
0
  bfd *output_bfd;
4794
0
  bfd_size_type sym_count;
4795
0
  char *strings;
4796
0
  enum bfd_link_strip strip;
4797
0
  enum bfd_link_discard discard;
4798
0
  struct external_nlist *outsym;
4799
0
  bfd_size_type strtab_index;
4800
0
  struct external_nlist *sym;
4801
0
  struct external_nlist *sym_end;
4802
0
  struct aout_link_hash_entry **sym_hash;
4803
0
  int *symbol_map;
4804
0
  bool pass;
4805
0
  bool skip_next;
4806
4807
0
  output_bfd = flaginfo->output_bfd;
4808
0
  sym_count = obj_aout_external_sym_count (input_bfd);
4809
0
  strings = obj_aout_external_strings (input_bfd);
4810
0
  strip = flaginfo->info->strip;
4811
0
  discard = flaginfo->info->discard;
4812
0
  outsym = flaginfo->output_syms;
4813
4814
  /* First write out a symbol for this object file, unless we are
4815
     discarding such symbols.  */
4816
0
  if (strip != strip_all
4817
0
      && (strip != strip_some
4818
0
    || bfd_hash_lookup (flaginfo->info->keep_hash,
4819
0
            bfd_get_filename (input_bfd),
4820
0
            false, false) != NULL)
4821
0
      && discard != discard_all)
4822
0
    {
4823
0
      H_PUT_8 (output_bfd, N_TEXT, outsym->e_type);
4824
0
      H_PUT_8 (output_bfd, 0, outsym->e_other);
4825
0
      H_PUT_16 (output_bfd, 0, outsym->e_desc);
4826
0
      strtab_index = add_to_stringtab (output_bfd, flaginfo->strtab,
4827
0
               bfd_get_filename (input_bfd), false);
4828
0
      if (strtab_index == (bfd_size_type) -1)
4829
0
  return false;
4830
0
      PUT_WORD (output_bfd, strtab_index, outsym->e_strx);
4831
0
      PUT_WORD (output_bfd,
4832
0
    (bfd_section_vma (obj_textsec (input_bfd)->output_section)
4833
0
     + obj_textsec (input_bfd)->output_offset),
4834
0
    outsym->e_value);
4835
0
      ++obj_aout_external_sym_count (output_bfd);
4836
0
      ++outsym;
4837
0
    }
4838
4839
0
  pass = false;
4840
0
  skip_next = false;
4841
0
  sym = obj_aout_external_syms (input_bfd);
4842
0
  sym_end = sym + sym_count;
4843
0
  sym_hash = obj_aout_sym_hashes (input_bfd);
4844
0
  symbol_map = flaginfo->symbol_map;
4845
0
  memset (symbol_map, 0, (size_t) sym_count * sizeof *symbol_map);
4846
0
  for (; sym < sym_end; sym++, sym_hash++, symbol_map++)
4847
0
    {
4848
0
      const char *name;
4849
0
      int type;
4850
0
      struct aout_link_hash_entry *h;
4851
0
      bool skip;
4852
0
      asection *symsec;
4853
0
      bfd_vma val = 0;
4854
0
      bool copy;
4855
4856
      /* We set *symbol_map to 0 above for all symbols.  If it has
4857
   already been set to -1 for this symbol, it means that we are
4858
   discarding it because it appears in a duplicate header file.
4859
   See the N_BINCL code below.  */
4860
0
      if (*symbol_map == -1)
4861
0
  continue;
4862
4863
      /* Initialize *symbol_map to -1, which means that the symbol was
4864
   not copied into the output file.  We will change it later if
4865
   we do copy the symbol over.  */
4866
0
      *symbol_map = -1;
4867
4868
0
      type = H_GET_8 (input_bfd, sym->e_type);
4869
0
      name = strings + GET_WORD (input_bfd, sym->e_strx);
4870
4871
0
      h = NULL;
4872
4873
0
      if (pass)
4874
0
  {
4875
    /* Pass this symbol through.  It is the target of an
4876
       indirect or warning symbol.  */
4877
0
    val = GET_WORD (input_bfd, sym->e_value);
4878
0
    pass = false;
4879
0
  }
4880
0
      else if (skip_next)
4881
0
  {
4882
    /* Skip this symbol, which is the target of an indirect
4883
       symbol that we have changed to no longer be an indirect
4884
       symbol.  */
4885
0
    skip_next = false;
4886
0
    continue;
4887
0
  }
4888
0
      else
4889
0
  {
4890
0
    struct aout_link_hash_entry *hresolve;
4891
4892
    /* We have saved the hash table entry for this symbol, if
4893
       there is one.  Note that we could just look it up again
4894
       in the hash table, provided we first check that it is an
4895
       external symbol.  */
4896
0
    h = *sym_hash;
4897
4898
    /* Use the name from the hash table, in case the symbol was
4899
       wrapped.  */
4900
0
    if (h != NULL
4901
0
        && h->root.type != bfd_link_hash_warning)
4902
0
      name = h->root.root.string;
4903
4904
    /* If this is an indirect or warning symbol, then change
4905
       hresolve to the base symbol.  We also change *sym_hash so
4906
       that the relocation routines relocate against the real
4907
       symbol.  */
4908
0
    hresolve = h;
4909
0
    if (h != (struct aout_link_hash_entry *) NULL
4910
0
        && (h->root.type == bfd_link_hash_indirect
4911
0
      || h->root.type == bfd_link_hash_warning))
4912
0
      {
4913
0
        hresolve = (struct aout_link_hash_entry *) h->root.u.i.link;
4914
0
        while (hresolve->root.type == bfd_link_hash_indirect
4915
0
         || hresolve->root.type == bfd_link_hash_warning)
4916
0
    hresolve = ((struct aout_link_hash_entry *)
4917
0
          hresolve->root.u.i.link);
4918
0
        *sym_hash = hresolve;
4919
0
      }
4920
4921
    /* If the symbol has already been written out, skip it.  */
4922
0
    if (h != NULL
4923
0
        && h->written)
4924
0
      {
4925
0
        if ((type & N_TYPE) == N_INDR
4926
0
      || type == N_WARNING)
4927
0
    skip_next = true;
4928
0
        *symbol_map = h->indx;
4929
0
        continue;
4930
0
      }
4931
4932
    /* See if we are stripping this symbol.  */
4933
0
    skip = false;
4934
0
    switch (strip)
4935
0
      {
4936
0
      case strip_none:
4937
0
        break;
4938
0
      case strip_debugger:
4939
0
        if ((type & N_STAB) != 0)
4940
0
    skip = true;
4941
0
        break;
4942
0
      case strip_some:
4943
0
        if (bfd_hash_lookup (flaginfo->info->keep_hash, name, false, false)
4944
0
      == NULL)
4945
0
    skip = true;
4946
0
        break;
4947
0
      case strip_all:
4948
0
        skip = true;
4949
0
        break;
4950
0
      }
4951
0
    if (skip)
4952
0
      {
4953
0
        if (h != NULL)
4954
0
    h->written = true;
4955
0
        continue;
4956
0
      }
4957
4958
    /* Get the value of the symbol.  */
4959
0
    if ((type & N_TYPE) == N_TEXT
4960
0
        || type == N_WEAKT)
4961
0
      symsec = obj_textsec (input_bfd);
4962
0
    else if ((type & N_TYPE) == N_DATA
4963
0
       || type == N_WEAKD)
4964
0
      symsec = obj_datasec (input_bfd);
4965
0
    else if ((type & N_TYPE) == N_BSS
4966
0
       || type == N_WEAKB)
4967
0
      symsec = obj_bsssec (input_bfd);
4968
0
    else if ((type & N_TYPE) == N_ABS
4969
0
       || type == N_WEAKA)
4970
0
      symsec = bfd_abs_section_ptr;
4971
0
    else if (((type & N_TYPE) == N_INDR
4972
0
        && (hresolve == NULL
4973
0
      || (hresolve->root.type != bfd_link_hash_defined
4974
0
          && hresolve->root.type != bfd_link_hash_defweak
4975
0
          && hresolve->root.type != bfd_link_hash_common)))
4976
0
       || type == N_WARNING)
4977
0
      {
4978
        /* Pass the next symbol through unchanged.  The
4979
     condition above for indirect symbols is so that if
4980
     the indirect symbol was defined, we output it with
4981
     the correct definition so the debugger will
4982
     understand it.  */
4983
0
        pass = true;
4984
0
        val = GET_WORD (input_bfd, sym->e_value);
4985
0
        symsec = NULL;
4986
0
      }
4987
0
    else if ((type & N_STAB) != 0)
4988
0
      {
4989
0
        val = GET_WORD (input_bfd, sym->e_value);
4990
0
        symsec = NULL;
4991
0
      }
4992
0
    else
4993
0
      {
4994
        /* If we get here with an indirect symbol, it means that
4995
     we are outputting it with a real definition.  In such
4996
     a case we do not want to output the next symbol,
4997
     which is the target of the indirection.  */
4998
0
        if ((type & N_TYPE) == N_INDR)
4999
0
    skip_next = true;
5000
5001
0
        symsec = NULL;
5002
5003
        /* We need to get the value from the hash table.  We use
5004
     hresolve so that if we have defined an indirect
5005
     symbol we output the final definition.  */
5006
0
        if (h == NULL)
5007
0
    {
5008
0
      switch (type & N_TYPE)
5009
0
        {
5010
0
        case N_SETT:
5011
0
          symsec = obj_textsec (input_bfd);
5012
0
          break;
5013
0
        case N_SETD:
5014
0
          symsec = obj_datasec (input_bfd);
5015
0
          break;
5016
0
        case N_SETB:
5017
0
          symsec = obj_bsssec (input_bfd);
5018
0
          break;
5019
0
        case N_SETA:
5020
0
          symsec = bfd_abs_section_ptr;
5021
0
          break;
5022
0
        default:
5023
0
          val = 0;
5024
0
          break;
5025
0
        }
5026
0
    }
5027
0
        else if (hresolve->root.type == bfd_link_hash_defined
5028
0
           || hresolve->root.type == bfd_link_hash_defweak)
5029
0
    {
5030
0
      asection *input_section;
5031
0
      asection *output_section;
5032
5033
      /* This case usually means a common symbol which was
5034
         turned into a defined symbol.  */
5035
0
      input_section = hresolve->root.u.def.section;
5036
0
      output_section = input_section->output_section;
5037
0
      BFD_ASSERT (bfd_is_abs_section (output_section)
5038
0
            || output_section->owner == output_bfd);
5039
0
      val = (hresolve->root.u.def.value
5040
0
       + bfd_section_vma (output_section)
5041
0
       + input_section->output_offset);
5042
5043
      /* Get the correct type based on the section.  If
5044
         this is a constructed set, force it to be
5045
         globally visible.  */
5046
0
      if (type == N_SETT
5047
0
          || type == N_SETD
5048
0
          || type == N_SETB
5049
0
          || type == N_SETA)
5050
0
        type |= N_EXT;
5051
5052
0
      type &=~ N_TYPE;
5053
5054
0
      if (output_section == obj_textsec (output_bfd))
5055
0
        type |= (hresolve->root.type == bfd_link_hash_defined
5056
0
           ? N_TEXT
5057
0
           : N_WEAKT);
5058
0
      else if (output_section == obj_datasec (output_bfd))
5059
0
        type |= (hresolve->root.type == bfd_link_hash_defined
5060
0
           ? N_DATA
5061
0
           : N_WEAKD);
5062
0
      else if (output_section == obj_bsssec (output_bfd))
5063
0
        type |= (hresolve->root.type == bfd_link_hash_defined
5064
0
           ? N_BSS
5065
0
           : N_WEAKB);
5066
0
      else
5067
0
        type |= (hresolve->root.type == bfd_link_hash_defined
5068
0
           ? N_ABS
5069
0
           : N_WEAKA);
5070
0
    }
5071
0
        else if (hresolve->root.type == bfd_link_hash_common)
5072
0
    val = hresolve->root.u.c.size;
5073
0
        else if (hresolve->root.type == bfd_link_hash_undefweak)
5074
0
    {
5075
0
      val = 0;
5076
0
      type = N_WEAKU;
5077
0
    }
5078
0
        else
5079
0
    val = 0;
5080
0
      }
5081
0
    if (symsec != NULL)
5082
0
      val = (symsec->output_section->vma
5083
0
       + symsec->output_offset
5084
0
       + (GET_WORD (input_bfd, sym->e_value)
5085
0
          - symsec->vma));
5086
5087
    /* If this is a global symbol set the written flag, and if
5088
       it is a local symbol see if we should discard it.  */
5089
0
    if (h != NULL)
5090
0
      {
5091
0
        h->written = true;
5092
0
        h->indx = obj_aout_external_sym_count (output_bfd);
5093
0
      }
5094
0
    else if ((type & N_TYPE) != N_SETT
5095
0
       && (type & N_TYPE) != N_SETD
5096
0
       && (type & N_TYPE) != N_SETB
5097
0
       && (type & N_TYPE) != N_SETA)
5098
0
      {
5099
0
        switch (discard)
5100
0
    {
5101
0
    case discard_none:
5102
0
    case discard_sec_merge:
5103
0
      break;
5104
0
    case discard_l:
5105
0
      if ((type & N_STAB) == 0
5106
0
          && bfd_is_local_label_name (input_bfd, name))
5107
0
        skip = true;
5108
0
      break;
5109
0
    case discard_all:
5110
0
      skip = true;
5111
0
      break;
5112
0
    }
5113
0
        if (skip)
5114
0
    {
5115
0
      pass = false;
5116
0
      continue;
5117
0
    }
5118
0
      }
5119
5120
    /* An N_BINCL symbol indicates the start of the stabs
5121
       entries for a header file.  We need to scan ahead to the
5122
       next N_EINCL symbol, ignoring nesting, adding up all the
5123
       characters in the symbol names, not including the file
5124
       numbers in types (the first number after an open
5125
       parenthesis).  */
5126
0
    if (type == (int) N_BINCL)
5127
0
      {
5128
0
        struct external_nlist *incl_sym;
5129
0
        int nest;
5130
0
        struct aout_link_includes_entry *incl_entry;
5131
0
        struct aout_link_includes_totals *t;
5132
5133
0
        val = 0;
5134
0
        nest = 0;
5135
0
        for (incl_sym = sym + 1; incl_sym < sym_end; incl_sym++)
5136
0
    {
5137
0
      int incl_type;
5138
5139
0
      incl_type = H_GET_8 (input_bfd, incl_sym->e_type);
5140
0
      if (incl_type == (int) N_EINCL)
5141
0
        {
5142
0
          if (nest == 0)
5143
0
      break;
5144
0
          --nest;
5145
0
        }
5146
0
      else if (incl_type == (int) N_BINCL)
5147
0
        ++nest;
5148
0
      else if (nest == 0)
5149
0
        {
5150
0
          const char *s;
5151
5152
0
          s = strings + GET_WORD (input_bfd, incl_sym->e_strx);
5153
0
          for (; *s != '\0'; s++)
5154
0
      {
5155
0
        val += *s;
5156
0
        if (*s == '(')
5157
0
          {
5158
            /* Skip the file number.  */
5159
0
            ++s;
5160
0
            while (ISDIGIT (*s))
5161
0
        ++s;
5162
0
            --s;
5163
0
          }
5164
0
      }
5165
0
        }
5166
0
    }
5167
5168
        /* If we have already included a header file with the
5169
     same value, then replace this one with an N_EXCL
5170
     symbol.  */
5171
0
        copy = !flaginfo->info->keep_memory;
5172
0
        incl_entry = aout_link_includes_lookup (&flaginfo->includes,
5173
0
                  name, true, copy);
5174
0
        if (incl_entry == NULL)
5175
0
    return false;
5176
0
        for (t = incl_entry->totals; t != NULL; t = t->next)
5177
0
    if (t->total == val)
5178
0
      break;
5179
0
        if (t == NULL)
5180
0
    {
5181
      /* This is the first time we have seen this header
5182
         file with this set of stabs strings.  */
5183
0
      t = (struct aout_link_includes_totals *)
5184
0
          bfd_hash_allocate (&flaginfo->includes.root,
5185
0
           sizeof *t);
5186
0
      if (t == NULL)
5187
0
        return false;
5188
0
      t->total = val;
5189
0
      t->next = incl_entry->totals;
5190
0
      incl_entry->totals = t;
5191
0
    }
5192
0
        else
5193
0
    {
5194
0
      int *incl_map;
5195
5196
      /* This is a duplicate header file.  We must change
5197
         it to be an N_EXCL entry, and mark all the
5198
         included symbols to prevent outputting them.  */
5199
0
      type = (int) N_EXCL;
5200
5201
0
      nest = 0;
5202
0
      for (incl_sym = sym + 1, incl_map = symbol_map + 1;
5203
0
           incl_sym < sym_end;
5204
0
           incl_sym++, incl_map++)
5205
0
        {
5206
0
          int incl_type;
5207
5208
0
          incl_type = H_GET_8 (input_bfd, incl_sym->e_type);
5209
0
          if (incl_type == (int) N_EINCL)
5210
0
      {
5211
0
        if (nest == 0)
5212
0
          {
5213
0
            *incl_map = -1;
5214
0
            break;
5215
0
          }
5216
0
        --nest;
5217
0
      }
5218
0
          else if (incl_type == (int) N_BINCL)
5219
0
      ++nest;
5220
0
          else if (nest == 0)
5221
0
      *incl_map = -1;
5222
0
        }
5223
0
    }
5224
0
      }
5225
0
  }
5226
5227
      /* Copy this symbol into the list of symbols we are going to
5228
   write out.  */
5229
0
      H_PUT_8 (output_bfd, type, outsym->e_type);
5230
0
      H_PUT_8 (output_bfd, H_GET_8 (input_bfd, sym->e_other), outsym->e_other);
5231
0
      H_PUT_16 (output_bfd, H_GET_16 (input_bfd, sym->e_desc), outsym->e_desc);
5232
0
      copy = false;
5233
0
      if (! flaginfo->info->keep_memory)
5234
0
  {
5235
    /* name points into a string table which we are going to
5236
       free.  If there is a hash table entry, use that string.
5237
       Otherwise, copy name into memory.  */
5238
0
    if (h != NULL)
5239
0
      name = h->root.root.string;
5240
0
    else
5241
0
      copy = true;
5242
0
  }
5243
0
      strtab_index = add_to_stringtab (output_bfd, flaginfo->strtab,
5244
0
               name, copy);
5245
0
      if (strtab_index == (bfd_size_type) -1)
5246
0
  return false;
5247
0
      PUT_WORD (output_bfd, strtab_index, outsym->e_strx);
5248
0
      PUT_WORD (output_bfd, val, outsym->e_value);
5249
0
      *symbol_map = obj_aout_external_sym_count (output_bfd);
5250
0
      ++obj_aout_external_sym_count (output_bfd);
5251
0
      ++outsym;
5252
0
    }
5253
5254
  /* Write out the output symbols we have just constructed.  */
5255
0
  if (outsym > flaginfo->output_syms)
5256
0
    {
5257
0
      bfd_size_type outsym_size;
5258
5259
0
      if (bfd_seek (output_bfd, flaginfo->symoff, SEEK_SET) != 0)
5260
0
  return false;
5261
0
      outsym_size = outsym - flaginfo->output_syms;
5262
0
      outsym_size *= EXTERNAL_NLIST_SIZE;
5263
0
      if (bfd_write (flaginfo->output_syms, outsym_size, output_bfd)
5264
0
    != outsym_size)
5265
0
  return false;
5266
0
      flaginfo->symoff += outsym_size;
5267
0
    }
5268
5269
0
  return true;
5270
0
}
Unexecuted instantiation: aout-cris.c:aout_link_write_symbols
Unexecuted instantiation: aout-ns32k.c:aout_link_write_symbols
Unexecuted instantiation: aout32.c:aout_link_write_symbols
5271
5272
/* Link an a.out input BFD into the output file.  */
5273
5274
static bool
5275
aout_link_input_bfd (struct aout_final_link_info *flaginfo, bfd *input_bfd)
5276
0
{
5277
0
  BFD_ASSERT (bfd_get_format (input_bfd) == bfd_object);
5278
0
  BFD_ASSERT (bfd_get_flavour (input_bfd) == bfd_target_aout_flavour);
5279
5280
  /* If this is a dynamic object, it may need special handling.  */
5281
0
  if ((input_bfd->flags & DYNAMIC) != 0
5282
0
      && aout_backend_info (input_bfd)->link_dynamic_object != NULL)
5283
0
    return ((*aout_backend_info (input_bfd)->link_dynamic_object)
5284
0
      (flaginfo->info, input_bfd));
5285
5286
  /* Get the symbols.  We probably have them already, unless
5287
     flaginfo->info->keep_memory is FALSE.  */
5288
0
  if (! aout_get_external_symbols (input_bfd))
5289
0
    return false;
5290
5291
  /* Write out the symbols and get a map of the new indices.  The map
5292
     is placed into flaginfo->symbol_map.  */
5293
0
  if (! aout_link_write_symbols (flaginfo, input_bfd))
5294
0
    return false;
5295
5296
  /* Relocate and write out the sections.  These functions use the
5297
     symbol map created by aout_link_write_symbols.  The linker_mark
5298
     field will be set if these sections are to be included in the
5299
     link, which will normally be the case.  */
5300
0
  if (obj_textsec (input_bfd)->linker_mark)
5301
0
    {
5302
0
      if (! aout_link_input_section (flaginfo, input_bfd,
5303
0
             obj_textsec (input_bfd),
5304
0
             &flaginfo->treloff,
5305
0
             exec_hdr (input_bfd)->a_trsize))
5306
0
  return false;
5307
0
    }
5308
0
  if (obj_datasec (input_bfd)->linker_mark)
5309
0
    {
5310
0
      if (! aout_link_input_section (flaginfo, input_bfd,
5311
0
             obj_datasec (input_bfd),
5312
0
             &flaginfo->dreloff,
5313
0
             exec_hdr (input_bfd)->a_drsize))
5314
0
  return false;
5315
0
    }
5316
5317
  /* If we are not keeping memory, we don't need the symbols any
5318
     longer.  We still need them if we are keeping memory, because the
5319
     strings in the hash table point into them.  */
5320
0
  if (! flaginfo->info->keep_memory)
5321
0
    {
5322
0
      if (! aout_link_free_symbols (input_bfd))
5323
0
  return false;
5324
0
    }
5325
5326
0
  return true;
5327
0
}
Unexecuted instantiation: aout-cris.c:aout_link_input_bfd
Unexecuted instantiation: aout-ns32k.c:aout_link_input_bfd
Unexecuted instantiation: aout32.c:aout_link_input_bfd
5328
5329
/* Do the final link step.  This is called on the output BFD.  The
5330
   INFO structure should point to a list of BFDs linked through the
5331
   link.next field which can be used to find each BFD which takes part
5332
   in the output.  Also, each section in ABFD should point to a list
5333
   of bfd_link_order structures which list all the input sections for
5334
   the output section.  */
5335
5336
bool
5337
NAME (aout, final_link) (bfd *abfd,
5338
       struct bfd_link_info *info,
5339
       void (*callback) (bfd *, file_ptr *, file_ptr *, file_ptr *))
5340
0
{
5341
0
  struct aout_final_link_info aout_info;
5342
0
  bool includes_hash_initialized = false;
5343
0
  bfd *sub;
5344
0
  bfd_size_type trsize, drsize;
5345
0
  bfd_size_type max_contents_size;
5346
0
  bfd_size_type max_relocs_size;
5347
0
  bfd_size_type max_sym_count;
5348
0
  struct bfd_link_order *p;
5349
0
  asection *o;
5350
0
  bool have_link_order_relocs;
5351
5352
0
  if (bfd_link_pic (info))
5353
0
    abfd->flags |= DYNAMIC;
5354
5355
0
  aout_info.info = info;
5356
0
  aout_info.output_bfd = abfd;
5357
0
  aout_info.contents = NULL;
5358
0
  aout_info.relocs = NULL;
5359
0
  aout_info.symbol_map = NULL;
5360
0
  aout_info.output_syms = NULL;
5361
5362
0
  if (!bfd_hash_table_init_n (&aout_info.includes.root,
5363
0
            aout_link_includes_newfunc,
5364
0
            sizeof (struct aout_link_includes_entry),
5365
0
            251))
5366
0
    goto error_return;
5367
0
  includes_hash_initialized = true;
5368
5369
  /* Figure out the largest section size.  Also, if generating
5370
     relocatable output, count the relocs.  */
5371
0
  trsize = 0;
5372
0
  drsize = 0;
5373
0
  max_contents_size = 0;
5374
0
  max_relocs_size = 0;
5375
0
  max_sym_count = 0;
5376
0
  for (sub = info->input_bfds; sub != NULL; sub = sub->link.next)
5377
0
    {
5378
0
      bfd_size_type sz;
5379
5380
0
      if (bfd_link_relocatable (info))
5381
0
  {
5382
0
    if (bfd_get_flavour (sub) == bfd_target_aout_flavour)
5383
0
      {
5384
0
        trsize += exec_hdr (sub)->a_trsize;
5385
0
        drsize += exec_hdr (sub)->a_drsize;
5386
0
      }
5387
0
    else
5388
0
      {
5389
        /* FIXME: We need to identify the .text and .data sections
5390
     and call get_reloc_upper_bound and canonicalize_reloc to
5391
     work out the number of relocs needed, and then multiply
5392
     by the reloc size.  */
5393
0
        _bfd_error_handler
5394
    /* xgettext:c-format */
5395
0
    (_("%pB: relocatable link from %s to %s not supported"),
5396
0
     abfd, sub->xvec->name, abfd->xvec->name);
5397
0
        bfd_set_error (bfd_error_invalid_operation);
5398
0
        goto error_return;
5399
0
      }
5400
0
  }
5401
5402
0
      if (bfd_get_flavour (sub) == bfd_target_aout_flavour)
5403
0
  {
5404
0
    sz = obj_textsec (sub)->size;
5405
0
    if (sz > max_contents_size)
5406
0
      max_contents_size = sz;
5407
0
    sz = obj_datasec (sub)->size;
5408
0
    if (sz > max_contents_size)
5409
0
      max_contents_size = sz;
5410
5411
0
    sz = exec_hdr (sub)->a_trsize;
5412
0
    if (sz > max_relocs_size)
5413
0
      max_relocs_size = sz;
5414
0
    sz = exec_hdr (sub)->a_drsize;
5415
0
    if (sz > max_relocs_size)
5416
0
      max_relocs_size = sz;
5417
5418
0
    sz = obj_aout_external_sym_count (sub);
5419
0
    if (sz > max_sym_count)
5420
0
      max_sym_count = sz;
5421
0
  }
5422
0
    }
5423
5424
0
  if (bfd_link_relocatable (info))
5425
0
    {
5426
0
      if (obj_textsec (abfd) != NULL)
5427
0
  trsize += (_bfd_count_link_order_relocs (obj_textsec (abfd)
5428
0
             ->map_head.link_order)
5429
0
       * obj_reloc_entry_size (abfd));
5430
0
      if (obj_datasec (abfd) != NULL)
5431
0
  drsize += (_bfd_count_link_order_relocs (obj_datasec (abfd)
5432
0
             ->map_head.link_order)
5433
0
       * obj_reloc_entry_size (abfd));
5434
0
    }
5435
5436
0
  exec_hdr (abfd)->a_trsize = trsize;
5437
0
  exec_hdr (abfd)->a_drsize = drsize;
5438
5439
0
  exec_hdr (abfd)->a_entry = bfd_get_start_address (abfd);
5440
5441
  /* Adjust the section sizes and vmas according to the magic number.
5442
     This sets a_text, a_data and a_bss in the exec_hdr and sets the
5443
     filepos for each section.  */
5444
0
  if (! NAME (aout, adjust_sizes_and_vmas) (abfd))
5445
0
    goto error_return;
5446
5447
  /* The relocation and symbol file positions differ among a.out
5448
     targets.  We are passed a callback routine from the backend
5449
     specific code to handle this.
5450
     FIXME: At this point we do not know how much space the symbol
5451
     table will require.  This will not work for any (nonstandard)
5452
     a.out target that needs to know the symbol table size before it
5453
     can compute the relocation file positions.  */
5454
0
  (*callback) (abfd, &aout_info.treloff, &aout_info.dreloff,
5455
0
         &aout_info.symoff);
5456
0
  obj_textsec (abfd)->rel_filepos = aout_info.treloff;
5457
0
  obj_datasec (abfd)->rel_filepos = aout_info.dreloff;
5458
0
  obj_sym_filepos (abfd) = aout_info.symoff;
5459
5460
  /* We keep a count of the symbols as we output them.  */
5461
0
  obj_aout_external_sym_count (abfd) = 0;
5462
5463
  /* We accumulate the string table as we write out the symbols.  */
5464
0
  aout_info.strtab = _bfd_stringtab_init ();
5465
0
  if (aout_info.strtab == NULL)
5466
0
    goto error_return;
5467
5468
  /* Allocate buffers to hold section contents and relocs.  */
5469
0
  aout_info.contents = (bfd_byte *) bfd_malloc (max_contents_size);
5470
0
  aout_info.relocs = bfd_malloc (max_relocs_size);
5471
0
  aout_info.symbol_map = (int *) bfd_malloc (max_sym_count * sizeof (int));
5472
0
  aout_info.output_syms = (struct external_nlist *)
5473
0
      bfd_malloc ((max_sym_count + 1) * sizeof (struct external_nlist));
5474
0
  if ((aout_info.contents == NULL && max_contents_size != 0)
5475
0
      || (aout_info.relocs == NULL && max_relocs_size != 0)
5476
0
      || (aout_info.symbol_map == NULL && max_sym_count != 0)
5477
0
      || aout_info.output_syms == NULL)
5478
0
    goto error_return;
5479
5480
  /* If we have a symbol named __DYNAMIC, force it out now.  This is
5481
     required by SunOS.  Doing this here rather than in sunos.c is a
5482
     hack, but it's easier than exporting everything which would be
5483
     needed.  */
5484
0
  {
5485
0
    struct aout_link_hash_entry *h;
5486
5487
0
    h = aout_link_hash_lookup (aout_hash_table (info), "__DYNAMIC",
5488
0
             false, false, false);
5489
0
    if (h != NULL)
5490
0
      aout_link_write_other_symbol (&h->root.root, &aout_info);
5491
0
  }
5492
5493
  /* The most time efficient way to do the link would be to read all
5494
     the input object files into memory and then sort out the
5495
     information into the output file.  Unfortunately, that will
5496
     probably use too much memory.  Another method would be to step
5497
     through everything that composes the text section and write it
5498
     out, and then everything that composes the data section and write
5499
     it out, and then write out the relocs, and then write out the
5500
     symbols.  Unfortunately, that requires reading stuff from each
5501
     input file several times, and we will not be able to keep all the
5502
     input files open simultaneously, and reopening them will be slow.
5503
5504
     What we do is basically process one input file at a time.  We do
5505
     everything we need to do with an input file once--copy over the
5506
     section contents, handle the relocation information, and write
5507
     out the symbols--and then we throw away the information we read
5508
     from it.  This approach requires a lot of lseeks of the output
5509
     file, which is unfortunate but still faster than reopening a lot
5510
     of files.
5511
5512
     We use the output_has_begun field of the input BFDs to see
5513
     whether we have already handled it.  */
5514
0
  for (sub = info->input_bfds; sub != NULL; sub = sub->link.next)
5515
0
    sub->output_has_begun = false;
5516
5517
  /* Mark all sections which are to be included in the link.  This
5518
     will normally be every section.  We need to do this so that we
5519
     can identify any sections which the linker has decided to not
5520
     include.  */
5521
0
  for (o = abfd->sections; o != NULL; o = o->next)
5522
0
    {
5523
0
      for (p = o->map_head.link_order; p != NULL; p = p->next)
5524
0
  if (p->type == bfd_indirect_link_order)
5525
0
    p->u.indirect.section->linker_mark = true;
5526
0
    }
5527
5528
0
  have_link_order_relocs = false;
5529
0
  for (o = abfd->sections; o != NULL; o = o->next)
5530
0
    {
5531
0
      for (p = o->map_head.link_order;
5532
0
     p != NULL;
5533
0
     p = p->next)
5534
0
  {
5535
0
    if (p->type == bfd_indirect_link_order
5536
0
        && (bfd_get_flavour (p->u.indirect.section->owner)
5537
0
      == bfd_target_aout_flavour))
5538
0
      {
5539
0
        bfd *input_bfd;
5540
5541
0
        input_bfd = p->u.indirect.section->owner;
5542
0
        if (! input_bfd->output_has_begun)
5543
0
    {
5544
0
      if (! aout_link_input_bfd (&aout_info, input_bfd))
5545
0
        goto error_return;
5546
0
      input_bfd->output_has_begun = true;
5547
0
    }
5548
0
      }
5549
0
    else if (p->type == bfd_section_reloc_link_order
5550
0
       || p->type == bfd_symbol_reloc_link_order)
5551
0
      {
5552
        /* These are handled below.  */
5553
0
        have_link_order_relocs = true;
5554
0
      }
5555
0
    else
5556
0
      {
5557
0
        if (! _bfd_default_link_order (abfd, info, o, p))
5558
0
    goto error_return;
5559
0
      }
5560
0
  }
5561
0
    }
5562
5563
  /* Write out any symbols that we have not already written out.  */
5564
0
  bfd_hash_traverse (&info->hash->table,
5565
0
         aout_link_write_other_symbol,
5566
0
         &aout_info);
5567
5568
  /* Now handle any relocs we were asked to create by the linker.
5569
     These did not come from any input file.  We must do these after
5570
     we have written out all the symbols, so that we know the symbol
5571
     indices to use.  */
5572
0
  if (have_link_order_relocs)
5573
0
    {
5574
0
      for (o = abfd->sections; o != NULL; o = o->next)
5575
0
  {
5576
0
    for (p = o->map_head.link_order;
5577
0
         p != NULL;
5578
0
         p = p->next)
5579
0
      {
5580
0
        if (p->type == bfd_section_reloc_link_order
5581
0
      || p->type == bfd_symbol_reloc_link_order)
5582
0
    {
5583
0
      if (! aout_link_reloc_link_order (&aout_info, o, p))
5584
0
        goto error_return;
5585
0
    }
5586
0
      }
5587
0
  }
5588
0
    }
5589
5590
0
  free (aout_info.contents);
5591
0
  aout_info.contents = NULL;
5592
0
  free (aout_info.relocs);
5593
0
  aout_info.relocs = NULL;
5594
0
  free (aout_info.symbol_map);
5595
0
  aout_info.symbol_map = NULL;
5596
0
  free (aout_info.output_syms);
5597
0
  aout_info.output_syms = NULL;
5598
5599
0
  if (includes_hash_initialized)
5600
0
    {
5601
0
      bfd_hash_table_free (&aout_info.includes.root);
5602
0
      includes_hash_initialized = false;
5603
0
    }
5604
5605
  /* Finish up any dynamic linking we may be doing.  */
5606
0
  if (aout_backend_info (abfd)->finish_dynamic_link != NULL)
5607
0
    {
5608
0
      if (! (*aout_backend_info (abfd)->finish_dynamic_link) (abfd, info))
5609
0
  goto error_return;
5610
0
    }
5611
5612
  /* Update the header information.  */
5613
0
  abfd->symcount = obj_aout_external_sym_count (abfd);
5614
0
  exec_hdr (abfd)->a_syms = abfd->symcount * EXTERNAL_NLIST_SIZE;
5615
0
  obj_str_filepos (abfd) = obj_sym_filepos (abfd) + exec_hdr (abfd)->a_syms;
5616
0
  obj_textsec (abfd)->reloc_count =
5617
0
    exec_hdr (abfd)->a_trsize / obj_reloc_entry_size (abfd);
5618
0
  obj_datasec (abfd)->reloc_count =
5619
0
    exec_hdr (abfd)->a_drsize / obj_reloc_entry_size (abfd);
5620
5621
  /* Write out the string table, unless there are no symbols.  */
5622
0
  if (bfd_seek (abfd, obj_str_filepos (abfd), SEEK_SET) != 0)
5623
0
    goto error_return;
5624
0
  if (abfd->symcount > 0)
5625
0
    {
5626
0
      if (!emit_stringtab (abfd, aout_info.strtab))
5627
0
  goto error_return;
5628
0
    }
5629
0
  else
5630
0
    {
5631
0
      bfd_byte b[BYTES_IN_WORD];
5632
5633
0
      memset (b, 0, BYTES_IN_WORD);
5634
0
      if (bfd_write (b, BYTES_IN_WORD, abfd) != BYTES_IN_WORD)
5635
0
  goto error_return;
5636
0
    }
5637
5638
0
  return true;
5639
5640
0
 error_return:
5641
0
  free (aout_info.contents);
5642
0
  free (aout_info.relocs);
5643
0
  free (aout_info.symbol_map);
5644
0
  free (aout_info.output_syms);
5645
0
  if (includes_hash_initialized)
5646
0
    bfd_hash_table_free (&aout_info.includes.root);
5647
  return false;
5648
0
}
Unexecuted instantiation: cris_aout_32_final_link
Unexecuted instantiation: ns32kaout_32_final_link
Unexecuted instantiation: aout_32_final_link