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252b5132 1/* ELF executable support for BFD.
340b6d91 2
b3adc24a 3 Copyright (C) 1993-2020 Free Software Foundation, Inc.
252b5132 4
5e8d7549 5 This file is part of BFD, the Binary File Descriptor library.
252b5132 6
5e8d7549
NC
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
cd123cb7 9 the Free Software Foundation; either version 3 of the License, or
5e8d7549 10 (at your option) any later version.
252b5132 11
5e8d7549
NC
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.
252b5132 16
5e8d7549 17 You should have received a copy of the GNU General Public License
b34976b6 18 along with this program; if not, write to the Free Software
cd123cb7
NC
19 Foundation, Inc., 51 Franklin Street - Fifth Floor, Boston,
20 MA 02110-1301, USA. */
21
252b5132 22
1b74d094
BW
23/*
24SECTION
252b5132
RH
25 ELF backends
26
27 BFD support for ELF formats is being worked on.
28 Currently, the best supported back ends are for sparc and i386
29 (running svr4 or Solaris 2).
30
31 Documentation of the internals of the support code still needs
32 to be written. The code is changing quickly enough that we
661a3fd4 33 haven't bothered yet. */
252b5132 34
7ee38065
MS
35/* For sparc64-cross-sparc32. */
36#define _SYSCALL32
252b5132 37#include "sysdep.h"
3a551c7a 38#include <limits.h>
3db64b00 39#include "bfd.h"
252b5132
RH
40#include "bfdlink.h"
41#include "libbfd.h"
42#define ARCH_SIZE 0
43#include "elf-bfd.h"
e0e8c97f 44#include "libiberty.h"
ff59fc36 45#include "safe-ctype.h"
de64ce13 46#include "elf-linux-core.h"
252b5132 47
8bc7f138
L
48#ifdef CORE_HEADER
49#include CORE_HEADER
50#endif
51
217aa764 52static int elf_sort_sections (const void *, const void *);
c84fca4d 53static bfd_boolean assign_file_positions_except_relocs (bfd *, struct bfd_link_info *);
ef10c3ac 54static bfd_boolean swap_out_syms (bfd *, struct elf_strtab_hash **, int) ;
718175fa 55static bfd_boolean elf_parse_notes (bfd *abfd, char *buf, size_t size,
276da9b3 56 file_ptr offset, size_t align);
50b2bdb7 57
252b5132
RH
58/* Swap version information in and out. The version information is
59 currently size independent. If that ever changes, this code will
60 need to move into elfcode.h. */
61
62/* Swap in a Verdef structure. */
63
64void
217aa764
AM
65_bfd_elf_swap_verdef_in (bfd *abfd,
66 const Elf_External_Verdef *src,
67 Elf_Internal_Verdef *dst)
252b5132 68{
dc810e39
AM
69 dst->vd_version = H_GET_16 (abfd, src->vd_version);
70 dst->vd_flags = H_GET_16 (abfd, src->vd_flags);
71 dst->vd_ndx = H_GET_16 (abfd, src->vd_ndx);
72 dst->vd_cnt = H_GET_16 (abfd, src->vd_cnt);
73 dst->vd_hash = H_GET_32 (abfd, src->vd_hash);
74 dst->vd_aux = H_GET_32 (abfd, src->vd_aux);
75 dst->vd_next = H_GET_32 (abfd, src->vd_next);
252b5132
RH
76}
77
78/* Swap out a Verdef structure. */
79
80void
217aa764
AM
81_bfd_elf_swap_verdef_out (bfd *abfd,
82 const Elf_Internal_Verdef *src,
83 Elf_External_Verdef *dst)
252b5132 84{
dc810e39
AM
85 H_PUT_16 (abfd, src->vd_version, dst->vd_version);
86 H_PUT_16 (abfd, src->vd_flags, dst->vd_flags);
87 H_PUT_16 (abfd, src->vd_ndx, dst->vd_ndx);
88 H_PUT_16 (abfd, src->vd_cnt, dst->vd_cnt);
89 H_PUT_32 (abfd, src->vd_hash, dst->vd_hash);
90 H_PUT_32 (abfd, src->vd_aux, dst->vd_aux);
91 H_PUT_32 (abfd, src->vd_next, dst->vd_next);
252b5132
RH
92}
93
94/* Swap in a Verdaux structure. */
95
96void
217aa764
AM
97_bfd_elf_swap_verdaux_in (bfd *abfd,
98 const Elf_External_Verdaux *src,
99 Elf_Internal_Verdaux *dst)
252b5132 100{
dc810e39
AM
101 dst->vda_name = H_GET_32 (abfd, src->vda_name);
102 dst->vda_next = H_GET_32 (abfd, src->vda_next);
252b5132
RH
103}
104
105/* Swap out a Verdaux structure. */
106
107void
217aa764
AM
108_bfd_elf_swap_verdaux_out (bfd *abfd,
109 const Elf_Internal_Verdaux *src,
110 Elf_External_Verdaux *dst)
252b5132 111{
dc810e39
AM
112 H_PUT_32 (abfd, src->vda_name, dst->vda_name);
113 H_PUT_32 (abfd, src->vda_next, dst->vda_next);
252b5132
RH
114}
115
116/* Swap in a Verneed structure. */
117
118void
217aa764
AM
119_bfd_elf_swap_verneed_in (bfd *abfd,
120 const Elf_External_Verneed *src,
121 Elf_Internal_Verneed *dst)
252b5132 122{
dc810e39
AM
123 dst->vn_version = H_GET_16 (abfd, src->vn_version);
124 dst->vn_cnt = H_GET_16 (abfd, src->vn_cnt);
125 dst->vn_file = H_GET_32 (abfd, src->vn_file);
126 dst->vn_aux = H_GET_32 (abfd, src->vn_aux);
127 dst->vn_next = H_GET_32 (abfd, src->vn_next);
252b5132
RH
128}
129
130/* Swap out a Verneed structure. */
131
132void
217aa764
AM
133_bfd_elf_swap_verneed_out (bfd *abfd,
134 const Elf_Internal_Verneed *src,
135 Elf_External_Verneed *dst)
252b5132 136{
dc810e39
AM
137 H_PUT_16 (abfd, src->vn_version, dst->vn_version);
138 H_PUT_16 (abfd, src->vn_cnt, dst->vn_cnt);
139 H_PUT_32 (abfd, src->vn_file, dst->vn_file);
140 H_PUT_32 (abfd, src->vn_aux, dst->vn_aux);
141 H_PUT_32 (abfd, src->vn_next, dst->vn_next);
252b5132
RH
142}
143
144/* Swap in a Vernaux structure. */
145
146void
217aa764
AM
147_bfd_elf_swap_vernaux_in (bfd *abfd,
148 const Elf_External_Vernaux *src,
149 Elf_Internal_Vernaux *dst)
252b5132 150{
dc810e39
AM
151 dst->vna_hash = H_GET_32 (abfd, src->vna_hash);
152 dst->vna_flags = H_GET_16 (abfd, src->vna_flags);
153 dst->vna_other = H_GET_16 (abfd, src->vna_other);
154 dst->vna_name = H_GET_32 (abfd, src->vna_name);
155 dst->vna_next = H_GET_32 (abfd, src->vna_next);
252b5132
RH
156}
157
158/* Swap out a Vernaux structure. */
159
160void
217aa764
AM
161_bfd_elf_swap_vernaux_out (bfd *abfd,
162 const Elf_Internal_Vernaux *src,
163 Elf_External_Vernaux *dst)
252b5132 164{
dc810e39
AM
165 H_PUT_32 (abfd, src->vna_hash, dst->vna_hash);
166 H_PUT_16 (abfd, src->vna_flags, dst->vna_flags);
167 H_PUT_16 (abfd, src->vna_other, dst->vna_other);
168 H_PUT_32 (abfd, src->vna_name, dst->vna_name);
169 H_PUT_32 (abfd, src->vna_next, dst->vna_next);
252b5132
RH
170}
171
172/* Swap in a Versym structure. */
173
174void
217aa764
AM
175_bfd_elf_swap_versym_in (bfd *abfd,
176 const Elf_External_Versym *src,
177 Elf_Internal_Versym *dst)
252b5132 178{
dc810e39 179 dst->vs_vers = H_GET_16 (abfd, src->vs_vers);
252b5132
RH
180}
181
182/* Swap out a Versym structure. */
183
184void
217aa764
AM
185_bfd_elf_swap_versym_out (bfd *abfd,
186 const Elf_Internal_Versym *src,
187 Elf_External_Versym *dst)
252b5132 188{
dc810e39 189 H_PUT_16 (abfd, src->vs_vers, dst->vs_vers);
252b5132
RH
190}
191
192/* Standard ELF hash function. Do not change this function; you will
193 cause invalid hash tables to be generated. */
3a99b017 194
252b5132 195unsigned long
217aa764 196bfd_elf_hash (const char *namearg)
252b5132 197{
3a99b017 198 const unsigned char *name = (const unsigned char *) namearg;
252b5132
RH
199 unsigned long h = 0;
200 unsigned long g;
201 int ch;
202
203 while ((ch = *name++) != '\0')
204 {
205 h = (h << 4) + ch;
206 if ((g = (h & 0xf0000000)) != 0)
207 {
208 h ^= g >> 24;
209 /* The ELF ABI says `h &= ~g', but this is equivalent in
210 this case and on some machines one insn instead of two. */
211 h ^= g;
212 }
213 }
32dfa85d 214 return h & 0xffffffff;
252b5132
RH
215}
216
fdc90cb4
JJ
217/* DT_GNU_HASH hash function. Do not change this function; you will
218 cause invalid hash tables to be generated. */
219
220unsigned long
221bfd_elf_gnu_hash (const char *namearg)
222{
223 const unsigned char *name = (const unsigned char *) namearg;
224 unsigned long h = 5381;
225 unsigned char ch;
226
227 while ((ch = *name++) != '\0')
228 h = (h << 5) + h + ch;
229 return h & 0xffffffff;
230}
231
0c8d6e5c
AM
232/* Create a tdata field OBJECT_SIZE bytes in length, zeroed out and with
233 the object_id field of an elf_obj_tdata field set to OBJECT_ID. */
b34976b6 234bfd_boolean
0c8d6e5c 235bfd_elf_allocate_object (bfd *abfd,
0ffa91dd 236 size_t object_size,
4dfe6ac6 237 enum elf_target_id object_id)
252b5132 238{
0ffa91dd
NC
239 BFD_ASSERT (object_size >= sizeof (struct elf_obj_tdata));
240 abfd->tdata.any = bfd_zalloc (abfd, object_size);
241 if (abfd->tdata.any == NULL)
242 return FALSE;
252b5132 243
0ffa91dd 244 elf_object_id (abfd) = object_id;
c0355132
AM
245 if (abfd->direction != read_direction)
246 {
247 struct output_elf_obj_tdata *o = bfd_zalloc (abfd, sizeof *o);
248 if (o == NULL)
249 return FALSE;
250 elf_tdata (abfd)->o = o;
251 elf_program_header_size (abfd) = (bfd_size_type) -1;
252 }
b34976b6 253 return TRUE;
252b5132
RH
254}
255
0ffa91dd
NC
256
257bfd_boolean
ae95ffa6 258bfd_elf_make_object (bfd *abfd)
0ffa91dd 259{
ae95ffa6 260 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
0ffa91dd 261 return bfd_elf_allocate_object (abfd, sizeof (struct elf_obj_tdata),
ae95ffa6 262 bed->target_id);
0ffa91dd
NC
263}
264
b34976b6 265bfd_boolean
217aa764 266bfd_elf_mkcorefile (bfd *abfd)
252b5132 267{
c044fabd 268 /* I think this can be done just like an object file. */
228e534f
AM
269 if (!abfd->xvec->_bfd_set_format[(int) bfd_object] (abfd))
270 return FALSE;
271 elf_tdata (abfd)->core = bfd_zalloc (abfd, sizeof (*elf_tdata (abfd)->core));
272 return elf_tdata (abfd)->core != NULL;
252b5132
RH
273}
274
6d5944fc 275char *
217aa764 276bfd_elf_get_str_section (bfd *abfd, unsigned int shindex)
252b5132
RH
277{
278 Elf_Internal_Shdr **i_shdrp;
f075ee0c 279 bfd_byte *shstrtab = NULL;
dc810e39
AM
280 file_ptr offset;
281 bfd_size_type shstrtabsize;
252b5132
RH
282
283 i_shdrp = elf_elfsections (abfd);
74f2e02b
AM
284 if (i_shdrp == 0
285 || shindex >= elf_numsections (abfd)
286 || i_shdrp[shindex] == 0)
f075ee0c 287 return NULL;
252b5132 288
f075ee0c 289 shstrtab = i_shdrp[shindex]->contents;
252b5132
RH
290 if (shstrtab == NULL)
291 {
c044fabd 292 /* No cached one, attempt to read, and cache what we read. */
252b5132
RH
293 offset = i_shdrp[shindex]->sh_offset;
294 shstrtabsize = i_shdrp[shindex]->sh_size;
c6c60d09
JJ
295
296 /* Allocate and clear an extra byte at the end, to prevent crashes
297 in case the string table is not terminated. */
3471d59d 298 if (shstrtabsize + 1 <= 1
95a6d235 299 || shstrtabsize > bfd_get_file_size (abfd)
06614111
NC
300 || bfd_seek (abfd, offset, SEEK_SET) != 0
301 || (shstrtab = (bfd_byte *) bfd_alloc (abfd, shstrtabsize + 1)) == NULL)
c6c60d09
JJ
302 shstrtab = NULL;
303 else if (bfd_bread (shstrtab, shstrtabsize, abfd) != shstrtabsize)
304 {
305 if (bfd_get_error () != bfd_error_system_call)
306 bfd_set_error (bfd_error_file_truncated);
06614111 307 bfd_release (abfd, shstrtab);
c6c60d09 308 shstrtab = NULL;
3471d59d
CC
309 /* Once we've failed to read it, make sure we don't keep
310 trying. Otherwise, we'll keep allocating space for
311 the string table over and over. */
312 i_shdrp[shindex]->sh_size = 0;
c6c60d09
JJ
313 }
314 else
315 shstrtab[shstrtabsize] = '\0';
217aa764 316 i_shdrp[shindex]->contents = shstrtab;
252b5132 317 }
f075ee0c 318 return (char *) shstrtab;
252b5132
RH
319}
320
321char *
217aa764
AM
322bfd_elf_string_from_elf_section (bfd *abfd,
323 unsigned int shindex,
324 unsigned int strindex)
252b5132
RH
325{
326 Elf_Internal_Shdr *hdr;
327
328 if (strindex == 0)
329 return "";
330
74f2e02b
AM
331 if (elf_elfsections (abfd) == NULL || shindex >= elf_numsections (abfd))
332 return NULL;
333
252b5132
RH
334 hdr = elf_elfsections (abfd)[shindex];
335
06614111
NC
336 if (hdr->contents == NULL)
337 {
338 if (hdr->sh_type != SHT_STRTAB && hdr->sh_type < SHT_LOOS)
339 {
340 /* PR 17512: file: f057ec89. */
695344c0 341 /* xgettext:c-format */
871b3ab2 342 _bfd_error_handler (_("%pB: attempt to load strings from"
63a5468a 343 " a non-string section (number %d)"),
06614111
NC
344 abfd, shindex);
345 return NULL;
346 }
b1fa9dd6 347
06614111
NC
348 if (bfd_elf_get_str_section (abfd, shindex) == NULL)
349 return NULL;
350 }
eed5def8
NC
351 else
352 {
353 /* PR 24273: The string section's contents may have already
354 been loaded elsewhere, eg because a corrupt file has the
355 string section index in the ELF header pointing at a group
356 section. So be paranoid, and test that the last byte of
357 the section is zero. */
358 if (hdr->sh_size == 0 || hdr->contents[hdr->sh_size - 1] != 0)
359 return NULL;
360 }
252b5132
RH
361
362 if (strindex >= hdr->sh_size)
363 {
1b3a8575 364 unsigned int shstrndx = elf_elfheader(abfd)->e_shstrndx;
4eca0228 365 _bfd_error_handler
695344c0 366 /* xgettext:c-format */
2dcf00ce
AM
367 (_("%pB: invalid string offset %u >= %" PRIu64 " for section `%s'"),
368 abfd, strindex, (uint64_t) hdr->sh_size,
1b3a8575 369 (shindex == shstrndx && strindex == hdr->sh_name
252b5132 370 ? ".shstrtab"
1b3a8575 371 : bfd_elf_string_from_elf_section (abfd, shstrndx, hdr->sh_name)));
45b222d6 372 return NULL;
252b5132
RH
373 }
374
375 return ((char *) hdr->contents) + strindex;
376}
377
6cdc0ccc
AM
378/* Read and convert symbols to internal format.
379 SYMCOUNT specifies the number of symbols to read, starting from
380 symbol SYMOFFSET. If any of INTSYM_BUF, EXTSYM_BUF or EXTSHNDX_BUF
381 are non-NULL, they are used to store the internal symbols, external
b7c368d0
NC
382 symbols, and symbol section index extensions, respectively.
383 Returns a pointer to the internal symbol buffer (malloced if necessary)
384 or NULL if there were no symbols or some kind of problem. */
6cdc0ccc
AM
385
386Elf_Internal_Sym *
217aa764
AM
387bfd_elf_get_elf_syms (bfd *ibfd,
388 Elf_Internal_Shdr *symtab_hdr,
389 size_t symcount,
390 size_t symoffset,
391 Elf_Internal_Sym *intsym_buf,
392 void *extsym_buf,
393 Elf_External_Sym_Shndx *extshndx_buf)
6cdc0ccc
AM
394{
395 Elf_Internal_Shdr *shndx_hdr;
217aa764 396 void *alloc_ext;
df622259 397 const bfd_byte *esym;
6cdc0ccc
AM
398 Elf_External_Sym_Shndx *alloc_extshndx;
399 Elf_External_Sym_Shndx *shndx;
4dd07732 400 Elf_Internal_Sym *alloc_intsym;
6cdc0ccc
AM
401 Elf_Internal_Sym *isym;
402 Elf_Internal_Sym *isymend;
9c5bfbb7 403 const struct elf_backend_data *bed;
6cdc0ccc
AM
404 size_t extsym_size;
405 bfd_size_type amt;
406 file_ptr pos;
407
e44a2c9c
AM
408 if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour)
409 abort ();
410
6cdc0ccc
AM
411 if (symcount == 0)
412 return intsym_buf;
413
414 /* Normal syms might have section extension entries. */
415 shndx_hdr = NULL;
6a40cf0c
NC
416 if (elf_symtab_shndx_list (ibfd) != NULL)
417 {
418 elf_section_list * entry;
419 Elf_Internal_Shdr **sections = elf_elfsections (ibfd);
420
421 /* Find an index section that is linked to this symtab section. */
422 for (entry = elf_symtab_shndx_list (ibfd); entry != NULL; entry = entry->next)
315350be
NC
423 {
424 /* PR 20063. */
425 if (entry->hdr.sh_link >= elf_numsections (ibfd))
426 continue;
427
428 if (sections[entry->hdr.sh_link] == symtab_hdr)
429 {
430 shndx_hdr = & entry->hdr;
431 break;
432 };
433 }
6a40cf0c
NC
434
435 if (shndx_hdr == NULL)
436 {
437 if (symtab_hdr == & elf_symtab_hdr (ibfd))
438 /* Not really accurate, but this was how the old code used to work. */
439 shndx_hdr = & elf_symtab_shndx_list (ibfd)->hdr;
440 /* Otherwise we do nothing. The assumption is that
441 the index table will not be needed. */
442 }
443 }
6cdc0ccc
AM
444
445 /* Read the symbols. */
446 alloc_ext = NULL;
447 alloc_extshndx = NULL;
4dd07732 448 alloc_intsym = NULL;
6cdc0ccc
AM
449 bed = get_elf_backend_data (ibfd);
450 extsym_size = bed->s->sizeof_sym;
ef53be89 451 amt = (bfd_size_type) symcount * extsym_size;
6cdc0ccc
AM
452 pos = symtab_hdr->sh_offset + symoffset * extsym_size;
453 if (extsym_buf == NULL)
454 {
d0fb9a8d 455 alloc_ext = bfd_malloc2 (symcount, extsym_size);
6cdc0ccc
AM
456 extsym_buf = alloc_ext;
457 }
458 if (extsym_buf == NULL
459 || bfd_seek (ibfd, pos, SEEK_SET) != 0
460 || bfd_bread (extsym_buf, amt, ibfd) != amt)
461 {
462 intsym_buf = NULL;
463 goto out;
464 }
465
466 if (shndx_hdr == NULL || shndx_hdr->sh_size == 0)
467 extshndx_buf = NULL;
468 else
469 {
ef53be89 470 amt = (bfd_size_type) symcount * sizeof (Elf_External_Sym_Shndx);
6cdc0ccc
AM
471 pos = shndx_hdr->sh_offset + symoffset * sizeof (Elf_External_Sym_Shndx);
472 if (extshndx_buf == NULL)
473 {
a50b1753 474 alloc_extshndx = (Elf_External_Sym_Shndx *)
07d6d2b8 475 bfd_malloc2 (symcount, sizeof (Elf_External_Sym_Shndx));
6cdc0ccc
AM
476 extshndx_buf = alloc_extshndx;
477 }
478 if (extshndx_buf == NULL
479 || bfd_seek (ibfd, pos, SEEK_SET) != 0
480 || bfd_bread (extshndx_buf, amt, ibfd) != amt)
481 {
482 intsym_buf = NULL;
483 goto out;
484 }
485 }
486
487 if (intsym_buf == NULL)
488 {
a50b1753 489 alloc_intsym = (Elf_Internal_Sym *)
07d6d2b8 490 bfd_malloc2 (symcount, sizeof (Elf_Internal_Sym));
4dd07732 491 intsym_buf = alloc_intsym;
6cdc0ccc
AM
492 if (intsym_buf == NULL)
493 goto out;
494 }
495
496 /* Convert the symbols to internal form. */
497 isymend = intsym_buf + symcount;
a50b1753 498 for (esym = (const bfd_byte *) extsym_buf, isym = intsym_buf,
07d6d2b8 499 shndx = extshndx_buf;
6cdc0ccc
AM
500 isym < isymend;
501 esym += extsym_size, isym++, shndx = shndx != NULL ? shndx + 1 : NULL)
8384fb8f
AM
502 if (!(*bed->s->swap_symbol_in) (ibfd, esym, shndx, isym))
503 {
504 symoffset += (esym - (bfd_byte *) extsym_buf) / extsym_size;
695344c0 505 /* xgettext:c-format */
871b3ab2 506 _bfd_error_handler (_("%pB symbol number %lu references"
63a5468a 507 " nonexistent SHT_SYMTAB_SHNDX section"),
4eca0228 508 ibfd, (unsigned long) symoffset);
4dd07732
AM
509 if (alloc_intsym != NULL)
510 free (alloc_intsym);
8384fb8f
AM
511 intsym_buf = NULL;
512 goto out;
513 }
6cdc0ccc
AM
514
515 out:
516 if (alloc_ext != NULL)
517 free (alloc_ext);
518 if (alloc_extshndx != NULL)
519 free (alloc_extshndx);
520
521 return intsym_buf;
522}
523
5cab59f6
AM
524/* Look up a symbol name. */
525const char *
be8dd2ca
AM
526bfd_elf_sym_name (bfd *abfd,
527 Elf_Internal_Shdr *symtab_hdr,
26c61ae5
L
528 Elf_Internal_Sym *isym,
529 asection *sym_sec)
5cab59f6 530{
26c61ae5 531 const char *name;
5cab59f6 532 unsigned int iname = isym->st_name;
be8dd2ca 533 unsigned int shindex = symtab_hdr->sh_link;
26c61ae5 534
138f35cc
JJ
535 if (iname == 0 && ELF_ST_TYPE (isym->st_info) == STT_SECTION
536 /* Check for a bogus st_shndx to avoid crashing. */
4fbb74a6 537 && isym->st_shndx < elf_numsections (abfd))
5cab59f6
AM
538 {
539 iname = elf_elfsections (abfd)[isym->st_shndx]->sh_name;
540 shindex = elf_elfheader (abfd)->e_shstrndx;
541 }
542
26c61ae5
L
543 name = bfd_elf_string_from_elf_section (abfd, shindex, iname);
544 if (name == NULL)
545 name = "(null)";
546 else if (sym_sec && *name == '\0')
fd361982 547 name = bfd_section_name (sym_sec);
26c61ae5
L
548
549 return name;
5cab59f6
AM
550}
551
dbb410c3
AM
552/* Elf_Internal_Shdr->contents is an array of these for SHT_GROUP
553 sections. The first element is the flags, the rest are section
554 pointers. */
555
556typedef union elf_internal_group {
557 Elf_Internal_Shdr *shdr;
558 unsigned int flags;
559} Elf_Internal_Group;
560
b885599b
AM
561/* Return the name of the group signature symbol. Why isn't the
562 signature just a string? */
563
564static const char *
217aa764 565group_signature (bfd *abfd, Elf_Internal_Shdr *ghdr)
b885599b 566{
9dce4196 567 Elf_Internal_Shdr *hdr;
9dce4196
AM
568 unsigned char esym[sizeof (Elf64_External_Sym)];
569 Elf_External_Sym_Shndx eshndx;
570 Elf_Internal_Sym isym;
b885599b 571
13792e9d
L
572 /* First we need to ensure the symbol table is available. Make sure
573 that it is a symbol table section. */
4fbb74a6
AM
574 if (ghdr->sh_link >= elf_numsections (abfd))
575 return NULL;
13792e9d
L
576 hdr = elf_elfsections (abfd) [ghdr->sh_link];
577 if (hdr->sh_type != SHT_SYMTAB
578 || ! bfd_section_from_shdr (abfd, ghdr->sh_link))
b885599b
AM
579 return NULL;
580
9dce4196
AM
581 /* Go read the symbol. */
582 hdr = &elf_tdata (abfd)->symtab_hdr;
6cdc0ccc
AM
583 if (bfd_elf_get_elf_syms (abfd, hdr, 1, ghdr->sh_info,
584 &isym, esym, &eshndx) == NULL)
b885599b 585 return NULL;
9dce4196 586
26c61ae5 587 return bfd_elf_sym_name (abfd, hdr, &isym, NULL);
b885599b
AM
588}
589
dbb410c3
AM
590/* Set next_in_group list pointer, and group name for NEWSECT. */
591
b34976b6 592static bfd_boolean
217aa764 593setup_group (bfd *abfd, Elf_Internal_Shdr *hdr, asection *newsect)
dbb410c3
AM
594{
595 unsigned int num_group = elf_tdata (abfd)->num_group;
596
597 /* If num_group is zero, read in all SHT_GROUP sections. The count
598 is set to -1 if there are no SHT_GROUP sections. */
599 if (num_group == 0)
600 {
601 unsigned int i, shnum;
602
603 /* First count the number of groups. If we have a SHT_GROUP
604 section with just a flag word (ie. sh_size is 4), ignore it. */
9ad5cbcf 605 shnum = elf_numsections (abfd);
dbb410c3 606 num_group = 0;
08a40648 607
44534af3 608#define IS_VALID_GROUP_SECTION_HEADER(shdr, minsize) \
1783205a 609 ( (shdr)->sh_type == SHT_GROUP \
44534af3 610 && (shdr)->sh_size >= minsize \
1783205a
NC
611 && (shdr)->sh_entsize == GRP_ENTRY_SIZE \
612 && ((shdr)->sh_size % GRP_ENTRY_SIZE) == 0)
08a40648 613
dbb410c3
AM
614 for (i = 0; i < shnum; i++)
615 {
616 Elf_Internal_Shdr *shdr = elf_elfsections (abfd)[i];
1783205a 617
44534af3 618 if (IS_VALID_GROUP_SECTION_HEADER (shdr, 2 * GRP_ENTRY_SIZE))
dbb410c3
AM
619 num_group += 1;
620 }
621
622 if (num_group == 0)
20dbb49d
L
623 {
624 num_group = (unsigned) -1;
625 elf_tdata (abfd)->num_group = num_group;
ce497010 626 elf_tdata (abfd)->group_sect_ptr = NULL;
20dbb49d
L
627 }
628 else
dbb410c3
AM
629 {
630 /* We keep a list of elf section headers for group sections,
631 so we can find them quickly. */
20dbb49d 632 bfd_size_type amt;
d0fb9a8d 633
20dbb49d 634 elf_tdata (abfd)->num_group = num_group;
a50b1753 635 elf_tdata (abfd)->group_sect_ptr = (Elf_Internal_Shdr **)
07d6d2b8 636 bfd_alloc2 (abfd, num_group, sizeof (Elf_Internal_Shdr *));
dbb410c3 637 if (elf_tdata (abfd)->group_sect_ptr == NULL)
b34976b6 638 return FALSE;
4bba0fb1
AM
639 memset (elf_tdata (abfd)->group_sect_ptr, 0,
640 num_group * sizeof (Elf_Internal_Shdr *));
dbb410c3 641 num_group = 0;
ce497010 642
dbb410c3
AM
643 for (i = 0; i < shnum; i++)
644 {
645 Elf_Internal_Shdr *shdr = elf_elfsections (abfd)[i];
1783205a 646
44534af3 647 if (IS_VALID_GROUP_SECTION_HEADER (shdr, 2 * GRP_ENTRY_SIZE))
dbb410c3 648 {
973ffd63 649 unsigned char *src;
dbb410c3
AM
650 Elf_Internal_Group *dest;
651
07d6d2b8
AM
652 /* Make sure the group section has a BFD section
653 attached to it. */
654 if (!bfd_section_from_shdr (abfd, i))
655 return FALSE;
656
dbb410c3
AM
657 /* Add to list of sections. */
658 elf_tdata (abfd)->group_sect_ptr[num_group] = shdr;
659 num_group += 1;
660
661 /* Read the raw contents. */
662 BFD_ASSERT (sizeof (*dest) >= 4);
663 amt = shdr->sh_size * sizeof (*dest) / 4;
a50b1753 664 shdr->contents = (unsigned char *)
eed5def8 665 bfd_alloc2 (abfd, shdr->sh_size, sizeof (*dest) / 4);
1783205a
NC
666 /* PR binutils/4110: Handle corrupt group headers. */
667 if (shdr->contents == NULL)
668 {
669 _bfd_error_handler
695344c0 670 /* xgettext:c-format */
871b3ab2 671 (_("%pB: corrupt size field in group section"
2dcf00ce
AM
672 " header: %#" PRIx64),
673 abfd, (uint64_t) shdr->sh_size);
1783205a 674 bfd_set_error (bfd_error_bad_value);
493a3386
NC
675 -- num_group;
676 continue;
1783205a
NC
677 }
678
1783205a 679 if (bfd_seek (abfd, shdr->sh_offset, SEEK_SET) != 0
dbb410c3
AM
680 || (bfd_bread (shdr->contents, shdr->sh_size, abfd)
681 != shdr->sh_size))
493a3386
NC
682 {
683 _bfd_error_handler
695344c0 684 /* xgettext:c-format */
871b3ab2 685 (_("%pB: invalid size field in group section"
2dcf00ce
AM
686 " header: %#" PRIx64 ""),
687 abfd, (uint64_t) shdr->sh_size);
493a3386
NC
688 bfd_set_error (bfd_error_bad_value);
689 -- num_group;
63a5468a
AM
690 /* PR 17510: If the group contents are even
691 partially corrupt, do not allow any of the
692 contents to be used. */
327301a4
AM
693 bfd_release (abfd, shdr->contents);
694 shdr->contents = NULL;
493a3386
NC
695 continue;
696 }
708d7d0d 697
dbb410c3
AM
698 /* Translate raw contents, a flag word followed by an
699 array of elf section indices all in target byte order,
700 to the flag word followed by an array of elf section
701 pointers. */
702 src = shdr->contents + shdr->sh_size;
703 dest = (Elf_Internal_Group *) (shdr->contents + amt);
06614111 704
dbb410c3
AM
705 while (1)
706 {
707 unsigned int idx;
708
709 src -= 4;
710 --dest;
711 idx = H_GET_32 (abfd, src);
712 if (src == shdr->contents)
713 {
327301a4 714 dest->shdr = NULL;
dbb410c3 715 dest->flags = idx;
b885599b
AM
716 if (shdr->bfd_section != NULL && (idx & GRP_COMDAT))
717 shdr->bfd_section->flags
718 |= SEC_LINK_ONCE | SEC_LINK_DUPLICATES_DISCARD;
dbb410c3
AM
719 break;
720 }
4bba0fb1 721 if (idx < shnum)
bae363f1
L
722 {
723 dest->shdr = elf_elfsections (abfd)[idx];
724 /* PR binutils/23199: All sections in a
725 section group should be marked with
726 SHF_GROUP. But some tools generate
727 broken objects without SHF_GROUP. Fix
728 them up here. */
729 dest->shdr->sh_flags |= SHF_GROUP;
730 }
4bba0fb1
AM
731 if (idx >= shnum
732 || dest->shdr->sh_type == SHT_GROUP)
dbb410c3 733 {
4eca0228 734 _bfd_error_handler
4bba0fb1
AM
735 (_("%pB: invalid entry in SHT_GROUP section [%u]"),
736 abfd, i);
737 dest->shdr = NULL;
dbb410c3 738 }
dbb410c3
AM
739 }
740 }
741 }
493a3386
NC
742
743 /* PR 17510: Corrupt binaries might contain invalid groups. */
744 if (num_group != (unsigned) elf_tdata (abfd)->num_group)
745 {
746 elf_tdata (abfd)->num_group = num_group;
747
748 /* If all groups are invalid then fail. */
749 if (num_group == 0)
750 {
751 elf_tdata (abfd)->group_sect_ptr = NULL;
752 elf_tdata (abfd)->num_group = num_group = -1;
4eca0228 753 _bfd_error_handler
871b3ab2 754 (_("%pB: no valid group sections found"), abfd);
493a3386
NC
755 bfd_set_error (bfd_error_bad_value);
756 }
757 }
dbb410c3
AM
758 }
759 }
760
761 if (num_group != (unsigned) -1)
762 {
564e11c9
JW
763 unsigned int search_offset = elf_tdata (abfd)->group_search_offset;
764 unsigned int j;
dbb410c3 765
564e11c9 766 for (j = 0; j < num_group; j++)
dbb410c3 767 {
564e11c9
JW
768 /* Begin search from previous found group. */
769 unsigned i = (j + search_offset) % num_group;
770
dbb410c3 771 Elf_Internal_Shdr *shdr = elf_tdata (abfd)->group_sect_ptr[i];
ce497010 772 Elf_Internal_Group *idx;
0c54f692 773 bfd_size_type n_elt;
ce497010
NC
774
775 if (shdr == NULL)
776 continue;
777
778 idx = (Elf_Internal_Group *) shdr->contents;
0c54f692
NC
779 if (idx == NULL || shdr->sh_size < 4)
780 {
781 /* See PR 21957 for a reproducer. */
782 /* xgettext:c-format */
871b3ab2 783 _bfd_error_handler (_("%pB: group section '%pA' has no contents"),
0c54f692
NC
784 abfd, shdr->bfd_section);
785 elf_tdata (abfd)->group_sect_ptr[i] = NULL;
786 bfd_set_error (bfd_error_bad_value);
787 return FALSE;
788 }
ce497010 789 n_elt = shdr->sh_size / 4;
dbb410c3
AM
790
791 /* Look through this group's sections to see if current
792 section is a member. */
793 while (--n_elt != 0)
794 if ((++idx)->shdr == hdr)
795 {
e0e8c97f 796 asection *s = NULL;
dbb410c3
AM
797
798 /* We are a member of this group. Go looking through
799 other members to see if any others are linked via
800 next_in_group. */
801 idx = (Elf_Internal_Group *) shdr->contents;
802 n_elt = shdr->sh_size / 4;
803 while (--n_elt != 0)
4bba0fb1
AM
804 if ((++idx)->shdr != NULL
805 && (s = idx->shdr->bfd_section) != NULL
945906ff 806 && elf_next_in_group (s) != NULL)
dbb410c3
AM
807 break;
808 if (n_elt != 0)
809 {
dbb410c3
AM
810 /* Snarf the group name from other member, and
811 insert current section in circular list. */
945906ff
AM
812 elf_group_name (newsect) = elf_group_name (s);
813 elf_next_in_group (newsect) = elf_next_in_group (s);
814 elf_next_in_group (s) = newsect;
dbb410c3
AM
815 }
816 else
817 {
dbb410c3
AM
818 const char *gname;
819
b885599b
AM
820 gname = group_signature (abfd, shdr);
821 if (gname == NULL)
b34976b6 822 return FALSE;
945906ff 823 elf_group_name (newsect) = gname;
dbb410c3
AM
824
825 /* Start a circular list with one element. */
945906ff 826 elf_next_in_group (newsect) = newsect;
dbb410c3 827 }
b885599b 828
9dce4196
AM
829 /* If the group section has been created, point to the
830 new member. */
dbb410c3 831 if (shdr->bfd_section != NULL)
945906ff 832 elf_next_in_group (shdr->bfd_section) = newsect;
b885599b 833
564e11c9
JW
834 elf_tdata (abfd)->group_search_offset = i;
835 j = num_group - 1;
dbb410c3
AM
836 break;
837 }
838 }
839 }
840
945906ff 841 if (elf_group_name (newsect) == NULL)
dbb410c3 842 {
695344c0 843 /* xgettext:c-format */
871b3ab2 844 _bfd_error_handler (_("%pB: no group info for section '%pA'"),
4eca0228 845 abfd, newsect);
493a3386 846 return FALSE;
dbb410c3 847 }
b34976b6 848 return TRUE;
dbb410c3
AM
849}
850
3d7f7666 851bfd_boolean
dd863624 852_bfd_elf_setup_sections (bfd *abfd)
3d7f7666
L
853{
854 unsigned int i;
855 unsigned int num_group = elf_tdata (abfd)->num_group;
856 bfd_boolean result = TRUE;
dd863624
L
857 asection *s;
858
859 /* Process SHF_LINK_ORDER. */
860 for (s = abfd->sections; s != NULL; s = s->next)
861 {
862 Elf_Internal_Shdr *this_hdr = &elf_section_data (s)->this_hdr;
863 if ((this_hdr->sh_flags & SHF_LINK_ORDER) != 0)
864 {
865 unsigned int elfsec = this_hdr->sh_link;
866 /* FIXME: The old Intel compiler and old strip/objcopy may
867 not set the sh_link or sh_info fields. Hence we could
868 get the situation where elfsec is 0. */
869 if (elfsec == 0)
870 {
4fbb74a6 871 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
dd863624
L
872 if (bed->link_order_error_handler)
873 bed->link_order_error_handler
695344c0 874 /* xgettext:c-format */
871b3ab2 875 (_("%pB: warning: sh_link not set for section `%pA'"),
dd863624
L
876 abfd, s);
877 }
878 else
879 {
91d6fa6a 880 asection *linksec = NULL;
25bbc984 881
4fbb74a6
AM
882 if (elfsec < elf_numsections (abfd))
883 {
884 this_hdr = elf_elfsections (abfd)[elfsec];
91d6fa6a 885 linksec = this_hdr->bfd_section;
4fbb74a6 886 }
25bbc984
L
887
888 /* PR 1991, 2008:
889 Some strip/objcopy may leave an incorrect value in
890 sh_link. We don't want to proceed. */
91d6fa6a 891 if (linksec == NULL)
25bbc984 892 {
4eca0228 893 _bfd_error_handler
695344c0 894 /* xgettext:c-format */
871b3ab2 895 (_("%pB: sh_link [%d] in section `%pA' is incorrect"),
c08bb8dd 896 s->owner, elfsec, s);
25bbc984
L
897 result = FALSE;
898 }
899
91d6fa6a 900 elf_linked_to_section (s) = linksec;
dd863624
L
901 }
902 }
53720c49
AM
903 else if (this_hdr->sh_type == SHT_GROUP
904 && elf_next_in_group (s) == NULL)
905 {
4eca0228 906 _bfd_error_handler
695344c0 907 /* xgettext:c-format */
871b3ab2 908 (_("%pB: SHT_GROUP section [index %d] has no SHF_GROUP sections"),
53720c49
AM
909 abfd, elf_section_data (s)->this_idx);
910 result = FALSE;
911 }
dd863624 912 }
3d7f7666 913
dd863624 914 /* Process section groups. */
3d7f7666
L
915 if (num_group == (unsigned) -1)
916 return result;
917
918 for (i = 0; i < num_group; i++)
919 {
920 Elf_Internal_Shdr *shdr = elf_tdata (abfd)->group_sect_ptr[i];
4b0e8a5f
NC
921 Elf_Internal_Group *idx;
922 unsigned int n_elt;
3d7f7666 923
4b0e8a5f
NC
924 /* PR binutils/18758: Beware of corrupt binaries with invalid group data. */
925 if (shdr == NULL || shdr->bfd_section == NULL || shdr->contents == NULL)
926 {
4eca0228 927 _bfd_error_handler
695344c0 928 /* xgettext:c-format */
871b3ab2 929 (_("%pB: section group entry number %u is corrupt"),
4b0e8a5f
NC
930 abfd, i);
931 result = FALSE;
932 continue;
933 }
934
935 idx = (Elf_Internal_Group *) shdr->contents;
936 n_elt = shdr->sh_size / 4;
1b786873 937
3d7f7666 938 while (--n_elt != 0)
24d3e51b
NC
939 {
940 ++ idx;
941
942 if (idx->shdr == NULL)
943 continue;
944 else if (idx->shdr->bfd_section)
945 elf_sec_group (idx->shdr->bfd_section) = shdr->bfd_section;
db4677b8
AM
946 else if (idx->shdr->sh_type != SHT_RELA
947 && idx->shdr->sh_type != SHT_REL)
24d3e51b
NC
948 {
949 /* There are some unknown sections in the group. */
950 _bfd_error_handler
951 /* xgettext:c-format */
871b3ab2 952 (_("%pB: unknown type [%#x] section `%s' in group [%pA]"),
24d3e51b
NC
953 abfd,
954 idx->shdr->sh_type,
955 bfd_elf_string_from_elf_section (abfd,
956 (elf_elfheader (abfd)
957 ->e_shstrndx),
958 idx->shdr->sh_name),
959 shdr->bfd_section);
960 result = FALSE;
961 }
962 }
3d7f7666 963 }
24d3e51b 964
3d7f7666
L
965 return result;
966}
967
72adc230
AM
968bfd_boolean
969bfd_elf_is_group_section (bfd *abfd ATTRIBUTE_UNUSED, const asection *sec)
970{
971 return elf_next_in_group (sec) != NULL;
972}
973
cb7f4b29
AM
974const char *
975bfd_elf_group_name (bfd *abfd ATTRIBUTE_UNUSED, const asection *sec)
976{
977 if (elf_sec_group (sec) != NULL)
978 return elf_group_name (sec);
979 return NULL;
980}
981
f6fe1ccd
L
982static char *
983convert_debug_to_zdebug (bfd *abfd, const char *name)
984{
985 unsigned int len = strlen (name);
986 char *new_name = bfd_alloc (abfd, len + 2);
987 if (new_name == NULL)
988 return NULL;
989 new_name[0] = '.';
990 new_name[1] = 'z';
991 memcpy (new_name + 2, name + 1, len);
992 return new_name;
993}
994
995static char *
996convert_zdebug_to_debug (bfd *abfd, const char *name)
997{
998 unsigned int len = strlen (name);
999 char *new_name = bfd_alloc (abfd, len);
1000 if (new_name == NULL)
1001 return NULL;
1002 new_name[0] = '.';
1003 memcpy (new_name + 1, name + 2, len - 1);
1004 return new_name;
1005}
1006
cc5277b1
ML
1007/* This a copy of lto_section defined in GCC (lto-streamer.h). */
1008
1009struct lto_section
1010{
1011 int16_t major_version;
1012 int16_t minor_version;
1013 unsigned char slim_object;
1014
1015 /* Flags is a private field that is not defined publicly. */
1016 uint16_t flags;
1017};
1018
252b5132
RH
1019/* Make a BFD section from an ELF section. We store a pointer to the
1020 BFD section in the bfd_section field of the header. */
1021
b34976b6 1022bfd_boolean
217aa764
AM
1023_bfd_elf_make_section_from_shdr (bfd *abfd,
1024 Elf_Internal_Shdr *hdr,
6dc132d9
L
1025 const char *name,
1026 int shindex)
252b5132
RH
1027{
1028 asection *newsect;
1029 flagword flags;
9c5bfbb7 1030 const struct elf_backend_data *bed;
252b5132
RH
1031
1032 if (hdr->bfd_section != NULL)
4e011fb5 1033 return TRUE;
252b5132
RH
1034
1035 newsect = bfd_make_section_anyway (abfd, name);
1036 if (newsect == NULL)
b34976b6 1037 return FALSE;
252b5132 1038
1829f4b2
AM
1039 hdr->bfd_section = newsect;
1040 elf_section_data (newsect)->this_hdr = *hdr;
6dc132d9 1041 elf_section_data (newsect)->this_idx = shindex;
1829f4b2 1042
2f89ff8d
L
1043 /* Always use the real type/flags. */
1044 elf_section_type (newsect) = hdr->sh_type;
1045 elf_section_flags (newsect) = hdr->sh_flags;
1046
252b5132
RH
1047 newsect->filepos = hdr->sh_offset;
1048
fd361982
AM
1049 if (!bfd_set_section_vma (newsect, hdr->sh_addr)
1050 || !bfd_set_section_size (newsect, hdr->sh_size)
1051 || !bfd_set_section_alignment (newsect, bfd_log2 (hdr->sh_addralign)))
b34976b6 1052 return FALSE;
252b5132
RH
1053
1054 flags = SEC_NO_FLAGS;
1055 if (hdr->sh_type != SHT_NOBITS)
1056 flags |= SEC_HAS_CONTENTS;
dbb410c3 1057 if (hdr->sh_type == SHT_GROUP)
7bdf4127 1058 flags |= SEC_GROUP;
252b5132
RH
1059 if ((hdr->sh_flags & SHF_ALLOC) != 0)
1060 {
1061 flags |= SEC_ALLOC;
1062 if (hdr->sh_type != SHT_NOBITS)
1063 flags |= SEC_LOAD;
1064 }
1065 if ((hdr->sh_flags & SHF_WRITE) == 0)
1066 flags |= SEC_READONLY;
1067 if ((hdr->sh_flags & SHF_EXECINSTR) != 0)
1068 flags |= SEC_CODE;
1069 else if ((flags & SEC_LOAD) != 0)
1070 flags |= SEC_DATA;
f5fa8ca2
JJ
1071 if ((hdr->sh_flags & SHF_MERGE) != 0)
1072 {
1073 flags |= SEC_MERGE;
1074 newsect->entsize = hdr->sh_entsize;
f5fa8ca2 1075 }
84865015
NC
1076 if ((hdr->sh_flags & SHF_STRINGS) != 0)
1077 flags |= SEC_STRINGS;
dbb410c3
AM
1078 if (hdr->sh_flags & SHF_GROUP)
1079 if (!setup_group (abfd, hdr, newsect))
b34976b6 1080 return FALSE;
13ae64f3
JJ
1081 if ((hdr->sh_flags & SHF_TLS) != 0)
1082 flags |= SEC_THREAD_LOCAL;
18ae9cc1
L
1083 if ((hdr->sh_flags & SHF_EXCLUDE) != 0)
1084 flags |= SEC_EXCLUDE;
252b5132 1085
df3a023b
AM
1086 switch (elf_elfheader (abfd)->e_ident[EI_OSABI])
1087 {
1088 /* FIXME: We should not recognize SHF_GNU_MBIND for ELFOSABI_NONE,
1089 but binutils as of 2019-07-23 did not set the EI_OSABI header
1090 byte. */
1091 case ELFOSABI_NONE:
1092 case ELFOSABI_GNU:
1093 case ELFOSABI_FREEBSD:
1094 if ((hdr->sh_flags & SHF_GNU_MBIND) != 0)
1095 elf_tdata (abfd)->has_gnu_osabi |= elf_gnu_osabi_mbind;
1096 break;
1097 }
1098
3d2b39cf 1099 if ((flags & SEC_ALLOC) == 0)
7a6cc5fb 1100 {
3d2b39cf
L
1101 /* The debugging sections appear to be recognized only by name,
1102 not any sort of flag. Their SEC_ALLOC bits are cleared. */
3d2b39cf
L
1103 if (name [0] == '.')
1104 {
bb294208
AM
1105 if (strncmp (name, ".debug", 6) == 0
1106 || strncmp (name, ".gnu.linkonce.wi.", 17) == 0
1107 || strncmp (name, ".zdebug", 7) == 0)
1108 flags |= SEC_DEBUGGING | SEC_ELF_OCTETS;
1109 else if (strncmp (name, GNU_BUILD_ATTRS_SECTION_NAME, 21) == 0
1110 || strncmp (name, ".note.gnu", 9) == 0)
1111 flags |= SEC_ELF_OCTETS;
1112 else if (strncmp (name, ".line", 5) == 0
1113 || strncmp (name, ".stab", 5) == 0
1114 || strcmp (name, ".gdb_index") == 0)
3d2b39cf
L
1115 flags |= SEC_DEBUGGING;
1116 }
1117 }
252b5132
RH
1118
1119 /* As a GNU extension, if the name begins with .gnu.linkonce, we
1120 only link a single copy of the section. This is used to support
1121 g++. g++ will emit each template expansion in its own section.
1122 The symbols will be defined as weak, so that multiple definitions
1123 are permitted. The GNU linker extension is to actually discard
1124 all but one of the sections. */
0112cd26 1125 if (CONST_STRNEQ (name, ".gnu.linkonce")
b885599b 1126 && elf_next_in_group (newsect) == NULL)
252b5132
RH
1127 flags |= SEC_LINK_ONCE | SEC_LINK_DUPLICATES_DISCARD;
1128
fa152c49
JW
1129 bed = get_elf_backend_data (abfd);
1130 if (bed->elf_backend_section_flags)
1131 if (! bed->elf_backend_section_flags (&flags, hdr))
b34976b6 1132 return FALSE;
fa152c49 1133
fd361982 1134 if (!bfd_set_section_flags (newsect, flags))
b34976b6 1135 return FALSE;
252b5132 1136
718175fa
JK
1137 /* We do not parse the PT_NOTE segments as we are interested even in the
1138 separate debug info files which may have the segments offsets corrupted.
1139 PT_NOTEs from the core files are currently not parsed using BFD. */
1140 if (hdr->sh_type == SHT_NOTE)
1141 {
baea7ef1 1142 bfd_byte *contents;
718175fa 1143
baea7ef1 1144 if (!bfd_malloc_and_get_section (abfd, newsect, &contents))
718175fa
JK
1145 return FALSE;
1146
276da9b3
L
1147 elf_parse_notes (abfd, (char *) contents, hdr->sh_size,
1148 hdr->sh_offset, hdr->sh_addralign);
718175fa
JK
1149 free (contents);
1150 }
1151
252b5132
RH
1152 if ((flags & SEC_ALLOC) != 0)
1153 {
1154 Elf_Internal_Phdr *phdr;
6ffd7900
AM
1155 unsigned int i, nload;
1156
1157 /* Some ELF linkers produce binaries with all the program header
1158 p_paddr fields zero. If we have such a binary with more than
1159 one PT_LOAD header, then leave the section lma equal to vma
1160 so that we don't create sections with overlapping lma. */
1161 phdr = elf_tdata (abfd)->phdr;
1162 for (nload = 0, i = 0; i < elf_elfheader (abfd)->e_phnum; i++, phdr++)
1163 if (phdr->p_paddr != 0)
1164 break;
1165 else if (phdr->p_type == PT_LOAD && phdr->p_memsz != 0)
1166 ++nload;
1167 if (i >= elf_elfheader (abfd)->e_phnum && nload > 1)
1168 return TRUE;
252b5132 1169
252b5132
RH
1170 phdr = elf_tdata (abfd)->phdr;
1171 for (i = 0; i < elf_elfheader (abfd)->e_phnum; i++, phdr++)
1172 {
86b2281f
AM
1173 if (((phdr->p_type == PT_LOAD
1174 && (hdr->sh_flags & SHF_TLS) == 0)
1175 || phdr->p_type == PT_TLS)
9a83a553 1176 && ELF_SECTION_IN_SEGMENT (hdr, phdr))
252b5132 1177 {
88967714
AM
1178 if ((flags & SEC_LOAD) == 0)
1179 newsect->lma = (phdr->p_paddr
1180 + hdr->sh_addr - phdr->p_vaddr);
1181 else
1182 /* We used to use the same adjustment for SEC_LOAD
1183 sections, but that doesn't work if the segment
1184 is packed with code from multiple VMAs.
1185 Instead we calculate the section LMA based on
1186 the segment LMA. It is assumed that the
1187 segment will contain sections with contiguous
1188 LMAs, even if the VMAs are not. */
1189 newsect->lma = (phdr->p_paddr
1190 + hdr->sh_offset - phdr->p_offset);
1191
1192 /* With contiguous segments, we can't tell from file
1193 offsets whether a section with zero size should
1194 be placed at the end of one segment or the
1195 beginning of the next. Decide based on vaddr. */
1196 if (hdr->sh_addr >= phdr->p_vaddr
1197 && (hdr->sh_addr + hdr->sh_size
1198 <= phdr->p_vaddr + phdr->p_memsz))
1199 break;
252b5132
RH
1200 }
1201 }
1202 }
1203
4a114e3e
L
1204 /* Compress/decompress DWARF debug sections with names: .debug_* and
1205 .zdebug_*, after the section flags is set. */
1206 if ((flags & SEC_DEBUGGING)
1207 && ((name[1] == 'd' && name[6] == '_')
1208 || (name[1] == 'z' && name[7] == '_')))
1209 {
1210 enum { nothing, compress, decompress } action = nothing;
151411f8 1211 int compression_header_size;
dab394de 1212 bfd_size_type uncompressed_size;
4207142d 1213 unsigned int uncompressed_align_power;
151411f8
L
1214 bfd_boolean compressed
1215 = bfd_is_section_compressed_with_header (abfd, newsect,
dab394de 1216 &compression_header_size,
4207142d
MW
1217 &uncompressed_size,
1218 &uncompressed_align_power);
151411f8 1219 if (compressed)
4a114e3e
L
1220 {
1221 /* Compressed section. Check if we should decompress. */
1222 if ((abfd->flags & BFD_DECOMPRESS))
1223 action = decompress;
1224 }
151411f8
L
1225
1226 /* Compress the uncompressed section or convert from/to .zdebug*
1227 section. Check if we should compress. */
1228 if (action == nothing)
4a114e3e 1229 {
151411f8
L
1230 if (newsect->size != 0
1231 && (abfd->flags & BFD_COMPRESS)
1232 && compression_header_size >= 0
dab394de 1233 && uncompressed_size > 0
151411f8
L
1234 && (!compressed
1235 || ((compression_header_size > 0)
1236 != ((abfd->flags & BFD_COMPRESS_GABI) != 0))))
4a114e3e 1237 action = compress;
151411f8
L
1238 else
1239 return TRUE;
4a114e3e
L
1240 }
1241
151411f8 1242 if (action == compress)
4a114e3e 1243 {
4a114e3e
L
1244 if (!bfd_init_section_compress_status (abfd, newsect))
1245 {
4eca0228 1246 _bfd_error_handler
695344c0 1247 /* xgettext:c-format */
871b3ab2 1248 (_("%pB: unable to initialize compress status for section %s"),
4a114e3e
L
1249 abfd, name);
1250 return FALSE;
1251 }
151411f8
L
1252 }
1253 else
1254 {
4a114e3e
L
1255 if (!bfd_init_section_decompress_status (abfd, newsect))
1256 {
4eca0228 1257 _bfd_error_handler
695344c0 1258 /* xgettext:c-format */
871b3ab2 1259 (_("%pB: unable to initialize decompress status for section %s"),
4a114e3e
L
1260 abfd, name);
1261 return FALSE;
1262 }
151411f8
L
1263 }
1264
f6fe1ccd 1265 if (abfd->is_linker_input)
151411f8 1266 {
f6fe1ccd
L
1267 if (name[1] == 'z'
1268 && (action == decompress
1269 || (action == compress
1270 && (abfd->flags & BFD_COMPRESS_GABI) != 0)))
4e011fb5 1271 {
f6fe1ccd
L
1272 /* Convert section name from .zdebug_* to .debug_* so
1273 that linker will consider this section as a debug
1274 section. */
1275 char *new_name = convert_zdebug_to_debug (abfd, name);
151411f8
L
1276 if (new_name == NULL)
1277 return FALSE;
fd361982 1278 bfd_rename_section (newsect, new_name);
151411f8 1279 }
4a114e3e 1280 }
f6fe1ccd
L
1281 else
1282 /* For objdump, don't rename the section. For objcopy, delay
1283 section rename to elf_fake_sections. */
1284 newsect->flags |= SEC_ELF_RENAME;
4a114e3e
L
1285 }
1286
cc5277b1
ML
1287 /* GCC uses .gnu.lto_.lto.<some_hash> as a LTO bytecode information
1288 section. */
1289 const char *lto_section_name = ".gnu.lto_.lto.";
1290 if (strncmp (name, lto_section_name, strlen (lto_section_name)) == 0)
1291 {
1292 struct lto_section lsection;
1293 if (bfd_get_section_contents (abfd, newsect, &lsection, 0,
1294 sizeof (struct lto_section)))
1295 abfd->lto_slim_object = lsection.slim_object;
1296 }
1297
b34976b6 1298 return TRUE;
252b5132
RH
1299}
1300
84865015
NC
1301const char *const bfd_elf_section_type_names[] =
1302{
252b5132
RH
1303 "SHT_NULL", "SHT_PROGBITS", "SHT_SYMTAB", "SHT_STRTAB",
1304 "SHT_RELA", "SHT_HASH", "SHT_DYNAMIC", "SHT_NOTE",
1305 "SHT_NOBITS", "SHT_REL", "SHT_SHLIB", "SHT_DYNSYM",
1306};
1307
1049f94e 1308/* ELF relocs are against symbols. If we are producing relocatable
252b5132
RH
1309 output, and the reloc is against an external symbol, and nothing
1310 has given us any additional addend, the resulting reloc will also
1311 be against the same symbol. In such a case, we don't want to
1312 change anything about the way the reloc is handled, since it will
1313 all be done at final link time. Rather than put special case code
1314 into bfd_perform_relocation, all the reloc types use this howto
1315 function. It just short circuits the reloc if producing
1049f94e 1316 relocatable output against an external symbol. */
252b5132 1317
252b5132 1318bfd_reloc_status_type
217aa764
AM
1319bfd_elf_generic_reloc (bfd *abfd ATTRIBUTE_UNUSED,
1320 arelent *reloc_entry,
1321 asymbol *symbol,
1322 void *data ATTRIBUTE_UNUSED,
1323 asection *input_section,
1324 bfd *output_bfd,
1325 char **error_message ATTRIBUTE_UNUSED)
1326{
1327 if (output_bfd != NULL
252b5132
RH
1328 && (symbol->flags & BSF_SECTION_SYM) == 0
1329 && (! reloc_entry->howto->partial_inplace
1330 || reloc_entry->addend == 0))
1331 {
1332 reloc_entry->address += input_section->output_offset;
1333 return bfd_reloc_ok;
1334 }
1335
1336 return bfd_reloc_continue;
1337}
1338\f
84865015
NC
1339/* Returns TRUE if section A matches section B.
1340 Names, addresses and links may be different, but everything else
1341 should be the same. */
1342
1343static bfd_boolean
5522f910
NC
1344section_match (const Elf_Internal_Shdr * a,
1345 const Elf_Internal_Shdr * b)
84865015 1346{
ac85e67c
AM
1347 if (a->sh_type != b->sh_type
1348 || ((a->sh_flags ^ b->sh_flags) & ~SHF_INFO_LINK) != 0
1349 || a->sh_addralign != b->sh_addralign
1350 || a->sh_entsize != b->sh_entsize)
1351 return FALSE;
1352 if (a->sh_type == SHT_SYMTAB
1353 || a->sh_type == SHT_STRTAB)
1354 return TRUE;
1355 return a->sh_size == b->sh_size;
84865015
NC
1356}
1357
1358/* Find a section in OBFD that has the same characteristics
1359 as IHEADER. Return the index of this section or SHN_UNDEF if
1360 none can be found. Check's section HINT first, as this is likely
1361 to be the correct section. */
1362
1363static unsigned int
5cc4ca83
ST
1364find_link (const bfd *obfd, const Elf_Internal_Shdr *iheader,
1365 const unsigned int hint)
84865015
NC
1366{
1367 Elf_Internal_Shdr ** oheaders = elf_elfsections (obfd);
1368 unsigned int i;
1369
a55c9876
NC
1370 BFD_ASSERT (iheader != NULL);
1371
1372 /* See PR 20922 for a reproducer of the NULL test. */
5cc4ca83
ST
1373 if (hint < elf_numsections (obfd)
1374 && oheaders[hint] != NULL
a55c9876 1375 && section_match (oheaders[hint], iheader))
84865015
NC
1376 return hint;
1377
1378 for (i = 1; i < elf_numsections (obfd); i++)
1379 {
1380 Elf_Internal_Shdr * oheader = oheaders[i];
1381
a55c9876
NC
1382 if (oheader == NULL)
1383 continue;
84865015
NC
1384 if (section_match (oheader, iheader))
1385 /* FIXME: Do we care if there is a potential for
1386 multiple matches ? */
1387 return i;
1388 }
1389
1390 return SHN_UNDEF;
1391}
1392
5522f910
NC
1393/* PR 19938: Attempt to set the ELF section header fields of an OS or
1394 Processor specific section, based upon a matching input section.
1395 Returns TRUE upon success, FALSE otherwise. */
07d6d2b8 1396
5522f910
NC
1397static bfd_boolean
1398copy_special_section_fields (const bfd *ibfd,
1399 bfd *obfd,
1400 const Elf_Internal_Shdr *iheader,
1401 Elf_Internal_Shdr *oheader,
1402 const unsigned int secnum)
1403{
1404 const struct elf_backend_data *bed = get_elf_backend_data (obfd);
1405 const Elf_Internal_Shdr **iheaders = (const Elf_Internal_Shdr **) elf_elfsections (ibfd);
1406 bfd_boolean changed = FALSE;
1407 unsigned int sh_link;
1408
1409 if (oheader->sh_type == SHT_NOBITS)
1410 {
1411 /* This is a feature for objcopy --only-keep-debug:
1412 When a section's type is changed to NOBITS, we preserve
1413 the sh_link and sh_info fields so that they can be
1414 matched up with the original.
1415
1416 Note: Strictly speaking these assignments are wrong.
1417 The sh_link and sh_info fields should point to the
1418 relevent sections in the output BFD, which may not be in
1419 the same location as they were in the input BFD. But
1420 the whole point of this action is to preserve the
1421 original values of the sh_link and sh_info fields, so
1422 that they can be matched up with the section headers in
1423 the original file. So strictly speaking we may be
1424 creating an invalid ELF file, but it is only for a file
1425 that just contains debug info and only for sections
1426 without any contents. */
1427 if (oheader->sh_link == 0)
1428 oheader->sh_link = iheader->sh_link;
1429 if (oheader->sh_info == 0)
1430 oheader->sh_info = iheader->sh_info;
1431 return TRUE;
1432 }
1433
1434 /* Allow the target a chance to decide how these fields should be set. */
1435 if (bed->elf_backend_copy_special_section_fields != NULL
1436 && bed->elf_backend_copy_special_section_fields
1437 (ibfd, obfd, iheader, oheader))
1438 return TRUE;
1439
1440 /* We have an iheader which might match oheader, and which has non-zero
1441 sh_info and/or sh_link fields. Attempt to follow those links and find
1442 the section in the output bfd which corresponds to the linked section
1443 in the input bfd. */
1444 if (iheader->sh_link != SHN_UNDEF)
1445 {
4f3ca05b
NC
1446 /* See PR 20931 for a reproducer. */
1447 if (iheader->sh_link >= elf_numsections (ibfd))
1448 {
76cfced5 1449 _bfd_error_handler
4f3ca05b 1450 /* xgettext:c-format */
9793eb77 1451 (_("%pB: invalid sh_link field (%d) in section number %d"),
4f3ca05b
NC
1452 ibfd, iheader->sh_link, secnum);
1453 return FALSE;
1454 }
1455
5522f910
NC
1456 sh_link = find_link (obfd, iheaders[iheader->sh_link], iheader->sh_link);
1457 if (sh_link != SHN_UNDEF)
1458 {
1459 oheader->sh_link = sh_link;
1460 changed = TRUE;
1461 }
1462 else
1463 /* FIXME: Should we install iheader->sh_link
1464 if we could not find a match ? */
76cfced5 1465 _bfd_error_handler
695344c0 1466 /* xgettext:c-format */
9793eb77 1467 (_("%pB: failed to find link section for section %d"), obfd, secnum);
5522f910
NC
1468 }
1469
1470 if (iheader->sh_info)
1471 {
1472 /* The sh_info field can hold arbitrary information, but if the
1473 SHF_LINK_INFO flag is set then it should be interpreted as a
1474 section index. */
1475 if (iheader->sh_flags & SHF_INFO_LINK)
1476 {
1477 sh_link = find_link (obfd, iheaders[iheader->sh_info],
1478 iheader->sh_info);
1479 if (sh_link != SHN_UNDEF)
1480 oheader->sh_flags |= SHF_INFO_LINK;
1481 }
1482 else
1483 /* No idea what it means - just copy it. */
1484 sh_link = iheader->sh_info;
1485
1486 if (sh_link != SHN_UNDEF)
1487 {
1488 oheader->sh_info = sh_link;
1489 changed = TRUE;
1490 }
1491 else
76cfced5 1492 _bfd_error_handler
695344c0 1493 /* xgettext:c-format */
9793eb77 1494 (_("%pB: failed to find info section for section %d"), obfd, secnum);
5522f910
NC
1495 }
1496
1497 return changed;
1498}
07d6d2b8 1499
0ac4564e
L
1500/* Copy the program header and other data from one object module to
1501 another. */
252b5132 1502
b34976b6 1503bfd_boolean
217aa764 1504_bfd_elf_copy_private_bfd_data (bfd *ibfd, bfd *obfd)
2d502050 1505{
5522f910
NC
1506 const Elf_Internal_Shdr **iheaders = (const Elf_Internal_Shdr **) elf_elfsections (ibfd);
1507 Elf_Internal_Shdr **oheaders = elf_elfsections (obfd);
1508 const struct elf_backend_data *bed;
84865015
NC
1509 unsigned int i;
1510
2d502050 1511 if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour
84865015 1512 || bfd_get_flavour (obfd) != bfd_target_elf_flavour)
b34976b6 1513 return TRUE;
2d502050 1514
57b828ef
L
1515 if (!elf_flags_init (obfd))
1516 {
1517 elf_elfheader (obfd)->e_flags = elf_elfheader (ibfd)->e_flags;
1518 elf_flags_init (obfd) = TRUE;
1519 }
2d502050 1520
0ac4564e 1521 elf_gp (obfd) = elf_gp (ibfd);
57b828ef
L
1522
1523 /* Also copy the EI_OSABI field. */
1524 elf_elfheader (obfd)->e_ident[EI_OSABI] =
1525 elf_elfheader (ibfd)->e_ident[EI_OSABI];
104d59d1 1526
5522f910
NC
1527 /* If set, copy the EI_ABIVERSION field. */
1528 if (elf_elfheader (ibfd)->e_ident[EI_ABIVERSION])
1529 elf_elfheader (obfd)->e_ident[EI_ABIVERSION]
1530 = elf_elfheader (ibfd)->e_ident[EI_ABIVERSION];
07d6d2b8 1531
104d59d1
JM
1532 /* Copy object attributes. */
1533 _bfd_elf_copy_obj_attributes (ibfd, obfd);
63b9bbb7 1534
84865015
NC
1535 if (iheaders == NULL || oheaders == NULL)
1536 return TRUE;
63b9bbb7 1537
5522f910
NC
1538 bed = get_elf_backend_data (obfd);
1539
1540 /* Possibly copy other fields in the section header. */
84865015 1541 for (i = 1; i < elf_numsections (obfd); i++)
63b9bbb7 1542 {
84865015
NC
1543 unsigned int j;
1544 Elf_Internal_Shdr * oheader = oheaders[i];
63b9bbb7 1545
5522f910
NC
1546 /* Ignore ordinary sections. SHT_NOBITS sections are considered however
1547 because of a special case need for generating separate debug info
1548 files. See below for more details. */
84865015
NC
1549 if (oheader == NULL
1550 || (oheader->sh_type != SHT_NOBITS
5522f910
NC
1551 && oheader->sh_type < SHT_LOOS))
1552 continue;
1553
1554 /* Ignore empty sections, and sections whose
1555 fields have already been initialised. */
1556 if (oheader->sh_size == 0
84865015
NC
1557 || (oheader->sh_info != 0 && oheader->sh_link != 0))
1558 continue;
63b9bbb7 1559
84865015 1560 /* Scan for the matching section in the input bfd.
5522f910
NC
1561 First we try for a direct mapping between the input and output sections. */
1562 for (j = 1; j < elf_numsections (ibfd); j++)
1563 {
1564 const Elf_Internal_Shdr * iheader = iheaders[j];
1565
1566 if (iheader == NULL)
1567 continue;
1568
1569 if (oheader->bfd_section != NULL
1570 && iheader->bfd_section != NULL
1571 && iheader->bfd_section->output_section != NULL
1572 && iheader->bfd_section->output_section == oheader->bfd_section)
1573 {
1574 /* We have found a connection from the input section to the
1575 output section. Attempt to copy the header fields. If
1576 this fails then do not try any further sections - there
1577 should only be a one-to-one mapping between input and output. */
1578 if (! copy_special_section_fields (ibfd, obfd, iheader, oheader, i))
1579 j = elf_numsections (ibfd);
1580 break;
1581 }
1582 }
1583
1584 if (j < elf_numsections (ibfd))
1585 continue;
1586
1587 /* That failed. So try to deduce the corresponding input section.
84865015
NC
1588 Unfortunately we cannot compare names as the output string table
1589 is empty, so instead we check size, address and type. */
1590 for (j = 1; j < elf_numsections (ibfd); j++)
1591 {
5522f910 1592 const Elf_Internal_Shdr * iheader = iheaders[j];
84865015 1593
5522f910
NC
1594 if (iheader == NULL)
1595 continue;
1596
1597 /* Try matching fields in the input section's header.
1598 Since --only-keep-debug turns all non-debug sections into
84865015
NC
1599 SHT_NOBITS sections, the output SHT_NOBITS type matches any
1600 input type. */
1601 if ((oheader->sh_type == SHT_NOBITS
1602 || iheader->sh_type == oheader->sh_type)
5522f910
NC
1603 && (iheader->sh_flags & ~ SHF_INFO_LINK)
1604 == (oheader->sh_flags & ~ SHF_INFO_LINK)
84865015
NC
1605 && iheader->sh_addralign == oheader->sh_addralign
1606 && iheader->sh_entsize == oheader->sh_entsize
1607 && iheader->sh_size == oheader->sh_size
1608 && iheader->sh_addr == oheader->sh_addr
1609 && (iheader->sh_info != oheader->sh_info
1610 || iheader->sh_link != oheader->sh_link))
63b9bbb7 1611 {
5522f910
NC
1612 if (copy_special_section_fields (ibfd, obfd, iheader, oheader, i))
1613 break;
63b9bbb7
NC
1614 }
1615 }
5522f910
NC
1616
1617 if (j == elf_numsections (ibfd) && oheader->sh_type >= SHT_LOOS)
1618 {
1619 /* Final attempt. Call the backend copy function
1620 with a NULL input section. */
1621 if (bed->elf_backend_copy_special_section_fields != NULL)
1622 bed->elf_backend_copy_special_section_fields (ibfd, obfd, NULL, oheader);
1623 }
63b9bbb7
NC
1624 }
1625
b34976b6 1626 return TRUE;
2d502050
L
1627}
1628
cedc298e
L
1629static const char *
1630get_segment_type (unsigned int p_type)
1631{
1632 const char *pt;
1633 switch (p_type)
1634 {
1635 case PT_NULL: pt = "NULL"; break;
1636 case PT_LOAD: pt = "LOAD"; break;
1637 case PT_DYNAMIC: pt = "DYNAMIC"; break;
1638 case PT_INTERP: pt = "INTERP"; break;
1639 case PT_NOTE: pt = "NOTE"; break;
1640 case PT_SHLIB: pt = "SHLIB"; break;
1641 case PT_PHDR: pt = "PHDR"; break;
1642 case PT_TLS: pt = "TLS"; break;
1643 case PT_GNU_EH_FRAME: pt = "EH_FRAME"; break;
2b05f1b7 1644 case PT_GNU_STACK: pt = "STACK"; break;
cedc298e
L
1645 case PT_GNU_RELRO: pt = "RELRO"; break;
1646 default: pt = NULL; break;
1647 }
1648 return pt;
1649}
1650
f0b79d91
L
1651/* Print out the program headers. */
1652
b34976b6 1653bfd_boolean
217aa764 1654_bfd_elf_print_private_bfd_data (bfd *abfd, void *farg)
252b5132 1655{
a50b1753 1656 FILE *f = (FILE *) farg;
252b5132
RH
1657 Elf_Internal_Phdr *p;
1658 asection *s;
1659 bfd_byte *dynbuf = NULL;
1660
1661 p = elf_tdata (abfd)->phdr;
1662 if (p != NULL)
1663 {
1664 unsigned int i, c;
1665
1666 fprintf (f, _("\nProgram Header:\n"));
1667 c = elf_elfheader (abfd)->e_phnum;
1668 for (i = 0; i < c; i++, p++)
1669 {
cedc298e 1670 const char *pt = get_segment_type (p->p_type);
252b5132
RH
1671 char buf[20];
1672
cedc298e 1673 if (pt == NULL)
252b5132 1674 {
cedc298e
L
1675 sprintf (buf, "0x%lx", p->p_type);
1676 pt = buf;
252b5132 1677 }
dc810e39 1678 fprintf (f, "%8s off 0x", pt);
60b89a18 1679 bfd_fprintf_vma (abfd, f, p->p_offset);
252b5132 1680 fprintf (f, " vaddr 0x");
60b89a18 1681 bfd_fprintf_vma (abfd, f, p->p_vaddr);
252b5132 1682 fprintf (f, " paddr 0x");
60b89a18 1683 bfd_fprintf_vma (abfd, f, p->p_paddr);
252b5132
RH
1684 fprintf (f, " align 2**%u\n", bfd_log2 (p->p_align));
1685 fprintf (f, " filesz 0x");
60b89a18 1686 bfd_fprintf_vma (abfd, f, p->p_filesz);
252b5132 1687 fprintf (f, " memsz 0x");
60b89a18 1688 bfd_fprintf_vma (abfd, f, p->p_memsz);
252b5132
RH
1689 fprintf (f, " flags %c%c%c",
1690 (p->p_flags & PF_R) != 0 ? 'r' : '-',
1691 (p->p_flags & PF_W) != 0 ? 'w' : '-',
1692 (p->p_flags & PF_X) != 0 ? 'x' : '-');
dc810e39
AM
1693 if ((p->p_flags &~ (unsigned) (PF_R | PF_W | PF_X)) != 0)
1694 fprintf (f, " %lx", p->p_flags &~ (unsigned) (PF_R | PF_W | PF_X));
252b5132
RH
1695 fprintf (f, "\n");
1696 }
1697 }
1698
1699 s = bfd_get_section_by_name (abfd, ".dynamic");
1700 if (s != NULL)
1701 {
cb33740c 1702 unsigned int elfsec;
dc810e39 1703 unsigned long shlink;
252b5132
RH
1704 bfd_byte *extdyn, *extdynend;
1705 size_t extdynsize;
217aa764 1706 void (*swap_dyn_in) (bfd *, const void *, Elf_Internal_Dyn *);
252b5132
RH
1707
1708 fprintf (f, _("\nDynamic Section:\n"));
1709
eea6121a 1710 if (!bfd_malloc_and_get_section (abfd, s, &dynbuf))
252b5132
RH
1711 goto error_return;
1712
1713 elfsec = _bfd_elf_section_from_bfd_section (abfd, s);
cb33740c 1714 if (elfsec == SHN_BAD)
252b5132 1715 goto error_return;
dc810e39 1716 shlink = elf_elfsections (abfd)[elfsec]->sh_link;
252b5132
RH
1717
1718 extdynsize = get_elf_backend_data (abfd)->s->sizeof_dyn;
1719 swap_dyn_in = get_elf_backend_data (abfd)->s->swap_dyn_in;
1720
1721 extdyn = dynbuf;
06614111
NC
1722 /* PR 17512: file: 6f427532. */
1723 if (s->size < extdynsize)
1724 goto error_return;
eea6121a 1725 extdynend = extdyn + s->size;
1036838a 1726 /* PR 17512: file: id:000006,sig:06,src:000000,op:flip4,pos:5664.
07d6d2b8 1727 Fix range check. */
1036838a 1728 for (; extdyn <= (extdynend - extdynsize); extdyn += extdynsize)
252b5132
RH
1729 {
1730 Elf_Internal_Dyn dyn;
ad9563d6 1731 const char *name = "";
252b5132 1732 char ab[20];
b34976b6 1733 bfd_boolean stringp;
ad9563d6 1734 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
252b5132 1735
217aa764 1736 (*swap_dyn_in) (abfd, extdyn, &dyn);
252b5132
RH
1737
1738 if (dyn.d_tag == DT_NULL)
1739 break;
1740
b34976b6 1741 stringp = FALSE;
252b5132
RH
1742 switch (dyn.d_tag)
1743 {
1744 default:
ad9563d6
CM
1745 if (bed->elf_backend_get_target_dtag)
1746 name = (*bed->elf_backend_get_target_dtag) (dyn.d_tag);
1747
1748 if (!strcmp (name, ""))
1749 {
cd9af601 1750 sprintf (ab, "%#" BFD_VMA_FMT "x", dyn.d_tag);
ad9563d6
CM
1751 name = ab;
1752 }
252b5132
RH
1753 break;
1754
b34976b6 1755 case DT_NEEDED: name = "NEEDED"; stringp = TRUE; break;
252b5132
RH
1756 case DT_PLTRELSZ: name = "PLTRELSZ"; break;
1757 case DT_PLTGOT: name = "PLTGOT"; break;
1758 case DT_HASH: name = "HASH"; break;
1759 case DT_STRTAB: name = "STRTAB"; break;
1760 case DT_SYMTAB: name = "SYMTAB"; break;
1761 case DT_RELA: name = "RELA"; break;
1762 case DT_RELASZ: name = "RELASZ"; break;
1763 case DT_RELAENT: name = "RELAENT"; break;
1764 case DT_STRSZ: name = "STRSZ"; break;
1765 case DT_SYMENT: name = "SYMENT"; break;
1766 case DT_INIT: name = "INIT"; break;
1767 case DT_FINI: name = "FINI"; break;
b34976b6
AM
1768 case DT_SONAME: name = "SONAME"; stringp = TRUE; break;
1769 case DT_RPATH: name = "RPATH"; stringp = TRUE; break;
252b5132
RH
1770 case DT_SYMBOLIC: name = "SYMBOLIC"; break;
1771 case DT_REL: name = "REL"; break;
1772 case DT_RELSZ: name = "RELSZ"; break;
1773 case DT_RELENT: name = "RELENT"; break;
1774 case DT_PLTREL: name = "PLTREL"; break;
1775 case DT_DEBUG: name = "DEBUG"; break;
1776 case DT_TEXTREL: name = "TEXTREL"; break;
1777 case DT_JMPREL: name = "JMPREL"; break;
94558834
L
1778 case DT_BIND_NOW: name = "BIND_NOW"; break;
1779 case DT_INIT_ARRAY: name = "INIT_ARRAY"; break;
1780 case DT_FINI_ARRAY: name = "FINI_ARRAY"; break;
1781 case DT_INIT_ARRAYSZ: name = "INIT_ARRAYSZ"; break;
1782 case DT_FINI_ARRAYSZ: name = "FINI_ARRAYSZ"; break;
b34976b6 1783 case DT_RUNPATH: name = "RUNPATH"; stringp = TRUE; break;
94558834
L
1784 case DT_FLAGS: name = "FLAGS"; break;
1785 case DT_PREINIT_ARRAY: name = "PREINIT_ARRAY"; break;
1786 case DT_PREINIT_ARRAYSZ: name = "PREINIT_ARRAYSZ"; break;
d48188b9 1787 case DT_CHECKSUM: name = "CHECKSUM"; break;
94558834
L
1788 case DT_PLTPADSZ: name = "PLTPADSZ"; break;
1789 case DT_MOVEENT: name = "MOVEENT"; break;
1790 case DT_MOVESZ: name = "MOVESZ"; break;
1791 case DT_FEATURE: name = "FEATURE"; break;
1792 case DT_POSFLAG_1: name = "POSFLAG_1"; break;
1793 case DT_SYMINSZ: name = "SYMINSZ"; break;
1794 case DT_SYMINENT: name = "SYMINENT"; break;
b34976b6
AM
1795 case DT_CONFIG: name = "CONFIG"; stringp = TRUE; break;
1796 case DT_DEPAUDIT: name = "DEPAUDIT"; stringp = TRUE; break;
1797 case DT_AUDIT: name = "AUDIT"; stringp = TRUE; break;
94558834
L
1798 case DT_PLTPAD: name = "PLTPAD"; break;
1799 case DT_MOVETAB: name = "MOVETAB"; break;
1800 case DT_SYMINFO: name = "SYMINFO"; break;
1801 case DT_RELACOUNT: name = "RELACOUNT"; break;
1802 case DT_RELCOUNT: name = "RELCOUNT"; break;
1803 case DT_FLAGS_1: name = "FLAGS_1"; break;
252b5132
RH
1804 case DT_VERSYM: name = "VERSYM"; break;
1805 case DT_VERDEF: name = "VERDEF"; break;
1806 case DT_VERDEFNUM: name = "VERDEFNUM"; break;
1807 case DT_VERNEED: name = "VERNEED"; break;
1808 case DT_VERNEEDNUM: name = "VERNEEDNUM"; break;
b34976b6 1809 case DT_AUXILIARY: name = "AUXILIARY"; stringp = TRUE; break;
94558834 1810 case DT_USED: name = "USED"; break;
b34976b6 1811 case DT_FILTER: name = "FILTER"; stringp = TRUE; break;
fdc90cb4 1812 case DT_GNU_HASH: name = "GNU_HASH"; break;
252b5132
RH
1813 }
1814
ad9563d6 1815 fprintf (f, " %-20s ", name);
252b5132 1816 if (! stringp)
a1f3c56e
AN
1817 {
1818 fprintf (f, "0x");
1819 bfd_fprintf_vma (abfd, f, dyn.d_un.d_val);
1820 }
252b5132
RH
1821 else
1822 {
1823 const char *string;
dc810e39 1824 unsigned int tagv = dyn.d_un.d_val;
252b5132 1825
dc810e39 1826 string = bfd_elf_string_from_elf_section (abfd, shlink, tagv);
252b5132
RH
1827 if (string == NULL)
1828 goto error_return;
1829 fprintf (f, "%s", string);
1830 }
1831 fprintf (f, "\n");
1832 }
1833
1834 free (dynbuf);
1835 dynbuf = NULL;
1836 }
1837
1838 if ((elf_dynverdef (abfd) != 0 && elf_tdata (abfd)->verdef == NULL)
1839 || (elf_dynverref (abfd) != 0 && elf_tdata (abfd)->verref == NULL))
1840 {
fc0e6df6 1841 if (! _bfd_elf_slurp_version_tables (abfd, FALSE))
b34976b6 1842 return FALSE;
252b5132
RH
1843 }
1844
1845 if (elf_dynverdef (abfd) != 0)
1846 {
1847 Elf_Internal_Verdef *t;
1848
1849 fprintf (f, _("\nVersion definitions:\n"));
1850 for (t = elf_tdata (abfd)->verdef; t != NULL; t = t->vd_nextdef)
1851 {
1852 fprintf (f, "%d 0x%2.2x 0x%8.8lx %s\n", t->vd_ndx,
d0fb9a8d
JJ
1853 t->vd_flags, t->vd_hash,
1854 t->vd_nodename ? t->vd_nodename : "<corrupt>");
1855 if (t->vd_auxptr != NULL && t->vd_auxptr->vda_nextptr != NULL)
252b5132
RH
1856 {
1857 Elf_Internal_Verdaux *a;
1858
1859 fprintf (f, "\t");
1860 for (a = t->vd_auxptr->vda_nextptr;
1861 a != NULL;
1862 a = a->vda_nextptr)
d0fb9a8d
JJ
1863 fprintf (f, "%s ",
1864 a->vda_nodename ? a->vda_nodename : "<corrupt>");
252b5132
RH
1865 fprintf (f, "\n");
1866 }
1867 }
1868 }
1869
1870 if (elf_dynverref (abfd) != 0)
1871 {
1872 Elf_Internal_Verneed *t;
1873
1874 fprintf (f, _("\nVersion References:\n"));
1875 for (t = elf_tdata (abfd)->verref; t != NULL; t = t->vn_nextref)
1876 {
1877 Elf_Internal_Vernaux *a;
1878
d0fb9a8d
JJ
1879 fprintf (f, _(" required from %s:\n"),
1880 t->vn_filename ? t->vn_filename : "<corrupt>");
252b5132
RH
1881 for (a = t->vn_auxptr; a != NULL; a = a->vna_nextptr)
1882 fprintf (f, " 0x%8.8lx 0x%2.2x %2.2d %s\n", a->vna_hash,
d0fb9a8d
JJ
1883 a->vna_flags, a->vna_other,
1884 a->vna_nodename ? a->vna_nodename : "<corrupt>");
252b5132
RH
1885 }
1886 }
1887
b34976b6 1888 return TRUE;
252b5132
RH
1889
1890 error_return:
1891 if (dynbuf != NULL)
1892 free (dynbuf);
b34976b6 1893 return FALSE;
252b5132
RH
1894}
1895
bb4d2ac2
L
1896/* Get version string. */
1897
1898const char *
60bb06bc
L
1899_bfd_elf_get_symbol_version_string (bfd *abfd, asymbol *symbol,
1900 bfd_boolean *hidden)
bb4d2ac2
L
1901{
1902 const char *version_string = NULL;
1903 if (elf_dynversym (abfd) != 0
1904 && (elf_dynverdef (abfd) != 0 || elf_dynverref (abfd) != 0))
1905 {
1906 unsigned int vernum = ((elf_symbol_type *) symbol)->version;
1907
1908 *hidden = (vernum & VERSYM_HIDDEN) != 0;
1909 vernum &= VERSYM_VERSION;
1910
1911 if (vernum == 0)
1912 version_string = "";
1f6f5dba
L
1913 else if (vernum == 1
1914 && (vernum > elf_tdata (abfd)->cverdefs
1915 || (elf_tdata (abfd)->verdef[0].vd_flags
1916 == VER_FLG_BASE)))
bb4d2ac2
L
1917 version_string = "Base";
1918 else if (vernum <= elf_tdata (abfd)->cverdefs)
1919 version_string =
1920 elf_tdata (abfd)->verdef[vernum - 1].vd_nodename;
1921 else
1922 {
1923 Elf_Internal_Verneed *t;
1924
7a815dd5 1925 version_string = _("<corrupt>");
bb4d2ac2
L
1926 for (t = elf_tdata (abfd)->verref;
1927 t != NULL;
1928 t = t->vn_nextref)
1929 {
1930 Elf_Internal_Vernaux *a;
1931
1932 for (a = t->vn_auxptr; a != NULL; a = a->vna_nextptr)
1933 {
1934 if (a->vna_other == vernum)
1935 {
1936 version_string = a->vna_nodename;
1937 break;
1938 }
1939 }
1940 }
1941 }
1942 }
1943 return version_string;
1944}
1945
252b5132
RH
1946/* Display ELF-specific fields of a symbol. */
1947
1948void
217aa764
AM
1949bfd_elf_print_symbol (bfd *abfd,
1950 void *filep,
1951 asymbol *symbol,
1952 bfd_print_symbol_type how)
252b5132 1953{
a50b1753 1954 FILE *file = (FILE *) filep;
252b5132
RH
1955 switch (how)
1956 {
1957 case bfd_print_symbol_name:
1958 fprintf (file, "%s", symbol->name);
1959 break;
1960 case bfd_print_symbol_more:
1961 fprintf (file, "elf ");
60b89a18 1962 bfd_fprintf_vma (abfd, file, symbol->value);
cd9af601 1963 fprintf (file, " %x", symbol->flags);
252b5132
RH
1964 break;
1965 case bfd_print_symbol_all:
1966 {
4e8a9624
AM
1967 const char *section_name;
1968 const char *name = NULL;
9c5bfbb7 1969 const struct elf_backend_data *bed;
7a13edea 1970 unsigned char st_other;
dbb410c3 1971 bfd_vma val;
bb4d2ac2
L
1972 const char *version_string;
1973 bfd_boolean hidden;
c044fabd 1974
252b5132 1975 section_name = symbol->section ? symbol->section->name : "(*none*)";
587ff49e
RH
1976
1977 bed = get_elf_backend_data (abfd);
1978 if (bed->elf_backend_print_symbol_all)
c044fabd 1979 name = (*bed->elf_backend_print_symbol_all) (abfd, filep, symbol);
587ff49e
RH
1980
1981 if (name == NULL)
1982 {
7ee38065 1983 name = symbol->name;
217aa764 1984 bfd_print_symbol_vandf (abfd, file, symbol);
587ff49e
RH
1985 }
1986
252b5132
RH
1987 fprintf (file, " %s\t", section_name);
1988 /* Print the "other" value for a symbol. For common symbols,
1989 we've already printed the size; now print the alignment.
1990 For other symbols, we have no specified alignment, and
1991 we've printed the address; now print the size. */
dcf6c779 1992 if (symbol->section && bfd_is_com_section (symbol->section))
dbb410c3
AM
1993 val = ((elf_symbol_type *) symbol)->internal_elf_sym.st_value;
1994 else
1995 val = ((elf_symbol_type *) symbol)->internal_elf_sym.st_size;
1996 bfd_fprintf_vma (abfd, file, val);
252b5132
RH
1997
1998 /* If we have version information, print it. */
60bb06bc
L
1999 version_string = _bfd_elf_get_symbol_version_string (abfd,
2000 symbol,
2001 &hidden);
bb4d2ac2 2002 if (version_string)
252b5132 2003 {
bb4d2ac2 2004 if (!hidden)
252b5132
RH
2005 fprintf (file, " %-11s", version_string);
2006 else
2007 {
2008 int i;
2009
2010 fprintf (file, " (%s)", version_string);
2011 for (i = 10 - strlen (version_string); i > 0; --i)
2012 putc (' ', file);
2013 }
2014 }
2015
2016 /* If the st_other field is not zero, print it. */
7a13edea 2017 st_other = ((elf_symbol_type *) symbol)->internal_elf_sym.st_other;
c044fabd 2018
7a13edea
NC
2019 switch (st_other)
2020 {
2021 case 0: break;
2022 case STV_INTERNAL: fprintf (file, " .internal"); break;
2023 case STV_HIDDEN: fprintf (file, " .hidden"); break;
2024 case STV_PROTECTED: fprintf (file, " .protected"); break;
2025 default:
2026 /* Some other non-defined flags are also present, so print
2027 everything hex. */
2028 fprintf (file, " 0x%02x", (unsigned int) st_other);
2029 }
252b5132 2030
587ff49e 2031 fprintf (file, " %s", name);
252b5132
RH
2032 }
2033 break;
2034 }
2035}
252b5132
RH
2036\f
2037/* ELF .o/exec file reading */
2038
c044fabd 2039/* Create a new bfd section from an ELF section header. */
252b5132 2040
b34976b6 2041bfd_boolean
217aa764 2042bfd_section_from_shdr (bfd *abfd, unsigned int shindex)
252b5132 2043{
4fbb74a6
AM
2044 Elf_Internal_Shdr *hdr;
2045 Elf_Internal_Ehdr *ehdr;
2046 const struct elf_backend_data *bed;
90937f86 2047 const char *name;
bf67003b
NC
2048 bfd_boolean ret = TRUE;
2049 static bfd_boolean * sections_being_created = NULL;
5a4b0ccc 2050 static bfd * sections_being_created_abfd = NULL;
bf67003b 2051 static unsigned int nesting = 0;
252b5132 2052
4fbb74a6
AM
2053 if (shindex >= elf_numsections (abfd))
2054 return FALSE;
2055
bf67003b
NC
2056 if (++ nesting > 3)
2057 {
2058 /* PR17512: A corrupt ELF binary might contain a recursive group of
67ce483b 2059 sections, with each the string indices pointing to the next in the
bf67003b
NC
2060 loop. Detect this here, by refusing to load a section that we are
2061 already in the process of loading. We only trigger this test if
2062 we have nested at least three sections deep as normal ELF binaries
5a4b0ccc
NC
2063 can expect to recurse at least once.
2064
2065 FIXME: It would be better if this array was attached to the bfd,
2066 rather than being held in a static pointer. */
2067
2068 if (sections_being_created_abfd != abfd)
2069 sections_being_created = NULL;
bf67003b
NC
2070 if (sections_being_created == NULL)
2071 {
bf67003b 2072 sections_being_created = (bfd_boolean *)
7a6e0d89 2073 bfd_zalloc2 (abfd, elf_numsections (abfd), sizeof (bfd_boolean));
5a4b0ccc 2074 sections_being_created_abfd = abfd;
bf67003b
NC
2075 }
2076 if (sections_being_created [shindex])
2077 {
4eca0228 2078 _bfd_error_handler
871b3ab2 2079 (_("%pB: warning: loop in section dependencies detected"), abfd);
bf67003b
NC
2080 return FALSE;
2081 }
2082 sections_being_created [shindex] = TRUE;
2083 }
2084
4fbb74a6
AM
2085 hdr = elf_elfsections (abfd)[shindex];
2086 ehdr = elf_elfheader (abfd);
2087 name = bfd_elf_string_from_elf_section (abfd, ehdr->e_shstrndx,
1b3a8575 2088 hdr->sh_name);
933d961a 2089 if (name == NULL)
bf67003b 2090 goto fail;
252b5132 2091
4fbb74a6 2092 bed = get_elf_backend_data (abfd);
252b5132
RH
2093 switch (hdr->sh_type)
2094 {
2095 case SHT_NULL:
2096 /* Inactive section. Throw it away. */
bf67003b 2097 goto success;
252b5132 2098
bf67003b
NC
2099 case SHT_PROGBITS: /* Normal section with contents. */
2100 case SHT_NOBITS: /* .bss section. */
2101 case SHT_HASH: /* .hash section. */
2102 case SHT_NOTE: /* .note section. */
25e27870
L
2103 case SHT_INIT_ARRAY: /* .init_array section. */
2104 case SHT_FINI_ARRAY: /* .fini_array section. */
2105 case SHT_PREINIT_ARRAY: /* .preinit_array section. */
7f1204bb 2106 case SHT_GNU_LIBLIST: /* .gnu.liblist section. */
fdc90cb4 2107 case SHT_GNU_HASH: /* .gnu.hash section. */
bf67003b
NC
2108 ret = _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex);
2109 goto success;
252b5132 2110
797fc050 2111 case SHT_DYNAMIC: /* Dynamic linking information. */
6dc132d9 2112 if (! _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex))
bf67003b
NC
2113 goto fail;
2114
cfcac11d
NC
2115 if (hdr->sh_link > elf_numsections (abfd))
2116 {
caa83f8b 2117 /* PR 10478: Accept Solaris binaries with a sh_link
cfcac11d
NC
2118 field set to SHN_BEFORE or SHN_AFTER. */
2119 switch (bfd_get_arch (abfd))
2120 {
caa83f8b 2121 case bfd_arch_i386:
cfcac11d
NC
2122 case bfd_arch_sparc:
2123 if (hdr->sh_link == (SHN_LORESERVE & 0xffff) /* SHN_BEFORE */
2124 || hdr->sh_link == ((SHN_LORESERVE + 1) & 0xffff) /* SHN_AFTER */)
2125 break;
2126 /* Otherwise fall through. */
2127 default:
bf67003b 2128 goto fail;
cfcac11d
NC
2129 }
2130 }
2131 else if (elf_elfsections (abfd)[hdr->sh_link] == NULL)
bf67003b 2132 goto fail;
cfcac11d 2133 else if (elf_elfsections (abfd)[hdr->sh_link]->sh_type != SHT_STRTAB)
797fc050
AM
2134 {
2135 Elf_Internal_Shdr *dynsymhdr;
2136
2137 /* The shared libraries distributed with hpux11 have a bogus
2138 sh_link field for the ".dynamic" section. Find the
2139 string table for the ".dynsym" section instead. */
2140 if (elf_dynsymtab (abfd) != 0)
2141 {
2142 dynsymhdr = elf_elfsections (abfd)[elf_dynsymtab (abfd)];
2143 hdr->sh_link = dynsymhdr->sh_link;
2144 }
2145 else
2146 {
2147 unsigned int i, num_sec;
2148
2149 num_sec = elf_numsections (abfd);
2150 for (i = 1; i < num_sec; i++)
2151 {
2152 dynsymhdr = elf_elfsections (abfd)[i];
2153 if (dynsymhdr->sh_type == SHT_DYNSYM)
2154 {
2155 hdr->sh_link = dynsymhdr->sh_link;
2156 break;
2157 }
2158 }
2159 }
2160 }
bf67003b 2161 goto success;
797fc050 2162
bf67003b 2163 case SHT_SYMTAB: /* A symbol table. */
252b5132 2164 if (elf_onesymtab (abfd) == shindex)
bf67003b 2165 goto success;
252b5132 2166
a50b2160 2167 if (hdr->sh_entsize != bed->s->sizeof_sym)
bf67003b
NC
2168 goto fail;
2169
3337c1e5 2170 if (hdr->sh_info * hdr->sh_entsize > hdr->sh_size)
eee3b786
AM
2171 {
2172 if (hdr->sh_size != 0)
bf67003b 2173 goto fail;
eee3b786
AM
2174 /* Some assemblers erroneously set sh_info to one with a
2175 zero sh_size. ld sees this as a global symbol count
2176 of (unsigned) -1. Fix it here. */
2177 hdr->sh_info = 0;
bf67003b 2178 goto success;
eee3b786 2179 }
bf67003b 2180
16ad13ec
NC
2181 /* PR 18854: A binary might contain more than one symbol table.
2182 Unusual, but possible. Warn, but continue. */
2183 if (elf_onesymtab (abfd) != 0)
2184 {
4eca0228 2185 _bfd_error_handler
695344c0 2186 /* xgettext:c-format */
871b3ab2 2187 (_("%pB: warning: multiple symbol tables detected"
63a5468a 2188 " - ignoring the table in section %u"),
16ad13ec
NC
2189 abfd, shindex);
2190 goto success;
2191 }
252b5132 2192 elf_onesymtab (abfd) = shindex;
6a40cf0c
NC
2193 elf_symtab_hdr (abfd) = *hdr;
2194 elf_elfsections (abfd)[shindex] = hdr = & elf_symtab_hdr (abfd);
252b5132
RH
2195 abfd->flags |= HAS_SYMS;
2196
2197 /* Sometimes a shared object will map in the symbol table. If
08a40648
AM
2198 SHF_ALLOC is set, and this is a shared object, then we also
2199 treat this section as a BFD section. We can not base the
2200 decision purely on SHF_ALLOC, because that flag is sometimes
2201 set in a relocatable object file, which would confuse the
2202 linker. */
252b5132
RH
2203 if ((hdr->sh_flags & SHF_ALLOC) != 0
2204 && (abfd->flags & DYNAMIC) != 0
6dc132d9
L
2205 && ! _bfd_elf_make_section_from_shdr (abfd, hdr, name,
2206 shindex))
bf67003b 2207 goto fail;
252b5132 2208
1b3a8575
AM
2209 /* Go looking for SHT_SYMTAB_SHNDX too, since if there is one we
2210 can't read symbols without that section loaded as well. It
2211 is most likely specified by the next section header. */
6a40cf0c
NC
2212 {
2213 elf_section_list * entry;
2214 unsigned int i, num_sec;
1b3a8575 2215
6a40cf0c
NC
2216 for (entry = elf_symtab_shndx_list (abfd); entry != NULL; entry = entry->next)
2217 if (entry->hdr.sh_link == shindex)
2218 goto success;
2219
2220 num_sec = elf_numsections (abfd);
2221 for (i = shindex + 1; i < num_sec; i++)
2222 {
2223 Elf_Internal_Shdr *hdr2 = elf_elfsections (abfd)[i];
2224
2225 if (hdr2->sh_type == SHT_SYMTAB_SHNDX
2226 && hdr2->sh_link == shindex)
2227 break;
2228 }
2229
2230 if (i == num_sec)
2231 for (i = 1; i < shindex; i++)
1b3a8575
AM
2232 {
2233 Elf_Internal_Shdr *hdr2 = elf_elfsections (abfd)[i];
6a40cf0c 2234
1b3a8575
AM
2235 if (hdr2->sh_type == SHT_SYMTAB_SHNDX
2236 && hdr2->sh_link == shindex)
2237 break;
2238 }
6a40cf0c
NC
2239
2240 if (i != shindex)
2241 ret = bfd_section_from_shdr (abfd, i);
2242 /* else FIXME: we have failed to find the symbol table - should we issue an error ? */
2243 goto success;
2244 }
252b5132 2245
bf67003b 2246 case SHT_DYNSYM: /* A dynamic symbol table. */
252b5132 2247 if (elf_dynsymtab (abfd) == shindex)
bf67003b 2248 goto success;
252b5132 2249
a50b2160 2250 if (hdr->sh_entsize != bed->s->sizeof_sym)
bf67003b
NC
2251 goto fail;
2252
eee3b786
AM
2253 if (hdr->sh_info * hdr->sh_entsize > hdr->sh_size)
2254 {
2255 if (hdr->sh_size != 0)
bf67003b
NC
2256 goto fail;
2257
eee3b786
AM
2258 /* Some linkers erroneously set sh_info to one with a
2259 zero sh_size. ld sees this as a global symbol count
2260 of (unsigned) -1. Fix it here. */
2261 hdr->sh_info = 0;
bf67003b 2262 goto success;
eee3b786 2263 }
bf67003b 2264
16ad13ec
NC
2265 /* PR 18854: A binary might contain more than one dynamic symbol table.
2266 Unusual, but possible. Warn, but continue. */
2267 if (elf_dynsymtab (abfd) != 0)
2268 {
4eca0228 2269 _bfd_error_handler
695344c0 2270 /* xgettext:c-format */
871b3ab2 2271 (_("%pB: warning: multiple dynamic symbol tables detected"
63a5468a 2272 " - ignoring the table in section %u"),
16ad13ec
NC
2273 abfd, shindex);
2274 goto success;
2275 }
252b5132
RH
2276 elf_dynsymtab (abfd) = shindex;
2277 elf_tdata (abfd)->dynsymtab_hdr = *hdr;
2278 elf_elfsections (abfd)[shindex] = hdr = &elf_tdata (abfd)->dynsymtab_hdr;
2279 abfd->flags |= HAS_SYMS;
2280
2281 /* Besides being a symbol table, we also treat this as a regular
2282 section, so that objcopy can handle it. */
bf67003b
NC
2283 ret = _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex);
2284 goto success;
252b5132 2285
bf67003b 2286 case SHT_SYMTAB_SHNDX: /* Symbol section indices when >64k sections. */
6a40cf0c
NC
2287 {
2288 elf_section_list * entry;
9ad5cbcf 2289
6a40cf0c
NC
2290 for (entry = elf_symtab_shndx_list (abfd); entry != NULL; entry = entry->next)
2291 if (entry->ndx == shindex)
2292 goto success;
07d6d2b8 2293
7a6e0d89 2294 entry = bfd_alloc (abfd, sizeof (*entry));
6a40cf0c
NC
2295 if (entry == NULL)
2296 goto fail;
2297 entry->ndx = shindex;
2298 entry->hdr = * hdr;
2299 entry->next = elf_symtab_shndx_list (abfd);
2300 elf_symtab_shndx_list (abfd) = entry;
2301 elf_elfsections (abfd)[shindex] = & entry->hdr;
2302 goto success;
2303 }
9ad5cbcf 2304
bf67003b 2305 case SHT_STRTAB: /* A string table. */
252b5132 2306 if (hdr->bfd_section != NULL)
bf67003b
NC
2307 goto success;
2308
252b5132
RH
2309 if (ehdr->e_shstrndx == shindex)
2310 {
2311 elf_tdata (abfd)->shstrtab_hdr = *hdr;
2312 elf_elfsections (abfd)[shindex] = &elf_tdata (abfd)->shstrtab_hdr;
bf67003b 2313 goto success;
252b5132 2314 }
bf67003b 2315
1b3a8575
AM
2316 if (elf_elfsections (abfd)[elf_onesymtab (abfd)]->sh_link == shindex)
2317 {
2318 symtab_strtab:
2319 elf_tdata (abfd)->strtab_hdr = *hdr;
2320 elf_elfsections (abfd)[shindex] = &elf_tdata (abfd)->strtab_hdr;
bf67003b 2321 goto success;
1b3a8575 2322 }
bf67003b 2323
1b3a8575
AM
2324 if (elf_elfsections (abfd)[elf_dynsymtab (abfd)]->sh_link == shindex)
2325 {
2326 dynsymtab_strtab:
2327 elf_tdata (abfd)->dynstrtab_hdr = *hdr;
2328 hdr = &elf_tdata (abfd)->dynstrtab_hdr;
2329 elf_elfsections (abfd)[shindex] = hdr;
2330 /* We also treat this as a regular section, so that objcopy
2331 can handle it. */
bf67003b
NC
2332 ret = _bfd_elf_make_section_from_shdr (abfd, hdr, name,
2333 shindex);
2334 goto success;
1b3a8575 2335 }
252b5132 2336
1b3a8575
AM
2337 /* If the string table isn't one of the above, then treat it as a
2338 regular section. We need to scan all the headers to be sure,
2339 just in case this strtab section appeared before the above. */
2340 if (elf_onesymtab (abfd) == 0 || elf_dynsymtab (abfd) == 0)
2341 {
2342 unsigned int i, num_sec;
252b5132 2343
1b3a8575
AM
2344 num_sec = elf_numsections (abfd);
2345 for (i = 1; i < num_sec; i++)
2346 {
2347 Elf_Internal_Shdr *hdr2 = elf_elfsections (abfd)[i];
2348 if (hdr2->sh_link == shindex)
2349 {
933d961a
JJ
2350 /* Prevent endless recursion on broken objects. */
2351 if (i == shindex)
bf67003b 2352 goto fail;
1b3a8575 2353 if (! bfd_section_from_shdr (abfd, i))
bf67003b 2354 goto fail;
1b3a8575
AM
2355 if (elf_onesymtab (abfd) == i)
2356 goto symtab_strtab;
2357 if (elf_dynsymtab (abfd) == i)
2358 goto dynsymtab_strtab;
2359 }
2360 }
2361 }
bf67003b
NC
2362 ret = _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex);
2363 goto success;
252b5132
RH
2364
2365 case SHT_REL:
2366 case SHT_RELA:
2367 /* *These* do a lot of work -- but build no sections! */
2368 {
2369 asection *target_sect;
d4730f92 2370 Elf_Internal_Shdr *hdr2, **p_hdr;
9ad5cbcf 2371 unsigned int num_sec = elf_numsections (abfd);
d4730f92 2372 struct bfd_elf_section_data *esdt;
252b5132 2373
aa2ca951
JJ
2374 if (hdr->sh_entsize
2375 != (bfd_size_type) (hdr->sh_type == SHT_REL
a50b2160 2376 ? bed->s->sizeof_rel : bed->s->sizeof_rela))
bf67003b 2377 goto fail;
a50b2160 2378
03ae5f59 2379 /* Check for a bogus link to avoid crashing. */
4fbb74a6 2380 if (hdr->sh_link >= num_sec)
03ae5f59 2381 {
4eca0228 2382 _bfd_error_handler
695344c0 2383 /* xgettext:c-format */
871b3ab2 2384 (_("%pB: invalid link %u for reloc section %s (index %u)"),
4eca0228 2385 abfd, hdr->sh_link, name, shindex);
bf67003b
NC
2386 ret = _bfd_elf_make_section_from_shdr (abfd, hdr, name,
2387 shindex);
2388 goto success;
03ae5f59
ILT
2389 }
2390
252b5132
RH
2391 /* For some incomprehensible reason Oracle distributes
2392 libraries for Solaris in which some of the objects have
2393 bogus sh_link fields. It would be nice if we could just
2394 reject them, but, unfortunately, some people need to use
2395 them. We scan through the section headers; if we find only
2396 one suitable symbol table, we clobber the sh_link to point
83b89087
L
2397 to it. I hope this doesn't break anything.
2398
2399 Don't do it on executable nor shared library. */
2400 if ((abfd->flags & (DYNAMIC | EXEC_P)) == 0
2401 && elf_elfsections (abfd)[hdr->sh_link]->sh_type != SHT_SYMTAB
252b5132
RH
2402 && elf_elfsections (abfd)[hdr->sh_link]->sh_type != SHT_DYNSYM)
2403 {
9ad5cbcf 2404 unsigned int scan;
252b5132
RH
2405 int found;
2406
2407 found = 0;
9ad5cbcf 2408 for (scan = 1; scan < num_sec; scan++)
252b5132
RH
2409 {
2410 if (elf_elfsections (abfd)[scan]->sh_type == SHT_SYMTAB
2411 || elf_elfsections (abfd)[scan]->sh_type == SHT_DYNSYM)
2412 {
2413 if (found != 0)
2414 {
2415 found = 0;
2416 break;
2417 }
2418 found = scan;
2419 }
2420 }
2421 if (found != 0)
2422 hdr->sh_link = found;
2423 }
2424
2425 /* Get the symbol table. */
1b3a8575
AM
2426 if ((elf_elfsections (abfd)[hdr->sh_link]->sh_type == SHT_SYMTAB
2427 || elf_elfsections (abfd)[hdr->sh_link]->sh_type == SHT_DYNSYM)
252b5132 2428 && ! bfd_section_from_shdr (abfd, hdr->sh_link))
bf67003b 2429 goto fail;
252b5132 2430
a4bcd733
AM
2431 /* If this is an alloc section in an executable or shared
2432 library, or the reloc section does not use the main symbol
2433 table we don't treat it as a reloc section. BFD can't
2434 adequately represent such a section, so at least for now,
2435 we don't try. We just present it as a normal section. We
2436 also can't use it as a reloc section if it points to the
2437 null section, an invalid section, another reloc section, or
2438 its sh_link points to the null section. */
2439 if (((abfd->flags & (DYNAMIC | EXEC_P)) != 0
2440 && (hdr->sh_flags & SHF_ALLOC) != 0)
83b89087 2441 || hdr->sh_link == SHN_UNDEF
a4bcd733 2442 || hdr->sh_link != elf_onesymtab (abfd)
185ef66d 2443 || hdr->sh_info == SHN_UNDEF
185ef66d
AM
2444 || hdr->sh_info >= num_sec
2445 || elf_elfsections (abfd)[hdr->sh_info]->sh_type == SHT_REL
2446 || elf_elfsections (abfd)[hdr->sh_info]->sh_type == SHT_RELA)
bf67003b
NC
2447 {
2448 ret = _bfd_elf_make_section_from_shdr (abfd, hdr, name,
2449 shindex);
2450 goto success;
2451 }
252b5132
RH
2452
2453 if (! bfd_section_from_shdr (abfd, hdr->sh_info))
bf67003b
NC
2454 goto fail;
2455
252b5132
RH
2456 target_sect = bfd_section_from_elf_index (abfd, hdr->sh_info);
2457 if (target_sect == NULL)
bf67003b 2458 goto fail;
252b5132 2459
d4730f92
BS
2460 esdt = elf_section_data (target_sect);
2461 if (hdr->sh_type == SHT_RELA)
2462 p_hdr = &esdt->rela.hdr;
252b5132 2463 else
d4730f92
BS
2464 p_hdr = &esdt->rel.hdr;
2465
a7ba3896
NC
2466 /* PR 17512: file: 0b4f81b7.
2467 Also see PR 24456, for a file which deliberately has two reloc
2468 sections. */
06614111 2469 if (*p_hdr != NULL)
a7ba3896
NC
2470 {
2471 _bfd_error_handler
2472 /* xgettext:c-format */
2473 (_("%pB: warning: multiple relocation sections for section %pA \
2474found - ignoring all but the first"),
2475 abfd, target_sect);
2476 goto success;
2477 }
ef53be89 2478 hdr2 = (Elf_Internal_Shdr *) bfd_alloc (abfd, sizeof (*hdr2));
d4730f92 2479 if (hdr2 == NULL)
bf67003b 2480 goto fail;
252b5132 2481 *hdr2 = *hdr;
d4730f92 2482 *p_hdr = hdr2;
252b5132 2483 elf_elfsections (abfd)[shindex] = hdr2;
056bafd4
MR
2484 target_sect->reloc_count += (NUM_SHDR_ENTRIES (hdr)
2485 * bed->s->int_rels_per_ext_rel);
252b5132
RH
2486 target_sect->flags |= SEC_RELOC;
2487 target_sect->relocation = NULL;
2488 target_sect->rel_filepos = hdr->sh_offset;
bf572ba0
MM
2489 /* In the section to which the relocations apply, mark whether
2490 its relocations are of the REL or RELA variety. */
72730e0c 2491 if (hdr->sh_size != 0)
d4730f92
BS
2492 {
2493 if (hdr->sh_type == SHT_RELA)
2494 target_sect->use_rela_p = 1;
2495 }
252b5132 2496 abfd->flags |= HAS_RELOC;
bf67003b 2497 goto success;
252b5132 2498 }
252b5132
RH
2499
2500 case SHT_GNU_verdef:
2501 elf_dynverdef (abfd) = shindex;
2502 elf_tdata (abfd)->dynverdef_hdr = *hdr;
bf67003b
NC
2503 ret = _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex);
2504 goto success;
252b5132
RH
2505
2506 case SHT_GNU_versym:
a50b2160 2507 if (hdr->sh_entsize != sizeof (Elf_External_Versym))
bf67003b
NC
2508 goto fail;
2509
252b5132
RH
2510 elf_dynversym (abfd) = shindex;
2511 elf_tdata (abfd)->dynversym_hdr = *hdr;
bf67003b
NC
2512 ret = _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex);
2513 goto success;
252b5132
RH
2514
2515 case SHT_GNU_verneed:
2516 elf_dynverref (abfd) = shindex;
2517 elf_tdata (abfd)->dynverref_hdr = *hdr;
bf67003b
NC
2518 ret = _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex);
2519 goto success;
252b5132
RH
2520
2521 case SHT_SHLIB:
bf67003b 2522 goto success;
252b5132 2523
dbb410c3 2524 case SHT_GROUP:
44534af3 2525 if (! IS_VALID_GROUP_SECTION_HEADER (hdr, GRP_ENTRY_SIZE))
bf67003b
NC
2526 goto fail;
2527
6dc132d9 2528 if (!_bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex))
bf67003b
NC
2529 goto fail;
2530
bf67003b 2531 goto success;
dbb410c3 2532
252b5132 2533 default:
104d59d1
JM
2534 /* Possibly an attributes section. */
2535 if (hdr->sh_type == SHT_GNU_ATTRIBUTES
2536 || hdr->sh_type == bed->obj_attrs_section_type)
2537 {
2538 if (! _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex))
bf67003b 2539 goto fail;
104d59d1 2540 _bfd_elf_parse_attributes (abfd, hdr);
bf67003b 2541 goto success;
104d59d1
JM
2542 }
2543
252b5132 2544 /* Check for any processor-specific section types. */
3eb70a79 2545 if (bed->elf_backend_section_from_shdr (abfd, hdr, name, shindex))
bf67003b 2546 goto success;
3eb70a79
L
2547
2548 if (hdr->sh_type >= SHT_LOUSER && hdr->sh_type <= SHT_HIUSER)
2549 {
2550 if ((hdr->sh_flags & SHF_ALLOC) != 0)
2551 /* FIXME: How to properly handle allocated section reserved
2552 for applications? */
4eca0228 2553 _bfd_error_handler
695344c0 2554 /* xgettext:c-format */
871b3ab2 2555 (_("%pB: unknown type [%#x] section `%s'"),
76cfced5 2556 abfd, hdr->sh_type, name);
3eb70a79 2557 else
bf67003b
NC
2558 {
2559 /* Allow sections reserved for applications. */
2560 ret = _bfd_elf_make_section_from_shdr (abfd, hdr, name,
2561 shindex);
2562 goto success;
2563 }
3eb70a79
L
2564 }
2565 else if (hdr->sh_type >= SHT_LOPROC
2566 && hdr->sh_type <= SHT_HIPROC)
2567 /* FIXME: We should handle this section. */
4eca0228 2568 _bfd_error_handler
695344c0 2569 /* xgettext:c-format */
871b3ab2 2570 (_("%pB: unknown type [%#x] section `%s'"),
76cfced5 2571 abfd, hdr->sh_type, name);
3eb70a79 2572 else if (hdr->sh_type >= SHT_LOOS && hdr->sh_type <= SHT_HIOS)
ff15b240
NC
2573 {
2574 /* Unrecognised OS-specific sections. */
2575 if ((hdr->sh_flags & SHF_OS_NONCONFORMING) != 0)
2576 /* SHF_OS_NONCONFORMING indicates that special knowledge is
08a40648 2577 required to correctly process the section and the file should
ff15b240 2578 be rejected with an error message. */
4eca0228 2579 _bfd_error_handler
695344c0 2580 /* xgettext:c-format */
871b3ab2 2581 (_("%pB: unknown type [%#x] section `%s'"),
76cfced5 2582 abfd, hdr->sh_type, name);
ff15b240 2583 else
bf67003b
NC
2584 {
2585 /* Otherwise it should be processed. */
2586 ret = _bfd_elf_make_section_from_shdr (abfd, hdr, name, shindex);
2587 goto success;
2588 }
ff15b240 2589 }
3eb70a79
L
2590 else
2591 /* FIXME: We should handle this section. */
4eca0228 2592 _bfd_error_handler
695344c0 2593 /* xgettext:c-format */
871b3ab2 2594 (_("%pB: unknown type [%#x] section `%s'"),
76cfced5 2595 abfd, hdr->sh_type, name);
3eb70a79 2596
bf67003b 2597 goto fail;
252b5132
RH
2598 }
2599
bf67003b
NC
2600 fail:
2601 ret = FALSE;
2602 success:
e5b470e2 2603 if (sections_being_created && sections_being_created_abfd == abfd)
bf67003b
NC
2604 sections_being_created [shindex] = FALSE;
2605 if (-- nesting == 0)
5a4b0ccc
NC
2606 {
2607 sections_being_created = NULL;
2608 sections_being_created_abfd = abfd;
2609 }
bf67003b 2610 return ret;
252b5132
RH
2611}
2612
87d72d41 2613/* Return the local symbol specified by ABFD, R_SYMNDX. */
ec338859 2614
87d72d41
AM
2615Elf_Internal_Sym *
2616bfd_sym_from_r_symndx (struct sym_cache *cache,
2617 bfd *abfd,
2618 unsigned long r_symndx)
ec338859 2619{
ec338859
AM
2620 unsigned int ent = r_symndx % LOCAL_SYM_CACHE_SIZE;
2621
a5d1b3b5
AM
2622 if (cache->abfd != abfd || cache->indx[ent] != r_symndx)
2623 {
2624 Elf_Internal_Shdr *symtab_hdr;
2625 unsigned char esym[sizeof (Elf64_External_Sym)];
2626 Elf_External_Sym_Shndx eshndx;
ec338859 2627
a5d1b3b5
AM
2628 symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
2629 if (bfd_elf_get_elf_syms (abfd, symtab_hdr, 1, r_symndx,
87d72d41 2630 &cache->sym[ent], esym, &eshndx) == NULL)
a5d1b3b5 2631 return NULL;
9ad5cbcf 2632
a5d1b3b5
AM
2633 if (cache->abfd != abfd)
2634 {
2635 memset (cache->indx, -1, sizeof (cache->indx));
2636 cache->abfd = abfd;
2637 }
2638 cache->indx[ent] = r_symndx;
ec338859 2639 }
a5d1b3b5 2640
87d72d41 2641 return &cache->sym[ent];
ec338859
AM
2642}
2643
252b5132
RH
2644/* Given an ELF section number, retrieve the corresponding BFD
2645 section. */
2646
2647asection *
91d6fa6a 2648bfd_section_from_elf_index (bfd *abfd, unsigned int sec_index)
252b5132 2649{
91d6fa6a 2650 if (sec_index >= elf_numsections (abfd))
252b5132 2651 return NULL;
91d6fa6a 2652 return elf_elfsections (abfd)[sec_index]->bfd_section;
252b5132
RH
2653}
2654
b35d266b 2655static const struct bfd_elf_special_section special_sections_b[] =
2f89ff8d 2656{
0112cd26 2657 { STRING_COMMA_LEN (".bss"), -2, SHT_NOBITS, SHF_ALLOC + SHF_WRITE },
07d6d2b8 2658 { NULL, 0, 0, 0, 0 }
7f4d3958
L
2659};
2660
b35d266b 2661static const struct bfd_elf_special_section special_sections_c[] =
7f4d3958 2662{
0112cd26 2663 { STRING_COMMA_LEN (".comment"), 0, SHT_PROGBITS, 0 },
1ff6de03 2664 { STRING_COMMA_LEN (".ctf"), 0, SHT_PROGBITS, 0 },
07d6d2b8 2665 { NULL, 0, 0, 0, 0 }
7f4d3958
L
2666};
2667
b35d266b 2668static const struct bfd_elf_special_section special_sections_d[] =
7f4d3958 2669{
07d6d2b8
AM
2670 { STRING_COMMA_LEN (".data"), -2, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE },
2671 { STRING_COMMA_LEN (".data1"), 0, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE },
a9a72a65
DE
2672 /* There are more DWARF sections than these, but they needn't be added here
2673 unless you have to cope with broken compilers that don't emit section
2674 attributes or you want to help the user writing assembler. */
07d6d2b8
AM
2675 { STRING_COMMA_LEN (".debug"), 0, SHT_PROGBITS, 0 },
2676 { STRING_COMMA_LEN (".debug_line"), 0, SHT_PROGBITS, 0 },
2677 { STRING_COMMA_LEN (".debug_info"), 0, SHT_PROGBITS, 0 },
2678 { STRING_COMMA_LEN (".debug_abbrev"), 0, SHT_PROGBITS, 0 },
0112cd26 2679 { STRING_COMMA_LEN (".debug_aranges"), 0, SHT_PROGBITS, 0 },
07d6d2b8
AM
2680 { STRING_COMMA_LEN (".dynamic"), 0, SHT_DYNAMIC, SHF_ALLOC },
2681 { STRING_COMMA_LEN (".dynstr"), 0, SHT_STRTAB, SHF_ALLOC },
2682 { STRING_COMMA_LEN (".dynsym"), 0, SHT_DYNSYM, SHF_ALLOC },
2683 { NULL, 0, 0, 0, 0 }
7f4d3958
L
2684};
2685
b35d266b 2686static const struct bfd_elf_special_section special_sections_f[] =
7f4d3958 2687{
07d6d2b8 2688 { STRING_COMMA_LEN (".fini"), 0, SHT_PROGBITS, SHF_ALLOC + SHF_EXECINSTR },
6f9dbcd4 2689 { STRING_COMMA_LEN (".fini_array"), -2, SHT_FINI_ARRAY, SHF_ALLOC + SHF_WRITE },
07d6d2b8 2690 { NULL, 0 , 0, 0, 0 }
7f4d3958
L
2691};
2692
b35d266b 2693static const struct bfd_elf_special_section special_sections_g[] =
7f4d3958 2694{
0112cd26 2695 { STRING_COMMA_LEN (".gnu.linkonce.b"), -2, SHT_NOBITS, SHF_ALLOC + SHF_WRITE },
07d6d2b8
AM
2696 { STRING_COMMA_LEN (".gnu.lto_"), -1, SHT_PROGBITS, SHF_EXCLUDE },
2697 { STRING_COMMA_LEN (".got"), 0, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE },
2698 { STRING_COMMA_LEN (".gnu.version"), 0, SHT_GNU_versym, 0 },
0112cd26
NC
2699 { STRING_COMMA_LEN (".gnu.version_d"), 0, SHT_GNU_verdef, 0 },
2700 { STRING_COMMA_LEN (".gnu.version_r"), 0, SHT_GNU_verneed, 0 },
07d6d2b8
AM
2701 { STRING_COMMA_LEN (".gnu.liblist"), 0, SHT_GNU_LIBLIST, SHF_ALLOC },
2702 { STRING_COMMA_LEN (".gnu.conflict"), 0, SHT_RELA, SHF_ALLOC },
2703 { STRING_COMMA_LEN (".gnu.hash"), 0, SHT_GNU_HASH, SHF_ALLOC },
2704 { NULL, 0, 0, 0, 0 }
7f4d3958
L
2705};
2706
b35d266b 2707static const struct bfd_elf_special_section special_sections_h[] =
7f4d3958 2708{
07d6d2b8
AM
2709 { STRING_COMMA_LEN (".hash"), 0, SHT_HASH, SHF_ALLOC },
2710 { NULL, 0, 0, 0, 0 }
7f4d3958
L
2711};
2712
b35d266b 2713static const struct bfd_elf_special_section special_sections_i[] =
7f4d3958 2714{
07d6d2b8 2715 { STRING_COMMA_LEN (".init"), 0, SHT_PROGBITS, SHF_ALLOC + SHF_EXECINSTR },
6f9dbcd4 2716 { STRING_COMMA_LEN (".init_array"), -2, SHT_INIT_ARRAY, SHF_ALLOC + SHF_WRITE },
07d6d2b8
AM
2717 { STRING_COMMA_LEN (".interp"), 0, SHT_PROGBITS, 0 },
2718 { NULL, 0, 0, 0, 0 }
7f4d3958
L
2719};
2720
b35d266b 2721static const struct bfd_elf_special_section special_sections_l[] =
7f4d3958 2722{
0112cd26 2723 { STRING_COMMA_LEN (".line"), 0, SHT_PROGBITS, 0 },
07d6d2b8 2724 { NULL, 0, 0, 0, 0 }
7f4d3958
L
2725};
2726
b35d266b 2727static const struct bfd_elf_special_section special_sections_n[] =
7f4d3958 2728{
0112cd26 2729 { STRING_COMMA_LEN (".note.GNU-stack"), 0, SHT_PROGBITS, 0 },
07d6d2b8
AM
2730 { STRING_COMMA_LEN (".note"), -1, SHT_NOTE, 0 },
2731 { NULL, 0, 0, 0, 0 }
7f4d3958
L
2732};
2733
b35d266b 2734static const struct bfd_elf_special_section special_sections_p[] =
7f4d3958 2735{
6f9dbcd4 2736 { STRING_COMMA_LEN (".preinit_array"), -2, SHT_PREINIT_ARRAY, SHF_ALLOC + SHF_WRITE },
07d6d2b8
AM
2737 { STRING_COMMA_LEN (".plt"), 0, SHT_PROGBITS, SHF_ALLOC + SHF_EXECINSTR },
2738 { NULL, 0, 0, 0, 0 }
7f4d3958
L
2739};
2740
b35d266b 2741static const struct bfd_elf_special_section special_sections_r[] =
7f4d3958 2742{
0112cd26
NC
2743 { STRING_COMMA_LEN (".rodata"), -2, SHT_PROGBITS, SHF_ALLOC },
2744 { STRING_COMMA_LEN (".rodata1"), 0, SHT_PROGBITS, SHF_ALLOC },
07d6d2b8
AM
2745 { STRING_COMMA_LEN (".rela"), -1, SHT_RELA, 0 },
2746 { STRING_COMMA_LEN (".rel"), -1, SHT_REL, 0 },
2747 { NULL, 0, 0, 0, 0 }
7f4d3958
L
2748};
2749
b35d266b 2750static const struct bfd_elf_special_section special_sections_s[] =
7f4d3958 2751{
0112cd26
NC
2752 { STRING_COMMA_LEN (".shstrtab"), 0, SHT_STRTAB, 0 },
2753 { STRING_COMMA_LEN (".strtab"), 0, SHT_STRTAB, 0 },
2754 { STRING_COMMA_LEN (".symtab"), 0, SHT_SYMTAB, 0 },
60ff4dc4
HPN
2755 /* See struct bfd_elf_special_section declaration for the semantics of
2756 this special case where .prefix_length != strlen (.prefix). */
2757 { ".stabstr", 5, 3, SHT_STRTAB, 0 },
07d6d2b8 2758 { NULL, 0, 0, 0, 0 }
2f89ff8d
L
2759};
2760
b35d266b 2761static const struct bfd_elf_special_section special_sections_t[] =
7f4d3958 2762{
07d6d2b8
AM
2763 { STRING_COMMA_LEN (".text"), -2, SHT_PROGBITS, SHF_ALLOC + SHF_EXECINSTR },
2764 { STRING_COMMA_LEN (".tbss"), -2, SHT_NOBITS, SHF_ALLOC + SHF_WRITE + SHF_TLS },
0112cd26 2765 { STRING_COMMA_LEN (".tdata"), -2, SHT_PROGBITS, SHF_ALLOC + SHF_WRITE + SHF_TLS },
07d6d2b8 2766 { NULL, 0, 0, 0, 0 }
7f4d3958
L
2767};
2768
1b315056
CS
2769static const struct bfd_elf_special_section special_sections_z[] =
2770{
07d6d2b8
AM
2771 { STRING_COMMA_LEN (".zdebug_line"), 0, SHT_PROGBITS, 0 },
2772 { STRING_COMMA_LEN (".zdebug_info"), 0, SHT_PROGBITS, 0 },
1b315056
CS
2773 { STRING_COMMA_LEN (".zdebug_abbrev"), 0, SHT_PROGBITS, 0 },
2774 { STRING_COMMA_LEN (".zdebug_aranges"), 0, SHT_PROGBITS, 0 },
07d6d2b8 2775 { NULL, 0, 0, 0, 0 }
1b315056
CS
2776};
2777
e4c93b56 2778static const struct bfd_elf_special_section * const special_sections[] =
7f4d3958 2779{
7f4d3958 2780 special_sections_b, /* 'b' */
98ece1b3 2781 special_sections_c, /* 'c' */
7f4d3958
L
2782 special_sections_d, /* 'd' */
2783 NULL, /* 'e' */
2784 special_sections_f, /* 'f' */
2785 special_sections_g, /* 'g' */
2786 special_sections_h, /* 'h' */
2787 special_sections_i, /* 'i' */
2788 NULL, /* 'j' */
2789 NULL, /* 'k' */
2790 special_sections_l, /* 'l' */
2791 NULL, /* 'm' */
2792 special_sections_n, /* 'n' */
2793 NULL, /* 'o' */
2794 special_sections_p, /* 'p' */
2795 NULL, /* 'q' */
2796 special_sections_r, /* 'r' */
2797 special_sections_s, /* 's' */
2798 special_sections_t, /* 't' */
1b315056
CS
2799 NULL, /* 'u' */
2800 NULL, /* 'v' */
2801 NULL, /* 'w' */
2802 NULL, /* 'x' */
2803 NULL, /* 'y' */
2804 special_sections_z /* 'z' */
7f4d3958
L
2805};
2806
551b43fd
AM
2807const struct bfd_elf_special_section *
2808_bfd_elf_get_special_section (const char *name,
2809 const struct bfd_elf_special_section *spec,
2810 unsigned int rela)
2f89ff8d
L
2811{
2812 int i;
7f4d3958 2813 int len;
7f4d3958 2814
551b43fd 2815 len = strlen (name);
7f4d3958 2816
551b43fd 2817 for (i = 0; spec[i].prefix != NULL; i++)
7dcb9820
AM
2818 {
2819 int suffix_len;
551b43fd 2820 int prefix_len = spec[i].prefix_length;
7dcb9820
AM
2821
2822 if (len < prefix_len)
2823 continue;
551b43fd 2824 if (memcmp (name, spec[i].prefix, prefix_len) != 0)
7dcb9820
AM
2825 continue;
2826
551b43fd 2827 suffix_len = spec[i].suffix_length;
7dcb9820
AM
2828 if (suffix_len <= 0)
2829 {
2830 if (name[prefix_len] != 0)
2831 {
2832 if (suffix_len == 0)
2833 continue;
2834 if (name[prefix_len] != '.'
2835 && (suffix_len == -2
551b43fd 2836 || (rela && spec[i].type == SHT_REL)))
7dcb9820
AM
2837 continue;
2838 }
2839 }
2840 else
2841 {
2842 if (len < prefix_len + suffix_len)
2843 continue;
2844 if (memcmp (name + len - suffix_len,
551b43fd 2845 spec[i].prefix + prefix_len,
7dcb9820
AM
2846 suffix_len) != 0)
2847 continue;
2848 }
551b43fd 2849 return &spec[i];
7dcb9820 2850 }
2f89ff8d
L
2851
2852 return NULL;
2853}
2854
7dcb9820 2855const struct bfd_elf_special_section *
29ef7005 2856_bfd_elf_get_sec_type_attr (bfd *abfd, asection *sec)
2f89ff8d 2857{
551b43fd
AM
2858 int i;
2859 const struct bfd_elf_special_section *spec;
29ef7005 2860 const struct elf_backend_data *bed;
2f89ff8d
L
2861
2862 /* See if this is one of the special sections. */
551b43fd
AM
2863 if (sec->name == NULL)
2864 return NULL;
2f89ff8d 2865
29ef7005
L
2866 bed = get_elf_backend_data (abfd);
2867 spec = bed->special_sections;
2868 if (spec)
2869 {
2870 spec = _bfd_elf_get_special_section (sec->name,
2871 bed->special_sections,
2872 sec->use_rela_p);
2873 if (spec != NULL)
2874 return spec;
2875 }
2876
551b43fd
AM
2877 if (sec->name[0] != '.')
2878 return NULL;
2f89ff8d 2879
551b43fd 2880 i = sec->name[1] - 'b';
1b315056 2881 if (i < 0 || i > 'z' - 'b')
551b43fd
AM
2882 return NULL;
2883
2884 spec = special_sections[i];
2f89ff8d 2885
551b43fd
AM
2886 if (spec == NULL)
2887 return NULL;
2888
2889 return _bfd_elf_get_special_section (sec->name, spec, sec->use_rela_p);
2f89ff8d
L
2890}
2891
b34976b6 2892bfd_boolean
217aa764 2893_bfd_elf_new_section_hook (bfd *abfd, asection *sec)
252b5132
RH
2894{
2895 struct bfd_elf_section_data *sdata;
551b43fd 2896 const struct elf_backend_data *bed;
7dcb9820 2897 const struct bfd_elf_special_section *ssect;
252b5132 2898
f0abc2a1
AM
2899 sdata = (struct bfd_elf_section_data *) sec->used_by_bfd;
2900 if (sdata == NULL)
2901 {
a50b1753 2902 sdata = (struct bfd_elf_section_data *) bfd_zalloc (abfd,
07d6d2b8 2903 sizeof (*sdata));
f0abc2a1
AM
2904 if (sdata == NULL)
2905 return FALSE;
217aa764 2906 sec->used_by_bfd = sdata;
f0abc2a1 2907 }
bf572ba0 2908
551b43fd
AM
2909 /* Indicate whether or not this section should use RELA relocations. */
2910 bed = get_elf_backend_data (abfd);
2911 sec->use_rela_p = bed->default_use_rela_p;
2912
e843e0f8
L
2913 /* When we read a file, we don't need to set ELF section type and
2914 flags. They will be overridden in _bfd_elf_make_section_from_shdr
2915 anyway. We will set ELF section type and flags for all linker
2916 created sections. If user specifies BFD section flags, we will
2917 set ELF section type and flags based on BFD section flags in
02ecc8e9
L
2918 elf_fake_sections. Special handling for .init_array/.fini_array
2919 output sections since they may contain .ctors/.dtors input
2920 sections. We don't want _bfd_elf_init_private_section_data to
2921 copy ELF section type from .ctors/.dtors input sections. */
2922 if (abfd->direction != read_direction
3496cb2a 2923 || (sec->flags & SEC_LINKER_CREATED) != 0)
2f89ff8d 2924 {
551b43fd 2925 ssect = (*bed->get_sec_type_attr) (abfd, sec);
02ecc8e9
L
2926 if (ssect != NULL
2927 && (!sec->flags
2928 || (sec->flags & SEC_LINKER_CREATED) != 0
2929 || ssect->type == SHT_INIT_ARRAY
2930 || ssect->type == SHT_FINI_ARRAY))
a31501e9
L
2931 {
2932 elf_section_type (sec) = ssect->type;
2933 elf_section_flags (sec) = ssect->attr;
2934 }
2f89ff8d
L
2935 }
2936
f592407e 2937 return _bfd_generic_new_section_hook (abfd, sec);
252b5132
RH
2938}
2939
2940/* Create a new bfd section from an ELF program header.
2941
2942 Since program segments have no names, we generate a synthetic name
2943 of the form segment<NUM>, where NUM is generally the index in the
2944 program header table. For segments that are split (see below) we
2945 generate the names segment<NUM>a and segment<NUM>b.
2946
2947 Note that some program segments may have a file size that is different than
2948 (less than) the memory size. All this means is that at execution the
2949 system must allocate the amount of memory specified by the memory size,
2950 but only initialize it with the first "file size" bytes read from the
2951 file. This would occur for example, with program segments consisting
2952 of combined data+bss.
2953
2954 To handle the above situation, this routine generates TWO bfd sections
2955 for the single program segment. The first has the length specified by
2956 the file size of the segment, and the second has the length specified
2957 by the difference between the two sizes. In effect, the segment is split
d5191d0c 2958 into its initialized and uninitialized parts.
252b5132
RH
2959
2960 */
2961
b34976b6 2962bfd_boolean
217aa764
AM
2963_bfd_elf_make_section_from_phdr (bfd *abfd,
2964 Elf_Internal_Phdr *hdr,
91d6fa6a 2965 int hdr_index,
a50b1753 2966 const char *type_name)
252b5132
RH
2967{
2968 asection *newsect;
2969 char *name;
2970 char namebuf[64];
d4c88bbb 2971 size_t len;
252b5132
RH
2972 int split;
2973
2974 split = ((hdr->p_memsz > 0)
2975 && (hdr->p_filesz > 0)
2976 && (hdr->p_memsz > hdr->p_filesz));
d5191d0c
AM
2977
2978 if (hdr->p_filesz > 0)
252b5132 2979 {
91d6fa6a 2980 sprintf (namebuf, "%s%d%s", type_name, hdr_index, split ? "a" : "");
d5191d0c 2981 len = strlen (namebuf) + 1;
a50b1753 2982 name = (char *) bfd_alloc (abfd, len);
d5191d0c
AM
2983 if (!name)
2984 return FALSE;
2985 memcpy (name, namebuf, len);
2986 newsect = bfd_make_section (abfd, name);
2987 if (newsect == NULL)
2988 return FALSE;
2989 newsect->vma = hdr->p_vaddr;
2990 newsect->lma = hdr->p_paddr;
2991 newsect->size = hdr->p_filesz;
2992 newsect->filepos = hdr->p_offset;
2993 newsect->flags |= SEC_HAS_CONTENTS;
2994 newsect->alignment_power = bfd_log2 (hdr->p_align);
2995 if (hdr->p_type == PT_LOAD)
252b5132 2996 {
d5191d0c
AM
2997 newsect->flags |= SEC_ALLOC;
2998 newsect->flags |= SEC_LOAD;
2999 if (hdr->p_flags & PF_X)
3000 {
3001 /* FIXME: all we known is that it has execute PERMISSION,
3002 may be data. */
3003 newsect->flags |= SEC_CODE;
3004 }
3005 }
3006 if (!(hdr->p_flags & PF_W))
3007 {
3008 newsect->flags |= SEC_READONLY;
252b5132 3009 }
252b5132
RH
3010 }
3011
d5191d0c 3012 if (hdr->p_memsz > hdr->p_filesz)
252b5132 3013 {
d5191d0c
AM
3014 bfd_vma align;
3015
91d6fa6a 3016 sprintf (namebuf, "%s%d%s", type_name, hdr_index, split ? "b" : "");
d4c88bbb 3017 len = strlen (namebuf) + 1;
a50b1753 3018 name = (char *) bfd_alloc (abfd, len);
252b5132 3019 if (!name)
b34976b6 3020 return FALSE;
d4c88bbb 3021 memcpy (name, namebuf, len);
252b5132
RH
3022 newsect = bfd_make_section (abfd, name);
3023 if (newsect == NULL)
b34976b6 3024 return FALSE;
252b5132
RH
3025 newsect->vma = hdr->p_vaddr + hdr->p_filesz;
3026 newsect->lma = hdr->p_paddr + hdr->p_filesz;
eea6121a 3027 newsect->size = hdr->p_memsz - hdr->p_filesz;
d5191d0c
AM
3028 newsect->filepos = hdr->p_offset + hdr->p_filesz;
3029 align = newsect->vma & -newsect->vma;
3030 if (align == 0 || align > hdr->p_align)
3031 align = hdr->p_align;
3032 newsect->alignment_power = bfd_log2 (align);
252b5132
RH
3033 if (hdr->p_type == PT_LOAD)
3034 {
d5191d0c
AM
3035 /* Hack for gdb. Segments that have not been modified do
3036 not have their contents written to a core file, on the
3037 assumption that a debugger can find the contents in the
3038 executable. We flag this case by setting the fake
3039 section size to zero. Note that "real" bss sections will
3040 always have their contents dumped to the core file. */
3041 if (bfd_get_format (abfd) == bfd_core)
3042 newsect->size = 0;
252b5132
RH
3043 newsect->flags |= SEC_ALLOC;
3044 if (hdr->p_flags & PF_X)
3045 newsect->flags |= SEC_CODE;
3046 }
3047 if (!(hdr->p_flags & PF_W))
3048 newsect->flags |= SEC_READONLY;
3049 }
3050
b34976b6 3051 return TRUE;
252b5132
RH
3052}
3053
864619bb
KS
3054static bfd_boolean
3055_bfd_elf_core_find_build_id (bfd *templ, bfd_vma offset)
3056{
3057 /* The return value is ignored. Build-ids are considered optional. */
3058 if (templ->xvec->flavour == bfd_target_elf_flavour)
3059 return (*get_elf_backend_data (templ)->elf_backend_core_find_build_id)
3060 (templ, offset);
3061 return FALSE;
3062}
3063
b34976b6 3064bfd_boolean
91d6fa6a 3065bfd_section_from_phdr (bfd *abfd, Elf_Internal_Phdr *hdr, int hdr_index)
20cfcaae 3066{
9c5bfbb7 3067 const struct elf_backend_data *bed;
20cfcaae
NC
3068
3069 switch (hdr->p_type)
3070 {
3071 case PT_NULL:
91d6fa6a 3072 return _bfd_elf_make_section_from_phdr (abfd, hdr, hdr_index, "null");
20cfcaae
NC
3073
3074 case PT_LOAD:
864619bb
KS
3075 if (! _bfd_elf_make_section_from_phdr (abfd, hdr, hdr_index, "load"))
3076 return FALSE;
3077 if (bfd_get_format (abfd) == bfd_core && abfd->build_id == NULL)
3078 _bfd_elf_core_find_build_id (abfd, hdr->p_offset);
3079 return TRUE;
20cfcaae
NC
3080
3081 case PT_DYNAMIC:
91d6fa6a 3082 return _bfd_elf_make_section_from_phdr (abfd, hdr, hdr_index, "dynamic");
20cfcaae
NC
3083
3084 case PT_INTERP:
91d6fa6a 3085 return _bfd_elf_make_section_from_phdr (abfd, hdr, hdr_index, "interp");
20cfcaae
NC
3086
3087 case PT_NOTE:
91d6fa6a 3088 if (! _bfd_elf_make_section_from_phdr (abfd, hdr, hdr_index, "note"))
b34976b6 3089 return FALSE;
276da9b3
L
3090 if (! elf_read_notes (abfd, hdr->p_offset, hdr->p_filesz,
3091 hdr->p_align))
b34976b6
AM
3092 return FALSE;
3093 return TRUE;
20cfcaae
NC
3094
3095 case PT_SHLIB:
91d6fa6a 3096 return _bfd_elf_make_section_from_phdr (abfd, hdr, hdr_index, "shlib");
20cfcaae
NC
3097
3098 case PT_PHDR:
91d6fa6a 3099 return _bfd_elf_make_section_from_phdr (abfd, hdr, hdr_index, "phdr");
20cfcaae 3100
811072d8 3101 case PT_GNU_EH_FRAME:
91d6fa6a 3102 return _bfd_elf_make_section_from_phdr (abfd, hdr, hdr_index,
811072d8
RM
3103 "eh_frame_hdr");
3104
2b05f1b7 3105 case PT_GNU_STACK:
91d6fa6a 3106 return _bfd_elf_make_section_from_phdr (abfd, hdr, hdr_index, "stack");
9ee5e499 3107
8c37241b 3108 case PT_GNU_RELRO:
91d6fa6a 3109 return _bfd_elf_make_section_from_phdr (abfd, hdr, hdr_index, "relro");
8c37241b 3110
20cfcaae 3111 default:
8c1acd09 3112 /* Check for any processor-specific program segment types. */
20cfcaae 3113 bed = get_elf_backend_data (abfd);
91d6fa6a 3114 return bed->elf_backend_section_from_phdr (abfd, hdr, hdr_index, "proc");
20cfcaae
NC
3115 }
3116}
3117
d4730f92
BS
3118/* Return the REL_HDR for SEC, assuming there is only a single one, either
3119 REL or RELA. */
3120
3121Elf_Internal_Shdr *
3122_bfd_elf_single_rel_hdr (asection *sec)
3123{
3124 if (elf_section_data (sec)->rel.hdr)
3125 {
3126 BFD_ASSERT (elf_section_data (sec)->rela.hdr == NULL);
3127 return elf_section_data (sec)->rel.hdr;
3128 }
3129 else
3130 return elf_section_data (sec)->rela.hdr;
3131}
3132
3e19fb8f
L
3133static bfd_boolean
3134_bfd_elf_set_reloc_sh_name (bfd *abfd,
3135 Elf_Internal_Shdr *rel_hdr,
3136 const char *sec_name,
3137 bfd_boolean use_rela_p)
3138{
3139 char *name = (char *) bfd_alloc (abfd,
3140 sizeof ".rela" + strlen (sec_name));
3141 if (name == NULL)
3142 return FALSE;
3143
3144 sprintf (name, "%s%s", use_rela_p ? ".rela" : ".rel", sec_name);
3145 rel_hdr->sh_name =
3146 (unsigned int) _bfd_elf_strtab_add (elf_shstrtab (abfd), name,
3147 FALSE);
3148 if (rel_hdr->sh_name == (unsigned int) -1)
3149 return FALSE;
3150
3151 return TRUE;
3152}
3153
d4730f92
BS
3154/* Allocate and initialize a section-header for a new reloc section,
3155 containing relocations against ASECT. It is stored in RELDATA. If
3156 USE_RELA_P is TRUE, we use RELA relocations; otherwise, we use REL
3157 relocations. */
23bc299b 3158
5d13b3b3 3159static bfd_boolean
217aa764 3160_bfd_elf_init_reloc_shdr (bfd *abfd,
d4730f92 3161 struct bfd_elf_section_reloc_data *reldata,
f6fe1ccd 3162 const char *sec_name,
3e19fb8f
L
3163 bfd_boolean use_rela_p,
3164 bfd_boolean delay_st_name_p)
23bc299b 3165{
d4730f92 3166 Elf_Internal_Shdr *rel_hdr;
9c5bfbb7 3167 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
d4730f92 3168
d4730f92 3169 BFD_ASSERT (reldata->hdr == NULL);
ef53be89 3170 rel_hdr = bfd_zalloc (abfd, sizeof (*rel_hdr));
d4730f92 3171 reldata->hdr = rel_hdr;
23bc299b 3172
3e19fb8f
L
3173 if (delay_st_name_p)
3174 rel_hdr->sh_name = (unsigned int) -1;
3175 else if (!_bfd_elf_set_reloc_sh_name (abfd, rel_hdr, sec_name,
3176 use_rela_p))
b34976b6 3177 return FALSE;
23bc299b
MM
3178 rel_hdr->sh_type = use_rela_p ? SHT_RELA : SHT_REL;
3179 rel_hdr->sh_entsize = (use_rela_p
3180 ? bed->s->sizeof_rela
3181 : bed->s->sizeof_rel);
72de5009 3182 rel_hdr->sh_addralign = (bfd_vma) 1 << bed->s->log_file_align;
28e07a05 3183 rel_hdr->sh_flags = 0;
23bc299b
MM
3184 rel_hdr->sh_addr = 0;
3185 rel_hdr->sh_size = 0;
3186 rel_hdr->sh_offset = 0;
3187
b34976b6 3188 return TRUE;
23bc299b
MM
3189}
3190
94be91de
JB
3191/* Return the default section type based on the passed in section flags. */
3192
3193int
3194bfd_elf_get_default_section_type (flagword flags)
3195{
0e41bebb 3196 if ((flags & (SEC_ALLOC | SEC_IS_COMMON)) != 0
2e76e85a 3197 && (flags & (SEC_LOAD | SEC_HAS_CONTENTS)) == 0)
94be91de
JB
3198 return SHT_NOBITS;
3199 return SHT_PROGBITS;
3200}
3201
d4730f92
BS
3202struct fake_section_arg
3203{
3204 struct bfd_link_info *link_info;
3205 bfd_boolean failed;
3206};
3207
252b5132
RH
3208/* Set up an ELF internal section header for a section. */
3209
252b5132 3210static void
d4730f92 3211elf_fake_sections (bfd *abfd, asection *asect, void *fsarg)
252b5132 3212{
d4730f92 3213 struct fake_section_arg *arg = (struct fake_section_arg *)fsarg;
9c5bfbb7 3214 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
d4730f92 3215 struct bfd_elf_section_data *esd = elf_section_data (asect);
252b5132 3216 Elf_Internal_Shdr *this_hdr;
0414f35b 3217 unsigned int sh_type;
0ce398f1 3218 const char *name = asect->name;
3e19fb8f 3219 bfd_boolean delay_st_name_p = FALSE;
252b5132 3220
d4730f92 3221 if (arg->failed)
252b5132
RH
3222 {
3223 /* We already failed; just get out of the bfd_map_over_sections
08a40648 3224 loop. */
252b5132
RH
3225 return;
3226 }
3227
d4730f92 3228 this_hdr = &esd->this_hdr;
252b5132 3229
f6fe1ccd 3230 if (arg->link_info)
0ce398f1 3231 {
f6fe1ccd
L
3232 /* ld: compress DWARF debug sections with names: .debug_*. */
3233 if ((arg->link_info->compress_debug & COMPRESS_DEBUG)
3234 && (asect->flags & SEC_DEBUGGING)
3235 && name[1] == 'd'
3236 && name[6] == '_')
3237 {
3238 /* Set SEC_ELF_COMPRESS to indicate this section should be
3239 compressed. */
3240 asect->flags |= SEC_ELF_COMPRESS;
0ce398f1 3241
dd905818 3242 /* If this section will be compressed, delay adding section
3e19fb8f
L
3243 name to section name section after it is compressed in
3244 _bfd_elf_assign_file_positions_for_non_load. */
3245 delay_st_name_p = TRUE;
f6fe1ccd
L
3246 }
3247 }
3248 else if ((asect->flags & SEC_ELF_RENAME))
3249 {
3250 /* objcopy: rename output DWARF debug section. */
3251 if ((abfd->flags & (BFD_DECOMPRESS | BFD_COMPRESS_GABI)))
3252 {
3253 /* When we decompress or compress with SHF_COMPRESSED,
3254 convert section name from .zdebug_* to .debug_* if
3255 needed. */
3256 if (name[1] == 'z')
3257 {
3258 char *new_name = convert_zdebug_to_debug (abfd, name);
3259 if (new_name == NULL)
3260 {
3261 arg->failed = TRUE;
3262 return;
3263 }
3264 name = new_name;
3265 }
3266 }
3267 else if (asect->compress_status == COMPRESS_SECTION_DONE)
0ce398f1 3268 {
f6fe1ccd
L
3269 /* PR binutils/18087: Compression does not always make a
3270 section smaller. So only rename the section when
3271 compression has actually taken place. If input section
3272 name is .zdebug_*, we should never compress it again. */
3273 char *new_name = convert_debug_to_zdebug (abfd, name);
0ce398f1
L
3274 if (new_name == NULL)
3275 {
3276 arg->failed = TRUE;
3277 return;
3278 }
f6fe1ccd
L
3279 BFD_ASSERT (name[1] != 'z');
3280 name = new_name;
0ce398f1
L
3281 }
3282 }
3283
3e19fb8f
L
3284 if (delay_st_name_p)
3285 this_hdr->sh_name = (unsigned int) -1;
3286 else
252b5132 3287 {
3e19fb8f
L
3288 this_hdr->sh_name
3289 = (unsigned int) _bfd_elf_strtab_add (elf_shstrtab (abfd),
3290 name, FALSE);
3291 if (this_hdr->sh_name == (unsigned int) -1)
3292 {
3293 arg->failed = TRUE;
3294 return;
3295 }
252b5132
RH
3296 }
3297
a4d8e49b 3298 /* Don't clear sh_flags. Assembler may set additional bits. */
252b5132
RH
3299
3300 if ((asect->flags & SEC_ALLOC) != 0
3301 || asect->user_set_vma)
3302 this_hdr->sh_addr = asect->vma;
3303 else
3304 this_hdr->sh_addr = 0;
3305
3306 this_hdr->sh_offset = 0;
eea6121a 3307 this_hdr->sh_size = asect->size;
252b5132 3308 this_hdr->sh_link = 0;
c86934ce
NC
3309 /* PR 17512: file: 0eb809fe, 8b0535ee. */
3310 if (asect->alignment_power >= (sizeof (bfd_vma) * 8) - 1)
3311 {
4eca0228 3312 _bfd_error_handler
695344c0 3313 /* xgettext:c-format */
9793eb77 3314 (_("%pB: error: alignment power %d of section `%pA' is too big"),
c08bb8dd 3315 abfd, asect->alignment_power, asect);
c86934ce
NC
3316 arg->failed = TRUE;
3317 return;
3318 }
72de5009 3319 this_hdr->sh_addralign = (bfd_vma) 1 << asect->alignment_power;
252b5132
RH
3320 /* The sh_entsize and sh_info fields may have been set already by
3321 copy_private_section_data. */
3322
3323 this_hdr->bfd_section = asect;
3324 this_hdr->contents = NULL;
3325
3cddba1e
L
3326 /* If the section type is unspecified, we set it based on
3327 asect->flags. */
98ece1b3
AM
3328 if ((asect->flags & SEC_GROUP) != 0)
3329 sh_type = SHT_GROUP;
98ece1b3 3330 else
94be91de 3331 sh_type = bfd_elf_get_default_section_type (asect->flags);
98ece1b3 3332
3cddba1e 3333 if (this_hdr->sh_type == SHT_NULL)
98ece1b3
AM
3334 this_hdr->sh_type = sh_type;
3335 else if (this_hdr->sh_type == SHT_NOBITS
3336 && sh_type == SHT_PROGBITS
3337 && (asect->flags & SEC_ALLOC) != 0)
3cddba1e 3338 {
98ece1b3
AM
3339 /* Warn if we are changing a NOBITS section to PROGBITS, but
3340 allow the link to proceed. This can happen when users link
3341 non-bss input sections to bss output sections, or emit data
3342 to a bss output section via a linker script. */
4eca0228 3343 _bfd_error_handler
871b3ab2 3344 (_("warning: section `%pA' type changed to PROGBITS"), asect);
98ece1b3 3345 this_hdr->sh_type = sh_type;
3cddba1e
L
3346 }
3347
2f89ff8d 3348 switch (this_hdr->sh_type)
252b5132 3349 {
2f89ff8d 3350 default:
2f89ff8d
L
3351 break;
3352
3353 case SHT_STRTAB:
2f89ff8d
L
3354 case SHT_NOTE:
3355 case SHT_NOBITS:
3356 case SHT_PROGBITS:
3357 break;
606851fb
AM
3358
3359 case SHT_INIT_ARRAY:
3360 case SHT_FINI_ARRAY:
3361 case SHT_PREINIT_ARRAY:
3362 this_hdr->sh_entsize = bed->s->arch_size / 8;
3363 break;
2f89ff8d
L
3364
3365 case SHT_HASH:
c7ac6ff8 3366 this_hdr->sh_entsize = bed->s->sizeof_hash_entry;
2f89ff8d 3367 break;
5de3bf90 3368
2f89ff8d 3369 case SHT_DYNSYM:
252b5132 3370 this_hdr->sh_entsize = bed->s->sizeof_sym;
2f89ff8d
L
3371 break;
3372
3373 case SHT_DYNAMIC:
252b5132 3374 this_hdr->sh_entsize = bed->s->sizeof_dyn;
2f89ff8d
L
3375 break;
3376
3377 case SHT_RELA:
3378 if (get_elf_backend_data (abfd)->may_use_rela_p)
3379 this_hdr->sh_entsize = bed->s->sizeof_rela;
3380 break;
3381
3382 case SHT_REL:
3383 if (get_elf_backend_data (abfd)->may_use_rel_p)
3384 this_hdr->sh_entsize = bed->s->sizeof_rel;
3385 break;
3386
3387 case SHT_GNU_versym:
252b5132 3388 this_hdr->sh_entsize = sizeof (Elf_External_Versym);
2f89ff8d
L
3389 break;
3390
3391 case SHT_GNU_verdef:
252b5132
RH
3392 this_hdr->sh_entsize = 0;
3393 /* objcopy or strip will copy over sh_info, but may not set
08a40648
AM
3394 cverdefs. The linker will set cverdefs, but sh_info will be
3395 zero. */
252b5132
RH
3396 if (this_hdr->sh_info == 0)
3397 this_hdr->sh_info = elf_tdata (abfd)->cverdefs;
3398 else
3399 BFD_ASSERT (elf_tdata (abfd)->cverdefs == 0
3400 || this_hdr->sh_info == elf_tdata (abfd)->cverdefs);
2f89ff8d
L
3401 break;
3402
3403 case SHT_GNU_verneed:
252b5132
RH
3404 this_hdr->sh_entsize = 0;
3405 /* objcopy or strip will copy over sh_info, but may not set
08a40648
AM
3406 cverrefs. The linker will set cverrefs, but sh_info will be
3407 zero. */
252b5132
RH
3408 if (this_hdr->sh_info == 0)
3409 this_hdr->sh_info = elf_tdata (abfd)->cverrefs;
3410 else
3411 BFD_ASSERT (elf_tdata (abfd)->cverrefs == 0
3412 || this_hdr->sh_info == elf_tdata (abfd)->cverrefs);
2f89ff8d
L
3413 break;
3414
3415 case SHT_GROUP:
1783205a 3416 this_hdr->sh_entsize = GRP_ENTRY_SIZE;
2f89ff8d 3417 break;
fdc90cb4
JJ
3418
3419 case SHT_GNU_HASH:
3420 this_hdr->sh_entsize = bed->s->arch_size == 64 ? 0 : 4;
3421 break;
dbb410c3 3422 }
252b5132
RH
3423
3424 if ((asect->flags & SEC_ALLOC) != 0)
3425 this_hdr->sh_flags |= SHF_ALLOC;
3426 if ((asect->flags & SEC_READONLY) == 0)
3427 this_hdr->sh_flags |= SHF_WRITE;
3428 if ((asect->flags & SEC_CODE) != 0)
3429 this_hdr->sh_flags |= SHF_EXECINSTR;
f5fa8ca2
JJ
3430 if ((asect->flags & SEC_MERGE) != 0)
3431 {
3432 this_hdr->sh_flags |= SHF_MERGE;
3433 this_hdr->sh_entsize = asect->entsize;
f5fa8ca2 3434 }
84865015
NC
3435 if ((asect->flags & SEC_STRINGS) != 0)
3436 this_hdr->sh_flags |= SHF_STRINGS;
1126897b 3437 if ((asect->flags & SEC_GROUP) == 0 && elf_group_name (asect) != NULL)
dbb410c3 3438 this_hdr->sh_flags |= SHF_GROUP;
13ae64f3 3439 if ((asect->flags & SEC_THREAD_LOCAL) != 0)
704afa60
JJ
3440 {
3441 this_hdr->sh_flags |= SHF_TLS;
3a800eb9
AM
3442 if (asect->size == 0
3443 && (asect->flags & SEC_HAS_CONTENTS) == 0)
704afa60 3444 {
3a800eb9 3445 struct bfd_link_order *o = asect->map_tail.link_order;
b34976b6 3446
704afa60 3447 this_hdr->sh_size = 0;
3a800eb9
AM
3448 if (o != NULL)
3449 {
704afa60 3450 this_hdr->sh_size = o->offset + o->size;
3a800eb9
AM
3451 if (this_hdr->sh_size != 0)
3452 this_hdr->sh_type = SHT_NOBITS;
3453 }
704afa60
JJ
3454 }
3455 }
18ae9cc1
L
3456 if ((asect->flags & (SEC_GROUP | SEC_EXCLUDE)) == SEC_EXCLUDE)
3457 this_hdr->sh_flags |= SHF_EXCLUDE;
252b5132 3458
d4730f92
BS
3459 /* If the section has relocs, set up a section header for the
3460 SHT_REL[A] section. If two relocation sections are required for
3461 this section, it is up to the processor-specific back-end to
3462 create the other. */
3463 if ((asect->flags & SEC_RELOC) != 0)
3464 {
3465 /* When doing a relocatable link, create both REL and RELA sections if
3466 needed. */
3467 if (arg->link_info
3468 /* Do the normal setup if we wouldn't create any sections here. */
3469 && esd->rel.count + esd->rela.count > 0
0e1862bb
L
3470 && (bfd_link_relocatable (arg->link_info)
3471 || arg->link_info->emitrelocations))
d4730f92
BS
3472 {
3473 if (esd->rel.count && esd->rel.hdr == NULL
28e07a05 3474 && !_bfd_elf_init_reloc_shdr (abfd, &esd->rel, name,
db4677b8 3475 FALSE, delay_st_name_p))
d4730f92
BS
3476 {
3477 arg->failed = TRUE;
3478 return;
3479 }
3480 if (esd->rela.count && esd->rela.hdr == NULL
28e07a05 3481 && !_bfd_elf_init_reloc_shdr (abfd, &esd->rela, name,
db4677b8 3482 TRUE, delay_st_name_p))
d4730f92
BS
3483 {
3484 arg->failed = TRUE;
3485 return;
3486 }
3487 }
3488 else if (!_bfd_elf_init_reloc_shdr (abfd,
3489 (asect->use_rela_p
3490 ? &esd->rela : &esd->rel),
f6fe1ccd 3491 name,
3e19fb8f
L
3492 asect->use_rela_p,
3493 delay_st_name_p))
db4677b8 3494 {
d4730f92 3495 arg->failed = TRUE;
db4677b8
AM
3496 return;
3497 }
d4730f92
BS
3498 }
3499
252b5132 3500 /* Check for processor-specific section types. */
0414f35b 3501 sh_type = this_hdr->sh_type;
e1fddb6b
AO
3502 if (bed->elf_backend_fake_sections
3503 && !(*bed->elf_backend_fake_sections) (abfd, this_hdr, asect))
db4677b8
AM
3504 {
3505 arg->failed = TRUE;
3506 return;
3507 }
252b5132 3508
42bb2e33 3509 if (sh_type == SHT_NOBITS && asect->size != 0)
0414f35b
AM
3510 {
3511 /* Don't change the header type from NOBITS if we are being
42bb2e33 3512 called for objcopy --only-keep-debug. */
0414f35b
AM
3513 this_hdr->sh_type = sh_type;
3514 }
252b5132
RH
3515}
3516
bcacc0f5
AM
3517/* Fill in the contents of a SHT_GROUP section. Called from
3518 _bfd_elf_compute_section_file_positions for gas, objcopy, and
3519 when ELF targets use the generic linker, ld. Called for ld -r
3520 from bfd_elf_final_link. */
dbb410c3 3521
1126897b 3522void
217aa764 3523bfd_elf_set_group_contents (bfd *abfd, asection *sec, void *failedptrarg)
dbb410c3 3524{
a50b1753 3525 bfd_boolean *failedptr = (bfd_boolean *) failedptrarg;
9dce4196 3526 asection *elt, *first;
dbb410c3 3527 unsigned char *loc;
b34976b6 3528 bfd_boolean gas;
dbb410c3 3529
7e4111ad
L
3530 /* Ignore linker created group section. See elfNN_ia64_object_p in
3531 elfxx-ia64.c. */
ce5aecf8
AM
3532 if ((sec->flags & (SEC_GROUP | SEC_LINKER_CREATED)) != SEC_GROUP
3533 || sec->size == 0
dbb410c3
AM
3534 || *failedptr)
3535 return;
3536
bcacc0f5
AM
3537 if (elf_section_data (sec)->this_hdr.sh_info == 0)
3538 {
3539 unsigned long symindx = 0;
3540
3541 /* elf_group_id will have been set up by objcopy and the
3542 generic linker. */
3543 if (elf_group_id (sec) != NULL)
3544 symindx = elf_group_id (sec)->udata.i;
1126897b 3545
bcacc0f5
AM
3546 if (symindx == 0)
3547 {
3548 /* If called from the assembler, swap_out_syms will have set up
3549 elf_section_syms. */
3550 BFD_ASSERT (elf_section_syms (abfd) != NULL);
3551 symindx = elf_section_syms (abfd)[sec->index]->udata.i;
3552 }
3553 elf_section_data (sec)->this_hdr.sh_info = symindx;
3554 }
3555 else if (elf_section_data (sec)->this_hdr.sh_info == (unsigned int) -2)
1126897b 3556 {
bcacc0f5
AM
3557 /* The ELF backend linker sets sh_info to -2 when the group
3558 signature symbol is global, and thus the index can't be
3559 set until all local symbols are output. */
53720c49
AM
3560 asection *igroup;
3561 struct bfd_elf_section_data *sec_data;
3562 unsigned long symndx;
3563 unsigned long extsymoff;
bcacc0f5
AM
3564 struct elf_link_hash_entry *h;
3565
53720c49
AM
3566 /* The point of this little dance to the first SHF_GROUP section
3567 then back to the SHT_GROUP section is that this gets us to
3568 the SHT_GROUP in the input object. */
3569 igroup = elf_sec_group (elf_next_in_group (sec));
3570 sec_data = elf_section_data (igroup);
3571 symndx = sec_data->this_hdr.sh_info;
3572 extsymoff = 0;
bcacc0f5
AM
3573 if (!elf_bad_symtab (igroup->owner))
3574 {
3575 Elf_Internal_Shdr *symtab_hdr;
3576
3577 symtab_hdr = &elf_tdata (igroup->owner)->symtab_hdr;
3578 extsymoff = symtab_hdr->sh_info;
3579 }
3580 h = elf_sym_hashes (igroup->owner)[symndx - extsymoff];
3581 while (h->root.type == bfd_link_hash_indirect
3582 || h->root.type == bfd_link_hash_warning)
3583 h = (struct elf_link_hash_entry *) h->root.u.i.link;
3584
3585 elf_section_data (sec)->this_hdr.sh_info = h->indx;
1126897b 3586 }
dbb410c3 3587
1126897b 3588 /* The contents won't be allocated for "ld -r" or objcopy. */
b34976b6 3589 gas = TRUE;
dbb410c3
AM
3590 if (sec->contents == NULL)
3591 {
b34976b6 3592 gas = FALSE;
a50b1753 3593 sec->contents = (unsigned char *) bfd_alloc (abfd, sec->size);
9dce4196
AM
3594
3595 /* Arrange for the section to be written out. */
3596 elf_section_data (sec)->this_hdr.contents = sec->contents;
dbb410c3
AM
3597 if (sec->contents == NULL)
3598 {
b34976b6 3599 *failedptr = TRUE;
dbb410c3
AM
3600 return;
3601 }
3602 }
3603
eea6121a 3604 loc = sec->contents + sec->size;
dbb410c3 3605
9dce4196
AM
3606 /* Get the pointer to the first section in the group that gas
3607 squirreled away here. objcopy arranges for this to be set to the
3608 start of the input section group. */
3609 first = elt = elf_next_in_group (sec);
dbb410c3
AM
3610
3611 /* First element is a flag word. Rest of section is elf section
3612 indices for all the sections of the group. Write them backwards
3613 just to keep the group in the same order as given in .section
3614 directives, not that it matters. */
3615 while (elt != NULL)
3616 {
9dce4196 3617 asection *s;
9dce4196 3618
9dce4196 3619 s = elt;
415f38a6
AM
3620 if (!gas)
3621 s = s->output_section;
3622 if (s != NULL
3623 && !bfd_is_abs_section (s))
01e1a5bc 3624 {
db4677b8 3625 struct bfd_elf_section_data *elf_sec = elf_section_data (s);
28e07a05
AM
3626 struct bfd_elf_section_data *input_elf_sec = elf_section_data (elt);
3627
3628 if (elf_sec->rel.hdr != NULL
3629 && (gas
3630 || (input_elf_sec->rel.hdr != NULL
3631 && input_elf_sec->rel.hdr->sh_flags & SHF_GROUP) != 0))
db4677b8 3632 {
28e07a05 3633 elf_sec->rel.hdr->sh_flags |= SHF_GROUP;
db4677b8
AM
3634 loc -= 4;
3635 H_PUT_32 (abfd, elf_sec->rel.idx, loc);
3636 }
28e07a05
AM
3637 if (elf_sec->rela.hdr != NULL
3638 && (gas
3639 || (input_elf_sec->rela.hdr != NULL
3640 && input_elf_sec->rela.hdr->sh_flags & SHF_GROUP) != 0))
db4677b8 3641 {
28e07a05 3642 elf_sec->rela.hdr->sh_flags |= SHF_GROUP;
db4677b8
AM
3643 loc -= 4;
3644 H_PUT_32 (abfd, elf_sec->rela.idx, loc);
3645 }
01e1a5bc 3646 loc -= 4;
db4677b8 3647 H_PUT_32 (abfd, elf_sec->this_idx, loc);
01e1a5bc 3648 }
945906ff 3649 elt = elf_next_in_group (elt);
9dce4196
AM
3650 if (elt == first)
3651 break;
dbb410c3
AM
3652 }
3653
7bdf4127
AB
3654 loc -= 4;
3655 BFD_ASSERT (loc == sec->contents);
dbb410c3 3656
9dce4196 3657 H_PUT_32 (abfd, sec->flags & SEC_LINK_ONCE ? GRP_COMDAT : 0, loc);
dbb410c3
AM
3658}
3659
bce964aa
AM
3660/* Given NAME, the name of a relocation section stripped of its
3661 .rel/.rela prefix, return the section in ABFD to which the
3662 relocations apply. */
bd53a53a
L
3663
3664asection *
bce964aa
AM
3665_bfd_elf_plt_get_reloc_section (bfd *abfd, const char *name)
3666{
3667 /* If a target needs .got.plt section, relocations in rela.plt/rel.plt
3668 section likely apply to .got.plt or .got section. */
3669 if (get_elf_backend_data (abfd)->want_got_plt
3670 && strcmp (name, ".plt") == 0)
3671 {
3672 asection *sec;
3673
3674 name = ".got.plt";
3675 sec = bfd_get_section_by_name (abfd, name);
3676 if (sec != NULL)
3677 return sec;
3678 name = ".got";
3679 }
3680
3681 return bfd_get_section_by_name (abfd, name);
3682}
3683
3684/* Return the section to which RELOC_SEC applies. */
3685
3686static asection *
3687elf_get_reloc_section (asection *reloc_sec)
bd53a53a
L
3688{
3689 const char *name;
3690 unsigned int type;
3691 bfd *abfd;
bce964aa 3692 const struct elf_backend_data *bed;
bd53a53a
L
3693
3694 type = elf_section_data (reloc_sec)->this_hdr.sh_type;
3695 if (type != SHT_REL && type != SHT_RELA)
3696 return NULL;
3697
3698 /* We look up the section the relocs apply to by name. */
3699 name = reloc_sec->name;
bce964aa
AM
3700 if (strncmp (name, ".rel", 4) != 0)
3701 return NULL;
3702 name += 4;
3703 if (type == SHT_RELA && *name++ != 'a')
3704 return NULL;
bd53a53a 3705
bd53a53a 3706 abfd = reloc_sec->owner;
bce964aa
AM
3707 bed = get_elf_backend_data (abfd);
3708 return bed->get_reloc_section (abfd, name);
bd53a53a
L
3709}
3710
252b5132
RH
3711/* Assign all ELF section numbers. The dummy first section is handled here
3712 too. The link/info pointers for the standard section types are filled
3713 in here too, while we're at it. */
3714
b34976b6 3715static bfd_boolean
da9f89d4 3716assign_section_numbers (bfd *abfd, struct bfd_link_info *link_info)
252b5132
RH
3717{
3718 struct elf_obj_tdata *t = elf_tdata (abfd);
3719 asection *sec;
3e19fb8f 3720 unsigned int section_number;
252b5132 3721 Elf_Internal_Shdr **i_shdrp;
47cc2cf5 3722 struct bfd_elf_section_data *d;
3516e984 3723 bfd_boolean need_symtab;
252b5132
RH
3724
3725 section_number = 1;
3726
2b0f7ef9
JJ
3727 _bfd_elf_strtab_clear_all_refs (elf_shstrtab (abfd));
3728
da9f89d4 3729 /* SHT_GROUP sections are in relocatable files only. */
7bdf4127 3730 if (link_info == NULL || !link_info->resolve_section_groups)
252b5132 3731 {
ef53be89 3732 size_t reloc_count = 0;
14f2c699 3733
da9f89d4 3734 /* Put SHT_GROUP sections first. */
04dd1667 3735 for (sec = abfd->sections; sec != NULL; sec = sec->next)
47cc2cf5 3736 {
5daa8fe7 3737 d = elf_section_data (sec);
da9f89d4
L
3738
3739 if (d->this_hdr.sh_type == SHT_GROUP)
08a40648 3740 {
5daa8fe7 3741 if (sec->flags & SEC_LINKER_CREATED)
da9f89d4
L
3742 {
3743 /* Remove the linker created SHT_GROUP sections. */
5daa8fe7 3744 bfd_section_list_remove (abfd, sec);
da9f89d4 3745 abfd->section_count--;
da9f89d4 3746 }
08a40648 3747 else
4fbb74a6 3748 d->this_idx = section_number++;
da9f89d4 3749 }
14f2c699
L
3750
3751 /* Count relocations. */
3752 reloc_count += sec->reloc_count;
47cc2cf5 3753 }
14f2c699
L
3754
3755 /* Clear HAS_RELOC if there are no relocations. */
3756 if (reloc_count == 0)
3757 abfd->flags &= ~HAS_RELOC;
47cc2cf5
PB
3758 }
3759
3760 for (sec = abfd->sections; sec; sec = sec->next)
3761 {
3762 d = elf_section_data (sec);
3763
3764 if (d->this_hdr.sh_type != SHT_GROUP)
4fbb74a6 3765 d->this_idx = section_number++;
3e19fb8f
L
3766 if (d->this_hdr.sh_name != (unsigned int) -1)
3767 _bfd_elf_strtab_addref (elf_shstrtab (abfd), d->this_hdr.sh_name);
d4730f92 3768 if (d->rel.hdr)
2b0f7ef9 3769 {
d4730f92 3770 d->rel.idx = section_number++;
3e19fb8f
L
3771 if (d->rel.hdr->sh_name != (unsigned int) -1)
3772 _bfd_elf_strtab_addref (elf_shstrtab (abfd), d->rel.hdr->sh_name);
2b0f7ef9 3773 }
d4730f92
BS
3774 else
3775 d->rel.idx = 0;
23bc299b 3776
d4730f92 3777 if (d->rela.hdr)
2b0f7ef9 3778 {
d4730f92 3779 d->rela.idx = section_number++;
3e19fb8f
L
3780 if (d->rela.hdr->sh_name != (unsigned int) -1)
3781 _bfd_elf_strtab_addref (elf_shstrtab (abfd), d->rela.hdr->sh_name);
2b0f7ef9 3782 }
23bc299b 3783 else
d4730f92 3784 d->rela.idx = 0;
252b5132
RH
3785 }
3786
3516e984
L
3787 need_symtab = (bfd_get_symcount (abfd) > 0
3788 || (link_info == NULL
3789 && ((abfd->flags & (EXEC_P | DYNAMIC | HAS_RELOC))
3790 == HAS_RELOC)));
3791 if (need_symtab)
252b5132 3792 {
12bd6957 3793 elf_onesymtab (abfd) = section_number++;
2b0f7ef9 3794 _bfd_elf_strtab_addref (elf_shstrtab (abfd), t->symtab_hdr.sh_name);
4fbb74a6 3795 if (section_number > ((SHN_LORESERVE - 2) & 0xFFFF))
9ad5cbcf 3796 {
7a6e0d89 3797 elf_section_list *entry;
6a40cf0c
NC
3798
3799 BFD_ASSERT (elf_symtab_shndx_list (abfd) == NULL);
3800
7a6e0d89 3801 entry = bfd_zalloc (abfd, sizeof (*entry));
6a40cf0c
NC
3802 entry->ndx = section_number++;
3803 elf_symtab_shndx_list (abfd) = entry;
3804 entry->hdr.sh_name
9ad5cbcf 3805 = (unsigned int) _bfd_elf_strtab_add (elf_shstrtab (abfd),
b34976b6 3806 ".symtab_shndx", FALSE);
6a40cf0c 3807 if (entry->hdr.sh_name == (unsigned int) -1)
b34976b6 3808 return FALSE;
9ad5cbcf 3809 }
12bd6957 3810 elf_strtab_sec (abfd) = section_number++;
2b0f7ef9 3811 _bfd_elf_strtab_addref (elf_shstrtab (abfd), t->strtab_hdr.sh_name);
252b5132
RH
3812 }
3813
dd905818
NC
3814 elf_shstrtab_sec (abfd) = section_number++;
3815 _bfd_elf_strtab_addref (elf_shstrtab (abfd), t->shstrtab_hdr.sh_name);
3816 elf_elfheader (abfd)->e_shstrndx = elf_shstrtab_sec (abfd);
3817
1c52a645
L
3818 if (section_number >= SHN_LORESERVE)
3819 {
695344c0 3820 /* xgettext:c-format */
871b3ab2 3821 _bfd_error_handler (_("%pB: too many sections: %u"),
1c52a645
L
3822 abfd, section_number);
3823 return FALSE;
3824 }
3825
9ad5cbcf 3826 elf_numsections (abfd) = section_number;
252b5132
RH
3827 elf_elfheader (abfd)->e_shnum = section_number;
3828
3829 /* Set up the list of section header pointers, in agreement with the
3830 indices. */
a50b1753 3831 i_shdrp = (Elf_Internal_Shdr **) bfd_zalloc2 (abfd, section_number,
07d6d2b8 3832 sizeof (Elf_Internal_Shdr *));
252b5132 3833 if (i_shdrp == NULL)
b34976b6 3834 return FALSE;
252b5132 3835
a50b1753 3836 i_shdrp[0] = (Elf_Internal_Shdr *) bfd_zalloc (abfd,
07d6d2b8 3837 sizeof (Elf_Internal_Shdr));
252b5132
RH
3838 if (i_shdrp[0] == NULL)
3839 {
3840 bfd_release (abfd, i_shdrp);
b34976b6 3841 return FALSE;
252b5132 3842 }
252b5132
RH
3843
3844 elf_elfsections (abfd) = i_shdrp;
3845
12bd6957 3846 i_shdrp[elf_shstrtab_sec (abfd)] = &t->shstrtab_hdr;
3516e984 3847 if (need_symtab)
252b5132 3848 {
12bd6957 3849 i_shdrp[elf_onesymtab (abfd)] = &t->symtab_hdr;
4fbb74a6 3850 if (elf_numsections (abfd) > (SHN_LORESERVE & 0xFFFF))
9ad5cbcf 3851 {
6a40cf0c
NC
3852 elf_section_list * entry = elf_symtab_shndx_list (abfd);
3853 BFD_ASSERT (entry != NULL);
3854 i_shdrp[entry->ndx] = & entry->hdr;
3855 entry->hdr.sh_link = elf_onesymtab (abfd);
9ad5cbcf 3856 }
12bd6957
AM
3857 i_shdrp[elf_strtab_sec (abfd)] = &t->strtab_hdr;
3858 t->symtab_hdr.sh_link = elf_strtab_sec (abfd);
252b5132 3859 }
38ce5b11 3860
252b5132
RH
3861 for (sec = abfd->sections; sec; sec = sec->next)
3862 {
252b5132 3863 asection *s;
252b5132 3864
91d6fa6a
NC
3865 d = elf_section_data (sec);
3866
252b5132 3867 i_shdrp[d->this_idx] = &d->this_hdr;
d4730f92
BS
3868 if (d->rel.idx != 0)
3869 i_shdrp[d->rel.idx] = d->rel.hdr;
3870 if (d->rela.idx != 0)
3871 i_shdrp[d->rela.idx] = d->rela.hdr;
252b5132
RH
3872
3873 /* Fill in the sh_link and sh_info fields while we're at it. */
3874
3875 /* sh_link of a reloc section is the section index of the symbol
3876 table. sh_info is the section index of the section to which
3877 the relocation entries apply. */
d4730f92 3878 if (d->rel.idx != 0)
252b5132 3879 {
12bd6957 3880 d->rel.hdr->sh_link = elf_onesymtab (abfd);
d4730f92 3881 d->rel.hdr->sh_info = d->this_idx;
9ef5d938 3882 d->rel.hdr->sh_flags |= SHF_INFO_LINK;
252b5132 3883 }
d4730f92 3884 if (d->rela.idx != 0)
23bc299b 3885 {
12bd6957 3886 d->rela.hdr->sh_link = elf_onesymtab (abfd);
d4730f92 3887 d->rela.hdr->sh_info = d->this_idx;
9ef5d938 3888 d->rela.hdr->sh_flags |= SHF_INFO_LINK;
23bc299b 3889 }
252b5132 3890
38ce5b11
L
3891 /* We need to set up sh_link for SHF_LINK_ORDER. */
3892 if ((d->this_hdr.sh_flags & SHF_LINK_ORDER) != 0)
3893 {
3894 s = elf_linked_to_section (sec);
3895 if (s)
38ce5b11 3896 {
f2876037 3897 /* elf_linked_to_section points to the input section. */
ccd2ec6a 3898 if (link_info != NULL)
38ce5b11 3899 {
f2876037 3900 /* Check discarded linkonce section. */
dbaa2011 3901 if (discarded_section (s))
38ce5b11 3902 {
ccd2ec6a 3903 asection *kept;
4eca0228 3904 _bfd_error_handler
695344c0 3905 /* xgettext:c-format */
871b3ab2
AM
3906 (_("%pB: sh_link of section `%pA' points to"
3907 " discarded section `%pA' of `%pB'"),
ccd2ec6a
L
3908 abfd, d->this_hdr.bfd_section,
3909 s, s->owner);
3910 /* Point to the kept section if it has the same
3911 size as the discarded one. */
c0f00686 3912 kept = _bfd_elf_check_kept_section (s, link_info);
ccd2ec6a 3913 if (kept == NULL)
185d09ad 3914 {
ccd2ec6a
L
3915 bfd_set_error (bfd_error_bad_value);
3916 return FALSE;
185d09ad 3917 }
ccd2ec6a 3918 s = kept;
38ce5b11 3919 }
e424ecc8 3920
ccd2ec6a
L
3921 s = s->output_section;
3922 BFD_ASSERT (s != NULL);
38ce5b11 3923 }
f2876037
L
3924 else
3925 {
3926 /* Handle objcopy. */
3927 if (s->output_section == NULL)
3928 {
4eca0228 3929 _bfd_error_handler
695344c0 3930 /* xgettext:c-format */
871b3ab2
AM
3931 (_("%pB: sh_link of section `%pA' points to"
3932 " removed section `%pA' of `%pB'"),
f2876037
L
3933 abfd, d->this_hdr.bfd_section, s, s->owner);
3934 bfd_set_error (bfd_error_bad_value);
3935 return FALSE;
3936 }
3937 s = s->output_section;
3938 }
ccd2ec6a
L
3939 d->this_hdr.sh_link = elf_section_data (s)->this_idx;
3940 }
3941 else
3942 {
3943 /* PR 290:
3944 The Intel C compiler generates SHT_IA_64_UNWIND with
3945 SHF_LINK_ORDER. But it doesn't set the sh_link or
3946 sh_info fields. Hence we could get the situation
08a40648 3947 where s is NULL. */
ccd2ec6a
L
3948 const struct elf_backend_data *bed
3949 = get_elf_backend_data (abfd);
3950 if (bed->link_order_error_handler)
3951 bed->link_order_error_handler
695344c0 3952 /* xgettext:c-format */
871b3ab2 3953 (_("%pB: warning: sh_link not set for section `%pA'"),
ccd2ec6a 3954 abfd, sec);
38ce5b11
L
3955 }
3956 }
3957
252b5132
RH
3958 switch (d->this_hdr.sh_type)
3959 {
3960 case SHT_REL:
3961 case SHT_RELA:
3962 /* A reloc section which we are treating as a normal BFD
3963 section. sh_link is the section index of the symbol
3964 table. sh_info is the section index of the section to
3965 which the relocation entries apply. We assume that an
3966 allocated reloc section uses the dynamic symbol table.
3967 FIXME: How can we be sure? */
3968 s = bfd_get_section_by_name (abfd, ".dynsym");
3969 if (s != NULL)
3970 d->this_hdr.sh_link = elf_section_data (s)->this_idx;
3971
bce964aa 3972 s = elf_get_reloc_section (sec);
252b5132 3973 if (s != NULL)
9ef5d938
L
3974 {
3975 d->this_hdr.sh_info = elf_section_data (s)->this_idx;
3976 d->this_hdr.sh_flags |= SHF_INFO_LINK;
3977 }
252b5132
RH
3978 break;
3979
3980 case SHT_STRTAB:
3981 /* We assume that a section named .stab*str is a stabs
3982 string section. We look for a section with the same name
3983 but without the trailing ``str'', and set its sh_link
3984 field to point to this section. */
0112cd26 3985 if (CONST_STRNEQ (sec->name, ".stab")
252b5132
RH
3986 && strcmp (sec->name + strlen (sec->name) - 3, "str") == 0)
3987 {
3988 size_t len;
3989 char *alc;
3990
3991 len = strlen (sec->name);
a50b1753 3992 alc = (char *) bfd_malloc (len - 2);
252b5132 3993 if (alc == NULL)
b34976b6 3994 return FALSE;
d4c88bbb 3995 memcpy (alc, sec->name, len - 3);
252b5132
RH
3996 alc[len - 3] = '\0';
3997 s = bfd_get_section_by_name (abfd, alc);
3998 free (alc);
3999 if (s != NULL)
4000 {
4001 elf_section_data (s)->this_hdr.sh_link = d->this_idx;
4002
4003 /* This is a .stab section. */
0594c12d
AM
4004 if (elf_section_data (s)->this_hdr.sh_entsize == 0)
4005 elf_section_data (s)->this_hdr.sh_entsize
4006 = 4 + 2 * bfd_get_arch_size (abfd) / 8;
252b5132
RH
4007 }
4008 }
4009 break;
4010
4011 case SHT_DYNAMIC:
4012 case SHT_DYNSYM:
4013 case SHT_GNU_verneed:
4014 case SHT_GNU_verdef:
4015 /* sh_link is the section header index of the string table
4016 used for the dynamic entries, or the symbol table, or the
4017 version strings. */
4018 s = bfd_get_section_by_name (abfd, ".dynstr");
4019 if (s != NULL)
4020 d->this_hdr.sh_link = elf_section_data (s)->this_idx;
4021 break;
4022
7f1204bb
JJ
4023 case SHT_GNU_LIBLIST:
4024 /* sh_link is the section header index of the prelink library
08a40648
AM
4025 list used for the dynamic entries, or the symbol table, or
4026 the version strings. */
7f1204bb
JJ
4027 s = bfd_get_section_by_name (abfd, (sec->flags & SEC_ALLOC)
4028 ? ".dynstr" : ".gnu.libstr");
4029 if (s != NULL)
4030 d->this_hdr.sh_link = elf_section_data (s)->this_idx;
4031 break;
4032
252b5132 4033 case SHT_HASH:
fdc90cb4 4034 case SHT_GNU_HASH:
252b5132
RH
4035 case SHT_GNU_versym:
4036 /* sh_link is the section header index of the symbol table
4037 this hash table or version table is for. */
4038 s = bfd_get_section_by_name (abfd, ".dynsym");
4039 if (s != NULL)
4040 d->this_hdr.sh_link = elf_section_data (s)->this_idx;
4041 break;
dbb410c3
AM
4042
4043 case SHT_GROUP:
12bd6957 4044 d->this_hdr.sh_link = elf_onesymtab (abfd);
252b5132
RH
4045 }
4046 }
4047
3e19fb8f
L
4048 /* Delay setting sh_name to _bfd_elf_write_object_contents so that
4049 _bfd_elf_assign_file_positions_for_non_load can convert DWARF
4050 debug section name from .debug_* to .zdebug_* if needed. */
4051
b34976b6 4052 return TRUE;
252b5132
RH
4053}
4054
5372391b 4055static bfd_boolean
217aa764 4056sym_is_global (bfd *abfd, asymbol *sym)
252b5132
RH
4057{
4058 /* If the backend has a special mapping, use it. */
9c5bfbb7 4059 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
217aa764
AM
4060 if (bed->elf_backend_sym_is_global)
4061 return (*bed->elf_backend_sym_is_global) (abfd, sym);
252b5132 4062
e47bf690 4063 return ((sym->flags & (BSF_GLOBAL | BSF_WEAK | BSF_GNU_UNIQUE)) != 0
e6f7f6d1
AM
4064 || bfd_is_und_section (bfd_asymbol_section (sym))
4065 || bfd_is_com_section (bfd_asymbol_section (sym)));
252b5132
RH
4066}
4067
76359541
TP
4068/* Filter global symbols of ABFD to include in the import library. All
4069 SYMCOUNT symbols of ABFD can be examined from their pointers in
4070 SYMS. Pointers of symbols to keep should be stored contiguously at
4071 the beginning of that array.
4072
4073 Returns the number of symbols to keep. */
4074
4075unsigned int
4076_bfd_elf_filter_global_symbols (bfd *abfd, struct bfd_link_info *info,
4077 asymbol **syms, long symcount)
4078{
4079 long src_count, dst_count = 0;
4080
4081 for (src_count = 0; src_count < symcount; src_count++)
4082 {
4083 asymbol *sym = syms[src_count];
4084 char *name = (char *) bfd_asymbol_name (sym);
4085 struct bfd_link_hash_entry *h;
4086
4087 if (!sym_is_global (abfd, sym))
4088 continue;
4089
4090 h = bfd_link_hash_lookup (info->hash, name, FALSE, FALSE, FALSE);
5df1bc57
AM
4091 if (h == NULL)
4092 continue;
76359541
TP
4093 if (h->type != bfd_link_hash_defined && h->type != bfd_link_hash_defweak)
4094 continue;
76359541
TP
4095 if (h->linker_def || h->ldscript_def)
4096 continue;
4097
4098 syms[dst_count++] = sym;
4099 }
4100
4101 syms[dst_count] = NULL;
4102
4103 return dst_count;
4104}
4105
5372391b 4106/* Don't output section symbols for sections that are not going to be
c6d8cab4 4107 output, that are duplicates or there is no BFD section. */
5372391b
AM
4108
4109static bfd_boolean
4110ignore_section_sym (bfd *abfd, asymbol *sym)
4111{
c6d8cab4
L
4112 elf_symbol_type *type_ptr;
4113
db0c309f
NC
4114 if (sym == NULL)
4115 return FALSE;
4116
c6d8cab4
L
4117 if ((sym->flags & BSF_SECTION_SYM) == 0)
4118 return FALSE;
4119
db0c309f
NC
4120 if (sym->section == NULL)
4121 return TRUE;
4122
c6d8cab4
L
4123 type_ptr = elf_symbol_from (abfd, sym);
4124 return ((type_ptr != NULL
4125 && type_ptr->internal_elf_sym.st_shndx != 0
4126 && bfd_is_abs_section (sym->section))
4127 || !(sym->section->owner == abfd
db0c309f
NC
4128 || (sym->section->output_section != NULL
4129 && sym->section->output_section->owner == abfd
2633a79c
AM
4130 && sym->section->output_offset == 0)
4131 || bfd_is_abs_section (sym->section)));
5372391b
AM
4132}
4133
2633a79c
AM
4134/* Map symbol from it's internal number to the external number, moving
4135 all local symbols to be at the head of the list. */
4136
b34976b6 4137static bfd_boolean
12bd6957 4138elf_map_symbols (bfd *abfd, unsigned int *pnum_locals)
252b5132 4139{
dc810e39 4140 unsigned int symcount = bfd_get_symcount (abfd);
252b5132
RH
4141 asymbol **syms = bfd_get_outsymbols (abfd);
4142 asymbol **sect_syms;
dc810e39
AM
4143 unsigned int num_locals = 0;
4144 unsigned int num_globals = 0;
4145 unsigned int num_locals2 = 0;
4146 unsigned int num_globals2 = 0;
7292b3ac 4147 unsigned int max_index = 0;
dc810e39 4148 unsigned int idx;
252b5132
RH
4149 asection *asect;
4150 asymbol **new_syms;
252b5132
RH
4151
4152#ifdef DEBUG
4153 fprintf (stderr, "elf_map_symbols\n");
4154 fflush (stderr);
4155#endif
4156
252b5132
RH
4157 for (asect = abfd->sections; asect; asect = asect->next)
4158 {
4159 if (max_index < asect->index)
4160 max_index = asect->index;
4161 }
4162
4163 max_index++;
a50b1753 4164 sect_syms = (asymbol **) bfd_zalloc2 (abfd, max_index, sizeof (asymbol *));
252b5132 4165 if (sect_syms == NULL)
b34976b6 4166 return FALSE;
252b5132 4167 elf_section_syms (abfd) = sect_syms;
4e89ac30 4168 elf_num_section_syms (abfd) = max_index;
252b5132 4169
079e9a2f
AM
4170 /* Init sect_syms entries for any section symbols we have already
4171 decided to output. */
252b5132
RH
4172 for (idx = 0; idx < symcount; idx++)
4173 {
dc810e39 4174 asymbol *sym = syms[idx];
c044fabd 4175
252b5132 4176 if ((sym->flags & BSF_SECTION_SYM) != 0
0f0a5e58 4177 && sym->value == 0
2633a79c
AM
4178 && !ignore_section_sym (abfd, sym)
4179 && !bfd_is_abs_section (sym->section))
252b5132 4180 {
5372391b 4181 asection *sec = sym->section;
252b5132 4182
5372391b
AM
4183 if (sec->owner != abfd)
4184 sec = sec->output_section;
252b5132 4185
5372391b 4186 sect_syms[sec->index] = syms[idx];
252b5132
RH
4187 }
4188 }
4189
252b5132
RH
4190 /* Classify all of the symbols. */
4191 for (idx = 0; idx < symcount; idx++)
4192 {
2633a79c 4193 if (sym_is_global (abfd, syms[idx]))
252b5132 4194 num_globals++;
2633a79c
AM
4195 else if (!ignore_section_sym (abfd, syms[idx]))
4196 num_locals++;
252b5132 4197 }
079e9a2f 4198
5372391b 4199 /* We will be adding a section symbol for each normal BFD section. Most
079e9a2f
AM
4200 sections will already have a section symbol in outsymbols, but
4201 eg. SHT_GROUP sections will not, and we need the section symbol mapped
4202 at least in that case. */
252b5132
RH
4203 for (asect = abfd->sections; asect; asect = asect->next)
4204 {
079e9a2f 4205 if (sect_syms[asect->index] == NULL)
252b5132 4206 {
079e9a2f 4207 if (!sym_is_global (abfd, asect->symbol))
252b5132
RH
4208 num_locals++;
4209 else
4210 num_globals++;
252b5132
RH
4211 }
4212 }
4213
4214 /* Now sort the symbols so the local symbols are first. */
a50b1753 4215 new_syms = (asymbol **) bfd_alloc2 (abfd, num_locals + num_globals,
07d6d2b8 4216 sizeof (asymbol *));
dc810e39 4217
252b5132 4218 if (new_syms == NULL)
b34976b6 4219 return FALSE;
252b5132
RH
4220
4221 for (idx = 0; idx < symcount; idx++)
4222 {
4223 asymbol *sym = syms[idx];
dc810e39 4224 unsigned int i;
252b5132 4225
2633a79c
AM
4226 if (sym_is_global (abfd, sym))
4227 i = num_locals + num_globals2++;
4228 else if (!ignore_section_sym (abfd, sym))
252b5132
RH
4229 i = num_locals2++;
4230 else
2633a79c 4231 continue;
252b5132
RH
4232 new_syms[i] = sym;
4233 sym->udata.i = i + 1;
4234 }
4235 for (asect = abfd->sections; asect; asect = asect->next)
4236 {
079e9a2f 4237 if (sect_syms[asect->index] == NULL)
252b5132 4238 {
079e9a2f 4239 asymbol *sym = asect->symbol;
dc810e39 4240 unsigned int i;
252b5132 4241
079e9a2f 4242 sect_syms[asect->index] = sym;
252b5132
RH
4243 if (!sym_is_global (abfd, sym))
4244 i = num_locals2++;
4245 else
4246 i = num_locals + num_globals2++;
4247 new_syms[i] = sym;
4248 sym->udata.i = i + 1;
4249 }
4250 }
4251
4252 bfd_set_symtab (abfd, new_syms, num_locals + num_globals);
4253
12bd6957 4254 *pnum_locals = num_locals;
b34976b6 4255 return TRUE;
252b5132
RH
4256}
4257
4258/* Align to the maximum file alignment that could be required for any
4259 ELF data structure. */
4260
268b6b39 4261static inline file_ptr
217aa764 4262align_file_position (file_ptr off, int align)
252b5132
RH
4263{
4264 return (off + align - 1) & ~(align - 1);
4265}
4266
4267/* Assign a file position to a section, optionally aligning to the
4268 required section alignment. */
4269
217aa764
AM
4270file_ptr
4271_bfd_elf_assign_file_position_for_section (Elf_Internal_Shdr *i_shdrp,
4272 file_ptr offset,
4273 bfd_boolean align)
252b5132 4274{
72de5009
AM
4275 if (align && i_shdrp->sh_addralign > 1)
4276 offset = BFD_ALIGN (offset, i_shdrp->sh_addralign);
252b5132
RH
4277 i_shdrp->sh_offset = offset;
4278 if (i_shdrp->bfd_section != NULL)
4279 i_shdrp->bfd_section->filepos = offset;
4280 if (i_shdrp->sh_type != SHT_NOBITS)
4281 offset += i_shdrp->sh_size;
4282 return offset;
4283}
4284
4285/* Compute the file positions we are going to put the sections at, and
4286 otherwise prepare to begin writing out the ELF file. If LINK_INFO
4287 is not NULL, this is being called by the ELF backend linker. */
4288
b34976b6 4289bfd_boolean
217aa764
AM
4290_bfd_elf_compute_section_file_positions (bfd *abfd,
4291 struct bfd_link_info *link_info)
252b5132 4292{
9c5bfbb7 4293 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
d4730f92 4294 struct fake_section_arg fsargs;
b34976b6 4295 bfd_boolean failed;
ef10c3ac 4296 struct elf_strtab_hash *strtab = NULL;
252b5132 4297 Elf_Internal_Shdr *shstrtab_hdr;
3516e984 4298 bfd_boolean need_symtab;
252b5132
RH
4299
4300 if (abfd->output_has_begun)
b34976b6 4301 return TRUE;
252b5132
RH
4302
4303 /* Do any elf backend specific processing first. */
4304 if (bed->elf_backend_begin_write_processing)
4305 (*bed->elf_backend_begin_write_processing) (abfd, link_info);
4306
ed7e9d0b 4307 if (!(*bed->elf_backend_init_file_header) (abfd, link_info))
b34976b6 4308 return FALSE;
252b5132 4309
d4730f92
BS
4310 fsargs.failed = FALSE;
4311 fsargs.link_info = link_info;
4312 bfd_map_over_sections (abfd, elf_fake_sections, &fsargs);
4313 if (fsargs.failed)
b34976b6 4314 return FALSE;
252b5132 4315
da9f89d4 4316 if (!assign_section_numbers (abfd, link_info))
b34976b6 4317 return FALSE;
252b5132
RH
4318
4319 /* The backend linker builds symbol table information itself. */
3516e984
L
4320 need_symtab = (link_info == NULL
4321 && (bfd_get_symcount (abfd) > 0
4322 || ((abfd->flags & (EXEC_P | DYNAMIC | HAS_RELOC))
4323 == HAS_RELOC)));
4324 if (need_symtab)
252b5132
RH
4325 {
4326 /* Non-zero if doing a relocatable link. */
4327 int relocatable_p = ! (abfd->flags & (EXEC_P | DYNAMIC));
4328
4329 if (! swap_out_syms (abfd, &strtab, relocatable_p))
b34976b6 4330 return FALSE;
252b5132
RH
4331 }
4332
d4730f92 4333 failed = FALSE;
1126897b 4334 if (link_info == NULL)
dbb410c3 4335 {
1126897b 4336 bfd_map_over_sections (abfd, bfd_elf_set_group_contents, &failed);
dbb410c3 4337 if (failed)
b34976b6 4338 return FALSE;
dbb410c3
AM
4339 }
4340
252b5132 4341 shstrtab_hdr = &elf_tdata (abfd)->shstrtab_hdr;
ed7e9d0b 4342 /* sh_name was set in init_file_header. */
252b5132 4343 shstrtab_hdr->sh_type = SHT_STRTAB;
84865015 4344 shstrtab_hdr->sh_flags = bed->elf_strtab_flags;
252b5132 4345 shstrtab_hdr->sh_addr = 0;
946748d5 4346 /* sh_size is set in _bfd_elf_assign_file_positions_for_non_load. */
252b5132
RH
4347 shstrtab_hdr->sh_entsize = 0;
4348 shstrtab_hdr->sh_link = 0;
4349 shstrtab_hdr->sh_info = 0;
3e19fb8f 4350 /* sh_offset is set in _bfd_elf_assign_file_positions_for_non_load. */
252b5132
RH
4351 shstrtab_hdr->sh_addralign = 1;
4352
c84fca4d 4353 if (!assign_file_positions_except_relocs (abfd, link_info))
b34976b6 4354 return FALSE;
252b5132 4355
3516e984 4356 if (need_symtab)
252b5132
RH
4357 {
4358 file_ptr off;
4359 Elf_Internal_Shdr *hdr;
4360
12bd6957 4361 off = elf_next_file_pos (abfd);
252b5132 4362
6a40cf0c 4363 hdr = & elf_symtab_hdr (abfd);
b34976b6 4364 off = _bfd_elf_assign_file_position_for_section (hdr, off, TRUE);
252b5132 4365
6a40cf0c
NC
4366 if (elf_symtab_shndx_list (abfd) != NULL)
4367 {
4368 hdr = & elf_symtab_shndx_list (abfd)->hdr;
4369 if (hdr->sh_size != 0)
4370 off = _bfd_elf_assign_file_position_for_section (hdr, off, TRUE);
4371 /* FIXME: What about other symtab_shndx sections in the list ? */
4372 }
9ad5cbcf 4373
252b5132 4374 hdr = &elf_tdata (abfd)->strtab_hdr;
b34976b6 4375 off = _bfd_elf_assign_file_position_for_section (hdr, off, TRUE);
252b5132 4376
12bd6957 4377 elf_next_file_pos (abfd) = off;
252b5132
RH
4378
4379 /* Now that we know where the .strtab section goes, write it
08a40648 4380 out. */
252b5132 4381 if (bfd_seek (abfd, hdr->sh_offset, SEEK_SET) != 0
ef10c3ac 4382 || ! _bfd_elf_strtab_emit (abfd, strtab))
b34976b6 4383 return FALSE;
ef10c3ac 4384 _bfd_elf_strtab_free (strtab);
252b5132
RH
4385 }
4386
b34976b6 4387 abfd->output_has_begun = TRUE;
252b5132 4388
b34976b6 4389 return TRUE;
252b5132
RH
4390}
4391
8ded5a0f
AM
4392/* Make an initial estimate of the size of the program header. If we
4393 get the number wrong here, we'll redo section placement. */
4394
4395static bfd_size_type
4396get_program_header_size (bfd *abfd, struct bfd_link_info *info)
4397{
4398 size_t segs;
4399 asection *s;
2b05f1b7 4400 const struct elf_backend_data *bed;
8ded5a0f
AM
4401
4402 /* Assume we will need exactly two PT_LOAD segments: one for text
4403 and one for data. */
4404 segs = 2;
4405
4406 s = bfd_get_section_by_name (abfd, ".interp");
1b9e270b 4407 if (s != NULL && (s->flags & SEC_LOAD) != 0 && s->size != 0)
8ded5a0f
AM
4408 {
4409 /* If we have a loadable interpreter section, we need a
4410 PT_INTERP segment. In this case, assume we also need a
4411 PT_PHDR segment, although that may not be true for all
4412 targets. */
e9a38e0f 4413 segs += 2;
8ded5a0f
AM
4414 }
4415
4416 if (bfd_get_section_by_name (abfd, ".dynamic") != NULL)
4417 {
4418 /* We need a PT_DYNAMIC segment. */
4419 ++segs;
f210dcff 4420 }
08a40648 4421
ceae84aa 4422 if (info != NULL && info->relro)
f210dcff
L
4423 {
4424 /* We need a PT_GNU_RELRO segment. */
4425 ++segs;
8ded5a0f
AM
4426 }
4427
12bd6957 4428 if (elf_eh_frame_hdr (abfd))
8ded5a0f
AM
4429 {
4430 /* We need a PT_GNU_EH_FRAME segment. */
4431 ++segs;
4432 }
4433
12bd6957 4434 if (elf_stack_flags (abfd))
8ded5a0f 4435 {
2b05f1b7
L
4436 /* We need a PT_GNU_STACK segment. */
4437 ++segs;
4438 }
94b11780 4439
0a59decb
L
4440 s = bfd_get_section_by_name (abfd,
4441 NOTE_GNU_PROPERTY_SECTION_NAME);
4442 if (s != NULL && s->size != 0)
4443 {
4444 /* We need a PT_GNU_PROPERTY segment. */
4445 ++segs;
4446 }
4447
2b05f1b7
L
4448 for (s = abfd->sections; s != NULL; s = s->next)
4449 {
8ded5a0f 4450 if ((s->flags & SEC_LOAD) != 0
23e463ed 4451 && elf_section_type (s) == SHT_NOTE)
8ded5a0f 4452 {
23e463ed 4453 unsigned int alignment_power;
8ded5a0f
AM
4454 /* We need a PT_NOTE segment. */
4455 ++segs;
23e463ed
L
4456 /* Try to create just one PT_NOTE segment for all adjacent
4457 loadable SHT_NOTE sections. gABI requires that within a
4458 PT_NOTE segment (and also inside of each SHT_NOTE section)
4459 each note should have the same alignment. So we check
4460 whether the sections are correctly aligned. */
4461 alignment_power = s->alignment_power;
4462 while (s->next != NULL
4463 && s->next->alignment_power == alignment_power
4464 && (s->next->flags & SEC_LOAD) != 0
4465 && elf_section_type (s->next) == SHT_NOTE)
4466 s = s->next;
8ded5a0f
AM
4467 }
4468 }
4469
4470 for (s = abfd->sections; s != NULL; s = s->next)
4471 {
4472 if (s->flags & SEC_THREAD_LOCAL)
4473 {
4474 /* We need a PT_TLS segment. */
4475 ++segs;
4476 break;
4477 }
4478 }
4479
2b05f1b7 4480 bed = get_elf_backend_data (abfd);
a91e1603 4481
df3a023b
AM
4482 if ((abfd->flags & D_PAGED) != 0
4483 && (elf_tdata (abfd)->has_gnu_osabi & elf_gnu_osabi_mbind) != 0)
4484 {
4485 /* Add a PT_GNU_MBIND segment for each mbind section. */
4486 unsigned int page_align_power = bfd_log2 (bed->commonpagesize);
4487 for (s = abfd->sections; s != NULL; s = s->next)
4488 if (elf_section_flags (s) & SHF_GNU_MBIND)
4489 {
4490 if (elf_section_data (s)->this_hdr.sh_info > PT_GNU_MBIND_NUM)
4491 {
4492 _bfd_error_handler
4493 /* xgettext:c-format */
4494 (_("%pB: GNU_MBIND section `%pA' has invalid "
4495 "sh_info field: %d"),
4496 abfd, s, elf_section_data (s)->this_hdr.sh_info);
4497 continue;
4498 }
4499 /* Align mbind section to page size. */
4500 if (s->alignment_power < page_align_power)
4501 s->alignment_power = page_align_power;
4502 segs ++;
4503 }
4504 }
4505
4506 /* Let the backend count up any program headers it might need. */
4507 if (bed->elf_backend_additional_program_headers)
8ded5a0f
AM
4508 {
4509 int a;
4510
4511 a = (*bed->elf_backend_additional_program_headers) (abfd, info);
4512 if (a == -1)
4513 abort ();
4514 segs += a;
4515 }
4516
4517 return segs * bed->s->sizeof_phdr;
4518}
4519
2ea37f1c
NC
4520/* Find the segment that contains the output_section of section. */
4521
4522Elf_Internal_Phdr *
4523_bfd_elf_find_segment_containing_section (bfd * abfd, asection * section)
4524{
4525 struct elf_segment_map *m;
4526 Elf_Internal_Phdr *p;
4527
12bd6957 4528 for (m = elf_seg_map (abfd), p = elf_tdata (abfd)->phdr;
2ea37f1c
NC
4529 m != NULL;
4530 m = m->next, p++)
4531 {
4532 int i;
4533
4534 for (i = m->count - 1; i >= 0; i--)
4535 if (m->sections[i] == section)
4536 return p;
4537 }
4538
4539 return NULL;
4540}
4541
252b5132
RH
4542/* Create a mapping from a set of sections to a program segment. */
4543
217aa764
AM
4544static struct elf_segment_map *
4545make_mapping (bfd *abfd,
4546 asection **sections,
4547 unsigned int from,
4548 unsigned int to,
4549 bfd_boolean phdr)
252b5132
RH
4550{
4551 struct elf_segment_map *m;
4552 unsigned int i;
4553 asection **hdrpp;
dc810e39 4554 bfd_size_type amt;
252b5132 4555
00bee008
AM
4556 amt = sizeof (struct elf_segment_map) - sizeof (asection *);
4557 amt += (to - from) * sizeof (asection *);
a50b1753 4558 m = (struct elf_segment_map *) bfd_zalloc (abfd, amt);
252b5132
RH
4559 if (m == NULL)
4560 return NULL;
4561 m->next = NULL;
4562 m->p_type = PT_LOAD;
4563 for (i = from, hdrpp = sections + from; i < to; i++, hdrpp++)
4564 m->sections[i - from] = *hdrpp;
4565 m->count = to - from;
4566
4567 if (from == 0 && phdr)
4568 {
4569 /* Include the headers in the first PT_LOAD segment. */
4570 m->includes_filehdr = 1;
4571 m->includes_phdrs = 1;
4572 }
4573
4574 return m;
4575}
4576
229fcec5
MM
4577/* Create the PT_DYNAMIC segment, which includes DYNSEC. Returns NULL
4578 on failure. */
4579
4580struct elf_segment_map *
4581_bfd_elf_make_dynamic_segment (bfd *abfd, asection *dynsec)
4582{
4583 struct elf_segment_map *m;
4584
a50b1753 4585 m = (struct elf_segment_map *) bfd_zalloc (abfd,
07d6d2b8 4586 sizeof (struct elf_segment_map));
229fcec5
MM
4587 if (m == NULL)
4588 return NULL;
4589 m->next = NULL;
4590 m->p_type = PT_DYNAMIC;
4591 m->count = 1;
4592 m->sections[0] = dynsec;
08a40648 4593
229fcec5
MM
4594 return m;
4595}
4596
8ded5a0f 4597/* Possibly add or remove segments from the segment map. */
252b5132 4598
b34976b6 4599static bfd_boolean
3dea8fca
AM
4600elf_modify_segment_map (bfd *abfd,
4601 struct bfd_link_info *info,
4602 bfd_boolean remove_empty_load)
252b5132 4603{
252e386e 4604 struct elf_segment_map **m;
8ded5a0f 4605 const struct elf_backend_data *bed;
252b5132 4606
8ded5a0f
AM
4607 /* The placement algorithm assumes that non allocated sections are
4608 not in PT_LOAD segments. We ensure this here by removing such
4609 sections from the segment map. We also remove excluded
252e386e
AM
4610 sections. Finally, any PT_LOAD segment without sections is
4611 removed. */
12bd6957 4612 m = &elf_seg_map (abfd);
252e386e 4613 while (*m)
8ded5a0f
AM
4614 {
4615 unsigned int i, new_count;
252b5132 4616
252e386e 4617 for (new_count = 0, i = 0; i < (*m)->count; i++)
8ded5a0f 4618 {
252e386e
AM
4619 if (((*m)->sections[i]->flags & SEC_EXCLUDE) == 0
4620 && (((*m)->sections[i]->flags & SEC_ALLOC) != 0
4621 || (*m)->p_type != PT_LOAD))
8ded5a0f 4622 {
252e386e
AM
4623 (*m)->sections[new_count] = (*m)->sections[i];
4624 new_count++;
8ded5a0f
AM
4625 }
4626 }
252e386e 4627 (*m)->count = new_count;
252b5132 4628
1a9ccd70
NC
4629 if (remove_empty_load
4630 && (*m)->p_type == PT_LOAD
4631 && (*m)->count == 0
4632 && !(*m)->includes_phdrs)
252e386e
AM
4633 *m = (*m)->next;
4634 else
4635 m = &(*m)->next;
8ded5a0f 4636 }
252b5132 4637
8ded5a0f
AM
4638 bed = get_elf_backend_data (abfd);
4639 if (bed->elf_backend_modify_segment_map != NULL)
252b5132 4640 {
252e386e 4641 if (!(*bed->elf_backend_modify_segment_map) (abfd, info))
8ded5a0f 4642 return FALSE;
252b5132 4643 }
252b5132 4644
8ded5a0f
AM
4645 return TRUE;
4646}
252b5132 4647
dbc88fc1
AM
4648#define IS_TBSS(s) \
4649 ((s->flags & (SEC_THREAD_LOCAL | SEC_LOAD)) == SEC_THREAD_LOCAL)
4650
8ded5a0f 4651/* Set up a mapping from BFD sections to program segments. */
252b5132 4652
8ded5a0f
AM
4653bfd_boolean
4654_bfd_elf_map_sections_to_segments (bfd *abfd, struct bfd_link_info *info)
4655{
4656 unsigned int count;
4657 struct elf_segment_map *m;
4658 asection **sections = NULL;
4659 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
3dea8fca 4660 bfd_boolean no_user_phdrs;
252b5132 4661
12bd6957 4662 no_user_phdrs = elf_seg_map (abfd) == NULL;
d324f6d6
RM
4663
4664 if (info != NULL)
4665 info->user_phdrs = !no_user_phdrs;
4666
3dea8fca 4667 if (no_user_phdrs && bfd_count_sections (abfd) != 0)
252b5132 4668 {
8ded5a0f
AM
4669 asection *s;
4670 unsigned int i;
4671 struct elf_segment_map *mfirst;
4672 struct elf_segment_map **pm;
4673 asection *last_hdr;
4674 bfd_vma last_size;
00bee008 4675 unsigned int hdr_index;
8ded5a0f
AM
4676 bfd_vma maxpagesize;
4677 asection **hdrpp;
64029e93 4678 bfd_boolean phdr_in_segment;
8ded5a0f 4679 bfd_boolean writable;
2888249f 4680 bfd_boolean executable;
8ded5a0f
AM
4681 int tls_count = 0;
4682 asection *first_tls = NULL;
a91e1603 4683 asection *first_mbind = NULL;
8ded5a0f
AM
4684 asection *dynsec, *eh_frame_hdr;
4685 bfd_size_type amt;
8d06853e 4686 bfd_vma addr_mask, wrap_to = 0;
64029e93 4687 bfd_size_type phdr_size;
252b5132 4688
8ded5a0f 4689 /* Select the allocated sections, and sort them. */
252b5132 4690
a50b1753 4691 sections = (asection **) bfd_malloc2 (bfd_count_sections (abfd),
07d6d2b8 4692 sizeof (asection *));
8ded5a0f 4693 if (sections == NULL)
252b5132 4694 goto error_return;
252b5132 4695
8d06853e
AM
4696 /* Calculate top address, avoiding undefined behaviour of shift
4697 left operator when shift count is equal to size of type
4698 being shifted. */
4699 addr_mask = ((bfd_vma) 1 << (bfd_arch_bits_per_address (abfd) - 1)) - 1;
4700 addr_mask = (addr_mask << 1) + 1;
4701
8ded5a0f
AM
4702 i = 0;
4703 for (s = abfd->sections; s != NULL; s = s->next)
4704 {
4705 if ((s->flags & SEC_ALLOC) != 0)
4706 {
48db3297
AM
4707 /* target_index is unused until bfd_elf_final_link
4708 starts output of section symbols. Use it to make
4709 qsort stable. */
4710 s->target_index = i;
8ded5a0f
AM
4711 sections[i] = s;
4712 ++i;
8d06853e
AM
4713 /* A wrapping section potentially clashes with header. */
4714 if (((s->lma + s->size) & addr_mask) < (s->lma & addr_mask))
4715 wrap_to = (s->lma + s->size) & addr_mask;
8ded5a0f
AM
4716 }
4717 }
4718 BFD_ASSERT (i <= bfd_count_sections (abfd));
4719 count = i;
252b5132 4720
8ded5a0f 4721 qsort (sections, (size_t) count, sizeof (asection *), elf_sort_sections);
252b5132 4722
64029e93
AM
4723 phdr_size = elf_program_header_size (abfd);
4724 if (phdr_size == (bfd_size_type) -1)
4725 phdr_size = get_program_header_size (abfd, info);
4726 phdr_size += bed->s->sizeof_ehdr;
4727 maxpagesize = bed->maxpagesize;
4728 if (maxpagesize == 0)
4729 maxpagesize = 1;
4730 phdr_in_segment = info != NULL && info->load_phdrs;
4731 if (count != 0
4732 && (((sections[0]->lma & addr_mask) & (maxpagesize - 1))
4733 >= (phdr_size & (maxpagesize - 1))))
4734 /* For compatibility with old scripts that may not be using
4735 SIZEOF_HEADERS, add headers when it looks like space has
4736 been left for them. */
4737 phdr_in_segment = TRUE;
252b5132 4738
64029e93 4739 /* Build the mapping. */
8ded5a0f
AM
4740 mfirst = NULL;
4741 pm = &mfirst;
252b5132 4742
8ded5a0f
AM
4743 /* If we have a .interp section, then create a PT_PHDR segment for
4744 the program headers and a PT_INTERP segment for the .interp
4745 section. */
4746 s = bfd_get_section_by_name (abfd, ".interp");
1b9e270b 4747 if (s != NULL && (s->flags & SEC_LOAD) != 0 && s->size != 0)
8ded5a0f
AM
4748 {
4749 amt = sizeof (struct elf_segment_map);
a50b1753 4750 m = (struct elf_segment_map *) bfd_zalloc (abfd, amt);
8ded5a0f
AM
4751 if (m == NULL)
4752 goto error_return;
4753 m->next = NULL;
4754 m->p_type = PT_PHDR;
f882209d 4755 m->p_flags = PF_R;
8ded5a0f
AM
4756 m->p_flags_valid = 1;
4757 m->includes_phdrs = 1;
64029e93 4758 phdr_in_segment = TRUE;
8ded5a0f
AM
4759 *pm = m;
4760 pm = &m->next;
252b5132 4761
8ded5a0f 4762 amt = sizeof (struct elf_segment_map);
a50b1753 4763 m = (struct elf_segment_map *) bfd_zalloc (abfd, amt);
8ded5a0f
AM
4764 if (m == NULL)
4765 goto error_return;
4766 m->next = NULL;
4767 m->p_type = PT_INTERP;
4768 m->count = 1;
4769 m->sections[0] = s;
4770
4771 *pm = m;
4772 pm = &m->next;
252b5132 4773 }
8ded5a0f
AM
4774
4775 /* Look through the sections. We put sections in the same program
4776 segment when the start of the second section can be placed within
4777 a few bytes of the end of the first section. */
4778 last_hdr = NULL;
4779 last_size = 0;
00bee008 4780 hdr_index = 0;
8ded5a0f 4781 writable = FALSE;
2888249f 4782 executable = FALSE;
8ded5a0f
AM
4783 dynsec = bfd_get_section_by_name (abfd, ".dynamic");
4784 if (dynsec != NULL
4785 && (dynsec->flags & SEC_LOAD) == 0)
4786 dynsec = NULL;
4787
64029e93
AM
4788 if ((abfd->flags & D_PAGED) == 0)
4789 phdr_in_segment = FALSE;
4790
8ded5a0f
AM
4791 /* Deal with -Ttext or something similar such that the first section
4792 is not adjacent to the program headers. This is an
4793 approximation, since at this point we don't know exactly how many
4794 program headers we will need. */
64029e93 4795 if (phdr_in_segment && count > 0)
252b5132 4796 {
64029e93
AM
4797 bfd_vma phdr_lma;
4798 bfd_boolean separate_phdr = FALSE;
4799
4800 phdr_lma = (sections[0]->lma - phdr_size) & addr_mask & -maxpagesize;
4801 if (info != NULL
4802 && info->separate_code
4803 && (sections[0]->flags & SEC_CODE) != 0)
1a9ccd70 4804 {
64029e93
AM
4805 /* If data sections should be separate from code and
4806 thus not executable, and the first section is
4807 executable then put the file and program headers in
4808 their own PT_LOAD. */
4809 separate_phdr = TRUE;
4810 if ((((phdr_lma + phdr_size - 1) & addr_mask & -maxpagesize)
4811 == (sections[0]->lma & addr_mask & -maxpagesize)))
4812 {
4813 /* The file and program headers are currently on the
4814 same page as the first section. Put them on the
4815 previous page if we can. */
4816 if (phdr_lma >= maxpagesize)
4817 phdr_lma -= maxpagesize;
4818 else
4819 separate_phdr = FALSE;
4820 }
4821 }
4822 if ((sections[0]->lma & addr_mask) < phdr_lma
4823 || (sections[0]->lma & addr_mask) < phdr_size)
4824 /* If file and program headers would be placed at the end
4825 of memory then it's probably better to omit them. */
4826 phdr_in_segment = FALSE;
4827 else if (phdr_lma < wrap_to)
4828 /* If a section wraps around to where we'll be placing
4829 file and program headers, then the headers will be
4830 overwritten. */
4831 phdr_in_segment = FALSE;
4832 else if (separate_phdr)
4833 {
4834 m = make_mapping (abfd, sections, 0, 0, phdr_in_segment);
4835 if (m == NULL)
4836 goto error_return;
4837 m->p_paddr = phdr_lma;
4838 m->p_vaddr_offset
4839 = (sections[0]->vma - phdr_size) & addr_mask & -maxpagesize;
4840 m->p_paddr_valid = 1;
4841 *pm = m;
4842 pm = &m->next;
4843 phdr_in_segment = FALSE;
1a9ccd70 4844 }
252b5132
RH
4845 }
4846
8ded5a0f 4847 for (i = 0, hdrpp = sections; i < count; i++, hdrpp++)
252b5132 4848 {
8ded5a0f
AM
4849 asection *hdr;
4850 bfd_boolean new_segment;
4851
4852 hdr = *hdrpp;
4853
4854 /* See if this section and the last one will fit in the same
4855 segment. */
4856
4857 if (last_hdr == NULL)
4858 {
4859 /* If we don't have a segment yet, then we don't need a new
4860 one (we build the last one after this loop). */
4861 new_segment = FALSE;
4862 }
4863 else if (last_hdr->lma - last_hdr->vma != hdr->lma - hdr->vma)
4864 {
4865 /* If this section has a different relation between the
4866 virtual address and the load address, then we need a new
4867 segment. */
4868 new_segment = TRUE;
4869 }
b5599592
AM
4870 else if (hdr->lma < last_hdr->lma + last_size
4871 || last_hdr->lma + last_size < last_hdr->lma)
4872 {
4873 /* If this section has a load address that makes it overlap
4874 the previous section, then we need a new segment. */
4875 new_segment = TRUE;
4876 }
76cb3a89
AM
4877 else if ((abfd->flags & D_PAGED) != 0
4878 && (((last_hdr->lma + last_size - 1) & -maxpagesize)
4879 == (hdr->lma & -maxpagesize)))
4880 {
4881 /* If we are demand paged then we can't map two disk
4882 pages onto the same memory page. */
4883 new_segment = FALSE;
4884 }
39948a60
NC
4885 /* In the next test we have to be careful when last_hdr->lma is close
4886 to the end of the address space. If the aligned address wraps
4887 around to the start of the address space, then there are no more
4888 pages left in memory and it is OK to assume that the current
4889 section can be included in the current segment. */
76cb3a89
AM
4890 else if ((BFD_ALIGN (last_hdr->lma + last_size, maxpagesize)
4891 + maxpagesize > last_hdr->lma)
4892 && (BFD_ALIGN (last_hdr->lma + last_size, maxpagesize)
4893 + maxpagesize <= hdr->lma))
8ded5a0f
AM
4894 {
4895 /* If putting this section in this segment would force us to
4896 skip a page in the segment, then we need a new segment. */
4897 new_segment = TRUE;
4898 }
4899 else if ((last_hdr->flags & (SEC_LOAD | SEC_THREAD_LOCAL)) == 0
76cb3a89 4900 && (hdr->flags & (SEC_LOAD | SEC_THREAD_LOCAL)) != 0)
8ded5a0f 4901 {
e5654c0f
AM
4902 /* We don't want to put a loaded section after a
4903 nonloaded (ie. bss style) section in the same segment
4904 as that will force the non-loaded section to be loaded.
76cb3a89 4905 Consider .tbss sections as loaded for this purpose. */
8ded5a0f
AM
4906 new_segment = TRUE;
4907 }
4908 else if ((abfd->flags & D_PAGED) == 0)
4909 {
4910 /* If the file is not demand paged, which means that we
4911 don't require the sections to be correctly aligned in the
4912 file, then there is no other reason for a new segment. */
4913 new_segment = FALSE;
4914 }
2888249f
L
4915 else if (info != NULL
4916 && info->separate_code
4917 && executable != ((hdr->flags & SEC_CODE) != 0))
4918 {
4919 new_segment = TRUE;
4920 }
8ded5a0f 4921 else if (! writable
76cb3a89 4922 && (hdr->flags & SEC_READONLY) == 0)
8ded5a0f
AM
4923 {
4924 /* We don't want to put a writable section in a read only
76cb3a89 4925 segment. */
8ded5a0f
AM
4926 new_segment = TRUE;
4927 }
4928 else
4929 {
4930 /* Otherwise, we can use the same segment. */
4931 new_segment = FALSE;
4932 }
4933
2889e75b 4934 /* Allow interested parties a chance to override our decision. */
ceae84aa
AM
4935 if (last_hdr != NULL
4936 && info != NULL
4937 && info->callbacks->override_segment_assignment != NULL)
4938 new_segment
4939 = info->callbacks->override_segment_assignment (info, abfd, hdr,
4940 last_hdr,
4941 new_segment);
2889e75b 4942
8ded5a0f
AM
4943 if (! new_segment)
4944 {
4945 if ((hdr->flags & SEC_READONLY) == 0)
4946 writable = TRUE;
2888249f
L
4947 if ((hdr->flags & SEC_CODE) != 0)
4948 executable = TRUE;
8ded5a0f
AM
4949 last_hdr = hdr;
4950 /* .tbss sections effectively have zero size. */
dbc88fc1 4951 last_size = !IS_TBSS (hdr) ? hdr->size : 0;
8ded5a0f
AM
4952 continue;
4953 }
4954
4955 /* We need a new program segment. We must create a new program
00bee008 4956 header holding all the sections from hdr_index until hdr. */
8ded5a0f 4957
00bee008 4958 m = make_mapping (abfd, sections, hdr_index, i, phdr_in_segment);
8ded5a0f
AM
4959 if (m == NULL)
4960 goto error_return;
4961
4962 *pm = m;
4963 pm = &m->next;
4964
252b5132 4965 if ((hdr->flags & SEC_READONLY) == 0)
b34976b6 4966 writable = TRUE;
8ded5a0f
AM
4967 else
4968 writable = FALSE;
4969
2888249f
L
4970 if ((hdr->flags & SEC_CODE) == 0)
4971 executable = FALSE;
4972 else
4973 executable = TRUE;
4974
baaff79e
JJ
4975 last_hdr = hdr;
4976 /* .tbss sections effectively have zero size. */
dbc88fc1 4977 last_size = !IS_TBSS (hdr) ? hdr->size : 0;
00bee008 4978 hdr_index = i;
8ded5a0f 4979 phdr_in_segment = FALSE;
252b5132
RH
4980 }
4981
86b2281f
AM
4982 /* Create a final PT_LOAD program segment, but not if it's just
4983 for .tbss. */
4984 if (last_hdr != NULL
00bee008 4985 && (i - hdr_index != 1
dbc88fc1 4986 || !IS_TBSS (last_hdr)))
8ded5a0f 4987 {
00bee008 4988 m = make_mapping (abfd, sections, hdr_index, i, phdr_in_segment);
8ded5a0f
AM
4989 if (m == NULL)
4990 goto error_return;
252b5132 4991
8ded5a0f
AM
4992 *pm = m;
4993 pm = &m->next;
4994 }
252b5132 4995
8ded5a0f
AM
4996 /* If there is a .dynamic section, throw in a PT_DYNAMIC segment. */
4997 if (dynsec != NULL)
4998 {
4999 m = _bfd_elf_make_dynamic_segment (abfd, dynsec);
5000 if (m == NULL)
5001 goto error_return;
5002 *pm = m;
5003 pm = &m->next;
5004 }
252b5132 5005
23e463ed 5006 /* For each batch of consecutive loadable SHT_NOTE sections,
1c5265b5
JJ
5007 add a PT_NOTE segment. We don't use bfd_get_section_by_name,
5008 because if we link together nonloadable .note sections and
5009 loadable .note sections, we will generate two .note sections
23e463ed 5010 in the output file. */
8ded5a0f
AM
5011 for (s = abfd->sections; s != NULL; s = s->next)
5012 {
5013 if ((s->flags & SEC_LOAD) != 0
23e463ed 5014 && elf_section_type (s) == SHT_NOTE)
8ded5a0f 5015 {
1c5265b5 5016 asection *s2;
23e463ed 5017 unsigned int alignment_power = s->alignment_power;
91d6fa6a
NC
5018
5019 count = 1;
23e463ed
L
5020 for (s2 = s; s2->next != NULL; s2 = s2->next)
5021 {
5022 if (s2->next->alignment_power == alignment_power
5023 && (s2->next->flags & SEC_LOAD) != 0
5024 && elf_section_type (s2->next) == SHT_NOTE
5025 && align_power (s2->lma + s2->size,
5026 alignment_power)
5027 == s2->next->lma)
5028 count++;
5029 else
5030 break;
5031 }
00bee008
AM
5032 amt = sizeof (struct elf_segment_map) - sizeof (asection *);
5033 amt += count * sizeof (asection *);
a50b1753 5034 m = (struct elf_segment_map *) bfd_zalloc (abfd, amt);
8ded5a0f
AM
5035 if (m == NULL)
5036 goto error_return;
5037 m->next = NULL;
5038 m->p_type = PT_NOTE;
1c5265b5
JJ
5039 m->count = count;
5040 while (count > 1)
5041 {
5042 m->sections[m->count - count--] = s;
5043 BFD_ASSERT ((s->flags & SEC_THREAD_LOCAL) == 0);
5044 s = s->next;
5045 }
5046 m->sections[m->count - 1] = s;
5047 BFD_ASSERT ((s->flags & SEC_THREAD_LOCAL) == 0);
8ded5a0f
AM
5048 *pm = m;
5049 pm = &m->next;
5050 }
5051 if (s->flags & SEC_THREAD_LOCAL)
5052 {
5053 if (! tls_count)
5054 first_tls = s;
5055 tls_count++;
5056 }
a91e1603
L
5057 if (first_mbind == NULL
5058 && (elf_section_flags (s) & SHF_GNU_MBIND) != 0)
5059 first_mbind = s;
8ded5a0f 5060 }
252b5132 5061
8ded5a0f
AM
5062 /* If there are any SHF_TLS output sections, add PT_TLS segment. */
5063 if (tls_count > 0)
5064 {
00bee008
AM
5065 amt = sizeof (struct elf_segment_map) - sizeof (asection *);
5066 amt += tls_count * sizeof (asection *);
a50b1753 5067 m = (struct elf_segment_map *) bfd_zalloc (abfd, amt);
8ded5a0f
AM
5068 if (m == NULL)
5069 goto error_return;
5070 m->next = NULL;
5071 m->p_type = PT_TLS;
5072 m->count = tls_count;
5073 /* Mandated PF_R. */
5074 m->p_flags = PF_R;
5075 m->p_flags_valid = 1;
d923cae0 5076 s = first_tls;
91d6fa6a 5077 for (i = 0; i < (unsigned int) tls_count; ++i)
8ded5a0f 5078 {
d923cae0
L
5079 if ((s->flags & SEC_THREAD_LOCAL) == 0)
5080 {
5081 _bfd_error_handler
871b3ab2 5082 (_("%pB: TLS sections are not adjacent:"), abfd);
d923cae0
L
5083 s = first_tls;
5084 i = 0;
5085 while (i < (unsigned int) tls_count)
5086 {
5087 if ((s->flags & SEC_THREAD_LOCAL) != 0)
5088 {
871b3ab2 5089 _bfd_error_handler (_(" TLS: %pA"), s);
d923cae0
L
5090 i++;
5091 }
5092 else
871b3ab2 5093 _bfd_error_handler (_(" non-TLS: %pA"), s);
d923cae0
L
5094 s = s->next;
5095 }
5096 bfd_set_error (bfd_error_bad_value);
5097 goto error_return;
5098 }
5099 m->sections[i] = s;
5100 s = s->next;
8ded5a0f 5101 }
252b5132 5102
8ded5a0f
AM
5103 *pm = m;
5104 pm = &m->next;
5105 }
252b5132 5106
df3a023b
AM
5107 if (first_mbind
5108 && (abfd->flags & D_PAGED) != 0
5109 && (elf_tdata (abfd)->has_gnu_osabi & elf_gnu_osabi_mbind) != 0)
a91e1603
L
5110 for (s = first_mbind; s != NULL; s = s->next)
5111 if ((elf_section_flags (s) & SHF_GNU_MBIND) != 0
df3a023b 5112 && elf_section_data (s)->this_hdr.sh_info <= PT_GNU_MBIND_NUM)
a91e1603
L
5113 {
5114 /* Mandated PF_R. */
5115 unsigned long p_flags = PF_R;
5116 if ((s->flags & SEC_READONLY) == 0)
5117 p_flags |= PF_W;
5118 if ((s->flags & SEC_CODE) != 0)
5119 p_flags |= PF_X;
5120
5121 amt = sizeof (struct elf_segment_map) + sizeof (asection *);
5122 m = bfd_zalloc (abfd, amt);
5123 if (m == NULL)
5124 goto error_return;
5125 m->next = NULL;
5126 m->p_type = (PT_GNU_MBIND_LO
5127 + elf_section_data (s)->this_hdr.sh_info);
5128 m->count = 1;
5129 m->p_flags_valid = 1;
5130 m->sections[0] = s;
5131 m->p_flags = p_flags;
5132
5133 *pm = m;
5134 pm = &m->next;
5135 }
5136
0a59decb
L
5137 s = bfd_get_section_by_name (abfd,
5138 NOTE_GNU_PROPERTY_SECTION_NAME);
5139 if (s != NULL && s->size != 0)
5140 {
5141 amt = sizeof (struct elf_segment_map) + sizeof (asection *);
5142 m = bfd_zalloc (abfd, amt);
5143 if (m == NULL)
5144 goto error_return;
5145 m->next = NULL;
5146 m->p_type = PT_GNU_PROPERTY;
5147 m->count = 1;
5148 m->p_flags_valid = 1;
5149 m->sections[0] = s;
5150 m->p_flags = PF_R;
5151 *pm = m;
5152 pm = &m->next;
5153 }
5154
8ded5a0f
AM
5155 /* If there is a .eh_frame_hdr section, throw in a PT_GNU_EH_FRAME
5156 segment. */
12bd6957 5157 eh_frame_hdr = elf_eh_frame_hdr (abfd);
8ded5a0f
AM
5158 if (eh_frame_hdr != NULL
5159 && (eh_frame_hdr->output_section->flags & SEC_LOAD) != 0)
252b5132 5160 {
dc810e39 5161 amt = sizeof (struct elf_segment_map);
a50b1753 5162 m = (struct elf_segment_map *) bfd_zalloc (abfd, amt);
252b5132
RH
5163 if (m == NULL)
5164 goto error_return;
5165 m->next = NULL;
8ded5a0f 5166 m->p_type = PT_GNU_EH_FRAME;
252b5132 5167 m->count = 1;
8ded5a0f 5168 m->sections[0] = eh_frame_hdr->output_section;
252b5132
RH
5169
5170 *pm = m;
5171 pm = &m->next;
5172 }
13ae64f3 5173
12bd6957 5174 if (elf_stack_flags (abfd))
13ae64f3 5175 {
8ded5a0f 5176 amt = sizeof (struct elf_segment_map);
a50b1753 5177 m = (struct elf_segment_map *) bfd_zalloc (abfd, amt);
8ded5a0f
AM
5178 if (m == NULL)
5179 goto error_return;
5180 m->next = NULL;
2b05f1b7 5181 m->p_type = PT_GNU_STACK;
12bd6957 5182 m->p_flags = elf_stack_flags (abfd);
04c3a755 5183 m->p_align = bed->stack_align;
8ded5a0f 5184 m->p_flags_valid = 1;
04c3a755
NS
5185 m->p_align_valid = m->p_align != 0;
5186 if (info->stacksize > 0)
5187 {
5188 m->p_size = info->stacksize;
5189 m->p_size_valid = 1;
5190 }
252b5132 5191
8ded5a0f
AM
5192 *pm = m;
5193 pm = &m->next;
5194 }
65765700 5195
ceae84aa 5196 if (info != NULL && info->relro)
8ded5a0f 5197 {
f210dcff
L
5198 for (m = mfirst; m != NULL; m = m->next)
5199 {
3832a4d8
AM
5200 if (m->p_type == PT_LOAD
5201 && m->count != 0
5202 && m->sections[0]->vma >= info->relro_start
5203 && m->sections[0]->vma < info->relro_end)
f210dcff 5204 {
3832a4d8
AM
5205 i = m->count;
5206 while (--i != (unsigned) -1)
5207 if ((m->sections[i]->flags & (SEC_LOAD | SEC_HAS_CONTENTS))
5208 == (SEC_LOAD | SEC_HAS_CONTENTS))
5209 break;
5210
43a8475c 5211 if (i != (unsigned) -1)
f210dcff
L
5212 break;
5213 }
be01b344 5214 }
f210dcff
L
5215
5216 /* Make a PT_GNU_RELRO segment only when it isn't empty. */
5217 if (m != NULL)
5218 {
5219 amt = sizeof (struct elf_segment_map);
a50b1753 5220 m = (struct elf_segment_map *) bfd_zalloc (abfd, amt);
f210dcff
L
5221 if (m == NULL)
5222 goto error_return;
5223 m->next = NULL;
5224 m->p_type = PT_GNU_RELRO;
f210dcff
L
5225 *pm = m;
5226 pm = &m->next;
5227 }
8ded5a0f 5228 }
9ee5e499 5229
8ded5a0f 5230 free (sections);
12bd6957 5231 elf_seg_map (abfd) = mfirst;
9ee5e499
JJ
5232 }
5233
3dea8fca 5234 if (!elf_modify_segment_map (abfd, info, no_user_phdrs))
8ded5a0f 5235 return FALSE;
8c37241b 5236
12bd6957 5237 for (count = 0, m = elf_seg_map (abfd); m != NULL; m = m->next)
8ded5a0f 5238 ++count;
12bd6957 5239 elf_program_header_size (abfd) = count * bed->s->sizeof_phdr;
252b5132 5240
b34976b6 5241 return TRUE;
252b5132
RH
5242
5243 error_return:
5244 if (sections != NULL)
5245 free (sections);
b34976b6 5246 return FALSE;
252b5132
RH
5247}
5248
5249/* Sort sections by address. */
5250
5251static int
217aa764 5252elf_sort_sections (const void *arg1, const void *arg2)
252b5132
RH
5253{
5254 const asection *sec1 = *(const asection **) arg1;
5255 const asection *sec2 = *(const asection **) arg2;
eecdbe52 5256 bfd_size_type size1, size2;
252b5132
RH
5257
5258 /* Sort by LMA first, since this is the address used to
5259 place the section into a segment. */
5260 if (sec1->lma < sec2->lma)
5261 return -1;
5262 else if (sec1->lma > sec2->lma)
5263 return 1;
5264
5265 /* Then sort by VMA. Normally the LMA and the VMA will be
5266 the same, and this will do nothing. */
5267 if (sec1->vma < sec2->vma)
5268 return -1;
5269 else if (sec1->vma > sec2->vma)
5270 return 1;
5271
5272 /* Put !SEC_LOAD sections after SEC_LOAD ones. */
5273
07c6e936 5274#define TOEND(x) (((x)->flags & (SEC_LOAD | SEC_THREAD_LOCAL)) == 0)
252b5132
RH
5275
5276 if (TOEND (sec1))
5277 {
48db3297 5278 if (!TOEND (sec2))
252b5132
RH
5279 return 1;
5280 }
00a7cdc5 5281 else if (TOEND (sec2))
252b5132
RH
5282 return -1;
5283
5284#undef TOEND
5285
00a7cdc5
NC
5286 /* Sort by size, to put zero sized sections
5287 before others at the same address. */
252b5132 5288
eea6121a
AM
5289 size1 = (sec1->flags & SEC_LOAD) ? sec1->size : 0;
5290 size2 = (sec2->flags & SEC_LOAD) ? sec2->size : 0;
eecdbe52
JJ
5291
5292 if (size1 < size2)
252b5132 5293 return -1;
eecdbe52 5294 if (size1 > size2)
252b5132
RH
5295 return 1;
5296
5297 return sec1->target_index - sec2->target_index;
5298}
5299
30fe1832
AM
5300/* This qsort comparison functions sorts PT_LOAD segments first and
5301 by p_paddr, for assign_file_positions_for_load_sections. */
5302
5303static int
5304elf_sort_segments (const void *arg1, const void *arg2)
5305{
5306 const struct elf_segment_map *m1 = *(const struct elf_segment_map **) arg1;
5307 const struct elf_segment_map *m2 = *(const struct elf_segment_map **) arg2;
5308
5309 if (m1->p_type != m2->p_type)
5310 {
5311 if (m1->p_type == PT_NULL)
5312 return 1;
5313 if (m2->p_type == PT_NULL)
5314 return -1;
5315 return m1->p_type < m2->p_type ? -1 : 1;
5316 }
5317 if (m1->includes_filehdr != m2->includes_filehdr)
5318 return m1->includes_filehdr ? -1 : 1;
5319 if (m1->no_sort_lma != m2->no_sort_lma)
5320 return m1->no_sort_lma ? -1 : 1;
5321 if (m1->p_type == PT_LOAD && !m1->no_sort_lma)
5322 {
5323 bfd_vma lma1, lma2;
5324 lma1 = 0;
5325 if (m1->p_paddr_valid)
5326 lma1 = m1->p_paddr;
5327 else if (m1->count != 0)
5328 lma1 = m1->sections[0]->lma + m1->p_vaddr_offset;
5329 lma2 = 0;
5330 if (m2->p_paddr_valid)
5331 lma2 = m2->p_paddr;
5332 else if (m2->count != 0)
5333 lma2 = m2->sections[0]->lma + m2->p_vaddr_offset;
5334 if (lma1 != lma2)
5335 return lma1 < lma2 ? -1 : 1;
5336 }
5337 if (m1->idx != m2->idx)
5338 return m1->idx < m2->idx ? -1 : 1;
5339 return 0;
5340}
5341
340b6d91
AC
5342/* Ian Lance Taylor writes:
5343
5344 We shouldn't be using % with a negative signed number. That's just
5345 not good. We have to make sure either that the number is not
5346 negative, or that the number has an unsigned type. When the types
5347 are all the same size they wind up as unsigned. When file_ptr is a
5348 larger signed type, the arithmetic winds up as signed long long,
5349 which is wrong.
5350
5351 What we're trying to say here is something like ``increase OFF by
5352 the least amount that will cause it to be equal to the VMA modulo
5353 the page size.'' */
5354/* In other words, something like:
5355
5356 vma_offset = m->sections[0]->vma % bed->maxpagesize;
5357 off_offset = off % bed->maxpagesize;
5358 if (vma_offset < off_offset)
5359 adjustment = vma_offset + bed->maxpagesize - off_offset;
5360 else
5361 adjustment = vma_offset - off_offset;
08a40648 5362
de194d85 5363 which can be collapsed into the expression below. */
340b6d91
AC
5364
5365static file_ptr
5366vma_page_aligned_bias (bfd_vma vma, ufile_ptr off, bfd_vma maxpagesize)
5367{
dc9155b2
NC
5368 /* PR binutils/16199: Handle an alignment of zero. */
5369 if (maxpagesize == 0)
5370 maxpagesize = 1;
340b6d91
AC
5371 return ((vma - off) % maxpagesize);
5372}
5373
6d33f217
L
5374static void
5375print_segment_map (const struct elf_segment_map *m)
5376{
5377 unsigned int j;
5378 const char *pt = get_segment_type (m->p_type);
5379 char buf[32];
5380
5381 if (pt == NULL)
5382 {
5383 if (m->p_type >= PT_LOPROC && m->p_type <= PT_HIPROC)
5384 sprintf (buf, "LOPROC+%7.7x",
5385 (unsigned int) (m->p_type - PT_LOPROC));
5386 else if (m->p_type >= PT_LOOS && m->p_type <= PT_HIOS)
5387 sprintf (buf, "LOOS+%7.7x",
5388 (unsigned int) (m->p_type - PT_LOOS));
5389 else
5390 snprintf (buf, sizeof (buf), "%8.8x",
5391 (unsigned int) m->p_type);
5392 pt = buf;
5393 }
4a97a0e5 5394 fflush (stdout);
6d33f217
L
5395 fprintf (stderr, "%s:", pt);
5396 for (j = 0; j < m->count; j++)
5397 fprintf (stderr, " %s", m->sections [j]->name);
5398 putc ('\n',stderr);
4a97a0e5 5399 fflush (stderr);
6d33f217
L
5400}
5401
32812159
AM
5402static bfd_boolean
5403write_zeros (bfd *abfd, file_ptr pos, bfd_size_type len)
5404{
5405 void *buf;
5406 bfd_boolean ret;
5407
5408 if (bfd_seek (abfd, pos, SEEK_SET) != 0)
5409 return FALSE;
5410 buf = bfd_zmalloc (len);
5411 if (buf == NULL)
5412 return FALSE;
5413 ret = bfd_bwrite (buf, len, abfd) == len;
5414 free (buf);
5415 return ret;
5416}
5417
252b5132
RH
5418/* Assign file positions to the sections based on the mapping from
5419 sections to segments. This function also sets up some fields in
f3520d2f 5420 the file header. */
252b5132 5421
b34976b6 5422static bfd_boolean
f3520d2f
AM
5423assign_file_positions_for_load_sections (bfd *abfd,
5424 struct bfd_link_info *link_info)
252b5132
RH
5425{
5426 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
252b5132 5427 struct elf_segment_map *m;
30fe1832 5428 struct elf_segment_map *phdr_load_seg;
252b5132 5429 Elf_Internal_Phdr *phdrs;
252b5132 5430 Elf_Internal_Phdr *p;
02bf8d82 5431 file_ptr off;
3f570048 5432 bfd_size_type maxpagesize;
30fe1832 5433 unsigned int alloc, actual;
0920dee7 5434 unsigned int i, j;
30fe1832 5435 struct elf_segment_map **sorted_seg_map;
252b5132 5436
e36284ab 5437 if (link_info == NULL
ceae84aa 5438 && !_bfd_elf_map_sections_to_segments (abfd, link_info))
8ded5a0f 5439 return FALSE;
252b5132 5440
8ded5a0f 5441 alloc = 0;
12bd6957 5442 for (m = elf_seg_map (abfd); m != NULL; m = m->next)
30fe1832 5443 m->idx = alloc++;
252b5132 5444
82f2dbf7
NC
5445 if (alloc)
5446 {
5447 elf_elfheader (abfd)->e_phoff = bed->s->sizeof_ehdr;
5448 elf_elfheader (abfd)->e_phentsize = bed->s->sizeof_phdr;
5449 }
5450 else
5451 {
5452 /* PR binutils/12467. */
5453 elf_elfheader (abfd)->e_phoff = 0;
5454 elf_elfheader (abfd)->e_phentsize = 0;
5455 }
d324f6d6 5456
8ded5a0f 5457 elf_elfheader (abfd)->e_phnum = alloc;
252b5132 5458
12bd6957 5459 if (elf_program_header_size (abfd) == (bfd_size_type) -1)
30fe1832
AM
5460 {
5461 actual = alloc;
5462 elf_program_header_size (abfd) = alloc * bed->s->sizeof_phdr;
5463 }
8ded5a0f 5464 else
30fe1832
AM
5465 {
5466 actual = elf_program_header_size (abfd) / bed->s->sizeof_phdr;
5467 BFD_ASSERT (elf_program_header_size (abfd)
5468 == actual * bed->s->sizeof_phdr);
5469 BFD_ASSERT (actual >= alloc);
5470 }
252b5132
RH
5471
5472 if (alloc == 0)
f3520d2f 5473 {
12bd6957 5474 elf_next_file_pos (abfd) = bed->s->sizeof_ehdr;
8ded5a0f 5475 return TRUE;
f3520d2f 5476 }
252b5132 5477
12bd6957 5478 /* We're writing the size in elf_program_header_size (abfd),
57268894
HPN
5479 see assign_file_positions_except_relocs, so make sure we have
5480 that amount allocated, with trailing space cleared.
12bd6957
AM
5481 The variable alloc contains the computed need, while
5482 elf_program_header_size (abfd) contains the size used for the
57268894
HPN
5483 layout.
5484 See ld/emultempl/elf-generic.em:gld${EMULATION_NAME}_map_segments
5485 where the layout is forced to according to a larger size in the
5486 last iterations for the testcase ld-elf/header. */
30fe1832
AM
5487 phdrs = bfd_zalloc (abfd, (actual * sizeof (*phdrs)
5488 + alloc * sizeof (*sorted_seg_map)));
5489 sorted_seg_map = (struct elf_segment_map **) (phdrs + actual);
f3520d2f 5490 elf_tdata (abfd)->phdr = phdrs;
252b5132 5491 if (phdrs == NULL)
b34976b6 5492 return FALSE;
252b5132 5493
30fe1832 5494 for (m = elf_seg_map (abfd), j = 0; m != NULL; m = m->next, j++)
252b5132 5495 {
30fe1832 5496 sorted_seg_map[j] = m;
252b5132 5497 /* If elf_segment_map is not from map_sections_to_segments, the
08a40648 5498 sections may not be correctly ordered. NOTE: sorting should
52e9b619
MS
5499 not be done to the PT_NOTE section of a corefile, which may
5500 contain several pseudo-sections artificially created by bfd.
5501 Sorting these pseudo-sections breaks things badly. */
47d9a591
AM
5502 if (m->count > 1
5503 && !(elf_elfheader (abfd)->e_type == ET_CORE
52e9b619 5504 && m->p_type == PT_NOTE))
48db3297
AM
5505 {
5506 for (i = 0; i < m->count; i++)
5507 m->sections[i]->target_index = i;
5508 qsort (m->sections, (size_t) m->count, sizeof (asection *),
5509 elf_sort_sections);
5510 }
30fe1832
AM
5511 }
5512 if (alloc > 1)
5513 qsort (sorted_seg_map, alloc, sizeof (*sorted_seg_map),
5514 elf_sort_segments);
5515
5516 maxpagesize = 1;
5517 if ((abfd->flags & D_PAGED) != 0)
5518 maxpagesize = bed->maxpagesize;
5519
5520 /* Sections must map to file offsets past the ELF file header. */
5521 off = bed->s->sizeof_ehdr;
5522 /* And if one of the PT_LOAD headers doesn't include the program
5523 headers then we'll be mapping program headers in the usual
5524 position after the ELF file header. */
5525 phdr_load_seg = NULL;
5526 for (j = 0; j < alloc; j++)
5527 {
5528 m = sorted_seg_map[j];
5529 if (m->p_type != PT_LOAD)
5530 break;
5531 if (m->includes_phdrs)
5532 {
5533 phdr_load_seg = m;
5534 break;
5535 }
5536 }
5537 if (phdr_load_seg == NULL)
5538 off += actual * bed->s->sizeof_phdr;
5539
5540 for (j = 0; j < alloc; j++)
5541 {
5542 asection **secpp;
5543 bfd_vma off_adjust;
5544 bfd_boolean no_contents;
252b5132 5545
b301b248
AM
5546 /* An ELF segment (described by Elf_Internal_Phdr) may contain a
5547 number of sections with contents contributing to both p_filesz
5548 and p_memsz, followed by a number of sections with no contents
5549 that just contribute to p_memsz. In this loop, OFF tracks next
02bf8d82 5550 available file offset for PT_LOAD and PT_NOTE segments. */
30fe1832
AM
5551 m = sorted_seg_map[j];
5552 p = phdrs + m->idx;
252b5132 5553 p->p_type = m->p_type;
28a7f3e7 5554 p->p_flags = m->p_flags;
252b5132 5555
3f570048 5556 if (m->count == 0)
5d695627 5557 p->p_vaddr = m->p_vaddr_offset;
3f570048 5558 else
5d695627 5559 p->p_vaddr = m->sections[0]->vma + m->p_vaddr_offset;
3f570048
AM
5560
5561 if (m->p_paddr_valid)
5562 p->p_paddr = m->p_paddr;
5563 else if (m->count == 0)
5564 p->p_paddr = 0;
5565 else
5d695627 5566 p->p_paddr = m->sections[0]->lma + m->p_vaddr_offset;
3f570048
AM
5567
5568 if (p->p_type == PT_LOAD
5569 && (abfd->flags & D_PAGED) != 0)
5570 {
5571 /* p_align in demand paged PT_LOAD segments effectively stores
5572 the maximum page size. When copying an executable with
5573 objcopy, we set m->p_align from the input file. Use this
5574 value for maxpagesize rather than bed->maxpagesize, which
5575 may be different. Note that we use maxpagesize for PT_TLS
5576 segment alignment later in this function, so we are relying
5577 on at least one PT_LOAD segment appearing before a PT_TLS
5578 segment. */
5579 if (m->p_align_valid)
5580 maxpagesize = m->p_align;
5581
5582 p->p_align = maxpagesize;
5583 }
3271a814
NS
5584 else if (m->p_align_valid)
5585 p->p_align = m->p_align;
e970b90a
DJ
5586 else if (m->count == 0)
5587 p->p_align = 1 << bed->s->log_file_align;
30fe1832
AM
5588
5589 if (m == phdr_load_seg)
5590 {
5591 if (!m->includes_filehdr)
5592 p->p_offset = off;
5593 off += actual * bed->s->sizeof_phdr;
5594 }
3f570048 5595
bf988460
AM
5596 no_contents = FALSE;
5597 off_adjust = 0;
252b5132 5598 if (p->p_type == PT_LOAD
b301b248 5599 && m->count > 0)
252b5132 5600 {
b301b248 5601 bfd_size_type align;
a49e53ed 5602 unsigned int align_power = 0;
b301b248 5603
3271a814
NS
5604 if (m->p_align_valid)
5605 align = p->p_align;
5606 else
252b5132 5607 {
3271a814
NS
5608 for (i = 0, secpp = m->sections; i < m->count; i++, secpp++)
5609 {
5610 unsigned int secalign;
08a40648 5611
fd361982 5612 secalign = bfd_section_alignment (*secpp);
3271a814
NS
5613 if (secalign > align_power)
5614 align_power = secalign;
5615 }
5616 align = (bfd_size_type) 1 << align_power;
5617 if (align < maxpagesize)
5618 align = maxpagesize;
b301b248 5619 }
252b5132 5620
02bf8d82
AM
5621 for (i = 0; i < m->count; i++)
5622 if ((m->sections[i]->flags & (SEC_LOAD | SEC_HAS_CONTENTS)) == 0)
5623 /* If we aren't making room for this section, then
5624 it must be SHT_NOBITS regardless of what we've
5625 set via struct bfd_elf_special_section. */
5626 elf_section_type (m->sections[i]) = SHT_NOBITS;
5627
bf988460 5628 /* Find out whether this segment contains any loadable
aea274d3
AM
5629 sections. */
5630 no_contents = TRUE;
5631 for (i = 0; i < m->count; i++)
5632 if (elf_section_type (m->sections[i]) != SHT_NOBITS)
5633 {
5634 no_contents = FALSE;
5635 break;
5636 }
bf988460 5637
85cfcbfb 5638 off_adjust = vma_page_aligned_bias (p->p_vaddr, off, align);
a8c75b76
AM
5639
5640 /* Broken hardware and/or kernel require that files do not
5641 map the same page with different permissions on some hppa
5642 processors. */
30fe1832
AM
5643 if (j != 0
5644 && (abfd->flags & D_PAGED) != 0
a8c75b76
AM
5645 && bed->no_page_alias
5646 && (off & (maxpagesize - 1)) != 0
5647 && (off & -maxpagesize) == ((off + off_adjust) & -maxpagesize))
5648 off_adjust += maxpagesize;
bf988460
AM
5649 off += off_adjust;
5650 if (no_contents)
5651 {
5652 /* We shouldn't need to align the segment on disk since
5653 the segment doesn't need file space, but the gABI
5654 arguably requires the alignment and glibc ld.so
5655 checks it. So to comply with the alignment
5656 requirement but not waste file space, we adjust
5657 p_offset for just this segment. (OFF_ADJUST is
5658 subtracted from OFF later.) This may put p_offset
5659 past the end of file, but that shouldn't matter. */
5660 }
5661 else
5662 off_adjust = 0;
252b5132 5663 }
b1a6d0b1
NC
5664 /* Make sure the .dynamic section is the first section in the
5665 PT_DYNAMIC segment. */
5666 else if (p->p_type == PT_DYNAMIC
5667 && m->count > 1
5668 && strcmp (m->sections[0]->name, ".dynamic") != 0)
5669 {
5670 _bfd_error_handler
871b3ab2 5671 (_("%pB: The first section in the PT_DYNAMIC segment"
63a5468a 5672 " is not the .dynamic section"),
b301b248 5673 abfd);
b1a6d0b1
NC
5674 bfd_set_error (bfd_error_bad_value);
5675 return FALSE;
5676 }
3f001e84
JK
5677 /* Set the note section type to SHT_NOTE. */
5678 else if (p->p_type == PT_NOTE)
5679 for (i = 0; i < m->count; i++)
5680 elf_section_type (m->sections[i]) = SHT_NOTE;
252b5132 5681
252b5132
RH
5682 if (m->includes_filehdr)
5683 {
bf988460 5684 if (!m->p_flags_valid)
252b5132 5685 p->p_flags |= PF_R;
252b5132
RH
5686 p->p_filesz = bed->s->sizeof_ehdr;
5687 p->p_memsz = bed->s->sizeof_ehdr;
30fe1832 5688 if (p->p_type == PT_LOAD)
252b5132 5689 {
30fe1832 5690 if (m->count > 0)
252b5132 5691 {
30fe1832
AM
5692 if (p->p_vaddr < (bfd_vma) off
5693 || (!m->p_paddr_valid
5694 && p->p_paddr < (bfd_vma) off))
5695 {
5696 _bfd_error_handler
5697 (_("%pB: not enough room for program headers,"
5698 " try linking with -N"),
5699 abfd);
5700 bfd_set_error (bfd_error_bad_value);
5701 return FALSE;
5702 }
5703 p->p_vaddr -= off;
5704 if (!m->p_paddr_valid)
5705 p->p_paddr -= off;
252b5132 5706 }
30fe1832
AM
5707 }
5708 else if (sorted_seg_map[0]->includes_filehdr)
5709 {
5710 Elf_Internal_Phdr *filehdr = phdrs + sorted_seg_map[0]->idx;
5711 p->p_vaddr = filehdr->p_vaddr;
bf988460 5712 if (!m->p_paddr_valid)
30fe1832 5713 p->p_paddr = filehdr->p_paddr;
252b5132 5714 }
252b5132
RH
5715 }
5716
5717 if (m->includes_phdrs)
5718 {
bf988460 5719 if (!m->p_flags_valid)
252b5132 5720 p->p_flags |= PF_R;
30fe1832
AM
5721 p->p_filesz += actual * bed->s->sizeof_phdr;
5722 p->p_memsz += actual * bed->s->sizeof_phdr;
f3520d2f 5723 if (!m->includes_filehdr)
252b5132 5724 {
30fe1832 5725 if (p->p_type == PT_LOAD)
252b5132 5726 {
30fe1832
AM
5727 elf_elfheader (abfd)->e_phoff = p->p_offset;
5728 if (m->count > 0)
5729 {
5730 p->p_vaddr -= off - p->p_offset;
5731 if (!m->p_paddr_valid)
5732 p->p_paddr -= off - p->p_offset;
5733 }
5734 }
5735 else if (phdr_load_seg != NULL)
5736 {
5737 Elf_Internal_Phdr *phdr = phdrs + phdr_load_seg->idx;
5738 bfd_vma phdr_off = 0;
5739 if (phdr_load_seg->includes_filehdr)
5740 phdr_off = bed->s->sizeof_ehdr;
5741 p->p_vaddr = phdr->p_vaddr + phdr_off;
bf988460 5742 if (!m->p_paddr_valid)
30fe1832
AM
5743 p->p_paddr = phdr->p_paddr + phdr_off;
5744 p->p_offset = phdr->p_offset + phdr_off;
252b5132 5745 }
30fe1832
AM
5746 else
5747 p->p_offset = bed->s->sizeof_ehdr;
2b0bc088 5748 }
252b5132
RH
5749 }
5750
5751 if (p->p_type == PT_LOAD
5752 || (p->p_type == PT_NOTE && bfd_get_format (abfd) == bfd_core))
5753 {
bf988460 5754 if (!m->includes_filehdr && !m->includes_phdrs)
0bc3450e
AM
5755 {
5756 p->p_offset = off;
5757 if (no_contents)
67641dd3
AM
5758 {
5759 /* Put meaningless p_offset for PT_LOAD segments
5760 without file contents somewhere within the first
5761 page, in an attempt to not point past EOF. */
5762 bfd_size_type align = maxpagesize;
5763 if (align < p->p_align)
5764 align = p->p_align;
5765 if (align < 1)
5766 align = 1;
5767 p->p_offset = off % align;
5768 }
0bc3450e 5769 }
252b5132
RH
5770 else
5771 {
5772 file_ptr adjust;
5773
5774 adjust = off - (p->p_offset + p->p_filesz);
bf988460
AM
5775 if (!no_contents)
5776 p->p_filesz += adjust;
252b5132
RH
5777 p->p_memsz += adjust;
5778 }
5779 }
5780
1ea63fd2
AM
5781 /* Set up p_filesz, p_memsz, p_align and p_flags from the section
5782 maps. Set filepos for sections in PT_LOAD segments, and in
5783 core files, for sections in PT_NOTE segments.
5784 assign_file_positions_for_non_load_sections will set filepos
5785 for other sections and update p_filesz for other segments. */
252b5132
RH
5786 for (i = 0, secpp = m->sections; i < m->count; i++, secpp++)
5787 {
5788 asection *sec;
252b5132 5789 bfd_size_type align;
627b32bc 5790 Elf_Internal_Shdr *this_hdr;
252b5132
RH
5791
5792 sec = *secpp;
02bf8d82 5793 this_hdr = &elf_section_data (sec)->this_hdr;
fd361982 5794 align = (bfd_size_type) 1 << bfd_section_alignment (sec);
252b5132 5795
88967714
AM
5796 if ((p->p_type == PT_LOAD
5797 || p->p_type == PT_TLS)
5798 && (this_hdr->sh_type != SHT_NOBITS
5799 || ((this_hdr->sh_flags & SHF_ALLOC) != 0
5800 && ((this_hdr->sh_flags & SHF_TLS) == 0
5801 || p->p_type == PT_TLS))))
252b5132 5802 {
b5599592
AM
5803 bfd_vma p_start = p->p_paddr;
5804 bfd_vma p_end = p_start + p->p_memsz;
5805 bfd_vma s_start = sec->lma;
5806 bfd_vma adjust = s_start - p_end;
252b5132 5807
a2d1e028
L
5808 if (adjust != 0
5809 && (s_start < p_end
5810 || p_end < p_start))
252b5132 5811 {
4eca0228 5812 _bfd_error_handler
695344c0 5813 /* xgettext:c-format */
2dcf00ce
AM
5814 (_("%pB: section %pA lma %#" PRIx64 " adjusted to %#" PRIx64),
5815 abfd, sec, (uint64_t) s_start, (uint64_t) p_end);
88967714 5816 adjust = 0;
b5599592 5817 sec->lma = p_end;
1cfb7d1e 5818 }
3ac9b6c9 5819 p->p_memsz += adjust;
1cfb7d1e 5820
88967714
AM
5821 if (this_hdr->sh_type != SHT_NOBITS)
5822 {
30fe1832 5823 if (p->p_type == PT_LOAD)
32812159 5824 {
30fe1832
AM
5825 if (p->p_filesz + adjust < p->p_memsz)
5826 {
5827 /* We have a PROGBITS section following NOBITS ones.
5828 Allocate file space for the NOBITS section(s) and
5829 zero it. */
5830 adjust = p->p_memsz - p->p_filesz;
5831 if (!write_zeros (abfd, off, adjust))
5832 return FALSE;
5833 }
5834 off += adjust;
32812159 5835 }
88967714 5836 p->p_filesz += adjust;
252b5132 5837 }
252b5132
RH
5838 }
5839
5840 if (p->p_type == PT_NOTE && bfd_get_format (abfd) == bfd_core)
5841 {
b301b248
AM
5842 /* The section at i == 0 is the one that actually contains
5843 everything. */
4a938328
MS
5844 if (i == 0)
5845 {
627b32bc 5846 this_hdr->sh_offset = sec->filepos = off;
6a3cd2b4
AM
5847 off += this_hdr->sh_size;
5848 p->p_filesz = this_hdr->sh_size;
b301b248
AM
5849 p->p_memsz = 0;
5850 p->p_align = 1;
252b5132 5851 }
4a938328 5852 else
252b5132 5853 {
b301b248 5854 /* The rest are fake sections that shouldn't be written. */
252b5132 5855 sec->filepos = 0;
eea6121a 5856 sec->size = 0;
b301b248
AM
5857 sec->flags = 0;
5858 continue;
252b5132 5859 }
252b5132
RH
5860 }
5861 else
5862 {
1e951488 5863 if (p->p_type == PT_LOAD)
b301b248 5864 {
1e951488
AM
5865 this_hdr->sh_offset = sec->filepos = off;
5866 if (this_hdr->sh_type != SHT_NOBITS)
5867 off += this_hdr->sh_size;
5868 }
5869 else if (this_hdr->sh_type == SHT_NOBITS
5870 && (this_hdr->sh_flags & SHF_TLS) != 0
5871 && this_hdr->sh_offset == 0)
5872 {
5873 /* This is a .tbss section that didn't get a PT_LOAD.
5874 (See _bfd_elf_map_sections_to_segments "Create a
5875 final PT_LOAD".) Set sh_offset to the value it
5876 would have if we had created a zero p_filesz and
5877 p_memsz PT_LOAD header for the section. This
5878 also makes the PT_TLS header have the same
5879 p_offset value. */
5880 bfd_vma adjust = vma_page_aligned_bias (this_hdr->sh_addr,
5881 off, align);
5882 this_hdr->sh_offset = sec->filepos = off + adjust;
b301b248 5883 }
252b5132 5884
02bf8d82 5885 if (this_hdr->sh_type != SHT_NOBITS)
b301b248 5886 {
6a3cd2b4 5887 p->p_filesz += this_hdr->sh_size;
02bf8d82
AM
5888 /* A load section without SHF_ALLOC is something like
5889 a note section in a PT_NOTE segment. These take
5890 file space but are not loaded into memory. */
5891 if ((this_hdr->sh_flags & SHF_ALLOC) != 0)
6a3cd2b4 5892 p->p_memsz += this_hdr->sh_size;
b301b248 5893 }
6a3cd2b4 5894 else if ((this_hdr->sh_flags & SHF_ALLOC) != 0)
13ae64f3 5895 {
6a3cd2b4
AM
5896 if (p->p_type == PT_TLS)
5897 p->p_memsz += this_hdr->sh_size;
5898
5899 /* .tbss is special. It doesn't contribute to p_memsz of
5900 normal segments. */
5901 else if ((this_hdr->sh_flags & SHF_TLS) == 0)
5902 p->p_memsz += this_hdr->sh_size;
13ae64f3
JJ
5903 }
5904
b10a8ae0
L
5905 if (align > p->p_align
5906 && !m->p_align_valid
5907 && (p->p_type != PT_LOAD
5908 || (abfd->flags & D_PAGED) == 0))
252b5132
RH
5909 p->p_align = align;
5910 }
5911
bf988460 5912 if (!m->p_flags_valid)
252b5132
RH
5913 {
5914 p->p_flags |= PF_R;
02bf8d82 5915 if ((this_hdr->sh_flags & SHF_EXECINSTR) != 0)
252b5132 5916 p->p_flags |= PF_X;
02bf8d82 5917 if ((this_hdr->sh_flags & SHF_WRITE) != 0)
252b5132
RH
5918 p->p_flags |= PF_W;
5919 }
5920 }
43a8475c 5921
bf988460 5922 off -= off_adjust;
0920dee7 5923
30fe1832
AM
5924 /* PR ld/20815 - Check that the program header segment, if
5925 present, will be loaded into memory. */
5926 if (p->p_type == PT_PHDR
5927 && phdr_load_seg == NULL
5928 && !(bed->elf_backend_allow_non_load_phdr != NULL
5929 && bed->elf_backend_allow_non_load_phdr (abfd, phdrs, alloc)))
5930 {
5931 /* The fix for this error is usually to edit the linker script being
5932 used and set up the program headers manually. Either that or
5933 leave room for the headers at the start of the SECTIONS. */
5934 _bfd_error_handler (_("%pB: error: PHDR segment not covered"
5935 " by LOAD segment"),
5936 abfd);
5937 return FALSE;
5938 }
5939
7c928300
AM
5940 /* Check that all sections are in a PT_LOAD segment.
5941 Don't check funky gdb generated core files. */
5942 if (p->p_type == PT_LOAD && bfd_get_format (abfd) != bfd_core)
9a83a553
AM
5943 {
5944 bfd_boolean check_vma = TRUE;
5945
5946 for (i = 1; i < m->count; i++)
5947 if (m->sections[i]->vma == m->sections[i - 1]->vma
5948 && ELF_SECTION_SIZE (&(elf_section_data (m->sections[i])
5949 ->this_hdr), p) != 0
5950 && ELF_SECTION_SIZE (&(elf_section_data (m->sections[i - 1])
5951 ->this_hdr), p) != 0)
0920dee7 5952 {
9a83a553
AM
5953 /* Looks like we have overlays packed into the segment. */
5954 check_vma = FALSE;
5955 break;
0920dee7 5956 }
9a83a553
AM
5957
5958 for (i = 0; i < m->count; i++)
5959 {
5960 Elf_Internal_Shdr *this_hdr;
5961 asection *sec;
5962
5963 sec = m->sections[i];
5964 this_hdr = &(elf_section_data(sec)->this_hdr);
86b2281f
AM
5965 if (!ELF_SECTION_IN_SEGMENT_1 (this_hdr, p, check_vma, 0)
5966 && !ELF_TBSS_SPECIAL (this_hdr, p))
9a83a553 5967 {
4eca0228 5968 _bfd_error_handler
695344c0 5969 /* xgettext:c-format */
871b3ab2 5970 (_("%pB: section `%pA' can't be allocated in segment %d"),
9a83a553
AM
5971 abfd, sec, j);
5972 print_segment_map (m);
5973 }
5974 }
5975 }
252b5132
RH
5976 }
5977
12bd6957 5978 elf_next_file_pos (abfd) = off;
30fe1832
AM
5979
5980 if (link_info != NULL
5981 && phdr_load_seg != NULL
5982 && phdr_load_seg->includes_filehdr)
5983 {
5984 /* There is a segment that contains both the file headers and the
5985 program headers, so provide a symbol __ehdr_start pointing there.
5986 A program can use this to examine itself robustly. */
5987
5988 struct elf_link_hash_entry *hash
5989 = elf_link_hash_lookup (elf_hash_table (link_info), "__ehdr_start",
5990 FALSE, FALSE, TRUE);
5991 /* If the symbol was referenced and not defined, define it. */
5992 if (hash != NULL
5993 && (hash->root.type == bfd_link_hash_new
5994 || hash->root.type == bfd_link_hash_undefined
5995 || hash->root.type == bfd_link_hash_undefweak
5996 || hash->root.type == bfd_link_hash_common))
5997 {
5998 asection *s = NULL;
5999 bfd_vma filehdr_vaddr = phdrs[phdr_load_seg->idx].p_vaddr;
6000
6001 if (phdr_load_seg->count != 0)
6002 /* The segment contains sections, so use the first one. */
6003 s = phdr_load_seg->sections[0];
6004 else
6005 /* Use the first (i.e. lowest-addressed) section in any segment. */
6006 for (m = elf_seg_map (abfd); m != NULL; m = m->next)
6007 if (m->p_type == PT_LOAD && m->count != 0)
6008 {
6009 s = m->sections[0];
6010 break;
6011 }
6012
6013 if (s != NULL)
6014 {
6015 hash->root.u.def.value = filehdr_vaddr - s->vma;
6016 hash->root.u.def.section = s;
6017 }
6018 else
6019 {
6020 hash->root.u.def.value = filehdr_vaddr;
6021 hash->root.u.def.section = bfd_abs_section_ptr;
6022 }
6023
6024 hash->root.type = bfd_link_hash_defined;
6025 hash->def_regular = 1;
6026 hash->non_elf = 0;
6027 }
6028 }
6029
f3520d2f
AM
6030 return TRUE;
6031}
6032
1faa385f
NC
6033/* Determine if a bfd is a debuginfo file. Unfortunately there
6034 is no defined method for detecting such files, so we have to
6035 use heuristics instead. */
6036
6037bfd_boolean
6038is_debuginfo_file (bfd *abfd)
6039{
6040 if (abfd == NULL || bfd_get_flavour (abfd) != bfd_target_elf_flavour)
6041 return FALSE;
6042
6043 Elf_Internal_Shdr **start_headers = elf_elfsections (abfd);
6044 Elf_Internal_Shdr **end_headers = start_headers + elf_numsections (abfd);
6045 Elf_Internal_Shdr **headerp;
6046
6047 for (headerp = start_headers; headerp < end_headers; headerp ++)
6048 {
6049 Elf_Internal_Shdr *header = * headerp;
6050
6051 /* Debuginfo files do not have any allocated SHT_PROGBITS sections.
6052 The only allocated sections are SHT_NOBITS or SHT_NOTES. */
6053 if ((header->sh_flags & SHF_ALLOC) == SHF_ALLOC
6054 && header->sh_type != SHT_NOBITS
6055 && header->sh_type != SHT_NOTE)
6056 return FALSE;
6057 }
6058
6059 return TRUE;
6060}
6061
1ff6de03
NA
6062/* Assign file positions for the other sections, except for compressed debugging
6063 and other sections assigned in _bfd_elf_assign_file_positions_for_non_load(). */
f3520d2f
AM
6064
6065static bfd_boolean
6066assign_file_positions_for_non_load_sections (bfd *abfd,
6067 struct bfd_link_info *link_info)
6068{
6069 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
6070 Elf_Internal_Shdr **i_shdrpp;
e06efbf1 6071 Elf_Internal_Shdr **hdrpp, **end_hdrpp;
f3520d2f
AM
6072 Elf_Internal_Phdr *phdrs;
6073 Elf_Internal_Phdr *p;
6074 struct elf_segment_map *m;
f3520d2f 6075 file_ptr off;
f3520d2f 6076
5c182d5f 6077 i_shdrpp = elf_elfsections (abfd);
e06efbf1 6078 end_hdrpp = i_shdrpp + elf_numsections (abfd);
12bd6957 6079 off = elf_next_file_pos (abfd);
e06efbf1 6080 for (hdrpp = i_shdrpp + 1; hdrpp < end_hdrpp; hdrpp++)
5c182d5f 6081 {
5c182d5f
AM
6082 Elf_Internal_Shdr *hdr;
6083
6084 hdr = *hdrpp;
6085 if (hdr->bfd_section != NULL
252e386e
AM
6086 && (hdr->bfd_section->filepos != 0
6087 || (hdr->sh_type == SHT_NOBITS
6088 && hdr->contents == NULL)))
627b32bc 6089 BFD_ASSERT (hdr->sh_offset == hdr->bfd_section->filepos);
5c182d5f
AM
6090 else if ((hdr->sh_flags & SHF_ALLOC) != 0)
6091 {
1faa385f
NC
6092 if (hdr->sh_size != 0
6093 /* PR 24717 - debuginfo files are known to be not strictly
6094 compliant with the ELF standard. In particular they often
6095 have .note.gnu.property sections that are outside of any
6096 loadable segment. This is not a problem for such files,
6097 so do not warn about them. */
6098 && ! is_debuginfo_file (abfd))
4eca0228 6099 _bfd_error_handler
695344c0 6100 /* xgettext:c-format */
871b3ab2 6101 (_("%pB: warning: allocated section `%s' not in segment"),
e8d2ba53
AM
6102 abfd,
6103 (hdr->bfd_section == NULL
6104 ? "*unknown*"
6105 : hdr->bfd_section->name));
3ba71138
L
6106 /* We don't need to page align empty sections. */
6107 if ((abfd->flags & D_PAGED) != 0 && hdr->sh_size != 0)
5c182d5f
AM
6108 off += vma_page_aligned_bias (hdr->sh_addr, off,
6109 bed->maxpagesize);
6110 else
6111 off += vma_page_aligned_bias (hdr->sh_addr, off,
6112 hdr->sh_addralign);
6113 off = _bfd_elf_assign_file_position_for_section (hdr, off,
6114 FALSE);
6115 }
6116 else if (((hdr->sh_type == SHT_REL || hdr->sh_type == SHT_RELA)
6117 && hdr->bfd_section == NULL)
1ff6de03
NA
6118 /* We don't know the offset of these sections yet: their size has
6119 not been decided. */
0ce398f1 6120 || (hdr->bfd_section != NULL
1ff6de03
NA
6121 && (hdr->bfd_section->flags & SEC_ELF_COMPRESS
6122 || (bfd_section_is_ctf (hdr->bfd_section)
6123 && abfd->is_linker_output)))
12bd6957 6124 || hdr == i_shdrpp[elf_onesymtab (abfd)]
6a40cf0c
NC
6125 || (elf_symtab_shndx_list (abfd) != NULL
6126 && hdr == i_shdrpp[elf_symtab_shndx_list (abfd)->ndx])
3e19fb8f
L
6127 || hdr == i_shdrpp[elf_strtab_sec (abfd)]
6128 || hdr == i_shdrpp[elf_shstrtab_sec (abfd)])
5c182d5f
AM
6129 hdr->sh_offset = -1;
6130 else
6131 off = _bfd_elf_assign_file_position_for_section (hdr, off, TRUE);
5c182d5f 6132 }
30fe1832 6133 elf_next_file_pos (abfd) = off;
5c182d5f 6134
252b5132
RH
6135 /* Now that we have set the section file positions, we can set up
6136 the file positions for the non PT_LOAD segments. */
f3520d2f 6137 phdrs = elf_tdata (abfd)->phdr;
12bd6957 6138 for (m = elf_seg_map (abfd), p = phdrs; m != NULL; m = m->next, p++)
252b5132 6139 {
129af99f 6140 if (p->p_type == PT_GNU_RELRO)
252b5132 6141 {
f2731e0c 6142 bfd_vma start, end;
01f7e10c 6143 bfd_boolean ok;
1ea63fd2 6144
129af99f 6145 if (link_info != NULL)
8c37241b 6146 {
129af99f 6147 /* During linking the range of the RELRO segment is passed
f2731e0c
AM
6148 in link_info. Note that there may be padding between
6149 relro_start and the first RELRO section. */
6150 start = link_info->relro_start;
6151 end = link_info->relro_end;
6152 }
6153 else if (m->count != 0)
6154 {
6155 if (!m->p_size_valid)
6156 abort ();
6157 start = m->sections[0]->vma;
6158 end = start + m->p_size;
6159 }
6160 else
6161 {
6162 start = 0;
6163 end = 0;
6164 }
6165
01f7e10c 6166 ok = FALSE;
f2731e0c
AM
6167 if (start < end)
6168 {
6169 struct elf_segment_map *lm;
6170 const Elf_Internal_Phdr *lp;
6171 unsigned int i;
6172
6173 /* Find a LOAD segment containing a section in the RELRO
6174 segment. */
12bd6957 6175 for (lm = elf_seg_map (abfd), lp = phdrs;
3146fac4
AM
6176 lm != NULL;
6177 lm = lm->next, lp++)
8c37241b
JJ
6178 {
6179 if (lp->p_type == PT_LOAD
3146fac4 6180 && lm->count != 0
dbc88fc1
AM
6181 && (lm->sections[lm->count - 1]->vma
6182 + (!IS_TBSS (lm->sections[lm->count - 1])
6183 ? lm->sections[lm->count - 1]->size
6184 : 0)) > start
f2731e0c 6185 && lm->sections[0]->vma < end)
8c37241b
JJ
6186 break;
6187 }
f2731e0c 6188
01f7e10c 6189 if (lm != NULL)
129af99f 6190 {
01f7e10c
AM
6191 /* Find the section starting the RELRO segment. */
6192 for (i = 0; i < lm->count; i++)
6193 {
6194 asection *s = lm->sections[i];
6195 if (s->vma >= start
6196 && s->vma < end
6197 && s->size != 0)
6198 break;
6199 }
6200
6201 if (i < lm->count)
6202 {
6203 p->p_vaddr = lm->sections[i]->vma;
6204 p->p_paddr = lm->sections[i]->lma;
6205 p->p_offset = lm->sections[i]->filepos;
6206 p->p_memsz = end - p->p_vaddr;
6207 p->p_filesz = p->p_memsz;
6208
6209 /* The RELRO segment typically ends a few bytes
6210 into .got.plt but other layouts are possible.
6211 In cases where the end does not match any
6212 loaded section (for instance is in file
6213 padding), trim p_filesz back to correspond to
6214 the end of loaded section contents. */
6215 if (p->p_filesz > lp->p_vaddr + lp->p_filesz - p->p_vaddr)
6216 p->p_filesz = lp->p_vaddr + lp->p_filesz - p->p_vaddr;
6217
6218 /* Preserve the alignment and flags if they are
6219 valid. The gold linker generates RW/4 for
6220 the PT_GNU_RELRO section. It is better for
6221 objcopy/strip to honor these attributes
6222 otherwise gdb will choke when using separate
6223 debug files. */
6224 if (!m->p_align_valid)
6225 p->p_align = 1;
6226 if (!m->p_flags_valid)
6227 p->p_flags = PF_R;
6228 ok = TRUE;
6229 }
129af99f 6230 }
b84a33b5 6231 }
01f7e10c
AM
6232 if (link_info != NULL)
6233 BFD_ASSERT (ok);
6234 if (!ok)
6235 memset (p, 0, sizeof *p);
129af99f 6236 }
04c3a755
NS
6237 else if (p->p_type == PT_GNU_STACK)
6238 {
6239 if (m->p_size_valid)
6240 p->p_memsz = m->p_size;
6241 }
129af99f
AS
6242 else if (m->count != 0)
6243 {
e06efbf1 6244 unsigned int i;
1a9ccd70 6245
129af99f
AS
6246 if (p->p_type != PT_LOAD
6247 && (p->p_type != PT_NOTE
6248 || bfd_get_format (abfd) != bfd_core))
6249 {
1a9ccd70
NC
6250 /* A user specified segment layout may include a PHDR
6251 segment that overlaps with a LOAD segment... */
6252 if (p->p_type == PT_PHDR)
6253 {
6254 m->count = 0;
6255 continue;
6256 }
6257
c86934ce
NC
6258 if (m->includes_filehdr || m->includes_phdrs)
6259 {
b1fa9dd6 6260 /* PR 17512: file: 2195325e. */
4eca0228 6261 _bfd_error_handler
871b3ab2 6262 (_("%pB: error: non-load segment %d includes file header "
76cfced5
AM
6263 "and/or program header"),
6264 abfd, (int) (p - phdrs));
c86934ce
NC
6265 return FALSE;
6266 }
129af99f 6267
86b2281f 6268 p->p_filesz = 0;
129af99f 6269 p->p_offset = m->sections[0]->filepos;
86b2281f
AM
6270 for (i = m->count; i-- != 0;)
6271 {
6272 asection *sect = m->sections[i];
6273 Elf_Internal_Shdr *hdr = &elf_section_data (sect)->this_hdr;
6274 if (hdr->sh_type != SHT_NOBITS)
6275 {
6276 p->p_filesz = (sect->filepos - m->sections[0]->filepos
6277 + hdr->sh_size);
6278 break;
6279 }
6280 }
129af99f
AS
6281 }
6282 }
252b5132
RH
6283 }
6284
b34976b6 6285 return TRUE;
252b5132
RH
6286}
6287
6a40cf0c
NC
6288static elf_section_list *
6289find_section_in_list (unsigned int i, elf_section_list * list)
6290{
6291 for (;list != NULL; list = list->next)
6292 if (list->ndx == i)
6293 break;
6294 return list;
6295}
6296
252b5132
RH
6297/* Work out the file positions of all the sections. This is called by
6298 _bfd_elf_compute_section_file_positions. All the section sizes and
6299 VMAs must be known before this is called.
6300
e0638f70 6301 Reloc sections come in two flavours: Those processed specially as
1ff6de03
NA
6302 "side-channel" data attached to a section to which they apply, and those that
6303 bfd doesn't process as relocations. The latter sort are stored in a normal
6304 bfd section by bfd_section_from_shdr. We don't consider the former sort
6305 here, unless they form part of the loadable image. Reloc sections not
6306 assigned here (and compressed debugging sections and CTF sections which
6307 nothing else in the file can rely upon) will be handled later by
e0638f70 6308 assign_file_positions_for_relocs.
252b5132
RH
6309
6310 We also don't set the positions of the .symtab and .strtab here. */
6311
b34976b6 6312static bfd_boolean
c84fca4d
AO
6313assign_file_positions_except_relocs (bfd *abfd,
6314 struct bfd_link_info *link_info)
252b5132 6315{
5c182d5f
AM
6316 struct elf_obj_tdata *tdata = elf_tdata (abfd);
6317 Elf_Internal_Ehdr *i_ehdrp = elf_elfheader (abfd);
9c5bfbb7 6318 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
6d6c25c8 6319 unsigned int alloc;
252b5132
RH
6320
6321 if ((abfd->flags & (EXEC_P | DYNAMIC)) == 0
6322 && bfd_get_format (abfd) != bfd_core)
6323 {
5c182d5f
AM
6324 Elf_Internal_Shdr ** const i_shdrpp = elf_elfsections (abfd);
6325 unsigned int num_sec = elf_numsections (abfd);
252b5132
RH
6326 Elf_Internal_Shdr **hdrpp;
6327 unsigned int i;
a485e98e 6328 file_ptr off;
252b5132
RH
6329
6330 /* Start after the ELF header. */
6331 off = i_ehdrp->e_ehsize;
6332
6333 /* We are not creating an executable, which means that we are
6334 not creating a program header, and that the actual order of
6335 the sections in the file is unimportant. */
9ad5cbcf 6336 for (i = 1, hdrpp = i_shdrpp + 1; i < num_sec; i++, hdrpp++)
252b5132
RH
6337 {
6338 Elf_Internal_Shdr *hdr;
6339
6340 hdr = *hdrpp;
e0638f70
AM
6341 if (((hdr->sh_type == SHT_REL || hdr->sh_type == SHT_RELA)
6342 && hdr->bfd_section == NULL)
1ff6de03
NA
6343 /* Do not assign offsets for these sections yet: we don't know
6344 their sizes. */
0ce398f1 6345 || (hdr->bfd_section != NULL
1ff6de03
NA
6346 && (hdr->bfd_section->flags & SEC_ELF_COMPRESS
6347 || (bfd_section_is_ctf (hdr->bfd_section)
6348 && abfd->is_linker_output)))
12bd6957 6349 || i == elf_onesymtab (abfd)
6a40cf0c
NC
6350 || (elf_symtab_shndx_list (abfd) != NULL
6351 && hdr == i_shdrpp[elf_symtab_shndx_list (abfd)->ndx])
3e19fb8f
L
6352 || i == elf_strtab_sec (abfd)
6353 || i == elf_shstrtab_sec (abfd))
252b5132
RH
6354 {
6355 hdr->sh_offset = -1;
252b5132 6356 }
9ad5cbcf 6357 else
b34976b6 6358 off = _bfd_elf_assign_file_position_for_section (hdr, off, TRUE);
252b5132 6359 }
a485e98e
AM
6360
6361 elf_next_file_pos (abfd) = off;
6d6c25c8 6362 elf_program_header_size (abfd) = 0;
252b5132
RH
6363 }
6364 else
6365 {
252b5132 6366 /* Assign file positions for the loaded sections based on the
08a40648 6367 assignment of sections to segments. */
f3520d2f
AM
6368 if (!assign_file_positions_for_load_sections (abfd, link_info))
6369 return FALSE;
6370
6371 /* And for non-load sections. */
6372 if (!assign_file_positions_for_non_load_sections (abfd, link_info))
6373 return FALSE;
6d6c25c8 6374 }
f3520d2f 6375
6d6c25c8
AM
6376 if (!(*bed->elf_backend_modify_headers) (abfd, link_info))
6377 return FALSE;
1a9ccd70 6378
6d6c25c8
AM
6379 /* Write out the program headers. */
6380 alloc = i_ehdrp->e_phnum;
6381 if (alloc != 0)
6382 {
30fe1832 6383 if (bfd_seek (abfd, i_ehdrp->e_phoff, SEEK_SET) != 0
cd584857
NC
6384 || bed->s->write_out_phdrs (abfd, tdata->phdr, alloc) != 0)
6385 return FALSE;
252b5132
RH
6386 }
6387
b34976b6 6388 return TRUE;
252b5132
RH
6389}
6390
ed7e9d0b
AM
6391bfd_boolean
6392_bfd_elf_init_file_header (bfd *abfd,
6393 struct bfd_link_info *info ATTRIBUTE_UNUSED)
252b5132 6394{
3d540e93 6395 Elf_Internal_Ehdr *i_ehdrp; /* Elf file header, internal form. */
2b0f7ef9 6396 struct elf_strtab_hash *shstrtab;
9c5bfbb7 6397 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
252b5132
RH
6398
6399 i_ehdrp = elf_elfheader (abfd);
252b5132 6400
2b0f7ef9 6401 shstrtab = _bfd_elf_strtab_init ();
252b5132 6402 if (shstrtab == NULL)
b34976b6 6403 return FALSE;
252b5132
RH
6404
6405 elf_shstrtab (abfd) = shstrtab;
6406
6407 i_ehdrp->e_ident[EI_MAG0] = ELFMAG0;
6408 i_ehdrp->e_ident[EI_MAG1] = ELFMAG1;
6409 i_ehdrp->e_ident[EI_MAG2] = ELFMAG2;
6410 i_ehdrp->e_ident[EI_MAG3] = ELFMAG3;
6411
6412 i_ehdrp->e_ident[EI_CLASS] = bed->s->elfclass;
6413 i_ehdrp->e_ident[EI_DATA] =
6414 bfd_big_endian (abfd) ? ELFDATA2MSB : ELFDATA2LSB;
6415 i_ehdrp->e_ident[EI_VERSION] = bed->s->ev_current;
6416
252b5132
RH
6417 if ((abfd->flags & DYNAMIC) != 0)
6418 i_ehdrp->e_type = ET_DYN;
6419 else if ((abfd->flags & EXEC_P) != 0)
6420 i_ehdrp->e_type = ET_EXEC;
6421 else if (bfd_get_format (abfd) == bfd_core)
6422 i_ehdrp->e_type = ET_CORE;
6423 else
6424 i_ehdrp->e_type = ET_REL;
6425
6426 switch (bfd_get_arch (abfd))
6427 {
6428 case bfd_arch_unknown:
6429 i_ehdrp->e_machine = EM_NONE;
6430 break;
aa4f99bb
AO
6431
6432 /* There used to be a long list of cases here, each one setting
6433 e_machine to the same EM_* macro #defined as ELF_MACHINE_CODE
6434 in the corresponding bfd definition. To avoid duplication,
6435 the switch was removed. Machines that need special handling
6436 can generally do it in elf_backend_final_write_processing(),
6437 unless they need the information earlier than the final write.
6438 Such need can generally be supplied by replacing the tests for
6439 e_machine with the conditions used to determine it. */
252b5132 6440 default:
9c5bfbb7
AM
6441 i_ehdrp->e_machine = bed->elf_machine_code;
6442 }
aa4f99bb 6443
252b5132
RH
6444 i_ehdrp->e_version = bed->s->ev_current;
6445 i_ehdrp->e_ehsize = bed->s->sizeof_ehdr;
6446
c044fabd 6447 /* No program header, for now. */
252b5132
RH
6448 i_ehdrp->e_phoff = 0;
6449 i_ehdrp->e_phentsize = 0;
6450 i_ehdrp->e_phnum = 0;
6451
c044fabd 6452 /* Each bfd section is section header entry. */
252b5132
RH
6453 i_ehdrp->e_entry = bfd_get_start_address (abfd);
6454 i_ehdrp->e_shentsize = bed->s->sizeof_shdr;
6455
252b5132 6456 elf_tdata (abfd)->symtab_hdr.sh_name =
b34976b6 6457 (unsigned int) _bfd_elf_strtab_add (shstrtab, ".symtab", FALSE);
252b5132 6458 elf_tdata (abfd)->strtab_hdr.sh_name =
b34976b6 6459 (unsigned int) _bfd_elf_strtab_add (shstrtab, ".strtab", FALSE);
252b5132 6460 elf_tdata (abfd)->shstrtab_hdr.sh_name =
b34976b6 6461 (unsigned int) _bfd_elf_strtab_add (shstrtab, ".shstrtab", FALSE);
252b5132 6462 if (elf_tdata (abfd)->symtab_hdr.sh_name == (unsigned int) -1
17ca87fc 6463 || elf_tdata (abfd)->strtab_hdr.sh_name == (unsigned int) -1
252b5132 6464 || elf_tdata (abfd)->shstrtab_hdr.sh_name == (unsigned int) -1)
b34976b6 6465 return FALSE;
252b5132 6466
b34976b6 6467 return TRUE;
252b5132
RH
6468}
6469
6d6c25c8
AM
6470/* Set e_type in ELF header to ET_EXEC for -pie -Ttext-segment=.
6471
6472 FIXME: We used to have code here to sort the PT_LOAD segments into
6473 ascending order, as per the ELF spec. But this breaks some programs,
6474 including the Linux kernel. But really either the spec should be
6475 changed or the programs updated. */
6476
6477bfd_boolean
6478_bfd_elf_modify_headers (bfd *obfd, struct bfd_link_info *link_info)
6479{
6480 if (link_info != NULL && bfd_link_pie (link_info))
6481 {
6482 Elf_Internal_Ehdr *i_ehdrp = elf_elfheader (obfd);
6483 unsigned int num_segments = i_ehdrp->e_phnum;
6484 struct elf_obj_tdata *tdata = elf_tdata (obfd);
6485 Elf_Internal_Phdr *segment = tdata->phdr;
6486 Elf_Internal_Phdr *end_segment = &segment[num_segments];
6487
6488 /* Find the lowest p_vaddr in PT_LOAD segments. */
6489 bfd_vma p_vaddr = (bfd_vma) -1;
6490 for (; segment < end_segment; segment++)
6491 if (segment->p_type == PT_LOAD && p_vaddr > segment->p_vaddr)
6492 p_vaddr = segment->p_vaddr;
6493
6494 /* Set e_type to ET_EXEC if the lowest p_vaddr in PT_LOAD
6495 segments is non-zero. */
6496 if (p_vaddr)
6497 i_ehdrp->e_type = ET_EXEC;
6498 }
6499 return TRUE;
6500}
6501
252b5132 6502/* Assign file positions for all the reloc sections which are not part
a485e98e 6503 of the loadable file image, and the file position of section headers. */
252b5132 6504
0ce398f1
L
6505static bfd_boolean
6506_bfd_elf_assign_file_positions_for_non_load (bfd *abfd)
252b5132
RH
6507{
6508 file_ptr off;
e06efbf1 6509 Elf_Internal_Shdr **shdrpp, **end_shdrpp;
3e19fb8f 6510 Elf_Internal_Shdr *shdrp;
a485e98e
AM
6511 Elf_Internal_Ehdr *i_ehdrp;
6512 const struct elf_backend_data *bed;
252b5132 6513
12bd6957 6514 off = elf_next_file_pos (abfd);
252b5132 6515
e06efbf1
L
6516 shdrpp = elf_elfsections (abfd);
6517 end_shdrpp = shdrpp + elf_numsections (abfd);
6518 for (shdrpp++; shdrpp < end_shdrpp; shdrpp++)
252b5132 6519 {
252b5132 6520 shdrp = *shdrpp;
0ce398f1
L
6521 if (shdrp->sh_offset == -1)
6522 {
3e19fb8f 6523 asection *sec = shdrp->bfd_section;
0ce398f1
L
6524 bfd_boolean is_rel = (shdrp->sh_type == SHT_REL
6525 || shdrp->sh_type == SHT_RELA);
1ff6de03 6526 bfd_boolean is_ctf = sec && bfd_section_is_ctf (sec);
0ce398f1 6527 if (is_rel
1ff6de03 6528 || is_ctf
3e19fb8f 6529 || (sec != NULL && (sec->flags & SEC_ELF_COMPRESS)))
0ce398f1 6530 {
1ff6de03 6531 if (!is_rel && !is_ctf)
0ce398f1 6532 {
3e19fb8f
L
6533 const char *name = sec->name;
6534 struct bfd_elf_section_data *d;
6535
0ce398f1 6536 /* Compress DWARF debug sections. */
3e19fb8f 6537 if (!bfd_compress_section (abfd, sec,
0ce398f1
L
6538 shdrp->contents))
6539 return FALSE;
3e19fb8f
L
6540
6541 if (sec->compress_status == COMPRESS_SECTION_DONE
6542 && (abfd->flags & BFD_COMPRESS_GABI) == 0)
6543 {
6544 /* If section is compressed with zlib-gnu, convert
6545 section name from .debug_* to .zdebug_*. */
6546 char *new_name
6547 = convert_debug_to_zdebug (abfd, name);
6548 if (new_name == NULL)
6549 return FALSE;
6550 name = new_name;
6551 }
dd905818 6552 /* Add section name to section name section. */
3e19fb8f
L
6553 if (shdrp->sh_name != (unsigned int) -1)
6554 abort ();
6555 shdrp->sh_name
6556 = (unsigned int) _bfd_elf_strtab_add (elf_shstrtab (abfd),
6557 name, FALSE);
6558 d = elf_section_data (sec);
6559
dd905818 6560 /* Add reloc section name to section name section. */
3e19fb8f
L
6561 if (d->rel.hdr
6562 && !_bfd_elf_set_reloc_sh_name (abfd,
6563 d->rel.hdr,
6564 name, FALSE))
6565 return FALSE;
6566 if (d->rela.hdr
6567 && !_bfd_elf_set_reloc_sh_name (abfd,
6568 d->rela.hdr,
91cb26da 6569 name, TRUE))
3e19fb8f
L
6570 return FALSE;
6571
0ce398f1 6572 /* Update section size and contents. */
3e19fb8f
L
6573 shdrp->sh_size = sec->size;
6574 shdrp->contents = sec->contents;
0ce398f1
L
6575 shdrp->bfd_section->contents = NULL;
6576 }
1ff6de03
NA
6577 else if (is_ctf)
6578 {
6579 /* Update section size and contents. */
6580 shdrp->sh_size = sec->size;
6581 shdrp->contents = sec->contents;
6582 }
6583
0ce398f1
L
6584 off = _bfd_elf_assign_file_position_for_section (shdrp,
6585 off,
6586 TRUE);
6587 }
6588 }
252b5132
RH
6589 }
6590
3e19fb8f
L
6591 /* Place section name section after DWARF debug sections have been
6592 compressed. */
6593 _bfd_elf_strtab_finalize (elf_shstrtab (abfd));
6594 shdrp = &elf_tdata (abfd)->shstrtab_hdr;
6595 shdrp->sh_size = _bfd_elf_strtab_size (elf_shstrtab (abfd));
6596 off = _bfd_elf_assign_file_position_for_section (shdrp, off, TRUE);
6597
6598 /* Place the section headers. */
a485e98e
AM
6599 i_ehdrp = elf_elfheader (abfd);
6600 bed = get_elf_backend_data (abfd);
6601 off = align_file_position (off, 1 << bed->s->log_file_align);
6602 i_ehdrp->e_shoff = off;
6603 off += i_ehdrp->e_shnum * i_ehdrp->e_shentsize;
12bd6957 6604 elf_next_file_pos (abfd) = off;
0ce398f1
L
6605
6606 return TRUE;
252b5132
RH
6607}
6608
b34976b6 6609bfd_boolean
217aa764 6610_bfd_elf_write_object_contents (bfd *abfd)
252b5132 6611{
9c5bfbb7 6612 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
252b5132 6613 Elf_Internal_Shdr **i_shdrp;
b34976b6 6614 bfd_boolean failed;
9ad5cbcf 6615 unsigned int count, num_sec;
30e8ee25 6616 struct elf_obj_tdata *t;
252b5132
RH
6617
6618 if (! abfd->output_has_begun
217aa764 6619 && ! _bfd_elf_compute_section_file_positions (abfd, NULL))
b34976b6 6620 return FALSE;
db727370
JL
6621 /* Do not rewrite ELF data when the BFD has been opened for update.
6622 abfd->output_has_begun was set to TRUE on opening, so creation of new
6623 sections, and modification of existing section sizes was restricted.
6624 This means the ELF header, program headers and section headers can't have
6625 changed.
6626 If the contents of any sections has been modified, then those changes have
6627 already been written to the BFD. */
6628 else if (abfd->direction == both_direction)
6629 {
6630 BFD_ASSERT (abfd->output_has_begun);
6631 return TRUE;
6632 }
252b5132
RH
6633
6634 i_shdrp = elf_elfsections (abfd);
252b5132 6635
b34976b6 6636 failed = FALSE;
252b5132
RH
6637 bfd_map_over_sections (abfd, bed->s->write_relocs, &failed);
6638 if (failed)
b34976b6 6639 return FALSE;
252b5132 6640
0ce398f1
L
6641 if (!_bfd_elf_assign_file_positions_for_non_load (abfd))
6642 return FALSE;
252b5132 6643
c044fabd 6644 /* After writing the headers, we need to write the sections too... */
9ad5cbcf
AM
6645 num_sec = elf_numsections (abfd);
6646 for (count = 1; count < num_sec; count++)
252b5132 6647 {
3e19fb8f
L
6648 i_shdrp[count]->sh_name
6649 = _bfd_elf_strtab_offset (elf_shstrtab (abfd),
6650 i_shdrp[count]->sh_name);
252b5132 6651 if (bed->elf_backend_section_processing)
75506100
MR
6652 if (!(*bed->elf_backend_section_processing) (abfd, i_shdrp[count]))
6653 return FALSE;
252b5132
RH
6654 if (i_shdrp[count]->contents)
6655 {
dc810e39
AM
6656 bfd_size_type amt = i_shdrp[count]->sh_size;
6657
252b5132 6658 if (bfd_seek (abfd, i_shdrp[count]->sh_offset, SEEK_SET) != 0
dc810e39 6659 || bfd_bwrite (i_shdrp[count]->contents, amt, abfd) != amt)
b34976b6 6660 return FALSE;
252b5132
RH
6661 }
6662 }
6663
6664 /* Write out the section header names. */
30e8ee25 6665 t = elf_tdata (abfd);
26ae6d5e 6666 if (elf_shstrtab (abfd) != NULL
30e8ee25 6667 && (bfd_seek (abfd, t->shstrtab_hdr.sh_offset, SEEK_SET) != 0
08a40648 6668 || !_bfd_elf_strtab_emit (abfd, elf_shstrtab (abfd))))
b34976b6 6669 return FALSE;
252b5132 6670
cc364be6
AM
6671 if (!(*bed->elf_backend_final_write_processing) (abfd))
6672 return FALSE;
252b5132 6673
ff59fc36
RM
6674 if (!bed->s->write_shdrs_and_ehdr (abfd))
6675 return FALSE;
6676
6677 /* This is last since write_shdrs_and_ehdr can touch i_shdrp[0]. */
c0355132
AM
6678 if (t->o->build_id.after_write_object_contents != NULL)
6679 return (*t->o->build_id.after_write_object_contents) (abfd);
ff59fc36
RM
6680
6681 return TRUE;
252b5132
RH
6682}
6683
b34976b6 6684bfd_boolean
217aa764 6685_bfd_elf_write_corefile_contents (bfd *abfd)
252b5132 6686{
c044fabd 6687 /* Hopefully this can be done just like an object file. */
252b5132
RH
6688 return _bfd_elf_write_object_contents (abfd);
6689}
c044fabd
KH
6690
6691/* Given a section, search the header to find them. */
6692
cb33740c 6693unsigned int
198beae2 6694_bfd_elf_section_from_bfd_section (bfd *abfd, struct bfd_section *asect)
252b5132 6695{
9c5bfbb7 6696 const struct elf_backend_data *bed;
91d6fa6a 6697 unsigned int sec_index;
252b5132 6698
9ad5cbcf
AM
6699 if (elf_section_data (asect) != NULL
6700 && elf_section_data (asect)->this_idx != 0)
6701 return elf_section_data (asect)->this_idx;
6702
6703 if (bfd_is_abs_section (asect))
91d6fa6a 6704 sec_index = SHN_ABS;
af746e92 6705 else if (bfd_is_com_section (asect))
91d6fa6a 6706 sec_index = SHN_COMMON;
af746e92 6707 else if (bfd_is_und_section (asect))
91d6fa6a 6708 sec_index = SHN_UNDEF;
af746e92 6709 else
91d6fa6a 6710 sec_index = SHN_BAD;
252b5132 6711
af746e92 6712 bed = get_elf_backend_data (abfd);
252b5132
RH
6713 if (bed->elf_backend_section_from_bfd_section)
6714 {
91d6fa6a 6715 int retval = sec_index;
9ad5cbcf 6716
af746e92
AM
6717 if ((*bed->elf_backend_section_from_bfd_section) (abfd, asect, &retval))
6718 return retval;
252b5132
RH
6719 }
6720
91d6fa6a 6721 if (sec_index == SHN_BAD)
af746e92 6722 bfd_set_error (bfd_error_nonrepresentable_section);
252b5132 6723
91d6fa6a 6724 return sec_index;
252b5132
RH
6725}
6726
6727/* Given a BFD symbol, return the index in the ELF symbol table, or -1
6728 on error. */
6729
6730int
217aa764 6731_bfd_elf_symbol_from_bfd_symbol (bfd *abfd, asymbol **asym_ptr_ptr)
252b5132
RH
6732{
6733 asymbol *asym_ptr = *asym_ptr_ptr;
6734 int idx;
6735 flagword flags = asym_ptr->flags;
6736
6737 /* When gas creates relocations against local labels, it creates its
6738 own symbol for the section, but does put the symbol into the
6739 symbol chain, so udata is 0. When the linker is generating
6740 relocatable output, this section symbol may be for one of the
6741 input sections rather than the output section. */
6742 if (asym_ptr->udata.i == 0
6743 && (flags & BSF_SECTION_SYM)
6744 && asym_ptr->section)
6745 {
5372391b 6746 asection *sec;
252b5132
RH
6747 int indx;
6748
5372391b
AM
6749 sec = asym_ptr->section;
6750 if (sec->owner != abfd && sec->output_section != NULL)
6751 sec = sec->output_section;
6752 if (sec->owner == abfd
6753 && (indx = sec->index) < elf_num_section_syms (abfd)
4e89ac30 6754 && elf_section_syms (abfd)[indx] != NULL)
252b5132
RH
6755 asym_ptr->udata.i = elf_section_syms (abfd)[indx]->udata.i;
6756 }
6757
6758 idx = asym_ptr->udata.i;
6759
6760 if (idx == 0)
6761 {
6762 /* This case can occur when using --strip-symbol on a symbol
08a40648 6763 which is used in a relocation entry. */
4eca0228 6764 _bfd_error_handler
695344c0 6765 /* xgettext:c-format */
871b3ab2 6766 (_("%pB: symbol `%s' required but not present"),
d003868e 6767 abfd, bfd_asymbol_name (asym_ptr));
252b5132
RH
6768 bfd_set_error (bfd_error_no_symbols);
6769 return -1;
6770 }
6771
6772#if DEBUG & 4
6773 {
6774 fprintf (stderr,
cd9af601
AM
6775 "elf_symbol_from_bfd_symbol 0x%.8lx, name = %s, sym num = %d, flags = 0x%.8x\n",
6776 (long) asym_ptr, asym_ptr->name, idx, flags);
252b5132
RH
6777 fflush (stderr);
6778 }
6779#endif
6780
6781 return idx;
6782}
6783
84d1d650 6784/* Rewrite program header information. */
252b5132 6785
b34976b6 6786static bfd_boolean
84d1d650 6787rewrite_elf_program_header (bfd *ibfd, bfd *obfd)
252b5132 6788{
b34976b6
AM
6789 Elf_Internal_Ehdr *iehdr;
6790 struct elf_segment_map *map;
6791 struct elf_segment_map *map_first;
6792 struct elf_segment_map **pointer_to_map;
6793 Elf_Internal_Phdr *segment;
6794 asection *section;
6795 unsigned int i;
6796 unsigned int num_segments;
6797 bfd_boolean phdr_included = FALSE;
5c44b38e 6798 bfd_boolean p_paddr_valid;
b34976b6
AM
6799 bfd_vma maxpagesize;
6800 struct elf_segment_map *phdr_adjust_seg = NULL;
6801 unsigned int phdr_adjust_num = 0;
9c5bfbb7 6802 const struct elf_backend_data *bed;
bc67d8a6 6803
caf47ea6 6804 bed = get_elf_backend_data (ibfd);
252b5132
RH
6805 iehdr = elf_elfheader (ibfd);
6806
bc67d8a6 6807 map_first = NULL;
c044fabd 6808 pointer_to_map = &map_first;
252b5132
RH
6809
6810 num_segments = elf_elfheader (ibfd)->e_phnum;
bc67d8a6
NC
6811 maxpagesize = get_elf_backend_data (obfd)->maxpagesize;
6812
6813 /* Returns the end address of the segment + 1. */
aecc8f8a
AM
6814#define SEGMENT_END(segment, start) \
6815 (start + (segment->p_memsz > segment->p_filesz \
6816 ? segment->p_memsz : segment->p_filesz))
bc67d8a6 6817
eecdbe52
JJ
6818#define SECTION_SIZE(section, segment) \
6819 (((section->flags & (SEC_HAS_CONTENTS | SEC_THREAD_LOCAL)) \
6820 != SEC_THREAD_LOCAL || segment->p_type == PT_TLS) \
eea6121a 6821 ? section->size : 0)
eecdbe52 6822
b34976b6 6823 /* Returns TRUE if the given section is contained within
bc67d8a6 6824 the given segment. VMA addresses are compared. */
aecc8f8a
AM
6825#define IS_CONTAINED_BY_VMA(section, segment) \
6826 (section->vma >= segment->p_vaddr \
eecdbe52 6827 && (section->vma + SECTION_SIZE (section, segment) \
aecc8f8a 6828 <= (SEGMENT_END (segment, segment->p_vaddr))))
c044fabd 6829
b34976b6 6830 /* Returns TRUE if the given section is contained within
bc67d8a6 6831 the given segment. LMA addresses are compared. */
aecc8f8a
AM
6832#define IS_CONTAINED_BY_LMA(section, segment, base) \
6833 (section->lma >= base \
beab4532 6834 && (section->lma + SECTION_SIZE (section, segment) >= section->lma) \
eecdbe52 6835 && (section->lma + SECTION_SIZE (section, segment) \
aecc8f8a 6836 <= SEGMENT_END (segment, base)))
252b5132 6837
0efc80c8
L
6838 /* Handle PT_NOTE segment. */
6839#define IS_NOTE(p, s) \
aecc8f8a 6840 (p->p_type == PT_NOTE \
0efc80c8 6841 && elf_section_type (s) == SHT_NOTE \
aecc8f8a 6842 && (bfd_vma) s->filepos >= p->p_offset \
cb3ff1e5 6843 && ((bfd_vma) s->filepos + s->size \
aecc8f8a 6844 <= p->p_offset + p->p_filesz))
252b5132 6845
0efc80c8
L
6846 /* Special case: corefile "NOTE" section containing regs, prpsinfo
6847 etc. */
6848#define IS_COREFILE_NOTE(p, s) \
6849 (IS_NOTE (p, s) \
6850 && bfd_get_format (ibfd) == bfd_core \
6851 && s->vma == 0 \
6852 && s->lma == 0)
6853
252b5132
RH
6854 /* The complicated case when p_vaddr is 0 is to handle the Solaris
6855 linker, which generates a PT_INTERP section with p_vaddr and
6856 p_memsz set to 0. */
aecc8f8a
AM
6857#define IS_SOLARIS_PT_INTERP(p, s) \
6858 (p->p_vaddr == 0 \
6859 && p->p_paddr == 0 \
6860 && p->p_memsz == 0 \
6861 && p->p_filesz > 0 \
6862 && (s->flags & SEC_HAS_CONTENTS) != 0 \
eea6121a 6863 && s->size > 0 \
aecc8f8a 6864 && (bfd_vma) s->filepos >= p->p_offset \
cb3ff1e5 6865 && ((bfd_vma) s->filepos + s->size \
aecc8f8a 6866 <= p->p_offset + p->p_filesz))
5c440b1e 6867
bc67d8a6
NC
6868 /* Decide if the given section should be included in the given segment.
6869 A section will be included if:
f5ffc919 6870 1. It is within the address space of the segment -- we use the LMA
08a40648 6871 if that is set for the segment and the VMA otherwise,
0efc80c8 6872 2. It is an allocated section or a NOTE section in a PT_NOTE
d324f6d6 6873 segment.
bc67d8a6 6874 3. There is an output section associated with it,
eecdbe52 6875 4. The section has not already been allocated to a previous segment.
2b05f1b7 6876 5. PT_GNU_STACK segments do not include any sections.
03394ac9 6877 6. PT_TLS segment includes only SHF_TLS sections.
6f79b219
JJ
6878 7. SHF_TLS sections are only in PT_TLS or PT_LOAD segments.
6879 8. PT_DYNAMIC should not contain empty sections at the beginning
08a40648 6880 (with the possible exception of .dynamic). */
9f17e2a6 6881#define IS_SECTION_IN_INPUT_SEGMENT(section, segment, bed) \
2b05f1b7
L
6882 ((((segment->p_paddr \
6883 ? IS_CONTAINED_BY_LMA (section, segment, segment->p_paddr) \
6884 : IS_CONTAINED_BY_VMA (section, segment)) \
6885 && (section->flags & SEC_ALLOC) != 0) \
0efc80c8 6886 || IS_NOTE (segment, section)) \
2b05f1b7
L
6887 && segment->p_type != PT_GNU_STACK \
6888 && (segment->p_type != PT_TLS \
6889 || (section->flags & SEC_THREAD_LOCAL)) \
6890 && (segment->p_type == PT_LOAD \
6891 || segment->p_type == PT_TLS \
6892 || (section->flags & SEC_THREAD_LOCAL) == 0) \
6893 && (segment->p_type != PT_DYNAMIC \
6894 || SECTION_SIZE (section, segment) > 0 \
6895 || (segment->p_paddr \
6896 ? segment->p_paddr != section->lma \
6897 : segment->p_vaddr != section->vma) \
fd361982 6898 || (strcmp (bfd_section_name (section), ".dynamic") == 0)) \
9933dc52 6899 && (segment->p_type != PT_LOAD || !section->segment_mark))
bc67d8a6 6900
9f17e2a6
L
6901/* If the output section of a section in the input segment is NULL,
6902 it is removed from the corresponding output segment. */
6903#define INCLUDE_SECTION_IN_SEGMENT(section, segment, bed) \
6904 (IS_SECTION_IN_INPUT_SEGMENT (section, segment, bed) \
6905 && section->output_section != NULL)
6906
b34976b6 6907 /* Returns TRUE iff seg1 starts after the end of seg2. */
b5f852ea
NC
6908#define SEGMENT_AFTER_SEGMENT(seg1, seg2, field) \
6909 (seg1->field >= SEGMENT_END (seg2, seg2->field))
6910
6911 /* Returns TRUE iff seg1 and seg2 overlap. Segments overlap iff both
6912 their VMA address ranges and their LMA address ranges overlap.
6913 It is possible to have overlapping VMA ranges without overlapping LMA
6914 ranges. RedBoot images for example can have both .data and .bss mapped
6915 to the same VMA range, but with the .data section mapped to a different
6916 LMA. */
aecc8f8a 6917#define SEGMENT_OVERLAPS(seg1, seg2) \
b5f852ea 6918 ( !(SEGMENT_AFTER_SEGMENT (seg1, seg2, p_vaddr) \
08a40648 6919 || SEGMENT_AFTER_SEGMENT (seg2, seg1, p_vaddr)) \
b5f852ea 6920 && !(SEGMENT_AFTER_SEGMENT (seg1, seg2, p_paddr) \
08a40648 6921 || SEGMENT_AFTER_SEGMENT (seg2, seg1, p_paddr)))
bc67d8a6
NC
6922
6923 /* Initialise the segment mark field. */
6924 for (section = ibfd->sections; section != NULL; section = section->next)
b34976b6 6925 section->segment_mark = FALSE;
bc67d8a6 6926
5c44b38e
AM
6927 /* The Solaris linker creates program headers in which all the
6928 p_paddr fields are zero. When we try to objcopy or strip such a
6929 file, we get confused. Check for this case, and if we find it
6930 don't set the p_paddr_valid fields. */
6931 p_paddr_valid = FALSE;
6932 for (i = 0, segment = elf_tdata (ibfd)->phdr;
6933 i < num_segments;
6934 i++, segment++)
6935 if (segment->p_paddr != 0)
6936 {
6937 p_paddr_valid = TRUE;
6938 break;
6939 }
6940
252b5132 6941 /* Scan through the segments specified in the program header
bc67d8a6 6942 of the input BFD. For this first scan we look for overlaps
9ad5cbcf 6943 in the loadable segments. These can be created by weird
aecc8f8a 6944 parameters to objcopy. Also, fix some solaris weirdness. */
bc67d8a6
NC
6945 for (i = 0, segment = elf_tdata (ibfd)->phdr;
6946 i < num_segments;
c044fabd 6947 i++, segment++)
252b5132 6948 {
252b5132 6949 unsigned int j;
c044fabd 6950 Elf_Internal_Phdr *segment2;
252b5132 6951
aecc8f8a
AM
6952 if (segment->p_type == PT_INTERP)
6953 for (section = ibfd->sections; section; section = section->next)
6954 if (IS_SOLARIS_PT_INTERP (segment, section))
6955 {
6956 /* Mininal change so that the normal section to segment
4cc11e76 6957 assignment code will work. */
aecc8f8a
AM
6958 segment->p_vaddr = section->vma;
6959 break;
6960 }
6961
bc67d8a6 6962 if (segment->p_type != PT_LOAD)
b10a8ae0
L
6963 {
6964 /* Remove PT_GNU_RELRO segment. */
6965 if (segment->p_type == PT_GNU_RELRO)
6966 segment->p_type = PT_NULL;
6967 continue;
6968 }
c044fabd 6969
bc67d8a6 6970 /* Determine if this segment overlaps any previous segments. */
0067a569 6971 for (j = 0, segment2 = elf_tdata (ibfd)->phdr; j < i; j++, segment2++)
bc67d8a6
NC
6972 {
6973 bfd_signed_vma extra_length;
c044fabd 6974
bc67d8a6 6975 if (segment2->p_type != PT_LOAD
0067a569 6976 || !SEGMENT_OVERLAPS (segment, segment2))
bc67d8a6 6977 continue;
c044fabd 6978
bc67d8a6
NC
6979 /* Merge the two segments together. */
6980 if (segment2->p_vaddr < segment->p_vaddr)
6981 {
c044fabd 6982 /* Extend SEGMENT2 to include SEGMENT and then delete
08a40648 6983 SEGMENT. */
0067a569
AM
6984 extra_length = (SEGMENT_END (segment, segment->p_vaddr)
6985 - SEGMENT_END (segment2, segment2->p_vaddr));
c044fabd 6986
bc67d8a6
NC
6987 if (extra_length > 0)
6988 {
0067a569 6989 segment2->p_memsz += extra_length;
bc67d8a6
NC
6990 segment2->p_filesz += extra_length;
6991 }
c044fabd 6992
bc67d8a6 6993 segment->p_type = PT_NULL;
c044fabd 6994
bc67d8a6
NC
6995 /* Since we have deleted P we must restart the outer loop. */
6996 i = 0;
6997 segment = elf_tdata (ibfd)->phdr;
6998 break;
6999 }
7000 else
7001 {
c044fabd 7002 /* Extend SEGMENT to include SEGMENT2 and then delete
08a40648 7003 SEGMENT2. */
0067a569
AM
7004 extra_length = (SEGMENT_END (segment2, segment2->p_vaddr)
7005 - SEGMENT_END (segment, segment->p_vaddr));
c044fabd 7006
bc67d8a6
NC
7007 if (extra_length > 0)
7008 {
0067a569 7009 segment->p_memsz += extra_length;
bc67d8a6
NC
7010 segment->p_filesz += extra_length;
7011 }
c044fabd 7012
bc67d8a6
NC
7013 segment2->p_type = PT_NULL;
7014 }
7015 }
7016 }
c044fabd 7017
bc67d8a6
NC
7018 /* The second scan attempts to assign sections to segments. */
7019 for (i = 0, segment = elf_tdata (ibfd)->phdr;
7020 i < num_segments;
0067a569 7021 i++, segment++)
bc67d8a6 7022 {
0067a569
AM
7023 unsigned int section_count;
7024 asection **sections;
7025 asection *output_section;
7026 unsigned int isec;
9933dc52
AM
7027 asection *matching_lma;
7028 asection *suggested_lma;
0067a569 7029 unsigned int j;
dc810e39 7030 bfd_size_type amt;
0067a569 7031 asection *first_section;
bc67d8a6
NC
7032
7033 if (segment->p_type == PT_NULL)
7034 continue;
c044fabd 7035
9f17e2a6 7036 first_section = NULL;
bc67d8a6 7037 /* Compute how many sections might be placed into this segment. */
b5f852ea
NC
7038 for (section = ibfd->sections, section_count = 0;
7039 section != NULL;
7040 section = section->next)
9f17e2a6
L
7041 {
7042 /* Find the first section in the input segment, which may be
7043 removed from the corresponding output segment. */
7044 if (IS_SECTION_IN_INPUT_SEGMENT (section, segment, bed))
7045 {
7046 if (first_section == NULL)
7047 first_section = section;
7048 if (section->output_section != NULL)
7049 ++section_count;
7050 }
7051 }
811072d8 7052
b5f852ea
NC
7053 /* Allocate a segment map big enough to contain
7054 all of the sections we have selected. */
00bee008
AM
7055 amt = sizeof (struct elf_segment_map) - sizeof (asection *);
7056 amt += (bfd_size_type) section_count * sizeof (asection *);
a50b1753 7057 map = (struct elf_segment_map *) bfd_zalloc (obfd, amt);
bc67d8a6 7058 if (map == NULL)
b34976b6 7059 return FALSE;
252b5132
RH
7060
7061 /* Initialise the fields of the segment map. Default to
7062 using the physical address of the segment in the input BFD. */
0067a569
AM
7063 map->next = NULL;
7064 map->p_type = segment->p_type;
7065 map->p_flags = segment->p_flags;
bc67d8a6 7066 map->p_flags_valid = 1;
55d55ac7 7067
9f17e2a6
L
7068 /* If the first section in the input segment is removed, there is
7069 no need to preserve segment physical address in the corresponding
7070 output segment. */
945c025a 7071 if (!first_section || first_section->output_section != NULL)
9f17e2a6
L
7072 {
7073 map->p_paddr = segment->p_paddr;
5c44b38e 7074 map->p_paddr_valid = p_paddr_valid;
9f17e2a6 7075 }
252b5132
RH
7076
7077 /* Determine if this segment contains the ELF file header
7078 and if it contains the program headers themselves. */
bc67d8a6
NC
7079 map->includes_filehdr = (segment->p_offset == 0
7080 && segment->p_filesz >= iehdr->e_ehsize);
bc67d8a6 7081 map->includes_phdrs = 0;
252b5132 7082
0067a569 7083 if (!phdr_included || segment->p_type != PT_LOAD)
252b5132 7084 {
bc67d8a6
NC
7085 map->includes_phdrs =
7086 (segment->p_offset <= (bfd_vma) iehdr->e_phoff
7087 && (segment->p_offset + segment->p_filesz
252b5132
RH
7088 >= ((bfd_vma) iehdr->e_phoff
7089 + iehdr->e_phnum * iehdr->e_phentsize)));
c044fabd 7090
bc67d8a6 7091 if (segment->p_type == PT_LOAD && map->includes_phdrs)
b34976b6 7092 phdr_included = TRUE;
252b5132
RH
7093 }
7094
bc67d8a6 7095 if (section_count == 0)
252b5132
RH
7096 {
7097 /* Special segments, such as the PT_PHDR segment, may contain
7098 no sections, but ordinary, loadable segments should contain
1ed89aa9 7099 something. They are allowed by the ELF spec however, so only
07d6d2b8 7100 a warning is produced.
f98450c6
NC
7101 There is however the valid use case of embedded systems which
7102 have segments with p_filesz of 0 and a p_memsz > 0 to initialize
7103 flash memory with zeros. No warning is shown for that case. */
7104 if (segment->p_type == PT_LOAD
7105 && (segment->p_filesz > 0 || segment->p_memsz == 0))
7106 /* xgettext:c-format */
9793eb77
AM
7107 _bfd_error_handler
7108 (_("%pB: warning: empty loadable segment detected"
7109 " at vaddr=%#" PRIx64 ", is this intentional?"),
7110 ibfd, (uint64_t) segment->p_vaddr);
252b5132 7111
5d695627 7112 map->p_vaddr_offset = segment->p_vaddr;
bc67d8a6 7113 map->count = 0;
c044fabd
KH
7114 *pointer_to_map = map;
7115 pointer_to_map = &map->next;
252b5132
RH
7116
7117 continue;
7118 }
7119
7120 /* Now scan the sections in the input BFD again and attempt
7121 to add their corresponding output sections to the segment map.
7122 The problem here is how to handle an output section which has
7123 been moved (ie had its LMA changed). There are four possibilities:
7124
7125 1. None of the sections have been moved.
7126 In this case we can continue to use the segment LMA from the
7127 input BFD.
7128
7129 2. All of the sections have been moved by the same amount.
7130 In this case we can change the segment's LMA to match the LMA
7131 of the first section.
7132
7133 3. Some of the sections have been moved, others have not.
7134 In this case those sections which have not been moved can be
7135 placed in the current segment which will have to have its size,
7136 and possibly its LMA changed, and a new segment or segments will
7137 have to be created to contain the other sections.
7138
b5f852ea 7139 4. The sections have been moved, but not by the same amount.
252b5132
RH
7140 In this case we can change the segment's LMA to match the LMA
7141 of the first section and we will have to create a new segment
7142 or segments to contain the other sections.
7143
7144 In order to save time, we allocate an array to hold the section
7145 pointers that we are interested in. As these sections get assigned
7146 to a segment, they are removed from this array. */
7147
a50b1753 7148 sections = (asection **) bfd_malloc2 (section_count, sizeof (asection *));
252b5132 7149 if (sections == NULL)
b34976b6 7150 return FALSE;
252b5132
RH
7151
7152 /* Step One: Scan for segment vs section LMA conflicts.
7153 Also add the sections to the section array allocated above.
7154 Also add the sections to the current segment. In the common
7155 case, where the sections have not been moved, this means that
7156 we have completely filled the segment, and there is nothing
7157 more to do. */
252b5132 7158 isec = 0;
9933dc52
AM
7159 matching_lma = NULL;
7160 suggested_lma = NULL;
252b5132 7161
461c4b2e 7162 for (section = first_section, j = 0;
bc67d8a6
NC
7163 section != NULL;
7164 section = section->next)
252b5132 7165 {
caf47ea6 7166 if (INCLUDE_SECTION_IN_SEGMENT (section, segment, bed))
c0f7859b 7167 {
bc67d8a6
NC
7168 output_section = section->output_section;
7169
0067a569 7170 sections[j++] = section;
252b5132
RH
7171
7172 /* The Solaris native linker always sets p_paddr to 0.
7173 We try to catch that case here, and set it to the
5e8d7549
NC
7174 correct value. Note - some backends require that
7175 p_paddr be left as zero. */
5c44b38e 7176 if (!p_paddr_valid
4455705d 7177 && segment->p_vaddr != 0
0067a569 7178 && !bed->want_p_paddr_set_to_zero
252b5132 7179 && isec == 0
bc67d8a6 7180 && output_section->lma != 0
9933dc52
AM
7181 && (align_power (segment->p_vaddr
7182 + (map->includes_filehdr
7183 ? iehdr->e_ehsize : 0)
7184 + (map->includes_phdrs
7185 ? iehdr->e_phnum * iehdr->e_phentsize
7186 : 0),
7187 output_section->alignment_power)
7188 == output_section->vma))
bc67d8a6 7189 map->p_paddr = segment->p_vaddr;
252b5132
RH
7190
7191 /* Match up the physical address of the segment with the
7192 LMA address of the output section. */
bc67d8a6 7193 if (IS_CONTAINED_BY_LMA (output_section, segment, map->p_paddr)
5e8d7549 7194 || IS_COREFILE_NOTE (segment, section)
0067a569
AM
7195 || (bed->want_p_paddr_set_to_zero
7196 && IS_CONTAINED_BY_VMA (output_section, segment)))
252b5132 7197 {
9933dc52
AM
7198 if (matching_lma == NULL
7199 || output_section->lma < matching_lma->lma)
7200 matching_lma = output_section;
252b5132
RH
7201
7202 /* We assume that if the section fits within the segment
bc67d8a6 7203 then it does not overlap any other section within that
252b5132 7204 segment. */
0067a569
AM
7205 map->sections[isec++] = output_section;
7206 }
9933dc52
AM
7207 else if (suggested_lma == NULL)
7208 suggested_lma = output_section;
147d51c2
L
7209
7210 if (j == section_count)
7211 break;
252b5132
RH
7212 }
7213 }
7214
bc67d8a6 7215 BFD_ASSERT (j == section_count);
252b5132
RH
7216
7217 /* Step Two: Adjust the physical address of the current segment,
7218 if necessary. */
bc67d8a6 7219 if (isec == section_count)
252b5132
RH
7220 {
7221 /* All of the sections fitted within the segment as currently
7222 specified. This is the default case. Add the segment to
7223 the list of built segments and carry on to process the next
7224 program header in the input BFD. */
bc67d8a6 7225 map->count = section_count;
c044fabd
KH
7226 *pointer_to_map = map;
7227 pointer_to_map = &map->next;
08a40648 7228
5c44b38e 7229 if (p_paddr_valid
30fe1832
AM
7230 && !bed->want_p_paddr_set_to_zero)
7231 {
7232 bfd_vma hdr_size = 0;
7233 if (map->includes_filehdr)
7234 hdr_size = iehdr->e_ehsize;
7235 if (map->includes_phdrs)
7236 hdr_size += iehdr->e_phnum * iehdr->e_phentsize;
7237
7238 /* Account for padding before the first section in the
7239 segment. */
7240 map->p_vaddr_offset = map->p_paddr + hdr_size - matching_lma->lma;
7241 }
08a40648 7242
252b5132
RH
7243 free (sections);
7244 continue;
7245 }
252b5132
RH
7246 else
7247 {
9933dc52
AM
7248 /* Change the current segment's physical address to match
7249 the LMA of the first section that fitted, or if no
7250 section fitted, the first section. */
7251 if (matching_lma == NULL)
7252 matching_lma = suggested_lma;
7253
7254 map->p_paddr = matching_lma->lma;
72730e0c 7255
bc67d8a6
NC
7256 /* Offset the segment physical address from the lma
7257 to allow for space taken up by elf headers. */
9933dc52 7258 if (map->includes_phdrs)
010c8431 7259 {
9933dc52
AM
7260 map->p_paddr -= iehdr->e_phnum * iehdr->e_phentsize;
7261
7262 /* iehdr->e_phnum is just an estimate of the number
7263 of program headers that we will need. Make a note
7264 here of the number we used and the segment we chose
7265 to hold these headers, so that we can adjust the
7266 offset when we know the correct value. */
7267 phdr_adjust_num = iehdr->e_phnum;
7268 phdr_adjust_seg = map;
010c8431 7269 }
252b5132 7270
9933dc52 7271 if (map->includes_filehdr)
bc67d8a6 7272 {
9933dc52
AM
7273 bfd_vma align = (bfd_vma) 1 << matching_lma->alignment_power;
7274 map->p_paddr -= iehdr->e_ehsize;
7275 /* We've subtracted off the size of headers from the
7276 first section lma, but there may have been some
7277 alignment padding before that section too. Try to
7278 account for that by adjusting the segment lma down to
7279 the same alignment. */
7280 if (segment->p_align != 0 && segment->p_align < align)
7281 align = segment->p_align;
7282 map->p_paddr &= -align;
bc67d8a6 7283 }
252b5132
RH
7284 }
7285
7286 /* Step Three: Loop over the sections again, this time assigning
caf47ea6 7287 those that fit to the current segment and removing them from the
252b5132
RH
7288 sections array; but making sure not to leave large gaps. Once all
7289 possible sections have been assigned to the current segment it is
7290 added to the list of built segments and if sections still remain
7291 to be assigned, a new segment is constructed before repeating
7292 the loop. */
7293 isec = 0;
7294 do
7295 {
bc67d8a6 7296 map->count = 0;
9933dc52 7297 suggested_lma = NULL;
252b5132
RH
7298
7299 /* Fill the current segment with sections that fit. */
bc67d8a6 7300 for (j = 0; j < section_count; j++)
252b5132 7301 {
bc67d8a6 7302 section = sections[j];
252b5132 7303
bc67d8a6 7304 if (section == NULL)
252b5132
RH
7305 continue;
7306
bc67d8a6 7307 output_section = section->output_section;
252b5132 7308
bc67d8a6 7309 BFD_ASSERT (output_section != NULL);
c044fabd 7310
bc67d8a6
NC
7311 if (IS_CONTAINED_BY_LMA (output_section, segment, map->p_paddr)
7312 || IS_COREFILE_NOTE (segment, section))
252b5132 7313 {
bc67d8a6 7314 if (map->count == 0)
252b5132
RH
7315 {
7316 /* If the first section in a segment does not start at
bc67d8a6
NC
7317 the beginning of the segment, then something is
7318 wrong. */
9933dc52
AM
7319 if (align_power (map->p_paddr
7320 + (map->includes_filehdr
7321 ? iehdr->e_ehsize : 0)
7322 + (map->includes_phdrs
7323 ? iehdr->e_phnum * iehdr->e_phentsize
7324 : 0),
7325 output_section->alignment_power)
7326 != output_section->lma)
9aea1e31 7327 goto sorry;
252b5132
RH
7328 }
7329 else
7330 {
0067a569 7331 asection *prev_sec;
252b5132 7332
bc67d8a6 7333 prev_sec = map->sections[map->count - 1];
252b5132
RH
7334
7335 /* If the gap between the end of the previous section
bc67d8a6
NC
7336 and the start of this section is more than
7337 maxpagesize then we need to start a new segment. */
eea6121a 7338 if ((BFD_ALIGN (prev_sec->lma + prev_sec->size,
079e9a2f 7339 maxpagesize)
caf47ea6 7340 < BFD_ALIGN (output_section->lma, maxpagesize))
0067a569 7341 || (prev_sec->lma + prev_sec->size
079e9a2f 7342 > output_section->lma))
252b5132 7343 {
9933dc52
AM
7344 if (suggested_lma == NULL)
7345 suggested_lma = output_section;
252b5132
RH
7346
7347 continue;
7348 }
7349 }
7350
bc67d8a6 7351 map->sections[map->count++] = output_section;
252b5132
RH
7352 ++isec;
7353 sections[j] = NULL;
9933dc52
AM
7354 if (segment->p_type == PT_LOAD)
7355 section->segment_mark = TRUE;
0067a569 7356 }
9933dc52
AM
7357 else if (suggested_lma == NULL)
7358 suggested_lma = output_section;
252b5132
RH
7359 }
7360
beab4532
NC
7361 /* PR 23932. A corrupt input file may contain sections that cannot
7362 be assigned to any segment - because for example they have a
7363 negative size - or segments that do not contain any sections. */
7364 if (map->count == 0)
7365 {
9aea1e31
AM
7366 sorry:
7367 bfd_set_error (bfd_error_sorry);
beab4532
NC
7368 free (sections);
7369 return FALSE;
7370 }
252b5132
RH
7371
7372 /* Add the current segment to the list of built segments. */
c044fabd
KH
7373 *pointer_to_map = map;
7374 pointer_to_map = &map->next;
252b5132 7375
bc67d8a6 7376 if (isec < section_count)
252b5132
RH
7377 {
7378 /* We still have not allocated all of the sections to
7379 segments. Create a new segment here, initialise it
7380 and carry on looping. */
00bee008
AM
7381 amt = sizeof (struct elf_segment_map) - sizeof (asection *);
7382 amt += (bfd_size_type) section_count * sizeof (asection *);
5964fc3a 7383 map = (struct elf_segment_map *) bfd_zalloc (obfd, amt);
bc67d8a6 7384 if (map == NULL)
5ed6aba4
NC
7385 {
7386 free (sections);
7387 return FALSE;
7388 }
252b5132
RH
7389
7390 /* Initialise the fields of the segment map. Set the physical
7391 physical address to the LMA of the first section that has
7392 not yet been assigned. */
0067a569
AM
7393 map->next = NULL;
7394 map->p_type = segment->p_type;
7395 map->p_flags = segment->p_flags;
7396 map->p_flags_valid = 1;
9933dc52 7397 map->p_paddr = suggested_lma->lma;
5c44b38e 7398 map->p_paddr_valid = p_paddr_valid;
bc67d8a6 7399 map->includes_filehdr = 0;
0067a569 7400 map->includes_phdrs = 0;
252b5132
RH
7401 }
7402 }
bc67d8a6 7403 while (isec < section_count);
252b5132
RH
7404
7405 free (sections);
7406 }
7407
12bd6957 7408 elf_seg_map (obfd) = map_first;
bc67d8a6
NC
7409
7410 /* If we had to estimate the number of program headers that were
9ad5cbcf 7411 going to be needed, then check our estimate now and adjust
bc67d8a6
NC
7412 the offset if necessary. */
7413 if (phdr_adjust_seg != NULL)
7414 {
7415 unsigned int count;
c044fabd 7416
bc67d8a6 7417 for (count = 0, map = map_first; map != NULL; map = map->next)
c044fabd 7418 count++;
252b5132 7419
bc67d8a6
NC
7420 if (count > phdr_adjust_num)
7421 phdr_adjust_seg->p_paddr
7422 -= (count - phdr_adjust_num) * iehdr->e_phentsize;
9933dc52
AM
7423
7424 for (map = map_first; map != NULL; map = map->next)
7425 if (map->p_type == PT_PHDR)
7426 {
7427 bfd_vma adjust
7428 = phdr_adjust_seg->includes_filehdr ? iehdr->e_ehsize : 0;
7429 map->p_paddr = phdr_adjust_seg->p_paddr + adjust;
7430 break;
7431 }
bc67d8a6 7432 }
c044fabd 7433
bc67d8a6 7434#undef SEGMENT_END
eecdbe52 7435#undef SECTION_SIZE
bc67d8a6
NC
7436#undef IS_CONTAINED_BY_VMA
7437#undef IS_CONTAINED_BY_LMA
0efc80c8 7438#undef IS_NOTE
252b5132 7439#undef IS_COREFILE_NOTE
bc67d8a6 7440#undef IS_SOLARIS_PT_INTERP
9f17e2a6 7441#undef IS_SECTION_IN_INPUT_SEGMENT
bc67d8a6
NC
7442#undef INCLUDE_SECTION_IN_SEGMENT
7443#undef SEGMENT_AFTER_SEGMENT
7444#undef SEGMENT_OVERLAPS
b34976b6 7445 return TRUE;
252b5132
RH
7446}
7447
84d1d650
L
7448/* Copy ELF program header information. */
7449
7450static bfd_boolean
7451copy_elf_program_header (bfd *ibfd, bfd *obfd)
7452{
7453 Elf_Internal_Ehdr *iehdr;
7454 struct elf_segment_map *map;
7455 struct elf_segment_map *map_first;
7456 struct elf_segment_map **pointer_to_map;
7457 Elf_Internal_Phdr *segment;
7458 unsigned int i;
7459 unsigned int num_segments;
7460 bfd_boolean phdr_included = FALSE;
88967714 7461 bfd_boolean p_paddr_valid;
84d1d650
L
7462
7463 iehdr = elf_elfheader (ibfd);
7464
7465 map_first = NULL;
7466 pointer_to_map = &map_first;
7467
88967714
AM
7468 /* If all the segment p_paddr fields are zero, don't set
7469 map->p_paddr_valid. */
7470 p_paddr_valid = FALSE;
84d1d650 7471 num_segments = elf_elfheader (ibfd)->e_phnum;
88967714
AM
7472 for (i = 0, segment = elf_tdata (ibfd)->phdr;
7473 i < num_segments;
7474 i++, segment++)
7475 if (segment->p_paddr != 0)
7476 {
7477 p_paddr_valid = TRUE;
7478 break;
7479 }
7480
84d1d650
L
7481 for (i = 0, segment = elf_tdata (ibfd)->phdr;
7482 i < num_segments;
7483 i++, segment++)
7484 {
7485 asection *section;
7486 unsigned int section_count;
7487 bfd_size_type amt;
7488 Elf_Internal_Shdr *this_hdr;
53020534 7489 asection *first_section = NULL;
a76e6f2f 7490 asection *lowest_section;
84d1d650 7491
84d1d650
L
7492 /* Compute how many sections are in this segment. */
7493 for (section = ibfd->sections, section_count = 0;
7494 section != NULL;
7495 section = section->next)
7496 {
7497 this_hdr = &(elf_section_data(section)->this_hdr);
f4638467 7498 if (ELF_SECTION_IN_SEGMENT (this_hdr, segment))
3271a814 7499 {
a76e6f2f
AM
7500 if (first_section == NULL)
7501 first_section = section;
3271a814
NS
7502 section_count++;
7503 }
84d1d650
L
7504 }
7505
7506 /* Allocate a segment map big enough to contain
7507 all of the sections we have selected. */
00bee008
AM
7508 amt = sizeof (struct elf_segment_map) - sizeof (asection *);
7509 amt += (bfd_size_type) section_count * sizeof (asection *);
a50b1753 7510 map = (struct elf_segment_map *) bfd_zalloc (obfd, amt);
84d1d650
L
7511 if (map == NULL)
7512 return FALSE;
7513
7514 /* Initialize the fields of the output segment map with the
7515 input segment. */
7516 map->next = NULL;
7517 map->p_type = segment->p_type;
7518 map->p_flags = segment->p_flags;
7519 map->p_flags_valid = 1;
7520 map->p_paddr = segment->p_paddr;
88967714 7521 map->p_paddr_valid = p_paddr_valid;
3f570048
AM
7522 map->p_align = segment->p_align;
7523 map->p_align_valid = 1;
3271a814 7524 map->p_vaddr_offset = 0;
84d1d650 7525
04c3a755
NS
7526 if (map->p_type == PT_GNU_RELRO
7527 || map->p_type == PT_GNU_STACK)
b10a8ae0
L
7528 {
7529 /* The PT_GNU_RELRO segment may contain the first a few
7530 bytes in the .got.plt section even if the whole .got.plt
7531 section isn't in the PT_GNU_RELRO segment. We won't
04c3a755
NS
7532 change the size of the PT_GNU_RELRO segment.
7533 Similarly, PT_GNU_STACK size is significant on uclinux
7534 systems. */
9433b9b1 7535 map->p_size = segment->p_memsz;
b10a8ae0
L
7536 map->p_size_valid = 1;
7537 }
7538
84d1d650
L
7539 /* Determine if this segment contains the ELF file header
7540 and if it contains the program headers themselves. */
7541 map->includes_filehdr = (segment->p_offset == 0
7542 && segment->p_filesz >= iehdr->e_ehsize);
7543
7544 map->includes_phdrs = 0;
7545 if (! phdr_included || segment->p_type != PT_LOAD)
7546 {
7547 map->includes_phdrs =
7548 (segment->p_offset <= (bfd_vma) iehdr->e_phoff
7549 && (segment->p_offset + segment->p_filesz
7550 >= ((bfd_vma) iehdr->e_phoff
7551 + iehdr->e_phnum * iehdr->e_phentsize)));
7552
7553 if (segment->p_type == PT_LOAD && map->includes_phdrs)
7554 phdr_included = TRUE;
7555 }
7556
bbefd0a9 7557 lowest_section = NULL;
84d1d650
L
7558 if (section_count != 0)
7559 {
7560 unsigned int isec = 0;
7561
53020534 7562 for (section = first_section;
84d1d650
L
7563 section != NULL;
7564 section = section->next)
7565 {
7566 this_hdr = &(elf_section_data(section)->this_hdr);
f4638467 7567 if (ELF_SECTION_IN_SEGMENT (this_hdr, segment))
53020534
L
7568 {
7569 map->sections[isec++] = section->output_section;
a76e6f2f
AM
7570 if ((section->flags & SEC_ALLOC) != 0)
7571 {
7572 bfd_vma seg_off;
7573
bbefd0a9
AM
7574 if (lowest_section == NULL
7575 || section->lma < lowest_section->lma)
fb8a5684
AM
7576 lowest_section = section;
7577
a76e6f2f
AM
7578 /* Section lmas are set up from PT_LOAD header
7579 p_paddr in _bfd_elf_make_section_from_shdr.
7580 If this header has a p_paddr that disagrees
7581 with the section lma, flag the p_paddr as
7582 invalid. */
7583 if ((section->flags & SEC_LOAD) != 0)
7584 seg_off = this_hdr->sh_offset - segment->p_offset;
7585 else
7586 seg_off = this_hdr->sh_addr - segment->p_vaddr;
7587 if (section->lma - segment->p_paddr != seg_off)
7588 map->p_paddr_valid = FALSE;
7589 }
53020534
L
7590 if (isec == section_count)
7591 break;
7592 }
84d1d650
L
7593 }
7594 }
7595
5d695627
AM
7596 if (section_count == 0)
7597 map->p_vaddr_offset = segment->p_vaddr;
30fe1832
AM
7598 else if (map->p_paddr_valid)
7599 {
7600 /* Account for padding before the first section in the segment. */
7601 bfd_vma hdr_size = 0;
7602 if (map->includes_filehdr)
7603 hdr_size = iehdr->e_ehsize;
7604 if (map->includes_phdrs)
7605 hdr_size += iehdr->e_phnum * iehdr->e_phentsize;
7606
7607 map->p_vaddr_offset = (map->p_paddr + hdr_size
7608 - (lowest_section ? lowest_section->lma : 0));
7609 }
a76e6f2f 7610
84d1d650
L
7611 map->count = section_count;
7612 *pointer_to_map = map;
7613 pointer_to_map = &map->next;
7614 }
7615
12bd6957 7616 elf_seg_map (obfd) = map_first;
84d1d650
L
7617 return TRUE;
7618}
7619
7620/* Copy private BFD data. This copies or rewrites ELF program header
7621 information. */
7622
7623static bfd_boolean
7624copy_private_bfd_data (bfd *ibfd, bfd *obfd)
7625{
84d1d650
L
7626 if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour
7627 || bfd_get_flavour (obfd) != bfd_target_elf_flavour)
7628 return TRUE;
7629
7630 if (elf_tdata (ibfd)->phdr == NULL)
7631 return TRUE;
7632
7633 if (ibfd->xvec == obfd->xvec)
7634 {
cb3ff1e5
NC
7635 /* Check to see if any sections in the input BFD
7636 covered by ELF program header have changed. */
d55ce4e2 7637 Elf_Internal_Phdr *segment;
84d1d650
L
7638 asection *section, *osec;
7639 unsigned int i, num_segments;
7640 Elf_Internal_Shdr *this_hdr;
147d51c2
L
7641 const struct elf_backend_data *bed;
7642
7643 bed = get_elf_backend_data (ibfd);
7644
7645 /* Regenerate the segment map if p_paddr is set to 0. */
7646 if (bed->want_p_paddr_set_to_zero)
7647 goto rewrite;
84d1d650
L
7648
7649 /* Initialize the segment mark field. */
7650 for (section = obfd->sections; section != NULL;
7651 section = section->next)
7652 section->segment_mark = FALSE;
7653
7654 num_segments = elf_elfheader (ibfd)->e_phnum;
7655 for (i = 0, segment = elf_tdata (ibfd)->phdr;
7656 i < num_segments;
7657 i++, segment++)
7658 {
5f6999aa
NC
7659 /* PR binutils/3535. The Solaris linker always sets the p_paddr
7660 and p_memsz fields of special segments (DYNAMIC, INTERP) to 0
7661 which severly confuses things, so always regenerate the segment
7662 map in this case. */
7663 if (segment->p_paddr == 0
7664 && segment->p_memsz == 0
7665 && (segment->p_type == PT_INTERP || segment->p_type == PT_DYNAMIC))
cb3ff1e5 7666 goto rewrite;
5f6999aa 7667
84d1d650
L
7668 for (section = ibfd->sections;
7669 section != NULL; section = section->next)
7670 {
7671 /* We mark the output section so that we know it comes
7672 from the input BFD. */
7673 osec = section->output_section;
7674 if (osec)
7675 osec->segment_mark = TRUE;
7676
7677 /* Check if this section is covered by the segment. */
7678 this_hdr = &(elf_section_data(section)->this_hdr);
f4638467 7679 if (ELF_SECTION_IN_SEGMENT (this_hdr, segment))
84d1d650
L
7680 {
7681 /* FIXME: Check if its output section is changed or
7682 removed. What else do we need to check? */
7683 if (osec == NULL
7684 || section->flags != osec->flags
7685 || section->lma != osec->lma
7686 || section->vma != osec->vma
7687 || section->size != osec->size
7688 || section->rawsize != osec->rawsize
7689 || section->alignment_power != osec->alignment_power)
7690 goto rewrite;
7691 }
7692 }
7693 }
7694
cb3ff1e5 7695 /* Check to see if any output section do not come from the
84d1d650
L
7696 input BFD. */
7697 for (section = obfd->sections; section != NULL;
7698 section = section->next)
7699 {
535b785f 7700 if (!section->segment_mark)
84d1d650
L
7701 goto rewrite;
7702 else
7703 section->segment_mark = FALSE;
7704 }
7705
7706 return copy_elf_program_header (ibfd, obfd);
7707 }
7708
7709rewrite:
f1d85785
L
7710 if (ibfd->xvec == obfd->xvec)
7711 {
7712 /* When rewriting program header, set the output maxpagesize to
7713 the maximum alignment of input PT_LOAD segments. */
7714 Elf_Internal_Phdr *segment;
7715 unsigned int i;
7716 unsigned int num_segments = elf_elfheader (ibfd)->e_phnum;
7717 bfd_vma maxpagesize = 0;
7718
7719 for (i = 0, segment = elf_tdata (ibfd)->phdr;
7720 i < num_segments;
7721 i++, segment++)
7722 if (segment->p_type == PT_LOAD
7723 && maxpagesize < segment->p_align)
c86934ce
NC
7724 {
7725 /* PR 17512: file: f17299af. */
7726 if (segment->p_align > (bfd_vma) 1 << ((sizeof (bfd_vma) * 8) - 2))
695344c0 7727 /* xgettext:c-format */
2dcf00ce
AM
7728 _bfd_error_handler (_("%pB: warning: segment alignment of %#"
7729 PRIx64 " is too large"),
7730 ibfd, (uint64_t) segment->p_align);
c86934ce
NC
7731 else
7732 maxpagesize = segment->p_align;
7733 }
f1d85785
L
7734
7735 if (maxpagesize != get_elf_backend_data (obfd)->maxpagesize)
7736 bfd_emul_set_maxpagesize (bfd_get_target (obfd), maxpagesize);
7737 }
7738
84d1d650
L
7739 return rewrite_elf_program_header (ibfd, obfd);
7740}
7741
ccd2ec6a
L
7742/* Initialize private output section information from input section. */
7743
7744bfd_boolean
7745_bfd_elf_init_private_section_data (bfd *ibfd,
7746 asection *isec,
7747 bfd *obfd,
7748 asection *osec,
7749 struct bfd_link_info *link_info)
7750
7751{
7752 Elf_Internal_Shdr *ihdr, *ohdr;
0e1862bb
L
7753 bfd_boolean final_link = (link_info != NULL
7754 && !bfd_link_relocatable (link_info));
ccd2ec6a
L
7755
7756 if (ibfd->xvec->flavour != bfd_target_elf_flavour
7757 || obfd->xvec->flavour != bfd_target_elf_flavour)
7758 return TRUE;
7759
ba85c43e
NC
7760 BFD_ASSERT (elf_section_data (osec) != NULL);
7761
dfa7b0b8
AM
7762 /* For objcopy and relocatable link, don't copy the output ELF
7763 section type from input if the output BFD section flags have been
7764 set to something different. For a final link allow some flags
7765 that the linker clears to differ. */
42bb2e33 7766 if (elf_section_type (osec) == SHT_NULL
dfa7b0b8
AM
7767 && (osec->flags == isec->flags
7768 || (final_link
7769 && ((osec->flags ^ isec->flags)
0814be7d 7770 & ~(SEC_LINK_ONCE | SEC_LINK_DUPLICATES | SEC_RELOC)) == 0)))
42bb2e33 7771 elf_section_type (osec) = elf_section_type (isec);
d270463e
L
7772
7773 /* FIXME: Is this correct for all OS/PROC specific flags? */
7774 elf_section_flags (osec) |= (elf_section_flags (isec)
7775 & (SHF_MASKOS | SHF_MASKPROC));
ccd2ec6a 7776
a91e1603 7777 /* Copy sh_info from input for mbind section. */
df3a023b
AM
7778 if ((elf_tdata (ibfd)->has_gnu_osabi & elf_gnu_osabi_mbind) != 0
7779 && elf_section_flags (isec) & SHF_GNU_MBIND)
a91e1603
L
7780 elf_section_data (osec)->this_hdr.sh_info
7781 = elf_section_data (isec)->this_hdr.sh_info;
7782
ccd2ec6a
L
7783 /* Set things up for objcopy and relocatable link. The output
7784 SHT_GROUP section will have its elf_next_in_group pointing back
7785 to the input group members. Ignore linker created group section.
7786 See elfNN_ia64_object_p in elfxx-ia64.c. */
7bdf4127
AB
7787 if ((link_info == NULL
7788 || !link_info->resolve_section_groups)
7789 && (elf_sec_group (isec) == NULL
7790 || (elf_sec_group (isec)->flags & SEC_LINKER_CREATED) == 0))
ccd2ec6a 7791 {
7bdf4127
AB
7792 if (elf_section_flags (isec) & SHF_GROUP)
7793 elf_section_flags (osec) |= SHF_GROUP;
7794 elf_next_in_group (osec) = elf_next_in_group (isec);
7795 elf_section_data (osec)->group = elf_section_data (isec)->group;
ccd2ec6a
L
7796 }
7797
7bdf4127
AB
7798 /* If not decompress, preserve SHF_COMPRESSED. */
7799 if (!final_link && (ibfd->flags & BFD_DECOMPRESS) == 0)
7800 elf_section_flags (osec) |= (elf_section_flags (isec)
7801 & SHF_COMPRESSED);
7802
ccd2ec6a
L
7803 ihdr = &elf_section_data (isec)->this_hdr;
7804
7805 /* We need to handle elf_linked_to_section for SHF_LINK_ORDER. We
7806 don't use the output section of the linked-to section since it
7807 may be NULL at this point. */
7808 if ((ihdr->sh_flags & SHF_LINK_ORDER) != 0)
7809 {
7810 ohdr = &elf_section_data (osec)->this_hdr;
7811 ohdr->sh_flags |= SHF_LINK_ORDER;
7812 elf_linked_to_section (osec) = elf_linked_to_section (isec);
7813 }
7814
7815 osec->use_rela_p = isec->use_rela_p;
7816
7817 return TRUE;
7818}
7819
252b5132
RH
7820/* Copy private section information. This copies over the entsize
7821 field, and sometimes the info field. */
7822
b34976b6 7823bfd_boolean
217aa764
AM
7824_bfd_elf_copy_private_section_data (bfd *ibfd,
7825 asection *isec,
7826 bfd *obfd,
7827 asection *osec)
252b5132
RH
7828{
7829 Elf_Internal_Shdr *ihdr, *ohdr;
7830
7831 if (ibfd->xvec->flavour != bfd_target_elf_flavour
7832 || obfd->xvec->flavour != bfd_target_elf_flavour)
b34976b6 7833 return TRUE;
252b5132 7834
252b5132
RH
7835 ihdr = &elf_section_data (isec)->this_hdr;
7836 ohdr = &elf_section_data (osec)->this_hdr;
7837
7838 ohdr->sh_entsize = ihdr->sh_entsize;
7839
7840 if (ihdr->sh_type == SHT_SYMTAB
7841 || ihdr->sh_type == SHT_DYNSYM
7842 || ihdr->sh_type == SHT_GNU_verneed
7843 || ihdr->sh_type == SHT_GNU_verdef)
7844 ohdr->sh_info = ihdr->sh_info;
7845
ccd2ec6a
L
7846 return _bfd_elf_init_private_section_data (ibfd, isec, obfd, osec,
7847 NULL);
252b5132
RH
7848}
7849
d0bf826b
AM
7850/* Look at all the SHT_GROUP sections in IBFD, making any adjustments
7851 necessary if we are removing either the SHT_GROUP section or any of
7852 the group member sections. DISCARDED is the value that a section's
7853 output_section has if the section will be discarded, NULL when this
7854 function is called from objcopy, bfd_abs_section_ptr when called
7855 from the linker. */
80fccad2
BW
7856
7857bfd_boolean
d0bf826b 7858_bfd_elf_fixup_group_sections (bfd *ibfd, asection *discarded)
80fccad2 7859{
30288845
AM
7860 asection *isec;
7861
30288845 7862 for (isec = ibfd->sections; isec != NULL; isec = isec->next)
415f38a6 7863 if (elf_section_type (isec) == SHT_GROUP)
30288845
AM
7864 {
7865 asection *first = elf_next_in_group (isec);
7866 asection *s = first;
d0bf826b
AM
7867 bfd_size_type removed = 0;
7868
30288845
AM
7869 while (s != NULL)
7870 {
415f38a6
AM
7871 /* If this member section is being output but the
7872 SHT_GROUP section is not, then clear the group info
7873 set up by _bfd_elf_copy_private_section_data. */
d0bf826b
AM
7874 if (s->output_section != discarded
7875 && isec->output_section == discarded)
30288845
AM
7876 {
7877 elf_section_flags (s->output_section) &= ~SHF_GROUP;
7878 elf_group_name (s->output_section) = NULL;
7879 }
415f38a6
AM
7880 /* Conversely, if the member section is not being output
7881 but the SHT_GROUP section is, then adjust its size. */
d0bf826b
AM
7882 else if (s->output_section == discarded
7883 && isec->output_section != discarded)
6e5e9d58
AM
7884 {
7885 struct bfd_elf_section_data *elf_sec = elf_section_data (s);
7886 removed += 4;
7887 if (elf_sec->rel.hdr != NULL
7888 && (elf_sec->rel.hdr->sh_flags & SHF_GROUP) != 0)
7889 removed += 4;
7890 if (elf_sec->rela.hdr != NULL
7891 && (elf_sec->rela.hdr->sh_flags & SHF_GROUP) != 0)
7892 removed += 4;
7893 }
30288845
AM
7894 s = elf_next_in_group (s);
7895 if (s == first)
7896 break;
7897 }
d0bf826b
AM
7898 if (removed != 0)
7899 {
7900 if (discarded != NULL)
7901 {
7902 /* If we've been called for ld -r, then we need to
6e5e9d58 7903 adjust the input section size. */
d0bf826b
AM
7904 if (isec->rawsize == 0)
7905 isec->rawsize = isec->size;
7906 isec->size = isec->rawsize - removed;
6e5e9d58
AM
7907 if (isec->size <= 4)
7908 {
7909 isec->size = 0;
7910 isec->flags |= SEC_EXCLUDE;
7911 }
d0bf826b
AM
7912 }
7913 else
7914 {
7915 /* Adjust the output section size when called from
7916 objcopy. */
7917 isec->output_section->size -= removed;
6e5e9d58
AM
7918 if (isec->output_section->size <= 4)
7919 {
7920 isec->output_section->size = 0;
7921 isec->output_section->flags |= SEC_EXCLUDE;
7922 }
d0bf826b
AM
7923 }
7924 }
30288845
AM
7925 }
7926
80fccad2
BW
7927 return TRUE;
7928}
7929
d0bf826b
AM
7930/* Copy private header information. */
7931
7932bfd_boolean
7933_bfd_elf_copy_private_header_data (bfd *ibfd, bfd *obfd)
7934{
7935 if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour
7936 || bfd_get_flavour (obfd) != bfd_target_elf_flavour)
7937 return TRUE;
7938
7939 /* Copy over private BFD data if it has not already been copied.
7940 This must be done here, rather than in the copy_private_bfd_data
7941 entry point, because the latter is called after the section
7942 contents have been set, which means that the program headers have
7943 already been worked out. */
12bd6957 7944 if (elf_seg_map (obfd) == NULL && elf_tdata (ibfd)->phdr != NULL)
d0bf826b
AM
7945 {
7946 if (! copy_private_bfd_data (ibfd, obfd))
7947 return FALSE;
7948 }
7949
7950 return _bfd_elf_fixup_group_sections (ibfd, NULL);
7951}
7952
252b5132
RH
7953/* Copy private symbol information. If this symbol is in a section
7954 which we did not map into a BFD section, try to map the section
7955 index correctly. We use special macro definitions for the mapped
7956 section indices; these definitions are interpreted by the
7957 swap_out_syms function. */
7958
9ad5cbcf
AM
7959#define MAP_ONESYMTAB (SHN_HIOS + 1)
7960#define MAP_DYNSYMTAB (SHN_HIOS + 2)
7961#define MAP_STRTAB (SHN_HIOS + 3)
7962#define MAP_SHSTRTAB (SHN_HIOS + 4)
7963#define MAP_SYM_SHNDX (SHN_HIOS + 5)
252b5132 7964
b34976b6 7965bfd_boolean
217aa764
AM
7966_bfd_elf_copy_private_symbol_data (bfd *ibfd,
7967 asymbol *isymarg,
7968 bfd *obfd,
7969 asymbol *osymarg)
252b5132
RH
7970{
7971 elf_symbol_type *isym, *osym;
7972
7973 if (bfd_get_flavour (ibfd) != bfd_target_elf_flavour
7974 || bfd_get_flavour (obfd) != bfd_target_elf_flavour)
b34976b6 7975 return TRUE;
252b5132
RH
7976
7977 isym = elf_symbol_from (ibfd, isymarg);
7978 osym = elf_symbol_from (obfd, osymarg);
7979
7980 if (isym != NULL
8424d8f5 7981 && isym->internal_elf_sym.st_shndx != 0
252b5132
RH
7982 && osym != NULL
7983 && bfd_is_abs_section (isym->symbol.section))
7984 {
7985 unsigned int shndx;
7986
7987 shndx = isym->internal_elf_sym.st_shndx;
7988 if (shndx == elf_onesymtab (ibfd))
7989 shndx = MAP_ONESYMTAB;
7990 else if (shndx == elf_dynsymtab (ibfd))
7991 shndx = MAP_DYNSYMTAB;
12bd6957 7992 else if (shndx == elf_strtab_sec (ibfd))
252b5132 7993 shndx = MAP_STRTAB;
12bd6957 7994 else if (shndx == elf_shstrtab_sec (ibfd))
252b5132 7995 shndx = MAP_SHSTRTAB;
6a40cf0c 7996 else if (find_section_in_list (shndx, elf_symtab_shndx_list (ibfd)))
9ad5cbcf 7997 shndx = MAP_SYM_SHNDX;
252b5132
RH
7998 osym->internal_elf_sym.st_shndx = shndx;
7999 }
8000
b34976b6 8001 return TRUE;
252b5132
RH
8002}
8003
8004/* Swap out the symbols. */
8005
b34976b6 8006static bfd_boolean
217aa764 8007swap_out_syms (bfd *abfd,
ef10c3ac 8008 struct elf_strtab_hash **sttp,
217aa764 8009 int relocatable_p)
252b5132 8010{
9c5bfbb7 8011 const struct elf_backend_data *bed;
079e9a2f
AM
8012 int symcount;
8013 asymbol **syms;
ef10c3ac 8014 struct elf_strtab_hash *stt;
079e9a2f 8015 Elf_Internal_Shdr *symtab_hdr;
9ad5cbcf 8016 Elf_Internal_Shdr *symtab_shndx_hdr;
079e9a2f 8017 Elf_Internal_Shdr *symstrtab_hdr;
ef10c3ac 8018 struct elf_sym_strtab *symstrtab;
f075ee0c
AM
8019 bfd_byte *outbound_syms;
8020 bfd_byte *outbound_shndx;
ef10c3ac
L
8021 unsigned long outbound_syms_index;
8022 unsigned long outbound_shndx_index;
079e9a2f 8023 int idx;
12bd6957 8024 unsigned int num_locals;
079e9a2f 8025 bfd_size_type amt;
174fd7f9 8026 bfd_boolean name_local_sections;
252b5132 8027
12bd6957 8028 if (!elf_map_symbols (abfd, &num_locals))
b34976b6 8029 return FALSE;
252b5132 8030
c044fabd 8031 /* Dump out the symtabs. */
ef10c3ac 8032 stt = _bfd_elf_strtab_init ();
079e9a2f 8033 if (stt == NULL)
b34976b6 8034 return FALSE;
252b5132 8035
079e9a2f
AM
8036 bed = get_elf_backend_data (abfd);
8037 symcount = bfd_get_symcount (abfd);
8038 symtab_hdr = &elf_tdata (abfd)->symtab_hdr;
8039 symtab_hdr->sh_type = SHT_SYMTAB;
8040 symtab_hdr->sh_entsize = bed->s->sizeof_sym;
8041 symtab_hdr->sh_size = symtab_hdr->sh_entsize * (symcount + 1);
12bd6957 8042 symtab_hdr->sh_info = num_locals + 1;
72de5009 8043 symtab_hdr->sh_addralign = (bfd_vma) 1 << bed->s->log_file_align;
079e9a2f
AM
8044
8045 symstrtab_hdr = &elf_tdata (abfd)->strtab_hdr;
8046 symstrtab_hdr->sh_type = SHT_STRTAB;
8047
ef10c3ac 8048 /* Allocate buffer to swap out the .strtab section. */
7a6e0d89
AM
8049 symstrtab = (struct elf_sym_strtab *) bfd_malloc2 (symcount + 1,
8050 sizeof (*symstrtab));
ef10c3ac
L
8051 if (symstrtab == NULL)
8052 {
8053 _bfd_elf_strtab_free (stt);
8054 return FALSE;
8055 }
8056
a50b1753 8057 outbound_syms = (bfd_byte *) bfd_alloc2 (abfd, 1 + symcount,
07d6d2b8 8058 bed->s->sizeof_sym);
079e9a2f 8059 if (outbound_syms == NULL)
5ed6aba4 8060 {
ef10c3ac
L
8061error_return:
8062 _bfd_elf_strtab_free (stt);
8063 free (symstrtab);
5ed6aba4
NC
8064 return FALSE;
8065 }
217aa764 8066 symtab_hdr->contents = outbound_syms;
ef10c3ac 8067 outbound_syms_index = 0;
252b5132 8068
9ad5cbcf 8069 outbound_shndx = NULL;
ef10c3ac 8070 outbound_shndx_index = 0;
6a40cf0c
NC
8071
8072 if (elf_symtab_shndx_list (abfd))
9ad5cbcf 8073 {
6a40cf0c
NC
8074 symtab_shndx_hdr = & elf_symtab_shndx_list (abfd)->hdr;
8075 if (symtab_shndx_hdr->sh_name != 0)
8076 {
8077 amt = (bfd_size_type) (1 + symcount) * sizeof (Elf_External_Sym_Shndx);
8078 outbound_shndx = (bfd_byte *)
8079 bfd_zalloc2 (abfd, 1 + symcount, sizeof (Elf_External_Sym_Shndx));
8080 if (outbound_shndx == NULL)
8081 goto error_return;
5ed6aba4 8082
6a40cf0c
NC
8083 symtab_shndx_hdr->contents = outbound_shndx;
8084 symtab_shndx_hdr->sh_type = SHT_SYMTAB_SHNDX;
8085 symtab_shndx_hdr->sh_size = amt;
8086 symtab_shndx_hdr->sh_addralign = sizeof (Elf_External_Sym_Shndx);
8087 symtab_shndx_hdr->sh_entsize = sizeof (Elf_External_Sym_Shndx);
8088 }
8089 /* FIXME: What about any other headers in the list ? */
9ad5cbcf
AM
8090 }
8091
589e6347 8092 /* Now generate the data (for "contents"). */
079e9a2f
AM
8093 {
8094 /* Fill in zeroth symbol and swap it out. */
8095 Elf_Internal_Sym sym;
8096 sym.st_name = 0;
8097 sym.st_value = 0;
8098 sym.st_size = 0;
8099 sym.st_info = 0;
8100 sym.st_other = 0;
8101 sym.st_shndx = SHN_UNDEF;
35fc36a8 8102 sym.st_target_internal = 0;
ef10c3ac
L
8103 symstrtab[0].sym = sym;
8104 symstrtab[0].dest_index = outbound_syms_index;
8105 symstrtab[0].destshndx_index = outbound_shndx_index;
8106 outbound_syms_index++;
9ad5cbcf 8107 if (outbound_shndx != NULL)
ef10c3ac 8108 outbound_shndx_index++;
079e9a2f 8109 }
252b5132 8110
174fd7f9
RS
8111 name_local_sections
8112 = (bed->elf_backend_name_local_section_symbols
8113 && bed->elf_backend_name_local_section_symbols (abfd));
8114
079e9a2f 8115 syms = bfd_get_outsymbols (abfd);
ef10c3ac 8116 for (idx = 0; idx < symcount;)
252b5132 8117 {
252b5132 8118 Elf_Internal_Sym sym;
079e9a2f
AM
8119 bfd_vma value = syms[idx]->value;
8120 elf_symbol_type *type_ptr;
8121 flagword flags = syms[idx]->flags;
8122 int type;
252b5132 8123
174fd7f9
RS
8124 if (!name_local_sections
8125 && (flags & (BSF_SECTION_SYM | BSF_GLOBAL)) == BSF_SECTION_SYM)
079e9a2f
AM
8126 {
8127 /* Local section symbols have no name. */
ef10c3ac 8128 sym.st_name = (unsigned long) -1;
079e9a2f
AM
8129 }
8130 else
8131 {
ef10c3ac
L
8132 /* Call _bfd_elf_strtab_offset after _bfd_elf_strtab_finalize
8133 to get the final offset for st_name. */
8134 sym.st_name
8135 = (unsigned long) _bfd_elf_strtab_add (stt, syms[idx]->name,
8136 FALSE);
079e9a2f 8137 if (sym.st_name == (unsigned long) -1)
ef10c3ac 8138 goto error_return;
079e9a2f 8139 }
252b5132 8140
079e9a2f 8141 type_ptr = elf_symbol_from (abfd, syms[idx]);
252b5132 8142
079e9a2f
AM
8143 if ((flags & BSF_SECTION_SYM) == 0
8144 && bfd_is_com_section (syms[idx]->section))
8145 {
8146 /* ELF common symbols put the alignment into the `value' field,
8147 and the size into the `size' field. This is backwards from
8148 how BFD handles it, so reverse it here. */
8149 sym.st_size = value;
8150 if (type_ptr == NULL
8151 || type_ptr->internal_elf_sym.st_value == 0)
8152 sym.st_value = value >= 16 ? 16 : (1 << bfd_log2 (value));
8153 else
8154 sym.st_value = type_ptr->internal_elf_sym.st_value;
8155 sym.st_shndx = _bfd_elf_section_from_bfd_section
8156 (abfd, syms[idx]->section);
8157 }
8158 else
8159 {
8160 asection *sec = syms[idx]->section;
cb33740c 8161 unsigned int shndx;
252b5132 8162
079e9a2f
AM
8163 if (sec->output_section)
8164 {
8165 value += sec->output_offset;
8166 sec = sec->output_section;
8167 }
589e6347 8168
079e9a2f
AM
8169 /* Don't add in the section vma for relocatable output. */
8170 if (! relocatable_p)
8171 value += sec->vma;
8172 sym.st_value = value;
8173 sym.st_size = type_ptr ? type_ptr->internal_elf_sym.st_size : 0;
8174
8175 if (bfd_is_abs_section (sec)
8176 && type_ptr != NULL
8177 && type_ptr->internal_elf_sym.st_shndx != 0)
8178 {
8179 /* This symbol is in a real ELF section which we did
8180 not create as a BFD section. Undo the mapping done
8181 by copy_private_symbol_data. */
8182 shndx = type_ptr->internal_elf_sym.st_shndx;
8183 switch (shndx)
8184 {
8185 case MAP_ONESYMTAB:
8186 shndx = elf_onesymtab (abfd);
8187 break;
8188 case MAP_DYNSYMTAB:
8189 shndx = elf_dynsymtab (abfd);
8190 break;
8191 case MAP_STRTAB:
12bd6957 8192 shndx = elf_strtab_sec (abfd);
079e9a2f
AM
8193 break;
8194 case MAP_SHSTRTAB:
12bd6957 8195 shndx = elf_shstrtab_sec (abfd);
079e9a2f 8196 break;
9ad5cbcf 8197 case MAP_SYM_SHNDX:
6a40cf0c
NC
8198 if (elf_symtab_shndx_list (abfd))
8199 shndx = elf_symtab_shndx_list (abfd)->ndx;
9ad5cbcf 8200 break;
079e9a2f 8201 default:
15bc576a 8202 shndx = SHN_ABS;
079e9a2f
AM
8203 break;
8204 }
8205 }
8206 else
8207 {
8208 shndx = _bfd_elf_section_from_bfd_section (abfd, sec);
252b5132 8209
cb33740c 8210 if (shndx == SHN_BAD)
079e9a2f
AM
8211 {
8212 asection *sec2;
8213
8214 /* Writing this would be a hell of a lot easier if
8215 we had some decent documentation on bfd, and
8216 knew what to expect of the library, and what to
8217 demand of applications. For example, it
8218 appears that `objcopy' might not set the
8219 section of a symbol to be a section that is
8220 actually in the output file. */
8221 sec2 = bfd_get_section_by_name (abfd, sec->name);
5df1bc57
AM
8222 if (sec2 != NULL)
8223 shndx = _bfd_elf_section_from_bfd_section (abfd, sec2);
8224 if (shndx == SHN_BAD)
589e6347 8225 {
695344c0 8226 /* xgettext:c-format */
9793eb77
AM
8227 _bfd_error_handler
8228 (_("unable to find equivalent output section"
8229 " for symbol '%s' from section '%s'"),
8230 syms[idx]->name ? syms[idx]->name : "<Local sym>",
8231 sec->name);
811072d8 8232 bfd_set_error (bfd_error_invalid_operation);
ef10c3ac 8233 goto error_return;
589e6347 8234 }
079e9a2f
AM
8235 }
8236 }
252b5132 8237
079e9a2f
AM
8238 sym.st_shndx = shndx;
8239 }
252b5132 8240
13ae64f3
JJ
8241 if ((flags & BSF_THREAD_LOCAL) != 0)
8242 type = STT_TLS;
d8045f23
NC
8243 else if ((flags & BSF_GNU_INDIRECT_FUNCTION) != 0)
8244 type = STT_GNU_IFUNC;
13ae64f3 8245 else if ((flags & BSF_FUNCTION) != 0)
079e9a2f
AM
8246 type = STT_FUNC;
8247 else if ((flags & BSF_OBJECT) != 0)
8248 type = STT_OBJECT;
d9352518
DB
8249 else if ((flags & BSF_RELC) != 0)
8250 type = STT_RELC;
8251 else if ((flags & BSF_SRELC) != 0)
8252 type = STT_SRELC;
079e9a2f
AM
8253 else
8254 type = STT_NOTYPE;
252b5132 8255
13ae64f3
JJ
8256 if (syms[idx]->section->flags & SEC_THREAD_LOCAL)
8257 type = STT_TLS;
8258
589e6347 8259 /* Processor-specific types. */
079e9a2f
AM
8260 if (type_ptr != NULL
8261 && bed->elf_backend_get_symbol_type)
8262 type = ((*bed->elf_backend_get_symbol_type)
8263 (&type_ptr->internal_elf_sym, type));
252b5132 8264
079e9a2f
AM
8265 if (flags & BSF_SECTION_SYM)
8266 {
8267 if (flags & BSF_GLOBAL)
8268 sym.st_info = ELF_ST_INFO (STB_GLOBAL, STT_SECTION);
8269 else
8270 sym.st_info = ELF_ST_INFO (STB_LOCAL, STT_SECTION);
8271 }
8272 else if (bfd_is_com_section (syms[idx]->section))
0a40daed 8273 {
b8871f35
L
8274 if (type != STT_TLS)
8275 {
8276 if ((abfd->flags & BFD_CONVERT_ELF_COMMON))
8277 type = ((abfd->flags & BFD_USE_ELF_STT_COMMON)
8278 ? STT_COMMON : STT_OBJECT);
8279 else
8280 type = ((flags & BSF_ELF_COMMON) != 0
8281 ? STT_COMMON : STT_OBJECT);
8282 }
8283 sym.st_info = ELF_ST_INFO (STB_GLOBAL, type);
0a40daed 8284 }
079e9a2f
AM
8285 else if (bfd_is_und_section (syms[idx]->section))
8286 sym.st_info = ELF_ST_INFO (((flags & BSF_WEAK)
8287 ? STB_WEAK
8288 : STB_GLOBAL),
8289 type);
8290 else if (flags & BSF_FILE)
8291 sym.st_info = ELF_ST_INFO (STB_LOCAL, STT_FILE);
8292 else
8293 {
8294 int bind = STB_LOCAL;
252b5132 8295
079e9a2f
AM
8296 if (flags & BSF_LOCAL)
8297 bind = STB_LOCAL;
3e7a7d11
NC
8298 else if (flags & BSF_GNU_UNIQUE)
8299 bind = STB_GNU_UNIQUE;
079e9a2f
AM
8300 else if (flags & BSF_WEAK)
8301 bind = STB_WEAK;
8302 else if (flags & BSF_GLOBAL)
8303 bind = STB_GLOBAL;
252b5132 8304
079e9a2f
AM
8305 sym.st_info = ELF_ST_INFO (bind, type);
8306 }
252b5132 8307
079e9a2f 8308 if (type_ptr != NULL)
35fc36a8
RS
8309 {
8310 sym.st_other = type_ptr->internal_elf_sym.st_other;
8311 sym.st_target_internal
8312 = type_ptr->internal_elf_sym.st_target_internal;
8313 }
079e9a2f 8314 else
35fc36a8
RS
8315 {
8316 sym.st_other = 0;
8317 sym.st_target_internal = 0;
8318 }
252b5132 8319
ef10c3ac
L
8320 idx++;
8321 symstrtab[idx].sym = sym;
8322 symstrtab[idx].dest_index = outbound_syms_index;
8323 symstrtab[idx].destshndx_index = outbound_shndx_index;
8324
8325 outbound_syms_index++;
9ad5cbcf 8326 if (outbound_shndx != NULL)
ef10c3ac
L
8327 outbound_shndx_index++;
8328 }
8329
8330 /* Finalize the .strtab section. */
8331 _bfd_elf_strtab_finalize (stt);
8332
8333 /* Swap out the .strtab section. */
8334 for (idx = 0; idx <= symcount; idx++)
8335 {
8336 struct elf_sym_strtab *elfsym = &symstrtab[idx];
8337 if (elfsym->sym.st_name == (unsigned long) -1)
8338 elfsym->sym.st_name = 0;
8339 else
8340 elfsym->sym.st_name = _bfd_elf_strtab_offset (stt,
8341 elfsym->sym.st_name);
8342 bed->s->swap_symbol_out (abfd, &elfsym->sym,
8343 (outbound_syms
8344 + (elfsym->dest_index
8345 * bed->s->sizeof_sym)),
8346 (outbound_shndx
8347 + (elfsym->destshndx_index
8348 * sizeof (Elf_External_Sym_Shndx))));
079e9a2f 8349 }
ef10c3ac 8350 free (symstrtab);
252b5132 8351
079e9a2f 8352 *sttp = stt;
ef10c3ac 8353 symstrtab_hdr->sh_size = _bfd_elf_strtab_size (stt);
079e9a2f 8354 symstrtab_hdr->sh_type = SHT_STRTAB;
84865015 8355 symstrtab_hdr->sh_flags = bed->elf_strtab_flags;
079e9a2f
AM
8356 symstrtab_hdr->sh_addr = 0;
8357 symstrtab_hdr->sh_entsize = 0;
8358 symstrtab_hdr->sh_link = 0;
8359 symstrtab_hdr->sh_info = 0;
8360 symstrtab_hdr->sh_addralign = 1;
252b5132 8361
b34976b6 8362 return TRUE;
252b5132
RH
8363}
8364
8365/* Return the number of bytes required to hold the symtab vector.
8366
8367 Note that we base it on the count plus 1, since we will null terminate
8368 the vector allocated based on this size. However, the ELF symbol table
8369 always has a dummy entry as symbol #0, so it ends up even. */
8370
8371long
217aa764 8372_bfd_elf_get_symtab_upper_bound (bfd *abfd)
252b5132 8373{
3a551c7a 8374 bfd_size_type symcount;
252b5132
RH
8375 long symtab_size;
8376 Elf_Internal_Shdr *hdr = &elf_tdata (abfd)->symtab_hdr;
8377
8378 symcount = hdr->sh_size / get_elf_backend_data (abfd)->s->sizeof_sym;
3a551c7a
AM
8379 if (symcount >= LONG_MAX / sizeof (asymbol *))
8380 {
8381 bfd_set_error (bfd_error_file_too_big);
8382 return -1;
8383 }
b99d1833
AM
8384 symtab_size = (symcount + 1) * (sizeof (asymbol *));
8385 if (symcount > 0)
8386 symtab_size -= sizeof (asymbol *);
252b5132
RH
8387
8388 return symtab_size;
8389}
8390
8391long
217aa764 8392_bfd_elf_get_dynamic_symtab_upper_bound (bfd *abfd)
252b5132 8393{
3a551c7a 8394 bfd_size_type symcount;
252b5132
RH
8395 long symtab_size;
8396 Elf_Internal_Shdr *hdr = &elf_tdata (abfd)->dynsymtab_hdr;
8397
8398 if (elf_dynsymtab (abfd) == 0)
8399 {
8400 bfd_set_error (bfd_error_invalid_operation);
8401 return -1;
8402 }
8403
8404 symcount = hdr->sh_size / get_elf_backend_data (abfd)->s->sizeof_sym;
3a551c7a
AM
8405 if (symcount >= LONG_MAX / sizeof (asymbol *))
8406 {
8407 bfd_set_error (bfd_error_file_too_big);
8408 return -1;
8409 }
b99d1833
AM
8410 symtab_size = (symcount + 1) * (sizeof (asymbol *));
8411 if (symcount > 0)
8412 symtab_size -= sizeof (asymbol *);
252b5132
RH
8413
8414 return symtab_size;
8415}
8416
8417long
217aa764
AM
8418_bfd_elf_get_reloc_upper_bound (bfd *abfd ATTRIBUTE_UNUSED,
8419 sec_ptr asect)
252b5132 8420{
242a1159 8421#if SIZEOF_LONG == SIZEOF_INT
7a6e0d89
AM
8422 if (asect->reloc_count >= LONG_MAX / sizeof (arelent *))
8423 {
8424 bfd_set_error (bfd_error_file_too_big);
8425 return -1;
8426 }
242a1159 8427#endif
252b5132
RH
8428 return (asect->reloc_count + 1) * sizeof (arelent *);
8429}
8430
8431/* Canonicalize the relocs. */
8432
8433long
217aa764
AM
8434_bfd_elf_canonicalize_reloc (bfd *abfd,
8435 sec_ptr section,
8436 arelent **relptr,
8437 asymbol **symbols)
252b5132
RH
8438{
8439 arelent *tblptr;
8440 unsigned int i;
9c5bfbb7 8441 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
252b5132 8442
b34976b6 8443 if (! bed->s->slurp_reloc_table (abfd, section, symbols, FALSE))
252b5132
RH
8444 return -1;
8445
8446 tblptr = section->relocation;
8447 for (i = 0; i < section->reloc_count; i++)
8448 *relptr++ = tblptr++;
8449
8450 *relptr = NULL;
8451
8452 return section->reloc_count;
8453}
8454
8455long
6cee3f79 8456_bfd_elf_canonicalize_symtab (bfd *abfd, asymbol **allocation)
252b5132 8457{
9c5bfbb7 8458 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
217aa764 8459 long symcount = bed->s->slurp_symbol_table (abfd, allocation, FALSE);
252b5132
RH
8460
8461 if (symcount >= 0)
ed48ec2e 8462 abfd->symcount = symcount;
252b5132
RH
8463 return symcount;
8464}
8465
8466long
217aa764
AM
8467_bfd_elf_canonicalize_dynamic_symtab (bfd *abfd,
8468 asymbol **allocation)
252b5132 8469{
9c5bfbb7 8470 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
217aa764 8471 long symcount = bed->s->slurp_symbol_table (abfd, allocation, TRUE);
1f70368c
DJ
8472
8473 if (symcount >= 0)
ed48ec2e 8474 abfd->dynsymcount = symcount;
1f70368c 8475 return symcount;
252b5132
RH
8476}
8477
8615f3f2
AM
8478/* Return the size required for the dynamic reloc entries. Any loadable
8479 section that was actually installed in the BFD, and has type SHT_REL
8480 or SHT_RELA, and uses the dynamic symbol table, is considered to be a
8481 dynamic reloc section. */
252b5132
RH
8482
8483long
217aa764 8484_bfd_elf_get_dynamic_reloc_upper_bound (bfd *abfd)
252b5132 8485{
3a551c7a 8486 bfd_size_type count;
252b5132
RH
8487 asection *s;
8488
8489 if (elf_dynsymtab (abfd) == 0)
8490 {
8491 bfd_set_error (bfd_error_invalid_operation);
8492 return -1;
8493 }
8494
3a551c7a 8495 count = 1;
252b5132 8496 for (s = abfd->sections; s != NULL; s = s->next)
266b05cf 8497 if (elf_section_data (s)->this_hdr.sh_link == elf_dynsymtab (abfd)
252b5132
RH
8498 && (elf_section_data (s)->this_hdr.sh_type == SHT_REL
8499 || elf_section_data (s)->this_hdr.sh_type == SHT_RELA))
3a551c7a
AM
8500 {
8501 count += s->size / elf_section_data (s)->this_hdr.sh_entsize;
8502 if (count > LONG_MAX / sizeof (arelent *))
8503 {
8504 bfd_set_error (bfd_error_file_too_big);
8505 return -1;
8506 }
8507 }
8508 return count * sizeof (arelent *);
252b5132
RH
8509}
8510
8615f3f2
AM
8511/* Canonicalize the dynamic relocation entries. Note that we return the
8512 dynamic relocations as a single block, although they are actually
8513 associated with particular sections; the interface, which was
8514 designed for SunOS style shared libraries, expects that there is only
8515 one set of dynamic relocs. Any loadable section that was actually
8516 installed in the BFD, and has type SHT_REL or SHT_RELA, and uses the
8517 dynamic symbol table, is considered to be a dynamic reloc section. */
252b5132
RH
8518
8519long
217aa764
AM
8520_bfd_elf_canonicalize_dynamic_reloc (bfd *abfd,
8521 arelent **storage,
8522 asymbol **syms)
252b5132 8523{
217aa764 8524 bfd_boolean (*slurp_relocs) (bfd *, asection *, asymbol **, bfd_boolean);
252b5132
RH
8525 asection *s;
8526 long ret;
8527
8528 if (elf_dynsymtab (abfd) == 0)
8529 {
8530 bfd_set_error (bfd_error_invalid_operation);
8531 return -1;
8532 }
8533
8534 slurp_relocs = get_elf_backend_data (abfd)->s->slurp_reloc_table;
8535 ret = 0;
8536 for (s = abfd->sections; s != NULL; s = s->next)
8537 {
266b05cf 8538 if (elf_section_data (s)->this_hdr.sh_link == elf_dynsymtab (abfd)
252b5132
RH
8539 && (elf_section_data (s)->this_hdr.sh_type == SHT_REL
8540 || elf_section_data (s)->this_hdr.sh_type == SHT_RELA))
8541 {
8542 arelent *p;
8543 long count, i;
8544
b34976b6 8545 if (! (*slurp_relocs) (abfd, s, syms, TRUE))
252b5132 8546 return -1;
eea6121a 8547 count = s->size / elf_section_data (s)->this_hdr.sh_entsize;
252b5132
RH
8548 p = s->relocation;
8549 for (i = 0; i < count; i++)
8550 *storage++ = p++;
8551 ret += count;
8552 }
8553 }
8554
8555 *storage = NULL;
8556
8557 return ret;
8558}
8559\f
8560/* Read in the version information. */
8561
b34976b6 8562bfd_boolean
fc0e6df6 8563_bfd_elf_slurp_version_tables (bfd *abfd, bfd_boolean default_imported_symver)
252b5132
RH
8564{
8565 bfd_byte *contents = NULL;
fc0e6df6
PB
8566 unsigned int freeidx = 0;
8567
8568 if (elf_dynverref (abfd) != 0)
8569 {
8570 Elf_Internal_Shdr *hdr;
8571 Elf_External_Verneed *everneed;
8572 Elf_Internal_Verneed *iverneed;
8573 unsigned int i;
d0fb9a8d 8574 bfd_byte *contents_end;
fc0e6df6
PB
8575
8576 hdr = &elf_tdata (abfd)->dynverref_hdr;
8577
bd61e135
AM
8578 if (hdr->sh_info == 0
8579 || hdr->sh_info > hdr->sh_size / sizeof (Elf_External_Verneed))
d0fb9a8d 8580 {
601a03ba 8581error_return_bad_verref:
4eca0228 8582 _bfd_error_handler
871b3ab2 8583 (_("%pB: .gnu.version_r invalid entry"), abfd);
601a03ba 8584 bfd_set_error (bfd_error_bad_value);
d0fb9a8d
JJ
8585error_return_verref:
8586 elf_tdata (abfd)->verref = NULL;
8587 elf_tdata (abfd)->cverrefs = 0;
8588 goto error_return;
8589 }
601a03ba 8590
7e56c51c
NC
8591 ufile_ptr filesize = bfd_get_file_size (abfd);
8592 if (filesize > 0 && filesize < hdr->sh_size)
8593 {
8594 /* PR 24708: Avoid attempts to allocate a ridiculous amount
8595 of memory. */
8596 bfd_set_error (bfd_error_no_memory);
8597 _bfd_error_handler
8598 /* xgettext:c-format */
8599 (_("error: %pB version reference section is too large (%#" PRIx64 " bytes)"),
8600 abfd, (uint64_t) hdr->sh_size);
8601 goto error_return_verref;
8602 }
601a03ba
AM
8603 contents = (bfd_byte *) bfd_malloc (hdr->sh_size);
8604 if (contents == NULL)
8605 goto error_return_verref;
8606
fc0e6df6
PB
8607 if (bfd_seek (abfd, hdr->sh_offset, SEEK_SET) != 0
8608 || bfd_bread (contents, hdr->sh_size, abfd) != hdr->sh_size)
d0fb9a8d 8609 goto error_return_verref;
fc0e6df6 8610
601a03ba 8611 elf_tdata (abfd)->verref = (Elf_Internal_Verneed *)
bd61e135 8612 bfd_alloc2 (abfd, hdr->sh_info, sizeof (Elf_Internal_Verneed));
601a03ba
AM
8613
8614 if (elf_tdata (abfd)->verref == NULL)
d0fb9a8d
JJ
8615 goto error_return_verref;
8616
8617 BFD_ASSERT (sizeof (Elf_External_Verneed)
8618 == sizeof (Elf_External_Vernaux));
8619 contents_end = contents + hdr->sh_size - sizeof (Elf_External_Verneed);
fc0e6df6
PB
8620 everneed = (Elf_External_Verneed *) contents;
8621 iverneed = elf_tdata (abfd)->verref;
8622 for (i = 0; i < hdr->sh_info; i++, iverneed++)
8623 {
8624 Elf_External_Vernaux *evernaux;
8625 Elf_Internal_Vernaux *ivernaux;
8626 unsigned int j;
8627
8628 _bfd_elf_swap_verneed_in (abfd, everneed, iverneed);
8629
8630 iverneed->vn_bfd = abfd;
8631
8632 iverneed->vn_filename =
8633 bfd_elf_string_from_elf_section (abfd, hdr->sh_link,
8634 iverneed->vn_file);
8635 if (iverneed->vn_filename == NULL)
601a03ba 8636 goto error_return_bad_verref;
fc0e6df6 8637
d0fb9a8d
JJ
8638 if (iverneed->vn_cnt == 0)
8639 iverneed->vn_auxptr = NULL;
8640 else
8641 {
a50b1753 8642 iverneed->vn_auxptr = (struct elf_internal_vernaux *)
07d6d2b8
AM
8643 bfd_alloc2 (abfd, iverneed->vn_cnt,
8644 sizeof (Elf_Internal_Vernaux));
d0fb9a8d
JJ
8645 if (iverneed->vn_auxptr == NULL)
8646 goto error_return_verref;
8647 }
8648
8649 if (iverneed->vn_aux
8650 > (size_t) (contents_end - (bfd_byte *) everneed))
601a03ba 8651 goto error_return_bad_verref;
fc0e6df6
PB
8652
8653 evernaux = ((Elf_External_Vernaux *)
8654 ((bfd_byte *) everneed + iverneed->vn_aux));
8655 ivernaux = iverneed->vn_auxptr;
8656 for (j = 0; j < iverneed->vn_cnt; j++, ivernaux++)
8657 {
8658 _bfd_elf_swap_vernaux_in (abfd, evernaux, ivernaux);
8659
8660 ivernaux->vna_nodename =
8661 bfd_elf_string_from_elf_section (abfd, hdr->sh_link,
8662 ivernaux->vna_name);
8663 if (ivernaux->vna_nodename == NULL)
601a03ba 8664 goto error_return_bad_verref;
fc0e6df6 8665
25ff461f
AM
8666 if (ivernaux->vna_other > freeidx)
8667 freeidx = ivernaux->vna_other;
8668
8669 ivernaux->vna_nextptr = NULL;
8670 if (ivernaux->vna_next == 0)
8671 {
8672 iverneed->vn_cnt = j + 1;
8673 break;
8674 }
fc0e6df6
PB
8675 if (j + 1 < iverneed->vn_cnt)
8676 ivernaux->vna_nextptr = ivernaux + 1;
fc0e6df6 8677
d0fb9a8d
JJ
8678 if (ivernaux->vna_next
8679 > (size_t) (contents_end - (bfd_byte *) evernaux))
601a03ba 8680 goto error_return_bad_verref;
d0fb9a8d 8681
fc0e6df6
PB
8682 evernaux = ((Elf_External_Vernaux *)
8683 ((bfd_byte *) evernaux + ivernaux->vna_next));
fc0e6df6
PB
8684 }
8685
25ff461f
AM
8686 iverneed->vn_nextref = NULL;
8687 if (iverneed->vn_next == 0)
8688 break;
fc0e6df6
PB
8689 if (i + 1 < hdr->sh_info)
8690 iverneed->vn_nextref = iverneed + 1;
fc0e6df6 8691
d0fb9a8d
JJ
8692 if (iverneed->vn_next
8693 > (size_t) (contents_end - (bfd_byte *) everneed))
601a03ba 8694 goto error_return_bad_verref;
d0fb9a8d 8695
fc0e6df6
PB
8696 everneed = ((Elf_External_Verneed *)
8697 ((bfd_byte *) everneed + iverneed->vn_next));
8698 }
25ff461f 8699 elf_tdata (abfd)->cverrefs = i;
fc0e6df6
PB
8700
8701 free (contents);
8702 contents = NULL;
8703 }
252b5132
RH
8704
8705 if (elf_dynverdef (abfd) != 0)
8706 {
8707 Elf_Internal_Shdr *hdr;
8708 Elf_External_Verdef *everdef;
8709 Elf_Internal_Verdef *iverdef;
f631889e
UD
8710 Elf_Internal_Verdef *iverdefarr;
8711 Elf_Internal_Verdef iverdefmem;
252b5132 8712 unsigned int i;
062e2358 8713 unsigned int maxidx;
d0fb9a8d 8714 bfd_byte *contents_end_def, *contents_end_aux;
252b5132
RH
8715
8716 hdr = &elf_tdata (abfd)->dynverdef_hdr;
8717
601a03ba
AM
8718 if (hdr->sh_info == 0 || hdr->sh_size < sizeof (Elf_External_Verdef))
8719 {
8720 error_return_bad_verdef:
4eca0228 8721 _bfd_error_handler
871b3ab2 8722 (_("%pB: .gnu.version_d invalid entry"), abfd);
601a03ba
AM
8723 bfd_set_error (bfd_error_bad_value);
8724 error_return_verdef:
8725 elf_tdata (abfd)->verdef = NULL;
8726 elf_tdata (abfd)->cverdefs = 0;
8727 goto error_return;
8728 }
8729
a50b1753 8730 contents = (bfd_byte *) bfd_malloc (hdr->sh_size);
252b5132 8731 if (contents == NULL)
601a03ba 8732 goto error_return_verdef;
252b5132 8733 if (bfd_seek (abfd, hdr->sh_offset, SEEK_SET) != 0
217aa764 8734 || bfd_bread (contents, hdr->sh_size, abfd) != hdr->sh_size)
601a03ba 8735 goto error_return_verdef;
d0fb9a8d
JJ
8736
8737 BFD_ASSERT (sizeof (Elf_External_Verdef)
8738 >= sizeof (Elf_External_Verdaux));
8739 contents_end_def = contents + hdr->sh_size
8740 - sizeof (Elf_External_Verdef);
8741 contents_end_aux = contents + hdr->sh_size
8742 - sizeof (Elf_External_Verdaux);
8743
f631889e
UD
8744 /* We know the number of entries in the section but not the maximum
8745 index. Therefore we have to run through all entries and find
8746 the maximum. */
252b5132 8747 everdef = (Elf_External_Verdef *) contents;
f631889e
UD
8748 maxidx = 0;
8749 for (i = 0; i < hdr->sh_info; ++i)
8750 {
8751 _bfd_elf_swap_verdef_in (abfd, everdef, &iverdefmem);
8752
601a03ba
AM
8753 if ((iverdefmem.vd_ndx & ((unsigned) VERSYM_VERSION)) == 0)
8754 goto error_return_bad_verdef;
062e2358
AM
8755 if ((iverdefmem.vd_ndx & ((unsigned) VERSYM_VERSION)) > maxidx)
8756 maxidx = iverdefmem.vd_ndx & ((unsigned) VERSYM_VERSION);
f631889e 8757
25ff461f
AM
8758 if (iverdefmem.vd_next == 0)
8759 break;
8760
d0fb9a8d
JJ
8761 if (iverdefmem.vd_next
8762 > (size_t) (contents_end_def - (bfd_byte *) everdef))
601a03ba 8763 goto error_return_bad_verdef;
d0fb9a8d 8764
f631889e
UD
8765 everdef = ((Elf_External_Verdef *)
8766 ((bfd_byte *) everdef + iverdefmem.vd_next));
8767 }
8768
fc0e6df6
PB
8769 if (default_imported_symver)
8770 {
8771 if (freeidx > maxidx)
8772 maxidx = ++freeidx;
8773 else
8774 freeidx = ++maxidx;
8775 }
201159ec 8776
601a03ba
AM
8777 elf_tdata (abfd)->verdef = (Elf_Internal_Verdef *)
8778 bfd_zalloc2 (abfd, maxidx, sizeof (Elf_Internal_Verdef));
f631889e 8779 if (elf_tdata (abfd)->verdef == NULL)
601a03ba 8780 goto error_return_verdef;
f631889e
UD
8781
8782 elf_tdata (abfd)->cverdefs = maxidx;
8783
8784 everdef = (Elf_External_Verdef *) contents;
8785 iverdefarr = elf_tdata (abfd)->verdef;
8786 for (i = 0; i < hdr->sh_info; i++)
252b5132
RH
8787 {
8788 Elf_External_Verdaux *everdaux;
8789 Elf_Internal_Verdaux *iverdaux;
8790 unsigned int j;
8791
f631889e
UD
8792 _bfd_elf_swap_verdef_in (abfd, everdef, &iverdefmem);
8793
d0fb9a8d 8794 if ((iverdefmem.vd_ndx & VERSYM_VERSION) == 0)
601a03ba 8795 goto error_return_bad_verdef;
d0fb9a8d 8796
f631889e 8797 iverdef = &iverdefarr[(iverdefmem.vd_ndx & VERSYM_VERSION) - 1];
595bce75 8798 memcpy (iverdef, &iverdefmem, offsetof (Elf_Internal_Verdef, vd_bfd));
252b5132
RH
8799
8800 iverdef->vd_bfd = abfd;
8801
d0fb9a8d
JJ
8802 if (iverdef->vd_cnt == 0)
8803 iverdef->vd_auxptr = NULL;
8804 else
8805 {
a50b1753 8806 iverdef->vd_auxptr = (struct elf_internal_verdaux *)
07d6d2b8
AM
8807 bfd_alloc2 (abfd, iverdef->vd_cnt,
8808 sizeof (Elf_Internal_Verdaux));
d0fb9a8d
JJ
8809 if (iverdef->vd_auxptr == NULL)
8810 goto error_return_verdef;
8811 }
8812
8813 if (iverdef->vd_aux
8814 > (size_t) (contents_end_aux - (bfd_byte *) everdef))
601a03ba 8815 goto error_return_bad_verdef;
252b5132
RH
8816
8817 everdaux = ((Elf_External_Verdaux *)
8818 ((bfd_byte *) everdef + iverdef->vd_aux));
8819 iverdaux = iverdef->vd_auxptr;
8820 for (j = 0; j < iverdef->vd_cnt; j++, iverdaux++)
8821 {
8822 _bfd_elf_swap_verdaux_in (abfd, everdaux, iverdaux);
8823
8824 iverdaux->vda_nodename =
8825 bfd_elf_string_from_elf_section (abfd, hdr->sh_link,
8826 iverdaux->vda_name);
8827 if (iverdaux->vda_nodename == NULL)
601a03ba 8828 goto error_return_bad_verdef;
252b5132 8829
25ff461f
AM
8830 iverdaux->vda_nextptr = NULL;
8831 if (iverdaux->vda_next == 0)
8832 {
8833 iverdef->vd_cnt = j + 1;
8834 break;
8835 }
252b5132
RH
8836 if (j + 1 < iverdef->vd_cnt)
8837 iverdaux->vda_nextptr = iverdaux + 1;
252b5132 8838
d0fb9a8d
JJ
8839 if (iverdaux->vda_next
8840 > (size_t) (contents_end_aux - (bfd_byte *) everdaux))
601a03ba 8841 goto error_return_bad_verdef;
d0fb9a8d 8842
252b5132
RH
8843 everdaux = ((Elf_External_Verdaux *)
8844 ((bfd_byte *) everdaux + iverdaux->vda_next));
8845 }
8846
595bce75 8847 iverdef->vd_nodename = NULL;
d0fb9a8d
JJ
8848 if (iverdef->vd_cnt)
8849 iverdef->vd_nodename = iverdef->vd_auxptr->vda_nodename;
252b5132 8850
25ff461f
AM
8851 iverdef->vd_nextdef = NULL;
8852 if (iverdef->vd_next == 0)
8853 break;
d0fb9a8d 8854 if ((size_t) (iverdef - iverdefarr) + 1 < maxidx)
252b5132 8855 iverdef->vd_nextdef = iverdef + 1;
252b5132
RH
8856
8857 everdef = ((Elf_External_Verdef *)
8858 ((bfd_byte *) everdef + iverdef->vd_next));
8859 }
8860
8861 free (contents);
8862 contents = NULL;
8863 }
fc0e6df6 8864 else if (default_imported_symver)
252b5132 8865 {
fc0e6df6
PB
8866 if (freeidx < 3)
8867 freeidx = 3;
8868 else
8869 freeidx++;
252b5132 8870
a50b1753 8871 elf_tdata (abfd)->verdef = (Elf_Internal_Verdef *)
07d6d2b8 8872 bfd_zalloc2 (abfd, freeidx, sizeof (Elf_Internal_Verdef));
fc0e6df6 8873 if (elf_tdata (abfd)->verdef == NULL)
252b5132
RH
8874 goto error_return;
8875
fc0e6df6
PB
8876 elf_tdata (abfd)->cverdefs = freeidx;
8877 }
252b5132 8878
fc0e6df6
PB
8879 /* Create a default version based on the soname. */
8880 if (default_imported_symver)
8881 {
8882 Elf_Internal_Verdef *iverdef;
8883 Elf_Internal_Verdaux *iverdaux;
252b5132 8884
5bb3703f 8885 iverdef = &elf_tdata (abfd)->verdef[freeidx - 1];
252b5132 8886
fc0e6df6
PB
8887 iverdef->vd_version = VER_DEF_CURRENT;
8888 iverdef->vd_flags = 0;
8889 iverdef->vd_ndx = freeidx;
8890 iverdef->vd_cnt = 1;
252b5132 8891
fc0e6df6 8892 iverdef->vd_bfd = abfd;
252b5132 8893
fc0e6df6
PB
8894 iverdef->vd_nodename = bfd_elf_get_dt_soname (abfd);
8895 if (iverdef->vd_nodename == NULL)
d0fb9a8d 8896 goto error_return_verdef;
fc0e6df6 8897 iverdef->vd_nextdef = NULL;
601a03ba
AM
8898 iverdef->vd_auxptr = ((struct elf_internal_verdaux *)
8899 bfd_zalloc (abfd, sizeof (Elf_Internal_Verdaux)));
d0fb9a8d
JJ
8900 if (iverdef->vd_auxptr == NULL)
8901 goto error_return_verdef;
252b5132 8902
fc0e6df6
PB
8903 iverdaux = iverdef->vd_auxptr;
8904 iverdaux->vda_nodename = iverdef->vd_nodename;
252b5132
RH
8905 }
8906
b34976b6 8907 return TRUE;
252b5132
RH
8908
8909 error_return:
5ed6aba4 8910 if (contents != NULL)
252b5132 8911 free (contents);
b34976b6 8912 return FALSE;
252b5132
RH
8913}
8914\f
8915asymbol *
217aa764 8916_bfd_elf_make_empty_symbol (bfd *abfd)
252b5132
RH
8917{
8918 elf_symbol_type *newsym;
8919
7a6e0d89 8920 newsym = (elf_symbol_type *) bfd_zalloc (abfd, sizeof (*newsym));
252b5132
RH
8921 if (!newsym)
8922 return NULL;
201159ec
NC
8923 newsym->symbol.the_bfd = abfd;
8924 return &newsym->symbol;
252b5132
RH
8925}
8926
8927void
217aa764
AM
8928_bfd_elf_get_symbol_info (bfd *abfd ATTRIBUTE_UNUSED,
8929 asymbol *symbol,
8930 symbol_info *ret)
252b5132
RH
8931{
8932 bfd_symbol_info (symbol, ret);
8933}
8934
8935/* Return whether a symbol name implies a local symbol. Most targets
8936 use this function for the is_local_label_name entry point, but some
8937 override it. */
8938
b34976b6 8939bfd_boolean
217aa764
AM
8940_bfd_elf_is_local_label_name (bfd *abfd ATTRIBUTE_UNUSED,
8941 const char *name)
252b5132
RH
8942{
8943 /* Normal local symbols start with ``.L''. */
8944 if (name[0] == '.' && name[1] == 'L')
b34976b6 8945 return TRUE;
252b5132
RH
8946
8947 /* At least some SVR4 compilers (e.g., UnixWare 2.1 cc) generate
8948 DWARF debugging symbols starting with ``..''. */
8949 if (name[0] == '.' && name[1] == '.')
b34976b6 8950 return TRUE;
252b5132
RH
8951
8952 /* gcc will sometimes generate symbols beginning with ``_.L_'' when
8953 emitting DWARF debugging output. I suspect this is actually a
8954 small bug in gcc (it calls ASM_OUTPUT_LABEL when it should call
8955 ASM_GENERATE_INTERNAL_LABEL, and this causes the leading
8956 underscore to be emitted on some ELF targets). For ease of use,
8957 we treat such symbols as local. */
8958 if (name[0] == '_' && name[1] == '.' && name[2] == 'L' && name[3] == '_')
b34976b6 8959 return TRUE;
252b5132 8960
b1fa9dd6
NC
8961 /* Treat assembler generated fake symbols, dollar local labels and
8962 forward-backward labels (aka local labels) as locals.
8963 These labels have the form:
8964
07d6d2b8 8965 L0^A.* (fake symbols)
b1fa9dd6
NC
8966
8967 [.]?L[0123456789]+{^A|^B}[0123456789]* (local labels)
8968
8969 Versions which start with .L will have already been matched above,
8970 so we only need to match the rest. */
8971 if (name[0] == 'L' && ISDIGIT (name[1]))
8972 {
8973 bfd_boolean ret = FALSE;
8974 const char * p;
8975 char c;
8976
8977 for (p = name + 2; (c = *p); p++)
8978 {
8979 if (c == 1 || c == 2)
8980 {
8981 if (c == 1 && p == name + 2)
8982 /* A fake symbol. */
8983 return TRUE;
8984
8985 /* FIXME: We are being paranoid here and treating symbols like
8986 L0^Bfoo as if there were non-local, on the grounds that the
8987 assembler will never generate them. But can any symbol
8988 containing an ASCII value in the range 1-31 ever be anything
8989 other than some kind of local ? */
8990 ret = TRUE;
8991 }
8992
8993 if (! ISDIGIT (c))
8994 {
8995 ret = FALSE;
8996 break;
8997 }
8998 }
8999 return ret;
9000 }
ffa54770 9001
b34976b6 9002 return FALSE;
252b5132
RH
9003}
9004
9005alent *
217aa764
AM
9006_bfd_elf_get_lineno (bfd *abfd ATTRIBUTE_UNUSED,
9007 asymbol *symbol ATTRIBUTE_UNUSED)
252b5132
RH
9008{
9009 abort ();
9010 return NULL;
9011}
9012
b34976b6 9013bfd_boolean
217aa764
AM
9014_bfd_elf_set_arch_mach (bfd *abfd,
9015 enum bfd_architecture arch,
9016 unsigned long machine)
252b5132
RH
9017{
9018 /* If this isn't the right architecture for this backend, and this
9019 isn't the generic backend, fail. */
9020 if (arch != get_elf_backend_data (abfd)->arch
9021 && arch != bfd_arch_unknown
9022 && get_elf_backend_data (abfd)->arch != bfd_arch_unknown)
b34976b6 9023 return FALSE;
252b5132
RH
9024
9025 return bfd_default_set_arch_mach (abfd, arch, machine);
9026}
9027
d1fad7c6
NC
9028/* Find the nearest line to a particular section and offset,
9029 for error reporting. */
9030
b34976b6 9031bfd_boolean
217aa764 9032_bfd_elf_find_nearest_line (bfd *abfd,
217aa764 9033 asymbol **symbols,
fb167eb2 9034 asection *section,
217aa764
AM
9035 bfd_vma offset,
9036 const char **filename_ptr,
9037 const char **functionname_ptr,
fb167eb2
AM
9038 unsigned int *line_ptr,
9039 unsigned int *discriminator_ptr)
d1fad7c6 9040{
b34976b6 9041 bfd_boolean found;
d1fad7c6 9042
fb167eb2 9043 if (_bfd_dwarf2_find_nearest_line (abfd, symbols, NULL, section, offset,
4e8a9624 9044 filename_ptr, functionname_ptr,
fb167eb2 9045 line_ptr, discriminator_ptr,
9defd221 9046 dwarf_debug_sections,
e7679060
AM
9047 &elf_tdata (abfd)->dwarf2_find_line_info))
9048 return TRUE;
9049
9050 if (_bfd_dwarf1_find_nearest_line (abfd, symbols, section, offset,
9051 filename_ptr, functionname_ptr, line_ptr))
d1fad7c6
NC
9052 {
9053 if (!*functionname_ptr)
e00e8198
AM
9054 _bfd_elf_find_function (abfd, symbols, section, offset,
9055 *filename_ptr ? NULL : filename_ptr,
9056 functionname_ptr);
b34976b6 9057 return TRUE;
d1fad7c6
NC
9058 }
9059
9060 if (! _bfd_stab_section_find_nearest_line (abfd, symbols, section, offset,
4e8a9624
AM
9061 &found, filename_ptr,
9062 functionname_ptr, line_ptr,
9063 &elf_tdata (abfd)->line_info))
b34976b6 9064 return FALSE;
dc43ada5 9065 if (found && (*functionname_ptr || *line_ptr))
b34976b6 9066 return TRUE;
d1fad7c6
NC
9067
9068 if (symbols == NULL)
b34976b6 9069 return FALSE;
d1fad7c6 9070
e00e8198
AM
9071 if (! _bfd_elf_find_function (abfd, symbols, section, offset,
9072 filename_ptr, functionname_ptr))
b34976b6 9073 return FALSE;
d1fad7c6 9074
252b5132 9075 *line_ptr = 0;
b34976b6 9076 return TRUE;
252b5132
RH
9077}
9078
5420f73d
L
9079/* Find the line for a symbol. */
9080
9081bfd_boolean
9082_bfd_elf_find_line (bfd *abfd, asymbol **symbols, asymbol *symbol,
9083 const char **filename_ptr, unsigned int *line_ptr)
9b8d1a36 9084{
fb167eb2
AM
9085 return _bfd_dwarf2_find_nearest_line (abfd, symbols, symbol, NULL, 0,
9086 filename_ptr, NULL, line_ptr, NULL,
9defd221 9087 dwarf_debug_sections,
fb167eb2 9088 &elf_tdata (abfd)->dwarf2_find_line_info);
5420f73d
L
9089}
9090
4ab527b0
FF
9091/* After a call to bfd_find_nearest_line, successive calls to
9092 bfd_find_inliner_info can be used to get source information about
9093 each level of function inlining that terminated at the address
9094 passed to bfd_find_nearest_line. Currently this is only supported
9095 for DWARF2 with appropriate DWARF3 extensions. */
9096
9097bfd_boolean
9098_bfd_elf_find_inliner_info (bfd *abfd,
9099 const char **filename_ptr,
9100 const char **functionname_ptr,
9101 unsigned int *line_ptr)
9102{
9103 bfd_boolean found;
9104 found = _bfd_dwarf2_find_inliner_info (abfd, filename_ptr,
9105 functionname_ptr, line_ptr,
9106 & elf_tdata (abfd)->dwarf2_find_line_info);
9107 return found;
9108}
9109
252b5132 9110int
a6b96beb 9111_bfd_elf_sizeof_headers (bfd *abfd, struct bfd_link_info *info)
252b5132 9112{
8ded5a0f
AM
9113 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
9114 int ret = bed->s->sizeof_ehdr;
252b5132 9115
0e1862bb 9116 if (!bfd_link_relocatable (info))
8ded5a0f 9117 {
12bd6957 9118 bfd_size_type phdr_size = elf_program_header_size (abfd);
8ded5a0f 9119
62d7a5f6
AM
9120 if (phdr_size == (bfd_size_type) -1)
9121 {
9122 struct elf_segment_map *m;
9123
9124 phdr_size = 0;
12bd6957 9125 for (m = elf_seg_map (abfd); m != NULL; m = m->next)
62d7a5f6 9126 phdr_size += bed->s->sizeof_phdr;
8ded5a0f 9127
62d7a5f6
AM
9128 if (phdr_size == 0)
9129 phdr_size = get_program_header_size (abfd, info);
9130 }
8ded5a0f 9131
12bd6957 9132 elf_program_header_size (abfd) = phdr_size;
8ded5a0f
AM
9133 ret += phdr_size;
9134 }
9135
252b5132
RH
9136 return ret;
9137}
9138
b34976b6 9139bfd_boolean
217aa764
AM
9140_bfd_elf_set_section_contents (bfd *abfd,
9141 sec_ptr section,
0f867abe 9142 const void *location,
217aa764
AM
9143 file_ptr offset,
9144 bfd_size_type count)
252b5132
RH
9145{
9146 Elf_Internal_Shdr *hdr;
1b6aeedb 9147 file_ptr pos;
252b5132
RH
9148
9149 if (! abfd->output_has_begun
217aa764 9150 && ! _bfd_elf_compute_section_file_positions (abfd, NULL))
b34976b6 9151 return FALSE;
252b5132 9152
0ce398f1
L
9153 if (!count)
9154 return TRUE;
9155
252b5132 9156 hdr = &elf_section_data (section)->this_hdr;
0ce398f1
L
9157 if (hdr->sh_offset == (file_ptr) -1)
9158 {
1ff6de03
NA
9159 if (bfd_section_is_ctf (section))
9160 /* Nothing to do with this section: the contents are generated
9161 later. */
9162 return TRUE;
9163
0ce398f1
L
9164 /* We must compress this section. Write output to the buffer. */
9165 unsigned char *contents = hdr->contents;
9166 if ((offset + count) > hdr->sh_size
9167 || (section->flags & SEC_ELF_COMPRESS) == 0
9168 || contents == NULL)
9169 abort ();
9170 memcpy (contents + offset, location, count);
9171 return TRUE;
9172 }
dc810e39
AM
9173 pos = hdr->sh_offset + offset;
9174 if (bfd_seek (abfd, pos, SEEK_SET) != 0
9175 || bfd_bwrite (location, count, abfd) != count)
b34976b6 9176 return FALSE;
252b5132 9177
b34976b6 9178 return TRUE;
252b5132
RH
9179}
9180
f3185997 9181bfd_boolean
217aa764
AM
9182_bfd_elf_no_info_to_howto (bfd *abfd ATTRIBUTE_UNUSED,
9183 arelent *cache_ptr ATTRIBUTE_UNUSED,
9184 Elf_Internal_Rela *dst ATTRIBUTE_UNUSED)
252b5132
RH
9185{
9186 abort ();
f3185997 9187 return FALSE;
252b5132
RH
9188}
9189
252b5132
RH
9190/* Try to convert a non-ELF reloc into an ELF one. */
9191
b34976b6 9192bfd_boolean
217aa764 9193_bfd_elf_validate_reloc (bfd *abfd, arelent *areloc)
252b5132 9194{
c044fabd 9195 /* Check whether we really have an ELF howto. */
252b5132
RH
9196
9197 if ((*areloc->sym_ptr_ptr)->the_bfd->xvec != abfd->xvec)
9198 {
9199 bfd_reloc_code_real_type code;
9200 reloc_howto_type *howto;
9201
9202 /* Alien reloc: Try to determine its type to replace it with an
c044fabd 9203 equivalent ELF reloc. */
252b5132
RH
9204
9205 if (areloc->howto->pc_relative)
9206 {
9207 switch (areloc->howto->bitsize)
9208 {
9209 case 8:
9210 code = BFD_RELOC_8_PCREL;
9211 break;
9212 case 12:
9213 code = BFD_RELOC_12_PCREL;
9214 break;
9215 case 16:
9216 code = BFD_RELOC_16_PCREL;
9217 break;
9218 case 24:
9219 code = BFD_RELOC_24_PCREL;
9220 break;
9221 case 32:
9222 code = BFD_RELOC_32_PCREL;
9223 break;
9224 case 64:
9225 code = BFD_RELOC_64_PCREL;
9226 break;
9227 default:
9228 goto fail;
9229 }
9230
9231 howto = bfd_reloc_type_lookup (abfd, code);
9232
94698d01 9233 if (howto && areloc->howto->pcrel_offset != howto->pcrel_offset)
252b5132
RH
9234 {
9235 if (howto->pcrel_offset)
9236 areloc->addend += areloc->address;
9237 else
9238 areloc->addend -= areloc->address; /* addend is unsigned!! */
9239 }
9240 }
9241 else
9242 {
9243 switch (areloc->howto->bitsize)
9244 {
9245 case 8:
9246 code = BFD_RELOC_8;
9247 break;
9248 case 14:
9249 code = BFD_RELOC_14;
9250 break;
9251 case 16:
9252 code = BFD_RELOC_16;
9253 break;
9254 case 26:
9255 code = BFD_RELOC_26;
9256 break;
9257 case 32:
9258 code = BFD_RELOC_32;
9259 break;
9260 case 64:
9261 code = BFD_RELOC_64;
9262 break;
9263 default:
9264 goto fail;
9265 }
9266
9267 howto = bfd_reloc_type_lookup (abfd, code);
9268 }
9269
9270 if (howto)
9271 areloc->howto = howto;
9272 else
9273 goto fail;
9274 }
9275
b34976b6 9276 return TRUE;
252b5132
RH
9277
9278 fail:
0aa13fee
AM
9279 /* xgettext:c-format */
9280 _bfd_error_handler (_("%pB: %s unsupported"),
9281 abfd, areloc->howto->name);
9aea1e31 9282 bfd_set_error (bfd_error_sorry);
b34976b6 9283 return FALSE;
252b5132
RH
9284}
9285
b34976b6 9286bfd_boolean
217aa764 9287_bfd_elf_close_and_cleanup (bfd *abfd)
252b5132 9288{
d9071b0c
TG
9289 struct elf_obj_tdata *tdata = elf_tdata (abfd);
9290 if (bfd_get_format (abfd) == bfd_object && tdata != NULL)
252b5132 9291 {
c0355132 9292 if (elf_tdata (abfd)->o != NULL && elf_shstrtab (abfd) != NULL)
2b0f7ef9 9293 _bfd_elf_strtab_free (elf_shstrtab (abfd));
d9071b0c 9294 _bfd_dwarf2_cleanup_debug_info (abfd, &tdata->dwarf2_find_line_info);
252b5132
RH
9295 }
9296
9297 return _bfd_generic_close_and_cleanup (abfd);
9298}
9299
9300/* For Rel targets, we encode meaningful data for BFD_RELOC_VTABLE_ENTRY
9301 in the relocation's offset. Thus we cannot allow any sort of sanity
9302 range-checking to interfere. There is nothing else to do in processing
9303 this reloc. */
9304
9305bfd_reloc_status_type
217aa764
AM
9306_bfd_elf_rel_vtable_reloc_fn
9307 (bfd *abfd ATTRIBUTE_UNUSED, arelent *re ATTRIBUTE_UNUSED,
fc0a2244 9308 struct bfd_symbol *symbol ATTRIBUTE_UNUSED,
217aa764
AM
9309 void *data ATTRIBUTE_UNUSED, asection *is ATTRIBUTE_UNUSED,
9310 bfd *obfd ATTRIBUTE_UNUSED, char **errmsg ATTRIBUTE_UNUSED)
252b5132
RH
9311{
9312 return bfd_reloc_ok;
9313}
252b5132
RH
9314\f
9315/* Elf core file support. Much of this only works on native
9316 toolchains, since we rely on knowing the
9317 machine-dependent procfs structure in order to pick
c044fabd 9318 out details about the corefile. */
252b5132
RH
9319
9320#ifdef HAVE_SYS_PROCFS_H
16231b7b
DG
9321/* Needed for new procfs interface on sparc-solaris. */
9322# define _STRUCTURED_PROC 1
252b5132
RH
9323# include <sys/procfs.h>
9324#endif
9325
261b8d08
PA
9326/* Return a PID that identifies a "thread" for threaded cores, or the
9327 PID of the main process for non-threaded cores. */
252b5132
RH
9328
9329static int
217aa764 9330elfcore_make_pid (bfd *abfd)
252b5132 9331{
261b8d08
PA
9332 int pid;
9333
228e534f 9334 pid = elf_tdata (abfd)->core->lwpid;
261b8d08 9335 if (pid == 0)
228e534f 9336 pid = elf_tdata (abfd)->core->pid;
261b8d08
PA
9337
9338 return pid;
252b5132
RH
9339}
9340
252b5132
RH
9341/* If there isn't a section called NAME, make one, using
9342 data from SECT. Note, this function will generate a
9343 reference to NAME, so you shouldn't deallocate or
c044fabd 9344 overwrite it. */
252b5132 9345
b34976b6 9346static bfd_boolean
217aa764 9347elfcore_maybe_make_sect (bfd *abfd, char *name, asection *sect)
252b5132 9348{
c044fabd 9349 asection *sect2;
252b5132
RH
9350
9351 if (bfd_get_section_by_name (abfd, name) != NULL)
b34976b6 9352 return TRUE;
252b5132 9353
117ed4f8 9354 sect2 = bfd_make_section_with_flags (abfd, name, sect->flags);
252b5132 9355 if (sect2 == NULL)
b34976b6 9356 return FALSE;
252b5132 9357
eea6121a 9358 sect2->size = sect->size;
252b5132 9359 sect2->filepos = sect->filepos;
252b5132 9360 sect2->alignment_power = sect->alignment_power;
b34976b6 9361 return TRUE;
252b5132
RH
9362}
9363
bb0082d6
AM
9364/* Create a pseudosection containing SIZE bytes at FILEPOS. This
9365 actually creates up to two pseudosections:
9366 - For the single-threaded case, a section named NAME, unless
9367 such a section already exists.
9368 - For the multi-threaded case, a section named "NAME/PID", where
9369 PID is elfcore_make_pid (abfd).
24d3e51b 9370 Both pseudosections have identical contents. */
b34976b6 9371bfd_boolean
217aa764
AM
9372_bfd_elfcore_make_pseudosection (bfd *abfd,
9373 char *name,
9374 size_t size,
9375 ufile_ptr filepos)
bb0082d6
AM
9376{
9377 char buf[100];
9378 char *threaded_name;
d4c88bbb 9379 size_t len;
bb0082d6
AM
9380 asection *sect;
9381
9382 /* Build the section name. */
9383
9384 sprintf (buf, "%s/%d", name, elfcore_make_pid (abfd));
d4c88bbb 9385 len = strlen (buf) + 1;
a50b1753 9386 threaded_name = (char *) bfd_alloc (abfd, len);
bb0082d6 9387 if (threaded_name == NULL)
b34976b6 9388 return FALSE;
d4c88bbb 9389 memcpy (threaded_name, buf, len);
bb0082d6 9390
117ed4f8
AM
9391 sect = bfd_make_section_anyway_with_flags (abfd, threaded_name,
9392 SEC_HAS_CONTENTS);
bb0082d6 9393 if (sect == NULL)
b34976b6 9394 return FALSE;
eea6121a 9395 sect->size = size;
bb0082d6 9396 sect->filepos = filepos;
bb0082d6
AM
9397 sect->alignment_power = 2;
9398
936e320b 9399 return elfcore_maybe_make_sect (abfd, name, sect);
bb0082d6
AM
9400}
9401
58e07198
CZ
9402static bfd_boolean
9403elfcore_make_auxv_note_section (bfd *abfd, Elf_Internal_Note *note,
9404 size_t offs)
9405{
9406 asection *sect = bfd_make_section_anyway_with_flags (abfd, ".auxv",
9407 SEC_HAS_CONTENTS);
9408
9409 if (sect == NULL)
9410 return FALSE;
9411
9412 sect->size = note->descsz - offs;
9413 sect->filepos = note->descpos + offs;
9414 sect->alignment_power = 1 + bfd_get_arch_size (abfd) / 32;
9415
9416 return TRUE;
9417}
9418
252b5132 9419/* prstatus_t exists on:
4a938328 9420 solaris 2.5+
252b5132
RH
9421 linux 2.[01] + glibc
9422 unixware 4.2
9423*/
9424
9425#if defined (HAVE_PRSTATUS_T)
a7b97311 9426
b34976b6 9427static bfd_boolean
217aa764 9428elfcore_grok_prstatus (bfd *abfd, Elf_Internal_Note *note)
252b5132 9429{
eea6121a 9430 size_t size;
7ee38065 9431 int offset;
252b5132 9432
4a938328
MS
9433 if (note->descsz == sizeof (prstatus_t))
9434 {
9435 prstatus_t prstat;
252b5132 9436
eea6121a 9437 size = sizeof (prstat.pr_reg);
7ee38065 9438 offset = offsetof (prstatus_t, pr_reg);
4a938328 9439 memcpy (&prstat, note->descdata, sizeof (prstat));
252b5132 9440
fa49d224
NC
9441 /* Do not overwrite the core signal if it
9442 has already been set by another thread. */
228e534f
AM
9443 if (elf_tdata (abfd)->core->signal == 0)
9444 elf_tdata (abfd)->core->signal = prstat.pr_cursig;
9445 if (elf_tdata (abfd)->core->pid == 0)
9446 elf_tdata (abfd)->core->pid = prstat.pr_pid;
252b5132 9447
4a938328
MS
9448 /* pr_who exists on:
9449 solaris 2.5+
9450 unixware 4.2
9451 pr_who doesn't exist on:
9452 linux 2.[01]
9453 */
252b5132 9454#if defined (HAVE_PRSTATUS_T_PR_WHO)
228e534f 9455 elf_tdata (abfd)->core->lwpid = prstat.pr_who;
261b8d08 9456#else
228e534f 9457 elf_tdata (abfd)->core->lwpid = prstat.pr_pid;
252b5132 9458#endif
4a938328 9459 }
7ee38065 9460#if defined (HAVE_PRSTATUS32_T)
4a938328
MS
9461 else if (note->descsz == sizeof (prstatus32_t))
9462 {
9463 /* 64-bit host, 32-bit corefile */
9464 prstatus32_t prstat;
9465
eea6121a 9466 size = sizeof (prstat.pr_reg);
7ee38065 9467 offset = offsetof (prstatus32_t, pr_reg);
4a938328
MS
9468 memcpy (&prstat, note->descdata, sizeof (prstat));
9469
fa49d224
NC
9470 /* Do not overwrite the core signal if it
9471 has already been set by another thread. */
228e534f
AM
9472 if (elf_tdata (abfd)->core->signal == 0)
9473 elf_tdata (abfd)->core->signal = prstat.pr_cursig;
9474 if (elf_tdata (abfd)->core->pid == 0)
9475 elf_tdata (abfd)->core->pid = prstat.pr_pid;
4a938328
MS
9476
9477 /* pr_who exists on:
9478 solaris 2.5+
9479 unixware 4.2
9480 pr_who doesn't exist on:
9481 linux 2.[01]
9482 */
7ee38065 9483#if defined (HAVE_PRSTATUS32_T_PR_WHO)
228e534f 9484 elf_tdata (abfd)->core->lwpid = prstat.pr_who;
261b8d08 9485#else
228e534f 9486 elf_tdata (abfd)->core->lwpid = prstat.pr_pid;
4a938328
MS
9487#endif
9488 }
7ee38065 9489#endif /* HAVE_PRSTATUS32_T */
4a938328
MS
9490 else
9491 {
9492 /* Fail - we don't know how to handle any other
9493 note size (ie. data object type). */
b34976b6 9494 return TRUE;
4a938328 9495 }
252b5132 9496
bb0082d6 9497 /* Make a ".reg/999" section and a ".reg" section. */
936e320b 9498 return _bfd_elfcore_make_pseudosection (abfd, ".reg",
eea6121a 9499 size, note->descpos + offset);
252b5132
RH
9500}
9501#endif /* defined (HAVE_PRSTATUS_T) */
9502
bb0082d6 9503/* Create a pseudosection containing the exact contents of NOTE. */
b34976b6 9504static bfd_boolean
217aa764
AM
9505elfcore_make_note_pseudosection (bfd *abfd,
9506 char *name,
9507 Elf_Internal_Note *note)
252b5132 9508{
936e320b
AM
9509 return _bfd_elfcore_make_pseudosection (abfd, name,
9510 note->descsz, note->descpos);
252b5132
RH
9511}
9512
ff08c6bb
JB
9513/* There isn't a consistent prfpregset_t across platforms,
9514 but it doesn't matter, because we don't have to pick this
c044fabd
KH
9515 data structure apart. */
9516
b34976b6 9517static bfd_boolean
217aa764 9518elfcore_grok_prfpreg (bfd *abfd, Elf_Internal_Note *note)
ff08c6bb
JB
9519{
9520 return elfcore_make_note_pseudosection (abfd, ".reg2", note);
9521}
9522
ff08c6bb 9523/* Linux dumps the Intel SSE regs in a note named "LINUX" with a note
971d4640 9524 type of NT_PRXFPREG. Just include the whole note's contents
ff08c6bb 9525 literally. */
c044fabd 9526
b34976b6 9527static bfd_boolean
217aa764 9528elfcore_grok_prxfpreg (bfd *abfd, Elf_Internal_Note *note)
ff08c6bb
JB
9529{
9530 return elfcore_make_note_pseudosection (abfd, ".reg-xfp", note);
9531}
9532
4339cae0
L
9533/* Linux dumps the Intel XSAVE extended state in a note named "LINUX"
9534 with a note type of NT_X86_XSTATE. Just include the whole note's
9535 contents literally. */
9536
9537static bfd_boolean
9538elfcore_grok_xstatereg (bfd *abfd, Elf_Internal_Note *note)
9539{
9540 return elfcore_make_note_pseudosection (abfd, ".reg-xstate", note);
9541}
9542
97753bd5
AM
9543static bfd_boolean
9544elfcore_grok_ppc_vmx (bfd *abfd, Elf_Internal_Note *note)
9545{
9546 return elfcore_make_note_pseudosection (abfd, ".reg-ppc-vmx", note);
9547}
9548
89eeb0bc
LM
9549static bfd_boolean
9550elfcore_grok_ppc_vsx (bfd *abfd, Elf_Internal_Note *note)
9551{
9552 return elfcore_make_note_pseudosection (abfd, ".reg-ppc-vsx", note);
9553}
97753bd5 9554
cb2366c1
EBM
9555static bfd_boolean
9556elfcore_grok_ppc_tar (bfd *abfd, Elf_Internal_Note *note)
9557{
9558 return elfcore_make_note_pseudosection (abfd, ".reg-ppc-tar", note);
9559}
9560
9561static bfd_boolean
9562elfcore_grok_ppc_ppr (bfd *abfd, Elf_Internal_Note *note)
9563{
9564 return elfcore_make_note_pseudosection (abfd, ".reg-ppc-ppr", note);
9565}
9566
9567static bfd_boolean
9568elfcore_grok_ppc_dscr (bfd *abfd, Elf_Internal_Note *note)
9569{
9570 return elfcore_make_note_pseudosection (abfd, ".reg-ppc-dscr", note);
9571}
9572
9573static bfd_boolean
9574elfcore_grok_ppc_ebb (bfd *abfd, Elf_Internal_Note *note)
9575{
9576 return elfcore_make_note_pseudosection (abfd, ".reg-ppc-ebb", note);
9577}
9578
9579static bfd_boolean
9580elfcore_grok_ppc_pmu (bfd *abfd, Elf_Internal_Note *note)
9581{
9582 return elfcore_make_note_pseudosection (abfd, ".reg-ppc-pmu", note);
9583}
9584
9585static bfd_boolean
9586elfcore_grok_ppc_tm_cgpr (bfd *abfd, Elf_Internal_Note *note)
9587{
9588 return elfcore_make_note_pseudosection (abfd, ".reg-ppc-tm-cgpr", note);
9589}
9590
9591static bfd_boolean
9592elfcore_grok_ppc_tm_cfpr (bfd *abfd, Elf_Internal_Note *note)
9593{
9594 return elfcore_make_note_pseudosection (abfd, ".reg-ppc-tm-cfpr", note);
9595}
9596
9597static bfd_boolean
9598elfcore_grok_ppc_tm_cvmx (bfd *abfd, Elf_Internal_Note *note)
9599{
9600 return elfcore_make_note_pseudosection (abfd, ".reg-ppc-tm-cvmx", note);
9601}
9602
9603static bfd_boolean
9604elfcore_grok_ppc_tm_cvsx (bfd *abfd, Elf_Internal_Note *note)
9605{
9606 return elfcore_make_note_pseudosection (abfd, ".reg-ppc-tm-cvsx", note);
9607}
9608
9609static bfd_boolean
9610elfcore_grok_ppc_tm_spr (bfd *abfd, Elf_Internal_Note *note)
9611{
9612 return elfcore_make_note_pseudosection (abfd, ".reg-ppc-tm-spr", note);
9613}
9614
9615static bfd_boolean
9616elfcore_grok_ppc_tm_ctar (bfd *abfd, Elf_Internal_Note *note)
9617{
9618 return elfcore_make_note_pseudosection (abfd, ".reg-ppc-tm-ctar", note);
9619}
9620
9621static bfd_boolean
9622elfcore_grok_ppc_tm_cppr (bfd *abfd, Elf_Internal_Note *note)
9623{
9624 return elfcore_make_note_pseudosection (abfd, ".reg-ppc-tm-cppr", note);
9625}
9626
9627static bfd_boolean
9628elfcore_grok_ppc_tm_cdscr (bfd *abfd, Elf_Internal_Note *note)
9629{
9630 return elfcore_make_note_pseudosection (abfd, ".reg-ppc-tm-cdscr", note);
9631}
9632
0675e188
UW
9633static bfd_boolean
9634elfcore_grok_s390_high_gprs (bfd *abfd, Elf_Internal_Note *note)
9635{
9636 return elfcore_make_note_pseudosection (abfd, ".reg-s390-high-gprs", note);
9637}
9638
d7eeb400
MS
9639static bfd_boolean
9640elfcore_grok_s390_timer (bfd *abfd, Elf_Internal_Note *note)
9641{
9642 return elfcore_make_note_pseudosection (abfd, ".reg-s390-timer", note);
9643}
9644
9645static bfd_boolean
9646elfcore_grok_s390_todcmp (bfd *abfd, Elf_Internal_Note *note)
9647{
9648 return elfcore_make_note_pseudosection (abfd, ".reg-s390-todcmp", note);
9649}
9650
9651static bfd_boolean
9652elfcore_grok_s390_todpreg (bfd *abfd, Elf_Internal_Note *note)
9653{
9654 return elfcore_make_note_pseudosection (abfd, ".reg-s390-todpreg", note);
9655}
9656
9657static bfd_boolean
9658elfcore_grok_s390_ctrs (bfd *abfd, Elf_Internal_Note *note)
9659{
9660 return elfcore_make_note_pseudosection (abfd, ".reg-s390-ctrs", note);
9661}
9662
9663static bfd_boolean
9664elfcore_grok_s390_prefix (bfd *abfd, Elf_Internal_Note *note)
9665{
9666 return elfcore_make_note_pseudosection (abfd, ".reg-s390-prefix", note);
9667}
9668
355b81d9
UW
9669static bfd_boolean
9670elfcore_grok_s390_last_break (bfd *abfd, Elf_Internal_Note *note)
9671{
9672 return elfcore_make_note_pseudosection (abfd, ".reg-s390-last-break", note);
9673}
9674
9675static bfd_boolean
9676elfcore_grok_s390_system_call (bfd *abfd, Elf_Internal_Note *note)
9677{
9678 return elfcore_make_note_pseudosection (abfd, ".reg-s390-system-call", note);
9679}
9680
abb3f6cc
NC
9681static bfd_boolean
9682elfcore_grok_s390_tdb (bfd *abfd, Elf_Internal_Note *note)
9683{
9684 return elfcore_make_note_pseudosection (abfd, ".reg-s390-tdb", note);
9685}
9686
4ef9f41a
AA
9687static bfd_boolean
9688elfcore_grok_s390_vxrs_low (bfd *abfd, Elf_Internal_Note *note)
9689{
9690 return elfcore_make_note_pseudosection (abfd, ".reg-s390-vxrs-low", note);
9691}
9692
9693static bfd_boolean
9694elfcore_grok_s390_vxrs_high (bfd *abfd, Elf_Internal_Note *note)
9695{
9696 return elfcore_make_note_pseudosection (abfd, ".reg-s390-vxrs-high", note);
9697}
9698
88ab90e8
AA
9699static bfd_boolean
9700elfcore_grok_s390_gs_cb (bfd *abfd, Elf_Internal_Note *note)
9701{
9702 return elfcore_make_note_pseudosection (abfd, ".reg-s390-gs-cb", note);
9703}
9704
9705static bfd_boolean
9706elfcore_grok_s390_gs_bc (bfd *abfd, Elf_Internal_Note *note)
9707{
9708 return elfcore_make_note_pseudosection (abfd, ".reg-s390-gs-bc", note);
9709}
9710
faa9a424
UW
9711static bfd_boolean
9712elfcore_grok_arm_vfp (bfd *abfd, Elf_Internal_Note *note)
9713{
9714 return elfcore_make_note_pseudosection (abfd, ".reg-arm-vfp", note);
9715}
9716
652451f8
YZ
9717static bfd_boolean
9718elfcore_grok_aarch_tls (bfd *abfd, Elf_Internal_Note *note)
9719{
9720 return elfcore_make_note_pseudosection (abfd, ".reg-aarch-tls", note);
9721}
9722
9723static bfd_boolean
9724elfcore_grok_aarch_hw_break (bfd *abfd, Elf_Internal_Note *note)
9725{
9726 return elfcore_make_note_pseudosection (abfd, ".reg-aarch-hw-break", note);
9727}
9728
9729static bfd_boolean
9730elfcore_grok_aarch_hw_watch (bfd *abfd, Elf_Internal_Note *note)
9731{
9732 return elfcore_make_note_pseudosection (abfd, ".reg-aarch-hw-watch", note);
9733}
9734
ad1cc4e4
AH
9735static bfd_boolean
9736elfcore_grok_aarch_sve (bfd *abfd, Elf_Internal_Note *note)
9737{
9738 return elfcore_make_note_pseudosection (abfd, ".reg-aarch-sve", note);
9739}
9740
e6c3b5bf
AH
9741static bfd_boolean
9742elfcore_grok_aarch_pauth (bfd *abfd, Elf_Internal_Note *note)
9743{
9744 return elfcore_make_note_pseudosection (abfd, ".reg-aarch-pauth", note);
9745}
9746
252b5132 9747#if defined (HAVE_PRPSINFO_T)
4a938328 9748typedef prpsinfo_t elfcore_psinfo_t;
7ee38065 9749#if defined (HAVE_PRPSINFO32_T) /* Sparc64 cross Sparc32 */
4a938328
MS
9750typedef prpsinfo32_t elfcore_psinfo32_t;
9751#endif
252b5132
RH
9752#endif
9753
9754#if defined (HAVE_PSINFO_T)
4a938328 9755typedef psinfo_t elfcore_psinfo_t;
7ee38065 9756#if defined (HAVE_PSINFO32_T) /* Sparc64 cross Sparc32 */
4a938328
MS
9757typedef psinfo32_t elfcore_psinfo32_t;
9758#endif
252b5132
RH
9759#endif
9760
252b5132
RH
9761/* return a malloc'ed copy of a string at START which is at
9762 most MAX bytes long, possibly without a terminating '\0'.
c044fabd 9763 the copy will always have a terminating '\0'. */
252b5132 9764
936e320b 9765char *
217aa764 9766_bfd_elfcore_strndup (bfd *abfd, char *start, size_t max)
252b5132 9767{
dc810e39 9768 char *dups;
a50b1753 9769 char *end = (char *) memchr (start, '\0', max);
dc810e39 9770 size_t len;
252b5132
RH
9771
9772 if (end == NULL)
9773 len = max;
9774 else
9775 len = end - start;
9776
a50b1753 9777 dups = (char *) bfd_alloc (abfd, len + 1);
dc810e39 9778 if (dups == NULL)
252b5132
RH
9779 return NULL;
9780
dc810e39
AM
9781 memcpy (dups, start, len);
9782 dups[len] = '\0';
252b5132 9783
dc810e39 9784 return dups;
252b5132
RH
9785}
9786
bb0082d6 9787#if defined (HAVE_PRPSINFO_T) || defined (HAVE_PSINFO_T)
b34976b6 9788static bfd_boolean
217aa764 9789elfcore_grok_psinfo (bfd *abfd, Elf_Internal_Note *note)
252b5132 9790{
4a938328
MS
9791 if (note->descsz == sizeof (elfcore_psinfo_t))
9792 {
9793 elfcore_psinfo_t psinfo;
252b5132 9794
7ee38065 9795 memcpy (&psinfo, note->descdata, sizeof (psinfo));
252b5132 9796
335e41d4 9797#if defined (HAVE_PSINFO_T_PR_PID) || defined (HAVE_PRPSINFO_T_PR_PID)
228e534f 9798 elf_tdata (abfd)->core->pid = psinfo.pr_pid;
335e41d4 9799#endif
228e534f 9800 elf_tdata (abfd)->core->program
936e320b
AM
9801 = _bfd_elfcore_strndup (abfd, psinfo.pr_fname,
9802 sizeof (psinfo.pr_fname));
252b5132 9803
228e534f 9804 elf_tdata (abfd)->core->command
936e320b
AM
9805 = _bfd_elfcore_strndup (abfd, psinfo.pr_psargs,
9806 sizeof (psinfo.pr_psargs));
4a938328 9807 }
7ee38065 9808#if defined (HAVE_PRPSINFO32_T) || defined (HAVE_PSINFO32_T)
4a938328
MS
9809 else if (note->descsz == sizeof (elfcore_psinfo32_t))
9810 {
9811 /* 64-bit host, 32-bit corefile */
9812 elfcore_psinfo32_t psinfo;
9813
7ee38065 9814 memcpy (&psinfo, note->descdata, sizeof (psinfo));
252b5132 9815
335e41d4 9816#if defined (HAVE_PSINFO32_T_PR_PID) || defined (HAVE_PRPSINFO32_T_PR_PID)
228e534f 9817 elf_tdata (abfd)->core->pid = psinfo.pr_pid;
335e41d4 9818#endif
228e534f 9819 elf_tdata (abfd)->core->program
936e320b
AM
9820 = _bfd_elfcore_strndup (abfd, psinfo.pr_fname,
9821 sizeof (psinfo.pr_fname));
4a938328 9822
228e534f 9823 elf_tdata (abfd)->core->command
936e320b
AM
9824 = _bfd_elfcore_strndup (abfd, psinfo.pr_psargs,
9825 sizeof (psinfo.pr_psargs));
4a938328
MS
9826 }
9827#endif
9828
9829 else
9830 {
9831 /* Fail - we don't know how to handle any other
9832 note size (ie. data object type). */
b34976b6 9833 return TRUE;
4a938328 9834 }
252b5132
RH
9835
9836 /* Note that for some reason, a spurious space is tacked
9837 onto the end of the args in some (at least one anyway)
c044fabd 9838 implementations, so strip it off if it exists. */
252b5132
RH
9839
9840 {
228e534f 9841 char *command = elf_tdata (abfd)->core->command;
252b5132
RH
9842 int n = strlen (command);
9843
9844 if (0 < n && command[n - 1] == ' ')
9845 command[n - 1] = '\0';
9846 }
9847
b34976b6 9848 return TRUE;
252b5132
RH
9849}
9850#endif /* defined (HAVE_PRPSINFO_T) || defined (HAVE_PSINFO_T) */
9851
252b5132 9852#if defined (HAVE_PSTATUS_T)
b34976b6 9853static bfd_boolean
217aa764 9854elfcore_grok_pstatus (bfd *abfd, Elf_Internal_Note *note)
252b5132 9855{
f572a39d
AM
9856 if (note->descsz == sizeof (pstatus_t)
9857#if defined (HAVE_PXSTATUS_T)
9858 || note->descsz == sizeof (pxstatus_t)
9859#endif
9860 )
4a938328
MS
9861 {
9862 pstatus_t pstat;
252b5132 9863
4a938328 9864 memcpy (&pstat, note->descdata, sizeof (pstat));
252b5132 9865
228e534f 9866 elf_tdata (abfd)->core->pid = pstat.pr_pid;
4a938328 9867 }
7ee38065 9868#if defined (HAVE_PSTATUS32_T)
4a938328
MS
9869 else if (note->descsz == sizeof (pstatus32_t))
9870 {
9871 /* 64-bit host, 32-bit corefile */
9872 pstatus32_t pstat;
252b5132 9873
4a938328 9874 memcpy (&pstat, note->descdata, sizeof (pstat));
252b5132 9875
228e534f 9876 elf_tdata (abfd)->core->pid = pstat.pr_pid;
4a938328
MS
9877 }
9878#endif
252b5132
RH
9879 /* Could grab some more details from the "representative"
9880 lwpstatus_t in pstat.pr_lwp, but we'll catch it all in an
c044fabd 9881 NT_LWPSTATUS note, presumably. */
252b5132 9882
b34976b6 9883 return TRUE;
252b5132
RH
9884}
9885#endif /* defined (HAVE_PSTATUS_T) */
9886
252b5132 9887#if defined (HAVE_LWPSTATUS_T)
b34976b6 9888static bfd_boolean
217aa764 9889elfcore_grok_lwpstatus (bfd *abfd, Elf_Internal_Note *note)
252b5132
RH
9890{
9891 lwpstatus_t lwpstat;
9892 char buf[100];
c044fabd 9893 char *name;
d4c88bbb 9894 size_t len;
c044fabd 9895 asection *sect;
252b5132 9896
f572a39d
AM
9897 if (note->descsz != sizeof (lwpstat)
9898#if defined (HAVE_LWPXSTATUS_T)
9899 && note->descsz != sizeof (lwpxstatus_t)
9900#endif
9901 )
b34976b6 9902 return TRUE;
252b5132
RH
9903
9904 memcpy (&lwpstat, note->descdata, sizeof (lwpstat));
9905
228e534f 9906 elf_tdata (abfd)->core->lwpid = lwpstat.pr_lwpid;
a1504221
JB
9907 /* Do not overwrite the core signal if it has already been set by
9908 another thread. */
228e534f
AM
9909 if (elf_tdata (abfd)->core->signal == 0)
9910 elf_tdata (abfd)->core->signal = lwpstat.pr_cursig;
252b5132 9911
c044fabd 9912 /* Make a ".reg/999" section. */
252b5132
RH
9913
9914 sprintf (buf, ".reg/%d", elfcore_make_pid (abfd));
d4c88bbb 9915 len = strlen (buf) + 1;
217aa764 9916 name = bfd_alloc (abfd, len);
252b5132 9917 if (name == NULL)
b34976b6 9918 return FALSE;
d4c88bbb 9919 memcpy (name, buf, len);
252b5132 9920
117ed4f8 9921 sect = bfd_make_section_anyway_with_flags (abfd, name, SEC_HAS_CONTENTS);
252b5132 9922 if (sect == NULL)
b34976b6 9923 return FALSE;
252b5132
RH
9924
9925#if defined (HAVE_LWPSTATUS_T_PR_CONTEXT)
eea6121a 9926 sect->size = sizeof (lwpstat.pr_context.uc_mcontext.gregs);
252b5132
RH
9927 sect->filepos = note->descpos
9928 + offsetof (lwpstatus_t, pr_context.uc_mcontext.gregs);
9929#endif
9930
9931#if defined (HAVE_LWPSTATUS_T_PR_REG)
eea6121a 9932 sect->size = sizeof (lwpstat.pr_reg);
252b5132
RH
9933 sect->filepos = note->descpos + offsetof (lwpstatus_t, pr_reg);
9934#endif
9935
252b5132
RH
9936 sect->alignment_power = 2;
9937
9938 if (!elfcore_maybe_make_sect (abfd, ".reg", sect))
b34976b6 9939 return FALSE;
252b5132
RH
9940
9941 /* Make a ".reg2/999" section */
9942
9943 sprintf (buf, ".reg2/%d", elfcore_make_pid (abfd));
d4c88bbb 9944 len = strlen (buf) + 1;
217aa764 9945 name = bfd_alloc (abfd, len);
252b5132 9946 if (name == NULL)
b34976b6 9947 return FALSE;
d4c88bbb 9948 memcpy (name, buf, len);
252b5132 9949
117ed4f8 9950 sect = bfd_make_section_anyway_with_flags (abfd, name, SEC_HAS_CONTENTS);
252b5132 9951 if (sect == NULL)
b34976b6 9952 return FALSE;
252b5132
RH
9953
9954#if defined (HAVE_LWPSTATUS_T_PR_CONTEXT)
eea6121a 9955 sect->size = sizeof (lwpstat.pr_context.uc_mcontext.fpregs);
252b5132
RH
9956 sect->filepos = note->descpos
9957 + offsetof (lwpstatus_t, pr_context.uc_mcontext.fpregs);
9958#endif
9959
9960#if defined (HAVE_LWPSTATUS_T_PR_FPREG)
eea6121a 9961 sect->size = sizeof (lwpstat.pr_fpreg);
252b5132
RH
9962 sect->filepos = note->descpos + offsetof (lwpstatus_t, pr_fpreg);
9963#endif
9964
252b5132
RH
9965 sect->alignment_power = 2;
9966
936e320b 9967 return elfcore_maybe_make_sect (abfd, ".reg2", sect);
252b5132
RH
9968}
9969#endif /* defined (HAVE_LWPSTATUS_T) */
9970
b34976b6 9971static bfd_boolean
217aa764 9972elfcore_grok_win32pstatus (bfd *abfd, Elf_Internal_Note *note)
16e9c715
NC
9973{
9974 char buf[30];
c044fabd 9975 char *name;
d4c88bbb 9976 size_t len;
c044fabd 9977 asection *sect;
4a6636fb
PA
9978 int type;
9979 int is_active_thread;
9980 bfd_vma base_addr;
16e9c715 9981
4a6636fb 9982 if (note->descsz < 728)
b34976b6 9983 return TRUE;
16e9c715 9984
4a6636fb
PA
9985 if (! CONST_STRNEQ (note->namedata, "win32"))
9986 return TRUE;
9987
9988 type = bfd_get_32 (abfd, note->descdata);
c044fabd 9989
4a6636fb 9990 switch (type)
16e9c715 9991 {
4a6636fb 9992 case 1 /* NOTE_INFO_PROCESS */:
228e534f 9993 /* FIXME: need to add ->core->command. */
4a6636fb 9994 /* process_info.pid */
228e534f 9995 elf_tdata (abfd)->core->pid = bfd_get_32 (abfd, note->descdata + 8);
4a6636fb 9996 /* process_info.signal */
228e534f 9997 elf_tdata (abfd)->core->signal = bfd_get_32 (abfd, note->descdata + 12);
c044fabd 9998 break;
16e9c715 9999
4a6636fb 10000 case 2 /* NOTE_INFO_THREAD */:
16e9c715 10001 /* Make a ".reg/999" section. */
4a6636fb
PA
10002 /* thread_info.tid */
10003 sprintf (buf, ".reg/%ld", (long) bfd_get_32 (abfd, note->descdata + 8));
c044fabd 10004
d4c88bbb 10005 len = strlen (buf) + 1;
a50b1753 10006 name = (char *) bfd_alloc (abfd, len);
16e9c715 10007 if (name == NULL)
b34976b6 10008 return FALSE;
c044fabd 10009
d4c88bbb 10010 memcpy (name, buf, len);
16e9c715 10011
117ed4f8 10012 sect = bfd_make_section_anyway_with_flags (abfd, name, SEC_HAS_CONTENTS);
16e9c715 10013 if (sect == NULL)
b34976b6 10014 return FALSE;
c044fabd 10015
4a6636fb
PA
10016 /* sizeof (thread_info.thread_context) */
10017 sect->size = 716;
10018 /* offsetof (thread_info.thread_context) */
10019 sect->filepos = note->descpos + 12;
16e9c715
NC
10020 sect->alignment_power = 2;
10021
4a6636fb
PA
10022 /* thread_info.is_active_thread */
10023 is_active_thread = bfd_get_32 (abfd, note->descdata + 8);
10024
10025 if (is_active_thread)
16e9c715 10026 if (! elfcore_maybe_make_sect (abfd, ".reg", sect))
b34976b6 10027 return FALSE;
16e9c715
NC
10028 break;
10029
4a6636fb 10030 case 3 /* NOTE_INFO_MODULE */:
16e9c715 10031 /* Make a ".module/xxxxxxxx" section. */
4a6636fb
PA
10032 /* module_info.base_address */
10033 base_addr = bfd_get_32 (abfd, note->descdata + 4);
0af1713e 10034 sprintf (buf, ".module/%08lx", (unsigned long) base_addr);
c044fabd 10035
d4c88bbb 10036 len = strlen (buf) + 1;
a50b1753 10037 name = (char *) bfd_alloc (abfd, len);
16e9c715 10038 if (name == NULL)
b34976b6 10039 return FALSE;
c044fabd 10040
d4c88bbb 10041 memcpy (name, buf, len);
252b5132 10042
117ed4f8 10043 sect = bfd_make_section_anyway_with_flags (abfd, name, SEC_HAS_CONTENTS);
c044fabd 10044
16e9c715 10045 if (sect == NULL)
b34976b6 10046 return FALSE;
c044fabd 10047
eea6121a 10048 sect->size = note->descsz;
16e9c715 10049 sect->filepos = note->descpos;
16e9c715
NC
10050 sect->alignment_power = 2;
10051 break;
10052
10053 default:
b34976b6 10054 return TRUE;
16e9c715
NC
10055 }
10056
b34976b6 10057 return TRUE;
16e9c715 10058}
252b5132 10059
b34976b6 10060static bfd_boolean
217aa764 10061elfcore_grok_note (bfd *abfd, Elf_Internal_Note *note)
252b5132 10062{
9c5bfbb7 10063 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
bb0082d6 10064
252b5132
RH
10065 switch (note->type)
10066 {
10067 default:
b34976b6 10068 return TRUE;
252b5132 10069
252b5132 10070 case NT_PRSTATUS:
bb0082d6
AM
10071 if (bed->elf_backend_grok_prstatus)
10072 if ((*bed->elf_backend_grok_prstatus) (abfd, note))
b34976b6 10073 return TRUE;
bb0082d6 10074#if defined (HAVE_PRSTATUS_T)
252b5132 10075 return elfcore_grok_prstatus (abfd, note);
bb0082d6 10076#else
b34976b6 10077 return TRUE;
252b5132
RH
10078#endif
10079
10080#if defined (HAVE_PSTATUS_T)
10081 case NT_PSTATUS:
10082 return elfcore_grok_pstatus (abfd, note);
10083#endif
10084
10085#if defined (HAVE_LWPSTATUS_T)
10086 case NT_LWPSTATUS:
10087 return elfcore_grok_lwpstatus (abfd, note);
10088#endif
10089
10090 case NT_FPREGSET: /* FIXME: rename to NT_PRFPREG */
10091 return elfcore_grok_prfpreg (abfd, note);
10092
c044fabd 10093 case NT_WIN32PSTATUS:
16e9c715 10094 return elfcore_grok_win32pstatus (abfd, note);
16e9c715 10095
c044fabd 10096 case NT_PRXFPREG: /* Linux SSE extension */
e377ab71
MK
10097 if (note->namesz == 6
10098 && strcmp (note->namedata, "LINUX") == 0)
ff08c6bb
JB
10099 return elfcore_grok_prxfpreg (abfd, note);
10100 else
b34976b6 10101 return TRUE;
ff08c6bb 10102
4339cae0
L
10103 case NT_X86_XSTATE: /* Linux XSAVE extension */
10104 if (note->namesz == 6
10105 && strcmp (note->namedata, "LINUX") == 0)
10106 return elfcore_grok_xstatereg (abfd, note);
10107 else
10108 return TRUE;
10109
97753bd5
AM
10110 case NT_PPC_VMX:
10111 if (note->namesz == 6
10112 && strcmp (note->namedata, "LINUX") == 0)
10113 return elfcore_grok_ppc_vmx (abfd, note);
10114 else
10115 return TRUE;
10116
89eeb0bc
LM
10117 case NT_PPC_VSX:
10118 if (note->namesz == 6
07d6d2b8
AM
10119 && strcmp (note->namedata, "LINUX") == 0)
10120 return elfcore_grok_ppc_vsx (abfd, note);
89eeb0bc 10121 else
07d6d2b8 10122 return TRUE;
89eeb0bc 10123
cb2366c1
EBM
10124 case NT_PPC_TAR:
10125 if (note->namesz == 6
4b24dd1a
AM
10126 && strcmp (note->namedata, "LINUX") == 0)
10127 return elfcore_grok_ppc_tar (abfd, note);
cb2366c1 10128 else
4b24dd1a 10129 return TRUE;
cb2366c1
EBM
10130
10131 case NT_PPC_PPR:
10132 if (note->namesz == 6
4b24dd1a
AM
10133 && strcmp (note->namedata, "LINUX") == 0)
10134 return elfcore_grok_ppc_ppr (abfd, note);
cb2366c1 10135 else
4b24dd1a 10136 return TRUE;
cb2366c1
EBM
10137
10138 case NT_PPC_DSCR:
10139 if (note->namesz == 6
4b24dd1a
AM
10140 && strcmp (note->namedata, "LINUX") == 0)
10141 return elfcore_grok_ppc_dscr (abfd, note);
cb2366c1 10142 else
4b24dd1a 10143 return TRUE;
cb2366c1
EBM
10144
10145 case NT_PPC_EBB:
10146 if (note->namesz == 6
4b24dd1a
AM
10147 && strcmp (note->namedata, "LINUX") == 0)
10148 return elfcore_grok_ppc_ebb (abfd, note);
cb2366c1 10149 else
4b24dd1a 10150 return TRUE;
cb2366c1
EBM
10151
10152 case NT_PPC_PMU:
10153 if (note->namesz == 6
4b24dd1a
AM
10154 && strcmp (note->namedata, "LINUX") == 0)
10155 return elfcore_grok_ppc_pmu (abfd, note);
cb2366c1 10156 else
4b24dd1a 10157 return TRUE;
cb2366c1
EBM
10158
10159 case NT_PPC_TM_CGPR:
10160 if (note->namesz == 6
4b24dd1a
AM
10161 && strcmp (note->namedata, "LINUX") == 0)
10162 return elfcore_grok_ppc_tm_cgpr (abfd, note);
cb2366c1 10163 else
4b24dd1a 10164 return TRUE;
cb2366c1
EBM
10165
10166 case NT_PPC_TM_CFPR:
10167 if (note->namesz == 6
4b24dd1a
AM
10168 && strcmp (note->namedata, "LINUX") == 0)
10169 return elfcore_grok_ppc_tm_cfpr (abfd, note);
cb2366c1 10170 else
4b24dd1a 10171 return TRUE;
cb2366c1
EBM
10172
10173 case NT_PPC_TM_CVMX:
10174 if (note->namesz == 6
4b24dd1a
AM
10175 && strcmp (note->namedata, "LINUX") == 0)
10176 return elfcore_grok_ppc_tm_cvmx (abfd, note);
cb2366c1 10177 else
4b24dd1a 10178 return TRUE;
cb2366c1
EBM
10179
10180 case NT_PPC_TM_CVSX:
10181 if (note->namesz == 6
4b24dd1a
AM
10182 && strcmp (note->namedata, "LINUX") == 0)
10183 return elfcore_grok_ppc_tm_cvsx (abfd, note);
cb2366c1 10184 else
4b24dd1a 10185 return TRUE;
cb2366c1
EBM
10186
10187 case NT_PPC_TM_SPR:
10188 if (note->namesz == 6
4b24dd1a
AM
10189 && strcmp (note->namedata, "LINUX") == 0)
10190 return elfcore_grok_ppc_tm_spr (abfd, note);
cb2366c1 10191 else
4b24dd1a 10192 return TRUE;
cb2366c1
EBM
10193
10194 case NT_PPC_TM_CTAR:
10195 if (note->namesz == 6
4b24dd1a
AM
10196 && strcmp (note->namedata, "LINUX") == 0)
10197 return elfcore_grok_ppc_tm_ctar (abfd, note);
cb2366c1 10198 else
4b24dd1a 10199 return TRUE;
cb2366c1
EBM
10200
10201 case NT_PPC_TM_CPPR:
10202 if (note->namesz == 6
4b24dd1a
AM
10203 && strcmp (note->namedata, "LINUX") == 0)
10204 return elfcore_grok_ppc_tm_cppr (abfd, note);
cb2366c1 10205 else
4b24dd1a 10206 return TRUE;
cb2366c1
EBM
10207
10208 case NT_PPC_TM_CDSCR:
10209 if (note->namesz == 6
4b24dd1a
AM
10210 && strcmp (note->namedata, "LINUX") == 0)
10211 return elfcore_grok_ppc_tm_cdscr (abfd, note);
cb2366c1 10212 else
4b24dd1a 10213 return TRUE;
cb2366c1 10214
0675e188
UW
10215 case NT_S390_HIGH_GPRS:
10216 if (note->namesz == 6
07d6d2b8
AM
10217 && strcmp (note->namedata, "LINUX") == 0)
10218 return elfcore_grok_s390_high_gprs (abfd, note);
0675e188 10219 else
07d6d2b8 10220 return TRUE;
0675e188 10221
d7eeb400
MS
10222 case NT_S390_TIMER:
10223 if (note->namesz == 6
07d6d2b8
AM
10224 && strcmp (note->namedata, "LINUX") == 0)
10225 return elfcore_grok_s390_timer (abfd, note);
d7eeb400 10226 else
07d6d2b8 10227 return TRUE;
d7eeb400
MS
10228
10229 case NT_S390_TODCMP:
10230 if (note->namesz == 6
07d6d2b8
AM
10231 && strcmp (note->namedata, "LINUX") == 0)
10232 return elfcore_grok_s390_todcmp (abfd, note);
d7eeb400 10233 else
07d6d2b8 10234 return TRUE;
d7eeb400
MS
10235
10236 case NT_S390_TODPREG:
10237 if (note->namesz == 6
07d6d2b8
AM
10238 && strcmp (note->namedata, "LINUX") == 0)
10239 return elfcore_grok_s390_todpreg (abfd, note);
d7eeb400 10240 else
07d6d2b8 10241 return TRUE;
d7eeb400
MS
10242
10243 case NT_S390_CTRS:
10244 if (note->namesz == 6
07d6d2b8
AM
10245 && strcmp (note->namedata, "LINUX") == 0)
10246 return elfcore_grok_s390_ctrs (abfd, note);
d7eeb400 10247 else
07d6d2b8 10248 return TRUE;
d7eeb400
MS
10249
10250 case NT_S390_PREFIX:
10251 if (note->namesz == 6
07d6d2b8
AM
10252 && strcmp (note->namedata, "LINUX") == 0)
10253 return elfcore_grok_s390_prefix (abfd, note);
d7eeb400 10254 else
07d6d2b8 10255 return TRUE;
d7eeb400 10256
355b81d9
UW
10257 case NT_S390_LAST_BREAK:
10258 if (note->namesz == 6
07d6d2b8
AM
10259 && strcmp (note->namedata, "LINUX") == 0)
10260 return elfcore_grok_s390_last_break (abfd, note);
355b81d9 10261 else
07d6d2b8 10262 return TRUE;
355b81d9
UW
10263
10264 case NT_S390_SYSTEM_CALL:
10265 if (note->namesz == 6
07d6d2b8
AM
10266 && strcmp (note->namedata, "LINUX") == 0)
10267 return elfcore_grok_s390_system_call (abfd, note);
355b81d9 10268 else
07d6d2b8 10269 return TRUE;
355b81d9 10270
abb3f6cc
NC
10271 case NT_S390_TDB:
10272 if (note->namesz == 6
07d6d2b8
AM
10273 && strcmp (note->namedata, "LINUX") == 0)
10274 return elfcore_grok_s390_tdb (abfd, note);
abb3f6cc 10275 else
07d6d2b8 10276 return TRUE;
abb3f6cc 10277
4ef9f41a
AA
10278 case NT_S390_VXRS_LOW:
10279 if (note->namesz == 6
10280 && strcmp (note->namedata, "LINUX") == 0)
10281 return elfcore_grok_s390_vxrs_low (abfd, note);
10282 else
10283 return TRUE;
10284
10285 case NT_S390_VXRS_HIGH:
10286 if (note->namesz == 6
10287 && strcmp (note->namedata, "LINUX") == 0)
10288 return elfcore_grok_s390_vxrs_high (abfd, note);
10289 else
10290 return TRUE;
10291
88ab90e8
AA
10292 case NT_S390_GS_CB:
10293 if (note->namesz == 6
10294 && strcmp (note->namedata, "LINUX") == 0)
8fe09d74 10295 return elfcore_grok_s390_gs_cb (abfd, note);
88ab90e8
AA
10296 else
10297 return TRUE;
10298
10299 case NT_S390_GS_BC:
10300 if (note->namesz == 6
10301 && strcmp (note->namedata, "LINUX") == 0)
8fe09d74 10302 return elfcore_grok_s390_gs_bc (abfd, note);
88ab90e8
AA
10303 else
10304 return TRUE;
10305
faa9a424
UW
10306 case NT_ARM_VFP:
10307 if (note->namesz == 6
10308 && strcmp (note->namedata, "LINUX") == 0)
10309 return elfcore_grok_arm_vfp (abfd, note);
10310 else
10311 return TRUE;
10312
652451f8
YZ
10313 case NT_ARM_TLS:
10314 if (note->namesz == 6
10315 && strcmp (note->namedata, "LINUX") == 0)
10316 return elfcore_grok_aarch_tls (abfd, note);
10317 else
10318 return TRUE;
10319
10320 case NT_ARM_HW_BREAK:
10321 if (note->namesz == 6
10322 && strcmp (note->namedata, "LINUX") == 0)
10323 return elfcore_grok_aarch_hw_break (abfd, note);
10324 else
10325 return TRUE;
10326
10327 case NT_ARM_HW_WATCH:
10328 if (note->namesz == 6
10329 && strcmp (note->namedata, "LINUX") == 0)
10330 return elfcore_grok_aarch_hw_watch (abfd, note);
10331 else
10332 return TRUE;
10333
ad1cc4e4
AH
10334 case NT_ARM_SVE:
10335 if (note->namesz == 6
10336 && strcmp (note->namedata, "LINUX") == 0)
10337 return elfcore_grok_aarch_sve (abfd, note);
10338 else
10339 return TRUE;
10340
e6c3b5bf
AH
10341 case NT_ARM_PAC_MASK:
10342 if (note->namesz == 6
10343 && strcmp (note->namedata, "LINUX") == 0)
10344 return elfcore_grok_aarch_pauth (abfd, note);
10345 else
10346 return TRUE;
10347
252b5132
RH
10348 case NT_PRPSINFO:
10349 case NT_PSINFO:
bb0082d6
AM
10350 if (bed->elf_backend_grok_psinfo)
10351 if ((*bed->elf_backend_grok_psinfo) (abfd, note))
b34976b6 10352 return TRUE;
bb0082d6 10353#if defined (HAVE_PRPSINFO_T) || defined (HAVE_PSINFO_T)
252b5132 10354 return elfcore_grok_psinfo (abfd, note);
bb0082d6 10355#else
b34976b6 10356 return TRUE;
252b5132 10357#endif
3333a7c3
RM
10358
10359 case NT_AUXV:
58e07198 10360 return elfcore_make_auxv_note_section (abfd, note, 0);
9015683b 10361
451b7c33
TT
10362 case NT_FILE:
10363 return elfcore_make_note_pseudosection (abfd, ".note.linuxcore.file",
10364 note);
10365
9015683b
TT
10366 case NT_SIGINFO:
10367 return elfcore_make_note_pseudosection (abfd, ".note.linuxcore.siginfo",
10368 note);
5b2c414d 10369
252b5132
RH
10370 }
10371}
10372
718175fa
JK
10373static bfd_boolean
10374elfobj_grok_gnu_build_id (bfd *abfd, Elf_Internal_Note *note)
10375{
c74f7d1c 10376 struct bfd_build_id* build_id;
30e8ee25
AM
10377
10378 if (note->descsz == 0)
10379 return FALSE;
10380
c74f7d1c
JT
10381 build_id = bfd_alloc (abfd, sizeof (struct bfd_build_id) - 1 + note->descsz);
10382 if (build_id == NULL)
718175fa
JK
10383 return FALSE;
10384
c74f7d1c
JT
10385 build_id->size = note->descsz;
10386 memcpy (build_id->data, note->descdata, note->descsz);
10387 abfd->build_id = build_id;
718175fa
JK
10388
10389 return TRUE;
10390}
10391
10392static bfd_boolean
10393elfobj_grok_gnu_note (bfd *abfd, Elf_Internal_Note *note)
10394{
10395 switch (note->type)
10396 {
10397 default:
10398 return TRUE;
10399
46bed679
L
10400 case NT_GNU_PROPERTY_TYPE_0:
10401 return _bfd_elf_parse_gnu_properties (abfd, note);
10402
718175fa
JK
10403 case NT_GNU_BUILD_ID:
10404 return elfobj_grok_gnu_build_id (abfd, note);
10405 }
10406}
10407
e21e5835
NC
10408static bfd_boolean
10409elfobj_grok_stapsdt_note_1 (bfd *abfd, Elf_Internal_Note *note)
10410{
10411 struct sdt_note *cur =
7a6e0d89
AM
10412 (struct sdt_note *) bfd_alloc (abfd,
10413 sizeof (struct sdt_note) + note->descsz);
e21e5835
NC
10414
10415 cur->next = (struct sdt_note *) (elf_tdata (abfd))->sdt_note_head;
10416 cur->size = (bfd_size_type) note->descsz;
10417 memcpy (cur->data, note->descdata, note->descsz);
10418
10419 elf_tdata (abfd)->sdt_note_head = cur;
10420
10421 return TRUE;
10422}
10423
10424static bfd_boolean
10425elfobj_grok_stapsdt_note (bfd *abfd, Elf_Internal_Note *note)
10426{
10427 switch (note->type)
10428 {
10429 case NT_STAPSDT:
10430 return elfobj_grok_stapsdt_note_1 (abfd, note);
10431
10432 default:
10433 return TRUE;
10434 }
10435}
10436
aa1ed4a9
JB
10437static bfd_boolean
10438elfcore_grok_freebsd_psinfo (bfd *abfd, Elf_Internal_Note *note)
10439{
10440 size_t offset;
10441
b5430a3c 10442 switch (elf_elfheader (abfd)->e_ident[EI_CLASS])
aa1ed4a9 10443 {
b5430a3c 10444 case ELFCLASS32:
0064d223
JB
10445 if (note->descsz < 108)
10446 return FALSE;
aa1ed4a9
JB
10447 break;
10448
b5430a3c 10449 case ELFCLASS64:
0064d223
JB
10450 if (note->descsz < 120)
10451 return FALSE;
aa1ed4a9
JB
10452 break;
10453
10454 default:
10455 return FALSE;
10456 }
10457
0064d223
JB
10458 /* Check for version 1 in pr_version. */
10459 if (bfd_h_get_32 (abfd, (bfd_byte *) note->descdata) != 1)
10460 return FALSE;
80a04378 10461
0064d223
JB
10462 offset = 4;
10463
10464 /* Skip over pr_psinfosz. */
b5430a3c 10465 if (elf_elfheader (abfd)->e_ident[EI_CLASS] == ELFCLASS32)
0064d223
JB
10466 offset += 4;
10467 else
10468 {
10469 offset += 4; /* Padding before pr_psinfosz. */
10470 offset += 8;
10471 }
10472
aa1ed4a9
JB
10473 /* pr_fname is PRFNAMESZ (16) + 1 bytes in size. */
10474 elf_tdata (abfd)->core->program
10475 = _bfd_elfcore_strndup (abfd, note->descdata + offset, 17);
10476 offset += 17;
10477
10478 /* pr_psargs is PRARGSZ (80) + 1 bytes in size. */
10479 elf_tdata (abfd)->core->command
10480 = _bfd_elfcore_strndup (abfd, note->descdata + offset, 81);
0064d223
JB
10481 offset += 81;
10482
10483 /* Padding before pr_pid. */
10484 offset += 2;
10485
10486 /* The pr_pid field was added in version "1a". */
10487 if (note->descsz < offset + 4)
10488 return TRUE;
10489
10490 elf_tdata (abfd)->core->pid
10491 = bfd_h_get_32 (abfd, (bfd_byte *) note->descdata + offset);
aa1ed4a9
JB
10492
10493 return TRUE;
10494}
10495
10496static bfd_boolean
10497elfcore_grok_freebsd_prstatus (bfd *abfd, Elf_Internal_Note *note)
10498{
10499 size_t offset;
10500 size_t size;
24d3e51b 10501 size_t min_size;
aa1ed4a9 10502
24d3e51b
NC
10503 /* Compute offset of pr_getregsz, skipping over pr_statussz.
10504 Also compute minimum size of this note. */
b5430a3c 10505 switch (elf_elfheader (abfd)->e_ident[EI_CLASS])
aa1ed4a9 10506 {
b5430a3c 10507 case ELFCLASS32:
24d3e51b
NC
10508 offset = 4 + 4;
10509 min_size = offset + (4 * 2) + 4 + 4 + 4;
aa1ed4a9
JB
10510 break;
10511
b5430a3c 10512 case ELFCLASS64:
24d3e51b
NC
10513 offset = 4 + 4 + 8; /* Includes padding before pr_statussz. */
10514 min_size = offset + (8 * 2) + 4 + 4 + 4 + 4;
aa1ed4a9
JB
10515 break;
10516
10517 default:
10518 return FALSE;
10519 }
10520
24d3e51b
NC
10521 if (note->descsz < min_size)
10522 return FALSE;
10523
10524 /* Check for version 1 in pr_version. */
10525 if (bfd_h_get_32 (abfd, (bfd_byte *) note->descdata) != 1)
10526 return FALSE;
aa1ed4a9 10527
24d3e51b
NC
10528 /* Extract size of pr_reg from pr_gregsetsz. */
10529 /* Skip over pr_gregsetsz and pr_fpregsetsz. */
b5430a3c 10530 if (elf_elfheader (abfd)->e_ident[EI_CLASS] == ELFCLASS32)
24d3e51b
NC
10531 {
10532 size = bfd_h_get_32 (abfd, (bfd_byte *) note->descdata + offset);
10533 offset += 4 * 2;
10534 }
b5430a3c 10535 else
24d3e51b
NC
10536 {
10537 size = bfd_h_get_64 (abfd, (bfd_byte *) note->descdata + offset);
10538 offset += 8 * 2;
10539 }
aa1ed4a9 10540
24d3e51b 10541 /* Skip over pr_osreldate. */
aa1ed4a9
JB
10542 offset += 4;
10543
24d3e51b 10544 /* Read signal from pr_cursig. */
aa1ed4a9
JB
10545 if (elf_tdata (abfd)->core->signal == 0)
10546 elf_tdata (abfd)->core->signal
10547 = bfd_h_get_32 (abfd, (bfd_byte *) note->descdata + offset);
10548 offset += 4;
10549
24d3e51b 10550 /* Read TID from pr_pid. */
aa1ed4a9
JB
10551 elf_tdata (abfd)->core->lwpid
10552 = bfd_h_get_32 (abfd, (bfd_byte *) note->descdata + offset);
10553 offset += 4;
10554
24d3e51b 10555 /* Padding before pr_reg. */
b5430a3c 10556 if (elf_elfheader (abfd)->e_ident[EI_CLASS] == ELFCLASS64)
aa1ed4a9
JB
10557 offset += 4;
10558
24d3e51b
NC
10559 /* Make sure that there is enough data remaining in the note. */
10560 if ((note->descsz - offset) < size)
10561 return FALSE;
10562
aa1ed4a9
JB
10563 /* Make a ".reg/999" section and a ".reg" section. */
10564 return _bfd_elfcore_make_pseudosection (abfd, ".reg",
10565 size, note->descpos + offset);
10566}
10567
10568static bfd_boolean
10569elfcore_grok_freebsd_note (bfd *abfd, Elf_Internal_Note *note)
10570{
544c67cd
JB
10571 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
10572
aa1ed4a9
JB
10573 switch (note->type)
10574 {
10575 case NT_PRSTATUS:
544c67cd
JB
10576 if (bed->elf_backend_grok_freebsd_prstatus)
10577 if ((*bed->elf_backend_grok_freebsd_prstatus) (abfd, note))
10578 return TRUE;
aa1ed4a9
JB
10579 return elfcore_grok_freebsd_prstatus (abfd, note);
10580
10581 case NT_FPREGSET:
10582 return elfcore_grok_prfpreg (abfd, note);
10583
10584 case NT_PRPSINFO:
10585 return elfcore_grok_freebsd_psinfo (abfd, note);
10586
10587 case NT_FREEBSD_THRMISC:
10588 if (note->namesz == 8)
10589 return elfcore_make_note_pseudosection (abfd, ".thrmisc", note);
10590 else
10591 return TRUE;
10592
ddb2bbcf
JB
10593 case NT_FREEBSD_PROCSTAT_PROC:
10594 return elfcore_make_note_pseudosection (abfd, ".note.freebsdcore.proc",
10595 note);
10596
10597 case NT_FREEBSD_PROCSTAT_FILES:
10598 return elfcore_make_note_pseudosection (abfd, ".note.freebsdcore.files",
10599 note);
10600
10601 case NT_FREEBSD_PROCSTAT_VMMAP:
10602 return elfcore_make_note_pseudosection (abfd, ".note.freebsdcore.vmmap",
10603 note);
10604
3350c5f5 10605 case NT_FREEBSD_PROCSTAT_AUXV:
58e07198 10606 return elfcore_make_auxv_note_section (abfd, note, 4);
3350c5f5 10607
aa1ed4a9
JB
10608 case NT_X86_XSTATE:
10609 if (note->namesz == 8)
10610 return elfcore_grok_xstatereg (abfd, note);
10611 else
10612 return TRUE;
10613
e6f3b9c3
JB
10614 case NT_FREEBSD_PTLWPINFO:
10615 return elfcore_make_note_pseudosection (abfd, ".note.freebsdcore.lwpinfo",
10616 note);
10617
6d5be5d6
JB
10618 case NT_ARM_VFP:
10619 return elfcore_grok_arm_vfp (abfd, note);
10620
aa1ed4a9
JB
10621 default:
10622 return TRUE;
10623 }
10624}
10625
b34976b6 10626static bfd_boolean
217aa764 10627elfcore_netbsd_get_lwpid (Elf_Internal_Note *note, int *lwpidp)
50b2bdb7
AM
10628{
10629 char *cp;
10630
10631 cp = strchr (note->namedata, '@');
10632 if (cp != NULL)
10633 {
d2b64500 10634 *lwpidp = atoi(cp + 1);
b34976b6 10635 return TRUE;
50b2bdb7 10636 }
b34976b6 10637 return FALSE;
50b2bdb7
AM
10638}
10639
b34976b6 10640static bfd_boolean
217aa764 10641elfcore_grok_netbsd_procinfo (bfd *abfd, Elf_Internal_Note *note)
50b2bdb7 10642{
80a04378
NC
10643 if (note->descsz <= 0x7c + 31)
10644 return FALSE;
10645
50b2bdb7 10646 /* Signal number at offset 0x08. */
228e534f 10647 elf_tdata (abfd)->core->signal
50b2bdb7
AM
10648 = bfd_h_get_32 (abfd, (bfd_byte *) note->descdata + 0x08);
10649
10650 /* Process ID at offset 0x50. */
228e534f 10651 elf_tdata (abfd)->core->pid
50b2bdb7
AM
10652 = bfd_h_get_32 (abfd, (bfd_byte *) note->descdata + 0x50);
10653
10654 /* Command name at 0x7c (max 32 bytes, including nul). */
228e534f 10655 elf_tdata (abfd)->core->command
50b2bdb7
AM
10656 = _bfd_elfcore_strndup (abfd, note->descdata + 0x7c, 31);
10657
7720ba9f
MK
10658 return elfcore_make_note_pseudosection (abfd, ".note.netbsdcore.procinfo",
10659 note);
50b2bdb7
AM
10660}
10661
b34976b6 10662static bfd_boolean
217aa764 10663elfcore_grok_netbsd_note (bfd *abfd, Elf_Internal_Note *note)
50b2bdb7
AM
10664{
10665 int lwp;
10666
10667 if (elfcore_netbsd_get_lwpid (note, &lwp))
228e534f 10668 elf_tdata (abfd)->core->lwpid = lwp;
50b2bdb7 10669
58e07198 10670 switch (note->type)
50b2bdb7 10671 {
58e07198 10672 case NT_NETBSDCORE_PROCINFO:
50b2bdb7 10673 /* NetBSD-specific core "procinfo". Note that we expect to
08a40648
AM
10674 find this note before any of the others, which is fine,
10675 since the kernel writes this note out first when it
10676 creates a core file. */
50b2bdb7 10677 return elfcore_grok_netbsd_procinfo (abfd, note);
58e07198
CZ
10678#ifdef NT_NETBSDCORE_AUXV
10679 case NT_NETBSDCORE_AUXV:
10680 /* NetBSD-specific Elf Auxiliary Vector data. */
10681 return elfcore_make_auxv_note_section (abfd, note, 4);
10682#endif
10683 default:
10684 break;
50b2bdb7
AM
10685 }
10686
58e07198 10687 /* As of March 2017 there are no other machine-independent notes
b4db1224
JT
10688 defined for NetBSD core files. If the note type is less
10689 than the start of the machine-dependent note types, we don't
10690 understand it. */
47d9a591 10691
b4db1224 10692 if (note->type < NT_NETBSDCORE_FIRSTMACH)
b34976b6 10693 return TRUE;
50b2bdb7
AM
10694
10695
10696 switch (bfd_get_arch (abfd))
10697 {
08a40648
AM
10698 /* On the Alpha, SPARC (32-bit and 64-bit), PT_GETREGS == mach+0 and
10699 PT_GETFPREGS == mach+2. */
50b2bdb7
AM
10700
10701 case bfd_arch_alpha:
10702 case bfd_arch_sparc:
10703 switch (note->type)
08a40648
AM
10704 {
10705 case NT_NETBSDCORE_FIRSTMACH+0:
10706 return elfcore_make_note_pseudosection (abfd, ".reg", note);
50b2bdb7 10707
08a40648
AM
10708 case NT_NETBSDCORE_FIRSTMACH+2:
10709 return elfcore_make_note_pseudosection (abfd, ".reg2", note);
50b2bdb7 10710
08a40648
AM
10711 default:
10712 return TRUE;
10713 }
50b2bdb7 10714
58e07198
CZ
10715 /* On SuperH, PT_GETREGS == mach+3 and PT_GETFPREGS == mach+5.
10716 There's also old PT___GETREGS40 == mach + 1 for old reg
10717 structure which lacks GBR. */
10718
10719 case bfd_arch_sh:
10720 switch (note->type)
10721 {
10722 case NT_NETBSDCORE_FIRSTMACH+3:
10723 return elfcore_make_note_pseudosection (abfd, ".reg", note);
10724
10725 case NT_NETBSDCORE_FIRSTMACH+5:
10726 return elfcore_make_note_pseudosection (abfd, ".reg2", note);
10727
10728 default:
10729 return TRUE;
10730 }
10731
08a40648
AM
10732 /* On all other arch's, PT_GETREGS == mach+1 and
10733 PT_GETFPREGS == mach+3. */
50b2bdb7
AM
10734
10735 default:
10736 switch (note->type)
08a40648
AM
10737 {
10738 case NT_NETBSDCORE_FIRSTMACH+1:
10739 return elfcore_make_note_pseudosection (abfd, ".reg", note);
50b2bdb7 10740
08a40648
AM
10741 case NT_NETBSDCORE_FIRSTMACH+3:
10742 return elfcore_make_note_pseudosection (abfd, ".reg2", note);
50b2bdb7 10743
08a40648
AM
10744 default:
10745 return TRUE;
10746 }
50b2bdb7
AM
10747 }
10748 /* NOTREACHED */
10749}
10750
67cc5033
MK
10751static bfd_boolean
10752elfcore_grok_openbsd_procinfo (bfd *abfd, Elf_Internal_Note *note)
10753{
80a04378
NC
10754 if (note->descsz <= 0x48 + 31)
10755 return FALSE;
10756
67cc5033 10757 /* Signal number at offset 0x08. */
228e534f 10758 elf_tdata (abfd)->core->signal
67cc5033
MK
10759 = bfd_h_get_32 (abfd, (bfd_byte *) note->descdata + 0x08);
10760
10761 /* Process ID at offset 0x20. */
228e534f 10762 elf_tdata (abfd)->core->pid
67cc5033
MK
10763 = bfd_h_get_32 (abfd, (bfd_byte *) note->descdata + 0x20);
10764
10765 /* Command name at 0x48 (max 32 bytes, including nul). */
228e534f 10766 elf_tdata (abfd)->core->command
67cc5033
MK
10767 = _bfd_elfcore_strndup (abfd, note->descdata + 0x48, 31);
10768
10769 return TRUE;
10770}
10771
10772static bfd_boolean
10773elfcore_grok_openbsd_note (bfd *abfd, Elf_Internal_Note *note)
10774{
10775 if (note->type == NT_OPENBSD_PROCINFO)
10776 return elfcore_grok_openbsd_procinfo (abfd, note);
10777
10778 if (note->type == NT_OPENBSD_REGS)
10779 return elfcore_make_note_pseudosection (abfd, ".reg", note);
10780
10781 if (note->type == NT_OPENBSD_FPREGS)
10782 return elfcore_make_note_pseudosection (abfd, ".reg2", note);
10783
10784 if (note->type == NT_OPENBSD_XFPREGS)
10785 return elfcore_make_note_pseudosection (abfd, ".reg-xfp", note);
10786
10787 if (note->type == NT_OPENBSD_AUXV)
58e07198 10788 return elfcore_make_auxv_note_section (abfd, note, 0);
67cc5033
MK
10789
10790 if (note->type == NT_OPENBSD_WCOOKIE)
10791 {
10792 asection *sect = bfd_make_section_anyway_with_flags (abfd, ".wcookie",
10793 SEC_HAS_CONTENTS);
10794
10795 if (sect == NULL)
10796 return FALSE;
10797 sect->size = note->descsz;
10798 sect->filepos = note->descpos;
10799 sect->alignment_power = 1 + bfd_get_arch_size (abfd) / 32;
10800
10801 return TRUE;
10802 }
10803
10804 return TRUE;
10805}
10806
07c6e936 10807static bfd_boolean
d3fd4074 10808elfcore_grok_nto_status (bfd *abfd, Elf_Internal_Note *note, long *tid)
07c6e936
NC
10809{
10810 void *ddata = note->descdata;
10811 char buf[100];
10812 char *name;
10813 asection *sect;
f8843e87
AM
10814 short sig;
10815 unsigned flags;
07c6e936 10816
80a04378
NC
10817 if (note->descsz < 16)
10818 return FALSE;
10819
07c6e936 10820 /* nto_procfs_status 'pid' field is at offset 0. */
228e534f 10821 elf_tdata (abfd)->core->pid = bfd_get_32 (abfd, (bfd_byte *) ddata);
07c6e936 10822
f8843e87
AM
10823 /* nto_procfs_status 'tid' field is at offset 4. Pass it back. */
10824 *tid = bfd_get_32 (abfd, (bfd_byte *) ddata + 4);
10825
10826 /* nto_procfs_status 'flags' field is at offset 8. */
10827 flags = bfd_get_32 (abfd, (bfd_byte *) ddata + 8);
07c6e936
NC
10828
10829 /* nto_procfs_status 'what' field is at offset 14. */
f8843e87
AM
10830 if ((sig = bfd_get_16 (abfd, (bfd_byte *) ddata + 14)) > 0)
10831 {
228e534f
AM
10832 elf_tdata (abfd)->core->signal = sig;
10833 elf_tdata (abfd)->core->lwpid = *tid;
f8843e87 10834 }
07c6e936 10835
f8843e87
AM
10836 /* _DEBUG_FLAG_CURTID (current thread) is 0x80. Some cores
10837 do not come from signals so we make sure we set the current
10838 thread just in case. */
10839 if (flags & 0x00000080)
228e534f 10840 elf_tdata (abfd)->core->lwpid = *tid;
07c6e936
NC
10841
10842 /* Make a ".qnx_core_status/%d" section. */
d3fd4074 10843 sprintf (buf, ".qnx_core_status/%ld", *tid);
07c6e936 10844
a50b1753 10845 name = (char *) bfd_alloc (abfd, strlen (buf) + 1);
07c6e936
NC
10846 if (name == NULL)
10847 return FALSE;
10848 strcpy (name, buf);
10849
117ed4f8 10850 sect = bfd_make_section_anyway_with_flags (abfd, name, SEC_HAS_CONTENTS);
07c6e936
NC
10851 if (sect == NULL)
10852 return FALSE;
10853
07d6d2b8
AM
10854 sect->size = note->descsz;
10855 sect->filepos = note->descpos;
07c6e936
NC
10856 sect->alignment_power = 2;
10857
10858 return (elfcore_maybe_make_sect (abfd, ".qnx_core_status", sect));
10859}
10860
10861static bfd_boolean
d69f560c
KW
10862elfcore_grok_nto_regs (bfd *abfd,
10863 Elf_Internal_Note *note,
d3fd4074 10864 long tid,
d69f560c 10865 char *base)
07c6e936
NC
10866{
10867 char buf[100];
10868 char *name;
10869 asection *sect;
10870
d69f560c 10871 /* Make a "(base)/%d" section. */
d3fd4074 10872 sprintf (buf, "%s/%ld", base, tid);
07c6e936 10873
a50b1753 10874 name = (char *) bfd_alloc (abfd, strlen (buf) + 1);
07c6e936
NC
10875 if (name == NULL)
10876 return FALSE;
10877 strcpy (name, buf);
10878
117ed4f8 10879 sect = bfd_make_section_anyway_with_flags (abfd, name, SEC_HAS_CONTENTS);
07c6e936
NC
10880 if (sect == NULL)
10881 return FALSE;
10882
07d6d2b8
AM
10883 sect->size = note->descsz;
10884 sect->filepos = note->descpos;
07c6e936
NC
10885 sect->alignment_power = 2;
10886
f8843e87 10887 /* This is the current thread. */
228e534f 10888 if (elf_tdata (abfd)->core->lwpid == tid)
d69f560c 10889 return elfcore_maybe_make_sect (abfd, base, sect);
f8843e87
AM
10890
10891 return TRUE;
07c6e936
NC
10892}
10893
10894#define BFD_QNT_CORE_INFO 7
10895#define BFD_QNT_CORE_STATUS 8
10896#define BFD_QNT_CORE_GREG 9
10897#define BFD_QNT_CORE_FPREG 10
10898
10899static bfd_boolean
217aa764 10900elfcore_grok_nto_note (bfd *abfd, Elf_Internal_Note *note)
07c6e936
NC
10901{
10902 /* Every GREG section has a STATUS section before it. Store the
811072d8 10903 tid from the previous call to pass down to the next gregs
07c6e936 10904 function. */
d3fd4074 10905 static long tid = 1;
07c6e936
NC
10906
10907 switch (note->type)
10908 {
d69f560c
KW
10909 case BFD_QNT_CORE_INFO:
10910 return elfcore_make_note_pseudosection (abfd, ".qnx_core_info", note);
10911 case BFD_QNT_CORE_STATUS:
10912 return elfcore_grok_nto_status (abfd, note, &tid);
10913 case BFD_QNT_CORE_GREG:
10914 return elfcore_grok_nto_regs (abfd, note, tid, ".reg");
10915 case BFD_QNT_CORE_FPREG:
10916 return elfcore_grok_nto_regs (abfd, note, tid, ".reg2");
10917 default:
10918 return TRUE;
07c6e936
NC
10919 }
10920}
10921
b15fa79e
AM
10922static bfd_boolean
10923elfcore_grok_spu_note (bfd *abfd, Elf_Internal_Note *note)
10924{
10925 char *name;
10926 asection *sect;
10927 size_t len;
10928
10929 /* Use note name as section name. */
10930 len = note->namesz;
a50b1753 10931 name = (char *) bfd_alloc (abfd, len);
b15fa79e
AM
10932 if (name == NULL)
10933 return FALSE;
10934 memcpy (name, note->namedata, len);
10935 name[len - 1] = '\0';
10936
10937 sect = bfd_make_section_anyway_with_flags (abfd, name, SEC_HAS_CONTENTS);
10938 if (sect == NULL)
10939 return FALSE;
10940
07d6d2b8
AM
10941 sect->size = note->descsz;
10942 sect->filepos = note->descpos;
b15fa79e
AM
10943 sect->alignment_power = 1;
10944
10945 return TRUE;
10946}
10947
7c76fa91
MS
10948/* Function: elfcore_write_note
10949
47d9a591 10950 Inputs:
a39f3346 10951 buffer to hold note, and current size of buffer
7c76fa91
MS
10952 name of note
10953 type of note
10954 data for note
10955 size of data for note
10956
a39f3346
AM
10957 Writes note to end of buffer. ELF64 notes are written exactly as
10958 for ELF32, despite the current (as of 2006) ELF gabi specifying
10959 that they ought to have 8-byte namesz and descsz field, and have
10960 8-byte alignment. Other writers, eg. Linux kernel, do the same.
10961
7c76fa91 10962 Return:
a39f3346 10963 Pointer to realloc'd buffer, *BUFSIZ updated. */
7c76fa91
MS
10964
10965char *
a39f3346 10966elfcore_write_note (bfd *abfd,
217aa764 10967 char *buf,
a39f3346 10968 int *bufsiz,
217aa764 10969 const char *name,
a39f3346 10970 int type,
217aa764 10971 const void *input,
a39f3346 10972 int size)
7c76fa91
MS
10973{
10974 Elf_External_Note *xnp;
d4c88bbb 10975 size_t namesz;
d4c88bbb 10976 size_t newspace;
a39f3346 10977 char *dest;
7c76fa91 10978
d4c88bbb 10979 namesz = 0;
d4c88bbb 10980 if (name != NULL)
a39f3346 10981 namesz = strlen (name) + 1;
d4c88bbb 10982
a39f3346 10983 newspace = 12 + ((namesz + 3) & -4) + ((size + 3) & -4);
d4c88bbb 10984
a50b1753 10985 buf = (char *) realloc (buf, *bufsiz + newspace);
14b1c01e
AM
10986 if (buf == NULL)
10987 return buf;
a39f3346 10988 dest = buf + *bufsiz;
7c76fa91
MS
10989 *bufsiz += newspace;
10990 xnp = (Elf_External_Note *) dest;
10991 H_PUT_32 (abfd, namesz, xnp->namesz);
10992 H_PUT_32 (abfd, size, xnp->descsz);
10993 H_PUT_32 (abfd, type, xnp->type);
d4c88bbb
AM
10994 dest = xnp->name;
10995 if (name != NULL)
10996 {
10997 memcpy (dest, name, namesz);
10998 dest += namesz;
a39f3346 10999 while (namesz & 3)
d4c88bbb
AM
11000 {
11001 *dest++ = '\0';
a39f3346 11002 ++namesz;
d4c88bbb
AM
11003 }
11004 }
11005 memcpy (dest, input, size);
a39f3346
AM
11006 dest += size;
11007 while (size & 3)
11008 {
11009 *dest++ = '\0';
11010 ++size;
11011 }
11012 return buf;
7c76fa91
MS
11013}
11014
602f1657
AM
11015/* gcc-8 warns (*) on all the strncpy calls in this function about
11016 possible string truncation. The "truncation" is not a bug. We
11017 have an external representation of structs with fields that are not
11018 necessarily NULL terminated and corresponding internal
11019 representation fields that are one larger so that they can always
11020 be NULL terminated.
11021 gcc versions between 4.2 and 4.6 do not allow pragma control of
11022 diagnostics inside functions, giving a hard error if you try to use
11023 the finer control available with later versions.
11024 gcc prior to 4.2 warns about diagnostic push and pop.
11025 gcc-5, gcc-6 and gcc-7 warn that -Wstringop-truncation is unknown,
11026 unless you also add #pragma GCC diagnostic ignored "-Wpragma".
11027 (*) Depending on your system header files! */
d99b4b92 11028#if GCC_VERSION >= 8000
602f1657
AM
11029# pragma GCC diagnostic push
11030# pragma GCC diagnostic ignored "-Wstringop-truncation"
d99b4b92 11031#endif
7c76fa91 11032char *
217aa764
AM
11033elfcore_write_prpsinfo (bfd *abfd,
11034 char *buf,
11035 int *bufsiz,
11036 const char *fname,
11037 const char *psargs)
7c76fa91 11038{
183e98be
AM
11039 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
11040
11041 if (bed->elf_backend_write_core_note != NULL)
11042 {
11043 char *ret;
11044 ret = (*bed->elf_backend_write_core_note) (abfd, buf, bufsiz,
11045 NT_PRPSINFO, fname, psargs);
11046 if (ret != NULL)
11047 return ret;
11048 }
7c76fa91 11049
1f20dca5 11050#if defined (HAVE_PRPSINFO_T) || defined (HAVE_PSINFO_T)
602f1657 11051# if defined (HAVE_PRPSINFO32_T) || defined (HAVE_PSINFO32_T)
183e98be
AM
11052 if (bed->s->elfclass == ELFCLASS32)
11053 {
602f1657 11054# if defined (HAVE_PSINFO32_T)
183e98be
AM
11055 psinfo32_t data;
11056 int note_type = NT_PSINFO;
602f1657 11057# else
183e98be
AM
11058 prpsinfo32_t data;
11059 int note_type = NT_PRPSINFO;
602f1657 11060# endif
183e98be
AM
11061
11062 memset (&data, 0, sizeof (data));
11063 strncpy (data.pr_fname, fname, sizeof (data.pr_fname));
11064 strncpy (data.pr_psargs, psargs, sizeof (data.pr_psargs));
11065 return elfcore_write_note (abfd, buf, bufsiz,
1f20dca5 11066 "CORE", note_type, &data, sizeof (data));
183e98be
AM
11067 }
11068 else
602f1657 11069# endif
183e98be 11070 {
602f1657 11071# if defined (HAVE_PSINFO_T)
183e98be
AM
11072 psinfo_t data;
11073 int note_type = NT_PSINFO;
602f1657 11074# else
183e98be
AM
11075 prpsinfo_t data;
11076 int note_type = NT_PRPSINFO;
602f1657 11077# endif
7c76fa91 11078
183e98be
AM
11079 memset (&data, 0, sizeof (data));
11080 strncpy (data.pr_fname, fname, sizeof (data.pr_fname));
11081 strncpy (data.pr_psargs, psargs, sizeof (data.pr_psargs));
11082 return elfcore_write_note (abfd, buf, bufsiz,
1f20dca5 11083 "CORE", note_type, &data, sizeof (data));
183e98be 11084 }
7c76fa91
MS
11085#endif /* PSINFO_T or PRPSINFO_T */
11086
1f20dca5
UW
11087 free (buf);
11088 return NULL;
11089}
d99b4b92 11090#if GCC_VERSION >= 8000
602f1657 11091# pragma GCC diagnostic pop
d99b4b92 11092#endif
1f20dca5 11093
70a38d42
SDJ
11094char *
11095elfcore_write_linux_prpsinfo32
11096 (bfd *abfd, char *buf, int *bufsiz,
11097 const struct elf_internal_linux_prpsinfo *prpsinfo)
11098{
a2f63b2e
MR
11099 if (get_elf_backend_data (abfd)->linux_prpsinfo32_ugid16)
11100 {
11101 struct elf_external_linux_prpsinfo32_ugid16 data;
11102
11103 swap_linux_prpsinfo32_ugid16_out (abfd, prpsinfo, &data);
11104 return elfcore_write_note (abfd, buf, bufsiz, "CORE", NT_PRPSINFO,
11105 &data, sizeof (data));
11106 }
11107 else
11108 {
11109 struct elf_external_linux_prpsinfo32_ugid32 data;
70a38d42 11110
a2f63b2e
MR
11111 swap_linux_prpsinfo32_ugid32_out (abfd, prpsinfo, &data);
11112 return elfcore_write_note (abfd, buf, bufsiz, "CORE", NT_PRPSINFO,
11113 &data, sizeof (data));
11114 }
70a38d42
SDJ
11115}
11116
11117char *
11118elfcore_write_linux_prpsinfo64
11119 (bfd *abfd, char *buf, int *bufsiz,
11120 const struct elf_internal_linux_prpsinfo *prpsinfo)
11121{
3c9a7b0d
MR
11122 if (get_elf_backend_data (abfd)->linux_prpsinfo64_ugid16)
11123 {
11124 struct elf_external_linux_prpsinfo64_ugid16 data;
11125
11126 swap_linux_prpsinfo64_ugid16_out (abfd, prpsinfo, &data);
11127 return elfcore_write_note (abfd, buf, bufsiz,
11128 "CORE", NT_PRPSINFO, &data, sizeof (data));
11129 }
11130 else
11131 {
11132 struct elf_external_linux_prpsinfo64_ugid32 data;
70a38d42 11133
3c9a7b0d
MR
11134 swap_linux_prpsinfo64_ugid32_out (abfd, prpsinfo, &data);
11135 return elfcore_write_note (abfd, buf, bufsiz,
11136 "CORE", NT_PRPSINFO, &data, sizeof (data));
11137 }
70a38d42
SDJ
11138}
11139
7c76fa91 11140char *
217aa764
AM
11141elfcore_write_prstatus (bfd *abfd,
11142 char *buf,
11143 int *bufsiz,
11144 long pid,
11145 int cursig,
11146 const void *gregs)
7c76fa91 11147{
183e98be 11148 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
7c76fa91 11149
183e98be
AM
11150 if (bed->elf_backend_write_core_note != NULL)
11151 {
11152 char *ret;
11153 ret = (*bed->elf_backend_write_core_note) (abfd, buf, bufsiz,
11154 NT_PRSTATUS,
11155 pid, cursig, gregs);
11156 if (ret != NULL)
11157 return ret;
11158 }
11159
1f20dca5 11160#if defined (HAVE_PRSTATUS_T)
183e98be
AM
11161#if defined (HAVE_PRSTATUS32_T)
11162 if (bed->s->elfclass == ELFCLASS32)
11163 {
11164 prstatus32_t prstat;
11165
11166 memset (&prstat, 0, sizeof (prstat));
11167 prstat.pr_pid = pid;
11168 prstat.pr_cursig = cursig;
11169 memcpy (&prstat.pr_reg, gregs, sizeof (prstat.pr_reg));
1f20dca5 11170 return elfcore_write_note (abfd, buf, bufsiz, "CORE",
183e98be
AM
11171 NT_PRSTATUS, &prstat, sizeof (prstat));
11172 }
11173 else
11174#endif
11175 {
11176 prstatus_t prstat;
11177
11178 memset (&prstat, 0, sizeof (prstat));
11179 prstat.pr_pid = pid;
11180 prstat.pr_cursig = cursig;
11181 memcpy (&prstat.pr_reg, gregs, sizeof (prstat.pr_reg));
1f20dca5 11182 return elfcore_write_note (abfd, buf, bufsiz, "CORE",
183e98be
AM
11183 NT_PRSTATUS, &prstat, sizeof (prstat));
11184 }
7c76fa91
MS
11185#endif /* HAVE_PRSTATUS_T */
11186
1f20dca5
UW
11187 free (buf);
11188 return NULL;
11189}
11190
51316059
MS
11191#if defined (HAVE_LWPSTATUS_T)
11192char *
217aa764
AM
11193elfcore_write_lwpstatus (bfd *abfd,
11194 char *buf,
11195 int *bufsiz,
11196 long pid,
11197 int cursig,
11198 const void *gregs)
51316059
MS
11199{
11200 lwpstatus_t lwpstat;
183e98be 11201 const char *note_name = "CORE";
51316059
MS
11202
11203 memset (&lwpstat, 0, sizeof (lwpstat));
11204 lwpstat.pr_lwpid = pid >> 16;
11205 lwpstat.pr_cursig = cursig;
11206#if defined (HAVE_LWPSTATUS_T_PR_REG)
d1e8523e 11207 memcpy (&lwpstat.pr_reg, gregs, sizeof (lwpstat.pr_reg));
51316059
MS
11208#elif defined (HAVE_LWPSTATUS_T_PR_CONTEXT)
11209#if !defined(gregs)
11210 memcpy (lwpstat.pr_context.uc_mcontext.gregs,
11211 gregs, sizeof (lwpstat.pr_context.uc_mcontext.gregs));
11212#else
11213 memcpy (lwpstat.pr_context.uc_mcontext.__gregs,
11214 gregs, sizeof (lwpstat.pr_context.uc_mcontext.__gregs));
11215#endif
11216#endif
47d9a591 11217 return elfcore_write_note (abfd, buf, bufsiz, note_name,
51316059
MS
11218 NT_LWPSTATUS, &lwpstat, sizeof (lwpstat));
11219}
11220#endif /* HAVE_LWPSTATUS_T */
11221
7c76fa91
MS
11222#if defined (HAVE_PSTATUS_T)
11223char *
217aa764
AM
11224elfcore_write_pstatus (bfd *abfd,
11225 char *buf,
11226 int *bufsiz,
11227 long pid,
6c10990d
NC
11228 int cursig ATTRIBUTE_UNUSED,
11229 const void *gregs ATTRIBUTE_UNUSED)
7c76fa91 11230{
183e98be
AM
11231 const char *note_name = "CORE";
11232#if defined (HAVE_PSTATUS32_T)
11233 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
7c76fa91 11234
183e98be
AM
11235 if (bed->s->elfclass == ELFCLASS32)
11236 {
11237 pstatus32_t pstat;
11238
11239 memset (&pstat, 0, sizeof (pstat));
11240 pstat.pr_pid = pid & 0xffff;
11241 buf = elfcore_write_note (abfd, buf, bufsiz, note_name,
11242 NT_PSTATUS, &pstat, sizeof (pstat));
11243 return buf;
11244 }
11245 else
11246#endif
11247 {
11248 pstatus_t pstat;
11249
11250 memset (&pstat, 0, sizeof (pstat));
11251 pstat.pr_pid = pid & 0xffff;
11252 buf = elfcore_write_note (abfd, buf, bufsiz, note_name,
11253 NT_PSTATUS, &pstat, sizeof (pstat));
11254 return buf;
11255 }
7c76fa91
MS
11256}
11257#endif /* HAVE_PSTATUS_T */
11258
11259char *
217aa764
AM
11260elfcore_write_prfpreg (bfd *abfd,
11261 char *buf,
11262 int *bufsiz,
11263 const void *fpregs,
11264 int size)
7c76fa91 11265{
183e98be 11266 const char *note_name = "CORE";
47d9a591 11267 return elfcore_write_note (abfd, buf, bufsiz,
7c76fa91
MS
11268 note_name, NT_FPREGSET, fpregs, size);
11269}
11270
11271char *
217aa764
AM
11272elfcore_write_prxfpreg (bfd *abfd,
11273 char *buf,
11274 int *bufsiz,
11275 const void *xfpregs,
11276 int size)
7c76fa91
MS
11277{
11278 char *note_name = "LINUX";
47d9a591 11279 return elfcore_write_note (abfd, buf, bufsiz,
7c76fa91
MS
11280 note_name, NT_PRXFPREG, xfpregs, size);
11281}
11282
4339cae0
L
11283char *
11284elfcore_write_xstatereg (bfd *abfd, char *buf, int *bufsiz,
11285 const void *xfpregs, int size)
11286{
97de3545
JB
11287 char *note_name;
11288 if (get_elf_backend_data (abfd)->elf_osabi == ELFOSABI_FREEBSD)
11289 note_name = "FreeBSD";
11290 else
11291 note_name = "LINUX";
4339cae0
L
11292 return elfcore_write_note (abfd, buf, bufsiz,
11293 note_name, NT_X86_XSTATE, xfpregs, size);
11294}
11295
97753bd5
AM
11296char *
11297elfcore_write_ppc_vmx (bfd *abfd,
11298 char *buf,
11299 int *bufsiz,
11300 const void *ppc_vmx,
11301 int size)
11302{
11303 char *note_name = "LINUX";
11304 return elfcore_write_note (abfd, buf, bufsiz,
11305 note_name, NT_PPC_VMX, ppc_vmx, size);
11306}
11307
89eeb0bc
LM
11308char *
11309elfcore_write_ppc_vsx (bfd *abfd,
07d6d2b8
AM
11310 char *buf,
11311 int *bufsiz,
11312 const void *ppc_vsx,
11313 int size)
89eeb0bc
LM
11314{
11315 char *note_name = "LINUX";
11316 return elfcore_write_note (abfd, buf, bufsiz,
07d6d2b8 11317 note_name, NT_PPC_VSX, ppc_vsx, size);
89eeb0bc
LM
11318}
11319
cb2366c1
EBM
11320char *
11321elfcore_write_ppc_tar (bfd *abfd,
4b24dd1a
AM
11322 char *buf,
11323 int *bufsiz,
11324 const void *ppc_tar,
11325 int size)
cb2366c1
EBM
11326{
11327 char *note_name = "LINUX";
11328 return elfcore_write_note (abfd, buf, bufsiz,
4b24dd1a 11329 note_name, NT_PPC_TAR, ppc_tar, size);
cb2366c1
EBM
11330}
11331
11332char *
11333elfcore_write_ppc_ppr (bfd *abfd,
4b24dd1a
AM
11334 char *buf,
11335 int *bufsiz,
11336 const void *ppc_ppr,
11337 int size)
cb2366c1
EBM
11338{
11339 char *note_name = "LINUX";
11340 return elfcore_write_note (abfd, buf, bufsiz,
4b24dd1a 11341 note_name, NT_PPC_PPR, ppc_ppr, size);
cb2366c1
EBM
11342}
11343
11344char *
11345elfcore_write_ppc_dscr (bfd *abfd,
4b24dd1a
AM
11346 char *buf,
11347 int *bufsiz,
11348 const void *ppc_dscr,
11349 int size)
cb2366c1
EBM
11350{
11351 char *note_name = "LINUX";
11352 return elfcore_write_note (abfd, buf, bufsiz,
4b24dd1a 11353 note_name, NT_PPC_DSCR, ppc_dscr, size);
cb2366c1
EBM
11354}
11355
11356char *
11357elfcore_write_ppc_ebb (bfd *abfd,
4b24dd1a
AM
11358 char *buf,
11359 int *bufsiz,
11360 const void *ppc_ebb,
11361 int size)
cb2366c1
EBM
11362{
11363 char *note_name = "LINUX";
11364 return elfcore_write_note (abfd, buf, bufsiz,
4b24dd1a 11365 note_name, NT_PPC_EBB, ppc_ebb, size);
cb2366c1
EBM
11366}
11367
11368char *
11369elfcore_write_ppc_pmu (bfd *abfd,
4b24dd1a
AM
11370 char *buf,
11371 int *bufsiz,
11372 const void *ppc_pmu,
11373 int size)
cb2366c1
EBM
11374{
11375 char *note_name = "LINUX";
11376 return elfcore_write_note (abfd, buf, bufsiz,
4b24dd1a 11377 note_name, NT_PPC_PMU, ppc_pmu, size);
cb2366c1
EBM
11378}
11379
11380char *
11381elfcore_write_ppc_tm_cgpr (bfd *abfd,
4b24dd1a
AM
11382 char *buf,
11383 int *bufsiz,
11384 const void *ppc_tm_cgpr,
11385 int size)
cb2366c1
EBM
11386{
11387 char *note_name = "LINUX";
11388 return elfcore_write_note (abfd, buf, bufsiz,
4b24dd1a 11389 note_name, NT_PPC_TM_CGPR, ppc_tm_cgpr, size);
cb2366c1
EBM
11390}
11391
11392char *
11393elfcore_write_ppc_tm_cfpr (bfd *abfd,
4b24dd1a
AM
11394 char *buf,
11395 int *bufsiz,
11396 const void *ppc_tm_cfpr,
11397 int size)
cb2366c1
EBM
11398{
11399 char *note_name = "LINUX";
11400 return elfcore_write_note (abfd, buf, bufsiz,
4b24dd1a 11401 note_name, NT_PPC_TM_CFPR, ppc_tm_cfpr, size);
cb2366c1
EBM
11402}
11403
11404char *
11405elfcore_write_ppc_tm_cvmx (bfd *abfd,
4b24dd1a
AM
11406 char *buf,
11407 int *bufsiz,
11408 const void *ppc_tm_cvmx,
11409 int size)
cb2366c1
EBM
11410{
11411 char *note_name = "LINUX";
11412 return elfcore_write_note (abfd, buf, bufsiz,
4b24dd1a 11413 note_name, NT_PPC_TM_CVMX, ppc_tm_cvmx, size);
cb2366c1
EBM
11414}
11415
11416char *
11417elfcore_write_ppc_tm_cvsx (bfd *abfd,
4b24dd1a
AM
11418 char *buf,
11419 int *bufsiz,
11420 const void *ppc_tm_cvsx,
11421 int size)
cb2366c1
EBM
11422{
11423 char *note_name = "LINUX";
11424 return elfcore_write_note (abfd, buf, bufsiz,
4b24dd1a 11425 note_name, NT_PPC_TM_CVSX, ppc_tm_cvsx, size);
cb2366c1
EBM
11426}
11427
11428char *
11429elfcore_write_ppc_tm_spr (bfd *abfd,
4b24dd1a
AM
11430 char *buf,
11431 int *bufsiz,
11432 const void *ppc_tm_spr,
11433 int size)
cb2366c1
EBM
11434{
11435 char *note_name = "LINUX";
11436 return elfcore_write_note (abfd, buf, bufsiz,
4b24dd1a 11437 note_name, NT_PPC_TM_SPR, ppc_tm_spr, size);
cb2366c1
EBM
11438}
11439
11440char *
11441elfcore_write_ppc_tm_ctar (bfd *abfd,
4b24dd1a
AM
11442 char *buf,
11443 int *bufsiz,
11444 const void *ppc_tm_ctar,
11445 int size)
cb2366c1
EBM
11446{
11447 char *note_name = "LINUX";
11448 return elfcore_write_note (abfd, buf, bufsiz,
4b24dd1a 11449 note_name, NT_PPC_TM_CTAR, ppc_tm_ctar, size);
cb2366c1
EBM
11450}
11451
11452char *
11453elfcore_write_ppc_tm_cppr (bfd *abfd,
4b24dd1a
AM
11454 char *buf,
11455 int *bufsiz,
11456 const void *ppc_tm_cppr,
11457 int size)
cb2366c1
EBM
11458{
11459 char *note_name = "LINUX";
11460 return elfcore_write_note (abfd, buf, bufsiz,
4b24dd1a 11461 note_name, NT_PPC_TM_CPPR, ppc_tm_cppr, size);
cb2366c1
EBM
11462}
11463
11464char *
11465elfcore_write_ppc_tm_cdscr (bfd *abfd,
4b24dd1a
AM
11466 char *buf,
11467 int *bufsiz,
11468 const void *ppc_tm_cdscr,
11469 int size)
cb2366c1
EBM
11470{
11471 char *note_name = "LINUX";
11472 return elfcore_write_note (abfd, buf, bufsiz,
4b24dd1a 11473 note_name, NT_PPC_TM_CDSCR, ppc_tm_cdscr, size);
cb2366c1
EBM
11474}
11475
0675e188
UW
11476static char *
11477elfcore_write_s390_high_gprs (bfd *abfd,
11478 char *buf,
11479 int *bufsiz,
11480 const void *s390_high_gprs,
11481 int size)
11482{
11483 char *note_name = "LINUX";
11484 return elfcore_write_note (abfd, buf, bufsiz,
07d6d2b8 11485 note_name, NT_S390_HIGH_GPRS,
0675e188
UW
11486 s390_high_gprs, size);
11487}
11488
d7eeb400
MS
11489char *
11490elfcore_write_s390_timer (bfd *abfd,
07d6d2b8
AM
11491 char *buf,
11492 int *bufsiz,
11493 const void *s390_timer,
11494 int size)
d7eeb400
MS
11495{
11496 char *note_name = "LINUX";
11497 return elfcore_write_note (abfd, buf, bufsiz,
07d6d2b8 11498 note_name, NT_S390_TIMER, s390_timer, size);
d7eeb400
MS
11499}
11500
11501char *
11502elfcore_write_s390_todcmp (bfd *abfd,
07d6d2b8
AM
11503 char *buf,
11504 int *bufsiz,
11505 const void *s390_todcmp,
11506 int size)
d7eeb400
MS
11507{
11508 char *note_name = "LINUX";
11509 return elfcore_write_note (abfd, buf, bufsiz,
07d6d2b8 11510 note_name, NT_S390_TODCMP, s390_todcmp, size);
d7eeb400
MS
11511}
11512
11513char *
11514elfcore_write_s390_todpreg (bfd *abfd,
07d6d2b8
AM
11515 char *buf,
11516 int *bufsiz,
11517 const void *s390_todpreg,
11518 int size)
d7eeb400
MS
11519{
11520 char *note_name = "LINUX";
11521 return elfcore_write_note (abfd, buf, bufsiz,
07d6d2b8 11522 note_name, NT_S390_TODPREG, s390_todpreg, size);
d7eeb400
MS
11523}
11524
11525char *
11526elfcore_write_s390_ctrs (bfd *abfd,
07d6d2b8
AM
11527 char *buf,
11528 int *bufsiz,
11529 const void *s390_ctrs,
11530 int size)
d7eeb400
MS
11531{
11532 char *note_name = "LINUX";
11533 return elfcore_write_note (abfd, buf, bufsiz,
07d6d2b8 11534 note_name, NT_S390_CTRS, s390_ctrs, size);
d7eeb400
MS
11535}
11536
11537char *
11538elfcore_write_s390_prefix (bfd *abfd,
07d6d2b8
AM
11539 char *buf,
11540 int *bufsiz,
11541 const void *s390_prefix,
11542 int size)
d7eeb400
MS
11543{
11544 char *note_name = "LINUX";
11545 return elfcore_write_note (abfd, buf, bufsiz,
07d6d2b8 11546 note_name, NT_S390_PREFIX, s390_prefix, size);
d7eeb400
MS
11547}
11548
355b81d9
UW
11549char *
11550elfcore_write_s390_last_break (bfd *abfd,
11551 char *buf,
11552 int *bufsiz,
11553 const void *s390_last_break,
11554 int size)
11555{
11556 char *note_name = "LINUX";
11557 return elfcore_write_note (abfd, buf, bufsiz,
07d6d2b8 11558 note_name, NT_S390_LAST_BREAK,
355b81d9
UW
11559 s390_last_break, size);
11560}
11561
11562char *
11563elfcore_write_s390_system_call (bfd *abfd,
11564 char *buf,
11565 int *bufsiz,
11566 const void *s390_system_call,
11567 int size)
11568{
11569 char *note_name = "LINUX";
11570 return elfcore_write_note (abfd, buf, bufsiz,
07d6d2b8 11571 note_name, NT_S390_SYSTEM_CALL,
355b81d9
UW
11572 s390_system_call, size);
11573}
11574
abb3f6cc
NC
11575char *
11576elfcore_write_s390_tdb (bfd *abfd,
11577 char *buf,
11578 int *bufsiz,
11579 const void *s390_tdb,
11580 int size)
11581{
11582 char *note_name = "LINUX";
11583 return elfcore_write_note (abfd, buf, bufsiz,
07d6d2b8 11584 note_name, NT_S390_TDB, s390_tdb, size);
abb3f6cc
NC
11585}
11586
4ef9f41a
AA
11587char *
11588elfcore_write_s390_vxrs_low (bfd *abfd,
11589 char *buf,
11590 int *bufsiz,
11591 const void *s390_vxrs_low,
11592 int size)
11593{
11594 char *note_name = "LINUX";
11595 return elfcore_write_note (abfd, buf, bufsiz,
11596 note_name, NT_S390_VXRS_LOW, s390_vxrs_low, size);
11597}
11598
11599char *
11600elfcore_write_s390_vxrs_high (bfd *abfd,
11601 char *buf,
11602 int *bufsiz,
11603 const void *s390_vxrs_high,
11604 int size)
11605{
11606 char *note_name = "LINUX";
11607 return elfcore_write_note (abfd, buf, bufsiz,
11608 note_name, NT_S390_VXRS_HIGH,
11609 s390_vxrs_high, size);
11610}
11611
88ab90e8
AA
11612char *
11613elfcore_write_s390_gs_cb (bfd *abfd,
11614 char *buf,
11615 int *bufsiz,
11616 const void *s390_gs_cb,
11617 int size)
11618{
11619 char *note_name = "LINUX";
11620 return elfcore_write_note (abfd, buf, bufsiz,
11621 note_name, NT_S390_GS_CB,
11622 s390_gs_cb, size);
11623}
11624
11625char *
11626elfcore_write_s390_gs_bc (bfd *abfd,
11627 char *buf,
11628 int *bufsiz,
11629 const void *s390_gs_bc,
11630 int size)
11631{
11632 char *note_name = "LINUX";
11633 return elfcore_write_note (abfd, buf, bufsiz,
11634 note_name, NT_S390_GS_BC,
11635 s390_gs_bc, size);
11636}
11637
faa9a424
UW
11638char *
11639elfcore_write_arm_vfp (bfd *abfd,
11640 char *buf,
11641 int *bufsiz,
11642 const void *arm_vfp,
11643 int size)
11644{
11645 char *note_name = "LINUX";
11646 return elfcore_write_note (abfd, buf, bufsiz,
11647 note_name, NT_ARM_VFP, arm_vfp, size);
11648}
11649
652451f8
YZ
11650char *
11651elfcore_write_aarch_tls (bfd *abfd,
11652 char *buf,
11653 int *bufsiz,
11654 const void *aarch_tls,
11655 int size)
11656{
11657 char *note_name = "LINUX";
11658 return elfcore_write_note (abfd, buf, bufsiz,
11659 note_name, NT_ARM_TLS, aarch_tls, size);
11660}
11661
11662char *
11663elfcore_write_aarch_hw_break (bfd *abfd,
11664 char *buf,
11665 int *bufsiz,
11666 const void *aarch_hw_break,
11667 int size)
11668{
11669 char *note_name = "LINUX";
11670 return elfcore_write_note (abfd, buf, bufsiz,
11671 note_name, NT_ARM_HW_BREAK, aarch_hw_break, size);
11672}
11673
11674char *
11675elfcore_write_aarch_hw_watch (bfd *abfd,
11676 char *buf,
11677 int *bufsiz,
11678 const void *aarch_hw_watch,
11679 int size)
11680{
11681 char *note_name = "LINUX";
11682 return elfcore_write_note (abfd, buf, bufsiz,
11683 note_name, NT_ARM_HW_WATCH, aarch_hw_watch, size);
11684}
11685
ad1cc4e4
AH
11686char *
11687elfcore_write_aarch_sve (bfd *abfd,
11688 char *buf,
11689 int *bufsiz,
11690 const void *aarch_sve,
11691 int size)
11692{
11693 char *note_name = "LINUX";
11694 return elfcore_write_note (abfd, buf, bufsiz,
11695 note_name, NT_ARM_SVE, aarch_sve, size);
11696}
11697
e6c3b5bf
AH
11698char *
11699elfcore_write_aarch_pauth (bfd *abfd,
11700 char *buf,
11701 int *bufsiz,
11702 const void *aarch_pauth,
11703 int size)
11704{
11705 char *note_name = "LINUX";
11706 return elfcore_write_note (abfd, buf, bufsiz,
11707 note_name, NT_ARM_PAC_MASK, aarch_pauth, size);
11708}
11709
bb864ac1
CES
11710char *
11711elfcore_write_register_note (bfd *abfd,
11712 char *buf,
11713 int *bufsiz,
11714 const char *section,
11715 const void *data,
11716 int size)
11717{
11718 if (strcmp (section, ".reg2") == 0)
11719 return elfcore_write_prfpreg (abfd, buf, bufsiz, data, size);
11720 if (strcmp (section, ".reg-xfp") == 0)
11721 return elfcore_write_prxfpreg (abfd, buf, bufsiz, data, size);
4339cae0
L
11722 if (strcmp (section, ".reg-xstate") == 0)
11723 return elfcore_write_xstatereg (abfd, buf, bufsiz, data, size);
bb864ac1
CES
11724 if (strcmp (section, ".reg-ppc-vmx") == 0)
11725 return elfcore_write_ppc_vmx (abfd, buf, bufsiz, data, size);
89eeb0bc
LM
11726 if (strcmp (section, ".reg-ppc-vsx") == 0)
11727 return elfcore_write_ppc_vsx (abfd, buf, bufsiz, data, size);
cb2366c1
EBM
11728 if (strcmp (section, ".reg-ppc-tar") == 0)
11729 return elfcore_write_ppc_tar (abfd, buf, bufsiz, data, size);
11730 if (strcmp (section, ".reg-ppc-ppr") == 0)
11731 return elfcore_write_ppc_ppr (abfd, buf, bufsiz, data, size);
11732 if (strcmp (section, ".reg-ppc-dscr") == 0)
11733 return elfcore_write_ppc_dscr (abfd, buf, bufsiz, data, size);
11734 if (strcmp (section, ".reg-ppc-ebb") == 0)
11735 return elfcore_write_ppc_ebb (abfd, buf, bufsiz, data, size);
11736 if (strcmp (section, ".reg-ppc-pmu") == 0)
11737 return elfcore_write_ppc_pmu (abfd, buf, bufsiz, data, size);
11738 if (strcmp (section, ".reg-ppc-tm-cgpr") == 0)
11739 return elfcore_write_ppc_tm_cgpr (abfd, buf, bufsiz, data, size);
11740 if (strcmp (section, ".reg-ppc-tm-cfpr") == 0)
11741 return elfcore_write_ppc_tm_cfpr (abfd, buf, bufsiz, data, size);
11742 if (strcmp (section, ".reg-ppc-tm-cvmx") == 0)
11743 return elfcore_write_ppc_tm_cvmx (abfd, buf, bufsiz, data, size);
11744 if (strcmp (section, ".reg-ppc-tm-cvsx") == 0)
11745 return elfcore_write_ppc_tm_cvsx (abfd, buf, bufsiz, data, size);
11746 if (strcmp (section, ".reg-ppc-tm-spr") == 0)
11747 return elfcore_write_ppc_tm_spr (abfd, buf, bufsiz, data, size);
11748 if (strcmp (section, ".reg-ppc-tm-ctar") == 0)
11749 return elfcore_write_ppc_tm_ctar (abfd, buf, bufsiz, data, size);
11750 if (strcmp (section, ".reg-ppc-tm-cppr") == 0)
11751 return elfcore_write_ppc_tm_cppr (abfd, buf, bufsiz, data, size);
11752 if (strcmp (section, ".reg-ppc-tm-cdscr") == 0)
11753 return elfcore_write_ppc_tm_cdscr (abfd, buf, bufsiz, data, size);
0675e188
UW
11754 if (strcmp (section, ".reg-s390-high-gprs") == 0)
11755 return elfcore_write_s390_high_gprs (abfd, buf, bufsiz, data, size);
d7eeb400
MS
11756 if (strcmp (section, ".reg-s390-timer") == 0)
11757 return elfcore_write_s390_timer (abfd, buf, bufsiz, data, size);
11758 if (strcmp (section, ".reg-s390-todcmp") == 0)
11759 return elfcore_write_s390_todcmp (abfd, buf, bufsiz, data, size);
11760 if (strcmp (section, ".reg-s390-todpreg") == 0)
11761 return elfcore_write_s390_todpreg (abfd, buf, bufsiz, data, size);
11762 if (strcmp (section, ".reg-s390-ctrs") == 0)
11763 return elfcore_write_s390_ctrs (abfd, buf, bufsiz, data, size);
11764 if (strcmp (section, ".reg-s390-prefix") == 0)
11765 return elfcore_write_s390_prefix (abfd, buf, bufsiz, data, size);
355b81d9
UW
11766 if (strcmp (section, ".reg-s390-last-break") == 0)
11767 return elfcore_write_s390_last_break (abfd, buf, bufsiz, data, size);
11768 if (strcmp (section, ".reg-s390-system-call") == 0)
11769 return elfcore_write_s390_system_call (abfd, buf, bufsiz, data, size);
abb3f6cc
NC
11770 if (strcmp (section, ".reg-s390-tdb") == 0)
11771 return elfcore_write_s390_tdb (abfd, buf, bufsiz, data, size);
4ef9f41a
AA
11772 if (strcmp (section, ".reg-s390-vxrs-low") == 0)
11773 return elfcore_write_s390_vxrs_low (abfd, buf, bufsiz, data, size);
11774 if (strcmp (section, ".reg-s390-vxrs-high") == 0)
11775 return elfcore_write_s390_vxrs_high (abfd, buf, bufsiz, data, size);
88ab90e8
AA
11776 if (strcmp (section, ".reg-s390-gs-cb") == 0)
11777 return elfcore_write_s390_gs_cb (abfd, buf, bufsiz, data, size);
11778 if (strcmp (section, ".reg-s390-gs-bc") == 0)
11779 return elfcore_write_s390_gs_bc (abfd, buf, bufsiz, data, size);
faa9a424
UW
11780 if (strcmp (section, ".reg-arm-vfp") == 0)
11781 return elfcore_write_arm_vfp (abfd, buf, bufsiz, data, size);
652451f8
YZ
11782 if (strcmp (section, ".reg-aarch-tls") == 0)
11783 return elfcore_write_aarch_tls (abfd, buf, bufsiz, data, size);
11784 if (strcmp (section, ".reg-aarch-hw-break") == 0)
11785 return elfcore_write_aarch_hw_break (abfd, buf, bufsiz, data, size);
11786 if (strcmp (section, ".reg-aarch-hw-watch") == 0)
11787 return elfcore_write_aarch_hw_watch (abfd, buf, bufsiz, data, size);
ad1cc4e4
AH
11788 if (strcmp (section, ".reg-aarch-sve") == 0)
11789 return elfcore_write_aarch_sve (abfd, buf, bufsiz, data, size);
e6c3b5bf
AH
11790 if (strcmp (section, ".reg-aarch-pauth") == 0)
11791 return elfcore_write_aarch_pauth (abfd, buf, bufsiz, data, size);
bb864ac1
CES
11792 return NULL;
11793}
11794
b34976b6 11795static bfd_boolean
276da9b3
L
11796elf_parse_notes (bfd *abfd, char *buf, size_t size, file_ptr offset,
11797 size_t align)
252b5132 11798{
c044fabd 11799 char *p;
252b5132 11800
276da9b3
L
11801 /* NB: CORE PT_NOTE segments may have p_align values of 0 or 1.
11802 gABI specifies that PT_NOTE alignment should be aligned to 4
11803 bytes for 32-bit objects and to 8 bytes for 64-bit objects. If
11804 align is less than 4, we use 4 byte alignment. */
11805 if (align < 4)
11806 align = 4;
ef135d43
NC
11807 if (align != 4 && align != 8)
11808 return FALSE;
276da9b3 11809
252b5132
RH
11810 p = buf;
11811 while (p < buf + size)
11812 {
c044fabd 11813 Elf_External_Note *xnp = (Elf_External_Note *) p;
252b5132
RH
11814 Elf_Internal_Note in;
11815
baea7ef1
AM
11816 if (offsetof (Elf_External_Note, name) > buf - p + size)
11817 return FALSE;
11818
dc810e39 11819 in.type = H_GET_32 (abfd, xnp->type);
252b5132 11820
dc810e39 11821 in.namesz = H_GET_32 (abfd, xnp->namesz);
252b5132 11822 in.namedata = xnp->name;
baea7ef1
AM
11823 if (in.namesz > buf - in.namedata + size)
11824 return FALSE;
252b5132 11825
dc810e39 11826 in.descsz = H_GET_32 (abfd, xnp->descsz);
276da9b3 11827 in.descdata = p + ELF_NOTE_DESC_OFFSET (in.namesz, align);
252b5132 11828 in.descpos = offset + (in.descdata - buf);
baea7ef1
AM
11829 if (in.descsz != 0
11830 && (in.descdata >= buf + size
11831 || in.descsz > buf - in.descdata + size))
11832 return FALSE;
252b5132 11833
718175fa 11834 switch (bfd_get_format (abfd))
07d6d2b8 11835 {
718175fa
JK
11836 default:
11837 return TRUE;
11838
11839 case bfd_core:
f64e188b 11840 {
8acbedd6 11841#define GROKER_ELEMENT(S,F) {S, sizeof (S) - 1, F}
f64e188b 11842 struct
718175fa 11843 {
f64e188b 11844 const char * string;
8acbedd6 11845 size_t len;
f64e188b 11846 bfd_boolean (* func)(bfd *, Elf_Internal_Note *);
718175fa 11847 }
f64e188b 11848 grokers[] =
b15fa79e 11849 {
8acbedd6 11850 GROKER_ELEMENT ("", elfcore_grok_note),
aa1ed4a9 11851 GROKER_ELEMENT ("FreeBSD", elfcore_grok_freebsd_note),
8acbedd6
KS
11852 GROKER_ELEMENT ("NetBSD-CORE", elfcore_grok_netbsd_note),
11853 GROKER_ELEMENT ( "OpenBSD", elfcore_grok_openbsd_note),
11854 GROKER_ELEMENT ("QNX", elfcore_grok_nto_note),
864619bb
KS
11855 GROKER_ELEMENT ("SPU/", elfcore_grok_spu_note),
11856 GROKER_ELEMENT ("GNU", elfobj_grok_gnu_note)
f64e188b 11857 };
8acbedd6 11858#undef GROKER_ELEMENT
f64e188b
NC
11859 int i;
11860
11861 for (i = ARRAY_SIZE (grokers); i--;)
8acbedd6
KS
11862 {
11863 if (in.namesz >= grokers[i].len
11864 && strncmp (in.namedata, grokers[i].string,
11865 grokers[i].len) == 0)
11866 {
11867 if (! grokers[i].func (abfd, & in))
11868 return FALSE;
11869 break;
11870 }
11871 }
f64e188b
NC
11872 break;
11873 }
718175fa
JK
11874
11875 case bfd_object:
11876 if (in.namesz == sizeof "GNU" && strcmp (in.namedata, "GNU") == 0)
11877 {
11878 if (! elfobj_grok_gnu_note (abfd, &in))
11879 return FALSE;
11880 }
e21e5835
NC
11881 else if (in.namesz == sizeof "stapsdt"
11882 && strcmp (in.namedata, "stapsdt") == 0)
11883 {
11884 if (! elfobj_grok_stapsdt_note (abfd, &in))
11885 return FALSE;
11886 }
718175fa 11887 break;
08a40648 11888 }
252b5132 11889
276da9b3 11890 p += ELF_NOTE_NEXT_OFFSET (in.namesz, in.descsz, align);
252b5132
RH
11891 }
11892
718175fa
JK
11893 return TRUE;
11894}
11895
864619bb 11896bfd_boolean
276da9b3
L
11897elf_read_notes (bfd *abfd, file_ptr offset, bfd_size_type size,
11898 size_t align)
718175fa
JK
11899{
11900 char *buf;
11901
957e1fc1 11902 if (size == 0 || (size + 1) == 0)
718175fa
JK
11903 return TRUE;
11904
11905 if (bfd_seek (abfd, offset, SEEK_SET) != 0)
11906 return FALSE;
11907
f64e188b 11908 buf = (char *) bfd_malloc (size + 1);
718175fa
JK
11909 if (buf == NULL)
11910 return FALSE;
11911
f64e188b
NC
11912 /* PR 17512: file: ec08f814
11913 0-termintate the buffer so that string searches will not overflow. */
11914 buf[size] = 0;
11915
718175fa 11916 if (bfd_bread (buf, size, abfd) != size
276da9b3 11917 || !elf_parse_notes (abfd, buf, size, offset, align))
718175fa
JK
11918 {
11919 free (buf);
11920 return FALSE;
11921 }
11922
252b5132 11923 free (buf);
b34976b6 11924 return TRUE;
252b5132 11925}
98d8431c
JB
11926\f
11927/* Providing external access to the ELF program header table. */
11928
11929/* Return an upper bound on the number of bytes required to store a
11930 copy of ABFD's program header table entries. Return -1 if an error
11931 occurs; bfd_get_error will return an appropriate code. */
c044fabd 11932
98d8431c 11933long
217aa764 11934bfd_get_elf_phdr_upper_bound (bfd *abfd)
98d8431c
JB
11935{
11936 if (abfd->xvec->flavour != bfd_target_elf_flavour)
11937 {
11938 bfd_set_error (bfd_error_wrong_format);
11939 return -1;
11940 }
11941
936e320b 11942 return elf_elfheader (abfd)->e_phnum * sizeof (Elf_Internal_Phdr);
98d8431c
JB
11943}
11944
98d8431c
JB
11945/* Copy ABFD's program header table entries to *PHDRS. The entries
11946 will be stored as an array of Elf_Internal_Phdr structures, as
11947 defined in include/elf/internal.h. To find out how large the
11948 buffer needs to be, call bfd_get_elf_phdr_upper_bound.
11949
11950 Return the number of program header table entries read, or -1 if an
11951 error occurs; bfd_get_error will return an appropriate code. */
c044fabd 11952
98d8431c 11953int
217aa764 11954bfd_get_elf_phdrs (bfd *abfd, void *phdrs)
98d8431c
JB
11955{
11956 int num_phdrs;
11957
11958 if (abfd->xvec->flavour != bfd_target_elf_flavour)
11959 {
11960 bfd_set_error (bfd_error_wrong_format);
11961 return -1;
11962 }
11963
11964 num_phdrs = elf_elfheader (abfd)->e_phnum;
01bcaf63
TT
11965 if (num_phdrs != 0)
11966 memcpy (phdrs, elf_tdata (abfd)->phdr,
11967 num_phdrs * sizeof (Elf_Internal_Phdr));
98d8431c
JB
11968
11969 return num_phdrs;
11970}
ae4221d7 11971
db6751f2 11972enum elf_reloc_type_class
7e612e98
AM
11973_bfd_elf_reloc_type_class (const struct bfd_link_info *info ATTRIBUTE_UNUSED,
11974 const asection *rel_sec ATTRIBUTE_UNUSED,
11975 const Elf_Internal_Rela *rela ATTRIBUTE_UNUSED)
db6751f2
JJ
11976{
11977 return reloc_class_normal;
11978}
f8df10f4 11979
47d9a591 11980/* For RELA architectures, return the relocation value for a
f8df10f4
JJ
11981 relocation against a local symbol. */
11982
11983bfd_vma
217aa764
AM
11984_bfd_elf_rela_local_sym (bfd *abfd,
11985 Elf_Internal_Sym *sym,
8517fae7 11986 asection **psec,
217aa764 11987 Elf_Internal_Rela *rel)
f8df10f4 11988{
8517fae7 11989 asection *sec = *psec;
f8df10f4
JJ
11990 bfd_vma relocation;
11991
6835821b
AM
11992 relocation = (sec->output_section->vma
11993 + sec->output_offset
11994 + sym->st_value);
f8df10f4 11995 if ((sec->flags & SEC_MERGE)
c629eae0 11996 && ELF_ST_TYPE (sym->st_info) == STT_SECTION
dbaa2011 11997 && sec->sec_info_type == SEC_INFO_TYPE_MERGE)
f8df10f4 11998 {
f8df10f4 11999 rel->r_addend =
8517fae7 12000 _bfd_merged_section_offset (abfd, psec,
65765700 12001 elf_section_data (sec)->sec_info,
753731ee
AM
12002 sym->st_value + rel->r_addend);
12003 if (sec != *psec)
12004 {
12005 /* If we have changed the section, and our original section is
12006 marked with SEC_EXCLUDE, it means that the original
12007 SEC_MERGE section has been completely subsumed in some
12008 other SEC_MERGE section. In this case, we need to leave
12009 some info around for --emit-relocs. */
12010 if ((sec->flags & SEC_EXCLUDE) != 0)
12011 sec->kept_section = *psec;
12012 sec = *psec;
12013 }
8517fae7
AM
12014 rel->r_addend -= relocation;
12015 rel->r_addend += sec->output_section->vma + sec->output_offset;
f8df10f4
JJ
12016 }
12017 return relocation;
12018}
c629eae0
JJ
12019
12020bfd_vma
217aa764
AM
12021_bfd_elf_rel_local_sym (bfd *abfd,
12022 Elf_Internal_Sym *sym,
12023 asection **psec,
12024 bfd_vma addend)
47d9a591 12025{
c629eae0
JJ
12026 asection *sec = *psec;
12027
6835821b 12028 if (sec->sec_info_type != SEC_INFO_TYPE_MERGE)
c629eae0
JJ
12029 return sym->st_value + addend;
12030
12031 return _bfd_merged_section_offset (abfd, psec,
65765700 12032 elf_section_data (sec)->sec_info,
753731ee 12033 sym->st_value + addend);
c629eae0
JJ
12034}
12035
37b01f6a
DG
12036/* Adjust an address within a section. Given OFFSET within SEC, return
12037 the new offset within the section, based upon changes made to the
12038 section. Returns -1 if the offset is now invalid.
12039 The offset (in abnd out) is in target sized bytes, however big a
12040 byte may be. */
12041
c629eae0 12042bfd_vma
217aa764 12043_bfd_elf_section_offset (bfd *abfd,
92e4ec35 12044 struct bfd_link_info *info,
217aa764
AM
12045 asection *sec,
12046 bfd_vma offset)
c629eae0 12047{
68bfbfcc 12048 switch (sec->sec_info_type)
65765700 12049 {
dbaa2011 12050 case SEC_INFO_TYPE_STABS:
eea6121a
AM
12051 return _bfd_stab_section_offset (sec, elf_section_data (sec)->sec_info,
12052 offset);
dbaa2011 12053 case SEC_INFO_TYPE_EH_FRAME:
92e4ec35 12054 return _bfd_elf_eh_frame_section_offset (abfd, info, sec, offset);
37b01f6a 12055
65765700 12056 default:
310fd250
L
12057 if ((sec->flags & SEC_ELF_REVERSE_COPY) != 0)
12058 {
37b01f6a 12059 /* Reverse the offset. */
310fd250
L
12060 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
12061 bfd_size_type address_size = bed->s->arch_size / 8;
37b01f6a
DG
12062
12063 /* address_size and sec->size are in octets. Convert
12064 to bytes before subtracting the original offset. */
61826503 12065 offset = ((sec->size - address_size)
bb294208 12066 / bfd_octets_per_byte (abfd, sec) - offset);
310fd250 12067 }
65765700
JJ
12068 return offset;
12069 }
c629eae0 12070}
3333a7c3
RM
12071\f
12072/* Create a new BFD as if by bfd_openr. Rather than opening a file,
12073 reconstruct an ELF file by reading the segments out of remote memory
12074 based on the ELF file header at EHDR_VMA and the ELF program headers it
12075 points to. If not null, *LOADBASEP is filled in with the difference
12076 between the VMAs from which the segments were read, and the VMAs the
12077 file headers (and hence BFD's idea of each section's VMA) put them at.
12078
12079 The function TARGET_READ_MEMORY is called to copy LEN bytes from the
12080 remote memory at target address VMA into the local buffer at MYADDR; it
12081 should return zero on success or an `errno' code on failure. TEMPL must
12082 be a BFD for an ELF target with the word size and byte order found in
12083 the remote memory. */
12084
12085bfd *
217aa764
AM
12086bfd_elf_bfd_from_remote_memory
12087 (bfd *templ,
12088 bfd_vma ehdr_vma,
f0a5d95a 12089 bfd_size_type size,
217aa764 12090 bfd_vma *loadbasep,
fe78531d 12091 int (*target_read_memory) (bfd_vma, bfd_byte *, bfd_size_type))
3333a7c3
RM
12092{
12093 return (*get_elf_backend_data (templ)->elf_backend_bfd_from_remote_memory)
5979d6b6 12094 (templ, ehdr_vma, size, loadbasep, target_read_memory);
3333a7c3 12095}
4c45e5c9
JJ
12096\f
12097long
c9727e01
AM
12098_bfd_elf_get_synthetic_symtab (bfd *abfd,
12099 long symcount ATTRIBUTE_UNUSED,
12100 asymbol **syms ATTRIBUTE_UNUSED,
8615f3f2 12101 long dynsymcount,
c9727e01
AM
12102 asymbol **dynsyms,
12103 asymbol **ret)
4c45e5c9
JJ
12104{
12105 const struct elf_backend_data *bed = get_elf_backend_data (abfd);
12106 asection *relplt;
12107 asymbol *s;
12108 const char *relplt_name;
12109 bfd_boolean (*slurp_relocs) (bfd *, asection *, asymbol **, bfd_boolean);
12110 arelent *p;
12111 long count, i, n;
12112 size_t size;
12113 Elf_Internal_Shdr *hdr;
12114 char *names;
12115 asection *plt;
12116
8615f3f2
AM
12117 *ret = NULL;
12118
90e3cdf2
JJ
12119 if ((abfd->flags & (DYNAMIC | EXEC_P)) == 0)
12120 return 0;
12121
8615f3f2
AM
12122 if (dynsymcount <= 0)
12123 return 0;
12124
4c45e5c9
JJ
12125 if (!bed->plt_sym_val)
12126 return 0;
12127
12128 relplt_name = bed->relplt_name;
12129 if (relplt_name == NULL)
d35fd659 12130 relplt_name = bed->rela_plts_and_copies_p ? ".rela.plt" : ".rel.plt";
4c45e5c9
JJ
12131 relplt = bfd_get_section_by_name (abfd, relplt_name);
12132 if (relplt == NULL)
12133 return 0;
12134
12135 hdr = &elf_section_data (relplt)->this_hdr;
12136 if (hdr->sh_link != elf_dynsymtab (abfd)
12137 || (hdr->sh_type != SHT_REL && hdr->sh_type != SHT_RELA))
12138 return 0;
12139
12140 plt = bfd_get_section_by_name (abfd, ".plt");
12141 if (plt == NULL)
12142 return 0;
12143
12144 slurp_relocs = get_elf_backend_data (abfd)->s->slurp_reloc_table;
c9727e01 12145 if (! (*slurp_relocs) (abfd, relplt, dynsyms, TRUE))
4c45e5c9
JJ
12146 return -1;
12147
eea6121a 12148 count = relplt->size / hdr->sh_entsize;
4c45e5c9
JJ
12149 size = count * sizeof (asymbol);
12150 p = relplt->relocation;
cb53bf42 12151 for (i = 0; i < count; i++, p += bed->s->int_rels_per_ext_rel)
041de40d
AM
12152 {
12153 size += strlen ((*p->sym_ptr_ptr)->name) + sizeof ("@plt");
12154 if (p->addend != 0)
12155 {
12156#ifdef BFD64
12157 size += sizeof ("+0x") - 1 + 8 + 8 * (bed->s->elfclass == ELFCLASS64);
12158#else
12159 size += sizeof ("+0x") - 1 + 8;
12160#endif
12161 }
12162 }
4c45e5c9 12163
a50b1753 12164 s = *ret = (asymbol *) bfd_malloc (size);
4c45e5c9
JJ
12165 if (s == NULL)
12166 return -1;
12167
12168 names = (char *) (s + count);
12169 p = relplt->relocation;
12170 n = 0;
cb53bf42 12171 for (i = 0; i < count; i++, p += bed->s->int_rels_per_ext_rel)
4c45e5c9
JJ
12172 {
12173 size_t len;
12174 bfd_vma addr;
12175
12176 addr = bed->plt_sym_val (i, plt, p);
12177 if (addr == (bfd_vma) -1)
12178 continue;
12179
12180 *s = **p->sym_ptr_ptr;
65a7a66f
AM
12181 /* Undefined syms won't have BSF_LOCAL or BSF_GLOBAL set. Since
12182 we are defining a symbol, ensure one of them is set. */
12183 if ((s->flags & BSF_LOCAL) == 0)
12184 s->flags |= BSF_GLOBAL;
6ba2a415 12185 s->flags |= BSF_SYNTHETIC;
4c45e5c9
JJ
12186 s->section = plt;
12187 s->value = addr - plt->vma;
12188 s->name = names;
8f39ba8e 12189 s->udata.p = NULL;
4c45e5c9
JJ
12190 len = strlen ((*p->sym_ptr_ptr)->name);
12191 memcpy (names, (*p->sym_ptr_ptr)->name, len);
12192 names += len;
041de40d
AM
12193 if (p->addend != 0)
12194 {
1d770845 12195 char buf[30], *a;
d324f6d6 12196
041de40d
AM
12197 memcpy (names, "+0x", sizeof ("+0x") - 1);
12198 names += sizeof ("+0x") - 1;
1d770845
L
12199 bfd_sprintf_vma (abfd, buf, p->addend);
12200 for (a = buf; *a == '0'; ++a)
12201 ;
12202 len = strlen (a);
12203 memcpy (names, a, len);
12204 names += len;
041de40d 12205 }
4c45e5c9
JJ
12206 memcpy (names, "@plt", sizeof ("@plt"));
12207 names += sizeof ("@plt");
8f39ba8e 12208 ++s, ++n;
4c45e5c9
JJ
12209 }
12210
12211 return n;
12212}
3d7f7666 12213
821e6ff6
AM
12214/* It is only used by x86-64 so far.
12215 ??? This repeats *COM* id of zero. sec->id is supposed to be unique,
7eacd66b
AM
12216 but current usage would allow all of _bfd_std_section to be zero. */
12217static const asymbol lcomm_sym
12218 = GLOBAL_SYM_INIT ("LARGE_COMMON", &_bfd_elf_large_com_section);
3b22753a 12219asection _bfd_elf_large_com_section
7eacd66b 12220 = BFD_FAKE_SECTION (_bfd_elf_large_com_section, &lcomm_sym,
821e6ff6 12221 "LARGE_COMMON", 0, SEC_IS_COMMON);
ecca9871 12222
cc364be6
AM
12223bfd_boolean
12224_bfd_elf_final_write_processing (bfd *abfd)
06f44071
AM
12225{
12226 Elf_Internal_Ehdr *i_ehdrp; /* ELF file header, internal form. */
d1036acb
L
12227
12228 i_ehdrp = elf_elfheader (abfd);
12229
06f44071
AM
12230 if (i_ehdrp->e_ident[EI_OSABI] == ELFOSABI_NONE)
12231 i_ehdrp->e_ident[EI_OSABI] = get_elf_backend_data (abfd)->elf_osabi;
d8045f23 12232
df3a023b
AM
12233 /* Set the osabi field to ELFOSABI_GNU if the binary contains
12234 SHF_GNU_MBIND sections or symbols of STT_GNU_IFUNC type or
12235 STB_GNU_UNIQUE binding. */
cc364be6
AM
12236 if (elf_tdata (abfd)->has_gnu_osabi != 0)
12237 {
12238 if (i_ehdrp->e_ident[EI_OSABI] == ELFOSABI_NONE)
12239 i_ehdrp->e_ident[EI_OSABI] = ELFOSABI_GNU;
12240 else if (i_ehdrp->e_ident[EI_OSABI] != ELFOSABI_GNU
12241 && i_ehdrp->e_ident[EI_OSABI] != ELFOSABI_FREEBSD)
12242 {
12243 if (elf_tdata (abfd)->has_gnu_osabi & elf_gnu_osabi_mbind)
12244 _bfd_error_handler (_("GNU_MBIND section is unsupported"));
12245 if (elf_tdata (abfd)->has_gnu_osabi & elf_gnu_osabi_ifunc)
12246 _bfd_error_handler (_("symbol type STT_GNU_IFUNC is unsupported"));
12247 if (elf_tdata (abfd)->has_gnu_osabi & elf_gnu_osabi_unique)
12248 _bfd_error_handler (_("symbol binding STB_GNU_UNIQUE is unsupported"));
9aea1e31 12249 bfd_set_error (bfd_error_sorry);
cc364be6
AM
12250 return FALSE;
12251 }
12252 }
12253 return TRUE;
d1036acb 12254}
fcb93ecf
PB
12255
12256
12257/* Return TRUE for ELF symbol types that represent functions.
12258 This is the default version of this function, which is sufficient for
d8045f23 12259 most targets. It returns true if TYPE is STT_FUNC or STT_GNU_IFUNC. */
fcb93ecf
PB
12260
12261bfd_boolean
12262_bfd_elf_is_function_type (unsigned int type)
12263{
d8045f23
NC
12264 return (type == STT_FUNC
12265 || type == STT_GNU_IFUNC);
fcb93ecf 12266}
9f296da3 12267
aef36ac1
AM
12268/* If the ELF symbol SYM might be a function in SEC, return the
12269 function size and set *CODE_OFF to the function's entry point,
12270 otherwise return zero. */
9f296da3 12271
aef36ac1
AM
12272bfd_size_type
12273_bfd_elf_maybe_function_sym (const asymbol *sym, asection *sec,
12274 bfd_vma *code_off)
9f296da3 12275{
aef36ac1
AM
12276 bfd_size_type size;
12277
ff9e0f5b 12278 if ((sym->flags & (BSF_SECTION_SYM | BSF_FILE | BSF_OBJECT
aef36ac1
AM
12279 | BSF_THREAD_LOCAL | BSF_RELC | BSF_SRELC)) != 0
12280 || sym->section != sec)
12281 return 0;
ff9e0f5b 12282
ff9e0f5b 12283 *code_off = sym->value;
aef36ac1
AM
12284 size = 0;
12285 if (!(sym->flags & BSF_SYNTHETIC))
12286 size = ((elf_symbol_type *) sym)->internal_elf_sym.st_size;
12287 if (size == 0)
12288 size = 1;
12289 return size;
9f296da3 12290}